D1-35 – Annotation

Gene IDLength(bp)Gene nameCOGProductNucleotide seqProtein seqPGPT:Locus TagPGPT:EffectPGPT:L1PGPT:L2PGPT:L3PGPT:L4PGPT:L5PGPT:L6
D1-35_00001819suhBCOG0483Inositol-1-monophosphataseATGCAGCCCATGCTGAATATCGCGCTGCGCGCCGCCCGCAGCGCCAGTGAACTGATCTTCCGCTCCATCGAGCGCCTGGATACCATCAAGGTCGATGAAAAAGACGCCAAGGACTACGTGTCCGAGGTTGATCGCGCCGCCGAACAGAAAATCGTCGACGCCCTGCGCAAGGCTTACCCGAACCACTCCATCCTCGGTGAAGAAACCGGCATGCACGCCGGTACCGGCATCGAAGGCGAAGAGTACCTGTGGATCATCGATCCGCTGGACGGTACCACCAACTTCCTGCGCGGCATTCCTCACTTCGCTGTCAGCATCGCCTGCAAATACCGTGGCCGCCTGGAACACGCCGTCGTGCTGGACCCGGTTCGCCAGGAAGAATTCACCGCCAGCCGTGGCCGTGGCGCCCAACTGAACGGTCGCCGCCTGCGCGTCAGCGGCCGCACCAGCCTGGACGGCGCCCTGCTGGGCACCGGTTTCCCGTTCCGTGATGACCAGATGGACAACCTCGACAATTACCTGGGCATGTTCCGCGCCCTGGTCGGCCAGACCGCCGGCATCCGCCGCGCCGGCGCCGCGAGCCTGGACCTGGCCTATGTAGCTGCCGGTCGTTTCGATGCGTTCTGGGAATCGGGCCTGTCCGAGTGGGACATGGCGGCAGGCGCCCTGTTGATCCAGGAAGCGGGTGGCTTGGTGAGCGACTTCACCGGCGGCCACGATTTCCTTGAAAAAGGCCACATCGTTGCCGGCAACACCAAATGCTTCAAGGCTGTGCTGACGGCGATCCAGCCGCACCTGCCGGCCTCGCTGAAGCGCTAAMQPMLNIALRAARSASELIFRSIERLDTIKVDEKDAKDYVSEVDRAAEQKIVDALRKAYPNHSILGEETGMHAGTGIEGEEYLWIIDPLDGTTNFLRGIPHFAVSIACKYRGRLEHAVVLDPVRQEEFTASRGRGAQLNGRRLRVSGRTSLDGALLGTGFPFRDDQMDNLDNYLGMFRALVGQTAGIRRAGAASLDLAYVAAGRFDAFWESGLSEWDMAAGALLIQEAGGLVSDFTGGHDFLEKGHIVAGNTKCFKAVLTAIQPHLPASLKRPGPT0018535_2745DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0018535-suhB-K01092NANA
D1-35_00002771trmJtRNA (cytidine/uridine/adenosine-2'-O-)-methyltransferase TrmJTTGTTGCAGAACATTCGTGTCGTCCTGGTCAATACCAGCCATCCGGGTAACATCGGCGGAGCTGCGCGGGCCATGAAGAACATGGGCCTGTCGCGGCTGGTGCTGGTTGAGCCGCGCTCGTTTCCCCATCACGAAGCCGACGCGCGGGCATCCGGCGCCGGTGACATTCTCGCCAATGCCCAGGTTGTCGCCACCCTGGAAGACGCCTTGGTGGGTTGCAACCTGGTGCTCGGCACCAGCGCCCGCGACCGCCGTATCCCCTGGCCGCTGCTCGATCCTCGCGAATGCGGCACCAAGGTGGTCGAGGAAGCGGGGCAGGGCGCGGAAATCGCCTTGGTGTTCGGCCGTGAAGATTCCGGCCTCACCAATGAAGAGCTGCAGCGATGTCATTTTCACGTGCATATCCCCTCCGACCCCGGCTTCAGCTCGCTGAACCTCGGGGCGGCGGTGCAGGTGTTGAGCTATGAAGTGCGCATGGCCTGGCTGCACGCCGAAGGCCAGCCCAGCAAGGTGGAAAAATTCGAGGCGACGTCGCCGCGCAGTGAGACACTGGCGACCATGGACGAGCTGGAGCGATTCTATGAACACCTGGAGCAGACCCTGGTGGACATCGAATTCCTTGACCCGGACAAGCCTCGGCACTTGATGGCGCGCCTGCGTCGGTTGTACGGACGAAGCTCGGTGAGCCGGGCGGAAATGAATATATTGCGCGGCATCCTCACGGAAACCCAGAAAGCGGCCCGTGGCGAGCTGATTAAGCGGAAGGAATAAMLQNIRVVLVNTSHPGNIGGAARAMKNMGLSRLVLVEPRSFPHHEADARASGAGDILANAQVVATLEDALVGCNLVLGTSARDRRIPWPLLDPRECGTKVVEEAGQGAEIALVFGREDSGLTNEELQRCHFHVHIPSDPGFSSLNLGAAVQVLSYEVRMAWLHAEGQPSKVEKFEATSPRSETLATMDELERFYEHLEQTLVDIEFLDPDKPRHLMARLRRLYGRSSVSRAEMNILRGILTETQKAARGELIKRKENANANANANA
D1-35_00003777cysECOG1045Serine acetyltransferaseATGTTCGAACGTTTGCGTGAAGATATCCAGAGCGTCTTCCATCGTGACCCGGCGGCGCGCAATGCCTTTGAAGTGCTGACCTGCTATCCCGGCATGCACGCCATCTGGATCCATCGCCTGTCCGGCGCCTTGTGGAGCATGGGTTGGAAATGGCTGGCGCGGCTGGTCTCGAACTTCGGCCGCTGGTTGACCGGCATCGAGATCCATCCGGGCGCCAAGGTCGGCCGGCGGTTCTTCATCGATCACGGCATGGGCATCGTCATCGGCGAGACCGCCGAGATCGGCGACGACGTCACGCTCTATCAGGGCGTGACCCTCGGCGGCACCAGCTGGAACAAAGGCAAGCGCCACCCGACCCTGGAAAACGGCGTTGTCGTCGGTGCTGGCGCCAAGGTGCTCGGCCCGTTCACCGTGGGCGCGGGAGCGAAAGTCGGCTCCAACGCCGTGGTCACCAAGGCCGTGCCGCCCGGCGCGACCGTGGTGGGTATTCCGGGGCGGATCATCGTCAAGTCGGACGAAGAGCAGGACGCCCGGCGCAAGGCCATGGCCGAGAAGATCGGCTTCGACGCCTACGGTGTCGGCGAAGACATGCCCGACCCGGTGGCGCGCGCCATCAACCAGTTGCTCGATCACCTGCAAGCGGTGGACGGGCGCCTGGAGGGGATGTGCGGCGCACTGAAGGAGCTGGGGAGTGATTATTGTGCCAAGGATCTGCCGGAACTGCGCGAGGAAGACTTTGCGTGCGTGAAGGACAAGGACCAAAGCCAGGCTAGCTGAMFERLREDIQSVFHRDPAARNAFEVLTCYPGMHAIWIHRLSGALWSMGWKWLARLVSNFGRWLTGIEIHPGAKVGRRFFIDHGMGIVIGETAEIGDDVTLYQGVTLGGTSWNKGKRHPTLENGVVVGAGAKVLGPFTVGAGAKVGSNAVVTKAVPPGATVVGIPGRIIVKSDEEQDARRKAMAEKIGFDAYGVGEDMPDPVARAINQLLDHLQAVDGRLEGMCGALKELGSDYCAKDLPELREEDFACVKDKDQSQASPGPT0020265_2988DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-PUTATIVE_EXOPOLYSACCHARIDE_FUNCTIONCE-EPS-PUTATIVE_EXOPOLYSACCHARIDE_FUNCTION-1,PGPT0020265-cysE-K00640NANA
D1-35_00004492iscRCOG1959HTH-type transcriptional regulator IscRATGCGACTGACTACAAAAGGCCGATACGCCGTGACCGCAATGCTGGATCTGGCATTGCATGCGCAGCACGGGCCGGTGTCCCTGGCCGATATCTCCGAACGCCAGGGCATCTCCCTGTCCTACCTCGAACAGCTGTTCGCCAAGCTGCGCCGCAGCAACCTGGTCTCCAGCGTTCGTGGCCCCGGTGGCGGCTACCAGCTGTCGCGCGAGATGCAAGGCATCCAGGTCGCCCAGGTGATCGATGCCGTGAACGAATCGGTCGATGCGACCAAATGCCAAGGGTTGGGCGACTGCCACGGCGGCGATACTTGCCTGACCCATCATCTGTGGTGCGATTTGAGCCTGCAGATTCACGAATTTCTGAGTGGTATCAGCTTGGCCGACCTTGTGACTCGCCGTGAGGTGCAAGAAGTAGCCCAGCGTCAGGACCAGCGCCGTTGCAATGGCAAGGCGCCGCACCTGGACAAGATTGAAGCGTCCGCCGTCGAATGAMRLTTKGRYAVTAMLDLALHAQHGPVSLADISERQGISLSYLEQLFAKLRRSNLVSSVRGPGGGYQLSREMQGIQVAQVIDAVNESVDATKCQGLGDCHGGDTCLTHHLWCDLSLQIHEFLSGISLADLVTRREVQEVAQRQDQRRCNGKAPHLDKIEASAVEPGPT0004960_606DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-ANTIMONY_HOMEOSTASIS,PGPT0004960-iscR-K13643NANA
D1-35_000051215iscS_1COG1104Cysteine desulfurase IscSATGAAATTGCCGATTTACCTTGATTACTCTGCGACCACCCCGGTTGATCCGCGTGTCGCGCAAAAGATGAGTGAATGCCTGCTGGTCGACGGAAACTTCGGCAACCCGGCCTCGCGTTCCCACGTGTTCGGCTGGAAAGCCGAAGAGTCGGTCGAAAACGCCCGTCGCCAGGTCGCCGACCTGGTCAATGCCGACCCCCGCGAGATCGTCTGGACCTCCGGTGCCACCGAGTCCGACAATCTGGCAATCAAGGGTGTCGCGCATTTCTACCACACCAAGGGCAAGCACCTGATCACCTCCAAGATCGAGCACAAGGCTGTCCTGGACACCATGCGCCAACTGGAGCGTGAAGGCTTCGAAGTCACCTACATCGAGCCCGGTGAAGACGGCATCATCACCCCGGCCATGGTCGAGGCCGTACTGCGCGACGACACCATTCTGGTTTCGATCATGCATGTGAACAACGAAATCGGCACCGTCAACGACATCGCGGCCATCGGCGAACTGACCCGTTCCAAGGGCGTCCTGTTCCACGTCGATGGCGCGCAGTCCACCGGCAAGGTCGACATCGACCTGTCCAAGCTGAAAGTCGACCTGATGTCCTTCTCGGCCCACAAGACTTATGGCCCTAAAGGCATCGGCGCCCTGTACGTCAGCCGCAAGCCGCGTGTTCGCCTCGAAGCGACCATGCACGGCGGCGGTCACGAGCGTGGCATGCGTTCCGGTACCCTGGCGACCCACCAGATCGTTGGCATGGGCGAAGCCTTCCGCGTGGCCAAGGAAGACATGGCCGCCGAGAACGTGCGCATCAAGGCCTTGAGCGACCGTTTCTTCAAGCAGGTCGAGCACCTCGAAGAGCTCTACGTCAACGGCAGCATGACCGCCCGCGTTCCACACAACCTGAACCTGAGCTTCAACTACGTTGAAGGCGAGTCGCTGATCATGGCGCTCAAGGATCTGGCCGTGTCGTCCGGTTCGGCGTGCACCTCGGCGTCGCTGGAGCCTTCCTACGTACTGCGTGCCCTGGGCCGCAACGACGAACTGGCTCACAGCTCGATCCGCTTCACCTTCGGCCGCTTCACCACCGAAGAAGAAATCGATTACGCCGCGCAGAAAGTCTGCGAGGCCGTTACCAAGCTGCGTGCTCTTTCGCCGCTGTGGGACATGTACAAAGACGGCGTCGACATTTCGAAAATCGAATGGGCGGCGCACTGAMKLPIYLDYSATTPVDPRVAQKMSECLLVDGNFGNPASRSHVFGWKAEESVENARRQVADLVNADPREIVWTSGATESDNLAIKGVAHFYHTKGKHLITSKIEHKAVLDTMRQLEREGFEVTYIEPGEDGIITPAMVEAVLRDDTILVSIMHVNNEIGTVNDIAAIGELTRSKGVLFHVDGAQSTGKVDIDLSKLKVDLMSFSAHKTYGPKGIGALYVSRKPRVRLEATMHGGGHERGMRSGTLATHQIVGMGEAFRVAKEDMAAENVRIKALSDRFFKQVEHLEELYVNGSMTARVPHNLNLSFNYVEGESLIMALKDLAVSSGSACTSASLEPSYVLRALGRNDELAHSSIRFTFGRFTTEEEIDYAAQKVCEAVTKLRALSPLWDMYKDGVDISKIEWAAHPGPT0000065_2203DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-SULFUR_MODIFICATION_PROTEINS,PGPT0000065-nifS|iscS-K04487NANA
D1-35_00006387iscUCOG0822Iron-sulfur cluster assembly scaffold protein IscUATGGCATATAGCGAAAAGGTCATCGACCACTACGAGAACCCGCGCAACGTCGGCAAGATGGACGCGCAGGATCCTGACGTCGGCACCGGCATGGTCGGCGCCCCGGCGTGCGGCGACGTGATGCGTCTGCAGATCAAGGTCAACGAACAAGGCATCATCGAAGATGCCAAGTTCAAGACCTACGGCTGCGGCTCCGCCATCGCGTCCAGCTCCCTGGCCACCGAGTGGATGAAGGGCAAGACTCTCGACGAAGCCGAAACCATCAAGAACACTCAGTTGGCCGAAGAACTGGCCTTGCCGCCAGTGAAAATCCACTGCTCGGTACTCGCTGAAGACGCCATCAAGGCCGCCGTTCGCGACTACAAGCAGAAGAAAGGCTTGATCTGAMAYSEKVIDHYENPRNVGKMDAQDPDVGTGMVGAPACGDVMRLQIKVNEQGIIEDAKFKTYGCGSAIASSSLATEWMKGKTLDEAETIKNTQLAEELALPPVKIHCSVLAEDAIKAAVRDYKQKKGLIPGPT0000075_2825DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-ATMOSHPHERIC_NITROGEN_FIXATIONN-FIX-NITROGENASE_BIOSYNTHESIS,PGPT0000075-nifU|iscU-K04488NANA
D1-35_00007324iscACOG0316Iron-binding protein IscAATGGCTATCCAGATGACAGAAGCGGCAGCTAACCATATCCAGCGCTCACTTGCGGGGCGCGGCAAGGGCGAGGGTATCCGCCTGGGTGTTCGCACCACGGGTTGTTCCGGCCTCGCCTATGTACTGGAATTCGTCGACGAAGTCGGTGAAGACGATCAGGTGTTCGAGAGTCATGGTCAGAAAGTGATCATCGACCCCAAGAGCTTGACGTACCTGGACGGCACCGAGCTGGATTTCGTCAAGGAAGGGTTGAACGAAGGCTTCAAGTTCAACAACCCCAACGTGCGCGGTGAATGTGGCTGCGGCGAAAGCTTCAACATCTGAMAIQMTEAAANHIQRSLAGRGKGEGIRLGVRTTGCSGLAYVLEFVDEVGEDDQVFESHGQKVIIDPKSLTYLDGTELDFVKEGLNEGFKFNNPNVRGECGCGESFNINANANANANA
D1-35_00008522hscBCOG1076Co-chaperone protein HscBGTGGGTACTCCTTGTCATTTTGCGTTGTTCCAGTTGCAGCCTGCTTTCCAGCTGGACCTCGATCAGTTGTCCGCGCGTTATCTGGAACTGGCCCGTGGTGTCCACCCCGACCGCTTTGCCGATGCCTCCGAGGCTGAGCAGCGGCGGGCGCTCGAGCAGTCGGCGAACCTCAACGAGGCCTACCAGACGCTCAAGAGTCCGGCCAAGCGCGCGCGGTACCTGCTCGCCATCAGCGGTCATGAGCTGCCCCTGGAAGTCACGGTGCACGACCCCGAGTTCCTGTTGCAGCAGATGCAATGGCGCGAGGAGCTCGAAGACCTGCAGGACAGTGCCGACCTGGCGGGTGTCGCGGTCTTCAAGCGTCGCCTGAAAGACGCCCAGCAAGAACTCAACGAGAGCTTCGCCGCCTGTTGGAACGACGCTGCGCAACGCGAACAGGCCGAACGCCTGATGCGGCGCATGCAGTTCCTCGACAAGCTGACCTACGAAGTGCGCCAGCTGGAAGAGCGCCTCGACGATTAAMGTPCHFALFQLQPAFQLDLDQLSARYLELARGVHPDRFADASEAEQRRALEQSANLNEAYQTLKSPAKRARYLLAISGHELPLEVTVHDPEFLLQQMQWREELEDLQDSADLAGVAVFKRRLKDAQQELNESFAACWNDAAQREQAERLMRRMQFLDKLTYEVRQLEERLDDNANANANANA
D1-35_000091863hscACOG0443Chaperone protein HscAATGGCCCTACTGCAGATCGCCGAACCCGGCCAAAGTCCACAACCGCACCAGCGTCGCCTGGCTGTCGGGATCGACTTGGGTACCACCAATTCCCTGGTCGCTGCTTTGCGCAGCGGTCTTTCCGAGCCGCTGGCCGACGAGCAGGGGCGGGTGATCCTGCCGTCTGCCGTGCGCTACCACGCCGATCGCGTCGAAGTTGGCGAGTCGGCGAAGCTGGCCGCCGCCACCGATCCACTCAATACCGTCGTGTCGGTCAAGCGCTTGATGGGTCGTGGTCTGTCCGACGTCAAGCAATTGGGCGATCAACTGCCGTACCGTTTCGTCGGCGGCGAATCCCACATGCCGTTCATCGAGACCGTGCAGGGCCCGAAAAGCCCGGTAGAAGTTTCCGCCGATATCCTCAGGGTCCTGCGTCAGCGCGCCGAAGCCGCGTTGGGCGGTGAACTGGTGGGCGCGGTGATCACCGTTCCGGCCTATTTCGATGATGCCCAGCGCCAAGCCACCAAGGACGCGGCCAAGCTCGCCGGTCTCAACGTGCTGCGTCTGCTCAACGAGCCGACGGCGGCTGCGGTGGCGTACGGGCTGGACCAGCATGCCGAGGGCCTCGTCGCCATTTACGACCTGGGCGGCGGCACGTTTGATATTTCGATCCTGCGCCTGACCGGCGGGGTCTTCGAAGTCCTCGCCACCGGTGGCGACAGCGCCCTGGGCGGCGACGATTTCGATCACGCTATTGCCGGCTGGATCATCGAGCAGGCGGGGTTGTCCGCCGATCTCGATCCGGGGACCCAGCGCCATCTGCTGCAAACCGCCTGCGCCGCCAAGGAAGCCTTGACCGACGCCGCCAGCGTTGAAGTCGCTTACGGCGAATGGACAGCCACGCTGACCCGCGAAGCCTTCAATGCCCTGATCGAACCCATGGTCGCCCGCAGCCTCAAGGCCTGCCGCCGTGCCGTGCGTGATTCCGGCATCGAGCTGGAAGATGTCAAGGCCGTGGTCATGGTCGGTGGTTCGACCCGCGTGCCTCGGGTTCGCGAAGCCGTTGCCGAAGCCTTTGGCCGCCAGCCGCTGACTGAAATCGACCCGGACCAGGTGGTCGCCATCGGTGCCGCGATCCAGGCCGATACCCTGGCTGGCAACAAGCGCGAGGGCGGCGAATTGCTGCTGCTCGACGTGATTCCGTTGTCCCTGGGCCTGGAAACCATGGGCGGCCTGATGGAGAAGGTGATCCCGCGCAACACCACCATCCCCGTCGCTCGCGCCCAGGATTTCACTACTTATAAAGACGGCCAGTCGGCCATGATGATTCATGTGCTGCAAGGCGAGCGTGAATTGATCAGCGACTGCCGCTCCCTCGCGCGTTTCGAATTGCGCGGCATCCCGGCGATGGTTGCCGGCGCGGCGAAGATTCGCGTGACCTTCCAGGTCGACGCCGATGGCCTGCTCAATGTCTCCGCCCGCGAACTCGGTTCGGGCGTCGAGGCAAGCATCCAGGTCAAGCCGTCCTACGGCCTGACCGACGGCGAAATCGCCAAGATGCTCAAGGATTCGTTCCAGCACGCCAGCGACGACAAAGTCGCCCGTGTGCTGCGCGAGCAGCAGGTCGATGCCCAGCGCCTGGTCGAAGCCGTGCAAGCCGCCCTCGAAGCCGACGGCGAGCGCTTGCTCGACGCCGAGGAGCGCATGGTCATCGAAATGCAGATGCAAGAACTCTCCGAATTGATCAAGGGCACGGATGGTTATGCCATCGAGCAGCAGACCAAGCGTCTGTCGCAAGTCACCGATGCCTTTGCTGCCCGCCGCCTGGACTCGACGGTGAAAGCCGCCCTGGCGGGGCGCAACCTGAATGAAATCGAGGAATAAMALLQIAEPGQSPQPHQRRLAVGIDLGTTNSLVAALRSGLSEPLADEQGRVILPSAVRYHADRVEVGESAKLAAATDPLNTVVSVKRLMGRGLSDVKQLGDQLPYRFVGGESHMPFIETVQGPKSPVEVSADILRVLRQRAEAALGGELVGAVITVPAYFDDAQRQATKDAAKLAGLNVLRLLNEPTAAAVAYGLDQHAEGLVAIYDLGGGTFDISILRLTGGVFEVLATGGDSALGGDDFDHAIAGWIIEQAGLSADLDPGTQRHLLQTACAAKEALTDAASVEVAYGEWTATLTREAFNALIEPMVARSLKACRRAVRDSGIELEDVKAVVMVGGSTRVPRVREAVAEAFGRQPLTEIDPDQVVAIGAAIQADTLAGNKREGGELLLLDVIPLSLGLETMGGLMEKVIPRNTTIPVARAQDFTTYKDGQSAMMIHVLQGERELISDCRSLARFELRGIPAMVAGAAKIRVTFQVDADGLLNVSARELGSGVEASIQVKPSYGLTDGEIAKMLKDSFQHASDDKVARVLREQQVDAQRLVEAVQAALEADGERLLDAEERMVIEMQMQELSELIKGTDGYAIEQQTKRLSQVTDAFAARRLDSTVKAALAGRNLNEIEEPGPT0014555_5374DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014555-dnaK-K04043NANA
D1-35_00010342fdx_1COG06332Fe-2S ferredoxinATGCCGCAGGTGATTTTTCTGCCCCACGAGAAGTTCTGCCCGGACGGCATGGTCGTGGAAGCCGAGCCCGGAACGTCCATTCTTGACCTGGCCCACGAACACCACATCGAGATGGAAAGCGCCTGTGGCGGCGTTTGCGCTTGCACGACCTGCCACTGCATCATTCGTGAAGGTTTCGAGTCGCTGGAAGAGGCGGACGAGCTGGAAGAAGACTTTCTTGACCGCGCCTGGGGGCTTGAGCCGCAGTCGCGTCTGGGGTGCCAGGCTATCGTCGGCACTGAAGACCTGACCGTCGAAATCCCGAGATACTCACTTAACCATGCGGCCGAAGCGCCGCACTGAMPQVIFLPHEKFCPDGMVVEAEPGTSILDLAHEHHIEMESACGGVCACTTCHCIIREGFESLEEADELEEDFLDRAWGLEPQSRLGCQAIVGTEDLTVEIPRYSLNHAAEAPHPGPT0006786_368PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-ENERGY_METABOLISMPUTATIVE-FE-S_CLUSTER_BIOGENESIS,PGPT0006786-fdx|cndB-K04755
D1-35_00011201iscXCOG2975Protein IscXATGAGCTATGGTTGGAATGATGTACAACGCATCGCGGAAGAATTGGCCGAAGCCCACGAGGGTCTCGATCCGTACTCTGTAGGTTTCGTCCGTCTGCAGCAGATGATCCTTGAGCTGCCTGACTTCGATTCCACCTCTGGCCGAGTCGGCGAGAAGGTGTTGGAAGCGGTTCAGGAGCTCTGGGCCGCAGAATTGGACTGAMSYGWNDVQRIAEELAEAHEGLDPYSVGFVRLQQMILELPDFDSTSGRVGEKVLEAVQELWAAELDNANANANANA
D1-35_00012426ndkCOG0105Nucleoside diphosphate kinaseATGGCTGTTCAACGTACTTTCTCCATCATCAAGCCTGACGCCGTTGCTAAAAACGTGATCGGCAAGATCGTTACCCGCTTCGAAGACGCTGGCCTGCGCGTTGTAGCTTCGAAAATGAAGCAACTGTCCAAAGCCGAAGCCGAAGGCTTCTACGCCGAGCACAGCGAGCGCGGTTTCTTCGGTGAACTGGTTGCCTTTATGACTTCCGGTCCGGTTGTCGTTCAGGTGCTGGAAGGCGAAAATGCCATCGCTCGCAACCGTGAGCTGATGGGCGCTACCAACCCTAAAGAAGCTGCTGCCGGCACCATCCGTGCTGACTTCGCTGAATCCATCGACGCCAACGCCGTCCACGGTTCGGACTCCGAAGCCGCCGCTGCTCGCGAAATCGCTTACTTTTTCTCCGCTACTGAAGTAACCACTCGCTAAMAVQRTFSIIKPDAVAKNVIGKIVTRFEDAGLRVVASKMKQLSKAEAEGFYAEHSERGFFGELVAFMTSGPVVVQVLEGENAIARNRELMGATNPKEAAAGTIRADFAESIDANAVHGSDSEAAAAREIAYFFSATEVTTRPGPT0021210_3568DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021210-ndk-K00940NANA
D1-35_000131149rlmNCOG0820Dual-specificity RNA methyltransferase RlmNATGACTACATCGAACGGCAAAACCAACCTGTTGGGCCTGACCCAGCCGGAAATGGAGAAATTCTTCGACTCGATCGGGGAGAAGCGTTTCCGTGCCGGTCAGGTGATGAAATGGATTCACCACTTTGGCGTCGACGATTTCGACGCCATGACGAATGTCGGCAAGGCCCTGCGCGAAAAGCTCAAGGCCGTTGCCGAGATTCGCGGCCCCGAAGTGGTCAGCCAGGACATTTCCAGCGACGGCACCCGCAAGTGGGTGGTGCGCGTGGCGTCCGGCAGCTGCGTCGAGACCGTCTACATTCCCCAGGGCAAGCGCGGCACCTTGTGCGTTTCGTCCCAGGCAGGCTGTGCCCTGGATTGCAGTTTCTGCTCCACCGGCAAGCAAGGCTTCAACAGCAACCTCACCGCCGCCGAAGTGATCGGCCAGGTGTGGATTGCCAACAAATCCTTTGGCAGCGTCCCGGCAACCGTCGACCGTGCCATCACCAACGTGGTGATGATGGGCATGGGGGAGCCGCTGCTGAACTTCGACAACGTCGTCTCCGCCATGCACCTGATGATGGACGACCTGGGCTACGGCATCTCCAAGCGCCGCGTGACCCTGTCCACCTCCGGCGTGGTGCCGATGATCGATGAGCTGGCCAAGCACATCGACGTCTCCCTGGCGTTGTCGCTGCACGCACCGAATGACGCATTGCGTAACCAATTGGTGCCGATCAACAAGAAATATCCGCTTAAGATGCTGCTCGAGTCGTGCCAGCGCTACATGTCGTCCCTGGGCGAAAAACGCGTGCTGACCATCGAGTACACCTTGCTCAAGGACGTGAATGACAAGGTTGAACACGCGGTCGAGATGATCGAGCTGCTCAAGAACATCCCGTGCAAGATCAACCTGATCCCGTTCAACCCGTTCCCGCATTCCGGCTACGAGCGTCCGAGCAACAATGCGATTCGTCGGTTCCAGGATCAGCTTCACCACGCTGGCTTCAACGTCACCGTGCGCACCACCCGTGGCGAAGACATCGATGCCGCGTGTGGCCAATTGGTAGGACAGGTGCTGGATCGCACCCGTCGCAGCGAACGCTACATTGCCGTGCGCGAATTGAACGCCGCGGACGATGCAGTACAGAACGCTGCGAACAGTCACTAAMTTSNGKTNLLGLTQPEMEKFFDSIGEKRFRAGQVMKWIHHFGVDDFDAMTNVGKALREKLKAVAEIRGPEVVSQDISSDGTRKWVVRVASGSCVETVYIPQGKRGTLCVSSQAGCALDCSFCSTGKQGFNSNLTAAEVIGQVWIANKSFGSVPATVDRAITNVVMMGMGEPLLNFDNVVSAMHLMMDDLGYGISKRRVTLSTSGVVPMIDELAKHIDVSLALSLHAPNDALRNQLVPINKKYPLKMLLESCQRYMSSLGEKRVLTIEYTLLKDVNDKVEHAVEMIELLKNIPCKINLIPFNPFPHSGYERPSNNAIRRFQDQLHHAGFNVTVRTTRGEDIDAACGQLVGQVLDRTRRSERYIAVRELNAADDAVQNAANSHNANANANANA
D1-35_00014759hypothetical proteinATGTCCCTGCGCTTTGCGCTGCTGTTGCTGCTGGCCGGTCTTTGTTCCGGTTGTGTTCTGTCGGGCGACTATAACCCGATGAAAACCAGCAAGGGCCGTGACGAAGCGCGCGAGGCCTATGTGCAGCTGGGCATCGGCTATTTGCAACAGGGCATGACCGAACGGGCCAAGGTGCCGCTCAAGAAGGCCCTTGAGCTGGACAGCTCGGACGCCGATGCCAATGCGGCGCTGGCCCTGGTGTTCCAGGCCGAGATGGAGCCGGAACTGGCCGACGAACACTTTCGCAAGGCGTTGTCCGCTCGCCCGCAAGACGCCCGGATCCTCAACAACTACGGCAGCTTCCTCTACGAGCAGGCACGCTACAAGGAAGCCTACGAGCGCTTCGAGCAAGCGGCCGCCGATACCCTTTACCCTGAGCGTTCGCGGGTGTTCGAGAACCTCGGCATGACCGCCGCGAAACTCGGCCAGCGTGACCTGGCCCGCCAGCAGCTCGAAAAGGCGCTGCGGCTCAACCGCCAGCAACCGCGCGCGTTGCTGGAAATGGCTGAGTTGTCTTACGAAGACAGGCATTATGTGCCCGCTCGCGACTATTACGAGCGGTTTAGCCTGCTCAGCGAGCAAAATGCACGTAGTCTATTGCTCGGCGTTCGGCTGGCGCATGTGTTTGAAGATCGTGACAAGGCCGCCAGTTATGGCCTGCAACTCAAAAGACTCTATCCCGGTACGCCGGAATATCAGCAATACCTGTCGGAGCAATGAMSLRFALLLLLAGLCSGCVLSGDYNPMKTSKGRDEAREAYVQLGIGYLQQGMTERAKVPLKKALELDSSDADANAALALVFQAEMEPELADEHFRKALSARPQDARILNNYGSFLYEQARYKEAYERFEQAAADTLYPERSRVFENLGMTAAKLGQRDLARQQLEKALRLNRQQPRALLEMAELSYEDRHYVPARDYYERFSLLSEQNARSLLLGVRLAHVFEDRDKAASYGLQLKRLYPGTPEYQQYLSEQPGPT0015935_720DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015935-pilF-K02656NANA
D1-35_000151032rodZCOG1426Cytoskeleton protein RodZATGAAAGCGGCGCATCCCGAAGTTGTAGCAGCGACTCGCGTAAATCCCGGTGAGACCCTGCGTCAAGCCCGCGAAAGCAATGGTTGGTCGCTGGCCGAAGTGGCCCTCAAGCTCAATCTCACCGTGACTTCCCTGAGCAACCTGGAAGCCGGCGCGTTCGACAAATTGCCTGGGCATACTTTCGCCCGGGGCTACATCCGCGCCTATGCCAAGTTGCTTGGCATGGACCAGACCGTGCTGGTCCAGCAATTCGATCAATACACCGGTTCCGACGCCCAGGGCAGCAGTGTGCACAGCCTGGGCCGTATCGAGGAGCCAGTGCGCGTTTCCCATACCATTTTGCGTATCGTCAGCCTGTTGCTGCTGATCGCGGTGATCGGTGGCGGTTTCGTCTGGTGGCAGGATCAGGCTTCCTTGCGCAGCAAGGAGCCGGTTGCGATGAACCCTGAGCATGTCGAAGTCGAAGGCGCCGACGGCACCACCCAGATTCATCCGCTGGATGAACCGGAAGACCAGGCTGTTGTCGAGGGGCAGACTGAGGGTGAAACCGCCCTGGCATTGCCTCAAGGCCAAGATAACGGCGAGACTGATGCCGCCGCGGGTGCCGAGCCTGTCGTGCCATCCGTTCCCGCGCCAGCCCCAACACCTGCCGCCCCCACGGCTCCGGCCCATTCCGGCAGCGCGCCGACCACCCCGGCGGCTCCTGCTCCTGTCACGCCAGCGCCAACCGTGGCCGCTCCGGCCGTGCCAGCAGCGCCAGCAACCCCGGCGGCCCCGGCTCCTGCGCCCGGCGATGGCCAGGTACAGATCCAGTTCACCGCCGATTGCTGGACGCAGATTACCGACGGCAACGGCAAGGTCCTGTTCAGCGGCCTCAAGCGCAAGGGCGACAGCACGTCCGTCAACGGCCGGCCGCCGTTTGCCGTACGCCTGGGCTATGCCCGTGGCGCGCAGGTCAGCTACAACGGCCAGCCGGTCGATGTGGCTCCGTTCACCAGTGGCGAGACCGCTCGCCTGAAGTTGGGTCAATAAMKAAHPEVVAATRVNPGETLRQARESNGWSLAEVALKLNLTVTSLSNLEAGAFDKLPGHTFARGYIRAYAKLLGMDQTVLVQQFDQYTGSDAQGSSVHSLGRIEEPVRVSHTILRIVSLLLLIAVIGGGFVWWQDQASLRSKEPVAMNPEHVEVEGADGTTQIHPLDEPEDQAVVEGQTEGETALALPQGQDNGETDAAAGAEPVVPSVPAPAPTPAAPTAPAHSGSAPTTPAAPAPVTPAPTVAAPAVPAAPATPAAPAPAPGDGQVQIQFTADCWTQITDGNGKVLFSGLKRKGDSTSVNGRPPFAVRLGYARGAQVSYNGQPVDVAPFTSGETARLKLGQNANANANANA
D1-35_000161110ispGCOG08214-hydroxy-3-methylbut-2-en-1-yl diphosphate synthase (flavodoxin)ATGCACGGCGAATCTCCTATCAAGCGTCGCGAATCCCGGAAGATCTGGGTCGGTAACGTGCCCGTGGGCGGCGATGCGCCAATCGCTGTGCAGAGCATGACCAACAGCGACACCAATGACGTGGCCGCCACGGTCGCGCAAATCAATCGTCTTGAAGCCGCCGGCGTCGATATCGTCCGCGTATCCGTGCCGGACATGGACGCCGCCGAGGCGTTCGGCAAGATCAAGCAGCTGGTCAAGGTGCCGTTGGTGGCCGACATTCACTTCGACTACCGCATTGCCTTGCGCGTGGCCGAGCTGGGCGTCGACTGCCTGCGTATCAACCCGGGCAACATCGGTCGCGAAGATCGCGTGCGCGCGGTGGTGGATGCCGCCCGTGATCGCGGCATTCCGATCCGTATCGGCGTCAATGCCGGTTCCCTGGAAAAAGACCTGCAGAAGAAGTACGGCGAACCGACTCCGGCCGCGCTGGTGGAATCGGCGCTGCGCCATGTCGAGCACCTTGAACGCCTGAATTTCCCGGACTTCAAGGTCAGCGTGAAGGCCTCCGACGTGTTCATGGCCGTCGAAGCCTACCGCCTGCTGGCCAAGGAAATCGTCCAGCCGTTGCACCTGGGCATCACCGAAGCCGGTGGGTTGCGCTCGGGTACGGTGAAATCTGCCGTCGGCCTCGGTATGCTGCTCGCCGAAGGGATTGGCGATACCATCCGCATCTCGTTGGCGGCGGACCCGGTCGAGGAAGTGAAAGTCGGCTACGACATCCTCAAGTCCCTGCACTTGCGTTCCCGTGGGATCAACTTCATCGCCTGCCCGAGCTGCTCGCGGCAGAACTTCGATGTGGTCAAGACCATGAACGAGCTGGAAGGGCGCCTTGAAGACCTGCTGGTGCCGCTGGATGTCGCGGTGATCGGTTGCGTGGTCAACGGGCCCGGCGAAGCCAAGGAGGCCCATATCGGCCTGACGGGCGGCACGCCGAACCTGATTTACATCGACGGCAAGCCGTCGCAGAAACTGACGAATGACAATCTGGTGGATGAGCTGGAAAAGCTGATCCGCCAGAAAGCGGCCGAAAAGGTCGAAGCCGACGCAGCGGTCATCGCGCGCGGTTAAMHGESPIKRRESRKIWVGNVPVGGDAPIAVQSMTNSDTNDVAATVAQINRLEAAGVDIVRVSVPDMDAAEAFGKIKQLVKVPLVADIHFDYRIALRVAELGVDCLRINPGNIGREDRVRAVVDAARDRGIPIRIGVNAGSLEKDLQKKYGEPTPAALVESALRHVEHLERLNFPDFKVSVKASDVFMAVEAYRLLAKEIVQPLHLGITEAGGLRSGTVKSAVGLGMLLAEGIGDTIRISLAADPVEEVKVGYDILKSLHLRSRGINFIACPSCSRQNFDVVKTMNELEGRLEDLLVPLDVAVIGCVVNGPGEAKEAHIGLTGGTPNLIYIDGKPSQKLTNDNLVDELEKLIRQKAAEKVEADAAVIARGPGPT0007580_3271DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007580-gcpE|ispG-K03526NANA
D1-35_000171290hisSCOG0124Histidine--tRNA ligaseGTGAGCAAGTCTCTGCAAGCCATTCGTGGCATGAACGACATCCTGCCCGAGCAGACGCCCCTGTGGCGCTATTTCGAGGGCACCGTCGCGCGCCTGCTGGATAACTACGGTTACCGGCAGATCCGCATGCCCATCGTCGAGTTCACCGAGCTGTTCAAGCGCTCCATCGGTGAAGTGACCGACATCGTCGAAAAAGAGATGTACACCTTCGACGACCGCAACGGCGATTCCCTGACCCTGCGCCCCGAAGGCACGGCAGCATGCGTGCGTGCAGTGCTTGAGCACGGCATCACCGGCGGCGGCCAGGTGCAGAAACTCTGGTACATCGGCCCGATGTTCCGCCACGAGCGTCCGCAGAAAGGTCGTTATCGCCAGTTTCACCAGATCGGCCTCGAAGTATTCAACCTTGAAGGTCCGGACATCGATGCCGAGCTGATTGTGATGACCTGGCGCCTGTGGGGCGAGCTGGGCCTGCGCGATGCGGTCAAGCTTGAGCTCAACAGCCTGGGCACCAGCGAATCCCGTGGCCGCTACCGCGAGGCGTTGGTGGAGTTTCTGTCCGCCCATGTCGACAAGCTCGACGAAGACAGCCAGCGCCGCCTGAAGACCAACCCGCTGCGCGTGCTTGATACCAAGCACCCGGAGACCCAGGCGATCCTGGTGGACGCGCCGAAAATGGCCGACTACCTCGACGACGAATCCCGCGCGCATTTCGAAGGGCTGAAGGCACGTCTGGACGCCGTCGGCATCCCTTACGTGATCAACCCCAAGTTGGTCCGTGGCCTGGATTACTACAGCAAGACCGTCTTCGAGTGGGTCACCGACAAGCTCGGCGCCCAAGGCACCGTGTGCGCCGGTGGCCGCTACGACGGGCTGGTGGAGCAGATGGGCGGCAAGCCGACCCCGGGCGTGGGTTTTGCCATGGGCATCGAGCGTCTGGTGCTGATGCTTGAAGCGCTGGACAAGGTGCCGGAAGAGCTGGCCCGCCAGGTCGATGTGTACCTCTGCGCCTTTGGCGAGGCCGCCGAACTGGCCGCCCTGGCCCTGAGCGAGCGAGTGCGCGATCAGTTGCCCAACCTGCGCCTGCAGATCAACGCCGGCGCCGGCAGCTTCAAGAGCCAATTCAAGAAGGCCGACAAGAGCGGTGCACTGTACGCACTGATTCTTGGTGACGACGAACTGGCCCAACAAGTGGTAGGTTTCAAACCCCTGCGTGGCCAGGGCGAACAACAAAGCATTGCCTGGGATGCGCTTGCTGCACACCTGGCCACCTGCGTCGTGCAGGGTTGAMSKSLQAIRGMNDILPEQTPLWRYFEGTVARLLDNYGYRQIRMPIVEFTELFKRSIGEVTDIVEKEMYTFDDRNGDSLTLRPEGTAACVRAVLEHGITGGGQVQKLWYIGPMFRHERPQKGRYRQFHQIGLEVFNLEGPDIDAELIVMTWRLWGELGLRDAVKLELNSLGTSESRGRYREALVEFLSAHVDKLDEDSQRRLKTNPLRVLDTKHPETQAILVDAPKMADYLDDESRAHFEGLKARLDAVGIPYVINPKLVRGLDYYSKTVFEWVTDKLGAQGTVCAGGRYDGLVEQMGGKPTPGVGFAMGIERLVLMLEALDKVPEELARQVDVYLCAFGEAAELAALALSERVRDQLPNLRLQINAGAGSFKSQFKKADKSGALYALILGDDELAQQVVGFKPLRGQGEQQSIAWDALAAHLATCVVQGNANANANANA
D1-35_00018642hypothetical proteinGTGTCGAGTACCGAAGATGAACAGCTGGCGGATTTGAAGGACTGGTGGACGCGCAACGGCAAGCCGCTGGTCACTGGCGGCCTGTTGGCGCTGGTCATCGTGTTCGGCTGGCAGGCCTACCAGAAATACCAGAGCAACCAGTCGCAAGGTGCCTCGGTGCTTTACCAGCAACTGCTGGAAACCACCCTGACCCCCGACGGCAAGCCTGACGCGGCGCGCGTGGCCGACCTGGCCGGCAAGCTCAACAAAGAGTTCGGCGGCACCGCCTATGCCCAGTACGGCAGCCTGTTCGTGGCCAAGGTCGCGGTCGACAGCGGCAAGCTGGACGACGCGGTCACCGAGCTGAAAGCCATCGTCGACAAACCGGCCAACCCGACCCTGGGCGAAGTCGCGCGTCAGCGCCTGGCGCAGGTGCTGGCAGCACAGAACAAGGCCGAAGACGCGCTGAAGCTGCTCGACGGCGACGCCGACAAGGCGTTCCTGGCGACCCGCGAAGAACTCAAGGGCGACCTGCTGGTACAGCTGGGCCGTGCCAATGAGGCCCATGCGGCCTACCAAAAAGCCAAGGCTGCGCTGTCGGATGAAGCCGCAGTCGGTGGCCTGCAAATCAAGCTGGACGACCTGGCCAAAGGGGATGCGTGAMSSTEDEQLADLKDWWTRNGKPLVTGGLLALVIVFGWQAYQKYQSNQSQGASVLYQQLLETTLTPDGKPDAARVADLAGKLNKEFGGTAYAQYGSLFVAKVAVDSGKLDDAVTELKAIVDKPANPTLGEVARQRLAQVLAAQNKAEDALKLLDGDADKAFLATREELKGDLLVQLGRANEAHAAYQKAKAALSDEAAVGGLQIKLDDLAKGDANANANANANA
D1-35_000191206bamBCOG1520Outer membrane protein assembly factor BamBATGAAGCCGCAGTCGGTGGCCTGCAAATCAAGCTGGACGACCTGGCCAAAGGGGATGCGTGACGTGATCCGTTGGAAACATGCAGCATTGCTGGCCCTGGCCATTCTGGCCGCGGGTTGCAGCAGCAACAGCAAGAAAGAACTGCCTCCGGCCGAACTGACCGATTTCAAAGAAGAAGTCGTGCTGCAGAAGCAATGGAGCCGCTCCATCGGTGACGGCCAGGGTGAAACCTACAACATGCTGGTGCCGGCCATCGACGGCGACACCCTCTATGCCGGCGACGTGACTGGCGTCGTCATGGCCATGGATCGCATGAGCGGCGACGTCAAATGGGAAAAGGATCTTGAGCTGCCTGTGTCCGGCGCCGTTGGCGTGGGTTACGGGCTGGTCATGATCGGCACGCTCAAGGGCGAGATCGTCGCCCTGGACGCGAGCAGCGGTGAAGAGAGATGGCGCGCCCGCGTGACCAGCGAAGTGCTCGCGCCGCCCGCTACCAACGGTGACGTGGTGGTGGTGCAGACCCAGGACGACCGCCTGATTGGCCTGGATGCCGCCACCGGCAACCAGCGCTGGTTGTACGACAGCACTCCGGCGGTACTGACCCTGCGTGGCACCAGTGCGCCGATCGTCACCAACCGCCTCGCGGTGGCTGGCTTGTCGACCGGTAAAGTCGTGGCCCTGGATATTTCCAACGGCGTACCGGTCTGGGAACAGCGCGTAGCGATCCCGCAAGGTCGTTCGGAGCTGGAGCGTGTGGTCGACATCGACGGCGGCCTGCTGCTGTCCGGCGGTACGCTGTACGTCGCCAGTTACCAGGGCCGCGTTGCGGCGCTGGACCTGGAAAGCGGCCGTCCGTTGTGGCAGCGCGATGCGTCGAGCTACGCCGGTGTCGCCCAAGGTTTCGGTAGCGTCTACGTGAGCCTGTCCTCGGGCACCGTCGAAGGTGTTGACGAGCGTTCCACCACCGCATTGTGGAGCAACGACTCCCTGGCCCGTCGCCAACTGTCGGCCCCGGAAGTGTTCTCCAGCTACGTTGCAGTGGGTGACCTGGAAGGTTACCTGCACCTGCTCAGCCAGGTTGACGGTCGTTTCGTCGGTCGCGAGCGCATCGACAGCGACGGCCTGCGTGCCCGTCCGCTGGTGGTGGGAAACATGATCTATGTGTATGGCAACAGCGGCAAACTGGAAGCCCTGACCATCAAGTAAMKPQSVACKSSWTTWPKGMRDVIRWKHAALLALAILAAGCSSNSKKELPPAELTDFKEEVVLQKQWSRSIGDGQGETYNMLVPAIDGDTLYAGDVTGVVMAMDRMSGDVKWEKDLELPVSGAVGVGYGLVMIGTLKGEIVALDASSGEERWRARVTSEVLAPPATNGDVVVVQTQDDRLIGLDAATGNQRWLYDSTPAVLTLRGTSAPIVTNRLAVAGLSTGKVVALDISNGVPVWEQRVAIPQGRSELERVVDIDGGLLLSGGTLYVASYQGRVAALDLESGRPLWQRDASSYAGVAQGFGSVYVSLSSGTVEGVDERSTTALWSNDSLARRQLSAPEVFSSYVAVGDLEGYLHLLSQVDGRFVGRERIDSDGLRARPLVVGNMIYVYGNSGKLEALTIKNANANANANA
D1-35_000201473derCOG1160GTPase DerATGGTTCCCGTAATCGCCCTGGTGGGCCGACCGAACGTCGGCAAGTCCACCTTGTTCAACCGCCTGACCAGGACTCGCGACGCTATCGTCGGCGACTTGTCCGGTCTGACCCGTGATCGCCAATACGGTGAGGCCAAGTGGCAAGGGCGTACCTATATTCTGGTCGACACCGGTGGCATCTCCGGTGATGAACACGGCATGGACGAAAAAATGGCCGAGCAGTCGCTGCTCGCCATCGAAGAAGCCGATGTGGTGCTGTTCCTGGTAGACGCCAAGGCCGGTTTTACCGCCGCCGACCAGATGATCGCCGAGCATTTGCGCAAACGTAACAAGCGTTCCTATGTGGTCGCCAACAAGGTCGACAATATCGACCCGGACATGGCTCGCGCCGAGTTCGCACCTTTGGGCATGGGCCAGGCGATTCCGATCGCCGGTGCCCACGGTCGCGGCATCACCCAGATGCTGGAAATCGCCCTGGCTGATTTCCCCAAGGACGATGAAGACGAGCCGGAAGAGGGCGAGGAAGAAGTCGTTGCCGAGGGCGAGGAAGCCAAGCGCATTCCGGGTCCGAGCGAAAAGGACGGCATCAAGATCGCTATCATCGGCCGCCCGAACGTCGGCAAGTCGACGCTGGTCAACCGCATGCTCGGTGAAGACCGGGTCATCGTCTACGACCAGCCCGGCACCACCCGTGACAGCATCTACATTCCCTTCGAGCGTAACGAAGAGAAGTACACGCTGATTGACACGGCCGGTGTGCGCAAGCGCGGCAAGATCCACGAAGAAGTCGAAAAATTCTCCGTGGTCAAAACGCTGCAGGCGATCAAAGACGCCAACGTGGTCATCTTCGTGATGGACGCCCGCGAAGGCGTGGTCGATCACGACTTGAACCTGCTGGGCTTCGCCCTGGAAGCCGGTCGTGCACTGGTCATCGCGATCAACAAGTGGGACGGCATGACGCCGAGCGAGCGCGATTACGTCAAGGTCGAACTGCAGCGTCGGCTGTTCTTCGTCGACTTTGCCGACATCCACTTCATCTCGGCCCTGCACGGTACCGGCGTGGGCAACCTCTACGCCTCGGTGCAGAACTCGTTCAAGTCGGCGGTTACCCGCTGGCCGACCAACCGCCTGACCCAGATTCTCGAAGACGCGGTCGGCGAGCATGCGCCACCGATGGTCAACAACCGCCGGATCAAGCTGCGCTACGCCCACTTGGGCGGTGCCAACCCACCGATCATCGTGATCCACGGTAACCAGATCGAGAAGGTGCCCAAGTCCTACGTTCGTTATCTGGAAAACACTTACCGTCGCGTCCTGAAGCTGGTCGGCACGCCGATCCGCATCGAGTTCAAGGGCGGCGAGAACCCGTACGAAGGCAACAAGAACACGCTCACCGACCGCCAGGTCAACAAGAAGCGCCGCTTGATGTCGCACCACAAGAAGGCCGACAAGAAGCGCCGCGACAAGCGCTGAMVPVIALVGRPNVGKSTLFNRLTRTRDAIVGDLSGLTRDRQYGEAKWQGRTYILVDTGGISGDEHGMDEKMAEQSLLAIEEADVVLFLVDAKAGFTAADQMIAEHLRKRNKRSYVVANKVDNIDPDMARAEFAPLGMGQAIPIAGAHGRGITQMLEIALADFPKDDEDEPEEGEEEVVAEGEEAKRIPGPSEKDGIKIAIIGRPNVGKSTLVNRMLGEDRVIVYDQPGTTRDSIYIPFERNEEKYTLIDTAGVRKRGKIHEEVEKFSVVKTLQAIKDANVVIFVMDAREGVVDHDLNLLGFALEAGRALVIAINKWDGMTPSERDYVKVELQRRLFFVDFADIHFISALHGTGVGNLYASVQNSFKSAVTRWPTNRLTQILEDAVGEHAPPMVNNRRIKLRYAHLGGANPPIIVIHGNQIEKVPKSYVRYLENTYRRVLKLVGTPIRIEFKGGENPYEGNKNTLTDRQVNKKRRLMSHHKKADKKRRDKRNANANANANA
D1-35_000211149ybdLCOG0436Methionine aminotransferaseATGATCACCAGCAAGTTGCCGAATGTCGGCATCACCATTTTTACCCAGATGTCCCAGCTTGCCGCGCAGACCGGTGCGCTGAACCTGTCCCAGGGCTTTCCCGATTTCGATGGCCCGCAGGCCCTGCGCGATGCAGTGGGCCGGCATATCGCCCAAGGCCACAATCAATATTCGCCGATGACCGGCCTGCCAGCCCTGCGCCAGCAGATCGCGGCAAAGATCGCCCGCAGCTATGGCGCCAGCGTCGACGCCGATCAGGAAGTCACCGTGACCCCCGGCGCGACCCAGGCGATTTTCTGCGCCATCGCGGCGGTGGTACACAGCGGCGACGAAGTGATCGTCTTCGACCCAGCGTACGACAGCTACGAACCTGCCGTGCAACTGGCCGGCGGGCGTTGCGTACATGTGCAACTGGGCCTGGATGATTTTGCCATCGACTTCCAGAAGCTTGGCGAAGCCCTGAGTCCGCGCACGCGAATGATCATCCTCAACACGCCGCACAACCCCAGCGGCGCATTGATCAGCCGCGCCGAGCTGGACCAGTTGGCGGCGTTGATTCGCGACCGCGACATCTACCTGATCAGCGATGAGGTTTATGAGCATCTGGTATTCGACGACGTGCCCCATGTCAGCGTCCTTGCCCACGAAGAGCTTTATCGCCGTGCCTTCGTCGTCAGTTCGTTCGGCAAGACCTACCACGTCACGGGCTGGAAAACCGGCTACGTCGTCGCGCCAGCGGCCCTGACGGCGGAGCTGCGCAAGGTGCACCAGTACGTCAGTTTCTGCGGGGTGACACCGTTGCAATACGCGTTGGCCGACTACATGGCCGAGCATCCGGAGCATGTCGATGAACTGCCGGATTTCTATCAGGCCAAGCGCGACCTGTTCTGCGATCTGCTGGCGCCGTCGCGCTTCACTTTCCAGCGTGTCGCCGGCACGTATTTCCAGTTGGTGGATTATTCGCAGATCCGCCCGGACCTCAATGACGTCGACATGGCGCTCTGGATGACCCGCGAACACGGCGTGGCGACCATTCCGATCTCGGTGTTCTACCAGAACCCGCCGCAGGGCCAGCGCCTGGTGCGCCTGTGTTTTGCCAAACGCGAGGAGACGCTGCGCGAAGCGGCGGAAAAACTATGCGTGATCTGAMITSKLPNVGITIFTQMSQLAAQTGALNLSQGFPDFDGPQALRDAVGRHIAQGHNQYSPMTGLPALRQQIAAKIARSYGASVDADQEVTVTPGATQAIFCAIAAVVHSGDEVIVFDPAYDSYEPAVQLAGGRCVHVQLGLDDFAIDFQKLGEALSPRTRMIILNTPHNPSGALISRAELDQLAALIRDRDIYLISDEVYEHLVFDDVPHVSVLAHEELYRRAFVVSSFGKTYHVTGWKTGYVVAPAALTAELRKVHQYVSFCGVTPLQYALADYMAEHPEHVDELPDFYQAKRDLFCDLLAPSRFTFQRVAGTYFQLVDYSQIRPDLNDVDMALWMTREHGVATIPISVFYQNPPQGQRLVRLCFAKREETLREAAEKLCVIPGPT0020025_883DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020025-ybdL-K14287NANA
D1-35_00022795yafVOmega-amidase YafVATGCGTGATCTGAGCGCGTTGCCCAATCTGAACATTGCCTTGATCCAGACTACGCTGGCCTGGCATGACCGCGGGGCCAACCTGGAACATTTTGACGCGCTGCTCGAACAGGCGCGCGGGGCGGACCTGATCATCCTGCCGGAAATGTTCACCACCGGTTTTTCCATGGAGTCCGAGGCCCTGGCCGAGCCGGAGAACGGCCCCGCCAGCCAGTGGCTCAAGGCCCAGGCGGCAAAGCTGGACGCCGTGATCACCGGCAGCGTGATCATCCAGGCCGCCGACGGCAGCCATCGCAATCGCTTGCTGTGGGCGCGTCCGGATGGCGAGGTGCTGCATTACGACAAGCGTCATCTGTTTCGCATGGCCGGCGAGCACAACCATTACACACCGGGTGACCAGCAGGTGTTGTTCGAGCTCAAGGGCTGGCGGATTCGGCCGCTGATCTGCTACGACCTGCGCTTCCCGGCTTGGAGTCGCGATGCCGAGGACACCGACCTGTTGCTATACACCGCCAACTGGCCGGGCGCCCGGCGTCAGCACTGGAACCGGCTGCTGCCGGCACGGGCCATCGAAAATCTCTGCTATGTGGCGGCGGTGAACCGGATCGGCACCGACGGCAAGGGCTTCGCTTATACCGGAGACAGTCAGGTGCTGGACTTTCAGGGCGAGACGCTGCTCAGTGCCGGCGACGCCGACGGCGTGTTCACGGTGTGCCTGAGCGCGGCGGACCTGGCGGCGTATCGCACACGCTTTCCGGCGAACCTGGACGCTGATCGCTTCGAATTCATCTATTGAMRDLSALPNLNIALIQTTLAWHDRGANLEHFDALLEQARGADLIILPEMFTTGFSMESEALAEPENGPASQWLKAQAAKLDAVITGSVIIQAADGSHRNRLLWARPDGEVLHYDKRHLFRMAGEHNHYTPGDQQVLFELKGWRIRPLICYDLRFPAWSRDAEDTDLLLYTANWPGARRQHWNRLLPARAIENLCYVAAVNRIGTDGKGFAYTGDSQVLDFQGETLLSAGDADGVFTVCLSAADLAAYRTRFPANLDADRFEFIYNANANANANA
D1-35_00023423hypothetical proteinATGACCAGTATCAGCGCAACGACCGTAAACCCTTATCCGCTGTCGGCCCCCAAAGTCTCCATCAGGGGCGCCGAGGAAGAGAAAGCCGTCAGTCCGGTGGTATCGCCTGACACCGGCGAAGAGAAGGACAAGGACAAAGAACTGAAAGTCGACACCAGCGGCGCAAATATCGCCGGTGTTGGCGGCAGCAACGGCAGCAATATCATCGAGCAGCTGAAGAAGCAGATCGAGCGGACCGAAAAGTTGCTGGCCGACCAGCAGGCCCAATTGGCCCGCGTGCAGAAAAGCCGAGCCAATGAGGAGCAGAAAGCCCAGCAGGCCATGGCGATCCAGACCCAGATCATGGGGACCCAGGCGACTTTGCAGACTTTGCAGGCCGCGCTGCTGCAGGCGATGACGGTTTCGATCGATACCCATGCCTGAMTSISATTVNPYPLSAPKVSIRGAEEEKAVSPVVSPDTGEEKDKDKELKVDTSGANIAGVGGSNGSNIIEQLKKQIERTEKLLADQQAQLARVQKSRANEEQKAQQAMAIQTQIMGTQATLQTLQAALLQAMTVSIDTHANANANANANA
D1-35_000241680leuACOG01192-isopropylmalate synthaseATGAGCATGCTCAAAGACCCGTCTTCGAAGTACCGCGCCTTCCCGACCATCAACCTGCCGGATCGCACCTGGCCGTCGAAGACCATCACCGCCGCGCCGATCTGGTGCAGTTCCGACCTGCGTGACGGCAACCAGTCGCTGATCGAGCCGATGGATGCGGCCAAGAAGCTGCGCTTCTGGAAAACCCTCGTTGCAGTGGGCGTGAAGGAAATCGAAGCATCGTTCCCGGCCGCTTCGCAGACTGACTTCGACTTTGTGCGCACCCTCATCGAAGAAGGCCACATCCCGGACGACACCACCATCCAGGTGCTGACCCAGGCCCGTGAAGACCTGATCGCTCGCACCTTCGAGTCCCTGCGTGGCGCGAAGAAAGCCATCGTCCACCTGTATAACGCCACCTGCCCGTCGTTCCGCCGCATCGTGTTCAACCAGGACAAGGAAGGCGTGAAGGAAATCGCCGTGAACGCGGCCAAGCTGTTCGTCAAATACGCCGCCCAGCAGCCGGAAACCCAATGGCAGTTCGAGTACTCGCCAGAAACCTTCAGCGCGACCGAGCTGGAGTTCGCCAAGGAAGTCTGCGATGCGGTGATCGAAGTGTGGAACCCGACGCCTGAGCGCAAGGTGATCCTCAACCTGCCGGCCACCGTCGAAGTCGCCACTCCGAACATCTACGCCGACCAGATCGAGTGGTTCCACCGCAACATCACCCGGCGTGACAGCGTGCTCATCAGCCTGCACACCCACAACGACCGTGGCACCGGCGTGGCCGCCACCGAGCTGGGCCTGATGGCCGGCGCCGACCGTGTCGAAGGCTGCCTGTTCGGCAACGGCGAGCGCACCGGCAACGTCGACCTGGTGACCGTGGCGCTGAACCTCTACACCCAGGGCATCGACCCTGAGCTGGACTTCTCCGACATCGACGGCGTGCGCAAGGTCGTCGAGGAATGCAACCAGATCCCGGTCCACCCACGTCACCCGTATGTCGGCGACCTGGTCCACACCGCGTTCTCCGGCTCGCACCAGGACGCAATCCGCAAGGGCTTCGCCCAGCAGAAACCGGATACCCTGTGGGAAGTACCGTACCTGCCGATCGACCCGGCCGACATCGGCCGCAGCTACGAAGCGGTGATCCGCGTGAACAGCCAGTCGGGCAAGGGCGGCATCGCCTACCTCCTGGAGCAGGAATACGGCATCAGCCTGCCGCGCCGCATGCAGATCGAGTTCAGCCAGGTGGTACAGCGTGAAACCGATCGCCTGGGCCTGGAAATGACTGCCCAGCAGATCCACGCCCTGCTTCAGCGCGAATATCTGCAAGCCAACACTCCGTACGCGCTGGTCAGCCATCGCCTGCAGGAAGAGAACGGCAACAGCGCCGTGGAAGTGGAAGTCGCCAGCAAGGGCCAGGGCGAGACCAACCTGCACTGGCGTGGCCGAGGCAACGGCGCGCTGGAAGCGCTGGTGGCCGGGCTGCCGATTCCGGTGGAAATCATGGACTACAACGAACACGCCATCGGCGCCGGCACCAACGCCAAGGCTGCGGCGTACATCGAACTGCGCGTCAACGGCGAACGTGCGGTGCATGGCGTGGGCATCGATGAAAACATCACCACGGCGAGCTTCAAGGCGCTGTTCAGCGCACTGAACCGCTCGCTGAGCCAGCCGGAAGCCAAGGCGGCTTGAMSMLKDPSSKYRAFPTINLPDRTWPSKTITAAPIWCSSDLRDGNQSLIEPMDAAKKLRFWKTLVAVGVKEIEASFPAASQTDFDFVRTLIEEGHIPDDTTIQVLTQAREDLIARTFESLRGAKKAIVHLYNATCPSFRRIVFNQDKEGVKEIAVNAAKLFVKYAAQQPETQWQFEYSPETFSATELEFAKEVCDAVIEVWNPTPERKVILNLPATVEVATPNIYADQIEWFHRNITRRDSVLISLHTHNDRGTGVAATELGLMAGADRVEGCLFGNGERTGNVDLVTVALNLYTQGIDPELDFSDIDGVRKVVEECNQIPVHPRHPYVGDLVHTAFSGSHQDAIRKGFAQQKPDTLWEVPYLPIDPADIGRSYEAVIRVNSQSGKGGIAYLLEQEYGISLPRRMQIEFSQVVQRETDRLGLEMTAQQIHALLQREYLQANTPYALVSHRLQEENGNSAVEVEVASKGQGETNLHWRGRGNGALEALVAGLPIPVEIMDYNEHAIGAGTNAKAAAYIELRVNGERAVHGVGIDENITTASFKALFSALNRSLSQPEAKAANANANANANA
D1-35_00025822hypothetical proteinATGCCGCGATTTCTCGCTCCACTGCTCTTGCTGTGCATCGCCGCCAACGCCCAGGCTGACAGCTACATCACTCGCCTGCTGAACAAGCCGGTGCCCGGCGGCGTGGCCGTGGTGGATCTGGGCAGCGCGGCCCAGGCGCCGAAAGCCACGTACCAGGGCAAACCGGTGCTGGTGGTCAAGGAACAGCAGAACTGGCTGGCAATTGTCGGCATTCCGCTGACCGTCCAACCCGGCACCCAGCAGATCAGCAGTGGTGGCGCCACCCAGCCCTTCGTGGTTGGCTACAAGAAATACCCCGAGCAGCACATCACCCTGAAAAACAAGCGCCAGGTCAATCCGGACCCTGCGGATCTGAAGCGCATCGAGGGCGAGCTTGCGGTGCAGTTGAAGGCCTACCGCAGCTTCAGCCCCAACATCCCCAGCAACCTGCTGCTGGACAAACCGGTGAACGGCCCGCTGTCGAGCAAGTTCGGGGTGCGCCGCTTTTTCAACGGCGAAGAGCGCAACCCTCATTCCGGCCTGGACTTCGCCGTGCCCGCCGGCACGCCGATCAAGACCCCGGCCGCCGGCAAGGTGATCCTCACCGGCAACTACTTTTTCAATGGCAACACCGTGTTCGTCGACCATGGCCAAGGCTTCATCAGCATGTTCTGCCACATGTCGAAGATCGACGTGAAGGTCGGCCAGCAACTGGCGCGCGGCACCGTGGTCGGCAAGGTTGGCGCCACCGGCCGCGCAACCGGGCCGCACATGCACTGGAACATCAGCCTGAATGATGCGCGGGTGGATCCGGCGATCTTTATCGGGGCGTTTCAGCCCTGAMPRFLAPLLLLCIAANAQADSYITRLLNKPVPGGVAVVDLGSAAQAPKATYQGKPVLVVKEQQNWLAIVGIPLTVQPGTQQISSGGATQPFVVGYKKYPEQHITLKNKRQVNPDPADLKRIEGELAVQLKAYRSFSPNIPSNLLLDKPVNGPLSSKFGVRRFFNGEERNPHSGLDFAVPAGTPIKTPAAGKVILTGNYFFNGNTVFVDHGQGFISMFCHMSKIDVKVGQQLARGTVVGKVGATGRATGPHMHWNISLNDARVDPAIFIGAFQPNANANANANA
D1-35_000261389xseACOG1570Exodeoxyribonuclease 7 large subunitATGCCGCCCATGATTAAAGATCCCTTTGCCCGACTGGGCCTGGACCGCGAGGTCCTGACTGTCAGCCAGCTCAACGGCCGTGCGCGGGTGTTGCTCGAAGACGTGTTCAGCAACATCTGGGTCGAGGGCGAGATTTCCAACCTCGCCCGCCCCGCCTCCGGCCACGTGTATTTCACGCTCAAGGACAGCGGCGCCCAGGTGCGTTGCGCGCTGTTCCGACAGAACGCCGCTCGGGTGCGCCAGGCATTGAAAGACGGGCTGGCGGTGAAGGTACGCGGCAAGGTCTCGCTGTTCGAGGGCCGTGGCGACTATCAACTGATCCTCGACACCGTGGAGCCGGCCGGCGATGGTGCCCTGCGCCTGGCGTTCGACGCCCTGAAGGAAAAGCTCAGCGCCGAAGGCCTTTTCAGTGCCGAGCGCAAGGTACCGCTGCCGGCCCATCCGCAACGCATCGGCATCATCAGTTCGCCCACCGGCGCGGTGATCCGCGACATCATCAGCGTGTTCCGTCGCCGCGCGCCGCAGATTTCCCTGACCTTGATTCCGACAGCCGTGCAGGGCCGTGAAGCCACCGCACAGATCGTCCGCGCGCTGAAACTGGCCGATGCCCGAGGCTTCGATGCGCTGATCCTGGCCCGGGGCGGCGGTTCGCTGGAAGACCTGTGGTGCTTCAACGAAGAAGCCGTGGCTCGTGCGGTAGACGCCTGCGTCACGCCCATCGTCAGCGCGGTAGGCCATGAGACCGACGTCTCCATCAGCGATTTCGTCGCCGATGTGCGCGCCCCGACTCCGTCCGCCGCCGCCGAACTGCTCGCACCGGACGCCGGCGACCTGGTGCGCCGGGTCGAAAGCCTGCACCGGCGCCTGGTGATGCGCATGCGCGACCGCCTGATGCGCGACCAGTTGCGCCTCGAAGGCCTCATTCGCCGCCTGCGTCACCCCGGTGAACGCCTGCGCCAGCAAGCCCAGCGCCTCGACGACCTGGACATGCGCATGCGCCGGGCCTTCGAACGCAGCCTCAATACCCGCCGCGAACGCCTGATTCGCCTGGAAACCCGCCTGGCCGGGCAACATCCGGGCCGTCAGCTGGCCATGTTGCGCCATCGCCTCGACAGCCTCGCCGAACGCCTGCCCCGAGCCATGCGCGAAGGCCTGAAAACCCGCCGCGTACAGTTGCACAACCAGATGCAGACGCTGCACATCGTCAGCCCACTGGCGACCCTTGGCCGTGGCTACAGCATCCTGCTCGACGAACGCGGCCATGCGATCCGCAACGCCGGACAAACCCGCACCGGCCAGCGCCTGACCGCCAGGCTCGGCGAAGGGGAACTGCTGGTGCGGGTCGAAGACAATCACCTGACACCGGTCACCCTTTCTCTACTGGATTGAMPPMIKDPFARLGLDREVLTVSQLNGRARVLLEDVFSNIWVEGEISNLARPASGHVYFTLKDSGAQVRCALFRQNAARVRQALKDGLAVKVRGKVSLFEGRGDYQLILDTVEPAGDGALRLAFDALKEKLSAEGLFSAERKVPLPAHPQRIGIISSPTGAVIRDIISVFRRRAPQISLTLIPTAVQGREATAQIVRALKLADARGFDALILARGGGSLEDLWCFNEEAVARAVDACVTPIVSAVGHETDVSISDFVADVRAPTPSAAAELLAPDAGDLVRRVESLHRRLVMRMRDRLMRDQLRLEGLIRRLRHPGERLRQQAQRLDDLDMRMRRAFERSLNTRRERLIRLETRLAGQHPGRQLAMLRHRLDSLAERLPRAMREGLKTRRVQLHNQMQTLHIVSPLATLGRGYSILLDERGHAIRNAGQTRTGQRLTARLGEGELLVRVEDNHLTPVTLSLLDNANANANANA
D1-35_00027888putative metallo-hydrolaseATGCGTATCCATCACCTGAACTGCGGATGCATGTGCCCGGTAGGCGGGGCGCTATTCGATGGTTACAGCCGGGGGCTGACGGCGTGCCTGGTGTGTCATTGCCTGCTGGTTGAAACCGACACCAACGGCCTGGTCCTGGTGGACACCGGGTTTGGCCAGCGGGATGTGCAGACGCCGCAACGGCTGAGCCGATTCTTTCGAGTGTTCAACAACATCCAGTTCGAGCATCGCCTCACGGCTTTGGAGCAGGTGCGGCGATTGGGTTTCGAGGCCAACGATGTACGGCACATCCTGCTGACGCACCTGGATTTCGATCACGCCGGCGGGCTCCAGGATTTTCCCCAGGCCCGGGTGCATGTAATGCGCGACGAGATGGCGACGGCCCGCAGCGCCGACACCTGGATAAGTCGACGACGGTTCCAGGCGCGGCAGTGGCAGGGCGTCGATAGCTGGGAGTTCTATGCCCCCGAAGGCGATACCTGGTTCGGCTTCGATTCGGTGCGCGCACTGATCGGCGCCGAGGAAGAGGACATTTTCCTGGTGCCGCTTCAGGGACACACCGCCGGACATGCCGGGATCGCGCTGCGCACTCCGGACGGTTGGCTGCTGCACGCCGGTGATGCCTATTTTTTCCATGACGAGGTCCATCAACCCGAGCGCCATTGCCCACCGGGGCTGAGGTTCTACCAATACATGATGGACACCTACCGTTCGGCACGGATGCGCAACCAGGATCGCCTTCGCGAGTTGGCGCAAGTCCAGAACGGGCACGTCGAGATTTTCTGCAGTCACGATGCCAGGGAATGGGAGCGGGCCGTAAACCAGGCGCACACGGTGCGGGTGGATTCCACCGCCATGTCGCCGGCCGCCGGCAGACAATCTTCCTGAMRIHHLNCGCMCPVGGALFDGYSRGLTACLVCHCLLVETDTNGLVLVDTGFGQRDVQTPQRLSRFFRVFNNIQFEHRLTALEQVRRLGFEANDVRHILLTHLDFDHAGGLQDFPQARVHVMRDEMATARSADTWISRRRFQARQWQGVDSWEFYAPEGDTWFGFDSVRALIGAEEEDIFLVPLQGHTAGHAGIALRTPDGWLLHAGDAYFFHDEVHQPERHCPPGLRFYQYMMDTYRSARMRNQDRLRELAQVQNGHVEIFCSHDAREWERAVNQAHTVRVDSTAMSPAAGRQSSNANANANANA
D1-35_00028243hypothetical proteinATGCCTGCTTCTCATGATCTCTACCAAGATTTGAATTGCAGCAAAGAGACGGTCCAACAGCGTCGCCAGCAAGACCCGGAACTTGCTCGGCTGCTGGACGAATACACGGACGTGGATAACCAGGTCCTGGCCGCCGAATCGATATCGGCGGGCAACGTCGAGGATGATGACATCCGCAGACTCAAGGAACAGCGTCTGTCGATAAAAGACAAGATCGCTCAGCAACTGACAGCCACTCAATAAMPASHDLYQDLNCSKETVQQRRQQDPELARLLDEYTDVDNQVLAAESISAGNVEDDDIRRLKEQRLSIKDKIAQQLTATQNANANANANA
D1-35_00029933cyoA_1COG1622Cytochrome bo(3) ubiquinol oxidase subunit 2ATGCGAACTCGACTGCCTTGGCATTTATCAAGGTTGTTGCTGGTCGGCGGGATGCTGTTGCTCGGCGGTTGCGACATGGTGTTGTTCAATCCCAAGGGACAGGTCGGCGTTGACCAACGCAACTTGATCATTCTCTCGACGCTGTTGATGTTGCTGGTGGTGGTGCCGGTCATCGTCATGGCGTTGGTCTTTTCCGTGAAGTACCGCGCCTCCAACACCAAGGCCAAGTACACGCCGGAGTGGGCCCATTCACGCAAGATCGAAACGGTGGTCTGGGGCGTCCCGTTGGTGATCATCATCATTCTCGGCGTGGTTACCTGGAAGTCGACCCATGCGCTGGATCCGTACCGACCGCTGGATTCGGACGTCAAGCCGCTGGTGGTGCAGGTCATCGCGACCGACTGGAAATGGCTGTTCATCTATCCGGAGCTGGGCATTGCCTCGGTCAACGAACTGGCCATGCCACTGGACACACCGGTGAATTTTCGCGTGACCTCGGACGGCGCCATGACCTCGTTTTTCATTCCGGCGCTGGGCGGGCAGATCTATGCCATGGCCGGCATGCAGACCCAACTGCACCTGATCGCCAACGAGGCCGGGGAGTACCGGGGCATCGCCGCCAACTACAACGGCCCGGGTTTCTCCGACATGCATTTCCGGACCCTCGCCACCGATGCGGCGGGCTTCGACAAGTGGGTCGCCGACGTGCGGGCGGGGCAAGGACGGTTGGACAAGGACAGTTATGCCCGACTTGCCAAGCCGACGTTCAAGCACCCGGTTGAACATTACGCATCGGTCCAGCCGGACTTGTTCCAGAGCATCATCGACAAATACGAAGGCATGAATCGTTCCCGTGAAGTCGAGCATCGCATGCACGACATGCAGGGCAGCATCGGGTCTCCCGTCGGGACTCAAAGATCAGCGCAGGAGTAGMRTRLPWHLSRLLLVGGMLLLGGCDMVLFNPKGQVGVDQRNLIILSTLLMLLVVVPVIVMALVFSVKYRASNTKAKYTPEWAHSRKIETVVWGVPLVIIIILGVVTWKSTHALDPYRPLDSDVKPLVVQVIATDWKWLFIYPELGIASVNELAMPLDTPVNFRVTSDGAMTSFFIPALGGQIYAMAGMQTQLHLIANEAGEYRGIAANYNGPGFSDMHFRTLATDAAGFDKWVADVRAGQGRLDKDSYARLAKPTFKHPVEHYASVQPDLFQSIIDKYEGMNRSREVEHRMHDMQGSIGSPVGTQRSAQENANANANANA
D1-35_000301974cyoB_1COG0843Cytochrome bo(3) ubiquinol oxidase subunit 1ATGTTTGGAAAACTGACGCTTGAGGCGATCCCGACGGATGAGCCGATCATCATGTGGACGCTGGCGGTGGTGGGACTGGTCGTCTTGGCCGGCATGGGTGCCATCACCTACTACCGCAAATGGACCTATCTGTGGAAAGAGTGGTTTACCTCGGTGGACCACAAACGCATCGGCGTGATGTACATCGTCGTGGCGCTGGTGATGCTGCTGCGCGGTTTCTCCGACGCGATCATGATGCGCACGCAACAGGCCATGGCGTCCGACGGCTCGCCCGGTTACCTGCCGCCGGAACACTACGACCAGATATTCACTGCCCACGGCGTGATCATGATTTTTTTCATGGCGATGCCGCTGGTGGTGGGCTTGATGAACATCGTCGTGCCGTTGCAGATTGGCGCCCGGGACGTGGCGTTCCCGTTCCTCAACGCGTTGAGTTTCTGGCTGTTCGTGGCCGGCGCGATGCTGGTGAATGTTTCCCTGGCGGTCGGCGAGTTTGCGCGCACCGGTTGGGTCGCCTATCCGCCGTTATCCGGGTTGTCCTATAGCCCCGGGGTCGGGGTGGACTACTACATATGGTCATTGCAGATATCCGGCGTCGGGACGTTGCTCACCGGGGTAAATTTCTTCGTCACCATCCTGAAAATGCGTACGCCGGGCATGACCCTCTTCCGCATGCCGGTGTTTACCTGGACGGTACTGTGCACGGCTGTGCTGATCCTGGCGTCATTCCCGATCCTCACCGCGACGCTGTTCATGCTCAGCCTCGACCGCTATCTGGACATGCACTTTTTCACCAACGAGCTGGGCGGCAACCCGATGATGTACGTCAACCTCATCTGGGCCTGGGGCCATCCGGAGGTGTACATCCTGATCCTGCCGGCGTTCGGTATTTTCTCCGAGGTAGCTTCCACATTCAGCCGCAAGCGCCTGTTCGGTTATCACTCGCTGGTGTGGGCGACGATTGTCATCACCATCCTGTCCTTCATCGTCTGGGTGCACCACTTCTTCACCATGGGTTCGGGGGCGAGCGTCAACGCGTTCTTCGGCATCATGACCATGATCATCGCCGTGCCCACCGGGGTGAAGATATTCACCTGGCTGTTCACTATGTATCGGGGGCGCGTGCGCTTCGAAACGCCGATGCTGTGGACCGTCGGCTTCATCGTCACTTTCAGCATCGGCGGCATGACCGGGGTGCTGCTGGCGGTGCCCGGGGCGGATTTCCTGCTGCACAACAGCCTGTTTCTGATCGCGCACTTTCATAACGTGATCATCGGCGGCGCCGTGTTCGGCTACCTGTGTGGACTGACTTACTGGTTCCCCAAGGCGTTCGGCTTCAAGCTTCACGATCGCCTGGGCCGGGCGGCGTTCTGGTGCTGGATCATCGGCTTCTACTTCGCCTTCATGCCGTCCTACTTCCTTGGCTTCATGGGCATGACCCGGCGCCTCAACCATTTCGACGTACCCGAATGGCGGCCCTGGCTGGAGCTGGAGTTGCTCGGCGTCGGCATCATCCTCTGCGGCGTGGTCTGCCAGATCCTGCAGTTCTATTTCAGCATTCGCCAGCGTCACCAGAACCGTGACCTGACAGGCGATCCGTGGGACGGTCGCACCCTGGAATGGTCCACCGCCTCGCCGCCGCCGCTCTACAACTTCGCCCAACAACCGGTGGTGGAGGGCATCGACGCCTACTGGGGCATGAAGGAACGCGGCCAGAAGACCGCCGTCGAAGCCGATTTCCAAGCCATCCACATGCCGCGCAACACCGCGATGGGCCTGGTCATCAGCCTGTTCAGCCTGATCATGTGCTTCGCCCTGGTCTGGCATATCTGGTGGCTGGCCATCGTCGGGCTGGTTGCGACCATTGGTGGGGTGATCTGGCGCAGCGCCGATGACGACATCGATTACTACGTGCCCGCCGAAGAGGTAGCGCGCATCGAAAACCAACGTATCAAGGCACTGGCGGAGGCTTGAMFGKLTLEAIPTDEPIIMWTLAVVGLVVLAGMGAITYYRKWTYLWKEWFTSVDHKRIGVMYIVVALVMLLRGFSDAIMMRTQQAMASDGSPGYLPPEHYDQIFTAHGVIMIFFMAMPLVVGLMNIVVPLQIGARDVAFPFLNALSFWLFVAGAMLVNVSLAVGEFARTGWVAYPPLSGLSYSPGVGVDYYIWSLQISGVGTLLTGVNFFVTILKMRTPGMTLFRMPVFTWTVLCTAVLILASFPILTATLFMLSLDRYLDMHFFTNELGGNPMMYVNLIWAWGHPEVYILILPAFGIFSEVASTFSRKRLFGYHSLVWATIVITILSFIVWVHHFFTMGSGASVNAFFGIMTMIIAVPTGVKIFTWLFTMYRGRVRFETPMLWTVGFIVTFSIGGMTGVLLAVPGADFLLHNSLFLIAHFHNVIIGGAVFGYLCGLTYWFPKAFGFKLHDRLGRAAFWCWIIGFYFAFMPSYFLGFMGMTRRLNHFDVPEWRPWLELELLGVGIILCGVVCQILQFYFSIRQRHQNRDLTGDPWDGRTLEWSTASPPPLYNFAQQPVVEGIDAYWGMKERGQKTAVEADFQAIHMPRNTAMGLVISLFSLIMCFALVWHIWWLAIVGLVATIGGVIWRSADDDIDYYVPAEEVARIENQRIKALAEAPGPT0004025_429DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004025-foxA|coxA|ctaD-K02274NANA
D1-35_00031615cyoC_1COG1845Cytochrome bo(3) ubiquinol oxidase subunit 3ATGTCCAATCTCGTTCAGCCACACGCCACCGCGCCGGAATCCGAACACGGTCACTCGGACGCAAGCTCCATGACCCTGTTCGGGTTCTGGATCTACCTGATGACCGACTGCATTCTGTTCGCGACGTTATTCGCGACCTATGCGGTACTCGGCCAGAGCGTCGCCGGCGGGCCCGGCGCCGCCGATATCTTCGAATTGCCCTACGTCCTCACGGAAACTTTCATCCTGCTGTTCAGCAGCATCACCTACGGCTTCGCCATGCTCGCGCTGAGCGCCGGGAACAAGCAGAAGGTATTGGCCTGGCTCGGCCTGACCTTCGTCCTCGGGTTGGCGTTCATCGGCATGGAAATCCATGAGTTCCAGAAACTCATCGCCGAAGGCTACGGCCCCAACCGCAGCGCCTTTCTCACCGGCTTCTTCACGCTGGTGGGCACTCACGGCCTGCACGTCGCCACGGGGCTGCTGTGGATGGCCGTGCTGATGTTCCAGGTGCAACGCAATGGCCTGACCACCGTCAACGCCACCCGCCTGGGCTGCCTGAGCCTGTTCTGGCACTTCCTCGACGTGGTCTGGATCTGTGTGTTTACCGTGGTCTATCTGTTTGGAGTGATGTAAMSNLVQPHATAPESEHGHSDASSMTLFGFWIYLMTDCILFATLFATYAVLGQSVAGGPGAADIFELPYVLTETFILLFSSITYGFAMLALSAGNKQKVLAWLGLTFVLGLAFIGMEIHEFQKLIAEGYGPNRSAFLTGFFTLVGTHGLHVATGLLWMAVLMFQVQRNGLTTVNATRLGCLSLFWHFLDVVWICVFTVVYLFGVMPGPT0004035_2439DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004035-coxC|ctaE-K02276NANA
D1-35_00032330cyoD_1COG3125Cytochrome bo(3) ubiquinol oxidase subunit 4ATGAGCAGTCATCAGAGCAGCGTCGATGCCAGCCACGGCAGCGCAAAATCCTACCTCACCGGGTTCGTTCTGTCGGTCATCCTCACCGTTATCCCGTTCGCCCTGGTGATGTATCCCACATTGCCCAAGCCCTTGACGGCCGGGATCGTGGCGATTTTTGCGGTGATCCAGATCGTTGTGCACCTGATCTATTTCCTGCACCTGAACTTCTCACCGCAACAACGCTGGAACCTGACGGCCCTGGTGTTCTCGACCGTGGTGATTGCGCTGTTGGTGGGGCTGTCGCTGTGGATCATGTACAGCGTGCATCACAACATGTTGGCGCATTGAMSSHQSSVDASHGSAKSYLTGFVLSVILTVIPFALVMYPTLPKPLTAGIVAIFAVIQIVVHLIYFLHLNFSPQQRWNLTALVFSTVVIALLVGLSLWIMYSVHHNMLAHNANANANANA
D1-35_00033768hypothetical proteinATGGATCTTTTCTCGTGGTTGGGTGAATGGGCTTTCGCCCCCACGCAATGGCTGGTGATCGGGCTGGCCATTACCCTGGCCTACATCGTGTTCGGCATCGCCGGGTTCGGCACGGCGCTGGTGGCCGCGCCGATCCTGCTGCTGTACATGCCACTGGCGAAAATCATCCCGCTGCTGGTGCTGCTGGATTTTGTCGCGGCATTCGGCAACTTGTTGCCATCGCGTCGGGACGTCGCCCGGCCCGAGTTGCTGCGATTGTTGCCATGCATGGCGGTGGGTTGCACCCTCGGGGTGATTTTCCTGCTCAACCTCAAATCCGACCTGTTGCTGTTGTTGATGGGCCTGTTCATCAGCGCCTATGCGATCTACAGCCTGTGGATAAAGACCCGACCGACGCAGCTGTCGGTGCTGTGGGCGCTGCCGATGGGCACGGTCGGCGGAATGTTCGGCGCGCTGTTTGGCAGCGGCGGCTTTTTATATGCCATTTATTTGAATAGCCGGTTATCCAAGGAGGCGGCCCGGGCGACCCAGAGTGCGCTGATCAGTTGCAGCACGGTGGTGCGCTTGAGTCTGTTCATCGTCGCCGGGGTGTATGCCGAGCTACCCTTGCTGGTACTGGCGCTGTGTTTGTTGCCGGCCATGGCGCTAGGGCTGTGGGTTGGGCGCCGCTTGACCATGAAGATGTCGCGAGAGGCGTTTGTACGACTGGTCACCTGGCTGGTGCTCGCCAGCGGCCTGGCATTGATCGGGCGCTATCTGAGTGCTTGAMDLFSWLGEWAFAPTQWLVIGLAITLAYIVFGIAGFGTALVAAPILLLYMPLAKIIPLLVLLDFVAAFGNLLPSRRDVARPELLRLLPCMAVGCTLGVIFLLNLKSDLLLLLMGLFISAYAIYSLWIKTRPTQLSVLWALPMGTVGGMFGALFGSGGFLYAIYLNSRLSKEAARATQSALISCSTVVRLSLFIVAGVYAELPLLVLALCLLPAMALGLWVGRRLTMKMSREAFVRLVTWLVLASGLALIGRYLSANANANANANA
D1-35_00034549hypothetical proteinATGAATTCGCAAAGCATCATCGTCCCGAAAATTTCCACCTTGCCGGTTCACGAGCCCCGGGCTCGGGCGATCGTGCGCTGGCTGGTGCGCAAGAACATCGTCGAAGAGCAATTGACCACTTGCGGTCGCACTGGCAATCGCATGGCCCACGCCATCGCCCCCGGCGCCCGCCAGGTGGTCCTGCATCCCGACGCGTTGCCGTTCGGCGAGCCGGTCAACGGCCTGGAGATCATCACCAAGCGCTGCATCTACACGCCGGCCAAGGGCTTTCTTGAAGAGGCCGGCTGCGCCGAGTGCCGCAAGGAAATTGGCGAAGCGCTGTTCGAAAGCCTGGAGGAGTGGATGCCGGGTCGCACCGACAACTTCACCTGCCCTGAGTGCGGGCATGAGGATGACATCAACGGGTTCCTGTTCCTGCAACCCTGCGCCTTCTCCAACCTGGGTTTCATCTTCAACAACTGGCTGGAGGCGGGGTTCAGGCAGGAGTTCATCGATGAGTTCGCCGATTGGCTGGACCAGCCGGTGAGTTGGGTGAGGGTGGAGTTGTAAMNSQSIIVPKISTLPVHEPRARAIVRWLVRKNIVEEQLTTCGRTGNRMAHAIAPGARQVVLHPDALPFGEPVNGLEIITKRCIYTPAKGFLEEAGCAECRKEIGEALFESLEEWMPGRTDNFTCPECGHEDDINGFLFLQPCAFSNLGFIFNNWLEAGFRQEFIDEFADWLDQPVSWVRVELNANANANANA
D1-35_000351470guaBCOG0516Inosine-5'-monophosphate dehydrogenaseATGCTGCGTATCAGCCAAGAAGCTCTGACCTTCGACGACATTCTCCTAGTGCCCGGTTATTCCGAGGTACTGCCTAACGAAGTCAGTCTCAAAACCCGTCTCACCCGTGGCATCGAACTGAATATCCCGCTGGTTTCCGCCGCCATGGACACCGTGACCGAAGCCCGTCTGGCCATTGCCATGGCCCAGGAAGGCGGTATCGGTATCATTCACAAGAACATGACCATCGAACAGCAGGCCGCCGAAGTGCGCAAGGTCAAGCGGTTCGAGGCTGGCGTGGTCAAGGATCCGATCACCATCGAGGCTGACGCCACGGTCCGGGATCTGTTCGAACTGACCCGCATGCACAACATCTCCGGCGTTCCGGTGCTGCACGATGGCGACCTGGTCGGCATCGTCACCTCCCGTGACGTGCGTTTCGAGAATCGCCTGGACGCCAGCGTTCGCCAGGTGATGACTCCGAAAGAGCGTCTGGTCACGGTCAAGGAAGGCACCAGCAAGGACGAAGTCCGCGAATTGCTGCACAAGCACCGCATCGAGCGCGTGCTGATCGTCGACGACAAGTTCGCCCTCAAAGGCATGATGACCGTCAACGATATCGAAAAAGCCAAGGCTTATCCGCTGGCGAGCAAGGACGACCAGGGTCGTCTGCGCGTTGGCGCGGCGGTCGGCACCGGCAAGGACACCGGCGATCGCGTCGCCGCCCTGGTCAATGCCGGCGTTGACGTGGTGGTGGTCGACACTGCCCACGGTCATTCCAAAGGCGTGATCGACCGCGTTCGCTGGGTCAAGCAGAACTTCCCTGACGTCCAGGTGATCGGCGGCAACATCGCCACCGGCGAAGCCGCCAAGGCCCTGGCCGAAGCTGGCGCCGACGCGGTCAAGGTCGGTATCGGCCCTGGCTCGATCTGCACCACCCGCATCGTTGCCGGTGTCGGCGTGCCGCAGATCAGCGCCATCGCCAACGTCGCCGCCGCCCTTGAAGGCACTGGCGTGCCGCTGATCGCCGACGGCGGTATCCGCTTCTCCGGTGACCTGTCCAAGGCCATCGTCGCCGGTGCCTACTGCGTGATGATGGGTTCGATGTTCGCCGGTACCGAAGAGGCGCCGGGCGAGATCGAACTGTTCCAGGGCCGTAGCTACAAGGCTTATCGCGGCATGGGGTCGCTGGGCGCCATGTCCCAGGCCCAGGGCTCTTCCGACCGTTACTTCCAGGACTCCTCCGCGGGTGCCGAGAAGCTGGTGCCGGAAGGCATCGAAGGTCGCGTGCCGTACAAGGGCACCCTGAGCGCGATCATCCATCAACTGATGGGCGGCCTGCGTTCTTCCATGGGCTACACCGGCAGCGCGGACATCGAAGAGATGCGCACCAAGCCGGAATTCGTGCGCATCACCGGCGCCGGCATGGCCGAGTCCCATGTCCACGACGTACAGATCACCAAGGAAGCGCCGAACTACCGTGTAGGTTAAMLRISQEALTFDDILLVPGYSEVLPNEVSLKTRLTRGIELNIPLVSAAMDTVTEARLAIAMAQEGGIGIIHKNMTIEQQAAEVRKVKRFEAGVVKDPITIEADATVRDLFELTRMHNISGVPVLHDGDLVGIVTSRDVRFENRLDASVRQVMTPKERLVTVKEGTSKDEVRELLHKHRIERVLIVDDKFALKGMMTVNDIEKAKAYPLASKDDQGRLRVGAAVGTGKDTGDRVAALVNAGVDVVVVDTAHGHSKGVIDRVRWVKQNFPDVQVIGGNIATGEAAKALAEAGADAVKVGIGPGSICTTRIVAGVGVPQISAIANVAAALEGTGVPLIADGGIRFSGDLSKAIVAGAYCVMMGSMFAGTEEAPGEIELFQGRSYKAYRGMGSLGAMSQAQGSSDRYFQDSSAGAEKLVPEGIEGRVPYKGTLSAIIHQLMGGLRSSMGYTGSADIEEMRTKPEFVRITGAGMAESHVHDVQITKEAPNYRVGPGPT0021445_3051DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021445-guaB-K00088NANA
D1-35_000361578guaACOG0518GMP synthase [glutamine-hydrolyzing]ATGGCCCTCGACATTCACGCTCACCGCATCCTGATCCTCGACTTCGGTTCCCAGTACACCCAGCTGATCGCCCGCCGCGTGCGTGAGATCGGCGTGTACTGCGAGCTGCATCCGTTCGACATGGATGAAGAAGCGATTCGCGAGTTCGCTCCCAAAGGCGTCATCCTCGCCGGCGGCCCCGAGTCCGTGCACGAAGCCGACAGCCCGCGCTGCCCGCAAGCGGTGTTCGACCTCGGCGTACCGGTCTTCGGCATCTGCTACGGCATGCAGACCATGGCTGAGCAACTGGGCGGCAAGGTCGAAGGTTCCGACCTGCGTGAGTTCGGTTATGCCCGTGTCGACGTGGTCGGCAAGAGCCGCCTGCTGGACGGCATCGAAGACCACATCGACGCCGACGGCCTGTTCGGCCTCGACGTGTGGATGAGCCACGGTGACAAGGTCACGAAGATGCCGGAAGACTTCCACATCCTCGCCAGCACCCCGAGCTGCCCGATCGCCGGCATGTTCAACGACGATCGCCGCTACTACGGCGTACAGTTCCACCCGGAAGTGACCCACACCAAGCAGGGCGGCCGCATCCTGTCGCGCTTCATCCTCGACATCTGCGAATGCGAAGCCCTGTGGACGCCTTCCAAGATCGCTGAAGATGCCATCGCCCAGGTTCGCGCCCAGGTCGGCACCGACAACGTATTGCTCGGCCTGTCCGGCGGTGTCGATTCCTCGGTGGTTGCCGCGCTGCTGCACAAGGCCATCGGCGACCAGCTGACCTGCGTCTTTGTCGACAACGGTCTGCTGCGCCTGCACGAAGGCGAGCAAGTGATGGCCATGTTCGCCGAGAACATGGGCGTCAAGGTGATCCGCGCCAACGCCGAAGAGCAGTTCCTGAACAACCTGGCCGGCGAGTCCGACCCGGAGAAGAAGCGCAAGATCATCGGTCGCACCTTCATCGACGTGTTCGATGCCGAATCCTGCAAGCTGGACAACATCAAGTACCTGGCCCAGGGCACCATCTACCCCGACGTGATCGAGTCGGCCGGCGCCAAGAGCGGCAAGGCCCACGTGATCAAGTCCCACCACAACGTCGGTGGCCTGCCGGAAGAGATGAACCTGAAACTGGTCGAGCCGCTGCGCGAACTGTTCAAGGACGAAGTGCGTCGCCTCGGCCTGGAACTGGGCCTGCCCTACGACATGGTCTACCGTCACCCATTCCCCGGCCCGGGCCTGGGCGTGCGGATCCTCGGCGAAGTGAAGAAGGAATACGCCGACCTGCTGCGTCGCGCCGACCACATCTTCATCGAAGAACTGCGCAAGGCCGACTGGTACCACAAGGTCAGCCAGGCATTCGTGGTATTCCAGCCGGTGAAATCGGTCGGCGTGGTCGGCGATGGCCGTCGCTACGCCTGGGTCGTGGCCCTGCGTGCCGTGGAAACCATCGACTTCATGACCGCTCGCTGGGCACACCTGCCGTACGAACTGCTGGAAACCGTGTCCGGGCGGATCATCAACGAAATCGAAGACATCTCCCGCGTCACGTATGACGTGTCGAGCAAGCCGCCGGCGACGATCGAGTGGGAATAAMALDIHAHRILILDFGSQYTQLIARRVREIGVYCELHPFDMDEEAIREFAPKGVILAGGPESVHEADSPRCPQAVFDLGVPVFGICYGMQTMAEQLGGKVEGSDLREFGYARVDVVGKSRLLDGIEDHIDADGLFGLDVWMSHGDKVTKMPEDFHILASTPSCPIAGMFNDDRRYYGVQFHPEVTHTKQGGRILSRFILDICECEALWTPSKIAEDAIAQVRAQVGTDNVLLGLSGGVDSSVVAALLHKAIGDQLTCVFVDNGLLRLHEGEQVMAMFAENMGVKVIRANAEEQFLNNLAGESDPEKKRKIIGRTFIDVFDAESCKLDNIKYLAQGTIYPDVIESAGAKSGKAHVIKSHHNVGGLPEEMNLKLVEPLRELFKDEVRRLGLELGLPYDMVYRHPFPGPGLGVRILGEVKKEYADLLRRADHIFIEELRKADWYHKVSQAFVVFQPVKSVGVVGDGRRYAWVVALRAVETIDFMTARWAHLPYELLETVSGRIINEIEDISRVTYDVSSKPPATIEWEPGPT0021580_1906DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021580-guaA-K01951NANA
D1-35_000371614hypothetical proteinATGACCGGTTTGCCCGCAGACGCGATAGGCGCCGCCTGGCTGGCCCAAATCTATGATGTGCAGCCTTTGGGGCGATTGCCAGTGATGAGTCAAGTAGGCGGGCGACGCGCAACTCAAGTCACCGATGGCTTTCGTCTGGAGACCTACACCGAGGCGATGCGCCCGGATGCGGAGATTGCTGCACATCTGCAGTTCCATCTGCGCCATGAAGTCCCGCATCTGGAGTTCCTTGCCCGTCTGTTCGAGAAGACCGGGCCTGTTTTCGTCCAGGACTGGGTTACGGTCGAGCCTACTGGGCAGTACGCGCGTCGTGCTGCGTTTCTATATGAATGGCTGACCGGAGACGCTCTGGTCGTGCCCGAGCGCTTAGGCGGCAATTATGTCGATGCCATTGACGAGGCCAAGCTGGTGTCGGCATCCCGCGACCGAGTGGTCAAGGTGCAGCGCTGGCGGGTAAATGACAACCTGCCCGGCACGCGCAAATTCTGTCCTTGCGTGGTCAAGACCGAGGCGGTAATGCGTGCGGTCGAACTGGACGTTCCACGCCTGTTCGGTGAATTGACAGATGAGTTCGGCGAGGATCTGTTGTTGCGGTCGGCGGTCTGGATGACGCTACGCGAGAGCAAGGCCAGCTTCGCCATCGAAGGCGAGGCCGACCGGGTAGGGCGGGTGCAACGCTTTGCCGACGTAATGGCGCGTCGTACAGGGCAAGGTGCGGTCCCATTGAGCAATGCCGCGCTGGCAGAGTTGCAGCAGGAAATTCTCGGTGATCGGACGACGATCACCCACTTCGGCGTGCGTCAGTCTCCGGTTTTCGTCGGCGAAACGGTGCGCTACGAGGAGGTCGTTCATTACGTCGCCCCGGCGGCCGATGAAATCGACGCGATGCTTGAAGGGCTGGGAGTGTTCCTCGAGAGGACGCAGGGCCAGTCGCCGGTAATGCGCAGCGCAATCGCAGCCTTTGGTTTCGTCTATATACACCCGCTCGCTGACGGCAACGGTCGTATGCACCGGTTTTTGGTCAACGACGTACTGCGACGCGACGGCGCGATTCCGGATCCGGTAATTCTGCCGATCTCAGCGGTCATTACAGATGACGTGGGCGAGCGCCGCAGCTACGACCGGGTGCTGGACCAGGTGTCCAAGCCGCTCATGCAGGCTGTACGCGAGCGAGTAGTCTTCGAGCCCATGCAGGCCACCTATCCAGATGGTGTGGTGTCGAACTTCTCTTTTCAGGGCGCTGACCAGGCCCGACCGCTGTGGCGTTATCCGGATCTCGGACCTCATACCGTGTTTCTGGCCAATATCATTGGCCGGACGTTGACTGAGCAGATGCGCGAAGAGTCTCGTTATCTGCGCAGCCACGCGCGGGCGCGGGCGGTGCTGAAGGAGGTGGTCGAGATGCCCGATCACCAGGCGGATCGAGTGCTGCGCTCAATCGAGCAGAATCGCGGCGAGTTGAGCAATGTGCTTGCCAAGGAAATGCCTGTCCTGCAACAGGTCGGGGTGTGGGCTGAAATCGTTGACGCCGTCTCGCGGGCGTTTGCGGAGGACGGCGGAGCGGGGGGTGCTATGATTGACCGATATCGTCCGGGGAAGCCCGTCGACCGCTGAMTGLPADAIGAAWLAQIYDVQPLGRLPVMSQVGGRRATQVTDGFRLETYTEAMRPDAEIAAHLQFHLRHEVPHLEFLARLFEKTGPVFVQDWVTVEPTGQYARRAAFLYEWLTGDALVVPERLGGNYVDAIDEAKLVSASRDRVVKVQRWRVNDNLPGTRKFCPCVVKTEAVMRAVELDVPRLFGELTDEFGEDLLLRSAVWMTLRESKASFAIEGEADRVGRVQRFADVMARRTGQGAVPLSNAALAELQQEILGDRTTITHFGVRQSPVFVGETVRYEEVVHYVAPAADEIDAMLEGLGVFLERTQGQSPVMRSAIAAFGFVYIHPLADGNGRMHRFLVNDVLRRDGAIPDPVILPISAVITDDVGERRSYDRVLDQVSKPLMQAVRERVVFEPMQATYPDGVVSNFSFQGADQARPLWRYPDLGPHTVFLANIIGRTLTEQMREESRYLRSHARARAVLKEVVEMPDHQADRVLRSIEQNRGELSNVLAKEMPVLQQVGVWAEIVDAVSRAFAEDGGAGGAMIDRYRPGKPVDRNANANANANA
D1-35_00038735hypothetical proteinATGAGCAAAATTGGCGCTTGCATCACTCTGTCTGCAACCCTGGCATTTGCCGTATCCACAGCTTTCGCGGCGGTTCCCACCGATATTTCGGGTGTCGCCCTTGGCTCGACTCTGGAAGAAGCCAAAGATGCGATCATGAAAGCCAACCAGGCCTATACGATCAGCCCGCTGAAAACTGTCGATGGCACCGAGGCCGGCGTGACAGCCGTGACCAACAAGACTCTTGCCCAAGCCGACCAGTTTGCCGCGCTTCAAGACGATGCTGGCAAGGTATGGTTTGTCGGGCATATGAAGCACTACGAAGAAGGGTCGCGTATCCCACTCGACAATCTGGTGGCATCGCTGACCGAAAAATTCGGCCCGACCTCGTTCCGCAATTCCCAGATGGGAGAAGTCATGTACTGGGAGTTTGACCGAAACGGCAAGCTGTATAAGGGTGTAGACCAAGTCTTTAACGACCGTGGCATTGGTCCTTGCGCGCAGGTGCACTTTAGCAATATGCACATTCCTGGCGTTTCCTTCCCTGCACCACAAAACTTCCCATCCGAGTGCAGCCTTCTGATCATGGCTTATTCACAACCTGATCAGGACAAGATGGTGCGTGAGTTCTCTCTGAGCGTAACCGATGTCAAAAGCATGTATGACCAGTTGAATGCCAAAGAGACGCAAGCAAAGGCGGAACAGGCCAGGAAACTGGAGGAAGAAAAATCCAAGGCGGCCAAACCGAACATCTGAMSKIGACITLSATLAFAVSTAFAAVPTDISGVALGSTLEEAKDAIMKANQAYTISPLKTVDGTEAGVTAVTNKTLAQADQFAALQDDAGKVWFVGHMKHYEEGSRIPLDNLVASLTEKFGPTSFRNSQMGEVMYWEFDRNGKLYKGVDQVFNDRGIGPCAQVHFSNMHIPGVSFPAPQNFPSECSLLIMAYSQPDQDKMVREFSLSVTDVKSMYDQLNAKETQAKAEQARKLEEEKSKAAKPNINANANANANA
D1-35_000391377mmcOCOG2132Multicopper oxidase MmcOATGTCCTTTACCCGTCGCCAAATACTCGGTGGCCTGGCCGGTCTTGTTGTCGTTGGCGTAGGTGCGGGAGGCGCGTCGCGGTATTGGTTGGGCAAGATGGCCGATGCCGAGGCCGGTCACGACTATGAACTGATCGCGGCGCCGCTGGATGTGGAACTGGTGGCCGGGCACAAGACCCAGGCCTGGGCCTTTGGTCCGTCAGCGCCGGGCACCGAATTGCGGGTGCGCCAGGGCGAGTGGTTGCGGGTGCGATTCATCAACCATTTGCCGGTCGCGACGACCATTCACTGGCACGGCATCCGCTTGCCACTGGAGATGGACGGCGTACCGTATGTCTCGCAACTGCCGGTGTTGCCAGGCGAGTACTTCGATTACAAATTCCGCGTGCCGGACGCCGGCAGCTATTGGTATCACCCGCACGTCAACAGCAGCGAGGAGCTCGGACGCGGGCTGGTGGGGCCGCTGATCATCGAAGAGCGTGAGCCTACCGGCTTCAAATACGAGCAGACGTTGAGCCTCAAGAGTTGGCATGTGGACGAGCAGGGCGAGTTCGTCGCGTTCAGCATCCCTCGCGAGGCGGCGCGTGGCGGCACCGCCGGGCGGCTGTCGACGATCAACGGCTTGCCCCAGGCGGTGATTGATTTGCCGGCCGGGCAGATTACCCGGGTGCGGTTGCTCAACCTCGACAACACGCTGACTTACCGCATCAATATCCCCGGCGTCGAGGCGCAGATCTATGCGCTCGACGGCAATCCCGTCGCGCCGCGCCCGTTGGGCAAGGAGTACTGGCTGGGCCCGGGTATGCGCATCTGCCTGGCGATCAAGGCGCCGCCGGCCGGTGAAGAGTTGTCGTTGCGCAATGGCCCGGTGCGCCTGGGGACGCTGCGTTCGGTGCCCAACAATGACGCACCGACCCAGTGGCCGCCGGCGCTGCCGCCTAACCCGGTGGCCGAGCCGGACCTGGCCAATGCGCAGAAACTCAACTTCAATTTCGAATGGGTCGGTTCGGTCTCGGTCAATGTCGACAATGGCAAGCCGCCGAGCCTGTGGCAAATCAATGGCAAGGCCTGGGATATCACCGACAAGACCTGCGCCGATCGGCCGATTGCCACGCTGAAGAAAGGCCAGAGCTATATATTCGAATTGAAGAACATGACCCAGTACCAGCACCCGATCCATCTGCACGGCATGAGCTTCAAGGTCATTGCGTCGAACCGGCACAAGGTCATTCCGTATTTCACCGATACCTACCTGCTGGGCAAGAACGAGCGGGCACAGGTGGCGCTGGTGGCGGATAACCCCGGCGTGTGGATGTTCCACTGCCATGTGATCGATCACATGGAAACCGGCCTGATGGCCGCCATCGAGGTGGCGTGAMSFTRRQILGGLAGLVVVGVGAGGASRYWLGKMADAEAGHDYELIAAPLDVELVAGHKTQAWAFGPSAPGTELRVRQGEWLRVRFINHLPVATTIHWHGIRLPLEMDGVPYVSQLPVLPGEYFDYKFRVPDAGSYWYHPHVNSSEELGRGLVGPLIIEEREPTGFKYEQTLSLKSWHVDEQGEFVAFSIPREAARGGTAGRLSTINGLPQAVIDLPAGQITRVRLLNLDNTLTYRINIPGVEAQIYALDGNPVAPRPLGKEYWLGPGMRICLAIKAPPAGEELSLRNGPVRLGTLRSVPNNDAPTQWPPALPPNPVAEPDLANAQKLNFNFEWVGSVSVNVDNGKPPSLWQINGKAWDITDKTCADRPIATLKKGQSYIFELKNMTQYQHPIHLHGMSFKVIASNRHKVIPYFTDTYLLGKNERAQVALVADNPGVWMFHCHVIDHMETGLMAAIEVANANANANANA
D1-35_00040498tadACOG0590tRNA-specific adenosine deaminaseATGCGCCAGATTCGTCCCGCGCGGATCATCGACCGCAGCCGCGACCAGGATTTCATGCGTGAAGCCCTGGCTCTCGCCGCCCAAGGCGCCACGCTGGGCGAAGTCCCGGTGGGCGCGGTGCTGGTGCAGGATGGTGAGATCATTGGGCGTGGCTTCAACTGCCCGATCAGTGGCCACGACCCCAGCGCCCACGCGGAGATGGTCGCCATCCGCGCCGCTGCCCAGGCGGTGAGCAACTATCGCCTGCCTGGCAGCACGCTGTATGTGACGCTGGAACCGTGCAGCATGTGCGCCGGCCTCATCGTCCACTCACGCATCGCCCGGGTCGTCTACGGGGCGCTGGAACCCAAGGCTGGGATCGTGCAGAGCCAAGGGCAGTTTTTCAGCCAAGGCTTTTTGAATCATCGGGTGATGTTCGAGGGCGGGGTGTTGGCTGAGGAATGCAGCGCGGTGTTGAGCGAGTTTTTCAAGGCCAGGCGAGCAAAGCCTTCAGACTGAMRQIRPARIIDRSRDQDFMREALALAAQGATLGEVPVGAVLVQDGEIIGRGFNCPISGHDPSAHAEMVAIRAAAQAVSNYRLPGSTLYVTLEPCSMCAGLIVHSRIARVVYGALEPKAGIVQSQGQFFSQGFLNHRVMFEGGVLAEECSAVLSEFFKARRAKPSDPGPT0006855_8DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_DICHLOROPROPENE_DEGRADATION,PGPT0006855-dhaA-K01563NANA
D1-35_00041957cmoBCOG0500tRNA U34 carboxymethyltransferaseATGATTGATCTGTCCCCCCTCGCCCGCCATCTGGCCGGCACGCCCCTGGCCGACTGGGCCGCGACACTGCAAACGCAGCTCGATATCAAAATGGAAAAGGGCCACGGCGACCTGGAGCGTTGGCAAAGCGCCCTCGATGCGCTGCCGGCCTTGCAGCCCACCACCGTGGATCTGCTGAACGAGCTGACGCTGGACGCAGATTGCTCTGACGAAACCCGCGCCCAGATGCGTACCGCGCTGATGGGTCTTTCTCCGTGGCGCAAGGGCCCGTTCGATCTGTTTGGCGTGCACGTGGACACCGAATGGCGCTCGGACTGGAAATGGTCACGCGTCGCCCCGCATCTAGACCTCAAGGGCAAGCGCATCCTCGATGTCGGCTGCGGCAACGGCTACTACATGTGGCGGATGCTCGGTGCCGGCGCGGACACGGTGATTGGCGTCGACCCGAACTGGCTGTTCTTCTGCCAGTTCCAGGCGGTGCAGCGCTACCTGTCACAGCCCAACGCCTGGCACCTGCCTTTCCCATTCGAAGCCCTGCCGCCGGAGCTGGAAGGTTTTGACACGGTCTTCTCCATGGGCGTCTTCTACCACCGCCGCTCGCCGATCGAGCATCTGTTGGCCTTGAAGGACTGCCTGGTAAAAGGCGGTGAGCTGGTGCTCGAAACCCTGGTGATCGAAGGCGACGAACACCAGGTGCTGGTGCCCGAGGACCGCTACGCGCAGATGCGCAACGTCTGGTTCCTGCCGTCGGTCCCGGCCCTGGAACGCTGGCTGCGCCGCGCCGGGTTCAGCGATGTGCGCTGCGTGGACGTCAGCCTGACGACCGTGGAGGAACAGCGCAGCACCGAGTGGATGAAGTACCAGTCACTGAGTGATTTCCTCGATCCTGCGGACCACAGTAAAACCATTGAGGGACTGCCGGCGCCGATGCGGGCGGTGATTGTGGCGCGTAAGTAAMIDLSPLARHLAGTPLADWAATLQTQLDIKMEKGHGDLERWQSALDALPALQPTTVDLLNELTLDADCSDETRAQMRTALMGLSPWRKGPFDLFGVHVDTEWRSDWKWSRVAPHLDLKGKRILDVGCGNGYYMWRMLGAGADTVIGVDPNWLFFCQFQAVQRYLSQPNAWHLPFPFEALPPELEGFDTVFSMGVFYHRRSPIEHLLALKDCLVKGGELVLETLVIEGDEHQVLVPEDRYAQMRNVWFLPSVPALERWLRRAGFSDVRCVDVSLTTVEEQRSTEWMKYQSLSDFLDPADHSKTIEGLPAPMRAVIVARKNANANANANA
D1-35_00042744cmoACOG0500Carboxy-S-adenosyl-L-methionine synthaseGTGAGCAAAGAACCCGATCGCCTATTCGCCCAGCCCTTGGCCCAGGTGCCCGACTTCGCCTTCAATGAAGACGTGGTTCGAGTGTTCCCGGACATGATCAAGCGCTCGGTGCCAGGCTACCCGACCATCGTCGAGAACCTCGGCGTGCTCGCCGCGCAGTTCGCCCAGCCCAATAGCGTGCTGTATGACCTCGGTTCGTCCCTGGGCGCGGTGACCCAGGCGCTGCGCCGTCATGTGCGCACCGACGGTTGCCGGGTGATCGCGGTGGATAACTCGGCGGCCATGGTCGAGCGCTGCCGCGAATACCTCAACGGCCAGGACTCGATGTTCCAGGAGTTGTTGCCGGTGGAAGTGATCGAAGGCGACATCCTTGCGCTGGCGTTCCAGCCGGCCTCGGTGGTGGCGTTGAACTTCACGCTGCAATTCATCGCACCCGAACAACGTACCGCGTTGCTGACCCGTATCCGTCAGTCCTTGCTGCCCGGCGGCGCCTTGATCCTCTCGGAAAAACTGCGCTTCAACGATGCCGAGGAACATGCCCTGCTGACCGACCTGCACGTGGCGTTCAAGCGCGCCAACGGCTACAGCGAGCTGGAAATTGCTCAGAAACGCAGCGCCATCGAAAACGTCATGAAGCCCGACAGCCTCGAAGAACACCGCGAGCGCCTGCTGGCGGCCGGCTTCTCGAAAGTCGTGCCGTGGTTCCAGTGTCTTAACTTCGCCTCGTTGATTGCCTTGCCATGAMSKEPDRLFAQPLAQVPDFAFNEDVVRVFPDMIKRSVPGYPTIVENLGVLAAQFAQPNSVLYDLGSSLGAVTQALRRHVRTDGCRVIAVDNSAAMVERCREYLNGQDSMFQELLPVEVIEGDILALAFQPASVVALNFTLQFIAPEQRTALLTRIRQSLLPGGALILSEKLRFNDAEEHALLTDLHVAFKRANGYSELEIAQKRSAIENVMKPDSLEEHRERLLAAGFSKVVPWFQCLNFASLIALPNANANANANA
D1-35_00043393hypothetical proteinATGTCTCTCACCCGCCTGCTCGTACCCGTCAGCCTCGCCTTGTTGAGCGCCTGTGCCATGCAACCGAAACACAACGTGACGGTCGAGAAGCTTAGCCAATGCCCGGTGCAGCTCAATAACGGCCAGAACCTGATCCTGAGCCTGCCGACCAACCCAAGCACCGGCTACCGATGGACGGTTCAGGATTCAGCCGGCGGCGTGTTGAAGGCGTTGGGCCCGGAGGTCTACCGCAACCCGGAAGACGCCGGCATCGTCGGCGCCGCCGGGGTGTCAACCTGGCGCTTCCAGGCATTCAACGCCGGCACCGGGCGCTTGCGCCTGACGTATCAACAACCCTGGGCGCCTGAGGTCCCCCCCGTGGAAACCTTCGACTGCGCCATTTCGGTGAATTGAMSLTRLLVPVSLALLSACAMQPKHNVTVEKLSQCPVQLNNGQNLILSLPTNPSTGYRWTVQDSAGGVLKALGPEVYRNPEDAGIVGAAGVSTWRFQAFNAGTGRLRLTYQQPWAPEVPPVETFDCAISVNNANANANANA
D1-35_000442415lon_1COG0466Lon proteaseATGAGCGACCAGCACTCGACTGAAGCAAACGACGAATACGCAGACGCCGAACAGATCGAACACACCGTTTCCGGTACGGGCTTGGCCCTGCCCGGCCAGAGCCTGCCGGACAAGGTCTACATCATCCCGATCCACAATCGTCCGTTCTTCCCGGCCCAGGTACTGCCGGTCATCGTCAACGAAGAACCGTGGGCCGAGACCCTGGAGCTGGTGGCCAAGTCCGATCACCATTCCCTGGCGTTGTTCTTCATGGACACGCCCCAGGAAGACCCGCGCCACTTCGACACCTCGAAACTGCCGCTGTACGGCACACTGGTGAAGGTCCACCACGCCAGCCGTGAGGCCGGCAAATTGCAGTTCGTTGCCCAGGGCCTGACCCGCGTGCGCATTCGCACCTGGCTCAAGCATCATCGCCCGCCATACCTGGTGGAAGTCGAATACCCGCATCAGCCAAGCGAGCCGACCGACGAGGTCAAGGCCTACGGCATGGCGCTGATCAATGCGATCAAGGAACTGCTGCCGCTCAACCCGCTGTACAGCGAAGAGCTGAAGAACTACCTCAACCGCTTCAGCCCCAACGACCCTTCGCCGCTGACCGACTTCGCCGCCGCGCTCACCTCCGCCACCGGCAGTGAATTGCAGGAAGTGCTCGATTGCGTGCCGATGCTCAAGCGCATGGAAAAAGTCCTGCCGATGCTGCGCAAGGAAGTCGAAGTGGCGCGGCTGCAGAAAGAGATTTCCGCCGAGGTCAACAGCAAGATCGGCGAACATCAGCGCCAGTTCTTTCTAAAGGAACAACTAAAGGTCATCCAGCAGGAGCTGGGCTTGACCAAGGACGACCGCAGCGCCGACCTGGAACAATTCGAACAGCGCCTGGAGGGCAAGGTGCTGCCGGCCCAGGCACAGAAACGCATCGAAGAGGAAATGAACAAGCTCTCGATCCTGGAAACCGGCTCGCCGGAATACGCCGTCACGCGTAACTACCTCGATTGGGCAACATCGGTGCCGTGGGGCGTGTATGGCCAGGACAAGCTTGACCTCAAGCACGCCCGCAAGATTCTCGACCAGCACCACGCCGGCCTGGACGACATCAAGGACCGCATCCTGGAATTCCTCGCGGTGGGCGCCTACAAAGGCGAGATCAGCGGTTCGATCGTCTTGCTGGTTGGCCCTCCGGGTGTGGGCAAGACCAGCGTCGGCAAGTCCATTGCCGAATCCCTCGGGCGGCCGTTCTATCGTTTCAGTGTCGGCGGCATGCGCGACGAAGCCGAAATCAAGGGCCACCGGCGCACCTACATCGGCGCCCAGCCGGGCAAGCTGGTGCAGGCGCTCAAGGACGTCGAAGTGATGAACCCGGTGATCATGCTCGACGAAATCGACAAGATGGGCCAGAGCTACCAGGGCGACCCGGCTTCCGCGCTGCTCGAAACCCTCGACCCGGAGCAGAACGTCGAATTCCTCGACCACTACCTGGACATGCGCCTGGACCTCTCGAAAGTGCTCTTTGTGTGCACAGCGAACACTTTGGACTCGATTCCCGGCCCGCTGCTGGACCGCATGGAAGTGATTCGCCTGTCGGGCTATATCACCGAAGAAAAAGTCGCCATCGCCAAGCGCCACTTATGGCCCAAGCAACTCGCCAAGGCCGGCGTTTCCAAGGGCAGCCTGAGCATCAACGACAGCGCTCTCAAGGCACTGATCGACGGTTATGCCCGGGAGGCCGGCGTCCGTCAGTTGGAAAAACAGCTGGGCAAACTGGTGCGCAAGGCGGTCATGAAGCTGATCGACGAGCCGAAAGCCGTGATCAAACTCGGGCCGAAGGATCTCGAGGCGTCCCTGGGCAAACCGGTATTTCGCAATGAGCAGGTGCTGTCCGGCGTGGGTGTGATCACCGGACTGGCCTGGACCAGCATGGGCGGCGCGACCCTGCCGATCGAGGCAACGCGTATCCACACGCTCAATCGCGGCTTCAAGCTCACCGGGCAACTGGGCGAAGTCATGAAGGAATCGGCTGAAATTGCCCACAGCTACGTCAGTTCGCACCTGAAGCAATTCGGCGGTGATCCAAAGTTTTTCGATGAGGCTTTTGTTCACCTGCACGTACCGGAAGGCGCCACGCCCAAGGACGGCCCGAGTGCCGGCGTGACCATGGCCAGCGCCCTGCTGTCCCTGGCGCGTAACCAGCCGCCGAAAAAAGGCGTGGCCATGACCGGTGAACTGACCCTTACCGGGCATGTCCTGCCGATTGGCGGCGTGCGCGAAAAAGTCATCGCGGCGCGTCGGCAGAAGATCAATGAGTTGATCCTGCCGGACGCCAACCGGGGCAATTTCGAGGAACTGCCGGACTACCTCAAGGAAGGTGTCACGGTGCACTTTGCCAAGCGGTTTGCGGATGTGGCGAAGGTGTTGTTCTGAMSDQHSTEANDEYADAEQIEHTVSGTGLALPGQSLPDKVYIIPIHNRPFFPAQVLPVIVNEEPWAETLELVAKSDHHSLALFFMDTPQEDPRHFDTSKLPLYGTLVKVHHASREAGKLQFVAQGLTRVRIRTWLKHHRPPYLVEVEYPHQPSEPTDEVKAYGMALINAIKELLPLNPLYSEELKNYLNRFSPNDPSPLTDFAAALTSATGSELQEVLDCVPMLKRMEKVLPMLRKEVEVARLQKEISAEVNSKIGEHQRQFFLKEQLKVIQQELGLTKDDRSADLEQFEQRLEGKVLPAQAQKRIEEEMNKLSILETGSPEYAVTRNYLDWATSVPWGVYGQDKLDLKHARKILDQHHAGLDDIKDRILEFLAVGAYKGEISGSIVLLVGPPGVGKTSVGKSIAESLGRPFYRFSVGGMRDEAEIKGHRRTYIGAQPGKLVQALKDVEVMNPVIMLDEIDKMGQSYQGDPASALLETLDPEQNVEFLDHYLDMRLDLSKVLFVCTANTLDSIPGPLLDRMEVIRLSGYITEEKVAIAKRHLWPKQLAKAGVSKGSLSINDSALKALIDGYAREAGVRQLEKQLGKLVRKAVMKLIDEPKAVIKLGPKDLEASLGKPVFRNEQVLSGVGVITGLAWTSMGGATLPIEATRIHTLNRGFKLTGQLGEVMKESAEIAHSYVSSHLKQFGGDPKFFDEAFVHLHVPEGATPKDGPSAGVTMASALLSLARNQPPKKGVAMTGELTLTGHVLPIGGVREKVIAARRQKINELILPDANRGNFEELPDYLKEGVTVHFAKRFADVAKVLFPGPT0014315_2499DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014315-lon-K01338NANA
D1-35_000451314yhjEInner membrane metabolite transport protein YhjEATGACCACCACCACTTGCAATGACGCCGTGGCAAACCAACCGACCAACTCGGCCACCCGCGTGGCAACCGCGAGTTTCATCGGCACCGCCATCGAGTTCTACGATTTCTACGTCTACGCGACCGCTGCCGCCCTGGTGATCGGGCCGGTATTCTTTCCGCAAACCTCGGGCACGGCACAGATGCTGTCGTCCTTCCTGACGTTCGGCATCGCCTTCCTCGCCCGGCCGCTGGGCTCGGCGCTGTTCGGCCATTTCGGCGACCGGATCGGGCGCAAGTCCACCCTGGTGGCGTCGCTGCTGCTGATGGGCGTGTGCACCACCCTCATCGGCGTGCTGCCCGGCTACGCCAGCATTGGCGCGTGGGCGCCGATTCTCCTGTGCCTGCTGCGTTTCGGCCAGGGCCTGGGGCTGGGCGGTGAATGGGGCGGCGCGGCGTTGCTCGCCACCGAGAACGCCCCGAAAGGCAAGCGCGCCTGGTTTGGCATGTTCCCCCAACTGGGCCCCTCCATCGGCTTCCTGGCGGCCAACGGATTGTTCCTGACCCTGGCCATGACCCTCGACGACGAGCAGTTCCGCTCCTGGGGCTGGCGGATTCCGTTCCTGCTGAGCGCCGCCCTGGTCATCGTTGGCCTTTATGTGCGTCTCAAGCTCCATGAAACGCCGGTCTTCGCCAACGCGGTGGCCCGTCAGGAACGGGTGAAAATCCCCTTGGTCGAGCTGTTCAGCCAGTATTGGGCGCCAACATTGCTCGGCGCGGCCGCGATGGTGGTGTGTTACGCCCTGTTCTACATCTCGACGGTATTTTCCCTGAGCTATGGCGTGTCCACCCTCGGTTACAGCCGCGAGACCTTCCTCGGCCTGCTGTGCTTTGCCGTGCTGTTCATGGCCGCCGCCACGCCGCTATCGGCCTGGGCCAGCGATCGCTACGGGCGCAAGCCGGTACTGGTTATCGGCGGCGTCCTGGCGATTGCCTCGGGTTTCCTCATGGAACCGTTGCTGACCCACGGTTCTACCGCCGGCGTGGCATTGTTCCTGTGCATCGAACTGTTCCTGATGGGCGTGACTTTTGCCCCCATGGGTGCGTTGCTGCCGGAGCTGTTTCCCACACACGTGCGCTACACCGGCGCGTCGGCGGCCTACAACCTGGGCGGCATCGTCGGTGCGTCGGCGGCACCGTTCTTCGCCCAGAAACTGGTGGCGATGGGCGGCCTGAGCTACGTCGGCGGATACGTTTCCGCAGCGGCGGTGCTCAGCGTTATCGCGGTGCTGTGTCTGAAGGAAACCCGCCATAACGACTTGAATCGCATCGGTTGAMTTTTCNDAVANQPTNSATRVATASFIGTAIEFYDFYVYATAAALVIGPVFFPQTSGTAQMLSSFLTFGIAFLARPLGSALFGHFGDRIGRKSTLVASLLLMGVCTTLIGVLPGYASIGAWAPILLCLLRFGQGLGLGGEWGGAALLATENAPKGKRAWFGMFPQLGPSIGFLAANGLFLTLAMTLDDEQFRSWGWRIPFLLSAALVIVGLYVRLKLHETPVFANAVARQERVKIPLVELFSQYWAPTLLGAAAMVVCYALFYISTVFSLSYGVSTLGYSRETFLGLLCFAVLFMAAATPLSAWASDRYGRKPVLVIGGVLAIASGFLMEPLLTHGSTAGVALFLCIELFLMGVTFAPMGALLPELFPTHVRYTGASAAYNLGGIVGASAAPFFAQKLVAMGGLSYVGGYVSAAAVLSVIAVLCLKETRHNDLNRIGPGPT0002956_141DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_SHIKIMATE_TRANSPORT,PGPT0002956-shiA-K08172NANA
D1-35_000461239hypothetical proteinATGGATAGGCTGCCCTTGGGGCCATTGTTTGCGGTAATGGTCGTGCTGATCCTCTGGTCGGCGCTGTTCACGGCCATCGAAGCGGCCCAACAGTATCTGCTCGCGCAACGCAAAGCGTCGCGCTCTGGCGACAAGCCACTGGCGAAGCTGAACTTCCCTATCGCCAGCCTGATCCTGGGCAACACCCTCTGTCGTGCGCTGGCCGTGGTAATCGGCACCTGGCTGGCGATTTTTGCCTGGCTGGAAAACGGCCCGTGGCTGGCCTGGCTCGGCACCAGCGCGGCCTTGCTGGTTTTTGCCGATTACCTGCCTCGCACCCTGGCGACCCGCTACCCCGACGCGGTGCTGGGCCTGGGCAACAGCTTGCTTGCCCTGCCGCTGAAAATTGTCTATCCGGCCGCCTGGCTGCTCAACGGTTTCAGTCAGTTGCTGCTGCGCCCGTTTGCCCGCAAGACCGGCGCTGTCCAGCACAGCGACGATGAGATGCCCGCACCGCCACGCGCTGAGCATGAACAGGAACACAGCGGCCGGGTCCATCCGGTATCCGGCATCCACGCGCTGGACAACATCACCGTCAACGACATCCTCGTGCCCCGCAGCGAGGTGGACGGGATCAACCTCGACGACCCTATCGGCGAAATCATCGAACAGCTGCGCCTGAACCGTCGGACCCGCCTGCCGGTGTTCCACAGCGATATCAACCAGGTCGAAGCGGTGCTCAACACCCGCCAGATCCGCCACCTGCTGGCGGACGCGAGCCTGACCAAGGAAGCGCTGCTGGCCGCCTGCCACGAGCCTTACTTCGTCCCCGAGAGCACGCCGCTGCAGCTGCAGTTGCTCAACTTCCACAAGCAGCAGCGACGCCTGGGCATGGTGGTGGATGAATACGGCGAAGTGCTGGGCATCGTGACCCTGGAAGACATCCTCGAGGAAATCGTCGGCGAGTTCGAAAGCGAGCACAGCCTCGACAATCCCCATGTCCATCCCCAGCCCGATGGCCGCCTGATGATCGAGGGCGCGGCGTCGATCCGCGAGTTGAACAAGACCCTCGGCTGGCACCTGCCTTGCGATGGCCCCAAGACGCTCAACGGCCTAGTCACCGAGGCCCTGGAAACCATCCCCGAAAGTCCGGTCTGCCTGAAGATCGGCCGCTACCGGCTGGAGATCATCGAGACCGTCGACAACCGCGTCAGCCAGGTGCTGGTGTGGCATAACAGCTCGGTGCCCGCTGTTTCCTGAMDRLPLGPLFAVMVVLILWSALFTAIEAAQQYLLAQRKASRSGDKPLAKLNFPIASLILGNTLCRALAVVIGTWLAIFAWLENGPWLAWLGTSAALLVFADYLPRTLATRYPDAVLGLGNSLLALPLKIVYPAAWLLNGFSQLLLRPFARKTGAVQHSDDEMPAPPRAEHEQEHSGRVHPVSGIHALDNITVNDILVPRSEVDGINLDDPIGEIIEQLRLNRRTRLPVFHSDINQVEAVLNTRQIRHLLADASLTKEALLAACHEPYFVPESTPLQLQLLNFHKQQRRLGMVVDEYGEVLGIVTLEDILEEIVGEFESEHSLDNPHVHPQPDGRLMIEGAASIRELNKTLGWHLPCDGPKTLNGLVTEALETIPESPVCLKIGRYRLEIIETVDNRVSQVLVWHNSSVPAVSNANANANANA
D1-35_00047813ypjDCOG4137Inner membrane protein YpjDATGCTCCCCTTGTCACCCAGCTTGCTTGCTTCCCTCGCCGCCGCTTGTCTTTATGCCGCTGCGACCTTCTATCAGGGCACCCGCCTGGCCTCCGGCGCCAAGGCGAACAAGCGCCTGCTGGTCACGCTCGGCGTGCTGGCGGTGCTTGTCCACGCGGCCAGTCTTGTCACCCACCTGATGACGCCGATCGGCCTGGGCCTGGACTTCTTCAATGCCGCCAGCCTGATTGCCGTGGCCGTGATTGCCCTGACGCTGCTGGCCTGCTCGCGCATCCCCGTGGAAAACCTGCTGGTGCTGCTGTTCCCGCTGGGACTGGCCACGGTGCTGCTGGCGCAGTTCGCGCCCTCGGGCACCGTGCAGATCATCGACGAAGAGCCAGGCATTCTCGCCCATATCCTGTTGTCGATCCTCGCCTACGGCCTGTTCACCATCGCGGTATTCCAGGCATTGCTGCTGCTGGTGCAGGACCATCAGCTCAAGCACAAGCACCCGTCCGGGCTGATCCGCAACTTTCCGCCGCTGCAAACCATGGAAAGCCTGCTGTTCGGTTTCCTCTGGGCCGGCTGGACGCTGCTGTCGCTGTCGCTGATTTCCGGCTGGCTGTTCGTCGAAAACCTGTTCGCCCAACACCTGGTGCACAAGACATTGTTGGCGTGCCTGGCGTGGATCGTGTTCAGCGTGCTGCTGTGGGGCCGTAATCGTCTCGGCTGGCGGGGCCACAAGGCAATTCGCTGGACCCTGGCCGGATTCTGCCTGCTGATGCTCGCCTACTTCGGCAGCAAGCTGGTCCGCGAATACATCCTGCATGTCTGAMLPLSPSLLASLAAACLYAAATFYQGTRLASGAKANKRLLVTLGVLAVLVHAASLVTHLMTPIGLGLDFFNAASLIAVAVIALTLLACSRIPVENLLVLLFPLGLATVLLAQFAPSGTVQIIDEEPGILAHILLSILAYGLFTIAVFQALLLLVQDHQLKHKHPSGLIRNFPPLQTMESLLFGFLWAGWTLLSLSLISGWLFVENLFAQHLVHKTLLACLAWIVFSVLLWGRNRLGWRGHKAIRWTLAGFCLLMLAYFGSKLVREYILHVNANANANANA
D1-35_000481377ffhCOG0541Signal recognition particle proteinATGTTTGAAAACCTAACCGACCGTCTCTCGCAGACGCTGCGCCATGTCACCGGCAAGGCGAAACTGACCGAAGACAACATCAAAGACACCCTGCGCGAAGTGCGCATGGCGTTGCTCGAAGCCGACGTCGCCCTGCCGGTGGTCAAGGACTTCGTCAATTCGGTGAAGGAACGCGCCGTCGGCACCGAAGTGTCGCGCAGCCTGACACCGGGCCAGGCCTTCGTGAAGATTGTCCAGGCCGAACTCGAAAGCCTGATGGGCGCCGCCAACGAAGACCTGAACCTGAGCGCCGTGCCTCCGGCGGTCGTGCTGATGGCCGGCCTGCAGGGCGCGGGCAAGACCACCACTGCCGGCAAGCTGGCGCGCTTCCTTAAAGAGCGCAAGAAGAAGTCGGTGATGGTGGTGTCCGCGGACATCTATCGCCCGGCGGCGATCAAGCAGCTGGAAACCCTGGCCAACGACATCGGCGTGACGTTCTTTCCGTCCGACTTGAGCCAGAAGCCGGTGGACATCGCCCAGGCTGCTATAAAGGAAGCGAAGCTCAAGTTCATCGACGTGGTTATCGTCGACACCGCCGGTCGCCTGCACATCGATGAAGAGATGATGGGCGAGATCAAGGCACTGCACGCCGCGATCAACCCGGTGGAAACCCTGTTTGTGGTCGACGCCATGACCGGCCAGGACGCGGCCAACACGGCCAAGGCCTTCGGCGACGCACTGTCGCTGACCGGCGTGATCCTGACCAAGGTCGACGGCGACGCCCGTGGCGGTGCCGCGCTGTCGGTCCGCGCGATTACCGGCAAGCCGATCAAGTTCATCGGTATGGGCGAGAAGAGCGAGGCGCTCGAGCCGTTCCACCCCGAGCGTATCGCCTCGCGTATCCTCGGCATGGGCGACGTGCTCAGCCTGATCGAGCAGGCCGAACAGACCCTCGACAAGGACAAGGCCGACAAACTGGCCAAGAAGCTGAAGAAGGGCAAGGGCTTCGACCTCGAAGACTTCCGCGACCAGTTGCAACAGATGAAGAACATGGGCGGCCTCGGCGGCCTCATGGACAAACTGCCGAACATTGGTGGCGTGAACCTGGCGCAAATGGGCAATGCACAGGGCGCGGCCGAGAAGCAGTTCAAGCAGATGGAAGCCATCATCAACTCCATGACCCCGGCCGAGCGCCGCGACCCTGACCTGATCAGCGGTTCGCGCAAACGCCGTATCGCCATGGGTTCCGGCACGCAGGTGCAGGACATCGGCCGCTTGATCAAGCAACACAAGCAGATGCAGAAGATGATGAAGAAGTTCTCCGCCAAGGGCGGGATGGCCAAGATGATGCGCGGCATGGGCGGTATGTTGCCCGGCGGCGGTATGCCGAAAATGTAAMFENLTDRLSQTLRHVTGKAKLTEDNIKDTLREVRMALLEADVALPVVKDFVNSVKERAVGTEVSRSLTPGQAFVKIVQAELESLMGAANEDLNLSAVPPAVVLMAGLQGAGKTTTAGKLARFLKERKKKSVMVVSADIYRPAAIKQLETLANDIGVTFFPSDLSQKPVDIAQAAIKEAKLKFIDVVIVDTAGRLHIDEEMMGEIKALHAAINPVETLFVVDAMTGQDAANTAKAFGDALSLTGVILTKVDGDARGGAALSVRAITGKPIKFIGMGEKSEALEPFHPERIASRILGMGDVLSLIEQAEQTLDKDKADKLAKKLKKGKGFDLEDFRDQLQQMKNMGGLGGLMDKLPNIGGVNLAQMGNAQGAAEKQFKQMEAIINSMTPAERRDPDLISGSRKRRIAMGSGTQVQDIGRLIKQHKQMQKMMKKFSAKGGMAKMMRGMGGMLPGGGMPKMPGPT0025750_3207DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025750-ffh-K03106NANA
D1-35_00049252rpsPCOG022830S ribosomal protein S16ATGCTAACAATCCGTCTTGCCCTTGGCGGCTCCAAAAAGCGCCCGTTTTACCACCTGACCGTAACCGACAGCCGCAATCCGCGTGACGGTTCGCACAAGGAACAGGTTGGTTTCTTCAACCCTGTTGCCCGTGGTCAGGAAATCCGTCTGTCCGTGAACCAAGAGCGCGTAGCCTACTGGCTGAGCGTTGGTGCACAGCCTTCTGAGCGTGTTGCTCAGTTGTTGAAGGAATCGGCTAAGGCTGCGGCCTGAMLTIRLALGGSKKRPFYHLTVTDSRNPRDGSHKEQVGFFNPVARGQEIRLSVNQERVAYWLSVGAQPSERVAQLLKESAKAAANANANANANA
D1-35_00050537rimMCOG0806Ribosome maturation factor RimMATGAACGCGACGCCAAAAGATGCTGATGATCTGATCGTTGTCGGCAAGATCTATTCTGTTCATGGCGTTCGCGGCGAAGTGAAGGTTTACTCCTTTACTGATCCGATCAAAAACCTGTTGGACTACAAAACCTGGACGCTCAAGCGCGAAGGTAGCGTGAAACAGGTTGAGCTGGTCAGCGGACGTGGGAACGACAAGTTCCTGGTCGCAAAGCTCAAGGGTCTCGATGATCGTGAAGAAGCGCGTCTTCTGGCCGGTTATGAGATCTGCGTGCCGCGCAACCTGTTCCCTGAACTGACCGACGGCGAGTACTACTGGTACCAGCTGGTGGGTCTGAAGGTCATCGACCACCTCGGGCAACTGCTCGGGAAGATCGATCACCTGCTCGAGACCGGTTCGAACGATGTCATGGTGGTAAAGCCTTGCGTCGGCAGCCTGGATGATCGCGAACGCCTGTTGCCCTATACCGAGCAATGCGTGTTGGCCGTTGACCTGGCAGCAGGCGAGATGAAGGTGGAATGGGATGCGGATTTCTAGMNATPKDADDLIVVGKIYSVHGVRGEVKVYSFTDPIKNLLDYKTWTLKREGSVKQVELVSGRGNDKFLVAKLKGLDDREEARLLAGYEICVPRNLFPELTDGEYYWYQLVGLKVIDHLGQLLGKIDHLLETGSNDVMVVKPCVGSLDDRERLLPYTEQCVLAVDLAAGEMKVEWDADFNANANANANA
D1-35_00051753trmDCOG0336tRNA (guanine-N(1)-)-methyltransferaseGTGGCTAATCTGCGCGTTGAAGTCATCACGTTGTTTCCCGAGATGTTTTCCGCCATCAGCGAGTACGGCATAACCAGCCGCGCGGTGAAACAGGAGCTGTTGCAGCTCACTTGTTGGAATCCGCGGGACTACACCACGGATCGACATCACACTGTGGACGATCGCCCGTTTGGCGGTGGTCCGGGCATGGTGATGAAGATCAAGCCCCTGGAAGATGCGCTGGTTCAGGCCAGGACGGCAGCCGGGGAGGGTGCGAAGGTGATCTACCTGTCGCCCCAAGGCCGTCAGCTGACTCAGTCGGCGGTACGCGAGCTGGCGAAATCGGATGCATTGATCCTGATTGCCGGCCGTTACGAAGGCATTGACGAGCGTTTCATTGAAGCTCATGTCGATGAAGAGTGGTCGATTGGCGACTATGTACTGTCTGGCGGCGAGCTGCCGGCGATGGTCCTGATCGATGCGGTTACACGACTGCTGCCTGGAGCTTTAGGGCATGCGGATTCCGCCGAGGAAGATTCCTTTACGGATGGTCTGCTGGATTGCCCGCACTACACCCGACCGGAGGTGTATGCGGATCAGCGTGTTCCCGACGTGTTGCTAAGTGGCAACCACGCGCACATCCGGCGTTGGCGTTTACAGCAGTCCCTTGGTCGGACCTATGAACGACGCGCCGATCTTCTGGAAAGCCGCTCGCTTTCTGGAGAAGAGAAGAAGCTGCTCGAGGAATACATCCGCGAGCGGGACGATAGTTAAMANLRVEVITLFPEMFSAISEYGITSRAVKQELLQLTCWNPRDYTTDRHHTVDDRPFGGGPGMVMKIKPLEDALVQARTAAGEGAKVIYLSPQGRQLTQSAVRELAKSDALILIAGRYEGIDERFIEAHVDEEWSIGDYVLSGGELPAMVLIDAVTRLLPGALGHADSAEEDSFTDGLLDCPHYTRPEVYADQRVPDVLLSGNHAHIRRWRLQQSLGRTYERRADLLESRSLSGEEKKLLEEYIRERDDSPGPT0007595_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0007595-ispF-K01770NANA
D1-35_00052351rplSCOG033550S ribosomal protein L19ATGACTAACAAAATCATCCTTGCACTCGAAGCAGAGCAGATGACCAAAGAAATCCCTCCCTTTGCCCCGGGCGACACCATTGTCGTTCAGGTGAAAGTGAAGGAAGGCGACCGTGCACGTCTGCAAGCGTTCGAAGGCGTTGTTATCGCCAAGCGTAACCGCGGCGTAAACAGTGCATTCACCGTTCGTAAAATCTCCAACGGTGTTGGCGTAGAGCGTACTTTCCAGACCTACAGCCCGCAAATCGACAGCATGGCTGTGAAGCGTCGCGGTGACGTGCGTAAAGCCAAGCTGTACTACCTGCGTGACCTGTCCGGTAAAGCAGCTCGCATCAAGGAAAAACTGGCTTAAMTNKIILALEAEQMTKEIPPFAPGDTIVVQVKVKEGDRARLQAFEGVVIAKRNRGVNSAFTVRKISNGVGVERTFQTYSPQIDSMAVKRRGDVRKAKLYYLRDLSGKAARIKEKLANANANANANA
D1-35_00053897xerDCOG4974Tyrosine recombinase XerDATGCCTGCCATCGATCACCCGCTGATAGACCAGTTTCTCGATGCCCTGTGGCTGGAGAAGGGGTTGTCCGATAACACCCGCGGTGCCTATCGCAGCGACCTCGCCCTGTTCAACGGCTGGCTCCAGGAAAACAACCTGGAGCTGGCCAATGCCGGGCGGGAGTTGATCCTCGATCATCTGGCGTGGCGCCTGGAGCAGAACTACAAGCCGCGCTCTACTGCCCGGTTTCTCTCTGGCTTGCGTGGGTTCTATCGTTATTTGTTGCGGGAAAAGCTGATCGCGGTGGACCCGACCTTGCGCGTGGAAATGCCGCAACTGGGGCGTCCGCTGCCCAAATCCCTTTCGGAAGCGGACGTCGAGGCGCTGCTGGCGGCACCGGACCTCAGCGACCCCATCGGTCAGCGCGACCGGGCCATGCTGGAAGTGTTGTACGCCTGTGGCCTGCGGGTCACTGAACTGATCAGCCTGACGCTGGAACAAGTGAACCTGCGCCAGGGCGTGTTGCGGGTGATGGGCAAGGGCAGCAAGGAGCGCCTGGTTCCGATGGGCGAAGAAGCGATCGTCTGGGTCGAGCGCTACATGCGCGATGGCCGTCATGACTTGCTGGGCGGGCGTCCCAGCGACGTGCTGTTTCCCAGCCTGCGCGGCGAGCAGATGACCCGCCAGACTTTCTGGCACCGCATCAAGCACCAGGCCAAGGTGGCCGGGATCAACAAATCGCTCTCGCCCCACACGCTGCGCCATGCCTTCGCCACGCACTTGCTCAATCACGGCGCCGACCTGCGGGTGGTGCAGATGCTGCTGGGGCATAGCGACCTGTCCACCACCCAGATCTACACCCACGTCGCCCGGGCGCGGTTGCAGGAGTTGCATGCCAGGCACCATCCGCGCGGCTGAMPAIDHPLIDQFLDALWLEKGLSDNTRGAYRSDLALFNGWLQENNLELANAGRELILDHLAWRLEQNYKPRSTARFLSGLRGFYRYLLREKLIAVDPTLRVEMPQLGRPLPKSLSEADVEALLAAPDLSDPIGQRDRAMLEVLYACGLRVTELISLTLEQVNLRQGVLRVMGKGSKERLVPMGEEAIVWVERYMRDGRHDLLGGRPSDVLFPSLRGEQMTRQTFWHRIKHQAKVAGINKSLSPHTLRHAFATHLLNHGADLRVVQMLLGHSDLSTTQIYTHVARARLQELHARHHPRGPGPT0022000_6288DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-INTEGRASES|RECOMBINASES,PGPT0022000-xerD-K04763NANA
D1-35_00054732dsbCCOG1651Thiol:disulfide interchange protein DsbCATGCGTTTGATCCAGATGTTCACCGCCGCCGCCATTGCGTTGGCCAGTACCTTTGCCATCGCCGATGACGCGGCCGACCAGGCGATCCGCAAAAGCCTCGCCAACCTCGAGCTTGAAGTGCCGATCGAGGCCATCTCCGCCAGCCCGATGTCCGGCCTGTATGAGGTCAAGCTGCAGGGCAGCCGTGTGCTGTATGCCAGCGCCGACGGTCAGTACATCGTCCAGGGCAACCTGTTCGCGCTCAAGGACGGCAAGCCGGTGAATCTCACCGAGATCACCGAGCGCCAAGGCATCTCCAAATTGATCAACGGTATCCCGGTCGCCGAAACCGTGGTCTACCCGGCGGTGGGCGAAACCAAGTCGCACATTACCGTGTTCACCGACACCACTTGCCCGTACTGCCACAAACTGCACGCCGAAGTGCCAGAGCTGAACAAGCGTGGCATCGAGGTGCGCTACGTGGCGTTCCCGCGTCAGGGCCTCGGCTCGCCGGGCGATGAGCAATTGCAGGCAGTCTGGTGCTCCAAGGACAAGAAAGCGGCCATGGACAAAATGGTCGACGGCAAGGAAATCAAAGCCGCCAAGTGCGAGAACCCGGTCTCCAAGCAATTCGCCCTCGGCCAGTCCATTGGTGTGAACGGCACGCCGGCCATCGTTTTGGCCGATGGCCAGGTGATTCCGGGCTACCAGCCGGCGCCGCAAGTCGCCAAACTGGCCCTTGGGGCGAAATGAMRLIQMFTAAAIALASTFAIADDAADQAIRKSLANLELEVPIEAISASPMSGLYEVKLQGSRVLYASADGQYIVQGNLFALKDGKPVNLTEITERQGISKLINGIPVAETVVYPAVGETKSHITVFTDTTCPYCHKLHAEVPELNKRGIEVRYVAFPRQGLGSPGDEQLQAVWCSKDKKAAMDKMVDGKEIKAAKCENPVSKQFALGQSIGVNGTPAIVLADGQVIPGYQPAPQVAKLALGAKPGPT0030050_960DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_IV_SECRETION_SYSTEMSCE-T4SS-CONJUGAL_TRANSFER_PILUS_ASSEMBLY_PROTEIN,PGPT0030050-dsbC-K03981NANA
D1-35_000551305homCOG0460Homoserine dehydrogenaseGTGAATCCGGTCAAAGTAGGCATCTGTGGGTTAGGTACCGTCGGTGGCGGCACCTTCAACGTACTTCAGCGCAACGCCGAGGAAATTGCTCGTCGTGCCGGGCGTGGGATCGAAGTGGCACAAATTGCCATGCGCACGCCAAAGCCTCAGTTCCAGACGACCGGTATTGCGATTACCAACGATGTCTTCGAAGTGGCCACGAACCCTGAGATCGACATCGTGATAGAGCTGATGGGCGGCTATACCGTTGCCCGCGAGCTGGTACTCAAGGCCATCGAGAATGGCAAGCATGTGGTCACCGCGAACAAGGCGCTTATCGCCGTTCACGGCAATGAAATTTTCGCCAAGGCCCGCGAGAAGGGCGTGATCGTGGCTTTCGAGGCCGCCGTAGCCGGTGGTATCCCGGTGATCAAGGCGATTCGCGAAGGGCTGTCGGCCAACCGGATCAACTGGGTGGCCGGGATCATCAACGGCACCGGCAACTTCATCCTCACCGAGATGCGCGAGAAGGGCCGCACTTTTGAAGACGTGCTGGCCGAAGCCCAGGCGCTGGGCTACGCCGAGGCGGACCCGACGTTCGACGTCGAAGGCATTGATGCGGCGCACAAGCTGACGATCCTGGCGTCAATCGCCTTCGGTATTCCGCTGCAGTTCGACAAGGCCTACACCGAAGGCATCACCAAGCTGACCACCGCCGACGTGAACTACGCCGAGGCCCTGGGCTATCGCATCAAGCACCTGGGCGTGGCGCGCAGCACCGCCAGCGGCATCGAGTTGCGTGTGCATCCGACGCTGATCCCCGCCGATCGCCTGATCGCCAACGTCAACGGCGTGATGAACGCGGTAATGGTCAACGGCGACGCCGCCGGCTCGACCTTGTTCTATGGCGCTGGCGCTGGCATGGAGCCGACCGCTTCTTCGGTGGTTGCCGACCTGGTGGACGTGGTTCGCGCCATGACATCCGACCCGGAAAATCGCGTGCCGCACCTGGCGTTCCAGCCGGACTCGCTGTCGGACCACCCGATTCTTCCGATCGAAGCGTGCGAAAGTGCCTACTACCTGCGTATCCAGGCGAAGGACCATCCAGGGGTGTTGGCCCAGGTTGCCAGCATTCTTTCGGAACGCGGCATCAACATCGAGTCGATCATGCAGAAGGAAGTCGAGGAGCACGACGGCCTGGTGCCGATGATCCTGCTGACCCACCGCGTGGTCGAGCAACGCATCAACGATGCGATCGCAGCGTTGGAGGCGCTTCAGGGAGTCGTTGGCCCGGTGGTCCGTATCCGCGTCGAGCATTTGAACTAAMNPVKVGICGLGTVGGGTFNVLQRNAEEIARRAGRGIEVAQIAMRTPKPQFQTTGIAITNDVFEVATNPEIDIVIELMGGYTVARELVLKAIENGKHVVTANKALIAVHGNEIFAKAREKGVIVAFEAAVAGGIPVIKAIREGLSANRINWVAGIINGTGNFILTEMREKGRTFEDVLAEAQALGYAEADPTFDVEGIDAAHKLTILASIAFGIPLQFDKAYTEGITKLTTADVNYAEALGYRIKHLGVARSTASGIELRVHPTLIPADRLIANVNGVMNAVMVNGDAAGSTLFYGAGAGMEPTASSVVADLVDVVRAMTSDPENRVPHLAFQPDSLSDHPILPIEACESAYYLRIQAKDHPGVLAQVASILSERGINIESIMQKEVEEHDGLVPMILLTHRVVEQRINDAIAALEALQGVVGPVVRIRVEHLNPGPT0020155_1604DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_SERINE_DEGRADATION,PGPT0020155-hom-K00003NANA
D1-35_000561410thrCCOG0498Threonine synthaseATGCGCTATATCAGTACCCGCGGCCAGGCACCGGCCCTGAATTTCGAAGATGTCCTGCTGGCCGGCCTGGCCACGGACGGCGGCCTCTATGTGCCGGAGAACCTGCCGCGCTTCACCCAGGAAGAAATCGCTTCCTGGGCCGGCCTGCCGTATCACGAGCTGGCCTTCCGGGTGATGCGCCCGTTCGTCACCGGCAGCATTCCGGACGCTGATTTCAAGAAGATCCTGGAAGAGACCTACGGCGTCTTTTCCCACAACGCCATCGCGCCGTTGCGTCAGCTCAACGGTAACGAATGGGTGATGGAGCTGTTCCACGGCCCGACCCTGGCCTTCAAGGATTTCGCCCTGCAATTGCTCGGCCGCCTGCTGGACTATGTGCTGCAAAAGCGTGGCGAGCGCGTGGTGATTGTCGGTGCCACCTCCGGCGACACCGGCTCGGCCGCCATCGAAGGTTGCAAGCATTGCGAGAACGTCGATATTTTCATCCTGCACCCGCACAACCGCGTCTCGGAAGTGCAGCGTCGGCAGATGACGACGATTTTCGGCGATAACATCCATAACATCGCCATCGAAGGCAACTTCGATGACTGCCAGGAAATGGTCAAGGCCAGCTTCGCCGACCAGAGCTTCCTCAAGGGCACCCGGCTGGTGGCGGTGAACTCGATCAACTGGGCGCGGATCATGGCCCAGATCGTCTATTACTTCCACGCGGCCCTGCAGTTGGGCGGCCCGGCCCGCTCGGTGGCGTTCTCGGTACCCACCGGCAATTTCGGCGATATCTTCGCCGGTTACCTGGCACGCAACATGGGGCTGCCGATCAACCAGCTGATCGTCGCCACCAACCGCAACGACATCCTGCACCGCTTCATGAGCGGTAACCAGTACGTCAAGGAAACCCTGCACGCCACGTTGTCGCCGTCGATGGACATCATGGTGTCGTCGAACTTCGAGCGTTTGCTGTTCGACCTGCACGGTCGTAATGGCGCGGCGATTGCGGGCCTGATGGACAGCTTCCGTCAGGGCGGTGGTTTCAGCGTCGAGGCCGAACGCTGGACCGAAGCCCGCAAGCTGTTCGACTCCCTGGCGGTGGATGACGCGCAGACCTGCGAAACCATCGCCGAGGTGTTCGAGCAGAGCGGTGAGTTGCTCGATCCGCACACCGCCATCGGGGTGCGAGCGGCGCGCGAGTGCCGCCGGAGCCTGGATATCCCGATGGTCATCCTGGGCACCGCTCACCCGGTGAAGTTTCCGGAAGCCGTAGAGAAAGCTGGCGTAGGAAAAGCGCTCGAGCTGCCTGCACATCTTTCTGATTTGTTTGAACGAGATGAGCGTTGCACCGTATTGCCCAATGACTTGAAGGCCGTGCAGGCCTTTGTCAGTCAGCATGGCAACCGCGGCAAGCCGCTCTGAMRYISTRGQAPALNFEDVLLAGLATDGGLYVPENLPRFTQEEIASWAGLPYHELAFRVMRPFVTGSIPDADFKKILEETYGVFSHNAIAPLRQLNGNEWVMELFHGPTLAFKDFALQLLGRLLDYVLQKRGERVVIVGATSGDTGSAAIEGCKHCENVDIFILHPHNRVSEVQRRQMTTIFGDNIHNIAIEGNFDDCQEMVKASFADQSFLKGTRLVAVNSINWARIMAQIVYYFHAALQLGGPARSVAFSVPTGNFGDIFAGYLARNMGLPINQLIVATNRNDILHRFMSGNQYVKETLHATLSPSMDIMVSSNFERLLFDLHGRNGAAIAGLMDSFRQGGGFSVEAERWTEARKLFDSLAVDDAQTCETIAEVFEQSGELLDPHTAIGVRAARECRRSLDIPMVILGTAHPVKFPEAVEKAGVGKALELPAHLSDLFERDERCTVLPNDLKAVQAFVSQHGNRGKPLPGPT0009175_1848DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_SERINE_DEGRADATION,PGPT0009175-thrC-K01733NANA
D1-35_000571371bvgS_1Virulence sensor protein BvgSATGCTGTTCGTTAACCGATGCAAACCGGCGTTGAGCTGGATGATGGGCCTCGCCCTGATGTACTGGGGCCAATGGGGCGGCGCTGACCCGTCGACGCCTCCCGGGCAGTCACCGCTCGAAGCGGGCGAGAGACTGGTGCTCGACGCCCGGGAGCTGGACTGGATCAGGCAGAACCCGCGTGTCGTTGTGGCGTCGATGCAAATCCCGCTGTACCTGTTCAAGAATGCACAGGGAGAATGGAGCGGCCTGAACGCTGACATGCTCCATGCCATTGAGCGAATGACCGGACTTGAATTCATCCATCGGGAGTCGTTCTCTGCCGATCAATTGATAGAGATGCTGGAAAACGGCGAAGCCGACATGTCTAGTGTCCTGGCGATGAATGACGAGCGCCGGGCTGTGCTGAATTTCAGCCATGCGTTCGGCGGTTTCGACTGGGTATTCGTTGGCCGTGAGGGGGAGCCTGCGCTTCGTTCGCTGGATCAGTTGGCGGGCAAGGTGCTGGCGTTGCCGGCACGGCATGCCCTGGAAGCGGAAATCCGCCGCGAGCATCCAACCATAGCGCTGCGCACGGTGATGACCCCTGCCGAGGCAAGGGCGTTGGTGGAAAATCGCGAAGCCCATGCCACCATCGAAAGCGAAACCGCCGTGCACCTCTATCCTTCAGGGCAACTGCAGGTGGGGGGCAGTCTCGAAGGCATGTGGGAGCCAGACTATCTCGCTGTACGGCAGGATTCCCAAACATTGCTGGATGTCCTCAACAAGGCGCTGGAAGCGTTTCCCGCCGAAGACATGCGCGCGCTACGTTTCAAGTGGTTCGCCGAGAAAACACCTGATCAAGAACCGTCGTTCTGGTCGCGCATCCCCCTGCAGGGCTATTGGTGTGTGATCGCAGCAGGGGTGTTCGGCCTGTTGTCGCTGCTCTGGAACCGCCGCTTGCAGGGCCAGATCGGACAGCGCCTCAAGGCCGAGACCGTACTCAACGACCAATTGACGTTCCAGCGCGCCTTGATGGATGCCATTCCCGATCCGATCTTTATTCGAGATCTCGAAGGGCGGCTGATCATGTGCAACAAAAGTTATGAGGAGCGGTTCGCGACTCGCTTCGAGAAGCTGCGAGGCACGTGTCTGACGGAGTCTGCGGCAATGCCGGCGGCAACCGCCGAACTGTTGCACGGGGAGCTGATGGAGCAGCTGCGAACCCGTCAGCCCCGGTTTGTCGACCGCCAGCTGATGTTGCGCAGTGGATTGCAGGACATCTATCACTGGTCGGTGCCCTTTTATGCCGCCGATGGCCGGTTGCGCGGTGTCCTGGGCGGTTGGATCGAGGTTGGACGCCGGAGGGATCGTTCCAAGCGGCTGCCGGCTTGAMLFVNRCKPALSWMMGLALMYWGQWGGADPSTPPGQSPLEAGERLVLDARELDWIRQNPRVVVASMQIPLYLFKNAQGEWSGLNADMLHAIERMTGLEFIHRESFSADQLIEMLENGEADMSSVLAMNDERRAVLNFSHAFGGFDWVFVGREGEPALRSLDQLAGKVLALPARHALEAEIRREHPTIALRTVMTPAEARALVENREAHATIESETAVHLYPSGQLQVGGSLEGMWEPDYLAVRQDSQTLLDVLNKALEAFPAEDMRALRFKWFAEKTPDQEPSFWSRIPLQGYWCVIAAGVFGLLSLLWNRRLQGQIGQRLKAETVLNDQLTFQRALMDAIPDPIFIRDLEGRLIMCNKSYEERFATRFEKLRGTCLTESAAMPAATAELLHGELMEQLRTRQPRFVDRQLMLRSGLQDIYHWSVPFYAADGRLRGVLGGWIEVGRRRDRSKRLPAPGPT0014485_391DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE_EVG-EMR_SYSTEM,PGPT0014485-evgS|bvgS-K07679NANA
D1-35_00058288hypothetical proteinATGGAAAGTATCAGCCTGTTGCTCAATGAAGCCTTGAGCCCGTATCAGGTCACGCTCACGCCCTCCGGTACCAAAGGCGAATGCCTGGTAACGCTGAAGAATTCCTCGGGGGCCATCATGGTCGAGCGGCTGTTCAACCAGGCCCAACTGACCGACAAGCGCCAACTGACCGACGTGGTCGACGGCCTGCATCGCGATGTGCTGATTGCCGAGGGGCGGCTGGAGCCGTGTGTCATCGCGGCGTTACGTAACGTGGCGCGCGACAAGGTCATGCTTGCTGCCAATTGAMESISLLLNEALSPYQVTLTPSGTKGECLVTLKNSSGAIMVERLFNQAQLTDKRQLTDVVDGLHRDVLIAEGRLEPCVIAALRNVARDKVMLAANNANANANANA
D1-35_000591200smtB_1COG1804Succinyl-CoA--L-malate CoA-transferase beta subunitATGTCGCTTACTGCCAAACCTCTTGCCGGCGTCAAGGTCATCGAACTCGGCACGCTGATCGCCGGCCCTTTTGCCTCGCGTATCTGCGGTGAATTCGGTGCCGAGGTCATCAAGGTCGAATCGCCGGACGGCGGCGATCCGCTGCGCAAGTGGCGCAAATTGTATGAAGGTACGTCCTTGTGGTGGTTCGTCCAGGCACGCAACAAAAAGTCCGTGACGCTGAACCTCAAGCACCCCGAAGGCCTGGCGATCCTGAAAAAACTGCTTGGCGAAGCCGACATCCTGATCGAGAACTTTCGCCCCGGCGTGCTGGAAAAGCTCGGCCTGGGCTGGGACGTGTTGCACGCACTGAATCCGAAGCTGGTCATGGTCCGGCTATCAGGCTTCGGCCAGACCGGGCCGATGAAGGATCAGCCCGGGTTCGGCGCCGTCGGTGAGTCGATGGGAGGCCTGCGCTACATCACCGGCTTCGAGGATCGCCCACCGGTGCGCACCGGTATCTCCATCGGCGACTCGATCGCCGCGCTCTGGGGGGTGATCGGCGCGCTGATGGCCTTGCGTCACCGGGAGGTCAACGGTGGGACCGGCCAGGTGGTGGACGTGGCGCTATACGAAGCGATTTTCGCCATGATGGAAAGCATGGTGCCGGAGTTCGACGTGTTCGGTTTCATCCGCGAACGCACCGGCAACATCATGCCCGGCATCACGCCGTCGTCCATCCACACCAGCGCCGACGGCAAGCATGTACAGATCGGCGCCAACGGTGACGCCATCTTCAAGCGTTTCATGCAGGTCATTGGCAGGGACGACTTGGCGAACGACCCGCAGCTGGCCAGCAATGATGGCCGTGACGAACGCCGCGACGAGTTGTATGGGGTCATTGATCGCTGGGTCAACTCGCTGCCGTTGGATGCCGTCATCGACCAGTTGAACCAGGCCGGCGTGCCGGCAAGCCGGATCTTCAGTGCCGAGGACATGTTCAGCGACCCGCAATTTCTCGCCCGCGAGATGTTCCTGCAAGCCAGGCTGCCGGATGGCAAGGCGTTCAAGATGCCTGGGATCGTACCGAAGCTTTCCGACACACCGGGAACAGCCGAATGGGTCGGGCCAGCATTGGGCGAGCACACGGCAGAGGTGCTCGGTGAGCTTGGCTACGATGCGCAGCAGGTCGCCAGGCTGCGCACCGACGGCGCCGTCTGAMSLTAKPLAGVKVIELGTLIAGPFASRICGEFGAEVIKVESPDGGDPLRKWRKLYEGTSLWWFVQARNKKSVTLNLKHPEGLAILKKLLGEADILIENFRPGVLEKLGLGWDVLHALNPKLVMVRLSGFGQTGPMKDQPGFGAVGESMGGLRYITGFEDRPPVRTGISIGDSIAALWGVIGALMALRHREVNGGTGQVVDVALYEAIFAMMESMVPEFDVFGFIRERTGNIMPGITPSSIHTSADGKHVQIGANGDAIFKRFMQVIGRDDLANDPQLASNDGRDERRDELYGVIDRWVNSLPLDAVIDQLNQAGVPASRIFSAEDMFSDPQFLAREMFLQARLPDGKAFKMPGIVPKLSDTPGTAEWVGPALGEHTAEVLGELGYDAQQVARLRTDGAVPGPT0002130_587DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0002130-frc|yfdW-K07749NANA
D1-35_00060543yaeQCOG4681putative protein YaeQATGGCCCAGCCGTCCACGACCTACAAGTTTGAACTGAACCTCACTGACCTCGACCGCAGCGTGTACGAGAATGTGAAGCAGACCATTGCCCGCCATCCTTCGGAAACCGAAGAGCGCATGACCGTGCGCCTCTTGGCCTACGCGTTCTGGTACAACGAGCTGCTGGCGTTTGGTCGTGGGCTGTCGGATGTCGACGAACCCGCGTTGTGGGAAAAAAGTCTGGATGACCGTGTGCTGCACTGGATCGAAGTAGGCCAGCCGGATGCCGATCGCCTGACCTGGTGCTCGCGCCGCACCGAGCGCACCAGCCTGCTGGCCTACGGCAGCCTGCGGGTGTGGGAAGGCAAGGTGATCCCCGCGGTGAAGAATCTGAAGAACGTGAACATCGCCGCCGTCCCCCAGGAAGTGCTTGAAACCCTGGCCAAGGACATGCCACGGGTGATCAAGTGGGACGTGATGATCAGCGAAGGGACGATTTTCGTGACCGACGACCGTGGCCAGCATGAGGTTCAGTTGCAATGGTTGCTGGGCGAGCGTGGCTGAMAQPSTTYKFELNLTDLDRSVYENVKQTIARHPSETEERMTVRLLAYAFWYNELLAFGRGLSDVDEPALWEKSLDDRVLHWIEVGQPDADRLTWCSRRTERTSLLAYGSLRVWEGKVIPAVKNLKNVNIAAVPQEVLETLAKDMPRVIKWDVMISEGTIFVTDDRGQHEVQLQWLLGERGNANANANANA
D1-35_000611710recJCOG0608Single-stranded-DNA-specific exonuclease RecJATGCGCATAGAACCCCGCCAGTTACCCGCCACCCTGCCGTTTCTCGGTGACCTGCCGCCGTTGTTGACCCGTCTTTACGCAGCACGTGGCGTGCAGTCCGAAGCGGAGCTGGACAAGAGCCTGGCGCGCCTGATTCCTTATCAGCAACTCAAGGGGATCGATGCCGCGGTGGACCTGCTGGTGGTGGCGCTGGAGCAGCGTCAGCGCATCCTCATCGTCGGCGATTTTGATGCCGATGGCGCGACCGCCAGTACCGTGGGCATGCTTGGTCTGCGCCTGCTCGGTGCGGCCCATGTCGACTACCTGGTGCCCAATCGCTTTGAATATGGCTATGGCCTCACGCCGGAAATCGTCGAAGTCGCCCTGACACGCGCGCCGCAATTGTTGGTCACCGTGGACAACGGCATCTCCAGCGTGGAAGGCGTGGCAGCGGCGAAAGCGGCCGGCCTCAAGGTGCTGGTCACCGACCACCACTTGCCGGGGCTCGAATTGCCGGCGGCCGATGCCATCGTCAACCCGAACCAGCCCGGTTGTGAGTTCCCGAGCAAGGCACTGGCGGGTGTCGGGGTGATCTTTTATGTGCTGATGGCCCTGCGGGCCCGTCTGCGCAGCCTCGGTTGGTATGCCAGCAAGCCGCAGCCGAACATCGGCGAACTGCTCGACCTGGTGGCGCTGGGCAGCGTCGCCGACGTGGTGCCGCTGGATGCCAACAACCGGATCCTGGTGCACCAGGGCCTGGAGCGTATTCGCGCCGGACGCGCCCGGCCCGGCATCAAGGCCATCCTCGAAGTAGCCAAGCGCGATCACTCGCGCATCACTTCCACCGACCTCGGTTTCATCCTCGGACCGCGCCTGAATGCGGCGGGGCGGCTGGATGACATGAGCCTGGGTATCGAATGCCTGCTTACCGATGACCCGGCGCTGGCGCGGGACATGGCGGCGCAGCTTGATGGCATGAACCAGGACCGCAAATCCATCGAACAGGGCATGCAACGTGAAGCCATGGCCCAGCTCAAGGATCTGCCGGTGGAGTCGATGCCGTTCGGCTTGTGCCTGTTCGATCCGCAATGGCACCAGGGCGTCATCGGGATCCTGGCGTCACGCATGAAAGAGCGCTATTTCCGTCCGACCATTGCTTTCGCCGATGCCGGGGACGGCCTGCTCAAAGGGTCGGGCCGCTCGGTGCCGGGATTTCATATCCGCGATGCGTTGAGCGTTGTCGCGGCGCAGCATCCGACCCTGATCAGCAAATACGGCGGTCACGCCATGGCGGCGGGGCTGACGTTGCCGGAGGCGAACTTTGCCTTGTTTGCCGAGGCTTTTGACGCGGAGGTGCGCCGGCAACTACGTGAAGAAGACCTGACGGGGCGGCTGTTGTCGGATGGCTCTCTGGCGGTGGAAGAGTTCCACCTGGAACTGGCCCGGGCACTGCGCCATGCCGGGCCGTGGGGACAGCATTTTCCGGAGCCGGTGTTCCACGGCGTGTTCCAGCTGGTCGAGCAGCGAGTGGTGGGTGAACGGCACCTGAAGGTCATTCTCAAGACTGAGTGCGGTTCGGTGAAACTCGATGGCATAGCCTTCGGCATTGATCGGGAAATCTGGCCCAACCCCACCGTGCGCTGGGTAGAGCTGGCCTATAAGCTTGACCTCAACGAGTTCCGTGGCCAGGAAACGGTGCAGTTGATGATTGCTCATATCGAACCGCGGTAGMRIEPRQLPATLPFLGDLPPLLTRLYAARGVQSEAELDKSLARLIPYQQLKGIDAAVDLLVVALEQRQRILIVGDFDADGATASTVGMLGLRLLGAAHVDYLVPNRFEYGYGLTPEIVEVALTRAPQLLVTVDNGISSVEGVAAAKAAGLKVLVTDHHLPGLELPAADAIVNPNQPGCEFPSKALAGVGVIFYVLMALRARLRSLGWYASKPQPNIGELLDLVALGSVADVVPLDANNRILVHQGLERIRAGRARPGIKAILEVAKRDHSRITSTDLGFILGPRLNAAGRLDDMSLGIECLLTDDPALARDMAAQLDGMNQDRKSIEQGMQREAMAQLKDLPVESMPFGLCLFDPQWHQGVIGILASRMKERYFRPTIAFADAGDGLLKGSGRSVPGFHIRDALSVVAAQHPTLISKYGGHAMAAGLTLPEANFALFAEAFDAEVRRQLREEDLTGRLLSDGSLAVEEFHLELARALRHAGPWGQHFPEPVFHGVFQLVEQRVVGERHLKVILKTECGSVKLDGIAFGIDREIWPNPTVRWVELAYKLDLNEFRGQETVQLMIAHIEPRNANANANANA
D1-35_000621107namACOG1902NADPH dehydrogenaseATGAGTCTGCTGCTGGAACCTTATACCCTTCGTCAACTGACCCTGCCCAATCGCATCGCGGTTTCGCCGATGTGCCAGTATTCGAGCGCCGATGGCCTGGCCAACGACTGGCATCTGGTGCACCTCGGCAGTCGTGCCGTGGGCGGTGCCGGCCTGGTGTTCACCGAAGCCACCGCCGTCACGGCCGATGGCCGGATTACCGCCGAGGACCTCGGGTTGTGGAACGATGAACAGATCGAGCCTTTGCAACGCATCACCCGGTTCATAACCGCCCAAGGCGCCGTGCCTGGCATCCAGCTGGCCCACGCCGGGCGCAAGGCAAGCACCTGGCGGCCCTGGCTGGGCAAGCACGGCAGCGTCAAGCCGGAAGAGGGCGGCTGGGTTCCGGTCGGCCCTTCGCCGATTGCCTTCGACCCCCAGCACACCCAACCGAAGCAGCTCGATGAAGCACAGATCGCCGACGTCATCCAGGCGTTCGTCGACGCGGCCAAACGCGCCCTGACGGCAGGTTTCAAGGTCGTCGAGGTGCATGCTGCCCATGGCTACCTGCTGCACCAGTTCCTGTCGCCGTTGAGCAATCAGCGGCGGGATCAATACGGTGGGTCGTTTGAAAATCGTATCCGCCTGGTACTGCAAGTGACCGAAGCGGTCCGGGCCGTATGGCCGGAGGAGCTGCCGGTTTTTGTTCGGGTATCCGCCACCGACTGGGTCGAAGACGGCTGGAACCCCGATGAAACGGTGGAACTGGCGCGGCGATTCCGGGCGCTGGGGGTGGACTTGATCGATGTGTCGTCGGGCGGTACCGCCGCCAACGCCGAGATTCCCACCGGCCCTGGCTACCAGACGCGCTTCGCCGAGCGGGTGCGCAAGGAGTCGGAAATCGCCACTGGCACGGTCGGGATGATCACCGAGCCGGCCCAGGCCGAACACATCCTGCGCACCTGCCAGGCCGATATTATCTTCCTCGCTCGCGAGCTGTTGCGCGATCCGTACTGGGCGCTGCATGCCGACGACGACCTGGGCGGACGCAAGGCCACCTGGCCGGCGCAGTACCAGCGGGCGACGCATCGGGATCAGCCGATCCATGAGTCGGATTTGCGCGACTGAMSLLLEPYTLRQLTLPNRIAVSPMCQYSSADGLANDWHLVHLGSRAVGGAGLVFTEATAVTADGRITAEDLGLWNDEQIEPLQRITRFITAQGAVPGIQLAHAGRKASTWRPWLGKHGSVKPEEGGWVPVGPSPIAFDPQHTQPKQLDEAQIADVIQAFVDAAKRALTAGFKVVEVHAAHGYLLHQFLSPLSNQRRDQYGGSFENRIRLVLQVTEAVRAVWPEELPVFVRVSATDWVEDGWNPDETVELARRFRALGVDLIDVSSGGTAANAEIPTGPGYQTRFAERVRKESEIATGTVGMITEPAQAEHILRTCQADIIFLARELLRDPYWALHADDDLGGRKATWPAQYQRATHRDQPIHESDLRDPGPT0005575_544DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_NITRO-|AMINOBENZOATE_DEGRADATION,PGPT0005575-namA-K09461NANA
D1-35_000631626mdoDCOG3131Glucans biosynthesis protein DATGCACCGCAGGAATCTGCTCAAGGCCTCCATGGCCTTCGCCGCCTACACCGGACTGTCGGCCTCCGGGCTCATGGCCGCGCGTGCCTGGGCTGCCGATCAGACCGCCGACGGCGAAGCCCGTCCCTTCGATTTCAACCAATTGAAAGACCAGGCCCTGCGACTGGCCGCAAGCCGCTACGTCGACACCAAGCAAGTCCTGCCGCCGACGCTGGCGCAGATGTCCCCCTTGCAGTTCAATGCCATCCAGTACGACGCCAATCATTCGCTGTGGAATGAACTGGACGGCAAGCTGGACGTGCAGTTTTTCCATGTCGGCATGGGCTTCAAGCAGCCGGTGCGCATGTACAGTGTCGACCCGAAGACCCGCATGGCGCGTGAAGTACACTTTCGCCCGGAACTGTTCAACTACGAGAAGACCACGGTCAATACCTCGCAGCTCACCGGCGACCTCGGGTTCGCAGGGTTCCGGGTGTTCAAGGCACCGGAGCTGGACCGGCACGACATTGTTTCGTTTCTCGGCGCCAGTTATTTCCGCGCGGTGGACGCCACCGGCCAGTACGGCTTGTCTGCCCGCGGCCTGGCCATCGACACGTATGCGAAAAAACGCGAGGAATTCCCGGACTTCACCAAGTTCTGGTTCGAAACGCCGGACAAGAACAGCACCCGCTTCGTGGTCTATGCCCTGCTCGACTCACCGAGCGCCACCGGTGCCTACCGCTTTGACATCGATTGCCAGCCTACCCGGGTGGTGATGGAAGTCGACGCGCACGTCAACGCGCGTACCGCCATCGAGCAGTTGGGCATCGCGCCGATGACCAGCATGTTCAGTTGCGGCACCGTCGAGCGACGCATGTGCGACACCATTCACCCGCAGATCCACGACTCCGACCGCCTGGCCATGTGGCGCGGCAACGGCGAGTGGGTCTGCCGCCCGCTGAACAACCCCGCCACCCTGCAGTTCAATGCTTTCGCCGACAACAACCCGAAAGGTTTCGGCCTGGTGCAGACCGACCACGACTTCGAGAGTTACCAGGACACCGTGGACTGGTACAGCAAACGGCCAAGCCTGTGGGTCGAACCTACGACCGCTTGGGGCGAAGGCTCGGTCGACCTGCTGGAAATTCCTACCACCGGCGAGACCCTGGATAACATCGTTGCGTTCTGGACGCCGAAAAAACCGGTCGCTGCCGGCGATTCGTTGAACTATGGCTACAAACTCTACTGGAGCGCCCTGCCGCCGGTCAGCACGGACCTGGCCCGCGTCGACGCCACCCGTTCCGGCATGGGCGGCTTCATCGAAGGCTGGGCTCCCGGCGAACACTACCCCACCGTCTGGGCACGGCGCTTCGCGGTGGACTTCACCGGTGGCGGTCTCGATCAGTTGCCACCGGGCACCGGCATCGAGCCGGTGGTGACCTGCTCCCACGGCGAGGTCAAGGATTTCAACGTGCTGGTGCTGGACGCGATCAAGGGTTATCGCATCACCTTCGACTGGTACCCGATCGACGACCGCGTGGACCCGGTGGAGATGCGCCTGTTCATTCGCTCCAAGGACCGGACGCTGAGCGAGACCTGGTTGTACCAGTACTTCCCGCCGGCGCCGGATAAGCGTAAGTACCCCTGAMHRRNLLKASMAFAAYTGLSASGLMAARAWAADQTADGEARPFDFNQLKDQALRLAASRYVDTKQVLPPTLAQMSPLQFNAIQYDANHSLWNELDGKLDVQFFHVGMGFKQPVRMYSVDPKTRMAREVHFRPELFNYEKTTVNTSQLTGDLGFAGFRVFKAPELDRHDIVSFLGASYFRAVDATGQYGLSARGLAIDTYAKKREEFPDFTKFWFETPDKNSTRFVVYALLDSPSATGAYRFDIDCQPTRVVMEVDAHVNARTAIEQLGIAPMTSMFSCGTVERRMCDTIHPQIHDSDRLAMWRGNGEWVCRPLNNPATLQFNAFADNNPKGFGLVQTDHDFESYQDTVDWYSKRPSLWVEPTTAWGEGSVDLLEIPTTGETLDNIVAFWTPKKPVAAGDSLNYGYKLYWSALPPVSTDLARVDATRSGMGGFIEGWAPGEHYPTVWARRFAVDFTGGGLDQLPPGTGIEPVVTCSHGEVKDFNVLVLDAIKGYRITFDWYPIDDRVDPVEMRLFIRSKDRTLSETWLYQYFPPAPDKRKYPPGPT0013325_426DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GLYCAN_BIOSYNTHESIS,PGPT0013325-mdoG-K03670NANA
D1-35_00064186hypothetical proteinATGACCAAAGTACAGAGCATTACCGAAATGCTGGGGATCTTTCCTGGCCTGACCAGAATACGGAGCAAACGCCCGCTCAGCCTGGAGGAAGCGAGGCTGGTCGAACGTTATCGAGAGTTGTCGGAAAGCGACCGGATCGCCATGCGTTATCTGATGGATGCGATGGGCCGTGCTTCGCGGTTTTGAMTKVQSITEMLGIFPGLTRIRSKRPLSLEEARLVERYRELSESDRIAMRYLMDAMGRASRFNANANANANA
D1-35_00065264hypothetical proteinATGGCCTCGCCCGTTTTGTCCTTCCGCGTGGAAGAAGGTTTGGCCCAACAGCTGGACTTGCTGGCTGCCGCCACCGACCGCGACCGTCAATATCACCTGAAGCGTGCATTGGTTCGATACGTAGAGGCCGAGTCCTGGCACCTGCAAGCGATCAGCGAAGGCATAGCGGATGCCGACGCCGGGAATCTGACCGATCTGGATGCCGTGAAGGCTAAGTGGGCAAAGCGTGCCGAGCATCGTACTGACCAACAAAGCACAAAGTGAMASPVLSFRVEEGLAQQLDLLAAATDRDRQYHLKRALVRYVEAESWHLQAISEGIADADAGNLTDLDAVKAKWAKRAEHRTDQQSTKNANANANANA
D1-35_000661425prr_1COG1012Gamma-aminobutyraldehyde dehydrogenaseATGCAAACCAAACTGTTGATCAACGGCCATCTGGTGAACGGCGACGGCCCTGGCCAGGCCGTTTTTAATCCGGCGCTGGGCCGGGTCCTGGTGGAAATAAATGAAGCCAGCGAAGCCCAGGTCGATGCCGCCGTGCGCGCCGCCGACAGCGCTTTCGATGCCTGGTCGCAAGTGCCGCCCAAGGACCGCTCCCTGCTGCTGCTCAAGCTGGCCGATGCCATCGAGGCCAATGGTGAAGAACTGGCCAGGCTCGAATCGGACAACTGCGGCAAGCCATTGAGCGCCGCGCTGAACGATGAAATCCCGGCGATCGCCGATGTGTTCCGTTTCTTCGCCGGCGCCAGCCGTTGCATGAACGGCTCGGCGGGCGGCGAGTACCTGCCGGGGCACACCTCGATGATCCGTCGCGACCCGGTGGGCGTGATCGCTTCCATCGCCCCGTGGAACTACCCGTTGATGATGGTCGCCTGGAAAATCGCCCCGGCCCTGGCCGCCGGTAATACGGTGGTGCTCAAGCCGTCGGAACAGACGCCACTGACCGCGTTGCGCCTGGCGGAACTGGCGTCGGAAATTTTCCCGGCAGGTGTGCTCAACGTCGTTTTCGGACGCGGGCAAACCGTCGGCCAGCCGCTCGTCACGCACCCGAAAGTCCGCATGGTTTCCCTGACCGGGTCCATCGCCACCGGCTCGAACATCATTTCCAGCACCGCCGAGAGCGTCAAGCGCACGCACATGGAGCTGGGCGGCAAGGCCCCGGTGATCATCTTCGATGACGCCGACATTGATGCTGCGGTGGAAGGCATCCGCACCTTCGGCTTCTACAACGCCGGCCAGGACTGCACGGCCGCCTGCCGCATCTATGCCCAGCAAGGCATCTACGACAAATTTGTCGAAAAACTCGGCGCCGCCGTCGCCAGTATCAAGTACGGCCTGCAGAACGAACCCGATACCGAGATGGGACCGTTGATCACCGCTCAGCACCGCGACCGCGTGGCCGGCTTCGTCGAGCGGGCCATCGCCCAGCCCCACATCCGCCTGGTCACCGGTGGCAAGGCCGTGGACGGCAACGGCTTCTTCTTCGAACCGACGGTGCTGGCCGACGTCCAGCAGGACGACGAAATTGTCCGCCGCGAAGTGTTCGGTCCTGTGGTGTCCGTCACGCCATTCCTTGAGGAAGCACAAGTGCTGGCCTGGGCCAACGATTCGGACTACGGCCTGGCCTCATCGGTGTGGACCGCCGACATCGGCCGTGCCCATCGCTTGTCGGCACGCCTGCAATACGGCTGCACCTGGGTGAATACGCACTTCATGCTCGTCAGCGAAATGCCCCATGGCGGTCAGAAACGTTCTGGCTATGGCAAAGACATGTCGATGTATGGGCTGGAGGATTACACGGTGGTGCGGCATGTGATGTTCAAGCATTGAMQTKLLINGHLVNGDGPGQAVFNPALGRVLVEINEASEAQVDAAVRAADSAFDAWSQVPPKDRSLLLLKLADAIEANGEELARLESDNCGKPLSAALNDEIPAIADVFRFFAGASRCMNGSAGGEYLPGHTSMIRRDPVGVIASIAPWNYPLMMVAWKIAPALAAGNTVVLKPSEQTPLTALRLAELASEIFPAGVLNVVFGRGQTVGQPLVTHPKVRMVSLTGSIATGSNIISSTAESVKRTHMELGGKAPVIIFDDADIDAAVEGIRTFGFYNAGQDCTAACRIYAQQGIYDKFVEKLGAAVASIKYGLQNEPDTEMGPLITAQHRDRVAGFVERAIAQPHIRLVTGGKAVDGNGFFFEPTVLADVQQDDEIVRREVFGPVVSVTPFLEEAQVLAWANDSDYGLASSVWTADIGRAHRLSARLQYGCTWVNTHFMLVSEMPHGGQKRSGYGKDMSMYGLEDYTVVRHVMFKHPGPT0007650_536DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINE_USAGEPLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007650-patD|prr|ydcW-K00137NANA
D1-35_00067813ydcV_1Inner membrane ABC transporter permease protein YdcVATGCACTCTGACTCCAAGGCTTCGTGGGGCTTGCGGATAGCGGCATGGGGCGGGCTGGTGTTCCTGCATTTCCCGATCCTGATCATTTTCCTCTATGCCTTCAACACCGAAGACGCTGCGTTCAGCTTCCCGCCCAAGGGCCTGACCCTGAAGTGGTTCAGCGTCGCCTTCTCGCGCCCGGACGTGCTGGAGGCGATCAAGTTGTCATTGCAGATCGCAGCCGTCGCCACCCTGATCGCCATGGTGCTCGGCACACTCGCGTCTGCGGCACTGTACCGCCGTGATTTTTTCGGCAAGCAGGGTATCTCGCTGATGCTGATCCTGCCGATTGCGCTGCCAGGGATCATCACCGGCATCGCGCTGTTGGCGACCTTCAAGACCCTGGGCATCGAACCCGGCATGTTCACCATCATCGTCGGTCATGCGACCTTCTGCGTGGTGATCGTCTACAACAACGTCATCGCCCGTCTGCGCCGCACCTCCCACAGCCTGATCGAAGCGTCGATGGACCTGGGCGCCGACGGCTGGCAGACCTTTCGCTACATCGTCCTGCCTAATCTGGGGTCGGCCTTGCTGGCCGGCGGGATGCTGGCGTTTGCCTTGTCGTTCGATGAAATCATCGTCACCACGTTCACCGCCGGCCATGAGCGCACGCTGCCGCTCTGGCTGCTCAACCAGCTCAGCCGCCCTCGCGACGTGCCAGTGACCAATGTGGTGGCGATGCTGGTGATGTTGGTGACGATGCTGCCGATACTCGGCGCGTATTACCTGACGCGCGGTGGGGAGAGCGTGGCGGGGAGTGGTGGGAAGTAAMHSDSKASWGLRIAAWGGLVFLHFPILIIFLYAFNTEDAAFSFPPKGLTLKWFSVAFSRPDVLEAIKLSLQIAAVATLIAMVLGTLASAALYRRDFFGKQGISLMLILPIALPGIITGIALLATFKTLGIEPGMFTIIVGHATFCVVIVYNNVIARLRRTSHSLIEASMDLGADGWQTFRYIVLPNLGSALLAGGMLAFALSFDEIIVTTFTAGHERTLPLWLLNQLSRPRDVPVTNVVAMLVMLVTMLPILGAYYLTRGGESVAGSGGKPGPT0007845_2015DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007845-ABC_SP_P|ydcV-K02053NANA
D1-35_00068948ydcUCOG1176Inner membrane ABC transporter permease protein YdcUATGAGCACCCTGGCCATGACTCGAACCGAGACACACGGTTCGCCGTTGCGACGCTTTTCGAACCTGCTGTACCGGCGTCCCAACCTGTACCTGTCGCTGTTGCTGGTGCCACCGCTGATCTGGTTTGGCGCGATCTACCTGGGCTCGCTGCTGACCTTGCTGTGGCAAGGCTTCTATACCTTCGACGACTTCACCATGGCGGTCACGCCGGACCTGACCCTGGCGAATTTTTCGGCGCTGTTCCAGCCGTCGAATTTCGACATCATTGCGCGGACATTGACCATGGCGATCGCGGTGTCCATCGCCAGCGCCATTGTCGCCTTCCCGATCGCCTACTACATGGCGCGCTACACCAGCGGCAAGACCAAGGCGTTTTTCTACATCGCGGTGATGCTGCCGATGTGGGCCAGCTACATCGTCAAGGCCTACGCCTGGACACTGCTGCTGGCCAAGGGCGGCGTGGCGCAGTGGTTCATCCAGCACCTGGGGCTGGGGCCGGTGTTGCAGTTCGTGCTGGGCATTCCCGGCGTCGGTGGCAGCACGCTGTCTACTTCGCACCTGGGGCGCTTCCTGGTGTTCGTCTACATCTGGCTGCCGTTCATGATCCTGCCGATCCAGGCCTCCCTGGAACGGCTGCCGCCGTCGCTGCTGCAAGCTTCGGCGGACCTCGGCGCCAGGCCACGCCAGACCTTCATGCAGGTAATCCTGCCGCTGTCGATCCCGGGCATTGCCGCCGGCTCGATCTTCACCTTTTCGCTGACCCTGGGGGATTTCATCGTGCCCCAACTGGTGGGCCCGCCGGGCTACTTCGTTGGCAGCATGGTCTACGCCCAGCAAGGCGCCATCGGCAACATGCCCATGGCCGCGGCGTTCACGCTGGTGCCCATCGTGCTGATTGCCATCTATCTGTCTGTCGTCAAGCGACTGGGGGCTTTCGATGCACTCTGAMSTLAMTRTETHGSPLRRFSNLLYRRPNLYLSLLLVPPLIWFGAIYLGSLLTLLWQGFYTFDDFTMAVTPDLTLANFSALFQPSNFDIIARTLTMAIAVSIASAIVAFPIAYYMARYTSGKTKAFFYIAVMLPMWASYIVKAYAWTLLLAKGGVAQWFIQHLGLGPVLQFVLGIPGVGGSTLSTSHLGRFLVFVYIWLPFMILPIQASLERLPPSLLQASADLGARPRQTFMQVILPLSIPGIAAGSIFTFSLTLGDFIVPQLVGPPGYFVGSMVYAQQGAIGNMPMAAAFTLVPIVLIAIYLSVVKRLGAFDALPGPT0007850_1032DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007850-ABC_SP_P1|ydcU-K02054NANA
D1-35_000691038potA_1COG3842Spermidine/putrescine import ATP-binding protein PotAATGACGCTTGCCGTCCAGTTCACTCACGTTTCCCGTCAATTCGGCGAGGTGAAGGCCGTTGACCGGGTCTCCATCGACATCCAGGACGGCGAGTTCTTTTCCATGCTCGGCCCGTCCGGCTCGGGCAAGACCACTTGCCTGCGGCTGATTGCCGGGTTCGAGCAGCCCAGCGCCGGTTCGATTCGCATCCATGGGGAGGAAGCCGTAGGGCTCGCGCCGTATCAGCGGGACGTCAACACGGTGTTCCAGGACTACGCCCTGTTCCCGCACATGAACGTACGCGACAACGTCGCCTACGGCCTGAAAGTCAAAGGCGTCGCCAAGGCCGAGCGCATCAGGCGCGCCGATGAAGCGCTGGAGATGGTTGCCCTGGGCGGCTATGGCGAACGCAAGCCGGTGCAACTGTCCGGTGGCCAGCGCCAGCGCGTTGCCCTGGCCCGCGCGCTGGTCAATCGCCCGCGTGTGTTGCTGCTGGATGAACCGTTGGGCGCGCTCGACCTGAAGCTGCGCGAACAGATGCAAAGCGAGTTGAAAAAACTGCAACGCCAGTTGGGTATCACCTTCATCTTCGTTACCCACGACCAGACCGAGGCCTTGTCGATGTCCGACCGCGTGGCGGTGTTCAACAAGGGCCGGATCGAACAGGTCGATACCCCACGCAACCTGTACATGAAGCCGGCCACCACCTTCGTCGCCGAATTCGTCGGCACTTCCAACGTGATTCGCGGTGAGTTGGCCAGGCAACTGAGCGGTTATCCACAGCCGTTCTCGATCCGCCCGGAACATGTGCGCTTTGCCGAAGGTCCGCTGGCCGGCGATGAAATCGAAGTCAGCGGTCTGCTTCACGACATCCAGTACCAGGGCAGCGCCACGCGCTACGAGTTGAAGCTGGAAAACGGCCAGACCTTGAGCCTCAGCCAAGCCAACAGCCAATGGAACGACAGCGGCGCCCAGCACCATACCGGCCAGCATCGCGCCGTACGCTGGGCCCGCGAGGCAATGGTTGCCCTGCACGATACCGCCGGCAGCGAGGCCTGAMTLAVQFTHVSRQFGEVKAVDRVSIDIQDGEFFSMLGPSGSGKTTCLRLIAGFEQPSAGSIRIHGEEAVGLAPYQRDVNTVFQDYALFPHMNVRDNVAYGLKVKGVAKAERIRRADEALEMVALGGYGERKPVQLSGGQRQRVALARALVNRPRVLLLDEPLGALDLKLREQMQSELKKLQRQLGITFIFVTHDQTEALSMSDRVAVFNKGRIEQVDTPRNLYMKPATTFVAEFVGTSNVIRGELARQLSGYPQPFSIRPEHVRFAEGPLAGDEIEVSGLLHDIQYQGSATRYELKLENGQTLSLSQANSQWNDSGAQHHTGQHRAVRWAREAMVALHDTAGSEAPGPT0007860_3078DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007860-ABC_SP_A|ydcT-K02052NANA
D1-35_000701152ydcSBifunctional polyhydroxybutyrate synthase / ABC transporter periplasmic binding proteinATGTACGCGCACAAGACCGCATTGCTCAGTGCAATCACCACGGCGCTGCTGGCCAGCGCCAGCCTCCAGGCCGCCGAACCGCTCAAGGCCATTGGCGCTGGCGAAGGCCAACTGGATATCGTCGCCTGGCCGGGCTACATCGAACGCGGCGAAAGCGACAAGGCCTACGACTGGGTCACTGGTTTCGAGAAAGAAACCGGCTGCAAGGTCAACGTCAAGACCGCCGCCACCTCCGACGAAATGGTCAGCCTGATGACCAAGGGCGGCTACGACCTGGTCACCGCGTCGGGCGATGCCTCGCTACGGCTGATTGCCGGCAAACGCGTGCAGCCGATCAACACCGCGTTGATCGCCAACTGGAAAAACCTCGACCCGCGCCTCAAGGACGCGCCGTGGTACGTGGTCAGCCAACAGACCTACGGGACGCCGTACCAGTGGGGGCCGAACGTACTGATGTACAACACCGAAGTATTCAAGCAAGCGCCGACCAGCTGGAGCGTCCTGTTCGAGGCGCAGAACCTGCCCGACGGCAAGCCGAACAAGGGCCGGGTGCAAGCCTACGATGGGCCGATCTACATCGCCGACGCGGCGCTCTACCTCAAGACCGCCAAGCCCGAGCTGGGCATCAAGGATCCGTATCAACTCGACGAGGCCCAGTACAAGGCCGTGCTGGAATTACTGCGTGCCCAGCAGCCGTTGATCCACCGCTACTGGCATGACACGACCGTGCAGATGAGCGATTTCAAGAACGAAGGCGTGGTCGCATCCGGCGCCTGGCCATACCAGGTCAACGGCCTGATCAACGAAAAACAGCCGATCGCCTCGACCATCCCCAAGGAAGGCGCCACCGGCTGGGCTGACACGACGATGCTGCACGCCGAGGCCAAGCACCCCAACTGCGCCTATAAATGGATGGACTGGTCGCTGCAGCCGAAAGTCCAGGGCGACGTAGCCGCCTGGTTCGGCTCGTTGCCGGCCGTGCCCGAGGCGTGCAAGGCAAGCGAACTGCTGGGCGCCGAGGGCTGCAAGACCAACGGGTTCGACCAGTTCGACAAGATCGCCTTCTGGAAAACCCCACAAGCCGAGGGCGGCAAGTTCGTGCCGTACAGCCGCTGGACGCAGGATTACATTGCGATCATGGGTGGACGCTAAMYAHKTALLSAITTALLASASLQAAEPLKAIGAGEGQLDIVAWPGYIERGESDKAYDWVTGFEKETGCKVNVKTAATSDEMVSLMTKGGYDLVTASGDASLRLIAGKRVQPINTALIANWKNLDPRLKDAPWYVVSQQTYGTPYQWGPNVLMYNTEVFKQAPTSWSVLFEAQNLPDGKPNKGRVQAYDGPIYIADAALYLKTAKPELGIKDPYQLDEAQYKAVLELLRAQQPLIHRYWHDTTVQMSDFKNEGVVASGAWPYQVNGLINEKQPIASTIPKEGATGWADTTMLHAEAKHPNCAYKWMDWSLQPKVQGDVAAWFGSLPAVPEACKASELLGAEGCKTNGFDQFDKIAFWKTPQAEGGKFVPYSRWTQDYIAIMGGRPGPT0007855_1147DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007855-ABC_SP_S|ydcS-K02055NANA
D1-35_000711458prr_2COG1012Gamma-aminobutyraldehyde dehydrogenaseATGGCCGGCACGCAAACCCCGTTATGTACAGCGTTGTTGATCGACGGCGAAAGCGTACCCGGCGAGGGCTTTGTCGAGCCGATCCTCAACCCGGCCACCGGTGAAGTGCTCGCCCATATCGCCGAGGCCAGTACCGAACAGGTCGAAGCCGCGATCCTCGCGGCTCATCAGGCCTTTGACGGCTGGTCGCGCACCACGCCGCAACAACGCTCGAACCTGCTGTTGGAGATCGCCGGCGCTATTGAAAAAAATGCCGACCACCTGGCCCTTCTCGAATCCCTGAACTGTGGCAAGCCACTGCACCTGGCGCGTCAGGACGACCTGAGCGCCACGGTGGATGTGTTCCGTTTTTTTGCCGGCGCCGTACGCTGCCAGACCGGCCAGCTCAGCGGCGAATACTTGCCGGGCTACACCAGCATGGTGCGTCGCGACCCGATTGGCGTGGTGGCGTCCATTGCGCCCTGGAACTACCCGATCATGATGGCGGCCTGGAAAATCGCCCCGGCCCTGGCCGCCGGCAATACCCTGGTGTTCAAGCCTTCGGAACACACGCCGCTGTCGATCCTGGCCCTGGCGCCGATCCTGGCCGAAATCCTGCCGCGGGGCGTCATCAACGTCATCTGCGGTGGCGGCGAAGGCGTCGGCAGTCATCTGGTCAGTCACCCCAAGGTGCGCATGGTCTCGTTGACGGGCGATATCGTCACCGGCCAGAAAATCCTCCAGGCCGCGGCAAAAACCCTCAAGCGCACGCACCTGGAACTGGGCGGCAAGGCCCCGGTGATCGTCTGTGACGACGCCGACCTGCAGGCAGTGGTCGAGGGTGTACGCACCTATGGTTACTACAACGCTGGCCAGGATTGCACCGCCGCGTGCCGGATCTACGCCCAGGCCGGGATTCACGACCGGCTGGTGGCTGAACTCGGCGCGGCGGTCAGCAGCCTGCGCTTTGCCGGCAAGCGCGACGCCGACAACGAAATCGGCCCGCTGATCAGCACCCGCCAGCGCGACCGCGTCGCCAGTTTCGTCGAGCGTGCCCTCGGCCAGCCGCATATCGAGCGCATCACCGGCGCGGCGGTGCATTCCGGCGCCGGTTTCTATTACCAGCCCACGCTGTTGGCGGGCTGCAAGCAAAGCGACGAGATCGTCCAGCGCGAAGTATTCGGCCCGGTGGTCACCGTGACCCGTTTCGATGAACTCAGCCAGGCGGTGGACTGGGCCAACGATTCGGAATACGGCCTGGCGTCCTCGGTCTGGACCCAGAACCTCGACAAGGCGATGCAGGTGGCGGCGCGGCTGCAATACGGCTGCACCTGGATCAACAGTCATTTCATGCTGGTCAGCGAAATGCCCCACGGCGGCCTGAAACGCTCGGGCTATGGGAAGGACCTGTCCAGCGATTCGCTTCAGGACTACAGCGTGGTGCGCCACATCATGGCCCGCCACGGCCAGCATCTGTAGMAGTQTPLCTALLIDGESVPGEGFVEPILNPATGEVLAHIAEASTEQVEAAILAAHQAFDGWSRTTPQQRSNLLLEIAGAIEKNADHLALLESLNCGKPLHLARQDDLSATVDVFRFFAGAVRCQTGQLSGEYLPGYTSMVRRDPIGVVASIAPWNYPIMMAAWKIAPALAAGNTLVFKPSEHTPLSILALAPILAEILPRGVINVICGGGEGVGSHLVSHPKVRMVSLTGDIVTGQKILQAAAKTLKRTHLELGGKAPVIVCDDADLQAVVEGVRTYGYYNAGQDCTAACRIYAQAGIHDRLVAELGAAVSSLRFAGKRDADNEIGPLISTRQRDRVASFVERALGQPHIERITGAAVHSGAGFYYQPTLLAGCKQSDEIVQREVFGPVVTVTRFDELSQAVDWANDSEYGLASSVWTQNLDKAMQVAARLQYGCTWINSHFMLVSEMPHGGLKRSGYGKDLSSDSLQDYSVVRHIMARHGQHLPGPT0007650_71DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINE_USAGEPLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007650-patD|prr|ydcW-K00137NANA
D1-35_00072912gltC_1HTH-type transcriptional regulator GltCATGATGACCCTGCGCCAGATCCGTCATTTCATCGCGGTAGCCGAAACCGGTTCGATTTCCGCCGCCGCGCAAACCGCGTTCATTTCCCAATCCACCCTGACCCTGGCCATCCAGCAACTGGAAGAGGAAATCGGCGTCAGCCTGTTCAACCGTCACGCCAAGGGCATGACGCTGACCCACCAGGGACATCAGTTCCTGCGTCAGGCGCACCTGATACTCGCCACCGTCGACAACGCCAAGCGCAGCCTGCAACAAAGCACCGATCAGGTTGCCGGGCAGGTCACCATCGGCGTGACCAGCCTGGTCGCCGGGTACTATCTGGCGGACCTCTTGACCCGTTTCCAGCGCGCCTACCCCAATGTGGCCATCCGCGTGATGGAGGACGAACGCCCCTATATCGAACATCTGCTGGTCAGCGGCGAAATCGACGTCGGCGTGCTGATCCTGTCCAACTTGGAAGACCGCCACGCCCTGCAGACCGAAGTATTGACCCACTCGCCCCATCGATTGTGGCTGCCGGCCCAGCATCCGCTGCTCGAACACGACAGCATCAATCTTGCGGATGTGGCTCGCGAGCCGTTGATCCAACTGAACGTCGACGAGATGGATCGCAACGCGCAACGCCTGTGGCGCGGTGCCGGCCTGCAACCGCAGATCACCCTGCGTACCGCCTCGACCGAAGCGGTGCGCAGCCTGGTGGCGGCCGGGCTGGGGGTTTCGATCCAACCGGACATGACCTACCGCCCATGGTCGCTGGAAGGCGACATCATCGAGGCACGACCCATCGCCGACCTCAACCAGACGCTGGATGTCGGACTCGCCTGGCGCCGAGGCACGGCACGCCCGGCCTCGGTCGACCCGTTCCTGGCTGTTGCCCGCGAACAGCCCCACGGACGCAAGCCATCTATTTAAMMTLRQIRHFIAVAETGSISAAAQTAFISQSTLTLAIQQLEEEIGVSLFNRHAKGMTLTHQGHQFLRQAHLILATVDNAKRSLQQSTDQVAGQVTIGVTSLVAGYYLADLLTRFQRAYPNVAIRVMEDERPYIEHLLVSGEIDVGVLILSNLEDRHALQTEVLTHSPHRLWLPAQHPLLEHDSINLADVAREPLIQLNVDEMDRNAQRLWRGAGLQPQITLRTASTEAVRSLVAAGLGVSIQPDMTYRPWSLEGDIIEARPIADLNQTLDVGLAWRRGTARPASVDPFLAVAREQPHGRKPSINANANANANA
D1-35_00073711hypothetical proteinATGAACACCCGTGGATTGCTCGATCAGTTACTCAAGTCCGGCCAGGAGATGTTGCAGAACAAGGCCGGCGGCTCCCAGGGCAAGTCGTCCGGCGGTCTGGGTGGTTTGCTCGGCGGCTCCGGCAACCTCGGCGGAATGCTCTCCGGCGCAGGGGGCGGGGCGCTGGCGGCCAGCGCCATGGGGTTGCTGCTGGGCAACAAGAAAGCCCGTAACTTCGGCGGCAAGGCCCTGACTTATGGCGGCCTGGCTGCATTGGGCGTGATTGCCTACAAGGCTTACGGCAACTGGCAGGCCCAGCAGGGCAATGCGCCGAAAACCGAACCGCAGACCCTGGATCGCGTCCCGCCGGCGCAAGTCGAGCAGCACAGCCAGGCGATCCTCAAGGCCCTGGTGGCGGCGGCCAAGGCCGACGGCCATGTGGACGAACGCGAGCGTCAACTGATCGAAGGCGAATTCACCAAGCTCGACAACGACCAGGAACTGCAACACTGGCTGCACGCCGAGCTCAACAAACCGCTGGATCCCGGCGACGTCGCCCGGGCGGCCAGCACACCGGAAATCGCCGCGGAAATGTACATCGCCAGCGTGATGCTGGTGGATGAGGAGAACTTCATGGAGAAATCCTACCTCGACGAACTGGCGCGACAACTCAAGCTGGAACCTGGGCTGAAGGCGGAACTGGAGAAGCAGGTGCGTCAGGCGGCCGCCTGAMNTRGLLDQLLKSGQEMLQNKAGGSQGKSSGGLGGLLGGSGNLGGMLSGAGGGALAASAMGLLLGNKKARNFGGKALTYGGLAALGVIAYKAYGNWQAQQGNAPKTEPQTLDRVPPAQVEQHSQAILKALVAAAKADGHVDERERQLIEGEFTKLDNDQELQHWLHAELNKPLDPGDVARAASTPEIAAEMYIASVMLVDEENFMEKSYLDELARQLKLEPGLKAELEKQVRQAAANANANANANA
D1-35_000741623hypothetical proteinGTGAAGAACTGGACGTTGCGCCAACGCATTCTGGCGAGTTTTGCGGTGATCATTGCCATCATGTTGCTGATGGTGGTGGTCACTTACTCGCGGTTGTTGAAGATCGAGGCCAGTGAACAGGAAGTACGTACCGACGCCGTTCCAGGGGTGTATTACAGTTCCATGATCCGTGGGGGCTGGGTCGACAGTTACGTCAAGACCCAGCAGCTCGTGGGTCTGTCCGATCACCGGGAAATCACCGACGAAGACAAGGCGCTCTACCAGCGGTACGAGCAGCATCTGCGCGATGAAATGCAGCAATACCAGAAGCTGATCCAGGACCCGGCCGACCAGGCCTCATTCGATGAATTCGAAGTCAATCACCAGGACTTCAACAAAGCCCTGGCGAAGGTACTGGATCTGTACCAGCGCAAGGACTACGAAGGCGCTCGGCTGGCGGTGGAAAAAGACCTGACGCCGGCATGGCTCGACGGTCGTGGGCACTTGAACCAGATCATCGAGCGCAATCGTGAGTTGGCTGAGCAGGCCGCCCTGACCATCGGCCGTGCGGTGACAGCCGCCGAGGTCGCCATGGGCCTGTCGTTTGTCGTTGCGGTGCTGGTGGCTGTTCTTTGCGGCCTGTTGCTGATGCGCGCGATCATGGCGCCGATGAGCCGCATCGTCGAGATACTCGATGTCATGCGCAGCGGCGATTTGAGCGGACGCCTGAACCTGGCGCGCAAAGACGAGTTCGGCGCTGTGGAGACCGGCTTCAACGACATGATGGCCGAGTTGACGTCGCTGGTGTCCCAGGCCCAGCGTTCCTCGGTGCAGGTCACCACCTCGGTGACCGAGATCGCCGCGACCTCACGGCAGCAACAGGCCACGGCCACCGAAACCGCAGCCACCACCACCGAGATCGGCGCGACGTCCCGTGAAATCGCCGCCACCTCTCGCGACCTGGTGCGCACCATGACCGAAGTCTCCAGCGCCGCCGACCAGGCCTCGGTCGCCGCCGGCTCAGGTCAGCAAGGCCTGGCGCGCATGGAAGAAACCATGCATTCGGTGATGGGCGCCGCCGACCTGGTGAACGCCAAGCTGGCGATCCTCAACGAGAAGGCCGGCAACATCAACCAAGTGGTGGTGACCATCGTCAAGGTTGCCGACCAGACCAACCTGTTGTCGCTCAACGCCGCCATCGAGGCCGAGAAGGCCGGTGAGTACGGGCGCGGTTTCGCCGTCGTCGCCACAGAGGTGCGGCGCCTGGCCGACCAGACCGCTGTCGCCACCTACGACATCGAGCAGATGGTCCGCGAGATCCAGTCCGCTGTCTCGGCGGGTGTGATGGGCATGGACAAATTTTCCGAAGAGGTGCGCCGTGGCATGGCCGAGGTACAGCAGATCGGCGAGCAATTGTCGCAGATCATCCATCAGGTCCAGGCGCTGGCGCCGCGGGTGTTGATGGTCAACGAAGGCATGCAGGCCCAGGCCACCGGTGCCGAGCAGATCAATCACGCCCTGGTGCAACTGGGCGATGCCAGCAGCCAGACCGTGGAGTCCCTGCGCCAGGCCAGTTCCGCCATCGACGAGCTCAGCCAGGTGGCCGTGGGCCTGCGCAGCGGCGTCTCGCGTTTCAAAGTCTGAMKNWTLRQRILASFAVIIAIMLLMVVVTYSRLLKIEASEQEVRTDAVPGVYYSSMIRGGWVDSYVKTQQLVGLSDHREITDEDKALYQRYEQHLRDEMQQYQKLIQDPADQASFDEFEVNHQDFNKALAKVLDLYQRKDYEGARLAVEKDLTPAWLDGRGHLNQIIERNRELAEQAALTIGRAVTAAEVAMGLSFVVAVLVAVLCGLLLMRAIMAPMSRIVEILDVMRSGDLSGRLNLARKDEFGAVETGFNDMMAELTSLVSQAQRSSVQVTTSVTEIAATSRQQQATATETAATTTEIGATSREIAATSRDLVRTMTEVSSAADQASVAAGSGQQGLARMEETMHSVMGAADLVNAKLAILNEKAGNINQVVVTIVKVADQTNLLSLNAAIEAEKAGEYGRGFAVVATEVRRLADQTAVATYDIEQMVREIQSAVSAGVMGMDKFSEEVRRGMAEVQQIGEQLSQIIHQVQALAPRVLMVNEGMQAQATGAEQINHALVQLGDASSQTVESLRQASSAIDELSQVAVGLRSGVSRFKVPGPT0015750_226DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-WSP-METABOLISMCE-EPS-WSP-PATHWAY,PGPT0015750-wspA-K13487NANA
D1-35_00075537hypothetical proteinATGAGCGATTTCGATGCCCGACGCGGTACCGGGCCGGCGGCCCGGCAGGCGTTGTTCCTGGTGTTTTGCATCGGTAACGAGCGCTACGCCCTGCAAGCCATCGATGTGGTGGAGGTGCTACCGCGCCTGCCGCTCAAGCCGATTGCCCGGACGCCGTCCTGGGTGGCCGGGGTCTTCGCCTGGCGTGGCCAAGTGGTGCCGGTGCTCGACCTGTGCGCCTTGACCTTCGGCCAGGCCGCCGAGGCGCGCACCAGCACCCGGCTGGTGCTGGTCAATTACCGGCCCCAGGCGCAGCACGCAGCGCACGTGCTGGGTTTGATCCTGGAACAGGCCACCGACACCCTGCGTTGTGATCCGGCCGACTTCAAGCCTTATGGCCTGGATAACCCCCAGGCGCCTTACCTGGGCCCGGTACGGGAGGATGCCCAAGGAATGTTGCAGTGGGTACGAGTCAACGATTTGCTCGACGAGTCGGTGCGTGCGGTGCTGTTCCCCACGCCGCCGCTGGACCTTGATGGTTTCGAGGATCGGCGATGAMSDFDARRGTGPAARQALFLVFCIGNERYALQAIDVVEVLPRLPLKPIARTPSWVAGVFAWRGQVVPVLDLCALTFGQAAEARTSTRLVLVNYRPQAQHAAHVLGLILEQATDTLRCDPADFKPYGLDNPQAPYLGPVREDAQGMLQWVRVNDLLDESVRAVLFPTPPLDLDGFEDRRPGPT0015755_27DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-WSP-METABOLISMCE-EPS-WSP-PATHWAY,PGPT0015755-wspB-K13488NANA
D1-35_000761266wspCCOG0457putative biofilm formation methyltransferase WspCATGAACAACGACCAGCGTTTTTTCGATTACCTCAAGGAGCGCATCGGCCTGGACGTGACGTCCGTCGGCACCGCGATTATCGAGCGGGCCGTGCGCCAGCGCGTCCTTGCCGTGCCTGGCCGGACCACCGATGACTATTGGCAAAGCCTGCAGCATTCTGCCCAGGAGCAGCAGGCGCTGATCGAAGCGGTGATCGTCCCGGAGACCTGGTTCTTCCGTTATCCCGAATCGTTCGCGACGCTGGGGCGACTGGCCTCCCAGCGCCTCGCTGCGATCAAGCACCTGCGCGCGCTGCGCATCCTCAGCCTGCCATGCTCCACTGGCGAAGAGCCGTATTCGATCGCCATGGCCCTGTTCGACGCAGGCCTCGGGCCGCATCAGTTCAAAGTCGATGCGATGGACGTCAGCCCGCTGTCCGTTGATAAAGCCCGGCAAGCGCGTTACGGCAGGAACTCCTTCCGTGGCGCGGACCTTGGTTTTCGCGAACGGTATTTCCGTGCCGAGGAGGACGGCTATTACCTCGATGAGCACATACGTGAACAGGTGCGCCTGCAAGTGGGCAACCTCTTGGATCCGGCCTTGCTGGTGAATGAGGCGCCGTATGATTTTGTATTCTGTCGCAACCTGCTGATCTATTTCGACCAGCCGACCCAGCAACAGGTATTCGAGGTGCTCAAGCGCCTGACCCATCAGGACGGCGTGTTGTTCATCGGTCCCGCCGAGGGCAGTTTGCTGGGGCGGCTGGGCATGCGCTCGATCGGCATCCCCCAATCGTTCGCCTTCAGCCGCCAGGGCGCGCCCGAGCCGCAACCGCTGCCAACGCTGTTGCCAAGTCCGTTGCCGATTCGCCAGCCGCCACCACGAGTCGCTGCGCCGCCGCCTCAGCCTCGACCGTTTGCAGCTAGTGTGACGCCAATCGCCCCAGCCAGGAGCAGCGACGCGGTGACCTTGCTGGCCAATATCGCCGCCCTGGCCAACGGCGGCAAAAGCGCTGAGGCCCGTGCGGCTTGCGAAGAGTATTTGCGCAGCCATGCGCCCAGTGCGCAGGTGTTCTATTGGCTGGGCCTGCTCAGCGACATGGCCGGCAACGCGCTCGAGGCCCAGGGTTTTTATCGCAAGGCGCTGTATCTTGAACCGCAACACGCCGAGGCCCTGGTGCATCTGGCGGCGCTGCTGGCATCCCAGGGAGACGTGGCCGGTGCCCGTCGATTGCAGGAACGTGCGGCCCGCAGTGGGCGCCCGGTTGAGAGTGAGCGCAAACGATGAMNNDQRFFDYLKERIGLDVTSVGTAIIERAVRQRVLAVPGRTTDDYWQSLQHSAQEQQALIEAVIVPETWFFRYPESFATLGRLASQRLAAIKHLRALRILSLPCSTGEEPYSIAMALFDAGLGPHQFKVDAMDVSPLSVDKARQARYGRNSFRGADLGFRERYFRAEEDGYYLDEHIREQVRLQVGNLLDPALLVNEAPYDFVFCRNLLIYFDQPTQQQVFEVLKRLTHQDGVLFIGPAEGSLLGRLGMRSIGIPQSFAFSRQGAPEPQPLPTLLPSPLPIRQPPPRVAAPPPQPRPFAASVTPIAPARSSDAVTLLANIAALANGGKSAEARAACEEYLRSHAPSAQVFYWLGLLSDMAGNALEAQGFYRKALYLEPQHAEALVHLAALLASQGDVAGARRLQERAARSGRPVESERKRPGPT0015760_225DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-WSP-METABOLISMCE-EPS-WSP-PATHWAY,PGPT0015760-wspC-K13486NANA
D1-35_00077672hypothetical proteinATGAGTGGTTCGGCTTCCTATAACGTGACTCATGACGATGCCCAGGCCATCGATGACTGCTGGAACCGCATCGGGGTTCACGGCGACAAGTCCTGCCCATTGCTGGTCGAACATATCCATTGCCGCAACTGTTCGGTGTACTCGGCGGCGGCCACTCGTTTGCTCGACCGTTATGCCCTGCGCCAGGATGATCGAGAGCTGGCTCTTGCGCCGGTCGACAGTGACATCGTCACGCGCTCGGTATTGATGTTCCGCCTGGGCGAAGAATGGTTGGGCTTGAGTACTCGAAGCCTGGTGGAAGTGGCGCCGTTGCAGCCGATCCATTCGCTGCCGCACCAGCGTTCGCGTGCCTTGCTCGGCGTTGCGAATGTGCGCGGCGCCCTGGTGGCCTGCCTGTCGCTAGTCGAGTTGTTGGGGCTGGAGCCTGGTTCGCTTGCGCCTTCCAGTGGGCGGATCATGCCGCGCATGCTGATTATCGCCGCCCAGGGCGGACCGGTATTGGTGCCGGTGGATGAGGTGGACGGCATTCATGCGATTGACGAACGCATCCTGGCGGGTGCTTCGCAATCGGCGGGCAAGTACACCCGTGGCGTGTTGCAGTACAAAGGCCGCAGCCTGCGTTGGCTGGATGAAGAGCAGTTGTTGTCCGCCGTGTCCCGGAGCCTGTCATGAMSGSASYNVTHDDAQAIDDCWNRIGVHGDKSCPLLVEHIHCRNCSVYSAAATRLLDRYALRQDDRELALAPVDSDIVTRSVLMFRLGEEWLGLSTRSLVEVAPLQPIHSLPHQRSRALLGVANVRGALVACLSLVELLGLEPGSLAPSSGRIMPRMLIIAAQGGPVLVPVDEVDGIHAIDERILAGASQSAGKYTRGVLQYKGRSLRWLDEEQLLSAVSRSLSPGPT0015765_203DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-WSP-METABOLISMCE-EPS-WSP-PATHWAY,PGPT0015765-wspD-K13489NANA
D1-35_000782271rcsC_1Sensor histidine kinase RcsCATGACCCCCGATCAGATGCGCGACGCCTCGTTGCTCGAACTGTTCAGCCTGGAAGCCGAGGCTCAGACCCAGGTACTCAGCGCCGGCCTGCTGGCCCTGGAGCGTGACCCGACCCAGGCTGACCATCTTGAGTCATGCATGCGCGCGGCCCACTCGCTCAAGGGCGCCGCGCGAATCGTCGGGATCCCCGCCGGGGTCAGCGTGGCCCACGTCATGGAAGACTGCCTGGTCAGCGCCCAGGAACGCCGCCTTATATTGCGTGCCGAGCATATCGACGCCTTGCTGCAAGGCACCGACCTGCTGACGCGCATCGCGACCCCAGGCAACAGCGTCGGCGCCGAGGACATCGAGGCCTATGTCGCGTTATTGGGGCGCCTGCTGGATCCTGCCGCTGCGGCGGCTTCAAGCGCCATGTCGCCGACCAGCGAGATACCCCTCGAGCCCGTGCGGGTCGAGATGCCTGAGCCCATGCCCATGCCCATGGAGCCTGTAGAACCGGCGGCAAGGAAAAAGCATGTCACCGAGGAGGGCGAACGGGTCTTGCGGGTCACTGCCGGGCGCCTCAACAGCCTGTTGGACCTGTCGAGCAAGTCGCTGGTCGAAACCCAGCGTCTCAAGCCTTGGCTGGCGACCCTGCTGCGGCTCAAGCGCCAGCAAGGCAATGGCCTGCGTGCTCTTGAAGACCTGAATGTGCATCTCAAGGACCATGCCTTGAGTCTGCAGGCCCAGGAGGCGCTCAACGATGCCCGGCGCCTGTTGGCGGAAACCCAGCAGATCCTGGCGCAAAAAACCGCTGAGCTGGATGAGTTTGCCTGGCAGGCCGGCCAGCGCGCGCAAGTGTTGTACGACACGGCGCTGGCTTGCCGCATGCGCCCGTTTGCCGATGTGCTTGCGGGCCAGGCGCGCATGGTTCGTGACCTGGGACGCAGCCTGGGCAAACAGGTACGCCTGGAAATCGAAGGCGAGAAAACCCAGGTCGATCGCGACGTACTGGAAAAACTCGAAGCGCCCCTGACTCACCTGCTGCGCAACGCCGTTGACCATGGCATCGAGACGCCGGAGCAACGGCTGTTGGCCGGCAAACCCGCCGAAGGCCTGATTCGCTTGCGTGCCTCGCACCAAGCCGGCCTGCTGATGCTGGAACTGGCGGACGACGGTGCCGGCGTGGATCTGGAACGGGTGCGCCGCAGCGTCGTGGAGCGTGGTCTTTCTCCCGAGCACACCGCCGCCAGTCTGAGCGAAGAGGAATTGCTGACTTTCCTGTTCCTGCCCGGCTTCAGCCTGCGGGACAAAGTCACCGAGGTGTCCGGGCGCGGTGTCGGCCTGGACGCTGTCCAGCATATGGTCCGGCAGTTGCGTGGCGCAGTGGTGCTTGAGCAGACGGCGGGGGCGGGCAGTCGCTTCCACCTTGAGGTGCCGCTGACGCTTTCGGTGGTGCGCAGCCTGGTGGTGGAAGTCGGCGGCGAGGCCTACGCGTTTCCGTTGGCCCATATCGAACGCATGTGCGACCTGTCGCCCGAGGACATCGTCCAGGTCGAAGGTCGCCAGCATTTCTGGCATGAAGGCCGCCATGTGGGGTTGGTTGCCGCCACGCAATTGCTCAACCGCCCGGTAGCGCCCAACAACGGCCAGAGTCTCAAGGTCGTGGTGATTCGCGAGCGTGAAGTAATTTATGGCGTGGCGGTGGAACGCTTCATCGGCGAGCGAACCCTGGTGGTGCTGCCCCTGGATGAGCGCCTGGGCAAGGTCCAGGACATTTCCGCCGGTGCCTTGCTCGACGACGGCTCGGTGGTGTTGATCGTCGATGTCGAAGACCTGCTGCGTTCGGTAGAAAAATTGCTCGACACCGGGCGCCTGGAACGCATCGCCCGGCAGAACGAGGCCCAGGCCCCACGCAAGCGGATCCTGGTGGTCGACGATTCCCTGACCGTGCGGGAGCTGGAGCGCAAGCTGTTGCTCAATCGTGGTTATGACGTGGCAGTGGCGGTAGACGGCATGGATGGCTGGAACGCGTTGCGTTCGGAGGATTTCGACTTGCTCATCACGGACATCGACATGCCGCGCATGGACGGTATCGAACTGGTGTCGCTGCTGCGCCGCGACAACCGCCTGCAATCGCTGCCGGTGATGGTGGTTTCCTATAAGGATCGAGAGGAAGATCGCCGCCGTGGCCTGGATGCCGGAGCCGACTATTATCTAGCCAAGGCGAGTTTTCATGACGACGCCTTGCTCGATGCCGTGGTCGAATTGATCGGAGGAGCGCGCGCTTGAMTPDQMRDASLLELFSLEAEAQTQVLSAGLLALERDPTQADHLESCMRAAHSLKGAARIVGIPAGVSVAHVMEDCLVSAQERRLILRAEHIDALLQGTDLLTRIATPGNSVGAEDIEAYVALLGRLLDPAAAAASSAMSPTSEIPLEPVRVEMPEPMPMPMEPVEPAARKKHVTEEGERVLRVTAGRLNSLLDLSSKSLVETQRLKPWLATLLRLKRQQGNGLRALEDLNVHLKDHALSLQAQEALNDARRLLAETQQILAQKTAELDEFAWQAGQRAQVLYDTALACRMRPFADVLAGQARMVRDLGRSLGKQVRLEIEGEKTQVDRDVLEKLEAPLTHLLRNAVDHGIETPEQRLLAGKPAEGLIRLRASHQAGLLMLELADDGAGVDLERVRRSVVERGLSPEHTAASLSEEELLTFLFLPGFSLRDKVTEVSGRGVGLDAVQHMVRQLRGAVVLEQTAGAGSRFHLEVPLTLSVVRSLVVEVGGEAYAFPLAHIERMCDLSPEDIVQVEGRQHFWHEGRHVGLVAATQLLNRPVAPNNGQSLKVVVIREREVIYGVAVERFIGERTLVVLPLDERLGKVQDISAGALLDDGSVVLIVDVEDLLRSVEKLLDTGRLERIARQNEAQAPRKRILVVDDSLTVRELERKLLLNRGYDVAVAVDGMDGWNALRSEDFDLLITDIDMPRMDGIELVSLLRRDNRLQSLPVMVVSYKDREEDRRRGLDAGADYYLAKASFHDDALLDAVVELIGGARAPGPT0015770_266DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-WSP-METABOLISMCE-EPS-WSP-PATHWAY,PGPT0015770-wspE-K13490NANA
D1-35_000791011cheB_1COG2201Protein-glutamate methylesterase/protein-glutamine glutaminaseTTGAAGATCGCCATCGTCAATGACATGCCCCTGGCGGTCGAGGCCCTGCGCCGCGCGCTGGCATTCGAGCCCGCGTATCAGTTGGTCTGGGTGGCCGCCAACGGCGCCGAGGCGGTGCAGCGTTGCCATGAATACACGCCGGACCTGATCCTGATGGACCTGTTCATGCCGATCATGGACGGTGTCGAGGCGACCCGGCGAATCATGGCCGACACGCCGTGCGCCATCGTGATCGTCACTGGCGACAGCCAGCAGAACGTCCATCGGGTGTTCGAAGCCATGGGCCATGGCGCCCTGGACGTAGTGGATACCCCGGCGCTGGGCGTCGGCAGGCCCGAGGACGCCGCTGCCCCCTTGCTGCGCAAGATCGCCAACATCGGCTGGCTGATCGGCGAGCGGGGCAACCGTGAGCGCGCCGCGCCGGCTGCGCAGCGGGCCTCGGTGTCACGCAACAGCCTGGTGGCGATCGGCTCGTCTGCCGGCGGCCCCGCCGCGTTGGAAGTGCTGCTCAAGGCGCTGCCCCGTGATTTCGCCCCGGCCATCGTGCTGGTCCAGCATGTGGACGAAGTGTTTGCCGCCGGCATGGCCGAGTGGCTTGGTGGCGTGTCGGGCCTTGAGGTCCGGCTGGCCCGCGAGGGCGAGACACCGCGAGGCGGGGTGGTGCTGTTGGCCGGAACCAATCATCATTTGCGCCTGTTGAAAAACGGCACGCTGGCGTACACGGCGGAGCCCGTCAACGAAATCTATCGGCCCTCCATCGATGTGTTTTTCGAGAGTGTCGCCAATTTCTGGAGTGGTGAGGCGGTAGGCGTGTTGCTCACCGGCATGGGGCGCGACGGTGCGCAAGGGCTTAAACTGATGCGCCAGCAGGGCTGTGTGACCATCGCCCAGGACCAGCAGAGCAGCGCGGTCTATGGCATGCCCAAAGCGGCCGCCGCTATCGACGCGGCGGCGCAGATACTCGCGCTGGACCGGATAGCGCCACGCCTGGTGGAAATTTTCAGCCAATGAMKIAIVNDMPLAVEALRRALAFEPAYQLVWVAANGAEAVQRCHEYTPDLILMDLFMPIMDGVEATRRIMADTPCAIVIVTGDSQQNVHRVFEAMGHGALDVVDTPALGVGRPEDAAAPLLRKIANIGWLIGERGNRERAAPAAQRASVSRNSLVAIGSSAGGPAALEVLLKALPRDFAPAIVLVQHVDEVFAAGMAEWLGGVSGLEVRLAREGETPRGGVVLLAGTNHHLRLLKNGTLAYTAEPVNEIYRPSIDVFFESVANFWSGEAVGVLLTGMGRDGAQGLKLMRQQGCVTIAQDQQSSAVYGMPKAAAAIDAAAQILALDRIAPRLVEIFSQPGPT0015775_191DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-WSP-METABOLISMCE-EPS-WSP-PATHWAY,PGPT0015775-wspF-K13491NANA
D1-35_000801002cheB_2Protein-glutamate methylesterase/protein-glutamine glutaminaseATGAATGAATTACAGCTCGACGACTTCAAGCGCGATGAGAACGCCGCCATGGTCTTGCTGGTCGATGACCAGGCGATGATCGGCGAGGCAGTGCGACGCGGGTTGTCGAACGAGCAGAACATCGACTTCCACTTCTGCTCCGACCCTCACCAGGCCATCGCCCACGCCGTGCGCATCAAGCCGACGGTGATTCTCCAGGACCTGGTGATGCCCGGTCTCGACGGCTTGAGCCTGGTGCGCGAATACCGCAACCATCCGGCCACTCGCGACATCCCGATCATCGTCCTGTCGACCAAGGAGGACCCGCTGATCAAGAGCGCGGCGTTTGGCGCCGGAGCCAACGATTACCTGGTCAAGTTGCCGGACAATATCGAACTGGTAGCGCGGATCCGCTATCACTCGCGCTCCTACATGATGCTGTTGCAGCGCGACGCGGCCTACCGTGCGTTGCGGGTCAGCCAGCAGCAGTTGCTCGACACCAATCTGGTGCTGCAACGGCTGATGAACTCCGATGGCCTGACCGGGCTGTCCAATCGCCGGCACTTCGACGAATACCTGGAGCTGGAGTGGCGAAGGGCGCTGCGGGACCAGTCCCAGCTGTCGCTGTTGATGATCGATGTGGATTATTTCAAGTCGTTCAACGACAACTACGGTCACCTTGAAGGCGACGAAGCCCTGCGCAAGGTTGCCACGGCGATTCGCGATGCCTGCAGTCGTCCGTCCGACCTGCCGGCCCGTTATGGCGGCGAGGAGTTCGCCCTGGTCTTGCCCGGCACCTCGCCTGGCGGTGCACGGCTGATGGCCGAAAAGCTGCGCCAGAGCGTCGTTGCCCTGAAAATCCCGCATGCCACGCCCGACGGCGGCGAAAACCTGACCATCAGCATCGGCGTCGCGACCTTCACCCCGCAACAGGGCGGCGAGTGCCGCCAACTGATCTCGGCGGCGGACAAGGGGTTGTACCTGGCCAAGCACAATGGGCGCAATCGGGTGGGGGTTGAATAAMNELQLDDFKRDENAAMVLLVDDQAMIGEAVRRGLSNEQNIDFHFCSDPHQAIAHAVRIKPTVILQDLVMPGLDGLSLVREYRNHPATRDIPIIVLSTKEDPLIKSAAFGAGANDYLVKLPDNIELVARIRYHSRSYMMLLQRDAAYRALRVSQQQLLDTNLVLQRLMNSDGLTGLSNRRHFDEYLELEWRRALRDQSQLSLLMIDVDYFKSFNDNYGHLEGDEALRKVATAIRDACSRPSDLPARYGGEEFALVLPGTSPGGARLMAEKLRQSVVALKIPHATPDGGENLTISIGVATFTPQQGGECRQLISAADKGLYLAKHNGRNRVGVEPGPT0015780_205DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-WSP-METABOLISMCE-EPS-WSP-PATHWAY,PGPT0015780-wspR-K11444NANA
D1-35_00081882prfBCOG1186Peptide chain release factor RF2TTGTCCAGCGGCCTGGCCGATTGCCGCGACCTGCTGGACATGGCCGTAGAGGAAAACGACGAAGGCGCGGTCGGCGATGTGGTCGCCGAGCTGACACGCCTGGACGAGAACCTGGCCAAGCTGGAGTTCCGCCGCATGTTCAGCGGCGAGATGGACATGAACAACGCCTACCTGGACATCCAGGCCGGCTCCGGCGGCACCGAGGCCCAGGACTGGGCCAACATCCTGCTGCGCATGTACCTGCGCTGGGCCGACAAACGCGGTTTCGACGCAACCATCATGGAACTGTCCGCCGGTGAAGTCGCCGGGATCAAGGGCGCTACCGTGCACATCAAGGGCGAGTACGCCTTTGGCTGGCTGCGTACCGAGATCGGCGTGCACCGCCTGGTGCGCAAGAGCCCGTTCGACTCCGGCAACCGTCGTCACACCTCGTTCTCGGCGGTATTCGTCTCGCCGGAAATCGATGACAACATCGAGATCGAGATCAACCCGGCCGACCTGCGTATCGACACCTACCGTTCCTCGGGGGCCGGTGGCCAGCACGTAAACACCACCGACTCGGCCGTACGGATCACCCACGTACCGACCAACACCGTGGTCAGTTGCCAGAACGAACGGTCCCAGCACGCGAACAAAGACACCGCGATGAAGATGCTGCGGGCGCGTTTGTACGAGCAGGAAGTGCAGAAACGCAACGCGGCGTCCCAGGCCCTGGAAGACACCAAGTCCGATATCGGCTGGGGTCACCAGATCCGCTCGTACGTCCTCGACGCTTCGCGGATCAAGGACCTGCGCACCAGCATTGAACGCAGCGACTGCGACAAGGTGCTCGACGGCGACATCGATGAATATTTGATCGCCAGCCTCAAGCAAGGGCTGTAAMSSGLADCRDLLDMAVEENDEGAVGDVVAELTRLDENLAKLEFRRMFSGEMDMNNAYLDIQAGSGGTEAQDWANILLRMYLRWADKRGFDATIMELSAGEVAGIKGATVHIKGEYAFGWLRTEIGVHRLVRKSPFDSGNRRHTSFSAVFVSPEIDDNIEIEINPADLRIDTYRSSGAGGQHVNTTDSAVRITHVPTNTVVSCQNERSQHANKDTAMKMLRARLYEQEVQKRNAASQALEDTKSDIGWGHQIRSYVLDASRIKDLRTSIERSDCDKVLDGDIDEYLIASLKQGLNANANANANA
D1-35_000821503lysSCOG1190Lysine--tRNA ligaseATGAGCGACCTAGAACTCGACCCGCAAGCCCTGCAACAGGAAGAAAACTCCCTGATCGCCCTGCGCAAGGAAAAGCTTGCTGCCGAGCGCGCCAAGGGCCAGGCCTTCCCCAACGACTTTCGCCGCGATTCGTACTGCGATGCCCTGCAGAAGAAGTACGCGGACAAGACCAAGGAAGAGCTGGCCGAGGCGGCGATTCCGGTCAAGGTTGCCGGTCGCATCATGCTCGACCGTGGTTCGTTCCTGGTGATCCAGGACATGACCGGTCGCATCCAGGTCTACGTCAACCGCAAGACCCTGCCGGAAGAAACCCTGGCCGCCGTCAAGACCTGGGACCTGGGCGACATCATTGCCGCCGAAGGCACCCTGGCCCGCTCCGGCAAGGGCGACCTGTACGTCGAAATGACCAGCGTGCGCCTGCTGACCAAGTCCCTGCGCCCGCTGCCGGACAAGCACCACGGCCTGACCGACACCGAGCAGCGCTACCGCCAGCGCTACGTCGACCTGATCGTCAACGAAGACGTGCGCCACACGTTCCGCGTGCGCTCGCAGGTCATCGCGCACATCCGCAGCTTCCTGATGAAGCGTGACTTCCTGGAAGTCGAGACGCCGATGCTGCAGACCATTCCGGGTGGCGCGGCGGCCAAGCCGTTCGAAACCCATCACAACGCCCTGGACATGGAAATGTTCCTGCGCATCGCGCCGGAGCTGTACCTCAAGCGCCTGGTGGTCGGTGGTTTCGAGAAGGTCTTCGAGATCAACCGCAACTTCCGTAACGAAGGCGTTTCGACCCGGCACAACCCCGAATTCACCATGCTCGAGTTCTACCAGGCCTACGCCGATTACAACGACAACATGGACCTGACCGAAGAACTGTTCCGCGAGCTGGCACAGTTGATCCTGGGCAGCACCGACGTGCCGTACGGCGACAAGGTGTTCCACTTTGGCGAGCCGTTCGTGCGCCTGTCGGTGTTCGATTCGATCCTCAAGTACAACCCGGAAATTACTGCGGCCGACCTGCAGGACATCGACAAGGCGCGTGCCATCGCCAAGAAGGCCGGCGCCAAGGTGCTCGGCTTCGAAGGCCTGGGCAAGCTGCAGGTGATGATTTTCGAAGAGCTGGTCGAGCACAAGCTGGAGCAGCCGCACTTCATTACCCAGTACCCGTTCGAAGTGTCGCCGCTGGCCCGTCGCAACGACGAGAACCCGAGCGTGACCGACCGTTTCGAACTGTTCATCGGTGGCCGTGAAATCGCCAACGCCTACTCCGAGCTCAACGACGCGGAAGACCAGGCCGAGCGCTTCATGGCCCAGGTGGCCGACAAGGACGCCGGTGACGACGAAGCCATGCACTACGACGCCGACTTCGTTCGCGCCCTGGAGTACGGCATGCCGCCGACGGCTGGCGAAGGCATTGGCATCGATCGTCTGGTGATGTTGCTGACCAACTCACCGTCGATCCGGGATGTCATCCTGTTCCCGCACATGCGGCCCCAAGCGTAAMSDLELDPQALQQEENSLIALRKEKLAAERAKGQAFPNDFRRDSYCDALQKKYADKTKEELAEAAIPVKVAGRIMLDRGSFLVIQDMTGRIQVYVNRKTLPEETLAAVKTWDLGDIIAAEGTLARSGKGDLYVEMTSVRLLTKSLRPLPDKHHGLTDTEQRYRQRYVDLIVNEDVRHTFRVRSQVIAHIRSFLMKRDFLEVETPMLQTIPGGAAAKPFETHHNALDMEMFLRIAPELYLKRLVVGGFEKVFEINRNFRNEGVSTRHNPEFTMLEFYQAYADYNDNMDLTEELFRELAQLILGSTDVPYGDKVFHFGEPFVRLSVFDSILKYNPEITAADLQDIDKARAIAKKAGAKVLGFEGLGKLQVMIFEELVEHKLEQPHFITQYPFEVSPLARRNDENPSVTDRFELFIGGREIANAYSELNDAEDQAERFMAQVADKDAGDDEAMHYDADFVRALEYGMPPTAGEGIGIDRLVMLLTNSPSIRDVILFPHMRPQAPGPT0012225_4346DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSFUNGICIDAL_COMPOUNDS|ANTIBIOTICSFUNGICIDAL-MOTILITY-MEDIATED_DEFENSE_SIGNALLING,PGPT0012225-lysS-K04567NANA
D1-35_00083717hypothetical proteinGTGAATCGTGCAATGGCTCCAGAAGGTGCAGCGGGCGTCGCCACTGCTGTCGCTGAAAGTGTTCAGTACCAGGGTCGCAAGGCCAGCCGACAGGGCAGTGAACAGCGCCGCCAGGAGATTCTCGACGCGGCCATGCGAATTGTCGTGCGCGATGGCGTGCGGGCGGTGCGCCACCGCGCGGTGGCCGCCGAAGCGGGCGTGCCGCTGTCGGCCACCACTTATTATTTCAAGGACATCGACGACCTGCTCACCGACACCTTCGCCCAGTACGTGGAACGCAGCGCGGCGTTCATGGCCAAGCTGTGGACCAACAATGAAGGCCTGCTGCGCGAGATGGTCGCCTACGGGGATGGCAGCGCCGCGTCGCGCTCGCAACTGGCGGACGACATCGCGCGGATGACGGCGGACTACGTGCAGCATCAATTGCACAGTCGTCGCGACTACCTGATGGCCGAACAGGCCTTCCGCCAGGAAGCACTGCTCAACCCGCGCCTGGCGGTGTTGGTGCGTTCTCACCAGCAGATTTTGCTGCACGGCACCTGCCAGTTTTTCCAGGTCCTGGGCTCCCGCGAGCCACAACAGGATGCCAAAGTGTTGACGGCGATTATCGGACGGATGGAATATCAGGGCTTGCTCAATGGCGCCGAGCCGGTAGCTGAAGAAGACATGCTCGGCATCCTGACCCGTTACATGCACTTGGTACTGGCGTCGGTGTGAMNRAMAPEGAAGVATAVAESVQYQGRKASRQGSEQRRQEILDAAMRIVVRDGVRAVRHRAVAAEAGVPLSATTYYFKDIDDLLTDTFAQYVERSAAFMAKLWTNNEGLLREMVAYGDGSAASRSQLADDIARMTADYVQHQLHSRRDYLMAEQAFRQEALLNPRLAVLVRSHQQILLHGTCQFFQVLGSREPQQDAKVLTAIIGRMEYQGLLNGAEPVAEEDMLGILTRYMHLVLASVNANANANANA
D1-35_00084555hypothetical proteinATGAAAGCCTGGCGTGCCGTTGCACTGGCCGTGTCGTTGCTGCTGCTCAGTGGCTGCCTGGTGTCGTTCAAGGCGCCGTTGCCCGACAGCGAAGCCGCGCCCAAGGGCCTGCTCGGCCACTGGACCAGCACCAACGCCTGGGGTGAGCCGGTAAACCTGGAGCTGACGGAGGTCGGCAAGCATCGCTACCAGGCCGTCAGTTATTTCAGGGCCAGGCCTCAGGAGCGCGAAGCCATTCCCCTGACCGTCTCCCGCCACGGCAGTCGCTGGTATTTGTCGGCCAAGGTGCCGGCTCGCTTCGGCGGCCATTTCGTCATCGCCGGTTTCGAACTGACCGACAAGCAGGAACTGGTGGTCTACAACCTGGACATGGAACAGATCAACCAGGCCATCGGCCAGAAGCTCCTCAGCGGCCAGCCAAACCAGAGCGAGGAGGGTGATGGCGTGCTGGTGGACAGCGACATGAACAAGGTTTTCAGCTACCTCGACGACCCGGCCAATTCCGATGTGTTCTCGGAAGCCGTGCGCTACCAGCGACTGAGCAAATCCCAATAAMKAWRAVALAVSLLLLSGCLVSFKAPLPDSEAAPKGLLGHWTSTNAWGEPVNLELTEVGKHRYQAVSYFRARPQEREAIPLTVSRHGSRWYLSAKVPARFGGHFVIAGFELTDKQELVVYNLDMEQINQAIGQKLLSGQPNQSEEGDGVLVDSDMNKVFSYLDDPANSDVFSEAVRYQRLSKSQNANANANANA
D1-35_000851278hypothetical proteinGTGGACGATTACCAGCAGACGATACGCACCTTGTCCGATCGCATTGTGCTGGCGCAGACACCGATCCGCATTCTCGACGCGGTGAAGTGGGACGAGAGCATCCGCAAGGGGTTTCTCAAGGCCAAGGGCAAGGAAATGCCTGCGGTGGATCGTGATTATTACCTTAACCGGCCACTGTCCTTCGATTCCAGCAAAGTGAAGCTGGAGTTCCAGAACATCGAGCGTGACATCACCCGTCAGCTTGGGCAGTTCAACCCGGTGGGCCAGATCATGCGGCGCATGTGCAAGGAATACCGCATGGTGGTGCGCATGCTCGAAGCGCGCGGCACCGAGGACTTCGGGCTGATTTCCCAGGAGCTGTACGGCGCCGCTTCCGACGCCTTTCACGCCGGTGACCCGACCTTGGCCGACCTGGGCCTGATGCTCTCCGACTACCTTAACAACATCGATGGCCGTGGCGACCTCAAGGACGAGCCCAAGGTGCTCAGTGCCAAGGAGGCCGTCAGCCTGTTGCAGCATCGCCTCAACCGGGTGTTTGGCGAGGCCGAGGAAACCATTCGCGTATTCGAGTCCGACGGTATCGTTGCTGACGCGGCGGCGGGCGCCGACTACATCAAGATCCGCACCGACGCGATGTTCAACGAGCGGGATGTGCGCGCCCTGGAGGTCCATGAGGGACTGGTGCACGTTGGCACCACCCTCAATGGTTTGAACCAGCCGATCTGCACCTTCCTGTCCAAGGGCCCGCCCTCGTCGACGGTGACCCAGGAAGGCCTGGCGATCCTGATGGAAATCATCACCTTCGCCTCCTACCCGAGTCGCCTGCGCAAACTCACCAACCGCACCCGCGCCATCCATATGGTGGAGGAGGGGGCCGACTTCCTGCAGGTCTTCGAGTTCTTCCGCGAGCAGGGCTTCGAAATGGCCGAAAGCTACGGCAACGCCAGCCGCGTTTTCCGTGGCTCGGTGCCGACCGGTCTGCCATTTACCAAAGACTTGTCCTACCTCAAGGGCTTCATCATGGTTTACAACTACATTCAGCTGGCCGTGCGCAAAGGCAAGCTGGAGCAGGTGCCGCTGCTGTTCTGTGGCAAGACCACCCTGGAGGATATGCGCACCCTGCGCCAGTTGGTGGATGAGGGCCTGGTCGTGCCGCCCAAATACCTTCCGGAGCAGTTTCGCGACATGAACGCACTGTCGGCGTGGATGTGCTTCTCCAACTTCTTGAACCACCTGAGCCTGGACCGGATCGAAGCGGATTATTCGAACATTCTTTAAMDDYQQTIRTLSDRIVLAQTPIRILDAVKWDESIRKGFLKAKGKEMPAVDRDYYLNRPLSFDSSKVKLEFQNIERDITRQLGQFNPVGQIMRRMCKEYRMVVRMLEARGTEDFGLISQELYGAASDAFHAGDPTLADLGLMLSDYLNNIDGRGDLKDEPKVLSAKEAVSLLQHRLNRVFGEAEETIRVFESDGIVADAAAGADYIKIRTDAMFNERDVRALEVHEGLVHVGTTLNGLNQPICTFLSKGPPSSTVTQEGLAILMEIITFASYPSRLRKLTNRTRAIHMVEEGADFLQVFEFFREQGFEMAESYGNASRVFRGSVPTGLPFTKDLSYLKGFIMVYNYIQLAVRKGKLEQVPLLFCGKTTLEDMRTLRQLVDEGLVVPPKYLPEQFRDMNALSAWMCFSNFLNHLSLDRIEADYSNILNANANANANA
D1-35_00086906COG1073putative proteinATGCGAACCCTCGGCATCATTTGCCTGCTGCTGGCCCTGAGTGGCTGCAGCTCCCTGCTGTTCTACCCCGAACGCGGCCTGCCGTTCACGCCGCAGCGGGCCAAGCTCGAATACCGCGACGTCACCCTGACCACGGCTGATGGCCTGAAGCTGCGTGGCTGGTGGCTGCCGGTGAAGCCGGGTGTCGAGGTCAAGGGCACGGTGCTGCATTTGCACGGCAACGGCGGCAACCTGTCCTGGCACCTCGGCGGGAGCTGGTGGTTGCCGGAGCAGGGTTATCAAGTGCTGATGGTCGATTACCGGGGTTATGGGGTGTCCGAGGGCGAGCCGAGCCTGCCGGCGATCTACCGGGACATCGACGCTGCGTTCAAATGGCTCGACCAATCGCCCGAGGTCCAAGGCAAGCCGCTGGTGCTGCTCGGCCAGAGCCTGGGTGGCGCGCTGGCGGTGCATTACCTGGTGGAGCATCCTCAGCGTCAACAGCAGCTCAAGGCGCTGGTGCTTGATGGCGTGCCCGCCAGCTATCGCGACGTCGGACGCTTTGCCCTGAGCACTTCATGGCTGACCTGGGCGTTGCAGGTGCCGCTGTCCTGGCTGGTGCCGGACGGCGACAGCGCCATTGGCTCGATCGCACAATTGAACGGCGTGCCGAAACTGATCTACCACAGCCTTGACGACCCCATCGTGCCCCTTTCCAACGGCATCCGCTTGTATCAAGCTGCGCCGCCGCCCCGGGTCCTGCAACTGACCCGGGGCGGCCACGTGCAGACTTTCGCCGACCCGACCTGGCGAACCGTGATGCTGCGCTACCTCGACGATCCCCTGCACTTCGATGGCTTGCGCCGCCTGGGCGAGGTGCCGAACTACCCGAAATCCTCCGTTGAATCATCCGAGAACCCGCAATGAMRTLGIICLLLALSGCSSLLFYPERGLPFTPQRAKLEYRDVTLTTADGLKLRGWWLPVKPGVEVKGTVLHLHGNGGNLSWHLGGSWWLPEQGYQVLMVDYRGYGVSEGEPSLPAIYRDIDAAFKWLDQSPEVQGKPLVLLGQSLGGALAVHYLVEHPQRQQQLKALVLDGVPASYRDVGRFALSTSWLTWALQVPLSWLVPDGDSAIGSIAQLNGVPKLIYHSLDDPIVPLSNGIRLYQAAPPPRVLQLTRGGHVQTFADPTWRTVMLRYLDDPLHFDGLRRLGEVPNYPKSSVESSENPQNANANANANA
D1-35_00087330hypothetical proteinATGAGCGAAGAACGCAACGCCATCCCCCTGATCATCACCGGTATCTGCAGCATTCTCGGCACTGTCGCGGCGCTCTGGTACTACGGCTATCTGCATTTCGCCAAGCCCGAGGATGCGTTGCTGCTCAACCAGTTCACCATGCTCAAGACCGTGCCGGGCGAAGACTATAAAGTCGCCCTGGAGCCGGCGCCCCAGGTCGCCCAATGCGTCGATGGCGTACTGGTGCTGTTCGACACCGAGCAGAAAGGCCTGACCGGTGTGCTGATCAACGAGAAGAAACGCGCGGTGCGCTGCATGGGGCAGGAGACGCCGCAGAAGCTTCAGCCATAAMSEERNAIPLIITGICSILGTVAALWYYGYLHFAKPEDALLLNQFTMLKTVPGEDYKVALEPAPQVAQCVDGVLVLFDTEQKGLTGVLINEKKRAVRCMGQETPQKLQPNANANANANA
D1-35_00088792pal_1Peptidoglycan-associated lipoproteinATGACGCACAAACATTTCATGATGCCCGCCCTGCTTGCCGCCTGCGTAGCCCTGGCCGCTTGCTCCCACGACCCGAACGCTAACCTGGAACAGGCCCGTACCAACTACAACGGCCTGCAGGCCGACCCGGCGGCCACCAAGGTCGCGGCCCTGGAAACCAAAGAGGCCTCCGACTTCCTGGCCAAGGCCGACAAGGCCTACCTGGACAACGAAGACGAAGCCAAGGTTGACCAACTGGCCTACCTGACCAACCAGCGCGTCGAAGTGGCCAAGCAGACCATCGCCCTGCGCAACGCCGAAGCCGAGCTGAAAAACGCCGGTGACGAACGCGCCCGCGCACTGCTCGACGCCCGCAACGCGCAGATCAAGCAGTTGCAGGACAGCCTCAACGCCAAGCAGACCGAGCGCGGTACGCTGGTGACCTTCGGTGACGTGCTGTTCGCCACCAACAAATCCGACCTGCGCGCCAGCGGCATGACCAATGTGAGCAAACTGGCGCAGTTCCTCCAGGAAAACCCGGATCGCAAGGTGATCATCGAAGGTTATACCGATAGCACCGGTTCGGATTCCTACAACCAGTCGCTGTCCGAACGCCGCGCCAGCTCCGTGCGTACCGCCCTGGTAAAAATGGGTGTCGACCCGGCCCGCATCGTGACCCAGGGTTACGGCAAGGAATTTCCGGTCGCCGACAACACCAGCGTCTCGGGCCGTGCCATGAACCGTCGCGTGGAAGTCACCATTTCCAACGACAACCAGCCAGTCGCCCCGCGCTCGACCATGAGCGCCAACTGAMTHKHFMMPALLAACVALAACSHDPNANLEQARTNYNGLQADPAATKVAALETKEASDFLAKADKAYLDNEDEAKVDQLAYLTNQRVEVAKQTIALRNAEAELKNAGDERARALLDARNAQIKQLQDSLNAKQTERGTLVTFGDVLFATNKSDLRASGMTNVSKLAQFLQENPDRKVIIEGYTDSTGSDSYNQSLSERRASSVRTALVKMGVDPARIVTQGYGKEFPVADNTSVSGRAMNRRVEVTISNDNQPVAPRSTMSANPGPT0022215_3850DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-SURFACE_ATTACHMENTSURFACE_ADHESIONOTHER_SURFACE_ADHESION_PROTEINS,PGPT0022215-ompA_ompF_porin|oprF-K03286NANA
D1-35_00089414hypothetical proteinATGGAGTTGAAGCCTATGAATACCTGCACTGCCAAACCCTCATCCACTGGCTTGCGCGGCCTGAAGTTGGCTGCCCTGGCTATCGGTAGCAGCTTCATCCTGGCCGGTTGCGCCGGCAATCCACCTTCGGAGCAATACGCGGTCACGCAATCGGCGGTCAACAGCGCCGTCAGCGCGGGCGGCACCGAGTTCGCCGCGGTGGAAATGAAATCCGCCCAGGACAAACTCAAGCAGGCCGAGATCGCCATGCACGACGAGAACTATGAAGAGGCCAAGCGTCTGGCCGAACAGGCCGAATGGGATGCGCGCGTTGCCGAACGCAAGGCCCTGGCAGCCAAGGCCGAACAGGCCCTCAAGGATTCCCAGAAAGGGGTTCAGGAACTGCGTCAGGAAGGCATGAACAAGGTTCAGTAAMELKPMNTCTAKPSSTGLRGLKLAALAIGSSFILAGCAGNPPSEQYAVTQSAVNSAVSAGGTEFAAVEMKSAQDKLKQAEIAMHDENYEEAKRLAEQAEWDARVAERKALAAKAEQALKDSQKGVQELRQEGMNKVQNANANANANA
D1-35_00090345hypothetical proteinATGAAAATCCGTGAACTTGCTCAGCACTGGGAAGAAAACGCCAAGGGTCACCTGACCCAGACCGGTTATACGATTCATCTGGATGTGGAAGCCGCCGCACGCCTGGCGGCGATCTGCGACATGTACCCCAAGCGCCAGCCCGAAGAACTGCTCGGCGAATTGATCGGCGCTGCGCTGGAGGAGCTGGAAGCCAGCTTCCCCTACATCAAGGGCGCGCAGGTCGTGGCCACCGATGAAGAAGGCGACCCGCTGTACGAAGACGTCGGTGCGACCCCGCGATTTCTCGCCTTGTCCCGTCGTCATCTGCGCCAACTCTCTTCGCAAAACGACAAGTCCAAGCACTGAMKIRELAQHWEENAKGHLTQTGYTIHLDVEAAARLAAICDMYPKRQPEELLGELIGAALEELEASFPYIKGAQVVATDEEGDPLYEDVGATPRFLALSRRHLRQLSSQNDKSKHNANANANANA
D1-35_000912631ppcCOG2352Phosphoenolpyruvate carboxylaseATGACCGATATTGATGCCCGCTTGCGCGAGGACGTCCACCTGCTCGGCGAACTGCTGGGCAATACCATTCGCGACCAGTACGGAGACGCCTTTCTCGACAAGATCGAGCAGATTCGCAAAGGCGCGAAGGCTGACCGACGCGGTTCGATGGATGCGGAACTGAGCGCCAGCCTCAACCAGTTGAGCGAGGACGAGTTGCTGCCGGTAGCGCGGGCGTTCAACCAGTTCCTCAACCTGGCCAATATCGCCGAGCAATACCAGCTGATTCACCGCCGCGAAGAATCCAGGCCGGCGCCGTTCGAAGCACGCGTGCTGCCCGAGCTGCTGGCGCGCCTGCGAGCCGAAGGCCATGGCGCCGAAGCGTTGGCCCGGCAGTTGGGCCGGCTGGAAATCGAACTGGTGCTCACTGCGCATCCCACGGAAGTCGCCCGGCGCACGTTGATCCAGAAATACGACGCGATCGCCGCGCAACTGGCCGCCCAGGACCATCGCGACCTCACCAGTGCCGAGCGCGCGCAGATCCACGAACGCTTGCAGCGGTTGATCGCCGAAGCCTGGCACACCGAAGAGATTCGCCGGACCCGCCCGACGCCCGTGGACGAGGCCAAGTGGGGCTTCGCGGTGATCGAGCATTCGCTGTGGCACGCCATCCCCAATTACCTGCGCAAGGCTGACCAGGCCCTGCATGCCGCCACCGGGTTGCGCCTGCCGCTGGAGGCCGCGCCGATCCGCTTTGCCTCGTGGATGGGTGGCGACCGGGACGGCAACCCGAACGTCACCGCCGCGGTCACTCGCGAGGTGTTGCTGCTGGCGCGCTGGATGGCGGCGGACCTGTATTTGCGCGACGTCGACCATCTGGCCGCCGATTTGTCCATGCAGAAAGCCAGCGAGGCCTTGCGCGCCCAGGCCGGTGACAGCGCCGAGCCCTATCGCGCGGTGCTCAAGCAATTGCGCGAACGCCTGCGAGCCACGCGCAACTGGGCCCAGGCCTCCCTGAAGGGCACGACGCCGGCGACCGCCGAGGTGTTGCAGGACAACCGTCAACTGCTTGATCCGTTGGAGTTGTGCTACCAGTCTCTGCATGAGTGCGGCATGGGCGTGATTGCCGACGGGCCGTTGCTCGATTGCCTGCGCCGCGCGGTGACCTTCGGCCTGTTCCTGGTGCGCCTCGACGTGCGCCAGGACTCGACGCGGCACACGGCGGCGATGACCGAGATCACCGATTACCTCGGGCTGGGGCGTTACGAGGAATGGGACGAAGAGCAGCGCATCGGTTTCCTCTTGGGCGAGCTGAATAATCGCCGGCCCTTGTTGCCGCCTTACTTCAAGCCGTCGGCCGATACGGCGGAAGTCCTGGCCACGTGCCGCGAGGTTGCGGCGGCACCGGCAGCGTCCCTGGGCTCTTATGTGATTTCCATGGCCGGCGCGGCTTCCGATGTGCTGGCGGTGCAGTTGCTGCTCAAGGAGGCCGGCGTATTGCGGCCGATGCGCGTAGTGCCGCTGTTCGAAACCCTCGCCGACCTGGACAACGCCGGGCCGGTGATCGAACGCCTGCTGTTGCTGCCGGGTTATCGCTCGCGCCTGCAAGGTCCCCAGGAAGTGATGATCGGCTATTCCGACTCGGCCAAGGACGCCGGGACCACGGCGGCAGCCTGGGCGCAATACCGCGCCCAGGAGCGGTTGGTGGACATCTGCCGCGAGCAGCAAGTCGAATTGCTGTTGTTCCATGGCCGCGGTGGCACCGTCGGCCGTGGCGGCGGCCCGGCGCACGCGGCGATCCTGTCCCAGCCGCCGGGATCGGTGGCCGGACGTTTCCGCACTACCGAACAGGGCGAAATGATTCGTTTCAAATTCGGCCTGCCGGACATCGCCGAACAGAACCTCAATCTTTACCTCGCCGCAGTGCTTGAAGCGACCTTGCTGCCACCACCGCCGCCAACCCCGCAATGGCGGCATCTGATGGATGAACTGGCTGCCGACGGGGTCAATGCCTACCGGGCCGTAGTGCGGGAAAATCCGCAATTTGTCGAGTATTTCCGCCAGTCCACGCCGGAACAGGAACTGGGTCGCCTACCCTTGGGCAGCCGTCCGGCCAAACGTCGGGCCGGCGGTATCGAAAGCCTGCGGGCGATCCCGTGGATTTTCGGCTGGACCCAGACCCGGTTGATGCTGCCGGCCTGGCTCGGTTGGGAAACCGCCCTGGGCAAGGCGCTGGAGCGCGGCGAGGGCGAACTGCTCGGGCAGATGCGTGAGCAATGGCCGTTCTTCCGCACCCGCATCGACATGCTGGAGATGGTCCTGGCCAAGGCCGACGCCGATATTGCCCAGTCCTATGACGAGCGTCTGGTGGAACCGGCGTTGCTGCCTTTGGGCGAGCATTTACGCGACCTATTGTCGCAGGCCTGTTCCGTGGTCCTGGGCCTGACCGGCCAGTCGCAGCTACTGGCACATAGCCCAGACACGCTGGAATTCATCCGCCTGCGCAATACCTACCTCGACCCGCTGCACCTGTTGCAGGCCGAGCTGCTGGCACGTTCGCGGCAGCAGGACGTGGCCCAGGGCAGCCCTGTGGAACAGGCGTTGCTGGTGTCTGTGGCAGGGATTGCCGCCGGTTTGCGCAACACCGGCTAAMTDIDARLREDVHLLGELLGNTIRDQYGDAFLDKIEQIRKGAKADRRGSMDAELSASLNQLSEDELLPVARAFNQFLNLANIAEQYQLIHRREESRPAPFEARVLPELLARLRAEGHGAEALARQLGRLEIELVLTAHPTEVARRTLIQKYDAIAAQLAAQDHRDLTSAERAQIHERLQRLIAEAWHTEEIRRTRPTPVDEAKWGFAVIEHSLWHAIPNYLRKADQALHAATGLRLPLEAAPIRFASWMGGDRDGNPNVTAAVTREVLLLARWMAADLYLRDVDHLAADLSMQKASEALRAQAGDSAEPYRAVLKQLRERLRATRNWAQASLKGTTPATAEVLQDNRQLLDPLELCYQSLHECGMGVIADGPLLDCLRRAVTFGLFLVRLDVRQDSTRHTAAMTEITDYLGLGRYEEWDEEQRIGFLLGELNNRRPLLPPYFKPSADTAEVLATCREVAAAPAASLGSYVISMAGAASDVLAVQLLLKEAGVLRPMRVVPLFETLADLDNAGPVIERLLLLPGYRSRLQGPQEVMIGYSDSAKDAGTTAAAWAQYRAQERLVDICREQQVELLLFHGRGGTVGRGGGPAHAAILSQPPGSVAGRFRTTEQGEMIRFKFGLPDIAEQNLNLYLAAVLEATLLPPPPPTPQWRHLMDELAADGVNAYRAVVRENPQFVEYFRQSTPEQELGRLPLGSRPAKRRAGGIESLRAIPWIFGWTQTRLMLPAWLGWETALGKALERGEGELLGQMREQWPFFRTRIDMLEMVLAKADADIAQSYDERLVEPALLPLGEHLRDLLSQACSVVLGLTGQSQLLAHSPDTLEFIRLRNTYLDPLHLLQAELLARSRQQDVAQGSPVEQALLVSVAGIAAGLRNTGPGPT0001165_3086DIRECT EFFECTBIO-FERTILIZATIONCARBON_DIOXID_FIXATIONCO2_FIXATION-ALTERNATIVE_PAHTWAYSCO2_FIXATION-PHOSPHOENOLPYRUVATE_CARBOXYLASE_BIOSYNTHESIS,PGPT0001165-ppc-K01595NANA
D1-35_00092648adkAdenylate kinaseATGCGCGTCATTCTGCTGGGAGCTCCCGGGGCCGGTAAAGGTACTCAGGCAAAGTTCATCACCGAAAAATTCGGTATCCCGCAAATCTCCACTGGCGACATGCTTCGCGCCGCGGTCAAGGCTGGCACCCCACTGGGTGTTCAGGCCAAGAGCATCATGGATGCCGGCGGCCTGGTGTCGGATGACCTGATCATCGCGCTGGTCAAGGACCGCATTGCTCAAGCCGACTGCGCCAATGGCTTCCTGTTCGACGGTTTCCCGCGCACCATTCCCCAGGCTGAAGCCCTGGTGACTGCCGGTGTGGAACTCGATCACGTGGTCGAAATCGCGGTAGACGACGAAGAAATCGTCCAGCGCATTGCCGGCCGTCGCGTTCACGAAGCGTCCGGTCGTGTCTATCACACCGTCTACAACCCGCCAAAGGTCGCCGGCAAGGACGACGTGACTGGCGACGAGCTGGTGCAGCGCAAGGACGACACTGAAGAAACCGTGCGTCATCGCCTGTCGGTCTACCATTCCCAGACCAAGCCGCTGGTGGATTTCTACCAGAAGCTGTCCGCTGCCCAGGGCAAGCCGAAGTACAGCCACATTCCAGGCGTCGGCTCGGTCGACGCGATCACCGGCAAGGTGCTTGAAGCACTGAGCTGAMRVILLGAPGAGKGTQAKFITEKFGIPQISTGDMLRAAVKAGTPLGVQAKSIMDAGGLVSDDLIIALVKDRIAQADCANGFLFDGFPRTIPQAEALVTAGVELDHVVEIAVDDEEIVQRIAGRRVHEASGRVYHTVYNPPKVAGKDDVTGDELVQRKDDTEETVRHRLSVYHSQTKPLVDFYQKLSAAQGKPKYSHIPGVGSVDAITGKVLEALSPGPT0009040_4377DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0009040-adk|AK-K00939NANA
D1-35_00093678tsaBCOG1214tRNA threonylcarbamoyladenosine biosynthesis protein TsaBATGAGCACCTTGCTGGCCCTGGACACCGCGACTGAAGCTTGCTCCGTTGCCTTGCTGCATGACGGCAAGGTCACGAGCCACTACGAGGTGATTCCGCGCCTGCATGCGCAAAAATTGCTGCCTATGATTCAGCAATTGCTCAGCGATGCCGGGATCACCTTGCAAGCCGTGGATGCGATCGCCTTTGGTCGCGGCCCAGGGGCGTTTACCGGCGTGCGCATCGCCATTGGCGTCGTGCAGGGCCTGGCCTTCGCCTTGGAACGCCCGGTATTGCCGGTCTCGAACCTGGCCGTACTGGCCCAGCGCGCCTTGCGCGAGCACGGCGCGCATCAGGTAGCGGCCGCCATCGATGCGCGCATGGACGAGGTGTACTGGGGCTGCTATCGCGAAACCGCTGGCGAGATGCGCCTGGTCGGTGCCGAGGCGGTGTTGCCACCCGAAGCGGCGGCGTTGCCGGCTGACACCAGCGGCGACTGGTTCGGCGCCGGTACCGGTTGGGGCTACGGCGAGCGAATCGGCGTCAGCCTTGTCGGCCAGGATGCCTCGATGTTGCCCCATGCCGAAGACCTGCTGGCCCTGGCACGCTTTGCCTGGGAACGCGGCGAAGCCATCCCTGCCGACGATGCGCAGCCGGTGTACCTGCGGGACAAGGTCGCGACGCCCAAGTCCGAACGGTAAMSTLLALDTATEACSVALLHDGKVTSHYEVIPRLHAQKLLPMIQQLLSDAGITLQAVDAIAFGRGPGAFTGVRIAIGVVQGLAFALERPVLPVSNLAVLAQRALREHGAHQVAAAIDARMDEVYWGCYRETAGEMRLVGAEAVLPPEAAALPADTSGDWFGAGTGWGYGERIGVSLVGQDASMLPHAEDLLALARFAWERGEAIPADDAQPVYLRDKVATPKSERNANANANANA
D1-35_00094309hypothetical proteinATGCGTATAGACGGCGTTTCATCCCAGTCCTACCCCATCAAGCGTCGGCCTCGTGCGGGTAAAGCCGCTGAGCCGGAAAACTTCGATGACATCGATGGTGAGCTGGAATTTCCGTCCGAAGAGCAACTGGCCGCCCGCGCCGCCAAAGCCTCTGCGCAACGCCTGAGCAATCTTCCCGCCCGTCAGCAGGACATGCTGTATCACCGCGCCATGAGCCGCAGTGTCGCCACGGCGCTGGCCAGCTACCTGAGCACCGCCGGTTTTGTTGATTGGGATATGGAAGTGCTGGGCCTCGACCTCTATATCTGAMRIDGVSSQSYPIKRRPRAGKAAEPENFDDIDGELEFPSEEQLAARAAKASAQRLSNLPARQQDMLYHRAMSRSVATALASYLSTAGFVDWDMEVLGLDLYINANANANANA
D1-35_00095861hypothetical proteinATGCGGTTGCCCTACTATCTGGGTTGCCCGTCCTGGAGCGAAAACGCCTGGCGCGATTATCTTTATCCCCAGGACGCCAAAAGCTCCGATTTCCTCGGTCTCTACTCTCAAGTATTCAACGCCGTGGAAGGCAACACGACCTTCTACGCGAGCCCGGCCGCGTCCACCGTTCAGCGCTGGGCCGAAATCATGCCCGAGCACTTTCGCTTCACCGCCAAGATCCCCGGTGACATCAGCCACGGCGGCGACCTGCGCGAACACCTGACCGCCACCGAAACCTTTGTCCAGTTGCTAAGCCCCTTGGGCGAGCGCGTCTCGCCGTTCTGGCTGCAACTGTCCAAGGCGTTCACGCCCAATCGATTGCAGGAGCTGGCGGCATTCATCGACGCGTTCCCACGGTCGTTGGCCGTAGAGGTGCGTCACGATGAGTTTTTTGCCAAAGGCGACGCTGAACGACAGCTCAACCGTTTGCTGCTCGATCGTGGTGTCGAACGCATCTGTCTCGATCCCCGCGGCCTGTTCAGCTGCGCGTCGACCGCCCCTGAAGTCATTCACGCGCAATACAAGAAACCCCGGGTGCCGACGCGACCGGCGGCGTTCACTCAATACCCGCAGGTGCGTTTCGTCGGTCATCCGGTAGTGGAGGCCAACGAGCTGTTCCTGACGCCATGGGTAGAAAAAATCGCCGTGTGGATCGAAGAGGGGCGCACGCCGTATATGTTCCTGCACACCGCGGACAATCTGCTGGCGGCGAAACTCGCGATGCATTTTCACAGCCGCCTGATGAAGCGTTTGCCTGGCTTGCCGGCGCTGCCTGAGCTATATAGAGAACCCGCCGCCGAGCAACTCGGTCTGCTCTGAMRLPYYLGCPSWSENAWRDYLYPQDAKSSDFLGLYSQVFNAVEGNTTFYASPAASTVQRWAEIMPEHFRFTAKIPGDISHGGDLREHLTATETFVQLLSPLGERVSPFWLQLSKAFTPNRLQELAAFIDAFPRSLAVEVRHDEFFAKGDAERQLNRLLLDRGVERICLDPRGLFSCASTAPEVIHAQYKKPRVPTRPAAFTQYPQVRFVGHPVVEANELFLTPWVEKIAVWIEEGRTPYMFLHTADNLLAAKLAMHFHSRLMKRLPGLPALPELYREPAAEQLGLLNANANANANA
D1-35_00096822COG2513putative proteinATGGATGCACAAACCCGCCGAGCCCAGGCGTTCAAGGCGTTGCACGAACGCGATGGGGCGTTTGTCATTCCCAATCCATGGGATGCCGGTTCGGCAAAGATGCTCGCCAGCCTCGGCTTTGAAGCATTGGCGACGACCAGTGCCGGTCACGCTTTTTCCCTGGCACGACCTGACGGCGCCCTGGGTCTTGATGACACGCTGGCGAATGTGCGAGCGATTGTTGCGGCCATGGACCTGCCAGTAGCCGTCGACCTGGAAAACGGCTTTGCCGATGCGCCCGAAGACTGCGCCCGCAGCTTGCTCCGCGCGGCACAAGCCGGCGCGGTAGGGGGCTCCATCGAAGATGCCACGGGCCGCGAAGACAGCCCGATCTACGATTTCGAGCACGCCGTGGCGCGGGTCAAGGCCGCCGCCGAGGCGGTGCGCAGTCTGCCTTTCCCTTTCCTGCTGACCGCGCGGGCAGAAAACTTCCTGCATGGCAGGCCGGATCTGGACGACACGATCCGACGCCTGAAGGCCTTCGCCGGCGCCGGCGCCGATGTGCTGTACGCGCCGGGGCTGAGCAGCGCCGAGCAAGTGCTGGCGGTGGTCCGGGCCGTGGCGCCCAAGCCCGTTAACGTACTGATGTCCGGCGCGCTGGACCTGACGGTAGCCCAGTTGAGTGAACTGGGCGTCAAGCGCATCAGTGTCGGATCGGCCCTCGCGCTGGCGGCGTATGGCGAGTTTTTCCGCGCCGCCGAAGAAATCCAACGGCAGGGGACCTTCACTTTCACCCGTCGCTCAATGCCTTTCAACCAGGCCAATCAATTATTCAAGGGTTGAMDAQTRRAQAFKALHERDGAFVIPNPWDAGSAKMLASLGFEALATTSAGHAFSLARPDGALGLDDTLANVRAIVAAMDLPVAVDLENGFADAPEDCARSLLRAAQAGAVGGSIEDATGREDSPIYDFEHAVARVKAAAEAVRSLPFPFLLTARAENFLHGRPDLDDTIRRLKAFAGAGADVLYAPGLSSAEQVLAVVRAVAPKPVNVLMSGALDLTVAQLSELGVKRISVGSALALAAYGEFFRAAEEIQRQGTFTFTRRSMPFNQANQLFKGNANANANANA
D1-35_00097699hypothetical proteinGTGCGGTTTTTGAAAGGACTGATGGTATTGGCGCTGATTGCTGGCGTCGCGGTGGTGGCGGTATGGCGCGGTTGGCTGGCCGTGCCGCCGCAATGGAACCCCTGGGCGCCGTTGGACGTGAAAGCGCCGCCAAATCTGCTGACCCGCTACAAACTCATGGCGCTGCGCAACGATCCGCAACTGTGTGACCAGGCGCTCGCCACGTCGGGGCTGCGCACCGCTCGCCAGGCCGACAGCGGCGCCAATACCTCGTGCCCGCTGACCAATGTGCTGCGGGTGCAGGGCGGTGAGGTGGCGCTGAGCAGCAGCTTCCTCGCCAGTTGCCCTCTGGCGGTAGCCTTCGCGCTGTTCGAGCGCCATGCGTTGCAGCCGGCGGCAATGGCCGCCTATGGCAAGCAAGTCACGCGGGTTGATCACTTGGGCAGTTTTGCCTGTCGCAACATGTACGGTCGTGAAAGCGGCGCGCGCAGCCAGCACGCCACTGCCAGCGCGTTGGACATCGCCGGGTTTCGCCTGGCCGATGGACGAGCCGTCAGCGTGCTCAGGGATTGGCCGAAGGACAACACCGATGCGCAGTTTCTACGGCAGGTGCGCGATGGCGCCTGCGACATGTTCAGTGTGGTCTTGAGTCCGGATTACAACGCGGCGCACCGCAACCATTTTCATCTGGATGTGGGGCCCTGGTGGATTTGTCGTTGAMRFLKGLMVLALIAGVAVVAVWRGWLAVPPQWNPWAPLDVKAPPNLLTRYKLMALRNDPQLCDQALATSGLRTARQADSGANTSCPLTNVLRVQGGEVALSSSFLASCPLAVAFALFERHALQPAAMAAYGKQVTRVDHLGSFACRNMYGRESGARSQHATASALDIAGFRLADGRAVSVLRDWPKDNTDAQFLRQVRDGACDMFSVVLSPDYNAAHRNHFHLDVGPWWICRNANANANANA
D1-35_00098621hypothetical proteinATGTCAGACATTCAATCCACATCGATAGGCGTTATCTCCCCTTACGGCGATTACAGCCTGCGTAACACCCAAGCGCTGAGCGGCGTCAGTCACCTGTGGCAGGATTTTTTTGCCCGGGCCCTGGCCGACCAGTTGGGTGAAAACGCACCGGCGCCCGGCAGCTACCAGCCAGTCGCCCTCGATGAAGCGGTTGAACCGACCCTGGGCGCCGAGCTGCTGGAGCATATCGTCAGCCAGCGCACCTGCGACGTGACGGAAACCCAGGTCAAGCCACCCGAGCCGTTGTTCCTGCCGATCGCCGAGTTCGAACTGGATTTGCTCGACAAGCCGTTCCCGCCCTTCCCGCCAGAAGAAATCGTAGCGCAGCAAAAGCAGCAGACCTTCGAGAGCAATTGGGTTCGCCCGATCGTCCTCGCCGCCGGTCAACCGTTGCCAGAACCGGGCCCGGCACCACAGCCGCGTCGACTGCCCCTGCCGATTGCCGAATTCGAACTCGACCTGTTGGACAAGCCATTCCCTCCATTCCCGGAAGAGGAATTGGTGGCGCAGCAGAAACAACTGGACTTCGACACTCGCTGGGCGCGTCCGATCGTACTGCAGAACCTGCGCATCGCTGCCTGAMSDIQSTSIGVISPYGDYSLRNTQALSGVSHLWQDFFARALADQLGENAPAPGSYQPVALDEAVEPTLGAELLEHIVSQRTCDVTETQVKPPEPLFLPIAEFELDLLDKPFPPFPPEEIVAQQKQQTFESNWVRPIVLAAGQPLPEPGPAPQPRRLPLPIAEFELDLLDKPFPPFPEEELVAQQKQLDFDTRWARPIVLQNLRIAANANANANANA
D1-35_00099783rsmJRibosomal RNA small subunit methyltransferase JATGACTGAGCAACTCGCGGCTTGCCGCATCCATGTCGAGGCCCTGGCCCCGGCGTTCCAGCCCCGCGCCGAGCAGTGGGCCGAGCAGCTCGGCCTGCCGTTGCAGATGGATGACGGCGAGTTCGCCTTGCAGGTCGGCGAGCACGGGTTGCAATTGCAGCAGCTGGGTCCCGATGCGCCGGGACCGGTGCGCGTGGATTTTGTCGAGGGCGGCGCAGCCCATCGTCGTTTGTACGGGGGCGGCAGTCGCCAGATGATCGCCAAGGCAGTCGGTGTCGCCCAGGGTGTGCGTCCGCGAGTGCTGGATGCCACGGCGGGGTTGGGCAAGGATGCGTTCGTGCTGGCGAGTCTCGGCTGCGAGATGAGCCTGATCGAGCGTCAACCCTTGATCGGTGCTTTGCTGGAGGATGGTCTGGCTCGCGGTGCGGAAGATTTCGATGTGGCGCCGATTGTGGCGCGGATGCGCTTGCTCAAGGGCAATTCCATCGAAGTGATGCGCAGTTGGCAAGGCGAGCCGCCCAAGGTGATCTACCTGGACCCGATGTTTCCCCATCGGGAGAAAACCGCCCTGGTGAAAAAAGAGATGCGCCTGTTCCGCCCGCTGGTGGGCGATGATACCGACGCCCCGGCGCTGCTTGCCGCCGCGCTGGCGTTGGCGACCCACCGGGTGGTGGTCAAGCGCCCGCGCAAGGCCCCCTGCATTGAAGGGCCGAAGCCGAGCCATGGGCTGGAAGGCAAGTCCAGTCGGTACGATATCTATCCGAAGAAAGCGCTCAAGGCTTGAMTEQLAACRIHVEALAPAFQPRAEQWAEQLGLPLQMDDGEFALQVGEHGLQLQQLGPDAPGPVRVDFVEGGAAHRRLYGGGSRQMIAKAVGVAQGVRPRVLDATAGLGKDAFVLASLGCEMSLIERQPLIGALLEDGLARGAEDFDVAPIVARMRLLKGNSIEVMRSWQGEPPKVIYLDPMFPHREKTALVKKEMRLFRPLVGDDTDAPALLAAALALATHRVVVKRPRKAPCIEGPKPSHGLEGKSSRYDIYPKKALKANANANANANA
D1-35_00100636hypothetical proteinATGTCGAACAATCCTCCCTCCTCCAGCGGCCCTGGTCGTCCCAAGGATCTGGCCAAGCGCCAGGCCATTCTCGACGCCGCGAAACGCCTGTTCCTGAGCCTGGGCTACGCCAGCACCAGCATGGACGCCGTGGCCACCGAGGCCGGCGTCTCGAAGCTGACCGTCTACAGCCACTTCAATGACAAGGAAACGCTGTTTTCCGCCGCCGTGATTGCCAAGTGCGAGGAACAGGTGCCGCCGCTTTTCTTCGAATGGGCCGACGGTGTTCCGATTGAACACGTGCTGCTGAACATCGCCCGCGGCTTCAACCAATTGATCAACAGCGACGAATCGGTGAACCTGCATCGGCTGATGGTGGCGTTGGGTAGCCAGGATCCAAAGCTCTCGACCATCTTCTACCAGGCCGGCCCGCAGCGAATGCTCTCAGAGATGGAAAGGTTGCTGACCAAGATCGACCAGAGCGGCGCCCTGAGCATCGACAAACCGCGCAACGCCGCCGAGCATTTTTTCTGCCTGATCAAGGGCGCGGCGAACTTCAGGTTGTTGTATGGCTGCGACGGGCCGCAGGACGCCGAAGCGGCCGAAGCGCATGTGCAGGAAGTGGTGGGGTTGTTTGTGCGGGCTTATCGGCCTTAGMSNNPPSSSGPGRPKDLAKRQAILDAAKRLFLSLGYASTSMDAVATEAGVSKLTVYSHFNDKETLFSAAVIAKCEEQVPPLFFEWADGVPIEHVLLNIARGFNQLINSDESVNLHRLMVALGSQDPKLSTIFYQAGPQRMLSEMERLLTKIDQSGALSIDKPRNAAEHFFCLIKGAANFRLLYGCDGPQDAEAAEAHVQEVVGLFVRAYRPPGPT0028895_550DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexJK-OprM,PGPT0028895-mexL-K18301NANA
D1-35_001011101mdtA_1Multidrug resistance protein MdtAATGTTCCGCTATGTCCTGCCCCTCGCCGTGCCAGTCAGCCTGGCTTTTTTATTGTCTGCGTGCGGTCATGAGGAGCCGACGCCGGTCGCCGTGCGCCCTGCGATGGTCGTCAAGCCGGAGCCTTCGGCCCAGGCGATGGACAGTTATCCCGGCGAAGTACGGGCGCGGTTCGAGCCGGACCTGGCGTTTCGCATTGGCGGCAAGGTGAGCCGCCGGCTGGTGGAAGAGGGCCAGCGGGTCAAGGCCAACCAGGCGCTGGCCGAACTCGACCCCGAGGATGTGCGCCTGCAACTGGAAGCCAGTCGGGCCCAGGTTGCCGCGGCCGAGGCCAACCTGAGCCTGGTAAAAGCCGAGCGTGACCGCTACAAGACCTTGATGGAGCGGCAGATGGTCAGCCGCTCCCAATACGACAACGCCGAGAATCTCTATCGCTCCGGTGCCGCGCGGCTCAAGCAGATCAAGGCCGAATTCGACGTTGCCAGCAACCAGGCCAGCTATTCGGTGTTGCGTGCACCCCAGGACGGCGTGGTGGCCCGGCGGGCGGTGGAAGTCGGCCAGGTGGTGTCGGCTGGACAGACCGTCTTCACCCTGGCCACCGACGGCGAGCGTGAAGTGTTGATCAGCCTGCCGGAGCAGGGATTTGGTCGGTTCAAGATCGGCCAGCCAGTGTCGGTTGAATTGTGGAGCCAGCCCGATCAGCGCTTCAGCGGACGCATCCGCGAACTCTCGCCGGCCGCCGATCCGAAATCCCGTACCTTCGCCGCGCGCGTCGCCTTCACCGCTGGCAGCGTCCCGGCGGAACTGGGCCAGAGCGCCCGGGTGTTTATCCAGACCGCTGAGAAGGCGCCGCTGTCGGTGCCATTGTCGGCCCTCACCGCCGAGAACGGCGCCACCTTCGTCTGGGTGGTCAAGCCCGACAACACGCTCAAGAAAGTCCCGGTGCGCGTTGGCGCCTTCGGTGAAAAGACCGTGCCGGTGCTCGAAGGCCTGAGTGCCAATGACTGGGTGGTGGCCGCTGGCGTGCATGTGCTTCTGGACGGCCAGCAGGTTCGGCCGGTGGATCGCTCCAATCGCGTGGTCAACCTGGCGGCCAAGGAGTAAMFRYVLPLAVPVSLAFLLSACGHEEPTPVAVRPAMVVKPEPSAQAMDSYPGEVRARFEPDLAFRIGGKVSRRLVEEGQRVKANQALAELDPEDVRLQLEASRAQVAAAEANLSLVKAERDRYKTLMERQMVSRSQYDNAENLYRSGAARLKQIKAEFDVASNQASYSVLRAPQDGVVARRAVEVGQVVSAGQTVFTLATDGEREVLISLPEQGFGRFKIGQPVSVELWSQPDQRFSGRIRELSPAADPKSRTFAARVAFTAGSVPAELGQSARVFIQTAEKAPLSVPLSALTAENGATFVWVVKPDNTLKKVPVRVGAFGEKTVPVLEGLSANDWVVAAGVHVLLDGQQVRPVDRSNRVVNLAAKEPGPT0028885_562DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexJK-OprM,PGPT0028885-mexJ-K18302NANA
D1-35_001023066czcA_1Cobalt-zinc-cadmium resistance protein CzcAATGGGCTTCAATCTCTCCGAATGGGCGTTGCGTAACCGCCAGATCGTACTGTTCCTGATGCTCTTGCTGGCGATCGTCGGCGCGCTTTCCTACACCAAGCTGGGTCAGAGCGAAGATCCGCCATTCACCTTCAAGGCCATGGTCATCCGTACCGTCTGGCCAGGGGCCACGGCCGAGGAAGTGTCGCGCCAGGTCACCGAGCGTATCGAAAAGAAGCTCATGGAAACCGGCGACTACGAAAAGATCGTCTCGTTTTCCCGGCCGGGAGAATCCCAGGTTACTTTTGCGGCTCGCGACTCCATGCATTCCAAGCAGATTCCCGAGCTGTGGTACCAGATCCGCAAGAAGATCGGCGATATCCGGCAGACCTTGCCGCCGGGTATCCAGGGACCGTTCTTCAACGATGAGTTCGGCACTACCTTCGGCAATATCTACGCGCTCACCGGCGACGGCTTCGATTATGGCGTGCTCAAGGATTACGCCGACCGTATCCAGATCCAGCTGCAGCGGGTCAAGGACGTAGGCAAGGTCGAGTTGGTCGGCCTGCAGGACGAGAAAATCTGGGTCGAGCTGTCGAACGTGAAGCTGGCGACCCTCGGCCTGCCCCTGGCGGCAGTCCAGCAGGCGCTGGAGGCGCAGAACGCGGTATCGACCGCCGGCTTCTTCGAGACCGGCAGCGAGCGATTGCAGCTACGGGTCTCGGGGAATTTCCAGAGCGTGGAAGAGATCCGTGACTTTCCGATCCGCGTGGCCGACCGGACCTTCCGCATCGGTGACGTGGCCGATGTTCGTCGCGGCTTCAATGATCCACCGGCGCCGCGCATGCGTTTCATGGCGGAGGACGCCATCGGCCTGGCCGTGGCGATGAAGGAGGGCGGCGACATCCTGATCCTCGGCAAGGCCCTCGAGGCCGAGTTTGCCCGCATCCAGAACACCCTGCCGGCCGGCATGCAACTGCGCAAGGTTTCCGACCAGCCGGCTGCGGTGAAGACTGGCGTCGGCGAGTTTGTCCAGGTACTGGTGGAAGCACTGACGATCGTGTTGCTGGTGAGCTTCTTTTCCCTGGGGCTGCGCACCGGAATGGTGGTGGCGCTGGCGATTCCGCTGGTCTTGGCGATGACCTTCGCCGCGATGTATTACCTGGGCATCGGTTTGCACAAGATTTCCCTCGGCGCGTTGGTGTTGGCGCTGGGGCTGTTGGTGGACGATGCGATCATCGCGGTGGAGATGATGGCCATCAAGATGGAGCAGGGCTACGACCGGATCAAGGCGGCCAGCTTTGCCTGGACCAGCACGGCGTTCCCGATGCTCACCGGCACCCTGATCACCGCGGCGGGGTTCCTGCCGATCGCCACCGCGCAATCGGGCACCGGTGAGTACACCCGTTCGATTTTCCAGGTGGTGACCCTCGCGCTGGTGGCTTCCTGGGTGGCCGCGGTGGTGTTCGTGCCGTATCTCGGGGAAAAACTCCTGCCGGACTTGGCGAAGATTCACGCGGCCAGGCATGGCACTGCTGACGGCCAGCCGGACCCCTACGGCACGCCGTTCTATCAGCGAGTCCGGCGAACGGTGGAGTGGTGCGTGCGTCGACGCAAGACGGTGATCACCTTGACCGTGCTGTTGTTCGTCGGCTCGGTGGTGCTGTTCCGTTTTGTCCCGCAGCAGTTTTTCCCGGCGTCGGGACGACTGGAGCTGATGGTCGACCTGAAGCTGGCCGAAGGCGCTTCGCTGGTCAACACCGCGGAGCAGGTCAAGCGCCTTGAAGCGCTGCTCAAGGACCACGCTGGCATCGACAATTACGTGGCGTACGTCGGCACCGGCTCACCACGCTTCTACTTGCCGCTGGATCAACAACTGCCGGCGCCGAGCTTCGCCCAGTTCGTCGTGCTGGCCAAGACCATCGAAGACCGCGAGCCCTTGCGCAGTTGGCTGATCAGCACACTGAACGAGCAGTTCCCGACCCTGCGCTCGCGGGTCACACGCCTGGAAAACGGCCCGCCCGTGGGGTATCCGGTGCAGTTTCGGGTGACGGGTGAACACATCGAAGAAGTCCGCGCGCTTGCCCGGAAAGTCGCGACAAAGGTTCGCGAAAACCCCTACGTCGCCAATGTCCACCTGGACTGGGAAGAACCGAGCAAGGTGGTGTACCTCAACATCGATCAGGATCGCGCCCGCGCGTTGGGCGTCACCACCGCCAACCTGTCGAGCTTCCTGCAAAGCTCCCTCACGGGCTCCAGTGTCAGCCAGTACCGCGAAGACAACGAGCTGATCGAGATCCTGCTGCGCGGCACCGTGCATGAGCGCACCGAGCTTTCGCTGTTGCCAAGCCTGGCGGTGCCTACCGACAACGGCACGAGCGTTGCCCTGTCGCAGATCGCGACGCTGGAATACGGCTTTGAAGAAGGGGTGATCTGGCACCGCAACCGTCTACCCAGCGTGACCGTACGGGCCGACATCTATGGCAAGGAACAACCGGCGACGCTGGTGCAACAGATTTTCCCGACCCTGGACCCGATCCGTGCAGAGTTGCCGGACGGCTATCTGCTGGAAGTCGGGGGCACGGTGGAGGATTCAACCCGTGGGCAGAAATCGGTGAATGCGGGCGTGCCGCTGTTCATCGTGGTGGTGCTGACGTTGCTGATGCTGCAACTGCGCAGCTTCTCGCGCACGGCGATGGTGTTTCTCACCGCGCCGCTGGGACTGATCGGCGTCACGCTGTTCCTGCTGGTGTTCCGCCAGCCGTTCGGTTTCGTCGCCATGCTCGGCACTATCGCGTTGTCCGGGATGATCATGCGCAACTCGGTGATCCTGGTGGACCAGATCGAACAGGACATCAAGGCGGGGCTCGCCCCCTGGCAGGCGATCATCGAGGCGACCGTGCGCCGTTTCCGGCCGATTGTACTGACTGCACTGGCGGCGGTCCTGGCGATGATCCCACTGTCGCGCAGCCTGTTCTTCGGGCCCATGGCAGTGGCTATCATGGGCGGCTTGATCGTGGCGACGGCGTTGACGCTGTTGTTCCTGCCGGCGTTGTATGCGGCGTGGTTCAGGGTCAGGAAAACCTGAMGFNLSEWALRNRQIVLFLMLLLAIVGALSYTKLGQSEDPPFTFKAMVIRTVWPGATAEEVSRQVTERIEKKLMETGDYEKIVSFSRPGESQVTFAARDSMHSKQIPELWYQIRKKIGDIRQTLPPGIQGPFFNDEFGTTFGNIYALTGDGFDYGVLKDYADRIQIQLQRVKDVGKVELVGLQDEKIWVELSNVKLATLGLPLAAVQQALEAQNAVSTAGFFETGSERLQLRVSGNFQSVEEIRDFPIRVADRTFRIGDVADVRRGFNDPPAPRMRFMAEDAIGLAVAMKEGGDILILGKALEAEFARIQNTLPAGMQLRKVSDQPAAVKTGVGEFVQVLVEALTIVLLVSFFSLGLRTGMVVALAIPLVLAMTFAAMYYLGIGLHKISLGALVLALGLLVDDAIIAVEMMAIKMEQGYDRIKAASFAWTSTAFPMLTGTLITAAGFLPIATAQSGTGEYTRSIFQVVTLALVASWVAAVVFVPYLGEKLLPDLAKIHAARHGTADGQPDPYGTPFYQRVRRTVEWCVRRRKTVITLTVLLFVGSVVLFRFVPQQFFPASGRLELMVDLKLAEGASLVNTAEQVKRLEALLKDHAGIDNYVAYVGTGSPRFYLPLDQQLPAPSFAQFVVLAKTIEDREPLRSWLISTLNEQFPTLRSRVTRLENGPPVGYPVQFRVTGEHIEEVRALARKVATKVRENPYVANVHLDWEEPSKVVYLNIDQDRARALGVTTANLSSFLQSSLTGSSVSQYREDNELIEILLRGTVHERTELSLLPSLAVPTDNGTSVALSQIATLEYGFEEGVIWHRNRLPSVTVRADIYGKEQPATLVQQIFPTLDPIRAELPDGYLLEVGGTVEDSTRGQKSVNAGVPLFIVVVLTLLMLQLRSFSRTAMVFLTAPLGLIGVTLFLLVFRQPFGFVAMLGTIALSGMIMRNSVILVDQIEQDIKAGLAPWQAIIEATVRRFRPIVLTALAAVLAMIPLSRSLFFGPMAVAIMGGLIVATALTLLFLPALYAAWFRVRKTPGPT0028890_665DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexJK-OprM,PGPT0028890-mexK-K18303NANA
D1-35_00103690hypothetical proteinATGCTCCGCCCTACCCTCCGTTTCACCGGCCTCTGCGCCGGCCTGTTGATCTGCGCCAACGCCATGGCCCTGTCGCTCGGTGATCTCTCGCAGAAGGACGCCACGGGCGGTCTGAAGGATGCCCTCACCCAAGGCGCCCAGATCGCGGTCAAGCAACTGGGTAAGCCTGGCGGTTTCAGCAACAACCCCGACGTGAAGATCGAGCTGCCGGGCAAGCTCGGTAAAGTCGCCAGCAAGATGAAGGCCTTCGGCATGGGCGCTCAGGTCGATCAATTGGAAACCAGCATGAACCAGGCTGCCGAAGCCGCCGTAGTGCAGGCCCAGCCGATCCTGGTGGATGCGGTGAAGAACATGAGCGTGACGGATGCCAAGGGCATTCTGAGCGGCGGCAACGACTCGGCCACGCAATACCTGAACAAGAGCAGCCGCGAGCAGATTCGCGCGAAGTTCCTGCCGATCGTCAAGCAAGCCACCGACAAGGTCGGCCTGGTCCAGAAGTACAACGCCTTCGCCGGCCAGGCTGCGACACTCGGCGTGGTGGACACCAAGAGCGCCAACGTCGAGAACTACGTGACCGAGCAGGCGCTGGACGGGTTGTTCAAGATGATTGCCAAGCAGGAAGCAACGATCCGCCAGAACCCGGCGGCCGCGGCGACCAGTTTGGCCAAGAAAGTGTTTGGCACCCTCTGAMLRPTLRFTGLCAGLLICANAMALSLGDLSQKDATGGLKDALTQGAQIAVKQLGKPGGFSNNPDVKIELPGKLGKVASKMKAFGMGAQVDQLETSMNQAAEAAVVQAQPILVDAVKNMSVTDAKGILSGGNDSATQYLNKSSREQIRAKFLPIVKQATDKVGLVQKYNAFAGQAATLGVVDTKSANVENYVTEQALDGLFKMIAKQEATIRQNPAAAATSLAKKVFGTLNANANANANA
D1-35_001042502plsBCOG2937Glycerol-3-phosphate acyltransferaseATGACCCGCTCCCCGTTCCGCCGTCTTGTGTTTGGCACCCTGCGCCGACTGTTGTACCTCTGGGTTCGCTCCGAGACCATCAACCAGTCGTCCTTCACCCTCAACCTCGACCGCAGTCGTCCGGTGTTCTACGTCCTGCAAGATCCTTCGCTCACCGATCTGGCGGTGCTCGACACCGAATGCACCAAGGCCGGCCTGCCACGTCCGGTGCTGCCCGTCTCGGTGGGCGGCCTGCTGGAGCCGGCGGCGTTTTTCTACCTGACGCCGGCGCCGGACTGGCTCGGGCGCCAGGACAAACGCGGTGCGCCGCCGACCCTGACGCGACTGGTCGACGAGTTGACCCACAACGCCGCCGAGGACGCCCAGATTATTCCGGTCAGCGTCTTCTGGGGCCAGTCGCCCGACAGCGAATCCAGCCCCTGGAAGCTGCTGTTCGCCGACAGCTGGGCGGTCACCGGGCGCCTGCGTCGCTTGCTGAGCATCATGATTCTTGGGCGCAAGACACGGGTGCAGTTCTCCGCGCCCATTCATCTGCGCGAACTGATCGAGCACGACAAAGGCCATGAACGCACCGTGCGCATGGCCCAGCGGATCCTGCGGGTGCACTTTCGCAATCTGAAAGCAGCGGTTATCGGCCCGGACATCTCCCACCGGCGCAACCTGGTCAAGGGTCTGTTGAACCAGCCATTGGTCAAGCAGGCCATCCTCGAAGAGGCCGAACGGGAAAAGATCCCGGCTGAAAAAGCCAAGGCCCAGGCCCTGCGTTATGGCAATGAGATTGCTTCGGACTACACCTACACCGCGATCCGCTTCCTGGAAGTGGTGCTGAGCTGGTTCTGGAACAAGATCTACGATGGCATCAAGGTCAACCACATCGAAGGCGTGCAGAACGTTGCCCAAGGCCACGAAGTCATCTACGTACCCTGCCATCGCAGCCATATCGACTACCTGCTGCTGTCGTACCTGCTGTTTCGCAATGGCCTGACCCCACCGCACATTGCCGCCGGCATCAACCTCAACATGCCGGTGATCGGCGGCCTGCTGCGCCGTGGCGGCGCGTTTTTCATGCGTCGCACGTTCAAGGGCAACCCGCTTTACACCGCCGTGTTCAACGAATACCTGCACACGCTGTTCACCAAGGGGTTCCCGGTGGAGTACTTCGTCGAAGGCGGCCGTTCGCGTACCGGGCGCATGCTGCAACCGAAGACCGGCATGCTCGCCATTACCCTGCGTAGCTTTTTGCGCTCCTCGCGCATGCCGATCGTCTTTGTGCCGGTGTACATCGGTTACGAGCGCGTACTGGAAGGCCGCACCTACCTCGGTGAGCTGCGGGGTGCGAGCAAAAAGAAGGAGTCGATCTTCGACATCTTCAAGGTCATCGGCGCCCTCAAGCAACGCTTTGGCCAGGTCGCGGTTAACTTTGGCGAGCCAATCAAGCTGGCGGAGTTCCTCGACGGCGAACAACCCGGCTGGCGCCAGCAGGAGCTCGGGCCGCAGTTCAAACCCGACTGGCTCAACGCGACCACCAACCGCCTCGGCGAACGTGTCGCCCGCCATCTGAACGAAGCCGCGGCCATCAACCCGGTCAACCTGGTCGCGCTCGCGCTGCTGTCCACCAGCCGTCTGGCCCTGGACGATCACGCCATGGCCCGCGTACTGGACCTGTACCTCGCGTTGCTGCGCAAAGTGCCATACTCGCCTCACACCACCTTGCCCGAAGGCGATGGCCAGGCGCTGATCGCGCACGTCAAAGGCATGGACCTGCTGTCGGAACAGAAGGACGCCCTGGGCAAGATTCTGTATCTGGATGAGCAGAACGCGGTGCTGATGACCTACTACCGCAACAATGTCCTGCACATCTTCGCCCTGCCGGCGCTGCTCGCCAGTTTCTTCCAGAGCAGCTCGCGCATGAGCCGCGAACAGATCCTGCGCTACACCCGGGCCTTGTATCCGTACCTGCAGTCGGAGCTGTTCATTCGCTGGTCGCTGGAGGAACTGGACGCGGTGGTCGACCAGTGGCTCGAAGCATTCGTTGAACAAGGCCTGCTGCGTTTCGAAAAAGACCTCTACCTGCGCCCGGCGCCGAGTTCGCGGCATTTCGTGCTGCTGACGCTGCTGTCGAAAAGCATCGCCCAGACCTTGCAGCGTTTCTACATGACCGTCTCGCTGCTGCTCAACAGCGGGCAGAACAGCATCAGCGCCGAAGAACTGGAGGACCTCTGCACCGTCATGGCCCAGCGCCTGTCGATCCTGCATGGGCTGAACGCACCGGAGTTCTTCGACAAGAGCCTGTTCCGCCACTTCATCCAGACGATGCTCGACCTCGACGTCCTGCGGCGCGACGAAGCAGGCAAGCTGAGCTATCACGAACTGCTCGGCGAGCTGGCTGAAGGCGCGGCCAAGCGGGTGCTGCCGGCGGAAATTCGTCTGTCGATCCGCCAGGTGGCGTTGCATCGCAGCGAAGATGCGGCGGATCAGGACGTTCCGACGGCTGCGGACTGAMTRSPFRRLVFGTLRRLLYLWVRSETINQSSFTLNLDRSRPVFYVLQDPSLTDLAVLDTECTKAGLPRPVLPVSVGGLLEPAAFFYLTPAPDWLGRQDKRGAPPTLTRLVDELTHNAAEDAQIIPVSVFWGQSPDSESSPWKLLFADSWAVTGRLRRLLSIMILGRKTRVQFSAPIHLRELIEHDKGHERTVRMAQRILRVHFRNLKAAVIGPDISHRRNLVKGLLNQPLVKQAILEEAEREKIPAEKAKAQALRYGNEIASDYTYTAIRFLEVVLSWFWNKIYDGIKVNHIEGVQNVAQGHEVIYVPCHRSHIDYLLLSYLLFRNGLTPPHIAAGINLNMPVIGGLLRRGGAFFMRRTFKGNPLYTAVFNEYLHTLFTKGFPVEYFVEGGRSRTGRMLQPKTGMLAITLRSFLRSSRMPIVFVPVYIGYERVLEGRTYLGELRGASKKKESIFDIFKVIGALKQRFGQVAVNFGEPIKLAEFLDGEQPGWRQQELGPQFKPDWLNATTNRLGERVARHLNEAAAINPVNLVALALLSTSRLALDDHAMARVLDLYLALLRKVPYSPHTTLPEGDGQALIAHVKGMDLLSEQKDALGKILYLDEQNAVLMTYYRNNVLHIFALPALLASFFQSSSRMSREQILRYTRALYPYLQSELFIRWSLEELDAVVDQWLEAFVEQGLLRFEKDLYLRPAPSSRHFVLLTLLSKSIAQTLQRFYMTVSLLLNSGQNSISAEELEDLCTVMAQRLSILHGLNAPEFFDKSLFRHFIQTMLDLDVLRRDEAGKLSYHELLGELAEGAAKRVLPAEIRLSIRQVALHRSEDAADQDVPTAADPGPT0024370_270DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_ACYLTRANSFERASE_ACTIVITY,PGPT0024370-plsB-K00631NANA
D1-35_00105210cspA_1COG1278Major cold shock protein CspAATGGCAACACGCGAAACTGGCAGTGTGAAGTGGTTCAACGACGCCAAGGGTTATGGCTTCATCCAGCGCGAAGGCGGGGCGGATGTGTTCGTCCACTACCGCGCGATCCGTGGCGAAGGCCACCGTTCACTGACCGAAGGCCAGCAGGTCGAATACGCGGTGGTGGAAGGGCAGAAGGGCTTGCAGGCTGAGGATGTGGTGGGGTTGTAAMATRETGSVKWFNDAKGYGFIQREGGADVFVHYRAIRGEGHRSLTEGQQVEYAVVEGQKGLQAEDVVGLPGPT0014675_4293DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
D1-35_00106378hypothetical proteinATGCGCCAACCCGATATCGAGATTTACCTCAAGGACGCCGACGTCGACCACAAGGCGATCGCCGCCTGGCTCGGCCAGGCCCTCGGCCCGTGCAGCGACTGGGTGCAGAAAGGTCAGACGTACAAGTGCAAGGCCGGCGACATCCCGGTGACCTGGTTGCCCAAGGCTGTAGGCAAATGGAACAGCCTGTACCTGGAAAGTGACCAGACCCCGTGGGAAGACGACATCGCCTGCGCCCGCGCCGCCTTCGCCGCGCTGAACGTCGAAGTGCGCTGCGCGCCTGGGTCGTGGGTGGAAGAAGAAGGTGAGGATTCGGCGGATCGCTGGATTCGCATCAGCGCCGATGGGGAAGAAGAGATTACCTGGAAGACGGCGTGAMRQPDIEIYLKDADVDHKAIAAWLGQALGPCSDWVQKGQTYKCKAGDIPVTWLPKAVGKWNSLYLESDQTPWEDDIACARAAFAALNVEVRCAPGSWVEEEGEDSADRWIRISADGEEEITWKTANANANANANA
D1-35_00107810rlmACOG050023S rRNA (guanine(745)-N(1))-methyltransferaseATGCTCGCCTGCCCGATCTGCAATGAACCCTTGAATGCGGTGGACAACGGCGTGGCATGCCCCGCCGGGCATCGTTTCGACCGCGCGCGGCAGGGTTACCTGAACCTGCTGCCGGTGCAGCACAAAAACAGCCGCGACCCCGGCGACAATCAGGCGATGGTCGAGGCCCGCCGCGATTTCCTCAACGCTGGTCATTACGCCCCGGTCGCCCGGCGCCTGGCTGAACTGGCCGCCGAACGTGCGCCCGGACGCTGGCTGGACATTGGCTGTGGCGAAGGTTATTACACCGCGCAACTCGCCGACGCCCTGCCCGACGCCGATGGCTACGCCCTGGATATTTCCCGCGAAGCCGTCAAGCGCGCCTGCAAACGCAACCCCCAACTGACCTGGTTGATCGCCAGCATGGCGCGGGTACCGCTGGCGGACGGCTGCTGCCAGTTCCTCGCCAGCGTGTTCAGCCCGTTAGACTGGCAGGAGGCCAAGCGCCTGCTCAGCCCCGGCGGCGGCTTGATGAAAGTCGGGCCTACCAGCGGCCACCTGATGGAGCTGCGCGAGCGGCTGTATGATGAGGTTCGCGAATACACCGATGACAAACACCTGGCCCTGGTGCCGTCGGGGATGGCGCTGGATCACAGTGAAACCCTCGAGTTCAAGCTCACGCTCGACAACAGCCAGGATCGGGCCAACCTGCTGGCGATGACGCCCCACGGCTGGCGCGCCAGCGCCGAACGCCGCGCCAGCGTGATCGAGCAGGCCGAGCCGTTCGAGGTGAGCGTGTCGATGCGCTACGATTATTTCGTTCTGCAGTAAMLACPICNEPLNAVDNGVACPAGHRFDRARQGYLNLLPVQHKNSRDPGDNQAMVEARRDFLNAGHYAPVARRLAELAAERAPGRWLDIGCGEGYYTAQLADALPDADGYALDISREAVKRACKRNPQLTWLIASMARVPLADGCCQFLASVFSPLDWQEAKRLLSPGGGLMKVGPTSGHLMELRERLYDEVREYTDDKHLALVPSGMALDHSETLEFKLTLDNSQDRANLLAMTPHGWRASAERRASVIEQAEPFEVSVSMRYDYFVLQNANANANANA
D1-35_001081152dapE_1COG0624Succinyl-diaminopimelate desuccinylaseATGACGGCCCACGCCGACCTCTCGCCGACCCTGCAACTCGCCTGCGACCTGATCCGCCGTCCGTCGGTGACGCCGGTGGATGCCGATTGCCAGAAACTGATGATGCAGCGCCTGGGCGACGCCGGTTTCAAGCTCGAACCCATGCGTATCGAGGATGTGGATAACTTCTGGGCCAGCCATGGCAAGCATGACGGTCCGGTATTGTGCTTCGCCGGTCACACCGATGTGGTCCCGACCGGTCCGGTACAGGCCTGGCAGCTCGACCCGTTCGATGCGGTCATCGACGAACAGGGCATGCTCTGCGGCCGTGGCGCGGCGGACATGAAAGGCAGCCTGGCGGCGATGGTGGTGGCGGCCGAACGGTTCGTCGCCGACTACCCGGATCACCAGGGCTCGATCACCTTCCTGATCACCAGCGACGAAGAAGGCCCGGCCCACCATGGCACCAAAGCCGTGGTCGAGCGCCTCAAGGCCCGCCAGGAACGCCTGGACTGGTGCATCGTCGGCGAACCATCGAGCACCACGCTGGTGGGTGATGTGGTCAAGAATGGCCGTCGCGGCTCCCTCGGCGCAAAACTGACGGTGCGCGGCAAGCAAGGCCACGTGGCTTATCCACACTTGGCGAAGAACCCGATCCACCTGGCCGCGCCTGCCCTGGCCGAATTGGCCGCCGAGCATTGGGATCACGGCAACGATTTCTTCCCGCCGACCAGTTTCCAGATCTCCAACCTCAACTCCGGCACCGGCGCGACCAACGTGATCCCCGGTGACCTGGAAGCCGTGTTCAATTTCCGCTTCTCCACCGAGTCCACCGTCGAAGGCCTGCAGCAGCGGGTCGCCGACATCCTCGACAAGCATCAACTGGACTGGCACATCGACTGGGCGTTGTCCGGCCTGCCATTCCTCACCGAGCCGGGCGCACTGCTCGACGCCGTGTCGTCGAGCATCAAGGACGTCACCGGCCGCGAGACCAAGGCCTCCACCAGCGGCGGCACCTCCGACGGTCGCTTCATCGCGACCATGGGCACTCAAGTGGTTGAGCTGGGGCCGGTCAACGCGACGATCCACCAGGTCAACGAACGCGTGCTGGCCGCCGATCTCGACGTGCTGACCGAGATCTACTACAAGACGCTCATCAAGTTGCTCGCCTGAMTAHADLSPTLQLACDLIRRPSVTPVDADCQKLMMQRLGDAGFKLEPMRIEDVDNFWASHGKHDGPVLCFAGHTDVVPTGPVQAWQLDPFDAVIDEQGMLCGRGAADMKGSLAAMVVAAERFVADYPDHQGSITFLITSDEEGPAHHGTKAVVERLKARQERLDWCIVGEPSSTTLVGDVVKNGRRGSLGAKLTVRGKQGHVAYPHLAKNPIHLAAPALAELAAEHWDHGNDFFPPTSFQISNLNSGTGATNVIPGDLEAVFNFRFSTESTVEGLQQRVADILDKHQLDWHIDWALSGLPFLTEPGALLDAVSSSIKDVTGRETKASTSGGTSDGRFIATMGTQVVELGPVNATIHQVNERVLAADLDVLTEIYYKTLIKLLANANANANANA
D1-35_00109819tcdACOG1179tRNA threonylcarbamoyladenosine dehydrataseATGGTCATGAGTACAGAAGATCCACGGTTCGCCGGCATTGCCCGTTTGTATGGCATCGAAGGCCTGGAGCGCCTGCGGGCGGCGCATGTGGCGATTGTCGGCGTCGGCGGCGTTGGTTCCTGGGCGGCGGAAGCGATTGCCCGTTGTGGCGTGGGCGAGATTTCGCTATTCGACCTGGATGACGTCTGCGTCAGCAACGCCAATCGTCAGTTACATGCCCTGGACAGCACCGTCGGCAAGCCCAAGGTCGAAGTGATGGCCGAGCGGCTGCGGGGGATCAACCCCGATTGCACCGTGCACGCGGTGGCCGACTTTGTCACCCGCGACACCATGGCCGAGTACATCACGCCGAACATCGACTGCGTGATCGACTGCATCGACAGCGTCAACGCCAAGGCTGCGTTGATCGCGTGGTGCAAGCGCCGCAAGATTCAGATCATCACCACCGGCGGCGCAGGCGGGCAGATCGACCCGACGCTGATCCAGGTCTGCGACCTCAACCGTACGTTCAACGATCCGCTGGCCTCCAAGGTGCGCTCCACCTTGCGCCGCGACTATGGTTTCTCGCGCACCGTGACCCGTCATTACAGCGTGCCCTGCGTATTCTCCACCGAGCAATTGCGCTACCCGAAACCGGACGGCAGCATCTGCCTGCAGAAGAGTTTTGTCGGCGACGGCGTCAAGCTCGACTGCGCTGGCGGGTTCGGCGCAGTGATGATGGTCACCGCGACGTTCGGCATGGTCGCGGCGACCAAGGCTGTGGACAAGATCGTCGCGGGCGTGCGGCGTCCGGCGGACCGGCTTAAGCCCGGGCAGTAAMVMSTEDPRFAGIARLYGIEGLERLRAAHVAIVGVGGVGSWAAEAIARCGVGEISLFDLDDVCVSNANRQLHALDSTVGKPKVEVMAERLRGINPDCTVHAVADFVTRDTMAEYITPNIDCVIDCIDSVNAKAALIAWCKRRKIQIITTGGAGGQIDPTLIQVCDLNRTFNDPLASKVRSTLRRDYGFSRTVTRHYSVPCVFSTEQLRYPKPDGSICLQKSFVGDGVKLDCAGGFGAVMMVTATFGMVAATKAVDKIVAGVRRPADRLKPGQNANANANANA
D1-35_00110405sufECOG2166Cysteine desulfuration protein SufEATGAGCCTGCCTGCCGATGCCGCTGCGGCACTGCGGATTTTCCAGGACGCCTCCGGCTGGGAGCAACGCGCCCGGCTGCTGATGCAGTGGGGCGATCGCTTGCCACCGCTGAGCGATGCAGACAAGTGCGAGGACAACCTCGTCAACGGCTGTGAAAGCCAGGTATGGCTGGTGGGTCGGCTGCATGATGGGCACTGGCAGTTTTCCGCCAGCAGCGATGCGCGCTTGATACGCGGGTTGGTGGCGTTGTTGCTGGCGCGGGTCAACGGGTTGTCGGCTGAGGATTTGCGCCAGGTCGATTTGCCGGACTGGTTCAATCAGTTGGGGTTGTCACGGCAGTTGTCGCCTTCGCGCAGCAATGGCTTGAATGCGGTGTTGAAGCGGATGCGCGAGCTGGCGCAATAAMSLPADAAAALRIFQDASGWEQRARLLMQWGDRLPPLSDADKCEDNLVNGCESQVWLVGRLHDGHWQFSASSDARLIRGLVALLLARVNGLSAEDLRQVDLPDWFNQLGLSRQLSPSRSNGLNAVLKRMRELAQPGPT0020195_287DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0020195-sufS-K11717NANA
D1-35_001111206sufSCOG0520Cysteine desulfurase SufSATGTTAATTCCATCCCCCTGGCGTGCCGATTTTCCGGCCCTCGCCGCCCTGCAACGGCAAGGCCAGACCTATCTGGACAACGCCGCCACCACACAGAAACCCCAAGCCCTGATGGACGCCCTGGCGCATTACTACGCCAACGGCGCGGCCAACGTGCACCGGGCGCAGCATCTGCCCGGCGCACTGGCCACCCAGGCGTTCGAGGACAGCCGACTCAAGGTTTCCCAGTGGCTCAATGCGGGAAATTGCGGACAGATCGTTTTTACCCACGGCGCCACGTCGGCGCTGAACCTGCTGGCCTATGGGCTGGAACACCTGTTCAACCCGGGCGATGAAATTGTCATCAGCGCCCTTGAGCATCACGCCAACCTGCTGCCCTGGCAGCAACTGGCCGAGCGCCGCTCGCTGGCGCTGGTGGTGCTGCCCCTGGATGCCGACGGGGTGATCGATACGGAGGCCGCCACCAGGCTGATCGGTCCGCGCACCCGCCTGCTGGCGGTGAGCCAGTTGTCCAACGTGCTTGGCACCTGGCAACCGGTGCCGGCGTTGCTGGCGATGGCCAAGGCGCAAGGTGCGCTGACGGTAGTCGATGGCGCACAGGGCGTGGTCCACGGGCGCCATGATGTGGAAGCGCTGGGCTGCGACTTCTATGTTTTTTCCAGCCACAAGCTTTACGGTCCCGAAGGCCTGGGCGTGCTGTTCGGCCGTACCGACGCCCTCGCTCGACTGCGTCATTGGCAGTTCGGCGGGGAAATGGTGCAAACGGCTGATTACCACAGCGCCACGTTCCGCCCGGCGCCGTTGGGTTTCGAAGCCGGCACGCCGCCCACCGCCAGCGTGATCGGCCTGGGAGCGACGCTCGACTACCTGTCCGATCTCGACGGGCAGGCGGTAATCGATCACGAAACCGCGCTGCACGATTATCTGCTTCACGGGCTGCTGGCGCGCAACGGCGTGCGGCTGGTGGGCAACCCACAACTGGCGCTGGTCAGCTTCGGCGTCGAAGGCGTTCATAACGCTGATCTGGCGCACCTGTTGACCGAGCAAGGCATTGCCGTGCGCGCCGGGCATCACTGTGCGATGCCGCTGTTCAAGCAGTTGAAGCTTTCCGGGGCGATTCGTGTGTCGCTGGCGCTGTACAACGACTCCGCCGATATCGAACGGTTCTTCGAGGCGCTGGATCAGGCCCTGGAGATGCTGCGATGAMLIPSPWRADFPALAALQRQGQTYLDNAATTQKPQALMDALAHYYANGAANVHRAQHLPGALATQAFEDSRLKVSQWLNAGNCGQIVFTHGATSALNLLAYGLEHLFNPGDEIVISALEHHANLLPWQQLAERRSLALVVLPLDADGVIDTEAATRLIGPRTRLLAVSQLSNVLGTWQPVPALLAMAKAQGALTVVDGAQGVVHGRHDVEALGCDFYVFSSHKLYGPEGLGVLFGRTDALARLRHWQFGGEMVQTADYHSATFRPAPLGFEAGTPPTASVIGLGATLDYLSDLDGQAVIDHETALHDYLLHGLLARNGVRLVGNPQLALVSFGVEGVHNADLAHLLTEQGIAVRAGHHCAMPLFKQLKLSGAIRVSLALYNDSADIERFFEALDQALEMLRPGPT0020195_4102DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0020195-sufS-K11717NANA
D1-35_001121035dapDCOG21712,3,4,5-tetrahydropyridine-2,6-dicarboxylate N-succinyltransferaseATGTCCACTACCCTGTTCAGCCTGGCCTTCGGTGTCGGCACTCAAAACCGTGAAGGCGCCTGGCTGGAAGTCTTCTACGCCCAACCGCTGCTCAACCCGTCGGCCGAGATCGTTGCCGCCATTGCGCCGATCCTTGGCTACAGCGAAGGCAACCAGGCCATCACGTTCACCACGGCCCAGGCCTCGCAACTGGCTGAAGCGCTGCGCAACGTCGACGCCGCGCAAGCCAAGCTGCTGACCCGCCTGGCTGAAAGCCACAAGCCGCTGGTCGCCACGCTGCTGGCCGAAGATGCGCAACTGGCATCCACGCCTGAGGCGTACCTCAAGCTGCACCTGCTGTCCCATCGCCTGGTCAAGCCCCACGGCCTGAACCTGGCCGGCATCTTCCCACTGCTGCCGAACGTGGCCTGGACCAGCCAGGGCGCGATCGACCTGGCCGAACTGGCCGAGCACCAGCTCGAAGCCCGTCTGCGTGGCGAGTTGCTGGAAGTGTTCTCGGTGGACAAATTCCCGAAGATGACCGACTACGTGGTTCCGGCCGGCGTGCGTATCGCCGACGCCGCGCGCCTGCGCCTGGGCGCCTATGTGGGCGAAGGCACCACGGTGATGCACGAAGGTTTCGTCAACTTCAACGCCGGTACCGAAGGGCCGGGGATGATCGAAGGCCGGGTCTCGGCGGGTGTGTTCGTCGGCAAGGGCTCGGACCTGGGCGGCGGTTGCTCGACCATGGGCACCCTGTCGGGTGGTGGCAACATCGTGATCAAGGTTGGCGAAGGCTGCCTGATCGGTGCCAACGCCGGCATCGGCATCCCGCTGGGCGATCGCAACACCGTGGAGTCGGGCCTGTACGTGACCGCCGGCACCAAGGTTGCGCTGCTGGATGAGAACAACCAATTGGTCAAAGTGGTCAAGGCTCGCGACCTGGCCGGCCAGCCGGACCTGCTGTTCCGGCGCAACTCCGAGACCGGCGCAGTGGAATGCAAGACCCACAAGTCGGCCATCGAGCTGAACGAAGCACTGCACGCGCATAACTGAMSTTLFSLAFGVGTQNREGAWLEVFYAQPLLNPSAEIVAAIAPILGYSEGNQAITFTTAQASQLAEALRNVDAAQAKLLTRLAESHKPLVATLLAEDAQLASTPEAYLKLHLLSHRLVKPHGLNLAGIFPLLPNVAWTSQGAIDLAELAEHQLEARLRGELLEVFSVDKFPKMTDYVVPAGVRIADAARLRLGAYVGEGTTVMHEGFVNFNAGTEGPGMIEGRVSAGVFVGKGSDLGGGCSTMGTLSGGGNIVIKVGEGCLIGANAGIGIPLGDRNTVESGLYVTAGTKVALLDENNQLVKVVKARDLAGQPDLLFRRNSETGAVECKTHKSAIELNEALHAHNNANANANANA
D1-35_00113363COG1393putative proteinATGCCCAATGAAATCAAGCACTTAAAGCTTTACGGCATCAAAGCCTGCGACACGATGAAAAAGGCCCGCACTTGGCTCGATGAACACGCGGTGCATTATGACCTTCACGATTACAAGACTGCCGGCATCGACCGTGAGCACCTGGCCCAATGGTGCAACGAGCATGGCTGGCAAGTGGTGTTGAACCGTGCCGGTACGACCTTTCGCAAACTCGACGACGAACGCAAAGCCGATCTCGACCAGACGAAAGCCATCGAACTGATGCTCGCCCAACCCTCGATGATCAAGCGCCCGGTGCTCGATCTCGGTGACCGAACCCTGATTGGCTTCAAGCCAGATATCTATGCGGCAGAGATCAAGTAAMPNEIKHLKLYGIKACDTMKKARTWLDEHAVHYDLHDYKTAGIDREHLAQWCNEHGWQVVLNRAGTTFRKLDDERKADLDQTKAIELMLAQPSMIKRPVLDLGDRTLIGFKPDIYAAEIKPGPT0004720_1693DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0004720-arsC1-K00537NANA
D1-35_001141371hypothetical proteinATGGATGCCATCTCACCGATACCGCTTCATGCCTTGACGAATCAATCCCAAGAAACACTCCCGCCCCAGCAACACGGCGTGCCGGCTCATTCAACAACGGCGAGCACCGGGACCGCTGCGTCCGTCCCGATTGGCCCGGTCACGGCTGAACAGGACCTGGCAGATCGGGCGGGCGCCATCAAAGCCCAGCTCACCAGGGTTTTCGAGCCTCATATGAACGGTGCCAATCGCGAAGCCTTCGAAGCGCTGATCGACGATCGTTCGCGTACCTTGGCCAATGATGGGGAAACCGCGCAAAGCGTCGACGCCGTTCTGGCCAAGGGTTCGCGGCTGGATCGCGCGGCCCATGATGCTGTTGGATTCGTGCGCTCGGTTCCTTTCGGTGCCGCGTCCATCGCATTGGACTTCGCCCCAGCGGTAACGGGAAATGGCTCCATAACAGCGCCGTTGGCGTTGTCGGCGATTTCCGGCCTGGTCAGCAGTGCCGCCGATACCGTCGGCAATGGGCTGATGAAACGCGCGACCAGTGATACCCAATGGCTCGTTGCAGAGGATACCGAGCTGGAGCCGGTCATGCAGGAGGCGGCCCAGGCGGTGAAGCCGAGCCTGGCGACTCAGGCGATCGAAGGCAGCCTGACCTTCCAGACCTTTTCCGCGCGGAACGTGCTGCGCACGGTTATCCAACCCATCGTGACGAAGACCGTCGATGCCCAGACGGGGAGCAAAGTGGACTCGGTGATAGCTGCCGTCGGTTCTCCGCTTTCCGGCATGGCCGCCTATGATCTGCAACATTCCATTGATAAATCGAAACATCGGGTTGGCCCGGAATACCTTTTGGGTCGCCACGACTGGCACCAGCGCTACAAGGACCTCAAGGGCTATGGCGTGGGCAGTGCCGCCATGGGAATTGCGAAGCGGGTCGGCAGCTTACCCCTGGACGCGGTGCGCGACGGCAGCAAATCGCTGCAAGCGCTGGTTACACCCACGGGGCTGGTCAGTGGCCTCGGTGCATTGGCCGGTGGTATCACCGCGATCGGCATGGCCCAGACGGCGGCTGTCAACGCGGCCAGGCGTGCCGGGGTTTCGCCGGCTGGAATAGCGGCGGCGGGCAAGGCGACCGTCACCGCGACTATGGCCCCGGTGGTCGCCGCATGGGTGACCACGGCTGTGATGACGCAGCCCTTGGCGGACAAGGCTTCCGCTGCGTTGGACAGGCTTACCACCGGGCCCGCGCATCCAGATGAGCTACAAGGCATGTTGCCCCTGGTCGAAACGAATGCGACCGAACGGCTCGGTAGTGATAGCGAGAGCGAAGGCGACGATATCGTGTCGGCACGCTCGACCCTCAATGCTGCGGAGCGGGCAGTTTAGMDAISPIPLHALTNQSQETLPPQQHGVPAHSTTASTGTAASVPIGPVTAEQDLADRAGAIKAQLTRVFEPHMNGANREAFEALIDDRSRTLANDGETAQSVDAVLAKGSRLDRAAHDAVGFVRSVPFGAASIALDFAPAVTGNGSITAPLALSAISGLVSSAADTVGNGLMKRATSDTQWLVAEDTELEPVMQEAAQAVKPSLATQAIEGSLTFQTFSARNVLRTVIQPIVTKTVDAQTGSKVDSVIAAVGSPLSGMAAYDLQHSIDKSKHRVGPEYLLGRHDWHQRYKDLKGYGVGSAAMGIAKRVGSLPLDAVRDGSKSLQALVTPTGLVSGLGALAGGITAIGMAQTAAVNAARRAGVSPAGIAAAGKATVTATMAPVVAAWVTTAVMTQPLADKASAALDRLTTGPAHPDELQGMLPLVETNATERLGSDSESEGDDIVSARSTLNAAERAVNANANANANA
D1-35_001151644nhaKCOG0025Sodium, potassium, lithium and rubidium/H(+) antiporterATGCAAAGCGCCTATACCGTCCTGATCCTGTTGATGCTGGTGGGCGTCTCGCGCCTGGTCGGGCGATTGATCCCGCTGCCGCTGCCCCTGGTGCAGATCGCTGCCGGCGCCGTGCTGGCCTGGCCTTCGCTGGGGCTGCATGTGGCGCTTGATCCCGAGTTGTTCCTGTTTCTGTTCCTCCCGCCGTTGCTGTTCTCTGACGGTTGGCGCATGCCCAAGCGTGAACTGTGGCGCCTGCGCGGGCCGGTCCTGACGCTGGCGGTCGGGCTGGTGTTGTTCACGGTGGTCGGCGCGGGTTATTTCATTCATTGGTTGTTGCCAAGCATTCCGTTGCCGGTGGCCTTCGCCCTGGCGGCGGTGCTGTCGCCGACTGACGCGGTGGCCGTGTCGGCAATCGCCCGAGACCGCTTGCCCGCGCCGTTGATGCACATGCTCCAGGGCGAGGCATTGATGAACGATGCGTCGGGCCTGGTGACTTTCAAGTTCGCTGTGGCAGCGGCCATCACCGGGGTGTTCTCCCTGGCCAGTGCCAGCCTGACTTTTGTCCTGGTCGCTGTCGGTGGCCTGCTGGTAGGCGTGGCCCTGAGTTGGCTGGTGGGTCGTCTGCGGGCGTGGATGATCGCCCGGGGCTGGGACGACCCCGCCACCCATGTGGTGTTCATGTTATTGCTGCCGTTTGCCGCTTATGTGCTGGCTGAACGCCTGGGCGCCTCGGGCATTCTCTCGGCGGTGGCGGCTGGGATGATGCAGAGCTGGCTTGACCTGCTGCCGCGCCAGACCGGCACGCGGTTGCTCAATCGCAGCGTCTGGGCGCTGTTGGAATTTGCCTTCAATGGCTTGATTTTCTTGCTGCTGGGCTTGCAACTGCCGGACATCATCAAAGCCGTGACCAGCCACGAGACCACGTTGTGGCCGATGTTGTTCTACCGCTGCCTGGATGTGGTGGCGATTTTCCTGGTGCTGCTGGTGTTGCGTTTTGTCTGGGTGCAAAGCATCTGGCGCTTGTCCGGGCTGTTGCGCCGCTGGCGCGGCAAGGGCGAGTTGACCCTGGTGCCGACCGCGCGCTCTTGCTGGTTGCTGACGTTTGGCGGCGTGCGCGGGGCGGTAACGCTGGCGGGCGTGATGTCGGTGCCGTTGCTGTTGGGGGCGGGTGAGGCGTTTCCCGAGCGCGACTTGCTGATCTTCATCGCTGCGGGGGTGATTCTGCTGTCACTGGTCGCCGCTTGCATCGCTTTGCCCCTGCTGTTGCGCGGCGTCGAGAAGGGGCCGGACGACAAACGCCGCAACGAAGTCCGTGAGGCCTGGCGTAAAACCGCTGAAGCGGCGATTCATGCCTTGGAAGTGGAGGAGCCGGCCGAGACAGCCGCGCCTGACGCGGCCACGGCGGCTCTGGCGACGGAGGTCAAGGCGCGGCTGATGTCCGAGTATCGTCATCAGCTTGAGGTATTCAACGACTCGGCCGAAGCCCAGGCGCTGGCGTTCGAAATGGACCTGCTGGAGCGCCGATTGCGTTTGAAGGCGTACCGAGCGCAGCGGTTGGAGCTGTATCGCCTCAGTCGCCAGCACCAGATTGGCGATGATGTGTTGCGTGAGGTGCTGGCGGAGCTGGATTTGGCGGAGGCGAATTTGGGGTTGGGTAAATAAMQSAYTVLILLMLVGVSRLVGRLIPLPLPLVQIAAGAVLAWPSLGLHVALDPELFLFLFLPPLLFSDGWRMPKRELWRLRGPVLTLAVGLVLFTVVGAGYFIHWLLPSIPLPVAFALAAVLSPTDAVAVSAIARDRLPAPLMHMLQGEALMNDASGLVTFKFAVAAAITGVFSLASASLTFVLVAVGGLLVGVALSWLVGRLRAWMIARGWDDPATHVVFMLLLPFAAYVLAERLGASGILSAVAAGMMQSWLDLLPRQTGTRLLNRSVWALLEFAFNGLIFLLLGLQLPDIIKAVTSHETTLWPMLFYRCLDVVAIFLVLLVLRFVWVQSIWRLSGLLRRWRGKGELTLVPTARSCWLLTFGGVRGAVTLAGVMSVPLLLGAGEAFPERDLLIFIAAGVILLSLVAACIALPLLLRGVEKGPDDKRRNEVREAWRKTAEAAIHALEVEEPAETAAPDAATAALATEVKARLMSEYRHQLEVFNDSAEAQALAFEMDLLERRLRLKAYRAQRLELYRLSRQHQIGDDVLREVLAELDLAEANLGLGKPGPT0013930_220DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013930-nhaK|TC_CPA1-K03316NANA
D1-35_00116372hypothetical proteinATGAACATTCGCCCAATCCGCACCGATGAAGAATACCGGGTAGCTCTCAAAGAGATCTCTCCCCTGTTTGAGAATGAGCCTGAACCTGGCACCCCGGAAGGCGATGTTTTCGAAGTCATGGTCACTCTGATCGAGGCATATGAAGCCAAGCATTTCCCGGTGGATCTGCCCGACCCAATTGAAGCCATCAAGTTTCGCATGGAGCAATCCGGACTCACCGCGGCCGATCTTGCTCCCGCTATCGGAAAAACGAACCGCGTATACGAGGTGCTCAACCGTAAGCGCTCGTTAACTCTGCCCATGATCTGGAAGCTTCACGATATGTTCGGCATCCCAGCAGAAAGCCTGATAAAGCCAGTAAAAGCTGCCTGAMNIRPIRTDEEYRVALKEISPLFENEPEPGTPEGDVFEVMVTLIEAYEAKHFPVDLPDPIEAIKFRMEQSGLTAADLAPAIGKTNRVYEVLNRKRSLTLPMIWKLHDMFGIPAESLIKPVKAAPGPT0027580_979DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-HigB-HigA_TOXIN-ANTITOXIN_SYSTEM,PGPT0027580-REGULATION_higA-K18831NANA
D1-35_00117303hypothetical proteinATGAGAATTATCGCCCTCAGTCATCTGAAAGCCTTTTGGGAGAAATACCCAGATTCCGAACAGCAGCTTAAGGCTTGGCTTGACGATGCCAAAAAAGCCACTTGGACCAACCCAAACGACATCAAGGCGCAATACGGTAACGCAAGCATTCTCAAGAGTCGCCGCGTGGTGTTCAACATCAAGGGTAACGACTACCGCCTGGTGATCGCCATTGCCTACCGCTTCGGCGCTGTGTACATCAAGTTTGTCGGCACTCATCGCCGGTACGATGAGATCGACGCAAACACCGTGGAAATGGAGTAAMRIIALSHLKAFWEKYPDSEQQLKAWLDDAKKATWTNPNDIKAQYGNASILKSRRVVFNIKGNDYRLVIAIAYRFGAVYIKFVGTHRRYDEIDANTVEMEPGPT0027570_292DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-HigB-HigA_TOXIN-ANTITOXIN_SYSTEM,PGPT0027570-toxin_higB-K19166NANA
D1-35_001181200dapLCOG0436LL-diaminopimelate aminotransferaseATGAACAACGCCCTGTCCCAGCTCCAGCCCTACCCGTTCGAGAAGCTTCGCGCCTTGCTCGGCAGCGTCACGCCCAATCCGGACAAGCGCCCGATCGCGTTGTCCATCGGCGAACCCAAGCATCGCTCACCCACTTTTGTGGCTGAAGCCCTGGCCGGCAGTCTGGAAAAAATGGCGGTGTACCCGACCACCCTTGGCATTCCCGAGCTGCGCGAAGCCATCACCGGTTGGTGCGAGCGCCGCTTCAACGTGCCAGACGGCTGGCTCGATCCGGCGCGCCATGTGCTGCCGGTCAACGGTACCCGTGAAGCCTTGTTCGCCTTCACCCAGACCGTGGTCAACCGTGGCGATGACGCCCTGGTCGTCAGCCCGAACCCCTTCTATCAGATCTACGAAGGCGCAGCGTTCCTGGCCGGAGCCAAGCCACACTACCTGCCATGCCTGGACACGAACGGCTTCAACCCGGATTTCGATGCCGTCTCGCCGGATATCTGGAAACGCTGCCAGATCCTGTTCCTCTGCTCCCCGGGCAATCCGACCGGCGCCTTGATTCCGGTGGACGTGCTGAAGAAGCTCATCGCCCTGGCTGACGAGCACGACTTCGTCATCGCCGCGGACGAGTGCTACAGCGAGCTCTACTTCGACGAACAGACCCCGCCGCCAGGCCTGCTCAGCGCCTGCGTCGAACTGGGTCGCAAGGACTTCAAGCGCTGCGTGGTGTTCCACAGCCTGTCCAAGCGCTCCAACCTGCCGGGCCTGCGCTCCGGTTTCGTTGCTGGCGACGCCGACATCCTCAAGGGCTTTTTGCTCTACCGCACCTATCACGGTTGCGCGATGCCGGTTCAGACCCAATTGGCGAGCATTGCCGCGTGGAACGACGAGGTGCACGTCCGGGCCAACCGCGCGCTGTACCGGGAGAAATTCGACGCGGTGCTGGAAATCCTCAGCCCGGTGCTCGACGTGCAACGCCCCGATGGCAGCTTCTACCTGTGGCCGAACGTGGCCGGCGACGACGCGGCATTCTGCCGTGACCTGTTCGAACAGGAACACGTGACGGTCGTCCCAGGCTCGTACCTGTCGCGCGATGTGGACGGCGTCAACCCCGGCGCCGGCCGCGTGCGCATGGCCCTGGTCGCGCCATTGGCCGAATGCGTGGAAGCGGCGGAACGAATCCGCGCATTCATCCAGCGCCGGGGTTGAMNNALSQLQPYPFEKLRALLGSVTPNPDKRPIALSIGEPKHRSPTFVAEALAGSLEKMAVYPTTLGIPELREAITGWCERRFNVPDGWLDPARHVLPVNGTREALFAFTQTVVNRGDDALVVSPNPFYQIYEGAAFLAGAKPHYLPCLDTNGFNPDFDAVSPDIWKRCQILFLCSPGNPTGALIPVDVLKKLIALADEHDFVIAADECYSELYFDEQTPPPGLLSACVELGRKDFKRCVVFHSLSKRSNLPGLRSGFVAGDADILKGFLLYRTYHGCAMPVQTQLASIAAWNDEVHVRANRALYREKFDAVLEILSPVLDVQRPDGSFYLWPNVAGDDAAFCRDLFEQEHVTVVPGSYLSRDVDGVNPGAGRVRMALVAPLAECVEAAERIRAFIQRRGNANANANANA
D1-35_001192703glnDCOG2844Bifunctional uridylyltransferase/uridylyl-removing enzymeATGCCGCAGGTGGATCCCGAACTCTTCGACCGCGGCCAGTTCCAGGCTGAACTGGCCCTGAAGGCAAGCCCCATCTCGGCATTCAAGAAGGCGATCCGCCAGGCCCACGAAGTGCTCGACCAGCGCTTTCGCAGTGGCCGTGATATTCGTCGGCTGATCGAGGACCGCGCCTGGTTCGTCGACAACATCCTGCAAAAGGCCTGGGAGCAATTCAACTGGAGCGAGGACGCCGACATCGCCCTGGTGGCCGTGGGCGGCTACGGGCGCGGCGAACTGCACCCCTACTCCGATATCGATCTGCTGATCCTGCTGGAGAGCGCCGACCACGAGATTTTCCGTGATTCCATCGAGCGTTTCCTCACGCTGCTGTGGGACATCGGCCTGGAAGTCGGCCAGAGCGTGCGTTCGGTGCAGGAATGCGCCGACGAGGCCCGCGCCGACCTCACGGTGATCACCAACCTGATGGAAAGCCGCACCATTGCCGGCCCCGAGCGCTTGCGCCAGCGCATGCTCGACGTCACCAGCACGGCGCACATGTGGCCGAGCAAGGACTTCTTCCTGGCCAAGCGCGCCGAGCAGAAGGCTCGCCATCACAAGTACAACGATACCGAGTACAACCTGGAACCCAACGTCAAAGGCTCGCCAGGCGGGCTGCGGGACATCCAGACCATCCTGTGGGTCGCCCGTCGCCAGTACGGCACGCTGAACCTGCGCGCACTGGCCGGCGAAGGCTTCCTGGTGGAAAGCGAGAACGCCCTGCTGGCCTCGTCCCAGGAATTCCTCTGGAAGGTCCGCTACGCGTTGCACATGCTCGCCGGGCGCTCCGAGGATCGCCTGCTGTTCGATCACCAGCGCTCCATCGCCGGCCTGCTGGGTTTCGAAGGCCAGGACGCCAAGCAGTCCATCGAAAACTTCATGCAGCAGTACTATCGCGTGGTGATGAGCATCGCCCAGCTCAGCGAACTGATCATCCAGCACTTCGAGGAAGTGATCCTCGCGCCGGAAGACGAGGCGCCGCCGCAGCCGATCAATTCCCGGTTCCAGTTGCACGACGGCTACATCGAGGCGCGCCACGCCAACGTGTTTCGCCGCACGCCGTTCGCCATGCTCGAGATTTTCGTGCTCATGGCCCAGCAGCCGGAAATCAAGGGCGTGCGCGCCGACACCATCCGCCTGCTGCGGGAAAACCGTCACTTGATCGATGACGACTTCCGCCACGATATTCGCAACACCAGCCTGTTCATCGAACTGTTCAAGTGCAAGATCGGCGTGCACCGCAACCTGCGGCGCATGAACCGCTATGGGATCCTCGGACGTTACCTGCCGGAGTTCGGCTACATCGTCGGGCAGATGCAGCACGACTTGTTCCACATCTATACGGTCGATGCGCACACGCTGAACCTGATCAAACACCTGCGCAAGTTGCAGTACACCCAGGTGTCGGAGAAATTCCCGCTGGCCAGCAAGCTCATGGCCAAGCTGCCCAAGCCTGAGCTCATCTACATGGCGGGGCTGTATCACGACATCGGCAAGGGCCGCCAAGGCGACCATTCGGAGATTGGCGCGGTGGATGCTGAGGCGTTCTGCCAGCGGCACCAGTTGCCGGTGTGGGACAGCCGGCTGATCGTCTGGCTGGTGCAGAACCACCTGGTGATGTCGACCACCGCCCAGCGCAAGGATTTGTCCGACCCGCAGGTGATCCACGATTTTGCCCAGGCGGTGGGCGATGAAACCCGCCTGGATTATCTCTACGTGCTGACCGTGGCCGACATCAACGCCACCAACCCGACCCTGTGGAATTCCTGGCGCGCCAGCCTGTTGCGCCAGTTGTACACCGAGACCAAGCGTGCCCTGCGCCGTGGTCTGGAGAACCCGGTGGATCGCGAAGAACAGATCCGCCGCACCCAGAGCGCGGCTCTGGACATCCTGGTACGCGGCGGCACCGATCCGGATGATGTCGAGCAACTCTGGTCGCAACTGGGCGATGACTACTTCCTGCGCCACACCGCCGGCGATGTGGCCTGGCACACCGATGCGATTCTCCAGCAGCCGGCCGATGGCGGTCCGCTGGTATTGATCAAGGAAACCACCCAGCGCGAATTCGAGGGCGGTACGCAGATCTTCATCTACGCCCCCGACCAGCACGATTTCTTCGCCGTGACCGTGGCGGCGATGGACCAGCTCAACCTCAACATCCATGACGCCCGAGTCATCACGTCCAGCAGCCAGTTCACCCTCGACACCTACATCGTGCTCGACACTGACGGCGACTCGATCGGCGACAACCCGGCGCGGGTCAAGCAGATTCGCGACGGTCTCACCGAAGCCCTGCGCAACCCCGCGGACTACCCGACCATCATCCAGCGCCGGGTGCCGCGCCAGCTCAAGCATTTCGCCTTTGCGCCGCAGGTAACGATCCACAACGACGCACAGCGCCAGGTCACCGTGCTGGAACTCAGCGCGCCGGACCGCCCGGGCCTGCTGGCGCGGGTCGGCCATATTTTCCTGGAATTCGATCTGTCGCTGCAGAACGCCAAGATCGCGACCCTCGGCGAGCGGGTGGAAGACGTATTCTTCATCACCGACGCCCATAACCAGCCGCTGTCCGACCCGCAGCTGTGCAGCCGTTTGCAGGAAGCGATCGTGCGGCACCTGAGCGTCAACCAGGAACCCGACATCAACCTGACGCGCATCAGCATCTGAMPQVDPELFDRGQFQAELALKASPISAFKKAIRQAHEVLDQRFRSGRDIRRLIEDRAWFVDNILQKAWEQFNWSEDADIALVAVGGYGRGELHPYSDIDLLILLESADHEIFRDSIERFLTLLWDIGLEVGQSVRSVQECADEARADLTVITNLMESRTIAGPERLRQRMLDVTSTAHMWPSKDFFLAKRAEQKARHHKYNDTEYNLEPNVKGSPGGLRDIQTILWVARRQYGTLNLRALAGEGFLVESENALLASSQEFLWKVRYALHMLAGRSEDRLLFDHQRSIAGLLGFEGQDAKQSIENFMQQYYRVVMSIAQLSELIIQHFEEVILAPEDEAPPQPINSRFQLHDGYIEARHANVFRRTPFAMLEIFVLMAQQPEIKGVRADTIRLLRENRHLIDDDFRHDIRNTSLFIELFKCKIGVHRNLRRMNRYGILGRYLPEFGYIVGQMQHDLFHIYTVDAHTLNLIKHLRKLQYTQVSEKFPLASKLMAKLPKPELIYMAGLYHDIGKGRQGDHSEIGAVDAEAFCQRHQLPVWDSRLIVWLVQNHLVMSTTAQRKDLSDPQVIHDFAQAVGDETRLDYLYVLTVADINATNPTLWNSWRASLLRQLYTETKRALRRGLENPVDREEQIRRTQSAALDILVRGGTDPDDVEQLWSQLGDDYFLRHTAGDVAWHTDAILQQPADGGPLVLIKETTQREFEGGTQIFIYAPDQHDFFAVTVAAMDQLNLNIHDARVITSSSQFTLDTYIVLDTDGDSIGDNPARVKQIRDGLTEALRNPADYPTIIQRRVPRQLKHFAFAPQVTIHNDAQRQVTVLELSAPDRPGLLARVGHIFLEFDLSLQNAKIATLGERVEDVFFITDAHNQPLSDPQLCSRLQEAIVRHLSVNQEPDINLTRISIPGPT0000660_724DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONGLN-NITROGEN_REGULATORY_SYSTEM,PGPT0000660-glnD-K00990NANA
D1-35_00120783map_1COG0024Methionine aminopeptidaseATGACCGTCACCCTCAAGACTCCCGAGGACATCGCCAAAATGCGTGTCGCCGGCAAACTCGCCGCCGAAGTGCTGGAAATGATCGCCGACTACGTCAAGCCGGGCGTCACCACCGAAGAGCTGGACCGCATCTGCCACGATTACATCGTCAACGAGCAGAAGGCCATCCCGGCTCCGCTCAACTATAAAGGCTTCCCGAAGTCGATCTGCACCTCGATCAACCACGTGGTCTGCCACGGCATCCCCAACGAGAAACCGTTGAAGGATGGCGACACCCTGAACATCGACGTCACCGTCATCAAGGACGGCTACCACGGCGATACCAGCCGCATGTTCCACGTCGGCAACGTACCGGAGTGGGCCGAGCGCCTGTCCAAGGTCACCCAGGAATGCATGTACATGGCCATCGAACTGGTGAAGCCGGGCTGCCGCCTGGGCGACATCGGCGAGGTGATCCAGAAGCACGCGCAGAAAAACGGTTTTTCGGTGGTGCGTGAGTTCTGCGGCCACGGCATCGGCAAGGTGTTCCACGAAGAACCGCAGATCCTCCACTACGGCCGCGCCGGTACCGGCATGGAACTGCAGGCGGGCATGACCTTCACCATCGAACCGATGATCAACCAGGGCCGCGCCGACACCAAGGTACTGGGCGACGGCTGGACCGCCATCACCAAGGATCGCAAGCTGTCGGCGCAGTGGGAGCACACGCTGCTGGTCACCGAGACTGGCTACGAGATCTTCACCCTGCGCAGCGATGACACCATTCCCCGTGTTTCCGCCTGAMTVTLKTPEDIAKMRVAGKLAAEVLEMIADYVKPGVTTEELDRICHDYIVNEQKAIPAPLNYKGFPKSICTSINHVVCHGIPNEKPLKDGDTLNIDVTVIKDGYHGDTSRMFHVGNVPEWAERLSKVTQECMYMAIELVKPGCRLGDIGEVIQKHAQKNGFSVVREFCGHGIGKVFHEEPQILHYGRAGTGMELQAGMTFTIEPMINQGRADTKVLGDGWTAITKDRKLSAQWEHTLLVTETGYEIFTLRSDDTIPRVSAPGPT0020010_6564DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020010-map-K01265NANA
D1-35_00122738rpsBCOG005230S ribosomal protein S2ATGTCCCAAGTCAACATGCGCGATATGCTGAAGGCCGGTGTGCACTTCGGCCACCAGACCCGTTACTGGAACCCGAAAATGGGCAAGTACATTTTCGGCGCGCGCAACAAGATCCACATCATCAACCTTGAAAAAACCCTGCCGATGTTCAACGAAGCACTGACCTTCGTAGAGCGCCTGGCCCAGGGCAAAAACAAGATTCTGTTCGTCGGCACCAAGCGTTCCGCTGGCAAGATCGTTGCTGAAGAAGCAGCACGTTGCGGTTCGCCGTACGTCGATCACCGCTGGTTGGGCGGCATGCTGACCAACTTCAAGACCATTCGCGCTTCCATCAAGCGTCTGCGTGACCTTGAAGTCCAGTCCGAAGACGGTACTTTCGCCAAGCTGACCAAGAAAGAAGCGCTGATGCGCACTCGTGATCTTGAGAAGCTGGACCGCTCCCTGGGCGGTATCAAGGACATGGGCGGTCTGCCTGACGCGCTGTTCGTGATCGACGTTGACCACGAGCGCATCGCGATCACCGAAGCCAACAAGCTGGGTATCCCGGTCATCGGCGTTGTCGATACCAACAGCAGCCCGGAAGGCGTTGACTACATCATCCCAGGCAACGATGACGCCATCCGCGCCATCCAGCTGTACATGGGTTCGATGGCTGACGCTGTCATCCGTGGTCGCAACAATGTAAATGGCGGCACCGAAGTCTTCGCTGAAGAAGCTCCGGCAGCAGCCGCTGAGTAAMSQVNMRDMLKAGVHFGHQTRYWNPKMGKYIFGARNKIHIINLEKTLPMFNEALTFVERLAQGKNKILFVGTKRSAGKIVAEEAARCGSPYVDHRWLGGMLTNFKTIRASIKRLRDLEVQSEDGTFAKLTKKEALMRTRDLEKLDRSLGGIKDMGGLPDALFVIDVDHERIAITEANKLGIPVIGVVDTNSSPEGVDYIIPGNDDAIRAIQLYMGSMADAVIRGRNNVNGGTEVFAEEAPAAAAENANANANANA
D1-35_00123864tsfCOG0264Elongation factor TsATGGCAGAGATTACTGCAGCGTTGGTCAAAGAACTGCGCGAGCGTACCGGCGAAGGCATGATGGACTGCAAGAAAGCCTTGACCAAGGCTGGCGGCGACATCGAGAAAGCCATTGATGACATGCGCGCTTCGGGCGCCATCAAGGCTGCCAAGAAAGCCGGCAACATTGCCGCTGAAGGCGCGATCGGCATCAAGGATGACGGTAAAGCTGCCGTTATCATCGAAGTCAACTCGCAGACCGACTTCCTGGCCCTGCAAGACGACTTCAAGGCATTCGTTGCCGCCAGCGTCGAAAAAGCATTCGCCGACAAACTGACCGACGCAGCTCCGCTGATCGCCGCTCAGGAATCGGCTCGTGAAGCCCTGGTTGCCAAAGTAGGCGAAAACGTCAACATCCGTCGTCTGGTTCGCGTCGAAGGCGATGTTGTCGGTTCTTACCTGCACGGCAACAAGATCGGTGTTGTTGTGGCCCTCAAAGGCGGCAACGTCGAGCTGGCCAAAGACATCGCAATGCACGTCGCTGCCAGCAATCCTGAGTTCCTGCTGCCGTCGGAAGTTTCCGCTGACGCCATCGAGCGTGAAAAAGCTGTGTTCATGCAGCTCAACGAAGACAAGATCAAAGGCAAGCCAGCCGAAATCGTTGAAAAAATGGTTGCCGGTCGTATCACCAAGTTCCTGGCTGAAGCCAGCCTGGTTGAGCAGGCGTTCGTCAAGAACCCTGAAATCAAGGTCGGTGAACTGGCCAAGAAGGGCGGCGCTGAAATCGTTTCCTTCACCTACTTCAAAGTGGGCGAAGGCATCGAGAAGCCAGTAGACAACTTCGCTGAAGAAGTGGCTGCTCAGCTGGCTGCCAGCAAGCAATAAMAEITAALVKELRERTGEGMMDCKKALTKAGGDIEKAIDDMRASGAIKAAKKAGNIAAEGAIGIKDDGKAAVIIEVNSQTDFLALQDDFKAFVAASVEKAFADKLTDAAPLIAAQESAREALVAKVGENVNIRRLVRVEGDVVGSYLHGNKIGVVVALKGGNVELAKDIAMHVAASNPEFLLPSEVSADAIEREKAVFMQLNEDKIKGKPAEIVEKMVAGRITKFLAEASLVEQAFVKNPEIKVGELAKKGGAEIVSFTYFKVGEGIEKPVDNFAEEVAAQLAASKQNANANANANA
D1-35_00124744pyrHCOG0528Uridylate kinaseATGGCTCAGCAGGGCAGTGGTTATCAGGCTCGCTATAAACGCATTCTACTCAAGCTTAGCGGCGAGGCCCTGATGGGCTCGGAAGAGTTCGGGATCGACCCGAAAGTGCTGGATCGCATGGCCCTGGAAGTGGGCCAGTTGGTCGGGATCGGCGTTCAGGTCGGCCTGGTCATCGGCGGCGGCAACTTGTTCCGTGGCGCGGCGCTGAGCGCGGCGGGCATGGATCGGGTCACGGGCGACCACATGGGCATGCTGGCCACTGTGATGAACGCCCTGGCTATGCGCGACGCGCTGGAGCGTGCCAATATCTCCGCGATCGTGATGTCGGCGATTTCCATGGTTGGCGTGACCGATCACTACGATCGCCGCAAGGCCATGCGCCACCTCAATTCCAAGGAGGTGGTGATTTTTGCCGCGGGTACCGGCAATCCGTTCTTCACCACGGATTCGGCCGCGTGCCTGCGAGCGATCGAGATCGACGCCGATGTCGTGCTCAAGGCTACCAAGGTGGATGGCGTGTACACCGCTGACCCGTTCAAAGACCCGCATGCCGAGAAGTTCGATCATCTGACCTACGATGAAGTGCTGGATCGCAAGCTGGGTGTAATGGACCTGACCGCTATTTGCCTGTGCCGCGACCACAAGATGCCGCTGCGCGTTTTCAACATGAACAAACCCGGGGCCCTGCTCAACATCGTGCACGGTGGCGCCGAAGGAACACTGATCGAGGAAGGCAAGCAATGAMAQQGSGYQARYKRILLKLSGEALMGSEEFGIDPKVLDRMALEVGQLVGIGVQVGLVIGGGNLFRGAALSAAGMDRVTGDHMGMLATVMNALAMRDALERANISAIVMSAISMVGVTDHYDRRKAMRHLNSKEVVIFAAGTGNPFFTTDSAACLRAIEIDADVVLKATKVDGVYTADPFKDPHAEKFDHLTYDEVLDRKLGVMDLTAICLCRDHKMPLRVFNMNKPGALLNIVHGGAEGTLIEEGKQPGPT0021205_790DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021205-pyrH-K09903NANA
D1-35_00125558frrCOG0233Ribosome-recycling factorATGATCAACGACATCAAGAAAGACGCTCAAGAGCGCATGCAGAAATCCCTGGAGTCTCTGAGCCACGCATTCGGCCAGATTCGTACCGGCAAGGCTCACCCGAGCATCCTCGGCAGCGTCATGGTGCCTTACTACGGCACTGACACGCCGCTGAGCAGCGTCGCCAACGTCACCGTGAAAGACTCGCGCACCCTGCAGGTCGTGGCTTTCGAGCGCAACATGCTCGCCGCTGTAGACAAGGCGATCCAGAGCGCCGGTTTGAACCTCAACCCAACCAACCTCGGTGAGCTGCTGCTGATCCCGATGCCGGCCCTCACCGAGGAAACGCGCAAAGGCTTCACGAAACAGGCCCGTAGCGCCGCGGAAGACGCGCGTGTTGCCGTGCGCAATATCCGTCGTGACGCGTTGGGTGAGCTGAAGAAGCTGGTCAAGGACAAGGAAATCAGTGAAGACGAAGAGCGTCGTGCCATCGCTGATATCGATAAGCTGACCAAAGAATCCGAGGCCCAGATCAGCAAGGCTACGGATGAGAAAGAAAAAGACCTGATGGCCGTATAAMINDIKKDAQERMQKSLESLSHAFGQIRTGKAHPSILGSVMVPYYGTDTPLSSVANVTVKDSRTLQVVAFERNMLAAVDKAIQSAGLNLNPTNLGELLLIPMPALTEETRKGFTKQARSAAEDARVAVRNIRRDALGELKKLVKDKEISEDEERRAIADIDKLTKESEAQISKATDEKEKDLMAVNANANANANA
D1-35_00126756ispUCOG0020Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)ATGGATAAGACCAAGCAGGCCGTGCCGTTCGCGGTACCGCGCCATGTGGCGATCATCATGGACGGCAATAACCGCTGGGCCAAGAAGCGCTTTATGCCCGGTGTTGCCGGGCATAAAGCCGGGGTCGACGCGGTTCGGGCGGTCATTGAGGTGTGTGCCGAGGCCGGGGTCGAGGTGCTCACCCTGTTCGCGTTTTCCAGCGAAAACTGGCAGCGTCCGGCTGACGAGGTCAGCGCCTTGATGGACCTCTTCCTCAAGGCATTGCGGCGTGAAGCCAAGCGCCTCGACGAGAACCGGATCAGTCTGCGGATCATCGGTGATCGCTCGCGCTTTCATCCGGAACTGCAGGCTGCGATGCGCGAAGCCGAGACCGCCACGGCTGGCGCCGATCGGTTCGTTCTGCAGATTGCCGCCAATTACGGCGGTCAGTGGGATATCGCCCAGGCGGCGCAGCGCCTGGCGCGGGAAGTCCAGGCCGGTCACCTGCGGCCCGAAGACATCACGCCCGAGCTGTTGCAAACCTGCCTGGCAACCGGCGACCTGCCGTTGCCGGATCTGTGCATCCGCACCGGTGGCGAACATCGCATCAGCAATTTCCTCCTCTGGCAGCTGGCTTACGCCGAGCTGTACTTCTCCGACCTGTTCTGGCCGGACTTCAAACACGAAGCCATGCGCACTGCGCTGGCCGATTTCGCTTCCCGTCAGCGTCGTTTCGGTAAAACGAGCGAGCAGATCGAAGCTGGAGCCCGGGTTTAAMDKTKQAVPFAVPRHVAIIMDGNNRWAKKRFMPGVAGHKAGVDAVRAVIEVCAEAGVEVLTLFAFSSENWQRPADEVSALMDLFLKALRREAKRLDENRISLRIIGDRSRFHPELQAAMREAETATAGADRFVLQIAANYGGQWDIAQAAQRLAREVQAGHLRPEDITPELLQTCLATGDLPLPDLCIRTGGEHRISNFLLWQLAYAELYFSDLFWPDFKHEAMRTALADFASRQRRFGKTSEQIEAGARVPGPT0024180_2172DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-UNDECAPRENOL_MODIFICATION,PGPT0024180-uppS|ispU-K00806NANA
D1-35_00127807cdsACOG0575Phosphatidate cytidylyltransferaseATGCTCAAACAACGAATCATCACCGCCCTGATCCTGTTGCCCATCGCCTTGGCTGGCTTTTTCCTGCTTGAAGGAGCCGGCTTCGCCCTGTTCATCGGCCTGGTCGTGACGCTGGGCGCCTGGGAATGGGCGCGGCTGGCAGGTTTTGCTGCGCAGTCGGCGCGCATGATCTACGCGGCAGTGGTCGCCGCCATGCTGTTCATCATGTACCTCGTGCCTGGCATCGCGCCGTGGGTGCTGGGGGCGGCAGTGCTGTGGTGGGCGACGGCAACGTTCCTGGTGCTGACCTATCCACGCACTACGCACCACTGGGCCAATGCCGCGACCAAGCTGATGATCGGCCTGTTGATCCTGCTGCCGGCCTGGCAAGGGCTGATCTGGATCAAGCAGGGCGCACTGGGCAACTGGCAGATCATGGCGGTGATGGTGCTGGTCTGGGGGGCTGACGTTGGCGCCTATTTCTCCGGCCGTGCCTTTGGCAAGCGCAAGCTGGCGCCGAAAGTCAGTCCGGGCAAAAGCTGGGAAGGTGTCTACGGTGGCCTGGCCCTGAGCCTGGTCATTACCGCTGTGGTCGGTTTTGTGCGGGACTGGACCGTCGCGCAATTGCTGATGGGCCTGTTCGGCGCGGCCCTGGTGGTTTTCGTATCGGTCGTCGGCGACCTGACCGAAAGCATGTTCAAGCGTCAGTCCGGGGTCAAGGACAGCAGTAACCTGCTGCCGGGCCACGGTGGTGTACTGGACCGTATCGACAGCCTGACCGCCGCGATCCCGATCTTCGCCGTGCTGTTGTGGATGGCGGCACCGTGAMLKQRIITALILLPIALAGFFLLEGAGFALFIGLVVTLGAWEWARLAGFAAQSARMIYAAVVAAMLFIMYLVPGIAPWVLGAAVLWWATATFLVLTYPRTTHHWANAATKLMIGLLILLPAWQGLIWIKQGALGNWQIMAVMVLVWGADVGAYFSGRAFGKRKLAPKVSPGKSWEGVYGGLALSLVITAVVGFVRDWTVAQLLMGLFGAALVVFVSVVGDLTESMFKRQSGVKDSSNLLPGHGGVLDRIDSLTAAIPIFAVLLWMAAPPGPT0007685_4920DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_CYTIDYLYLTRANSFERASE_ACTIVITY,PGPT0007685-cdsA|ynbB-K00981NANA
D1-35_001281191dxrCOG07431-deoxy-D-xylulose 5-phosphate reductoisomeraseGTGAGTCGTCCTCAGCAGATTACCGTTCTGGGGGCCACGGGCTCCATCGGACTGAGTACCCTTGATGTCATCGGTCGCCATCCGGAGCGCTATCAGGTATTCGCTCTCAGTGGCTTCACCCGCCTGAGCGAGCTGCTGGCGCTGTGCATCCGCCACACGCCGCGTTTTGCCGTGGTGCCACATGCCGATGTGGCGCGGGCGCTGCAGGACGACCTGCGCGCCGCTGGCCTGCAAACTCGTGTGCTGGTGGGCGAGGAGGGCCTTTGCCAGGTGGCTTCCGACCCTGAAGTCGACGCCGTGATGGCGGCAATCGTAGGGGCGGCGGGCTTGCGTCCGACGCTGGCGGCGGTGGAGGCTGGCAAGAAAATCCTGCTGGCGAACAAGGAAGCGCTGGTGATGTCCGGTGCACTGTTCATGCAGGCGGTGCGCAAAAGCGGCTCGGTACTGCTGCCCATCGACAGCGAACACAATGCGATTTTCCAATGCATGCCGCAGGATTTTTCCCGCGGCCTGGGGGCGGTCGGCGTTCGGCGGATTCTTCTGACAGCGTCTGGCGGCCCATTCCGGCAGACACCCCTGGAAGAATTGGTGCATGTTTCGCCCGAGCAGGCTTGCGCCCATCCGAACTGGTCCATGGGACGCAAGATTTCCGTGGACTCCGCCAGCATGATGAACAAGGGGCTGGAGCTGATCGAGGCCTGCTGGCTGTTCGATGCCCGGCCGTCCCAGGTCGAGGTGGTGATCCATCCACAAAGCGTGATCCACTCCCTGGTGGATTATGTCGATGGTTCGGTCCTCGCCCAGCTGGGGAACCCGGACATGCGTACGCCGATCGCCAATGCGCTGGCCTGGCCGGAGCGGATCGATTCGGGGGTGGCGCCGCTGGACCTGTTTGCCATCGCCCGTCTGGATTTCCAGGCGCCCGATGAGCAGCGGTTTCCTTGCCTGCGCCTGGCTCGGCAGGCGGCCGAGGCCGGCGACAGTGCCCCGGCCATGCTTAACGCGGCCAACGAAGTGGCGGTCGCAGCGTTTCTCGATGGGCGTGTCCGTTACCTCGAGATCGCGAGTATCATCGAGGAGGTCTTGAATCTCGAGGCCGTGGTTTCGCTTGATGATCTCGATGCGGTATTTACCGTCGACGCCAGGGCTCGTGAGCTGGCGGGCCATTGGTTGAAGCGCCACGGGCGTTGAMSRPQQITVLGATGSIGLSTLDVIGRHPERYQVFALSGFTRLSELLALCIRHTPRFAVVPHADVARALQDDLRAAGLQTRVLVGEEGLCQVASDPEVDAVMAAIVGAAGLRPTLAAVEAGKKILLANKEALVMSGALFMQAVRKSGSVLLPIDSEHNAIFQCMPQDFSRGLGAVGVRRILLTASGGPFRQTPLEELVHVSPEQACAHPNWSMGRKISVDSASMMNKGLELIEACWLFDARPSQVEVVIHPQSVIHSLVDYVDGSVLAQLGNPDMRTPIANALAWPERIDSGVAPLDLFAIARLDFQAPDEQRFPCLRLARQAAEAGDSAPAMLNAANEVAVAAFLDGRVRYLEIASIIEEVLNLEAVVSLDDLDAVFTVDARARELAGHWLKRHGRPGPT0007585_1798DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007585-ispC|dxr-K00099NANA
D1-35_001291353rsePCOG0750Regulator of sigma-E protease RsePATGAGCGCGCTCTATATGATTGTCGGCACCCTGGTTGCGCTGGGGGTGCTGGTCACTTTTCACGAATTCGGCCATTTCTGGGTCGCGCGTCGCTGTGGCGTCAAGGTTCTGCGTTTTTCCGTTGGCTTCGGCATGCCTTTGCTGCGCTGGCACGACAAGCAGGGCACCGAGTTCGTCGTCGCGGCCATCCCGCTGGGCGGCTACGTCAAGATGCTCGATGAGCGCGAAGGCGAAGTGCCTGTCGATCAGCTTGACCAATCTTTCAATCGCAAGACCGTTCGTCAGCGTATCGCTATCGTGGCGGCGGGCCCGATCGCCAATTTCCTGTTGGCCCTGGTGTTTTTCTGGGCGTTGGCAATGCTCGGCAGCGAGCAGGTGCGCCCGGTCATCGGTGCAGTAGAGGCCGGCAGCGTGGCGGCTCGGGCCGGGTTGGGCGCAGGCCAGGAAATTGTCGCCATCGATGGTGAACCCACCTCGGGCTGGGCGGCGGTCAACCTGCAGTTGGTGCGCCGCCTGGGCGAAAGTGGCTCGCTGCAATTGCTGGTGCGCGAGCAGGGCTCGACGGCGGATTCGCCGCGAGAGCTGATTCTCGACAACTGGCTCAAGGGCGCCGACGAGCCGGATCCGATCCGTTCCCTGGGGATCCGCCCATGGCGTCCGGCGCTGCCGCCTGTGCTGGCCGAGCTCGATCCGAAAGGCCCGGCTCACGCCGCAGGTCTGAAAACCGGCGACCGATTGCTGGCATTCGATGGCCAGTCGGTGAATGACTGGCAACAGGTGGTTGATTCGGTTCGTGTACGTCCTGATACCAAAATCCTGCTGCGCGTCGAACGCGACGGTGCTTCAATCGACGTCCCGGTGACTCTGGCCGCCCGTGGCGAAAGCAAGGCGCCGACCGGTTACCTGGGGGCGGGCGTCAAGGCGGTCGAGTGGCCGCCGGAAATGATCCGCGAGGTCAGCTTCGGCCCTCTTGAGGCGATTGGCGAGGGTGCGCGTCGTACCTGGACCATGAGTGTCCTGACCCTGGACTCGCTGAAGAAAATGTTGTTCGGCGAGCTCTCGGTAAAAAACTTGAGTGGACCGATAACCATTGCTAAAGTGGCGGGCGCTTCTGCCCAGTCGGGCGTCGCTGATTTCCTGAATTTCCTTGCTTATCTGAGCATTAGCCTGGGGGTTCTGAATTTGCTGCCCATTCCGGTACTGGATGGGGGGCATCTGCTGTTTTATCTGATCGAGTGGGCGCGTGGTCGTCCCTTGTCGGATCGGGTGCAAGGTTGGGGGATACAGATCGGTATCAGCTTGGTGGTCGGGGTGATGTTGCTTGCTCTGGTCAACGATCTGGGTCGTCTGTAAMSALYMIVGTLVALGVLVTFHEFGHFWVARRCGVKVLRFSVGFGMPLLRWHDKQGTEFVVAAIPLGGYVKMLDEREGEVPVDQLDQSFNRKTVRQRIAIVAAGPIANFLLALVFFWALAMLGSEQVRPVIGAVEAGSVAARAGLGAGQEIVAIDGEPTSGWAAVNLQLVRRLGESGSLQLLVREQGSTADSPRELILDNWLKGADEPDPIRSLGIRPWRPALPPVLAELDPKGPAHAAGLKTGDRLLAFDGQSVNDWQQVVDSVRVRPDTKILLRVERDGASIDVPVTLAARGESKAPTGYLGAGVKAVEWPPEMIREVSFGPLEAIGEGARRTWTMSVLTLDSLKKMLFGELSVKNLSGPITIAKVAGASAQSGVADFLNFLAYLSISLGVLNLLPIPVLDGGHLLFYLIEWARGRPLSDRVQGWGIQIGISLVVGVMLLALVNDLGRLPGPT0011685_1121DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-PILUS|FIMBRIAE_SYSTEMMOTILITY-PILUS_SYSTEM,PGPT0011685-rseP-K11749NANA
D1-35_001302388bamA_1COG4775Outer membrane protein assembly factor BamAATGAAACGTCTGCTGCTAACTGCGGTTCTCACCGTATTGATGATCGCCGAAGTTCACGCCGAGTCCTTCACTATCTCTGATATTCGCGTCAACGGCCTCCAGCGGGTTTCCGCGGGTAGCGTCTTTGGTGCCTTGCCGTTGAACGTCGGCGAGCAGGCGGATGATCGGCGCCTGGTGGAATCCACTCGTGCGCTGTTCAAGACCGGCTTCTTTCAAGATATCCAGCTGGGCCGCGACGGCAATGTCCTGGTCATCACGGTCGTCGAGCGCCCATCGGTTGCCAGTATCGAGATCGAAGGCAACAAGGCGATCTCCACTGAAGACCTGATGAAAGGCCTCAAGCAATCCGGCCTGGCCGAAGGCGAGATCTTCCAGCGCGCGACCCTCGAAGGCGTCCGTAACGAGCTGCAACGCCAATACGTTGCCCAGGGCCGTTATTCGGCGACTGTCGACACCGAAGTCGTGCCGCAGCCGCGCAACCGCGTCGGCCTGAAGGTCAACATCAACGAAGGCACCGTCGCCGCCATCCAGCACATCAACGTGGTCGGCAACACGGTGTTCCCGGATGAAGACCTGATCGACCTGTTCGAACTCAAGACCACCAACTGGCTGTCGTTCTTCAAGAACGACGACAAGTACGCTCGTGAAAAACTCTCCGGTGACCTGGAGCGCCTGCGTTCCTACTACCTGGACCGTGGCTACATCAACATGGACATTGCTTCGACCCAGGTGTCCATCACCCCGGACAAGAAGCACGTCTACATCACTGTCAACGTCAACGAAGGAGAGAAGTACACCGTTCGTGACGTCAAGCTCAGTGGTGACCTGAAAGTTCCGGAAGACCAGGTCAAATCGCTGTTGCTGGTGCAGAAGGGGCAGGTGTTCTCGCGCAAGCTGATGACCACCACGTCCGAGCTGATCACTCGCCGCCTGGGTAACGAGGGTTACACCTTCGCCAACGTGAACGGCGTGCCACAACCGCACGATGAAGACCATACCGTCGACATCACGTTCGGCGTGGACCCCGGCAAGCGTGCCTACGTCAACCGCATCAACTTCCGTGGCAACACCAAGTCCGAGGACGAAGTGCTGCGTCGCGAAATGCGCCAGATGGAAGGTGGCTGGGCGTCGACCTACCTGATCGACCAGTCCAAGACCCGCCTGGAGCGCCTGGGCTTCTTCAAGGAAGTCAACGTCGAGACCCCGGCCGTACCGGGCGTCGATGACCAGGTGGATGTGAACTACAGCGTCGAGGAACAAGCCTCCGGTTCGATCACCGCCAGTGTCGGTTTCGCCCAGAGCGCGGGCCTGATCCTGGGTGGTTCGATCACCCAGAACAACTTCCTCGGTACCGGTAACCGCGTCAGCGTGGGCCTGACCCGCAGCGAGTACCAGACCCGCTACAACTTCGGTTACGTGGACCCCTACTGGACTGCCGACGGTGTGAGCCTGGGCTACAACGCCTTCTATCGCACCACCGACTACGACGAGCTCGACTCTGACATCTCCAGCTATGCGGTGGACAGCCTGGGTGCCGGCGTCAACATCGGCTATCCGATCAGCGAAACGTCGCGCCTGACCTTCGGCCTCACCGCCCAGCAGGACGAGATCAGCACTGGCCGCTATACCGTTGACGAAATTTTCGATTTCGTCGAGAAAGAGGGCGACAAGTACCTGAACTTCAAGGCGTCTGTTGGTTGGTCCGAGTCGACCCTGAACAAGGGTGTGCTGGCGACCCGTGGCCGTTCCCAGAGCTTGGTCCTGGAAACCACTACGCCTGGCAGCGACCTGTCGTTCTTCAAGCTCGACTACCGCGGCCAGCTGTTCCAGCCGCTGTCTGACAACTACACCATGCGCCTGCACACCGAGCTGGGTTATGGCGATGGCTACGGTTCGACCGACGGCCTGCCGTTCTACGAGAACTACTACGCCGGTGGTTTCAACTCGGTGCGTGGCTTCAAGGACAGCACCCTGGGCCCGCGCAGTACCCCGAGCCGAGGTGCAGCTGTCACTGGCAACCAGGGGACCATCCGGGATCCGGACCAGGATCCACTGCCGTTCGGTGGTAACGTCCTGATCCAGGGCGGTGCCGAGCTCCTGTTCCCGATGCCGTTCGTCAAGGATCAGCGCTCCCTGCGTACCTCGGTTTTCTGGGACGTGGGTAACGTATTCGACTCCAGCTGCGATAAGCCTACTAACAACAATGGCACGTCATCCAACGCAGAGTGCAACGACATCAGCCTGAGCAACCTCGCCAGCTCCGTCGGCGTCGGCGTGACCTGGGTCACCGCGCTAGGCCCGTTGAGCTTCGCGTTGGCGATGCCGATCAAGAAACCGGATGACGCTGAAACCCAGGTTTTCCAATTCTCCCTCGGTCAGACGTTCTAAMKRLLLTAVLTVLMIAEVHAESFTISDIRVNGLQRVSAGSVFGALPLNVGEQADDRRLVESTRALFKTGFFQDIQLGRDGNVLVITVVERPSVASIEIEGNKAISTEDLMKGLKQSGLAEGEIFQRATLEGVRNELQRQYVAQGRYSATVDTEVVPQPRNRVGLKVNINEGTVAAIQHINVVGNTVFPDEDLIDLFELKTTNWLSFFKNDDKYAREKLSGDLERLRSYYLDRGYINMDIASTQVSITPDKKHVYITVNVNEGEKYTVRDVKLSGDLKVPEDQVKSLLLVQKGQVFSRKLMTTTSELITRRLGNEGYTFANVNGVPQPHDEDHTVDITFGVDPGKRAYVNRINFRGNTKSEDEVLRREMRQMEGGWASTYLIDQSKTRLERLGFFKEVNVETPAVPGVDDQVDVNYSVEEQASGSITASVGFAQSAGLILGGSITQNNFLGTGNRVSVGLTRSEYQTRYNFGYVDPYWTADGVSLGYNAFYRTTDYDELDSDISSYAVDSLGAGVNIGYPISETSRLTFGLTAQQDEISTGRYTVDEIFDFVEKEGDKYLNFKASVGWSESTLNKGVLATRGRSQSLVLETTTPGSDLSFFKLDYRGQLFQPLSDNYTMRLHTELGYGDGYGSTDGLPFYENYYAGGFNSVRGFKDSTLGPRSTPSRGAAVTGNQGTIRDPDQDPLPFGGNVLIQGGAELLFPMPFVKDQRSLRTSVFWDVGNVFDSSCDKPTNNNGTSSNAECNDISLSNLASSVGVGVTWVTALGPLSFALAMPIKKPDDAETQVFQFSLGQTFNANANANANA
D1-35_00131504hypothetical proteinGTGCGTAAGTTGACTCAATTGGTTCTCCTGGCGACCGTACTGGTCGCAGGTCCGGCTTTTGCCGACATGAAGATCGCCGTCCTGAACTATCAGATGGCCCTGCTGGAATCCGACGCGGCGAAGAAATACGCTGTGGACGCGGAGAAAAAATTCGGCCCGCAACTGACCAAGCTCAAAGGCCTGGAAAGCAGCGCCAAGGGTATCCAGGATCGTTTGGTGGCCGGTGGCGACAAAATGGCCCAGGGTGAGCGCGAGCGCCTTGAGCTTGAATTCAAGCAAAAGGCCCGCGATTTCCAGTTCCAGTCCAAGGAACTGAACGAAGCGAAAGCCGTTGCCGACCGCGAAATGCTCAAGCAGCTCAAGCCGAAACTCGACAGCGCTGTGGAAGAAGTCATCAAGAAGGGTGGTTTTGACCTGGTGTTCGAGCGTGGTGCAGTGATTGATGTCAAGCCTCAGTACGACATCACGCGCCAGGTTATCGAGCGCATGAATCAGCTGAAGTAAMRKLTQLVLLATVLVAGPAFADMKIAVLNYQMALLESDAAKKYAVDAEKKFGPQLTKLKGLESSAKGIQDRLVAGGDKMAQGERERLELEFKQKARDFQFQSKELNEAKAVADREMLKQLKPKLDSAVEEVIKKGGFDLVFERGAVIDVKPQYDITRQVIERMNQLKPGPT0024525_1765DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINSOTHER_INTEGRAL_MEMBRANE_REMODELLING__PROTEINS,PGPT0024525-hlpA|ompH|skp-K06142NANA
D1-35_001321056lpxDCOG1044UDP-3-O-acylglucosamine N-acyltransferaseATGACAGCGACTATCAAGCTCGGCCAGTTGGCCGAGTTCCTCGGCGCCACCCTGCGTGGCGACCCGGAGAAGGTCATCACTGGGCTAGCCACTTTGCAAGAGGCTGGCCCAGCTCAGTTGAGCTTCCTGGCAAATCCTCAATACCGTAAATACCTGGCTGATAGCCGGGCTGCCGCGCTGTTGCTCAAGGCCGGTGATGCCGAAGGGTTTGCCGGTGATTCGCTGATCGTGGCCGACCCCTACCTTGCGTATGCGCGGATTTCCCATCTGTTCGATCCCAAGCCCAAGTCGGCTGCCGGTATTCACCCGACTGCAGTGATCGCAGCGGACGCCGTGGTGGATCCCTCGGCCAGCGTTGGCCCGTTTGTCGTGATTGAAAGCGCGGCCCGGATTGGCGTCGGTGTGACGCTGGGCGCCCATTGCTTCATCGGCGCGCGCTGCGAGATCGGCGAAGGTGGCTGGCTGGCGCCCCGGGTGACGCTGTATCACGATGTGCGCATCGGCAAGCGGGTAGTGATCCAGTCTGGCGCAGTGCTCGGTGGCGAAGGCTTCGGTTTTGCCAATGAGAAAGGCGTCTGGCAAAAGATTGCCCAGATCGGTGGCGTAACCGTCGGCGATGACGTGGAGATCGGCGTCAACACCGCCATCGACCGTGGCGCGCTGGCCGATACGGTCATTGGCAATGGCGTCAAGCTCGACAACCAGATCCAGATCGCCCACAACGTCCAGGTCGGTGACCACACCGCCATGGCCGCCTGCGTGGGCATCTCCGGCAGTACCAAAATCGGCAAGCACTGCATGCTCGCCGGTGGCGTGGGCCTGGTGGGCCATATCGATATCTGTGACAACGTGTTCCTGACCGGAATGACCATGGTGACCCACTCGATTACCGAGCCGGGTGCCTATTCTTCCGGCACAGCCATGCAACCGGCTGCCGAGTGGCGCAAGAGCGCGGCGCGTATCCGCCAGCTCGACGACATCGCGCGGCGCCTCAAGCAGGTGGAAAAGCGTGTAGGGGACGTGACCCCTGGCGGTAATGCTTCATCAGATGGCTGAMTATIKLGQLAEFLGATLRGDPEKVITGLATLQEAGPAQLSFLANPQYRKYLADSRAAALLLKAGDAEGFAGDSLIVADPYLAYARISHLFDPKPKSAAGIHPTAVIAADAVVDPSASVGPFVVIESAARIGVGVTLGAHCFIGARCEIGEGGWLAPRVTLYHDVRIGKRVVIQSGAVLGGEGFGFANEKGVWQKIAQIGGVTVGDDVEIGVNTAIDRGALADTVIGNGVKLDNQIQIAHNVQVGDHTAMAACVGISGSTKIGKHCMLAGGVGLVGHIDICDNVFLTGMTMVTHSITEPGAYSSGTAMQPAAEWRKSAARIRQLDDIARRLKQVEKRVGDVTPGGNASSDGPGPT0022340_827DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LIPID_A_METABOLISM,PGPT0022340-lpxD-K02536NANA
D1-35_00133441fabZCOG07643-hydroxyacyl-[acyl-carrier-protein] dehydratase FabZATGATGGACATCAACGAGATTCGCGAATACCTGCCTCACCGTTACCCGTTCCTGCTGGTGGATCGGGTCGTGGACCTGGATGTTGAAGGCAAGCGCATTCGCGCCTACAAGAATGTCAGCATCAACGAACCCTTCTTCAATGGTCACTTCCCCGCGCATCCAATCATGCCGGGCGTATTGATCATCGAGGCGATGGCTCAGGCTGCCGGGATCCTTGGTTTCAAAATGCTCGACGTGAAGCCTGCCGACGGCACGCTTTACTACTTTGTTGGCTCCGACAAGCTGCGCTTCCGCCAGCCGGTCACTCCGGGCGATCAGTTGATCCTCGAAGCCAGGTTCATCAGTTGCAAGCGCCAGATCTGGAAATTCGAATGTCAGGCTTCGGTCGATGGCAAGCCGGTCTGCTCCGCTGAAATCATCTGTGCGGAACGCAAGCTATGAMMDINEIREYLPHRYPFLLVDRVVDLDVEGKRIRAYKNVSINEPFFNGHFPAHPIMPGVLIIEAMAQAAGILGFKMLDVKPADGTLYYFVGSDKLRFRQPVTPGDQLILEARFISCKRQIWKFECQASVDGKPVCSAEIICAERKLPGPT0008365_2677DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008365-fabZ-K02372NANA
D1-35_00134777lpxAAcyl-[acyl-carrier-protein]--UDP-N-acetylglucosamine O-acyltransferaseATGAGTTTGATTGACCCTCGCGCAATCATCGATCCGACGGCCGTACTGGCCGCCGATGTCGAGGTTGGCCCTTGGTCGATCATCGGCGCAGGTGTGGAAATCGGCGAGGGCACGGTGATCGGGCCCCATGTGATCCTCAAGGGGCCGACCCGGATCGGCCGGCACAACCGCATCTACCAGTTCTCATCGGTAGGTGAGGACACGCCCGACCTCAAGTACAAAGGTGAAGAAACCCGCCTGGTGATTGGCGATCACAACGTGATCCGCGAAGGCGTGACGATTCACCGTGGCACCGTCCAGGACCGTTCCGAAACGACGCTGGGCGACCATAACCTGATCATGGCCTATGCCCACATCGGCCACGACAGCGTTATTGGCAACCATTGCATCCTGGTCAACAACACCGCGTTGGCCGGACATGTGCACGTAGATGACTGGGCGATCCTGTCCGGTTTCACCCTGGTCCACCAGTATTGCCACATTGGCGCCCATAGCTTCTCCGGCATGGGCACCGCCATCGGCAAGGACGTCCCTGCCTACGTCACCGTGTTCGGCAATCCGGCCGAAGCTCGCAGCATGAACTTCGAAGGCATGCGTCGGCGTGGTTTCAGCGAAGAGGCCATAACTGCCCTGCGTCGCGCCTACAAGGTTGTGTATCGCCAGGGCCTGACGGTCGAGCAGGCGCTCGCCGAACTGGCCGAGGCAGCGGCACAGTTTCCGGAAGTCGCAATATTCCGCGATTCCATCCTGTCTTCGACCCGCGGCATCACCCGCTGAMSLIDPRAIIDPTAVLAADVEVGPWSIIGAGVEIGEGTVIGPHVILKGPTRIGRHNRIYQFSSVGEDTPDLKYKGEETRLVIGDHNVIREGVTIHRGTVQDRSETTLGDHNLIMAYAHIGHDSVIGNHCILVNNTALAGHVHVDDWAILSGFTLVHQYCHIGAHSFSGMGTAIGKDVPAYVTVFGNPAEARSMNFEGMRRRGFSEEAITALRRAYKVVYRQGLTVEQALAELAEAAAQFPEVAIFRDSILSSTRGITRPGPT0022320_2449DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0022320-lpxA-K00677NANA
D1-35_001351131lpxBCOG0763Lipid-A-disaccharide synthaseATGGCGAACCTGCGTATCGCACTGGTGGCGGGCGAAGCTTCCGGTGACATCCTGGGCGCCGGCCTGATGCGCGCGCTCAAGGCGCAGCACCCGGCGGTCGAGTTCATCGGGGTGGGTGGGCCATTGATGGAAGCCGAGGGACTGGTGTCCTACTTCCCGATGGAGCGCCTGTCGGTGATGGGGCTGGTGGAAGTGCTCGGCCGCTTGCGTGAGCTGCTGGCCCGGCGCAAGAAGCTGATCCAGACGCTGATCGAAGAAAAACCGGATGTGTTCATCGGTATCGATGCGCCGGATTTCACCCTCAATATCGAACTCAAGCTGCGCCAGGCCGGGATCAAGACCGTGCATTACGTCAGCCCGTCGGTCTGGGCCTGGCGACAGAAGCGCGTGTTGAAGATCCGCGAGGGCTGCGACCTGATGCTCACGCTGCTGCCGTTCGAAGCCCGGTTCTACGAAGAAAAAGGCGTGCCCGTGCGATTTGTCGGTCACACCTTGGCCGACACCATTCCCCTGGAGGCGGACCGCGAGGCGGCTCGCCAGGCGCTGGGCCTGGCCGCGGGCCCGCTGGTGGCGTTGATGCCCGGTAGCCGAGGCGGCGAAGTGAGTCGCCTGGGCGGGCTGTTCTTCGACGCCGCCGAGCGTCTGCGGGCGATGCGTCCGGACGTACGATTCATCTTGCCGTGCGCCAGTCCACAGCGGCGGGTCCAGCTCGAAGCGCTCCTGGCCGATCGCGATTTGCCGGTCACGCTGCTTGACGGCCAATCCCATCAAGCGCTGGCGGCCTGCGATGCCGTGTTGATTGCCTCCGGCACTGCTACCCTTGAGGCATTGTTGTACAAGCGCCCGATGGTGGTTGCCTATCGTCTGGCGCCGTTGACGTTCTGGATTCTCAAGCGCATGGTCAAGAGCCCTTACGTTTCCCTGCCGAATCTGCTGGCCCAGCGCCTGCTGGTGCCTGAACTGCTGCAGGATGACGCGACCGCCGAGTCCCTGGCCAGCACGCTTTTGCCGTTGATCGATGGCGGCGAGGAACAGACCCGGGGCTTTGACGAAATCCACCGTACCTTGCGTCGCGATGCCTCCAACCAGGCAGCAGACGCGGTACTGACCTTGATCGGCGCCAGACGATGAMANLRIALVAGEASGDILGAGLMRALKAQHPAVEFIGVGGPLMEAEGLVSYFPMERLSVMGLVEVLGRLRELLARRKKLIQTLIEEKPDVFIGIDAPDFTLNIELKLRQAGIKTVHYVSPSVWAWRQKRVLKIREGCDLMLTLLPFEARFYEEKGVPVRFVGHTLADTIPLEADREAARQALGLAAGPLVALMPGSRGGEVSRLGGLFFDAAERLRAMRPDVRFILPCASPQRRVQLEALLADRDLPVTLLDGQSHQALAACDAVLIASGTATLEALLYKRPMVVAYRLAPLTFWILKRMVKSPYVSLPNLLAQRLLVPELLQDDATAESLASTLLPLIDGGEEQTRGFDEIHRTLRRDASNQAADAVLTLIGARRPGPT0022325_2444DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LIPID_A_METABOLISM,PGPT0022325-lpxB-K00748NANA
D1-35_00136660rnhBCOG0164Ribonuclease HIIATGAGCAACGTGAAGCTGCAGATGGGCCTGGATTTCAACCTGGTCGCCGAAGTCGAAGAGTTGGTCGCGGGTGTCGATGAGGTGGGCCGTGGCCCGTTGTGCGGTGCGGTGGTGACGGCGGCGGTGATCCTCGATCCGAAGCGGCCGATCCTGGGGCTCGATGACTCCAAGAAGCTCACCGAGGCCCGGCGTGAAAAACTCTACGACGAAATCTGCGAAAAAGCCTTGAGCTGGTGCATTGCCCGGGCCGAGGTCGAAGAGATCGACGAGTTGAACATCCTGCATGCCACCATGCTGGCGATGCAGCGGGCGGTACACGGCCTGCACATCACGCCGAAGCTGGCGATGATCGACGGCAACCGTTGCCCCCAGCTGTCGATGCGCGCTGAAGCGGTCATCCAGGGCGACGGCAAGGTGCCGGCTATCGCAGCGGCCTCGATCCTGGCCAAGGTCAGTCGCGACCGGGAAATGGCCGCGTTCGAATTGATTTACCCAGGCTATGGCATCGGCAGCCACAAGGGCTATCCGACCCCCGTTCATCTGGAAGCCTTGGCGCGCCTCGGGCCGACGCCCATCCACCGGCGCTCGTTCGCCCCGGTGCGGCTGGCCTATGAAGCTCGCGAAGGCTTGATTGTGAGTAGTCAGGCTCTGGTTTCGTGAMSNVKLQMGLDFNLVAEVEELVAGVDEVGRGPLCGAVVTAAVILDPKRPILGLDDSKKLTEARREKLYDEICEKALSWCIARAEVEEIDELNILHATMLAMQRAVHGLHITPKLAMIDGNRCPQLSMRAEAVIQGDGKVPAIAAASILAKVSRDREMAAFELIYPGYGIGSHKGYPTPVHLEALARLGPTPIHRRSFAPVRLAYEAREGLIVSSQALVSNANANANANA
D1-35_001373522dnaECOG0587DNA polymerase III subunit alphaATGCCGGCTTCATTCGTTCATCTACGCCTGCACACTGAATATTCCCTGGTCGACGGCCTGGTGCGGATCAAGCCATTGGTCAAGACCCTGGTCGGCATGAACATGCCTGCCGTGGCCGTTACCGATCAGAACAACATGTGTTCGCTGGTCAAGTTCTACAAGAACGCCATGGGCGCCGGGATCAAGCCGATCTGCGGTGCCGACCTGTGGCTGGCGAACAAGGACCCGGATGCGCCGCTGAGCCGTATCAGCCTGCTGGTGATGAACGCCGTCGGCTACCGCAACCTCACCGAGCTGATTTCCCGCGGCTTTATCGAGGGCCAGCGCAATGGCTCGATCATCATCGAGCGCGAGTGGGTGGCCGAGGCGAGCGAAGGCCTGATCATGCTGTCGGCGGCCAAGGAAGGTGAGATCGGCCTGGCCCTGCTCAGCGACAACACCGAGGAAGCCGAGCAACTGGCTCGCGACTGGATGACGGTGTTCCCGGACCGCTTCTATATCGAGGTGCAACGCACCAACCGTCCGAATGACGAAGAGCACCTGCACGCCGCCGTGGCCCTGGCCGACAAGCTGGGCACGCCGCTGGTGGCGACCAACGACGTGCGGTTCATCAAGCAGGAAGATTTCGAAGCCCACGAAACCCGTGTCTGCATCGGTGAGGGGCGGGCCCTTGATGATCCTCGTCGGTCAAAGAACTACAGCGACCAGCAGTACCTCAAGAGCGCCGAGGAGATGGCGGAGCTGTTCAGCGACCTGCCCGAAGCGCTGGAAAACACCGTCGAGATTGCCAAGCGCTGCAACATCGAAGTGAAGCTGGGCAAACACTTCCTGCCCAACTTCCCGATTCCCGATGGCATGACCATCGATGAGTATTTTCGCAAGGTGTCGTTCGACGGCCTGGACGAGCGCCTAAAGGTCCTGCTGCCCAAGGACACCACCGAAGATTACGAAGCCAAGCGCCAGGTCTATGTCGACCGGCTGAATTTCGAGCTGGATATCATCATCCAGATGGGCTTCCCCGGTTACTTCCTGATCGTGATGGATTTTATCCAGTGGGCCAAGAGCAACGGCGTGCCCGTCGGCCCAGGGCGGGGGTCGGGTGCCGGGTCGCTGGTGGCCTATGTGCAGAAGATCACCGACCTCGACCCGCTGGAATATGACCTGCTGTTCGAACGTTTCCTCAACCCGGAACGGGTCTCCATGCCCGACTTCGACGTCGACTTCTGCATGGACGGTCGCGACCGGGTGATCGATTACGTCGCCGAGAAGTACGGCCGCAACGCGGTAAGCCAGATCATCACCTTCGGTTCCATGGCCGCCAAGGCGGTGGTGCGTGACGTGGCGCGGGTGCAGGGCAAGTCCTACGGCCTGGCGGATCGCCTGTCGAAGATGATTCCCTTCGAAGTCGGCATGACCCTGGAAAAAGCCTACGAGCAGGAAGAGATCCTGCGCGATTTCATCAAGGTCGATGAGGAAGCGGCGGAAATCTGGGAAATGGCGCGCAAGCTCGAAGGCGTGGTGCGTAACGTCGGCAAGCACGCCGGTGGCGTGGTGATCGCGCCGACCAAACTGACTGACTTTTCGCCGATCTATTGCGACGAAGAGGGCGACGGCCTGGTGACCCAGTTCGACAAGGATGACGTCGAGGCGGCCGGCCTGGTGAAGTTCGACTTCCTCGGCCTGCGGACCCTGACGATCATCGATTGGGCGCTCAAGACCATCAACCGCGACCGGGCCAAGGTCGGCGAAGAGCCGCTGGACATCGCGTTTATTCCGCTGGACGACAAGCCGACCTACAGCCTGTTGCAAAAAGCCGAAACCACCGCGGTGTTCCAGCTTGAATCGCGCGGCATGAAGGAGCTGATCAAGAAGCTCAAGCCCGACTGCCTCGAAGACCTGATCGCACTGGTGGCCCTGTTCCGTCCGGGCCCTCTGCAATCGGGCATGGTCGATGACTTCATCAACCGCAAGCACGGGCGCGCCGAGCTGGCGTACCCGCACCCCGACTACCAGTACGACGGCCTCAAGCCGGTACTGGCGCCGACCTACGGCATCATCCTGTATCAGGAACAGGTGATGCAGATTGCCCAGGTCATGGCCGGTTATACCCTCGGCGGCGCGGACATGCTGCGTCGAGCCATGGGTAAGAAAAAGCCCGAGGAGATGGCCAAGCAACGCGGTGGTTTCATCGAAGGTTGTGCGAACAACGGCATCGATGCGGACCTGGCGGGCAACATCTTCGACCTGGTGGAAAAGTTCGCCGGCTACGGCTTCAACAAATCCCACTCCGCCGCCTATGGCCTGGTTTCGTATCAGACCGCGTGGCTGAAGGCGCACTACCCGGCGCCTTTCATGGCCGCGGTACTCTCGGCGGACATGCACAACACCGACAAGGTCGTGACCTTGATCGAAGAAGTGCGGACCATGAAGCTGCGCCTCGACGCGCCGGATGTGAACGCTTCGGAGTTCAAATTCACGGTCAACGACGAAGGCCGCATCATCTACGGTCTTGGCGCGATCAAGGGCGTGGGCGAGGGTCCGGTGGAGGCGATCACCGAAGCGCGCCAGGACGGGCCGTTCAAGGACCTGTTCGATTTTTGCGCGCGGGTCGACCTCAAGCGCATCAACAAGCGCACCCTCGACGGGCTGATCCGCAGTGGCGCGCTGGACCGCTTGGGCCCGTACTTCCAGGATGAGCCCAAGGCCTACCAGGCCAACATCGACCGCAACCGCGCGGTGTTGCTGGCGGCGATGGAGGAGGCGATCAAGGCTGCTGAACAGACCGCCCGTACCCACGACAGCGGCCACGCCGACCTGTTTGGCGGGCTGTTTGTCGAGGAAGACGCCGATGTGTATGCCAACCATCGCAAGGCCAAGGAGCTGACCCTCAAGGAGCGCCTCAAAGGTGAAAAAGACACCTTGGGCCTGTACCTGACCGGCCACCCGATCGACGAATACGAGGGCGAAATCCGCCGCTTCGCTCGCCAGCGCATCATCGACCTCAAGCCCGCTCGCGATACGCAAACCGTCGCCGGCATGATCATCGCCCTGCGGGTAATGAAGAACAAAAAGGGCGACAAGATGGGCTTCATCACCCTCGACGACCGCTCCGGGCGTATCGAAGCGTCGTTGTTTGCCGATGCGTTCCATTCGGCGCAGTCGCTGTTGCAGACCGATGCAATGGTTGTGGTGGAAGGCGAGGTCAGCAACGACGACTTCTCCGGTGGCCTGCGGCTGCGGGTCAAGCGGGTGATGAGCATGGAGGATGCCCGTACCAACCTGGCCGAGAGCCTGCGCCTGAAGTTGCAGACCCAGGACCTCAAGGGCGATCAGCTACGCTGGTTGGGCGAGTTGTTCAAGCGCCACCGTGGTGCGTGCCCGATCACCATGGAGTACGTGCGCCCCGATGCCAAGGCCGTGCTGCAGTTCGGCGAGGGCTGGCGGATCGACCCGGCGGATGCGTTGATTCAAGCCTTGCGTGACCAGTTCGGCAAAGACAACGTCTTCCTCCAATACCGTTGAMPASFVHLRLHTEYSLVDGLVRIKPLVKTLVGMNMPAVAVTDQNNMCSLVKFYKNAMGAGIKPICGADLWLANKDPDAPLSRISLLVMNAVGYRNLTELISRGFIEGQRNGSIIIEREWVAEASEGLIMLSAAKEGEIGLALLSDNTEEAEQLARDWMTVFPDRFYIEVQRTNRPNDEEHLHAAVALADKLGTPLVATNDVRFIKQEDFEAHETRVCIGEGRALDDPRRSKNYSDQQYLKSAEEMAELFSDLPEALENTVEIAKRCNIEVKLGKHFLPNFPIPDGMTIDEYFRKVSFDGLDERLKVLLPKDTTEDYEAKRQVYVDRLNFELDIIIQMGFPGYFLIVMDFIQWAKSNGVPVGPGRGSGAGSLVAYVQKITDLDPLEYDLLFERFLNPERVSMPDFDVDFCMDGRDRVIDYVAEKYGRNAVSQIITFGSMAAKAVVRDVARVQGKSYGLADRLSKMIPFEVGMTLEKAYEQEEILRDFIKVDEEAAEIWEMARKLEGVVRNVGKHAGGVVIAPTKLTDFSPIYCDEEGDGLVTQFDKDDVEAAGLVKFDFLGLRTLTIIDWALKTINRDRAKVGEEPLDIAFIPLDDKPTYSLLQKAETTAVFQLESRGMKELIKKLKPDCLEDLIALVALFRPGPLQSGMVDDFINRKHGRAELAYPHPDYQYDGLKPVLAPTYGIILYQEQVMQIAQVMAGYTLGGADMLRRAMGKKKPEEMAKQRGGFIEGCANNGIDADLAGNIFDLVEKFAGYGFNKSHSAAYGLVSYQTAWLKAHYPAPFMAAVLSADMHNTDKVVTLIEEVRTMKLRLDAPDVNASEFKFTVNDEGRIIYGLGAIKGVGEGPVEAITEARQDGPFKDLFDFCARVDLKRINKRTLDGLIRSGALDRLGPYFQDEPKAYQANIDRNRAVLLAAMEEAIKAAEQTARTHDSGHADLFGGLFVEEDADVYANHRKAKELTLKERLKGEKDTLGLYLTGHPIDEYEGEIRRFARQRIIDLKPARDTQTVAGMIIALRVMKNKKGDKMGFITLDDRSGRIEASLFADAFHSAQSLLQTDAMVVVEGEVSNDDFSGGLRLRVKRVMSMEDARTNLAESLRLKLQTQDLKGDQLRWLGELFKRHRGACPITMEYVRPDAKAVLQFGEGWRIDPADALIQALRDQFGKDNVFLQYRNANANANANA
D1-35_00138948accACOG0825Acetyl-coenzyme A carboxylase carboxyl transferase subunit alphaATGAACCCGAATTTTCTAGATTTCGAACAGCCGATCGCCGACCTTCAAGCCAAGATCGAAGAGTTGCGCTTGGTCGGTAACGACAATTCGCTGAATATCGGCGATGAAATCTCTCGGCTGCAGGACAAAAGCCGCACGCTGACCGAAGACATCTTCGGCAAGCTGACCAGCTGGCAGATCGCGCGTCTGGCGCGGCATCCGCGTCGTCCCTACACCTTGGACTACATTGAACACATCTTTACCGAGTTCGATGAGCTTCACGGCGACCGTCACTTCTCCGATGACGCCGCGATCGTCGGCGGTGTCGCTCGTCTGGATGACCAGCCGGTGATGATCATCGGCCACCAGAAAGGCCGCGAAGTGCGCGAGAAAGTACGCCGCAACTTCGGCATGCCGCGTCCGGAAGGCTACCGCAAGGCCTGCCGCCTTATGGAAATGGCCGAGCGCTTCAAGATGCCGATCCTGACGTTCATCGACACGCCGGGCGCCTACCCGGGTATCGACGCCGAAGAGCGCAACCAGAGCGAGGCGATTGCCTGGAACCTGCGCGTGATGGCTCGCCTGAAGACCCCGATCATCGCTACCGTGATCGGCGAAGGCGGTTCCGGCGGGGCGTTGGCCATCGGCGTTTGCGACCAGTTGAACATGCTGCAATATTCCACTTACGCGGTGATTTCGCCGGAAGGCTGCGCCTCGATCCTGTGGAAAACCGCCGAGAAGGCGCCGGACGCCGCAGAAGCCATGGGCATCACCGCCGAACGCCTGAAGGGCCTGGGTATCGTCGACAAGGTAATCAGCGAGCCAGTGGGCGGTGCCCATCGCGACCCGGCCGCGGCCGCAGCGCTGATTCGCGCGGAGCTGAGCTCCCAGCTGTCGATGCTCAAGAACTTCGATAACGACGCGCTGCTGGCGCGTCGCTACGAGCGGTTGATGAGCTACGGTCTCTGAMNPNFLDFEQPIADLQAKIEELRLVGNDNSLNIGDEISRLQDKSRTLTEDIFGKLTSWQIARLARHPRRPYTLDYIEHIFTEFDELHGDRHFSDDAAIVGGVARLDDQPVMIIGHQKGREVREKVRRNFGMPRPEGYRKACRLMEMAERFKMPILTFIDTPGAYPGIDAEERNQSEAIAWNLRVMARLKTPIIATVIGEGGSGGALAIGVCDQLNMLQYSTYAVISPEGCASILWKTAEKAPDAAEAMGITAERLKGLGIVDKVISEPVGGAHRDPAAAAALIRAELSSQLSMLKNFDNDALLARRYERLMSYGLPGPT0001695_2836DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0001695-accA-K01962NANA
D1-35_001391326tilSCOG0037tRNA(Ile)-lysidine synthaseATGAACTCCAGCGCGGATCTGCCAACCCGGCTCCTCACCCAACTATCCCCCTGGCGCAACGCCGCCACCTGGCGCATCGCTTTCTCCGGTGGCCTCGATTCCACTGTCCTGTTGCATCTGCTCGCGACCCTTTCGAAAAACCATTCGTTGCCTGCGCTGAGCGCCATCCACGTCCATCATGGCCTCCAGGCTGTGGCCGATGCCTGGCCTGAACATTGTCATCGGGTTTGCGCAGCCCTTGGCGTGGCTCTGGAGGTGGTCAGTGTGCAAGTCCGCCCCGGCGCCAGCATCGAACAAGCCGCCCGTGACGCGCGGTATGCGGCGTTCATTGCCGCGACGCAGGGCAACGAAGTGTTGCTCACGGGGCAGCATCGTGATGATCAGGCAGAAACCCTGATGTTTCGTTTGCTGCGCGGGGCAGGGGCGAGGGGCTTGGCGGCGATGCCCCGGCAGCGTCCCTTGGGCCAGGGGCACTTGTTGCGGCCATTGCTCGACGTGTCCCGGGCAGAGTTGGAAAACTACGCGGCGGAGCAAGGCCTGGACTGGATCGAGGATCCCTCCAACAACGATCTCCGGTACGCGCGCAATTATCTGCGCCAGCGGGTCTTCCCGGTGTTGTCCGCGCAGTGGCCCCAAGCGTCGTTGACCCTGGCCCGCAGCGCCGCGCATTTGAGCGAGGCCCAGGGCTTGCTGGACGAGCTGGCGCAGCTCGATCTGCACCGCGCCCGCATCCCGGACGCATTCGACTGGCTCGGGCTGCAGTCGCTTGAACTGCCGCCGTTGCGGGCCTTGTCGCCCGCCCGACAGCGCAATGCGCTGAGTCATTGGCTGGCGCCGCTGACGACCCTTCCCGACAGCGATCATTGGGTCGGCTGGGACTCACTGCGTGACGCGCAAGAGGACGCCCGCCCGATCTGGCGACTGGCCGGCGGCGAATTGCACCGGGCCGGCGCAAGAGTCTGGTGGTTATCCGACCACTGGCTGCGCCCGGTCTCGGGCTCCGTAGCCTGGGCGCGGGTTGATCAGCCCTTGTCATTGCCCGATAACGGCAGGGTGATCCTGCGCGGCAAGGGCCCCGTCGGCCCACTCTGTATTCGTTATCGCCAAGGCGGCGAAGTGCTTGACGTTCCCGGCCGTGGTCACCGTGATCTCAAGCGCCTGCTCAATGAAAGCGGCCTGCCGGCGTTCGTCCGCGGTCGATTGCCGCTGCTTTATCAAGGTGAACAATTATTGGCGGTGGCCAATCTGGCCGGGCTCGACGCGCAGGCCGATGGCAGTTGGCAATTGATCTGGACGCCAGGAAGCCAAGATCTGGGTTTGAGCTGAMNSSADLPTRLLTQLSPWRNAATWRIAFSGGLDSTVLLHLLATLSKNHSLPALSAIHVHHGLQAVADAWPEHCHRVCAALGVALEVVSVQVRPGASIEQAARDARYAAFIAATQGNEVLLTGQHRDDQAETLMFRLLRGAGARGLAAMPRQRPLGQGHLLRPLLDVSRAELENYAAEQGLDWIEDPSNNDLRYARNYLRQRVFPVLSAQWPQASLTLARSAAHLSEAQGLLDELAQLDLHRARIPDAFDWLGLQSLELPPLRALSPARQRNALSHWLAPLTTLPDSDHWVGWDSLRDAQEDARPIWRLAGGELHRAGARVWWLSDHWLRPVSGSVAWARVDQPLSLPDNGRVILRGKGPVGPLCIRYRQGGEVLDVPGRGHRDLKRLLNESGLPAFVRGRLPLLYQGEQLLAVANLAGLDAQADGSWQLIWTPGSQDLGLSNANANANANA
D1-35_001401632pyrG_1COG0504CTP synthaseATGACGCGCTACATATTCGTCACGGGCGGTGTTGTTTCTTCATTGGGGAAAGGCATTGCCTCGGCTTCATTGGCGGCCATCCTGGAGGCGCGGGGACTTAAGGTCACCATGCTCAAGCTGGACCCGTACATCAACGTCGACCCGGGCACCATGAGCCCGTTCCAGCACGGTGAAGTGTTCGTCACCCACGACGGCGCCGAGACCGACCTGGACCTGGGCCACTACGAGCGGTTCATCCGCACGACCATGACCCAGAACAACAACTTCACCACCGGCCGTGTCTACGAGCACGTGTTGCGCAAGGAGCGTCGGGGTGACTACCTGGGCGCGACCATCCAGGTCATTCCGCACATCACCGACGAAATCAAGCGCCGCATCATCAAGGGTGCCGGCGACGCCGACGTGGCGATGGTCGAGATCGGCGGTACCGTGGGCGACATCGAATCCCAGCCGTTCCTTGAGGCCATCCGCCAGCTGCGTTTCGAAATCGGCGCCAAGCGCGCGATGCTGATGCACCTGACACTGGTTCCGTACATCGCTACCGCCGGTGAAACCAAGACCAAGCCGACCCAGCACTCGGTCAAGGAGCTGCGCTCCATCGGCCTGCAGCCGGACGTGCTGATCTGCCGCTCCGACCACCCGATCGATATTTCCTCGCGCCGCAAGATCGCCCAGTTCACCAACGTTGAAGAGCGTGCGGTGATCGGCCTGGAAGACGCCGACACCATCTACAAGATCCCCGGCATCCTGCATTCCCAGGGCCTGGATGACTTCGTCGTCGAGCGCTTCGGCCTGCAATGCGCCAGCGCCGACCTGTCCGAATGGGACGCGGTCGTCGATGCCAAGCTGAACCCGGAGCACGAAGTCACCATCGCCATGGTCGGCAAGTACATGGAGCTGCTGGACGCTTACAAGTCGCTGATCGAGGCGATGAGCCATGCCGGCATCAGCAACCGCACCAAGGTCAACCTGCGCTACATCGATTCCGAAGATATCGAGAACCAGGGCACCGGCCTGCTTGAAGGCGCCGATGCGATCCTCGTGCCGGGCGGCTTTGGCCTGCGGGGCGTGGAAGGCAAGATCACCGCGGTGCAATACGCTCGCGAGAACAAGGTGCCTTACCTGGGTATCTGCCTGGGCATGCAAGTGGCCGTCATCGAGTTCGCGCGTAATGTGATGGGCTGGAAGGACGCCAACTCCACCGAATTCGATCGCGCCAGCGGCCACCCGGTCGTGGGCCTGATCACCGAGTGGGAAGACGCCACCGGCTCGGTCGAAGTGCGTACCGAAACTTCCGATCTGGGCGGTACCATGCGCCTCGGTGCCCAGGAATGCCTGCTTGAAGCTGGCTCCAAGGTGCACGATTGCTACGCCAAGGACGTGATCGTCGAGCGTCACCGCCACCGCTATGAAGTCAACAACAACCTGCTGCCACAACTGATCGAAGCCGGCCTGAAAATCTCCGGCCGCTCCGGTGACGGTGCGTTGGTTGAAGTGGTCGAGGCCGCGGATCACCCGTGGTTCGTCGCTTGCCAGTTCCACCCGGAGTTCACCTCGACACCGCGTGACGGTCATCCGTTGTTCAGCGGTTTCGTCAAAGCCGCTTTGGCTCAACACCAGAAGAAGGCATAAMTRYIFVTGGVVSSLGKGIASASLAAILEARGLKVTMLKLDPYINVDPGTMSPFQHGEVFVTHDGAETDLDLGHYERFIRTTMTQNNNFTTGRVYEHVLRKERRGDYLGATIQVIPHITDEIKRRIIKGAGDADVAMVEIGGTVGDIESQPFLEAIRQLRFEIGAKRAMLMHLTLVPYIATAGETKTKPTQHSVKELRSIGLQPDVLICRSDHPIDISSRRKIAQFTNVEERAVIGLEDADTIYKIPGILHSQGLDDFVVERFGLQCASADLSEWDAVVDAKLNPEHEVTIAMVGKYMELLDAYKSLIEAMSHAGISNRTKVNLRYIDSEDIENQGTGLLEGADAILVPGGFGLRGVEGKITAVQYARENKVPYLGICLGMQVAVIEFARNVMGWKDANSTEFDRASGHPVVGLITEWEDATGSVEVRTETSDLGGTMRLGAQECLLEAGSKVHDCYAKDVIVERHRHRYEVNNNLLPQLIEAGLKISGRSGDGALVEVVEAADHPWFVACQFHPEFTSTPRDGHPLFSGFVKAALAQHQKKAPGPT0021215_3537DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021215-pyrG-K01937NANA
D1-35_00141846kdsACOG28772-dehydro-3-deoxyphosphooctonate aldolaseATGGCCCAGAAGATCATCCGCGTCGGCGACATCGAGATTGCCAACGACAAACCCATGGTGCTGTTCGGCGGCATGAACGTGCTTGAAAGCCGCGACATGGCAATGCAGGTCTGTGAGGAATACGTCAAGGTCACCCAGAAACTGGGCATCCCTTACGTGTTCAAGGCCAGCTTCGACAAGGCCAACCGTTCATCCGTGACTTCCTACCGTGGCCCGGGCCTGGAAGAGGGCATGCGGATCTTCCAGGACATCAAGCAAGCGTTCGGCGTGCCGATCATCACCGACGTGCACGAGCCTGACCAGGCCGCGGTTGTCGCCGAGGTCTGTGACATCATCCAGCTGCCGGCCTTCCTGTCGCGCCAGACCGATCTGGTGGTCGCGATGGCCAAGACCGGCGCGGTGATCAACATCAAGAAAGCCCAGTTCCTCGCGCCCCAGGAAATGAAACACATCCTGAGCAAGTGCGAAGAGGCCGGCAACGATCAACTGATCCTCTGCGAGCGCGGTTCGAGCTTCGGCTACAACAACCTGGTGGTAGACATGCTCGGCTTCGGCATCATGAAGCAGTTCGAGTACCCGGTATTCTTCGACGTCACTCATGCGCTGCAGATGCCCGGTGGTCGGTCCGATTCCGCCGGCGGTCGTCGCGCCCAGGTAACCGACCTGGCCAAGGCCGGCATGAGCCAGTCCTTGGCGGGCCTGTTCCTAGAAGCCCACCCTGATCCGGACAACGCCAAGTGCGATGGCCCTTGTGCCCTGCGCTTGAACAAGCTGGAACCTTTCCTGTCTCAGCTCAAGGCGCTGGACGAGCTGGTCAAGGGTTTTCCGACGATAGAAACCGCGTAAMAQKIIRVGDIEIANDKPMVLFGGMNVLESRDMAMQVCEEYVKVTQKLGIPYVFKASFDKANRSSVTSYRGPGLEEGMRIFQDIKQAFGVPIITDVHEPDQAAVVAEVCDIIQLPAFLSRQTDLVVAMAKTGAVINIKKAQFLAPQEMKHILSKCEEAGNDQLILCERGSSFGYNNLVVDMLGFGIMKQFEYPVFFDVTHALQMPGGRSDSAGGRRAQVTDLAKAGMSQSLAGLFLEAHPDPDNAKCDGPCALRLNKLEPFLSQLKALDELVKGFPTIETAPGPT0023060_1277DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-8-AMINO-3|8-DIDEOXY_D_MANNO-OCTULOSONIC_ACID_MODIFICATION,PGPT0023060-kdsA-K01627NANA
D1-35_001421290enoEnolaseATGGCAAAAATCGTCGACATCAAAGGTCGTGAAGTTCTCGACTCCCGTGGCAACCCCACTGTCGAAGCGGACGTGCTTCTCGACAACGGCATCATCGGCAGCGCCTGCGCGCCGTCCGGTGCTTCCACTGGCTCGCGCGAAGCGCTGGAGCTGCGTGATGGCGACAAGAGCCGTTACCTGGGCAAGGGCGTGCTGAAAGCCGTCGCCAACATCAACGGTCCGATCCGCGACCTGTTGCTGGGCAAGGACCCTGCCGACCAGAAAGCCCTCGACCAGGCCATGATCAAACTCGACGGTACCGAAAACAAAGCGACCCTGGGCGCCAACGCGATCCTCGCCGTTTCCCTGGCCGCCGCCAAGGCTGCCGCCCAGGACCAGGACCTGCCGCTGTACGCGCACATCGCCAACCTGAACGGTACCCCGGGCGTCTACTCGATGCCGGTGCCGATGATGAACATCATCAACGGCGGCGAGCATGCCGATAACAACGTCGACATCCAGGAGTTCATGGTCCAGCCGGTTGGCGCCAAGTCCTTCTCCGAAGGCCTGCGTATGGGCACCGAGATTTTCCATCACCTCAAGGCTGTGCTGAAGGCCCGTGGCCTGAGCACCGCGGTTGGCGACGAGGGCGGCTTCGCGCCGAACCTGGCGTCCAACGAAGACGCGCTGAAAGTGATCTCCGAAGCCGTGGCCAACGCTGGCTACAAGCTGGGCACCGACGTGACCCTGGCCCTGGACTGCGCGGCCAGTGAGTTCTTCGAAGACGGTAAATACAACCTGTCCGGCGAAGGCCAGGTGTTCACCGCCGAAGGTTTTGCCGACTACCTCAAGGGCCTGACCGAGCGCTACCCGATCATCTCCATCGAAGATGGCCTGGACGAGTCCGACTGGGCTGGCTGGAAAATTCTCACCGACAAGATCGGCGAGAAAACCCAGCTGGTGGGTGACGACCTGTTCGTGACCAACACCAAGATCCTGAAAGAGGGCATCGACAAGAAGATCGCCAACTCGATCCTGATCAAGTTCAACCAGATCGGTACCCTGACCGAAACCCTGGAAGCCATCCAGATGGCCAAGGCTGCCGGCTACACCGCGGTCATCTCCCACCGTTCCGGTGAAACCGAAGATTCGACCATTGCCGACCTGGCCGTGGGTACTGCTGCAGGCCAGATCAAGACCGGTTCCCTGTGCCGTTCCGACCGCGTTTCCAAGTACAACCAACTGCTGCGTATCGAAGAGCAGTTGAACGGCAAGGCCAAGTACAACGGCCGTGCCGAGTTTCGCGGCTAAMAKIVDIKGREVLDSRGNPTVEADVLLDNGIIGSACAPSGASTGSREALELRDGDKSRYLGKGVLKAVANINGPIRDLLLGKDPADQKALDQAMIKLDGTENKATLGANAILAVSLAAAKAAAQDQDLPLYAHIANLNGTPGVYSMPVPMMNIINGGEHADNNVDIQEFMVQPVGAKSFSEGLRMGTEIFHHLKAVLKARGLSTAVGDEGGFAPNLASNEDALKVISEAVANAGYKLGTDVTLALDCAASEFFEDGKYNLSGEGQVFTAEGFADYLKGLTERYPIISIEDGLDESDWAGWKILTDKIGEKTQLVGDDLFVTNTKILKEGIDKKIANSILIKFNQIGTLTETLEAIQMAKAAGYTAVISHRSGETEDSTIADLAVGTAAGQIKTGSLCRSDRVSKYNQLLRIEEQLNGKAKYNGRAEFRGPGPT0018050_3676DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018050-eno-K01689NANA
D1-35_00143279ftsBCell division protein FtsBATGCGCAGTCCCAATTGGTTGTTTCTTGTCTTGCTTCTCTTGCTGGCCGGCTTGCAGTACCGCCTGTGGGTGGGTAATGGCAGCCTGGCGCAAGTGGCCGACCTGACTCAGCAAATTGCCGACCAGCACGCTGAAAACGAGGCGCTGCTGGAGCGTAACCGGGTAATGGACGCCGAAGTGACAGAGCTGAAAAAAGGCATGGAGACCGTTGAAGAGCGGGCTCGACATGAGCTGGGCATGGTCAAGGAGGGCGAAACCCTCTACCAGTTGGCCCAATGAMRSPNWLFLVLLLLLAGLQYRLWVGNGSLAQVADLTQQIADQHAENEALLERNRVMDAEVTELKKGMETVEERARHELGMVKEGETLYQLAQNANANANANA
D1-35_00144708ispDCOG12112-C-methyl-D-erythritol 4-phosphate cytidylyltransferaseATGAGTATTCGTTTGCCGGCCTTCTGGGCCGTGATTCCTGCCGCGGGCGTTGGTGCCCGCATGGCCGCGGACCGTCCCAAGCAATATCTGCAGCTGGGCGGACGTACCATTCTCGAACACAGCCTTGGCTGTTTTCTCGACCACCCAACCGTCAAGGGCGTGGTCGTCAGCGTTGCACAGGATGATCCTTACTGGCCGACACTGGCCTGCGCCAGCAATCCTCGAATCCAGCGTGTGGACGGCGGTGAGCAGCGTTCCGATTCGGTGCTCAATGCCTTGTTGCACCTTCATGAACACGGCGCCGACGATTTCGATTGGGTGCTGGTGCATGACGCCGCGCGGCCCAATCTGGCGCGGGGCGATCTCGACACATTGCTCCATGAGCTGGCGAACGATCCGGTCGGAGGACTGTTGGCAGTGCCCGCCCGCGATACGCTCAAGCGCGTCGACAAGCATGGCCGTGTGTTGGAAACGATCGATCGCAGCGTGATCTGGCAAGCCTACACGCCACAGATGTTCCGCCTCGGCGCCTTGCATCGGGCCCTGGCCGACAGCCTGGTGGCGGATGCACTGATCACCGACGAAGCTTCGGCCATGGAATGGGCGGGGCAGGCGCCTCGGTTGATCGAAGGGCGATCGGACAACGTCAAGGTCACCCGGCCGGAAGACCTGGAGTGGTTGCGCCAGCGTTGGGCGAATCGGCATTGAMSIRLPAFWAVIPAAGVGARMAADRPKQYLQLGGRTILEHSLGCFLDHPTVKGVVVSVAQDDPYWPTLACASNPRIQRVDGGEQRSDSVLNALLHLHEHGADDFDWVLVHDAARPNLARGDLDTLLHELANDPVGGLLAVPARDTLKRVDKHGRVLETIDRSVIWQAYTPQMFRLGALHRALADSLVADALITDEASAMEWAGQAPRLIEGRSDNVKVTRPEDLEWLRQRWANRHPGPT0007590_1621DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0007590-ispD-K00991NANA
D1-35_00145897dmlR_1HTH-type transcriptional regulator DmlRATGTCTGACAATCGCTGGGAAGGCATCGACGAGTTCGTCGCCGTGGCCGAATGCAGCCAGTTCACCGCGGCGGCCGAGCGCCTTGGGGTTTCGTCTTCTCACATCAGTCGACAAATCGTACGGCTGGAAGAGCGTCTGCAGACACGATTGCTCTATCGCAGTACCCGGCGTGTGACCCTCACCGAGGCTGGTCAGACTTTTCTGCAGCATTGCCAACGCCTGCAGGACGGACGCGAGGAAGCGCTGCGGGCGGTGGGTGATCTCACCAGCGAACCCAAGGGCATGCTGCGAATGACCTGCGCCGTGGCCTACGGCGAGCGTTTTATCGTGCCACTGGTGACGCGGTTCATGGGGCTGTACCCGCAACTGCGAGTAGACATCGAACTGAGCAATCGCCCACTGGACCTGGTTCACGAAAGCCTTGATCTGGCGATTCGCCTCGGCCGCCTGCAGGACTCGCGCCTGGTCGCGACACGCCTGGCGCCGCGGCGCATGTACCTCTGCGCTTCACCGTCCTATCTGGAACGCTACGGTCGGCCCCACAGCGTGTCGGAACTGAGCCGTCACAACTGCCTCATCGGCAGCTCCGACATTTGGCAACTGGAGCAGAACGGGCGGGAATTTTCTCAACGGGTGCAGGGAAACTGGCGTTGTAACAGTGGGCAAGCGGTGCTTGATGCGGCGCTGCAAGGGGTGGGTTTGTGCCAATTGCCGGATTATTACGTGCTTGAACATCTGCACAGCGGTGCGCTGATCTCTTTGCTGGAGGCTCATCAGCCGCCGAATACGGCGGTTTGGGCGCTGTACCCGCAGCAGCGGCATCTGTCGCCCAAGGTGCGCAAGTTGGTGGATTACTTGAAGGAGGGGTTGGCTGAGCGGCCGGAGTATCGGGGGTGAMSDNRWEGIDEFVAVAECSQFTAAAERLGVSSSHISRQIVRLEERLQTRLLYRSTRRVTLTEAGQTFLQHCQRLQDGREEALRAVGDLTSEPKGMLRMTCAVAYGERFIVPLVTRFMGLYPQLRVDIELSNRPLDLVHESLDLAIRLGRLQDSRLVATRLAPRRMYLCASPSYLERYGRPHSVSELSRHNCLIGSSDIWQLEQNGREFSQRVQGNWRCNSGQAVLDAALQGVGLCQLPDYYVLEHLHSGALISLLEAHQPPNTAVWALYPQQRHLSPKVRKLVDYLKEGLAERPEYRGNANANANANA
D1-35_001461113frmACOG1062S-(hydroxymethyl)glutathione dehydrogenaseATGATCAAGTCGCGCGCCGCCGTTGCCTTCGAGGCCAAGAAACCCCTGGAAATCGTTGAAGTCGACGTCGCCATGCCGAAAGCCGGCGAGGTGCTGTTGCGCGTGGTGGCTTCGGGCGTTTGCCATACCGACGCCTACACGTTGTCGGGCGCCGACCCGGAGGGGATCTTCCCGTCGATACTCGGTCATGAAGGCGGCGCGATCGTCGAGGCCATTGGCGAAGGCGTGACTTCGGTGGCGGTGGGTGACCATGTGATTCCGCTGTACACACCGGAGTGCGGCCAGTGCAAATTCTGCAAGTCGGGCAAGACCAACCTGTGTCAGGCGATTCGCGCCACCCAGGGCAAAGGCCTGATGCCGGACGGCACTTCGCGCTTTTCCTACAAGGGCGAGACAATTTTCCACTACATGGGCACTTCGACGTTCTCTGAATACACCGTGCTGCCGGAAATCTCCGTAGCGAAGATTCCAAAAGAAGCGCCGCTGGAAAAAGTCTGCCTGCTGGGCTGCGGCGTCACCACCGGCATTGGCGCGGTGCTCAATACCGCCAAGGTCAAGCCAGGGGACACCGTGGCAATCTTCGGCCTGGGCGGCATCGGCCTGTCGGCAGTGATCGGCGCGGTGAAAGCCAAGGCCTCGCGCATCATCGCCATCGACATCAACCCGGCCAAGTTCGAGATCGCCAGGCAGCTCGGCGCGACCGATTGCGTCAACCCGAAAGACTTTGATCGCCCGATCCAGGAAGTCATCGTCGACATGACCGATGGCGGCGTGGACTTCTCCTTTGAATGCATCGGCAATGTCCAGTTGATGCGCGCCGCGCTGGAATGCTGCCACAAGGGCTGGGGCGAGTCGGTGATCATCGGCGTGGCCGGGGCCGGCCAGGAAATTGCCACCCGTCCATTCCAGCTGGTGACCGGCCGCGTCTGGCGCGGTTCGGCCTTTGGCGGCGTGCGTGGTCGCAGCGAGTTGCCAAGCTATGTGGAAATGGCCGAAAAGGGCGAGATCCCGCTGGATACTTTCATCACCCACACCATGGGCCTGGAAGATATCAACAAGGCATTCGACCTGATGCACGAAGGCAAGAGCATCCGTACCGTTATTCATTTCTGAMIKSRAAVAFEAKKPLEIVEVDVAMPKAGEVLLRVVASGVCHTDAYTLSGADPEGIFPSILGHEGGAIVEAIGEGVTSVAVGDHVIPLYTPECGQCKFCKSGKTNLCQAIRATQGKGLMPDGTSRFSYKGETIFHYMGTSTFSEYTVLPEISVAKIPKEAPLEKVCLLGCGVTTGIGAVLNTAKVKPGDTVAIFGLGGIGLSAVIGAVKAKASRIIAIDINPAKFEIARQLGATDCVNPKDFDRPIQEVIVDMTDGGVDFSFECIGNVQLMRAALECCHKGWGESVIIGVAGAGQEIATRPFQLVTGRVWRGSAFGGVRGRSELPSYVEMAEKGEIPLDTFITHTMGLEDINKAFDLMHEGKSIRTVIHFPGPT0006355_2406DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006355-frmA|ADH5|adhC-K00121NANA
D1-35_00147846yeiGCOG0627S-formylglutathione hydrolase YeiGATGAGCCTGGAAAACATCTCCTGCCAGAAAAGCTTCGGCGGCTGGCACAAACGTTACCGCCACCGTTCCGAAGTGCTCGGTTGTGACATGGTCTTTGCCGTCTACCTGCCGCCGCAAGCCGAGCAGGGCGGCAAGCTGCCGGTGCTGTACTGGTTGTCCGGACTGACCTGCACCGATGAAAACTTCATGCACAAGGCCGGTGCCCAGCGCATGGCCGCCGAGTTGGGGCTGATCATCGTCGCGCCGGACACCAGCCCCCGCGGCGCCGACGTGCCGGGCGATCCGGACGGCGCCTGGGATTTCGGCCTGGGCGCGGGTTTTTATGTGAACGCCACGCAGGATCCTTGGGCGCGGCACTATCGGATGCATGATTATGTGGTGCAGGAATTGCCGACCTTGGTCGAAGCACATTTCCCTGCCTCGGATAAACGCGGCATCAGCGGTCATTCCATGGGCGGCCATGGCGCGCTGGTCTGCGCCTTGCGCAACCCTGGGCGTTACCGTTCGGTGTCGGCTTTTTCACCAATCAACAACCCGATGGATTGCCCGTGGGGGCAGAAGGCTTTTTCCCGTTACCTGGGGGAAGACCGCTCGAAATGGCGTGAGTGGGATGCCTGTGCATTGATTGCCGAGGCGCAGGAAAAGCTGCCACTGCTGGTGGATCAGGGTGACCGCGATGATTTCCTGGCCAATCAGCTCAAGCCCGAAGCTTTGCAGCAGGCGGCCAAAGTGGCCGGTCATCCGCTGGAGTTGCGCCTGCAACCAGGCTACGACCACAGCTATTTCTTCATCGCCAGCTTTATTGATGATCACTTGCAGCATCATGCGCGCGCTCTGAACGCCTAAMSLENISCQKSFGGWHKRYRHRSEVLGCDMVFAVYLPPQAEQGGKLPVLYWLSGLTCTDENFMHKAGAQRMAAELGLIIVAPDTSPRGADVPGDPDGAWDFGLGAGFYVNATQDPWARHYRMHDYVVQELPTLVEAHFPASDKRGISGHSMGGHGALVCALRNPGRYRSVSAFSPINNPMDCPWGQKAFSRYLGEDRSKWREWDACALIAEAQEKLPLLVDQGDRDDFLANQLKPEALQQAAKVAGHPLELRLQPGYDHSYFFIASFIDDHLQHHARALNAPGPT0002120_1166DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-FORMIC_ACID_BIOSYNTHESIS,PGPT0002120-frmB|fghA-K01070NANA
D1-35_00148474ispFCOG02452-C-methyl-D-erythritol 2,4-cyclodiphosphate synthaseATGCGTATTGGCCACGGCTACGATGTTCACCGTTTCGCTGAAGGCGACTTCATTACTCTGGGCGGCGTGCGTATCGCACACGGCTTCGGGCTGCTTGCGCATTCTGACGGTGACGTGTTGCTGCACGCCTTGAGCGACGCTCTGCTCGGCGCGGCTGCCCTGGGCGACATCGGCAAGCATTTCCCGGACACCGACCCGCAATTCAAGGGCGCCGACAGCCGCGTGCTGCTGCGCCACGTGGTCGCGTTGATCCACGCCAAGGGCTGGGTAGTCGCCAATGTCGACAACACCATTATTGCCCAGGCCCCCAAGATGGCGCCGCACATCGAAGCGATGCGCCAGCGGATTGCCGAGGATCTCCAGGTTGAGCTGGACCAGGTGAACGTCAAGGCCACCACGACCGAGAAGCTTGGTTTCGTTGGTCGCGAAGAAGGCATCGCCGTCCATTCCGTCGCCTTGTTGCAGCGCCCATGAMRIGHGYDVHRFAEGDFITLGGVRIAHGFGLLAHSDGDVLLHALSDALLGAAALGDIGKHFPDTDPQFKGADSRVLLRHVVALIHAKGWVVANVDNTIIAQAPKMAPHIEAMRQRIAEDLQVELDQVNVKATTTEKLGFVGREEGIAVHSVALLQRPPGPT0007595_2628DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0007595-ispF-K01770NANA
D1-35_001491059truDCOG0585tRNA pseudouridine synthase DATGACCGAACTGGAACTCTTGGGCCCGCGGGCCTACGGTGAGACATTGGGCCGTGCGGTACTGAAGGCTACCGCCGAGGATTTCCAGGTCGACGAAGTGCTTGATATCCCGTTGTCCGGTGATGGCGAGCATCTGTGGATCTGGGTGGAAAAACGCGGCTTGAATACCGAGGAGGCTGCCCGGCGAATCGCCAAGGCCGCCGGCGTTCCTTTGCGCACGGTCAGCTACGCCGGGCTCAAGGATCGTCAGGCCCTGACCCGGCAATGGTTCAGCGTGCAATTGCCCGGCAAGGCCGACCCAGACCTGTCGACGGCAGAAAACGATACGCTGAAGATCCTCAAGACCGCACGCCACAGACGCAAGCTGCAGCGCGGCGCGCACTCGGCCAATGGCTTTACCTTGCGCCTGACCCAGTTCTCGGGCGACAAAGAGGCCATCGAGACACGTCTGCAACACATCGCCCTTCAAGGCATTCCGAATTATTTTGGTGCCCAGCGCTTTGGCCATGACGGCGGCAACGTCGTCGATGCCCGTGCCTGGGCGGCGCGCAAGGCTTTGCCGGAGCAGCGCAACGTGCGTTCTCGGCTGTTGTCCACCGCGCGCAGCTTTCTGTTCAACCGGGTGCTGGCGGCGCGAGTCGCCGACGGTACCTGGCGGCAAGCCCAGGTGGGCGACTTGCTCGCCTTTACCGACAGCCGCAGTTTTTTCCCAGCCGGTAAGGCTGAGTGCAGCGATCCGCGCCTGGCCATTCTCGATCTGCACCCGACCGGGCCGCAGTGGGGCGAAGGACCTTCGCCCGCCGCCGGGGCAACCTTCGAATTGGAGCAAGCCATCGCCGCGGACGAGGCCGATCTGCGGGACTGGTTGATAAACGCGGGAATGAGTCACGAACGTCGCATCCTGCGACTGCCCATTGGCGGGCTGTCGTGGCATTATCCCTCGCCTGACATTCTGCAATTGGAATTCGTCCTGCCGGCCGGATGTTTCGCCACTGTCTTGGTGCGCGAACTCGTCGATCTGGTGCCGGTGGGGCAGACGGACAGCCCATGCGTATTCTGAMTELELLGPRAYGETLGRAVLKATAEDFQVDEVLDIPLSGDGEHLWIWVEKRGLNTEEAARRIAKAAGVPLRTVSYAGLKDRQALTRQWFSVQLPGKADPDLSTAENDTLKILKTARHRRKLQRGAHSANGFTLRLTQFSGDKEAIETRLQHIALQGIPNYFGAQRFGHDGGNVVDARAWAARKALPEQRNVRSRLLSTARSFLFNRVLAARVADGTWRQAQVGDLLAFTDSRSFFPAGKAECSDPRLAILDLHPTGPQWGEGPSPAAGATFELEQAIAADEADLRDWLINAGMSHERRILRLPIGGLSWHYPSPDILQLEFVLPAGCFATVLVRELVDLVPVGQTDSPCVFNANANANANA
D1-35_00150750surE_1COG04965'-nucleotidase SurEATGCGTATTCTGATTTCTAACGACGACGGGGTGACAGCACCCGGTCTTGCCGCGCTTTATGCTGCGCTGGCGGATTTTGCCGAGTGCGTGGTCATCGCCCCGGACCAGGACAAAAGCGGCGCGAGCAGCTCGCTGACGCTCGACCGTCCGCTGCATCCCTGCTACCTGGACAACGGTTTCATCAGCCTCAACGGTACGCCGACCGATTGCGTGCACCTGGGCCTGAACGGCCTGCTGGAGCGCGAGCCCGACATGGTGGTTTCCGGGATAAACCTGGGGGCCAACCTGGGCGATGACGTACTGTATTCCGGAACGGTCGCCGCCGCCCTGGAAGGTCGTTTCCTCAACCATACGTCGTTCGCCTTTTCGTTTGTTTCACGGCAGGTCGACAATTTGCCCACTGCCGCCTACTTCGCCCGCAAACTGGTGCAGGCCCACGGCGAGCTGGACCTGCCGCCGCGTACGGTGCTGAACGTGAATATCCCGAATCTGCCGCTTGATCATATCCGTGGCATCCAGCTCACTCGCCTGGGTCACCGCGCCCGGGCTGCCAGGCCGATGCATGTCGTCGACCCGCGCGGCAAGGCCGGGTACTGGATCGCCGCCGCCGGCGATGCCGAAGACGGCGGGCCTGGCACCGACTTCCATGCAGTGATGCAGGGCTATGTCTCGATCACACCCTTGCAGCTCGATCGCACTTTCAACGATGCCTTTCGAAGTCTCGATGGCTGGCTGGAGGGGCTGCGCTGAMRILISNDDGVTAPGLAALYAALADFAECVVIAPDQDKSGASSSLTLDRPLHPCYLDNGFISLNGTPTDCVHLGLNGLLEREPDMVVSGINLGANLGDDVLYSGTVAAALEGRFLNHTSFAFSFVSRQVDNLPTAAYFARKLVQAHGELDLPPRTVLNVNIPNLPLDHIRGIQLTRLGHRARAARPMHVVDPRGKAGYWIAAAGDAEDGGPGTDFHAVMQGYVSITPLQLDRTFNDAFRSLDGWLEGLRPGPT0013405_3390DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013405-surE-K03787NANA
D1-35_00151678pcmCOG2518Protein-L-isoaspartate O-methyltransferaseATGGGTCGTGAACAAGACGATATGCTGCGCCGCGGAATTGGCATGACCTCCCAGCGGACTAGGGAACGGTTGATCCAGCGGCTGTACGAAGAAGGCTTGTCCAACGCCCAGGTGCTCGAGGTGATTCGCCGTACGCCGCGTCATCTTTTCGTCGATGAAGCGTTGGCCCATCGCGCCTATGAAGACACGGCGTTGCCGATCGGCCACAACCAGACCATTTCCCAGCCCTACATGGTGGCTCGCATGAGCGAGTTGCTGCTGGAGGCGGGGCCGCTGGACAAGGTGCTGGAGATCGGCACGGGCTCGGGTTACCAGACCGCGGTATTGTCGCAGTTGGTGGAGCGGGTGTTTTCCGTGGAGCGAATCAAGGTCCTGCAGGATCGCGCCAAGGAGCGCCTGGTGGAGCTGAACCTGCGCAACGTGGTGTTTCGCTGGGGCGACGGTTGGGAAGGCTGGCCGGCGCTGGCGCCTTATAACGGCATCATCGTCACGGCCGTTGCCACCGATGTTCCCCAGGCTCTGCTGGACCAACTCGCTCCCGGCGGGCGACTGGTGATTCCGGTGGGTGCGGGCGAAGTCCAGCAACTGATGTTGATTGTGCGTGAAGAACACGGTTTTTCACGACACGTCCTCGGGGCGGTGCGTTTCGTGCCGTTGCTCAACGGGCCATTGGCCTGAMGREQDDMLRRGIGMTSQRTRERLIQRLYEEGLSNAQVLEVIRRTPRHLFVDEALAHRAYEDTALPIGHNQTISQPYMVARMSELLLEAGPLDKVLEIGTGSGYQTAVLSQLVERVFSVERIKVLQDRAKERLVELNLRNVVFRWGDGWEGWPALAPYNGIIVTAVATDVPQALLDQLAPGGRLVIPVGAGEVQQLMLIVREEHGFSRHVLGAVRFVPLLNGPLANANANANANA
D1-35_00152846hypothetical proteinGTGAGTCTCACAGTCATTGCGCAGCGTATGGGTATCACGAGCTTCAAGCGCCTGGTGACTGGCCTTCTCTTGAGTACCTTGCTGGTCGGTTGTTCCAGTACTCCGTCGGGTAATGTCCGGGTGGTCGATCGCAACAATGCGACACCGCAGCGGCCTACAGTGACGACCGGTCAGTATGTAGTCCGTCGCGGCGATACGCTGTTTTCCATCGCGTTTCGCTACGGCTGGGACTATAAAGCCCTCGCGGCTCGCAACAACATTCCTGCGCCTTATACGATCCATCCGGGTCAGACAATTCGCTTTGACGGTCGCAGTGCCTCAACGCCTACCGCGGTCGTGACGCAGTCGGGTTCGACCCCGTCATCCTCGAGCAAAACCACGGTTATCCGTCGTCCGGCCGGTGCCGCAACGGCGACTGTACCGTCCGTCGCGAACAAGCCGGCACCCGCTCCGATGCCTCCGGCGGGCCCCGCCCCGACCGGCTGGGGATGGCCTTCTAATGGCGTTCTCATTGGAAAATTCTCTTCAAACGGTAGTTTGAATAAAGGAATTGATATCGCCGGGGATTTGGGACAGCCTGTTTTGGCAGCGTCTGATGGCACGGTCGTGTACGCCGGGAGTGGTTTAAGGGGCTACGGCGAACTCGTGATCATCAAACACAGCGATACCTACGTCAGTGCCTACGGTCACAACCGCAGGCTGTTGGTTCGGGAGGGGCAGCAGGTCAAGGTCGGACAGACAATTGCCGAAATGGGCTCAACGGGTACGGATCGAGTGAAACTGCATTTTGAGATTCGCCGACAAGGTAAACCTGTGGATCCGCTGCAATTCCTGCCACGTCGTTGAMSLTVIAQRMGITSFKRLVTGLLLSTLLVGCSSTPSGNVRVVDRNNATPQRPTVTTGQYVVRRGDTLFSIAFRYGWDYKALAARNNIPAPYTIHPGQTIRFDGRSASTPTAVVTQSGSTPSSSSKTTVIRRPAGAATATVPSVANKPAPAPMPPAGPAPTGWGWPSNGVLIGKFSSNGSLNKGIDIAGDLGQPVLAASDGTVVYAGSGLRGYGELVIIKHSDTYVSAYGHNRRLLVREGQQVKVGQTIAEMGSTGTDRVKLHFEIRRQGKPVDPLQFLPRRPGPT0023860_1112DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINSCE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0023860-nlpD-K06194NANA
D1-35_001531008rpoSCOG0568RNA polymerase sigma factor RpoSATGGCTCTCAGTAAAGAAGTGCCGGAGTTTGACATCGACGATGAGGTCCTCCTTATGGAGACCGGCATCGCTATGGATTCGATGTCGAATGATGAAGGGGCGACTCCACCTTCCGTTCGTGCCAAATCCAAACACTCCGCTTCACTTAAACAACATAAGTACATCGATTACACCCGGGCGCTGGACGCCACTCAGCTGTACCTCAACGAAATCGGCTTCTCACCATTGCTCTCCCCCGAGGAAGAAGTTCATTTTGCGCGCTTGTCGCAAAGTGGCGACCCGGCGGGTCGAAAACGCATGATTGAAAGCAACCTGCGCCTGGTGGTGAAAATCGCCCGACGCTACGTCAATCGTGGGCTTTCGCTGCTGGACCTGATCGAAGAGGGCAACCTGGGCCTGATTCGCGCCGTCGAGAAGTTCGACCCCGAGCGCGGCTTCCGTTTCTCGACCTATGCGACCTGGTGGATCCGCCAGACCATCGAACGGGCGATCATGAATCAGACCCGGACCATCCGGCTGCCGATCCACGTGGTCAAGGAGCTCAACGTCTACCTGCGAGCCGCCCGCGAGTTGACCCAGAAGCTCGATCACGAACCTTCACCCGAGGAAATCGCCAACCTGCTGGAAAAACCGGTGGGCGAGGTCAAGCGCATGCTCGGTCTCAACGAGCGGGTCTCATCGGTTGACGTTTCACTGGGGCCAGACTCGGACAAGACGCTGCTCGACACCCTTACCGACGATCGTCCGACCGATCCATGCGAGTTGCTCCAGGATGATGACTTGTCCCAAAGCATCGACCAATGGCTTTCGGAGCTCACGGACAAGCAACGGGAAGTGGTGATCCGCCGCTTCGGCTTGCGCGGTCATGAAAGCAGCACCCTTGAAGACGTGGGTCTGGAGATTGGTTTGACCCGTGAGCGGGTCAGGCAGATCCAGGTCGAAGGCCTCAAGCGCCTCCGGGAGATCCTGGAGAAGAACGGCCTGTCTAGCGAGTCGTTGTTCCAGTAAMALSKEVPEFDIDDEVLLMETGIAMDSMSNDEGATPPSVRAKSKHSASLKQHKYIDYTRALDATQLYLNEIGFSPLLSPEEEVHFARLSQSGDPAGRKRMIESNLRLVVKIARRYVNRGLSLLDLIEEGNLGLIRAVEKFDPERGFRFSTYATWWIRQTIERAIMNQTRTIRLPIHVVKELNVYLRAARELTQKLDHEPSPEEIANLLEKPVGEVKRMLGLNERVSSVDVSLGPDSDKTLLDTLTDDRPTDPCELLQDDDLSQSIDQWLSELTDKQREVVIRRFGLRGHESSTLEDVGLEIGLTRERVRQIQVEGLKRLREILEKNGLSSESLFQPGPT0014685_391DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-OXYGEN_AVAILABILITY_SIGNALLING,PGPT0014685-rpoS-K03087NANA
D1-35_00155324fdxACOG1146Ferredoxin 1ATGACCTTCGTCGTCACCGACAACTGCATCAAGTGCAAGTACACCGACTGCGTAGAAGTCTGTCCGGTGGACTGCTTTTACGAAGGCCCGAACTTCCTGGTCATTCATCCGGACGAGTGCATCGACTGCGCCCTGTGTGAACCGGAATGCCCGGCGAACGCCATTTTCTCGGAAGACGAAGTGCCGGCCGGTATGGAAAACTTCATCGAGCTGAACGCCGAACTGGCGGATATCTGGCCGAACATCACCGAGAAGAAAGACGCCCTGCCCGACGCCGAAGAATGGGATGGCAAGCCTGGCAAGATCGCAGACCTGGAACGCTGAMTFVVTDNCIKCKYTDCVEVCPVDCFYEGPNFLVIHPDECIDCALCEPECPANAIFSEDEVPAGMENFIELNAELADIWPNITEKKDALPDAEEWDGKPGKIADLERPGPT0030810_861PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-ENERGY_METABOLISMPUTATIVE-FE-S_CLUSTER_BIOGENESIS,PGPT0030810-fdxA-K05524
D1-35_001562580mutSCOG0249DNA mismatch repair protein MutSATGAATACAGCCGTGAACGACCTGTCCTCCCACACGCCGATGATGCAGCAATACTGGCGCCTGAAGAACCAGCACCCCGATCAGCTGATGTTCTATCGCATGGGCGACTTCTACGAGATCTTCTACGAGGACGCGAAGAAGGCCGCCAAGCTGTTGGACATCACCCTGACGGCGCGTGGGCAATCGGCGGGCATGGCGATTCCGATGTGTGGGATTCCTTACCACGCGGCGGAAGGCTACCTGGCGAAACTGGTCAAGCTGGGCGAGTCCGTGGTGATTTGCGAACAAGTCGGCGATCCGGCCACCAGCAAGGGCCCGGTGGAGCGCCAGGTCGTGCGGATCATCACCCCGGGCACAGTCAGTGACGAGGCATTGCTGGATGAACGTCGGGACAACCTGATCGCCGCCGTCCTCGGCGACGAGCGCCTGTTCGGCCTGGCCGTGCTGGACATCACCAGCGGCAACTTCTCGGTATTGGAAATCAAGGGCTGGGAAAACCTGCTGGCGGAACTGGAGCGGGTCAATCCGGTGGAGTTGTTGATCCCGGATGACTGGCCCAAAGACCTGCCAGCGGAAAAACGCCGTGGCGTACGTCGCCGGGCGCCGTGGGATTTCGAGCGCGACTCGGCGTTGAAAAGCCTCTGCCAGCAGTTTTCCACCCAGGACCTCAAGGGCTTCGGCTGCGAGAACCTGACCCTGGCCATCGGCGCCGCCGGCTGCCTGCTGGCCTACGCCAAGGAAACCCAGCGCACCGCCCTGCCCCATCTGCGCAGCCTGCGTCACGAACGCCTGGATGACACGGTCGTGCTGGACGGCGCGAGCCGACGCAACCTGGAACTGGACACCAACCTGGCCGGTGGCCGCGATAACACCCTGCAATCGGTAGTCGATCGCTGCCAGACCGCCATGGGCAGCCGCCTGCTGACCCGCTGGCTGAACCGACCGCTGCGGGACCTGACGGTACTGCAAGCACGCCAGTCTTCCATTACTTGCCTGCTGGACCGGTATCGTTTCGAGCAGCTGCAACCGCAGCTCAAGGAAATCGGCGATATCGAGCGGATCCTCGCGCGGATCGGCCTGCGCAACGCCCGTCCTCGCGACCTGGCGCGCCTGCGCGACGCCCTCGGCGCGCTGCCCGAACTTCAGCTGGCGATGACCGACCTTGAAGCACCTCACCTGCAGCAGCTGGCGTGCACCACCAGCACCTACCCGGAACTGGCCGCGCTGCTGGAAAAAGCCATTATCGACAATCCGCCAGCGGTAATTCGGGACGGCGGCGTGCTGAAAACCGGTTACGACGCCGAACTCGACGAGCTGCAATCGCTGAGCGAAAACGCCGGCCAATTCCTGATCGACCTCGAAGCCCGGGAAAAGGCCCGTACCGGCCTTGCCAACCTCAAGGTCGGCTACAACCGCATCCATGGCTACTTCATCGAGCTGCCGAGCAAGCAGGCCGAGCAAGCCCCGGCCGATTACATTCGCCGCCAGACCCTCAAGGGCGCCGAGCGTTTCATCACGCCGGAACTCAAGGCTTTCGAAGACAAGGCCCTGTCAGCCAAGAGTCGTGCCCTCGCCCGGGAAAAGATGCTCTACGAAGCGCTGCTCGAAGACCTGATCAGCCAGCTCCCACCGTTGCAGGACACCGCCGCCGCCCTGGCGGAACTGGACGTGTTGAGTAACCTGGCCGAACGCGCGCTGAACCTGGACCTCAATTGCCCACGCTTCGTCAGCGAGCCGTGCATGCGCATCAGCCAGGGTCGTCACCCGGTGGTCGAGCAGGTATTGACCACGCCGTTCGTGGCCAACGACCTGAGCCTGGACGACAATACTCGCATGCTGGTGATCACCGGTCCGAACATGGGCGGTAAATCCACCTACATGCGCCAGACCGCGCTGATTGTGCTGCTGGCTCACATCGGCAGCTTCGTCCCGGCGGCCAGTTGCGAACTGTCCCTGGTGGACCGGATCTTCACCCGGATCGGCTCCAGCGATGACCTGGCCGGTGGGCGTTCGACCTTCATGGTGGAAATGAGCGAAACCGCGAACATCCTGCACAATGCCACCGAGCGCAGCCTGGTGCTGATGGACGAAGTCGGTCGCGGCACCAGCACCTTCGACGGCCTGTCCCTGGCCTGGGCGGCCGCTGAACGTCTGGCCCAGTTGCGCGCTTATACGCTGTTCGCCACGCACTATTTCGAATTGACGGTGTTGCCGGAGAGCCAGCCGCTGGTGGCCAACGTCCACCTCAACGCCACCGAGCACAACGAACGCATCGTGTTCCTTCACCACGTACTGCCCGGCCCGGCCAGCCAGAGCTACGGCCTGGCGGTGGCACAACTGGCCGGTGTGCCGAGCGACGTCATCACCCGCGCTCGCGAGCACCTCAGTCGCCTGGAGACCACCAGCTTGCCGCACGAGGTACCGCGCCCGACCAAAGGCAAACCGGCCGCGCCGCAGCAAAGCGACCTGTTCGCCAGCCTGCCGCATCCGGTGCTCGACGAACTGGCCAAGCTCGACCTCGACGACATGACCCCGCGCCGGGCGCTGGATTTACTCTATACATTGAAGACACGGGTCTAAMNTAVNDLSSHTPMMQQYWRLKNQHPDQLMFYRMGDFYEIFYEDAKKAAKLLDITLTARGQSAGMAIPMCGIPYHAAEGYLAKLVKLGESVVICEQVGDPATSKGPVERQVVRIITPGTVSDEALLDERRDNLIAAVLGDERLFGLAVLDITSGNFSVLEIKGWENLLAELERVNPVELLIPDDWPKDLPAEKRRGVRRRAPWDFERDSALKSLCQQFSTQDLKGFGCENLTLAIGAAGCLLAYAKETQRTALPHLRSLRHERLDDTVVLDGASRRNLELDTNLAGGRDNTLQSVVDRCQTAMGSRLLTRWLNRPLRDLTVLQARQSSITCLLDRYRFEQLQPQLKEIGDIERILARIGLRNARPRDLARLRDALGALPELQLAMTDLEAPHLQQLACTTSTYPELAALLEKAIIDNPPAVIRDGGVLKTGYDAELDELQSLSENAGQFLIDLEAREKARTGLANLKVGYNRIHGYFIELPSKQAEQAPADYIRRQTLKGAERFITPELKAFEDKALSAKSRALAREKMLYEALLEDLISQLPPLQDTAAALAELDVLSNLAERALNLDLNCPRFVSEPCMRISQGRHPVVEQVLTTPFVANDLSLDDNTRMLVITGPNMGGKSTYMRQTALIVLLAHIGSFVPAASCELSLVDRIFTRIGSSDDLAGGRSTFMVEMSETANILHNATERSLVLMDEVGRGTSTFDGLSLAWAAAERLAQLRAYTLFATHYFELTVLPESQPLVANVHLNATEHNERIVFLHHVLPGPASQSYGLAVAQLAGVPSDVITRAREHLSRLETTSLPHEVPRPTKGKPAAPQQSDLFASLPHPVLDELAKLDLDDMTPRRALDLLYTLKTRVNANANANANA
D1-35_00157168hypothetical proteinATGATTTCGATCAAGCTGGGCTTGTCCAAAGGAACCAAAAGCACCTTTGCCGATTTTATTCGTAATGCTAAATCGGACCAAAAAAAACGTGTTTATAGCGAGGTTTTGACAGAGGCTACCAAGCAGCAAAACCTGGTGATGATGCAGGCCGAGGCGAAACGAGGCTGAMISIKLGLSKGTKSTFADFIRNAKSDQKKRVYSEVLTEATKQQNLVMMQAEAKRGNANANANANA
D1-35_00158759hypothetical proteinATGACGGAGAATGCCGATACACGCAGCCGGCTACTGGCCTCAGCAGACCAAGCCGTCCATGAAGACGCATTGCGCTTCGCTCGGTCCAATAAAAAAGCAATCGCGAAGCGACTGACAGATAAGGCTCTTTATCCGCCAGAGGAAGCGCCCGTGTCAGTTTTTATGGCAGGCTCTCCGGGCGCCGGTAAAACCGAGGCATCAATAGCGTTGGTGAATCTGTTCGCAGATTCAGCGATCCTACGCATAGACGCAGATGAGCTACGAAGCGAGTTTCCAGCTTACGCTGGAGCAAACTCCTGGCTTTTTCAGGGAGGAGTTTCGATTCTGGTCGATAAAATGTTGGATTTCGCATTGGATCAAAGGCAGTCCTTCATCCTTGATGGAACGTTTTCCAACATAGACGTAGCAAGACGAAACGTAGATCGCTCCTTGAGAAAAGGCCGATTCGTACAAATTCTTTATGTATATCAGTCGCCTGTACTCGCCTGGGGATTCGTTAATGCTCGCGAGGCGGCCGAAGGCAGGAGGATCCGCAAAGAACATTTCATCAAGCAATATTTCGCCGCACGTGACGTAGTGAACGCGCTTAAGCTAGAGTATCGCGGCGATGTCCATGTGGACCTGTTACTCAAACATATCGACAATTCGGGACGACTTTACAAAGCTGGTGTCGATAAAATTGACTACCATATCCCTGAGCAACACACGCGGGCCGACCTAGAGGCCATGCTCGAGCCACCATCAGGAGGGCACCTATGAMTENADTRSRLLASADQAVHEDALRFARSNKKAIAKRLTDKALYPPEEAPVSVFMAGSPGAGKTEASIALVNLFADSAILRIDADELRSEFPAYAGANSWLFQGGVSILVDKMLDFALDQRQSFILDGTFSNIDVARRNVDRSLRKGRFVQILYVYQSPVLAWGFVNAREAAEGRRIRKEHFIKQYFAARDVVNALKLEYRGDVHVDLLLKHIDNSGRLYKAGVDKIDYHIPEQHTRADLEAMLEPPSGGHLPGPT0027620_106DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-PezT-PezA_TOXIN-ANTITOXIN_SYSTEM,PGPT0027620-toxin_pezT|Zeta_toxin-K16214NANA
D1-35_00159276hypothetical proteinATGTCCAAACAGATACCAAATCCCCTCGAAGATAACCTCAAGCCGAAAGCCGACGAGGAAAGATCCGATACCCTCTACCTTATTGCTCCCAACATCGACACCGAATGCCTGCTCGCCAACCTCAGCGAAACCCTGGCCTCGGCCAACGCCATGGTCAGCGATCTCGCGTTTGACCTGGAAGGCTCGCGACGACATATCGCCCTAGGGATCCTCCAGATGATCGAGCTGAGCCAGTTGCTGGCGAATCGGGCATTGGATGTGGTGGATCCCAGATAAMSKQIPNPLEDNLKPKADEERSDTLYLIAPNIDTECLLANLSETLASANAMVSDLAFDLEGSRRHIALGILQMIELSQLLANRALDVVDPRNANANANANA
D1-35_00161735prtR_1COG2932HTH-type transcriptional regulator PrtRATGCAAAAACGCAACGTTTCTACCGTATTAAGAGCATTGCTCGATCAGCACGGGATCTCCCCCACGGAGCTTCACCGGCGTACCGGCGTGCCTCAGTCCACCCTCTCGCGGATCCTCAGCGGCAAGATCGTCGACCCTTCGGATAAACACATCTCGAAGATCGCCGAATATTTCGCCGTGAGCACCGACCAGTTGCGTGGGCGGGTCGACGTTGCGCCTGCCGGCAACAGCCGCCGCGAAGAGCCACATTCCGAACTCAAGGACATAAGCCTGTGGGACGATGACACGCCCGTCGAGGAAGACGAGGTGTCCGTTCCTTTTCTGCGTGAGGTTGAATTGGCTGCTGGATCAGGAAGATTCGTCATCGAGGAAAGCGAGCGCTCAAGCCTGCGTTTCGGCAAGCGCAGCCTGCGCCATAACGGCGTGCAGTTCGACCAGGCCAAGTGCGTGACGGTGCGTGGCAACAGCATGTTGCCGGTGCTGCGCGACGGCGCCACGGTCGGGGTGAACGCGGGCAAATGCGGGATCGGCGACATCGTCGACGGTGACCTCTACGCCATCAATCACAACGGCCAACTGCGGGTGAAGCAGCTATATCGCCTGCCCACCGGCATTCGCCTGCGCAGCTTCAACCGCGATGAGCATCCGGACGAGGACTACACCTTCCAGGAAATGCAGGACGAGCAGATCGTCATCCTCGGTCACGTCTTCTGGTGGGGCATGTACGCCCGTTAAMQKRNVSTVLRALLDQHGISPTELHRRTGVPQSTLSRILSGKIVDPSDKHISKIAEYFAVSTDQLRGRVDVAPAGNSRREEPHSELKDISLWDDDTPVEEDEVSVPFLREVELAAGSGRFVIEESERSSLRFGKRSLRHNGVQFDQAKCVTVRGNSMLPVLRDGATVGVNAGKCGIGDIVDGDLYAINHNGQLRVKQLYRLPTGIRLRSFNRDEHPDEDYTFQEMQDEQIVILGHVFWWGMYARNANANANANA
D1-35_00162171hypothetical proteinATGCTGAAGGATTTCAGATGCGGTCACTGCAAAAGACTTCTGGCCCGCATGGGCGAGAACACCGAACTCCAGATCAAGTGTCCCCGTTGCGGGACATTGAATCATGTGAAGGCCGTTGAGCCTCGAGTGAACGCCGGCGAGCAATGTATCAACCGTGCAATCAATCACTAAMLKDFRCGHCKRLLARMGENTELQIKCPRCGTLNHVKAVEPRVNAGEQCINRAINHNANANANANA
D1-35_00163582hypothetical proteinATGAATCGTTTCAAGAAATACGCTACCCCGCTGATGCTCTGCGGCGTCCTGTTCGGTGTCGGAGGCAACGCTGTTGCTGCCAACCTTCTGGTCAACGGTAGCTTCGAACAGCCAGGCTGCAGCGCAAGTTGCATATTGAATACTCCAGCGCAAGCCAACTTCATTACGGGTTGGACGACGTTCCTGTCTGGAGCCGAGTATTTCAACCTGCCCGCTTCGATTGGCGGTTCCCTGGCGGCGGATGGCGTCGTAATTGTCGACTTGGCTAACTATATCTATAGCAACGGCGGCGGCATTCAGCAGAACTTTGCAACCTCCGTTGGCGCCAAGTACCGCTTGACCTTCAGCGCAGGTAATTCGCGTTACGCAAGTCGTTCCGGTGAAGGTGTTATCCAAATAAAAGTGGCGGGCCAAAGTGTCACTTTCAACACCCCTTCAGCAAAAGGTAGAGCTGTTGAGTGGAGCACCATTACGTATGACTTCATCGCGACCTCGCCTCAGACAACCCTGGCTTTTTCCAATGAGCAGAATCCGTATGCCAACTATGCCTTTATCGACAACGTAATCGTTGAGCGACTGTAGMNRFKKYATPLMLCGVLFGVGGNAVAANLLVNGSFEQPGCSASCILNTPAQANFITGWTTFLSGAEYFNLPASIGGSLAADGVVIVDLANYIYSNGGGIQQNFATSVGAKYRLTFSAGNSRYASRSGEGVIQIKVAGQSVTFNTPSAKGRAVEWSTITYDFIATSPQTTLAFSNEQNPYANYAFIDNVIVERLNANANANANA
D1-35_00164351hypothetical proteinATGACAAACGAGCAACAAGCGTTGCTGGACATGCCGATCTGGCTGGTCATCGTGCTCGCCCTGGTGGGCGGGGTGACTGGCGAGATGTGGCGTGCCGACAAGGAGGGCGCCCGTGGCTGGTCACTGCTGCGGCGCCTGGCCCTGCGCTCCGGCGCCTGCATGATCTGTGGCGTCTCGGCGATCATGCTGTTGTACGCCATGGGCCTGTCGATCTGGGCCGCCGGTGCCTTCGGTTGCCTGACCGCGATGGCCGGGGCTGACGTGGCCATCGGGCTTTACGAGCGTTGGGCCGCCAAGCGGATTGGCATCAGTGAGCTACCGCCGCGTGATTCCCGTTCCGACCCACATTGAMTNEQQALLDMPIWLVIVLALVGGVTGEMWRADKEGARGWSLLRRLALRSGACMICGVSAIMLLYAMGLSIWAAGAFGCLTAMAGADVAIGLYERWAAKRIGISELPPRDSRSDPHNANANANANA
D1-35_00165513hypothetical proteinATGCCTGCCGTCCTCGAAAAACCTTCGCAGCTGTTGACCGCCATTGCCGAAACGTTGCGAACTGCCATGCCTGGCTTGAACGTCGGGAGCCTCCAGGATTTCAACGACATTGGCGACCCGCCCTGGGTGTTGCTCGCCATCGAGCGTGATGCGGTGGGCCAGCGTTCCAGCGAAGGGCGAATCGCCCATGCCCTGACGGTTTCCCTGCAAGTCGTGTCGTCTGGAACGGCGTCGACAGCGTGCGACCTGGGCTGCGAACTGAAGCAGCGTGTCGTCGACAACCGCTGGAATCTGCCGGGTGATCAATGCGACCCGCCCACGTACATCGATGGCGTCGCGTCGGCCTTTGGGAGCGAAACCCGCGCGTACGCCGCCTGGACCCTTTCATTCACACAGACGCTGTACCTCGGCCCGACATTACTGGAGGACCCGCTGGGTATTCCGAAATTCGCCCGTACCTGGGAAGTCTCGGACATCGACGACCCGGACCAATACACCGCACTCGAGGGCTGAMPAVLEKPSQLLTAIAETLRTAMPGLNVGSLQDFNDIGDPPWVLLAIERDAVGQRSSEGRIAHALTVSLQVVSSGTASTACDLGCELKQRVVDNRWNLPGDQCDPPTYIDGVASAFGSETRAYAAWTLSFTQTLYLGPTLLEDPLGIPKFARTWEVSDIDDPDQYTALEGNANANANANA
D1-35_00166612hypothetical proteinATGTTTGATGCGCTGTTACAGATGCATCTGGCGCCGATCATCGAGCGTCTGGCGCAGATGGAAACCGAGTTTGAGGACCTGCATCGGCGTGCAGAGAGTTTTTGCCGCATCGGCGTTTGCCAGGAAGTCGATGCGGCCAGCAACACTTGCAAGGTCAGTCACGGCGGGCTGGTGACGCCGGCGATCCGCTTTTTCAACCCGAGCGCCGGCGCCCAGAGCGAGTCGCGGATTCCGTCCGTGGGCGAGCAATGCCTGCTGTTCAACCATGGCGGCGGCGACAGCGGCGGACAGACGGTGGCGTTGTTCGGCCTTAACGGCGGCCAGTTTCCACCCGTCTCGACCCACGCCTCGCTGACGCGTCGCCTCTATCAGGACGGCACGGAAAACGGCTACGACCACGCCAGTCATGTCCTGCATTGGGAAAACGGCCCGGCGACGTTCAGCGGTTCCCGTGAATCGCTCCAGTTGAGCATTGGCCCGGCGCGATTGGCGATGACACCCCAGGCCATCGAGTTGCAGCTGGGCGCCGGCGGTTTGCGTATCGACGCGACAGGCGTGCATTTCAGCGGCCCGCTGGTGGATCACCAGGGACGCGTAATCAGTACCGCATAAMFDALLQMHLAPIIERLAQMETEFEDLHRRAESFCRIGVCQEVDAASNTCKVSHGGLVTPAIRFFNPSAGAQSESRIPSVGEQCLLFNHGGGDSGGQTVALFGLNGGQFPPVSTHASLTRRLYQDGTENGYDHASHVLHWENGPATFSGSRESLQLSIGPARLAMTPQAIELQLGAGGLRIDATGVHFSGPLVDHQGRVISTANANANANANA
D1-35_00167333hypothetical proteinATGATTGGAATCGATCGCAACACCGGCGCGACGGTCGACGACTGGCTGCAATTCGTGCAGCGCGCCACCCGGGCGTTGACCACCCCGTTGGGTACCCGTCAGAAGCGCCCCCTGTACGGCAGCGCCTTGACCGAGCTGCTCGGGCAAAACCTCGGTGACGACCTGCTGCTACTCGCCCAAAGCCACGCAGCGCAGGCGTTCTACAACCCGCACAACGGCATCGACGATTTCGAGCCGCAAGTCATCGTCGCCAATCGACAGGGGGCTGGTTTGCTGTTGCGCTTCGCCGGCACCTGGAAAAACCGCAAACAGACCTTCGAGGTGGTGACATGAMIGIDRNTGATVDDWLQFVQRATRALTTPLGTRQKRPLYGSALTELLGQNLGDDLLLLAQSHAAQAFYNPHNGIDDFEPQVIVANRQGAGLLLRFAGTWKNRKQTFEVVTNANANANANA
D1-35_00168996hypothetical proteinATGAGCATGCTGATTCCCGGCCAGAACCAACTGGCCGAACCGGCTATCGTTACCGTCGAAGCGTTCGAGGACCTGCTCGCCGAGTTCAAGACCTTCGTGGTTGAGTACGTTGCCGCGCGCTCTCCCGCAAGCGCCGCGAGGCTGGTCGACAGTCTCGAAAACGAAAGTGAGTTGCTGACCCTTGCCCTTGAGGCATTCTGCGTCCGGCTGCAAACCCACGAACGCAAATACAACGCCCGCATCAAGCAGATGCTGGCGTGGTGGGCCACGGGCAGCAATCTCGATGCTCGCCTCGCGGACATGGGGCTTGAACGTCAATTGCTCGACCCGGGCGACCCCGCGGCATTCCCGCCCATCGCTCCGGTCTACGAGAGCGACGAGGACGCCCGGTTGCGCTATTACCTGGCGCCCCACGCCCCGGCAGCCGGTTCCCGCATGCAGTATCGGCGGGAGATTTTCACCCTGGGGCAACGTCCCGTCGTGAAAGTTGAAAGCGCCTCGGCGGGGCTGGTGACAGTCAGCTACACCTTCGACCCGGATAGCCATGCAGCCCAGATCAAGGACGGCAACGGACGCCGTACGGCACCCGGCGAAGTCACGGTCACGGTGCTGTCCCGAGCGGGCGACGGCACGCCGTCCGAGGCGCTGCTCGCCGGCGTGCGCGAGCATTTCGCCCGGCCCGATGTGCGACCGGAAACGGACCGGGTCATCGTCCAGCCCGCGCAGATCAAGAACTACAGAATCCGCGTCGTGGCAAAGATCAACCCCGGTCCGGATTCAGGCCTGACCCAGGCTGCCGCACAGCAGCAGTTGCGCGAATACGCCGAGGCCTGTCATCGCCTGGAAGGCCGCGTGGATCCGAGCTGGATCGACTACACGCTGCACAGCGCCGGCGCGGTCCAGCTTGAAATTCTCGAACCGCTGGAGCCGATTGTCACGACGGCTTTCCAGGCCCCGTATTGCACGGGCGTCGAGGTTGAGGTGGATACGTTATGAMSMLIPGQNQLAEPAIVTVEAFEDLLAEFKTFVVEYVAARSPASAARLVDSLENESELLTLALEAFCVRLQTHERKYNARIKQMLAWWATGSNLDARLADMGLERQLLDPGDPAAFPPIAPVYESDEDARLRYYLAPHAPAAGSRMQYRREIFTLGQRPVVKVESASAGLVTVSYTFDPDSHAAQIKDGNGRRTAPGEVTVTVLSRAGDGTPSEALLAGVREHFARPDVRPETDRVIVQPAQIKNYRIRVVAKINPGPDSGLTQAAAQQQLREYAEACHRLEGRVDPSWIDYTLHSAGAVQLEILEPLEPIVTTAFQAPYCTGVEVEVDTLNANANANANA
D1-35_00169645hypothetical proteinATGAGTGACGACACACATCGCCCAAGCCTGCTGCCGGTCAACAGCTCACCGCTGGAGAAGGCACTTGATCTCGGCTTCGCCCGGTTGCTCGAACGCATCGATCCACCGTTTCCCGAGCTGATGAATCCGCGCGGAACGCCTTTGACGTTCCTGCCGTATCTGGCGGCGGATCGTGGAGTCAGTGAATGGGACGCGGCAGCCAATGATCTGGAAAAGCGCTTGACCGTTTCGTTGTCCTGGCAGATCCAGCGTCAGGCCGGCACGCGTCAGGCGCTGAATCATGCCGTCGAATCTATGGGGTTCACACCCAAGGTCACCGCTTGGTATGAGCAACAACCGCTTGCTCAGCCCTACACCTTTGATGTGCAAGCGGTCATCGGTCGCAGTTGGTCCAGTGGCGATCACAATCGCTTGATACGGCGAATCAATGCCGCCAAGAGCGAGCGTGACCAGGCCACCATCACGCTTGTACATCAAACGAACGGCAGCCTGGCGCTGGCATCAGTCGCAGACGGAGCCTTGAGCGAAGGGGAACTGTTCCTGGACGGAGCGCTGCCATCAATTGACCTTGATGCGTGCCTTATCAGTACCGGTTTTTTTCAACCCTACACCATTAACGATTACGACCTCAGGGCGCAGCCATGAMSDDTHRPSLLPVNSSPLEKALDLGFARLLERIDPPFPELMNPRGTPLTFLPYLAADRGVSEWDAAANDLEKRLTVSLSWQIQRQAGTRQALNHAVESMGFTPKVTAWYEQQPLAQPYTFDVQAVIGRSWSSGDHNRLIRRINAAKSERDQATITLVHQTNGSLALASVADGALSEGELFLDGALPSIDLDACLISTGFFQPYTINDYDLRAQPNANANANANA
D1-35_00170531hypothetical proteinATGACAGAAGACATTACGCGCTTGGTTCGCTTCACTTCCGCCGGCTTGGCCGAAGTGTTGCAGGCAAAGAACCAAGGCTTGAAAGGTGAGATCACTCACATCGGTGCCGGCACCGCTCGCTACGATCCCAGCGGATCGGAAACGGCGCTTCGCAATGAGCGGCAGCGTGTGCCAATCGTGGATTACGAGGACCTTGATCCAGGGCAGCTGAGAATGGCCGCTTTGTTTGAGGGGGCGGATGAATATGAGATTGGCGAGTTCGGTTTCTATCTTTCTACCGGCACGTTGCTAGCGGTGTATTCGGTGGCTGGAAAGTTGCTGACCTACAAAGCGGCGGCCGCGCGAGTATTGCAAAAGTTCACGCTGGATATTTCACCATTGCCGGCGCAAAGCGTCACGGTGGTGGTCGGGTCCGACAACCTGAACATTCTATTGAGTGAAGAAATCGCCACGTTGGCTACCGCCAATATCGACAATATGGCGCGGCACGTTGGCCTGATGTTTCGAGTGATGGCGCTCGAAGCTAAATAAMTEDITRLVRFTSAGLAEVLQAKNQGLKGEITHIGAGTARYDPSGSETALRNERQRVPIVDYEDLDPGQLRMAALFEGADEYEIGEFGFYLSTGTLLAVYSVAGKLLTYKAAAARVLQKFTLDISPLPAQSVTVVVGSDNLNILLSEEIATLATANIDNMARHVGLMFRVMALEAKNANANANANA
D1-35_00171621hypothetical proteinGTGAGCCTGGAAACCACTATCGCGTCGCTGGTATCAGCGGCCAATAACTTGACCACGGCGGTCAATGGAAAGATCGGCAGTATCAACAGTACCATGGCCACCGCACTGGAGCAGTTTAATGAATGGAGGAGTCTCAAGGACGTTGAAGGCGATCCAGCAGCGCTGGGGACGATTCGTCGTAATCTGCTGCAAGGTTTTGTCTCAGGTACCGGAGGTGTACAGGGGGTGGGCGCGCAAGGTGATTTTGTGCTAACCGACTTGGGTACCAGCGCAAACGTCTATATACATTTCAAAGTTCCGCTGAACATCAATGTGAACTCGGAAATGTTCTGGTTCAACATAAAAGGTTACAGTTACGGCACTGCGAAAATCATCGAAGAAACGCTGGTCGGCTATTGCTATCAACCCACTCGTACCCTGCAGAATGTTGCCACGTTTGGCAACATGACACCTGCTTGTTACGTTGATACGAACGGTAATGTTGTGATGCGTATTCTGATTCCGAGTATTTATTACACCACTATACGTATCGACACCATGCGTGTAGGAAACGGCCGTTTGTTTAAACTCGGTGATTTGAAAACAAAACTATCGCTGGCTGAAACAGTGGTTTTTAGTTAAMSLETTIASLVSAANNLTTAVNGKIGSINSTMATALEQFNEWRSLKDVEGDPAALGTIRRNLLQGFVSGTGGVQGVGAQGDFVLTDLGTSANVYIHFKVPLNINVNSEMFWFNIKGYSYGTAKIIEETLVGYCYQPTRTLQNVATFGNMTPACYVDTNGNVVMRILIPSIYYTTIRIDTMRVGNGRLFKLGDLKTKLSLAETVVFSNANANANANA
D1-35_00172258hypothetical proteinATGTCTGATTTCCCTGAAGATAACAACGCAGAATTTGCGCTCGCTGTGCCTTCGCCTGACATCGAATGGGCTGCAGTTCGTACCCGTCGCGATCAGCTTCTGCGAGCGACTGACTTTACCCAACTACCGGATTACCCGGCCACTGCTGTCCAGTTAGCCCAGGTCACCGCCTACCGTAAGGCGTTGCGGGATATTCCTGAAACGGTGGAACATCCTGACCAATTAGTGTGGCCTGAGCCGCCAACATTTGTGAAGTAAMSDFPEDNNAEFALAVPSPDIEWAAVRTRRDQLLRATDFTQLPDYPATAVQLAQVTAYRKALRDIPETVEHPDQLVWPEPPTFVKNANANANANA
D1-35_00173210hypothetical proteinATGTCTATCCGCCAAACCTACACCGTGCTCCTCCCATTTCCTACCGGTGGCGGCCACTGGTCGAGCGTCGGCCAGCAGCTCGACTTGCTCGACGTCGAGGCCAGTGCCTTGCGTAGCGCCGGTCGCCTGGAACTGAAAAAAACCGAAGCCGTCGAGTCGGCTTCCACATCGACCCCGGCCAAAAAGGCCGCCACCAAAAAGGCTGAATAAMSIRQTYTVLLPFPTGGGHWSSVGQQLDLLDVEASALRSAGRLELKKTEAVESASTSTPAKKAATKKAENANANANANA
D1-35_001741167gpFI_1Putative prophage major tail sheath proteinATGGCTGAGGTTTTGAACTTCGAGCACAACGGCATCACCGTCAATGCCACTGAATCTCCCGAGGCCATGGGTGGCCTGGGGGACAACGTCATCGGGCTGGTCGGCACCGCGCCGAATGCCAACGCGCTGATTCCGAAAAACACCCCGTTTCGCATCAACAGCTTCACCACCCAGGCCCAGTTGGACCCCACCGGTGCCGAGGCGGGGACGTTGTTCCACGCGGTCTACCAGATCCTCAAAGTGGTCAAGGTACCGGTGTATGTGGTTATCGTCGAAGAGGGCGCGACCCTGGCCGACACGCAGAACAATGTGATTGGCGGCATCGAGGCGCAGACCGGACGCAAGTTGGGTCTGGCGGCGTTGAGTGGCGTCGCTGAGGACCTGACCATCATCGGCGCGCCTGGCTTCACCGGCACCAAGGCGGTGGCGAGCGAGTTCGCCTCGTTCGGCAAGCGCATCAAGGCCCGTGTGGTGCTCGACGGCAAAGACGCCTCGGTCGCCGATCAAGTGGCCTACAGCCAGGAGCTGGGCGGCGCCGACCTCGGTTTCGACCGTTGCCTGGTGGTGCACAACATGCCGGCTGTGTACTCCAAGGCGGCGAAGAAAAACGTCTTCCTCGCGCCGTCAAGCCTGGCGATTGCCGCGCTCGCCAAGGTCAAGCAATGGGAGAGCCCGGGTAATCAGGTGACCTACGCCGAAGACGTTTCCCGCACCGTGGAATACAACATCCTCGACACCTCCACCGAAGGCGATCTGCTCAACCGCTACGGCGTCAGCTACTACGCCCGCACCATCCTCGGCGGCTTCTCGCTGCTGGGCAACCGCTCCATCACCGGCAAGTTCATCAGCTACGTCGGCCTGGAAGATGCCATCAGCCGCAAGCTGGTGAAAGCCGGCCAGAAAGCCATGGCGAAGAACCTGACCAAGTCGTTCATGGACCAGGAGGTCAAACGCATCAACGACTGGCTGCAAACCCTGGTCGCCGACGAAACCATTCCCGGCGGCAGCGTGTACCTGCACCCGGAATTGAACAGCGTCGAGAAGTACAAGAACGGCACCTGGTACGTGGTCATCGACTATGGCCGCTACGCGCCGAACGAACACATGATTTATCAACTCAACGCCCGCGATGAAATCATCGAGCAGTTCCTGGAGGATGTTCTCTAAMAEVLNFEHNGITVNATESPEAMGGLGDNVIGLVGTAPNANALIPKNTPFRINSFTTQAQLDPTGAEAGTLFHAVYQILKVVKVPVYVVIVEEGATLADTQNNVIGGIEAQTGRKLGLAALSGVAEDLTIIGAPGFTGTKAVASEFASFGKRIKARVVLDGKDASVADQVAYSQELGGADLGFDRCLVVHNMPAVYSKAAKKNVFLAPSSLAIAALAKVKQWESPGNQVTYAEDVSRTVEYNILDTSTEGDLLNRYGVSYYARTILGGFSLLGNRSITGKFISYVGLEDAISRKLVKAGQKAMAKNLTKSFMDQEVKRINDWLQTLVADETIPGGSVYLHPELNSVEKYKNGTWYVVIDYGRYAPNEHMIYQLNARDEIIEQFLEDVLNANANANANA
D1-35_00175507hypothetical proteinATGTTTACCAACCGCGTAAGACAGGCCATTGCGGCCACCCTGCAGGGCCTGCCGTTGTCGGCGACCGTGGAAGAATTCACGCCGCCAAAAATCGAATTCGAAATGGAAGAAATGCGCGGCGGGCGTTTCATCGGCGAGGAGATGGCCAAGAGCGGCAAGGCGCTGACGGCCAAACTGGTGCTGCAAGGTGTCGGTCCGGAAATCATGCTGGCGCTGGGCGTAAGCGTCGGTGACGACATCCTGCTGAACGTGCGCGAGGCCGGTCAGGATCAGGACGGCAACACATGGTTCACCTACCACACGGTGGGCGGCAAGCTGAAATCCCTCGACGAAGCCGCCCTGAAGATGAACGACAAACCCACCACCACTCTCGAGCTGGCCTGCCGCACCTATAACCGCCTGGAAAACGGCATCCCAGTGATCGACATTGACGTGCGCACCCAGAAGTTCGTGCTCAACGGCGTCGACATTCTTGGCGATGCGCGTCGCGCGGTGTTGCTGCCTTAAMFTNRVRQAIAATLQGLPLSATVEEFTPPKIEFEMEEMRGGRFIGEEMAKSGKALTAKLVLQGVGPEIMLALGVSVGDDILLNVREAGQDQDGNTWFTYHTVGGKLKSLDEAALKMNDKPTTTLELACRTYNRLENGIPVIDIDVRTQKFVLNGVDILGDARRAVLLPNANANANANA
D1-35_00176576hypothetical proteinATGTCCTGGATGCCTCCTACCCATGAGCTGCTGTCACCGATCACCGCTGACGACGGTTCGCAGATCGAGCAGTTGCAACTCAAACCGTTGTACTACGCCGCGCAAAAAGACGCCCTGGCCCGTGCCGGCGATGATGAAGACGACCAGTTCTTCGAGCTGGCCAAACTGGCGACCGGCCTGTCGGCCAAGGAGCTGGACCAGCTCAAGCGCCCGGACTACGTGAGCATTGCGCAATACGTGCATGAAATGTCCACGCGCCCGGCATCCCACTTTCTGGATCAGACCGAGGGAGCCCCAGGTGATCCCGACCAGGTGCAATTGCTGCAACCGATCGATGTGGCGGGCCGCAGCCTGACCTCGCTGACCCTGGAAATGCCGGTGCTGCGGGCCACCAAGGCGATGAAAAAACTGAAGACGGCCAAGGAACGCGCCGAGTTCATCACGGCCCATTGCACCGGGCTGATGCTGCCGAACCTGGCCTCGCTGAGCGTGCCTGACTGGACGCAACTTCAGGTACGCATCGACGATTTTTTAAACAAACCGGCGGACTTCTTTCGGAGCGCGACATCGAGGTGAMSWMPPTHELLSPITADDGSQIEQLQLKPLYYAAQKDALARAGDDEDDQFFELAKLATGLSAKELDQLKRPDYVSIAQYVHEMSTRPASHFLDQTEGAPGDPDQVQLLQPIDVAGRSLTSLTLEMPVLRATKAMKKLKTAKERAEFITAHCTGLMLPNLASLSVPDWTQLQVRIDDFLNKPADFFRSATSRNANANANANA
D1-35_00177126hypothetical proteinGTGATCCTCGATGTGGTGCCGCTCATTTACCCGGTAAGTGAAGCGGAGATCCTGGAGTGGGACGCCGGCAAGGCCTTGCGCCGATACGACATCGCGATCGCTCGCCTTGGCGTGAAACAGGAGTAGMILDVVPLIYPVSEAEILEWDAGKALRRYDIAIARLGVKQENANANANANA
D1-35_001782160hypothetical proteinATGGCGGACGATAGATATTCGCTCAGATATGCAGCCTTCGATGGGAGTGGGTTGGCGGTCCCCAATGCCAGCGCCAAGAACAGTGTGATCCTTTCCGCTGGGGACCAGCTGCCCGGACTCGATCAGGCGCTGGAAAACCTCGGGCTCAAGCTCGGCTTGCTGACTACGGCAATCGAGTCGTTGACCCTGAAACTCTCGGCACAGCGCGCGTTGTTTCAGGTTATGGGCGCCAGTGCCAAGGGGGATTCAGCCAAAGAGCCAAAAGCGAAGTCGGGTCGTGGAATCGAACCACCGGAACTGCTCAAACCGGCGATAGCAATGGATTCGGCCATGGCCGATCTGAAGCAGGCCGGCCAGTTCACGCCGCGGCAGATCCAGCAGATGGCTGAGCCAACCCAGCGTATCGCCAGCGCGCCATTGGTGGCGGCTGGCGGCACAACAGCGGTTGAGTTGGTGAGAATCGAAGGCCTGGCTGCCAGGGCAGGCATCGGCAGTGATCTGCCCGATGCCTCGGACCGACAATCGGCGCTGTTGCGCTTTGCCAGCGATGCGGGTGTCACCGCATCGACGTTCAAGATGCCAGCCGTGGAAGCCGCCGAGATGCTGCTTGGTTGGCGCACCGCCATGAAGCTCAGCGCCGAGAAAGCCTTTGACCTGGCGGACGCAACCAACCACCTCGGCAAGATTCCCGGCGGTGCGAAAGCGAGCGAGATCGGCACGGTGTTGCAGCGTGACGGTGCGGCCGCGACCTCGGCCGGCCTGCAACCTGCACAGGCCGCTGCGTTGACGGCGGCGTTGCTCAACACCGGTACGCAACAAGCTGAAGCCGGCGCAGCGTTGGCTGGTTTCACGATGGCCTTGGGCAAGGGCAATCAGGCCTCGGCGACCGAGCAAGCGGCCTGGACGCAACTCGGGCTTGATCCCAAGGAAGTCGCGAGTGGGTTGCGTGACAAGGACACCGCGCCGGGGACAGTGATGTCGGTGCTGGCGGCGTTGAACGCGCAGCCGGCGGAAAAACGCTCGGACCTTGCCTCTTCGCTGTTTGGCACGCGGGATGAGGCGGTGCTGCGGATGGCGCAGAAACTGACCGACGTGAATGACGCGTTCTTGCAGGTGAAAGACCCGGCCCAGTACGCCACCTTGCAATTGGGCGACAAGGGCTCGGTGCGGCAGGACGCGTTGGCGTTGGCGAATACCCGGCAAGGTCGGTGGAACGTCTTCAACGCCAGCAATGAGCGTTTGACACTGGCCACGGGCAATGCGGTAGCGCCCGTGGCGGACAGCTCGCTGCAATGGCTGGGTTCGCTGAACGATGGCATGAGTGAGTTGGCCGAGACTTCACCTAAGACCACAGCTGCCATTGTGCTGGTGGGCGCGGCGCTCAAGCCGCTGGTGGGGGCGCTGCTCAAAGCCATCGCGGATGAAATGAGCAATCAAGCGGCCAAACGCGTATTGGGCGGCGTGGCGAAGCGTCTTCCCAGGCGCGTGGGAGAAGTGTTCTCTGAAGACTTCAGAAACGACAATCGTAACGCCAGGCCGGATATCAAGGGCGTCAGCCGGCTCGGACCGGCGAGCGTTGCCAAGGCCGAAGCGGGAGTGACCGTCAACGGTTCCCTTCGCAGCATGGGTGCTTCGTTGCGCCCGTTCAGCCGTTTTGTTCCGGGAGCTGTCGCGTTAAGTGCAGCCCCTGAAGTGCTGGAAGGGGCGCTGAGCGGCGACGCTCGCAAGGTTGGCGCTGGCCTGGGCGCCGCTGGCGGCGGCTGGGCGGGAGCATCGGCAGGCGCCAGCGCGGGCGCGACGATTGGCACGTTCTTCGGTCCGGGTATCGGCACCGCTATTGGCGGAGCACTCGGCGCAATTGTCGGCGGTCTGGCGGGAAGCTGGCTCGGCGGTGAGTCGGGCTCCTGGTTGGGCGAAAAACTCGCCTCGCCCGTCGATAAGCTCGCCGCTCCCGAGCAGGTCAGCAAAGACCTGAGCGGCACCCCGGCGACCGGCCAGCAAAACAACCTGACCGCGAACATCTACATCAATGGCCAGGATCAGGCCAGTGCCGCCCAGTTGGCGAACCTGGTTGTGCAACAGATCACTAGCCAATTCCAACTCATGCCCAACTCGCTTGCCATGCGCAGTGACGCGGCCCTGACCGACGGAGTGACCTGAMADDRYSLRYAAFDGSGLAVPNASAKNSVILSAGDQLPGLDQALENLGLKLGLLTTAIESLTLKLSAQRALFQVMGASAKGDSAKEPKAKSGRGIEPPELLKPAIAMDSAMADLKQAGQFTPRQIQQMAEPTQRIASAPLVAAGGTTAVELVRIEGLAARAGIGSDLPDASDRQSALLRFASDAGVTASTFKMPAVEAAEMLLGWRTAMKLSAEKAFDLADATNHLGKIPGGAKASEIGTVLQRDGAAATSAGLQPAQAAALTAALLNTGTQQAEAGAALAGFTMALGKGNQASATEQAAWTQLGLDPKEVASGLRDKDTAPGTVMSVLAALNAQPAEKRSDLASSLFGTRDEAVLRMAQKLTDVNDAFLQVKDPAQYATLQLGDKGSVRQDALALANTRQGRWNVFNASNERLTLATGNAVAPVADSSLQWLGSLNDGMSELAETSPKTTAAIVLVGAALKPLVGALLKAIADEMSNQAAKRVLGGVAKRLPRRVGEVFSEDFRNDNRNARPDIKGVSRLGPASVAKAEAGVTVNGSLRSMGASLRPFSRFVPGAVALSAAPEVLEGALSGDARKVGAGLGAAGGGWAGASAGASAGATIGTFFGPGIGTAIGGALGAIVGGLAGSWLGGESGSWLGEKLASPVDKLAAPEQVSKDLSGTPATGQQNNLTANIYINGQDQASAAQLANLVVQQITSQFQLMPNSLAMRSDAALTDGVTNANANANANA
D1-35_00179384hypothetical proteinATGCGTCAGCAAATGGCCCTGGGCAGTTTCATTTTCGGGCTGTCCCGCAGTTTCGCCTACCACTCCTTGGTCCGCACCTCGGACGGTGGCTGGAAAAGCATCGACATCCTTACCAGCAAGCCCAAGTCCAGCCAGATCGGCCAAGGCCTGCAGGGGCTGACGATCACCGGCAAATCGATGTACTCGACCGCCATGGATCGACTCGATGAGCTGCGCGCATTGCAAGCCCTGCGCACCCCACTGCCGTTGGTGGATGGCATCGGTCGCAACTGGGGCCTGTGGCAGATCAACAAGGTCACGGAAACCCAGACCGAGGTCATTGATGACGGCACGGCCATGGTGGTCGGCTGGGTGGTTGAATTGACGGAGTTCGCCAATGCGTAGMRQQMALGSFIFGLSRSFAYHSLVRTSDGGWKSIDILTSKPKSSQIGQGLQGLTITGKSMYSTAMDRLDELRALQALRTPLPLVDGIGRNWGLWQINKVTETQTEVIDDGTAMVVGWVVELTEFANANANANANANA
D1-35_00180213hypothetical proteinATGCGTAGAGTACGAAGTATCGCCGGTGACTCGGTGAATCTGCTGCTGTACCGCGAGCTCGGGCGTTGTGATGACGCCGCCGAAGAAGCGCTCTGGCTGCTCAATCCGGGATTGGCCGAATGGGGCCCGATATTGCCTGCGGGCGTTTGGGTTGTCTTGCCTGAGGTGGACCTCAGGCCTGTTGCAATCCCAGCGGTTTCAGCCTGGGATTAAMRRVRSIAGDSVNLLLYRELGRCDDAAEEALWLLNPGLAEWGPILPAGVWVVLPEVDLRPVAIPAVSAWDNANANANANA
D1-35_001811017hypothetical proteinATGTCATTGGGTTTTACGCCTGCAGTGGAAATTTATGGCGCGAACGCCGCGCTGCTCAACGAACGCCTGCTCAGTTGGACGCACGTCGACGCGGCGGGCATCGAGTCCGATCAACTGACACTGACCATCAGCCTGGAGGGGCTTGAAGGCATGCCCAGCCTGGGCGGCAAGATCGGCCTGCGGGTCGGTTATCTGGAGTCGGGACTTGTGGATAAAGGCGAATTCGTCGTGACCCGGCGTACACCGACCCTGTTTCCCTTGCGCCTGACACTGGTGGCGACAGCCGCGCCGTTCAGCGCCTCGGACCAGACTGGTTTCAAGCAGCGCCGATCCGTCAGCCATGGCCCGACGACCCTGGGCGCGCTGTTTCGGGAACTGACCTCAAGGCACGGTTTTTCCCCCCGGGTGGCGCCGGAACTGTCACTGATAAAAATCGAGCACATCGACCAAACCAACGAAACCGACATGGGCTTCCTGACCCGTCTGGCCCATCGTTATGACGCGGTCGCCAAGCCGATCAACGAGCTGTATGTGCTCGCCCGGCGCGGGCAGGCGAAATCGCTGTCGGGCAAAGTCTTGCCTGAGGTAAAGCTGTCGGTGACGACGAACAATCGCCCAGGCGACCAGGCGTTTACGTCGGCGATCCTTGATGAGACCGCCCGGGCCAAATACCAGGGTTGCAAGACCACCTGGTGGGATGCGGCGGCGGGCAAGCTGCGGGTCGAAGAGGGCGGCATCGCACCTTTCAAGACCTTGCGCCAGCGCTTCCAGAGCGCCGACGACGCCCGCGCCGCCGCTGAGGGCGAGACACGGCGGATGATGCGCGAAGCCCTCAAGGTCGCCATCGAATGCCCGGGCAACCCGGCCTTGTCCGCCGAGGGCATCGTGCTGCTTGACCCCTCCTGGCCGGATTTCATGCGCGGGCGTTGGTCGATCGACAAAGTCACCGCCAGTGGCAGCCGGGAAAAAAGCTATCGCTGCAAGATCGATGCGACCTGCCTGGATGCCCGGGCCTGAMSLGFTPAVEIYGANAALLNERLLSWTHVDAAGIESDQLTLTISLEGLEGMPSLGGKIGLRVGYLESGLVDKGEFVVTRRTPTLFPLRLTLVATAAPFSASDQTGFKQRRSVSHGPTTLGALFRELTSRHGFSPRVAPELSLIKIEHIDQTNETDMGFLTRLAHRYDAVAKPINELYVLARRGQAKSLSGKVLPEVKLSVTTNNRPGDQAFTSAILDETARAKYQGCKTTWWDAAAGKLRVEEGGIAPFKTLRQRFQSADDARAAAEGETRRMMREALKVAIECPGNPALSAEGIVLLDPSWPDFMRGRWSIDKVTASGSREKSYRCKIDATCLDARANANANANANA
D1-35_00182585hypothetical proteinATGAAGATCACCCCGATCCTCACGCAACTGCGTGAGCAATGCCCCACGCTTGCCCATCGCGTGGCTGCAGGCTTTGACCTTGCCACGCTGCAAGCCCAGGCCCCGCTGCAAACCCCCTGCGCCTATGTCCTGGCAACCGCCGACGTTGCCAGTAGGAACGCGGCGCAGAACGTCACGCTGCAAGCGGTACGTGATCGTTTCGATGCCGTGCTGGTGCTCGACGCGACTGACGCGACAAAAGCGCTGGATCTTTCGCACGACCTACGGGCTGAACTGTGGCGCGCGCTGGTGGGGTTCAAGCCGGGCGCTGAGTACACCGGCGTCGAATACGACGGCAGCGAGCTGGTTTCCATCAATAGCAGTCGCGTGTTGTACCGGCTGCGCTTTTTCGCCGAGTTCCAGCTGGGCCGCAATCTGCCGGGCCAGCCTGCCGAAAGCTGGCATGAGCGTGAACTGGACGGCTTGTCGTCCTTTACCGGGGCCACCGTGCGCGTCGATGCCATCGACCCGGCGGACCCCAACCTGAAACGTCCCGGCCCCGACGGGCGCCTGGAACTGACTTTCTCTGGAGACGTAACCCCATGAMKITPILTQLREQCPTLAHRVAAGFDLATLQAQAPLQTPCAYVLATADVASRNAAQNVTLQAVRDRFDAVLVLDATDATKALDLSHDLRAELWRALVGFKPGAEYTGVEYDGSELVSINSSRVLYRLRFFAEFQLGRNLPGQPAESWHERELDGLSSFTGATVRVDAIDPADPNLKRPGPDGRLELTFSGDVTPNANANANANA
D1-35_00183183hypothetical proteinATGAGCAAACGCATCACCGTGCTGCCGGCCCCTGGCCGCGCCGTACCGGACCCGGAAGCGGGCGATCTGTTGCCCCTCGAAGGCCGTGAAGTGCCGGACAACGCCTGGTGGCGTCGACGTCTGGCCGATGGCGATATCACTACCAAAGCCGTGCAAGCGGCAAAACCAAAGGGAGCCAAATAAMSKRITVLPAPGRAVPDPEAGDLLPLEGREVPDNAWWRRRLADGDITTKAVQAAKPKGAKNANANANANA
D1-35_001841497hypothetical proteinATGGCGATTGGATTCAGCAACATTCCCGCGGACATTCGTGTTCCGCTGTTCTACGCCGAGATGGACAACTCGGCCGCCAATAGCGCGTCGTCGGCCATGCGCCGGTTGATCGTCGCCCAGGTCAACGACAACATCGCCCCGGCCGAAGCCGGCAAGCTGGTGCTGGTTTCCAGCGTCGCGCTGGCCAAGAGCATTGGCGGGCAAGGCTCGATGCTGGCGTCGATGTACGAAACCTGGCGCAAGACCGACCCGATCGGTGAGATCTGGTGCCTGCCGCTGCATAACGTCAAAGGGGCGATTGCCCAAGGTACGCTGACGCTGACCGGCAGCGCTGCGGAGAGCGGCGTGCTCAACCTGTACGTCGGTGGCGTGCGTGTCCAGGCCGCTGTCGTCAAAGGTGCCAGCGCTGCCCAGGCGGCCACGGCGCTGACCCTCAAGATCAACGCATCCGCCGACCTGCCGGTGACCGCCGCGGCCGCCGAAGGCGTGGTGACCCTGAGTGCCAAATGGACCGGCGCCAGCGGCAATGACATCAGCCTGCAATTCAATCGCCTGGGCAAGAGCAACGGCGAAGACACCCCGGCCGGCTTGACCACGGCCATCACCGCCATGGCCGGCGGCGCCGGTGCGCCGGACCAGACTGCCGCCGTCGCCGCCCTGGGCGATGAGCCGTTCGAGTTCATCGCCATGCCGTGGTCCGACGTGTCGAGCCTCGACACCTGGCAAGCGGTCATGGATGACAGCACCGGTCGCTGGTCCTGGGCCAAGCAGTTGTTCGGTCACGTCTACAGCGCCAAGCGCGGCACCCTCGGCACTCTTGTCGCCGCCGGCCAGGCCCGCAACGACCAGCACATGACCATCCAGGCCCTGGAGCCGGGCGTGCCGCAACCGTTCTGGGTCCAGGCCGCTGCGCTGGCCGCGCGCACTGCGGTGTTCATTTCCGCCGACGCCAGCCGCCCGACCCAAAGCGGCAGCCTGCCGGGGCTCGATCCGGCACCGGCCAGCGAGCGCTTCACCCTGACCGAGCGACAGTCGTTGCTCAACTACGGCATCGCGACCGCTTACTACGAAGGCGGCTACGTTCGTATCCAGCGTTCCATCACGACCTATCAGAAGAATGCCTTCGGCCAGGCGGACAACTCCTACCTGGACAGCGAAACCATGCACCAGTCGGCGTTCATCGTGCGGCGCCTGCAAAGCGTGATCACCAGCAAATACGGTCGCCACAAACTGGCCTCCGACGGTACTCGTTTCGGCGCCGGCCAGCCCATCGTCACCCCGAGCACCATTCGCGGTGAGTTGATCGCCCAGTACGCCAAGCTTGAGTTGGAAGGTCATGTGGAAAACGCCGAGCTGTTTGCCGAGCACTTGATCGTCGAACGCGACAGCCAGGACCCGAGCCGGGTCAACGTGCTCTTCCCGCCGGATTACATCAACGGACTGCGCGTGTTCGCGCTGCTCAACCAATTCCGCCTGCAATACGACGCCGCCGCCTGAMAIGFSNIPADIRVPLFYAEMDNSAANSASSAMRRLIVAQVNDNIAPAEAGKLVLVSSVALAKSIGGQGSMLASMYETWRKTDPIGEIWCLPLHNVKGAIAQGTLTLTGSAAESGVLNLYVGGVRVQAAVVKGASAAQAATALTLKINASADLPVTAAAAEGVVTLSAKWTGASGNDISLQFNRLGKSNGEDTPAGLTTAITAMAGGAGAPDQTAAVAALGDEPFEFIAMPWSDVSSLDTWQAVMDDSTGRWSWAKQLFGHVYSAKRGTLGTLVAAGQARNDQHMTIQALEPGVPQPFWVQAAALAARTAVFISADASRPTQSGSLPGLDPAPASERFTLTERQSLLNYGIATAYYEGGYVRIQRSITTYQKNAFGQADNSYLDSETMHQSAFIVRRLQSVITSKYGRHKLASDGTRFGAGQPIVTPSTIRGELIAQYAKLELEGHVENAELFAEHLIVERDSQDPSRVNVLFPPDYINGLRVFALLNQFRLQYDAAANANANANANA
D1-35_00185348hypothetical proteinATGGGTCAACTGATTGCGGGCACCTGCTACGTCAAAGTGGACGGCGCTCAACTGACCATCAATGGCGGCTGTGAAGCACCACTGATGTTTACCAAACGCGAGACCGTCGTACCGGGTTTCTACAAGGAAACCGACATCGCGCCGTCGTTCAAGGTCACCGCGCTGCACACCGCCGACTTCCCGCTCAAGCAGCTGGTCGCCGGCACTGACATGACCGTCACCTGCGAATTCAGCAACGGCAAGGTCTACGTGCTGGCTGGCGCGTATCTGGTGGAAGAGCCGGTATCCAAAGGTGACGACGCCACCATCGAGCTGAAATTCGAAGGCATCAAGGGGACCTGGCAATGAMGQLIAGTCYVKVDGAQLTINGGCEAPLMFTKRETVVPGFYKETDIAPSFKVTALHTADFPLKQLVAGTDMTVTCEFSNGKVYVLAGAYLVEEPVSKGDDATIELKFEGIKGTWQNANANANANA
D1-35_00186297hypothetical proteinATGACTGGTGTCGTGGCGTTGCGCGTGGCCATCGAGGCCCACGGCGAGCCGTTGAGCGAACTGACCTTGCGCCGTCCGACGGTGCAGGAGGTCCGTGCGATCAAGGCGCTGCCGTACAAGATCGACAAGAGCGAGGAGGTCAGCCTGGACATGGATGTCGCGGCCAGATACATCGCGGTCTGCGCCGGTATTCCACCATCATCGGTCAACCAGTTGGACCTGGCTGATCTCAACGCGCTGAGCTGGGCCGTCGCGAGTTTTTTCATGAGTGCGGCGTCGCAGCCATCGGCGACCTGAMTGVVALRVAIEAHGEPLSELTLRRPTVQEVRAIKALPYKIDKSEEVSLDMDVAARYIAVCAGIPPSSVNQLDLADLNALSWAVASFFMSAASQPSATNANANANANA
D1-35_001871575hypothetical proteinATGGCAGAGACACAGAAGGTAGAGAAAAAGGCGCTACTGCTGACCGGTATCGACGAACTGTCGCCCAAGCTCGCCAGCCTGCGAGCGAAGGTCGCGAGTTTCAAGCAGAACCTCGACGCCACGGGCCTGGGCAGCCTGGATATGTCCGGGCTGCTGCCCAGCGGTGGCCTGGCCCAACCGTTCATGGACGGGCTCAAGTCGGCGCTGGCCTTCAAGGACGAAGCCGGCGCAGCGAGCGCGGCAGCCAGTGCCGTCCAGGCGCCGGAAGCGCCTCGCGTAGCGGCACAGAACCTGGAGGGATTGAAGACTTCCATCAGCAACGTGTCGGTGCAGTTCGGCTCGGCGCTGGGGCCTGCGGTCAACGCGGTAGCGGTCGGTTTGCAGCCGATGGTCAACGGCGTGGCGCAGGTGCTGCAGGACAACCCGCAACTAATCCAGGGCCTGGCAAATGGCGTCGTCGCGTTCAACGCGATCCAGACGGCGGTCAGCGGCGCGAGCCAGGCAATGGAAGTGATCAACCTGGCCTTGAAGATGAACCCCATCGGCTTGATTGCCATGGGCATCGCCTTGGCGGCAGGGATGATCATCGCCCACTGGACACCAATCTCGGCATTTTTTGCCGGGCTCTGGCAACGGCTGGCGCCGATCATCCTGCCAATGGTCGAGTTCTTCAAGACGCTGTTCGCCTTTACCCCGATGGGGCAGGTGATCAGCAACTGGGGGCCGATCAGCAGCTTTTTTGGCGCACTCTGGAATGTGATCGTGGCGGCGGCGACGCCGATCATCGGTTTCATGCAGACGCTGTTCGCCTGGTCGCCCCTGGGGTTGATCATTGCCAACTGGACGCCCCTGAGCGGGATGTTCGCGGCGATCTGGGATTTGCTCCAGGCCTTGACCGTGCCGGTGATGGCCGCGCTGAAAGGCCTGTTCGACTGGACACCGTTGGGGCTGATCATGGCCAACTGGGGCACGATCGGCGAGGTCTTCGCCGGGATCTGGGAGGGCATTCGCAATCAGGTTTCGATCATGCTGGCGGTGTTCAGCGGCCTGTTCGACTGGTCGCCCATCGAGGGCCTGACCCGGCAGTGGGGACCGGTGGGCGAATGGTTCAGCCAATGGTGGGCCGAGCTGCAGGGCGTGATCGCGCCAATCAAGGCGTTCTTCAACGGCGGCTTCGGCGAGGTGATTGCCTCGTTCACCGGCAAGGTCGAGGGATTGGCCGAGGCGCAGCGCGCCACCAATGCCGAAGGCAAGGGTGAGCTGGCACCGGCGTTTTTTGGCGGGGCCAGCGAGCAGCCTTCGGGGCTGTCTTCAAGCCTTGCGCCGCCACCCGCCACTGCGTCGCCCAGAGCGTCCTTGACGCCCGGCGCATTGCCGCAGACTTCCAGCGCCCTGGTGCAACAAAGCGCCGCCAACAACCGCACGCAACTGGAAGGCGGCCTGACGGTGCGCTTCGAAAACGCGCCGGCGGGTTTGCGCGCCGACCCGCCCCAGACCAATCAACCGGGCCTGGCGGTGAGTTCGCGCATCGGTTATCGCTCACTTTCCGCAGGAGGTTCCAATGAGCTGGCGTGAMAETQKVEKKALLLTGIDELSPKLASLRAKVASFKQNLDATGLGSLDMSGLLPSGGLAQPFMDGLKSALAFKDEAGAASAAASAVQAPEAPRVAAQNLEGLKTSISNVSVQFGSALGPAVNAVAVGLQPMVNGVAQVLQDNPQLIQGLANGVVAFNAIQTAVSGASQAMEVINLALKMNPIGLIAMGIALAAGMIIAHWTPISAFFAGLWQRLAPIILPMVEFFKTLFAFTPMGQVISNWGPISSFFGALWNVIVAAATPIIGFMQTLFAWSPLGLIIANWTPLSGMFAAIWDLLQALTVPVMAALKGLFDWTPLGLIMANWGTIGEVFAGIWEGIRNQVSIMLAVFSGLFDWSPIEGLTRQWGPVGEWFSQWWAELQGVIAPIKAFFNGGFGEVIASFTGKVEGLAEAQRATNAEGKGELAPAFFGGASEQPSGLSSSLAPPPATASPRASLTPGALPQTSSALVQQSAANNRTQLEGGLTVRFENAPAGLRADPPQTNQPGLAVSSRIGYRSLSAGGSNELANANANANANA
D1-35_001881239hypothetical proteinATGAGCTGGCGTGATCGTTTGCTGCCGGCGTCGTTTCGCGGCGTCGGGTTCTGGGTCGACCAGGCGAAAACCCCGATCGGTCATAAAGGCCAGTTGCATGAGTACCCGCAGCGTGACCTGCCGTATTTCGAGGGGCTCGGCCGGCAGGCACGCATCCACGAGTTGACGGCGTTCATCGTCGGCCCCGATTGCCTGGAGCAGCGCGACAAACTGCTCGCAGCCCTGGAGCAGGGCAGCGGTGAACTGGTGCATCCATGGCTGGGGCGCCTGCAGGTCAAAGTGGGCGAATGCGACATGACCCAGACCCGCCAGGACGGCGGGCTGGTCACGTTTGCCCTGAAGTTCTACCCCGACCAGCCGCTGCAGTTTCCTTCGGCGGCGATCAACAGCCAGAAACTGCTGCTGGTCTCGGCCGACAGTTTCCTCGGCTCGGCGGTGCGGCGTTTCGAAGACGCCATGAGCCTGATCAAGGCGGCGCGGATCGGCATCGCGGATCTGCGCAACAGCCTCAAGGAGGTTTATGGCGTCATCGAGCAGGAGCTCAAACCATTGATCGAGACCTATCGGCAACTCAGCGATCTGGTCAAGGCGGTCAAGGAGCTGCCCAAGGAAGTAGCGGCGGAATTCAAGGGACTGCTGGGCGACATTCGGGAGCTGAAGGATTTTGCCCGTGACGGCTATCGCGGCGTGATTGCCAGCGTGTCGCAACAGGTGGAAGCCATCCGTCAGGCAGACGCGCCCAAACTCACCACCGGCAAGGACACCACGGCGGCGGCCCAGGCGGTTGCCGATCTGGTCCAGGACACCTTGCTGGTGCAAGCGGCGCAATGGATTGCGGCGATGCCCGTGGCGGCGCCGGTGGTCAAGCTGGACGCCACTCCATCGGTGGCGCAACAGGCGGTGCAACCGGTCCAGCGCCGAGACGTGCCGGTGGCCGATGACGTGCTCGCCTTGCGCGATGCCCTCAACGAAGCCATCTGGCAGGCTTCCCTCAAGGCCGCTCCGGATCACTACCAGGCAATGAACAACCTGCGTCAGCAAATGGCCGCGCACTTGACGGCCGTGGCGTCGTCCGGTGTCCGGCTGATCAACCTGTCGTTCAAGCAAAGCCTGCCGGCGCTGGTGGTCGCGTATCAGCAATTTGCTGACGCTACCCGGGTGACCGAGGTGACCCAGCGCAATGGCGTGGCGCATCCTGGCTTCCTGCCGCCCAACGACCTGAAAGTCTCCGGGGAGTGAMSWRDRLLPASFRGVGFWVDQAKTPIGHKGQLHEYPQRDLPYFEGLGRQARIHELTAFIVGPDCLEQRDKLLAALEQGSGELVHPWLGRLQVKVGECDMTQTRQDGGLVTFALKFYPDQPLQFPSAAINSQKLLLVSADSFLGSAVRRFEDAMSLIKAARIGIADLRNSLKEVYGVIEQELKPLIETYRQLSDLVKAVKELPKEVAAEFKGLLGDIRELKDFARDGYRGVIASVSQQVEAIRQADAPKLTTGKDTTAAAQAVADLVQDTLLVQAAQWIAAMPVAAPVVKLDATPSVAQQAVQPVQRRDVPVADDVLALRDALNEAIWQASLKAAPDHYQAMNNLRQQMAAHLTAVASSGVRLINLSFKQSLPALVVAYQQFADATRVTEVTQRNGVAHPGFLPPNDLKVSGENANANANANA
D1-35_001891041hypothetical proteinATGAATGAGCTCGACAACGCTGTCACGCTCACCGTCGGCGGGCTGGATTACGGCGGCTGGAAAAGCGTGGAAATCAGTGCGGACCTGGAGCGCCAGTTCCGCACCTTCAAACTCGACATCACCTGGCAATGGCCGGGGCAGACCCAGGCGGTGCCGATTCGTCCCGGTGACGAATGCCAGGTGCGCATCGGCGCCGACCTGCTGCTCAGCGGCTACGTGTTCAAGGCGCCCATCAGCTACGACGGCCGGCAGATCAGCCTGAGCATCGAAGGCGGCTCCAAGACTCAGGACCTGGTGGACTGCGCGGCGATCAACCGCCCGACGCAATGGCGCGGGCAAACATTGCTGAGCATCGTCCAGGCGCTGGCATCGCCCTATGCCGTGGGGGTGGTCAGCGAGATCCCGGAAACCGCGCGCCTGAGCGAGCACAGCATCGTGCCTGGAGAAACGGTGTTTCAATCCATCGACCGTTTGCTGACATTGTTCCGAGTGTTCTCCACCGATGACCCGCAGGGCCGCGTGCTGCTGGCCAAGCCCGGCAGCGGTGGGCGGGCCAGCGATGTGCTGGAACTGGGCAAGAATATTCTTTCGGGCAACGCGCCGATGGACTACAGCCAGGTGTTCTCCGAATACCGGGTCATCGGCCAGCACAAAGGCAATGACCAGCAGAGCGGGGCGGCGGTGAGCGAGGTCTCGGGCACCGCCACTGACCTGGGCTTCAAGCGCAAGCGGGTGACCGTCATCAGCGAAAGCGCTCAGTTGACCCCGGCGCTGGCCCAGCAACGAGCCGACTGGGAAAGCGCGATTCGCAGCGGCCGCGCCCTGACCACCACCTACCGCGTACAGGGCTGGCGCCAGGCCAACGGCGATCTCTGGCGGCACAACACCCTGGTGCGGGTGATCGATCCGGTGCTGGGATTTGACGCTGACATGCTGATTTCCAAGGTGACCTATTCGCTGTCCGCCCAGGGTTCGATCACCACCTTGCAAGTCGCCCCGCCGCACACCTTCGACGCCAACCCGGTGCCACCCAAGGCCTGAMNELDNAVTLTVGGLDYGGWKSVEISADLERQFRTFKLDITWQWPGQTQAVPIRPGDECQVRIGADLLLSGYVFKAPISYDGRQISLSIEGGSKTQDLVDCAAINRPTQWRGQTLLSIVQALASPYAVGVVSEIPETARLSEHSIVPGETVFQSIDRLLTLFRVFSTDDPQGRVLLAKPGSGGRASDVLELGKNILSGNAPMDYSQVFSEYRVIGQHKGNDQQSGAAVSEVSGTATDLGFKRKRVTVISESAQLTPALAQQRADWESAIRSGRALTTTYRVQGWRQANGDLWRHNTLVRVIDPVLGFDADMLISKVTYSLSAQGSITTLQVAPPHTFDANPVPPKANANANANANA
D1-35_00190510hypothetical proteinATGAGCCTACTGACCCGCCTCCTGGCGCGTGGCACTGTCGTGCTCGCCCATTCGGCGAATAAATTGCAATCGCTGCAAATGCGCCTCACCGCTGGCGAAGTGAGCGACGACATGGAGCATTTCGAGCCCTATGGCTTCACCAGCAACCCGCTGGCCGGCGCCGAGGGCATCGCCACGTTCCTCGGCGGCGACCGCTCCCACGCGGTGGTGCTGGTGGTCGCCGATCGGCGCTTTCGTCTCAAGGCCCTGGCCCCGGGCGAAGTCGCGCTCTACACCGATGAAGGTGACAAGCTCCACTTCAAGCGCGGCCGGGTCATCGACATCGAGACCGCGACGCTGAACATCCGCGCCAGCAGCGCGGTGAACATCGACAGCCCCGTCATCAACCACACCGGCAGGATCGTTTCCCAGGGCGATCAGATCGCCGGCGGCATCAGTCAGATCAAGCACGTGCACGTCGGTGTACAGGCCGGCAACGGCCAGACCGGTGCGCCGGCGGGAGGCCAGTGAMSLLTRLLARGTVVLAHSANKLQSLQMRLTAGEVSDDMEHFEPYGFTSNPLAGAEGIATFLGGDRSHAVVLVVADRRFRLKALAPGEVALYTDEGDKLHFKRGRVIDIETATLNIRASSAVNIDSPVINHTGRIVSQGDQIAGGISQIKHVHVGVQAGNGQTGAPAGGQNANANANANA
D1-35_00191399hypothetical proteinATGTTCATCAGCCAGAACCTGCACGCCGCGCTGACCCGCTCGGTGCTGGTCAGCCTGTTCACCTGGCGCCGCGCCGCCGCGGGCGATGCGGTCGATGACGACGAGCGTTTCGGCTGGTGGGGCGACACCTTTCCCACGGTCGCCGACGATCGCATCGGCTCACGGCTGTGGCTGTTGCGGCGGGTCAAGCTGACCCGCCAGACCCAACTCGACGCCGAATTCTATGCCCGCGAGGCGCTGCAATGGTTGATCGATGACGGTCATTGCAGCGCCATCGACATCATCAGCGAACGCCTCGACGCCCAGCGTCTGAACCTGCGCACGGTCCTGACCCTGGCCAATGGCGAGCGCCTGGACATCAACCCCGACCACAGTTGGCAGGTGACTTATGCCGTTTGAMFISQNLHAALTRSVLVSLFTWRRAAAGDAVDDDERFGWWGDTFPTVADDRIGSRLWLLRRVKLTRQTQLDAEFYAREALQWLIDDGHCSAIDIISERLDAQRLNLRTVLTLANGERLDINPDHSWQVTYAVNANANANANA
D1-35_001921041hypothetical proteinATGCCGTTTGAAACCCCTTCGCTGCCGGTGCTGATCAAGCGCGCCCAAAGTGACCTGGCCAGCGATTCGCTGCGCCAGTCCGACGCCCAGGTCCTGGCGCGTACCCTCGGCGGCGCCGCCTATGGCCTGTATGGCTATCTGGATTGGATCGCCGAGCAGATCCTCCCGGACAAGGCCGATGAAATGACCCTGGAGCGCATCGCCGCGCTGCGCCTTAACCAGGCGCGCAAGGTCGCCCAAGTGGCCACCGGCAGCGTCAGCTTCACCGCCACGGCGGGTGCCGTGCTGGATGCCGACACGCTGCTGCAAGCGGCCGATGGCCGTACTTATAAAGTGACCACCGCGCGAACCACCAGCAATGGCCTGAACACCGCCGCCATTGCGGCACTGGAGGCCGGTAGCCTGGGCAATGCCGATGCGGGTCTGGTGCTCACGCCGGTGCAGCCGCTGTTGGGTATCGGCAACAGCTTCACCGTACTGGCGCCAGGGCTGACCGGCGGTGTCGCCCGGGAAAGCCTTGAATCCCTGCGGTCGAGGGTGATCCGTTCCTATCGGGTCATCCCTCACGGCGGTTCGGCCCAGGACTACGAGACCTGGGCTCTGGAGTTTCCCGGCGTTACCCGCGCCTGGTGTCGCGGCAGTTATCTGGGGCCGGGGACCGTCGGCCTGTTCGTGATGCGCGACGACGATCCGCAACCGATCCCCAACGCCGAGCAACTGGAGGAAGTGCGGGCCTACATCGAGCCCTTGCGCCCGGTGACCGCCGAACTGCATGTGCTGGCCCCGACCCAGGTGCCGGTGAACTACAAGCTGCGCATCACCCCGGACACCAGCGCCGTGCGCGCCGCCATCGAGGCCCAGTTGCGCGACCTGCATAACCGCGAAGCCGGCCTCGGCGAAACGCTGTTGCTGAGTCATATCGCCGAAGCGATCAGCAGCGCCACCGGCGAAACCGACCACAAGCTCAGCGCACCCGCCGCCGATGTCGTCGCCGCCAGCAACCAGTTGCTGACCTTCGGAGGCTGCACATGGCTGGGATAAMPFETPSLPVLIKRAQSDLASDSLRQSDAQVLARTLGGAAYGLYGYLDWIAEQILPDKADEMTLERIAALRLNQARKVAQVATGSVSFTATAGAVLDADTLLQAADGRTYKVTTARTTSNGLNTAAIAALEAGSLGNADAGLVLTPVQPLLGIGNSFTVLAPGLTGGVARESLESLRSRVIRSYRVIPHGGSAQDYETWALEFPGVTRAWCRGSYLGPGTVGLFVMRDDDPQPIPNAEQLEEVRAYIEPLRPVTAELHVLAPTQVPVNYKLRITPDTSAVRAAIEAQLRDLHNREAGLGETLLLSHIAEAISSATGETDHKLSAPAADVVAASNQLLTFGGCTWLGNANANANANA
D1-35_00193600hypothetical proteinATGGCTGGGATAAGAACCGTCGAACAATACCAGGCCCAACTGCGCAGCCTGCTGCCCAGCGGCCCGGCGTGGGACCCGGAGCGCGTGCCGGAACTGGACGAAGTGCTGCAAGGCATCGCCCAGGAGCTGGCGCGCCTGGATGCCCGCGCCGCCGACCTGCTCAACGAGATGGACCCGGCGGGAGTGAGCGAGCTGGTGCCGGATTGGGAACGGGTGATGGAGCTGCCGGATCCGTGCCTTGGCGCCACGCCGCTGTATGACGATCGCCGTCTGGCGGTGCGACGGCGGTTGCTGGCGGTGGGCAGCCAGGCCATCGCCTATTACGTGGAAATCGCCAGGAGCCAGGGCTACCCCAACGCAACGATTACCGAACTCAAGGCGCCGCGCATGGGCCGCGCACGGTTTGGCGAAGCGCACTTCGGAACGTGGCAGGCGCAGTTCATGTGGACCCTCAACACCGGCGGCCGGCTGCTGCTGGGACGGCGCTTTGGTGCGAGCTATTGGGGCGAACGTTTTGGCGTCAATCCGGGGTCGGCGCTGGAGTGTCTTATTCACCGCAGTGCACCGGCGTATACCAAGGTTCACATCAACTATGACTAGMAGIRTVEQYQAQLRSLLPSGPAWDPERVPELDEVLQGIAQELARLDARAADLLNEMDPAGVSELVPDWERVMELPDPCLGATPLYDDRRLAVRRRLLAVGSQAIAYYVEIARSQGYPNATITELKAPRMGRARFGEAHFGTWQAQFMWTLNTGGRLLLGRRFGASYWGERFGVNPGSALECLIHRSAPAYTKVHINYDNANANANANA
D1-35_001941155hypothetical proteinATGGATTATCCGAAAAGTGTACCCAGCGCCGGCTTGGTGAATGGGAGGTTCGTCGATGAAAACCCGTTGACCGGGACGCCGGGATCGTTGATTCCGGCGGATTGGGGGAATGGGGTGACGCAGGAGATCGTGAATGTCATCAAGGCGGGAGATCTGACGCCGGATGAAACCCGCAGCGATCAATTGCTCGCGGCGATTCGGACGGTAACCGCCAAGGGCTGGAACCAGGACTTCGCTCTGCCGATCACAGCGTTGCCGCTGCCGACGATTGCCACGGCGGACAACCGTTTGGCCGTCACTCCAGCAGCGCTGCCCACCAGTGGCGGACGTGTCTCGATTCCGGCGGGTGTGTACGTCAGCATCGGGCAAGAGGTGGTAGCAGGACGGTTGGGGCGGACACGTACCTACGTGACGACGGCCTGGAGCAGCGCCGATCTGTTGCCCAGCGCCAGTTATTTTTTAAGAGCGCAGGTAGTCGGTGATGCGCTGACGTTCTATGTGCAGCGGGGAAGCCTGTATGACCTTGCTCCGGAATCCCTGAAAGGCACCGTCAACGGAACGGCAGGCGGTGGGTTCCCATCGACCCCCCTGGACATGTGCCTGGCCTGGGTGGTGACCGGGACGCCTGGCTCCCTGCCGACGATCCGCACGATTTATAACCGTACTCAATTGACCTGGACGCAAACGGTAAATGGCACCGGGGTGGTGTATCTGCCGCTGGATCCGCATGCGCGTGCGGCGCGGCTTGTGGCGGGTAATCCCACCCCAGCCTCGAACGTCGTGACCACGCTGTCGTTTGTTCAGTCCGGATGGCTTGGCGGCAACTACAGCTATCTGTCGCCCGCCGCGACTAGCCCCGGCAACAATGCGGTGGGTTGGGCGAGCCCGTCAATGTGCGTGCTGTTCTCCAATAACGTCGCCAATGACGTGACCGTTTCCACGGTCACGGCCAGTTTCGACCATTCCCAGTTACGTTCGCTTTGGCAGTGCTATCAGGCCGAGCACACATTGGGTGCGACCACTGCAGACAGCGACGAGTTGCTGTTGAGCATGGGAATCAAGGGGCACCAAGCGCTGACAGATTACAGCGTGGGCATCGGCATCAACTTTATCAACGCAGTCAATGCTCACCTGTCCTGGGAGTTGATCCGATGAMDYPKSVPSAGLVNGRFVDENPLTGTPGSLIPADWGNGVTQEIVNVIKAGDLTPDETRSDQLLAAIRTVTAKGWNQDFALPITALPLPTIATADNRLAVTPAALPTSGGRVSIPAGVYVSIGQEVVAGRLGRTRTYVTTAWSSADLLPSASYFLRAQVVGDALTFYVQRGSLYDLAPESLKGTVNGTAGGGFPSTPLDMCLAWVVTGTPGSLPTIRTIYNRTQLTWTQTVNGTGVVYLPLDPHARAARLVAGNPTPASNVVTTLSFVQSGWLGGNYSYLSPAATSPGNNAVGWASPSMCVLFSNNVANDVTVSTVTASFDHSQLRSLWQCYQAEHTLGATTADSDELLLSMGIKGHQALTDYSVGIGINFINAVNAHLSWELIRNANANANANA
D1-35_00195510hypothetical proteinATGAAAGTCATTCAAGAGCTGCACCAGTACGAAGATGGGCTTCGCCCGCCTGCGCCTTCCTCCGCTCATATCTGGGTGGACGATACCTGGGTGCTTACCGAAGAGAATGCAGCCGAGCACCTCAGCCTGGAGGCCGAACGCCTTTGCGAAAAGATCGATGCCGCTGCCGACAGCGCCCGTCGCGTTTTGGCCGGTGATCCGTTACGGGCCCTGGAATATCAACAAGCGGCCCTTGAAGCGCAGGCGTTCAAGGATCAGGGCTACCCGAAAAAAGCTGTTCCGTTGTCGGTTTCTGCCTGGGTCGTCAAGGGCCGCACAGCCAGGCAGGCAGCGGACCAGATTCTCGCCAAGGCCGCTGAATTCGACGCGAACCTGCTGACGCTTCGCGAGCTGCGCCTCAAGGCCAAGGCGCAGATTCGCGCGCACGTAGCCAAGGGCAAAGCCGAACTCGCCACTAAAACCGCCGATGACGCGCTCGCAGCCATCCGGACGCTACGCCTTCGGGCTTGAMKVIQELHQYEDGLRPPAPSSAHIWVDDTWVLTEENAAEHLSLEAERLCEKIDAAADSARRVLAGDPLRALEYQQAALEAQAFKDQGYPKKAVPLSVSAWVVKGRTARQAADQILAKAAEFDANLLTLRELRLKAKAQIRAHVAKGKAELATKTADDALAAIRTLRLRANANANANANA
D1-35_001961095hypothetical proteinATGGATTATCCAAAAAGTGTTCCCAGCGTGGGGCTGGTGGACGGTCGGTTCGTGGATGAAAATCCTGTCGAAGGCTCGCCGGGATCCTTGATTCCGGCTGTGTGGGGTAACAGCGTTACCCAGGAAATCCTCGGTGTGATTTCTGGCGCCGATATCGCGCCCTCCGAAGCGGACACCAATCAGCTCTTCAAAGCTATTCAGAAGATCATCGGTATGACCAACCCCATGCGTTCGGTAATCACGCGGTTGGCCCTGTCGAAAACGCTGACGGCAAATGAGCTTGGCCTTGTATTGATTGACGCCAACGCTGGCGCTACGACCATCGGGTTACCCTCGGCCAACGCTGCGCTGGGTGTTCGAGACGTCGTCATTCGGCGTCTGGACAACAGCGGCAATCGTCTTGTGGTTCAGGCCGGCGGGGCTGATCGGATCAGATTTCACACCCATCTTTCGGCCGCTGGCTATCCATTTCTCGTGCTGATGGGCAGTGGTGACTGGTGGCATCTACGTAGTGACGGTGCCGGCAGTTGGTGGCCAATGGGAAGGTTTGACAACACAGCTTTGGGGCGGCCGTTTTTTGAAACAACTATCCAACTCAGCCCGGGTGGTTACGGTGCGCTAAACGGCACGGTCATGAAACGTGCTGAGTGGCCCTGGCTGTGGGATCACGCCCAACAGTCCGGAATGCTCGGCACCGAGGCCACTCGGGAAGGCAGTGAAGGCAAATGGAGTTCTGGTGATGGTGTTCTCACTTTCCGAGCCCCGGAAGGACGAGGTGAATTCTTGCGGATCTTGGACGAAGGGCGCTCCGTGGATCCTGGACGGGCGATGGGGGCCTTTCAAGCCGGCACTGTTCACTCCTATGCGTTGGGGGGACAAGGGGCTGGTGCGGTTGGATCAAGATGGTCCGACAGCCTTACCGGATTCGGTGCCAACACCCGTGAGGAAATCAAAATCATCGGAGACCTTGTAAACGGTGGTCCGATATTTCCTACCGGGACCAGTTTCCAGGTAGATACGGCCAACACGTTGCTCTACTCATTCAAATCGCGCCCGCGCAATGTCGCTTATCCGGCGCGGATCAAACTCATCTGAMDYPKSVPSVGLVDGRFVDENPVEGSPGSLIPAVWGNSVTQEILGVISGADIAPSEADTNQLFKAIQKIIGMTNPMRSVITRLALSKTLTANELGLVLIDANAGATTIGLPSANAALGVRDVVIRRLDNSGNRLVVQAGGADRIRFHTHLSAAGYPFLVLMGSGDWWHLRSDGAGSWWPMGRFDNTALGRPFFETTIQLSPGGYGALNGTVMKRAEWPWLWDHAQQSGMLGTEATREGSEGKWSSGDGVLTFRAPEGRGEFLRILDEGRSVDPGRAMGAFQAGTVHSYALGGQGAGAVGSRWSDSLTGFGANTREEIKIIGDLVNGGPIFPTGTSFQVDTANTLLYSFKSRPRNVAYPARIKLINANANANANA
D1-35_00197561hypothetical proteinGTGTTTTATTATCTTTTCGATAAAGCCGGCGCGTTGTCCGGACCCGTGGAGTTTCCCGTAACGCCAGGTATTGGCGTTCAGATCCCCAGTAATGCGGTGGCAATTTCCTTTGAACTACCCCCTCCGGAAGGTGGCCGCACGTGGGCGCTGGTGAGCAATGTGCCCCGAGAGGTTATTGACCGTCGCGGCTTGGTCTACCGCAAGAAAGACGGCGGCCAGCAGATTTGGAACGAACTGGGGGAATTGCCGGAAGCGTTCACAACCGAGCCATGGCCAGGTAATTACCATACCTGGAAAAATCACACTTGGGAGTTCGACGTTGACTTGCAGTTGAGCGACATCACTGGCCAGGTTCTGGCCCAACGGGATGCGCTTCTGCGCGACGCAATGTTGCGTATAGCCCCGCTTCAGTACGCCGAGGACATCGGCGACGCCAGCGACCAGGAACAACTGGCCCTGATGGAGTGGAAGCTTTATAGCGTCGAGTTGAATCGCATCCAGCATCAAGCCGGTTTTCCAGCCGCTATCACTTGGCCTGTCCTGCCCGAGCCTGCTCTTTAAMFYYLFDKAGALSGPVEFPVTPGIGVQIPSNAVAISFELPPPEGGRTWALVSNVPREVIDRRGLVYRKKDGGQQIWNELGELPEAFTTEPWPGNYHTWKNHTWEFDVDLQLSDITGQVLAQRDALLRDAMLRIAPLQYAEDIGDASDQEQLALMEWKLYSVELNRIQHQAGFPAAITWPVLPEPALNANANANANA
D1-35_00198912hypothetical proteinGTGGACTATCCAAAAAGTGTGCCCAGCGCAGGTCTATCGAACGGCAGGTTCGTGGATGAAGATCCTTTGGCGGGAACGCCGGGATCCTTGATTCCCGCCAGTTGGGGCAATGGTGTAACGCTGGAGTTGCTTAATGTTATACAAGCCGCGGGCATAGCTCCGTCGGAGGTCGTCTATAACCAGCTGCTTACAGCCTTACGGGGGAGCGGGCTGTTTCTGACTGCGGCGCAATTCGATAACAGCAGGGCCGCCGCGACGACTGGATACGTAAACCGTACAGGGGTGCAGTATTCCAGATTCGATGTCTACAATAGCAGTGCCACTTTAACAGCATCGGATGTTGGCGGAGTTGCCAGTTTCGCCAGCAATACACCGGTAACCGCCAGACTGCCGGCGACCGCGGAAATCATACAGGGCGCGACTGTAAAGATTGTCAATGCAGGATCGGGCATCGTTACGGTTTCGACGGCATCCGCTATCGATGTGCTGTGCGCTTCGAATGGTGCTCAAGGAACCATCAGTATCGGCCTCGGCGAAACGGCGGAATTCATCAAGTTAAATAATCAATGGCGTCTCGTTGGCGGTAATGTGGCGTTGAAATATTCGGCTATGTCCGCTTCGTCATTGCAACCCAATGGTTGGAAACGAACGCCTGATGCAACAAGTCCGACGGGATATGTTATCGAACAATGGGGCGTTGCCTCCAGCGGAGCGGATGCCAACGGCGTTCTTGTGACGTTCCCCATGTCCTTTCCTAATGCCGTTAGAAACATCGTGGTGACGGATGGCGGTCCCACTTGCGCATGTTTTGGAGTTTCCACCGGCTCGCTGAGCCAGTTCAGGCTTTATGGGCGCGATTATAATGGCGCTTATTCAAGTTGGACCGGGATGTGGCGCGCGATAGGTTATTGAMDYPKSVPSAGLSNGRFVDEDPLAGTPGSLIPASWGNGVTLELLNVIQAAGIAPSEVVYNQLLTALRGSGLFLTAAQFDNSRAAATTGYVNRTGVQYSRFDVYNSSATLTASDVGGVASFASNTPVTARLPATAEIIQGATVKIVNAGSGIVTVSTASAIDVLCASNGAQGTISIGLGETAEFIKLNNQWRLVGGNVALKYSAMSASSLQPNGWKRTPDATSPTGYVIEQWGVASSGADANGVLVTFPMSFPNAVRNIVVTDGGPTCACFGVSTGSLSQFRLYGRDYNGAYSSWTGMWRAIGYNANANANANA
D1-35_00199432hypothetical proteinATGATGATTTATTATGCTCAATCCACCGGCGGGTTCTACAACTCCATCGATCATTCCGGCAGGCTTCCTGAAGATGCAGTCAAGATCAGCGATGAAGAATATGGAGCGTTATTTGCCGCTCCTTTCCTGAACAAACGTATCGAGTCGGACGCCAAAGGCCGTCCGGTGCTCTTGGAGCTGTCCATTGATGAACTCACGGTGCGAATGGCCAGTGAAAAGAAATGGCGCGATGATCAACTCACCGCAACCGACCGCCTCATAGCGCGCGATCGCGACGAGATGGACGATGGCGGCGGCACGACGCTGGACCAGGCGCAGTACACGCAGTTGCAGGCTTATCGCCGGGCCCTTAGGGAATGGCCACAGGACGAGTACTTTCCAGCCGCCGAACACCGTCCGGCCGCGCCGTCCTGGCTGGCCGGGCAGCTTTGAMMIYYAQSTGGFYNSIDHSGRLPEDAVKISDEEYGALFAAPFLNKRIESDAKGRPVLLELSIDELTVRMASEKKWRDDQLTATDRLIARDRDEMDDGGGTTLDQAQYTQLQAYRRALREWPQDEYFPAAEHRPAAPSWLAGQLNANANANANA
D1-35_00200564hypothetical proteinATGGACCTTACGCAACAGCAACTCATCAAGATCATGCCCGACGCCCGCGCCCAAGCGGGCGTTTTTATTCCAGCGTTGAACACCGCGATGTCTCGTTACCGCATTGACACTCCCAAGCGCATCGCCGCATTTCTGGCCCAGGTCGGTCACGAATCGGGGCAGTTGCGTTATGTACGAGAGCTGGGCAGCGAGCAATACCTGAGCAAATACGACACCGGAACCCTGGCCGTTCGCCTGGGCAACTCGACCCAGCCCGACGGTGACGGTCAGAAATATCGCGGCCGGGGCTTGATCCAGATTACCGGCCACGACAATTACCTTCGTTGCAGCCTGGGGCTGTTCGGCGACGAACGTTTGCTGGCCTTGCCCGAACTGCTCGAACAACCGCAATGGGCGGCGCAATCCGCCGCCTGGTTCTGGGCGCAGAACGGCCTGAACGAGCTGGCTGATCGTGACCAGTTCAACAGTATTACCCGCCGCATCAATGGCGGCCTGAATGGCTTGCAGGATCGCTTGCAACTCTGGGCGCGGGCGAGGGATGTGTTATGCCAACCTTCAGCCTGAMDLTQQQLIKIMPDARAQAGVFIPALNTAMSRYRIDTPKRIAAFLAQVGHESGQLRYVRELGSEQYLSKYDTGTLAVRLGNSTQPDGDGQKYRGRGLIQITGHDNYLRCSLGLFGDERLLALPELLEQPQWAAQSAAWFWAQNGLNELADRDQFNSITRRINGGLNGLQDRLQLWARARDVLCQPSAPGPT0012140_624DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSFUNGICIDAL_COMPOUNDS|ANTIBIOTICSFUNGICIDAL-CHITINOLYTIC_ACTIVITIES,PGPT0012140-putative_chitinase-K03791NANA
D1-35_00201537hypothetical proteinATGCCAACCTTCAGCCTGATGCCGTTTTCCTGCCGTACGCTAGGTGTCGTTGTATTAGTGGCGCTGCTGATCGGTGGTCCAGCCATGTTGGCGTGGCGGCTCCAGGAGTGGCGGTACGGCAGGCAACTGGCGCAACTGGCGCAGTCGCAGTCCGAGACGCTCAATAGAATGACCCAGGCGGCAGCGAAGCAGCAAAAGACCGAACAGGACAAACGCCTCGCCCTGGAACAGCAACTCTCCGCCAGCGAACAAACCCACTACCGAGCCTTGAGCGATGCCCAACGTGATCAGGATCGCCTGCGCGATCGCCTTGCTACTGCCGATGTCCGGCTGTCAGTCCTCCTCGACGCCGACGATGTTGCCGCCGGTTGTGCAATGCCTGCCGCCACCGGCGCCAGCGGCATGGATCATGGCGCCCCACGCGCCCGACTTGACCCGGCGCATGCTCAACGAATTATCGCCATCACCGACGAGGGCGACCGTGGACTGATCGCCCTGCAGGCCTGCCAGGCTTATGTGAGAGCGCTGGCCCGGTAAMPTFSLMPFSCRTLGVVVLVALLIGGPAMLAWRLQEWRYGRQLAQLAQSQSETLNRMTQAAAKQQKTEQDKRLALEQQLSASEQTHYRALSDAQRDQDRLRDRLATADVRLSVLLDADDVAAGCAMPAATGASGMDHGAPRARLDPAHAQRIIAITDEGDRGLIALQACQAYVRALARNANANANANA
D1-35_00202501pncC_1COG1546Nicotinamide-nucleotide amidohydrolase PncCATGGATGACATTACCGGACTGGCCGCTGAGTTGGGCAGGCGCTTGCAGGTGCTCAATGCCCATGTCACTACCGCCGAATCCTGTACCGGTGGCGGGATTGCCGAGGCGATCACGCGGATCCCGGGGAGTTCGGCCTGGTTCGAAGCCGGTTACGTCACCTATTCCAATCGCCAGAAAACCCAGCAGTTGGGTGTGCCCCCCGAATTGTTCGACAAGGTCGGCGCGGTCAGCCGCGAGGTGGTGGAGGCGATGGCGCGGGGCGCCCAGCAGAAAAGCCTGGCGCGTTTCGCCGTGGCGGTCAGCGGCGTGGCCGGGCCGGACGGAGGCTCGCCGAGCAAGCCGGTGGGCACCGTATGGCTCGCCTGGGGCGTTGGCGAGGCGGTGTTCAGCGAGCGGCGCTTCTTTCCAAGCAATCGCGACGAGGTCCGCCGACAAACGGTGAAGGCCGCGCTAGACGGGCTGTTACAACATGCCGCCACAGAAATCTCAAATCAGGGGTAGMDDITGLAAELGRRLQVLNAHVTTAESCTGGGIAEAITRIPGSSAWFEAGYVTYSNRQKTQQLGVPPELFDKVGAVSREVVEAMARGAQQKSLARFAVAVSGVAGPDGGSPSKPVGTVWLAWGVGEAVFSERRFFPSNRDEVRRQTVKAALDGLLQHAATEISNQGPGPT0013460_1682DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013460-pncC2-K03743NANA
D1-35_002031053recACOG0468Protein RecAATGGACGACAACAAGAAGAAAGCCTTGGCTGCGGCCTTGGGTCAGATCGAACGTCAATTCGGCAAAGGTGCCGTAATGCGTATGGGCGATCAGGACCGCCAGGCTATTCCTTCCATCTCTACCGGATCGCTGGGCCTGGACATCGCGCTTGGCATCGGCGGCTTGCCAAAAGGTCGTATTGTTGAAATCTACGGTCCTGAATCCTCCGGTAAAACCACGCTGACTCTGTCCGTGATCGCCCAGGCTCAAAAAGCCGGTGCGACCTGCGCCTTCGTCGACGCCGAACACGCTCTGGACCCGGAATACGCCGGCAAGCTGGGCGTCAACGTCGATGACCTGCTGGTTTCCCAGCCGGACACTGGCGAACAGGCCCTGGAAATCACCGACATGCTGGTGCGCTCCAACGCGGTTGACGTGATCATCGTCGACTCCGTAGCGGCACTGGTACCCAAAGCGGAAATCGAAGGTGAAATGGGCGACATGCACGTGGGCCTCCAGGCTCGCCTGATGTCCCAGGCCCTGCGCAAGATCACCGGTAACATCAAGAATGCCAACTGCCTGGTGATTTTCATCAACCAGATCCGCATGAAAATTGGCGTGATGTTCGGCAGTCCTGAAACCACCACCGGTGGTAACGCGCTGAAGTTCTACGCCTCGGTTCGCCTGGACATCCGTCGTACCGGCGCGGTGAAAGAAGGTGATGAGGTTGTCGGCAGTGAAACCCGCGTCAAGGTCGTGAAAAACAAGGTGGCATCGCCGTTCCGTCAGGCCGAATTCCAGATCCTGTACGGCAAGGGCATCTACCTCAACGGCGAGATGATCGACCTGGGTGTGCTGCACGGTTTCGTCGAGAAATCCGGCGCCTGGTATGCCTACAACGGTACCAAGATCGGTCAGGGCAAGGCCAACTCGGCCAAGTTCCTGGCGGACAATCCGGAAGTCGCGGCAACTCTCGAGAAGCAACTGCGCGACAAACTGTTGAGCCCGGTTGCAGACGTCAAGGCCGTGGCCAACCGCGAGACTGCAGACGATCTGGCTGACGCTGACATCTGAMDDNKKKALAAALGQIERQFGKGAVMRMGDQDRQAIPSISTGSLGLDIALGIGGLPKGRIVEIYGPESSGKTTLTLSVIAQAQKAGATCAFVDAEHALDPEYAGKLGVNVDDLLVSQPDTGEQALEITDMLVRSNAVDVIIVDSVAALVPKAEIEGEMGDMHVGLQARLMSQALRKITGNIKNANCLVIFINQIRMKIGVMFGSPETTTGGNALKFYASVRLDIRRTGAVKEGDEVVGSETRVKVVKNKVASPFRQAEFQILYGKGIYLNGEMIDLGVLHGFVEKSGAWYAYNGTKIGQGKANSAKFLADNPEVAATLEKQLRDKLLSPVADVKAVANRETADDLADADIPGPT0007235_2939DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0007235-recA-K03553NANA
D1-35_00204468recXCOG2137Regulatory protein RecXATGACCGCCGTACTCGATACCCTCGTCGCAGTGCGGCGAACCGCAATGGACCTGCTCGCCAGACGCGAGCACGGTCGAGTCGAGCTGACGCGTAAACTGCGCCAGCGCGGCGCCTCTGATGAATTGATCGACACAGCCCTGGACCGCTTGACGGAAGAGGGGCTGTTGTCGGAATCGCGCTACCTTGAAAGCTTTGTCTCCTATCGCGCCCGCTCTGGTTATGGCCCGATGCGAATTCGCGAAGAACTTGGCCAGCGCGGCTTGCAACGACCGGATATCGAACTTGCCTTGCGTGAAAGCGGTATCGATTGGCAGGAACAGTTAATCGATACCTGGCGTCGCAAGTTCTCAGGGCATCTGCCCATTGATGCGAAGGAACGGGCCAGGCAAGGGCGTTTCCTGGCGTATCGAGGATACTCCATGGAAATGATCAATCGGCTGTTCAGCGGTCGTAGCATGGATGACTAGMTAVLDTLVAVRRTAMDLLARREHGRVELTRKLRQRGASDELIDTALDRLTEEGLLSESRYLESFVSYRARSGYGPMRIREELGQRGLQRPDIELALRESGIDWQEQLIDTWRRKFSGHLPIDAKERARQGRFLAYRGYSMEMINRLFSGRSMDDPGPT0007240_3082DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007240-recX-K03565NANA
D1-35_002051119hypothetical proteinATGCCTTACAAACCGAATGACCTGCTCAGTCGGCATTTTGAGAACCATGGCCACGACCTCACCCGCAAGGTCGAAGAGCAACTCAACCTGGTATCACCCAACAGTCCCAATCTCCCCATTTACCGCGACATGATCCTTACCGTGCTGCGCATGGCCCAGGAAGATCACAACCGCTGGAACGCCAAAATCACGCTGCAAGCACTGCGCGAACTGGAACATGCCTTCCGCACCCTCGAACAATTCAAGGGCCGTCGCAAAGTCACGGTCTTTGGCTCGGCCCGAACGCCCATCGAGCATCCGCTGTATGGCTTGGCGCGAAAACTGGGGGCGGCGCTGGCCCGGTCGGACATGATGGTCATCACCGGCGCAGGCGGAGGCATCATGGCCGCCGCCCATGAAGGCGCAGGCCGCGAGCACAGCCTGGGTTTCAACATCACCCTCCCCTTCGAACAACATGCGAACCCGACCGTTGAAGGCACGCAGAACCTCCTCCCGTTCCATTTCTTCTTCACCCGCAAGCTGTTCTTCGTCAAGGAAGCAGACGCGTTAGTGCTCTGCCCAGGTGGTTTCGGCACCCTTGATGAAGCATTGGAAGTCTTGACGCTGGTGCAGACAGGCAAGAGCCCATTGGTGCCGATAGTGTTGCTGGATGTGCCGGGAGGTAAATTCTGGCAGAGCGCCCTGGATTTCATTCATGAACAATTGGGAGAAAACCGCTACATCCTGCCCACCGACATGAAGTTGATGCGCCTGGTGTACACCGCCGAGGATGCGGTGGAAGAAATCAATCAGTTCTATCGCAACTTCCACTCCAGCCGCTGGCTCAAGCATCAGTTCGTGATCCGCATGAATCATGCGCTCACCGAACAGGCGATGCAGCAGATGCAGGTCCAATTTGCCGATCTATGCCTGAACGACTGCTTCCATCAGCATGCCTACAGCGGCGAGGAGCCGGAGGAGGCGCCTTTCAGCCACCTGACGCGCCTGGCATTCACCTTCAACGCCCGCGATCACGGTCGACTTAGAGAACTGGTGGACTATATCAACCTGCCGGAAAACTGGGCCCAGCCTGCCGCCCAACCCCACCCGCTGACCTGGGAACCAATCGAGGTGACTTGAMPYKPNDLLSRHFENHGHDLTRKVEEQLNLVSPNSPNLPIYRDMILTVLRMAQEDHNRWNAKITLQALRELEHAFRTLEQFKGRRKVTVFGSARTPIEHPLYGLARKLGAALARSDMMVITGAGGGIMAAAHEGAGREHSLGFNITLPFEQHANPTVEGTQNLLPFHFFFTRKLFFVKEADALVLCPGGFGTLDEALEVLTLVQTGKSPLVPIVLLDVPGGKFWQSALDFIHEQLGENRYILPTDMKLMRLVYTAEDAVEEINQFYRNFHSSRWLKHQFVIRMNHALTEQAMQQMQVQFADLCLNDCFHQHAYSGEEPEEAPFSHLTRLAFTFNARDHGRLRELVDYINLPENWAQPAAQPHPLTWEPIEVTNANANANANA
D1-35_00206195hypothetical proteinATGACCAGGGTAACTCTGGAACTCGACAAGCAGTTGTACCTGATGCTGTTGGAAGCGGCTCAGGCCAATCAGGTGAGCCTTGAAGAGGAGTGCTGCCGTCGGCTGGAGGGCAGGGAATGGCGCTCGCGCTATTTGCAGGCGCTGGTGGCGGAACTGCGCGCCGACGATGAGCAGCGGCGCGCCAGCTCGGGTTGAMTRVTLELDKQLYLMLLEAAQANQVSLEEECCRRLEGREWRSRYLQALVAELRADDEQRRASSGNANANANANA
D1-35_00207423hypothetical proteinATGCTGCGCCTTATCGTCCCAACCGTTGCCGTTCTGCTGGCGACGTCCATCAGCGCTCAGGCCGCGTCGCTGAAAGAACTCGAACTGAACAAGATGCTGCAGAACGTGGCCACGCAAAGCAGCGTCGGCACTCCGCGTGCCATCAACGAAGACATTCTCGACCAGGGTTATACCGTCGAAGGCACCGAGCTGATCAACCATCTCAGCGTGCAAAGCAGCCACGCCCAGAAAATGCGCGCCGACCCCAAGGCGGTCTACTTCCAGCTGGGCTCCACGGTGTGCACCAACCCAGGCTTTCGCAAGTTGATGGCCAAGGGCGCAACCATGCGTTACGAATTCACCGAAGTTAAGACCAATCGTCCGGTCGCCACCGAACGCTTCCAGGAATCGGACTGCCCGAAACCGGCCAAGACCAAGAAATAAMLRLIVPTVAVLLATSISAQAASLKELELNKMLQNVATQSSVGTPRAINEDILDQGYTVEGTELINHLSVQSSHAQKMRADPKAVYFQLGSTVCTNPGFRKLMAKGATMRYEFTEVKTNRPVATERFQESDCPKPAKTKKNANANANANA
D1-35_00208747hypothetical proteinATGATCCATGCCCCCAACGCCGTAGCCCGCCTGCGCGACCAGCGCGTCGACGAGGGCATCAAGCCGCTCCAGGCCCGTGGCTGGCGCGCGCCTCGTTGTAGCGCGTGTCGGGTGATCGAAAGCCATTGCCTGTGTGCCTGGCGCCCGAGCGTCGAGACCCGTTCCGGGGTCTGCCTGATCATGACCAACAAAGAAGTCTTCAAGCCGAGCAATACCGGTTGGCTGATCGCCGATGTGGTGCGCGACAACCATGCCTTCATCTGGTCGCGTACCGAGGTCGACGGGCAATTGCTGGCTTTGCTGAATGACCCGCAATGGCAGCCTTATCTGGTGTTTCCAGGCGAGTATGTCGAACCGTCCCGTGTCACCCACACGGTGGCGCTCGATCAGGGCAAGCGTCCGTTGTTCATTCTGCTGGACGCGACCTGGACGGAAGCGCGCAAGATGTTTCGTAAAAGCCCGTATTTCGACCGATTGCCCATTCTGAGCCTGTTGCCCGACAAGTTGTCTCGTTATCGCTTGCGTCGCTCGACCCGCAGCGAACACCTGTGTACCGCCGAAGTGGCGGCGCTGTGCCTGGAACTGGCGGGGGACAGCGACGCGGCGTCGGCCCTGGACGCCTATTTCGATGTGTTCAGCCAGCATTACCTCGGCGCCAAGCGCCAGCAGGAGGTGAACGAGTCCACGCCGGCCCATGCCGAGCTGCAACCCTTCGTTCGCGCGGCTCCTGCGCTGTTGGCCGAGTAGMIHAPNAVARLRDQRVDEGIKPLQARGWRAPRCSACRVIESHCLCAWRPSVETRSGVCLIMTNKEVFKPSNTGWLIADVVRDNHAFIWSRTEVDGQLLALLNDPQWQPYLVFPGEYVEPSRVTHTVALDQGKRPLFILLDATWTEARKMFRKSPYFDRLPILSLLPDKLSRYRLRRSTRSEHLCTAEVAALCLELAGDSDAASALDAYFDVFSQHYLGAKRQQEVNESTPAHAELQPFVRAAPALLAENANANANANA
D1-35_00209654lnrKCOG2197Transcriptional regulatory protein LnrKATGGCCACATACGAAATCCTGATTGCCGATGACCACCCGCTTTTTCGCAGCGCGTTGCATCAGGCAGTGACCCTGGGCCTTGGCTCGGATGTCCGGTTGACGGAGGTGGCCAGCATCGCGGAACTGGAAAGCCGATTGGCTGAAAAGGCCGACTGGGACCTGGTGCTGCTGGATCTGAACATGCCCGGTGCGTATGGTTTTTCTGGCCTCGTGCTGTTGCGTGGGCAATACCCGCAAATTCCGGTGGTGATGGTCTCGGCCCAGGAAGAGGCCTCGGTGATGGTCAAGGCCCGCGAGTTCGGCGCCAGCGGGTTCATCCCCAAGTCCAGTTCCCTGGAAATGATTCAAAGAGCGGTGAAGGCCGTCCTTGATGGCGATGTATCCTGGCCGCCCCAGGCGTTCGAGGCGGTGAGTGTTTCCGCGGAAGCCAAGGCCGCCAGCGAAGGGCTGGCCAGCCTCACGCCGCAGCAATTCCGGGTGCTGACCATGGTCTGCGAAGGCCTGCTGAACAAGCAGATTGCCTATGAGCTGAATGTGTCCGAGGCGACTATCAAGGCCCACGTTACGGCGATCTTTCGTAAACTCAACGTGCGCACCCGGACGCAGGCGGCCTTGTTGCTGCAACAACTCGAGTCAATTTCGCCGCAGTCGTAGMATYEILIADDHPLFRSALHQAVTLGLGSDVRLTEVASIAELESRLAEKADWDLVLLDLNMPGAYGFSGLVLLRGQYPQIPVVMVSAQEEASVMVKAREFGASGFIPKSSSLEMIQRAVKAVLDGDVSWPPQAFEAVSVSAEAKAASEGLASLTPQQFRVLTMVCEGLLNKQIAYELNVSEATIKAHVTAIFRKLNVRTRTQAALLLQQLESISPQSNANANANANA
D1-35_00210363dgkACOG0818Diacylglycerol kinaseATGTCACCTTTTAAAGGCCAAACCGGCCTGAAACGCATCCTCAATGCCTCCGGCTATTCCCTGGACGGCCTGCGTGCGGCGTTCGTTGGCGAAGCCGCTTTCCGTCAACTGGTGCTGCTCAATGTCATCCTGATTCCGCTGTCGTTCTTCCTTAACGTCAGCCGCGTCGAGCAGGCCTTGCTGATCGCGGTGTGCCTGCTGGCCCTGATCGTGGAGTTGCTGAACTCCGCGGTGGAAGCGGCCATCGACCGCATTTCCCTGGAGCTGCACCCACTGTCGAAAAATGCCAAGGACATGGGCAGCGCCGCCCAGTTGGTCGCCCTGACGATGATCGCGTTGGTTTGGGGCCTGATACTGCTCTGAMSPFKGQTGLKRILNASGYSLDGLRAAFVGEAAFRQLVLLNVILIPLSFFLNVSRVEQALLIAVCLLALIVELLNSAVEAAIDRISLELHPLSKNAKDMGSAAQLVALTMIALVWGLILLPGPT0024340_4724DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0024340-dgkA|DGK-K00901NANA
D1-35_00211987cmpR_1HTH-type transcriptional activator CmpRATGGCGGCGACAATATCTGTTAAATGGATTATTAAGATAAGGGTTATCGGTTATATCGATATGCGATTTACTCTACGTCAACTTCAAGTCTTCGTCGCCGTCGCCCAGCAGGAAAGCGTGTCCCGTGCCGCGGGCCTGCTCAACCTGTCGCAGTCGGCCGCCAGCACTTCCATCACCGAATTGGAGCGCCAGTCCAGCTGCCAGCTCTTCGACCGCGCCGGCAAACGCCTGAGCCTCAACGCCCTCGGCAAGCAATTGCTGCCCCAGGCAGTGGCGCTGCTGGACCAGGCCAAGGAGATCGAAGACCTGCTCAACGGCAAGTCCGGCTTCGGTTCACTGGCGGTCGGCGCCACCCTGACTATTGGCAATTACCTGGCGACCCTGCTTATCGGCGGCTTCATGCAGCGCCATCCGGAAAGCCAGGTGAAGCTGCATGTGCAAAACACCGCCAATATCGTGCACCAGGTTGCTCACTATGAAATTGATCTGGGTCTGATCGAAGGCGACTGCAGCCACCCGGACATCGAGGTGCAGAGCTGGGTCGAGGATGAATTGGTGGTGTTCTGCGCGCCCCAGCATCCATTGGCCAAACGCGGCCAGGCGACAATGGAGGAGTTGACCCGCGAAGCCTGGATCCTGCGGGAACAGGGCTCCGGCACCCGCCTGACCTTCGACCAGGCCATGCGTCACCACCGTAGCGCGTTGAATATCCGCCTGGAGCTGGAACACACCGAAGCGATCAAGCGCGCCGTGGAGTCCGGCCTGGGGATAGGCTGTATCTCGCGCCTGGCCCTGCGTGACGCTTTTCGCCGCGGCAGCCTGGTGGCCGTGGAAACCCCGGACATGGATCTGTCGCGGCAATTTTATTTCATCTGGCACAAACAGAAATACCAGACATCGGCCATGCGTGAGTTTCTTGATCTGTGCCGGGCGTTCACCGCTGGGGTGCAGCGTAGCGACGAGATCGTCCTGCCCGCCATCGCCTGAMAATISVKWIIKIRVIGYIDMRFTLRQLQVFVAVAQQESVSRAAGLLNLSQSAASTSITELERQSSCQLFDRAGKRLSLNALGKQLLPQAVALLDQAKEIEDLLNGKSGFGSLAVGATLTIGNYLATLLIGGFMQRHPESQVKLHVQNTANIVHQVAHYEIDLGLIEGDCSHPDIEVQSWVEDELVVFCAPQHPLAKRGQATMEELTREAWILREQGSGTRLTFDQAMRHHRSALNIRLELEHTEAIKRAVESGLGIGCISRLALRDAFRRGSLVAVETPDMDLSRQFYFIWHKQKYQTSAMREFLDLCRAFTAGVQRSDEIVLPAIANANANANANA
D1-35_00212780fpr_1COG1018Ferredoxin--NADP reductaseATGAGCAACATGAACCACGAGCGTGTCCTCAGTGTTCATCACTGGAACGACACTCTGTTCAGCTTCAAGTGCACCCGCGATCCGGGCCTGCGCTTCGAGAACGGTCAGTTCGTGATGATCGGCCTGCAGCAGCCCAACGGCCGCCCGCTTATGCGCGCTTACTCGATTGCCAGCCCGAATTGGGAAGAGCATCTCGAATTTTTCAGCATCAAGGTTCCCGACGGTCCGCTGACTTCCCAGCTGCAGCACCTGAAGGAAGGCGACGAGATCATCATCAGCAAGAAGCCTACCGGCACGCTGGTGCTCGACGACCTCAAGCCTGGCAAACATTTGTATCTGCTCAGCACCGGTACCGGGCTGGCGCCATTCATGAGCGTGATCCAGGATCCGGAAACCTACGAGCGTTTCGAGAAAGTGATCCTGTGCCACGGCGTGCGTTACGTCAATGAAGTCGCCTACCGCGAATTCATTACCGAGCATCTGCCACAGAACGAATTCTTCGGCGAAGCGCTCCGCGAAAAGCTGATCTACTACCCGACCGTGACCCGCGAGCCCTTCGAGAACGAAGGCCGCCTGACCGACCTGATGCGCAGCGGCAAGCTTTTCCGCGACATCGGCCTGCCACCGATCAACCCGCAGGACGACCGCGCCATGTTGTGCGGCAGCCCAAGCATGCTCGACGAGACCAGCGAAGTGCTCAACAGCTTCGGCCTGACCGTTTCGCCGCGTATGCGTGAGCCGGGTGATTACCTGATCGAGCGGGCGTTTGTAGAGAAATAAMSNMNHERVLSVHHWNDTLFSFKCTRDPGLRFENGQFVMIGLQQPNGRPLMRAYSIASPNWEEHLEFFSIKVPDGPLTSQLQHLKEGDEIIISKKPTGTLVLDDLKPGKHLYLLSTGTGLAPFMSVIQDPETYERFEKVILCHGVRYVNEVAYREFITEHLPQNEFFGEALREKLIYYPTVTREPFENEGRLTDLMRSGKLFRDIGLPPINPQDDRAMLCGSPSMLDETSEVLNSFGLTVSPRMREPGDYLIERAFVEKPGPT0013215_2511DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013215-fpr-K00528NANA
D1-35_00213699trmOCOG1720tRNA (adenine(37)-N6)-methyltransferaseATGACCTACAACGTTTCCCCCATCGGCTTCGTCCGCTCCTGCTTCAAGGAGAAGTTCGCCATTCCGCGCCAGCCACACCTGGCCCCGGCCGCGCGTGGCGTGCTGGAGCTGGTGGCGCCGTTCGACCAGGGCGAAGCGGTGCAGGGCCTGGAGCAGGTCAGTCATGTCTGGCTGCTGTTCCTGTTCCACCAGGCCCTGGAGGAAAAACCACGATTGAAGGTGCGTCCGCCCCGACTGGGCGGCAACAAGTCCATGGGCGTATTCGCCACCCGCGCCACCCATCGCCCCAACGGCATCGGTCAGTCAGTGGTGAAGCTGGAACGGGTCGAAGCGGGTCGGCTGTGGATTTCGGGCATCGATCTGCTGGACGCGACGCCAGTGCTGGACATCAAGCCCTACGTGCCCTACGCCGACATCATCGGCTCGGCGACGAACAGCATCGCCAGCGCAGCGCCTGCATTGATTCCGGTGCAATGGGCGGACTCAGCCCTGCTTCAAGCCCGCGAGCATGCCCTGCGCCTCGAAGAGCCCTTGGTGGAGTTGATCGAACAATGCCTGGCCCAGGATCCACGTCCGGCGTATCAGGTCCCCGCAGCCGAACGGGAATACGGCGCGCAGTTCTGGGACCTGGATGTGCGCTGGCATTATCCGCAGCCGGGATTGATCCGGGTACTGGAAGTGATCCCGGCGCAGGAATAAMTYNVSPIGFVRSCFKEKFAIPRQPHLAPAARGVLELVAPFDQGEAVQGLEQVSHVWLLFLFHQALEEKPRLKVRPPRLGGNKSMGVFATRATHRPNGIGQSVVKLERVEAGRLWISGIDLLDATPVLDIKPYVPYADIIGSATNSIASAAPALIPVQWADSALLQAREHALRLEEPLVELIEQCLAQDPRPAYQVPAAEREYGAQFWDLDVRWHYPQPGLIRVLEVIPAQENANANANANA
D1-35_00214462hypothetical proteinATGATTCACAACGACGTACTGCGCAGCGTGCGCTACATGCTCGACATCAGCGACAAGAAAGTCATCGAGATCATCAAGCTGGGCGGCCTGGATGTTTCCCTGGAAGACCTGACTGGCTACCTCAAGAAAGACGAGGAAGAAGGCTTTGTGTTCTGCCCGGACCTGGTCATGGCGCATTTTCTCGATGGCCTGGTGATCTTCAAGCGCGGCAAGGACGAAAGCCGTCCGCCGCAGCCGATCGAAGTGCCGGTGACCAACAACATCATCCTGAAGAAACTGCGCGTGGCGTTCGAGCTGAAGGAAGACGACATGCACGCCATTCTCAAGGCCGCCGAATTCCCGGTATCAAAGCCGGAGTTGAGCGCGCTGTTCCGCAAATTCGGCCACACCAACTATCGCCCATGCGGCGACCAGTTGCTGCGCAATTTCCTCAAGGGCCTGACGCTGCGCGTGCGCGGCTGAMIHNDVLRSVRYMLDISDKKVIEIIKLGGLDVSLEDLTGYLKKDEEEGFVFCPDLVMAHFLDGLVIFKRGKDESRPPQPIEVPVTNNIILKKLRVAFELKEDDMHAILKAAEFPVSKPELSALFRKFGHTNYRPCGDQLLRNFLKGLTLRVRGNANANANANA
D1-35_00215711rluFCOG1187Dual-specificity RNA pseudouridine synthase RluFATGACTGACCCGATTCGTCTCTCCAAACGCCTCATCGAACTCGTCGGCTGCTCCCGTCGGGAGGCTGAGCTGTTCATCGAGGGCGGCTGGGTCACCGTGGACGGCGAAGTGATCGACGAGCCGCAGTTCAAGGTCACCGGCCAGAAGGTCGAACTCGACCCGCAAGCCAAGGCCACTGCGCCGGAGCCGGTGACGATCCTGCTCAACGTCCCGGCGGGCATGGACGTCGACACCGCCATGGCAACCCTCGGACCGGAGACCCTGAGCGACGAACATCGCTTCGGCAAGCGCCCGCTCAAGGGCCACTTTCTGCGCCTGACCGCCAGCGCCGACTTGCAGGCCAATGCCAGCGGCCTGCTGGTGTTCACCCAGGACTGGAAGATCCTGCGCAAGCTCACCGCCGACGCGGCCAAGATCGAGCAGGAATACGTAGTCGAAGTCGAGGGTGAAATGGTCGCCCACGGTCTTAATCGCCTGAACCACGGCCTGACCTACAAAGGCAAGGAATTGCCTGCGGTCAAGGCCAGCTGGCAGAACGAAAACCGCCTGCGCTTCGCCATGAAGAATCCGCAACCAGGCGCCATTGCACTGTTTTGCCAAGCGGTCGGCCTGAAGGTCGTCGCTATCCGCCGCATCCGCATCGGCGGCGTGTCCATCGGCAAGGTGCCGTTGGGCCAATGGCGCTATCTGTCCGCCAAAGAAAAATTCTAGMTDPIRLSKRLIELVGCSRREAELFIEGGWVTVDGEVIDEPQFKVTGQKVELDPQAKATAPEPVTILLNVPAGMDVDTAMATLGPETLSDEHRFGKRPLKGHFLRLTASADLQANASGLLVFTQDWKILRKLTADAAKIEQEYVVEVEGEMVAHGLNRLNHGLTYKGKELPAVKASWQNENRLRFAMKNPQPGAIALFCQAVGLKVVAIRRIRIGGVSIGKVPLGQWRYLSAKEKFNANANANANA
D1-35_00216474yjaBCOG0454Peptidyl-lysine N-acetyltransferase YjaBATGCGTCAGCATTCGGTCATCCACACACCGAAACCGAGCGATTACGAGGAATTGACCCGGGTCTGGGAAGCGTCGGTACGCGCTACCCATGACTTCCTGCCAGACAGCTACATCGAGCTGCTGAAGAACCTGGTACTCACCCGTTACCTGGACGCGGTGATGCTGATCTGTACTCGGGACCACCGTCAACGCATCACCGGGTTTGCCGGTGTGGCGGCCGGCAAGATCGAAATGCTCTTCATCGACCCGCAACACCGGGGCCAAGGCCTGGGCAAACAACTGCTGCGCTATGCCATGGAGCACCTGAACGCCAACGAGCTGGACGTCAACGAACAGAACCCGCAAGCCCTGGGCTTTTATCTCAAGCAAGGCTTTGAAGTGGTCGGGCGTTCCGCACGGGATGGCATGAACCAGCCGTACCCGTTGCTGCACATGCGCTACAAACAAGCCGACCTGAAGGCCGGACGCGGCTAAMRQHSVIHTPKPSDYEELTRVWEASVRATHDFLPDSYIELLKNLVLTRYLDAVMLICTRDHRQRITGFAGVAAGKIEMLFIDPQHRGQGLGKQLLRYAMEHLNANELDVNEQNPQALGFYLKQGFEVVGRSARDGMNQPYPLLHMRYKQADLKAGRGPGPT0003925_21DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-PLANT_LIPOIC_ACID_INTERFERRENCEPLANT_LIPOIC_ACID_BIOSYNTHESIS,PGPT0003925-lipB-K03801NANA
D1-35_002171341rimOCOG0621Ribosomal protein S12 methylthiotransferase RimOATGTCCACCACTCCCGCGCCAGCCAACCCGAAGGTTGGCTTCGTATCACTGGGTTGCCCGAAGGCTCTGGTCGACTCCGAGCGCATCCTGACCCAACTGCGCATGGAAGGTTATGACGTGGTGTCCACCTACCAGGACGCCGACGTGGTAGTGGTCAACACCTGTGGCTTCATCGACTCCGCCAAGGCCGAATCCCTCGAAGTCATCGGCGAAGCCATCAAGGAAAACGGCAAGGTCATCGTGACCGGCTGCATGGGCGTGGAAGAAGGCAACATCCGCAACGTGCACCCGAGCGTGTTGTCGGTGACCGGTCCGCAGCAGTACGAGCAAGTGGTCAACGCCGTGCACGAAGTCGTGCCGCCGCGCCAGGACCACAACCCGCTGATCGACCTGGTGCCGCCGCAAGGCATCAAGCTGACCCCGCGTCACTACGCCTACCTGAAGATTTCCGAAGGCTGCAACCACAGTTGCAGCTTCTGCATCATCCCGTCGATGCGCGGCAAACTGGTCAGCCGTCCGGTCGGTGATGTACTCGACGAGGCCCAGCGCCTGGTCAAGTCTGGCGTCAAGGAGCTGCTGGTGATTTCCCAGGACACCAGTGCCTATGGTGTCGACGTGAAATACCGCACCGGTTTCTGGAACGGCGCGCCGGTGAAAACCCGCATGACCGAGCTGTGCGAAGCGCTCAGCAGCCTCGGCGTCTGGGTCCGCCTGCATTACGTCTACCCGTATCCGCATGTCGACGAGCTGATCCCGCTGATGGCCGCCGGCAAGATCCTGCCGTACCTCGACATCCCGTTCCAGCACGCCAGCCCGAAAGTGCTCAAGGCGATGAAGCGCCCGGCCTTTGAAGACAAGACCCTGGCACGTATCAAGAACTGGCGCGAAATCTGCCCGGACCTGATCATCCGCTCGACCTTCATCGTCGGCTTCCCCGGCGAAACCGAGGAAGACTTCCAATACCTGCTGAATTGGCTGACCGAAGCCCAGCTCGACCGCGTCGGTTGCTTCCAGTACTCGCCGGTCGAAGGCGCACCGGCCAACGACCTGGACCTGGACGTGGTCCCGGACGACGTCAAGCAGGAGCGTTGGGAACGCTTCATGGCGCACCAGCAGGCGATCAGCTCGGCCCGCCTGCAAATGCGCATCGGCCGTGAAATCGAAGTGCTCGTGGACGAAGTCGACGAGCAAGGCGCCGTCGGCCGCTGCTTCTTCGACGCCCCGGAAATCGACGGCAACGTCTTCATCGACAACGGCAGCAACCTCAAGCCAGGCGACAAGGTCTGGTGCAAGGTCACCGACGCCGATGAGTATGATTTGTGGGCTGAGCAGATCGGTTGAMSTTPAPANPKVGFVSLGCPKALVDSERILTQLRMEGYDVVSTYQDADVVVVNTCGFIDSAKAESLEVIGEAIKENGKVIVTGCMGVEEGNIRNVHPSVLSVTGPQQYEQVVNAVHEVVPPRQDHNPLIDLVPPQGIKLTPRHYAYLKISEGCNHSCSFCIIPSMRGKLVSRPVGDVLDEAQRLVKSGVKELLVISQDTSAYGVDVKYRTGFWNGAPVKTRMTELCEALSSLGVWVRLHYVYPYPHVDELIPLMAAGKILPYLDIPFQHASPKVLKAMKRPAFEDKTLARIKNWREICPDLIIRSTFIVGFPGETEEDFQYLLNWLTEAQLDRVGCFQYSPVEGAPANDLDLDVVPDDVKQERWERFMAHQQAISSARLQMRIGREIEVLVDEVDEQGAVGRCFFDAPEIDGNVFIDNGSNLKPGDKVWCKVTDADEYDLWAEQIGNANANANANA
D1-35_002181902kupLow affinity potassium transport system protein kupATGGGTCATGCAAGTAGTCAGGCGGCGACTGCCGAGCATTCGGCAACGAAGCCGCTGAGCATGCTGGTCGCGGCGGTCGGAGTGGTATATGGCGACATCGGCACAAGCCCCCTGTATACCCTGAAGGAAGTGTTTTCCGGCGGCTATGGCGTGCCGGTCAACCATGACGGGGTGCTGGGGATTCTGTCGCTGATTTTCTGGTCGCTGATCTGGGTCGTGTCGATCAAATACATGATGTTCGTCCTGCGCGCCGACAACCAGGGCGAGGGCGGGATCATGGCCCTGACCGCCCTGGCGCGGCGGGCGGCGGCCGGCAGGGCGCGGTTGCGCACGTTGCTGGTGATCTGCGGCCTGATCGGTGCGGCGCTGTTCTATGGCGATAGCATGATCACCCCGGCGATCTCGGTACTGTCGGCGGTGGAAGGCCTCGGCCTGGCATTTGAAGGCATCGATCACTGGGTGGTGCCGCTTTCGGTGGTGGTGCTGGTCGCGTTGTTCCTGATCCAGCGTCACGGCACCGCGCGGATCGGCATCCTGTTCGGCCCGATCATGGTGACCTGGTTCCTCGTGCTCGGCGCTCTGGGCGTGTATGGCATCAGCCAGCATCCGGAAGTATTAAACGCAGTGAACCCGGCCTGGGCCGTGCGTTTTTTTGTCGTCCACCCGGGCATGGGCGTGGCGATCCTTGGCGCGGTGGTGCTGGCGCTGACCGGGGCTGAAGCGCTGTATGCCGACATGGGGCATTTCGGTCGCAAGCCGATCGCTCGCGCCTGGTTTATCCTCGTGCTGCCGGGCCTTATGCTCAACTATTTCGGCCAGGGCGCCTTGCTGCTCGGCGACCCTGAAGCGGCGCGCAACCCGTTCTATCTGCTGGCGCCGAGCTGGGCATTACTGCCATTGGTGGGCCTGTCGACCCTGGCGACGGTGATCGCTTCGCAAGCGGTGATTTCCGGCGCGTTCTCGCTGACGCGCCAGGCAATCCAGCTCGGCTACATCCCGCGTATGTACATCCAGCACACCTCCAGTGCCGAACAGGGCCAGATCTACATCGGTGCGGTGAATTGGTCGTTGATGGTCGGCGTGGTGCTGCTGGTGCTGGGCTTCGAGTCGTCCGGAGCGCTGGCTTCGGCCTACGGCGTGGCGGTGACCGGTACGATGTTGATGACCACGATCCTGGTCTCCGCCGTGATCCTGTTGTTGTGGAAATGGCCGCCGTTGCTAGCGGTGCCGGTGCTGTTCGGTTTCCTGCTGGTAGATGGGCTGTACTTCGCCGCCAACGTGCCGAAGATCATCCAGGGCGGCGCGTTCCCGGTCATTGCCGGTATCGCCTTGTTCGTGCTGATGACTACCTGGAAGCGCGGCAAACAACTGCTGGTGGAGCGCCTGGACGAAGGTGCGTTGCCGTTGCCGGTGTTCATCAGCAGCATTCGCGTGCAGCCGCCGCATCGTGTGCAGGGCACCGCGGTGTTCCTGACTGCGCGCTCGGATGCCGTGCCCCACGCGCTGTTGCATAACCTGTTGCACAACCAGGTGCTGCACGAGCAAGTGGTGTTGTTGACCGTGGTCTACGAGGACATTCCCCGCGTACCGTCGCAGCGGCGCTTCGAGGTCGATGCCTACGGCGAGGGCTTCTTCCGGGTCATCCTGCATTTCGGCTTCACCGACGAACCGGACGTGCCCCAGGCGCTCAAGCTCTGCCATCTGGATGAACTGGATTTCAGCCCGATGCGCACGACGTACTTCCTCAGCCGCGAGACCGTCATCGCCTCCAAGCTCGAAGGCATGGCCCGCTGGCGCGAGTCGCTGTTCGCCTTCATGCTGAAGAACGCCAACGGCAACCTGCGCTTCTTCAATCTGCCGTTGAACCGAGTGATCGAGCTGGGTACGCAGGTGGAGATGTAGMGHASSQAATAEHSATKPLSMLVAAVGVVYGDIGTSPLYTLKEVFSGGYGVPVNHDGVLGILSLIFWSLIWVVSIKYMMFVLRADNQGEGGIMALTALARRAAAGRARLRTLLVICGLIGAALFYGDSMITPAISVLSAVEGLGLAFEGIDHWVVPLSVVVLVALFLIQRHGTARIGILFGPIMVTWFLVLGALGVYGISQHPEVLNAVNPAWAVRFFVVHPGMGVAILGAVVLALTGAEALYADMGHFGRKPIARAWFILVLPGLMLNYFGQGALLLGDPEAARNPFYLLAPSWALLPLVGLSTLATVIASQAVISGAFSLTRQAIQLGYIPRMYIQHTSSAEQGQIYIGAVNWSLMVGVVLLVLGFESSGALASAYGVAVTGTMLMTTILVSAVILLLWKWPPLLAVPVLFGFLLVDGLYFAANVPKIIQGGAFPVIAGIALFVLMTTWKRGKQLLVERLDEGALPLPVFISSIRVQPPHRVQGTAVFLTARSDAVPHALLHNLLHNQVLHEQVVLLTVVYEDIPRVPSQRRFEVDAYGEGFFRVILHFGFTDEPDVPQALKLCHLDELDFSPMRTTYFLSRETVIASKLEGMARWRESLFAFMLKNANGNLRFFNLPLNRVIELGTQVEMPGPT0002720_3040DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0002720-trkD|kup-K03549NANA
D1-35_002191290hypothetical proteinATGATGCAACGCTCCTGGCGATACGTAGTGGCCGCCCTGCTGGTGCTGGCGGTGATTCTCGGTGGCGGCTACTGGTACTGGAACCGCCCGGCCCCGCAACCGACCCTGGAACAACTGGAGCCGGCCGATGGCGTGCCGATGACCCGAGTCATCCCCGGCACCAAGGCACGCGCCCAGGTGCTGGTGGCGGTCAACGAGGACCAGAAGCTCAGCGACACCCAATTGACGACCCTCAGCCGCAGCGGCTCGGCGCAGATCGTCCAGGTGATCCTGCCCAAGGACTGCATGCTCCAGGGGCGCGCCTTGCAAGCCGGCCTGCGGCAGCTGCACGGCCCGGCCACGCTGGTCAGCGGCATCGGTCCCGGCGCGGTGCTGGCCTGGCGCTGGCTGGCTGAACAGAAGGACGACAAGGCCCAGGCCGTCTCGGTCGACCTGGCCCTGGAAAAACCCGGCTGCACCCACCTGCTGCCCAAAAGCGCCGGCCATGGTCGCTGGCTGGTGGCCTGGAACGATAACCCCGACGATACCAGCGCCGCTTTCGTGCGCGACCAGAAGAATGCCGAAACCAGCATCAGCGACTACGACATCAACCTGGCGCAGGTACTCAACAACGAGCTGCGCAAGATCCTGGTGGGCGCCGACAAGGGCAAGGGCGGCCTGAGCATTCCGGTGGTGGAAGTCCCCGCCAGCCAGGCCCGGGACACCGTGACGCTGTTTCTCTCCGGCGACGGTGGCTGGCGTGACCTGGACCGCGACGTGGCCGATGAAATGGCCAAGGTCGGTTACCCGGTGGTCGGCATCGACACCCTGCGCTATTACTGGCAGCACAAGAGCCCCGAACAGAGCGCGACCGACCTGACCGAGCTGATGCAACACTATCGCCAGATCTGGGGCACCAAACGCTTCGTCCTGACCGGCTATTCCTTCGGAGCCGATGTCCTGCCGGCAATCTACAACCGCCTGCCGGCGACAGAACAGCAACGGGTCGATGCGATTATCCTGCTCGCCTTTGCCCGCACCGGCAGCTTCGAAATCGAAGTCGAGGGCTGGCTCGGCAACGCCGGCACCGAAGCCGCCACCGGCCCGGAAATGGCCAAGCTGCCGGCGGAAAAAGTGGTGTGCATCTATGGCGCGGAAGAAGCCAACGAAAGTGGCTGCACCGACAAGACCGCCGTAGGCGAAGCCATAAAGCTGCCCGGCGGCCATCACTTCGATGAAAACTACCCGGCCCTGGCCAAGCGGTTGATCGATGAGATCAACAAGCGGCAGACCACACCTGCCGCGCAGTGAMMQRSWRYVVAALLVLAVILGGGYWYWNRPAPQPTLEQLEPADGVPMTRVIPGTKARAQVLVAVNEDQKLSDTQLTTLSRSGSAQIVQVILPKDCMLQGRALQAGLRQLHGPATLVSGIGPGAVLAWRWLAEQKDDKAQAVSVDLALEKPGCTHLLPKSAGHGRWLVAWNDNPDDTSAAFVRDQKNAETSISDYDINLAQVLNNELRKILVGADKGKGGLSIPVVEVPASQARDTVTLFLSGDGGWRDLDRDVADEMAKVGYPVVGIDTLRYYWQHKSPEQSATDLTELMQHYRQIWGTKRFVLTGYSFGADVLPAIYNRLPATEQQRVDAIILLAFARTGSFEIEVEGWLGNAGTEAATGPEMAKLPAEKVVCIYGAEEANESGCTDKTAVGEAIKLPGGHHFDENYPALAKRLIDEINKRQTTPAAQNANANANANA
D1-35_002202643hypothetical proteinATGCGCGCCCACTCGTCTGACCCACAAGACACTGTCAATGCGACACAACCGATCAAGGCCGAGCGATTGCGCTGGCTGGACCGGATCAGCCAGTACCGGCAACCGATCGGCCTCGCCGTCACGCTGCTGCTGTTTGCGATTGCCTTGATCGCCTGCCGTCACCTCCTGAGCGAACTCGACCTCTACGCCCTTCACGACTCGATCCTCGAGGTGCCGAGGCCGGCGCTGCTCGGTGCGATAGCCGCCACCGTGGCCGGCTTCATCATTCTGCTGGGCTATGAATGGTCCGCCACTCGCTACGCCGGCGTGAAGCTGCCCACCCAAACCCTGATCCTCGGCGGCTTCAGCGCGTTTGCGATCGGCAATGCGATCGGCCTGTCGCTGCTGTCGGGCGGTTCGGTTCGCTACCGCCTGTACGCCCGCCACGGCCTGGGGGCGGCGGATGTCGCCCACATGACATTGTTCGCCAGTCTGTCACTGGGTTGCGCGCTACCGCCACTGGCGGCCCTGGCGACGTTGAGCAATCTGCCTGCCGCCTCTGCCGCCCTGCACCTTCCCGCCACTTTGCTGGGGGTGATCGCCGTTGCCGTGCTGCTGCTGACCAGTGCGCTGGCCATCGGCATCTATCGCCGCCGCCTGCCGGAACAACCCTATCGGGATGCCCTGCTGGTCAAGGCCGGTCGCCGCACGCTGCGTCTGCCGGGCCGCCGGCTGACGTTCCTGCAACTGATCATCACCGCGCTGGATGTCGCCGCCGCGGCAACGGTGCTCTATCTGTTGCTGCCGGAGGCGCCACCGTTCGGCCCCTTCTTGCTGGTTTACCTGCTGGCGCTCGCCGCCGGCGTCCTCAGTCATGTGCCGGGCGGCGTCGGGGTGTTCGAAGCGATCCTGCTGGCCGCGTTTGCCGACAGACTCGGGGCTGCGCCGCTGGCGGCCGCCCTGCTGCTGTATCGCCTGATCTACGTGCTGCTGCCGATGCTGGTGGCGTGCGTATTGTTGTTGATCAATGAGGCACAACGGCTGTTCCAGACCCGCCAGACCCTGCGGGCGGCGTCCGGTTTCGCGGCGCCAATCCTGGCAGTGCTGGTGTTCCTGTCCGGCGTGGTGCTGCTGTTTTCCGGCGTGACGCCGGAGATCGACACGCGCCTGGAGCACATCGGCTTCCTGATCCCGCATCGCCTGGTGGACGCCTCGCACTTTGGCGCCAGCCTGGTGGGCGTGTTGTGCCTGTTGCTCGCCCAAGGCCTGCGTCGCCGCTTGTCCGCAGCCTGGATGCTGACCACTGTCCTGTTGCTGGTGGGCGCCCTCCTCTCGCTGCTCAAGGGTTTCGACTGGGAAGAAGCCACCCTGCTGACGCTGACCGCAGCCCTGCTGGCGGTCTTCCGGCGTTCCTTTTACCGCCCAAGTCGCCTGACCGAGCTGCCCTTCTCGCCGTTGTTCCTGATTGCCAGCCTCTGCGTGCTGGGTGCGTCGATCTGGCTGCTGCTGTTTGCCTATCAGGATGTGCCGTATAGCCATCAACTGTGGTGGCAGTTCACCCTGGACGCCGACGCCCCGCGTGGCCTGCGCTCGCTGCTGGGTGCCGCGGTGCTGCTGGTGGTGGTGTCCCTGACCTGGCTGCTGCGCACCGCTCGGCCGGTGATTCATCTGCCTACGGCTGAAGAACTGGAGCGCGCCCGGACGATTCTCATGGCGTCTTCGCAACCCGACGGCGGCCTGGCCCTGACCGGCGACAAGGCGCTGCTGTTTCATCCCAACGATGAAGCCTTCCTGATGTATGCCCGCCGTGGCCGCAGCCTGGTCGCGCTGTACGACCCGATCGGGCCGACCCAGCAACGGGCGGAAATGATCTGGCAGTTCCGTGACCTTTGCGACATCTACCACGCCAGGCCAGTGTTCTATCAGGTGCGTGCCGAGAACCTGCCCTATTACATGGACATCGGCCTGACTGCGATCAAGCTGGGCGAAGAAGCGCGGGTCGATCTCAAGCGTTTTGATCTCGAAGCCAAGGGCAAGGAGATGAAGGACCTGCGCTACACCTGGAATCGCGGCACCCGTGACGGCCTGTCACTGGAGATCCATGAACCGGGCCAGGCGCCAATGGACGAACTCAAGGTTATTTCCGATGCCTGGCTGACCGGCAAGAATGTACGTGAGAAAGGTTTCTCCCTGGGGCGATTCAGCCATGATTACCTCAAGCACTTCCGCATCGCGGTGATTCGTTTCGAGGGGCGTCCGGTGGCGTTCGCCAACCTGCTGGAAACCCATAGCCATGAGCTGGCCAGCCTTGACCTCATGCGTGCTCATCCCGAAGCCCCGAAGCTGACCATGGAGTTCATGATGGTCGGCCTCATCCAGCATTACAAAAACCATGACTACGCCCGCTTCAGCCTCGGCATGGTCCCGCTCTCGGGCCTGCAACCGCGTCGCGGCGCTCCATTGACCCAGCGCCTGGGTTCGATGGTGTTTCGCCGTGGCGAGCAGCTCTACAATTTCCAGGGCCTGCGCCGCTTCAAAGACAAATTCCAGCCTGACTGGGAACCTCGTTACATGGCCGTGCCCGCCGGACTCGATCCGCTGGTAGCGCTGGCCGATACCGCCGCCCTGATTGCGGGCGGCCTGACTGGATTGGTGAAACGCTGAMRAHSSDPQDTVNATQPIKAERLRWLDRISQYRQPIGLAVTLLLFAIALIACRHLLSELDLYALHDSILEVPRPALLGAIAATVAGFIILLGYEWSATRYAGVKLPTQTLILGGFSAFAIGNAIGLSLLSGGSVRYRLYARHGLGAADVAHMTLFASLSLGCALPPLAALATLSNLPAASAALHLPATLLGVIAVAVLLLTSALAIGIYRRRLPEQPYRDALLVKAGRRTLRLPGRRLTFLQLIITALDVAAAATVLYLLLPEAPPFGPFLLVYLLALAAGVLSHVPGGVGVFEAILLAAFADRLGAAPLAAALLLYRLIYVLLPMLVACVLLLINEAQRLFQTRQTLRAASGFAAPILAVLVFLSGVVLLFSGVTPEIDTRLEHIGFLIPHRLVDASHFGASLVGVLCLLLAQGLRRRLSAAWMLTTVLLLVGALLSLLKGFDWEEATLLTLTAALLAVFRRSFYRPSRLTELPFSPLFLIASLCVLGASIWLLLFAYQDVPYSHQLWWQFTLDADAPRGLRSLLGAAVLLVVVSLTWLLRTARPVIHLPTAEELERARTILMASSQPDGGLALTGDKALLFHPNDEAFLMYARRGRSLVALYDPIGPTQQRAEMIWQFRDLCDIYHARPVFYQVRAENLPYYMDIGLTAIKLGEEARVDLKRFDLEAKGKEMKDLRYTWNRGTRDGLSLEIHEPGQAPMDELKVISDAWLTGKNVREKGFSLGRFSHDYLKHFRIAVIRFEGRPVAFANLLETHSHELASLDLMRAHPEAPKLTMEFMMVGLIQHYKNHDYARFSLGMVPLSGLQPRRGAPLTQRLGSMVFRRGEQLYNFQGLRRFKDKFQPDWEPRYMAVPAGLDPLVALADTAALIAGGLTGLVKRPGPT0024390_194DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHATIDYLGLYCEROL_LYSYLTRANSFERASE,PGPT0024390-mprF|fmtC-K14205NANA
D1-35_002231062dinBCOG0389DNA polymerase IVATGACGCAACGCAAAATCATCCACGTCGACTGCGACTGCTTCTACGCCGCGATCGAAATGCGCGATGATCCGCGGCTGGCCGGCATACCCCTGGCGGTCGGTGGCTCGGCGGACCGGCGTGGGGTCATCGCGACCTGCAATTACGAGGCGCGGGCCTACGGTGTGCGCTCAGCCATGTCTTCTGGCCACGCGCTGAAGCTCTGCCCCGACCTGACCATCGTCAAGCCGCGGATGGACGCCTATCGGGAGGCCTCCAGGGAAATTCAGACGATTTTCAGCGATTACACCGACCTGATCGAACCGCTGTCGCTGGACGAGGCTTATCTGGACGTCTCCGCCAGTCCGCATTTCGGCGGCAGTGCCACGCGCATCGCCCAGGATATTCGCCGGCGTGTTTCCAACCAGTTGCACATCACTGTTTCCGCGGGCGTGGCGCCGAACAAGTTTCTCGCCAAGATCGCCAGTGACTGGAAAAAGCCCAACGGCCTGTTCGTCATCACTCCTGACCAAGTGGAAGATTTCGTCTCGGCGCTGCCGGTGAGCAAGCTGCACGGCGTCGGCAAGGTCACCGCCGACAAGTTGAACAGGCTCGGGATTATTGACTGCCAGCACTTGCGCGAGTGGGACAAGTTGGCACTGGTGCGTGAATTCGGCAGTTTCGGCGAGCGACTCTGGAGCCTCGCCCGTGGAATTGACGAGCGCCTGGTGCACAACGACAGCCGGCGGCAATCCATCAGCGTGGAAAACACCTATGACGTCGATTTGCCTGATCTGCAGAGCTGCCTCGACAAACTGCCCGAACTGATGGAAACCCTGGGCGGGCGCATGGCGCGGATCGACAGCAGCTATCGGCCGGGCAAGCCGTTCGTCAAAGTGAAATTCCATGACTTCACCCAGACCACCCTTGAGCAGGCCGGGGCAGGGCGGGACCTGGGCAGTTACCAGCTACTGTTGACCCAGGCGTTCAACCGCGGCGGCAAACCGGTGCGATTGTTGGGGATCGGAGTGCGGCTGGAGGACTTGCGGGGTGGGTTTGAGCAGTTGGAGTTGTTTGAGCGTTGAMTQRKIIHVDCDCFYAAIEMRDDPRLAGIPLAVGGSADRRGVIATCNYEARAYGVRSAMSSGHALKLCPDLTIVKPRMDAYREASREIQTIFSDYTDLIEPLSLDEAYLDVSASPHFGGSATRIAQDIRRRVSNQLHITVSAGVAPNKFLAKIASDWKKPNGLFVITPDQVEDFVSALPVSKLHGVGKVTADKLNRLGIIDCQHLREWDKLALVREFGSFGERLWSLARGIDERLVHNDSRRQSISVENTYDVDLPDLQSCLDKLPELMETLGGRMARIDSSYRPGKPFVKVKFHDFTQTTLEQAGAGRDLGSYQLLLTQAFNRGGKPVRLLGIGVRLEDLRGGFEQLELFERPGPT0014881_4531DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ADAPTIVE_MUTATIONCE-BACTERIAL_FITNESS-ENVIRONMENT-INDUCIBLE_DNA_POLYMERASES,PGPT0014881-dinB-K02346NANA
D1-35_00224954hypothetical proteinATGTTCAAGCGAAACACCTTAGGCCTCGGGGGCGCCGCACTGTGCGGCGCCCTGCTGGTCAGCGGCTGCGCCAACCAGATGTCGCAACGCAACGAGCACGAAGAACGGATCGAGCGCAAATTGCTCGACCATAGCCTGCAGATCGATGTGGGCGAACCCAAGGTGCTCGACTTGCCGCAGCGTCGGGTGCGGATCAACGAGCAGAAGACCTTCGAGGTCACCGAGTTCGAGGTCACCCGCCATTACGATCGCTACACGCCGTACCAGCCTTGGCGGGAGATCTACGAGATCCCGCTGGGCGCGGTGGCGGTAGTGGCCGGCGTCGGCGCGAACGTGGTCAATGTGTTCGCCCTCGGCAGCTTGCCGGACAGTGCGACCCGCGACTGGATCAGCTACGGTTTTGCCGGACTCAATCCGTTCATGAACGTGCCTTCCAATGGCCGTGCCCAGCAGAACCTGGCAGGTATCGATGAGGTCCAGCGCGACAAGCGCACGGAGCATTCGAGCCTGCCCTGGAGCGAGCGTCCGGTACAGGTGAAAGCCGCCCGGCAGACCTTCGAGCTGAGCACCGACCGTAACGGCGTGTTGCGCTTGAACCTGCTGGAAAGCCCGTTCGCCGAGCATGACCTGAGCCAGTTCGGCAAACTGCAGATCAGTGTGACGGATGCCCAGGACGAGGTGCACACCGACTCATCCCTGAGCGTCAGCAGTACGTTGCGCAGCAAACTGGTCGAAGCCCACGCGTTGATCTACGACGATCTGGAAGACGACGAAGTGAGCCAGTGGGTTCATCGGGTCAAGCGTCTCTCGGAGCTGGGGCTTGAAGAAGAGGCCAGCGAACTCGAACAGAGCCTGATCGAACTGACCCGCAACGATCCGGAACTGCAGGCCGAATTCATCAAGGCCCTGACCAAGGATGGCGGGCGGTTGGTGGCGGACCCGGGCGCGAGCTGAMFKRNTLGLGGAALCGALLVSGCANQMSQRNEHEERIERKLLDHSLQIDVGEPKVLDLPQRRVRINEQKTFEVTEFEVTRHYDRYTPYQPWREIYEIPLGAVAVVAGVGANVVNVFALGSLPDSATRDWISYGFAGLNPFMNVPSNGRAQQNLAGIDEVQRDKRTEHSSLPWSERPVQVKAARQTFELSTDRNGVLRLNLLESPFAEHDLSQFGKLQISVTDAQDEVHTDSSLSVSSTLRSKLVEAHALIYDDLEDDEVSQWVHRVKRLSELGLEEEASELEQSLIELTRNDPELQAEFIKALTKDGGRLVADPGASNANANANANA
D1-35_002251716proSCOG0442Proline--tRNA ligaseATGCGCACCAGTCAATTTTTGCTCGCCACACAGAAAGAAACGCCTTCCGACGCCGTCGTGATCAGCCACCAGCTGATGCTGCGCGCAGGCATGATCCGCAAGCTCGCCTCCGGCCTGTACACCTGGCTGCCGATGGGCCTGCGGGTGATGCGCAAGGTCGAAGCCATCGTCCGCGAAGAAATGGACGCCGCCGGCTCTCTGGAAGTGTTGATGCCGAGCACCCAGCCGGCCGAGCTGTGGCAGGAGTCGGGGCGCTGGGAGGAATACGGCCCGGAGCTGCTGCGCATCAAGGACCGCCATGGTCGCGATTTCTGCGCTGGCCCGACTCACGAAGAAGTGATCACCGACCTGATGCGCAACGAGTTGAGCAGCTACAAGCAACTGCCAATCAACCTGTATCAGATCCAGACCAAGTTCCGTGACGAGATCCGTCCACGCTTCGGCCTGATGCGCGGTCGCGAATTCATCATGAAGGATTCTTATTCGTTCCACGCCGACCTGGCCTCGCTGCAAGTCACTTACGACCGCATGCACCAGGCGTACTGCAACGTGTTCACCCGCCTGGGCCTGAAGTTCCGCCCGGTTGAAGCCGACAACGGCTCCATCGGCGGTGCCGGCTCCCACGAATTCCATGTGCTGGCCGAGTCCGGCGAAGACGACATCGTCTTCAGCAACGGCTCCGACTACGCCGCGAACATCGAGAAAGCCGAAGCCGTGCCACGGGAAACCTCCCGCGCCGCACCGGCCGAAGAATTGCGCCTGGTAGACACGCCGAACGCCAAGACCATTGCCCAATTGGTGGAAGGCTACAACCTGCCCATCGAACGCACCATCAAGACCCTGATCGTGCGCGCGGAAGAAGAAGGCAAGCTGATTGCCCTGATCATCCGTGGCGACCACGAGCTGAACGAAATCAAGGCCGCCAACCAGCCTGGCGTCGCCAGCCCGCTGGTCATGGCCACCGATGCCGAGCTGCGCGATGCCATTGGTGCCGGTGCCGGCTCCCTCGGCCCGTTGAATCTGCCGTTGCCGATCATCATCGACCGCTCGGTGGCATTGATGAGCGACTTCGCCATCGGTGCCAACATCGATGACAAGCACTATTTCGGCGTGAACTGGGAACGCGACCTGCCGGTCCCAACCGTCGCCGACCTGCGCAACGTCGTGGCCGGCGACCCGAGCCCGGACGGCAAAGGCACGCTGGAAATCAAGCGCGGCATCGAAGTCGGGCATATCTTCCAGCTGGGCGACAAGTACAGCAAGGCGATGAAATGCGAAGTGCTCGGCGAGAACGGTAAGCCGGTCACGCTGCAGATGGGCTGCTACGGCATCGGCGTGTCCCGCGTGGTGGCTGCGGCCATCGAGCAGAACAACGACGAGAACGGCATCATCTGGAGCGACACGCTGGCGCCGTTCCAGGTTGCCCTCGTGCCGCTACGCTACGAAACCGAACAGGTTCGCGAAGCGACCGACAAGCTCTACGCCGAACTGACGGCCGCCGGCTTCGAAGTACTGCTGGACGACCGCGACAAGAAAACCAGCCCCGGCATCAAGTTCGCGGACATGGAACTGATCGGCATCCCGCACCGGATCGTCGTCAGTGACCGTGGCCTGGCCGATGGCAACCTGGAATACAAGAGCCGTACCGAGGCCGAGGCGCAAGCGCTGCCGGTCGCCGACGTGCTGTCCTTCCTTCAGGCCCGTATCCGCCGCTGAMRTSQFLLATQKETPSDAVVISHQLMLRAGMIRKLASGLYTWLPMGLRVMRKVEAIVREEMDAAGSLEVLMPSTQPAELWQESGRWEEYGPELLRIKDRHGRDFCAGPTHEEVITDLMRNELSSYKQLPINLYQIQTKFRDEIRPRFGLMRGREFIMKDSYSFHADLASLQVTYDRMHQAYCNVFTRLGLKFRPVEADNGSIGGAGSHEFHVLAESGEDDIVFSNGSDYAANIEKAEAVPRETSRAAPAEELRLVDTPNAKTIAQLVEGYNLPIERTIKTLIVRAEEEGKLIALIIRGDHELNEIKAANQPGVASPLVMATDAELRDAIGAGAGSLGPLNLPLPIIIDRSVALMSDFAIGANIDDKHYFGVNWERDLPVPTVADLRNVVAGDPSPDGKGTLEIKRGIEVGHIFQLGDKYSKAMKCEVLGENGKPVTLQMGCYGIGVSRVVAAAIEQNNDENGIIWSDTLAPFQVALVPLRYETEQVREATDKLYAELTAAGFEVLLDDRDKKTSPGIKFADMELIGIPHRIVVSDRGLADGNLEYKSRTEAEAQALPVADVLSFLQARIRRNANANANANA
D1-35_002261572hypothetical proteinATGCCCCGTAAAACCTGGCGCGCCGCCCTTGCCGCCTATGCCAGTCCTTCGACGCTCGTGCTGTTGCTGCTTGGCTTCGCCGCCGGCCTGCCCTACATGCTGGTGTTTTCCACGCTGTCGGTCTGGTTGCGCGAGGCCGGCGTGGCCCGCGAAACCATTGGTTACGCAAGCCTGATCGGCCTGGCCTATGCCTTCAAATGGGTCTGGTCGCCACTGCTCGACCAATGGCGCCTGCCATTGCTCGGCAAACTGGGACGTCGACGCTCCTGGCTGGTGCTCTCCCAGGCCCTGGTGATCCTCGGCCTGGTCGGCATGGGCTTCTGTGACCCACAAAAACACCTGTCCTGGCTGATCGCGATTGCCGTCATCGTGGCCTTCGCCTCGGCCACCCAGGACATCGCCGTCGATGCCTACCGACTGGAAATCGCCGACGACACCCGCCAGGCCGCCCTGGCTGCCAGCTATATGTCCGGCTACCGCGTCGCCGCGTTGCTGGCGACCGCCGGCGCGCTGTTTTTCGCCGAGGGGTTCGGCTCCACCGGGTTCAGCTATAAACATTCGGCCTGGGCCGGTACGTACCTGCTGTTTGGCGTACTGATGGTCCCGGCGCTGCTGACCTCGCTGTTCATGCGCGAGCCGCCAGTACCGTTGCGTACTCAATTGCAAGCCGGGCGCTATACCTTCGTCCACCAGTTGGCCTCGGTATTCGTGTTGATCGTGCTGCTGGTGTCGGTCCCGGCGATGTTCACCCAGCTCTACAACACCGACTTTGCCAGCGTGCTGTTCGAAGGCGTCAGCCTGCTGGACCTGCTGCTCCAGGACCGCGCCTTCCTGCGCGCCATCCTCTATATCATCCTGACCGCCCTGTGCCTGTCGTCCATGGGGCGTCGCGGCCTGGCGCCGGTGCTGACGCCGGTCAACGATTTCATCCTGCGCTACCGCTGGCAGGCCCTGCTGCTGCTCGGCCTGATCGCGACCTACCGGATGTCCGACACGGTCATGGGCGTCATGGCCAACGTTTTTTATATCGACCAGGGTTTCACCAAAGACCAGATCGCCAGCGTCAGCAAGATCTTCGGGCTGATCATGACCCTTGTCGGCGCCGGCATGGGCGGGCTGCTGATCGTGCGTTTCGGCATCCTGCCAATCCTGTTCATCGGCGGCGTGTCGTCGGCCGCCACCAACATCCTGTTCCTGATGCTGACGGACATGGGTGCCAACTTGAAGATGCTGATCGTCACGATCTCCCTCGACAACTTCAGCTCCGGCCTGGCCACCTCGGCGTTCGTCGCCTATCTGTCGAGCCTGACCAACCTGAAATTCTCCGCGACCCAATACGCCCTGCTCAGCTCGATCATGCTCTTGTTGCCGCGCCTGATCGGCGGGTACTCAGGGGTCATGGTGGAAAAATTCGGCTATCACGATTTCTTCCTGATCACCGCGTTGCTCGGCGTTCCGACCTTGCTGCTGATCGCCTTGCACTGGTATCAGGAGAATCGCCGAGAGGGCTCGACGCCTGAATCGGCGCCAGAGTCGGAATCGCCGCCGACCCGGCCCGCTCAAGAGTTGTAGMPRKTWRAALAAYASPSTLVLLLLGFAAGLPYMLVFSTLSVWLREAGVARETIGYASLIGLAYAFKWVWSPLLDQWRLPLLGKLGRRRSWLVLSQALVILGLVGMGFCDPQKHLSWLIAIAVIVAFASATQDIAVDAYRLEIADDTRQAALAASYMSGYRVAALLATAGALFFAEGFGSTGFSYKHSAWAGTYLLFGVLMVPALLTSLFMREPPVPLRTQLQAGRYTFVHQLASVFVLIVLLVSVPAMFTQLYNTDFASVLFEGVSLLDLLLQDRAFLRAILYIILTALCLSSMGRRGLAPVLTPVNDFILRYRWQALLLLGLIATYRMSDTVMGVMANVFYIDQGFTKDQIASVSKIFGLIMTLVGAGMGGLLIVRFGILPILFIGGVSSAATNILFLMLTDMGANLKMLIVTISLDNFSSGLATSAFVAYLSSLTNLKFSATQYALLSSIMLLLPRLIGGYSGVMVEKFGYHDFFLITALLGVPTLLLIALHWYQENRREGSTPESAPESESPPTRPAQELPGPT0028125_209DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028125-ampG-K08218NANA
D1-35_00227354DNA base-flipping proteinGTGACCGACACCCCAGCGGCCCCCGAGAACGCCGCCCAGATCCGCCGCACCACGCTTTACCTGACCCTGGCCCAAGTGCCGGCCGGCCAGGTCGTCACCTATGGTCAGCTCGCCGAAATGGCGGGTCTGGGCCGCGCCGCGCGCTGGGTCGGACGAACGCTCAGCCAGTTGCCGAACGACACGAAGCTGCCGTGGCATCGAGTCCTCGGCGCCGGTGGTCGGATCAGCCTGCCGGCAGGCAGCGCCTCGGGGGACGAACAGCGCGCACGCCTGCGCATGGAAGGGATCAGTGTCCTGAATAATCGTGTTGATATTCAGCGTCATGGCTGGCGCCCGGTAGAGCACAGCGGTTAGMTDTPAAPENAAQIRRTTLYLTLAQVPAGQVVTYGQLAEMAGLGRAARWVGRTLSQLPNDTKLPWHRVLGAGGRISLPAGSASGDEQRARLRMEGISVLNNRVDIQRHGWRPVEHSGNANANANANA
D1-35_002281008hypothetical proteinATGTTGTCCAGAACCCTGTTGTGCCTAGCTGTTACCAGTGCCTCCATGCCTTTGCTTGCCGATACCGTCTGGTTGAAGAACGGCGACAAGCTCAGTGGCAAGATAACCGTTTTCGACGGCGGCAAATTGTTGATCCAGACCGATTACGCGGGCGCGATCCCGATTGATTGGAAGCAGGTCAAGACGCTTGAAAGCGACCAGCAACTGTTGGTCAAGCAGGATGCCTATACCGGCGAAAAAGCCAAGGCGTTGCAGGCGGCCGAGGATGGCAAGGTCACCTTGGCCAACGGTGATGCGCCCAAGACCGTCGAGCTGGCGAGCATCCAGCAGATCCTCAAGCCCAAGCCGGTGGTCGAGGACCTTGTTTGGAAGGGCAATATCGACGCTGCACTGGATTACCAGCGCGCGGAAGCCGATACCGACGATTACGACATCGACTTCAAGACCTCGGCGCGCCACGGCAGATGGCGGCACATCGCCGAAGGCGAATACAACCGCGAATTCCAGGATGATGTGGTGTCGGCTGACAACTGGCGGCTGGAGTATTCCCTCGACCGCTTCCTCACGGAAAAATGGTTCTGGCAAGGTCGCCTGAACTACAAGCGTGACAAGGTTGAAGACCTGGCCCGCCAGCGCGTGGTCGGTACCGGTCCGGGTTATCAGTTCTGGGACGACGAACTGGGCGCTTTCTCCCTGGGTTCGCTGCTCAACCGCACCGATTATGAATACCGCGACGGCGGCAAGGACAACTTCTATTCCGTGGCGATGAAGTGGGACTACAACCGTTACCTGATCGGCAAGCGCGTCGAGCTGTTTACCAACGGCGAAGTGGGCAAACCGCTGTCCGGCGTGGCTGAATACGCCTATGACGCCGAAATCGGGTTGCGCTACAAGGTCACTGACTGGGCATCGCTCAACCTCAAGGCCGAGAAGGATGTCATCGAAGGGACCGAAGACAGCGACCTGAGCAAGACGCGCTACACCGCCGGGTTTGGCGTGACCTGGTAAMLSRTLLCLAVTSASMPLLADTVWLKNGDKLSGKITVFDGGKLLIQTDYAGAIPIDWKQVKTLESDQQLLVKQDAYTGEKAKALQAAEDGKVTLANGDAPKTVELASIQQILKPKPVVEDLVWKGNIDAALDYQRAEADTDDYDIDFKTSARHGRWRHIAEGEYNREFQDDVVSADNWRLEYSLDRFLTEKWFWQGRLNYKRDKVEDLARQRVVGTGPGYQFWDDELGAFSLGSLLNRTDYEYRDGGKDNFYSVAMKWDYNRYLIGKRVELFTNGEVGKPLSGVAEYAYDAEIGLRYKVTDWASLNLKAEKDVIEGTEDSDLSKTRYTAGFGVTWNANANANANA
D1-35_00229210capB_1Cold shock protein CapBATGTCTAATCGCCAAACCGGTACCGTTAAGTGGTTCAACGATGAAAAAGGCTTCGGCTTCATCACCCCACAGTCCGGTGACGATCTGTTCGTTCACTTCAAAGCTATCCAATCTGACGGCTTCAAAAGCCTGAAAGAAGGCCAACAGGTTTCTTTCATCGCTACCCGCGGTCAGAAAGGCATGCAAGCTGAAGAAGTTCAAGTTATCTAAMSNRQTGTVKWFNDEKGFGFITPQSGDDLFVHFKAIQSDGFKSLKEGQQVSFIATRGQKGMQAEEVQVIPGPT0014675_3928DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
D1-35_00230567dcddCTP deaminaseATGAGCATCAAATCGGACAAGTGGATTCGCCGCATGGCGCAAGAGCACGGCATGATCGAGCCCTTCGTAGAGCGCCAGATGCGTGGCGAAGGCGCCGACCGGCTGATTTCCTTCGGCGTTTCCAGCTACGGCTACGATGTGCGCTGCGCCGATGAATTCAAGGTGTTCACCAACATCAACTCGGCCACCGTCGACCCGAAGAATTTCGATGAGAAGAGCTTCGTCGACATCAAGAGCGACGTTTGCATCATTCCGCCGAACTCTTTCGCCCTGGCCCGCACCGTCGAGTACTTCCGCATCCCGCGCAACGTGCTGACCATCTGCCTGGGTAAAAGCACCTACGCCCGCTGCGGCATCATCGTCAACGTGACACCTCTGGAACCTGAATGGGAAGGCCACGTGACCCTGGAGTTCTCCAACACCACGACCCTGCCGGCGAAGATCTACGCCAACGAGGGCGTGGCGCAGATGTTGTTCCTTGAGTCCGATGAGGAATGTGAAGTTTCCTACAAGGACCGTGGCGGCAAGTACCAGGGCCAGCGCGGTGTGACCCTGCCGCGTACCTGAMSIKSDKWIRRMAQEHGMIEPFVERQMRGEGADRLISFGVSSYGYDVRCADEFKVFTNINSATVDPKNFDEKSFVDIKSDVCIIPPNSFALARTVEYFRIPRNVLTICLGKSTYARCGIIVNVTPLEPEWEGHVTLEFSNTTTLPAKIYANEGVAQMLFLESDEECEVSYKDRGGKYQGQRGVTLPRTPGPT0021225_2250DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021225-dcd-K01494NANA
D1-35_00231207hypothetical proteinATGAAGATCGATCCGCGAATCAGTGCCGAACTGGCAAGGCTTGAGCCCAATCAGATCGGCGTCCTGGCTTGGTCATTACTGGCCCACCCTGCTGAAGCGGCGGGCGGCATCCCTGGCCAGCCCGATCCCGATACCCCTAACGAACAGCCTACCGAACCCGGCGAACCGACTCTTCCGGACGAACCGCCTCCCGCGCCCGTAGCCTGAMKIDPRISAELARLEPNQIGVLAWSLLAHPAEAAGGIPGQPDPDTPNEQPTEPGEPTLPDEPPPAPVANANANANANA
D1-35_00232657hypothetical proteinATGCCCGCGCCGTATCCCGTCAACCTCGCGGGCGAAGAGCTCTGGCTGTTGCCGCAAAAAGCCCTGTACTGGCCGGCCCAGGAAACCCTGATGGTGGCCGATGTGCATTTCGGCAAGGCCGCGGCCTACCGTAGCCTCGGCCAACCGGTGCCCCACGGCACCACGGCGAACAACATCGCCATGCTTGACGAGTTGCTGGCGAGCCTGCCGTGCCGACTGCTGATATTCCTCGGGGACTTCCTGCATGGGCCCGGTTCTCATGCCCCAGGCACTTTGAAGGCCCTTGCCGACTGGCGTGAACGGCATCGCAAACTAGCCATCACGCTGATCCGCGGCAATCACGACAAGCGCGCCGGCGATCCGCCAGCGGCACTCGATATCCGCGTCGTCCCCGAGCCGTTGCTGTTGGGCCCTTTCGCCGTGCAACACGAGCCTACCCCGCATCCAAGTCGACACGTGCTCGCCGGTCACGTACACCCGGTCTACCACCTGAGCGGCAAGGGGCGTCAACGCCTGCGCCTGCCATGTTTCCGCCTCGGTAGCGAGATCAGCCTGCTACCGGCCTTCGGTGCCTTCACGGGAGGCTATCGGGTCGATCAGGACAACGACTGCAAGATCTTCGTGGTGGGCGACAACGAAATATGGCCCGTCAGTTGAMPAPYPVNLAGEELWLLPQKALYWPAQETLMVADVHFGKAAAYRSLGQPVPHGTTANNIAMLDELLASLPCRLLIFLGDFLHGPGSHAPGTLKALADWRERHRKLAITLIRGNHDKRAGDPPAALDIRVVPEPLLLGPFAVQHEPTPHPSRHVLAGHVHPVYHLSGKGRQRLRLPCFRLGSEISLLPAFGAFTGGYRVDQDNDCKIFVVGDNEIWPVSNANANANANA
D1-35_002332487hypothetical proteinATGGCGACATCCAGCAACTTCGCGAAACAGTGGTTCGATGCCCGCGGCTGGAAGCCGTTCGCCTTTCAAAAGCAGGTATGGGCTGCGGTCAAGCGTGGCGAGTCGGGGCTGTTGCATGCCAATACCGGCGCCGGCAAGACCTACGCCGTCTGGTTTGCCGCACTCAACCGTTTCGCCCGCAGCGTGCCGCCACCAGACAAGCCTCGTAAACGCAAACCGCCGAGCGAACCGCTGACGGTCTTGTGGATAACGCCGATGCGCGCGCTGGCCGCCGACACCGGCAAGGCTCTCGAGGCGCCCCTCGATCCGCTGCAGATTCCCTGGAGCGTAGGCCTGCGCACCGGCGATACCAGCGCCAGCGAACGCGCCCGTCAAGGCCGGCGCCTGCCCACGGCGCTGATCACCACACCCGAAAGCCTGACGCTGATGCTCGCCCGCGCTGATGCGCAAACGGCCGTGTCGACCCTGCGCATGGTCGTGGTAGATGAGTGGCACGAATTGCTCGGCAACAAGCGCGGCGTGCAATTGCAACTGGCCCTGGCTCGCTTGCGCTACTGGCACCCCGACCTGATCGTCTGGGGCGTATCCGCGACCCTGGGCAACCAGGCCCACGCCGAGCAGGTATTGATCCCACAAGGCAGCGGAATTAGTGTGCAGGGCGCCGATGCCAAGGCGTTGCAGGTCGATACGCTGTTGCCGCCAACCCTCGAACGGTTTCCATGGGCGGGGCATATCGGCCTGAAAATGTTGCCCCAGGTGGTCACTGAAATCGACACCAGCAGCAGTTGCCTGGTCTTTACCAATACTCGCGCGCAAGCGGAAATCTGGTACCAGGCCATTCTTGAGGCGCGCCCGGATTGGGCCGGACTGATCGCGTTGCACCATAGTTCTCTGTCCCGCGACACCCGCGACTGGGTGGAACGGGCGTTGAAGGACGGCCAGCTCAAGGCAGTCGTGTGTACGTCCAGCCTCGACCTGGGGGTGGATTTCCTGCCCGTGGAACGCGTGCTACAGATTGGCTCGGCGAAAGGCGTCGCCCGCTTGATGCAACGCGCCGGACGCTCCGGCCATGCGCCGGGGCGGACCTCGCGAATAACCCTGGTGCCAACCCACAGCCTGGAACTGATCGAGGCCGCCGCCGCCCAGGACGCCGTGGCGCAGCGGCGAATCGAGCCGCGAGAATCGCCCCACAAGCCTTTGGATGTATTGGTCCAGCATCTGGTCAGCATGGCCCTGGGTGGCGGTTTTGTTCCAGATGAGCTGTTTGATGAGGTACGCGGCGCCTGGGCCTACCGCGACCTGAACCCGGCCGAGTGGGCCTGGGCGCTGGCTTTCGTGCGCCACGGCGGCCTGTCGCTGACCGCCTACCCTGATTATCGGCGGGTCGAACCGGATGAACAGGGGATCTGGCGCGTGCCTGACGCCCGTCTGGCACGGCGCCACCGCATGAGCATCGGCACCATCGTCAGTGACGCCAGCCTGCAATTGAAATTCTGGAGCAAGGGCGGCGGCGGCAAGACCCTGGGCAGCGTGGAAGAAGGCTTCATCGCACGCTTGCGCCCCGGCGACGGATTCCTGTTCGCCGGGCGGTTGCTGGAGTTGGTCCGGGTCGAGGACATGACCGCTTACGTACGCCGCAGCCAGGCGAAAAAAGCCGCCGTGCCGCGCTGGAATGGCGGACGCATGCCGCTTTCCAGCGAGCTCGCTGCCGCGGTCGTCGCGCGCTTGAGCGAAGCCGCCAAGGGCCGTTTCGACGGACCGGAAATGCAAGCCGTAGAGCCGCTGCTGTCAACGCAGCTACGTTGGTCCGGCCTGCCGACGCAGGGAACGCTGCTGGCCGAAGCGCTCAAATCCCGGGAGGGTTGGCACCTGTTCCTGTATCCGTTCGCCGGGCGCCAGGTACATCTGGGTCTGGCCAGCCTGTTGGCCTGGCGCGTCAGCCAGCGCCAACCGGTGACGTTCTCGATTGCGGTCAATGACTACGGCCTGGAATTGCTCAGCGCCACCGAACTGGATTGGTCAACGCACCTGAACCCGGCGCTGTTGCGCACCGATGGCTTGCTGGCCGACGTTCTCGCCAGCCTGAACGCCGGAGAACTGGCCCTGCGCCGCTTCCGCGAAATCGCCCGGATCGCCGGGCTGGTGTTCGCCGGCTACCCCGGCGCACCGAAGAGCACCCGCCAAGTGCAGGCTTCCAGCGGGTTGTTCTATCAAGTGTTCAAGCAATATGACGCCGATAACCTGCTGCTGGCCCAGGCCGGCGAGGAAGTTTTGCGCGAAGAATTGGATATACGCCGACTGGAGCAGACCTTGGAACGGCTCGATACCTTGAAGCTCGACCTGCATCTCATCAAGCGCCCTACTCCGCTGGGCTTCCCCTTGCTGGTGGAGCGATTTCGCGAAAGCATGAGCTCGGAAAAGCTCGCCGATCGTATCCGGCGCATGGTCAGCGAACTGGAAAAAACCGCTGATCGAGGAAGCGCCTGAMATSSNFAKQWFDARGWKPFAFQKQVWAAVKRGESGLLHANTGAGKTYAVWFAALNRFARSVPPPDKPRKRKPPSEPLTVLWITPMRALAADTGKALEAPLDPLQIPWSVGLRTGDTSASERARQGRRLPTALITTPESLTLMLARADAQTAVSTLRMVVVDEWHELLGNKRGVQLQLALARLRYWHPDLIVWGVSATLGNQAHAEQVLIPQGSGISVQGADAKALQVDTLLPPTLERFPWAGHIGLKMLPQVVTEIDTSSSCLVFTNTRAQAEIWYQAILEARPDWAGLIALHHSSLSRDTRDWVERALKDGQLKAVVCTSSLDLGVDFLPVERVLQIGSAKGVARLMQRAGRSGHAPGRTSRITLVPTHSLELIEAAAAQDAVAQRRIEPRESPHKPLDVLVQHLVSMALGGGFVPDELFDEVRGAWAYRDLNPAEWAWALAFVRHGGLSLTAYPDYRRVEPDEQGIWRVPDARLARRHRMSIGTIVSDASLQLKFWSKGGGGKTLGSVEEGFIARLRPGDGFLFAGRLLELVRVEDMTAYVRRSQAKKAAVPRWNGGRMPLSSELAAAVVARLSEAAKGRFDGPEMQAVEPLLSTQLRWSGLPTQGTLLAEALKSREGWHLFLYPFAGRQVHLGLASLLAWRVSQRQPVTFSIAVNDYGLELLSATELDWSTHLNPALLRTDGLLADVLASLNAGELALRRFREIARIAGLVFAGYPGAPKSTRQVQASSGLFYQVFKQYDADNLLLAQAGEEVLREELDIRRLEQTLERLDTLKLDLHLIKRPTPLGFPLLVERFRESMSSEKLADRIRRMVSELEKTADRGSANANANANANA
D1-35_00234765hisP_1COG4598Histidine transport ATP-binding protein HisPATGTACAAACTGACCATCGAAGGCCTGCACAAAAGTTATGGCCACCATGAGGTGCTCAAAGGGGTTTCGCTCAAGGCCAGGACCGGCGACGTGATCAGCCTGATCGGCGCGAGCGGCTCGGGCAAAAGCACCTTCCTGCGCTGCATCAATTTCCTCGAACAACCCAACGACGGCGCCATGAGCCTGGACGGCCAATCGATCCAGATGATCAAGGATCACCACGGCATGCGCGTGGCCGACGCCGACGAGCTGCAACGCATCCGCACGCGCCTGGCCATGGTGTTCCAGCACTTCAACCTGTGGAGCCACATGACCGTGCTGGAAAACATCACCATGGCGCCGCGCCGGGTGCTGGGCGTCAGCAAGCAGGAAGCCGAGGATCGCGCCCGCCGTTATCTCGACAAGGTCGGCCTGCCGGCACGTGTTGCCGAGCAATACCCGGCGTTCCTGTCCGGTGGCCAGCAACAACGCGTAGCGATTGCCCGCGCCTTGGCCATGGAGCCTGAGGTCATGCTGTTTGACGAACCGACCTCGGCCTTGGACCCGGAACTGGTAGGTGAAGTATTAAAAGTGATCCAAGGCCTGGCCGAAGAAGGCCGGACCATGATCATGGTGACCCACGAAATGAGCTTCGCCCGCAAGGTGTCCAATCAGGTGCTGTTTCTGCACCAGGGCCTGGTGGAAGAAGAAGGCGCGCCGGAAGACGTGCTGGGCAGCCCGAAGAGCGAACGGCTCAAGCAGTTCCTCAGTGGCAATCTGAAATAAMYKLTIEGLHKSYGHHEVLKGVSLKARTGDVISLIGASGSGKSTFLRCINFLEQPNDGAMSLDGQSIQMIKDHHGMRVADADELQRIRTRLAMVFQHFNLWSHMTVLENITMAPRRVLGVSKQEAEDRARRYLDKVGLPARVAEQYPAFLSGGQQQRVAIARALAMEPEVMLFDEPTSALDPELVGEVLKVIQGLAEEGRTMIMVTHEMSFARKVSNQVLFLHQGLVEEEGAPEDVLGSPKSERLKQFLSGNLKPGPT0020610_461DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020610-hisP-K10017NANA
D1-35_002351119hypothetical proteinATGCGCCACCAGATTCATGACCTGCTGGCCCCGCTGCCGGGGACCGCACGCAAGATCCACAGCTTCCACTTCGGCCCGGAAAAAGCCGTCGGCAAAATCTACATCCAGTCGTCCCTGCATGCCGATGAACTGCCCGGCATGCTGGTCGCCTGGCACCTCAAGCAGCGCCTGGCCGAACTCGAGGCTTCGGGCCACCTGCGGCACGAAATCGTGCTGGTGCCGGTCGCCAACCCGATCGGCCTCGAACAGGTACTGATGGACGTGCCCCTGGGCCGTTACGAATTGGAGAGCGGGCAGAATTTCAACCGCCGGTTCGTCGACCTGAGCGAAGAGATCGGCAACGAAATCGAAGGCCTGCTGACCGACGACCCGCAGCACAACCTGATGCTGATCCGCACCAGCCTGCGCGACGCCCTGAGTCGGCAGACCGCCAGCACCCAACTGCAATCCCAGCGCCTGGTCCTGCAACGCCTGGCGTGTGATGCCGACATGGTGCTTGACCTGCATTGCGATTTCGAAGCCGTCGCCCATCTCTACACCACGCCCGAGGCCTGGCCGCGGGTCGAGCCGCTGGCGCGCTACATCGGCGCCGAGGCCAGCCTGTTGGCGACCGACTCCGGCGGCCAATCGTTCGACGAATGCTTCACGCTGCTCTGGTGGCAGCTCAAGGAGCGTTTCGGTGAGCGCTTCGAAATTCCCCTGGGCAGCTTTTCGGTAACTGTCGAATTGCGCGGCCAGGGTGACGTCAACCATGGCCTGGCGAGTCTCGACTGCCAAGCCCTGATCGAATACCTGATCCACTTCGGCGCCATCGACGGTGAGCCGGTGCCGTTGCCCGACCTGCCCTACCCGGCCACGCCGCTGGCAGGCGTCGAACCGGTGGCGACACCGGTCGGCGGCCTGCTGGTGTACAGCGCCCTACCCGGTGAGTACCTGGAGGCGGGACAGCTGATCGCCGAAATCATCGACCCGGTCAACGACACCGTCACCCCCGTTCATTGCCGTAATGCCGGGCTGCTGTACGCCCGCTCGCTGCGTCGCATGGCCACCGCCGGCATGGTCATCGCCCATGTCGCCGGGACCGAAGCCTACCGCAGCGGCTACCTACTTTCGCCTTGAMRHQIHDLLAPLPGTARKIHSFHFGPEKAVGKIYIQSSLHADELPGMLVAWHLKQRLAELEASGHLRHEIVLVPVANPIGLEQVLMDVPLGRYELESGQNFNRRFVDLSEEIGNEIEGLLTDDPQHNLMLIRTSLRDALSRQTASTQLQSQRLVLQRLACDADMVLDLHCDFEAVAHLYTTPEAWPRVEPLARYIGAEASLLATDSGGQSFDECFTLLWWQLKERFGERFEIPLGSFSVTVELRGQGDVNHGLASLDCQALIEYLIHFGAIDGEPVPLPDLPYPATPLAGVEPVATPVGGLLVYSALPGEYLEAGQLIAEIIDPVNDTVTPVHCRNAGLLYARSLRRMATAGMVIAHVAGTEAYRSGYLLSPNANANANANA
D1-35_00236711hisMCOG4160Histidine transport system permease protein HisMATGATCGAACTCCTGCAAGAATACTGGCGACCGTTTCTCTACAGCGACGGCGTCCACATCACCGGCCTGGCAATGACCCTGTGGCTGCTCAGCGCCGCGCTGTTGATCGGCTTTGTGGTGTCGATTCCGCTGTCCATTGCCCGGGTTTCGCCCAAGGTCTACGTGCGCTGGCCGGTGCAGTTCTACACCTATCTGTTTCGCGGTACGCCGCTCTATATCCAATTGCTGATCTGCTACACCGGCATCTACAGCATCGAGGCGGTGCGTGCCCAACCCGTGCTCGACAGTTTCTTTCGCGACGCGATGAACTGCACGATCCTGGCGTTCGCGTTGAACACCTGCGCCTACACCACGGAGATCTTTGCCGGGGCGATTCGCAGCATGAACCACGGCGAAGTCGAAGCGGCCAAGGCTTACGGGTTGACCGGCTGGAAGCTCTACACGTACGTGATCATGCCGTCAGCGCTGCGTCGTTCGCTGCCTTACTACAGCAACGAAGTGATATTGATGCTGCATTCGACGACCGTGGCGTTCACCGCTACCGTTCCAGACGTGCTGAAGGTCGCCCGGGACGCCAACTCGGCCACCTTCCTGACGTTCCAGTCGTTCGGGATCGCCGCGTTGATCTACCTGACCGTCACGTTTGCACTGGTGGGCCTCTTCCGTCTCGCCGAACGCCGCTGGCTGGCCTTTCTCGGGCCGACCCACTAAMIELLQEYWRPFLYSDGVHITGLAMTLWLLSAALLIGFVVSIPLSIARVSPKVYVRWPVQFYTYLFRGTPLYIQLLICYTGIYSIEAVRAQPVLDSFFRDAMNCTILAFALNTCAYTTEIFAGAIRSMNHGEVEAAKAYGLTGWKLYTYVIMPSALRRSLPYYSNEVILMLHSTTVAFTATVPDVLKVARDANSATFLTFQSFGIAALIYLTVTFALVGLFRLAERRWLAFLGPTHPGPT0020600_395DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020600-hisM-K10015NANA
D1-35_00237729hisQ_1COG4215Histidine transport system permease protein HisQATGTTCGAACAATTCCTACAAAGTCTGGGGCTCTCGGCCTTCAGCCTGCAGGGCTTTGGCCCGCTGCTGATGCAAGGCACCTGGATGACCATCAAGCTGTCGGCCCTATCCTTGCTGCTTAGCGTCCTGCTCGGGTTGCTCGGCGCCAGCGCCAAATTGTCCAGCGTCAAACTGCTGCGTATTCCGGCCCAGCTCTACACCACGCTGATTCGCGGCGTGCCCGACCTGGTGCTGATGCTGCTGATTTTCTACAGCCTGCAAACCTGGCTGACCTCTTTTACCGATTTCATGGAATGGGAATACATCGAGATCAACCCGTTCGGCGCCGGGGTCATCACCCTAGGCTTCATTTACGGTGCGTACTTCACCGAAACCTTTCGCGGCGCGATCCTTGCGGTGCCTCGCGGTCAGGTCGAAGCGGCCACGGCTTATGGCCTCAAGCGTGGCCAACGTTTCCGTTACGTGGTGTTCCCGCAAATGATGCGCTTTGCCCTGCCGGGGATCGGCAACAACTGGATGGTCATGCTCAAGGCCACCGCCCTGGTGTCGATCATCGGCCTGGCCGACCTGGTCAAGGCCGCCCAGGATGCGGGCAAAAGCACCTACCAGCTGTTTTATTTCCTGGTGCTGGCGGCGCTCATCTATCTGCTGATCACCAGTGCATCCAACTTTATCCTGCGCTGGCTTGAACGCCGCTACGCCGCCGGAGCCCGGGAGGCCGTGCGATGAMFEQFLQSLGLSAFSLQGFGPLLMQGTWMTIKLSALSLLLSVLLGLLGASAKLSSVKLLRIPAQLYTTLIRGVPDLVLMLLIFYSLQTWLTSFTDFMEWEYIEINPFGAGVITLGFIYGAYFTETFRGAILAVPRGQVEAATAYGLKRGQRFRYVVFPQMMRFALPGIGNNWMVMLKATALVSIIGLADLVKAAQDAGKSTYQLFYFLVLAALIYLLITSASNFILRWLERRYAAGAREAVRPGPT0020605_18DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020605-hisQ-K10016NANA
D1-35_00238783argT_1COG0834Lysine/arginine/ornithine-binding periplasmic proteinATGAAAAAAGCACTGCTGACCCTTTCTGCACTGGCGTTGTGCATGGCCGCCGGCGTCGCCACGGCCAAGGAATACAAGGAACTGCGTTTTGGTGTCGACCCGTCCTACGCCCCGTTCGAATCCAAGGCCGCCGATGGCAGCCTGGTGGGTTTCGACATCGACCTGGGCAATGCGATCTGTGAAGAACTGAAGGTCAAATGCAAATGGGTCGAAAGCGATTTCGACGGAATGATTCCGGGCCTCAAGGCCAATAAATTCGACGGCGTGATCTCCTCCATGACCGTTACCCCGGCCCGTGAAAAGGCTATCGACTTCTCCAGCGAGTTGTTCTCCGGCCCAACGGCCTATGTATTCAAGAAGGGCTCGGGCCTGAGCGCAGACGTTGCCTCGCTCAAGGGCAAGACCGTCGGCTACGAGCAAGGCACCATCCAGGAAGCCTACGCCAAGGCCGTGCTGGACAAGGCCGGCGTCAAGACCCAGGCCTACCAGAACCAGGACCAGGTCTATGCCGACCTGACCTCGGGCCGCCTCGATGCCGCGATCCAGGACATGCTTCAGGCCGAACTGGGCTTCCTGAAATCGCCAAAAGGCGAAGGCTATGAAGTCAGCCAGCCGGTGGACAGCGAACTGCTGCCATCCAAGACCGCCATCGGTATCAAGAAAGGTAACAAAGAGCTGAAGGCACTTTTGGATAAAGGTATCAAAGCGTTACACGACGACGGCAAATACGCCGAGATCCAGAAAAAACACTTTGGCGATCTGAATCTGTACAGCGGCAAATAAMKKALLTLSALALCMAAGVATAKEYKELRFGVDPSYAPFESKAADGSLVGFDIDLGNAICEELKVKCKWVESDFDGMIPGLKANKFDGVISSMTVTPAREKAIDFSSELFSGPTAYVFKKGSGLSADVASLKGKTVGYEQGTIQEAYAKAVLDKAGVKTQAYQNQDQVYADLTSGRLDAAIQDMLQAELGFLKSPKGEGYEVSQPVDSELLPSKTAIGIKKGNKELKALLDKGIKALHDDGKYAEIQKKHFGDLNLYSGKPGPT0020595_165DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_HISTIDINE_TRANSPORT,PGPT0020595-hisJ-K10014NANA
D1-35_002391689ligDNA ligaseATGAAAGCTTTTGCCGAGCTGTACGCCGAACTCGACGCCACCACCTCAAGCAACGCCAAGCTCGCGGCCATGCAGGATTACTTCAGCAAGGCGCCAGCCGAGGACGCCGCCTGGGCGGTGTATTTTCTCTCGGGCGGGCGTCCCAGGCAGTTGGTACCGGTGAAAATCCTCCGCGAGCTGGCGGTCCAGGTGTCCGGCCTGTCTCTTTGGCTGTTCGAAGAAAGTTACCAGGCCGTGGGCGACCTGGCCGAAACCATTTCGCTGGTACTGCCCGAATCGCCCCACAGTTCCGATGAAGGCCTGGCGGTGTGGATCGAGGAAAAACTCCTGCCGTTGCGCGGTGAGTCGCCAGAGGTACTGGCGCAGCGGCTTCCGGCGCTGTGGGCAGAACTTGACCGATCCAGCCTGATGCTCTGCATCAAGCTCATCACCGGCAGTTTCCGCGTCGGGGTGTCCAAGCTGTTGGTCACCCGGGCGCTGGCTACGATGGCCGGGCTCGACAGCAAACGGGTGGCCCAACGGCTGGTGGGCTACACCGATCTGTCCCATCGCCCGACCGCGGCCAGTTACCTCAAGCTGATCGCCGGCGAATCTGCCGATGAACATGCCCAGCGCGGCGGCCAGCCTTATCCGTTTTTCCTGGCCCATGCCTTGTCACAACCGATTGAGCAATTCGACACCTTGTTGGGGCCGGCCAGCGACTGGCAGGTGGAGTGGAAATGGGACGGAATCCGCGCCCAGGTGATCAAGCGTGACGGCCATTTGTGGGTCTGGTCCCGTGGCGAGGACTTGGTGACCGAGCGCTTTCCTGAATTGCATTGCCTGGCGCAGGCGTTGCCCGACGGCACGGTGATCGATGGCGAAATCGTGGTCTGGAAAGCCCCGCAGGCGATCACCGAGGATGCCTTTGATCCGGAAGCGCCGCTGCAGCCGGCGGTGCAACCTTTCGCCCTGTTGCAACAGCGCATCGGTCGCAAGACCTTGAGCAAGAAAGTGCTGGAAGACGCTCCCGTGGTGGTGATGGCCTACGACCTGTTGGAATGGCAAGGCGAGGACTGGCGCAGCCGGCCCCAGGCCGAGCGTCGCGATCAACTGGAGGCCCTGATTGCCCGCTGCCACAGTCCGGTGCTGTTGCCGTCGCCCATCGTCACTGGCCAGGATTGGTTCGACCTTGCCCGCCAGCGCGAAGCGTCCCGCAGCCTCGGCGTCGAAGGCATGATGCTCAAGGCGCGCAACGCGCTGTACGGCGTCGGCCGGACCAAGGACATGGGCGTGTGGTGGAAATGGAAGATCGACCCGTTCAGTGTCGACGCGGTGCTGATCTATGCCCAGCGCGGCCATGGCCGGCGCGCCAGCCTCTACAGCGACTACACCTTCGCCGTGTGGGACAACCCGCCCGGCAGCCGAGAACGCACGCTGGTGCCTTTCGCCAAGGCCTATTCAGGGCTGACCGATGCAGAAATGCGCCAGGTCGACAGCATCGTGCGCAAGACCACGGTGGAAAAGTTCGGCCCGGTGAGCAGCGTCACCCCGACCTTGGTTTTCGAGCTGGGCTTCGAAGGCATTGCCTTGTCCAAGCGCCACAAGAGCGGGATCGCGGTACGTTTCCCACGGATGCTGCGCTGGCGCCAGGACAAGACCGTCGAAGAGGCGGACACGCTGGCGACGCTTCAGGATCTTCTCAAGTAAMKAFAELYAELDATTSSNAKLAAMQDYFSKAPAEDAAWAVYFLSGGRPRQLVPVKILRELAVQVSGLSLWLFEESYQAVGDLAETISLVLPESPHSSDEGLAVWIEEKLLPLRGESPEVLAQRLPALWAELDRSSLMLCIKLITGSFRVGVSKLLVTRALATMAGLDSKRVAQRLVGYTDLSHRPTAASYLKLIAGESADEHAQRGGQPYPFFLAHALSQPIEQFDTLLGPASDWQVEWKWDGIRAQVIKRDGHLWVWSRGEDLVTERFPELHCLAQALPDGTVIDGEIVVWKAPQAITEDAFDPEAPLQPAVQPFALLQQRIGRKTLSKKVLEDAPVVVMAYDLLEWQGEDWRSRPQAERRDQLEALIARCHSPVLLPSPIVTGQDWFDLARQREASRSLGVEGMMLKARNALYGVGRTKDMGVWWKWKIDPFSVDAVLIYAQRGHGRRASLYSDYTFAVWDNPPGSRERTLVPFAKAYSGLTDAEMRQVDSIVRKTTVEKFGPVSSVTPTLVFELGFEGIALSKRHKSGIAVRFPRMLRWRQDKTVEEADTLATLQDLLKNANANANANA
D1-35_002401032hypothetical proteinATGGATCTGGTCATTGCCCGCCCCGAAGGCCTGTATTGTCCGCAGGGAGATTTCTACATCGACCCATGGCGGCCGGTGGACCGCTCGGTCATCACCCACGCCCACGGCGACCACGCCCGCGGCGGCAACCAGCACTACCTGGCAGCGGCACCCGGCGAAGGCATCCTGCGCTCCCGGCTGGGCCAGGACATCAATCTGCAAACCCTGCCCTACGGCGAACGGCTGCTGCACCATGGCGTGACCTTGAGCTTTCATCCCGCCGGCCATGTGTTGGGTTCTGCCCAGGTGCGGTTGGAATACCAAGGCGAGGTGTGGGTCGCGTCCGGCGATTACAAAGTCGAGCCCGACGGCACCTGCGCACCGTTCGAGCCGGTGAAGTGTCATACGTTCATCACCGAATCCACCTTCGGCCTGCCGATCTATCGCTGGCAGCCCCAGGCGCAGGTGTTCGATGAGATCAACCAGTGGTGGCGCGGGAACATCGCCGCCGGCCGGGCCAGCGTGTTGTTCTGCTATTCCTTTGGCAAGGCCCAGCGAATCCTGCACGGCATCGACGCGAGCCTGGGGCCGATACTCGCCCATGGCGCGGTTGAGCCGCTGAACCGGGTCTATCGCGAAGCCGGTGTGCACCTGCCGCCGACGATTTATGCCGGCGATGTGAAAAAGACTGATCCGATCATGAGCCAGGCACTGGTCATCGCCCCGCCCTCCGCCGGTGGCAGCACCTGGATGCGGCGTTTCGGTGATTACAGCGACGCCTTCGCCAGCGGCTGGATGCGCTTGCGTGGCACCCGTCGGCGACGGGGCGTGGATCGGGGCTTCGTGCTTTCCGATCACGCCGACTGGCCCGGCCTGCTCTGGGCCATCGAACAGACCGGCGCCGAACGGGTCATGGTCACCCATGGATCGGTGGCCGTGCTGGTGCGTCATCTCTGTGAACAAGGCCTCGACGCCCAGGGCTTCACCACGGAATACGGCGATGACGAAGAGGACGTCGCCGTGGCGAGCGACAGCGGCGAGGATGCCTCATGAMDLVIARPEGLYCPQGDFYIDPWRPVDRSVITHAHGDHARGGNQHYLAAAPGEGILRSRLGQDINLQTLPYGERLLHHGVTLSFHPAGHVLGSAQVRLEYQGEVWVASGDYKVEPDGTCAPFEPVKCHTFITESTFGLPIYRWQPQAQVFDEINQWWRGNIAAGRASVLFCYSFGKAQRILHGIDASLGPILAHGAVEPLNRVYREAGVHLPPTIYAGDVKKTDPIMSQALVIAPPSAGGSTWMRRFGDYSDAFASGWMRLRGTRRRRGVDRGFVLSDHADWPGLLWAIEQTGAERVMVTHGSVAVLVRHLCEQGLDAQGFTTEYGDDEEDVAVASDSGEDASNANANANANA
D1-35_002412451quiP_1COG2366Acyl-homoserine lactone acylase QuiPATGGCCTCGCCAGCCTCGATTTCTTTCTTTCCCAAGCTCGGCGTTGCCGCAGCAGTGGCCAGCCTGCTCGGTTTGAGCGGTTGCCAGGCCTGGAATACCCAGGACACGGTCGCGCCCACCACCGGCGTACAACCGCTCAAGGGGCTGGCGCAGAATGTCTCGGTCCGGCGTAATGCCTTGGGCATGCCGCTGATCGAGAGCAACAGTTTTCATGACGCCCTGTTTGCCCTCGGCTATGTGCATGCCAGCGACCGGATCACGCAGATGGCCACCCTGCGCCTGCTCGCCCAGGGCCGCCTGGCGGAAATGTCCGGCGCCGAACGGCTGGACGTCGACCGCTACATGCGCGCCGTCAACCTGAAGAAAAGCGCAGATGAGCTGTACAAGGCATCTTCGCCACGCCTGAAGCGCTTTTTCGAAGTCTATGCGCGAGGCGTCAACGCCTACCTGTTCCGCTACCGCGACAAGCTGCCGGCGGACTTGGCCGCCACCGGCTACAAACCCGAATACTGGAAACCGGAAGATTCGGCGCTGCTGTTCTGCCTGCTTAACTTCACCCAATCGGCGAACCTGCCGGAAGAAGTCGCCGCCCTGGTGCTGGCCCAGAGCGTAACCAACGATAAACTGGCCTGGCTGAGCCCGTCCTACCCGGACGAGCCATTGCCCTTGACCGAAGCCGAAAAGCTGCAGGGCGTCCGGCTCAATGGGCAGATTCCCGGTTTGAACGAAATCAGCAAGGCCAGCGCCGAGTTGGCCAACCTGAACCTGCTGGGCGCAGCGTCTTCGAGCAACTGGGCCATCGGCCCGCAGCGCAGCCGCAACGGCAAGAGCCTGTTGGCCGGCGACAGCCATGGCCCGCTGGGCGTGCCGTCGCTCTGGAGCCCAGTGCAGATTCGCGCGCCCAAATATCAGGCGGCCGGGCTTTCCGTGGCGGGCATCCCGATGATCCTCGCGGGCTTCAACGGTAACGTCGCGTGGAGCATGACCAGTGTTCTCGGCGACAACCAGGACCTGTACCTGGAAAAGATCCGACGCCAGGGCAACGGGCTGTCCTACGAAGCCAACGGCAAGTGGCAGCAGGCGACCGTGCGCAACGAGACCTACTTCATCAAGGGCCAACGGTCGATCAGAGAAGCGGTGTACGAAACCCGCCACGGTCCGTTGCTCAACAGCGCCCAAGGTCCGGCCATGGCCAACGGTCTGGGCCTGGCCCTGCAATTGCCGAGCTTCACCGACGACAAGACCCTGGACGCGCTCTTCGATCTGTCGCGCGCGCAGAACGTCGAGAAAGCCTCCGACGCGAGCCGGGAGATCCGCGCCCTCGCAGTGAACATGGTGTTCGCCGACGCCCGCAATATCGGCTGGCAGGTCACCGGTCGCTACCCGAACCGCCGCGAGGGCGAAGGCCTGTTGCCGTCGCCGGGCTGGGACAGCCGTTACGATTGGGACGGTTACGCCGATCCGATGCTGCACCCCTACGACCAGGATCCGGCGCAGGGTTGGCTCGGCACCGCCAACCAGCGCGTCATTCCTCATGGCTACGGCATGCAACTGTCCAACTCCTGGGCGGCGCCGGAACGTGGCGAGCGCCTGGCCGAACTGGCCGGCGCAGGCAAGCACGACGCGCGCAGCCTGATCGCCATGCAATACGACCAGACCACGACATTCGCCGCCAAGCTGAAAAAGGTCTTCGAAGCCCCGGGCATGGCCCAGCCACTCAAGCAAGCCATCGAAGCCCTGCCGGTGGCGGACCGCGCCAAGGCACGCGAGGCCTATACCCGGCTGATGGCGTTCGATGGCAGGCTCAGTCCGGTTTCTGCCGACGCAGCGATCTATGAGTTGTTCCTGCAAGAAAGCATGAAGCAGACATTCCTGGATGAACTGGGCCCCGAGGGTAGTCCGGCGTGGAAAGCGCTGGTCGCCAACGGCCAGCTGTCTTATTCGGCCCAGGCCGATCATTTGCTTGGTCGTGAGGACAGTCCGTTCTGGGACGATGTGCGCACGCCGCAAAAAGAAGACAAGGCCGTTATCCTGGCGCGCAGCCTCGCGGCGGCTGTCAGCGCCGGTGACAGTCTGCTGGGCACTGACCACAGCGCCTGGCAGTGGGGCAAGCTGCACCGCCAGGAATGGAAAAACGCCAGCGGCCAGACCGTACGCGGCCCGCTGGCAGCCGGCGGCGATAACAGCACGCTCAATACCGCCGCGTTCGCCTGGGGCCAGGATTTCAACACGACCCTGGCGCCGGCCACGCGCTTTATCGTTGATTTCAGCCAGCCTGAGCCATTGACGATCCAGGGCGGCGCCGGCCAGTCGGGCAACCCGGCCAGCCCGAACTATCTGAACGGCCTGGACCCGTGGCTCAAGGGTCAATATCAAAGCCTGCCCTTGCAACCGCAGAATTTTGACCGGGCGTATGGCAAGACTCGTTTGACCTTGGTTCCCGGTAAATAGMASPASISFFPKLGVAAAVASLLGLSGCQAWNTQDTVAPTTGVQPLKGLAQNVSVRRNALGMPLIESNSFHDALFALGYVHASDRITQMATLRLLAQGRLAEMSGAERLDVDRYMRAVNLKKSADELYKASSPRLKRFFEVYARGVNAYLFRYRDKLPADLAATGYKPEYWKPEDSALLFCLLNFTQSANLPEEVAALVLAQSVTNDKLAWLSPSYPDEPLPLTEAEKLQGVRLNGQIPGLNEISKASAELANLNLLGAASSSNWAIGPQRSRNGKSLLAGDSHGPLGVPSLWSPVQIRAPKYQAAGLSVAGIPMILAGFNGNVAWSMTSVLGDNQDLYLEKIRRQGNGLSYEANGKWQQATVRNETYFIKGQRSIREAVYETRHGPLLNSAQGPAMANGLGLALQLPSFTDDKTLDALFDLSRAQNVEKASDASREIRALAVNMVFADARNIGWQVTGRYPNRREGEGLLPSPGWDSRYDWDGYADPMLHPYDQDPAQGWLGTANQRVIPHGYGMQLSNSWAAPERGERLAELAGAGKHDARSLIAMQYDQTTTFAAKLKKVFEAPGMAQPLKQAIEALPVADRAKAREAYTRLMAFDGRLSPVSADAAIYELFLQESMKQTFLDELGPEGSPAWKALVANGQLSYSAQADHLLGREDSPFWDDVRTPQKEDKAVILARSLAAAVSAGDSLLGTDHSAWQWGKLHRQEWKNASGQTVRGPLAAGGDNSTLNTAAFAWGQDFNTTLAPATRFIVDFSQPEPLTIQGGAGQSGNPASPNYLNGLDPWLKGQYQSLPLQPQNFDRAYGKTRLTLVPGKPGPT0003395_208DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QUORUM_QUENCHINGCE-QUORUM_QUENCHING-AHL-DEGRADATION,PGPT0003395-pvdQ-K07116NANA
D1-35_00242558yecDCOG1335Isochorismatase family protein YecDATGGAGCTACAGAAAAACGCGGCGCTGATCCTTATCGATCAGCAGAAAGGCATCCTCCATCCCAGGCTTGGCCCGCGCAACAATCCCGGGGCGGAGCTGCGCATGCTGGAATTGCTCGGATGCTGGCGAGAGTCGGCGCGGCCAATCATCCATGTCCACCATTTGTCCCGGTCCGAGGCGTCAGTCTTCTGGCCTGGACAATCAGGCGTGGAGGTTCAGGAGCGGTTCAGGCCCATGGCTGGGGAAGGGCTGGTCCAGAAGCAGATGCCCGATGCGTTTTGCGGCACGACCCTGGAGGCGGATTTGCGCAGTGCGGGTATCGGGCAACTGGTGATTGTCGGCGTGGCCACGAACAATTCGGTGGAGTCCACCGCGCGCACGGCGGGCAACCTGGGATTCGATACGTGGGTAGCCGAGGATGCCTGTTACACCTTCGACAAGCCCGACTTCTTCGGTTATGCCCGTTCGGCTGCCGAGGTGCATGCGATGTCCCTGGGGAATCTGCATGGGGAGTATGCGACGGTGGTCAGCGTGGAGCGGATTCTGGCGGCGGGCTGAMELQKNAALILIDQQKGILHPRLGPRNNPGAELRMLELLGCWRESARPIIHVHHLSRSEASVFWPGQSGVEVQERFRPMAGEGLVQKQMPDAFCGTTLEADLRSAGIGQLVIVGVATNNSVESTARTAGNLGFDTWVAEDACYTFDKPDFFGYARSAAEVHAMSLGNLHGEYATVVSVERILAAGNANANANANA
D1-35_00243204hypothetical proteinATGACCCAACAACCCCACGTCCATGGCCCTGATTGCAACCACGACCATGATCATCACCACGACCATGATCACGGCCATGTCCACGGCCCGAACTGCGGCCACGCCCACCAGGAACCCGTGCGCAATGCCCTGAAGGACGTCGGTCGCAACGACCCTTGCCCGTGCGGCAATGGCAAGAAATTCAAGAAGTGCCACGGGGCTTGAMTQQPHVHGPDCNHDHDHHHDHDHGHVHGPNCGHAHQEPVRNALKDVGRNDPCPCGNGKKFKKCHGANANANANANA
D1-35_00244486hypothetical proteinATGACCCAGACATCTCGATTGCTGCGCATCACTTGCCTGCTGCTGTTCGTCGGGCTAGGGGCGTGTGCGTCCTGGCGAGGTGAAGAGGCACCCGAACCACAGGTGCATCTGGTCAAGGTGGAGGTGGTGCGGGCCCGGTTGCTGGAGCAGAAGTTCATGTTGCACTTTCGCGTCGACAACCCCGGCGAAGACGACCTCACCGTACGCGGCCTGACCTACCGGATCCACCTGGACGACTTGCTGCTGACCGAAGGAGAACATGAACACTGGTTTACGGTGCGCCCCGGACACAGCGCCTATTTCAAGGTGCCGATCCGCACCAACCTGTGGCCGCAGGTGCGCGAACTGGTGAAAATGCTGAAGAAACCCCGGCAACAGATTCCCTATCGTCTGGAGGGGGAGCTGGAAACCGGTTTATTCATCGCCGACTACGTGCACCTGGAGCGCAATGGCGTGATAATCGCCGCCGATCTAATTGCGGAGTAAMTQTSRLLRITCLLLFVGLGACASWRGEEAPEPQVHLVKVEVVRARLLEQKFMLHFRVDNPGEDDLTVRGLTYRIHLDDLLLTEGEHEHWFTVRPGHSAYFKVPIRTNLWPQVRELVKMLKKPRQQIPYRLEGELETGLFIADYVHLERNGVIIAADLIAENANANANANA
D1-35_00245498hypothetical proteinGTGGTAGCTGTGGACACTAGCCTGCATTCAACCATTTGCCCCTGCGGCAGCGGCAACCCGTTGGACGCCTGCTGCGGCCATTATCACGACGGTCATCCGGCGCCCTGCGCCGAAGCCTTGATGCGCTCGCGCTACAGCGCTTATGTGCTGGGCCTGGTGGATTATCTGGTGAGCACCACCCTGCCCGCCCAGCAGGACGGCCTCGACCGCCAGGCCATCAGCGAATGGAGCGCCGGCAGCACCTGGCTGGGCTTGGAGGTGGAGAGCAGCGAGGTATTCGGCGGCCAGCCGGAACATGCCTTCGTCACTTTCACCGCACGCTGGCACGACGGCCAGGGCGAACACAGCCACCGCGAACAATCTTCGTTTGTGCAGAACGGCGGGCGCTGGTACTTCATTGACCCGACCGTGCCGGTCAAGACGGGACGCAACGACAGCTGCCCGTGCGGTAGCGGGCAGAAATTCAAGAAGTGCTGCGCCAGTTACTTCATTCGTTGAMVAVDTSLHSTICPCGSGNPLDACCGHYHDGHPAPCAEALMRSRYSAYVLGLVDYLVSTTLPAQQDGLDRQAISEWSAGSTWLGLEVESSEVFGGQPEHAFVTFTARWHDGQGEHSHREQSSFVQNGGRWYFIDPTVPVKTGRNDSCPCGSGQKFKKCCASYFIRNANANANANA
D1-35_00246498hypothetical proteinATGACCGTTGCCATTTCTTCGCGCACGCCCCAGCAGGCGCTGGCCGCCGTGCTTGACCGCTATGCCCCGCAAAAGCTGTTGCTGATCGGCGCCGGCAGCTTCCCCGCGCTCGAGGCATTCCAGCAGGCGCATCCCGACACCGAGGTGGTCCATGCTGCCCCCGGCCCCTTGCCGGCGGATCTGGCTGCGCGGCGTTTCGACCTGGCCCTGGCGCTCGATTGCCTGGAGCATTTGCCCAAGCGCGACGGTCTGAACCTGTTGGGCGGTATTCGCAACCTCAACGCCAGCCGGATTGCCGTGCTGGCCGACCTCAACGCCTGCGGCTGGCAGGAAACCGACTTCTTCTCCCTGGCCCTGCAGGCCAGCGAACGCTTTCAGCGCGAAGAACAGGTGCTGACCCTGTTTACCTACGATCTGCTTGAATACAAGCAGGTCCCCGACTGGCTCAACTCACGTTTCTGGGCGAACCCGGAAAACTTTGGAAAATATTGGTGGTAGMTVAISSRTPQQALAAVLDRYAPQKLLLIGAGSFPALEAFQQAHPDTEVVHAAPGPLPADLAARRFDLALALDCLEHLPKRDGLNLLGGIRNLNASRIAVLADLNACGWQETDFFSLALQASERFQREEQVLTLFTYDLLEYKQVPDWLNSRFWANPENFGKYWWNANANANANA
D1-35_00247702ompAOuter membrane protein AATGAGCATAGTTCGGACAGCGTTACCCCTGGTTCTGCTAACCAGTGTGTTGACTGGTTGCGCAGGTTTGCAAAAAACCGACTGGCCGATCTGTGCGGCCACCGGTGGTGTGGTCGGCGCAGGATTGGGCGCCATCGAAAGCAGTTCCTGGATCGGCCCGGGCGCACTGGTCGCCGGTACGGTGGCGGCAGGCTGGTGCTGGGCCCATGGCGATGGCGACGAGGACGGCGATGGCGTGCCGGACAGTCGTGACAAGTGCCCGGGCACGCCGAAGGGCGTGCAGGTCGATGCCGACGGCTGCCCACCACCGGCACCCGCACCGACACCGGTGGCTGAAGCGCCCGTGATGGTCCAGGAAGAAACGATCGTGGTCCGCGACGTGCATTTCGAATTCAACAAGGCCACCCTCACGCCGACGGACAAAGAAGTGCTGAGCACCATCGCGACCCGGCTGAAGCAGGAAACCTCCACCGCACAACTGCGAGTGACCGGGCACACCGACAGCGTCGGCAGCGATGCCTATAACCAGAAACTGTCGGAAAAACGCGCCAACTCGGTGGTTCAATACCTGGTCGAAAGCGGCGTGCCTCGCGCCAGTTTCGTCTCGGTGGCCGGCGCCGGGGAAAGCCAACCGGTGGCGGATAACAAAACCGCCGATGGTCGCGCAATGAACCGTCGCACCGAAATCAAGATAAACCGCTGAMSIVRTALPLVLLTSVLTGCAGLQKTDWPICAATGGVVGAGLGAIESSSWIGPGALVAGTVAAGWCWAHGDGDEDGDGVPDSRDKCPGTPKGVQVDADGCPPPAPAPTPVAEAPVMVQEETIVVRDVHFEFNKATLTPTDKEVLSTIATRLKQETSTAQLRVTGHTDSVGSDAYNQKLSEKRANSVVQYLVESGVPRASFVSVAGAGESQPVADNKTADGRAMNRRTEIKINRPGPT0022215_4365DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-SURFACE_ATTACHMENTSURFACE_ADHESIONOTHER_SURFACE_ADHESION_PROTEINS,PGPT0022215-ompA_ompF_porin|oprF-K03286NANA
D1-35_00248726pal_2Peptidoglycan-associated lipoproteinATGAACGTTCTAATCAAGGCCGCCTTACCGCTACTGCTGGCAAGCAGCCTGCTGTCCGGATGCGCCACTCACAGTGATGGCAGTGCCTCGCTCAATCAGCGTACCTGGCCGATCTGCAGCTTGATCGGCGGGCTTGTCGGCGGTGGTCTCGGGGCCATCGAAAGCGGTGGCTGGGCCGCCGGTGGCGCTGCGTTGGGGCTGCTGGGCGGTGGTTTGATCTGTTACGCCCAGGACGGCGACGAAGACGACGATGGTGTATTCGATCGTCGCGACCGTTGTCCCGATACACCGGCCAATACCCCCGTCGAACATCACGGCTGCCCGCTGCCGCAATACCCGGCCAGCACGCCACCGGCCGAGCCGGACATGCCCACCAGCGAAGTCATTACCCTGAACGACGCTGGCAAGGTGCTGTTCGATTTTGACAAATCCGACCTCACCGCCGCGGCCAGGAGCCAGCTCGATGAGCTGACGGCAAAACTGAGTCACGCCAACGTCGCCAGTATCCGCGTGGTGGGCCACACCGACAGTGTCGGTACCGAGGCGTATAACGAGGGCCTCTCGGAACGTCGGGCCGGTAGCGTGGTGGAGTATTTGCTGACCCAGGGCGTGGCCCCGGCAAAACTCACGAGTGAAGGCAAGGGCGAAAGCCAACCGGTGGCCGACAACGAGACTGATGAGGGGCGGGCCCAGAACCGTCGGGTCGAATTGCATATCCAGCGTTAAMNVLIKAALPLLLASSLLSGCATHSDGSASLNQRTWPICSLIGGLVGGGLGAIESGGWAAGGAALGLLGGGLICYAQDGDEDDDGVFDRRDRCPDTPANTPVEHHGCPLPQYPASTPPAEPDMPTSEVITLNDAGKVLFDFDKSDLTAAARSQLDELTAKLSHANVASIRVVGHTDSVGTEAYNEGLSERRAGSVVEYLLTQGVAPAKLTSEGKGESQPVADNETDEGRAQNRRVELHIQRPGPT0022215_4248DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-SURFACE_ATTACHMENTSURFACE_ADHESIONOTHER_SURFACE_ADHESION_PROTEINS,PGPT0022215-ompA_ompF_porin|oprF-K03286NANA
D1-35_00249273hypothetical proteinATGAAGGTGTTTTGGTGGCTGGGGCGCGTGCTGACCCTGCTGTTCTGGCTGGTGGTGCTGGTCAATCTGGTCATGCCGTTCGTCCATCCGCTGCATCTGTTGGTCAATCTGGCCGGGGTGTCGTTACTGGCGATCCATCTGCTCGAACTTCTATTGTTCAGGGCTCGGTTTCGCGGTCGTCCCGCTCCTGGCCGTGATCGCCTCAGGGTGCTGCTGTTCGGCATCTTTCACCTGCAAACCCTCCCGACCGCGCCAGAGGCCTCCCATGCGTAAMKVFWWLGRVLTLLFWLVVLVNLVMPFVHPLHLLVNLAGVSLLAIHLLELLLFRARFRGRPAPGRDRLRVLLFGIFHLQTLPTAPEASHANANANANANA
D1-35_00250759hypothetical proteinATGCGTAAACTGTGTCTGCTCGCATTACTCGTATGCCCGTGGGCCAGCGCTCAAGTGGTCCAGGTGGAAAGCCACTCGTTGATGCGCTTGCCCAACACCACCAGCACGCTTGCCCTGGAGCGATTGGACGTGGCCGACTACGGCACGCTGCTGGTGCCTTCGAACGTCACTGAGCTGTCCATTGGCCAATTGCACCTGGGGCGGGAGGCAAGGATCGCGATCGTACCGGCACAACAGGCGCTGGAGATGAAAGTCACCCAGGCCGAACTGGCTGAAGGCAGCCAGATCACCGCCCGTGGCGCGCCGGGAACCTATACCAAGGCGGCGCGCCCGGGGCGTAACCTCAATTTGCGCTTCGAGGCGTTGAACGCGCCGCTGCTGTCGGTGGATGCCCGTGGCGGTACCGGTGCGCCAGGTTACGTGGGCCTTGACGGCGCCAACGGCCAGGCACCGGGTTGCACCTGGGGTTCGGCCGGTCGCGGCGCCGACGGCAGCAACGGCGCGGATGGCCAGCCGGGCGCGGCCGGCGCGCTGGTTCGGCTGCAATTGCCCCGCGCTTATCCCGACGAACAGATCAAGGTAATGGTAGATGGCGGCGCTGGTGGCGCGGCCGGGCCTGGCGGCAAGCCTGGCGCGGGAGGCAAGGCCAAGGGCTGCCTGGTCTACACTGCCGACGGCGGCAAGAGCGGCCGTCCCGGCGCCGATGGCCAGCCAGGGCCTGCCGGCGCGACGGGTGCGGTGACGGTGCAGCGGTTCTGAMRKLCLLALLVCPWASAQVVQVESHSLMRLPNTTSTLALERLDVADYGTLLVPSNVTELSIGQLHLGREARIAIVPAQQALEMKVTQAELAEGSQITARGAPGTYTKAARPGRNLNLRFEALNAPLLSVDARGGTGAPGYVGLDGANGQAPGCTWGSAGRGADGSNGADGQPGAAGALVRLQLPRAYPDEQIKVMVDGGAGGAAGPGGKPGAGGKAKGCLVYTADGGKSGRPGADGQPGPAGATGAVTVQRFNANANANANA
D1-35_00251465hypothetical proteinATGACACCCTTTGCCCTCGTCTACACCCTGCATTTGCTGGCGGCCCTGGTCTGGGTTGGCGGTATGTTTTTCGCCTGGATGATCCTGCGACCCGCCGCAATCACGGCGCTTGAGGGCCCTGCCCGGCTCAAGTTGTGGGTAGAAGTGTTTCAGCGTTTTTTCGTCTGGGTCTGGGTGGCCGTGGTGCTTTTGCCGATCAGCGGCGTGGGCCTGATCCACATGCGCTTCGCCGGTTTCGAAACCGCGCCGCGTTACGTGCAGGTAATGATGGGATTGTATGTGGTGATGGCGGCGTTGTTCATCCGTATCCAGGGCCTGCAACTGCCAGCATTGCGTAACGCTGTGACGGCGCAGGATTGGCCGACGGGTGCGGCGGTGCTGGGGAAGATTCGCAGGCTGGTGGGGATCAATCTGTTGATCGGTTTGCTGGTGGTGGCGATCGGCGCGGCTCGGCCGATGTTCTGAMTPFALVYTLHLLAALVWVGGMFFAWMILRPAAITALEGPARLKLWVEVFQRFFVWVWVAVVLLPISGVGLIHMRFAGFETAPRYVQVMMGLYVVMAALFIRIQGLQLPALRNAVTAQDWPTGAAVLGKIRRLVGINLLIGLLVVAIGAARPMFNANANANANA
D1-35_002522145dinG_1COG1199ATP-dependent DNA helicase DinGATGATCAGCACCGAACTCAAAACCACGATCCAGGGCGCCTATTCGCGTTTTCTCGAAGCCAAGAGCCTCAAGCCGCGATATGGCCAGCGCCTGATGATTGCCGAAGTGGCAAAAGTCCTGGGTGACATCGACACCGACGACGAAGGCCGGCGCAGCGGCGAGCCTGCCGTCGTCGCGGTGGAGGCCGGCACCGGTACCGGCAAGACCGTGGCCTACAGCCTGGCGGCGATCCCCACCGCCAAGGCCGCCGGCAAGCGCCTGGTGATCGCCACGGCCACCGTCGCCCTGCAGGAACAGATCGTCTACAAGGACCTTCCCGACCTGATGCGCAACAGCGGGCTGAATTTCAGTTTCGCGTTGGCCAAGGGGCGGGGGCGCTACATGTGCCTGTCCAAACTCGACATGCTGCTGCAGGAAGGCCACGCGCAGACCGCCACTGCCCAGCTGTTCGAGGAAGAAGGTTTCAAGATCGAGGTCGACGAGGCCAGCCAGAAGCTGTTCACCAGCATGATCGAAAAGCTCGCCGGCAATAAGTGGGACGGCGACCGTGACAGCTGGTCCACGGCTCTGGAAGACGCTGACTGGTCGCGCCTGACCACCGACCACAGCCAATGCACCAATCGCCATTGCCCGAACTTCGGCCAGTGCGCTTTCTACAAGGCTCGCGAAGGCATGGGCAAGGTCGACGTGATCGTCACCAACCACGATATGGTCCTGGCCGACCTGGCCCTGGGCGGCGGCGCCGTGCTGCCGGACCCGCGCGACACGATCTATGTGTTCGACGAAGGTCATCACCTGCCGGACAAGGCCATCGGCCATTTCGCCCATTACACCCGGCTGCGCTCAACCGCCGACTGGCTGGAAACCACTGCCAAGAATCTTACCAAACTGCTCGCCCAGCATCCGTTGCCCGGCGACCTGGGCAAGTTCATCGAGCAGGTGCCGGAGCTGGCGCGGGAGATCAAGACGAACCAGCAGTTCATGTTCACCGCCTGCGAGCAGGTGGCCGACTTCAAGCCCGGCGAAGATGTCGAGGGCCGCGAGCGGCCACGCCATCGGTTTGTCGGCGGGGTGATCCCCGAGCATATGCGCGAGATGGGCATCGAACTCAAGAAGGGCTTCGCGCGCCTGACCGACCTGTTCACGCGCCTGACCGATCTGCTCAAGGAAGGCATGGATGGCGAGGTCAATATCGGCATCGCCAGCAACCAGGCCGAGGAGTGGTATCCATTGTTCGGCAGCTTGCTGTCCCGCTCCCAGGGCAACTGGGAGCTGTGGACCGCGTTCACCACCGAAGACCCGGAAGACAATCCGCCGATGGCGCGTTGGCTGACGCTGGCCGAGAGCGGCTCGCTGTTCGACATCGAGGTCAATGCCAGTCCGATCCTGGCGGCGGACATGCTGCGGCGCAACCTGTGGAACGTCGCCTACGGCGCGCTGGTAACCTCCGCCACGCTGACGGCGCTGGGCACTTTCGACCGTTTCCGCATGCGCGCCGGCCTGCCGAAAAAAGCCGTGACCGCCGTAGTTCCGAGCCCCTTCCACCATGCCGACGCCGGCGTGCTGCGGGTGCCGGACCTCAAGGCCGATCCGCGCGATGCCGCCGCCCACACTGCCGCGATCATTCGCGAGCTGCCTGCGCTGGTGGAAGGTTCGCGCGGCACCCTGGTGCTGTTTTCCTCGCGCAAACAGATGCAGGACGTCTTCGACGGCCTCGATCGTGACTGGCGCAAGCAGGTGTTCATCCAGGGCAACCTGTCGAAGCAGGAAACCTTGAACAAGCACAAGGCCCGGGTCGATGGCGGCGATTCCAGCGTGCTGTTCGGCCTGGCGAGCTTTGCCGAAGGCGTCGATTTGCCGGGGGCCTATTGCGAACACGTGGTGATCGCCAAGATTCCATTCTCGGTGCCGGACGATCCGGTGGAAGCCGCGTTGGCCGAATGGATCGAAGCCCGTGGCGGCAACCCCTTCATGGAGATATCCGTGCCGGATGCCTCGCTGAAGCTGGTCCAGGCCTGTGGCCGCTTGCTGCGTACCGAGGAAGACCGCGGCACCATCACCCTGCTCGATCGCCGGCTGGTGACCCAACGCTACGGCAAGGCGATCCTCAACGCGCTGCCGCCGTTTCGGCGGGAGATTTCCTAGMISTELKTTIQGAYSRFLEAKSLKPRYGQRLMIAEVAKVLGDIDTDDEGRRSGEPAVVAVEAGTGTGKTVAYSLAAIPTAKAAGKRLVIATATVALQEQIVYKDLPDLMRNSGLNFSFALAKGRGRYMCLSKLDMLLQEGHAQTATAQLFEEEGFKIEVDEASQKLFTSMIEKLAGNKWDGDRDSWSTALEDADWSRLTTDHSQCTNRHCPNFGQCAFYKAREGMGKVDVIVTNHDMVLADLALGGGAVLPDPRDTIYVFDEGHHLPDKAIGHFAHYTRLRSTADWLETTAKNLTKLLAQHPLPGDLGKFIEQVPELAREIKTNQQFMFTACEQVADFKPGEDVEGRERPRHRFVGGVIPEHMREMGIELKKGFARLTDLFTRLTDLLKEGMDGEVNIGIASNQAEEWYPLFGSLLSRSQGNWELWTAFTTEDPEDNPPMARWLTLAESGSLFDIEVNASPILAADMLRRNLWNVAYGALVTSATLTALGTFDRFRMRAGLPKKAVTAVVPSPFHHADAGVLRVPDLKADPRDAAAHTAAIIRELPALVEGSRGTLVLFSSRKQMQDVFDGLDRDWRKQVFIQGNLSKQETLNKHKARVDGGDSSVLFGLASFAEGVDLPGAYCEHVVIAKIPFSVPDDPVEAALAEWIEARGGNPFMEISVPDASLKLVQACGRLLRTEEDRGTITLLDRRLVTQRYGKAILNALPPFRREISNANANANANA
D1-35_002531146yfeW_1Putative D-alanyl-D-alanine carboxypeptidaseGTGCAAATTCAAGGTCATTACGAGCTTCAGTTCGAGGTCGTGCGTGAAGCGTTTGCGGCGCTGTTCGACAATTCCCAGGAGCGCGGCGCGGCGTTATGCATTCAGGTGAGCGGCCGCACCGTCGTCGACATCTGGGCCGGCACCGCCGACAAGGATGGTCATGAAGCCTGGCACAGCGACACCATCGCCAATCTGTTTTCCTGCACCAAGACATTCGCCGCCGTAACTGCCTTGCAACTGGTAGCAGAGGGCAAGCTGCAGCTCGATGCGCCGGTCGCCCGCTACTGGCCCGAGTTCGCGGCCGCCGGCAAGGAGTCCGTCACCCTGCGGCAATTGCTCTGCCATCAGGCCGGACTACCGGCGCTGAGAGAGTTGATGGCGCCTGAAGCACTTTATGACTGGCAGGCCATGACCGATGCCCTGGCGGCTGAAACGCCTTGGTGGACGCCTGGCGAGGGCCACGGTTATGCCGCGATCACCTACGGCTGGTTGATCGGCGAGTTGCTGCGCAGGGCCGATGGCCGAGGGCCGGGTGAGTCCATCGTGGCTCGGGTCGCCAGACCGCTGGGGCTGGATTTTCATGTCGGCCTGGCGGACCAGGAATTTCATCGCGTGGCGCATATCGCCCGTGGCAAAGGCAACGCCGGAGATGCGGCGGCACAGCGCCTGTTGCAGGTGACGATGCGTGAACCTTCGGCCATGACCACCCGGGCCTTCACCAACCCGCCATCGATCATGACCAGCACCAACAAACCCGAGTGGCGCCGCATGCAGCAACCGGCCGCCAACGGCCACGGCAATGCCCGGAGCATCGCCGGGTTCTACGCCGGTCTGCTCGACGGCAGCCTGCTGGAAGGCGAAATGCTCGACGAACTGACCCGCCAGCACAGCTTCGGCGAGGACAAGACTTTATTGACCCAGACCCGTTTCGGCCTGGGTTGCATGCTCGACCAGGCGGATGTGCCCAACGCGACCTACGGCCTCGGGCCGCGGGTGTTTGGTCACCCTGGGGCAGGGGGCTCCATCGGTTTTGCCGATCCCGAGCATGACGTTGCGTTCGGTTTCGTGACCAACACATTGGGACCTTACGTCCTGATGGACCCGCGCGCGCAGAATCTCGCGCGGGTGCTTGCCACTTGTCTGTAAMQIQGHYELQFEVVREAFAALFDNSQERGAALCIQVSGRTVVDIWAGTADKDGHEAWHSDTIANLFSCTKTFAAVTALQLVAEGKLQLDAPVARYWPEFAAAGKESVTLRQLLCHQAGLPALRELMAPEALYDWQAMTDALAAETPWWTPGEGHGYAAITYGWLIGELLRRADGRGPGESIVARVARPLGLDFHVGLADQEFHRVAHIARGKGNAGDAAAQRLLQVTMREPSAMTTRAFTNPPSIMTSTNKPEWRRMQQPAANGHGNARSIAGFYAGLLDGSLLEGEMLDELTRQHSFGEDKTLLTQTRFGLGCMLDQADVPNATYGLGPRVFGHPGAGGSIGFADPEHDVAFGFVTNTLGPYVLMDPRAQNLARVLATCLNANANANANA
D1-35_002541107pal_3Peptidoglycan-associated lipoproteinATGTCATCGAATAAAACCCTCGCTCTGGCGCTGTGCTTCGCTATTACCGGTTGCGCACAAAACCCACAAAATGATGCCGAGGGCGGCGGTGGCTGGTGGCCGTTCGGCTCGTCCGACAAGGTTGCGAGCAAGGATGCGGCGCCACAGGCTCCTTTGAAACCCGCCGCCGCGGCACCGCAGGCCAAGGCCGAGGGAGCCACGCACTGGTGGTGGCCGTTCTCTTCGGATGAATCCGCCGCGGATGATGTCGCCAAAAAAGAACCGCTGAAACCTGAAGCCAAGGCGCCAGCCGTGGCCAAGGCCGAAGCCGAAAGCAACGGCAAATGGTGGTGGCCGTTCGGCGGCAAGGAACAGGAGACCGCCAAGGCGGTGCCGATGCCCGATCCGAAAGTCACCCAGGCCTGGCTCGACGACTATGAGCCGAAGCTGCGTACGGCGATCAAGGACAGCAAGCTCGAACTCGAACGTCGCGATAACGTGCTGGTGGTTACCGCTCCCGCGGACGGTTCGTTCAACCCTGATCGTCCGGCCATGCTGCTGCCGGTGACACTCGGTCCGTTCACTCGCGTCGCCAAGATTCTTGAAGCCGATCCGAAAACCGCCGTACTGATCCTCGGTCACGCCGATACGTCGGGCGCGGCGCCGGCCAACCTGAAGCTCAGCCAGGAACGTGCTCAATCGGTGGCGGCGATTTTCCGTCTCAGCGGTTTGCAGCGTGATCGCCTGATGCTGCGTGGCATGGGCTCGGTGGCTCCGCGTGCGGCCAATGACAGCGTTGAAGGCCGGGCCTTGAACCGTCGCGTCGAGTTGCTGGTTACGCCAGCGAACACCATGGTTGCATTGCTGAGCAAGTACAACATGCCGGCCCCTGCGCCAGTAACCATGGTAGCTGCCCAGGACGTGAAACCCGCCGCGCCGGCCCCGGCCCCGGCGACGAAAAAGGCTGCCGCTCCGGCTGCCAAGAAAGCAGCGGCCAAGAAGGCTCCGGCGAAGGCACCCGCGAAGAAGACCCCAGCCAAGAAGGCTACGCCCGCGAAGAAGCCCGAGCCGGCCAAGGCCGCTGCCGACGGCAAGAAAGTCGCTGCCGCCGATACCGCCAAACAGTGAMSSNKTLALALCFAITGCAQNPQNDAEGGGGWWPFGSSDKVASKDAAPQAPLKPAAAAPQAKAEGATHWWWPFSSDESAADDVAKKEPLKPEAKAPAVAKAEAESNGKWWWPFGGKEQETAKAVPMPDPKVTQAWLDDYEPKLRTAIKDSKLELERRDNVLVVTAPADGSFNPDRPAMLLPVTLGPFTRVAKILEADPKTAVLILGHADTSGAAPANLKLSQERAQSVAAIFRLSGLQRDRLMLRGMGSVAPRAANDSVEGRALNRRVELLVTPANTMVALLSKYNMPAPAPVTMVAAQDVKPAAPAPAPATKKAAAPAAKKAAAKKAPAKAPAKKTPAKKATPAKKPEPAKAAADGKKVAAADTAKQNANANANANA
D1-35_00255648pdxHCOG0259Pyridoxine/pyridoxamine 5'-phosphate oxidaseATGACCCAAACCCTGGCTGATATGCGCCGTGACTACACCCGCGATGGCCTGACCGAGGCGCAAGCCCCAGCCGAGCCGTTCGCCTTGTTTCACCAATGGTTTGCCGAGGCGGTGAAAACCGAACAGGCACCGGTGGAAGCCAACGCCATGACCCTGGCGACGGTGGACGCAGACGGCAGGCCTCACTGCCGGATCCTGCTGCTCAAGGGGCTCGATGCCGAGGGCTTCACGTTCTTCACCAACTACGACAGCGCCAAGGGCCAGCAACTGGCCGCGAGTCCGTTCGCGGCCATGACGTTTTTCTGGCCGACGCTGGAGCGCCAGGTGCGCATCGAAGGCAAGGTCCTGAAGGTCACCCCACAAGAGTCGGACGCTTATTACCAGGTACGGCCGCTGGGCAGCCGTCTCGGTGCCTGGGCCTCACCTCAGAGCCGGGTGATCGCCGGGCGGGATGAGCTGGAAGACTTGCTCAAGGCCACTGAGCAACGCTTCAGCGACAGCCAACCCCATTGCCCCGAGCATTGGGGCGGCTATCGCCTGTTGCCCGAGCGCATCGAATTCTGGCAAGGCCGCCCGAGCCGTCTGCACGATCGCCTCAACTATCGCCTGCAAGGCGCGGACTGGATTCGCGAGCGTCTGGCGCCCTGAMTQTLADMRRDYTRDGLTEAQAPAEPFALFHQWFAEAVKTEQAPVEANAMTLATVDADGRPHCRILLLKGLDAEGFTFFTNYDSAKGQQLAASPFAAMTFFWPTLERQVRIEGKVLKVTPQESDAYYQVRPLGSRLGAWASPQSRVIAGRDELEDLLKATEQRFSDSQPHCPEHWGGYRLLPERIEFWQGRPSRLHDRLNYRLQGADWIRERLAPPGPT0009115_1722DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009115-pdxH-K00275NANA
D1-35_00256285hypothetical proteinATGGATTACTTCATCATAGTCGCCACCACCGTCGCCGGTCTGTACTTTCATGGATGGCTCTACGTACGTATCAAACGCTGGATGGACCGCGACCTGGCCTTGTCGTTGGCGGGGCAGGATGGACGGAAGCGAGACTACATGCTGCAACAACTGGCCCTCGCCCGCGAACAAGGGATCAAGCGTCGGGACCTGCCGCACTGGCTCCAGGCCGCTGCGGCAGGTTACTCCGACGTCAGGGCGCCAGACGCTCGCGAATCCAGTCCGCGCCTTGCAGGCGATAGTTGAMDYFIIVATTVAGLYFHGWLYVRIKRWMDRDLALSLAGQDGRKRDYMLQQLALAREQGIKRRDLPHWLQAAAAGYSDVRAPDARESSPRLAGDSNANANANANA
D1-35_00257465slyBCOG3133Outer membrane lipoprotein SlyBATGCGCAAGTCTGTTTTGCTGGTTGCTTCCTTTTCCACGATGGCGATGTTACTGACAGGCTGCCAGTCAAGCCTGACCGGTGACTCCTATTCCCGTGACGAAGCGCGTCGCGTGCAGACGATTCGCATGGGCACCATCGAGTCCCTGCGCCCGGTCAAGATCGAAGGCACCAAGACCCCGATCGGCGGCGCAGCCGGCGCGGTGGTGGGCGGTGTTGGCGGCAGCGCTATCGGCGGTGGTCGTGGCAGCATCGTGGCAGCCGTGATCGGCGCCGTGGCCGGTGGCCTGATCGGCTCCGCCACTGAAGAAGGCCTGACCCGTACCCAGGGTGTAGAGATCACTGTGCGTGAGGATGACGGCAGCATGCGTGCCTATGTCCAGCAGGTTCAGGAGAACGAAGTGTTCCGTGTAGGTGAGCGGGTGCGGATTTCGACTGTCGATGGTACGAGTCGCGTATCGCACTAAMRKSVLLVASFSTMAMLLTGCQSSLTGDSYSRDEARRVQTIRMGTIESLRPVKIEGTKTPIGGAAGAVVGGVGGSAIGGGRGSIVAAVIGAVAGGLIGSATEEGLTRTQGVEITVREDDGSMRAYVQQVQENEVFRVGERVRISTVDGTSRVSHPGPT0024490_860DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINSCE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024490-slyB-K06077NANA
D1-35_002591188nhaACOG3004Na(+)/H(+) antiporter NhaATTGGCTCTACGTAACTCACTGACGCGGTTTTTCCAGCTGGAAGCTGCCAGCGGCCTGCTCTTGATTGCCGCCGCCGTGCTGGCCCTGGTCATCAACAACTCTCCGCTGTCCTGGCTGTATGGCGGCCTGCTGGACACGCCCGTGGTCGTCCAGGTCGGTGCGTTGAAGATCGCCAAACCGTTGCTGCTATGGATCAATGACGGCCTGATGGCGCTGTTCTTCCTGCTTATTGGCCTGGAGGTCAAACGCGAGGTGCTCGACGGGCAACTGTCGAAACCTTCTCAGATCGTCCTGCCTGGGGCCGCGGCCATAGGCGGCATGCTGGTGCCGGCGCTGATCTACTGGTTTCTCAATCGCGACAACCCCGCCGCGCTCGCTGGCTGGGCGATTCCTACGGCTACCGATATTGCCTTTGCCCTCGGCGTGCTGGCCTTGCTTGGCAAGCGTGTACCGGTATCGCTCAAGCTGTTCCTGATGACGCTGGCGATCATTGATGACCTGGGCGCCATCGTCATTATCGCGATGTTCTACTCCGGCGAGCTGTCGACACTGTCGTTGGGGCTGGCCGCGGCCTGCATCGCAGCCCTGGTGGCAATGAATCGGCTGGGCGTGGTCAAGCTCGGGCCGTACATGGTGATCGGCTTGATTCTCTGGGTCTGTGTGCTCAAGAGCGGCGTGCATGCCACGCTGGCGGGGGTGACGCTGGCATTCTGCATCCCACTGCGCACGAGAAACGCTGAAACCTCCCCCCTGCTGACGCTTGAGCATGCGCTGCATCCTTGGGTGGCCTACATTATCTTGCCGCTGTTCGCATTCGCCAACGCTGGCCTTTCGCTGAGCGGCGTCACGGTCGAGAGCTTTACCCATCATGTTCCGATGGGCATCGCAATCGGCCTGTTGCTGGGCAAGACGGTCGGCGTGTTCAGCCTGACCTGGCTGGCGGTGAAAATCGGCATCGCCAGTCTGCCTGCCGGGGCCAATTGGGGGCAGATACTGGGCGTGGCGATTCTTTGTGGCATTGGTTTTACCATGAGCCTGTTCGTCGGCTCCCTGGCGTTCGTGCCGGAGGTGAGTGAGTATGCGGGGATGGATCGGATGGGGATTCTCACCGGGTCGATCCTGGCGGCGCTGATTGGATATGGGGTGACGGCGATGGCTAGTCGCAGGTCTGCTGTGGTGGCTTCCTGAMALRNSLTRFFQLEAASGLLLIAAAVLALVINNSPLSWLYGGLLDTPVVVQVGALKIAKPLLLWINDGLMALFFLLIGLEVKREVLDGQLSKPSQIVLPGAAAIGGMLVPALIYWFLNRDNPAALAGWAIPTATDIAFALGVLALLGKRVPVSLKLFLMTLAIIDDLGAIVIIAMFYSGELSTLSLGLAAACIAALVAMNRLGVVKLGPYMVIGLILWVCVLKSGVHATLAGVTLAFCIPLRTRNAETSPLLTLEHALHPWVAYIILPLFAFANAGLSLSGVTVESFTHHVPMGIAIGLLLGKTVGVFSLTWLAVKIGIASLPAGANWGQILGVAILCGIGFTMSLFVGSLAFVPEVSEYAGMDRMGILTGSILAALIGYGVTAMASRRSAVVASPGPT0013935_1782DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013935-nhaA-K03313NANA
D1-35_002601095cysM_1COG0031Cysteine synthase BATGAACAATCCCCGCCAATGGGCGCGTGAAGCCATCCGTATCATCGAGGCGGATTTCCAACGCAGTGCCGATACGCATCTGATCCCATTGCCGTTGGCCGGACTGCCGGGCATCGAGCTGTATTTCAAGGATGAGTCCAGCCATCCCACCGGCAGCCTCAAGCACAGACTGGCCCGCTCGCTGTTCCTGTATGCATTGTGCAATGGCTGGCTCAAGCCCGGTGCACCGGTGATCGAGGCCTCCAGCGGCTCGACGGCGATTTCCGAGGCGTATTTTGCGCGGTTGCTGGGCCTGCCTTTCATCGCGGTGATGCCTGCCACTACCTCCCGGGAAAAAATCGCCCAGATCGCCTTCTATGGTGGCCAGAGCCATCTGGTGGATGACCCTACGCAGATCTACGCCGAATCCGAACGCCTGGCCCGCGAGCATGACGGGCATTTCATCGACCAGTTCACCTACGCCGAGCGGGCCACGGACTGGCGGGCGAACAACAACATTGCCGAGTCGATTTTCCAGCAGATGCGCTTCGAGCGGCATCCGGAGCCAACCTGGCTGATCTCCAGCCCTGGCACGGGCGGTACAACGGCCACCTTGGGGCGCTACGTACGCTACCGCCAGCACAGTACCCGTGTGCTGTGTGCCGACGCCGAGCGTTCGGTATTTTTCGACTACTACCGCAGCGGCGATGCCAGCCTGCGCCTGGATTGCGGGTCGCGGATCGAGGGCATCGGTCGGCCACGGGTCGAAGCCTCGTTCCTGCCCAAGGTGATCGATGCGATGGTCAAGGTGCCGGACGCCCTGTCCCTCGCGGCCATGCACTACCTGGCCCAGCGACTGGGACGGCGGGTCGGCGGATCCAGCGGCACCAACCTGATCGGCGCGCTGATCGCCGCGAAGCGAATGGTGGAAGGCGGTGAGTCGGGGTCGATCGTGGCGATTCTGTGTGATGGCGGGGAGCGTTATGCCACGACGTATTACGATCCGGCGTGGCTCAAGGCCCAGGGGTATGAGTTGGACCCATTGATCGATGCGGTGGCGGCATGTGCGGAGCGCGGAGAAGCGCTGCCGGAGAGCGTGTTGCGGGCCAATATCTGAMNNPRQWAREAIRIIEADFQRSADTHLIPLPLAGLPGIELYFKDESSHPTGSLKHRLARSLFLYALCNGWLKPGAPVIEASSGSTAISEAYFARLLGLPFIAVMPATTSREKIAQIAFYGGQSHLVDDPTQIYAESERLAREHDGHFIDQFTYAERATDWRANNNIAESIFQQMRFERHPEPTWLISSPGTGGTTATLGRYVRYRQHSTRVLCADAERSVFFDYYRSGDASLRLDCGSRIEGIGRPRVEASFLPKVIDAMVKVPDALSLAAMHYLAQRLGRRVGGSSGTNLIGALIAAKRMVEGGESGSIVAILCDGGERYATTYYDPAWLKAQGYELDPLIDAVAACAERGEALPESVLRANIPGPT0002810_1090DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002810-cysK-K01738NANA
D1-35_002611614hypothetical proteinATGTTACGAATCACCGAACTCAAGCTGCCGATCGACCATCCCGAAGAAGACTTGCGCCCTGCCATCGTGCAGCGGCTGGGCATCGCCAGCGATGACCTGCTCGACTTCACCCTGTTCAAGCGCAGCTACGACGCCCGCAAGAAATCCTCCGAGCTGTGCTTCATCTACACCATCGACCTGTCGGTGCGCGATGAAGCCGGTGTGCTGCGCAAGTTCGCCGATGACCGTAATGTCAACGAAGCGCCGGACATCAGCTACAAGGTGGTTGGCCAGGCACCGGCGGACTTGAGCGAGCGGCCGATCGTGGTCGGCTTCGGGCCGTGCGGCATCTTCGCCGCCATGCTGCTCGCGCAGATGGGCTTCAAGCCGATCATCCTTGAGCGCGGCCCGGAAGTACGCCAGCGCACCAAGGACACCTGGGGTCTGTGGCGTAAAAGCGTGCTCAATCCCGAGTCCAACGTCCAGTTCGGCGAAGGCGGCGCGGGGACATTCTCCGACGGCAAGCTCTACAGTCAGATCAAGGACCCGAAATTCCTTGGACGCAAGGTCCTGCATGAGTTCGTCAAGGCCGGGGCCCCCGAAGAAATCCTCTATGTCAGCAAGCCGCACATCGGTACGTTCCGTCTGACCGGCGTCGTCGAAAACATGCGTGAGCAGATTCGCGCCCTGGGCGGTGAAGTGCGCTTCGGCGAGCGAGTTACCGACGTCTTGTTCGAGGACAGCCAACTGGTTGGCGTCGAGCTGGCCAGCGGTGAGCAGATCCGTTCGAAACACGTGATCCTTGCCCTGGGCCATAGCGCCCGGGATACCTTCCGCATGCTCCACAGCCGTGGCGTGTACATGGAAGCCAAGCCGTTCTCGGTGGGTTTCCGTATTGAACATCCGCAATCGCTGATCGACAGCGCACGCCTGGGCAAGTACGCCGGCCACCCGAAACTCGGCGCCGCCGACTACAAGCTGGTGCACCACGCGAAGAATGGTCGCTCGGTGTACAGCTTCTGCATGTGCCCGGGCGGCACCGTGGTGGCGGCGACCTCCGAGCCGAACCGCGTCGTGACCAATGGCATGAGCCAATACTCGCGCAACGAGCGCAACGCCAACTCGGGCATCGTCGTCGGCATCACGCCGGAAGTGGATTATCCGGGTGGCCCGCTGGCGGGCATCGAGTTGCAGGAGCGCCTGGAATCCCACGCCTTCGTGCTGGGTGGCAGCAACTATGAAGCCCCCGCGCAACTGGTGGGTGATTTCATCGCCGGCAAGCCGTCCACGGCGCTGGGCAGCGTCGAACCGTCCTACAAGCCTGGGGTTGCCCTGGGCGACCTGGCCCTGGCTCTGCCGGATTTCGCCATCGAGGCCATCCGTGAAGCGCTGCCGGCGTTCGAGAAACAGATCCGTGGTTATTCGCTGCATGATGCGGTGCTCACCGGCATCGAGACCCGGACTTCATCGCCGCTGCGCATCACCCGCAACGAAACGCTGCAGAGCTTGAATGTGAAAGGCCTGTTCCCGGCTGGCGAAGGTGCCGGTTATGCCGGCGGGATCTTGTCGGCGGGCGTGGACGGGATCCGGATCGCCGAAGCGGTGGCGCGGGATATTCTTGGCTTGAACGACTGAMLRITELKLPIDHPEEDLRPAIVQRLGIASDDLLDFTLFKRSYDARKKSSELCFIYTIDLSVRDEAGVLRKFADDRNVNEAPDISYKVVGQAPADLSERPIVVGFGPCGIFAAMLLAQMGFKPIILERGPEVRQRTKDTWGLWRKSVLNPESNVQFGEGGAGTFSDGKLYSQIKDPKFLGRKVLHEFVKAGAPEEILYVSKPHIGTFRLTGVVENMREQIRALGGEVRFGERVTDVLFEDSQLVGVELASGEQIRSKHVILALGHSARDTFRMLHSRGVYMEAKPFSVGFRIEHPQSLIDSARLGKYAGHPKLGAADYKLVHHAKNGRSVYSFCMCPGGTVVAATSEPNRVVTNGMSQYSRNERNANSGIVVGITPEVDYPGGPLAGIELQERLESHAFVLGGSNYEAPAQLVGDFIAGKPSTALGSVEPSYKPGVALGDLALALPDFAIEAIREALPAFEKQIRGYSLHDAVLTGIETRTSSPLRITRNETLQSLNVKGLFPAGEGAGYAGGILSAGVDGIRIAEAVARDILGLNDNANANANANA
D1-35_00262678hypothetical proteinATGATGCGTGCCGCCCGTTCCCTGTTGTGTATTGCCTCGCTTGCGCTTTTCGCCGGCTGCCAGTTGCTCGACGCCCCGCGCCAGAGCGCCTCCCATGCCGGCCAGACGCGCATGCAGGGCGAACTCACGGCGGCCGATGGCAAGCTGGTGTTCCAGCCGTGTCAGGAACAGCGCCGCTACATCGTCAACGACACCGGCGGCACCAGTGTGCTGCAACAAGCCGCCACCCTGGCGGATGATCGCGGCAAACTCTTCGCCGATCTGCGCGGGCGTATCGTTTCCAGCGCGGCGGCCGGCACCGACAGCCAGCTGGACGTCGAGCAGCTGTATCGCCTGGAACGCTCCGGGACCGCTTGCGATGATGTTGACTTCAAACGGGTGATTCTGCGGGCAGCGGGACATGCCCCTGAATGGACACTCAAGGCCAGCGGCAAGGGCCTGGTCCTGGATCGCCAAGGGCAGCCGCCGCTGGCGGTGCCTTACGTCGAGGAGCAGTTGGGCGATGGCCGCTTCAACCTCGGCACCGAGGCCAACGGCCAGAAGGTCGAGTTGTGGGTCACGCCGCAACGCTGCGTCGACAGCACCAGTGGCAGCGTGCAGCACATGAGCGCCGAGTTGCGGGTCAACGGTCAGGTCCAGCGCGGTTGCGCCTACTTTGGTGGCGCGCGCGACGACTGAMMRAARSLLCIASLALFAGCQLLDAPRQSASHAGQTRMQGELTAADGKLVFQPCQEQRRYIVNDTGGTSVLQQAATLADDRGKLFADLRGRIVSSAAAGTDSQLDVEQLYRLERSGTACDDVDFKRVILRAAGHAPEWTLKASGKGLVLDRQGQPPLAVPYVEEQLGDGRFNLGTEANGQKVELWVTPQRCVDSTSGSVQHMSAELRVNGQVQRGCAYFGGARDDNANANANANA
D1-35_00263600hypothetical proteinATGAAAATCCTGTTGATCGGCGCCAACGGAACCATCGGTTCGGCCATCGCTAACGAGTTGTCGCCCCGTCATGAAATTGTCCGTATCGGCCGCCACAGCGGTGATGTGCAAGTGGATATCAGCGACAGCGCCTCGATCCGCGCCCTGTTCGAAAAAACCGGCCGCTTCGATGCCTTGGTTTGTGCGGCGGGCAACGTCACTTTCGCGCCGCTGGGCGACATGACCGAAGAAAGCTTCGCCCTCGGCTTGAAAGACAAGTTGATGGGTCAGGTCAATCTTGTATTGATCGGCCGCGAATTCGCCAATGACGGTGCATCCTTTACCCTCACCACCGGCGTACTCAGCCACGACCCGATCAAGAGCGGCGCCTCGGCGGCCCTGGTGAACGGCGCCCTCGACAGTTTTGTGCGCGCTGCGGCAATCGAGCTGCCCCGGGGCCTCAGGCTCAACTCGGTAAGCCCGAACGTATTGCGGGAAGCGATGGACAAATATGCGCCGTACTTCCGCGGCTACAAGCCGGTTCCTGCGGCTGAAGTGGCATTGGCCTACGCCAAGAGCGTCGAAGGCCTGCAAACCGGGCAGACTTTTCACGTCGGCTGAMKILLIGANGTIGSAIANELSPRHEIVRIGRHSGDVQVDISDSASIRALFEKTGRFDALVCAAGNVTFAPLGDMTEESFALGLKDKLMGQVNLVLIGREFANDGASFTLTTGVLSHDPIKSGASAALVNGALDSFVRAAAIELPRGLRLNSVSPNVLREAMDKYAPYFRGYKPVPAAEVALAYAKSVEGLQTGQTFHVGNANANANANA
D1-35_00264909dmlR_2HTH-type transcriptional regulator DmlRATGAGCGAGATCGATGATCTGGCAGCGTTTGCCGTGCTGGTCGAGGCCGGTAGTTTTACCCTGGCGGCGCAGCGGTTGGGATGCAGCAAGGGGCAACTGTCCAAGCGCATCAGCCTGCTGGAGGAGCGGTTTTCAGTGATCCTGCTCCAGCGCACGACTCGACGCCTGAGCCTGACGGCGGCGGGTGCGGCACTGTTGCCCCAGGCCCAGGCCTTGTTGGTGCAGGTGGAAAGGGCGCGTCAGGCGTTGGCCCGCTTGAAGGGTGAAATTTCCGGGCCGGTGCGGATGACAGTACCGGTTTCGTTGGGCGAAACCTTTTTTGAAGGCCTGCTGACCGAGTTCGCTCTCGCCTACCCCGACGTGCAGATCGAGCTGGAGCTCAATAACGGTTACCGCGATTTATCGCGCGATGGGTTTGATCTGGCGATCCGCTCGGATGCGGCGATCGACGAGCGGTTGGTGGCTCGCCCGCTGCTGGCCTGGCATGAACTGACCTGCGCCAGCCCGGCCTATCTGGAACGCTTCGGTGAGCCCGCGGTTCCCCAGGCCCTGGCGGAGCACAAATGCCTGCTCAACAGTCACTACAGTGGTCGTGAGGAGTGGTTGTATCACCAGCAACATGAATTGCTGCGGGTGCGGGTGTCCGGGCCGTTTGCCAGCAACCATTACAGCCTGTTGAAAAAAGCCGCCCTGGCCGGCGCTGGAATCGCCCGTCTGCCGTCGTATCTGCTTGACCAGGAACTGGCCGACGGCCGCCTGCGCTGGTTGCTGCGCGACTTTCAGACCCGTCGCATGCCGATGTACCTGGTGCATCCATATCAGGGCGGGTTGCCCAAGCGTACGCAGGTGCTGGCTGATTATCTGATTGAATGGTTCAAACGCAGCGGGGAGGCGCTGGATCGTCTTTAGMSEIDDLAAFAVLVEAGSFTLAAQRLGCSKGQLSKRISLLEERFSVILLQRTTRRLSLTAAGAALLPQAQALLVQVERARQALARLKGEISGPVRMTVPVSLGETFFEGLLTEFALAYPDVQIELELNNGYRDLSRDGFDLAIRSDAAIDERLVARPLLAWHELTCASPAYLERFGEPAVPQALAEHKCLLNSHYSGREEWLYHQQHELLRVRVSGPFASNHYSLLKKAALAGAGIARLPSYLLDQELADGRLRWLLRDFQTRRMPMYLVHPYQGGLPKRTQVLADYLIEWFKRSGEALDRLNANANANANA
D1-35_00265702livF_1COG0410High-affinity branched-chain amino acid transport ATP-binding protein LivFATGCTGCAGTTCGAAAACGTTTCCACCTTCTACGGCAAGATCCAGGCGCTGCACAGCGTCAACGTCGAGGTCCGCCAAGGCGAAATCGTCACGCTGATCGGTGCCAACGGTGCCGGCAAGTCCACACTGCTGATGACACTCTGCGGTTCGCCGCAGGCCCACAGCGGCAGCATCCGCTACATGGGTGAGGAACTGGTGGGCCAGGACTCGGCGCAGATCATGCGCAAGAGCATCGCCGTGGTGCCTGAAGGCCGTCGGGTATTTGCCCGGCTGACCGTGGAAGAAAACCTCGCCATGGGCGGTTTTTTTACCGACAAGGGCGACTTTCAGGAACAGATGGACAAGGTGCTGCACCTTTTCCCACGCCTGAAAGAGCGTTTTACCCAGCGCGGCGGCACCATGTCCGGCGGCGAACAGCAGATGCTCGCCATCGGTCGTGCACTGATGAGCAAGCCCAAGCTGCTGCTGCTCGACGAGCCGTCGCTGGGCCTGGCGCCGATCATCATCCAGCAGATCTTCGACATCATCGAACAGCTGCGCAAGGATGGCGTGACGGTGTTCCTGGTGGAGCAGAACGCCAACCAGGCGCTGAAGATCGCTGACCGGGCGTACGTGCTGGAGAATGGTCGCGTGGTGATGCAAGGCACCGGTGAAGCACTGCTGACCGACCCGAAAGTGCGCGAGGCGTACCTGGGCGGTTGAMLQFENVSTFYGKIQALHSVNVEVRQGEIVTLIGANGAGKSTLLMTLCGSPQAHSGSIRYMGEELVGQDSAQIMRKSIAVVPEGRRVFARLTVEENLAMGGFFTDKGDFQEQMDKVLHLFPRLKERFTQRGGTMSGGEQQMLAIGRALMSKPKLLLLDEPSLGLAPIIIQQIFDIIEQLRKDGVTVFLVEQNANQALKIADRAYVLENGRVVMQGTGEALLTDPKVREAYLGGPGPT0020785_8762DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020785-livF-K01996NANA
D1-35_00266768lptB_1COG1137Lipopolysaccharide export system ATP-binding protein LptBATGAGCCGCGAGATCCTGAAAGTCGAAAATCTGAGCATGCGCTTCGGCGGCTTGCTGGCGGTCAACGGCGTGGCCCTGACCGTTAAAGAGAAACAAGTGGTTGCCTTGATCGGGCCGAACGGCGCGGGCAAGACCACCGTGTTCAACTGCCTGACCGGTTTCTACCAGCCTACCGGCGGCACCATCCTGCTGGACGGCGAGCCGATCCAGGGCCTGCCCGGTCATCACATTGCCCGCAAGGGCGTGGTGCGGACCTTCCAGAACGTGCGGCTGTTCAAGGACATGACGGCGGTCGAAAACCTGCTGATCGCCCAGCATCGTCACTTGAACACCAACTTCTTTGCCGGTCTGTTCAAGACCCCGGCGTTCCGCAAGAGCGAACGCGAGGCCATGGAGTACGCCGAGTACTGGCTGGACAAGGTCAACCTCACCGAGTTCGCCAACCGTACCGCCGGGACCCTGGCCTACGGTCAGCAACGGCGCCTGGAAATCGCCCGCTGCATGATGACCCGTCCGCGGATCCTCATGCTCGACGAACCGGCCGCCGGCCTGAACCCGAAGGAAACCGAAGACCTGAAGGCGCTGATCAGCGTGCTGCGCGAGGAGCACAACGTGACCGTGCTGCTGATCGAGCATGACATGAAGCTGGTCATGAGCATTTCCGACCACATCGTCGTGATCAACCAGGGCACGCCCCTGGCCGACGGTACGCCGGAACAGATCCGCGACAATCCTGAAGTGATCAAAGCCTACCTGGGGGAAGCGTAAMSREILKVENLSMRFGGLLAVNGVALTVKEKQVVALIGPNGAGKTTVFNCLTGFYQPTGGTILLDGEPIQGLPGHHIARKGVVRTFQNVRLFKDMTAVENLLIAQHRHLNTNFFAGLFKTPAFRKSEREAMEYAEYWLDKVNLTEFANRTAGTLAYGQQRRLEIARCMMTRPRILMLDEPAAGLNPKETEDLKALISVLREEHNVTVLLIEHDMKLVMSISDHIVVINQGTPLADGTPEQIRDNPEVIKAYLGEAPGPT0020780_6447DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020780-livG-K01995NANA
D1-35_002671257hypothetical proteinATGACTAGGCATCTCAAATCGGCGCTCTTCAGCGCCCTGCTGGTCTGGGCCGTGGCCTATCCGGTACTCGGTCTCAAACTGACCATCGTTGGTATCAACCTGGAAGTGCACGGCACCAGCCCGACCATCCTGGCGACCATCGCCGTATGTTCCGTCCTGATGTTCCTGCGGGTGCTGTTCAGCACGCAGATCAGTGCGGCGTGGAAAGCGTCGCCCGGCGTGCCGGTGATCCCGGCCAAGGCCAGCAACTTCCTGACCCTGCCGTCGACCCAGCGCTGGATCGTCCTGGGCCTGATCGTCGTGGCCCTGGTATGGCCGTTCTTCGGCTCTCGCGGCGCGGTGGACATCGCCACGCTGATCCTGATCTACGTGATGCTCGGCCTCGGTCTGAACATCGTCGTGGGCCTGGCCGGCCTGCTGGACCTGGGTTATGTCGGCTTCTACGCCGTCGGGGCCTACAGCTACGCGCTGCTGTCGCACTACTTCGGCCTGAGCTTCTGGATCTGCCTGCCGATCGCCGGAATGATGGCCGCCACCTTCGGTTTTCTGCTGGGGTTCCCGGTCCTGCGCTTGCGCGGCGACTACCTGGCGATCGTGACCCTGGGTTTTGGCGAGATCATCCGTCTGTTCCTGCGCAACCTGACCGACATCACCGGCGGCCCGAACGGCATCAGCAACATCGAGAAGCCGACGTTCTTCGGCCTGACCTTCGAACGTAAAGCCGCCGAAGGCCTGCAGACCTTCCACGAGTACTTCGGCCTGCAATACAACTCGATCAACAAGGTGATCTTCCTCTACCTGGTTGCCTTGTTGCTGGCCCTGGCCGCGTTGTTCGTCATCAACCGCCTGCTGCGCATGCCGATCGGCCGTGCGTGGGAAGCCTTGCGCGAAGACGAAATCGCCTGCCGTGCGCTGGGTCTCAACCCGACCGTGATCAAGCTTTCGGCCTTTACCCTGGGTGCTGCGTTCGCCGGTTTCGCCGGTAGCTTCTTCGCCGCTCGCCAAGGCCTGGTGACGCCCGAGTCCTTCACCTTCATCGAGTCGGCGATCATCCTCGCCATCGTTGTGTTGGGCGGGATGGGCTCGCAGTTGGGTGTGATCCTGGCGGCGATCGTGATGATCCTGCTGCCCGAAATGATGCGTGAATTCAGCGAATACCGCATGTTGATGTTCGGCGCCTTGATGGTGCTGATGATGATCTGGCGTCCTCAAGGTCTGCTGCCTATGCAACGCCCGCACATGGAGCTGCGCAAATGAMTRHLKSALFSALLVWAVAYPVLGLKLTIVGINLEVHGTSPTILATIAVCSVLMFLRVLFSTQISAAWKASPGVPVIPAKASNFLTLPSTQRWIVLGLIVVALVWPFFGSRGAVDIATLILIYVMLGLGLNIVVGLAGLLDLGYVGFYAVGAYSYALLSHYFGLSFWICLPIAGMMAATFGFLLGFPVLRLRGDYLAIVTLGFGEIIRLFLRNLTDITGGPNGISNIEKPTFFGLTFERKAAEGLQTFHEYFGLQYNSINKVIFLYLVALLLALAALFVINRLLRMPIGRAWEALREDEIACRALGLNPTVIKLSAFTLGAAFAGFAGSFFAARQGLVTPESFTFIESAIILAIVVLGGMGSQLGVILAAIVMILLPEMMREFSEYRMLMFGALMVLMMIWRPQGLLPMQRPHMELRKPGPT0020775_2716DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020775-livM-K01998NANA
D1-35_00268924livH_1COG0559High-affinity branched-chain amino acid transport system permease protein LivHATGCCTGACATCTATCACTTCTTCCAGCAGCTGGTTAACGGCCTGACCGTTGGCAGCACGTATGCCCTGATCGCCATCGGCTATACGATGGTCTACGGCATCATTGGAATGATCAACTTCGCCCACGGCGAGGTGTACATGATCGGCTCCTACGTGGCGTTCATCGCCATCGCCGGGCTGGCCATGATGGGACTCGACAGTGTCCCGCTGTTGATGACCGCAGCTTTCATCGCGAGCATCGTGGTTACCAGTTCCTATGGCTACAGCATCGAACGGATCGCCTACCGCCCGCTGCGCGGCAGCAACCGTCTGATCCCGCTGATTTCCGCCATCGGTATGTCGATCTTCCTGCAGAACACGGTACTGCTTTCGCAAGACTCCAAGGACAAATCCATTCCCAACCTGATTCCGGGCAACTTCGCCATCGGGCCAGGCGGGGCACATGAAGTGCTGATTTCCTACATGCAAATCGTGGTGTTCGTGGTGACCCTGGTCGCCATGCTCGGCCTGACGCTGTTCATCTCCCGTTCCCGCCTGGGCCGCGCCTGCCGCGCCTGCGCCGAGGACATCAAGATGGCCAACCTGCTGGGCATCAACACCAACAACATCATCGCCCTGACCTTCGTCATCGGTGCGGCCCTGGCGGCCATCGCCGCGGTGCTGTTGAGCATGCAATACGGCGTCATCAACCCCAACGCCGGTTTCCTCGTGGGCCTGAAAGCCTTTACCGCCGCGGTGCTCGGCGGCATCGGCAGCATCCCCGGCGCGATGCTCGGCGGCTTGGTGCTGGGCGTGGCGGAAGCCTTTGGCGCCGACATCTTCGGCGACCAGTACAAGGACGTCGTGGCGTTCGGCTTGTTGGTTCTGGTTCTGTTATTCCGGCCGACCGGCATCCTGGGCCGTCCGGAGGTTGAGAAAGTATGAMPDIYHFFQQLVNGLTVGSTYALIAIGYTMVYGIIGMINFAHGEVYMIGSYVAFIAIAGLAMMGLDSVPLLMTAAFIASIVVTSSYGYSIERIAYRPLRGSNRLIPLISAIGMSIFLQNTVLLSQDSKDKSIPNLIPGNFAIGPGGAHEVLISYMQIVVFVVTLVAMLGLTLFISRSRLGRACRACAEDIKMANLLGINTNNIIALTFVIGAALAAIAAVLLSMQYGVINPNAGFLVGLKAFTAAVLGGIGSIPGAMLGGLVLGVAEAFGADIFGDQYKDVVAFGLLVLVLLFRPTGILGRPEVEKVPGPT0020770_3150DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020770-livH-K01997NANA
D1-35_002691128braC_1COG0683Leucine-, isoleucine-, valine-, threonine-, and alanine-binding proteinATGACTAAGGCTACTAAGCAGATTTCCAAACTGTTTGCCGCTATGGTTCTGGCCGGGGTTGCCAGCCATTCGTTCGCCGCCGACACCATCAAGATCGGCATCGCCGGCCCGAAAACCGGCCCTGTAGCCCAATACGGCGATATGCAGTTCAGTGGCGCGAAAATGGCCATCGAACAGATCAACGCCAAGGGTGGCGTCGACGGCAAGCAACTGGTCGCCGTTGAATACGACGACGCCTGTGATCCAAAACAAGCGGTCGCGGTCGCGAACAAAGTCGTCAACGACGGCATCAAGTTCGTGGTCGGCCACCTGTGCTCCAGCTCCACCCAGCCCGCTTCCGACATCTACGAAGACGAAGGCGTGATCATGATCACTCCGGCGGCTACCAGCCCGGACATCACCGCTCGCGGCTACAAGATGATCTTCCGTACCATCGGCCTGGACAGCGCCCAAGGCCCTGCGGCCGGCAACTACATCGCCGACCACGTCAAGCCGAAAGTCGTTGCGGTCCTGCACGACAAGCAGCAGTACGGTGAAGGCATCGCCAGCGCCGTGAAGAAAACCCTCGAAGGCAAAGGCGTGAAAGTGGCCGTCTTCGAAGGCGTGAACGCCGGCGACAAAGACTTCTCCTCGATGATCGCCAAGCTCAAGCAAGCCAACGTCGACTTCGTCTACTACGGCGGCTACCACCCGGAGCTGGGCCTGATTCTGCGTCAAGCCCAGGAAAAAGGCCTGAAAGCCAAGTTCATGGGTCCGGAAGGCGTGGGTAACGATTCCATCTCGCAAATCGCCAAGGAATCCTCCGAAGGCCTGCTGGTGACCCTGCCGAAATCCTTCGACCAGGATCCGGCCAACGTCGCCCTGGCTGACGCGTTCAAGGCCAAGAAAGAAGACCCGAGCGGTCCGTTCGTATTCCCGTCCTACTCCGCTGTGACCGTGATCGCCGACGCGATCAAGGCTGCCAAGAGCGAAGACGCGACCAAAGTGGCTGAAGCCATCCACGCCGGCACTTTCAAGACGCCAACCGGTGACTTGAGCTTCGACGACAAGGGCGACCTGAAGGACTTCAAGTTCGTGGTTTACGAGTGGCATTTCGGCAAACCTAAAACCGAAGCTTCGCCTCAGTAAMTKATKQISKLFAAMVLAGVASHSFAADTIKIGIAGPKTGPVAQYGDMQFSGAKMAIEQINAKGGVDGKQLVAVEYDDACDPKQAVAVANKVVNDGIKFVVGHLCSSSTQPASDIYEDEGVIMITPAATSPDITARGYKMIFRTIGLDSAQGPAAGNYIADHVKPKVVAVLHDKQQYGEGIASAVKKTLEGKGVKVAVFEGVNAGDKDFSSMIAKLKQANVDFVYYGGYHPELGLILRQAQEKGLKAKFMGPEGVGNDSISQIAKESSEGLLVTLPKSFDQDPANVALADAFKAKKEDPSGPFVFPSYSAVTVIADAIKAAKSEDATKVAEAIHAGTFKTPTGDLSFDDKGDLKDFKFVVYEWHFGKPKTEASPQPGPT0020765_12866DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020765-livK-K01999NANA
D1-35_00270306hypothetical proteinATGAATCAAGAACCTAGCACCCTCTATGCCAAATTGCTCGGTGAAACCGCATCCATTACCTGGAAGGAGCTGGAACCGTTCTTTGCCAAGGGTGCCCTATTGTGGGTCGATCCGGCACTGGATCTGATCGCCGCCGCCGAGGCCATTGCCGAGGACGAAGGTACCAAAGTCGCCGCCTGGCTGGCCGGCGGGCAGCTCGCCAAGCTGTCTGAAACGCGGGCGCTGGATTTTCTCGAGCGTGATCCGCTGCTGTGGGCCGTGGTGGTTTCGCCGTGGATAATGGTCCAGGAAAGGGCGTCGAATTGAMNQEPSTLYAKLLGETASITWKELEPFFAKGALLWVDPALDLIAAAEAIAEDEGTKVAAWLAGGQLAKLSETRALDFLERDPLLWAVVVSPWIMVQERASNNANANANANA
D1-35_002712175hypothetical proteinATGACCTCCAAAAAAACAGCCACTGCGGTTTCCGATCTGACCCTGAGCCCGGCCGCCAACGGCGCGGACGCCTCGGCGCTGTCGAGCAGCTCGCGATCCCTGGCGACCCAGCAATATCTGTATTTCACCGAGACCAACACCGACCGCATCCTCGACAACCTCGATGGCCTGCGTGATGCCGTATTCCCCCGCCCGCCGCACCTGGTGGATGACGAGAGCGAACGTGGCCAGCAGGAATTCCCCTCGGTGTGCCTGATCGGCCTCGGGCGCTGCGGCTCCAACATCGCCCTGGACGTAGCGGAACTGGTCTACAACGCGCGCAAGTTCTATCTCAACGAATTCAACGCCGAAGACAAGCACTACGGTGACAAGGGCTATCGCCCCGCGCAGTGGATGCGCAACCTGCGCCTGGGGACCAGCAAGGCCAGCAAACCGGTGTTCCTGGTGGAACCGCTGGTCATGCTCGGCGACCTGGACAAAGACATCGCCGGGCGTATCCGGTTTTCCCGCAAGGGCGAAAAAAGCGGGTTCTTGCGCGACTACAGCAAAATGAAAATCATGGACCTCTCCGAAGTCCACGCCGGTGGTGCCGGTAACGCGCCGATCCTCGGCCAGTACCTGGCGAAGATCATCCTGAACAAGGACACCCAGCGCTTCTCCAGCCCCGACTGGAAAATGATCCACTCGTACCTGATCGATAGCTGCGGCATCAAGGCCAACCAGTCGCGCCTGTACTTCTCGATCTTCAGCGCCGGCGGCGGTACCGGTTCGGGCATGGCTTCGGAGTTCGGCCTGGCCCAGCAGTACTCGTACATGAACAAGACGTTCGACACCAAGCCGATGGACGAACACGACAGCAAGAGCGGTCATTCCTTCGTCTTCGAACCGATTTTCACCAGCGGCATCTGCGTGCTGCCGAACATTTCCGATCACCGCAGTGAAATGTCCGAGGCGCTGCACATCAACGCCGGACGGCTGCTGTGCAAATACCTCTCGGAAGAATGGGATTTCTCGTACAACTTCGCCAACGAAGACAGCAGCGAAGCCAGCGTCATGGGCCGTATCCGGCCATGGAACGCGATGATGCTGATCTCCAACGACATCATGCGCTACGCCGAAGAAAGCGATGACGGCAACATCCAGAACATTGATGTCAATGCCATGGAAAAGCACGCCAACCAGTACATTTCCCAACAGATCTTCAACATCCTCACGGCCCAGGCCGTGACCACCGACTACGACCAGAACTACTTCCGGCGCGCCGGCATCGACATCGGCGAAACCATTCGCCTGGATGCCAACGACCTGTTCATGAGCCTGGCCGGCCCGGTGGCGATTGCCTACGCTGAATCCGTCGTTCCGGAAACCCCGGCGCCGAGCGGCGACAAGTTCAAGGTGTTCGAAAAGGAGCCGCCGCGCCTGAACATCGATGACCTGTTCTTCCGCTCCATCGACCTGCCGCACTTCAACAAGGTCACCCAGGCCATCGAAGGCATCAGCCTGTTGCCGATCGAGTCCAAGCGTTACCGGGCCTCGCTGGAGCAATACAAGAATTCCGGCTATGACGCCGCCGCCCTGCACGACCTGCACTTCTTCAAGAACTGCTCGTCGGTGGTGTCGATCGTCTCGCTGCCCAAGGACTACAAGCTGTCCTACATGGACCTGAACCGGCTCAAGACCCACCTCAACAGCCTGTTCCCGAACACCACGCTCAAGCGCTATGCGCTGGTGATCGGCGCCTCGGCCAACTTGTCGCTGACTACCCTGATCGCCAAGAGCCCGTGCCTGTCGGATGACTTCCTGACCCTGATCGTGGCGTTCATCAAGCGCTGCTTTGCCCGCACGCCGTATCGCTTCGACGAGACCCTGGACAACTCGATCCTGGACTTCATCATCAATGAAGAGTTCGATGAAGGACGCATCGATGAGTTGCTCAACGAATTCGAGAACCCGGCGAAGATCCTCGACACCAACTGGTACGCGATCAAGCCGATGTACGAGAAGAAGTACCGCGAGCTGATCAGCGACAAGGACAAGTTTGTCTCGATCAATGACATCCGGCTGTCCCGCGACTGCGTGAAGAAGTCGATCAAGTACCTGCGCGAGATCTACCGTCACCGGATCGGCAAGACCAAGGTTATTTCGCTGAATAACCATACTGGCAAGAGTTACTGAMTSKKTATAVSDLTLSPAANGADASALSSSSRSLATQQYLYFTETNTDRILDNLDGLRDAVFPRPPHLVDDESERGQQEFPSVCLIGLGRCGSNIALDVAELVYNARKFYLNEFNAEDKHYGDKGYRPAQWMRNLRLGTSKASKPVFLVEPLVMLGDLDKDIAGRIRFSRKGEKSGFLRDYSKMKIMDLSEVHAGGAGNAPILGQYLAKIILNKDTQRFSSPDWKMIHSYLIDSCGIKANQSRLYFSIFSAGGGTGSGMASEFGLAQQYSYMNKTFDTKPMDEHDSKSGHSFVFEPIFTSGICVLPNISDHRSEMSEALHINAGRLLCKYLSEEWDFSYNFANEDSSEASVMGRIRPWNAMMLISNDIMRYAEESDDGNIQNIDVNAMEKHANQYISQQIFNILTAQAVTTDYDQNYFRRAGIDIGETIRLDANDLFMSLAGPVAIAYAESVVPETPAPSGDKFKVFEKEPPRLNIDDLFFRSIDLPHFNKVTQAIEGISLLPIESKRYRASLEQYKNSGYDAAALHDLHFFKNCSSVVSIVSLPKDYKLSYMDLNRLKTHLNSLFPNTTLKRYALVIGASANLSLTTLIAKSPCLSDDFLTLIVAFIKRCFARTPYRFDETLDNSILDFIINEEFDEGRIDELLNEFENPAKILDTNWYAIKPMYEKKYRELISDKDKFVSINDIRLSRDCVKKSIKYLREIYRHRIGKTKVISLNNHTGKSYNANANANANA
D1-35_0027293hypothetical proteinATGAAGGGGCAAAATGATGGCATTTCCTACAGAAAAATGACCGTTGTCATGGATGCGCCATTCACCATGGTCGGGTATCAGCCGCGCGAATGAMKGQNDGISYRKMTVVMDAPFTMVGYQPRENANANANANA
D1-35_002731350sotB_1sugar efflux transporterATGCAGAACTCGACCCAAGCGGCGAATGCCTGGCGCATTCTGTTCCTGCTGTTCCTGGCCAACCTGTTCAACTTTTTCGACCGCACCATCCCAGCGATCATCATCGAGCCGATCCGCATGGAGTGGAGCCTCAGCGATTTTCAGATCGGCATCATCGGTACCGCCTTCACCATCGTCTATGCCATCGCGGGCCTGCCATTGGGACGCATGGCCGATACCGGTTCGCGCAGCAAACTGATGGGCTGGGGCCTGGCGGCCTGGAGTGGGCTGACGGCGGTAAACGGCCTGGTGGGCAGTTTCTGGGCGTTCCTGGTGGTGCGCATGGGCGTGGGCATCGGTGAAGCCAGTTATGCGCCGGCGGCCAACTCGTTGATCGGCGACCTGTTCCCGGCGCACCGTCGGGCTCGGGCGATGGGCATTTTCATGCTGGGACTGCCGCTGGGCCTGCTGCTGGCGTTTTTTACCATTGGCGCGATGGTCAAGGCGTTCGACAGCTGGCGCGCGCCGTTCTTCATTGCGGCGGTGCCGGGCCTGGTGCTGGCGGTGTTCATGTTTTTCATCAAGGAACCCAAGCGCGGCGCGGCGGAAACCGTGGCGGTGTCCCAGGAAAAGGTCGACAAGCCGATTCGCCGGTTGCTGGCGATTCCGACCTTTCTCTGGCTGATCCTGGCGGGTCTGTGCTTCAACTTCGCCACCTATGCCTGCAACTCCTTCCTGGTGCCGATGCTGCAGCGCTATTTCGGGATGCCGCTGCACGAGGCGGCTGTGGCGACCGGGATCATGGTCGGTGTGACCGGGTTGTTCGGGTTGACCCTTGGCGGCTGGGTGGCCGACAAGATTCACCAGCGCGTGCCCAATGGCCGGTTGTTGTTCGCGGCGTTCAGCCTGGCGATTTCCACGGTGACTACCGCTTGGGCCCTGCATGCCGGGCGCATCGAAATCGGCATTTTTGTCGCCGTGTTCAGCGTCGGCTGGCTGTTTGCCTATAACTTCTACACCTGCGTCTACACCGCGATCCAGGACGTGGTGGAGCCGCGCCTGAGGGCCACGGCGATGGCGTTGTATTTTGCCGGGCTGTATCTGCTCGGCGGTGGCCTGGGGCCGGTGGTGGTCGGCGGCTTGTCCGACTACTTCGCCCACACGGCCATGGCGGCCGCAGGCGCCCCGCAGATGACCGAAGCGTTCAAGGCGATCGGCCTGCATGACGCGATGTACCTGATCCCGGTGGCGCTGCTGTTGACCATGGTGTTCCTGTTCCTGGCCTCTCGCTGCTTCGTGCGCGATGCCAAGCGGATGAAGGAAGGGATGAGCGCGGTGGTGGTGCCCGAAGGTGTCGTGGGGGCGGCCTAAMQNSTQAANAWRILFLLFLANLFNFFDRTIPAIIIEPIRMEWSLSDFQIGIIGTAFTIVYAIAGLPLGRMADTGSRSKLMGWGLAAWSGLTAVNGLVGSFWAFLVVRMGVGIGEASYAPAANSLIGDLFPAHRRARAMGIFMLGLPLGLLLAFFTIGAMVKAFDSWRAPFFIAAVPGLVLAVFMFFIKEPKRGAAETVAVSQEKVDKPIRRLLAIPTFLWLILAGLCFNFATYACNSFLVPMLQRYFGMPLHEAAVATGIMVGVTGLFGLTLGGWVADKIHQRVPNGRLLFAAFSLAISTVTTAWALHAGRIEIGIFVAVFSVGWLFAYNFYTCVYTAIQDVVEPRLRATAMALYFAGLYLLGGGLGPVVVGGLSDYFAHTAMAAAGAPQMTEAFKAIGLHDAMYLIPVALLLTMVFLFLASRCFVRDAKRMKEGMSAVVVPEGVVGAANANANANANA
D1-35_002741536bmr3Multidrug resistance protein 3ATGCCCGCAGGTCCAGCCTTGAATCAGCTCGATACGCCTCAAGTCCCGCAACCCGCCATCCGCAGCGTGCTGGTGGCGCTGATGCTGGCGATTTTCCTCGGGGCGTTGGACCAGACCATCGTCGCCGTTTCGATGCCGGCGATTTCCGCGCAATTCAAGGATGTCAGCCTGCTGGCCTGGGTGATCTCCGGCTACATGGTCGCGATGACCGTTGCGGTGCCGATCTACGGCAAACTGGGCGACCTGTACGGCAGGCGGCCATTGATGCTGTTCGGCATGGGCCTGTTCACGCTCGCCTCGCTGTTCTGCGGCCTGGCGCAGGACATGCAGCAACTGGTACTGGCGCGGATTTTCCAGGGCATCGGCGCTGGCGGGATGATCTCCGTGAGCCAGGCGATCATCGGCGACATCATCCCGCCCAGGGAACGTGGCCGTTATCAGGGCTACTTCAGCAGCATGTATGCAGTGGCCAGCGTCGCCGGGCCGGTGCTGGGCGGCTACATGACCGAATACCTGTCCTGGCGCTGGGTGTTCTGGATCAACCTGCCGCTGGGCCTGGGCGCCTGGCTCGTGGCCCGGCGCACGCTGGTGGGGCTGCCGGTGCCGCAACGCACACCCATCATCGACTACTTGGGCACCGTGTTGCTGATCATCGGCCTGACTGCCTTGCTGCTGGGCATTACCCAGGTGGGCCAGGGCCACGCCTGGCACAGCCGCGAAGTGCTCGGGCTGCTCGGTGGCGCCGTGGTCGTGCTGGGGGTATTCGCCTGGCATGAGCGCCGCGCCCGGGAGCCGCTGCTGCCCATGCACCTGTTCGTCAACCGCAGCGCGGTGCTGTGCTGGTGCACGGTGTTCTTCACCAGTTTCCAGGCGATCTCGCTGACGGTGCTGGTGCCGTTGCGCTTCCAGAGCGTGACCGGCGCCGGGGCCGACAGTGCCGCACTGCATCTGCTGCCACTGGCGATGGGCCTGCCGATGGGCGCCTATTTCGCCGGACGGCGCACCTCGATCACCGGTCGCTACAAACCGATGATCCTCAGTGGCGCCCTGCTCTTCCCGTTCGCCGTCCTCGGCATGGCCTTCACCCCGCCCGCGGCATTCTGGCTCAGCAGCCTGTTCATGCTGCTTGGCGGCATCGCGTCCGGCATGCAATTTCCCACCTCGCTGGTGGGTTCGCAGAATTCGGTGCAGCAACGGGACATCGGCGTGGCCACCAGCACCACCAACCTGTTCCGCTCACTGGGCGGCGCGGTCGGCGTGGCATTGATGTCGGCGTTGCTGCTGGCGCTGTTGCAGGACTCGGGTTTCGCCCAGCTCGCCGGTTCGTCAGTGATCGGCGAAGGGCATTCCGGCAACGTGCTGCTCGACGGCCTGAACGCCGCGCCGGGCGCGGCACGGGACGCCTTGCGCGAGGAGCTGCAAACGACATTCCGGCATTTGCTGATGATCAGCGCAGCGGTGTCGTTGCTGGGGTTGGCGGCGGCGCTGGCAATGCCCGACTGCCTGTTGCGCGGGCGAGAAGAAAAAACTCGCTAGMPAGPALNQLDTPQVPQPAIRSVLVALMLAIFLGALDQTIVAVSMPAISAQFKDVSLLAWVISGYMVAMTVAVPIYGKLGDLYGRRPLMLFGMGLFTLASLFCGLAQDMQQLVLARIFQGIGAGGMISVSQAIIGDIIPPRERGRYQGYFSSMYAVASVAGPVLGGYMTEYLSWRWVFWINLPLGLGAWLVARRTLVGLPVPQRTPIIDYLGTVLLIIGLTALLLGITQVGQGHAWHSREVLGLLGGAVVVLGVFAWHERRAREPLLPMHLFVNRSAVLCWCTVFFTSFQAISLTVLVPLRFQSVTGAGADSAALHLLPLAMGLPMGAYFAGRRTSITGRYKPMILSGALLFPFAVLGMAFTPPAAFWLSSLFMLLGGIASGMQFPTSLVGSQNSVQQRDIGVATSTTNLFRSLGGAVGVALMSALLLALLQDSGFAQLAGSSVIGEGHSGNVLLDGLNAAPGAARDALREELQTTFRHLLMISAAVSLLGLAAALAMPDCLLRGREEKTRNANANANANA
D1-35_002751191pobAp-hydroxybenzoate hydroxylaseATGAAAACCCTCAAGACCCAAGTCGCCATTATCGGCGCCGGCCCCTCTGGACTGCTGCTCGGCCAGTTGTTGCACAACGCCGGCATCGACACGCTGATCCTGGAACGCCAGACACCCGACTACGTCCTCAGCCGCATCCGCGCCGGCGTGCTTGAGCAAGGCATGGTGCAGTTGCTGCGCCAGGCCGGGGTCGGCCAGCGCATGGATGCCGAAGGCCTGCCCCATGATGGCTTCGAGCTGGTCCTCAGTGGCCGGCGCGTGCACATTGACCTGAAGGGACTGACCGGCGGCCAGAACGTCATGGTCTACGGCCAGACCGAAGTCACCCGCGACCTGATGGCTGCCCGCCAGGCCTGCGGCGCGCAGACCCTGTATCAGGTCGATAACGCCCAGCCCCACGACCTGCAGACCGACCAGCCCTTCGTGACCTTCGAGCATGCGGGCGAAACCTGGCGCCTGGACTGCGATTACGTGGCCGGCTGCGACGGCTTCCACGGTGTTGCACGGCAATCGATCCCGGCGGAAAAACTCAAGGTCTTCGAGCGTGTCTACCCGTTCGGCTGGCTCGGCATCCTGGCCGACACCCCGCCGGTCCACGAGGAGCTGGTCTACGCCCGCCATGAGCGCGGCTTTGCCCTGTGCAGCATGCGCTCGCGGACCCGCACCCGTTATTACCTGCAAGTGCCCGCCGAGGAACAGATAGCCGACTGGCCGGACGAGCGTTTCTGGAGCGAGCTGAAAAACCGCCTGCCCGCCGACCTGGCCGAAGCGCTGGTGACCGGCCCCTCCATCGAAAAAAGCATCGCGCCGTTGCGCAGTTTTGTCGTCGAACCGATGCAGTACGGGCGGATGTTTTTGGTCGGCGATGCCGCCCACATCGTCCCGCCCACCGGTGCCAAGGGGCTGAACCTGGCCGCCAGCGACGTCAGCACGTTGTTCAACATCTTGCTCAAGGTCTATCGCGACGGTCGCGTGGATCTCCTGGAACGCTATTCGGCCATTTGCCTGCGGCGAGTCTGGAAGGCCGAACGGTTCTCCTGGTGGATGACTTCGATGCTGCATCGCTTCGACGACGATGCATTCAACCAGCGCATCAGCGAAGCGGAGCTGGAGTATTTCGTCGACTCCGAGGCCGGTCGAAAAACCATTGCGGAAAATTATGTCGGCCTTCCTTACGAGGCTATCGAATAGMKTLKTQVAIIGAGPSGLLLGQLLHNAGIDTLILERQTPDYVLSRIRAGVLEQGMVQLLRQAGVGQRMDAEGLPHDGFELVLSGRRVHIDLKGLTGGQNVMVYGQTEVTRDLMAARQACGAQTLYQVDNAQPHDLQTDQPFVTFEHAGETWRLDCDYVAGCDGFHGVARQSIPAEKLKVFERVYPFGWLGILADTPPVHEELVYARHERGFALCSMRSRTRTRYYLQVPAEEQIADWPDERFWSELKNRLPADLAEALVTGPSIEKSIAPLRSFVVEPMQYGRMFLVGDAAHIVPPTGAKGLNLAASDVSTLFNILLKVYRDGRVDLLERYSAICLRRVWKAERFSWWMTSMLHRFDDDAFNQRISEAELEYFVDSEAGRKTIAENYVGLPYEAIEPGPT0005065_322DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYBENZOIC_ACID_GALLATE_RESISTANCE,PGPT0005065-pobA-K00481NANA
D1-35_00276894rhaS_1HTH-type transcriptional activator RhaSATGAAGAAAACCGAGCTGCCTTCGATACCGGTGTTCAAGCTCTACGGCGAGAGCCAGGATTGGCCGACGCCGGACCTGCTGCATTGCGAAACCATTTCCACGCGCAGCAGCGAACACCAGTGGGAAATCAAACCCCATCGGCATGCGGACCTGTGTCAGTTGCTGTTTGTCTACAAGGGCCAGGCCGAGCTGGAAATAGAAGGCCAGCGCACCCGGCTCGACGAGCCGGCCGTGCAGATCCTGCCGCCCTTGTCAGTGCACGGCTTTCGCTTTTCCGAGGATGTGCAAGGTTACGTGGTTACCCTGGCGGCGCCGCTGGTGACGCATCTGCAAGGGCAGCTCGGGCATTCGGTGAATGTCCTGGCCCAGGCCGAAGCCTACCCGGCCGGCGAAAACGCCGACTACCTCAACAGCCTTTTCAGCGCCTTGCAGGCGGAATATGTTGGCCACGAACCGGCCCGGGAAATGCTGATGCATGCACTGGTCAGCGTGATCATGGTCTGGGTCAGTCGCCAGGTAATGGACAGGCGTACCTCGTCGCAGCGCCCGCAACGGGCCCGGGAATATCTCAACGGGTTCATCCAGTTGGTTGAGGAAACCTATCGCCAGCATGTCAAGGTCGAAGACCTCGCCCATCGCCTGGGCATCTCGGTATCGCACCTCAACGGCACCTGTCGCGAACTGGCCGGGCAACCGGCGTTGCAGATCATGCACGAGCGTCAGCTGCTGGAGGCCAAGCGGCTGCTGACCTACACCGGCATGACCATCTACGAGATCTCCGAACTGCTCGGCTTTTCCGACCCGACCAACTTCACCCGGCTGTTTCGCCGGCGTGTCGGCATTTCGCCCAAGGCCTTCCGCGACCGGCTCAAGACCGATCAGCAGGACGACTGAMKKTELPSIPVFKLYGESQDWPTPDLLHCETISTRSSEHQWEIKPHRHADLCQLLFVYKGQAELEIEGQRTRLDEPAVQILPPLSVHGFRFSEDVQGYVVTLAAPLVTHLQGQLGHSVNVLAQAEAYPAGENADYLNSLFSALQAEYVGHEPAREMLMHALVSVIMVWVSRQVMDRRTSSQRPQRAREYLNGFIQLVEETYRQHVKVEDLAHRLGISVSHLNGTCRELAGQPALQIMHERQLLEAKRLLTYTGMTIYEISELLGFSDPTNFTRLFRRRVGISPKAFRDRLKTDQQDDNANANANANA
D1-35_00277177hypothetical proteinATGAACATCAAAACAAGAAGACGCCTCGCCATCTTTGTCACCTGCACGGCCACGCTAGCGCTGTATGGCACCGCGGCTTATCGGGTCGAACAGGCCAGGCAGTTGCCCCGTGAATACGCCAGCTGCAACTTTGAACGCTGCATACCGCACAACGCATCCCTGAACGCTCTGCGCTGAMNIKTRRRLAIFVTCTATLALYGTAAYRVEQARQLPREYASCNFERCIPHNASLNALRNANANANANA
D1-35_00278360hypothetical proteinATGGCCACGTTCCAACCCGGTCACCTGCACATGGAACGCCATGCGCTGAACAAGGACGACTACAGCTACAACCTGTGCATCGATTACGAGGTGACCCAGGATCCCGAGGAAGGAACGGGCATGTCGTTCCGGCTGCACGGCACGGTGGAAGACAGGAGCGTGGACGAGACGTTTTTCCTGGCCAAGGACCAGGCCTTCGACTTCGCCCGCCACGCCACGCGCATCGCCCAGCAGTACGGCATGCCGAAGACCGCCAGCATCGGCTCGATGCACAAGTATTACGACGAGATGTTCGAAGACGTGCGGCACCAGCTCGACGTCAAGCCGGGTGATCCGATGAAGCCTGAGCATTTGGAATAGMATFQPGHLHMERHALNKDDYSYNLCIDYEVTQDPEEGTGMSFRLHGTVEDRSVDETFFLAKDQAFDFARHATRIAQQYGMPKTASIGSMHKYYDEMFEDVRHQLDVKPGDPMKPEHLENANANANANA
D1-35_00279930arcC1Carbamate kinase 1ATGCGCATCGTCGTTGCCCTGGGCGGTAATGCCCTCCTGCGTCGGGGTGAACCCATGACCGCCGACAATCAACGCAGCAACATCCGCACCGCGACCGAACAGATCGCGAAAATCCATCCCGGCAACGAGCTGGTCATCGCCCACGGCAACGGCCCGCAGGTCGGCCTGTTGTCGTTGCAGGCGGCGGCCTACACCTCGGTCACGCCGTATCCGCTGGACGTGCTGGGCGCCGAAACCGAAGGCATGATCGGCTACATCATCGAACAGGAACTGGGCAACCTGCTGGACTTCGAAGTGCCCTTCGCCACGCTTTTGACCCAAGTCGAAGTGGACGCCAACGACCCGGCTTTCCAGAACCCGACCAAGCCCATCGGCCCGGTCTACAGCCAGCAAGAAGCGCAGCAACTGGCCGCAGAAAAAGGCTGGGCGATTGCCGCCGACGGCGACAAGTTCCGCCGGGTGGTCGCCAGCCCACGGCCCCGGCGCATCTTTGAAATCCGTCCGATCAAGTGGCTGCTGGAAAAAGGCAGCATCGTGATCTGTGCCGGCGGTGGCGGCATCCCGACGATGTACGACGCCGACGGCAACCTGCAAGGCGTCGAAGCGGTGATCGACAAGGACCTGTGTTCGGCACTCTTGGCCGAACAGCTGGGAAGCGATCTGCTGGTCATCGCCACGGACGTCAACGCCGCTTTCATCGATTTCGGCAAGCCGACCCAGAAAGCCATCGCCCAGGCTCACCCCGACGAGATGGAAAAACTGGGCTTTGCCGCCGGGTCCATGGGGCCCAAGGTGCAAGCCGCCTGCGAATTCGCCCGCCACACCGGCAAGGTCGCGGTGATCGGGTCGCTGTCGGACATCGAGGCTATCGTCCAGGGCACCGCCGGCACGCGCATCAGCACGGCAACGCCGGGGATTGTTTATCGGTAAMRIVVALGGNALLRRGEPMTADNQRSNIRTATEQIAKIHPGNELVIAHGNGPQVGLLSLQAAAYTSVTPYPLDVLGAETEGMIGYIIEQELGNLLDFEVPFATLLTQVEVDANDPAFQNPTKPIGPVYSQQEAQQLAAEKGWAIAADGDKFRRVVASPRPRRIFEIRPIKWLLEKGSIVICAGGGGIPTMYDADGNLQGVEAVIDKDLCSALLAEQLGSDLLVIATDVNAAFIDFGKPTQKAIAQAHPDEMEKLGFAAGSMGPKVQAACEFARHTGKVAVIGSLSDIEAIVQGTAGTRISTATPGIVYRPGPT0020085_1262DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0020085-arcC-K00926NANA
D1-35_002801011arcBCOG0078Ornithine carbamoyltransferase, catabolicATGGCTTTTAATATGCGCAACCGCAGCCTGCTGAGCTTGATGCACCACACCCACCGCGAGCTGCACTTTTTGCTCGACCTGTCCCGCGACCTCAAGCGCGCCAAGTACACCGGCACCGAGCAACCGCACCTCAAAGGCAAGAATATCGCGCTGATCTTCGAGAAGACCTCGACCCGCACGCGTTGCGCCTTCGAAGTCGCGGCCCATGACCAGGGCGCCCACGTCACCTACATCGACCCGGTTTCGTCACAGATCGGCCACAAGGAAAGCATGAAGGACACCGCCCGGGTGCTGGGGCGGATGTTCGACGCCATCGAATACCGTGGCTTCGAGCAGGAAATCGTCGAGGAGCTGGCCAAGTTCGCCGGCGTGCCGGTGTTCAACGGCCTGACCGCAGAATTCCACCCCACGCAAATGATCGCCGACACCCTGACCATGCGCGAGCACAGTGACAAGCCGCTGCATGACATCAGCTACGCCTACCTGGGCGATGCGCGCTACAACATGGGCAACTCGCTGCTGATGATCGGCGCCAAGCTGGGCATGGACGTGCGCATCGGCGCGCCGAAAGCCCTGTGGCCGCATCAGGACTTCATCGACCAGTGCCAGGCCTTCGCCGCCGAAAGTGGTGCACGGATCACCATCACCGAAGACCCGGAAGAAGCGGTCAAGGGCGTGGACTTCATCCATACCGATATCTGGGTCTCCATGGGCGAGCCAGTGGAGGCCTGGGACGAGCGCATCCAGCAACTGCTGCCCTATCAGGTCAACGCGCAAATGATGAAAGCCTCGGGCAATCCGCGGGTGAAATTCATGCACTGCCTGCCGGCCTTTCATAACAGTGAAACCAAGGTCGGCAAGGACATCGCCGCGCGTTATCCGAACCTGGCCAACGGCGTGGAAGTGACCGAGGACGTCTTCGAATCCCCGGCGAACATCGCCTTCGAACAGGCGGAGAACCGCATGCACACCATCAAGGCGATCCTGGTGGCGGCGTTGGCGGATATCTGAMAFNMRNRSLLSLMHHTHRELHFLLDLSRDLKRAKYTGTEQPHLKGKNIALIFEKTSTRTRCAFEVAAHDQGAHVTYIDPVSSQIGHKESMKDTARVLGRMFDAIEYRGFEQEIVEELAKFAGVPVFNGLTAEFHPTQMIADTLTMREHSDKPLHDISYAYLGDARYNMGNSLLMIGAKLGMDVRIGAPKALWPHQDFIDQCQAFAAESGARITITEDPEEAVKGVDFIHTDIWVSMGEPVEAWDERIQQLLPYQVNAQMMKASGNPRVKFMHCLPAFHNSETKVGKDIAARYPNLANGVEVTEDVFESPANIAFEQAENRMHTIKAILVAALADIPGPT0020080_884DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020080-arcB|argF|argI-K00611NANA
D1-35_002811257arcACOG2235Arginine deiminaseATGACCACGGAAAAAGTGAAATACGGCGTCCATTCCGAAGCCGGCAAACTGCGCAAAGTCATGGTCTGCTCACCAGGCCTCGCCCACCAGCGGCTGACGCCGAACAACTGCGACGAACTGCTGTTCGATGACGTGCTGTGGGTCAACCAGGCCAAGCGCGATCACTTCGATTTCGTCACCAAGATGCGTGAACGCGGTATCGACGTGCTGGAGATGCACAATCTGCTGACCGACATCGTCGCCATCCCCGAAGCGCTCGACTGGATCCTGCATCGCAAGATCACCGCCAACTCCGTGGGCCTGGGCCTGGTGCATGAAGTGGGCGCCTGGTTGCGCAGCCTGGAGCCACGCAAGATCGCCGAATACCTGATCGGCGGCGTCTCGGCCGATGACCTGCCGGACAGCTTCGGCGGCAAGACCATCCAGATGTTCCGCGACTTTCTCGGGCACTCCAGCTTCATCCTGCCACCGCTGCCCAACACCCAGTTCACCCGCGACACCACCTGCTGGATCTACGGCGGCGTGACGCTGAACCCGATGTATTGGCCGGCCCGCCGCCAGGAAACCTTGCTTACCACCGCCATCTACCGATTCCATCCCGAGTTTACCCAAGCCGATTTCCAGATCTGGTACGGCGACCCGGACCTGGACCACGGTAAAGCCACCCTCGAAGGCGGCGACGTAATGCCCATCGGCAATGGCGTGGTATTGATCGGCATGGGCGAACGCTCGTCGCGCCAGGCCATCGGTCAACTGGCACTGAACCTGTTCAAGCACAACGCCGTCGAGCGGGTGATTGTCGCGGGGCTGCCACGTTCCCGCGCAGCGATGCACCTGGACACCGTGTTCAGTTTCTGTGACCGCGACCTGGTGACGATTTTCCCTGAAGTCGTCAGCCAGATCGTCGCGTTTTCGCTGCGCCCGGACGAGAGCAAACCCGGCGGCATCGACGTGCGGCGCGAGGAAGGCAGCTTCCTCAGTACCGTCGCCCGCGCCCTCAAGCTGCCCGCGCTGCGGATCGTTGAAACCGGCGGCAACAGCTTCGCCGCCGAACGCGAGCAATGGGACGACGGCAACAACGTGGTCGCCCTCGAGCCAGGCGTGGTCATTGGCTACGACCGCAATACCTACACCAACACCCTGCTGCGCAAGGCCGGGGTGGAAGTCATCACCATCAGCGCCGGCGAACTCGGTCGTGGCCGTGGCGGCGGCCATTGCATGACCTGCCCGATCGTCCGCGACCCAATCGACTACTGAMTTEKVKYGVHSEAGKLRKVMVCSPGLAHQRLTPNNCDELLFDDVLWVNQAKRDHFDFVTKMRERGIDVLEMHNLLTDIVAIPEALDWILHRKITANSVGLGLVHEVGAWLRSLEPRKIAEYLIGGVSADDLPDSFGGKTIQMFRDFLGHSSFILPPLPNTQFTRDTTCWIYGGVTLNPMYWPARRQETLLTTAIYRFHPEFTQADFQIWYGDPDLDHGKATLEGGDVMPIGNGVVLIGMGERSSRQAIGQLALNLFKHNAVERVIVAGLPRSRAAMHLDTVFSFCDRDLVTIFPEVVSQIVAFSLRPDESKPGGIDVRREEGSFLSTVARALKLPALRIVETGGNSFAAEREQWDDGNNVVALEPGVVIGYDRNTYTNTLLRKAGVEVITISAGELGRGRGGGHCMTCPIVRDPIDYPGPT0020075_291DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020075-arcA-K01478NANA
D1-35_002821428arcDCOG0531Arginine/ornithine antiporterATGTCCGATACCCCCGGAAAACTTCGACTGGGCGCGCTGGTTGCGCTGGTAGTGGGTTCGATGATTGGCGGCGGGATCTTTTCCCTGCCGCAGAACATGGCCGCCAGCGCCGATGTCGGCGCCGTATTGATCGGCTGGGCCATCACCGCAGTGGGCATGTTGACCCTTGCATTCGTGTTCCAGACCCTGGCCAATCGCAAACCCAATCTGGACGGCGGGGTGTACGCCTACGCCAAGGCCGGGTTTGGCGACTACATGGGGTTTTCCTCGGCCTGGGGTTACTGGATCAGCGCCTGGCTCGGCAACGTTGGCTACTTCGTTTTGTTGTTCAGCACCCTGGGCTATTTCTTCCCGGTGTTTGGCGAAGGCAACACCGTGGCGGCAGTGATCGGCGCATCGCTGTTGCTGTGGGCCGTGCACTTTCTGGTACTGCGGGGCATCAAGGAAGCGGCGTTCATCAACCTGGTGACCACCGTCGCCAAGGTCGTGCCGCTGCTGCTGTTCGTGCTGATCGCGGTGTTCGCCTTCAAGCTGGATATCTTCACCGCTGACATCTGGGGCTTGAAAAACCCGGACCTGGGCAGCGTGATGGATCAGGTGCGACACATGATGCTGGTCACCGTGTGGGTGTTCATCGGCATCGAAGGCGCGAGCATTTTCTCGGCCCGCGCCGAAAAACGCAGCGACGTCGGCAAGGCCACGGTCATCGGCTTCATCACGGTGCTGTTGTTGCTGGTACTGGTGAACGTGCTCTCGCTGGGGATCATGACCCAACCTGAACTGGCGAAGCTGCAGAACCCGTCCATGGCCGCCGTACTCGAGCACGTGGTCGGTCACTGGGGCGCTGTGCTGATCAGCGTCGGCCTGGTTATCTCGCTGCTCGGTGCCCTGCTGTCCTGGGTCTTGCTGTGCGCCGAGATCATGTTTGCCGCCGCCAAGGACCACACCATGCCGGCCTTCCTGCGCCGGGAAAATGCCAATCATGTACCGGCCAACGCGCTGTGGCTGACCAACGCGATGGTCCAGCTGTTCCTGATCGTCACGCTGTTTTCCGCCAGCACCTACCTGTCGCTGATCTACCTCGCCACCTCGATGATCCTGGTGCCGTACCTGTGGTCGGCGGCCTACGCACTGCTGCTGGCGGTACGCGGTGAAACCTATGAAAACGCCCTGGCCGAACGGCGCAAGGACCTGGTCATCGGCGCCATCGCGCTGATCTACGCGATGTGGCTGCTGTATGCCGGCGGGATCAAGTACCTGCTGCTCTCCGCCCTGCTCTACGCCCCCGGCGCGATCCTGTTCGCCAAGGCCAAGCGCGAACTGGGCAAACCGGTTTTCACCTCGGTCGAGAAGCTGATTTTTGCCGCCGTGGTGGTCGGTGCCCTGGTGGCTGCCTACGGCCTTTATGACGGCTTCCTGAGCCTGTAGMSDTPGKLRLGALVALVVGSMIGGGIFSLPQNMAASADVGAVLIGWAITAVGMLTLAFVFQTLANRKPNLDGGVYAYAKAGFGDYMGFSSAWGYWISAWLGNVGYFVLLFSTLGYFFPVFGEGNTVAAVIGASLLLWAVHFLVLRGIKEAAFINLVTTVAKVVPLLLFVLIAVFAFKLDIFTADIWGLKNPDLGSVMDQVRHMMLVTVWVFIGIEGASIFSARAEKRSDVGKATVIGFITVLLLLVLVNVLSLGIMTQPELAKLQNPSMAAVLEHVVGHWGAVLISVGLVISLLGALLSWVLLCAEIMFAAAKDHTMPAFLRRENANHVPANALWLTNAMVQLFLIVTLFSASTYLSLIYLATSMILVPYLWSAAYALLLAVRGETYENALAERRKDLVIGAIALIYAMWLLYAGGIKYLLLSALLYAPGAILFAKAKRELGKPVFTSVEKLIFAAVVVGALVAAYGLYDGFLSLPGPT0020620_689DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020620-arcD|lysl|lysP-K03758NANA
D1-35_002831347frcFormyl-CoA:oxalate CoA-transferaseATGTCAGATCTGCTCACATCCATGCAAACCGCCCTCGGTTTGCCCACGACTCCGATCCCCTTCACTGGCGAAGGCGCCCTGCCCTCTGCGTTCGCCGTTACCGAGTTGGCCTGCGCCAGCATCGCCACGGCCGGTCAAGCGGTCGCCGAACTCATTCATCAGCAGACCGGCCGCCTGCCGACGCTTGAAGTCGACCGGCGCCTGGCCTCGTTCTGGTTCGCCACGTCCCTGCGGCCCGTCGGCTGGAGCGTACCGCCGCTGTGGGACCCGGTGGCTGGCGACTACGCCACCGCCGACGGCTGGATTCGCCTGCACACCAACGCACCGCATCATCGTCTTGCTGCGGAAAAAGTCCTCGGTACCTGCACCGACCGCGCCGACATGGCGAGCAAAGTTGTCCGTTGGAACAAGGCCGAACTGGAACAGGCCGTGGTCGACGCCGGTGGTTGCGCCGCACAGATGCGTTCCTGGCAGGCGTGGCAGGCCCATCCGCAAGGTTTGGCGGTGAACGCCGAACCGCTTGTTCGCTTCGATGACATGAGTGCAGCTCCGCTTGAACCCTGGCTCGGCTCCGTCGCCCAGCCGCTGGCGGGCTTGAAGGTGCTTGACCTGACCCGCGTGCTGGCCGGCCCGATTGCCAGCCGCTTTTTGGCCGGGCTGGGCGCCGATGTGCTGCGTATCGACCCGCCGACCTGGAACGAACCCGGCGCGGTTCCGGAAGTTACCCTCGGCAAACGCTGCGCCCGCCTCGACTTGCATCAGCCCGCTGACCGCGCGACGTTCGAAGCATTGCTCAAGGATGCCGACATCCTCCTGCACGGCTATCGCGCCGACGCGCTCGAACGCCTGGGCTATGGCGCCGTGCAACGCCGCCAACTGGCACCTGGGCTGATCGACGTCAGCCTCAACGCCTACGGCTGGAGCGGCCCCTGGCAACACCGGCGCGGCTTCGACAGTCTGGTGCAGATGAGCAGCGGCATCGCCGAGGCCGGCATGGCCTGGAAACAGACAGATAAACCGACGCCGCTGCCCGTTCAGGCGCTGGATCACGGCACCGGCTACCTGATGGCGGCCAGTGCGATTGTACTGCTGGCTCGGCGCTTGGCCGATGGCCGTGGCGGTTCGGCACGCTTGTCACTGGCCCGCACGGCGAAACTGTTGATCGAGGGTGGCGCCGGCGATGAGGCTGCGTTGCGCCCCGAAGACGAGGCCGACCAGGGACTGCTGGTGGAACAAACGCCCTGGGGCCCGGCGCACCGCTTGCAGGTGCCACTGAAAATCACCGGCACGCCGTTGCAGTGGGCCCTGCCAGCCACCGAACTGGGCGCACATCGCCCTCAGTGGTGAMSDLLTSMQTALGLPTTPIPFTGEGALPSAFAVTELACASIATAGQAVAELIHQQTGRLPTLEVDRRLASFWFATSLRPVGWSVPPLWDPVAGDYATADGWIRLHTNAPHHRLAAEKVLGTCTDRADMASKVVRWNKAELEQAVVDAGGCAAQMRSWQAWQAHPQGLAVNAEPLVRFDDMSAAPLEPWLGSVAQPLAGLKVLDLTRVLAGPIASRFLAGLGADVLRIDPPTWNEPGAVPEVTLGKRCARLDLHQPADRATFEALLKDADILLHGYRADALERLGYGAVQRRQLAPGLIDVSLNAYGWSGPWQHRRGFDSLVQMSSGIAEAGMAWKQTDKPTPLPVQALDHGTGYLMAASAIVLLARRLADGRGGSARLSLARTAKLLIEGGAGDEAALRPEDEADQGLLVEQTPWGPAHRLQVPLKITGTPLQWALPATELGAHRPQWNANANANANA
D1-35_00284432ybaN_1COG2832Inner membrane protein YbaNATGACCCGCATCCCCTCAAAACCCAGCCAACTGCTCTTCGCCCTGCTCGCCTACACCAGCCTGGCCATCGGCCTCATCGCCTTGGTCGTGCCCGGCCTGCCGACCACCGAGTTCATCCTGCTCGCCGCCTGGGCCGCGACCCGCAGTTCGCCGCGTCTGAGCGCCTGGCTGGAGCACCATCGGTGGTTCGGGCCGATGCTGCACAACTGGCGCAACGGCAAGGTCATCCCGCGCCGGGCCAAGGTCGGCGCCACGATCAGCATGCTCGGTTGTGCCGCAATGATGTGGCTGATGCTTGCCCACGGCTGGCCGATGTACCTGGCCATGGCCGGCATGGGCCTGGGCAACCTGTGGATCTGGTCACGCCCGGAAACTCGTGGCGAGGGAGCTTGCTCCCGCTGGGGCGCGAAGCGGCCCCCTACGCAATTTTGAMTRIPSKPSQLLFALLAYTSLAIGLIALVVPGLPTTEFILLAAWAATRSSPRLSAWLEHHRWFGPMLHNWRNGKVIPRRAKVGATISMLGCAAMMWLMLAHGWPMYLAMAGMGLGNLWIWSRPETRGEGACSRWGAKRPPTQFNANANANANA
D1-35_00285591pigACOG3230Heme oxygenase PigAATGACCACCCCACGCCCCGCCCTACGTTCCCAGCGCCTGAATCAGATCACCCACGAGCCCCACGGCAAGCTCGACGCCCTGGTCAAAGCCCACGCCCCATTCGAAACCCAGGCCAGCTACGCGCGCTTCGTCGTCGCCCAGTACCTGTTCCAGTCAGAACTGGTGGCGCTGTACAACGACGTGCAACTGGCCGCCCTGATACCCGATCTGGCGGCCCGCTGCCGCGCCGAAGCGGCCAAGGCGGATCTCACGGACCTGGACACCGAAGTGCCCGCGCCGGTGGCCGGAGCGGTAAAAAACCCGAGCCAGGCCGAAGCACTGGGCTGGCTGTTCGTCTCCGAGGGCTCGAAGCTCGGCGCCGCGTTCCTGATCAAGCGTGCCGTGGCCCTGGGAATGAACGAAACCTTCGGCGCCCGGCATCTGGCGGAACCGGCGGGCGGCCGTGCCGAAGGCTGGAAAACCTTCACCCGTACCCTCGACGGCCTGGCCTTCACCGAACAGCAGGAAGCCGAGGCGGACAAAGGCGCGCTGGAGGCCTTCAACCGGTTTACCGTGTTGCTGGAACACGCCTATGCGGCCGAGTTGGCCTGAMTTPRPALRSQRLNQITHEPHGKLDALVKAHAPFETQASYARFVVAQYLFQSELVALYNDVQLAALIPDLAARCRAEAAKADLTDLDTEVPAPVAGAVKNPSQAEALGWLFVSEGSKLGAAFLIKRAVALGMNETFGARHLAEPAGGRAEGWKTFTRTLDGLAFTEQQEAEADKGALEAFNRFTVLLEHAYAAELAPGPT0003620_221DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-HEMOPHORES-HEME|HEMIN_UTILISATION,PGPT0003620-hemO|pigA-K07215NANA
D1-35_002862595hemRCOG1629Hemin receptorATGTCCTCTCGCCTTACTTGCCGGTTTCTTGCCCCCTCTTGCACGCTGTCACTGCTCACCGCCGCCATCCTGATGACCGGCACCGCGCCGGCGGCCTTGGCTGCCGCCGCCGAGCAATCGCCCGCGCGCAACATGGGCGACTACACCTTCAGCATCGCCCGGCAACCACTGGTTTCCGCACTGAATGCATTTACCGCCGTCACCGGCTGGCAGGTGGGGCTGCCGGCAGAACTGGCCGAAGGCGTCGCCTCGCCGGGGGTGAACGGCTCGCTGCCGCCGGAAAAAGCCCTGGAGCGCCTGTTGGTGGGGACCAACCTGAGCTACCGCAAACTGGGCAATAACAACATCGTCCTGGAAAAGCGCAGCGCCGGCAGCGCGCTGGAGTTGCAACAGGTGACCATCAGCGCCACCCGCCAGGAACAAGACATCGCCAGCGTACCGAGCACCGTTTCGATCCATGATCGCCAGGAGCTGGACCGCAACAACGTCAACACCATCAAGGATCTGGTGCGCTATGAGCCCGGCGTGTCGGTGGGCGGCGCGGGCCAGCGCGGCGGCATCAGCGGTTACAACATCCGCGGCATCGACGGCAACCGGATCCTGACCCAGGTCGACGGCGTGGAAATCCCCGGCGGTTTCTTCAACGGCCCGTACGCCAAGACCCAACGCAACTACGTCGACCCGGAAATCATCAAGCGCGTCGAGATTCTGCGCGGCCCGGCCTCGGTGCTGTACGGCAGCAACGCGATCGGTGGTGTCGTCAGTTATTTCACACTCGATCCGGACGACATCATCAAGCCCGGCAAGGACGTCGGCGCGCGTCTCAAGACCGGCTACAGCTCCGTCGATGAGAGCTGGCTCAAATCCGCCACCGTCGCCGGCCGCAGCGGGCCGTTCGACGGGTTGTTGCATTACAGCCAGCGCGACGGCCACGAGACCGAGTCCTACGGCAGCAACAACGGCACCGGCCTGGACCGCACCGCCGCCAACCCGGAAGACGTGCGCGCCAACAACGTGCTGGCCAAACTCGGCTGGGACTACAGCGATGACGCACGCCTGAGCCTGGTGTACGAGAAGTACAAAGACGATCGCGACGTCGACCTGAAAAGCGCTTACGGCGGGCCCTATGCCAACGGCCAACCAGCCATTTCCGCCTCCATCCTGCCCGGCGGCATGTACCAGTGGCGCACCGGTAACGATACGATCACCCGCGAGCGTTTCGGCCTGGAGCACAGCTTCGCCCTCGACAGCCTGCTGGCCGACAACATCAAGTGGAGCCTCAACCACCAGATCGCCAAGACCGACCAGCGCACCGCCGAGTTTTATTTCCCGATCACCCGCCGGGTGTTGCGCACCCGTGAAACGCTCTATGAAGAAAAACAGTGGGTCTTCGACGCGCAGGCAGACAAGTCATTCAGCTTGGCCGACACCGATCACACACTGACCTACGGCACCACGCTCAAGCATCAGAAAGTCACCGGCTCACGCAGCGGCAACGGCGTGTGCCTGGCGATCGGCGTGGGCTGCCCCGCCGTCGGTGCGATCAGCACCCGGGACGTATTGGCAAAAGCCAGCGACTTCCCCGACCCGACCATCAACACCTACAGCGTTTTCGCCCAGGACCAGATCAGCTGGGACAAATGGACCTTCACGCCAGCGCTGCGCTACGACTACACCCGGCTCAAGCCACGCCTGACCGAGGAATTCCTGCGCACCGTGGACCCCACCAACGGCGGTACGGTGAGTGGCGAGGACAAGAACTGGCATCGCGTCTCGCCGAAGTTCGGCCTGACCTATGCCCTGACCGACCAGTACACCTGGTACGGCCAGTACGCAGAAGGGTTCCGCACCCCGACCGCCAAGGCCTTGTACGGACGTTTCGATAACGCCGGCGTGGGCTACAGCGTGGAACCCAATCCCGACCTGGAACCGGAAAAAAGCAAAAGCTACGAAACCGGCCTGCGCGGTCGTTTCGACTCCGGATCGTTCGACGTGGCGGTGTTCTACAACAAGTACCGCGACTTCATCAACGAAGACGCCATCACCCCCGGCGCCGACCAGTTGACCTTCCAGAGCAACAACATCAAGCACGCCACCATCAAGGGCATCGAAGCCAAGGGACGCCTGGACCTGGACGTGTTCGGTGCGCCAAAAGGCCTCTACACCCAAGGCTCGGTGGCGTACCTGTATGGCCGCAACAACGACACGGGCGAGCCGCTCAACAGCGTCAACCCGCTTACCGGCGTGTTCGGCCTGGGCTACGACCAGGAGCAGTTCGGCACGTTGCTCAGCTGGACCCTGGTCCAGAAGAAAAACCGCGTAGACGACAGCAACTTCAATTCGCCCGACGGCGTCAGCGGCCAGTTCAAGACGCCGGGCTTCGGCATTCTCGACCTGAGCGGCTACTACAAGGTGACTCACGACGTCACCGTCAGCGGCGGCCTCTACAACCTCACCGACAAGAAGTACTGGCTGTGGGATGACGTGCGCGGCTACGACAGCGTCGGCGAAGCGGCGGTGCTGAGCCCGGCCAACCTCGATCGCCTGACGGCGCCGGGGCGCAACTTCGCGGTCAACCTGATCTGGGATATCTGAMSSRLTCRFLAPSCTLSLLTAAILMTGTAPAALAAAAEQSPARNMGDYTFSIARQPLVSALNAFTAVTGWQVGLPAELAEGVASPGVNGSLPPEKALERLLVGTNLSYRKLGNNNIVLEKRSAGSALELQQVTISATRQEQDIASVPSTVSIHDRQELDRNNVNTIKDLVRYEPGVSVGGAGQRGGISGYNIRGIDGNRILTQVDGVEIPGGFFNGPYAKTQRNYVDPEIIKRVEILRGPASVLYGSNAIGGVVSYFTLDPDDIIKPGKDVGARLKTGYSSVDESWLKSATVAGRSGPFDGLLHYSQRDGHETESYGSNNGTGLDRTAANPEDVRANNVLAKLGWDYSDDARLSLVYEKYKDDRDVDLKSAYGGPYANGQPAISASILPGGMYQWRTGNDTITRERFGLEHSFALDSLLADNIKWSLNHQIAKTDQRTAEFYFPITRRVLRTRETLYEEKQWVFDAQADKSFSLADTDHTLTYGTTLKHQKVTGSRSGNGVCLAIGVGCPAVGAISTRDVLAKASDFPDPTINTYSVFAQDQISWDKWTFTPALRYDYTRLKPRLTEEFLRTVDPTNGGTVSGEDKNWHRVSPKFGLTYALTDQYTWYGQYAEGFRTPTAKALYGRFDNAGVGYSVEPNPDLEPEKSKSYETGLRGRFDSGSFDVAVFYNKYRDFINEDAITPGADQLTFQSNNIKHATIKGIEAKGRLDLDVFGAPKGLYTQGSVAYLYGRNNDTGEPLNSVNPLTGVFGLGYDQEQFGTLLSWTLVQKKNRVDDSNFNSPDGVSGQFKTPGFGILDLSGYYKVTHDVTVSGGLYNLTDKKYWLWDDVRGYDSVGEAAVLSPANLDRLTAPGRNFAVNLIWDINANANANANA
D1-35_00287963hypothetical proteinGTGACGGACAACCATCGCTCCCCTGAAGCCGCTGCGGCACAGGACACCGCCCACGCCATGGACCAGGCGCTGGATTGGCTGGTCCTGCTCGACAGCCCCAGCGATGAACAGACCCGACAGTTCCAGGCCTGGCTGGCGGCAGATCCGCGTCATGGCGAAGCGTTCTCCAGAGCCCAGGCGATCTGGAACGGCCCGCAGATCATCGAAAGCGCCCGGCAGCTCCAGGCCCGCCCCAAGGCCACCGCGCTGTCGCGTCTTCGAGCCCATTGGAAACCCCTGGCCACCGCCGCCGTGCTGTTGCTCGGATTGTTCAATTTCAGCGACCTGCCCCTGCAATTGCAGGCCGATCACCTGACCGTGGTCGGTGAGCGCCAGCGGCTGCAACTGGAAGACGGTTCCAAGGTCCTGCTGAATACCGACTCGGCGTTTTCCAGTTCCTTCGACGAACAGCGGCACGTGGCCCGCCTCTACAAGGGCGAGGCTTTTTTCGAGGTGCCGGCCAGTCGCAATGTGCCGTTGGAGATCGACGCCGGGCCGGTCACCGCCAGTGTCAGCGACACCACGTTTGCGGTGCGTTACCTGGACGGCGTCGCTCAGGTCCAGGTGCAGCGTGGCGATGTCGACCTGCGTGCGACCCGCTACGATGCCCATGTCCGCTTGTCGGCAGGAGAAAGCATCCGCATTGGTCCCAACGGCTTCGACCGCCCGGCACGCCTCGATGTCGGCACGGACCTGGCGTGGGTCCAGGGTCGGCTGGTGTTCGAGAATCGGCCGCTGGGCCAGGTACTGGCGGAGTTGCGACGCTACTACCCGGGCTGGATCATCAACAACAACCAGCAGTTGGCCGGCGTGGCCGTGACGGGTAACTATCGCCTCGACCAGCCGCTGGACGTGGTGCGTTCCCTGGCCCATATCACCTCTGCCCGCCTCCGGGAATTCCCGGCGCTGGTAATCCTGAACTGAMTDNHRSPEAAAAQDTAHAMDQALDWLVLLDSPSDEQTRQFQAWLAADPRHGEAFSRAQAIWNGPQIIESARQLQARPKATALSRLRAHWKPLATAAVLLLGLFNFSDLPLQLQADHLTVVGERQRLQLEDGSKVLLNTDSAFSSSFDEQRHVARLYKGEAFFEVPASRNVPLEIDAGPVTASVSDTTFAVRYLDGVAQVQVQRGDVDLRATRYDAHVRLSAGESIRIGPNGFDRPARLDVGTDLAWVQGRLVFENRPLGQVLAELRRYYPGWIINNNQQLAGVAVTGNYRLDQPLDVVRSLAHITSARLREFPALVILNPGPT0003910_4976DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003910-prhR|fecR-K07165NANA
D1-35_00288519sigECOG1595ECF RNA polymerase sigma factor SigEGTGAGCCAATCACGCTTCCATCAGGTTTTCCTCGCCCAGCGCATGCCGCTGCTGCGCACCCTCGAACGCATGGTCAACAACCCCAGCACCGCCGAAGACCTGCTTCAGGAAACCTACCTGCGCGTCACCCGCGCCCTGAACGAGCGCACGGTCGAGCATCTCGAACCCTTCGTCTTCCAGACCGCCCGCAACCTGGCGCTCGACCATTTGCGCGCGCGACGCATCCAGTCACGCACGCTGCTGGACGACGTGCCGATGGAAGTCGTGAACAACGTCATCGCCCCGCAAAGCAGCGCCGAGGATGCCGCCCATGCCGGCCGGTTACTCGAACAACTCAACCTCAGCCTGCAGTCGCTGAGCCCGCGCCAACAGCAGATCTTCATCCTCAACCGCCTGCATGGCCACAGTTACCAGGACATCGCCGAACGCTTGGGCGTGTCGCTGAGCACCGTGCAGAAAGAACTGAAATTGATCATGGCGATTTGCGTGGGCGTGGCCGAACGGCTGGGCGCCGATTGAMSQSRFHQVFLAQRMPLLRTLERMVNNPSTAEDLLQETYLRVTRALNERTVEHLEPFVFQTARNLALDHLRARRIQSRTLLDDVPMEVVNNVIAPQSSAEDAAHAGRLLEQLNLSLQSLSPRQQQIFILNRLHGHSYQDIAERLGVSLSTVQKELKLIMAICVGVAERLGADPGPT0014960_10384DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
D1-35_002891341sasA_1Adaptive-response sensory-kinase SasAGTGCGTTCACTGTTCTGGCGCATCCTGGCCAGTTTCTGGCTGGCCATCGCCCTGGTCGCGGGGCTTTCGATCCTGATGGGCCACATGCTGAACCAGGACGCCTGGATCCTCAGCCGCCATCCAGGGCTCAACACCCTGGCCGAAGAATGGACACAAACCTACGAAAGCCAGGGCGAAGAGGCCGCGCAAGACATCCTGCAACAGCGCAAGCGCAAGTATCACATCGACGTTCAGGTGCTCAACGAGAGCGGCGACCCGGTGGTGCGCGGCACCTTTCCCCATCGCGCCGCGGCTTTCGAGGCGCGCCAGAACAACGACGACCGACGCCTCCCCTGGCGGCGCTTGACTGACGAGTTCACCAGCGCCAAGACCGGTGACACCTACCTGTTCATCTACCGCATCCCCCATCCCGAACTGGACGCCTGGCACCGCGACAGCCTGCTCTGGCCCCTCAGCGCCCTGGCCATTGCGCTGGTGGTACTGACCTTGTTCAGCCTGTTGGTGACCCTCTCCATCACCCGCCCGCTGAGCCGCCTGCGCGGCGCGGTGCATGACCTCGGCCAAGCCACGTACCAGCAGAACAGCCTCGCCAAACTGGCCAACCGCCGGGACGAATTCGGCGTACTGGCCACTGACTTCAATCGCATGGGTGCGCGCCTGCAAAGCCTGATCGCCAGCCAGCGCCAATTGCTGCGCGATGTTTCCCATGAACTGCGTTCGCCCCTGGCCCGGCTGCGCATCGCTCTGGCGCTGGCGGAGCGGGCGAGCCCCGCCGAGCGTGAAAAACTCTGGCCGCGCCTGACACGCGAATGTGACCGCCTGGAAGCATTGATCAGCGAAATCCTGGTGTTGGCCCGGGTCGACGCCGACAACGCCAGCGCCGAGGAAGTCGACCTCAACGGTTTGCTGGAGAACCTGCAAAAAGACGCCCAGCTGGCTTCACCGGAGCAACACGTGCGCCTGGAAACCGAGCCGCAACTGACGCTCAAGGGCTGGCCCACCATGATCGAGCGGGCGGTGGACAATCTCCTGCGCAACGCCCAGCGCTTCAACCCTGCCGGGCAGCCCATCGAAATGCGTGCCGCGCGCCAAGGAGAAAGGATAGTGATCAGCGTGCGCGACCACGGCCCCGGCGTAGAGGCGGAACACCTGGGCCAGTTGAGCGAACCGTTTTATCGCGCTCCCGGCCAGACCGCCCCCGGGCATGGTCTCGGCCTGGCGATCGCGCGCCGTGCGGCGGAACGGCATGGCGGAACCCTGGGATTGGCGAACCACCCCGACGGCGGATTCATCGCCACCCTGGAATTACCGCTGGTGCCGGGCGCGGTGGTGCAACCTTGAMRSLFWRILASFWLAIALVAGLSILMGHMLNQDAWILSRHPGLNTLAEEWTQTYESQGEEAAQDILQQRKRKYHIDVQVLNESGDPVVRGTFPHRAAAFEARQNNDDRRLPWRRLTDEFTSAKTGDTYLFIYRIPHPELDAWHRDSLLWPLSALAIALVVLTLFSLLVTLSITRPLSRLRGAVHDLGQATYQQNSLAKLANRRDEFGVLATDFNRMGARLQSLIASQRQLLRDVSHELRSPLARLRIALALAERASPAEREKLWPRLTRECDRLEALISEILVLARVDADNASAEEVDLNGLLENLQKDAQLASPEQHVRLETEPQLTLKGWPTMIERAVDNLLRNAQRFNPAGQPIEMRAARQGERIVISVRDHGPGVEAEHLGQLSEPFYRAPGQTAPGHGLGLAIARRAAERHGGTLGLANHPDGGFIATLELPLVPGAVVQPPGPT0004100_3324DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-CUS_TRANSPORT_SYSTEM,PGPT0004100-cusS|copS|silS-K02484NANA
D1-35_00290438hypothetical proteinATGCGCAAGACCCTAACCGCTCTGATATTCGCCGCCGCCCTGCCGACCGTGGCCATGGCCATGCCCGAAGGCCCGGGGCCGATGGGCCCGATGGACGGTCCGCGCCACGGTGGCCAGATGCACGACAAAGGCCCCTACAGCCAACTGGACCTGACCCGCGAACAACGCGAGCAGATTCGCCGGATCATGGGTGAACAGCGCCATGAGCAACGCGAACTGGTCGACAAGTACCTGGCCAAGCTGTCGCCAGCCGACCAGAAAGCCATGCAGGACGAAATGGAAGCCCGGCACCAGAAAGTTGATGCCCAGATCCGTGGCTTGCTGAAGCCCGAGCAGCAGAAAGAGTTTGACGCCATTCAGAAAAAACGCGCCGAACGTCGGGCCGAGTGGGCCGAATTCAAGGCCTGGAAAGCGCAACAACCGCAAAAAGCGCAATAAMRKTLTALIFAAALPTVAMAMPEGPGPMGPMDGPRHGGQMHDKGPYSQLDLTREQREQIRRIMGEQRHEQRELVDKYLAKLSPADQKAMQDEMEARHQKVDAQIRGLLKPEQQKEFDAIQKKRAERRAEWAEFKAWKAQQPQKAQNANANANANA
D1-35_00291678cpxRCOG0745Transcriptional regulatory protein CpxRATGAGCGAGCTGTTACTGATTGATGATGACCAGGAGCTGTGTGAGCTCCTCGGCAGTTGGCTGGGCCAGGAAGGTTTCCAGGTCCGCGCTTGCCACGATGGCCAGAGCGCCCGCAAGGCCCTGGCCGAAACCGCCCCGGCGGCGGTGGTGCTGGATGTGATGCTGCCCGACGGCAGCGGCCTGGAACTGCTCAAGCAGTTGCGCAACGATCACCCGGAATTGCCGGTGCTGATGCTCTCGGCCCGCGGCGAACCGCTGGATCGCATCCTTGGCCTGGAGCTGGGGGCTGACGATTACCTGGCCAAGCCTTGCGATCCACGAGAGCTGACCGCCCGCCTGCGCGCCGTGCTGCGCCGCAGCCATCCCGCCGCGGTTTCCAGCCAGATCGAACTGGGTGACCTGACCTTCAGCCCGGTGCGTGGCGTGGTCAGCATCGATGAACAGGAACAGACCCTCACCGTCTCCGAAAGCCGCCTGCTCGAAGCACTGCTCAAGCAGCCGGGCGAGCCGCTGGACAAGCAGGAACTGGCGCAGATTGCCTTGGGCCGCAAGCTGACCTTGTACGATCGCAGCCTCGACATGCACGTCAGCAACCTGCGCAAGAAGATCGGTCCCCACCCCGACGGCCGCCCGCGCATCGTCGCCCTGCGTAGCCGGGGCTACTACTACAGCCTTTAAMSELLLIDDDQELCELLGSWLGQEGFQVRACHDGQSARKALAETAPAAVVLDVMLPDGSGLELLKQLRNDHPELPVLMLSARGEPLDRILGLELGADDYLAKPCDPRELTARLRAVLRRSHPAAVSSQIELGDLTFSPVRGVVSIDEQEQTLTVSESRLLEALLKQPGEPLDKQELAQIALGRKLTLYDRSLDMHVSNLRKKIGPHPDGRPRIVALRSRGYYYSLPGPT0015100_599DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015100-cpxR-K07662NANA
D1-35_00292411hypothetical proteinATGCGCAAAGGTCGGTTGTGCCTGTTGTTGGTCTCGTTGGCGATTGGAGCCCCCGCCCACGGCGAGGAAAGCACCGAGGCTGCTCATTCGGCGCCCTTGTCCCTGAGCGCGGGCGGCCAGATCGCCGAATTGCAGCAGCGCCTGAAAGACAGCGAGCGCATGCGTGAAGCACTCACCCAGCAACTGCAGAACACCAACGGCGAACGCGAGAGCGCGCTGGTGGGACGGCTGCGCCAGGAGAACCAGCGCCTGAAGTTGCAACTCAAGGAAGCCCAGTCCAGCCCGCTGCCGCGCCTGCTGACCGAACAGCAACAGTGGTTCGTCGTCGGCGCCGGGGTAGCGCTATTGGCCCTGCTCTGCGGTATCTTTGCCAGCGGTGGACGTAGACAACGTCGGCAATGGCTAAATTGAMRKGRLCLLLVSLAIGAPAHGEESTEAAHSAPLSLSAGGQIAELQQRLKDSERMREALTQQLQNTNGERESALVGRLRQENQRLKLQLKEAQSSPLPRLLTEQQQWFVVGAGVALLALLCGIFASGGRRQRRQWLNPGPT0023725_737DIRECT EFFECTCOLONIZING_PLANT_SYSTEMOTHER_COLONIZATION_RELATED_PROTEINSCOLONIZATION-HOST_INVASION_FACTORSHOST_INVASION-HOST_INFECTION_MEDIATOR,PGPT0023725-ygiM|htrG-K07184NANA
D1-35_00293300yciICOG2350Protein YciIATGCTCTACGCAATCATTGCCACTGACGTCGCCGACTCCCTGGAAAAACGCCTGGCCGCGCGCCCGGAGCATCTTGAGCGCCTGCAAAAGCTCAAGGCTGAAGGTCGCATCGTGCTGGCCGGGCCGCACCCAGCGGTGGACAGCAACGACCCAGGCGCCGCCGGTTTCACTGGCAGCCTGATCGTGGCCGAGTTCGAATCCCTGGCCGCTGCACAGGCGTGGGCCGAGGCCGACCCGTTCGTGGCGGCCGGCGTCTACGCCGATGTCGTGGTCAAGCCGTTCAAGCAAGTCCTGCCGTAAMLYAIIATDVADSLEKRLAARPEHLERLQKLKAEGRIVLAGPHPAVDSNDPGAAGFTGSLIVAEFESLAAAQAWAEADPFVAAGVYADVVVKPFKQVLPNANANANANA
D1-35_00294708yciBCOG2917putative intracellular septation protein AATGGCAGTGCAAATCAACATTCACGAGACTTTGTTACCTCAAATCAGCTGGCCCTATCGCGGCCAAGGATGTTTGTTATTATGCCGCCACATCCTGCTTCTGGCTGCCACTGTGAAACAATTCATCGATTTCATCCCGCTCCTGCTGTTTTTCATCGTCTACAAACTTGATCCACGGACCGTCGACGTCGCCGGCCACTCCTTGACTGTAGGCGGTATCTACAGCGCCACCGCGGTGCTGATCATCAGTTCCCTGGTGGTCTACGGCGCGCTGTTCGTATCGCAGCGCAAGCTGGAGAAGAGCCAGTGGCTGACCCTGATCGCCTGCCTTGTATTCGGCAGCCTGACCCTGGCCTTCCACAGCGAGACCTTCCTCAAATGGAAAGCCCCGGTGGTCAACTGGCTGTTCGCCCTGGCCTTCATCGGCAGCCACTTCGTCGGTGATCGCCTGCTGATCAAGCGCATCATGGGCCACGCGCTGAGCCTGCCGGACGCGATCTGGACCCGATTGAACATCGCCTGGATCGCCTTCTTCCTGTTCTGCGGCGCCGCCAACCTGTTCGTTGCGTTCACGTTCCAGCAATACTGGGTCGACTTCAAGGTCTTCGGCAGCCTGGGCATGACCTTGCTGTTCCTGATCGGCCAGGGCATCTACCTGTCCCGTCACCTGCACGATGCCGAACCCACCACGCCAAAAACCGAGGACTGAMAVQINIHETLLPQISWPYRGQGCLLLCRHILLLAATVKQFIDFIPLLLFFIVYKLDPRTVDVAGHSLTVGGIYSATAVLIISSLVVYGALFVSQRKLEKSQWLTLIACLVFGSLTLAFHSETFLKWKAPVVNWLFALAFIGSHFVGDRLLIKRIMGHALSLPDAIWTRLNIAWIAFFLFCGAANLFVAFTFQQYWVDFKVFGSLGMTLLFLIGQGIYLSRHLHDAEPTTPKTEDNANANANANA
D1-35_00295801yciVCOG06135'-3' exoribonucleaseGTGGCGCGGGCGTTCGAGCACGGCGTGCGAGTCCTGGCCCTGACCGATCACGACACCCTCGAAGGTCTCGACGAAGCGCGTAGCGCCGCCACCGCGCTGGGCATGCAACTGGTCAACGGCGTCGAACTGTCCTGCACTTGGGGCGGTGCGACCATCCACGTGCTGGGCTACGGCTTTGATGTGAATGCACCGTCACTGGTCCAGGCCATTGCCGAATTGCGCGACGGTCGCTGGCTGCGCTCCGAGGAGATCAGCCGCAAACTGGCCCTCAAGGGCATGCCCGGCGCGCTGGAAGGCGCCCGACAGGTCCAGCAGGAACTGGGCGACAGCGGCAACGCCCCGGCCCGGCCGCATTTTGCCGACTGGATGGTGCGCGAGGGCTTCGTCAAGGACCGCGCCGAAGCCTTCCGAAAATGGCTGGGGGCCGGCAAGCTGGGGGACGTCAAGCAGCACTGGCCCACCCTGGAAGAAACGGTCGAGACTCTGCGGGCCGCCGGGGCGTGGGTCAGCCTGGCGCATCCCTGGCATTATGAATTCACCCGCAGCAAGCGCCGCCGCCTGATAGCCGACTATATTCAAGCAGGGGGCCATGCCATCGAAGTGGTCAATGGCCATCAGCCGGCCGAGCAGGTCGGCAGCCTGGCGATCCTCGCCCGGGAGTTTGGCCTGCTGGTGACCGCCGGGAGTGATTTCCACGGCCCGGGAGGCTGGTCCGAGATTGGCGAATACCGCCCGTTGCCGGAAGATCTGCCACCACTATGGTGTAGATTCAAACATGATCCCGTTATCGCCGCCGTCTGAMARAFEHGVRVLALTDHDTLEGLDEARSAATALGMQLVNGVELSCTWGGATIHVLGYGFDVNAPSLVQAIAELRDGRWLRSEEISRKLALKGMPGALEGARQVQQELGDSGNAPARPHFADWMVREGFVKDRAEAFRKWLGAGKLGDVKQHWPTLEETVETLRAAGAWVSLAHPWHYEFTRSKRRRLIADYIQAGGHAIEVVNGHQPAEQVGSLAILAREFGLLVTAGSDFHGPGGWSEIGEYRPLPEDLPPLWCRFKHDPVIAAVNANANANANA
D1-35_00296669yciOCOG0009putative protein YciOATGATCCCGTTATCGCCGCCGTCTGAACAGGTAGAACACGTGAGTCAATTTTTCCAGATTCATCCGGAAAACCCGCAAGCGCGCCTGATCAAACAGGCTGTGGAAATCATCCGTGGCGGTGGTGTTGTGGTCTATCCCACCGACTCGTCCTATGCCATAGGCTGCCAGATCGGCGATAAAAATGCGGTCGAGCGGGTAAGACGCCTGCGTCAGCTGGACGACAAGCACAACTTCGCGCTCATTTGCAGCGACCTCTCGCAGTTGGGCTTGTTCGCCAAGATCGACACCGGCACTTTCCGCCTGCTCAAGGCCCATCTGCCGGGCCCTTATACCTTTATCCTGAATGCCACCCGGGAAGTCCCACGGCTGTTGCTGCACCCAAAGAAGCGCACCATCGGGCTGCGGGTGCCGAGCCATCCCATTGCCCTGGCGCTGCTGGCGGAACTCGGTGAGCCGTTGATGAGCGTGACGCTGATCATGCCCGGCGAGACCGATCCGCTGACCGACCCCTATGAAATGCGCCAACTGCTGGAGCATCAGGTCGACCTGATCATCGACGGCGGTTACGGCGGCATGAAGGCGTCCACGGTGATCAACCTGGCCGACGGCGAACCGCAAGTGGTACGCGTCGGCTGCGGCGATCCGACGCCGTTCATGGTCGAGGCCTGAMIPLSPPSEQVEHVSQFFQIHPENPQARLIKQAVEIIRGGGVVVYPTDSSYAIGCQIGDKNAVERVRRLRQLDDKHNFALICSDLSQLGLFAKIDTGTFRLLKAHLPGPYTFILNATREVPRLLLHPKKRTIGLRVPSHPIALALLAELGEPLMSVTLIMPGETDPLTDPYEMRQLLEHQVDLIIDGGYGGMKASTVINLADGEPQVVRVGCGDPTPFMVEANANANANANA
D1-35_00297831scpACOG1354Segregation and condensation protein AATGTCGGTTGTGGAAACCGCGGTCGAAAACGTCGACAGCCAGGCCGGTGCGCAACAGGAGCTGCCGTTCGCCATGGTCTATGGCCAGGCGGTCATGGAAATGCCCCTGGACCTGTACATCCCGCCGGATGCGCTGGAGGTTTTCCTCGAAGCCTTCGAAGGGCCGCTCGACCTGTTGCTGTACCTGATCCGCAAACAGAACATCAACATCCTCGACATCCCGGTGGCGGAAATCACCCGCCAATACATGGGCTACGTCGAGCTGATGCAGTCGGTGCGCCTGGAACTGGCGGCGGAATACCTGGTGATGGCGGCCATGCTGGCCGAGATCAAGTCGCGCATGCTGCTGCCGCGCTCGGCCGAGGTCGAAGAGGAAGAAGACGATCCACGGGCCGAGCTGATCCGTCGCCTGCAAGAGTACGAGCGCTTCAAGGCCGCGGCCGAAGGCATCGACGGCTTGAGCCGGGTCGGGCGCGATGTGCTGGTGCCCAGGCTCGACGCTCCCGAGGCGCGGGCGCGCAAATTGCTGCCGGACGTGAGCCTGGAAGAATTGCTGATGTCCATGGCCGAGGTCCTGCGCCGGGGCGACATGTTTGAAAGTCACCAGGTCAGCCGTGAGGCATTGTCCACTCGCGAGCGCATGAGCGATGTGCTGGAACGGCTCAAGGGCGGCAGTTTTGTGCCCTTTGTCGAGCTGTTCACCGCCGAAGAAGGGCGGCTGGGCGTGGTGGTGACGTTTATGGCGGTCCTGGAATTGGTCAAGGAATCCTTGGTCGAGCTGGTGCAGAATGAGCCGTTCGCAGCGATCCATGTGCGGGCCCGAGCCGAATAAMSVVETAVENVDSQAGAQQELPFAMVYGQAVMEMPLDLYIPPDALEVFLEAFEGPLDLLLYLIRKQNINILDIPVAEITRQYMGYVELMQSVRLELAAEYLVMAAMLAEIKSRMLLPRSAEVEEEEDDPRAELIRRLQEYERFKAAAEGIDGLSRVGRDVLVPRLDAPEARARKLLPDVSLEELLMSMAEVLRRGDMFESHQVSREALSTRERMSDVLERLKGGSFVPFVELFTAEEGRLGVVVTFMAVLELVKESLVELVQNEPFAAIHVRARAENANANANANA
D1-35_00298960scpBSegregation and condensation protein BATGAATCTGACCGAACCCCGTGAACTGGCGCCCTTGCTTGAAGCTTTCCTGTTGGCCTCTGGAAAGCCGCAATCGATGGAGCGTCTGTTCGAGCTCTTCGAAGAAGGCGAGCGGCCTGAGCCTGCCGTGTTCAAGAAAGCCCTGACGCTGCTGGGTAAATCCTGCGAAGGGCGGGCTTTCGAACTCAAGGAGGTAGCGTCCGGCTACCGCTTGCAGATCCGCGAAAAATTCGCCCCCTGGGTCGGGCGCCTGTGGGAGGAGCGGCCGCAGCGTTATTCCCGCGCGATGCTCGAAACCATGGCGTTGATCGCCTATCGCCAACCGATCACCCGGGGCGAGATCGAGGACGTGCGTGGCGTGGCGGTCAACAGCCACATCGTCAAGACCTTGCTGGAACGTGAGTGGATCCGCGTCGTCGGCTATCGTGACGTGCCGGGCAAGCCAGCGATGTTCGCCACCACCAAGGCGTTTCTCGATCACTTCAACCTGAAGAACCTCGACGACCTGCCGCCGCTGGCCGAACTGCGGGAGCTGGAGCCCGAGCCGATGCTCGAATTCGACGACGCCCCGGTGCCCCAGGCCTTGCAGGAATTGGCCGACGCCAGCGCCGAGCCCGAAGAGCCGAAGGAAGAGACCAGTTTCCACTCGCTGCTGCTGGAGCTGGACACCATGGAGGAGGGCTTGAAGACCGACTTCGATGACCTGCTGCGTGACGCTCCTGGTCCTGAGGGTGAGTCGGATGAGCTGGCGGAGCCCGATAGCGCGGTGGAGCCCGAGCCCGAAGCGGAATGGGAACCGGAACCTGAAGAAGACATCCTCGGCGTTGCCCAAGCCCGGGAAAAACTGCTGGCCGCAGTCGCCGCCCTTGAGCCGCCAGAACCCGAGCTGAGCGACGAAGAAGCCGAAGCCCGCGCCCTGGCCGAAGCGATCGAAAACGAACGGCGCCAGTTCGACGACTGAMNLTEPRELAPLLEAFLLASGKPQSMERLFELFEEGERPEPAVFKKALTLLGKSCEGRAFELKEVASGYRLQIREKFAPWVGRLWEERPQRYSRAMLETMALIAYRQPITRGEIEDVRGVAVNSHIVKTLLEREWIRVVGYRDVPGKPAMFATTKAFLDHFNLKNLDDLPPLAELRELEPEPMLEFDDAPVPQALQELADASAEPEEPKEETSFHSLLLELDTMEEGLKTDFDDLLRDAPGPEGESDELAEPDSAVEPEPEAEWEPEPEEDILGVAQAREKLLAAVAALEPPEPELSDEEAEARALAEAIENERRQFDDNANANANANA
D1-35_00299192hypothetical proteinATGAGTTCCACCAAAGACCCCTGCATCAGCCTCTGCAAGTTCGACGAAGATATTTGCATCGGTTGCGGGCGCAGCAAGCGCGAGATCAAGGCCTGGAAAAAACTCGACAAGGACGACAAGCGCGCCGTGCTGGCCGAAGCGGCGCTACGCCTGATCAAGCTGGGTGCCACCGGTCGGCGGAAAAAGCGCTGAMSSTKDPCISLCKFDEDICIGCGRSKREIKAWKKLDKDDKRAVLAEAALRLIKLGATGRRKKRPGPT0013210_1840DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013210-ydhL-K06938NANA
D1-35_003001236hypothetical proteinATGAAAGACCTAGACCAGAACGACAGCCAGGAAATCGGCCCAGCAGGCGAGAAACTGCAAAAAGTCCTCGCCCGTATCGGCGTCGGTTCGCGCCGTGACGTGGAAGCCTGGATCACCCAGGGCCGCATCAAGGTCAACGGCAAAGACGCCACCTTGGGCCTGCGTGTCGACATGCACGACGCCATTACCATCGATGGCAAGGTGATCAAGCGCGAAGAGGCCGCCGAAACGGTGCGCCGCGTGATCATGTACAACAAGCCCGACGGCGAAATCTGCACCCGTGACGACCCGGAAGGCCGTCCGACGGTGTTCGACAAGATGCCGCGTCCGAAAGAAGGCCGCTGGATCAACATCGGTCGCCTGGACATCAACACCACCGGTTTGCTGATGTTCACCACTGACGGTGAGTTGGCCAACCGCCTGATGCACCCGTCCTACGAGATGGACCGCGAATACGCCGTGCGCGTACGTGGCGAAGTCGATGACGAGATGATCGAGCGCCTCAAGGCCGGCGTCGTGCTGGAAGACGGCCCGGCCCGTTTCACCGACATCAAGCAAGCACCGGGTGGCGAAGGGTTCAACCACTGGTACCACTGTGTAGTGATGGAAGGCCGTAACCGTGAAGTACGGCGCTTGTGGGAATCCCAGGGCCTGGTGGTCAGCCGCCTGAAGCGCGTGCGTTTCGGCCCGGTGTTCCTCAACTCCGACCTGCCGATGGGCCGCTGGCGTGAAATGACCCAGCAGGAAGTCGACATCCTCGCAGCCGAAGTGGGCCTCAAGCCTGTCTCCATGCCGCAGATGACCGCCAAGAGCAAGGACAAGCTGGAGCGGATGCAGCGCAAGTCCTCGCGTCCGATGGGCAAGACCGAGCGCGTGCGTACGCTGCGTCCGGCGGCCGATGGCGCAGCGACTGGCCCGCGTCCTTCCCGTGAACCGCAGATCGAAGGCGAGCGTCCGGCCCGCAAGCCTGCGCCACGTCAGGATGGCGAGCGCGGCCCGCGTACACCACGTCCGGCCAACGGTCGTACCGAGCGCGGCGAAGGTCGCGGTGCTCCGGCGGGTCGTGGCACGCCGGTCGCCGATCGTCCGGCCGACACCAAGCGTCCGGCCAAGCCGGCGCCAAAAAAACGCCCGGGTATCATCCTGGCCGACCGTGACGCACCGTCGGGCAAGCGCCGTGGCGCGCCGGCAGGTTCGGGGCAGCGTCCGGGGTTTGGGCGTCGTAAGCCGGAGTAAMKDLDQNDSQEIGPAGEKLQKVLARIGVGSRRDVEAWITQGRIKVNGKDATLGLRVDMHDAITIDGKVIKREEAAETVRRVIMYNKPDGEICTRDDPEGRPTVFDKMPRPKEGRWINIGRLDINTTGLLMFTTDGELANRLMHPSYEMDREYAVRVRGEVDDEMIERLKAGVVLEDGPARFTDIKQAPGGEGFNHWYHCVVMEGRNREVRRLWESQGLVVSRLKRVRFGPVFLNSDLPMGRWREMTQQEVDILAAEVGLKPVSMPQMTAKSKDKLERMQRKSSRPMGKTERVRTLRPAADGAATGPRPSREPQIEGERPARKPAPRQDGERGPRTPRPANGRTERGEGRGAPAGRGTPVADRPADTKRPAKPAPKKRPGIILADRDAPSGKRRGAPAGSGQRPGFGRRKPENANANANANA
D1-35_00301966hypothetical proteinATGGACACCCAACGAGCCATCTCCCATTTCCTTTACTACCTCGAACATCATCCCGCCCTGGTCGGCATCCAGCCCGCCAAGGTGTTGCTCGGCCACACGGCCGACTACGAAGCCCTGACCGGCGCGATTGCCGAACAGGCCGGCAGCGGCTCACCGTTCAGGTTCAGCGCCATGCGCCTGGATCTTGAACCCACGCAGCGCCTGTCCCAGGCAATTGCCGACAGCGACCTGTACATTTTTTTCTATGACTCTTCCACCCTGCCCAATCCCCGCCCCGACGGCCCGGACTTTGTCCGTGCGCTGCAAGGCGTGATGGCGGAAAACTGGAAGAAATCGCTGCTGTTCAAGGATTACGGCGAATATTTTTACGACACCTTCAGCGTCATTCCGCAACGCATCGCCGGGCTCAATAGCCACCTCATCCGCCGCATGTCCCAGGCCACCACCTTGAGCTTCGAAGATGAGCACGGCTCGTATTTCGACACGGCGCTGGACAGCGTCAAGAAGTGGACCGATATCAATGGCGTCGGCAACTACGATCTGGCCCCAGGCGAAATCGCCACTCACAGCGACACCATCAATGGCCGGGTGAAATTTGTCGGCACGTTTCTCAGTACGATTCCCTTCGCGCGCAAGTACGGCGTGTTGCAATCGCCGCTGGAGCTGTGGATCGAAGACTCCACGATCCAGAAAATCGCCACAGACGTACCGGGCCTGGAGCACGACTTCAACAAGTACCTGGACGCCAACCCGTCCAACCGCCGCATCGAGGAACTGGGCATCGGCACCAACGAAGGGGTCAAGGGCCTGTACGCTCGCAATGCCGGTTTCGAAGAGCGCCATTGCGGCTTGCACCTGGGGCTCGGTGGCGGGGCCAAGGGCAGCCATCACCTGGATCTGATTTTCCAAGGGGGTGTGCTGGCGCTGGACAAGGAGCCGGTGTTTGAGGGGCGGTTTGTGCTTTAAMDTQRAISHFLYYLEHHPALVGIQPAKVLLGHTADYEALTGAIAEQAGSGSPFRFSAMRLDLEPTQRLSQAIADSDLYIFFYDSSTLPNPRPDGPDFVRALQGVMAENWKKSLLFKDYGEYFYDTFSVIPQRIAGLNSHLIRRMSQATTLSFEDEHGSYFDTALDSVKKWTDINGVGNYDLAPGEIATHSDTINGRVKFVGTFLSTIPFARKYGVLQSPLELWIEDSTIQKIATDVPGLEHDFNKYLDANPSNRRIEELGIGTNEGVKGLYARNAGFEERHCGLHLGLGGGAKGSHHLDLIFQGGVLALDKEPVFEGRFVLPGPT0020940_2010DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020940-pepS|ampP|ampT-K19689NANA
D1-35_00302138hypothetical proteinATGCAAGCACTGGACAAAGACTTGGAAACCGAACTGCAACTGGATGAATGGTTCGAAGCGCCGACCCATGAAGCCGCCGTTGAAATGATGCAAGCCGACGCCGTTGTGCCGTTCGGCACGGCGATGTGGCCTCTGTAAMQALDKDLETELQLDEWFEAPTHEAAVEMMQADAVVPFGTAMWPLNANANANANA
D1-35_003031422aroPCOG1113Aromatic amino acid transport protein AroPATGACCGTTGTAGAAAATACGCATTCAGGCGAGCTGAAGCGCGGCCTGAAAAATCGCCACATCCAACTGATCGCCCTCGGTGGCGCGATCGGTACCGGGTTGTTCCTCGGCTCGGCGGGGGTGCTGAAATCAGCCGGCCCGTCGATGATCCTCGGCTACGCAATCTGCGGCTTCATCGCCTTCATGATCATGCGCCAGTTGGGCGAAATGATTGTCGAAGAGCCGGTGGCCGGTTCCTTCAGTCACTTCGCGCACAAATACTGGGGCGGTTTCGCCGGATTCCTGTCGGGCTGGAACTGCTGGATCCTCTATATCCTGGTGGGCATGTCCGAGCTGACCGCCGTCGGCAAATACATCCATTACTGGGCGCCGGACATCCCGACCTGGGCCTCGGCGGCAGCGTTCTTCATCCTCATCAACGCGATCAACCTGGCCAACGTCAAAGTGTTTGGCGAGGCTGAGTTCTGGTTCGCGATCATCAAGGTGGTAGCGATCGTCGGCATGATCGCCCTGGGCAGTTACCTGCTGGTCAGCGGTCACGGCGGCCCGCAGGCTTCGGTTACCAACCTGTGGTCCCACGGTGGGTTCTTCCCCAACGGCGTCAGCGGCCTGGTGATGGCCATGGCGATCATCATGTTCTCCTTCGGCGGCCTGGAGATGCTCGGTTTCACCGCTGCCGAAGCCGACAAGCCGAAAACCGTGATCCCCAAGGCCATCAACCAGGTGATCTACCGGATCCTGATTTTCTACATCGGTGCGCTGGTGGTGCTGCTCTCGCTGACACCATGGGACAGTCTGTTGACCACCCTCAACGCCTCTGGCGATGCCTACAGTGGCAGTCCGTTCGTGCAGGTGTTCTCGATGCTCGGCAGCAACACCGCGGCGCACATCCTCAACTTCGTGGTGCTGACCGCAGCGCTGTCGGTGTACAACAGCGGCACCTACTGCAACAGCCGCATGTTGCTGGGCATGGCCGAGCAGGGCGATGCGCCCAAGGCGCTGGCGAAAATCGACAAGCGTGGCGTGCCGGTGCGGTCGATCCTTGCTTCGGCGGCGATCACCCTGGTGGCGGTGCTGCTGAACTACCTGATCCCCCAGCATGCGCTGGAGTTGCTGATGTCGTTGGTGGTCGCCACCCTGGTGATCAACTGGGCGATGATCAGCTACTCGCACTTCAAGTTCCGCCAGCACATGAACCAGACTCGCCAGACGCCGCTGTTCAAGGCGTTGTGGTACCCGTACGGCAACTACGTCTGCCTGGCGTTCGTGGTGTTCATCCTCGGCGTGATGCTGCTGATCCCGGGCATCCAGGTTTCGGTCTACGCGATTCCGGTGTGGGTGGTGTTCATGTGGGTGTGCTACGTGATCAAGAACAAGCGCAGTGCCCGGCATGAACTGGCCGTGGCGGCTGCCGCCAAGTAGMTVVENTHSGELKRGLKNRHIQLIALGGAIGTGLFLGSAGVLKSAGPSMILGYAICGFIAFMIMRQLGEMIVEEPVAGSFSHFAHKYWGGFAGFLSGWNCWILYILVGMSELTAVGKYIHYWAPDIPTWASAAAFFILINAINLANVKVFGEAEFWFAIIKVVAIVGMIALGSYLLVSGHGGPQASVTNLWSHGGFFPNGVSGLVMAMAIIMFSFGGLEMLGFTAAEADKPKTVIPKAINQVIYRILIFYIGALVVLLSLTPWDSLLTTLNASGDAYSGSPFVQVFSMLGSNTAAHILNFVVLTAALSVYNSGTYCNSRMLLGMAEQGDAPKALAKIDKRGVPVRSILASAAITLVAVLLNYLIPQHALELLMSLVVATLVINWAMISYSHFKFRQHMNQTRQTPLFKALWYPYGNYVCLAFVVFILGVMLLIPGIQVSVYAIPVWVVFMWVCYVIKNKRSARHELAVAAAAKPGPT0020807_59DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0020807-aroP-K11734NANA
D1-35_00304414arfBCOG1186Peptidyl-tRNA hydrolase ArfBATGCTGGTCATTTCCAACACCGTGCACATCCCGGACGCCGAGATCGAGCTGACGGCCATCCGCGCCCAGGGCGCCGGCGGGCAGAACGTCAACAAGGTTTCCAGCGCCGTGCACTTGCGCTTCGATATCCCGGCTTCGTCGCTGCCCGAGTTCTACAAGGAGCGGCTGCTGGCCCTGCGCGACAGTCGCATCACCGGCGACGGCGTATTGATCATCAAGGCCCAGCAATACCGCACGCAGGAACAGAACCGGGCCGATGCGCTGGAGCGCCTGGTCGAGCTGATCCTCAGCGCCACCAAGGTCGAAAAGAAACGCCGTCCGACCAAGCCGACCCTGGGTTCGAAAAAACGTCGTCTCGAATCCAAGACCAAGCGCGGCTCGATCAAGGCCGGGCGCGGCAAGGTGGACTTCTAGMLVISNTVHIPDAEIELTAIRAQGAGGQNVNKVSSAVHLRFDIPASSLPEFYKERLLALRDSRITGDGVLIIKAQQYRTQEQNRADALERLVELILSATKVEKKRRPTKPTLGSKKRRLESKTKRGSIKAGRGKVDFPGPT0013740_337DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927NANA
D1-35_003051200yhhS_1putative MFS-type transporter YhhSATGCCAGATTCCCAGCGCCCCTTGGCGGTCACGCTGCAAGTCGTCTCCATCGTCCTGTTCACCTTCATCGGTTATCTGAACATCGGTATTCCCTTGGCCGTACTGCCCGGCTTCGTTCATGGCGAGCTGGGCTTCGGCGCGGTGATCGCCGGGCTGGTCATCAGCGTGCAGTATCTGGCCACCCTCCTCAGCCGGCCTTATGCGGGGCGCATCATCGACAACCTGGGCAGTAAACGGGCGGTCATGTTCGGCCTGGCCGGATGTGGCCTGAGCGGCGTGTTCATGCTGGTCTCGGCCTGGACCGCGGGCATGCCGGCCCTGAGCCTGAGCAGCCTGTTGATCGGACGCCTGGTGCTGGGCAGCGCGGAAAGCCTGGTGGGTTCAGGCTCGATTGGCTGGGGCATCGGCCGGGTCGGCGCGGCCAATACCGCCAAGGTGATTTCCTGGAACGGTATCGCCAGCTACGGCGCACTGGCGATCGGCGCGCCGCTGGGGGTCTGGCTGGTCAAGTCCCTGGGGCTGTGGAGCATGGGCGTCAGTATCATCCTGCTGGCGGTGCTCGGGCTGGCACTGGCCTGGCCGAAAACCGCAGCGCCGATCGTCACCGGCGAGCGCCTGCCATTCATGCATGTGCTCGGGCGCGTACTGCCTCATGGTTGCGGCCTGGCCCTGGGCTCCATCGGTTTTGGCACCATCGCCACCTTCATCACCCTGTATTACGCCACCCGGCATTGGGATAACGCCGTGCTCTGCCTGAGCCTGTTCGGTGCGAGTTTCATCGGTGCACGCTTGCTGTTCGGCAACCTGATCAACCGTCTTGGTGGCTTCCGGGTGGCGATCGCCTGCCTCTCGGTGGAAACCCTGGGCCTGCTGCTGTTGTGGTTGGCGCCGGATGCGCAGTGGGCCCTGGCGGGTGCGGCGTTGAGTGGTTTCGGGTTTTCGCTGGTATTCCCGGCGCTGGGGGTGGAAGCGGTCAACCTGGTACCGGCCTCCAGCCGTGGGGCGGCAGTGGGCGCATATTCACTGTTCATCGATTTGTCGCTGGGCATCACCGGTCCGTTGGCCGGCGCGATTGCCGCGGGTTTCGGCTTTGCCTCGATCTTTCTGTTCGCCGCTCTGGCAGCCCTCGGTGGGCTGGCATTGAGCGTCTACCTGTATCGGCAGGCCCCTCGGTATCGCGAGGAGCGGGACAGGCACTAGMPDSQRPLAVTLQVVSIVLFTFIGYLNIGIPLAVLPGFVHGELGFGAVIAGLVISVQYLATLLSRPYAGRIIDNLGSKRAVMFGLAGCGLSGVFMLVSAWTAGMPALSLSSLLIGRLVLGSAESLVGSGSIGWGIGRVGAANTAKVISWNGIASYGALAIGAPLGVWLVKSLGLWSMGVSIILLAVLGLALAWPKTAAPIVTGERLPFMHVLGRVLPHGCGLALGSIGFGTIATFITLYYATRHWDNAVLCLSLFGASFIGARLLFGNLINRLGGFRVAIACLSVETLGLLLLWLAPDAQWALAGAALSGFGFSLVFPALGVEAVNLVPASSRGAAVGAYSLFIDLSLGITGPLAGAIAAGFGFASIFLFAALAALGGLALSVYLYRQAPRYREERDRHNANANANANA
D1-35_00306213hypothetical proteinATGACCGACGACACCTCCTCCTTCAGCCCGGCCCAGGCCAGCGTACTGATCGACACCGCCGAGAAAATGGTCGACATCTGGACCCGTCTCTCACCCGAGAAACAAGCCGCCCTGCTGGCCCGCTTCGGCACGGAAGAAAATGCCCTGGCCGCTCTCGTCACCACGCATCTGGTCGCTGGCAGAACCCCTGGCGAGACGCCGTCCGGCAAATAGMTDDTSSFSPAQASVLIDTAEKMVDIWTRLSPEKQAALLARFGTEENALAALVTTHLVAGRTPGETPSGKNANANANANA
D1-35_00307144hypothetical proteinATGCACGAGATTCCGAATCTCCCCTTCCCAAGCCTGCACGAACCTGAGCAGACGCCCACGCTACAAGCCGGGGGGCAACCCGACGCCCAGCAACCCGAGCCGCCGCAAGCCACTGAACGCCGCCAGGCCGACAGCGAAGACTGAMHEIPNLPFPSLHEPEQTPTLQAGGQPDAQQPEPPQATERRQADSEDNANANANANA
D1-35_003081626ctpHMethyl-accepting chemotaxis protein CtpHATGTTTTTACAGAAATCCCTGAAAGCCCAGATTCTGGCGTTGCTGAGCGGCAGCTTGCTGGCAATGCTGCTGATCGCCCTGGCGTCCTTCCATTTCCTTTCCGATGGCATCCAGAATTATCGCAACCTGATCGACGGGCCGTTGCGCGCGTCGCAATTGATCGACGAGGCCAACCTGCAATTCAAGGTCCAGGTCCAGGAATGGAAAAACGTGCTGCTGCGTGGCAAGCAGCCGGCGGATCTGGAGAAATACTGGAAGCAATTCGAAGACCGTCAACGCGATGTCCAGGGCATCCTTGGCGACCTGATCAAACACGAGGGTGTTCCGGCGCAGATCAAGACGCGCATCGAACGCCTGCGAGGCGAACATGCCCAACTGGGCGCGGCCTATCAAAAGGGCCGTGATGCCTATGTTGCGGCGGGCGCCGACGCGGCGGCAGGTGATGCCGCGGTCAAGGGCGTGGACCGTGCGACCAGCGAGCAGATGAGCGAGCTGGTGGTCGAGCTGCACAAACTGGGTGATGAGCAGTCGGCGCTGATCAGTGCCGGTGCCGATCGCACGATCCTGCTGGGGACGGTGATCATGCTCGTCTCGGGAGTGCTGATCGGGTTGCTGAGTCTGTGGTTGGTCAACCGCAACCTGGTGCAACCGATCCGTAAGCTGATCGAGTACGTGACTCAACTGAGCCGCGGGCGTTTCGCCGAGCGTGTCACCAGCACGCGCCAGGATGAGCTGGGCGACCTGGCCCTGGCGGCCAACACGCTGCGCGATTTCCTTGCCGAAACCTTCACCCGCCTGCAACGCAGTGCCACCGAGCTGGACAGTGCCAGCGGTGAACTCAATGCCATTGCCAGCCTGATGAGCCAGGGCACCAGCGAGCAATTCGAGCGTACCGATCAGGTGGCGACGGCGATGAACGAGATGTCCGCCACCGCCCAGGAAGTTGCCCGCCATGCCGCCGATGCGGCGCGCGCTGCCGATGATGCCGATCATTCGGCGCAGCAGGGCGAGAAAGTGATGCAAGGCACGATTCACACCATCACGCAGATGCGTGGCGAAATTGCCAACACGGCCACGGTGATCCGTCGCCTGGAAGCCGACAGCGGGCGCATCGGCAAGGTATTGGAAGTGATCCGCGGGATCGCCGAACAGACCAACCTGCTGGCCCTGAACGCTGCCATCGAAGCCGCCCGGGCCGGTGAGGCGGGGCGTGGTTTTGCGGTGGTCGCCGATGAAGTACGCAGCCTGGCTCAACGCACGGCGTCGTCGATCATCGAGATCAATCAGATCATCCAGACCGTCCAGACCGGGGCGGTGGACGCGGCCCAGGCCATCGAAAGCGGGCAGTCGCGCAGTGAGGAAAGTGTCGAGCAGGTGACCCAGGCCGGCGAGATGCTCGAACGCATCACCCAGGCAGTCGAGGCGATTCGCGACATGAACCGCCAGATCGCCACGGCAGCGGAAGAGCAGACCTCGGTGGCCGAGGACATCTCGCGCAACCTGACGGAAATCACCTGCATCGCCAGCACCAACCTGGACAACGTGCAGCGCACCGAAGCGGCGAGCCGGGATCTGCACGGGTTGTCCGGGCAGTTGAATGAAGTGACGGCGCGGTTGAGTGCTTGAMFLQKSLKAQILALLSGSLLAMLLIALASFHFLSDGIQNYRNLIDGPLRASQLIDEANLQFKVQVQEWKNVLLRGKQPADLEKYWKQFEDRQRDVQGILGDLIKHEGVPAQIKTRIERLRGEHAQLGAAYQKGRDAYVAAGADAAAGDAAVKGVDRATSEQMSELVVELHKLGDEQSALISAGADRTILLGTVIMLVSGVLIGLLSLWLVNRNLVQPIRKLIEYVTQLSRGRFAERVTSTRQDELGDLALAANTLRDFLAETFTRLQRSATELDSASGELNAIASLMSQGTSEQFERTDQVATAMNEMSATAQEVARHAADAARAADDADHSAQQGEKVMQGTIHTITQMRGEIANTATVIRRLEADSGRIGKVLEVIRGIAEQTNLLALNAAIEAARAGEAGRGFAVVADEVRSLAQRTASSIIEINQIIQTVQTGAVDAAQAIESGQSRSEESVEQVTQAGEMLERITQAVEAIRDMNRQIATAAEEQTSVAEDISRNLTEITCIASTNLDNVQRTEAASRDLHGLSGQLNEVTARLSAPGPT0015710_21337DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_003091023zntB_1COG0598Zinc transport protein ZntBATGAATCACAGCATCGATCAAAGCCACCGCGATCCGGATCTGTTCGGCCTGCTCTACGGGTTTCGCTTCCGCCCCGGCGAGCGCGGGCGAGAGATCGATTCGGCCCAGGCCCTGCGATGCCTGCAGCAACCGGAGGACGCCGACGAATTCCTCTGGCTGCATCTGAACCTGGCTCATGCCGCTTGCGAGCGCTGGATGAAAAACCATCTGGCCTTGCCCGAGGAGTTTTTCGAAGCCCTGCACGAAGGCTCGCGCTCGACCCGCATCGAGCACGTCGACTCGGCCTTGCTGGCCGTGGTCAACGATGTGGTATTCAACCTCAGCAACCTGGTGTCTTCGGACGTGTCCACCTTATGGGTTTGCGTTCACAGTCGGCTGATAATCAGCGCACGCCTGCAGCCATTGCACTCGGTGGACAAGCTGCGTTCGTCGGTCAAGGCTGGCGAGTGCTTCCGTTCGCCGCTGGAATTGCTCGTGCATCTGCTGCGTGACCAGGGCGAAGTGCTGACCCAGATCGTGCGCAAGACCAGCCTCAGCGTCGACCAGATAGAAGACCAGTTGCTGTCCTCGCGGGTGTCCAACAACCGCGCCGAACTGGGTAGCCAACGGCGGATACTGGTGCGCCTGCAACGCCTGCTGGCATTGGAGCCGGGTTCGTTGCTGCGTCTGCTCAATCGCCCGCCACAGTGGTTGCAGAAAGAAGACGTCAAGGAGCTGCGCAAATCCACCGAGGAATTCGCCCTGATCATCAACGACCTCACCGCGTTGGGCGAGCGGATCAAATTGCTGCAGGAAGAAATCGCCGCCAACCTCAATGAACAGAGCAACCGCACGCTGTTCACCTTGACCGTGGTCACGGTGCTGGCCTTGCCCATCAACATTATTGCCGGTTTTTTTGGCATGAATGTCGGCGGCGTGCCGCTGGCCGATGATGCGCACGGCTTCTGGATTCTTGTTGCACTGGTGGCGACGTTCACGCTGATCGCCGGGCGCTGGGCGTTCCGCAAGCGCCGTGATTATTGAMNHSIDQSHRDPDLFGLLYGFRFRPGERGREIDSAQALRCLQQPEDADEFLWLHLNLAHAACERWMKNHLALPEEFFEALHEGSRSTRIEHVDSALLAVVNDVVFNLSNLVSSDVSTLWVCVHSRLIISARLQPLHSVDKLRSSVKAGECFRSPLELLVHLLRDQGEVLTQIVRKTSLSVDQIEDQLLSSRVSNNRAELGSQRRILVRLQRLLALEPGSLLRLLNRPPQWLQKEDVKELRKSTEEFALIINDLTALGERIKLLQEEIAANLNEQSNRTLFTLTVVTVLALPINIIAGFFGMNVGGVPLADDAHGFWILVALVATFTLIAGRWAFRKRRDYPGPT0004205_255DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ZINK_RESISTANCEZINK_RESISTANCE-ZNT_TRANSPORT_SYSTEM,PGPT0004205-zntB-K16074NANA
D1-35_00310306hypothetical proteinATGAAAACTTTGACTGCCCTGTTCACCGCTGCCGCCCTGACCCTCACCGCCGGCCTGGCCCAGGCTGATGTACGAATCGACCAGGTTCCTCAGTTGGTCAAGGACGGCAAGATCAAGTCGCTGGAATCGATGAATGCCGAAGCCCTGAAGTTGCATCCAGGCGCTACCATCACCGATACCGACCTGGACAATCACTTCAACGGCTACGAATATGAAGTGGAACTGAAAACTGCCGATGGCAAAGAGTTCGACGTTGATTTCGATGCAACAACCGGCAAAGTCCTGACCAACAAACAAGACACTTAAMKTLTALFTAAALTLTAGLAQADVRIDQVPQLVKDGKIKSLESMNAEALKLHPGATITDTDLDNHFNGYEYEVELKTADGKEFDVDFDATTGKVLTNKQDTNANANANANA
D1-35_003111128glpQCOG0584Glycerophosphodiester phosphodiesteraseATGCCCGTCACCTTTACCCGTAGCGCGTTGATGTTGAGCCTGATGCTCGGTTTCGGCCCGGCACACGCCGCCGAAGTGCCAAGTCCCAAGGCCCTGGCAACCCAGCAGGGCATCCCCCATCCCGCGGTCATCGCCCATCGCGGCGCCTCGTTCGATGCGCCGGAGTCCACCGCCGCGGCCTACAAGCTGGCCCGTGACCTGGGCGCTGATTATCTTGAGCTCGACCTGCAACGCAGCAAGGATGGCGTGCTGTTCGTCCTGCACGACGATAGCCTGCTGCGCACCACCGATGTCGCCACCAAGTTCCCCGAGCGCAAGGACAGCACCGCCAACCAATTCACCATGGCCGAACTCAAGACGCTGGACGCCGGCAGCTGGTTCAACGCGGCCTACCCGGAGCGTGCGCGTCCTGCCTTTGTCGGCCTGAAGATCCTGACCCTGGATGAGGTCATCAATATCGCCGAGGGCAACCCGCAACAGAAGCCGGGGCTTTACATCGAAACCAAGGAACCGAAGCTGTTCCCGGGCATCGAGCGCGACCTCAAGGACAAGCTCCAGGATCGTGGCTGGCTGAGCCCGTCCGGTTCCAAGCTGGCCAAGCGCGCCCTCGGTGTGGGCCAGGGCAAAGGCAAGGTGGTGTTGCAGACCTTCGAAAAGAGCAGCCTGGAACTGCTGCACAAGGAAATGCCCAAGGTGCCGAAAATCCTGTTGCTGTGGATCGGCGAAGGCAATATCGAGCCCCAGTCCAAGGTGCCGTTTGCCGAGTCCGGCGAGACCGACAAGGCGGTTTACTACGCGAAACAGGAGCCCAAGGACAAGGCCGAATTCGAAAAATGGGTCCAGTACGCCAAGGCCCAGGGCGCCATCGGCACCGGCCCTTCGGCAGCATTGACCCACGGCGGCAGCCAGAGTTATGCGGATCTGGTGAAACCCTGGATGAACCAGTACACCCACGATCAGGGTTTGCTGGTGCATGTCTATACGGTGGATGAGCCGGTGGACTTCAAGAAAGTCATGGATGCTGGTGTGGACGGAATTTTCACCAACCGGGCCAGCGAATTGCTCAAGTACTTCAAACGCCCTGAAACAGGCAGCGTGACGCAACTTCTGCAGAAGAACGGATACTGAMPVTFTRSALMLSLMLGFGPAHAAEVPSPKALATQQGIPHPAVIAHRGASFDAPESTAAAYKLARDLGADYLELDLQRSKDGVLFVLHDDSLLRTTDVATKFPERKDSTANQFTMAELKTLDAGSWFNAAYPERARPAFVGLKILTLDEVINIAEGNPQQKPGLYIETKEPKLFPGIERDLKDKLQDRGWLSPSGSKLAKRALGVGQGKGKVVLQTFEKSSLELLHKEMPKVPKILLLWIGEGNIEPQSKVPFAESGETDKAVYYAKQEPKDKAEFEKWVQYAKAQGAIGTGPSAALTHGGSQSYADLVKPWMNQYTHDQGLLVHVYTVDEPVDFKKVMDAGVDGIFTNRASELLKYFKRPETGSVTQLLQKNGYPGPT0018470_1585DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHODIESTERASE_ACTIVITY,PGPT0018470-glpQ|ugpQ-K01126NANA
D1-35_00312327hypothetical proteinATGCGCACCACTTCGACACTCATCTGCCAGGCCGCGGACCAGCTCAGGGGCTTCGTTGGCCTGAATCGCAAGACCGGCCATTACATCGTGCGTTTCAGCGAAGACTCCTTTGGCATGGACGTGGCCGCCGACGGCATCATCCCCACCTGCGAATTCGTCTGGGCCCCTGCGACTGGCGGCGCCATGGCGCTCAGGCGCGAGCGAATCCAACTGCTGCTTGACCAGAACATCAACGACCGGATCAACCTTACCGAACCGCTGCGGGTGTACATGGCCCGCCAAGACTTGCCGGAAATCGTAGCGGTGCGGCAGATGGTGGGAGGTTGAMRTTSTLICQAADQLRGFVGLNRKTGHYIVRFSEDSFGMDVAADGIIPTCEFVWAPATGGAMALRRERIQLLLDQNINDRINLTEPLRVYMARQDLPEIVAVRQMVGGNANANANANA
D1-35_00313309yqjZCOG2329putative protein YqjZATGAACGGCCATTATTACGCGGTGATCTTCATATCGTTGCGTACCAAGGGAGACCAAGGCTACGCCGAAGCCGCCGAACGCATGCTGGCCCTTGCCCGGGAGCAGCCCGGATTCCTGGGCGTCGAAACGGCCCGTGGCGATGATGGTCTGGGAATCACCGTGTCCTACTGGCGCGATGAAGCAGCCATCCTGGCCTGGAAGCAGCATCCGGAACACCGCGCGATCCGTGAGCGTGGTCGCTCCACCTGGTACAGCCAATGCCATACGCGGGTGTGCAAGGTCGAACGGGACTATGCCTTCCAACGCTAAMNGHYYAVIFISLRTKGDQGYAEAAERMLALAREQPGFLGVETARGDDGLGITVSYWRDEAAILAWKQHPEHRAIRERGRSTWYSQCHTRVCKVERDYAFQRNANANANANA
D1-35_00314711pyrG_2CTP synthaseATGGAAAAACAGCGTCCCATCCATATCGCCCTGATCGGCGATCATGACCCGCAAATCACCGCTCACCAAGCGATCCCCCTCGCACTTGAGCTGGCGGGCGAGCGAACCGGCTGTGACATCGGTTTCCAATGGCTGGCCACCGATCTCATCGTCGACGACACGCTGCTTGATAACTTCGATGGCATCTGGTGCGTGCCCGGCAGTCCTTACCGGAACGAAAGCGGTGCCTTGCGGGCCATCCGTTTTGCCCGCGAACAGCGGCGCCCGTTCCTCGGCACCTGCGGTGGTCTTCAGCATGCCGTACTGGAATATGCCCGCAATGTGTTGGGTTGGACCAACGCCGCCCATGGCGAAACCTCTCCAGAGGCGGAACGGGCGCTGCTGACGCCGCTGAGCTGCGCCTTGATCGAAACCATCGACAGCCTTCAGCTCGAAGTGGATTCGCTGATCGCCAAGGCTTATGGCTGCGCGACAGCGTTCGAGGGTTACCGTTGCCGCTTCGGGGTCAATCCGCATTTTGAACAGGACTTGCTGAATGAGCACTTGCACGCCGTGGCCCGAGATTCGGCCGGGGACCTGCGGGCCGTGGAGCTGCGCGATCATCCGTTTTTTGTCGCAACGCTGTTCCAGCCGGAACGTGCCGCGTTGGAAGGCCGGGTGCCGCCGCTGGTCAAAGCGTTTGTCGAAGCCTGCGCGAGGAAAATGCCATGAMEKQRPIHIALIGDHDPQITAHQAIPLALELAGERTGCDIGFQWLATDLIVDDTLLDNFDGIWCVPGSPYRNESGALRAIRFAREQRRPFLGTCGGLQHAVLEYARNVLGWTNAAHGETSPEAERALLTPLSCALIETIDSLQLEVDSLIAKAYGCATAFEGYRCRFGVNPHFEQDLLNEHLHAVARDSAGDLRAVELRDHPFFVATLFQPERAALEGRVPPLVKAFVEACARKMPPGPT0021215_5922DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021215-pyrG-K01937NANA
D1-35_00315948hypothetical proteinTTGTTGATTCCTGATCGCCACTATAGATTGGCGTTCACGCAATCAATATTGGCGTTTATCCAAGTGCTCAATGCAGCGACGCAATACCGTCTCGGTTATCCCGACTTATCCTTGATCCTGGCGCTGGTCCGTGGCGGCTCGCTGGCCCGGGCCGGGCGGCTGCTGGAGGTGGATGTGTCGACGGTTTTCCGCTCGGTGCGCCGTTTGGAGGCGGCTCTGGGCCAGCCCTTGTTCGAGAAAAGCCGTTCCGGATATTTGCCCACGAGCCTCGCGCAAGCACTGGCCGAGCAGGCCGAGCGCGCTGAGCAGGCGCTGGAGGCCGCGCGTGTCGGGGTGGAGCAGGGCGGCAACGTGGTCAGCGGCACGGTACGCCTGACCTGTACCGACTCGGTGCTGCAGGCACTGCTGTTGCCCGCTTTAGCGAGGTTCATGCCTGCCTATCCGGCGTTGACGCTGGAGCTGAGCACCACGAATGACTTCGCCAACCTTAGCCGTCGCGATGCGGATATTGCCTTGCGGCTGACGCGCACGCCGCCGGAGCATCTGGTGGGTCGAAACCTGGGCCCCGTGGTTTACCGGGTATGTGCCGGCGCCACGTATTTGTCCTCAGCCAATGCGAATGACCTGGCCGCCATGACCTGGATCGCGCCGGACGATTTCCTGCCGGATCACCCCACCGTGGCCTGGCGCCGTCAGCACTTGCCTGGCGTGGTGCCTGCCTATCGCTGCAACAGCATGCTCTCGGTGACTGAACTGGTGCGGGCCGGTCTGGGCGTTGCGGCGCTGCCGGACTTCCTGATCGATGGCAACCAGGGCCTGACGCCCATTGGCGAGCCTTTGGCCGGGTATGACACGGCGCTCTGGTTGCTGACCCGGCCGGATTGCCGCGCGTTGCGCTCGGTGGTGACGCTGTTTGACGAGCTGGGGCGCGATCTGCGGCTGAACTGAMLIPDRHYRLAFTQSILAFIQVLNAATQYRLGYPDLSLILALVRGGSLARAGRLLEVDVSTVFRSVRRLEAALGQPLFEKSRSGYLPTSLAQALAEQAERAEQALEAARVGVEQGGNVVSGTVRLTCTDSVLQALLLPALARFMPAYPALTLELSTTNDFANLSRRDADIALRLTRTPPEHLVGRNLGPVVYRVCAGATYLSSANANDLAAMTWIAPDDFLPDHPTVAWRRQHLPGVVPAYRCNSMLSVTELVRAGLGVAALPDFLIDGNQGLTPIGEPLAGYDTALWLLTRPDCRALRSVVTLFDELGRDLRLNNANANANANA
D1-35_00316609slmA_1Nucleoid occlusion factor SlmAATGACCGTACCGCAACGCCTTACCGAGCGAAAACGCGAAGCTATTCTCCAGGCCGCGATTGCCGAATTCCGCAGCAGCGGCTTCGAGATCACCAGCATGGACAAGATCGCGGCGACCGCGGGGGTGTCCAAGCGCACGGTGTATAACCACTTCCCGAGCAAGGAAGAGCTGTTCGCCGAGATTCTCAATCGGTTGTGGAACAGCATCACGGCGGAACAGCTCACGCCCTACAATTCGCAAACACCACTGCGCGATCAGCTGCGAACGCTGCTCCAAGCCAAACTGCAGATGCTGGCCGACGAGAATTTCCTCGACCTGGCGCGCATCGCCATCGCCGCCACGATTCATTCCCCCGAGCGGGCCCAGGACATGGTTGCGCGCATGGGCGAGCGTGAAGAAGGCCTGACCGTCTGGGTTCGCATGGCCCAGGCCGATGGCCGGCTGAAACCCGTCGACCCGGCATTTGCGGCCCAGCAGATGCACGGGCTGATCAAGACGTTCGCTTTCTGGCCGCAGATCTCCATGGGCCAACCAAGCCTGGCGCCCCATGAACAGGCGCAGGTGATCGAATCGGCACTGGACATGTTCCTCGCCTGCTACCAGCGCTGAMTVPQRLTERKREAILQAAIAEFRSSGFEITSMDKIAATAGVSKRTVYNHFPSKEELFAEILNRLWNSITAEQLTPYNSQTPLRDQLRTLLQAKLQMLADENFLDLARIAIAATIHSPERAQDMVARMGEREEGLTVWVRMAQADGRLKPVDPAFAAQQMHGLIKTFAFWPQISMGQPSLAPHEQAQVIESALDMFLACYQRNANANANANA
D1-35_003171047COG2220putative proteinATGACCACTCCCTCGTTTCGCACCGACAACCCCTCATCACGGCATGAGCAAGGCAAGTTTCGCAATCATGCCTTCACTCCGCGCGAAGGATTCGGTACGACCCTGCGCGTCATCTGGAACATGATTTTTCACAAGCCGCGAACCACACGGCCCGCAGGCACCATCGAGGTCAAGCCGCTGACCCGGGACGCTCTGCTGGCCGCACCGAACCACAGCGTCTTCCGCCTCGGCCATTCCACGGTGCTGCTCAAGCTGCGAGACAAGTTCTGGCTGACCGATCCGGTGTTCGCCGAGCGTGCCTCACCCGTGCAGTGGGCCGGTCCGAAGCGTTTTCATCAGCCGCCCATCAGCCTGGAAGAATTGCCGCCGATCGAAGCGGTGATCCTGTCCCACGATCATTACGACCACCTCGATTATCAGGCCATCCTCAAGCTGGCGGCCAAGACTCGCCACTTCCTGGCGCCTCTTGGCGTCGGCGACACCCTGATCAAATGGGGCGTCGATGCCAGCAAGGTGCGTCAGCTGGATTGGTGGCAAGGCACCGAGGTGGACGATATCGAGTTCATCGCTACGCCATCCCAGCACTTTTCCGGACGTGGCCTGTTCGACAGCAACAGCACCTTATGGTCGTCCTGGGTCATGATCGACGGCGCCACGCGAATCTTCTTCAGTGGCGACACCGGTTACTTCGACGGTTTCAAACGCATCGGCGAGCAATACGGCCCCTTTGACCTGACGCTGATGGAAACCGGCGCCTATAACGTCGACTGGCCCCACGTCCACATGCAGCCGGAGCAGACCCTGCAAGCACATATCGACCTGAAGGGCCGCTGGCTGCTGCCGATCCACAACGGCACGTTCGACCTGGCGATGCACGCCTGGTATGAACCCTTCGATCGCATTCTGGCCCTGGCCTGGGAGCGCAACGTCAGCATCACCACGCCACAAATGGGCGAGGCCTTCAACCTGGCGCAACCGCAACGGGGTCGCGCCTGGTGGCTGGACGTGGAGCCCTCGGTTTATCAGAACCAGACCGGCGTGGCGTGAMTTPSFRTDNPSSRHEQGKFRNHAFTPREGFGTTLRVIWNMIFHKPRTTRPAGTIEVKPLTRDALLAAPNHSVFRLGHSTVLLKLRDKFWLTDPVFAERASPVQWAGPKRFHQPPISLEELPPIEAVILSHDHYDHLDYQAILKLAAKTRHFLAPLGVGDTLIKWGVDASKVRQLDWWQGTEVDDIEFIATPSQHFSGRGLFDSNSTLWSSWVMIDGATRIFFSGDTGYFDGFKRIGEQYGPFDLTLMETGAYNVDWPHVHMQPEQTLQAHIDLKGRWLLPIHNGTFDLAMHAWYEPFDRILALAWERNVSITTPQMGEAFNLAQPQRGRAWWLDVEPSVYQNQTGVANANANANANA
D1-35_00318318hypothetical proteinATGGCCTCTCTCGCAATCAAGACCACCCTGGAACGCATCGCCGTCTATCAATTCACCCCTGCCCACAGCGCACAGGCCCGAGCCATGCTGGGGTGGAGTGTCGAAGAGCTGTCCCATGAATCCGGGGTCTCGGTCCAGGCCATACGACGTTTCGAGGCGGGCGGCGAGTTGCTCGATGTCACTCGGCTGGCCCTGGCGTTTCGATTCGAGGCCGAAGGCCTGGTGTTTTTCCCCGGCTTCACTCCTGGGCGCGGCATGAATATCAAGGGCGCGACGCCCAACCCGATGGAGCGGGCGGATTACGCCATGATCGAGTAGMASLAIKTTLERIAVYQFTPAHSAQARAMLGWSVEELSHESGVSVQAIRRFEAGGELLDVTRLALAFRFEAEGLVFFPGFTPGRGMNIKGATPNPMERADYAMIENANANANANA
D1-35_00319696hypothetical proteinATGTTGATCTTCAACTGCACCGAAGCGGCGGGCAACTTTTTCAGCCGCTTGAGCAAAGGCAAGAAAATCACCCCGGTGGAAAAACCACCATCGCCTGTTATCGAGGACGATGAGCTGGGTGAACTCGACGAACAATGGCTGGTTCACGCGATCACTGTGCAACGAAAACACGTGTTGTTCGTCATCCACGTACGAACCCGCTACTGCATGATTTTCGCCGATGCTAAAAAGGCTGACATCGAAGGTTTTATCCGGCGGTTTTCCGAACGATGGATAGAAGGCCTGATGCGTCAGGCGGGGCTGCACGATCTTCTTGACTGGGTTGACGACGAACTGATGATGGAGCGTTTCCAGGAGAGCTGTCGCGAATACGTTTTTTACAGGCGCGGTCATCGCGGTGCGCAAAAGCACATCAACGAGATTTCCTGGACGTTCGAGGACTGCGCCGCTGAATGGGGCACGTTACCCTCTAATGAGGTCTCTGCAGGCCGCTTTGATGGCAGCATGAACGACGTCCCCAGAGGCAGTAAGGAATACAAGGGCTATCAGTACCCGGATGAAGAGATGATTGTTCACTGGTTACGACGTTATGGCGGCCTGGATGAATCAGCGGCCCAGGCAGCACATGAGCGGCACATTGAAGTGAAACAGGAGATCTGGGCGTACGGACGCGAACTTGCCCGGGAAACGCAATGAMLIFNCTEAAGNFFSRLSKGKKITPVEKPPSPVIEDDELGELDEQWLVHAITVQRKHVLFVIHVRTRYCMIFADAKKADIEGFIRRFSERWIEGLMRQAGLHDLLDWVDDELMMERFQESCREYVFYRRGHRGAQKHINEISWTFEDCAAEWGTLPSNEVSAGRFDGSMNDVPRGSKEYKGYQYPDEEMIVHWLRRYGGLDESAAQAAHERHIEVKQEIWAYGRELARETQNANANANANA
D1-35_00320993hypothetical proteinATGAAATTCGACACTGCCTACTGCCTCAGCCTCGATGCCAAGCTTTCGATCTATGACGTTCGGGATCTTAATTTCGACGAGACCATGGCATTCGATTCGGCCAAGGAGCGCTTTCAGTGCCCCAACGATGTGTGTCGGGCGGGGTTTGATGAGGAGAATCGGCTGACGACGTTCAATGCCAAGAACGTCAATTACATCCGCACGCCACATTTCAAGAATCAGCCAACTACCCGGCATATCGAGGGTTGCCCGTATGTCAGTCCGAAGACGCCGGGGCTGGGTCTGGAGAGTGGCGAGGCAGAAACGGATGACGGCCGTGAAGAGCATTTCCCGTCGGAGCTGTTGCTGACTCGGCGTGAGTACATTCGCAAGCCGCCGGATCAGCCGAAGGATGTTGATACGACTCGGCCCACGTCGAACCTCCCATCGTCCCACGGCGACAACGCCCATTCCGCCCAAGACTCGACGCCCGACAAGACCAGCGTTTTCGCCCATCCGGTGGAATGTTTCGTCTCGAATTTCGACAACAAGGATCTGCTCAAGCGCATGCCGCTGAAGATTGGCGAGCACACCGCGCCTTACAGTTCCTTTTTCAAGAAGATCGACTTTTTACTGGATAACAAGGGACTGATCTACTGGGGCAAGATCAAGCAGATCAAGGATTACACACAAAGCTTTCGCATCGATTTCGAAGCGAAGGTCTGGTTCAAACAGCCGGACGAGGCGAAGAAGAAGCCTTACTCGGTCAACGTCTACCTGAGCAAGAAGCTGATCGATAACTACCGCAAGCGCAAGGCGTTCCTGGAAGAGATCAAACACGCCATCGACAGTGACGCGCCGTTGTATTGCTTCTTTTATGGCGTGACGCCGGAGTTGCAGCAGGTGCCGAGCAAGAAGAACCCCGAGCAGACGTTCGGGGTGTTCAGTGCCAATATCGAGAACCTGGATCACTTCATTATTCGGGAGGCGCCCGGACTGACTGAGTCGCTTTAAMKFDTAYCLSLDAKLSIYDVRDLNFDETMAFDSAKERFQCPNDVCRAGFDEENRLTTFNAKNVNYIRTPHFKNQPTTRHIEGCPYVSPKTPGLGLESGEAETDDGREEHFPSELLLTRREYIRKPPDQPKDVDTTRPTSNLPSSHGDNAHSAQDSTPDKTSVFAHPVECFVSNFDNKDLLKRMPLKIGEHTAPYSSFFKKIDFLLDNKGLIYWGKIKQIKDYTQSFRIDFEAKVWFKQPDEAKKKPYSVNVYLSKKLIDNYRKRKAFLEEIKHAIDSDAPLYCFFYGVTPELQQVPSKKNPEQTFGVFSANIENLDHFIIREAPGLTESLNANANANANA
D1-35_003211323hypothetical proteinATGGAAATGTCAGAGCACCTTACGATCCAGACTTACGTTGACGGCCGGTGGCACGATGCTGTGGTCTTCACTGTGTCGAACGCTCAGAAGGTTGAAGAGTCGCGATGCAGCGTAGCTTATGACCAGCATTATTTGCTCCATTTCATCCATAGGCTGGATACGGCGTTTGAACCCGCCATCAGCGTAAACCTTCCGCTGAGCTGGGACGCTATCGATAGCAAAGGCTATCCGCCATTTGTCTACGACATCATACCGGCCGGTGCTGCTCGTAAATCTATGCAAAAACGATTCGGTGGGGATAAGCCTGACGGCATGGACATGAGCTTTTTCCTCCTGAGTCGCTGCACGCCTTCACCCATTGGACATTTACGGGTGAAGGAGTCTTTTGAGCATATCGATCAAACTCGAAAGGAGGCCTTTGCGCGCAAAGAAGTCGTAAGCCGAACCAATGATTTTCTCGAATACGCCTATGAGTCTGGTGCTGCGTTAGGCGGTGCTACGGGGGCTCAGGGGGAAGCTCCGAAGCTGATTATGGTCGAGGATGAGAATGGCGCTCTTTATGCCGACGCGATGCTTTCTGATGAGCTTGCGCGTCGCCATTGGCTGGTGAAATTTGCTCGCAACCAAGCTACTGAGCGCGACAAGAACATCCTTAGGGCCGAGTACCACTACTACAAAGCGATCTCCCAACTCGGTTTGAGCACCATATCTACAAATGAACTGGTACTTGAGGAAGCCGATAAGCCAAGCCTGTGGATGCCACGCTTTGATCGGCGAGTCGCCAACGGGGTGGTAGAGAGGATTCCGATCGAGTCGATTTATTCAGTGTGTGAGAACACTGAGCCTGGTTCGAGAATGAATCATGAGGATGTGCTCAGCCGACTGATCCACCTGTGGCGTACGAATGGGCAGGAAGGTGAGCTTGAGGAACTGTTATTTGAATACCTCCGCCGTGATCTGTTGAATCGTATCCTGGGGAATTCGGACAACCATGGGCGCAACACGGCCATCTTCAGGTATCGGGACAAATTCGAACTGGCGCCGATCTATGATCTTGCACCGATGGTTCTCGATCCGGAAGGCGTCACTCGGGTAACCAAATGGAAGGCCGAGCATATGGGAAGTCCAAACTGGGAAGTGATCTGCAGTGGCTTCCAAGACTTGGTCAGCCCTGACGTGCTCTTTGAGCGTCTGCTCGGAGCCGCCGAGACATTCAGAGCGTTACCGGATCTGCTGGTCGATCTTCCTGATGAAGTGAGGCTCGCTCAGTCTATTCCGCTGAACAATTTGGATAAGCGCCTGGTTGCATGGGGGCTGCGATGAMEMSEHLTIQTYVDGRWHDAVVFTVSNAQKVEESRCSVAYDQHYLLHFIHRLDTAFEPAISVNLPLSWDAIDSKGYPPFVYDIIPAGAARKSMQKRFGGDKPDGMDMSFFLLSRCTPSPIGHLRVKESFEHIDQTRKEAFARKEVVSRTNDFLEYAYESGAALGGATGAQGEAPKLIMVEDENGALYADAMLSDELARRHWLVKFARNQATERDKNILRAEYHYYKAISQLGLSTISTNELVLEEADKPSLWMPRFDRRVANGVVERIPIESIYSVCENTEPGSRMNHEDVLSRLIHLWRTNGQEGELEELLFEYLRRDLLNRILGNSDNHGRNTAIFRYRDKFELAPIYDLAPMVLDPEGVTRVTKWKAEHMGSPNWEVICSGFQDLVSPDVLFERLLGAAETFRALPDLLVDLPDEVRLAQSIPLNNLDKRLVAWGLRPGPT0027480_796DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-HipA-HipB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027480-toxin_hipA-K07154NANA
D1-35_00322405hypothetical proteinATGAAAGAGAACACCAACGAACGGCGCAGGGAGCTCATTGACAACATCGTCATGCAGCATGTGACGGGGATCGAAACCCTGGGAACCGCTATTCGCCGGCTACGGCTTGAGGTGACTGGCCTGGATCAGGAAACCTTTGCAGCCATGTGCAAGATGTCGACCAAGGCCCTGTACCAGATCGAGAAGGACAAGGGTAATCCAACCATTAGCACCATCGAAGCTATCTTGAGGAAATTCGGGCTGCGCCTGGGATTGACGAAGTCTGCCACGACCCTTTACACGCCGCCGCCCAAGCCGCAAAAAACGACTTCCCCAATGCCCGTTCGCGGTGCCAATCCTAAACGCAAAACCGCAGCACAGCTCGGTACGAAGGCCAAGGATGGCGACAAGGGCGTGACCGAGTAGMKENTNERRRELIDNIVMQHVTGIETLGTAIRRLRLEVTGLDQETFAAMCKMSTKALYQIEKDKGNPTISTIEAILRKFGLRLGLTKSATTLYTPPPKPQKTTSPMPVRGANPKRKTAAQLGTKAKDGDKGVTENANANANANA
D1-35_00323192hypothetical proteinATGACGAAAAAAAAAAGAAGTGAGGCCTTCGAGTCGATTCACAGCTCGGCCGAAGCGCTGCTGAAAATCGGCGCTATGGACATGGCCACTATGCGGGAGTTCGATGAGGACTGCATAGCCGAGGTGTCTGCTGAAATCCTAGAGCAAGAAGACTCGTCTGAACTCAGAGCTGGCCACCCTCAAAACCAGTGAMTKKKRSEAFESIHSSAEALLKIGAMDMATMREFDEDCIAEVSAEILEQEDSSELRAGHPQNQNANANANANA
D1-35_00324714hypothetical proteinATGGATACCTCAAAGGAAAAAAGTAACTGGAGCGACGAAGAGCTCGAGGCTTCGGTTGATGCGTACTTGAAGATGCTGGACCGCGAGTTAAACGGCCAGAGCTTCAAGAAGTCGGTGGAAAACCAGCTTTTACGCGACGGGCCGCTGAGCAAGCGTAGCCCTGCGTCGATTGAATATCGCATGCAAAACATCTCTGCGGTGCTCGATCAAATGGAGTTGCGCCGAATCAGCGGCTATATGCCTGCCAAGAATATTGGTGCGGGTGTGGCTCAGCGAATCCGCAAGGTGCTTGCCAATAAGATGCTGCCTGGGACGGCCGAGTCTGCTCCAACTGCTGATTTTAAGACGTTGATCCGCCGGGCCACCAAGTTGCAAAAGAATGGGCTCAAGATCGCACCGTTAGGTAACCCGAACCCGCAACAAGTCAGTACGACCACGACGTCTTACGTTCGGGATCCCAAAATCCGGGCATGGGTTGCTGAGTTGGCTAAAGGTGTTTGCGAAGGTTGCGGTCAGAACGCACCGTTCAAGGTGGATGGTTTACCGTTTCTTGAAGTGCATCATGTGAAGCATCTGGCTCAGAACGGGTCGGACAGCATTACTAACGCGGTTGCGCTATGCCCGAATTGCCATCGGCGTTGTCATCTTGCTAGTGATAGAGAGGCATTTACTTTGTCGCTGTATAAGAAGGTTGATCGTTTGGTCGTTGAGTGAMDTSKEKSNWSDEELEASVDAYLKMLDRELNGQSFKKSVENQLLRDGPLSKRSPASIEYRMQNISAVLDQMELRRISGYMPAKNIGAGVAQRIRKVLANKMLPGTAESAPTADFKTLIRRATKLQKNGLKIAPLGNPNPQQVSTTTTSYVRDPKIRAWVAELAKGVCEGCGQNAPFKVDGLPFLEVHHVKHLAQNGSDSITNAVALCPNCHRRCHLASDREAFTLSLYKKVDRLVVEPGPT0027235_582DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEMCE-BACTERIAL_FITNESS-TYPE_IV_R-M_SYSTEM,PGPT0027235-mcrA-K07451NANA
D1-35_00325534hypothetical proteinATGTCTGATGCTTACATTCCGGCGGTTTTCATCCGTCATAGCCTCCATCTTCATGCCCTGCTTTTGGAGAACCAACCTTGGTTCTGCGCTCGCGACCTCGGACGGTTAATGGGCGTGCATCTGAGCGACCGCATGGTCAGCAAATTGGATGAGGACCAGCGACACGCCCTGCTGATTCGTTACCACGGCCATCCTGAAAAGCGGCTAATGCTCAGCGAGTCCGGCGCGTATGCCCTACTGGTTTATCACTACGCGCCAGGGAATCGCTTGCTGCGTGAATGGCTAACGCATCAAGTCGTACCGGCCCTGCGTGACGCCCAGGCATCAAGCGATACCGAGCGGCCGATGCTGAGTGTTCTGGACTGGCCGGAGATGTCCTTGAGCATGTTGCATTGGCAAAACGACGGCTGGATTCGACTTCGGGACATGCCGTATTTGTTGCTCAATCGGACTCGGGGGCGGTCAGTTACAGCTAAACCTTGGTGGCGTCGGCTGGTGGAGGTATTTCACGTATCCGGACAATCGACGCCGTAGMSDAYIPAVFIRHSLHLHALLLENQPWFCARDLGRLMGVHLSDRMVSKLDEDQRHALLIRYHGHPEKRLMLSESGAYALLVYHYAPGNRLLREWLTHQVVPALRDAQASSDTERPMLSVLDWPEMSLSMLHWQNDGWIRLRDMPYLLLNRTRGRSVTAKPWWRRLVEVFHVSGQSTPNANANANANA
D1-35_003261251nrdBCOG0208Ribonucleoside-diphosphate reductase subunit betaATGCTGAGCTGGGACGAATTCGACAAAGAAGACGACGGCGAAGTCGCGGTAAAAGGCGCCAACGCCGGCCACGCTTCTGAAGCCAACATGGACCGCCTCGACAGCGCCGGCGGTGCCGCCGCGCTCGAAGCCCGCGCCGTGACGGCCAGCGACTCGGCCGCGATCATTCGCGCCAAGGCCGCCCTCGACAAACTCGACGTCGCCGAAGGCCTCGCCGAACTCGAAGGCGCCTCCGCCCGTGTCGCCGTCGATGAAAAGCGCATGATCAACTGCCGCGCCGACCTCAACCAGCTCGTGCCTTTCAAATACGACTGGGCCTGGCAGAAGTACCTGGACGGCTGCGCAAACCACTGGATGCCGCAAGAAGTCAACATGACCGCCGACATCGCCCTCTGGAAAAACCCGGAAGGCCTGACCGACGACGAACGCCGCATCGTCATGCGCAACCTGGGCTTCTTCTCCACCGCCGACTCCCTGGTTGCCAACAACCTGGTCCTGGCCGTGTACCGCCTGATCACCAACCCGGAGTGCCGCCAGTACATCCTGCGCCAGGCCTTCGAAGAGGCGATCCACACCCACGCCTACCAGTACTGCATCGAATCGCTGGCCATGGATGAAGGTGAAATCTTCAACATGTACCACGAGATCCCATCGGTCGCGAAAAAAGCCGCCTGGGGCCTGAAATACACCCGTTCGATCTCCGATCCGAAGTTCGAAACCGGCACCCCGGAAACCGACAAAGAGTTGCTGCGCAACCTGATCGCCTACTACTGCGTCCTGGAAGGCATCTTCTTCTATTGTGGCTTCACCCAGATCCTCTCCATGGGCCGCCGCAACAAAATGACCGGCGTCGCCGAGCAGTTCCAGTACATCCTGCGCGACGAATCCATGCACCTGAACTTCGGCATCGACGTGATCAACCAGATCAAGATCGAAAACCCACACTTGTGGGACGCCGAAATGAAGGAAGAAGCAACCCAGATGATCCTGCAAGGGACCCAACTGGAAATCGAATACGCCCGCGACACCATGCCTCGCGGCGTACTGGGCATGAACGCGGCGATGATGGAGGACTACCTCAAGTTCATCGCCAACCGCCGCCTGTCGCAGATTGGCCTGAAGGAAGAGTACCCAGGGACGACCAACCCGTTCCCTTGGATGAGCGAGATCATGGACTTGAAGAAAGAGAAGAATTTCTTTGAGACTCGGGTGATTGAGTATCAGACGGGTGGGGCTTTGAGCTGGGATTGAMLSWDEFDKEDDGEVAVKGANAGHASEANMDRLDSAGGAAALEARAVTASDSAAIIRAKAALDKLDVAEGLAELEGASARVAVDEKRMINCRADLNQLVPFKYDWAWQKYLDGCANHWMPQEVNMTADIALWKNPEGLTDDERRIVMRNLGFFSTADSLVANNLVLAVYRLITNPECRQYILRQAFEEAIHTHAYQYCIESLAMDEGEIFNMYHEIPSVAKKAAWGLKYTRSISDPKFETGTPETDKELLRNLIAYYCVLEGIFFYCGFTQILSMGRRNKMTGVAEQFQYILRDESMHLNFGIDVINQIKIENPHLWDAEMKEEATQMILQGTQLEIEYARDTMPRGVLGMNAAMMEDYLKFIANRRLSQIGLKEEYPGTTNPFPWMSEIMDLKKEKNFFETRVIEYQTGGALSWDPGPT0021345_194DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021345-nrdB|nrdF-K00526NANA
D1-35_00327264hypothetical proteinATGAAAGCTTTATGGGTTCTGGTCCTTGGCAGCCTTTGCGCCACCGCCATGGCGGATGAGGCCCCGACCGATGTCGCACCGCAGAAACCGGCGATCGAGGAATACACCTACTCCACCCACCTGGACATCGCCAAAGTCATTTCCATGAGCACCATCCCGAACGTCTGCGAAGTGGTCCCGGCGAAAATGGAATATGAAGATTCCAAAGGCGAGCGCCACATCATGCGCTACAGCGTCATGGGCACCGGCTGCTCCAACGGCTGAMKALWVLVLGSLCATAMADEAPTDVAPQKPAIEEYTYSTHLDIAKVISMSTIPNVCEVVPAKMEYEDSKGERHIMRYSVMGTGCSNGNANANANANA
D1-35_003281956acs_1COG0365Acetyl-coenzyme A synthetaseATGAGTGCGGCTTCTGTGTATCCCGTTCGTCCCGAGGTTGCGGCCAGTACGCTGACTGACGAGGCGACCTATAAGGCCATGTACCAGCAGTCGGTCGTCAACCCCGATGGCTTCTGGCGCGAGCAGGCCAAGCGCCTCGACTGGATCAAGCCTTTCACCACGGTTAAACAGACCTCGTTCGATGATCACCATGTCGACATCAAGTGGTTTGCCGATGGCACCTTGAACGTTTCCTACAACTGCCTCGACCGTCACCTGGAAGAGCGCGGCGATCAGGTTGCGATCATCTGGGAGGGCGACGACCCGTCCGAGAGCCGCAACATCACTTATCGCGAACTGCATGAAGAAGTCTGCAAGTTCGCCAACGCCCTGCGCGGTCAGGACGTGCACCGCGGCGACGTGGTGACTATCTACATGCCGATGATTCCCGAGGCTGTGGTCGCCATGCTGGCCTGCACCCGGATCGGTGCAATCCACTCGGTGGTGTTCGGCGGCTTCTCGCCGGAAGCCCTGGCCGGCCGCATCATCGACTGCAAATCGAAAGTGGTGATCACCGCCGACGAAGGCATCCGTGCCGGCAAGAAGATCCCGCTCAAGGCCAACGTCGATGACGCGCTGACCAACCCGGAAACCAGCAGCATCCAGAAAGTCATCGTGTGCAAGCGCACGTCGGGCAACATCAAGTGGAACCAGCATCGTGACATCTGGTACGAAGACTTGATGAAAGTGGCTGGCACCGTTTGCGCGCCGAAGGAGATGGGCGCCGAGGAAGCGCTGTTCATCCTCTACACCTCCGGTTCCACCGGCAAGCCCAAGGGCGTGCAGCACACCACCGCCGGTTACTTGCTGTACGCGGCGCTGACCCATGAACGCGTGTTCGACTACAAGCCCGGTGACATCTACTGGTGCACCGCTGACGTCGGCTGGGTTACCGGCCACAGCTACATCGTCTACGGCCCGTTGGCCAATGGCGCGACCACGCTGCTGTTCGAAGGCGTGCCGAACTACCCGGACGTCACCCGGGTGGCCAAGGTGATCGACAAGCACAAGGTCAATATTCTCTACACCGCGCCGACCGCGATCCGCGCGATGATGGCCTCGGGCACCGCCGCTGTCGAAGGTGCCGATGGCAGCAGCCTGCGCCTGCTGGGTTCGGTGGGCGAGCCGATCAACCCGGAAGCCTGGGACTGGTACTACAAGAACGTCGGCAAGGAGCGTTGCCCAATCGTCGACACTTGGTGGCAGACCGAAACCGGCGGCGTGCTGATCAGCCCGCTGCCAGGCGCCACAGCGTTGAAGCCGGGTTCGGCTACGCGTCCATTCTTTGGTGTGGTGCCGGCGCTGGTGGACAACCTCGGCAACCTGATCGAAGGCGCCGCCGAAGGCAACCTGGTGATCCTCGATTCGTGGCCGGGCCAGGCACGTACGCTGTACGGCGACCATGACCGTTTTGTCGACACTTACTTCAAGACTTTCAGCGGCATGTACTTCACCGGTGACGGCGCTCGTCGCGATGAGGATGGCTACTACTGGATCACCGGTCGGGTGGACGACGTGCTCAACGTTTCCGGCCACCGCATGGGCACCGCCGAGATCGAAAGCGCCATGGTCGCCCACCCGAAAGTCGCCGAGGCGGCGGTGGTGGGGGTGCCGCACGACATCAAGGGGCAGGGCATCTATGTCTACGTCACCTTGAATGCCGGCGAAGAAACCAGCGAAGCCCTGCGCCTGGAATTGAAGAACTGGGTGCGCAAGGAGATCGGCCCGATTGCTTCGCCGGACGTGATCCAGTGGGCGCCGGGGCTGCCGAAAACCCGTTCGGGCAAGATCATGCGCCGCATCCTGCGCAAGATCGCCACGGCGGAATACGACGGTTTGGGCGATATCTCCACTCTGGCCGACCCAGGTGTGGTGGCGCACCTGATCGAGACGCACAAGACCATGAACGTCGCCTGAMSAASVYPVRPEVAASTLTDEATYKAMYQQSVVNPDGFWREQAKRLDWIKPFTTVKQTSFDDHHVDIKWFADGTLNVSYNCLDRHLEERGDQVAIIWEGDDPSESRNITYRELHEEVCKFANALRGQDVHRGDVVTIYMPMIPEAVVAMLACTRIGAIHSVVFGGFSPEALAGRIIDCKSKVVITADEGIRAGKKIPLKANVDDALTNPETSSIQKVIVCKRTSGNIKWNQHRDIWYEDLMKVAGTVCAPKEMGAEEALFILYTSGSTGKPKGVQHTTAGYLLYAALTHERVFDYKPGDIYWCTADVGWVTGHSYIVYGPLANGATTLLFEGVPNYPDVTRVAKVIDKHKVNILYTAPTAIRAMMASGTAAVEGADGSSLRLLGSVGEPINPEAWDWYYKNVGKERCPIVDTWWQTETGGVLISPLPGATALKPGSATRPFFGVVPALVDNLGNLIEGAAEGNLVILDSWPGQARTLYGDHDRFVDTYFKTFSGMYFTGDGARRDEDGYYWITGRVDDVLNVSGHRMGTAEIESAMVAHPKVAEAAVVGVPHDIKGQGIYVYVTLNAGEETSEALRLELKNWVRKEIGPIASPDVIQWAPGLPKTRSGKIMRRILRKIATAEYDGLGDISTLADPGVVAHLIETHKTMNVAPGPT0002265_3014DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ACETATE_UTILIZATION,PGPT0002265-acs-K01895NANA
D1-35_00329774argT_2COG0834Lysine/arginine/ornithine-binding periplasmic proteinATGAAGAAACTTGTGCTGCTTGGCGCCCTGGCACTGTCCGTGCTGTCCCTGCCGACATTCGCCGATGAGAAACCCCTGAAGATCGGTATCGAAGCGGCTTACCCTCCGTTCGCCTCGAAAGCCCCGGATGGCAGCATCGTCGGCTTCGACTACGACATCGGCAATGCGCTGTGCGAAGAGATGAAGGTCAAGTGCGTGTGGGTCGAGCAGGAGTTCGACGGCCTGATCCCGGCGCTGAAGGTACGCAAGATCGACGCGATCCTGTCGTCCATGTCGATCACTGAAGATCGCAAGAAGTCCGTTGACTTCACCAACAAGTACTACAACACCCCGGCCCGCCTGGTGATGAAGGCCGGTACCCAGGTGAGCGACGGCCTGGCCGAACTCAAGGGCAAGAACATCGGTGTACAGCGCGGTTCGATCCACGAGCGTTTCGCCCGTGAAGTCCTGGCCCCGCTGGGTGCCGAGATCAAGCCGTACGGTTCGCAGAACGAAATCTACCTGGATGTTTCCGCCGGTCGTCTCGATGGCACCGTGGCCGACGCGACGCTGCTGGATGACGGCTTCCTGAAGACTGACGCGGGCAAGGGCTTCGCCTTCGTCGGCCCGGCCTTCACCGACGAGAAATACTTCGGCGACGGCATCGGTATCGCGGTTCGCAAGGGCGATGCGCTGAAAGACAAGATCAACAGCGCGATCACCGCCATTCGCGAGAACGGCAAGTACAAGCAAATCCAGGACAAATACTTCGCCTTCGATATCTACGGCAAGTAAMKKLVLLGALALSVLSLPTFADEKPLKIGIEAAYPPFASKAPDGSIVGFDYDIGNALCEEMKVKCVWVEQEFDGLIPALKVRKIDAILSSMSITEDRKKSVDFTNKYYNTPARLVMKAGTQVSDGLAELKGKNIGVQRGSIHERFAREVLAPLGAEIKPYGSQNEIYLDVSAGRLDGTVADATLLDDGFLKTDAGKGFAFVGPAFTDEKYFGDGIGIAVRKGDALKDKINSAITAIRENGKYKQIQDKYFAFDIYGKPGPT0020680_311DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020680-aotJ-K10022NANA
D1-35_00330690hisQ_2COG4215Histidine transport system permease protein HisQATGTTGAAAGGCTACGGGGCTGTCATCCTCGATGGCGCATGGTTGACGCTTCAGCTCGCCTTGTCGTCCATGGCCCTGGCCATTGTCCTGGGGCTGATCGGTGTCGCGTTGCGCCTCTCGCCGGTGCGTTGGCTGGCGTGGCTGGGCGACCTGTATTCCACGGTCATCCGCGGCATTCCCGACCTGGTGCTGATCCTGCTGATCTTCTATGGCGGCCAGGACTTGATCAACCGCGTTGCGCCGATGCTCGGCTATGACGACTACATCGACCTGAACCCGTTGGCGGCCGGTATCGGCACCCTGGGTTTCATCTTCGGTGCGTACCTGTCCGAGACCTTTCGCGGCGCCTTCATGGCGATCCCCAAGGGGCAGGCCGAGGCGGGCATGGCGTATGGCATGAACGGCTTCCAGGTGTTTTTCCGGGTGCTGGTGCCGCAGATGATTCGCCTGGCGATCCCGGGCTTCACCAACAACTGGCTGGTACTGACCAAGGCCACCGCGCTGATTTCGGTCGTGGGCCTGCAAGACATGATGTTCAAGGCCAAGCAGGCGGCGGATGCCACCCGTGAGCCTTTCACCTTCTTCCTCGCGGTGGCGGCGATGTACCTGGTGATCACCAGTGTCTCGTTGCTGGCATTGCGTCACCTTGAGAAGCGCTACTCGGTAGGCGTAAGGGCGGCTGATCTATGAMLKGYGAVILDGAWLTLQLALSSMALAIVLGLIGVALRLSPVRWLAWLGDLYSTVIRGIPDLVLILLIFYGGQDLINRVAPMLGYDDYIDLNPLAAGIGTLGFIFGAYLSETFRGAFMAIPKGQAEAGMAYGMNGFQVFFRVLVPQMIRLAIPGFTNNWLVLTKATALISVVGLQDMMFKAKQAADATREPFTFFLAVAAMYLVITSVSLLALRHLEKRYSVGVRAADLPGPT0020690_226DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020690-aotQ-K10024NANA
D1-35_00331699occM_1Octopine transport system permease protein OccMATGATCTTCGACTACAACGTCATCTATGAAGCCTTGCCGCTGTACTTCAGTGGCCTGCTGACCACCTTGAAGCTGCTGGCCCTGTCGCTGTTCTTCGGCCTGTTGGCGGCGCTGCCCCTGGGGCTAATGCGGGTGTCGAAGCAGCCAATCGTCAACATGACGGCCTGGCTCTACACCTACGTGATCCGCGGCACGCCGATGCTGGTGCAGCTGTTCCTGATCTACTACGGGCTGGCGCAGTTCCAGGTGGTGCGCGAGAGCTTCCTCTGGCCATGGCTGTCCAGCGCGACGTTCTGTGCGTGCCTGGCGTTCGCCATCAACACCAGCGCCTACACCGCCGAAATCATCGCCGGCAGCCTGCGAGCCACGCCTAACGGCGAGATCGAGGCGGCCAAGGCCATGGGCATGTCGCGCTACAAGCTGTACCGCCGAATCCTGCTGCCGTCGGCGTTGCGCCGGGCGCTGCCGCAATACAGCAACGAAGTGATCATGATGCTGCAGACCACCAGCCTGGCGTCCATCGTCACCCTGATCGACATCACCGGCGCCGCGCGCACGGTGAACGCGCAGTATTACCTGCCGTTCGAGGCCTACATCACGGCCGGCGTTTTCTACCTGTGCCTGACCTTCATCCTGGTGCGCCTGTTCAAACTGGCCGAGCGCCGCTGGCTGGGTTACCTGGCCCCGCGCAAGCACTGAMIFDYNVIYEALPLYFSGLLTTLKLLALSLFFGLLAALPLGLMRVSKQPIVNMTAWLYTYVIRGTPMLVQLFLIYYGLAQFQVVRESFLWPWLSSATFCACLAFAINTSAYTAEIIAGSLRATPNGEIEAAKAMGMSRYKLYRRILLPSALRRALPQYSNEVIMMLQTTSLASIVTLIDITGAARTVNAQYYLPFEAYITAGVFYLCLTFILVRLFKLAERRWLGYLAPRKHPGPT0020685_157DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020685-aotM-K10023NANA
D1-35_00332765hisP_2COG4598Histidine transport ATP-binding protein HisPATGTACAAGCTTGAAGTCCAAGACCTGCATAAACGCTATGGCAGTCACGAAGTGCTCAAGGGCGTGTCCCTGAAAGCCGCCGCCGGTGATGTGATCAGCATCATCGGCTCCAGTGGCTCCGGCAAGAGCACGTTCCTGCGTTGCATCAACCTGCTTGAGCAACCCCATGCCGGCAAGATTTTGCTCAACAACGAAGAGCTGAAGCTGGTAGCGGGCAAGGACGGCGCCATGAAGGCCTCGGATCCCAAGCAGCTGCAACGCATGCGTTCGCGGTTGTCGATGGTGTTCCAGCATTTCAACCTGTGGTCGCACATGACCGCACTGGAAAACATCATCGAAGCGCCCGTGCACGTACTGGGCGTGGCCAAGGCCGAGGCGCGGGAGAAGGCCGAGCATTACCTGAACAAGGTCGGCGTGGCGCATCGCAAGGACGCCTACCCGGGCCACATGTCCGGCGGCGAACAACAGCGCGTGGCGATTGCCCGGGCGCTGGCGATGGAGCCTGAAGTGATGCTGTTCGACGAGCCAACCTCGGCGCTGGACCCGGAGCTGGTCGGCGACGTGCTCAAGGTGATGCAGGCCCTGGCCCTGGAAGGCCGGACCATGGTGGTGGTGACTCACGAGATGGGCTTCGCCCGCGAGGTGTCGAACCAACTGGTGTTCCTGCACAAAGGCATCGTCGAAGAAAGCGGCAACCCGCGCGAAGTGCTGGTCAATCCGCAATCGGAGCGCTTGCAACAATTCCTGTCGGGCAGCCTGAAGTAAMYKLEVQDLHKRYGSHEVLKGVSLKAAAGDVISIIGSSGSGKSTFLRCINLLEQPHAGKILLNNEELKLVAGKDGAMKASDPKQLQRMRSRLSMVFQHFNLWSHMTALENIIEAPVHVLGVAKAEAREKAEHYLNKVGVAHRKDAYPGHMSGGEQQRVAIARALAMEPEVMLFDEPTSALDPELVGDVLKVMQALALEGRTMVVVTHEMGFAREVSNQLVFLHKGIVEESGNPREVLVNPQSERLQQFLSGSLKPGPT0020695_183DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020695-aotP-K10025NANA
D1-35_00333981cdhR_1COG4977HTH-type transcriptional regulator CdhRATGACTGCCCATCGAATAGGTTTCCTGATTTGGCCCAGCACTAAAGCGTTGACGCTGGCGCTGGCCGAGGAGGCCTTGCGTGTTGCGCAGCGAGTGCATCCGGACGTGGTCTACGAGCTGTCGTTTTTGCACGCCGAGCCGCCGGCCGAGGGTGCCTGGCAGCTGCCGGGCGAACCCTGGGCCGGCAAGCTCGAAGGCCTGCAGAAACTGTTCCTGCTGGCCGACGAGCCGCCGACGTCGCTGGCCTCGCCGCTGAGCAGCGCGCTCAAGCAACTGGTGCGCGCCGGATGCGTCATTGGCGGCTTGTCCGCCGGTGTCTATCCGCTGGCCCAGTTGGGCTTGCTTGATGGGTACCGGGCCGCCGTGCACTGGCGCTGGCAGGACGATTTCTCGGAGCGTTTTCCCAAGGTTATCGCCACCAGCCATTTGTTCGACTGGGACCGCGATCGCCTGAGCGCCTGCGGCGGCATGTCGGTGCTCGACCTGTTGTTGGCGGTGCTGGCGCGCGATCACGGCGCCGAGCTGGCCGGTGCGGTCTCGGAGGAACTGGTGGTCGAGCGCATTCGCGAAGGCGGCGAGCGCCAGCGCATCCCGTTGCAGAACCGCCTCGGCTCCAGTCATCCGAAGCTCACCCAGGCGGTGTTGCTGATGGAGGCCAACATCGAAGAGCCGCTGACCACCGACGAAATCGCCCAGCATGTGTGCGTGTCCCGTCGGCAGCTGGAGCGGATCTTCAAGCAATACCTCAACCGCGTGCCCAGCCAGTACTACCTGGAGCTGCGCCTGAACAAGGCCCGGCAGATGCTGATGCAGACCAGTAAATCCATCATCCAGATCGGCCTGTCCTGCGGTTTCTCCTCCGGGCCGCATTTCTCCAGCGCCTACCGCAACTTCTTCGGCGCCACGCCGCGGGAAGATCGTAACCAGCGGCGCAGCAGCAGCCCGTTCGAATTGTCGTCGGTGCCGTCGGAGCGCGGCTGAMTAHRIGFLIWPSTKALTLALAEEALRVAQRVHPDVVYELSFLHAEPPAEGAWQLPGEPWAGKLEGLQKLFLLADEPPTSLASPLSSALKQLVRAGCVIGGLSAGVYPLAQLGLLDGYRAAVHWRWQDDFSERFPKVIATSHLFDWDRDRLSACGGMSVLDLLLAVLARDHGAELAGAVSEELVVERIREGGERQRIPLQNRLGSSHPKLTQAVLLMEANIEEPLTTDEIAQHVCVSRRQLERIFKQYLNRVPSQYYLELRLNKARQMLMQTSKSIIQIGLSCGFSSGPHFSSAYRNFFGATPREDRNQRRSSSPFELSSVPSERGPGPT0021945_231DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARNITHINE_USAGEPLANT_DERIVED_CARNITHINE_DEGRADATION,PGPT0021945-cdhR-K17736NANA
D1-35_003345016hypothetical proteinATGCACGAACTTAACACTACAGCCGACACCGGAACCCCGGTCAAATCCCACTATCAGCACGTGCTCGATGCCATCCCGTCCTGGGTGGGCAAGGCCCCCGCACAACAACAGACTGAGCTCAGGCAGGCCAAGCCGCTATTTGCTCCCTGGCTGCTCGGCGCACCCGCCTCCCGGCACGCGCAGATGAAGCGCTTGAATGCCGCCCAGTGGCGCGCACGCAATGGGCTCGAGGAGCGACTGCAAGCGCTGCAGGACATCAATGCCTTTGCCAAGCCGCTGCTTGAAGCCGCTATCAGGACTCAGTTCGGCTTGACGCTGGACGTCGAGAAAACCCAGTTATGGCTGTACGTACCACTGAATATTCCATGGCTGCCGATCCCCTCCGGTGGCGCGCGAACGTGGAAGGTTTCCTTGCTGGATGCTGCTTTGCACAACTTTGAACCGGACGAGGCAAAACCCGATGCCTACGAACCAGACTCGACCTATGTCGCCGAGACCACGAAGAGCTCGGAGGAAGGCGAGACGGGACGTTTCAAACCGCTGACGTCGATCAGGCAGCAGATGCCGATTCCGGCATTTATCCAGCTGTGTCGGGAACTGGATATCGGCGGCCAGTACCAGCGTCATCTTCAGCAACAACTGGGCATCGGCGACACCGTTGCAACCCGCGCACTGCAGCGCCAGGTCAGCGAAAGCCAGGAAGCGGCACTCAAGGCCGCCCTGCACCTGGCGCTGATGAAAAAAGACATCAGCGCGCAAAGCCACTCGCAGGTCCTCGGCCTGCTGGACGGTTTGCCAGGCATGCAGCTCGACGGCCAGCCACTGTGCAGCCATGACTTGAAGATCATGGACGTTGCGCTGACCGGCATAGTGCTGTTCGCCCCGGACTTCGAACAGGCGCAGCACACCGTGCCGTTGGTGGCTTATATTCCCGACGATCCCCAAGGCGCGATCAAGGAATACGCCTCTTCAACGCTGTTCAGCTCGGCGTTGACTCAAAGGCTGCGAGAAAAAGACTACCAGCAATTCTTCAGTCGCTTTGTCGGACACCAGGAACGCCCGTTGTTTTTCTTCGAGCTGAACCAGCGGCTGGCTTCCATCCAATGGCACCGACCGGCTCCCGGTGACTCCCGCCCACCATGGCGAGAAACCCCGGCCGATAAGCCCAACCTGCTGTTCAGCGCACAGTTGACCCCAGGCGACCTGATGCGGCACCTCTATCAAGGCAAGCTGAACAAAATCCTCAATGACGCGCGAACCATTGCCGTTTCCACTGCCAGCGCCGACCGCAACGCCCGCTGGAAACGCTGGGACGCCCTGTCCAGGATTGCCAGCGAACTGGTCAGTATCGCCGCGTTCATCGCCACGCCTTTTTTCCCGCCGCTGGGCGCCCTGATGCTCGGCTATGCCGCTTACCAACTGCTGGACGATACGTTCGAAGGAATTGTCGATTGGGCCGAAGGATTAAAACAGCAGGCTTTCGAGCACCTGATGAGCGTGATGGAAACTCTGGTCCAGCTGGGCGGCTTCGCCGTTGGCGTACCGATAGCCGAAGGTATGCTGCGCCAGGCACTGCCAAAGCAATTGTGGAGCTTCATCGACAACCTGATGCCGGTCACCCGCCCCGATGGCCAGCAACGCTTGTGGTACCCGGACCTGACACCCTATCACCAGGATATCGAACCGGTCAGCAGCGCCGGCCCCGATCAGCTTGGCCTGCATGAGCACCTCGGCCGAAAAATCCTGAAGCTAGACACGCAGCGCTTTGTCGTCAGGCAAGATGCCGGCGAAGGCATTTATCAGATCGAGCACCCGGCACGCGTGGATGCCTATGCTCCACAGCTCAGCCACAATGGCGCCGGCGCCTGGCGAACGGAGCTGGACCGCCCGTTGACCTGGGACGACACCACGCTCGTCCGCCGTCTAGGCCAGCAAACCGACGCATTCTCCGACGAACAACTCCAGCAGATGCTCACCGTCAGCGGCACTCACCCCGATGCGCTGCGCAAATTGCACGTCAACAACGAACCGCCACCGCCGCTGCTGGCCGATACGTTGGAGCGCTTCAAGGTCGCCCAGGATCTTCAACGTTTCGTTGACCTGATGGGCAGTGACGATCCGTTGCTCTATCGCCGCGCCGACGTGCAAACCCAAATACAGCTGTTGACCAGTTATGGGCTGCTGCCATCGACCCGGGGGCTGCGCTTTCTCGATAGCGCCGGAAAAGTCGCATGGAGTTTTCCGCCCGCCTCGCGCCTGCCCATGATCGACATCCCCGAAGCGCAGATGAACAATGGGGCGATGCTCGATACGATCATGCAGGGCTTGAGCGAACCGGAGATCAAGACGCTGCTGGACGAAGAACCCGGCCTCCCGCCCACCAGCCTCGGCGCCCGAACGGCCCGGTTGCGCCAGCAGATGGCAAAACTGGCCAATGACAAATGGGCCTCGTTATTCGAAACGCGCTACAGCGCGAAGCAGGTCCCCCCTGATCCCGCGGCTCGAAACCTGATGGACCGTTATCAGGGTCTGCCTCGCAGCGTCGCCGAAGAGCTGCTGCGCACCGCCACGGTCGAGGAATACAAGGGCATCGGCGCCAACCGTTTTTCGCCGCGCATCGATGAACTGGCGCGCTGGACCCTGCTGGAAACCCGCACCGTTCGCGCCTACGAAGGGCTGTATATCGACAACCTTGGCGGGGCCGACACTGACCGGCTGGTCCTGCATTCGTTGGATCGATTGCCCAACTGGTCCGCGGACGTACGCTTGGACATGCGCGCTTATTCCTTCAGGGGCACGATGCACGACAGCGTCGGAGCCCCCCAGGCAAAAATCGTCAGGACCCTGGTTCGCGGCGACGACAGACGCTATACCCCGTTTGATGATGCCGGTCTTGAGCTGCATGGCCCGACGGATATCTATCAAGGCGTGCTGCAGGCTTTGCCCGACGCACAACGCAACGCGCTGGACATCCACATCGGCCAAGGCGAGCGCCTGCGCCAGGCCATCGGCCGCTCCCCGCTGGACCGCGACAGCATGCGAGTACTGCTGGCCAGCGACCCAGTCCGCAAACCCCACTACGACAGCAGAATCATGCGCCTGCCCGGCGGCATGGATGGCTATCGGCCCGGCGCGCCGGCCAGTGGACCGAGCGCTTCACCAACGCCGGAGGAACGCGCGCAAGACCTGTTTCCGACGTTCAATGCCGAGCAGATCCGCAACCTGGTCAGGTCTCTGGAAAGCCGCCCTGGAGGTGCCAACTCGACCTTGGTGGCATTGCAACAATCCTACTCGGCACTGGAGGTGGATCTTTCCCGATGGGTGAGCGATACGCCGCAACCCGCCGCCGGGACGGGAGTCATCGTGAGCGCCAGCGACTACCAGGCAGCCAGACTCAACCGTCAGCGCTGGGCCGAGGAGATCAAGCGATGCCTGCGGCGGGAAACGGAGCTGGATGAGTTTCAAGGCAGCCATACCAGACCCAGCCACGTATTGGAACTGGAAGAACCGATGCCAGGTCCGTTGCCGCCCCTGAGGATGCGCTTCAGGCATGTGACCTATCTGCAATTGGCTGGCGACAGCACAACCGAGGGCCTCGTCGAATTCCTGCAGGCCTTTCCCAGCCTCCGGCATCTGGACATCGATGGGATACCGATCCGAACGCTACCGAAGCAGATCACCAGCCTGCCGGATCTGGGCGTACTGACGCTGAACAATTGCCGGATCACTCTGGATGCCAACACCCATGCCGCGCTTTCATCCATGACTCGGTTGCGTGTGCTGGACCTGTCCGATAATCCACTCGGGGGGGCCCCCGATGTAAGCAGGATGGCAGAGCTGCGGCAGTTGAAGCTCAGGAACACAGGTATCGATCAGGTGCCAACAGGGCTTGAAACTCGTCCGCACCTGACCACCGCGAGGCTCGAACGCAACCGCATCACCGACCTGCCCCCAGCGCTGTTCGAGTTGCCGGGCGAGGTCAGCAAGAAGATCGACCTCACCGGCAATCCCCTCTCCCGGGCGGCGCTCGACCGAGTGAAAGCCTACGCCCTGGAAAACGCCGAGCACATGAGTGTCGATGCCCCGCATGAATTGAGCCGACGGGTACAGGCGCTGTACCCGTCACTTAGCCGCAGGGACGCCAATCGATTCATTTTCAGCCTGCCGGGTACGCTCGATGAGGTCCCCGGAGGGCTGTCACGCCTGGAAAGCGAATTGGCCCAGCTCACAGCCGACCTCGAACGATGGCGGCAAGACGTGTTCCTGCCGGATCCGATCGCCCTGACACAAGAGCAGCTCAGGCGCAGTGCGCTCAAAGAGAAGCTTGTGGATTGCTGGCAACGCGACTTCTATCAAGACCCCGCCGAGCTTCCCGACAGGTTCGCGTTCGCCGGGAACATCCATGGCGCAATGCCCAGGCTCGATGCGCGATTCGAGCACATTACGACAGTCGACCTGCAAGGCGGCGTTGCCACGACCGGAGTGGATGGCCTGCTCCAGTGCTTTCCCAATCTTCAGACCGTGAACGTGGCCGATTTCAACCTGGGACAGCTGCCCGAATCGATATTCAACATGCCCCAGCTGACCGACCTCACCCTGCAAAACTGCAGGATTCGGCTGACACCTGCCGACGCAGGGCGTCTCGCCGGATTGACCGGGCTGGAAGATCTGGATTTGAGCGGCAACCCGCTGGGTACTACGCCAGAGGTCTGGCGCATGACCCGGTTGAAAACCTTATTGCTACCCGACTCGCAACTGACGCGGGTGCCAGAAGACGTTTTCAGCATGCCCACGCTGCTGACCCTCGACCTCAGCAATAACCTGATCACCGACCTGCCCGTCGATATCCTCGAAATGAGCGCCGAGACTGGTGAGGACTTCGAACTGGACGGCAACCCGTTCTCGGAACAGGGCCTGAGGCTTCTACGAATCCGCTATCAGCAAACCGGTAACGACATGGGCGTGGCCGCGGCCAGGCTGGATGCGCAAGGGAACCCGTTGCAGACACACCGCTAGMHELNTTADTGTPVKSHYQHVLDAIPSWVGKAPAQQQTELRQAKPLFAPWLLGAPASRHAQMKRLNAAQWRARNGLEERLQALQDINAFAKPLLEAAIRTQFGLTLDVEKTQLWLYVPLNIPWLPIPSGGARTWKVSLLDAALHNFEPDEAKPDAYEPDSTYVAETTKSSEEGETGRFKPLTSIRQQMPIPAFIQLCRELDIGGQYQRHLQQQLGIGDTVATRALQRQVSESQEAALKAALHLALMKKDISAQSHSQVLGLLDGLPGMQLDGQPLCSHDLKIMDVALTGIVLFAPDFEQAQHTVPLVAYIPDDPQGAIKEYASSTLFSSALTQRLREKDYQQFFSRFVGHQERPLFFFELNQRLASIQWHRPAPGDSRPPWRETPADKPNLLFSAQLTPGDLMRHLYQGKLNKILNDARTIAVSTASADRNARWKRWDALSRIASELVSIAAFIATPFFPPLGALMLGYAAYQLLDDTFEGIVDWAEGLKQQAFEHLMSVMETLVQLGGFAVGVPIAEGMLRQALPKQLWSFIDNLMPVTRPDGQQRLWYPDLTPYHQDIEPVSSAGPDQLGLHEHLGRKILKLDTQRFVVRQDAGEGIYQIEHPARVDAYAPQLSHNGAGAWRTELDRPLTWDDTTLVRRLGQQTDAFSDEQLQQMLTVSGTHPDALRKLHVNNEPPPPLLADTLERFKVAQDLQRFVDLMGSDDPLLYRRADVQTQIQLLTSYGLLPSTRGLRFLDSAGKVAWSFPPASRLPMIDIPEAQMNNGAMLDTIMQGLSEPEIKTLLDEEPGLPPTSLGARTARLRQQMAKLANDKWASLFETRYSAKQVPPDPAARNLMDRYQGLPRSVAEELLRTATVEEYKGIGANRFSPRIDELARWTLLETRTVRAYEGLYIDNLGGADTDRLVLHSLDRLPNWSADVRLDMRAYSFRGTMHDSVGAPQAKIVRTLVRGDDRRYTPFDDAGLELHGPTDIYQGVLQALPDAQRNALDIHIGQGERLRQAIGRSPLDRDSMRVLLASDPVRKPHYDSRIMRLPGGMDGYRPGAPASGPSASPTPEERAQDLFPTFNAEQIRNLVRSLESRPGGANSTLVALQQSYSALEVDLSRWVSDTPQPAAGTGVIVSASDYQAARLNRQRWAEEIKRCLRRETELDEFQGSHTRPSHVLELEEPMPGPLPPLRMRFRHVTYLQLAGDSTTEGLVEFLQAFPSLRHLDIDGIPIRTLPKQITSLPDLGVLTLNNCRITLDANTHAALSSMTRLRVLDLSDNPLGGAPDVSRMAELRQLKLRNTGIDQVPTGLETRPHLTTARLERNRITDLPPALFELPGEVSKKIDLTGNPLSRAALDRVKAYALENAEHMSVDAPHELSRRVQALYPSLSRRDANRFIFSLPGTLDEVPGGLSRLESELAQLTADLERWRQDVFLPDPIALTQEQLRRSALKEKLVDCWQRDFYQDPAELPDRFAFAGNIHGAMPRLDARFEHITTVDLQGGVATTGVDGLLQCFPNLQTVNVADFNLGQLPESIFNMPQLTDLTLQNCRIRLTPADAGRLAGLTGLEDLDLSGNPLGTTPEVWRMTRLKTLLLPDSQLTRVPEDVFSMPTLLTLDLSNNLITDLPVDILEMSAETGEDFELDGNPFSEQGLRLLRIRYQQTGNDMGVAAARLDAQGNPLQTHRNANANANANA
D1-35_003355103hypothetical proteinATGAATACGCCCATCACCGTCGTGCTTCCCAGGCGCAAGATCGCCCATCACAAGCTCATTGAAAAAGCCCTGCCTGAGTGGATCGCCAAGACCCCGCTCAAGCAACTCGAGCGATTGAAAACCATCCGGCCCGAACTTCCCGATTGGTTCAAGCAGGCCACGCCGGCACAACACAAGGAGCTGAGAGGTACACACACAGACAGCTGGACAAAACGTAACGAGGTCGAAAAGGAGCTGGTGCGATTACTGGATGTGCATTCGTTTGCCGAGCCGTTGCTCAAGAAACACATCAAGCAACGCTTCAACATCGATCTGGATGTCAGGGAAACATTCATAAACCTCTATATTCCGACCAGACTTCCAATCATTGACCTGCCCACGGACGGCTCGAAGCAATGGCGTGTGTCGGTACTCGACGCAGCCTTGCATAACTTCGAGGCCTTCGAGGGAGAAGCGGATGCACACCTTCCCGAGTCCGGCTTCATCACCCGCCCTGACGCACATGGCCGGTTCAGGATACTCGACGAGGTCACCGGCAAGCTTCCGGTCGATCAGTTCGTCAGATTTTGCCGGGAGCTGGATATCGGTCGGCGCTACGACACTCATTTGAGGGAGGAGCTGGGCCTGGATGACCATGGCAAACAACTGCGCCTCAAAACCCGGATCATCGCCAGCCAACTAGCGGACCTGAAAGCCGCCCTGCACCACGCAAGCCTGACTCTCGCCATCCAGAAAAGCAGCCTGCAGTCGCTGCTGGCCTTTATCGCGGGGCGGGATAATACATGGCAGACCTATGACCTGACCTTACTCTCGACGCCATTGACCGGCCCGATGATCTTCTCCCCCGGCAATGAGTGGTCAGCCTCCGCCCCCGTCGTCGTCTACATCCCCCACGACCCGAAGGTCCCCCTCAAGGAATACCCGTCGATGGCTGCGTTCATGACGCACCTCACCGAGCAACTACGCGGCGACAGCTACAAAAAGTTTTTCAGCCGCTTTATCCAGCATGACCAACTGGGCAGTTTCCACGGGGCCCTCAAGCGCAAATTTTTCCACGTCATCGAGGATCGCCCTAACGCTCCCGACTTCGGGATGCCGGAGCATGGATTTGTCGAAGATCTGAAACCCATTCCAGACCCAAGCCTGGCCTACTCGGCTTCGAAAATATCCGGGAACGTCCTGGAAGAGCTCTACAGCAAACAATTGAGCAAGATTTTCAAGGACGCGAAAGTCATCGCTGTGTCTACCGACAGTGAAGACCGCAAGACCCGCCATGATCGCTGGGAGCGAATAAAGAGTATCGGCCTTGCGCTGTTCAACGCCGCGCTATTTGTCATCGCGCCCTTTGTGCCGGTCGTCGGCGAGTTGATGTTGCTGCAGATGGCCTATCAACTGCTCGAAGACGCTTACGAAGGTGTACGCGACTGGGTGGCGGGCAAATCGATCGAAGCTTTTGAACATTTGTTCAGCATTGTCGAAACCGTACTCCAAACGGCCGGGTTTGCCGTAGGGGGCAGCATTGTCGGGGATTTGCTCGCCAAACCATCATCGTTCGTCAAAAACCTCAAGCCGGTGATTTCCACCGATGGCAAAACGCGGCTGTGGAACCCTGACCCGGCACCCTATGCACACCCGATCGAAGTACCGCCCACCTCGAAACCCGACACGCTTGGCCTGCACGAACATGACAGCCGCATCTTGCTGAAGCTGGCAGCGGATGACGATTCACAGCACACCCTGGCCCTGAGCAAAACCGCCGAAACAGAACGCTATACCCTGACTCACCCGACCCGGCCCGACGCCTACAGCCCGCGAATGGAACATAACGGCCAGGGCGCCTGGTTGATGGAGGGTGAACAACCGCAAGCCTGGAAAAGCCAGACACTGATGCGGCGCCTGGGCCACGCGACGGATGGCTTCAGCGATGCCGAACTGCAACAGCTGCGCATCATCAGCGGCACCGACGAAGGCGTTCTGCGCAGGGTTCATCTGCAAAACGAAGCCATGCCGCCCTTGCTGGACGATACCCTGGCGCGCTTCAGAACCTACCGGACTGTCGACCAGAATATCGGCCGTATCCGCGCGGGCGAAGCGCTGGACACCCAAGGCGGCTGGTTTGAACCCTTGGTAACCGAACTCGATGGCTGGCCCAGCGACAAAGCCCTGGAAGTATTTGCCGACTTCACGTTAACCGGCACACCTCATCACTACGGGGCATCCGTCCCGTCCGCCGACACCTTCAAGATCTCCCTGGGGGACCTGAACGGCGGAAAACTTGCTCCGCTTATTGTCGAGGGTCTCGATGAGCAACAACTCAGCGACTTGGTCGGATCGCAAACCCCGAAAGAACAGGCGCCACAGCGTCTGAACGAAAAACTGGCCGACCGCGCCGCGAGCCGCAAGATGGAAATCTTCGAGCAGGAATACCGCGGACAAGAACCCAGGCAGGCGCCAGAAGCTGCACTGGTCGAAAACACGATTGCGGACCTGCCTGCGCCCGTGACCCGGGTACTGCTCGACACGGCCACGCCTGCGGAAAACACCGCTATGACCGACCAGAACCGCGTTCCCCTGCGACTCAGGAACCTGGCCGAGGAGATGCACGTACAAACCCGGATAACCCGCGCCCAGGAAGGTCTTCTTGAAGACGACCTGCTCACCCCAGAAGGTGAAACGCTGACGCTCAACACCCTCAAGGCTTTTTCCGACGCGATCAGCGATGTCCACATTGAAGTCCGCGACAAAGTAATTGACGGCACGCTGCGCGCAAACCATCAACCGCAGCGCGCTACGCTCAAACGCGTGCTGGTGCGCACAGAGCCAGGCAAATATGAAGTGCGTGACAATGATGACCAATTGCTGCATCCGGCCAAACGTTTCCACAACGCATTGCTCAATGCCCTGCCGCCGAAAAATCTCGGCAAATTGACCTCGCGCTTCAAGCCAGGCGAAAAATTCAAGCACTGGCTTATCGACCAGTACCAGAACACCCGCCGGATACGCACCGCGATGGATTTCCCAGCCGTCGGCGCCTCCACCGCCCGCGAAACCGAAACCCTGCTGCGTGGGCCGATTTTTAGCCGTTTATGGCCTGCGGCCGAAGCCTTGCCCGCCGAAGTCGACCCGTTGGCTGAACGGCTGAAAAAAATCTACCCGACTCGGGATGAAGAGCAGATCGCCAACATGGTCAGCAGACTCGACTCCGATGAGCAGCTGCAAAAGCTCGCCGAGCTGGAGGACGAGAAGGCACAGCTTTTCGATGAGCTGGACCAGTGGGCGTCCACCCTGCCTCGCCATATCAATGCTCGCAGGATCCTCGCCGCACGACGCGAGATCACCCGTCGAATCAAGGACTCCTGGCTGCGTGGCGAAAAAGAGCAGATCCGCACCAACGGTGAGATATCTCGCGAGGACGTCACACTGAAGCTGGACCAGATATCGTTTGAGGGGGTGAAAATCGAAGATCTCGCGTTGAGCAAAAAGCTGCCCCATGTAATAAAACTGAGCCTGAATCAGTGCAATTTGTCTTCACTCAGCACAGATTTCCTCTCCAACTTCCCTGAGGTTCAGGTGTTGACCGCCGTCGGCAACAACTTGCAAAGCCTGCCTGAGGCCTTGAACGACCTGCCCACATTGCGCGTTATCAATCTTTCGCAAAACAAGATCGTGATTGATCCTGCCTCCGCAGCCAGTCTGCAAAAACCCGCGCTGCTATCTCTGAACCTCAACCAAAACCCCTTGGGGTTCGCTCCCGACGTCAGTCAACTGCCCGCTCTCAAAGCGCTCATGCTGAACAGGACGCAGATCACCGACTGGCCTCGAGGGCTGTTTTCGCACCCAAGAGCCGAGCACTTCGACTTACAAATGCAGGGCAACGAGATAACCACCGTGCCCGACTGCGAAGCCGGATCCCCCGAGGCCTGGATTGTGGCCCGCACGCGCCTGGACCGGCAGAAACTCGATCTGCAAAACGATGACAAGCTCGCCAATTACCGTCGCTCGGTGGGCCTTGATCCTCACCGTACCTACCCGCCGCGGGGCGATAAAGGCAGTGCTTTCTGGGTGAAGGATTATCGCGGAACGGATCTGGAGGCGCTGAGATTCACTTGGGATATTCTGGAAAACGAAGTCGGCTCCCAAGGTTTTTTCGAAGTCATCGCCAAGTTGGAAATAACCGACGACACCCTCTTCCAGACCGACGAGGATCAAGAAGCCTATGAAGAAAACCGCTCTGCACTCACTGACCAGGTCTGGCGAGTGATAGAGGCAGCCAGTGACGACACCGAGCTTCGCGAGAAGCTGTTCACAATGGCCGACGCCCCCACCAACTGTGCAGATGCCGGGGCGCAGATCTTCAATGCCATGGGGATCGAGACCATGCTCTCTGAGTTCTCTCACGCAGGCAGCGATGCGCCGACGCTGGAAAAAAACCTGATCGGCCTGGCCAGGGGCAAAGCACGGCTCAACAAGCTCTACGAAATCGCCCGCGCCGACGTGGCGCAGCGTGTATCGCCTGTAGAAAAGGACGGCCTGGGCCTGCGGTTCACCAGCGAGGTAATCAACGGTGAACCCGGCACGGTGGACGAGGTCGAGGTGCACACGGCCTATCAGGCCCGATTTACCAATAGCCTGGAGCTGCCGTGGGTATCGAAGCACATGGTTTATCGAAACACGGCGAACGTCACCGAACCGCAAATAAAGAATGCCATGCGCCTGGTGCGAGAGGGTGAGCGTAACGGTGGCCTGGTCAATCAGATCCTTGATGTCGAGTTCTGGGACACTTACCTGAGCGACGCCTACGCCGATAGACTCCAGGCCAACGATGAACTCTACGAAGCCCAGGCCGAGCAGCTAGAAGAACTGCGGGACCTGCAACACGAGTGGGTCGAATTCAATACCCGCCTGGAAGACAGGAATCCGGCAAAAAAACAGAGGCTGATCGAGCTCGCCAGCCAGTTGAGCGTGCCTGAAGCTGATGTGCTGACCGCAGGTAAAATGCCGGACAGCACCTATAACCGAGCCTACAGCGCCATCGCCGACCGGCGGAAAGAGCTCAGGCGCCAACTGACCAGTGAAGCGCTCACCCGGGCCCGCCTGGTTTAAMNTPITVVLPRRKIAHHKLIEKALPEWIAKTPLKQLERLKTIRPELPDWFKQATPAQHKELRGTHTDSWTKRNEVEKELVRLLDVHSFAEPLLKKHIKQRFNIDLDVRETFINLYIPTRLPIIDLPTDGSKQWRVSVLDAALHNFEAFEGEADAHLPESGFITRPDAHGRFRILDEVTGKLPVDQFVRFCRELDIGRRYDTHLREELGLDDHGKQLRLKTRIIASQLADLKAALHHASLTLAIQKSSLQSLLAFIAGRDNTWQTYDLTLLSTPLTGPMIFSPGNEWSASAPVVVYIPHDPKVPLKEYPSMAAFMTHLTEQLRGDSYKKFFSRFIQHDQLGSFHGALKRKFFHVIEDRPNAPDFGMPEHGFVEDLKPIPDPSLAYSASKISGNVLEELYSKQLSKIFKDAKVIAVSTDSEDRKTRHDRWERIKSIGLALFNAALFVIAPFVPVVGELMLLQMAYQLLEDAYEGVRDWVAGKSIEAFEHLFSIVETVLQTAGFAVGGSIVGDLLAKPSSFVKNLKPVISTDGKTRLWNPDPAPYAHPIEVPPTSKPDTLGLHEHDSRILLKLAADDDSQHTLALSKTAETERYTLTHPTRPDAYSPRMEHNGQGAWLMEGEQPQAWKSQTLMRRLGHATDGFSDAELQQLRIISGTDEGVLRRVHLQNEAMPPLLDDTLARFRTYRTVDQNIGRIRAGEALDTQGGWFEPLVTELDGWPSDKALEVFADFTLTGTPHHYGASVPSADTFKISLGDLNGGKLAPLIVEGLDEQQLSDLVGSQTPKEQAPQRLNEKLADRAASRKMEIFEQEYRGQEPRQAPEAALVENTIADLPAPVTRVLLDTATPAENTAMTDQNRVPLRLRNLAEEMHVQTRITRAQEGLLEDDLLTPEGETLTLNTLKAFSDAISDVHIEVRDKVIDGTLRANHQPQRATLKRVLVRTEPGKYEVRDNDDQLLHPAKRFHNALLNALPPKNLGKLTSRFKPGEKFKHWLIDQYQNTRRIRTAMDFPAVGASTARETETLLRGPIFSRLWPAAEALPAEVDPLAERLKKIYPTRDEEQIANMVSRLDSDEQLQKLAELEDEKAQLFDELDQWASTLPRHINARRILAARREITRRIKDSWLRGEKEQIRTNGEISREDVTLKLDQISFEGVKIEDLALSKKLPHVIKLSLNQCNLSSLSTDFLSNFPEVQVLTAVGNNLQSLPEALNDLPTLRVINLSQNKIVIDPASAASLQKPALLSLNLNQNPLGFAPDVSQLPALKALMLNRTQITDWPRGLFSHPRAEHFDLQMQGNEITTVPDCEAGSPEAWIVARTRLDRQKLDLQNDDKLANYRRSVGLDPHRTYPPRGDKGSAFWVKDYRGTDLEALRFTWDILENEVGSQGFFEVIAKLEITDDTLFQTDEDQEAYEENRSALTDQVWRVIEAASDDTELREKLFTMADAPTNCADAGAQIFNAMGIETMLSEFSHAGSDAPTLEKNLIGLARGKARLNKLYEIARADVAQRVSPVEKDGLGLRFTSEVINGEPGTVDEVEVHTAYQARFTNSLELPWVSKHMVYRNTANVTEPQIKNAMRLVREGERNGGLVNQILDVEFWDTYLSDAYADRLQANDELYEAQAEQLEELRDLQHEWVEFNTRLEDRNPAKKQRLIELASQLSVPEADVLTAGKMPDSTYNRAYSAIADRRKELRRQLTSEALTRARLVNANANANANA
D1-35_003361221aruCCOG4992Succinylornithine transaminase/acetylornithine aminotransferaseATGTCCGTTGAGCAAGCCGCGGTCCAACGCGCCGATTTCGACCAGGTAATGGTTCCCAACTATGCACCTGCTGCCTTTATCCCTGTGCGTGGTGCCGGTTCCCGCGTGTGGGACCAGTCCGGTCGCGAGCTGATCGATTTTGCTGGCGGTATCGCAGTCAACGTACTGGGCCATGCCCATCCGGCGCTGGTCGGAGCCCTGACCGAGCAGGCCAACAAGCTGTGGCATGTGTCGAACGTATTCACCAACGAGCCGGCCTTGCGCCTGGCCCACAAGCTGGTCGACGCGACCTTTGCCGAGCGTGCGTTCTTCTGCAACTCCGGCGCCGAAGCCAACGAGGCCGCGTTCAAGCTGGCCCGTCGCGTCGGCTTTGATCGGTTTGGCAGCGAGAAATACGAGATCATCGCCGCGCTCAATAGCTTCCACGGGCGGACCCTGTTCACCGTCAACGTTGGCGGGCAGTCGAAGTACTCCGACGGTTTCGGTCCTAAAATCACCGGCATCACCCACGTTCCTTATAACGACCTTGCGGCTTTGCAGGCGGCGGTCTCGGACAAGACCTGCGCCGTGGTGCTGGAGCCGATCCAGGGCGAGGGCGGCGTGTTGCCGGGCGATCTGGCTTACCTGCAAGGCGCCCGCGAGCTGTGCGACGCACACAATGCGCTGCTGGTATTTGACGAAGTGCAGACCGGCATGGGCCGCAGTGGCGAATTGTTCGCCTACATGCACTACGGTGTGGTTCCGGACATCCTCACCAGCGCCAAGAGCCTGGGCGGTGGTTTCCCGATCGCGGCGATGCTCACCACCGAAGCGCTGGCCAAGCACCTGGTGGTCGGCACCCACGGCACCACCTATGGCGGCAACCCGCTGGCCTGTGCGGTGGCCGAAGCGGTGATCGACGTGGTCAATACGCCTGAAGTGCTCGGTGGCGTCAAAGCCAAGCATCAGAAATTCAAGGCGCGCCTGGAGCAGATCGGCGAGAAGTACGGCCTGTTTACCCAGGTGCGCGGTCTGGGCCTGTTGATCGGCTGCGTGCTGAACGACGCCTGGAAAGGCAAGGCCAAGGACATCTTCAACGCCGCCGAGCAGGAAGGCCTGATGATTCTGCAAGCCGGCCCGGACGTGATTCGTTTCGCCCCGAGCCTGGTGGTGGAAGACGCCGACATCGACGCCGGCCTGGACCGCTTCGAGCGGGCTGCGGCGAAGCTGACGCAAGCCTGAMSVEQAAVQRADFDQVMVPNYAPAAFIPVRGAGSRVWDQSGRELIDFAGGIAVNVLGHAHPALVGALTEQANKLWHVSNVFTNEPALRLAHKLVDATFAERAFFCNSGAEANEAAFKLARRVGFDRFGSEKYEIIAALNSFHGRTLFTVNVGGQSKYSDGFGPKITGITHVPYNDLAALQAAVSDKTCAVVLEPIQGEGGVLPGDLAYLQGARELCDAHNALLVFDEVQTGMGRSGELFAYMHYGVVPDILTSAKSLGGGFPIAAMLTTEALAKHLVVGTHGTTYGGNPLACAVAEAVIDVVNTPEVLGGVKAKHQKFKARLEQIGEKYGLFTQVRGLGLLIGCVLNDAWKGKAKDIFNAAEQEGLMILQAGPDVIRFAPSLVVEDADIDAGLDRFERAAAKLTQAPGPT0014253_840DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014253-argD|pqqI-K00821NANA
D1-35_003371020astA_1COG3138Arginine N-succinyltransferase subunit alphaATGCTGGTGATGCGCCCCGCGCAAATGGCTGACCTGGGCGAGGTACAGCGGCTGGCTGCGGACAGTCCGATCGGTGTCACTTCCTTGCCGGACGACGTGGAACGCCTGAGCGACAAGATCGCTGCAAGTGAAGCCTCGTTCGCCGCCGAAGTCAGTTTTAACGGCGAGGAAAGCTATTTCTTCGTCCTCGAAGACACCACCACCGGCAAGCTGGTCGGCTGTTCGGCCATCGTCGCGTCGGCGGGCTATTCCGAGCCGTTCTACAGCTTTCGCAACGAGACGTTCGTCCATGCCTCCCGCGAGCTGAAGATCCACAACAAGATTCACGTCCTGTCCCAGTGCCACGACCTGACCGGTAACAGTCTGTTGACCAGTTTCTACGTGGTCCCGGAACTGGTCGGCTCGCCCTGGGCGGAGCTCAACTCCCGCGGACGCCTGCTGTTCGTGGCCAGCCATCCGGAGCGCTTCGCCGATTCGGTGGTGACCGAGATCGTCGGCTACAGCGACGAGAATGGCGATTCACCGTTCTGGGACGCCATCGGTCGCAATTTCTTCGACCTCAATTACGCCGCCGCCGAGCGCCTGTGCGGGCTGAAAAGCCGGACCTTCCTCGCCGAGCTGATGCCGCATTACCCGATCTACGTGCCGCTGTTGCCGGACGCCGCCCAGGAAGCCATGGGCCAGGTCCACCCGCGTGCACAGATCACCTTCGACATCCTGATGCGCGAAGGTTTCGAGACCGATCACTACATCGACATCTTCGACGGCGGTCCGACCTTGCATGCGCGTGTCTCGGGGATCCGCTCGATCGCCCAGAGCCGCGTGGTGCCGGTCAAGATCGGTGAAACGGTGAAGGGCGTGGGCCGCCAGTACCTGGTGGCCAATGCCCAACTGCAGGATTACCGCGCCGTGCTGCTCGAACTCGATTACGCGCCGGGCAAGCCCGTGACACTGGATATGGACGCGGCCGAAGCCTTGGGCGTCGGCGAGGGTGCCAGCGTGCGCCTGGTAGCCGTATAAMLVMRPAQMADLGEVQRLAADSPIGVTSLPDDVERLSDKIAASEASFAAEVSFNGEESYFFVLEDTTTGKLVGCSAIVASAGYSEPFYSFRNETFVHASRELKIHNKIHVLSQCHDLTGNSLLTSFYVVPELVGSPWAELNSRGRLLFVASHPERFADSVVTEIVGYSDENGDSPFWDAIGRNFFDLNYAAAERLCGLKSRTFLAELMPHYPIYVPLLPDAAQEAMGQVHPRAQITFDILMREGFETDHYIDIFDGGPTLHARVSGIRSIAQSRVVPVKIGETVKGVGRQYLVANAQLQDYRAVLLELDYAPGKPVTLDMDAAEALGVGEGASVRLVAVPGPT0020090_1023DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020090-astA-K00673NANA
D1-35_003381026aruG_1COG3138Arginine N-succinyltransferase subunit betaATGATCGTTCGTCCCGTACGCAGCAGCGATTTACCCGCGCTGATCGCCCTGGCCCGCAGCACCGGCACCGGCCTGACCACCTTGCCGGCCAACGAAGAGCGCCTGGCGCATCGGGTCGGCTGGGCCGAGAAGACCTTTCGCGGCGAAGCCGGGCGCGGCGATGCGGACTACCTGTTCGTGCTTGAAGACGACGACGGTCGCGTGGTGGGCATTTCCGCCATCGCCGGTGCCGTGGGGCTGCGCGAGCCCTGGTACAACTTCCGGGTCGGCCTGACGGTCAGCGCTTCCCAGGAGCTGAACATCTACCGGGAAATCCCGACGCTGTTCCTGGCCAACGACCTGACCGGCAATTCGGAACTGTGCTCGCTGTTCCTGCACGCCGACTACCGCAACGGCCTCAACGGCCGCATGCTGGCCAAGGCGCGGCTGCTGTTCATCGCCGAATTCTCCCAGCTGTTCGGTAACAAAATCATCGCCGAGATGCGCGGCATGTCCGACGAAAACGGCCGTTCGCCGTTCTGGGAAAGCCTCGGTCGGCACTTCTTCAAGATGGAATTCAGCCAGGCCGATTACCTGACCGGCGTGGGCAACAAGGCTTTCATTGCCGAATTGATGCCCAAGTTCCCGCTGTACACCTGCTTCCTGTCCGAGGATGCCCGGGCCGTGATCGGCCAGGTCCATCCCGACACCGAACCGGCGCTGTCGATGCTCAAGAGCGAAGGCTTCAGCTATCAGGGCTATGTCGACATCTTCGACGCCGGCCCGGCCGTCGAATGCGAGACCGGCAAGATCCGCGCGATTCGCGACAGCCAGGCGCTGGTGCTGGCCATCGGCACGCCGGGCGATGACGCCACGCCGTTCCTCATCCATAACCGCAAGTGCCAGGACTGCCGCATCACCGCGGCGCCTGCGCGCTTCGCCGCGGGCACCCTGGTGGTCGATCCGCTGACCGCCAAACGTCTTCAACTCAACGCCGGCGACCAGGTGCGTGCCGTGGCGTTGTCCGCCGCTCGGGAGACCAAATAAMIVRPVRSSDLPALIALARSTGTGLTTLPANEERLAHRVGWAEKTFRGEAGRGDADYLFVLEDDDGRVVGISAIAGAVGLREPWYNFRVGLTVSASQELNIYREIPTLFLANDLTGNSELCSLFLHADYRNGLNGRMLAKARLLFIAEFSQLFGNKIIAEMRGMSDENGRSPFWESLGRHFFKMEFSQADYLTGVGNKAFIAELMPKFPLYTCFLSEDARAVIGQVHPDTEPALSMLKSEGFSYQGYVDIFDAGPAVECETGKIRAIRDSQALVLAIGTPGDDATPFLIHNRKCQDCRITAAPARFAAGTLVVDPLTAKRLQLNAGDQVRAVALSAARETKPGPT0020090_818DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020090-astA-K00673NANA
D1-35_003391467astDCOG1012N-succinylglutamate 5-semialdehyde dehydrogenaseATGAAATCGTTGTACATCGCGGGAAGCTGGCTGGAAGGCCAGGGCGACGTCTTTGAGTCGTTGAACCCGGTCACCCAGCAAGTGTTGTGGACGGGCAAGGGCGCCACCGCGGCGCAGGTCGAGTCGGCCGTGCAGGCGGCGCGCCAGGCGTTCCCGGAGTGGGCGCGGCGCTCGCTGGATGAACGCATCCAGGTGCTCGAAGCCTTCGCCGGCACCTTGAAGACGCAGGCTGACGAATTGGCCCGTTGCATCGGTGAGGAAACCGGCAAGCCGCTGTGGGAAGCCGCCACCGAAGTCACCAGCATGATCAACAAGGTGGGGATTTCGGTACAGAGCTACCGCGAGCGCACCGGCGAAAAGAGCGGCCCCCTGGGCGACGCCACCGCCGTGCTGCGGCACAAGCCCCACGGTGTGGTGGCGGTATTCGGCCCTTACAACTTCCCCGGCCATTTGCCCAACGGGCACATCGTGCCGGCGCTGCTGGCGGGTAACTGCGTGTTGTTCAAACCGAGCGAGCTGACCCCGAAAGTCGCCGAGCTGACGGTCCAGTGCTGGGTCGAGGCCGGCCTGCCGGCGGGCGTGCTGAACCTGCTGCAGGGCGCGCGGGAAACCGGTATCGCCCTGGCGGCGGATCCGGGCATCGACGGGCTGTTCTTCACCGGTTCCAGTCGCACCGGCAACCTGCTGCATCAACAATTCTCCGGTCGTCCGGACAAGATCCTCGCGCTGGAAATGGGCGGCAACAATCCACTGGTGGTGGACGAAGTGGCCGACGTCGATGCGGCGGTCTATACGATCATCCAGTCGGCGTTCATTTCCGCCGGCCAGCGTTGCACCTGCGCGCGCCGCCTGTTGGTGCCGGAAGGTGCCTGGGGCGATGCCTTGCTGGCGCGCCTGGTGCAGGTCAGCTCGACTATCGAAGTCGGCGCCTTTGACCAGCAACCGGCACCGTTCATGGGCTCGGTGGTTTCCTTAGGCGCGGCGAAGGCGCTGATGGACGCGCAGAATCATTTGCTGGGCAAGGGCGCCGCGCCGCTGCTCGCCATGACCCAGCCACAGCCCCAGGCCGCGTTGCTGACACCGGGTATCCTCGACGTGACCGCCGTGACCGAGCGCCCCGACGAAGAGTTGTTCGGGCCGCTGCTGCAGGTGATCCGCTACAAGGATTTCGCCGCCGCGATCAGCGAAGCCAACAATACCCAATATGGCCTGGCCGCCGGGTTGCTCTCGGATTCGCAAGAACGTTACGACCAGTTCTGGCTGCAAAGCCGCGCCGGCATCGTCAACTGGAACAAACAGCTGACCGGCGCCGCCAGCAGCGCGCCGTTCGGCGGCATCGGCGCCTCGGGCAACCACCGCGCCAGTGCTTATTACGCGGCGGATTACTGCGCGTACCCGGTGGCGTCGCTGGAGACACCAAGCCTGGTGATGCCGGCCAGCCTGACACCTGGCGTGCGAATGGCGTAGMKSLYIAGSWLEGQGDVFESLNPVTQQVLWTGKGATAAQVESAVQAARQAFPEWARRSLDERIQVLEAFAGTLKTQADELARCIGEETGKPLWEAATEVTSMINKVGISVQSYRERTGEKSGPLGDATAVLRHKPHGVVAVFGPYNFPGHLPNGHIVPALLAGNCVLFKPSELTPKVAELTVQCWVEAGLPAGVLNLLQGARETGIALAADPGIDGLFFTGSSRTGNLLHQQFSGRPDKILALEMGGNNPLVVDEVADVDAAVYTIIQSAFISAGQRCTCARRLLVPEGAWGDALLARLVQVSSTIEVGAFDQQPAPFMGSVVSLGAAKALMDAQNHLLGKGAAPLLAMTQPQPQAALLTPGILDVTAVTERPDEELFGPLLQVIRYKDFAAAISEANNTQYGLAAGLLSDSQERYDQFWLQSRAGIVNWNKQLTGAASSAPFGGIGASGNHRASAYYAADYCAYPVASLETPSLVMPASLTPGVRMANANANANANA
D1-35_003401347astBCOG3724N-succinylarginine dihydrolaseATGAAATCCTATGAAGTCAACTTTGACGGTCTAGTGGGGCCGACCCATAACTACGGCGGGCTCTCGTACGGCAACGTCGCGTCCCAGAGCAACAGCCAGCAATCCTCGAACCCCAAGGAGGCGGCGCTGCAAGGCCTGGCGAAAATGAAGGCGCTGATGGACATGGGCTTTCAGCAGGGCGTGCTGGCGCCGCAGGAGCGTCCGGACGTGGCGGCCTTGCGTCGGTTGGGCTTTGCCGGCAGCGATGCGCAGGTCATCCAGCGCGCCGCGAAAGAAGCGATGCCGCTGCTGGTTGCCAGTTGCTCGGCCTCGAGTATGTGGGTGGCCAACGCCGCCACCGTCAGCCCGAGCGCCGACACCGCTGACGGCCGCGTGCATTTCACCGCCGCCAACCTCAATTGCAAGTACCACCGCAGCATCGAGCACCCGACCACCAGCCGTGTGTTGGGCGCGATGTTCGCCGACCAGCAGCACTTCGCCCATCACGCCGCGTTGCCCGCGGTGGCGCAGTTCGGCGATGAAGGCGCGGCCAACCACACGCGATTCTGCCGTGCCTATGGCGAGGCCGGCGTCGAGTTTTTTGTCTTCGGCCGCAGCGCCTTCGACAGCCGTTACCCGTCGCCACAGAAATACCCGGCGCGCCAGACCCTTGAAGCGTCCCGCGCCGTTGCCCGCCTGCACGGCCTGAGCGAGGAGGGCGTGGTGTACGCCCAACAGAACCCGGCGGTGATCGACCAGGGCGTCTTCCACAACGACGTGATCGCGGTCGGTAACGGCGAAGTGTTGTTCTATCACGAGGACGCGTTCCTCGACACAGACCGGATGCTGGCCGAGCTGAGCAGCAAGATCGCCAAAGTCGGTGGGAAATTTCAGCCAGTGTGCGTACCGCGTTCGGCGGTCACCGTGGATGATGCGGTACGTTCCTACCTGTTCAATAGCCAGTTGCTGTCGCGTGCCGACGGCTCGATGCTGTTGATCGTGCCGGAAGAATGCCGTGGCAACGAACGCGTCTGGAACTACCTGCAAGGCCTGACGGGGTCTGGCGGGGTGATTCGCGAAGTGAAGGTCTTCGATCTCAAGCAAAGCATGCAGAACGGCGGCGGCCCCGCTTGCCTGAGGTTGCGCGTGGCGCTTAACGAAACCGAACTGGCGGCCGTCAACCCAGGGGTTATCATGACCGCGCCGCTGTATGAGTCGTTGACCCAATGGGTCGAGCGCCATTACCGCGACCGCATGACCGAAAACGACCTGGCGGACCCGCAATTGTTGCTTGAGTGCCGGTCGGCACTGGATGAACTGACACAAATCCTTAAACTTGGCGCGGTTTATCCTTTCCAGATCAATTGAMKSYEVNFDGLVGPTHNYGGLSYGNVASQSNSQQSSNPKEAALQGLAKMKALMDMGFQQGVLAPQERPDVAALRRLGFAGSDAQVIQRAAKEAMPLLVASCSASSMWVANAATVSPSADTADGRVHFTAANLNCKYHRSIEHPTTSRVLGAMFADQQHFAHHAALPAVAQFGDEGAANHTRFCRAYGEAGVEFFVFGRSAFDSRYPSPQKYPARQTLEASRAVARLHGLSEEGVVYAQQNPAVIDQGVFHNDVIAVGNGEVLFYHEDAFLDTDRMLAELSSKIAKVGGKFQPVCVPRSAVTVDDAVRSYLFNSQLLSRADGSMLLIVPEECRGNERVWNYLQGLTGSGGVIREVKVFDLKQSMQNGGGPACLRLRVALNETELAAVNPGVIMTAPLYESLTQWVERHYRDRMTENDLADPQLLLECRSALDELTQILKLGAVYPFQINNANANANANA
D1-35_00341288hypothetical proteinATGAGCGATACCCTGCAGCTGATCCTAGAAGACACCGACGGCACGCAACTGGAAACCTCCTGCACCCGCGTCGCGGTGATGTGGCAGGGCAAGGAGCTGTGGATCCAGCAGGACGGCCGCGGCCAGCTGTTGATCGGCGTCGACGTCGAGGAAGGGGACGCGGAATACGCCAACCTCTTGCTGCGTCCATTGGCGACCAACCTGGTCAGCCTGCAACTGGAAATGGAACCGGCCGACATCGGCGATGACGACCACGTCCATGGCCCTGACTGCGGCCACGATCACTAAMSDTLQLILEDTDGTQLETSCTRVAVMWQGKELWIQQDGRGQLLIGVDVEEGDAEYANLLLRPLATNLVSLQLEMEPADIGDDDHVHGPDCGHDHNANANANANA
D1-35_003421008astECOG2988Succinylglutamate desuccinylaseATGCTCGCCCTCGGCAAACTGCTTGAACTGACCCTCGCCGGCCGCGAACCGGCGGAGAAGACTCAACTGACTGTCGAAGGCGTACGGATGCGCTGGTTGAGCGAGGGCGCGCTGGAGGTCAAGCCGCCCGAAGCCCGGGACAACGGCCTGGACCTGCTGCTGTCGGCCGGTATCCATGGCAATGAAACCGCGCCGATCGAGTTGCTCGATCGACTGCTGCACGACATTGCCCGTGGCGACCTGAAGCCGCGGGCACGCATTCTATTTCTGTTCGGCAACCCCGAGGCGATTCGTCGCGGCGAGCGTTTTGTCGAGCAGGACGTCAACCGGCTGTTCAACGGCCGCCACGAACTGAGCGGCGGCCCCGAGGCGTTGCGCGCCTGTGAGCTGGAACGGCTGGCTGCGAGTTTCTTCAGCGTGCCGGACCGCAGCCGTCTGCACTACGACTTGCACACCGCCATCCGCGGTTCGAAGATCGAGCAGTTCGCCCTGTACCCCTGGAAGGAAGGCCGCCAACATTCACGTCGCGAGCTGGCGCGCCTGCGCGCGGCGGGCATGGAAGCGGTGTTGCTGCAGAACAAACCGTCCATCGTCTTCAGCGCGTACACCTACGATCAGCTGGGCGCCGAGTCCTTCACTCTGGAACTGGGCAAGGCCCGGCCGTTCGGGCAGAACGGTGGCGTCAACGTCAACCAGCTGGAAACCCGCCTGCACCAGGTCATCGAAGGCAACGAGCCGGAGCTGGAAGACAGCCTGGATGGTCTGCAACTGTTCAGCGTGGCGCGGGAAATCATCAAGCACAGCGACAGCTTCCGCCTGAACCTGCCGGCGGACATCGAGAACTTCTCGGAACTTGAAAAAGGTTACGTCCTGGCCGAGGACATCGCCCAGACCCGCTGGGTGATCGAAGAAGAGGGCGCGCGGATCATCTTCCCGAACCCCAAGGTCAAGAATGGCTTGCGCGCGGGCATCCTGATCGTGCCCGCGACGGACGAGAACCTGGCCTAAMLALGKLLELTLAGREPAEKTQLTVEGVRMRWLSEGALEVKPPEARDNGLDLLLSAGIHGNETAPIELLDRLLHDIARGDLKPRARILFLFGNPEAIRRGERFVEQDVNRLFNGRHELSGGPEALRACELERLAASFFSVPDRSRLHYDLHTAIRGSKIEQFALYPWKEGRQHSRRELARLRAAGMEAVLLQNKPSIVFSAYTYDQLGAESFTLELGKARPFGQNGGVNVNQLETRLHQVIEGNEPELEDSLDGLQLFSVAREIIKHSDSFRLNLPADIENFSELEKGYVLAEDIAQTRWVIEEEGARIIFPNPKVKNGLRAGILIVPATDENLAPGPT0020091_359DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020091-astE-K05526NANA
D1-35_00343510ribH_16,7-dimethyl-8-ribityllumazine synthaseATGCAACCCACCGCAATCGACAGCAAGACCAAAACCCATCCGGGCGAGCGCGTCGCGTTCATCCAGGCCTGCTGGCACAAGGAAATCGTCGACCAGAGCCGTAAAGGCTTCGTCACTGAGATGATCAGCCAGGGTTATCAGGAAAGTGACATCGACTTCTTCGAAGTCGGCGGCGCGTTCGAAATCCCGCTGCACGCCAAGCTGCTGGCCAAGTCAGGTCGTTACGCCGGCATCGTCGCCGCCGGCCTGGTGGTGGACGGTGGCATCTATCGCCACGAGTTCGTCGCCCAATCGGTGATCAGCGGCCTGATGCAGGTCCAGTTGGAAACCGAAGTGCCGGTATTTTCGGTCGTGTTGACGCCGCATCACTTCCACGCTGGCGAAGAACATCAGAAATTCTTCTTCGAGCACTTCGTGCACAAGGGCCAGGAAGCGGCGAAGACCTGTGCCGATACGCTGCACAAGACGCGGGCGTTGCGCCGCAGTGAGCAGCGGGCGGTAGCGGTCTAAMQPTAIDSKTKTHPGERVAFIQACWHKEIVDQSRKGFVTEMISQGYQESDIDFFEVGGAFEIPLHAKLLAKSGRYAGIVAAGLVVDGGIYRHEFVAQSVISGLMQVQLETEVPVFSVVLTPHHFHAGEEHQKFFFEHFVHKGQEAAKTCADTLHKTRALRRSEQRAVAVPGPT0008605_767DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008605-ribH|RIB4-K00794NANA
D1-35_003451005ltaE_1COG2008Low specificity L-threonine aldolaseATGAGCGCTATCGACCTTCGCAGCGACACGGTGACCCAACCTTGCGCCGGCATGCTGGATGCCATGGCCAGCGCGCCGACCGGCGACGATGTGTATGGCGAAGACCCGACCGTCAATCGTCTCGAAGCCGAGCTGGCCGCGCGCCTGGGGTTCGCGGCGGCGTTGTTCGTGCCCACGGGCACCATGAGCAACCTGCTGGGGTTGATGGCCCACTGTGAGCGCGGCGATGAATACATCGTCGGCCAGCAGGCCCACACCTACAAATACGAGGGTGGCGGTGCGGCGGTGCTCGGTTCGATCCAGCCCCAGCCCCTGGAAGTGCAGGCGGACGGCTCGCTGGACTTGGCGCAAGTGGCTGCCGCGATCAAGCCCGACGATTTCCATTTTGCCCGCACCCGCCTGCTGGCCCTGGAAAACACCATGCAGGGCAAGGTCTTGCCGCTGGAATACCTGGCGCAAGCCCGGCGTTTCACTCGGCAACATGGCCTGGCGCTGCACCTGGACGGCGCGCGGCTGTACAACGCCGCCGTCAAGCTGAACGTGGACGCCCGGGAGATCACCCAGCATTTCGATTCGGTGTCGGTGTGCCTGTCCAAGGGGCTCGGTGCCCCGGTGGGCTCGGTGCTGTGCGGCACTGACGAGTTGATCGGCAAGGCCCGTCGGCTGCGCAAGATGGTCGGTGGCGGCATGCGCCAGGCCGGGATCCTCGCGGCGGCGGGGCTGTATGCCCTGGAACATAACGTCCGACGCCTGGCCGACGATCACGCCAATGCCCAGCGGCTTGCCGAGGGCTTGCGTGCGGCGGGTTATTCCGTCGAGCCGGTGCAGACCAACATGGTCTACGTGCAGATCGGCGAGCGGGCCGAGGCGATAAAGGCCTATGCCGCCGAGCGACGCATCCAGCTCAGTGCCGCGCCCCGTCTGCGGATGGTCACCCACATGGATGTCGGCGCCGGGCAAATCGACCAGGTGATCGACACTTTCGTCGAATTTTCCCGCAACTGAMSAIDLRSDTVTQPCAGMLDAMASAPTGDDVYGEDPTVNRLEAELAARLGFAAALFVPTGTMSNLLGLMAHCERGDEYIVGQQAHTYKYEGGGAAVLGSIQPQPLEVQADGSLDLAQVAAAIKPDDFHFARTRLLALENTMQGKVLPLEYLAQARRFTRQHGLALHLDGARLYNAAVKLNVDAREITQHFDSVSVCLSKGLGAPVGSVLCGTDELIGKARRLRKMVGGGMRQAGILAAAGLYALEHNVRRLADDHANAQRLAEGLRAAGYSVEPVQTNMVYVQIGERAEAIKAYAAERRIQLSAAPRLRMVTHMDVGAGQIDQVIDTFVEFSRNPGPT0020465_3502DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020465-ltaE-K01620NANA
D1-35_003462622alaSCOG0013Alanine--tRNA ligaseATGAAAAGCGCAGAAATCCGTGAAGCCTTCCTTCGCTTCTTCGAAGAGCAAGGCCACACCCGAGTAGCCTCCAGCTCTTTGATTCCGGGCAACGACCCGACCCTGCTGTTCACCAACGCGGGGATGAACCAGTTCAAGGACTGCTTCCTGGGCCAGGAAAAACGTGCCTACACCCGCGCGGTGAGCAGCCAGAAATGCGTGCGTGCCGGTGGCAAGCACAACGACCTGGAAAACGTCGGCTATACCGCTCGTCACCACACCTTTTTCGAAATGCTGGGTAACTTCAGCTTCGGTGACTATTTCAAGCGCGACGCCATCACCTTCGCCTGGACATTCCTGACTTCCGAAAAGTGGCTGAACCTGCCGAAGGAAAAGCTCTGGGTCACGGTCTACGCCACCGACGACGAAGCCTACGACATCTGGACCAAAGAGGTCGGTGTCCCGGCTGAACGCATGGTGCGCATCGGCGACAACAAAGGCGCGCCTTACGCTTCCGACAACTTCTGGACCATGGGCGATACCGGCCCGTGCGGCCCTTGCACCGAGATCTTCTACGATCACGGCGCCGACATCTGGGGCGGCCCACCCGGCTCGCCGGAAGAAGACGGCGACCGTTACATCGAGATCTGGAACAACGTGTTCATGCAGTTCAACCGCACCGCCGACGGCGTGTTGCATCCGCTGCCGGCGCCGTCGGTAGACACCGGCATGGGCCTGGAGCGGATCAGTGCGGTGTTGCAGCACGTCCACTCCAACTACGAGATCGACCTGTTCCAGAGCCTGCTGGCCGCTTCGGCCAAGGCCATCGGTTGCACCAACGACAACCAGGCCTCGCTGAAAGTGGTGGCCGACCATATCCGTTCCTGCGGCTTCCTGATCGCCGACGGCGTGCTGCCTTCCAACGAAGGTCGCGGCTATGTGCTGCGCCGGATCATTCGTCGCGCCTGCCGTCACGGCAACAAGCTGGGCGCCAAGGGCAGCTTCTTCTATCAGATCGTCGCGGCGCTCGTGGCCGAGATGGGCGAGGCCTTTCCGGAGCTCAAGACTCAGCAGGCGCACATCGAACGTGTCCTCAAGGGTGAAGAAGAGCAGTTCGCCAAGACCCTGGAGCAGGGCCTGAAGATCCTCGAGCAGGATCTGGCCGAGCTCAAGGGCAACGTGGTTCCTGGTGACGTGGTGTTCAAGCTGTACGACACCTATGGCTTCCCGATGGACCTGACCGGCGACATCGCCCGCGAACGCAACCTGACCCTCGACGAGGAAGGTTTCGAGCGCGAGATGCAAGCCCAGCGCGTGCGTGCGCGCTCCGCCAGCTCCTTCGGCATGGACTACAACAGCCTGGTCAAGGTTGACGTGGCCACCGAATTTACCGGTTACGCCGCGACCACCGGCTCGGCCAAGATCGTGGCGATCTACAAGGACGGGCAATCGGTCGACATCCTGAGCGAAGGCCAGGAAGGCGTGATCGTGCTGGACACGACACCTTTCTACGCCGAGTCCGGCGGCCAGATCGGCGACAGCGGCTACTTGCAGGCCGGCAACTCGCGCTTCGATGTGCGTGACACCACCAAGACCGGCGGCGCGTTCCTGCACCACGGCGTGCTGGCCTCCGGCAGCCTGATGGTCGCAGCGCCCGTGGCCGCCCATGTCGACGCCGAGGTCCGTCACGCGACTGCGTTGAACCACTCCGCGACACACTTGCTGCACGCAGCGTTGCGCCAGGTGCTGGGCGAACACGTTCAGCAGAAGGGCTCGTTGGTGGACAGCCAGCGCCTGCGCTTCGACTTCAGCCATTTCGAAGCGATCAAGCCTGAGCAACTCAAGGCGCTGGAAGACATCGTCAACGCCGAGATCCGCAAGAACTCCCCGGTAGAGACCGAGGAAACCGACATCGAGACCGCCAAGCGCAAAGGCGCGATGGCGCTGTTCGGCGAGAAGTACGGCGATAACGTGCGCGTGCTGAGCATGGGCGATTTCTCGGTGGAGCTGTGCGGTGGCATCCACGCCAATCGTACCGGCGACATCGGCCTGCTGAAGATCATCAGCGAAGGCGGCGTGGCCTCCGGTGTGCGGCGTATCGAGGCGGTCACTGGCGCTGCTGCGCTGGCCTACCTCAACGCGGCTGAAGAACAACTCAAGGAAGCGGCGAGCCTGATCAAGGGCAGCCGTGACAACCTGATCGACAAGTTGTCGGCTGTGCTGGAACGCAACCGCCTGCTGGAAAAGCAGCTTGAACAGTTGCAGGCCAAGGCTGCCAGCGCCGCGGGCGACGATCTGTCGGCCCAGGCGGTGGACGTCAAGGGTGTGAAAGTGCTGGCTGTGCGTCTCGACGGCCAGGACGGCAAGGCGCTGCTGGCGCTGATCGATCAACTGAAAAACAAACTCGGCCGCGCAGTGATCCTGCTCGGCGGTGTCCATGAGGAAAAGGTCGTTCTCGTCGCAGGCGTGACCAAAGACCTGACTGGCCAACTCAAAGCCGGTGATTTGATGAAGCAGGCCGCTGCGGCAGTGGGCGGGAAGGGCGGTGGTCGTCCGGACATGGCGCAAGGCGGCGGTACCGACGCCAGCGCCCTGGACGCGGCACTGGCCCAGACCGTTGCATTTGTAGAGCAGGGCATTTAAMKSAEIREAFLRFFEEQGHTRVASSSLIPGNDPTLLFTNAGMNQFKDCFLGQEKRAYTRAVSSQKCVRAGGKHNDLENVGYTARHHTFFEMLGNFSFGDYFKRDAITFAWTFLTSEKWLNLPKEKLWVTVYATDDEAYDIWTKEVGVPAERMVRIGDNKGAPYASDNFWTMGDTGPCGPCTEIFYDHGADIWGGPPGSPEEDGDRYIEIWNNVFMQFNRTADGVLHPLPAPSVDTGMGLERISAVLQHVHSNYEIDLFQSLLAASAKAIGCTNDNQASLKVVADHIRSCGFLIADGVLPSNEGRGYVLRRIIRRACRHGNKLGAKGSFFYQIVAALVAEMGEAFPELKTQQAHIERVLKGEEEQFAKTLEQGLKILEQDLAELKGNVVPGDVVFKLYDTYGFPMDLTGDIARERNLTLDEEGFEREMQAQRVRARSASSFGMDYNSLVKVDVATEFTGYAATTGSAKIVAIYKDGQSVDILSEGQEGVIVLDTTPFYAESGGQIGDSGYLQAGNSRFDVRDTTKTGGAFLHHGVLASGSLMVAAPVAAHVDAEVRHATALNHSATHLLHAALRQVLGEHVQQKGSLVDSQRLRFDFSHFEAIKPEQLKALEDIVNAEIRKNSPVETEETDIETAKRKGAMALFGEKYGDNVRVLSMGDFSVELCGGIHANRTGDIGLLKIISEGGVASGVRRIEAVTGAAALAYLNAAEEQLKEAASLIKGSRDNLIDKLSAVLERNRLLEKQLEQLQAKAASAAGDDLSAQAVDVKGVKVLAVRLDGQDGKALLALIDQLKNKLGRAVILLGGVHEEKVVLVAGVTKDLTGQLKAGDLMKQAAAAVGGKGGGRPDMAQGGGTDASALDAALAQTVAFVEQGINANANANANA
D1-35_003471242COG0527Aspartate kinaseATGGCTTTGATCGTACAGAAATTTGGAGGCACCTCGGTCGGCACCGTCGAGAGAATCGAACAAGTCGCCGACAAGGTTAAGAAATTCCGTGACGCTGGCGATGACCTGGTGGTCGTGCTGTCGGCAATGAGCGGCGAGACCAACCGTCTGATCGATCTGGCCAAGCAAATCAGCGGCGACCAGCAACCGGTCCCCCGTGAGCTGGACGTAATCGTTTCCACTGGCGAGCAGGTGACCATCGCCTTGCTGGCCATGGCGCTGATCAAGCGTGGCGTACCGGCGGTGTCCTACACCGGCAACCAGGTGCGTATCCTGACCGACAGTGCGCATAACAAAGCGCGTATCCTGCAGATCGACGACCAGAAGATTCGCGGTGACCTGAAGGCTGGCCGCGTCGTGGTTGTCGCCGGTTTCCAGGGTGTGGACGAGCACGGCAACATCACCACCCTCGGCCGTGGCGGTTCCGATACCACTGGCGTGGCCCTGGCGGCAGCCCTCAAGGCTGACGAATGCCAGATCTATACCGATGTGGATGGCGTCTACACCACCGATCCGCGGGTCGTGCCCGTGGCTCAGCGCCTGGACAAGATCACCTTCGAAGAGATGCTGGAAATGGCCAGCCTCGGTTCCAAGGTGTTGCAGATCCGCGCGGTAGAGTTCGCCGGCAAGTACAACGTTCCGCTGCGCGTTCTGCACAGCTTCAAGGAGGGTCCGGGCACCCTCATTACTATCGATGAAGAGGAATCCATGGAACAGCCGATCATTTCCGGCATCGCTTTCAACCGCGATGAAGCCAAGCTGACCATCCGTGGCGTGCCAGACACTCCCGGCGTGGCGTTCAAGATTCTCGGCCCGATCAGCGCGGCCAACATTGAAGTCGATATGATCGTGCAGAACGTCGCGCACGATAACACCACCGACTTCACCTTCACCGTGCACCGCAACGATTACCAGGCCGCTGAAACCGTGCTGAAAAAGACCGCTGGCGAGATTGGCGCCCGGGAAGTGGTGGGCGACACCAAGATCGCCAAGGTCTCGATCGTCGGCGTCGGCATGCGCTCCCACGCAGGCGTGGCCAGCCGCATGTTCGAATCGCTGGCCAAGGAAAGCATCAACATCCAGATGATCTCCACCTCGGAAATCAAGGTGTCGGTGGTGATCGAAGAGAAGTACCTGGAACTGGCCGTGCGCGCCCTGCACACGGCTTTTGAGCTCGACGCTGCGGCCCGACAGGGCGAGTAAMALIVQKFGGTSVGTVERIEQVADKVKKFRDAGDDLVVVLSAMSGETNRLIDLAKQISGDQQPVPRELDVIVSTGEQVTIALLAMALIKRGVPAVSYTGNQVRILTDSAHNKARILQIDDQKIRGDLKAGRVVVVAGFQGVDEHGNITTLGRGGSDTTGVALAAALKADECQIYTDVDGVYTTDPRVVPVAQRLDKITFEEMLEMASLGSKVLQIRAVEFAGKYNVPLRVLHSFKEGPGTLITIDEEESMEQPIISGIAFNRDEAKLTIRGVPDTPGVAFKILGPISAANIEVDMIVQNVAHDNTTDFTFTVHRNDYQAAETVLKKTAGEIGAREVVGDTKIAKVSIVGVGMRSHAGVASRMFESLAKESINIQMISTSEIKVSVVIEEKYLELAVRALHTAFELDAAARQGEPGPT0014040_4387DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0014040-lysC-K00928NANA
D1-35_00348189csrA2Translational regulator CsrA2ATGCTGATTCTGACCCGTCGGTGCGCAGAGAGCCTGATTATTGGCGATGGCGAAATCACCGTGACCGTGCTCGGCGTCAAAGGAAACCAAGTGCGTATCGGCGTCAACGCGCCGAAAGAGGTCGCTGTGCACCGGGAGGAAATTTACCTGCGTATCAAGAAAGAGAAGGACGACGAACCAAGCCATTAAMLILTRRCAESLIIGDGEITVTVLGVKGNQVRIGVNAPKEVAVHREEIYLRIKKEKDDEPSHPGPT0015065_1583DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ENVELOPE_STRESS_SIGNALLING,PGPT0015065-csrA|zfiA-K03563NANA
D1-35_00352486hypothetical proteinATGCTCGCAAACCGCTGTCTGTTTCCACTCGCCGCCTTAGCCTGCCTGCCTCTCTGGAGCGTCGCACAAACCGCGCATCGCTGCGAAAACGGCGCCGGGCAGGTGACGTTCACGAGCCTGAGCTGCCCGTCCGGGGAGATCCTGTCCGTGCAGCAGATAAACTCATTCAACCCAGGCCACGTCGCACCGCTGCTGCCGGAAGCGCTGCCGCTGAAAACATCCGGCAACACAAACAGACGCAAGGCACCGACCATCGTTGGCCAGTTGGAGGACGACTGCGGGAATCTGATCGACGCCAGTCAGCGCCGGGAGGCAATCATGGATCGGCGGGTAATCGCTGGCATGAGCCAGCAAGACGTGGAGAGCGCACTTGGCCGGCCCGACACGATCAAGGTGCGGAATTCGAACACGCGCTATACCTACAAAAAGAGGAACGGCCGCAGCACCGAGGTCGCGTTCGATGGAAAAGGCTGCGTGAAACGTTAAMLANRCLFPLAALACLPLWSVAQTAHRCENGAGQVTFTSLSCPSGEILSVQQINSFNPGHVAPLLPEALPLKTSGNTNRRKAPTIVGQLEDDCGNLIDASQRREAIMDRRVIAGMSQQDVESALGRPDTIKVRNSNTRYTYKKRNGRSTEVAFDGKGCVKRNANANANANA
D1-35_003531443COG2239Magnesium transporter MgtEATGACCGAAGTAGAAGTAAAAAAAACGCAGGAAAGCCTTCAGGATCGCCTCGCTCAAGTCGTTGAGCTGCTGCATCGTCAGCGGGTCGTCGAAGACCTGACGCATCGCCAGGAAGGCCCTCATTCCGACCGGGTCGGGAACCTGGTCCACCGGCAGAATCTCGTCGAGTTGCAGCGCAAGCTCGATGACCTGCACTCGGCCGACGTCGCCTACATCCTCGAAGCCTTGCCACTGGAAGAACGTCTGACCGTCTGGCAGCTGGTCCAGGCCGATCGCGACGGTGACATCCTGCTGGAAGTGTCCGACTCGGTTCGTGAAACCCTGATCGCCGACATGGATGATCACGAGCTGTTGGCGGCGGCCAAGGAGATGGACGCCGACGAGCTCGCCGACCTCGCCCCCGAACTGCCGCGCGATGTTGTCCATGAGTTGATGGAAGCCCTTGATGGGCAACAGCGCGAGCGTGTCCGCTCGGCATTGTCCTACGACGAGGAGCAGGTCGGTGCGCTGATGGACTTCGAGATGGTGACGATCCGCGAGGACGTCAGCCTTGAAGTGGTCTTGCGTTACCTGCGTCGCCTCAAGGAGCTGCCGGGGCATACCGACAAACTCTTCGTGGTCGATTACGACGGCGTGCTCACCGGCGTGCTGCCGATCAAGCGGCTGCTCGTCAATGACCCGGAGAAGCAGGTTGCCGAGGTCATGGCCAGCGACACGGTGAGTTTCCATCCCGACGAAAATGCCTACGACGCGGCCCAGGCATTCGAGCGTTATGACTTGATTTCCGCGCCGGTGGTGGACAAGAACGGCAAACTGATCGGCCGCCTCACCATCGACGAAATGGTTGACCTGATTCGTGAGGAAAGCGAAAGCGAAGTCCTCAGCATGGCCGGTCTGCGAGAAGAGGAAGACATCTTCGCTTCGGTCTGGAGATCCCTGCGTAACCGTTGGGCCTGGCTGGCGGTCAATCTGGTTACGGCGTTTGTCGCTTCTCGCGTCATCGGCCTGTTCGAAGGCTCCATCGAGAAACTGGTAGCGCTGGCGGCGTTGATGCCTATCGTAGCCGGCATCGGCGGCAACTCTGGCAACCAGACCATCACCATGATCGTTCGCGCCATGGCGCTGGACCAGGTCAGCACCGGCAATACTTCGCGATTGATGCGCAAGGAGCTGGCTGTGGCATTGATCAACGGCGTGATCTGGGGCGGCGTGATCGGCGTGGTGGCGTACCTGCTATACGGCAGTTGGTCGCTGGGTGTGGTGATGACCGCGGCGATGACGCTCAATCTGCTGCTGGCGGCGTTGATGGGAGTATTGATCCCGATGACCCTGGCCCGCCTGGGGCGCGACCCGGCAATGGGCGCCAGCGTGATGATTACCGCCATGACGGACAGTGGAGGGTTCTTCATCTTCCTGGGCCTGGCGACGATTTTTCTGCTCTGAMTEVEVKKTQESLQDRLAQVVELLHRQRVVEDLTHRQEGPHSDRVGNLVHRQNLVELQRKLDDLHSADVAYILEALPLEERLTVWQLVQADRDGDILLEVSDSVRETLIADMDDHELLAAAKEMDADELADLAPELPRDVVHELMEALDGQQRERVRSALSYDEEQVGALMDFEMVTIREDVSLEVVLRYLRRLKELPGHTDKLFVVDYDGVLTGVLPIKRLLVNDPEKQVAEVMASDTVSFHPDENAYDAAQAFERYDLISAPVVDKNGKLIGRLTIDEMVDLIREESESEVLSMAGLREEEDIFASVWRSLRNRWAWLAVNLVTAFVASRVIGLFEGSIEKLVALAALMPIVAGIGGNSGNQTITMIVRAMALDQVSTGNTSRLMRKELAVALINGVIWGGVIGVVAYLLYGSWSLGVVMTAAMTLNLLLAALMGVLIPMTLARLGRDPAMGASVMITAMTDSGGFFIFLGLATIFLLPGPT0013995_396DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-MAGNESIUM_TRANSPORT,PGPT0013995-mgtE-K06213NANA
D1-35_00354318hypothetical proteinATGAAACAGGCAATTTATTCCAGCCGTACGGCTGACAAGTTCGTCGTGCGTCTGCCAGACGGAATGCGGGAACGCATTGCCGAGGTGGCTCGTAATCATCACCGCAGCATGAACTCCGAAATCATCGCGCGCCTTGAGCAAAGCCTGATTCAGGAAGGGGCATTGGGTGAAGAGTTGAGCATGCGCCTGGACAGCCCTGAGCTGTCGTTGCACGAGCGCGAGTTGCTTCAACGCTTCCGACAACTTTCCCATCGTCAGCAGAACGCCCTCGTTTCGCTGATTGCCCACGACGCAGAAATGGCCGCAGACGCGTCCTGAMKQAIYSSRTADKFVVRLPDGMRERIAEVARNHHRSMNSEIIARLEQSLIQEGALGEELSMRLDSPELSLHERELLQRFRQLSHRQQNALVSLIAHDAEMAADASNANANANANA
D1-35_003561776fhaCCOG2831Filamentous hemagglutinin transporter protein FhaCATGCAGCCAGCCGCACCCTGCCGACCGCGTAGCAGCCCTCGCCGTTGTGTTGACGCAACCCGTTCATCTGCACGAAACGCCAGGCGTCTCGCGCTGCTGTTGATGGCGGCCTGCATGACGGGACCGTGGAGTGCTGCACAGGCGGCTGGGCCTGAAGAAGAACTCTTGCGCCAGCAAGAGCGCGAACGGGTGCTGAGGGAGCAACTGGAATCCCGGCCGGACGTGCGCCTGCAGGCGGCACCCGTGGACGAAGGTGTCGATCGTTTGCCCTCCAGGGAGAGTCCCTGCTTCGCCATCAATGACATTCGCCTGATCGGCGAAGCGTCGGAACAATTCCAGTGGGCGTTGCGCGCCGCCAACCCCAAGGATGATCCGGCCATTGGCCGTTGCCTCGGTGGCGGCGGGATCAACCTGACGATGAAACGCATGCAGAATGCGATCATCGAATCCGGCTACGTCACCACTCGCGTACTCGCCGAAGCCCAGGATTTGAACAGCGGCGTTCTGGTATTGACCCTCGTGCCAGGGCGCATCCGCGAAATCCGTTTCGAGGAGGGCACCCGTTCCCGTGCCAATGCGTGGAACGCGATGCCGGCCAGTCCTGGCGATCTGCTCAACTTGCGCGACATCGAGCAGGCGCTGGAGAACTTCAAGCGCGTGCCGACCGCCGAAGCCGACATCAAGATCGCGCCCGCCCGTGCCGCCGACGCCAAACCCGGCGAAAGCGACGTGGTAATCGCCTGGAGCCAGCGGTTCCCCGCCCGCGTGAGCCTGTCGGTGGACAATTCGGGCAGCAAGACCACCGGCAAATACCAGGGCAACGTGTCGCTGTCCTTGGACAACCTGCTGTCGCTCAACGATTTGTTCTACGCCAGTGTGAACCATGACTTGGGCGGTGGTGAATCCGGCCATCGCGGCTCCGATGGCAGCACGCTGCATTACTCGCTGCCGTTCGGCTACTGGCAGTTGGGGTTCACCAGCAGCGAATACAACTATGAACAGTCGGTCGCCGGCGCCAACCAGACCTATCAGTACCGGGGCGAGAGCCGCAACAACGAATTGCGCCTGTCCCGCCTGCTGTACCGCGACGCTGTTCGCAAGACTACCGCCTGGGGCAGCCTGTGGACGCGTTCGTCGGAGAACTTCATCGACGACACCGAAATCGGTAACCAGAAACGCCGCATGGCCGGTTGGCAGTTGGGGTTGGACCATCGGGAATTCATTGGCGCTTCGATTCTCGACCTGGGCGTCGCCTACCGTCGCGGCACTGGGGCCAACGACGCGCTCAGGGCCCCCGAAGAAGATTTTGATGCCGGCACGTCACGCTCGCAGATCATTACCGCCGATGCCCAATTGCAGGTGCCGTTCCTGGTCGGCGATCAGCGCCTGCGCTACATCGGCGGCTGGCGCGCGCAATGGAACCGTACGCCGCTGGTGCCCCAGGATCGCTTCTCCATTGGCGGGCGCTACAGCGTGCGGGGCTTTGATGGCGAAAACATTCTGTCCGCCGACCGCGGCTGGACGCTGCGCAACGAAATCGGCCTGTCCCTGGGGCAGACCGGCCAGGAGCTCTACACCGGTATCGACTATGGCGAAGTCAGCGGCCAGGCCAGTGAATTCCTGATCGGCCAGCGCCTGGCGGGGGCCGTAGTGGGTATCCGCGGTGGTTACAAGGGCCTGTCCTATGACTGGTCGCTGGGTACGCCGTTGAAGAAACCCGATGGTTTCGAGACGGCCAACGTGACCAGCGCGTTCACCGTCATCTGGTCATTCTGAMQPAAPCRPRSSPRRCVDATRSSARNARRLALLLMAACMTGPWSAAQAAGPEEELLRQQERERVLREQLESRPDVRLQAAPVDEGVDRLPSRESPCFAINDIRLIGEASEQFQWALRAANPKDDPAIGRCLGGGGINLTMKRMQNAIIESGYVTTRVLAEAQDLNSGVLVLTLVPGRIREIRFEEGTRSRANAWNAMPASPGDLLNLRDIEQALENFKRVPTAEADIKIAPARAADAKPGESDVVIAWSQRFPARVSLSVDNSGSKTTGKYQGNVSLSLDNLLSLNDLFYASVNHDLGGGESGHRGSDGSTLHYSLPFGYWQLGFTSSEYNYEQSVAGANQTYQYRGESRNNELRLSRLLYRDAVRKTTAWGSLWTRSSENFIDDTEIGNQKRRMAGWQLGLDHREFIGASILDLGVAYRRGTGANDALRAPEEDFDAGTSRSQIITADAQLQVPFLVGDQRLRYIGGWRAQWNRTPLVPQDRFSIGGRYSVRGFDGENILSADRGWTLRNEIGLSLGQTGQELYTGIDYGEVSGQASEFLIGQRLAGAVVGIRGGYKGLSYDWSLGTPLKKPDGFETANVTSAFTVIWSFPGPT0030385_336DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_V_SECRETION_SYSTEMSCE-T5b_TWO-PARTNER_SECRETION,PGPT0030385-fhaC|tpsB-K07326NANA
D1-35_00357519apxICCOG2994RTX-I toxin-activating lysine-acyltransferase ApxICATGCAGTTCGAGACGCTAGACATTATCGCCCCCGGCCTGATCGACGAACCCTGGAGCGAAGCCGCGGTGTTCGGCTCCGCCACCTGGTTGTGGATGCATTCCAAAGCCCATCGCGATGCGCCGTTGCACACGTTGCCGACGCTGCTGTTGCCGGCCCTCAAGCATCGCCAGTTCGTGCTCGGCTCCGAACACGGCAAGCCGGTGTTCTACCTGTCCTGGCTCAACCTCGACGAGGCGGCAGAGCAACGTTACCTGCGCCAGTCGCCGCTTGCGCTGACCCAGGGCGACTGGAACAGCGGCGAACGCCTCTGGCTCAACGACTGGGTCGCTCCCTTTGGGCACACGGCGGCATTGAGGCGCTTGTTGCAACGTCATCTCTTCATCAATCGCTGCGCCCGTGCTCTCTATCACCGAGGTGACGAGCGCGGCCTGCGGGTCAAGACATTCCAAGGCATCGGGGTCATTCCCGAACAGGCCCAGGCCTGGTTTGCCGCCCATCCGCTGGCAATCGAAGCGTAAMQFETLDIIAPGLIDEPWSEAAVFGSATWLWMHSKAHRDAPLHTLPTLLLPALKHRQFVLGSEHGKPVFYLSWLNLDEAAEQRYLRQSPLALTQGDWNSGERLWLNDWVAPFGHTAALRRLLQRHLFINRCARALYHRGDERGLRVKTFQGIGVIPEQAQAWFAAHPLAIEANANANANANA
D1-35_003589225hypothetical proteinATGAACAAGCATCTGTACCGAATCGTTTTCAACAAGGCTCGCGGACTGTTGATGGTAGTGGCCGAGAACGTTACCAGCCAAGTCAAGGCGCCGGGGACTCGTTCTGGCCCGGCGGCTGGCGCAGCGGCTTGCACGGCGACACTCGGGGCGTTGCGCTTTGCCTTGATGGCAGCGATTGGCCTGGTGTCCTTCAGCGTGGCGCCAACCTGGGCCGGCACCATTGTCGCCGATCCAGGCGCGCCGGCCGGTCAGCGACCAGGAGTGATACAGAGCGCCAACGGCACGCCGCAGGTCAATATCCAGGCCCCCAGCGCCGGCGGTGTCTCGCGCAATACCTATAACCAGTTTGACGTCGATGGCCGGGGGGTAATCCTCAACAACGGCGCGGGCAATAGCCAGACGAAACTGGGCGGTTGGATCGAAGGCAACCCGATGTTGGGCAATGGCGGCGCGCGAGTCATCCTCAACGAAGTCAATTCCAGTAATCCCAGCCAGTTGCGCGGTTACGTCGAAGTCGCCGGCCAGCGCGCCGAAGTGGTGATCGCCAACCCGTCCGGTATCACCTGCAACGGTTGCGGTTTCATCAACGCGGATCGGGCCACCCTCAGCACCGGCCGGGCGCAACTGGAGAGCGGTCGCATCACGGGCTACACCGTGCAGGGCGGCGCCATCAACATTGAGGGCAAAGGCCTGGATGCCCGCGAGACCGACTACACGGACCTGATTGCCCGTTCGGTGCAGGTCAACGCCGGGGTGTGGGCCAACGACTTGAAGGTCACCGCCGGACGTAATCAGGTCAATGCCGACAACACCCAGGCCACGCCGCTGCCGGGCGCCGACGATGAGAAACCCACCGTTGCCGTCGATGTCGCCAAGCTCGGCGGCATGTATGCCGGGAAGATCATGCTGGTGGGTACGGAGGCCGGCGTAGGGGTGCGCAACGCCGGGCAGATCGGCGCCATGGCTGGCGAGGTGGTCATCAGCGCCGACGGCAAATTGCAAAACCAAGGTGCGATCAGCAGCGCAACGGCGACGCGAATCACTGCCGCCAGCGTTGATAACAGCGGCACGCTCTATGCCAAGGGCGACCTGGGGCTCGACAGCGCCAGTGACATCGACAACAGCGGCACCGTTGCCAGCCAGAACCACACGACGCTGACCGCCAAGACTATTCGCAGCACCACGGCCTCGAGCCTGGCGGCGGGCGTCGGGGCGGACGGCAAGCTGGGCAGCAGCGGCAACCTCGCGCTACGGGCCGCCACGGTCAAGGCGCAGGGCCAGAACCTTGCCGGCGGCGATGTCAGCGTCGAGGCGGCTGACCTGGACCTGAGCGGCAGCCAGACCCTGGGCCGCAACATCACCCTGACGGCCCGCACTGGCGATGCCAACCTCAGTGGCAGTCAAGTCGATGCGACCCAGGTGCTGAATGCCAAGGCGGCCAAGACCCTGCGCACCGATGCGGCCAAGGTCAACGCCGGCAACCTGCAAGTGAGCGCGCGTGATGTGTCCAATATCGGCGGTGAACTGGTGCAGACCGGCACCGCCGATACCTCGATCACCGCCGTCGCCACGCTCGACAACAGCGGTGGGCGGATTGCCTCCAACGGCAACAACCTGAAGCTTGGCGCCCATCGCCTCGACAACAGCAACAGCAAGGTCGAACACGCCGGCAAAGGCACCCTGGACATCCAGGCCACTCAGTTGGCCGGCAGCAAAGGCACCTTGGCGAGCAATGGCACGTTGAGCGTCAAGGCCCGCGAGGTGGTGGTCGATGATGGTCTGACCCAAGGCCAACAGATCACGCTCGACACCACGACCCTGTCCAACCAGCGTGGACGCATTCTCCAGACCGGCGCGCAAACGTTGCAGGTCACCGCCCGTGAACGTTTCGACAATCAGGCCGGGCAAGTCAGCAGTCCCGGCGCGGTGAACGTGAAGGTCGGCACGTTGAACAACCAGGGCGGTAAAGTCCTCGCTACCGATAACGGTACGTTGACCGTCACGGCCGACAAAGAGATCAATAACGGCGGCGGGACGCTGGCCGCCAGCGGTACGACAAAGGTCAGCGGCGAGGCGCTGGATAACGCCCAAGGCACCGTGAGTGCCGGCGGTGAGCTGTACGCGACGTTCGACCGCTTGAACAATATCGGCGGCACGCTGGCCGCGACCCAGCGCATGGAGATCATCGCCGGGCAGTTGAACAACACCAACGGCGTGCTGGGTTCGGTGAAGTCCGGACTGCTGGTCAGTGTCTCGGCCGATGAATTGAAGAACAGCGGCGGGCGTCTTGAAGCACTGGCTGATATCACCCTGTCGGCCCAGGGCCTGAATAACCAGGGCGGGGTAATCAGTGGCCGGGCCTTGGACCTGAACAGCCACGGCCTGCTGATGGACAACAGCCAGGGCACGTTGAATGCCGGTGCGACCCTCGACCTGCGCAGCGGCGAACTGCGCAACGCGGCGGGCCTGATCCAGGCCAAGGGCAAGCTGTTCATCGATACCGGCAGCCAGGCGCTGAACAACCTTCAGTCCGGCACCACCCAAGGCATCAGCGGCCAGGACGCGGTGGAAATCCACAGCGCCCATTTCAACAACAGCACCGGCTTCCTCGGCGCCAAGGGCGCGCTGGTGCTCAAGGCCACCGACCTCACCAACGGCAGCGGCGGCCAGATCATTGGCCAGAACAGCGTACAGGTCGAAGGCGCCCGGGTGGATAACCGCGGCGGCCAGTTGCAGGGCCTCGGCGATGTCCAGTTGGTGCTGGGCGAGACGCTCGACAACCAGGGCGGACTGGTTCGCAGTGCCGGAACCCTGGGCGTGACTGCCGATGTGCTCGACAACAGCGCCACCCAAGGTGCCAACCAGGGCCTCGAAGGCCGCGCCATGAGCCTGGCGCTCGACACCTTCGGCAACCAGGCCGGTGCCGTGCGCGCCGACCAAGGGTTGTCCATCGGCGTCAGCCAGGCGTTGGATAACCAGGGCGGCCTGGTTTCCGCGGGAGCCGGCCTGACCATCACCGATCGCGATCCGGCGCAACGTCGCCAGGCGGTGCACAACCTCGACGGAACCCTGCTCGCCGGTAGCCTGCTGTCCCTCAACGCGGCCTATTACGCGGGCACCGGTCGAGCCCTGAGCCTGGGCGACCTGACGTTCAGCCTGCAAAGTGGCCTGGACCTGAGTGGCCAGATCCAGGCCAATAACAAAGTTGACCTGAGCACCGATGGGGCTTTCAACAACAGCGGAAAACTGCTGGCGGGCAATCTCCTGCTGGTGCGTTCGCAGACGCTGGACAACGCCGCCACTGGCGAGATCAGCGCCGGCCAGGTTCGCCTGACCGTCAACAACAGCTTGACCAACCGTGGCCTGATCGACGGCCAGCAAGTGCGTGTGCAAGCGCTGTCGCTGAATAACCTGGGCACCGGGCGTCTGTACGGTGATCGATTGGCGATCGCCACCTCGGCGCTGGCCAACCGCGACGAGAACGGCGTCGCTGCGACCATCGCCGCCCGCGAGTCGCTGGATATTGGCACCGGCACGCTGGACAACCGCGAACAGGCGATGATCTTCAGTGCCGGAGACCTCGCCATCGGCGGTGCGCTGGGCGCCACTGACAGGGCCCAGGACCGGGCCCAACTGCTGACCAACGCCAGTGCGACCATTGAGGCCCTCGGCAACCTGTCGCTCGATGTGCAAAGCGTGCGCAACACCAACGAACACTTCAGTACCCAACAGGTGGAAGTCAGCCGCACCGCCTTGCAGGAATTCCAGCTCAGCGGTTCGCCGAACCGTTACCAGGGCAACCAGATTTCCGTTAGCCACGACGAGGTCAATTACCTCAACACGCCTGAGGGGAGCAAAGATAGCTGGAACCGCTACGACTACACCCGCGTGGTCCAGGAAACCCAGATCGCCACCTCGGCACCGGCGCAGATCCTCTCGGGCGGGACGATGCAGATCAATGCAGGGGATGTGCTCAACGACAAGAGCCGCATCATTGCCGGTGGGTTGTTGCAGGCCGACATTACCAGCCTGACCAACACTGAACTGACCGGCCAGCGCATCACCACCGACAGCGGCACCGCAACGAGCTTCTATCGCATCCAGCGCAAGGGCCGGGACCGTCAGGGAACAGCCATGACGGGCTACACGCCTGCGCCCTTGATCCAGGACATCACCTTGCAACCGACCGTGTTCGCCCAGAACGCCGCCGGCAATGGTACCGGCACCCAGATCAGCGCTCGCGCCACACAGGGCGTCGGCGAACAGATCGCCGCCACGGGCACGGTCAGCGCTCCGGTCGACAGGACCTTTCAAGTGGCACCCATCGTTCAGGTCGCGGCCCAGACCACCCTCAACAGCAAGGGCGTGGCCGAGCAGATCCGCAGCGGCGGGCCATCCCTGGCCTTGCCGGACAACAGCCTGTTCACCACAAATCCCCAGAACACCAGCAGCTACCTGATCGAAACCGATCCGCGTTTTGCCAGCTACCGCACCTGGCTGTCATCGGACTACATGCTGCAGCGCCTGCAAGTCGACCCGGCATTGACGCAACAACGTCTGGGCGACGGTTTCTACGAACAGAAATTGATCCGCGAACAGGTGGCGCAACTTACCGGCCGACGTTTCCTTGATGGTTACGCCAATGATGAAGCGCAGTATCGCGCCCTGATCGACAACGCCGTGACCGTCGCCAGTCAATGGCAGCTGGTGCCCGGCGTGGCCCTGACCTCCGCGCAAATGGCTCAGTTGACCAGCGACATTGTCTGGCTGGTGCAGAAGCAGGTGACCCTGGCCAACGGCGACACCCGCAATGTGCTGGTGCCACAAGTGTATGTACGGGTCCAGGAGGGCGACCTCAACGGCTCCGGCGCGTTGATAGCCGGGCAGCAGTTGAACCTGAACATCGCTGGCGACCTGATCAACAGTGGCAGCCTGGCCGGGCGCAGTGTCATGGCGATCACTGCGCAGAACATCGACAACCTCGGTGGGCGCATCCAGGCCGACAAGGCATCGCTCACCGCGCGGGAAAACCTCAACAACCTCGGCGGCCTGATCGGTGCCGTGGACAACCTGTCGATCAAGGCTGGGCAGGACGTCAACGTCGTCTCCAGCAGCCGGGACAGCAGCAGCGCCCAAGGCACCCGCACCAACCTGTCGCGGGTGGCCGGGCTGTTCGTCAGCGGCGCCCAGGGCACGATGGGCGTGAGTGCCGGCAACGACCTCAACCTCACCGGGGCCCAGGTGGTCAACGCCGGCAAGGGCGGCAGCACGTTGCTGGAGGCAGGCAAGAACATCAACCTGGCCACCGTCGGCGAAGCCCATGAGCAAGCGCTGGCCTGGAACAGCAGCAACTGGCGCAAGGACGCCAGCCAGACCGAAGTCGGCTCTCAGATCCAAGGGCAGGGCGACGTGCGCTTGAGCGCCGGCCAGGACCTCAACGCCCGCGCGGCCCAGGTCACCAGCGAGCAAGGCGCGGTGTTTGCCGAGGCCAAGCGCGACGTCAACCTGACCACCGGCCAGAACTACCAGTTCGCCGATGAAGCCCACAAGGTCAAGGGCAGCAACGGGATGTTCTCCAGCAAGACCACCACCACCCGCGACACCATCAGCCAGACCTCGCTCGAAGGCTCCACTCTGAGCGGCGAGCAGACCTATGTGCAGGCCGGTCGCGACATCAACCTCAAGGGCAGCAACGTGGTCTCGACGACCCAGACGATTCTGGTGGCGGACAACAACGTCAACATCGAGGCCGACACCGCCAGCAGCAGCGAACGCCACGACAAGTCCGTGAAGAAAAGCGGCCTGTTCAGCGGCGGCGGTATCGCCGTTACCATGGGGACCCAGCAACAAAGCGTCAAGGACCTCACCACCGAGCATACGGCCGTGGCCAGCACGGTCGGCTCGACCACCGGTGATGTGCTGATCGAAGCGGGCAAGGGCTATCGCCAAGTGGGCAGCCAGGTGTCGGCGCCACAAGGCAACATCGACGTCACGGCGCAGACCATCGACGTCGTCGAGGCGCGCAACACCCGCGAGCGCGAGCGTGAAACCCTGTTCAAGCAGACCGGGTTCACCCTCACCGTGACCAATCCGGTGATCAGCGCGATCCAGACGTCCCAGCAAATGAAACGGGCATCGGAGAAAACCGATGACGGGCGCATGAAAGCCCTGGCCGCCGCCACCGCCGTACTGGCGACCAACAATGCCGCCACCGCCGTGGCGATGGACCCGGGCGCGGCGGGCGGGATCAACATCAGCCTGTCCCTGGGCACCAAGAAGAACGAAAGCACCACCACCTACACCAGCGACAGCGCGGCCGGTTCGACCATGACCGCCGGCAACGACGTTCGCCTGCGTGCCACGGGCGCGGGTGCCGCCAGCAACATCACCGTACAAGGCAGCGATATCAAGGCCGGCCGCAACGCCAGCCTGCTGGCGGACGGTGACATCAACCTGCTCGCCGCGCGCAATATCGACAAACAGGAAACCGACAGCAAAGGCAGCAGCGCGAGCATTGGCATCGGCTTCTCCCTCGGTGCTCGCAACGGTTTCACCCTGGACCTTGGGGCGTCCGGCACTCGCGGCCAGGCGGACGGTGATGGCCTCACCCACACCAACACCCATGTCCAGGCGGGCAACCAGTTGCTGCTGTCCTCGGGCGGTGACACCAACCTCAAAGGCGCGGTGGCGAGCGGCAAGCGAGTGTTGGCCGATATCGGCGGCGACCTGAACATCGAAAGCCTGCAAGACACCAACACCTACGTGGTCGATGAGAAGAGCCTGGGCGTTGGCATCAGCCTGTGCATCCCGCCGTTCTGCTACGGCATGAGTTCGGTCAACGGCGTCAGCGGCAGCTTCGGTGCCACGGATATCGATTCCAACTACGCCAGCGTGACCGAGCAATCGGGCATCAAGGCCGGGGACGACGGCTTTGATATTCGCGTGGGGGGCAACACCGACCTGGTCGGCGCGGTCATCGCCAGCAGCGACAAGGCCGTGCAGGACGGCAAGAATCGCCTGGTCACCGCCAGCCTCACCAGCCGTGACATCAAGAACAGGGCCGAGTACGACGCCAGTACCGTCAGCGTCGGTGGCGGCTATCGCGAAGTCGGCAAGGACCAACAGGGCAACGCCACCAGCGGTGGCACGCAAACCCCGGGCACCGACCTGCCGAAGAATGACAACGACCTCAGCGCCACCATGCCGATCGCCATCAGTGCCAGCGACGACGCCAGCAGCGTCACCCGCAGCGGCATCAGTGGCGGGACCATCGTCATCAGCAACGACGCCGAGCAACAGAAACGCACCGGCCAGAATGGCGAGCAAACCGTCGCCAGCCTCAATCGCGATGTTTCCAGCGACCGCGACACCACCAACACCCTCAAGCCGATCTTCGACGAAGACGAAATCCGTGCCGGTTTCGAGATCGTCGGGGCGTTCTCCAACGAAGCCAGCACCTTGCTCGCCAACAAGGCCAAGGAAGTCGACTACAAGCGCAAACAGGCCGAGGAGGCGCAGAACAAGGCCCTGGACCCCAACGCCAAACTCACCGACAGCGAACGCCTGGCGTTGCTCGGCAGCGCTCAGCGCCTCAATGCCGAAGCCAGGGGCATCGCCGACAAGTGGGGCGCGGGCGGCACCTACCGGCAGATCACCACCGCCCTGGTCGGCGCGGCCAGCGGCAACATCAGCGGCGGCAACAGTGCGTTCGTCCAAGGGCTGGTGGTCAACTACCTGCAGCAGCAGGGCGCCGGCTACATTGGCGACCTGGTGGCGGACGGCAAACTCACCGAAGGCTCGCCGCTGCACGCCGCCCTGCACGGCATCGTCGCCTGCGCGGGCGCCGCCGCCAGCAGCCAGAGCTGTGGCAGCGGAGCCGCAGGCGCGGCGGCGTCGAGCCTGCTCACCGGCCTGTTCTCCGAAGCCAGCCCCGATGAAAGCGAAGCCCAGCGCGAAGCCAAGCGCAACCTGATCGTCAGCATTGTCACCGGGTTGGCCGCCACCAGTTCCTCGCTCGACCCGGCTACCGCCAATAGCGCGGCCGGTGCAGCGGTGGACAACAACTGGCTGGCGACCCAGCAGTTGGTTCAGGCGGAGAAGGAATACAGCGCGGCTGATGGCTTAGGCGCCAAAGCGCAAGTGATCGCCAAGTGGGCGTACATCCATCAGAAGCAAGACGTCCTGACCCGCTTCGGCTTGGGTAAGGGCTTGGTGCAGGCGGGTTGGAACGACGTCGAAGGGTTGGCGCAATTCCTCCTTAATCCGGTTGACGGGATCAACGGTATCAAAGCCCTGATCAACGATCCGGAGGTCCGCAAGCAGTTACAGGACGGCGTGTTCAATGAGCTCAATGCCAAACTGGACCGCGTTAAAGATGCCTTGGAAAACGGGGGTGATGATCGCGCCGTGCAATTGGGGCAGGACATTGGCGAACTCGTCTGGCAGGTCGGGAGCATCGCCACGGGCGTCGGTGGGGCGGCCAAGGGCGGGGTGGCGTTGGCGAAGGCCGGGATCAAGGTGGGGGCGGAAGGGCTTGAAAAGATGGCCGATATGGCTAGACTCGAAAAGCTCGCGAAAAATGTAGATCAGTTGCCAGAACGTATTCCTGTCGAGCCAGTAAGACCAAATACTTCCAATGCAGGAGCGGAGACTGGCGGGCAACATGTCGAAAGTCCGCTGGCGTTACCAGCACCTGCAAGGCACAGTGTTCCTGACGGCTATACAGTTGCCGAAAATGCGAACGGAACTGTCACCGTAACCGGGCCACGCGGTGGTATCTATAACTCAACAGGTCGGTATACAAATGACGGTAAGCCGATTTATCGAGATAATAACGGTGGCTTTGTATCGCTCGAAGGTGGACGTACACCTGTTTCCGCGCCGCCGGATTATTCCAGCGTTCCTGTACACCATATCTGCACTAATAAATGTAATGCCGGGGCAAACGGACAGATTGCCTGGTCTAAGCAGTTCCAAAAATTCTTTGATGGTTCCGATCTGGACATTAATAAGGCAACTGAGAATCTGGTCGCGGTTCCGGGTCATAGAGGTCCACACCCTCAAAGTTATCATCAATATGTTTATGGTAGCCTCGACGATGCTACGCGTGGGTTGGAACCCGGTACCGCGCAATATAAGAGTGCAGTGGTGAATACTTTAAATAGGATCAAGGTTGAAGCAGTCACGCCGGGAAGCTCGGTTAATCGATGGCTTACAGGAAGCTGAMNKHLYRIVFNKARGLLMVVAENVTSQVKAPGTRSGPAAGAAACTATLGALRFALMAAIGLVSFSVAPTWAGTIVADPGAPAGQRPGVIQSANGTPQVNIQAPSAGGVSRNTYNQFDVDGRGVILNNGAGNSQTKLGGWIEGNPMLGNGGARVILNEVNSSNPSQLRGYVEVAGQRAEVVIANPSGITCNGCGFINADRATLSTGRAQLESGRITGYTVQGGAINIEGKGLDARETDYTDLIARSVQVNAGVWANDLKVTAGRNQVNADNTQATPLPGADDEKPTVAVDVAKLGGMYAGKIMLVGTEAGVGVRNAGQIGAMAGEVVISADGKLQNQGAISSATATRITAASVDNSGTLYAKGDLGLDSASDIDNSGTVASQNHTTLTAKTIRSTTASSLAAGVGADGKLGSSGNLALRAATVKAQGQNLAGGDVSVEAADLDLSGSQTLGRNITLTARTGDANLSGSQVDATQVLNAKAAKTLRTDAAKVNAGNLQVSARDVSNIGGELVQTGTADTSITAVATLDNSGGRIASNGNNLKLGAHRLDNSNSKVEHAGKGTLDIQATQLAGSKGTLASNGTLSVKAREVVVDDGLTQGQQITLDTTTLSNQRGRILQTGAQTLQVTARERFDNQAGQVSSPGAVNVKVGTLNNQGGKVLATDNGTLTVTADKEINNGGGTLAASGTTKVSGEALDNAQGTVSAGGELYATFDRLNNIGGTLAATQRMEIIAGQLNNTNGVLGSVKSGLLVSVSADELKNSGGRLEALADITLSAQGLNNQGGVISGRALDLNSHGLLMDNSQGTLNAGATLDLRSGELRNAAGLIQAKGKLFIDTGSQALNNLQSGTTQGISGQDAVEIHSAHFNNSTGFLGAKGALVLKATDLTNGSGGQIIGQNSVQVEGARVDNRGGQLQGLGDVQLVLGETLDNQGGLVRSAGTLGVTADVLDNSATQGANQGLEGRAMSLALDTFGNQAGAVRADQGLSIGVSQALDNQGGLVSAGAGLTITDRDPAQRRQAVHNLDGTLLAGSLLSLNAAYYAGTGRALSLGDLTFSLQSGLDLSGQIQANNKVDLSTDGAFNNSGKLLAGNLLLVRSQTLDNAATGEISAGQVRLTVNNSLTNRGLIDGQQVRVQALSLNNLGTGRLYGDRLAIATSALANRDENGVAATIAARESLDIGTGTLDNREQAMIFSAGDLAIGGALGATDRAQDRAQLLTNASATIEALGNLSLDVQSVRNTNEHFSTQQVEVSRTALQEFQLSGSPNRYQGNQISVSHDEVNYLNTPEGSKDSWNRYDYTRVVQETQIATSAPAQILSGGTMQINAGDVLNDKSRIIAGGLLQADITSLTNTELTGQRITTDSGTATSFYRIQRKGRDRQGTAMTGYTPAPLIQDITLQPTVFAQNAAGNGTGTQISARATQGVGEQIAATGTVSAPVDRTFQVAPIVQVAAQTTLNSKGVAEQIRSGGPSLALPDNSLFTTNPQNTSSYLIETDPRFASYRTWLSSDYMLQRLQVDPALTQQRLGDGFYEQKLIREQVAQLTGRRFLDGYANDEAQYRALIDNAVTVASQWQLVPGVALTSAQMAQLTSDIVWLVQKQVTLANGDTRNVLVPQVYVRVQEGDLNGSGALIAGQQLNLNIAGDLINSGSLAGRSVMAITAQNIDNLGGRIQADKASLTARENLNNLGGLIGAVDNLSIKAGQDVNVVSSSRDSSSAQGTRTNLSRVAGLFVSGAQGTMGVSAGNDLNLTGAQVVNAGKGGSTLLEAGKNINLATVGEAHEQALAWNSSNWRKDASQTEVGSQIQGQGDVRLSAGQDLNARAAQVTSEQGAVFAEAKRDVNLTTGQNYQFADEAHKVKGSNGMFSSKTTTTRDTISQTSLEGSTLSGEQTYVQAGRDINLKGSNVVSTTQTILVADNNVNIEADTASSSERHDKSVKKSGLFSGGGIAVTMGTQQQSVKDLTTEHTAVASTVGSTTGDVLIEAGKGYRQVGSQVSAPQGNIDVTAQTIDVVEARNTRERERETLFKQTGFTLTVTNPVISAIQTSQQMKRASEKTDDGRMKALAAATAVLATNNAATAVAMDPGAAGGINISLSLGTKKNESTTTYTSDSAAGSTMTAGNDVRLRATGAGAASNITVQGSDIKAGRNASLLADGDINLLAARNIDKQETDSKGSSASIGIGFSLGARNGFTLDLGASGTRGQADGDGLTHTNTHVQAGNQLLLSSGGDTNLKGAVASGKRVLADIGGDLNIESLQDTNTYVVDEKSLGVGISLCIPPFCYGMSSVNGVSGSFGATDIDSNYASVTEQSGIKAGDDGFDIRVGGNTDLVGAVIASSDKAVQDGKNRLVTASLTSRDIKNRAEYDASTVSVGGGYREVGKDQQGNATSGGTQTPGTDLPKNDNDLSATMPIAISASDDASSVTRSGISGGTIVISNDAEQQKRTGQNGEQTVASLNRDVSSDRDTTNTLKPIFDEDEIRAGFEIVGAFSNEASTLLANKAKEVDYKRKQAEEAQNKALDPNAKLTDSERLALLGSAQRLNAEARGIADKWGAGGTYRQITTALVGAASGNISGGNSAFVQGLVVNYLQQQGAGYIGDLVADGKLTEGSPLHAALHGIVACAGAAASSQSCGSGAAGAAASSLLTGLFSEASPDESEAQREAKRNLIVSIVTGLAATSSSLDPATANSAAGAAVDNNWLATQQLVQAEKEYSAADGLGAKAQVIAKWAYIHQKQDVLTRFGLGKGLVQAGWNDVEGLAQFLLNPVDGINGIKALINDPEVRKQLQDGVFNELNAKLDRVKDALENGGDDRAVQLGQDIGELVWQVGSIATGVGGAAKGGVALAKAGIKVGAEGLEKMADMARLEKLAKNVDQLPERIPVEPVRPNTSNAGAETGGQHVESPLALPAPARHSVPDGYTVAENANGTVTVTGPRGGIYNSTGRYTNDGKPIYRDNNGGFVSLEGGRTPVSAPPDYSSVPVHHICTNKCNAGANGQIAWSKQFQKFFDGSDLDINKATENLVAVPGHRGPHPQSYHQYVYGSLDDATRGLEPGTAQYKSAVVNTLNRIKVEAVTPGSSVNRWLTGSNANANANANA
D1-35_00359597hypothetical proteinATGAAATATTACTTGTTGCGAGAAGATGTACAGTTTCCTGAGCGTTGGTATTTGGGTGATATAAAGCACTGCAATAACTGGCTCTTTATCGATCCTCCTGCAGAATATATGGAGCCATGTACCTACGCTCTTGAGGTTCTTGAAGAGGGCGTGAGTCTGGATTTTTCCTTAGCTGGATATGCCTCCGTGCCGATCTTGAGTAAAAAAGCCAGGGATGCGTTGGCAGGAATTCCCGACGTTGATGAGCCTTATATGAATGTCGTGCTTGAGCCTGTGACGGTTGCAGGTAAGCAAACTCATGATCATTACTATGTAATGATCGTCGAGACTCAATTGGATTGCGTAGATGAATCACGTTCCACTTTTGAAAAATATGAGGTTGATGACCCCGTTCGACCTGATCGAGCTGGTGAGTACAGAGTTTTTCTCAATCTTATAATTGATCCTACCAAGGCTCAGAGAAAACATATTTTTCGTATCAAGAAACATTTGGGGGCATTGATAGTTAGCGAGGATGTAAAACTTAAACTGGAACGAGCAGGTCTTACAGGGATGCTATTCGAAGGTGTTAATGGCGAGGGCGAAGTTGTGTGTTAAMKYYLLREDVQFPERWYLGDIKHCNNWLFIDPPAEYMEPCTYALEVLEEGVSLDFSLAGYASVPILSKKARDALAGIPDVDEPYMNVVLEPVTVAGKQTHDHYYVMIVETQLDCVDESRSTFEKYEVDDPVRPDRAGEYRVFLNLIIDPTKAQRKHIFRIKKHLGALIVSEDVKLKLERAGLTGMLFEGVNGEGEVVCNANANANANA
D1-35_00360900hypothetical proteinATGATTCGGGCACCGCTGGGAGACTCCCGCTATTGGTCGGAATGGGTTGAGTATGGTGATGAGAGTATCGTCGACGCGCTGGAGACCGCCGCCAAACCTGCTGGCGATCCCGATTATGCGCCGCAGTACGTTTTCATCATTGCGCAGAAACACTGGCACCAGATGCTGCGCCGGTATTCCGCTGGAGATCCGATAGCGGACCTTTCGCGATACTTCCCCGGGCTGCTCGATGCTTGGGAAGAGGCCGAGCACCTTGGCGCGACGGTCTGGACCCAGGAGCAGCAATTCACTCGCCATAGCTGGCGCGTCAACTACGACCATTACATCACCTGCTTCTGGCTGGTAGGGTTGGGATTGGCGCTGGATATTCCAGATGACCAGTGGAAGCGGTTGTTGACGTTGATCGGTAACGAAGGCGAGGACGTGCTACTCGACCGAATAATCGCGAGTCGCAGCCCTGAACGCAAAACAGGTTCTGTGCTTCTTTATCCGAAACCCTACGCTCGGTTGCTGACGGCGATAGACGCTCCGGCGGATTCGCAAGCCTCCCTGTTGAGTGCGTTCGTCAAGCATTGGTACGTGGAGGTGCGTACCGGTGCCAAGTCTGGCTCTGATCTTCAGGCCGTCAGTTATAGACACCCCTATTGGTACACCTATGGCGATGAAAATTTCGAGGGCGGCGCCTATTTCGGTCGTTGGTGCGTTGAGGCCGTGGCGGCGGTCAAGGCTTTCGATATCGACGACTCACAGTGCTTGGGGCTTGAGCATTACCCGGGGGACTTATTGAGACCCAATGGGCCGAGTACGCATCCGGCGAGGCTGGAAGTTGACCCGCCTGCTACGGTGGTTGTGGAGAATAAGGGAGGGTTTTGGGCGAGGTTGTTGGGCCGTCGTGAATGAMIRAPLGDSRYWSEWVEYGDESIVDALETAAKPAGDPDYAPQYVFIIAQKHWHQMLRRYSAGDPIADLSRYFPGLLDAWEEAEHLGATVWTQEQQFTRHSWRVNYDHYITCFWLVGLGLALDIPDDQWKRLLTLIGNEGEDVLLDRIIASRSPERKTGSVLLYPKPYARLLTAIDAPADSQASLLSAFVKHWYVEVRTGAKSGSDLQAVSYRHPYWYTYGDENFEGGAYFGRWCVEAVAAVKAFDIDDSQCLGLEHYPGDLLRPNGPSTHPARLEVDPPATVVVENKGGFWARLLGRRENANANANANA
D1-35_003611608lapBLipopolysaccharide assembly protein BATGCTCGCGTACCACCAAAAAAGTTTTCTGATCGTCGATGATTTCTCGGATTTCCGCAGTTCCGTCCGGTCCATGTTGCGGGAGCTGGGCGTCAAGGACGTGGATACCGCCGATACCGGTGAAGTGGCCCTGCGCATGTGCTCGCAGAAGCGCTACGACTTTATCCTGCAGGATTATCACCTGGGCGACGGGCGCAAGAATGGCCAGCAGGTGCTGGAAGACCTGATGGTCGAGAAGCTGATCAGCCATGAAAGCGTGTTCCTCATGGTGACCGCCGAGACCAGCCAGGCGATGGTGCTCAGTGCCCTGGAACATGAGCCGGATGCGTACCTGACCAAGCCATTCAATCGCTCCGGCCTGGCCCAGCGGTTGGAGCGGCTCGAGCAGCGCAAGACCTTGCTCAAGCCGATCCTGCAAGCCCTTGACCGTGGCAAGCCGATGGAGGTGCTCAATGCCTGTATCGCCCTTTGCAAGCAGGACCCTCGCTACGGGCCGCTGTGCCTGCGTTATCGCGCCGATGCGTTACGCGACCTGAATCAGAACGAGGCCCTTGAGCGGTTGTACAACTCCATCATCGCGGATCGTCCGTTGCCTTGGGCGTACGCGGGGCTGGGGAAGCTGCTGTTCAAGCGCGGGCAGGTGGGCGAGGCCAAGGCTGTCTATGAAAAAGCCTTGAAGGCTTTTCCGATGATGCCCGCCCTGTACGACGGCATGGCCGATGTGCTGGTGGCCGAAGGTGATACGAAGCAGGCGCAAAACGTGCTGGAAGAGGCGGTGCGCCTGTCGCCCCTGGCGGTGCGCCGGCAAGCGCTGCTGGGCAAGCTGGCAATGACCAACGAAGATTACGACACCGCGTCGAGAGCCTACCGCCAGGCGGTGGGGCAGGGCGCGCAGTCGCGCTTCAAGGACCCGGAAACCAACCTCGGCCTGGCCCATGCGCTGATCAGCAAGGGCAGCGAAAAAGGCCTGGATACCCGCACTCGCCTGGAAATCAACACGACGCTCAGCGCCGTGGCCAAGGAAAACCCCAGCGATCCGGGGCTGCAAGTCCGGGCGCGGCTGATGAAGGCCACGAGCCTGCTGCTCAACGATGCCGAAACCGCCGAGAAGCTCACCGAGCAGGCGTTGCAGCGCCTCGACGGCATGGAGCAATTCATGAGCGCCGAAGCCGCCTTGCTGGTGGCCAAGCAGTTGCAGATGCTTGGACAGACCAGCGCCGGCGAGTCGATGCTGAAGAACTGCGCGGAAATCTACGGCGATGACCCGACGGTGATGCAAGGCATCGCCAAGCTCACCGATGACCCCAACATTCTCAATCAGGGCAACGCCGCCGCCGAGCTGAACCGTGAGGGTGTGCGCGTCTACAAGACCGGCGCCTTGCCCGAGGCGCGAGAGCTGTTCCGGCGCGCCCTGAAGCTGCAACCAAAAAACATCAGTATTGCCCTGAACATGGCGCAATCCCTGCTGCACGGCACCGATACCAGCGTCGAATCGGAGCTGCTCCAGGAATGTCGCGCCTGCCTGAAACTGGTGGGCATGATGCCCGATACCGATGCGCGTTTTGCGCGCTATCAGAAACTGCGAAGCAAGGCATTTGGCGATGAATGAMLAYHQKSFLIVDDFSDFRSSVRSMLRELGVKDVDTADTGEVALRMCSQKRYDFILQDYHLGDGRKNGQQVLEDLMVEKLISHESVFLMVTAETSQAMVLSALEHEPDAYLTKPFNRSGLAQRLERLEQRKTLLKPILQALDRGKPMEVLNACIALCKQDPRYGPLCLRYRADALRDLNQNEALERLYNSIIADRPLPWAYAGLGKLLFKRGQVGEAKAVYEKALKAFPMMPALYDGMADVLVAEGDTKQAQNVLEEAVRLSPLAVRRQALLGKLAMTNEDYDTASRAYRQAVGQGAQSRFKDPETNLGLAHALISKGSEKGLDTRTRLEINTTLSAVAKENPSDPGLQVRARLMKATSLLLNDAETAEKLTEQALQRLDGMEQFMSAEAALLVAKQLQMLGQTSAGESMLKNCAEIYGDDPTVMQGIAKLTDDPNILNQGNAAAELNREGVRVYKTGALPEARELFRRALKLQPKNISIALNMAQSLLHGTDTSVESELLQECRACLKLVGMMPDTDARFARYQKLRSKAFGDENANANANANA
D1-35_00362693hypothetical proteinATGAATGACAGCGAACAGGCTCTCGATTTTTCCACGGTGATTGCATCTACCGTGCACGATATGAAGAACTCCCTGACCTTGCTCATGCAGGCTCATACGCAATGGCTCGAGCGTTTGCCGGAGTCCGAGCGACAGACTTCGGAGCAGGGCGTGATGGACTTCGAGTTCGCCCACCTCAACGGCCTGCTGGTGCAACTGCTGGGGCTGTACAAGCTGGGGGTCAACCAGTTGCCGTTGCATCCGGCCTATCATGAGTTGGATGACTTCATCGAAGCGCAGCTGGCCGGCCATCAGGACGTGTTCCGCAGCCGCGGAATCATGGCCACCTACGAAGTCGACCCGCTGAGTCCGCTGGGCTTTTTTGATCGTGAGTTGATTGCCTCGGTGCTCGACAACATGATCAACAACGCGATTCGCCATGCTCGGCAGACGCTCTTGATCAGCGTGAGCGACGAGGCCGGGCAACTGGTATTGACCATCAATGACGACGGCGAAGGCTATCCAGCTGCGATGATCGAGCGTCAGGCCGAGTATGTGCAGGGCATCAACCACAGCTCCGGCAGCACCGGCCTGGGCCTGTATTTCGCCGCGAGGATCGCCGGTCTGCATCAGCGGGGTGGCTTGAGCGGGCGTACCGAGATTGCCAATGGCGGCGTGCTGGGCGGCGGGGTGTTCAGGCTTTACCTGCCCTGAMNDSEQALDFSTVIASTVHDMKNSLTLLMQAHTQWLERLPESERQTSEQGVMDFEFAHLNGLLVQLLGLYKLGVNQLPLHPAYHELDDFIEAQLAGHQDVFRSRGIMATYEVDPLSPLGFFDRELIASVLDNMINNAIRHARQTLLISVSDEAGQLVLTINDDGEGYPAAMIERQAEYVQGINHSSGSTGLGLYFAARIAGLHQRGGLSGRTEIANGGVLGGGVFRLYLPNANANANANA
D1-35_003631344ipuCGlutamate--isopropylamine ligaseATGACGACCGATGGCCAGCGTTCACTCGCACAGCGACTGACGGGCATTGATGAGATTGAATGTGTCACGCCGGATTTGAATGGCGTGCCGCGAGGCAAGGTGATGACCGCCGAGGGCTTCCTCGAAGGCCGGCGGTTGCAGATGGCGCGGGGCGTGCTGCTGCAATGCATCATGGGCGGTTACCCGCCGTCGCGTTTTTATGGCAGCGATGATGGCGACCTGGCGCTGGTGGCCGATCCGAAACAGATCCATCGCTTGCCATGGAGTCATCCGCCCCGTGCCCTGGCGATTTGCGACGCCGACGAGCTCAGCGGGGAGAGCTCGCCGCTGTCGACCCGTGGTCAGCTCAAGGCTGTGATAGCGCGCTATGCGGCGCTTGGGCTGGCGCCGGTCGTCGCGACGGAACTGGAGTTTTTTGTCTTCGCAGCCAATCCGGATCCGACCCAGCCGTTCCGACCGCCGGTGGGCCTGGACGGACGCCGCGAAGACGGCCAGTCGGCGTTCAGCGTCAGCTCCAACAATGGCTTGCGCCCGTTCTTCACTGAAGTCTACGAATGCATGGCGGCGTCGGGTTTGCCGCGCGATACGTTCATGCATGAAATGGGCGTGAGCCAGTTCGAAATCAATCTGCTGCATGGCGATCCTCTGTTGCTGGCCGACCAGACGTTCCTGTTCAAGCACTTGCTCAAGGAAGTGGCGCTCAAGCACGGCCTGACGGTGGTCTGCATGGCCAAGCCCCTGGCGCAGACGCCAGGCAGTTCGATGCACATTCATCAGAGCGTCGTCGAGCTGGACAGTGGTCGGAATGTATTCAGCGACGAGGCGGGCGAGCCGACGGCTGTTTTCCGTCACTTCATCGGTGGGCAGCAGGCCGGCATGGCGGATTTCACCGCACTGTTCGCGCCGAACGTGAATTCCTACCACCGCTTGTGCCACCCGTTTGCTTCGCCAAACAACGCCTGTTGGTCCCATGACAATCGTTCGGCCGGGTTGCGCATTCCGGCCAGTTCGCCGGCGGCCCGACGGGTCGAGAACCGCTTGCCGGGGGCTGACGCCAACCCGTACCTGGCGATCGCGGCGAGCCTGGCGGCCGGGCTGTATGGCATCGAAAACCGGCTGGAGCCAAGCGCCGCAATCCAGGGCGAATTCGAAGTGCCGGAGAATCTCTCCCTGCCATGTACCTTGCATGCGGCCCTTGAGCGTCTCAAGCGTAGCCACTTGGCGAAGGAACTGTTCGGCAGCGAGTTCATCGAAGGTTACATCGCGTCGAAGAGCCTGGAACTGACCAGTTTCTTTGACGAGATCACGCCTTGGGAGCGGCGCGTCCTGGCGGCCCAGGCATAAMTTDGQRSLAQRLTGIDEIECVTPDLNGVPRGKVMTAEGFLEGRRLQMARGVLLQCIMGGYPPSRFYGSDDGDLALVADPKQIHRLPWSHPPRALAICDADELSGESSPLSTRGQLKAVIARYAALGLAPVVATELEFFVFAANPDPTQPFRPPVGLDGRREDGQSAFSVSSNNGLRPFFTEVYECMAASGLPRDTFMHEMGVSQFEINLLHGDPLLLADQTFLFKHLLKEVALKHGLTVVCMAKPLAQTPGSSMHIHQSVVELDSGRNVFSDEAGEPTAVFRHFIGGQQAGMADFTALFAPNVNSYHRLCHPFASPNNACWSHDNRSAGLRIPASSPAARRVENRLPGADANPYLAIAASLAAGLYGIENRLEPSAAIQGEFEVPENLSLPCTLHAALERLKRSHLAKELFGSEFIEGYIASKSLELTSFFDEITPWERRVLAAQAPGPT0000645_7390DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMATE_DEGRADATION|CONVERSION,PGPT0000645-glnA-K01915NANA
D1-35_003641368ycaD_1putative MFS-type transporter YcaDATGCGCCAAATCTGGAAACCTTTTCGAGCGCTTTATTTCGCCTCGCTGATGATGCTCATCGGCTCGGGCCTCCTGAGTACGTACCTGGCCTTGCGTCTGGCTGCCGACAACGTCGACAGCCTGTGGGTCGGTGCGTTGATGGCCGCCAACTATTTCGGCCTGGTGCTGGGCGGCAAGATCGGCCATCGGCTGATCGCCCGGGTCGGGCATATTCGCGCCTATTCGGCGTGCGCCGGGATCGTCGGCGCGGCGGTATTGGGTCACGGCCTGGTGAACTGGCTGCCGGCCTGGATCGTGCTGCGGATGATTGTCGGCCTCGGCATGATGTGCCAGTACATGGTTATCGAGAGCTGGCTCAACGAGCAGGCCGAGGCCAAGCAGCGCGGGGTGGTGTTCAGCGGCTACATGATTGCCTCGTACCTGGGGCTGGTGCTGGGCCAGCTGATTCTGGTCATGCACCCGGCCCTGGGCCTGGAGCTGCTGATGCTGGTGGCGTTGTGTTTCGCCCTGTGCCTGGTGCCCGTGGCGCTGACCCGGCGGATTCACCCGGCGCCGCTGCATCCGGCACCGATGGAGCCGCGTTTCTTTATCAAACGCGTGCCGCAATCGTTGACCACGGTGCTTGGCTCGGGGCTGATCGTCGGCTCCTTCTACGGCCTGGCGCCGCTGTACGCTTCCCAGCAGGGGCTTACTACCGAGCAGGTCGGTCTGTTCATGGGTAGCTGCATCTTTGCCGGCCTGCTGGTGCAGTGGCCGCTGGGTTGGCTGTCGGATCGTTATGATCGTGCGCTGCTGATCCGCTGCTTCGCGCTGATCCTGGTGGTGTGCGCGTTACCACTGGCGATCCTGTCGAAGGTGCCGGTGGAGGTCCTGTTCATCGCGGGATTCTGCTGTTCGCTGGTGCAGTTCTGTTTGTATCCGTTGGCGGTGGCGTTTTCCAACGACCACGTCGAAGGCGATCGCCGAGTGTCGCTTACGGCCATGTTGCTGGTGACTTACGGCGTGGGAGCCAGTATCGGTCCGTTGGCGGCCGGGGTGCTGATGAAGCTGTTCGGTAGCCAGATGTTGTACGGATTTTTCGCCTTGTTCGCCTTGGTGCTGGTGTGGCGGATCCGGCCGAAAGCGGTCACCAACCTGCATCAGGTCGATGATGCGCCGCTGCACCACGTGGCCATGCCGGACAACATGACCAGCTCACCCTTGGTGGCGTGCCTCGACCCTCGGGTAGACGAGCAGGTCGTCCAGGATCAGATGCAGACCTCGCCCAACCCCGACGTGGAGCCTGAGCCTGAGCCGGAATTGGAGCCGGTCACCGAAGGCGCGGAAGACGAACCGCCACCTTCGGATTTCACCCGGGCCAGGCCTTGAMRQIWKPFRALYFASLMMLIGSGLLSTYLALRLAADNVDSLWVGALMAANYFGLVLGGKIGHRLIARVGHIRAYSACAGIVGAAVLGHGLVNWLPAWIVLRMIVGLGMMCQYMVIESWLNEQAEAKQRGVVFSGYMIASYLGLVLGQLILVMHPALGLELLMLVALCFALCLVPVALTRRIHPAPLHPAPMEPRFFIKRVPQSLTTVLGSGLIVGSFYGLAPLYASQQGLTTEQVGLFMGSCIFAGLLVQWPLGWLSDRYDRALLIRCFALILVVCALPLAILSKVPVEVLFIAGFCCSLVQFCLYPLAVAFSNDHVEGDRRVSLTAMLLVTYGVGASIGPLAAGVLMKLFGSQMLYGFFALFALVLVWRIRPKAVTNLHQVDDAPLHHVAMPDNMTSSPLVACLDPRVDEQVVQDQMQTSPNPDVEPEPEPELEPVTEGAEDEPPPSDFTRARPNANANANANA
D1-35_00365747ycgRCOG5581Flagellar brake protein YcgRGTGTTCAATGCCACAAACGCGGATGATGCTCCGCAGCCGCCCATGGTCCTCACCACCCCCTTGGAAATCTCCGGCAACCTGCGGATGCTGCAAGAGAGCCACGACCCCCTGATCATTACCTTTCATGAGCGCACCCAGCGTTTCCAGAGCTACCTGGTGGATGTCGATCGCGACACCAACACCATCGCCCTGGACGAAATGATCCCACGGGACGGCGAGCGTTTCCTGCTGGCCGGCGAGCCGTTTCGGGTCGAGGGTTTTCATGACGGCGTGCGCATTGCGTGGGAAGGCAACGGGCCGCTGACTATCCAGGACTCGAAGGACGGCCGCTGCTACCGCGGCGCCCTGCCTGAAGAAGTGGTTTACCACCAGCGCCGCAACGCCTTCCGGGCCGCACTGAAACTGGCGCAACTGGTGAATGTTGAACTGGGTGGCGACAAGTTCAAGTCACCGGTGAACGGCAAACTGCTGGATATCTCCGCAACCGGCTGCAAGCTGCGCTTCGATGGCGACATTACCGCACGCCTGCAACTGGGCCAGGTCTACGAACGTTTTGTCGCCGCCCTGCCCTTCGGCAACATGACCGCGCCGGTCGAACTGCGCTACCTGCATTTTGAAGAGCGGATCAATACCACCTTCGCCGGCGTGCGCTTTCACAACATCAGCGGCCTGGTGCAGCGCCAGGTCGAACGCTTCGTGTATCAATTGCAGCGTGAAGCCCGGCGGTTCGACAAAGACGATTTCTGAMFNATNADDAPQPPMVLTTPLEISGNLRMLQESHDPLIITFHERTQRFQSYLVDVDRDTNTIALDEMIPRDGERFLLAGEPFRVEGFHDGVRIAWEGNGPLTIQDSKDGRCYRGALPEEVVYHQRRNAFRAALKLAQLVNVELGGDKFKSPVNGKLLDISATGCKLRFDGDITARLQLGQVYERFVAALPFGNMTAPVELRYLHFEERINTTFAGVRFHNISGLVQRQVERFVYQLQREARRFDKDDFNANANANANA
D1-35_00366468hypothetical proteinATGCACGATACTAATTTGTTGCAATTGATCATCGACGACTTTGCCCCGGCGCAACAATTGCTGGAGCTGTTGCAGACCGAAGCCCTGGCATTGCACGGGCGGGATATGCCTCTGCTGGAAAATCTTCTGGCGCAGAAACAGGCATTGATCATTTTGCTCGATCAGCATGGCCGCAAGCGCAGCGAGATTCTCGCCAGCCTCAACCTGCCCGCTGACAACAACGGCCTCGCGCAACTGGCCAGCCAGTCGTCGGTTGGCGATCAGCTGTTGTCGCAAAGCGCGGTGCTCAATGACCTGCTCAGCCAGTGTCAGGCCGCCAACGCCCGCAACGGTCAATCCATCCAGATGCAGCAAGTCGCTACCGCCAACCAGTTGCGGATCCTCAATGGCGGCGAAATCCCGACGCTCTACGACGCTCGCGGTTCGACCGCAAAAATGGTCAAGCACCGTCCGCTCAGCCAGGCGTGAMHDTNLLQLIIDDFAPAQQLLELLQTEALALHGRDMPLLENLLAQKQALIILLDQHGRKRSEILASLNLPADNNGLAQLASQSSVGDQLLSQSAVLNDLLSQCQAANARNGQSIQMQQVATANQLRILNGGEIPTLYDARGSTAKMVKHRPLSQAPGPT0015535_299DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLUM_CONTROLMOTILITY-FLAGELLUM_REGULATION,PGPT0015535-flgN-K02399NANA
D1-35_00367315hypothetical proteinATGGTCATCGATTTCAATCGTTTAAACAGCTCCTCGCCGCTGACAGGCACAACGCGCACTGGCGCCAGCAAGGAAACCGTCGAAACCGACAAGTCCAAGCCGGCTGACAAGGCCGTCACTGTCAACAACGGGGAGTCGGTACACCTCAGCAATGAGGCTCAGCAGTTGCAGAAGGTCACTGACAAGCTGCGCGATCAACCTGTCGTCGACGACGCCCGCGTGGCGCAGTTGAAAGCAGCAATCGCCGATGGCAGCTATAAAGTCGACAGCAACCGTGTAGCCAGCAAACTGCTCAACTTCGAAGCCCAGCGCTAGMVIDFNRLNSSSPLTGTTRTGASKETVETDKSKPADKAVTVNNGESVHLSNEAQQLQKVTDKLRDQPVVDDARVAQLKAAIADGSYKVDSNRVASKLLNFEAQRPGPT0015530_534DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0015530-flgM-K02398NANA
D1-35_00368765hypothetical proteinATGAACGCACAAACGACATTTTCTCGACGCCTGACCACTCACTGCCGCCACTGGCTCGGTGCACTGTTTGCCGTCTGCCTGTTTGCGGTCGGCGGACGCGCCGTCGCTGATGTGCCGGTTACCTTGCCTGATCTCCTTATCGGCGTCACGCAGGGCTTTCTTGAATTCACCGTAGAAGACTATCTGGCAACCAGTCAAACCGAAGGTCGCTACGAGATTGAAGTCAACCAGCTCGATCCGCGCCTGCGCATGCCGATGTGCGACAAGGAATTGACTGCCTCGCTGGAAAGCCCGGCAAGGCCCCTGGGCCGGGTCACGGTGAAGGTACGTTGCGACAGCGCCGCGCCCTGGACGGTTTTTGTGCCCGCTCAAGTGCGGCTGTTCCGCGAGATTGTCACGACCACCCGTCCGCTCAAGCGCGCCGGGATTGTTGAGCCGCAGGACGTGGTGCTGCGTGAACGCGACATCAGCCAGATCAGCCAGGGTTTCCTGACGTCCGCCGATCAGGCCATCGGGCAGAAACTTGTCCGACCAATGGTCGCCGATCAGGTCGTTACCCTCGTGCACCTGGAACAGGCCGAAGTGATCCGCAAGGGCGACCAGGTCGTCATTACCGCCCGCAGCGGCACCCTGGCCGTGCGGATGCCCGGCGAGGCGCTGGCCAATGGCGGCGTACGCGAGCAGATTCGGGTGAAGAACCTCAATTCGAAACGGGTGATCAAGGCGCAGGTGATAGCGCCCGGCCACGTGGAAGTGGCCATGTAAMNAQTTFSRRLTTHCRHWLGALFAVCLFAVGGRAVADVPVTLPDLLIGVTQGFLEFTVEDYLATSQTEGRYEIEVNQLDPRLRMPMCDKELTASLESPARPLGRVTVKVRCDSAAPWTVFVPAQVRLFREIVTTTRPLKRAGIVEPQDVVLRERDISQISQGFLTSADQAIGQKLVRPMVADQVVTLVHLEQAEVIRKGDQVVITARSGTLAVRMPGEALANGGVREQIRVKNLNSKRVIKAQVIAPGHVEVAMPGPT0015415_590DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_M|S|P|L-RINGS,PGPT0015415-flgA-K02386NANA
D1-35_00369927cheV_1COG0784Chemotaxis protein CheVATGGCGGGAGTGATGGATTCGGTAAACCAGCGCACACAGCTGGTCGGTCAGAATCGCCTGGAGCTGTTGTTGTTCCGTCTCGATGGCCAACAACTGTATGGGATCAACGTGTTCAAGGTTCGCGAAGTGCTGCAATGCCCTAAGCTGACCCTGATGCCGAAGTCCAGTCCCGTCGTGTGCGGTGTGGCGAATATCCGGGGGGCGACCATCCCGATTCTCGACCTGGCAATGGCGACCGGTTCCGGTCGGCTGCTGGATCAGAGCAATCCGTTTGTGATCATCACCGAGTACAACACCAAGACCCAAGGGTTCCTGGTGCGGTCGGTGGAGCGCATCGTCAACATGAACTGGGAAGAGATCCATCCGCCGCCCAAGGGCACCGGCCGCGATCACTACCTGACGGCGGTGACCCGGGTCGACAACCAGTTGGTGGAAATCATCGACGTGGAGAAGATCCTCGCCGAAGTGGCGCCGACCCCGGAGACGATTTCCGTCGGCGTGGTGGATGCCGAGACCCAGCACAAGGCGATTTCGCTGCGAGTCCTGACCGTCGACGATTCTTCAGTGGCACGCAAGCAGGTCACGCGGTGTCTACAAACGGTCGGCGTCGAAGTGGTCGCCCTCAACGACGGACGGCAAGCGCTGGATTACCTGCGTCAGATGGTCGATGAGGGCAAGAAGCCGGAAGAAGAGTTCCTGATGATGATTTCCGACATCGAGATGCCGGAGATGGATGGCTACACGCTGACGTCGGAGATTCGCAGCGACCCGCGCATGCAGAAGCTGCACATCATCTTGCATACTTCGTTGTCCGGGGTTTTCAACCAGGCGATGGTCAAGAAAGTCGGCGCCGATGATTTTCTGGCCAAGTTCCGGCCCGATGACCTGGCGTCGCGGGTGGTCGAGCGAATCAAGGCAGCAGAATAAMAGVMDSVNQRTQLVGQNRLELLLFRLDGQQLYGINVFKVREVLQCPKLTLMPKSSPVVCGVANIRGATIPILDLAMATGSGRLLDQSNPFVIITEYNTKTQGFLVRSVERIVNMNWEEIHPPPKGTGRDHYLTAVTRVDNQLVEIIDVEKILAEVAPTPETISVGVVDAETQHKAISLRVLTVDDSSVARKQVTRCLQTVGVEVVALNDGRQALDYLRQMVDEGKKPEEEFLMMISDIEMPEMDGYTLTSEIRSDPRMQKLHIILHTSLSGVFNQAMVKKVGADDFLAKFRPDDLASRVVERIKAAEPGPT0015675_1358DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015675-cheV-K03415NANA
D1-35_00370828cheR2Chemotaxis protein methyltransferase Cher2TTGTCTACGGGTAATTTGGATTTCGAACAGTTCCGGGTCTTCCTGGAAAAAGCCTGTGGCATCTTGCTTGGTGAAAACAAGCAGTACCTGGTGTCGAGCCGTCTCAACAAATTGATGGAACAACAGGGTCTCAAGTCGCTGGGCGAACTGGTGCAGCGCATCCAGACCCAGCCACGCAGCGGTTTGCGCGAGATGGTGGTGGATGCGATGACCACCAACGAAACCCTGTGGTTTCGCGATACCTATCCCTTCGAGGTATTGAAGAACCGGGTGTTGCCGGCGGCCATCAAGGCCAGTCCGGGGCAACGCCTGCGCATCTGGTCGGCGGCCTGCTCGTCGGGACAGGAACCGTATTCGCTGTCGATGTCCATCGATGAGTTCGAACGCTCCAACCTCGGCCAGCTGAAGATGGGCGTGCAAATTGTCGCCACCGACCTGTCCGGGACCATGCTCAACAACTGCAAGACCGGTGAGTACGACAGCCTGGCGATCGGCCGTGGCCTGTCGCCTGATCGCCTGCAACGCTATTTCGATCCGAAAGGGCCGGGCAAGTGGGTGGTCAAGGCGCCGATCAAGAGCCGCGTGGAGTTCCGCTCGTTCAACCTGCTGGACAGCTATGCCAGCCTGGGCAAGTTCGACATCGTGTTCTGCCGCAACGTGCTGATCTACTTCTCCGCCGAGGTGAAGAAAGACATCCTGCTGCGTATCCACAGCACCCTGAAGCCGGGCGGCTACCTGTTCCTAGGCGCGTCCGAGGCGTTGAACGGCTTGCCGGATCATTACCAGATGGTCCAGTGCAGTCCGGGGATCATTTATCAGGCGAAGTGAMSTGNLDFEQFRVFLEKACGILLGENKQYLVSSRLNKLMEQQGLKSLGELVQRIQTQPRSGLREMVVDAMTTNETLWFRDTYPFEVLKNRVLPAAIKASPGQRLRIWSAACSSGQEPYSLSMSIDEFERSNLGQLKMGVQIVATDLSGTMLNNCKTGEYDSLAIGRGLSPDRLQRYFDPKGPGKWVVKAPIKSRVEFRSFNLLDSYASLGKFDIVFCRNVLIYFSAEVKKDILLRIHSTLKPGGYLFLGASEALNGLPDHYQMVQCSPGIIYQAKPGPT0015670_3150DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015670-cheR|pilK-K00575NANA
D1-35_00371408flgBCOG1815Flagellar basal body rod protein FlgBATGAGCATCAGCTTCGATAAAGCGCTCGGTATCCACGAACAGGCCCTGAGCTTCCGCGCCCAGCGTGCCGAAGTCCTGGCCAACAATATTGCCAACGCCGACACCCCGAACTACAAGGCCCGTGACCTGGACTTTTCCAAGGTGCTCGCCGAGCAGAACGAAAAAACCAAGAACGGCCACTTCGCCTTGAACATGACCAACAACCGTCATATCGAAGCCGAGGGCGTTGGCAGTGGCGACGGATCGTTGATGTATCGCACGCCGATGCAGCCGTCGATCGACCAGAACACCGTGGATGCTCAACTGGAACAGTCCAACTACGCGGAAAACTCCGTGAACTTCCAGGCCAGCTTCACCCTGCTCAACAGTAAATTCAAAGGGCTGGTATCAGCCCTGCGTGGAGAGTAAMSISFDKALGIHEQALSFRAQRAEVLANNIANADTPNYKARDLDFSKVLAEQNEKTKNGHFALNMTNNRHIEAEGVGSGDGSLMYRTPMQPSIDQNTVDAQLEQSNYAENSVNFQASFTLLNSKFKGLVSALRGEPGPT0015470_1042DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015470-flgB-K02387NANA
D1-35_00372444flgCCOG1558Flagellar basal-body rod protein FlgCATGTCGATCGCGAGCGTATTCAACATCGCCGGCAGTGCCATGAGTGCCCAGACCACTCGCCTGAACACCGTCGCCAGTAACATCGCCAACGCCGAGACCGTCTCGTCGAGCATCGACCAGACCTACCGCGCCCGCCACCCGGTATTCGCCACCATGTTCCAGGGCGGCCAGTCCGGCGGCAGCGACTCGCTGTTCCAGGACCAGGACGCGGCCGGGCAGGGTGTACAGGTACTCGGCGTGGTTGAAGACCAGAGCAACCTCGACGCCCGTTACGAGCCGAATCATCCAGCCGCCGACGCCAAGGGTTACGTCTACTACCCGAACGTCAACGTCGTTGAAGAAATGGCCGACATGATTTCCGCCAGTCGTTCGTTCCAGACCAACGTCGAAATGATGAACACCGCCAAAGCCATGATGCAGAAGGTCCTGACCCTCGGTCAGTGAMSIASVFNIAGSAMSAQTTRLNTVASNIANAETVSSSIDQTYRARHPVFATMFQGGQSGGSDSLFQDQDAAGQGVQVLGVVEDQSNLDARYEPNHPAADAKGYVYYPNVNVVEEMADMISASRSFQTNVEMMNTAKAMMQKVLTLGQPGPT0015475_615DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015475-flgC-K02388NANA
D1-35_00373720flgDCOG1843Basal-body rod modification protein FlgDATGAGCGTCACCAATACCACCGGTTTGAGCCTCAACGAAGTACTGGCCAACTCCTCGGTCAAGACCAACACCACGACCGATGGCCTGGGCGCGGCGTCGGCTGCGGCGACTGGCAAGAAAGAGCTGGGCAAGGATGCGTTCCTGCAGTTGCTCGTCACTCAGCTGAATAACCAGAACCCGCTGGAGCCACAGGACAACGGCGAGTTTGTTGCCCAGTTGGCGCAGTTCAGCAGCCTGGAAGGCATCACCACCCTCAACGACACCGTCAGGGGTATTGCCAGCAACTACAACTCGTCCCAGGCCCTGCAGGCTTCTTCGCTGGTGGGCCGTTCGGTCATTGCCCCGGGCGACAAGGCGGTGGTCGACACCTCCAAGAGCCTCAACGGCACCGTGGTGGTACCGACATCGGTGTCGTCCCTCTCGATCAAGATCAACGACAAGGACGGCAAGACGGTGCGCACCATCGAGCTGGGCAGCCAGAACGCCGGCAAGGCCGATTTCATCTGGGACGGCAAGGGCGAAGACGGCACCCCGCTCGAGTCGGGCACCTATACCTTCGCCGCCTCGACCACCATCGATGGCAAGGCGACTTCGCTGGTCACCAACCTGCCGGCCACGGTCAGCAGCGTCACGATCAGCCAGACCGGCGGCGAGCTGATGCTCAACCTCGCCGGCCTGGGCAGCATCCCGCTGTCACGCGTACAAACTATTGGTATGTAAMSVTNTTGLSLNEVLANSSVKTNTTTDGLGAASAAATGKKELGKDAFLQLLVTQLNNQNPLEPQDNGEFVAQLAQFSSLEGITTLNDTVRGIASNYNSSQALQASSLVGRSVIAPGDKAVVDTSKSLNGTVVVPTSVSSLSIKINDKDGKTVRTIELGSQNAGKADFIWDGKGEDGTPLESGTYTFAASTTIDGKATSLVTNLPATVSSVTISQTGGELMLNLAGLGSIPLSRVQTIGMPGPT0015480_517DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015480-flgD-K02389NANA
D1-35_003741332flgECOG1749Flagellar hook protein FlgEATGTCTTTCAATATCGGCCTTAGCGGTCTCTATGCAGCCAACAAACAGCTGGACGTGACGGGTAACAACATCGCCAACGTGGCGACCACCGGTTTCAAGTCGTCCCGCGCGGAATTCGCCGACGTCTACTCGGCCACCAAGCTGGGCTCGGGCTCCAAGACCGTCGGCAACGGCGTGCGCCTGGCCAACGTTTCCCAGCAGTTCGGCCAGGGTGACGTGAACAACACCGGCAACGTGCTGGACATGGGTATCCAGGGCCAGGGCTTTTTTGTCCTGAGCAACAACGGTTCGCTGAGCTACACCCGTGCCGGTACCTTCAAGACCGACAAGGAAGGCTTCATCACCAACAGCGAAGGCACCGCGCGCCTGCAGGGTTATGGCGTGGATGCCAACGGCAAGATCCAGAACGGCATCCTGACCGACCTGCGCATCGACACGTCCAACCTGCCGCCCAAGCCTACCGACCTGATTTCGTCGACCATCAACCTGAACTCGACGGCAGACGCGATTCCGAAGACGGCGACCTACAAGTTCGATCCGGCCAATACCGCCACCTTCACCAAGCAGTTCACCACCCCGGTCTACGATGCCCAGGGTAACCAGCACTCCATGGACCAGTACATGGTCAAGACGGGCGCCAACACCTGGGACGTCTACACCCTGATCGATGGTCGTAACCTGGACGGCAGTTTGCCGACCGCCGCAACCAGTCTTGCGGTCCCTTCGACCATGACTTTTGGTGAGAGCGGCGAGTTGCTTCAGGTGAGCACTCCCGCTCCCATTGCTGTTCCGCCCAATCCACCGATCGTGGGTAGCGATCTGAAGCTCACAGGCTGGATTCCAGGTACCGTGAAAGATGGCGTGTGGAGTGCCAACGGTGCCGATGGCGCTGATACCATTACACTTTCCCTGGGCAAGACCACCCAGTTCAACGCTGACACCGCACGGTCGATTCCTACTCAGAACGGCTACGCCACCGGCCAGATCACCAACCTGACCATCGACGGCAGCGGTGTGCTGCTGGCCAACTTCAGCAACAACCAGACCAAGCCGATCGGCCAGCTCTCCCTGGCCAGCTTCACCAACGAGCAAGGTCTGCAGCCGGTAGGCGGCACCAGTTGGAAAGAAACCTTCGCGTCGGGTATCCCGGGCTACGATGCTCCGGAAACCGGCACCTTGGGTTCGATCGTCTCCAACTCCCTGGAAGAGTCCAACGTCAACCTGACCAACGAACTGGTCGAGCTGATCAAGGCCCAGAGCAACTACCAGGCGAACGCCAAGACCATCTCCACCCAGAGCACCATCATGCAGACCATTATTCAGATGACTTGAMSFNIGLSGLYAANKQLDVTGNNIANVATTGFKSSRAEFADVYSATKLGSGSKTVGNGVRLANVSQQFGQGDVNNTGNVLDMGIQGQGFFVLSNNGSLSYTRAGTFKTDKEGFITNSEGTARLQGYGVDANGKIQNGILTDLRIDTSNLPPKPTDLISSTINLNSTADAIPKTATYKFDPANTATFTKQFTTPVYDAQGNQHSMDQYMVKTGANTWDVYTLIDGRNLDGSLPTAATSLAVPSTMTFGESGELLQVSTPAPIAVPPNPPIVGSDLKLTGWIPGTVKDGVWSANGADGADTITLSLGKTTQFNADTARSIPTQNGYATGQITNLTIDGSGVLLANFSNNQTKPIGQLSLASFTNEQGLQPVGGTSWKETFASGIPGYDAPETGTLGSIVSNSLEESNVNLTNELVELIKAQSNYQANAKTISTQSTIMQTIIQMTPGPT0015485_1388DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015485-flgE-K02390NANA
D1-35_003752892hypothetical proteinATGCACACCGACACAACTCGCGAGAACCCGCAGGGCACCGCGCCGCTGGCCGCCGATTCGAGCCCGGATCTGTCCGCCACCGCGCCTGGCCAGCTGCGCGTGATCAAGCGTAACGGGACTGTCGTTCCTTACACCGATGACAAGATCACCGTCGCCATCACCAAAGCGTTCCTCGCAGTTGAGGGCGGCACCGCTGCCGCCTCGTCGCGAATCCACGACACCGTGGCCCGCCTGACCGAACAGGTCACCGCGACCTTCAAGCGTCGCATGCCGTCGGGCGGCACCATCCACATCGAAGAGATCCAGGACCAGGTCGAACTGGCCCTGATGCGTGCCGGCGAGCAGAAAGTCGCCCGCGACTACGTGATCTACCGTGACTCCCGGGCCAAGGAACGCGCCATCCGCACGCCGGCCGACGCACCGGTCCAGGCTCACCCTTCGATCCGCATCGCCCGCGCCGACGGCAGCCTGGCGCCACTGGACATGGGCCGCCTGAACACCATCGTCACCGAAGCCTGCGAAGGCCTGGAAGAAGTCGACGGCGACCTGATCCAGCGCGAGACCCTGAAGAACCTCTATGACGGCGTCGCCCTCAAGGACGTCAACACCGCGCTGGTGATGACCGCCCGCACCCTGGTGGAGCGCGAACCGAACTACTCGTTCGTGACCGCCCGCCTGCTGATGGACACCCTGCGCGCCGAAGGCCTGAGCTTCCTGGAAGTCGCCGAGAGCGCGACCCACCACGAAATGGCCGACCTGTACGCCAAGGCCCTGCCGGCCTATGTCGCCAAGGGTATCGAGTACGAATTGCTGAACCCTGTCCTGGCCGAATTCGACCTGGAAAAACTCGGCAAGGCGATCAACCACGAGCGCGACCAGCAGTTCACCTACCTGGGCCTGCAAACCCTGTACGACCGTTACTTCATCCACAAGGATGGCGTGCGTTTCGAACTGCCGCAGGTGTTCTTCATGCGTGTGGCCATGGGCCTGGCGATCGAAGAGAAGCAGCGTGAAGACCGTGCCATCGAGTTCTACAACCTGTTGTCGTCCTTCGACTACATGGCGTCGACCCCGACTCTGTTCAACGCCGGCACCCTGCGTCCACAACTGTCGAGCTGCTACCTGACCACCGTGCCGGACGACCTGTCGGGCATCTACGGCGCCATCCACGACAACGCCATGTTGTCGAAATTCGCCGGTGGCCTGGGCAACGACTGGACCCCGGTTCGCGCATTGGGCTCGTACATCAAGGGCACCAACGGCAAATCCCAGGGCGTCGTGCCGTTCCTCAAAGTGGTCAACGACACCGCCGTTGCGGTCAACCAGGGCGGCAAGCGCAAGGGCGCGGTCTGCGCCTACCTGGAAACCTGGCACATGGACATCGAAGAGTTCATCGAGCTGCGCAAGAACACCGGTGATGACCGTCGTCGTACCCACGACATGAACACCGCCAACTGGATCCCGGACCTGTTCATGAAGCGCGTCTTCGATGACGGCAAGTGGACCCTGTTCTCGCCATCCGAAGTGCCAGACCTGCACGACCTGACTGGCAAGGCCTTCGAAGAGCGCTACGAGTACTACGAAGCCCTGACCGAGTACAACAAGATCAAGCTGTTCAAAGTCGTCCAGGCCAAAGACCTGTGGCGCAAGATGCTCTCGATGCTGTTCGAGACCGGCCACCCATGGCTGACCTTCAAGGACCCGTGCAACCTGCGCAGCCCGCAGCAGCACGTGGGCGTGGTCCACAGCTCGAACCTGTGCACCGAGATCACCCTGAACACCAACAAGGATGAGATCGCAGTCTGCAACCTGGGCTCGATCAACCTGCCGAACCATATCGTCGACGGCAAGCTGGACACCGCCAAGCTGCAACGCACCGTGAACACCGCCGTGCGCATGCTCGACAACGTGATCGACATCAACTACTACTCGGTGCCGCAAGCGAAGAACTCCAACTTCAAGCACCGTCCGGTCGGCCTGGGCATCATGGGCTTCCAGGACGCGCTGTACCTGCAGCACATCCCGTACGGTTCGGACGCTGCGGTCGAGTTCGCCGACAAGTCCATGGAAGCGGTCAGCTACTACGCGATCCAGGCTTCCTGCGACCTGGCCGACGAGCGCGGTTCATACGAGACGTTCCAGGGTTCGCTGTGGTCCCAGGGCATCCTGCCGCTGGACTCGCAACAGATCCTGATCGCCCAGCGTGGCCAGAAGTACATCGATGTCGACCTGAACGAATCCCTGGACTGGGCTCCGGTTCGCGCCCGTGTGCAGAAAGGCATCCGTAACTCCAACATCATGGCCATCGCACCGACCGCGACCATCGCCAACATCACCGGCGTGTCGCAGTCGATCGAACCGACCTACCAGAACCTGTATGTGAAGTCGAACCTGTCGGGCGAATTCACCGTGATCAACCCGTACCTGGTTCGCGACCTCAAGGCTCGCGGCCTGTGGGACTCGGTCATGATCAACGACCTGAAGTACTACGACGGTTCGGTACAGCAGATCGAGCGCATCCCGCAGGAGCTCAAAGAGCTCTATGCCACCGCGTTCGAAGTGGACACCAAGTGGATCGTCGACGCCGCCAGCCGTCGTCAGAAGTGGATCGACCAGGCTCAGTCGCTGAACCTGTACATCGCCGGCGCTTCGGGCAAGAAGCTCGACGTGACCTACCGCATGGCCTGGTACCGTGGCCTGAAAACCACCTACTACCTCCGTGCCCTGGCCGCCACCAGCACCGAGAAGTCGACCATCAACACCGGCAAGCTGAACGCGGTTTCCGCTGGCGGCAACCACGGTGACGATTCGGTCCTGGCTGCTCCAGCCGGCCCTGCGCCAGTGCCAAAAGCCTGCGCCATCGACGAGCCGGATTGCGAAGCTTGCCAATAAMHTDTTRENPQGTAPLAADSSPDLSATAPGQLRVIKRNGTVVPYTDDKITVAITKAFLAVEGGTAAASSRIHDTVARLTEQVTATFKRRMPSGGTIHIEEIQDQVELALMRAGEQKVARDYVIYRDSRAKERAIRTPADAPVQAHPSIRIARADGSLAPLDMGRLNTIVTEACEGLEEVDGDLIQRETLKNLYDGVALKDVNTALVMTARTLVEREPNYSFVTARLLMDTLRAEGLSFLEVAESATHHEMADLYAKALPAYVAKGIEYELLNPVLAEFDLEKLGKAINHERDQQFTYLGLQTLYDRYFIHKDGVRFELPQVFFMRVAMGLAIEEKQREDRAIEFYNLLSSFDYMASTPTLFNAGTLRPQLSSCYLTTVPDDLSGIYGAIHDNAMLSKFAGGLGNDWTPVRALGSYIKGTNGKSQGVVPFLKVVNDTAVAVNQGGKRKGAVCAYLETWHMDIEEFIELRKNTGDDRRRTHDMNTANWIPDLFMKRVFDDGKWTLFSPSEVPDLHDLTGKAFEERYEYYEALTEYNKIKLFKVVQAKDLWRKMLSMLFETGHPWLTFKDPCNLRSPQQHVGVVHSSNLCTEITLNTNKDEIAVCNLGSINLPNHIVDGKLDTAKLQRTVNTAVRMLDNVIDINYYSVPQAKNSNFKHRPVGLGIMGFQDALYLQHIPYGSDAAVEFADKSMEAVSYYAIQASCDLADERGSYETFQGSLWSQGILPLDSQQILIAQRGQKYIDVDLNESLDWAPVRARVQKGIRNSNIMAIAPTATIANITGVSQSIEPTYQNLYVKSNLSGEFTVINPYLVRDLKARGLWDSVMINDLKYYDGSVQQIERIPQELKELYATAFEVDTKWIVDAASRRQKWIDQAQSLNLYIAGASGKKLDVTYRMAWYRGLKTTYYLRALAATSTEKSTINTGKLNAVSAGGNHGDDSVLAAPAGPAPVPKACAIDEPDCEACQPGPT0021340_1315DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021340-nrdA|nrdE-K00525NANA
D1-35_00376723ompR_1Transcriptional regulatory protein OmpRGTGGAACAAGAAGCCTGGCAGATATTGATTGTCGAGGATGACCAGCGCCTGGCCGAGCTGACCCGCGAATACCTGGAAAGCAACGGCCTGCGCGTCGCCATCGAGGGCAACGGCGCGGTGGCGGCCCAGCGGATCATCGACGAGCAGCCGGACCTGGTCATTCTCGACCTGATGCTGCCCGGCGAAGATGGCTTGAGCATTTGCCGCAAGGCGCGCGAGCACTACGACGGGCCGATCCTGATGCTCACCGCGCGGGCTGACGACACCGACCAGATCCAGGGCCTGGACCTGGGCGCCGACGACTATGTCTGCAAACCGGTGCGCCCGCGCGTACTGTTGGCCCGCATCCAGGCCCTGCTGCGACGCAGCGAGCCGGAGCCGTCCGCAGCGCCGAAGCAGCGGCGCCTGGAGTTCGGCCCGTTGGTGGTGGACAACGCCTTGCGCGAAGCCTGGCTGCAGGGCAACGGTATCGAGCTGACCAGCGCCGAATTCGACCTGCTCTGGCTGCTGGTGTCCAACGCCGGGCGCATCCTGTCCCGCGAGGAAATCTTCACCGCCCTGCGCGGCATTGGCTACGACGGCCAGGATCGCTCGATCGACGTGCGCATCTCGCGCATCCGTCCGAAGATCGGCGACGACCCGGACCATCCTCGATTGATCAAGACCATCCGCAGCAAAGGCTACCTGTTCGTCCCTGAAGCCTGCGTAGACGCGACCCCGTGAMEQEAWQILIVEDDQRLAELTREYLESNGLRVAIEGNGAVAAQRIIDEQPDLVILDLMLPGEDGLSICRKAREHYDGPILMLTARADDTDQIQGLDLGADDYVCKPVRPRVLLARIQALLRRSEPEPSAAPKQRRLEFGPLVVDNALREAWLQGNGIELTSAEFDLLWLLVSNAGRILSREEIFTALRGIGYDGQDRSIDVRISRIRPKIGDDPDHPRLIKTIRSKGYLFVPEACVDATPPGPT0015035_266DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-BF-RST_PH|TEMPERATURE|STARVATION_SIGNALLING_SYSTEM,PGPT0015035-rstA-K07661NANA
D1-35_003771611sasA_2Adaptive-response sensory-kinase SasAGTGAACTCCATCTTCCTGCGCATCTATGGCGGCATGTGCGCGGCACTGGTGCTGGTGGCGGTGCTTGGCGTGCTGGCGCTGCACCTGCTCAACCAGACGCGCGGCGAGCAATACCGCGAGCGCCTGGCCCATGGCACGTTTTCCTTGATGGCCGACAACCTGCGGCCGATGAACGACACCGAACGGCGCCGGGCCCTGGCGGTGTGGGAGCGCCTGCTGGGCATTCCGCTGGCGTTGCAGACGTTCAGCCAGACCGACCTCGACCTGGGCCAGCGCACCCGGGTATTGCGCGGGCAGGTCCTGGTGGAGCAGATCGGGCCGCATGCGGCGAAGGTTTATCGGCTGGTCAGCGACGGCGAGCAGTTGACCCTGGTCGGGGAGGTTCGCCAGATCAGCGAGCAACTGGCCCGGGCGACCATTTACCTGTTGGCCGACGAACTGGTGCGCTATCCGGTAGCCGAGCAACCCGAGCGGCTGGCGCAACTCAAGCAGGAAAAAGGCTTCGGTTTCGACCTGCGCCTGATGACTGTCGAGCAGGCGGACATGGACGACGACCAGCGCCGGCGGGTGGCCGAGGGCGACACGGTGATGGCCCTGGGCAAGGGCGCCGACTCGATCCGGGTGTTCGCCGGCATGGTGGGGACGCCGTGGGTGCTGGAAATCGGCCCGCTGTACCAGATGAATCCGTACCCGCCCGAGTGGCTGGTGCTGATCGCCGCGCTCGGGTTGAGCCTGATCGGCCTGATTGTCTATCTGCTGGTGCGCCAGCTGGAGCGGCGTCTGCGTGGCCTGGAGTCGGCCGCGACCCAGATCGCCCAGGGTAGCCTGGAGACCCGCGTACCCGCTCGGGGCGCTGACTCGGTCGGGCGCCTGGCAGCAGCGTTCAACGGCATGGCCGAGCACTTGCAGCAACTGCTGGCGATCCAGCGCGAGTTAGTGCGCGCGGTGTCCCATGAACTGCGTACACCGGTGGCGCGCCTGCGCTTCGGCCTGGAAATGCTCGGCAGCGCCAGCACGCCCGAGGCCCGGGACAAGTACCTGGCCGGCATGGATCACGACATCGAAGACCTGGATCGGCTGGTGGATGAAATGCTGACGTATGCGCGGCTGGAGCAAGGGTCGCCGGCGTTGAATTTCCAACGGGTCGACCTGGATGCGTTGGTCAACCAGGTCATCGAAGAACTGGGCCCGTTGCGCGCCGGGGTTACCGTGGAGCGCGGTCTGTGCCTGTCCGCCGCCGATTGCGACGGCGCCTGGGTCGAGGCCGAGCCACGCTTTTTGCATCGGGCGTTGCAGAACCTGGTAGGCAATGCCATGCGCCACGCCAGATCCCAGGTGACCGTCAGTTACCAGGTCGGCCAGTTGCGCTGTCGGGTCGACGTCGAGGATGACGGCCCGGGCGTACCGGAGGCGGCCTGGGAGCGGGTGTTCAAGCCATTCCTGCGCCTGGACGACAGCCGCGCACGCGCGTCGGGCGGCCATGGGCTGGGGCTGTCGATTGTGCGGCGGATCATCCATTGGCACGACGGCCGGGCGCTGATCGGCAAGAGCAAGCGCCTGGGCGGGGCGTGTTTCAGCTTGAGCTGGCCGAGGCATCAGGATCGGTCTTGAMNSIFLRIYGGMCAALVLVAVLGVLALHLLNQTRGEQYRERLAHGTFSLMADNLRPMNDTERRRALAVWERLLGIPLALQTFSQTDLDLGQRTRVLRGQVLVEQIGPHAAKVYRLVSDGEQLTLVGEVRQISEQLARATIYLLADELVRYPVAEQPERLAQLKQEKGFGFDLRLMTVEQADMDDDQRRRVAEGDTVMALGKGADSIRVFAGMVGTPWVLEIGPLYQMNPYPPEWLVLIAALGLSLIGLIVYLLVRQLERRLRGLESAATQIAQGSLETRVPARGADSVGRLAAAFNGMAEHLQQLLAIQRELVRAVSHELRTPVARLRFGLEMLGSASTPEARDKYLAGMDHDIEDLDRLVDEMLTYARLEQGSPALNFQRVDLDALVNQVIEELGPLRAGVTVERGLCLSAADCDGAWVEAEPRFLHRALQNLVGNAMRHARSQVTVSYQVGQLRCRVDVEDDGPGVPEAAWERVFKPFLRLDDSRARASGGHGLGLSIVRRIIHWHDGRALIGKSKRLGGACFSLSWPRHQDRSPGPT0015040_150DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-BF-RST_PH|TEMPERATURE|STARVATION_SIGNALLING_SYSTEM,PGPT0015040-rstB-K07639NANA
D1-35_00378735hypothetical proteinATGCCCGGCATGAACCCACTCCCTGCCCTGCCCGCCTGCTGTTCGCCCCTGGATGACCAATGGCTGCTGCCTGACGCCCTGCCCGATACGGTGCTGCTCAGTACTCGCTTCGATCCGATGTTGCTTGTCGCTGACGATTTTCCGAACAGCGCCATCGAGCCTCCGGCGAGCATCCGGCGCTCGGTAGCCAAACGTCAGGCGGAGTTTCTCGCCGGGCGGATCTGTGCCCGGGCGGCACTGCTGCGCCTCGACGGGCAGGCCGACGTGCCGGCCATCGGCGAAGACCGCGCCCCGGTGTGGTCGGCCCATGTCAGCGGCTCGATCACCCACAGCACCGGCCGGGCCGCGGCAATCGTCGCGCAAAAACGGGACTGGCAAGGGCTGGGCATGGATCTGGAAAACCTCCTCGACCCCGAACGCGCCGAGCGCCTGGCCGGTGAAATCCTCACCCCGGCGGAACTGCTGCGCATGGCCACCGCGCCGCAGGATGACCGCGCATTGCTGGTCACCCTGACTTTTTCGATGAAAGAAAGCCTGTTCAAGGCGCTGTACCCCATCGTCGGGCAGCGTTTCTACTTCGAGCATGCCGAAATAGTCGAGTGGTCCCACTCCGGGCAAGCGCGGCTGCGGTTATTGACCGATCTGTCGACCGAGTGGCGCCATGGCAGTGAGCTGCAGGGGCAGTTTGGGGTGAAGGATGGGCAGTTGTTGAGCCTGTTGGGAGTCAAGGCCTGAMPGMNPLPALPACCSPLDDQWLLPDALPDTVLLSTRFDPMLLVADDFPNSAIEPPASIRRSVAKRQAEFLAGRICARAALLRLDGQADVPAIGEDRAPVWSAHVSGSITHSTGRAAAIVAQKRDWQGLGMDLENLLDPERAERLAGEILTPAELLRMATAPQDDRALLVTLTFSMKESLFKALYPIVGQRFYFEHAEIVEWSHSGQARLRLLTDLSTEWRHGSELQGQFGVKDGQLLSLLGVKAPGPT0003225_172DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-ENTEROBACTIN|ENTEROCHELIN|ACINETOBACTIN|ANGUIBACTIN|CHRYSOBACTIN_METABOLISM,PGPT0003225-entD|basI|angD|cbsD|cbsE|aebD-K02362NANA
D1-35_00379792hypothetical proteinATGCGCAGGTTGCTTGCTGTTGTACTTCTGGCCTTGAGCGGCGCGAGCCACGCCGCCATCCAGACCCAGGAGATTCCCTACACCAGTGCCGACGGCACGAAGCTGATCGGCTATTACGCCTATGACGACGCGGTCAAAGGCCCGCGCCCCGGCGTGGTGGTGGTGCATGAATGGTGGGGGCTGAACGACTATGCCAAGCGCCGCGCCCGTGACCTCGCCGGCCTGGGCTACAGCGCCCTGGCCATCGACATGTACGGCGACGGCAAGAACACCGAGCATCCGGAGGACGCCAAGGGCTTCATGCAGGCCGCGCTCAAGGATGGCAAGGCGGCCAGCGCGCGCTTCCAGGCCGGCCTCGACCTGTTGAAGAAACAACCGCAGACCGACCCGGACAAACTCGCCGCCATCGGCTACTGCTTCGGCGGCAAGGTGGTGCTGGACGCGGCGCGCCAAGGCGTTCCACTGGCCGGCGTGGTGAGCTTCCACGGCGCGCTGGTCACCAACACGCCGGCCACCCCCGGCAGCGTCAAGGCCAGGATCCTGGTGGAGCACGGCGCGCTGGACAGCATGGTCACCGAAGACAACGTCACCGCGTTCAAGAGCGAGATGGACAAGGCCGGCGCCGACTACAAGTTTGTCAGCCTGGAAGGCGCCAAGCACGGCTTCAGCAACCCCGACGCCGACCGCCTGAGCCATGGCGAACATGGTGGGCCGGACATCGCCTACAACAAGGAAGCTGACGAGAAGTCGTGGGCGGATATGCAGAAGTTCTTCAAGAAGATTTTCAACTGAMRRLLAVVLLALSGASHAAIQTQEIPYTSADGTKLIGYYAYDDAVKGPRPGVVVVHEWWGLNDYAKRRARDLAGLGYSALAIDMYGDGKNTEHPEDAKGFMQAALKDGKAASARFQAGLDLLKKQPQTDPDKLAAIGYCFGGKVVLDAARQGVPLAGVVSFHGALVTNTPATPGSVKARILVEHGALDSMVTEDNVTAFKSEMDKAGADYKFVSLEGAKHGFSNPDADRLSHGEHGGPDIAYNKEADEKSWADMQKFFKKIFNNANANANANA
D1-35_00380600hypothetical proteinATGACTCATATGAAAAAACTGCTGCTGGCCTTCACCGTGCTGGGCGCCAGCGCCCTGGCCCATGCCGATGACAACTTCGCCGGCCTGACCCTCGGCCAGACCAGCGACAAGGTCAAGAAATCCAACGCCCTGGACAGCGCGCTGAACAACCCGAACGCCGACGGTATCATCGGCAAGGACACCACCTACGGCCTGCGCCTGGGTCGTCAGAATGACCAGGGCCGCTACTACGCCACCTACGACAACGTATCGGGCACCCACAACGGAATCAAGCTGCGCCAGGAAAACCTGCTGGGCAGCTACGATCTGTTCTATCCGGTCACCGCCAGCACCAAATTGTTCGGAGGTGGCACGGCGGGGCTGACTAAGTTGACCCAGGATTCCCCAGGCTTCAGCCGCGACAGCGATATCGGTTATGCCGTTGGCCTGCAAGGCGGCGTGCTGCAGCAGATTTCGCAAAACACCTCGGTGGAACTGGGTTACCGTTACCTGCGCAGCAATGCCAGCACCGAGATGAGCCCGCGCGATGGCGCCAAGGTGGGATCGCTGGACCTGACCAGCAGCGCCCAGACCTACCTGTCCGCCAACTATACGTTCTAGMTHMKKLLLAFTVLGASALAHADDNFAGLTLGQTSDKVKKSNALDSALNNPNADGIIGKDTTYGLRLGRQNDQGRYYATYDNVSGTHNGIKLRQENLLGSYDLFYPVTASTKLFGGGTAGLTKLTQDSPGFSRDSDIGYAVGLQGGVLQQISQNTSVELGYRYLRSNASTEMSPRDGAKVGSLDLTSSAQTYLSANYTFPGPT0014016_15DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-MAGNESIUM_TRANSPORT,PGPT0014016-oprH-NANANA
D1-35_00381678phoP_1Transcriptional regulatory protein PhoPATGAAACTATTGGTTGTCGAAGACGAAGCGTTGTTGCGCCACCACCTGCAAACCCGTCTCACCGACAGCGGCCATGTGGTCCAGGCCGTGGCCAATGCCGAGGAGGCCTTGTACCAGGTCGGCGAATTCAATCACGACCTGGCGGTGATCGACCTGGGCCTGCCGGGCATCAGCGGCCTGGAACTGATTCGCCGGTTGCGCTCGCAGGACAAGACCTTTCCGATCCTGATCCTGACCGCCCGCGGCAATTGGCAGGACAAGGTCGAAGGCCTGGCTGCGGGGGCCGATGACTACGTCGTGAAGCCGTTTCAGTTCGAAGAGCTCGAAGCCCGGCTGAATGCACTGCTGCGTCGCTCCAGCGGTTTCACCCAGTCAACCATCGTCGCCGGTCCATTGTTGCTCGACCTCAACCGCAAGCAGGCGTCCCTCGGTGACGAGCCGCTGGCCTTGACCGCCTACGAATACCGCATCCTCGAATACCTGATGCGCCATCACCAGCAGGTGGTCGCCAAGGATCGCCTGATGGAGCAGCTTTATCCCGATGACGACGAGCGCGATCCCAATGTGATCGAAGTGCTGGTCGGGCGCCTGCGCCGCAAACTGGAAGCCCCGGCCGGGTTCAAGCCGATCGATACCGTGCGTGGCCTGGGTTACCTGTTCAACGAGCGCTGCCAGTGAMKLLVVEDEALLRHHLQTRLTDSGHVVQAVANAEEALYQVGEFNHDLAVIDLGLPGISGLELIRRLRSQDKTFPILILTARGNWQDKVEGLAAGADDYVVKPFQFEELEARLNALLRRSSGFTQSTIVAGPLLLDLNRKQASLGDEPLALTAYEYRILEYLMRHHQQVVAKDRLMEQLYPDDDERDPNVIEVLVGRLRRKLEAPAGFKPIDTVRGLGYLFNERCQPGPT0011060_312DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS|LIPID|IVA_REGULATION,PGPT0011060-phoP-K07660NANA
D1-35_003821347phoQCOG0642Sensor protein PhoQGTGATTCGTTCGCTGCGATTGCGGTTGATGCTGGCCGCCATGACATTGGCGGTGCTGTTCATGCTGGCGCTGCTGCCGGCGATGCAGGGCGCCTTCAGCCTGGCCTTGCAGGAATCCATCGAGCAGCGCCTGGCTTCGGACGTGACCACGCTGATCTCCGCCGCCCGGGTCGAAAACAATCGCCTGAAGATGCCGGCGCAATTGCCCGATGAGCGCTTCAACCTCGCCGATGCCCGCCTGCTGGGCTACATCTATGATCGCGAAGGGCGGTTGGTCTGGCGTTCGAAGGCGACCCAGGAAGAACACATCAACTACGCGCCGCGCTACGACGGGCTGGGCAACCAGTTTGCGCGCATCCGCGAGGACAACGGCCAGGAGTTTTTTGTCTACGACGTCGAGGTCAAGCTGCTCGGGGGCCAGAGCGCGGCGTTCAGCATCGTCACCCTGCAGCCGGTGCACGATTACGAAATGACGCTGCAAGGCCTGCGAGAAAACCTTTACCTGGGGTTCGGCGCCGCGCTGGCGGTGCTGCTGGCGCTGTTATGGATCGGCCTGACCTGGGGCTTGCGGGCGTTGCGCCGTCTGAGCCAGGAGCTGGATGAGATCGAAACCGGCACCCGCGAAAGCCTCAGCACCGCGCATCCCCGCGAACTGCTGCGCCTGACCGGCTCGCTCAACCGCCTGCTGCACAGCGAGCGTGAGCAGCGCAGCCGCTATCGGGACTCCCTCGATGACTTGGCGCACAGCCTCAAGACTCCGCTGGCGGTGCTGCAAGGCGTCAGCGAGGACATGGCCCGGCGTCCCGAGGATCGTGGGCAGGCCTGGGTGCTGCAAACCCAGATCGAGCGCATGAGCCAGCAGATCGGCTACCAGTTGCAGCGCGCCAGCCTGCGCAAAAGCGGCCTGGTGCGCCATCAGGTGCCCTTGCGCCCGGTGTTGCAAAGCCTCTGCGACACCCTCGACAAGGTCTATCGCGACAAGCGCGTGCAGGTCGAATTCGACCTGCCGGAGGATTGCCAGGTGCCGATCGAGCAGGGCGCCTTGCTGGAGATGCTCGGCAACCTGTTGGAAAACGCCTATCGGCTGTGCCTGGGGCACGTGCGGGTGAGCGTGCACCAGACGCTCGGCGGGACGGAGTTGAGCATCGAGGACGACGGACCGGGCGTGCCACCGGACCAGCGTGCACGGATCCTGCAGCGGGGTGAACGGCTGGATCGCCAGCATCCGGGGCAGGGGATCGGCCTGGCGGTGGTAAAAGACATCATCGAGAGCTATGGCGCCCGGTTGACGCTGGGAGATTCAGAACTGGGCGGGGCGGCGTTCCGGATTCATTTCTCGGTGGTTTGAMIRSLRLRLMLAAMTLAVLFMLALLPAMQGAFSLALQESIEQRLASDVTTLISAARVENNRLKMPAQLPDERFNLADARLLGYIYDREGRLVWRSKATQEEHINYAPRYDGLGNQFARIREDNGQEFFVYDVEVKLLGGQSAAFSIVTLQPVHDYEMTLQGLRENLYLGFGAALAVLLALLWIGLTWGLRALRRLSQELDEIETGTRESLSTAHPRELLRLTGSLNRLLHSEREQRSRYRDSLDDLAHSLKTPLAVLQGVSEDMARRPEDRGQAWVLQTQIERMSQQIGYQLQRASLRKSGLVRHQVPLRPVLQSLCDTLDKVYRDKRVQVEFDLPEDCQVPIEQGALLEMLGNLLENAYRLCLGHVRVSVHQTLGGTELSIEDDGPGVPPDQRARILQRGERLDRQHPGQGIGLAVVKDIIESYGARLTLGDSELGGAAFRIHFSVVPGPT0011065_540DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_ACIDIC_STRESSACIDIC_STRESS_REGULATION,PGPT0011065-phoQ-K07637NANA
D1-35_00383999putative HTH-type transcriptional regulatorATGCGCCAACGCACCATCGCCAGCCACTTCGCCCGCGCCGCCCTGGGTGGCGCGCGTCGCCAGGGGTTCGACTACGTTCCCCTGCTGCAGCAACTGGGGATCAGCCCGGAGCTGCTGGACGAGCCGCGCGCGCGAATCGCCCCCGAGCAATTCGCCCGCCTGTTGCAGGCGCTGTGGGTCGCATTGGCGGACGAATACCTGGGATTTGGCCGGGCACCGAGTAAACCCGGGACGTTCGCCATGATGTGCCACACGTTGATCCACTGTCGGACGCTGGGCAAGGCGCTGCAGCGCGGCCTGTTGTTCTACAGCCTGTTCCCCGACGCCCCGAGCCTGACCCTCGAAGCTGAAGGCGAACGGGTAAGGCTGAGCCTGGACGAGTCGACACTGCGTGATCCCGACCACTTCCTGGCCGAAAGCCTGCTGGTCATCTGGCATCGCCTCGGCAGTTGGCTGATCGGCCAGCGGATCGGCCTGGAACAAGCGACGTTCAGCTATGCCAGGCCAAGCCACGGCGCGGAGTACGACTTGCTGTTCTCCTGCCCCTTGGTCTTCGAGGCGCGAAGCAGCAGCTTGTTATTCCATGCCCGCTACCTGGAAATGCCGTTGCTGCAGGACGAGCGAACCCTCAAGCACTTTCTCGAACGCTCCCCCGCCGACCTGCTCTCGCGCCCGGACGATGGCCACAGCCTCACCAGCCAATTGCGGCGCCTGCTCAGCCGCGACACGGCGCGCTGGCCGGACCTGGACACGGTCGCTGCGCATCTGCATATCAGCTCGCAGACCCTGCGCCGGCATCTGCGCGAGGAAGGCACCAGCTTCCAGGAGCTCAAGGATCAGTTGCGGCGGGATATCGCCATCTACCACCTGGGCCGCGCGGACCTGTCGTTGCAGCAGATCGCCGAACAGCTGGGGTTCTCCGAACCGTCGGCGTTTCATCGGGCGTTCAAGAAGTGGACGGGGGTGACGCCGGGGGCTTATCGGGAGCAGGAGAGCTGAMRQRTIASHFARAALGGARRQGFDYVPLLQQLGISPELLDEPRARIAPEQFARLLQALWVALADEYLGFGRAPSKPGTFAMMCHTLIHCRTLGKALQRGLLFYSLFPDAPSLTLEAEGERVRLSLDESTLRDPDHFLAESLLVIWHRLGSWLIGQRIGLEQATFSYARPSHGAEYDLLFSCPLVFEARSSSLLFHARYLEMPLLQDERTLKHFLERSPADLLSRPDDGHSLTSQLRRLLSRDTARWPDLDTVAAHLHISSQTLRRHLREEGTSFQELKDQLRRDIAIYHLGRADLSLQQIAEQLGFSEPSAFHRAFKKWTGVTPGAYREQESNANANANANA
D1-35_003841353dctA2_1COG1301C4-dicarboxylate transport protein 2ATGACGACTCGTCAGCCACTGTACAAATCCCTGTATTTCCAGGTGATCGTAGCCATTGCCATCGGCATTCTGCTCGGCCACTTCTACCCGCAGACCGGCGTTGCCCTCAAGCCGTTCGGTGACGGGTTCATCAAACTGATCAAGATGGTCATCGCACCGATCATTTTCTGTACCGTCGTCAGCGGCATCGGCGGCATGCAGAATATGAAATCGGTCGGCAAGACCGGCGGCTATGCACTGCTCTATTTCGAAATCGTTTCCACCATTGCCCTGCTGATCGGCCTGGTCGTGGTCAACGTCGTGCAGCCGGGCAACGGCATGCACATCGACGTGTCGACCCTGGACACCAGCAAGATCGCCGGCTTCATCAATGCCGGTAAAGACCAGAGCATCGTTGCCTTCATCCTCAACGTGATCCCGAACACCATCGTCGGCGCCTTCGCCAACGGCGACATCCTGCAAGTGCTGATGTTCTCGGTGCTCTTCGGTTTCGCCCTGCATCGCCTGGGTGCCTACGGCAAGCCGGTGCTGGACTTCATCGACCGCTTCGCCCACGTCATGTTCATCATCATCAACATGATCATGAAGCTCGCGCCGATCGGTGCGTTCGGTGCCATGGCCTTCACCATCGGCGCCTACGGTGTCGGTTCGCTGGTGCAACTGGGCCAGTTGATGATCTGCTTCTACATCACCTGCGTGGTGTTCGTGCTGGTGGTGCTGGGCGCCATCTGCCGCGCCCACGGCTTCAGCGTGATCAAGCTGATCCGCTACATCCGTGAAGAACTGCTGATCGTGCTGGGCACCTCCTCGTCGGAATCGGCCCTGCCACGCATGCTGATCAAGATGGAGCGCCTGGGTGCCAAGAAGTCCGTGGTGGGCCTGGTGATCCCGACTGGCTACTCGTTCAACCTCGACGGTACCTCGATCTACCTGACCATGGCTGCGGTGTTTATTGCCCAGGCCACCGACACCCCGATGGACATCACGCATCAGATCACCCTGTTGCTGGTCCTGCTGCTGTCCTCCAAAGGTGCTGCCGGCGTAACCGGTAGCGGCTTCATCGTACTGGCGGCCACCCTGTCGGCCGTGGGCCACCTGCCGGTTGCCGGCCTGGCGTTGATCCTCGGCATCGACCGCTTCATGTCCGAAGCTCGTGCGCTGACCAACCTGGTCGGTAACGCCGTTGCTACCATCGTGGTTGCCAAGTGGGTCAAGGAACTGGACGAAGACCAGTTGCAGACCGAACTGGCTTCCGGTGGTCGCGGTATCTCCGACGTGCGTGAAGATGACGAGCAGATCGCTCAAGCGCAGATTGTCGCGGCTGAATCCGCTGCTCCAGGCGCTGTGAAGTAAMTTRQPLYKSLYFQVIVAIAIGILLGHFYPQTGVALKPFGDGFIKLIKMVIAPIIFCTVVSGIGGMQNMKSVGKTGGYALLYFEIVSTIALLIGLVVVNVVQPGNGMHIDVSTLDTSKIAGFINAGKDQSIVAFILNVIPNTIVGAFANGDILQVLMFSVLFGFALHRLGAYGKPVLDFIDRFAHVMFIIINMIMKLAPIGAFGAMAFTIGAYGVGSLVQLGQLMICFYITCVVFVLVVLGAICRAHGFSVIKLIRYIREELLIVLGTSSSESALPRMLIKMERLGAKKSVVGLVIPTGYSFNLDGTSIYLTMAAVFIAQATDTPMDITHQITLLLVLLLSSKGAAGVTGSGFIVLAATLSAVGHLPVAGLALILGIDRFMSEARALTNLVGNAVATIVVAKWVKELDEDQLQTELASGGRGISDVREDDEQIAQAQIVAAESAAPGAVKPGPT0001450_712DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ASPARTATE_TRANSPORT,PGPT0001450-dctA-K11103NANA
D1-35_003851176smtB_2COG1804Succinyl-CoA--L-malate CoA-transferase beta subunitATGCAAGGCCCACTGGCATCGCTCAAGGTTCTGGATTTTTCCACCCTGCTGCCCGGCCCGTTCGCCTCGTTGTTGCTGGCGGACATGGGCGCCGAGGTGCTGCGCATCGAATCGCCGGAGCGTCCTGACCTGCTGCGGATATTGCCGCCCCACGACCAGGACACCTCGGCCAGTCATGCCTACCTCAACCGCAACAAGCGCAGCCTGGCCCTGGACCTCAAGCAACCGGCGGCACTGGAGATCATCAAACGGTTGCTGGACGACCATGACATTCTGCTGGAGCAGTTCCGCCCCGGCGTGATGGAGCGGCTGGGCCTGGGTTACGAAGCCTTGGAGGCGATCAATCCCCGGCTGATCTACGTGTCGATCACCGGTTATGGCCAGACCGGCCCGTTCAAGGATCGCGCCGGCCACGACATCAACTACCTGGCCCTGGCCGGGCTGGCGAGCCACACCGGTCGGGCCGACAGCGGGCCGCTGCCGCTGGGCATCCAGGCGGCGGACATCGCCGGCGGTTCGCTGCACGGGGTGATCGGCCTGCTGGCGGCGGTCATTGCCCGCCAGCAGAGCGGGCAGGGCCAGCACCTGGACGTGAGCATGACCGACTGCGTCTTCAGCCTGAACGCACTGGCCGGCGCCGGTTACCTGGCCTGCGGTGTGAAACCGGGGTGGGAAAACCATGCGTTGAACGGTGGCAGTTTTTATGATTACTACCGCACGCGGGATGGTCGCTGGATGTCGGTGGGCAGTCTCGAGCCAGGGTTCATGCAGGCACTGTGCGCGGCCTTGGGGCGGCCGGAGCTCGCCGCCCAAGGCCTGGCGCCCGAGCAGCAGCAGCGGCTCAAAGAGCAATTGCGCGCCGAATTCGAGAAGCGCGATTTTGCTGACCTTTGCGCGCTATTCGCCGAGGTGGATGCCTGCGTCGAACCAGTGCTGGAGCTGGACGAAGCGCTTGAGCATCCGCAGTTGAAGGCCAGGCATCTGGTCACCCAGGTGCCCCGTGGCGACGGGTCGAGCCAGGCGCAAATGGCGTGCCCGTTGAAGTTTTCCGAAGGCTTGCCCGAGCCTCGGCATATAGGCGCGAGGCTGGGGGCGCATACGGAGCAGGTGTTGCGGGAGTTGGGGTTCAGTGATGAGCGGATTGCCCGGCTGCGGGATGACGGGGTGGTTGTGTAGMQGPLASLKVLDFSTLLPGPFASLLLADMGAEVLRIESPERPDLLRILPPHDQDTSASHAYLNRNKRSLALDLKQPAALEIIKRLLDDHDILLEQFRPGVMERLGLGYEALEAINPRLIYVSITGYGQTGPFKDRAGHDINYLALAGLASHTGRADSGPLPLGIQAADIAGGSLHGVIGLLAAVIARQQSGQGQHLDVSMTDCVFSLNALAGAGYLACGVKPGWENHALNGGSFYDYYRTRDGRWMSVGSLEPGFMQALCAALGRPELAAQGLAPEQQQRLKEQLRAEFEKRDFADLCALFAEVDACVEPVLELDEALEHPQLKARHLVTQVPRGDGSSQAQMACPLKFSEGLPEPRHIGARLGAHTEQVLRELGFSDERIARLRDDGVVVNANANANANA
D1-35_00386495sprTProtein SprTATGCTCGAGCAACTCAATACCCGCGTCGAAGAGTGTTACCAACAAGCCGAATCCTTTTTCAAACGTCCTTTCAAACGCCCGGTGGTCAGCCTCAAGTTGCGCGGCCAGAAGGCCGGTGTCGCGCACCTTCATGAAAACCTGCTGCGTTTCAATCCCCAGCTGTACCGGGAAAACGCCGACGACTTCCTCAAGCAGACCGTTGCCCACGAAGTCGCGCACCTGATCGCCCATCAGTTGTTTGGCGACCGCATCCAGGCCCATGGCGAGGAATGGCAACTGATCATGCGCGGGGTCTACGAACTGCCGCCCAACCGTTGCCACACCTACGAGATAAAACGTCGCACCGCCACCCGCTACATCTACAAGTGCCCGTGCGACGGCAGCGACTTCCCCTTTACCGCACAGCGCCACAGCCTGGTCCGCCAGGGGCGGCGGTACTTGTGCCGAAGTTGTCGCAATACGTTGGTGTTCAGTGGAGAAACGCGAGTCGAGTAGMLEQLNTRVEECYQQAESFFKRPFKRPVVSLKLRGQKAGVAHLHENLLRFNPQLYRENADDFLKQTVAHEVAHLIAHQLFGDRIQAHGEEWQLIMRGVYELPPNRCHTYEIKRRTATRYIYKCPCDGSDFPFTAQRHSLVRQGRRYLCRSCRNTLVFSGETRVENANANANANA
D1-35_00387603yohC_1Inner membrane protein YohCATGATCCATCATGTCGTGGGGCTCTTTACCCACCCTGATCAAGAATGGAAGGAAATCCGTGGCGATCAGGAGGAAAGCATCAGCCACATGTACCTCACCCACACGCTGATCCTCGCGGCTATCCCCGCGGTGTCGGCGTTCATCGGCACCACGCAGGTGGGATGGGTCATCGGCAATCGTCCACCGGTCATGCTCACCCTGGAAAGCGCGCTGTGGATGACCATCATGTCGTACCTCGCGATGTTGGGCGGCGTGGCGGTGATGGGCGCGTTCATCCACTGGATGGCTCGCACCTATGACGCCAACCCGAGCCTGGCCCGTTGTGTCGCGTTCGCTACCTACACCGCGACGCCGTTGTTCATTGGCGGGCTGGCAGCGCTCTACCCGCACATGTGGCTGGGGATGATCGTCGGCACCGCGGCGATCTGCTACACGGTCTACCTGCTGTACGTGGGTTTGCCGACGTTCATGAACATCCCGCAGGACGAAGGCTTCCTGTTTTCCAGCTCGGTGCTGGCCGTCGGCCTGGTCGTGCTGGTCGCCATCATGGCGTTCACGGTCATTGTCTGGGGATTGGGCGTGGGTCCGGTCTATACCAACTGAMIHHVVGLFTHPDQEWKEIRGDQEESISHMYLTHTLILAAIPAVSAFIGTTQVGWVIGNRPPVMLTLESALWMTIMSYLAMLGGVAVMGAFIHWMARTYDANPSLARCVAFATYTATPLFIGGLAALYPHMWLGMIVGTAAICYTVYLLYVGLPTFMNIPQDEGFLFSSSVLAVGLVVLVAIMAFTVIVWGLGVGPVYTNNANANANANA
D1-35_00388825ttcACOG0037tRNA-cytidine(32) 2-sulfurtransferaseATGGGCACTCTCACGGTCAACCAGAACAAACTGCAAAAGCGCCTGCGCCGCCTGGCCGGTGAGGCCGTCGCCGATTTCAACATGATCGAGGATGGCGACAAGGTCATGGTCTGCCTGTCCGGCGGCAAGGACAGCTACACCTTGCTCGACGTGCTGATGCATCTGCAGAAAGTTGCGCCGATCAAGTTCGACATCGTTGCCGTGAACATGGACCAGAAGCAGCCGGGCTTTCCCGAGCACGTGCTGCCGGCTTACCTCGAATCGTTGGGCGTTGAATATCACATCGTCGAGAAAGACACCTATTCGGTGGTCAAGGAACTGATCCCCGAAGGCAAGACCACCTGTTCGCTGTGCTCGCGCCTGCGCCGTGGAACGCTCTATACCTTCGCTGACCAGATCGGCGCGACCAAGATGGCCCTGGGTCACCACCGCGACGATATCGTCGAGACCTTCTTCCTCAACATGTTCTACAACGGCTCGCTCAAGGCCATGCCGCCCAAGCTGCGCGCCGACGACGGGCGCAACGTGGTGATCCGTCCGCTGGCCTATTGCAGCGAGAAGGACATCCAGGCCTATTCGGATTTCAAGCAGTTCCCGATCATTCCCTGCAACCTGTGCGGCTCCCAGGAAAACCTGCAACGCCAGGTGGTCAAGGAGATGCTCCAGGAATGGGAGCGCAAGACCCCGGGCCGTACCGAGAGCATTTTCCGGGGCCTGCAAAACGTCATTCCGTCGCAACTGGCGGACCGCAACCTGTTCGATTTCGCCAGCCTGCGCATCGACGAAAGCGCCACGCCGCGGTTCGTCAATGTGGTGAATCTCTGAMGTLTVNQNKLQKRLRRLAGEAVADFNMIEDGDKVMVCLSGGKDSYTLLDVLMHLQKVAPIKFDIVAVNMDQKQPGFPEHVLPAYLESLGVEYHIVEKDTYSVVKELIPEGKTTCSLCSRLRRGTLYTFADQIGATKMALGHHRDDIVETFFLNMFYNGSLKAMPPKLRADDGRNVVIRPLAYCSEKDIQAYSDFKQFPIIPCNLCGSQENLQRQVVKEMLQEWERKTPGRTESIFRGLQNVIPSQLADRNLFDFASLRIDESATPRFVNVVNLNANANANANA
D1-35_00389675hypothetical proteinATGCGCGATTACAAGTGGCTGCACGAGTATTGTCTGAACCGCTTCGGTTCGGCGGCTGAATTGGAAGCCCACCTGCCTGTACCCAAGACCCCGGCGCAACTGCGCAAGATCAGCGATGATCGCTACCTCTCGACCATGGCGCTGCGGGTGTTTCGCGCCGGGCTCAAGCACAGCCTGGTCGATGCGAAATGGCCGGCGTTCGAAGAGGTGTTTTTCAGGTTCGACCCGGAAAAGGTCGTGCTGATGAGTGCCGAGCACCTGGAGCGGCTGATGCAGGATGCACGGATCATCCGCCACCTGGGCAAGCTCAACAGCGTGCCGCGCAACGCGCAGCTGGTGCTGGATGTGGCCCATGAAAAGGGCAGCTTCGGTGCGATGATCGCCGATTGGCCGGTGACCGATATCGTCGGCTTGTGGATCTACCTGAAAAAACACGGCCATCAGTTGGGCGGCCTGTCGGCGCCGCGTTTCCTGCGGATGATGGGCAAGGATACGTTCGTGCCCAGCTATGACGTCGTGGCGGCGCTCAATGCCCAGGACCTCATCGATAAAGTCCCGACCAGCCTGCGGGACCTGGCTACCGTGCAGAATGCGTTCAACCAGTGGCATGAAGAGAGTGGCGGGCGGCCGCTGAGCCAGATCTCGATGATGCTGGCTTATACCGTGAATCATTGAMRDYKWLHEYCLNRFGSAAELEAHLPVPKTPAQLRKISDDRYLSTMALRVFRAGLKHSLVDAKWPAFEEVFFRFDPEKVVLMSAEHLERLMQDARIIRHLGKLNSVPRNAQLVLDVAHEKGSFGAMIADWPVTDIVGLWIYLKKHGHQLGGLSAPRFLRMMGKDTFVPSYDVVAALNAQDLIDKVPTSLRDLATVQNAFNQWHEESGGRPLSQISMMLAYTVNHNANANANANA
D1-35_00390426hypothetical proteinGTGGCTAAGAAGCCGAAGATCCTGCCGCCGGTCGAGTGGCTGGAGCCGCGTGTGCACATCGCCCGTAACCTCAGCCTGTTGTGCTTTTTCGGCCTGGTGGGGCTGCTCAGCGGGTATTACCTGCTGATCGCCGACCTGCACGGCGCGCGCCCCTGGGTGATTCTGCTGATCGAACTGGTGCCGTTGCTGATACTCGCGCCAGGCATGCTCAGCGGCAGCGCGCGCGGGCATTCGTGGATGTGCTTCGTGGTGAACCTGTATTTCATCAAGGGCGCGCTGGCGGCCTACGATCCGAACCGGCAATGGTTCGGCGTGCTGGAGATGGCGGCGAGCGTGGCGCTGTTCTGCTCGGCATTGCTATATGTGCGCTGGCGTTTCCAGTTGAACCGGCGGTTGGCTGGCGAGGGCGATATCTCCGTCGCCTGAMAKKPKILPPVEWLEPRVHIARNLSLLCFFGLVGLLSGYYLLIADLHGARPWVILLIELVPLLILAPGMLSGSARGHSWMCFVVNLYFIKGALAAYDPNRQWFGVLEMAASVALFCSALLYVRWRFQLNRRLAGEGDISVANANANANANA
D1-35_00391606COG0655NAD(P)H dehydrogenase (quinone)GTGAGCACGCCCTATATCCTGGTGCTGTATTACAGCCGCAGTGGCTCTACCAACGAAATGGCCCGCCAGATCGCTCGCGGCGTCGAGCAGGCCGGACTGGAAGCCAGGTTGCGCACGGTGCCGGCGATCTCCACCGAGTGCGAGGCGGTGGCGCCGGATATCCCCGAACAGGGCCCGCTCTACGCCAACCTCGATGATCTGAAGAACTGCGCCGGCCTGGCCCTGGGCAGTCCGACCCGCTTTGGCAACATGGCCGCGCCGCTCAAATACTTCCTCGACGGCACCAGCAACCTGTGGCTGACCGGCGCCCTGGTGGGCAAGCCGGCCGGGGTGTTCACCTCCACCGCGAGCCTGCATGGCGGCCAGGAAACCACGTTGTTGTCGATGATGCTGCCACTGCTGCACCACGGCATGCTGATCACCGGCCTGCCCTACAGCGAGTCGGCCCTGATCGACACCCAGGGCGGCGGCACACCCTACGGCCCGAGCCACCACGCCGGCGCCGACGGTAAAAGCGGCCTGAATGAACACGAAGTCGCCCTGTGCCGCGCGTTGGGCCTGCGCCTGGCAAAAACCGCTTTGTTGCTGGAGAACGGCCGTGGCTAAMSTPYILVLYYSRSGSTNEMARQIARGVEQAGLEARLRTVPAISTECEAVAPDIPEQGPLYANLDDLKNCAGLALGSPTRFGNMAAPLKYFLDGTSNLWLTGALVGKPAGVFTSTASLHGGQETTLLSMMLPLLHHGMLITGLPYSESALIDTQGGGTPYGPSHHAGADGKSGLNEHEVALCRALGLRLAKTALLLENGRGPGPT0009460_1636DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009460-wrbA-K03809NANA
D1-35_00392354yfgDCOG1393putative protein YfgDATGACTGATCTGACGCTTTATCACAACCCGCGCTGCTCGAAATCCCGCGGTGCGCTGGAACTGTTGCAAGCCCGTGGCCTGGCGCCAACCGTGGTCCGCTACCTCGAAACTCCGCTGGACGCTGCGCAGCTGGAGCGGCTGCTGGGCAAGCTCGGCATTGAGGCACGCCAGTTGTTGCGCACCGGCGAAGATGAATACAAGACCATGGACCTGGCTGACGAAAGCCTGAGCCAGGCGCAGTTGATCGCCGCCATCGCCGCCCACCCGAAACTGATGGAACGGCCGATTCTCGAAGTCGGCGACAAAGCGGTGATCGGTCGCCCACCGGAGAAAATCCTGGAGATCCTGCCGTGAMTDLTLYHNPRCSKSRGALELLQARGLAPTVVRYLETPLDAAQLERLLGKLGIEARQLLRTGEDEYKTMDLADESLSQAQLIAAIAAHPKLMERPILEVGDKAVIGRPPEKILEILPPGPT0004720_3118DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0004720-arsC1-K00537NANA
D1-35_00393468resA_1COG0526Thiol-disulfide oxidoreductase ResAATGGCAAGGCGATTGGCGGCGGCACTGACATTCATCGGCTTTTTATTGCTCGGCGGCTGCGGCAACGATTACGGCGTGGACCAGAACGGTCAGCCGATTGCCGCGCAGCGGCTGGACAACCAATGGCTGGTGCTCAACTACTGGGCCGAGTGGTGCGCGCCGTGTCGCACTGAAATCCCCGAATTTAATGCCTTGGCCGAACAGCTCAAGGGACGCAACGTAGGTGTCTTCGGGGTCAACTTCGATCAGGTGCAAGGCGAAGAACTCAAGAGTGCCAGCGAGAAGCTGGGCATCCGCTTCACCGTACTGGCCCGGGATCCGGCCGAGTTCTTTGATGTCCCGCGCAGCGAAGGCCTGCCGGTGACGTACATCATCGACACCCAGGGCAAGGTGCGTGAACAATTGCTGGGAGAGCAGACGGCGGCGGCGGTGATGGCCAGGCTGGAGGCGTTGCAAGCGCTAAAATAGMARRLAAALTFIGFLLLGGCGNDYGVDQNGQPIAAQRLDNQWLVLNYWAEWCAPCRTEIPEFNALAEQLKGRNVGVFGVNFDQVQGEELKSASEKLGIRFTVLARDPAEFFDVPRSEGLPVTYIIDTQGKVREQLLGEQTAAAVMARLEALQALKNANANANANA
D1-35_00394405hypothetical proteinATGAAACATCTGGTCCTGGCCACGCTGATGGGCGCCGGCCTGATGGGCTGCGCCGCCGATCCGGTGCAACTGCAACCCAACCGCAGCTACATCCTCGAATGGATCGGCGAGCGGCCGTTGATGGACTACAGCCACCTGACCATCACCCTCGACGACGATGGCCGTGCCTACGGCAATGCCGGCTGCAACCACTGGTTTGCGCCCTACACTCTGGAAAGCGACCGCTTGAGTTTCGGCAAGATCGGCAGCACCCGCAAACTCTGCGCCCCGGCGTTGATGGAGCAAGAGACGCGTTTCTTGCAGGCGCTGGAGAAGGTCGAGCGCTGGGACGTATCGCCCACGGGCCAGACCCGTTTCTGGCCGGCCCAGGGCAAGCCGTTGCGGTGGTGGTTGGAAGAGGGTTGAMKHLVLATLMGAGLMGCAADPVQLQPNRSYILEWIGERPLMDYSHLTITLDDDGRAYGNAGCNHWFAPYTLESDRLSFGKIGSTRKLCAPALMEQETRFLQALEKVERWDVSPTGQTRFWPAQGKPLRWWLEEGPGPT0014615_847DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014615-hslJ-K03668NANA
D1-35_00395435hypothetical proteinATGGCCGAACACGATTTTCGCTACACCCTGATGAACCCGCAGCACACCTTGACCGAGGTCCGCGCCCTGGCGCCGGGCCGTTACCAGGTCACCGGCAATGGCGGCTCGATCCAGGCCAACGATGTATTGCTCGTCACCCTCAAGGGCAGCAAGGATCTTTCCATGCGCCTGACCGTCGACACCGTTCGCCATCTGCTCAAGCCGATCGGCCAATGGACCGCCATGACCACCGGTCCGGTGTTCGGTGAACTGGCGATCCACACCTGGCAGGTCAAGTGCGACCAATGCGCCAAGGAACTGAGCTTCGAGTTCGCCGTCGATGCCAAGCTCGGCACCAAGGCCCAGAAACCGGCCGCCAGCGCACGCATTGCCGAGCTGGGCTGGACGACCGACGGGGAGAAACACCGGTGCCCGAAATGCCAGGAAGCCGCCTGAMAEHDFRYTLMNPQHTLTEVRALAPGRYQVTGNGGSIQANDVLLVTLKGSKDLSMRLTVDTVRHLLKPIGQWTAMTTGPVFGELAIHTWQVKCDQCAKELSFEFAVDAKLGTKAQKPAASARIAELGWTTDGEKHRCPKCQEAANANANANANA
D1-35_00396990ldhACOG1052D-lactate dehydrogenaseATGCGTGCAATTCTATTCAGCAGCCAGACCTACGATCGTGACAGTTTCAGCAAGGCCGCCGTACCCGCCGGCCTTGAATTGCAATTCCAGCCGGCACGCCTGAGCCTCGACACCGTGGCCCTGGCCGAACGGTGCGAGGTGGTGTGCGCCTTCATCAACGACGACCTGAGCGCGCCAGTGCTGGAACGACTCGCGGCCGGCGGCACCCGGCTGATTGCCCTGCGCTCGGCCGGCTTCAACCATGTCGACCTGCCCGCCGCCAAGCGTCTGGGGCTGAGCATCGCCCGGGTGCCGGCCTACTCGCCCCATGCGGTGGCTGAACATGCGGTGGCATTGATCATGGCCTTGAACCGCTGCCTGCACCGCGCCTGCAACCGCACCCGGGACGGCAATTTCAGCCTGAATGGGTTGACTGGCTTCGACCTGGTGGGCAAGACCGTGGGCGTGGTCGGCACAGGACAGATCGGCGCGACCTTCGCCCGGATCATGGCCGGTTTCGGTTGCCAGTTGCTGGCCTACGACCCGTTCCCCAACCCTCAGGTCGAAGCCTTGGGGGCCCGCTACCTGCCTCTGGCCGATCTGCTGGCGCAGGCGCAGATCATCAGCCTGCACTGCCCGCTCAACGACCAGAGCCGACACCTGATCAATGCTCATTCCCTGGCAACCCTGCAACGCGGCGCCATGCTGATCAACACCGGACGCGGCGGCCTGGTGGATACGCCGGCACTGATCGAAGCGCTGAAAAGCGGCCAGCTGGGTTACCTGGGGCTGGATGTCTACGAGGAAGAGGCCGAATTGTTCTTCGAGGACCGCTCCGACCTGCCGTTGCAGGACGACGTGCTCGCGCGGCTGCTGACCTTTCCCAATGTCGTGGTGACCGCACACCAGGCGTTCCTGACTCGCGAAGCACTGGCCGCGATTGCCACCACCACCCTCGACAACATTGCCGCCTGGGCGGCTGGCGCTCCGCAGAACCTGGTGGATGGCTGAMRAILFSSQTYDRDSFSKAAVPAGLELQFQPARLSLDTVALAERCEVVCAFINDDLSAPVLERLAAGGTRLIALRSAGFNHVDLPAAKRLGLSIARVPAYSPHAVAEHAVALIMALNRCLHRACNRTRDGNFSLNGLTGFDLVGKTVGVVGTGQIGATFARIMAGFGCQLLAYDPFPNPQVEALGARYLPLADLLAQAQIISLHCPLNDQSRHLINAHSLATLQRGAMLINTGRGGLVDTPALIEALKSGQLGYLGLDVYEEEAELFFEDRSDLPLQDDVLARLLTFPNVVVTAHQAFLTREALAAIATTTLDNIAAWAAGAPQNLVDGPGPT0001755_1728DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001755-ldhA-K03778NANA
D1-35_003972751barACOG0784Signal transduction histidine-protein kinase BarAGTGCTCAAGAAACTGGGAATCAAAGGCCGTGTGCTGCTGCTCACCCTACTGCCGACCACCTTGATGGCGCTGGTCCTGGGCGGTTATTTCACCTGGATGCAGCAATCGGACCTGCACGCCCAGTTGCTGCAACGCGGTGAAATGATCGCCGAACAACTGGCCCCGCTGGTCGCTCCGGCCATGAGCCGCCAGGACATCGAGCTGCTGGAACGCGTCGCCACCCAGTCCCTCGAGCAAGCCGACGTTCGCGCGGTGACCTTCCTCGCACCCGACCGCACACCGCTCGCCCATGCCGGCCCGACCATGCTCAACCGGGCGCCGGAGGGCAACAGCAGCCAACTGCTGCAACGCACCGGCAACGATGCCACACGCTATCTGCTGCCGGTGTTCGGCAAGCATCGCAACCTGGCTGGCGAACTGATTCCCGAAGAAGCCGATCGCCTGCTGGGCTGGGTCGAGCTGGAGCTGTCCCACAGCGGCATGTTGCTGCGCGGTTACCGCAGCCTGTTCGCCAGCCTGTTGCTGATCGCCGCCGGCCTGGGTTGCACCGCGCTGCTGGCCCTGCGCATGGGCCGCACCATCAATCGACCGCTGAGCCAGATCAAGCAGGCCGTGGCGCAGCTCAAGGACGGGCATCTGGAAACCCGCCTGCCACCGTTGGGCAGCCAGGAGCTGGATGAGCTGGCGTCGGGTATCAATCGCATGGCCGGCACCTTGCAGAATGCCCAGGAAGAATTGCAGCACAGCATCGACCAGGCCACCGAAGACGTGCGCCAGAACCTGGAAACCATCGAGATCCAGAACATCGAACTGGACCTGGCCCGCAAGGAAGCGCTCGAAGCGAGCCGGATCAAGTCCGAATTCCTCGCGAACATGAGCCATGAAATCCGCACGCCGCTCAACGGCATCCTCGGTTTCACCCATTTATTGCAGAAAAGCGAGCTGACCCCGCGCCAGCTCGACTACCTGGGCACCATTGAAAAATCCGCCGACAGCCTGCTCGGCATCATCAACGAGATTCTCGACTTCTCGAAGATCGAGGCCGGCAAGCTGGTGCTCGACAGCATCCCCTTCAACTTGCGGGACCTGCTGCAGGACACCCTGACCATCCTCGCCCCCGCCGCCCACGCCAAACAGCTGGAGCTGGTGAGCCTGGTCTACCGCGACACGCCGTTGTCGCTGGTGGGTGACCCGCTGCGGCTCAAGCAGATCCTCACCAACCTGGTGAGCAACGCCATCAAGTTCACCCGTGAAGGCACCATCGTCGCCCGCGCCATGCTCGAAGATGAGCACGAAGACAGCGTGCAGTTGCGCATCAGCATCCAGGACACCGGCATCGGCCTGTCCAGCCAGGACGTGCGGGCGCTGTTCCAGGCCTTCAGCCAGGCCGACAACTCCTTGTCCCGGCAGCCCGGCGGGACCGGTCTGGGCCTGGTGATTTCCAAGCGACTGGTGGAACAGATGGGCGGTGAGATCGGCGTCGACAGCACGCCGGGCGAAGGCTCGGAGTTCTGGATCAGCCTGCGCCTGCCCAAGACCCGTGACGACGCCGAAGACCTGCCCGGCCCGCCGCTGCTGGGGCGCCGCGTGGCGGTTCTGGAAAATCACGAGCTGGCCCGCCAGGCCTTGCAGCACCAGTTGGAGGACTGCGGTTTGCAGGTGACGGCGTTCAATACCCTGGAAAACCTGACCAACGGCGTCACCGTCGCCCACCAGACGGATCAGGCGATTAACCTGGCCGTACTCGGCATCACCAGCAACGACATGCCGCCGGAGCGTCTCAACCAACACATCTGGGACCTCGAGCACTTGGGCTGCAAGGTGCTGGTGCTGTGCCCCACTACCGAACAGACGCTGTTTCATCTCTCGGTGCCCAACCCCCACAGTCAATTGCAGGCCAAGCCGGCCTGCACCCGCAAGCTGCGCCGGTCGCTTTCCGACCTGGTCAACCCGCGCCCGACCCGCAACGAACCCAATGAACCGGTGGCCAGCCGCGCGCCAAAAGTGTTGTGCGTGGACGACAACCCGGCCAACCTGCTGCTGGTGCAGACCCTGCTCGAAGACATGGGCGCCCGGGTGCTGGCGGTGGAAAGTGGTTACGCGGCGGTCAAGGCCGTGCAGAAGGAAACCTTCGACCTGGTCCTGATGGACGTACAAATGCCCGGCATGGATGGCCGCCAGAGCACCGAAGCGATCCGCCAATGGGAAAGCGAGCGGCATTGCACGCCACTGCCGATCGTCGCCCTCACCGCCCACGCCATGGCCAACGAGAAGCGCGCCCTGTTGCAAAGCGGCATGGACGACTACCTGACCAAGCCTATCAGCGAGCGGCAATTGGCCCAGGTCGTACTCAAGTGGACCGGCCTGGCGCTGCGCAACCAGACCCCGGATCGGGGCGCTGATGCCCAAGGCAGCAGCGAGCTGCTGGTGCTCGACCACGAGGAAGGCCTGCGCCTGGCCGCCGGCAAGGCCGACCTGGCGGCGGACATGCTGGCGATGTTGCTCGCGTCCCTTGAAGCCGACCGCGAAGCGATCCGCCAGGCCAGCGAGGCCAACGACCACAACGCCCTGATCGAACGGGTCCACCGCCTGCACGGGGCCACGCGCTATTGCGGCGTACCGCAACTGCGCGCGGCCTGCCAGCGCAGCGAAACCTTGCTCAAGCAGCAAGACCCGCGGGCTGCCGCGGCTCTGGAAGACCTGGACCGTGCCATCCACAGGCTGGCCAGCGAGGCGCGCATCAGCGCCTGAMLKKLGIKGRVLLLTLLPTTLMALVLGGYFTWMQQSDLHAQLLQRGEMIAEQLAPLVAPAMSRQDIELLERVATQSLEQADVRAVTFLAPDRTPLAHAGPTMLNRAPEGNSSQLLQRTGNDATRYLLPVFGKHRNLAGELIPEEADRLLGWVELELSHSGMLLRGYRSLFASLLLIAAGLGCTALLALRMGRTINRPLSQIKQAVAQLKDGHLETRLPPLGSQELDELASGINRMAGTLQNAQEELQHSIDQATEDVRQNLETIEIQNIELDLARKEALEASRIKSEFLANMSHEIRTPLNGILGFTHLLQKSELTPRQLDYLGTIEKSADSLLGIINEILDFSKIEAGKLVLDSIPFNLRDLLQDTLTILAPAAHAKQLELVSLVYRDTPLSLVGDPLRLKQILTNLVSNAIKFTREGTIVARAMLEDEHEDSVQLRISIQDTGIGLSSQDVRALFQAFSQADNSLSRQPGGTGLGLVISKRLVEQMGGEIGVDSTPGEGSEFWISLRLPKTRDDAEDLPGPPLLGRRVAVLENHELARQALQHQLEDCGLQVTAFNTLENLTNGVTVAHQTDQAINLAVLGITSNDMPPERLNQHIWDLEHLGCKVLVLCPTTEQTLFHLSVPNPHSQLQAKPACTRKLRRSLSDLVNPRPTRNEPNEPVASRAPKVLCVDDNPANLLLVQTLLEDMGARVLAVESGYAAVKAVQKETFDLVLMDVQMPGMDGRQSTEAIRQWESERHCTPLPIVALTAHAMANEKRALLQSGMDDYLTKPISERQLAQVVLKWTGLALRNQTPDRGADAQGSSELLVLDHEEGLRLAAGKADLAADMLAMLLASLEADREAIRQASEANDHNALIERVHRLHGATRYCGVPQLRAACQRSETLLKQQDPRAAAALEDLDRAIHRLASEARISAPGPT0012930_597DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-VarA|VarS_SIGNALLING_SYSTEM,PGPT0012930-gacS|barA|varS-K07678NANA
D1-35_00398723copR_1Transcriptional activator protein CopRATGAATCCCATCCCCGCTGTACCGCCGCGCATCCTTGCCATCGAAGACGACCCCGTGCTGGGTGCTTATGTCCATGAGCACCTGGCCCGCAACGGCTTCGAAGTGACCTGGTGCCAGAACGGCCAGGATGGCCTGGACATCGCCTGCCGGCAGGCTTTCGACGTGGTGCTGATGGACATCCTGCTGCCCGGGCTGGATGGCCTCGCGGTGCTGACCCGTTTGCGCCTGAGTCATTCGACCCCGGTGTTGCTGATGTCTGCCCTCGGCGCGGAAGCGGATCGCATCAGCGGCTTTCGCCTCGGCGCCGACGATTACCTGCCCAAACCGTTCAGCATGGCGGAGTTGCGTGTGCGCATCGAGGCCATCCTGCGCCGAGTGGCGCTGGATCGGCGCCCGGCTCAAATGATGACTCTGCCCCAGGCGCAGGACCTGGACTTTGATGAGCAGCGCAGTGATGTACAGGTCCAGGGCCAATGGGCAGGGCTGACGCGCAGCGAATACCGTTTGCTCGACGTCCTGCACCGCAGTGACAGTGAAGTCCTGAGCAAAGCCTTCCTCTATCAGCATGTTTTGCAGCGCGGCTATGCACCACATGATCGCAGCCTGGACATGCATGTCAGCCAGATCCGCCGCAAGCTCAAGTCTATCGGCTACACCGCGCGGGAGCTGCGCACGGTGTGGGGCAAGGGCTACGTGTTGAGTGCCGTCGATGAAGTGGTCTGAMNPIPAVPPRILAIEDDPVLGAYVHEHLARNGFEVTWCQNGQDGLDIACRQAFDVVLMDILLPGLDGLAVLTRLRLSHSTPVLLMSALGAEADRISGFRLGADDYLPKPFSMAELRVRIEAILRRVALDRRPAQMMTLPQAQDLDFDEQRSDVQVQGQWAGLTRSEYRLLDVLHRSDSEVLSKAFLYQHVLQRGYAPHDRSLDMHVSQIRRKLKSIGYTARELRTVWGKGYVLSAVDEVVPGPT0003250_28DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-ENTEROBACTIN|ENTEROCHELIN_METABOLISM,PGPT0003250-pfeR|pirR-K19610NANA
D1-35_003991422pfeSCOG0642Sensor protein PfeSATGAAGTGGTCTGATCTGCCTGGGCGGAACTCGTTGTTCTGGAAACTGGCATGCCTGCTGGTGGCGTTCTGTCTGCTGATGATTTGGCTGAGCTGGTCCTGGGGCCGTTATATGGAGGAGCGCAACCAGTTTCTCTCGGACCAGGCCCGCGGCACCCTCACGCGTTACGCCGCCGAGGCCGAGCACGCCTGGCGTTCCGGCCGACAGGCGGGGGTGGACCGCTGGTTGCAAGGCATGCAGCCGCGCGAGGCAAGCTGGGTGGGGGTGATCGGCCCCGACCTGCAATCGTTGAGCGGGCAGCCGTTGACCGAGAAAGAGGTCGAGCGGCTGACCTTCCTCCGTGGTCTGGATTGGCCGATCCACAAGAAGGGCCGACCGTGGCTGCGGGTGCCGTTCCCCGGCGACCCGTCCGTCGGCAGCCTGGTGATCGAACTGCCCGAGCGTTTCCTGCCGGGGCAGTACCAGTTGTTCTGGCGCGTGATGACCAACGGCGTGATCCCCGGACTGTTCACCCTGTTGCTCTGTGTCGGGCTGTATCGCCTGCTGGTGGTGCCGCTCAATCAACTGCGCGAACAGGCCAATGCCTGGCGGGCCGATCAGTTGGGCGTGCGCCTGTCCAGCCGCACCACCGAACGTGCCGATGAACTGGGCGAGCTGGGACGGGCGTTCGATCACATGTCCGAGCGGTTGCAATCGACCGTCGCGCTGCAACAACAGCTGCTCCGCGACCTGTCCCATGAGCTGCGCACACCGCTGAGTCGCCTGCAAGTCGCCAGCGACAGCGAGCAGGACCTGGACCAACTGCGCGAGCGCGTCGCCCGGGAAGTCGAAGGCATGCAGCGATTAATCGAGGACACCCTGCAACTGGCCTGGCTCGACACCGAACGCGCGCCATTGCCGGTCGAGGCGATCCAGGTCCAGGCCTTGTGGGAAATGCTCACGGAAAATGCCTGTTACGAAAGCGGCTGGCCCAGCGCTCAACTGCAATGCGCGGTCGATGCCGATTGCTGGGTCCAAGGCAACCTCAATACCTTGGCGCAAGCTTTGGAAAACATCCTGCGCAACGCCATCCGGCACTCGCCGCCCGGCGGCGTGGTGCGGCTGGACGGTCGACGTGAGGGCGGTTTCTGGCTGCTGTGGCTTGAAGACGAAGGCGGTGGGGTGGCCGAGCAGGATCTTGAGCGTATCTTCGATCCGTTCACCCGTCTCGATGGCTCTCGCCCGGGAGACGGCGGTTTCGGGCTGGGGCTGAGCATTGCCCGTAATGCGCTGGCGCGCCAGGGTGGGCGGCTGTGGGCGCAGAACGGCAGGAAGGGCTTGCGGTTGAACCTGCGTCTGGTCGCCACTCAAGCAGCCACCGCCCCCGTGGCGAGGGAGCTTGCTCCCGCTGGCGCGCGCAGCGGCCCCCTGCAACCTGCCTGAMKWSDLPGRNSLFWKLACLLVAFCLLMIWLSWSWGRYMEERNQFLSDQARGTLTRYAAEAEHAWRSGRQAGVDRWLQGMQPREASWVGVIGPDLQSLSGQPLTEKEVERLTFLRGLDWPIHKKGRPWLRVPFPGDPSVGSLVIELPERFLPGQYQLFWRVMTNGVIPGLFTLLLCVGLYRLLVVPLNQLREQANAWRADQLGVRLSSRTTERADELGELGRAFDHMSERLQSTVALQQQLLRDLSHELRTPLSRLQVASDSEQDLDQLRERVAREVEGMQRLIEDTLQLAWLDTERAPLPVEAIQVQALWEMLTENACYESGWPSAQLQCAVDADCWVQGNLNTLAQALENILRNAIRHSPPGGVVRLDGRREGGFWLLWLEDEGGGVAEQDLERIFDPFTRLDGSRPGDGGFGLGLSIARNALARQGGRLWAQNGRKGLRLNLRLVATQAATAPVARELAPAGARSGPLQPAPGPT0003245_10DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-ENTEROBACTIN|ENTEROCHELIN_METABOLISM,PGPT0003245-pfeS|pirS-K19609NANA
D1-35_00400903cysM_2COG0031Cysteine synthase BATGACTTTGCAGTACCCAACCATCGCCGATTGCGTCGGCAACACCCCGCTGGTTCGCTTGCAGCGCCTGCCTGGCGCGACCAGCAATACGCTTTTGCTCAAGCTCGAAGGCAACAACCCGGCGGGTTCGGTCAAGGACCGGCCGGCGCTGTCGATGATCACCCGTGGCGAATTGCGCGGGCAGATCCGCCCGGGCGACACGCTGATCGAGGCGACCTCCGGGAACACCGGCATCGCCCTGGCGATGGCGGCGGCGATCAAGGGCTACAAGATGATCCTGATCATGCCCGACAACTCCAGCGCCGAGCGCAAGGCGGCGATGACGGCCTATGGCGCCGAGCTGATCCTGGTGACCCAGGAAGAGGGCATGGAAGGCGCCCGTGACCTGGCCGAGCGCATGCAGGCCGAAGGCCGGGGCAAGGTGCTCGATCAGTTCGCCAACGGCGACAATCCAGAAGCCCACTACACCACCACCGGCCCGGAGATCTGGCGCCAGACCGATGGCACGATCAGCCATTTCGTCAGCTCGATGGGCACCACCGGCACCATCATGGGTACTTCTCGCTACCTGAAAGAACAGAACCCGAACGTGCAGATCATCGGCCTGCAACCGATGGAAGGCTCGGCCATCCCCGGCATTCGCCGCTGGCCCGAGGAATATCTGCCGAAGATCTACCAGGCCGATCGCGTGGATCGCATCATCGACATGGCCCAGAGCGAAGCCGAAGACGTGACCCGTCGCCTGGCCCGTGAAGAAGGTATTTTCTGCGGCGTGTCGTCGGGCGGTGCCGTGGCGGGCATGCTGCGTTTGTCGAAGGAAGTGGAAAATGCAGTGATCGTCGCGATCATCTGCGACCGTGGCGACCGTTACCTGTCGACCGGCATCTTCGACGCGCCCAACTGAMTLQYPTIADCVGNTPLVRLQRLPGATSNTLLLKLEGNNPAGSVKDRPALSMITRGELRGQIRPGDTLIEATSGNTGIALAMAAAIKGYKMILIMPDNSSAERKAAMTAYGAELILVTQEEGMEGARDLAERMQAEGRGKVLDQFANGDNPEAHYTTTGPEIWRQTDGTISHFVSSMGTTGTIMGTSRYLKEQNPNVQIIGLQPMEGSAIPGIRRWPEEYLPKIYQADRVDRIIDMAQSEAEDVTRRLAREEGIFCGVSSGGAVAGMLRLSKEVENAVIVAIICDRGDRYLSTGIFDAPNPGPT0002820_584DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_SERINE_DEGRADATION,PGPT0002820-cysM-K12339NANA
D1-35_004011371rlmDCOG226523S rRNA (uracil(1939)-C(5))-methyltransferase RlmDATGGCCAAACAAGAAAGAGGCTTGCGCTTCCAGCCCAGCGGCGGAAGCCGGGCCCCGCAAGTGCCCACCGGCAAGAAGCAGCGCCTGACCATTGAACGCCTGGCCAACGATGGCCGGGGCATTGCGTTTGTCGACGGGCGGACCTGGTTTGTCATCGGCGCCCTGGCTGGTGAAGAGGTCGAGGCGCGGGTGCTCGGTACCCACGGCAAAGTGGTCGAGGCCCGCACCGAACGGGTGTTTTCCTCCAGCGAACTGCGTCGTGCAGCGCCCTGCGTGCATGCCGGTCGCTGCGGCGGTTGCAGCGTCCAGCATTTGCCCCATGGCGAACAGCTTGCCCTGAAACAGCGCATGCTCGCCGAGCAACTGTCGCGGGTGGCCGGTGTCGAGCCGGATGAGTGGGCCGCGCCGTTGAGCGGACCGGAGTTCGGCTACCGACGTCGCGCTCGGGTGGCGGTGCGTTGGGATCAGAAAGCAAAATATCTTGAAGTGGGTTTCCGTGCCGTCGGCACCCAGGACATCGTAGCCATCGACGCATGTCCGGTGCTGGTACAGCCCTTGCAGCCGATCATGAGTCGCCTGCCGGAAATGCTCCGTCGCTTGGGCAAACCCCAGGCGCTCGGCCATGTCGAGTTGTTCGCCGGCTCGTCCCTGGCGTTATTGCTGCGGCATATGGCGCCGTTGTCGGAAGCCGACCTGACGATCCTCAAGGATTTCTGCGCGTTCCATGAAGCCCAGTTGTGGCTGCATGGCGAAGGCGAGCCGCAACCGGTCGATCCGGGCCAGGCCCTGGGTTATCGCCTGGAAAGCTGGGACCTGGAACTGGCTTACCGGCCGGGGGATTTCATTCAGGTGAACGCCGCCGTCAACGAGGCGATGGTCGCCCAGGCGCTGCAATGGCTGGCGCCTCGACCCGATGAGCGCGTGCTTGACCTGTTCTGTGGCCTGGGCAACTTTGCCTTGCCGCTGGCCAGGCAGGTGCGCGAGGTCGTGGCGGTGGAGGGCGTGCAGACCATGGTCGAGCGCGCGGCGGCGAACGCCCTCAGCAACAATTTGCATAACACTGCTTTTTTTCAGGCCGATTTATCCCAGCCTTTGGCGGGTGCCGAGTGGATCGGCGAAGGCTTTTCTGCGGTACTCTTGGACCCACCCCGTGATGGTGCTTTCGAGGTGGTGCGCAAGCTGGCCTCGCTGGGTGCCAGGCGGCTGGTTTATGTGTCGTGCAACCCGGCAACTTTGGCCCGGGACACGGTCGAATTGATCAAGCAGGGCTACCGGTTAAAACGTGCCGGGATTCTCGATATGTTTCCTCAGACGGCGCATGTCGAGGCCATGGCGTTATTTGAAGCGAGCCAGGATGGCTTGTCCGACTGAMAKQERGLRFQPSGGSRAPQVPTGKKQRLTIERLANDGRGIAFVDGRTWFVIGALAGEEVEARVLGTHGKVVEARTERVFSSSELRRAAPCVHAGRCGGCSVQHLPHGEQLALKQRMLAEQLSRVAGVEPDEWAAPLSGPEFGYRRRARVAVRWDQKAKYLEVGFRAVGTQDIVAIDACPVLVQPLQPIMSRLPEMLRRLGKPQALGHVELFAGSSLALLLRHMAPLSEADLTILKDFCAFHEAQLWLHGEGEPQPVDPGQALGYRLESWDLELAYRPGDFIQVNAAVNEAMVAQALQWLAPRPDERVLDLFCGLGNFALPLARQVREVVAVEGVQTMVERAAANALSNNLHNTAFFQADLSQPLAGAEWIGEGFSAVLLDPPRDGAFEVVRKLASLGARRLVYVSCNPATLARDTVELIKQGYRLKRAGILDMFPQTAHVEAMALFEASQDGLSDNANANANANA
D1-35_004022247relACOG0317GTP pyrophosphokinaseATGGTACAGGTGAGAGCACACCAGCCGATCAACACCGACGGCAGTATCAATCTCGAGGCTTGGCTCGATCACGCGGTCAGTATCGATCCGGCACTGGATCGCGAAGCCTTGAAGCAAGCCTGCGAGTTCGCTCGCGAGGCAGAACAGCAACACAACGCGGCGAAGAACCTGTGGTCCGAAGGCACCTCGAGTTTCCAGACGGGCCTTGAGATCGCCGAAATCCTCGCCGACCTCAAGCTCGACCAGGACTCGCTGGTCGCCGCGGTGCTGTACCGCGGCGTGCGTGAAGGGCAGATCCAGCTGCCGATGGTCAACCAGCGTTTCGGCACCGTGGTCGCCAAGCTGATCGACGGCGTGTTGCGCATGGCGGCCATCAGCGCCAGCCTCAGCCCGCGCCAGTCCATGGTTCTGGGCACCCAGGGCCAGGTGGAAAACCTGCGCAAGATGCTTGTGGCCATGGTCGACGACGTGCGTGTCGCGCTGATCAAGCTGGCCGAGCGCACCTGCGCGATCCGCGCCGTGAAATCCGCCGACGATGAAAAACGCAACCGTGTCGCCCGTGAGGTGTTCGACATCTACGCGCCGCTGGCCCACCGTCTCGGTATCGGTCACATCAAGTGGGAGCTGGAGGACTTGTCCTTCCGCTACCTGGAGCCTGACCAATACAAGCAGATCGCCAAGCTGTTGCATGAACGACGGCTGGATCGCGAGCGCTTCATCACCGATGTCATGACTCAGTTGCGTGAGGAATTGCAGGCCACCGGCGTGGAAGCCGATATCAGTGGCCGGGCCAAGCACATCTATTCGATCTGGCGCAAAATGCAGCGCAAAGGCCTCGAATTCAGCCAGATCTACGACGTTCGCGCCGTGCGCGTGCTGGTTCCGGAAATGCGCGATTGCTACACCGCGCTGGGGATCGTCCATACCTTGTGGCGGCACATTCCCAAGGAATTCGACGACTACATCGCCAACCCGAAGGAAAACGGCTACCGCTCGCTGCACACCGCGGTCATCGGCCCGGAAGGCAAGGTGCTGGAGGTGCAGATCCGCACCCATGCCATGCACGAAGAAGCCGAGCTGGGGGTTTGTGCCCACTGGAAATACAAGGGCACCGACGTCAAGTCCGGGTCCAACCATTACGAAGAGAAAATCTCCTGGCTGCGCCAGGTGCTGGAATGGCACGAGGAACTGGGTGACATCGGCGGCCTGGCGGAACAGCTGCGGGTCGACATCGAGCCGGACCGGGTCTACATCTTCACTCCCGACGGCCACGCCATCGACTTGCCCAAGGGCTCGACGCCGCTGGACTTCGCCTACCGGGTGCACACCGAGATCGGTCACAACTGCCGTGGCGCCAAGATCAACGGGCGGATCGTGCCGCTCAACTACAGCCTGCAGACCGGCGAGCAGGTGGAGATCATCACTAGCAAGCACGGCACGCCGAGCCGCGACTGGCTGAACCCGAACCTGGGCTACATCACCACTTCGCGCGCGCGGGCGAAAATCGTCCATTGGTTCAAGTTGCAGGCCCGTGACCAGAACGTCGCCGCCGGCAAGACCCTGCTCGAGCGCGAGCTGAGTCGCCTGGGCCTGCCGCAGGTGGATTTCGACAAGCTGGCTGAAAAAGCCAATATGAAGACCGCCGAGGACATGTTCGCCGCCCTTGGCGCCGGCGACCTGCGCCTGGCGCAACTGGTCAACCTCGCCCAGCAACTGGTTGAGCCGGAACGCGGCAACGAGCAACTGGAACTGATCCCGCGCAAGGCCACCGGCTACAAGCCCGGCAAGCGCGGCGATATCCAGATCCAGGGCGTGGGCAACCTGATGACCCAGATGGCGGGCTGCTGCCAGCCGCTGCCGGGGGATGCGATCGTTGGCTACATCACCCAGGGCCGTGGCGTGAGCATTCACCGCCAGGATTGCGCCTCGGTGCTGCAACTGGCCGGTCGCGAACCGGAGCGGATCATCCAGGTCAGTTGGGGCCCGGTGCCGGTGCTCACCTACCCGGTGGACATCATCATCCGCGCCTACGACCGTTCCGGCCTGCTGCGTGACGTGTCCCAGGTGCTGCTCAACGAGCGGATCAACGTGCTGGCGGTCAACACCCGCTCGAACAAGGAGGACAACACCGCGCTGATGTCCCTGACCATCGAGATTCCGGGGCTGGATGCACTGGGGCGGTTGCTGGGGCGGATTTCCCAGTTGCCGAACATCATCGAGACCCGGCGTAATCGGACACCGGGCTAAMVQVRAHQPINTDGSINLEAWLDHAVSIDPALDREALKQACEFAREAEQQHNAAKNLWSEGTSSFQTGLEIAEILADLKLDQDSLVAAVLYRGVREGQIQLPMVNQRFGTVVAKLIDGVLRMAAISASLSPRQSMVLGTQGQVENLRKMLVAMVDDVRVALIKLAERTCAIRAVKSADDEKRNRVAREVFDIYAPLAHRLGIGHIKWELEDLSFRYLEPDQYKQIAKLLHERRLDRERFITDVMTQLREELQATGVEADISGRAKHIYSIWRKMQRKGLEFSQIYDVRAVRVLVPEMRDCYTALGIVHTLWRHIPKEFDDYIANPKENGYRSLHTAVIGPEGKVLEVQIRTHAMHEEAELGVCAHWKYKGTDVKSGSNHYEEKISWLRQVLEWHEELGDIGGLAEQLRVDIEPDRVYIFTPDGHAIDLPKGSTPLDFAYRVHTEIGHNCRGAKINGRIVPLNYSLQTGEQVEIITSKHGTPSRDWLNPNLGYITTSRARAKIVHWFKLQARDQNVAAGKTLLERELSRLGLPQVDFDKLAEKANMKTAEDMFAALGAGDLRLAQLVNLAQQLVEPERGNEQLELIPRKATGYKPGKRGDIQIQGVGNLMTQMAGCCQPLPGDAIVGYITQGRGVSIHRQDCASVLQLAGREPERIIQVSWGPVPVLTYPVDIIIRAYDRSGLLRDVSQVLLNERINVLAVNTRSNKEDNTALMSLTIEIPGLDALGRLLGRISQLPNIIETRRNRTPGPGPT0014820_390DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0014820-relA-K00951NANA
D1-35_00403834mazGCOG1694Nucleoside triphosphate pyrophosphohydrolaseATGTACAGCCTCGAAGACCTGCTCCACCTGATGAACCGCTTGCGCGACCCGCAATACGGCTGCCCGTGGGACATCAGGCAAACCTACGCAACCATCGTCCCTCACACCCTGGAGGAAGCCTACGAAGTGGCCGACGCCATCGAGCGCGGCGACTTCGATCACCTTCAAGGTGAATTGGGCGATTTACTGTTCCAGGTGGTGTATTACAGCCAGCTGGCCCGGGAAGAAAACCGTTTCGAATTCGCCGGCGTGGTCGATAGCATCACCCGCAAGCTGATTCGCCGCCATCCCCATGTGTTTCCCACCGGTGACCTTTACGCAGCCGTGGATACCCCGCGCCTGAGCGAAGAGCAGGTCAAGCAGCGCTGGGAGAAAATCAAGGCAGAGGAGCGCGCCGAGAGGGCCTCGGTGCCCAAGCAGTTGTCACTGCTTGATGATGTACCGGTGGCATTGCCGGCCTTGTCGCGGTCGGCGAAGTTGCAGAAGCGCGCCGGTCAGGTCGGTTTCGACTGGCCGGGACCGCTGCCGGTGCTCGATAAGGTCCGTGAAGAGCTCGACGAAGTGCTCGAAGCCATGGCGGACAATGACGCCGCGGCCATCAGCGACGAAGTGGGTGACCTGCTGTTCAGTGTGGTGAACCTGGCTCGACACTTGAAAGTCGACCCCGAAACGGCCCTGCGTGGCGCCAATGCAAAGTTTGAAAGACGTTTCCGATTTATCGAACAGGCATTGCGCGAGACCCACCGTCCCATGGAAGATTGCACCCTCGAAGAGTTGGACGCCTTGTGGGGCGAAGCCAAACGTCAGGAAAAGAATTTGCCCAGCTGTGGCTGAMYSLEDLLHLMNRLRDPQYGCPWDIRQTYATIVPHTLEEAYEVADAIERGDFDHLQGELGDLLFQVVYYSQLAREENRFEFAGVVDSITRKLIRRHPHVFPTGDLYAAVDTPRLSEEQVKQRWEKIKAEERAERASVPKQLSLLDDVPVALPALSRSAKLQKRAGQVGFDWPGPLPVLDKVREELDEVLEAMADNDAAAISDEVGDLLFSVVNLARHLKVDPETALRGANAKFERRFRFIEQALRETHRPMEDCTLEELDALWGEAKRQEKNLPSCGPGPT0008820_382DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0008820-mazG-K04765NANA
D1-35_00404540hypothetical proteinATGAGCCTTTCCCTTCGCGACCAGTTGCTCAAAGCAGGGCTGGTCAACCAAAAGCAGGCCAAGCAGGTCGGCAAAGAGAAACAGAAGCAGCAACGCCTGGCCCACAAAGGCCAGGTCGAACTGGACGACTCCCAGCAGCGTGCGGCCCAGGAAGCCATGGCCGAGAAGGTCAAGCGCGACCAGGAACTGAACCGCCAGCAGCAGGAAAAGGCCGAGCAGAAGGCCCGTGCCGCGCAGATCAAGCAATTGATCGAGGTGTCGCGCCTGCCGAAGCTGACCACCGACGACTACTACAACTTCGTCGACGACAAGAAGGTCAAGCGCATCTCGGTCAATGCGCTGATGCGTAACAAGCTGAGCAGCGGTTCCCTGGCGATCGTCCATCATGCCGGGAGCTATGAAGTGATCCCGCGCGAAGCGGCGCTGAAGATCCAGGAACGCGACCCCAAGCGCATCGTCCAGCTCAACACCCAGACCGAAGAAGTGGATGCCGATGATCCGTACGCGGCGTATCAGATTCCTGATGATTTGATGTGGTAAMSLSLRDQLLKAGLVNQKQAKQVGKEKQKQQRLAHKGQVELDDSQQRAAQEAMAEKVKRDQELNRQQQEKAEQKARAAQIKQLIEVSRLPKLTTDDYYNFVDDKKVKRISVNALMRNKLSSGSLAIVHHAGSYEVIPREAALKIQERDPKRIVQLNTQTEEVDADDPYAAYQIPDDLMWNANANANANA
D1-35_00405195hypothetical proteinATGACTGTGAAAGTAACTGAACGCGACGACGCCCACATGTCCCACGAAGGTATTGCCGCCGGTATCCGGATCTGGGATGTGCATCAACAGGATCTGCTGGTGGGCATGTTCCATTCCGAGACGGACGCTCATAGCTACAAGGCCGAGCTGGAACGTGAGGAGCGGCAGCGTTTGCGTGAGACCTCGCATTCCTGAMTVKVTERDDAHMSHEGIAAGIRIWDVHQQDLLVGMFHSETDAHSYKAELEREERQRLRETSHSNANANANANA
D1-35_00406714hypothetical proteinATGCGTCGCGCCCTGCTCTTCGCTTGCGCTCTGCTTGCCCTGCCCCTGGCACAGGCTGCAGACCTTCAACCGTTCTCCGCCAGCTATACCGCCGACTGGAAACAGCTGCCCATGAGCGGCACCGCCGAGCGCAGCCTGACCAAGGAGGCCAACGGCACCTGGAAGCTGAGCTTCAAGGCATCGATGATGATCGCCAGCCTGACCGAAGAAAGCACCCTGACCCTGGACAAGGACACCCTGCTGCCGCAGTCCTATCACTTCGAGCGCGGCGGCCTGGGTAAAGCCAAGAAAGCAGACCTGGATTTCGACTGGAATGCCAAGATGGTCACCGGCACCGATCGCGGTGACGCGGTCAAGCTGCCATTGAACCGCGGCATGGTCGACAAATCCACGTACCAACTGGCCCTGCAGCACGACGTGGCGGCCGGCAAGAAAAGCATGAGTTATCAGGTCGTCGATGACGGTGAAATCGATACCTATGACTTCCGCGTGCTTGGTTCGGAAAAAGTCGACACCAAGGCCGGCCAGATCGACGCCATCAAGGTCGAGCGCGTGCGCGACCCGACACAAAGCAAGCGCATCACCGTGCTCTGGTTCGCCAAGGACTGGGATTACCTGCTGGTACGCCTGCAGCAAGTCGAGACCGACGGCAAGGAGTACAACATCATGCTCCAGGACGGTACGGTCAACGGCAAGGCTGTGAAAGGCAGCTGAMRRALLFACALLALPLAQAADLQPFSASYTADWKQLPMSGTAERSLTKEANGTWKLSFKASMMIASLTEESTLTLDKDTLLPQSYHFERGGLGKAKKADLDFDWNAKMVTGTDRGDAVKLPLNRGMVDKSTYQLALQHDVAAGKKSMSYQVVDDGEIDTYDFRVLGSEKVDTKAGQIDAIKVERVRDPTQSKRITVLWFAKDWDYLLVRLQQVETDGKEYNIMLQDGTVNGKAVKGSNANANANANA
D1-35_00407651purNCOG0299Phosphoribosylglycinamide formyltransferaseATGTCCGCAACCTGTGACGTCGTGGTGCTGTTGTCCGGCACCGGCAGTAACCTGCAGGCCCTGATCGACAGTACACGGACCGGCGACAGCCCGGTCCGGATCCGCGCGGTGATTTCCAACCGCGCCGATGCCTACGGCCTGCAACGTGCCAAGGAGGCGGGTATCGATACCCGCGTCCTCGATCACCAGGCGTTCGACGGTCGCGAGGCCTTCGATGCCGCGCTGATCGAACAGATCGACGCCTTCAATCCGCAACTGGTGGTCCTGGCCGGTTTCATGCGCATCCTCAGCGCCGGTTTTGTGCGTCACTACCAGGGCCGCCTGTTCAATATCCATCCGTCGCTGTTGCCCAAATATAAAGGGTTACACACTCACCAGCGTGCGCTGGAGGCCGGTGACACGGAGCATGGCTGCTCGGTTCACTTTGTCACCGAGGAACTCGATGGCGGACCACTGGTCGTACAGGCAGTAATACCGGTAGAGTTGCACGACACGCCGCAAAGCCTGGCGCAACGGGTCCACGCCCGCGAACACCAGATCTACCCGATGGCCGTGCGTTGGTTTGCCGAAGGCCGGCTGACACTCGACGATCGCGGAGCCTCACTGGACGGCCAGTTGCTCGCCGCCAGCGGCCATTTGATTCGATACTAGMSATCDVVVLLSGTGSNLQALIDSTRTGDSPVRIRAVISNRADAYGLQRAKEAGIDTRVLDHQAFDGREAFDAALIEQIDAFNPQLVVLAGFMRILSAGFVRHYQGRLFNIHPSLLPKYKGLHTHQRALEAGDTEHGCSVHFVTEELDGGPLVVQAVIPVELHDTPQSLAQRVHAREHQIYPMAVRWFAEGRLTLDDRGASLDGQLLAASGHLIRYPGPT0008095_1101DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0008095-purN-K11175NANA
D1-35_004081059purMCOG0150Phosphoribosylformylglycinamidine cyclo-ligaseATGAGCAAGCAACCCTCCCTGAGCTACAAGGACGCCGGTGTAGACATCGACGCCGGTGAAGCATTGGTCGAACGCATCAAGAGCGTCGCCAAGCGCACCGCGCGCCCGGAAGTCATGGGCGGCCTGGGCGGTTTCGGCGCCCTCTGCGAGATCCCGGCCGGCTACAAGCAACCGGTCCTGGTCTCGGGTACCGACGGCGTCGGCACCAAGTTGCGCCTGGCCTTGAACCTGAACAAGCACGACAGCATCGGCATCGACCTGGTGGCCATGTGTGTGAATGACCTGGTGGTCTGCGGCGCCGAACCACTGTTCTTCCTCGACTACTACGCCACCGGCAAACTCAACGTCGACACCGCCGCCCAGGTCGTGACCGGCATCGGCGCCGGCTGTGAATTGTCCGGCTGCTCCCTGGTCGGCGGCGAAACCGCTGAAATGCCAGGCATGTACGAAGGCGAAGACTACGACCTGGCCGGTTTCTGCGTCGGCGTCGTGGAAAAGGCCGAGATCATCGACGGCTCGAAAGTCGCCGCCGGCGACGCCCTGCTCGCCCTGCCATCTTCCGGCCCGCACTCCAACGGCTACTCGCTGATCCGCAAGATCATCGAAGTCTCGGGCGCCGATATCGAGAACACCCAGCTCGACGGCCAGCCACTCGCCGACCTGCTGATGGCCCCGACCCGCATCTACGTCAAGCCCCTGCTCAAGCTGATCAAGGACACCGGCGCCGTCAAGGCCATGGCCCACATCACTGGCGGCGGTCTGCTGGACAACATCCCGCGCGTGCTGCCAAAAGGCGCCCAGGCCGTGGTCGACGTGGCGAGCTGGACCCGCCCGGCGGTGTTCGACTGGCTGCAGGAAAAAGGCAACGTCGATGAAACCGAAATGCACCGCGTGCTGAACTGCGGCGTGGGCATGGTCATCTGCGTGGCCCAGGAGCACGTCGAAACCGCGCTGAACGTCCTGCGCGACGCGGGCGAGCAGCCTTGGGTCATCGGCCAGATCGCCACCGCGGCCGAAGGCGCCGCACAGGTCGAGCTGAAAAACCTCAAGGCACACTGAMSKQPSLSYKDAGVDIDAGEALVERIKSVAKRTARPEVMGGLGGFGALCEIPAGYKQPVLVSGTDGVGTKLRLALNLNKHDSIGIDLVAMCVNDLVVCGAEPLFFLDYYATGKLNVDTAAQVVTGIGAGCELSGCSLVGGETAEMPGMYEGEDYDLAGFCVGVVEKAEIIDGSKVAAGDALLALPSSGPHSNGYSLIRKIIEVSGADIENTQLDGQPLADLLMAPTRIYVKPLLKLIKDTGAVKAMAHITGGGLLDNIPRVLPKGAQAVVDVASWTRPAVFDWLQEKGNVDETEMHRVLNCGVGMVICVAQEHVETALNVLRDAGEQPWVIGQIATAAEGAAQVELKNLKAHPGPT0021570_743DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021570-purM-K01933NANA
D1-35_004091059hypothetical proteinATGCGTCTTTTCAAATTCTTGTCCATGGGCTGCCTGTCGCTGATCAGCCTGGCGAGCCATGCCGAAACCCTCAATAACCTTTATCAGGTGCGTGAGCCGGTCAGCAGCCAGGCGCCGGATGAGCGAAACCAGGCAACGTTGCGAGCGTTGGACACCCTGGTGCTGCGCCTGACCGGCGACGCCAAGGCCGCGCAGAATCCCGGCCTGGCGGCTATCCGCAAGGACCCGCAGCAGATCATTCTGCAGTACGGCTACGACGCCGGTCCTCCGGAAAGCCTGCAGGTGGACTTCGATCCCGCCAGCACCGACCGGGCATTGCGTTCGGCGGGGCTGCCGCTTTGGGGCGCGAATCGTCCATCGATTCTAGGCTGGTGGCTGAATGACTCGGCAGAAGGCTCCAGCCTGGTCGGTGATGGCCAGGCCAGCGCCACGCCTCTGCGCCGCGCGGCCCAGCACCGGGGCTTGCCGCTGCACCTGCCGTTGGCGGATTTGAGCGAGCAGATTGTCGCCACCGCGCCGACGTTGCAAGGCAACGACCCGGCGCCGTTGCGTGAGGCGTCGGACCGGTATGGCTCGGATGCCTTGCTGGCGGTCCATGCCAAGGAGGAGGGAGGCCAGTGGCAGGCCACCTGGCGCCTGTGGCTGGGCGACCAGCGCGAGCAGGGCAGCGCCCAGGGCGCCGATCCCGCTGCGCTGGCCGATGCCGTGATGTTGGCGGTGAGCCAGCGCCTGGCGCCGCGTTTCGTGGCCAAGCCGGGCGTGGCGACCGAGCAGTTGCTGGAAGTCCAAGGCATGAATCTGGAACGTTATGCAGCGCTGGGGCGTCTGCTCGAACCGTTCGCTGGCCAGGTGCAGCGGGTCGAGGGCGACAGAATTGTCTACAAGGTCAACGGCAGCGCCGAGCAATTGAAGGCACAACTGGCCCTGGCCAAACTGCAGGAATTGCCGCCGGGTGAAGCCGTCGCGCAAGCGCCTGCGGCGCAGCCGGCCGCCGACGGAACGGTTCCGGTCGCGACACCGACACCGTCGCCGGCGGCTAACTTGCGATTCCGCTGGTAGMRLFKFLSMGCLSLISLASHAETLNNLYQVREPVSSQAPDERNQATLRALDTLVLRLTGDAKAAQNPGLAAIRKDPQQIILQYGYDAGPPESLQVDFDPASTDRALRSAGLPLWGANRPSILGWWLNDSAEGSSLVGDGQASATPLRRAAQHRGLPLHLPLADLSEQIVATAPTLQGNDPAPLREASDRYGSDALLAVHAKEEGGQWQATWRLWLGDQREQGSAQGADPAALADAVMLAVSQRLAPRFVAKPGVATEQLLEVQGMNLERYAALGRLLEPFAGQVQRVEGDRIVYKVNGSAEQLKAQLALAKLQELPPGEAVAQAPAAQPAADGTVPVATPTPSPAANLRFRWNANANANANA
D1-35_004101074Sodium-lithium/proton antiporterATGGGCGATACGCGGCGTTGGTTCTGGTTGGGTGGGGTCGCCCTGCTGATTGCATTTATCTACTTGCTTCACCCGATCCTCACGCCGTTCCTGGTTGCGCTGTTACTGGCCTATCTGTTCGATCCGGTGGTGGATCGCCTGGAAAAGCTCGGGCTGTCCCGGACCTGGGGCGTGGTGGCGGTGTTCGCGTTGTTTACCTTGATCGTCAGCGCTCTGCTGCTGGTGCTGATACCCATGCTGGCCAAGCAACTGGTGCGCCTGTACGAGCTGGCACCGCAGATGCTCGATTGGCTGCAGCACACCGCAGTGCCTTGGGTGCAATCGAAGCTGGGCCTGTCGGACGGCTTCTGGAAGTTCGACAAGGTCAAGGCCGCCATCAGTGAGCACATGGGGCAGACCACCGATATCGTCGGCGTGGTATTGAGCCAGGCCACGGCTTCGAGCCTGGCGCTGATCGGCTGGCTGGCGAACCTGGTGCTGATTCCCGTGGTGGCCTTTTATCTGCTGCGCGATTGGGACCTGATGATGGCGAAGATCCGCAGCCTGCTGCCGCGTCATCGCGAAGAGCGCATCATGACGCTGACTGGCGAATGCCACGAAGTGCTGGGGGCGTTTGTCAGGGGGCAGTTGCTGGTCATGGTCGCGTTGGGTTTCATCTACGCGGCGGGGCTGATGCTGGTAGGGTTGGAGCTGGGCCTGTTGATCGGCCTGATCGCCGGGTTGGCGGCCATCGTGCCCTACATGGGGTTTGTCATCGGGATTGGCGCGGCGTTGATTGCCGGGCTGTTCCAGTTTGGCGGCGACCTGTATCCCATGGTCGGCATCGTCGCGGTATTCATGGTCGGGCAGGCGCTGGAGGGCATGGTGCTGACGCCGTTGCTGGTGGGAGATCGTATCGGCTTGCACCCGGTGGCGGTGATCTTCGCGATCCTGGCGGGTGGCGAGTTGTTCGGCTTCACCGGGATCCTGCTGGCGCTGCCGGTGGCGGCGGTGATCATGGTGCTGGTGCGTCATATGCACGATCTGTACAAGGATTCCGACATATATAGCGGCGCAGAGGACCCCGACCTCTAGMGDTRRWFWLGGVALLIAFIYLLHPILTPFLVALLLAYLFDPVVDRLEKLGLSRTWGVVAVFALFTLIVSALLLVLIPMLAKQLVRLYELAPQMLDWLQHTAVPWVQSKLGLSDGFWKFDKVKAAISEHMGQTTDIVGVVLSQATASSLALIGWLANLVLIPVVAFYLLRDWDLMMAKIRSLLPRHREERIMTLTGECHEVLGAFVRGQLLVMVALGFIYAAGLMLVGLELGLLIGLIAGLAAIVPYMGFVIGIGAALIAGLFQFGGDLYPMVGIVAVFMVGQALEGMVLTPLLVGDRIGLHPVAVIFAILAGGELFGFTGILLALPVAAVIMVLVRHMHDLYKDSDIYSGAEDPDLNANANANANA
D1-35_00411705hdaCOG0593DnaA regulatory inactivator HdaATGAAACCGATTCAGCTGCCCCTTGGTGTGCGTCTGCGTGACGACGCCACCTTCATCAATTACTACCCAGGCGCCAATGCCGCTGCACTCGGCTATGTCGAGCGGCTTTGCGAAGCCGACGCCGGCTGGACCGAGAGCCTGATCTATCTGTGGGGCAAGGACGGGGTAGGGCGCACGCATCTGTTACAGGCGGCGTGCTTGCGCTTCGAGCAGTTGGGTGAGCCTGCCGTGTACCTGCCACTGGCCGAGCTGCTGGATCGCGGCGTGGAAATCCTCGACAACCTGGAGCAGTACGAACTGGTCTGCCTGGATGATCTCCAGGCAGTGGCCGGCAAGGCCGATTGGGAAGAGGCGTTGTTCCATTTGTTCAACCGGTTGCGCGACAGTGGCCGGCGCCTGTTGATTGCCGCATCGACCTCGCCACGGGAGCTGCCGGTGAAGCTGGCCGACTTGAAATCCCGCCTGACCCTGGCGTTGATCTTCCAGATGCGCCCGCTTTCCGACGAGGACAAGCTTCGCGCGTTGCAATTGCGTGCATCTCGACGCGGCCTGCACCTGACCGACGAGGTCGGGCATTTCATCCTCACCCGTGGCACCCGCAGCATGAGCGCGCTGTTCGAACTGCTCGAACGTCTCGACCAGGCCTCACTCCAGGCCCAGCGCAAGCTGACCATTCCTTTTTTGAAAGAAACTTTAGGCTGGTAAMKPIQLPLGVRLRDDATFINYYPGANAAALGYVERLCEADAGWTESLIYLWGKDGVGRTHLLQAACLRFEQLGEPAVYLPLAELLDRGVEILDNLEQYELVCLDDLQAVAGKADWEEALFHLFNRLRDSGRRLLIAASTSPRELPVKLADLKSRLTLALIFQMRPLSDEDKLRALQLRASRRGLHLTDEVGHFILTRGTRSMSALFELLERLDQASLQAQRKLTIPFLKETLGWNANANANANA
D1-35_00412627mepSCOG0791Murein DD-endopeptidase MepS/Murein LD-carboxypeptidaseATGCTAAATCGCTTCGCACCCCTCGTGCCTCTCGCACTCGTTACCCTGTTGTTCGGTTGCGCTGCCCACTCCCCAGTGACCCAGCAAGCGCCCCAACCACAGGTGAATAACACCGTTACCGCCCAGTCTTCCGCCGTTGCGTTCCAGGAAGAAATGGCCTCCGACAAAGAGCTGGCAGACTTCGCCGGCAGCAAGCCTTATCAGCTTCCAGTGCTGGCGGACAGCATCCTGGAGCGCGGCATGTCGTTGATCGGCACACGTTATCGTTTTGGCGGGACCTCCGAAGCCGGCTTCGACTGCAGCGGCTTCATCGGCTACCTGTTTCGCGAAGAAGCGGGCATGACCCTGCCGCGTTCCACGCGTGAAATGATCAACGTGAAGGCCCCGCTGGTCGCTCGCAACCAGCTCGAACCCGGTGACCTGCTGTTCTTCAGCACCAACGGTCGTCGCGGTCGCGTCAGCCACGCCGGTATCTACCTGGGCGACAACCAGTTCATCCACTCCAGCAGCCGCCGCAGCGGTGGGGTGCGAATCGACAGCCTGGGCGACAGCTACTGGAGCAAGACCTTCATCGAAGCCAAGCGTGCCCTCGCCATGGCACCGACTGTAGTGACGGCTCGCAAGTAAMLNRFAPLVPLALVTLLFGCAAHSPVTQQAPQPQVNNTVTAQSSAVAFQEEMASDKELADFAGSKPYQLPVLADSILERGMSLIGTRYRFGGTSEAGFDCSGFIGYLFREEAGMTLPRSTREMINVKAPLVARNQLEPGDLLFFSTNGRRGRVSHAGIYLGDNQFIHSSSRRSGGVRIDSLGDSYWSKTFIEAKRALAMAPTVVTARKPGPT0023820_142DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-MUREIN_DD-ENDOPEPTIDASE_ACTIVITY,PGPT0023820-mepS|spr-K13694NANA
D1-35_00413534hypothetical proteinATGTCGACGTCGGCCCGCCTCGCTCTCATGTTTCTTGCCGCACTGCTCAGCGCGTGCGCCAGTCGCACCCCGCCGCCCGCGCCAGTGCGGGCTCCGGTGGTGTTCGCACCTTCCCAGACTTTTTCTCCCGCCGCCGAAGACGTGCTGTTCCGGGCGTTGGGCCTGGTGGGCACGCCTTATCGCTGGGGCGGCAACACGCCGGATTCAGGTTTCGATTGCAGTGGCTTGATCGGCTATGTGTACCGTGACGCCGCCGGTATCTCGCTGCCACGCTCCACGCGCGAAATGATCAGCATGCGCGCGCCGGAAGTCGGCAAGGATGCGTTGCAGAGCGGCGATCTGGTGTTCTTCGCCACCAATGGCGGCTCCCAGGTCAGCCATGCCGGAATCTATGTCGGGGAGGGGCGTTTCGTCCATGCGCCGGCCACGGGCGGGACGGTCAAGCTCGACAGTCTGTCCAAGGCCTATTGGCAGAAAGCCTACCTGGGCGCCAAGCGAGTGCTACAGCCGGAGCACCTGGCGCGTAATCCCTGAMSTSARLALMFLAALLSACASRTPPPAPVRAPVVFAPSQTFSPAAEDVLFRALGLVGTPYRWGGNTPDSGFDCSGLIGYVYRDAAGISLPRSTREMISMRAPEVGKDALQSGDLVFFATNGGSQVSHAGIYVGEGRFVHAPATGGTVKLDSLSKAYWQKAYLGAKRVLQPEHLARNPPGPT0023830_271DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-MUREIN_DD-ENDOPEPTIDASE_ACTIVITY,PGPT0023830-mepH-K19303NANA
D1-35_004141311hypothetical proteinATGCTCAAGCCACCTCATCTGTTAATCATTGCCCTGGCTACGGGGCTTGTCGCGTGTGGCGAGTCTTCCACATTGCAGGTTTCCGACGGCACCGGCCCGTCGCCGAAACTGCCCGAACCGAACAAGACCCTGATTCCCACGGTGAATATCGCCGAAGCGGTCGGCTGGCCGGACGGCGCCAAGCCAACCCCGGCCCAAGGCCTGCAGGTAGTCGCGTTTGCCGAAGGGCTGGATCATCCGCGCTGGCTTTACGTACTGCCCAATGGCGATGTACTGGTGGCCGAAACCAACGCCCCGCCCAAGCCCGACGATACCCAGGGCATTCGTGGCTGGGTCATGAAAAAAGTCATGGGCCGGGCCGGCGCCGGCGTGCCCAGCCCCAACCGCATCACCCTGCTGCGAGACGCCAATCACGATGGCGTCGCCGAGACCCGGACGATTTTCCTGGAGAACCTCAATTCGCCGTTCGGCATGACCCTCGTCGGCAATGACCTGTACGTGGCCGACACCGACCGGTTGATCCGCTTCCCGTACAAGGAAGGCGACACACAGATCAAGGCACAGCCAACCAAGGTGGTCGACTTGCCGGGTGGCACTTTGAACCACCACTGGACCAAAAACGTCATCGCCAGCCGGGACGGCAGCAAGCTGTACGTGACCACCGGTTCGAACAGCAACGTTGGCGAGAACGGCATGGAAGCGGAAGAAGGCCGGGCGGCGATCTGGGAAGTCGACCGGGCCACAGGCACCCATCGCATCTTCGCCGCGGGCCTGCGCAATCCCAATGGCCTGGCGTGGGAGCCACGCAGCGGTGCGTTGTGGACGGCGGTCAACGAACGGGACGAGATCGGCAGCGACCTGGTGCCGGACTACATCACGTCGGTCAAGGACGGCGGCTTCTATGGCTGGCCTTACAGTTATTACGGGCAAAACATCGATGTCCGGGTCGAGCCGCAAAACCCCGAGCTGGTGGCCAAGGCCATCGCCCCCGACTATGCGGTGGGCCCGCACACCGCCTCCCTGGGCCTGAGCTTCGCCGAGGGCAGCCAATTGCCCGCGCCGTTCACCGAAGGGGCTTTCATCGGGCAACACGGTTCCTGGAACCGCAAGCCCCACAGTGGCTACAAAGTGATTTTTGTTCCGTTCAGCGGCGGCAAACCGGTCGGGCAACCAGTGGAGGTGTTGACCGGTTTCCTCAATGCAGACGAAAAAGCCCAGGGCCGGCCGGTGGGCGTGGTGATCGACAAGCAGGGCGGGTTGTTGGTGGCGGATGATGTCGGGAACAAGATCTGGCGGGTGTCAGGTAAATAGMLKPPHLLIIALATGLVACGESSTLQVSDGTGPSPKLPEPNKTLIPTVNIAEAVGWPDGAKPTPAQGLQVVAFAEGLDHPRWLYVLPNGDVLVAETNAPPKPDDTQGIRGWVMKKVMGRAGAGVPSPNRITLLRDANHDGVAETRTIFLENLNSPFGMTLVGNDLYVADTDRLIRFPYKEGDTQIKAQPTKVVDLPGGTLNHHWTKNVIASRDGSKLYVTTGSNSNVGENGMEAEEGRAAIWEVDRATGTHRIFAAGLRNPNGLAWEPRSGALWTAVNERDEIGSDLVPDYITSVKDGGFYGWPYSYYGQNIDVRVEPQNPELVAKAIAPDYAVGPHTASLGLSFAEGSQLPAPFTEGAFIGQHGSWNRKPHSGYKVIFVPFSGGKPVGQPVEVLTGFLNADEKAQGRPVGVVIDKQGGLLVADDVGNKIWRVSGKNANANANANA
D1-35_00415585hypothetical proteinATGCAAGGCATGATCATCAGCAATCCGAAGCTGGAGTTTCTACGCCCGGTGCTGGAACGCTGGTTCGACTGTATCGATCGCTACAACGCCGTGCGCGGCGATAACGACACCCCCTACTGGCATGATCAAAAAGCCAACCTCGGGTTGCTGTCTGCCGCTGCCTGGATGGCTGAGATGGTCACGCTGCAGAACGCAGCGACGCGCAAGCAGAACGAAGAAGGCGAACGCAACGTCAGCGCCGACCTGTTCATTGCCAGCGCCGATGAGCGCGCCTTTATCCAGGCCACCCAGCGCTGGCCGAAGGTCAACAACCTGAACCTGACCCAACCCTTGCTCGAAGCCGCCAGCGACGCCAAGCGCATCAGCTACGCCAGCGACCTGAAACTGGGCTGCCTGTTCGTTGCCCCGCAAAAAGCCCAGCAAAGCGCCACGCCAGAAGAGTTGCAGGACATGATCGACGACCTGCAGAAGGAGAACACCTGCGCCGTGGCCTGGTACTTCCCCTACGCCTATCGCAAATTGCGCAACGAGGCGGGCCAGTACCATCCGGGTATTGCGCTGCTGCTGAAACAGGCGCACGGCTGAMQGMIISNPKLEFLRPVLERWFDCIDRYNAVRGDNDTPYWHDQKANLGLLSAAAWMAEMVTLQNAATRKQNEEGERNVSADLFIASADERAFIQATQRWPKVNNLNLTQPLLEAASDAKRISYASDLKLGCLFVAPQKAQQSATPEELQDMIDDLQKENTCAVAWYFPYAYRKLRNEAGQYHPGIALLLKQAHGNANANANANA
D1-35_00417612cobO_1Corrinoid adenosyltransferaseATGACCGATACGCCCGATCGCGACGAACGCCACCTGGCGCGCATGCTGCGCAAGAAAGCCGTGATTGACGAGCGCATCGCCAATTCACCGAACGAGTGTGGCCTGCTGCTGGTGCTGACCGGCAACGGCAAGGGCAAGAGCAGTTCGGCGTTCGGCATGCTCGCCCGTGCCATGGGCCACGGCATGCAGTGCGGCGTGGTGCAGTTCATCAAGGGGCGCAACAGCACCGGCGAGGAGCTGTTTTTCCGACGCTTCCCGGAGCAGGTGCGCTTTCACGTCATGGGCGAAGGCTTCACCTGGGAAACCCAGGATCGTCAGCGCGACATCGCCGCCGCCGAAGCGGCCTGGGCGGTATCGCGGCAACTGCTCGGCGATCCATCGATTGGCCTGGTGGTGCTTGATGAGCTGAACATCGCTCTCAAGCATGGTTATCTCGATCTCGATCAGGTGTTGAGCGATCTGCAGGCCCGTCCGCCGATGCAACACGTGGTGGTCACCGGCCGGGGTGCCAAGCCGGAAATGATCGAGCTGGCCGATACCGTGACCGAAATGGGCATGATCAAGCATGCCTTCCAGGCCGGCATCAAGGCGCAGAAAGGCGTCGAACTGTGAMTDTPDRDERHLARMLRKKAVIDERIANSPNECGLLLVLTGNGKGKSSSAFGMLARAMGHGMQCGVVQFIKGRNSTGEELFFRRFPEQVRFHVMGEGFTWETQDRQRDIAAAEAAWAVSRQLLGDPSIGLVVLDELNIALKHGYLDLDQVLSDLQARPPMQHVVVTGRGAKPEMIELADTVTEMGMIKHAFQAGIKAQKGVELPGPT0004645_532DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004645-cobA|btuR-K19221NANA
D1-35_004181380cbiACOG1797Cobyrinate a,c-diamide synthaseATGACCAGCCGCCACTGTCCGGCGGTGTTGATTGCCGCGCCGGCTTCCGGCCAGGGCAAGACCACCGTCACTGCGGCGCTGGCACGGTTGCATCGCAACCAGGGGCGCAAGGTGCGTGTGTTCAAATGCGGACCTGATTTCCTTGATCCGATGATCCTTGAGCGCGCCAGTGGCGCACCGGTCTATCAACTGGATATGTGGATGGTCGGCGAGCAGGAAAGTCGCCGACTGTTGTGGGAAGCCGCCGCCGAAGCGGACCTGATCCTGATCGAAGGCGTGATGGGGCTGTTCGACGGCACCCCGTCCAGCGCTGACCTGGCGCGCCACTTCGGCGTGCCGGTGCTGGCCGTGATCGACGGCACGGCGATGGCCCAGACCTTCGGTGCCCTGGCCCTGGGCCTGGCCCGTTATCAGCCGGACTTGCCGTTCGCTGGCGTACTGGCCAACCGGGTCGGCACCCTGCGCCACGCGCAATTGCTCGAAGGCAGCCTGACCGAAGGCCTGCGCTGGTACGGCGCGCTCTCGCGAGAAACCGGCATCGAGCTGCCGAGCCGCCACCTGGGGCTGGTCCAGGCCAGCGAACTGAATGACCTGGACGTTCGCCTCGACGCAGCGGCCGAAGCATTGGCCGGCAGTTGTGAAGTGTCGCTGCCGCCCCAGGTCGAGTTCGCCGCGCCCGAACTGACAACCGTCGAGCCGTGGCTCGACGGTGTGCGCATCGCCGTCGCCCGCGACGAAGCGTTTGCCTTCACCTATGGCGCGAGCCTCGACCTGCTGCGGGCCATGGGCGCGCAACTGGCCTTCTTTTCCCCTATTCATGACACCGAACTGCCCGAGGCGGACAGCCTGTATCTGCCTGGCGGTTACCCGGAGCTGCACCACGTTGCACTGGCGCGGAACGTGCCGATGCTGACGGCGATCCGTGCCCACCACGCAGCCGGCAAACCGCTGCTCGCCGAATGCGGTGGCATGCTCTACCTGCTCGATTCATTGACCGACGTCGAGGGCAATCGCGCCGAGCTGCTCGGCCTGTTGAGCGGTGAAGCGCAGATGCAAAAGCGCCTTGCGGCCTTGGCGTTGCAATCAGTCGAGCTGCCGGAAGGCACGCTGCGCGGGCATACCTATCATCACTCCTTGACCAGCACTGAACTCGAGCCGATCGCCCGTGGGCACAGCCCGAACGGTGGGCGAGGGGCTGAGGCGGTTTTCCGCCTGGGGCGGATGACGGCTTCCTATGTGCATTTTTACTTTCCGTCCAATCCCGGGGCGATTGCGGCGTTGCTTGCGCCCGCCCCGGCGGCGGTCTTCGCGAGCTGGCTCGCTCCCACATTTGATCACCTGAACCCTGTGGGAGCGAGCCTGCTCGCGAAGCCGTCATGAMTSRHCPAVLIAAPASGQGKTTVTAALARLHRNQGRKVRVFKCGPDFLDPMILERASGAPVYQLDMWMVGEQESRRLLWEAAAEADLILIEGVMGLFDGTPSSADLARHFGVPVLAVIDGTAMAQTFGALALGLARYQPDLPFAGVLANRVGTLRHAQLLEGSLTEGLRWYGALSRETGIELPSRHLGLVQASELNDLDVRLDAAAEALAGSCEVSLPPQVEFAAPELTTVEPWLDGVRIAVARDEAFAFTYGASLDLLRAMGAQLAFFSPIHDTELPEADSLYLPGGYPELHHVALARNVPMLTAIRAHHAAGKPLLAECGGMLYLLDSLTDVEGNRAELLGLLSGEAQMQKRLAALALQSVELPEGTLRGHTYHHSLTSTELEPIARGHSPNGGRGAEAVFRLGRMTASYVHFYFPSNPGAIAALLAPAPAAVFASWLAPTFDHLNPVGASLLAKPSPGPT0004605_914DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004605-cbiA-K02224NANA
D1-35_00419651bluBCOG07785,6-dimethylbenzimidazole synthaseATGACTGACAACGCTTTCTCTTCAGCCGAACGCGAAGCCGTCTACCGCGCCATCGCCGAACGCCGCGACATGCGCCATTTCAGCGGCGGCACCGTCGAGCCGGCGTTGCTGCGCCGTCTGCTGGAAGCCGCGCACCAGGCGCCCAGCGTCGGGCTGATGCAACCGTGGCGCTTCATCCGTATCAGCGACCGCGCCTTGCGTGGGCAGATCCAGCGACTGGTGGAAGAGGAACGCATCCGTACCGCCGAAGCCCTGGGCGAGCGCAGCGATGAATTCATGCAGCTCAAGGTCGAAGGTATCAATGACTGCGCCGAGGTACTGGTGGCGGCGTTGATGGACGACCGCGAGCGGCACATATTCGGTCGCCGGACCTTGCCGGAAATGGACCTGGCCTCGCTGTCCTGCGCCATCCAGAACCTGTGGCTGGCGGCCCGCGTCGAAGGGCTGGGGATGGGTTGGGTGTCGCTGTTCGAGCCCCAGGCCCTGGCTGACCTGCTGGGCCTGCCCGCCGGGGCCAAGCCGTTGGCGGTCCTGTGCCTGGGGCCGGTCGAAGGCTTCTACCCAGCGCCGATGCTGGCCCTGGAAGGCTGGGCGCAACCGCGTCCGCTCACTGAACTGCTTTACGAAAACCACTGGGGAGTGCGCCCATGAMTDNAFSSAEREAVYRAIAERRDMRHFSGGTVEPALLRRLLEAAHQAPSVGLMQPWRFIRISDRALRGQIQRLVEEERIRTAEALGERSDEFMQLKVEGINDCAEVLVAALMDDRERHIFGRRTLPEMDLASLSCAIQNLWLAARVEGLGMGWVSLFEPQALADLLGLPAGAKPLAVLCLGPVEGFYPAPMLALEGWAQPRPLTELLYENHWGVRPPGPT0006810_663DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0006810-bluB|drgA-K04719NANA
D1-35_00420909cobDCOG1270Cobalamin biosynthesis protein CobDATGAGCGTAGCGTTGCTCAGTGCCGCCGCGGTGGCGCTGGATGCGCTGCTGGGTGAGCCCCGGCGTTGGCATCCGCTGGTGGCGTTCGGCGGCTTTGCCGATCGCATCGAACAACGTTTCAACTCCGGCGGGCGTGGCTGGCGCAGCCATGGAGTGACGGCGTGGGTGATCGCCGTGGTGCCGCTGACCTTGCTCGCCACGGCCCTGTCCTGGGCACCGATGATTGGCTGGCTGGTGGAGATTCTGGCGCTGTATTGCGCCCTCGGCCTGCGCAGTCTTGGCGAGCATGTCGAGCCGGTGGCCCGGGCGCTGCGCAGCGGTGAGCTGGACGAGGCGCGCCGACGCGTCGGTTACCTGGTCAGCCGCGAAACCGCCGAGCTGGATGAAGCCGCCGTTGCCCGCGCCGCCACCGAGTCGGTCCTGGAAAACGGCAGCGACGCGGTGTTCGCCGCGCTGTTCTGGTTCGCCGTGGCCGGTGCGCCCGGCGTGGTGTTGTACCGGTTGAGCAATACCCTCGACGCTATGTGGGGCTATCGCAACGAGCGCTTCGAGCGTTTCGGCTGGGCGGCGGCGAAAATCGACGACCTGCTCAACTACATCCCCGCACGCCTGGTGGCGTTGACCTACGCTGCGCTCGGCAAGACCCGCCTGGCACTCAAATGCTGGCGCAGCCAGGGCCCGACCTGGGACAGCCCGAATGCCGGGCCGGTGATGGCCGCCGGTGCCGGCGCGCTGGGTGTGGAACTGGGGGGCGCGGCGGTGTATCACGGCGAACTGCATCAACGCCCGCCATTGGGCGAGGGCGTGCCGGCGAGTGCCGATTCGATTGACCGAGGCTGGCAATTGGTGCAACGCGGCGTATGGTTATGGCTGCTGATTCTCTGCCTCGGAGCCGAGTTTTATGCTTGAMSVALLSAAAVALDALLGEPRRWHPLVAFGGFADRIEQRFNSGGRGWRSHGVTAWVIAVVPLTLLATALSWAPMIGWLVEILALYCALGLRSLGEHVEPVARALRSGELDEARRRVGYLVSRETAELDEAAVARAATESVLENGSDAVFAALFWFAVAGAPGVVLYRLSNTLDAMWGYRNERFERFGWAAAKIDDLLNYIPARLVALTYAALGKTRLALKCWRSQGPTWDSPNAGPVMAAGAGALGVELGGAAVYHGELHQRPPLGEGVPASADSIDRGWQLVQRGVWLWLLILCLGAEFYAPGPT0004660_2831DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004660-cbiB|cobD-K02227NANA
D1-35_00421993hisC_1Histidinol-phosphate aminotransferaseATGCTTGAGCATGGTGGACGACTGCACAACGCCGCCCGGCAATACGGGATTGCCGAGGCCGACTGGCTTGACCTGTCCAGTGGCCTCGCGCCCTGGCCGTTCGAGATCCCGGCGATTCCATTGCGCGCCTGGGCGCGCCTGCCCGAGACCGACGATGGTCTGGAACAGGCCGCTTGCGACTATTACGAAGCGACGCATGTGTTGCCGGTGGCCGGTTCGCAAATGGCCATCCAACTGCTGCCGCGCCTGCGCCGAGCGGGCAAGGTCGGGGTCTTGTCGCCTTGTTACGCCGAGCACGCCGAAGCCTGGCGCCGCAGCGGGTACATCGTGCGCGAAGTGCTGGAAGCGGAAGTGGATTTCTTCCTCGACAGCCTCGACGTGCTGGTGGTGGTCAACCCGAACAATCCCACCGGCCTGAGCCTGGATCCCGAACGCCTGCTGGATTGGCATGCGCGGCTGGCCCAGCGGGGTGGCTGGCTGGTGGTGGACGAAGCGTTCATGGATATCACGCCGCACCTGAGCCTTGCCGCCTACGCCCATCAGGTCGGATTGATCGTGCTGCGCTCGTTCGGCAAGTTTTTCGGCCTGGCCGGGGTTCGCCTCGGCTTCGTCCTGGCCGAGCGACGCTTGCTCAGGCTGCTCGCCGAACAGGTCGGGCCGTGGGCCGTCAGCGGGCCGACGCGGATATTGGGCCAGGCGTGCCTGTTGGATACCGAGGCCCACGCCCGCCAGCGCCAGCGTTGCGAAGAAACCAGCGAGCGCCTGGCGCTGCTGCTCGAGCATTACGGTTTCAGGCCTGATGGCGGTTGCGGGTTGTTCCAGTGGCTGGTTACCGAGCACGCCCGGGCCCTTTATGAATTCATGGCCCAGCGCGGCATTCTCCTGCGGCTGTTCATCAACACCAGCAGTCTGCGCTTCGGGCTGCCGGCCAATGACGCAGAATTCCTGCGTCTCGAACAGGCTTTCGAGGCCTACGCCAAGGACATTCAATGAMLEHGGRLHNAARQYGIAEADWLDLSSGLAPWPFEIPAIPLRAWARLPETDDGLEQAACDYYEATHVLPVAGSQMAIQLLPRLRRAGKVGVLSPCYAEHAEAWRRSGYIVREVLEAEVDFFLDSLDVLVVVNPNNPTGLSLDPERLLDWHARLAQRGGWLVVDEAFMDITPHLSLAAYAHQVGLIVLRSFGKFFGLAGVRLGFVLAERRLLRLLAEQVGPWAVSGPTRILGQACLLDTEAHARQRQRCEETSERLALLLEHYGFRPDGGCGLFQWLVTEHARALYEFMAQRGILLRLFINTSSLRFGLPANDAEFLRLEQAFEAYAKDIQPGPT0004655_572DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004655-cobC1|cobC-K02225NANA
D1-35_004221452cobQCobyric acid synthaseATGACCACCTTGATGGTGCAGGGCACCACCTCCGATGCCGGCAAAAGCACGCTGGTCACGGCGCTGTGCCGCTGGGTCAGGCGCCAGGGCGTGAGCGTGGTGCCATTCAAGCCGCAAAACATGGCGCTCAATAGCGCGGTGACCGCCGATGGCGGCGAAATCGGCCGGGCCCAGGCGGTCCAGGCCCAGGCTTGTGGCCTCGAACCGCATACCGACATGAACCCGGTGCTGCTCAAGCCCAACAGCGACACCGGTGCCCAAGTCATCATCCATGGCCGCGCCGTGACCAGCATGAACGCCGTGGCGTATCACGATTACAAAGCCATCGCGATGCAAGCGGTGCTGGCTTCCCATGAGCGTTTGCGCGCGGCGTATCCGGTGGTCATGGTCGAGGGCGCGGGGTCGCCGGCGGAGATCAACCTGCGTGCCGGCGACATCGCCAACATGGGTTTTGCCGAGGCCGTCGATTGCCCGGTGCTGCTGATCGCCGACATCAATCGCGGCGGCGTATTCGCCCACCTGGTCGGCACCCTTGAGTTGCTTTCGCCCAGCGAACAGGCGCGGGTAAAAGGTTTCATCATCAACCGTTTTCGTGGCGACCTGGCGTTGCTGCAACCTGGCCTGGATTGGCTCGAAGCGCGCACCGGCAAACCGGTGATTGGCGTATTGCCCTATGTGCTGGACCTGCATCTGGAAGCCGAGGACGGTCTCGATCGGCGTCAGGCCGACAAGGCCGAACAGGTACTCAAGGTTGTGGTGCCGGTGCTGCCGCGCATCAGCAACCATACCGATTTCGATCCGCTGCGCCTGCACTCGCAGGTCGACCTGCAGTTCATCGGCCCCGGCCAGACCATCCCGCCGGCCGACCTGATCATCCTGCCCGGTTCGAAAAGCGTGCGCAGCGACCTGGCCTACCTGCGCGCCAACGGCTGGGAGACAGCAATCAATCGGCACCTGCGCTACGGCGGCAAGTTGCTGGGCATCTGCGGTGGTTTGCAGATGCTTGGCCGCCAGGTCCACGATCCGCTCGGGCTGGAAGGCGCGGCCGGTTCGAGTGCCGGGCTGGGCCTGCTGGACTTCGAGACGACGCTGGAGCATGAGAAGCAGTTGCGCAACGTACGCGGGCGGTTGGCCCTGGAGGATGCCGAGGTCAGCGGCTACGAGATTCATGCGGGTGTGACCACTGGCCCGGCCCTGGAAAACCCTGCGGTGACGTTGGACGGCGGCCGTTGCGACGGCGCCCGAAGCCTCGACGGACAGATTTTCGGCACCTATCTGCATGGGCTGTTTGAAACGCCAGCGGCGAGCAGCGCGTTGCTGCGCTGGGCGGGCGTGCAGGACGTCCAGGCGGTGGATTACCACGGGTTGCGCGAGCGGGATATCGAGCGGTTGGCGGACCTGGTGGAGCGGCATCTGGATACCGGGGTGTTGCGTGAACTCTGTGGGATTTGAMTTLMVQGTTSDAGKSTLVTALCRWVRRQGVSVVPFKPQNMALNSAVTADGGEIGRAQAVQAQACGLEPHTDMNPVLLKPNSDTGAQVIIHGRAVTSMNAVAYHDYKAIAMQAVLASHERLRAAYPVVMVEGAGSPAEINLRAGDIANMGFAEAVDCPVLLIADINRGGVFAHLVGTLELLSPSEQARVKGFIINRFRGDLALLQPGLDWLEARTGKPVIGVLPYVLDLHLEAEDGLDRRQADKAEQVLKVVVPVLPRISNHTDFDPLRLHSQVDLQFIGPGQTIPPADLIILPGSKSVRSDLAYLRANGWETAINRHLRYGGKLLGICGGLQMLGRQVHDPLGLEGAAGSSAGLGLLDFETTLEHEKQLRNVRGRLALEDAEVSGYEIHAGVTTGPALENPAVTLDGGRCDGARSLDGQIFGTYLHGLFETPAASSALLRWAGVQDVQAVDYHGLRERDIERLADLVERHLDTGVLRELCGIPGPT0004580_2390DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004580-cobQ|cbiP-K02232NANA
D1-35_00423522cobPBifunctional adenosylcobalamin biosynthesis protein CobPATGCTGCAACTGATCCTCGGCGGCGCCCGCTCCGGCAAGAGTCGCCTGGCTGAAAAACTCGCGGCAGGCACCGGCTTGCCGGTGACCTACATCGCCACCAGCCAACCCCTGGACGGCGAGATGAACCAGCGTGTCGCTCAGCATCGCGCCCGGCGCCCGGCCGATTGGGCGTTGGTGGAGGAACCGCTGGCGCTGGCGCAGGTGTTGCGCGAAACCGCCGCGAGCGAGCGCTGCCTGCTGGTGGATTGCCTGACCCTTTGGCTGACCAACCTGTTGGTGCTCGACGATGCCGACCGACTGGCTGCCGAGCGCGAAGCCCTGCTGGACTGCATCGGCGCGCTGCCCGGTGAAATCATTTTTGTCAGCAACGAGACCGGCCTGGGTGTCGTGCCGCTGGGCGAGCTGACTCGCCGTTACGTCGATGAAGCCGGCTGGCTGCATCAAGCCCTGGCCGAACGTTGCCAGCGCGTTGTGCTGACCGTTGCCGGCCTGCCCCTGACTCTCAAAGGTATTGCGTTATGAMLQLILGGARSGKSRLAEKLAAGTGLPVTYIATSQPLDGEMNQRVAQHRARRPADWALVEEPLALAQVLRETAASERCLLVDCLTLWLTNLLVLDDADRLAAEREALLDCIGALPGEIIFVSNETGLGVVPLGELTRRYVDEAGWLHQALAERCQRVVLTVAGLPLTLKGIALPGPT0004585_2039DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004585-cobP|cobU-K02231NANA
D1-35_004241056cobTNicotinate-nucleotide--dimethylbenzimidazole phosphoribosyltransferaseATGAATCACCGCTGGTGGCTGGACCCGTGCAAGCCCGTTGATAGCCAAGTGCTGGAGCAAGCGATGGCGCGGCAACAACAACTAACCAAACCGGCCGGCTCCCTCGGGCGCCTGGAGTCGGTGGCGGTGCAACTGGCGGGCCTGCAAGGGCAGGTCAAGCCAAGTCTTGAACAATTGTGGATCGCGATTTTTGCCGGCGATCACGGTGTGGTGGCCGAAGGCGTCTCGGCCTATCCCCAGGAAGTGACCGGACAGATGCTGCTCAACTTTGTCAGCGGCGGCGCGGCCATCAGCGTGCTCGCGCGGCGGTTGGGCGCTTCCCTGGAGGTCGTCGACCTGGGCACCGTGACGCCTTCGCTGGACTTGCCCGGCGTGCGGCATTTGCGGGTCGGCCCGGGCACCGCCAATTTCCTCCTGGGCCCGGCCATGACCCTGGTCCAGGGCGAACAGGCCCTGCAAGCCGGACGCGACAGTGCCATGCGCGCCGCTGCCAGCGGCACGCAACTGTTCATCGGTGGCGAGATGGGCATCGGCAATACCACGGCGGCCAGCGCGCTGGCCTGTGCCTTGCTCGATTGCCCGGTGGCGCATCTGGTCGGGCCGGGCACCGGGCTGGATGCGGCGGGTATCAGCCGCAAGGTCCAGGTCATCGAACGCGCCCTGGCCGTGCACGGTGGGTCGAACGGCGACCCGCTGCAAACGCTGTGCAACCTTGGCGGGTTTGAAATCGCCGCGTTGATCGGCGCCTATCTGGCCTGTGCCCAACAAGGCATCGCCGTGCTGGTGGATGGCTTTATCTGCAGCGTCGCGGCCCTGGTGGCGGTGCGGCTCAATCCGGCGTGCCGGCCCTGGTTGTTGTTCGCCCACCGTGGCGCCGAACCGGGACACCGCCACGTGCTGGAAACCCTCGCTGCCGAACCGCTGCTGGACCTCGGCTTGCGCCTGGGCGAGGGCAGCGGGGCGGCGCTGGCGGTGCCGTTGTTGCGCCTGGCCTGTGACCTCCATGGGCAGATGGCGACCTTCGCCGAAGCGGCCGTGGCGGATCGCCCGGCGTGAMNHRWWLDPCKPVDSQVLEQAMARQQQLTKPAGSLGRLESVAVQLAGLQGQVKPSLEQLWIAIFAGDHGVVAEGVSAYPQEVTGQMLLNFVSGGAAISVLARRLGASLEVVDLGTVTPSLDLPGVRHLRVGPGTANFLLGPAMTLVQGEQALQAGRDSAMRAAASGTQLFIGGEMGIGNTTAASALACALLDCPVAHLVGPGTGLDAAGISRKVQVIERALAVHGGSNGDPLQTLCNLGGFEIAALIGAYLACAQQGIAVLVDGFICSVAALVAVRLNPACRPWLLFAHRGAEPGHRHVLETLAAEPLLDLGLRLGEGSGAALAVPLLRLACDLHGQMATFAEAAVADRPAPGPT0004595_1359DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004595-cobU|cobT-K00768NANA
D1-35_00425576cobCCOG0406Adenosylcobalamin/alpha-ribazole phosphataseGTGACCTTGCGCCTGGACCTGTTGCGCCATGGCGAGACCGAACTGGGCGGCGGGCTGCGCGGCAGTCTCGACGACGCCCTGACGCCACGAGGCTGGGAACAGATGCACGCGGCGGTCGCAGCGGGCGGGCCGTGGGATCGGCTGGTGAGTTCGCCCTTGCAGCGTTGCGCGCGTTTCGCCGAACAGCTGGGTGCGCGACTCGGCGTGCCGGTGGACTTGGACAAGGACCTGCAGGAATTGCATTTCGGCGCCTGGGAAGGCCGTAGCGCGGCGGCATTGATGGAGACTGACGCCGAGGCGCTGGGGCGGTTCTGGGCCGATCCCTACGGCTTCACGCCGCCGGAAGGTGAGCCGGTACTCGAGTTTTCGGCGCGAGTGCTGGCGGCGCTTGAACGCTTGCATCAAGCCTACGCCGGGCAGCGCATCCTGCTGGTCAGCCATGGCGGCGTGATGCGGCTGCTGCTGGCCCGCGCCCGCGGCCTGCCGCGCGAGCAATTGCTCAATGTCGAAGTCGCCCACGGCGCGCTGTTTTCTCTCTTGGTGGCGTCCGGTCCAGTCCTCGAAGAGGCGGTCTGAMTLRLDLLRHGETELGGGLRGSLDDALTPRGWEQMHAAVAAGGPWDRLVSSPLQRCARFAEQLGARLGVPVDLDKDLQELHFGAWEGRSAAALMETDAEALGRFWADPYGFTPPEGEPVLEFSARVLAALERLHQAYAGQRILLVSHGGVMRLLLARARGLPREQLLNVEVAHGALFSLLVASGPVLEEAVPGPT0004650_1397DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004650-cobC|phpB-K02226NANA
D1-35_00426732cobSCOG0368Adenosylcobinamide-GDP ribazoletransferaseATGTTGCCTTTCTGGATCGCCCTGCAGTTTCTCAGCAGCCTGCCGGTGCGCTTGCCGGGCATGCCCGAACCTGCGCAACTGGGTCGTTCGCTGCTGTTCTATCCGCTGGTAGGGGTGATGTTCGGCGGCTTGCTCTGCGGGCTCGATGCCTGGTTGTCAGGCGCACCGTTGCTGCTGCATGCGGCGCTGCTGCTGGCGGCCTGGGTGTTGCTCAGTGGCGGCCTGCACCTCGATGGCCTGGCGGACAGCGCCGATGCCTGGCTCGGTGGTTTCGGTGATCGCGAGCGTACGCTGCTGATCATGAAGGACCCGCGCAGCGGACCGATCGCGGTGGTCACCCTGGTGCTGGTGCTGTTGCTCAAATTCAGCGCGTTGCTGGCGCTGATCGAACAGCAGCAGACCTTGGCGCTGCTCATCGTGCCGGTACTTGGGCGTGGTGCGTTGCTGGCGCTGTTCCTCACCACGCCCTATGTACGTGCCGGTGGCTTGGGCCAGGCGCTCGCCGACCACCTGCCACGCCGCGTCGGTTGGCAGGTGCTGTGCGCCGTTGCGCTGGCCTCCGGGCTGGTGGCGGGCTGGGCCGGCCTGGTGGCGTTGCTGGTCGCGGCGCTGGGCTTTATCGGCTTGCGCCGGATAATGCTGCGCCGCTTGGGCGGGTGCACCGGAGACACGGCGGGGGCCTTGCTGGAACTGCTGGAGATGGCGGTTCTGGTGGCCTGGGCATTGAGCTGAMLPFWIALQFLSSLPVRLPGMPEPAQLGRSLLFYPLVGVMFGGLLCGLDAWLSGAPLLLHAALLLAAWVLLSGGLHLDGLADSADAWLGGFGDRERTLLIMKDPRSGPIAVVTLVLVLLLKFSALLALIEQQQTLALLIVPVLGRGALLALFLTTPYVRAGGLGQALADHLPRRVGWQVLCAVALASGLVAGWAGLVALLVAALGFIGLRRIMLRRLGGCTGDTAGALLELLEMAVLVAWALSPGPT0004590_2582DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004590-cobS|cobV-K02233NANA
D1-35_00427675hypothetical proteinGTGCGTCTATCCAGCGGGGAAGCCGCCGGCGGCAGGGCCTTGCCCCTGCAACTGGACGTGCGCGACGAGACGGCGGTAGGCGCGGCCATGGACAGGGCCGCCGAACACTTCGGCGGTATCGATGCCCTGGTCAACAACGCGGGAGCGATTCGGCTCATGGGCGTCGAGCATCTTGTGCCCAAACGCTTCGACCTGATGTATCAGATCAACACGCGTGCAGTGATGGTCTGCAGCCAGGCGGCCCTGCCCTACCTCAAGCGCAGCAGCGGCGGCCACATCCTCAACCTCTCGCCACCGCTGAGCCTGTCGTCCCGCTGGTTCGCCCAGCACGCACCCTACACCGTCACCAAGTACGGCATGAGCATGCTCACCCTCGGCATGAGCGATGAGTTCGAGAAATACGGCATCAGCGTCAACTCGCTATGGCCGAAGACCATCATCGCCACCGCCGCCATCGAGTTCGAACTCGGCGGACGCCAGGCCTTCAAGCGCGCCCGAACCCCCGCGATCATGGCCGACGCCGCCCATGCCATTCTCTCCAGCAGCAATCGCCACGTCACCGGCCGCCTGCTGATTGATGAAGAGCTGCTGGCGGAACAAGGCCAGACCGAGTTCGGACAGTACCGCTACGACCCGCAAGGCGGCCCGCTGACACCCGACCTGTTTGTCGATTGAMRLSSGEAAGGRALPLQLDVRDETAVGAAMDRAAEHFGGIDALVNNAGAIRLMGVEHLVPKRFDLMYQINTRAVMVCSQAALPYLKRSSGGHILNLSPPLSLSSRWFAQHAPYTVTKYGMSMLTLGMSDEFEKYGISVNSLWPKTIIATAAIEFELGGRQAFKRARTPAIMADAAHAILSSSNRHVTGRLLIDEELLAEQGQTEFGQYRYDPQGGPLTPDLFVDPGPT0019830_515DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TERPENE_UTILIZATIONvCITRONELLOL-CITRONELLAL-CITRONELLATE_DEGRADATION,PGPT0019830-atuH-K13775NANA
D1-35_00428999hypothetical proteinTTGCTATCGAGCCTGGAAGAACTCGACCTGTCCGAAAATCTCCTCACCCACATTCCGGAAGATGTATTCAGCAACGGAGGCAATCACCAGGCATCCACCGAAGTAGTGCTGGCCGGCAACCCGCTCGATCCCGAGCTTTCCCAGCGATTGCTCGACTCGATGGCCGCGGTGCAGCCGGGTATCCCTCGCTTTACCTTCGAACTGGATGACTTGCAGCTTGATCATTTCGCTCAACCGGGACCGGTCCCTACGCCCAGTGTCGACCCATGGCTCGAAGGACTCGATGAACTCGAAGCGGCACGTCGCCGGCAACTATGGCAAGACATCGGGCGGGCAGGCGCTTCGAACCTCATGACCATGATCAATCAACTGCGGCAAACCAACGATTTTTTCCACGCTGCCCGCCGACCTGAACTGATCGGCTCGGTCTGGACGGTCCTTGAACAAGCTGGCAACGACGCGGTGTTGCGGCGCCGATTGAATGATATGGCCGAGGAGGGCGCGCGGATGCGCGCGCAGGGGGAAACCTGTGTGGATGGCTTGCGTGTCGAATTCGCCCGGATCGAAACCGAGGCCATGGTTCATCAGGCGCTGCCGGCCGGCATGCCGGAGGAGCAACGAGGGGCCTGGTTCTACCAGCGGCTACGGGCCAAGTATCGGGCCGATGCGGTCGAGGTCATTGCCAATCGGCAGGCCGGGGGACGTGATGTTGCCGAGGTACGCATGGCTTACCTGATCGGCACGCGCGAGCCCCTCGGCCTTCTTGTCGCGCCTGGAAGCATGGCATTTGCCGGCGCTGCCCGGATCAGGCACGGCGAGCTGTCCAGGGTGGTACAGATTGTTCTGGAGGAGGAGCGCTTGGGAGGCCTGCTCAACTACGGCCAGCTCCAGCCATTCTGGACCCAGTACCTGCGCGAACGTTACGCCGCTCGTTTCGCTCGCCTCGAAACCGAGTATCGGCAACCCGGCAACAACCGGTCGGCGCTGATCTCAACGTAAMLSSLEELDLSENLLTHIPEDVFSNGGNHQASTEVVLAGNPLDPELSQRLLDSMAAVQPGIPRFTFELDDLQLDHFAQPGPVPTPSVDPWLEGLDELEAARRRQLWQDIGRAGASNLMTMINQLRQTNDFFHAARRPELIGSVWTVLEQAGNDAVLRRRLNDMAEEGARMRAQGETCVDGLRVEFARIETEAMVHQALPAGMPEEQRGAWFYQRLRAKYRADAVEVIANRQAGGRDVAEVRMAYLIGTREPLGLLVAPGSMAFAGAARIRHGELSRVVQIVLEEERLGGLLNYGQLQPFWTQYLRERYAARFARLETEYRQPGNNRSALISTNANANANANA
D1-35_00429525hypothetical proteinATGATATTGCCTTCGTCATCGTCAAGGAAAACATCCACCCGCTCCTCACCCGTTAGCGGAGGAGATTCGTACCAGGGCTTGAACTCTAGCCTCAAGGGGTTGCTCGGGTCACTCCAGGCCGTACGGTGCAGCAGGTTCGGCTCCCCCCCGGGAATATCAGGCAGTGGTTTGGGCTGTGTCCAGGGCGCGGTCATCGTGCACGGGAGCTGGTTGAACTGGGCTGATGACATCTTTCATGTTCTCCGTTGCTGGCAATCAGAATCCCCAGTCCCGAGAGCGGGGCATCACACGCTTGATGAACACTCGAATGCCGCAGGGGGCAAACGCCAGGGTCGCCCCCCGACGTTTGGCGCCCGTTCAGCCCGCGCTACCAGAGATAGCGCACGCCGATGTTGGCTCCCCACGGCTGATCGATCTTGTCGCCGTTGCTGTAGTCAAAATCGGCGTGGATTGCGACTTTGTCGGTCAAGGTCATTGCAACACCGACGCCCAACTCGCCACGGGAGCCCGAGAGGTCGTTATTGAMILPSSSSRKTSTRSSPVSGGDSYQGLNSSLKGLLGSLQAVRCSRFGSPPGISGSGLGCVQGAVIVHGSWLNWADDIFHVLRCWQSESPVPRAGHHTLDEHSNAAGGKRQGRPPTFGARSARATRDSARRCWLPTADRSCRRCCSQNRRGLRLCRSRSLQHRRPTRHGSPRGRYNANANANANA
D1-35_004302226hypothetical proteinATGTCCACTGCTCGCTCGTTCAAGCTGCATCCTTTGTCCCGTACTTTGAAACTGCTCTCCTGCGCACCGCTCTGGTTGTTTTCCGACGTTGCCCTGGCAGCGCGGGTGCTCGTTCCCGGGGAAGTCCTGACCATCGACAACAGCACGCCTGCGGACAATTATGTGTTGAATGGTGCCTCGACGCTGAACGTCAACGGCGCCCAGACCCGGGATATCCTGGTCAATGAATCGACCCTGAATCTCACTGGCGCAGCGGTACAGGCCACGGACGAAAGTGGCGTCCACGTTGTGGCGGGCACAGCGAGCATCGCCCAAAGCAATATCTCCTCCAGCGACCGCACCGGATTGGCGCTCTCCAGCGATACGGCCGCGACCAAGGGGGCCAGCGTAACCGTCTCCGATAGCCTCATCAGCGGCGCGATCGCCGGCGCCAGCGTCAATGCCTTGACCACCTTGACGGTGCTGCGCTCGACACTGTCAGGCAGCGGAACCGGAACCGGAAGCAGCGGTGATGGCCTGCGCATCTTCAACGGCAGCGTAACGGCCGTAGACAGCCGCATCAGTGGCAGCAGCGAGGGAATTCTTTTTGCCGGCGATGCCAGGCTGGACGTACCCGGTACATTGGAGTTGAACAATACCCACGTGGAAGGGCTCAACGGCTCGGCGATTCTGGTCGACACATTGGGTGTAGGACCGGTGCAGGCCGATATCGCCGTACTCAACGGCTCTACCCTGACCGCCAGCAACGGTATCCTGATGGATGTGCGCCGTGGCGCCGAGGGCAACCTGCGGGTGGGCAACAGCAACACCAAGCTGGTCGGCGACATCCGTGCCGACGACACCAGCACGGCCAACGTGACCCTGGAGCAGGGCGCGAGCCTGACCGGCCGGCTGATCAACGTCGATGCGCTCGCGGTCAACAGCGGTGCGACCTGGGCGATGGTCGAGGACGGCGTGGTGGATAGCTTGACCCTGGATGGCGGCAACGTTCAGCTGGGTAGCCCTACCGAGTTCTATAAGCTCTCGGTAGGCAATCTGTCCGGGACTGGCAATTTCATCATGGACGTCGATTTCGCCACCGGCCAAGTCGATACGCTCGAAGTCACCGGCACCGCGACCGGCCGCCATACCATTCTCATGGGCAGCAGTGGCCAGGATCCACTCGCGCCAGGCAGTATCCCGGTGGTGCATATCGCAGACGGCGATGCGCAATTTTCTCTGCTCGATGGTGCAGTGGATCTCGGGACCTATTCCTACGACCTGGTCAAGCATGGTGACAATGATTGGTACCTGGACACCACGTCCCGAGTGTTCAGTCCTGGTACGCGCTCGGTGCTGGCGCTGTTCAATACCGCTCCAACCGTATGGTACGGCGAGTTGAGTACATTGCGCAGTCGCATGGGCGAGGTGCGTATGAACCCCGACAAGGCCGGCGGCTGGATGCGCTCCTACGGCAACAAATTCGACGTCAGTGCCAGTTCCGGCCTGGCTTATCAGCAAGTCCAGCAAGGGGTGTCGTTCGGTGCCGATGCGCCCTTGCCGTTCGGCGATGGGCAGTGGCTCGTCGGGCTGTTGGGGGGCTACAGCCAGTCCGACCTGGATTTGAGCCGGGGTACCAGCGGCACGGTCAACAGCTATTACCTGGGTGCCTACACTACTTGGCTGGATCAGCAGAGCGGCTACTACCTGGATGCCGTCATCAAGTTCAACCGTTTCCAGAACAAGTCCGATGTACAACTGAGCGATGGCAAAAAGGCCAAGGGCGACTACAACAACCATGGCGTTGGTGCCTCCCTGGAAGTCGGTCGTCATATCAAACTGGCGGATGATTACTTCATCGAGCCGTTCACCCAGCTTTCCGGCGTCGTTATCCAAGGCAAGGATTACGATCTGAACAACGACCTGGCTGCCGAAGGCAGTCGCACCCGTTCAATCCTGGGCAAGGCGGGCGCTACCGCCGGGCGCACTTTCAGGCTTGCTGAAGGCAAGACGGTGCAACCCTACCTGCGTGCAGCCTATGTCCATGAGTTCGCCAAGAACAACGAAGTCGAGGTCAACAACAACGTCTTCAATAACGACCTCTCGGGCTCCCGTGGCGAGTTGGGCGTCGGTGTTGCAATGACCTTGACCGACAAAGTCGCAATCCACGCCGATTTTGACTACAGCAACGGCGACAAGATCGATCAGCCGTGGGGAGCCAACATCGGCGTGCGCTATCTCTGGTAGMSTARSFKLHPLSRTLKLLSCAPLWLFSDVALAARVLVPGEVLTIDNSTPADNYVLNGASTLNVNGAQTRDILVNESTLNLTGAAVQATDESGVHVVAGTASIAQSNISSSDRTGLALSSDTAATKGASVTVSDSLISGAIAGASVNALTTLTVLRSTLSGSGTGTGSSGDGLRIFNGSVTAVDSRISGSSEGILFAGDARLDVPGTLELNNTHVEGLNGSAILVDTLGVGPVQADIAVLNGSTLTASNGILMDVRRGAEGNLRVGNSNTKLVGDIRADDTSTANVTLEQGASLTGRLINVDALAVNSGATWAMVEDGVVDSLTLDGGNVQLGSPTEFYKLSVGNLSGTGNFIMDVDFATGQVDTLEVTGTATGRHTILMGSSGQDPLAPGSIPVVHIADGDAQFSLLDGAVDLGTYSYDLVKHGDNDWYLDTTSRVFSPGTRSVLALFNTAPTVWYGELSTLRSRMGEVRMNPDKAGGWMRSYGNKFDVSASSGLAYQQVQQGVSFGADAPLPFGDGQWLVGLLGGYSQSDLDLSRGTSGTVNSYYLGAYTTWLDQQSGYYLDAVIKFNRFQNKSDVQLSDGKKAKGDYNNHGVGASLEVGRHIKLADDYFIEPFTQLSGVVIQGKDYDLNNDLAAEGSRTRSILGKAGATAGRTFRLAEGKTVQPYLRAAYVHEFAKNNEVEVNNNVFNNDLSGSRGELGVGVAMTLTDKVAIHADFDYSNGDKIDQPWGANIGVRYLWNANANANANA
D1-35_00431327hypothetical proteinATGATGATGAATGGGAGATTCAATCATGTACCAAGCCAGCACTGCTTCAAGTCGTTCGCCAGCAGGCTCTATCCGACACCGCTGCCTCTCGCCTTCAAGACAGCTACTTTTTCCAACATAACCCAAGAGCAGGCCGAGCAAGGCATCGTTTGGCTCATCGAGCCGTATGGCGTTCATATCCTGCCAATCTGGGACCCAGCCAACCAGATAGGTAAAGGCGAAGTGGCCTATCTCATTGAAGGTAAACCTGCCAAGTCCACTCCAACCAACACCAAGGTAGGGCTAGCGCAGGGGGAAGGCAGCTGCAACGTCCCGGCTAATCCTTGAMMMNGRFNHVPSQHCFKSFASRLYPTPLPLAFKTATFSNITQEQAEQGIVWLIEPYGVHILPIWDPANQIGKGEVAYLIEGKPAKSTPTNTKVGLAQGEGSCNVPANPNANANANANA
D1-35_00432405hypothetical proteinATGCTTGCCTCTCAATGTTTGTGCATCAACCTGCGTCGTGCCGCCCGTGGCGTCAGCAGGTATTACGACGGCGCCCTCGACGGCTTCGGGATCAACGTTGCCCAGTATTCTCTGCTGAACAACCTGGCGCGCCTGGACCAGCCGAGCATTTCTTCCCTGGCCGAGGCCATGGGCCTGGACCGCAGCACGCTGGGGCGCAACTTGCGGGTGCTGGAAGGCGAGGGCCTGGTGAAGCTCGCCGAGGGCGAGGATCTGCGCAACCGTATCGTCGAGCTCACCGAGGCCGGACGTGCCCGACTGGCGGCGGCGCAGCCGGCCTGGGAAACGGCGCAACAGAAACTGATCGACAAGCTGGGCGCGGAAAAGCGTGCGACCCTGTTGGCCTTGCTGGATGAACTGGCGTGAMLASQCLCINLRRAARGVSRYYDGALDGFGINVAQYSLLNNLARLDQPSISSLAEAMGLDRSTLGRNLRVLEGEGLVKLAEGEDLRNRIVELTEAGRARLAAAQPAWETAQQKLIDKLGAEKRATLLALLDELANANANANANA
D1-35_004331209L-lactate transporterATGACATCGATGTGGCGTACCTGTGGTTGGGTCCTGGTGGGCAGTGCGCTGATCCTGGCGTTATCGCTGGGTGTGCGACATGGCTTTGGCCTGTTTTTGGCGCCGATGAGCGCGGATTTCGGCTGGGGCCGCGAGGTGTTTGCCTTCGCGATCGCCTTGCAGAACCTGATCTGGGGCCTGGCGCAGCCGTTTACCGGCGCGCTGGCCGATCGCTTCGGCGCGGCGAAAGTGGTGCTGATCGGTGGCGTTTTATACGCGCTCGGGCTGGTCTTGATGGGCATGGCCGACTCGCCCTGGTCGCTGTCGTTGAGCGCCGGTCTGTTGATCGGCATCGGCCTGTCCGGTACCTCGTTCTCGGTGATCCTCGGCGTGGTCGGGCGGGCCGTGCCAGCGGAAAAACGCAGCATGGGCATGGGCATCGCCAGCGCCGCCGGCTCCTTCGGCCAGTTCGCCATGCTGCCGGGCACGCTGGGCCTGATCGGCTGGCTCGGCTGGTCCGCCGCGCTGCTGGCGCTGGGTCTGTTGGTGGCGTTGATCGTGCCTTTGGTGAGCATGCTCAAGGACGCACCGGCGCCCCTGTCCGGGCATGAGCAGACGCTATCCGAAGCGTTGCGCGAGGCTTGCAGTCATTCGGGGTTCTGGCTGCTGGCCGTGGGCTTTTTTGTCTGTGGTTTCCAGGTGGTGTTCATCGGTGTACACCTGCCGGCCTACCTGGTCGATCAGCACTTGCCGGCCAGTGTCGGCACAACGGTGCTGGCGCTGGTCGGGTTGTTCAATATCTTCGGCACCTACACGGCCGGCTGGCTGGGTGGACGGATGTCCAAGCCGCGGCTGCTGACCGCGTTGTATCTGGCGCGGGCGGTGGTGATCGGCCTGTTCCTTTGGCTGCCGGTGACCACGACCACGGCCTATGTCTTCGGCATGGCGATGGGCTTCCTCTGGCTGTCGACGGTGCCGTTGACCAACGGTACGGTTGCGACCCTGTTTGGTGTGCGAAACCTCTCGATGCTTGGTGGGATGGTGTTCCTGTTTCACCAGTTGGGATCGTTCCTGGGAGGCTGGCTGGGCGGGGTGGTGTACGACCGCACCGGCAGCTATGACCTGATCTGGCAAGTGTCGATCCTGCTCAGCCTGTTGGCGGCGGCATTGAACTGGCCGGTGCGCGAACGCCCGGTGGCGCGCCTGCAAGCGCAGGCCGGTGCCGCATGAMTSMWRTCGWVLVGSALILALSLGVRHGFGLFLAPMSADFGWGREVFAFAIALQNLIWGLAQPFTGALADRFGAAKVVLIGGVLYALGLVLMGMADSPWSLSLSAGLLIGIGLSGTSFSVILGVVGRAVPAEKRSMGMGIASAAGSFGQFAMLPGTLGLIGWLGWSAALLALGLLVALIVPLVSMLKDAPAPLSGHEQTLSEALREACSHSGFWLLAVGFFVCGFQVVFIGVHLPAYLVDQHLPASVGTTVLALVGLFNIFGTYTAGWLGGRMSKPRLLTALYLARAVVIGLFLWLPVTTTTAYVFGMAMGFLWLSTVPLTNGTVATLFGVRNLSMLGGMVFLFHQLGSFLGGWLGGVVYDRTGSYDLIWQVSILLSLLAAALNWPVRERPVARLQAQAGAANANANANANA
D1-35_00434120hypothetical proteinATGAGCCGCGTCGGTCCGTGGTTGGTCGCGGCCGGCGCCGCGCTGTTGCTGGCCTTCGCCTGGTGGGGCTGGCACCAGGGCGGGTTGGCGTTGATGCAATTGGGCATGGGTAACTGCTGAMSRVGPWLVAAGAALLLAFAWWGWHQGGLALMQLGMGNCNANANANANA
D1-35_00435552btuE_1Thioredoxin/glutathione peroxidase BtuEATGCTGATGCGCTGGCTTGCTGTTCCCACCCTGTTGCTGGCTGCGGCCGGGCAAGTTTGGGCGGCTGATTGTCCGCCGCTGCTGGAGGGCTCGCTGCCCAAGCTGCGGGCCAAGGAAACCATCGACCTGTGCCAGCGCTTCGCCGGCAAGCCCCTGGTGGTGGTCAACACCGCCAGCTTCTGTGGTTTTGCACCGCAGTTCAAAGGCCTCGAAGCGCTGAACCAGCACTATAAGGGGCAAGGGCTGGAAGTGCTGGGCGTACCCTCTGACGATTTCAAGCAGGAGTCCAAGGATGGCGCGGAGACGGCCAAGGTCTGCTACGTCAACTACGGCGTGACCTTCACCATGACCGAGCCGCAGCCAGTGCGCGGCGCGGACGCGATCCCCTTGTTCAGGCACCTGGCCGAACAGTCCAGCGCGCCGAAATGGAATTTCTACAAGTACGTTGTAGATCGCCAGGGCAGGGTGGTCGGCAGTTTTTCCAGCCGGATCAAACCCGACGATCCTGACTTCATCAAGGCAGTGGAAACGGCCATCGCTTCGAAACCCTGAMLMRWLAVPTLLLAAAGQVWAADCPPLLEGSLPKLRAKETIDLCQRFAGKPLVVVNTASFCGFAPQFKGLEALNQHYKGQGLEVLGVPSDDFKQESKDGAETAKVCYVNYGVTFTMTEPQPVRGADAIPLFRHLAEQSSAPKWNFYKYVVDRQGRVVGSFSSRIKPDDPDFIKAVETAIASKPPGPT0013115_2114DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013115-bsaA|gpx|btuE-K00432NANA
D1-35_004361275fadLCOG2067Long-chain fatty acid transport proteinATGAAAAAAATGATGCTCAAAACCACCCTTGGCCTTGCCGTTACCTTGGCATCCACCCAACTCTTTGCCAGTGGTTTTGCCCTGAACGAACAAAGCATCAGTGGCATGGGCACTGGCTTCGCGGGTCGTTCTTCTTCTGCCGATGATGCAAGCACCGTGTTTGGCAACCCTGCCGGTATGTCGCGCCTCAAGCGCGAGCAAGTGACCGGCGGCTTCGCCGTGATCGACGCGTCCACCGATATCAACGATGCCAGCGGTACCCGCTCCGGCACCAACGACGGCGACATGGTTCCGTTCACCGGCGTTCCGATGGGCTACTACGTCAAGCCTATCGATGACAAATGGGCATTCGGCCTGGGTGTCTACGCCCCGTTCGGCCTGATCACCGATTATGAAAACAGCTTCCAGGGCCGCAACTTCGGCAGCAAGAGCGAAGTGAAGGTCGTGACCTTCCAGCCAACCATCAGCTACGCCTTCAACGACAAGGTTTCGATTGGTTTCGGCCCGACCATCAACCGTATTTCCGGCTCACTGGAATCGGCACTGACCACACCGTTCTCGCCTAACGACGGCAACGTCAAGATCAAGGGCGATGACATCGGCTACGGCTACAACATCGGCTTGATGGTCCAGGCTACCGACAGCACCCGTGTCGGCCTGACCTACCACTCCAAGGTCAAGTACAAGCTCGAAGGCCACACCGAAGTGAGCCCGGGCGCCGGTACGCCGGGCTTTCTGTTGAGCCGCGCACGTTATGACGCTTCGCTGGACATCACCACGCCTGAATCGGTGGACTTCTCGGTTACCCAGGAAATCAATGACGCCTGGACCGTCTATGCAGGCAGCACCTGGACCCGCTGGAGCCGCCTGAAGGACATCACCGTCGATAACGACCTGACCGGCGGCGGAGCCCTGAACCCAGCCCTCTTCGGCACCATCACCGAAGAACAGAACTGGCACGACACCTGGGCCTACGCCATCGGTACGTCCTACCAGTTGAACAAACAGTGGGTGCTGCGCACCGGCCTGACGTTCGACCAGTCGCCTGCCAACAACGAAGACCGCTCGCCACGCATCCCTACCGGCGACCGGACCATCTTCAGCCTGGGTGCCGGTTGGAGCCCGACCGACGACCTGACCATCGACGTGGCCTATTCCTACCTCAAGGAAGAAAAAGTCAACGTCAACCGCAGCAACGCCTTGGGTCAGGCCTACAACGCTGAATACGAAAACAGCGCCAACGGTTTTGGTGTCGGTGCAACCTACCGCTTCTGAMKKMMLKTTLGLAVTLASTQLFASGFALNEQSISGMGTGFAGRSSSADDASTVFGNPAGMSRLKREQVTGGFAVIDASTDINDASGTRSGTNDGDMVPFTGVPMGYYVKPIDDKWAFGLGVYAPFGLITDYENSFQGRNFGSKSEVKVVTFQPTISYAFNDKVSIGFGPTINRISGSLESALTTPFSPNDGNVKIKGDDIGYGYNIGLMVQATDSTRVGLTYHSKVKYKLEGHTEVSPGAGTPGFLLSRARYDASLDITTPESVDFSVTQEINDAWTVYAGSTWTRWSRLKDITVDNDLTGGGALNPALFGTITEEQNWHDTWAYAIGTSYQLNKQWVLRTGLTFDQSPANNEDRSPRIPTGDRTIFSLGAGWSPTDDLTIDVAYSYLKEEKVNVNRSNALGQAYNAEYENSANGFGVGATYRFNANANANANA
D1-35_00437483hypothetical proteinATGGGTATCGCTGCCAGCGAACTGTGTCGATACGTGATCCGTCCGACGCTCCTCTACCTGGGGAGTCACAGCACGACGGCGGAGACCTTGCTGCTGGGCATTGCCGCCAGCCAGTCCGGCCTCGGCGCGGCGCTGCACGACCGGCGCGGGCACGGCTTGTACCGCATCACCGAACCTCGCCACCAAGCCTTGTGGGACGACTATCTGGCGCTGGACCCGGAGCGGGCCAGCCTGGTACGCGGCCTGGCGAGCCAGCATGCGTTCCTGAGCGGTCCCCATCTGGAACTGACCGTCAACCTGCGCTACGCCACGGCCATCGCCTGGCTGCTGGTGGAGGAGCAGGCCACACCGCTGCCCGAGGCCGGCGACCTGTTGGGCATGGCGCGGATCTGGCGGCAGACTTTTCACCCCCAGGGACGCCTGCGAGATTTCACCTATGCCTGGCAAAACTGTGTTACCCCACTGAATCAGGTCGCTTGCTGAMGIAASELCRYVIRPTLLYLGSHSTTAETLLLGIAASQSGLGAALHDRRGHGLYRITEPRHQALWDDYLALDPERASLVRGLASQHAFLSGPHLELTVNLRYATAIAWLLVEEQATPLPEAGDLLGMARIWRQTFHPQGRLRDFTYAWQNCVTPLNQVACNANANANANA
D1-35_00438225hypothetical proteinATGTCTACTCAAATCCATACCCAGGATGCCATCCGCACCCTGACCAACGCTTTTGCCCCAATGAACTGCCTGATCATGGCCGCTCGCAAAGGCTGCTTCAGCTTCACGCTGGTCAACGAACACGGCATCGCCCGTCACAGCGAACGCCTGTATCCCGACCAGTACTCCAGCGCAGAACCGCTGCAGGCCGTGATCGAGCGTACCCGCCAGGCACTGGTTGCCTGAMSTQIHTQDAIRTLTNAFAPMNCLIMAARKGCFSFTLVNEHGIARHSERLYPDQYSSAEPLQAVIERTRQALVANANANANANA
D1-35_00439252hypothetical proteinATGCGCGTGGCCGAATGGTTACTCGACAGCCCGCGCCTGGGGGACAGCCCCAGCGTCAAGCACCTGGCCGGCCGCCTGCTCAAGCAACCGGCCCGTGAAGGCGTGGTGGCGGCCCAGAGCCGTCTCGGCCAGCTGATGTGCCGCGAATGCGGTAACGCGCGAGACCGGCGTATTGGCCAGGACCTGCTGCGCCAGGCTGCCCGGGCAGGTGATCACCGCGCTCGCCAGGCGTTGGGTGAAATCGAAGACTGAMRVAEWLLDSPRLGDSPSVKHLAGRLLKQPAREGVVAAQSRLGQLMCRECGNARDRRIGQDLLRQAARAGDHRARQALGEIEDNANANANANA
D1-35_004401503smc_1Chromosome partition protein SmcATGGCTATGGATTTGACCAGCCTGTTGCTTGGTCTGGCGGGCGCTGCGCTGCCGTTGCTGGCCCTGGCCTGGCATCTGCAACGACAGGCCAGCGCGGCGCAGACCGAACTCGCCCTGCTGGAAGAACGCCTGGCGACCGCGCACATGGCCCACGACGGGTTGAACGCCCAGCTGGATGCTTGCCGCGACGAAATCAGTGACCTGAGCCAGGCCAATGCCGCCAAACAGGCCGAGCTCGCGGCGGCCAGTCGCGAAGTCGAATTGCTGCAGATCGAGCGCGACAATGCTCGGGACGCGGCCCACGCCTGGAATCTCGAACGGGCCAACAAGGAAGCGGAACTGCGGCGGCTCGATGCCCAGGCGGCTTCGTTGCGCGCCGAGCTGCGCGAGCAGCAGGAAAGCCATCAGCAGCGCCTCAATGACCTGCAAGGTTCGCGCGACGAGCTCCGGGCGCAGTTCGCCGAGCTGGCCGGGAAAATCTTCGACGAACGTGAACAGCGCTTCGCCGAAACCAGCCAGCAGCGTCTGGGACAACTGCTCGATCCGCTGAAGGAGCGCATCCAGTCGTTCGAGAAACGCGTCGAGGAAAGCTATCAGGCCGAGGCTCGTGAGCGGTTCTCCCTGGGCAAGGAGCTTGAGCGCTTGCAGCAATTGAACCTGCGCCTGAGTGATGAAGCCACCAACCTTACCCGTGCCCTCAAGGGGCAGAAAACCCAAGGCAACTGGGGCGAGCTGATCCTCGAGCGGGTGCTCGAACACGCAGGCCTGGAAAAGGGCCGCGAATACCAGACCCAGGTCAGCCTCAAGGGCCCGGACGGTGAGCGTTTCCAGCCGGACGTGTTGATTTACCTGCCCGGCGACAAACAGGTAGTAGTCGATTCGAAGGTCAGCCTCACGGCTTACCAGCAATACGTCGCCGCCGAAGATGACGCCATCGGCCAGCTCGCCCTCAAGCAGCATGTCGTGTCGTTGCGAGCCCACGTCAAGGGCTTGGCCGGCAAGGACTACAAGCGCCTCGACGGTTTGCACAGCCTGGATTTCGTGTTGCTGTTCGTGCCGATCGAGGCCGCGTTTTCCGCCGCGCTGCAAGCCGAGCCGACCCTGTTCCAGGAAGCCTTTGACCGCAACATCGTGATCGTCAGCCCGACGACGCTGCTGGCGACATTGCGGGTCATCGACAGCTTGTGGAAGCAGGAGCGTCAGAGCCAGAACGCCCGGGAAATTGCTGAGCGCGCCGGATGGCTGTACGACAAGTTCGTGCTGTTCATCCAGGACCTCGATGAAATCGGCAATCGCCTGCAGCAACTGGACAAAGCCTACAGCGCCGCGCGCAACAAGCTGACGGAAGGGCGCGGCAACCTGATCAGCCGCAGCGAGCAACTGAAATTGCTCGGCGCCCGGGCGAGCAAAAGCCTGCCGACGGAGCTGCTGGAACGGGCAATGGCGGATGTGGATGGGTTGCCTGAGGTGGCGGAAGAAGGCCCCGCGAAGGTACAGGACTGAMAMDLTSLLLGLAGAALPLLALAWHLQRQASAAQTELALLEERLATAHMAHDGLNAQLDACRDEISDLSQANAAKQAELAAASREVELLQIERDNARDAAHAWNLERANKEAELRRLDAQAASLRAELREQQESHQQRLNDLQGSRDELRAQFAELAGKIFDEREQRFAETSQQRLGQLLDPLKERIQSFEKRVEESYQAEARERFSLGKELERLQQLNLRLSDEATNLTRALKGQKTQGNWGELILERVLEHAGLEKGREYQTQVSLKGPDGERFQPDVLIYLPGDKQVVVDSKVSLTAYQQYVAAEDDAIGQLALKQHVVSLRAHVKGLAGKDYKRLDGLHSLDFVLLFVPIEAAFSAALQAEPTLFQEAFDRNIVIVSPTTLLATLRVIDSLWKQERQSQNAREIAERAGWLYDKFVLFIQDLDEIGNRLQQLDKAYSAARNKLTEGRGNLISRSEQLKLLGARASKSLPTELLERAMADVDGLPEVAEEGPAKVQDNANANANANA
D1-35_004413471rcsC_2Sensor histidine kinase RcsCATGTCGCTGTCCAGCGGGCTGATTGCCGTTGTCGCCCTGGCCTATATGGCCATCATGTTTGCCATCGCCTTCTACGGCGACCGACGCAGCACGCCGTTGCCGCCGCGCGTGCGGGCCTGGGTCTACAGCCTGTCGCTGGCAGTCTATTGCACCAGCTGGACCTTCTTTGGCGCCGTGGGCCAGGCCGCCGAACAGCTCTGGTCGTTCCTGCCGATCTACCTCGGGCCGATCCTGCTGCTGGTGTTCGCGCCGTGGGTCCTGCAGAAAATGGTGATGATCAGCAAGCAGGAGAACATCACCTCCATCGCCGACTTCATCGCCGCCCGCTACGGCAAGTCGCAGTCCCTGGCGATTGTGGTGGCCCTGATCTGCCTGGTCGGCGTACTGCCCTACATCGCCTTGCAGCTCAAGGGCATCGTGCTCGGGGTGAATCTGCTGATCGGCGCCGGCGCCGACGCCATGGGCACCCGGGCCCAGGACACCGCCCTGATCGTCTCGCTGATCCTGGCGCTGTTCACCATCGTCTTCGGTACCCGCAACCTGGACGCCACCGAGCACCATCGCGGCATGGTCCTGGCGATTGCCTTCGAGTCGCTGGTCAAGCTGTTCGCCTTCCTGGCCGTCGGCGCGTTTGTCACGTTTGGCCTCTATGACGGTTTTGATGACCTGTTCAACCAGGCGATGCTGGCGCCCCGCCTGGAGCAATACTGGAAGGAAACCATCAACTGGCCGTCCATGGTCGTGCAAACCGGCGTGGCGATGATGGCGATCATCTGCCTGCCCCGGCAATTCCATGTGACCGTGGTCGAGAACATCGACCCCCAGGACCTGCGCCTGGCCAAGTGGGTGTTTCCCGCGTACCTGGCGCTGGCCGCGCTGTTCGTGGTGCCGATCGCCCTGGCCGGGCAGATGATGTTGCCCAGTTCGGTACTGCCGGATTCGTTCGTCATCAGCCTGCCGCTGGCCCAGGCCCACCCGGCCCTGGCGGTGCTGGCGTTCATCGGCGGCGCGTCGGCCGCCACCGGCATGGTGATCGTGGCGAGTGTCGCCCTGTCGACCATGGTCTCCAACGACATGCTGCTGCCCTGGCTGTTGCGCCGCAACAACGCCGAGCGGCCCTTCGAGGTGTTCCGCCAGTGGATGCTGTCGGTACGCCGGGTGAGCATCGTCGTGATCCTGCTGCTGGCTTACGTCAGTTACCGGCTGCTGGGGTCGACGGCGAGCCTGGCGACCATCGGCCAGATCGCTTTCGCCGCCGTGACTCAACTGGCGCCCGCGATGCTCGGCGCGCTGTACTGGAAACAGGCGAACCGACGCGGCGTGTTCGCCGGTCTCGCCACGGGAATTTTCCTCTGGTTTTATACGCTGGTGCTGCCGATCGCCGCCCACAGCCTGGGCTGGTCACTGAGCAGTTTTCCCGGCCTGGCCTGGCTGCACGGCAACCCGCTGGACCTGCCGATTACTCCGCTGACGCAAGGGGTGGTTTTGTCCCTGGCCGGCAATTTCATCCTGTTCGCCTGGGTCTCGGTGTTGTCCCGCACCCGCGTGTCGGAGCACTGGCAGGCCGGGCGCTTCATCGGCCAGGAAATCAGCGCCCGCCCCAACCCTCGTTCGATGCTCGCGGTACAGATCGACGATCTGCTGCAACTGGCCGCCCGGTTCGTCGGCGAAGAGCGCGCGCGGCAGAGCTTCATCCGTTTCGCCTACCGCCAGGGCAAAGGTTTCAACCCGAGCCAGAACGCCGACAGCGAGTGGATCGCCCACACCGAGCGCCTGCTGGCCGGTGTGCTGGGCGCCTCTTCGACGCGGGCGGTGGTGAAGGCGGCAATTGAAGGGCGGGAGATGCAACTGGAGGACGTCGTGCGGATCGCCGACGAAGCGTCCGAGGTGCTGCAGTTCAATCGCGCGCTGCTGCAAGGCGCCATCGAAAACATCACCCAGGGCATCAGCGTGGTCGACCAGTCCCTCAGGCTGGTGGCCTGGAACCGTCGCTATCTTGAGCTGTTCAATTACCCCGACGGCCTGATCAGCGTCGGCCGGCCAATTGCCGACATCATCCGCTACAACGCCGAACGCGGCCTCTGCGGGCCCGGCGAGGCCGAGGTCCATGTCGCCCGGCGCCTGCACTGGATGCGCCAGGGCCGCGCGCATACCTCGGAACGGCTGTTCCCCAACGGCCGGGTGATCGAGCTGATCGGCAACCCGATGCCCGGCGGCGGCTTTGTCATGAGTTTCACTGACATCACCGCGTTCCGCGAAGCCGCCCAAGCCTTGACCGAGGCCAACGAAGGGCTGGAGCAACGGGTGGCCGAGCGCACCCGGGAACTGTCGCAGCTGAACCTGGCGCTGACCGAGGCCAAGAGCACCGCAGAAGCCGCCTATCAGTCCAAGACCCGCTTCCTTGCCGCCGTCAGCCATGACCTGATGCAACCCCTGAATGCCGCGCGGCTGTTTTCCGCCGCGCTGTCCCACCAGCATGACAGCCTGCCCGGCGAAGCCCGGCAACTGGTGCAGCACCTGGACAGCTCGCTGCGTTCGGCGGAGGACCTGATCACCGACCTGCTCGACATCTCCCGCCTGGAGAACGGCAAGATCAACCCCGATCGCAAGCCCTTCGTGCTCAACGACCTGTTCGATACCTTGGGCGCCGAATTCACCGTGCTGGCCCAGGAGCAAGGGCTCAAGTTTCGCGTTCGTGGCTCGCGCCTGCGGGTCGACAGCGACATCAAGCTACTCCGGCGGATCTTGCAGAACTTCCTCACCAATGCCTTCCGCTACGCCAAAGGTCCCGTGCTGCTGGGTGTGCGCCGCCGCCAGGGCGAGCTGTGCCTGGAGGTCTGGGATCGCGGCCCCGGCATTGCCGAAGACAAACAGCAGGTCATTTTCGAAGAGTTCAAACGCCTCGACAGCCATCAGACCCGCGCCGAAAAAGGCCTCGGCCTGGGCCTGGCGATCGCCGATGGCCTGTGCCGCGTGCTTGATCACAGGTTGCGCGTGCGTTCCTGGCTAGGGCGCGGCAGCGTGTTCAGTGTCAGCGTGCCGTTGGCCAGCACCCAGGCCGCTGCTCCCAGTGCCGCGCCCGAACCCAACGGCCAATTGCCGAGCGGGGCCCAGGTGCTGTGTGTGGATAACGAAGACAGTATCCTGATCGGCATGAGCAGTTTGCTGACGCGCTGGGGGTGCCAGGTCTGGACCGCGCGCAACCGCGAAGAGTGCGAGCGCTGGCTCGCCCAGGGCGGGCGTCCGCAACTGGCCCTGGTGGATTTTCATCTGGACGACGGCGAGACGGGCACCGAGCTGATGGCCTGGCTGCGCACGCGCCTGGGCGAGCCGGTGCCGGGGGTGGTGATCAGCGCCGACGGCCGGCCGGAGACGGTGGCGCAAGTGCATGCGGCGGGGCTGGATTACCTGGCCAAACCGGTGAAGCCGGCGGCGTTGCGGGCGTTGTTGAGTCGGCATTTGCCGTTGTAAMSLSSGLIAVVALAYMAIMFAIAFYGDRRSTPLPPRVRAWVYSLSLAVYCTSWTFFGAVGQAAEQLWSFLPIYLGPILLLVFAPWVLQKMVMISKQENITSIADFIAARYGKSQSLAIVVALICLVGVLPYIALQLKGIVLGVNLLIGAGADAMGTRAQDTALIVSLILALFTIVFGTRNLDATEHHRGMVLAIAFESLVKLFAFLAVGAFVTFGLYDGFDDLFNQAMLAPRLEQYWKETINWPSMVVQTGVAMMAIICLPRQFHVTVVENIDPQDLRLAKWVFPAYLALAALFVVPIALAGQMMLPSSVLPDSFVISLPLAQAHPALAVLAFIGGASAATGMVIVASVALSTMVSNDMLLPWLLRRNNAERPFEVFRQWMLSVRRVSIVVILLLAYVSYRLLGSTASLATIGQIAFAAVTQLAPAMLGALYWKQANRRGVFAGLATGIFLWFYTLVLPIAAHSLGWSLSSFPGLAWLHGNPLDLPITPLTQGVVLSLAGNFILFAWVSVLSRTRVSEHWQAGRFIGQEISARPNPRSMLAVQIDDLLQLAARFVGEERARQSFIRFAYRQGKGFNPSQNADSEWIAHTERLLAGVLGASSTRAVVKAAIEGREMQLEDVVRIADEASEVLQFNRALLQGAIENITQGISVVDQSLRLVAWNRRYLELFNYPDGLISVGRPIADIIRYNAERGLCGPGEAEVHVARRLHWMRQGRAHTSERLFPNGRVIELIGNPMPGGGFVMSFTDITAFREAAQALTEANEGLEQRVAERTRELSQLNLALTEAKSTAEAAYQSKTRFLAAVSHDLMQPLNAARLFSAALSHQHDSLPGEARQLVQHLDSSLRSAEDLITDLLDISRLENGKINPDRKPFVLNDLFDTLGAEFTVLAQEQGLKFRVRGSRLRVDSDIKLLRRILQNFLTNAFRYAKGPVLLGVRRRQGELCLEVWDRGPGIAEDKQQVIFEEFKRLDSHQTRAEKGLGLGLAIADGLCRVLDHRLRVRSWLGRGSVFSVSVPLASTQAAAPSAAPEPNGQLPSGAQVLCVDNEDSILIGMSSLLTRWGCQVWTARNREECERWLAQGGRPQLALVDFHLDDGETGTELMAWLRTRLGEPVPGVVISADGRPETVAQVHAAGLDYLAKPVKPAALRALLSRHLPLNANANANANA
D1-35_00442540hypothetical proteinATGGCTATTAAAGAAGGTTTACGCCCCGGCGGCAGAAGCGCCCGGGTCCAGGAGTCGATTCATTCGGCCGTTCGCGCGTTATTGCAGGAGCAGGATCGCGCCAGCCTGACCGTGCCGCAAATCGCCGCGCGCGCCGGGGTGACGCCGTCCACCATTTATCGGCGCTGGGGCGATCTGCAAGCGCTGCTGGCGGATGTCGCCATCGCACGCATGCGTCCGGACGGCGAGCCGGCCAATACCGGCAGCCTGCGCGGCGACTTGCGTGCCTGGGCGGAGCAGTATCTGGACGAAATGAGTTCCGAGCCCGGCCGCAACATGATGCGCGATATCCAGGCCTGCGCCACGCCGGGTTATTGCGTGGGCATTATCAGCGGTCAGTTGCAGATCATCCTGGACCGCTATCCCGATGAGCCGAATCCGGGCATCGAGCGGCTGGTGAATGTGATCGTGGCGCCGACGGTGTTTCGTATCCTGTTTGCCACTGCGCCGCTGGAGGTTGAGGAGTTGTATCGGTTGGTTGACATAGCGTTGGGTCAGTAAMAIKEGLRPGGRSARVQESIHSAVRALLQEQDRASLTVPQIAARAGVTPSTIYRRWGDLQALLADVAIARMRPDGEPANTGSLRGDLRAWAEQYLDEMSSEPGRNMMRDIQACATPGYCVGIISGQLQIILDRYPDEPNPGIERLVNVIVAPTVFRILFATAPLEVEELYRLVDIALGQNANANANANA
D1-35_004431194hypothetical proteinATGTCTCGTCCAGCTTCGACCCGCGCCAGCCTGATATTTCTGGCGCTCACCTTGCTCGGCTTCCTGGCGGCGTCCAGCGCGCCGACGCCGTTGTATCACCTCTATCAGGAACATATGCAGTTTTCCCCGGCGATCCTGACACTGATCTTCGGCGTGTACGCGTTCAGTCTGCTGGCGGCTTTGCTGGTCGTCGGTTCGCTGTCGGATTACCTCGGTCGCAAGCCAGTGATCTTTGCGGCATTGCTGCTCAACATGCTGGCGATGCTGCTGTTTATCAACGCCGACAGCGTCGCCTGGTTGATCGGTGCGCGTTTGATTCAAGGTTTTGCCACCGGAATGGCCACCAGTGTATTGGGGGCGGCGTTGCTGGACTTCGATCGTCAGCAGGGGCCGCTGATCACCAGCGTGGCGCCATTGCTCGGCATGGCGTGTGGCGCGATGGGCTGCGGCCTGCTGGCTGAGTTCGCGCCGATGCCGCTGCAATTGACGTATTGGCTGCTGCTGGCATTGTTTCTCCTCCAGGCGATTTACCTGTGGCGCCTGGCGGAAAGCGTCAGCCCGCAGCCCGGGGCCTGGCGATCGTTGCGCCCGACTTTGCACGTACCTGTCCAGGCCCGGCGCGCCTTGTGGCTGATATTGCCTCTGGACCTGGCGGCTTGGGCGGTCGGGGGATTCTATTTGTCCCTCGCGCCGTCACTGGTGCGGGCCGCGACCGGTTCGACATCGAACCTGATTGGCGGCGCGCTGGTGGCTGTGCTCACCCTCAGTGGTGCCTTGTCGATCTACACGCTGCGTAACCGGGCGGCAAGAACGATGCTGCGGCTTGGCGCCAGCCTATTGGTGCTCGGCCTGGGCCTGGTATTGACCGCCGTACACACGGCCAGTCTGCCGTGGTTTTTCATTGGCACCTTGATCACTGGCAGCGGTTTTGGCGCGGGATTCCTCGGCGCCCTGCGCAGCATCATGCCGCTGGCCTTGCCCCACGAACGGGCCGGCCTGATGTCGGCGTTCTACGTGCTCAGTTACCTGGCCTTCAGCCTGCCTTCGTTGCTGGCGGGAAACCTCACGCGTATTTTCGGACTGATTCCGACCACCGATGGCTACGGCGTCGTGCTGATTGTGATGGCAGTCGGTGCGCTGGCGGGCTTGCTGCGCCAGCCTGCAAAACCGCTGGCGGAGGGGGTGGGGTCGTGAMSRPASTRASLIFLALTLLGFLAASSAPTPLYHLYQEHMQFSPAILTLIFGVYAFSLLAALLVVGSLSDYLGRKPVIFAALLLNMLAMLLFINADSVAWLIGARLIQGFATGMATSVLGAALLDFDRQQGPLITSVAPLLGMACGAMGCGLLAEFAPMPLQLTYWLLLALFLLQAIYLWRLAESVSPQPGAWRSLRPTLHVPVQARRALWLILPLDLAAWAVGGFYLSLAPSLVRAATGSTSNLIGGALVAVLTLSGALSIYTLRNRAARTMLRLGASLLVLGLGLVLTAVHTASLPWFFIGTLITGSGFGAGFLGALRSIMPLALPHERAGLMSAFYVLSYLAFSLPSLLAGNLTRIFGLIPTTDGYGVVLIVMAVGALAGLLRQPAKPLAEGVGSNANANANANA
D1-35_004441149hypothetical proteinATGACTTGCTGCGCTGCGAAAAACCGTTTACGCCCGCTGAGCCACTTGGCCGGACCCTTGGAGGCCGTCCGACAATTCACCCCGAACTGGTTCGCCGCCACCATGGGGACTGGCGTGCTGGCATTGGCCCTGGCGCAAGTGCCAGGCGGCAATGCCGGATTGCACGCATTTGCTGAAGGGCTGTGGTTGTTCAACATTTTCCTGTTTGCACTATTCACCGGGCTGTACGGCGCTCGCTGGATGCTTTTTTTCAACGAGGCCCGGCGAGTTTTCGGCCATTCGACGGTCTCGATGTTTTTCGGCACCATTCCCATGGGCCTGGCGACGATCATCAACGGCTTTCTGGTGTTCGGGTTGCCGCGCTGGGGGGATGGCGTGGTGGCGGTGGCAGAAGTGTTGTGGTGGATCGACGTGGTGATGTCGCTGGCCTGCGGCGTGCTTATTCCGTTCCTGATGTTCACCCGCCAGGAGCACCGCATCGACCAGATGACCGCCGTGTGGCTGTTGCCCGTAGTGGCCGCCGAGGTGGCCGCTGCCAGTGGCGGGCTACTGGCGCCACACCTTGGCGACGCCCATGCGCAATTGGTCATGTTGGTCACCAGCTACGTGCTGTGGGCATTTTCGCTACCGGTGGCGTTCAGCATTCTGACCATCCTGCTGCTGCGCATGGCCCTGCACAAACTGCCGCATGAAAACATGGCCGCCTCGAGCTGGCTGGCCCTCGGCCCCATCGGCACGGGCGCCTTGGGCATGTTGCTGCTGGGTGGCGAGGCACCGCTGATTTTCGCCGCCAATGGCTTGCCGGGCGTGGGCGAGGTTGCCTCGGGGCTGGGGCTGGTGGCCGGCATCACCCTGTGGGGCTTGGGTTTGTGGTGGATGTTGATGGCGCTGTTGATCACCGGGCGCTATCTGCGCGAAGGCATCCCGTTCAATCTCGGCTGGTGGGGTTTTACCTTTCCCTTGGGCGTGTACGCACTGACCACGCTGAAACTGGCGAGCGTGCTGGGGCTGGTATTTTTCAACCTGCTGGGTTGCGCATTGGTGGTGGTGCTGGCGGTGATGTGGCTGATCGTCGCTCGGCGCACGGTGCTGGGCGCCTGGCACGGTGAGTTGTTCGTGTCGCCTTGTATTGCGGGGCTGGGGAAATAAMTCCAAKNRLRPLSHLAGPLEAVRQFTPNWFAATMGTGVLALALAQVPGGNAGLHAFAEGLWLFNIFLFALFTGLYGARWMLFFNEARRVFGHSTVSMFFGTIPMGLATIINGFLVFGLPRWGDGVVAVAEVLWWIDVVMSLACGVLIPFLMFTRQEHRIDQMTAVWLLPVVAAEVAAASGGLLAPHLGDAHAQLVMLVTSYVLWAFSLPVAFSILTILLLRMALHKLPHENMAASSWLALGPIGTGALGMLLLGGEAPLIFAANGLPGVGEVASGLGLVAGITLWGLGLWWMLMALLITGRYLREGIPFNLGWWGFTFPLGVYALTTLKLASVLGLVFFNLLGCALVVVLAVMWLIVARRTVLGAWHGELFVSPCIAGLGKNANANANANA
D1-35_004451875lplTLysophospholipid transporter LplTATGAGTCACCCCTCGCAGTTCACCTTGCTTCGCACGCGGCGTTTCCTGCCGTTCTTCATCACACAGTCCCTCGGCGCGTTCAACGACAATATCTTCAAGCAGTCGCTGATCCTCGCCATCCTCTATAAATTGACCATCGAGGGTGATCGCTCGATCTGGGTCAATCTGTGCGCGCTGCTGTTCATCCTGCCGTTCTTCCTGTTCTCGGCGCTGGCGGGCCAGTTCGGCGAAAAATTCGCCAAGGATGCGTTGATTCGCCTGATCAAGCTTGGCGAAATCGCGATCATGGCGGTCGGCGCGGTGGGTTTCCTGTTCGATCATCTGTGGCTGATGCTGGTGGCGCTGTTCGCCATGGGCACGCACTCGGCGCTGTTCGGGCCGGTGAAATATTCGATCCTGCCGCAAGCCCTGCGCGAGGATGAGCTGGTCGGCGGCAACGGCCTGGTGGAGATGGGGACGTTCCTGGCGATCCTCGCCGGCACCATCGGCGCCGGGATCATGATGTCCTCGGCCAATTACGCGCCCGTGGTCTCGGTGGCGATTGTCGGCATTGCCGTGGCCGGTTACCTGGCCAGCCGCGGCATTCCACGGGCGGCGGCCGCTTCGCCGCAGATGCGTTTGAACTGGAACATCTTCAGCCAGTCCTGGGCGACCCTGAAGCTGGGCCTCGGGCAGACCCCGGCGGTGTCCCGCTCGATTGTCGGCAATTCCTGGTTCTGGTTTGTCGGCGCGATCTATCTCACCCAGATCCCGGCCTATGCCAAGGAATGGATGCACGGCGACGAAACCGTCGTGACGCTGATCCTGACGGTGTTTTCGGTGGGGATCGCCCTGGGCTCGATGCTCTGCGAAAGGCTCTCGGGGCGCAAAGTGGAGATCGGCCTGGTGCCGTTCGGTTCGTTCGGGCTGACGGTGTTCGGCTTGCTGTTGTGGTGGCATTCCGGTGGAATCCCCGCCAGCGTCGACGGCCACGGCTGGCTGCAAATTCTGGGTTTCGGCCACGCCTGGCTGGTGCTGATCGATATCCTCGGGCTGGGTATCTTTGGCGGTTTCTACATCGTGCCGCTGTATGCATTGATCCAGTCGCGCACCGTTGAAAACGAGCGGGCGCGAGTGATCGCCGCCAACAACATCCTCAACGCCTTGTTCATGGTGGTCTCGGCGATCGTTTCCATCGTCCTGCTGAGCCTGGCCAAGCTGTCGATCCCGCAGCTGTTCCTGGTGGTGTCGCTGCTGAACATCGGCGTCAACGCCTACATTTTCAAGATCGTCCCCGAGTTCAGCATGCGTTTCATGATCTGGCTGCTCAGCCATTCCATGTACCGCGTGGAGCATCGCAACCTGCAAGCGATCCCGGATGAGGGAGCAGCGTTGCTGGTGTGCAATCACGTATCGTTTGTCGATGCCTTGCTGATTGGTGGCGCGGTGCGTCGGCCGATTCGTTTTGTCATGTACTACAAAATCTACAACCTGCCGATCCTGAACTTTATCTTCCGCACCGCCGGGACCATTCCGATTGCCGGGCGCCAGGAGGATATCCACATCTATGAAAAAGCCTTCAGCCGCATCGCCCAATACCTGAAGGACGGTGAGCTGGTGTGCATCTTCCCTGAAGGAAAGTTGACCGCCGACGGTGAGATCAACGAGTTCAAGAGCGGGCTGACGCGCATCCTTCAAGAAACCCCGGTGCCGGTGATTCCCTTGGCATTGCAGGGCTTGTGGGGCAGCTTTTTCAGCCGTGATCCGAGCAAGGGGCTGTTTCGGCGGTTCTGGTCGCGGGTGACGCTGGTGGCGGGGACGGCGGTGGCGGTCGAGGCGGCGGAGCCGGCGAAGTTGCAGGCGTTGGTCGGAGAGTTGCGCGGGGCGGTCAGATAAMSHPSQFTLLRTRRFLPFFITQSLGAFNDNIFKQSLILAILYKLTIEGDRSIWVNLCALLFILPFFLFSALAGQFGEKFAKDALIRLIKLGEIAIMAVGAVGFLFDHLWLMLVALFAMGTHSALFGPVKYSILPQALREDELVGGNGLVEMGTFLAILAGTIGAGIMMSSANYAPVVSVAIVGIAVAGYLASRGIPRAAAASPQMRLNWNIFSQSWATLKLGLGQTPAVSRSIVGNSWFWFVGAIYLTQIPAYAKEWMHGDETVVTLILTVFSVGIALGSMLCERLSGRKVEIGLVPFGSFGLTVFGLLLWWHSGGIPASVDGHGWLQILGFGHAWLVLIDILGLGIFGGFYIVPLYALIQSRTVENERARVIAANNILNALFMVVSAIVSIVLLSLAKLSIPQLFLVVSLLNIGVNAYIFKIVPEFSMRFMIWLLSHSMYRVEHRNLQAIPDEGAALLVCNHVSFVDALLIGGAVRRPIRFVMYYKIYNLPILNFIFRTAGTIPIAGRQEDIHIYEKAFSRIAQYLKDGELVCIFPEGKLTADGEINEFKSGLTRILQETPVPVIPLALQGLWGSFFSRDPSKGLFRRFWSRVTLVAGTAVAVEAAEPAKLQALVGELRGAVRNANANANANA
D1-35_00446315gdxCOG2076Guanidinium exporterATGTCCTGGATCATTCTGTTTTTCGCCGGCCTGTTCGAAGTCGGCTGGGCTGTCGGCCTGAAGTACACCGACGGCTTCAGCCGCCCGCTCCCTACCGCACTGACAATCGCCGCCATGGCGATCAGCCTCGGCCTGCTCGGCCTGGCGATGAAGGAGTTGCCGCTGGGCACCGCCTATGCCATCTGGACCGGGGTCGGTGCCGTCGGCACGGTGATCGCCGGGATCATCCTGTTTGGCGAGTCGATGGCACTGATTCGCCTGGCCAGCGTTGCGCTGATCATAGCCGGGCTGGTCGGGCTAAAGGTCAGCGCTTAAMSWIILFFAGLFEVGWAVGLKYTDGFSRPLPTALTIAAMAISLGLLGLAMKELPLGTAYAIWTGVGAVGTVIAGIILFGESMALIRLASVALIIAGLVGLKVSAPGPT0028785_2696DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-QUATERNARY_AMMONIUM_COMPOUND_RESISTANCE_,PGPT0028785-sugE-K11741NANA
D1-35_00448966panSCOG0385Pantothenate precursors transporter PanSATGCGTGCACTGGCTGCATTGAGCCGCTTCGTCGGCAATACGTTCGCTTACTGGGTGTTGCTGTTCGCCGTCGTGGCGTTCTTTCTGCCGACCTGGTTCATCGGCCTCAAAAGCGCCATTGTGCCGCTGCTGGGGCTGGTGATGTTCGGCATGGGCCTGGCACTGAAGCTGGAAGACTTTGCCGAAGTGGCTCGTCGCCCTGGACGGGTGGCCCTGGGCGTGATTGCCCAGTTCGTGATCATGCCGGGGACAGCATGGCTGCTTTGCCAGGTTTTCAGCCTGCCGCCGGAAATCGCCGTCGGCGTGATTCTGGTGGGTTGCTGCCCGAGCGGCACGTCCTCCAACGTGATGACCTGGCTCGCCCGCGGCGACCTGGCCTTGGCCGTAGCGATATCCGCCATCACCACCCTGCTTGCCCCGCTGCTGACCCCGACGCTTATCTGGCTGCTGGCTTCGGCCTGGCTGCCGGTGTCGTTCTCGGCATTGTTCTGGTCGATACTGCAAATTGTGTTGCTGCCCATCGCACTGGGTATCGTTGCCCAACGTTTGTTGGGTGCGCGGGTCCGTCATGCCGTAGAGGTGCTGCCGCTGGTATCGGTGGTCAGTATCGTGATCATCGTTGCGGCGGTGGTGGCAGCCAGCCAAGCGAAGATCGCTGAGTCCGGCCTGCTGATCATGGCGATCGTGATCCTGCATAACAGCTTCGGCTACTTGCTGGGGTATTTCACCGGTCGGCTTTTCGGGCTGCCGTTGGCCCAACGCAAGACGTTGTCGCTGGAAGTCGGCATGCAGAACTCCGGCCTCGGTGCGGCATTGGCCAGCGCACACTTTTCGCCGCTGGCGGCAGTGCCCAGCGCGCTGTTCAGCGTCTGGCACAACATTTCCGGCGCCCTGCTCTCGACCTGGTTCCGGCGCATGAGCGAAAAGCAGGACCGCGAAGAACTCGCCCGACAAACCGCGGACTGAMRALAALSRFVGNTFAYWVLLFAVVAFFLPTWFIGLKSAIVPLLGLVMFGMGLALKLEDFAEVARRPGRVALGVIAQFVIMPGTAWLLCQVFSLPPEIAVGVILVGCCPSGTSSNVMTWLARGDLALAVAISAITTLLAPLLTPTLIWLLASAWLPVSFSALFWSILQIVLLPIALGIVAQRLLGARVRHAVEVLPLVSVVSIVIIVAAVVAASQAKIAESGLLIMAIVILHNSFGYLLGYFTGRLFGLPLAQRKTLSLEVGMQNSGLGAALASAHFSPLAAVPSALFSVWHNISGALLSTWFRRMSEKQDREELARQTADPGPT0013890_1256DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013890-panS|yocS|ybaS-K03453NANA
D1-35_00449921rdgCCOG2974Recombination-associated protein RdgCATGTGGTTCAAGAACCTGCTTATCTATCGCCTGACCCAAGATCTGCCTGTTGATGCCGAGGCGTTGGAAACTGCACTGGCGAGCAAACTGGCACGCCCCTGTGCAAGCCAGGAGTTGACCACTTACGGTTTCGTCGCGCCGTTTGGCAAAGGTGAAGACGCGCCCCTGGTGCATGTCAGCCAGGACTTTTTGCTGATTGCCGCACGCAAGGAAGAACGCATCCTGCCGGGCAGCGTCGTCCGTGACGCGGTCAAGGAAAAGGTCGAAGAGATCGAAGCCGAGCAGATGCGCAAGGTCTATAAAAAGGAACGCGACCAGATCAAGGATGAAATCATCCAGGCCTTCCTGCCTCGCGCCTTCATTCGCCGTTCGTCCACGTTCGCCGCGATCGCGCCGAAACAGGGCCTGATCCTGGTCAACTCGGCCAGCCCGAAACGCGCCGAAGACCTGCTTTCGACCCTGCGCGAAGTCATCGGCACGCTGCCGGTACGCCCGCTGACAGTGAAGACGGCCCCGACCGCGATCATGACCGACTGGGTCAAGACCCAGAAAGCCGCAGACGATTTCTTCGTGCTGGACGAATGCGAACTGCGCGATACCCATGAAGATGGCGGCATCGTCCGTTGCAAGCGCCAGGACCTGACCAGCGACGAAATCCAGCTGCACCTGAACACCGGCAAGGTGGTGACGCAACTGTCGCTGGCCTGGCAAGACAAGCTGTCTTTCGTGCTCGACGACAAAATGGTGGTCAAGCGCCTGAAGTTCGAAGACCTGCTGCAAGACCAGGCGGAACAGGACGGCGGCGACGAAGCCCTCGGCCAACTGGACGCCAGCTTCACCCTGATGATGCTGACGTTCGGCGAGTTCCTGCCGGCGCTGGTTGAAGCGCTGGGTGGTGAAGAGATTCCGCAAGGGATCTAAMWFKNLLIYRLTQDLPVDAEALETALASKLARPCASQELTTYGFVAPFGKGEDAPLVHVSQDFLLIAARKEERILPGSVVRDAVKEKVEEIEAEQMRKVYKKERDQIKDEIIQAFLPRAFIRRSSTFAAIAPKQGLILVNSASPKRAEDLLSTLREVIGTLPVRPLTVKTAPTAIMTDWVKTQKAADDFFVLDECELRDTHEDGGIVRCKRQDLTSDEIQLHLNTGKVVTQLSLAWQDKLSFVLDDKMVVKRLKFEDLLQDQAEQDGGDEALGQLDASFTLMMLTFGEFLPALVEALGGEEIPQGINANANANANA
D1-35_004551137hypothetical proteinATGCTCATAAAGCTCTGGCTGCGCCTCGGCGCCTTTCTGGGCAAGACGCTCCTCTGGCTGCTGGGCATCGGCCTGCTCGGCTGGGCCCTGGCCACGGCCTGGTTCGCCTGGCAACACAGTGGGCCGGTCGCGGACAAGGAGCAGATACCGCCCGGTGAAAGCGCCATGACCCAGGACATCATCCAGACCGCCATCCGCATCGTCGACCAGCACCGCGAAGGCACGCGCTACCTGCGCGATGCCCATGCCAAGGCCCACGGCTGCGTGATGGCCGAAGTCCAGGTGCCCGGCGATCTGCCGGCACCGTTGCGCCAGGGCGTATTCGCCGAACCGGGCAAGACCTGGCAGGCGACGATCCGCCTGTCCAACGGCAACGCTTATCCACAGTTCGACAGCCTGCGCGATGCACGAGGGATGGCCATCAAGCTGCTGGATGTGCCCGGCAAGCAATTGCTCGCGGACCGGCAATCGCAGGGCGAGCAGGACTTCGTGATGTTCAATCATCCGAACTTCTTTGTCAGCGATGTCGCCGAATACCGTCAGAACGTGGCGGCCCAGGCTGACGGAAAAAAGGCGATGGCTTTCTTTCCGAGCCTGGACCCACGCAGCTGGCAGATCCGTCATCTGTTCATCGCCCTGGCGACACTCTCCCCGCCTCCGGCGAGCCCGACCCAGACCACTTATTTCTCGGTATCGCCGTACAAGTTCGGCGCGGCCAATGCCAAGTTTCGCGTCGCGCCGGATCCGGACAACTGCCCAGCCTACACCCTGCCCAAGCAGAACCAGAACCTGCCGAATTTCTTGCGCAGCGCACTGACTCAACAGTTATCCACAGACCGCGTGCCAGCCTGTTTTGTGCTGCAGATCCAGCGTCAGGACCCGGGCAAATACATGCCGATCGAAGACACCAGTATCGAGTGGCGGGAAAGCGATGCGCCATTCGAGACGGTGGCGCGAATCAAGGTGCCGGCCCAGGATTTCGATACGCCCAAGCTGAACCTGGCTTGCGACAACCTGTCGTTCAACCCGTGGTTTGGGCTCGAGGCACATCGGCCTATTGGCGGTATCAACCGTTTGCGTAAAGCGGTGTATGAGGCGGTCAGCGATTATCGGCATAGTCGGAATGCTGAGCAGTAGMLIKLWLRLGAFLGKTLLWLLGIGLLGWALATAWFAWQHSGPVADKEQIPPGESAMTQDIIQTAIRIVDQHREGTRYLRDAHAKAHGCVMAEVQVPGDLPAPLRQGVFAEPGKTWQATIRLSNGNAYPQFDSLRDARGMAIKLLDVPGKQLLADRQSQGEQDFVMFNHPNFFVSDVAEYRQNVAAQADGKKAMAFFPSLDPRSWQIRHLFIALATLSPPPASPTQTTYFSVSPYKFGAANAKFRVAPDPDNCPAYTLPKQNQNLPNFLRSALTQQLSTDRVPACFVLQIQRQDPGKYMPIEDTSIEWRESDAPFETVARIKVPAQDFDTPKLNLACDNLSFNPWFGLEAHRPIGGINRLRKAVYEAVSDYRHSRNAEQNANANANANA
D1-35_004561806hypothetical proteinGTGCGCCTCCTCTCTCGCCTTTTATTGCTGATCCTCACGCTGGCCATCGTGGTCGTGGCCGTGGTGCTTTATTACGTGGCCAACCCGCGCCTGCCGGCCTACACGCCTGTCCAACAGGTGCACTACCTGGACCAATGGAGCGCCGCCGAGCGACAGACTTACTATTTCACGCCTCAGGGCACTCAGGTCAAAGGCCTGCGTTACGAGTGGTTCACCGCGCTTGAATTGCCGTTCTCGCAACAGCGCTTCGCTTCGCCGGAATACCTGGCGCGCTTCGGTTTTCTGGTCGATCCTGCGCAGAAAGCCACGCCACTGAACCCCGGCAACTTACCGGTGGGCTTCACCCGACACCAGAACGCCGGCAGTAACGAGCAATACCTCGACATTACCTGCGCCGCCTGCCACACCGGCGAATTGCATTTCAAGGGCCAGGCGATCCGGATCGATGGCGGCTCGGCCCAACACGTATTGCCATCGACTGTTCCGACATTGCGCGGCGGCAGTTTCGGACAGGCACTGGTGGCAAGTCTCGCCTCGACTTACTACAACCCATGGAAATTCGAACGCTTCGCCCGCCAGGTGCTGGGCAATGACTATGACGCTCGCCATGAAGAGTTGCGCAAGGCCTTCAAGGTTTCCCTGAATGCGTTCCTGCGCACCGCCTGGAACGACACCCATCGCGGTCTCTATCCCACCGAGGAAGGCCCGGGCCGTACCGACGCCTTTGGCCGTATCGCCAATGCCAGCTTTGGCGATGCCATTTCGGCAGAAAACTACCGGGTCGCCAACGCACCGGTGGATTACCCACAGTTGTGGGAAATGTGGACGTTCGACTGGGTACAGTGGAACGGTTCGGCGCAGCAGCCGATGGCCCGCAACGTCGGCGAGGCGCTGGGGGTTGGCGCCACGTTGAGTTTCTTCGATGCCCAGGGCAAGCCGCTGCAAGGCGATGCGCGCTATCCTTCCAGCGTGCGGGTGCGCGACCTGAACAAGATCGAAGAGACCTTGCAACTGCTCAAGCCACCCGTATGGCCGGAAGCGTTGCTGGGTTCGATTGACAAGCCCCTGGCGGCAAAGGGCAAGGCGTTGTTCGAAGAAAACTGCGCCGGCTGCCATGTGCCCAAAGTCGTCCAGGGCCCTGACCGGCCGGTGCAACAGTTGCATATGCTGTCAGTGAAGGTGATCGGCACGGACCCGGGCACCGCGAACAATATTGCCGATCACCGTTTCAACCTGACCAGCCTGCAATGGGACCCGGCCGAACTGGCGAAGCTGGAAGTGCAACTGCACCCTGCCCCGACAGAGCCGCTGGACCTCAGCCAGATCTCGGTCGCCAAGGGGCTGGCCTACGTCACCGCATTCGTCGAAAACCGCGCTTACCGGGATGCCGGCGTCACGCCGGTGGAACGTCCGGCGCTGGACGGTTTCGGGCTGCCCATCGGCGTCCGTGAATTACGCGCCTACAAGGCCCGGCCATTGGCCGGCGTGTGGGCAACACCGCCGTTCCTGCACAACGGCTCGGTGCCGACGATCTATGAGTTGCTGTCGCCGCAGGCCGAGCGGGCGACCACCTTCTATAAGGGCAGCTTCGAATACGACCCGCGGCACCTGGGCTATCGCACCGAAGCGTTTGCCAATGCCTTCCTGTTCGACACTCGCATCACTGGCAACCATAACAGCGGCCATGAATTCCGCGCCGGCGAACGGGGCAATGGGGTCATTGGCCGTTTGCTGCAGCCGCAGGAGCGCTGGGCGTTGCTGGAGTACTTGAAGGTGCTGGGCGGACCGCTGGAGTCGCAACTGTGAMRLLSRLLLLILTLAIVVVAVVLYYVANPRLPAYTPVQQVHYLDQWSAAERQTYYFTPQGTQVKGLRYEWFTALELPFSQQRFASPEYLARFGFLVDPAQKATPLNPGNLPVGFTRHQNAGSNEQYLDITCAACHTGELHFKGQAIRIDGGSAQHVLPSTVPTLRGGSFGQALVASLASTYYNPWKFERFARQVLGNDYDARHEELRKAFKVSLNAFLRTAWNDTHRGLYPTEEGPGRTDAFGRIANASFGDAISAENYRVANAPVDYPQLWEMWTFDWVQWNGSAQQPMARNVGEALGVGATLSFFDAQGKPLQGDARYPSSVRVRDLNKIEETLQLLKPPVWPEALLGSIDKPLAAKGKALFEENCAGCHVPKVVQGPDRPVQQLHMLSVKVIGTDPGTANNIADHRFNLTSLQWDPAELAKLEVQLHPAPTEPLDLSQISVAKGLAYVTAFVENRAYRDAGVTPVERPALDGFGLPIGVRELRAYKARPLAGVWATPPFLHNGSVPTIYELLSPQAERATTFYKGSFEYDPRHLGYRTEAFANAFLFDTRITGNHNSGHEFRAGERGNGVIGRLLQPQERWALLEYLKVLGGPLESQLNANANANANA
D1-35_00457714fklB_1COG0545FKBP-type 22 kDa peptidyl-prolyl cis-trans isomeraseATGAAACAGCATCGGTTGGCGGCGGCGGTAGCCCTGGTTGGCCTGGTACTCGCGGGTTGTGACTCGCAGACCAGCGTAGAGCTGAAAACCCCGGCGCAGAAAGCTTCCTACGGTATCGGCCTGAACATGGGCAAAAGCCTGGCTCAGGAAGGTATGGATGACCTGGACTCCAAGGCAGTCGCCCAGGGCATCGAAGATGCCGTCGGCAAGAAAGAACAGAAGCTGAAAGACGAAGAACTGGTCGAAGCCTTTGCCGCGCTGCAAAAACGTGCCGAAGAGCGCATGGCCAAGATGAGTGAAGAGTCGGCAGCCGCCGGCAAGAAATTCCTTGAGGAAAACGGCAAGAAGGCCGGCGTTACCACCACCGCTTCCGGCCTGCAGTACGAAGTGGTCAAGAAGGCCAGCGGCGCGCAGCCTAAGCCGACCGACGTGGTGACCGTTCACTACACCGGCAAGCTGACCAACGGCACTGTGTTCGACAGCTCCGTGGAGCGTGGCAGCCCGATTGACCTGCCGGTCAGCGGTGTGATCCCGGGTTGGGTCGAAGGCCTGCAATTGATGCACGTCGGCGAGAAGTACAAGCTGTACATCCCGAGCGACCTGGCCTACGGCGCCCAGAGCCCGAGCCCGGCGATCCCTGCCAACTCGGTCCTGGTATTCGACCTGGAACTGCTGGCAATCAAGGATCCGGCAAAAGAAGGCGCAGCCAAGTAAMKQHRLAAAVALVGLVLAGCDSQTSVELKTPAQKASYGIGLNMGKSLAQEGMDDLDSKAVAQGIEDAVGKKEQKLKDEELVEAFAALQKRAEERMAKMSEESAAAGKKFLEENGKKAGVTTTASGLQYEVVKKASGAQPKPTDVVTVHYTGKLTNGTVFDSSVERGSPIDLPVSGVIPGWVEGLQLMHVGEKYKLYIPSDLAYGAQSPSPAIPANSVLVFDLELLAIKDPAKEGAAKNANANANANA
D1-35_00458456hypothetical proteinATGAAGGCCCCGTGGAATTTCGCGCGATTTCTTCCCCTGGCGGGACGGCTCCTGGCCCGCGGCAGACTGCCCACGCTGCTGTTCGCCGTTGCCAGCAAGGGCGCCCGGGAGGGCGGTCGCCTCGGCAAGCTCAAGGAGGACCTGCGTCTGCTGCAGGCTCTGTGCCTGGCTTACTGGCGGGGCGAATACCGCGCCGTGAGTGCCAAGTCGATGCTCTCGGTGGTGGCGGGCCTCATGTATTTCCTCAGCCCGCTGGATGCGATCCCGGACTTGCTGCCCATGTTAGGCATGTTCGACGACATCGCGGTGCTGGCCTGGATCATGAAAACCCTCGACGACGAGCTGGGTGCCTTCCGTGCCTGGCGCGAACAGCAGTCGCCGGAGAAACTTGCGCGGGTTGAAAGGCTTCCCGACACCCCGGAACAACTCCAGCTGCAAGGGCCGAAAAAAAGCTGAMKAPWNFARFLPLAGRLLARGRLPTLLFAVASKGAREGGRLGKLKEDLRLLQALCLAYWRGEYRAVSAKSMLSVVAGLMYFLSPLDAIPDLLPMLGMFDDIAVLAWIMKTLDDELGAFRAWREQQSPEKLARVERLPDTPEQLQLQGPKKSNANANANANA
D1-35_00459339hypothetical proteinATGGATATTCAAATAATCACGCGCGACGGAGAGCCCGAGTACGCGGTTTTGCCGTGGGATCAGTACCAGGCGCTGCTGAAGGCAGCCGGCATCAATCAAGCACCGCAAGAAGCCACGGTCCGCCATGCGGCGGCACCCGGCCAGGTTCTCCCTGGCCTGGATCAACTACGCAGTTTGCGCGAAGGGAAGGGCATCGCCATCGAGGCGCTGGCCCGCACGGTAGGCATCAGCCCGTCTTATCTGGCCATGATCGAAAGCGGCGAGCGTCAGCCCGATGCCGCGATCAAGCGCAGTCTGGCCTGGGAACTGACGGTGCCGGGTTGGAGGGATGAATCGTGAMDIQIITRDGEPEYAVLPWDQYQALLKAAGINQAPQEATVRHAAAPGQVLPGLDQLRSLREGKGIAIEALARTVGISPSYLAMIESGERQPDAAIKRSLAWELTVPGWRDESNANANANANA
D1-35_00460372hypothetical proteinGTGAGTGTACGCATCAGTCGGCAACATTGGGACGGGTTGTTGGGTGAGTTGGACCAGGCGCGTCGCCAGCGCCATTTATTGACGTACCGCGCCTTGCTGGAGCGCTTGCAGCTGCCCAGCCCGGCCATGCAGACATTGACCGCCGCACTCGAACACCTGGCGGCGCTGGACGCCCGGGCCGAACAGCCATTGCGCAGTTCGTTGGTCATCAGCCAAGGGGCCAGTCGCCTGCCACGCACTGGTTTTTTCGAATGTGTTGAACGCCTCGGGCGCTTTTCCGGCCCCTCCGACGGCGTCGCCGCTGCATCCTGGCATGCGTCGGAAGTGGTCCGGGTGTTCGAATACGAGTACCCCGAATCGGCGGAGGCCTGAMSVRISRQHWDGLLGELDQARRQRHLLTYRALLERLQLPSPAMQTLTAALEHLAALDARAEQPLRSSLVISQGASRLPRTGFFECVERLGRFSGPSDGVAAASWHASEVVRVFEYEYPESAEANANANANANA
D1-35_00461402hypothetical proteinGTGCTCTGGCGGATCAAGGCCCGGGCCGGTTATTGGCTGGCGCGCCGATTGTTCCGTTGGTCATGGCTGGTTCGGCAGCCCCGCGGCTGGGCCTGGCTTGAAGGCCAGTTTGCGCGCATGGCGAACCTGGGCGACGTCGGCGCCCAGAGCTTCTACGGGCATATCCTGACGTTTCGCGGCCAAGGGCTCGGCGCACGGGAAGAAGGCATTCGCTTGCTCCGCCTGGCGGCGCTGGCCGGTGACGGCAAGGCCGCCTACCAGGTCGGCGTCATCAGCCTGGCAGGCTCTACCACCAAGGCGCCGGATCCGGACGAAGCGGCGCGTTGGTGGGCCTTGGCCCTGAAGGCCGGGCATCCGCTGGCCGAGATCAAGCTCAAGGCGCTCGAGAGCAAGAAACCCTGAMLWRIKARAGYWLARRLFRWSWLVRQPRGWAWLEGQFARMANLGDVGAQSFYGHILTFRGQGLGAREEGIRLLRLAALAGDGKAAYQVGVISLAGSTTKAPDPDEAARWWALALKAGHPLAEIKLKALESKKPPGPT0000855_6613DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISOTHER_MOTILITY_REGULATING_FUNCTIONSMOTILITY-ACIDITY|NITROGEN_RELATED_REGULATION,PGPT0000855-exoR-K07126NANA
D1-35_004621788hypothetical proteinATGACCACGACAGAACAGCTGAGTGCCTTGAGCTCAATCCTGAGTCAAAGCGGTTTGCACAGCCTGTTCCAGCCGATCATCTGTCTTTCCGAACGACGCATCCTCGGCTATGAGGCCCTGACCCGCGGCCCGTCGAACAGCCCGCTGCACTCCCCCATCGCGTTATTGTCCGTGGCGCGCCAGGCCGGACGCCTCAGCGAACTGGAGCTGGCCTGCCGACGCAGCGCTTGCCAGCGCTTCAATGAACAGAAGCTGCCGGGAAAACTGTTCCTCAACGTCTCGCCAGAATCGCTGCTCGAATCGGCCCACCAGACCGGCCGCACCCTGCAGCTGTTACAGGACTTCGGCATTCCGCCCAGCCAGGTGGTTATCGAACTGACCGAACAAACGCCTATCGATGACTTCCAGCTGCTGCAAACCGCCCTGCATCACTATCGAGCCATGGGTTTTTCCATTGCCCTGGATGACCTTGGTGCCGGGTATTCAAGCTTGCGGCTGTGGTCCGAATTGCGACCTGACTACGTGAAGATCGACCGGCATTTCATCGATGGCATTCACCAGGACGCACTCAAGCGTGAATTCGTCGGTTCCATTCTCAAGATCGCCCAGGCTTCACGGGCCCAGGTGATCGCCGAAGGGATCGAATTGCCGGAAGAGCTCGCCGTGTTGATCGAAATGGGCGTCGACCTGGTCCAGGGCTACTTGCTCGCCCGGCCCCAGGAGCATCCATCCCAGGACGCCAAGGCATTGATGCCCCGCCAGGACAGCGGCGTGGTGCCGCTGGGCGATGAGGTCAACGACCTCACTGCGCTGCTCAACGAACAACCGGCAGTCGCCCACGACACACCGACGGCAGCGGTACTGGAAGCGTTCCGGCGCCAGGCCAACCTCAATTCCCTGGCGGTGCTGGACGATCGCGACCAACCGTGCGGGATCGTCCATCGTCATTCGCTCTCGGATGCCCTGCTCAAGCCTTTCGCCACCGACCTGTTCGCTCGCAAGCCCATCAGCCGCCTGATGAGCGATGATTTCCTCGCGGTTGAACTGAGCCAGTCACTGCAACAAGTCAGCCGCCTCATCACCAGCCGCGCCCGCCAGCGCATCGAAGAAGACTTCATCATCACCCTCAACGGCGGCTACCTGGGCCTGGGCCGGGTGATCGACGTGCTCAAGCTCATCACCGAACTGAAGATCCAACAGGCGCGCTACGCCAACCCGCTGACTTTGCTGCCAGGCAACGTGCCCATCCAGCAGTGCCTTACACGCCTGCTGCAGCAGCGCCAGGAGTCGGTGATCTGCTACGTCGACATCGACAGTTTCAAACCCTTCAACGACATCTACGGCTACGGTCGCGGTGACGAAGTCCTGCTGTGCCTGGCCCAATGCCTGAACGAACGCATTGACCCCAGCCGCGATTTCGTCGGCCACATCGGCGGCGACGACTTCCTGCTGGTCCTCGGCCCGGACGACTGGCGCAAGCGCCTGACCCAACTGCTGAGCGACTTCCAGAACCACTGCCGCCGCTTCTACCGGCCCGAGCATCTGGAAGCCGGATGTTTTACCGCGTTGAACCGACAGGGCATACGACAGGACTTCGCCTTGCTGTCGTTGTCGATCGGGGTGGTGCATCTGCGCGCCGAGGCCTGTGCAGAGCTGGATGCCAGCCAGTTGGCGGAAATGGCTTCGCAGGCCAAGCACCATGCCAAGGAGATCGTCGGGGGGAGTTTGTATTTGATTAACGGGCTGGTTGAGCAGGCGCCCGTGGCGGAGCTGGGTTTCTCAGCGTGAMTTTEQLSALSSILSQSGLHSLFQPIICLSERRILGYEALTRGPSNSPLHSPIALLSVARQAGRLSELELACRRSACQRFNEQKLPGKLFLNVSPESLLESAHQTGRTLQLLQDFGIPPSQVVIELTEQTPIDDFQLLQTALHHYRAMGFSIALDDLGAGYSSLRLWSELRPDYVKIDRHFIDGIHQDALKREFVGSILKIAQASRAQVIAEGIELPEELAVLIEMGVDLVQGYLLARPQEHPSQDAKALMPRQDSGVVPLGDEVNDLTALLNEQPAVAHDTPTAAVLEAFRRQANLNSLAVLDDRDQPCGIVHRHSLSDALLKPFATDLFARKPISRLMSDDFLAVELSQSLQQVSRLITSRARQRIEEDFIITLNGGYLGLGRVIDVLKLITELKIQQARYANPLTLLPGNVPIQQCLTRLLQQRQESVICYVDIDSFKPFNDIYGYGRGDEVLLCLAQCLNERIDPSRDFVGHIGGDDFLLVLGPDDWRKRLTQLLSDFQNHCRRFYRPEHLEAGCFTALNRQGIRQDFALLSLSIGVVHLRAEACAELDASQLAEMASQAKHHAKEIVGGSLYLINGLVEQAPVAELGFSANANANANANA
D1-35_004632079prcCOG0793Tail-specific proteaseATGAAGCACTTTTTACCCAGCACTGCACTTGCCCTCTTCATTGGCCTTGGCGCTTCAGCGCTCTCGAACACTGCGTTCGCGGCCAACAGCTGGGACAAGCTTCAGCCCGATCGCGACGAGGTGATCGCCAGCCTCAATGTGGTTGAGTTGCTCAAGCGCCATCACTACAGCAAGCCGCCACTCGATGACGCGCGCTCGGTCATCATCTATGACAGCTACCTGAAGCTGCTTGATCCGTCGCGCAGTTATTTCCTGGCCAGCGACATCGCCGAATTCGACAAGTGGAAGACCCAGTTCGACGACTTCCTCAAGAGCGGCGACCTCAACGCCGGGTTCATTATCTACAAGCGCTACCTGGACCGCGTCAAGGCGCGCCTGGACTACGCCCTTGCCGAGTTGAACAAGGGCGTCGACAAGATCGACTTCAATGCCAAGGAAACCTTGCTGGTCGACCGCAAGGACGCCGCATGGCTCAAGAGCACCGCCGAACTCGACGACCTGTGGCGCAAACGCGTCAAGGACGAAGTGTTGCGTATGAAGATCGCCGGCAAGGATCCCAAGCAGATCCAGGAAACCCTGACCAAGCGCTACAAGAATCAACTCGCGCGCCTGGACCAGACCCGTGCCGAGGACGTCTTCCAGGCCTATATCAATACCTTCGCGATGTCCTACGATCCGCACACCAATTATCTGTCGCCGGATAACGCGGAAAACTTCGACATCAACATGAGCCTGTCCCTGGAAGGCATCGGCGCGGTACTGCAGAGCGATAACGATCAGGTCAAGATCGTGCGCCTGGTGCCGGCGGGCCCTGCCGACAAGACCAAGCAGGTCGCCCCGGCGGACAAGATCATCGGCGTGGCCCAGGGCAACAAGGAAATGGTCGACGTGGTCGGCTGGCGCCTGGACGAAGTGGTCAAGCTGATCCGCGGCCCGAAAGGTTCGGTGGTCCGCCTGGAAGTCATCCCGGCCAGCAATGCGCCGAACGACCAGACCAGCAAAGTCGTATCCATTACCCGTGAAGCAGTGAAGCTGGAAGAACAGGCCGCGAAAAAATCGGTCCTCCAGCTCAAGCAGGACGGCAAGGACTACAAGCTCGGCATCATCGAGATCCCGGCTTTCTATCTGGACTTCAAGGCTTTCCGCGCTGGGGATCCGAACTACAAGAGCACCACGCGCGACGTCAAGAAACTGCTCACCGAACTGCAGAAGGAAAAGGTCGACGGCGTGGTCATCGACTTGCGCAACAACGGCGGCGGCTCGTTGCAGGAAGCCACCGAACTGACCAGCCTGTTCATCGACAAAGGCCCGACCGTGCTCGTGCGTAACGCCGATGGTCGGGTCGATGTGCTCGAGGACGAAAACCCCGGCGCGTTCTACAAGGGACCAATGGCCCTGCTGGTCAATCGCCTGTCGGCCTCGGCCTCGGAGATTTTCGCCGGCGCCATGCAGGACTACCACCGCGCGCTGATCATCGGCGGCCAGACGTTCGGCAAAGGCACCGTGCAGACCATCCAGCCACTGAACCACGGCGAACTGAAACTGACCCTGGCGAAGTTCTACCGCGTTTCCGGGCAGAGCACCCAGCATCAGGGCGTGCTGCCCGACATCGATTACCCGTCGATCATCGACACCAAGGAAATCGGCGAGAGCGCCCTGCCCGAAGCCATGCCGTGGGACACCATCCGGCCTGCAATCAAGCCGGCCGTGGACCCGTTCAAGCCGTACCTGGCCCAGCTGAAATCCGAGCATGACGCCCGCACCGCCCAAGACGCGGAGTTTGTGTTCATTCGCGACAAGCTGGCCCTGGCGCAGAAGTTGATGATGGAAAAAACCGTCACCCTCAACGAAGCCGAGCGCCGCGCGCAGCATGCCGACATCGAAGCCAAGCAACTGGCCATGGAAAACCTGCGTCGCAAGGCCAAGGGCGAGGAGCCGCTCAAAGAGCTGAAGAAGGAAGACGAAGACCTGATCACCGAGCCGGAAAAAACCAAGCCGGAAGACGACGCCTATCTGAGCGAAACCGGTCGGATCCTGCTCGATTACCTCAAGCTCAATACGGCGGTCGCCAAACATTGAMKHFLPSTALALFIGLGASALSNTAFAANSWDKLQPDRDEVIASLNVVELLKRHHYSKPPLDDARSVIIYDSYLKLLDPSRSYFLASDIAEFDKWKTQFDDFLKSGDLNAGFIIYKRYLDRVKARLDYALAELNKGVDKIDFNAKETLLVDRKDAAWLKSTAELDDLWRKRVKDEVLRMKIAGKDPKQIQETLTKRYKNQLARLDQTRAEDVFQAYINTFAMSYDPHTNYLSPDNAENFDINMSLSLEGIGAVLQSDNDQVKIVRLVPAGPADKTKQVAPADKIIGVAQGNKEMVDVVGWRLDEVVKLIRGPKGSVVRLEVIPASNAPNDQTSKVVSITREAVKLEEQAAKKSVLQLKQDGKDYKLGIIEIPAFYLDFKAFRAGDPNYKSTTRDVKKLLTELQKEKVDGVVIDLRNNGGGSLQEATELTSLFIDKGPTVLVRNADGRVDVLEDENPGAFYKGPMALLVNRLSASASEIFAGAMQDYHRALIIGGQTFGKGTVQTIQPLNHGELKLTLAKFYRVSGQSTQHQGVLPDIDYPSIIDTKEIGESALPEAMPWDTIRPAIKPAVDPFKPYLAQLKSEHDARTAQDAEFVFIRDKLALAQKLMMEKTVTLNEAERRAQHADIEAKQLAMENLRRKAKGEEPLKELKKEDEDLITEPEKTKPEDDAYLSETGRILLDYLKLNTAVAKHPGPT0015095_632DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CHAPERONE|PROTEASES,PGPT0015095-prc|ctpA-K03797NANA
D1-35_00464963pikAIINarbonolide/10-deoxymethynolide synthase PikA2, modules 3 and 4GTGAAAGCATTGCAAGGCGTTGAAGGCCAAGTGGTATGGGCAGATGAGCCAAGTCCGGCGTGTGATGCCGGGCAAGTTCGCATCCGTGTAGCGGCCGCTGGTCTGAATCGGGCCGATTTGTTGCAGAAAGCCGGGCATTATCCACCGCCACCCGGCGCCAGCCAGGTGTTGGGGCTGGAATGTTCCGGGGTGATCAGTGAAGTCGGGCCGGGTTCCTCCTGGCAGGTCGGCGACCGGGTTTGCGCATTGCTGGCAGGCGGCGCAATGGCCGAGGAAGTGGTGGTCGATGGTCGGCATGTGTTGCCTGTGCCGGAAGGCCTGTCACTGGCCGAAGCCGCCGCGCTGCCTGAGGTCTACGCCACCGCGTGGCTGAATCTGTTCCAGCTGGCCGGGCTCAGCCCGGGAGAAAAAGTGCTGCTGCACGCCGGCGCCAGCGGCGTCGGTTCGGCCGCGATCCAGCTGTGCAAGGCGTTCGGCAACCCGTGCTGGGTCAGCGTCGGTTCGGCCGAGCGGCTGGCCTATTGCGAAGCGCTCGGTGCCCAGGGCGGTGTGGTGCGCACCGACGATATCAACAGCCTGAACGACTTCGGGCCGTTCGACGTGATCCTCGATCCGGTCGGCGCGAACTACGCCAGCCTCAACGTGAAACTTTTGTCAGTTGACGGGCGCTGGGTATTGATCGGACTCATGGGCGGGCGCACCACCGAACTCGATCTGGCCCAGGTGTTGGGCAAGCGTATCCAGTTGCTGGGCTCGACTTTGCGCAGTCGCAATGATCAGTCCAAGGCCGACCTGATCGCCGAGTTGGGGCAGCAGGTGTGGCCGTTGTTCGCCGACAAGCGCCTGAGCCCGCAATTGGCCAGGACGTTTGCGATCAGCGATGCCGAGGCGGCGTTTGCCGAGCTGGCGACCAATCAGGTGTCCGGGAAATTGGTGCTGGTGGTCGATGACAGCCTGAGCTGAMKALQGVEGQVVWADEPSPACDAGQVRIRVAAAGLNRADLLQKAGHYPPPPGASQVLGLECSGVISEVGPGSSWQVGDRVCALLAGGAMAEEVVVDGRHVLPVPEGLSLAEAAALPEVYATAWLNLFQLAGLSPGEKVLLHAGASGVGSAAIQLCKAFGNPCWVSVGSAERLAYCEALGAQGGVVRTDDINSLNDFGPFDVILDPVGANYASLNVKLLSVDGRWVLIGLMGGRTTELDLAQVLGKRIQLLGSTLRSRNDQSKADLIAELGQQVWPLFADKRLSPQLARTFAISDAEAAFAELATNQVSGKLVLVVDDSLSPGPT0013255_3602DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
D1-35_00465654COG0560putative phosphataseATGGCTCTGGCAATTTTTGATCTGGACGAAACCCTGATCCACGGCGACTGCGCCACCCTCTGGAGCGAGCAGATGGGGCGCCTGGGCTGGGTCGATCCCGAGTCGTTCATGCGCCGCAACAACGAACTGATGGACGCCTACAGCCACGGCAAGCTGCGCATGGAAGAGTACATGGACTTCAGCCTGGAACCGATGATCGGCCGCACGCCGGAAGAAATCGAACACCTGGTGGCACCGTGGGTGGAAGACTTCATCGAACCGATCATCTTCAGCGACGCCACCAAGGCCATCGCCGAGCACCGCAAGGCCGGTGATCGGATCCTGGTGATCTCGGCCTCGGGCACGCACCTGGTCAAGCCGATCGCCGAGCGCCTGGGCATCGATGAGATCCTCGCGATCGAGCTGGACGTCGCCCATGGTGTGTACAGCGGTAAGACCGTGGGCACCCTGACCTATCGCGAAGGCAAGATTGCCCGACTGCTGGATTGGCTGGACGCCGAGGAAGAAAACCTGGAAGGCGCGAGTTTCTATTCCGACTCGCGCAATGACCTGCCGTTGCTGCTCAAGGTCGATCACCCGCACGTCGTGAACCCGGACCCGGTGCTAAAGGCCCACGCCGAATCGGCCGGCTGGCCGATTCATACCTGGAAATAGMALAIFDLDETLIHGDCATLWSEQMGRLGWVDPESFMRRNNELMDAYSHGKLRMEEYMDFSLEPMIGRTPEEIEHLVAPWVEDFIEPIIFSDATKAIAEHRKAGDRILVISASGTHLVKPIAERLGIDEILAIELDVAHGVYSGKTVGTLTYREGKIARLLDWLDAEEENLEGASFYSDSRNDLPLLLKVDHPHVVNPDPVLKAHAESAGWPIHTWKNANANANANA
D1-35_00466990potA_2COG3842Spermidine/putrescine import ATP-binding protein PotAATGAGCTACGTTAGCGTCCAACATTTGCAGAAAGGCTACGCCGGCACGCCGGTGTTCAGCGACATCAACTGCGAAATCCACAAGGGCGAATTCGTCACCCTGCTCGGCCCTTCCGGGTGCGGCAAGTCCACGCTGCTGCGCTGCATTGCCGGCCTGACAGCGGTGGATGCGGGCCAGATTCTGCTGGACGGCCAGGACATCGTGCCGCTGAGTCCGCAGAAGCGCGGGATCGGCATGGTCTTCCAGAGCTATGCGCTGTTCCCCAACATGACCGTCGAGCAGAACGTCGCCTTCGGCCTGCGCATGCAAAAGGTCGACGCTTCGGACAGTCGCCAGCGTGTGCTGGAGATTCTGCGACTGGTGGAGCTGCATGACTTTGCCGCCCGCTACCCGCACCAACTGTCCGGCGGCCAATGCCAGCGCGTGGCCCTGGCCCGCTCCCTGGTCACCCGGCCGCGCCTGTTGCTGCTGGACGAGCCGCTGTCGGCGCTGGACGCGCGGATTCGCAAGCACTTGCGCGAACAGATCCGTCAGATCCAGCGGGAACTGGGCCTGACCACCATCTTTGTCACACACGATCAGGAGGAAGCCCTGACCATGTCTGACCGGATCTTCCTGATGAATCAGGGAAAGATCGTACAGAGCGGCGATGCCGAGACCCTTTACACTGCCCCCGTCGATGTCTTTGCCGCCGGCTTCATCGGCAACTACAACCTGCTCGACGCCGACGCCGCGAGCAAGCTGCTGCAACGCCCGGTGAACGGTCGCATCGCCATTCGCCCGGAAGCCATCGAGCTGAGTCGCAACGGCGAACCCGACGCGCTGATCCGCAGCCACAGCCTGCTGGGTAACGTGATCCGCTACCGGGTCGAGGCCCGCGGCGTGGAACTGGTGGTGGATGTGCTCAACCGCTCGGCTGCCGACCTGCATCCCGATGGTGCACGGCTGGCACTTTCCATCGATCCATCGGCGCTGTGTGAGGTAGCCTGAMSYVSVQHLQKGYAGTPVFSDINCEIHKGEFVTLLGPSGCGKSTLLRCIAGLTAVDAGQILLDGQDIVPLSPQKRGIGMVFQSYALFPNMTVEQNVAFGLRMQKVDASDSRQRVLEILRLVELHDFAARYPHQLSGGQCQRVALARSLVTRPRLLLLDEPLSALDARIRKHLREQIRQIQRELGLTTIFVTHDQEEALTMSDRIFLMNQGKIVQSGDAETLYTAPVDVFAAGFIGNYNLLDADAASKLLQRPVNGRIAIRPEAIELSRNGEPDALIRSHSLLGNVIRYRVEARGVELVVDVLNRSAADLHPDGARLALSIDPSALCEVAPGPT0007860_4050DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007860-ABC_SP_A|ydcT-K02052NANA
D1-35_00467801cysW_1COG4208Sulfate transport system permease protein CysWATGTCTCGCGCTGAATCGGGCCCGGCTGGGTTCTATCATCGAGCGGTGGTGTACCTGCTGTTCGCCATCCTGCTGCTACCCCTCGCCGGCACGCTCATCTACTCCATCGCCAGCAGTTGGTCGGCCACAGTGCTGCCCAGCGGCTTCACCTTCAAGTGGTACTTGCAGCTGTGGAGCGACCCGCGCTTTCTACACGCCTTCGGCCAATCGCTGATTGTCTGCGTGGGCGCGCTGGTGCTCTCGGTGGTGCTGATCCTGCCGCTGCTGTTCGTGGTGCATTACCACTTCCCGAAACTCGACGCGCTGATGAACATCCTCATCCTGCTGCCCTTCGCGGTGCCGCCGGTGGTGTCTTCGGTGGGGTTGTTGCAGCTCTATGGCTCCGGGCCGCTGGCGATGGTCGGCACACCGTGGATCCTGATTGGCTGCTACTTCACAGTCGCCTTGCCGTTCATGTACCGGGCGATCACCAACAACCTGCAAGCGATCAACCTGCGCGACCTGATGGACGCCGCCCAACTGCTCGGCGCCAGCACTTTCCAGGCCGCGTTGCTGGTGGTGCTGCCGAACCTGCGCAAGGGCCTGATGGTGGCGCTACTGCTGTCCTTCTCGTTCCTGTTCGGCGAGTTCGTGTTTGCCAACATCCTCGTCGGCACCCGCTATGAAACCCTGCAGGTGTACCTGAACAACATGCGCAACAGCAGCGGCCATTTCACCAGTGCGCTGGTGATTTCCTACTTCTTCTTCGTACTGGTCCTGACCTGGGCGGCCAACATCTTGAACAAGGACAAAAGCCAATGAMSRAESGPAGFYHRAVVYLLFAILLLPLAGTLIYSIASSWSATVLPSGFTFKWYLQLWSDPRFLHAFGQSLIVCVGALVLSVVLILPLLFVVHYHFPKLDALMNILILLPFAVPPVVSSVGLLQLYGSGPLAMVGTPWILIGCYFTVALPFMYRAITNNLQAINLRDLMDAAQLLGASTFQAALLVVLPNLRKGLMVALLLSFSFLFGEFVFANILVGTRYETLQVYLNNMRNSSGHFTSALVISYFFFVLVLTWAANILNKDKSQPGPT0007845_3161DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007845-ABC_SP_P|ydcV-K02053NANA
D1-35_00468846hypothetical proteinGTGAGTGCCATGACGCGCGGCAAATGGCTGGCAGTGTTGTGCCTGGTGCCCTTCGCAATTTTTTTCATTGTGTTCCAGGTCGCCCCGCTGCTCTGGGTGCTGGTCAACAGCCTGGAATCGGAAGAGTTCGGCTGGGGCCTGGCCAACTTCAGCAAGATCTTCAGCTCGAAATTCTACCGACAGGCGATCCAGCACAGCCTGGAAATCAGTTTCTGGTCCAGCGTGTTCGGCATCATCATCGCCGTGCTCGGCAGCTACTCCCTGCGCCGCGTCGATTCGCGGCTGCGCAATTTCGTCAACGCCTTCGCCAACATGACCAGCAACTTCGCCGGCGTGCCCCTGGCCTTCGCGTTCATCATCCTGCTGGGGTTCAACGGCAGCATCACGATCATGCTCAAGCAGGCGGGGATCATCGAGGATTTCAACCTGTATTCGAAAACCGGGCTGATCATTCTCTACACCTATTTCCAGATTCCCCTGGGCGTGCTGCTGCTTTACCCGGCCTTCGACGCGCTGCGCGAAGACTGGCGCGAGTCGGCGTCCCTGTTGGGCGCCAGCGGCTGGCAGTTCTGGCGGCACATCGGCCTGCCGGTGCTGACCCCGGCGCTGCTCGGCACGTTCGTGATCCTGCTGGCCAATGCCCTCGGCGCCTATGCCACGGTCTATGCGCTGACCACCGGTAATTTCAACGTCCTGCCAATTCGCATCGCGGCGATGGTTTCCGGCGATATTTCCCTCGACCCGAACATGGCCAGCGCCCTGGCCGTGGTGCTGGTGGCGTTGATGACCCTGGTGACCGTCATCCATCAGTTGCTGCTCAAGAGGAGCTACCATGTCTCGCGCTGAMSAMTRGKWLAVLCLVPFAIFFIVFQVAPLLWVLVNSLESEEFGWGLANFSKIFSSKFYRQAIQHSLEISFWSSVFGIIIAVLGSYSLRRVDSRLRNFVNAFANMTSNFAGVPLAFAFIILLGFNGSITIMLKQAGIIEDFNLYSKTGLIILYTYFQIPLGVLLLYPAFDALREDWRESASLLGASGWQFWRHIGLPVLTPALLGTFVILLANALGAYATVYALTTGNFNVLPIRIAAMVSGDISLDPNMASALAVVLVALMTLVTVIHQLLLKRSYHVSRPGPT0007850_3273DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007850-ABC_SP_P1|ydcU-K02054NANA
D1-35_00469807hypothetical proteinATGAAGCACAACGTCATCCTGGTGGTGCTCGACGGCCTCAACTACGAAGTCGCCCGGCATGCCATGGGACATTTGCAGGCGTATGTCGGCGCAGGACGCGCGGCGCTCTACACACTGGAATGTGAACTACCCGCCTTGTCCCGCCCACTCTACGAATGCATCCTCACCGGCGTCGTGCCCATCGACAGCGGGATCGTGCACAACAATGTCTCGCGCCTGTCGAACCAGCGCAGCATTTTCCATTACGCCACCGACGCCGGCCTGAGTACGGCGGCTGCGGCCTATCACTGGGTCAGCGAGCTGTACAACGTGTCACCCTTCGTCGCCGGTCGTGATCGCCATACCGAAAACCCCGACCTGCCGATTCAATACGGACATTTCTACTGGAATGACCACTACCCCGATTCACATCTGTTCGCCGACGCCGAACACCTGCGCCAGCGCTACCTGCCGAATTTCCTGCTGGTGCACCCGATGAACATCGACGATGCCGGTCACAAGCACGGCCTCGACACCCCGCAGTACCGCAACAGCGCCCGCTCGGCGGACATCAACCTGGCGGTTTATCTGCAAGCCTGGCTCGACGCCGGTTATCAGGTGCTGGTGACTTCCGACCATGGCATGAACAACGACCGCTCCCACAACGGCCTGCTACCGGAAGAACGGGAAGTGCCGCTGTTTGTCCTCGGCGATGGCTTCAGCCTTGACGCCAACGCGGCCCCTCGGCAAACCGAACTGTGCGGCACCATTTGCCAGCTGCTCGGGGTTGCCCACGACAAACCTTATTGCCAGGAGTTGCTCAAGTGAMKHNVILVVLDGLNYEVARHAMGHLQAYVGAGRAALYTLECELPALSRPLYECILTGVVPIDSGIVHNNVSRLSNQRSIFHYATDAGLSTAAAAYHWVSELYNVSPFVAGRDRHTENPDLPIQYGHFYWNDHYPDSHLFADAEHLRQRYLPNFLLVHPMNIDDAGHKHGLDTPQYRNSARSADINLAVYLQAWLDAGYQVLVTSDHGMNNDRSHNGLLPEEREVPLFVLGDGFSLDANAAPRQTELCGTICQLLGVAHDKPYCQELLKNANANANANA
D1-35_004701068hypothetical proteinATGAAACAGCTTTTCCTGGCATCACTGTTAGGCTCGACCATTGCCATGTGCACCGCCGCCATGGCCGCTGATACCGATCTGAAAACATTGGAAGCCGCTGCGAAAGCGGAAGGCGCCGTCAACAGCGTCGGCATGCCCGATGACTGGGCGAACTGGAAAGGCACCTGGGACGACCTGGCCAGACTCTATGGCTTGAAACACATCGACACCGACATGAGCTCGGCCCAGGAAATCGCCAAGTTCGCCGCCGAGAAGGACAACGCCAGCGCCGACATCGGCGACGTCGGTGCCGCCTTCGGCCCGATCGCGGTCAAGCAAGGCGTGGTCCAGCCCTACAAACCAAGCACCTGGGAACAGATCCCGGACTGGGCCAAGGACAAGGACGGCAACTGGGCCCTGGCCTACACCGGCACCATCGCGTTCATCGTCAACAAGAAACTGCTGCACGGCTCCGAAGTGCCGACCAAATGGGCCGACCTGAAGACCGGCAAGTACAAAGTCTCCATCGGTGACGTGAGCACCGCCGCCCAGGCCGCCAACGGCGTGCTGGCTGCGGCCCTGGCCAACGGTGGCGATGAAAAGAACATTAAACCGGCCCTGTTGTTGTTCGCCGATATCGCCAAGCAAGGCCGCCTGTCCATGGCCAACCCGACCATCGCCACGATGGAAAAAGGTGAAGTCGAAGTCGGCGTGGTCTGGGACTTCAACGGCCTGAGCTACAAGGCCAAGATGGCCAGCCCGGATGACTACGTCGTGCTGATTCCGTCCGACGGCTCGGTGATCTCCGGCTACACCACCATCATCAACAAATACGCCAAGCACCCGAACGCCGCCAAGCTGACCCGAGAATACATCTTCAGCGACGCCGGCCAGATCAACCTGGCCAAGGGCAACGCCCGGCCGATCCGCGCCGAGCACCTGAAACTGCCGGAAGAAGTCCAGGCCAAGCTGCTGCCGAACGAGCAGTACAAAGGCGTGACGCCGATCAAGGATGCCGACGCGTGGGAGAAGACCTCCAAGGCGCTGCCGCAGCAGTGGAATGAAGAAGTCATCGTCGAGATGAAGTGAMKQLFLASLLGSTIAMCTAAMAADTDLKTLEAAAKAEGAVNSVGMPDDWANWKGTWDDLARLYGLKHIDTDMSSAQEIAKFAAEKDNASADIGDVGAAFGPIAVKQGVVQPYKPSTWEQIPDWAKDKDGNWALAYTGTIAFIVNKKLLHGSEVPTKWADLKTGKYKVSIGDVSTAAQAANGVLAAALANGGDEKNIKPALLLFADIAKQGRLSMANPTIATMEKGEVEVGVVWDFNGLSYKAKMASPDDYVVLIPSDGSVISGYTTIINKYAKHPNAAKLTREYIFSDAGQINLAKGNARPIRAEHLKLPEEVQAKLLPNEQYKGVTPIKDADAWEKTSKALPQQWNEEVIVEMKPGPT0007855_2942DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007855-ABC_SP_S|ydcS-K02055NANA
D1-35_00471726phnRCOG2188Putative transcriptional regulator of 2-aminoethylphosphonate degradation operonsATGCGCGTTGAGACAACCAAAGCGGTGACAACCATCGGGCAGGTCCTGCAGGAGCAGCTCGATCACGGCTTGCTGGCGCCTGGTAGCAAGTTGCCGGCCGAGCGCAAGCTCAGCGAGCTGTTCGGCACCACCCGGATTACCGTGCGCGAGGCGCTGTTGCAGCTCGAAGCCCAGGGGCAGATCTACCGGGAAGAGCGCCGGGGTTGGTTCGTGTCGCCACCACGGCTGGCCTACAACCTGATGCAGCGCAGTCATTTCCACGCGATGGTCAGTGCCCAGGGACGAGTGCCGTCGACCCAGGTGATCTCGGCTCGACTGCAACCCGCGTCGGCGGCGGTCTGTGCCTGGCTGCAGTTGCCGGCGCTGTCCAGCGTCATCCAGATCTGCCGCACCCGGCGCATCGACGAACGCCTGGTGCTGTACGTCGAGCACTACCTGAATCCCGCCTACTTCCCGGACATCCTCGAATTTGATCTCAACCAGTCGATGACCGAGCTGTACGCTCGCCATTACGACCTGCGCTACGGCCGGGTGAAATTCGAAATCGTGCCGACATCACTACAGCCGGAAGCCGCGGCGGCGCTGAAAGTGTCGGTCGGCAGCCCCGGCCTGCGGATTGCACGGGTCAACTACGACCAGCATCAGCGGCTGATCGATTGCGACCTGGAGTTCTGGCGCCACGATGCGATCCATGTCGGGGTGGACGTGCCGGAACAGTCGGCCTGAMRVETTKAVTTIGQVLQEQLDHGLLAPGSKLPAERKLSELFGTTRITVREALLQLEAQGQIYREERRGWFVSPPRLAYNLMQRSHFHAMVSAQGRVPSTQVISARLQPASAAVCAWLQLPALSSVIQICRTRRIDERLVLYVEHYLNPAYFPDILEFDLNQSMTELYARHYDLRYGRVKFEIVPTSLQPEAAAALKVSVGSPGLRIARVNYDQHQRLIDCDLEFWRHDAIHVGVDVPEQSANANANANANA
D1-35_00472183hypothetical proteinATGATCTCCATGACCTCGTTCAACGCCATGCTGGTGCCCATCATCGCCGGCATGATCCTGCTCGCCATCGGCTTCAATTTCCGCGACAAGAACGTCGGGGTGTTTGCCATGTGGATCGGCATGTTGCTGATTCTCGTCACGGTACTGTTCAGGATCCTGGCCAAGCTCAACGACGTTTCCTGAMISMTSFNAMLVPIIAGMILLAIGFNFRDKNVGVFAMWIGMLLILVTVLFRILAKLNDVSNANANANANA
D1-35_004731290apeBCOG1362putative M18 family aminopeptidase 2ATGCGTGCACAGTTGAACCAGGGCCTGATCGACTTCCTCAAGGCCTCCCCTACCCCGTTCCATGCCACCGCCAGCCTTGCCCAGCGCCTGGAAGCGGCGGGTTACCAGCGTCTTGATGAGCGCGAAACCTGGGCTACCGAGGCCAATGGTCGTTATTACGTCACGCGCAACGATTCCTCGATCATTGCCTTCAAACTGGGCCGCAACTCACCGCTGCACGACGGCATCCGCCTGGTTGGCGCCCACACCGACAGCCCCTGCCTGCGGGTCAAGCCGCAGCCGGAACTGCAACGCCACGGGTTCTGGCAACTGGGCGTGGAAGTCTACGGCGGCGCACTGCTGGCGCCGTGGTTCGACCGCGACCTGTCCCTGGCCGGGCGGGTGACCTTCCGCCGCGACGGCAAGGTCGAGAGCCAGTTGATCGATTTCAAGGCGCCGATCGCCACGATCCCGAACCTGGCTATCCACCTCAACCGTGAAGCCAACCAGGGCTGGGCGATCAACCCGCAGAACGAACTGCCGCCGATCCTCGCCCAATTCGCCGGTGACGAACGCGTCGATTTCCGTGCCGTGCTCACCGACCAGCTGGCGCGGGAACATGGCTTGAACGCCGACGTGGTGCTCGACTACGAGTTGAGCTTCTACGACACCCAAAGCGCAGCGGTCATCGGTTTGCACGGCGACTTCATCACCGGCGCGCGCCTGGACAACCTGCTGTCGTGTTACGCCGGCCTGCAAGCCTTGCTGACCGCCGACACCGAAGAAACCTGCGTGCTGGTGTGCAACGACCACGAAGAAGTCGGTTCCACCTCGGCGTGTGGCGCCGACGGTCCGATGCTCGAACAGACCCTGCGCCGCCTGCTGCCTGAAGGTGAAGAGTTCGTACGCACGATTCAGAAATCCCTGCTGGTTTCAGCGGACAATGCCCACGGCGTACACCCCAACTATGCCGACAAGCACGACGCCAACCACGGCCCCAAGCTCAACGCCGGCCCGGTGATCAAGGTCAACAGCAACCAGCGCTACGCCACCAACAGCGAAACCGCCGGGTTCTTCCGCCATCTGTGCATGGCCGAGGAAGTGCCGGTGCAGAGCTTCGTGGTGCGCAGCGACATGGGTTGCGGCTCGACCATCGGCCCGATCACCGCCAGCCAGCTGGGCGTACGCACGGTCGACATCGGCCTGCCAACCTTCGCCATGCATTCGATCCGCGAGCTCTGCGGCAGCCACGACCTGGCGCACCTGGTGAAAGTGCTGAGCGCTTTCTACGCGTCTCGCGAATTGCCGTAAMRAQLNQGLIDFLKASPTPFHATASLAQRLEAAGYQRLDERETWATEANGRYYVTRNDSSIIAFKLGRNSPLHDGIRLVGAHTDSPCLRVKPQPELQRHGFWQLGVEVYGGALLAPWFDRDLSLAGRVTFRRDGKVESQLIDFKAPIATIPNLAIHLNREANQGWAINPQNELPPILAQFAGDERVDFRAVLTDQLAREHGLNADVVLDYELSFYDTQSAAVIGLHGDFITGARLDNLLSCYAGLQALLTADTEETCVLVCNDHEEVGSTSACGADGPMLEQTLRRLLPEGEEFVRTIQKSLLVSADNAHGVHPNYADKHDANHGPKLNAGPVIKVNSNQRYATNSETAGFFRHLCMAEEVPVQSFVVRSDMGCGSTIGPITASQLGVRTVDIGLPTFAMHSIRELCGSHDLAHLVKVLSAFYASRELPNANANANANA
D1-35_00474636rluACOG0564Dual-specificity RNA pseudouridine synthase RluAATGCCCCTGTCCAACATCCGCATCATCCACCAGGACGCCGCCGTGCTGGTGGTCGACAAGCCGACCCTGCTGCTCTCCGTGCCTGGCCGGGCGGACGACAACAAAGATTGCCTGATCACCCGCTTGCAGGAAAACGGTTATCCGGAAGCGCGAATCGTGCACCGGCTGGATTGGGAAACGTCCGGCATTATCCTGCTGGCCCGTGACCCGGACACTCACCGCGAACTGTCCCGGCAATTTCATGATCGAGAAACCGAAAAAGCCTACACGGCATTGTGCTGGGGCCAACCGGAGCTGGACAGCGGCAGCATCGACCTGCCCTTGCGCTACGACCCGCCGACCAAGCCCCGCCATGTGGTCGATCACGAACAGGGCAAGCATGCCTTGACGTTCTGGCGTGTACTGGAGCGTTGCGGTGATTGGTGTCGGGTCGAATTGACGCCGATCACCGGGCGCTCGCATCAATTGCGCGTGCACATGCTCTCTATCGGCCATCCGCTGCTGGGCGACGGGCTCTATGCCCACCCGCAAGCCCTGGCCGCCTGGCCACGGCTGTGCCTGCACGCGAGCATGCTCAGCTTCACCCACCCGCAAAGCGGCGAGCGCCTGCGCTTCGAGTGCCCTGCACCGTTCTGAMPLSNIRIIHQDAAVLVVDKPTLLLSVPGRADDNKDCLITRLQENGYPEARIVHRLDWETSGIILLARDPDTHRELSRQFHDRETEKAYTALCWGQPELDSGSIDLPLRYDPPTKPRHVVDHEQGKHALTFWRVLERCGDWCRVELTPITGRSHQLRVHMLSIGHPLLGDGLYAHPQALAAWPRLCLHASMLSFTHPQSGERLRFECPAPFNANANANANA
D1-35_00475255minECOG0851Cell division topological specificity factorATGAACCTTTTTGACTTCTTTCGTGCCAACAAAAAGCCAAGTACCGCCTCGGTCGCGAAAGAGCGTCTACAGATCATCGTGGCGCACGAACGCGGCCAACGCAGTACCCCGGACTACCTGCCTGCCTTGCAGAAGGAACTGGTGGAAGTGATCCGCAAGTACGTCAATATCGGCAACGATGACGTGCATGTCGCGCTGGAAAGCCAGGGCAGCTGCTCGATCCTGGAACTCAATATCACCCTGCCGGATCGCTGAMNLFDFFRANKKPSTASVAKERLQIIVAHERGQRSTPDYLPALQKELVEVIRKYVNIGNDDVHVALESQGSCSILELNITLPDRNANANANANA
D1-35_00476813minDCOG2894Septum site-determining protein MinDTTGGCCAAGATTCTCGTGGTTACATCCGGCAAGGGTGGTGTGGGTAAGACCACCACCAGCGCCGCTATCGGTACCGGCCTCGCCTTGCGCGGCCATAAAACAGTCATCGTCGACTTCGACGTCGGCCTGCGTAACCTCGACCTGATCATGGGTTGCGAGCGTCGCGTGGTCTATGACTTCGTCAACGTGGTCAATGGCGAAGCGAACCTGCAGCAGGCCCTGATCAAGGACAAGCGCCTTGAGAACCTCTACGTACTGGCCGCCAGCCAGACCCGCGACAAAGACGCGCTGACCCAGGAAGGCGTGGAAAAAGTCCTGATGCAACTCAAGGAAGACTTCGAATTCGTGGTCTGCGACTCCCCGGCCGGTATCGAGAAAGGTGCCCACCTGGCCATGTACTTCGCTGACGAAGCGATCGTCGTGACCAACCCGGAAGTCTCGTCGGTACGCGACTCCGATCGCATGCTCGGCCTGCTGGCAAGCAAATCCCGGCGCGCCGAGAACGGCGAGGAGCCGATCAAGGAGCACCTGCTGCTGACCCGCTACAACCCGCAACGCGTCAGCGACGGCGAAATGCTCGGCGTCGAAGACGTCAAGGAAATCCTCGCGGTGACCCTGCTGGGCGTGATCCCGGAATCCCAGGCGGTACTCAAGGCTTCGAACTCCGGCGTGCCGGTGATCCTTGACGACCAGAGCGACGCCGGCCAGGCGTACAGCGATGCGGTCGATCGTCTGCTGGGCAAAACCGTCGAGCATCGATTCCTCGACGTCACGAAGAAAGGTTTCTTCGAGCGCCTGTTTGGAGGTAGGTAAMAKILVVTSGKGGVGKTTTSAAIGTGLALRGHKTVIVDFDVGLRNLDLIMGCERRVVYDFVNVVNGEANLQQALIKDKRLENLYVLAASQTRDKDALTQEGVEKVLMQLKEDFEFVVCDSPAGIEKGAHLAMYFADEAIVVTNPEVSSVRDSDRMLGLLASKSRRAENGEEPIKEHLLLTRYNPQRVSDGEMLGVEDVKEILAVTLLGVIPESQAVLKASNSGVPVILDDQSDAGQAYSDAVDRLLGKTVEHRFLDVTKKGFFERLFGGRNANANANANA
D1-35_00477735minCCOG0850Septum site-determining protein MinCATGAGCCAAACCGAACCGCTAGACCAAGATCCCGTGTTCCAGCTGAAGGGCAGCATGCTCGCCATTACGGTGCTGGAGCTGGCCCGTAACGACCTGGAAGGCCTTGACCGGCAACTCGCGGCGAAAGTCGCCCAGGCGCCGAATTTTTTCAGCAATGCCCCGCTGGTACTGGCGCTGGACAAGCTGCCGGCCGGTGAGGGCTCGGTCGACTTGCCGGGGCTGATGCGCGTTTGCCGCCAGCATGGGCTACGCACCCTGGCGATCCGCGCCAGCCGCATCGAAGACATCGCCGCCGCCATCGCCGTGGACATTCCGGTGCTGCCACCCTCCGGCGCCCGTGAACGTGTACTGGAGCTGAGCCCGGCGGAACCGAAAAAACCGGAAAAACCGCCGGAGCCGACCATCAAGCCGACCCGTGTGATCACCTCGCCGGTGCGCGGCGGGCAGCAGATCTACGCCCAGGGCGGCGACCTGGTGGTGGTGTCCTCGGTCAGCCCGGGTGCGGAACTTCTCGCCGATGGCAACATCCATGTATACGGCCCGATGCGCGGCCGTGCGCTGGCCGGTGTCAAGGGTGACACCAAGGCAAGGATCTTCTGTCAGCAGTTGAGCGCTGAACTGCTCTCTATCGCCGGGCAATACAAGGTTTCCGAGGACTTGCGGCGCGACCCGTTATGGGGCGCCGGGGTCCAGGTCAGCCTGTCGGGCGACGTGTTGAACATCATTCGGCTTTAAMSQTEPLDQDPVFQLKGSMLAITVLELARNDLEGLDRQLAAKVAQAPNFFSNAPLVLALDKLPAGEGSVDLPGLMRVCRQHGLRTLAIRASRIEDIAAAIAVDIPVLPPSGARERVLELSPAEPKKPEKPPEPTIKPTRVITSPVRGGQQIYAQGGDLVVVSSVSPGAELLADGNIHVYGPMRGRALAGVKGDTKARIFCQQLSAELLSIAGQYKVSEDLRRDPLWGAGVQVSLSGDVLNIIRLNANANANANA
D1-35_00478933lpxLCOG1560Lipid A biosynthesis lauroyltransferaseATGGATCGCCCGCGTTTTCGAGCTGCTTTTTTTCATCCGCGTTTCTGGCTGCTGTGGTGCGGCCTGGGGCTGTTGTGGCTGATCATCCAGTTGCCTTATCCGCTGCTGTTGCGGATCGGCCGCGCCTTGGGAACATTGATGTACCGGGCGGCCGGCGACCGACGGCGCATCGCCAGTCGCAATCTCGAGCTGTGTTTTCCCGAGAAATCCGCCGCTGAGCGCAAGCGTCTGCTCAAGGAAAACTTCGCCTCCACCGGCATCGCCTTCTTCGAAATGGCCATGAGCTGGTGGTGGTCGCGTTCGCGGCTGGCGAAGCTGGCCCATGTCGAAGGCCTGGAGCATCTCAAGCAGGCCCAGCGCGACGGCAAGGGCGTGATCCTGATGGCGCTGCATTTCACCACGCTGGAAATCGGCGCGGCGCTGCTCGGCCAGCAGCACACCATCGACGGCATGTATCGCGAGCACAAGAACCCGTTGTTCGACTATATCCAGCGCCGTGGCCGCGAACGGCATAACCTCGATTCCCTGGCGGTAGAACGTGATGACGTGCGCGGCATGCTCAAGTTGCTGCGCGCCGGCCGGGCAATCTGGTACGCACCGGATCAGGACTACGGCGCCAAGCAAAGCGTGTTCGTGCCGCTGTTCGGCATCCAGGCGGCCACGGTCACCGCGACCAGCAAATTCGCGCGCCTGGGCAAGGCACTGGTCGTGCCGTTCGTTCAGGAGCGCCTGGCCGATGGCAGCGGCTATCGTCTGGTGATCCAGGCGCCGCTGGAGGATTTTCCCGGCGAGACCGAAGAGGCTGATTGCCTGCGCATCAACCAATGGGTCGAGCGCTCGGTAAGCCAGTGTCCCGAGCAATACCTCTGGGCCCACCGGCGCTTCAAGACCCGGCCGCCCGGCGAGCCGAAGCTGTACGATAAACGCGGTTGAMDRPRFRAAFFHPRFWLLWCGLGLLWLIIQLPYPLLLRIGRALGTLMYRAAGDRRRIASRNLELCFPEKSAAERKRLLKENFASTGIAFFEMAMSWWWSRSRLAKLAHVEGLEHLKQAQRDGKGVILMALHFTTLEIGAALLGQQHTIDGMYREHKNPLFDYIQRRGRERHNLDSLAVERDDVRGMLKLLRAGRAIWYAPDQDYGAKQSVFVPLFGIQAATVTATSKFARLGKALVVPFVQERLADGSGYRLVIQAPLEDFPGETEEADCLRINQWVERSVSQCPEQYLWAHRRFKTRPPGEPKLYDKRGPGPT0013315_908DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LIPID_A_METABOLISM,PGPT0013315-lpxL|htrB-K02517NANA
D1-35_004791188hypothetical proteinATGACCCCAGCTGAACCGGTAACAGGTTTGATTCTTTCCGGCGGCGGGGCTCGAGCGGCGTATCAGGTCGGTGTATTGGCAGCGATTGCCGAGTTGCTGCCGGACGGCGGTCGGAACCCGTTTCCGGTGATTGTCGGTACCTCTGCCGGTGCGATCAATGCGGTCAGCCTGGCGAGCGGAGCGATGGACTTCAAGACCGCCATCGAACGCCTGACGGCCTTCTGGCAAACCGTGCGCAGCCACCAGGTGATGCGCAGCGACTGGCGCGGGGTCATGGGCCAGGCGACGCGGTTCATCGGCCATAGCCTGCTTGGCCTGGGAGCCAAGCTGCCGGTGGCGCTGATCGACAGTTCGCCACTGCGCGAACTGCTCCAGGCGCAATTCCATGGCGCGGGTATCGAGCAGGCGATTGCCGAGCACCAATTGCGCGCGGTGGCGGTCACTGCGTTTGGCTACGAATCCGGCCAGGCGGTGACCTTCTATCAGGGCCGCGGCACCATCGACGCCTGGCTGCGTCATCGGCGTATCGGTGTGCCCACGCAGCTGTCGGTGGAACACCTGCTCGCCAGCTCGGCGATCCCTTTGCTGTTCGCGCCGGTGAAGATCGGCCCGCAATATTTCGGCGACGGCGCGGTGCGCCAATCGGCTCCCATCAGCCCGGCCCTGCACCTGGGGGCCAACCGCGTGCTGGTCATCGGCGTCAGCGGCAATCCGCGCGGCGTGTCGGCCCAGGATCCACTGGAACGCAGCTACACCGGCCTGCAGCCGACCCTGGCGCAGATCGGCGGGCACATGCTCAACAGCACGTTCATCGACAGCCTGGAAAGCGACATCGAGCTGCTTGAGCGCCTGAACAGGTTCAGCCACATGCTGCCAGACGATGTGCCGGCCCACGCCCTCGGCGCGGCACCGGTGGAGGTGCTGGTGATTTCCCCAAGCCAGCCGATCGACGAAATTGCCGCGCGCCATCGCCAGGAGCTGCCCCGAGCGTTGCGGGTATTTTTGCGTGGGCCGGGTGCAACCAAGACCAGCGGTGCGAGTGTGTTGAGTTATCTGTTATTCGAGAAAGGTTATTGCAGCGAACTGATCGAGCTGGGACGACAGGATGCCCTGGCGCAACGCGAAGCCTTGATCCGGTTCCTGAGGTTGGCCCAGCCCGGGGTTGCGCTCGGCCTCGCGGCGAATTGAMTPAEPVTGLILSGGGARAAYQVGVLAAIAELLPDGGRNPFPVIVGTSAGAINAVSLASGAMDFKTAIERLTAFWQTVRSHQVMRSDWRGVMGQATRFIGHSLLGLGAKLPVALIDSSPLRELLQAQFHGAGIEQAIAEHQLRAVAVTAFGYESGQAVTFYQGRGTIDAWLRHRRIGVPTQLSVEHLLASSAIPLLFAPVKIGPQYFGDGAVRQSAPISPALHLGANRVLVIGVSGNPRGVSAQDPLERSYTGLQPTLAQIGGHMLNSTFIDSLESDIELLERLNRFSHMLPDDVPAHALGAAPVEVLVISPSQPIDEIAARHRQELPRALRVFLRGPGATKTSGASVLSYLLFEKGYCSELIELGRQDALAQREALIRFLRLAQPGVALGLAANNANANANANA
D1-35_00480276hypothetical proteinATGAAAAACCTCATCCAACTCACCCTCGCCGCCACCCTCACCTGCGCCCTGCCCGCCTGGGCCACTTGCACGCCCGAGGAAGCGACCATCAAGCGCGAGCAACTGGCGGATAAGGTGACCAAGCTCACCGAACAGGATCCGGCCAAGGCCAAGGAAATGAATGAAGAATTGCAGGCGATGAACCTGGAAACGTCCAGCAAGGACGTACCGGACAAATGCCAACTGATCGATAAACGCCTGAAGGAGCTTGAAGAGGCGCAGAACAAGGCCGAGTAAMKNLIQLTLAATLTCALPAWATCTPEEATIKREQLADKVTKLTEQDPAKAKEMNEELQAMNLETSSKDVPDKCQLIDKRLKELEEAQNKAENANANANANA
D1-35_00481732hypothetical proteinATGAACATCGAGTCCCATCAGGTCGTCTCGCGGGAAGCCTGGCTCGCCGCCCGCCGCGAACACCTCGCCCACGAGAAAGCGTTCACCCGCGAACGGGACAAACTCAGCGCCGAACGCCGCGCGCTGCCCTGGGTAAAAATCGAAAAACCCTACCGCTTCCAAGGCCCCCACGGCGAACTGAGCCTGGCCGACCTGTTCGGCGGCCGCAGCCAACTGATCATCTACCACTTCATGTTCGGCCCCGGCTGGACCGAGGGCTGCCAAGGCTGCTCGTTCCTGTCCGACCACATCGACGGCGCCAACCAACACCTGGCCCACCACGATGTCGCCGTCGTGGCCATCTCCCACGCCCCGTTCGCCGAATTCCAGCCGTTCAAACGGCGCATGGGCTGGGCCTTCGACTGGGTCTCATCGGCAGGCTGCGACTTCAACTACGATTTCGGCGTCAGCTTCAACGCACAAGACAGCGCCGCCGGAACAGCCACCTACAACTACGAAAAAACCGACAGCGCCGAAAGCGAACTCCCAGGCCTGAGCGTCTTCTATCGCAACGAAGCCGGCGACATCTTCCACACCTACTCCACCTACGCCCGCGGCCTCGACATCCTGGTCGGCACCTACAACTACCTCGACCTCACGCCAAAGGGCCGCAACGAAGTCGAAATCATGGACTGGGTGCGCCATCACGATAAATACCAGGAAGCCAAGCCCCACAGCTGCTGCCATGGCTGAMNIESHQVVSREAWLAARREHLAHEKAFTRERDKLSAERRALPWVKIEKPYRFQGPHGELSLADLFGGRSQLIIYHFMFGPGWTEGCQGCSFLSDHIDGANQHLAHHDVAVVAISHAPFAEFQPFKRRMGWAFDWVSSAGCDFNYDFGVSFNAQDSAAGTATYNYEKTDSAESELPGLSVFYRNEAGDIFHTYSTYARGLDILVGTYNYLDLTPKGRNEVEIMDWVRHHDKYQEAKPHSCCHGNANANANANA
D1-35_00482393hypothetical proteinATGACGACTTATAACTGGGACTTGATCGAACGGTTGCTGCACGAAGTGCAAAATGGCGCCGGCCACAGTTTTACCCCTCGGCCCTATGCGGAGCAGTACGCGGCGGAAAAGGCGGCTCAGGGCGAGGACATCGAGAACCTCGATCATCTGAAAGCGGTTGCCGGAGAGTATGAAAAACTGCTGCTGGAGCGGGGTTACATCGAACCGCGGCCAGAGGAAGAGGGCGGCAATGGCGAGAATTTTGTGCTGACGCCCCGTGGCTCGCGGTTGTTGAGCCTGATCGACAGCAGCATTCCGGGCAATGATCATCCGCGCCAGGTGCTGGATGAGCAGGAAGATGCGCTGGATGAGTTTACTTTTGATGATCTGGCTTCGAAGGCGCAAATTGCCTGAMTTYNWDLIERLLHEVQNGAGHSFTPRPYAEQYAAEKAAQGEDIENLDHLKAVAGEYEKLLLERGYIEPRPEEEGGNGENFVLTPRGSRLLSLIDSSIPGNDHPRQVLDEQEDALDEFTFDDLASKAQIANANANANANA
D1-35_00483867hypothetical proteinATGTCGCGCTGGTTAACACGCACCGCCATGTTCATCGCCCTGCTGCTGACACTCACCGCTTGCAGCCGTGTCGGCCTGGCCTACCGCAACCTCGACCTGATCATCCCCTGGACCCTCAACGATTACCTGGAGATCAACGGCGAGCAGAAAGACTGGTTCAACGACCGCCTCAAGGAACACCTGAGCTGGCATTGCACTACGCAATTGCCCGGCTACCTGGATTGGCTCGATCGCCTCAAAACCATGGTGCAGAACGACCAGGTAACCGACGAATCCCTGCAGCAACGCACCCGCGAAGCCAAGGCCGCGATCGCCGAAACCGCCCGGGAAATCACCCCATCGGCCACCGAACTGTTACAAGGCCTGAGCGATGACCAGGTGGCCGACATGGACGCCGCCTTCATCAAGGATCAACGCAAACGCCAGCGGGACTACCTCAAGCCGACCTTGCAACAACAGATCAAGGAACGCGCCGAGCGCATGGAAAAACGCCTGAACGACTGGATCGGCCCGCTCAACGACGCCCAGCGCCAACGCGTACAAGCCTGGTCCACCGCGCTTGGCGATCAGAACCAGCAATGGATCGCTAACCGCGCCCACTGGCAGAACCAGTTCAGCGAAGCCGTCGCCCAGCGCCACAGCCCCGACTTCCCGAAACGCATCGAGCAATTACTGGTGAACCGCGAAAGCCTGTGGACGCCCGCCTACCGCGAGGCCTACAACAAAACCGAAGCCCAGGCCCGCAGCCTGTTGGTGGACCTGATGGCGCAGAGCACCCCGACGCAGCGTGAACAGCTGTTGAAGAAGATTGACGGGGTGAAGAAGGATTTCAGCGATCTGAAGTGCCTGAAAGCAGCACGCCCGTAAMSRWLTRTAMFIALLLTLTACSRVGLAYRNLDLIIPWTLNDYLEINGEQKDWFNDRLKEHLSWHCTTQLPGYLDWLDRLKTMVQNDQVTDESLQQRTREAKAAIAETAREITPSATELLQGLSDDQVADMDAAFIKDQRKRQRDYLKPTLQQQIKERAERMEKRLNDWIGPLNDAQRQRVQAWSTALGDQNQQWIANRAHWQNQFSEAVAQRHSPDFPKRIEQLLVNRESLWTPAYREAYNKTEAQARSLLVDLMAQSTPTQREQLLKKIDGVKKDFSDLKCLKAARPNANANANANA
D1-35_00484711hypothetical proteinATGCGCATTCCTGTTGTCTTGCTGACGTTCAGCCTGCTCGCTTGCCCCGCATCTTATGGGCAGGTGTTCCAGCGCGAGCTCGGCGACTTCGATCTCAAACTCGGCACCACACCCAGCCGCAGCATGGCCCAAGGCCTGGTCACGCCGTCGAGCACCGGCTCGTTCCACGGTGGCCTGGACCTGAGTCATGACAGCGGTTGGTACGTCGGCCAGTGGTCACCCAGCGCCGGCGTATCCGCCGACCTTGAGATCGATTCCTACATGGGTTTCAAACAACCCTTCGACCAGACCCTGGGCTACGAAGTCGGCTTGATCCACTACAGCTACCCTACCGTCGATACTCTCGACAGCCAGGAATTCTACGGCGGCCTGACCCTGCTCGGCAGCCGCTTCGGCGCCGCCTTGAGCAACGATCCGGACAAACAGAACAGCACCCTGTTCGCCGACCTGGGCGGCAACGTGCCGTTCGGCATTGGCATCAGCGCCAAATACACCACCCACCAGCTCAACTCGCCTGTTTCCGTGGATAACGGCTACGTCAGCAGCTTCAGCGACTGGTCACTGAAAATCTCCCGCCCATGGAAAGGCATCGACCTGGACCTGATCTACAGCGACTCAAGCCTCAGCGGCAGCAGTTGCTCCGCCTACTCCGGCCACAACAGCGAATGCGACAGCCTGCTGACCCTCAAGATGGCCCATCCTTTTTACTAAMRIPVVLLTFSLLACPASYGQVFQRELGDFDLKLGTTPSRSMAQGLVTPSSTGSFHGGLDLSHDSGWYVGQWSPSAGVSADLEIDSYMGFKQPFDQTLGYEVGLIHYSYPTVDTLDSQEFYGGLTLLGSRFGAALSNDPDKQNSTLFADLGGNVPFGIGISAKYTTHQLNSPVSVDNGYVSSFSDWSLKISRPWKGIDLDLIYSDSSLSGSSCSAYSGHNSECDSLLTLKMAHPFYNANANANANA
D1-35_00485180hypothetical proteinATGCGCGTAAAAGCATCCAACAGCAAAGCAAAGCCAGCTCCAGCCGTTGAAACCAGCGAGTCGATCAACGACCAGATCGCTGCGTTCCTCAAGTCCGGCGGTGAAATCCAGCAGATTGCCAAAGGTGTCAGCGGCCAGACCTTCGGTCCGTCCAAGCAGATCAGCCTGGGCAAGAAGTAAMRVKASNSKAKPAPAVETSESINDQIAAFLKSGGEIQQIAKGVSGQTFGPSKQISLGKKNANANANANA
D1-35_00486837cvfBCOG2996Conserved virulence factor BATGGCTTTAGTCGGGCGCTACAACAGTTTGCAAGTGGTTAAGCACACCAACTTCGGTTTATATCTGGACGGCGGTGCGGACGGCGAAATCCTGCTGCCTAACCGATATATCCCCAAGGATATTCCGAGTGAAGATGAAGACTGGCTCAATGTTTTCATTTATCTCGACAGCGACGACAAACTGATCGCTACCACGGAAAAACCGAAAGTCCAGGTGGGCGAGTTCGCCAGCCTGAAAGTGGTTGAGGTCAACAGCATCGGCGTGTTCCTGGATTGGGGCCTGCCCAAGGATCTGCTGCTGCCGTACTCCGAAGAAAAACGCCAGATGACCGCCGGCGAATACTGCGTGGTACACGTCTACCTCGACAAACACACCCGCCGCATCACCGCAACGGCGCGCCTGGACCGTTATCTGGACAAGACCCCGGCCAACTACACGCCAGGGCAGGAAGTCGATCTGCTGGTTGCCGAAGCCACTGACATGGGTTTCAAGGCAATCATCAACAACAAGCATTGGGGCTTGATCCACAAGAACGAAATCTTCAAGTTCATGCGCGCCGGCATGCAGGAGAAGGGGTTCATCAAGGAAATCCGCCCGGACGGCAAGATCAGCCTGAGCTTGCAGCCAGTCGGCCAGGAAGCGGCGACCAGCCTCAATGCGAAGATCCTCGCCAAGTTGCGCGACAACAACGGCACGCTGCCGGTCAGCGACAAGAGCGACCCGGCGCTGATCAGCAGCCTGTTTGGCGTGAGCAAGGGCAACTTCAAGAAGGCCATTGGCGCGCTGTACAAGAATGGGCAGATTGTCATTCATGCGGATCGTATTGAATTGAGCTGAMALVGRYNSLQVVKHTNFGLYLDGGADGEILLPNRYIPKDIPSEDEDWLNVFIYLDSDDKLIATTEKPKVQVGEFASLKVVEVNSIGVFLDWGLPKDLLLPYSEEKRQMTAGEYCVVHVYLDKHTRRITATARLDRYLDKTPANYTPGQEVDLLVAEATDMGFKAIINNKHWGLIHKNEIFKFMRAGMQEKGFIKEIRPDGKISLSLQPVGQEAATSLNAKILAKLRDNNGTLPVSDKSDPALISSLFGVSKGNFKKAIGALYKNGQIVIHADRIELSNANANANANA
D1-35_00487102hypothetical proteinATGGAACCTTGGCAGGGTATTACCCTGTGGCGAGGGGATTTATCCCCGCTGGGGCACGAAGTGCCCCTAACTCCTCTCACCGTGATCTGCCAGAAAGATTGAMEPWQGITLWRGDLSPLGHEVPLTPLTVICQKDNANANANANA
D1-35_004881455pucI_1COG1953putative allantoin permeaseATGTCCGAGCAATTGCCCAACGGCTACAGCCCCCGTCTCTATAACGAAGATCTGGGGCCGCTGCCGCAGAAATGGAATTGGTACAACATCTTCGCGTTCTGGATGAGTGATGTGCACAGCGTCGGCGGCTATGTGTTTGCCGCCAGCTTGTTCGCTCTGGGCCTGGCGAGTTGGCAGGTACTGATCGCGCTGCTCGGCGGGATCTGCATTGTGCAGTTGATCGCCAACCTGGTCGCCAAGCCGAGCCAACAGGCGGCGGTGCCTTATCCGGTGATATGCCGGCTGGCGTTCGGCGTGTTCGGAGCGAATATCCCCGCGGTGATCCGCGGCCTGATCGCCGTGGCCTGGTATGGCATCCAGACGTATCTGGCGTCCAGCGCACTGATCATTGTGGTGCTGCGGTTCTTTCCTTCGATGGAAGCCTACGCAACGCCGCATTTTGCCGGTTTGTCCTACCTGGGCTGGTTCGGTTTCCTCGGGTTGTGGTTTGTCCAGGCGCTGGTGTTCTGGACGGGCATGGAGTCGATCCGGCGTTTTATCGACTGGGCCGGGCCGGTGGTGTATGCGGTGATGTTCCTGTTGGCCGGCTGGATCGTCTGGAAGGCCGGCTGGAGCAACATCAGCTTTACCCTGGCGGAGAAATCCCTGTCTGGCTGGCAGGCGTTCGGCCAAGTGATCGTGGCAACAGCCCTGGTGGTCTCGTATTTTTCCGGCCCGACCCTGAATTTCGGTGATTTCAGCCGGTACTGCCGGAGCATGTCTGACGTGCGTCGGGGCAATTTCTGGGGGCTGCCGGTAAATTTCCTGGCCTTCTCGCTGGTCACCGTGGTGATTGTGTCCGGGACGTTGCCAGTATTCGGCGAAATGCTCCATGACCCGATCGCCACCGTGGCGCGCATCGACAACGACGTAGCGGTGTTGCTGGGGGCTTTTGCCTTCGTGACCGCGACCATCGGCATCAATATTGTCGCCAACTTCGTGTCCCCGGCCTTCGACTTCGCCAACGTGGCACCGAGCAAGATCAGTTGGCGCGCCGGCGGCATGATCGCGGCGGTGGCCTCGATTTTCATCACGCCGTGGAACCTGTTCAACAATCCTGAAGTAATCCACTACACCCTGGACGTCTTGGCGGCGTTTATCGGCCCGTTGTTCGGCATCTTGCTGGTGGATTACTACCTGATCAAAAAGCAGCAGATCGACGTCGACGCGCTGTTCAATGATGGGCCGAGCGGGCGTTATTACTACAGCGGCGGCATCAACTGGACGGCGGTCAAGGCGTTGATTCCGGCGACGCTGATGGGCGTAGCAATCACCTTCACACCGCTGCTGCAATCGATGGCCAACTTTGCCTGGTTCACCGGGTGTTTCCTCGGCGGGGTGCTGTATTTCGCCTTGGCGCGGCGTGAGCCAGCCCTACAACTGAATACCTCGCTCAACCCGGCTGGCCAGGCCTGAMSEQLPNGYSPRLYNEDLGPLPQKWNWYNIFAFWMSDVHSVGGYVFAASLFALGLASWQVLIALLGGICIVQLIANLVAKPSQQAAVPYPVICRLAFGVFGANIPAVIRGLIAVAWYGIQTYLASSALIIVVLRFFPSMEAYATPHFAGLSYLGWFGFLGLWFVQALVFWTGMESIRRFIDWAGPVVYAVMFLLAGWIVWKAGWSNISFTLAEKSLSGWQAFGQVIVATALVVSYFSGPTLNFGDFSRYCRSMSDVRRGNFWGLPVNFLAFSLVTVVIVSGTLPVFGEMLHDPIATVARIDNDVAVLLGAFAFVTATIGINIVANFVSPAFDFANVAPSKISWRAGGMIAAVASIFITPWNLFNNPEVIHYTLDVLAAFIGPLFGILLVDYYLIKKQQIDVDALFNDGPSGRYYYSGGINWTAVKALIPATLMGVAITFTPLLQSMANFAWFTGCFLGGVLYFALARREPALQLNTSLNPAGQAPGPT0009075_2177DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_TRANSPORT,PGPT0009075-cytX-K03457NANA
D1-35_004891173hypothetical proteinATGTCGCCCTTGACTCGCCTGCTCGCCAGCTTCATTGCCTTGATAATGGCCATGGGCATCGGCCGCTTCGCCCTTACACCGCAGTTACCTCATTTGATCGGCGAAGGTCAGGTCGACTTGACCGCCGCCGGTCTGATTGCCGCCGCCAACTATCTGGGTTACTTCCTAGGCGCTCTGGACGCCATGTTCGCCCGTCGCGCCGAACAGGTGCAGCGACGGCTGTTGGGCGGCCTGTGGTTATGCGTGCTGCTGACGCTGGCGTCGTTCTGGGCCTGGGGCTTCTGGCCGCACCTGGCGCTGCGCTTCGGCACCGGCGTGGCGAGCGCCTGGGTGATGGTGATGATCACCGCGTTGAGCCAACCCCTGGCGGCGGCAGCGGGACGGCCTCGGCTGGGCGCGTTGGTATTTGCCGGGCCGGGCATGGGGATTTTTCTTACCGGCTTGCTGGCCCTTGGCTCGAACCTGTTGGGCCAGACATCCGCCACCTTGTGGCTGGTGTACGCTGGCGCGGCGCTGCTGATGCTGCTGGTCATCCTGCCGGCCCTGCCGAAACCCGCGCCGGCGGCCACCCTCGCAGCGCCAGTCGTCGCTTCCGGCAGCAGCGGCATCGCCCGTCTTTGCGTGGTCTACGCCTTGTATGGCGTGGGCTACATCATTCCAGCGACGTTTCTGTCGCAGATGGCTTCGGCGCAATTTCACGGGCAATGGCAGGCCGACCTGTTCTGGCCCTGCTTCGGCCTGGCCGCCGCCACCGGTGTGCTGCTGGTGAGCCTGCGCCGGCCGAACCCGAACACCACCAGTCGCTGGCTGATGGCGACGTTGTGGCTGCAAGCCGCTGGCGTGTTTGCCTGCCTGCTGGGCAGCGGCACGGGCCTGGCCCTGGGCGTGTTTCTCTGTGGCGCGCCGTTTCTCGCCTGCATGCAACTGATGGTGATGCGTGCCCGAGAACTGGCCCCCCACGCGACCCAGCGCAACGTCGGCCTGCTGACCGCGTGTTTTGCCATCGGCCAGCTCAGCGGCCCCCTGCTGGCGGCGCTGAGCAGCCATTTCAGTGGCGGCCTGCAACCGGCACTGATTGTCGCCGGCAGCGGACTGTTGTTGGCCGGCGGACTGTTGCTGCGGCCCGCCAGACGTGGCGCGGCGAGCCCCTGCGCGCAGACCGCCCTGCGCTGAMSPLTRLLASFIALIMAMGIGRFALTPQLPHLIGEGQVDLTAAGLIAAANYLGYFLGALDAMFARRAEQVQRRLLGGLWLCVLLTLASFWAWGFWPHLALRFGTGVASAWVMVMITALSQPLAAAAGRPRLGALVFAGPGMGIFLTGLLALGSNLLGQTSATLWLVYAGAALLMLLVILPALPKPAPAATLAAPVVASGSSGIARLCVVYALYGVGYIIPATFLSQMASAQFHGQWQADLFWPCFGLAAATGVLLVSLRRPNPNTTSRWLMATLWLQAAGVFACLLGSGTGLALGVFLCGAPFLACMQLMVMRARELAPHATQRNVGLLTACFAIGQLSGPLLAALSSHFSGGLQPALIVAGSGLLLAGGLLLRPARRGAASPCAQTALRNANANANANA
D1-35_00490894gltR_1COG0583HTH-type transcriptional regulator GltRGTGGAGTTCAGCCAGTTACGGATTTTCCAGGCCGTGGCCGAGGAAGGTTCCATCACCCGGGCGGCCGAGCGCTTGCACCGGGTGCCCTCGAACCTCTCGACCCGGCTCAAGCAGCTCGAAGAGCAGCTGGGCGTGGACCTTTTTCTGCGCGAGCGTCAGCGTTTGCAGTTGTCGCCTGCGGGAAAAGTCCTGTTGGACTACGCGACCAAGCTGTTCGCCCTGCATGACGAAGCCCATGCGGCGGTGCAGGGCGGCCAGCCGGCCGGAGATTTTGTGTTGGGCACGATGTACAGCACAGCGGCGACCCACTTGCCGGACTTGCTGGCGGCTTACCACCGGGCCTACCCGGCGGTGAACCTGCAAGTGCAATCGGGGCCGAGTGGAGAATTGCTTGAAGGCCTGCTCACCAATCGCCTCGATGCGGCGCTGGTAGACGGTCCGCTGGAGTTGGCCGGGCTGGATGGCGTGCCGTTGTGCGACGAGCGGCTGGTGCTCATCACCGAGGCCGCCCATCCACCGGTGCGCAGCGCGCTGGACGTGCAAGGCCGTGCGGTATTCACCTTCCGGCGTGGCTGTTCGTACCGGATGCGCTTGGAAGCCTGGTTTGCCCATGATCATGCGACCATGGGCCGGGCGATGGAGATCGAGTCGTACCAGGGGATGCTGGCCTGTGTGATTGCCGGCTCCGGAGTGGCGCTGATGTCCGAGTCGATGCTCGCCAGCCTGCCGGGGCGGGAACGGGTAAATGTGCATGCGTTGGCCGAGCCGTTTGCCAGCGCGACGACCTGGTTGATGTGGCGCAAAGGCATGGTCGGCGCCAACCTGAACGCCTGGATCGAGTTGCAGCAACAAGCGTGGCCGCGGGCGCCAATGATCACGGCGCAATCGGCTTGAMEFSQLRIFQAVAEEGSITRAAERLHRVPSNLSTRLKQLEEQLGVDLFLRERQRLQLSPAGKVLLDYATKLFALHDEAHAAVQGGQPAGDFVLGTMYSTAATHLPDLLAAYHRAYPAVNLQVQSGPSGELLEGLLTNRLDAALVDGPLELAGLDGVPLCDERLVLITEAAHPPVRSALDVQGRAVFTFRRGCSYRMRLEAWFAHDHATMGRAMEIESYQGMLACVIAGSGVALMSESMLASLPGRERVNVHALAEPFASATTWLMWRKGMVGANLNAWIELQQQAWPRAPMITAQSANANANANANA
D1-35_00491129hypothetical proteinATGAAAGAGAAAATCCAGAACTGGCTTCACGACTTGGGTGTCGCGCTCGGCTTGATCGAACCTCCCATGCAGCCGATCCCGATCCGCACCGACGACGAGCAACGCCGCCGCCAGCCGCGCCGCCGGTAAMKEKIQNWLHDLGVALGLIEPPMQPIPIRTDDEQRRRQPRRRNANANANANA
D1-35_004921389opuECOG0591Osmoregulated proline transporter OpuEATGGCCTTGGATTTAATCGTCGTTCTCATCTACGCCACCGGCATGATCGCCCTGGGCTGGTACGGCATGCGCCGCGCCAAGACCCGCGACGACTACCTCGTCGCCGGGCGCAACCTCGGTCCGGGTTTTTACCTGGGCACCATGGCCGCCACCGTGCTGGGTGGCGCGTCGACCATCGGCACTGTGCGTCTGGGCTATGTCCACGGCATTTCCGGCTTCTGGTTGTGCGGCGCCATCGGCCTGGGCATCGTCGGGCTGAGCCTGTTCCTCGCCAAGCCGTTGCTCAAGCTGAGGATCTACACCGTGACCCAAGTGCTGGAGCGCCGCTACAACCCGGCCGCGCGCCATGCCAGCGCGGTGATCATGCTGGTCTATGCGCTGATGATCGGCGCCACCTCGACCATCGCCATCGGCACGGTCATGCAGGTGCTGTTCGGCCTGCCCTTCTGGGTTTCGATCCTGGTGGGCGGCGGCGTGGTGGTTCTTTATTCCACAATCGGCGGCATGTGGTCGCTGACCCTGACCGACATCGTCCAGTTCCTGATCATGACCATCGGCCTGGTGTTTCTGCTGATGCCAATGTCCATCAGTGACGCTGGTGGCTGGGACGCGATGGTAGCGGCTTTGCCGGCGCGTTATTTCGATTTCACCGCCATCGGCTGGGACACTATCCTCACCTACTTCCTGATCTACTTCTTCGGCATCTTCATCGGCCAGGACATCTGGCAACGGGTGTTCACCGCCCGCAGCGAAGGCGTGGCGAAAGTCGCCGGCACCGCGGCAGGTCTGTATTGTGTGCTCTACGGCCTTGCCGGTGCGCTGATCGGCATGGCCGCCAAAGTCTTGCTGCCGGACCTGGAAAACGTCAACAACGCCTTCGCCAGTGTGGTGCAAACCAGCCTGCCGAACGGCATTCGTGGCCTGGTGATCGCAGCCGCGTTGGCGGCATTGATGTCCACCGCCGCAGCAGGCCTGCTTGCGGCATCCACCACGGTGGTCCAGGACTTGCTGCCCCGCTTGCGCCAGGGCCGTGAAAGCGGCGACGGCGACGTTCACGAAAACCGTATCGCGACCCTGCTGCTGGGCGCGGTGGTATTGGCTATCGCCTTGGTCGTCAGCGACGTGATCAGCGCCCTGACATTGGCCTACAACCTGCTGGTCGGCGGCATGCTGATCCCGCTGATCGGGGCGATCTACTGGAAACGCGCAACCACCGCCGGCGCGATCACCAGCATGTCGCTGGGTTTCGTCACCGCGCTGTTCTTCATGTTCAAGGACGGCCTGGATGCGAACACGCCGATCTACTACAGCCTGAGCGTGGCGTTGGTGAGCTTCGTGGTGGTGAGCCTGCTGTCGCCACGGTCGGAGGTGGTGGCCAAGGCGGTTTGAMALDLIVVLIYATGMIALGWYGMRRAKTRDDYLVAGRNLGPGFYLGTMAATVLGGASTIGTVRLGYVHGISGFWLCGAIGLGIVGLSLFLAKPLLKLRIYTVTQVLERRYNPAARHASAVIMLVYALMIGATSTIAIGTVMQVLFGLPFWVSILVGGGVVVLYSTIGGMWSLTLTDIVQFLIMTIGLVFLLMPMSISDAGGWDAMVAALPARYFDFTAIGWDTILTYFLIYFFGIFIGQDIWQRVFTARSEGVAKVAGTAAGLYCVLYGLAGALIGMAAKVLLPDLENVNNAFASVVQTSLPNGIRGLVIAAALAALMSTAAAGLLAASTTVVQDLLPRLRQGRESGDGDVHENRIATLLLGAVVLAIALVVSDVISALTLAYNLLVGGMLIPLIGAIYWKRATTAGAITSMSLGFVTALFFMFKDGLDANTPIYYSLSVALVSFVVVSLLSPRSEVVAKAVPGPT0013955_5603DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013955-TC_SSS|yerK|opuE-K03307NANA
D1-35_004931527hypothetical proteinATGAATAACAATAACGATAAAAGCCTTACGCAAATTGAAACCAATGGGGTCGAACAGATCCCCGACCACCAACGAACCGCCGGCCCGGGGGATCTGTTTCGACTGATCTTCGGCGGCGCCAACACCTTTGCCACCGCGGTGCTCGGCAGCTTTCCGGTGCTGTTCGGGCTGTCATTCCAGGCCGGAGTCTGGGCCATCGTGCTGGGGGTACTGGTCGGTTCGATCATCCTCGCGCCGATGGGCCTGTTCGGCCCGCTCAACGGCACCAACAACGCCGTGTCCTCGGGTGCGCATTTTGGCGTCCATGGGCGAATCGTCGGCTCGTTCCTCTCGCTGCTGACCGCCATCGCGTTCTTCTCGCTGTCGGTGTGGAGCTCGGGCGACGCGCTGATCGGCGGCGCCAAGCGACTGGTCGGCGTACCGGAAACCGACCTGAGCCTGGGCCTGGCCTACGGCCTGTTTGCCCTGCTGGTATTGACGGTGTGCATCTACGGCTTTCGTTTCATGCTGTGGGTCAACCGCATCGCCGTGTGGGCCGCCAGCCTGTTGTTCCTGCTGGGCATCTTCGCCTTCGCGCCGAGCTTCGACAGCCAGTTCGCCGGCACGGTCAGCCTCGGCCAGCCGGGCTTCTACGCCGCCTTCATCGGCGCGGCGCTGGTGGCCATGAGCAACCCGATTTCCTTCGGCGCGTTCCTCGGCGACTGGTCGCGCTACATCCCGCGCAACACGCCCAAGCCACGCATCATGCTGGCGGTCATCGCCGCTCAGTTGGCCACGCTGATACCGTTTCTGTTCGGCCTTGCCACCGCCACCATCGTCGCGATCAAGGCGCCGGACTACATCGCCGCGAGCAACTACGTGGGCGGCCTGCTGGCGGTCTCGCCGGGCTGGTTCTTCCTGCCGGTGTGCCTGATCGCGGTGATCGGCGGCATGTCCACCGGCACCACCTCGCTGTATGGCACCGGGCTGGACATGTCCAGCGTGTTCCCACGGCTGCTGTCGCGGGTCAAGGCGACGCTGCTGATCGGCGTGCTGTCGATTGCGTTCATCTTCATCGGGCGCTTCGCCGCGAACCTGGTACAGAGCGTCTCGACCTTCGCCGTGCTGATCATCACCTGCACCACGCCGTGGATGGTGATCATGATCATCGGCCTGCTGGTGCGCCGCGGCTTCTACTGCCCGGACGACCTGCAAGTCTTCACCCGTGGCGAAACCGGCGGGCGCTACTGGTTCAGCCATGGCTGGAACTGGCGCGGCCTGGGGGCGTGGATTCCCAGCGCACTGGTGGGGCTGTGCTTCGTCAACCTGCCGGGGCAATTCGTCGGGCCGTTGGGAGAGCTGGCCGGTGGCATCGACGTCAGTCTGCCGGTGACCCTGGGGCTGGCCTCGGTGGTGTACCTGCTGTTGCTCGGGCTGTTTCCGGAACCGGCGGCGGTGTATGGGCCGCAGGTATGGCGAGGGGATTCATCCCCGCTGGAGCGCGAAGCGGTCCCAAACCCTGACATCTCGGTGTGCCAGACAGATTGAMNNNNDKSLTQIETNGVEQIPDHQRTAGPGDLFRLIFGGANTFATAVLGSFPVLFGLSFQAGVWAIVLGVLVGSIILAPMGLFGPLNGTNNAVSSGAHFGVHGRIVGSFLSLLTAIAFFSLSVWSSGDALIGGAKRLVGVPETDLSLGLAYGLFALLVLTVCIYGFRFMLWVNRIAVWAASLLFLLGIFAFAPSFDSQFAGTVSLGQPGFYAAFIGAALVAMSNPISFGAFLGDWSRYIPRNTPKPRIMLAVIAAQLATLIPFLFGLATATIVAIKAPDYIAASNYVGGLLAVSPGWFFLPVCLIAVIGGMSTGTTSLYGTGLDMSSVFPRLLSRVKATLLIGVLSIAFIFIGRFAANLVQSVSTFAVLIITCTTPWMVIMIIGLLVRRGFYCPDDLQVFTRGETGGRYWFSHGWNWRGLGAWIPSALVGLCFVNLPGQFVGPLGELAGGIDVSLPVTLGLASVVYLLLLGLFPEPAAVYGPQVWRGDSSPLEREAVPNPDISVCQTDNANANANANA
D1-35_00494408hypothetical proteinATGAGCCATCGAGATCAGGTTCTCAAGGCCGCCGCCGAACTGGTATCGGCCTTCGCCCGCAATGACCGCGAGGCTTACTTCGGCGCATTCAGCGCCGATGCGAGCTTCGTGTTCTACACCCTCGAACAGCCGCTGCTGTCACGCGAGGCCTACCAGGCCATGTGGGACCGCTGGCGCGCCGAGGATGGCTTCGAGGTGCTGCGTTGCACCTCGAACAACGCCTTCGTCAGCCTGCAAGGGGACGTGGCGATTTTCATCCATGACGTGGCCACCGAGCTGCGCATGCAAGGGGAGCTGCACTTTAGCCAGGAGCGCGAAACCATCGTGTTTCGCCAAGAACAACAAGGCCTATGGCTGGCCTGTCATGAACATTTGTCCGCAATGCCGGAAGGGCTGCCACCCCCTTAGMSHRDQVLKAAAELVSAFARNDREAYFGAFSADASFVFYTLEQPLLSREAYQAMWDRWRAEDGFEVLRCTSNNAFVSLQGDVAIFIHDVATELRMQGELHFSQERETIVFRQEQQGLWLACHEHLSAMPEGLPPPNANANANANA
D1-35_00495951gbuACOG0010GuanidinobutyraseGTGGACAAGATTCTTCACCAACCACTGGGCGGCAACGAAATGCCGCGCTTCGGCGGCATCGCCACCATGATGCGCCTGCCCCATTTGCCCACCGCCGCCGGCCTGGACGCAGCCTTTGTCGGCGTGCCACTGGACATCGGCACCTCCCTGCGCGCCGGTACCCGCTTCGGGCCCCGCGAGATCCGCGCCGAATCCGTGATGATCCGTCCCTACAACATGGCCACCGGTGCCGCGCCGTTCGACTCGCTGTCGGTGGCGGACATTGGCGACGTGGCAATCAATACCTTCAACCTGCTGGACGCGGTGCGGATCATCGAAGAGTCGTACCACAAGATCCTCGAACACAACGTCATCCCCCTGACGCTGGGCGGCGACCACACCATCACCCTGCCGATCCTGCGGGCGATCCACAAAAAGCATGGCAAGGTCGGCCTCGTGCACATCGACGCCCACGCCGATGTGAACGATCACATGTTCGGCGAAAAAATCGCCCACGGCACCACTTTCCGCCGCGCCGTGGAAGAAGGCCTGCTCGACTGCGATCGCGTGGTGCAGATCGGCCTGCGCGCCCAGGGTTATACCGCCGAGGATTTCAACTGGAGCCGTAACCAGGGCTTCCGTGTGGTCCAGGCCGAAGAATGCTGGCACAAGTCTCTGGCCCCATTGATGGCCGAAGTGCGCGAGAAAGTCGGTGGCGGCCCGGTGTACCTGAGCTTCGACATCGACGGCATCGATCCGGCCTGGGCGCCAGGCACCGGCACCCCGGAAATCGGCGGCCTGACCACCATCCAGGCGATCGAGATCGTCCGTGGCTGCCAGGGCCTCGACCTGGTCGGTTGCGATCTGGTAGAAGTTTCGCCGCCGTACGACACCACCGGCAACACCTCGCTGCTGGGCGCCAACCTGCTGTACGAGATGCTCTGCGTACTGCCCGGCGTGGTCCATCGCTGAMDKILHQPLGGNEMPRFGGIATMMRLPHLPTAAGLDAAFVGVPLDIGTSLRAGTRFGPREIRAESVMIRPYNMATGAAPFDSLSVADIGDVAINTFNLLDAVRIIEESYHKILEHNVIPLTLGGDHTITLPILRAIHKKHGKVGLVHIDAHADVNDHMFGEKIAHGTTFRRAVEEGLLDCDRVVQIGLRAQGYTAEDFNWSRNQGFRVVQAEECWHKSLAPLMAEVREKVGGGPVYLSFDIDGIDPAWAPGTGTPEIGGLTTIQAIEIVRGCQGLDLVGCDLVEVSPPYDTTGNTSLLGANLLYEMLCVLPGVVHRPGPT0007635_241DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSINSECTICIDAL_COMPOUNDSINSECTICIDAL-GAMMA-AMINOBUTYRIC_ACID_BIOSYNTHESIS,PGPT0007635-gbuA-K12255NANA
D1-35_00496894hypothetical proteinATGGCCAACGCTCTACCCGACCTGAAACTGCTGCGCATTTTCGTCAGCGTGGTCCGTCACCAAGGGTTTGCCAATGCCCAGCACGAGCTCAACCTTTCCACGTCGGCGATCAGCACCTATATGAGCCAACTCGAATCGGCCCTGGGCCTGGTGCTCTGTCATCGTGGGCGGGGCGGGTTCAGCCTGACCAGCAAAGGCGAGCTGTTCCATCAGGAGACCCTGCGCCTGTTGGGCGAGCTCGAAGGTTTCGAGCAATACGCCGCGGCGCTCAAGGGTGAGTTGCGCGGTACGCTGAACCTGGGCGTGATCGATTCGACGGTCAGCGACAAGGCGTTGCCGTTCGCCGAAGCCATCGGCGCCTACAGCCAGGAGCACCCGGCGGTGCATTTGCACCTGTCGGTCATGAGCCCCTACGAGTTGCAACTCGGCGTGCAGGACAATCGCCTGGACCTGGCCATCGGCGCGTTTTCCACGCGTATGAGCGGGCTGGTCTATATGCCGCTGTACCGCGAACAGCACTGGTTGTATTGCAGCAACCGGCATCCGTTATTCAACGAACGGCGCATCCCTGAGCAACTCATTACCCAGCAGCGTATGGTCGGGCGCGGTTACTGGAGCCAGGCCGAACTGGCGCGCCACGGCTTCAAGCACAGCGCGGCGACGGTAGAAAGTATGGAAGCGCAACTGATTCTGGTGCTGTCCGGTGCCTACATCGGTTATCTGCCCGAGCACTACGCCCAGGCCTGGGTCGACAAGGGCGATCTGCGCGTGCTGCTGCCGGCAACCTTTGGCTATCAGGCGCCGTTTTCGATGATCGTGCGCCGTGGCCGCAGCCGCGAGCCGCTGATCCAGACCTTCCGTGATCTGCTCAAAGCTCAACTGAACCAGGCCTGAMANALPDLKLLRIFVSVVRHQGFANAQHELNLSTSAISTYMSQLESALGLVLCHRGRGGFSLTSKGELFHQETLRLLGELEGFEQYAAALKGELRGTLNLGVIDSTVSDKALPFAEAIGAYSQEHPAVHLHLSVMSPYELQLGVQDNRLDLAIGAFSTRMSGLVYMPLYREQHWLYCSNRHPLFNERRIPEQLITQQRMVGRGYWSQAELARHGFKHSAATVESMEAQLILVLSGAYIGYLPEHYAQAWVDKGDLRVLLPATFGYQAPFSMIVRRGRSREPLIQTFRDLLKAQLNQAPGPT0003120_872DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-ACINETOBACTIN_METABOLISM,PGPT0003120-bauR-K21699NANA
D1-35_00497597hypothetical proteinATGTCCAGAATTCAATGCCCGCGTTGCCACCGTCCGCAAAGCCATTGCCTGTGCCCGTTGATCCCCAGTCTCGACAGCCGCACCCGTGTTCTGCTGTTGCAGCATCCCAGCGAGGTGAACCATGCCTTGAACACGGCGCGGTTGGCGGCATTGGGCCTGAACAACGCCGAATTGATCGTCGGCGAGGTGTTCGACGATTTGCCCAGGTTGCTCGATCAACCGGGTTATCAGGCGCGGTTGTTGTTTCCCGCCGACGATGCGCAGCCGATGCAAGCCTACGGTCCCAGCAATGACCCGTTGTTATTGGTCGTCCCCGACGGCACCTGGCGCAAGGCGCGCAAGCTGCTGCACCTGAACCCGTTGCTGGCGGCGCTGCCGAGGGTCACCCTCGCCAACGGCGGCGTGTCCCGTTACCGCTTGCGCAAGGCGCCCGGGCCGGGCGCGTTGTCGACGGTGGAGGCGATTGTCCAGGCACTGCAAACCCTCGAAGCACCGACAAGTTTCGAGCCGTTGCTGAGGCCGTTCGAGGCGCTGATCGAGGGGCAGATCGCGGCGATGGGGGAGGACACCTTCAGGCGTAATCATTCCGGGAAGTAGMSRIQCPRCHRPQSHCLCPLIPSLDSRTRVLLLQHPSEVNHALNTARLAALGLNNAELIVGEVFDDLPRLLDQPGYQARLLFPADDAQPMQAYGPSNDPLLLVVPDGTWRKARKLLHLNPLLAALPRVTLANGGVSRYRLRKAPGPGALSTVEAIVQALQTLEAPTSFEPLLRPFEALIEGQIAAMGEDTFRRNHSGKNANANANANA
D1-35_004981365prsE_1Type I secretion system membrane fusion protein PrsEATGCCAGCTCAAACACCTGATTCAGCCGCCCGAAGCTACTTCGGCAGTTTCAGCAAAAGCGCCGAAAGCGAGTTCATGCCGGAAACCGCCAGCGCGACATTGCAGGACTCGCCCCGGCGTTCGCGCGTGACGGTGTGGCTGGCCGCCGGGCTGATTGTCAGCGGTTTGGTCTGGGCCAAACTGGCCGTGCTGCAGGAAGTCACCACGGGCGAAGGCAAGGCGATTCCATCGAGCAAGGTCCAGGTGATCCAGAACCTGGAAGGCGGCATCGTCACCGAGATTTTCGTGCGCGAAGGCCAGATGGTGAACAAGGGCGAGACCCTGCTGCGCCTGGATGACACGCGGTTCCTCTCAAACAAGGGCGAGAGCGAGGCCGATCGTTATGCCCTCACGGCCCAGGTCGAACGCCTGTCGGCCGAGGCTGAAGGGCGACCGTTTGCGCTGTCGGCAGAGGTGACCGCCAAGGCCCCGCAAGTGGCCGAAGACGAACGTTCGTTGTATCAACAACGCCAGCGGCGCCTGGCCAGCGAGCAACGCACCCTCACCGAACAGCTGCGGCAGAAAACCCAGGAACTCGCCGAGTTTCGCTCCAAACAAGGCCAGTTCAGCTCGGCCCTGTCCTTGCTGCAGGAAGAAATGAACATGTCGGCGCCGCTGGTGCGTACCGGGGCGGTTTCACCGGTGGAAATCCTCCGGCTCAAGCGCAGCGCGGTGGAGGTGCGCGGCTCACTCAACGCCACCACCCTGGCGATCCCTCGGGCCGAGTCGGCGATCAACGAGATCAAGAGCAAGATCGACGAATCGGAGCAGTCCTTCCGCTCCGACGCGGCCAAGGAGCTCAACGAGAAACGCACTGAACTGTCGAAAATCACCGCATCGAGCATCGCCATCGATGACCGGGTGACCCGCACCACCGTGGTCTCGCCGGTGCGTGGGGTGATCAAGCAGCTCAAGGTCAACACCATTGGCGGTGTGGTCCAGCCGGGCAGCGACATGGTCGAAATCGTGCCACTGGAGGACAACCTGCTGATCGAAGCCAAGGTCCGTCCGCAAGACGTGGCCTTTCTCCACCCGGGCCAGAAAGCCATGGTCAAGTTCAGCGCCTACGACTACACAATCTATGGCGGCCTGAGCGCCAAGCTCGAACTGATCGGCGCCGACACCATCACCGATGACAAGGGCAACAGCTTCTACCTGATCCAGGTGCGCACCGATAAAAACCATTTGGGCGGCGATGCCAAACCGTTGCTGATCATCCCGGGGATGGTGGCCACGGTGGACATCATTACCGGGGAGAAAAGTGTACTGGATTACCTGCTCAAGCCGGTGTTGAAGGCGCGGACCGAGGCGATGCGTGAGCGCTGAMPAQTPDSAARSYFGSFSKSAESEFMPETASATLQDSPRRSRVTVWLAAGLIVSGLVWAKLAVLQEVTTGEGKAIPSSKVQVIQNLEGGIVTEIFVREGQMVNKGETLLRLDDTRFLSNKGESEADRYALTAQVERLSAEAEGRPFALSAEVTAKAPQVAEDERSLYQQRQRRLASEQRTLTEQLRQKTQELAEFRSKQGQFSSALSLLQEEMNMSAPLVRTGAVSPVEILRLKRSAVEVRGSLNATTLAIPRAESAINEIKSKIDESEQSFRSDAAKELNEKRTELSKITASSIAIDDRVTRTTVVSPVRGVIKQLKVNTIGGVVQPGSDMVEIVPLEDNLLIEAKVRPQDVAFLHPGQKAMVKFSAYDYTIYGGLSAKLELIGADTITDDKGNSFYLIQVRTDKNHLGGDAKPLLIIPGMVATVDIITGEKSVLDYLLKPVLKARTEAMRERPGPT0022230_414DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_I_SECRETION_SYSTEMSCE-TSS1-ADHESIN_TRANSPORT,PGPT0022230-lapC-K12542NANA
D1-35_004992160apxIBCOG2274Toxin RTX-I translocation ATP-binding proteinATGACCCGCATGGAACCGGTAATCCCCGGCGCCGACCCGCGCCTGAACTTCGATGACCCGTTGCTGGACGGCTTGTTGATCCTCTGCAAACTCCATGGCGCGACTGTCAGCCGCGCCAGCCTCAGCGCCGGGTTGCCAATGGCGCACCAACGCCTGAGCCTGGACCTGCTGCCTCGCGCAGCGGCCCGGGCCAGTCTGCAGGCGCGGCTGCTGCGTCGCGACCTGGCGGACATTTCAGCGCTCAATCTGCCGGTGATGCTGATTCTGGCCGGAGGTCGCTGCGCGATATTGCGCCGCTGGGGTGACGACGGCCAGGCGCTGATCCTGCCCAGCGAAGCCGATGGCGGCGAACAATGGGTCAGCCGCCAGGAGCTGGCCGCCGACTACAGCGGCCAGGCCTTGTTCGCCCGACCGCGCCACGAACTGGAAGATTTGCGCGCGCCGCTGGTCCCGCGAGTCGAGGCCTGGTTTCGTGACACCTTGAAACTGTCGCGCTGGCTGTACAGCGACGCGATCCTGGCGAGCTTTCTGATCAACTTGCTGGGATTGATGGTGCCGCTGTTCGTAATGCAGACCTACGACCGCGTGGTGCCGAACCAGGCCACGTCGACATTGTGGGTGCTGGCTGTCGGGCTGCTGATTGGCACCGGCTTCGAACTGGTGTTGCGGGTCGTGCGGGCTCATCTGCTGGACAGCGCCGGCAAAAAGACCGACGTGATTCTCTCCGCCACGCTGTTCGAACGCATCACCGGCATGGCGATGAAAGCCAAGCCGGTGACCATCGGCGGCTTCGCCCAGAGCATCCATGACTTCCAGGGCCTGCGGGAATTTCTTACCGCCGTGACCCTGACCAGCCTGATCGACTTGCCCTTTGCCGTGCTGATGCTGGTGGTGATCGGCCTGCTTGGCGGCTGGCTGGTGGTGATACCCGTGGTGGCGTTCCCGATCACCGTGGTTTTCGCCATGATCATCCAGGCGCGCCTGCGCGACACCGTGCAGAAAAGCCTGGCCCTCGGCGCCCAACGCCAGGCCTTGCTGATCGAAACCCTCGGCGGCCTGGAAACCCTCAAGGCCTGCAGCGCCGAAAGCGAACGCCAGCATCAGTGGGAAAGCACTCATGGCGCCCTCACCCGCCTCGACAGCCACGCCCGCAACCTTTCGGCGCTGGCAACCAATGGCACGCTGTTCCTGCAACAACTGGCCGGCATGGCAACCATCGTCGCCGGCGTCTACAGCATCATTGCCGGCAACCTCAGCGTCGGCGCACTGGTGGCGACCTACATGCTCGGCAGCCGGGTCCTCGCGCCGCTGGGCCAGATCGCCGGGCTGATCACTCGCTACCAGCAAGCCCAGCTCACCATGCGCAGCACCGATGCCTTGATGGCCCTGCCCCAGGAGCGCGACGCCAGCCAGCGTCCGCTGGAGCGCACCCAATTGCAGGGCGCCCTGGATGTCAGCGGCGTGACCTTCCACTACGACGGCCAGAGTACCCCGGCGTTGGCGAACGTCAGTTTCAGCCTCAAGCCTGGCGAGCGCGTCGGGATCATCGGCCGCAGCGGCTCGGGCAAAAGCACCCTGGCGCGCCTGGTGATGGGTTTTTATGCCCCGCAGGAAGGTCAGTTGCTGCTCGATGGCCTGGACCTGCGGCAACTGGACGTCGCCGACCTGCGTCAACAGATCGGCTACGTCGCCCACGACCTGCCTCTGCTGGCCGGCAGCCTGCGCGACAACCTCACCCTTGGCGCCCGCTACATCAGCGACGGCCGCATGCTGGAGGTGGCGGAACTCACCGGCGTGACCGAACTGGCGCGCCAGCACCCGCAAGGCTTCGATCGCCCGGTCGGCGAGCGCGGCCAGCTGCTGTCCGGAGGCCAGCGCCAGGCCGTGCTGCTGGCGCGGGCCCTGCTGCTCGACCCGCCGATCCTCTTGCTCGATGAACCCACCAGCGCCATGGACAACAGCAGCGAAGATACCTTGCGGCAAAAACTTCACGCCCATGTGCAGGGCAAGACCGTGCTGCTGGTCACCCACCGTACCTCGATGCTGAGCCTGGTGGATCGCCTGGTGGTGCTGGAAAACGGACGGATCGTGGCGGACGGACCGAAGGACGCGGTGATCGATGCGCTGCGCAAAGGGCGGGTGGGGTCTGCTGCAGTATAAMTRMEPVIPGADPRLNFDDPLLDGLLILCKLHGATVSRASLSAGLPMAHQRLSLDLLPRAAARASLQARLLRRDLADISALNLPVMLILAGGRCAILRRWGDDGQALILPSEADGGEQWVSRQELAADYSGQALFARPRHELEDLRAPLVPRVEAWFRDTLKLSRWLYSDAILASFLINLLGLMVPLFVMQTYDRVVPNQATSTLWVLAVGLLIGTGFELVLRVVRAHLLDSAGKKTDVILSATLFERITGMAMKAKPVTIGGFAQSIHDFQGLREFLTAVTLTSLIDLPFAVLMLVVIGLLGGWLVVIPVVAFPITVVFAMIIQARLRDTVQKSLALGAQRQALLIETLGGLETLKACSAESERQHQWESTHGALTRLDSHARNLSALATNGTLFLQQLAGMATIVAGVYSIIAGNLSVGALVATYMLGSRVLAPLGQIAGLITRYQQAQLTMRSTDALMALPQERDASQRPLERTQLQGALDVSGVTFHYDGQSTPALANVSFSLKPGERVGIIGRSGSGKSTLARLVMGFYAPQEGQLLLDGLDLRQLDVADLRQQIGYVAHDLPLLAGSLRDNLTLGARYISDGRMLEVAELTGVTELARQHPQGFDRPVGERGQLLSGGQRQAVLLARALLLDPPILLLDEPTSAMDNSSEDTLRQKLHAHVQGKTVLLVTHRTSMLSLVDRLVVLENGRIVADGPKDAVIDALRKGRVGSAAVPGPT0022225_803DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_I_SECRETION_SYSTEMSCE-TSS1-ADHESIN_TRANSPORT,PGPT0022225-lapB-K12541NANA
D1-35_005001359bepC_1Outer membrane efflux protein BepCATGCGCGTTCTTACCCCTCTCTGCAGCGCGGTTTTGCTGGCCATGGCCTGCTCTTCTCAAGCGCAGGCCATGTCCTTGACCGAAGCGATACAGAGCACCATCGCGACCCACCCGGAACTCGCACAGCGGGTGGACAGCCGTTTGTCGGCCAATGAAGACGTCAAGGTCGCCCGGGGCGGTTTTTTCCCGTCGGTGGATTTGAACGCCGGCTATGGTCGGGGCTACAGCGACAACACCAACACCCGGGCGCTGGGCAACCATCACACCAATATCCTCACCTACACCCAGTCGGAGCTGCGCCTGCGCCAGATGATCTTTGACGGGTTCAACACCGCCAACGAAGTGGAACGCACCAAGGGTGTGGTCAACTCCCGCGCCTATTACGCCCAGGGCACCGCGCAGGACCTGGCCCTGCGGACCATCGAGGTCTACCTGGAAGTGCTCAAGCGTCGCGAGCTGGTAACCCTGGCCAAGAACAACCTGCAGGCGCACCTGCGCGTCAACGACCAGATCGGCCTGCGCACCGAGCGTGGGGTGGGCAGCACGGCCGACTCCGACCAGTCCAATGCCCGTCGGGCCCTGGCGGAAAACAACTACGATACCGCCCAGGTCGACCTGGCCGATGCCGAGGCGAACTTCTACAGCGTGGTCGGGCGCATGCCCGATGAGCTGGAAGCCCCGCCGTCGACCAAGGGCGAAATCCCGGTCGACCTGCGCGAAGCCCAGCAGAGCATGGTGGATAACAACCCGTACCTGAAATCGGCCCAGGCCGACATCCAGTCCGCCGAAAGCCAGTATGAAGTGGCGAAATCGCCGTTCTACCCGCGCTTCGATGCGGAAGCGGCGGTGGGCGCCAACAACAACCTCGGCGGCGAAGAAGGCCACGACAACAACTGGCGGCTGGGCGTGGTGATGAACTACAACCTGTTGCGCGGTGGTAGCGACAAGGCCCGGCTGGCCTCCAACGCCCACCAGATCAACCAGGCCATGGACATCCGCAACAACGCCCTGCGCCAACTCAACGAAGACACGCGCCTGGCCTGGAACGCGATGCTCAACGCCCGCAAACAGACCCCGACGGCCCGTGAGTACGCCGACACCACCGCCCGCGTGCGTGCCGCTTATCAAGACCAGTTCGGCCTCGGCCAACGGACCCTGCTCGACTTGCTCGACAGCGAAAACGAGCTGTACAACGCCAACCGTCGCTACACCGAGGTGCGCTACACCGAGGAATACTCCATGTACCGCGTGCTGGCGAACATGGGCCTGTTGTTGAGCAAACAGCGGATCGTGCTGCCGGCCGACGCCGTCGCCCAGACCGAAGTCAAGAACCAGGCACGGCTGCCGGAACTGAAGTAGMRVLTPLCSAVLLAMACSSQAQAMSLTEAIQSTIATHPELAQRVDSRLSANEDVKVARGGFFPSVDLNAGYGRGYSDNTNTRALGNHHTNILTYTQSELRLRQMIFDGFNTANEVERTKGVVNSRAYYAQGTAQDLALRTIEVYLEVLKRRELVTLAKNNLQAHLRVNDQIGLRTERGVGSTADSDQSNARRALAENNYDTAQVDLADAEANFYSVVGRMPDELEAPPSTKGEIPVDLREAQQSMVDNNPYLKSAQADIQSAESQYEVAKSPFYPRFDAEAAVGANNNLGGEEGHDNNWRLGVVMNYNLLRGGSDKARLASNAHQINQAMDIRNNALRQLNEDTRLAWNAMLNARKQTPTAREYADTTARVRAAYQDQFGLGQRTLLDLLDSENELYNANRRYTEVRYTEEYSMYRVLANMGLLLSKQRIVLPADAVAQTEVKNQARLPELKPGPT0022235_756DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_I_SECRETION_SYSTEMSCE-TSS1-ADHESIN_TRANSPORT,PGPT0022235-lapE-K12543NANA
D1-35_00501702hypothetical proteinTTGCACCAGCGCGCCAGGATTGCTGGCGGTACCGTCGGCAAGATTGGCCTCGTTGGTGCTCAGCTCGCCGCCGTCCACGGTCACGCCATCAAGGGTGACGGGGTTGTCCGGCGTTTCAGGAATGACCGGCGGCACGGTTCCATCGCCATCATCGCCATCGTTGGCGTCCGGATCAGCCGCCAGCTCCAGTTGTGGAAACTCGGGAATCCCGTTGAACCCGGCGGTTGGGAAGCCAATCAGAGGATCAACCTCCCCGGCTACCTCCTCCAGCAGCACAAAGCTGTGCCCACCGCCCACTCCGCCCGGGTTGCCGCCCTCGGCGCCCGCCGCCGTGGCCTCGCCCGTCTGGGTCGGGTCGGCGCCGGCGGCGATGGCTTGCTGCAATTGCTGCACATCGGTCAGTTGCGCATTACTTGGCACTGGCGCTTCGGGCGTGTCGACAGGCGCTGCCTGGTTGGCGAGCAGCTGCGGGGTCAGGGTCAGGTCACTTTCGCGGCCCAAGGTCAGTTCCTGGCCGTTCTGCAAATGCACGGCTACCGCCCCCTCAGCGCCGGTGATCAGGTGCTCACCGGCGTACAACCGATCACCTTCGATCAACGGGCGCCGCAGCCCACCGGCGGCCTCTGCGAAAACCTGCCCTACGACCTTACTGACGGTACCGATGAGCGCTGCCATGTGCATTTCCTCCGTTGCCAACCGTAGMHQRARIAGGTVGKIGLVGAQLAAVHGHAIKGDGVVRRFRNDRRHGSIAIIAIVGVRISRQLQLWKLGNPVEPGGWEANQRINLPGYLLQQHKAVPTAHSARVAALGARRRGLARLGRVGAGGDGLLQLLHIGQLRITWHWRFGRVDRRCLVGEQLRGQGQVTFAAQGQFLAVLQMHGYRPLSAGDQVLTGVQPITFDQRAPQPTGGLCENLPYDLTDGTDERCHVHFLRCQPNANANANANA
D1-35_005024779hypothetical proteinTTGCTCGACAACGAAGCGCATCCAAATGCCAACGGCGCGAACAGCCTGGGCGAGCAGTTCAGCGTGGTGGTCACTGATGACAACGGCACCACGGCCACCGGCAACCTGGACGTGAACATCGTCGATGACTTGCCTCAGGCCGTGGACGACAGCAACGCCGGTACTGCCTCGGAAAACAACCTGACCCTGACCGGCAGCGTGCTGCCCAACGACAACCAAGGCGCCGATCAGGTGGCGTCCGGGCCGATTACTCCCGGCACTTTCACCGGCACCTACGGCACGCTGGTGCTCAACGCCGACGGCTCCTACACCTACACGCTTAACCCTGGCGACACCGATTTCAAAGGCCTGCACGGCGGCGGCAACGGCACCGAAACCTTCACCTACACCCTGACCGACGCCGACGGCGACACCAGCACTGCCAACCTGGTGCTGCAAGTGCACAACAACGACGACCCGGTGATCATCAACGGCCTCGACACCGAGGGCGGCGAGCTCACGGTGCAGGAGAAAAACCTCGGCGACGGCAGCAACCCGGACGCCTCGGCGCTGACCCAGAGCGGCACTTTCACCATCACCGCGCTGGACGGCGTGCAAACCCTGAGCGTCGGCGGCATCACTGTGGTCAGCGGTGGCGTCGCCGCCGGTTTCCCGCAATCGATCACCACCGCGTTGGGCAACACCTTGACCGTCACCGGCTTCAACGCCGCCACGGGCGTGGTCAGCTACAGCTACACCTTGCTCGACAACGAAGCGCATCCAAATGCCAACGGCGCGAACAGCCTGGGCGAGCAGTTCAGCGTGGTGGTCACTGATGACAACGGCACCACGGCCACCGGCAACCTGGACGTGAACATTGTCGATGACTTGCCCAAGGCCCACGCCGACTCCGCCTCGGTGGAAGAGGGCGCGACGGTCAGCGGCAACGTGCTGAACAACGACGAGGGCGGCGCCGACGGGCCTGCCGCCAGCGGCGCAGTGATCGGCGTACGCGCCGGCAGCGATACATCGACCTCCGCCGTAGGCGGCCTCAACAGCCAGATCAATGGCACCTACGGCTACCTTACCCTGGACGCCAACGGCAACGCGGTCTACCACAGCAACCCGAACGCCGTCAGCGCACCGGGCGCCACCGATGTGTTCACCTATACCGTGCGCGACGCCGATGGCGACGAGAGCACCACGACCATCACCATCGACGTTTATAACAGCTGCCTGGCCGCAACCCCTGACCAGGAAATCCGCGTCTATGAAAAAGCCCTGGATCTCAACCAGGATGGCCAGGACCTGGCCCCCGGCACCGTCACCGGCAGTGCGCCGAATGCCAGCAGTGAAACCGCGAGCGGCAGCCTTGTCGGCTCGGTGACCGGTGCCGTCGGCGCCGTCACCTTCGCCCTGATCGGCAATGCCACTGGCGCCCATGGACAACTGTTGCTCAACCCGGACGGTTCGTACACCTACACCCTGACGTCGCCCGCCACGACAACGCCCGCCGCCAATGATGGTCCGAACGTGTTGAGCGAAAGCTTCACGTACCAAGCTACGGACTCACTCGGTAACAGCGTCACCAGCACCATCGTTATCAACATCGTCGACGATGTGCCCAAGGCGCACTGTGATACCGCGGCGGTGGTGGAGGGCGGGACGGTCAGCGGCAACGTGCTGGATAACGACGTGCTCGGCGCCGATGGTGGCGTGGTGATCGGCGTGCGGTCCGGCAACGATACGTCAAGCCCGGCCAGCGGCGTCCTGAACAGCCAGATCAACGGCACCTACGGCTACCTGACCCTGGATGCCAATGGCAACGCGGTCTATCACAGCAATCCGGACTCCGTTGGCGTACCGGGTGCCACCGATGTATTCACCTACACCGTGCGCGATGCCGATGGGGATGAAAGCACCACGACCATCACCATCGACGTGCACAACAGTTGCCTGGTCGCTGAAACCGATCATGACGTCACCGTTTACGAAAAAGCCCTGGACCTGAAACAGGACGGCCAGGACCTGGCACCCGGCAGCGCCACCGGCAGCGAGCCGGGCAGCACCGGCGAAACCGCCACCGGCACCTTGGTCGGTTCGGTCAGCGGTGCAACCGGCGCCGTGACATTTGCCTTGGTGGGAGACGCCAATGGCGCTCACGGCCAGTTGCTGCTCAACGCCGACGGCTCTTACACCTATACGCTGACCTCGCCGGCGAATACCACGCCGCATGCCAACAATGGCCCGAACGTATTGACCGAAAGCTTCACCTATCAGGCCACCGATTCCCTGGGCAACAGCACCACCGGCAACCTGGTGGTGAGCATCGTCGACGATGTGCCCAAGGCTGTCGCGTCCGAGCGTTCGGTCCCGGCGGTGGAGATCGATTCGAACCTGCTGATCGTGCTCGACGTGTCCGGCAGCATGAAAGACGATTCCGGTGTGCCGGGCCTCTCGCGAATGGACCTGGCCAAACAGGCGATCAGCGCCTTGCTCGACAAATACGACGACATGGGCGACGTGAAAGTCCAGCTTGTGACCTTCAGCGGCAGCGCCACCGGCCAGAGTGCCGTGTGGGTGGACGTGGCAACCGCCAAGACACTGATCGCCGCGCTGAAAGCGCACGGTGATACCAATTACGATGCGGCCGTAGAGATGGCCAAGACGGCGTTCGCAACACCGGGGCAACTGACCGGCGCCCAGAACATTGGCTATTTTTTCTCCGACGGCAAGCCGACCAAGGGCGACATCGGCCCGGCGGACGAGGCCGCGTGGAAGGCCTTCCTCGACGCCAACAGCATCAAGAATTACGCCGTCGGCCTGGGCAGCGGCGCCAGAAACGTCAATCTTGACCCGCTGGCCTACGACGGCAGCACCCACACCAACACCAACGCGGTGGTGGTGACTGACTTGAACCAGCTCAATTCGGTGCTTTCCGGCACGGTGCAAGGTGTGCCGGTTACCGGCAGCCTGTTTGGCGAAGGCGGCTCGTTCGGTGCCGACGGCGGGTTTATCAAAAGCCTGGTGGTGGACGGCACGACCTACAGCTACAACCCCGATGCCAACGGTGGCCAGGGGGCGCTGACCGTCAGCGGCGGGGCCAACCACGGCACCTTCAACACCGCGACCAACACCGTCAGCATCGCCACCGGGCATGACGGCATGCTCGTGGTGAATCTTGATACCGGCGCGTTCAGCTACACCTCCCAGACCACCACCAGCACCTTGATCACCGAGAACATCGGCTACACCCTCAGCGATAACGATGGTGACCTGGCGGGCTCCAACCTGGTGATCAAAGTCCAACCCAACAGCGCTCCGGTGGCGGTCGATGACAACGTCATCACCAACGTGCTCTCGGGCAATATCGTGGTTCCGGGTGAACTGCTGCTGGGCAATGACAGCGACGCCAACGGCGACCCGCTCTCCGCATCACCGACCAGTTTTAATACCGGCTGGGTGGCCAGGGGCGCGGATTTCACCGGCAGCGCCGGTACCGCCAGTTTCACTGGCAACAACGCCCAGTCGATCAGCCTCAACCGCAGTGCCTTCGTCGCCAACACCGCGAGCATGACCGCGGTGCTGGTGGTCAGCGGGGCGCTGGGGGCGGTGTCGAACAACAACGCCAACGATGAAGACCGGCTCAACATCAGCCTCAAGCAAGGCGAAACCCTGACCCTGGATCACAATCTCACGGCCGGTCGCATCGCCATGGAATATTCGCTTAACGGCGGCCCCTTCATCGCAATCAACGACGGCGCCTCGTTCACCGCGGCGGCGGATGGCAATTATCAGATCCACGTCACCAACATTCCCAACCCCGGCAATGGCAACGCCAATGCCTCGGAAAATTACCAACTGACCCTGACCGTCAACTACGCCGGTGCCCAGGACACTACTCCCGATTATCACGGCAGCTACACTGCCAGCGACAACCACGGCGGCAGCGATTCCGCCGGGGTGGGCATCAGCTATCAGGCGGGCCACACCCTGACGGGGACCACGGGCAACGATGTACTGCTGGCCGGCAATGGCAACAACGTGCTCAACGCCGGCGACGGCAACGACATCCTCAGCACCGGCGCGGGCAACAACACCTTGCATGGCGGGGCTGGCGATGACTTGCTCTACAGCAGTGCCGGTAACGACCTGCTCGACGGCGGCACTGGCAACGACACCGCCAGTTATGCCCATGCCACCGGCGGCGTCACGGTAAATCTCGGCCTGCTGGCCGGACAGAACACCCTGGGGGCCGGCACCGACACCCTGGCCGGCATCGAGAACCTGGTCGGTTCGAACTTCAACGACCACCTGACCGGCGACAGCCTGAGCAATCGCATCGACGGCGGCCTCGGCCATGACGTGCTCAACGGCGGTAACGGCGATGACCTGCTGATCGGCGGCCTGGGCAACAACACCCTCACCGGTGGCAACGGCGCCGACACGTTCCAATGGCAGGCGGGCAACAGCGGTCACGACGTCATTACGGATTTCACACCGGGCCTCGACAAACTCGACCTGTCGCAACTGCTGCTGGGCGAGAACGGCAGCGCGGCGTCGCTTGATGACTACCTGCACTTCAGCGTGACCGGCAGTGGAGCCTCGTTGATCACCAGCATCGACGTCAGCAGCACCGCCGGCGCCACGCCGAACCAGACCATCGACCTGGCCGGCGTCAACCTCGCCAGTCACTACGGCGTCACGCCGGGCGCAGGCGGAATGATCGGCGGCGCGGATACCGCGACCATCATCAACGGCATGCTGAACGACCATTCGTTGAAGGTCGACACGGTGTGAMLDNEAHPNANGANSLGEQFSVVVTDDNGTTATGNLDVNIVDDLPQAVDDSNAGTASENNLTLTGSVLPNDNQGADQVASGPITPGTFTGTYGTLVLNADGSYTYTLNPGDTDFKGLHGGGNGTETFTYTLTDADGDTSTANLVLQVHNNDDPVIINGLDTEGGELTVQEKNLGDGSNPDASALTQSGTFTITALDGVQTLSVGGITVVSGGVAAGFPQSITTALGNTLTVTGFNAATGVVSYSYTLLDNEAHPNANGANSLGEQFSVVVTDDNGTTATGNLDVNIVDDLPKAHADSASVEEGATVSGNVLNNDEGGADGPAASGAVIGVRAGSDTSTSAVGGLNSQINGTYGYLTLDANGNAVYHSNPNAVSAPGATDVFTYTVRDADGDESTTTITIDVYNSCLAATPDQEIRVYEKALDLNQDGQDLAPGTVTGSAPNASSETASGSLVGSVTGAVGAVTFALIGNATGAHGQLLLNPDGSYTYTLTSPATTTPAANDGPNVLSESFTYQATDSLGNSVTSTIVINIVDDVPKAHCDTAAVVEGGTVSGNVLDNDVLGADGGVVIGVRSGNDTSSPASGVLNSQINGTYGYLTLDANGNAVYHSNPDSVGVPGATDVFTYTVRDADGDESTTTITIDVHNSCLVAETDHDVTVYEKALDLKQDGQDLAPGSATGSEPGSTGETATGTLVGSVSGATGAVTFALVGDANGAHGQLLLNADGSYTYTLTSPANTTPHANNGPNVLTESFTYQATDSLGNSTTGNLVVSIVDDVPKAVASERSVPAVEIDSNLLIVLDVSGSMKDDSGVPGLSRMDLAKQAISALLDKYDDMGDVKVQLVTFSGSATGQSAVWVDVATAKTLIAALKAHGDTNYDAAVEMAKTAFATPGQLTGAQNIGYFFSDGKPTKGDIGPADEAAWKAFLDANSIKNYAVGLGSGARNVNLDPLAYDGSTHTNTNAVVVTDLNQLNSVLSGTVQGVPVTGSLFGEGGSFGADGGFIKSLVVDGTTYSYNPDANGGQGALTVSGGANHGTFNTATNTVSIATGHDGMLVVNLDTGAFSYTSQTTTSTLITENIGYTLSDNDGDLAGSNLVIKVQPNSAPVAVDDNVITNVLSGNIVVPGELLLGNDSDANGDPLSASPTSFNTGWVARGADFTGSAGTASFTGNNAQSISLNRSAFVANTASMTAVLVVSGALGAVSNNNANDEDRLNISLKQGETLTLDHNLTAGRIAMEYSLNGGPFIAINDGASFTAAADGNYQIHVTNIPNPGNGNANASENYQLTLTVNYAGAQDTTPDYHGSYTASDNHGGSDSAGVGISYQAGHTLTGTTGNDVLLAGNGNNVLNAGDGNDILSTGAGNNTLHGGAGDDLLYSSAGNDLLDGGTGNDTASYAHATGGVTVNLGLLAGQNTLGAGTDTLAGIENLVGSNFNDHLTGDSLSNRIDGGLGHDVLNGGNGDDLLIGGLGNNTLTGGNGADTFQWQAGNSGHDVITDFTPGLDKLDLSQLLLGENGSAASLDDYLHFSVTGSGASLITSIDVSSTAGATPNQTIDLAGVNLASHYGVTPGAGGMIGGADTATIINGMLNDHSLKVDTVNANANANANA
D1-35_00503399ybaN_2COG2832Inner membrane protein YbaNGTGCCTGCGCCCCTCGGCAATCGCCCGCTGATCCTGCGCTACGCTCTGCTCGCCATCGGCTGGCTGAGCGTGGTGCTGGGGGTCATCGGCATCTTTATTCCCGTCCTTCCCACCACCCCCTTCCTGTTATTGGCCGCGGCCTGCTTCGCCCGCAGTTCGCCACGCTTCTACCGCTGGCTGGTGGAGCATCCGCGCCTCGGCCCCTGGATCGGCGACTACCTCAGCGGCAACGGCATCCCGCTCAAGGGCAAGGTCTACGCTATCGGGTTGATGTGGGCGAGCATCCTGCTGTCGTGCTACCTGGTGCCCCTGCCATGGGCGCGGGTGTTCATGCTGACCAGCGCGGTGCTGGTGACGGTGTATATCCTCAGGCAGAAGACGCTGCGCAAACCTGATTGAMPAPLGNRPLILRYALLAIGWLSVVLGVIGIFIPVLPTTPFLLLAAACFARSSPRFYRWLVEHPRLGPWIGDYLSGNGIPLKGKVYAIGLMWASILLSCYLVPLPWARVFMLTSAVLVTVYILRQKTLRKPDPGPT0009435_7DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009435-mqnB-K11783NANA
D1-35_00504588hypothetical proteinATGTCCTTCGCTGAGCAACTGACCCGCCTGCAAGTGTTCCTCGACGCCGATGAGCTGCACGAAGAGGCGCTGGATTACGTGGCCGCTCATGGCTACCTGACCGCCCTGTCGATCTGCTCCGAGCAGGTGCCGGAGCGTGAATGGATCGACGCCCTGTTCGCCGAAGAACCGCACTACAGCGACGAAGCCCAACGCGCCGAAATCGAAGCGACGCTGGTCGGCCTCAAGGCTCACATCGCCCGCCAACTGGCTTCCGATGAAGAATTCGAGCTGCCGTGCGAGCTGGACCTGGGCGACGATCCGGACGATTCGGAACTGCGCGGCTGGTGCATCGGCTTCATGGAAGGCGTGTTCCTGCGCGAAGCGGCCTGGTTCGAAACCGCCGAAGAGGAAGTCAGCGAAATGCTGTTGCCGATCATGGTCGGTTCCGGTCTGTTCGACGAGCAACCGGAGTTTTCCGACATTGCCGCCGACGCGAACCTGATGGACGACATGATCGTGCAAATCCCCGAAGCGCTGACCGCCTTGTACCTGCTGTGCAACGCCCCGGACGAAAAACCGGCGATCCTCAAGCCGCGCCACCACTGAMSFAEQLTRLQVFLDADELHEEALDYVAAHGYLTALSICSEQVPEREWIDALFAEEPHYSDEAQRAEIEATLVGLKAHIARQLASDEEFELPCELDLGDDPDDSELRGWCIGFMEGVFLREAAWFETAEEEVSEMLLPIMVGSGLFDEQPEFSDIAADANLMDDMIVQIPEALTALYLLCNAPDEKPAILKPRHHNANANANANA
D1-35_005052127recQCOG0514ATP-dependent DNA helicase RecQATGCTCGAACAGGCTCAACGCGTCCTCAAGGACATCTTCGGCTACGACAGTTTTCGTGGCCGCCAGGGTGCCATCATTGAGCGCGTGGCCAGCGGTGGCGATGCCTTGGTGCTCATGCCTACCGGCGGCGGCAAGTCCTTGTGCTTCCAGGTGCCCGCGCTGCTGCGCAACGGCCTCGCGGTGGTGGTATCGCCGCTGATCGCCTTGATGGACGACCAGGTCGCGACCCTCGAGGAATTGGGCGTTGCCGCCGCCGCGTTGAACTCCACGCTGAGCGCCGAGCAGCAGCGGGACCTGGCGGAACGCATCAAGCGCGGTGAAGTGAAAATGCTTTACCTGGCGCCTGAACGTCTCGTGCAGCCGCGCATGCTGGCTTTTCTCCAGAGCCTGGAAATCGCCCTGTTTGCCATCGACGAAGCCCACTGCGTATCCCAATGGGGCCATGACTTCCGTCGTGAATATCTGCAACTGGGGCAATTGGCCGAGCTGTTTCCCGACGTGCCGCGCATCGCCCTGACCGCCACCGCCGACAAACGTACCCGCGAAGAAATCGTCGAGCGCCTGCACCTGCAGAACGCCGAGCGGTTCCTCTCCAGCTTCGACCGCCCGAACATTTTTTACCGCATCGTGCCCAAGGAACAGCCGCGCAAGCAACTGCTGGCGTTCCTCGCCGAGCGCCGCAGCGACGCGGGTATCGTCTATTGCCTGTCGCGCAAGAAAGTCGAGGAGGTGGCGGCGTTTCTCAGCGAGCAAGGTTTCCCGGCATTGCCCTACCATGCTGGGCTGCCCAACGATTTGCGGGCCTATCACCAGAAGCGCTTTCTCAACGAGGAAGGCCTGATCATGGTCGCCACCGTGGCGTTCGGCATGGGTATCGACAAGCCCAACGTACGGTTCGTCGCGCATTTGGATCTGCCCAAGTCCCTGGAGGCCTATTACCAGGAAACCGGCCGTGCCGGTCGTGACGGTTTGCCGGCCGATGCCTGGATGGCCTACGGCCTGCAGGACGTGGTGATGCTCAAGCAGATGCTGCAGAACTCCGAGGGCGATGAGCGCCACAAACGCCTGGAACAACACAAGCTCGACGCGATGCTATCGCTCTGCGAAGAAACCCGTTGCCGCCGCCAGACCTTGCTGGCCTATTTCGATGAGGACATGCCCGAACCTTGCGGGCACTGCGACAACTGCGTCGACGGCGTGGAGACCTGGGACGCCACCGAGCCGGCCCGCCAGGCGCTGTCGGCCATCTATCGCACGGGCCAGCGTTATGGCGTGGGGCATCTGGTGGACGTGCTGCTGGGCAAGGACAACGAAAAGGTCCGCAGCTTTGGCCATCAGCACCTTTCGGTGTTCGGCGTGGGCAAGGCCCGCACCGAGAGCGAATGGCGCTCGCTGTTCCGGCAACTGGTGGCGCGCGGCCTGGCCGACATCGACCTGGAAGGTTATGGCGGCCTGCGCCTGAGCGCGACCTGCCGGCCCTTGCTCAAAGGCGAGGTCAGCCTGGAACTGCGTCGCGACCTCAAGCCCGCAACAGCGATCAAGAGCAGCAAGAGCCAGGCCAGCCAACTGGTGCGTGGCGAGGAGCGCGATCAGTGGGAGGCCTTGCGCGCCTTGCGGCGCAAGCTGGCGGAGGAGCATGGCGTGCCGCCCTACGTCATTTTCCCCGACTCGACGTTGCTGGAAATGCTCCGCAGCCAACCGACTTCCCTCGCGGAAATGGCCCGGGTCAGTGGCGTTGGCGCGCGCAAGCTGGAGCGTTACGGCGAGGCTTTCCTCCAGGTGCTCGGCGGCGAAGCCGAAGCGCCAAAAGCCGTGGCCGATGTACGCCACGAACTGATCACGCTGGCTCGTGCCGGCATGACCCCGCTACAGATCGCCGGGCAACTGCAGTGTTCGGAAAAGAATGTCTACACGATGCTGGCCGAGGCGATCGGTCAACAGCAGCTATCCCTGGAGCAGGCGCTGGATTTGCCCGAAGAACTGATGGGCGAAATCCAGGACGCGTTTCTCGACGGCGAGGGTGAATTGCCCGCGGTATCTGACGTTGCCGCGCTGTTTGCAGGCCGCGTTCCGGAAGGCGTCCTGTATTGCGTAAGAGCTGCATTGCAATCGGAATTTGAAGTCTGAMLEQAQRVLKDIFGYDSFRGRQGAIIERVASGGDALVLMPTGGGKSLCFQVPALLRNGLAVVVSPLIALMDDQVATLEELGVAAAALNSTLSAEQQRDLAERIKRGEVKMLYLAPERLVQPRMLAFLQSLEIALFAIDEAHCVSQWGHDFRREYLQLGQLAELFPDVPRIALTATADKRTREEIVERLHLQNAERFLSSFDRPNIFYRIVPKEQPRKQLLAFLAERRSDAGIVYCLSRKKVEEVAAFLSEQGFPALPYHAGLPNDLRAYHQKRFLNEEGLIMVATVAFGMGIDKPNVRFVAHLDLPKSLEAYYQETGRAGRDGLPADAWMAYGLQDVVMLKQMLQNSEGDERHKRLEQHKLDAMLSLCEETRCRRQTLLAYFDEDMPEPCGHCDNCVDGVETWDATEPARQALSAIYRTGQRYGVGHLVDVLLGKDNEKVRSFGHQHLSVFGVGKARTESEWRSLFRQLVARGLADIDLEGYGGLRLSATCRPLLKGEVSLELRRDLKPATAIKSSKSQASQLVRGEERDQWEALRALRRKLAEEHGVPPYVIFPDSTLLEMLRSQPTSLAEMARVSGVGARKLERYGEAFLQVLGGEAEAPKAVADVRHELITLARAGMTPLQIAGQLQCSEKNVYTMLAEAIGQQQLSLEQALDLPEELMGEIQDAFLDGEGELPAVSDVAALFAGRVPEGVLYCVRAALQSEFEVNANANANANA
D1-35_00506435slyA_1Transcriptional regulator SlyAATGCCTCTAACCGATCAACACCGCTTTGGCATGCAGTTGGCGCAAATGTCCCGGGGCTGGCGAGCCGAGCTGGACCGTCGCCTCGCCGGGCTGGGCCTGTCCCAGGCGCGTTGGCTGGTGCTGCTGCACCTGGCCCGCTTCGAACAGGCGCCGACCCAGCGTGAGCTGGCCCAGAGCGTCGCCGTTGAGGGCCCGACCCTGGCCCGCTTGCTCGATAGCCTGGAAACCCAGGGACTGGTGCAGCGCCAGGCCGTGGCCGAGGACCGCCGCGCCAAGAAAATCGTGCTCTGCGCGCCGGCCTTGCCGCTGATTGAACAGATCGAAACCATTGCCACGCAGCTGCGTCGGGAGTTGTTTGAAGGCGTTGACGAAGAGGATATGCGGGTGTGCATGCGGGTTCACGGCAGAATCCTGGCCAACCTGGAAAAATCCTGAMPLTDQHRFGMQLAQMSRGWRAELDRRLAGLGLSQARWLVLLHLARFEQAPTQRELAQSVAVEGPTLARLLDSLETQGLVQRQAVAEDRRAKKIVLCAPALPLIEQIETIATQLRRELFEGVDEEDMRVCMRVHGRILANLEKSPGPT0016255_1557DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0016255-sylA-K06075NANA
D1-35_005072013hypothetical proteinATGCTTGAAAGTCTGCAGTCCACGTTGCGCAACTGGGTCAACGTGTTGATAGTCGTGGGTGCCCTGGGCTTTCCGGCCCTGGCGTCGGCGCTGGGGCTGGGAGAGATCACGCTTCATTCCGCGCTGAACCAGCCGTTGCGCGCCGATATTGCTTTGGTCGATGCGGCCGGCCTGGGCGAGGGGGATTTGTCGGCCAGCCTGGCGAGTCCGGACGATTTCACTCGCGCCGGGGTGGAGCGGGTGTTTTTTCTCAACAGCTTGCGTTTCACGCCGGTGTTGCGCGGCGAGCGCAGCTTCATCCGGGTGACTTCCAGCAAGCCGGTGGAAGAACCCTTCCTCAATTTCCTGGTACAGCTCAACCAGCCTAACGGCCGGGTGCTGCGCGAATATACCGTGCTGATCGATCCGCCGGGCACGCCAGGGATTGTGCCGGCCGTGGACGAGCCTTCCGCTGCGGCCGAAGCGACACCCGCGATCAAGCCACCACCGGCCATACAAGGCAAGCGCTACACCGTCGTGCAGGGCGACAACCCCTGGATCATCGCCAAGCGCCTGCATGACGCCGGCAGCAATGCCTCTGTCAATGAGCTCATGCAGGGCATCCAGGCGCTGAACCCTGGCAGCGAGCGGCTTTCCATCGGTCAGCGCCTGTTGCTGCCCGACTCGGCCATATTGCCGCCTCCCGCCGCAACCCCTTCAACGCCGGCCTCTGTCGCCCCCGACAGCAACGCCGAGCAACTCGCCGCCACGGTGCTGCAAAACCAGCAACAACAGAAAACCATCGACGAACTTCAAGCCCGGCTTCAGGCCCAGGACGCGGAAATCGCCGGCCAGCGCCAGCAGATCAGCGAGTTGCAGGCGCAACTGGCCCAGGAGCCGCCGGATGCCGTTGCCGCGACAGCGGCGCCAGCGGAAGACGTCGAGCCCACTCCGGTGGTCGAGGCGACGCCGACCGACGAGGCAGAGGGCATCGATTGGGTGTGGGTGGCGGGGCTGGTGGGGCTGCTGGGGTTGCTCGTCGTGTTGCTGTTCCTTCGCCGTCGGCAACAGCAGGAGCTGGCGGATCCGCAGCCGATGTCCGAGCCTCGCGAATTGATCCTGGACGATGACGAACCCGAAACCTACGGGCAATCGGACGCCGAACGCCCTGAAGTCGCCGCGTCGTTCAATAACGGCGATGCGCCCCTCGGCGATGTGCTCGAAGGGGTGGGAATCTACCTGACCTATGGCCGCTTCACCGAAGCGGCGGGCTTGTTGCGCGCCGCGTTGCTGGCGGAGCCGGAGCGTACCGACCTGGGCCTCAAGTTGCTCGACGTGCTGGGCAAGCAGGGCGATGTCATCGGTTTCCAGGCCCAGGAGAACCACCTGCTGGCCCAGGGTATCGATCGCCAGGCGCTGGAAGAAGTCCGCGGGCGCTACCCGAGGATCTCCATGGTTACCGCGCCCGTTGAGACCTCCCTTGATACGCCGCGTGATACGCCGCGTGATACGCCACTTGATGCGCCTGCGCCGACAGAACCCCTGGCACGCATTCCAGAGCCCGAACCGCCCAGTCCCCCCAGCGACGAATTCGAGCTGAAGCTCGATAGCTTGTCCATGGAGAACAGCTGGGACCTGACCGACACCCCGCAGGCAGCCGCTGAACCGAAACCCCTGGAAACCTTCGAAACCGGCACCTTGTCGCTCTCGGGGTTCGATGAGCCCGACCTGCAATGGGGCGCGCCTCTGGAAACCGAGTCGTTGGACGATGATTTTCTCGACGGGTTTGCCGACGAAGAGCAGTCGCTGGAGTTGGAGCCGCTGACCGCCGAACCGGAATTCGACTCCCTGTCGCTCGAACCGGTGTCCTTTGAGGCGCAACCCTCGCAGCATTCGGAAAAGCTCGAAGAAGCCCAGAATCGTATCGATGAGGGTGACCTCAAGAGCGCCATCACGCTGCTGGAGGAACTGGTGGAAGAGGGCGACGAGCCGCTCAAGGAAACGGCCCGGGTGCTGCTGGCCGGGATTCGTTGAMLESLQSTLRNWVNVLIVVGALGFPALASALGLGEITLHSALNQPLRADIALVDAAGLGEGDLSASLASPDDFTRAGVERVFFLNSLRFTPVLRGERSFIRVTSSKPVEEPFLNFLVQLNQPNGRVLREYTVLIDPPGTPGIVPAVDEPSAAAEATPAIKPPPAIQGKRYTVVQGDNPWIIAKRLHDAGSNASVNELMQGIQALNPGSERLSIGQRLLLPDSAILPPPAATPSTPASVAPDSNAEQLAATVLQNQQQQKTIDELQARLQAQDAEIAGQRQQISELQAQLAQEPPDAVAATAAPAEDVEPTPVVEATPTDEAEGIDWVWVAGLVGLLGLLVVLLFLRRRQQQELADPQPMSEPRELILDDDEPETYGQSDAERPEVAASFNNGDAPLGDVLEGVGIYLTYGRFTEAAGLLRAALLAEPERTDLGLKLLDVLGKQGDVIGFQAQENHLLAQGIDRQALEEVRGRYPRISMVTAPVETSLDTPRDTPRDTPLDAPAPTEPLARIPEPEPPSPPSDEFELKLDSLSMENSWDLTDTPQAAAEPKPLETFETGTLSLSGFDEPDLQWGAPLETESLDDDFLDGFADEEQSLELEPLTAEPEFDSLSLEPVSFEAQPSQHSEKLEEAQNRIDEGDLKSAITLLEELVEEGDEPLKETARVLLAGIRPGPT0016075_1081DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-SURFACE_ATTACHMENTSURFACE_ADHESIONSURFACE_ADHESIVE_FIMBRIAE,PGPT0016075-fimV-K08086NANA
D1-35_005082190bamA_2Outer membrane protein assembly factor BamAATGCGCCGCCTGCTGCCATGCCTGCTCCTGTTACTGCTGCCCCTGTTCGCCGACGCGGTCGAAGCGCCGCGACCGAAGATCGGCCTGGTACTTTCCGGCGGCGCGGCCCGTGGGCTGGCGCATATTGGCGTGCTCAAAGCCCTGGAAGAACAAGGCATCAAGATCGACGCGATCGCCGGCACCAGCATGGGCGCGGTGATCGGCGGTCTATACGCCTCCGGGTACAAGATCGACGAGCTGGAGAAACTTGCCCTGGGCATCGACTGGCAGCAGGCGCTGTCCGATGCCCCGCCGCGCAAGGACGTGCCCTTCCGGCGCAAGCAGGATGACCGGGATTTTCTGGTGAAGCAGAAGCTGAGCTTTCGCGACGACGGCAGCCTCGGCCTGCCATTGGGCGTGATCCAGGGACAGAACCTGGCCCTGCTCCTGGAAAGCCTGCTGGCCCACGCCAGCGATACCCGGGATTTCGACAAGCTGCCAATCCCCTTCCGCGCCGTGGCGACCGACATCGCCACTGGCGAAAAAGTCGTGTTCCGCAAGGGCCACCTGCCCAAGGTGATCCGTGCCAGCATGTCGATCCCGGCGGTGTTCGCCCCGGTGGAACTGGACGGGCGGCTGCTGGTGGACGGCGGCATGAGCGACAACATTCCCTTGGACGTGGCCCGGGAAATGGGCGTGGACATGGCCATCGTCGTCGATATCGGCACGCCGCTGCGCAACCGCAAGCAATTGGTCACGGTGGTGGATGTGCTGAATCAGTCGACCACCCTGATGACCCGCCGCAACTCGGAGGAACAACTGGCGACGCTGAAAAACAACGACGTGCTGATCCAGCCCGCCCTGGCGAGCTTTGGCTCCACCGATTTCGGCCGCGCCACGGAAATAATCGACGCCGGTTACCGCGCCACCCGGATACTCGAGGCGCGCCTGGCGCACCTGCGTCGCCCTGAACCGGCCGACGCCGAGCTGATGGCGGCGCGCACCCCCAGCGAACGCACGCCGGTCATCACCGCGATACGGGTGGAAAACGATTCGAAAGTCGGCGACGACGTGATCCGCTATTACGTTCGTCAACAGATCGGCGAGCCGTTGGACCTGGGTCGGCTGCAAACCGACATGGGCACCTTGTACGGCCTGGATTATTTCGAGCAGGTGCAATACCGCGTAGTACACAAGGGCGCGGACAACACCCTGGTGATCAGCGCCCGGGGCCGACGCACCGGCACGGACTACCTGCGCCTGGGCCTGAGCCTGTCGGACGACATGCGCGGCGACAGCGCTTTCAACCTCGGTGCCAGCTACCGGGTCAATGGTATCAATCGCCTCGGCGCCGAATGGCTGACACGGGTGCAGATCGGCGACAAGCAGGAGCTGTACAGCGAGTTCTACCAGCCGCTGGACGTCGGCTCGCGCTACTTCATCGCGCCCTACGGACAATTCGAATCGCGCAACGTCGAGTCGATCCTCGATAACGACCCGGTCGCCCAGTATCGGGTCGAGCGCTATGGCTTCGGCCTGAACCTGGGCCGCCAGATCGGCAACAGCGGGGAAATCCGCTTCGGTGTCGGCCAGGCCTGGGGCAAGGCGGACGTGCGCATCGGCGATCACGACCAGCCCAGCGAAAACTTCAACGAAGGCTTCTACGAGCTCAAGTATTCATTCGACTCGCTGGACAACGTCTACTTCCCCCACGAAGGGGAAGACATCGGCTTGTCCTGGCGCCAGTACGAACCCGGATTAGGTTCCGACCAGCGTTATCGCCAGTGGGAATTCAGGTTGGACAAGGCCCTGAGCAGCGGCCCGGATACCCTCATCCTCGGCGGTCGTTATGGCCGGACCCTGGACACCGCCGAGGTCGTGACGTCGAGTTTCGTCCTCGGCGGCGCCCGACAGCTGTCGGGTTTTCGTGAAGACGGGGTATCCGGCCAGAACATGAGCCTGATGCGCGCCGTGTACTACCGCAGGCTCACGCCGCGCGCCTACCTGCCGCTGGATTTCCCGTTGTATGTCGGCGGTTCGCTGGAGCGCGGCCGGGCCTGGAACAACGACAATGAATTCGACAGCGGCTACATCAACGCCGCCAGTATTTTCCTCGGGTTCGACACGCCGCTGGGGCCACTCAACTTCAGTTATGGCTTCAACGACGATGATGAGCAGGCGGTGTATCTGAATCTGGGGCAGACGTTCTAGMRRLLPCLLLLLLPLFADAVEAPRPKIGLVLSGGAARGLAHIGVLKALEEQGIKIDAIAGTSMGAVIGGLYASGYKIDELEKLALGIDWQQALSDAPPRKDVPFRRKQDDRDFLVKQKLSFRDDGSLGLPLGVIQGQNLALLLESLLAHASDTRDFDKLPIPFRAVATDIATGEKVVFRKGHLPKVIRASMSIPAVFAPVELDGRLLVDGGMSDNIPLDVAREMGVDMAIVVDIGTPLRNRKQLVTVVDVLNQSTTLMTRRNSEEQLATLKNNDVLIQPALASFGSTDFGRATEIIDAGYRATRILEARLAHLRRPEPADAELMAARTPSERTPVITAIRVENDSKVGDDVIRYYVRQQIGEPLDLGRLQTDMGTLYGLDYFEQVQYRVVHKGADNTLVISARGRRTGTDYLRLGLSLSDDMRGDSAFNLGASYRVNGINRLGAEWLTRVQIGDKQELYSEFYQPLDVGSRYFIAPYGQFESRNVESILDNDPVAQYRVERYGFGLNLGRQIGNSGEIRFGVGQAWGKADVRIGDHDQPSENFNEGFYELKYSFDSLDNVYFPHEGEDIGLSWRQYEPGLGSDQRYRQWEFRLDKALSSGPDTLILGGRYGRTLDTAEVVTSSFVLGGARQLSGFREDGVSGQNMSLMRAVYYRRLTPRAYLPLDFPLYVGGSLERGRAWNNDNEFDSGYINAASIFLGFDTPLGPLNFSYGFNDDDEQAVYLNLGQTFNANANANANA
D1-35_00509288hypothetical proteinATGACCGCTCACAAACCGGAAGTCGTCATCACTTACTGCACGCAGTGCCAATGGTTGCTGCGCGCCGCCTGGCTGGCCCAGGAGTTGCTCAGCACGTTTGGCGACGATTTGGGCAAGGTGTCCCTGGTGCCGGGCACCGGCGGGGTGTTCCATATCAGCTGTGACGGTACGCAGGTCTGGGAGCGCAAGGCTGACGGCGGTTTTCCCGAGGCCAAGGTCCTCAAGCAGCGGGTCCGCGACCGGATCGACCCGGAGCGCGACCTGGGGCACAACGACCGGGTTCAGTGAMTAHKPEVVITYCTQCQWLLRAAWLAQELLSTFGDDLGKVSLVPGTGGVFHISCDGTQVWERKADGGFPEAKVLKQRVRDRIDPERDLGHNDRVQNANANANANA
D1-35_00510891hypothetical proteinATGACTCCCCGTACCGCCCTCGGCGCCTTGCACATCGGCGCGCTCATGTTTGGCCTGACCGGCGTGTTCGGCAAACTGGCCGCCGCCTCGCCGGCGGTCATTGTGTTTGGCCGTGCGGTGTTCGCCGTGCTGGCCCTGGCGGTGTTTGCCCGGTTCGCCAGCCGCACCCGCTGGCAAAAACTGCGCGGCCGCGACGCTCGCCGGTTGCTGCTCGGCGGGCTGTTGCTGGCCGGACACTGGGTCAGTTTTTTCATCTCGGTAAAAGTCGCCGGGGTGGCCATCGCCACGCTGGGGTTCGCCAGTTTCCCGGCCTTCACCGTATTGCTCGAAGGGCTGATTTTCCGCGAGCGGATCCGCGCCAACGAAATTCTCCTGGTGGTGCTGGTGAGCGTCGGCCTGGTGCTGGTCACACCGGATTTCGAACTGGCCAGCGGCGCCACCACCGGTTTGCTCTGGGCCGTGGCTTCGGGTCTATTGTTCTCGCTGTTGTCGCTGACCAATCGCGCCGGCTCCGCACACGTACCGCCGGTGCAGGCCGCGCTGTGCCAGAACGTGGTCGTGGGGTTATGCCTGTTGCCGATGGCCGCGCCACAACTGAGCGATGTGCGCCCCATCGACTGGTTGTGGATCGGCCTGCTCGGGGTGTTCTGCACCGGCCTGGCCCACAGCCTGTTCGTCGCCAGCCTCGCGGTGATCAAGGCGCGCACCGCGGCGGTAGTGTTCGCCATGGAACCAGTCTACGGCATTACCATTGCCTGGCTGCTGTTCGATGAAAACCCGACGCTGCGCATGCTGCTCGGTGGCGTGCTGATCATCGTTGCGATTGTGGTGTCGAGCCAGCTCGACGGCACGAAAAAATCCAGCGCCGGCGCCCAGGCCTCGTCTCACTGAMTPRTALGALHIGALMFGLTGVFGKLAAASPAVIVFGRAVFAVLALAVFARFASRTRWQKLRGRDARRLLLGGLLLAGHWVSFFISVKVAGVAIATLGFASFPAFTVLLEGLIFRERIRANEILLVVLVSVGLVLVTPDFELASGATTGLLWAVASGLLFSLLSLTNRAGSAHVPPVQAALCQNVVVGLCLLPMAAPQLSDVRPIDWLWIGLLGVFCTGLAHSLFVASLAVIKARTAAVVFAMEPVYGITIAWLLFDENPTLRMLLGGVLIIVAIVVSSQLDGTKKSSAGAQASSHNANANANANA
D1-35_00511744rhaS_2HTH-type transcriptional activator RhaSATGAGACCGATCCTCACGCTACGCCACTACAGCCACGATCTGATTGTCCACAGCCACGACCATGCGCAGCTGGTGTTCGGCTTGTCCGGCGCGCTGGACTTCGAAGTCGAAGGGCGTGGCAGCCAGGTGGTGCAGCAGAGTTTCGTGGTGGTACCCGCCGGCGCCCATCACGCCTGCGGCAGCCCCCAGGGCAGCCGTTGCCTGGTGCTGGATGTGCCTGATGATGACTGGGTCGGGCAATGCCTGGGCGATCACGCCGATGCCAGCCGGCGCTTGCTCGACCGCAATATCCGCTTGCCCCTGGATACGGGGCAGAGCCAGTTGGTAAGTTGGCTCGCGGGCAGTCCGGTGGACGATCCGCTGATCGCCCAGCAAGGCGCGGTGCTGCTGTTGGCCAGCCTCAACGGCGCCCGCCAGCAAACGAGCGGCAGCCGGCGCCTGCCCTATGCCGCGCTGGACGCTCATATCGACCAGCACGCGGCCTATCCGCTGCAAGTGGCGGACCTGGCGCGGGTCGCCGGGCTTTCCAGCGCGCGCCTGCATGCGCGTTTTGTCGCTGAATGCGGGCAGACGCCAATGGAATACATCCGCAGCCGCCGCCTGCACAAAGCCGTGGGACTGTTGCGAGACTCAAACCTGCCTATCGGCGAAATCGCCCATCAGGTTGGCTACAGTTCGCAAAGCGCCTTCGCGGCGGCGGTGCTGCGCGAGTTCGGTGTTTCGCCGGGCAAGCTTCGGCGCTAGMRPILTLRHYSHDLIVHSHDHAQLVFGLSGALDFEVEGRGSQVVQQSFVVVPAGAHHACGSPQGSRCLVLDVPDDDWVGQCLGDHADASRRLLDRNIRLPLDTGQSQLVSWLAGSPVDDPLIAQQGAVLLLASLNGARQQTSGSRRLPYAALDAHIDQHAAYPLQVADLARVAGLSSARLHARFVAECGQTPMEYIRSRRLHKAVGLLRDSNLPIGEIAHQVGYSSQSAFAAAVLREFGVSPGKLRRNANANANANA
D1-35_00512819lpxH_1UDP-2,3-diacylglucosamine hydrolaseATGACCAGCGCCGAGCTCGCCAGGCCCAGCCGCAAACAGCGTGTCCGCACCCTGTGGATTTCCGACGTTCACCTGGGTACGCGAGATTGCCAGGCCGAGCACCTGTCGCACTTTCTCAAGGGCTATCACGCCGACAAGGTCTACCTGGTGGGCGATATCATCGACGGCTGGAAACTGCGCAGTGGCATGTATTGGCCCCAGGCCCATACCAACGTCATTCGTCGCTTGCTGACCATGAGCAAGCGCGGCACCGAGGTGATCTATGTCACCGGCAACCATGACGAATTCCTGCGACGCTATTCGAAGCTGATCCTGGGCAACATTCAATTGGTCGACGAAGCGGTGCATGTCACCGCCGATGGTCGACACCTGCTGGTGATCCATGGCGACCAGTTCGATGTGATTACCCGTTATCACCGTTGGTTGGCCTTTCTTGGGGATTCGGCCTACGAATTCACCCTGACGCTCAATCGCTGGCTCAATCATTGGCGGGCCCGTTACGGCTACGGTTACTGGTCGCTGTCGGCGTACCTCAAGCACAAGGTCAAGACCGCCGTCAGCTTCATCAGCGACTTTGAAGAAGCCATCGCCCATGAATGCGTGAAGCGTGAACTGCATGGCGTGGTGTGCGGGCACATCCACCATGCCGAGATTCGCACGGTGGGCGGGGTGGAGTACCTCAACTGCGGCGATTGGGTCGAGTCGTGCACGGCGCTGATCGAGCATTGGGACGGCTCGATCGAGCTCTATCGCCTGGCGGACGCCCAGGCGCGCGAAGCGCTGGTCAAGGCTGAGTTGAAAGTGACTGAGCCTGCCTGAMTSAELARPSRKQRVRTLWISDVHLGTRDCQAEHLSHFLKGYHADKVYLVGDIIDGWKLRSGMYWPQAHTNVIRRLLTMSKRGTEVIYVTGNHDEFLRRYSKLILGNIQLVDEAVHVTADGRHLLVIHGDQFDVITRYHRWLAFLGDSAYEFTLTLNRWLNHWRARYGYGYWSLSAYLKHKVKTAVSFISDFEEAIAHECVKRELHGVVCGHIHHAEIRTVGGVEYLNCGDWVESCTALIEHWDGSIELYRLADAQAREALVKAELKVTEPANANANANANA
D1-35_00513582hypothetical proteinATGACGTCTCACGCGCGCTTCACCCACATGCAGGACGGCAGCCGGGAAGACTGGGCAATCATCGCCGCCGACTTCAGCGCTTACGCGCGGCAGTTGCCGGGCCGGATTCTGACCCACCTGAGATTGCTCGATGGCGACTTCGGCGGTTTCCCCGTGGATCGCCTGACCCACTCCCTGCAAACCGCCACCCGTGCCTACCGCGACGGGCGAGACGAGGAGTACGTGGTCTGCGCCCTGCTCCACGATATTGGCGACACACTGGGTTCGTACAACCATCCGGACATCGCGGCGGCGATCCTCAAGCCGTTCGTCAGCGCCGAGAACCTGTGGATGGTGGAAAAACACGGGATATTCCAGGGCTACTACTTCTTCCATCACCTGGGCATGGACCGGCACCTGCGCGAGCAGTTTAGGGAGCACCCGCAGTACCAGGCGACGATCGATTTCTGTGCAGAATACGACGCCGCGGCGTTCGATCCCGAGTACGACACGCTGCCGCTGAGTTTCTTCGAGCCAATGCTGGAAAGACTGTTTGCGGCACCGAAGCAATCGATCTACAAGGCGGCGATGGCCGAGAGATAAMTSHARFTHMQDGSREDWAIIAADFSAYARQLPGRILTHLRLLDGDFGGFPVDRLTHSLQTATRAYRDGRDEEYVVCALLHDIGDTLGSYNHPDIAAAILKPFVSAENLWMVEKHGIFQGYYFFHHLGMDRHLREQFREHPQYQATIDFCAEYDAAAFDPEYDTLPLSFFEPMLERLFAAPKQSIYKAAMAERNANANANANA
D1-35_00514312hypothetical proteinTTGGAAAACACCAAACGATTCAACACGTTCGCCGAGTTCTACCCGTATTACCTCAGCGAACACAGCAACAGCACCTGCCGGCGCCTGCACTTCATCGGCACCTCCCTGGTCGTCCTGGTTTTCGCCCTGGCCCTCGTCGTCGGCGCCTGGTGGCTGTGGGTTGCGCTGCCGGTGGCCGGCTACGGCTTCGCCTGGGTCGGGCACTTCTTCTTCGAAAAAAACCGCCCTGCGACTTTCCAACACCCTCTCTACAGTCTGCTCGGCGACTTCGTCATGTACCGCGACATGCTGCTGGGCAAGGTGGCGTTCTAAMENTKRFNTFAEFYPYYLSEHSNSTCRRLHFIGTSLVVLVFALALVVGAWWLWVALPVAGYGFAWVGHFFFEKNRPATFQHPLYSLLGDFVMYRDMLLGKVAFNANANANANA
D1-35_005151023virSHTH-type transcriptional regulator VirSATGGGGATTGTCAAGGCGTTGGAAATGGACGGCCTGGACTGTAGGGCGCTGTTCAAGCAACTGGCGCTGGATTTTGCTGCGCTGGAAGATCCCGACGCGCGCTTTACCCAGGACTCGATGACGCGGCTCTGGCAATTGGCGGTGGCTCGTTCCGGCAATCCGGCCATCGGCCTGAACATGGGCAAGGTGGTACGCCCGGCATCGTTCCATGTGGTCGGTTACGCATTGATGTCCAGTCGCACGCTGGTCGAAGGCTTCCAGCGGCTGGTGCGCTACCAGCGGATCATTGCCGAAAGCGCCGACTTGAGTTTTCGTCATCTGGAGGAGAGCTATGGGCTGATTCTCACCGTGCATGGCGATCACCTTCCGCCGACCCGGCAAAGTGCCGAAGCCTCCCTGGCCTGCGCGCTGTCCTTGTGCAGTTGGTTGACCGGACGCACCTTGCATCCGGTAAAGGTACTGTTCCAGGGTTCCGAACCCGTTGACCTGGCACCTTATCAACAGGCTTTTGGCGCGCCACTGGTGTTCGATGCTCCCTATGACGCGCTGATTTTCCAGCAGGAGGACATGGAGGCGCCGCTGCCCACGGCCAACGAGGCCATGGCGCAGCTCCACGATCGGTTTGCCGGCGAATACCTCGCGCGTTTTTCCGGAAGCCGCGTGACCCACCAGGCGCGGCAGGTGCTCTGCCGGCTGCTGCCCCGGGGCGAGCCCAAGCGGGACGTGGTCGCGCAGACCCTGCATTTGTCGCAACGTACCTTGCAGCGGCGCTTGCAGGATGAGGGCACGAGTTTCCAGAACTTGCTGGACGATACGCGCCGCGAACTGGCCGAGCAGTACCTGGCGCAGCCGACCATGACGCTGCTGGAAGTGGCTTATCTGTTGGGGTTTGCCGACCCGAGCAATTTTTTCCGGGCCTTTCGGCGCTGGTTCGGCACCACGCCCGGCGAATACCGGGCGCGGGCTGTAGCGACGCCGGTCAGTGACGCCAGAACGCCGGAATACACAGCACGAACACCGTAAMGIVKALEMDGLDCRALFKQLALDFAALEDPDARFTQDSMTRLWQLAVARSGNPAIGLNMGKVVRPASFHVVGYALMSSRTLVEGFQRLVRYQRIIAESADLSFRHLEESYGLILTVHGDHLPPTRQSAEASLACALSLCSWLTGRTLHPVKVLFQGSEPVDLAPYQQAFGAPLVFDAPYDALIFQQEDMEAPLPTANEAMAQLHDRFAGEYLARFSGSRVTHQARQVLCRLLPRGEPKRDVVAQTLHLSQRTLQRRLQDEGTSFQNLLDDTRRELAEQYLAQPTMTLLEVAYLLGFADPSNFFRAFRRWFGTTPGEYRARAVATPVSDARTPEYTARTPNANANANANA
D1-35_005161455trkI_1COG0168Trk system potassium uptake protein TrkIATGGCGTTGCCGACCCTGCGGATCATTGGTTTCATCATCGGCATCTTCCTGATCACCCTGGCGATCTTCATGATCGTGCCGATGGCCACGTTGCTGATCTACGAACGCACCAGCGACCTGCCATCATTCCTCTGGTCGAGCATGATTACTTTTGTCGCCGGCCTCGCGTTGATTCTTCCCGGACGCCCCGAGCACATCCATCTGCGCCCCCGGGACATGTACCTGCTGACAGTCAGCAGTTGGCTGGTGGTGTGTGTCTTTGCCGCGCTGCCGTTCTTGCTAACTCAGCACATCAGCTACACCGATTCTTTTTTCGAAAGCATGTCGGGCATCACCGCCACTGGCGCAACGGTCCTCAGCGGCCTGGACACGATGTCGCCGGGGATCCTGATGTGGCGCTCGCTGCTGCACTGGCTCGGCGGTATCGGCTTCATCGGCATGGCGGTGGCGATTCTGCCGTTGCTGCGCATCGGCGGCATGCGGCTGTTCCAGACCGAATCATCCGATCGCTCGGAGAAAGTCATGCCTCGCTCGCACATGGTGGCGCGGCTGATCGTGGCCTCCTACGTCGGCATCACCATTCTCGGCACGCTGGCACTGTGGTGGGCCGGGATGAGTCTGTTCGATGCGATCAACCATTCGATGTCAGCCATTTCCACCGGCGGTTTTTCCACCTCCGACCTGTCCCTGGCCAAATGGACGCAACCGGCCGTGCATTGGGTCGCCATTGTCATCATGATCCTCGGCAGCCTGCCGTTTGCCCTCTACGTCTCGACCCTGCGCGGCAACCGCCGGGCGCTGATCAAGGACCAGCAAGTCCAGGGGCTGATCGGCGTGCTGCTGGTCACCTGGCTGGTGCTCGGCACCTGGTACTGGGCCACCACCGACCTGCATTGGCTCGACGCCCTGCGGCACGTGGCGCTGAACGTGACGTCCATCGTCACCACCACCGGTTTTGCCTTGGGCGACTACAGCCTGTGGGGCAATTTCTCGCTGATGTTGTTCTTCTACCTGGGTTTTGTCGGCGGCTGCTCGGGTTCGACCGCCGGCGGGATCAAGATTTTCCGCTTCCAGGTTGCCTACATCCTGCTTCGGGCCAACCTTAACCAACTGATTCACCCGCGCGCGGTGATCAAGCAGAAATACAACGGTCACCGCCTCGACGAAGAAATCGTCCGGTCGATCCTGACATTCTCGTTCTTCTTCGCCATTACCATCTGCGTGATCGCGCTGCTGCTATCGCTGCTGGGCGTCGAATGGATGACGGCACTGACCGGCGCGGCCAGTACCGTGTCCGGCGTCGGCCCGGGGCTTGGCGAGACCATCGGCCCGGCCGGCAACTTCGCTCCGCTGCCGGATGCGGCCAAGTGGATTCTTTCCGGCGGCATGCTGCTCGGCCGGCTGGAGATCATTACGGTGTTCGTGCTGTGTATTCCGGCGTTCTGGCGTCACTGAMALPTLRIIGFIIGIFLITLAIFMIVPMATLLIYERTSDLPSFLWSSMITFVAGLALILPGRPEHIHLRPRDMYLLTVSSWLVVCVFAALPFLLTQHISYTDSFFESMSGITATGATVLSGLDTMSPGILMWRSLLHWLGGIGFIGMAVAILPLLRIGGMRLFQTESSDRSEKVMPRSHMVARLIVASYVGITILGTLALWWAGMSLFDAINHSMSAISTGGFSTSDLSLAKWTQPAVHWVAIVIMILGSLPFALYVSTLRGNRRALIKDQQVQGLIGVLLVTWLVLGTWYWATTDLHWLDALRHVALNVTSIVTTTGFALGDYSLWGNFSLMLFFYLGFVGGCSGSTAGGIKIFRFQVAYILLRANLNQLIHPRAVIKQKYNGHRLDEEIVRSILTFSFFFAITICVIALLLSLLGVEWMTALTGAASTVSGVGPGLGETIGPAGNFAPLPDAAKWILSGGMLLGRLEIITVFVLCIPAFWRHPGPT0002735_1716DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002735-trkG|trkH|ktrB-K03498NANA
D1-35_00517564ydjACOG0778Putative NAD(P)H nitroreductase YdjAATGCAGGCTCTCGACGCTTTGCTCAACCGTGTTTCCGTTCCGCGTCTGGTGGACCCTGCGCCCACGCCCGAACAACGCCAGGTCATGTTCGCCGCAGCGATGCGTGCGCCGGATCATGGCCAACTGCGCCCGTGGCGTTTCCTGACCGTCGAAGGCGAAGCACGTCACCGCATGGGTGAGCTGCTGGCCGAGGCGGCACGCTTCAATGATCCGCTGGTGCCGGAAGCCGTGGTGGAGAAGGCCCTCAACGGCCCATTGCGCGCGCCCTTGGTCGTGGTGGTGATCGCGCGATTGCAGGACCATTTCAAGATTCCCAAGCCTGAGCAATTGCTGGCAGCCGGCTGCGCGGCCCATGGGATTTTGCTGGCCGCTTATGCCCAGGGCGTTGGCGGGGTGTGGCGTACCGGGGAATTGGCCTATTCGCCCCACGTCGCGCGGGGGCTGGGCTTGGAAGAAGGGGAGGAGGTTATCGGCTTCCTTTACCTGGGTACACCGCAGAAAGAGGCGCGCGCGGCGCCGCAGGAAGATATCGGGCCGTTTGTTCAGGAATGGACCGGCGCCTAGMQALDALLNRVSVPRLVDPAPTPEQRQVMFAAAMRAPDHGQLRPWRFLTVEGEARHRMGELLAEAARFNDPLVPEAVVEKALNGPLRAPLVVVVIARLQDHFKIPKPEQLLAAGCAAHGILLAAYAQGVGGVWRTGELAYSPHVARGLGLEEGEEVIGFLYLGTPQKEARAAPQEDIGPFVQEWTGANANANANANA
D1-35_005181194aspC_1COG1448Aspartate aminotransferaseATGCATTTCGATGCCATCGGCCGCGTGCCCGGCGACCCGATCCTCGGCCTGATGGAGGCCTACGGGGCGGACAGCAATCCTGGCAAGTTCGACCTGGGCGTGGGTGTCTACAAGGATGCCCAGGGCCTGACGCCGATTCTCCAGTCAGTGAAACAGGCCGAACAGCAACTGGTAGACCGTCAGTTCACCAAGACTTACATCGGTGGCCATGGTGACGCCGCGTTCGGCCGGTTGATCAATGAACTGGTGCTCGGAGCAGACTCGCCGCTGCTCGCCGATAAACGCGCCGGCGCCACCCAGACGCCGGGCGGTACCGGCGCCCTGCGCTTGAGCGCCGACTTCATCGCCCAGTGCCTGCCGGGCCGTGGCGTCTGGCTGAGCAACCCGACCTGGCCGATCCACGAGACCATTTTCGCCGCCGCCGGCGTCAAGGCCAGCCACTACCCCTACGTCGGTGCCGACAACCGCCTGGATTTCGAGGCAATGCTGGCAACCCTGAGCCAGGTGCCAAAGGGTGACGTGGTACTGCTGCACGCCTGTTGCCACAACCCCACCGGTTTCGACCTGACCCATGAGCAATGGCGCCAGGTGCTCGACGTAATGCGCAGCCGCGACCTGCTGCCGCTGATCGACTTCGCCTACCAGGGCTTTGGCGACGGGCTGGAGCAGGACGCCTGGGCTGTGCGGTTGTTCGCCGAAGCGCTGCCCGAAGTACTGATCACCAGCTCATGCTCGAAGAACTTCGGTCTTTATCGCGACCGCACCGGTGCGCTGATCGTCTGCGCGCGCGATGGGGAGAAACTGATCGACATCCGCAGTCAACTGGCGAACATCGCTCGCAACTTGTGGTCGACGCCACCGGACCATGGTGCGGCGGTGGTTGCGACGATCCTTGGCGATCCGCAGTTGAAAGGCCTGTGGGCCGACGAAGTGGAAGCCATGCGCCTGCGCATCGCGCAGTTGCGCAGCGGCCTGCTGGAAGCGCTCGAACCCCACGGTCTGCGCGAACGCTTCGCCCATATGGGGGTGCAACGCGGTATGTTTTCCTACACCGGACTCTCGCCGGAACAGGTCGGGCAACTGCGCGAGCGCCATAGCGTCTACATGGTCGGCACCGGCCGGGCCAACGTGGCCGGCATCGACGCGACGCGCCTGGATGCGCTGGCGCTGGCGATTGCGGATGTTTGCAAGTAAMHFDAIGRVPGDPILGLMEAYGADSNPGKFDLGVGVYKDAQGLTPILQSVKQAEQQLVDRQFTKTYIGGHGDAAFGRLINELVLGADSPLLADKRAGATQTPGGTGALRLSADFIAQCLPGRGVWLSNPTWPIHETIFAAAGVKASHYPYVGADNRLDFEAMLATLSQVPKGDVVLLHACCHNPTGFDLTHEQWRQVLDVMRSRDLLPLIDFAYQGFGDGLEQDAWAVRLFAEALPEVLITSSCSKNFGLYRDRTGALIVCARDGEKLIDIRSQLANIARNLWSTPPDHGAAVVATILGDPQLKGLWADEVEAMRLRIAQLRSGLLEALEPHGLRERFAHMGVQRGMFSYTGLSPEQVGQLRERHSVYMVGTGRANVAGIDATRLDALALAIADVCKPGPT0020115_217DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TRYPTOPHANE_DEGRADATION,PGPT0020115-aspC-K00813NANA
D1-35_00519357Putative pterin-4-alpha-carbinolamine dehydrataseATGAACACTCTGAACCAAGCCCATTGCGAAGCCTGCCGCGCCGATGCCCCGCAAGTCAGCGACGAAGAACTGCCGATCCTGATCAAGCAGATCCCCGACTGGAACATCGAAGTGCGCGACGGCGTGATGCAGCTGGAAAAGGTTTTCCTGTTCAAGAATTTCAAGCATGCCCTGGCGTTCACCAACGCGGTCGGCGAAATCTCCGAGGCTGAAGGGCATCACCCCGGCCTGCTCACCGAGTGGGGCAAAGTCACCGTGACCTGGTGGAGCCACTCCATCAAGGGTCTGCACCGCAACGACTTCATCATGGCCGCCCGTACCGACGACGTCGCCAAGACCGCCGAGGGCCGCAAGTAAMNTLNQAHCEACRADAPQVSDEELPILIKQIPDWNIEVRDGVMQLEKVFLFKNFKHALAFTNAVGEISEAEGHHPGLLTEWGKVTVTWWSHSIKGLHRNDFIMAARTDDVAKTAEGRKNANANANANA
D1-35_00520786phhACOG3186Phenylalanine-4-hydroxylaseATGAAGCAGACGCAATACGTGGCCCGCGAGCCCGATGCGCAAGGTTTTATCGACTACCCCGCCGAAGAACACGCGGTGTGGAACACGCTGATCACCCGCCAGCTGAAAGTCATTGAAGGCCGTGCGTGCCAGGAATACCTGGACGGCATCGACAAGCTTGGCCTGCCCCACGACCGCATTCCACAACTGGGGGAAATCAACAAGGTGCTCGGCGAAACCACGGGCTGGCAAGTCGCCCGGGTACCGGCGCTGATTCCGTTCCAGACGTTCTTCGAACTGCTCGCCAGCAAACAGTTTCCGGTCGCGACGTTTATTCGTACCCGTGAAGAACTCGATTACCTGCAAGAGCCGGATATTTTCCACGAGATCTTCGGCCACTGTCCGCTGCTGACCAACCCGTGGTTCGCTGAATTTACCCACACCTACGGCAAACTTGGCCTACAGGCTTCCAAGGAAGAACGCGTTTACCTGGCGCGCCTCTATTGGATGACCATCGAGTTCGGCCTGGTGGACACCCCGCACGGTCGGCGCATCTACGGCGGCGGCATCCTGTCGTCCCCCAAGGAAACCGTTTATTGCCTGTCGGACGAGCCGGAGCATCAAGCCTTCGACCCGCTGGAGGCCATGCGCACGCCGTATCGCATCGACATCCTGCAGCCGGTGTATTTCGTCCTGCCCGAGCTCAAGCGCCTGTTCGACCTGGCCCACGAGGACATCATGGGCATGGTCGGGCGCGGCCGGGAACTGGGCCTGCACGCGCCGAAATTTCCACCGAAAGCGGCGTGAMKQTQYVAREPDAQGFIDYPAEEHAVWNTLITRQLKVIEGRACQEYLDGIDKLGLPHDRIPQLGEINKVLGETTGWQVARVPALIPFQTFFELLASKQFPVATFIRTREELDYLQEPDIFHEIFGHCPLLTNPWFAEFTHTYGKLGLQASKEERVYLARLYWMTIEFGLVDTPHGRRIYGGGILSSPKETVYCLSDEPEHQAFDPLEAMRTPYRIDILQPVYFVLPELKRLFDLAHEDIMGMVGRGRELGLHAPKFPPKAAPGPT0020295_1344DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_PHENYLALANINE_DEGRADATION,PGPT0020295-phhA-K00500NANA
D1-35_005211599tyrR_1Transcriptional regulatory protein TyrRATGGCGCGCTTTTCTACTCATATGCACCTGGGCCCTTTTATGCGCATCAAAGTCCACTGCCAGAATCGCATCGGCATCCTGCGGGACATCCTCAACCTGCTGGTGGAATACGGCATCAACGTCGCCCGTGGCGAAGTGGGGGGCGAGCACGGCAATGCGATCTACCTGCACTGTCCGAACCTGATCAATATCCAGTTTCAGGCGTTGCGTCCCAAGTTCGAAGGGATCGCCGGGGTATTCGGCGTCAAGCGGGTAGGGCTGATGCCCAGCGAGCGTCGGCACATGGAGCTCAACGCCTTGCTCGGCGCCCTCGAGTTTCCGGTGCTGTCCATCGACATGGGCGGCTCTATTGTCGCGGCCAACCGGGCGGCGGCGCAGTTGCTCGGGGTGCGGGTCGACGAAGTGCCCGGCATCCCGCTGTCCCGCTACGCCGAGGACTTCGACTTGCCGGAGCTGGTGCGCGCCAACCAGTCGCGTATCAACGGGCTGCGGGTCAAGGTCAAGGGCGATGTGTTCCTGGCCGACATCGCCCCGCTGCAATCGGAGCACGACGACAGCGAAGCCATGGCCGGTGCGGTACTGACCCTGCACCGCGCCGACCGGGTCGGCGAGCGTATCTACAATGTGCGCAAGCAGGAGCTGCGCGGCTTCGACAGTATTTTCCAGAGTTCGAAAGTGATGGCGGCAGTGGTTCGCGAGGCGCGGCGCATGGCCCCGCTGGACGCGCCGCTGTTGATAGAAGGCGAAACCGGTACCGGCAAGGAACTGCTGGCCCGCGCCTGTCACCTGGCCAGTCCGCGCGGGCAGTCACCGCTGATGGCGCTCAACTGCGCCGGGCTGCCGGAGTCCATGGCCGAGACCGAGTTGTTCGGCTACGGCCCCGGTGCCTTTGAAGGCGCCCGGGCCGAAGGCAAGCTCGGCCTGTTGGAGCTGACTGCGGGAGGCACGCTGTTCCTCGACGGCGTTGGGGAAATGAGCCCGCGCCTGCAAGTGAAGTTGCTGCGCTTTTTGCAGGACGGTTGCTTTCGTCGCGTCGGCAGTGACGAAGAGGTCTACCTGGATGTCCGGGTGATCTGCGCGACCCAGGTCGACTTGTCCGAACTCTGCGCCCGAGGGGAATTCCGTCAGGATCTGTACCACCGCTTGAACGTGCTTTCCTTGCATATCCCACCGTTGCGCGAATGCCTCGATGGGCTGGAGCCATTGGTGGAGCATTTTCTCGACCAGGCCAGCCGCCAGATCGGCTGTCCGCTGCCAAGGCTTGCCCCGGCGGCGATGGAACGTCTCAGCCACTACCATTGGCCGGGCAACGTCCGGCAGTTGGAAAACGTGCTGTTCCAGGCCGTTTCCCTGTGCGACGGCGCAAAGGTCAAGGCCGAGCACATCCGCCTGCCGGACTACGGCGTGCGCCAACCCCTTGGCGACTTTTCCCTGGAGGGTGGGCTGGACGAGATCGTCGGGCGTTTCGAGAAAGCGGTGCTGGAGCGCCTGTACTCCGAACACCCCAGCAGCCGGCAACTGGGCAAGCGGTTGGGGGTTTCCCATACGACTATTGCCAATAAGCTGCGCGAGTATGAAGTCGGTAAAACCGAGTCATAGMARFSTHMHLGPFMRIKVHCQNRIGILRDILNLLVEYGINVARGEVGGEHGNAIYLHCPNLINIQFQALRPKFEGIAGVFGVKRVGLMPSERRHMELNALLGALEFPVLSIDMGGSIVAANRAAAQLLGVRVDEVPGIPLSRYAEDFDLPELVRANQSRINGLRVKVKGDVFLADIAPLQSEHDDSEAMAGAVLTLHRADRVGERIYNVRKQELRGFDSIFQSSKVMAAVVREARRMAPLDAPLLIEGETGTGKELLARACHLASPRGQSPLMALNCAGLPESMAETELFGYGPGAFEGARAEGKLGLLELTAGGTLFLDGVGEMSPRLQVKLLRFLQDGCFRRVGSDEEVYLDVRVICATQVDLSELCARGEFRQDLYHRLNVLSLHIPPLRECLDGLEPLVEHFLDQASRQIGCPLPRLAPAAMERLSHYHWPGNVRQLENVLFQAVSLCDGAKVKAEHIRLPDYGVRQPLGDFSLEGGLDEIVGRFEKAVLERLYSEHPSSRQLGKRLGVSHTTIANKLREYEVGKTESNANANANANA
D1-35_00522738flgFCOG4787Flagellar basal-body rod protein FlgFGTGGACAAGTACCTTTATGTGGCAATGACCGGCGCCAGCCAGAACGCACTGGCGCAGCGGGCCCATGCCAACAACCTGGCGAACATCTCCACCAACGGTTTTCAGAAAGACCTGGAGCAGGCACGTTCGATGCCGGTGTTCGGCGACAGCTTTCCGGCGCGGGCGTTTGCCATGTCCGAACGGCCTGCTACCGATTTCACCCCGGGTGCGCTGATTGAAACCGGCCGTGAACTGGACGTGGCGGTCAGCGGGCCGGGCTGGATGGCCGTGCAGAACCCCGACGGTGGCGAAAGCTACGTGCGCACCGGCAGCCTCAACGTCGACGCCCTAGGCGTGCTGCGCGCCGGCAACGGCATGCCGGTGATGGGCAACGGCGGTCCGATTGCCGTGCCGCCAGAGCAGAAAATCGAAATCGGCCAGGACGGCACCATCAGCATCCGCGCCATGGGTGAAGGCCCACGGGTGATGGCTGAGGTGGACCGCATCAAGCTGGTCAACCCGGACCTCAAGACCATGACCAAGGGCCTGGATGGCTCGATCCGTTCCAAGGACGGCCAGCCGGCGCCCATCGATGGCAACGTGCAGCTGGTGTCGGGGTTCCAGGAGGCGAGCAACGTCAATGCCGTGGATGAGATGACTTCGGTGCTGGCCCTGGCCAAGCAGTTCGAGCTTCACGTCAAGATGATGACCACCGCCAAAGAAGGCGATGAGGCCATGGCTCGGGTCTTGCAGATCTAAMDKYLYVAMTGASQNALAQRAHANNLANISTNGFQKDLEQARSMPVFGDSFPARAFAMSERPATDFTPGALIETGRELDVAVSGPGWMAVQNPDGGESYVRTGSLNVDALGVLRAGNGMPVMGNGGPIAVPPEQKIEIGQDGTISIRAMGEGPRVMAEVDRIKLVNPDLKTMTKGLDGSIRSKDGQPAPIDGNVQLVSGFQEASNVNAVDEMTSVLALAKQFELHVKMMTTAKEGDEAMARVLQIPGPT0015490_1917DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015490-flgF-K02391NANA
D1-35_00523786flgGCOG4786Flagellar basal-body rod protein FlgGATGCTTCCGGCTCTTTGGGTTGCCAAAACAGGTCTGTCCGCCCAGGACACCAACCTTTCCACTATTTCCAACAACCTGGCGAACGTTTCGACCACGGGTTTCAAACGTGATCGCGCCGAGTTCCAGGACCTGCTCTATCAGGTAAAACGCCAGCCAGGCGCCCAGTCGACCCAGGACAGCGAATTGCCGTCGGGCCTGCAAGTGGGTACCGGTGTGCGCATTGTCGGCACCCAGAAGAACTTCAACGCCGGTAGCCTGCAAACCACCGAGCAGCCGCTGGACATGGCCATCGACGGTCGCGGTTTCTTCCAGATCCTGCAGCCGGACGGCACCACGTCCTACACCCGTGACGGTACCTTCCACCTCGACTCCAACGGCCAGATCGTCAACGCCAGCGGTTTCGCCCTGGAGCCGGCCATCGTCATCCCGAACGATGCGCAGACATTCACCGTGGGCCGTGACGGCACCGTGTCCATCACCATCGCGGGCAATCCGGCTGCGCAGGTGATCGGTAACCTGCAGACCGCTGACTTCATCAACCCGGCCGGCCTGCAGGCGGTGGGTAACAACCTGTTCCTGGAAACCGCCGCCAGCGGCGCGCCGCAAGTCGGCACCCCGGGCCTGAACGGTTTCGGCACTACGCTGCAGAACACCCTGGAAACCTCCAACGTGAGCACCGTCGAGGAAATGGTCAACATGATCACTACTCAGCGTGCCTACGAGATGAACTCCAAGGTGATCTCCACCGCCGACCAGATGCTCTCGTTCGTCACGCAGAACCTGTAAMLPALWVAKTGLSAQDTNLSTISNNLANVSTTGFKRDRAEFQDLLYQVKRQPGAQSTQDSELPSGLQVGTGVRIVGTQKNFNAGSLQTTEQPLDMAIDGRGFFQILQPDGTTSYTRDGTFHLDSNGQIVNASGFALEPAIVIPNDAQTFTVGRDGTVSITIAGNPAAQVIGNLQTADFINPAGLQAVGNNLFLETAASGAPQVGTPGLNGFGTTLQNTLETSNVSTVEEMVNMITTQRAYEMNSKVISTADQMLSFVTQNLPGPT0015495_1287DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015495-flgG-K02392NANA
D1-35_00524696flgHFlagellar L-ring proteinATGAATCGCTTTGTATCTGTTCTGGCATTGAGTGGGGTTACCGCGCTGGCGGGCTGTGTCGCGCCAACGCCCAAGCCCAATGACCCGTATTACGCTCCGGTGTTGCCACGCACGCCGTTGCCGGCTGCCGCCAATAACGGCTCGATCTACCAGGCTGGCTTCGAACAGAACCTGTACAGCGACCGCAAGGCTTTCCGGGTCGGTGACATCATCACCATCACCTTGAACGAGCGGACCCAGGCCAGCAAGAACGCCAACTCGCAGATCGACAAGACCAGCCAGACCAGCGTCGGCCTGACGTCGTTGTTCGGCTCCAGCCTGACCACCAACAACCCGATCGGTGGCGGCGACCTGAGCCTCAACGCCGGCTACGGTTCCGACCGCGCCTCCAAGGGCGACAGCCAGTCTGGCCAGAGCAACAGCCTGACCGGTTCGATCACCGTGACCGTCGCCGATGTACTGCCCAACGGCATCATCGCCGTGCGCGGCGAGAAGTGGCTGACGCTCAATACCGGTGACGAACTGGTGCGCATCGCTGGCATGGTCCGCGCCGATGACATCTCCACCGACAACACTGTTCCGTCGACCCGCGTGGCCGATGCGCGCATCACCTATTCGGGCACTGGTGCCTTTGCCGATGCGAGTCAGCCAGGTTGGTTCGACCGTTTCTTCCTCAGCCCGAAGTTCCCTTTCTAGMNRFVSVLALSGVTALAGCVAPTPKPNDPYYAPVLPRTPLPAAANNGSIYQAGFEQNLYSDRKAFRVGDIITITLNERTQASKNANSQIDKTSQTSVGLTSLFGSSLTTNNPIGGGDLSLNAGYGSDRASKGDSQSGQSNSLTGSITVTVADVLPNGIIAVRGEKWLTLNTGDELVRIAGMVRADDISTDNTVPSTRVADARITYSGTGAFADASQPGWFDRFFLSPKFPFPGPT0015420_1191DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_M|S|P|L-RINGS,PGPT0015420-flgH-K02393NANA
D1-35_005251107flgIFlagellar P-ring proteinTTGAATCTTAAACAGCTGTTGATCGGTGCCCTGGTGATGTCGGCAGCCTTCACCGCTCAAGCCGAGCGCCTGAAGGACATCGCCAGCATTTCCGGCGTGCGTTCCAACCAGTTGATCGGTTACGGCCTGGTCGTGGGCCTGAACGGTACCGGTGACCAGACCACCCAGACTCCGTTCACCCTGCAGACCTTCAACAACATGCTGTCGCAGTTCGGCATCAAGGTGCCGGCCGGCTCCGGCAACGTGCAGTTGAAGAACGTCGCGGCGGTGTCGATCAGTGCCGACCTGCCGCCGTTCGCCAAGCCCGGCCAGCAAGTGGATATCACTGTCTCGTCCATCGGTAACTCCAAGAGCCTGCGTGGCGGCACCTTGCTGCTGACCCCGCTCAAGGGTATCGACGGCAACGTCTACGCCATCGCCCAGGGCAACCTGGTGGTGGGCGGGTTCGATGCCGAGGGGCGTGACGGTTCGAAGATCACCGTCAACGTTCCGTCGGCCGGCCGTATTCCCGGCGGTGCGTCGGTTGAACGTGCCGTGCCGAGCGGCTTCAATCAGGGCAACAGCCTGACCTTGAACCTCAACCGTTCCGACTTCACCACGGCCAAGCGCATCGTCGACAAGATCAACGACATGCTCGGCCCAGGCGTGGCCCAGGCCATCGACGGTGGCTCGATTCGTGTCACCGCGCCACTGGACCCGAGCCAGCGCGTCGACTACCTGTCGATCCTCGAAAACCTTGAGGTCGATCCGGGCCAGGCGGTGGCGAAAGTCATCATCAATTCGCGCACCGGCACCATCGTGATCGGCCAGAACGTCAAGGTTTCGCCGGCCGCCGTGACCCACGGCAGCCTGACCGTGACCATCACCGAAGACCCGATCGTCAGCCAGCCGGGGCCATTGTCCAACGGCCAGACCGCCGTGGTTCCGCGCTCGCGGGTCAATGCCGAACAGGAAGCCAAGCCGATGTTCAAGTTCGGCCCGGGCACCACCCTGGATGAGATCGTCCGGGCGGTAAACCAGGTCGGCGCGGCACCGGGCGACCTGATGGCGATTCTCGAAGCCTTGAAGCAGGCCGGCGCGTTGCAAGCCGACCTGATCGTGATTTAAMNLKQLLIGALVMSAAFTAQAERLKDIASISGVRSNQLIGYGLVVGLNGTGDQTTQTPFTLQTFNNMLSQFGIKVPAGSGNVQLKNVAAVSISADLPPFAKPGQQVDITVSSIGNSKSLRGGTLLLTPLKGIDGNVYAIAQGNLVVGGFDAEGRDGSKITVNVPSAGRIPGGASVERAVPSGFNQGNSLTLNLNRSDFTTAKRIVDKINDMLGPGVAQAIDGGSIRVTAPLDPSQRVDYLSILENLEVDPGQAVAKVIINSRTGTIVIGQNVKVSPAAVTHGSLTVTITEDPIVSQPGPLSNGQTAVVPRSRVNAEQEAKPMFKFGPGTTLDEIVRAVNQVGAAPGDLMAILEALKQAGALQADLIVIPGPT0015425_1201DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_M|S|P|L-RINGS,PGPT0015425-flgI-K02394NANA
D1-35_005261305hypothetical proteinATGGATATGCGCAAGGGCGCTTTGATCAGCGGCGATTCGGGGTCCTACTCGGACCTCAACCGCCTGAACCAGCTCAAGGTCGGCGACAAGAACAGCGACGGCAACCTGCGCAAGGTGGCGCAGGAGTTCGAGTCGCTGTTCCTTGGCGAGATGCTCAAGTCCATGCGTTCGGCCACCGAAGCGATGGGCAAGGACAATCCGATGAATACTGCCGAAGCCAAGCAGTATCAGGAAATGTACGACCAGCAGCTGGCCGTTTCGATGTCCCGCGAGGGCGGCGGTATCGGCCTGGCCGACGTGCTGCTGCGCCAGATGTCGAAGAACAAACCGACGGCGCCAGGTGAGGCGGCTACGTTGTCCGCCGCCAAGCAGCAAGAGGCGCTGGACAAGGTGACCAAGCCGGTTGTAACGCCGGTGGCCGCCGGAACGCTGCCCACCGACGGGCCTTTGTCGCGCACCAATGGCCAGCGCCCGCTGTGGGCTTCGCGAGCCGTGAACGCGCCGCAAGGTGCAGGCGAGGGCGTGCACCGCAACGATATGGAATTGCTCAACCAGCGTCGCCTGGCGCTGCCGCCGAAACTGGCCGACCGCCTGCTCGCCGGGCTGGTGCCTGCGGCTGCGGCCTCGACCGAGGCGCCCGCACAGAACATCCTGCCTGACCGCGCCGTTGCCGCCGTCAAGCCGGCCACCGGCGAATTGGGCAATGGTGACTGGCTGGCCGCGCTCAAGGATTCCGAGGCCAAAGGGCAGGTACAGGTTTATGGGCGCGCCGTGGCACAACCGCCACTGGCGCCGGCCCGCAAGGCGTTCCGCGATGCTGATGAATTCGTCAATGCGATGTTGCCGATGGCCAAGGAAGCCGCCGAGCGCATCGGTGTCGATCCGCGTTACCTGGTGGCCCAGGCCGCCCTGGAAACCGGTTGGGGTAAATCGGTCATGCGTCAGCCTGATGGCAGCAGCAGTCACAACCTGTTCGGCATCAAGGCCAGCAAGAACTGGACGGGCGATTCGGCGCGGGCAATCACCAGCGAATTCCGCAACGGTGAGATGGTCAAGGAAACCGCCGAGTTCCGCTCCTACGCATCGTACCGCGACAGCTTCCATGACCTGGTCAATCTGCTGCAAAGCAACAGTCGCTATCAAGCTGTGCTGAAGTCGGCCGATAACCCGGAACAGTTTGTACGCGAGTTGCAGAAGGCCGGTTACGCCACCGACCCGAACTACGCCAGCAAGATTTCGCAGATAGCTCGGCAGATGACGAGTCCACAAAACTTCGCTTCGGCAAGCGCTACCACGATTTTATAAMDMRKGALISGDSGSYSDLNRLNQLKVGDKNSDGNLRKVAQEFESLFLGEMLKSMRSATEAMGKDNPMNTAEAKQYQEMYDQQLAVSMSREGGGIGLADVLLRQMSKNKPTAPGEAATLSAAKQQEALDKVTKPVVTPVAAGTLPTDGPLSRTNGQRPLWASRAVNAPQGAGEGVHRNDMELLNQRRLALPPKLADRLLAGLVPAAAASTEAPAQNILPDRAVAAVKPATGELGNGDWLAALKDSEAKGQVQVYGRAVAQPPLAPARKAFRDADEFVNAMLPMAKEAAERIGVDPRYLVAQAALETGWGKSVMRQPDGSSSHNLFGIKASKNWTGDSARAITSEFRNGEMVKETAEFRSYASYRDSFHDLVNLLQSNSRYQAVLKSADNPEQFVRELQKAGYATDPNYASKISQIARQMTSPQNFASASATTILPGPT0015500_13DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015500-flgJ-K02395NANA
D1-35_005272067hypothetical proteinATGAGTCTGCTCAACATAGGGATGTCGGGCCTGTCGGCCAGTCAGTTCGCCCTGTTAACCACGGGTAACAACATTGCCAACGTCGATACCGATGGGTATTCGCGCCAGCAGACCGTGCAGGGCACCAAGGCTTCCAATCAATACGGCAACGTGTTCATCGGTTCCGGCACCACCCTGGCCGACGTGCGGCGGGTATACAACGCCTATCTCGAAGCGCAGTTGAAGACCACCACCTCGCTCAACAGTGACGCGGCGGCCTACCAGTCGCAGATTTCCCCGCTCGATGCGCTGTTGTCGGACACCGGCACCGGTCTCAATGGTGCCCTGACCAAGTTCTTCGCCTCGGTGCAGAACGTCAACGCCAAGCCGGGCGACGATGCGTCCCGCCAGTTGCTGCTCAGCGATGCCCAGGCCATGAGCGCCCGGTTCAATTCCGTCGCCAGCGAGCTGAACAAACAGAGCGAGACCATCAACGGCAACCTCAAGACCATGGTCGAGCAGGTCAACAGCCTGGCTAACACCGTGGCTCAGTTGAACAAGAAAATCGCCGAGGTTTCCAACAGCGGTGGCGCACCCAACGACTTGCTCGATACCCGCGGCGAAGTCATTCGGCAGATTTCCAGCCTGACCGGTACCCAGGTCGTGGAAAATGGCAGCAGCCTGGACATCTACCTGGGCTCCGGCCAGCCCTTGGTGCTGGGCACCACGGTCAACAAGCTGGAAACCGTGCCGGACAAGAACGATCCGGGGCGCCTGGGCATCCAGCTCAACAGTGGTTCCAGTGTCATGGACCTCACTCAGGTCCTCTCGGGCGGCGAGATCGGCGGCCTGATGCGCTACCGCAGCACCGTGCTCGACCCGGCCATGAACGAGCTGGGGCGCGTGGCCCTGGTCGTTGCCGACCAGATGAATGCCATCCAGGCCTCGGGCATCGACCGCAACGGTGATTTTGGCTCCAACCTGTTCTCCAATATCAACAGCGCCGCGCAGGTAAGCCAGCGCAGCGTGGCGTCGCTGAACAACAGCACCGGGTCCGGCAACTTCGAAGTGGCCATCAAGGACACCGGCAAGCTGAGCACCAATGACTACAAGGTCACCTTCACCAGCGGCACCGACTACACCGTGCAGCGCCTGCCTGACGGCACGTCGATGGGCAGCTTCAGCACCACGACCAATCCGCCGCCGGAAATCGACGGTTTCTCGATGAAATTCGTCAACGGCACGGCGGCAACCGGCGACTCGTTCAAGCTGACCCCGACCCGCAACGCGGCGGCCAGCATCAAGACCGAGATGACCGACTCCAAGCGGCTGGCGATCGCCGCGCCGCTGGGCGCTGCCATCGCACCCGGCGGCAGCGGCACGCTGACCATTCCGGCCAGCGGCCAGCCGACCCTGACGACCAAGCTGGACATCTACGACGCCGCCACCACCACCATCATCCAGAATGGCATCAAGACGTCCACGCCGGTCAAGGTGGTGTTCGGTGATCCGTCCGCCGATGGCACCAGCCAGCCGTATCAGTTGCTCGATGCCCAGGGCAACGAGATCAGTACCGGTTCGATCAAGCCCGGCGAAAGCAACACCCTGAACCTGACCATTCCGCTCAAGGATGCCAATGGCAACCCGATCACGGATGGCGCGACCCCGCCGGTACAACGCACGGTCGCTTTTGAAATGAGCATCGCCGGCGCACCGACCAAAGGTGCCGCCATCAACGTCACGCTTACCCAGCCCGGCAGCCTGGACAACCGTAACGGCACCGCCCTGGCCGACCTGCAGACAGGCAAGACCGTCGACACCAACAGCAACAGCAAAGGTATTTCCCTGAGCGATGCCTACGGCAAGCTGGTCGAAGGCGTCGGTGCCAAGGCCGCTCAGGGCAAGCTCGACAGCGCCGCCACTGGCGCGATCCTGAAAAACGCCTCGGACGCCCGCGACTCGCTGTCCGGCGTGGACCTGGACGAAGAGACCGGGAACCTGGTGAAGTTCCAGCAGTACTACACCGCGTCCTCGCAGATCATCAAGGCGGCGCAGGAAATCTTCAGCACTTTGATCAACAGTCTTTAAMSLLNIGMSGLSASQFALLTTGNNIANVDTDGYSRQQTVQGTKASNQYGNVFIGSGTTLADVRRVYNAYLEAQLKTTTSLNSDAAAYQSQISPLDALLSDTGTGLNGALTKFFASVQNVNAKPGDDASRQLLLSDAQAMSARFNSVASELNKQSETINGNLKTMVEQVNSLANTVAQLNKKIAEVSNSGGAPNDLLDTRGEVIRQISSLTGTQVVENGSSLDIYLGSGQPLVLGTTVNKLETVPDKNDPGRLGIQLNSGSSVMDLTQVLSGGEIGGLMRYRSTVLDPAMNELGRVALVVADQMNAIQASGIDRNGDFGSNLFSNINSAAQVSQRSVASLNNSTGSGNFEVAIKDTGKLSTNDYKVTFTSGTDYTVQRLPDGTSMGSFSTTTNPPPEIDGFSMKFVNGTAATGDSFKLTPTRNAAASIKTEMTDSKRLAIAAPLGAAIAPGGSGTLTIPASGQPTLTTKLDIYDAATTTIIQNGIKTSTPVKVVFGDPSADGTSQPYQLLDAQGNEISTGSIKPGESNTLNLTIPLKDANGNPITDGATPPVQRTVAFEMSIAGAPTKGAAINVTLTQPGSLDNRNGTALADLQTGKTVDTNSNSKGISLSDAYGKLVEGVGAKAAQGKLDSAATGAILKNASDARDSLSGVDLDEETGNLVKFQQYYTASSQIIKAAQEIFSTLINSLPGPT0015195_245DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015195-flgK-K02396NANA
D1-35_005281566hypothetical proteinATGCGAATTTCCACCAATCAGTTTTATGACACCTCGGCTGCGAACTATCAGAAGAACTTCGCAAAAGTCCTCAAGACCATGGAAGAGAGCTCAAGCCAGGTTCGCGTGAACACCGCGGCCGATGATCCGGTGGGCGCTTCGCGTCTGCTGCAGTTGGGTACCCAGGCGGCGTTGCTCGACCAGTACGAAACCAACACCAAGACCATCAGGGCGACCCTGGGCACTACTGAAGCGGTCATGGAGAGCATTGGTAACGTGCTGCAGCGCGCCAGGGAACTGTCCGTGAGTGCCGGTAACGCCGGCTACACCGATGCTGACCGTCAAGCCACTGCCTCGGAGCTGGGCCAGATCGAAGAGCAGTTGCTGAGCCTGATGAACTCCAAGGACGAAAACGGCAAGTACATATTCGCCGGGTCCAAGGGCGACACCATCCCGTTCACCCGCAACGACGATGGCACCTACAGCTATAACGGTGATCAGGTCACCCTCGACCTGCCGATCGGCGATACCATGTCCATGGCCACCAACAGCACCGGCTGGGAAGTGTTCCAGCAAGCCGTCAATACCAGCCGCAGCCAGGTCACCATGACCGCGCCGGCAGTCAATGACGGTCGTGTCGTGCTGTCCGACGGCCAGGTGTCGTCCAGTGTCAGCTACAACAGCAAGTTTCGCAGCGGCGAGCCGTACACCGTGGAATTCGTCAGCGGTACGCAGCTGAAAATCACCGACTCGCTCGGTAATGACGTGACGGCGGAAGCCAGCCAGGGCGGCAGTTTCGACCCTGCCAGCAAGAGTGGTCAGGCAGTCAATTTCCGTGGCGTGGAGCTGACCCTGAACATCAATCTGCAAACGGGTGACGACCCCGCCACGGTGTTGCCAGGGCGCACCTTCACGCTGGCTGCCAAGCCGGACACCTTTGTTCCGACACGCAGCCCCGGCAACCCGACAGCGGTGCAGATCACCGGCAGTGAGATCACCGACCCGGTGGCGTACCACGCCAGTTTCCCTACCGGTTCGGCAGTGCTGAAGTTCACCAGCGCTACCGATTTCGAACTTTATGCCGCGCCGCTGACCGCTGACAGCCGGCCGGTTTCCAGCGGTACCCTCGCCGGTAACGTGGCAACAGCTTCGGGCGTCAGCTTCACCTTGAACGGCGCGCCCGCCGCGGACGATCAGTTCAGCGTCGCAATCAACACCCACGAAACCCAGAATATCCTGGACACCGTGAGCCAGTTGAAGAAGGCGTTGAACACCCCTACCAATGGTGACCCTCTCGAGGTACAGAAACTTCAGGCTTCGTTGGCTTCCGGTATCGGTAACCTGGCGAGCGGCACCGATCAACTCTCCAGTGCCCGGAGTTCGGTCGGCGGTCGGGGTCAGTCGCTGGATACCCAAAGCGGCACCAACCAGAGTCTGGTCCTGGCCAACAGCCAGACCCAATCGTCGATTCGTGATTCCGACTCAGCCGAAGTATTGATCCGCCTGACGATGCAAAGCACCATGCTGCAAGCCTCGCAACTGGCCTTCAGCAAAATCGCGCAGTTGGGTCTGTTCAACAAGATCTGAMRISTNQFYDTSAANYQKNFAKVLKTMEESSSQVRVNTAADDPVGASRLLQLGTQAALLDQYETNTKTIRATLGTTEAVMESIGNVLQRARELSVSAGNAGYTDADRQATASELGQIEEQLLSLMNSKDENGKYIFAGSKGDTIPFTRNDDGTYSYNGDQVTLDLPIGDTMSMATNSTGWEVFQQAVNTSRSQVTMTAPAVNDGRVVLSDGQVSSSVSYNSKFRSGEPYTVEFVSGTQLKITDSLGNDVTAEASQGGSFDPASKSGQAVNFRGVELTLNINLQTGDDPATVLPGRTFTLAAKPDTFVPTRSPGNPTAVQITGSEITDPVAYHASFPTGSAVLKFTSATDFELYAAPLTADSRPVSSGTLAGNVATASGVSFTLNGAPAADDQFSVAINTHETQNILDTVSQLKKALNTPTNGDPLEVQKLQASLASGIGNLASGTDQLSSARSSVGGRGQSLDTQSGTNQSLVLANSQTQSSIRDSDSAEVLIRLTMQSTMLQASQLAFSKIAQLGLFNKIPGPT0015505_341DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015505-flgL-K02397NANA
D1-35_005293573hypothetical proteinGTGAATTCACTTCCGCTTGTAAGCATCGTCATCCCCGCGTACAACCCTCGGTTCTTCGACCAGGCACTGCTCAGCGCCTTGGCGCAGACTTACGAAAACATTGAGATCATCGTTTGCGACGATTCGCCTGGCGATGAAATCCGCCATATCGTCACATCCTTCACAGAACCGGCCCATCCGGTCCGTTATCTGAAAAACTCACAACGGCTGGGGCTTCAGGGCAACCTGTTGCGCTGTGTCGAAGAGGCGCAGGGCGAGTTCATCAAGGTGTTGTGCGATGACGATCGACTGTTTGCGCCGAGCATTGCGATGCAGGCTCAGGCGTTGGTGGACCATGCTGACGTGAGCGTTGTGTTCGCGCTTCGATTGTTGTGTGACGCAGGTAACTTCATCCTGCCACCCCGCGTGGACAATTGCCGTTTCTCGCCAAACGACGCTTTGCTCAAGGGCGACGACATGCTGGCGATTTTCGAGAGCACGCCAACCAATTTCATCGGCAATTTCAGTTCGGCCCTGATGCGTCGCGCCGATGTGCTGGAATTGTTGCCTGCGTTGATCCAGGACGGTGCTGGTTTTGTCGCGGTGCTCGATTTTGCCTTGTTTGTCTGCCTGATGCGCCGCGGCAATCTAATTGCCTTGAACACCGTGTTGAGTGTCGAACGTCTGTACCCGGAGCGTTTGAGCAAGACCCCGGAGATGCTCAAGGCCGCAAAAACAGAGTGGGAATGGCTGGCGCAGATGCTGGTTGCGCGCAGTGGTGAAGCGGCTCCGGCCTCGGGTTGGGTGCGCTGCATCGATTTGAATAAGATCACTGAACAGCCTCATGCGTGGCAGGAGCTCTGCGTAACCCGCGTATTGGGCAACCGCAATACCGTCGTCAATGGTCGAGTGGGCGCGCAAAGTGAGAGTTATGCGGACTTCTATCGCGAATGGCTGGCCGTGCGTCGGTTCAGTGAGGTGGAGCGACGCGTCATGCCCGCGCGGGTGGACAGTTGGCCGTTTCGGCCGAATATCGTGCCTTTGATCATCGACGCTCTCGGCGATGCGCCGTCAGTTGCGGCGACGTTACGTAGCATCAAGGACCAGTTATATCCAGCACAGGCCGTGGTAGTGCTTTCCGATGCCCATTGCGAAGTGGACGGGCGAGTGCTGCAACTGCCTTATCAGGCCGATTGGCCGAGCCAGTTCAATGCCATCGTTCCACAGCTGGAAGGTGCGCACTGGTTCTACGTGCTGCGAGCGGGCGACGTGCTGCGCGAGTCGGCGTTGCTGATCCTGGCCGAGCGCGTCGCCGGGAAACAGGGCATCCTATGCGTCTACAGTGATGAAGGCGCGTTGGTGGACGGCGAGTCCTTCGAACCGGTGTTCAAGCCGGATTTCAACCTGGACCTGATGCGCGCCTATCCCTATGTGGGTCGGACCCTGGCTTTCGAGCGTGAACGATTCATGGCCCTTGGTGGTTTTGAACCGGATCACGGTGAACTGGCGCCCCATGATCTGCTCTGGCGCCTGGTGGAAGAGGCTGGCCCTCAGACCATAGAACACATCGCGGAAATCCAGGTCGAGTCGGTCCTGAGCTTCGCTCAATGGTTATCGCTGCCCGAGGTCATCGAGGGCAATGCCCGATTGGTTGGCGCACATCTGAATCGTATCGGCATCGATCATCAGATTTCTCCGGACACATTGCCGTTGATCAACCGCATCAACTATCGACACGGTGGACGCCCGCTGGTATCGATTATCCTGCGTACCGGTGACTCGCTTGCAGCCTTGCAGCGTTGCGCCGAGAGCCTGATCGAACGCACGGCTTACACCCACTATGAAATCCTGATCGTGGACAGCGGCGTCCGGGATCCGGCCATGCTTGATTGGCTTGAGAACATGTCGCTGCTGGGCGCTAGCATGTTGCGGGTACTGCGTCATGTCGGTGAGGGAAATGATGCAGCGGTGTGTAATTTCGCCGCTGCTCAGGCCCGGGGCGAGTACCTTCTATTGCTGAGTCCGCACCTGGCTGTTTGCGAAAGTGACTGGCTGGACGAGATGGTCAATCATGCCCAGCGTCCTGAGGTGGCGGTGGTCGGTGCGAGGATTCTCAGTCCTCAAGGCACGATTGTTGCCGGGGGGCAGATTCTCGGGTTGGCTGGGCCTGTGGGCACGCCGTTCTACGGGGAGCCAGCGGCTTCGCGCGGCTACATGCAACGTTTGCATACGACCCAGAACTGGAGTTCAGTCAGCAGTGACTGTCTGATGGTGCGCAAGCAGGTTTTCGATGAGCTCGGCTGCCTGGACGATGCGTCTTTCACCTTCGGCCTCAGCGATGTCGACCTGTGCCTGCGCGCAGGCAAAAACGGCTATCTGGTGGTCTGGACGCCTTACGCCACGGTCATTAAAAATCACCCTCAATCGACCGCAGCCCAGCCAGAAGAAAACACGTTGGTAGAACGCGAGCGCGAAGTTTTCTTTCGCAAATGGCTGCCGCAGATCGCCCGGGATCCGGGCTACAACCCTGCGCTGAGCCTCGGGGCGTCCAGCTTCAGCCTGGAACCTTCGTTGCGCAACAATTGGAACCCGTTCTGCACCCGCGCCCTGCCATTGATACTTGGCTTGCCGGTCAACGCCACCGCAGTCGGTCATTATCGTGTTACGGCCCCGTTGGCCGAATTGGAGGCCGCGGGGCGGGTAATCGCCCGGGTCGCCTACGAGTCGCCTTCCACCGTTGAGATCGAGCGTCTGTCGCCGGACACGATCGTATTGCAGGGGCGCTACAGCGAAGGGGCCGCCGGCGATATTCTCAGAATGAAGAAATATTCCGGTGCGTTGCGGATTTTCGAACTCGACGATTACGTCGTCCAGGCGCCCAAGAAAAACACGCATGCGCGCAACAAGCCGGCCAACATTGAACAGATGCTGCGCGAAGGAATAGGATTGTGTGATCGCGTGGTGGTGACGACACCTTCGCTCGCGGATGCCTTGTCCAGCATGCACAATGAAATCCGCATCGTACCCAATATGTTGCCGCCCGAGCCGTGGGCGAAGCTGACCAGCCGGCGTGGCGCCTCCTCCAAGCCTCGGGTGGGCTGGGGGGGAGGGACCAGCCACAGTGGCGACCTGGAAATCATTGCAGACGTGGTTCGCGAGCTGGCAAATGAAGTGGAGTGGGTATTCTTCGGCATGTGCCCGGATGCGCTGCGGCCATACATCCATGAGTTCCACGGCTCGGTCGCCCTGAGTACCTATCCATTCAAGCTGGCCAGCTTGAACCTTGACCTGGCCCTGGCCCCGCTGGAGTTCCATATCTTCAACGATTGCAAGAGCAATCTGCGCTTGCTGGAATACGGAGCGTGTGGCTATCCGGTCATCTGCACCGACACCAAGGCCTACGACGGTTTTCTGCCTTGCACCAAAGTGCGCAGCAACAGCACCGAGGAATGGATCGCGGCAATCCGCATGCACCTGGCCGATCCGGACGCCAGCTACCGCATGGGTGACGAACTGCGCGAAGCGGTATTGCGCGACTACATGCTCAGCGGCAAAAACCTGCAGCATTGGTTGTGGGGGTGGTTGCCGGATTGAMNSLPLVSIVIPAYNPRFFDQALLSALAQTYENIEIIVCDDSPGDEIRHIVTSFTEPAHPVRYLKNSQRLGLQGNLLRCVEEAQGEFIKVLCDDDRLFAPSIAMQAQALVDHADVSVVFALRLLCDAGNFILPPRVDNCRFSPNDALLKGDDMLAIFESTPTNFIGNFSSALMRRADVLELLPALIQDGAGFVAVLDFALFVCLMRRGNLIALNTVLSVERLYPERLSKTPEMLKAAKTEWEWLAQMLVARSGEAAPASGWVRCIDLNKITEQPHAWQELCVTRVLGNRNTVVNGRVGAQSESYADFYREWLAVRRFSEVERRVMPARVDSWPFRPNIVPLIIDALGDAPSVAATLRSIKDQLYPAQAVVVLSDAHCEVDGRVLQLPYQADWPSQFNAIVPQLEGAHWFYVLRAGDVLRESALLILAERVAGKQGILCVYSDEGALVDGESFEPVFKPDFNLDLMRAYPYVGRTLAFERERFMALGGFEPDHGELAPHDLLWRLVEEAGPQTIEHIAEIQVESVLSFAQWLSLPEVIEGNARLVGAHLNRIGIDHQISPDTLPLINRINYRHGGRPLVSIILRTGDSLAALQRCAESLIERTAYTHYEILIVDSGVRDPAMLDWLENMSLLGASMLRVLRHVGEGNDAAVCNFAAAQARGEYLLLLSPHLAVCESDWLDEMVNHAQRPEVAVVGARILSPQGTIVAGGQILGLAGPVGTPFYGEPAASRGYMQRLHTTQNWSSVSSDCLMVRKQVFDELGCLDDASFTFGLSDVDLCLRAGKNGYLVVWTPYATVIKNHPQSTAAQPEENTLVEREREVFFRKWLPQIARDPGYNPALSLGASSFSLEPSLRNNWNPFCTRALPLILGLPVNATAVGHYRVTAPLAELEAAGRVIARVAYESPSTVEIERLSPDTIVLQGRYSEGAAGDILRMKKYSGALRIFELDDYVVQAPKKNTHARNKPANIEQMLREGIGLCDRVVVTTPSLADALSSMHNEIRIVPNMLPPEPWAKLTSRRGASSKPRVGWGGGTSHSGDLEIIADVVRELANEVEWVFFGMCPDALRPYIHEFHGSVALSTYPFKLASLNLDLALAPLEFHIFNDCKSNLRLLEYGACGYPVICTDTKAYDGFLPCTKVRSNSTEEWIAAIRMHLADPDASYRMGDELREAVLRDYMLSGKNLQHWLWGWLPDNANANANANA
D1-35_005302082hypothetical proteinGTGACCTTTGAAGGCGGCTCCGGTAACGATATCTACAACGTTGCTACAACCGGTGTGAAGATCATCGAACAGGACAACGGCGGTTTCGACGAACTGCGCACCAGAGCCGCAACGACCACCATGGACGTGTTCGTCGAAAAAATGGTGTACACGGGCACGGGCTCTTTTACCGGTTACGGCAACGCCGGTGACAACATCATTATTGGCGGTGCAGGCAACGACGTTTTGTTTGGTGGTGACGGCGCTGATCAGTTCTTCGGCGGTGCGGGGCTTGATGTGGTCGGTTATATCGACAGTAAAGTGGCCGTGAACATCAATCTCAAAACTGGTGTCCATTCTGGTATCGCAGCAGGCGATACTTTCACCGACATTGAAGTCATTCGTGGCACAGGTGCTGCTGATACCGTGGTGGCTGATGACCGGGCCATCGGTTTTGATGGTGGGGCAGGTGTCGACACCATGGATTATTCTGCTTCTTCTGCCGCCATTGACATAGATATCCGCAACGGTGTGGGCAGGGCTGGCATCGGTGGTGACGCAGAGGGCGACACGTTATCGGCGGTGGAAAAGGTCATCGGGACGGCTTTCGATGACACTTTCACCAGCGCGATTGGTAACGTGACCTTTGAAGGCGGCTCCGGTAACGATATCTACAACGTTGCTACAACCGGTGTGAAGATCATCGAACAGGACAACGGCGGTTTCGACGAACTGCGCACCAGCGCCGCAACGACCACCATGGACATATTCGTCGAAAAAATGGTGTACACGGGCACGGGCTCTTTTACCGGTTACGGCAACGCCGGTGACAACATCATTAATGGCGGTGCAGGCAACGATGTTTTGTTTGGTGGTGACGGCGCTGATCAGTTCTTCGGCGGTGCGGGGCTTGATGTGGTCGGTTATATCGACAGTAAAGTGGCCGTGAACATCAATCTCAAGACTGGTGTCCATTCTGGTATCGCAGCAGGCGATACTTTCACCGACATTGAAGTCATTCGTGGCACAGGTGCTGCCGACACCTTCATCGGCGGCTCACAAGCGATGGGACTCGATGGAGCGCTGGGTACAGACTTGGCCAGCTATGAACAATCCACGAGCGCGGTGACCATCGACCTGACAACGAATGTGAACGCAGGTGATGCTGCGGGTGATACGTTTACCGCGATCGAGATATATCAGGGTTCTAGCTTCAATGACACGCTGTTGGGTTCTGCTAAAGCCGACATTTTTATCGGCGGTGCGGGTGCCGATGTCATTGATGGCCGCGATGGCGTGGACCAGGTTTGGTATGTCAACAGTGCCGCCGCTGTGGATATCAACCTTCATACGGGTGTTCACCAAGGAGGCGACGCCCAGGGTGATGTGCTGACTAACATCGAGCGGGTCATAGGCAGCCAGTTCAATGACTCCATGACTGGAGACGGCCAGGCTAACTGGTTGGAGGGTGGGTTGGGCGGCGACACCATTTATGGGGGCGATGGGGACGATTACATTTATGGCGGCTTGTACACGGCTACAGGTCCGATGCTTCTCGGTAGCTCTACCGACGTTACCCAGGCCGATCAGCTCTATGGTGGCCTCGGCAATGATTCGATCACCACGGCCAGCCTGGACACCGGAGCAGTGGCTTACGGCGAAGTTGGCAACGATGGTATTTTGGTGTTCAGCGGCACCGCTGATGGTGGGGTCGGTAACGATACTCTGTTGGGCAAAGGGGATGGTTTCCGCTTATTGGGCGGGGCAGGCAATGACACTTTGACTGTCGCCGAAGGTGGTCGGGGGTTCCTAAATGGAGGTCAGGATGATGATACCTACGTCATAGATACCTACGGCCAAGTCACGATCAAGGATGATGGTACAGGAGGATTTGACCGGGTTCTGCTTAAGAGCATGGAATCTATGGATACCATAACGACCGTGCGAAACGGCAATGACGCCTATATCTTCAATACCTCCAACTACCATTTAGGCCAGTCTCTGTCGGAGACGGGCGTGAAGCTGCAAGATTGGTACGCAGGTTCCAACACCATCGAGCAATTCCAAACCTCCAATGGGGATGTCTTTACGATTCCTGCATAAMTFEGGSGNDIYNVATTGVKIIEQDNGGFDELRTRAATTTMDVFVEKMVYTGTGSFTGYGNAGDNIIIGGAGNDVLFGGDGADQFFGGAGLDVVGYIDSKVAVNINLKTGVHSGIAAGDTFTDIEVIRGTGAADTVVADDRAIGFDGGAGVDTMDYSASSAAIDIDIRNGVGRAGIGGDAEGDTLSAVEKVIGTAFDDTFTSAIGNVTFEGGSGNDIYNVATTGVKIIEQDNGGFDELRTSAATTTMDIFVEKMVYTGTGSFTGYGNAGDNIINGGAGNDVLFGGDGADQFFGGAGLDVVGYIDSKVAVNINLKTGVHSGIAAGDTFTDIEVIRGTGAADTFIGGSQAMGLDGALGTDLASYEQSTSAVTIDLTTNVNAGDAAGDTFTAIEIYQGSSFNDTLLGSAKADIFIGGAGADVIDGRDGVDQVWYVNSAAAVDINLHTGVHQGGDAQGDVLTNIERVIGSQFNDSMTGDGQANWLEGGLGGDTIYGGDGDDYIYGGLYTATGPMLLGSSTDVTQADQLYGGLGNDSITTASLDTGAVAYGEVGNDGILVFSGTADGGVGNDTLLGKGDGFRLLGGAGNDTLTVAEGGRGFLNGGQDDDTYVIDTYGQVTIKDDGTGGFDRVLLKSMESMDTITTVRNGNDAYIFNTSNYHLGQSLSETGVKLQDWYAGSNTIEQFQTSNGDVFTIPANANANANANA
D1-35_005311740prsD_1Type I secretion system ATP-binding protein PrsDTTGAAAACCGACAACGCTGTCAGTGCGCCTGTTGTTGCGCCTTCATTAAAATCGCTGTTGCGCCGCGGGCTGATTGGCGCCGCGCTGTTCTCTGGGGTGATCAATATTCTGGCATTGATCGGCCCGGTGTTCATGCTGGAGGTCTACGACCGCGTCATTCCCAGCCAGAGCGTCCCGACCCTGGTCGCCCTGGGGCTGCTGGCGCTAGGGGTTTATGCGCTTTCGGGGCTGCTGGATATTATTCGTTCACGGGTCATGGTGCGCATTGCCTCCTCGCTGGACCTGGCGCTGTCATCCAAGGTCTTCAAAGTCATCGCCGGCGCATCACTGAAGACACCCATTACCGGCGACGCCTTGAAACCGGCCCAGGAGCTGGACCAGATTCGCGGTTTTATTGGCGGACCGGGCCTGGTGGCTTTTTTCGATTTGCCCTGGATGCCGGTCTATCTCGCCGTCTGCTTTTATATCCATCCGCTGTTTGGCCTTTTGACCGTCGGCCTGATGGTCATCCTTATCGGCCTGACCCTGATCACCGACCGCCAGACCCGCAAGCTGATGCAGGCTTCGGTCGATGCGTTGAACAAGCGCAACCACCTCGGTCAGCAAGCTCACCAGAACGCCGAAGCGCTGATGGCCATGGGCATGTTGGCCAACACGTCGAATATCTGGCAGAAGAGCCACGGTACCTTCATCACCCTGCAGCGACGCTCGATCGACATCGGCGGTTTTTACGGTGGTATCTCCAAGACCTTGCGCCAGATCGTGCAGTCGGCCGCCCTAGCCCTGGGGGCATGGCTGGTGATCAAAGGTGACTTGAGCGGTGGCACTATGATCGCGGCGTCGATCATCGTGGCGCGGACCCTGGCACCGGCTGAGCAAGTGATTGCCACGTGGCGCAGCCTGTTGGGTGCCCAGATTGCCTGGAAGAAGCTGGTGGAAGTGTTCGCCCTGTTCCCTGATGTCCAGAGCAAAACCGAGCTACCCGCTGCTCATCGCAGTTTGCAGGTCGAAAACGTTTTTGCGGCGCCGCCCGGCGCGCAGCGCCTGACTTTGCAAAATATCAACTTCATGGTCGCCGCGGGCACCGCCGTAGGCGTGGTAGGGCCGAGCGCATCGGGCAAGTCATCACTGGCGCGCGTGCTGGTCAACGCCTGGACGCCGGCCCGCGGGCATGTGCGGCTCGATGGTGCGCCGCTCGATCTGCTGACCGAACAGGCGCGAGGCAAGTTGATCGGCTACGTGCCTCAAAGCGTCGGTCTGTTCACTGGAACCGTCGCCCAGAACATCGCCCGGTTGGACCCTGCTGCACAGGACAGCGCAATTGTCAGCGCTGCGCAATTGGCCGGCGTGCATGAGCTGATCCTGCAATTGCCCCAGGGCTATGAAACCCAAGTGGGCGAGGGCGGGGTCAACCTCTCGGCAGGCCAACGGCAACGGGTGGCGCTGGCCAGGGCGCTGTTTGGTGATCCGTTCCTGGTGGTGTTGGACGAGCCGAATTCAAACCTCGATGCCGAAGGCGAGCAGGCGCTGGCCAAGGCCATCCTGGCGCTCAAGGCCCGGGGTGCAATCGTGATAGTGATTGCCCACCGCACCAATATCCTGTCGGTGATCGATCAGGTGCTGATCCTCGAACAGGGCGTGCAGGCCGCTTACGGCCCGAGGGATGTCGTCCTTAAGCGCCCTCCCGCAGCGCCTCCCCGGCCCTCCAGCAATGTTGTGGAACTGGGAGCGTCGAACTGAMKTDNAVSAPVVAPSLKSLLRRGLIGAALFSGVINILALIGPVFMLEVYDRVIPSQSVPTLVALGLLALGVYALSGLLDIIRSRVMVRIASSLDLALSSKVFKVIAGASLKTPITGDALKPAQELDQIRGFIGGPGLVAFFDLPWMPVYLAVCFYIHPLFGLLTVGLMVILIGLTLITDRQTRKLMQASVDALNKRNHLGQQAHQNAEALMAMGMLANTSNIWQKSHGTFITLQRRSIDIGGFYGGISKTLRQIVQSAALALGAWLVIKGDLSGGTMIAASIIVARTLAPAEQVIATWRSLLGAQIAWKKLVEVFALFPDVQSKTELPAAHRSLQVENVFAAPPGAQRLTLQNINFMVAAGTAVGVVGPSASGKSSLARVLVNAWTPARGHVRLDGAPLDLLTEQARGKLIGYVPQSVGLFTGTVAQNIARLDPAAQDSAIVSAAQLAGVHELILQLPQGYETQVGEGGVNLSAGQRQRVALARALFGDPFLVVLDEPNSNLDAEGEQALAKAILALKARGAIVIVIAHRTNILSVIDQVLILEQGVQAAYGPRDVVLKRPPAAPPRPSSNVVELGASNPGPT0029385_802DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_I_SECRETION_SYSTEMSCE-TSS1-HEMOPHORE|METALLOPROTEASE_TRANSPORT,PGPT0029385-hasD|prtD|-K12536NANA
D1-35_005321311prsE_2Type I secretion system membrane fusion protein PrsEATGCATACCGATCAAGAAGTCACTCTGACCGATTCCTTGTCCCGTCATCTGCGTTGGGGCGCTATCTCGTTGCTGGTGCTGCTCGGCGGAGGGCTGACCTGGGCGGTATTCACCAATCTGTCCGGCGCAGTCATTGCCACCGGTGTGGTAGCGGTGGAGGGCAGCGTCAAGACCGTCCAGCATCCTACCGGTGGCATCGTCGCCGAATTGCTGGTCAAGGAGGGACAGGCCGTCGCCGCCGGAGACGTGCTGTTGCGCCTCGATGCCACACTGCCCGCCGCCAGCCAGGCCATCGTCAGTAAATCATTGAACCAGGCCTGGGCTCGACTGGCTCGCCTGGAGGCCGAGCGCGACAATGCCGGCGAAGTCGCAATACCCAAAGAGTTGTTGACCCGCATGAGCCTGGAAGAGGCCAAGGCGGTCATGGCTATCGAGCAGCAATTGTTCTTCGACCGTCGAGCGTCCCGTGAAGGCCAGAAAAAACAGCTTCGCGAGCGCGTTCAGCAACTCAACGAAACCATTGCCGGCCATGACATCCAGCAGAAAACCAAGCTGGAAGAAATCGAGCTTATCGACTCGGAATATCAGGCGGTCAAGACGCTGTTCGACAAAGGCATGATGACCCTTGACCGGGTCAATGCCCTGGCTCGGGGGATTGCCCGGCTGCGCGGCGAACGCGGTCAATTGATGGCCTCCATCGCCGAGGCGCGGGGCAAGATCGCCGAAACCGAGTTGCAACGACTCCAGGTCGATCAGACTTTCCGCAGTGAAGTGTCCCAGGAACTGCGCGATCTGCTGGCCCGCCAGGGCGAACTGATCGAGCGGGAAATCACTGCCAGCGACCAACTCAAACGCATCGACATCACCGCGCCTATCGCCGGGCGCGTGCAGCAATTGGCGGTACATACCGTCGGTGGCGTCATCTCACCGGCCGAAGGGCTCATGCAGATCGTGCCGGCAGACGATGAATTGTTGGTGGAGGCGAAGATCAGTGCGCAGGACATTGATCAATTAACTGTCGGGCAATCCGCGACCTTGCGCTTGAGCGCGTTCAACCGCAGCACCACCCCAGAACTGACCGGCACTGTGGTGCGGCTGTCGGCGGATCTGATCGAGGATCAGCGTACCGGAGTGGGGTTTTATCGGGCAGGCATTCGTATCCCCAAAGAACAGGTCGAGCGGATATCCGGCCTTACACTGGTGCCGGGCATGCCGGTCGAGTCGCTTATAAAAACGGGCGACAGAACGGTGTTGTCTTATTTACTCAAGCCTATTGGAGATCATGCCCAGCGGGCATTCAGGGAAGGCTAGMHTDQEVTLTDSLSRHLRWGAISLLVLLGGGLTWAVFTNLSGAVIATGVVAVEGSVKTVQHPTGGIVAELLVKEGQAVAAGDVLLRLDATLPAASQAIVSKSLNQAWARLARLEAERDNAGEVAIPKELLTRMSLEEAKAVMAIEQQLFFDRRASREGQKKQLRERVQQLNETIAGHDIQQKTKLEEIELIDSEYQAVKTLFDKGMMTLDRVNALARGIARLRGERGQLMASIAEARGKIAETELQRLQVDQTFRSEVSQELRDLLARQGELIEREITASDQLKRIDITAPIAGRVQQLAVHTVGGVISPAEGLMQIVPADDELLVEAKISAQDIDQLTVGQSATLRLSAFNRSTTPELTGTVVRLSADLIEDQRTGVGFYRAGIRIPKEQVERISGLTLVPGMPVESLIKTGDRTVLSYLLKPIGDHAQRAFREGPGPT0029390_941DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_I_SECRETION_SYSTEMSCE-TSS1-HEMOPHORE|METALLOPROTEASE_TRANSPORT,PGPT0029390-hasE|prtE-K12537NANA
D1-35_00533774rfbFCOG1208Glucose-1-phosphate cytidylyltransferaseATGAAGGCAGTTATCTTGGCAGGTGGTCTCGGCACGCGGATCAGCGAGGAGTCGCACCTCAAGCCCAAGCCGATGATCGAAATCGGTGGCAAGCCAATTCTTTGGCACATCATGAAGCAGTATTCCGCCCATGGAATTCATGACTTCGTTATTTGCCTAGGCTACAAGGGCTATGCCATCAAGGATTTCTTCGCCAATTACTTCCTGCACACCTCCGATGTTACTTTCGATATGTGCAACAACCGCATGGACGTTCACCAGAACTACAGCGAGCCGTGGCGCGTGACCCTGATCGATACGGGCGAAGAGACCATGACCGGCGGACGGCTGCGTCGGGCGGCCCGTTACCTGGAAAATGAAGAGGCGTTCTGCTTCACCTATGGCGATGGTGTTTCGGACCTCAATATCGGTGCGCTGGTGGATTTTCACCTGGCGCACGGCAAGCTCGCCACGGTCACCGCAGTCCAGCCGCCGGGACGCTACGGCGCGCTAGAGCGCGATGGCGATACGGTCCTGGGTTTTACTGAAAAACCTCGGGGTGACGGTGGCTGGATCAACGGTGGTTTCTTTGTACTCTCGCCGCAGGTCCTGCCTTATATCGCTGACGACCAGACTTCCTGGGAAGCCGAGCCGCTGGCGGCATTGGCGACCGAGCAGCAGCTTCAGGCGTTTCAGCACGACGGTTTCTGGCATCCAATGGACACCCTGCGGGATAAAAACCACCTCGAAGCCCTGTGGCAAAGCGGGGAGGCCCCATGGAAGCAATGGGACTGAMKAVILAGGLGTRISEESHLKPKPMIEIGGKPILWHIMKQYSAHGIHDFVICLGYKGYAIKDFFANYFLHTSDVTFDMCNNRMDVHQNYSEPWRVTLIDTGEETMTGGRLRRAARYLENEEAFCFTYGDGVSDLNIGALVDFHLAHGKLATVTAVQPPGRYGALERDGDTVLGFTEKPRGDGGWINGGFFVLSPQVLPYIADDQTSWEAEPLAALATEQQLQAFQHDGFWHPMDTLRDKNHLEALWQSGEAPWKQWDPGPT0022605_548DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PARATOSE|TRYLOSE|ABEQUOSE|ASCARYLOSE_MODIFICATION,PGPT0022605-rfbF-K00978NANA
D1-35_005341083rfbGCOG0451CDP-glucose 4,6-dehydrataseATGGAAGCAATGGGACTGAGCGCGGAATTCTGGCGCGGTAAGCGGGTGCTGGTTACCGGTCATACCGGTTTCAAGGGCAGTTGGCTGACGCTGTGGCTGCAAAGCCTGGGGGCCAAGGTCAGTGGTTTTTCCCTTGACCCGGCCACCCAGCCGAACCTGTACGAACTGGCCCGCGTGGGCGAGGGCATCGATGACCGACGCGGCGACTTGCGCGACCTCGGTGCCTTGCTGGAAATCCTGGCGGACGCGCAGCCGGAAATAGTCCTGCATCTGGCAGCCCAGCCGTTAGTGCGCGAAGGTTATCGAGACCCGTTGGGCACGTATTCCAGCAACGTCATGGGCACTCTCAACCTGCTGGAAGCGGTTCGCCAGGTGGGCGGCGTCAAGGCGTGCGTACTGGTTACTACCGACAAGGTCTACGCCAACCAGGAATGGTTATGGCCCTACCGCGAAAACGAGGCCCTGGGCGGTCACGATCCCTATAGCAGCAGCAAGGCCTGCTGCGAGTTGCTGGCACAATCTTACGCTGCCTCGTTCTTTTCGGTTGAGCGCTATGCCGAGCATGGTCTGGCCCTGGCCACTGCGCGGGCAGGCAACGTGCTGGGCGGCGGTGATTTCGCTCCCGAGCGCCTGATTCCTGATGTGCTTAAGGCCTGGTCGGCAGACGAGCCGGTGACGCTGCGTTATCCACAAGCCGTGCGTCCATGGCAGCACGCCCTCGAACCGTTGGCCGGTTACTTGCAGTTGGCTGAGTGCCTGTATCAGCAGGGACCAGAGTTCGCCGGGGCCTGGAACTTCGGCCCGGGTGAGGCTGACATGTGCAGCGTTGGCGAAGTAGTCCAGTTGCTGGCCGAGCGCTGGCCGCAAGCGCCGGGCTTGCGCATCGAGCCGAGCGACTTGCATGAGGCCGGCCTGTTGCGCCTGGACAGCAGCCGCGCCCGGCAACTGCTGGGCTGGCAGCCGCGCTGGTCGCTGCAACAGTGTCTGGGCCAGACCCTGGATTGGCACTTGGCATGGCAGAACGGTGACGACATGCGTCAAGTCACCCTCGGCCAACTGAACCTGTACCGAGGCGGGTTGTGAMEAMGLSAEFWRGKRVLVTGHTGFKGSWLTLWLQSLGAKVSGFSLDPATQPNLYELARVGEGIDDRRGDLRDLGALLEILADAQPEIVLHLAAQPLVREGYRDPLGTYSSNVMGTLNLLEAVRQVGGVKACVLVTTDKVYANQEWLWPYRENEALGGHDPYSSSKACCELLAQSYAASFFSVERYAEHGLALATARAGNVLGGGDFAPERLIPDVLKAWSADEPVTLRYPQAVRPWQHALEPLAGYLQLAECLYQQGPEFAGAWNFGPGEADMCSVGEVVQLLAERWPQAPGLRIEPSDLHEAGLLRLDSSRARQLLGWQPRWSLQQCLGQTLDWHLAWQNGDDMRQVTLGQLNLYRGGLPGPT0019060_318DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PARATOSE|TRYLOSE|ABEQUOSE|ASCARYLOSE_MODIFICATION,PGPT0019060-yfnG|rfbG-K01709NANA
D1-35_00535561rfbC_1COG1898dTDP-4-dehydrorhamnose 3,5-epimeraseGTGAGCGAATTTTATTTGAAGACATTGCCGCTGGACGGTCTGTTCAGCGTCCAGCACAAACGCTTCGAAGACCAGCGCGGACATTTCGCCCGGCTGTTCTGTGAAGGTAGCTTGAGTGCCTTCGGCCAGCCGTTCCATATCCGCCAGATCAATCATTCCTGCACCCGTGAGCGGGGTAGTGTGCGCGGTTTGCATTATCAGAACGCAGCGCAGCCGGAAGCCAAACTGATCACCTGTCTGCGTGGCGAAGTCTGGGATGTGGCCGTGGATTTGCGACCCGAGTCCGAGACCTTCCTGCGATGGCATGCCGAGCACCTGAAGGCTGGTGATGGCCGCAGTCTGTTGATCCCGGCCGGGTTTGCCCATGGGTTCCAGACCCTGACCGACGACGCTGAGCTGCTTTACTTGCACAGTGCCGACTACGCTCCGGAGCATGAGGGTGGCCTGTCTGTGAATGACCCGCGGCTGGCGATTGCCTGGCCGCTGTCTGTCAATAATCTGTCGAGCCGGGATAGCAACCATCCTTTACTCGACGAACGTTTTGCTGGAGTGCGTCTATGAMSEFYLKTLPLDGLFSVQHKRFEDQRGHFARLFCEGSLSAFGQPFHIRQINHSCTRERGSVRGLHYQNAAQPEAKLITCLRGEVWDVAVDLRPESETFLRWHAEHLKAGDGRSLLIPAGFAHGFQTLTDDAELLYLHSADYAPEHEGGLSVNDPRLAIAWPLSVNNLSSRDSNHPLLDERFAGVRLPGPT0014300_1481DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PUTATIVE_TRYLOSE_DERIVATES_MODIFICATION,PGPT0014300-rfbC|rmlC-K01790NANA
D1-35_005361227hypothetical proteinATGAACTGCCGAGGTTGCGGGACTGCCCTGGCTTTGCCACTGATCGACCTCGGTACTTCGCCGCCGTCGAACGCATATGTGCGGGCCGAACAATTGGATCAGGCCGAGCAGTGGGTGCCGCTTAAAGTTGCAGTGTGCCAGCAATGCTGGCTGGTGCAGACCGAGGATTACACCAGCGCGGATGCGCTGTTCGACGCCGAGTACGCCTATTTCAGTTCTTTTTCCAGCACCTGGCTGGCCCACGCCGAGCGTTATGTTGCCGAGATGGTCGAGCGCTTCGACCTGAGCGCTGACAGTCGCGTGGTGGAAATTGCCGCCAACGACGGCTACCTGTTGCAGTTCGTGGCCAAGCGCGGTATCCCGTGCCTGGGGGTCGAGCCGACGCGCAGCACCGCCGAGGCCGCCCGTGCCAAAGGTCTGGAGATCCGCGAGTTGTTCTTTGGTCGCGAAACGGCCGCGCAGCTGGAGGGCGAAGGCTGGGCAGCGGATTTGATGGCGGCCAACAACGTATTGGCCCACGTGCCGGACATCAATGATTTCCTCGCCGGGTTTGCCACCCTGCTCAAGCCGACCGGTGTCGCCACGTTCGAGTTTCCGCAACTGCTCACATTAATGGCCGGGCAGCAGTTCGACACGCTCTATCACGAACATTTTTCTTACTTGTCGCTGACGTCCGTGCAAACCCTGTGCGAGCGCAATGGGCTTGAAGTCTTCGATGTCAGCCAGCTGTCGACCCATGGCGGTTCGTTGCGAGTCTTCGTCCAGCGTGTCGACGGCATTCGACGCCCGGTCCAGTCCTCGGTGCAACAACAGTTACAGGCCGAACTGGATGCCGGCGTGAAAACCGCCGCGTACTACGCCACCCTGGCGCCGGCTGCCGAAGCGATCAAGCATGGCCTGTTGCGCTTTTTGTTGCAGGCCAAGGCCGATGGTAAGCACGTGGTCGGTTACGGCGCGGCCGCCAAGGGCAACACCTTGCTCAACTACGCCGGGGTCAAGCCTGATCTGCTGGCGTGGGTGGCGGATGCCAATCCGCACAAGCAGGGTAAATATTTGCCGGGCAGTCGGATTCCTGTCGTGTCGCCTGAGCGTATCGCAATAGAGAAACCCGACTACGTTGTCGTCCTGCCCTGGAACTTGCTGAGCGAAGTCAGCCAGCAGCTGGTTGAGGTTCGTCAATGGGGCGGGCAATTCGTCATCGCGGTGCCTGAGCTGACGCTGCTATGAMNCRGCGTALALPLIDLGTSPPSNAYVRAEQLDQAEQWVPLKVAVCQQCWLVQTEDYTSADALFDAEYAYFSSFSSTWLAHAERYVAEMVERFDLSADSRVVEIAANDGYLLQFVAKRGIPCLGVEPTRSTAEAARAKGLEIRELFFGRETAAQLEGEGWAADLMAANNVLAHVPDINDFLAGFATLLKPTGVATFEFPQLLTLMAGQQFDTLYHEHFSYLSLTSVQTLCERNGLEVFDVSQLSTHGGSLRVFVQRVDGIRRPVQSSVQQQLQAELDAGVKTAAYYATLAPAAEAIKHGLLRFLLQAKADGKHVVGYGAAAKGNTLLNYAGVKPDLLAWVADANPHKQGKYLPGSRIPVVSPERIAIEKPDYVVVLPWNLLSEVSQQLVEVRQWGGQFVIAVPELTLLNANANANANA
D1-35_00537858tlldTDP-6-deoxy-L-talose 4-dehydrogenase (NAD(+))ATGAAGGTGTTAGTGACTGGCGCCACCGGGTTTGTCGGCCGTCATCTGGTCGCGGCCCTGCTCGCTCGCGGTTGTCAGGTCAGGGCCGTTGCGCGCCGGGAGGAGCCTGCCAAGGCATTGCCCTGGTTCGACCGGGTTGAATTCGTCGCGGCCGATGTCCATGCCGAAGAACTGGACGTTGCTGCATTGGTCGAGGATGTCGATGCCTTGGCGCATCTGGCGTGGCCGGGATTGCCGAATTACCAGGCACTGTTTCATTTCGAACATAACCTGATGGCCGATTATCAGTTCATCAAAAAGGCGGTCATGGCGGGAGTGGGCCAGGTGCTGGTCACGGGGACCTGTTTCGAATATGGCCTGCAGAGCGGACCGCTCGATGAGCAGACTGCGCCGCAACCGGCCAACCCTTACGGCTTGGCAAAAAACACCTTGCGCCTGTTCCTTGAACACCTGCAACGCGAGCACCCGTTCACCTTGCAGTGGGCACGTTTGTTCTATCTGCACGGCGCTGGTCAGAACCCCACCAGCCTGCTCGCGGCGCTGGACCGGGCCATTGATGCCCAGGCGCCGGTATTCGATATGTCGGGTGGCGAGCAGTTGCGCGATTACCTGGCAATCGAAACAGCGAGTGCTTATCTGGCGGGGCTGCTGTCGCGGCGCGAATTCAATGGTGTCGTCAATTGCTCAAGTGGCGAGCCGGTGTCGGTTCGTGCGCTGGTAGAAGCAAGGTTACGTGAGCGTGGCGCGGCCATTCGCCTGAACCTCGGTCATTATCCGTATCCGACTCACGAACCCATGGCGTTCTGGGGCGTGGCCGAACGTTTGCATACTTTGTTGGGAGCCGAACATGACGCGTGAMKVLVTGATGFVGRHLVAALLARGCQVRAVARREEPAKALPWFDRVEFVAADVHAEELDVAALVEDVDALAHLAWPGLPNYQALFHFEHNLMADYQFIKKAVMAGVGQVLVTGTCFEYGLQSGPLDEQTAPQPANPYGLAKNTLRLFLEHLQREHPFTLQWARLFYLHGAGQNPTSLLAALDRAIDAQAPVFDMSGGEQLRDYLAIETASAYLAGLLSRREFNGVVNCSSGEPVSVRALVEARLRERGAAIRLNLGHYPYPTHEPMAFWGVAERLHTLLGAEHDANANANANANA
D1-35_005381071hypothetical proteinATGACGCGTGAGCTATACCGGGCCACCGGCCTTCCGGTTCTGCAGAACCGTACCTTCGCCAACGAGCAGTCGGCCAGAGCCTCGGCGAGCGCCGACATGGTGTTGGTCCAGGACGACGTGAGCGGGTTGGTTTTCAATCAGGCGTTCGATGCTGACAAGCTCAGCTATGACAGCGATTACCAGAATGAACAGGCCTATTCCGGTCAGTTCCAGAAGCATCTTGCTGACGTGGAAGGCATCATCGCCCGGCATTTCAGCGGCCAGGAATTGATCGAGGTCGGTTGCGGCAAAGGCTATTTTCTGGAACTGCTCAAGGAGCGTGGCTACACGATCACGGGTATCGATCCCGCCTATGAGGGCGACAGCGCAGGCGTGATCAAGGCGCCGTTCACTCGCGAACTGGGCCTGTCCGCCGATGCGGTGGTGTTGCGTCATGTGCTGGAGCATATCCAGGACCCGGTGGCTTTTCTTGCTGAGATCGCGGCGGCCAACCAGGGCGGACAGATTTACATCGAGGTGCCGTGCCTGGACTGGATCCTCGAACATCGTGCCTGGTTCGACCTGTTCTACGAACATGTCAACTATTTCCGCCTCGCTGACCTGCACCGGATGTTTGGCACGGTACATGAGGCCGGGCACCTGTTCGGCGGTCAGTACCTGTATATCGTTGCTGATCTGGCCACGTTGCGCCTGAAGCCGGATCAGCCCGTTCCAGCCTTGCAATTGCCCAACGGATTCACCGCCAGTCTCGGTCACGCCGTGCAGATTGTTCAGGCTGCGCCGCGGCAAGGCTCGGCGATCTGGGGGGCGTCGTCCAAGGGCGTGATCTACTCGCTATTCCTGCAACGAGCCGGTGTTGCAGTGGACTGCGTGGTGGATATCAACCCGGCCAAGCAGGGGCGATACCTGCCGTTGAGTGGGGTGCGGGTTTCCTCCCCCGAGGAGGCGATGGCTGCTCTACCTGAAGGGGCGCATGTATTTGTCATGAATTCTAATTACCTCGAAGAGATCAAGCGGATGACCGGTGGGCGCTACGTCTACCACGCCGTTGACAGCGCTTCGTTTCAATAAMTRELYRATGLPVLQNRTFANEQSARASASADMVLVQDDVSGLVFNQAFDADKLSYDSDYQNEQAYSGQFQKHLADVEGIIARHFSGQELIEVGCGKGYFLELLKERGYTITGIDPAYEGDSAGVIKAPFTRELGLSADAVVLRHVLEHIQDPVAFLAEIAAANQGGQIYIEVPCLDWILEHRAWFDLFYEHVNYFRLADLHRMFGTVHEAGHLFGGQYLYIVADLATLRLKPDQPVPALQLPNGFTASLGHAVQIVQAAPRQGSAIWGASSKGVIYSLFLQRAGVAVDCVVDINPAKQGRYLPLSGVRVSSPEEAMAALPEGAHVFVMNSNYLEEIKRMTGGRYVYHAVDSASFQNANANANANA
D1-35_00539738COG3510Rhamnosyl O-methyltransferaseATGACCGACAACACTATCCATAAAGCATTCGAAGCCCAATGCCAGACCGAAATCGCCGGTCAAGGCCAAGATCAGAAACTCGTCGGCCTGGCCAAGGCGTTTTTCAACGAATCGGCCCGCCACAAGTACAGCTACCATTTTTCATGGATGGGGCGGCCGATCATCCAACTGCCACAGGACATGATGGCCATGCAGGAACTGATCTGGCAGATCAAGCCTGACCTGATCATTGAATGCGGTATCGCCCACGGCGGTTCGATCATCTATTACGCTTCGTTGCTGGAGTTGCAAGGCCACGGCGAAGTGCTGGGTATCGACCTGGATATTCGCCCGCACAATCGCGAAGCCATCGAGAGCCATCCGATGAGCAAACGCATCTCGATGATCGAAGGTTCGAGTATCGATCCGGCCATCGCCGAGCAGGTGCGTGCAGCGGCCAAAGGCAAGAAAGTCATTCTGGTACTCGATTCCAACCACACCCATGACCATGTACTTGAAGAGCTGCGTCTGTATGCGCCGTTGGTTTCGGTGGGCAGCTACTGCGTGGTGATGGACACGGTGGTGGAAGACATGCCGGCGGACTTCTTCCCGGATCGCCCATGGGGGCCGGGCGACAACCCTAAAACCGCGGTGTGGAAATACCTCGAAGAAAACGACAGCTTCGAAATCGACCAGCAACTGCAGAACAAACTCCTGATCACCGTTGCCCCGGATGGTTATCTGCGTCGGGTTCGTTAAMTDNTIHKAFEAQCQTEIAGQGQDQKLVGLAKAFFNESARHKYSYHFSWMGRPIIQLPQDMMAMQELIWQIKPDLIIECGIAHGGSIIYYASLLELQGHGEVLGIDLDIRPHNREAIESHPMSKRISMIEGSSIDPAIAEQVRAAAKGKKVILVLDSNHTHDHVLEELRLYAPLVSVGSYCVVMDTVVEDMPADFFPDRPWGPGDNPKTAVWKYLEENDSFEIDQQLQNKLLITVAPDGYLRRVRNANANANANA
D1-35_005402919hypothetical proteinATGCTTCAAAACAACGTGGCACCGCTGAACGAGCGGTTCACCGTGGTGGTCATTTCCCACAACCGCAGCGCATTCCTGCGCCGCACATTGCATTACTACAGCAGCTATCCGTGCTCGGTGCTGGTGCTGGATTCCTCGGTGGAGCGGGATGATCAGATCGCCCGGGATTTTCCATCGGTCGATTACCGCCACTTGCCTCAATTCACCTACAAAGGGCTTCAGGAAAAATTGACCTATGGTGTCAACCAGGTCAAAACGCCTTATATGGTGTTCGCCGCCGATGACGATTTCCTGCTGCATGATGCCTTGACCGAGTCGGTGGAGTTTCTCGAAGCCAACCCCGACTACGGCCTTTGCCACGGCTACGGCATCATGTATTTGTCCTGCGCGACAGAAGTCTGCTACTTCCGCCGAGACCGCAAGGTGCACGAGGACTACGACAGCGAACTGGCCGAGGACCGGGTGATCCGCTTCATGGATCAGTTCCTGCCGCCGTTCTACGCCGTTACCCGCACTGACCTGCTGCAACAGTGGTACGGCATGCTGCCGCCAGGCACCAGTTTCGAGTGGCAGGAAATCGGCCATAGCTTTTACCTATTGGCTTGTGCCAAGGCACGGATCCTGCCGATTCCGTTCGCCGTGCGCGAACTCAACTACGGCGGCTCCGAACACAACACCAACGTGCTGACGGTGCTGAGTTACAAAGACGCCAAAAGCGTCGCCGAGCGTGAGCAGTTCGCCGAGTTCCTGGCGTCTCTCCCTACGCCTCTGCGCGAGCAGGCGCCGGGGCGCGTCAAGCAGATTGCCCTGGACAGCTTCGCGGCCATGGCTGACTGCCTGCTGCAGGGGCGCTCACTCAAAGGCACGCAGATCATCCGCTCGACATGGCTGGAGGCGGGGGGCGAGCCGGTCCGTTCGTTTGGCCCACAGCAATTTGTCGAAATGCCGTTCTACAATCAGCGGGTCTTCGACCTGCTCACTCAATTTGAGTTCCTGCTGCATGCAATGCCGGCCGGTCGCCTTCAGCTTCAGCAGTTGGAAGGCATCCTGCTGCGTCAGCATGAACTGATGCGGCTGCAACCTAACGACAACGAGCGCACGATACGCAGCCGGTTATGGGAGGCCCAGAGCCTTTACGCATTCAACCGCACAGTGGTCAAGCGCCTGGCCGAGTCGTTGAAAAACAGCGACGAACCAGACGAAGCGGTGAAATTGCAGGCCTGGGCCGAGCGGCTGGATTCGGTGCCGGGCCAGCAGGATCGCCGGTTGCTGGATAACATGCACTCCGGCCGTCTGTTGAGCTGGCTTGAAGCACGCAGCCCCAACGCCCAACAGCTCACATCCATTGCAGCCCATCTGGTCGAGCATCAGGGCGGACCGCGCTTTGGCATTCTGCTGCTGGACCTGGACGCTGACATGTTCAAGCTACAGGCCACCTTCGACAGTCTGGTCAATGGCCACTGCAAGGCGTTCAACGTGGTGGTCTTCACCACCGGCGACCTGCCGGCGACCACCACCGTGCGCGACACCGTGCACTTCGTCAAAGTCAGCACCTCCAATTATGTTGAGCGCGTCAATCAGATCATCGGGCAATCGACTGCTGACTGGATGGTGCTTGCCGAGACCGGTGACCAGTTCACCCCGAGTGGCCTGTTGCGCGCGAGCCTCGAGCTGATCGATGCCGACGGCGTTCGCGCGGTGGCCATGGATGAAATCCAGCGTAAGGCTGATGGCAGCCTCATCGATGTGTTCCGCCCTGGCGTCAATCTCGATTTCCTGCAATCGGTGCCTTCGCTGATGGCGCGGCATTGGCTGATTAATCGCCAAGTGCTGGCCCAGGCCCGAGGATTCACGCCCGAATACACCCAGGCCCTGGAGCAGGATCTGCTGTTGCGCCTGATTGAAGACGCAGGGCTGGCCGGCCTGGCGCACCTGGCCGAGCCGTTGCTGATCTGCGACGCCCCGCCGGAAGAGGAAAAGCCCCAGGAGCGTCAGGTACTGACGCGCCACCTGGCCGCCCGCGGCTATCGCGCCCAGGTCATCTCGGCGCTACCGCTGACATACCAGATCGATTACCAGCATGCCGAGCGGCCACTGGTGTCGATCATTCTCGAAAGTCGAGACAATTTCGAGCAGGTACAGCAGGCGCTGGTCAGCGTGCTGCAACGCACCCGCTACCATCGGCACGAAATATTGGTTGCCGATAACCACAGCCGATCCGAGGAACTGGCTCAGTGGCTCGATAGCCTGGAAGGCAAGGGCGAGCGGATCCGCGTTCTGCGCAGCGACAGTCGCCTCAGTGCGTCGGCTCTGTACAACTGGGCGAGCTCGCAAGCCAAGGGCGAGTATCTGGTGCTATTGTCGGCCGAAGTGCAGGTGATCAATGCCAACTGGCTCGACAGCCTGCTCAATCAGGCCCAGCGGCCCGAGGTGGGGATTGTCGGCAGTAAGCAAATGGATAACCGTGGTATCACTACCCAGGCAGGGCTGGTACTGAAGCCCGATGGGAGGGTGGCCTCGGTGTTCGTTGGCGAACGCAAGGACGCCAAGGGCTATCTTAACGGCCATCAGGCGGAACAGAACTACTCGGCGGTGTCCGGCGCGTGCCTGATGATCCGCAAAGACTTGTTCGAAGCCGTTGGCGGCCTGGACGAGGAACATTTCGGTGAAGCGTTTGCCGACGTCGACCTGTGCCTGAAAGCGGCGGATGCGGGTTATCTCACCGTCTGGACTCCCCAGGCCCAAATGCTGCACTCCGGTACGTTCCCTGATGCACCGGAGGCGACCAAGGTCTTGCGCAACAAGTGGGAGGCGCGCTTCAGCCATGACGCGGTGCGTAACCCAAACCTGGCCTTGACCGGAACCGGCTTTGCGCTGGGCACCGCTGCGGCAGTGGATTGGGCAAGGTTGCTCGCATAGMLQNNVAPLNERFTVVVISHNRSAFLRRTLHYYSSYPCSVLVLDSSVERDDQIARDFPSVDYRHLPQFTYKGLQEKLTYGVNQVKTPYMVFAADDDFLLHDALTESVEFLEANPDYGLCHGYGIMYLSCATEVCYFRRDRKVHEDYDSELAEDRVIRFMDQFLPPFYAVTRTDLLQQWYGMLPPGTSFEWQEIGHSFYLLACAKARILPIPFAVRELNYGGSEHNTNVLTVLSYKDAKSVAEREQFAEFLASLPTPLREQAPGRVKQIALDSFAAMADCLLQGRSLKGTQIIRSTWLEAGGEPVRSFGPQQFVEMPFYNQRVFDLLTQFEFLLHAMPAGRLQLQQLEGILLRQHELMRLQPNDNERTIRSRLWEAQSLYAFNRTVVKRLAESLKNSDEPDEAVKLQAWAERLDSVPGQQDRRLLDNMHSGRLLSWLEARSPNAQQLTSIAAHLVEHQGGPRFGILLLDLDADMFKLQATFDSLVNGHCKAFNVVVFTTGDLPATTTVRDTVHFVKVSTSNYVERVNQIIGQSTADWMVLAETGDQFTPSGLLRASLELIDADGVRAVAMDEIQRKADGSLIDVFRPGVNLDFLQSVPSLMARHWLINRQVLAQARGFTPEYTQALEQDLLLRLIEDAGLAGLAHLAEPLLICDAPPEEEKPQERQVLTRHLAARGYRAQVISALPLTYQIDYQHAERPLVSIILESRDNFEQVQQALVSVLQRTRYHRHEILVADNHSRSEELAQWLDSLEGKGERIRVLRSDSRLSASALYNWASSQAKGEYLVLLSAEVQVINANWLDSLLNQAQRPEVGIVGSKQMDNRGITTQAGLVLKPDGRVASVFVGERKDAKGYLNGHQAEQNYSAVSGACLMIRKDLFEAVGGLDEEHFGEAFADVDLCLKAADAGYLTVWTPQAQMLHSGTFPDAPEATKVLRNKWEARFSHDAVRNPNLALTGTGFALGTAAAVDWARLLANANANANANA
D1-35_005411002pseBCOG1086UDP-N-acetylglucosamine 4,6-dehydratase (inverting)ATGTTCAACGGTAAATCGATCTTCATCTCAGGCGGCACCGGCTCGTTCGGGCGTAATTTCATCCGCCGGTTGCTGGAGCAGTACCAGCCCAAGCGCGTGGTGGTGTTTTCCCGCGATGAGCTCAAGCAGTACGAGATGCAACAAACCTTCAATGCTCCCTGCATGCGTTATTTCCTGGGAGACGTGCGTGACGCCGATCGTCTGCGCCAGGCCATGCGCGGGATTGATTATGTGGTGCATGCAGCAGCGCTCAAACAAGTGCCCGCGGCTGAATACAATCCCACCGAATGCATTCGCACCAACGTCAATGGCGCAGAAAATATCATCGCAGCGGCGATCGAGAACGGTGTGAAAAAAGTCGTTGCACTGTCCACTGACAAAGCGGCCAGCCCAATCAACCTGTATGGCGCGACCAAGTTGCTGTCGGACAAATTGTTCGTGGCGGCCAACAATATCGCGGGTGAACAGCAGACCCGGTTCGCCGTCGTGCGCTATGGCAATGTTGCCGGCTCCCGGGGTTCGGTGGTGCCGTTCTTCAGCAAGCTCATCGCCGAGGGCGCGACGGAGCTGCCAATTACCGATGAACGTATGACTCGCTTCTGGATCACCCTCGATCACGGTGTGCAATTCGTGCTGGACAGCTTCGCCCGCATGCACGGCGGCGAAGTGTTCGTGCCGAAGATTCCATCGATTCGCATCATCGATTTGGCGTCGGGCATGGCTGGACATTTGCCGCGCAAGAACGTGGGCATACGCCCCGGTGAAAAACTACATGAGTTGATGGTGCCGCTGGATGATGCACGCATGACGATCGAGTTCACAGACCATTACACAATCCAGCCGTCGATTCGCTTCACCAACGTGGATGTGGATTTCGCTATGGACAACCTGGGCGAACGAGGCACTCCCGTCGCGGAGGACTTCGAGTATCGTTCTGACACCAATCCTCACTTTTTATCGGTGGAACAGATCGCCGATCTGCACGCCCGGCTATCGGTATGAMFNGKSIFISGGTGSFGRNFIRRLLEQYQPKRVVVFSRDELKQYEMQQTFNAPCMRYFLGDVRDADRLRQAMRGIDYVVHAAALKQVPAAEYNPTECIRTNVNGAENIIAAAIENGVKKVVALSTDKAASPINLYGATKLLSDKLFVAANNIAGEQQTRFAVVRYGNVAGSRGSVVPFFSKLIAEGATELPITDERMTRFWITLDHGVQFVLDSFARMHGGEVFVPKIPSIRIIDLASGMAGHLPRKNVGIRPGEKLHELMVPLDDARMTIEFTDHYTIQPSIRFTNVDVDFAMDNLGERGTPVAEDFEYRSDTNPHFLSVEQIADLHARLSVPGPT0018935_803DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PSEUDAMINIC_ACID_MODIFICATION,PGPT0018935-pseB|wbjB-K15894NANA
D1-35_005421161arnB_1UDP-4-amino-4-deoxy-L-arabinose--oxoglutarate aminotransferaseATGATTCCCTACGGTCGGCAAAGCCTCGATCAGGCTGACATCGATGCCGTCGTCGCCGTGTTGCAGTCCGATTGGCTGACGCAAGGGCCGGCGATTGAATGTTTTGAACAGGCCATGGCCCGTCGCTGCCGGGCCGGTTATGCCGTGGCGGTGTGCAACGCGACCGCCGCGCTGCACATCGCTTGCCTGGCTGCGGGGCTTGGGCCTGGGGATCGCTTGTGGACCACGCCAAACACTTTTCTGGCCTCAGCCAATTGCGGCCGTTATTGCGGCGCGCAGGTGGATTTCGTCGATATCGATCCGCTGACCTGGAATCTCGATGCCGTTGCCTTGGCCATAAAACTCGACAGGGCCGAGTGTGACGGGACCCTGCCAAAGGTCTTGGTGGCGGTAGCCTTCTCCGGGCAAAGCTGTGACATGCGTGAGATCTCTCGCCTGTCCGAGCGATACGGCTTCACGGTCATTGAGGACGCCTCTCATGCCGTGGGCGCGTCTTATGCCGACAGGCCAGTGGGGTGTGGCGAATTCGCGGACATGACGGTGTTCAGTTTCCATCCGGTGAAAATCATTACCAGCGCTGAAGGCGGGATGGTCCTGACCAATCGCCCGGAGCTGGCGCAGCGCCTGCAACGTCTGCGCAGCCATGGGATGACCCGTGACGCCGCGCAGATGAGCGAGCCCAGCCATGGGCCCTGGTACTATCAGCAGGTGGAGCTGGGTTTCAATTACCGTATCACGGATCTTCAAGCTGCCCTGGGGCTTTCCCAGTTGGACAAGCTCGATGGGTTTGTCGCCCGGCGTCGTGGTTTGGCGGCGCGCTATAATCAGTTGCTGGGTGGTTCGCCGCTGACCTTGCCCGGCGTGCAAGCCGACGCCGAATCGGCCTGGCATTTGTATGTGGTGCGCTTGCGACTTGATGAGATTTCCCTCAGTCATCGTCAGGTTTTCGAAGGCTTGCGCGCGGCCAAGATCGGCGTGAACCTGCATTACATACCGGTCCATTTGCAACCGTATTACCGCGATCTGGGATTTGCCCAAGGTGATTATCCACAGGCTGAACGTTATTACGCCGAGGCCATCAGCCTACCGATGTTTCCTTCCCTCAGCGACGAACAGCAGGACTATGTGGTTGGGCAACTGAAACGATTGCTTGAGGAGTAAMIPYGRQSLDQADIDAVVAVLQSDWLTQGPAIECFEQAMARRCRAGYAVAVCNATAALHIACLAAGLGPGDRLWTTPNTFLASANCGRYCGAQVDFVDIDPLTWNLDAVALAIKLDRAECDGTLPKVLVAVAFSGQSCDMREISRLSERYGFTVIEDASHAVGASYADRPVGCGEFADMTVFSFHPVKIITSAEGGMVLTNRPELAQRLQRLRSHGMTRDAAQMSEPSHGPWYYQQVELGFNYRITDLQAALGLSQLDKLDGFVARRRGLAARYNQLLGGSPLTLPGVQADAESAWHLYVVRLRLDEISLSHRQVFEGLRAAKIGVNLHYIPVHLQPYYRDLGFAQGDYPQAERYYAEAISLPMFPSLSDEQQDYVVGQLKRLLEEPGPT0022785_638DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PEROSAMINE_MODIFICATION,PGPT0022785-per|rfbE-K13010NANA
D1-35_00543702neuACOG1083N-acylneuraminate cytidylyltransferaseGTGAGCGCAATCGCGATCATTCCTGCCCGTGGCGGCAGCAAGCGCATTCCCCGCAAGAACCTCAAGCCATTCGATGGCGTGCCGATGGTTGTCCGCTCGATTCGCACGGCGCTGGAGTCGACGTTGTTCGACGCGGTGTTCATCAGCACCGATGACGAAGAAATCGCCGAAGTGGCGAAGGCTCACGGTGCGCAGGTGCCATTCCTGCGACCGGCAGCGTTAGCGGATGATTTCACCGGAACGGCGACGGTGATTGTCCATGCCCTGAATGAATTGCGTGCGCGTTCGTTCGACTTTGTCTGTTGCATTTATGCCACCGCCCCCTTGTTGCAACCGCGGTTTCTACGTGAAGGTTTTGACTTACTGCGCGAGCATCCCGAGAAGTCGTTCGCGTTTTCCGTGACCGGTTTTGGCTTTCCGGTGCAACGTGCATTGACACTGGACGAACAGGGCGCGTTGACGCCTCTGTACCCGCAATTTCGCGACACCCGCTCCCAGGACCTGGCCGAAGCTTTTCAGGATGCTGGCCAATTCTATTGGGGGCGCCGGGACGCCTGGTTGCGTGGCGATGCATTGTTTTCGCCGAAAAGCCTGCCGGTAGTGCTGCCTCGTCATCTGGTGCAAGACATCGATACAGCCGAAGACTGGAAGCGCGCCGAGTATCTCTACGCCGCTTTGAAAGCAGGCGGTGAATTGCAATGAMSAIAIIPARGGSKRIPRKNLKPFDGVPMVVRSIRTALESTLFDAVFISTDDEEIAEVAKAHGAQVPFLRPAALADDFTGTATVIVHALNELRARSFDFVCCIYATAPLLQPRFLREGFDLLREHPEKSFAFSVTGFGFPVQRALTLDEQGALTPLYPQFRDTRSQDLAEAFQDAGQFYWGRRDAWLRGDALFSPKSLPVVLPRHLVQDIDTAEDWKRAEYLYAALKAGGELQPGPT0022745_140DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PSEUDAMINIC_ACID_MODIFICATION,PGPT0022745-pseF-K15899NANA
D1-35_005441506hypothetical proteinATGAGAGTGCTGATCCGCGCCGACGCTTCACCCAGCATCGGCAGCGGGCACATCGCCCGTTGCCTGACCTTGGCGCGAGTCCTGCGCGGGCAGGGCGCGCACGTCGCGTTCGCCTGTCGGTTGCTCATCGGGCATCGTCTGCACGCCTTGGAGGCCGAGGGCTTCGAGACGTTCTCCCTGCCGGACTTTTATCCCGGAGAAGATCCGCAACAGTCCATCGAGTCATTGTTGCCCTGGCAAGCGGATATCGAGGCGTTGGAGCAGGCGCTGGCCGATAGGCCCGGTTTCGACTGGATCATCGTTGACCACTATGGTCTGGATCATAATTGGCAGACCGCTGCCCGGCGCCTTGCGCCAAGGATCATGGCGGTGGATGACCTGGCGACCCGGACTTATAGCGTCGACCTCCTGCTTAATCAGAATCTGTCCGGTACCCAAGCTGCGTATGAAGGGTTGCTGCCCGAGCATTGCCGTACGCTGCTGGGACCGCGTTACGCGTTGTTGCGCGATGAGTTTCGTTGCGGGGCGATCGAGATAAAACCGAAGGTCAGGCGCGTGCTTGTCAATTTCGGCGGTTTTGATGCGGCGATGCAGACTCATCACGCAATGCTGGCGCTGGCGGATTACCCTGAGCTGGAAGTGGATTTTGTTGCCGGTGCGGATAACCCGGCGTGGGCTCGCATGCAACGGATGGCGGCAAGTCGTCCCCATTGGCGATTGCACAGTTTCGTCAGTCATTTTCATCGGCTCATGCTGGAGGCCGACCTGTTCATTGGTGCCGGTGGTGGAACCAGTTGGGAGCGGGCCGCCATGGGGTTGCCCACGATTTGTATCGCGGTATCGAACAATCAGCAGGCCAACAGCGAGATGATGGCGACATTCGGGGCTCATGTTTATCTGGGACCCAAAGAGGACGTTACGATGGAGCAGTTGCGCCAAGCCATCGGATTCCTCGTCGGCAACCAAGGGTTGCGCCAAAGTTTGGCCCAGCGTTCCCTGCAGTTGGTCGATGGCTTGGGCGCATCCAGGGTCGCTGTAGCCATGGCCGGCGCGTTGCTGCAGGTTCGACCGGCCACGCAAGCTGACACCCATCTGCTTTTCGAGGGGCGTAATGCCGACGCCGTGCGCCGTGTATCGCTGGATCGTTCACCCGTCGACTGGGATCGCCATTGCCAATGGCTGCAAGGCAGCCTGGTCAATCCACAGCGTTTATTGCTGGTTGGCGATGCGTCCGACGGACCTGTCGGCGTATTGCGTTATGACCTGCAAGGCAGCGAAGCGCTGGTATCGATCTATTTATTCGAGAACCGCCTGGGGCTGGGGTGGGGCAGGGCATTGCTGGCCCATGGTGAGGCGTTTGCTACCGTCCACTGGCCGCAATTGAGCCGCTTTACCGCTCAGGTTCTGCCCGCTAACCAAGCGTCTCTGGACCTGTTCCGCCAAGCCGGTTTCAGTCAAGGCACATGCGTGTTCACGCGCGTATTGAAGGATCATCCTCATGAGTAGMRVLIRADASPSIGSGHIARCLTLARVLRGQGAHVAFACRLLIGHRLHALEAEGFETFSLPDFYPGEDPQQSIESLLPWQADIEALEQALADRPGFDWIIVDHYGLDHNWQTAARRLAPRIMAVDDLATRTYSVDLLLNQNLSGTQAAYEGLLPEHCRTLLGPRYALLRDEFRCGAIEIKPKVRRVLVNFGGFDAAMQTHHAMLALADYPELEVDFVAGADNPAWARMQRMAASRPHWRLHSFVSHFHRLMLEADLFIGAGGGTSWERAAMGLPTICIAVSNNQQANSEMMATFGAHVYLGPKEDVTMEQLRQAIGFLVGNQGLRQSLAQRSLQLVDGLGASRVAVAMAGALLQVRPATQADTHLLFEGRNADAVRRVSLDRSPVDWDRHCQWLQGSLVNPQRLLLVGDASDGPVGVLRYDLQGSEALVSIYLFENRLGLGWGRALLAHGEAFATVHWPQLSRFTAQVLPANQASLDLFRQAGFSQGTCVFTRVLKDHPHEPGPT0022735_33DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PSEUDAMINIC_ACID_MODIFICATION,PGPT0022735-pseG-K15897NANA
D1-35_005451053pseICOG2089Pseudaminic acid synthaseATGAGTAGTTTCAAGATCGGTCAGCGCAGTATCGGGGCTGACGCGCCGCCTTTCATCATTGCGGAGATGAGCGGCAACCATAACCAATCGCTGGAAGTGGCCTTGCAGATCGTCGAAGCCGCCGCCCATGCCGGCGCTCACGCTTTGAAGCTGCAGACCTACACTGCCGATACCATGACGCTGGATCTGAGCGAAGGGGAATTCTTCATCAAGGACCCCAGCAGCCTTTGGGCGGGTACATCGCTCTATGACTTGTACGAAAAGGCCCATACGCCCTGGGAATGGCACGCTCCGATTTTCGCCCGGGCCAAGGCGCTGGGCATGCTCGCGTTCTCGACGCCGTTCGACGAGACCGCTGTGGATTTCCTCGAAAGCCTGGACGTGCCCGCCTATAAGATCGCCAGTTTTGAAAACACGGACTTGCCGCTGATTCGTCGGGTCGCTGCGACGGGCAAACCGCTGATCATTTCCACCGGCATGGCGAGCATCGCTGAGCTCGATGAAACCGTGCGTGCCGCCCGCGAGGCCGGTTGCAAGGATCTGGTGTTGCTCAAATGCACCAGTACGTATCCCGCCACACCAGCCAACAGCAACGTGCGCACCATCCCCCATCTGCGGGAGTTGTTTGGTTGCGAGGTGGGCTTGTCGGATCACTCCATGGGAGTCGGCGTGTCCGTTGCTGCGGTGGCGATAGGGGCGACTGTCGTTGAAAAACATTTCACCCTTGATCGCGCCGCTGGCGGGGTGGATGCCGGTTTTTCCCTGGAACCTGCAGAATTGGCAGCGCTGGTGATCGAAACCGAGCGTGCCTGGCAGGCCATGGGGCAGGTGCTTTACGGCGTGACCGAGGCCGAGCGCAAATCTTTGGTCTACCGTCGTTCGTTGTACGTAACGCAAGACATGGCCCCCGGCGAAGCGTTTACGTCGCAGAACGTCCGTGCCATCCGCCCGGGCCTTGGACTCGCGCCCAAACACCAGGATTCATTGATGGGCCGTCGCGCTCGGCAGGCTATCAAGCGTGGCACTCCGCTGTCCTGGTTGTTGGTTGAATAGMSSFKIGQRSIGADAPPFIIAEMSGNHNQSLEVALQIVEAAAHAGAHALKLQTYTADTMTLDLSEGEFFIKDPSSLWAGTSLYDLYEKAHTPWEWHAPIFARAKALGMLAFSTPFDETAVDFLESLDVPAYKIASFENTDLPLIRRVAATGKPLIISTGMASIAELDETVRAAREAGCKDLVLLKCTSTYPATPANSNVRTIPHLRELFGCEVGLSDHSMGVGVSVAAVAIGATVVEKHFTLDRAAGGVDAGFSLEPAELAALVIETERAWQAMGQVLYGVTEAERKSLVYRRSLYVTQDMAPGEAFTSQNVRAIRPGLGLAPKHQDSLMGRRARQAIKRGTPLSWLLVEPGPT0022740_88DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PSEUDAMINIC_ACID_MODIFICATION,PGPT0022740-pseI|neuB3-K15898NANA
D1-35_00546927fabH3-oxoacyl-[acyl-carrier-protein] synthase 3ATGATTGGCATAAAGAGCATTGCGAGCTACGTTCCTGTAGCCGGCGTGGACAATTACGCACAAGGTGCAAAATTTGAAAAGGATGAAGAATTCATCCTTGGCAAGATTGGTTCCGCCTTCTTGCCACGCAAGGATGACGGGCAGGAAACCTCCGATCTGTGCGTCGAAGCAGCTAATGCGCTGTTTGCCAATAATCCCGATCTGAAGCGCGAATCCATTGACGTGCTGATTGTCGTCACCCAGAACGGTGACGAAGAAGGCTTGCCCCACACTGCGGCAATCGTCCAGGACAAACTCGGCCTGCCCACCAGTGTGGCAGCGTTCGACATCTCCCTGGGTTGCTCGGGTTATGTCTACGGTATCTACGCCATCAAGGGTTTCATGGAAGCCGCCGGCCTGAAGAACGGCCTGCTGGTGACTGCCGACCCTTACTCGAAGATTGTCGATCCGGAAGACCGCAACACTACGATGCTGTTCGGCGACGCCGCCACCGTTACATGGATGGGCGAAGATGCGCCGTGGCAATTGGGCAAGGCCAAGTTCGGCACCGACGGTTCCGGTGCGCCGCACCTGAAGGTCAGTGATGGCGTATTCTTCATGAACGGTCGCCAGGTATTCAACTTCGCCTTGCTCAAGGTGCCGGCACATCTGCACGAGTTGCTTGCCGATTCCGACCTGCAACCCAGTGACATCGATGCGTTCTGCATCCATCAGGGCAGTGCCGCGATTGTCGACGCTGTGGCGCGTCGTTTCGAAGGCGAGCCGGAAAAGTTCATCAAGGATATGGTCGAGACCGGCAACACCGTGTCGTCGAGCATTCCACTGCTGCTGGAGAGACACGTGCTCAACTCCGAATGGAAGCGTGTGGCGTTGAGTGGCTTCGGCGTAGGTCTGTCATGGGGTTCGGCGATCATCTATCGCCCCTAAMIGIKSIASYVPVAGVDNYAQGAKFEKDEEFILGKIGSAFLPRKDDGQETSDLCVEAANALFANNPDLKRESIDVLIVVTQNGDEEGLPHTAAIVQDKLGLPTSVAAFDISLGCSGYVYGIYAIKGFMEAAGLKNGLLVTADPYSKIVDPEDRNTTMLFGDAATVTWMGEDAPWQLGKAKFGTDGSGAPHLKVSDGVFFMNGRQVFNFALLKVPAHLHELLADSDLQPSDIDAFCIHQGSAAIVDAVARRFEGEPEKFIKDMVETGNTVSSSIPLLLERHVLNSEWKRVALSGFGVGLSWGSAIIYRPPGPT0008355_7517DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008355-fabH-K00648NANA
D1-35_005471293hypothetical proteinATGAGCGAGTACTTTGAACGCAACCTCCAGGTGATCCAGCATCGTTGGCCGGCCTTGGCCGAGCGTCTGTTGCTTGAGGATGTCAGTGAATTGCAGGCTGATCTTGTAGAGGGTCTTGGGTCGACACTGAGTGTCAATGGCATTCAACTGACCAGTCGACACGACCGTCTTGCCGAGGCCGGCCTGCAAGCCGCCACGCTTCCGCTGGACGCTCCCGTGGTGCATGTATACGGCACCGGGCTGGGCGATCTGCAGAACCGCTTGCTGGAGCGAGCAGGGCTCGAAAGGTTGTGCGTGCATATTCTCAACGGTTCGGTGTTTGCCCTGGTGTTGCAGGTGCTGGATCAATCACAGTGGCTGTGCGACCCGAGAGTGGTATTGCTTCATGCCGGTGATCTGGCGGAGATCCAGTTGCCATTTTTTGCATTGCCCGCCGAGCTGGTGTTGGCCGACGATTACAATGCCAAGATTCGTGATCGATTGATCAGTGAAATCCATCTGGCTTTCACTAATCGTGAGTTCGATCCGCAGTCCCCTGAGATTGTTGAACGCCTGCAATCTACCTTCAGCCTCGCGAGCGAAGATCGGGATGTCGCCGAGCTGTTCGGCGCCTTCACGGGCCGTAAGGCGTTCGTCTTGGCCACCGGCCCCAGCCTTGAGCGACATTTCGAAAGACTGCGCCACCTTAGCGAGCAAGCCGAGCGACCATTGTTGATTTGTGTCGATACGGCATACCGGCCGTTGATCAATCACGGCATTCGTCCCGACATCGTGGTCAGCATCGACCAGCGTATCTCGGCGCGTCATCTTCCCTCTGAAAACACCGACGGCATCGCGCTGGTTTATCTGCCGATGGCCGACCCCTTGGTGATTGAGGCGTGGCAAGGGCCTCGCTACGTCGCTTACTCCTCCAGCCCGGTCTATCGCCAGATGCGTGAGCAACTGCACCGGGCCGAACTCCATGTAGGCGGAAGCGTGATTCATCCGGCGGTCGACCTGGCGGTGCAAATGGGCGCTGCGCACATCACGCTTTTTGGTGCTGATTTTGCCTTTCCCAATGACAAGACCCATGCAGGATGGGGCGATGGCGACTTGGGACCGCAGTTAGGGGCGTCCAGGCATTGGGTGCTTGATGGGCACGGCCGGCGAGTCAAGACCCAGCTCAACTTCCGCAGCTACCTCTGTGAGCTGGAGCGTTTTATCGCCAGGCATCCCCAGGTGCGGTTCTATAACAGCAGTCGAGACGGAGCGTTGATTGTGGGCACCGATTTTGATCCGGAATATGTGCAATGAMSEYFERNLQVIQHRWPALAERLLLEDVSELQADLVEGLGSTLSVNGIQLTSRHDRLAEAGLQAATLPLDAPVVHVYGTGLGDLQNRLLERAGLERLCVHILNGSVFALVLQVLDQSQWLCDPRVVLLHAGDLAEIQLPFFALPAELVLADDYNAKIRDRLISEIHLAFTNREFDPQSPEIVERLQSTFSLASEDRDVAELFGAFTGRKAFVLATGPSLERHFERLRHLSEQAERPLLICVDTAYRPLINHGIRPDIVVSIDQRISARHLPSENTDGIALVYLPMADPLVIEAWQGPRYVAYSSSPVYRQMREQLHRAELHVGGSVIHPAVDLAVQMGAAHITLFGADFAFPNDKTHAGWGDGDLGPQLGASRHWVLDGHGRRVKTQLNFRSYLCELERFIARHPQVRFYNSSRDGALIVGTDFDPEYVQNANANANANA
D1-35_00548270hypothetical proteinATGACCGAGCTACAGGTAGTGATCGATGATGCCCGTGAGTGCGCGCGTCTGTTTCGCCTTGGACGAGATGTCGAGGCGGGGCTGGCGATGGTCGCGCTGATCGAATCGGTGCAGCCTTTAGTCGAATTGATGCCAGGCGACGTCCCTGCGTCGTGGAACAGGCTGCTTGCCTTGATGCTGGTTGATCAGCAGGCGCAGAACTGGATTTCGTTGGCCGATTATCTTGAGTATGAATGGGCTCAATTGTTGACTGCCGGTCGGCCGAAATAAMTELQVVIDDARECARLFRLGRDVEAGLAMVALIESVQPLVELMPGDVPASWNRLLALMLVDQQAQNWISLADYLEYEWAQLLTAGRPKNANANANANA
D1-35_00549852hagCOG1344FlagellinATGGCTTTAACAGTAAACACTAACGTCACATCGTTGAACGTTCAGAAGAACCTGAACAAGGCTTCCGATGCTCTGTCCACTTCGATGACCCGTCTGTCGTCCGGCCTGAAAATCAACAGCGCCAAAGACGACGCCGCCGGCCTGCAAATCTCCACTCGTATGACTTCGCAAATCCGCGGTCAGACTGTTGCGATCAAGAACGCCAACGATGGTATCTCCATCGCTCAGACCGCTGAAGGCGCTCTGCAGGAATCCACCAACATTCTGCAGCGTATGCGTGAACTGGCCGTACAGGCACGAAACGACAACAACGGTACAGCTGACCGTGATGCTCTGAACAAAGAATTTGCTCAGATGTCCGACGAGCTGACTCGTATCGCTGATTCGACCAACCTCAACGGCAAGAACCTGATCGACGGTTCCGCTGGCACCATGACCTTCCAGGTCGGTTCCAACACCGGTGCTACCAACCAGATCACTCTGACCCTGAGCGACAGCTTCGACGCTGCTACCCTGAGCGTTGACTCTGGTGCCATCGCGATCAGTGCTGCCGACAGCGCCGAAGCTGAAACCAACACCTCTGCTGCAATCGACGCGATCGACGCTGCTTTGGCGACCATCAACGCCAGTCGTGCGGACCTCGGTGCTGCCCAGAACCGTCTGACCAGCACTATCTCCAACCTGCAGAACATCAACGAAAACGCTGCTGCTGCACTGGGTCGCGTACAAGACACCGACTTCGCTGCTGAAACTGCACAACTGACCAAGCAGCAGACTCTGCAACAGGCTTCCACTTCGGTTCTGGCCCAGGCCAACCAACTGCCGTCCGCTGTACTGAAGCTGCTTCAGTAAMALTVNTNVTSLNVQKNLNKASDALSTSMTRLSSGLKINSAKDDAAGLQISTRMTSQIRGQTVAIKNANDGISIAQTAEGALQESTNILQRMRELAVQARNDNNGTADRDALNKEFAQMSDELTRIADSTNLNGKNLIDGSAGTMTFQVGSNTGATNQITLTLSDSFDAATLSVDSGAIAISAADSAEAETNTSAAIDAIDAALATINASRADLGAAQNRLTSTISNLQNINENAAAALGRVQDTDFAAETAQLTKQQTLQQASTSVLAQANQLPSAVLKLLQPGPT0015190_3850DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015190-fliC|laf1|lafA|fla1|hag-K02406NANA
D1-35_00550366hypothetical proteinATGGATATGAGCGTGAAGCTGAACTTGTCTTATCCAGCGGCGAAGCCGGCGCCTACAGTGGTCGACAAGCCAGTGGAGAAGCCTCAGGCTGACGTGGCTATTTTGACACCGGTCAAGGAAACTCCGAAAGACGCTGCCGCCGAACAGGACAAACTGAAGAAAGCTGTCCAAGAAATCGAGAAGTTCGTCCAGTCGGTCAAGCGTAACCTGGAGTTCTCTATTGATGAGCCTTCTGGCAAAGTAATCGTCAAAGTGATTGCCAGTGGTTCCGGTGAAGTGATTCGTCAGATCCCGAACGAAGAAGTTCTGAAACTGGCCCACAGCTTAAATGATGCAAACAGCTTGTTGTTCAGCGCTGAAGCCTGAMDMSVKLNLSYPAAKPAPTVVDKPVEKPQADVAILTPVKETPKDAAAEQDKLKKAVQEIEKFVQSVKRNLEFSIDEPSGKVIVKVIASGSGEVIRQIPNEEVLKLAHSLNDANSLLFSAEAPGPT0015440_669DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015440-flaG-K06603NANA
D1-35_005511437fliDCOG1345B-type flagellar hook-associated protein 2ATGGCAAGTCCAATTCTTCCGGGTCTGGGTCTAGGCTCAGGCCTTGATACCGGTGCAATCGTCAAGGCGCTGGTGGATTCTGACAAAGCGGCCAAGCAAGGCCAGATTGACCGGGCAACCAAGACCAATGCCTCCAATATCTCCGGGATTGGCACCCTGAGATCCTTATTGGCTACCTTTCAGTCCACGCTGAAGGCCTTAGGCAGCACGACCACTCCCCAATTTACCGGCGTCGCCGCCACTTCCGCCAACACCAGTGCATTGACGGTGACGGCAGGCAACTCTGCAGTAGCTGGTATCTACACGGTAGACGTCACTCAACTGGCAACTTCTTCAAAAGTTGCGACGGCTGCTTTCGCCGGTGGAGCTTCCAGCGCTGTGGCGAGCGGTACGCTGACGATTAGTCAGGGTGGCACGGATTATGCCCTTGATATCCCGGCGGATTCGACGTTGCAGTCGGTGCGGGATGCCATTAACAGTAAGTACTCCTCCAGCGGACTCACCGCCAACATCGTGACCGACGGCTTCGGTTCACGCCTGGTGGTTGGCTCGACTAAAACCGGTGCGGGCAACGATATTTCCCTTAGTGGCATTGCCAGTCTTGCCGCTGATGGCTCCGTAGCGATGGCTTCGCCACCCACTGCGGCTTCTTCAGGTTCGCTGGGATTTGCCAAGGACGCCATTTTCAAAGTTGACGGCCTGGAAATGACCAGCGCAACCAATAAGCTGGACAACGTGGTCTCGGGCTTGAGCATGACGCTACTCGTTGCGGGCACAGGCCCGACAACCGTTACGGTCGCTACTAACACTGACGGTCTGAAGGCTTCGATCCAGAAGTTCGTCGATGCCTATAACGCCGTTGCGAAGGCTGTGACATCCCTGACCAAGCCATCGATAGACGCCGAGGGGAATTCGGTCCCTGCGGCATTGACGGGCGACTCGTTGCCTCGCTCGCTGTTGGCGGCCATTCGCACGCCTTTATCTGAGGCCGGTTCAGGCGACAAGCTGACCGTTCTTTCTCAGTTGGGGATCACCACCAACCAGACGACTGGCGCTCTGGATTTCGACAGTGGGAAATTTACTGCGGCACTCAATGACAAACAATTGGGTGGGGAAGTCCAGACGCTGTTCGCTGGTGAAAATGGCCTGCTTGAGCGCATGAATAATGCCATCAAGCCGTACACTGAAGGCAAGACTGGTGCGGGTGGTGTTGGAGGCTCAGAGGCCATCCTGACCACTCGCTCCAAGAACCTGGATCTTCTCAAGGCGAAACTGAGCGAAGAGCAGTTGGCCCTGGACCGTCGCATCGAAACCCTTACCGCGGTACTGACTAAAAAGTACAACGACATGGACACCCTGGTTGGCAAGTTGAAAGCCACCGCCAACAACATCACCTCCATGTTCGAAGCGATGACGGCACAGCAGAAAAACAGCTGAMASPILPGLGLGSGLDTGAIVKALVDSDKAAKQGQIDRATKTNASNISGIGTLRSLLATFQSTLKALGSTTTPQFTGVAATSANTSALTVTAGNSAVAGIYTVDVTQLATSSKVATAAFAGGASSAVASGTLTISQGGTDYALDIPADSTLQSVRDAINSKYSSSGLTANIVTDGFGSRLVVGSTKTGAGNDISLSGIASLAADGSVAMASPPTAASSGSLGFAKDAIFKVDGLEMTSATNKLDNVVSGLSMTLLVAGTGPTTVTVATNTDGLKASIQKFVDAYNAVAKAVTSLTKPSIDAEGNSVPAALTGDSLPRSLLAAIRTPLSEAGSGDKLTVLSQLGITTNQTTGALDFDSGKFTAALNDKQLGGEVQTLFAGENGLLERMNNAIKPYTEGKTGAGGVGGSEAILTTRSKNLDLLKAKLSEEQLALDRRIETLTAVLTKKYNDMDTLVGKLKATANNITSMFEAMTAQQKNSPGPT0015200_1368DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015200-fliD|flaB-K02407NANA
D1-35_00552396fliSCOG1516Flagellar secretion chaperone FliSATGAATCCGATGTTAGCCCTTCGCCAATACCAGAAGATTGGCGCCCAGGCGCAAACCTCCGAAGCAAGTCCCCATCGCCTTGTGCAAATGCTCATGGAAGGCGGGCTGGACCGTATCGCCCAAGCCAGAGGCGCGATGGAGCGCAAGGATATTCCAAACAAAGGCATTCTGATCGGCAAGGCCATCGGCATCGTCGGCGGTCTGCGTGAAGGCCTGGACCTGGAAAACCAGGCCGAGTCGGTCGCCGAGCTGGATGCGCTCTACACCTACATGATGAAACGCCTGGCCGAAGCCAACGCCAAGACCGATCCGAAGATCCTCGACGAAGTCGCCGATCTGCTTCGCACGGTCAAGGAAGGCTGGGATGCCATCGCCACGCCTGGTCCGCAATTCTAAMNPMLALRQYQKIGAQAQTSEASPHRLVQMLMEGGLDRIAQARGAMERKDIPNKGILIGKAIGIVGGLREGLDLENQAESVAELDALYTYMMKRLAEANAKTDPKILDEVADLLRTVKEGWDAIATPGPQFPGPT0015620_1549DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLUM_CONTROLMOTILITY-FLAGELLUM_CHAPERONES,PGPT0015620-fliS-K02422NANA
D1-35_00553297hypothetical proteinATGAGTCTTGTCCTGCAGCGAATCGAACAAACCCGTGATGCCCTGGTTGGCGCCTTGGCTGAGCGTAATTGGGAAGCCATTGGTCAACTGGACCTGGCGTGCCGTTCCTGCATGGAGGACGTCTTGAGCGAGTCCGAGGTGGACGAGGCGGCGTTGCGTAATAATCTGGAAGAGCTGCTGGGGGTCTATCGCCAGTTGCTGGAAGCGGCAACGGGCGAGCGTCAGGCAATCGTGAGCGAAATGTCGCAGATTCATCAGGCACAGAACGCGGCGAAGGTTTATCACTTGTTCGGCTGAMSLVLQRIEQTRDALVGALAERNWEAIGQLDLACRSCMEDVLSESEVDEAALRNNLEELLGVYRQLLEAATGERQAIVSEMSQIHQAQNAAKVYHLFGPGPT0015625_844DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLUM_CONTROLMOTILITY-FLAGELLUM_CHAPERONES,PGPT0015625-fliT-K02423NANA
D1-35_005541476norR_1Anaerobic nitric oxide reductase transcription regulator NorRATGTGGCGTGAAACCAAAATTCTCCTGATCGATGACGATAGCGTCCGCCGCCGCGACCTGGCGGTGATCCTGAATTTTCTTGGCGAAGAAAATTTGCCCTGCGGTAGCCATGATTGGCAGCAGGCTGTCGGCTCTCTGTCGTCCAGTCGGGAAGTCATTTGCGTCCTTATCGGGACGGTAAATGCTCCCGCTTCGCTTTTGGGCTTGCTAAAGACACTCTCGACCTGGGATGAGTTCCTTCCAGTTTTGCTGATGGGCGAAAATTCTTCCCTCGACCTGCCGGAAGACCAGCGCCGCCGGGTGCTTTCCACCCTGGAAATGCCGCCGAGCTACAGCAAACTGCTCGATTCGCTGCACCGCGCCCAGGTTTATCGCGAAATGTACGACCAGGCGCGTGAGCGCGGCCGGCATCGCGAACCCAACCTTTTCCGCAGCCTCGTCGGCACCAGCCGTGCCATCCAGCACGTGCGCCAGATGATGCAGCAGGTGGCCGACACCGACGCCAGCGTGCTGATTCTCGGCGAATCCGGTACCGGCAAGGAAGTGGTCGCGCGCAACCTGCATTACCATTCCAAGCGCCGCGAAGCGCCATTCGTGCCGGTCAACTGCGGGGCGATTCCCGCCGAGCTGCTCGAAAGCGAATTGTTCGGTCACGAGAAGGGCGCGTTCACCGGTGCAATCACCAGCCGCGCCGGACGTTTCGAGTTGGCCAATGGCGGCACGCTGTTCCTCGATGAAATCGGCGACATGCCGCTGCCGATGCAGGTCAAGCTGCTGCGCGTCTTGCAGGAGCGTACCTTCGAGCGCGTGGGCAGCAACAAGACCCAGAGCGTCGACGTACGGATCATCGCCGCGACCCACAAGAACCTCGAGACCATGATCGAGGTCGGCAGCTTCCGCGAAGACCTTTATTACCGTCTCAATGTTTTCCCGATCGAAATGGCGCCGTTGCGCGAGCGGGTCGAAGACATCCCGCTGTTGATGAACGAGCTGATCTCGCGCATGGAGCATGAGAAGCGTGGTTCGATCCGCTTCAACTCGGCGGCGATCATGTCCCTCTGCCGTCACGGTTGGCCGGGCAACGTCCGCGAGCTGGCCAACCTGGTGGAGCGCATGGCGATCATGCACCCCTACGGTGTGATCGGCGTGAATGAGCTGCCGAAGAAATTCCGCTACGTCGATGACGAAGACGAGCAAATGGTCGACAGCCTGCGCAGCGACCTGGAAGAGCGGGTGGCGATCAACGGCCATACGCCGGATTTCACCACCAATGCCTTGCTGCCGCCGGAAGGCCTGGACCTCAAGGATTACCTGGGCGGCCTGGAGCAAGGGCTTATCCAGCAGGCGCTGGACGACGCCAATGGCATCGTCGCCCGCGCGGCAGAGCGCTTGCGCATTCGTCGAACCACCCTGGTGGAAAAGATGCGCAAGTACGGCATGAGCCGCCGTGAAGGAGATGAACAGGCGGATGATTGAMWRETKILLIDDDSVRRRDLAVILNFLGEENLPCGSHDWQQAVGSLSSSREVICVLIGTVNAPASLLGLLKTLSTWDEFLPVLLMGENSSLDLPEDQRRRVLSTLEMPPSYSKLLDSLHRAQVYREMYDQARERGRHREPNLFRSLVGTSRAIQHVRQMMQQVADTDASVLILGESGTGKEVVARNLHYHSKRREAPFVPVNCGAIPAELLESELFGHEKGAFTGAITSRAGRFELANGGTLFLDEIGDMPLPMQVKLLRVLQERTFERVGSNKTQSVDVRIIAATHKNLETMIEVGSFREDLYYRLNVFPIEMAPLRERVEDIPLLMNELISRMEHEKRGSIRFNSAAIMSLCRHGWPGNVRELANLVERMAIMHPYGVIGVNELPKKFRYVDDEDEQMVDSLRSDLEERVAINGHTPDFTTNALLPPEGLDLKDYLGGLEQGLIQQALDDANGIVARAAERLRIRRTTLVEKMRKYGMSRREGDEQADDPGPT0015560_125DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-cAMP|VFR_SIGNALLING_PATHWAY,PGPT0015560-flrA|fleQ-K10941NANA
D1-35_005551209atoSCOG0642Signal transduction histidine-protein kinase AtoSATGACCCAAGCCGCCCTGATGTCTTCTGTCCCCGAGCCGGGACATATGCCGTCCGCCGAACAGGCTGGCCGGCTTGGACTTGAACAGGCGTTTTCGCTGTTCAGCCAGATGTCCAGCCAGTTGACCGACTCCTACAGCCTGCTTGAAGCGCGGGTTACCGAGCTCAAGGGTGAGCTGGCGGTGGTCAGTGCCCAACGCATGCAGGAGCTGGCGGAAAAAGAACGCCTGGCCAACCGGCTGCAGAACCTGCTCGACCTCCTGCCCGGCGGCGTCATTGTCATCGATGCCCACGGCTTTGTGCGCGAAGCCAACCCGGCGGCATGTGAGCTGCTTGGCCTGCCTCTGGAGGGCCAGCTCTGGCGGCACGTCATCGCTCGCTGCTTCGCGCCCCGCGAAGACGACGGCCACGAAGTTTCCCTGAAGGATGGTCGGCGGTTGTCCATTTCGACCCGTTCGCTGGATGCCGAGCCCGGACAGTTGGTGCTGCTCAACGACCTGACCGAAACCCGTCACTTGCAGGACCAGTTGGCCCGTCACGAGCGTCTGTCTTCCCTTGGGCGGATGGTCGCGTCGCTGGCCCATCAGATCCGTACGCCGCTGTCTGCCGCGTTGCTGTACGCCAGTCATCTGACCGAACAGCAACTGCCGATGGAGACCCAGCAGCGTTTTGCCGGCCGCTTGAAGGAGCGCTTGCATGAGCTGGAACACCAGGTGCGCGACATGCTGGTGTTCGCCCGTGGCGAGTTGCCGCTGACCGACCGCGTCGCGCCCAAGGTGCTGCTGCAGTCTTTGCAGGCTGCAGCACTGACCCATGTGCAGGGCGTGTCGATCCGCTGGCAGTGCGACAGCCATGCGGGCGAGGTGCTGTGCAACCGTGACACGCTGGTGGGCGCGGTATTAAATCTTATTGAAAACGCGATTCAGGCCAGTGACGTTGATGTCCGTCTGAAAGTGCACCTGTATACCCGCGACAACACCCTGCGCCTGTGTGTCAGCGACAGCGGCAGCGGTATCGAGCCGTCCGTGCTTGCACGTCTGGGCGAGCCATTTTTTACCACCAAGACCACTGGAACCGGCCTGGGCCTGACCGTGGTCAAGGCGGTGGCGCGTGCCCATCAGGGCGAATTGCGGCTGCGCTCGCGGCTGGGGCGCGGTACGTGCGCGACGGTGTGCTTGCCGCTGTTTTCCAGCGCGCCAGGGGTGGAGTGAMTQAALMSSVPEPGHMPSAEQAGRLGLEQAFSLFSQMSSQLTDSYSLLEARVTELKGELAVVSAQRMQELAEKERLANRLQNLLDLLPGGVIVIDAHGFVREANPAACELLGLPLEGQLWRHVIARCFAPREDDGHEVSLKDGRRLSISTRSLDAEPGQLVLLNDLTETRHLQDQLARHERLSSLGRMVASLAHQIRTPLSAALLYASHLTEQQLPMETQQRFAGRLKERLHELEHQVRDMLVFARGELPLTDRVAPKVLLQSLQAAALTHVQGVSIRWQCDSHAGEVLCNRDTLVGAVLNLIENAIQASDVDVRLKVHLYTRDNTLRLCVSDSGSGIEPSVLARLGEPFFTTKTTGTGLGLTVVKAVARAHQGELRLRSRLGRGTCATVCLPLFSSAPGVEPGPT0015565_134DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLUM_CONTROLMOTILITY-FLAGELLUM_REGULATION,PGPT0015565-flrB|fleS-K10942NANA
D1-35_005561389atoC_1COG2204Regulatory protein AtoCATGGCGACCAAGGTTCTACTGGTTGAAGATGATCGCGCGCTACGCGAAGCACTCGCCGATACGCTGCTGTTGGCCGGGCATGATTATGCCGCTGTCGGTTCGGCGGAAGAGGCATTGCTCGCAGTGGCCCGTGAGCCATTCAGCCTGGTGGTCAGTGACGTCAATATGCCGGGCATGGACGGCCATCAATTGCTCGGCCTGCTGCGCGCACGCCAGCCGCAACTGCCAGTCCTGTTGATGACCGCCCACGGCGCCGTCGAGCGGGCGGTGGATGCCATGCGCCAAGGGGCGGCGGATTATCTGGTCAAGCCGTTCGAGCCCAAGGCCCTGTTGGATCTGGTGGCTCGCCACGCCTTGGGCAGCCCCGCGGTCGAGGGCGAGGGACCGGTGGCCCTCGAGCCGGCCAGCGCGCAGTTGCTGGAATTGGCCGCGCGGGTGGCTCGCAGCGATTCAACCGTGTTGATTTCCGGTGAGTCCGGCACGGGCAAGGAAGTCCTGGCCCGCTATATTCATCAGCAATCCCGGCGCGCCAGCGAACCGTTCGTTGCCATCAACTGCGCGGCGATTCCCGACAACATGCTCGAGGCGACTCTGTTCGGCCACGAGAAAGGTTCGTTTACCGGCGCCATCGCGGCCCAGCCTGGCAAGTTCGAGCAGGCTGATGGCGGGACCATTCTGCTGGATGAAATTTCCGAGATGCCGTTGGGCCTGCAAGCCAAGCTGCTGCGCGTATTGCAGGAGCGGGAAGTGGAGCGGGTGGGGGCGCGCAAGCCCATCAGCCTGGACATTCGCGTGGTGGCGACGACCAACCGCGACCTGGCCGGAGAAGTGGCGGCGGGGCGCTTTCGTGAAGACCTTTATTACCGGCTGTCGGTTTTCCCGCTGGCCTGGCGTCCACTTCGTGAGCGCACCGCCGATATCCTGCCGCTGGCCGAGCGCCTGCTGGCCAAACACGTCAATAAAATGAAGCACGCGGCGGCGCGGTTGTCCGCCGAGGCGCAGGCCTGCCTGATTGCCTATCCCTGGCCGGGCAATGTCCGGGAACTGGACAACGCTATCCAGCGGGCGTTGATCCTGCAGCAGGGCGGCTTGATCCAGCCGGAAGATTTCTGCCTGGCCGGCCCGGTGGCCTGCGCGCCTTTGCCGGTGTTGCAGTCCGCCCCGGCGCAGATTCCTCCCGGGGAAATGATGGGGGAAACCGCCGGCGCCCTGGAAGATGACCTGCGCCGTCGCGAATTCCAGATGATCATCGACACCCTGCGCGCCGAACGCGGCCGACGCAAGGAGGCGGCTGAACGCCTCGGTATCAGCCCGCGGACCCTGCGCTACAAACTGGCGCAGATGCGTGATGCCGGGATGGATGTAGAGGCTTATCTCTTCGCCAGTTGAMATKVLLVEDDRALREALADTLLLAGHDYAAVGSAEEALLAVAREPFSLVVSDVNMPGMDGHQLLGLLRARQPQLPVLLMTAHGAVERAVDAMRQGAADYLVKPFEPKALLDLVARHALGSPAVEGEGPVALEPASAQLLELAARVARSDSTVLISGESGTGKEVLARYIHQQSRRASEPFVAINCAAIPDNMLEATLFGHEKGSFTGAIAAQPGKFEQADGGTILLDEISEMPLGLQAKLLRVLQEREVERVGARKPISLDIRVVATTNRDLAGEVAAGRFREDLYYRLSVFPLAWRPLRERTADILPLAERLLAKHVNKMKHAAARLSAEAQACLIAYPWPGNVRELDNAIQRALILQQGGLIQPEDFCLAGPVACAPLPVLQSAPAQIPPGEMMGETAGALEDDLRRREFQMIIDTLRAERGRRKEAAERLGISPRTLRYKLAQMRDAGMDVEAYLFASPGPT0015570_269DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLUM_CONTROLMOTILITY-FLAGELLUM_REGULATION,PGPT0015570-flrC|fleR-K10943NANA
D1-35_00557327fliEFlagellar hook-basal body complex protein FliEATGAGCCAAGGTATTGAATTTAATCGGTTGATGCTGGACATGCGCTCCATGCAGATGGACGCCATGGCCCAGCCTAAATCGGTCGCGGTGCCCCAAGTGGCCGGCAGCAGCTTTTCCGACATGCTCGGTCAGGCCGTCAATAAAGTGAACGATACCCAGCAGGCTTCGAACCAGTTGGCCAGTGCTTTCGAGATTGGCAAAAGTGGCGTCGACCTGACGGACGTAATGATCTCTTCGCAGAAAGCCAGTGTCTCGTTTCAGGCGTTGACCCAGGTACGCAACAAGCTGGTTCAAGCCTATCAAGACATCATGCAGATGCCGGTCTAAMSQGIEFNRLMLDMRSMQMDAMAQPKSVAVPQVAGSSFSDMLGQAVNKVNDTQQASNQLASAFEIGKSGVDLTDVMISSQKASVSFQALTQVRNKLVQAYQDIMQMPVPGPT0015515_1088DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015515-fliE|lfiE-K02408NANA
D1-35_005581785fliFCOG1766Flagellar M-ring proteinATGGCAGAAGCAGCCGTTGATAACGTTCCAGCCAAGGCAACTCCGGTAGACGGCAAACCGCCGTTGTTCGGCCTGTCTTTCCTGGAAAACCTCTCCGAGATGACCATGCTGCGTCAGGTTGGCCTGTTGGTCGGCCTGGCTGCCAGCGTGGCGATTGGTTTTGCCGTGGTCCTCTGGTCCCAGCAGCCGGACTACCGTCCGCTGTACGGCAGCCTGGAGGGCATGGATGCCAAACAAGTCATGGAAACACTGGCTTCCGCCGACATTCCTTATACCGTCGAACCCAATTCCGGCGCCTTGCTGGTCAAGGCGGACGACGTCGCTCGCGCGCGCCTCAAGCTCGCTGCCGCCGGCGTGACGCCGACCGATGGCAACATCGGATTCGAGATCCTCGACAAGGACCAGGGCCTGGGCACCAGCCAGTTCATGGAAGCGACTCGTTATCGTCGCGGCCTGGAAGGCGAATTGGCGCGGACCATTTCCAGCCTCAACAACGTCAAGGGTGCCCGCGTGCACCTGGCGATTCCGAAAAGCTCGGTATTTGTGCGCGATGAGCGCAAGCCGAGTGCCTCGGTACTGGTCGAACTGTATTCCGGCCGCTCGCTTGAGCCAGGCCAGGTCGTTGCCATTATCAACCTGGTGGCGACCAGCGTTCCCGAGTTGAGCAAGTCGCAGATCACCGTGGTCGACCAGAAGGGCAACCTGTTGTCCGACCAGGCGGAAAATTCCGAACTGACCATGGCCGGCAAGCAATACGATTACAGCCGCCGCATGGAAGGCATGTTTACCCAGCGGGTGCACAACATCCTGCAACCGATCCTCGGCAACGGCCGCTACAAGGCCGAAGTTTCGGCGGACGTGGACTTCAGCGCCGTCGAATCGACTTCCGAGCAGTTCAACCCGGATCAACCGGCGTTGCGCAGCGAGCAGTCGGTGAACGAACAACGTACCGCCAGCAATGGCCCGCAAGGTGTGCCGGGTGCCCTGAGCAACCAGCCACCAGCACCGGCCAGCGCGCCGCAAACCACCGGTGGCGCTACCGCCGCCGCAGGCATGGTGCAGCCAGGCCAGCCGCTGATCGACGCCAATGGCCAGCAGATCATGGATCCGGCCACCGGCCAACCGATGCTTGCACCGTACCCGGCCGACAAGCGTCAACAATCGACCAAGAATTTCGAGCTCGACCGTTCCATCAGCCACACCAAGCAGCAGCAGGGCCGTTTGAATCGCCTGTCGGTCGCGGTGGTGGTGGACGATCAGGTCAAGGTCAACCCGGCCAACGGCGAAACCAGCCGCGCGCCATGGACCGCCGACGAATTGGCGCGCTTCACTCGCCTGGTGCAGGACGCCGTCGGTTTCGACGCCAGCCGTGGCGACAGCGTCAGCGTGATCAACGTACCGTTCTCCCTGGAGCGCGGTGAAGAAATCGCCGATATCCCGTTTTATTCGCAACCCTGGTTCTGGGATGTGGTCAAGCAGGTATTGGGTGTGTTGTTCATCCTGATACTGGTATTTGGAGTGCTGCGTCCGGTGCTCAACAACATCACCGGTGGCGGCAAGAACAAGCAGCTGGCAGGCTTGGGCGATGTAGAGCTGGGAGGCATGGGCGGCCTGGATGGCGAATTGGCCAACGATCGCGTCAGCCTCGGCGGGCCGCAGAGCATCCTGCTGCCAAGCCCGAGCGAAGGCTATGACGCTCAGTTGAACGCCATCAAGAGTCTGGTGGCAGAGGATCCGGGTCGTGTGGCCCAGGTCGTGAAAGAGTGGATTAACGCAGATGAGTGAMAEAAVDNVPAKATPVDGKPPLFGLSFLENLSEMTMLRQVGLLVGLAASVAIGFAVVLWSQQPDYRPLYGSLEGMDAKQVMETLASADIPYTVEPNSGALLVKADDVARARLKLAAAGVTPTDGNIGFEILDKDQGLGTSQFMEATRYRRGLEGELARTISSLNNVKGARVHLAIPKSSVFVRDERKPSASVLVELYSGRSLEPGQVVAIINLVATSVPELSKSQITVVDQKGNLLSDQAENSELTMAGKQYDYSRRMEGMFTQRVHNILQPILGNGRYKAEVSADVDFSAVESTSEQFNPDQPALRSEQSVNEQRTASNGPQGVPGALSNQPPAPASAPQTTGGATAAAGMVQPGQPLIDANGQQIMDPATGQPMLAPYPADKRQQSTKNFELDRSISHTKQQQGRLNRLSVAVVVDDQVKVNPANGETSRAPWTADELARFTRLVQDAVGFDASRGDSVSVINVPFSLERGEEIADIPFYSQPWFWDVVKQVLGVLFILILVFGVLRPVLNNITGGGKNKQLAGLGDVELGGMGGLDGELANDRVSLGGPQSILLPSPSEGYDAQLNAIKSLVAEDPGRVAQVVKEWINADEPGPT0015430_126DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0015430-fliF-K02409NANA
D1-35_005591020fliGCOG1536Flagellar motor switch protein FliGATGAGTGATAATCGAGCCGCTGTTGCCAAATTGTCCCGGGTCGACAAAGCCGCGATCCTGCTGCTGTCCCTGGGTTCGACGGACGCCGCCCAGGTGCTGCGCCACATGGGACCCAAAGAGGTCCAGCGCGTCGGCGTGGCCATGGCGCAGATGGGCAATGTGCACCGCGAGCAGGTCGAGCAGGTGATGAGCGAGTTCGTCGACATCGTCGGCGATCAGACCAGCCTGGGCGTCGGTTCCGACGACTACGTGCGCAAGATGCTCACCCAGGCCCTGGGCGAGGACAAGGCCAACGGCCTGATCGACCGGATTCTGCTGGGTGGCAACACCAGCGGCCTGGACAGCCTGAAGTGGATGGAGCCGCGCGCGGTCGCCGACGTGATCCGTTACGAGCACCCGCAGATCCAGGCGATCGTCGTCGCGTACCTCGATCCGGACCAGGCCGGTGAGGTGCTCGGCAACTTCGACCATAAAGTGCGCCTCGACATCATCCTGCGGGTTTCGTCGTTGAATACCGTGCAGCCGGCGGCCCTGAAAGAATTGAACCAGATTCTCGAGAAGCAGTTCTCGGGCAACTCCAATGCTTCGCGCACCACCCTGGGCGGTATCAAGCGCGCGGCGGACATCATGAACTTCCTCGACAGTTCGATCGAAGGTCAACTGATGGACTCGATCCGCGAAGTCGACGAAGACCTGTCCGGTCAGATCGAAGACCTCATGTTCGTGTTCAACAACCTGGCCGATGTCGACGACCGCGGTATCCAGGCACTGTTGCGCGAAGTGTCCTCCGATGTGCTGGTGCTGGCCCTCAAGGGTTCGGACGAAGGCGTCAAGGAGAAGATCTTCAAGAACATGTCCAAACGGGCGGCCGAACTGTTGCGCGACGACCTCGAGGCCAAGGGCCCGGTGCGCGTCAGCGATGTGGAAACCGCACAGAAGGAAATCCTCACCATCGCCCGCCGTATGGCCGAAGCCGGAGAAATCGTGCTCGGTGGCAAGGGCGGCGAAGAGATGATCTAAMSDNRAAVAKLSRVDKAAILLLSLGSTDAAQVLRHMGPKEVQRVGVAMAQMGNVHREQVEQVMSEFVDIVGDQTSLGVGSDDYVRKMLTQALGEDKANGLIDRILLGGNTSGLDSLKWMEPRAVADVIRYEHPQIQAIVVAYLDPDQAGEVLGNFDHKVRLDIILRVSSLNTVQPAALKELNQILEKQFSGNSNASRTTLGGIKRAADIMNFLDSSIEGQLMDSIREVDEDLSGQIEDLMFVFNNLADVDDRGIQALLREVSSDVLVLALKGSDEGVKEKIFKNMSKRAAELLRDDLEAKGPVRVSDVETAQKEILTIARRMAEAGEIVLGGKGGEEMIPGPT0015400_1118DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_C-RING,PGPT0015400-fliG-K02410NANA
D1-35_00560831hypothetical proteinATGTCTGCCAAGAGCGATGATTCACCCAGCGACCTGATCCGCGCCCGCGACGTCGGTGGTTTCGACGTCTGGTCGCTGCCCAGCTTCGATCCCCACGTGCCCGAGCCTGAGCCAGAACCGGTGGAAGAGTTGCCGGAGATGGAAGAGGTGCCGCTGGAGGAAGTCCAGCCGCTGACCCTCGAAGAAGTCGAGAGCATTCGCCAGGAGGCCTACAACGAAGGCTTCGCCATCGGCGAAAAGGAAGGCTTCCACAGCACCACGATCAAGGTCCGCCGGGAAGCCGACGTGGCGCTGACGGCCAAGCTGCGGGCGCTGGAATCGCTGATGCTGAACCTGTTCGAACCCATCGCCGAGCAGGACACCCAGATCGAGAAATCCCTGGTCGGGCTGGTGCAGCACATCACCCGACAAGTGATCCAGCGCGAGCTGGCCATCGATTCGAGCCAGATCGAGCACGTCATGCGCGAGGCCCTCAAGCTGCTGCCCCTGGGCGTCGGCAATGTGCGGCTGTACATCAATCCGCAGGACTTCGAGCTGGTCAAGGCCTTGCGCGAGCGTCATGAGGAAAGCTGGCGCATCGTCGAGGATGAGACCTTGCTGCCGGGCGGTTGCCGGGTGGAAACCGAGCACAGCCGCATTGATGCGACAATCGAAACACGCATCAGCCAGGTCATGGCCAAGCTGTTCGACCAATTGCACGAGCAGGCCCTGCATCCGGCTCCGGCCGACCTCAGCCTTGAGTTGCCGGACGAACCGGAGGCCGCCGTTATCGCCGATCCGGACGCGGCCGAACTGATTGCTGCCGAAGTGGAAGGTCGCAATGCGCCTTGAMSAKSDDSPSDLIRARDVGGFDVWSLPSFDPHVPEPEPEPVEELPEMEEVPLEEVQPLTLEEVESIRQEAYNEGFAIGEKEGFHSTTIKVRREADVALTAKLRALESLMLNLFEPIAEQDTQIEKSLVGLVQHITRQVIQRELAIDSSQIEHVMREALKLLPLGVGNVRLYINPQDFELVKALRERHEESWRIVEDETLLPGGCRVETEHSRIDATIETRISQVMAKLFDQLHEQALHPAPADLSLELPDEPEAAVIADPDAAELIAAEVEGRNAPPGPT0015335_341DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0015335-fliH-K02411NANA
D1-35_005611359fliICOG1157Flagellum-specific ATP synthaseATGCGCCTTGACCGAACCAGCTTCGGCAAGCGCCTGGGCAGCTACGCCGAGGCCACTGAGCTGGCCGGCCAGCCGATCCTGGAAGGGCGCCTGTTGCGTATGGTTGGCCTGACCCTAGAAGCGGAAGGCCTGCGCGCCGCGATGGGCAGCCGGTGCCTGGTGATCAACGATGACAGTTATCACCCGGTGCAGGTCGAAGCCGAAGTGATGGGCTTCTCCGGCAGCAAAGTATTTCTGATGCCGGTGGGCAGTGTCGCCGGTATAGCCCCTGGTGCCCGCGTGGTTCCGCTGGCCGATACCGGTCGGCTGCCCATGGGCATGAGCATGCTCGGCCGTGTGCTGGACGGGGCCGGGCGGGCCTTGGACGGCAAGGGCGGAATGAAAGCTGAAGATTGGGTGCCGATGGACGGCCCGACAATCAACCCGCTCAAGCGCGACCCCATCAGCGTGCCGCTGGACGTCGGCATCCGTTGCATCAACGGGTTGTTGACGGTCGGTCGCGGTCAGCGCCTGGGCCTGTTCGCCGGTACCGGGGTGGGCAAGAGTGTGCTGCTGGGCATGATGACCCGCTTTACCGAAGCCGACATCATCGTGGTCGGGCTGATCGGCGAGCGGGGCCGCGAGGTGAAGGAATTCATCGAGCACATTCTCGGCGAAGAAGGGCTCAAGCGTTCCGTGGTGGTGGCTTCGCCCGCGGACGATGCGCCGTTGATGCGCCTGCGGGCCGCGATGTATTGCACGCGTATCGCCGAATATTTTCGCGACAAGGGCAAGAACGTCCTGTTGCTGATGGATTCGCTGACCCGTTTCGCCCAGGCCCAGCGGGAAATCGCCCTGGCCATCGGCGAGCCTCCGGCGACCAAGGGTTATCCGCCTTCGGTGTTTGCCAAGTTGCCGAAACTGGTGGAGCGGGCCGGTAACGCGGAGAAGGGTGGCGGTTCCATCACCGCTTTTTACACCGTGCTGTCCGAGGGTGACGATCAGCAAGACCCGATCGCCGACTCGGCCCGAGGCGTACTCGACGGTCACATCGTGCTGTCCCGGCGCCTGGCCGAAGAAGGGCATTATCCCGCCATTGATATCGAAGCGTCGATCAGCCGGGTCATGCCGTCGGTCATCAGCGCCGAGCACATGAAACGCGCCCAGCAATTCAAGCAATACTGGTCACGTTACCAGCAGAGTCGCGACCTGATCAGCGTGGGCGCCTACGTGCCCGGCGGTGATCGTGAGACCGACATGGCCATCAATCTTTATCCGGCCATGGCGGTCTACCTGCGCCAAGGCCTGAACGACAACATCGGCATGGGCGCGAGCGAAGCGCACCTGCAGACCATCTTCACCCCCGTCTCGGGCGGATAAMRLDRTSFGKRLGSYAEATELAGQPILEGRLLRMVGLTLEAEGLRAAMGSRCLVINDDSYHPVQVEAEVMGFSGSKVFLMPVGSVAGIAPGARVVPLADTGRLPMGMSMLGRVLDGAGRALDGKGGMKAEDWVPMDGPTINPLKRDPISVPLDVGIRCINGLLTVGRGQRLGLFAGTGVGKSVLLGMMTRFTEADIIVVGLIGERGREVKEFIEHILGEEGLKRSVVVASPADDAPLMRLRAAMYCTRIAEYFRDKGKNVLLLMDSLTRFAQAQREIALAIGEPPATKGYPPSVFAKLPKLVERAGNAEKGGGSITAFYTVLSEGDDQQDPIADSARGVLDGHIVLSRRLAEEGHYPAIDIEASISRVMPSVISAEHMKRAQQFKQYWSRYQQSRDLISVGAYVPGGDRETDMAINLYPAMAVYLRQGLNDNIGMGASEAHLQTIFTPVSGGPGPT0015340_1017DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0015340-fliI|lgiI-K02412NANA
D1-35_00562450fliJCOG2882Flagellar FliJ proteinATGGCCACGAGTCGTGCGGCGCGCCTGGCGCCGGTGGTGGACATGGCGGAAAAAGCCGAGAAGACCGCCGTTCAGCGGCTGGCTTATTTCCAGGGACAAGTGGTCGTGGCCGAGAGCAAGCTGGCCGACCTGGAGAATTTTCGTCTCGAATACCAGGAGCAGTGGATCGCCCGCGGCAGCCATGGCGTTTCCGGGCAATGGCTGTTGGGCTACCAGGGGTTCCTCGCACAACTGGGCACCGCGATCGATCAGCAGCGCCAAAGCCTCGTCTGGCACCAGAACAACCTGGAAAAGGCCCGCCAGAGCTGGCAGGAAGCCTTCGCCCGGGTCGAAGGGCTGCGCAAACTTGTACAGCGTTATATCGATGAAGCTCGGCAGCTGGAAGACAAGCGCGAGCAGAAGTTGCTTGATGAACTGTCTCAGCGTCTGCCGCGCCATGATCCGTATTGAMATSRAARLAPVVDMAEKAEKTAVQRLAYFQGQVVVAESKLADLENFRLEYQEQWIARGSHGVSGQWLLGYQGFLAQLGTAIDQQRQSLVWHQNNLEKARQSWQEAFARVEGLRKLVQRYIDEARQLEDKREQKLLDELSQRLPRHDPYPGPT0015615_548DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLUM_CONTROLMOTILITY-FLAGELLUM_CHAPERONES,PGPT0015615-fliJ-K02413NANA
D1-35_00563306STAS-domain containing proteinATGTCTGTCGTAACTGAAGTGTCCGAAGATGGGAAAAAATTGACGATTGCGATTGAAGGTCGCTTCGATTTCGGGCGGCATCAGGAGTTTCGTGAATCCTACGAGAGACTCGTTAGTAAGCCCGAGTCTATCGTGGTGGATTTGAAGAAGGCCACCTACCTCGACAGCTCTGCCTTGGGCATGCTCCTGCTGTTGCGCGATCATGCCGGTGGCGACGAGTCGGATATCCGTGTGGTCAACAGCAGCAGCGACGTCAAGAAAATCCTCGCGATTTCCAATTTCGACAAGTTGTTCGATATCAGTTGAMSVVTEVSEDGKKLTIAIEGRFDFGRHQEFRESYERLVSKPESIVVDLKKATYLDSSALGMLLLLRDHAGGDESDIRVVNSSSDVKKILAISNFDKLFDISPGPT0025860_87DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0025860-hsbA-K20978NANA
D1-35_005641707rcsC_3Sensor histidine kinase RcsCATGCAATCGTCGCCGGAGCCGCTGACGATCCTGATTGCCGAAGACAGCGCCGCCGACCGGCTGCTGTTGTCGACCATCGTCCGCCGTCAAGGCCATCAGGTGCTCACCGCAGCGGATGGCGCCGAGGCGGTCGAAGTCTACCGGGAGCAGCGTCCGCACCTGGTGCTGATGGACGCGATGATGCCGGTCATGGATGGCTTCGAAGCCGCGCAGCAGATCAAGCAACTGGCCGGGGACCAACTGGTTCCGATCATTTTCCTCACCTCGTTGACTGAAAGCGAAGGGCTGGCCCGTTGCCTGGAGGCTGGCGGTGACGATTTCCTCGCCAAGCCCTATAACCAAGTGATCCTGGCTGCCAAGATCAAGGCCATGGACCGCTTGCGTCGGTTGCAGGCCACGGTGGTCGAGCAACGTGACCAGATCGCCCGGCACCACGACTACCTGCTTAACGAGCAGCGGGTTGCCAAGGCGGTGTTCGACAAGATTGCCCACTCCGGTTGCCTGAGCGCGCCGAATATCCGTTACCTGCAATCGCCCTATGCCTTGTTCAATGGCGATCTGCTGCTGGCCGCCTTCAACCCGGCTGGTGACATGCACATCCTGCTTGGGGATTTTACCGGCCACGGCTTGCCGGCGGCTGTCGGGGCGATGCCACTGGCTGAAGTGTTCTACGGGATGACCGCGAAAGGCTACGGCCTGGCGCAGATCCTGCGAGAAATGAATGCCAAGCTCAAGCGCATCCTGCCAGTGGACATGTTCTGTTGCGCAACGCTGCTGTGCCTGAGCTTCCAGCGCTGCACTGTCGAAGTCTGGAACGGCGGCATGCCCGATGGTTACCTGCATGACAGCCTCAGCGGCGTGCGTACACCGTTGCCGGCGCGCCACTTGCCGTTGGGCGTGCTCACGCCGCAACTGTTTGATGATCGCACTGAGGTGCATCCGATGTCGGTGGGTGACCGGGTATTCCTGTTGTCTGACGGCGTCATCGAAGCCAGCGACCGCGATGATCAGCCGTTTGGCGTGGAAAGGTTGCAGCAGGTGTTTGCGGCCAACCGCGAGCCCGATCGACTGTTCGAAGATATCCAGCAGGCCCTCGGTGATTTTCGCGGCGAGGCCCGCGACGACTTCAGCATGGTCGAGGTGCGGCTGGTCGCGCCGACGCAACTCAGCCCGCCACCACCGGTCTATTCCGATAGCGGCCAGTCGAGCCCGCTGGATTGGTCGGTGAGCTTCGAGTTCCGTGGGCAGACGCTCAAGCGCTTCAACCCGATGCCTTACCTGTTGCAGTTATTGCTTGAGGTCCATGGGCTCAGGGGCCAGAGTGGCGCTTTGTACAGTGTCCTGACGGAGCTTTATTCCAACGCGCTGGAACACGGCGTACTGGGGCTCGATTCGAGTCTCAAGCGTGATGCGGCGGGGTTTGCCCGCTACTATACGGAGCGCGGCATCCGTCTGGATGAGCTGGACAGCGGCCATATCCGCGTGCATCTGCACGTGACTCCCCAAGGGGAGGGTGGGCGCCTGGTCATTGAGGTCGAGGACAGCGGCCAGGGGTTCGATGTCAGCCGGGTGCTGGCCCGGCCTGTGGATCGTGACCGGTTATCCGGGCGCGGTGTCAGCCTGGTGCGCCAGCTATGCCACGAGGCCAGTTGGTCCGACGATGGTCGTAGTGCGCGCGTGGAGTTTTTCTGGGAGGCTCTGGCATAAMQSSPEPLTILIAEDSAADRLLLSTIVRRQGHQVLTAADGAEAVEVYREQRPHLVLMDAMMPVMDGFEAAQQIKQLAGDQLVPIIFLTSLTESEGLARCLEAGGDDFLAKPYNQVILAAKIKAMDRLRRLQATVVEQRDQIARHHDYLLNEQRVAKAVFDKIAHSGCLSAPNIRYLQSPYALFNGDLLLAAFNPAGDMHILLGDFTGHGLPAAVGAMPLAEVFYGMTAKGYGLAQILREMNAKLKRILPVDMFCCATLLCLSFQRCTVEVWNGGMPDGYLHDSLSGVRTPLPARHLPLGVLTPQLFDDRTEVHPMSVGDRVFLLSDGVIEASDRDDQPFGVERLQQVFAANREPDRLFEDIQQALGDFRGEARDDFSMVEVRLVAPTQLSPPPPVYSDSGQSSPLDWSVSFEFRGQTLKRFNPMPYLLQLLLEVHGLRGQSGALYSVLTELYSNALEHGVLGLDSSLKRDAAGFARYYTERGIRLDELDSGHIRVHLHVTPQGEGGRLVIEVEDSGQGFDVSRVLARPVDRDRLSGRGVSLVRQLCHEASWSDDGRSARVEFFWEALAPGPT0025865_104DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0025865-hsbR-K20977NANA
D1-35_00565345hypothetical proteinGTGAGCGAGATTCATCTGGATCGGGACGTGCTCAGCACGTTGAAGGAAGTCATGGAGGAAGGGTATCCGGAATTGCTGGATACGTTCCTCAACGATTCCGAGGCACGCCTGCGTGTGTTGCTTGAGGCCAAGGACGCCGAGCAATTGAGCGCCACCGCCCACAGTTTCAAGGGCAGTAGCAGCAATATGGGCGCCATCCGCCTGGCTGAACTGTGCGGCGAGCTGGAACAACGCGCCAAGCAGCCCTCGCTGCGTGGAATCGAAAAATTGGTCAGCGAGATCAACAGCGAATTTACCTACGTTCGAAAGCTTTGCAAGGAAGAGCGCGAAGGCTTTCACTGTTAAMSEIHLDRDVLSTLKEVMEEGYPELLDTFLNDSEARLRVLLEAKDAEQLSATAHSFKGSSSNMGAIRLAELCGELEQRAKQPSLRGIEKLVSEINSEFTYVRKLCKEEREGFHCPGPT0025855_437DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QUORUM_SENSING_REGULATORSCE-QSR-QUORUM_SENSING_REGULATED_FLS,PGPT0025855-hptB-K20976NANA
D1-35_005661371hypothetical proteinATGCCCGTTACGCCTAATACACTCCTTCAGGCCGTTACCCAGTCCAAGCCGCAGGCCGCCGTCAATCCGTTGGCGGCTGGCCCGGACGCCGGGACTAAAGCCTCCAGTTTCGCCCAGGTCTTCGCCAAGCAGGCCCCCGTCAAACCCTCGACGGCCCTTGAGCCGGAGATTAAGCCTGTGCGCGACAAGGCTTCCGACAACACCGTCAAAAAGGATGCAGGCAGCGACACGGCTGCCGCTCCTGAGCCGGCGGTTGCCGATAGCGGCAAACCCTTGCCCGCCGACAAGCCGGCCACGGCCGACGACAAGCCCACGCAGGACGATAGCGATACGGCCGAGACGCCTGTAGCCGACGCCGCCCCAGTCGATCCGACACTCGACCCGGCTTTGCTGCCCGGGGTCATCGTGCCTGAAGTCATTGCCGAGGCGCTGCCCGCGCCTGTGGTGAGCCCGACCGAGGCGCCAGTCGTCGCGGCAGTCGCGGCGCCGGTGGTGGCCTCGGCCACGTCGGCTACGCCGACACCGGTGACCGATCCGGAATTCGACCCGCAGGCCGATCCGCTCGACGCCTTGCCGGCGTTGCGATTGGCGATGGAGCAGAGCGGCCATGTGTCCGCTTCCAGCCAGGCGCAGCCCAAGGCAACAGCGCCAGCGTCCGTCGATGGCGAGCCGACGTCGGCCCAGACGTTCGCGGCCGGCATGGCGAGCATGCTCAATGTACAAGCCGACCAGGACAGTACCAGTGCCGGCAGCCAGGGCGGTGAGAAGGCGTTCAGTGGCTTGCTCAACGAAGGCCTCAAGGATCTGACCGCCGCCTCCAGCGACACGCGGGTAGATGATTTCGCCAACCGCCTGGCGGCATTGACCCAGGCGGCTACGCCAAAAACCGCCAACGCGGTCCCGGTCAACCAGCCCATCGCCATGAACCAGAGCGGCTGGACCGAAGAAGTGGTCAACCGGGTGATGTACCTGTCGAGCGTCAATCTCAAGGCGGCTGATATCCAACTGCAGCCGGCCGAGCTGGGGCGCCTGGATATTCGCGTGAACATGGTCCCCGACCAGCAGACCCAGGTCACGTTCATGAGCGCCCATTCCGGCGTCCGTGAAGCCCTCGAAGGCCAGATGCATCGCCTGCGCGACAGCTTTGCCCAGCAGGGCATGGGCCAGGTCGACGTCAGCGTGTCGGATCAGTCGCGTGGCTCCCAGGGTCAGGAACAGCAAGCCCAGCAGCAGGCCCAGGCTGGTCGCACGAGCTCTTCCTCTGGCGGCCGAGTGGATTCGGTGGACGAAGAGTTGCCGGTCAGCGTTGCCGAAGTGGCGGCCAACACCACCAGCGTCATCGGCACCAGCGCGGTCGACTACTACGCCTGAMPVTPNTLLQAVTQSKPQAAVNPLAAGPDAGTKASSFAQVFAKQAPVKPSTALEPEIKPVRDKASDNTVKKDAGSDTAAAPEPAVADSGKPLPADKPATADDKPTQDDSDTAETPVADAAPVDPTLDPALLPGVIVPEVIAEALPAPVVSPTEAPVVAAVAAPVVASATSATPTPVTDPEFDPQADPLDALPALRLAMEQSGHVSASSQAQPKATAPASVDGEPTSAQTFAAGMASMLNVQADQDSTSAGSQGGEKAFSGLLNEGLKDLTAASSDTRVDDFANRLAALTQAATPKTANAVPVNQPIAMNQSGWTEEVVNRVMYLSSVNLKAADIQLQPAELGRLDIRVNMVPDQQTQVTFMSAHSGVREALEGQMHRLRDSFAQQGMGQVDVSVSDQSRGSQGQEQQAQQQAQAGRTSSSSGGRVDSVDEELPVSVAEVAANTTSVIGTSAVDYYAPGPT0015520_1158DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015520-fliK|motD-K02414NANA
D1-35_00567504hypothetical proteinATGGCGAAGAGTGAAGCAGCAGCTGTAAAAGACCCCGCAACCAAAGGCAAACTCAAGCTGATCATCATGATCGTGGTGGGTTTGCTCCTGGCGATGGGCGTTTCCGTGGGGGCGACCTGGTATTTCATGCACAGCGCTCAAAGCAAGCCGGCAGAAGTGGTGGAGACCGCGCCGGTGGGCAAGCAGCCGGCGATTTTCGAGCCGATGGCTCCCGCATTTGTGGCCAACTACACCCAGAACGGTCGCCAGCGCTACATGCAGGTGAGCATCACCCTGCTGGGCCGCAACCAGGCTGACCTGGAAGCGCTGCGGGTGCACATGCCGCTGATTCGCAATAACCTGGTGATGCTGTTCTCTGGACAGAGTTTCGACACCCTGGCCACTCCGGTCGGCCAGGAAATGCTGCGTCAGAAAGCCACGGCCAGCGTTCAGGAAGTGGCTCAGAAAGAGCTTGGCAAAGTGGTGATCGAACAGTTGCTCTTCACTAACTTCGTATTGCAGTAGMAKSEAAAVKDPATKGKLKLIIMIVVGLLLAMGVSVGATWYFMHSAQSKPAEVVETAPVGKQPAIFEPMAPAFVANYTQNGRQRYMQVSITLLGRNQADLEALRVHMPLIRNNLVMLFSGQSFDTLATPVGQEMLRQKATASVQEVAQKELGKVVIEQLLFTNFVLQPGPT0015525_1237DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015525-fliL-K02415NANA
D1-35_00568969fliMCOG1868Flagellar motor switch protein FliMATGGCCGTGCAGGACTTGTTGTCCCAGGACGAAATCGACGCGCTGTTGCATGGTGTCGACGACGGCCTGGTGCAGACCGAAAACGCTGCTGAACCGGGCAGCGTCAAAAGCTACGACCTGACCAGCCAGGATCGCATCGTTCGCGGACGCATGCCGACCCTGGAAATGATCAACGAGCGTTTTGCCCGTTACACCCGCATCAGCATGTTCAACATGCTGCGCCGTTCGGCCGACGTGGCCGTCGGTGGCGTGCAGGTGATGAAATTCGGCGAATATGTGCACTCGCTGTACGTGCCCACCAGTCTCAACCTGGTGAAGATCAAGCCGTTGCGCGGCACTGCACTGTTCATCCTTGACGCCAAGCTGGTGTTCAAGCTGGTGGATAACTTCTTCGGCGGTGACGGCCGTCACGCCAAGATCGAAGGCCGCGAATTCACGCCGACCGAGCTGCGCGTCGTGCGCATGGTGCTGGAGCAGGCTTTCATCGACTTGAAGGAAGCCTGGCAGGCGATCATGGAAGTCAACTTCGAGTACATCAACTCGGAAGTGAACCCGGCCATGGCCAACATCGTCGGTCCGAGCGAAGCCATTGTCGTGTCGACTTTCCACATCGAACTCGACGGTGGCGGCGGCGACCTGCACGTGACCATGCCGTACTCGATGATCGAGCCGGTGCGCGAAATGCTCGACGCCGGTTTCCAGTCGGACCTCGACGACCAGGACGAGCGCTGGATCAATGCGTTGCGCCAGGACGTGCTGGACGTCGACGTGCCGATCGGCGCGACGGTTGCCCGGCGCCAGCTGCGCCTGCGGGACATCCTGCATATGCAGCCGGGGGACATCATCCCCGTCGAGATGCCGGAAGACATGATCATGCGCGCCAATGGCGTGCCGGCCTTCAAGGTCAAGATGGGCTCTCACAAAGGCAACCTCGCGTTGCAAGTGATCGAGCCGATCGAACGCCGCTGAMAVQDLLSQDEIDALLHGVDDGLVQTENAAEPGSVKSYDLTSQDRIVRGRMPTLEMINERFARYTRISMFNMLRRSADVAVGGVQVMKFGEYVHSLYVPTSLNLVKIKPLRGTALFILDAKLVFKLVDNFFGGDGRHAKIEGREFTPTELRVVRMVLEQAFIDLKEAWQAIMEVNFEYINSEVNPAMANIVGPSEAIVVSTFHIELDGGGGDLHVTMPYSMIEPVREMLDAGFQSDLDDQDERWINALRQDVLDVDVPIGATVARRQLRLRDILHMQPGDIIPVEMPEDMIMRANGVPAFKVKMGSHKGNLALQVIEPIERRPGPT0015405_1974DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_C-RING,PGPT0015405-fliM-K02416NANA
D1-35_00569459fliNCOG1886Flagellar motor switch protein FliNATGGCTGACGATATGAATACCCAGGATGACCAGGCGCTGGCCGACGAATGGGCTGCGGCCCTGGAAGAAACCGGCGACGCCGGGCAGGCCGATATCGATGCGCTGCTGGCCGCCGATACCGGCAACCACGCTTCCAATCGCATGCAGATGGAAGAGTTTGGCAGCGTGCCGAAAAGCAATGAGCAAGTCACCCTCGACGGGCCGAACCTGGACGTGATTCTCGACATCCCGGTGTCGATTTCCATGGAAGTGGGCAGCACCGACATCAACATCCGCAACCTGTTGCAGCTCAACCAGGGCTCGGTGATCGAACTGGATCGCCTGGCCGGTGAACCGCTGGACGTACTGGTCAACGGTACCCTGATCGCCCATGGCGAAGTGGTGGTGGTCAACGAGAAGTTCGGCATTCGCCTGACGGACGTGATCAGCCCGAGCGAACGCATCAAGAAGCTGCGCTGAMADDMNTQDDQALADEWAAALEETGDAGQADIDALLAADTGNHASNRMQMEEFGSVPKSNEQVTLDGPNLDVILDIPVSISMEVGSTDINIRNLLQLNQGSVIELDRLAGEPLDVLVNGTLIAHGEVVVVNEKFGIRLTDVISPSERIKKLRPGPT0015410_1296DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0015410-fliN|lfiN|fliNY|cheC|cheD-K02417NANA
D1-35_00570438hypothetical proteinATGAAAGGCTTTCTCGCCGCAGCCTTGATGCTGCCGTTCAGCGTGCTGGCGGCCGAGCCCGCGGCCACGGCGGCGGTTGCGCCGGCAAGTGGCGGCAGCATGGCCGGGCAATTGGCGCAGTTGGTGCTGGGCCTGCTCGTGGTGCTCGGGTTGATTTTTTTCCTCGCGTGGATGCTGCGGCGGGTGCAACAGGCGGGGCCTGCCGGCAAAGGCCAGGTCATCGACATCATCAGTTCCCGCGCGCTCGGCCCGCGGGATCGGCTGGTGCTGGTGCAAGTTGGCAACGAGCAGATCCTGCTCGGCCTGAGCCCTGGCACGATCACCGCTTTGCACGTTCTCAAGGAGCCGGTGCAGGTGCCCGCCACCGAGCAGGCCGCCCCCGAATTTGCCCAGCGGCTCATGGAACTGCTGGGTAAAGATCAGAAGGATAAAAAGTAAMKGFLAAALMLPFSVLAAEPAATAAVAPASGGSMAGQLAQLVLGLLVVLGLIFFLAWMLRRVQQAGPAGKGQVIDIISSRALGPRDRLVLVQVGNEQILLGLSPGTITALHVLKEPVQVPATEQAAPEFAQRLMELLGKDQKDKKPGPT0015345_974DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0015345-fliOZ-K02418NANA
D1-35_00571750fliPCOG1338Flagellar biosynthetic protein FliPATGCCGTTGCGCATTCTGTTGGCGCTGGCCCTGTTGCTGGCTGCACCGTTGGCGTTTGCCGCCGACCCGTTGTCGATTCCGGCGATCACGTTGGGCACCAACGCCGAAGGGGCTCAGGAGTATTCGGTCAGCCTGCAGATTCTGCTGATCATGACCGCGCTGAGTTTCATCCCGGCGTTCGTCATGCTGATGACCAGTTTCACCCGGATCATCATTGTCTTTTCGATCCTGCGCCAGGCCCTGGGTTTGCAGCAGACGCCGTCGAACCAGATCCTCACGGGCATGGCGTTGTTCCTCACCATGTTCATCATGGCGCCAGTCTTCGACCGGGTGAACCGTGATGCGCTGCAACCCTACCTGGCCGAAACCCTCAGCGCCCAGGACGCGGTGGCCAGGGCCCAGGTGCCGATCAAGGATTTCATGCTCGCCCAGACTCGCAGCAGCGACTTGGAGTTGTTCATGCGCCTGTCCAAGCGCACCGACATCGCCAGCCCCGACCAGGCCCCATTGACCATCCTGGTGCCAGCGTTCGTGACGTCCGAGCTGAAAACGGCGTTCCAGATCGGTTTCATGATCTTCATCCCGTTCCTGATCATCGACCTGGTGGTCGCCAGTATCCTCATGGCGATGGGTATGATGATGCTGTCACCGCTGATCATTTCGCTGCCGTTCAAGATCATGCTGTTCGTGCTGGTGGATGGCTGGGCCTTGATCATCGGCACGCTGGCGGGCAGTTTCGGCGGTGTTTAGMPLRILLALALLLAAPLAFAADPLSIPAITLGTNAEGAQEYSVSLQILLIMTALSFIPAFVMLMTSFTRIIIVFSILRQALGLQQTPSNQILTGMALFLTMFIMAPVFDRVNRDALQPYLAETLSAQDAVARAQVPIKDFMLAQTRSSDLELFMRLSKRTDIASPDQAPLTILVPAFVTSELKTAFQIGFMIFIPFLIIDLVVASILMAMGMMMLSPLIISLPFKIMLFVLVDGWALIIGTLAGSFGGVPGPT0015350_1504DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0015350-fliP|rhcR-K02419NANA
D1-35_00572270fliQCOG1987Flagellar biosynthetic protein FliQATGACGCCTGAAGTAGCGGTAGACCTGTTCCGCGAAGCACTCTGGCTGACCACCGTGATGGTTGCCATCCTGGTGATTCCGAGCCTGCTGGTGGGCTTGCTGGTGGCGATGTTCCAGGCCGCCACGCAGATCAACGAACAGACCCTGAGCTTCCTGCCGCGCCTGCTGGTGATGCTGGTAACGCTGATCGTCGCCGGCCCGTGGCTGGTGCAAACCTTCATGGAATACATCCTGCAGCTGTACGGCAGTATTCCCCAGTTGATCGGCTGAMTPEVAVDLFREALWLTTVMVAILVIPSLLVGLLVAMFQAATQINEQTLSFLPRLLVMLVTLIVAGPWLVQTFMEYILQLYGSIPQLIGPGPT0015355_526DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0015355-fliQ|lfiQ-K02420NANA
D1-35_00573783fliRCOG1684Flagellar biosynthetic protein FliRATGTCGATGCTCGAACTGACGGACACCCAGATCAGCAGCTGGGTGGCGTCGTTTATCCTGCCGCTGTTTCGCGTCACCGCCGTTCTGATGAGCATGCCGGTCTTCGGCACGACCCTGGTGCCAGGCCGTGTGCGCCTGTACCTGGCTGTGGCAATCACCGTGGTCATCGCGCCCGGACTGCCGCCGATGCCGCCGGTCAATGCCCTTGACCTCAGTGCGCTGATGCTGGTGGCCGAGCAGATCCTCATTGGTGTCCTGCTGGGGTTTTCACTGCAGCTGTTCTTCCAGGCGTTCGTGGTGGCCGGGCAAATCATTTCGATCCAGATGGGCATGGCGTTCGCCTCCATGATCGACCCCACCAACGGCGTCAACACCGCGGTCATCGGGCAGTTCCTGACGATGCTGGTGACGTTGCTGTTCCTCGCCATGAACGGGCATCTGGTGGTGTTTGAAGTGCTCACCGAGAGCTTCACCACAATGCCGGTGGGCAGTGCGATGCTGGTCAATCATTTCTGGGACATCGCCGGCAAGCTCGGCTGGGTCCTGGGGGCGGCGATGCTGCTGGTATTGCCAGCCATCACCGCGCTGCTGGTGGTCAACATCGCTTTTGGCGTGATGACCCGCGCGGCGCCGCAGCTGAACATTTTTTCCATCGGCTTCCCCCTCACGCTGGTGCTGGGCATGGTGATCTTCTGGGTCAGCCTGGGGGATATTCTCAACCAGTATCAGCCGTTGGCGACTCAGGCCTTGCAGCTGCTACGCGACATGGCACAGGCGCGCTGAMSMLELTDTQISSWVASFILPLFRVTAVLMSMPVFGTTLVPGRVRLYLAVAITVVIAPGLPPMPPVNALDLSALMLVAEQILIGVLLGFSLQLFFQAFVVAGQIISIQMGMAFASMIDPTNGVNTAVIGQFLTMLVTLLFLAMNGHLVVFEVLTESFTTMPVGSAMLVNHFWDIAGKLGWVLGAAMLLVLPAITALLVVNIAFGVMTRAAPQLNIFSIGFPLTLVLGMVIFWVSLGDILNQYQPLATQALQLLRDMAQARPGPT0015360_886DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0015360-fliR|lfiR-K02421NANA
D1-35_005741137flhB_1COG1377Flagellar biosynthetic protein FlhBATGGCTGAGAGCGAAAGCGGTCAGGACAAGACAGAAGACCCCACGGAGAAACGCACCAGGGAGTCCCGCGAGAAGGGTGAGATCGCCCGTTCCAAGGAGCTCAACACCCTGGCGATCATGCTCGCCGGCGCTGGCGGCTTGCTGATCTATGGCGGCGGGCTGGCGCTGGAACTGCTGGAAATCATGCGCCTGAATTTTTCCTTGCCTCGGGAAGTATTGCTGACCCCTGGCGCCATGACGCAGTACCTGCTGCATTCGGGCAAGATCGCGCTTCTGGCGATGCAGCCCGTGCTGATTTTTTTATTGTTGGCGGCATTCATCGGCCCGATTTCCCTGGGCGGATGGCTCTTCGCCGCCGGCAGCCTGGCACCTAAGTTCAGCCGGATGAACCCGGCCGCCGGCATCAAGCGCATGTTTTCCACCACGGCGCTGGTGGAGCTGCTCAAGGCTTTCGGCAAGTTCCTGCTGGTCCTGTCCGTCGCGTTGGTGGTGCTGGAGGGCGACATCGACGATCTGCTGCGCATCGCCCATCAACCGCTGGAACAGGCCATCATTCATAGCGTGCAGCTGGTGGGATGGAGCACGTTGTGGATGTCTTGCGGCCTGATCCTGATCGCTGCCATCGATGTGCCGATCCAGCTCTATCAGAGCAAGCAGAAGCTGATGATGACCAAGCAGGAAGTGCGCGACGAGCACAAGGACGCGGAGGGCAAGCCGGAGGTCAAGCAGCGGATTCGCCAATTGCAGCGCGACGCCTCCCAGCGGCGCATGATGGCGGCGATTCCCGATGCCGACGTGGTCATCACCAACCCGACCCACTATGCGGTGGCGCTCAAATACGATCCTGAAAAAGGCAATGCGCCGGTGCTGCTGGCCAAGGGCAGTGATTTCCTGGCGTTGAAAATCCGCGAAATCGCCGTTGCCAACGAAGTGATGCTGCTCGAATCGCCGGCGCTGGCGCGCTCGATCTACTACTCCACCGAACTCGATCAGGAAATTCCCGGAGGTCTGTACCTGGCTGTGGCCCAGGTGCTGGCCTACGTCTACCAGATCCGCCAGCACCGCGCCGGCAAGGGCAAGCGTCCCGAACCGCTCAAGGACCTGCCGATCCCGCCGGATTTGCGGCGTGACTCCTGAMAESESGQDKTEDPTEKRTRESREKGEIARSKELNTLAIMLAGAGGLLIYGGGLALELLEIMRLNFSLPREVLLTPGAMTQYLLHSGKIALLAMQPVLIFLLLAAFIGPISLGGWLFAAGSLAPKFSRMNPAAGIKRMFSTTALVELLKAFGKFLLVLSVALVVLEGDIDDLLRIAHQPLEQAIIHSVQLVGWSTLWMSCGLILIAAIDVPIQLYQSKQKLMMTKQEVRDEHKDAEGKPEVKQRIRQLQRDASQRRMMAAIPDADVVITNPTHYAVALKYDPEKGNAPVLLAKGSDFLALKIREIAVANEVMLLESPALARSIYYSTELDQEIPGGLYLAVAQVLAYVYQIRQHRAGKGKRPEPLKDLPIPPDLRRDSPGPT0015325_1015DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0015325-flhB-K02401NANA
D1-35_005752133flhACOG1298Flagellar biosynthesis protein FlhATTGGTGGATCGCTCTCAGTTATTCAGCACCGCACGCAGCAACGTAGCCGACCTCAGCCGGGGGAATCTGGGTGTGCCGCTGTTGCTGCTGGTCATGCTCGCCATGATGATGCTGCCGATACCCCCGTTCCTGCTCGACGTGTTCTTCACGTTCAACATTGCGCTGTCCATCGTGGTACTGCTGGTCTGCGTATACGCCTTGCGGCCGCTGGATTTCGCGGTGTTCCCGACCATCCTGCTGGTGGCGACGCTGATGCGCCTGGCGCTGAACGTGGCGTCCACTCGCGTGGTCATGCTCCACGGCCAGGACGGCCACGCTGCCGCCGGTAAGGTGATCCAGGCCTTCGGTGAAGTGGTGATCGGCGGTAACTACGTGGTCGGTATCGTGGTTTTCGCCATCCTGATGATCATCAACTTCGTCGTGGTGACCAAGGGTGCCGGGCGGATTTCCGAGGTGAGCGCACGTTTCACCCTCGATGCGATGCCCGGCAAGCAGATGGCGATCGACGCTGACCTCAACGCCGGCCTGATCGATCAGAACCAGGCCAAGGCTCGTCGTCTTGACGTGGCTCAGGAGGCCGAGTTCTACGGTTCCATGGACGGTGCGAGCAAGTTCGTGCGTGGCGACGCCATCGCCGGCCTGCTGATCCTGTTCATCAACCTCATCGGCGGCATGGCCGTCGGTATCTTCCAGCACGGTATGACGTTCGGTGACGCTGGCAGGGTTTACGCCTTGCTGACCATCGGTGACGGTTTGGTGGCGCAATTGCCATCACTGTTGTTATCCACAGCTGCCGCGATCATGGTGACCCGTGCTTCGGGCTCCGAAGACATGGGCAAGCAAATCAATCGCCAGATGTTCGCTTCGCCCAAGGCCCTGGCCGTGGCGGCCGGCCTGATGGCGGTGATGGGTATCGTGCCGGGCATGCCCCACGTGTCGTTCCTGAGCATGGCTGCCCTGGCTGCTGGTGGCGCCTACCTGTTCTGGAAAAAGCAGAACGGGCAAAAGGTCCAGGCGCTGGAGGAGGTCAAGCGTCAGCAGGAACTGCTGCCATCGCCGGCGCGGGCCATGGAAACCAAGGAGTTGGGTTGGGACGATGTGACGCCGATCGACATGATCGGCCTGGAAGTCGGCTACCGCCTGATCCCGCTGGTCGACCGCAACCAGGGTGGTCAACTGCTGGCCCGGATCAAGGGCGTGCGCAAGAAGCTGTCCCAGGACCTGGGCTTCCTGATGCCCACCGTGCATATCCGCGACAACCTCGATCTGGCCCCGAGCGCCTATCGCCTGACGCTCATGGGCGTGATCCTGGCCGAAGCGGAGATCTATCCCGACCGCGAGCTGGCGATCAACCCAGGACAGGTCTACGGTTCGCTCAACGGTATTACCGCCAAGGATCCGGCTTTCGGCCTGGAAGCGGTGTGGATCGAAATCAGCCAGCGGGCCCAGGCGCAATCGCTCGGTTATACCGTGGTAGACGCCAGCACCGTGGTGGCGACCCACTTGAACCAGATTTTGTACAAGCACTCCAGCGAGCTGATCGGTCACGAGGAAGTCCAGCAATTGCTGCAAGTACTGGCCAAAGGCTCGCCAAAACTGGCCGAGGAGCTGGTGCCGGGCGTGGTGTCGCTGTCGCAGTTGCTCAAGGTGTTGCAGGCGCTGTTGGCCGAACAGGTCCCGGTGCGCGACATTCGCAGTATCGCCGAAGCCATCGCCAACAACGCTTCGAAGAGTCAAGATACCGCCGCGTTGGTCGCTGCGGTGCGGGTCGGCGTATCCCGCGCAATCGTCCAAAGCATTGTAGGCACTGAGTCTGAGCTGCCTGTGATCACTCTGGAGCCAAGGTTGGAACAGATATTGCTCAATAGTCTGCAGAAGGCAGGACAAGGCTCGGAAGAGGGTGTTCTGCTGGAGCCAAGCATGGCCGAGAAGCTGCAGCGTTCGTTGATCGACGCAGCCCAGCGGCAAGAGATGCAAGGCCAACCGGTGATCCTGCTGGTGGCCGGTCCGATTCGCGCGATGCTCTCGCGATTCGGTCGCCTCGCGGTCCCGGGGCTGCATGTGCTGGCGTACCAGGAAATACCGGACAACAAGCAAGTGACCATCGTTGCGACAGTAGGGCCCAACGGCTGAMVDRSQLFSTARSNVADLSRGNLGVPLLLLVMLAMMMLPIPPFLLDVFFTFNIALSIVVLLVCVYALRPLDFAVFPTILLVATLMRLALNVASTRVVMLHGQDGHAAAGKVIQAFGEVVIGGNYVVGIVVFAILMIINFVVVTKGAGRISEVSARFTLDAMPGKQMAIDADLNAGLIDQNQAKARRLDVAQEAEFYGSMDGASKFVRGDAIAGLLILFINLIGGMAVGIFQHGMTFGDAGRVYALLTIGDGLVAQLPSLLLSTAAAIMVTRASGSEDMGKQINRQMFASPKALAVAAGLMAVMGIVPGMPHVSFLSMAALAAGGAYLFWKKQNGQKVQALEEVKRQQELLPSPARAMETKELGWDDVTPIDMIGLEVGYRLIPLVDRNQGGQLLARIKGVRKKLSQDLGFLMPTVHIRDNLDLAPSAYRLTLMGVILAEAEIYPDRELAINPGQVYGSLNGITAKDPAFGLEAVWIEISQRAQAQSLGYTVVDASTVVATHLNQILYKHSSELIGHEEVQQLLQVLAKGSPKLAEELVPGVVSLSQLLKVLQALLAEQVPVRDIRSIAEAIANNASKSQDTAALVAAVRVGVSRAIVQSIVGTESELPVITLEPRLEQILLNSLQKAGQGSEEGVLLEPSMAEKLQRSLIDAAQRQEMQGQPVILLVAGPIRAMLSRFGRLAVPGLHVLAYQEIPDNKQVTIVATVGPNGPGPT0015320_313DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0015320-flhA|lfhA|fhiA|rhcV-K02400NANA
D1-35_005761350srp54Signal recognition particle 54 kDa proteinATGCAAGTGAAGCGTTTTTTTGCCGCCGATATGCGTCAGGCCATGAAGCTGGTACGTGACGAGCTGGGCGCTGAAGCAGCCATCATCGGTAATCGCCGGATCGCCGGCGGTGTCGAGCTGACGGCTGCCCTGGATTACAAATTGTCGGCGCTGGCCCCGCGGGTTCCGAACATGGAGCTTGAGGATGAGCTGCGCAAGACCCAGTCGCGCATCGCCAGCGCCCAGGCCGAACTGAGCCTGCGCAGCAGCGAAGGCGAAGGCAGCGCGGGGACCAATCGTCAATTGTTCGCCGGCCAGCCACTGACGGCCGGCCTGCCGCTGACCGCTGCCGAACCGCTGATCGAGCCAGCCCAGGCCGAGCCGCGTCGTCCGGCACCGGCGCCAGCCGCGCCAGCCGCGGGTGTCGACCCACGTGCCCTGGACTCGATGCGCTTTGAACTCAACAGCCTGCGTGAGCTGATGGAAGTCCAGCTTGGCTCGTTGGCCTGGAACCAGCTGCAAGGCAGCCGTCCGGCCCAGGCCAACCTGTGGCGTCGCCTGCAACGCATCGGCTTGTCCGGCCCGTTGTCCCGCGACCTGCTGGCACTGATCAACGATATCGAAGAGCCTCGCCAGGCCTGGCGCATGTTGTTGGCGCACCTGGCGCGGATGATCGCCACGCCGGAAGTCGAGCCGCTGGAAGAGGGCGGGGTAATTGCCATGGTCGGCCCGGCCGGCATGGGCAAGACCACCACCCTGGCCAAGCTCGCCGCCCGTTATGTACTCAAGTACGGCGCCCAGAGCATCGCCCTGGTGAGCATGGACAGTTTCCGCATCGGCGCCCAGGAGCAACTCAAGACCCTGGGCCGGATCCTCAATGTGTCGGTGACCCATGTGGATCCGGGCCAATCGCTGGCCCAGGCGCTGGAACCACTGCTGCGCAAGCGCGTCGTGCTGATCGACACCGCCGGCCTGCAAGCCAGCGATCCGGCCCTGCGCATGCAGCTGGAAAGCCTGGCCGGGCGTGGCATCAAGTCAAAAAATTATCTCGTGTTGGCAACCACCAGCCAGAAACAGGTTCTAACCGCCGCATACCACAGCTACAAACGCTGCGGGCTGGCCGGTTGCATCCTGACCAAGCTGGACGAAACGGCAAGCCTGGGCGAGGTGTTGAGCCTGGCGATCGGTCATGAACTACCGGTGGCCTACCTGACCGACGGGCCGCGGATCCCGGATGATTTGCATCTGCCGCGCCGTCATCAACTGGTCAGTCGTGCCGTGAGTGTGCAAATGCAGGAAGAACCCAGCGACGAAGCCATGGCTGACATGTTCGCTGACATCTACCACAGCCCGACCAAGCAGGTCGGCTGAMQVKRFFAADMRQAMKLVRDELGAEAAIIGNRRIAGGVELTAALDYKLSALAPRVPNMELEDELRKTQSRIASAQAELSLRSSEGEGSAGTNRQLFAGQPLTAGLPLTAAEPLIEPAQAEPRRPAPAPAAPAAGVDPRALDSMRFELNSLRELMEVQLGSLAWNQLQGSRPAQANLWRRLQRIGLSGPLSRDLLALINDIEEPRQAWRMLLAHLARMIATPEVEPLEEGGVIAMVGPAGMGKTTTLAKLAARYVLKYGAQSIALVSMDSFRIGAQEQLKTLGRILNVSVTHVDPGQSLAQALEPLLRKRVVLIDTAGLQASDPALRMQLESLAGRGIKSKNYLVLATTSQKQVLTAAYHSYKRCGLAGCILTKLDETASLGEVLSLAIGHELPVAYLTDGPRIPDDLHLPRRHQLVSRAVSVQMQEEPSDEAMADMFADIYHSPTKQVGPGPT0015550_774DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLUM_CONTROLMOTILITY-FLAGELLUM_REGULATION,PGPT0015550-flhF-K02404NANA
D1-35_00577831ylxHCOG0455Flagellum site-determining protein YlxHATGGGCAGCATGCATCCCGTACAGGTGATCGCGGTGACCGGCGGCAAAGGTGGCGTCGGGAAGACTAACGTGTCAGTGAACTTGTCCCTGGCTCTGGCAGAGCTTGGCCGACGGGTCATGCTGCTGGACGCCGACCTGGGCCTGGCGAACGTCGACGTGCTGCTGGGGCTCACTCCCAAGCGCACGCTGGCGGACGTGATCGAAGGCCGCTGCGAACTGCGCGACGTGCTCCTGCAGGGGCCTGGCGGGATTCGCATCGTGCCGGCCGCCTCCGGTACCCAAAGCATGGTTCACCTGACGCCGGCGCAGCACGCCGGCCTGATCCAGGCTTTCAGCGACATCGGCGACAACCTCGATGTGCTGGTGATCGACACGGCCGCCGGTATCGGTGACTCGGTGGTCAGTTTTGTCCGCGCCGCCCAGGAAGTCCTGCTGGTGGTCTGTGACGAACCGACCTCCATCACCGATGCCTACGCCCTGATCAAACTGCTCAACCGCGACTATGGCATGAACCGCTTCCGCGTCCTGGCCAACATGGCCCAGAGCCCGCAGGAAGGACGCAACCTGTTCGCCAAGTTGACGAAGGTCACGGATCGCTTCCTGGACGTCGCCCTACAATATGTCGGCGCAGTGCCTTACGACGAAAGTGTACGCAAGGCTGTCCAGAAGCAACGTGCCGTCTATGAAGCTTTTCCACGTTCCAAATGCGCGCTGGCGTTCAAGGCTATCGCCCAGAAGGTCGATACCTGGCCGCTGCCGGCCAACCCTCGCGGGCATCTGGAATTTTTCGTCGAGCGTCTCGTGCAACAAACGGCAGGGCCCGTGTTATGAMGSMHPVQVIAVTGGKGGVGKTNVSVNLSLALAELGRRVMLLDADLGLANVDVLLGLTPKRTLADVIEGRCELRDVLLQGPGGIRIVPAASGTQSMVHLTPAQHAGLIQAFSDIGDNLDVLVIDTAAGIGDSVVSFVRAAQEVLLVVCDEPTSITDAYALIKLLNRDYGMNRFRVLANMAQSPQEGRNLFAKLTKVTDRFLDVALQYVGAVPYDESVRKAVQKQRAVYEAFPRSKCALAFKAIAQKVDTWPLPANPRGHLEFFVERLVQQTAGPVLPGPT0015555_1274DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLUM_CONTROLMOTILITY-FLAGELLUM_REGULATION,PGPT0015555-flhG-K04562NANA
D1-35_00578744fliACOG1191RNA polymerase sigma factor FliAATGACAGCCAGCGGTTACAACCATCTCTACAAAAAATCGGCACGGGACGCCCAGTACGAACTGATCGAGCGTTATGCGCCGTTGGTCAAGCGCATCGCCTATCACTTGCTGGCACGCTTGCCGGCCAGCGTCCAGGTCGAAGACTTGATCCAGGCGGGCATGATCGGCCTGCTCGAAGTGTCGAACAAATACGACGCGAGCAAGGGCGCCAGTTTCGAGACGTATGCCGGTATCCGGATTCGCGGAGCGATGCTCGATGAAGTCCGCAAGGGCGACTGGGCGCCGCGTTCGGTGCACCGCAATACCCGTATGGTCAGTGACGCGATCCGTGCGATTGAAGCTAAAACCGGGCGTGACGCTAAAGATCATGAAGTTGCGGCCGAACTCCAGTTGAGTCTCGATGATTATTACGGGATTTTGAACGATACCTTGGGCAGCCGCCTGTTCAGTTTCGACGACCTTTTGCAGGACGGCGAGCACGAAGGGCTGCACGAGGACAATGCGAGTGCTCACATGGAGCCGTCGCGTGACCTGGAAGACGAACGTTTCCAGAGCGCGCTGGCGGATGCGATTGCCAATTTGCCGGAGCGTGAGCGACTGGTCTTGGCGCTGTACTACGACGAAGAGCTGAATCTCAAGGAAATCGGTGAGGTCCTGGGGGTCAGCGAATCGCGGGTCAGCCAGTTACACAGCCAGTGCGCGGCCCGCTTGCGGGGGCGTTTGGGGGAGTGGCGAGCGCGCTGAMTASGYNHLYKKSARDAQYELIERYAPLVKRIAYHLLARLPASVQVEDLIQAGMIGLLEVSNKYDASKGASFETYAGIRIRGAMLDEVRKGDWAPRSVHRNTRMVSDAIRAIEAKTGRDAKDHEVAAELQLSLDDYYGILNDTLGSRLFSFDDLLQDGEHEGLHEDNASAHMEPSRDLEDERFQSALADAIANLPERERLVLALYYDEELNLKEIGEVLGVSESRVSQLHSQCAARLRGRLGEWRARPGPT0015610_1065DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0015610-fliA|sigD|whiG-K02405NANA
D1-35_00579372cheY_1COG0784Chemotaxis protein CheYATGAAAATCCTCATCGTTGATGACTTCTCAACGATGCGGCGGATCATAAAAAACCTGTTGCGTGACCTCGGGTTCACCAACACGGTCGAGGCTGACGATGGCACCACTGCCATTCCAGTCCTCAACAGCGGGAGCATCGACTTTCTGGTGACTGACTGGAACATGCCCGGCATGACCGGTATCGACTTGCTGCGCCACGTGCGCGCCGATGAAAAACTCAAGCACCTGCCGGTGCTGATGGTCACCGCCGAAGCCAAGCGCGAGCAGATCATCGAAGCGGCCCAGGCCGGTGTAAACGGCTATGTGGTCAAACCCTTCACGGCCCAGGCGTTGAAAGAGAAGATCGAAAAAATCTTCGAACGCATCGGTTAAMKILIVDDFSTMRRIIKNLLRDLGFTNTVEADDGTTAIPVLNSGSIDFLVTDWNMPGMTGIDLLRHVRADEKLKHLPVLMVTAEAKREQIIEAAQAGVNGYVVKPFTAQALKEKIEKIFERIGPGPT0015690_2098DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015690-cheY|yneI-K03413NANA
D1-35_00580786cheZCOG3143Protein phosphatase CheZATGGACAACGAATCTTCAATGGGCGATTTCGAATCGACCCTGAAAAAACATGCCCGCGAACTGGTCGACAGCCTTGAAAAGGGCCGCTTCGGTGACGCGGTTCAAATGATTCATGAGCTCAACCAGACCCGTGACCGCGGTCTGTACCAGGAAGTCGGCAAGCTCACCCGTGAACTGCACAGCGCGATCGTCAATTTCCAGATCGATCCTAACATGCCACAGGCCGAGGAAGTCTCGCAGATCACCGACGCCACCGAGCGCCTGGGGTATGTGGTCAAGCTGACCGAAGCCGCGGCCAACCGCACCATGGACCTGGTGGAAAGCGCTACGCCCCTGGTCAACGGCCTGAGCGAGGAAGCCCAGGCGTTGAGTACCGATTGGGGGCGCTTCATGCGTCGCGAAGTCGGTGCCGAGGAGTTTCGCGAGCTGGCCCGTCGGGTCGACGGTTTCCTGACGCGCAGCAGCAGCGAAAACCGCGCCGTGGCGAGCAATCTCAATGACATCCTGCTGGCCCAGGACTACCAGGACCTGACAGGCCAGGTGATCAAGCGCGTGACCCAGTTGGTCACCGAAGTGGAAAGCAATTTGCTCAAACTGGTGCTCATGGCCAGCCAGGTCGATCGCTTTGCCGGCATCGAACACGACCGTGAGGCGATGCTTGCTGAAAAAGATCCACAAAAACATCTCTCTCAGGGTGAAGGTCCGCAGATTCATGCCGATAAAAGAGAAGACGTTGTGTCCGGTCAGGACGATGTGGACGATTTGCTGTCCAGCCTTGGATTTTGAMDNESSMGDFESTLKKHARELVDSLEKGRFGDAVQMIHELNQTRDRGLYQEVGKLTRELHSAIVNFQIDPNMPQAEEVSQITDATERLGYVVKLTEAAANRTMDLVESATPLVNGLSEEAQALSTDWGRFMRREVGAEEFRELARRVDGFLTRSSSENRAVASNLNDILLAQDYQDLTGQVIKRVTQLVTEVESNLLKLVLMASQVDRFAGIEHDREAMLAEKDPQKHLSQGEGPQIHADKREDVVSGQDDVDDLLSSLGFPGPT0015695_200DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015695-cheZ-K03414NANA
D1-35_005812250hypothetical proteinATGAGCTTCGGCGCCGATGAAGAGATCCTTCAGGATTTCCTGGTTGAGGCCGGCGAGATTCTAGAGCAACTGTCCGAACAGCTGGTCGAGCTGGAAAGCCGACCTGATGATGCGGATCTGCTCAATGCAATTTTTCGCGGTTTCCACACTGTAAAAGGAGGCGCCGGCTTCCTCCAGCTCAATGAGCTGGTGGAGTGCTGCCACATTGCCGAAAACGTGTTCGACATCCTGCGCAAGGGTGAGCGTCGCGTTGACTCGGAATTGATGGACGTCGTGCTCGAAGCGCTGGATGCGGTCAACAGCATGTTCAGCGAAGTGCGCGAGCGTTCGCCGATCACCCCCGCCACGCCTGAGCTGCTTGCTGCATTGGCGCGGCTGGCCGAGCCGCAGTCGGCTGACGAAGCCGCGCCGGTTGCCGAGGCTGTGGCTGAAGAGCCGGTTGCCGAGGAATCGGGTGACATTACCGACCACGAATTTGAATCGCTGCTGGACTCGCTGAGTGCCGTCAAGGCCCAGGCCGAGGCTCCGGCCGCACCCGCTGCGCCAGCCGCCGCTGCTGCCCCAGGCAGTGATGAAATCACCGACGCCGAGTTCGAGTCGTTGCTCGACCAGCTCCACGGCAAGGGCCAGTTCGCCCCTGATGCCGTTGCCGCCCCGGCGGCCCCGGCCGCGCCAAAGGCTGCGGGGGATAACTCCGACATCACCGACGACGAATTCGAAGCATTGCTCGACCAGTTGCACGGCAAGGGCACCTTTGCCGTCGATGCGCTGGATTCGGCCATCGCTGCTGCGCCAGCCCCGGCCAAGCCAACCGCGGCCGCCGCCGGTGGCGACCTGATCAGCGACCACGAATTCGAATCCCTGCTCGACGAATTGCACGGCAAGGGCAAGTTCAGCGAAGTCGGCACGGCCACCGCCGCGCCTGCCGCCGCCACTGCTGCGCCTGCCGCCAAAGCCGCGCCCAAGCCCGCTGCCAAGGCACCGGAGCCGAAGGCCGAGACACCCAAGCCTGCCGCCGCCGCAGCGCCGGCCCCAGCCCGTGCGCCGTCTGCGCCGCCTGCGGAGAAACCGGCCAGCGAAGCCGAGACCACCGTTCGGGTCGACACCGCGCGCCTGGACGAAATCATGAACATGGTTGGCGAACTGGTGCTGGTGCGTAACCGCCTGGTGCGCCTGGGCCTCAACAGCCAGGACGAAGCGATGTCCAAGGCCGTGTCGAACCTCGACGTGGTCACGGCTGACCTGCAGACCGCGGTCATGAAGACCCGGATGCAGCCGATCAAGAAAGTCTTCGGGCGCTTCCCGCGCCTGGTTCGTGACCTGGCTCGCCAGCTCAAGAAAGAAATCAACCTGGAGCTGGTGGGTGAAGAGACCGACCTCGACAAGAACCTTGTCGAGGCCCTGGCCGACCCGCTGGTCCACTTGGTGCGCAACGCGGTCGACCACGGCATCGAGTCGCCGGAAGAGCGCGAGGCCTCGGGCAAGGTCCGCAGCGGCAAGGTGATCCTGGCCGCCGAGCAGGAGGGCGACCACATCCTGCTGTCGATCTCCGACGACGGCAAGGGCATGGACCCGCACGTACTCCGGGCGATCGCGGTGAAACGCGGCGTGATGGACAAGGACGCGGCCGACCGCCTGAGCGACACCGAGTGCTACAACCTGATTTTCGCTCCGGGCTTCTCGACCAAGACCGAGATTTCCGACGTGTCGGGTCGTGGCGTGGGCATGGACGTGGTGAAAACCAAGATTTCCCAGCTCAACGGCTCGATCAACATCTACTCGACCAAGGGCCAGGGCTCGAAAATCGTCATCAAGGTCCCGTTGACCCTGGCGATCATGCCGACCCTGATGGTGATGCTGGGCAACCAGGCCTTCGCCTTCCCGCTGGTCAACGTCAACGAGATCTTCCACCTCGACCTGTCGCGCACCAACGTGGTCGACGGCCAGGAAGTGGTCATCGTACGGGACAAGGCGCTGCCGCTGTTCTACCTCAAGCGCTGGCTGGTCAGCTCCGCCGCTCATGTCGAGCAGGGCGAGGGCCACGTGGTGATCCTTTCGGTGGGCACCCAGCGGATCGGCTTCGTCGTCGACCAACTGGTGGGCCAGGAAGAAGTGGTCATCAAGCCGTTGGGCAAGATGCTCCAAGGCACCCCGGGCATGTCCGGCGCCACCATCACCGGCGACGGCCGCATCGCGTTGATTCTCGATGTGCCTAGCATGCTCAAGCGCTACGCCGCCCGGCGTATTTGAMSFGADEEILQDFLVEAGEILEQLSEQLVELESRPDDADLLNAIFRGFHTVKGGAGFLQLNELVECCHIAENVFDILRKGERRVDSELMDVVLEALDAVNSMFSEVRERSPITPATPELLAALARLAEPQSADEAAPVAEAVAEEPVAEESGDITDHEFESLLDSLSAVKAQAEAPAAPAAPAAAAAPGSDEITDAEFESLLDQLHGKGQFAPDAVAAPAAPAAPKAAGDNSDITDDEFEALLDQLHGKGTFAVDALDSAIAAAPAPAKPTAAAAGGDLISDHEFESLLDELHGKGKFSEVGTATAAPAAATAAPAAKAAPKPAAKAPEPKAETPKPAAAAAPAPARAPSAPPAEKPASEAETTVRVDTARLDEIMNMVGELVLVRNRLVRLGLNSQDEAMSKAVSNLDVVTADLQTAVMKTRMQPIKKVFGRFPRLVRDLARQLKKEINLELVGEETDLDKNLVEALADPLVHLVRNAVDHGIESPEEREASGKVRSGKVILAAEQEGDHILLSISDDGKGMDPHVLRAIAVKRGVMDKDAADRLSDTECYNLIFAPGFSTKTEISDVSGRGVGMDVVKTKISQLNGSINIYSTKGQGSKIVIKVPLTLAIMPTLMVMLGNQAFAFPLVNVNEIFHLDLSRTNVVDGQEVVIVRDKALPLFYLKRWLVSSAAHVEQGEGHVVILSVGTQRIGFVVDQLVGQEEVVIKPLGKMLQGTPGMSGATITGDGRIALILDVPSMLKRYAARRIPGPT0015645_1447DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015645-cheA|wspE-K03407NANA
D1-35_005821137cheB1COG2201Protein-glutamate methylesterase/protein-glutamine glutaminase 1ATGGTAGTTAAAGTCCTGGTGGTGGACGATTCGGGGTTCTTCCGCCGCCGCGTCTCGGAAATTCTTTCGGCGGACACCAGCATCCAGGTCGTCGGTACGGCGACCAACGGCAAAGAGGCGATCGATCAGGCGCTGGCGCTCAAGCCGGACGTGATCACCATGGACTATGAGATGCCGATGATGGACGGCATCACGGCGGTGCGGCATATCATGCAGCGCTGCCCGACCCCGGTGTTGATGTTCTCGTCCCTGACCCATGAAGGCGCCCGTGTCACCCTCGATGCGCTGGACGCCGGGGCGGTCGACTTCCTGCCGAAGAATTTCGAAGACATCTCGCGCAACCCGGACAAGGTCCGTCAGTTGCTGTGCGAGAAAGTCCACAGCATTTCCCGCAGCAACCGCCGGGTCAGTGCCTACAGCACACCGGCGCCCGCGCCGGTTGTTGCGCCGACGTCCGCGCCCGCGTCTTCATCCTCGTCAAGCAGCTTCAATCCGGCACCGGTTCGCAGCGCTCCGGCACCAGCGCCGGCGCGCTCGGCACCGGCCAGCGCAGCGTCGCCGGCACCCAAGCGCAAGGCCTACAAACTGGTTGCCATCGGTACGTCCACCGGCGGTCCGGTGGCGCTGCAGCGGGTCCTGACCCAACTGCCGGCGAATTTCCCGGCGCCCATCGTGCTGATCCAGCACATGCCCGCGGCATTTACCAAGGCATTTGCCGAGCGTCTGGACAAACTCTGTCGTATCAGCGTCAAGGAAGCCGAGGACGGCGACATCCTGCGGCCGGGCCTGGCGCTGTTGGCGCCGGGTGGCAAGCAGATGATGATCGACGGCCGTGGCGCGGTGAAAATCCTGCCAGGTGACGAGCGTCTGAACTACAAGCCTTGCGTGGACATTACCTTCGGTTCCGCGGCGAAATCCTACGGCGACAAAGTTCTGGCGGTGGTCCTCACCGGCATGGGCGCCGACGGTCGCGAGGGCGCGCGCCTGCTCAAGCAGGGCGGCAGCGCGATCTGGGCCCAGGACGAGGCCAGTTGCGTGATCTATGGCATGCCCATGGCAATCGTCAAGGCCGACCTGGCCGACGCGGTCTACAGCCTGGACGACATGGGTAAACATCTGGTCGAGGCGTGCCTGTAAMVVKVLVVDDSGFFRRRVSEILSADTSIQVVGTATNGKEAIDQALALKPDVITMDYEMPMMDGITAVRHIMQRCPTPVLMFSSLTHEGARVTLDALDAGAVDFLPKNFEDISRNPDKVRQLLCEKVHSISRSNRRVSAYSTPAPAPVVAPTSAPASSSSSSSFNPAPVRSAPAPAPARSAPASAASPAPKRKAYKLVAIGTSTGGPVALQRVLTQLPANFPAPIVLIQHMPAAFTKAFAERLDKLCRISVKEAEDGDILRPGLALLAPGGKQMMIDGRGAVKILPGDERLNYKPCVDITFGSAAKSYGDKVLAVVLTGMGADGREGARLLKQGGSAIWAQDEASCVIYGMPMAIVKADLADAVYSLDDMGKHLVEACLPGPT0015650_692DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015650-cheB|chpB|wspF-K03412NANA
D1-35_00583741pomACOG1291Chemotaxis protein PomAATGGACGTGCTCAGCCTGATCGGCATCATCATGGCGTTCGTCGCCATCATTGGTGGCAATTACCTGGAAGGCGGTCACCTCGGCGCGTTGGCCAACGGCCCGGCCGCGTTGATCGTGATCGGTGGCACCGTAGGCGCTGCGCTGTTGCAGTCGCCGATGAGCGCCTTCAAGCGCGCCATGCAGGTATTGGTGTGGATTCTGTTCCCGCCGCGGGTCGACCTGGCCGGCGGCATCGACCGCGTGGTGAACTGGAGCCTGACCGCCCGCAAGGAAGGTCTGCTGGGTCTGGAAGGGGTGGCCGACGCCGAACCCGACAGCTACTCGCGCAAGGGCCTGCAATTGCTGGTCGACGGCGCCGAGCCGGAAGCGATCCGCAGCATCCTGGAGGTGGATTTCTACACCCAGGAAAGTCGCGACATCGAAGCGGCGAAAGTCTTCGAAAGCATGGGTGGCTATGCGCCGACCATCGGCATCATCGGTGCGGTGATGGGCCTGATCCATGTGATGGGCAACCTGGCCGATCCGTCGCAACTGGGCAGCGGCATCGCCGTGGCCTTCGTCGCGACCATCTATGGTGTGGCGAGCGCCAACCTGGTGCTGCTGCCGATCGCGGCCAAGCTCAAGTCCATTGCCATGCGCCAGTCGCGCTATCGGGAAATGCTCCTGGAAGGCATCCTGTCTATCGCCGAAGGTGAAAACCCGCGCTCCATCGAATTGAAGCTCCAGGGCTTCATGGACTGAMDVLSLIGIIMAFVAIIGGNYLEGGHLGALANGPAALIVIGGTVGAALLQSPMSAFKRAMQVLVWILFPPRVDLAGGIDRVVNWSLTARKEGLLGLEGVADAEPDSYSRKGLQLLVDGAEPEAIRSILEVDFYTQESRDIEAAKVFESMGGYAPTIGIIGAVMGLIHVMGNLADPSQLGSGIAVAFVATIYGVASANLVLLPIAAKLKSIAMRQSRYREMLLEGILSIAEGENPRSIELKLQGFMDPGPT0015370_3278DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_MOTOR|SWITCH,PGPT0015370-motA-K02556NANA
D1-35_00584885motB_1COG1360Motility protein BATGGCACGTCGCAGACATCGTGAAGAACACGTCAACCATGAACGCTGGCTGGTTTCCTACGCCGACTTCATCACGTTGCTGTTTGCCTTTTTTGTGGTCATGTATTCGATCTCCTCGGTCAACGAGGGCAAGTACAAGGTCATTTCCGAAGCGTTGATTGGCGTTTTCACTGATTCGGACCGTGCTCTCAAGCCGATTCCCATCGGCGACGAACGCCCGAAGACGACGACCCCGGCCAAGCCGTTGGTCAAGGACAGCGAGCAGGTCGATGCTGGCATTGCCGGTGGCAGCGATCCGTTGAAAAGCATTGCCGACGACATCAGCGCGGCGTTCGGCGACCTTATCAGCTCCAACCAGATGACCGTGCGCGGCAATGAGTTGTGGGTCGAGATCGAGCTCAACTCCAGCCTGCTGTTCGGTAGCGGCGACGCGATGCCTAGCGACATGGCGTTCAATATCATCGATAAGGTCGCGGCGATCCTGAAACCGTTCGACAACCCGATCCACGTCGAAGGTTTCACCGATGACCAGCCGATCCGCACCGCGCAGTACCCGACCAACTGGGAGCTGTCGTCGGCCCGTTCGGCGAGCATCGTGCGCATGCTTGCCATGCAGGGCGTCAATCCCGGACGCCTGGCCTCGGTGGGGTATGGCGAGTTCCAACCGGTGGCCAACAACGCCACCGCCGAAGGGCGCGCGCGCAACCGGCGGGTAGTGCTCGTGGTGTCGCGTAACCTTGATGTCCGGCGCAGCCTGACCGGTACCGGCACCGCCAATGCAAAACCCGATGCGGCATTGAAGCGGGCTGGCACACAAACTGCACCGACCCCGGTCAAGTCGCCGGAAAGACAGAACGCCGTCAATTCTCCGTCACCGGCTTTATAAMARRRHREEHVNHERWLVSYADFITLLFAFFVVMYSISSVNEGKYKVISEALIGVFTDSDRALKPIPIGDERPKTTTPAKPLVKDSEQVDAGIAGGSDPLKSIADDISAAFGDLISSNQMTVRGNELWVEIELNSSLLFGSGDAMPSDMAFNIIDKVAAILKPFDNPIHVEGFTDDQPIRTAQYPTNWELSSARSASIVRMLAMQGVNPGRLASVGYGEFQPVANNATAEGRARNRRVVLVVSRNLDVRRSLTGTGTANAKPDAALKRAGTQTAPTPVKSPERQNAVNSPSPALPGPT0015375_2530DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_MOTOR|SWITCH,PGPT0015375-motB-K02557NANA
D1-35_00585792soj_1COG1192Sporulation initiation inhibitor protein SojATGAGAGTCTGGGCAGTCGCCAATCAAAAAGGTGGTGTGGGCAAAACCACATCCTCCATCGCTTTAGCCGGTTTGCTGGCCGAGGCGGGCAAGCGCGTGGTCATCGTCGATCTGGACCCCCACGGCTCGATGACCAGCTATTTCGGCTACGATCCCGATAGCCTGGAGCACAGCAACTACGACTTGTTCCTGCACAAGGGCAGCGTGCCCGAGGGCCTGCCGGGCCAGTTGTTGCTGTCTACCAGTGACGAGCGGATTTCCCTGTTGCCATCGAGTACGGCCCTGGCCACCCTGGAGCGCCAGTCGCCCGGGCAGGGCGGCCTGGGCCTGGTGATCGCCAAGAGTCTGGCGCAGCTGTGGCAGGATTTCGATTACGCAATCATCGACAGCCCACCATTGCTCGGGCTACTGATGGTCAATGCCCTGGCCGCGAGCCAGCAACTGGTGATTCCGGTGCAGACCGAACACCTGGCTGTCAAAGGCCTGGAGCGCATGGTCAACACCCTGGCGATGGTCAACCGCTCGCGCAAGCAATCCCTGGCGTTCAACATCGTGCCGACCCTGTTCGACCGTCGCACCCAGGCGTCCCTCGGTACCCTGCGCGTGTTGCGCGATATGTACCCCGAGGACATCTGGCAAGGTTATATCCCGGTCGATACGCGTCTGCGAGACGCCAGCCGCGCCGGCGTGACCCCTTCGCAATTCGATGGCAAAAGCCGTGGCATCCTGGCCTATCGCGCGCTTCTCAAACATTTGCTGGCCCAGCAGCTCGTTCCGCAGCAGGTGGCTTGAMRVWAVANQKGGVGKTTSSIALAGLLAEAGKRVVIVDLDPHGSMTSYFGYDPDSLEHSNYDLFLHKGSVPEGLPGQLLLSTSDERISLLPSSTALATLERQSPGQGGLGLVIAKSLAQLWQDFDYAIIDSPPLLGLLMVNALAASQQLVIPVQTEHLAVKGLERMVNTLAMVNRSRKQSLAFNIVPTLFDRRTQASLGTLRVLRDMYPEDIWQGYIPVDTRLRDASRAGVTPSQFDGKSRGILAYRALLKHLLAQQLVPQQVANANANANANA
D1-35_00586885hypothetical proteinATGAACCGCCCGATCAAGACAACCTCGCGTCCGCAACTGGCCTTGCAGTCCTACCTGGACGGGCTCTTGCAGGAAGCGACCGAAGAATTGCCAGCGCCGCCGAGCGCGGCCGAGGCGTTGCCCGAGCCCGTCGTCGAAGCCGAAGCTGAAGCTGTACTGGACGAGTTCCAGGCGGCCGTGCTCGAAGAGCAGGCTCGTGATGCACGGATTTCCATGACTGCCGCAGCGGTCGAGGCGCCGCTCGTCAAGCCGAAGGTGGCCGTGATGGAAGCGCCCGCGCCGATCCTGGCGCCGGTCTCGACCGTTGCACCGTTGTTGCAGGGCCTGGTGACGCCGGTAGTGGAAATCCACTTGCCGCCGCCGAGCAACACACCGCCGCCGGTGCAGGGCGACGACCGTCCGGCCTGGGCCGCCGAGCCGTTCGAGTGTCTGTTGTTCGATGTGGCCGGGTTGACCCTGGCGGTGCCGCTGGTGTGCCTGGGATCGATTTATTCCCTGGCGGGGCAGGAATTGACGCCGTTGTTCGGCCAGCCGGAATGGTTCCTCGGGATCCTGCCGAGCCAGGCCGGCAACCTGAAGGTGCTGGACACCGCGCGCTGGGTCATGCCGGACCGTTATCGCGATGATTTTCGCCAGGGCCTGCAATACGTGATTTCAGTGCAAGGCTACGAGTGGGGATTGGCGGTGCATCAGGTCAGCCGTTCGCTGCGCCTGGACCCGAACGAGATCAAATGGCGAAGCCATCGAGGACAACGGCCATGGCTGGCCGGTACGGTGATCGAACACATGTGCGCCTTGCTGGACGTTTCCGAACTGGCGGAGCTGATCGCCAGCGGCGGGGCAAAACACCTGGGCGGCAGCAAGCCGGTCCAGAAACCGAAATAAMNRPIKTTSRPQLALQSYLDGLLQEATEELPAPPSAAEALPEPVVEAEAEAVLDEFQAAVLEEQARDARISMTAAAVEAPLVKPKVAVMEAPAPILAPVSTVAPLLQGLVTPVVEIHLPPPSNTPPPVQGDDRPAWAAEPFECLLFDVAGLTLAVPLVCLGSIYSLAGQELTPLFGQPEWFLGILPSQAGNLKVLDTARWVMPDRYRDDFRQGLQYVISVQGYEWGLAVHQVSRSLRLDPNEIKWRSHRGQRPWLAGTVIEHMCALLDVSELAELIASGGAKHLGGSKPVQKPKPGPT0015680_422DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015680-cheW-K03408NANA
D1-35_00587486cheW_1COG0835Chemotaxis protein CheWATGAATGATAAGGCGTCGTCTCAAAAGGGTTCTGAAGATCCGATTCTGCAGTGGGTGACCTTCAAGCTCGATAACGAAACCTACGGCATCAACGTGATGCGCGTTCAGGAAGTGCTGCGCTACACCGAGATCGCCCCGGTTCCAGGTGCGCCAAGCTATGTGCTGGGGATCATCAACCTGCGTGGCAACGTGGTCACCGTGATCGATACCCGTCAACGCTTCGGCCTGATGAACGCCGAGATCAGCGACAACACCCGGATCGTCATCATCGAAGCCGACAAACAAGTGGTTGGCATCATGGTCGACAGCGTCGCCGAAGTGGTTTACCTGCGTCAGTCGGAAATCGAAACCGCGCCGAACGTCGGTAACGAAGAGTCCGCCAAGTTCATTCAGGGCGTGTGCAACAAGAACAACGAGTTGCTGATCCTGGTTGAACTGGACAAGATGATGAGCGAAGAAGAGTGGTCGGAACTGGAGAGTATCTGAMNDKASSQKGSEDPILQWVTFKLDNETYGINVMRVQEVLRYTEIAPVPGAPSYVLGIINLRGNVVTVIDTRQRFGLMNAEISDNTRIVIIEADKQVVGIMVDSVAEVVYLRQSEIETAPNVGNEESAKFIQGVCNKNNELLILVELDKMMSEEEWSELESIPGPT0015680_3276DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015680-cheW-K03408NANA
D1-35_00588339hypothetical proteinATGTTCGTGTCCTATATACGCGGCCAGCGGCAGATCGCCGCTCAGCAGGCCCAGGGCGATGCGCTGCGCGATCAGCGCATCCGCGACCTGGCCAAGCGCGTCGACGACTATCAGAACGGCACCGTGCGCATGGGCGAAGCGCTCCATGAGCTGCGTGCCGTGGTCGGGCCATTGCCGGACAAACTGGCGCAGCTGGAACAGCGCGACCCCTCCAGCCTGTCCTTCGCCCAGGCCGCCCGCCTGGTCGGCATGGGCGCCAGCGTCGACGAACTGACCCAGGCGTGTGGTCTGACCCAGGCCGAAGCGGAATTGATGAGCAAGTTGCACAAGGGCGGCTGAMFVSYIRGQRQIAAQQAQGDALRDQRIRDLAKRVDDYQNGTVRMGEALHELRAVVGPLPDKLAQLEQRDPSSLSFAQAARLVGMGASVDELTQACGLTQAEAELMSKLHKGGNANANANANA
D1-35_00589156hypothetical proteinATGGGTCTAGAGGACAGCATCCCGGAAGAGCTGTACCGCACGATTGCCGAGATCATTGCGTTTGCGTGGAACCTGAAGGGCAAGTTTGCGCAAGGTTATGACCCGAATGCACCAAGTGTCGAGAAGGACGTGACCGAGCGCGGCGACGATTACTGAMGLEDSIPEELYRTIAEIIAFAWNLKGKFAQGYDPNAPSVEKDVTERGDDYPGPT0029865_251DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0029865-flhB2-K04061NANA
D1-35_005901341hypothetical proteinATGCCGGGCATTAATAAAAATGTTGCGTTGCATGTACGTTCCAGGTCTGAAGGTGGAGGCGCTACTAGCTCAATCATTACAAAAAAACTACTCGCCACGTCGAACTCTTCTTCTGATTTGGTCAAGACTGGCTTGAAAACCCAATCGGGATTAAATTCGAGATCTGCAGCATCCGGCGTGTTGGACGAGAAGCCTGCTCAATTGATCAACAAACGTACCGCCAAAGCAGTGTTGGCTGAGTTGTTAAGGCAACCGCGGTCAGAGAGTAATTACGCCAATCGTCTCGCATGTTTGAGCGCAGATCGCTCAATTCAAACGTGGCAAGCGCTTACTCATGATCCAGAAACATTAAAAGTTTTAGAACAGACAACTCCAACTGCTCTGCCATCGCGTTTAGCTGAGCCAGCTGTATGGCTCCCAGAAGTCGAAAAAATACATACGAACGTTCTGATGAACCTGATGAGCAAGCTGGCGGGCGAATACTCGGTTTCATTCCAGTCATTGGCTCTAGGTAGAGAGGAGGCTGAGATAAAAGAGGTGTCTATCGTGCGCGGACCTCCTGGCGCGGGCAAAACGTTTTATTTGAAGGGTGGTTTTTCGCTAGGGGGGGATGAAGTAAAAAACTACCTACAGAACCGAATGCCCGGACTTACGATGTCTCAAGTACACCTGCAAGGATCTGTTTTGCTTGATCGATTTATGAGCTCTATGGAACGTAAGCTTGAGCAAAGCCTGACACGGGATGGGCTTTACTTAAATCCACTGATATTTGAACAGAAACTACAAGCAGTTGGCTTGCAGGACGGAAGGCAAAAAGCTGCAGTTCGCGACATTCACGTGGATTTAACGACATTATGTTGTCGGATGCTTAAGCGCTCTACAGATGAGGCGCTACTTGGCTTTGACTACTTAAGCCAATCTTTTCGCTTGTCTTTGGAGAATAGGGCAAGAACAATCGAGTTGGTTGGGGAGAAACATGGCAACATCAGCGACTACTTGCTATTGGCCTGGGATGGGAGCAAAAACATCAAAGTCGCGGAATGTCCAGCCGGTTTAAAGAACATTACGGTGTATGACCATTCTCTTTTCGACCAGCTTGTGATGCGCGATCCTGCGCTGATTGATGCGGAAATAGCGCGTGTGGGTGAAACGGTGATCGACGGGGCATTCATCTCCAGATTTACTGCTGGATTTGAGCCGACCATAGCGGCACTCTTTACCGAGGCACTGAGCACGTACGATGGGAAAACCATCGCTCATGCCCTAGCGTTGAACCTCGATAGGGGGCACGTAGCAACTTCAGTAGCTTCTCGGATTATCGCTAGAGCTGTCTCCGCTTAAMPGINKNVALHVRSRSEGGGATSSIITKKLLATSNSSSDLVKTGLKTQSGLNSRSAASGVLDEKPAQLINKRTAKAVLAELLRQPRSESNYANRLACLSADRSIQTWQALTHDPETLKVLEQTTPTALPSRLAEPAVWLPEVEKIHTNVLMNLMSKLAGEYSVSFQSLALGREEAEIKEVSIVRGPPGAGKTFYLKGGFSLGGDEVKNYLQNRMPGLTMSQVHLQGSVLLDRFMSSMERKLEQSLTRDGLYLNPLIFEQKLQAVGLQDGRQKAAVRDIHVDLTTLCCRMLKRSTDEALLGFDYLSQSFRLSLENRARTIELVGEKHGNISDYLLLAWDGSKNIKVAECPAGLKNITVYDHSLFDQLVMRDPALIDAEIARVGETVIDGAFISRFTAGFEPTIAALFTEALSTYDGKTIAHALALNLDRGHVATSVASRIIARAVSANANANANANA
D1-35_00591327flhB_2COG1377Flagellar biosynthetic protein FlhBATGACAACCCATACCGAACCCCGCCAGGCCATCGCACTCAAGTACGACGGCCACCACGCCCCCACCCTCACCGCCAAGGGCGACGAAGCCCTGGCCGAGGAAATCCTGCGCATCGCCCGCGAAAGCGAAGTGCCGATCTATGAAAACGCCGAATTGGTGAAATTGCTGGCGCGGCTGGAGTTGGGCGATAGCATCCCCGAGGAGCTGTACCGCACGATCGCCGAGATCATTGCCTTTGCCTGGAACCTGAAGGGCAAGTTTCCGCGGGGTTATGACCCGAATGCACCGAGTGTCGAGAAGGACGTGACCGACCGCGGAGAGGATTAAMTTHTEPRQAIALKYDGHHAPTLTAKGDEALAEEILRIARESEVPIYENAELVKLLARLELGDSIPEELYRTIAEIIAFAWNLKGKFPRGYDPNAPSVEKDVTDRGEDPGPT0029865_251DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-T3SS-FLAGELLAR_EXPORT_APPARATUS,PGPT0029865-flhB2-K04061NANA
D1-35_005921572hypothetical proteinATGACAGGCGACATGAACATCCCGCCGCTGCCCCAGCCCACGGCAACGACACGTATGCCGGCAGTGACTGGCGAGCTGCTGAAGTTGCTGGCGCCGGCCGAGGGGCTGATCGGCCCGGGCCAGACAGCCAAGGCCGAGGTGTTGTCACTCAAGCAGGCGGACCAGGCCTTCCAGCTGTTGCTCAAGCTGACCCTGGAAAGCGGCCGGCAGGCCACGGTGCAGGCCACCAGCGCCCAGCCGTTGCCGCAAGGCACCAGCCTGGCCGTGACCCAGCCGTCCGCCAGCAACCTGGCGATTGCCGTGCAACAGGCCGTCGCCTCCAGCGTCGCCACCTTGACGCGCATCGACACCGCGCAGCTGCCGGTGGGCACGTTGCTGCAAGGCAAGGTGCTGACCAGCCAGGTGCTGCCGCAGTTGCCAGGGCAAGCGGCGGTATATCGCTCGCTGGTGAGTTTGCTCAACACCGTCCAGGCCGGCAGTACCCTGGACATCGACAGCCCCCAGCCCCTGCGCATCGGCACGTTGTTGAGCGCTCAGGTGCAGGATGTGCAGACCTTGAAGTTCGTCCCCCTGAGCAACCGCCAGGAACAATTGGCGGTCAGCCAGCAGCTGGTTACGCAGGTGAGCCGCCAGGGTTCGCTGGACAGCTTGCTCACCGCCCTGCAAAACCTTCCCGCCAGCGAAGACGCCGGCTCCGAGCTGCGCGCGGCGGTAACGCGCCTGTTGGCCGGTCTGCCAGACGTCCAGCAACTGAGCACACCCAAGGGCCTGGCCCAGGCCATGGTCGCCAGCGGCATGTTCCTGGAGAGCAAACTCCTCGCCGGGCAGCCGCCGAGCCTCGCCCCGGACATGAAAGGCGACCTGCTGAAACTGATCGCCCAACTGACACCGGCCCTGCCCGCGTCCACCAATCTCAGCGCCATCATCGCCGCCAACACCCTGGCCCAGGCGCTGCCCAACTTCGTGCGCAGTGCCTTGGGGATGCTTGGCCAGGTCAGCGCCAAGCCGCAGCCCACGAGTTTTCCGCTGCCCTCGCGCCTGCTCAAAGGCCAGGACGAAGAAGGCGATCTGGAGCACCTGTTGCGTCTGGCCGCAGCCGCTGTCTCGCGCCTGCAAAGCCATCAGTTGTCGAGCCTGGAGCAGACCGGGCTGACCGACGATGGCCGGCTGATGAGCACCTGGCAGTTGGAGATCCCGATGCGCAACCTGCAGGACATCGTGCCATTGCAGGTCAAGTTCCAACGCGAAGAAACCCCTGCCCGGGAGCAGCCGGACGAGCGCCGCGAACCACGCGAAGCGAAACAGCAACTGTGGAAGGTCGAGCTGGCGTTCGACATGGAGCCGCTGGGCCCGTTGCAGATTCAGGCCCAGTTGCTCGGCGGCAGCCTGTCCAGCCAGCTGTGGGCGCAAAGGCCGTACACCGCAAGCCTGATCGAAAGCAACCTGACCGCCCTGCGCGAGCGCCTGGTGACATGCGGGCTGAACGTCGGCGACCTGGATTGCCACCTCGGCACCCCGCCCCAGGGGCCCAAGACCCGACTGGATCAACGCTGGGTGGACGAAACCGCATGAMTGDMNIPPLPQPTATTRMPAVTGELLKLLAPAEGLIGPGQTAKAEVLSLKQADQAFQLLLKLTLESGRQATVQATSAQPLPQGTSLAVTQPSASNLAIAVQQAVASSVATLTRIDTAQLPVGTLLQGKVLTSQVLPQLPGQAAVYRSLVSLLNTVQAGSTLDIDSPQPLRIGTLLSAQVQDVQTLKFVPLSNRQEQLAVSQQLVTQVSRQGSLDSLLTALQNLPASEDAGSELRAAVTRLLAGLPDVQQLSTPKGLAQAMVASGMFLESKLLAGQPPSLAPDMKGDLLKLIAQLTPALPASTNLSAIIAANTLAQALPNFVRSALGMLGQVSAKPQPTSFPLPSRLLKGQDEEGDLEHLLRLAAAAVSRLQSHQLSSLEQTGLTDDGRLMSTWQLEIPMRNLQDIVPLQVKFQREETPAREQPDERREPREAKQQLWKVELAFDMEPLGPLQIQAQLLGGSLSSQLWAQRPYTASLIESNLTALRERLVTCGLNVGDLDCHLGTPPQGPKTRLDQRWVDETANANANANANA
D1-35_00593636ccmACOG4133Cytochrome c biogenesis ATP-binding export protein CcmATTGACCAGTCCTCTCTTGCAAACCATCGGCCTCGCCTGCGAGCGAGACCTGCGGCTGCTTTTCGAAAATCTCGAATTGAGACTCTCGCGTGGCGATATGGTGCAAGTCAGTGGCCCCAACGGCAGCGGCAAGACCAGCCTGTTGCGCCTGCTGGCCGGGTTGATGCAACCCACCGCAGGCCAGGTGCTGCTCAACGGCCAGCCCCTCGACAGCCAGCGCAGCGAACTGGCCCGCAACCTGCTCTGGATCGGCCATGCCGCCGGTATCAAGGACCTGCTGACGCCGGAAGAAAACCTCAGCTGGCTGTGCGCCTTGCACCGGCCGGCCGGTCGCGAGGCGATCTGGCAGGCCCTGGCGGCGGTAGGTCTGAAGGGTTTCGAGGATGTGCCCAGCCACACACTGTCGGCCGGCCAGCAGCGCCGCGTGGCCCTGGCCCGGTTGTACCTGGACAGCCCGCCGCTGTGGATTCTCGACGAACCCTTCACCGCACTGGACAAGCAGGGCGTCGCCCAGCTCGAAGAACACCTGGCCCGGCATTGCGAGAGCGGCGGCATGGTGTTGTTGACGACCCATCACACGTTGACCCGGATGCCCGCCGGCTATCGCAGCATTGACCTGGGGAACTGGGCGGTATGAMTSPLLQTIGLACERDLRLLFENLELRLSRGDMVQVSGPNGSGKTSLLRLLAGLMQPTAGQVLLNGQPLDSQRSELARNLLWIGHAAGIKDLLTPEENLSWLCALHRPAGREAIWQALAAVGLKGFEDVPSHTLSAGQQRRVALARLYLDSPPLWILDEPFTALDKQGVAQLEEHLARHCESGGMVLLTTHHTLTRMPAGYRSIDLGNWAVNANANANANA
D1-35_00594669ccmBCOG2386Heme exporter protein BATGAGCGTCTTTGGCCTGTTGCTTGCCCGTGAAGCACGCCTGCTATGTCGGCGTCCGGCTGAACTGGCCAATCCGCTGGTGTTTTTTGCGATCGTCATCGCGCTGTTCCCTCTGGCGGTCGGTCCGGAGACTCAATTGTTGCAAACCTTGTCGCCAGGGCTGGTCTGGGTGGCCGCGCTTTTGTCGGTCCTGCTCTCGCTGGACGGGCTTTTCCGCAGTGATTTCGAAGACGGTTCCCTGGAACAGTGGGTCCTTTCGTCGCACCCCCTGGCCCTTCTGGTTTTGGCCAAGGTACTGGCACACTGGGTTTTTTCCGGCCTGGCGCTGGTGCTGCTCTCGCCGCTGCTTGCGATGATGCTGGGCTTGCCCGCCGCGTGCATGCCGGTGCTGCTGCTGTCACTGTTGCTCGGCACGCCGGTGCTGAGCCTGCTCGGCGCGGTGGGTGCGGCGCTGACGGTAGGGCTCAAGCGTGGCGGCTTGTTGCTGGCGCTGCTGATCCTGCCGCTGTACATCCCGGTACTGATCCTCGGCAGTGGCGCCTTGCAAGCGGCGCTGCAAGGCCTGCCGGCAACCGGTTATCTGCTGTGGCTTGGGAGCCTGAGCGCCCTGGCGATAACCCTGACACCCTTTGCAATAGCCGCTGGCCTGAAGATCAGCGTCGGCGAATAAMSVFGLLLAREARLLCRRPAELANPLVFFAIVIALFPLAVGPETQLLQTLSPGLVWVAALLSVLLSLDGLFRSDFEDGSLEQWVLSSHPLALLVLAKVLAHWVFSGLALVLLSPLLAMMLGLPAACMPVLLLSLLLGTPVLSLLGAVGAALTVGLKRGGLLLALLILPLYIPVLILGSGALQAALQGLPATGYLLWLGSLSALAITLTPFAIAAGLKISVGENANANANANA
D1-35_00595756ccmCCOG0755Heme exporter protein CATGAACTGGACCTGGTTTCATAAGCTCGGCTCACCCAAGTGGTTCTACGGCATCAGCGGCAAGATGCTGCCCTGGTTGAGTATCGCCGCCCTGTTGCTGATCGGCATCGGCCTGGTCTGGGGCCTGGCTTTCGCGCCGCCGGACTACCAGCAGGGCAACAGCTTTCGCATTATCTATATCCATGTTCCGGCGGCGATGCTCGCCCAGTCGGTCTACGTGATGCTGGCAATCTGCGGTGTGGTCGGGCTGGTGTGGAAGATGAAGCTGGCCGACGTCGCGCTGCAATGCGCAGCGCCCATCGGTGCCTGGATGACCGCCGTGGCGCTGGTCACCGGGGCAATCTGGGGCAAGCCGACCTGGGGTTCATGGTGGGTCTGGGATGCACGACTGACGTCGATGCTGATCCTGCTGTTCCTGTACTTCGGTCTTATTGCGCTGGGCAACGCCATCAGCAATCGTGACAGCGCGGCCAAGGCCTGCGCGGTGCTGGCGATTGTCGGCGTGATCAACATCCCGATCATCAAGTACTCGGTGGAATGGTGGAACACCCTGCATCAGGGCGCGACCTTCACCCTCACCGAAAAACCGGCGATGCCGGTCGAGATGTGGCTGCCGCTGCTGCTGACCGTGCTGGGTTTCTACTGCTTCTTCGGCGCGGTGTTGCTGCTGCGCATGCGCCTCGAAGTACTCAAGCGCGAAGCCCGCGCCAGTTGGGTGAAAGCCGAAGTACAGAACAGCCTGGAGGCCGCTCGATGAMNWTWFHKLGSPKWFYGISGKMLPWLSIAALLLIGIGLVWGLAFAPPDYQQGNSFRIIYIHVPAAMLAQSVYVMLAICGVVGLVWKMKLADVALQCAAPIGAWMTAVALVTGAIWGKPTWGSWWVWDARLTSMLILLFLYFGLIALGNAISNRDSAAKACAVLAIVGVINIPIIKYSVEWWNTLHQGATFTLTEKPAMPVEMWLPLLLTVLGFYCFFGAVLLLRMRLEVLKREARASWVKAEVQNSLEAARNANANANANA
D1-35_00596177hypothetical proteinATGAGTTTTGCGTCATTCGGCGACTTCCTCGCCATGGGCCATCACGGCCTGTATGTCTGGTCAGCCTATGGCATCTGCCTGGCGGTGCTGGCCCTCAACGTGGCGGCGCCGATCCTGGCCCGCAAGCGGTATCTGCAACAAGAGGCGCGTCGTCTGCGTCGGGAGAACGGTCAGTGAMSFASFGDFLAMGHHGLYVWSAYGICLAVLALNVAAPILARKRYLQQEARRLRRENGQNANANANANA
D1-35_00597462ccmECOG2332Cytochrome c-type biogenesis protein CcmEGTGAATCCGCTGCGCAAAAAACGTCTTGTCATCATCCTGGCGATTCTGGTCGGCGTCGGTGCGGCGGTCGGCCTCGCCCTCAGCGCCTTGCAACAGAACATCAACCTGTTCTACACCCCGACCCAGATCGCCAATGGCGAAGCGCCCAAGGGTACGCGCATCCGCGCTGGCGGCATGGTGGAGCAGGGCTCGCTGGCGCGTTCCGGTGATTCGCTGGACGTGAAGTTCAACGTCACCGACTTCAACAAGACCGTGACCATCAGCTATCGCGGGATCCTCCCGGACCTGTTCCGCGAAGGGCAGGGCATCGTTGCCCTGGGCAAACTCAACGCCGACGGCGTGGTGGTGGCCGACGAGGTACTGGCCAAGCACGATGAGAAATACATGCCGCCGGAAGTGACCAAGGCCCTGAAAGACAGCGGCCAGTCGGCGCCCGCTCCCGCTCCCGTGAAGGAGGGTTGAMNPLRKKRLVIILAILVGVGAAVGLALSALQQNINLFYTPTQIANGEAPKGTRIRAGGMVEQGSLARSGDSLDVKFNVTDFNKTVTISYRGILPDLFREGQGIVALGKLNADGVVVADEVLAKHDEKYMPPEVTKALKDSGQSAPAPAPVKEGNANANANANA
D1-35_005981989ccmFCOG1138Cytochrome c-type biogenesis protein CcmFATGAATGCCGGTCTGTTTATTCCTGAGCTGGGCCATCTGGCGATGATCCTGGCCCTGTGTTTTTCCCTGGTCCAGGCGGTTGTGCCGTTGCTCGGTGCCTGGCGTGGCGACCGCTTGTGGATGAGCCTCGCCCAGCCGGCGGCATGGGGGCAGTTTGCATTCATGCTGTTCGCGTTCGGCTGCCTGACCTACGCGTTCATGGCCGACGATTTTTCCGTGGCCTATGTCGCCAGCAACTCCAACAGCGCCTTGCCCTGGTACTACAAGTTCAGCGCGGTGTGGGGTGCCCACGAAGGTTCGTTGCTGCTCTGGGCGTTGATTCTTGCCGGCTGGACCTTCGCGGTGTCAGTGTTCTCCCGACAGTTGCCGCAAGTGATGCTGGCCCGGGTGCTGGCGGTGATGGGCATGATCAGCATCGGTTTCCTGCTGTTCCTCATCCTCACGTCAAACCCGTTCGAGCGCATCCTGCCGCAAGTGCCGATGGACGGCCGCGACCTCAACCCGTTGCTTCAGGACATCGGTCTGATCGTCCATCCGCCGATGCTCTACATGGGCTACGTCGGCTTTTCCGTGGCCTTCGCGTTCGCCATCGCCGCTTTGCTCGGTGGTCGCCTCGACGCCGCGTGGGCGCGCTGGTCGCGGCCATGGACCATTGTCGCCTGGGCCTTCCTCGGGATCGGCATCACACTCGGGTCGTGGTGGGCCTACTACGAACTCGGCTGGGGCGGCTGGTGGTTCTGGGACCCGGTGGAGAACGCCTCCTTCATGCCATGGCTGGTCGGCACGGCGCTGATCCACTCCCTGGCCGTCACCGAAAAACGCGGTGTGTTCAAGAGCTGGACCGTGCTGCTGGCGATCGCGGCGTTCTCGCTGAGCCTGCTCGGGACCTTCCTGGTGCGCTCCGGCGTGCTGACCTCGGTGCATGCCTTCGCCTCGGACCCCGAGCGTGGCGTATTCATCCTAATGTTCCTGCTGTTCGTGGTCGGCGGTTCGCTGACGCTGTTCGCCCTGCGTGCACCCGTGGTGAAAAGCCAGGTCGGCTTCAACCTCTGGTCCCGGGAGACCCTGTTGCTGGGCAATAACCTGGTGCTGGTGGTGGCGGCGTCGATGATCCTCCTCGGGACGTTGTATCCGCTGGTGCTCGATGCGTTGTCCGGCGCCAAGCTGTCGGTCGGCCCGCCATATTTCAACGCACTGTTCATTCCGTTGATGGCGATCCTGATGGTGGTGATGGCGATCGGTATGCTGGTGCGCTGGAAGGACACGCCGGTCAAATGGCTGCTGGGCATGCTCACGCCGGTGCTGCTCGGCACCGCCGCCCTGGCCGTGGTGGCGGGCATCGCTTATGGCGATTTCAACTGGGCGGTGCTGGCGACATTCGTGCTGGCGGCGTGGGTATTGCTGGCGGGCGTGCGGGATATTTTCGACAAGACCCGCCATAAAGGTCTTGTCAAAGGTCTGCCGACCCTGACCCGAAGTTACTGGGGCATGCAGCTCGCCCACCTGGGGATCGCCGTCTGCGCCCTCGGTGTGGTGCTGTCCAGCCAGAACAGCGCCGAACGCGACCTGCGCCTGGCACCGGGCGAGTCCATGGACCTGGGCGGTTATCAGTTCGTTTTCGAGGGCGCCAGGCATTTCGAAGGTCCGAACTTCACGTCCGACAAGGGCACCGTGCGGGTCATTCGCGACGGCCAGGAGATCACCGTGTTGCACCCGGAAAAACGCCTCTACACCGTACAGAACTCGGTGATGACCGAAGCCGGGATCGACGCCGGGTTCACCCGCGACCTCTACGTGGCGCTGGGCGAACCCCTCGGTGATGGCGCCTGGGCGGTACGCGTCCACGTCAAGCCGTTCGTACGCTGGATCTGGTTCGGTGGCCTGCTCACCGGCCTGGGCGGCGTATTGGCTGCGCTGGATCGACGCTATCGGGTCAAAGTGAAAACCCGGGTGCGCGAAGCCCTGGGCGTGACGGGAGCCACTGCATGAMNAGLFIPELGHLAMILALCFSLVQAVVPLLGAWRGDRLWMSLAQPAAWGQFAFMLFAFGCLTYAFMADDFSVAYVASNSNSALPWYYKFSAVWGAHEGSLLLWALILAGWTFAVSVFSRQLPQVMLARVLAVMGMISIGFLLFLILTSNPFERILPQVPMDGRDLNPLLQDIGLIVHPPMLYMGYVGFSVAFAFAIAALLGGRLDAAWARWSRPWTIVAWAFLGIGITLGSWWAYYELGWGGWWFWDPVENASFMPWLVGTALIHSLAVTEKRGVFKSWTVLLAIAAFSLSLLGTFLVRSGVLTSVHAFASDPERGVFILMFLLFVVGGSLTLFALRAPVVKSQVGFNLWSRETLLLGNNLVLVVAASMILLGTLYPLVLDALSGAKLSVGPPYFNALFIPLMAILMVVMAIGMLVRWKDTPVKWLLGMLTPVLLGTAALAVVAGIAYGDFNWAVLATFVLAAWVLLAGVRDIFDKTRHKGLVKGLPTLTRSYWGMQLAHLGIAVCALGVVLSSQNSAERDLRLAPGESMDLGGYQFVFEGARHFEGPNFTSDKGTVRVIRDGQEITVLHPEKRLYTVQNSVMTEAGIDAGFTRDLYVALGEPLGDGAWAVRVHVKPFVRWIWFGGLLTGLGGVLAALDRRYRVKVKTRVREALGVTGATAPGPT0000484_36DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000484-nrfE-K04016NANA
D1-35_00599537dsbECOG0526Thiol:disulfide interchange protein DsbEATGAAACGTTGGTTGATGGTGTTGCCGCTGGCGCTGTTTCTGGTGATGGCGGTGTTCTTGTACCGCGGGCTTTACCTGAACCCGTCCGAATTGCCCTCGGCGATGATCGGCAAACCGTTTCCGGAGTTCTCCCTGCCATCGGTACAAGGCGACAAGACGCTGACTCGCGCCGACCTGCTGGGCAAGCCGGCGCTGGTCAACGTGTGGGGCACCTGGTGCATTTCCTGCCGGGTCGAACATCCGGTGCTGAACAAACTGGCCCAGAACGGCGTGGTGATCTACGGCGTCAACTACAAGGACGTCAATGCCGATGCCTTGAAGTGGCTTGCCGAGTTCCACAACCCGTATCAACTGGACATCCGTGATGAGGAGGGCACCCTCGGCCTGAACCTGGGCGTCTACGGTGCGCCGGAAACCTTCTTTATCGACGCCAAGGGCATCATCCGGGACAAGTTCATCGGGGTGGTCGACGAGCAGGTCTGGCGCGAGAAGCTGGCCGGCAAATATCAGGCACTGGTGGACGAGGCCAAGCCATGAMKRWLMVLPLALFLVMAVFLYRGLYLNPSELPSAMIGKPFPEFSLPSVQGDKTLTRADLLGKPALVNVWGTWCISCRVEHPVLNKLAQNGVVIYGVNYKDVNADALKWLAEFHNPYQLDIRDEEGTLGLNLGVYGAPETFFIDAKGIIRDKFIGVVDEQVWREKLAGKYQALVDEAKPNANANANANA
D1-35_00600474ccmHCOG3088Cytochrome c-type biogenesis protein CcmHATGAGGCGCTGGTTAGCGGCTGCCGTCCTCGGCTTGAGCCTGGCGGGTGTGGCCCACGCCGCCATCGACACTTACGAATTTGCCAACGATGCCGAGCGCGAGCGGTTTCGCGAACTGACCAAGGAACTGCGCTGCCCCAAATGTCAGAACCAGGACATCGCCGACTCCAACGCGCCGATTGCCGCCGACCTGCGCAAGGAGATCTTCCGCATGCTCGGCGAGGGCAAGGACAACCAGCAGATCATCGACTTCATGGTTGATCGCTACGGTGAGTTCGTGCGCTACAACCCGGCGCTGTCTTCCAAGACCGCGCTGCTCTGGTTCGGCCCCGCCGGGCTGCTGCTCGGTGGTTTCGTCGTCATCGCGGTGATCGTGCGTCGCCGCCGGGTCCAGCGCACTGCCGCCCCGGACACGCTTTCTGTCGAAGAGCGCCAGCGCCTCGACCAACTGTTGGATAAAACCAAGCATGATTGAMRRWLAAAVLGLSLAGVAHAAIDTYEFANDAERERFRELTKELRCPKCQNQDIADSNAPIAADLRKEIFRMLGEGKDNQQIIDFMVDRYGEFVRYNPALSSKTALLWFGPAGLLLGGFVVIAVIVRRRRVQRTAAPDTLSVEERQRLDQLLDKTKHDPGPT0000486_25DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000486-nrfF-K04017NANA
D1-35_006011203hypothetical proteinATGATTGATTTCTGGCTCGCCGCAGGTCTGCTTCTCCTGGTTGCCCTGAGTTTTCTGTTGATCCCCGTGTTGCGTGGCCGCCGCGCCCAATTGGAAGAAGACCGTACTGCGCTGAACGTGGCGCTGTACCAGGAGCGCGTCGCCGAACTGCAGGCCGAGCGGGAGGAGGGCGTGCTCAACGCCGCGCAACTGGACACCGGTCGCGCCGAGGCCGCCCGTGAATTGCTCGCCGACACCGAGGGCGCCGAGGCGCCGCGCGAATCGCGACTGGGCAAGCCGTTGCCGCTGCTCGCGGCGGTATTGGTGCCGGTATTGGGCCTGGCGCTGTACCTGCATTTCGGCGCAAGCGACAAGGTCGAGCTGACCCGTGAATTCGCCCAGGCGCCCAAGTCCATGGAAGAAATGACTTTGCGCCTGGAGCGCGCGGTGGCGGCACAACCGGATTCCGCCGAAGGTTTGTATTTCCTCGGGCGGACCTACATGGCGCAGGATCGGCCGGCGGATGCGGCAAAGATCTTCGAGCGCACCGTGGCACTGGCCGGCCGCCAGCCCGAGCTGCTCGGACAGTGGGCCCAGGCGCAGTATTTTGCCGACGGCAAGAAATGGTCGGACAAGGTCCAGGCCCTCACCGACGAGGCGCTGAAGCTCGATCCGAAGGAGGTCACCAGCCTCGGCCTGTTGGGCATCGCCGCGTTCGAAGGCGAGCGCTATCAGGAGGCGATCGATTACTGGGGCCGCCTGCTGGCGCAGTTGCCCGAAGGCGACAAGTCGCGGGAGGCGTTGCAGGGGGGCATCACTCGCGCCACCGAGAAGCTGCAAGCCAATGGCGGCAAGGTTGCCCAAGCGCCGGTCGCCAAGCCTGCGGCGCTGCTCAAGGTCCGTGTCGAGCTCGATCCGGCCCTCAAAGCCAAGGTGCAGCCGGGCGACAGCGTGTTCATTTTCGCGCGCGCCGTGTCCGGCCCGCCCGCGCCGTTGGCGGCCAGGCGCCTGACCGTCGCCGACCTGCCGGCCAGCGTCGAGCTGGGTGACGCTGATGCGATGATGCCGCAGCTGAAACTGTCGAACTTCCCTGAAGTCCAACTGGTGGCGCGCATCTCCCGAGCCGGCCAACCCACCGCCGGCGAGTGGATCGGTCGCAGCCAGCCCCTGGCGAGCAGCACCACGGCGCTACAACAATTGATTATCGACAGTCCGGACCAATGAMIDFWLAAGLLLLVALSFLLIPVLRGRRAQLEEDRTALNVALYQERVAELQAEREEGVLNAAQLDTGRAEAARELLADTEGAEAPRESRLGKPLPLLAAVLVPVLGLALYLHFGASDKVELTREFAQAPKSMEEMTLRLERAVAAQPDSAEGLYFLGRTYMAQDRPADAAKIFERTVALAGRQPELLGQWAQAQYFADGKKWSDKVQALTDEALKLDPKEVTSLGLLGIAAFEGERYQEAIDYWGRLLAQLPEGDKSREALQGGITRATEKLQANGGKVAQAPVAKPAALLKVRVELDPALKAKVQPGDSVFIFARAVSGPPAPLAARRLTVADLPASVELGDADAMMPQLKLSNFPEVQLVARISRAGQPTAGEWIGRSQPLASSTTALQQLIIDSPDQNANANANANA
D1-35_00602408hypothetical proteinATGACCGCCATCGCTCGTATGACCCTGCTCACCCTCGTCCTGGGCCTGAGCGCTTGTGCGGTCCAGCGTCCACCGGAGCCTTCGGCGCCATTGCCACCGATTCCGCCTTCGACGCCGACCACCAAACCAGGCCCGTCGACCGCGCCCGGCAAACCCGTGACCCCGAACAAACCGGCCAAGCCGCTGCCGCGCACCTCCGCCAGTTTCGCTCCACCACCGGGCGGCAACAGCCACTGGGACGCCAAGCTCGGGGTCTATGTGCTGGACAAGCAGCCCAACACGTTCTATCGCCAGCGCACCTATTATCGTTGGAACAACGGCTGGAGCCGCTCCGTCAGCCCGAACGGCCCGTGGGAAGAAACCACTATCGAAGGCGTACCGGCGGGGCTCGGACAGAAGTTTCACTGAMTAIARMTLLTLVLGLSACAVQRPPEPSAPLPPIPPSTPTTKPGPSTAPGKPVTPNKPAKPLPRTSASFAPPPGGNSHWDAKLGVYVLDKQPNTFYRQRTYYRWNNGWSRSVSPNGPWEETTIEGVPAGLGQKFHNANANANANA
D1-35_00603876speE_1COG0421Polyamine aminopropyltransferaseATGACGACCACCCCGACCGGCGACTACCTGGAAACCCTCTACGAAGGCTATGGCCAGCGTTTTCGCATGGACAAGCTGCTGCACGAAGTGCGCACCGAGCACCAGCACCTGGTGATTTTCGAAAACCCGCGCATGGGCCGGGTCATGGCCCTGGATGGTGTCATCCAGACCACCGAAGCCGATGAATTCATCTATCACGAGATGCTCACCCACGTACCCATCCTCGCTCATGGCGCCGTCAAGCGCGTGCTGATCATCGGTGGCGGTGACGGCGGCATGCTCCGTGAAGTGACCAAGCACGTCGGCATCGAGCACATCACCATGGTCGAGATCGATGGTACGGTGGTGGACATGTGCAAGGAGTTCCTGCCCAACCACTCCAAGGGTGCCTACGACGACCCGCGGCTGAACCTGGTGATCGACGATGGCATGCGTTTCGTCGCCACCACCCAGGAGAAATTCGACGTCATCATTTCCGACTCCACCGACCCGATCGGCCCGGGCGAAGTGCTGTTCTCGGAAAACTTCTACCAGGCTTGCCATCGCTGCCTGAACGAAGGCGGGATCCTGGTGACCCAGAACGGCACGCCGTTCATGCAACTGGGCGAAGTGCAGACCACCGCCGGACGCTTGCACGGCCTGTTCGCCGACTGGCATTTTTACCAGGCCGCTGTGCCGACCTACATCGGCGGCGCCATGACCTTCGCCTGGGGCTCGACTGATACCGCTCACCGCAAGCTTTCTCGCGAAACCCTGCGCGAGCGCTTCATTGGCAGCGGTATCGTGACGCGCTACTACAACCCCGAGATCCACCTGGGCGCGTTCGCCATGCCGCAATATGTGCTGCAGGCGATCAACAAGCCGAGCAACGACTGAMTTTPTGDYLETLYEGYGQRFRMDKLLHEVRTEHQHLVIFENPRMGRVMALDGVIQTTEADEFIYHEMLTHVPILAHGAVKRVLIIGGGDGGMLREVTKHVGIEHITMVEIDGTVVDMCKEFLPNHSKGAYDDPRLNLVIDDGMRFVATTQEKFDVIISDSTDPIGPGEVLFSENFYQACHRCLNEGGILVTQNGTPFMQLGEVQTTAGRLHGLFADWHFYQAAVPTYIGGAMTFAWGSTDTAHRKLSRETLRERFIGSGIVTRYYNPEIHLGAFAMPQYVLQAINKPSNDPGPT0007750_1997DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007750-speE|SRM|SPEC_3|SPSD-K00797NANA
D1-35_006042094mdoB_1Phosphoglycerol transferase IATGGCAATCCCGGACGCCCTGAGTCAGCAGCGCACCACGCATCGCCTGCTGCAACCGACCGTCAAATCGCACCTGGCCTACACGTTGCTCTGTGCGTTGGTGATAATGGTCATGCTGAGCCTGCTGCGCGTTGCGCTGCTGGTCTACAACCGCGAGATGATCCTTGATACACCGGCCTCTACCTTCGTCGAAGCGTTCGCCAACGGCCTGCGTTTCGACGTGCGCCTGGTGGTCTACCTGTGCATCCCGCTGCTGCTGGCCCTGTTCAGCGCACGGGCGATGGCGGCACGTGGGTTCTTTCGTTTCTGGCTGACCGTCACGTCCAGCATCGCGCTGTTTCTCGGCTTGATGGAAATGGACTTCTACCGCGAGTTCCACCAGCGCCTCAACGGCCTGGTCTTCCAATATGTGCAGGAAGACCCGAAAACCGTCATGAGCATGCTCTGGTACGGTTTCCCAGTGGTGCGCTACCTGCTGGCCTGGGCCGGCGGCACGCTGATCCTGGCCCTGGCCTTCAAAGGTGCTGATCGCGCTACCCGGCCACGCGGGCCGTTCAGTGGCGGCAGCATCGGCACCCGCCAGATCGCCCCGTGGTATGGCCGCGTCGCGGTGTTCCTGGTCTGCCTGGTGGTGGCCGTCGCCGCCGCCCGTGGCACCTTGCGCCAAGGCCCGCCCCTGCGTTGGGGCGACGTCTATACCACCGATTCGAACTTCGCCAACCAGTTGGGCCTCAACGGTACTCTGTCGCTGGTGGCGGCGGCCAAGAGCCGAATGTCCGAACACCGTGACAATGTCTGGAAGGCCACCCTCGAATCGTCGCTGGCGCAGCAGACCGTGCGCGACATGCTGGTGATGCCCGACGACAAGCTCGTCGACGCCGGGACTGCCGCGGTAAGACGCGACTACACGCCGCCGGCCGACAAGACACTGCCGATCAAGAACGTGGTGGTGATCCTGATGGAAAGCATGGCCGGTCACTCGGTCGGCGCCCTGGGCGCGCCGGGTAACATCACGCCATACCTGGACAAGCTGTCCAAGGAAGGCCTGCTGTTCGACCGCTTCTTCTCCAACGGCACCCACACCCACCAGGGCATGTTTGCCACCATGGCGTGTTTCCCGAACCTGCCCGGTTTTGAATACCTGATGCAGACCCCGGAAGGCAGTCACAAGCTCTCGGGCCTGCCGCAACTGCTCAGCGCCCGGGACTACGACGATGTGTATGTCTACAACGGCGATTTCGCCTGGGACAACCAGTCGGGTTTCTTCAGCAACCAGGGCATGACCACGTTCATCGGACGCAATGACTATGTGAACCCGGTGTTCTCCGACCCGACCTGGGGCGTGTCCGACCAGGACATGTTCGACCGTGGCCTGATCGAGCTCAAGGCGCGCGAGAACGGCAAGCCGTTCTATGCGTTGTTGCAGACCCTGTCCAACCACACGCCTTACGCACTGCCGACGCCGTTGCCGGTCGAGCCGGTCACGGACCGTGGTCGCCTGAACGAACACTTGACCGCCATGCGTTACTCCGATTGGGCGCTGGGGCAGTTCTTCGAGAAAGCGCGCAAGGAGCCTTACTTCAAGGAAACCCTGTTTGTCGTGGTCGGCGACCATGGCTTCGGCAACGAGCGTCAGATCACCGAAATGGACCTTGGCCGCTTCAACGTGCCGATGTTGCTGATCGGCCCGGGCATCCAGGAAAAATTCGGCCAGCGCAGCCACACCGTGGGCACCCAGGTCGATATCGTCCCAACCATCATGGGACGGCTCGGCGGACAGGTGCGTAACCAGTGCTGGGGCCGTGACCTGTTGAACCTGCCGTCAGGCGACACCGGGTTTGGCGTGATCAAGCCGTCGGGCAGCGACCAGACCACCGCGATCATTCGCGACGACACGATCCTGGTACTGCCGGAAGAAAAGGCCATGCCAGCGAAGCTGTTCCGCTATCAGCTGGGGGCCAATCCGCATGCCGAGATCATTCCGGACGCACCTGACACCGCACAGATGAAACTCAAGCTCGAGGCGTTCCTGCAAACCGCGACCAAGAGCCTGCTGGATAACACCGCCGGTGTTGTTGACGGCAAGCCGGACTGAMAIPDALSQQRTTHRLLQPTVKSHLAYTLLCALVIMVMLSLLRVALLVYNREMILDTPASTFVEAFANGLRFDVRLVVYLCIPLLLALFSARAMAARGFFRFWLTVTSSIALFLGLMEMDFYREFHQRLNGLVFQYVQEDPKTVMSMLWYGFPVVRYLLAWAGGTLILALAFKGADRATRPRGPFSGGSIGTRQIAPWYGRVAVFLVCLVVAVAAARGTLRQGPPLRWGDVYTTDSNFANQLGLNGTLSLVAAAKSRMSEHRDNVWKATLESSLAQQTVRDMLVMPDDKLVDAGTAAVRRDYTPPADKTLPIKNVVVILMESMAGHSVGALGAPGNITPYLDKLSKEGLLFDRFFSNGTHTHQGMFATMACFPNLPGFEYLMQTPEGSHKLSGLPQLLSARDYDDVYVYNGDFAWDNQSGFFSNQGMTTFIGRNDYVNPVFSDPTWGVSDQDMFDRGLIELKARENGKPFYALLQTLSNHTPYALPTPLPVEPVTDRGRLNEHLTAMRYSDWALGQFFEKARKEPYFKETLFVVVGDHGFGNERQITEMDLGRFNVPMLLIGPGIQEKFGQRSHTVGTQVDIVPTIMGRLGGQVRNQCWGRDLLNLPSGDTGFGVIKPSGSDQTTAIIRDDTILVLPEEKAMPAKLFRYQLGANPHAEIIPDAPDTAQMKLKLEAFLQTATKSLLDNTAGVVDGKPDNANANANANA
D1-35_00605153hypothetical proteinATGGGCACTATTCTTATCATCATCCTGATCCTCCTGCTGATCGGTGGCCTTCCGGTCTTCCCGCACTCCAGAAGTTGGGGTTATGGCCCGTCCGGTATCATCGGCGTTGTGCTGGTCGTGCTGTTGATCTTGTTGTTACTTGGCAAGATATAAMGTILIIILILLLIGGLPVFPHSRSWGYGPSGIIGVVLVVLLILLLLGKINANANANANA
D1-35_00606810hcaB_13-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenaseATGCAAAATCGCATGATGATCACCGGTGCCGGCTCCGGCCTGGGCCGCGAAATCGCGCTGCGCTGGGCCCGTGAAGGCTGGCGCCTGGCCCTGTCCGATGTCAGCGAGCCCGGCCTTCAGGAAACCCTCAGGCTGGTGCGCGAGGTCGGTGGCGAGGGTTTCGTCCAGCGCTGTGACGTGCGCGACTACAGCCAGCTCACCGCATTCGCCCAGGCCTGCGAGGAGAAGCTTGGCGGCATCGACATCATCGTCAATAACGCTGGCGTGGCTTCGGGCGGGTTCTTCAGCGAGCTCTCGCTGGAGGATTGGGACTGGCAGATCGCAATCAACCTGATGGGGGTGGTCAAGGGCTGCAAGGCGTTCCTGCCACTGCTGGAAAAAAGCCGCGGCAAGATCATCAACATCGCCTCCATGGCGGCGCTGATGCAGGGGCCTGCCATGAGCAACTACAACGTGGCCAAGGCCGGCGTCGTGGCGCTGTCGGAAAGCCTGCTGGTCGAGCTGGCCCAGCAGGAAATCGGCGTACACGTGGTATGTCCGTCGTTCTTCCAGACCAACCTGCTGGACTCGTTCCGTGGCCCGACCCCGGCCATGAAGGCCCAGGTGGGCAAACTGCTGGAAAGCTCGCCGATCACCGCGGCGGACATTGCCGATTACATCTACCAGCATGTCGCCCAGGGTGAATTCATGATCCTGCCCCACGAGCAGGGGCGCATGGCCTGGGCCCTCAAACAGAAAAATCCGCAACTGCTGTACGACGAAATGACCGCCATGGCCGACAAGATGCGCGCCAAGGCACGGCAGGCCTGAMQNRMMITGAGSGLGREIALRWAREGWRLALSDVSEPGLQETLRLVREVGGEGFVQRCDVRDYSQLTAFAQACEEKLGGIDIIVNNAGVASGGFFSELSLEDWDWQIAINLMGVVKGCKAFLPLLEKSRGKIINIASMAALMQGPAMSNYNVAKAGVVALSESLLVELAQQEIGVHVVCPSFFQTNLLDSFRGPTPAMKAQVGKLLESSPITAADIADYIYQHVAQGEFMILPHEQGRMAWALKQKNPQLLYDEMTAMADKMRAKARQANANANANANA
D1-35_00607333hypothetical proteinATGCTCAATTACCTGTGGTTTTTTCTCGCCGCGCTGTTCGAGATCGCTGGCTGCTACGCCTTCTGGATGTGGTTGCGCCAGGGCAAGAGTGCCTGGTGGATCGTGCCGGCGCTGCTCAGCCTTGCGTTATTCGCCCTGTTGCTGACGCGCATCGAAGCCACTTATGCCGGTCGTGCCTACGCCGCCTACGGTGGCATTTACATCATCGCCTCGATCGGCTGGCTGGCCGTGGTGGAACGGGTGCGGCCGCTGGGTTCCGACTGGATCGGCGTGGCCCTCTGTGTCGTGGGGGCCAGCGTGATTCTGTTCGGTCCGCGTTTTTCGGGGCCATAAMLNYLWFFLAALFEIAGCYAFWMWLRQGKSAWWIVPALLSLALFALLLTRIEATYAGRAYAAYGGIYIIASIGWLAVVERVRPLGSDWIGVALCVVGASVILFGPRFSGPPGPT0029120_657DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029120-TC_SMR3-K09771NANA
D1-35_00608192csrATranslational regulator CsrAATGCTCGTATTAAGCCGTACCGTAGGTGAGTTGATTTCCATCGGTGATGAGATTTCCGTCCGTGTGCTGTCGATCAGCGGCGGCACCGTGCGCTTTGGCGTAGAAGCGCCCCGGCATGTGGAGGTTCATCGTTCCGAGGTCTACGACAGGATCCAGAGAAAAAAGGCCGGGTCCGACCGCAAGGTCGGTTAAMLVLSRTVGELISIGDEISVRVLSISGGTVRFGVEAPRHVEVHRSEVYDRIQRKKAGSDRKVGPGPT0015065_1263DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ENVELOPE_STRESS_SIGNALLING,PGPT0015065-csrA|zfiA-K03563NANA
D1-35_00609228hypothetical proteinATGCTGATCCCCTACGACCAACTCGAAGTCGATACGCTCACCCGCCTGATCGAGGATTTCGTCACCCGTGACGGTACTGACAATGGCGACGATACCCCGCTGGAAACCCGCGTCCTGCGGGTCAGGCAGGCCCTGACCAAAGGCCAGGCCATGATTGTCTTCGATCCCGAAAGCGAACAGTGCCAATTGATGCTCAAGCACGATGTGCCCAGACATCTGTTCGATTAAMLIPYDQLEVDTLTRLIEDFVTRDGTDNGDDTPLETRVLRVRQALTKGQAMIVFDPESEQCQLMLKHDVPRHLFDNANANANANA
D1-35_006101191hypothetical proteinATGATCAGCAAAATTCCCGAACCGGATCTCGCATACCTGCAGAAAGTCCTGTTGGAAATGCTCGCCATTCCCAGCCCGACCGGCTTCACCGATACCATCGTGCGGTACGTTGCCGAGCGACTCGAAGAGCTGGGCATCCCTTTCGAAATGACCCGGCGCGGCACGATCCGCGCCACCCTCAAGGGCCGCAAGAGCAGCCCTGACCGGGCCGTATCGGCTCACCTGGACACCATCGGCGCCTCCGTTCGCGCCATCAAGGACAACGGCCGCCTGACGCTGGCGCCGGTGGGCTGCTGGTCGAGCCGCTTTGCCGAGGGCAGCCGGGTCAGCCTGTTTACCGACACCGGGGTGATCCGTGGCAGCGTGCTGCCGCTGATGGCCTCCGGGCACGCGTTCAACACCGCCGTGGATGAGATGCCCATCAGTTGGGACCACATCGAACTGCGCCTGGACGCCTACTGCGCCACCCGCGCCGATTGCGAAACGTTGGGGGTGGGCATCGGCGACTATGTGGCGTTCGACCCCTTGCCGGAGTTCACCGAAAGCGGCCATATCAGCGCCCGTCACCTGGATGACAAGGCCGGGGTCGCCGCGTTGCTGGCGGCGCTCAAGGCGATTGTCGACAGCGGCGAGGAACTGTTGATCGACTGCCACCCGCTGTTCACCATCACCGAGGAAACCGGCAGCGGCGCGGCGGCCGCGCTGCCTTGGGACGTCAGCGAATTCGTCGGGATAGACATTGCACCGGTCGCGCCAGGCCAGCACTCCAGCGAACATGCGGTAAGCGTGGCCATGCAGGACTCGGGAGGCCCGTATGACTATCATCTGTCGCGACATTTGCTGAAGCTGGCCAAGGAGCACGAACTACCGGCGCGCCGCGACCTGTTTCGCTATTACTTCAGCGACGCCCATTCGGCGATTACCGCCGGGCACGACATCCGGACTGCCCTGCTCGCCTTCGGCTGCGACGCGACCCATGGTTACGAGCGCACCCACATCGACAGCCTGGCCGCGCTGAGCCGCCTGCTCGGTGCCTACATCCTGAGCCCTCCGGTATTTGCCAGCGACGCCCAACCGGCCCAGGGATCACTGGATCGCTTCAGCCATCAGATCGAGCACGATGCGCAGATGGAAAGCGACACCCGGGTGCCGTCGGTGGACAGCCTGATCGGGCACCGTTCGGATAGCTGAMISKIPEPDLAYLQKVLLEMLAIPSPTGFTDTIVRYVAERLEELGIPFEMTRRGTIRATLKGRKSSPDRAVSAHLDTIGASVRAIKDNGRLTLAPVGCWSSRFAEGSRVSLFTDTGVIRGSVLPLMASGHAFNTAVDEMPISWDHIELRLDAYCATRADCETLGVGIGDYVAFDPLPEFTESGHISARHLDDKAGVAALLAALKAIVDSGEELLIDCHPLFTITEETGSGAAAALPWDVSEFVGIDIAPVAPGQHSSEHAVSVAMQDSGGPYDYHLSRHLLKLAKEHELPARRDLFRYYFSDAHSAITAGHDIRTALLAFGCDATHGYERTHIDSLAALSRLLGAYILSPPVFASDAQPAQGSLDRFSHQIEHDAQMESDTRVPSVDSLIGHRSDSNANANANANA
D1-35_006111746gshABGlutathione biosynthesis bifunctional protein GshABATGAAACCCCACCCGACCCTTCACAACCAACGTCTCTTGCGTGGACAGCCACCGTCCTACGAACGCTTACAGGCGCGCCTGGCCGAAGATGGCAGCGAACTGGGCGCCGCTCCGATCGCCGTGCATTGCGGCTGGGGCCGCTTGCTCATCGGCCATACCTTTCCGGACCCGGCGACTCTTGCCCAGGAGCTGCTCAACGAGCAGCCCGGCGAGCGTGACATTGCCTTGTACGTCGCCGCGCCGCAGCAAGTGCTGGGGCTGGAACCGGCGCATCTGTTCCTTGACCCGTCGGATACCCTGCGCCTGTGGTTCAGCGATTATCGCCAAGCCACGCGAGTGTTTCGCGGCTTCCGGATCCGCCGGGCCCAGAGCGAGAGCGACTGGCAAGCCATCAACCAGCTCTACCAGGCTCGCGGCATGCTGCCCATCGATCCCGAGCGCCTGACCCCGCGTCACCAGGGCGGCCCGGTGTACTGGCTGGCCGAAGACGACGACACCGGCGCGGTGATCGGCAGCGTCATGGGCCTCAACCACCAGAAAGCGTTCAACGACCCGGAAAACGGCAGCAGCCTCTGGTGCCTGGCGGTGGACCCGCAATGTTCGCGGCCCGGCGTCGGCGAAGTGCTGGTGCGCCATCTCATCGAGCATTTCATGAGCCGTGGCTTGAGCTACCTGGACCTGTCGGTGCTGCACAACAATCGCCTGGCGAAAAATCTCTACGCCAAGCTCGGTTTCCGCAACCTTTCGACCTTCGCCATCAAACGCAAGAACGGCATCAACCAGCCGCTGTTCCTCGGGCCGGGGCCCGAGGCGCAATTCAACCCGTACGCGCGGATCATCGTCGAGGAAGCGCACCGGCGTGGCATCGAAGTGCAAGTGGATGACGCCGAGGCCGGGCTGTTCACCCTGGTGCATGGCAGCCGGCGGGTGCGCTGCCGGGAATCGCTGAGCGACTTGACCAGTGCGATCAGCATGACCCTGTGCCAGAACAAGAGCCTGACCCACAAGGTGCTGAAAAATGCCGGTCTGAACCTGCCGGCGCAACAGCTGGCGGGCAATGCCGACGACAACCTGGCGTTTCTAGATGAACACGAGCGCGTGGTGGTCAAGCCGCTGGACGGCGAACAGGGCCAGGGCGTGGCGGTGGACCTGCGGACCATCGAGGAAGTCCAGAACGCCATCGAAACAGCCCGACGCTTCGACAGCCGCGTGCTGCTGGAGAGCTTCCACGAAGGGCTCGACTTGCGAATTCTGGTGATCGGTTTTGAAGTGGTGGCGGCGGCGATCCGGCGCCCGGCAGAAGTGATCGGCGACGGCCAGCACACCATTGGCGCGCTGATCGAGGCGCAGAGCCGGCGGCGGCAGGCGGCTACCGGGGGTGAAAGCAAGATCCCGATGGATGCCGAGACCGAGCGAACGCTGAGCGCGGCCGGGTATGACTATGACAGCGTGCTGCCGGCGGGTGAGCATCTGTTTGTCCGGCGCACCGCAAACCTGCATACCGGCGGCGTGCTGGAAGACGTCACCGCGATTCTGCATCCGACCCTGGCCGATGCGGCGGTGCGCGCCGCGCGGGCGCTGGACATCCCGATGGTCGGCCTCGACCTGCTGGTACCGGCGGCCGATCAACCGGAGTACGTGTTCATCGAAGCCAACGAACGCGCCGGCCTGGCCAACCATGAACCGCAACCCACTGCCGAGCGCTTTGTGGATCTGTTGTTTCCCCATAGCCAGGCAGTGGTCTGAMKPHPTLHNQRLLRGQPPSYERLQARLAEDGSELGAAPIAVHCGWGRLLIGHTFPDPATLAQELLNEQPGERDIALYVAAPQQVLGLEPAHLFLDPSDTLRLWFSDYRQATRVFRGFRIRRAQSESDWQAINQLYQARGMLPIDPERLTPRHQGGPVYWLAEDDDTGAVIGSVMGLNHQKAFNDPENGSSLWCLAVDPQCSRPGVGEVLVRHLIEHFMSRGLSYLDLSVLHNNRLAKNLYAKLGFRNLSTFAIKRKNGINQPLFLGPGPEAQFNPYARIIVEEAHRRGIEVQVDDAEAGLFTLVHGSRRVRCRESLSDLTSAISMTLCQNKSLTHKVLKNAGLNLPAQQLAGNADDNLAFLDEHERVVVKPLDGEQGQGVAVDLRTIEEVQNAIETARRFDSRVLLESFHEGLDLRILVIGFEVVAAAIRRPAEVIGDGQHTIGALIEAQSRRRQAATGGESKIPMDAETERTLSAAGYDYDSVLPAGEHLFVRRTANLHTGGVLEDVTAILHPTLADAAVRAARALDIPMVGLDLLVPAADQPEYVFIEANERAGLANHEPQPTAERFVDLLFPHSQAVVNANANANANA
D1-35_006121773asnB_1COG0367Asparagine synthetase [glutamine-hydrolyzing] 1ATGTGCGGATTAGCTGGTGAGTTACGTTTCGATCAACAACCTGCGGACCTTGCGGCCGTAGAGCGCATCACCCACCACCTGGCCCCTCGCGGCCCTGACGCGTGGGGCTTTCATAGCCAGGGGCCGATCGCCCTCGGCCACCGGCGCCTGAAAATCATGGACCTGTCCGATGGTTCGGCCCAGCCGATGATCGACAATCAACTGGGCCTGTCCCTGGCGTTCAACGGCGCGATCTACAACTACCCGGAACTGCGCAGCGAACTCGAAGGCCTGGGCTACACCTTCTACTCTGGCGGCGACACCGAAGTGTTGCTCAAGGGTTATCACGCCTGGGGCGAAGCCCTGCTGCCCAAACTCAATGGCATGTTCGCCTTCGCCATCTGGGAACGCGACGCCAAGCGGCTGTTCATCGCCCGCGACCGTCTCGGCGTCAAGCCGCTGTACCTGTCGCGTACCGGCCAGCGCCTGCGCTTTGCCTCGGCGCTGCCGGCCCTGCTCAAGGGTGGCGACATCAATCCGGTGCTTGACCCGATCGCCCTCAATCACTATCTGAATTTCCACGCGGTCGTCCCGGCGCCACGCACCTTGTTGGCGGGCATTGAAAAACTGCCACCGGCGACCTGGATGCGCATCGAAGCGGACGGTCGCACCGAGCAGAAAACCTGGTGGACGCTGCCCTACGGCCCACGGTCCGATGAACAGAACCTCAACCTGGAAGACTGGATCGATCGCGTGCTCGACAGCACCCGCGAAGCCGTCGCCATTCGCCAGCGCGCCGCCGTCGACGTGGGCGTGCTGCTCTCGGGCGGCGTCGATTCGAGCATGCTCGTCGGCCTGTTGCGCGAAGTGGGCGTGGAAGACCTGTCCACCTTCTCCATCGGCTTCCAGGACGCCGGCGGCGAGCGCGGTGACGAGTTCCAGTATTCGGACCTGATCGCCAAGCACTACGGCACCCGCCATCATCAGTTGCGCATCGATGAGAAAGAAATCATCGAACAGCTGCCAGCGGCGTTTCGCGCCATGAGCGAGCCGATGGTCAGCCACGACTGCATCGCCTTTTACCTGTTGTCGCGGGAAGTCGCCAAGCACTGCAAAGTGGTACAAAGCGGCCAGGGCGCCGACGAGCTGTTCGCCGGTTACCACTGGTATCCGCAAGTGGACGGCGCCAGCGACCCGTACGCCGCCTATCGCGCCGCGTTCTTCGACCGCAGCTATGAAGAATATGCCGCGACCGTGCAGCCTGGATGGCTGACGGCCAACGACGCCGCCGGCGACTTCGTCAAGGAGCACTTCGCCCAGCCGGGCGCCGATGCGGCCGTCGACAAGGCCCTGCGCCTGGACAGCACCGTGATGCTGGTGGACGACCCGGTCAAGCGCGTCGACAACATGACCATGGCCTGGGGCCTGGAAGCGCGCACGCCGTTCCTCGACTACCGGCTGGTGGAGCTTTCGGCACGGGTGCCGGCGAAATTCAAGCTGCCCGATGGCGGCAAGCAGGTACTCAAGGAAGCGGCCCGCCGGGTGATTCCGAGCGAGGTCATCGATCGCAAGAAAGGTTATTTCCCGGTCCCGGGCCTCAAGCACTTGGAAGGCAACACCCTGGCCTGGGTTCGCGAACTGCTGCTGGACCCGAGCCAGGATCGCGGCTTGTTCAACCCGACCATGCTCGACCGTTTGCTGACCGATCCCAACGGCCAGCTCACGCCTTTGCGCGGCTCGCGGTTATGGCAATTGGCGGCGCTGAACCTGTGGCTCAGCGAGCAAGGAATCTGAMCGLAGELRFDQQPADLAAVERITHHLAPRGPDAWGFHSQGPIALGHRRLKIMDLSDGSAQPMIDNQLGLSLAFNGAIYNYPELRSELEGLGYTFYSGGDTEVLLKGYHAWGEALLPKLNGMFAFAIWERDAKRLFIARDRLGVKPLYLSRTGQRLRFASALPALLKGGDINPVLDPIALNHYLNFHAVVPAPRTLLAGIEKLPPATWMRIEADGRTEQKTWWTLPYGPRSDEQNLNLEDWIDRVLDSTREAVAIRQRAAVDVGVLLSGGVDSSMLVGLLREVGVEDLSTFSIGFQDAGGERGDEFQYSDLIAKHYGTRHHQLRIDEKEIIEQLPAAFRAMSEPMVSHDCIAFYLLSREVAKHCKVVQSGQGADELFAGYHWYPQVDGASDPYAAYRAAFFDRSYEEYAATVQPGWLTANDAAGDFVKEHFAQPGADAAVDKALRLDSTVMLVDDPVKRVDNMTMAWGLEARTPFLDYRLVELSARVPAKFKLPDGGKQVLKEAARRVIPSEVIDRKKGYFPVPGLKHLEGNTLAWVRELLLDPSQDRGLFNPTMLDRLLTDPNGQLTPLRGSRLWQLAALNLWLSEQGIPGPT0020150_4415DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARAGINE_DEGRADATION,PGPT0020150-asnB-K01953NANA
D1-35_006131986mnmC_1COG0665tRNA 5-methylaminomethyl-2-thiouridine biosynthesis bifunctional protein MnmCATGACGCCCATCCAGCACCACGCCCAACTCGACTGGGATGACCAGGGTCGCCCCCGCTCCCGGGTATTCGGCGACGTGTATTTCTCCGACCAGTCGGGCCTGGAAGAAACCCGCTACGTGTTCCTTGCGCAGAACAACCTGGCCGAGCGTTTCGCCGCGCTGGCGGAGCACGGACGACTGGTGATCGGCGAAACCGGATTTGGCACCGGGCTGAATTTTCTCTGCGCCTGGCAGCTGTTCGAAGAATGCGCACCGACCGGTGCGCGCTTGCATTTCGTCAGCGTCGAAAAATTTCCCCTGAGCCCCGAGGACCTGCGTCGGGCCCTTGCCCTGTGGCCGGAGCTCAAGTACCAGGCTGATCAATTACTTGAGCAGTACGTCGCGATTCACCAGGGTTTCCAGCGCATGACCCTGGCGGGCGGGCGAGTGACATTGACCCTGTTGATTGGCGATGCACTGGAGCAACTGCCGCAGCTGGACGGACAGATCGACGCCTGGTTCCTCGACGGTTTTGCCCCGGCGAAAAACCCGGAGATGTGGACCGCCGAGCTGTTCGCCGAACTGGCGCGGCTGGCAGCGCCCGGCGCCACCCTCAGCACCTTTACCAGCACCGGTTGGGTGCGCAGGCTGCTCAATGCGGCGGGCTTCAAGATGAAGCGCACCCCGGGCATCGGCCACAAGTGGGAAATTCTCCGTGGGGTATTTCTCGGCTGGCCGGACCAGGTGCCCAAACCCGCCCCGGCCAAGCCCTGGTACGCCCGCCCCGCCCCGCCGGCTGGCGAACGCCATGCGCTGGTGATCGGCGGCGGCCTGGCCGGTTGCGCCAGCGCGGCGAGTCTCGCGGCCCGCGGCTGGCGAGTGACCTTGCTGGAGCGTCACGCCGGGTTGGCCGAGGAAGCGTCCGGCAACCCCCAAGGCGTGCTGTACCTCAAGTTGTCGGCCCACGGCACGGCGTTGTCGCAGATGATCCTCAGCGGTTTCGGCTACACCCGGCGCTTGCTCGAAAACCTGCAACGGGGCCTCGACTGGGACGGATGCGGAGTCTTGCAGCTGGCCTTCAACGAGAAGGAAGGCCAACGCCAGCGCCAACTGGCCGAGGCGTTTCCCGCGGGTCTGCTGCGAATTGTCGATCGCGCCGAAGCCGAGGCGCAGTCTGGTATCGGCCTGGCCTGTGGCGGCCTGTTCTATCCCGAAGGCGGCTGGGTACACCCGCCAGCCCTGTGCCGCTGGCAAGCCTCGGCTGCTGCGATTACCGTGCAGCCACATCGCGAAGTGCTTGAACTGCGACGTGTCGACGGCCAATGGCAGGCTTGGGACGGCGAACGTTGCCTGGCCAGCGCCCCGGTGGTAATCCTCGCCAGCGCCGCCGAGATCAAACGCTTCGAACCGGCCGCCGGGTTACCCCTCAAGCGCATTCGCGGGCAGATCACGCGGCTGACGCAAACCACCCGCAGCCAAAGCCTGGCGACGGTGGTCTGCGCCGAAGGCTATGTGGCGCCGTCGCGAATGGCCGAGCACACCCTGGGCGCCAGTTTCGATTTCCACAGCGATGACCTGACCCCCACCGCCGCCGAGCACGCCGGCAACCTGCAAATGCTCGAAGAAATCTCCCACGATCTGGTGGACCGCCTGAACGCCGATACCCTCGATCCGCAGCGCCTCGAAGGCCGCGCGGCGTTCCGTTGCACCAGCCCCGATTACCTGCCGATTGTCGGACCGCTGGCTGACAGCCGGGCGTTCGTCGAAACCTACGCGGCCCTGGGCAAGGATGCGCGCCAAGTGCCGGACACGCCGTGTCCCTGGCTCGACGGCCTGTACGTCAACAGCGGGCATGGCTCCCGGGGCCTGATCACTGCGCCGCTGTCGGGCGAACTGATCGCCGCCTGGCTGGACAACGAACCGCTGCCACTGCCGCGAAGCGTCGCCGAGGCCTGCCACCCGAACCGGTTTGCCTTGCGGGCGGTGATTCGCGGCAAGGCCAATTGAMTPIQHHAQLDWDDQGRPRSRVFGDVYFSDQSGLEETRYVFLAQNNLAERFAALAEHGRLVIGETGFGTGLNFLCAWQLFEECAPTGARLHFVSVEKFPLSPEDLRRALALWPELKYQADQLLEQYVAIHQGFQRMTLAGGRVTLTLLIGDALEQLPQLDGQIDAWFLDGFAPAKNPEMWTAELFAELARLAAPGATLSTFTSTGWVRRLLNAAGFKMKRTPGIGHKWEILRGVFLGWPDQVPKPAPAKPWYARPAPPAGERHALVIGGGLAGCASAASLAARGWRVTLLERHAGLAEEASGNPQGVLYLKLSAHGTALSQMILSGFGYTRRLLENLQRGLDWDGCGVLQLAFNEKEGQRQRQLAEAFPAGLLRIVDRAEAEAQSGIGLACGGLFYPEGGWVHPPALCRWQASAAAITVQPHREVLELRRVDGQWQAWDGERCLASAPVVILASAAEIKRFEPAAGLPLKRIRGQITRLTQTTRSQSLATVVCAEGYVAPSRMAEHTLGASFDFHSDDLTPTAAEHAGNLQMLEEISHDLVDRLNADTLDPQRLEGRAAFRCTSPDYLPIVGPLADSRAFVETYAALGKDARQVPDTPCPWLDGLYVNSGHGSRGLITAPLSGELIAAWLDNEPLPLPRSVAEACHPNRFALRAVIRGKANNANANANANA
D1-35_006141512COG2326Polyphosphate:AMP phosphotransferaseATGTTCGAATCCGCTGAAATCGGTCACGTCGTCGACAAAGAAACCTATGAAGCCGAGGTGCCGGCATTGCGTGAAGCATTGCTCGAAGCTCAGTACGAGTTGCATCAGCAAGGCCGCTTCCCGGTCATCATCCTGATCAACGGCATCGAAGGCGCGGGCAAAGGCGAGACGATAAAGCTGCTCAACGAATGGATGGATCCGCGGCTGATCGAGGTGCGCACCTTCGACCAGCAGACCGACGAGGAACTGGCGCGGCCGCCGGCCTGGCGCTATTGGCGGATGCTGCCAGCGAAGGGGCGGATGGGGATCTTTTTTGGCAACTGGTACAGCCAGATGCTCCAGGGGCGGGTGCACGGCGAGTTCAAGGACCCGCGGCTCGATCAGGCGATCAACGGCGCCGAGCGTCTGGAGAAGATGCTCTGCGATGAGGGCGCGCTGATCTTCAAGTTCTGGTTCCACCTCTCCAAGAAGCAGATGAAGGCCCGCCTGAAAAGTCTCAAGGACGACCCGCTGCACAGCTGGCGGATCAGCCCCTTGGACTGGCAGCAGTCCCAGACCTACGACAAGTTCGTCAAATACGGCGAGCGCGTGCTGCGCCGCACCAGTCGCGACTACGCACCCTGGCATGTGATCGAAGGCGTGAATGCCTGTTATCGCAGCCTCGCGGTCGGGCAGATTTTGCTCGAAGGCCTGCGCCAGGCCCTGGACCGACCGAAGATCAGCCCGGAAAAAGTCAACGTGGCAGCATTGCCGGCACTGGACGACCAAGTGACTTTGCTCGACAGCCTCGACATGACGCTGCGCCTGGACAAGGCCGATTATGAGGAGCAGTTGATCACCGAGCAGGCCCGCTTCGCCGGGCTGCTGCGGGACAAGCGCATGCGCCGGCACGCCTTGGTGGCGGTGTTCGAAGGTAACGACGCGGCCGGCAAGGGCGGGGCGATCCGCCGGGTCGCGGCGGCGCTCGACCCGCGTCAGTACAGCATCGTGCCGATTGCCGCGCCCACCGAGGAAGAACGCGCCCACCCCTACATGTGGCGTTTCTGGCGGCACATTCCGGCGCGGGGCAAGTTCACCATGTTCGACCGCTCCTGGTACGGGCGGGTATTGGTGGAGCGGGTCGAAGGTTTTTGCAGCCGTGCCGACTGGCTGCGAGCCTACGGTGAAATCAACGACTTCGAAGAACAACTGGCCGATGCCGGCGTGGTGGTGGTGAAGTTCTGGCTGGCCATTGACAAGGAGACCCAACTGGAGCGCTTCCAGGAACGCGAGGAAATCCCGTTCAAGCGGTTCAAGATCACCGAGGATGATTGGCGCAACCGTGACAAGTGGGATGCCTATCGGTCGGCGGTCTGCGACATGGTCGATCGCACCAGCACCGAAATATCACCGTGGACCCTGGTCGAGGCGAACGACAAGCGTTGGGCCCGGGTCAAGGTATTGCGTACGCTCAACGACGCGCTGGAGGCCGCGTTCGAACGTTCCGCCAGGCAGGCGCGCAAAAAGAAATAGMFESAEIGHVVDKETYEAEVPALREALLEAQYELHQQGRFPVIILINGIEGAGKGETIKLLNEWMDPRLIEVRTFDQQTDEELARPPAWRYWRMLPAKGRMGIFFGNWYSQMLQGRVHGEFKDPRLDQAINGAERLEKMLCDEGALIFKFWFHLSKKQMKARLKSLKDDPLHSWRISPLDWQQSQTYDKFVKYGERVLRRTSRDYAPWHVIEGVNACYRSLAVGQILLEGLRQALDRPKISPEKVNVAALPALDDQVTLLDSLDMTLRLDKADYEEQLITEQARFAGLLRDKRMRRHALVAVFEGNDAAGKGGAIRRVAAALDPRQYSIVPIAAPTEEERAHPYMWRFWRHIPARGKFTMFDRSWYGRVLVERVEGFCSRADWLRAYGEINDFEEQLADAGVVVVKFWLAIDKETQLERFQEREEIPFKRFKITEDDWRNRDKWDAYRSAVCDMVDRTSTEISPWTLVEANDKRWARVKVLRTLNDALEAAFERSARQARKKKPGPT0002695_90DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002695-ppk2-K23753NANA
D1-35_006151185fadA_1COG01833-ketoacyl-CoA thiolaseATGCGTGAAGTGGTGATCGTCGACAGCGTACGGACCGGCCTGGCCAAGTCCTTTCGCGGCAAGTTCAACATGACCCGCCCGGACGACATGGCGGCCCATTGCGTCAACGCGTTGCTGGCGCGTAACGATATTGATCCGGCCAGCGTCGAGGACTGTATCGTCGGCGCCGGTTCCAACGAAGGCGCCCAAGGCTATAACATCGGGCGCAACGTGGCGGTGCTCTCGCAGCTGGGCATCGGCACGGCCGGGATGACACTGAACCGCTTCTGTTCCTCGGGCCTGCAAGCCATCGCCATCGCCGCCAACCAGATCGCCTCCGGCTGCAGCGAGATCATCGTCGCCGGTGGCGTGGAATCCATCAGCCTGACGATGAAAAGCGTCAACACTGACAACCTGATCAACCCCTTGCTCAAGGAGCAGGTGCCGGGGATCTACTTCCCCATGGGCCAGACCGCCGAGATCGTCGCGCGCCGTTACCAGGTCAGCCGCGATGAGCAGGACCGCTACGCCTTGCAGAGCCAGCAGCGCACTGCCCGGGCCCAGGCAGCCGGGCTGTTCGACGATGAAATCGTGCCGATGGCGGTGAAATACCGGGTCGAGGACAAGACCACCGGTGCGGTGCAGATCGTTGACGGGGTGGTTGATCGCGATGATTGCAACCGCCCCGATACCACGTATGAAAGCCTGGCCGGGCTGAAACCGGTGTTCGCCGAAGACGGTTCGGTGACGGCGGGCAACTCTTCGCAGTTATCCGACGGCGCCTCGATGACCCTGGTGATGAGCCTGGAAAAAGCCCTGGCGTTGGGGCTCAAGCCCAAGGCATTTTTCCGTGGCTTTACCGTGGCCGGCTGCGAGCCGGACGAGATGGGCATCGGCCCGGTGTTCTCGGTGCCTAGATTGCTCCAGGCCAAGGGTTTGCAGATCGGCGATATCGATTTGTGGGAGCTCAACGAAGCGTTTGCATCCCAGTGCCTGTACAGCCGCAATCGACTGGAGATAGATAACGAGAAATACAACGTCAACGGCGGCTCGATTTCCATCGGTCATCCGTTCGGCATGACCGGCTCGCGGCAGGTGGGGCATCTGGTGCGTGAGCTGCAACGGCGCAGTCTGCGCTACGGCGTCGTGACCATGTGCGTGGGCGGCGGGATGGGGGCAACGGGGTTGTTCGAGGCGGTTCGCTAAMREVVIVDSVRTGLAKSFRGKFNMTRPDDMAAHCVNALLARNDIDPASVEDCIVGAGSNEGAQGYNIGRNVAVLSQLGIGTAGMTLNRFCSSGLQAIAIAANQIASGCSEIIVAGGVESISLTMKSVNTDNLINPLLKEQVPGIYFPMGQTAEIVARRYQVSRDEQDRYALQSQQRTARAQAAGLFDDEIVPMAVKYRVEDKTTGAVQIVDGVVDRDDCNRPDTTYESLAGLKPVFAEDGSVTAGNSSQLSDGASMTLVMSLEKALALGLKPKAFFRGFTVAGCEPDEMGIGPVFSVPRLLQAKGLQIGDIDLWELNEAFASQCLYSRNRLEIDNEKYNVNGGSISIGHPFGMTGSRQVGHLVRELQRRSLRYGVVTMCVGGGMGATGLFEAVRPGPT0001565_2994DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0001565-fadA|fadI-K00632NANA
D1-35_00616315hypothetical proteinATGCCTGGAACGCGCGCCGAAGATACAGATGCTCCCAAGACGATTTACCGCAGCAGCGATCGGATCGTCCGGGAGAATGGCAAGTTCTATTTCGATACGCGCGAAGGCACCCAGGAAGGTCCGTTCGAAAGCCGCGAGGCTGCGGAGCGGGAGATAGCGGCGTATATCCAGCGGATGCTGCAGCTGACCAGGTTGCCAACTGAGGGCTCGATAGCTGGTGAAGAGAAGCTTCCGTGGCGAGGGGATTTATCCCCGCTGGGCCGCGAAGCGGCCCCACAAGGTCATCCAATCGGGCCTGATATACCCAGTCGCTGAMPGTRAEDTDAPKTIYRSSDRIVRENGKFYFDTREGTQEGPFESREAAEREIAAYIQRMLQLTRLPTEGSIAGEEKLPWRGDLSPLGREAAPQGHPIGPDIPSRNANANANANA
D1-35_00617963yhbECOG0697putative inner membrane transporter YhbEATGCACATATCGTCCGGTCGCTGGGTCTACGGCCTGTTCCTCGCCCTGCTGACCGCCTTGTTGTGGGGAATCCTGCCGATCAAGCTCAAGCAAGTGCTGCAGGTGATGGATCCGGTGACGGTGACCTGGTTTCGGCTGACGGTGTCCGGTGGCCTGCTGTTCATCTACTTGGCGGCAACCCGACGCCTGCCCAGCCGCAAGGTGCTCGGGCCCCGTGGCGGTTGGCTGGTAGGCATGGCGGTGCTGGGGCTGGTGGGCAACTACGTGCTGTACCTGATGGGCCTGAACCGCCTGAGCCCCGGCACCGCCCAACTGGTGGTGCAGATGGGGCCGATCATGCTGCTGGTCGCCAGCCTGTTTGTATTCAAGGAGCGTTTCAGCGTGGGGCAGGGCATTGGTTTGCTGGTGCTGCTGATCGGTTTTGCGCTGTTCTTCAATCAGCGCCTCGTCGAATTGCTGACATCCCTGAGCGAGTACACCGCTGGCGTTCTGTTGGTATTGCTGGCCTCGACCGTCTGGACGTTCTATGCCCTGGGCCAGAAGCAATTGCTGACGGTGTGGAATTCACTGCAGGTGATGATGGTGATCTACCTGTTCTGCGCGCTGTTGCTCACGCCCTGGGTGCATCCACTGGAAGCCTTGCAATTGAGCCCGCTGCAAGGCTGGCTATTGTTGGCCTGCTGCCTCAATACGCTGATTGCCTATGGCGCGTTCGCCGAGGCGTTGGCGCATTGGGAGGCTTCGCGGGTCAGCGCGACGCTGGCGATCACGCCGCTGGTGACCTTCGCGGCCGTGGCGATGGCTGCCTGGTGGTGGCCCGACTATGTGCATGCCGAGCAGATCAATCTGCTGGGTTACGGTGGGGCAGTGTTGGTGGTATTGGGGTCGGCGCTGGTGGCGCTGGGGCCATCGCTCATCGCCGGGCTCAGGGCCCGGCGCGAACGCCTGGCGCTCGGGCGTTAGMHISSGRWVYGLFLALLTALLWGILPIKLKQVLQVMDPVTVTWFRLTVSGGLLFIYLAATRRLPSRKVLGPRGGWLVGMAVLGLVGNYVLYLMGLNRLSPGTAQLVVQMGPIMLLVASLFVFKERFSVGQGIGLLVLLIGFALFFNQRLVELLTSLSEYTAGVLLVLLASTVWTFYALGQKQLLTVWNSLQVMMVIYLFCALLLTPWVHPLEALQLSPLQGWLLLACCLNTLIAYGAFAEALAHWEASRVSATLAITPLVTFAAVAMAAWWWPDYVHAEQINLLGYGGAVLVVLGSALVALGPSLIAGLRARRERLALGRNANANANANA
D1-35_006181395fumC_1COG0114Fumarate hydratase class IIATGAGCCGTATCGAAACCGACAGCCTTGGCCAGGTTGAAGTCCCGGATGAAGCCTATTGGGGCGCCCAGACACAGCGCTCGATGATCAACTTTGCCATTGGCAACGAACGCATGCCGCTGTCGGTGCTGCATGCCCTGGCGCTGGTCAAGAAAGCCGCCGCGCGGGTCAACGACCGCAACGGTGACTTGCCCGCCGACATCGCCCGCCTGATCGAACAGGCGGCCGACGAGGTGCTGGCCGGCCAGCATGACGATCAGTTTCCCCTGGTGGTCTGGCAGACCGGCAGCGGAACCCAGAGCAACATGAACGTCAACGAGGTGATCGCCGGGCGCGCCAACGAGCTGGCGGGCAACCCCCGTGGCGGCAAGAGCCCGGTGCATCCCAACGACCATGTCAACCGGTCCCAGAGCTCCAACGACTGCTTCCCCACCGCCATGCACATCGCCGCCGCCCAGGCCGTGTACCAGCAATTGCTGCCGGCCATCAGCGAGTTGTCCGGCGGCCTCGCGGAACTGGCGGCGCGCCACATGAAACTGGTCAAGACCGGCCGCACCCACATGATGGATGCCACGCCGATCACGTTCGGCCAGGAACTGTCCGCCTTCATTGCCCAACTCGACTACGCCGAGCGGGCGATCCGCGCTTCGTTGCCGGCGGTCTGCGAGCTGGCCCAGGGCGGCACGGCGGTGGGCACCGGGCTCAATTCGCCGCACGGTTTCGGCGAAGCGATCGCCGCTGAACTCGCGGCGCTGTCCGGGCTGCCGTTTGTCACGGCGCCGAACAAGTTCGCCGCACTGGCAGGTCATGAACCGTTGACCACGTTGTCCGGCGCGTTGAAAACCCTGGCCGTGACGCTGATGAAAATCGCCAATGACCTGCGCCTGCTGGGCTCCGGGCCACGGGCGGGATTTGCCGAAGTGAAATTGCCGGCCAACGAACCGGGCAGTTCCATCATGCCTGGCAAGGTCAACCCGACCCAGTGTGAAGCCTTGTCGATGCTGGCGTGCCAGGTATTGGGCAATGACGTGGCGATCGGTTTTGCCGCCAGTCAGGGACACTTGCAGTTGAACGTGTTCAAGCCGGTGATCATCCACAACCTGCTGCAATCGATCCGCCTGCTGGCCGATGGCTGCAGCAACTTCCAGCAGCACTGCATCGCCGGCCTCGAACCGGATGCCGAGCAGATGGCCGCGCACCTGGAGCGTGGCCTGATGCTGGTGACGGCGCTGAATCCGCATATCGGCTACGACAAGTCGGCGGAGATCGCCAAGAAAGCCTACGGCGAAGGGCTGACGCTACGGGAGGCAGCGGTGCAGCTGGGGTACCTGACCGACGAAGAGTTCGACGCCTGGGTCAGGCCGGAGAACATGCTGGAGGCGGGTGGCCAGGGCTGAMSRIETDSLGQVEVPDEAYWGAQTQRSMINFAIGNERMPLSVLHALALVKKAAARVNDRNGDLPADIARLIEQAADEVLAGQHDDQFPLVVWQTGSGTQSNMNVNEVIAGRANELAGNPRGGKSPVHPNDHVNRSQSSNDCFPTAMHIAAAQAVYQQLLPAISELSGGLAELAARHMKLVKTGRTHMMDATPITFGQELSAFIAQLDYAERAIRASLPAVCELAQGGTAVGTGLNSPHGFGEAIAAELAALSGLPFVTAPNKFAALAGHEPLTTLSGALKTLAVTLMKIANDLRLLGSGPRAGFAEVKLPANEPGSSIMPGKVNPTQCEALSMLACQVLGNDVAIGFAASQGHLQLNVFKPVIIHNLLQSIRLLADGCSNFQQHCIAGLEPDAEQMAAHLERGLMLVTALNPHIGYDKSAEIAKKAYGEGLTLREAAVQLGYLTDEEFDAWVRPENMLEAGGQGPGPT0001650_2664DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001650-fumC-K01679NANA
D1-35_00619522hypothetical proteinATGACCCGTCTTCGTGCCATCTGTACCGCAGTTGCTCTGGTGTGTGCCAGCGGCCCTGTTCTTGCCGATACCGCCAGCCACAACGCCAGTGCCGAAGCGTTCCTGACCCTGGCGCACGCTGACAAGCTGGGTACTCCGGTGTACATGCAGGTACAGCAGATGTTTGCCCAGCGCTTTGAGCAGACCAAGGCTCCCGAGTCGAAAAAAGCCACCCTGGAAACCTACCAGGCCAAGGCCAATGCCGCCCTGGACCAGGCGATCGGCTGGAACAAGCTCAAGCCGGACATGGTCAAGCTCTACACCTCCAACTTCAGCGAATCGGAGCTCAAGGACCTGGTGTCCTTCTATCAGTCTCCCTTGGGCAAGAAGGTCCTGGAAAAAATGCCGCAGCTGACCCAGCAATCGGCGCAACTGACCCAGGCCAAGCTGGAAAGCGCGGTGCCGGTGGTCAACAAGCTGCTGGCCGACATGACCGCCGAGCTTGAGCCGAAAGCCGCCGCCCCGGCCAAGAAAAAGCCATAAMTRLRAICTAVALVCASGPVLADTASHNASAEAFLTLAHADKLGTPVYMQVQQMFAQRFEQTKAPESKKATLETYQAKANAALDQAIGWNKLKPDMVKLYTSNFSESELKDLVSFYQSPLGKKVLEKMPQLTQQSAQLTQAKLESAVPVVNKLLADMTAELEPKAAAPAKKKPNANANANANA
D1-35_00620300bolACOG0271DNA-binding transcriptional regulator BolAATGAGCATGCAACAACGCATTGAATCGACCCTCGGGCTGCTGCAGCCCGAGCACCTGCAAGTGCTCGATGAAAGCCACATGCACAGCCGTGGGCTTGAGACCCACTTCAAGGCAGTGGTGGTCAGCCAGCAGTTCGAGGGGCTCAATCGGGTCAAGCGACACCAGAAGGTCTACGGTACGTTGGGCGAGCTGATGGGCGAATTCCATGCGCTGGCGCTGCACACCTACACGCCTGAAGAATGGGCCCAGGTCGACGCAGCCCCGGCGTCGCCGACCTGTGCCGGCGGCAGTAAGCACTGAMSMQQRIESTLGLLQPEHLQVLDESHMHSRGLETHFKAVVVSQQFEGLNRVKRHQKVYGTLGELMGEFHALALHTYTPEEWAQVDAAPASPTCAGGSKHPGPT0014930_837DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014930-bolA-K05527NANA
D1-35_00621942hypothetical proteinATGACACCACCGATTGTCGTGGCGGCACTGTATAAGTTCGTCACGCTGGAAGATTACGTCGAGCTGCGTGAGCCCCTGCTCAAGGCGATGCTCGACAACGGCATCAAAGGAACCTTGCTGATTGCCGAGGAAGGCATCAACGGCACCGTTTCCGGCACCCGCGAAGGCATCGACGGGCTGATGGCCTGGCTCAAGAACGATCCGCGCATGGACGACATCGACCACAAGGAGTCGTACTGTGACGAGCAGCCGTTCTACCGCACCAAGGTCAAGCTCAAGAAAGAGATCGTTACCCTCGGCGTAGAAGGCGTGGACCCGAACAAGCGGGTCGGCACCTATGTCGAACCGCAAGACTGGAACGCGCTGATCAGCGATCCGGAAGTGCTGCTGATCGACACGCGCAACGATTATGAAGTCTCCATTGGCACCTTCGAAGGCGCGATCGATCCCAAGACCGCCAGCTTCCGTGAGTTTCCCGAGTACATCAAAGCCAACTTCGACCCGGCCCGGCACAAGAAAGTCGCGATGTTCTGCACCGGTGGCATTCGCTGTGAAAAAGCCTCGAGCTTCATGCTCAATGAGGGTTTCGAAGAGGTCTACCACCTAAAGGGCGGGATTCTCAAATACCTCGAAGAGGTGCCCCAGGAAGAGACCAAATGGCGCGGTGACTGCTTTGTCTTCGACAACCGCGTGACCGTGCGCCACGATCTCAGCGAAGGCGACTACGATCAGTGCCATGCCTGTCGCACCCCGATCAGCGCAGAGGATCGTGCTTCGGAGCATTATTCGCCTGGCATCAGTTGCCCGCATTGCTGGGACAAACTGAGCGAAAAGACCCGTCGCAGCGCCATCGACCGGCAAAAGCAGATCGAACTGGCCAAGGCGCGCAACATGCCGCATCCGATCGGCTACAACTACAAGCAATCATCTTCCGAGGCTTGAMTPPIVVAALYKFVTLEDYVELREPLLKAMLDNGIKGTLLIAEEGINGTVSGTREGIDGLMAWLKNDPRMDDIDHKESYCDEQPFYRTKVKLKKEIVTLGVEGVDPNKRVGTYVEPQDWNALISDPEVLLIDTRNDYEVSIGTFEGAIDPKTASFREFPEYIKANFDPARHKKVAMFCTGGIRCEKASSFMLNEGFEEVYHLKGGILKYLEEVPQEETKWRGDCFVFDNRVTVRHDLSEGDYDQCHACRTPISAEDRASEHYSPGISCPHCWDKLSEKTRRSAIDRQKQIELAKARNMPHPIGYNYKQSSSEAPGPT0013330_1442DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013330-UPF0176_protein-K07146NANA
D1-35_00622636hypothetical proteinATGGCGTCGCGCCTGCTGTATGTGATGGACCCGATGTGTTCCTGGTGCTGGGGCTTCGCGCCAGTGGCCGAAGCGTTGGCCGAGCAGGCGCAGGCGGCGGGCGTGGAGTTGCACCTGGTGGTGGGCGGCTTGCGCACCGGCAGCGGTTCGGCTCTCGAGCCGACCACCCGACGCTACATTCTCGAGCACTGGCAGGCCGTTACCCAAGCCACCGGCCAGCCGTTCAAGCTTGAAGGCGCGTTGCCGGACGGTTTTGTCTACGACACCGAACCCGCATGCCGCGCCTTGGTGACGGCCCGCAGCCTGGCGCCGGACCTGGCCTGGCAGTTACTGAAGCTGATCCAGCAGGCGTTTTATGTGCAAGGCCGCGACGTGACCCACGCCAGCGTCCTGGTGGAACTGGCCGAACAGGCCGGGCTGCCCCGCATCGAGTTTGCCGCGGCATTCGACCGCGCCGACCAGCATGCCGCCACCGCCGCCGACTTCACCTGGGTGCAAGACCTTGGCATCGCCGGATTCCCTACGATGCTGGCCGAACGTGACGGCCAATTGGCCCTGCTGACCAACGGCTACCAACCGTTGGACCAGCTGTCGCCATTGCTGGGGCGCTGGCTGGAGCGTGCGGCCTGTGCCTGAMASRLLYVMDPMCSWCWGFAPVAEALAEQAQAAGVELHLVVGGLRTGSGSALEPTTRRYILEHWQAVTQATGQPFKLEGALPDGFVYDTEPACRALVTARSLAPDLAWQLLKLIQQAFYVQGRDVTHASVLVELAEQAGLPRIEFAAAFDRADQHAATAADFTWVQDLGIAGFPTMLAERDGQLALLTNGYQPLDQLSPLLGRWLERAACANANANANANA
D1-35_006231830bmrACOG1132Multidrug resistance ABC transporter ATP-binding/permease protein BmrAGTGCCTGACCTGCCCGATGATGACGCATCGACCTCGCGGCGCATCGACCGGTTGAGCTGGACGGAAATCCGTCGTCTGGCCCTTACGCACAAAAAAGCCCTGTGGATCGCCAACGGCGTCGCCGTGCTGGCGACGCTGTGCAGCGTGCCGATTCCGTTGTTGCTGCCGCTGCTGGTGGACGAAGTGCTGCTGGGCCACGGCGACGCGGCATTGAAGGTCATGAATCAGGCGTTGCCGAGCGCTTGGCAGAGCGCTGCCGGCTACATCGGATTGATGTTGCTGGTGACCTTGGCCCTGCGCTGCGGCGCCTTGCTGTTCAACGTGTTGCAGGCGCGGCTGTTCGCCAGTCTCGCCAAGGACATCGTCTATCGCATCCGCATCCGGTTGATCGAGCGCCTCAAGCGGATTTCCCTTGGCGAATACGAAAGCCTGGGCAGCGGCACGGTGACGACGCACCTGGTCACCGACCTGGACACCCTCGACAAATTTGTTGGCGAAACCCTGAGCCGGTTCCTGGTGGCGATGCTGACCCTGGTAGGCACCGCGGGCATCCTGGTATGGATGCATTGGGAACTGGCGCTGCTGATCCTGCTGTTCAACCCGCTGGTGATCTACGCCACGGTGCAGTTGGGCAAACGGGTCAAGCACCTCAAGAAGCTGGAGAATGACAGCACCTCGCGCTTCACCCAGGCCCTGACCGAAACCCTGGATGCGATCCAGGAAGTGCGCGCCGGCAATCGCCAGGGGTTTTTCCTTGGACGCCTGGGCACGCGCGCCCGGGAAGTGCGCGACTACGCGGTGAGCTCGCAGTGGAAAACCGACGCCTCGAACCGCGCCAGTGGTTTGCTGTTCCAGTTCGGCATCGATATTTTTCGCGCGGCGGCCATGCTGACCGTGCTGTTCTCCGATCTGTCGATCGGCCAGATGCTCGCGGTGTTCAGCTACCTGTGGTTCATGATCGGCCCGGTCGAGCAACTGCTTAACTTGCAGTACGCCTACTACGCGGCGGGTGGGGCATTGAACCGTATCAACGAACTGCTGGCGCGCGCCGATGAGCCCCAGTACAGCGGTGGCGTCGATCCTTTCAAGGGGCGCGACACCGTGGGCATCGACATCCAGGGGCTCAGCTTCGGTTACGGCGAGGAAAAGGTGCTCGACCAATTGAACCTGTCCATTTCGCCGGGGGAAAAGGTCGCTATCGTCGGGGCCAGCGGGGGCGGCAAAAGTACCCTGGTGCAACTGCTGTTGGGGCTCTACACACCACAGTCCGGCAGCATCCGCTTCGGCGGTGCCACCCAAGAGGAAATCGGCTTGGAAACCATCCGCGAAAATGTCGCGGTGGTCCTGCAACATCCGGCGCTGTTCAACGACACGGTGCGCGCCAATCTGTCCATGGGCCGCGAGCGCAGCGACGAGGCGTGCTGGCGAGCCCTGGCGATTGCCCAACTGGACGAAACAGTGCGGGCGCTTCCGATGGGGCTGGAGAGCATCGTCGGGCGTTCCGGTGTGAGGCTGTCGGGCGGGCAACGCCAGCGACTGGCGATCGCCCGTATGGTCCTGGCCGATCCGCGCGTGGTGATTCTCGACGAAGCCACGTCCGCGCTGGACGCGGCTACGGAATACAACCTTCACCAGGCGTTGGCGCGGTTCCTGAGCGGGCGCACCACGTTGATCATCGCCCATCGGTTGTCGGCGGTGAAACAGGCTGACCGGGTATTGGTGTTCGACGGCGGGCAGATCGCCGAAGACGGCGACCACTTGCAGCTGATTGCCGAGGGTGGCCTGTACGCCCGGCTCTACGGTCATTTGCAACAAATACAGCGACCTTGAMPDLPDDDASTSRRIDRLSWTEIRRLALTHKKALWIANGVAVLATLCSVPIPLLLPLLVDEVLLGHGDAALKVMNQALPSAWQSAAGYIGLMLLVTLALRCGALLFNVLQARLFASLAKDIVYRIRIRLIERLKRISLGEYESLGSGTVTTHLVTDLDTLDKFVGETLSRFLVAMLTLVGTAGILVWMHWELALLILLFNPLVIYATVQLGKRVKHLKKLENDSTSRFTQALTETLDAIQEVRAGNRQGFFLGRLGTRAREVRDYAVSSQWKTDASNRASGLLFQFGIDIFRAAAMLTVLFSDLSIGQMLAVFSYLWFMIGPVEQLLNLQYAYYAAGGALNRINELLARADEPQYSGGVDPFKGRDTVGIDIQGLSFGYGEEKVLDQLNLSISPGEKVAIVGASGGGKSTLVQLLLGLYTPQSGSIRFGGATQEEIGLETIRENVAVVLQHPALFNDTVRANLSMGRERSDEACWRALAIAQLDETVRALPMGLESIVGRSGVRLSGGQRQRLAIARMVLADPRVVILDEATSALDAATEYNLHQALARFLSGRTTLIIAHRLSAVKQADRVLVFDGGQIAEDGDHLQLIAEGGLYARLYGHLQQIQRPNANANANANA
D1-35_006242460hypothetical proteinATGAAGCAAAAGCGGACTCTCGGAACGCCTCGGTTGTTGGGCATCGTCTGGCCCTTTATCGCCGTCGTGCTATTTCAAGCATTGCTAGGAGGCGTCAGCCTTTATGTCCTGTCCGCAGTTCGCGGCTACGTGGCGGGGGAGAGCCTTTGGTCCAAGGGCCAGAAGGACGCTATCTATTACCTCAATCTTTACGCCGACAGCCGTGACGAGGCGATCTTTCGCAAATACCAGCAGGCCATCGCCGTGCCCGAGGGTGGACACGATCTACGCGTGGCCCTGGATCGCCAGCCGCCGGATCTCGAAGCGGCGCGGGTCGGGATTCTCCAGGGCGGCAATCATCCGGACGACGTGGCCAGCCTGATCTGGTTGTACCTCAACTTTCGCCATTTCAGTTATCTGGAAGAAGCCATCGATCTGTGGACGGTTGGCGATGGTTACCTGACCGAACTGGATAACGTCGCCCGGCAGATGCATCGCAGCATCACGGTGGGAGAAGCCTCCGAGGCCGATGTCCGCGGCTGGAAAGCGCAGATTTTCGCCATCAACGATTCCGTCACCCCTGCCGCCAAGGCATTCAGCGACGCGCTGGGCGAAGGATCGAGATTTATCCTGCGCCTGTTGCTGGTGACCAATTTCGCCACCGCGCTGGGATTGATCGTGCTGGCGCTGTTGCGCACGCACAAGTTACTGGCACAGCGGCAGGTCTTCGCCAATGCGCTGCAACTGGAGAAGGAACGGGCGCAGATCACCTTGCAATCGATTGGCGATGGCGTGATCACCACCGACGTCGAAGGCGCCATTGCGTACATGAATCCCGCTGCCGAAGCGATGACCCACTGGAAAGCCGAGCACGCCACGGGGCTGCCCCTGGCGGCGCTGTTCAATCTGCTTGACGACAATGCCCAGACCGAAGGCCTGACCTTGATCGAGCACATACTCAGCGGACGACTCGGCGGCGGCAGCGAGCATTCCAAGCTGATCCAGCGACTTGACGGCAGCACGGTGTCGGTGACCCTGGTGGGGGCGCCGATCCGTCATGCCGGCAAAGTCAGCGGCGCGGTGCTGGTGCTGCATGACATGACCCAGGAGCGCCAGTACATTGCCAACCTGTCATGGCAGGCTACCCACGACGCCCTGACCGGCCTGGCGAACCGCCGGGAATTCGAATACCGCCTCGAGCAGGCCCTGCACAACCTCACGCGCCAGGTCGGGCGCCACGCGTTGATGTTTCTCGACCTGGACCAATTCAAACTGGTCAACGACACCTGCGGCCACGCGGCGGGCGACGAGTTGCTGCGACACATCTGTGCCTTGCTGCAATCGGGGTTGCGGGAAAACGACACGCTTGCCCGGCTGGGCGGGGACGAGTTCGGCATCCTGCTGGAAAACTGCTCGCCCGAGGCGGCGGAAAAGATCGCCGAAGGCCTGCGCCAGACCGTGCAGAACCTGCATTTTGTCTGGAAAGGCCGGCCATTCGTGACCACTGTGAGCATCGGCCTGGTGCACATCGCCCAAAGCCCGACGACGCTGGAAGCCTCATTGCGTGCCGCCGACATGGCCTGCTATATGGCCAAGGAGAAAGGGCGCAACCGGGTCCAGGTCTACCATGCCGACGACTCGGAGTTGTCCCTGCGTTTTGGCGAAATGGCCTGGGTGCAGCGCTTGCACATGGCGCTGGAGGAAAACCGTTTCTGCCTCTACGCCCAGGAAATCGCCGCGTTGGGCCCGGGTGACCACGATGGCGGACATATCGAGATCCTGTTGCGCCTGCATGACGAGGCAGGGCGAATGATCCTGCCGGACAGCTTCATTCCGGCGGCGGAGCGTTACGGCTTGATGACCTCGCTGGACCGTTGGGTCGTGGAGAATGTGTTCAAGATCATTCGCCAATGCCTGAATGAGTCGCGGCAAGGTCCGTTGGCCATGTGTGCCATCAACCTGTCAGGCACCACCATTGGCGATCAGGCGTTCCTGGATTTCCTGCGTAAACAGTTCGCTGCCTACTCGATTCCCCCGGAAATGATTTGTTTTGAAATCACCGAGACCAGTGCCATTTCCAATCTGGGCAGCGCGATTCGTTTTATAAACGAACTCAAGAGCTTGGGTTGTTACTTCTCGCTGGATGACTTTTGTGCCGGAATGTCTTCATTCGCTTACTTGAAACATTTACCTGTAGACTTCCTGAAGATCGATGGGAGTTTCGTAAAGGATATGCTGGACGACCCGATTAACCGGGCAATGGTCGAGGTGATCAATCACATCGGCCATGTCATGGGGAAGCGCACCATTGCCGAGTTCGTGGAAACGACTCAGATCGAACAGGCATTGTTGGAAATCGGCGTGGATTTCGCCCAGGGTTATGTCATCGAGCGTCCACAACTGTTTACTTGTGACACGTTGCAATGCCGGCCGGCCAGGCCTCAGCCATTGTTGTTCAAGGCCCCCGGCACGTTTCGCTGAMKQKRTLGTPRLLGIVWPFIAVVLFQALLGGVSLYVLSAVRGYVAGESLWSKGQKDAIYYLNLYADSRDEAIFRKYQQAIAVPEGGHDLRVALDRQPPDLEAARVGILQGGNHPDDVASLIWLYLNFRHFSYLEEAIDLWTVGDGYLTELDNVARQMHRSITVGEASEADVRGWKAQIFAINDSVTPAAKAFSDALGEGSRFILRLLLVTNFATALGLIVLALLRTHKLLAQRQVFANALQLEKERAQITLQSIGDGVITTDVEGAIAYMNPAAEAMTHWKAEHATGLPLAALFNLLDDNAQTEGLTLIEHILSGRLGGGSEHSKLIQRLDGSTVSVTLVGAPIRHAGKVSGAVLVLHDMTQERQYIANLSWQATHDALTGLANRREFEYRLEQALHNLTRQVGRHALMFLDLDQFKLVNDTCGHAAGDELLRHICALLQSGLRENDTLARLGGDEFGILLENCSPEAAEKIAEGLRQTVQNLHFVWKGRPFVTTVSIGLVHIAQSPTTLEASLRAADMACYMAKEKGRNRVQVYHADDSELSLRFGEMAWVQRLHMALEENRFCLYAQEIAALGPGDHDGGHIEILLRLHDEAGRMILPDSFIPAAERYGLMTSLDRWVVENVFKIIRQCLNESRQGPLAMCAINLSGTTIGDQAFLDFLRKQFAAYSIPPEMICFEITETSAISNLGSAIRFINELKSLGCYFSLDDFCAGMSSFAYLKHLPVDFLKIDGSFVKDMLDDPINRAMVEVINHIGHVMGKRTIAEFVETTQIEQALLEIGVDFAQGYVIERPQLFTCDTLQCRPARPQPLLFKAPGTFRPGPT0023624_1603DIRECT 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
D1-35_00625804hypothetical proteinGTGATCGACACATTCAACCGAACAGGCCCGCTCATGGACGCCGCCAGTTATCCACAATGGGCACAGCAGCTCATTGCCGACTGCAGCGAGAGCAAGCGCCGGGTTGTCGAACACGAACTGTATCAACGCATGCGCGACAACAAGCTCAGCGCCAAGACCATGCGCCACTACCTCATCGGTGGTTGGCCGGTCGTCGAACAGTTCGCCTTGTACATGGCACAGAACCTTACCAAGACCCGCTTCGCCCGCCACCCCGGCGAGGACATGGCGCGTCGTTGGTTGATGCGCAACATTCGTGTCGAGCTCAATCATGCCGATTATTGGGTCAACTGGAGCGCTGCTCACGGCGTGACGCTCGAAGACCTGCAGGCGCAGCAGGTGCCGCCTGAGCTTCATGCGTTGAGCCATTGGTGCTGGCACACCAGTTCGGCGGACTCGCTGATCGTGGCTATTGCCGCGACCAACTATGCCATCGAGGGGGCGACCGGGGAGTGGTCGGCACTGGTCTGCTCTACCGGTGTCTATGCGTCGGCGTTCGCCGAGGAAGACCGCAAGCGGGCCATGAAGTGGCTGAAGATGCATGCCCAGTATGACGATGCCCACCCGTGGGAAGCGCTGGAAATCATCTGTACGCTGGCGGGCATGAACCCGAGCAAGGCGTTGCAGATGGAACTGCGCCAGGCCGTTTGCAAGAGCTACGACTACATGTATCTGTTTCTCGAAAGGTGCATGCAGCTGGAACACTCGGGCGCCGGCGAAAAAGCCTCGGCTGGCCGTGAACGGCTGGCGCTGGCCAGTAACTGAMIDTFNRTGPLMDAASYPQWAQQLIADCSESKRRVVEHELYQRMRDNKLSAKTMRHYLIGGWPVVEQFALYMAQNLTKTRFARHPGEDMARRWLMRNIRVELNHADYWVNWSAAHGVTLEDLQAQQVPPELHALSHWCWHTSSADSLIVAIAATNYAIEGATGEWSALVCSTGVYASAFAEEDRKRAMKWLKMHAQYDDAHPWEALEIICTLAGMNPSKALQMELRQAVCKSYDYMYLFLERCMQLEHSGAGEKASAGRERLALASNNANANANANA
D1-35_00626927hypothetical proteinATGAAAACGCCCACGCAGACCAATGCTATTGATTTCGACAGCGCCAAGTTGCAGCGCCTGGGCCTCGCCCAGCCGTCGGCGCTCGTGACGCGGCCGATCAGCCTGACGCAGCTGCGCCAGCAATTGGGCCAGCAGTTGCAGACCAGCCTGGAGCCGCAAAGGATTCTCGGTTTGTTCTTCCGTGAAATCCAGCGGCTGGTGCCTCTGGACGCACTGGTTTACCAGCACAAACCCAGCGACCTGCGCCTGGAGTTTGGCCAGCGCGGGCACCACAACCTCAGCTACAACCTCAGCCATGAGGGCGAGCATCTGGGTGAGCTGGTGTTTCGGCGCAACCAGCGCTTCAGCAGCGCGGAACAAAGCGACCTGGAGTCAATCCTGTCGGCGCTGTTTTTCCCGCTGCGTAACGCATTGCTCTACCGCGCCGCCACCCAAAGCGCCCTGCGCGATCCACTGACCGGCACCGGCAACCGCATTGCCATGGACCAGACGCTGGAGCGGGAAATCGACATGGCCAGGCGGCACATGCAGCCGCTGTCGTTGCTGATGCTGGACATCGACCATTTCAAACGCATCAACGACAGCCATGGGCATGGGGTCGGCGACGAAGTACTCAAGGCCGTTGCCGACTCGATCAAGGGCCAGTTGCGCAATGTGGATATGGTGTTCAGATTCGGTGGTGAGGAATTCCTGATCCTGCTGGCCAACACCAGCCGGGAAGCGGCGGCCATGGTCGGTGAACGGCTGCGTTATGCCGCCCAGGCCCAGGATTATTTTGCCGACGGCACGAGGATCGAATTGACGGTGAGCCTGGGCTGCGCGACGTTGCTGCCGGGCGAGTCCGCTGAAAGTCTCGTGCGCCGGGCGGACAATGCGCTGTATGTAGCCAAGCGCGAGGGGCGGAACCGGTTGACGATGGCGGGCTGAMKTPTQTNAIDFDSAKLQRLGLAQPSALVTRPISLTQLRQQLGQQLQTSLEPQRILGLFFREIQRLVPLDALVYQHKPSDLRLEFGQRGHHNLSYNLSHEGEHLGELVFRRNQRFSSAEQSDLESILSALFFPLRNALLYRAATQSALRDPLTGTGNRIAMDQTLEREIDMARRHMQPLSLLMLDIDHFKRINDSHGHGVGDEVLKAVADSIKGQLRNVDMVFRFGGEEFLILLANTSREAAAMVGERLRYAAQAQDYFADGTRIELTVSLGCATLLPGESAESLVRRADNALYVAKREGRNRLTMAGNANANANANA
D1-35_00627741yciKCOG1028putative oxidoreductase YciKATGTTTGACTACTCCGCCCGCCCCGACCTGCTCGAGGGCCGGATCATCCTGGTCACCGGTGCCGGTCGCGGTATTGGCGCCGCTGCCGCCAAGGCCTATGCCGCCCATGGCGCCACCGTGTTGTTGCTGGGCAAGACCGAAGCCAACCTGACCCAGGTCTATGATGAAATCGAGGCGGCTGGTCATCCGCAGCCAGCGGTGATCCCCTTCAATCTCGAAACCGCCCTGCCCCATCAATACGATGAACTGGCGGCGATGATCGAGAGCGAATTCGGTCATCTGGACGGCCTCCTGCACAACGCCTCGATCATCGGCCCGCGCACGCCGCTGGAACAGCTTTCCGGCGAGAACTTCATGCGGGTGATGCAAGTGAACGTCAACGCCATGTTCATGCTCACCAGCACTTTGCTGCCGTTGCTCAAACTGTCCAAGGATGCATCGGTGGTGTTCACGTCCAGCAGCGTCGGTCGCAAGGGCCGGGCCTATTGGGGCGCTTATGGCGTGTCCAAGTTCGCCACAGAGGGGCTTATGCAGACCCTGGCCGACGAAGTCGACACGGTAGCCCCGGTGCGCTCCAACAGCATCAACCCCGGCGCCACCCGCACCAGCATGCGCGCACAGGCCTATCCGGGAGAAAATCCGCTGAACAACCCGACGCCCGAAGAAATCCTGCCGGTGTACCTGTACCTCATGGGCCCGGACAGTACCGGCGTCAACGGCCAGGCTTTCAACGCGCAGTAAMFDYSARPDLLEGRIILVTGAGRGIGAAAAKAYAAHGATVLLLGKTEANLTQVYDEIEAAGHPQPAVIPFNLETALPHQYDELAAMIESEFGHLDGLLHNASIIGPRTPLEQLSGENFMRVMQVNVNAMFMLTSTLLPLLKLSKDASVVFTSSSVGRKGRAYWGAYGVSKFATEGLMQTLADEVDTVAPVRSNSINPGATRTSMRAQAYPGENPLNNPTPEEILPVYLYLMGPDSTGVNGQAFNAQNANANANANA
D1-35_00628672mupP_1COG0546N-acetylmuramic acid 6-phosphate phosphataseATGCGTCTCAAAGCGGTTCTCTTCGACATGGATGGCACGCTGCTCGACACCGCGCCAGACTTCATCGCCATCTGCCAGGCCATGCGCGCCGACCGTGGCCTGCCGCCGATGAACACCCAGCACATCCGCGACGAGATTTCCGGCGGCGCCCGGGCGATGGTCGCAGTGACGTTCTCCATGGACCCTGAATCGCCGGGTTTCGAGGAGCTGCGCCAGGAGTTCCTCGACCGCTATCTCAAGGGTTGCGCGGTCCACAGCCATCTGTTCGATGGGATGGCCGAAGTACTGGCCGATATCGAGGCGGCCAATCTCATCTGGGGCGTGGTCACCAACAAGCCGGTGCGCTTCGCCGAGCCGATCATGCAGCAGTTGGGCCTGGCCGAGCGGTCGAAAGTGCTGGTCTGCCCCGACCATGTGAAAAACAGCAAACCGGACCCCGAACCGCTGATTCTCGCTTGCAAGATGCTCGACCTCGATCCGGCCAGCGTGCTGTTCATCGGCGACGACCTGCGGGACATCGAGTCCGGCCGCAGCGCCGGGACCAAGACCTGCGCGGTGACCTACGGCTACATCCACCCGGACGACAACCCCAAGCACTGGGGCGCGGATGTGGTAATCGACCATCCCCTGGCGCTGCGCGAAGTGCTGGATAACGCGTTGTGCAGTTGCTGAMRLKAVLFDMDGTLLDTAPDFIAICQAMRADRGLPPMNTQHIRDEISGGARAMVAVTFSMDPESPGFEELRQEFLDRYLKGCAVHSHLFDGMAEVLADIEAANLIWGVVTNKPVRFAEPIMQQLGLAERSKVLVCPDHVKNSKPDPEPLILACKMLDLDPASVLFIGDDLRDIESGRSAGTKTCAVTYGYIHPDDNPKHWGADVVIDHPLALREVLDNALCSCPGPT0019045_599DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_MURAMATE_DEGRADATION,PGPT0019045-mupP-K22292NANA
D1-35_00629699ubiGCOG2227Ubiquinone biosynthesis O-methyltransferaseATGAGCAACGTCGACCACGCTGAAATTGCCAAGTTCGAGGCCCTGGCCCATCGCTGGTGGGACCGCGAAAGCGAATTCAAGCCGCTGCACGACATCAACCCGCTGCGCGTCAACTGGATCGACGAGCGCGTCGGCCTGGCCGGCAAGAAAGTCCTCGACGTCGGCTGTGGTGGCGGCATCCTCAGTGAAGCCATGGCCCTGCGCGGCGCTACCGTAATGGGCATCGACATGGGCGAGGCGCCGCTGGCAGTGGCGCAACTGCATCAGCTGGAGTCCGGCGTCAGCGTCGAATACCGGCAGATCACCGCCGAAGCCCTGGCCGAGGAAATGCCCGGCCAGTTCGACGTGGTCACCTGCCTGGAGATGCTCGAACACGTACCGGACCCGTCATCGGTGATCCGTGCCTGCTTCCAGATGGTCAAGCCCGGCGGCCAGGTGTTCTTCTCCACCATCAACCGCAACCCGAAGGCGTACCTGTTCGCGATCATCGGCGCCGAATACATCATGAAGCTGCTGCCACGCGGCACCCACGACTTCAAGAAATTCATCCGGCCTTCGGAGCTGGGCGCCTGGAGCCGCATGGCCGGGCTGACCGTCAAGGACATCATCGGCCTGACCTACAACCCGCTGACCAAGCACTACAAGCTGGCTGCCGATGTGGACGTCAACTACATGATCCAGACTCTGCGCGAGGAATAAMSNVDHAEIAKFEALAHRWWDRESEFKPLHDINPLRVNWIDERVGLAGKKVLDVGCGGGILSEAMALRGATVMGIDMGEAPLAVAQLHQLESGVSVEYRQITAEALAEEMPGQFDVVTCLEMLEHVPDPSSVIRACFQMVKPGGQVFFSTINRNPKAYLFAIIGAEYIMKLLPRGTHDFKKFIRPSELGAWSRMAGLTVKDIIGLTYNPLTKHYKLAADVDVNYMIQTLREEPGPT0009545_1982DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009545-ubiG-K00568NANA
D1-35_006301332mtaDCOG04025-methylthioadenosine/S-adenosylhomocysteine deaminaseATGCCCAAGCCTGCCGTTGCGCTCGACTTATTATTGCTGCCGACCTGGTTGGTGCCTGTCGAACCCGCCGGTATCGTGCTCAAGGATCATGGCCTGGGCATTCGCGACGGTTGCATCGTGTTCATCGGGCCACGGGCCGAAGCCATGCAATGCGCTGCCACGGAGGTTCGCGAACTGCCCGGCATGCTGCTCAGTCCGGGCCTGGTCAATGCCCACGGTCACGCGGCAATGACATTGTTCCGTGGCCTGGCCGACGACCTGCCGCTGATGACCTGGCTCGAACAGCACATCTGGCCCGCCGAGGGTAAATGGGTCGACGAGGCCTTCGTCCGCGACGGTACTGACCTGGCGATCGCCGAGCAGATCCAGGGCGGCATCACCTGTTTCTCCGACATGTACTTCTATCCCAAGGTGGCCAGCGAACGCGTGCATAACAGTGGCATCCGCGCGCAGATCGCCATTCCGATCCTCGACTTTCCGATCCCCGGCGCCGCCAGCGCCGACGAAGCCATTCGTCAGGGCATCGAATTGTTTGGCGACCTCAAGCACCATCCGCGGATCAAAGTCGCATTCGGCCCTCACGCCCCGTACACCGTCGGCGATGACAACCTGGAAAAGATCCGCGTGATCGCCGAGGAACTGGACGCGGCCATCCACATGCATGTTCATGAAACCGCCTTCGAAGTGCAGCAGGCTGTGGATAACACTGGCGAGCGGCCGATGGCCCGGTTGGCGCGCGTTGGCCTGCTGGGGCCGCGCTTCCAGGCGGTGCACATGACCCAGGTCAGCGACGAGGACCAGGCGCTGCTGGTAGAACACAATTGCAGCGTGATCCATTGTCCGGAATCGAATCTGAAGCTGGCCAGCGGTTTCTGCCCGGTGGAACGCCTGTGGCAGGCCGGCGTCAACGTCGCGGTCGGCACCGATGGCGCGGCGAGCAACAACGACCTCGATCTGCTGGGCGAAACCCGCACCGCCGCCCTGCTGGCAAAGGCTGTCGCCGGTTCGGCCACGGCCCTGGACGCGCACCGGGCGTTGCGCATGGCCACGCTCAATGGCGCCCGCGCGCTGGGCATCGAGGCGATCGTCGGCTCTCTGGAAGTCGGCAAGGCCGCCGACCTGGTGGCCTTCGACCTGTCCAGCCTGGCGCAGCAACCGATCTATGACCCGGTGTCGCAACTGATCTACGCCACCGGCCGCCATTGCGTGAAACACCTCTGGGTGGCCGGCAAGCCGTTGCTGGAGGATGGCCGCCTGACGCGCATGGACGAATCGCAACTGATCGCCACGGCCCAGGACTGGGGCCGTCGGGTCAGCGGCCAGAACGAATAGMPKPAVALDLLLLPTWLVPVEPAGIVLKDHGLGIRDGCIVFIGPRAEAMQCAATEVRELPGMLLSPGLVNAHGHAAMTLFRGLADDLPLMTWLEQHIWPAEGKWVDEAFVRDGTDLAIAEQIQGGITCFSDMYFYPKVASERVHNSGIRAQIAIPILDFPIPGAASADEAIRQGIELFGDLKHHPRIKVAFGPHAPYTVGDDNLEKIRVIAEELDAAIHMHVHETAFEVQQAVDNTGERPMARLARVGLLGPRFQAVHMTQVSDEDQALLVEHNCSVIHCPESNLKLASGFCPVERLWQAGVNVAVGTDGAASNNDLDLLGETRTAALLAKAVAGSATALDAHRALRMATLNGARALGIEAIVGSLEVGKAADLVAFDLSSLAQQPIYDPVSQLIYATGRHCVKHLWVAGKPLLEDGRLTRMDESQLIATAQDWGRRVSGQNEPGPT0023665_1322DIRECT EFFECTCOLONIZING_PLANT_SYSTEMOTHER_COLONIZATION_RELATED_PROTEINSCOLONIZATION-HOST_INVASION_FACTORSHOST_INVASION-SAM|QUEUOSINE|LIPID_METABOLISM,PGPT0023665-mtaD-K12960NANA
D1-35_006311077mtnACOG0182Methylthioribose-1-phosphate isomeraseATGCGCGATCGACTGTTGGCTGCGGAGAAGGTGAAGGCCATCGATTGGCGCGATGGCGCTCTTTACCTGCTGGATCAGCGTGTTTTGCCGTTCGAGGAAAACTGGATCGCCTACACCAGCGTGGCCGGTGTGGCCGAGGCCATTCGTTCGATGGTGGTGCGCGGTGCGCCAGCCATCGGTATCAGCGCCGCTTATGGCGTGGTGCTGGCGGCGCGGGCGCGGATGGCCGAGGGCGGCGATTGGCAAGCGGCGCTGGAAGCGGATTTCGCCTTGCTGGCCGATTCCCGGCCGACGGCGGTCAATCTGTTCTGGGCGCTGGATCGCATGCGGGACCGGTTGGGACGCTTGAAGGAGCATGCCGAACCGCTAGCGGTGCTTGAGGCTGAGGCCATTGCGATCCATGAAAGTGACCGCGAAGCCAACCTGACCATGGCCCAGCTTGGCGTCGACCTGATCCGCAAGCACCAGGGCAACGCCCAGGCCATCTTGACCCATTGCAACACCGGGGCCCTGGCCACCGGCGGCTTCGGAACGGCCCTCGGGGTAATTCGCGGGGCGTTTCTGGAGGGCATGGTCGAACGGGTCTACGCCGACGAAACCCGTCCATGGCTGCAGGGTTCACGGTTGACGGCATGGGAGCTGGCGAACGAGGGCATTCCGGTGACGCTCAACGCCGATTCCGCCGCTGCCCACATCATGAAGACCAAGGGCGTGACCTGGGTCATCGTCGGCGCCGACCGCATCACGGCCAACGGCGACGTGGCGAACAAGATCGGCACCTACCAGCTGGCGGTCTGTGCCATGCACCACGGCGTACGTTTCATGGTGGTGGCGCCGAGCTCGACCATCGACATGAACCTGGCCAGCGGTGATGACATCCCGATCGAAGAGCGCGACGGGCGCGAGCTGCTGGAAGTCGGCGGCAAGCGGGTCGGGGCGGATGCCGATGCGTTCAACCCGGTGTTCGACGTGACCCCGGCGGACCTGATCGATGCGATCGTGACGGAGAAGGGCATCGTCGAGCGGCCGGATACGGCCAAGATGGCCCAATTGATGTGTCGCAAGCGGTTGCATTGAMRDRLLAAEKVKAIDWRDGALYLLDQRVLPFEENWIAYTSVAGVAEAIRSMVVRGAPAIGISAAYGVVLAARARMAEGGDWQAALEADFALLADSRPTAVNLFWALDRMRDRLGRLKEHAEPLAVLEAEAIAIHESDREANLTMAQLGVDLIRKHQGNAQAILTHCNTGALATGGFGTALGVIRGAFLEGMVERVYADETRPWLQGSRLTAWELANEGIPVTLNADSAAAHIMKTKGVTWVIVGADRITANGDVANKIGTYQLAVCAMHHGVRFMVVAPSSTIDMNLASGDDIPIEERDGRELLEVGGKRVGADADAFNPVFDVTPADLIDAIVTEKGIVERPDTAKMAQLMCRKRLHNANANANANA
D1-35_006332664gyrACOG0188DNA gyrase subunit AATGGGCGAACTGGCCAAAGAAATCCTCCCGGTCAATATCGAAGACGAGCTGAAACAGTCCTACCTCGACTACGCGATGAGCGTGATCGTCGGGCGGGCGCTGCCGGATGCGCGCGATGGCTTGAAGCCCGTGCACCGGCGCGTGCTGTTCGCGATGAGCGAACTGGGCAACGACTTCAACAAGCCGTACAAGAAATCCGCCCGTGTCGTCGGCGACGTGATCGGTAAGTATCACCCCCACGGCGACACTGCCGTGTACGACACCATCGTTCGGATGGCCCAGCCATTCTCCCTGCGCTACCTGCTGGTGGACGGCCAGGGCAACTTCGGTTCGGTGGACGGCGACAACGCCGCGGCCATGCGATACACCGAAGTGCGCATGACCAAGCTGGCCCACGAGCTGCTGGCCGACCTGCACAAGGAAACCGTGGACTGGGTGCCGAACTACGACGGCACCGAGATGATCCCGGCGGTCATGCCGACGCGTATCCCGAACCTGCTCGTCAACGGCTCCAGCGGTATCGCCGTGGGCATGGCGACCAACATCCCGCCGCACAACCTCGGTGAAGTCATCGACGGTTGCCTGGCCCTCATCGACAACCCCGAGCTGTCCGTCGATGAACTGATGCAATACATCCCCGGTCCGGACTTCCCGACGGCGGCGATCATCAACGGTCGCGCCGGCATCATCGAGGCCTATCGCACCGGTCGCGGCCGCATCTACATGCGCGCCCGCTCGACCGTCGAGGACATCGACAAGGTCGGTGGCCGCCAGCAGATCGTCATCACCGAGCTGCCGTACCAGCTGAACAAGGCCCGCCTGATCGAAAAGATCGCCGAGCTGGTGAAAGAAAAGAAACTCGAAGGCATCACCGAGCTGCGTGACGAGTCCGACAAGGACGGCATGCGCGTCGTGATCGAGCTGCGCCGTGGCGAAGTGCCGGAGGTGATCCTCAACAACCTCTACGCCCAGACCCAGCTGCAAAGCGTGTTCGGCATCAACATTGTCGCGCTGATCGACGGCCGTCCGCGGATCCTGAACCTCAAGGACCTGCTGGAAGCCTTCGTGCGTCACCGTCGCGAAGTGGTCACCCGGCGGACCGTATTCGAACTGCGTAAAGCTCGCGAACGCGGCCACATCCTTGAAGGCCAGGCCGTTGCCCTGTCGAACATCGACCCGGTCATCGCCCTGATCAAAGCCTCGCCAACCCCGTCGGAAGCCAAGGAAGCGCTGATCAGCACCCCTTGGGAATCCTCCGCGGTGGTGGCGATGGTCGAGCGCGCCGGCGCCGACTCGTGCCGTCCGGAAAACCTCGACCCGCAATACGGCCTGCGCGAAGGCAAGTACTTCCTGTCCCCGGAACAGGCGCAAGCCATCCTGGAACTGCGCCTGCACCGCCTGACCGGTCTGGAGCACGAGAAGCTGCTGGCCGAGTACCAGGAGATCCTCAACCAGATCGGCGAGCTGATCCGCATCCTCAACAGCGCCACGCGCCTGATGGAAGTGATCCGCGAAGAACTGGAAGTGATCCGCGCCGAGTACGGCGACGTGCGCCGCACCGAGATCCTCGATGCGCGCCTCGACCTGACCCTGGGCGACATGATTCCGGAAGAAGAGCGCGTGGTGACGATTTCCCACGGCGGCTACGCCAAGACCCAGCCGCTGGCCGCCTACCAGGCCCAGCGTCGCGGCGGCAAGGGCAAGTCGGCGACCGGCGTCAAGGACGAGGACTACATCGCTCACCTGCTGGTCGCCAACAGCCATACCACGCTGCTGCTGTTCTCCAGCAAGGGCAAGGTGTACTGGCTCAAGACCTACGAAATCCCTGAGGCGTCCCGTGCGGCTCGCGGTCGTCCGCTGGTGAACCTGCTGCCGCTGGACAGTGACGAATACATCACCACCATGCTGCCGGTGGAGGAATACACAGAAGGTCACTTTATCTTCATGGCGACCGCCAAGGGCACCGTGAAGAAGACCCCGCTGGAATCCTTCAGCCGTCAGCGCAGCGTCGGCCTGATCGCCCTGGAGCTGGACGAAGGCGACGTGCTGATTTCCGCTGCCATCACCGACGGTGCGCGTGAAGTCATGCTGTTCTCCGACGGCGGCAAGGTCACGCGCTTCAAGGAATCCGACGTCCGCGCCATGGGCCGTACCGCCCGTGGTGTTCGCGGCATGCGCCTGCCGGAAGGGCAGAAGCTGATTTCCATGCTGATTCCGGAAGAAGGCAGCCAGATCCTCACCGCTTCCGCGCGGGGCTACGGCAAGCGTACCGCCATCAGCGAGTTCCCCGAGTACAAGCGTGGCGGCCAGGGCGTGATCGCGATGGTCAGCAACGAGCGTAACGGCCGTCTGGTCGGCGCTGTCCAGGTGCTCGATGGCGAAGAGATCATGCTGATCTCCGACCAGGGCACCCTGGTGCGCACGCGCGTCGCCGAAGTGTCGAGCCTGGGTCGTAACACTCAGGGCGTGACGCTGATCAAACTCGCCAGCGACGAAACGCTGGTCGGGCTTGAACGGGTCCAGGAGCCGTCGGAAGTCGAAGGCGAGGAGCTGGAAGGCGAGGAAGGCGTGGCGTTCGACGGCACCCTCGGTGCCGATGTCGATGACGCCGTCGGCGATCAACAGCTCGATGCCGCCGCAGACGAAGAAGAACCGCAGGACTAAMGELAKEILPVNIEDELKQSYLDYAMSVIVGRALPDARDGLKPVHRRVLFAMSELGNDFNKPYKKSARVVGDVIGKYHPHGDTAVYDTIVRMAQPFSLRYLLVDGQGNFGSVDGDNAAAMRYTEVRMTKLAHELLADLHKETVDWVPNYDGTEMIPAVMPTRIPNLLVNGSSGIAVGMATNIPPHNLGEVIDGCLALIDNPELSVDELMQYIPGPDFPTAAIINGRAGIIEAYRTGRGRIYMRARSTVEDIDKVGGRQQIVITELPYQLNKARLIEKIAELVKEKKLEGITELRDESDKDGMRVVIELRRGEVPEVILNNLYAQTQLQSVFGINIVALIDGRPRILNLKDLLEAFVRHRREVVTRRTVFELRKARERGHILEGQAVALSNIDPVIALIKASPTPSEAKEALISTPWESSAVVAMVERAGADSCRPENLDPQYGLREGKYFLSPEQAQAILELRLHRLTGLEHEKLLAEYQEILNQIGELIRILNSATRLMEVIREELEVIRAEYGDVRRTEILDARLDLTLGDMIPEEERVVTISHGGYAKTQPLAAYQAQRRGGKGKSATGVKDEDYIAHLLVANSHTTLLLFSSKGKVYWLKTYEIPEASRAARGRPLVNLLPLDSDEYITTMLPVEEYTEGHFIFMATAKGTVKKTPLESFSRQRSVGLIALELDEGDVLISAAITDGAREVMLFSDGGKVTRFKESDVRAMGRTARGVRGMRLPEGQKLISMLIPEEGSQILTASARGYGKRTAISEFPEYKRGGQGVIAMVSNERNGRLVGAVQVLDGEEIMLISDQGTLVRTRVAEVSSLGRNTQGVTLIKLASDETLVGLERVQEPSEVEGEELEGEEGVAFDGTLGADVDDAVGDQQLDAAADEEEPQDPGPT0027705_998DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027705-parC-K02621NANA
D1-35_006341086serCCOG1932Phosphoserine aminotransferaseGTGAGCAAGAGAGCCTATAACTTCTGTGCCGGCCCGGCGGCGCTTCCTGAAGCGGTCCTGAAGCGCGCCCAGGGTGAACTTCTCGACTGGCATGGCAAGGGCCTGTCCGTCATGGAAATGAGCCATCGCAGCGATGAGTTCGTGTCCATCGCGACCAAGGCCGAGCAGGACCTGCGCGATCTGCTGAACATCCCGTCCAACTACAAAGTGCTGTTCCTGCAGGGCGGCGCCAGCCAGCAGTTCGCGCAGATTCCGTTGAACCTGTTGCCGGAAAGTGGCAAGGCCGACTACATCGACACCGGTATCTGGTCGCAGAAAGCCATCGAAGAAGCGTCGCGCTACGGCCACGTCAACGTTGCCGCCACCGCCAAGCCTTACGACTATTTCGCGATCCCCGGCCAGAACGAGTGGAACCTGTCCAAGGACGCGGCCTACGTGCACTACGCGCCGAACGAAACCATCGGTGGCCTGGAATTCAACTGGATCCCGGAAACCGGTGACGTGCCGCTGGTGGCCGACATGTCCTCGGACATCCTCTCGCGTCCTGTGGATATCTCCCGTTTCGGCATGATCTACGCCGGCGCCCAGAAAAACATCGGCCCGAGCGGCATCCTGGTCGCGATCATCCGCGAAGACCTGCTCGGTCGCGCCCGTTCCCTGTGCCCGACCATGCTCAACTACAAGGTCGCGGCCGACAACGGCTCGATGTACAACACCCCGCCGACCCTGGCCTGGTACCTGTCGGGCCTGGTATTCGAGTGGCTGAAAGAGCAGGGCGGTGTCGAAGCCATCGGCAAGCTCAACGAAGTGAAGCAGCGCACGCTGTATGACTTCATCGACGCCAGCGGCCTCTACAGCAACCCGATCAACAAGTCCGACCGCTCTTGGATGAACGTGCCGTTCCGCCTGGCGGACGACCGTCTCGACAAGCCGTTCCTGGCCGGCGCCGACGAGCGCGGCCTGCTGAACCTCAAGGGCCACCGCTCGGTCGGCGGCATGCGCGCCTCCATCTACAACGCCGTAGACATCAACGCCGTCAATGCGCTGGTCGCCTACATGACAGAGTTCGAGAAGGAACACGGCTGAMSKRAYNFCAGPAALPEAVLKRAQGELLDWHGKGLSVMEMSHRSDEFVSIATKAEQDLRDLLNIPSNYKVLFLQGGASQQFAQIPLNLLPESGKADYIDTGIWSQKAIEEASRYGHVNVAATAKPYDYFAIPGQNEWNLSKDAAYVHYAPNETIGGLEFNWIPETGDVPLVADMSSDILSRPVDISRFGMIYAGAQKNIGPSGILVAIIREDLLGRARSLCPTMLNYKVAADNGSMYNTPPTLAWYLSGLVFEWLKEQGGVEAIGKLNEVKQRTLYDFIDASGLYSNPINKSDRSWMNVPFRLADDRLDKPFLAGADERGLLNLKGHRSVGGMRASIYNAVDINAVNALVAYMTEFEKEHGPGPT0009160_2541DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009160-serC|pdxF-K00831NANA
D1-35_006351095pheABifunctional chorismate mutase/prephenate dehydrataseATGTCTGAGCAAGAACTCAAGGCGCTGCGCCTGCGCATCGACGCCCTGGACGAAAAAGTCCTGGAACTGATCAGCGAGCGTGCACGCTGCGCCCAAGAAGTCGCCCGGGTGAAGATGGCTTCCCTGGCTGAAGGCGAAGTGCCGGTGTTCTATCGGCCGGAGCGCGAAGCCCAGGTGCTCAAGCGCGTCATGGAGCGCAACAAGGGCCCGCTGGGCAACGAAGAGATGGCGCGGCTGTTTCGCGAAATCATGTCCTCCTGCCTGGCCCTTGAACAGCCGCTGAAAGTCGCGTACCTGGGGCCGGAAGGAACCTTCACCCAGGCTGCCGCCATGAAGCATTTCGGTCATGCGGTGATCAGCAAGCCGATGGCGGCCATCGACGAAGTCTTCCGCGAAGTGGCCGCTGGCGCGGTGAATTTCGGTGTGGTGCCGGTGGAAAACTCCACCGAAGGCGCGGTCAACCACACGCTGGACAGCTTCCTTGAGCATGACATGGTGATCTGTGGCGAAGTCGAGCTGCGGATCCACCACCACCTGCTGGTGGGCGAGAGCACCAAGACCGACAGCATCAGCCGCATCTATTCCCACGCCCAGTCCCTGGCCCAGTGCCGCAAATGGCTGGACGCGCATTATCCGAATGTCGAGCGCGTGGCAGTGTCGAGCAACGCCGAGGCGGCCAAGCGGGTCAAGGGCGAGTGGAACTCGGCGGCCATCGCCGGGGATATGGCGGCAGGCCTCTACGGCTTGACGCGCCTGGCCGAGAAAATCGAGGACCGTCCGGACAACTCCACCCGGTTCCTGATGATCGGCAGCCAGGAGGTCCCACCGACCGGTGACGACAAGACCTCGATCATCGTTTCCATGAGCAACAAGCCGGGCGCGCTGCACGAATTGCTGGTGCCGTTCCACGACAATGGGATCGACCTGACGCGGATCGAGACCCGTCCGTCGCGCAGCGGTAAATGGACCTACGTGTTCTTCATCGATTTTGTCGGCCACCACCGCGATCCGCTGGTCAAAGGTGTGCTGGAGAAAATCAGTCAGGAAGCAGTGGCACTCAAAGTGCTGGGTTCCTACCCCAAGGCAGTTCTTTAAMSEQELKALRLRIDALDEKVLELISERARCAQEVARVKMASLAEGEVPVFYRPEREAQVLKRVMERNKGPLGNEEMARLFREIMSSCLALEQPLKVAYLGPEGTFTQAAAMKHFGHAVISKPMAAIDEVFREVAAGAVNFGVVPVENSTEGAVNHTLDSFLEHDMVICGEVELRIHHHLLVGESTKTDSISRIYSHAQSLAQCRKWLDAHYPNVERVAVSSNAEAAKRVKGEWNSAAIAGDMAAGLYGLTRLAEKIEDRPDNSTRFLMIGSQEVPPTGDDKTSIIVSMSNKPGALHELLVPFHDNGIDLTRIETRPSRSGKWTYVFFIDFVGHHRDPLVKGVLEKISQEAVALKVLGSYPKAVLNANANANANA
D1-35_006361113hisC_2COG0079Histidinol-phosphate aminotransferaseATGAGTGGCAACTTCCTCGCACTGGCGCAGCCAGGCGTGCAACAACTTTCGCCTTACGTTCCAGGCAAGCCTGTGGACGAACTGGCTCGCGAGCTGGATCTGGATCCGGCCAGCATCGTCAAGTTGGCGAGCAACGAAAACCCGCTGGGCGCGAGCCCTAAGGCATTGGCGGCGATCCGCGACGAGCTGGCCGAGCTGACCCGCTACCCCGACGGTAATGGCTTTGCCTTGAAAAGCCTGCTGGCCGAGCGCTGCGGCGTCGAGCTGAGCCAGGTGACCCTGGGTAACGGCTCCAACGACATTCTCGAGCTGGTCGCTCGTGCCTATCTGGCGCCGGGCCTCAACGCTGTGTTCAGCGAGCATGCGTTTGCGGTCTATCCGATTGCCACCCAAGCCGTTGGTGCCGATGCCCATGTGGTTGCGGCCAAGGATTGGGGACACGATCTGCCGGCCATGCTGGCCGCCATCGACGCCAATACCCGCGTGGTCTTCATCGCCAACCCGAACAATCCGACCGGCACCTGGTTCGATGCCCAGGCCCTAGACGACTTCCTGCAGGACGTGCCCGAGCACGTGCTGGTGGTGCTGGACGAGGCCTACATCGAGTACGCCGAGGGCAGCGACCTGCCCGACGGCCTGGATTTCCTCGCCGCGTACCCGAACCTGCTGGTGTCGCGCACGTTCTCCAAGGCCTATGGCCTGGCGTCGCTGCGGGTCGGTTACGGCCTCTCCACCGCAGTGGTGGCCGATGTGCTGAACCGCGTGCGCCAACCGTTCAACGTCAACAGCTTCGCCCTGGCCGCCGCCTGCGCCGCCTTGCAGGACGAGGCCTACCTGGCCGAGAGCCGCCGCTTGAACGAGGCCGGTATGCAGCAGTTGGAAGCCGGCTTCCGTGAGCTGGGGCTGAGCTGGATTCCTTCCAAGGGCAATTTCATCTGTGTCGACGTCGGCTGCGTCGCGGCGCCGGTGTTCCAGGGCTTGCTGCGCGAAGGCGTGATCGTCCGTCCGGTGGCCAATTACGGCATGCCGAATCACCTGCGGGTCACCGTCGGCCTGCCGGCGGAAAACAGCCGTTTCCTGGAGGCGCTGAGCAAGGTCCTGGCTCGTGGTTGAMSGNFLALAQPGVQQLSPYVPGKPVDELARELDLDPASIVKLASNENPLGASPKALAAIRDELAELTRYPDGNGFALKSLLAERCGVELSQVTLGNGSNDILELVARAYLAPGLNAVFSEHAFAVYPIATQAVGADAHVVAAKDWGHDLPAMLAAIDANTRVVFIANPNNPTGTWFDAQALDDFLQDVPEHVLVVLDEAYIEYAEGSDLPDGLDFLAAYPNLLVSRTFSKAYGLASLRVGYGLSTAVVADVLNRVRQPFNVNSFALAAACAALQDEAYLAESRRLNEAGMQQLEAGFRELGLSWIPSKGNFICVDVGCVAAPVFQGLLREGVIVRPVANYGMPNHLRVTVGLPAENSRFLEALSKVLARGPGPT0020305_2300DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020305-hisC-K00817NANA
D1-35_006372208aroA3-phosphoshikimate 1-carboxyvinyltransferaseATGATCGGTCGCCTGGTGGTGGTCGGCCTAGGGTTGATCGGCGGTTCATTCGCCAAGGGCCTGCGTGAAAGCGGGCTGTGCCGGGAAGTCGTGGGGGTCGACCTCGATCCGCAATCGCGCAGGCTCGCCGTCGAGCTGGGCGTGGTGGATCGCTGCGAGGATGACCTGCTGGTCGCCTGCCAAGGGGCTGACGTGATCCAGCTGGCGGTGCCGATCCTGGCCATGGAGAAACTGCTGGCCCGGTTGGCCGGCATGGACCTCGGGCAAGCGATTCTCACCGATGTCGGCAGCGCCAAGGGCAATGTCATACGGGCGGCGACCGAGGCGTTCGGCGGCATGCCGGCGCGCTTCGTGCCCGGTCATCCGATTGCCGGCTCCGAGCAGAGCGGGGTAGAGGCTTCCAACGCCGAGCTGTTCCGTCGTCATAAGGTCATTTTGACGCCGCTGGACCAGACCGATCCCGAGGCATTGTCGGTGGTGGATCGTCTGTGGCGCGAGCTGGGGGCCGATGTCGAGCACATGCAGGTCGAGCGACACGACGAAGTATTGGCCGCCACCAGCCATTTGCCGCACCTGTTGGCGTTCGGTCTGGTGGATTCATTGGCCAAACGCAATGAAAATCTTGAGATCTTCCGTTACGCTGCCGGCGGTTTCCGCGATTTCACGAGAATCGCGGGTAGCGACCCGGTCATGTGGCACGACATCTTCCTCGCCAACCGCGAAGCTGTCCTGCGCACACTCGATACATTTCGCAGCGACCTCGACGCCTTGCGCGACGCGGTCGATGCAGGGGACGGGCACCAATTGCTGGGCGTTTTCACACGCGCCAGGGTGGCCCGCGAGCATTTCAGTAAAATCCTGGCCCGTCGGGCCTATGTGGACGCTATGAACTCCAACGATCTGATTTTCCTGGCACAACCTGGTGGCTCCTTGAGTGGGCGGATTCGTGTACCGGGCGATAAATCGATTTCCCACCGCTCGATCATGCTCGGCTCCCTGGCTGAAGGCGTGACCGAGGTGGAAGGTTTCCTCGAGGGCGAAGACGCCCTGGCAACGCTGCAAGCGTTCCGCGACATGGGCGTGGTCATCGAGGGGCCGCACCACGGCCGCGTGACTATCCATGGTGTTGGCCTGCACGGTCTGAAGCCCGCTCCGGGCCCGATCTACCTGGGCAACTCCGGCACGTCGATGCGCCTGTTGTCCGGCCTGCTGGCTGCCCAGGATTTCGACAGCACCCTGACCGGTGATGCCTCGCTGTCCAAGCGTCCGATGAACCGCGTCGCCAACCCGCTGCGGGAAATGGGCGCAGTGATCGAGACCGCGGCCGACGGTCGCCCGCCGATGACCATTCGCGGCGGCAACAAGCTCAAGGGCCTGACCTACACCATGCCGATGGCCAGCGCCCAGGTTAAATCCTGCCTGCTGCTCGCCGGCCTTTATGCCGAAGGCAAGACCACCGTCACCGAGCCGGCACCGACCCGCGACCACACCGAGCGCATGCTGCGTGGCTTCGGTTATCCGGTCAGCGTTGACGGCGCCACCGCTTCTGTCGAATCGGGCAGCAAGCTGACCGCGACCCATATCGAAGTGCCGGGCGATATTTCCTCGTCGGCGTTCTTCCTCGTGGCCGCGTCGATCGCCGAAGGCTCCGACCTGGTACTCGAACACGTCGGGATCAACCCGACCCGTACCGGCGTGATCGACATCCTGCGCCTGATGGGCGCCGACATCACCCTGGAAAACCAGCGTGAAGTGGGCGGCGAGCCCGTTGCAGACTTACACGTAAGAGCGGCTAAACTCAAAGGCATCGAAATTCCCGAGGCGCTGGTTCCCCTGGCGATCGACGAGTTCCCGGTGCTGTTCGTGGCGGCGGCGTGCGCAGAAGGCCGCACAGTGCTGACCGGCGCTGAAGAGCTGCGGGTCAAGGAGTCGGATCGCATTCAGGTGATGGCCGACGGCCTGCTGGCCCTTGGCGTCAAATGCGAACCGACGCCGGACGGCATCGTCATTGATGGTGGCCAGATTGGCGGTGGCGAAGTCCATGGCCATGGCGACCATCGCATCGCCATGGCATTCAGTGTTGCGTCCCTGCGCGCCAGCGCGCCGATCCGCATCCATGACTGCGCCAACGTCGCCACGTCTTTCCCGAACTTCCTGGCGTTGTGCGCGCAGGTCGGTATTCGAGTAGCACAAGAGGCACAGTCGTGAMIGRLVVVGLGLIGGSFAKGLRESGLCREVVGVDLDPQSRRLAVELGVVDRCEDDLLVACQGADVIQLAVPILAMEKLLARLAGMDLGQAILTDVGSAKGNVIRAATEAFGGMPARFVPGHPIAGSEQSGVEASNAELFRRHKVILTPLDQTDPEALSVVDRLWRELGADVEHMQVERHDEVLAATSHLPHLLAFGLVDSLAKRNENLEIFRYAAGGFRDFTRIAGSDPVMWHDIFLANREAVLRTLDTFRSDLDALRDAVDAGDGHQLLGVFTRARVAREHFSKILARRAYVDAMNSNDLIFLAQPGGSLSGRIRVPGDKSISHRSIMLGSLAEGVTEVEGFLEGEDALATLQAFRDMGVVIEGPHHGRVTIHGVGLHGLKPAPGPIYLGNSGTSMRLLSGLLAAQDFDSTLTGDASLSKRPMNRVANPLREMGAVIETAADGRPPMTIRGGNKLKGLTYTMPMASAQVKSCLLLAGLYAEGKTTVTEPAPTRDHTERMLRGFGYPVSVDGATASVESGSKLTATHIEVPGDISSSAFFLVAASIAEGSDLVLEHVGINPTRTGVIDILRLMGADITLENQREVGGEPVADLHVRAAKLKGIEIPEALVPLAIDEFPVLFVAAACAEGRTVLTGAEELRVKESDRIQVMADGLLALGVKCEPTPDGIVIDGGQIGGGEVHGHGDHRIAMAFSVASLRASAPIRIHDCANVATSFPNFLALCAQVGIRVAQEAQSPGPT0012870_223DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_SHIKIMATE_DEGRADATION,PGPT0012870-cyclohexadieny|prephenate_dehydrogenase|3_phosphoshikimate_1_carboxyvinyltransferase-K24018NANA
D1-35_00638690cmkCytidylate kinaseGTGAACATCAAGGCACCGGTCATCACCATTGATGGCCCAAGCGGCTCGGGCAAGGGCACCATCGCCGGCATGCTGGCCAAGCAATTGGGCTGGAATCTGCTCGATTCCGGCGCCCTCTATCGCTTGCTGGCCTTCGCCGCCAAGAACCATGGCGTCGACCTGACCAACGAGGAACTGCTCAAGGCCCTGGCAGCCCATCTGGACGTGCAGTTCATCGCCGCCACCGATGGCCAGTTGCAGCGCATCATCCTGGAAGGTGACGAAGTCAGTGACGTCATCCGTACCGAAAGCGTTGGTGCCGGGGCCTCCCAGGTCGCCGCGCTGCCGGCGGTGCGCGAAGCGCTGCTGCAGCGTCAACGGGCGTTCCAGGAGCCGCCAGGACTGGTGGCCGATGGCCGCGACATGGGCACAGTGGTATTTCCGGATGCGCCGCTGAAGATATTCCTCACCGCCAGCGCGGAGGAGCGGGCTCGCCGCCGATATTTGCAGTTGAAGGGCAAAGGCGAGGATGTTAGTCTGTCGAGTCTGCTAGATGAGATCCGTGCACGCGACGAGCGTGATACCCAGCGCGCAGTAGCCCCGCTAAAGCCGGCGGCCGATGCGATTCAGCTGGATTCCACGGAGTTGTCCATTGATCAGGTGTTGCAACGCATCATGAGCGAGATCGCGCTTCGCGATATCGCCGGGTGAMNIKAPVITIDGPSGSGKGTIAGMLAKQLGWNLLDSGALYRLLAFAAKNHGVDLTNEELLKALAAHLDVQFIAATDGQLQRIILEGDEVSDVIRTESVGAGASQVAALPAVREALLQRQRAFQEPPGLVADGRDMGTVVFPDAPLKIFLTASAEERARRRYLQLKGKGEDVSLSSLLDEIRARDERDTQRAVAPLKPAADAIQLDSTELSIDQVLQRIMSEIALRDIAGPGPT0021220_1259DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021220-cmk-K00945NANA
D1-35_006391689rpsACOG053930S ribosomal protein S1ATGAGCGAAAGCTTTGCGGAACTCTTTGAAGAAAGCTTGAAAACCCTGAACCTTCAGGCAGGCTCCATCATCACCGGCGTTATCGTTGATATCGATTACCAGGCTCGCTGGGTAACCGTTCACGCTGGTCTGAAGTCTGAAGCGCTGATCCCGCTTGAGCAGTTCTACAACGACGCTGGCGAACTGAACATCAACGTCGGTGACGAAGTTCACGTTGCGCTGGACTCGGTTGAAGATGGCTTTGGTGAAACCAAGCTGTCCCGTGAAAAAGCCAAGCGTGCTGAATGCTGGATCGTTCTGGAAGCGGCCTTCGCAGCTGAGGAAGTGGTCAAGGGCGTTATCAACGGTAAGGTTAAAGGCGGCTTCACTGTCGACGTTAACGGCATCCGTGCGTTCCTGCCAGGTTCCCTGGTTGACGTCCGTCCAGTGCGCGACACCACGCACCTGGAAGGCAAAGAGCTGGAATTCAAGGTCATCAAGCTGGACCAGAAGCGCAACAACGTTGTCGTTTCCCGTCGCAGTGTCCTGGAAGCCGAGAACTCCGCCGAGCGTGAAGCTCTGCTGGAATCGCTGCAGGAAGGCCAGCAGGTCAAGGGTATCGTCAAGAACCTCACCGATTACGGCGCATTCGTCGATCTGGGTGGCGTCGATGGCCTGCTGCACATCACCGACATGGCCTGGAAGCGTATCAAGCATCCTTCGGAAATCGTCAACGTTGGCGACGAGATCGATGTCAAGGTTCTGAAGTACGATCGCGAGCGCAATCGTGTTTCCCTGGGCCTCAAGCAACTGGGTGAAGATCCATGGGTCGCTATCAAAGCCCGTTACCCAGAAGGCACTCGCGTTACCGCTCGTGTTACCAACCTCACCGACTACGGCTGCTTCGCTGAGCTGGAAGAAGGCGTTGAAGGCCTGGTACACGTTTCCGAAATGGACTGGACCAACAAGAACATCCACCCTTCGAAAGTCGTACAAGTCGGCGACGAAGTGGAAGTCATGGTTCTGGACATCGACGAAGAGCGTCGTCGTATCTCCCTCGGCATCAAGCAGTGCAAGTCCAACCCATGGGAAGACTTCTCTGGCCAGTTCAACAAGGGCGATAAAATCTCCGGCACCATCAAGTCGATCACCGATTTCGGTATCTTCATTGGTCTGGACGGCGGCATCGACGGCCTGGTTCACCTGTCCGACATCTCCTGGAACGAAGTGGGCGAAGAAGCCGTACGCCGCTTCAAGAAGGGCGACGAGCTGGACACCGTTATCCTGTCGGTTGACCCAGAGCGCGAGCGCATCTCCCTGGGTATCAAGCAACTGGAAAGCGATCCGTTCTCCGAGTACGTTCAAGAGAACGACAAAGGCGCAATCGTTAAGGGCATCGTGAAAGAAGTTGACGCCAAAGGCGCCATCATCACCCTGGCCGACGATATCGAAGCGACTCTGAAAGCCTCCGAAATCAGCCGTGACCGCGTTGAAGACGCGCGTAACGTTCTGAAAGAAGGCGAAGAAGTAGAAGCCAAGATCATCAGCGTTGACCGCAAGAGCCGCGTAATCCAGCTCTCCATCAAGTCGAAAGACGATGCTGAAGAGAAAGAAGCAATCCAGAGCCTGCGCGAGAAGCCAGCTACTGATGCTCCTGGTCCTACCACTCTGGGCGACCTGCTGCGTGCACAGATGGAAAAGCAGAACTGAMSESFAELFEESLKTLNLQAGSIITGVIVDIDYQARWVTVHAGLKSEALIPLEQFYNDAGELNINVGDEVHVALDSVEDGFGETKLSREKAKRAECWIVLEAAFAAEEVVKGVINGKVKGGFTVDVNGIRAFLPGSLVDVRPVRDTTHLEGKELEFKVIKLDQKRNNVVVSRRSVLEAENSAEREALLESLQEGQQVKGIVKNLTDYGAFVDLGGVDGLLHITDMAWKRIKHPSEIVNVGDEIDVKVLKYDRERNRVSLGLKQLGEDPWVAIKARYPEGTRVTARVTNLTDYGCFAELEEGVEGLVHVSEMDWTNKNIHPSKVVQVGDEVEVMVLDIDEERRRISLGIKQCKSNPWEDFSGQFNKGDKISGTIKSITDFGIFIGLDGGIDGLVHLSDISWNEVGEEAVRRFKKGDELDTVILSVDPERERISLGIKQLESDPFSEYVQENDKGAIVKGIVKEVDAKGAIITLADDIEATLKASEISRDRVEDARNVLKEGEEVEAKIISVDRKSRVIQLSIKSKDDAEEKEAIQSLREKPATDAPGPTTLGDLLRAQMEKQNNANANANANA
D1-35_006401014wbgUUDP-N-acetylglucosamine 4-epimeraseGTGAAGGTTTTAGTGACGGGGGCAGCTGGCTTTATCGGCTTTCATGTGAGCCAGGCGCTGCTTGCCCGCGGTGACGAGGTTATCGGCATCGATAACCTGAATGATTATTACGAGGTTTCCCTCAAGGAAGCCCGGCTCGCGCTGCTGACTCCTCATTCTAACTTTCGCTTCATACGGATGGACATTGGCGACCGTAATACAATGGCGGCTCTTTTTGCCAATGAAGGTTTCGACAAAGTTGTCCACCTTGCGGCACAAGCAGGAGTCCGTTACTCACTGGAAAACCCTCTTGCCTATGCGGACAGCAATCTTGTCGGTTTCTTGAACATCCTGGAGGGCTGTCGTCAGGGGAAAATACAGCATTTGGTGTATGCCTCCTCCAGCTCCGTCTATGGAGCAAATGAGAGCATGCCCTTCTCGGTGCACGACAATGTCGACCACCCAGTATCCCTTTACGCAGCGACTAAAAAAGCCAATGAACTGATGGCTCACTCCTATAGCCATCTTTATGGCTTGCCAACTACCGGGTTGCGCTTCTTCACGGTGTACGGGCCTTGGGGGCGGCCTGACATGTCGCCGTTCCTGTTTGTCAGGGCGATATTGCAAGGTAAACCGCTAAAAATCTTCAATTATGGGAAACATCGTCGCGACTTTACTTATATCGACGATATTGTCGAAGGCGTGCTGCAGGCTCTCGACCATACGGCAACGCCAAATACCGACTGGTCAGGGCTGGCGCCAGATCCTGCATCCAGTCGTGCGCCGTGGAAAATCTATAACATCGGAAATAGCCAGCCGGTAGAACTGCTCACCTATATCGGCCATATTGAAAATGCATTGGGGCGAAGCGCGCAGAAGGAACTGCTGCCATTGCAGCCAGGGGATGTTGAACATACTTATGCCGACGTTGAACAGCTAAAGATCGATACCGGTTATGCCCCCAGCACGTCAATAGAAAGCGGCATTAATAAATTCGTGAGCTGGTACAAGAACTTCTACAACGTAGCGGATTGAMKVLVTGAAGFIGFHVSQALLARGDEVIGIDNLNDYYEVSLKEARLALLTPHSNFRFIRMDIGDRNTMAALFANEGFDKVVHLAAQAGVRYSLENPLAYADSNLVGFLNILEGCRQGKIQHLVYASSSSVYGANESMPFSVHDNVDHPVSLYAATKKANELMAHSYSHLYGLPTTGLRFFTVYGPWGRPDMSPFLFVRAILQGKPLKIFNYGKHRRDFTYIDDIVEGVLQALDHTATPNTDWSGLAPDPASSRAPWKIYNIGNSQPVELLTYIGHIENALGRSAQKELLPLQPGDVEHTYADVEQLKIDTGYAPSTSIESGINKFVSWYKNFYNVADPGPT0019020_1613DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-UDP-GALACTOSE-GLUCURONATE_POOL_MODIFICATION,PGPT0019020-cap1J|wbgU-K08679NANA
D1-35_006411353rkpK_1COG1004UDP-glucose 6-dehydrogenaseATGAGAGTTACAATTTTCGGCACGGGCTACGTAGGTCTCGTTACTGGCGCATGCCTTGCCGATGCCGGCCATGAAGTCATGTGCGTCGATATCGACGCCGGAAAGATCGAAGGCCTCAAGCGCGGGATCATCCCCATCTACGAGCCTGGGTTGGATGCGCTGATCGAACAGAATCAGTTGCAGGGCCGATTGCACTTCACGACCGCCCCGCACGAAGGCGTCGACTTCGCAGAATTGCAGATAATAGCCGTGGGGACGCCCCCCAACGAAGACGGCTCCGCAGATCTCCAACATGTACTGGCCGTCGCCCGCACCATTGGCCAGCATATGAGTGACCCAAAAATCATCGTCAACAAATCGACCGTTCCCGTGGGAACGGCCGATAAGGTAACCGATGCGATCAAGGAAACGCTTAGAGCCAGGCAAGTCGAGTTGGACTTCTCAGTATGCTCAAATCCGGAGTTCCTGAAGGAAGGTTCAGCCATTGAGGACTTTTCCAAGGCAGCACGCATCATTGTCGGGACCGACTCGGAAATGGTCAGAACAGTCATGCGTGAATGCTATGCCCCTTACAGCCGCAATCGCGACAAGTTGATTTTTATGGACGTGCGCTCCGCCGAGCTCACTAAATACGCAGCCAATGCAATGCTCGCGACGAAAATCAGCTTCATGAACGAAATTGCTCAGATGGCAGAACGCCTCGGGGCGGACATCGAGCACGTCAGGCTGGGTATCGGCTCAGATCCGCGAATCGGCTTTCAGTTTATCTATCCGGGCTGTGGCTACGGCGGCTCCTGCTTCCCCAAAGACGTCCAGGCGCTGGCTCGCACCGCGCAAGAAATCGGTTATGAAGCCGAGCTGCTCAACGCTGTGGAGTCGGTAAACAATCGTCAAAAAAATGTGCTGTTCAGCAAGCTATCCCACGCCTTCGACCATGAGCTGACCAACAAGACCATCGCAGTCTGGGGGCTTTCCTTCAAACCCAATACTGACGATATGCGCGCCGCTCCGAGCCGCAATTTATTGGAAGCGATCTGGGCAGCGGGGGGAAAAGTCCAAGCATTCGACCCGGCCGCAATGAACGAAACATCTCGGATCTACGGATCACGTAGCGATCTGAAACTGGTGGATAATCGCGAGCAGGCCCTGGAAGGCGCCGATGCGCTGGTCATTTGTACAGAATGGAAGCAGTTCCGTACTGTGGATTTCCAATGGCTCAAGACCCGCCTTAATTTTCCAGTGCTAATCGATGGGCGCAACCTGTTTGATCCGGTTGCCGCCAAGGAAGCCGGGATGATGTATTACGCAATCGGCCGTGGTGATGCCCCACAACCGGAAGGAACGCGCCTGTGAMRVTIFGTGYVGLVTGACLADAGHEVMCVDIDAGKIEGLKRGIIPIYEPGLDALIEQNQLQGRLHFTTAPHEGVDFAELQIIAVGTPPNEDGSADLQHVLAVARTIGQHMSDPKIIVNKSTVPVGTADKVTDAIKETLRARQVELDFSVCSNPEFLKEGSAIEDFSKAARIIVGTDSEMVRTVMRECYAPYSRNRDKLIFMDVRSAELTKYAANAMLATKISFMNEIAQMAERLGADIEHVRLGIGSDPRIGFQFIYPGCGYGGSCFPKDVQALARTAQEIGYEAELLNAVESVNNRQKNVLFSKLSHAFDHELTNKTIAVWGLSFKPNTDDMRAAPSRNLLEAIWAAGGKVQAFDPAAMNETSRIYGSRSDLKLVDNREQALEGADALVICTEWKQFRTVDFQWLKTRLNFPVLIDGRNLFDPVAAKEAGMMYYAIGRGDAPQPEGTRLPGPT0017855_1981DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-GLUCURONATE_MODIFICATION,PGPT0017855-ugd|tuaD-K00012NANA
D1-35_006421218hypothetical proteinATGGTGGAAGGTCGCAGCTTGATAACGCCGAATATAGAGATCCTGCTGGTCATTGAGGGGGAGATTGCTACGACTCATTTGATTGAGCATATGCTCTCCGCCTGCAAACCTTATCGGATCGTTTACCGCAAGGTATTTCTTTCCGCTCTGAAGACGTCGGATATACGGAAGAGCACCATTCCGTTATTCGTCCGCAGCGGCGACCCGTCGCTGCGTCTCTGGATTGACAAGCTGCACAGGGCCAATCATCCCTATATATATTACCTGGATGATAATTTCTGGAAAATCGAAGGCAATTCTCCCATTGCCCTGTATTACCAGCATCCGCTAATTCGTCACACTCTGGAAGCAGCCGTCTGCGGGGCTTACCGGGTACTGACCAACTCGGATTTATTGGCGGAGTTTCTCTGCCAATTCAACAGCAAAATAGAAGTGTTGCCTTCGTTCTTCGATTTTTCCCTGTTAAAACCCGTGCAGGACATTTCCCACGACGAGCTGCGCATCGGATTTGCCGGGAGCCCATCCAGAGTTGATGATCTGAATATCATCAAACCGGTCATTCAACCCATCCTGGATACCTATCCGCACGTCGTTTTCGAGTTTATCGGCGCGATGCCGTCAGGCATAGAACCTGATAGCCGCATCCGCAGCTTTCCGCACAATGCAGATTACGAGGACTTCGTCCATTTCAAGCAGGGCCGTCAATGGGCAATCGGTCTGGCGCCGCTTATCGACAACTACTCGAATCGCTGCAAAACCAATAACAAGTATCGGGAGTATTCAGCGTGCGGCATAGCTGGGATCTATTCCGATATGCCACCGTATCAACGCTCCGTCACCAACGGCGAAACCGGCGTCCTGGCCGAGCACACCACGCAGGCGTGGTTCTCAGCCATCAGTCGACTGATCTCCGACCAGCCGCTACGAGAGAGCATCGCAGCCAATGCATATCAAGACGTATTCGAGAAGCACAGCGTTGAACGAGTAGCTACGATCTGGTCCGACCATTTCACACATGTGCAGCGACACATGAGGCGCACCAAAATCAAAGCGTTGCGAGTCAACAGGCTGAGGTCGTTTATCATCACCCGCTTCCTCCAGCTTGAATCCCTATGGGTAAGGGCTTCTACCGTCTACGCTGAAGGAGGCATGCGCCTGGTTGTCAGGAAGATCGTGAACCGCATCAAGTTCACCTTGGCGTCCAACAAAACTCTTTAAMVEGRSLITPNIEILLVIEGEIATTHLIEHMLSACKPYRIVYRKVFLSALKTSDIRKSTIPLFVRSGDPSLRLWIDKLHRANHPYIYYLDDNFWKIEGNSPIALYYQHPLIRHTLEAAVCGAYRVLTNSDLLAEFLCQFNSKIEVLPSFFDFSLLKPVQDISHDELRIGFAGSPSRVDDLNIIKPVIQPILDTYPHVVFEFIGAMPSGIEPDSRIRSFPHNADYEDFVHFKQGRQWAIGLAPLIDNYSNRCKTNNKYREYSACGIAGIYSDMPPYQRSVTNGETGVLAEHTTQAWFSAISRLISDQPLRESIAANAYQDVFEKHSVERVATIWSDHFTHVQRHMRRTKIKALRVNRLRSFIITRFLQLESLWVRASTVYAEGGMRLVVRKIVNRIKFTLASNKTLNANANANANA
D1-35_006431947hypothetical proteinATGAAACCTGAAAACGAACCAGTAAGAATCGACCTCGGTTGCGGCAAACGCAAACAGGACGGTTTCATCGGAATTGACCGTTTCCCCATGCCAGAAGTCGATATCCTGGCAGATATCGATACCGTTCTGCCGCTAGAAGATAACTCGGTCGACGTATTGTTCTCGTCACATGCCCTGGAACATACCAAGGACTTGATGTTCACGATGCGCGAGATCTATCGGATTTGTAAGCATGGCGCGCAAGTATGTATCATCGCGCCCTACTACGAACAAAAGCTGAACGTCGCCAACCCCTATCATCTTATGGTGTTCAACGAACACACGCCTCGTTTCTGGACGGATCACCCCGAGACTCCGGTAGACGTACTTGACTATGCCGATCCGATACAGCGTCCATGGGGTCTTTCAAAGTCGGACAATTCGAACCCAGGGCTCGACATCCGTCTGATCAACGTTGAATTTTTCTACTTTCCCGAATACCGCCATTTACCCCTCGATCAAAAGAGAAAGTTTCGTAACGAACGATTCAATGTATGTGACCAGATCATGTACCAACTGATTGTTTGGAAGGGTGATGAATGCTCGCCTGATGCAAGCTTTGCGGATCACGTCAGCGCATTCGTCCCCTATGAACCTCATTACATCAGGCACCTCAAGATGCACGAGCAAGAAGAAATCATTCAGAAGTTCACTCAGACCGAAACATCGCTTCGTCAGCGCATCGAAGATCTGGAGACGCAACTCGCCGGCAAGGCCGCCCCCCTTCATGCTCCTGATCGAAATGTCGAGCAACGAATCAGTGAGCTGTTGGAAGACCGTGCGCAATCCGAACGGCTGCTTCATGAAGCCAGGACGGAAAATCATCAACTTCGCCTGCAAATCATGGGGCTGTTTGAAAAAACTGAACTGCTCAGCACTCAATTGCAGGACAGCAATACTCGTCTGGTGAAATCCGAGCTGCAGCAGCAGTTACTCGATGAGAAAACCATTGATCTCAACGAGCAAAACAGGCGTCTTCATGACGAGGCTGAACAAATGTCTGGCCGTCTCAACGAGTTGTTGGAACGTCTGACACATGCCCAGGCAAATGCCGTAGAGGCCAACCAGGAGATCCTGGTTCTGCTACGGACGAACCAGGAACTGCACGGCAAGCTGGAAGCTCTCGCAAAAATTGACGCAAAAGCTGCGCTGCTCAAGGCAGAACTTTTGACAGCCAACGGCATTATTGATTGGTATCGCACCAAGGAGGGATCCTGGAAAGGCGAGCAGGACAAATTCAAACAGGAACTACTGTCCCTGCAGCAGGTTTCGCAGGGACAGTCGTCTCCATTGCTGCAAGAAGTACAACATTTGAAACAGGCGCTGAACAACGCACAGCAACACGCTCATCATTCCCGCCATGAGGCGCTGCAGGTCATTGACAACCTTCAGGCGGAAGTGAGCGGGTATCGCGCTTCACGCTCGTTGCAACTGGCCTCTCTGTACAAGAGCAAAGGCTCGTTGTGGGATTCGATTTCACCAGCATTTTCCTCCCTCAGGAGCTTTACGGAAAAACACCTCCTCAACACTTCCCGCCCACAGTTGGCGCTGAGTGACGACCTGAGAAATATTCCGTATCGCGAGTATCTGATTCCAGTCAAACAGGAAGATCTATGCCGCGTAACCCTGGCGATCCGTCCGCTGATGCGCGGAACTCAAGGACTGGTTGGCATTGAAATTGTCTCGAAGGATAAAGCGGTGGTCGCTCAAGTCGTCCTGCCGCTCGCTAGCGTGGACCCTGATGCACCAACACATTTCGAACTGCCGGTACCAACCGCACTGGAGCAAAACTGGCACCTGAGGATCTTCGTAAAGGACTCGGACGTCCCCGTGGGTCTTTATGAAGTCAGCGAGTACTCGCTGATAAGGAAACGCTACAAATATTTCCCTTTTGCTGCATTACAGTAAMKPENEPVRIDLGCGKRKQDGFIGIDRFPMPEVDILADIDTVLPLEDNSVDVLFSSHALEHTKDLMFTMREIYRICKHGAQVCIIAPYYEQKLNVANPYHLMVFNEHTPRFWTDHPETPVDVLDYADPIQRPWGLSKSDNSNPGLDIRLINVEFFYFPEYRHLPLDQKRKFRNERFNVCDQIMYQLIVWKGDECSPDASFADHVSAFVPYEPHYIRHLKMHEQEEIIQKFTQTETSLRQRIEDLETQLAGKAAPLHAPDRNVEQRISELLEDRAQSERLLHEARTENHQLRLQIMGLFEKTELLSTQLQDSNTRLVKSELQQQLLDEKTIDLNEQNRRLHDEAEQMSGRLNELLERLTHAQANAVEANQEILVLLRTNQELHGKLEALAKIDAKAALLKAELLTANGIIDWYRTKEGSWKGEQDKFKQELLSLQQVSQGQSSPLLQEVQHLKQALNNAQQHAHHSRHEALQVIDNLQAEVSGYRASRSLQLASLYKSKGSLWDSISPAFSSLRSFTEKHLLNTSRPQLALSDDLRNIPYREYLIPVKQEDLCRVTLAIRPLMRGTQGLVGIEIVSKDKAVVAQVVLPLASVDPDAPTHFELPVPTALEQNWHLRIFVKDSDVPVGLYEVSEYSLIRKRYKYFPFAALQNANANANANA
D1-35_006443237mshA_1D-inositol-3-phosphate glycosyltransferaseATGAAATTTAGCGATTTTTCCACTGATCTGAAAATCCACGCCAGTCCCAGAGCTCCATCGACTCCCAAAGTCACCGTGATCCTGCCAACTTATTCTCGTGGTCATGGCCCGCTGCAGGAAGCCATCGAAAGTGTCTTGGCTCAAAACTACAGCGATTTCGAGCTGATCATCGTCGATGATGGTTCTCGGGACGGTACCGCGCTCGTGCTGCAAGAGTACCTGAAGAAAGACCCGCGAATCATCGTCCACTCCTACCACAAGAACAGTGGTCTGCCGGCTCTTCGGGTCAATCAGGCGGCGCTACGGGCGAAGGGCAAGTACATCGCCTATCAGTTCGACGATGATCAATGGACTGAACACAGTTTGCAGGTACGTGTAGAGCAACTGGATAAATGCAACAAACCGGCAGTAGTGTATGCGAATGCCAGTGTTGATATTGCCCTCGCTGATGGCACGACGACTTCAAGGACGCTGGGCGGCCCTTTCAATTACGGTCTCTTGATGAACGGTAACTACATCGCCAACAACACGGTGATGCATCACAAAGCGCTGTTCGACGTCGCTGGCATGTATGACGCTCACGTAATGATGCGCCGATACTCAGACTATGACTTGTGGCTGAGATTCGCCAAGCATGCCGACATCATTTGGGTCGACGAAGTGACGTCCCACGTGCGCGCCAACCTGGCGGACTCCTTGGGTAAGGAGATTCCATTGTTCTTCACTCGTTATCGCAAGAGTCTACCCATCCCCCGTGATCACCTGTTGACGCCTGCCGCGATCGACAATTATGACGTCGTTGACCTTTCACAGTTCTCCGGTGCATTTACCGATGCGGAGATCGATGAGTATCGCCGAATGGAGGCAATCCCCTTCCTGACGAAATTCAACGATTATTGCAGCGATGACGAAATGGCTGTGGCGGCAAGTGCCCGCGGCCGCAAGCTTCATCTGCTGACCGCCAAACCGGACTATTCCACGTCGATTGACGTCACAATAAATAACTTTGCGTTGCTACCGGCACAACGCGCAATCAGCAGTACATTCGTCAAAGAGAACGAGCTGTTGACTATCGACGTGACCGGTATCGACGTGGCTGTGCTCTACCGCACCGTTGGTGCTGCGGCCAGTCACTTCGTCAACATCCAAAAAGGTAAGACGCCTACGGCTTATCTGATGGACGATAATATGCTGCACTTTCACGCTGTGGGCCCGCAGCACGGTTTTCTTGCACCTGGAACACCGGCTTATCAGGAAATCGTTCATCAGATCAAGAACGTGGATACCTGCATCGGCTACAGCGAGGCGATCAATGAAGACTTGCTACAACTCAACAGCAAGACCGTGCGACTCCAAACCAACATCAATGCTCGTTTCGTCCGGCAGCGGAAATATGATCGCGCTAAACGCCTGAAAGTCGCCGTTATGTCCGGTGCGGTGCGCGAAGACATTCTGAGAGAGCTTTGGCCAGCCCTTGCGAACTTTGCCCGCCGGTATTCAGAGACGGTGGAGTTTCATTTCTGGGGCCTGGACCCGGAAAAATTCGGCCCCCTGGACTGTCCGGTCCATTTCAAACCGTTCACCCACGTCTATGAAAGCTATGTTCGGGATCTGAGCACGAGCAGCTTCGACGTAGCGCTGGTCCCACTGGACTTCGGTACCCGGGCAGCACGCAGCAAAAGCCCGGTCAAGCTCCTGGAGTCAGTCGCCGCTGGCGCGATATGCATCTTCACCGATACCATCCCTTACTCCAGTATTCCAGACGCTTGTTGTCTCAAGGTTGAAAATACCGTGGCAGCTTGGGAGGAGGCACTGCTAAAGGCCTATGAGATGGGCCAGCAAGAGCGAACGACAATGCTCGAAAATGCTCGTGAACTGGTTCTGTCCCGGTATACCACCGAGTCGCAGTTCTACGACTTCCTGGCGACGTTCGAATCCGTTCGCTTGCACTCCAGGCTCGGCGATAAAACAATCGCCTATGCATTTCACGAAGCCGCCCTGGGTGGCGCCACGCTTCACTTGATCAGACATGCAAGCCTGTTGGTATCCCTTGGCTTTCGCGTCGTAGGGATCGTTCCCAAAGACCCCATCTACAGCGCCGCTTTCAAATCTCGCTGGGACGCCGCCACTGACAGGGCGAATCTCATTGAAGAGAGCTGGCCTTCAGGCTACGTTGAGCCCCCCCTGCCCCAGCGCCCATTTCAACGCGAGGATGAGTTGGCGGCCGATCAACTTGCCCGTCGCCTGGCCCACCAGAAGATTGGTCTTCTTCACTTCGCGACGTGGTCGCCCACCATGAGTCTGCTGGCCAAGCGTTTGGGCATCCCGTGTACCGCAAGTGTCCACCAGTATTATGAAGGGGCGGAAGGCTTTATCGACCGTTTCGCCGATTCGATCCACTGCTCCTCGCTTACCCACGGGCTCAAATGGGCACGTCTGTCGAAAAGCCCTGCCAGACGAATCGTCTGTCCAGTCTCTTGCGACTACTTCGACTCTTTCCGAGTAAATCGGGAGCGAGTTGCAAAAAGTCGGAACACCTTGCGAATACTGGTCTCAGGTACGCTCCAGCCAAGAAAAAACCAGCTTGGCGCGATCCAGGCGGCGATACTTTTGAATGAGGCGGGCCTGGATGTATCGGTGGATTTGATTGGCTATGACGTATTCAATGATGCCTACTTGGGCCAGTGTAAGTCATTGATCGCAGCCAGCGACTTCAAAGACAAATTCACCATTTACGGTTTCATCGATGACCCGAAACCTTTTTATGACAAGGCGGATCTTCTGCTGATTTCAGCCATCGACGAATCGATGCCGCAAACCATGCTACAAGCCATGGCCATGGGCATCCCTGTTGTGTCGACCAACGTCGGCGGCGTAGCTGAGATTATCAAGCATCGCTACAGTGGCTTCATCTCCCGGGATCACAGCCCTGAAGCGTTGGCCGCAGCGATTTCGGAATATGCGCAGCTGTCGGCGGATCAGCGTTTGGAAATCGTTGACCGGGCCCAGCGATCAATGCAATTTCTCGCCAAACCTACATACGTTCGTTCCGAACTGGTGGACTTGTACAATCAGGCCTTTGACGAGTTCTCCAAACATAAGACCGGCGCACAGCCATCAACGATCGCAGAACACACGCTATCAATGCTCTCGCACGAGGACATGCTACTCGAAACACTTTTTGAAACGCGCAAACACATCAGTCAATTGAGCAGAGCGCTGGATAATGAAACCTGAMKFSDFSTDLKIHASPRAPSTPKVTVILPTYSRGHGPLQEAIESVLAQNYSDFELIIVDDGSRDGTALVLQEYLKKDPRIIVHSYHKNSGLPALRVNQAALRAKGKYIAYQFDDDQWTEHSLQVRVEQLDKCNKPAVVYANASVDIALADGTTTSRTLGGPFNYGLLMNGNYIANNTVMHHKALFDVAGMYDAHVMMRRYSDYDLWLRFAKHADIIWVDEVTSHVRANLADSLGKEIPLFFTRYRKSLPIPRDHLLTPAAIDNYDVVDLSQFSGAFTDAEIDEYRRMEAIPFLTKFNDYCSDDEMAVAASARGRKLHLLTAKPDYSTSIDVTINNFALLPAQRAISSTFVKENELLTIDVTGIDVAVLYRTVGAAASHFVNIQKGKTPTAYLMDDNMLHFHAVGPQHGFLAPGTPAYQEIVHQIKNVDTCIGYSEAINEDLLQLNSKTVRLQTNINARFVRQRKYDRAKRLKVAVMSGAVREDILRELWPALANFARRYSETVEFHFWGLDPEKFGPLDCPVHFKPFTHVYESYVRDLSTSSFDVALVPLDFGTRAARSKSPVKLLESVAAGAICIFTDTIPYSSIPDACCLKVENTVAAWEEALLKAYEMGQQERTTMLENARELVLSRYTTESQFYDFLATFESVRLHSRLGDKTIAYAFHEAALGGATLHLIRHASLLVSLGFRVVGIVPKDPIYSAAFKSRWDAATDRANLIEESWPSGYVEPPLPQRPFQREDELAADQLARRLAHQKIGLLHFATWSPTMSLLAKRLGIPCTASVHQYYEGAEGFIDRFADSIHCSSLTHGLKWARLSKSPARRIVCPVSCDYFDSFRVNRERVAKSRNTLRILVSGTLQPRKNQLGAIQAAILLNEAGLDVSVDLIGYDVFNDAYLGQCKSLIAASDFKDKFTIYGFIDDPKPFYDKADLLLISAIDESMPQTMLQAMAMGIPVVSTNVGGVAEIIKHRYSGFISRDHSPEALAAAISEYAQLSADQRLEIVDRAQRSMQFLAKPTYVRSELVDLYNQAFDEFSKHKTGAQPSTIAEHTLSMLSHEDMLLETLFETRKHISQLSRALDNETNANANANANA
D1-35_00645759btuD_1Vitamin B12 import ATP-binding protein BtuDATGACTCATGCATCGCTTGTTTTGAAGAATGTCGATATCACCTTCGAAGGAGCATTGAGTAGCGAAGAAGGATTGAAAAGCTGGGTCAAACGCAAGCTGCTCACTCGTAAAGCTGCAACTGCCACCAACTATCGTATCGCCGCGCTTCAAGACATCAATCTTGAAATCAATCATGGAGAGCGCGTCGGCCTGATCGGACTCAATGGCGCGGGCAAAAGTACTCTGCTCAAAGTGATGGCAGATATCTACCCCCCGACATCCGGAACAGTTTTGATCAAGGGCCATGTCTGCCCAATGTTCGAATTTGCTACCGGCTTCGAAATGAATCAATCCGGCTGGGACAACATCCGTATCCGCGGGCTGCTCCTGGGGATGTCTCCGGAGGCGATCGAAGAAAAGCTTCCTGAGATCGCGAAGTTTACCGAATTGGGCGATTTCCTAGACTACCCGGTTCGAACCTATTCCTCTGGCATGTTCATTCGCTTGGCATTCGCTGTATCGACCAGTATCAACCCGGAAATCCTTTTGATTGATGAGGTGATGGGGGCCGGCGACATTTCCTTTGCCGAAAAAGCCAAGCGCAGAATGTTCGAGTTTATGGAGCAGGGAAAAATTCTCGTCTTTACCACCCACAACTTCAGTCTTTTGAACGATTTCTGCAACAGGACAATATGGCTGCATAAAGGTCAGATAGTGGCTGACGGCCCTACTGACGAAATCGTAAAACGCTACAACGAAGCGCATACGAATAGCCTGTGAMTHASLVLKNVDITFEGALSSEEGLKSWVKRKLLTRKAATATNYRIAALQDINLEINHGERVGLIGLNGAGKSTLLKVMADIYPPTSGTVLIKGHVCPMFEFATGFEMNQSGWDNIRIRGLLLGMSPEAIEEKLPEIAKFTELGDFLDYPVRTYSSGMFIRLAFAVSTSINPEILLIDEVMGAGDISFAEKAKRRMFEFMEQGKILVFTTHNFSLLNDFCNRTIWLHKGQIVADGPTDEIVKRYNEAHTNSLPGPT0023305_1677DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_TRANSPORT,PGPT0023305-ABC_2_LPSE_A|wzt|rfbB|tagH-K09691NANA
D1-35_00646798hypothetical proteinATGACGAGTGTCACAAGACTGTTTATCGATAGCGGCCGCGCATTAAAGATGTGGCGTGTATGGACTTACCTAGGCGTTCAGGACATCAAGGCAAGATTTCATCGATCGTTCATAGGTCCTCTATGGATCGTGTTGACGACCGGTTTCTTCGTGATCGGTGTCGGCTTGATCTACGGATTATTGTTCGGCCAGCCCGTACATGAGTTCCTGCCCTATCTCGCGTGCGGTTTCGCTCTGTGGGGATTTATTGTCGCCTCCATCACTGACGCCAGTGCAACATTCGTCAGGGCTGAAGGATACATAAAGCAATTCTCCTATCCCAAGCAGATTTATTTGCTCAGAACCTTGATATCAAGCGTGATCGTACTACTGATCGGCATTGCCGTAGTGATACCGGTCCAACTCTTCTTCAATGAAGTAAGCGCAATCGGTTGGCTATGCGCAATCCCAGGCTTGTTGCTTCTTGTTATGGCGGCATTGGGTCATATCACGATCAGCGCCTACCTCGGCGCGCGTTTTCGGGATTTCCCCCACGCAATGGCGGTCATGCTGCAAATGTTGTTTTTTGTCACTCCCATCATGTTTCCAATCAAGATGTTGCATGATAAAGGACTCGGATTTATCTATCAGCTCAATCCGCTTTACTATCTCATTGATGTAGTACGCCACCCCATCATCCAAGGTGAATTGGCACTGCCGGAAAATTATCTTTGGGCAGGTGTCTATGTACTGGTCTCCTGGATAGTGGCACTGCTGGCAGCCCTCAAGCTCGACTCTCGCGTGGTTTTCCTGTTATGAMTSVTRLFIDSGRALKMWRVWTYLGVQDIKARFHRSFIGPLWIVLTTGFFVIGVGLIYGLLFGQPVHEFLPYLACGFALWGFIVASITDASATFVRAEGYIKQFSYPKQIYLLRTLISSVIVLLIGIAVVIPVQLFFNEVSAIGWLCAIPGLLLLVMAALGHITISAYLGARFRDFPHAMAVMLQMLFFVTPIMFPIKMLHDKGLGFIYQLNPLYYLIDVVRHPIIQGELALPENYLWAGVYVLVSWIVALLAALKLDSRVVFLLPGPT0023304_1465DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_TRANSPORT,PGPT0023304-ABC_2_LPSE_P|wzm|rfbA|tagG-K09690NANA
D1-35_00647513hypothetical proteinATGAAGCGTTCACTCCCCTCGTTTGGAGACGACGCGTTGCGTCTTCGCTTAATCGAAGAGAGTGACTTGCATGAGACCTTGTCCTGGCGAAACCGGGACGAGGCTCGTGTCTGGTTCAAGACTTCGGCCCTATTGACCTATGAGCAGCATTCCAACTGGTTCCACAATCACTACCAACCGAAGGATAATGACTTTCTGTTTGTAGTCGAAGCAGACGGTGCGCTGGTGGGACAAGCCTCGGTGTACGCGATTGACTGGCAACAGCGCTCAGCCGAAGTTGGCCGATTCCTGGCCGATCCCGATCACTCGGGACGGGGCCATATCAGCCGAGCCTGCGGGCACCTGCTGGACATCTGTTGGGACGCACTGGACTTGGAGTATGTATTTCTTGAAGTCATCGAGACTAATGAACGTGCAATCCGCCTTTATCTCCGGCATGGTTTTCGTGAAGAGCAGCGCTACGAGGGACTGATTAGAATGGGCGTCCGAAAGAACCAGGCGGGAATTGAATGAMKRSLPSFGDDALRLRLIEESDLHETLSWRNRDEARVWFKTSALLTYEQHSNWFHNHYQPKDNDFLFVVEADGALVGQASVYAIDWQQRSAEVGRFLADPDHSGRGHISRACGHLLDICWDALDLEYVFLEVIETNERAIRLYLRHGFREEQRYEGLIRMGVRKNQAGIEPGPT0007790_1168DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007790-speG-K00657NANA
D1-35_006481128arnB_2COG0399UDP-4-amino-4-deoxy-L-arabinose--oxoglutarate aminotransferaseATGTCGATTCAGCTGTTCGTTCCAAAATTCCGCATCGATGAATGCCTCGCTGCGATCCGCGAATGCCTTGAAAAAGGCTGGACCGGCCTCGGCTTCAAGACAGCCACCATGGAAGAGGAATGGAAAACCTACACAGGTTTGCCGCACGCCCACTTCCTGAGCTCAAACACCGTCGGCCTACACCTGGCCGTCGAGCTGTTCAAGACCAAGTTCGGCTGGGCCGACGACGATGAGGTCATCACCACTCCACTGACCTTTATTTCCACCAACCATGCCATCCTGTACGCGGGAATGAAGCCAGTGTTCGCGGATGTCGACGAATCCCTGTGCCTGGATCCGGAAAGCGTGGTTGAGCGAATCACCGCAAAGACCAAAGCACTGATTTTCGTCGGTATCGGCGGTAATATCGGTCAGTATCAGAAGATCGTGGAAATCTGCAGAGATCGCGGTATCAAGTTGATTCTCGATGCGGCTCATATGGCTGGCACTCGATTCAACGGCAAGCATGTCGGTCAAGAAGCAGACAGCGTTGTATTCAGTTTCCAAGCGGTCAAGAACCTGCCAACCGCCGACTCTGGCATGATCTGCTTCAAGGATCAGGAAGACGATGAACGCGTTCGCAAGCTGACTTGGCTGGGCATCAACAAGGACACCTTTGCGCGCACCGCGGCACAGGGCGCCTACAAGTGGATGTATGACGTCGAAGAGTTGGGTTACAAGTATCACGGCAACTCGATCATGGCTGCCATGGGCCTGGTACAGCTCAAGTATTTGGATCAGGACAACGCTTATCGCCGTCAGCTTGCCACTTGGTATCGCCAGAATCTCGCGGGTCATGCAAAGATTCGCATTGTCGACGTGACGCCAGGTTGCGAGTCATCGACGCACCTGCTTCAAATCCGAGTCAAGGATCGCGACGCACTGATGCTGGCTCTGAACGAGCACCAGATCTATCCTGGCGTCCACTACCGCGACAACACCGAGTATGCCATGTACTCATTTGGTGCAGGCACTTGCCCTAAAGCCGCACAGGCCAGCCTGGAAATCCTGTCGCTGCCAATGCACCTCGGCCTCACGCGCGCCGACGTCGATACCGTGTGCGAACTCCTGATCCGCTACGCAAAATGAMSIQLFVPKFRIDECLAAIRECLEKGWTGLGFKTATMEEEWKTYTGLPHAHFLSSNTVGLHLAVELFKTKFGWADDDEVITTPLTFISTNHAILYAGMKPVFADVDESLCLDPESVVERITAKTKALIFVGIGGNIGQYQKIVEICRDRGIKLILDAAHMAGTRFNGKHVGQEADSVVFSFQAVKNLPTADSGMICFKDQEDDERVRKLTWLGINKDTFARTAAQGAYKWMYDVEELGYKYHGNSIMAAMGLVQLKYLDQDNAYRRQLATWYRQNLAGHAKIRIVDVTPGCESSTHLLQIRVKDRDALMLALNEHQIYPGVHYRDNTEYAMYSFGAGTCPKAAQASLEILSLPMHLGLTRADVDTVCELLIRYAKPGPT0025263_20DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-SPORE_PRODUCTIONCE-SPORE_FORMATION|GERMINATIONCE-SPORE_COAT_PROTEIN,PGPT0025263-spsC-NANANA
D1-35_00649291ihfBCOG0776Integration host factor subunit betaATGACGAAATCGGAGTTGATCGAACGAATTGTCACCCATCAAGGGCTGCTCTCGTCCAAGGATGTCGAGTTGGCCATCAAGACTATGCTTGAACAGATGTCACAATGCCTTGCAACTGGTGATCGAATAGAGATCCGCGGTTTTGGCAGCTTTTCCCTGCATTATCGCGCGCCACGTGTCGGCCGAAATCCCAAGACAGGCCAGTCTGTAAGTCTCGACGGAAAGTTCGTTCCTCATTTCAAGCCAGGCAAGGAGTTGCGAGATCGCGTGAATGAGGAGGAGGGACATTGAMTKSELIERIVTHQGLLSSKDVELAIKTMLEQMSQCLATGDRIEIRGFGSFSLHYRAPRVGRNPKTGQSVSLDGKFVPHFKPGKELRDRVNEEEGHNANANANANA
D1-35_00650270hypothetical proteinTTGACAGGAAGCAGATATCAAAAGAGTTCCATGCGCAACATGATGCGCACGCTACTGGCGTTGTTTGCTCTGTTGCTGGTTCTGGCGACCCTGACCTTTGTCCTGGAGAATCAGGAGCCGACATCGTTGCTCTTCCTTGGTTGGAAGGCGCCGGAACTCCCAATCTCAATGCTTATGGTCTTCGCGTTGCTGCTCGGTATGAGCATCGGGCCGCTCATCGGGTGGAACCTAGGGCGCAGATTCAGAGCTTCGCGTAATAAAGGAGGCTGAMTGSRYQKSSMRNMMRTLLALFALLLVLATLTFVLENQEPTSLLFLGWKAPELPISMLMVFALLLGMSIGPLIGWNLGRRFRASRNKGGPGPT0014665_1622DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_AFFECTED_LIPOPOLYSACCHARIDE_ASSEMBLY,PGPT0014665-lapA-K08992NANA
D1-35_006511134rfbBCOG1088dTDP-glucose 4,6-dehydrataseATGGATTTAGACAGTGCTCCGTTGAGGCCTGTCAGTAACTCAAGGGTATGGTTTCGAGTGAAAATTCTAGTAACCGGCGGCGCCGGGTTTATCGGGTCGGCAGTCATCCGTCATATCATTTCCAATACCACCGATTCTGTCATCAATGTCGATAAGCTTACGTATGCCGGTAACCTGGAGTCGCTTGCCGAAGCGAGCCTGAGCCCGCGATATGCGTTCGAGCACGTCGATATCTGCGATCGCAACCAGATGGACCGGGTACTGAATGAGTATCAACCTGATGCGATCATGCATTTGGCAGCTGAGTCGCATGTAGACCGCTCGATCACTGGCCCATCTGAATTCATCCAGACCAATATCATTGGTACCTACACATTACTGGAAGCTGCGCGCCACTATTGGGCGTCACTCGATACCGCGCGCAAGAAGGATTTTCGCTTTCATCATATTTCCACCGATGAAGTCTACGGAGATCTTGAAGGGCCGGAAGACCTGTTCACCGAAACTACTCCCTATCAGCCAAGCTCACCGTACTCTGCGAGCAAAGCCAGCTCCGACCACTTGGTCCGTGCATGGGCACGAACGTACGGACTGCCAACGCTGGTCACCAATTGTTCCAATAATTATGGTCCGTGCCATTTCCCTGAAAAGCTGATTCCGCTGATCATTCTTAACGCACTGGAAGGCAAGTCTCTGCCCGTCTATGGCAAGGGTGATCAGGTTCGTGATTGGCTATACGTCGAAGATCACGCTCGCGCCCTCTACTGCGTTGTGACCAAAGGTGCCGTAGGCGAAACCTACAACATCGGTGGACACAATGAAAAACAGAACATCGAAGTCGTGCGCGCGCTCTGCGAGCTCCTTGACGACCTGTGTCCGGACTCTGCTTTTCATCCACATGCCAGTCTTATCACCTACGTTGAGGACCGTCCGGGCCACGACCAGCGTTACGCCATCGACGCCAGCAAAATCCAGCGCGAGTTGGGTTGGGTGCCAGAGGAAACCTTTGAGACTGGCCTGCGTAAAACGGTCGAGTGGTATCTGAACAACCCGGAATGGGTGGCTCATGTGAAGAGCGGTAGCTACCAGCAATGGATTGATCAGAACTACGCGGGACGCCCTAACAGCGCATGAMDLDSAPLRPVSNSRVWFRVKILVTGGAGFIGSAVIRHIISNTTDSVINVDKLTYAGNLESLAEASLSPRYAFEHVDICDRNQMDRVLNEYQPDAIMHLAAESHVDRSITGPSEFIQTNIIGTYTLLEAARHYWASLDTARKKDFRFHHISTDEVYGDLEGPEDLFTETTPYQPSSPYSASKASSDHLVRAWARTYGLPTLVTNCSNNYGPCHFPEKLIPLIILNALEGKSLPVYGKGDQVRDWLYVEDHARALYCVVTKGAVGETYNIGGHNEKQNIEVVRALCELLDDLCPDSAFHPHASLITYVEDRPGHDQRYAIDASKIQRELGWVPEETFETGLRKTVEWYLNNPEWVAHVKSGSYQQWIDQNYAGRPNSAPGPT0022625_940DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0022625-rfbB|rmlB|rffG-K01710NANA
D1-35_00652894rfbD_1COG1091dTDP-4-dehydrorhamnose reductaseATGAAAGTCCTCCTACTTGGTAAGAATGGACAGATTGGGTGGGAACTTCAGCGCTCACTCGCTCCGCTTGGAGAGTTGACCGCTCTCGCGCGTCATTCGGACGATGGCCCATATCTGGACGTATCCGACCTTGATGCGCTGCGTGCGATGATTCGCCAAGTCGAGCCGGACGTTATTGTCAATGCGGCAGCTTATACAGCGGTTGATAAAGCCGAGTCTGAAAAGGATTTGGCTGATCGCGTGAACAGGCAGGCAAGTGGGGTGATGGCCGAGGAGGCTTTACGCTTGGGCGCCTGGCTGGTCCATTACTCGAGCGACTACGTTTTTGGTGGCCAAGGGGTGGTTCCTTGGCAGGAAGCTGACAAGGTCGCGCCCGTAAATTATTACGGCATGAGTAAGTTGGCCGGCGAGCGGGCCATAATCGCGACAGGATGCAAATACCTGATTTTTCGTACTAGTTGGGTATACAGTGCTCGTGGTAATAATTTTGCCAAGACGATGCTGCGCTTGGCAGCGGAGCGCGAAACCTTGAGAGTGATTGCGGACCAGATTGGCGCCCCCACCAGTGCTGAATTAATCGCGGACGTGACGGCCCTGGTTCTTCGGCAGGCCATAGACCACCCTGAATTGGCGGGTCTCTACCATTTGGCGGCCAGGGGGGAAGTGTCATGGTACGGTTATGCTAATTATGTGATTGATTTTGCCAAGGCGAGCGGTGAGGCGCTTGCTGTCGAGTCGGTCGAACCGATCGAGGCAACTGCTTACCCCGCTACCGCTCGCCGTCCTTTGAATTCACGATTGAATACTCAGAAACTGCGCGACAGTTTTTCTTTACACTTGCCGGATTGGCAAAGTGGCGTAACCCGAATGCTTAGGGAAGTTTTAGACAAATGAMKVLLLGKNGQIGWELQRSLAPLGELTALARHSDDGPYLDVSDLDALRAMIRQVEPDVIVNAAAYTAVDKAESEKDLADRVNRQASGVMAEEALRLGAWLVHYSSDYVFGGQGVVPWQEADKVAPVNYYGMSKLAGERAIIATGCKYLIFRTSWVYSARGNNFAKTMLRLAAERETLRVIADQIGAPTSAELIADVTALVLRQAIDHPELAGLYHLAARGEVSWYGYANYVIDFAKASGEALAVESVEPIEATAYPATARRPLNSRLNTQKLRDSFSLHLPDWQSGVTRMLREVLDKPGPT0022630_1590DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PUTATIVE_TRYLOSE_DERIVATES_MODIFICATION,PGPT0022630-rfbD|rmlD-K00067NANA
D1-35_00653891rffHCOG1209Glucose-1-phosphate thymidylyltransferase 2ATGACCACGACAAATCGTAAGGGCATCATCCTCGCCGGTGGTTCAGGCACAAGACTGCACCCATTGACTCTCGGCGTGTCCAAGCAGATGTTGCCGATTTACGACAAGCCGATGATTTTCTATCCCTTGTCTGTACTGATGCTTGCAGGCATGCGTGAGATCCTGATTATTTCCACGCCTGAAGACCTGCCATGTTTTCGTAAGTTGCTGGGCGACGGCAGCCAGTACGGAATCAAACTGACCTATGCCGAGCAGCCTAGCCCGGATGGTCTGGCTCAGGCCTTCATTATTGGGGAAACGTTCATCGGCCAGGATCCCTGCTGTCTTATTCTCGGGGATAATATCTTCTACGGTCAGCATTTTTCGGAGAACCTGCGTTCTGCCTGCATGCAAGAGCAAGGCGCAACAGTATTCGGATATCACGTGTCGGACCCTGAGCGGTTTGGTGTGGTGGAGTTTGATGCGACCGGTCGCGCGTTGAGCATCGAAGAGAAGCCGGCCAATCCGAAATCCAGCTACGCAGTGACTGGTCTTTATTTTTACGACAATCAGGTTGTAGAGATAGCCAGGAATATCAAGCCTTCTGCGCGTGGAGAGCTGGAAATCACGGATGTCAACCGTGCTTATCTTGAGCAGAAGGAGCTTAATGTGGAAATGCTCGGGCGTGGCTTTGCATGGCTGGATACGGGTACCCACGATTCGCTGTTGGAAGCCAGTCACTTTGTGCATACGATCGAGCAGAGACAAGGCTTGAAAGTGGCGTGTCTGGAAGAGATTGCATACAACAATGACTGGATCACCGCCGAGCAGTTGGCTGTCCAGGCAGAGGCTCTGAAAAAAACCGGATACGGTCAGTATTTGCAGAAACTGCTGCGCTTGTCCAATCCCTGAMTTTNRKGIILAGGSGTRLHPLTLGVSKQMLPIYDKPMIFYPLSVLMLAGMREILIISTPEDLPCFRKLLGDGSQYGIKLTYAEQPSPDGLAQAFIIGETFIGQDPCCLILGDNIFYGQHFSENLRSACMQEQGATVFGYHVSDPERFGVVEFDATGRALSIEEKPANPKSSYAVTGLYFYDNQVVEIARNIKPSARGELEITDVNRAYLEQKELNVEMLGRGFAWLDTGTHDSLLEASHFVHTIEQRQGLKVACLEEIAYNNDWITAEQLAVQAEALKKTGYGQYLQKLLRLSNPPGPT0022600_1680DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0022600-rfbA|rmlA|rffH-K00973NANA
D1-35_00654921hypothetical proteinATGTCGGTAAAGCTCCCCAAGATTGCAGTTTTGCTGGCTGCCTATAATGGTATGCGCTGGATTGAAGAGCAGTTGAATTCAATCCTCGGTCAGTTGACTGTGGATGTAACTGTTTTTATCAGCATTGATTCTTCCAGTGACGGCACTGAGGGATGGTGCGCGAGTTACGCCGAGGAGCGTTCCGGTATTGTCGTCCTGCCTTCCGCCGGTCGCTTCGGAGGGGCGTCGCGCAATTTTTTCAGGTTGGTCCGTGATGTTGATTTCAGTGATTATGATTTCATCGCTTTCGCTGATCAGGATGATATCTGGCAGCCTGATAAACTCCACCGCGCCACCCAAATCATGCGCACCCTTGATGTAGAAGGGTACTCCAGCAACGTAGTGGCGTTCTGGCCCGACGGCAAAACTCATTTGCTCGACAAGGCGCAGCCCCAGGTCGAATGGGATTTTCTATTTGAAGCAGCTGGGCCCGGCTGTACCTACGTGATGAGCAAGGGCCTGGCGGCTTCGCTCACGACTTCCGTTTGTGAAAACTGGCAACAACTGCAAAGCGTCAGCTTGCATGATTGGTATTGCTATGCGTACGCCCGTGCCCACGGTTATCGTTGGTACATTGATCCTCAACCATCAATGAGTTACCGCCAGCATGAAAGCAATCAGGTGGGTGCCAACAAGGGCTTGAGTTCTTTGCTGGCACGCTATAAGGCAATTCGCAGCGGCTGGTGGTTCAATCAGGTTCGGCTGATAGCCCAGTTAGTAGGGTGTTCAGACGAACCGTTTGTTAGAGGCTGGTTGGGATTGCAGCGTAAGCAACTAATAAGATTGTCGTTCAGCGCTCGGAAGTGCCGACGTTGCTTTCGAGACAGAGTGTTTTTCTTTCTGGTTTGCTGGGTAGTGGCTTTTAGAGAAAACACAGCCTGAMSVKLPKIAVLLAAYNGMRWIEEQLNSILGQLTVDVTVFISIDSSSDGTEGWCASYAEERSGIVVLPSAGRFGGASRNFFRLVRDVDFSDYDFIAFADQDDIWQPDKLHRATQIMRTLDVEGYSSNVVAFWPDGKTHLLDKAQPQVEWDFLFEAAGPGCTYVMSKGLAASLTTSVCENWQQLQSVSLHDWYCYAYARAHGYRWYIDPQPSMSYRQHESNQVGANKGLSSLLARYKAIRSGWWFNQVRLIAQLVGCSDEPFVRGWLGLQRKQLIRLSFSARKCRRCFRDRVFFFLVCWVVAFRENTAPGPT0006850_15DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0006850-rfbG-K12991NANA
D1-35_00655948gnuCOG0451N-acetyl-alpha-D-glucosaminyl-diphospho-ditrans,octacis-undecaprenol 4-epimeraseATGAGCGTTTCAAAGATCCTCGTGACAGGGGCGAACGGCTTTATTGGAAAAGCCTTGGTTTCCCGTTTGTTGGCGGATCGCCAATACGCCGTTATCGGGGCAACTCGTGACAAAACGCCGGCCAATGCGCAGTGTCAATTTGAGCGCCTCGATTTAACAGACCCTGACGTCTTGCCATCACTGCGGGACGTTCAAGTCATTGTCCATGCCGCCGCTCGTGTGCATGTCATGAATGACGTCGCAGTTGATGCGCTAGCTGAGTATCGCAAAGCCAACGTCGAAGGAACTCTGCGGCTGGCGAAGCTTGCAGCCGCCTCCGGCGTCAAGCGTTTTATCTTCATAAGTTCGATCAAGGTCAATGGTGAGCGAACTGGGCCGGGAAGGCCGTTCAGGGCCGACGACACGCCTGCTCCAGTGGATGCATATGGAATATCGAAACGGGAGGCAGAGGATGGTCTGATGAAGGTCAGCCGCGATACTGGGATCGAAATTGTGATCATCCGCCCGCCACTCGTGTATGGGCCCGGAGTAAAAGCCAACTTCCTGAATATGATGCGTTGGCTCAGCAGGGGAGTGCCGCTTCCGTTGGGTGGGCTGAACAACCGCCGCAGTTTGGTGGCGCTGGACAATCTCGTGGATCTGGTCATTACCTGTATTGCTCATCCTGCTGCCGCAAATCAAATTTTCCTCGTGAGCGATGGTGAGGATCTGTCTACGACGCAACTGCTCCTACGGATGGCTGAAGCGTTGAAGGTTCGCGTGTATTTGTTGCCGTTGCCGGAAACCGCGCTGCGCTTAGCTGCATCATTGCTGGGGAAGAAGGCGATGGCAGACAGATTGTGTGCTTCATTACAGGTCGATATTGAAAAGACATGCTCCTTGTTAGGTTGGTCTCCGCCAGTCAGCGTGGACGAGGCGCTTGAATTGGTTGCTAACCGCCCATCATAAMSVSKILVTGANGFIGKALVSRLLADRQYAVIGATRDKTPANAQCQFERLDLTDPDVLPSLRDVQVIVHAAARVHVMNDVAVDALAEYRKANVEGTLRLAKLAAASGVKRFIFISSIKVNGERTGPGRPFRADDTPAPVDAYGISKREAEDGLMKVSRDTGIEIVIIRPPLVYGPGVKANFLNMMRWLSRGVPLPLGGLNNRRSLVALDNLVDLVITCIAHPAAANQIFLVSDGEDLSTTQLLLRMAEALKVRVYLLPLPETALRLAASLLGKKAMADRLCASLQVDIEKTCSLLGWSPPVSVDEALELVANRPSPGPT0022965_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_D_QuiNAc_MODIFICATION,PGPT0022965-wbpV-K24310NANA
D1-35_00656804tagGCOG1682Teichoic acid translocation permease protein TagGATGACGCCGAAGGAAGCTATCAACAGTTTCTGGCGAAATCGCAGTTTGATCAGTGCTTTGGTACAGCGAGAGGTGGTTGGACGATACCGGGGTTCGTTCATGGGTATTCTCTGGTCTTTTTTTAATCCTATATTCATGTTGGCCGTCTACACATTTGTATTTAGCGTCGTTTTCAAGGCTCGCTGGAGTGGTGGAAGTGATTCAAAAACGGAGTTTGCCTTGATTTTGTTTGCGGGCCTGATTGTGTTTAATCTGTTTGCGGAATGTTTCAATCGAAGTCCCACACTGATTATCGCCAATACGAATTATGTCAAGAAAGTTGTTTTTCCTCTGGAAATTCTACCGTGGGTGACTGTTGGCTCTGCACTGTTTCATATGGTAATCAGCTGGATCGTCTGGCTGGTCGCCTATATCCTGCTGTTTGGAGTGCCACAGATGACCGCCATACTTTTTCCCTTGGTAATATTGCCGCTGATATTTCTGGTGCTAGGGTTGATGTGGCTATTCGCCTCACTCGGTGTTTACTTGCGGGACGTAACACAAGTTATAGGTATATTAACCACCGTATTAATGTTTCTCTCACCCATTTTTTATCCTGTCAGTGCGTTGCCGGAGAGGTATCAGAGTTTCATGATTTTTAACCCACTCACTCCAGCCGTCGAGTATGCACGTGATGTGCTGTTTTGGGGGCGGTGGCCTGATTTTAAAGTATTGGCGATCTATATGGCTGGTTCGCTCACGGTGGCTTGGTTGGGCTTCGCATGGTTTCAGAAAACACGTAAGGGGTTTGCTGATGTCCTCTGAMTPKEAINSFWRNRSLISALVQREVVGRYRGSFMGILWSFFNPIFMLAVYTFVFSVVFKARWSGGSDSKTEFALILFAGLIVFNLFAECFNRSPTLIIANTNYVKKVVFPLEILPWVTVGSALFHMVISWIVWLVAYILLFGVPQMTAILFPLVILPLIFLVLGLMWLFASLGVYLRDVTQVIGILTTVLMFLSPIFYPVSALPERYQSFMIFNPLTPAVEYARDVLFWGRWPDFKVLAIYMAGSLTVAWLGFAWFQKTRKGFADVLPGPT0023304_1152DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_TRANSPORT,PGPT0023304-ABC_2_LPSE_P|wzm|rfbA|tagG-K09690NANA
D1-35_006571308btuD_2Vitamin B12 import ATP-binding protein BtuDATGTCCTCTGAAATCGCCATTAAGGTTCAAAATCTCAGTAAGTGTTATGAGATTTATGACAAGCCAAGAGATCGATTGCTTCAAATGCTAAGCCGCGGAAAAAAACGCTACTGTCGGGAATTTTGGGCGCTCCGCGATATCTCTTTTGAAATACGTAAAGGAGAAACCGTAGGTATCGTCGGACGTAACGGCAGCGGTAAGTCGACCCTGTTACAAATTTTGTGTGGCACGCTTAATCCAACTGGCGGAACCGTAGAAACTCATGGTCGAATAGCAGCCTTGCTAGAGCTAGGGTCTGGTTTCAATCCGGACTTTACCGGGCGAGAGAACGTGTACCTGAACGCTTCGATTCTGGGGCTGAGTAAGGCGGAAATAGACAGTAAGTACGATGCCATTATAGGCTTCGCCGATATCGGCGACTTCATAAATCAGCCCGTAAAGACGTACTCGAGCGGCATGTTGGTACGTTTGGCTTTCTCCGTTCAGGCTCAGGTAGAACCTGACATTCTGATCGTTGACGAGGCCTTGGCCGTCGGGGATGCTAAATTCCAGGCGCGCTGTTTTGATCGCCTGAAAAAACTCAAGGAGAATGGCACCAGCATTCTCCTGGTTACCCATTCGAGTGAACAGATAGTTTCCCATTGCGATAAGGCGTTCCTGCTGGATTATGGCCTGCAGCTGGAGCAGGGAGAACCACGCCAGGTGGTCAATCGTTATCTGGACTTGCTTTTTGGCAAGACTCCGCATTCGGTAGCCACCATGGACGAATCGGTGAAGAGTGAGTCGCAGACGTACCTTGCGCCCGCTGGAGGTGCTGACGTTTTCGAATCGCATCCCAATTACAACCCAAACGAGTACCGCTGGGGCGATGGAGCCGCCACGATCATCGATTTTTATCTTGGTTGTGCCGGAGTCGATTATCCTGTTGCCGTCGATACGGGATCGAACATCAAGCTTGTGGTCTTTGTGAAGTTTGATACCGATTTGGTATGCCCTATCCTCGGTATGACAATCAAAACCAAGGAAGGTGTAACCGTATATGGTGTCAACAGTGAGACTCTGGAATGTCCGGATTTCCGGATGTTAGGTCGCAAGGGCGATATTGTTGAAGTTGAAATGCGAATCTCCTGCGATCTGGCGCCTGGTGACTATTTCATTTCCATAGGTGTCTCGACCAAGGAAGGAGAGGATGTCACGCCAAGGGATCGCCGCTACGACTCGATTCATATTCAGGTTCGTCCTACAGATAAATTTTTTGGGCTGGTGAATCTTGACTCCAGCATTCGTGCCAAGAAGGTTGTAAATTGAMSSEIAIKVQNLSKCYEIYDKPRDRLLQMLSRGKKRYCREFWALRDISFEIRKGETVGIVGRNGSGKSTLLQILCGTLNPTGGTVETHGRIAALLELGSGFNPDFTGRENVYLNASILGLSKAEIDSKYDAIIGFADIGDFINQPVKTYSSGMLVRLAFSVQAQVEPDILIVDEALAVGDAKFQARCFDRLKKLKENGTSILLVTHSSEQIVSHCDKAFLLDYGLQLEQGEPRQVVNRYLDLLFGKTPHSVATMDESVKSESQTYLAPAGGADVFESHPNYNPNEYRWGDGAATIIDFYLGCAGVDYPVAVDTGSNIKLVVFVKFDTDLVCPILGMTIKTKEGVTVYGVNSETLECPDFRMLGRKGDIVEVEMRISCDLAPGDYFISIGVSTKEGEDVTPRDRRYDSIHIQVRPTDKFFGLVNLDSSIRAKKVVNPGPT0023305_416DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_TRANSPORT,PGPT0023305-ABC_2_LPSE_A|wzt|rfbB|tagH-K09691NANA
D1-35_006583786hypothetical proteinGTGTTGGCTGAGTCATTTGAAGATTTTGATATTGATAAAAAGTTTGATGTCGTTACGTTGATTGGCGTGTTTGAATATGCCAATTTATTCATTTCCGGAGACAGCCCCGGACCGAAGATGCTGGAAAAGGTTCGTTCACTGCTAAAGCCGGATGGATTGTTGATCATCGCTATCGAGAACCAGCTCGGCTTGAAATATTTTGCGGGTGCTCCTGAAGATCACGTGAGCGCGCCAATGTTTGGCGTTGAAGGTCGTTACAGCAGCCATACCCCGCAAACCTATGGAAAAAAGGCGCTGAGTTCATTACTTGCCGATGCGGGTTTTTCAACGCGAGAGTTCATGGCGCCCTTTCCGGATTACAAACTGCCGGTTTCAGTTGTAACCGAGCGCGGGTTTAATGAATCCGTCTTTGATGCGTGTGCTTTCGCTACGCAAACCGTTAGACGCGATCCGCAGCTGCCAAAACTTACGACGTTTTCGCTTGAGTTGTCTTGGCCGCAAATAATCAGCAACGGCCTTGGGCTGGATATGGCCAATTCTTTCCTGATTGCTGCTTCGGCCGGGTCGCGGAAACGAGTAGAGCCTGAGGTCTTGGCTGTGCATTATAGTTGCGACCGTCGCGCTGTCTATTGTAAGCGTTCAGAATTCAGGATGAACCCGAACGATGGGATTCGCGTGCATTATGAGAAGCTCGGCAAGCTTGCAGCCAACGCCTCCGATGAGGGCACGATCGTCAAGTTCAGGCTGCCTGAGTCAGAGCCTTACATACAGGGTGAGGTTTTTGTAAACAAGCTGATCCACATAGTCAATGCCGAGGGCTGGACGTACGCCGATGTGGGGGCGTTTCTTAAGCAATATGTAACTGTTCTGGGACTCGTATCGGAAACAGCGGGAAATGAGCTGAATATATTGCCAGGGACTTTGATAGACGCAGTCCCGCAGAATATTATTGTCAACGGTGATAGCAGTCCTCAGCTAATCGACAAGGAGTGGGCGCTGAATTCGCCTGTACGACTTGAATTTCTGTTGTTCAAAACCTTGACGCAGTTGTTGTCATCGGTAACTCGCTTCGCTAAAGGTGCTGAATCGGGACCTGTCACGAGAAGAGGTTTTGTTTTCAAAAGTTGTGAGGCGGCCGGTTATCCAATTAGCGATAACGATGTTAAAGATTTTCTGCTCCTCGAAGCGTCAGTTCAAAACGTCATCAATGGTCGGGAGATCAGTGAGTTCCTGAGTTGGGACGGTGATCAGATCATTACTGAAGATAATCTGTTCTCAGCCTTCAACGTTTCCCAAACCTTACTGGCGCAAACCTCTCGAGGCCTGAACGTTGCAGAAGAGGAGATCGACAGATTATCCAAACAGCTGGTTGAACGAGAGGCGATTTATGGCGCTATCGTCAGTTCCAACTCCTGGCTCATAACAAAACCTCTCCGTTTTTTTGCGCGCTCCCTGCGTAAAGGTAGTGGTTGTCTTCAAAGGGGATTGGAGCATTCCAAAAAAACGCTGACCGCTTATCTACGGGGTCAAGAGATAAATGCTTCGATGTTGGAAGCCACTCATGGCGTCGTGGAGGAGCCTGTAAAGCGTGTGCGTTCCATAAGTGTCATCTTGCCTATCTACAGGGATGTGGAGATGACCAGGCGCTGCATTCTGGCCGCAATGCCAGGCATTATTGCCTGTGAGTCGAAACTCATTGCGCTTAATGACTACAGTCCAGACGCGGGCATGCAGGACATGCTGCTTGAGTTGCAGAAACAATGGCCTGATGTCCTCATGGTTCTGGAAAATCAGCAGAATCTTGGTTTCGTCAAAACCGTGAATCGCGGTATGCGCCATAGGCCTGAGGACGACATTGTCTTTTTGAACAGTGACGTCATCGTTCCGGTGGATTGGTTGGAGCGTTTGGCGTCGGAGGCATACATCGCACCCAACATCGGCACGGTCACCCCATTTTCCAACAATGCTACTATCTGTAGTTTCCCGGCTTTTCTGCTCGAGAACGAAGCGGCGTTCGGATTAAGCGTCGACGAGATCGACTCGGTGTTCTCTAATCCGCGTCTGCCAGTCGCCCAGGTGCCGACGGGTGTAGGCTTTTGCATGTATGTACGTCGGGATTGCCTGGAGCTTATCGGTCTACTGAATGAAGAGAAGTTCGGTAGAGGTTACGGCGAGGAAAACGATTTGTGTCAGCGCGGACTGAAAGCGGGCTGGCTTAACATCGTCACCCCTAACCTTTATGCTTTTCATGAGGGAGGGGTAAGCTTCTCTTCCTCCAAACAGGCTCTGACTGACCATGCCTCCAAGATGATCGCGGAGCTTCATCCAGATTATCACTTGGACATACAACGCTTCATCGTTGCAGATCCGCTAAAGAGCGTCCGTATCAGGCGTTTTGCTCAACTGATCGGGTCTTTGGATCGGCCAAAGGTGTTGCACATTTCTCATGAAGCAGGCGGTGGCGTTCGACAGCATCTGGAAGAGTTGGCCGAAGCGGTCGGGTCCAATGCGTGCTGCCTGTTCTTGGCGCCTCACAGGGGCACCGCTGCGATTACGTTGCGTATGGGACTTTTTACCGGAGCGGACGAACTGGTGTTCCAGCTGCCCAAGGATCACAGCGCCCTCGTAGCGCTCCTAAAAGCCTGCGGAGTCAACTTGGTGCATTTCCATCATTCGTTAGGGCTCAATCCTGCGCTGCTGGAACTGCCCGCAGAACTGGACGCCGCGTATGCTTTGACGGTTCATGACTATTATTGGCTTTGCGGTAATCCTACGTTGACAAATCAACGAGGTTTCTACCCTGGTGCTTACGCGGATAACATTGAAAATCCGAACTTCCCTTTACCTCGTGGCGTTTCCGCGCAGGACTGGCGCGAACAGCTAAGGGGATTTATAGAACATGCCCTGAAGGTGATTTTTCCTTCCAGCTATACGCTTTCGATCTATAAACGACATTATGAATTGGCTAACGCTGTAATCGCAGGGCACGTCGAGCATTTGCGTAACATTCACGCTGCGGTAACCCCATTGTTGACCAAATCACGGTACAACGTGGGGGTGATCGGTGCGTTGGGTAAGGAAAAGGGCGCAGATTATCTGGAGCAGATGGCGGCAGTCGCATTCTCCACGCAAACCCCTATCGACTTTAAATTGATCGGATTTGCTTACCGAGAACTGAACGGTATTAAGTGCACTGGCCATTATGAATCTGACGAACTGGCCGCCTTGATCAAGACTAACGATATCGATCTCTTCCTGTTTCCGAGTCAGTGCCCCGAAACGTACAGCTATACATTGAGTTTTGCGATGGAGTCAGGATTGCCCATCATCGCTCCCGATATTGGAGCTTTTCCGGAGCGGCTCAGTGGTCGAAACAGTACCCTGATCTATGAGTACGGGATGGAACCTGCCGTTTTGCTGTCAAAAGTCCAGATGTTCATTAAGGAACTGGCTGCCGGCCAAAGTTTACCCGCACCGTGTGTTGATAACTCGGCATGCCAGGATGATTTTTACAACACCGATTACCTCGCGTTATGCCATTGTGGATTCGACGGTGCCCGAGACAGTCAAGCTGTATTGCAACTACCGGTTAGGTCAGCTGTTTCGGCTGATATGGACAGTTTGTTGACCTATAAAGAGTTGATGCTGCTGGCTCTTTGGACTCTTTACCGTAAGCCTGGAATGCACAGGGTTCGGGATTCCGTTCCGTATGAGGTGCGTCAGAAGATCAAGAGGATGCTGACAAAACGGCCTTTATATGAAGTGGTCGGTGTCCATAAGAAATGAMLAESFEDFDIDKKFDVVTLIGVFEYANLFISGDSPGPKMLEKVRSLLKPDGLLIIAIENQLGLKYFAGAPEDHVSAPMFGVEGRYSSHTPQTYGKKALSSLLADAGFSTREFMAPFPDYKLPVSVVTERGFNESVFDACAFATQTVRRDPQLPKLTTFSLELSWPQIISNGLGLDMANSFLIAASAGSRKRVEPEVLAVHYSCDRRAVYCKRSEFRMNPNDGIRVHYEKLGKLAANASDEGTIVKFRLPESEPYIQGEVFVNKLIHIVNAEGWTYADVGAFLKQYVTVLGLVSETAGNELNILPGTLIDAVPQNIIVNGDSSPQLIDKEWALNSPVRLEFLLFKTLTQLLSSVTRFAKGAESGPVTRRGFVFKSCEAAGYPISDNDVKDFLLLEASVQNVINGREISEFLSWDGDQIITEDNLFSAFNVSQTLLAQTSRGLNVAEEEIDRLSKQLVEREAIYGAIVSSNSWLITKPLRFFARSLRKGSGCLQRGLEHSKKTLTAYLRGQEINASMLEATHGVVEEPVKRVRSISVILPIYRDVEMTRRCILAAMPGIIACESKLIALNDYSPDAGMQDMLLELQKQWPDVLMVLENQQNLGFVKTVNRGMRHRPEDDIVFLNSDVIVPVDWLERLASEAYIAPNIGTVTPFSNNATICSFPAFLLENEAAFGLSVDEIDSVFSNPRLPVAQVPTGVGFCMYVRRDCLELIGLLNEEKFGRGYGEENDLCQRGLKAGWLNIVTPNLYAFHEGGVSFSSSKQALTDHASKMIAELHPDYHLDIQRFIVADPLKSVRIRRFAQLIGSLDRPKVLHISHEAGGGVRQHLEELAEAVGSNACCLFLAPHRGTAAITLRMGLFTGADELVFQLPKDHSALVALLKACGVNLVHFHHSLGLNPALLELPAELDAAYALTVHDYYWLCGNPTLTNQRGFYPGAYADNIENPNFPLPRGVSAQDWREQLRGFIEHALKVIFPSSYTLSIYKRHYELANAVIAGHVEHLRNIHAAVTPLLTKSRYNVGVIGALGKEKGADYLEQMAAVAFSTQTPIDFKLIGFAYRELNGIKCTGHYESDELAALIKTNDIDLFLFPSQCPETYSYTLSFAMESGLPIIAPDIGAFPERLSGRNSTLIYEYGMEPAVLLSKVQMFIKELAAGQSLPAPCVDNSACQDDFYNTDYLALCHCGFDGARDSQAVLQLPVRSAVSADMDSLLTYKELMLLALWTLYRKPGMHRVRDSVPYEVRQKIKRMLTKRPLYEVVGVHKKNANANANANA
D1-35_006591017wecAUndecaprenyl-phosphate alpha-N-acetylglucosaminyl 1-phosphate transferaseATGAACTGGTTCTGGTTTTTGCTGTTCAGTTTCACCAGCGCGTTTGTTTTGACGGCGCTGTTGCGGCGCTATGCATTATGCAAAAGTTTAATCGATATGCCCAACGACCGTAGCTCTCATTCTATACCTACGCCGCGGGGTGGGGGGGTCGCTGTCGTCGTGACGTTTCTGGTCGCGCTGTCGGTACTGTTGTTTAAGCAATTGATCCCCGTCGATTTATTTCTGTCTGCGATTGGAGCTGGAGCATTTGTTGCAGTAATAGGTTTCATGGATGATCATGGGCATATTGCTGCGCGATGGCGGTTACTGGGACATTTTGCAGCAGCGATATGGGCTCTTTGTTGGATCGGCGGTCTAGCTCCTATAAGTGTATTTGGCGAGCATGTCAACTTAGGTTGGCTGGGGTCGATATTGGCTGCATTCTTCCTTGTCTGGATGCTTAATCTGTTCAACTTCATGGACGGTATCGATGGCATTGCAAGCATCGAAGTGATTACTGCTTGCTTGGGTGCATGTGTGCTGTATGCATTGGGCGATGCGGATCACTTGGTTTGGCCTGCTCTTTTGCTGGCCTCTTCCACTGCCGGATTTCTGCTATGGAATTTTCCACAGGCCCGAATTTTCATGGGGGATGCTGGCAGCGGGTTCCTGGGTATTATCCTTGGTATCGTCACGCTTCATGCAGCCTGGACATCATTTATGTTTTTCTGGGGCTGGTTGATTCTTTTAGGGGTATTTATCGTCGATGCATCCCTCACTTTATTTCGGCGTTTGATTCGCGGCGAGAAGGTCTATGAGGCGCACCGCAGTCATGCCTATCAAGTTGCATCGCGTAGATACCGCAGGCACTGGCCTGTGACCGTTGTGGTCGGAGGAATCAACTTGCTGTGGCTGTTACCCATCGCGGTGTGCGTCACATGGTACGGGTTGGATGGGGTTATAGGTTTGTCCCTGGCCTATTTACCCTTGGTACTGCTTGCGATCAAATACGAAGCGGGGCAGGCTGAAGCCGGATGAMNWFWFLLFSFTSAFVLTALLRRYALCKSLIDMPNDRSSHSIPTPRGGGVAVVVTFLVALSVLLFKQLIPVDLFLSAIGAGAFVAVIGFMDDHGHIAARWRLLGHFAAAIWALCWIGGLAPISVFGEHVNLGWLGSILAAFFLVWMLNLFNFMDGIDGIASIEVITACLGACVLYALGDADHLVWPALLLASSTAGFLLWNFPQARIFMGDAGSGFLGIILGIVTLHAAWTSFMFFWGWLILLGVFIVDASLTLFRRLIRGEKVYEAHRSHAYQVASRRYRRHWPVTVVVGGINLLWLLPIAVCVTWYGLDGVIGLSLAYLPLVLLAIKYEAGQAEAGPGPT0023190_118DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0023190-wbpL-K13007NANA
D1-35_00660987hypothetical proteinATGAATACGCGCCCTTCTCACACCGAATTGAATCTGCACACAGCAGCCGGTATCGACTTGACAACTCATCACAGCAAAGTTGGTATTCTACTTTGCACCTATAATGGCGCTGCTTATATCCAGGAACAATTGCGCTCATTTGCAACCCAGACCCATAAGGATTGGGTAATCTACGCATCCGATGACGGTTCAAGCGACGACACCATAAAGCATCTCAAGAATTTCCAGCTCCAGAATGGAGAAGACCGCTTAATCATTCTAAATGGCCCGCATCAGGGCTTTGCAAAAAATTTCCTGTCTTTAATAAAAAACCGATCCATTGAAGCGGACTACTTCGCATTCAGTGACCAGGACGATGTCTGGTTTCCCGACAAATTAGAACGAAGTATCGCCCAGCTCGAGCCCCTGCAAGACACGCCGGCGCTTTACTGCTCCAGAACCCGTCTTGTTTCTGCCGACGGGCAGTTCATCGGGCTTTCGCCGCGCTTTTCAGCGCCTCCTCACTTTCGCAACGCATTGGTTCAAAGTATAGCCGGGGCCAACACAATGCTGATAAATCGTCAGGCCCGAGCGTTATTGGCGAAAACGCCCGACGAGTCAATAATTGTCGCCCACGATTGGTTGACGTATCTCTTGGTCAGCGGGTGTGGGGGCAAAGTTTTTTTCGATCAGACGCCCACCCTCGATTACCGGCAACATGACGGCAACCTGATCGGAGCAAACTCAGGCCTCAGGGCGCGACTGACTCGCTTGGTCAAGATGTGTACGGGACGGTTCAAAGAGTGGAGCGACCAGAACCTCAATGTATTGGCCGAATTCAAGCCGACATTGACAACGGAAAACCGACGCGCACTTGAACAATTCGAACAAGCGCGCCAAAGCGCCCTATTCCCTAGATTACGCCTGATGAAGGAAGCCGGAATATACCGACAGACGAGCAAAGGGAATGTCAGCCTCTTTCTCGCCGCGTGCCTTAATAAAATCTGAMNTRPSHTELNLHTAAGIDLTTHHSKVGILLCTYNGAAYIQEQLRSFATQTHKDWVIYASDDGSSDDTIKHLKNFQLQNGEDRLIILNGPHQGFAKNFLSLIKNRSIEADYFAFSDQDDVWFPDKLERSIAQLEPLQDTPALYCSRTRLVSADGQFIGLSPRFSAPPHFRNALVQSIAGANTMLINRQARALLAKTPDESIIVAHDWLTYLLVSGCGGKVFFDQTPTLDYRQHDGNLIGANSGLRARLTRLVKMCTGRFKEWSDQNLNVLAEFKPTLTTENRRALEQFEQARQSALFPRLRLMKEAGIYRQTSKGNVSLFLAACLNKIPGPT0023115_78DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0023115-rgpB-K12997NANA
D1-35_006612010pglFCOG1086UDP-N-acetyl-alpha-D-glucosamine C6 dehydrataseGTGTTCGATGACGTTATGAAGGGGCTGAGGACGTTCCTCTTAGGCTTGCCGCGTCGGAAAAAACGCCTCATTCAAGTCGTTACAGATGTAGCCCTTGTGTGGTTGGCCCTCTGGCTGGCCTTCATCGTCCGCCTCGGCATAGATGACATGTATGATCCTTTGAAGGCTCATGTCTGGCTGTTCGCCTCCGCTCCTCTCATCGCCATTCCGTTATTCATCCGTTTCGGTATGTATCGAGCGGTCATGCGCTATTTTGGCAACGACGCTCTTGTAGCCATTATCAAGGCGGTCAGCCTTTCGTCGCTTGTTCTGGCGGTCGTTGTCTATTGGTACAGTAACCACCAAACGGTGATCCCACGATCGATCATCTTTAACTATTGGTGGCTGAGCCTTGTCATTATCGGCGGATTGCGGCTGTGTATGCGCCAGTATTTCATGGGGGATTGGTTTACGGCTGCCCAGCATGTGCCGTTTACCACTCGTGACGATGGCCTGACCAAGGTCGCCGTGTATGGGGCGGGCGTGGCTGGCAATCAGTTGGTTGCGGCGTTGCGCATGGGAAAGGTCATGCGTCCGGTCGCTTTTATTGATGACGACCCCGGCATTGCCGATCGTTCCATCTCGGGTCTTCAGGTTTACAAGCCCAAGCACATCCAGCAAATGATTGATGTAACGGGTGCGCAGGAAATTCTCCTTGCGTTGCCGTCGTCCACCCGTGCACGGCGCAGGGAGATCCTCAATCTGTTGGAGGGTTATCCGCTTCACATACGAAGCGTGCCGAACTTTACTGATCTGGCCAGTGGCCGGGTAAAAGTGGACGATATCCAGGAAGTCGACATCGCCGACCTGCTCGGTCGGGATGCCGTACCGGCTCGCCCTGACTTGCTCAGGCGTTGCGTCAAGGGTAAGACAGTGATGGTGACAGGCGCTGGGGGCTCAATCGGTTCGGAGCTGTGCCGGCAGATATTTTCCTTGGGGCCGACCACGCTTCTACTGTTCGATCACAGTGAGTTCAATCTCTACAGCATTCTGTCCGAGCTGCAGCAGCGTACTGATCGCGAGTCTACTTCGATCAAGTTGTTACCGATCCTGGGTTCTATCCGTCATCCGGAAAAATTGCTGGATGTGATGAAAACCTGGAAGGTGGACACCGTTTACCACGCGGCGGCGTATAAGCATGTGCCGATGGTAGAGCACAACATTGCCGAGGGCGTGTTGAACAACGTTATAGGTACGTTGAACACGGCGCAGGCTGCACTGCAGTCGGGGGTTTCCAATTTTGTTCTGATTTCCACCGACAAGGCGGTGCGGCCGACGAATGTCATGGGTAGCACCAAGCGTTTGGCTGAGTTGACGCTTCAGGCCTTGAGTCGGGAGGTTGCGCCTGTGTTGTTTGGCGACAGGGCTAATGTATCGCGGGTAAACAAGACCCGTTTCACGATGGTTCGCTTTGGCAACGTATTGGGTTCCTCGGGTTCGGTGATTCCTTTGTTTCACAGCCAGATCAAGTGTGGGGGGCCGCTGACGGTCACCCACCCGAAAATCACCCGTTATTTCATGACGATCCCCGAAGCTGCGCAGTTAGTGATCCAGGCGGGGTCCATGGGGCAGGGTGGGGATGTCTTCGTGTTGGATATGGGTGAACCGGTAAAGATTGTCGAGCTTGCGGAGAAGATGATTCATCTTTCCGGCTTGAGCATCCGTTCGGAGCGCAATCCCCAGGGTGACATTTCCATCGAGTTCACCGGCCTGCGGCCTGGTGAGAAGCTGTACGAGGAGTTGCTGATCGGCGACAACGTTGCGGCTACCGAGCATCCGATGATCATGACCGCCAACGAGGATCATTTGCCTTGGGACGTACTCAAGCTCAAGTTGGGCGAGTTGCTCGTCGCGGTCGAGGGAGATGATTACACTCGAGTGCGACAGCTGCTGCGCGAGACTGTCCACGGCTATACACCCGACGGCGAGATCGTCGACTGGGTGTACCAGCAGCGCCGTCTCGAACCCTGAMFDDVMKGLRTFLLGLPRRKKRLIQVVTDVALVWLALWLAFIVRLGIDDMYDPLKAHVWLFASAPLIAIPLFIRFGMYRAVMRYFGNDALVAIIKAVSLSSLVLAVVVYWYSNHQTVIPRSIIFNYWWLSLVIIGGLRLCMRQYFMGDWFTAAQHVPFTTRDDGLTKVAVYGAGVAGNQLVAALRMGKVMRPVAFIDDDPGIADRSISGLQVYKPKHIQQMIDVTGAQEILLALPSSTRARRREILNLLEGYPLHIRSVPNFTDLASGRVKVDDIQEVDIADLLGRDAVPARPDLLRRCVKGKTVMVTGAGGSIGSELCRQIFSLGPTTLLLFDHSEFNLYSILSELQQRTDRESTSIKLLPILGSIRHPEKLLDVMKTWKVDTVYHAAAYKHVPMVEHNIAEGVLNNVIGTLNTAQAALQSGVSNFVLISTDKAVRPTNVMGSTKRLAELTLQALSREVAPVLFGDRANVSRVNKTRFTMVRFGNVLGSSGSVIPLFHSQIKCGGPLTVTHPKITRYFMTIPEAAQLVIQAGSMGQGGDVFVLDMGEPVKIVELAEKMIHLSGLSIRSERNPQGDISIEFTGLRPGEKLYEELLIGDNVAATEHPMIMTANEDHLPWDVLKLKLGELLVAVEGDDYTRVRQLLRETVHGYTPDGEIVDWVYQQRRLEPPGPT0022960_46DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_D_QuiNAc_MODIFICATION,PGPT0022960-wbpM-K24300NANA
D1-35_00662336hypothetical proteinATGCGTACAAGCTACCTCTACTCGGTGATCTTTGCCTTGCTTACCAGCGCCTCGATCGTTGCTATCGCGGCCCCAGCGGCCAAGCCGGTGTCAATGGCTGCGCAACAAGCGGTGGAGCAACCGGTCACCACGCAAAGCGCCAAGGTCGATATCAATGGGGCAGATGCTGCGACATTGCAGCGCGAGCTGTCCGGCATAGGCAAGGGTAAGGCGGAGGCGATTGTTGCATATAGGGATAGTAATGGACCTTTCTCTTCAGTGGAGGAGCTGCTGGAGGTCAAAGGGATCGGAAAGGCGATCCTCGACAGAAACCGCGACAAACTGGAAGTGAATTGAMRTSYLYSVIFALLTSASIVAIAAPAAKPVSMAAQQAVEQPVTTQSAKVDINGADAATLQRELSGIGKGKAEAIVAYRDSNGPFSSVEELLEVKGIGKAILDRNRDKLEVNPGPT0029410_3021DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-COMPETENCE-RELATED_DNA_TRANSFORMATION_TRANSPORT,PGPT0029410-comEA-K02237NANA
D1-35_00663654hypothetical proteinATGACTAGCTCTCTCTCCCTGGCCGACCAGATCACCCTCGAACTGCGAGCCGATATTATCGGCGGTCGCCTGGTTCCAGGCATGGCGCTGATAGAAAACAACCTGGCATCCGCCTATAACGCATCACGCAATACCATCCGTGAAGCCTTGCATCGTCTCGGCCAGGAAGGGTTGACCCGTTACGTGCGTAACAAAGGGGTGATGGTCCGTAGGTTGGATGCCGATGACGTGCGGGATCTGTTCAAGGTCCGTCGTACCTTGGAGCTACAGGCCATCATGGCCAGCAAGCCCTTGAGCGACTATCAGTCCGACCGGATGCTCGAAACCCTTGAAGCGGCTGAGCTGGCTCGTGAGCGCGAGGACTGGCGCGCCGTCGGGACCCACGGCTTGGCGTTCCACCAGCACATCGTTGGGCTGATGCGCAGTCCTTTGCTTGATGAGTTTTTCACTAACGTGGTTGCCCAGATGCGCCTGGTGTTCTGTTCCGCTCCCGATGAGGCGCGCTTCCAGGCGCCTTGGCTCGCCCGAGATCGACAAATCCATGACTGGTTGGCTGAAGGCAACAAGCTCGCAGCCCTGGAGGGGATGAACCTTTATCTCGACGATTCCGAACAGTTGCTTCTGCACCTGTTGGTTTGCGCCACACCTCAATGAMTSSLSLADQITLELRADIIGGRLVPGMALIENNLASAYNASRNTIREALHRLGQEGLTRYVRNKGVMVRRLDADDVRDLFKVRRTLELQAIMASKPLSDYQSDRMLETLEAAELAREREDWRAVGTHGLAFHQHIVGLMRSPLLDEFFTNVVAQMRLVFCSAPDEARFQAPWLARDRQIHDWLAEGNKLAALEGMNLYLDDSEQLLLHLLVCATPQNANANANANA
D1-35_00664852hypothetical proteinATGTACAAAGACTACCCCGCTGCTTACCAGGTCAGCAAAGGCTCAGCCTTGCAAGTAGACCAACCCTTCTACGAGCGCATCCGCGCCGAGCAGGGCAAGCGCACGCTCATCGAGCAGTTCGAGGTGCCGATCCGCACCGGTCGCGCTTGGCATGTGCCAGCGGGGCATGTGTTTCGCGTCACCACACCGGTGGGGCCGCAGGTGGGAGACTTCAACGTCTGGAATGCCCATGATCCGCGAGAGCGCCTGTGGGCTGCGCGTACTCGGCAACTCCAGGGCGCGCATGTCAGCACCCACGATCGGTTGTGGTCGAATTTGCCGTTTCTACGTCCACTGGTGACGATCACTGATGACAGCCTGGCCGGCTACGGCATCGACGAGCATGGCGGGCGTCTACATGATCTGTTGGGGACGCGTTGTGATCCTTACGTGAACAAGATGCTGACCGGTGAGGATTTCCATCATCATTGCCACTCGAATCTGACCCGGGCGGTATTGCCTCATGGTTTGACCGAGTTCGATGTGCACGATGTGTTGAATATTTTCCAATGCACCGGGCTGAATCATGACGACATGTATTTCATGAAGGCGTGTCCGGCGCAGAAGGGTGATTACTTGGAATTCTTCGCAGAGATTGATTTGTTGTGCGCGTTATCGACCTGTCCTGGGGGGGATCTGTCGTTGGCCATGTGGGGGCCGGATGCCGAGGATCCTTTAAGCGTCTGTCGTCCGCTGGGGGTGGAGGTTTACCGGTTGGAGGATTCGTTGTTGCAGGGCTGGAGTCAACCGGAGCGGGCGGCTTACAAGGGGCTGCATGGGTTGCATATTGCCAAGGCGGATTGGGAGAAGTAAMYKDYPAAYQVSKGSALQVDQPFYERIRAEQGKRTLIEQFEVPIRTGRAWHVPAGHVFRVTTPVGPQVGDFNVWNAHDPRERLWAARTRQLQGAHVSTHDRLWSNLPFLRPLVTITDDSLAGYGIDEHGGRLHDLLGTRCDPYVNKMLTGEDFHHHCHSNLTRAVLPHGLTEFDVHDVLNIFQCTGLNHDDMYFMKACPAQKGDYLEFFAEIDLLCALSTCPGGDLSLAMWGPDAEDPLSVCRPLGVEVYRLEDSLLQGWSQPERAAYKGLHGLHIAKADWEKPGPT0001000_182DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-UREA_USAGEN-AQUISITION-UREA_METABOLISM,PGPT0001000-ycgI-K09967NANA
D1-35_00665168hypothetical proteinATGCCCTGGTATGCCTGGTTGATCCTGATCGTCGCCATCGGCTCGATCGTTGGCGGCCTGATGATGCTGCGTGACACCGCCAACAAGGTGGAACTGACGGATGAGCAACGCAAACGTGTTGCCGAGCGCAATGCGGAAATGGATGCGAAAGAGGCCAAGGACCGCTGAMPWYAWLILIVAIGSIVGGLMMLRDTANKVELTDEQRKRVAERNAEMDAKEAKDRNANANANANA
D1-35_006661365yhdG_1COG0531putative amino acid permease YhdGATGAACACACAACTCAAACCCACCCTGGGCACCCTGCACTTATGGGGCATCGCCGTTGGCCTGGTGATTTCCGGTGAGTATTTCGGCTGGAGTTACGGCTGGGGAGTCGCCGGAACGCTGGGCTTTCTGGTGACGTCGTTCATGGTCGCGGCCATGTACACCTGCTTCATCTTCAGCTTTACCGAACTGACCACCGCCATTCCCCACGCTGGCGGACCGTTCGCTTACAGCCGTCGAGCCTTTGGCGAAAAAGGCGGCTTGATCGCCGGCCTGGCAACCCTGATCGAATTTGTCTTCGCACCACCGGCCATTGCCTTGGCCATCGGCGCCTACCTGAATGTGCAATTCCCGGCGCTCGACCCGAAACACGCTGCCGTCGGCGCCTACATCGTGTTCATGGGCCTGAACATCCTCGGGGTGAAACTGGCCGCGACCTTCGAGCTGATCGTCTGCGTGCTTGCCGTCGCCGAGTTGCTGGTCTTCATGGGCGTGGTCGCACCCGCGTTCAGTTTCAGCAGCTTTGCCCTGAACGGCTGGGCCGGTTCCGACGTGTTCGGTGCACCGGCCATTGCCGGAATGTTCGCCGCCATTCCCTTCGCGATCTGGTTCTTCCTCGCCATCGAAGGCGCGGCCATGGCCGCTGAAGAAGCCAAGGATCCGAAACGCACGATCCCCAAAGCCTACATCAGCGGCATCCTGACGTTGGTGTTCCTGGCCATGGGCGTGATGTTCTTCGCCGGTGGCGTCGGTGACTGGCGCACCCTGTCAAACATCAACGATCCCCTGCCGCAAGCCATGAAAACCGTCGTCGGTGAAAGCTCCGGCTGGTTGCACATGCTGGTGTGGATCGGCCTGTTCGGCCTGGTAGCCAGTTTCCACGGGATCATCCTTGGCTACTCACGCCAGTTCTTCGCCCTGGCCCGCGCCGGTTACCTTCCCGCGTCCCTCGCCAAACTGTCACGCTTCCAGACCCCACACCGGGCCATCATCGCCGGCGGCCTGATCGGCATCGCGGCGATCTACAGCGACGGCCTGATCAACCTCGGCGGCATGACCTTGACCGCGGCCATGATTACCATGGCCGTGTTCGGCGCAATCGTCATGTACATCATGAGCATGCTCAGCCTGTTCAAACTGCGCAAAACCGAACCGAATCTCGAACGTACGTTCCGCGCCCCCGGCTATCCGATCGTACCGGGGATCGCCCTGGCGCTGGCGGTGGTGTGCCTGGTGGCGATGGCCTGGTTCAACACGCTGATCGGGCTGATCTTCCTCGGCTTCATGGCAGTCGGCTTCGTCTATTTCTTCCTCACGGCACAACTGCGCGCAGACGCGCCGGCCGATGCGATGTTGACCGGGCTATAAMNTQLKPTLGTLHLWGIAVGLVISGEYFGWSYGWGVAGTLGFLVTSFMVAAMYTCFIFSFTELTTAIPHAGGPFAYSRRAFGEKGGLIAGLATLIEFVFAPPAIALAIGAYLNVQFPALDPKHAAVGAYIVFMGLNILGVKLAATFELIVCVLAVAELLVFMGVVAPAFSFSSFALNGWAGSDVFGAPAIAGMFAAIPFAIWFFLAIEGAAMAAEEAKDPKRTIPKAYISGILTLVFLAMGVMFFAGGVGDWRTLSNINDPLPQAMKTVVGESSGWLHMLVWIGLFGLVASFHGIILGYSRQFFALARAGYLPASLAKLSRFQTPHRAIIAGGLIGIAAIYSDGLINLGGMTLTAAMITMAVFGAIVMYIMSMLSLFKLRKTEPNLERTFRAPGYPIVPGIALALAVVCLVAMAWFNTLIGLIFLGFMAVGFVYFFLTAQLRADAPADAMLTGLNANANANANA
D1-35_0066790hypothetical proteinATGAGTGTTCTGGACGGGGTGTCATTGCTGCTGGCAGTGGCGCTGTTCATTTATCTGCTGGTTGCGCTGTTGCGCGCGGATCGGAACTAGMSVLDGVSLLLAVALFIYLLVALLRADRNPGPT0002765_59DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0002765-kdpF-K01545NANA
D1-35_006681695kdpACOG2060Potassium-transporting ATPase potassium-binding subunitATGCACGGTTATGACTTCGGGCTGATCCTCGGCTTTTTTGCTCTGGTGCTGATTCCGGCACCGTTTCTGGGACGGTTTTACTACCGGGTGATGGAGGGCCAGCGTACCTGGCTGTCGCCGATTCTTGGGCCGGTGGAGCGCGGTTGCTACAAGGTGGCCGGCATTGATCCGACTGCCGAGCAGAGTTGGCAGAAGTACACCCTGGCCTTGCTCGCATTCAATCTGGCGGGATTTGTGCTGTTGTTTGCGATCCTGTTGTTGCAGGGTCATTTGCCACTTAACCCGGAAAACCTGCCAGGCATGGAATGGACCCAGGCCTTCAATACGGCGGTCAGCTTCGTGACCAACACCAACTGGCAGTCCTACAGCGGGGAGGCGTCCCTCAGCTATTTGAGCCAGATGGTCGGTCTGACGGTGCAGAACTTCGTCAGCGCCGCCACCGGCTTGGCCGTGCTGGTGGCGCTGTGTCGTGGGATCGGGCGCAAGTCCGCGACGACGTTGGGCAATTTCTGGGTCGACATGACCCGTGCCACCCTCTATGGACTGTTGCCGCTGTGCCTGCTGCTGGCGCTGTTTCTGGTGTGGCAGGGCGTGCCGCAAACCTTCGCGCAGTATGTGCACGGGGTGACGATGCAGGGCGTCGACCAGGTGATTCCATTGGGCCCGGCCGCCAGCCAGATTGCAATCAAGCAACTGGGCACCAACGGCGGTGGTTTTTTCGGTGTCAACTCGGCGCACCCGTTCGAGAACCCGACGGCCTGGAGCAATCTGTTTGAAGTCGCGTCGATCATCCTGATCCCGGCGGCGCTGGTGTTCACGTTCGGCCATTACGTCAAGGACCTGCGCCAGAGTCGGGCAATCATCGCCTGCATGCTGGCGCTGTTCCTGATCGGCGGCGCGACGTCGCTGTGGGCGGAATTCCAACCCAACCCGGCCCTTGATAACGCGGCCGTTGAACAGGCCGCGCCGCTGGAAGGCAAGGAGTCACGTTTCGGCACCACGGCCACGGTGCTCTGGTCGGTGACCACCACGGCAGCCTCGAACGGCTCGGTCAACGCGATGCACGACAGCCTCAACCCGCTGAGCGGCATGATCGCGCTGGTGAACATGATGCTGGGCGAAGTAATTTTCGGCGGTGTTGGCGCCGGGCTCTACGGGATGCTGCTCAACGTGTTGATCGCGGTGTTCCTGGCCGGGTTGATGATCGGTCGTACGCCGGAATACCTGGGCAAGAAACTCGGCGCCCGGGAAGTGCAGTTGCTGGTGGTGACGCTGCTGGTGATGCCGGTGAGTGTGCTGGTGCTCGGCGCGATTGCCGCAGGCCTGCCCGGGCCCGCCGCGGCGGTGAGCAATCCTGGCGCTCATGGCTTCAGTCAGTTGCTCTACGCCTACACCTCGGCGGGGGCGAACAACGGTTCTGCGTTTGCCGGTTTCGGCGCGAACACGCCGTTCCATAACCTGATGCTGGGCCTGGGCATGTTGATTGGCCGTTTCGGCTACATCCTGCCGGTGCTGGCGTTGGCCGGCAGCCTGGCCCTGAAGAAAACCGCACCGATCGGCCAGAACAGCTTCCCGACCCACGGCCCGCTGTTCGTGACCCTGCTGACCGTGACCATCCTCCTGGTGGGTGGCCTGACGTTCTTGCCGACCCTGGCCCTGGGGCCGATCGCCGAACACCTGAGCATGGGTTTCTGAMHGYDFGLILGFFALVLIPAPFLGRFYYRVMEGQRTWLSPILGPVERGCYKVAGIDPTAEQSWQKYTLALLAFNLAGFVLLFAILLLQGHLPLNPENLPGMEWTQAFNTAVSFVTNTNWQSYSGEASLSYLSQMVGLTVQNFVSAATGLAVLVALCRGIGRKSATTLGNFWVDMTRATLYGLLPLCLLLALFLVWQGVPQTFAQYVHGVTMQGVDQVIPLGPAASQIAIKQLGTNGGGFFGVNSAHPFENPTAWSNLFEVASIILIPAALVFTFGHYVKDLRQSRAIIACMLALFLIGGATSLWAEFQPNPALDNAAVEQAAPLEGKESRFGTTATVLWSVTTTAASNGSVNAMHDSLNPLSGMIALVNMMLGEVIFGGVGAGLYGMLLNVLIAVFLAGLMIGRTPEYLGKKLGAREVQLLVVTLLVMPVSVLVLGAIAAGLPGPAAAVSNPGAHGFSQLLYAYTSAGANNGSAFAGFGANTPFHNLMLGLGMLIGRFGYILPVLALAGSLALKKTAPIGQNSFPTHGPLFVTLLTVTILLVGGLTFLPTLALGPIAEHLSMGFPGPT0002740_1196DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0002740-kdpA-K01546NANA
D1-35_006692055kdpBCOG2216Potassium-transporting ATPase ATP-binding subunitATGAATATGCCAATGAGCAAAACCGTCGTCGCCAAGGCGCCGGAACAACCGCAAACCCAGCTGTCGGCGCTGTGGCGGCCGGCGCTGGTGCAAGCCTTCGTCAAGCTCGATCCGCGCCAGTTGCACCGCGCCCCGGTAATGCTGGTGGTGGAGCTGACCGCAATCCTCACCACCGTGCTCTGCCTGGTTCCCGACGACGCCGTGCCGACTTTCGTCGCTGCCCAGATCGCCCTGTGGCTGTGGTTCACCGTGTTGTTTGCCAACTTCGCCGAAGCCTTGGCCGAAGGTCGTGGCAAGGCCCGTGCCGACAGTCTCAAGGCTGGCAGCGAAGGCCTGAGTGCTCGCCGCCAGACGGCGGACGGCTTTGAAGTGATTCCCGCCACCCGTTTGCGCAAAGGTGACGTGGTGCGTGTCGCCGCAGGGGAAATGATCCCTGGCGACGGGGAAGTGATCGAGGGCATCGCGGCCGTCAACGAAGCGGCGATCACCGGGGAGTCGGCACCGGTCATTCGCGAATCCGGCGGGGACCGTTCGGCCGTCACCGGCAACACTCGGCTGGTCTCCGACTGGTTGCTGGTACGCATCACCAGCAATCCCGGCGAATCCACCCTGGACCGCATGATTGCCTTGGTCGAAGGCGCCAAGCGCCAGAAAACCCCGAACGAAGTGGCGCTGGACATCCTGCTGATCGGCCTGACGCTGATCTTCCTGCTGGTGGTGGTGACGCTGCAGCCGTTCGCCCATTTCGCCAATGGCAGCCTGCCGCTGGTGTTTCTGGTAGCACTGTTGGTGACCTTGATTCCCACCACCATCGGCGGGCTGCTGTCGGCGATCGGCATCGCCGGGATGGACCGTCTGGTGCGCCTGAACGTCATCGCCAAATCCGGCCGTGCGGTGGAGGCGGCGGGCGATGTCCACGTGCTGATGCTGGACAAGACCGGCACCATCACCTTTGGCAACCGTCGCTGTGCGGCGATCTATGCCGCTCCTGGGGTGAGCGCCAGGGAACTGGCTGAAGGCGCGTTGTTCGCCTCGTTGGCCGATGATACGGCCGAGGGCAAATCCATCGTCGAGTATCTGCGCGGCTTGCATCCCCAACCCGAGCCTGCTTTGGACGCGCTGACGGCGGTGCCATTCAGCGCCGAGACGCGGTTGTCCGGCGTGGATCATCAGGGGCGCGTCTATCGCAAGGGCGCGGTGGATTCCTTGCTGAGTTTCATCGGCCTGCCACGCAACGAGCTGCCGCCGGTACTGGCGCGGGAAATCGACAAGATCGCCCAAAGCGGCGGCACGCCGTTGCTGGTCTGCGTGGACGGCAGATTGCTCGGTGCCATTCACCTCAAGGATGTGGTCAAGCCCGGCATCCGCGAGCGCTTTGCCGAGCTGCGCAAGCTGGGCATCCGCACCGTCATGGTCACCGGTGACAACCCGCTGACCGCTGCCGCGATTGCCGCCGAGGCGGGCGTCGATGATGTGCTGGCGGAGGCCACGCCGGAGAAAAAACTGGCGCGCATCCGTCACGAACAGAACGACGGCCGGCTGGTCGCCATGTGCGGCGACGGCGCCAACGACGCCCCGGCCCTGGCCCAGGCCGATGTCGGCATGGCGATGAACGACGGCACCCAGGCGGCGCGGGAGGCGGCCAACATGGTCGATCTCGACAGCGACCCGACCAAGTTGCTGGACGTGGTCCAGATCGGCAAGGAATTGCTGGTAACCCGCGGGGCCCTGACGACCTTTTCCATCGCCAATGACATCGCCAAGTACTTTGCGATTTTGCCGGCGCTGTTCGCCTCGATTTATCCACAGCTCGGCGTGTTGAACGTCATGCACCTGAACAGCCCACAGAGCGCGATCCTCTCGGCCATCGTCTTCAATGCCCTGATCATCGTCGTGCTGATTCCCTTGGCCTTGCGTGGCGTGCGAGTGCAGGCGGCAAGTGCGGCGGCGTTGCTGCGACGCAATCTGCTGATCTACGGCCTCGGCGGGATCGCGGTGCCGTTCGTGGGGATCAAGGCGATTGATCTGTTGCTGACGGGGTTGGGGTTGGTTTGAMNMPMSKTVVAKAPEQPQTQLSALWRPALVQAFVKLDPRQLHRAPVMLVVELTAILTTVLCLVPDDAVPTFVAAQIALWLWFTVLFANFAEALAEGRGKARADSLKAGSEGLSARRQTADGFEVIPATRLRKGDVVRVAAGEMIPGDGEVIEGIAAVNEAAITGESAPVIRESGGDRSAVTGNTRLVSDWLLVRITSNPGESTLDRMIALVEGAKRQKTPNEVALDILLIGLTLIFLLVVVTLQPFAHFANGSLPLVFLVALLVTLIPTTIGGLLSAIGIAGMDRLVRLNVIAKSGRAVEAAGDVHVLMLDKTGTITFGNRRCAAIYAAPGVSARELAEGALFASLADDTAEGKSIVEYLRGLHPQPEPALDALTAVPFSAETRLSGVDHQGRVYRKGAVDSLLSFIGLPRNELPPVLAREIDKIAQSGGTPLLVCVDGRLLGAIHLKDVVKPGIRERFAELRKLGIRTVMVTGDNPLTAAAIAAEAGVDDVLAEATPEKKLARIRHEQNDGRLVAMCGDGANDAPALAQADVGMAMNDGTQAAREAANMVDLDSDPTKLLDVVQIGKELLVTRGALTTFSIANDIAKYFAILPALFASIYPQLGVLNVMHLNSPQSAILSAIVFNALIIVVLIPLALRGVRVQAASAAALLRRNLLIYGLGGIAVPFVGIKAIDLLLTGLGLVPGPT0002745_1469DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0002745-kdpB-K01547NANA
D1-35_00670546kdpCCOG2156Potassium-transporting ATPase KdpC subunitATGTTCACCATGATTCGCCCGGCCCTGAGCCTGTTATTGCTGATGACCCTGATCACCGGCGTCGCCTACCCATTGTTCGTCACCGGCGTGGCACAAATCGCTTTTCCGGAGCAGGCCAACGGCAGTCTGATCCACGATGCCGACGGCAAGGTCCGCGGTTCCCGATTGATCGCCCAGGACTTCACCGGCGATGCCTGGTTTCATCCGCGCCCTTCGGCCGGCGCCTTCGCCACGGTCGCCAGCGGCGCGAGCAACTTTTCCCCGAGCAACCCGGCGCTGGCCGCCCGGGTCATCGATGACGCCGGCAAGCTGCAAGTGCCCGGCCAGGGACCGGTGCCCCTGGCGCTGCTGAGCACTTCCGGCAGCGGCCTGGATCCGCACTTGCCTCCGGCCGCGATTGCCTATCAACTGGCGCGTGTCGCCGCGGCGCGCAACTTGCCGGTGTCGACGTTGCAGCAGTTGCTTGACAGCCATATCGAGCGGTCCCTGGTGGGCCCGCCCGTGGTGAATGTGCTGGCGCTGAACCTGGCCCTGGAAAACCTGTAAMFTMIRPALSLLLLMTLITGVAYPLFVTGVAQIAFPEQANGSLIHDADGKVRGSRLIAQDFTGDAWFHPRPSAGAFATVASGASNFSPSNPALAARVIDDAGKLQVPGQGPVPLALLSTSGSGLDPHLPPAAIAYQLARVAAARNLPVSTLQQLLDSHIERSLVGPPVVNVLALNLALENLPGPT0002750_2140DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0002750-kdpC-K01548NANA
D1-35_006712652kdpDCOG2205Sensor protein KdpDATGAGCGACTCCGGCCGCGCCGATGCACTATTAGCCAACCTGCCACGCAACGACCGTGGCCGCCTCAAGGTTTTCCTCGGCGCCGCCCCAGGCGTGGGCAAGACCTACGCCATGCTGCAAGCGGCCCATACCCGGTTGCGCCAAGGAACAAACGTCATCGCCGCGGTCGTCGAGACCCACGGGCGCGCCGAGACCGAAGCCTTGTTGAATGGCCTGGCGCAACAGCCGATGGTGCGTTCGGAATACCGCGGCGTGATGCTCGAGGAGATGGATCTCGACGGCCTGCTTGCCGCTCGCCCGAGCCTGGCGCTGGTGGACGAGCTGGCCCACAGCAACGCCCCCGGCAGCCGCCATGCCAAGCGCTGGCAAGACATCCAGGAACTGCTCGCCGCCGGTATCGACGTCTTCACCACGGTCAACGTCCAGCATCTGGAAAGCCTCAACGATCAGGTTCGTGGCATCACCGGAGTGCAGGTGCGCGAGACTTTGCCGGACTGGGTCTTGCAGGAAGCCGATGAGCTGCTGCTGATCGACCTGCCACCGCGCGAACTGCTGGAGCGTCTGCGCGACGGCAAGGTCTATGTGCCGGAACAGGCCCGCGCGGCGATCGATGCGTTTTTCACCCAGACCAATCTCACCGCCCTGCGTGAGCTGGCCATGCAGACCGCTGCCGCGCAAGTGGACAACGACCTGGCCCAGGGTTATCGGCAACTGGGCCAGTCGGCTCCAGCGGTCCAGGGCCGGTTGCTGGTGGGCGTGGACGCTGATCACCAGGCCGAACGGCTGGTGCGCCACGCCAGCCGGGTCGCCCAGCGCCGGCATCTGCCCTGGAGCGTGGTGCATGTAGACAACGGCACGGCACGGGACGAGTCCTCGCGCCAGCGTCTGCAGAGCGCCCAGCAACTGGCGGAACGCCTTGGCGGGGAGGTGGTGCTGCTGCGGGCGGGAGAGGTCGCCAGGACGCTCATCCAGCACGCGATGCAACGGCGTGCCACGTTGGTGTTGGTCGGCCAGTCCCGCCGGCGTTTGCGCAGGCGCCTGTTCGGCGGCGGCCTGGCTTCGCGATTGCTGCGCGATGCCCGTGGGCTGGAGATCAACGTGCTGGACGGCGATGAAACACCGCCGCCGCCCCGCCTGCGTCCGGGCACCGTCCAGACCGGGTTCGACTATGCGCTGGCGGTGGTGGCTACGCTGGCCGCCAGTGCCCTGGCCTGGGGGATTTCCGGGTTGCTTGCGTTGCCCAATATCTCCCTGGTATTCCTGATGGCGGTGTTGCTGGTGGCGGTGCGCAGCAGCCTCGGCCCGGCGCTGGCCTGTGCGGCGCTGTCGTTCCTGGCGTACGACTTTCTGTTCATCCCGCCGAATTTCTCCCTGACGATCCAGCGCGAAGAAGACGTACTGACGCTGGTGTTTTTCCTCTTGATGGCCGCCCTGACCGGCAATCTCGCGGCGCGCCAGCGTCGGCAATTGCAGGCGCTGCGCGACACCCAGCAGGAAACCGCTGAGCTGCTGGATCTGTCGCGCAAACTGACGGCCGCGACCGATCGCCAGGCCGTAATCAGCGCCGCCGTGCAACACCTCAACAGCGAGGGCGATCTGCAACTGTGCCTGCTCAAGCGCGACGCACAGCACGGCTGGCACGTCGAGACGGCAGAACCGTTGACCTTCACCGAGGCCGAGCGCGCTGCCGCCGACTGGTCCTGGCAGCACGATCAGCCGGCCGGCGCCGGCACCGCGACGCTGCCGTCCGGGCGCTGGTGGTGGTGGCCCTTGTCGTCCGAGGGTGGCCCGCTGGGCCTGTTGGGAGTCTGCCTGAAGGACGGCAAGCCGTTGAGCGGTCAGCGTCGCCGCTTGCTGGCGGCGCTCAGCCAGCCGCTGGCCCAGGCGCTGGCTCGGGCGCAGCTGGCGCAGGACCTGGAAGCGGCGCGGCTGCACGGCGAAACCGAGCAATTGCGCAGCGCCTTGCTGGCCTCCGTCTCCCATGATTTACGCACACCCTTGACTTCCATGCGCGGCAGCATCGACAGCCTGCTGGCGCTGGGCGAGGCGATCCCGCTGCAGGACCGTCGCGAATTGCTCGAAGGCACCCGCGACGAAGCCGAGCGCCTGGATCGTTATATCCAGAACCTGCTCGACATGACCCGCCTCGGCCACGGTGCGCTGAAGCTGGCGCGCGATTGGGTATCGCCGGCCGACATCGTTGCCAGTGCGTTGAACCGGTTGCGGGCGGTACTGGCGCCACTGGCGGTCAGCATCGAAGTGCCAACCGGCTTGCCGCTGTTGTATGTCCATGCGGCGCTGATCGAACAGGCGCTGGTCAACGTGCTGGAAAACGCCGCGCGGTTTTCGCCGGCCCATGGTCGGTTGCTGTTGAGCGCCGCAGCGACGACCGATGAAATATGCTTCGCCGTGGCCGATGAAGGGCCCGGAATTCCCGAGCCGGAGCGTGAGAAAATCTTCGACATGTTCTACACCGCTGCGCGCGGCGACCGTGGCGGGCAGGGCACCGGGCTGGGGCTGGCGATCTGTCAGGGCATGGTCGGCGCCCATGGCGGGCGGATCAGCGTCGACGAGGGGCTCGATGGGCGCGGCACCTGCATCACCTTGCACCTGCCCTTGCAGGCACAACCGGGCATGGACGATGAAGCCTGAMSDSGRADALLANLPRNDRGRLKVFLGAAPGVGKTYAMLQAAHTRLRQGTNVIAAVVETHGRAETEALLNGLAQQPMVRSEYRGVMLEEMDLDGLLAARPSLALVDELAHSNAPGSRHAKRWQDIQELLAAGIDVFTTVNVQHLESLNDQVRGITGVQVRETLPDWVLQEADELLLIDLPPRELLERLRDGKVYVPEQARAAIDAFFTQTNLTALRELAMQTAAAQVDNDLAQGYRQLGQSAPAVQGRLLVGVDADHQAERLVRHASRVAQRRHLPWSVVHVDNGTARDESSRQRLQSAQQLAERLGGEVVLLRAGEVARTLIQHAMQRRATLVLVGQSRRRLRRRLFGGGLASRLLRDARGLEINVLDGDETPPPPRLRPGTVQTGFDYALAVVATLAASALAWGISGLLALPNISLVFLMAVLLVAVRSSLGPALACAALSFLAYDFLFIPPNFSLTIQREEDVLTLVFFLLMAALTGNLAARQRRQLQALRDTQQETAELLDLSRKLTAATDRQAVISAAVQHLNSEGDLQLCLLKRDAQHGWHVETAEPLTFTEAERAAADWSWQHDQPAGAGTATLPSGRWWWWPLSSEGGPLGLLGVCLKDGKPLSGQRRRLLAALSQPLAQALARAQLAQDLEAARLHGETEQLRSALLASVSHDLRTPLTSMRGSIDSLLALGEAIPLQDRRELLEGTRDEAERLDRYIQNLLDMTRLGHGALKLARDWVSPADIVASALNRLRAVLAPLAVSIEVPTGLPLLYVHAALIEQALVNVLENAARFSPAHGRLLLSAAATTDEICFAVADEGPGIPEPEREKIFDMFYTAARGDRGGQGTGLGLAICQGMVGAHGGRISVDEGLDGRGTCITLHLPLQAQPGMDDEAPGPT0002755_1276DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-CAPSULE_METABOLISMCE-EPS-CAPSULAR_POLYSACCHARIDE_REGULATION,PGPT0002755-kdpD-K07646NANA
D1-35_00672699kdpECOG0745KDP operon transcriptional regulatory protein KdpEATGAGCCAGAACGCGACCCTTTTGGTCATCGATGACGAACCGCAGATCCGCAAGTTCCTGCGGATCAGCCTGACCTCGCAAGGCTACAAGGTGCTCGAAGCCGAGACCGGCGCAGCGGGCCTGGCCCAGGCGGCGTTGAACAAGCCTGATCTTCTGGTGCTCGACCTTGGCCTGCCGGACATGGACGGCCAGCAGGTACTGCGCGAGTTTCGCCAATGGTCTGCCGTGCCGGTGCTGGTCCTGTCAGTACGCGCCAGCGAAGCACAGAAGGTCGAGGCGCTGGACAACGGTGCGAATGACTACGTGACCAAGCCTTTCGGCATCCAGGAGTTCCTCGCCCGGGTGCGCGCGCTCCTGCGCCAGGCGCCAGCGGGCGAGGCACCGTCGGCGGCATTGACGTTCGGCCCGCTGACGGTCGACCTGGCTTACCGCCGGGTCCTGCTGGACGGCGCCGAAGTGGCCCTGACCCGCAAGGAATACGCGGTGCTGGCGCAACTGGCGCGGCATCCAGGGCGGGTCATCACCCAGCAACAATTGCTCAAGGACATCTGGGGCCCGACCCACGTCGAAGACAGCCATTACCTGCGCATCGTCATCGGTCACCTGCGGCAGAAACTCGCCGACGACCCGACTCGGCCGCGGTTCATCGTGACTGAGGCGGGCGTGGGGTATCGGTTGTTGGAGGAGGGTGGGTTTTAGMSQNATLLVIDDEPQIRKFLRISLTSQGYKVLEAETGAAGLAQAALNKPDLLVLDLGLPDMDGQQVLREFRQWSAVPVLVLSVRASEAQKVEALDNGANDYVTKPFGIQEFLARVRALLRQAPAGEAPSAALTFGPLTVDLAYRRVLLDGAEVALTRKEYAVLAQLARHPGRVITQQQLLKDIWGPTHVEDSHYLRIVIGHLRQKLADDPTRPRFIVTEAGVGYRLLEEGGFPGPT0002760_680DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-CAPSULE_METABOLISMCE-EPS-CAPSULAR_POLYSACCHARIDE_REGULATION,PGPT0002760-kdpE-K07667NANA
D1-35_006731038COG1752putative NTE family proteinATGACAAAACGTGTCGCATTGGTATTGGGCTCGGGCGGCGCCCGGGGCTATGCCCATATCGGAGTGATCGAGGAAATCGAACGACGCGGCTATGACATCGCCTGTATCGCCGGTTGTTCCATGGGGGCGGTCGTAGGCGGGATCTACGCGGCGGGCAAACTCGAAGACTACCGCAACTGGATCGAAAGCCTCGACTACCTGGATGTGCTCCGGCTGGTGGATGTCAGCTTTCGCCTCGGGGCCATTCGCGGCGAAAAAGTCTTCGGGCAGATCCGCAAGATCGTCGGCGAGCTCAATATCGAAGACCTGCGCATTCCTTACACGGCGGTAGCCACCGACCTGACCAACCAGCAGGAAATCTGGTTCCAGGAAGGTTGCCTGCACCAGGCGATGCGCGCCTCGGCGGCGATTCCCAGCCTGTTCACCCCGGTGATGCAAGGCAACCGCATGCTGGTGGATGGCGGCTTGCTCAATCCGCTGCCGATCGTGCCGGTGGTGTCGAGCCATTGCGACCTGATCATCGCGGTCAACCTCAACGCCACCAACCAGAAACAATACCGGTTGCCTGTGATCCAGCGCCCCGCCGCGTTCCGGCGGCGCTTCGACACCTTGGTCAGTTCCCTCGGTTCACGGTTGCCGTTTCGCCGCAAACAAGCCGAGCAACTGTTGCTGTTGGAACAGGAAGCGCTGAAGGCCGAGGCGGCCGATATCAACCCATGGCTCGATTCGGCCGAGCCGGAAGGCCAGCAACCGGCCGCCGCGCCCGAAATCGAAGGCGCGCCGAAATCCGCCACCGGATCTTTCATCATCGATAACGTCGGACCGGCCTCGTTGCTCGATCTGATCAACCAGAGCTTCGAGGTGATGCAGACGTCGCTGGCCCAATACAAGATCGCCGGCTACCCGCCGGATGTGCTGATCAACGTGCCAAAACGGGTGTGCCGATTCTTCGAGTTCTACAAGGCACCGGAGCTGATCGCGCTGGGACGGGAGATAGCCAGCGATACGCTGGATCGGTATGAGAGCGAGCAGAGCTGAMTKRVALVLGSGGARGYAHIGVIEEIERRGYDIACIAGCSMGAVVGGIYAAGKLEDYRNWIESLDYLDVLRLVDVSFRLGAIRGEKVFGQIRKIVGELNIEDLRIPYTAVATDLTNQQEIWFQEGCLHQAMRASAAIPSLFTPVMQGNRMLVDGGLLNPLPIVPVVSSHCDLIIAVNLNATNQKQYRLPVIQRPAAFRRRFDTLVSSLGSRLPFRRKQAEQLLLLEQEALKAEAADINPWLDSAEPEGQQPAAAPEIEGAPKSATGSFIIDNVGPASLLDLINQSFEVMQTSLAQYKIAGYPPDVLINVPKRVCRFFEFYKAPELIALGREIASDTLDRYESEQSNANANANANA
D1-35_00674291hypothetical proteinATGAAAGCCCGGATCTGCCTGCCCCTGGTGGCGTCCCTGATGGTTCTGGCCTTGGCCGGTTGTGCCGGCAAGACCGCTTACCGCGACAGTTGCGGCAGCCAGCTCGACAGCGCGTGGCGCGAACTTGACCTGGCCAAGGCCGAAGGCTTCGCTGGCACCGTCAGCTACTCCAAGGCTCTTTCATTGCTGACCGGGGCCAAGACCCAGCAGCAATTCGAAGCTTTCGAGGGCTGCGCCAAGAAAGCCGAGAAGGCGCGTTTCTACATTCGCGAATCCCGCGCGGGGCGATAAMKARICLPLVASLMVLALAGCAGKTAYRDSCGSQLDSAWRELDLAKAEGFAGTVSYSKALSLLTGAKTQQQFEAFEGCAKKAEKARFYIRESRAGRNANANANANA
D1-35_00675762hypothetical proteinATGATTGATCGGCTGGTGGCCCGTATTCTGGGCCTGGAAGTCCGCCTGCTGGCCTGTCAGGCCCGCTTGAATGCCCATACCGACAGCGAAGCTTTGCACGACCTGCGGACCACCGTTCGCCGTTTGCGCAGCCTGCTTCGTCCGTTGCGCGGATTGCCCGGCGTCGAGCAGTTGGAAACAGCCGCTTCGGCAGTTGGCAGCCTGACCACACCCTTGCGCGACCGTGAGGTGCTGGCAGCTTATCTTCAGCAGCACGGCAAGACCGAGGCCGCGCAGCGACGCCAGCTGCAAATGGCCGAGGCCTATCCCGCCGTGGCCAGCAGTCCGGAGTTGGCGCATTTGCTGATGATCCTCGATGCGTTCCCACGCTTCATCCGCGCTGCCCAGCGCCAGGGTCTGCTTGCAGGGTTGCGCAAACGTGTCGAAAAGCGCCTCGACAAACAATGGAAAAAGCTCGGCGAGGCCTTGCGCGATCCGGCTCACGACCGCCACCGACTGCGCCTGCTGATCAAGCGCGTGCGTTATGCCATCGAAGCCTATCCCGAACTCGACCGCTTGCCGGAAGCGGCCATGCCCCGACTCAAGGCCGCCCAAGGCGCGTTGGGCGATTGGCATGATTGCTGGCAATGGCTGGCGCGTGCCGAGCAGGAAGCCGACTTGCGGGCCTGCGTACCGGTCTGGCGGATCACCATGGAAAAGGCCGAGGCCAAGTCCGACCGGGTACTCGAAAAGCTAATCGTCAGCTGCTTCGGGAAATCCTGAMIDRLVARILGLEVRLLACQARLNAHTDSEALHDLRTTVRRLRSLLRPLRGLPGVEQLETAASAVGSLTTPLRDREVLAAYLQQHGKTEAAQRRQLQMAEAYPAVASSPELAHLLMILDAFPRFIRAAQRQGLLAGLRKRVEKRLDKQWKKLGEALRDPAHDRHRLRLLIKRVRYAIEAYPELDRLPEAAMPRLKAAQGALGDWHDCWQWLARAEQEADLRACVPVWRITMEKAEAKSDRVLEKLIVSCFGKSNANANANANA
D1-35_00676798tesB_1COG1946Acyl-CoA thioesterase 2ATGCGCTTTTCCGATTTGATCGATGCCGTGCGTCATCAGCCAGGCGCCGTCATCATTCCACCTGAGTGGGGTCAGGGCCGGGCCAGTTTTGGCGGCCTGGTGGCGGCGCTGCAATACGAGGCGATGCGTGCCCGGGTTCCGGCCGATCGCCCGGTGCGCTCGCTGGCGATCACCTTTGTCGGCCCGGTCGAACCGGATGTCCCGGTCAGTTTCGAGGTTGATATATTGCGTGAGGGCAAGGCTGTCAGCCAGGTGCTGGGGCGCGCTGTGCAGAAAGGCCAGGTGGTGACCGTGGTGCAAGGCAGCTTTGGCGCATCGCGAACCTCGGTGGTGGCGGTACAGGCTGATCCCGCGCCGCCGTTCAAGGACGTCGAGCAATGCCAGGAATTGCCCTACATCAAAGGCGGGACACCGGAATTCATGCGGCACCTGGCGATGCGCTGGAGCGTCGGCGGCCTGCCGTTTTCCGGTAACAAATCCCGAAGCATGGGTGGCTGGGTGCGCTTGCGCGGTGATGTGAAAGAGGAGGCGCTGGACGAAGGCCATATCCTGGCGTTGGTGGACGCCTGGCCGCCGGCGTTGTTGCCTCACCTGACGCAAATGGCACCGGGCAGCACGCTGACCTGGACCATCGAGTTCGTCCAACCATTGCTTGAGCTCACGACATTGGATTGGTGCCAGTACCTGGCCGAGATCGAGCACGCCCAGGATGGGTATGGCCATGTCGCGGCGAAGTTCTGGAGCGCCGATGGCCGCTTGATCGCCATGAGCCGGCAGACGGTGACGATTTTCGGCTGAMRFSDLIDAVRHQPGAVIIPPEWGQGRASFGGLVAALQYEAMRARVPADRPVRSLAITFVGPVEPDVPVSFEVDILREGKAVSQVLGRAVQKGQVVTVVQGSFGASRTSVVAVQADPAPPFKDVEQCQELPYIKGGTPEFMRHLAMRWSVGGLPFSGNKSRSMGGWVRLRGDVKEEALDEGHILALVDAWPPALLPHLTQMAPGSTLTWTIEFVQPLLELTTLDWCQYLAEIEHAQDGYGHVAAKFWSADGRLIAMSRQTVTIFGNANANANANA
D1-35_00677363hypothetical proteinATGGGCAAACGTCACCCCAACCTTCCGGCCTGGCAATGGCGCGCCTATCCCGAGAATCACCGCCACCCGACCAACCTGGTGTTGCATCTGATCGCGGTGCCGCTGTTCATTGTCGCGTTTCTGTTGATCGTATCGGGCGTCTTCAGCCTGAGCCTGGGCGATGTCGCCATCGGCGTGATCGGTGTACTCGCCGCACTCGGATTGCAGCGCCACGGCCACGGTCTCGAGGCGCAGGCCTCAGAACCTTTCAGCGATCGCAAGGACGCCATGTCGCGCCTGCTGGTGGAACAGTTCCTGACCTTCCCACGCTTTTTCCTCAGCGGCGGATGGTGGCGGGCCTGGCGGGATCGCCACCGTCACTGAMGKRHPNLPAWQWRAYPENHRHPTNLVLHLIAVPLFIVAFLLIVSGVFSLSLGDVAIGVIGVLAALGLQRHGHGLEAQASEPFSDRKDAMSRLLVEQFLTFPRFFLSGGWWRAWRDRHRHNANANANANA
D1-35_006781218hypothetical proteinATGGGTGCCTGGCTTAGCAATATCTCGCTGAAGTATAAATTCTGGGCGGTCAATGCGGTCGCCTTTGTCACCACATTGCTGTTGGTGCTTTATGCCATGCACCTTGAACAGCAGGTCCGAGGGGTCAGCCTGGGCCAGGTGTTCGGCGAACGCTTCAGTCAGTATGCCGTGGCAGTATTCGTGCTGATGCTGGCGATGTTGGGAGCATCGCAGCTATTGATCCGCTTTCTCCTCAGTCAGCTCAACACGTTGAAAGACGTGATGCTGCATGTCGAAAAAAGCGGCGACCTCTCCGCCCGCGTGCCTTTGGCCTGCGAGGACGAAGTGGGCCAGATGGCCGCTGCGTTCAACGCCATGCAAGCTGGCTACCAGCGGGTGGTGGACACCGTTGCCAGCACTGCTCGGCAGCTGGATAGCGGTGCGACGCGCCTGGCTTCGAGCATGAACGATGTGCGCCAGGGTATGCTCGGCCAGCAGAGCGAAACGGATCAGGCCGCCACGGCCATCAATGAGATGACCGCCACGGTCTATCACATCGCCCAGCACGCCGGCGCCACCCGCGACCTGTCGAAAACCACGGATATCCTGGCGGGTAACGGACGGCAAGTGGTCAGTCGCGTGCAGCAATCGATCACCGGGCTGTCCACTGGCGTGCAGCAGACCGCCGAGATGATCCAGCGCCTGGCCGAAGACAGCCAGAAGATCAACGGTGTGGTCAATGTGATCCACAGCATCGCCGAGCAGACCAACCTGCTGGCACTCAACGCCGCCATCGAAGCGGCGCGAGCCGGCGAAATGGGCCGGGGTTTCGCAGTCGTGGCCGATGAAGTCCGCAACCTCGCCAAGCGGGTCCAGACCTCGACCGACGAGATCACCGCCATGGTGTCGGCCTTGCAGGCAGGCACCCGCGATGCGGTGGAGTTCATGCAGCAAAGCTCGCACAAGGCTGACGACTGCGTGCAACAGGCTTGCGAGGCCGGCGACGCGTTGCTGCAGATCACCGAGGCGGTGGCGCAGATGCGCGAAAGCAACACGCAGATCGCGGTCGCCGCCGAACAGCAAAGCCAGGTGGCCGAAGACATGAACCGCGCCGTAGTGAGCATCCGCGACGTGACCGAAAATACCGTGCGCCAGACCGTGGATTCGGCCACCACCAGCGATGAGCTGGCGACGCTGGCGGGTGAGTTGAACAGGGCGATTGGGCAGTTGAAGCTTTAAMGAWLSNISLKYKFWAVNAVAFVTTLLLVLYAMHLEQQVRGVSLGQVFGERFSQYAVAVFVLMLAMLGASQLLIRFLLSQLNTLKDVMLHVEKSGDLSARVPLACEDEVGQMAAAFNAMQAGYQRVVDTVASTARQLDSGATRLASSMNDVRQGMLGQQSETDQAATAINEMTATVYHIAQHAGATRDLSKTTDILAGNGRQVVSRVQQSITGLSTGVQQTAEMIQRLAEDSQKINGVVNVIHSIAEQTNLLALNAAIEAARAGEMGRGFAVVADEVRNLAKRVQTSTDEITAMVSALQAGTRDAVEFMQQSSHKADDCVQQACEAGDALLQITEAVAQMRESNTQIAVAAEQQSQVAEDMNRAVVSIRDVTENTVRQTVDSATTSDELATLAGELNRAIGQLKLPGPT0015710_20745DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_00679807tatDCOG00843'-5' ssDNA/RNA exonuclease TatDATGCAACTCATCGATATCGGCGTCAACCTGACCAACCCCAGTTTCGCCGAAAAACACCAGGCGGTGCTTGAGCGCGCCTATGCCGCCGGGGTCTGCCAGTTGGTGCTGACCGGCACCAGCATCGAGGGCAGCGAACAGGCCTTCGAACTATGCCAGCAGCTCGACGAGGACGGGACGCGACTGTTTTCCACCGCCGGCATCCACCCCCACAGCGCCAGCGACTGGACAGCTGACAGCGCCAGGCATTTGCACGAGTTGCTCAAGCAGGACCGTGTGCGCGCAGTGGGTGAATGCGGGTTGGATTTCAATCGTGATCTTTCTCCTCGCCCGCTGCAGGAAAAAGTCCTCGAAGAACACCTCGCGCTTGCCGCGGAGTTGCAAATGCCGGTGTTTCTCCATGAGCGCGACGCCGACCAGCGACTGCTGGAGATTCTTCGGGACTTTCGCGACCGATTGCCCGCCGCTGTGGTGCATTGTTTTACCGGTGAGAAAAAAGCGCTGTTCAGTTACCTGGACCTGGACTTGCACATCGGCATTACCGGGTGGATCTGCGATGAACGCCGAGGCACACATCTGCATCCGTTGGTGCGGGAAATTCCCCGCGGCCGGCTCATGCTCGAAAGCGACGCCCCGTATCTGCTGCCCCGCACCCTGCGCCCTAAGCCCAAGAACGGTCGCAATGAGCCGGCCTATCTGACAGACGTATTGCGTGAAGTAGCCTTGCACCGGGGCGAAAGCGAGGAAGACCTGGCGGCCCACAGCACGGCGTGTGCGCGGGCGTTTTTCGGCTTGCCGGTGATTTCCTGAMQLIDIGVNLTNPSFAEKHQAVLERAYAAGVCQLVLTGTSIEGSEQAFELCQQLDEDGTRLFSTAGIHPHSASDWTADSARHLHELLKQDRVRAVGECGLDFNRDLSPRPLQEKVLEEHLALAAELQMPVFLHERDADQRLLEILRDFRDRLPAAVVHCFTGEKKALFSYLDLDLHIGITGWICDERRGTHLHPLVREIPRGRLMLESDAPYLLPRTLRPKPKNGRNEPAYLTDVLREVALHRGESEEDLAAHSTACARAFFGLPVISNANANANANA
D1-35_006801422mltF_1COG4623Membrane-bound lytic murein transglycosylase FATGGTTCGTCCCCAGGTATTGCTACTGCTGTGTTGCTCGCTGCTGTTGCCAATGGCGGCCGAAGCACGCCTGCCCGGACCGCTGCAAGTGGTAGCGCCGGGCACCGTGCGTGATCTGGCGCAGATCCGTAGCAGCCGGGTACTGAAGGTGTTGGTCAACCAGAGCCGCAACAGCTCCGGTGAAGTCCAGGGCCAGCCCATCGGTGTCGAATACCATCGCTTGCGGGCCTTCGAGCAGTACCTCAATGGTCATGCCCGGGATGGCCAGGAAATCACCCTCAAAATCATTCCCAAGGCCAAGGATCAATTGCTCGGCGCACTGCAGCGCGGGGAAGGGGATCTGGTGGCGCCAGGCGAACTGCTTGAGCCGCAAGCCGGCCATGCGGTGAGCGCCAGTGAGCCGATACGCACGGATGTGCCGTTGCTGCTGGTGGGGATCAAGGGCGAAAAGCGTTATTCGCGCGTGGAGCAATTGTCTGGCAAGACCCTGGCGCTGCCCAACGGCAGTGCGGCGGGGGATGCGGTCAGCCAGATCAACCAGAAGCTGGCGTTGCTCAAGTTGCCGCCGGTGAAAATCGAATGGGTCGATCCCACCCTGGCGGTGGAAGATGTGTTGGAGATGGTCCAGGGCGGGATCTTCCACCTCACCATCGTCGAACAGCCCATCGCCGAACGCTGGGGCAAGATCCTGCCCAAGTTGCGTTTCGACCGCCAGGTGCTCATCGGCGAGCCGAGCGATGAATATTGGTTCGTCCGCCGCGACGCCGCCATGCTGCGGGCGAGCATTGATCGATTCCTCACCACCTATAAAGTCCCCGACAACCAGGACGCTGCATTCCTGCGTATCTACCGACGCTTGTACCAGGTTCACTATCCGCTGGCCCGGGCCAATCGCCAACGCCTGGAAAAACTTCGGCCGGTGCTGCAAAAACATGCCCAGGCCCAGGGCATGGACTGGCTCAACCTGGCGGCCCTGGCGTTCAAGGAGTCAGCCTTGCAACCCAACGCGCGCAGCGGCAGCGGCCCAACCGGCCTGATGCAGATCACGCCGTCCGCGGCCCAGCGGGTCGGGGTCAACAACATCCAGGACCTGGATGCCAATGTGCAGGCCGGCGCCAAATACCTGGCCATGATCCGCCGCAAATTCTTCTCCAGCCCCAAGCTCAACGAGCGCGAACGCATGGCGTTTGTCCTGGCTGCGTACAACATGGGACCGGAGCGCGTCCAAGGCATGCGTGCCGAGGCCCGGCGGCGAGGCTTGAACCCTGACCAGTGGTTTTTCCAGGTCGAGCGAATAGCCATGGAGCAGGTGGGCATGGGCGCCGTCAGCTACGTTAACAGCGTGAACAAGTATTACCTGGCGTTTGATCGAGAGCGTGAATCCCTGGAGCCGCAAGAGCGGAAAGTGGCTTCGACTAAATAAMVRPQVLLLLCCSLLLPMAAEARLPGPLQVVAPGTVRDLAQIRSSRVLKVLVNQSRNSSGEVQGQPIGVEYHRLRAFEQYLNGHARDGQEITLKIIPKAKDQLLGALQRGEGDLVAPGELLEPQAGHAVSASEPIRTDVPLLLVGIKGEKRYSRVEQLSGKTLALPNGSAAGDAVSQINQKLALLKLPPVKIEWVDPTLAVEDVLEMVQGGIFHLTIVEQPIAERWGKILPKLRFDRQVLIGEPSDEYWFVRRDAAMLRASIDRFLTTYKVPDNQDAAFLRIYRRLYQVHYPLARANRQRLEKLRPVLQKHAQAQGMDWLNLAALAFKESALQPNARSGSGPTGLMQITPSAAQRVGVNNIQDLDANVQAGAKYLAMIRRKFFSSPKLNERERMAFVLAAYNMGPERVQGMRAEARRRGLNPDQWFFQVERIAMEQVGMGAVSYVNSVNKYYLAFDRERESLEPQERKVASTKNANANANANA
D1-35_00681435mhqPCOG2259Putative oxidoreductase MhqPATGAGCACTTTCATCAACAAGGTTCTGTTTTCCCGCGCCGGCTACGGCCTGACTGTCCTGCGCATCGTCGTCGGGGTCATTTTTGCCGCCCATGGCTCGCAGAAACTGTTCGGGCTGTTTGGCGGTTATGGGTTGGCGGGCACGGCGCAATGGATGGACAGCATCGGCCTGACGCCTGGCTACCTGATGGCAACCCTGGCCGGTGGCACCGAGTTTTTCGCCGGGCTGGCCTTGATCATCGGCCTGCTGACGCGCCCGGCGGCTTTGGGTCTGGCCTTCCTGTCACTGGTGGCGATTTTCTCCGTGCACATCGGCAACGGTCTGTTCATGGCCAACAACGGTTATGAGTTTGCCCTGGCCTTGCTGGCCGGCAGTATCGCGGTGTTGATCGAAGGTGCAGGCAAGCTGTCGGCGGATAACGCCATCGCCCGTTGAMSTFINKVLFSRAGYGLTVLRIVVGVIFAAHGSQKLFGLFGGYGLAGTAQWMDSIGLTPGYLMATLAGGTEFFAGLALIIGLLTRPAALGLAFLSLVAIFSVHIGNGLFMANNGYEFALALLAGSIAVLIEGAGKLSADNAIARPGPT0028505_3484DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROQUINONE-DERIVATE_RESISTANCE,PGPT0028505-catD-K15977NANA
D1-35_00682309hypothetical proteinATGAACGCACCCAGCCCCCTCGTACGTCTGGCGCCGATCACGGCGAACCTGCTGCAACGCAATCCGAAAATTCTCCTGGGCGGTACCCATCAGCCTACGCTGTTGCGTTATCTCGACGGCTGGCCGCGACGCAGCCATGGCCCCGCGGCCTTCCTGATCCAGTTTGTCGAAGACGGTGAGTCGCTGGCGCGTTTCGCCGATGACAGTTTCGACCTGGCGGTAATCCAGTCACCGACGGCGGCGGACGCTGCCGAAATGATCCGGCACTTGACCCGTGTTGCACGGCAGGGGCTGATCACTCGCCGTTGAMNAPSPLVRLAPITANLLQRNPKILLGGTHQPTLLRYLDGWPRRSHGPAAFLIQFVEDGESLARFADDSFDLAVIQSPTAADAAEMIRHLTRVARQGLITRRNANANANANA
D1-35_00683498greB_1COG0782Transcription elongation factor GreBATGAGCCGCTATCGTCCACCCCGTACCGCCGGCACCGCGCTGATCACCCCCGAGGGTGAAGCGCGGATGCGCGCTGAACTCCATGAACTGTGGCATGTCCGCCGCCCCCAGGTGACCCAGTCGGTCAGCGAAGCGGCGGCCCAGGGTGATCGCTCGGAAAATGCCGAATACACCTACGGCAAGAAGATGCTGAGGGAAATCGACAGTCGCGTGCGTTTCCTCACCAAACGCCTCGAAGCACTCAAGGTCGTCAGCGAAAAACCCAGTGACCCGAACAAGGTGTATTTCGGCGCCTGGGTCACCGTTGAGGATGAGGACGGCAAGGAATCGCGCTATCGCATCGTCGGGCCTGACGAGCTGGACCTGAAGCAGAACCTGATCAGTATCGACTCGCCCCTGGCCCGCGCCCTGATTGGCAAGACGCTGGACGCTGAAGTCAGGGTCCAGGCGCCAACCGGAGAAAAGCTCGTCTACATCGTCGATATCAGCTATCCGTAGMSRYRPPRTAGTALITPEGEARMRAELHELWHVRRPQVTQSVSEAAAQGDRSENAEYTYGKKMLREIDSRVRFLTKRLEALKVVSEKPSDPNKVYFGAWVTVEDEDGKESRYRIVGPDELDLKQNLISIDSPLARALIGKTLDAEVRVQAPTGEKLVYIVDISYPPGPT0030495_2727PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-TRANSCRIPTIONAL_CONTROLPUTATIVE-TRANSCRIPTIONAL_CONTROL-1,PGPT0030495-greA-K03624
D1-35_006842505hypothetical proteinATGGCACGCTTGCCCTTGTTGCGCCTGTTCAGCCTTGCCCTGCGCCAGTTGCTGCGCGATGCCCGCGCCGGCGAGTTGCGCGTGCTGTTCTTCGCCCTGCTGGTGGCCGTGGCGGCGAGCACCGCCATCGGTTACTTCGGCGCCCGCCTGAATGGCGCGATGATGATGCGCGCGACCGAATTTCTCGGCGCCGACCTGCTGCTCGAGGGCAGCTCCCCTGCCCGCCCGGAGCAGATCCGCAGCGGCACCGAACTGGGCCTGGAACATGCCCGAGTGGTGGAGTTCTCCAGCGTTGTCGCCACCGACAACGGTATCCAGCTGTCCAGCGTCAAGGCAGCCGATGACATCTATCCCTTGCGCGGGGAACTGAAAAGCGCCCCGGCGCCCTTCGCTCCGGAAGAGACCGGTGGACGACCAGCCCCCGGGGAGGCCTGGGTCGAAGCACGGCTGCTGACGGCGCTGGACCTGAAGATCGGTGACAGCATCGATGTCGGCAACAAGACCGTTCGCCTCAGCCGCGTGCTGACTTATGAGCCGGACCGCGCCGGTAATTTCTACAGCCTGACCCCGCGCGTCATGATCAACCTCAAGGACCTGGACGCCACGGGCGTGGTGCAACCCGGCAGCCGCGTCAGCTATCGCGACCTGTGGCGCGGCCCGGCGTCGGCGCTGCAAACCTATCGCGACCTGGTCAAGCCAGGTCTTGAGCCGAACCAGCGCCTGCAGGACGCTCGCGACGGCAATCGCCAGATCGGCGGCGCCTTGGGCAAGGCCGAGCGCTACCTGAACATGGCCAGCCTGGTGGCGGTGCTGCTGTCCGGCGTTGCCGTGGCCCTCTCCGCCAACCGTTTTGCCACTCGACGCTTCGATGCCAGTGCATTGCTGCGCTGCCTTGGCCTGTCGCGCCGGGAAACCATGGTGCTGTTCAGCCTGCAACTGGCCGTGCTGGGCCTGTTGGCGAGCATCAGCGGTGCGCTGCTGGGCTGGGTGGCCCAGTTGGGATTGTTTGCCTTGCTGCATGACTTGCTGCCCACCACCGTCCCCCCGGGTGGCCTGTTGCCGGCGATCGCCGGGATCGGCACCGGGCTGGTGGCACTGGCGGGTTTTGCCTTGCCGCCGCTCGCCGCACTGGGCCGGGTGCCGCCGTTGCGCGTGCTGCGTCGGGACATGTTGCCGATTCCCTCCAGTAGCTGGGTGGTCTACGGTGCGGCCCTCGGTGCGCTCGGGCTGATCATGTGGCGCCTGAGCCTGGACCTGGTGCTGACTTTCGCGCTGCTCGGTGGTGGGGTGATTGCCGCGCTGGTGCTCGGCGGACTGCTGTTGCTGGTGCTGCAGAGCCTGCGCCGGATGCTGGCCCGGGCCTCGCTGCCCTGGCGGTTGGGACTCGGTCAGCTGTTGCGCCATCCCTTGGCGGCAGCCGGGCAAGCCCTGGCGTTTGGCCTGATCCTGTTGTCCATGGCCTTGATCGCGCTGCTGCGCGGCGAGTTGCTGGACACCTGGCAAAACCAGTTGCCAAAAAACGCCCCGAACTATTTCGCCTTGAACATCCTGCCCAACGACAAGCAGGCCTTCACCGACAAGCTGATGGCGTTGTCGGCGCAGTCGGCCCCGCTCTACCCCGTGGTACCGGGACGGCTGATCAGCATCAACGGCGAGCCGGCCAAGGAGTTCGTCACCAAGGACTCGGCCGGTGACCGTGCGCTGCAACGCGACTTGAGCCTGACCTGGGCGGCGGAGCTGCCGGCGGGCAACGTCGTCACGGCCGGGAACTGGTGGCCGCAACAGCCACCGGACGATATCCCGGGGGTTTCGGTGGAAGGCAAGGTGGCCGAGAATCTCAAGATCAAACTGGGCGACCGCCTGGTGTTCAACGTCGGCGGCCTCAACCGGGAAGCCAAGGTCACCAGCCTGCGGGAAATCAACTGGGACAATTTCCAGCCGAACTTCTTCATGATTTTCCAGCCCGGTACGCTGAAGGACCTGCCGGCAACCTACCTCACCAGCTTTTATCTGGCTCCCGGCCATGACCAGCAGATCGTCGACCTGTCGCGCGCCTTCCCGGCCGTGACGATCCTGCAGGTCGAGGCGTTGCTCGAACAACTGCGCAGCATCCTGGCCCAGGTGACCCTGGCCGTGGAATACGTATTGCTGTTTGTGCTGGCGGCGGGGATGGCGGTGCTGTTCTCCGGCTTGCAGGCCACCCTCGACGAAAGGATCCGCCAAGGCGCGCTGCTGCGTGCCCTGGGCGCCGAGCGGTTGCTGTTGACCAAGGCCCGGCGCATCGAATTCGGCCTGTTGGGTGCGGTCAGCGGTTTGCTCGCGGCGCTGGGTTCGGAACTGGTCAGCCTGGTGCTCTACCGTTATGCCTTCGACTTGCCGTGGCATCCGCATCCATGGCTGCTGGTATTGCCGCTGGTGGGCGCGTTGCTGATCGGTGCGGCGGGCGTATTTGGCACTCGCCGGGCGCTCAACGCCAGCCCACTGACAGTGTTGCGCGAGGGTTGAMARLPLLRLFSLALRQLLRDARAGELRVLFFALLVAVAASTAIGYFGARLNGAMMMRATEFLGADLLLEGSSPARPEQIRSGTELGLEHARVVEFSSVVATDNGIQLSSVKAADDIYPLRGELKSAPAPFAPEETGGRPAPGEAWVEARLLTALDLKIGDSIDVGNKTVRLSRVLTYEPDRAGNFYSLTPRVMINLKDLDATGVVQPGSRVSYRDLWRGPASALQTYRDLVKPGLEPNQRLQDARDGNRQIGGALGKAERYLNMASLVAVLLSGVAVALSANRFATRRFDASALLRCLGLSRRETMVLFSLQLAVLGLLASISGALLGWVAQLGLFALLHDLLPTTVPPGGLLPAIAGIGTGLVALAGFALPPLAALGRVPPLRVLRRDMLPIPSSSWVVYGAALGALGLIMWRLSLDLVLTFALLGGGVIAALVLGGLLLLVLQSLRRMLARASLPWRLGLGQLLRHPLAAAGQALAFGLILLSMALIALLRGELLDTWQNQLPKNAPNYFALNILPNDKQAFTDKLMALSAQSAPLYPVVPGRLISINGEPAKEFVTKDSAGDRALQRDLSLTWAAELPAGNVVTAGNWWPQQPPDDIPGVSVEGKVAENLKIKLGDRLVFNVGGLNREAKVTSLREINWDNFQPNFFMIFQPGTLKDLPATYLTSFYLAPGHDQQIVDLSRAFPAVTILQVEALLEQLRSILAQVTLAVEYVLLFVLAAGMAVLFSGLQATLDERIRQGALLRALGAERLLLTKARRIEFGLLGAVSGLLAALGSELVSLVLYRYAFDLPWHPHPWLLVLPLVGALLIGAAGVFGTRRALNASPLTVLREGPGPT0013350_4404DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004NANA
D1-35_00685684lolD_1COG1136Lipoprotein-releasing system ATP-binding protein LolDATGGGCTCAAGCATTCTCACCGCGAAGGACCTTAGCAAAGTGGTTCCCAGCGCGGAAGGTGAACTGACCATCCTGCACGAACTCAGCCTGGAACTGAACAAGGGCGACAGCCTGGCCATCGTCGGCGCGTCCGGTTCCGGCAAATCCACGCTCCTTGGGCTGCTGGCCGGCCTCGACTTGCCCAGCAGCGGTGAAGTGACCCTCGCAGGCCAAGCCCTCAGCGCACTGGACGAAGACCAGCGCGCCCGGGTTCGCGCCGAACACGTCGGTTTCGTTTTCCAGTCGTTCCAACTGCTCGACAGCCTCAACGCGCTGGAGAACGTCATGCTGCCGCTGGAACTGGACGGCCGCAAGGATGCCCGGGAACGCGCTACACAACTGCTGCAACGGGTCGGCCTCGGCCAACGGCTGACGCATTCGCCACGCCAGCTCTCGGGCGGCGAACAACAACGCGTCGCGATTGCCCGCGCCTTTGCCGCCGAGCCCGACGTGCTGTTCGCCGACGAGCCGACCGGCAACCTCGACAGCCACACCGGCGAACGCATCAGCGATCTGCTGTTCGAGCTGAACAAGGAACGCGGCACCACCCTGGTGCTGGTGACCCACGACGAACGCCTGGCCCATCGCTGCCGGCGCCTGATCCGACTTGAAGCCGGCCTGATGGTCGCGCCCCTGGAGCCTTGAMGSSILTAKDLSKVVPSAEGELTILHELSLELNKGDSLAIVGASGSGKSTLLGLLAGLDLPSSGEVTLAGQALSALDEDQRARVRAEHVGFVFQSFQLLDSLNALENVMLPLELDGRKDARERATQLLQRVGLGQRLTHSPRQLSGGEQQRVAIARAFAAEPDVLFADEPTGNLDSHTGERISDLLFELNKERGTTLVLVTHDERLAHRCRRLIRLEAGLMVAPLEPPGPT0013345_13191DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003NANA
D1-35_00686606tesACOG2755Esterase TesAATGCGAGTGTGGTTTTTGAGTGCCGGCCTGGCCTTGATGTGCATGGTCCAGAACGCAGCGGCGGGTACAGTCCTGATCGTTGGCGATAGTATCAGCGCGGCTTTCGGCCTGGATACCCGCCAAGGCTGGGTGTCGTTGCTGGAACAACGGCTCAAGGCCGAGGGTTTCGACGATAAAGTGGTCAATGCATCGATCAGTGGCGACACCAGCGCAGGCGGCCTGGCGCGCCTGCCGACGCTGCTTGCAGCCCATAAGCCGGAGCTGGTGGTCCTGGAGTTGGGAGGCAACGATGGCCTGCGTGGACAGCCGCCAACACAATTGCAACAAAACCTTGCAGCGATGATCGACAGCTCCCGCGCCAGCGGTGCCAAGGTGCTTTTGCTGGGCATGCAGTTGCCGCCGAACTATGGGCGACGCTACACCGAGGCTTTCTCGAAGGTCTACAGCACCTTGGCCGAGGAGAAAAACGTCCCGCTGGTGCCGTTTTTCCTCAAGGATGTCGGCGGCGTTCAGGGAATGATGCAGGGCGACGGATTGCACCCGTCCGTCGCGGCCCAGGGCAAGTTGCTGGAAAATGTCTGGCCGACGCTGAAACCGCTGCTTTGAMRVWFLSAGLALMCMVQNAAAGTVLIVGDSISAAFGLDTRQGWVSLLEQRLKAEGFDDKVVNASISGDTSAGGLARLPTLLAAHKPELVVLELGGNDGLRGQPPTQLQQNLAAMIDSSRASGAKVLLLGMQLPPNYGRRYTEAFSKVYSTLAEEKNVPLVPFFLKDVGGVQGMMQGDGLHPSVAAQGKLLENVWPTLKPLLPGPT0001840_2392DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001840-tesA-K10804NANA
D1-35_00687294hypothetical proteinATGCCGCGTCCCGCCTGGTCCCTGTTTGCCTACCAACTGATCGAGCCTGACGAACAGCTGGATCTGTTCGCCTGCCAGGAAGTGCGGGTGCATCTGGTGACCCGGCAGCTGGAGCTCGGCGGCTCGGCCGACCGGACCCTTTGTGGCAGTCTTTTGCCGGCGCAGCCACGCTGGTCGGCCGTCGACCGCAGGATTTTCCAGGACCATCGCCTCTGTTCCTTGTGCCGGGCAATCCTGGAATCGCAGAAGCGCGGTACCTCGCCGATCTGGCCGGAGCTGCGGTTCGAGTTGTGAMPRPAWSLFAYQLIEPDEQLDLFACQEVRVHLVTRQLELGGSADRTLCGSLLPAQPRWSAVDRRIFQDHRLCSLCRAILESQKRGTSPIWPELRFELNANANANANA
D1-35_00688972ybiSCOG1376putative L,D-transpeptidase YbiSATGTTGCCGCGCTTGCCTGCCGTCGCCCGCTGCCTGTCTCTTGCCGCCCTGTGTATGGCGGGTCCCGTTGCTGCATTGGAGCTGCCTCTGCCGCCACCGGGTGAAGACATCATCGGCCAGGTGCAGGTCATCAAGGCCAAATACGAAGACACCTTCGCTGACCTGGGCACCACCTATGACCTGGGTTACACCGAGATGGTCGCCGCCAACCCGGGCGTTGATCCGTGGTTGCCGGGTGCTGGCACTGAAATCGTCTTGCCGACCCGTTTTATCCTGCCACCGGGCCCGCGCGAAGGCATCGTGATCAACCTCGCGGAATACCGTCTCTATTATTTCCCCAAGGGGCGGAACGTGGTTTACACCTTCCCGCTGGGAATCGGTCGCGAAGGTTGGGGCTCGCCCATCGCCCACACCAGCATCATCGCCAAGACGCCAAACCCGACGTGGACCCCGCCGGCCTCGATCAAGGCTGAACATGCCGCCGACGGCGATCCCTTGCCGAATGTGGTTCCGGCCGGCCCCGATAACCCGCTGGGCCCGTTCAAGTTCACGCTGGGAACGCCGGGTTACCTGATCCATGGCTCGAACAAGAAATTCGGCATCGGCATGCGTACCAGCCACGGCTGCTTCCGGATGTTCAACAACAACGTGCTGGAGATGGCCGGCATGGTGCCGGTGGGGACTTCGGTCCGGATCATCAACGACCCGTACAAACTGGGCCTGAGTGGCGGCAAGGTTTACCTGGAAGCCCACACTCCGCTGGACGACAAGGGCAACCCGTCGGTGGTGGACAAACACACCGCGGTCATCAACGCGATGCTCAAGCGTGAGGACATCACCAGCAACTTGCGCATGAACTGGGATGTGGTGCGTGACGTGGTGGCCGCTGAAGACGGCCTGCCGATAGAGATCGCTGTTCCGAGTGCCTCGGCACCGATGGTATCGAGCGCGCCGATCGACCTGACGCAATAGMLPRLPAVARCLSLAALCMAGPVAALELPLPPPGEDIIGQVQVIKAKYEDTFADLGTTYDLGYTEMVAANPGVDPWLPGAGTEIVLPTRFILPPGPREGIVINLAEYRLYYFPKGRNVVYTFPLGIGREGWGSPIAHTSIIAKTPNPTWTPPASIKAEHAADGDPLPNVVPAGPDNPLGPFKFTLGTPGYLIHGSNKKFGIGMRTSHGCFRMFNNNVLEMAGMVPVGTSVRIINDPYKLGLSGGKVYLEAHTPLDDKGNPSVVDKHTAVINAMLKREDITSNLRMNWDVVRDVVAAEDGLPIEIAVPSASAPMVSSAPIDLTQPGPT0023745_237DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-L|D_TRANSPEPTIDASE_ACTIVITY,PGPT0023745-erfK-K16291NANA
D1-35_00689252hypothetical proteinATGAACAACGTTCTGAAATTCTCTGCTCTGGCCCTGGCCGCAGTTCTGGCTACCGGTTGCAGCAGCGCATCGAAAGAAACCGAAGCACGTCTGACTGCCACCGAAGACGCAGCAGCTCGCGCCCAAGCTCGTGCAGACGAAGCCTACCGCAAAGCTGATGAAGCTCTGGCTGCTGCTCAAAAAGCACAACAGACTGCTGACGAAGCTAACGAGCGTGCTCTGCGCATGCTGGAAAAAGCTAGCCGCAAGTAAMNNVLKFSALALAAVLATGCSSASKETEARLTATEDAAARAQARADEAYRKADEALAAAQKAQQTADEANERALRMLEKASRKNANANANANA
D1-35_00691282hypothetical proteinATGAGCGAGGCGGTTTCCATCCACCATGACCAGGCTGGTCATCAGTTCGAGACCATTGTGGACGGTCATCGTGCCTATCTGACCTACATGGACCTGGGCAAACAGACCCTGGACATCTATCGCACCTTCGTGCCTAACGCGCTGCGTGGCAGGGGGATTGCTGCGAAGTTGACCGAAGAGGCGTTGAAGTACGCTGAAGAAATGGGCTACACGGTGATCCCGTCCTGCTCCTATGTGGAGCGCTACATGGAGCGGCACCAGCGGCACGCGGCGAAGCTCTGAMSEAVSIHHDQAGHQFETIVDGHRAYLTYMDLGKQTLDIYRTFVPNALRGRGIAAKLTEEALKYAEEMGYTVIPSCSYVERYMERHQRHAAKLPGPT0021955_152DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARNITHINE_USAGEPLANT_DERIVED_CARNITHINE_DEGRADATION,PGPT0021955-lcdH|cdhA-K17735NANA
D1-35_006921077aroF_1COG0722Phospho-2-dehydro-3-deoxyheptonate aldolase, Tyr-sensitiveATGGCTGATTTACCGATCAATGACCTTAACGTCGCCTCCAACGAGACCCTCATCACGCCTGACCAGCTCAAGCGCGATATCCCCCTGAGCGATGCTGCACTGCGCACCGTGACCAAGGGCCGGGAAGTCATCCGCAACATTCTCGACGGCACCGACCATCGCCTGTTCGTGGTCATCGGGCCCTGCTCGATCCATGACATCAAGGCCGCCCATGAATATGCCGAGCGCCTGAAAGTGCTCGCGGCGGAAGTCTCCGACACCTTGTACCTGGTGATGCGGGTGTATTTCGAAAAGCCCCGGACCACCGTCGGCTGGAAAGGCCTGATCAACGACCCTTACCTGGACGACTCCTTCAAGATCCAGGATGGCCTGCACATCGGTCGCCAGTTGCTCCTGGACCTGGCCGAAATGGGCTTGCCCACCGCCACCGAAGCCCTCGACCCGATCTCCCCGCAATACCTGCAGGACCTGATCAGCTGGTCGGCCATCGGCGCGCGCACCACCGAATCCCAGACCCACCGCGAAATGGCTTCCGGCCTGTCATCGGCAGTGGGCTTCAAGAACGGCACCGACGGCGGCCTCACCGTGGCGATCAACGCCTTGCAATCGGTGTCCAGTCCTCACCGTTTCCTGGGCATCAACCAGGAAGGCGGCGTTTCGATCGTCACCACCAAGGGCAACGCCTACGGCCACGTCGTGCTGCGTGGCGGCAACGGCAAGCCGAACTATGACTCGGTCAGCGTCGCGCTGTGCGAGCAGGCGCTGAACAAGGCGAACATCAAGCCGAACATCATGGTTGATTGCAGCCACGCCAACTCCAACAAGGATCCGGCATTGCAGCCGCTGGTGATGGAAAACGTCGCCAACCAGATCCTCGAGGGCAACCAGTCGATCATCGGCCTGATGGTCGAAAGCCACTTGAACTGGGGCTGCCAGGCGATTCCGAAGGACCTTGCCGATTTGCAGTACGGCGTCTCCATCACCGATGCCTGCATCGACTGGAGCGCCACCGAGAAGACCCTGCGCGGCATGCACGCCAAACTCAAGGACGTGCTGCCAAAGCGTCAGCGCAGCTGAMADLPINDLNVASNETLITPDQLKRDIPLSDAALRTVTKGREVIRNILDGTDHRLFVVIGPCSIHDIKAAHEYAERLKVLAAEVSDTLYLVMRVYFEKPRTTVGWKGLINDPYLDDSFKIQDGLHIGRQLLLDLAEMGLPTATEALDPISPQYLQDLISWSAIGARTTESQTHREMASGLSSAVGFKNGTDGGLTVAINALQSVSSPHRFLGINQEGGVSIVTTKGNAYGHVVLRGGNGKPNYDSVSVALCEQALNKANIKPNIMVDCSHANSNKDPALQPLVMENVANQILEGNQSIIGLMVESHLNWGCQAIPKDLADLQYGVSITDACIDWSATEKTLRGMHAKLKDVLPKRQRSPGPT0012920_3899DIRECT 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
D1-35_00693954COG18932-dehydropantoate 2-reductaseATGCAGGCAGGCGGTAAACCGAGGATCGGGGTGATCGGCACAGGCGCGATTGGCGGGTTCTATGGCGTGATGCTGGCTCGTGCCGGCTACGACGTTCACTTTCTGCTGCGCAGCGAATTTGCCGCCGTGGCCGAGGCTGGCCTGCGGGTCGACAGCGCGGTGCATGGCGCGCTGACGCTCCAGCCGGCCCAGGCCTATCGCTCGGCGGCCGACATGCCGCCTTGCGACTGGCTGCTGGTCGGTGCCAAGACCACCAGCAATGCCGACCTGGCCCCAGCCATCATCCAGTCCGCGGCCGACGGCGCGAAAGTCCTGTTGCTGCAGAATGGCCTCGATGTCGAAGAGGAACTGCGACCACTGTTACCCGATTCACTGCACCTGCTTGGCGGCTTGTGCCTGATCTGCGTCAATCGGCTCGGCCCGGGCGTCATTGCCCACCAGGCGCTCGGGGCAATCAACATCGGTTACCACAGCGGTCCAGGGACGGATCAGGCCGCACGCATGGCGATCGTCGAGGAGGGAGCGGGGCTGTTCCGGGCAGCGGGCCTGGATTCCCAGGCCATGCCAGACCTCGGGCAGGCACGCTGGCAGAAACTGGTGTGGAACGTGCCCTATAACGGCCTTTCGGTTCTGCTCGGCGCGAGCACCACGCCGCTGATGGCCGACGACCACAGTCGTGGACTGATCCAGGCGCTGATGGCTGAAGTGGTGCGTGGCGCACAAGCCTGCGGTCATGAGATCGCGCCAGGCTACGCGGAATATCTGTTCACGATGACCGGAAAAATGCCCGACTATTGGCCCAGCATGTACCACGACTATTCCCAACGGCGCCCGTTGGAGCTGGAGGCGATCTACGCTCGGCCACTGGCGAGGGCCAGGGCGGCGGGGTGCGAGTTGCCGAAAATCGAAGCCTTGTATCAGGCGCTGGCGTTCATCGATCGACGCAACCGCTGAMQAGGKPRIGVIGTGAIGGFYGVMLARAGYDVHFLLRSEFAAVAEAGLRVDSAVHGALTLQPAQAYRSAADMPPCDWLLVGAKTTSNADLAPAIIQSAADGAKVLLLQNGLDVEEELRPLLPDSLHLLGGLCLICVNRLGPGVIAHQALGAINIGYHSGPGTDQAARMAIVEEGAGLFRAAGLDSQAMPDLGQARWQKLVWNVPYNGLSVLLGASTTPLMADDHSRGLIQALMAEVVRGAQACGHEIAPGYAEYLFTMTGKMPDYWPSMYHDYSQRRPLELEAIYARPLARARAAGCELPKIEALYQALAFIDRRNRPGPT0008745_2057DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008745-panE|apbA-K00077NANA
D1-35_00694906hypothetical proteinATGGCAAACAATATCGATGACAGGCTGGTGCTGGCGATTTCGTCGCGAGCGCTGTTCGACCTGAGCGAAAGCCACAAGGTTTACCTGTCGGGGGGCGTCGAAGCCTATCGGCAATACCAGATCGAACACGAGGATGAAGTCCTTGAACCGGGGGATGCCTTCGCGCTCGTGCAGAAACTGCTCAACCTCAACGAGCACCTGGGCCGTGCCCGCGTCGAGGTCATCCTGGTTTCGCGTAACAGCGCCGACACCGGCCTGCGGGTCTTCAACTCGATTCACCACTATGGACTGGCGATTTCCCGTGCCGCGTTTGTCGGCGGTCGCAGCCCATACCCGTACCTCAAGGCGTTCGGCTGCGATCTGTTCCTGTCCACTCACGCTGAAGATGTACGCAGTGCCCTGGATGCCGGATTTGCCGCGGCGACGATCCTTTCGGGCGGTGCCAGCCGCGCCGCCAGCGAAGAGCTGCGCATTGCCTTTGACGGCGACGCGGTGTTGTTTTCCGACGACTCTGAGCGTGTCTACCAGGCTGGTGGCCTGGAGGCGTTCCAGGCCAGCGAACGCCAGGCCGCGCGCGAGCCGCTGCGAGGAGGGCCGTTCAAGGGGTTCCTGGCGGCGCTCAATGCGCTGCAACGCGAATTCCCCGAGGACGCCTGCCCGATCCGGACCGCGCTGGTCACCGCCCGTTCGGCGCCGGCCCATGAGCGGGTCATCCGCACGTTGCGCGAATGGGACATCCGCCTGGACGAGTCGCTGTTTCTCGGTGGTCTGACCAAGTCCGCCTTCCTCGAAGCCTTTGCCGCCGACGTGTTTTTCGACGACCAGACCGGGCACTGCGAGCTTGCCCGGGAAGTGGTCGCCACCGGGCATGTGCCCCACGGCATCAGTAACGAAGTGAAGCCCTGAMANNIDDRLVLAISSRALFDLSESHKVYLSGGVEAYRQYQIEHEDEVLEPGDAFALVQKLLNLNEHLGRARVEVILVSRNSADTGLRVFNSIHHYGLAISRAAFVGGRSPYPYLKAFGCDLFLSTHAEDVRSALDAGFAAATILSGGASRAASEELRIAFDGDAVLFSDDSERVYQAGGLEAFQASERQAAREPLRGGPFKGFLAALNALQREFPEDACPIRTALVTARSAPAHERVIRTLREWDIRLDESLFLGGLTKSAFLEAFAADVFFDDQTGHCELAREVVATGHVPHGISNEVKPPGPT0013395_3088DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013395-nucA|ushA|yhcR|yfkN-K01081NANA
D1-35_00695501hypothetical proteinATGATTCGTTCGATGCTGTATGCCACGGACCTGGGGCTGTACGCCCCGTATGTGATGCAGCATGCCTTGGCGTTGGCACGGACGTTTGAAGCCGAGTTGTATGTGGTGCATGCGGTAGAGCCGATGGGGCTGTTCGCCGAATCGGTGTTGCAGAGCTATCTCGACGAGCAGGCGTTGAACGAATTTCATCGCCAGGGTCTGAGTACGGTGATGGCTAACATCGAGCAGCGGGTCCTCGACAATTTTCGCGAAGAGTTGGGCGAGGGGCAGCAGGACCTGAAATTGATCAAGTCGGTTCGGGTGTTCCAGGGCGACCCCTCCCAGGTCATTCTTGAACAGGCTGCGAAACTCTCCGTCGATTTGCTGATCGTAGGCAGTCATTGCCAGGGGGCGAGCGGCGAAACGCCGTTGGGCAGGACCGCCGCGCGGGTATTGCAGTTATCCCGCGTGCCGGTCTACCTGGTGCCGCTGGTCCAGCGCAGGCGCCAGGGCGAAGCTTGAMIRSMLYATDLGLYAPYVMQHALALARTFEAELYVVHAVEPMGLFAESVLQSYLDEQALNEFHRQGLSTVMANIEQRVLDNFREELGEGQQDLKLIKSVRVFQGDPSQVILEQAAKLSVDLLIVGSHCQGASGETPLGRTAARVLQLSRVPVYLVPLVQRRRQGEANANANANANA
D1-35_00696975cysB_1HTH-type transcriptional regulator CysBATGAAGCTTCAACAACTGCGCTACATCTGGGAAGTGGCGCACCACGACCTCAACGTTTCCGCAACCGCTCAAAGCCTCTACACGTCGCAACCTGGCATCAGCAAGCAGATCCGCCTCCTGGAAGACGAGCTGGGCGTCGAAGTCTTCGCCCGCAGCGGCAAGCACCTGACTCGCGTCACTCCCGCCGGTGAACGCATCATCACCACCGCCGGCGAGATCCTGCGCAAGGTCGAAAGCATCAAGCAGATCGCCCAGGAATTCTCCAACGAGAAAAAAGGCACCCTGTCCATCGCGACCACCCACACCCAGGCGCGTTATGCCTTGCCGCCGGTTATCAGCAATTTCATCAAGCAATACCCTGACGTGGCGCTGCACATGCACCAGGGGTCGCCGATGCAGATCGCCGAAATGGCCGCTGACGGCACCGTCGATTTCGCCATTGCCACCGAGGCCCTGGAGCTGTTCGGGGACCTGGTGATGATGCCGTGCTATCGCTGGAACCGCTGCGTGGTCGTGCCTCAGGGGCACCCGCTGACCAAGCTGCCGAAGCTGACCCTCGAAGCGCTGGCCGAATACCCGATCGTGACTTATGTGTTCGGTTTCACCGGTCGCTCGAAACTCGACGAAGCCTTCAGCCATCGCGGCCTGACCCCGAAAGTGGTGTTCACCGCTGCCGACGCCGACGTCATCAAGACCTATGTGCGCCTCGGACTGGGCGTGGGTATCGTCGCGAAGATGGCGGTCGACACCAAGCTCGACAATGACCTGGTGGTTCTGGATGCGAGCGAGTTGTTCGAATCCAGCGTGACCAAGATCGGTTTCCGCCGCGGTACGTTCCTGCGCGGATTCATGTGCGATTTCATCGAGAAATTTGCCCCGCACCTGACCCGGGAAGTCATGGCCAAGGCCATCCAGTGCCACAACAAGCAGGAACTCGAAGAACTGTTCGACGGCGTCGAACTGCCGGTGCATTAAMKLQQLRYIWEVAHHDLNVSATAQSLYTSQPGISKQIRLLEDELGVEVFARSGKHLTRVTPAGERIITTAGEILRKVESIKQIAQEFSNEKKGTLSIATTHTQARYALPPVISNFIKQYPDVALHMHQGSPMQIAEMAADGTVDFAIATEALELFGDLVMMPCYRWNRCVVVPQGHPLTKLPKLTLEALAEYPIVTYVFGFTGRSKLDEAFSHRGLTPKVVFTAADADVIKTYVRLGLGVGIVAKMAVDTKLDNDLVVLDASELFESSVTKIGFRRGTFLRGFMCDFIEKFAPHLTREVMAKAIQCHNKQELEELFDGVELPVHPGPT0002965_328DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002965-cysB-K13634NANA
D1-35_00697489hypothetical proteinATGAACATGAACAAACAGACCGTCCACCAACTGATTCTCGACAAGCTCAGGATTGACCTCGATATCGCCGAACGCGCCGCGCAGACCGCCTACGAAACCGCGACCCACGAGGAAAACATCGCCGAAAACAAATACGACACCCTGGGCCTGGAGGCTTCGTACCTTGCGGCCGGGCAAGCCAGGCGCGTGGAGGAAATCCGCCAGGCACTGGTGCTCTGCCAGAACCTCGCGCTGAGACCTTACGATGAAGAACGCGGCATCCAGGTCGGCACATTGATCGGGCTGGAAGATGAGGAGGGTCGCCAGCAGTGGCTGTTCCTGGGACCCGACGCGGCGGGGCTGAAGGTCTCGCTGGTGGGGCAGCCGATTACCGTCATCACCCCTCGCTCACCACTGGGCCGAGGCCTGTTGGGCAAATTCGAAGGGGATGAAGTGGAGATCGTCGTGGCAGGCGCCCGGCAACAGTTCGCTGTCACCGAGGCGATCTAGMNMNKQTVHQLILDKLRIDLDIAERAAQTAYETATHEENIAENKYDTLGLEASYLAAGQARRVEEIRQALVLCQNLALRPYDEERGIQVGTLIGLEDEEGRQQWLFLGPDAAGLKVSLVGQPITVITPRSPLGRGLLGKFEGDEVEIVVAGARQQFAVTEAINANANANANA
D1-35_00698393hypothetical proteinATGCCCGACCACTCCTCTCCCCGCCTCACAACGTTGCAACTGACGCTGGGCATCGCCTTGGGCTTGTGGCTGGGATTCCTTGCCATCGTGCTGACGGGATGGCTGCTGTCCAGGTTTCTGTTCGATGAGCAACTGGCCCCGGTGGCCGCCGCGGTTCATCAATTGGCGCAGCCGCCGGCAGCACCGCCAGCCCCGGAGCCGACCCCAACGCCAACCCCAATGTTCGAGCAGTATCAACAGAACCTGCAGAAGAACGAGCAACGCCAGGCCCTCGACCAGGCCCGCAGCAACCCTCGCAACCTGTCCAACCCAAAGTGTCAATTCTGGCTCCAACAGGACCAGAACGCGCCTAGCGAGAAAAGCCGCGCCAATGTCCTGCAATTCTGCGAATGAMPDHSSPRLTTLQLTLGIALGLWLGFLAIVLTGWLLSRFLFDEQLAPVAAAVHQLAQPPAAPPAPEPTPTPTPMFEQYQQNLQKNEQRQALDQARSNPRNLSNPKCQFWLQQDQNAPSEKSRANVLQFCENANANANANA
D1-35_006991134hypothetical proteinATGACTGTGCGTTGGGATATTTTTTGCACCGTCGTCGATAACTATGGCGACATCGGCGTCACCTGGCGCCTGGCTCGGCAATTGGTCGCCGAGCATCAATGCGCGGTGCGGCTGTGGGTCGACGACCTGCGCGCCTTCGAGCGGTTATGTCCGTCTATCGATGTCACGCTGACCGAGCAATGGCAGCAAGGCGTACAGGTGCGTCACTGGCCCAAGGACTGGCAGCCCACCGAAGCTGCCGATGTAGTGATCGCCGCATTTGCCTGCCAGTTGCCCAGCGCCTACATGGACGCGATGGCCGAGCGTCCGGCGGCGCCTTTGTGGATGAACCTCGATTACCTGAGCGCCGAGGATTGGGTGATCGGTTGTCACGGTTTGCCGTCGGTGAAGTACAAACATGTGCAGAAATATTTCTTTTTTCCGGGCTTTCAGGAGGGCACGGGTGGCTTGCTGCGGGAGGCCGGTTTGTTGGGGCGTCGTCGAGAATTTCAGCAGGATGGCGAGGCACAAAGGGCTTTCCTGCAAGGACTGGGCGTCGAGCGCGAGTCCGGGGCGCGGCTGATTTCGTTGTTTGCCTATGAGAACGACGGTTTGGCCAGCTGGTTTGATGCGCTGGCGAGGGATGCTCGTCTGTCGCATGTGCTGGTTCCGGAAAGCCGCATCCTCGCCGATGTGGAGCGTTGGGTTGGTATCGACGGCCTGAAAGCCGGTGCCTTGCATCGCCGTGGCGCCCTGACCGTGCAGGTGCTGCCTTTCGTGCGCCAGGATGAATACGATCAACTGTTGTGGTGCTGTGATTTCAACGCCGTGCGTGGCGAAGACTCCTTCGTGCGCGCGCAGTGGGCCGGCCGGCCGCTGCTCTGGCATATCTATCAACAGGAAGAGGACGTCCACCTGGAAAAACTCGAGGCGTTTCTCCGCTTGTATACCGAGGGGCTCCCGGAGGCTGCGGAAAAAGCGATCAGCGGTCTCTGGCGGGCCTGGAACGCCGGCCAAGGCGTGGCAGAGCACTGGAGCGCCGCCTGCGAGCAACACCAGGTGCTCGCCGAACATGCCCAGGCGTGGTGCCAGAAACAGGCCTCTCGAGCCGATCTTGCCACGGCGCTGGTGAAGTTTTACCGAAATTGGATATGAMTVRWDIFCTVVDNYGDIGVTWRLARQLVAEHQCAVRLWVDDLRAFERLCPSIDVTLTEQWQQGVQVRHWPKDWQPTEAADVVIAAFACQLPSAYMDAMAERPAAPLWMNLDYLSAEDWVIGCHGLPSVKYKHVQKYFFFPGFQEGTGGLLREAGLLGRRREFQQDGEAQRAFLQGLGVERESGARLISLFAYENDGLASWFDALARDARLSHVLVPESRILADVERWVGIDGLKAGALHRRGALTVQVLPFVRQDEYDQLLWCCDFNAVRGEDSFVRAQWAGRPLLWHIYQQEEDVHLEKLEAFLRLYTEGLPEAAEKAISGLWRAWNAGQGVAEHWSAACEQHQVLAEHAQAWCQKQASRADLATALVKFYRNWINANANANANA
D1-35_00700570efpCOG0231Elongation factor PATGAAAACTGGTAAAGAACTCAAACCCGGTACCGTGATTCGTATCGACAACGATCCTTGGCTGGTTCAGAAAGCTGAATTCACCAAGTCGGGTCGTAACAGCGCGATCATGAAGACCAAGCTGAAAAACCTGCTGACCGGCTACAAGACCGAAACCGTCTACGGTGCGGACGACAAGCTGGACGACGTGATCCTGGACCGTAAAGAGGCGACCCTGTCTTTCATCAGCGGCGATACCTACACGTTCATGGACACCACTGACTACACCATGTACGAACTGAACGCCGAAGACATCGAAAGCGTCCTGCCATTCGTTGAAGAAGGCATGACCGACGTCTGCGAAGCCGTATTCTTCGAAGAGCGCCTGGTTTCCGTGGAACTGCCGACCACTATCGTGCGTGTAGTTGACTACACTGAAGGTTCCGCTCGCGGCGACACTTCCGGCAAGGTCATGAAGCCTGCCAAGCTGAGCAACGGTACTGAGCTGCAAGTTGCTGATTTCATCGAAATCGGTGACAAAATCGAGATCGATACCCGCGAAGGCGGTTCCTACAAAGGCCGCGCTAAATAAMKTGKELKPGTVIRIDNDPWLVQKAEFTKSGRNSAIMKTKLKNLLTGYKTETVYGADDKLDDVILDRKEATLSFISGDTYTFMDTTDYTMYELNAEDIESVLPFVEEGMTDVCEAVFFEERLVSVELPTTIVRVVDYTEGSARGDTSGKVMKPAKLSNGTELQVADFIEIGDKIEIDTREGGSYKGRAKPGPT0016205_1052DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISOTHER_MOTILITY_REGULATING_FUNCTIONSMOTILITY-SWARMING_REGULATOR,PGPT0016205-efp-K02356NANA
D1-35_007011014nlhH_1COG0657Carboxylesterase NlhHATGAACACCCTCAGCAAAGCCCTGACCGGCACCCTTCTCGCCCTGAGCATCAGCAACGCCTTCGCCGACGGCATCGTCGAGCACAACACCCAGGCGTTCCTCGACGCACTGAATGCCGGCACCGGCAAACCGCTGGAGCAGTTGTCGCCAAAAGATGCCCGTGCCGTATTGGTCGGCGCCCAGGCGGGGGTGAAGTTGACGCTACCCAAGGCCGACGTCAGCGAGAAAACCATCCAGGTCGATGGCCAGTCGATCAGTCTGACCATCGTTCGTCCGGCCGGGGTCAAGGGTGAGTTGCCCGCGTTCATGTTCTTTCACGGCGGTGGCTGGGTACTGGGCGATTTCCCCACCCATGAACGACTGGTTCGGGATCTGGTGGCGGGTTCGGGTGCCGTTGCGGTGTTCGTCAACTACACACCATCGCCCGAGGCGCATTACCCGGTAGCGATCAACCAGGCCTACGCCGCGACAAAGTGGGTGGCCGAGCATGGCAAACAGATCAACGTCGATGGCAAGCGCCTGGCCGTAGCGGGCAACAGCGTCGGCGGCAACATGGCGGCGGTCGTCGCGCTGATGGCCAAGGACAAGGGTACGCCGGCGATCCGCTTCCAGGCATTGTTGTGGCCGGTGACCGACGCCAGCTTCGAGACGGCGTCCTACAACCAGTTCGCCGAAGGGCACTTCCTCAGCAAGAACATGATGAAGTGGTTCTGGGACAACTACACCACCGATGCGGGGCAGCGTAACGAGATCTATGCCTCGCCATTGCGGGCAACTACCGCACAACTCAAGGGCCTCCCGCCGGCGCTGGTGCAGACCGCCGAGGCTGATGTGCTGCGCGACGAAGGTGAAGCCTACGCTCGCAAACTGGATGCGGCGGGTGTACCGGTTACAGCCGTGCGCTACAACGGCATGATCCACGATTATGGCTTGCTTAACGTGGTGAGCCAGGTGCCGGCGGTGCGTTCGGCGATGCTGCAGGCGTCCGAGGAACTCAAGCAACACCTGAAGTAAMNTLSKALTGTLLALSISNAFADGIVEHNTQAFLDALNAGTGKPLEQLSPKDARAVLVGAQAGVKLTLPKADVSEKTIQVDGQSISLTIVRPAGVKGELPAFMFFHGGGWVLGDFPTHERLVRDLVAGSGAVAVFVNYTPSPEAHYPVAINQAYAATKWVAEHGKQINVDGKRLAVAGNSVGGNMAAVVALMAKDKGTPAIRFQALLWPVTDASFETASYNQFAEGHFLSKNMMKWFWDNYTTDAGQRNEIYASPLRATTAQLKGLPPALVQTAEADVLRDEGEAYARKLDAAGVPVTAVRYNGMIHDYGLLNVVSQVPAVRSAMLQASEELKQHLKNANANANANA
D1-35_00702420ohrB_1COG1764Organic hydroperoxide resistance protein OhrBATGAAAACTCTCTACACCGCAATCGCAACCTCCACCGGCGGCCGTGACGGTCGTGCCATCTCCAGCGATAACATCCTCGACGTCAAACTTGCCACGCCCAAGGAACTCGGCGGTGCGGGCGGTGCTGCGACCAACCCAGAGCAACTGTTCGCCGCCGGCTACTCGGCCTGCTTCATCGGCGCGCTGAAATTTGTCGCCAGCCAGAGCAAACGCAAGATCCCGGACGACGCCTCGATCACTGCTCACGTCGGCATCGGCCAGATTCCCGGTGGTTTTGGTCTCGACATCGACCTGCACATCAGCCTGCCAGGTCTTGACCAGGTCGACGCCCAAAGCCTTGTGGAAGCCGCTCACCAGGTTTGCCCGTACTCCAACGCCACCCGCGGCAACGTTGATGTTCGCCTGCACGTAACCGTCTAAMKTLYTAIATSTGGRDGRAISSDNILDVKLATPKELGGAGGAATNPEQLFAAGYSACFIGALKFVASQSKRKIPDDASITAHVGIGQIPGGFGLDIDLHISLPGLDQVDAQSLVEAAHQVCPYSNATRGNVDVRLHVTVPGPT0013160_3584DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013160-ohrB|osmC|ohr|ykzA-K04063NANA
D1-35_00703462ohrR_1Organic hydroperoxide resistance transcriptional regulatorATGACTACCCAACACGACACCCCCGATCCTTGCGAAGCCCTGCTGCTGGAAAACCAGGTCTGCTTCGCCCTGCACTCCACGTCGCTGTTGATGACCAAGGTCTACAAGCCCCTGCTCCAGGCGTTGGGCCTGACCTATCCGCAGTACCTGGCGATGATGGTGTTGTGGGAACAAGACGGGCTGACCGTCGGCGAAATCAGTAACCGCCTGCTCACCGACCCTGGCTCCCTGACCCCGCTGCTCAAGCGCCTGGAGGCCGAAGGCCTGTTGAGTCGCACCCGCAGCCGTGAAGATGAACGCGTGGTCATTGTCGAGCTGACCGAACAGGGCCGCGCCCTGCAGAAAAAGGCCCTCGACATCCCCCAATGCATCCTCGCCGCGAGCGGCCAGACGCTGGAACAACTGAAAAAACTGCAACATGACCTGCAGGAACTGCGCGGGCATTTGCAGGACAGCCTTTGAMTTQHDTPDPCEALLLENQVCFALHSTSLLMTKVYKPLLQALGLTYPQYLAMMVLWEQDGLTVGEISNRLLTDPGSLTPLLKRLEAEGLLSRTRSREDERVVIVELTEQGRALQKKALDIPQCILAASGQTLEQLKKLQHDLQELRGHLQDSLPGPT0013155_2357DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775NANA
D1-35_00704750hypothetical proteinGTGATCGAGGTCATGCTGTATTTGCTGTTGGGCGCCGCGCTGGGCACTTTGGGGGGATTGTTCGGCATTGGTGGCGGGCTGATCGCGATTCCAGTTCTGGGTGTATGGTTCGGCCTGGATCAGCATCTCGCCCAAGGTACGGCATTGGTGATGGTCGTCCCCAACGTGATGCTGGCGCTGTGGCGTTATCACCAGCGTAATCGTATCGAAATGCGCCATGTCCTGCCGCTGGCATCCATGGGCTTCTGCTTCGCGTGGCTTGGCTCCATCTGGGCCGTGGGCATTGACGCGCAAAGCATGCGGATTGGTTTTGTGGTGTTCCTGGTGGTCCTGGCGGCCTACAACCTGATCCGCATGTTCGCCGCGACGGCGCCGGCTTCGGCGCGGATGCGCCACGGCTGGCCTTGGCTCGCCGTGCTGGGCGCGGCATCGGGCACCATGGGCGGTCTGTTTGGGGTGGGCGGAGCGGTTGTCGCCACGCCAATACTGACCAGCGTGTTTGGCACTTCCCAGGTCGTCGCCCAAGGGTTGTCCCTGGCGCTGGCCTTGCCCAGCACGGGTGTGACCCTTGCCACCTATGCGTTTCACCATGAGGTGAACTGGTGGATCGGGCTGCCCCTGGCTGTCGGTGGGCTGATGAGCATCAGTTGGGGGGTGAAGGTCGCCCACGCGATGCCGGAGCGATTGCTGCGCGGGCTGTTCTGCGGCTTCCTGGTGCTGTGCGCGGTGTTGCTCCTGCTTAAAGTTTGAMIEVMLYLLLGAALGTLGGLFGIGGGLIAIPVLGVWFGLDQHLAQGTALVMVVPNVMLALWRYHQRNRIEMRHVLPLASMGFCFAWLGSIWAVGIDAQSMRIGFVVFLVVLAAYNLIRMFAATAPASARMRHGWPWLAVLGAASGTMGGLFGVGGAVVATPILTSVFGTSQVVAQGLSLALALPSTGVTLATYAFHHEVNWWIGLPLAVGGLMSISWGVKVAHAMPERLLRGLFCGFLVLCAVLLLLKVNANANANANA
D1-35_00705882hdfR_1HTH-type transcriptional regulator HdfRATGCAATACATCTCGGAGATTGATCAATTGTCGAGTTACCCGAGCATTGATACGGAAGTGCTGCGGACCTTCGTCGCCATCGCCGACCAGGGCGGCTTCACTCGCGCCGGGGAGCTAGTCAACCGTACGCAATCGGCCGTCAGCATGCAGATGAAGCGCCTGGAAGAGGACGTCTTGCAGCGCCGCCTGTTCGAGCGCGACGGGCGGCAGGTCAAGCTCACCGCCGAGGGCCAGGTGTTGCTGGGTTACGCCCGGCGGATCCTCAAGCTGCACAGTGAAGTGTTCAACACGCTGCGCGAACCGCACATGGTCGGCACGGTCCGCATCGGCACGCCGGACGATTATGTGATGCGCTTTTTGCCGGGAATCCTGCAGCGCTTCGCCCAGTTCTATCCACTGATCGAAATCGAAGTGCACTGCGAATCGTCCAAGCAACTGCTGCTGCGCCAGGATCTCGACCTGTCCATCGTCACTCGCAAACCAGGCGACGAGATCGGTCAGTTGCTGCGCAAGGAACGTTTTGTCTGGGCCGAGGCGGCCTGCTTCAACACTCATGAACAAACACCGCTGCCGCTGGCGATGTTCAACAGTGATTGTTTCTGTCGGCAATGGGCGTGCAATGCGCTGGACGCCATGGGGCGTGATTATCGCGTGGCGTACAACAGCTCAAGCCTGTCAGCGATCATGGCGGTGGTCGGCGCGGGCCTGGCGATCACCGCGCAACTGGAGAGCCTGCTGACCCCGGACATGCGCGTCCTAGGCGAGGCCGAGAACCTGCCGGAGCTGCCCGAGGCCAGCATCATGTTGATCCGCAACCTGCACAATCCGTCGCCGATCACCGAGTGCCTGGCCGAACACATCGTCGAAGGTTTCAAACTTTAAMQYISEIDQLSSYPSIDTEVLRTFVAIADQGGFTRAGELVNRTQSAVSMQMKRLEEDVLQRRLFERDGRQVKLTAEGQVLLGYARRILKLHSEVFNTLREPHMVGTVRIGTPDDYVMRFLPGILQRFAQFYPLIEIEVHCESSKQLLLRQDLDLSIVTRKPGDEIGQLLRKERFVWAEAACFNTHEQTPLPLAMFNSDCFCRQWACNALDAMGRDYRVAYNSSSLSAIMAVVGAGLAITAQLESLLTPDMRVLGEAENLPELPEASIMLIRNLHNPSPITECLAEHIVEGFKLNANANANANA
D1-35_00706222hypothetical proteinATGAAAGGTCAAAAAGGTTATTTGCTGATTGATAAATTCTCATCCCACGGTTTTTCGCTCAGCGCGCTGTTGCACAAGTTTAGCCGCTGGTACGAATTGCACCACGAGCGTGAACTGCTCGCCTCGATGAGCGATGAGGCGCTCAAGGACATAGGTGTCAGCCGTGCCGATGTTGAAAAGGAAGTGGTTCGGCCATTCTGGGATGACCCGATGCACAAATGAMKGQKGYLLIDKFSSHGFSLSALLHKFSRWYELHHERELLASMSDEALKDIGVSRADVEKEVVRPFWDDPMHKNANANANANA
D1-35_007071230hypothetical proteinATGCCCGCGACTGTATCCTTTACCCTCAGACAGGCCCGACGCCTGGCGTTGGCCGCCCAAGGATTCGATGGGCGACCATCGCCAGCTTCGGTGCAACCCGCGCGCCTCAACCGTCTGATCGAGCGCCTCGGCGTCGTGCAGATCGATTCAGTCAATGCCTTGGTGCGCTCGCATTACCTCCCGCTGTTCTCCCGCCTTGGTCACTACAATCGTGACTTGCTCGATCAGGCAGCCTGGAGCCAGGGGGGCCGCCGTACGTTGTTTGAATATTGGGGGCATGAAGCTTCGTTGATGCCGGTTGCGATGTATCCGCTGATGCGTTGGCGCATGGCGCGGGCGGCCCGTGGCGAAGGCATTTACCAGCAGTTGGCGCGGTTTGGTCGTGAGCGGCAGGACGTGATTCATCGGGTCCTTCAGGCGGTTCAGGAGCAGGGCGCGCTTGGCGCCGGCAGCTTGTCCACCCGTCAGGAGAAGGCCGGTCCCTGGTGGGACTGGAGCGCCGAGAAACATGCGCTGGAATGGCTGTTCGCCGCGGGCAAAGTCACCGTAGCCGGGCGGCGGGGGTTCGAGCGGCTCTATGATCTGCCTGAGCGGGTGCTGCCCGAGTCGGTCCTGCGCCAACCGCAGCTGGACGAAGCCCATGCCCAACGCGCGTTGCTCCTGCATGCGGCGCAGGCCTTGGGCGTCGGCACCGAGAAGGACCTGCGTGATTACTTCCGCCTGGATCCGGCCGACAGCCGCGCGCGACTGGCCGAGTTGGAGGAGGCGGGTGAGTTGTTGCGATGTCAGGTGCAGGGCTGGAAGCAGCCGGCCTGGTGCCAACCCACCGTGAAAATCCCCCGCAAGGTCGCTGCCAGTGCCTTGCTGTCGCCGTTCGACTCGCTGGTCTGGGAGCGCAGCCGCACCGAGCGCTTGTTCGACTTCCGCTATCGCCTGGAAATCTACACGCCGGTGCACAAGCGCGTGTATGGCTATTACGTCTTGCCGTTTTTGCACAATGAGCGGATTGCGGCGCGGGTCGATCTTCGTGCGGAGCGGGCCTTGGGGCGGCTGGCCGTGCATGCCGTGCATGAGGAAGAGCCGGGGCTTGACGAGGAGGGCATGCAGGCGCTGGCGATGAATCTGCGGCGCATGGCTGACTGGTTGGGACTGGAGCGGGTGCAGCTCAATTGCCAGCGGGAGGGTGGGGCGCGGTTGGCGGTGGCGTTGGCGCGGGTTGATGGTGGCTGAMPATVSFTLRQARRLALAAQGFDGRPSPASVQPARLNRLIERLGVVQIDSVNALVRSHYLPLFSRLGHYNRDLLDQAAWSQGGRRTLFEYWGHEASLMPVAMYPLMRWRMARAARGEGIYQQLARFGRERQDVIHRVLQAVQEQGALGAGSLSTRQEKAGPWWDWSAEKHALEWLFAAGKVTVAGRRGFERLYDLPERVLPESVLRQPQLDEAHAQRALLLHAAQALGVGTEKDLRDYFRLDPADSRARLAELEEAGELLRCQVQGWKQPAWCQPTVKIPRKVAASALLSPFDSLVWERSRTERLFDFRYRLEIYTPVHKRVYGYYVLPFLHNERIAARVDLRAERALGRLAVHAVHEEEPGLDEEGMQALAMNLRRMADWLGLERVQLNCQREGGARLAVALARVDGGNANANANANA
D1-35_007081347aroHCOG3200Phospho-2-dehydro-3-deoxyheptonate aldolaseATGAGCCAACCCTGGAGCCCTGACAGCTGGCGCGCCCTGCCGATCCAGCAACAACCTCGCTACCCCGACGCGGCGCATCTGCTGCAGGTGGAGCAGACCCTGGCCAGTTATCCGCCCTTGGTGTTTGCCGGTGAAGCCCGGGAATTGCGTCGTCAGTTTGCCGAAGTCACCCAGGGTCGGGCATTCCTGCTGCAGGGCGGCGATTGCGCCGAGAGCTTTGCCGAATTTTCCGCCGCCAAGATCCGCGACACCTTCAAGGTGCTGCTGCAAATGGCGATCGTCATGACCTTCGCCGCCGGTTGCCCGGTGGTCAAGGTCGGGCGCATGGCGGGCCAGTTCGCCAAACCTCGCTCGGCCAACGATGAGACGATCGATGGCGTGACACTACCGGCCTACCGGGGCGACATCGTCAACGGCATCGGCTTCGACGAGAAAAGTCGCGTGCCGGATCCGGAGCGGCTTTTGCAGTCCTATCATCAGTCCACCGCAACCCTCAACCTGCTGCGGGCGTTCGCCCAGGGCGGGTTCGCCGATCTGCACCAGGTGCATAAGTGGAACCTGGACTTCATCGCCAACTCGGCCCTGGCGGAAAAGTACAGCCACCTGGCCGACCGCATCGACGAAACCCTGGCGTTCATGCGCGCCTGCGGCATGGACAGCTCGCCGCAACTGCGCGAGACCAGTTTTTTCACCGCCCACGAAGCGTTGTTGCTCAACTATGAAGAAGCCTTCGTACGCCGTGACAGCCTGACCAACGATTATTACGACTGCTCCGCCCACATGCTGTGGATCGGCGATCGTACCCGCCAGCTGGACGGAGCGCATGTGGAGTTCCTGCGGGGGGTGAACAACCCGATCGGGGTCAAGGTCGGCCCGAGCATGAACCCTGACGACCTGATCCGCCTGATCGACGTGCTCAACCCGGATAACGACCCCGGTCGACTGAACCTGATCGCGCGGATGGGCGCCAACAAGGTCGCTGATCACCTGCCGCAACTGTTGCGCGCCGTGCAGCGTGAAGGCAAGCAGGTGCTCTGGAGTTCCGACCCGATGCACGGCAATACCATCAAGGCCAGCAGCGGCTACAAGACCCGGGATTTTGCGCAGATTCTTGGCGAGGTGAAGCAGTTCTTCCAGGTGCATGAAGCCGAAGGGACCTACGCCGGCGGGATTCATATCGAGATGACCGGGCAGAACGTCACCGAATGCATCGGCGGCGCCCGACCGATCACCGAGGATGGGCTGTCGGATCGTTACCACACGCACTGCGACCCGCGGATGAATGCCGATCAGTCGCTGGAGCTGGCGTTCTTGATTGCCGAGACGCTGAAGCAGGTACGGCGGTGAMSQPWSPDSWRALPIQQQPRYPDAAHLLQVEQTLASYPPLVFAGEARELRRQFAEVTQGRAFLLQGGDCAESFAEFSAAKIRDTFKVLLQMAIVMTFAAGCPVVKVGRMAGQFAKPRSANDETIDGVTLPAYRGDIVNGIGFDEKSRVPDPERLLQSYHQSTATLNLLRAFAQGGFADLHQVHKWNLDFIANSALAEKYSHLADRIDETLAFMRACGMDSSPQLRETSFFTAHEALLLNYEEAFVRRDSLTNDYYDCSAHMLWIGDRTRQLDGAHVEFLRGVNNPIGVKVGPSMNPDDLIRLIDVLNPDNDPGRLNLIARMGANKVADHLPQLLRAVQREGKQVLWSSDPMHGNTIKASSGYKTRDFAQILGEVKQFFQVHEAEGTYAGGIHIEMTGQNVTECIGGARPITEDGLSDRYHTHCDPRMNADQSLELAFLIAETLKQVRRPGPT0012920_1972DIRECT 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
D1-35_00709756speE_2Polyamine aminopropyltransferaseATGACAGAGGAGCGCGTCGAGCATTTGCTCGCCGAGGTGCACGACGAGTTCGGCATGATCCGCGTACTCGAAGTGGCCGATTACCGGTTTCTCGAATTTGGCGATGCGATCGAGCAGAGCTGCGTGTTCACGGCTGATCCGAGCTGGCTCGAATATGACTACACCCGCGCCATGCTCATCGGTGCGTTGTGCCACGAGCAACCGGAGAGCGCGCTGTTCCTCGGGCTGGGGGCCGGTACGCTGACCCAGGCCTGTCTCAAGTTCCTGCCGCTGGAGGATGTCGAGGCCATCGAACTGCGCCCCGACGTGCCGCGCCTGGCCATCGAATACCTCGGGCTGGACGATGATCCGCGCCTGTACATTCGTGTCGGTGATGCCTTGGAGCTGCTTGAAACGGCGGAGCCGGCGGACCTGATTTTCGTCGACCTCTATACCGATGTCGGTCCCGGCGTCGGTCACCTGGCCTGGGGATTTCTGGAAAACTGCCAGAAGCGCCTCAATCCCGGCGGCTGGCTGGTGATCAACCAGTGGGCCACCGACGATGGCAAGCCGCTGGGCGCGGCGCTCTTGCGCGGCTTGTATCACCGGCACTACTGGGAGTTGCCGGTGAAGGAGGGCAACGTCATCCTGATCGTGCCGGCGGACCTGGACCAGGCATTGGACATGCAAGGTCTGGTCGCCCGTGCCGAAGGGCTCGCGCCGCGGCTGGGTTATTCGTTGCAATCGTTGATCAAGGCAATCCGCCCGGCGACTTGAMTEERVEHLLAEVHDEFGMIRVLEVADYRFLEFGDAIEQSCVFTADPSWLEYDYTRAMLIGALCHEQPESALFLGLGAGTLTQACLKFLPLEDVEAIELRPDVPRLAIEYLGLDDDPRLYIRVGDALELLETAEPADLIFVDLYTDVGPGVGHLAWGFLENCQKRLNPGGWLVINQWATDDGKPLGAALLRGLYHRHYWELPVKEGNVILIVPADLDQALDMQGLVARAEGLAPRLGYSLQSLIKAIRPATNANANANANA
D1-35_007101674deaDCOG0513ATP-dependent RNA helicase DeaDATGACCCAGGAAACCGGCGGCTTCGCCGCTTTTAATCTCAACCCGAACATTCTTGCTGCCGTCATTGCGACTGGCTACGAAGAACCTTCGGCTATTCAGCAGCAATCGATCCCGATCATCATGGCCGGCCACGACATGATTGGCCAGGCGCAAACCGGTACGGGTAAAACCGCTGCGTTCGCCCTGCCGATCCTGCATCGCATCGATCCTGCCAAGCGCGAGCCGCAAGCCCTGATCCTGGCGCCAACCCGTGAGTTGGCGCTGCAAGTAGCAACCGCTTTCGAAACCTACTCCAAGCAGATGCCTGGCGTTACCGTTGTGGCCGTTTACGGCGGCGCCCCGATGGGCCCACAACTGAAAGCAATCCGTAATGGCGCGCAGATCGTTGTCGCCACCCCGGGCCGTCTCTGCGACCACCTGCGTCGTGACGAGAAAGTCCTCGCTACCGTGAACCACCTGGTTCTCGACGAAGCGGACGAAATGCTCAAGCTGGGCTTCATGGATGACCTGGAAGTCATCTTCAAGGCCCTGCCAGCGACTCGCCAGACTGTTTTGTTCTCGGCCACCCTGCCGCAATCGATCCGTGCCATTGCCGAGCGCCACCTGCGCGATCCGCAACACGTGAAGATCCAGACCAAGACCCAGACCGTTACCGCGATCGAGCAGGCTCACCTGCTGGTTCACGCTGACCAGAAGACTTCTGCCGTTCTCAGCTTGCTGGAAGTGGAAGACTTCGACGCCCTGATCATGTTCGTGCGCACCAAGCAAGCGACCCTGGACCTGGCCAGCGCCCTGGAAGCCAAAGGCTACAAAGCCGCTGCGCTGAACGGTGACATTGCCCAGAACCAGCGCGAGCGCGTGATCGATTCCCTCAAGGATGGCCGTCTGGACATCGTTGTGGCGACCGACGTTGCTGCCCGTGGTCTGGACGTTCCGCGCATCACCCACGTGTTCAACGTGGACATGCCATACGATCCGGAATCCTACGTCCACCGTATCGGCCGTACCGGCCGTGCCGGTCGCGAAGGTCGCGCGCTGCTGCTGGTGACTCCGCGTGAGCGCCGCATGCTGCAAGTGATCGAGCGTGTAACCGGTCAGAAGGTCGCGGAAGTTCGCCTGCCGGACGCCCAGGCCGTTCTCGATGCCCGCATCAAGAAACTGACCAACAGCCTGTCGCCGCTGGTGGCTGACGCCGAATCGACCCACGGTGATCTGCTCGATCGCCTGACCGCCGACATCGGTTGCACCCCGCGTGCCCTGGCCGCTGCCCTGCTGCGCAAGGCTACCAACGGTCAGGCGCTGACCCTGGCGGCGATCGAGAAGGAACGTCCACTGGTGCCGAACAGCGCGCCGCGTGGCGATCGTCCCGAGCGTACCGGTGATCGTCCGGACCGTGGTGATCGCGAGCGTCGCGCGCCGATCCCGCTGGGTGAAGGCCGTGCCCGCTGCCGTACCGCGCTGGGCGCTCGTGACGGCATTGCCGCCAAGAACCTGCTGGGCGCGATCCTCAACGAAGGCGGCCTGGCCCGCGAAGCGATCGGTCGCATCCAGGTGCGTGACAGCTTCAGCCTGGTGGAACTGCCGGAAGAAGGCCTGGAGAAGTTGCTGACCAAGCTCAAGGACACTCGCGTAGCTGGCAAGCAGCTCAAGCTGCGTCGCTACCGCGAGGATTGAMTQETGGFAAFNLNPNILAAVIATGYEEPSAIQQQSIPIIMAGHDMIGQAQTGTGKTAAFALPILHRIDPAKREPQALILAPTRELALQVATAFETYSKQMPGVTVVAVYGGAPMGPQLKAIRNGAQIVVATPGRLCDHLRRDEKVLATVNHLVLDEADEMLKLGFMDDLEVIFKALPATRQTVLFSATLPQSIRAIAERHLRDPQHVKIQTKTQTVTAIEQAHLLVHADQKTSAVLSLLEVEDFDALIMFVRTKQATLDLASALEAKGYKAAALNGDIAQNQRERVIDSLKDGRLDIVVATDVAARGLDVPRITHVFNVDMPYDPESYVHRIGRTGRAGREGRALLLVTPRERRMLQVIERVTGQKVAEVRLPDAQAVLDARIKKLTNSLSPLVADAESTHGDLLDRLTADIGCTPRALAAALLRKATNGQALTLAAIEKERPLVPNSAPRGDRPERTGDRPDRGDRERRAPIPLGEGRARCRTALGARDGIAAKNLLGAILNEGGLAREAIGRIQVRDSFSLVELPEEGLEKLLTKLKDTRVAGKQLKLRRYREDNANANANANA
D1-35_00711768ygiDCOG33844,5-DOPA dioxygenase extradiolATGCTGCCCAGCCTGTTTATCTCCCATGGTTCACCGATGCTTGCTCTGGAACCCGGCGAGAGCGGCCCGGCCTTGGCTCGCCTGGCCGCGCAAATGCCGAAGCCCAAGGCCATCGTGATTGTGTCCGCCCATTGGGAGAGCAATGAACTGCTGGTCAGCGCCAACCCGCGACCGCGTACATGGCATGACTTCGGTGGCTTCCCGAAAGCGTTGTACGAAGTGCAATATCCGGCGCCAGGCGATCCCCTGCTGGCAACGCAGGTCGCCGAACTGCTCAATGCAGCGCAATTGCCGGTACGCCTGGAGACAGGGCGGCCATCGGACCATGGCGTCTGGGTGCCGCTGTCGTTGATGTACCCCGAGGCCGATATTCCCGTGGTACAGGTTTCCCTGCCCAGCCAGCGCGGCCCGACACTGCAGACGCAGGTCGGCCGGGCCCTGGCAGGACTGCGCGAACAGGACATCCTGCTGATCGGTTCCGGCAGCATCACGCATAACCTGGGGGATCTGGACTGGAACGCCGGCCCTGACAGCATCGAGCCCTGGGCCAAGGCATTCCGCGATTGGATAGTGGCGCAACTGGCGGCCAACGACGAGTTCGCGTTGCATGATTACCGCCGCCAGGCCCCCAGTGCGGTGCGTAGCCATCCCAGCGACGAGCACCTGCTGCCGCTGTATTTTGCCCGGGGTGCGGGTGGGAAATTCAGCATTGCCCATGAAGGGTTCACGATGGGAACGTTGGGGATGGACATTTATCGGTTTGATTGAMLPSLFISHGSPMLALEPGESGPALARLAAQMPKPKAIVIVSAHWESNELLVSANPRPRTWHDFGGFPKALYEVQYPAPGDPLLATQVAELLNAAQLPVRLETGRPSDHGVWVPLSLMYPEADIPVVQVSLPSQRGPTLQTQVGRALAGLREQDILLIGSGSITHNLGDLDWNAGPDSIEPWAKAFRDWIVAQLAANDEFALHDYRRQAPSAVRSHPSDEHLLPLYFARGAGGKFSIAHEGFTMGTLGMDIYRFDNANANANANA
D1-35_00712705tpmThiopurine S-methyltransferaseATGGACCCCGAGTTTTGGCACAAGCGTTGGTCAACCAACCAGATCGGTTTTCATCTGCCGGAAGTGAACCCTTACTTGCAGCGTTTCTGGCCACAGTTGGGATTGCCTGAAGAAACTCGAGTATTGGTGCCCTTGTGCGGCAAGACGCTGGATCTGCTGTGGTTGGCGCAACAAGGTTTTTCCGTGCTGGGGGTGGAGCTATCGGAAAAGGCCGTCACTGATTTTTTCCAGGAGCATCAGCTTGAGCCAAACGTGAGTGAGGAGGGCGCCTTCAAGGTATTTCGTTCTGGTGCCATCGAGATCCGCTGCGGTGATGTCTTTGCGTTGACGCCTTTGGACGTCGCGGATTGCGCGACGTTGTATGACCGTGCGGCACTGATCGCCCTGCCTGCACCGATGCGCGAGCGTTATGCGGCCCATCTGCAGAACATAATGCCGGACTGCGTCGGCCTGCTGATTACCCTGGACTACAACCAGGACGAGATGCCTGGGCCGCCGTTTTCGGTAGGACATGAAGAGGTGCAGCGGTTGCTGGGCGGGGCTTGGCAATTGCAAGTCCTGCAGGAGCAGGATGTGCTGGGCGAGAGTTGGAAGTTCTTGCAGGCGGGCGTGAAGCGGCTGGATGAGCGGGTATATCTGGTGTCCAGTCGTGGGGTGCGCTCAATGACCCCGTCCCGGACGGGCCCGCTGCCGCTTTTGACTTAGMDPEFWHKRWSTNQIGFHLPEVNPYLQRFWPQLGLPEETRVLVPLCGKTLDLLWLAQQGFSVLGVELSEKAVTDFFQEHQLEPNVSEEGAFKVFRSGAIEIRCGDVFALTPLDVADCATLYDRAALIALPAPMRERYAAHLQNIMPDCVGLLITLDYNQDEMPGPPFSVGHEEVQRLLGGAWQLQVLQEQDVLGESWKFLQAGVKRLDERVYLVSSRGVRSMTPSRTGPLPLLTNANANANANA
D1-35_00713888htpXCOG0501Protease HtpXATGATGCGCATCCTGCTGTTCTTGGCCACTAACCTGGCGGTCGTGCTGATTGCCAGCATCACCCTGAGCCTTTTCGGCTTCAACGGGTTCATGGCGGCCAACGGGGTTGATCTCAACCTCAATCAGCTGCTGATCTTCTGTGCGGTGTTCGGTTTTGCCGGTTCCCTCTTCTCGCTGTTCATCTCCAAGTGGATGGCGAAGATGAGCACCGGCACCCAGATCATCAGCCAGCCGCGCACTCGTCACGAACAATGGCTGCTGCAGACCGTCGAGCAGTTGTCCCGTGAAGCCGGGATCAAGATGCCGGAAGTCGGGATCTTCCCGGCGTACGAAGCCAACGCCTTCGCCACCGGCTGGAACAAGAACGACGCCTTGGTCGCCGTCAGCCAGGGCCTGCTGGAACGGTTTTCGCCAGATGAAGTGAAAGCTGTGCTGGCCCACGAGATCGGCCACGTCGCCAACGGCGACATGGTGACTCTGGCGTTGATCCAGGGTGTGGTGAACACCTTCGTCATGTTCTTCGCCCGCATCATCGGCAACTTTGTCGACAAGGTGATTTTCAAGAACGAAGAAGGCCAGGGTATCGCCTACTACGTGGCGACCATCTTCGCCGAGCTGGTCCTGGGCATCCTCGCCAGCGCCATCGTCATGTGGTTCTCGCGCAAACGCGAGTTCCGCGCCGATGACGCCGGTGCGCGCCTGGCCGGCACCAGCGCCATGATTGGCGCCCTGCAGCGCCTGCGCGCCGAACAAGGCCTGCCGGTGCACATGCCCGATACCTTGAATGCCTTCGGCATCAACGGCGGCATCAAGCAGGGCCTGGCTCGCATGTTCATGAGCCACCCACCGCTGGAAGAGCGAATCGACGCACTGCGTCGTCGCGGCTAAMMRILLFLATNLAVVLIASITLSLFGFNGFMAANGVDLNLNQLLIFCAVFGFAGSLFSLFISKWMAKMSTGTQIISQPRTRHEQWLLQTVEQLSREAGIKMPEVGIFPAYEANAFATGWNKNDALVAVSQGLLERFSPDEVKAVLAHEIGHVANGDMVTLALIQGVVNTFVMFFARIIGNFVDKVIFKNEEGQGIAYYVATIFAELVLGILASAIVMWFSRKREFRADDAGARLAGTSAMIGALQRLRAEQGLPVHMPDTLNAFGINGGIKQGLARMFMSHPPLEERIDALRRRGPGPT0014605_1969DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014605-htpX|ykrL-K03799NANA
D1-35_007141212alaACOG0436Glutamate-pyruvate aminotransferase AlaAATGCAGGTCAGCAAATCGAACAAGCTCGCCAACGTCTGCTACGACATTCGCGGCCCGGTGCTCAAGCACGCCAAACGCCTGGAAGAGGAAGGCCATCGCATCCTCAAGCTGAACATCGGCAACCCGGCGCCCTTTGGTTTCGAAGCCCCCGATGAAATTCTCCAGGACGTCATCCGCAACCTGCCGACCGCGCAAGGCTACAGCGACTCCAAGGGCCTGTTCAGTGCGCGCAAGGCCGTGATGCAGTATTACCAGCAGAAGCAGGTCGAAGGCATCGGCATCGAGGACATCTACCTGGGCAACGGCGTGTCCGAGCTGATCGTGATGTCGATGCAGGCCTTGCTCAACAACGGCGACGAAGTGCTGGTGCCGGCGCCGGATTATCCGCTGTGGACCGCCGCCGTCAGCCTGTCCGGCGGCAACCCGGTGCATTACCTGTGCGACGAGCAGGCCAACTGGTTCCCTGACCTGGCGGACATCAAGGCCAAGATCACCCCGAATACCAAGGCCCTGGTGATCATCAACCCGAACAACCCGACCGGCGCGGTGTATTCCCGCGAGGTGCTGCTGGGCATGCTCGAACTGGCCCGCCAGCACAACCTGGTGGTGTTCTCCGACGAGATCTACGACAAGATCCTCTACGATGACGCCGTGCACGTCTGCACCGCCTCGCTGGCACCGGACCTGCTGTGCCTGACCTTCAACGGCCTCTCCAAGTCCTATCGTGTCGCCGGCTTCCGCTCCGGCTGGATCGCCATCTCCGGCCCCAAGCACCACGCTCAGAGCTACATCGAAGGCATCGACATGCTGGCCAACATGCGCCTGTGCGCCAACGTGCCGAGCCAGCATGCGATCCAGACAGCGTTGGGTGGCTACCAGAGCATCAACGACCTGGTCCTGCCCCAGGGCCGTTTGCTGGAACAGCGCAATCGCACCTGGGAACTGCTCAATGACATCCCCGGCGTCAGCTGCGTCAAACCGATGGGTGCGCTGTATGCCTTCCCGCGAATCGACCCGAAGGTCTGCCCGATACACAACGACGAGAAATTCGTCCTCGACCTGCTGCTGTCGGAGAAATTGCTGGTCGTCCAGGGAACGGCGTTCAACTGGCCATGGCCGGACCATTTCCGCGTCGTGACCCTGCCGCGGGTTGACGACCTCGATCAGGCCATTGGCCGCATCGGCAATTTCCTCAAATCCTACCGTCAATGAMQVSKSNKLANVCYDIRGPVLKHAKRLEEEGHRILKLNIGNPAPFGFEAPDEILQDVIRNLPTAQGYSDSKGLFSARKAVMQYYQQKQVEGIGIEDIYLGNGVSELIVMSMQALLNNGDEVLVPAPDYPLWTAAVSLSGGNPVHYLCDEQANWFPDLADIKAKITPNTKALVIINPNNPTGAVYSREVLLGMLELARQHNLVVFSDEIYDKILYDDAVHVCTASLAPDLLCLTFNGLSKSYRVAGFRSGWIAISGPKHHAQSYIEGIDMLANMRLCANVPSQHAIQTALGGYQSINDLVLPQGRLLEQRNRTWELLNDIPGVSCVKPMGALYAFPRIDPKVCPIHNDEKFVLDLLLSEKLLVVQGTAFNWPWPDHFRVVTLPRVDDLDQAIGRIGNFLKSYRQPGPT0001880_1708DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ALANINE_DEGRADATION,PGPT0001880-alaA-K14260NANA
D1-35_00715396msrBCOG0229Peptide methionine sulfoxide reductase MsrBATGGAAAAGTTGCAGAAAACCCTTGAAGAATGGCGTGAGATGCTCGACCCGGAGCAGTACAACGTCTGTCGCCTCAAAGGCACCGAACGCCCATTTTCCGGCAAGTACAACGCGACCAAGACCGACGGCATCTACCACTGCATCTGCTGCAACGAGCCGTTGTTCGATTCGACGACCAAATTCGATTCCGGCTGCGGCTGGCCGAGTTTCTACGCCCCGATCGAGGGGAGCGCGGTGGTGGAGGTGCGAGATGTCAGCCACGGCATGATTCGCACCGAGGTGGTCTGCGCCAGATGCGACGCGCATCTGGGCCATGTCTTCCCTGACGGCCCACCGCCCACTGGCTTGCGTTACTGCATCAACTCGGTGTGCCTGGATCTCGTGCCTCGCGAGTAAMEKLQKTLEEWREMLDPEQYNVCRLKGTERPFSGKYNATKTDGIYHCICCNEPLFDSTTKFDSGCGWPSFYAPIEGSAVVEVRDVSHGMIRTEVVCARCDAHLGHVFPDGPPPTGLRYCINSVCLDLVPREPGPT0013070_5013DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-SULFOXIDE_REDUCTASES,PGPT0013070-msrB-K07305NANA
D1-35_00716486gpx1Hydroperoxy fatty acid reductase gpx1ATGTCCGACAATCTGCTGAGCATTCCCTGCACCACCATCAAGGGCGAGCAGAAGACGCTCGCCGATTTTGCCGGCAAGGCCGTGCTGGTGGTCAACACCGCCAGCCAATGCGGCTTCACCCCGCAGTACAAAGGTCTTGAGGCTTTGTGGCAATCCTACAAGGACCAGGGCCTGGTGGTGCTGGGCTTTCCTTGCAACCAGTTCGGCAAGCAGGAACCAGGCAACGAAGGGGCGATCTCCGAGTTTTGCGAGCTCAACTTCGGCGTGAGTTTTCCGTTGTTCAAGAAGATCGATGTCAACGGGGCAAACGCCCATCCGCTATTTGTCCAGCTCAAGCAGCGGGCGCCCGGTGTGCTGGGGTCCAAGGGCATCAAGTGGAATTTCACCAAGTTCCTGATTGGCAAGGACGGCCAGGTGGTCAAGCGCTTCGCCCCGACCACCAAGCCCGAGGATCTCACCGGCGAGATCGAAGCCCTGCTGAAATGAMSDNLLSIPCTTIKGEQKTLADFAGKAVLVVNTASQCGFTPQYKGLEALWQSYKDQGLVVLGFPCNQFGKQEPGNEGAISEFCELNFGVSFPLFKKIDVNGANAHPLFVQLKQRAPGVLGSKGIKWNFTKFLIGKDGQVVKRFAPTTKPEDLTGEIEALLKPGPT0013115_4245DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013115-bsaA|gpx|btuE-K00432NANA
D1-35_00717462ohrR_2Organic hydroperoxide resistance transcriptional regulatorATGAGCGACCTGTCAGTCGATTCGCTGAAGCTCGACAGCCAGTTGTGCTTCAAGCTGTACGCCGCATCACGGGCGGTGATTCGTGGCTACAAGCCGATGCTCGATCAGCTTGGCCTGACCTATCCGCAGTACCTGGCGATGCTGGTGCTGTGGGAATGGCAGGACAACTCCCCGGAGCAGCCCACGGTCAAGGCGCTTGGAGAGCGTCTGCTGCTGGATTCCGGCACGCTGACACCGTTGCTCAAGCGCCTGGAGCAACTGAGTCTGATCCGCCGCCAACGCTCGGTCCAGGATGAGCGAGAGGTACATTTGAGCCTGTCGGATGCGGGCCGCGCCTTGCGCGAGCAGGTCGGCCCGCTCAAGGCGCGCCTGCTGTGCGACAGCGGGATCGATCTGGATCGCGTGGGCGAGTTGCGCGATGGCCTGGATCACCTGCTCAAGCAGATCAAAGGGCTGACGTAGMSDLSVDSLKLDSQLCFKLYAASRAVIRGYKPMLDQLGLTYPQYLAMLVLWEWQDNSPEQPTVKALGERLLLDSGTLTPLLKRLEQLSLIRRQRSVQDEREVHLSLSDAGRALREQVGPLKARLLCDSGIDLDRVGELRDGLDHLLKQIKGLTPGPT0013155_2356DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013155-ohrR-K23775NANA
D1-35_007182322rcsC_4Sensor histidine kinase RcsCATGGACATCAGATTCACCCAACGGCTGTCGTACAAACAGGCTCGACTGACCGTCATGGTGGGTTTCGTGCTGGGCACCTTCCTAAGCCTGGTACAGATCGGCATCGATTATGCCAGCGAAGACGCGTCGATCAACCGTGAAATCCTCTCGTTGCTGGAAATCAGCCACAACCCGGCCTCGCGCATCGCCTATAACATCGATGCCGAGCTTGCCCAGGAACTGGCCCTGGGCCTGTTGCGCTCGCCGGCCATCGTCGGCGCCGAACTGATCGATAACAACAATACGGTGCTGGCCAGCGTCAAGCGACCCGAGCTGCAAAGCAGTTACCGATTTATCAGCGACTCGCTTTTTGGCGCCCAACGACAGTTCGAAGACCGGCTCTACCTGAATCATTCGCCGGGCGAGTCCCTCGGCGTGCTGCGACTGGATGTAGACACCTATGCGTTCGGCAGCCGTTTCCTGCGCCGGGCCGAGGTGACACTGCTCAACGGTTTCGCCCGCAGCCTGATCCTGACCGGCCTGCTGCTGGCGCTGTTCTATGTCATGCTGACCAAACCCTTGGTGCGGGTCATCCGCGAACTCAGCAGCCGCGACCCGGGCAGCAGCGAACAGCGCCCGCTGGAATGTCCTTCCGGCCACCAACACGACGAAATCGGCGTGCTGGTCTCGGTCGCCAACCAGCAGTTCGAGAATGTCTCCACTGAAATCCAGCAACGGCGCGCGGCTGAAAATCGTCTGACCGATTACCTGGCGCAACTGGAGAATATCGTTTCGGCGCGCACGGCCGAGCTAAAGGCCATCAATGCCCGGCTCAGCCAGTCCAACGAGGAGCTGGATATTGCCCGGCGCACCGCCCTCGACATGGCTGACGCGCGCTCCGCGTTCCTGGCCAACATGAGCCATGAGATCCGCACCCCCCTCAATGGCTTGCTCGGGATGATCGCCCTGTCCCTGGATGGCCCGTTGACGGCCGAGCAACAACAACAGCTGTCGATAGCGCATGACTCCGGCAAGGTATTGGTCGAGCTGCTCAACGACATTCTCGATCTGTCCAAATTCGACGCCGGCCAACTGGAACTCGAACGTATCCCGTTCGACCTTGGCGCGCTGGTCGAAGACACCGCCAACCTGCTGTCGCAGAACGCGGCGCCAAGCGTCGAACTGGCGTGTCTGATCGATCCGCAGTTCCCAGCCCAGGTACTGGGCGACCCGACCCGCGTTCGCCAGATCGTCAGCAACCTGCTTTCCAACGCGTTGAAGTTCACCCGTTTCGGTCGGGTCGATGTGCGATTGAATCACTATGAAGGCGGCGTGCGGGTCGAGGTCTGGGACACCGGCATCGGCATTCCCCAGGAGGACCAGGCGCGGATTCTCCAGCCGTTCACCCAGGCCGGCGCGGGCATTACCCGCCAGTTCGGCGGCACCGGGCTGGGCCTGGCACTGACCTACAACCTCTGCGAGGCGATGCAGGGCCGGTTGACGATCAGTTCCGAGGCGGGCTTCGGCAGCCAGTTCTGCGCCGACCTGCCGCTGCCCGCCCACAGCCCGGCCGCGCCCGTCGAGACCTTGCGGGGCAACGTGGTCGCCATCACCACCGCCAACAGCGGGCTGGCCGAATTGCTGGGCATGTTGCTGCCGGTCTGGGGACTGGATTACATACAGCGCACCGTGGACGACGGGCTGCTGGGGCTCAAGCCGGACATCCTGATCACCGATTGCCCGGAATGCCTGTTCAATTTACGCCCGACCTTCGACGCCCCGATCCTGCTCGTCACCGCCTATGGCAGTTTCATGCCCAGCGAAGAAGCCGCCACCCTCGCGCCTTTGCTGCAGCAGGCCCGACCGCTGGCGCGCCACGCGCTTTACCAGATCCTGCGCCGGGCCCTGCAAAGCGAGGCGACGACCATCAACGACGCGCAGATCGAAGCACTGGCGCCCTCGCGGCGTGGCCGGGTGCTGCTGGTGGAGGACAACCCGGTCAACCAACTGGTGGCCAAGGGCATGCTGGTCAAGCTGGGGTGTGAGGTAGTGGTCGCGGCCCATGGCGCCGAAGCCCTGGACCAGCTCGAACAGCAAGCGTTCGACCTGGTCCTGATGGACTGCAACATGCCGGTCATGGATGGTTACGAAGCCAGCCGGCAGATTCGCCGCAGCGGCCGCTGGCCGGACCTGCCGATCGTCGCGCTGACGGCCAACGCGATGCCCGAGGAACGCGAACGCTGCCGGGCCGCCGGCATGAGCGATTACCTGTCCAAGCCGTTCCGTCGCGAGGAACTGGCGGCATTGCTGGACCAGTGGGTGCCGACTACGTCAGCCCTTTGAMDIRFTQRLSYKQARLTVMVGFVLGTFLSLVQIGIDYASEDASINREILSLLEISHNPASRIAYNIDAELAQELALGLLRSPAIVGAELIDNNNTVLASVKRPELQSSYRFISDSLFGAQRQFEDRLYLNHSPGESLGVLRLDVDTYAFGSRFLRRAEVTLLNGFARSLILTGLLLALFYVMLTKPLVRVIRELSSRDPGSSEQRPLECPSGHQHDEIGVLVSVANQQFENVSTEIQQRRAAENRLTDYLAQLENIVSARTAELKAINARLSQSNEELDIARRTALDMADARSAFLANMSHEIRTPLNGLLGMIALSLDGPLTAEQQQQLSIAHDSGKVLVELLNDILDLSKFDAGQLELERIPFDLGALVEDTANLLSQNAAPSVELACLIDPQFPAQVLGDPTRVRQIVSNLLSNALKFTRFGRVDVRLNHYEGGVRVEVWDTGIGIPQEDQARILQPFTQAGAGITRQFGGTGLGLALTYNLCEAMQGRLTISSEAGFGSQFCADLPLPAHSPAAPVETLRGNVVAITTANSGLAELLGMLLPVWGLDYIQRTVDDGLLGLKPDILITDCPECLFNLRPTFDAPILLVTAYGSFMPSEEAATLAPLLQQARPLARHALYQILRRALQSEATTINDAQIEALAPSRRGRVLLVEDNPVNQLVAKGMLVKLGCEVVVAAHGAEALDQLEQQAFDLVLMDCNMPVMDGYEASRQIRRSGRWPDLPIVALTANAMPEERERCRAAGMSDYLSKPFRREELAALLDQWVPTTSALPGPT0025845_100DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QUORUM_SENSING_REGULATORSCE-QSR-QUORUM_SENSING_REGULATED_FLS,PGPT0025845-sagS-K20973NANA
D1-35_00719891hypothetical proteinGTGGACGCCCGATTGAATGCTTTTCTTGAGCGCGCCGATGCGGTGCTTGCCCGTATCGAGCCCTTGTTGCCCGCTCCGCGGCCCGACATCGACTGGAGCCAGACCCTGGCCGCCCGCTGGCAACGCGACGGGCGCAGCGGCTTCCTGATGCCGTTGACGGTCAGCCTCGACATGCGCCTGTCGGACCTGATCGGTGTCGACCGTCAGGTTGAACAACTGGGCCGCAACACCCGTCAGTTCATCGATGGCATGCCGGCCAACCACGCTTTGCTCTGGGGCTCGCGCGGCACCGGCAAGTCGTCGCTGGTACGGGCCTTGCTGGCTGAGCATGCCGGGCAGGGCCTGCGCTTGATCGAGATCGAGCGTGACCACCTGGCCGATCTGCCCCGGGTAGTCGAGCAGGTGGCAAAACTGCCCCAGCGTTTTGTGCTGTTCTGCGATGACCTGTCGTTCGAGTCCGGCGAAGGCGACTACCGCGTGCTCAAGAGTGTGCTCGACGGTTCCCTGGAACAGGCGCCGGACAATGTGCTGCTGTACGCCACCTCGAACCGCCGTCACCTGGTACCGGAAAAGGAAAGCGACAACGAGAACTGGAAACGGGTCGACGGCGAGCTGCACCCCAGCGAGGCGGTGGAAGACAAGATCGCCTTGTCCGACCGCTTCGGGTTATGGCTATCGTTCTATCCATTTACCCAGGAGCATTTCCTCGATGTGGTAGAGCATTGGATCGGCGAGCTGGCGGCCAAGGCCGGGCTCGACTGGCAGCGTGACGAAGCACTGGATGTGCAGGCGGTGCGCTGGGCAACCGGACGTGGCAACCGCAACGGACGTTGCGCCTATCAATTTGCCCGTTATTGGGTGGGCCTCAAACTCCTGGAGCACAAAGCATGAMDARLNAFLERADAVLARIEPLLPAPRPDIDWSQTLAARWQRDGRSGFLMPLTVSLDMRLSDLIGVDRQVEQLGRNTRQFIDGMPANHALLWGSRGTGKSSLVRALLAEHAGQGLRLIEIERDHLADLPRVVEQVAKLPQRFVLFCDDLSFESGEGDYRVLKSVLDGSLEQAPDNVLLYATSNRRHLVPEKESDNENWKRVDGELHPSEAVEDKIALSDRFGLWLSFYPFTQEHFLDVVEHWIGELAAKAGLDWQRDEALDVQAVRWATGRGNRNGRCAYQFARYWVGLKLLEHKANANANANANA
D1-35_00720483msrCCOG1956Free methionine-R-sulfoxide reductaseATGATCGATTTGACCCACACCGGTGACGGCCTCGAAGGCTACGGCCTGTTGTCGGCACAGCTGCAATCGTTGCTGGCGGATGAACGCGACTTCATCGCCAATGCCGCGCAATTCTCGGCTTTCCTGTTCAGTCAGTTGGAGGGTCTGAACTGGGCCGGTTTCTACCTCAACCGCAGCGAGGAATTGGTGCTGGGGCCGTTCCAGGGCCAGATTGCCTGTGTGCGCATTCCCTTCGGTCGTGGTGTCTGCGGCACGGCGGCGGCGACTCGCCAAACCCAGCGTGTCGAAGATGTCCACGCGTTTCCCGGGCACATTGCCTGCGACAGCGCCTCGAACAGCGAACTGGTGGTGCCGCTGGTCAAAGAGGGACGACTGATCGGCGTGCTGGACCTGGACAGTCCGAAACCGGCGCGCTTCACCGAGCACGACCAGGCCGGCATCGAGCAACTGGCGGCAATCTTCCTGCGGCTGACCGATTGCTGAMIDLTHTGDGLEGYGLLSAQLQSLLADERDFIANAAQFSAFLFSQLEGLNWAGFYLNRSEELVLGPFQGQIACVRIPFGRGVCGTAAATRQTQRVEDVHAFPGHIACDSASNSELVVPLVKEGRLIGVLDLDSPKPARFTEHDQAGIEQLAAIFLRLTDCNANANANANA
D1-35_007212949hypothetical proteinATGCCCAGCGCACCGCGTCCGGAAAAACGCCGGTTTCCCCTGCACGTCCATATCAGCGTGATGTTTACCCTGCTCCTGCTGCTGACCGGCGTCGTGCTGGGCGTCTTCAACTACCGGCAAACCACCCAGATCATCCTGTCCAGCAGCGAAAAGCTGTTCAATCGAATTGAACAGGACGTACGCCTGGACCTGTACGACACCTACGAACCGATCCGTCATCTGCTGGGCCTGCTGGCCGATTACCCGGCGACGCGTGCGCCTGGGATGGCGCAACGGCTGGACCTGCTCGTGCCCTTCAGCCAGGCGCTGCGAGACAACCCGAACCTGGCGTCGCTGTACCTGGGTGACAGCAAGGGCGAGTTTTTCATGGTCCGGCCGTTGCGCACCGATGCCTTGAGGGCTGCGATGAAGGCACCGGTCGGCGCGCTGTATCAGGTCTGGACCGTTGAGCGCGCCGGCAACGAAGGCCTGGTTCGCTCGCAATCGTTGTTCTATGACCGGGACCTTAACCTTCTCAGCCGCCTGCAACATCCTGACGAAACCTACGATCCGCGGAGCCGGGGCTGGTTCCGTAGCGCCTTGAACAGCCATGAACAGATCACCACCGAACCCTACGTGTTCTTTTCCACCCGAAACATCGGCACCACCCTTGCGCGGCGCAGCGGCGAGCAGGCCGTCATCGGCGCTGACCTGACCCTCGCCGCCCTGTCCCAGACATTGGCCAAGCACAAGGTGAGCGCCGGCACCGAAATTGTCCTGATCGATCCCCAAGGCAACGCGGTGGGCTATCCGGACAGCCCCCGGTTGATCGCCGACATTCAGTCGTCCCGCCTGATCAAGGCGCGTGACCTTGCCCCGGCCATCGCCGCTGCGCTCGATGACCACACTGACACGCCACGCCTGGAAGCGGCCGGACGCCATTGGATCGTTTCCCGCAGCCACATGCAGGAGGGCGGGCCGCAGGGTTTGGAGTTGGCCTTGCTGGTGCCGGAGGACGAACTGCTCGCCGATGCCTATCGCCTGCGCTGGCAAGGCGCGCTGATTACCCTCGCCACGTTGCTGATGTGCCTGCCCCTCGGCTGGCTGACCTCGCGAATCCTGGTCAAGCCCTTGCGCGCACTGGTCAAGGAAGCCGACGCCATTCGCAGCTTCGACTTCAACTATCCGGTGTCCCGCCGTTCTCCGGTGCTGGAGGTCGATCAACTGGGTGTTTCGATGGCACGCATGAAAGAAACCCTGGCGAGTTTTTTCGAGATCACGGCCAGCCTGCGCGCTGAAACCCGCTTTGCCCCGCTATTGGAGCGGGTGTTGTTCGAGACGGTGAAAATCGGCCAGGCCCAGGCCGGCCTGATCTATCTGCGCGAACACGACGAGGAGCAAGTCAAGCCCTACGGGCTGGTGATCGATGGGACGCCTCGGGACCTGCAAGCCTTCGCCCTGCGAGGCTACGCACTGAATGGCGCGGACAGCCCGCCGTGGTTACAGGAACTGGCCACCGCGGAGACCCTGGTGTCCTCGCTGGGCTTCGAGCAGGCTGCCGATTTGCGCAGCGTCCTGCTGGAACTGGATGCCCCGCGCGTGCACCTGATCGGCATCCGCTTGCGCAACCGCCATCAGGAAACCGTTGGCATCTTGTTGCTGTTGATCACAGACAGCGGCGCTGAAGCCGACCTGGAGAAACTCCAGCCGGACCGCATCGCCTTTCTCCAGGCCGTTTCCGGCACCGCGACGGTGAGCATCGAAAGCCAGCGCCTGCAAGCCAGGCAAAAGCAGCTGCTGGACTCATTCATCCAACTGCTCGCCGGGGCGATCGATGCCAAGAGCCCTTACACCGGCGGCCATTGCCAGCGAGTGCCAGCCCTGACGCTGATGCTCGCCCAGGCCGCGGCCGCCAGCCAGGCACCGGCGTTCGACGCCTACCGGCCAACGGACGATGAATGGGAAGCGCTGCACATCGCTGCCTGGCTGCATGACTGCGGCAAGGTCACCACACCCGAGTACGTAGTGGACAAGGCCACCAAGCTGGAAACCCTGAACGACCGGATCCATGAAATCCGTACCCGCTTCGAGGTACTCAAGCGCGACGCCTGGATCAATTACTGGCAGGCCCTGGCAACCGGTGGCGAGTCGTCAGCCCTGGCCCGCCAGCGCGACGCGACGCTGGCCGCCCTCGATGATGACTTTGCCTTTGTCGCACGCTGCAACCTGGGCTCCGAAGCCATGGCCGAGCGTGATCTGCAGCGTCTGCAACGCATCGCCCAGCGCACGTGGACGCGCACCCTGGATGATCGTCTGGGAGTTTCCTGGGAGGAAAGCCGACGCCAGGCGCGCACACCTTCGCCGACGCTTCCGGTGACTGAATCGCTGCTGGCGGACAAACCCGAGCATTTGATCGAGCGGCATGCAGCCGAGCTGATTCCGGCAGACAACCCATGGGGCTTCCAGCTCGATGTACCGCGCTGGAAATACAACCGCGGCGAACTCTACAACCTCAGCATCACGCGCGGCACACTGACCCGCGAAGAACGTTATGTGATCAACCACCACATGGTGCAGACGATCCTGATGCTCAGCCAGCTGCCCTTCCCCAGCCACCTGGAAAACGTTGCGGAAATCGCTGGCGGCCATCACGAGAAAATGGATGGCACCGGTTATCCGAAGCGACTCAAGCGCGAGCAGATGAGCCTGCCGGCTCGAATGATGGCGATTGCCGATATCTTCGAAGCGCTGACCGCAGCGGATCGCCCGTATAAAAAAGCCAAGAAACTGAGTGAAGCCCTCGGCATCATGGCCACCATGTGCCGCGACGCCCACATCGATCCCGAGCTGTTCCAGCTGTTTGTCGACGAGCGAATCTACTTGCTTTATGCCGATGAGTTCCTGGACCCGAGCCAGATCGATGAGATCGACCCGGGCAGCCTGCTGGTCAATGCCGGGCTGAAGGCGTGAMPSAPRPEKRRFPLHVHISVMFTLLLLLTGVVLGVFNYRQTTQIILSSSEKLFNRIEQDVRLDLYDTYEPIRHLLGLLADYPATRAPGMAQRLDLLVPFSQALRDNPNLASLYLGDSKGEFFMVRPLRTDALRAAMKAPVGALYQVWTVERAGNEGLVRSQSLFYDRDLNLLSRLQHPDETYDPRSRGWFRSALNSHEQITTEPYVFFSTRNIGTTLARRSGEQAVIGADLTLAALSQTLAKHKVSAGTEIVLIDPQGNAVGYPDSPRLIADIQSSRLIKARDLAPAIAAALDDHTDTPRLEAAGRHWIVSRSHMQEGGPQGLELALLVPEDELLADAYRLRWQGALITLATLLMCLPLGWLTSRILVKPLRALVKEADAIRSFDFNYPVSRRSPVLEVDQLGVSMARMKETLASFFEITASLRAETRFAPLLERVLFETVKIGQAQAGLIYLREHDEEQVKPYGLVIDGTPRDLQAFALRGYALNGADSPPWLQELATAETLVSSLGFEQAADLRSVLLELDAPRVHLIGIRLRNRHQETVGILLLLITDSGAEADLEKLQPDRIAFLQAVSGTATVSIESQRLQARQKQLLDSFIQLLAGAIDAKSPYTGGHCQRVPALTLMLAQAAAASQAPAFDAYRPTDDEWEALHIAAWLHDCGKVTTPEYVVDKATKLETLNDRIHEIRTRFEVLKRDAWINYWQALATGGESSALARQRDATLAALDDDFAFVARCNLGSEAMAERDLQRLQRIAQRTWTRTLDDRLGVSWEESRRQARTPSPTLPVTESLLADKPEHLIERHAAELIPADNPWGFQLDVPRWKYNRGELYNLSITRGTLTREERYVINHHMVQTILMLSQLPFPSHLENVAEIAGGHHEKMDGTGYPKRLKREQMSLPARMMAIADIFEALTAADRPYKKAKKLSEALGIMATMCRDAHIDPELFQLFVDERIYLLYADEFLDPSQIDEIDPGSLLVNAGLKANANANANANA
D1-35_007223621bvgS_2Virulence sensor protein BvgSATGTACAGATGTCTACGCGAATTTCTTCTGCTGTCGTGCGCAGGACTCTATGTCGCGACTCTCATGGCCGCCCCGCAGTTGCCCGAGCGTTATACGCTGCTGAGTCGGGCGACGGCGGATCCCATGCAGATCAGACTCGACGCTCCCCATCGCGCCTGGCTGCAAGGTCGTCAGGAGCTGGTCCTGGGTACATCCGCACCGGATTATCCCCCGTTCGATCTTTCCACCAGTGGCCGCGATTATGAAGGCATGACTGCCGATTACGCGGGTGTCGTCGCCCAGGCGACCGGTTTGCCCATGAAGGTATTGCGCTTCAGTTCCCGTGGCGACGCGATTGCCGCGCTGGAAAGCGGGCAAATCGACTTGCTCGGCAGCGCCAACGGTTTCGAGGCCAGCAATCCGGGCATCGCCCTGTCGAAACCCTATGCAGTAGACCAGCCCGTCCTTGTTACCCGGACGGGCGACAGCCCGTCCCTGACCGAAGATCTCGAAGGGCTGCGGCTGAGCATGGCCTATCACTACCTGCCCCTGGATGAAATCAGAAAACTCTATCCCAGGGCGCAGATCACCACCTACACCTCTTACCAGAACGCCATCAATGCCGTCGCCTTCGGCCAGGCCGACGTATTTCTCGGCGACACCGTTTCTACCCACTATCTGATCAACAAGGGTTACCTGAGCAACGTCCGCATGGCCAGCTTCGGAAAACACGAAACCTACGGTTTCAGTTTCGCGGTCCGCCGGGATAATGCCCTGCTGCTGGAAATCCTGAACGCCACGCTGAGCCAGCTCCCGATTGCGGAGCAGACGGCGATCTCAAAACGCTGGAGTGCCGGCAGCGACCTGTACCTCACGGATCAGCGGATACAACTGACTGACCGCGAACAACGTTGGCTGACGAAGCATCCCGTCGTTCGCGTGGCCGTAAACGAAACGTTCGCGCCGTTTACGTTCTTCGATCCGGACGGTGATTTTCGCGGTATCAGCGCCGACCTGCTGGAACTGATCAGGCTGCGTACCGGCCTGCGCCTGGAGATCCAGCGGCGCCAGACTGACGGCGAAATGATCTCCGCGGTGGTGAAAGGCGAGGCCGACATGATTGCCGCGCTCCTGCCCAGCAGCGAACGGCAACAGTCCTTGAAGTTCAGCCGTCCCTACCTCGACAGCGCCTTTGTCCTGCTGACCCGCAAACAATCCGACACGCCCGCGACCCTCGACCAGCTCGCCGGCAAGCGTCTGGCAATCGCCGCGGGCAATCCCATCATCGACTGGCTGCGCAGCGAATATCCGCATATCCAACTGGTCGAGGCCGCCGACTCCCTGCGGGCCGTCGATATGCTCGCCCAGGGAGAGGCCGATGGCAGCGTCAGTTCGCTGGTCATGGCCAATTATTTCCTGTCTTCCCACACGCTGCGCGACACATTGCAGATCAGCAGCACCGTAGGCACCCGACAAGCCCTGTTCTCGTTGGCCAGCGCAACGAACTCACCAGAGTTGAGCTCGATCCTGGACAAGGCCCTGACCAGCATCGAACCCGCCGAACTGGGGGTCATCAACAACCGCTGGCGAGGGCATATCTCGGCGGCGGAGCTTACCTGGCGCACCTATCACCGGGTATTCCTGCAGTTTGTCGCAGGCGCCGGCCTGTTATTGCTGCTGTCCCTGGCGTGGAATGCCTATATGCAGCGGCAGATCAGGCAACGCCAGAAGGCGGAGCTGGCGCTCAACGACCAGCTTGAATTCATGCATGCCCTGCTCAACGGCACCCCACATCCGATCTACGTGAGGGACCGCCATGGGCTTCTGCAAAGCTGTAACGACAGTTACCTGGAATCATTCAACGCAACACGCGAAGAAGTGATCGGCAAGGACGTCGCGGCGGTATCCATGAGCAATGTTTTCGAAGCGCAGGAATATCGGGCGGACTACCAGCGTGTCATGGCCGAAGGCACCGCCTTGATCACCGACCGGCCACTGCAGATTGGCGCTCGGAAGCTGACGATCTATCACTGGATCCTCCCCTACCGTAACGCCGCGGGACACGTGCAAGGCATCATCGGTGGCTGGATCGACATCAGTGAACGGCGCCAGCTTGTCGAGGAACTGCATGCCGCCAAGGAACAGGCCGACGCCGCCAATCGCGCGAAAAGCACCTTCCTGGCGACCATGAGCCATGAAATCCGTACGCCCATGAACGCAGTGATCGGCATGCTGGAACTGGCCCTCAAGCATGCCGACAAGGGACAGGTCGACCGTTCGACCATAGCGGTCGCGTACGAATCGGCCTCAGGCATGCTGGAGCTGATCGGCGATATCCTGGACATTGCCCGCATCGAATCAGGCCACCTGACCCTGGCCCCCGAACGAGTGAATGTCAGCACCTTGCTGCGCTCGGTGGTCAGGGTATTCGAGGGACTGGCCCGGCAAAAAAATCTGCTGTTGTCGCTGCAAGTAGAGCCCGACGACGACAAACACGACGTCCTGATAGACCCGTCGAGATTCAAGCAGGTGATCTCGAACCTGATCAGCAATGCCTTGAAATTTACCGAGCAGGGCGAGGTGAAGGTCCGCGCCAGGCTTTCCCGAACCGCTCACGAAAATACGTTGCGGATGCAGATAGAAGTCAGCGACAGCGGCATTGGCATCAGTCCGGTGGACATGCAGCGCCTGTTCGAACCGTTTGCCCAGGCCGACAACAGCAGCCGGATGGCCCGCAAAGGCGCGGGGCTGGGCCTGGTGATCAGCCGCCAGTTGTGCCAGATGATGGGCGGTGAGTTGTCCCTGGACAGCCAACCGGGCGTCGGTACCCAGGTCCGGCTTACCCTGGAGCCGAGCATCCTGCCCGAGACGACGATCGGCATCCCGGTGGAGCCTGCGGTCGAAACGGCCACGGCCCAATTGAGCGTCCTGGTGGTGGATGATCACCCGGCCAATCGTTTATTGATGACGCAGCAACTGGAATACCTCGGTCATCGCCACTCCCTCGCCAACGATGGCGCGCAAGGGCTCAAGGCTTGGCTTGAGGGTGATTTCGACCTGATCATCGCCGACTGCAACATGCCTGTCATGAGCGGTTACGAGCTTGCCAGGGCCATCCGTCGGTACGAGGCCGAACATCAACAGCCGCGCTGCACCATCCTCGGGTTCACCGCCAATGCGCAACCCGAGGAGAAGCAGCGCTGCAAGGAGGCCGGAATGGACGACTGCCTGTTCAAGCCGATCAATTTGAGCACCCTGAGCCAATGGATGAACACGATCAAGCCCGCGAGCCGCCCAGCCGTGTTCAATGTCCGGAGCCTGCACATGCTCACCGGCGGCGACCCGATCTCCGTCCGGCGGCTGCTGGCGGAACTGCTCAGCAGCAACCGTTCCGACCGCCAGGAACTGCTCCAAGCCGCCCGTACCGGCGCTTCCCAAGCGCTCGCCGAAACGGCGCACAAGATAAAAGGTGTCGCCCGTATCGTGCAGGCAAATGGGCTGATCGAATTGTGCGAGGCTCTGGAAATCGCCTGTCATCAAGAGCAGGCACCCGGACAAATCGACGCCTGCGCGAAAGCGCTCCACCGAGCGATGACCGAACTGGAACAGGCGCTGGAAACGGAGATCGCCAAGGCAGGATAAMYRCLREFLLLSCAGLYVATLMAAPQLPERYTLLSRATADPMQIRLDAPHRAWLQGRQELVLGTSAPDYPPFDLSTSGRDYEGMTADYAGVVAQATGLPMKVLRFSSRGDAIAALESGQIDLLGSANGFEASNPGIALSKPYAVDQPVLVTRTGDSPSLTEDLEGLRLSMAYHYLPLDEIRKLYPRAQITTYTSYQNAINAVAFGQADVFLGDTVSTHYLINKGYLSNVRMASFGKHETYGFSFAVRRDNALLLEILNATLSQLPIAEQTAISKRWSAGSDLYLTDQRIQLTDREQRWLTKHPVVRVAVNETFAPFTFFDPDGDFRGISADLLELIRLRTGLRLEIQRRQTDGEMISAVVKGEADMIAALLPSSERQQSLKFSRPYLDSAFVLLTRKQSDTPATLDQLAGKRLAIAAGNPIIDWLRSEYPHIQLVEAADSLRAVDMLAQGEADGSVSSLVMANYFLSSHTLRDTLQISSTVGTRQALFSLASATNSPELSSILDKALTSIEPAELGVINNRWRGHISAAELTWRTYHRVFLQFVAGAGLLLLLSLAWNAYMQRQIRQRQKAELALNDQLEFMHALLNGTPHPIYVRDRHGLLQSCNDSYLESFNATREEVIGKDVAAVSMSNVFEAQEYRADYQRVMAEGTALITDRPLQIGARKLTIYHWILPYRNAAGHVQGIIGGWIDISERRQLVEELHAAKEQADAANRAKSTFLATMSHEIRTPMNAVIGMLELALKHADKGQVDRSTIAVAYESASGMLELIGDILDIARIESGHLTLAPERVNVSTLLRSVVRVFEGLARQKNLLLSLQVEPDDDKHDVLIDPSRFKQVISNLISNALKFTEQGEVKVRARLSRTAHENTLRMQIEVSDSGIGISPVDMQRLFEPFAQADNSSRMARKGAGLGLVISRQLCQMMGGELSLDSQPGVGTQVRLTLEPSILPETTIGIPVEPAVETATAQLSVLVVDDHPANRLLMTQQLEYLGHRHSLANDGAQGLKAWLEGDFDLIIADCNMPVMSGYELARAIRRYEAEHQQPRCTILGFTANAQPEEKQRCKEAGMDDCLFKPINLSTLSQWMNTIKPASRPAVFNVRSLHMLTGGDPISVRRLLAELLSSNRSDRQELLQAARTGASQALAETAHKIKGVARIVQANGLIELCEALEIACHQEQAPGQIDACAKALHRAMTELEQALETEIAKAGPGPT0014485_207DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE_EVG-EMR_SYSTEM,PGPT0014485-evgS|bvgS-K07679NANA
D1-35_00723627bvgA_1Virulence factors putative positive transcription regulator BvgAATGAACTCCGTTTTCATTGTCGACGATCATCCGGTCATCCGCCTCGCCGTTCGAATGCTGCTGGAGCATGAAGGTTATAAAGTTGTAGGAGAAACCGACAACGGCGTCGACGCGATGCAAATGGTCCGTGAATGTATGCCGGACCTGGTCATACTGGACATCAGCATTCCCAAGCTTGATGGGTTGGAAATTCTTTCACGTTTCAACGCAATGACCGCCCCGATCAAGACGCTGGTGCTGACGGCGCAATCACCGACGCTGTTTGGCATCCGCTGCATGCAATCTGGTGCCTCCGGCTATGTGTGTAAACAGGAAGACCTCAGTGAATTGATCAGCGCAATTAAGGCCGTACTGTCCGGCTATAACTATTTCCCGAGCCAGGCGTTGACGCCCCTGCGTCATGATGATCCGCGCAGTATCGAGCTGGATCTTTTCAAAAGCGTCAACGATCGCGAATTGATGGTGCTGCAACTTTTCGCGCAGGGCCGTACCAACAAAGACATCGCCAAAGGCATGTTTCTCAGCAATAAAACCGTCAGCACGTATAAAAAACGCTTGATGCAGAAACTCAAGGTCAAGTCCCTGGTAGATCTGATCGAGATGGCCAAGCGCAACGCACTGGTTTGAMNSVFIVDDHPVIRLAVRMLLEHEGYKVVGETDNGVDAMQMVRECMPDLVILDISIPKLDGLEILSRFNAMTAPIKTLVLTAQSPTLFGIRCMQSGASGYVCKQEDLSELISAIKAVLSGYNYFPSQALTPLRHDDPRSIELDLFKSVNDRELMVLQLFAQGRTNKDIAKGMFLSNKTVSTYKKRLMQKLKVKSLVDLIEMAKRNALVPGPT0014490_189DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MdtEF-TolC,PGPT0014490-evgA|bvgA-K07690NANA
D1-35_007241329dgtCOG0232Deoxyguanosinetriphosphate triphosphohydrolaseTTGGATTGGCACACCCTGCTGACTCGCGAACGCCTGGGAAAACCCCTGCACAGTCCGGAAGAACTGGGCCGCAGCCCTTTCCATAAAGACCACGACCGCATCATCTTTTCCGGTGCATTCCGTCGCCTCGGACGCAAGACCCAGGTGCATCCGGTCTCCAGCAACGATCATATCCACACGCGCCTGACCCATTCGCTTGAAGTCAGTTGCGTCGGGCGCTCTCTGGGCATGCGCGTGGGAGAAACCATCCGCGGCGCCCTGCCAGACTGGTGTGAACCCAGCGACCTGGGCATGGTGGTGCAATCGGCCTGCCTGGCCCACGACATCGGCAACCCGCCGTTCGGCCACTCCGGTGAAGACGCCATCCGCTACTGGTTTCAACAGGCGGCCGGACGAGGCTGGCTGGATGCCATGAGCGAGGCCGAGCGCAATGACTTTCTCAATTTCGAGGGTAATGCCCAAGGATTCCGGGTCCTCACGCAGCTCGAATACCATCAGTTCGACGGCGGCACCCGGCTGACCTACGCGACGCTTGGCACTTACCTGAAATATCCCTGGACTGCCCGCCACGCCGACTCCTTGGGCTACAAGAAGCACAAGTTCGGCTGCTATCAGAGCGAACTGCCGTTGCTCGAGCAGATTGCCCACAAGCTCGGCCTGCCGCAAATCGAGGACCAGCGCTGGGCAAGGCATCCGCTGGTCTACCTGATGGAGGCCGCCGACGATATCTGCTACGCGCTCATCGACCTGGAAGACGGCGTGGAAATGGAGCTGCTGGAATACCCGCAGGTGGAATCGCTGCTGCTGGATCTGGTCGGCGATGACCTGCCGGAGACTTATCGTCAGCTTGGCCCGCTGGATTCCCGGCGGCGCAAACTGGCGATCCTGCGCGGCAAGGCCATCGAACACCTGACCAACGCCGCCGCCCGGGCGTTCGTCGAGCAGCAGGAGGCACTGCTGGCAGGCACGCTGCAGGGAGACCTGGTGGAACACATGCATGGCCCGGCCAAACGCTGTGTCTTGAACGCCAAGGACATGGCCCGCAAGAAGATATTCCAGGACAAGCGCAAGACCCTGCATGAAATCGGTGCCTACACCACGCTGGAAATTCTGCTCAACGGGTTCTGTGGTGCCGCCCTGGAACAACACGGCGGCCGTACACCCTCGTTCAAGAATCGGCGCATCCTCGATCTGCTGGGTAACAACGCGCCAGACCCTGACGGCCCCTTGCACAGCGCGTTCCTGCGAATGATCGATTTCATCGCCGGCATGACCGACAGCTATGCCAGCGAAATGGCACAGGAAATGACCGGTCGCACTCGTCAATGAMDWHTLLTRERLGKPLHSPEELGRSPFHKDHDRIIFSGAFRRLGRKTQVHPVSSNDHIHTRLTHSLEVSCVGRSLGMRVGETIRGALPDWCEPSDLGMVVQSACLAHDIGNPPFGHSGEDAIRYWFQQAAGRGWLDAMSEAERNDFLNFEGNAQGFRVLTQLEYHQFDGGTRLTYATLGTYLKYPWTARHADSLGYKKHKFGCYQSELPLLEQIAHKLGLPQIEDQRWARHPLVYLMEAADDICYALIDLEDGVEMELLEYPQVESLLLDLVGDDLPETYRQLGPLDSRRRKLAILRGKAIEHLTNAAARAFVEQQEALLAGTLQGDLVEHMHGPAKRCVLNAKDMARKKIFQDKRKTLHEIGAYTTLEILLNGFCGAALEQHGGRTPSFKNRRILDLLGNNAPDPDGPLHSAFLRMIDFIAGMTDSYASEMAQEMTGRTRQPGPT0021495_1525DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021495-dgt-K01129NANA
D1-35_00725345hypothetical proteinATGAGTCGGCCCGATATTCCCCAAGCCCGTACCCGGCAGGAGATGCGCAAGGCGCTGGTGCGCCTGCGCATGGAGATGCACCGCCAGGAAATTCGTCAGGAAACCCGGCAACTGCTGCACCCGCTGCAACGGGTGCGCGGCTTTACGCAAAGCTGGCATGAGGGCTTCGGCCTGAAGCATGCGTCACTCTGGGGCGTGGCCGCCGTGTCCTTGCTCGGCTTCCTCGGCGGCAAGCGGACCCGAAGCGGACGCTCAGGACGCTCAGGTGGCTTCTCGCGACTGATCCGGCTAGCAACCGCGCTGCTGCCGCTGATCAAGCTGGCCAAGACTGTACGCAAACCCTGAMSRPDIPQARTRQEMRKALVRLRMEMHRQEIRQETRQLLHPLQRVRGFTQSWHEGFGLKHASLWGVAAVSLLGFLGGKRTRSGRSGRSGGFSRLIRLATALLPLIKLAKTVRKPNANANANANA
D1-35_00726393hypothetical proteinATGATGGGCATCGACGAATCCGGCTCGCCCGAATCGGGCACGAAGCCTACCGCGCGGCGCCTGGGCGCGGCATTCCTCGGCTTGCTGCACAGTCATGTCGAACTGTTCGGCATCGAATTGCAGGAGCAGAAGGCCCGCACCGTCAGCCTGTTGTTGTTTGCCGGGCTCGCGCTGGTTTTCGGTTTGCTGCTGCTGGTCGGGCTGTCCGCACTGGTGCTGATTCTGGTGTGGGATACCTATCGCCTCGCGGGGATCATCGGCCTCTGCCTGTTTTATCTGCTGGCGGCGTTGTTCTGCGGGCTTCGGCTCAAGGCAGCGATTTTTGATGAGTCCTCGCCTTTCCATGCCACCCTCGAAGAACTCGCCAACGACCGGGAGCGCCTGTTGCCATGAMMGIDESGSPESGTKPTARRLGAAFLGLLHSHVELFGIELQEQKARTVSLLLFAGLALVFGLLLLVGLSALVLILVWDTYRLAGIIGLCLFYLLAALFCGLRLKAAIFDESSPFHATLEELANDRERLLPNANANANANA
D1-35_00727315yqjD_1COG4575putative protein YqjDATGGCCAGAACCCAGGCAAAGACTGCTCAAGAAACCTTGAAGGAAGACTTCCAGACGCTGGTCAAGGACACCGAACGGTTGCTGGACCACACGGCGACCCTGGCTGGTGATCAGGCTGACGAATTGCGCAGCCAGATCCACGAAACCCTTTTGCGCGCCCGTGAAACCCTCCAGCTGACCGAAGACTCGGTACGCGAGCGCGGTCAGGCTGCAGTGATTGCCACCGAAGAATATGTGCAGGCCAATCCTTGGCAATCGGTCGGCATCGCTGCGGGCGTGGGCTTTTTGATCGGACTGCTGGCGACACGGCGCTAAMARTQAKTAQETLKEDFQTLVKDTERLLDHTATLAGDQADELRSQIHETLLRARETLQLTEDSVRERGQAAVIATEEYVQANPWQSVGIAAGVGFLIGLLATRRNANANANANA
D1-35_007281209amtB_1Ammonia channelATGGAAAATCTGCAAAGCGCCGTGGACAATCTGGTCCACAGCTCCAACACGCTGTTCATCCTGCTCGGTGCGGTCATGGTTCTGGCCATGCACGCCGGCTTCGCGTTCCTTGAAGTAGGCACCGTCCGACAAAAGAATCAGGTTAATGCGTTGTCGAAGATTCTCAGCGATTTCGCAGTGTCGACCTTGGCCTATTTCTTCATAGGCTACTGGATTTCCTACGGCGTGACCTTTTTGCAGCCGGCGGCGGTGCTCAGCGCTGACCACGGCTACAGCCTGGTGAAGTTTTTCTTCCTGCTGACCTTTGCCGCCGCGATCCCGGCCATTATTTCCGGAGGGATCGCCGAGCGTGCCCGGTTCGTACCGCAGTTGTGCGCCACGGTGCTGATAGTAGCGTTCATCTACCCGTTTTTCGAAGGCCTGGTCTGGAATGGCAACTACGGCCTGCAAGGCTGGCTGCAAGCCCGTTTCGGCGCCAGTTTCCATGACTTTGCCGGCTCCGTGGTCGTGCATGCCATGGGCGGCTGGCTGGCATTGGCCGCGGTACTGTTGCTCGGGCCGCGCAATGGTCGCTACCGGGACGGGCGCCTGGTGGCGTTCGCGCCTTCGAGCATCCCGTTCCTGGCGTTGGGCTCGTGGATTCTTATTGTCGGCTGGTTCGGTTTCAACGTTATGAGTGCCCAGACGTTGCCTGGAGTCAGTGGGTTGGTGGCGGTCAACTCGTTGATGGCAATGGTCGGCGGGACCGTGGCGGCTTTGATCATCGGGCGCAACGACCCCGGCTTCCTGCATAACGGCCCGTTGGCCGGGTTGGTGGCGGTCTGTGCCGGTTCCGACCTGATGCATCCGGTGGGGGCGCTGGCGACCGGAGCCATCGCGGGCGGGCTGTTTGTCTGGTGTTTCACCGCGGCCCAGGGCAAGTGGAAAATCGACGACGTGCTCGGGGTCTGGCCCCTTCATGGCCTGTGCGGCGTCTGGGGTGGCATTGCCTGCGGCATTTTCGGCCAGCAAGCCTTGGGTGGCCTGGGCGGCGTCAGCCTGGTCAGCCAACTGGTCGGCACTGCGTTGGGCGTCGTCATTGCCCTGGTTGGCGGGTTCGCGGTTTATGGTGCGATCAAGTTCGTGCTGGGCCTGCGGCTGACCCAGGAAGAGGAGTACTACGGCGCCGATCTGTCGATCCACAAGATCGGTGCCGTCAGTCAGGACTGAMENLQSAVDNLVHSSNTLFILLGAVMVLAMHAGFAFLEVGTVRQKNQVNALSKILSDFAVSTLAYFFIGYWISYGVTFLQPAAVLSADHGYSLVKFFFLLTFAAAIPAIISGGIAERARFVPQLCATVLIVAFIYPFFEGLVWNGNYGLQGWLQARFGASFHDFAGSVVVHAMGGWLALAAVLLLGPRNGRYRDGRLVAFAPSSIPFLALGSWILIVGWFGFNVMSAQTLPGVSGLVAVNSLMAMVGGTVAALIIGRNDPGFLHNGPLAGLVAVCAGSDLMHPVGALATGAIAGGLFVWCFTAAQGKWKIDDVLGVWPLHGLCGVWGGIACGIFGQQALGGLGGVSLVSQLVGTALGVVIALVGGFAVYGAIKFVLGLRLTQEEEYYGADLSIHKIGAVSQDPGPT0000840_6968DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-AMMONIUM_ASSIMILATION|USAGEN-AQUISITION-AMMONIUM_TRANSPORT,PGPT0000840-amtB|ybaG|amt-K03320NANA
D1-35_007291713kefC_1COG0475Glutathione-regulated potassium-efflux system protein KefCTTGTTCGCCAACCTGCTGATCATCCTAGCCTCGTCCCTGGTAGTCATCGCCCTGTTCAGGCGATTACGCCTGCCACCGGTGCTCGGCTACCTCTGCGTCGGGCTGGCGGTCGGCCCCACAGCCCTGGACTGGGTAAACGACAGCGAGGAATTGCCGGATCTGGCCGAACTCGGCGTGGTCTTCCTGTTGTTCTCGCTGGGGCTGGAATTCTCGTTGTCGAAGATGCTCGAACTGCGCAGGGTGGTGTTCGGCCTCGGCAGTTTGCAGGTGGTGTGTTCGGGGGTGCTGCTGGGGGGCGTGCTGGTGATCTGCGGTGCCCCGGCGCTGGCGGCACTGCTCCTGGGCGCCGGGCTGGCGCTGTCGTCCACGGCCATAGTCAGCAAGGAGCTGACCAGCCTGGGGGAAATTTTCAGTAGTCACGGCCAGAACGCTATCGGTGTGCTGCTGTTCCAGGATGTCGTTGCGGTATTACTGCTGACCCTGGTGCCGGTCTTTGCCGGCAGCAGCGAGTACGCCTGGTACTGGGCGCTGCCCCTGACCCTGGGCAAGACTCTGTTTCTGTTCGGCGGTCTGCTGCTTGCCAGCCGCTGGCTGCTGCCCCGGCTATTCCATGAAGTAGCCGCGTCCCGGTCCGCCGAACTGTTCGTGCTGCTGGCGCTGGTGATCGTACTGCTCACCGCATGGCTGACGCACCTGCTCGGCCTGTCACCGGCCCTGGGGGCATTCCTAGCCGGCATGCTGCTGGGAGAAAGCCATTACCGGCACCAGATCGAGGCCGATATACGTCCATTCCGCGACATCCTGCTGGGGCTGTTTTTCGTCAGCATCGGCATGCTGATCGACCTTCGACTGTTCATCGACGATGGCCTGCAGATACTCGGATTGACCCTCGGCTTGATGATCATCAAGGGCTGCGTGGTCGCCGCACTGGTCAAGTGGCGCGGCAGCGACGGCGAAACCGCGTGGCGCAGCGGCCTGGCCCTGGCTCAAGGTGGCGAGTTCTGTTTTGCCCTGATGGCATTGATGCAGCAGAACCGCCTGATGCCCGCCGACATCGGCGGCCTGCTGTTGGCCGCGACATTCTGCTCGATGCTGCTGACCCCGCTTTTGCTGCGTGCAGCGCCGGCGATTGCCGCGCGCCTGCACCGCAAACCCAACCAGGAAGCACAACTGGACCAGATCAGCGAACTCAATGCAGGCTTGTCGGGTCATGTGGTGATCTGCGGGTATGGTCGGGTGGGCCAATCCATCGGGCGGTTCCTGCGCCGCGAAGGCCTGGCCTTTGTCGCCCTCGACGACGACCCGGTGATCATTCAGGAAGCCACGGTCGACGAGCGTTGCGTACATTACGGGGACTCACGCCGGGCAGACCTGCTGGCCGCCGTCGGACTGAGCCGCGCCCGGCTGCTGGTCATTGCGGTCGACAAGACGGACATCGCGCTGACCGTGCTCAGGGCAGCCCGACGCGTAAACTCGCAGGTACCGATCCTGGTGCGCACTCGGGACGACAGCCAACTGGCCGAACTGCAGGCCGCCGGAGCGACCGAAGTGGTCCCGGAACTGCTTGAATCGAGCCTGATGCTCGCCTCTCACGCGCTGGTCATGCTCGGGCTGCCGGAGCAGCGGGTCCGGCATCATGTGGATCAGGTTCGTCACGAACGCTATGGCCTGCTGCACGGGTTCTATCCCGGCAATCAGGACAAGGAACCGTAGMFANLLIILASSLVVIALFRRLRLPPVLGYLCVGLAVGPTALDWVNDSEELPDLAELGVVFLLFSLGLEFSLSKMLELRRVVFGLGSLQVVCSGVLLGGVLVICGAPALAALLLGAGLALSSTAIVSKELTSLGEIFSSHGQNAIGVLLFQDVVAVLLLTLVPVFAGSSEYAWYWALPLTLGKTLFLFGGLLLASRWLLPRLFHEVAASRSAELFVLLALVIVLLTAWLTHLLGLSPALGAFLAGMLLGESHYRHQIEADIRPFRDILLGLFFVSIGMLIDLRLFIDDGLQILGLTLGLMIIKGCVVAALVKWRGSDGETAWRSGLALAQGGEFCFALMALMQQNRLMPADIGGLLLAATFCSMLLTPLLLRAAPAIAARLHRKPNQEAQLDQISELNAGLSGHVVICGYGRVGQSIGRFLRREGLAFVALDDDPVIIQEATVDERCVHYGDSRRADLLAAVGLSRARLLVIAVDKTDIALTVLRAARRVNSQVPILVRTRDDSQLAELQAAGATEVVPELLESSLMLASHALVMLGLPEQRVRHHVDQVRHERYGLLHGFYPGNQDKEPPGPT0014395_2502DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0014395-ybaL|TC_KEF-K03455NANA
D1-35_00730240hypothetical proteinATGCCGCCTGAATGCCAGTTGTTCGGCACCCTGGGGTGCCACCTGTGTGAAGTTGCCGAGGGCGTGCTGATGCCTTTCGTCGAGCATGGCCTCTTGGTAGAACTGGTGGATATCGCCGAAAGCGAGGCCTTGTCCGAAGCCTATGGCTTGCGCATCCCCGTGCTCCGTCGGATCGATACAGGGGCGGAGCTGGACTGGCCCTTCGATGACCCTGATCGGGTTGCGGCGTTTCTACGTTGAMPPECQLFGTLGCHLCEVAEGVLMPFVEHGLLVELVDIAESEALSEAYGLRIPVLRRIDTGAELDWPFDDPDRVAAFLRNANANANANA
D1-35_00731447hypothetical proteinATGACCCTGATCGGGTTGCGGCGTTTCTACGTTGATACCTTCCATCGCCTGAGTCCATCCACCGCCATTGGCGAAATGACATTCTTCGGTTACTGTATGCCCATACAGCAATCCGGAGTGCGTCCCTTGGTCAATGTCGAACAATTGAAAAACAGCGTGAACAGGATGTCCGCGGACGTTGTGCGCGAGGCGGTCCTGGAGTTGCGCCTGGATGGTCTGGTAACCGAAGGCAAGACACCCTTCAACAAGCTGCATTTCAACACCTGTTTTGCCGAGATCGAAGCGTTGTTCCAGCGTGCCGGTTACCACAAGCAATTGGACGTGGTGGGTTACCAGGGGCTGTTGTATGCATTGTACGACCCGGGACGTTGGGAGGCAGTCGAGGTGCTGCGCTGGTTGAAGGAGTTCACCGAGGCAGCGGAAAAACCGACATCAGTTCGCGCATGAMTLIGLRRFYVDTFHRLSPSTAIGEMTFFGYCMPIQQSGVRPLVNVEQLKNSVNRMSADVVREAVLELRLDGLVTEGKTPFNKLHFNTCFAEIEALFQRAGYHKQLDVVGYQGLLYALYDPGRWEAVEVLRWLKEFTEAAEKPTSVRANANANANANA
D1-35_00732891hypothetical proteinATGTCCGGTTCATCATTTTCCGCCGCGCACCATCAGGCCAGCACACTGTACTTGCCGCCTGGCTCCTGGCAGACGGTGCTGGAATGTCTTTGCGAGCATTTCAGCACGATCAGCCGCGAGCAGTGGCTGGATCGGATTGTCCGGGGGCGGGTGTTGGACGGGGAGGGGCGGGCGATCGGTATTGACCTGCCCTATCGCGAAGGTATGCGGATCCACTATTTTCGCGAAGTACCCGATGAAAAACCGATCCCTGTGGTGGAGTCGATTCTCTACATCGACGAGCATCTGGTGGTGGCGGACAAACCGCATTTCCTGCCTGTCACGCCGGCGGGGGAATACGTGGAGCAGACATTGCTGCGCCGTTTGATCCGTCGCCTGGACAACCCCCATCTGGTGCCCTTGCACCGTATTGATCGGCACACGGCCGGGCTGGTCTTGTTCTCAGCCAATCCGCAGACGCGTTCGGCTTATCAATCGTTGTTTCCGACGCGGCGAATCGAAAAAAGTTATGAAGCCATTGCCCCCGCACTGCCCGGAGTGGCTTTTCCGTGTGTGCACAGAAGCCGGATGATCGACGGCGAGCCTTTTTTCCGGATGCAGGAGGGGCCAGGCGAGCCCAATACCGAGACGGCCATGGAAGTGCTTGAGAGGAACGGCGACCTGTGGCGGTACGGCCTGTATCCGGTTACCGGGAAAAAGCACCAGCTGCGGGTGCATATGAGTGCCTTGGGGGCTGGCATCTGCAACGATCCGTTTTATCCCGATGTGATTAGGGATGCCCAGGATGACTATGCCAACCCGCTCAAGCTGTTGGCCAAGAGATTAGGTTTCATCGATCCGATCACGGGTCAGGAGCGGGTCTTCAAGAGTGATATTGCCCTGCGCTGGTAGMSGSSFSAAHHQASTLYLPPGSWQTVLECLCEHFSTISREQWLDRIVRGRVLDGEGRAIGIDLPYREGMRIHYFREVPDEKPIPVVESILYIDEHLVVADKPHFLPVTPAGEYVEQTLLRRLIRRLDNPHLVPLHRIDRHTAGLVLFSANPQTRSAYQSLFPTRRIEKSYEAIAPALPGVAFPCVHRSRMIDGEPFFRMQEGPGEPNTETAMEVLERNGDLWRYGLYPVTGKKHQLRVHMSALGAGICNDPFYPDVIRDAQDDYANPLKLLAKRLGFIDPITGQERVFKSDIALRWNANANANANA
D1-35_00733222hypothetical proteinATGACTCAACGGACCCTCGCCACTTTCATGCTCGCGCTGGGCCTCGCCACTCTCGCCGGGTGTGCATCGCCAACAGTGATTACCCTGAATGACGGTCGCGAAATCCAGGCCGTCGACACGCCAAAATACGACGAAGACAGCGGCTTCTACGAATTCGAGCAACTGGACGGCAAGCAGACTCGCGTGAACAAGGACCAGGTTCGTACCGTTAAAGACCTGTGAMTQRTLATFMLALGLATLAGCASPTVITLNDGREIQAVDTPKYDEDSGFYEFEQLDGKQTRVNKDQVRTVKDLNANANANANA
D1-35_00734603mobACOG0746Molybdenum cofactor guanylyltransferaseATGACCTCGAACGATCCCTTGCCAGCCTGCTCGATCCTGCTCCTGGCGGGTGGCCGCGGACAACGCATGGGAGGCCAGGACAAAGGCCTGCTGGAATGGCAAGGCGAACCGTTGATTGCCCACCTTCATCGGCGGACCCGGGCCCTGAGCGACGATCTGATCATCTCTTGCAACCGCAACCCGCAGCGCTACGCATTGTATGCCGATCAGTTGGTGCATGACGCCGAAGGGGATTTTCCCGGGCCATTGGCAGGCATCCGGGCGGGTCTCAAGGTGGCGCGACACGCGTATTTGCTGGTACTGCCTTGTGATGTCCCGCAAATCGACTCAAGCCTGCTCGACAGCATGCGCGAAACGGCAAGCCGCCATCCCGGCAAGCCGTTGATGGTGCGTCAGGGTGAGCATTGGGAGCCGTTGTTATGCATCATCCCACGGGTCCTGGCAGCAGACTTTGAAAGGGCCTGGGACGAAGGCGAACGCAGTCCCGGCCGCATCATGCGCACACTACACGCCGTCGCCTTGCAATGCCCGGCCAACGATGCCCGGCTGGCCAATCTCAATACGCCGGAACTGCTGGCCCGGCATACAGGCGTGTCAGATTGAMTSNDPLPACSILLLAGGRGQRMGGQDKGLLEWQGEPLIAHLHRRTRALSDDLIISCNRNPQRYALYADQLVHDAEGDFPGPLAGIRAGLKVARHAYLLVLPCDVPQIDSSLLDSMRETASRHPGKPLMVRQGEHWEPLLCIIPRVLAADFERAWDEGERSPGRIMRTLHAVALQCPANDARLANLNTPELLARHTGVSDNANANANANA
D1-35_00735540moaBCOG0521Molybdenum cofactor biosynthesis protein BATGAAAGCCAAGGCTGATGTACCTTTCGTACCGCTCAATATCGCGGTGCTGACTGTCAGTGATACCCGTACTCTGGAAACCGACACGTCGGGACAGGTTTTTGTCGACCGCCTCACGGAGGCTGGGCATAACCTTGCGGCCCGGGTACTGCTTAAAGATGATCTGTACAAGATCCGCGCACAAGTCGCCACCTGGATCGCCGACGACGTGGTGCAAGTGGTGTTGATCACCGGTGGCACCGGCTTCACCGGTCGCGACAGCACGCCCGAGGCCGTTACGTGCCTGTTGGACAAGCAGGTCGATGGTTTTGGTGAATTGTTCCGGCAGATATCCGTGGCGGACATTGGCACTTCTACCGTTCAGTCCCGGGCGCTGGCCGGCCTGGCCAACGGTACGTTGGTCTGTTGCTTGCCGGGTTCGACCAATGCGGTGCGTACCGGATGGGACGGGATCCTGGCCGAACAACTGGACGCGCGCCATCGGCCCTGTAATTTCGTCGCCCATCTGAAACAGGCTGCCCCTTGTGAATCCCGTGGGTAAMKAKADVPFVPLNIAVLTVSDTRTLETDTSGQVFVDRLTEAGHNLAARVLLKDDLYKIRAQVATWIADDVVQVVLITGGTGFTGRDSTPEAVTCLLDKQVDGFGELFRQISVADIGTSTVQSRALAGLANGTLVCCLPGSTNAVRTGWDGILAEQLDARHRPCNFVAHLKQAAPCESRGPGPT0008420_659DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008420-moaB-K03638NANA
D1-35_007361227moeACOG0303Molybdopterin molybdenumtransferaseGTGAATCCCGTGGGTAAACCGGGCAAGGCCGGCGCCCTGATGGCCGTCGAGGTCGCGCTGGAGCGGTTGCTCGAGATGGCGGCAGCCACGCCCATCACTCAGCATGAGCGCGTGCCGCTGGCTGAGGCGCAGGGGCGAGTATTGGCCGAGGACCTGGTCTCGACACTTGACCTGCCGCCCTGGCCCAACAGTGCGATGGACGGCTACGCCTTGCGCCTGAATGACTGGAGCGGCGAGGCGTTGGTCGTCAGTCAGCGGGTTTTCGCCGGGCAGGCTCCAGACGCTCTCGCCGCCGGTACCTGCGCGCGTATCTTCACGGGTGCGCCGGTCCCGCCGGGTGCCGATTGCGTCGAAATGCAGGAAAACGCCATTGTCGACGATGATCAGCGGGTAAGATTCACCCAGCCCATGGTCAGCGGACAGAACATTCGACCTCAAGGACAGGAAACAACCATCGGGGAGCGAGTCCTCGACGCCGGCACCCGCCTGGGTCCGATCGAGTTGGGTCTAGCGGCATCCCTGGGGTGCGCATCGCTGCCAGTGGTGCGCAAAGTACGCGTTGCGGTGCTGTCGACCGGTGATGAACTGGTGGAGCCTGGTCAGAACCTGGGTCCAGGCCAGATCTATAACAGCAATCGTGTCCTGCTCTGTAGCTGGTTGCAGCGCCTGGGTTGCGATGTTGTCGACGCAGGTATCCTGCCCGATGATTTGCCCGCTACGCGTCGCTGTCTGGCCGGGCTGTCGGATGTCGACCTGATCCTTTCCACCGGCGGCGTATCGGTGGGGGAGGCGGATTTTCTCGGCGTTGCATTGCGCGAAGAAGGCGAGTTGACGCTCTGGAAGCTCGCTATCAAGCCTGGAAAGCCGCTGACGTTCGGGCACTTCCGTGGCCTGCCGGTAATAGGCCTGCCGGGAAATCCCGCTTCTACGCTGGTGACCTTTGCGCTGTTGGCTCGGCCTTACCTGCTGCGGCGCCAGGGCGTTCAGTCAGTGGCGCCCCTCAAGTTCAAGATACCTGCAGGCTTCACCTGGCCGAAGGCGGGCTCTCGCCGAGAGTATTTGCGAGGTCGCATTGAAAACGGTCAGGCGATCATCTACCGCAACCAGAGCTCAGGTGTCCTGCGCAGCGCCGCCTGGGCCGAGGGGCTGGTCGAAGTCCTCGAAGGGCGAACACTGGTCCAGGGTGATGAAGTGAGCTTCATTCCCTTGAGCGAAGTGCTGGATTAAMNPVGKPGKAGALMAVEVALERLLEMAAATPITQHERVPLAEAQGRVLAEDLVSTLDLPPWPNSAMDGYALRLNDWSGEALVVSQRVFAGQAPDALAAGTCARIFTGAPVPPGADCVEMQENAIVDDDQRVRFTQPMVSGQNIRPQGQETTIGERVLDAGTRLGPIELGLAASLGCASLPVVRKVRVAVLSTGDELVEPGQNLGPGQIYNSNRVLLCSWLQRLGCDVVDAGILPDDLPATRRCLAGLSDVDLILSTGGVSVGEADFLGVALREEGELTLWKLAIKPGKPLTFGHFRGLPVIGLPGNPASTLVTFALLARPYLLRRQGVQSVAPLKFKIPAGFTWPKAGSRREYLRGRIENGQAIIYRNQSSGVLRSAAWAEGLVEVLEGRTLVQGDEVSFIPLSEVLDPGPT0008430_3851DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008430-moeA-K03750NANA
D1-35_00737309hypothetical proteinATGCCCGGCCATGAATTCAAATTGTCCCCCCGGCAATTTGGCCCGCTCAGGAGCGAGCGGGCCGATAAGCAGAACGAAGGCAAAAGTTGCATTAATCCCGTAGGAGGAATTGATTTGGAACCGCGCGTCGTTGAACTGGAAACTCACCTCAAATACATCCGCAGGGACATGGATGAAATCCGTACCGATGTGAAAGCGGTCCGACACCGGCTCGCCTATCTGGCCGGCGCAGCCGCAGTGGTGGTCGGCCTGCTGGGCTGGGTGGCGAACAGCCGCTTCGATCAGGTGGTGACGTTGCTGTCGCGATAAMPGHEFKLSPRQFGPLRSERADKQNEGKSCINPVGGIDLEPRVVELETHLKYIRRDMDEIRTDVKAVRHRLAYLAGAAAVVVGLLGWVANSRFDQVVTLLSRNANANANANA
D1-35_00738918yegSCOG1597Lipid kinase YegSATGAGCAAAGGCAAGGCGCTACTGATCCTGCACGGCAAGCAAGCGCTCAACGAAGAGGTTCGCGCGGCAGTGATGCTCAAGCGCAAACAGGGCTGGGACCTGGCGGTACGGTTGACCTGGGAAGCAGGGGATGCCCGGCGATGCGTCGACGAAGCACTGGATGCCGGTTACACCCGATTGATCGCCGGCGGCGGTGACGGAACCCTGCGCGATATCGCCGAGGCGATGGTCCAGCGGCCTGGCGATGCCAGCCTGGTGTTGCTCCCCCTGGGCACTGCTAACGATTTTGCCCGGGCGGCCGGCGTCCCGTTGGAGCCGGACCAGGCCCTGGATCTGCTGGATGTCACGCCCAGGGCGATTGATGTGGGCGAGGTCGGCGGCTGTATTTTCCTGAACATGGCGACGGGCGGCTTCGGTAGCCAGGTGACCGCCAATACCTCCGAGGACTTGAAGAAAGTCCTTGGGGGCGCCGCTTATCTGTTTACCGGCCTGTCGCGTTTCAGTGAGTTGAGCGCAGCCTATGGCGAACTGCAGGGCCCCGATTTTCACTGGCGCGGCGACTTGCTGGCGCTGGGCATCGGCAATGGTCGGCAGGCGGGTGGGGGGCATTTGCTCTGTCCGCAGGCGTTCGCCGACGACGGTTTGCTCGATATCAGCATCCTCCCGGCGCCTCAAGAGGTTGTCAGTACGCTCAAGGATCTGCTGGCCGGTGGCCTGGGCATAGACAACATGTTCGTACGAGCGCGTTTGCCCTGGGTGGAAATCAAGGTGGCGCAGGGCCTGGACATCAATCTGGATGGCGAGCCGTTGCAGGTCGACGATCTGCGTTTCACCGTGCGCCCGAAAGCGCTACGGGTGCACCTGCCGTCGGATTCGCCATTGCTGGAGGGTGCGGCGCTGCTCAATCATCCAGGCTGAMSKGKALLILHGKQALNEEVRAAVMLKRKQGWDLAVRLTWEAGDARRCVDEALDAGYTRLIAGGGDGTLRDIAEAMVQRPGDASLVLLPLGTANDFARAAGVPLEPDQALDLLDVTPRAIDVGEVGGCIFLNMATGGFGSQVTANTSEDLKKVLGGAAYLFTGLSRFSELSAAYGELQGPDFHWRGDLLALGIGNGRQAGGGHLLCPQAFADDGLLDISILPAPQEVVSTLKDLLAGGLGIDNMFVRARLPWVEIKVAQGLDINLDGEPLQVDDLRFTVRPKALRVHLPSDSPLLEGAALLNHPGNANANANANA
D1-35_00739660degU_1COG2197Transcriptional regulatory protein DegUTTGACTTGTAATTTGCTTCTGGTAGATGACCACTCGCTGATCCGGGCCGGTGTACGCGCCCTGGTCCTGGATCTCCCTGGCTACGCCGTCGTCGGCGAAGCCAGTGACGGCGCGCAATTGCCGGAACTGGTAGAACGCCTCAACCCCGATATCGTGCTGCTGGATATTTCCATGAAGGATACCGGCGGCCTGGAAGCCTTGCAGCAACTCAGGAAGGTACGCCCCCAGAGCAAGGTGCTGATCCTGTCCATGCACACTGACCCCGCGCTGATCATGCAGGCGCTGGAATCAGGAGCCCATGGCTACCTGCTCAAGGACACCACTGCCACCGAGCTGGCGCACGCCCTGGACGCGTTGCGCAACAACGAACGCTACCTGAGCCCGGCCATTGCCCATACCGTGATCAACCAGGCGCTGACCCGCGTTCAGAAACATCAGCCCGATCCAGCCCAGAACCACAACCTGACGGCGCGCCAGCTGGAGATCCTGCGGCTGATCGTTCGTGGCAAGTCCACCCGGGAAATCGCCAACGGCCTGAGCCTGAGCATCAAGACCGTGGAAACGCACCGGGCCCAGATCATGAAGCGCCTGCAGATCCATGACGTGGCCGGACTGGTACTGTTTGCGGTCCGCGAACAGATCATCAGCCTGGATGATTGAMTCNLLLVDDHSLIRAGVRALVLDLPGYAVVGEASDGAQLPELVERLNPDIVLLDISMKDTGGLEALQQLRKVRPQSKVLILSMHTDPALIMQALESGAHGYLLKDTTATELAHALDALRNNERYLSPAIAHTVINQALTRVQKHQPDPAQNHNLTARQLEILRLIVRGKSTREIANGLSLSIKTVETHRAQIMKRLQIHDVAGLVLFAVREQIISLDDPGPT0014870_111DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG-CELL_WALL-ACTIVE_ANTIBIOTIC_RESISTANCE,PGPT0014870-liaR-K11618NANA
D1-35_00740894degS_1Signal transduction histidine-protein kinase/phosphatase DegSATGCACGCCAGCTTCAAGTCAATCATCACCTGGCCACCGTCCCGAGAAAACGCCCGCCGGTTCACATTGCTGCTGTGTATCTGCTCGACCCTCGGTTGCCTGCTGGCCTACTTGTTGGCCCATCCGCTGCCGTTGGGCTTGCTGGTGCTCAATGGCGCGGCGCTGGCCTGTGTCTGGATCCACTATCGACTGTCGCGCAAGTCCATCAAGTTCCAGCCGCAGGAACTGGCCGACCGACTGCTGGAGGTCCAGGAAAACGAGCGTCACCGGCTCAGCCGCGAACTGCACGATGACATTGGCCAACTGCTGACCGCGGCAAAACTGCAAAGTGAATGGCTCAAGCGCCGCCTGCCGGAAGACTTGCAGGGCCAATGCAGCGTACTGAGCGACACGCTGGACGAAACCCTGAACAAAGTGCGTGATGTCTCGGCGATCCTCAATCCCAGGCAACTGACCAGCCTTGGGCTCGAAGCCAGTCTCCGCGCTCATCTACTCAAGACATTGGCCAATACGCCGGTGAAATGGAGCCTCGATTGCCAGCAGCGCATGACCGGCATCCCGGACGAAATGACCGTCGCCGCCTTTCGGATCACCCAGGAGGCCGTCACCAACATGTTGCGCCACGCCCAGGCGAGCAATCTGCTGGTGCGCCTGCAACGCCTTCCTGAAGGGCTGACGTTGCTGATCAGCGATGACGGCCAGGGATTCGTCCCGGCCAGCCACCCCGGCCGCGAAGGACAGCGCGGCATGGCCGGCATGTCGGAGCGAGTCGAACAGTTGGGCGGCACCCTCAAGGTCACCAGCGAGGCCGGCAAAGGCACGCATATCGAAGCTCGTATTCCCTGGGCACCGCGTGCCCTTGAGCGGGCCAGCAAGAATAAGGTTCTCCATTGAMHASFKSIITWPPSRENARRFTLLLCICSTLGCLLAYLLAHPLPLGLLVLNGAALACVWIHYRLSRKSIKFQPQELADRLLEVQENERHRLSRELHDDIGQLLTAAKLQSEWLKRRLPEDLQGQCSVLSDTLDETLNKVRDVSAILNPRQLTSLGLEASLRAHLLKTLANTPVKWSLDCQQRMTGIPDEMTVAAFRITQEAVTNMLRHAQASNLLVRLQRLPEGLTLLISDDGQGFVPASHPGREGQRGMAGMSERVEQLGGTLKVTSEAGKGTHIEARIPWAPRALERASKNKVLHPGPT0017175_1081DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_HEXOSE_PHOSPHATE_UPTAKE_SENSING,PGPT0017175-uhpB-K07675NANA
D1-35_00741471hypothetical proteinATGCCGAACGATCGCAACAATTGGAGCCAGCGCCTTCCCGAGTTCCTGATTGAAGCCGAGACACTCTTGGCCAAGTCGGAGGAATGCCTGAGCCATCTGGAGCTGATCAACAACGACAAGGATGCCATCGACTGCATGCTCAGCACGTTGCTGAAGCTGGCAAACAAGGCCGACGCTCTCGCATTGGAGGCCGTTTCGGAGTTTTCGCTGCATATCCATGGCTTGCTCAGTCATGCGCAACACCACATGGAGCTGCATGACCAGGCACTGGTCGCGCTGAAAGATTGCTTTACCCTGATGGCCTGGCAATTGGAGCTCGTCGACCACACCACCGGCAAACTGAGTCTGGACAACACTGAACAGACTTCCCTGATCGAAGCATTTGCCTTCCAGGTTGGCCAGAGTCCCTGCGAGGCGTTGCCGACGCCGCGCCCGATGGCGTTGGTTCCTTACGCACAAAAACAAGCGTGAMPNDRNNWSQRLPEFLIEAETLLAKSEECLSHLELINNDKDAIDCMLSTLLKLANKADALALEAVSEFSLHIHGLLSHAQHHMELHDQALVALKDCFTLMAWQLELVDHTTGKLSLDNTEQTSLIEAFAFQVGQSPCEALPTPRPMALVPYAQKQANANANANANA
D1-35_00742924cheV_2COG0784Chemotaxis protein CheVATGGCCGGCATTCTCGACACAGTAGATCAACGAACCCAATTGGTGGGTGAGAATCGCCTGGAAATTCTCATGTTTCGCCTGGCGGGGCGCCAATTGTTCGCCATCAACGTATTCAAGGTCCAGGAAGTGCTGCAACTGCCGAAGCTGACCTTGATGCCCCAGCGCCACCCGTTCGTCTGTGGCGTGGTCAATCTGCGTGGCCAGACCCTTCCGGTGATCGATCTTTCCCAGGCCATCGGCATGCGTCCGCTCGTGCCCGGACCTAACAGCACCATCATCGTCACCGAGTACAACCGTTCGGTACAGGCGTTCCTGGTAGGGGGCGTGGACCGCATCGTCAACATGAACTGGGAAGCCATCCTGCCGCCTCCGACCAGTGCCGGTCGCGAGCATTACCTGACGGCTATCAGCAAGGTCGACGACCAGTTGGTGGAAATCATCGACGTGGAGAAAGTCCTCGCCGAAATCGTCCCCTACAACGCCAAGGTCTCACGGGACAAGCTCGAGGATCCGGTGCTGGAACGAGCCCGCGGTCGAGAAGTCCTGCTGGTGGACGATTCCAATGTCGCGCTCTCGCAGTTGCGTGACACCCTGGGCCAGTTGGGCGTGAAGATGCACATCGCCAGCGACGGCTTGAAGGCACTGAACATGCTCAAGGCCTGGGCCGACACCGGCGAAGTGATGACCGACAAGTTGCTGATGATTTTCACCGACGCGGAAATGCCCGAGATGGACGGCTACCGCCTGACCACGGAAATCCGCAACGATCCACGCCTGCGTGGGCTCTACGTGGTGCTGCACACCTCGCTGTCCGGCAGCTTCAACGATTCGATGGTCAAGAAGGTTGGCTGTGACAACTTCCTTTCCAAATTCCAGCCGGACAAGCTGGTCGACGTGGTGCGCCAGCGGTTGATGCTCGGCTGAMAGILDTVDQRTQLVGENRLEILMFRLAGRQLFAINVFKVQEVLQLPKLTLMPQRHPFVCGVVNLRGQTLPVIDLSQAIGMRPLVPGPNSTIIVTEYNRSVQAFLVGGVDRIVNMNWEAILPPPTSAGREHYLTAISKVDDQLVEIIDVEKVLAEIVPYNAKVSRDKLEDPVLERARGREVLLVDDSNVALSQLRDTLGQLGVKMHIASDGLKALNMLKAWADTGEVMTDKLLMIFTDAEMPEMDGYRLTTEIRNDPRLRGLYVVLHTSLSGSFNDSMVKKVGCDNFLSKFQPDKLVDVVRQRLMLGPGPT0015675_1387DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015675-cheV-K03415NANA
D1-35_00743810ycbXCOG0633putative protein YcbXATGTTGCGGCTGAGCGCGCTGTATCGGTATCCGTTGAAGTCCGGCAAGGGGCAGCCGCTGCAGGGCATCGGCCTGGACAAGCTCGGGCTCGACGGTGATCGACGCTGGATGCTGGTGGATGAGGCCACCGGGCGCTTCCTGACCCAGCGGGCCGTGGCAAAGATGAGCCAGCTTTCGGCGTTGTGGAACGCGGCGGGCGGACTGACACTCAGCGCGCCGGGCTACGGCGCCATCGAGGTGCCGCTGCCGTCTTCTCTCGAAGAACAACGGCGTGGCGTGATCATCTGGCGCGATACTCTGCGTGTGCCGGATGCCGGTGACGCGACGGCAGCCTGGGTCAGTGAATTCATCGGCAATCGCACCCGGCTGGTCCATGTGCCGGTGGAATTGGCTCGCACCACGGCAGCCGGCTACGGCAAGGATGATGACAAGGTGGCCTTCGCCGACGGTTTTCCCTTGTTGTTGATCGGCCAGGCCTCGTTGGAGGATTTATCGGGCAGGGTCGGCCGCTCGCTGGAAATGCTGCGCTTTCGTCCCAACCTGGTGGTCGAGGGCAGCGAGGCGTTCGCCGAAGACGGCTGGAAGCGTATTCGTATCGGCGAGGTGGAGTTTCGGGTGGTCAAGCCGTGTTCACGCTGCATCATGACCACGGTCGATCCGCAAACCGGCGAACGCGATCCGCAGCGCGAGCCTTTCGCCACGTTGCAGCAGTACCGTTCTACCCCGGATGGTGCGATGTTCGGCCAGAATCTGGTCAACGATGGCAATGGCCGACTTGAGGTCGGCATGCCGGTCGAGGTGCTGGAATAGMLRLSALYRYPLKSGKGQPLQGIGLDKLGLDGDRRWMLVDEATGRFLTQRAVAKMSQLSALWNAAGGLTLSAPGYGAIEVPLPSSLEEQRRGVIIWRDTLRVPDAGDATAAWVSEFIGNRTRLVHVPVELARTTAAGYGKDDDKVAFADGFPLLLIGQASLEDLSGRVGRSLEMLRFRPNLVVEGSEAFAEDGWKRIRIGEVEFRVVKPCSRCIMTTVDPQTGERDPQREPFATLQQYRSTPDGAMFGQNLVNDGNGRLEVGMPVEVLENANANANANA
D1-35_00744285ppnPCOG3123Pyrimidine/purine nucleoside phosphorylaseATGTTCAAAGTCAACGAGTACTTCGACGGCACCGTCAAGTCGATCGCCTTCGGCACCTCCGAAGGTCCAGCGACCATCGGCGTCATGGCACCGGGCGAATATGAGTTCGGCACCGCGCAGCGGGAAATCATGCATGTTGTTTCCGGCGCCCTGACCGTGAAACTGCCCGACAGCACCGATTGGGAAACCTTCGCCGCCGGTAGCCAGTTCAACGTCCCGGCCAACAGCAAGTTCCAGCTCAAGGTAGCCGTCGACACGGCTTACCTCTGCGAATATCGCGGCTGAMFKVNEYFDGTVKSIAFGTSEGPATIGVMAPGEYEFGTAQREIMHVVSGALTVKLPDSTDWETFAAGSQFNVPANSKFQLKVAVDTAYLCEYRGPGPT0021300_682DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021300-ppnP|yaiE-K09913NANA
D1-35_00745543dinG_23'-5' exonuclease DinGATGCCTTACTGGCTGGTGATTGATCTGGAAGCCACCACCGACGAAGGTGGCTGGCCGGTTACCGAAATGGAAATCATCGAAATCGGCGCCACCCTGGTGAATCGGGATGGGCGCGAGGTGGATCATTTCCAGCGCTTTGTACGGCCGCTGAGGCGCCCGTTGCTGACCTCTTTCTGTCGCACGCTGACGCATATCAGCCAGGCCAATATTGACGGCGCCGCACCGCTGACCGAGGTCTGGCCGGCATTCGAACACTGGCTGGCGCCTTATCGAGCGAACCTCGAAGGCTGGGTCAGTTGGGGCGACTACGACCGCAAGCAATTGCTTCAGGAATGGCAAGGCCAGCACTTGCACAGCGCGCTCGGCCAGGTACCGCACATGAATCTCAAGCAGCGCTTTGCCAAGGCCCGTCGGCTGGAGCGACCGCTGGGGCTCAATGCGGCGTTGCAACTGGCCGGCCTGCAGTTCTGCGGCCAACAACACCGTGCATTGGAGGACGCCCGCAATACGGCGCGATTGTTGCCGCTGGTGCTGACCGGCTGAMPYWLVIDLEATTDEGGWPVTEMEIIEIGATLVNRDGREVDHFQRFVRPLRRPLLTSFCRTLTHISQANIDGAAPLTEVWPAFEHWLAPYRANLEGWVSWGDYDRKQLLQEWQGQHLHSALGQVPHMNLKQRFAKARRLERPLGLNAALQLAGLQFCGQQHRALEDARNTARLLPLVLTGNANANANANA
D1-35_00746798hypothetical proteinTTGACGTGTTCGCCGATGGGGATGACCTCACGTACCTTGCTGGCCGTCCTGGCCATGTTCTTGACCGTGTCAGCTGAAGCTGCACAAGTGGTCCGGATCGGCGCGGCGCATTTCCCGCCCTATACCGTTCGTCCCGAAAACGGCGCCGACACCGGTCTGTTACCGCAATTGGTGGAAGCCTTGAACCGGTCACAGGCCGATTATGAATTCGTGCTGGTACCCACTTCGATTCCGCGCCGGTTCAACGATTTCAAGCAGGGCCGGGTCGACATGGCGATTTTCGAGAACCCCGACTGGGGTTGGCAGGATGTGCCCCATACTCCGGTAGACATGGGCCTGGAGGATGCGGAGATATTCGTCGCCCAACGCCAGCCGGATCGCCAGCAGAGCTATTTCGCCGATCTCAGGGGCAAGCGCCTGGCCCTGTTCAGCGGTTATCACTATGCGTTTGCCGAATTCAACGCCGATCCCAAGTTCCTCATCGGCCAATACAACGCCACGTTGACCTATTCCCACGACAGCAACCTGCAGATGGTACTACGCACCCGCGCGGACATTGCCCTGGTGACCCGTTCCTACCTCAGCGATTACGTGTTGCGCAATCCGCAAGTGGCCTCGCAGTTGCTGGTATCCGAACGCATCGACCAGATTTACCACCATTACGCACTGATTCGGCCCCAGGCGCCCATTTCTCCCCAAGCGTTCGCCCAGATATTGCAGAAGTTGCGGGACGACGGCCAGTTGCTGGAAATCTTCCAGCCCTACCGGATCGAGCTGGTGCCGACCCACGCCCATTGAMTCSPMGMTSRTLLAVLAMFLTVSAEAAQVVRIGAAHFPPYTVRPENGADTGLLPQLVEALNRSQADYEFVLVPTSIPRRFNDFKQGRVDMAIFENPDWGWQDVPHTPVDMGLEDAEIFVAQRQPDRQQSYFADLRGKRLALFSGYHYAFAEFNADPKFLIGQYNATLTYSHDSNLQMVLRTRADIALVTRSYLSDYVLRNPQVASQLLVSERIDQIYHHYALIRPQAPISPQAFAQILQKLRDDGQLLEIFQPYRIELVPTHAHPGPT0020800_11437DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-35_007471014hypothetical proteinATGTCCAACCTCAATCAGCCGACCCTGTTGCCCTTGCCCGGCGGGCGCAGCCTGGGTGCCGATGAAACCGAACGCCACCTCTGCCTGATGCTCGAAGGCGCGCCGCTGATCCGCCTGCGCCTGGAGCGCGGTCCCCAGTTGCACGTGCATTTGCAGGAAAGCAACGACCGGCCGGTCGGCCCGGCACTCTGGGCGGCCTGCTATTGGCTGTTTGCCAGGGATCCCGAATGTCAGCGCCTGGTCTGGCACCTCAATGAGCGTCCCGGTGAGGCCCTGCTCAGTGGTTTGCTGACGGGCGGGGAACTCAGCGACGAATACATCTGCGAACGCACGCTGTTCTGGCAACTGCCGCAGCCCTGGCTGGGAGAGTCGTTCAGCGGCAGTTATCCGCAACAGATGATCGTCACCGACGGCAAGCGCCATCCGCGTCGCCCGATCAAGCCGCGTGGCGAGGTGTATCGCCGTTTCGACGCGCGGCTGGGGGCCTGGGTGTCTTTGCGCACGCTTGAAATCGAGCAGGACCTGACGCGATTCAACCGCTGGCAGAACAGCCCCAGGGTGGCGAGCTTCTGGCAGGAGGAGGGCAGCCTGGAACAGCACCGCGAGTACTTGACCAGGCTTGAGCATGACCCTCGGGTCTTGACCTTGATCGGTTGTTTCGATGAGCAGCCATTCGCCTACTTCGAAGCCTATTGGGCCAAGGAGGATCGAATCGCACCGTTTTATGACGCTCACGCCTATGACCGCGGCATCCACATGCTGGTGGGCGAAGAGCAGCATCGAGGTCCGCACAAGGTCGCAAGCTGGCTATCGGCGCTGGTGCATTACCTGTTTCTCGACGATCCGCGTACCCAGCGCGTGGTGGCCGAGCCTCGGGCCGACAATGCCCGGATGATCAGGCATCTGCATAACCAGTGTTTTCACTGTGAAAAGGAATTCGATTTCCCGCACAAGCGCGCGGCACTGATGATCCTGGGGCGCGAGCGGTTTTTTGACCGGTGTTCGTTGGTGTAGMSNLNQPTLLPLPGGRSLGADETERHLCLMLEGAPLIRLRLERGPQLHVHLQESNDRPVGPALWAACYWLFARDPECQRLVWHLNERPGEALLSGLLTGGELSDEYICERTLFWQLPQPWLGESFSGSYPQQMIVTDGKRHPRRPIKPRGEVYRRFDARLGAWVSLRTLEIEQDLTRFNRWQNSPRVASFWQEEGSLEQHREYLTRLEHDPRVLTLIGCFDEQPFAYFEAYWAKEDRIAPFYDAHAYDRGIHMLVGEEQHRGPHKVASWLSALVHYLFLDDPRTQRVVAEPRADNARMIRHLHNQCFHCEKEFDFPHKRAALMILGRERFFDRCSLVPGPT0031100_1DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-AMPHIBACTIN_METABOLISM,PGPT0031100-iucB_like-NANANA
D1-35_00748549hypothetical proteinATGACGGAACAAGTATCCACAAGCAGGTGCGACTCACCGCTACTCCAGGCCTTCGTCGACAACCGGATGATCCTGGTCAAGATCGCAGCGCGTATCACCGGTTGCCGCTCCCGCGCGGAAGACGTGGTCCAGGATGCGTTTTTCCGGTTGCAATCGGCGCCCCAGATCACCTCGTCCTTCAAGGCTCAACTCAGCTACCTGTTCCAGATCGTGCGCAATCTGGCGATCGACCACTACCGCAAACAGGCGTTGGAACAGAAATATTCGGGGCCGGAAGAAGAAGGGTTGAACGTGGTGATCCAGGGTGCTTCGCCAGAAACGTCGCATATCAACTTTTCCACCCTCGAGCACATTGCCGACGCGCTGACCGAGCTGCCCAGCCGAACCCGTTACGCCTTCGAGATGTACCGGCTGCACGGCGTACCGCAGAAAGACATCGCCAAGGAACTGGGCGTCTCGCCGACACTGGTGAACTTCATGATCCGCGACGCCCTGGTGCATTGCCGCAAGGTGTCAGGGGTGCGTGGGGATACGTTCGCCCGGCGGTGAMTEQVSTSRCDSPLLQAFVDNRMILVKIAARITGCRSRAEDVVQDAFFRLQSAPQITSSFKAQLSYLFQIVRNLAIDHYRKQALEQKYSGPEEEGLNVVIQGASPETSHINFSTLEHIADALTELPSRTRYAFEMYRLHGVPQKDIAKELGVSPTLVNFMIRDALVHCRKVSGVRGDTFARRNANANANANA
D1-35_0074912987lgrB_1Linear gramicidin synthase subunit BATGACCGACGCGTTCGAACTCCCCAGCACCCTGGCCCATGCCCTCCAGCGCCGCGCCGCGTTGACGCCGGACCGGGTGGCCTTGCGCTTTCTTGCCGACACCCCGCAGCAGGGCGTCGTGTTGAGTTATCGCGACCTGGACTTGCGCGCCCGGACCATCGCCGCCGCTTTGCAGGCCGAGGCGGAACTGGGAGATCGCGCCGTACTGCTATTCCCGAGCGGCCCGGATTACGTCGCGGCGTTTTTCGGTTGCCTGTACGCCGGCGTGATCGCCGTTCCGGCCTACCCACCCGAGTCCACCCGCCGCCACCATCAGGAGCGTCTGCTGTCGATCATCGCCGACGCCCAGCCGCGGCTGTTGCTCACCAGCAGTGAAGTGCGCGACACGCTGCAGGCCATCGAATCGGCACCGCCGGTACTCTGTGTCGATATCCTCGATCCGGCCCACGCCGGCCAATGGCGGGCGCCGAACCTGCAAGACGACGACATCGCCTTCCTGCAATACACCTCCGGCTCCACTGCGTTGCCCAAGGGGGTGCAGGTGAGCCACGGCAACCTGGTGGCCAACGAAGCGCTGATCCGGCATGGCTTCGGGATTGACGTGAATCCCGACGACGTCATTGTCAGCTGGCTGCCGCTGTATCACGACATGGGCCTGATCGGCGGTTTGCTGCAACCGATCTTCAGCGGAGTGCCGTGCGTACTGATGTCGCCGGCGTATTTCCTCGCCCGACCGTTGCGTTGGCTGGAAGCGATCAGCGAGTACGGGGGCACCATCAGCGGCGGCCCGGATTTCGCCTACCGGCTGTGCAGCGAGCGGGTCAGCGAGTCGGCCCTGGAGCGCCTCGACTTGAGCCATTGGCGCGTGGCCTATTCCGGCTCCGAACCGATTCGCCTCGACAGCCTGGAGCGCTTCGCCGAAAAGTTTGCCTCGTGCGGCTTCACGCCGGACAGTTTCATGGCTTCCTATGGCTTGGCCGAAGCCACCCTGTTCGTCGCCGGCACGCCGCGTGGCCTAGGGATCCCCGCGATGCGAATGGATGACGCGGCATTGGCGCAAAACCGCGCCGAGCCGGGGCAGGGCAACGCAGTGATGAGTTGCGGCGTGAGCCAGCCGGACCACGCGGTACTGATCGTCGAGCCCGCCACGCTACAGCCGCTGGCCGACAATCAGGTCGGCGAAGTCTGGGCCGCCGGGCCGAGCATCGCCCACGGTTACTGGCGCAACCCCGAGGCCAGCGCCAGGACATTCGTCCAGCATGCCGGCCGCACCTGGCTGCGCACCGGCGACCTTGGCTTTGTGCGCGAAGGCGAGCTGTTCATCACGGGGCGCCTGAAGGATTTGCTCATCGTGCGCGGGCATAACCTTTATCCACAGGACATCGAGCAAGCCGTAGAGCGCGAAGTCGAGGTGGTGCGCAAGGGGCGGGTCGCTGCATTCGCGGTCGACAACGGCGGCGAAGAGGGGATCGGGATTGCCGCGGAAATCAGCCGCAGCGTGCAGAAAATCCTCCCGGCCGAGGCCTTGATCAAAGCGATTCGCCAGGCCGTGGCCGATGCCTGCCAGCAAGCCCCGAGCGTGGTGGTGCTGCTCAACCCAGGGGCCTTGCCGAAGACTTCGAGCGGCAAGCTGCAGCGTTCGGCCTGCCGGGCACGACTGGCTGACGGCAGCCTCGACAGCTATGCGCTGTTTCCCTCGGTCGAGGTGGAGCAAACCCATGAGGCGGGCGCTTCATCGAAGCTGCAAACGCTGATTGGCCAGATCTGGTGCGAGCAGTTACAGGTCGACCAGGTCCAGGGCGCCGATCATTTCTTCCTGCTGGGGGGCAATTCCATCGCCGCCACCCAAGTCATTGCGCGGCTGAGCGAAACCCTCGGCCTGGAGCTCAACCTGCGCCTGCTCTTCGAAGCCCCAACGCTCGGCGCTTTTGCCGCGGCGGTGGCGAACCTGCAGGAGGACGGCGGCCAGGCCCAGGGCGCCATCAGCCGGTTGCCACGCCACGAGCCGCTGCCGCAATCGTTGGCGCAAAACCGCTTGTGGCTGACCTGGCAGCTGGACCCGGCAAGCCGTGCCTACAACATTCCCGGCGCCATCCGCCTGCGCGGCGAGCTGGACGAAAACGCCTTGCGCGCCAGCTTCCAGCAATTGATCGAGCGCCATGAGTCCCTGCGCACGCGGTTCCTGGAACGCGATGGGGTGGCCTTGCAGCAAATCGATCCGGCCGGCGAGTTCAATCTTCAGGTGATCGATCTTTGCGACATGCCCGCTGACCAGCGCGAAGCGCGGGCGCGGCAGATCCGCGAAGACGAAGCCGCCACGCAGTTCGATCTGGAAAAGGGTCCGCTGCTGTGGGTCACCTTGTTGCGCCTGGATCAGGACGACCACCAACTGTTGGTGACGATGCACCACATCATCGCCGATGGCTGGTCGATGAACGTCCTGATCGAGGAGTTCTCACGGCTCTATGCCGCGGCGTCCCAGGGACAGGTCGCCGAGTTGGCGCCGTTGCCGCTGCACTACGCCGACTACGGCAGTTGGCAGCGCCAATGGCTCGGGCAAGGTGAAGCCGAGCGCCAACTGGCCTATTGGAAACAGCAACTGGGCGATGAGCATCCGACCCTGGCGCTGAGCACCGATCATCCGCGCAGCGCCCTGCATCAGCGCAGCGCCGCGCGCCACAGCCTGCGCCTGGACAAGGTCCTCGGCGATGCCCTGCGCCGGACGGCCCAGGCCCATGACGCCACGCCGTTCATGTTCTTGCTGGCGGCATTCCAGGCGCTGCTGCAGCGCTACACCGGCCAGTCCGACATCCGCATCGGCGTGCCCAACGCCAATCGTCCGCGCCGGGAAACCCAGGGCCTGATCGGCTTCTTCATCAACACCCAGGTGCTGCGCGCGCAAACCGATTCGCGCCAGCCATTCGCCGCGCTGCTGGCCCAGGCCCGGGAAGCCACGCTGGGCGCCCAGGCGCATCAGGACCTGCCTTTCGAACAACTGCTGGAAGCGTACCCACAGGCGCGGGACCAAGGTCTGTTCCAGGTCATGTTCAACCATCAGCAGCGCGACCTCGGCGCGTTGCGGCGCCTGCCGGGGCTGTTGGCCGATGAGTTGCCGTGGCACAGCCGCGAAGCCAAGTTCGACTTGCAGTTGCATAGCGAAGAGGACCGCAACGGACGGCTGACGCTGTCGTTCGATTACGCTGACGAGCTGTTCGAGGCGACGACTATCGCCCGCTTGGCCGAACACTTTTGCAGCCTGCTTCGGTCGGTTTGCAGCAACCCGCAACAGGCGATCGGCGACGTGCAGCTGTTGAGCGACGCTGAATCCGCGCAACAACTGCCATGGGGCTCGGCGCCTTGCGAGCCGGCCAGCCAGTGGCTGCCGGAACTGCTCAACGAACAGGCCCGCCGCACCCCGCAACGTACCGCGTTGCAGTGGGACGGTGGTGCGCTGGACTATGCCGAGCTGCACACCCAGGCCAATCGCCTGGCCCATTACCTGCGGGACAAAGGCGTCGGCCCGGACGTCTGCGTGGCGATTGCCGCCGAGCGTTCGCCGCAGTTGCTGATCGGCGTGTTGGCGATCATCAAGGCGGGGGGCGCCTATGTGCCGCTGGATGTCGATTATCCGGCCGAGCGCCTGGCCTACATGTTGGGTGACAGCGGCGTCGATCTGCTGCTCACCCAAACCGCCTTGCTGGACCGCTTGCCGGCCTGCGCAGGCGTCAGCGTCATCGCCATGGACGCCCTGCACCTGGAACAGTGGCCGAGCAACCCGCCGGGGCTGCATTTGCATGGCGAGCATCTGGCGTACGTGATCTACACCTCCGGTTCGACCGGTCAGCCGAAGGGCGTCGGCAACACCCATGCCGCCCTGGCCGAGCGCCTGCAATGGATGCAGGCCGCCTATGGGCTGAATGAAACCGACGTGCTCATGCAAAAGGCGCCGATCAGTTTCGACGTGTCAGTGTGGGAGTGCTTCTGGCCGCTGATCAACGGCTGCCAACTGGTACTGGCCGGCCCCGGCGAGCACCGCGACCCGCACCGCATCGCGCAGTTGGTCGAGCGGTTTGGCGTGACCACGCTGCATTTTGTACCGCCGCTGCTCAGCCTGTTCCTCGAGGAGCCGTTGAGCGCCCGCTGCACGAGCTTGCGGCGGATCTTTTCCGGCGGCGAAGCGTTGCCGGCCGAGTTGCGCAACCGGGTGCTGGCGCAACTGCCGGCGGTGCAGCTGCACAACCGCTACGGCCCGACCGAAACCGCTATCAACGTCACGCACTGGCACTGCAGCGAGGCCGATGGCGAGCGCTCGCCGATCGGTCGTCCGCTGGCCAATGTGCTCTGCCGCATCCTCGACAGTGACCTCAATCCGGTGCCGGTCGGTGTGCCGGGTGAATTGTGCATCGGTGGCCTCGGCCTGGCCCGGGGTTACCTGGGGCGACCGGGGCTGACGGCCGAGCGGTTTGTCGCCGACCCGCTGGGTTCGGCCGGCGCGCGGCTGTACCGCACCGGCGACCGGGCGCGCTGGGGCGCTGACGGCGTCATCGAATACCTCGGCCGCCTCGACCAGCAGGTCAAGCTGCGTGGTTTCCGGGTCGAGCCGCAGGAAATCGAAGCGCGACTGCTCGCCCAGCAGGGCGTCGCCCAGGCGGCGGTGCTGGTGCGTGACACCGCGGCCGGTGCGCAATTGATCGGCTACTACACCGCGGTCGATGTCGATGAAGATGAAACCGTCCAGGCTGCTCGCCTGAAAAACGCCCTCGTCGGTGAATTGCCCGACTACATGGTGCCTGCGCAATTGCTGCGCCTGGACGTCATGCCCCTGAGTCCGAGCGGCAAGCTCGACCGTCGCGCCTTGCCCGAGCCGCAGTGGCAAGTGCGCGAGCACGTCGAGCCGGTCAGCGCCCTTGAACAGCGGGTCGCCGGCATCTGGCGCGACGTGCTGGGTCTGGAGCGCGTTGGCTTGCGCGATGACTTTTTCGCCTTGGGCGGCCATTCGTTGCTGGCGACCCAGATCATTTCCCGCACCCGCCAGGCCTGCGATGTCGAGCTACCGCTGCGCGCGTTGTTCGAAGCCAGTGAGCTGGGCGCCTTCGCTGAGCAGGTGCGGTTGATCCAGGCCAGCGGCCAGACCAACCGCCAGCCGCCGATCGAGAAAGTCGACCGCAGCCAACCGGTGCCGCTGTCCTATTCCCAACAGCGTATGTGGTTCCTCTGGCAAATGGAGCCGGATAGCCCAGCCTACAACGTCGGCGGCATGGCGCGGTTGCGCGGGGTGCTGGATGTCGGACGCTTTGAAGCGGCGTTGCAGGCCCTGATCCTGCGCCACGAAACCCTGCGCACAACGTTCCCGAGCATTGATGGCGTGCCTCGCCAACAGGTACACGGCGAGACGGGCCTGCGCATGGGCTGGAAGGATTTCTCGATGCTGGACGCCGACATGCGCCAGCAACGGGTCCGGCAACTGGCCGACAGCGAGGCCCACGAACCCTTCGACCTGGAAGCCGGGCCGCTGCTGCGGGCCTGCCTGGTCAAGACCGCCGAGCATGAGCATTACTTTGTGCTGACCTTGCACCACATCGTCACCGAAGGGTGGGCGATGGATATTTTCGCCCGTGAGCTGAGCGCGCTGTATGAAGCCTTCGTCGATGATCGCGAGTCGCCGCTGGAGCCGTTGCCGGTGCAATACCTCGACTACAGCGTCTGGCAGCGCCAATGGCTGGAATCCGGCGAGCGCCAGCGTCAGCTGGACTACTGGACCGCCCAACTGGGCCGCGAACATCCCTTGCTGGAGCTGCCCGCCGATCGCCCGCGTCCGCCGGTGCAAAGTCATCGTGGCGAACTGTTCCGTTTCGACCTCAGCGATGAGTTGGCCGCGCGGGTCCGCGCCTTCAATGCCGAACGTGGCCTGACCCTGTTCATGACCATGACCGCCGCCCTGGCCGTGCTGCTCTATCGCTACAGCGGCCAGACCGACCTGCGCATCGGCGCGCCGGTGGCCAACCGCATCCGCCCGGAAAGCGAAGGGCTGATCGGCGCGTTCCTCAACACCCAGGTGCTGCGTTGCCAGCTCGACGGGCAAATGTCGGTGGGCGAACTGTTCGAGCAGGTGCGCCACACCGTGATCGAAGGCCAGTCCCACCAGGACTTGCCCTTCGATCATCTGGTCGAAGCCCTGCAGCCACCGCGCAGTGCCGCATACAACCCGCTGTTCCAGGTGATGTGCAACGTCCAGCGCTGGGAATTCCAACAGAGCCGCACGTTGGCCGGCATGAGCGTCGATTACTTGGTCAACGACGCCCGCGCCACCAAGTTCGACCTCAACCTGGAAGTCACCGACCTCGACCAGCGCCTGGGTTGCTGCCTGACCTACAGCACCGATCTGTTCGATGAGCCGCGCATCGCCCGCATGGCCGGTCATTGGCGCAACCTGTTGGAGGCGTTGCTGGTCGATCCGGCTCGGCGGCTGAGCGAATTGCCGTTGCTTGGCGTCGGCGAGCAGCAGCAAATGCTCGACAGCCTGGGCGTCGAGCCCGGTGAGCATCGCCTCGATCAATGCCTCCAGGTGCTGTTCGAAGAACAGGCCCGGGCGCGTCCCGACGCAGCCGCGCTGACGTTCGCTGGGCAGACCCTGAGCTATGCCGAACTCGAACGCCGCGCCAATCGCCTGGCCTGGATGCTGCGCGAGCGGGGCGTCGGGCCGCAGGTGCGGGTGGGCCTGGCGCTGGAGCGCTCGCTGGAAATGGTCATCGGCCTGCTGGCGATCCTCAAGGCCGGTGGCGCCTACGTGCCGCTGGATCCGGAATACCCGCTGGACCGTTTGCACTACATGATCGAAGACAGTGGCGTCGGTCTGCTGCTCAGCGACCGGACCATGTTCCAGGCCCTCGGCCCATTGCCGCCGGGCGTGCAGCGCTGGTGCCTGGAGGACGACAGCGAGGCGTTGGCGCAGTACCCGGACCAGTCGCCATCGCTGATCAATCTGCCGCAGCACCAGGCGTACCTGATCTACACCTCCGGCTCCACCGGCAAGCCCAAGGGCGTGGTCGTGTCCCACGGTGAAATCGCCATGCATTGCCAGGCGGTGATCCGCCGTTTCGGCATGCGCCCGGACGACTGCGAGCTGCATTTCTATTCGATCAATTTCGACGCGGCCACCGAACGCCTGCTGGTGCCTTTGCTCAGCGGCGCTCACGTGGTGCTGCGCGCCCAGGGCCAGTGGGATGCTCAGGAGATTTGCGGGCTGATCCGTCAGCACCGCATCAATATTCTTGGCTTTACCCCGAGTTATGGCAGCCAGTTGGCGCAATGGCTGGCGACCCAGGGGCAAACGTTGCCGGTGCGCATGTGCATCACCGGTGGCGAAGCCTTGACCGGCGAACACCTGCAGCGCATCCGCGCCGCGTTCAGCCCGAGTCTGTTTTTCAACGCTTATGGTCCGACCGAGACGGTGGTGATGCCGCTGGCGAGCCTGGCGCCGGAACAACTGGAGGAGGGCGCGGGCAGCGTACCGATCGGCAGCGTGATCGGCGCCCGGCGGGCCTACATTCTCGACGCGGACCTGGCGTTGGTGCCGCCAGGCGCGACGGGTGAGCTGTACGTTGGTGGCGCCGGCCTGGCCCAGGGTTATCACCAGCGTCCGGGCATGACCGCCGAGCGCTTCGTCGCCGATCCGTTTGCCGCCGATGGCGGTCGGCTGTACCGCACCGGCGACCTGGTGTGCCAGCGTGCCGACGGCCAAGTGGAGTACCTGGGACGAATCGATCATCAAGTGAAGATTCGCGGTTTCCGCATCGAACTCGGGGAAATCGAAAACCGCCTGCTGGAGCACGACGCCGTGCGCGAAGCGGTGGTCCTGGCCCTCGACATGCCGGGCGGCAAGCAGTTGGCCGCTTATCTTGCCAGCGACATCGCCGAGCAGGACGCCATGGCACAAGTGGCCCTGCGCGAAGCGCTGAAGCAGCACCTCAAGACGCAACTGCCGGAGTACATGGTGCCCGCTCACCTGATCCTGCTGGCGAGCATGCCGCTGACCGCCAACGGCAAACTCGATCGCCGCGCCTTGCCGATGCCCGATCCGGAGCTCAATCGCCAGCAATACGTGGCGCCGAGCAATGCCCTGGAGCAAGCGCTGGCAGCGATCTGGTGCGACGTGCTGAACGTCAAACAGGTTGGCCTCAACGACAACTTCTTCGAGTTGGGCGGCGATTCGATCCTGTCGATCCAGGTCGTCAGCCGTGCCCGGCAGCAGGGCATCCACTTCACGCCGCGAGACCTGTTTCAGCACCAGACCGTGCAGGCCTTGGCCGCCATCGCCACCCGCAGCGAGCAGGTGAGTGTCGAGCAGGGGCTGTTGAGCGGTGAGTCGGGGCTTACGCCGATCCAGCATTGGTTCTTTGCCAGCGAGATACCCAACCGTCACCACTGGAACCAGGCGCTGCTACTGGAGCCGACCACGCTGCTCGAACCACAGCTTCTGGAGCAGGCGCTGCAGGCTGTTTTCCAGCAGCATGATGCCTTGCGCCTTGGCTTCGCCAATACCACTGGGCATTGGCGCGCCGAGCACCAGCCCTTGTTCGATGGGGCGTTGCTGCAGCATCTTTCGGTGCAGTCCACACAAGCCTGCGAAGCGCTGTTTGCCCAGGCGCAGCTTGGCTTCCAGCTGTCGAGCGGGCCGTTGCTGCGCGCCGTGCTGGCGGACTTGCCGGACGGTCGGCAGCGCCTGCTGATCGCCATCCATCACCTGGTGGTGGACGGAGTTTCATGGCGGGTGTTGATGGACGATCTGCAGACGGCTTACCGCCAATCTGCCGGCGGGCAGCCGCTGCGGTTACCGGCCAAGACCAGCCCGTTGCGTGACTGGGCTGCGCGGTTGCAGGCCTACGCCGGCAGCGAATCCCTGCGCGAGGAATTGAACTGGTGGCGCGACCAACTGAGCGGGCCGGACGTTACGCTGCCTTGCGCGAACCCTGGCGGCGGGCGGCAGGAGCGACACGCCGCAAGCGTCAGCGTGCGCCTGGACGCCGAGCGTACCCGGCAACTGTTGCAGCAGGCACCGAGCGCCTATCGCACCCAGGTCAACGACCTGCTGCTCACGGCGCTCGCCCGCGTGCTGTGCCGCCAAGGCAATCAGCAATCGGCGCTGATCCAGCTCGAAGGCCATGGCCGCGAGGCGCTGTTTGATGACGTCGACCTGACGCGCACCGTGGGCTGGTTCACCAGTGTCTATCCGCTGCGCCTGAGCCCGGCGGCCGATGATGTCGGCGCGTCGATCAAAGCCATCAAGGAGCAACTGCGCGCGGTGCCCCACAAGGGCCTCGGCTACGGCGTGCTGCGTTATCTGGCGGACGCCGGCACACGCCAGGCGATGGCCGGTTTGCCGCAAGCGGCGATCACTTTTAATTACCTCGGTCAGCTTGACCATACGCTCGGCCAGGACGCGTTGTTCCAACCGCTGGATACGCCACTTGGCGCCATTCATGACCCTGACGCGCCACTGCCGAACGAGTTGAGTGTCGACGGCCAGGTCAGCGGCGGCGAACTGCTGTTGCGCTGGACCTTCAGCGCCGAGCGGCATGACCGTGAAAGCATCGTCGCGCTGGCCGAGGCCTATCTCGACGAGTTGCAGCGGCTGATCGAACATTGCCTGGCGGACGAGGCGGGCGGCCTGACGCCGTCGGATTTCCCGCTGGCAAAACTGACCCAGGCACAGTTGGACAACCTGCCGGTGCCGGCCGGGCAGATCGAGGATGTCTACCCGCTGACGCCGATGCAGGAAGGCATGTTGCTGCACACCCTGCTCGAGCCGGGCACGGGCCTGTACTACATGCAGGACCGCTACCGCATCAACAGCGAGCTGGACCCGCAGCGTTTCGCCCAGGCCTGGCAGGCGGTGATTGCCCGCCACGAAGCCTTGCGCGCTTCGTTCTGCTGGAACGTCGGCGAAGACATGCTGCAGATCATCCACAAGCCCGGGCGCACGCCGGTGGAATACCTCGACTGGCTGCACGTGCCTGAGAACGATCAGGAGCCCAAGCTCCAGGCGCTGCTCAAGCGCGAGCGCGAGGCCGGTTTCGATCTGCTCAACGAGGCACCGTTTCACCTGCGATTGATCCGGGTCGGCGCGGCGCGCTACTGGTTCATGATGAGCAACCACCACATCCTGATCGATGCATGGTGCCGTTCACTGCTGATGGATGATTTTTTCGAGATCTACACCGCCCTCGGTGAACATCGCGAGCCCCGGCTGGCCGTGCCGCCGCGCTATCGCGATTACATCGGCTGGTTGCAACGCCAGGGCCTGGCTGAAGCCCGGCAATGGTGGAAGCAGAACCTGGAAGGCTTCGAGCGGACCACGCCGATCCCCGCCGATCGCCCGTTCCTGCGCGAACACGCCGGTGACAGTGGCGGCATGGTCGTCGGTGACTGCTACACCCGGCTCGACGCTCGGGACGGCGCGCGACTGCGAGAACTGGCCCAGGCCCATCAATTGACCGTCAATACGTTCGCCCAGGCCGCGTGGGCCCTGGTGCTGCGCCGGGTCAGCGGCGATCGGGACGTACTCTTCGGCGTCACCGTGGCCGGGCGCCCGGTGGAATTGCCGCAGATGCAACACACCGTGGGCTTGTTCATCAACAGCGTCGCCCTGCGGGTGCAGATCCCGGGCGATGACCAGCGTTGCAGCGTGCGTCAGTGGCTCAACGGCTTGCTCGACAGCAACATGCAGTTGCGCGAATACGAATACCTGCCGCTGGTGAGCATCCAGGAAGTCAGCGAACTGCCCAAGGGCCAACCGCTGTTCGACAGCCTCTTCGTGTTCGAGAACGCACCGGTGGAAGTCTCGGTGCTGGATCGTGCCCAGAGTCTCAATGCCACCTCGGACTCGGGCCGCACCCACACCAACTTCCCGCTGACGGCGGTCTGCTATCCGGGCGATGACCTGGGGCTGCACCTGTCTTACGACCAGCGCTATTTCGATGAGTCCACCGTCCAGGGCCTGCTGGGCGAGTTCAAGCGATTGCTGCTGGCCTTGATGGAAGGTTTCCACGGTGACGTGGCCGAGCTGCCGCTGATTGGCAGCGCGGAACAGGACTTCCTGATCGAAGGCTGCAACCAGAGCGAGCGCGCCTATCCGCTGGAGCGCAGTTATGTCGAGCTGTTCGAGGCCCAGGTGGCGGCCCATCCGCAACGCATCGCCGCCAGTTGCCTGGAGGACCGCTGCACTTACACCGAGCTGAACGAGCGCAGCAATCGCCTCGGCCACGCGTTGGTCGCCGCTGGCGTCGGGCTCGATCATCCGGTGGCGCTGCTGGCCGAACGCGATCTCGACCTGTTGGGCATGATCATCGGCAGCTTCAAGGCCGGCGGCGGTTACCTGCCGCTTGATCCGGGCCTGCCGAGCCAGCGCCTGAGCCGTATCATCGAACTGAGCCGCACGCCGTTGCTGGTCTGCACCCAGGCCTGTCATGAACAGGCGCTGGCCTTGCTGGAAGAGTTCGCCTGCGCCGGCCGGCCAAAGCTGCTGGTCTGGGAAACCGTTCAGGCCAGCGATGTGTCGCGGGACAATCCGCGCCTCTACAGCGGGCCGGACAACCTGGCCTACGTGATCTACACCTCCGGTTCCACCGGCTTGCCCAAAGGCGTCATGGTGCAACAGCGGGGCATGCTCAATAACCAGCTCAGCAAGGTGCCATACCTGGCGCTGGACGAGACGGATGTGATCGCCCAGACGGCGTCGCAGAGCTTCGACATTTCCGTGTGGCAGTTCCTTGCCGCGCCGCTGTTCGGTGCTCGGGTGGACATCGTGCCCAATGCCATCGCCCACGATCCGCAAGGGCTGCTGGAGCACGTAAAACGCCAGGGCATCAGCGTGCTGGAGAGCGTGCCATCGTTGATCCAGGGCATGCTCGCCGAGGAACGCATCGGCTTGGAAGGCCTGCGCTGGATGCTTCCGACCGGCGAGGCAATGCCGCCGGAACTGGCCCATCAATGGTTGTTGCGTTATCCGGACATCGGCCTGGTGAATGCCTACGGTCCGGCCGAATGTTCCGATGACGTGGCGTTCTTCCGGGTCGACCTGGCTTCGACGCGCGGCAGCTACCTGCCCATCGGCACGCCGACCGACAATAACCGCCTGTACCTGCTCGACGGTGCGCTGGAGCTGGTGCCGCTGGGCGCGGTGGGCGAGTTGTGCGTCGCCGGCACCGGGGTCGGGCGCGGTTATGTCGGCGATCCGCTGCGCACGGCGCCGGTGTTCATGCCCGATCCGTTCGGGGCGCCGGGCGACCGGCTGTACCGCACCGGTGACCTGGCGCGCCGCCGCAGCGATGGGGTGTTGGAATATGTCGGGCGGATCGACCACCAGGTGAAGATTCGCGGCTATCGCATCGAACTGGGGGAAATCGAAGCGCGGCTGCATGAACAGCCCGAAGTACGCGATGCGGCAGTGGGCGTGCAGGAAGGCGCCAATGGCAGACATCTGGTGGGTTATCTGGTCGCCGCCGACGCGACGCTGAGCCCGACCGAGCGCCTGGATCGCATCAAGCAGCGCCTGCGCAGCGAATTGCCGGAATACATGGTGCCGCTGCACTGGCTGTGGCTCGACCGCCTGCCCCTGAACGCCAACGGCAAGCTCGATCGCAAGGCCTTGCCGGCCCTGGAGATCGGCCAGTTGCAAAGCCAGGATTACCAGGCCCCGGCCAACGAGCTGGAACAGACCCTGGCGGAAATCTGGGCCGAGGTGCTGAAGGTCGAGCGGGTGGGCGTACGCGACAACTTCTTCGAGCTGGGCGGACACTCATTGCTGGCCACACAGATCGCCTCGCGCGTGCAAAAAACCCTGCAGCGCAACGTGCCGCTCAGGGCCATGTTCGAGTGCAGCACGGTGCAGGAACTGGCCGAATATATCGCAGGGCTGGAAGCCAGTGAAATCACCGAGGAGAAAGTCGATCGACTGAATGATTTGATGGCGGAATTGGAAGGAATGTAGMTDAFELPSTLAHALQRRAALTPDRVALRFLADTPQQGVVLSYRDLDLRARTIAAALQAEAELGDRAVLLFPSGPDYVAAFFGCLYAGVIAVPAYPPESTRRHHQERLLSIIADAQPRLLLTSSEVRDTLQAIESAPPVLCVDILDPAHAGQWRAPNLQDDDIAFLQYTSGSTALPKGVQVSHGNLVANEALIRHGFGIDVNPDDVIVSWLPLYHDMGLIGGLLQPIFSGVPCVLMSPAYFLARPLRWLEAISEYGGTISGGPDFAYRLCSERVSESALERLDLSHWRVAYSGSEPIRLDSLERFAEKFASCGFTPDSFMASYGLAEATLFVAGTPRGLGIPAMRMDDAALAQNRAEPGQGNAVMSCGVSQPDHAVLIVEPATLQPLADNQVGEVWAAGPSIAHGYWRNPEASARTFVQHAGRTWLRTGDLGFVREGELFITGRLKDLLIVRGHNLYPQDIEQAVEREVEVVRKGRVAAFAVDNGGEEGIGIAAEISRSVQKILPAEALIKAIRQAVADACQQAPSVVVLLNPGALPKTSSGKLQRSACRARLADGSLDSYALFPSVEVEQTHEAGASSKLQTLIGQIWCEQLQVDQVQGADHFFLLGGNSIAATQVIARLSETLGLELNLRLLFEAPTLGAFAAAVANLQEDGGQAQGAISRLPRHEPLPQSLAQNRLWLTWQLDPASRAYNIPGAIRLRGELDENALRASFQQLIERHESLRTRFLERDGVALQQIDPAGEFNLQVIDLCDMPADQREARARQIREDEAATQFDLEKGPLLWVTLLRLDQDDHQLLVTMHHIIADGWSMNVLIEEFSRLYAAASQGQVAELAPLPLHYADYGSWQRQWLGQGEAERQLAYWKQQLGDEHPTLALSTDHPRSALHQRSAARHSLRLDKVLGDALRRTAQAHDATPFMFLLAAFQALLQRYTGQSDIRIGVPNANRPRRETQGLIGFFINTQVLRAQTDSRQPFAALLAQAREATLGAQAHQDLPFEQLLEAYPQARDQGLFQVMFNHQQRDLGALRRLPGLLADELPWHSREAKFDLQLHSEEDRNGRLTLSFDYADELFEATTIARLAEHFCSLLRSVCSNPQQAIGDVQLLSDAESAQQLPWGSAPCEPASQWLPELLNEQARRTPQRTALQWDGGALDYAELHTQANRLAHYLRDKGVGPDVCVAIAAERSPQLLIGVLAIIKAGGAYVPLDVDYPAERLAYMLGDSGVDLLLTQTALLDRLPACAGVSVIAMDALHLEQWPSNPPGLHLHGEHLAYVIYTSGSTGQPKGVGNTHAALAERLQWMQAAYGLNETDVLMQKAPISFDVSVWECFWPLINGCQLVLAGPGEHRDPHRIAQLVERFGVTTLHFVPPLLSLFLEEPLSARCTSLRRIFSGGEALPAELRNRVLAQLPAVQLHNRYGPTETAINVTHWHCSEADGERSPIGRPLANVLCRILDSDLNPVPVGVPGELCIGGLGLARGYLGRPGLTAERFVADPLGSAGARLYRTGDRARWGADGVIEYLGRLDQQVKLRGFRVEPQEIEARLLAQQGVAQAAVLVRDTAAGAQLIGYYTAVDVDEDETVQAARLKNALVGELPDYMVPAQLLRLDVMPLSPSGKLDRRALPEPQWQVREHVEPVSALEQRVAGIWRDVLGLERVGLRDDFFALGGHSLLATQIISRTRQACDVELPLRALFEASELGAFAEQVRLIQASGQTNRQPPIEKVDRSQPVPLSYSQQRMWFLWQMEPDSPAYNVGGMARLRGVLDVGRFEAALQALILRHETLRTTFPSIDGVPRQQVHGETGLRMGWKDFSMLDADMRQQRVRQLADSEAHEPFDLEAGPLLRACLVKTAEHEHYFVLTLHHIVTEGWAMDIFARELSALYEAFVDDRESPLEPLPVQYLDYSVWQRQWLESGERQRQLDYWTAQLGREHPLLELPADRPRPPVQSHRGELFRFDLSDELAARVRAFNAERGLTLFMTMTAALAVLLYRYSGQTDLRIGAPVANRIRPESEGLIGAFLNTQVLRCQLDGQMSVGELFEQVRHTVIEGQSHQDLPFDHLVEALQPPRSAAYNPLFQVMCNVQRWEFQQSRTLAGMSVDYLVNDARATKFDLNLEVTDLDQRLGCCLTYSTDLFDEPRIARMAGHWRNLLEALLVDPARRLSELPLLGVGEQQQMLDSLGVEPGEHRLDQCLQVLFEEQARARPDAAALTFAGQTLSYAELERRANRLAWMLRERGVGPQVRVGLALERSLEMVIGLLAILKAGGAYVPLDPEYPLDRLHYMIEDSGVGLLLSDRTMFQALGPLPPGVQRWCLEDDSEALAQYPDQSPSLINLPQHQAYLIYTSGSTGKPKGVVVSHGEIAMHCQAVIRRFGMRPDDCELHFYSINFDAATERLLVPLLSGAHVVLRAQGQWDAQEICGLIRQHRINILGFTPSYGSQLAQWLATQGQTLPVRMCITGGEALTGEHLQRIRAAFSPSLFFNAYGPTETVVMPLASLAPEQLEEGAGSVPIGSVIGARRAYILDADLALVPPGATGELYVGGAGLAQGYHQRPGMTAERFVADPFAADGGRLYRTGDLVCQRADGQVEYLGRIDHQVKIRGFRIELGEIENRLLEHDAVREAVVLALDMPGGKQLAAYLASDIAEQDAMAQVALREALKQHLKTQLPEYMVPAHLILLASMPLTANGKLDRRALPMPDPELNRQQYVAPSNALEQALAAIWCDVLNVKQVGLNDNFFELGGDSILSIQVVSRARQQGIHFTPRDLFQHQTVQALAAIATRSEQVSVEQGLLSGESGLTPIQHWFFASEIPNRHHWNQALLLEPTTLLEPQLLEQALQAVFQQHDALRLGFANTTGHWRAEHQPLFDGALLQHLSVQSTQACEALFAQAQLGFQLSSGPLLRAVLADLPDGRQRLLIAIHHLVVDGVSWRVLMDDLQTAYRQSAGGQPLRLPAKTSPLRDWAARLQAYAGSESLREELNWWRDQLSGPDVTLPCANPGGGRQERHAASVSVRLDAERTRQLLQQAPSAYRTQVNDLLLTALARVLCRQGNQQSALIQLEGHGREALFDDVDLTRTVGWFTSVYPLRLSPAADDVGASIKAIKEQLRAVPHKGLGYGVLRYLADAGTRQAMAGLPQAAITFNYLGQLDHTLGQDALFQPLDTPLGAIHDPDAPLPNELSVDGQVSGGELLLRWTFSAERHDRESIVALAEAYLDELQRLIEHCLADEAGGLTPSDFPLAKLTQAQLDNLPVPAGQIEDVYPLTPMQEGMLLHTLLEPGTGLYYMQDRYRINSELDPQRFAQAWQAVIARHEALRASFCWNVGEDMLQIIHKPGRTPVEYLDWLHVPENDQEPKLQALLKREREAGFDLLNEAPFHLRLIRVGAARYWFMMSNHHILIDAWCRSLLMDDFFEIYTALGEHREPRLAVPPRYRDYIGWLQRQGLAEARQWWKQNLEGFERTTPIPADRPFLREHAGDSGGMVVGDCYTRLDARDGARLRELAQAHQLTVNTFAQAAWALVLRRVSGDRDVLFGVTVAGRPVELPQMQHTVGLFINSVALRVQIPGDDQRCSVRQWLNGLLDSNMQLREYEYLPLVSIQEVSELPKGQPLFDSLFVFENAPVEVSVLDRAQSLNATSDSGRTHTNFPLTAVCYPGDDLGLHLSYDQRYFDESTVQGLLGEFKRLLLALMEGFHGDVAELPLIGSAEQDFLIEGCNQSERAYPLERSYVELFEAQVAAHPQRIAASCLEDRCTYTELNERSNRLGHALVAAGVGLDHPVALLAERDLDLLGMIIGSFKAGGGYLPLDPGLPSQRLSRIIELSRTPLLVCTQACHEQALALLEEFACAGRPKLLVWETVQASDVSRDNPRLYSGPDNLAYVIYTSGSTGLPKGVMVQQRGMLNNQLSKVPYLALDETDVIAQTASQSFDISVWQFLAAPLFGARVDIVPNAIAHDPQGLLEHVKRQGISVLESVPSLIQGMLAEERIGLEGLRWMLPTGEAMPPELAHQWLLRYPDIGLVNAYGPAECSDDVAFFRVDLASTRGSYLPIGTPTDNNRLYLLDGALELVPLGAVGELCVAGTGVGRGYVGDPLRTAPVFMPDPFGAPGDRLYRTGDLARRRSDGVLEYVGRIDHQVKIRGYRIELGEIEARLHEQPEVRDAAVGVQEGANGRHLVGYLVAADATLSPTERLDRIKQRLRSELPEYMVPLHWLWLDRLPLNANGKLDRKALPALEIGQLQSQDYQAPANELEQTLAEIWAEVLKVERVGVRDNFFELGGHSLLATQIASRVQKTLQRNVPLRAMFECSTVQELAEYIAGLEASEITEEKVDRLNDLMAELEGMNANANANANA
D1-35_00750813rutD_1Putative aminoacrylate hydrolase RutDATGCCCTTCGCAACGATCGACGGACAACCGCTCCATTACCTCGACCAGGGCCAGGGCCCGGTGGTGCTGCTTGGCAGCAGCTATTTGTGGGACCACAGCATGTGGGCGCCGCAGATTGACGCCTTGTCGAAGCACTATCGGGTCATCGTCCCTGAACTGTGGGGCCACGGCCAGTCCGGACGTTTGCCCGAGAATACGTCCTCGCTGAACGATCTGGCTCGCCAGGCATTGGCGTTGCTCGATCAGCTGGGCATCGACTGCTTCAGCCTGGTGGGGCTGTCGGTGGGCGGCATGTGGGGCGCACGCCTGGCGCTGGCGGCGCCCAAACGCGTGCAATCGCTGGTATTGATGGACACCTATGTGGGCGTCGAACCGGAGCCAACCCGTCTGTACTACTTTTCGCTGTTCGACAAGATCGAGGCCAGCGGTAGCATCCCGGAGCCGTTGCTGGACATCGTCGTGCCGATTTTCTTCCGGCCCGGCATCGACCCGCAATCAGCGCTTTACCAGCAGTTTCGCGCCACCTTGGCGGCGTTGCCAGCCGACCGCCTGCGCGACAGCATCGTACCGCTGGGGCGGATTATCTTTGGTCGGGACGACATCCTGGGGCAATTGCGTGAGTTGAACGCCGAGCGCACGCTGGTGATGTGTGGTGACCAGGACAAGCCACGGCCACCGTCCGAGGCGCTGGAGATGGCTGAATTGATCGGCTGCGAGCATGTGTTGATTCCCGAGGCGGGGCATATTTCCAACCTGGAGAACCCGGCGTTTGTGACCGAGGCGTTGCTGGGGTTCCTGAAACACAGGCATTGAMPFATIDGQPLHYLDQGQGPVVLLGSSYLWDHSMWAPQIDALSKHYRVIVPELWGHGQSGRLPENTSSLNDLARQALALLDQLGIDCFSLVGLSVGGMWGARLALAAPKRVQSLVLMDTYVGVEPEPTRLYYFSLFDKIEASGSIPEPLLDIVVPIFFRPGIDPQSALYQQFRATLAALPADRLRDSIVPLGRIIFGRDDILGQLRELNAERTLVMCGDQDKPRPPSEALEMAELIGCEHVLIPEAGHISNLENPAFVTEALLGFLKHRHPGPT0004995_465DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0004995-pcaD|catD-K01055NANA
D1-35_00751768dsbGCOG1651Thiol:disulfide interchange protein DsbGATGCCCCGCCTCCACCACCTGCTGACCCTGGCATTCGCCGGCGCACTGCTACAAGCGCCGCTGCTTCAGGCCGAAGAGCTGCCCGCGGCGATCAGGAAGATCGAAGCCAAGGGCGCAAAGATCGTCGGCACCTTCGACGCACCGAACGGCTTGCGCGGCTACGCGGCGCAGTACCAGAGCCGCGGCATGACGCTCTACCTGACGCCGGACGGCCAGCATGTGCTGCTGGGCAACCTGTACGACGCCGATGGCAAGGACCTGAGCCTCGAACCCCTGAAAAAGCTGGTCTACGATCCGATGTCGAAGGAGATCTGGGCGAAGATGCAAGCCAGCAGCTGGATCGCCGACGGCAGCAAGGACGCACCGCGCACCGTGTACCTGTTCAGCGACCCGAACTGCCCGTACTGCAACATGTTCTGGGAGCAGGCGCGGCCGTGGGTCAATGCCGGCAAGGTGCAGTTGCGCCACATCATGGTGGGCATCATCCGCGAAGACAGCCCGGGGAAATCAGCCGCATTGCTGGCCGCCAAAGAGCCGGAAAAAGCCCTGGCGGACCACGAAAAGGCCGGCAAGGGCAGCCCGCTGAAACCGCTGAAAGAAATACCGCCGGCGATCCAGGCCAAACTGGACGCCAACCAGCAGTTGATGGATGAACTGGAGCTGTCCGCGACCCCGGCGATTTTCTACCTGGACGACCAGGGCGACCTGCAACAGCAGCAAGGCGCGCCCTCGCCGGACAAACTGGTGAAGATTCTCGGGCCGAAATAAMPRLHHLLTLAFAGALLQAPLLQAEELPAAIRKIEAKGAKIVGTFDAPNGLRGYAAQYQSRGMTLYLTPDGQHVLLGNLYDADGKDLSLEPLKKLVYDPMSKEIWAKMQASSWIADGSKDAPRTVYLFSDPNCPYCNMFWEQARPWVNAGKVQLRHIMVGIIREDSPGKSAALLAAKEPEKALADHEKAGKGSPLKPLKEIPPAIQAKLDANQQLMDELELSATPAIFYLDDQGDLQQQQGAPSPDKLVKILGPKPGPT0013200_210DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-CHAPERONES,PGPT0013200-dsbG-K03805NANA
D1-35_00752870resA_2Thiol-disulfide oxidoreductase ResAATGCTGACGTTTACCCTGGGCACCTTTGCCATCGCCCTCAATCATCTGCTGCTGATCAGCGCACTGGCCTTGGCGACTTTCGTCGGCTGGCGCGTGGCCAAGCGCGGCGGCGAGAACCCCGAGTCGGTGCTGTTCGGGCTGTTCCTGCTGGGACTGCTTGCCGCGAGAATCGGCTTCGTCGCCGCGTACTGGAACCATTACCGGGACGACCCGTGGCAGATCGTCGATTTACGCGACGGCGGATTCCTGGCCTGGCCTGGCATCATCGCCCTGCTGGTCGCCGCGCTGCTCTGGGCGCGTCGCCGACCCGCCCTGCGCCGGCCCCTGGGCTTCAGCGTCGGCAGCGGTCTGCTGTTCTGGCTGGTGGCGACAATGTCGCTGACGATCTACGAGCAAGGCACCCGGCTGCCGGAGATCGAGCTGCGCAACGCTGAAGGCGAAACCGTGAACCTCGCCGACTACCAGGGCGGCCCCTTGGTGATCAACCTGTGGGCCACCTGGTGCCCGCCTTGCCGACGGGAAATGCCGGTCCTGGAAGAGGCGCAAAAACAGCGCCCGGACCTGACGTTCCTGTTCGTCAATCAGGCCGAAAGCATGCAAAGCGTCAGCACCTACCTCGCCACCCAGGGCCTGAGCCTGACCAACGTGCTGTTCGACGGCAGTGGACGCCTCGGCCAGGCCGTCGGCTCCATGGCCCTGCCAACGACCCTGTTCTACAGCGCCGAGGGTCGCCTGCTGGGCAGCCACCTGGGCGAACTGTCGGAAGCGAGCCTGGCCCGCGCCCTGGAAAATTTCGAAACGCCGGGTTCCACCACGGCGATCCACCCCGCGACAAGGAAATTGCCATGCCCCGCCTCCACCACCTGCTGAMLTFTLGTFAIALNHLLLISALALATFVGWRVAKRGGENPESVLFGLFLLGLLAARIGFVAAYWNHYRDDPWQIVDLRDGGFLAWPGIIALLVAALLWARRRPALRRPLGFSVGSGLLFWLVATMSLTIYEQGTRLPEIELRNAEGETVNLADYQGGPLVINLWATWCPPCRREMPVLEEAQKQRPDLTFLFVNQAESMQSVSTYLATQGLSLTNVLFDGSGRLGQAVGSMALPTTLFYSAEGRLLGSHLGELSEASLARALENFETPGSTTAIHPATRKLPCPASTTCNANANANANA
D1-35_007531728dsbDCOG4232Thiol:disulfide interchange protein DsbDATGCGTCGATTGTTTTTGCTGTGTCTACTGCTGATCTCGGGTCTGGCCCAGGCCGCCAATCCCTTCGAGACCAAACCCGACTTCCTGCCGGTGGAAAAGGCCTTCGTCTTTACCTCCGAACGCCTGGACTCGGGTGAGACCCAGTTGTTCTGGCAGATCGCCGACGGTTACTACCTGTATCAGCAACGGCTCAAATTCGACGGCCTGGCCGACGCGCAGAAGCCCAGGCTGCCCGAGGGCGAAGCTCACAGCGATGAGTTCTTCGGCGACCAGCAAGTCTATCGCCAGGCACTGGAGCTGAAGATTCCCGCCGGGGCCACCGGCAAGATCAAGGTCGGTTTCCAGGGTTGTGCCGACGCGGGCCTCTGCTATCCGCCCCAGACCCAGGTGGTCGACCTGGGCGGCGACGCACCGGCCACGGCCAGTGGCGAGGCGCAGGACCAGGCCCTGGCCAGCGGCCTGCAACAGCGCGCGCTGGGCTGGAGCCTGCTGGTGTTCTTCGGCCTGGGGCTGCTGCTGGCGTTTACCCCGTGCTCGCTGCCGATGCTGCCGATCCTGGCGGGGCTGGTGGTGGGCAGCGGCGCCGGGCCCCGGCGCGGCCTGGCACTGGCCGGCAGTTATGTCATCAGCATGGCGCTGGTGTACGCCGCCATGGGCGTGCTTGCTGCGCTGTTGGGCGCCAATCTTCAGGCATTGCTCCAGCAACCCTGGCTGCTGGGCACTTTCGCCGCGGTATTCGTGGTGTTGGCGCTGCCGATGTTCGGTTTCTTCGAACTGCAACTGCCGGCCGCTCTGCGTGATCGATTGGAAAATGCCGGCCGCCAGCGCCGCGGCGGCAGCCTGGTGGGCGCGGGCGTTCTCGGGGCGTTGTCCGGCCTGCTGGTCGGCCCCTGCATGACCGCGCCCCTGGCCGGCGCGCTGCTGTACATCGCCCAGAGCGGCAACGCGCTGCATGGCGGGTTGATCCTGTTCACCATGGGTGTCGGCATGGGTCTGCCGCTGTTGCTGCTGGTGACGGTGGGCAATCGCTTCCTGCCCAAGCCCGGCGCCTGGATGAATCTGCTCAAGGGCGTGTTCGGTTTCCTGTTCCTGGGCACCGCGCTGCTGATGCTCCGCCCGGTCATCGATGGCTCATTGTGGATCGGACTGTGGGGCGCGTTACTGGTTGTCGCCGCCTATTGCGCCTGGCGCCAGACCCAGGGCTTCGGTCGCGCCGCCTATCTGTGGGGCAGCGTATCGCTGCTGTTCGGCCTGTGGGGTAGCGTGCTGGTGATTGGCGCGGCGGGCGGCAGCGACGATCTGTTCAGGCCGCTGCAGGTCTACAGCGGCGCCAGGGGCAGCGCCACCGTCAGCGCCCACGATGCCTTCGTCACGGTCAGCGAGCCCGCCGCCCTGCAGCGCGAACTGGACGCCGCCAAGGCGCAGGGCCAATGGGTGTTGCTCGATTACTACGCCGACTGGTGCGTGTCCTGCAAGATCATGGAAAAACAGGTGTTCGGCCGCGTCGAAGTGCTCGACGCCCTGAAAGGCGTGCGCCTGCTACGCCTGGACGTCACCGCTGACAACGCCGCCAGCCGTGAGCTGCTGGGTCGCTACAAAGTGCCGGGGCCGCCGAGCCTGTTGTGGATCGGTGCCGACGGTGAAGAGCGCCGCAGCCAGCGGATCACCGGAGAAGTGGACGCCGAGGCGTTCCTGGAACGTTGGAACATGACCCGGAACGCACGCTGAMRRLFLLCLLLISGLAQAANPFETKPDFLPVEKAFVFTSERLDSGETQLFWQIADGYYLYQQRLKFDGLADAQKPRLPEGEAHSDEFFGDQQVYRQALELKIPAGATGKIKVGFQGCADAGLCYPPQTQVVDLGGDAPATASGEAQDQALASGLQQRALGWSLLVFFGLGLLLAFTPCSLPMLPILAGLVVGSGAGPRRGLALAGSYVISMALVYAAMGVLAALLGANLQALLQQPWLLGTFAAVFVVLALPMFGFFELQLPAALRDRLENAGRQRRGGSLVGAGVLGALSGLLVGPCMTAPLAGALLYIAQSGNALHGGLILFTMGVGMGLPLLLLVTVGNRFLPKPGAWMNLLKGVFGFLFLGTALLMLRPVIDGSLWIGLWGALLVVAAYCAWRQTQGFGRAAYLWGSVSLLFGLWGSVLVIGAAGGSDDLFRPLQVYSGARGSATVSAHDAFVTVSEPAALQRELDAAKAQGQWVLLDYYADWCVSCKIMEKQVFGRVEVLDALKGVRLLRLDVTADNAASRELLGRYKVPGPPSLLWIGADGEERRSQRITGEVDAEAFLERWNMTRNARNANANANANA
D1-35_00754681qseB_1Transcriptional regulatory protein QseBATGCGCGTACTGGTCTGCGAAGACGACGAGTTGATCGCCAGCGGCATTGTCGCCGGGCTCACGGCTCAAGGCCTGACCGTCGAACATGTCGCCACCGCCTCGGCGGCGCGGGCGATGCTGGGTGTCGCCGAATTCGATGTCATGGTGCTGGATCTTGGCCTGCCCGATGAAGATGGTCTCAAGCTGCTCAAGCAATTGCGCCAGCAAGGCCTGGAGACGCCGGTGCTGATCCTCACCGCGCGGGATTCGGTGACCGATCGGGTCGACGGCCTGCAGGCCGGGGCCGATGATTATCTGCTCAAACCCTTCGATCTGCGGGAACTGGCGGCACGCCTGCACACCTTGCTGCGGCGCGTGGCGGGGCGCAGCGTCAACCTGATCGAGCACGGTCGCCTGACCTATGACCCCAGCAGCCGCGAAACCACCCTGGGCGGCCAGCCGGTGGACCTCTCGCGCCGCGAGCAGTCGCTGTTGCAGGCGCTGCTGCACAGTCGCGGTCGTGTGTTGTCCACCGAGCAACTCAAGGACAGTGTCTATGGATTCAGTGACGAGCTGGAAAGCAACGCCTTGAACGTGCATATCCACCATCTGCGCCGCAAGCTGGGCAACGGCATTGTCGAGACCGTGCGTGGCCTGGGGTATCGGCTGGGGCCGGCCGATGGCGGGGAATCCTCCAAGTGAMRVLVCEDDELIASGIVAGLTAQGLTVEHVATASAARAMLGVAEFDVMVLDLGLPDEDGLKLLKQLRQQGLETPVLILTARDSVTDRVDGLQAGADDYLLKPFDLRELAARLHTLLRRVAGRSVNLIEHGRLTYDPSSRETTLGGQPVDLSRREQSLLQALLHSRGRVLSTEQLKDSVYGFSDELESNALNVHIHHLRRKLGNGIVETVRGLGYRLGPADGGESSKPGPT0003915_314DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-POLYMYXIN_RESISTANCE,PGPT0003915-pmrA-K07666NANA
D1-35_007551332qseC_1Sensor protein QseCATGAGCCTGCGGCTACGGCTGAGCCTGACGCTCGGCGCGGCCTTTACCTTGATCTGGGCCCTGGCCGCGGCCTGGATGCTCAGCGACCTGCGCAACCAGATGATGTTTTCCCTCGACCAGCGCCTGGTGGCTTCGGCGCGGATGGTCGCCGGGTTGCTGGAGCAGTTGCCACCGGTGCCCAGCAAAGGTGAAGGCACGCACTTGAGCTCGGAGCAGTTGAGCATCCCGGGCGGCATGGCCTGCCAGGTCAGTTCCTTGCGCGGCGAGATCCTGGCACGCAGCCACGGTAACCCGGAACAGGCCCTGGAAGCCGAGAAGACAGGCTTCCATGACCAGATGATCGACGGTGCGCCATGGCGCAGCTTTACCCTGGTTCGAGGCGATTTGCGCATTACCACGGCCGACCGCCAGATCGAACGCGAAGCGTTGAACCTGTCGGTGCTGCTGGCAGCGTCGGTGCCGGTCGGCGTGGCGTTGCTCGGTTGCCTGTGCTTGTTGTGGCTGGGCATCGGCCAGGGCCTGGCGCCGCTCAACCGCATGCGTGATGCGTTGATGCGCCGTAACGCGGACTCCCTCGAACCCCTGCAGATCCATCCGCTGCCCAGCGAGCTGCGGCCCTTGCTGGAAACCCAGAACCAGCTGTTCCAGCGTATCGGCAAGACCATCGAGCGCGAGCGCCGGTTGACCGGTGACGCTGCCCATGAATTGCGCAGCCCGCTGACGGCCATCAAGACGCATCTGCAAGTGGCGCGCATGACCGAGGGGGCTGCGCGCGATCAGTCCTTGGCCCGGGCAGAGGAGGGCGCCGACCGCTTGCACCGTACCCTTGAGCAACTGTTGCTGCTGGCGCGGGTCGAGGGCAGCCTTTCGTTTGATGATGGCGTGCAATGCAACGCCGAGCAGGTCGCGCGACTGGCGATCCAGGATGCGGCCGGCGGCGCGCCCCAGCGGATCAGGCTGCACCTATCGCCGCCGCTGTCCGATGCGCCGGTGCAAATGCCGGCGGTGCTGGCTATCGCCGCGTTGCGCAACCTGCTGGAGAACGCCCTGCGCCACACCCCGGCCGATACCGAGGTCGAACTGAGCCTGGAGATGATCGGCCAGCGCGTGCGTTTCCTGGTACGTGATCATGGCGACGGAATCGCCGCCGACGATATCCAGCACCTGACCCAGCGTTTCTGGCGCAACGGCCACAGCACCGGCTGCGGTCTGGGCCTGGCGATCGTCCAGGCGATCGTCCAGCGTTGCGGCTGCGGTCTGCATTTCGATAGCCGCCCGGATGGGCTGCGGGTCGAGCTGACCGTGCCAGTGCAAGTCTCTTCGGGCCAGTAGMSLRLRLSLTLGAAFTLIWALAAAWMLSDLRNQMMFSLDQRLVASARMVAGLLEQLPPVPSKGEGTHLSSEQLSIPGGMACQVSSLRGEILARSHGNPEQALEAEKTGFHDQMIDGAPWRSFTLVRGDLRITTADRQIEREALNLSVLLAASVPVGVALLGCLCLLWLGIGQGLAPLNRMRDALMRRNADSLEPLQIHPLPSELRPLLETQNQLFQRIGKTIERERRLTGDAAHELRSPLTAIKTHLQVARMTEGAARDQSLARAEEGADRLHRTLEQLLLLARVEGSLSFDDGVQCNAEQVARLAIQDAAGGAPQRIRLHLSPPLSDAPVQMPAVLAIAALRNLLENALRHTPADTEVELSLEMIGQRVRFLVRDHGDGIAADDIQHLTQRFWRNGHSTGCGLGLAIVQAIVQRCGCGLHFDSRPDGLRVELTVPVQVSSGQPGPT0003920_1085DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-POLYMYXIN_RESISTANCE,PGPT0003920-pmrB-K07645NANA
D1-35_007561476dat_1COG0160Diaminobutyrate--2-oxoglutarate aminotransferaseATGTGCGCCTTGAATGCGCACCTGTCCGGTGTGCCGTTTGGTCACTCATCGCGGGGTCGAGAAATGTCAGTCGCCAATCCTTCTGTCGAAGCAGCGCCAGCGCGGGTCAGTCCCGCGTCGGGCGAGACGCTCTATCAATTCAACGAATCACCGTTGCTGGCCCGCCAGAGCCGGCAGGAATCCAATGCTCGCAGCTATCCACGGCGGATTCCCCTGGCCCTCAAGCGCGCCAAGGGCCTTTACGTCGAGGATGTCGAAGGCCGCACCTTCATCGATTGCCTGGCCGGCGCCGGCACGCTGGCCCTCGGGCACAACCACCCGGTCGTGATCGAGGCGATCCGGCAGGTGCTCGCCGACGAGTTGCCCCTGCATACCCTGGACCTGACCACGCCGGTCAAGGACCGGTTTGTCCAGGACCTGTTCGGCCTGTTGCCGGCGAGCCTCGCCGCCGAGGCGAAGATCCAGTTCTGCGGCCCCACGGGGACCGACGCGGTGGAAGCGGCACTCAAATTGGTGCGCACCGCCACCGGGCGTAGCACCGTACTGTCGTTCCAGGGCGGATATCACGGCATGAGCCAGGGCGCGCTGAGCCTGATGGGCAGCCTGGGGCCGAAGAAGCCTTTGGGGGCATTGCTAAGCAACGGCGTGCAGTTCATGCCATACCCCTACGATTATCGCTGCCCGTTCGGGCTCGGTGGCGTCGAAGGGGTCAAGGCCAATCTGCATTACCTGGAAAATCTGCTGAACGATCCCGAGGCCGGGGTGCAGTTACCGGCGGCGGTGATCGTCGAGGTGGTGCAGGGCGAGGGCGGGGTCATACCGGCCGATCTTGATTGGCTGCGCGGCTTGCGGCGAATCACCGAGCAGGCCGGGGTGGCGTTGATCGTCGATGAAATCCAGAGTGGTTTCGGTCGCACCGGCAAGATGTTCGCGTTCGAGCACGCCGGCATCATTCCGGATGTGGTGGTGCTGTCCAAGGCCATCGGCGGCAGCCTGCCACTGGCCGTGGTGGTGTATCGCGATTGGCTCGACACCTGGTTGCCGGGCGCCCATGCCGGGACCTTCCGCGGTAACCAGATGGCGATGGCGGCGGGCAGCGCGGTGATGCGCTACCTGGTCGAACACAACCTGCCGGCCCACGCCGCCGCCATGGGCGCGCGCTTGAGCGAGCACCTGCATATCCTGCAGAGGGATTTTCCGCAATTGGGCGACATCCGCGGTCGCGGCCTGATGCTCGGCGTCGAGCTGGTGGACCCGACCGGCAAGCCGGACGCCTTGGGCCATCCTCCGGTGGACGCACGGCTGGCGCCGCGGTTGCAGCGTGAATGCCTCAAGCGCGGCCTGATCCTGGAACTGGGTGGACGGCAGGGTGGCGTGGTGCGTTTCCTGCCGCCACTGATCATTACCGCGGTGGAAATCGACCGTGTGGCCGAGCTGTTCCGGCGCGCCCTGGAGGCTGCCGTGGCCGACGCCTAAMCALNAHLSGVPFGHSSRGREMSVANPSVEAAPARVSPASGETLYQFNESPLLARQSRQESNARSYPRRIPLALKRAKGLYVEDVEGRTFIDCLAGAGTLALGHNHPVVIEAIRQVLADELPLHTLDLTTPVKDRFVQDLFGLLPASLAAEAKIQFCGPTGTDAVEAALKLVRTATGRSTVLSFQGGYHGMSQGALSLMGSLGPKKPLGALLSNGVQFMPYPYDYRCPFGLGGVEGVKANLHYLENLLNDPEAGVQLPAAVIVEVVQGEGGVIPADLDWLRGLRRITEQAGVALIVDEIQSGFGRTGKMFAFEHAGIIPDVVVLSKAIGGSLPLAVVVYRDWLDTWLPGAHAGTFRGNQMAMAAGSAVMRYLVEHNLPAHAAAMGARLSEHLHILQRDFPQLGDIRGRGLMLGVELVDPTGKPDALGHPPVDARLAPRLQRECLKRGLILELGGRQGGVVRFLPPLIITAVEIDRVAELFRRALEAAVADAPGPT0014050_202DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014050-ectB|dat-K00836NANA
D1-35_00757228mbtH_1COG3251Protein MbtHATGACTTCAGTATTCGACCGCGAGGACATCCTCTTCCAGGTCGTGGTCAACCACGAAGAGCAGTATTCGATCTGGCCGGACTACAAGGCCGTTCCGGAAGGTTGGCGGACCGTGGGCAAGAGCGGCTTCAAGAAGGAGTGCCTGGCCTACATCGAAGAGGTCTGGACCGACATGCGCCCGTTGAGCTTGCGCAAGAAGATGGAAGAGCAGGCGACTGTGGCCCATTGAMTSVFDREDILFQVVVNHEEQYSIWPDYKAVPEGWRTVGKSGFKKECLAYIEEVWTDMRPLSLRKKMEEQATVAHPGPT0003370_333DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-NOCARDICIN_A-D_METABOLISM,PGPT0003370-mbtH|nocI-K05375NANA
D1-35_00758819ppsRCOG1806Phosphoenolpyruvate synthase regulatory proteinATGAAACGATCCGCTTTCTTTATCTCCGACGGCACCGGCATCACGGCCGAAACGCTGGGCCAGAGCCTGTTGGCGCAGTTCGAAAACATAACCTTCACCAAGCTGACACGGCCGTATATAGACAGCGTCGACAAGGCGCGGGCCATGGTACAGCAAATCAATAAAGCCGCCGAAACCGACGGTTTTCGCCCGATCATCTTCGATACCATCGTCAATCAGGACATCCGTGAGATTCTCGCAACGTCCAATGGTTTCATGATCGACATTTTTTCCACGTTCCTGGCGCCCCTGGAGCAGGAACTGAGCGAACACTCCTCCTACTCGGTCGGCAAGTCCCATTCCATTGGCCACAACTCCAACTACATGGAGCGGATCGAGGCGGTCAACTTCGCCCTGGACAACGACGACGGCGCCCGCACGCATTATTACGACAAGGCCGATTTGATCCTAGTGGGTGTGTCGCGCTGTGGTAAGACGCCGACGTGTCTGTACATGGCGATGCAATTTGGGATCCGCGCGGCCAACTATCCGCTGACCGAAGACGACATGGAGCGGTTGCAACTGCCCAACGCCTTGCGCGCCCATCAGCACAAGCTGTTCGGCCTGACCATCGACCCGGACCGCCTCACCGCGATTCGCAACGAGCGCAAGCCCAACAGCCGCTATTCGAGCTATGCCCAGTGCGAATTCGAAGTGCGCGAAGTGGAAAACCTGTTCCGGCGGGAGAATATTCCCCACATCAACTCCACGCATTTTTCCGTGGAGGAGATTTCGGCGAAGATCCTGGTGGAGAAAGGGGTGGAGCGGCGGTTCAAGTAAMKRSAFFISDGTGITAETLGQSLLAQFENITFTKLTRPYIDSVDKARAMVQQINKAAETDGFRPIIFDTIVNQDIREILATSNGFMIDIFSTFLAPLEQELSEHSSYSVGKSHSIGHNSNYMERIEAVNFALDNDDGARTHYYDKADLILVGVSRCGKTPTCLYMAMQFGIRAANYPLTEDDMERLQLPNALRAHQHKLFGLTIDPDRLTAIRNERKPNSRYSSYAQCEFEVREVENLFRRENIPHINSTHFSVEEISAKILVEKGVERRFKNANANANANA
D1-35_007592412ppsAPhosphoenolpyruvate synthaseTTGAGCTTTTCCAACACAGTCAGTGGAGAGATCACCTTGGTAGAGTACGTAGTTTCCCTCGATAAGCTCGGCGTCCATGATGTAGAGCATGTGGGGGGCAAGAACGCATCCCTGGGCGAGATGATCAGTAACCTCGCCGGCGCCGGTGTCTCGGTGCCAGGTGGCTTCGCCACGACCGCCCAGGCATATCGTGATTTCCTGGAACTGAGCGGCCTGAACCAGCAGATCCACGATGCGCTCGACGCCCTCGACGTCGATGACGTCAATGCCCTGGCCAGGACCGGCGCCCAGATCCGCCAATGGATCATGGAAGCCGAGTTCCCCGAGAAACTCAACGCCGAGATCCGTACTGCTTTCGCCAAGCTGTCCGAAGGCAATCCCGACATCGCCGTCGCCGTCCGCTCCTCGGCCACCGCTGAAGACCTGCCGGACGCCTCGTTCGCCGGTCAGCAGGAGACCTTCCTGAACATCCGTGGCGTGGAAAACGTCATCCGGGCGGCCAAGGAAGTCTTCGCCTCCCTCTTCAACGACCGCGCCATTTCCTACCGCGTGCACCAGGGCTTCGACCACAAGCTGGTCGCCCTGTCCGCCGGCGTGCAGCGCATGGTCCGCTCCGAAACCGGCACCGCCGGTGTGATGTTCACCCTCGACACCGAGTCGGGCTTTCGTGACGTGGTGTTCATCACCGGCGCCTACGGCCTGGGCGAAACCGTCGTGCAGGGCGCGGTGAACCCGGACGAATTTTATGTCCACAAAGGCACCCTGGAAGCCGGCCGCCCCGCCATCCTGCGTCGCAACCTCGGCAGCAAGGCGATCAAGATGATCTACGGCGACGAGGCCAAGGCTGGTCGCTCGGTCAAGACCGTCGAGGTGGACAAGGCTGATCGCGCGCGCTTCTGCCTGACCGACGCCGAAGTCAGTGAACTGGCCAAGCAGGCGATGACCATCGAGAAACACTACAAGTGCCCGATGGACATCGAGTGGGCCAAGGACGGTGACGACGGCAAGCTGTACATCGTCCAGGCCCGCCCGGAAACCGTGAAGAGCCGCACCCAGGCCAACGTCATGGAGCGCTACCTGCTCAAGGAAACCGGCACCGTGCTGGTGGAAGGCCGGGCCATCGGCCAACGCATTGGCGCGGGCAAGGTGCGGATCATCAAGGACGTCTCGGAGATGGACAAGGTCCAGGCCGGCGACGTACTGGTTTCCGACATGACCGATCCGGACTGGGAACCGGTCATGAAGCGCGCCAGCGCCATCGTCACCAATCGCGGCGGGCGTACCTGCCACGCGGCAATCATTGCCCGTGAGCTGGGCATCCCGGCGGTTGTTGGTTGCGGCAACGCCACCCAATTGCTCAAGGACGGCCAGGGCGTCACCGTTTCCTGCGCCGAAGGCGATACCGGCTACATCTTCGAAGGCGAGCTGGGCTTCGACATCAAGAAGAACTCCGTGGACGCGATGCCGGAGCTGCCGTTCAAGATCATGATGAACGTCGGCAACCCGGACCGCGCCTTCGACTTCGCGCAGTTGCCGAATGCCGGCGTGGGCTTGGCCCGCCTGGAATTCATCATCAACCGCATGATCGGCGTGCACCCCAAGGCGCTGCTGAACTACGACGGCCTGCCGCAGGAAATCAAGGACAGCGTCGACAAGCGCATTGCCGGCTACGACGATCCGGTCGGTTTCTACGTCGAGAAGCTGGTGGAAGGCATCAGCACCCTGGCGGCGGCGTTCTCGCCGAAAAAAGTCATCGTGCGCCTGTCGGACTTCAAGTCCAACGAGTACGCCAACCTGATCGGCGGCAAGCTCTACGAGCCGGAAGAAGAGAACCCGATGCTGGGCTTCCGCGGAGCTTCGCGCTACATCAGCGAGTCGTTCCGTGACTGCTTCGAGCTCGAATGCCGGGCTCTGAAGCGCGTGCGTAACGAGATGGGCCTGACCAACGTCGAGATCATGGTGCCGTTCGTGCGCACCCTCGGCGAAGCGAGCCAGGTGGTCGACCTGCTGGCGGAAAACGGCCTGGCCCGTGGCGAAAACGGCTTGCGCGTGATCATGATGTGCGAGCTGCCATCCAACGCGATCCTGGCCGAAGAGTTCCTTGAGTTCTTCGACGGCTTCTCCATTGGTTCCAACGACCTGACCCAGTTGACCCTGGGCCTGGACCGCGACTCCGGGATCATCGCCCACCTGTTCGACGAGCGTAACCCGGCGGTCAAGAAGCTGCTGGCCAATGCGATTGCCGCCTGTAACAAGGCCGGTAAATACATCGGCATCTGCGGCCAGGGCCCTTCCGACCACCCGGATCTGGCCAAGTGGCTGATGGAGCAGGGCATCGAGAGCGTTTCGTTGAACCCGGACTCCGTGCTGGAAACCTGGTTCTTCCTGGCTGAGGGTCAGGCTGCGGTCTGAMSFSNTVSGEITLVEYVVSLDKLGVHDVEHVGGKNASLGEMISNLAGAGVSVPGGFATTAQAYRDFLELSGLNQQIHDALDALDVDDVNALARTGAQIRQWIMEAEFPEKLNAEIRTAFAKLSEGNPDIAVAVRSSATAEDLPDASFAGQQETFLNIRGVENVIRAAKEVFASLFNDRAISYRVHQGFDHKLVALSAGVQRMVRSETGTAGVMFTLDTESGFRDVVFITGAYGLGETVVQGAVNPDEFYVHKGTLEAGRPAILRRNLGSKAIKMIYGDEAKAGRSVKTVEVDKADRARFCLTDAEVSELAKQAMTIEKHYKCPMDIEWAKDGDDGKLYIVQARPETVKSRTQANVMERYLLKETGTVLVEGRAIGQRIGAGKVRIIKDVSEMDKVQAGDVLVSDMTDPDWEPVMKRASAIVTNRGGRTCHAAIIARELGIPAVVGCGNATQLLKDGQGVTVSCAEGDTGYIFEGELGFDIKKNSVDAMPELPFKIMMNVGNPDRAFDFAQLPNAGVGLARLEFIINRMIGVHPKALLNYDGLPQEIKDSVDKRIAGYDDPVGFYVEKLVEGISTLAAAFSPKKVIVRLSDFKSNEYANLIGGKLYEPEEENPMLGFRGASRYISESFRDCFELECRALKRVRNEMGLTNVEIMVPFVRTLGEASQVVDLLAENGLARGENGLRVIMMCELPSNAILAEEFLEFFDGFSIGSNDLTQLTLGLDRDSGIIAHLFDERNPAVKKLLANAIAACNKAGKYIGICGQGPSDHPDLAKWLMEQGIESVSLNPDSVLETWFFLAEGQAAVPGPT0002035_1755DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0002035-pps|ppsA-K01007NANA
D1-35_00760990hypothetical proteinATGCAAAGCAGCAGCAACCTATTTCCTGTCGCCCTGATCAGCGCCGAGCGGCGCGGTGATCTGAGCGAAGATGTGTATCGCCTGAAACCTGGCAACAGCCCGGACTACAGCGTCGAAGTGGCCGTTACCCGCCTGGGCATGGCCGATGCCGGCGAGGTCCGTGGTGTTCCGGTGATCCTGCTCCACGGCAGTTTTTCCAACCGGCGCTTCTGGTATTCGCCCAAGGGCCTGGGGCTGGGAGCGTACCTGGTGCGCCTGGGGTTCGATGTCTGGATTCCCGAGATGCGTGGCCATGGGTTATCCCAGCGCAACCAGGGCTACCGCAATAACCGGGTCGCGGACTATGCCCGTTACGACTTGCCAGCCATCGGCGCTTTTGTGCGCGAGCAAAGCGGGCAAGTGCCCCACTGGATTGGCCATTCGCTGGGTGGCATCACCCTGGCGGCAGCGTTGGGCGGCCATTACCTGGGCGAGCCCGCCGTGGCGTCGGCGGCGTTTTTCGGCACTCAGGTCAGCCGCACTTACTGGCCCTTGAAAATCCCCCCGGTGGAGTGGAGCGGGCGCTTCATTCTCAAGCGTTTTTCCCAATTGTCCGGCCCAAGGCTCAAGCGCGGCCCGGAAGACGAGCCTATCGGCCTGGCCCTGGAGAGCATGCGCTGGTATGGCCTGTTCGGGCGTTTCGGCGATGCCGAGAAGAACTGGTGGGCCGGCCTGGCGGACGTGCAAGTGCCGGTACTGGCGGTGAGTGCCGCCGGCGATCAGCAGGATCCGACCTGGGCGTGTCGAAAACTTTTCGAGCAGATCGGTTCCGAGCGCAAGCAGTTTGTCTGCCTGGGCCGGGCGCAGGGCTTCGGTGATGATTACGGCCATGTCGAAATGCTTGTCAGCAAAGCCGCGCAAGCCGAGGTCTGGCCGCTGGTGGCGCGCTGGCTGGAAGATCAGCGCGCGCCGCTGTCGGCAGACCAGCCTCGCCTGGCCGAAGCGGTTTGAMQSSSNLFPVALISAERRGDLSEDVYRLKPGNSPDYSVEVAVTRLGMADAGEVRGVPVILLHGSFSNRRFWYSPKGLGLGAYLVRLGFDVWIPEMRGHGLSQRNQGYRNNRVADYARYDLPAIGAFVREQSGQVPHWIGHSLGGITLAAALGGHYLGEPAVASAAFFGTQVSRTYWPLKIPPVEWSGRFILKRFSQLSGPRLKRGPEDEPIGLALESMRWYGLFGRFGDAEKNWWAGLADVQVPVLAVSAAGDQQDPTWACRKLFEQIGSERKQFVCLGRAQGFGDDYGHVEMLVSKAAQAEVWPLVARWLEDQRAPLSADQPRLAEAVNANANANANA
D1-35_00761492COG0684Putative 4-hydroxy-4-methyl-2-oxoglutarate aldolaseATGAACCATTACCTCACGCCCGACCTGTGCGATACCTACCCGGACCTGGTGCAGGTGTTGGAACCGATGTTCAGCAATTTCGGTGGCCGCGACTCCTTTGGTGGTGAAATCGTGACCATCAAGTGCTTCGAAGACAATTCGCTGGTCAAGGAGCAGGTTGAGCTCGAAGGCAAGGGCAAAGTGCTGGTCGTCGACGGTGGCGGGTCGCTGCGGCGGGCCCTGTTGGGTGACATGCTGGCCGAGAAAGCGGCGAAGAATGGCTGGGAAGGGCTGGTGATCTACGGCTGCATCCGCGATGTCGACGTCATTGCCCAGACCGACCTCGGGGTCCAGGCCCTGGCCAGCCACCCGATGAAAACCGACAAGCGCGGCATTGGTGATCTTAATGTACCGGTGACCTTCGCTGGCGTGACGTTTCGCCCGGGCGAGTATGTCTATGCGGACAACAACGGCGTGATTGTTTCGCCGAGCCCGCTGAAAATGCCTGAATGAMNHYLTPDLCDTYPDLVQVLEPMFSNFGGRDSFGGEIVTIKCFEDNSLVKEQVELEGKGKVLVVDGGGSLRRALLGDMLAEKAAKNGWEGLVIYGCIRDVDVIAQTDLGVQALASHPMKTDKRGIGDLNVPVTFAGVTFRPGEYVYADNNGVIVSPSPLKMPENANANANANA
D1-35_00762996zntB_2COG0598Zinc transport protein ZntBATGTTCGAGGAAGAAAACGCGCAGTGGGGATTGGTGCATGCCCTGGTGCTGGATGGTAAAGGCGGCGCGCGTTCGATAGCCCGGACCGAACTGGACGACTTGCAGTTGCAGGCTCATGAAAGCCTGTGGCTGCATTGGGACCGCAGTCATCCGCAAACCCACACGTGGTTGCGCAAATCCAGCGGCCTGAGCGAATTCAATTGCGACCTGCTGCTGGAAGAGAACACCCGGCCGCGCCTGCTGCCGCTGCCCAATGCCGAGCTGCTGCTGTTTCTTCGCGGGATCAACCTCAACCCGGGCGCGGAACCGGAAGACATGGTCTCGGTGCGCATCTTCGCCTCGGCCCAGCGGGTGATTTCCCTGCGGTTGCGCCCGTTGCGCGCCACCGATGAGTTGCTGGCGGAACTGGCCGAGGGCAAGGGGCCCAAGACGGCTTCGGAACTCATCCTTTATATGGCGCAATACCTGACCAACAAAGTCCAGGACCTGGTCACCTGTCTCTCGGAAATCGTCGACGGCGAGGAAGAAAAACTCGATACCGACGAACGGTACACTCCCGAGCACGACGCCATTTTGCATATCCGTCGAAGGGCGGCCGGACTGAAGCGATTCCTGGCCCCGCAGCGGGATATCTTCGGCCAGATGTCACGGATCAAATTGCCCTGGTTCGTCGAGGACGACGGCGACTACTGGAATGAATTGAACAACAGCCTGACCCGTTACCTGGAAGAGCTGGAATTGACCCGGGAGCGCGTGGGGCTTGTGCTGGAGGCCGAGGACCGGCGTCTTTCGGTGCGCATGAACCGTACGATGTATCGCTTCGGCATCATCACCGGCATCTTCCTGCCGATGAGCTTTCTCACCGGGCTGCTGGGGATCAATGTCGGCGGCATTCCGTTTTCGGAAAGCCCCTATGGTTTCCTCGTTGCCTGCCTGTTGATGCTGTGCGTGGCCCTGGGGCAGTGGTGGCTGTTTCGCCGTTTGCGCTGGGTGTGAMFEEENAQWGLVHALVLDGKGGARSIARTELDDLQLQAHESLWLHWDRSHPQTHTWLRKSSGLSEFNCDLLLEENTRPRLLPLPNAELLLFLRGINLNPGAEPEDMVSVRIFASAQRVISLRLRPLRATDELLAELAEGKGPKTASELILYMAQYLTNKVQDLVTCLSEIVDGEEEKLDTDERYTPEHDAILHIRRRAAGLKRFLAPQRDIFGQMSRIKLPWFVEDDGDYWNELNNSLTRYLEELELTRERVGLVLEAEDRRLSVRMNRTMYRFGIITGIFLPMSFLTGLLGINVGGIPFSESPYGFLVACLLMLCVALGQWWLFRRLRWVPGPT0004205_449DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ZINK_RESISTANCEZINK_RESISTANCE-ZNT_TRANSPORT_SYSTEM,PGPT0004205-zntB-K16074NANA
D1-35_00763246hypothetical proteinATGCACGATCCGTTTGAACAGTCTCTGCGCGACATGCTCAAGGCTTCGCCGTCCAGCCGGGACGACGACGCATGCCTGGGACGCGTACTCAAAACCGCCAACCGTCAGGTTGGCGCCGGTGATCTTTTCAGCCTGCTGGGCCGCTGGCTGCCCGCGCTGATGATCGCCCTGAACAACGGGTCGGCCCATGTCTCGCCGGTCTCCCGTCGCAAACCCGTTACTCGCACCGCTGATAAGGCTGACTGAMHDPFEQSLRDMLKASPSSRDDDACLGRVLKTANRQVGAGDLFSLLGRWLPALMIALNNGSAHVSPVSRRKPVTRTADKADNANANANANA
D1-35_00764825hypothetical proteinATGGAACTTGATCTCTGGACCCAGAGCCTCGTCACGGCAATGACTGCGTTGTGGACCAAAGTGGCTAACTTCATCCCCAACCTCTTTGGCGCCCTGGTGGTGCTGTTGCTAGGTTTCGTGGTGGCCAAGCTCCTCGACACGCTGCTCTCCAAATTGCTCGCCAAACTTGGCCTCGACCGCCTGATGGGCGGTACCGGCCTGACCAAGTTGCTGTCGCGTGGCGGCATCCAGGTTCCGATCTCGACGCTGGTGGGCAAGATTGTCTACTGGTTCGTCCTGCTTATTTTCCTGGTTTCGGCGGCTGAGTCCCTGGGGCTGGAGCGGGTCTCGGCCACGCTCGACATGCTTGCGCTCTATCTGCCAAAGGTCTTCGGTGCCGCGTTGGTGCTGCTGGTGGGCGTACTGCTGGCGCAACTGGCCAACGGGCTGGTGCGTGGCGCGGCAGAGGGCGTCGGGCTGGATTATGCCTCGGGCGTTGGGCGTATCGCCCAGGGCCTGGTGATCATCATCAGTATTTCGGTTGCGATCAGCCAGTTGGAGGTCAAGACGGACCTGCTCAACCACGTGATCGTGATCGTCCTGATTACCGTTGGTCTGGCAGTCGCGCTGGCAATGGGGTTGGGGAGCCGGGAAATCGCCGGTCAGATTCTTGCGGGAATCTATGTGCGTGAATTGTATGAGGTTGGGCAACAAGTGCGTGTTGGCGAGGTCGAAGGCCAGATCGAAGAGATCGGCACGGTGAAAACCACATTGCTGACCGAGGAGGGCGAACTGGTATCGCTGTCTAATCGGATCCTGCTGGAGCAGCATGTGAGTAGCCGCTAAMELDLWTQSLVTAMTALWTKVANFIPNLFGALVVLLLGFVVAKLLDTLLSKLLAKLGLDRLMGGTGLTKLLSRGGIQVPISTLVGKIVYWFVLLIFLVSAAESLGLERVSATLDMLALYLPKVFGAALVLLVGVLLAQLANGLVRGAAEGVGLDYASGVGRIAQGLVIIISISVAISQLEVKTDLLNHVIVIVLITVGLAVALAMGLGSREIAGQILAGIYVRELYEVGQQVRVGEVEGQIEEIGTVKTTLLTEEGELVSLSNRILLEQHVSSRNANANANANA
D1-35_00765387hypothetical proteinATGTTGAAGGTGCTTTACGGGTTGAAGAACTTCGAGGGGAAATCGAAGTTCAAGACCTGGCTGTACAGCATCACCTACAACGAATGCATCACGCAGTATCGAAAGGAACGGCGAAAGCGTCGCTTGATGGACGCTTTGAGCCTGGACCCCCTCGAGGAAGCGTCTGAAGAAAAGGCGCCCAAGCCCGAGGAAAAGGGTGGGCTCGACCGCTGGCTGGTTTATGTGAACCCGATCGATCGGGAGATTCTGGTGCTACGATTTGTCGCAGAACTGGAATTCCAGGAGATCGCAGACATAATGCATATGGGTTTGAGCGCGACAAAAATGCGTTACAAGCGCGCGCTCGATAAGCTGCGTGAGAAATTTGCAGGCATTGCCGAAACTTAGMLKVLYGLKNFEGKSKFKTWLYSITYNECITQYRKERRKRRLMDALSLDPLEEASEEKAPKPEEKGGLDRWLVYVNPIDREILVLRFVAELEFQEIADIMHMGLSATKMRYKRALDKLREKFAGIAETPGPT0014960_7826DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
D1-35_007661035oprFCOG2885Outer membrane porin FATGAAACTGAAAAACACCTTGGGCTTTGCCATTGGTTCTTTGATTGCTGCCACTTCGTTCGGCGCTCTGGCACAAGGCCAAGGCGCAGTTGAAATCGAAGGCTTCGCCAAGAAAGAAATGTTCGACAGCGCTCGTGATTTCAAGAACAACGGCAACCTGTTTGGCGGTTCGGTTGGTTACTTCCTGACCGACGACGTTGAACTGCGTCTGGCCTACGACGAAGTGCACAACGCACGTACCGACGACGGCACTAACGTCAAGGGCGCCAACACCGCTCTGGACGCTCTGTACCATTTCAACAACCCAGGCGACATGCTGCGTCCTTACGTCTCTGCCGGTTTCTCGGACCAGAGCATCGACCAGAATGGCAGCAACGGTCGTAACCGTTCTACCTTCGCCAACGTTGGTGGCGGCGCCAAGCTGTATTTCACTGACAACTTCTACGCCCGTGCCGGCGTTGAAGCTCAGTACAACATCGACCAGGGCGACACCGAGTGGGCGCCTAGCGTTGGTATCGGTGTGAACTTCGGTGGCGGTTCCAAGCCAGCCGCTGCTCCAGTTCCAGCACCTGCTGAAGTCTGCTCCGACAGCGACAATGATGGCGTGTGCGACAACGTCGACAAGTGCCCTGACACCCCAGCCAACGTAACCGTTGACGCTGATGGCTGCCCAGCTGTTGCTGAAGTCGTACGTGTTGAGCTGGACGTCAAGTTCGACTTCGACAAGTCGGTCGTTAAAGAAAACAGCTACGGCGACATCAAGAACCTGGCTGATTTCATGAAGCAGTACCCATCCACCAGCACCACTGTTGAAGGTCACACTGACTCCGTCGGTCCTGACGCTTACAACCAGAAGCTGTCCGAGCGTCGTGCAAACGCCGTCAAGCAGGTTCTGACCAACCAGTACGGTGTTGAATCGTCCCGCGTTCAGTCTGTTGGCTACGGCGAATCCCGCCCAGTTGCTGACAACGCCACTGAAGCTGGTCGTGCAGTTAACCGTCGCGTAGAAGCGCAGGTTGAAGCCCAAGCTAAGTAAMKLKNTLGFAIGSLIAATSFGALAQGQGAVEIEGFAKKEMFDSARDFKNNGNLFGGSVGYFLTDDVELRLAYDEVHNARTDDGTNVKGANTALDALYHFNNPGDMLRPYVSAGFSDQSIDQNGSNGRNRSTFANVGGGAKLYFTDNFYARAGVEAQYNIDQGDTEWAPSVGIGVNFGGGSKPAAAPVPAPAEVCSDSDNDGVCDNVDKCPDTPANVTVDADGCPAVAEVVRVELDVKFDFDKSVVKENSYGDIKNLADFMKQYPSTSTTVEGHTDSVGPDAYNQKLSERRANAVKQVLTNQYGVESSRVQSVGYGESRPVADNATEAGRAVNRRVEAQVEAQAKPGPT0022215_2982DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-SURFACE_ATTACHMENTSURFACE_ADHESIONOTHER_SURFACE_ADHESION_PROTEINS,PGPT0022215-ompA_ompF_porin|oprF-K03286NANA
D1-35_00768756sumTCOG0007Uroporphyrinogen-III C-methyltransferaseATGAACGCAAAAGTCTGGCTGGTAGGTGCGGGTCCTGGCGACCCTGAATTGCTGACCCTCAAAGCCGTGCGCGCCCTGGCCGAGGCCGACGTGGTGTTGATCGACGACCTGGTCAACGACGCGGTGCTGGAGCACTGCCCCAGTGCGCGCATCATCGCCGTCGGCAAGCGCGGCGGCTGCCGCTCCACTCCCCAGGCGTTCATCCACCGGCTGATGTTGCGTTATGCCCGCCAAGGCAAATGCGTGGTGCGCCTCAAAGGCGGCGACCCGTGCATCTTCGGCCGGGGCGGTGAAGAAGCACAGTGGCTGCGCGAGCACGGCGTCGAGGTGGAGCTGGTCAATGGCATCACCGCCGGTCTTGCCGGCGCGACCCAGTGCGACATCCCACTGACCCTGCGCGGGGTTGCCCGGGGCGTGACCTTGGTAACGGCTCACACCCAGGACGGCAGCAGCCTGAACTGGCAAGCCCTGGCGCAAAGCGGCACGACCTTGGTGGTGTACATGGGCGTGGCGAAACTGAGCGAGATCCGCGAGCAACTGCTGGCCGGCGGACTGGCAGCGGACACGCCGGTAGCGATGATCGAAAACGCCTCCCTGCCCCATCAACGTGACTGCCGCAGCGACCTGGCCTCGATGGAGACCGATGCCGTCGCGTTTCAACTCAAGAGCCCGGCGATCCTGGTGATTGGCGAGGTGGCCGGTGCAGCCGAACTGGCTGCCTCCCCGCCGGTCTTCGCCCAGGCATCAACCATCTGAMNAKVWLVGAGPGDPELLTLKAVRALAEADVVLIDDLVNDAVLEHCPSARIIAVGKRGGCRSTPQAFIHRLMLRYARQGKCVVRLKGGDPCIFGRGGEEAQWLREHGVEVELVNGITAGLAGATQCDIPLTLRGVARGVTLVTAHTQDGSSLNWQALAQSGTTLVVYMGVAKLSEIREQLLAGGLAADTPVAMIENASLPHQRDCRSDLASMETDAVAFQLKSPAILVIGEVAGAAELAASPPVFAQASTIPGPT0003685_2439DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0003685-sirA|ylnD|cysG|cobA-K02303NANA
D1-35_007692718nasA_1Nitrate reductaseATGAACCGCCAGACGACTGCCTCGACCTGCTGTTATTGCGGGGTCGGTTGCGGCGTGCTGATCGAACATGACGGCGAGCGCATTCTCGGCGTCAGTGGCGATCCCACCCATCCGGCCAACTTCGGCAAACTGTGCAGCAAGGGCTCGACCCTGCACTTGACCGGCGACCTCGCCGCGCGCGCCCTCTATCCCGAACTGCGGCTGGGCAAAGGCCTGGCCCGTGGCCGTACCGATTGGGACAGCGCCCTGGACCATGCCGCCAACGTCTTCGCCGACACGATTGTCGAGCACGGACCGGACAGCGTGGCCTTCTACATCTCCGGCCAACTGCTGACCGAGGATTACTACGCCTTCAACAAACTCGCCCGGGCACTGGTCGGTACCAACAACATCGACAGCAATTCCCGGCTGTGCATGTCTTCCGCCGTGGTGGGCTACAAGCGCAGCCTGGGTGCCGACGCGCCACCGTGCAGCTATGAGGATCTGGAGCTGAGCGACTGCGTGATGATCGTCGGCAGTAACATGGCCTACGCCCATCCCATCCTGTTTCGTCGGCTCGAAGAAGCCAAATCCCGCCGGCCGCAGATGAAAGTCATCGTCATCGACCCTCGGCGCACCGACACCTGCGACCTTGCAGACCTGCACCTGGCGATCCTGCCTGGCACCGATGTCGCCTTGTTCCACGGGATCTTGCATCTGCTGTTGTGGGAAGACTGGGTCGACCGCAGCTTCATCAAGGCCCACACCGAAGGCCTGGCGGACCTGAAGAACCTGGTGCGCGACTACACCCCCGCCATGGTTGCCCAGCTGTGCGGGATCAGCGTCGAGCAACTGCACCAATGCGCCGAGTGGGTCGGCACCTCGCCAAGTTTCCTCTCGTTGTGGTGCATGGGCTTGAACCAGTCGACTGCCGGCAGCGCAAAAAACAGCGCCCTGATCAATCTGCACCTGGCCACCGGCCAGATCGGCCGACCGGGCGCGGGACCGTTCTCGCTGACCGGCCAGCCCAACGCCATGGGCGGCCGCGAAACCGGCAGCCTGTCCAACCTGCTGCCGGGCCATCGCGAAGCCGGCAATCCGGAGCATCGCGCCGAGGTCGCCAGCTATTGGGGCGTTGAGCAATTGCCGAGCACCACAGGCTTGAGCGCCATCGAATTGTTCGAGCAGGTTCGCAGCGGCAAGATCAAGGCCTTGTGGATCGCCTGCACCAACCCGGCCCAGTCGATGCCGGACCAGGCCGCCGTGCGCGAAGCCCTGCAAGCTTGCCCGTTCGTGGTGTTGCAAGAGGCCTTCCGGACTACCGAAACCGCCGCCTTTGCCGACCTGCTGCTGCCGGCGACCAGTTGGGGCGAAAAAGAAGGCTCGGTCACCAACTCCGAACGACGCATTTCCCATGTTCGCCGGGCGATAAACGCACCGGGGGAAGCACGGCCGGACTGGGCGATCACGGTAGATTTCGCGCAACGACTGGAGAAACGCCTGCGCCCCGGCCAGCCCAGCCTGTTCGCCTTTGAAACCCCGGCCCACTTGTTCGATGAATACAAGCAACTGACCCGTGGCCGCGACCTGGACCTGTCCGGCATCAGTCATGCCGTGATCGACCGCCTCGGCCCTCAGCAATGGCCGTTCCCGGAGGGCGCCACGGTCGGAACGGCGCGCTTGTACGGGGACGGGATTTTCCCGACCGACAGCGGCCGCGCCCGATTCGTGGCCGACCCTTATCGCGCCGCCAAGGAATTGCGCGACGCACGCTACCCCCTGACGCTGAACACCGGTCGGCTGCGCGACCAGTGGCACGGGATGAGCCGTACCGGTACCGCCGCGCAGTTGTTCGGCCATGTGAACGAAGCGGTGCTCAGCCTGCATCCCGACGAACTACTGCGGCATCGCCTGCAGTCCGGCGACCTGGTCAGTCTGAAGAGCCGTCGCGGCAGCGTGATCGTGGCCGTGGACAGCGACGACAGCGTGCGCCCCGGCCAGGCCTTCCTGCCCATGCACTGGGGCGACAGGTTTCTCAAGGGCGGGGTCAACACCCTGACTCAACCGGCATTCGACCCGTTGTCGAAACAGCCGGAACTCAAGCACAGCGGCGTACGCCTGGAACCGGTGAACCTGCCCTGGCAGCTTTTCGCCCTGGTTGAAGGCAATGTTCAACAGCATCTGGAGGCGTTGCGTCCGCTGTGTGAGGCGTTTTCCTACGTCAGCCTGAGCCTGACCGGCCGCGACCGTCCCGCGTTGCTGATACGCGCTGCCAGCGCCGTGGCGCCCGAACCGCAGCTTTTGCAGGCGATCGACGAACAGCTGGGGCTGATCGAAGGCCCGGTCCTGGCCTATGACGACCCGCGCCGCGCCATTGGCAAGCGGGTACGGATCGAAAACAGCCGCATCACCGCCATTCGCCTAGCCGGCGAAACCCTGGCCCGGCATTGGTTGCAAAACCTCTGGTTGGAAGGGCGCGCCGACGACCAGTTGCGGCGCTGGCTGCTGGCCCCCTTGAGCGCACCGCCGGGTAACACCGGCGCCGCCACGGCTGGTGGGAAGACGCTGTGCAATTGCATGAATGTCAGCCAGCGTTCGGTTTGCGCGGGCATCGAGCGCGGCCTGGATTTGCAGGGCCTGAAAAAAGAACTGGGCTGCGGCACGCAGTGCGGTTCCTGCGTACCGGAAATCAAGCGCCTGCTGGTTGCCACCGCGCAACCGGTCGCCGCGATCTCGTGAMNRQTTASTCCYCGVGCGVLIEHDGERILGVSGDPTHPANFGKLCSKGSTLHLTGDLAARALYPELRLGKGLARGRTDWDSALDHAANVFADTIVEHGPDSVAFYISGQLLTEDYYAFNKLARALVGTNNIDSNSRLCMSSAVVGYKRSLGADAPPCSYEDLELSDCVMIVGSNMAYAHPILFRRLEEAKSRRPQMKVIVIDPRRTDTCDLADLHLAILPGTDVALFHGILHLLLWEDWVDRSFIKAHTEGLADLKNLVRDYTPAMVAQLCGISVEQLHQCAEWVGTSPSFLSLWCMGLNQSTAGSAKNSALINLHLATGQIGRPGAGPFSLTGQPNAMGGRETGSLSNLLPGHREAGNPEHRAEVASYWGVEQLPSTTGLSAIELFEQVRSGKIKALWIACTNPAQSMPDQAAVREALQACPFVVLQEAFRTTETAAFADLLLPATSWGEKEGSVTNSERRISHVRRAINAPGEARPDWAITVDFAQRLEKRLRPGQPSLFAFETPAHLFDEYKQLTRGRDLDLSGISHAVIDRLGPQQWPFPEGATVGTARLYGDGIFPTDSGRARFVADPYRAAKELRDARYPLTLNTGRLRDQWHGMSRTGTAAQLFGHVNEAVLSLHPDELLRHRLQSGDLVSLKSRRGSVIVAVDSDDSVRPGQAFLPMHWGDRFLKGGVNTLTQPAFDPLSKQPELKHSGVRLEPVNLPWQLFALVEGNVQQHLEALRPLCEAFSYVSLSLTGRDRPALLIRAASAVAPEPQLLQAIDEQLGLIEGPVLAYDDPRRAIGKRVRIENSRITAIRLAGETLARHWLQNLWLEGRADDQLRRWLLAPLSAPPGNTGAATAGGKTLCNCMNVSQRSVCAGIERGLDLQGLKKELGCGTQCGSCVPEIKRLLVATAQPVAAISPGPT0000390_395DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILISATION-OTHER_ACID_METABOLISMSK-SOLUBILISATION-NITRIC_ACID_BIOSYNTHESIS,PGPT0000390-nasA|nasC|narB-K00372NANA
D1-35_00770318hcaC3-phenylpropionate/cinnamic acid dioxygenase ferredoxin subunitATGAACTGGCTGGATATCTGCGCGCTGGAAGACATCAACGCCTTGGGCTCACGCATCATCAACGGGCCGAAAGGCGATATCGCGATTTTTCGCACCAGCGACAATGAAGTATTCGCACTCGACGACCGTTGCCCGCACAAGGGCGGCCCGCTGTCCCAAGGCCTGATCTATGGCAAGCGCGTGGCCTGCCCGCTGCACAACTGGCAGATCGACCTGGAAACCGGCCAGGCCCAGGCCCCGGACGTGGGCTGCGCCCATCATCATTCGGCCCGCGTCGAGAACGGCCGGGTGATGCTGGCCCTGCGGGACGCAAGCTGAMNWLDICALEDINALGSRIINGPKGDIAIFRTSDNEVFALDDRCPHKGGPLSQGLIYGKRVACPLHNWQIDLETGQAQAPDVGCAHHHSARVENGRVMLALRDASPGPT0000455_1976DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000455-nirD-K00363NANA
D1-35_007712454nasD_1COG1251Nitrite reductase [NAD(P)H]ATGAAAAAACTCAAGCTGGTAATGATCGGCAACGGCATGGCCGGGGTTCGCACCCTCGAGGAACTGCTCAAACTGAGCAACGAGCTCTACGACATCACGGTCTTCGGCGCCGAGCCCCACACCAACTACAACCGCATCCTGCTCTCGCCCGTGCTGGCCGGGGAACAGACGTTCGAAGAAATCGTGCTCAATGACCTGAGCTGGTACCTGGACAACAACATCAAGCTGCTGCTCAACCGCAAGGTGGTGGAGATCGACCGGGTCAAGCGCCGGGTCATCGCCGAAGACGGCAGCGAAGCCGAATACGATCGCCTGCTCATCGCCACCGGCTCCACGCCGTTCATCCTGCCAATCCCTGGCAACACTCTGGATGGCGTGATCGGCTACCGCGACATCGCCGACACCCAGGCCATGATCAACACGGCCAAGACCCACAAGCACGCGGTGGTCATCGGTGGCGGCCTGCTCGGCCTGGAAGCCGCCAATGGCTTGAAACTGCGCGGCATGGACGTGACCGTGGTGCACATCGGCGAATGGCTGCTGGAACGCCAACTGGACAAGACCAGCGGCCAGCTGCTGCAAACCGCCCTGGAAAACCGTGGCCTGAAATTCCGCCTCAGCGAGCAGACCCAGGCCTTGCACGACGCCGGCAACGGCCGGGTCGGCTCGGTCCAGTTCAAGAACGGCGACATCATTCCCGCCGATCTGGTGGTGATGGCTGCCGGTATCCGGCCCAATACCGGACTGGCGGAAAAATCCGGCATTCCGTGCAACCGCGGAATCCTCGTCAACGACACGATGCAAACCTATGACCCGCGCATCTACGCCATCGGCGAGTGCGCCAACCATCGCGGCACAGCCTATGGCCTGGTGGCGCCGCTGTTCGAGCAAGCCAAGGTCTGCGCCAATCACCTCGCGCAACTGGGCTTCGCCACTTACAAGGGTTCGGTGACGTCGACCAAGTTGAAAGTCACCGGTATCGATCTGTTTTCCGCCGGCGACTTCATGGGCGGCGAAGGCACCGAGACCATCACCCTTTCCGACCCGATTGGCGGCGTCTACAAGAAACTGGTGATCAAGGATGACGTGTTGGTGGGTGCCTGCCTGTACGGTGATACCGCGGACGGCGGCTGGTATTTCCGGCAGATCCGTGAGAACCACGGCATCAGCGAGATCCGCGATCACTTGATGTTTGGCGAAAACGCTTTGGGCGACGTCGGCCATCAAGGCCAGGACAAAGCCATGAGCATGGCCGACACCGCTGAAGTCTGCGGCTGCAACGGCGTGTGCAAGGGCACCATCGTCAAGGCGATCCAGGAACACGGCCTGTTCAGCGTCGATGACGTGAAAAAGCACACCAAGGCCGCCAGCTCCTGCGGCTCCTGCGCCGGCCTGGTGGAACAGATCCTGATCAACACCGTCGGCGGCGCGGCGGACGTGAAGCCGAAAAGCGAAAAAGCCATCTGCGGTTGCAGCGACCTAAACCATGGGCAGATCCGCCAGGCGATCCGCGACCAGCATCTGCTGACCATCGCCGGGACCATGGGTTACTTGAACTGGCGCACCCCGAACGGCTGCGCCACCTGCCGTCCGGCCCTGAACTACTACCTGATTTCCACCTGGCCCGGCGAAGCCCAGGATGACCCGCAGTCGCGCCTGATCAACGAACGCGCTCACGCCAACATCCAGAAAGACGGCACCTACTCAGTGGTCCCACGGATGTGGGGTGGCGTGACCAACCCATCCGAGCTGCGCCGCATCGCCGACGTGGCCGACAAATACAACGTGCCCATGGTCAAGGTCACCGGCGGCCAGCGTATCGACCTGCTGGGCATCAGGAAGCAAGACCTGCCCGGTGTCTGGAAAGACCTCGACATGCCGTCCGGCCACGCCTATGGCAAATCCATTCGCACCGTGAAGACTTGCGTGGGCAGCGAGTTCTGCCGCTTCGGCACGCAGAACTCCACCCAATTGGGCATCGAGCTGGAACACGACCTGTTCAACATGTGGTCGCCGCACAAGGTGAAGCTGGCGGTCTCCGGTTGCCCACGCAACTGCTCGGAAGCGGGCATCAAGGACGTCGGCATCATCGGCGTAGATTCCGGCTGGGAGATGTACATCGGTGGCAACGGCGGGATCAAGACCGAAGTCGCCGAGTTTTTCGTCAAGCTCAAGACCGCCGAAGAAGTGCGCGAATACAACGGCGCCTTCCTGCAGCTGTACCGCGAAGAAGCCTTCTACCTCGAACGCACCGTGCACTACATGCAGCGTGTCGGCATGGAACACATCAAGAAAGCCGTGCTGGAAGACCCGGAGCGGCGCAAGGCCCTGCACGAGCGCTTGAAGTTTTCCCTGTCGCTGGAGCAGGACCCCTGGAAACAACGGCTGGAACAACCGCAGCTGAAAAAAGAGTTCGAGGTCATCCCCGTGAAGAACCTGGAGGTACTGGCATGAMKKLKLVMIGNGMAGVRTLEELLKLSNELYDITVFGAEPHTNYNRILLSPVLAGEQTFEEIVLNDLSWYLDNNIKLLLNRKVVEIDRVKRRVIAEDGSEAEYDRLLIATGSTPFILPIPGNTLDGVIGYRDIADTQAMINTAKTHKHAVVIGGGLLGLEAANGLKLRGMDVTVVHIGEWLLERQLDKTSGQLLQTALENRGLKFRLSEQTQALHDAGNGRVGSVQFKNGDIIPADLVVMAAGIRPNTGLAEKSGIPCNRGILVNDTMQTYDPRIYAIGECANHRGTAYGLVAPLFEQAKVCANHLAQLGFATYKGSVTSTKLKVTGIDLFSAGDFMGGEGTETITLSDPIGGVYKKLVIKDDVLVGACLYGDTADGGWYFRQIRENHGISEIRDHLMFGENALGDVGHQGQDKAMSMADTAEVCGCNGVCKGTIVKAIQEHGLFSVDDVKKHTKAASSCGSCAGLVEQILINTVGGAADVKPKSEKAICGCSDLNHGQIRQAIRDQHLLTIAGTMGYLNWRTPNGCATCRPALNYYLISTWPGEAQDDPQSRLINERAHANIQKDGTYSVVPRMWGGVTNPSELRRIADVADKYNVPMVKVTGGQRIDLLGIRKQDLPGVWKDLDMPSGHAYGKSIRTVKTCVGSEFCRFGTQNSTQLGIELEHDLFNMWSPHKVKLAVSGCPRNCSEAGIKDVGIIGVDSGWEMYIGGNGGIKTEVAEFFVKLKTAEEVREYNGAFLQLYREEAFYLERTVHYMQRVGMEHIKKAVLEDPERRKALHERLKFSLSLEQDPWKQRLEQPQLKKEFEVIPVKNLEVLAPGPT0000450_1849DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000450-nirB-K00362NANA
D1-35_007731671pknD_1Serine/threonine-protein kinase PknDATGAGCCTGCAACTGAGTTTTGCCGAAGCCAGCGCCACGGGTCCCCGAGAGGAAAACCAGGACGCCCTGCGCCTGGTCACTCCCGCCCCGGCCCTGGCCGCCAGCAAGGGTTACCTGTTCGCCATCGCCGACGGCGTGAGCCAATGCGCCGATGGCGGATTGGCCGCGCGTTCGACCTTGCAGGCACTCGCCCTGGACTACTACTCCACGCCGCAGACCTGGGGCGTGGCCCAGGCGCTGGACCGGCTGCTGCTGGCGCAGAATCGCTGGCTGCAAGCCAACGGCGGCGGCCAACCGCTGCTGACCACGGTCAGCGCGCTGGTCCTGCGGGGGCGGCGCTTCACCCTGGCGCACGTCGGCGATTGCCGGGTCTACCGATGGCACGCCGACCATTTGCAACGAGTCAGCGAAGATCACGTCTGGGAACAACAGGGCATGCAACACGTGCTCAAGCGTGCCTTGGGGCTGGATCAGCATTTGATACTCGACTTCCTCGACGGTGAGCTGCGTGAAGATGAAACCTTCGTGCTGCTCAGCGACGGCGTCTGGGCGGTACTGGGAGACACGGCCATTGCCGGCATCCTGCGCGACCAGCCAGACCTGGATCGCGCGGCGCAGACGCTGGTCAACGCCGCGCACCTGGCCGGTAGCCAGGACAACGCCAGCGCGCTGTTGGTGCGCGTCGATGCGGTGGGCGAAGCGAGCATCGGCGACGCGCTGATCCAACTGCAACAGTGGCCGCTGCCCCCTTCACTGAAGGCGGGCCAGGCGTTCGAAGGCTGGCAGATCGAAAGCCTGCTCGGCCAGAGCCAGCAATCGTTGCTCTACCGGGTACACGATGGTCAGGGCCAACCCTGGCTGCTGAAAACCTTGCCCGTGCAGCTACGGGACGACACCCGCGCCGGCCAGGCGCTGTTGTCGGAGGAATGGTTTCTCAAGCGGGTCGCGGGTCGGCAATTTCCGGAAGTGCATGGCGTACCCCAGCGCCAACATCTGTACTACGTGATGCGTGAATATTCGGGCGCGACCCTGGCCGAGCTGTTCAACCAGGGTGGGCCGCTGCCCCTGGCCCAATGGCTGGACCTGGCGCAGCGGCTGGTGCGGGCAGTGGGCCTGTTGCATCGAAGGCAGATCTACCACCGCGACATCAAGCCGGAAAACCTGCATCTGGGCGACGATGGGGAATTGCGCTTGCTGGATTTTGGCCTGGCCTACTGTCCGGGCCTGTCCGAGGACCAGGCCAACGTGTTGCCCGGCACCCCCAGCTACATAGCGCCGGAAGCCTTCGGCGGCGCCGCGCCGACGGCGCAACAGGACTTATATGCGGTCGGCGTGACCTTGTATTTCCTGCTGACCGGGCATTACCCCTACGGCGAAATCGAAGCCTTCCAGCGACCACGCTTTGGTGTGCCCGTGAGCGCCAATCGTTATCGACCGGACCTGCCCGAATGGCTCGGGCAGAGCCTGGAACGCGCCGTGGCGGCAGACCCTGCGCAGCGCTTTGAAACGGCTGAAGAATGGCTGTTGCAGCTGGAACAGGGCGAGCGGCGAAGCTTGAGCGTAAGGCCCCGGCCATTGCTTGAGCGGGAGCCGCTGAAGGTCTGGCGGACGTTGGCGCTGGTGTCGTTGGTGGTGAATGTTGTGTTGTTGTTCCTGGTGTTTCACTCATAAMSLQLSFAEASATGPREENQDALRLVTPAPALAASKGYLFAIADGVSQCADGGLAARSTLQALALDYYSTPQTWGVAQALDRLLLAQNRWLQANGGGQPLLTTVSALVLRGRRFTLAHVGDCRVYRWHADHLQRVSEDHVWEQQGMQHVLKRALGLDQHLILDFLDGELREDETFVLLSDGVWAVLGDTAIAGILRDQPDLDRAAQTLVNAAHLAGSQDNASALLVRVDAVGEASIGDALIQLQQWPLPPSLKAGQAFEGWQIESLLGQSQQSLLYRVHDGQGQPWLLKTLPVQLRDDTRAGQALLSEEWFLKRVAGRQFPEVHGVPQRQHLYYVMREYSGATLAELFNQGGPLPLAQWLDLAQRLVRAVGLLHRRQIYHRDIKPENLHLGDDGELRLLDFGLAYCPGLSEDQANVLPGTPSYIAPEAFGGAAPTAQQDLYAVGVTLYFLLTGHYPYGEIEAFQRPRFGVPVSANRYRPDLPEWLGQSLERAVAADPAQRFETAEEWLLQLEQGERRSLSVRPRPLLEREPLKVWRTLALVSLVVNVVLLFLVFHSPGPT0030420_380DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_RELATED_PROTEINS,PGPT0030420-ppa|prpA-K01090NANA
D1-35_007741212nasA_2Nitrate transporterATGAATTCAAGCTTCTGGAAATCCGGCCACACCCCGACATTGTTCGCGGCCTTCCTCTATTTCGACCTGAGCTTCATGGTCTGGTACCTGCTCGGCCCATTGGCGGTACAGATCTCCGCCGACCTGCACCTGACCACCCAGCAACGCGGCCTGATGGTCGCGACGCCAATCCTCGCCGGCGCCGTGCTGCGCCTGTTCATGGGCCTGCTGGCCGACCGCATTTCACCGAAGACCGCCGGCATGGTCGGCCAGGTGATCGTGATCGGCGCGCTGTTCTGCGCCTGGAAGCTGGGCATCCACAGCTACGAACAAGCCTTGCTGCTGGGCCTGTTTCTGGGCGTGGCCGGCGCTTCGTTCGCCGTGGCCCTGCCGCTGGCTTCCCAGTGGTATCCACCACAGCACCAGGGCAAGGCCATGGGCATCGCCGGTGCCGGTAACTCGGGCACCGTGCTTGCCGCGTTGATCGCTCCGGTGATGGCGGTGGCCTTCGGCTGGACCAACGTGTTCGGCTTCGCGGTGATCCCGCTGGTGATTACCCTGGTCCTGTTCGCCTGGCTGGCCAAGAACGCACCGGAGCGGCCCAAGGCCAAATCCATGGCTGACTACCTCAAGGCCCTCGGTGACCGCGACAGCTGGTGGTTCATGTTCTTCTACAGCGTGACCTTCGGCGGCTTCATCGGCCTGGCCAGCGCCCTGCCCGGCTACTTCAACGACCAGTATGGCCTGAGCCCGGTGACCGCCGGCTACTACACCGCGGCCTGCGTCTTCGGTGGCAGCCTGATGCGGCCCTTGGGTGGCGCGCTGGCGGACCGTTTCGGCGGCATCCGCACCTTGCTGGGCATGTACACCGTGGCGGCTATCTGCATCGCCGCGGTCGGCTTCAACCTGCCGAGTTCCTACGCGGCGCTGGCCCTGTTCGTCTGCACCATGCTCGGCCTGGGTGCGGGCAACGGCGCGGTGTTCCAACTGGTGCCACAACGTTTCCGTCGCGAGATCGGCGTGATGACCGGGCTGATCGGCATGGCCGGCGGCATCGGCGGCTTCGCCCTGGCGGCGGGCATGGGCGCGATCAAGCAGAGCACCGGCAGCTACCAGCTGGCGCTGTGGTTGTTCGCCAGCCTCGGTGTCCTGGCCTGGTTCGGCCTGCACGGGGTCAAGCGTCGCTGGAGGACCACCTGGGGTTCGGCAGCGGTCACCGCGGCTCGGGTATAAMNSSFWKSGHTPTLFAAFLYFDLSFMVWYLLGPLAVQISADLHLTTQQRGLMVATPILAGAVLRLFMGLLADRISPKTAGMVGQVIVIGALFCAWKLGIHSYEQALLLGLFLGVAGASFAVALPLASQWYPPQHQGKAMGIAGAGNSGTVLAALIAPVMAVAFGWTNVFGFAVIPLVITLVLFAWLAKNAPERPKAKSMADYLKALGDRDSWWFMFFYSVTFGGFIGLASALPGYFNDQYGLSPVTAGYYTAACVFGGSLMRPLGGALADRFGGIRTLLGMYTVAAICIAAVGFNLPSSYAALALFVCTMLGLGAGNGAVFQLVPQRFRREIGVMTGLIGMAGGIGGFALAAGMGAIKQSTGSYQLALWLFASLGVLAWFGLHGVKRRWRTTWGSAAVTAARVPGPT0000300_3751DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000300-narK|nrtP|nrt|narU-K02575NANA
D1-35_00776576pdtaRCOG3707putative transcriptional regulatory protein pdtaRATGCTGCGTATCCTGCTGATCAACGACACCGCGAAAAAAGTCGGGCGTCTCAAGGCGGCCCTGATTGAAGCCGGATTCGAGGTGATCGACGAATCCGGTTTGACCATCGACCTGCCGGCGCGCGTCGAAACGGTGCGTCCGGACGTGATCCTGATCGATACCGAGTCACCCGGGCGCGACGTCATGGAGCAAGTGGTGCTGGTCAGTCGTGACCAGCCACGACCGATCGTCATGTTTACCGACGAGCACGACCCGGATGTGATGCGCCAGGCGATCAAGTCAGGCGTCAGCGCCTACATCGTCGAAGGCATCCATGCCGCACGCCTGCAACCGATCCTCGACGTGGCCATGGCCCGCTTCGAAAGCGACCAGGCCCTGCGCGCGCAACTCCTGGCCCGGGACCAGCAACTGGCCGAACGCAAGCGCATCGAACTGGCCAAGGGCATGCTGATGAAGATGAAGGACTGCAACGAGGAACAGGCCTACACCCTGATGCGCCGCCAGGCCATGAGCCGCCAGCAGAAGCTGATCCAGGTGGCGGAGCAGATCATTGCCATGAACGAGTTGCTCGGCTGAMLRILLINDTAKKVGRLKAALIEAGFEVIDESGLTIDLPARVETVRPDVILIDTESPGRDVMEQVVLVSRDQPRPIVMFTDEHDPDVMRQAIKSGVSAYIVEGIHAARLQPILDVAMARFESDQALRAQLLARDQQLAERKRIELAKGMLMKMKDCNEEQAYTLMRRQAMSRQQKLIQVAEQIIAMNELLGPGPT0000400_722DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000400-nasR|nasT-K07183NANA
D1-35_007771212nrtANitrate/nitrite binding protein NrtAATGAACGAAATTCCAGCCACCCCCCTGGCTTGGGTCAATGGCAGCGATGCCCCGGAAAAGAGCGCGGTCAACCTCGGCTTCATGGCCCTGAGCGACTGCGCCCCGGTGGTCGTGGCCGCCACCCAGGGCTTCGCCCAGCCCTACGGCTTGACGCTGAACCTCAAGCGCCAGGCCTCGTGGGCCAACCTGAGGGACAAACTGGTCAGCGGTGAAATCGACGCGGCCCACAGCCTGTACGGCCTGGTTTATGCCGTGCACCTGGGCATCGGTGGCGTCGCGCCGACCGATATGGCCGTGCTGATGGGGCTGAACCAGAACGGCCAGAGCATCAACCTGTCCCATGGTTTGCAGGCGCAAGGCGTGACCAGTCCTGAGGCACTGGAGCAGCATGTGCACCAAACTCGCCCGAAACTGACCTTCGCCCAGACCTTTCCCACCGGCACCCATGCCATGTGGCTCTATTACTGGCTCGCCGCCCAGGGCATCCATCCGTTGTCGGATGTCGACAGCGTAGTGGTGCCACCGCCGCAGATGATCGCGCACCTGCAAGCCGGGCGCATCGATGGTTTCTGCGTCGGCGAGCCCTGGTGCGCCAGTGCCGTGAAGCAGAACCTCGGCTTTACCCTGGCGACTACCCAGACCATCTGGCCCGACCACCCGGAGAAAGTCCTGGGTTGTACCCGCGCGTTTGTCGAGCAATACCCCAACACTGCCCGCGCGCTGGTGATGGCCATCCTCGAAGCCAGCCGCTTCATCGAACAAAGCACTGAAAACCGCCGCAGTACCGCGCAATTATTGAGCGCCCCGGAATATCTCGACGCTCCGCTCGATTGCATCGAGCCGCGCCTGCTCGGGATTTATGCCGACGGCCTGGGCAACAGCTGGCAGGATCCCCACGCCATGCGCTTTCATGGGGACGGCGCGGTGAACCTGCCGTACCTGTCCGACGGGATGTGGTTCATGACCCAGTTCCGGCGCTGGGGCCTGCTGCGCGAAGACCCGGACTACCTGGCCGTGGCCCGCCAGGTCCAACAGCTCAAGCTGTATCGTGAAGCCTGCGCGGCGCTGGGCGTGACGTCGCCTCGCCAGGACATGCGCAGCAGTCAACTGATCGACGGCACGACCTGGGACGGCTCGGACCCGGTCGGGTATGCCCGCAGCTTCAAACTGCACGCCTTGAGCGATGCGGCTCCCCTTCTCGCCAGCCGCTGAMNEIPATPLAWVNGSDAPEKSAVNLGFMALSDCAPVVVAATQGFAQPYGLTLNLKRQASWANLRDKLVSGEIDAAHSLYGLVYAVHLGIGGVAPTDMAVLMGLNQNGQSINLSHGLQAQGVTSPEALEQHVHQTRPKLTFAQTFPTGTHAMWLYYWLAAQGIHPLSDVDSVVVPPPQMIAHLQAGRIDGFCVGEPWCASAVKQNLGFTLATTQTIWPDHPEKVLGCTRAFVEQYPNTARALVMAILEASRFIEQSTENRRSTAQLLSAPEYLDAPLDCIEPRLLGIYADGLGNSWQDPHAMRFHGDGAVNLPYLSDGMWFMTQFRRWGLLREDPDYLAVARQVQQLKLYREACAALGVTSPRQDMRSSQLIDGTTWDGSDPVGYARSFKLHALSDAAPLLASRPGPT0000405_206DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000405-nasS-K22067NANA
D1-35_007781020pyrDCOG0167Dihydroorotate dehydrogenase (quinone)ATGTACACCCTGGCCCGTGAACTGCTGTTCAAACTTTCCCCGGAAACTTCCCATGATCTGTCCCTGGACCTGATCGGCGCGGGTGGACGTTTGGGGCTCAACGGGTTGCTGTGCAAGGCCCCGGCAAAATTGCCGGTGACAGTCATGGGCCTGGAATTTCCCAACCCGGTCGGCCTGGCCGCCGGCCTGGACAAGAATGGCGCGGCCATCGACGGGTTCGCCCAGCTGGGGTTCGGCTTCGTTGAAATCGGCACCGTGACGCCGCGTCCGCAGCCGGGCAATCCCAAGCCACGGCTGTTCCGTTTGCCGCAGGCCGAGGCAATCATCAACCGCATGGGCTTCAACAACCTGGGCGTCGATCATCTGCTGGCCCGTGTGGCTGCTGCCAGGTACAAGGGTGTGCTAGGGATCAACATCGGCAAGAACTTCGATACGCCGGTGGAGCGCGCCGTCGACGATTACCTGATCTGCCTGGACAAGGTCTACGCTCACGCCAGTTATGTGACCGTCAACGTCAGTTCGCCGAACACGCCAGGGCTGCGCAGCCTGCAGTTCGGCGATTCGCTCAAGCAATTGCTGGCCGATCTGGCGCGACGTCGCGCGGAACTGGCGGTGACGCACGGCAGGCATGTGCCGCTGGCCATCAAGATTGCCCCGGACATGAGCGACGAAGAAACCGTCCAAGTGGCCCAGGCCTTGATCGAGACCGGCATGGATGCGGTGATCGCCACCAACACCACGCTGGGCCGCGAAGGTGTAGAAGGCCTGGAGCATGGTGACGAGGCGGGCGGCCTGTCCGGCGCTCCGGTGCGCGACAAGAGCACCCACACGGTGAAAGTGCTGGCCGGCGAATTGGCGGGACGCTTGCCGATCATCGCGGCGGGCGGTATTACCGAAGGCCGGCATGCCGCCGAGAAAATCACGGCAGGGGCGAGCCTGGTGCAGGTTTATTCCGGGTTCATCTACAAGGGCCCGACGTTGATTCGCGAGTCGGTGGATGCGATTGCCGCGTTGGGTTGAMYTLARELLFKLSPETSHDLSLDLIGAGGRLGLNGLLCKAPAKLPVTVMGLEFPNPVGLAAGLDKNGAAIDGFAQLGFGFVEIGTVTPRPQPGNPKPRLFRLPQAEAIINRMGFNNLGVDHLLARVAAARYKGVLGINIGKNFDTPVERAVDDYLICLDKVYAHASYVTVNVSSPNTPGLRSLQFGDSLKQLLADLARRRAELAVTHGRHVPLAIKIAPDMSDEETVQVAQALIETGMDAVIATNTTLGREGVEGLEHGDEAGGLSGAPVRDKSTHTVKVLAGELAGRLPIIAAGGITEGRHAAEKITAGASLVQVYSGFIYKGPTLIRESVDAIAALGPGPT0021190_3248DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021190-pyrD-K00254NANA
D1-35_00779216rmfRibosome modulation factorATGAGAAGACTTAAGCGTGATCCGTTGGAAAGAGCATTTTTACGCGGTTACCAATATGGCGTTGGTGGTAAATCCCGTGAGCTTTGCCCCTTTACTCTACCGTCGGTACGTCAAGCCTGGATCAACGGCTGGCGAGAAGGACGCGGCGACAACTGGGACGGTATGACCGGCACTGCGGGTATCCACAGACTCAACGAACTTCACGCCGTCGGCTGAMRRLKRDPLERAFLRGYQYGVGGKSRELCPFTLPSVRQAWINGWREGRGDNWDGMTGTAGIHRLNELHAVGNANANANANA
D1-35_007812271rlmL_1COG0116Ribosomal RNA large subunit methyltransferase K/LATGTCCGATCGTTTCGAACTCTTCCTCACTTGCCCCAAGGGCCTCGAAGGCCTGCTTCTCGAGGAAGCCGTCGGGCTTGGCCTTGAAGAGGCGCGCGAGCACACCTCGGCCGTTCGCGGCATCGCCGACATGGAAACGGCCTATCGCCTGTGCCTGTGGTCGCGCCTGGCGAACCGCGTATTGCTGGTGCTCAAGCGCTTCGCGATGAAAGACGCTGAAGACCTGTACCACGGGGTGCTGGACGTCGACTGGCAAGACCACATGCTCGCCGATGGTACCTTGGCGGTCGAGTTCAGCGGTCACGGCTCGGGCATCGACAACACGCATTTCGGCGCCTTGAAGGTCAAGGATGCCATTGTCGACAAGCTGCGCACGCCGTCGGGTGAGCGGCCATCCATCGACAAGCTCAACCCGGACCTGCGCATCCACCTGCGCCTGGACCGTGGCGAAGCAATCCTGTCCCTCGACCTTTCGGGCCATAGCCTGCACCAACGTGGCTATCGCTTGCAGCAGGGCGCCGCCCCGCTGAAGGAAAACCTCGCCGCCGCCATCCTGATTCGCGCCGGTTGGCCACGCATTGCCGCCGAAGGCGGGGCACTGGCGGACCCGATGTGCGGCGTCGGCACGTTCCTGGTAGAGGCCGGAATGATCGCCGCCGACATGGCGCCGAACCTGCGTCGCCAGCAATGGGGCTTTACCGCCTGGCTCGGCCACGTGCCGGCGTTATGGAAAAAACTCCACGAAGAAGCCAGCGAGCGCGCCGCCGCCGGGCTGGCCAAGCCACCGTTGTGGATTCGCGGCTACGAAGCTGACCCACGGCTGATCCAGCCGGGCCGCAACAACGTCGAACGTGCGGGCCTGAGCGAGTGGATCAAGATCTATCAGGGCGAAGTCGCCACCTTCGAGCCGCGCCCGGACCAGAACCAGAAGGGCCTGGTGATCTGCAACCCGCCGTACGGCGAGCGTTTGGGCGACGAAGCCAGCTTGCTCTATCTGTACCAGAATCTTGGTGAACGCCTGCGCCAGGCCTGCCTCAACTGGGAGGCCGCGGTGTTCACTGGCGCGCCGGACCTGGGCAAGCGCATGGGCATTCGCAGCCACAAGCAGTATTCGTTCTGGAACGGCGCCTTGCCGTGCAAGTTGCTACTGATCAAGGTGCTCCCGGATCAGTTCGTCACTGGCGAGCGTCGCACCCCGGAACAACGCCAGGCCGAGCGTGAACAGGCTGTCTACGATCAAACCCCTGAAGTACCGCAAGAGCGCCAGTACAACAAGAATGGCAACCCGATCAAACCGGCCCCGGCGCCAGCCCCTGTGGTCGAGCAGGCGCGGTTGAGCGAAGGCGGGCAGATGTTCGCCAATCGCCTGCAGAAAAATCTCAAGCTGCTGAGCAAGTGGGCCAAGCGTGAAGGCGTCGACTGCTACCGGGTCTATGATGCCGACATGCCGGAATATTCCATGGCCATCGACCTGTATCACGACTGGGTGCACGTCCAGGAATACGTCGCGCCGAAGTCCATCGACCCGGAAAAGGCCTCGGCCCGGTTGTTCGATGCGCTGGCCGCCATTCCCCAGGCCTTGAATGTCGACAAGAGCCGCGTTGTCATCAAGCGCCGCGAGCGCCAGAGCGGCACCAAGCAGTACGAGCGCCAGAGCGCCCAGGGCAAGTTCACCGAGGTCAACGAGGGCGGCGTGAAGCTGCTGGTCAACCTCACCGACTACCTCGACACCGGGTTGTTCCTCGATCACCGGCCAATGCGCCTGCGGATCCAGAAAGAGGCCGCCGGCAAGCGCTTCCTGAACCTGTTCTGCTACACCGCGACCGCCAGCGTCCATGCCGCCAAGGGCGGGGCGCGCAGCACTACCAGCGTCGATTTGTCGAAAACCTATCTGGACTGGGCGCGGCGCAACCTGTCGCTCAATGGTTTTTCCGACAAGAACCGCTTGGAGCAGGGCGATGTCATGGCCTGGCTTGAAGCCAGTCGCGACGAGTACGACCTGATCTTCATCGATCCACCGACGTTCTCCAACTCCAAGCGCATGGAAGGCGTGTTCGACGTGCAGCGCGACCACGTCCAGCTGTTGGATCTGGCCATGGCGCGCCTGGCGCCGGGTGGCGTGCTGTATTTTTCCAACAACTTCCGCAAGTTCCAGCTCGAAGACAACTTGGGCGAGCGTTACGCCGTGGAGGAAATCACCGCCGGGACCATCGACCCGGATTTTGCCCGAAACAGCAAGATTCACCGCGCCTGGAAAATCATGGCGCGCTGAMSDRFELFLTCPKGLEGLLLEEAVGLGLEEAREHTSAVRGIADMETAYRLCLWSRLANRVLLVLKRFAMKDAEDLYHGVLDVDWQDHMLADGTLAVEFSGHGSGIDNTHFGALKVKDAIVDKLRTPSGERPSIDKLNPDLRIHLRLDRGEAILSLDLSGHSLHQRGYRLQQGAAPLKENLAAAILIRAGWPRIAAEGGALADPMCGVGTFLVEAGMIAADMAPNLRRQQWGFTAWLGHVPALWKKLHEEASERAAAGLAKPPLWIRGYEADPRLIQPGRNNVERAGLSEWIKIYQGEVATFEPRPDQNQKGLVICNPPYGERLGDEASLLYLYQNLGERLRQACLNWEAAVFTGAPDLGKRMGIRSHKQYSFWNGALPCKLLLIKVLPDQFVTGERRTPEQRQAEREQAVYDQTPEVPQERQYNKNGNPIKPAPAPAPVVEQARLSEGGQMFANRLQKNLKLLSKWAKREGVDCYRVYDADMPEYSMAIDLYHDWVHVQEYVAPKSIDPEKASARLFDALAAIPQALNVDKSRVVIKRRERQSGTKQYERQSAQGKFTEVNEGGVKLLVNLTDYLDTGLFLDHRPMRLRIQKEAAGKRFLNLFCYTATASVHAAKGGARSTTSVDLSKTYLDWARRNLSLNGFSDKNRLEQGDVMAWLEASRDEYDLIFIDPPTFSNSKRMEGVFDVQRDHVQLLDLAMARLAPGGVLYFSNNFRKFQLEDNLGERYAVEEITAGTIDPDFARNSKIHRAWKIMARNANANANANA
D1-35_007822385hypothetical proteinATGGCATTACATCAGGTGCGTCCCAGGATCCTGGGCTTTATCAGCGAAGATGTTTCAGCATGGCTCGTGGCTTGCGTCGTCCTGATGGCAGGCCTGCTGCTGACCGGTTTGTTGGCCTGGGGCACGTTGAAGCAGTTCAACCAGCAATTGCGCCAGCGCTTCGAATTGCTCGCCGAAGAACGCTATAGCCGCCTCGACGAGCGTTTCCAGGACCAGGAGCAACGTCTCGACAGTCTGAGGCGGTTCTTTGCCAACTCCGCGGGAGTGTCTGGCGCCGAATTCCATGGCTATACCGAAGCGCTCTTGCGGCGTACCCGGGCCTTTGCCTGGGCGCCACGGGTGCTGCGGGAGGAGCGCCAGGCATTCGAGCAACAGGCACGAGCCGAAGTATCCACTACCTTTACCGTTCGTGAACGAGACGAGGCCGGAATCCTGCGCCAGGCCGCTGAGCGGAATGAATACGCGCCGCTGCTGTATATCCAGAGCCAGCCATCCTATGGCGCGCCGCTGGGCCTGGATCTGCTTTCGCATCCACTGCGCCGTGCCACGCTGGAACGGGCGCGCCAGCGTAACGCCCTGGTAGTTTCCGAGCCCATTGATCTGATCGGGAGCGATCCGGCCTTTGCCCGAGGTGTGATGCTGGCGGCGCCCGTTCTCAAGCCTCTGGCCCGCGAGCCGTTCGGCTACGTGGTGGCGGCCATCAGCATGCGCCAGTTGGTCGCCGATGGGCTGCCGGAGGCGGAGGATGACAGTCTGACGATGCGTGTGATTGATTCCGCCCACGATACCCCTTGGGAAGTCCTGTTCGAAACATCCAACCGACCGGGTAAAAGCGAGCTGTCGGCGGTCCGGATGTTGCGCCTGGCCGATCATGACTTCCGCGTGGAGTTGCGGCCCAGTCTCGCGTTCCTGTCGAACAATCATTCCAGCGTCGTGAGCGTCACGGTGTTGGGCGGGCTGCTCAGCCTGATGCTCAGCGTCTTGCTGTATACGTTGGTCAGCCAGCGACAGCGGGCCTTGGCGCTGGTGGAACAGCGCACCCGGGAACTGCATGCCCGGGAATCGGAACTGCGCGGCACCCACGGCCAATTGAAGGGCGTGCTCGACGCCGCGACGCAAGTCGCGATCATCGCGACCGACCTGCGCGGTGTCATCACCACGTTCAATGCCGGCGCCGAGCAGATGCTCGGCTATCGCAGTTGCGATGTCCTGCAGAGCATGACCCTGGAAAGTCTTCACGTTCCGCGTGAGCTGCAGCATCGGGCCGCACAGCTGGCCGTGCGTTTCGGCAAGCCAATCCCGACGTGCCATGCGATGCTGCTCGAAGGCGGTGAGCAGGGCGGCCAACAGGCTCGGGAGTGGACCCTGGTGCGCCGCGACGGCAGCCACCTGACGGTCAACATGCTGGCCACGCCCGTGCTCGACGACCAAGGGTTGTGGGTCGGGCACCTGGCAATCTGCATCGACGTCACCGAACGCAAGCGCGTCCACGAAGCCTTGGCCGCACGGGACCTGCTGTTGAAAAAACTCAGCGCCCATGTCCCCGGCGGCATCTATCAGTTCAAGATGGACTTTACCGGTGAGTTCAGCGTGATCTATGCCAGCGACGGCATCCGCGACATCTACGAACTGGAGCCTGACGTGCTGGTACGGCACGCCGAAGCGGTGTTTTCGCGCATCCATCCGCTGGACAGCGCCCGGGTGCGTGCTTCGATCCGCATCTCGGCGGAGACATTGAGCCCGTGGCGCGAAGAGTACCGGGTGCAACTGCCGCAGCGCGGTCTGCGCTGGGTACGCGGAGAGGCCACGCCCGAGCAATTGCCTGGCGGCGGTGTGTTGTGGCACGGCTATGTCTCGGACATCTCCGACCTCAAGCGCGTGGAAGAAGAACTGCGGGCACTGTCCATTACCGACGCGTTGACCGGCATTCGCAACCGGCGCTATTTCCAGGAGCGCCTGACTTCGGAGATGGCCCGGGTTGAACGGGGCTCCGGCGAGCTGGCGGTCATCATGCTCGACATCGATCACTTCAAGCGCATCAACGACCAGCATGGCCATGCGGTGGGTGATCGGGTGTTGCAGGCGGTCTGCCAGCGCATCACCCATCGGTTACGCCGCACCGACGTATTCTGCCGGTTGGGCGGCGAAGAGTTCGTGGTGCTCTGCCCGGATACGGACAATGAAAGTGCCTACACCCTGGCGTTGGGGTTATGGGACGGCCTGCGGGGTTCGCCGATCGACGACATCGGCACCATCACCGCCAGTTTTGGCATCGCCAGCTGGCGCGTTGGCGAAGGTGCCGACGCGCTGCTGTTGCGCGCCGACTCAGGTGTGTACGCGGCGAAGCAGGCCGGGCGGGATCGGGTCGAGGTGCAGTTGGGCTAGMALHQVRPRILGFISEDVSAWLVACVVLMAGLLLTGLLAWGTLKQFNQQLRQRFELLAEERYSRLDERFQDQEQRLDSLRRFFANSAGVSGAEFHGYTEALLRRTRAFAWAPRVLREERQAFEQQARAEVSTTFTVRERDEAGILRQAAERNEYAPLLYIQSQPSYGAPLGLDLLSHPLRRATLERARQRNALVVSEPIDLIGSDPAFARGVMLAAPVLKPLAREPFGYVVAAISMRQLVADGLPEAEDDSLTMRVIDSAHDTPWEVLFETSNRPGKSELSAVRMLRLADHDFRVELRPSLAFLSNNHSSVVSVTVLGGLLSLMLSVLLYTLVSQRQRALALVEQRTRELHARESELRGTHGQLKGVLDAATQVAIIATDLRGVITTFNAGAEQMLGYRSCDVLQSMTLESLHVPRELQHRAAQLAVRFGKPIPTCHAMLLEGGEQGGQQAREWTLVRRDGSHLTVNMLATPVLDDQGLWVGHLAICIDVTERKRVHEALAARDLLLKKLSAHVPGGIYQFKMDFTGEFSVIYASDGIRDIYELEPDVLVRHAEAVFSRIHPLDSARVRASIRISAETLSPWREEYRVQLPQRGLRWVRGEATPEQLPGGGVLWHGYVSDISDLKRVEEELRALSITDALTGIRNRRYFQERLTSEMARVERGSGELAVIMLDIDHFKRINDQHGHAVGDRVLQAVCQRITHRLRRTDVFCRLGGEEFVVLCPDTDNESAYTLALGLWDGLRGSPIDDIGTITASFGIASWRVGEGADALLLRADSGVYAAKQAGRDRVEVQLGNANANANANA
D1-35_007831467dacC_1COG2027D-alanyl-D-alanine carboxypeptidase DacCATGATCAAATCTTTGCGCCCATTGCTTCTGGCCAGCCTTCTTCTTCCTTTGGCCCTGCCTGTCCCCACCCAAGCCGCCACCATCAACACCGCCCTGTCGCCGAATGTGCAAAAGGCCCTGAAGAACAGCAAACTGCAAGACCACGCCCTGTCCCTGGTGATGGTACCGCTCAACGGCCCCGGCACCCCGACGCTGTATAACGCCGATGTCTCGGTGAACCCGGCGTCCACCATGAAGCTGGTAACGACCTACGCAGCCCTGGAAATGCTCGGGCCGAACCATCAGTGGAAAACCGAGTTCTACACCGACGGCACCCTCAGCGGGGGCATTCTCAACGGCAACCTGTACCTCAAGGGCGGCGGCGATCCCAAGCTGAACATGGAAAAGCTCTGGCTGTTGATGCGTGACCTGCGAGCCAACGGCGTGCAGCAGATCACCGGCGACCTGGTGCTGGACCGCAGCTTCTTCATCCAGCCGCAATTGCCCGAGTTCAACGACGACGGCAATGACGAAAACAAACCCTTCCTGGTCAAGCCCGATTCGCTGCTGGTCAACCTCAAGGCGCTGCGCTTCGTGGCCCGCAATGACGCTGGCCGGGTACTGATATCGGTCGAACCGCCCATCGCCAGCATCCGCATCGAGAATGTGGTCAAGGCCGCCAACTCCAAGCAGTGCACTGGTGGCGTGCGCTACAACCCGGTGGCCCAGGCGGACGGCAGCATGACCGTGACCGTCAGCGGCCAACTCGGCGAGGGTTGCAGCTCCCAGACCTACCTGTCGCTGCTCGACCATGCCACCTACACCGCTGGCGCCGTGCGAGCGATCTGGAAGGAGCTGGGCGGCAGCATCCAGGGCAGCGACCGCCTGGCCGCGACGCCGAAGAACGCCAAGCTGCTGGCCCGGGCGTTCTCCCCGGACCTGGCGGAGATCATCCGCGACATTAACAAATACAGTAACAACACCATGGCCCAGCAACTGTTCCTGAGCCTGGGCGCGGAGTTTCGCAACGAGGCCGACGGCGACGATGCCAAGGCTGCGCAGCGAGTGGTGCGCCAGTGGCTGGCCAAGAAAGGCATCACCGCGCCGCACCTGGTGATGGAAAACGGCTCCGGCCTGTCCCGCGCCGAACGGGTCAGCGCCCGGGAAATGGCGGCGATGCTGCAGGCGGCATGGCGCAGCCCGTATGCGGCGGAGTTCATCAGCTCGATGCCCATCGCCGGCACGGACGGCACCATGCGCAAACGCCTCAAGACCACCGCCATGGCCGGCGAAGCGCACGTCAAGACCGGTACGTTGAACACAGTCCGCGCCATTGCCGGCTATAGCCGCGACATCAATGGCAATACCTGGGCGGTCGTGGCGATCCTCAACGATCCGAAGCCATGGGGCGCCTCCTCCGTGCTGGACCAGGTGCTGCTGGACTTGTATCGCCAGCCGAAACTGCCGCAGACGGCGTCGGTGCTCTGAMIKSLRPLLLASLLLPLALPVPTQAATINTALSPNVQKALKNSKLQDHALSLVMVPLNGPGTPTLYNADVSVNPASTMKLVTTYAALEMLGPNHQWKTEFYTDGTLSGGILNGNLYLKGGGDPKLNMEKLWLLMRDLRANGVQQITGDLVLDRSFFIQPQLPEFNDDGNDENKPFLVKPDSLLVNLKALRFVARNDAGRVLISVEPPIASIRIENVVKAANSKQCTGGVRYNPVAQADGSMTVTVSGQLGEGCSSQTYLSLLDHATYTAGAVRAIWKELGGSIQGSDRLAATPKNAKLLARAFSPDLAEIIRDINKYSNNTMAQQLFLSLGAEFRNEADGDDAKAAQRVVRQWLAKKGITAPHLVMENGSGLSRAERVSAREMAAMLQAAWRSPYAAEFISSMPIAGTDGTMRKRLKTTAMAGEAHVKTGTLNTVRAIAGYSRDINGNTWAVVAILNDPKPWGASSVLDQVLLDLYRQPKLPQTASVLPGPT0024035_1075DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-CARBOXYPEPTIDASE_ACTIVITY,PGPT0024035-dacB-K07259NANA
D1-35_00784342COG3171putative proteinATGGCGACTAACCGTTCCCAGCGTCTGCGCAAAAAGCTGTGCGTGGATGAATTTCAAGAGCTGGGTTTCGAACTGAACCTGGATTTCAAAGAAGATCTGGCCGATGAGGCTATTGACGCTTTCCTCGACGCTTTCCTGAAAGAAGCCATGGAAGCCAATGGCCTGGGCTATGTCGGCGGTGACGACTATGGTCTGGTCTGCCTGCAGAAGCGTGGCTCGGTGACCGAAGAGCAGCGCGCTGCCGTTGAAGCCTGGCTCAAGGCCCGTCCTGAGCTGACCAGTGTTGAAGTCAGCCCGCTGATGGATGTCTGGTATCCGGAAAAGCCGATCAACAAGGCTTGAMATNRSQRLRKKLCVDEFQELGFELNLDFKEDLADEAIDAFLDAFLKEAMEANGLGYVGGDDYGLVCLQKRGSVTEEQRAAVEAWLKARPELTSVEVSPLMDVWYPEKPINKANANANANANA
D1-35_007851191ydcOCOG3135Inner membrane protein YdcOATGACCGAAATCAGCACCGCGCCACTTCGCCCCCTGGCCGATACCTCGCCATCGGCCATCGTCGCCGGTTTCATCGCCATGATGACCGGCTACACCAGCTCACTGGTACTGATGTTCCAGGCCGGGCAGGCGGCGGGGCTGACCAGCGGGCAGATTTCATCATGGATCTGGGCCATCTCCATCGGCATGGCGGTGTGCTCCATCGGCTTGTCGCTGCGCTACCGCACGCCAATCACCATCGCCTGGTCAACACCCGGCGCAGCCTTGCTGATCACCAGCCTGGGCGGCGTGAGTTATGGCGAAGCCATCGGCGCGTACATCACCTGTGCGGTGCTGGTGACGATCTGTGGCCTGACCGGCAGCTTCGAGCGCCTGGTCAAACGCATTCCGGCTTCGCTGGCGGCCGCGCTGCTGGCGGGGATTCTGTTCAAGATCGGCAGCGAAATATTTGTCGCCGCGCAACATCGCACCGGCCTGGTGCTGGGGATGTTCTTTACCTATCTGATCGTCAAGCGCCTGTCGCCCCGCTATGCGGTATTGGCCGCGCTGCTGGTCGGCACTGCCCTGTCGGGCTTGCTCGGACTTCTCGACTTCAGCGGTTTCGCCCTGGAAGTGGCGACACCGGTCTGGACCACGCCAGAATTTTCCCTGGGGGCCACCATCAGCATCGGTATCCCGCTGTTCGTGGTGGCGATGACCTCGCAGAACATGCCTGGCATCGCCGTGCTGCGCGCCGACGGCTACAACGTACCGGCCTCGCCATTGATCACCAGCACCGGCGTTGCGTCGCTGTTGCTGGCCCCATTCGGTTCCCATGGTATCAACCTCGCCGCCATCAGCGCGGCGATCTGCACCGGGCCACATGCCCATGAAGATCGCGACAAGCGCTACACGGCGGCCGTCTGGTGCGGGATTTTCTACGGCTTTGCCGGGGTTTTCGGCGCAACGCTGGCGGCGCTGTTCGCTGCGCTGCCCAAGGAGTTGGTGCTGTCCATCGCGGCATTGGCGCTGTTCGGCTCGATCATCAATGGCCTGAGCATCGCCATGAGCGAAGCGAAGGAACGGGAAGCGGCGTTGATCACCTTCATGGTCACGGCGTCGGGGTTGACGCTGTTTTCCATCGGCTCGGCGTTCTGGGGGATTGTCGCGGGGGTGGTGACCTTGCTCATCCTGAACTGGCGGAATGCCTGAMTEISTAPLRPLADTSPSAIVAGFIAMMTGYTSSLVLMFQAGQAAGLTSGQISSWIWAISIGMAVCSIGLSLRYRTPITIAWSTPGAALLITSLGGVSYGEAIGAYITCAVLVTICGLTGSFERLVKRIPASLAAALLAGILFKIGSEIFVAAQHRTGLVLGMFFTYLIVKRLSPRYAVLAALLVGTALSGLLGLLDFSGFALEVATPVWTTPEFSLGATISIGIPLFVVAMTSQNMPGIAVLRADGYNVPASPLITSTGVASLLLAPFGSHGINLAAISAAICTGPHAHEDRDKRYTAAVWCGIFYGFAGVFGATLAALFAALPKELVLSIAALALFGSIINGLSIAMSEAKEREAALITFMVTASGLTLFSIGSAFWGIVAGVVTLLILNWRNAPGPT0005385_867DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_SYMPORTER,PGPT0005385-benE-K05782NANA
D1-35_00786765hypothetical proteinATGAACGAACAGTTGCAACCCCTCAAGAAACAACCGCGAGCAGGCAAAGCCGGCCGCAGCGGAACCCAGGACGATATTGTCTACGCGCACATTTTCGAGGCCATCCTCGAACAGCGTCTGGCGCCTGGTACGAAGTTGAGTGAAGAGGCGCTTGGGGAGATTTTCGGGGTGAGTCGCACCATCATTCGTCGCGCGCTGTCGCGCCTGGCTCATGAAGGCGTGGTGCTGCTGCGCCCGAATCGCGGTGCGGTGGTCGCCAGCCCGAGCGTCGAAGAGGCACGCCAGGTGTTCTTTGCCCGGCGCATGGTGGAGAAGGCGATCACTGAACTGGCGGTACAGCATGCCAGCGCCGAACAGCTTGCCGAGCTGCGGCAGATGGTCAGCGACGAGCGCGACAGTTTTTCCCGAGGGGACCGTGGCGCCGGCATCCGGTTGTCGGGCGAGTTTCACCTCAAGCTGGCCGAGGCGGCAAAAAACGCGCCGCTGATCAGCTTTCAGCGCAGCCTGGTATCACAGACTTCGTTGATCATCGCCCAGTACGAAAGCGGTAACCGTTCCCACTGTTCCTATGACGAACACACCCAGTTGATCGATGCCATCGAGGCCCGTGACGCAGCCCTGGCGGTGAACCTGATGATGCATCACATGGATCACATCGACAGCAAGCTCAACCTCGACGAAGAAAGCGCGTCGGACGATTTGCATGCAGTGTTCTCGCATCTGTTGCAGAGCAAGAAGCCGGGGCGGTCGACGGCCAAGCTCTGAMNEQLQPLKKQPRAGKAGRSGTQDDIVYAHIFEAILEQRLAPGTKLSEEALGEIFGVSRTIIRRALSRLAHEGVVLLRPNRGAVVASPSVEEARQVFFARRMVEKAITELAVQHASAEQLAELRQMVSDERDSFSRGDRGAGIRLSGEFHLKLAEAAKNAPLISFQRSLVSQTSLIIAQYESGNRSHCSYDEHTQLIDAIEARDAALAVNLMMHHMDHIDSKLNLDEESASDDLHAVFSHLLQSKKPGRSTAKLNANANANANA
D1-35_007871305guaDCOG0402Guanine deaminaseATGCCCCTGACACGCAAAGCCTACCGCGCCGCCCTGCTCCACAGCCTCGCCGACCCGGCCGAAGTCGGTATCGAGGCGTCCTATGAGTATTTCGAGGATGGCCTGCTGGTAGTTGAAAATGGCCTGATCAGCACTATCGGCCACGCCAGCGATTTGTTGCCGACCCTTCCGGCGGATATCGAGATCACGCACTACCAGGACACCCTGATCACTCCCGGCTTCATCGACACCCATATCCACCTGCCGCAGACCGGCATGGTGGGCGCCTATGGCGAGCAGTTGCTGGATTGGCTCAACACCTACACGTTCCCCTGCGAAAGCCAGTTCGCCGACCCGGCCCACGCCGAGGCGGTGGCGGACATTTTCGTCAAGGAACTGCTGCGCAACGGCACCACCACAGCCCTGGTATTCGGCAGTGTGCACCCGCAATCGGTGAACGCTTTTTTTGAGGTTGCCGAGAAACTCGACCTGCGGATGATCGCCGGCAAGGTCATGATGGACCGCAACGCGCCGGACTACCTGGTCGACACCGCCGAATCCAGCTACACCGAGAGCAAGGCGCTGATCGAACGCTGGCATGGCAAGGGTCGCCTGCATTACGCCGTGACCCCGCGCTTCGCGCCGACCAGCACGCCGGAGCAGCTGACCCTGGCCGGCCAGTTACTCGGCGAATACCCGGACCTGTACATGCAGACGCACATCAGCGAGAACCTGCAGGAAGTGCAATGGGTCAAGGAGCTGTTCCCCGAGCGCAAAGGCTACCTGGACGTCTACGACCACTACCAATTGCTCGGCGAGCGCTCGGTGTTTGCCCATGGCGTGCATCTGTGCGACGAAGAATGCGCACGCCTGGCACAAACCGGTTCGGCCATCGCGTTCTGCCCGACCTCGAACCTGTTCCTGGGCAGCGGCCTGTTCAACCTGCCGATGGCCGAGAAGCACAAAGTCAATGTGGGCCTTGGCACCGACGTGGGCGGCGGAACCAGTTTTTCGCTGCTGCAAACCCTGAACGAAGCCTACAAGGTCATGCAGTTGCAAGGTGCGCGACTGAGCCCGTTCAAATCGCTGTACCTGGCCACCCTCGGCGGCGCCCGGGCCTTGCGCCTGGAAGACCGGATCGGCACGTTGCAGCCGGGCACGGACGCGGACTTCCTGGTGCTGGACTACAACACCACGCCGCTGTTGAGCTATCGCCTGAAGCAGGCCAAGGACATGGCCGAGCGGTTGTTCGTACTGATGACCCTGGGGGATGACCGGACGGTGGCGCAGACTTATGCGGCAGGCCGGTTGGTGCACCAGCGCTAAMPLTRKAYRAALLHSLADPAEVGIEASYEYFEDGLLVVENGLISTIGHASDLLPTLPADIEITHYQDTLITPGFIDTHIHLPQTGMVGAYGEQLLDWLNTYTFPCESQFADPAHAEAVADIFVKELLRNGTTTALVFGSVHPQSVNAFFEVAEKLDLRMIAGKVMMDRNAPDYLVDTAESSYTESKALIERWHGKGRLHYAVTPRFAPTSTPEQLTLAGQLLGEYPDLYMQTHISENLQEVQWVKELFPERKGYLDVYDHYQLLGERSVFAHGVHLCDEECARLAQTGSAIAFCPTSNLFLGSGLFNLPMAEKHKVNVGLGTDVGGGTSFSLLQTLNEAYKVMQLQGARLSPFKSLYLATLGGARALRLEDRIGTLQPGTDADFLVLDYNTTPLLSYRLKQAKDMAERLFVLMTLGDDRTVAQTYAAGRLVHQRPGPT0021515_1503DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021515-guaD-K01487NANA
D1-35_00788837hypothetical proteinATGTACAACTGGATCAGCGCCCTCGCCGACCTGCAAACCCGCGGCGAACCCTGCGTGCTGGTGACGATCATCGAGGAGCTCGGCTCCACCCCGCGCAACGCCGGCTCGAAGATGGTCATCAGCGCCCGCCAGACATTCGACACCATTGGCGGCGGTCATCTGGAATACAAGGCGATGGAGATTGCCCGGCAGATGCTTGCCAGCGGCCAGCAGAACACCCATCTCGAGCGCTTCAGCCTCGGCGCCAGCCTGGGCCAGTGCTGCGGTGGCGTTACCGTGTTGCTGTTCGAACCCATGGGCCAGGTCCAGGCGCAGATTGCCGTGTTCGGTGCCGGTCATGTCGGCCGCGCCCTGGTGCCGCTGCTGGCGAGCCTGCCTTGCCGGGTGCGCTGGATCGACTCGCGGGAATCGGAATTTCCTGAGCAGTTGCCCCACGGCGTACAGAAAATCGTGACTGAAGACCCGCTGGACGAAGTCGACGAACTGCCCGCCGGCAGCTACTGCATCGTCATGACCCACAACCACCAGCTCGACCTGGAACTGAGCGCCGCGATCCTCAAGCGCAACGACTTCGCCTACTTCGGCCTGATCGGCTCGAAGACCAAACGCGTCAAGTTCGAACATCGCCTGCGTGATCGCGGCTTCGACAGTGGCGCCCTGCAACGCATGCGCTGCCCGATGGGCATCGGCGAAGTCAAAGGCAAGCTGCCCGTTGAAATCGCCATCTCCATCGCCGGCGAAATCATCGCCACCTATAACGCGGATTTCGGCCAGCACACCTCCCGCGCCGAACCCATTGCCAGGTTGCTGCCGGTCTCGCGCCGCAACCAGCGTTAAMYNWISALADLQTRGEPCVLVTIIEELGSTPRNAGSKMVISARQTFDTIGGGHLEYKAMEIARQMLASGQQNTHLERFSLGASLGQCCGGVTVLLFEPMGQVQAQIAVFGAGHVGRALVPLLASLPCRVRWIDSRESEFPEQLPHGVQKIVTEDPLDEVDELPAGSYCIVMTHNHQLDLELSAAILKRNDFAYFGLIGSKTKRVKFEHRLRDRGFDSGALQRMRCPMGIGEVKGKLPVEIAISIAGEIIATYNADFGQHTSRAEPIARLLPVSRRNQRPGPT0007280_3243DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-XANTHINE_METABOLISMPHYTOHORMONE-XANTHINE_BIOSYNTHESIS,PGPT0007280-xdhC|paod|ygeB|pucA-K07402NANA
D1-35_007892400pucDCOG1529putative xanthine dehydrogenase subunit DATGTCTAACCATCACGCCGTAGAGAAGACCCAGGCCGAACTGGCCGAGCTGTTCGCCCGCGACCTCACCACGGGCGTGGGCCGCAGTGTCAAGCATGACAGCGCTGCCAAACACGTGTCCGGCGAAGCCCAGTACATCGATGACCGGCTTGAATTTCCCAATCAGTTACACGTCTATGCCCGGCTGTCGGACCGCGCCCATGCGCGAATCCTGCGTATCGACACCACGCCCTGCTACGCCTTCGAAGGGGTGCGCATCGCCATTACCCATCAGGACATACCAGGCCTGAAGGACATTGGCCCGTTGTTGCCCGGCGACCCGCTGCTGGCGATCGATGACGTGCAGTTCGTCGGCCAACCGGTACTCGCCGTGGCGGCCAGGGATCTGGAGACCGCACGCCAGGCAGCCATGGCCGCGATCATTGAATATGAAGACCTCGAACCGGTGCTGGATGTGGTCGAGGCGCTGCGCAAGCGGCACTTCGTGCTCGACAGTCACACCCACCAGCGCGGCGATTCGGCCACGGCGCTGGCTACCGCCGAACATCGCATCCAGGGCTCGCTGCACATCGGCGGCCAGGAACACTTTTACCTGGAAACCCAGATTTCCTCGGTGATGCCCACCGAAGACGGCGGCATGATCGTCTACTGCTCGACCCAGAACCCCACCGAAGTGCAGAAGCTGGTGGCCGAAGTGTTGGGCGTGTCGATGAACAAGGTCGTGGTGGACATGCGCCGCATGGGCGGCGGCTTTGGCGGCAAGGAAACCCAGGCCGCCAGCCCGGCCTGCCTGTGCGCCGTCATCGCGCATCTCACCGGCCAGCCGACCAAGATGCGCCTGCCCCGGGTGGAGGACATGCTGATGACCGGCAAGCGCCATCCTTTCTATATCGAATACGACGTTGGCTTCGACGACATCGGGCGCCTGCATGGCATCGCCCTGGAACTGGCCGGCAACTGCGGTTGCTCGCCGGACCTGTCGGCCTCGATTGTCGACCGGGCGATGTTCCATGCCGACAATGCCTACTACCTGGGCGATGCGACCATCAACGGCCATCGCTGCAAGACCAACACCGCGTCGAACACCGCTTACCGTGGTTTCGGCGGGCCCCAAGGCATGGTCGCCATCGAAGAGGTGATGGATGCCATCGCCCGGCACCTGGGGCTCGACCCGCTGGCGGTGCGCAAGGTCAACTACTACGGCAAGACCGAGCGCAACGTCACGCACTACTACCAGACCGTCGAGCACAACATGCTCGAGGAAATGACCGCTGAACTGGAGGAAAGCAGCCAGTACGCCGAGCGCCGCGAAGCGATCCGCCGCTACAACGCAGGCAGCCCGATCCTCAAGAAGGGCCTGGCGCTGACGCCGGTGAAGTTCGGCATTTCCTTCACCGCCAGTTTCCTCAACCAGGCCGGGGCGTTGATTCACGTCTACACCGACGGCAGCATCCACCTGAACCACGGCGGCACGGAAATGGGCCAAGGGCTCAATACCAAAGTCGCCCAAGTGGTTGCCGAGGTGTTCCAGGTGGAAATGGACCGCGTGCAGATCACCGCGACCAACACCGACAAGGTCCCGAACACCTCGCCCACCGCCGCGTCCAGCGGCGCCGACCTGAACGGCAAGGCCGCGCAGAATGCCGCCGAAACCATCAAGCAACGGCTGGTGGAATTCGCCGCGCGGCAATACAAGGTCAGCGAAGAAGACGTGGAATTCCACAACGGCCACGTGCGGGTGCGCGATCACATCCTGACCTTCGAAGCGCTGGTACAACAGGCTTACTTCGCCCAGGTCTCGCTGTCGAGCACCGGGTTCTACAAGACCCCGAAAATCTACTACGACCGCAGCCAGGCCCGTGGCCGGCCGTTCTATTACTATGCCTTCGGCGCCGCGTGTGCCGAGGTGATCGTCGACACCCTCACCGGCGAATACAAGATGCTGCGCACCGACATCCTCCACGACGTTGGCGCCTCGCTGAACCCGGCCATCGACATCGGCCAGGTCGAGGGCGGCTTCATCCAGGGCATGGGCTGGCTAACCATGGAAGAACTGGTGTGGAACGACAAGGGCAAGCTGATGACCAATGGCCCGGCCAGCTACAAGATCCCGGCCGTGGCCGACATGCCGTTGGACCTGCGGGTGCGACTGGTGGAAAACCGCAAGAACCCCGAAGACACGGTGTTCCATTCCAAGGCCGTGGGCGAGCCGCCGTTCATGCTCGGCATCGCCGCGTGGTGCGCCATCAAGGACGCCGTGGCGAGCCTGGGGGATTATCGGCAGCAACCGAAAATCGATGCGCCGGCGACGCCGGAGCGGGTGTTGTGGGGATGTGAGCAGATGCGCCAGCCAAAGGCTGTGAAGCCTGCGGCAGCCGAAGCCGAAGTGGCTTCGCTCTAGMSNHHAVEKTQAELAELFARDLTTGVGRSVKHDSAAKHVSGEAQYIDDRLEFPNQLHVYARLSDRAHARILRIDTTPCYAFEGVRIAITHQDIPGLKDIGPLLPGDPLLAIDDVQFVGQPVLAVAARDLETARQAAMAAIIEYEDLEPVLDVVEALRKRHFVLDSHTHQRGDSATALATAEHRIQGSLHIGGQEHFYLETQISSVMPTEDGGMIVYCSTQNPTEVQKLVAEVLGVSMNKVVVDMRRMGGGFGGKETQAASPACLCAVIAHLTGQPTKMRLPRVEDMLMTGKRHPFYIEYDVGFDDIGRLHGIALELAGNCGCSPDLSASIVDRAMFHADNAYYLGDATINGHRCKTNTASNTAYRGFGGPQGMVAIEEVMDAIARHLGLDPLAVRKVNYYGKTERNVTHYYQTVEHNMLEEMTAELEESSQYAERREAIRRYNAGSPILKKGLALTPVKFGISFTASFLNQAGALIHVYTDGSIHLNHGGTEMGQGLNTKVAQVVAEVFQVEMDRVQITATNTDKVPNTSPTAASSGADLNGKAAQNAAETIKQRLVEFAARQYKVSEEDVEFHNGHVRVRDHILTFEALVQQAYFAQVSLSSTGFYKTPKIYYDRSQARGRPFYYYAFGAACAEVIVDTLTGEYKMLRTDILHDVGASLNPAIDIGQVEGGFIQGMGWLTMEELVWNDKGKLMTNGPASYKIPAVADMPLDLRVRLVENRKNPEDTVFHSKAVGEPPFMLGIAAWCAIKDAVASLGDYRQQPKIDAPATPERVLWGCEQMRQPKAVKPAAAEAEVASLPGPT0007265_244DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0007265-xdhB|pucD-K13482NANA
D1-35_007901455hypothetical proteinGTGATCCAGTTTTTACTCAACCAGGAACTCCGTAGCGAGCACGCCCTGGACCCGAACCTGACCGTGCTCAACTATCTGCGCGAGCATGTTGGCAAACCCGGCACCAAGGAAGGCTGCGCCAGCGGCGACTGTGGTGCATGCACCGTGGTGGTGGGCGAACTGGAAACGGACGCGAACGGTAGCGAGCGCATCCGCTACCGCAGCCTCAATTCGTGCCTGACCTTCGTCTCGTCGCTGCACGGCAAGCAACTGATCAGCGTCGAAGACCTCAAGCACAATGGCCAGTTGCACAGCGTCCAGCAGGCGATGGTCGACTGCCACGGCTCGCAATGCGGTTTCTGCACCCCGGGCTTCGTCATGTCGCTGTTCGCCCTGCAAAAGAACAGCGAACAACCCGACGCCCACAAGGCCCACGAAGCCTTGGCCGGCAACCTGTGCCGCTGCACCGGCTACCGGCCGATCCTGGCGGCGGCCGACCAGGCCTGCTGCGGCAAACAACCGGACCAGTTCGACGCCCGCGAAGCCCAGACCATCGCCCGCCTGAAAGCCATTGCCCCGACCGAAACCGGAGAGCTCAACAGCGGTGACAAGCGTTGCCTGGTGCCGCTGACCGTGGCCGACCTGGCCGACCTCTACGACGCCTATCCGCAGGCGCGGCTACTGGCGGGCGGCACCGATCTGGCGCTGGAGGTCACGCAGTTCCACCGCACCCTGCCGGTGATGATCTACGTAGGTAGCGTCGCCGAACTCAAGCGCATCGAGCGTTTTGAAGACCGTTTGGAGATCGGCGCCGCCACCGCGCTTTCCGATTGCTACGAGGCATTAAAAGCCGAATACCCGGATTTCGGCGAACTGCTGCAGCGTTTCGCCTCGCTACAGATCCGCAACCAGGGCACGTTGGGCGGCAACATCGGCAACGCCTCGCCCATCGGCGACTCCCCGCCCCTGCTGATCGCCCTCGGCGCGCAGATCGTGCTGTGCAAGGGCCAGACCCGCCGCACCCTGGCCCTGGAAGACTATTTCATCGACTACCGGGTAACCGCCCGCCAGGAAAGCGAATTTATCGAAAAGATCATCGTGCCCCGAGCCAGCGCCGAACAGACGTTCCGCGCCTACAAGGTTTCCAAGCGCCTGGACGATGACATTTCCGCAGTGTGCGCGGCGTTCAACCTGCATATTGAAAACGGTCTGGTGGAGGACGCGCGTGTCGCCTTCGGCGGCATGGCCGCAACACCCAAGCGTGCCAGGCACTGTGAAGCCGCACTGATCGGCGCGCCGTGGAACGACAGCACCCTCGAACGCGCCTGCGCGGCCTTGGCCGAGGATTTCACGCCGCTGTCGGACTTCCGCGCCAGCAAGGAATACCGTCTGCTCAGCGCCCGCAACCTGCTGCGCAAATACTTCATCGAGCTGCAAACGCCGCACATCGAGACTCGGGTGACCGCTTATGTCTAAMIQFLLNQELRSEHALDPNLTVLNYLREHVGKPGTKEGCASGDCGACTVVVGELETDANGSERIRYRSLNSCLTFVSSLHGKQLISVEDLKHNGQLHSVQQAMVDCHGSQCGFCTPGFVMSLFALQKNSEQPDAHKAHEALAGNLCRCTGYRPILAAADQACCGKQPDQFDAREAQTIARLKAIAPTETGELNSGDKRCLVPLTVADLADLYDAYPQARLLAGGTDLALEVTQFHRTLPVMIYVGSVAELKRIERFEDRLEIGAATALSDCYEALKAEYPDFGELLQRFASLQIRNQGTLGGNIGNASPIGDSPPLLIALGAQIVLCKGQTRRTLALEDYFIDYRVTARQESEFIEKIIVPRASAEQTFRAYKVSKRLDDDISAVCAAFNLHIENGLVEDARVAFGGMAATPKRARHCEAALIGAPWNDSTLERACAALAEDFTPLSDFRASKEYRLLSARNLLRKYFIELQTPHIETRVTAYVPGPT0007250_729DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0007250-xdhA-K13481NANA
D1-35_00791660hypothetical proteinATGACGTTCAAGGCCCCGGACAGCCTCGCCGAGCAAATCGCCCATTACCTCGCCGAACGCATCATTCGCGGCGAAATGAAACCGGGAGAGCGCATCCAGGAGCAAAAGGTCACGCTGGCGCTCAATGTCAGTCGCGGCTCGGTCCGCGAGGCTTTGCTGATCCTCGAGCGGCGTCATCTGATCGCTATCCTGCCGCGCCGTGGCGCCCACGTCACCGAGCTTACCGAGCACAAGGTGCGCAGCCTGTGCGCGTTGATGAGCGAGCTCTACATCCTGCTGGGCAATGCGGTGGCTCATGGCTGGAAGGAACAGGCCGACATGGCCCCGTTCGTGGCGATCCAGCAACGCCTACAGCAAGCTTACGAGCGCCAGGACATCCGCACCTTCGTTGATGAAAGCTTCAGCGTGATGCGCGCGGCCTATCCGTTTGCCGACAATCCGTATCTGCAAGAGACCGTCGAGAACCTGCAACCGGCGATGAGTCGCGCCTACTTCCTGGCACTTGAGCAGCGCAAGGCTGAAATGAGCGAATTCCTCGACCTGTTCCAGCGTCTGCTTGTAGCGGTGCTGGCCCGCGATCTGCCGCAGATCCGCATCGTGCTGACGGCCTATGCCCAGCGCAGTTGCGATCTGGTGGTTTCGGCCCTGACGGCGGCCTGAMTFKAPDSLAEQIAHYLAERIIRGEMKPGERIQEQKVTLALNVSRGSVREALLILERRHLIAILPRRGAHVTELTEHKVRSLCALMSELYILLGNAVAHGWKEQADMAPFVAIQQRLQQAYERQDIRTFVDESFSVMRAAYPFADNPYLQETVENLQPAMSRAYFLALEQRKAEMSEFLDLFQRLLVAVLARDLPQIRIVLTAYAQRSCDLVVSALTAANANANANANA
D1-35_007923489smc_2COG1196Chromosome partition protein SmcGTGCGGCTCAAGTGCATCAAGCTGGCGGGGTTCAAATCCTTCGTCGACCCGACCACGGTGAACTTCCCCAGTAACATGGCGGCGGTGGTCGGGCCCAATGGCTGCGGCAAGTCGAACATCATCGACGCCGTGCGCTGGGTGATGGGCGAAAGCTCGGCCAAGAACCTGCGCGGCGAATCGATGACCGACGTCATCTTCAACGGCTCCACCAGTCGCAAGCCGGTGAGCCAGGCCAGTATCGAGCTGGTGTTCGATAACTCCGACGGCACTTTGATCGGTGAATACGCGGCCTACGCGGAAATCTCCATTCGTCGCAAAGTGACCCGCGACAGCCAGAACAGCTATTTCCTCAACGGCACCAAATGCCGTCGCCGCGACATCACTGACATCTTCCTCGGCACCGGCCTGGGCCCGCGCAGCTACTCGATCATCGAGCAGGGCATGATCTCCAAGCTGATCGAGGCCAAGCCGGAAGACCTGCGTAATTTCATCGAGGAAGCCGCCGGCATCTCCAAGTACAAGGAGCGGCGCCGGGAAACCGAAAACCGCATCCGCCGTACCCACGAGAACCTTGCGCGCCTGACCGACTTGCGCGAGGAGCTCGAACGTCAGCTCGAACGACTGCATCGCCAGGCCGAGGCCGCCAAGAAGTATCAGGAATACAAGGGCGAGGAGCGCCAGCTCAAGGCCCAGCTTTCAGCGTTGCGCTGGCAGGCGTTGAACGAACAGGTCGGCCAGCGAGAGGCGATCATCGGCAACCAGGAAGTCAGTTTCGAAGCACTGGTGGCCGAGCAGCGCAATGCCGATGCCGCCATCGAGCGCCTGCGCGACGGGCACCACGAACTGTCCGAGCGCTTCAATCTGGTGCAGGGACGCTTCTATTCGGTGGGTGGCGACATTGCCCGGGTCGAACAGAGTATCCAGCACGGCCAACAGCGTTTGCGCCAGTTGCAGGACGATTTGAAGGAAGCCGAGCGCGCGCGCCTGGAAACCGAATCCCACCTGGGCCACGACCGCACCTTGTTGCTGACCCTTGGTGAAGAGCTGGACCGTCTTGTGCCGGAACAGGAAATCACCAGCGCCGCCGCCGAAGAGGCCGCGGCAGCCCTGGAAGAAGCCGAGCTGACCATGCACGGCTGGCAGGAGCAGTGGGACAGTTTCAACCTGACTTCCGCCGAACCGCGGCGCCAGGCCGAGGTGCAGCAGTCGCGCATCCAGCAGCTCGAAACCAGCATGGAACGTTTGGCTGAACGGCAACGGCGCCTGGCTGAAGAGCGGGCGTTGCTCGCTGCGGATCCGGAAGACGCGGCGATCCTCGACCTGAGCGAGCAGCTCGCCACCAGCGAAGCGACCCTGGAAGATTTGCAGGCCAGCGAAGACGCCCAGGTCGAGCGGCTGGAACAACTGCGCCAAGCCTTGCAACTGGCCTTGCAGAACCAGCAGCAGGCCCAGGGCGAACTGCAACGCCTCAACGGCCGCCTGGCCTCGCTGGAAGCGTTGCAACAGGCCGCGCTGGACCCAGGCACCGGCACGGCCGAGTGGTTGCGCGACCAGCATCTGGCCGAGCGCCCGCGTCTGGCCGAGGGGTTGAAAGTCGACGCGGGCTGGGAGCTGGCGGTGGAAACCGTGCTGGGCGCCGACCTGCAAGCGGTGCTGGTGGATGATTTCGCCGGCTTCGATCTCTCGGGGTTTGCCCAAGGCGATTTGCGCCTGCTCAGTCCGGCTGGCGATGGCGTGCGGATCCCTGGAAGTCTGCTGGACAAAGTCGAGGCCCAGGTTGACTTGTCGCCCTGGTTGGGTCAGGTCAAACCCGTGGATAGCCTGGAGCAGGCCCTGGCCTTGCGTGGTCAATTGGCCGCCGGCGAGAGCCTGATCAGTCGTGACGGGTACTGGGTCGGCCGGCATTTCCTGCGGGTGCGCCGGGCCGGCGAGGCCGAAAGCGGCATGCTCGCCCGTGGCCAGGAAATCCAGCGTCTGGTCGCCGAGCGCGAAGAGCGCGAGGCCAGCGTCGAAGCCCTGGAAACCGAATTGCAGAACCTGCGGGCGCAACAGCGCCAGCAGGAAAACGGTCGCGAACACCTGCGCCGCTTGTTGCAGGACGAGGCGCGCCAGCAGGGCGAACTCAAGGCGCAGCTGTCCGCTGGCAAGGCCAAGGTTGAACAACTGGCCCTGCGGCGCACCCGTCTCGATGAAGAAATCGCCGAGTTGGGCGAACAGCGGGCGCTGGAGCATGAACAGATCGGCGAGGCGCGCCTGCAATTGCAGGAAGCCCTCGACGCCATGGCGCTGGACACCGAACAACGCGAATTGCTCCTGGCCCAGCGTGACAGCCTGCGCGAACGCCTCGATCGGGTGCGCCAGGAAGCGCGCCAACACAAGGATCATGCCCATCAGCTGGCAGTGCGCCTGGGCTCGCTCCAGGCCCAATACGATTCCACGCGCCAGGCGCTGGAACGTTTGGAAATGCAATCCGAACGCCTCACCGAAAAGCGCGAACAGCTGAGCCTCAACCTGGAGGAGGGCGAGGCGCCGCTGGAGGAGCTGCGCCTGAAACTCGAGGAATTGCTCGACAAACGCATGAGCGTCGACGAAGAACTCAAGACCGCGCAGATCGCGCTGGAGGACGCCGACCGCGAACTGCGCGACGCGGAGAAGCGCCGCAGCCAGGCCGAGCAGCAATCCCAGCTGATTCGCGGCCAGATGGAGCAGCAGCGCATGGAATGGCAGGCCCTGACGGTCCGCCGCAAAGCCTTGCAGGACCAGTTGCTGGAGGACGGCTACGACCTCAACGGAGTGCTCGCCACCCTCGTGGCAGGTGCCAACGAGAAAGAGGCCGAGGAAGAACTCGAACGCATTGCCGCGCGCATCCAGCGCCTGGGCGCGATCAACCTGGCCGCCATCGACGAGTATCAGCAGCAGTCCGAGCGCAAGCGCTACCTCGACGCCCAGAACGATGACCTGGTGGAGGCGCTGGAGACCCTGGAAAACGTCATTCGCAAGATCGACAAGGAAACCCGCAATCGCTTCAAGGATACCTTTGATCAGATCAACGGCGGTTTGCAGGCACTTTTCCCGAAAGTTTTCGGCGGCGGCAGTGCCTATTTGGAACTGACGGGCGAAGATCTACTCGATACTGGGGTGACAATCATGGCGCGTCCTCCCGGCAAGAAGAACAGCACCATTCATTTACTTTCCGGCGGCGAAAAGGCCCTGACCGCATTGGCCCTGGTTTTTGCCATTTTCAAGTTGAATCCGGCGCCGTTCTGCATGCTCGACGAAGTCGATGCGCCACTGGACGACGCCAACGTGGGCCGTTACGCACGTCTGGTAAAGGAAATGTCTGAAACGGTGCAGTTCATCTACATCACCCATAACAAAATCGCCATGGAAATGGCCGATCAGTTGATGGGCGTCACCATGCATGAGCCGGGTTGCTCGCGACTGGTGGCGGTGGATGTGGAAGAGGCCATGGCCATGGTTGATGCGTAAMRLKCIKLAGFKSFVDPTTVNFPSNMAAVVGPNGCGKSNIIDAVRWVMGESSAKNLRGESMTDVIFNGSTSRKPVSQASIELVFDNSDGTLIGEYAAYAEISIRRKVTRDSQNSYFLNGTKCRRRDITDIFLGTGLGPRSYSIIEQGMISKLIEAKPEDLRNFIEEAAGISKYKERRRETENRIRRTHENLARLTDLREELERQLERLHRQAEAAKKYQEYKGEERQLKAQLSALRWQALNEQVGQREAIIGNQEVSFEALVAEQRNADAAIERLRDGHHELSERFNLVQGRFYSVGGDIARVEQSIQHGQQRLRQLQDDLKEAERARLETESHLGHDRTLLLTLGEELDRLVPEQEITSAAAEEAAAALEEAELTMHGWQEQWDSFNLTSAEPRRQAEVQQSRIQQLETSMERLAERQRRLAEERALLAADPEDAAILDLSEQLATSEATLEDLQASEDAQVERLEQLRQALQLALQNQQQAQGELQRLNGRLASLEALQQAALDPGTGTAEWLRDQHLAERPRLAEGLKVDAGWELAVETVLGADLQAVLVDDFAGFDLSGFAQGDLRLLSPAGDGVRIPGSLLDKVEAQVDLSPWLGQVKPVDSLEQALALRGQLAAGESLISRDGYWVGRHFLRVRRAGEAESGMLARGQEIQRLVAEREEREASVEALETELQNLRAQQRQQENGREHLRRLLQDEARQQGELKAQLSAGKAKVEQLALRRTRLDEEIAELGEQRALEHEQIGEARLQLQEALDAMALDTEQRELLLAQRDSLRERLDRVRQEARQHKDHAHQLAVRLGSLQAQYDSTRQALERLEMQSERLTEKREQLSLNLEEGEAPLEELRLKLEELLDKRMSVDEELKTAQIALEDADRELRDAEKRRSQAEQQSQLIRGQMEQQRMEWQALTVRRKALQDQLLEDGYDLNGVLATLVAGANEKEAEEELERIAARIQRLGAINLAAIDEYQQQSERKRYLDAQNDDLVEALETLENVIRKIDKETRNRFKDTFDQINGGLQALFPKVFGGGSAYLELTGEDLLDTGVTIMARPPGKKNSTIHLLSGGEKALTALALVFAIFKLNPAPFCMLDEVDAPLDDANVGRYARLVKEMSETVQFIYITHNKIAMEMADQLMGVTMHEPGCSRLVAVDVEEAMAMVDANANANANANA
D1-35_00793852zipACell division protein ZipAATGGAAATCGGTCTGCGCGAGTGGCTGATCGTCATCGGCATCATTGTCATTGCCGGTATTCTTTTCGACGGCTGGCGTCGCATGCGCGGCGGCAAGGGGAAACTCAAGTTTCGCCTGGATCGCAGCCTGTCGAACCTGCCGGATGAAGATGACAGTGCCGAACTGCTGGGCCCGCCCCGGGTGCTGGATACCCACAAGGAGCCGCAGCTGGACGAACACGACCTGCCGTCCATGAGCGCGCCGGCGCGCGAGCCACGTGAGTCGGGCTCCAAGCGCGGCAAGCGCAACAGTGAGCCGTCCCAGGGCGACCTGAACCTGAACCTCGACCTCGATGGCGGTCCAGGCTTCAGCAGCCGTGACGGTGATTTCCCGGACGAGAGCAAGGCCTCCGGTTCCAACGGTGACAAGGACCAGGCCCAGGCTGAAGAAGTGCTGGTGATCAGTGTGATCTGCCGCGATCCAGCCGGCTTCAAGGGCCCGGCGTTGCTGCAGAACATCCTCGAAAGTGGCCTGCGTTTCGGCGAAATGGATATTTTCCATCGCCACGAAAGCATGGCAGGCAATGGCGAGGTGCTGTTTTCCATGGCCAACGCCGTCAAGCCAGGCGTGTTCGATCTGGACGACATCGATCATTTCAGTACCCCGGCGGTGAGCTTCTTCCTTGGGCTGCCAGGCCCGCGCCATCCAAAACAGGCTTTCGATGTGATGGTGGCCGCGGCTCGCAAGCTGGCCCAGGAACTCAACGGTGAATTGAAGGATGACCAGCGCAGCGTGCTGACTGCCCAGACCATCGAGCATTACCGCCAGCGCATCGTCGAGTTCGAGCGCCGGGCATTGACCCAGAAACGCTGAMEIGLREWLIVIGIIVIAGILFDGWRRMRGGKGKLKFRLDRSLSNLPDEDDSAELLGPPRVLDTHKEPQLDEHDLPSMSAPAREPRESGSKRGKRNSEPSQGDLNLNLDLDGGPGFSSRDGDFPDESKASGSNGDKDQAQAEEVLVISVICRDPAGFKGPALLQNILESGLRFGEMDIFHRHESMAGNGEVLFSMANAVKPGVFDLDDIDHFSTPAVSFFLGLPGPRHPKQAFDVMVAAARKLAQELNGELKDDQRSVLTAQTIEHYRQRIVEFERRALTQKRNANANANANA
D1-35_007942358ligACOG0272DNA ligaseATGAACGCCGTCGAAACCCGCATCCTGGAGCTGCGCTCCGAGCTGGACCAGCATAACTATCGCTACCACGTCCTTGACGAACCGACCATCCCGGACGCCGAGTACGATCGCCTGTTCCACGAACTCAAGGCCCTGGAAGAGCAGCATCCGGAGCTGGTGACCAGCGATTCCCCGACCCAACGGGTCGGCAGCGTGGCGCTGTCGGCGTTCAGCCAGGTGCGTCATGAAATCCCGATGCTCAGCCTGGGCAACGCCTTCGATGAAAACACCATGCGTGAGTTCGACCGCCGGGTGACGGAAGGTCTGGACTTGCCCACGGGCGATTTGCTCGGCGCTGGCGCGGCGGTGGAGTACAGCTGCGAACCGAAACTCGATGGCCTGGCCGTCAGCCTGTTGTATCAGGACGGCATGCTGGTGCGCGGCGCGACGCGCGGTGACGGAACCACGGGCGAGGACATCAGTGTCAACGTGCGCACCGTGCGCAATATTCCTCTCAAGCTGCAGGGCAGCGGCTGGCCACCGGTGTTGGAAGTGCGTGGCGAGGTGTACATGTCCAAGGCCGGTTTCGAGCGTCTCAACGCTACGCAACTGGAGGTGGGCGGCAAGACCTTCGCCAACCCGCGCAACGCCGCGGCGGGCAGTTTGCGCCAGCTGGATTCGAGGATCACCGCCAACCGTCCCCTGGAGTTCTGCTGCTATGGTATCGGCCAGGTGACCTCGGACATCGCCGATACCCACATCGGCAACCTCAAGCAGCTCAAGGCCTGGGGCATGCCCGTCAGCCGCGAGCTGAAGCTGGCCCACGGTATCGACGAATGCCTGGACTACTACCGCGACATCGGCGAACGGCGCAATTCGCTGCCCTACGAAATCGACGGCGTGGTGTTCAAGGTCAACAGCATCGCCTCGCAGCGCGAGCTGGGTTTTCGGGCACGGGAGCCGCGCTGGGCCATCGCGCATAAATTCCCCGCCAGCGAAGAACTCACCGAGTTGCTGGACGTGGAGTTCCAGGTCGGCCGCACCGGCGCCGTCACCCCCGTGGCGCGGCTCAAGCCGGTCAAGGTGGCTGGCGTGACCGTGGCCAACGCCACGCTGCACAACATGGACGAAGTGGCGCGGCTGGGCTTGATGATCGGCGATACGGTGATCATTCGCCGCGCCGGCGACGTCATTCCGCAGGTGGTGCAGGTTGTCACCGAGCGTCGTCCGGACAACGCCCGGGCGGTGCAGGTGCCTGAGCAGTGTCCGGTCTGCGGTTCCCATGTCGAGCGCACGCAACTGATCAAACGCAGCAAGGGCCGCGAAACCGTCAGCGAAGGCGCGGTGTACCGCTGCGTCGGTCGGCTGGCCTGCGGCGCGCAGCTCAAGCAGGCGATCATCCACTTTGTCTCGCGCCGGGCGATGGACATCGAAGGCCTGGGTGAAAAAAGCGTCGAGCAGTTGGTGGATGAAGGTCTGGTGGGCTCGCCAGCCGATCTCTACGCGCTGACGTTCGAGCAAGTGGTCGATCTGGAAGGTTTCGCCGAGTTGTCGAGCAGGAACCTGCTGGCGGCTATCGTCGACAGCAAGAAGCCGAGCCTGGCGCGCTTCATCTATGCCCTCGGCATTCCAGACGTGGGCGAGGAAACCGCCAAGATCCTGGCCCGCTCCCTCGGTTCGCTGGAGCGCGTGCAGGCGGCCTTGCCCCAAGTGCTGACGTACTTGCCGGATGTCGGCCTGGAAGTCGCTCATGAGATCCACAGCTTTTTTGAGGATCCGCACAATCGCCAGGTCATCAAGGATTTGCTGCGTCATGGCCTGGAGATTCAGGACCAGGGCGAACTCGGCGCCGAGTTTTCCGCCAGCACCACCCTGGGCGGCTTCCTCGACAAGCTGCACATCCCTTCGGTCGGACCGGGCGGGGCGCAAAAACTGGCGGACAAATTCGGCTCCCTCGAAGCGGTCATGAATGCCGACTGGCTGGACATGCGCCAGGCATTGCCGGAAAAGCAGGCCAACGCCGTGCGGGAGTACTTCGCCAGCGCCGCCAGCCGCGAGCTGGCCGTGGCCGCAGAGCAGCAATTGCGCGATTTCGGCATGCACTGGCAGAGCGAGAAAAAAGTCGTCGAGGGTTTGCCTGAAGCGGGGCATACCTGGGTGCTGACCGGCTCGCTGGAATTGATGAGTCGCGACGTCGCCAAGGACAAGCTGGAAAGCCTCGGCGCCAAGGTGGCCGGTTCCGTGTCGGCAAAGACCCATTGCGTGGTGGCCGGGCCGGGCGCCGGTTCGAAGTTGGCCAAGGCCAATGAGCTGGGGCTCAAGGTGCTCGACGAACAAGCCTTCGTCGATTTCTTGAAGGGGCATGGCATCACAGTGTGAMNAVETRILELRSELDQHNYRYHVLDEPTIPDAEYDRLFHELKALEEQHPELVTSDSPTQRVGSVALSAFSQVRHEIPMLSLGNAFDENTMREFDRRVTEGLDLPTGDLLGAGAAVEYSCEPKLDGLAVSLLYQDGMLVRGATRGDGTTGEDISVNVRTVRNIPLKLQGSGWPPVLEVRGEVYMSKAGFERLNATQLEVGGKTFANPRNAAAGSLRQLDSRITANRPLEFCCYGIGQVTSDIADTHIGNLKQLKAWGMPVSRELKLAHGIDECLDYYRDIGERRNSLPYEIDGVVFKVNSIASQRELGFRAREPRWAIAHKFPASEELTELLDVEFQVGRTGAVTPVARLKPVKVAGVTVANATLHNMDEVARLGLMIGDTVIIRRAGDVIPQVVQVVTERRPDNARAVQVPEQCPVCGSHVERTQLIKRSKGRETVSEGAVYRCVGRLACGAQLKQAIIHFVSRRAMDIEGLGEKSVEQLVDEGLVGSPADLYALTFEQVVDLEGFAELSSRNLLAAIVDSKKPSLARFIYALGIPDVGEETAKILARSLGSLERVQAALPQVLTYLPDVGLEVAHEIHSFFEDPHNRQVIKDLLRHGLEIQDQGELGAEFSASTTLGGFLDKLHIPSVGPGGAQKLADKFGSLEAVMNADWLDMRQALPEKQANAVREYFASAASRELAVAAEQQLRDFGMHWQSEKKVVEGLPEAGHTWVLTGSLELMSRDVAKDKLESLGAKVAGSVSAKTHCVVAGPGAGSKLAKANELGLKVLDEQAFVDFLKGHGITVNANANANANA
D1-35_007951161COG4307putative proteinATGTACCGCTTCTTCGAACAACTGAGCTCACGCATCGCTGCGCCGTTCCTGGGCGACCGATCACGCAACAGCAAGATCTGGCCGTGTCGCTGCGGCCAGTCATTGTTCTTTCGCAACAGCCAGTGCCTGGCCTGCCTGGCGGCGCTGGGCTATCAGCCGGAGCAGAGCCGCCTGTCGTCCCTGCAACCCGGCGCGCAACCGGATACCTGGACCCTGGATGTCGATCCGCAGGCGGGACTGTTTCGTCGCTGCGCCAATCTCGATACCCCGGCGTCGTGTAACTGGCTGCTGCCTGCCAACGGGCAAGACACGCTGTGCATCGCTTGTTGCCTGAATCGCACGATTCCCGACCTGTCGGTCCCCGAAAATCCCGAGCGCTGGCGCAAGGTCGAAACCGCCAAGCGTCGCCTGGTAGCGCAACTGATCACCCTCGGTTTGCCGGTCATTCCGAAGGCCGTCGACGAGAATATCGGCCTGGCCTTCGATTTCATCGGCGTCGACCTCGACGGCAAACCGCCGACGACCGGGCACGCCAGTGGACTCATCACCCTCGATATCAAAGAGGCCGACGATGCTCACCGCGAACACGTGCGTCAGCAGATGCGCGAGCCGTATCGCACCTTGCTCGGACACTTTCGCCATGAGGTGGGTCATTACTATTGGGATCGCCTGATTGCCGACAGCCATTGGCTGGAACCCTTCCGCGAGCTGTTCGGCGACGAGCGCGCCAGCTATTCCGAAGCCTTGGAGCGGCACTACCAGCAAGGCGCGCCGGTGGACTGGCAGTCCCGTTACGTCAGCGCCTACGCCACCATGCATCCGTGGGAGGACTGGGCCGAAACCTGGGCTCATTACCTGCACATGATGGACGCGGTGGATACGGCGCTGGGCTTTGGCATGAGCGCGCGGGAAATGGATTTCGACTACCAGCCATTTCCCCCCGAAACCCTGTTCGACCCCGAGCACACCGGCGGCGCGGCGTTCCTGTCATTCGTCAACGCCTGGATCGAACTGGCCGGCATGCTCAACGAACTCTCGCGCAGCATGGGCCAGCCGGATTTCTACCCGTTCGTCGTGCCGGCGGCGGTGATCACCAAGCTGCATTTCATCCATCTGGTGATTCAGGAGGAGGGTGGCCGGGCGGATGAGGTGCTGTTGTAGMYRFFEQLSSRIAAPFLGDRSRNSKIWPCRCGQSLFFRNSQCLACLAALGYQPEQSRLSSLQPGAQPDTWTLDVDPQAGLFRRCANLDTPASCNWLLPANGQDTLCIACCLNRTIPDLSVPENPERWRKVETAKRRLVAQLITLGLPVIPKAVDENIGLAFDFIGVDLDGKPPTTGHASGLITLDIKEADDAHREHVRQQMREPYRTLLGHFRHEVGHYYWDRLIADSHWLEPFRELFGDERASYSEALERHYQQGAPVDWQSRYVSAYATMHPWEDWAETWAHYLHMMDAVDTALGFGMSAREMDFDYQPFPPETLFDPEHTGGAAFLSFVNAWIELAGMLNELSRSMGQPDFYPFVVPAAVITKLHFIHLVIQEEGGRADEVLLNANANANANA
D1-35_00797315hypothetical proteinATGCAAATTTCAAGTCTGGGCTCGGCCATCAGACGCTACCGCAAAGTAGCGGGGCTCACTCAGGCTGAACTTGGCGAAAAGACCGGTTTTGACCCCAAAACCATCAGCCGCTTCGAGACCGGCACCTACACTCCCAGCGTCGAAGCCTTGTTCCTGCTGGCCAACGCGCTGGACGTACAGCCCAAGGCTTTTTTCGCCGAAATGGGCGAGGAAGATGAACAGCGGGCATACCTGTTCAATGTCATTCACAAAGCCACTTCGAAGGATCTCGGGAAGCTGATTGCCGCGGTTGAGCAGGCGCTGGCCAAGTCTTGAMQISSLGSAIRRYRKVAGLTQAELGEKTGFDPKTISRFETGTYTPSVEALFLLANALDVQPKAFFAEMGEEDEQRAYLFNVIHKATSKDLGKLIAAVEQALAKSNANANANANA
D1-35_007981737hypothetical proteinATGGATAAGAAGTACCGCAGGGCTGTTGACGCCGCCGCGATCTTTTCCGAAACCGATTTGAGCGGGCGCATCACCTACGTCAACGATCAATTCTGCGCCCTGTTTGGCTACCGACGCGATGAGCTGCTGGGATCCAACCACCGGTTGCTCAACTCGGGGCAGCACCCCAGCGAATTTTTCAGTGCGATGTGGCGCACCATCGCCCTGGGTAATGTCTGGAAAGGTGAAATCTGCAATCGGGCCAAGGACGGCACGCTGCATTGGGTCGATACCACCCTGGTACCGGTAGCCGACGAAACGAGCGGGCATATCGAGCGCTACCTGGCGATTCGCTTCGATGTCAGCGAAAAGCGCCGGTTGTTGCACTCGTTGCAATGGCGTGTCGGGCATGACGTGCTGACCGGGCTGCCCAATCGCACCTACCTGTCCGAGCTGCTGGACCAGGCCCTGGACTTTTCGCGGGGGGAAAGTCTGCCCCTGGCGGTGTGCATGCTCGATCTGGATGGCTTCAAGGCCGTCAACGACGGTTATGGCCATGCCAGCGGTGACCGGCTGCTGGTGGAAGTCGCCCGGCGGCTGCGCAGCATTGTGCGCGGCGAGGATGTGGTGGCGCGCCTGGCGGGCGACGAGTTCGTACTGGTGCTGCGTCATGTGCTTGGAATGGACGAGCTGCATGCCGCATTGAACCGGGTCCTGATTGCGGTTTCCATGCCCTATGCGATCGACGGCAAGAGTATCAACGTCTTCGCCAGCATTGGTGTCACCTTGTCACCGTGGGATAACGAAGACGCCGATACGTTGCTGCGCCACGCCGATCAAGCGATGTATGTCGCCAAGCAGAGCGGCCGCAATCGTTTCCATCTGTTTGATGTATCCCGGGACAAGGAAGTGCGGGCCACTTACCAGATTGTCGATCGGGTGCGGCAGGCACTCGCCGGCGATGAGCTGCGGCTGCATTTCCAGCCCAAGGTCAATATGCGCAACGGCGCGGTAGTCGGTCTCGAAGCCTTGTTGCGCTGGAAGCATCCGCAACGAGGCCTGGTGCCGCCGCGCGAGTTCCTGCCACTGGTAGAAGAGACCGACCTGATTGTCGAGATCGGCGAATGGGTCATGGGCCAGGTCCTGACGCTGCTTCAGCAATGGCAGCAGGCGGGGCAGGGCTGGCCGGTGAGCATCAATATTTCGGCGCGGCATTTCCAGCGGGCGGATTTCGTCGAGCGGCTGCAACGCATGCTGGAACGGCATCCGACGGTCCCGCCGCGGATGCTCGATCTGCAGATCGTCGAGTCGGTCGCCGTGGAGAATCTCGCCCATGTCAGTGCCTGCCTCCAAGCGTGCCAGGCCTTGGGTGTAGGGTTTTCATTGGGCGGTTTCGGTACGGGTTATTGCTCGCTCAATGACCTCAAGCACTTGCGCACGCAAACCATCAAGATCGACAAGACGTTCGTGCGCGACATCCTCGACGACCGGGACGACCTGGCATTGACCGAGGCGGTAATCGGCCTGGCCCGGGCGTTCGGCCGGCAGGTGGTCGCGGAAGGCCTGGACAGTCTCGAACATGGGCAATTGTTGCTGCGCCTGGGCTGCGAAGTGGCCCAAGGTTACTTCATCGCCCGGCCCATGCCGGCCGACGAGGTCCCGGGCTGGGTAAGGGACTTCATCTCGCCGCCGCAGTGGCAGGCCCACCCGGGCAGTCAAGGGGAGGCGGCCTGCGACCCTTCGTTGCGGCCGGTATAAMDKKYRRAVDAAAIFSETDLSGRITYVNDQFCALFGYRRDELLGSNHRLLNSGQHPSEFFSAMWRTIALGNVWKGEICNRAKDGTLHWVDTTLVPVADETSGHIERYLAIRFDVSEKRRLLHSLQWRVGHDVLTGLPNRTYLSELLDQALDFSRGESLPLAVCMLDLDGFKAVNDGYGHASGDRLLVEVARRLRSIVRGEDVVARLAGDEFVLVLRHVLGMDELHAALNRVLIAVSMPYAIDGKSINVFASIGVTLSPWDNEDADTLLRHADQAMYVAKQSGRNRFHLFDVSRDKEVRATYQIVDRVRQALAGDELRLHFQPKVNMRNGAVVGLEALLRWKHPQRGLVPPREFLPLVEETDLIVEIGEWVMGQVLTLLQQWQQAGQGWPVSINISARHFQRADFVERLQRMLERHPTVPPRMLDLQIVESVAVENLAHVSACLQACQALGVGFSLGGFGTGYCSLNDLKHLRTQTIKIDKTFVRDILDDRDDLALTEAVIGLARAFGRQVVAEGLDSLEHGQLLLRLGCEVAQGYFIARPMPADEVPGWVRDFISPPQWQAHPGSQGEAACDPSLRPVPGPT0023624_234DIRECT 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
D1-35_00799762hypothetical proteinATGCGCTCAGCCATGGGGGCTTTGCTGTTGCTGGGTACAGGATGTTTCGCCGCCGAAGTGCCCCTGCGCTTCGCCATTACCGATGGCTGGGCCATGCCCATGGTACAGATCGAACGGGGCCGTCCGACCCAGGGCATTCTTCCGGACGTCATGACCAGCCTGGCAACTCAGGTCGGCATACCGGCACAGTTTCATGTCCTTGCCCGCGCGCGATTGGACAGCGCCATGGAACACGGCGAAATAGACATGCGATGTTACGTCTCGCCCGACTGGGTGAAGGATAAAGGGGGCGATTACCTTTGGAGCGTCCCGCTGTTCTTTCAGCGCGATGTGCTCGTTGGCTCGGCCAGCGCCCCCGCCCGAGTGACACCGGCAACACTCGCCCAGCAATCCATCGGTACCGTGCTCAGCTATCGCTACCCGACGCTGCAACCCTTGTTCGACAGCGGCCATCTGCGTCGTGACGACGCGCGCAGCCAGGACCAGGTGCTGGCGAAACTGCTGGCCGGCCGCTACCGCTATGCGGTCAGCAATCAATGGGCACTGGACTGGTTCAATCAACGGCATGGCGCCGACCGGCAACTGCATGAGGTTGCCGTCCTCCAGGAACAGCAACTGAGCTGTTATGTGCGCAATGACCCGGACATTCCGGCGCAACGCATTCTGCGCACCTTGTTAAAAATGAAAATGTCCGGGGAAATCGACGCGATCATCCAGCTTTATACCGGCCGCAACGAAGGGTCGCAGGCCGCCTCCCCTTGAMRSAMGALLLLGTGCFAAEVPLRFAITDGWAMPMVQIERGRPTQGILPDVMTSLATQVGIPAQFHVLARARLDSAMEHGEIDMRCYVSPDWVKDKGGDYLWSVPLFFQRDVLVGSASAPARVTPATLAQQSIGTVLSYRYPTLQPLFDSGHLRRDDARSQDQVLAKLLAGRYRYAVSNQWALDWFNQRHGADRQLHEVAVLQEQQLSCYVRNDPDIPAQRILRTLLKMKMSGEIDAIIQLYTGRNEGSQAASPPGPT0020800_13073DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-35_008002082ruvB_1Holliday junction ATP-dependent DNA helicase RuvBATGAGTTATCAGGTTCTTGCACGTAAATGGCGTCCGCGCTCGTTCCGCGAAATGGTCGGCCAGACCCATGTGCTCAAGGCTCTGATCAATGCCTTGGACAGCCAGCGGCTGCACCATGCCTACCTGTTTACCGGCACCCGTGGCGTGGGCAAGACGACCATTGCGCGGATCATTGCCAAGTGCCTGAACTGTGAAACCGGTATCACCTCGACGCCCTGCGGCGAGTGTTCGGTCTGCCGGGAAATCGACGAAGGTCGTTTCGTCGACCTGATCGAGATCGACGCCGCCAGCCGCACCAAGGTCGAAGACACCCGCGAGCTGCTCGACAACGTGCAATACGCCCCGAGCCGTGGGCGCTTCAAGGTCTACCTGATCGACGAAGTGCACATGCTTTCCAGCCATTCCTTCAATGCGCTGCTCAAGACCCTCGAAGAGCCGCCGCCGTACGTCAAATTCATCCTGGCCACCACCGACCCGCAGAAACTTCCGGCAACGATTCTGTCGCGCTGCCTGCAGTTTTCTCTGAAGAACATGACGCCGGAACGGGTGGTCGAGCACCTGACGCACGTCCTGGGCGTCGAGAACGTACCCTTCGAGGACGACGCGCTCTGGCTGCTGGGCCGCGCTGCCGATGGTTCGATGCGCGACGCCATGAGCCTGACCGACCAGGCGATCGCCTTTGGTGAGGGCAAGGTCATGGCTGCCGATGTGCGCGCCATGCTCGGTACCCTCGATCACGGCCAGGTCTATGACGTGTTGCATGCGCTGATAGAAGGTGACGCAAAGGCGCTGCTTGAAGCGGTGCGTCACCTGGCCGAGCAGGGGCCGGACTGGAATGGCGTACTCTCGGAAATTCTCAACGTACTGCACCGTGTCGCCATCGCCCAGGCCTTGCCTGAGGGTGTCGATAACGGTCACGGGGACCGCGATCGCGTACTGGCATTGGCCCAGGCGCTGCCGGCCGAAGACGTGCAGTTCTATTACCAGATGGGCCTGATCGGTCGACGCGACTTGCCTTTGGCCCCGGATCCGCGTGGCGGCTTCGAAATGGTCCTGCTGCGCATGCTCGCGTTCCGGCCGGCCGATACGCCGGACGCGCCGAGACAAGCGCTAAAGCCAGTGGGGATCAGCCAGGCCACAGCTGATTCCGCCAAGCCAGTGGCTGCCACGCCCGTTGTTGCGTCGGCAGCGGCTTCTGCCCCGGCAACGGTGGTGCCCATAGCCGAGCCGACAGCTGTCGTCGCTACACCCGAGCCGGTCGTCGAGGCGCAGCCTGAGCCGGCTGTCGAGGCGCCATCCGAGCCGGTCGCCGAAGCCATTATCGACCTGCCCTGGAATGATCCGGTCGAGCCGGAGATCGTCCAGCAACCTGCCGTGGAACCGGTGCTGGAAACCGTCGCCGAGCAGCCTGACCTGCCGCCGATGCCTATGCCCACGCCTGACAGTGTGGTGCCCGATGCACCCGAGTGGGTGGCCGCGCCGATGCCTGAGCCGACGGTGGCTGACGTTGCTGTCGCCACGCCGGGCATCGACCTGGACGATGAGCCACCGTTGGATGAGGACTACATCGAGCCGGACATGGACTCGGCCTACAGCTATCTGGACGACCTGGCCAGCGAGCACGCCGCCGAGCCGGCGCCGGAGCCCGAACCCGAACCGGCGGCAATGCCGGCCACCGGGCTGGCGCTGCAATGGCTGGAGTTGTTCCCGAAACTGCAGATCAGTGGCATGACCGGCAGCATCGCCGCCAACTGCACTTTGATTTCGGTGGACGGCGACCATTGGCTGCTGCACCTGGATCCGGCCCACAGCGCGCTGTTCAACGCGACCCAGCAACGTCGCCTGAACGATGCGCTGAACCAATATCACCAGCGCACCCTGACGTTGACCATCGAGCTGATCAAGCCCGAGCAGGAAACCCCGGCCCAGGCTGCATCCCGCCGGCGTGCCGACCGCCAGCGCGAAGCCGAGGAGTCGATCCACAACGATCCGTTCATCCAGCAGATGATGCAACAGTTCGGCGCCGTGGTCCGTCACGATACTATCGAACCTGTCGAGGCCCCGGTTACCCAGGGCTCATAAMSYQVLARKWRPRSFREMVGQTHVLKALINALDSQRLHHAYLFTGTRGVGKTTIARIIAKCLNCETGITSTPCGECSVCREIDEGRFVDLIEIDAASRTKVEDTRELLDNVQYAPSRGRFKVYLIDEVHMLSSHSFNALLKTLEEPPPYVKFILATTDPQKLPATILSRCLQFSLKNMTPERVVEHLTHVLGVENVPFEDDALWLLGRAADGSMRDAMSLTDQAIAFGEGKVMAADVRAMLGTLDHGQVYDVLHALIEGDAKALLEAVRHLAEQGPDWNGVLSEILNVLHRVAIAQALPEGVDNGHGDRDRVLALAQALPAEDVQFYYQMGLIGRRDLPLAPDPRGGFEMVLLRMLAFRPADTPDAPRQALKPVGISQATADSAKPVAATPVVASAAASAPATVVPIAEPTAVVATPEPVVEAQPEPAVEAPSEPVAEAIIDLPWNDPVEPEIVQQPAVEPVLETVAEQPDLPPMPMPTPDSVVPDAPEWVAAPMPEPTVADVAVATPGIDLDDEPPLDEDYIEPDMDSAYSYLDDLASEHAAEPAPEPEPEPAAMPATGLALQWLELFPKLQISGMTGSIAANCTLISVDGDHWLLHLDPAHSALFNATQQRRLNDALNQYHQRTLTLTIELIKPEQETPAQAASRRRADRQREAEESIHNDPFIQQMMQQFGAVVRHDTIEPVEAPVTQGSNANANANANA
D1-35_00801339ybaBCOG0718Nucleoid-associated protein YbaBATGATGAAAGGTGGCATGGCCGGCCTGATGAAGCAGGCGCAGCAGATGCAGGAAAAAATGGCCAAGATGCAGGAAGAGCTGGCCAACGCCGAAGTCACCGGCAAGTCCGGCGGCGACATGGTGACCGTGGTCATGACCGGTCGCCACGACATCAAGCGCGTCAGCATCGACCCGAGCGTGGTCGAGGGCTTGAGCGAAGACGACAAGGAAATGCTCGAGGCCCTGTTTGCCGCCGCCGTCAATGACGCGGTGCGCAAGATCGAAGCCAACAGCCAGGACAAAATGTCCGGCATGACCGCCGGCATGCAACTGCCGCCGGGCATGAAGCTGCCGTTCTGAMMKGGMAGLMKQAQQMQEKMAKMQEELANAEVTGKSGGDMVTVVMTGRHDIKRVSIDPSVVEGLSEDDKEMLEALFAAAVNDAVRKIEANSQDKMSGMTAGMQLPPGMKLPFNANANANANA
D1-35_008021029curACOG2130NADPH-dependent curcumin reductaseATGTCATCGATTTCCAATCAGCGCATCGTCCTGGCCTCGCGCCCCCAAGGTGCGCCAACCCCGGAAAACTTTCGTCTTGAAGACGTGACGCTGCCGGACCTGGCGGACGGGCAGATCCTGCTAAAGACGCTGTACCTTTCGCTCGATCCTTACATGCGTGGGCGTATGAGTGACGCGCCTTCCTACGCCGCGCCAGTGCAAATCGACGAAGTGATGACCGGTGGCGCCGTCAGTCGTGTGGAGCGCTCGATGCACCCGAAATTCCAGGAAGGTGATCTGGTGGTCGGCGCTACGGGCTGGCAGAGCCACTGCATCAGCGATGGCCGCAACGTCATCCCCATCCCGTCCGGACTCCCCAGCCCCTCGATGGCGCTCGGAGTACTGGGCATGCCGGGCATGACCGCCTACATGGGACTGATGGACATCGGCCAACCCAAGGCAGGCGAGACCCTGGTGGTCGCGGCGGCATCGGGCGCCGTGGGCTCGGTGGTCGGCCAGGTGGCGAAGATCAAGGGGCTGCGAGTGGTGGGCGTGGCCGGTGGCAGTGAAAAATGCAAATACGTGGTCGACGAGTTGGGATTTGACGCCTGCGTCGATCACAAGAGTGCGAATTTCGCCGACGAACTGGCCCGGGCCTGCGACCAGGGCATCGATATCTATTACGAAAACGTCGGTGGCAAAGTCTTCGACGCGGTGGTGCCGCTGCTCAACGCCAAGGCACGCATCCCTCTTTGCGGCTTGATCGCGGCCTACAACGATCATCAGCCGCCAAGCGGTCCGGATCGCTTGCCGCAGCTGCAACGCACGTTGCTGACCAAACGCGTGCGGATCCAGGGCTTCATCGTGTTCGACGACTACGGCGACCGCCAGCCGGAGTTCATCAGCGCGATGGCGCCGTGGGTGCGCGATGGCAAGGTCAAGTTCCGCGAAGATGTGGTGGATGGCCTGGAGAACGCGCCGCAGGCTTTCATCGGGCTGCTGGAAGGGCGCAACTTCGGCAAATTGGTGATACGCGTGTCGAAGGATTGAMSSISNQRIVLASRPQGAPTPENFRLEDVTLPDLADGQILLKTLYLSLDPYMRGRMSDAPSYAAPVQIDEVMTGGAVSRVERSMHPKFQEGDLVVGATGWQSHCISDGRNVIPIPSGLPSPSMALGVLGMPGMTAYMGLMDIGQPKAGETLVVAAASGAVGSVVGQVAKIKGLRVVGVAGGSEKCKYVVDELGFDACVDHKSANFADELARACDQGIDIYYENVGGKVFDAVVPLLNAKARIPLCGLIAAYNDHQPPSGPDRLPQLQRTLLTKRVRIQGFIVFDDYGDRQPEFISAMAPWVRDGKVKFREDVVDGLENAPQAFIGLLEGRNFGKLVIRVSKDPGPT0023605_384DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-PLANT_CURCUMIN_RESISTANCEADAPTION_TO_PIS-CURCUMIN_DEGRADATION,PGPT0023605-curA|yncB-K23256NANA
D1-35_00803603recRCOG0353Recombination protein RecRATGAGCTTCAGCCCTTTGATCCGCCAACTGATCGATGCCCTGCGAACCTTGCCGGGTGTGGGTCAGAAAACTGCCCAGCGCATGGCGTTGCAATTGCTTGAGCGTGATCGCAGCGGCGGGTCGCGCCTGGCCCAAGCCCTGAGCCAGGCCATGGAAGGGGTAGGGCATTGCCGCTTATGCCGCACCCTCACCGAAGACGACCTCTGCCCGCAATGTGCCGACCCGCGCCGGGACGACAGCCTGCTCTGCGTGGTGGAGGGGCCGATGGATGTCTACGCGGTGGAGCAGACCGGTTTCCGTGGCCGCTACTTTGTACTCAAGGGGCACTTGTCGCCGCTTGACGGCCTGGGGCCGGAGGCCATCGGCATTCCACAACTGATGGCGCGCATCGAAGAGGCGGGCACGTTCACCGAAGTCATCCTCGCGACGAACCCGACGGTGGAAGGCGAAGCTACCGCCCATTACATCGCTCAGTTGCTGGGCAACAAGGGCCTGGTTGCCTCCCGCATCGCCCATGGCGTGCCATTGGGTGGCGAGCTGGAGCTGGTGGATGGCGGGACGCTGGCGCATTCGTTTGCCGGGCGCAAGCCGATCGCCTTATAGMSFSPLIRQLIDALRTLPGVGQKTAQRMALQLLERDRSGGSRLAQALSQAMEGVGHCRLCRTLTEDDLCPQCADPRRDDSLLCVVEGPMDVYAVEQTGFRGRYFVLKGHLSPLDGLGPEAIGIPQLMARIEEAGTFTEVILATNPTVEGEATAHYIAQLLGNKGLVASRIAHGVPLGGELELVDGGTLAHSFAGRKPIALNANANANANA
D1-35_00804549aptCOG0503Adenine phosphoribosyltransferaseATGGTCTTCGACTCCTTCGACATCAAATCCCTGATCCGCCCGGTAATCGACTTCCCCAAGCCAGGCGTGATCTTTCGCGACATCACCCCACTGTTCCAGTCCCCCACCGCGCTGCGGCTGGTCATGGACAGCTTCGCCCATCGCTACGTCGAGGCCAGCTTCACGCACATCGGCGCGATGGACGCGCGCGGCTTCCTGATCGGCTCGATCCTGGCCTATCAGTTGAACAAACCGCTGGTGCTGTTCCGCAAGCAAGGCAAATTGCCGGCCGACGTGTTGGCCGAGGGTTACCAGACCGAGTACGGCGAGGCTTTCCTGGAGGTCCACGCCGATAGCCTGTGCGAGGGCGATTCGGTGGTGATGTTCGATGACCTGATCGCCACCGGTGGCACGCTGATCGCCGCCGCCAACCTGATCCGCCGCATGCGCGCCACGGTCCATGAAGCCGCCGCGATCATCGACTTGCCGGAATTGCTCGGTTCCCGGCGCTTGGAAGACATGGGCATTCCCACGTTCTGCCTGACCCGGTTTTCGCTTAGCGAAAAATAAMVFDSFDIKSLIRPVIDFPKPGVIFRDITPLFQSPTALRLVMDSFAHRYVEASFTHIGAMDARGFLIGSILAYQLNKPLVLFRKQGKLPADVLAEGYQTEYGEAFLEVHADSLCEGDSVVMFDDLIATGGTLIAAANLIRRMRATVHEAAAIIDLPELLGSRRLEDMGIPTFCLTRFSLSEKPGPT0021455_2008DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021455-apt-K00759NANA
D1-35_00805735anrTranscriptional activator protein AnrATGTCCGAGCCAGTCAAATCGCGCGCTCATAACCAGGCCCATTGCAAGGACTGCAGCCTGGCCCCTCTGTGCCTGCCACTTTCGTTGAACCTGGAGGACATGGACGCGCTGGACGACATCGTCAAACGAGGCCGTCCGTTGAAAAAAGGCGAGTTCCTGTTCCGCCAGGGCGATGCCTTCGATTCGGTCTACGCCGTGCGCTCGGGCGCCTTGAAGACCTTCAACCTGAGCGACGGTGGCGAAGAACAACTCACCGGTTTCCACTTGCCCAGCGAGCTGGTCGGCCTGTCGGGCATGGACACCGAGACCCATCCGGTCTCGGCCCAGGCGCTTGAGACGACCTCGGTATGCGAGATTCCGTTTGATCACCTGGACGAACTGGCCTTGCAACTGCCGCAACTGCGTCGTCAACTGATGCGCGTGATGAGCCGGGAGATCCGCGACGACCAACAGATGATGCTGCTGCTCTCGAAGAAAACCGCCGACGAGCGCATCGCGACCTTCCTGGTCAACCTCTCGGCGCGTTTCCGCGCCCGTGGTTTTTCGGCCAATCAGTTTCGCCTGAGCATGTCGCGCAACGAGATCGGCAACTACCTGGGCCTGGCGGTGGAAACCGTGTCCCGGGTGTTTACCCGTTTCCAGCAGAGCAAACTGATCGCCGCCGAGGGCAAGGAAATCCATATCCTTGACCCGATCCAGCTCTGCGCGCTGGCCGGAGGCTCGGTCGAAGGCTGAMSEPVKSRAHNQAHCKDCSLAPLCLPLSLNLEDMDALDDIVKRGRPLKKGEFLFRQGDAFDSVYAVRSGALKTFNLSDGGEEQLTGFHLPSELVGLSGMDTETHPVSAQALETTSVCEIPFDHLDELALQLPQLRRQLMRVMSREIRDDQQMMLLLSKKTADERIATFLVNLSARFRARGFSANQFRLSMSRNEIGNYLGLAVETVSRVFTRFQQSKLIAAEGKEIHILDPIQLCALAGGSVEGPGPT0000515_1457DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-ANAEROBIC_SIGNALLING,PGPT0000515-fnr-K01420NANA
D1-35_008061383hemNCOG0635Oxygen-independent coproporphyrinogen III oxidaseATGCTCGACGCCATTCGTTGGGACTCAGACCTGATCCGCCGCTACGACCTGGCGGGACCGCGCTATACCTCGTACCCGACCGCGGCCCAGTTCGCCGGCCAGGTGGGCACGTTCGACCTGCTCCATGCCCTGCGCGACAGCCGCAAGGCCCGCAGGCCTTTGTCGCTTTATGTGCACGTGCCGTTTTGCGCGAACATTTGCTACTACTGCGCCTGCAACAAGGTCATCACCAAGGACCGCGGCCGCGCCCATGCCTACCTGCAACGCCTGGAGCAGGAAATCCAGCTGATCGGCTGCCACCTGGACCCGGCCCAGCGCGTGGAACAGTTGCACCTGGGCGGTGGCACGCCAACCTTCCTCAGTCACGACGAGCTGCGCCAGTTGATGGCCAGGCTGCGCGAGAGTTTCAACCTGATGGACGATGACTGCGGTGACTACGGCATCGAGATCGACCCGCGAGAGGCGGATTGGTCGACCATGGGTCTGCTGCGGGAATTGGGTTTCAACCGGGTCAGCATCGGCCTGCAGGACCTTGACCCTACCGTGCAGCGTGCCGTCAACCGCCTGCAAAGCCTGGACGAAACCCGTGCGGTGATCGAAGCCGCCCGGACCCTGCAGTTTCGCTCGATCAACATCGACCTGATCTATGGCTTGCCCAAGCAGACCCCGGAAAACTTCGCCCGCACCGTCGAGGAAGTGATCAGCCTGCAACCGGACCGTCTCTCGGTGTTCAACTACGCCCACCTGCCGGAGCGCTTCATGCCGCAGCGGCGCATCAACAGCCAGGACCTGCCGAATCCTGTGCAGAAACTGGCCATGTTACAAGGCACTATTGAACAGCTGACCGCCGCCGGTTATCGCTACATCGGCATGGACCACTTCGCCCTGCCCGATGACGAACTGGCGATCGCCCAGGAGGAGGCGACCTTACAGCGCAATTTCCAGGGCTACACCACTCACGGCCATTGCGACCTGATCGGCCTCGGGGTCTCGGCCATCAGCCAGATCGGCGACTTGTACTGCCAGAACAGCAGTGACCTGAACCAGTACCAGAACGCCCTCGCCGACGGGCAATTGGCAACCAGCCGGGGCATTGTGTGCAATGCCGACGACAGGCTGCGACGCGCGGTGATCCAACAACTGATCTGCCATTTCAGCCTGGCATTCGCCGAGATCGAGCAAGTCTTCAATATCGATTTCCGGGGGTATTTCGGCTCTATATGGCCGCAACTACAGACGATGAACGACGACGGGCTGGTTGAACTGACGGCTACGCACATCAAGGTACTCCCTGCCGGACGTCTGTTGGTGCGTTCGGTTTGCATGGTATTCGACGCGTATCTGCAGCAGCAGAATCGGCAGCGTTTTTCCCGCGTCATCTGAMLDAIRWDSDLIRRYDLAGPRYTSYPTAAQFAGQVGTFDLLHALRDSRKARRPLSLYVHVPFCANICYYCACNKVITKDRGRAHAYLQRLEQEIQLIGCHLDPAQRVEQLHLGGGTPTFLSHDELRQLMARLRESFNLMDDDCGDYGIEIDPREADWSTMGLLRELGFNRVSIGLQDLDPTVQRAVNRLQSLDETRAVIEAARTLQFRSINIDLIYGLPKQTPENFARTVEEVISLQPDRLSVFNYAHLPERFMPQRRINSQDLPNPVQKLAMLQGTIEQLTAAGYRYIGMDHFALPDDELAIAQEEATLQRNFQGYTTHGHCDLIGLGVSAISQIGDLYCQNSSDLNQYQNALADGQLATSRGIVCNADDRLRRAVIQQLICHFSLAFAEIEQVFNIDFRGYFGSIWPQLQTMNDDGLVELTATHIKVLPAGRLLVRSVCMVFDAYLQQQNRQRFSRVIPGPT0003200_1002DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003200-hemN|hemZ-K02495NANA
D1-35_00807684hypothetical proteinATGCTTGACCTGGCGCCAATGCTGGTTTCCGCCGTCATCCTCGGCCTGCTCGGCGGCGGCCATTGCCTGGGCATGTGCGGTGGCCTGATGGGCGCCCTGACCCTGGCGATTCCCAAGGAACAACGCAGCCGCCGCTTGCGACTATTGCTCGCGTACAACCTGGGACGCATCGTCAGCTACGCCGCGGCCGGCCTGCTGATCGGCCTGGCCGGCTGGGCCGTGGCGAACAGCCCGGCGGCGATGATCCTGCGCGTGCTGGCCGGTTTACTGATGATTGTCATGGGACTTTACCTGGCGGGCTGGTGGAGCGGCCTGACCCGTATCGAAAGCCTGGGCCGTGGTTTGTGGCGGCGTATCCAACCCATCGCCAACCGCCTGCTGCCGGTGTCGAGCCTGCCCCGGGCCCTGCTGCTCGGCGCGCTGTGGGGCTGGCTGCCCTGCGGACTGGTCTACAGCACCCTGCTGTGGTCCGCCAGCCAGGGTAACGCGGTGGACAGTGCACTGCTGATGCTCGCCTTCGGCCTGGGCACCTGGCCGGTCCTGCTCGCCACCGGCCTCGCGGCAGAGCGCGTCACGGCACTGCTGCGCAAACGCAGCGTGCGCATGGCTGGGGGGTTGCTGGTGATTGTCTTCGGCATCTGGACATTGCCGGGGCCGCATCAGCATTGGCTCATGGGGCATTGAMLDLAPMLVSAVILGLLGGGHCLGMCGGLMGALTLAIPKEQRSRRLRLLLAYNLGRIVSYAAAGLLIGLAGWAVANSPAAMILRVLAGLLMIVMGLYLAGWWSGLTRIESLGRGLWRRIQPIANRLLPVSSLPRALLLGALWGWLPCGLVYSTLLWSASQGNAVDSALLMLAFGLGTWPVLLATGLAAERVTALLRKRSVRMAGGLLVIVFGIWTLPGPHQHWLMGHNANANANANA
D1-35_00808219hypothetical proteinATGCCAGCTCTCTACGTGATGATCCCGGCCGCACTGTTGATCGTGGCCGTCGCCGTCTACATTTTCTTCTGGGCCGTGGACAGCGGCCAATACGATGACCTCGACGGCCCGGCCCATAGCATCCTGTTCGACGACCAGGACCCGAACCACAAGGCGGCCGTCGAGGAAGCCAGCAGCGCGGACCACAAACCGGACGACAAGGCGCCGCCCCATGCTTGAMPALYVMIPAALLIVAVAVYIFFWAVDSGQYDDLDGPAHSILFDDQDPNHKAAVEEASSADHKPDDKAPPHANANANANANA
D1-35_008092451copA_1putative copper-importing P-type ATPase AATGACCACTCCACAGCCCTGCTACCACTGCGCCCTGCCCGTCCCGCCCGGCAGTCGCTTCACCGCCGTTGTCCTCGGTGAGACCCGCGAGCTGTGTTGCCCCGGTTGCCAGGCGGTGGCCGAAGCGATCGTTGCCGGCGGCCTTGAGCATTATTACCAACACCGCAGCGAAGCGTCGGCCAACCCACAAACCCTGCCCGTTCAATTGACCGACGAGCTGGCGTTGTACGATCGCCCCGATGTGCAGCAATCGTTCGTCCGCCATGAAGGTGAGCTGGCCGAAACGACTCTGCTGATGGAAGGCATCAGTTGCGCCGCCTGCGGCTGGCTGATCGAAAAGCAATTGCGCAGCCTGCCGGCCGTGGCCGAGGCGCGGTTGAACCTGTCGAACCACCGCCTGCACGTACGCTGGGCCGACGCGCAACTGCCGCTGAGCACGCTGCTCGCCGAACTGCGCCAAATCGGCTATGCCGCGCACCCGTACCAGGCCGATCAGGCCAGCGAGCAGCTCGCCGCGCAAAACCGCCTGGCCCTGCGTCAATTGGGCGTGGCCGGGTTGCTGTGGTTCCAGGCAATGATGGCGACGATGGCGACCTGGCCCGAATTCAACATCGACCTGAGCCCGGAGATGCACACCATCCTGCGCTGGGTCGCACTGTTTCTCACCACGCCTATCGTGTTCTACAGTTGCGCGCCGTTTTTCAAAGGTGCGCTGCGAGATTTGCGCACCCGCCACCTGACCATGGACGTTTCGGTGTCCTTGGCCATCGGCGGCGCCTACGTCGCCGGGATCTGGACCTCCATCACCGGGGTGGGCGAGCTGTACTTCGATGCGGTCGGCATGTTCGCCCTGTTCCTGCTCGCCGGCCGCTACCTGGAACGCCGGGCCCGGGAGCGCACTGCTGCGGCCACCGCCCAACTGGTCAACCTGCTGCCAGCGTCGTGCCTGCGCCTGGACGAGCGCGGCCAGAGCGAACGCATCCTGCTCAGCGAACTGCGCACCGGTGACCGGGTGCTGGTCCAACCCGGAGCGATCCTGCCCGCCGATGGCACGATTCTCGACGGCCAGTCCAGCGTCGACGAATCGCTGCTGACCGGCGAATACCTGCCGCAACCGCGCCAGGCAGGCGACGCGGTAACGGCAGGCACGCTCAACGTCGAAGGCGCCCTGACGGTCGAGGTACGGGCGTTGGGACAGGACACGCGGTTATCGGCCATCGTGCGCCTGCTGGAACGGGCCCAGGCCGAAAAGCCACGACTGGCGGAAATCGCCGACCGCGCCGCCCAATGGTTCCTGCTGTTCTCCCTGGTCGCAGCGGCGGCCATCGGCCTGTTGTGGTGGCAGCTGGATGCTTCGCGTGCGTTCTGGATCGTCCTGGCGATGCTGGTCGCGACCTGTCCTTGTGCGCTGTCCCTGGCGACACCAACCGCTCTGACAGCTGCCACCGGAACCCTGCACAAACTCGGCCTGCTGCTGACGCGTGGTCATGTGCTGGAAGGCCTTAACCAGATCGACACGGTGATTTTCGACAAGACCGGCACCCTCACGGAAGGTCGCCTGGCGTTACGCGCCATCAGGCCATTGGCCGCCCTCGACGGTGATCAATGCCTGGGCTTGGCCGCGGCCTTGGAAAACCGTTCGGAACACCCCATCGCCCGAGCTTTTGGTCGCGCACCGTTGGCCGCCGAACAGGTACACAGCAGCCCAGGGCTGGGACTCGAAGGCCTGGTCGCCGAACAACGCCTGCGCATCGGCCAGCCCGGTTTTGTCTGCGGACTGAGCGGCTCGGCCGTACCGCCGATGCCGGACGAACCCGGACAATGGCTGTTGCTGGGCGACGACATCGGGCCACTGGCCTGGTTTGTCCTCGATGACCGCCTGCGCGCTGATGCGCCGGCGCTGCTCGCCGCCTGCAAGGCGCGGGGCTGGCGTACGCTATTGCTCTCCGGCGACAGCTCGCCGATGGTGGCCAGTGTCGCCGCCGAGCTGGGCATCGACGAGGCCCGCGGCGGCTTGCGTCCGGACGACAAGCTGGCCGTGCTCCAGCAGTTGCACCAGCAGGGTCGCAAGGTGCTGATGCTCGGTGATGGCGTGAATGACGTGCCGGTGCTGGCGGCGGCGGACATCAGTGTCGCCACGGGTTCGGCCACCGACCTTGCCAAGACCAGCGCCGACGCAGTGCTGCTGTCCAACCGCCTCGATGCCCTGATTCATGCATTCGGCCTGGCCCGGCGTACCCGCCGCGTGATCATTGAGAACCTGATCTGGGCAGGGCTGTACAATGGCCTCATGTTGCCGTTCGCCGCCCTCGGCTGGATCACGCCGGTGTGGGCCGCGGTCGGCATGTCCATCAGTTCGTTGACCGTGGTGCTGAATGCCTTGCGGCTGACCCGCCAACCGCGAGCGCAGGTTGGCGAAACCACGCCCGATACCCGTCCGCTGCCGGCCTGAMTTPQPCYHCALPVPPGSRFTAVVLGETRELCCPGCQAVAEAIVAGGLEHYYQHRSEASANPQTLPVQLTDELALYDRPDVQQSFVRHEGELAETTLLMEGISCAACGWLIEKQLRSLPAVAEARLNLSNHRLHVRWADAQLPLSTLLAELRQIGYAAHPYQADQASEQLAAQNRLALRQLGVAGLLWFQAMMATMATWPEFNIDLSPEMHTILRWVALFLTTPIVFYSCAPFFKGALRDLRTRHLTMDVSVSLAIGGAYVAGIWTSITGVGELYFDAVGMFALFLLAGRYLERRARERTAAATAQLVNLLPASCLRLDERGQSERILLSELRTGDRVLVQPGAILPADGTILDGQSSVDESLLTGEYLPQPRQAGDAVTAGTLNVEGALTVEVRALGQDTRLSAIVRLLERAQAEKPRLAEIADRAAQWFLLFSLVAAAAIGLLWWQLDASRAFWIVLAMLVATCPCALSLATPTALTAATGTLHKLGLLLTRGHVLEGLNQIDTVIFDKTGTLTEGRLALRAIRPLAALDGDQCLGLAAALENRSEHPIARAFGRAPLAAEQVHSSPGLGLEGLVAEQRLRIGQPGFVCGLSGSAVPPMPDEPGQWLLLGDDIGPLAWFVLDDRLRADAPALLAACKARGWRTLLLSGDSSPMVASVAAELGIDEARGGLRPDDKLAVLQQLHQQGRKVLMLGDGVNDVPVLAAADISVATGSATDLAKTSADAVLLSNRLDALIHAFGLARRTRRVIIENLIWAGLYNGLMLPFAALGWITPVWAAVGMSISSLTVVLNALRLTRQPRAQVGETTPDTRPLPANANANANANA
D1-35_00810540hypothetical proteinATGCCTGCAGCAACCGCCACCAGCCCTTGGTACAAGCACCTCTGGCCGTGGATCATCATCGGGATCCTCGCTTGCTCGGTGACGCTGAGCCTGACCATGGTGACCATCGCGGTGAAGAACCCGGACAACCTGGTCAATGACAACTATTACGAAGCCGGCAAGGGCATCAATCGCTCGCTGGAACGCGAACTGCTGGCCCAGACCCTGCAGTTGCATGCCAACGTGCAATTGGACGACCTCACCGGTGAAGTGAGCCTGCGCCTGAACGGCAACAGCCGGCCCCAGACCGTGGAGCTGAGCCTGATCTCCCCAACGCAGCCGGAGAAAGACCGCAAGATCCTGTTGACCCGCAACGACAGCGAACCAGGACGCTACGTCGGCCAACTGGCGGACAAGATCGAAGGTCGGCGTTTTGTCGAATTGCTGGGTGTGGAACACGATCGGACCTGGCGCTTGTTCGAAGAAGAACAGATCAGCCACGGCCAGGACATCCAGCTTGGCGACGAGCCGCTGCAAGGCGCTGAAGACCTGAAAAAGTAGMPAATATSPWYKHLWPWIIIGILACSVTLSLTMVTIAVKNPDNLVNDNYYEAGKGINRSLERELLAQTLQLHANVQLDDLTGEVSLRLNGNSRPQTVELSLISPTQPEKDRKILLTRNDSEPGRYVGQLADKIEGRRFVELLGVEHDRTWRLFEEEQISHGQDIQLGDEPLQGAEDLKKNANANANANA
D1-35_008111416hypothetical proteinATGAGCAACCAGATTCCGGTACATGACGTTACCCCGCCTGCCAAGGACGCCAACAAAAGCGTCGACCTCTATGCATCTCGGGAAAAAATCTACACCCGCGCCTTCACTGGCCTGTTTCGCAACCTGCGCATGGTCGGTGGGGCGGTTCTGTTCCTGCTGTATTTCGGTACCGTCTGGCTGAACTGGGGCGGTCATCAGGCTGTCTGGTGGAACCTGCCGGAACGCAAATTCTTTATTTTCGGCGCGACCTTCTGGCCCCAGGACTTCATCCTGCTCTCGGGGCTGCTGATCATCGCGGCCTTCGGCCTGTTTTTCATTACCGTCTATGCCGGTCGGGTCTGGTGTGGCTATACCTGCCCACAAAGCGTATGGACGTGGATTTTCATGTGGTGCGAAAAGGTCACCGAAGGCGACCGCAACCAACGCATCAAGCTCGACAAAACGCCCATGAGCGCCAACAAATTCCTGCGCAAGTTCGCCAAGCACAGCCTGTGGCTGCTGATCGGTTTTGTCACCGGCATGACCTTCGTTGGCTACTTCACCCCGATCCGTGAGCTGGTCTTCGAGTTCTTCACCGGCCAGGCCGATGGCTGGTCGTATTTCTGGGTCGGTTTCTTCACCCTCGCCACCTATGGCAACGCCGGCTGGCTGCGTGAGCAAGTGTGCATCTACATGTGCCCGTACGCCCGCTTCCAGAGCGTGATGTTCGACAAGGACACCCTGATCGTCTCCTACGACCCGCGTCGCGGCGAAGCCCGGGGCCCGCGCAAGAAAGGCATCGACTACAAGGCGCTGGGCCTGGGGGACTGCATCGATTGCACCATGTGCGTCCAGGTCTGCCCTACCGGCATCGACATCCGCGACGGCCTGCAGATCGAATGCATCGGCTGCGCAGCCTGCATTGATGCCTGCGACAACATCATGGACAAGATGGATTATCCCCGCGGCCTGATCAGCTACACCACGGAACACAACCTCTCGGGGCAGAAAACCCATAAACTGCGCCCGCGCCTGATCGGTTATGCCCTGGTGCTGCTGGCAATGATCAGCCTGTTGGTGACCGCGTTCTTCATGCGCTCGCTGGTGGGTTTCGACGTCAGCAAGGACCGCGTGCTGTACCGCGAGAACGCCGAAGGCCGGATCGAGAACGTCTACAGCCTGAAGATCATGAACAAGGACCAGCGTGACCATACCTACGTGCTGGAAGCCACCGGTTTGCCTGATCTGAAGCTGCAGGGTAAACGGGAGATCAAGGTCGCGGCCGGTGATATCTACAGCCAGCCGGTAGAGCTATCCAGCGCACCGGAACAATTGCCGTCCAGCACCAATGAGGTGACCTTCATCCTCAAGGATGCCGATGACGACAGCGTCCATGTTGAAGCCAAGAGCCGGTTCATCGGCCCACAGACTCGTTGAMSNQIPVHDVTPPAKDANKSVDLYASREKIYTRAFTGLFRNLRMVGGAVLFLLYFGTVWLNWGGHQAVWWNLPERKFFIFGATFWPQDFILLSGLLIIAAFGLFFITVYAGRVWCGYTCPQSVWTWIFMWCEKVTEGDRNQRIKLDKTPMSANKFLRKFAKHSLWLLIGFVTGMTFVGYFTPIRELVFEFFTGQADGWSYFWVGFFTLATYGNAGWLREQVCIYMCPYARFQSVMFDKDTLIVSYDPRRGEARGPRKKGIDYKALGLGDCIDCTMCVQVCPTGIDIRDGLQIECIGCAACIDACDNIMDKMDYPRGLISYTTEHNLSGQKTHKLRPRLIGYALVLLAMISLLVTAFFMRSLVGFDVSKDRVLYRENAEGRIENVYSLKIMNKDQRDHTYVLEATGLPDLKLQGKREIKVAAGDIYSQPVELSSAPEQLPSSTNEVTFILKDADDDSVHVEAKSRFIGPQTRNANANANANA
D1-35_00812411fitBToxin FitBATGTTCCTGCTCGATACCAACGTCATCTCGGAGCTGCGCAAGCCCCAGGCCGATAAAAACGTACAAGCCTGGGCGCGCAGTGTCCCCGCTCCCAGCCTGTATGTTTCGGCCATCACCGTGTTGGAACTGGAAACCGGAGTCTTGCGCTTTGAGCGCAAGGACCCGGCGCAAGGCAGCCGTTTGCGTGCATGGCTGAATAACCACGTCATGCCCGCGTTTGCCGGCAGGATCCTCGCGGTCGACCGCGCCGTGGCCCTGCGTTGCGCCCGCCTGCATGTCCCGGACCGCAGCAATGAGTGCGATGCGCTGATCGCCGCCACGGCGCTGGTCCATGGGCTGACCGTGGTAACCCGCAACGTGGCGGATTTCAGAAGCAGCGGCGTGGCGCTGATCAACCCATGGGTTAGCTAGMFLLDTNVISELRKPQADKNVQAWARSVPAPSLYVSAITVLELETGVLRFERKDPAQGSRLRAWLNNHVMPAFAGRILAVDRAVALRCARLHVPDRSNECDALIAATALVHGLTVVTRNVADFRSSGVALINPWVSPGPT0027670_646DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-FitB-FitA_TOXIN-ANTITOXIN_SYSTEM,PGPT0027670-toxin_fitB|vapC-K07062NANA
D1-35_00813270hypothetical proteinATGGGGGACGCCGCCGTGTCCATCACCACCATTTCCAGCCGCGAGTTCAACCACGACACAAGCGGTGCCAAAAAAGCTACCCGAGAAGGCCCGGTCATTATCACCGACCGTGGCAAGCCGGCCCATGTGCTGCTAAGCATTGAGGAGTACCAGAAACTGACCGGCGCTGGCACCAGCATCGTCGAGTTGCTGGTCATGCCCGATGCGCCGGATATCGACTTCGATCCCGAGCGCGCCGTCATCACGCCCCGCTCGGTGGACCTGTCCTGAMGDAAVSITTISSREFNHDTSGAKKATREGPVIITDRGKPAHVLLSIEEYQKLTGAGTSIVELLVMPDAPDIDFDPERAVITPRSVDLSNANANANANA
D1-35_00814984ccoP2COG2010Cbb3-type cytochrome c oxidase subunit CcoP2ATGACTACGTTCTGGAGTCTGTACGTCACAGTCCTCAGCCTGGGAACGATCTTCGCCCTGACCTGGCTGCTGCTGTCGACCCGCAAGGGCCAGCGCAGCGAAGCCACCGAGGAAACGGTTGGCCACTCCTTCGACGGGATCGAGGAGTACGACAACCCGCTGCCGAAATGGTGGTTCATGCTGTTCATCGGCACCATCGTGTTCGCCCTTGGTTACCTGGTGCTCTACCCTGGCCTGGGCAACTGGAAAGGCCTGCTGCCAGGCTATAACTACCTGGACACCGAAAAGCAGACCCCCTTCGCCAACGGCCAGACCGGCTGGACCGGCGTGCACGAGTGGGAAAAGGAAATGGCCCGCTCGGATGCCAGATTCGGTCCGATCTTCGCCAAGTTTGCCTCCATGCCGATTGAAGAAGTCGCCAAGGACCCGCAGGCCCTGAAGATGGGTGGCCGCCTGTTTGCCTCCAACTGCTCGGTCTGCCACGGCTCCGACGCCAAGGGCGCCTACGGCTTCCCTAACCTGACCGACGCCGACTGGCGCTGGGGTGGCGAGCCGGAGACCATCAAGACCACCATCATGGGCGGTCGTCATGCCGTCATGCCGGGCTGGGCTGCCGTGGTTGGCGAACAAGGCGTCGCCGACGTGGCTGCCTATCTGGTAACCGGCCTGCACAGCCGCAAACTGCCGGAAGGCGCCAAGGCCGATCCGGCCAACGGCCAGAAGCTGTTCGCCGCCAACTGCGTGGCCTGCCACGGCCCCGCCGGCAAAGGCACGCCCGCCATGGGCGCACCCGACCTGACGCACCCGGCCGGTTTCATCTACGGTTCGAGCTTCGCTCAGTTGCAGCAGACCATCCGCTACGGTCGCCAAGGCCAGATGCCGGCCCAGGCCGATCTGCAGGGCAACGACAAGGTCCACCTGCTGGCTGCCTATGTCTACAGCCTGTCCCACGGCGAAAAGGCTCCGGCTGCTGACGCTCAGTAAMTTFWSLYVTVLSLGTIFALTWLLLSTRKGQRSEATEETVGHSFDGIEEYDNPLPKWWFMLFIGTIVFALGYLVLYPGLGNWKGLLPGYNYLDTEKQTPFANGQTGWTGVHEWEKEMARSDARFGPIFAKFASMPIEEVAKDPQALKMGGRLFASNCSVCHGSDAKGAYGFPNLTDADWRWGGEPETIKTTIMGGRHAVMPGWAAVVGEQGVADVAAYLVTGLHSRKLPEGAKADPANGQKLFAANCVACHGPAGKGTPAMGAPDLTHPAGFIYGSSFAQLQQTIRYGRQGQMPAQADLQGNDKVHLLAAYVYSLSHGEKAPAADAQPGPT0000153_166DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0000153-fixP|ccoP-K00406NANA
D1-35_00815174hypothetical proteinATGATTCGTGGCCTGGGCACCGTCGTCGTGATGGTGGCCTTTATCGGCCTGGCCCTGTGGGTGTTCAGCCCCAAGCGCAAGTCGGAGTTCGAAGACGCGACCTTGCTGCCGTTCGCGGATGATCCCGAAGCCATCAAGCACGTCGAGCAAGCTTCTAGGAGTAACAAAGAATGAMIRGLGTVVVMVAFIGLALWVFSPKRKSEFEDATLLPFADDPEAIKHVEQASRSNKEPGPT0000154_514DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0000154-fixQ|ccoQ-K00407NANA
D1-35_00816609hypothetical proteinATGAAGCACGAAGCAGTAGAGAAGAATATCGGCCTGCTGGCCTTCTTCATGGTCATCGCCGTCAGCATTGGCGGCCTGACCCAGATCGTTCCGCTGTTCTTCCAGGATGTCACCAACAAGCCGGTCGAAGGCATGAAGCCGCGCACCGCCCTTGAACTGGAAGGCCGCGACGTCTACATCGCCAACGGTTGTGTCGGCTGCCACTCGCAGATGATCCGTCCGTTCCGTGCTGAAACCGAACGCTACGGTCACTATTCCGTTGCTGGTGAAAGCGTCTGGGACCACCCGTTCCTGTGGGGCTCCAAGCGCACCGGTCCGGACCTGGCCCGCGTCGGTGGTCGCTACTCCGATGACTGGCAGCGTGCGCACTTGTACAACCCGCGCAACGTAGTGCCTGAATCGAAGATGCCGGCCTACCCGTTCCTCGTAGAAAACAAGCTCGACGGCAAAGACACCGCCAAGAAAATGGAAGTCCTGCGCGCCCTCGGCGTGCCCTACACCGACGAAGACATCGCCGGAGCCAGGGATGCCGTGAAAGGCAAGACTGAAATGGACGCGCTGGTGGCCTATCTGCAAGGCCTGGGCACCATCATCAAAAGCAAACGGTGAMKHEAVEKNIGLLAFFMVIAVSIGGLTQIVPLFFQDVTNKPVEGMKPRTALELEGRDVYIANGCVGCHSQMIRPFRAETERYGHYSVAGESVWDHPFLWGSKRTGPDLARVGGRYSDDWQRAHLYNPRNVVPESKMPAYPFLVENKLDGKDTAKKMEVLRALGVPYTDEDIAGARDAVKGKTEMDALVAYLQGLGTIIKSKRPGPT0000152_1314DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0000152-fixO|ccoO-K00405NANA
D1-35_008171443ccoN1_1COG3278Cbb3-type cytochrome c oxidase subunit CcoN1ATGAGCACAGCAATCAGTCCGACTGCTTATAACTATAAGGTAGTCCGCCAGTTCGCCATCATGACGGTGGTCTGGGGGATCCTTGGCATGGGGCTCGGTGTCTTCATCGCCTCGCAACTGGTCTGGCCGGAGTTGAACTTCGATCTGCCATGGACGACATTTGGACGCCTGCGCCCGCTGCACACCAACCTGGTGATCTTCGCCTTCGGTGGCTGTGCGTTGTTTGCCACCTCCTACTACGTCGTGCAGCGAACCTGCCAGACGCGACTGATTTCCGACAGCCTCGCCGCCTTCACCTTCTGGGGTTGGCAAGCGGTGATCGTCGGCGCGATCGTGACCTTGCCAATGGGTTTCACCACCACCAAGGAATACGCGGAACTGGAATGGCCCCTGGCTATTCTGCTCGCCATTGTCTGGGTGACCTACGGTCTGGTGTTCTTCGGCACCATCGTCAAGCGCAAGACCAAGCACATCTACGTCGGCAACTGGTTCTACGGTGCATTCATCGTCGTGACCGCCATGCTGCACATCGTCAACCACGCGTCGCTGCCGGTCAGCTTCTTCAAGTCCTACTCGGCCTACTCGGGCGCGACCGACGCGATGATCCAGTGGTGGTACGGCCACAACGCCGTGGGCTTCTTCCTGACCACCGGCTTCCTGGGGATGATGTACTACTTCGTGCCGAAACAGGCCGAGCGTCCGATCTATTCCTATCGCCTGTCCATCGTGCACTTCTGGGCGCTGATCACCCTGTACATCTGGGCCGGTCCGCACCACCTGCACTACACCGCGCTGCCGGACTGGGCGCAATCCCTGGGCATGGCAATGTCGATCATCCTGCTGGCGCCAAGCTGGGGCGGCATGATCAACGGCATGATGACCCTGTCGGGCGCCTGGCATAAGCTGCGCACCGACCCGATCCTGCGCTTTCTGGTGGTATCCCTTGCGTTCTACGGCATGTCGACCTTCGAAGGTCCGATGATGGCGATCAAGACCGTCAACTCCCTGAGCCACTACACCGACTGGACCATCGGCCACGTACACGCCGGTGCGCTCGGCTGGGTCGCGATGATCTCCATCGGCGCCATCTACCACATGATCCCGAAACTGTTCGGTCGTGCGCAGATGCACAGCACCGGCCTGATCAACGCGCACTTCTGGCTCGCCACCATCGGTACCGTGCTCTACATCGCCTCGATGTGGGTCAACGGCATCACCCAGGGCCTGATGTGGCGCGCGATCAACGACGACGGCACCCTGACCTATTCGTTCGTCGAAGCACTGCAAGCCAGCCACCCCGGTTTCATCGTCCGTGCCCTGGGCGGCGCGTTCTTCGCCAGCGGCATGCTGCTGATGGCCTACAACGTGTATCGCACCGTTCGTGCCTCTGACCCGGTTGAAGCAGAAGCCGCCGCCAAGATCGCCGTAGTTGGAGCTCACTGAMSTAISPTAYNYKVVRQFAIMTVVWGILGMGLGVFIASQLVWPELNFDLPWTTFGRLRPLHTNLVIFAFGGCALFATSYYVVQRTCQTRLISDSLAAFTFWGWQAVIVGAIVTLPMGFTTTKEYAELEWPLAILLAIVWVTYGLVFFGTIVKRKTKHIYVGNWFYGAFIVVTAMLHIVNHASLPVSFFKSYSAYSGATDAMIQWWYGHNAVGFFLTTGFLGMMYYFVPKQAERPIYSYRLSIVHFWALITLYIWAGPHHLHYTALPDWAQSLGMAMSIILLAPSWGGMINGMMTLSGAWHKLRTDPILRFLVVSLAFYGMSTFEGPMMAIKTVNSLSHYTDWTIGHVHAGALGWVAMISIGAIYHMIPKLFGRAQMHSTGLINAHFWLATIGTVLYIASMWVNGITQGLMWRAINDDGTLTYSFVEALQASHPGFIVRALGGAFFASGMLLMAYNVYRTVRASDPVEAEAAAKIAVVGAHPGPT0001055_1017DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0001055-fixN|ccoN-K00404NANA
D1-35_00818954ccoP1Cbb3-type cytochrome c oxidase subunit CcoP1ATGAGCACTTTCTGGAGTACGTGGATCTGCGTGCTGACCCTCGGCAGCCTCATCGGCCTGACCTGGCTGCTGATCGGCACCCGCAAGGGCGAGACCAAGGGCAGCGTCGACCAGACCATGGGCCACAGCTTCGACGGCATCGAGGAGTACGACAACCCCTTGCCGCAATGGTGGTTCCTGCTGTTTGCCGGCACCCTGGTGTTCTCCGTCGGCTACCTGATCCTGTATCCCGGCCTGGGCAACTGGAAAGGTATCCTGCCCGGCTACGAAAATGGCTGGACCGGCGCCCACGAATGGGAAAGGGAAATGGCCAGGGCCGACGCCAGGTTCGGGCCGATCTTCGCCAAATTCGCCGCAATGCCGGTGGAAGAGGTTGCCAAGGACCCGCAAGCCTTGAAAATGGGGGGCCGCCTGTTCGCCTCCAACTGCTCGGTCTGCCATGGCTCGGACGCCAAGGGCGCCTTCGGCTTTCCGAACCTGGCCGACAGCAACTGGCGCTGGGGCGGCACTGCCGAGACCATCAAGGCAACCATCATGGGCGGTCGCATGGCGGCAATGCCGGCCTGGGGTGAAGTGCTGGGGGACGCCGGGGTCAGGAACGTCGCCGCCTATGTGCGCCACGACCTGGCTGGCCTGCCTCTACCGGCCGACAGCGGTGCCGACCTGCAAGCCGGCCAGCAAGCCTTCAACACCACTTGCGTGGCTTGCCACGGCGCCAACGGCCAGGGCACCGAAGCCATGGGCGCGCCGAACCTGACGCAACCGGCCGGTTTCATCTACGGCACCAGCCTGGCGCAGTTGCAGCAGACCATCCGCCATGGCCGTCAGGGCCATATGCCGGCGCAGAATGAACTGCTCGGCAACGACAAGGTGCAACTGCTCGCCGCCTACGTCTACAGCCTTTCCCACGGCGCCGGTACCGAGCGCCTGCAAGCTGAACGCGAAGGCGAATAAMSTFWSTWICVLTLGSLIGLTWLLIGTRKGETKGSVDQTMGHSFDGIEEYDNPLPQWWFLLFAGTLVFSVGYLILYPGLGNWKGILPGYENGWTGAHEWEREMARADARFGPIFAKFAAMPVEEVAKDPQALKMGGRLFASNCSVCHGSDAKGAFGFPNLADSNWRWGGTAETIKATIMGGRMAAMPAWGEVLGDAGVRNVAAYVRHDLAGLPLPADSGADLQAGQQAFNTTCVACHGANGQGTEAMGAPNLTQPAGFIYGTSLAQLQQTIRHGRQGHMPAQNELLGNDKVQLLAAYVYSLSHGAGTERLQAEREGEPGPT0000153_418DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0000153-fixP|ccoP-K00406NANA
D1-35_00819201hypothetical proteinATGTTCCTTGAAATGAGCACTGGAATGATTCGCGGCCTGGGCACGGTCGTGGTGTTTGTGGCCTTCATCGGCCTGACCCTTTGGGTATTCAGCAGCAAGCGCGGCCCGGAATTCGCCCAGGCGCGCCTGCTGCCGTTCGCCGACGAGCCGCCCGCTGACGCTACCCCCCAAGACCCCGCACCAAGGAGTACCCGGTCATGAMFLEMSTGMIRGLGTVVVFVAFIGLTLWVFSSKRGPEFAQARLLPFADEPPADATPQDPAPRSTRSPGPT0000154_233DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0000154-fixQ|ccoQ-K00407NANA
D1-35_00820609hypothetical proteinATGAAACACGAAACAATCGAAAAAAACGTCGGCCTGCTGATGCTGCTGATGGTCCTGGCCGTGAGTGTCGGCGGCCTGACCCAGATCGTGCCGCTGTTCTTCCAGGACGTGACCAACAAACCGGTGGACGGCATGAAGCCCTACACCGCTCTGCAGCTTGAAGGCCGCGATATCTATATCCGCGAAGGCTGCGTCGGCTGCCACTCGCAGATGATCCGTCCGTTCCGCGCCGAAACCGAACGTTACGGGCACTACTCCGTCGCTGGCGAAAGCGTCTGGGACCACCCCTTCCTGTGGGGTTCCAAGCGCACCGGCCCGGACCTGGCCCGGGTCGGCGCGCGCTACTCCGATGACTGGCATCGCGCCCACCTGTACAACCCGCGCAACGTCGTCCCCGAGTCGAAAATGCCGGCCTACCCATGGCTGGTGACCCAGGCGGTCGACAGCAGCCACACCGAAGGCAAGCTGCGCGCCATGCGCACCCTCGGTGTGCCGTACAGCGACGACGACATTGCAGGCGCGGCAGCCTCGCTCAAGGGCAAGACCGAGATGGACGCACTGGTGGCCTACCTGCAAGTGCTCGGCACTGCCATCAAGAGCAAGAGGTAAMKHETIEKNVGLLMLLMVLAVSVGGLTQIVPLFFQDVTNKPVDGMKPYTALQLEGRDIYIREGCVGCHSQMIRPFRAETERYGHYSVAGESVWDHPFLWGSKRTGPDLARVGARYSDDWHRAHLYNPRNVVPESKMPAYPWLVTQAVDSSHTEGKLRAMRTLGVPYSDDDIAGAAASLKGKTEMDALVAYLQVLGTAIKSKRPGPT0000152_1386DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0000152-fixO|ccoO-K00405NANA
D1-35_008211425ccoN1_2COG3278Cbb3-type cytochrome c oxidase subunit CcoN1ATGAACACTTCAATCAGTACCGCCTACAACTACAAGGTGGTCCGCCAATTCGCCATTATGACGGTGGTGTGGGGCATCGTCGGCATGGGCCTCGGGGTTTTTCTCGCGGCCCAATTGGTCTGGCCACAGCTCAATTTCGATTTGCCCTGGACCAGCTTCGGCCGCCTGCGCCCACTGCACACCAACGCGGTGATTTTCGCCTTCGGCGGCTGCGCCCTGTTCGCCAGTTCGTTCTACTCGGTGCAACGCACCTGCCAGACCCAGCTGTTTGCACCGAAACTCGCCGCGTTCTGCTTCTGGGGCTGGCAACTGGTGATCCTGCTGGCGGCCATCAGCCTGCCACTGGGCTACACCAGTTCCAAGGAGTATGCCGAGCTCGAGTGGCCAATCGACATTCTCATCACCATTGTCTGGGTCGCCTACGCCATCGTGTTCTTTGGCACCGTGGCCAAGCGAAACACCAAACACATCTACGTCGGCAACTGGTTTTTCGGCGGGTTCATCCTGACCGTGGCGCTCCTGCACATCGTCAACAACCTGGAACTGCCGGTGAGCCTCACCAAATCCTACTCGGTGTATGCCGGCGCCACGGACGCGATGGTGCAGTGGTGGTACGGGCACAACGCCGTGGGCTTTTTCCTCACCGCCGGTTTCCTCGGGATGATGTACTACTTCGTGCCGAAACAGGCCGAGCGCCCGGTGTATTCCTATCGCTTGTCCATCGTGCACTTCTGGGCGCTGATTACCCTGTACATCTGGGCCGGCCCGCACCATCTGCACTACACAGCGCTGCCGGACTGGGCACAGTCGCTGGGCATGGTGATGTCACTGATCCTGCTGGCGCCCAGTTGGGGCGGCATGATAAACGGCATGATGACCCTCTCGGGGGCCTGGCATAAATTGCGCAGCGACCCGATCCTGCGCTTTCTCGTGGTATCCCTCGCGTTCTACGGCATGTCGACCTTCGAAGGCCCGATGATGGCGATCAAAACCGTCAACGCCCTCTCCCACTACACCGACTGGACCATCGGCCACGTTCATGCCGGCGCGCTCGGCTGGGTGGCGATGATTTCCATCGGTGCGCTGTACCACATGATCCCGAAAGTCTTCGGCCGGGCGCAGATGCACAGTATCGGCCTGATCAACGCGCACTTCTGGCTCGCGACCATCGGTACCGTGCTGTACATCGCCTCGATGTGGGTCAACGGCATCGCCCAGGGGCTGATGTGGCGTGCGGTGAACGAGGACGGCACGCTCACCTACTCCTTCGTCGAAACCCTGGTGGCCAGCCACCCCGGCTTCATCGTGCGGTTGGCGGGTGGGGCGATCTTCCTCGCCGGCATGCTGCTGATGGCCTACAACACCTGGCGCACCGTGCGGGCCTACCAGCCTGCCGAAGCCGCCGCTGCCGCGCAGATGGCTTGAMNTSISTAYNYKVVRQFAIMTVVWGIVGMGLGVFLAAQLVWPQLNFDLPWTSFGRLRPLHTNAVIFAFGGCALFASSFYSVQRTCQTQLFAPKLAAFCFWGWQLVILLAAISLPLGYTSSKEYAELEWPIDILITIVWVAYAIVFFGTVAKRNTKHIYVGNWFFGGFILTVALLHIVNNLELPVSLTKSYSVYAGATDAMVQWWYGHNAVGFFLTAGFLGMMYYFVPKQAERPVYSYRLSIVHFWALITLYIWAGPHHLHYTALPDWAQSLGMVMSLILLAPSWGGMINGMMTLSGAWHKLRSDPILRFLVVSLAFYGMSTFEGPMMAIKTVNALSHYTDWTIGHVHAGALGWVAMISIGALYHMIPKVFGRAQMHSIGLINAHFWLATIGTVLYIASMWVNGIAQGLMWRAVNEDGTLTYSFVETLVASHPGFIVRLAGGAIFLAGMLLMAYNTWRTVRAYQPAEAAAAAQMAPGPT0001055_1486DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0001055-fixN|ccoN-K00404NANA
D1-35_00822693hypothetical proteinATGAACAAACAGCACAAGGCCAGTATTGACGGGGATCAATGGGCGCGATGCGTGACCGAGCGCGGCTGGTTGTGGACAGCCGCGAAACCCGGTGCTGGCGCCGAATCGCCGACGCTGATTTTGGCCCATGGTGCGGGTGCGCCGATGGACAGCGGCTTCATGAACGAAATGGCCGCGCGCCTTGCCGCGCAAGGCATCAATGTGTTGCGCTTCGAGTTTCCCTACATGGCCCAACGGCGCCTGGACGGCGGCAAGCGCCCACCCAACCCGGCGCCTAAGCTGCTGGAATGCTGGCGTGAGGTCTACGCCACGGTGCGACCCTATGTCGCTGGGCGGCTGGCGATTGGCGGAAAATCCATGGGCGGGCGCATGGCAAGCCTGGTGGCCGATGAGCTGGGTGCCGATGCGCTGGTGTGCCTCGGGTATCCCTTCTATGCCGTGGGCAAACCGGAAAAACCGCGGGTCGAGCATTTGGCGGCGTTGAACACCCGGGCGCTGATTGTCCAGGGCGAGCGGGATGCGCTGGGTAATCGTGAGGCGGTCGAAGGTTATGCCTTGTCACCTGGCATCGAAGTGCTGTGGTTGGCGGCCGGGGATCATGACTTGAAGCCGCTGAAGGCTTCGGGATTCAGTCACGAGCAGCATCTGGAGGCGGCGGCGCAGAGAGTGGCTGGGTTCTTGTCTCAAGATTGAMNKQHKASIDGDQWARCVTERGWLWTAAKPGAGAESPTLILAHGAGAPMDSGFMNEMAARLAAQGINVLRFEFPYMAQRRLDGGKRPPNPAPKLLECWREVYATVRPYVAGRLAIGGKSMGGRMASLVADELGADALVCLGYPFYAVGKPEKPRVEHLAALNTRALIVQGERDALGNREAVEGYALSPGIEVLWLAAGDHDLKPLKASGFSHEQHLEAAAQRVAGFLSQDNANANANANA
D1-35_008231566aer_1COG0840Aerotaxis receptorATGCGTAACAACCAACCTATTACACAGCGCGAAAGGACCTTCCCGGCCCAGCAAAGATTGATTTCCACCACCAATACCAAGGGTGTGATCACCTACTGCAACGACGCGTTCGTTGAAATCAGCGGGTTCTCGAAGGAAGAGCTGATCCATGCACCGCACAACCTGGTACGCCATCCCGACGTTCCGTCGGCCGTGTTTGCCCACATGTGGGACACGCTGAAACAAGGCTTGCCATGGATGGGCATCGTCAAGAACCGCTGCCAGAACGGTGACCATTACTGGGTCAACGCCTACGTCACGCCTGTATTCGAAGGCAATCAGGTGGTCGGCTATGAATCGGTACGGGTCAAACCCAGCGCCGAGCAGATCTCCCGAGCCGAAGCGCTCTATCAACGCATCAACCAGGGCAAGGCCGCGGTACCCGGCAGCGACAAATGGCTGCCGATCCTGCAGGACTGGCTGCCATTCATCCTGGTCAGCCAGTTGAGCTTCGTCGTTGGCGCGTTCCTCAACTCTTCCTGGGGCTTCGCCCTGGCTGCGCTGCTGTCGGTGCCGTTGGGGTTGATGGGCCTGCAATGGCAGCAACGCGGGATCAAGCGCCTGCTGCGCCTGGCCGAACAGACCACTTCCGACCCGTTGATCGCGCGGATGTACACCGACAGCCGCGGTGTCCAGGCACGCCTGGAGATGTCGATTCTCAGCCAGGAAGCGCGCCTGAAGACCTGCCTGACCCGCCTGCAGGACACCGCCGAACATCTCAACGCGCAAGCGCGGCAATCCAATTCCCTGGCCCACGACAGTTCCACAGGCCTTGAGCGCCAGCGGGTGGAAACCGAACAGGTGGCCACCGCTGTCAACCAGATGGCCGCGACCACCCAGGAAGTCGCCAGCCACGTGCAGCGCACCGCCGATGCCACCCAGGAGGCCAATCGCCTGACCAGTCGCGGTCGTGACATTGCCGGAGAAACCCGTGAAGCCATCGAACGCCTGTCGGTGGTAGTGGGCGAGACCGGGCAGACCGTGACCCAGCTGGCCAAGGACAGCGACGAAATCGGTGGTGTGGTCGACGTGATCAAGGGCATTGCCGACCAGACCAACCTGCTGGCGCTCAACGCCGCCATTGAAGCGGCCCGCGCCGGTGAAATGGGTCGCGGCTTTGCCGTAGTGGCCGACGAAGTGCGGCAACTGGCCCAGCGTACCAGCGAATCCACCGGGCAGATCCATGCCCTGATCGCCAAGCTTCAACAGACCGCCAACAACGCCGTACAGACCATGGACGCTGGCCATCGCCAGGCCGAAGAAGGCGTGGCGCGGGTCATGGAAGCGGACCAGGCGCTCGTCGGGATCAGCGAAGCCGTGGCCCACATCACCGACATGACCACCCAGATCGCGGCTGCCACCGAGGAGCAGAGCTCGGTGGCTGAGGAGATCAGCCGCAACATCAGCAACATCTCGGAACTGGCCGACCAGACCTCGGGACAGGCCCACAGCTCGGCGCTGCTCAGCGAAGAACTGACTCGAACGGCCAATACCCAGTATTCGTTGGTGGAGCGGTTCAACCGCTGAMRNNQPITQRERTFPAQQRLISTTNTKGVITYCNDAFVEISGFSKEELIHAPHNLVRHPDVPSAVFAHMWDTLKQGLPWMGIVKNRCQNGDHYWVNAYVTPVFEGNQVVGYESVRVKPSAEQISRAEALYQRINQGKAAVPGSDKWLPILQDWLPFILVSQLSFVVGAFLNSSWGFALAALLSVPLGLMGLQWQQRGIKRLLRLAEQTTSDPLIARMYTDSRGVQARLEMSILSQEARLKTCLTRLQDTAEHLNAQARQSNSLAHDSSTGLERQRVETEQVATAVNQMAATTQEVASHVQRTADATQEANRLTSRGRDIAGETREAIERLSVVVGETGQTVTQLAKDSDEIGGVVDVIKGIADQTNLLALNAAIEAARAGEMGRGFAVVADEVRQLAQRTSESTGQIHALIAKLQQTANNAVQTMDAGHRQAEEGVARVMEADQALVGISEAVAHITDMTTQIAAATEEQSSVAEEISRNISNISELADQTSGQAHSSALLSEELTRTANTQYSLVERFNRPGPT0015700_781DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSMETHYL-ACCEPTING_CHEMOTAXIS_PROTEINS,PGPT0015700-aer-K03776NANA
D1-35_00824789hypothetical proteinATGCTCTCCCTACCCTGGCCGTACCTGGCCCTTCTCTCGATCGGTTATGGCCTGGCCCTCGCGTACGGCCATCTGGCCTGGACTGCCATCATCTCGGTCGCGCTACTGCTGTTCGCCGGGTACGCGGTTCGCCAGCGGCAGACGCCGGTCGGGCAGTTTCTCGGGCATTGCCTGTTCATCGTCCTGGCGGTCGCGTTGGCATTGCATTGGATGCCGGGTTTCTTCAACAGCCGGGCGATCGCGGCGCAACGCTTCAGCGATGACGCCGTGCGGTTTGCGATGTATCTGAACCAGGACAAGCCCCTGATCGGTTTCTGGCTGTTGCTGGCATGCCCCTGGATCGTTGGCCGCCGCTCGTTTCGTGGCGCTGTCTACGGCACGGCCCTGGGGCTTGCGCTAAGCGCGATAATGGCCTTGGGCGGGGCGATGTTGCTGGGCATGATCCATTGGGCACCGAAATGGCCGGACCAGGCCTGGATCTGGGTGCTCAACAATCTTTTGTTGGTGACCTTGGTCGAGGAAGCACTGTTTCGTGGCTACATCCAGGGCGGCCTGAGCCGACGCTTCAAACATCTGCGCCATGGCGACAACCTCGCATTGCTGCTGGCCTCGCTGCTGTTCGGCCTGGTGCATGCCGGTGCCGGCTGGCAGTGGGTATTGCTGTCGGGGCTGGCCGGGATCGGTTATGGCCTCGCCTATCGGTTTGGCGGCCTGGGCGCGGCGATTGCCACACATTTCGGCCTCAATCTGCTGCATTTCGCCCTGTTTACTTACCCGATGCTGGCGTGAMLSLPWPYLALLSIGYGLALAYGHLAWTAIISVALLLFAGYAVRQRQTPVGQFLGHCLFIVLAVALALHWMPGFFNSRAIAAQRFSDDAVRFAMYLNQDKPLIGFWLLLACPWIVGRRSFRGAVYGTALGLALSAIMALGGAMLLGMIHWAPKWPDQAWIWVLNNLLLVTLVEEALFRGYIQGGLSRRFKHLRHGDNLALLLASLLFGLVHAGAGWQWVLLSGLAGIGYGLAYRFGGLGAAIATHFGLNLLHFALFTYPMLANANANANANA
D1-35_008252742acnACOG1048Aconitate hydratase AATGCCGTCCCTCGATAGCCTGAAAACCCTTAAAACATTGCAAGTCGACGCCAGGACTTATCACTATTTCAGCTTGCCGGACGCCGCGCGAAGCCTCGGTGATCTGGATAAACTGCCAATGTCCCTCAAGGTGCTGCTGGAAAACCTGCTGCGCTGGGAAGATGAAAAAACCGTCACCGGCGCCGACCTCAAGGCCCTGGCCGGTTGGCTCAAGGAGCGCCGCTCCGACCGCGAGATCCAGTATCGCCCGGCACGAGTGCTGATGCAGGACTTTACCGGCGTGCCCGCCGTGGTCGACCTGGCCGCCATGCGCGCCGCCGTGGAAAAGGCCGGAGGCGATCCCCAGCGAATCAACCCGTTGTCACCGGTCGACCTGGTGATCGACCACTCGGTGATGGTGGACAAGTTCGCCAGCCGCCAGGCCTTCGAGCAGAACGTCGACATCGAAATGCAGCGCAACGGCGAACGTTATGCCTTCCTGCGCTGGGGCCAGAGTGCCTTCGACAACTTCAGCGTGGTGCCACCGGGCACCGGCATCTGCCATCAGGTGAACCTGGAATACCTGGGTCGCACCGTCTGGACCAAAGAGGAAGACGGCCGCACCTACGCCTTCCCCGACACGCTAGTCGGCACCGACTCTCACACCACCATGATCAATGGCCTCGGCGTGCTCGGCTGGGGCGTCGGCGGGATCGAGGCGGAAGCGGCGATGCTCGGCCAACCGGTATCGATGCTGATCCCCGAGGTTGTCGGTTTCAAGCTCACCGGCAAGCTGCGCGAAGGTATCACCGCGACCGACCTGGTGCTGACCGTCACGCAGATGCTGCGCAAGAAGGGTGTGGTGGGCAAATTCGTCGAGTTTTATGGCGACGGTCTCGCCGACCTGCCCCTGGCCGACCGCGCCACCATCGCCAACATGGCCCCGGAATACGGCGCCACGTGCGGTTTCTTCCCGGTGGACGATGTAACGCTGGATTACTTGCGCCTGTCCGGGCGCCCCGCAGAAACCGTGAAACTGGTGGAAGCCTATTGCAAGGCTCAGGGCCTGTGGCGCCTGCCTGGCCAGGAACCGGTGTTCACCGACACGCTGGAACTGGACATGGGCAGCGTCGAGGCCAGCCTCGCCGGCCCCAAGCGTCCCCAGGATCGGGTCTCGCTGCCGAATGTCGGCCAAGCCTTCAGTGATTTCCTCGGCTTGCAGATCAAACCCACCAGCAAGGACGAGGGCCGCCTGGAAAGCGAAGGCGGCGGAGGCGTCGCGGTAGGCAATGCCGATCAGGTAGGGGAAGCCGAGTACGAATTCGAAGGCCAGACCCATCGCCTGAAAAACGGCGCGGTGGTGATTGCCGCCATCACCTCTTGCACCAACACCTCCAACCCCAGCGTGATGATGGCCGCCGGGCTGGTGGCAAAAAAAGCCGTGGAAAAAGGCCTGACGCGCAAGCCCTGGGTCAAGAGCTCCCTGGCGCCTGGCTCCAAGGTGGTGACCGACTACTACAACGCCGCGGGCCTGACCGAGTATCTCGACAAGCTCGGCTTCGACCTGGTGGGCTACGGCTGCACAACCTGTATCGGCAACTCCGGCCCTCTGCCCGACCCCATCGAAAAAGCCATCCAGAAAGCCGACCTGACCGTGGCTTCGGTGCTGTCGGGTAACCGCAACTTCGAGGGCCGGGTGCATCCACTGGTGAAAACCAACTGGCTGGCCTCGCCGCCATTGGTGGTCGCCTACGCCCTGGCCGGCACCGTGCGCATCGATATCAGCAGCGAACCGCTGGGCAACGACCGGGACGGCAATCCGGTCTACCTGCGCGACATCTGGCCGAGCAGCAAGGAAGTAGCCGACGCCGTGGCCCAGGTCGACACCAGCATGTTCCACAAGGAATACGCCGCCGTGTTCGCCGGTGACGAACAGTGGCAAGCCATCGAAGTGCCGCAGGCGGCTACTTATGTATGGCAAGACGACTCGACCTACATCCAGCATCCGCCATTCTTCGACGACATCGGCGGGCCGCCACCGGTGGTCAGGAATGTCGAGGGCGCGCGCGTCCTTGCGCTGCTCGGAGACTCGGTGACCACCGACCATATCTCGCCAGCCGGCAATATCAAGACAGACAGCCCTGCCGGCCGTTACTTGCGCGAACAAGGCGTGGAACCGCGGGACTTCAACTCCTACGGCTCGCGACGGGGCAATCATCAGGTGATGATGCGCGGCACCTTCGCCAATATCCGTATCCGCAACGAGATGCTCGGCGGCGAAGAAGGCGGCAATACGATCTATATCCCCAACGGCGAAAGAATGTCGATCTACGATGCGGCCATGTTGTACCAGGCCACCGGCACGCCTCTGGTGGTCATTGCCGGGCAGGAATATGGCACCGGTTCGAGCCGGGACTGGGCGGCCAAGGGTACCAACCTGCTGGGCGTGAAGGCCGTGATCGCCGAAAGCTTCGAACGCATTCACCGCTCCAACCTGGTGGGCATGGGCGTGCTGCCGCTGCAATTCAAGCTCGATCAGAATCGCAAGAGCCTGAACCTCACTGGCAGGGAGACCCTTGATATCCTCGGGCTGAGCGATGCCGAGCTGACGCCGCGCATGAATCTGCCGGTGGTCATCACCCGCGAGGATGGCAGCCAGGAGCGGATTGAAGTGTTGTGCCGGATCGACACCTTGAACGAAGTGGAATATTTCAAGGCTGGCGGGATCCTGCATTTTGTCCTGCGGCAATTGATTGCAGGATAAMPSLDSLKTLKTLQVDARTYHYFSLPDAARSLGDLDKLPMSLKVLLENLLRWEDEKTVTGADLKALAGWLKERRSDREIQYRPARVLMQDFTGVPAVVDLAAMRAAVEKAGGDPQRINPLSPVDLVIDHSVMVDKFASRQAFEQNVDIEMQRNGERYAFLRWGQSAFDNFSVVPPGTGICHQVNLEYLGRTVWTKEEDGRTYAFPDTLVGTDSHTTMINGLGVLGWGVGGIEAEAAMLGQPVSMLIPEVVGFKLTGKLREGITATDLVLTVTQMLRKKGVVGKFVEFYGDGLADLPLADRATIANMAPEYGATCGFFPVDDVTLDYLRLSGRPAETVKLVEAYCKAQGLWRLPGQEPVFTDTLELDMGSVEASLAGPKRPQDRVSLPNVGQAFSDFLGLQIKPTSKDEGRLESEGGGGVAVGNADQVGEAEYEFEGQTHRLKNGAVVIAAITSCTNTSNPSVMMAAGLVAKKAVEKGLTRKPWVKSSLAPGSKVVTDYYNAAGLTEYLDKLGFDLVGYGCTTCIGNSGPLPDPIEKAIQKADLTVASVLSGNRNFEGRVHPLVKTNWLASPPLVVAYALAGTVRIDISSEPLGNDRDGNPVYLRDIWPSSKEVADAVAQVDTSMFHKEYAAVFAGDEQWQAIEVPQAATYVWQDDSTYIQHPPFFDDIGGPPPVVRNVEGARVLALLGDSVTTDHISPAGNIKTDSPAGRYLREQGVEPRDFNSYGSRRGNHQVMMRGTFANIRIRNEMLGGEEGGNTIYIPNGERMSIYDAAMLYQATGTPLVVIAGQEYGTGSSRDWAAKGTNLLGVKAVIAESFERIHRSNLVGMGVLPLQFKLDQNRKSLNLTGRETLDILGLSDAELTPRMNLPVVITREDGSQERIEVLCRIDTLNEVEYFKAGGILHFVLRQLIAGPGPT0001465_1395DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001465-acnA-K01681NANA
D1-35_008261074rlmMCOG2933Ribosomal RNA large subunit methyltransferase MATGAACACGCTTTTTATGCACTGCCGACCGGGCTTCGAAGGCGAGGTCTGTTCCGAGATCGCCGAACATGCCGCGCGGCTGAACGTGGCCGGCTACGCCAAGGCCAAGCCGGCCAGCGCCTGCGCCGAATTCGTCTGCACTGAAGAGGACGCCGCCGAGCGGCTGATGCGTGGGCAGCGCTTTGCCGAGCTGATTTTCCCGCGCCAATGGGCGCGTGGCTCGTTCATCGAGTTGCCGGAGACCGACCGCATCAGCGTCATCCTCGCCCATCTGGCGGCTTTCCCGACGTGCGGCAGCCTGTGGCTGGAAGTGGTCGATACCAACGACGGCAAAGAGCTTTCGAACTTCTGCAAGAAATTCGAAGGTCCGTTGCGCAAGGCCTTGAGTGGCGCCGGCAAGCTGGTGGACGACCCGCACAAGCCGCGCCTGCTGCTGACGTTCAAGAGTGGCCGCGAAGTGTTCCTTGGCCTGGCGGAAGCCGACAATTCGGCAATGTGGCCGATGGGTATTCCGCGGCTTAAATTCCCTCGGGAAGCGCCGAGCCGCTCGACCCTCAAACTCGAAGAGGCCTGGCACCATTTCATCCCCCGTGACCAATGGGACGAGCGGCTGCACAGCGACATGACCGGCGTGGACCTCGGCGCCGCGCCGGGTGGCTGGACCTGGCAATTGGTCAACCGGGGCATGCTGGTGACGGCCATCGACAACGGTCCGATGGCTGAAAGCCTGATGGACACCGGCCTGGTGCAGCACTTGATGGCGGACGGCTTCACGTTCAAGCCCAAGCAGCCGGTGGACTGGATGGTCTGTGACATCGTCGAAAAACCCGCGCGCAATGCGGCGATGCTGGAAGAGTGGATTGGCGAGGGGCATTGCCGTGAGGCGGTGGTCAACTTGAAACTACCGATGAAGCAGCGTTACGCCGAGGTGAAGCGTCTGCTCGAACGCATCGCCGAGGGTTTCAAGGCCCGGGGTATCAAGGTCGAGATTGGCTGCAAGCAGCTGTATCACGACCGTGAGGAAGTGACGTGCCATCTGCGGCGGCTGGATAGCAGGAAGCCGAAGTCTCGCTAAMNTLFMHCRPGFEGEVCSEIAEHAARLNVAGYAKAKPASACAEFVCTEEDAAERLMRGQRFAELIFPRQWARGSFIELPETDRISVILAHLAAFPTCGSLWLEVVDTNDGKELSNFCKKFEGPLRKALSGAGKLVDDPHKPRLLLTFKSGREVFLGLAEADNSAMWPMGIPRLKFPREAPSRSTLKLEEAWHHFIPRDQWDERLHSDMTGVDLGAAPGGWTWQLVNRGMLVTAIDNGPMAESLMDTGLVQHLMADGFTFKPKQPVDWMVCDIVEKPARNAAMLEEWIGEGHCREAVVNLKLPMKQRYAEVKRLLERIAEGFKARGIKVEIGCKQLYHDREEVTCHLRRLDSRKPKSRNANANANANA
D1-35_00827252tusA_1COG0425Sulfur carrier protein TusAATGAGTGAAATGAACGAAACGCCGGTCGACGGCACGCTGGACGCCACCGGTCTCAACTGTCCGGAGCCGGTGATGATGCTGCATCAGCATATCCGTGACCTGGCCCCCGGCGGACTGCTGAAAGTCATTGCCACCGACCCGTCGACGCGCCGTGATATCCCCAAGTTTTGCGTGTTTCTCGACCACGAACTGGTCAGCCAGGATGAAGTGGACGGCACCTACCGCTACTGGATCCGCAAGAAGCTCGCTTAAMSEMNETPVDGTLDATGLNCPEPVMMLHQHIRDLAPGGLLKVIATDPSTRRDIPKFCVFLDHELVSQDEVDGTYRYWIRKKLANANANANANA
D1-35_008281404norMCOG0534Multidrug resistance protein NorMGTGAATCCTGTGATCGACACCGCCACCACTCTCTCCCGCCCTGCCCGGGTGCGCCTGGAGCTCAAGACCCTGCTGGCCCTGGCCCTGCCGATCATGGTGGCGCAATTGGCGACCACCGCCATGGGCTTTGTCGACGCGGTGATGGCCGGCCGGGTCGGGCCGCGGGATCTCGCGGCGGTGGCGCTGGGCAACTCGATCTGGGTTCCGGTATTCCTGTTGATGACCGGCACGCTGTTGGCTACCACCCCGAAGGTGGCCCAGCGTTTCGGTGCCGGTACGTTTGAACAGATCGGTCCATTGGTGCGTCAGGCATTGTGGCTGGCACTCGCGGTGGGGCTGATCGCAACGTTGGCGCTGCTCAGCGCCGAACCGATCCTGCATGTCATGAAAGTCGATCCCGAACTGATCGGCCCTTGCATGGAATACCTGCGCGGCATCGGCAGCGGTCTTCCGGCGGTGGCGCTCTATTACGTGCTGCGCTGCTTCAGCGACGGCCTGGGGCGTACGCGACCGGCGATGGTGCTGGGGCTGTGCGGGCTGGCCCTGAACATTCCGCTCAACTACATCTTCATCTATGGACACCTGGGCGTCCCCGCCATGGGCGGTGTCGGCTGCGGCTGGGCCACGGCCATCGTGATGTGGTTCATGGCGGCGGGCATGGCCGCCTGGACACGCTGGGGCCCGATCTATCAATCGAGTCAGCTGTTCAGCCGTTTCGACTGGCCGCAATGGTCAGTCATCAAGCGCCTGCTCGGCATCGGCCTGCCGATCGGCATCGCGGTGTTTGCCGAATCTAGCATCTTCGCGGTCATCGCCCTGCTGATCGGCAGCCTCGGTGCCACGGTGGTGGCCGGACACCAGATCGCCCTGAATTTCAGCTCGCTGGTGTTCATGATCCCCTATTCCCTGGGCATGGCCGTGACCGTACGGGTCGGCCAGGCGCTGGGGCGTAGCCAGCCTCGGGAAGCGCGCTTTGCAGCGGGTGTCGGCATGGCCACGGCCCTGGCGTACGCCTGCCTGTCGGCGAGCCTGATGTTCGCGTTGCGCGGGCCTATCGCGGCGATCTATACCGCCGACCCCGTGGTGATCGAAGTGGCATCGATGCTGATCGTCTACGCGGCGCTGTTTCAGTTTTCCGATGCCATCCAGGTCACGGCGGCGGGCGCGCTGCGCGGTTACCAGGACACCCAGGTGACGATGATCCTGACGCTCTTCGCTTACTGGGGCATCGGCTTGCCGGTGGGTTATGCCCTGGGCCTGACCGACTGGCTCGGCACCGCCAGCGGCCCAAGCGGATTGTGGCAGGGTCTGATCGTGGGATTGAGCTGCGCGGCGTTGATGCTGTCGATCCGACTGACGCGCAGTGCCCGTGGGCAGATTCGCATCAGTCGCTCGACAGGTTAAMNPVIDTATTLSRPARVRLELKTLLALALPIMVAQLATTAMGFVDAVMAGRVGPRDLAAVALGNSIWVPVFLLMTGTLLATTPKVAQRFGAGTFEQIGPLVRQALWLALAVGLIATLALLSAEPILHVMKVDPELIGPCMEYLRGIGSGLPAVALYYVLRCFSDGLGRTRPAMVLGLCGLALNIPLNYIFIYGHLGVPAMGGVGCGWATAIVMWFMAAGMAAWTRWGPIYQSSQLFSRFDWPQWSVIKRLLGIGLPIGIAVFAESSIFAVIALLIGSLGATVVAGHQIALNFSSLVFMIPYSLGMAVTVRVGQALGRSQPREARFAAGVGMATALAYACLSASLMFALRGPIAAIYTADPVVIEVASMLIVYAALFQFSDAIQVTAAGALRGYQDTQVTMILTLFAYWGIGLPVGYALGLTDWLGTASGPSGLWQGLIVGLSCAALMLSIRLTRSARGQIRISRSTGPGPT0029115_5906DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029115-TC_MATE|norM|mdtK|dinF-K03327NANA
D1-35_008291143pdxBCOG0111Erythronate-4-phosphate dehydrogenaseATGCTGATCGTTGCCGACGAAAACATTCCCTTGCTCGATGCGTTTTTTCAAGGTTTTGGTGAAATCCGCCGGGTGCCGGGGCGGGGCATCGACCGGGCGTTGGTCGAGCAGGCTGACGTGCTGCTGGTGCGTTCGGTCAGCCAGGTCAATCGGGCGCTGCTGGAAGGCAGCAAGGTGCGTTTTGTCGGGACCTGCACCATCGGCACCGATCACCTGGACCTGGAATATTTCGCCGAAGCCGGCATCCGCTGGGCCAGTGCCCCGGGCTGTAACGCCCGCGGTGTGGTGGACTATGTGCTGGGCAGTCTCATGACCCTGGCGGAAATCGAAGGCGCGGATCTTGCGCAGCGCACCTTTGGCGTCGTCGGCGCGGGGCAGGTGGGCGGGCGATTGATCAAGGTACTCAAAGACCTGGGCTGGGTCGTGAAAGTCTGTGATCCGCCGCGCCAGGCTGCCGAAGGCGGCGATTACCTGAGCCTGGAGCAGATTATCGAGCAGTGCGATGTGATCAGCCTGCACACACCCCTGACCCGCGATGGCGAGCAACCGACCTGGCACCTTTTCGACGAGCAACGATTGAACAACCTCAAGCCGGGGACCTGGTTGATCAACGCCGCTCGCGGCCCGGTCATCGACAACACGGCGCTGCGCGAGGTGCTGCTGGAGCGCGAAGATCTGCAAGCGGTGCTGGATGTCTGGGAGCGGGAGCCGACAGTCGACGTCGATCTGGCCGACCTCTGCGTGATCGCCACTCCGCACATCGCCGGCTATAGCCTTGACGGTCGCCAGCGTGGCACGGCGCAGATTTATGAAGCCTTGTGCGGATTCCTGCAGCGGCCGGTGGAAGTCAGCCTGGCCGAGCTGTTGCCACGGCCGTGGCTCGCCGGCCTCACGCTGGATGCCGCCACCGACCCGGCCTGGGCCCTGGCGGCGTTGTGCCGGAGCGTTTACGACCCGCGCCGTGACGATGCGGACTTTCGCCGCAGCCTTATCGGCACCGACAGCGAGCAACGTAGCGCCTTTGATGCCTTGCGCAAGCATTATCCGCCACGCCGGGAAATCGACAGCTTGAAGGTGCGGATCGAAGGGCAATCGCCGACGTTGGAAAATATCGTGGCAGCCCTGGGCGCCACCATTGCTTGAMLIVADENIPLLDAFFQGFGEIRRVPGRGIDRALVEQADVLLVRSVSQVNRALLEGSKVRFVGTCTIGTDHLDLEYFAEAGIRWASAPGCNARGVVDYVLGSLMTLAEIEGADLAQRTFGVVGAGQVGGRLIKVLKDLGWVVKVCDPPRQAAEGGDYLSLEQIIEQCDVISLHTPLTRDGEQPTWHLFDEQRLNNLKPGTWLINAARGPVIDNTALREVLLEREDLQAVLDVWEREPTVDVDLADLCVIATPHIAGYSLDGRQRGTAQIYEALCGFLQRPVEVSLAELLPRPWLAGLTLDAATDPAWALAALCRSVYDPRRDDADFRRSLIGTDSEQRSAFDALRKHYPPRREIDSLKVRIEGQSPTLENIVAALGATIAPGPT0009150_251DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ERYTHRONATE_UTILIZATION,PGPT0009150-pdxB-K03473NANA
D1-35_00830180hypothetical proteinATGTCCTTGCAACACAGCAGCGAAGACAAGATTCAAGTGATCCGCACGCAACCGGACCAGTCCCTGGGCTGCTCGTTCATCGATGCCCAAGGGCGCGAAGTACCGATCACCGAAGACATGATCCAGAAAGCCTGCAGCGAACTGGAAAAACGACTGGTCAAACCTGCCGAACAAAAGTGAMSLQHSSEDKIQVIRTQPDQSLGCSFIDAQGREVPITEDMIQKACSELEKRLVKPAEQKNANANANANA
D1-35_008311773COG1132Putative multidrug export ATP-binding/permease proteinATGCTTTCTTCCCGACAACGCCGTGCCATACGCCTGGCCAGCGGCTTCATTGCTCCTTACCGCAAACAGGTCTTTGGCGCTTTGCTGGCCCTGATCGTCACCGCCGGCATTACCTTGTCCATGGGGCAGGGTATCCGGTTGCTGGTGGATCAGGGTTTCATGACGCGCTCGCCGCATCTGCTCAATCAATCGATCGGGTTGTTCATGGTCCTGGTGGCGGGGTTGGCGGTCGGTACGTTTGCCCGTTTCTACCTGGTGTCGTGGATTGGCGAGCGGGTGGTGGCCGATATCCGCCGACAGGTTTTCAACCACCTGGTGTATCTGCATCCCGGGTTCTACGAAAACAACCGCAGTTCGGAAATCCAGTCACGCCTGACCGCCGACACCACGCTGCTGCAATCGGTGATCGGTTCGTCGTTGTCACTGTTTCTGCGCAACGCGCTGATGGTGGTCGGAGGCATCGTGCTGCTGTTCGTCACCAATCCCAAGCTCACCAGCATCGTGGTGATTGCGCTGCCGCTGGTGCTGGCGCCGATCCTGGTCTTTGGCCGGCGAGTGCGCAGCCTGTCCCGCGAAAGCCAGGACCGCATCGCCGATGTCGGCAGTTACGTTTCCGAAACCCTCGGCCAGATCAAGACGGTGCAGGCCTATAACCACCAGGTCCAGGACGAGCACCGTTTCGCTGCTACCGTGGAGCAGGCCTTCGACACTGCCCGCAAGCGCATCGCCCAGCGCGCCTGGTTGATTACCCTGGTGATCGTTCTGGTACTGGGTGCGGTGGGCGTAATGCTCTGGGTCGGTGGCATGGACGTGATCGCCGGGCGCATTTCCGGCGGTGAGCTGGCGGCATTCGTGTTCTACAGCCTGATTGTCGGGAGCGCTTTCGGTACGCTCAGCGAAGTGATCGGCGAGCTGCAGCGGGCGGCCGGCGCCGCGGAGCGAATTGCCGAGTTGCTGCGTTCGCAGAACATCATCCAGCCGCCGGCGACGGGCCTTGTCACGTTGCCGCAGCGGGTCAGGGGCGACCTGCGCCTTGAAGGTGTACGGTTTTCCTACCCGTCGCGGCCGGAAAGCTACGCGGTCGATGGTCTGGACCTTAGCGTCAACGCTGGCGAAACCGTTGCGCTGGTCGGCCCGTCCGGGGCGGGCAAATCCACCGTGTACGATCTGCTGCTGCGATTCTACGATCCAGTGCAGGGGCAGATATACCTCGATGGTGTGCCGCTGACCTTGCTTGACCCGTTGGACCTGCGTCGTCACTTCGCCCTGGTCTCGCAGAGCCCGGCACTGTTCTTCGGTACGGTGGAAGAAAATATTCGCTACGGCAATCCGCAAGCCACCGACGAACAGGTGCGCGAAGCGGCGCGGATCGCTCACGCCCATGACTTCATCGAGAAAATGCCGGATGGCTACCAGACCCATCTGGGCGATGGCGGCCTGGGTTTGTCCGGTGGCCAGCGCCAACGCCTGGCCATCGCCCGGGCACTGCTGATCGACGCGCCGATCCTGCTGTTGGACGAAGCCACCAGCGCGCTCGATGCACAAAGCGAACACCTCATCCAGCAAGCCCTGCCCAGCCTGATGAAAAACCGCACCACCCTGGTCATCGCCCACCGCCTGGCCACGGTGAAAAATGCCGACCGGATCGCGGTAATGGACCAGGGCAGGGTAGTCGCCGTGGGCACTCATCAGGAGTTGGTGGCGAGTAATGCGCTGTATGCGCGGTTGGCGGCGTTGCAGTTCAACGTTAGCTTGGAGTCGGCAGCCGACTGAMLSSRQRRAIRLASGFIAPYRKQVFGALLALIVTAGITLSMGQGIRLLVDQGFMTRSPHLLNQSIGLFMVLVAGLAVGTFARFYLVSWIGERVVADIRRQVFNHLVYLHPGFYENNRSSEIQSRLTADTTLLQSVIGSSLSLFLRNALMVVGGIVLLFVTNPKLTSIVVIALPLVLAPILVFGRRVRSLSRESQDRIADVGSYVSETLGQIKTVQAYNHQVQDEHRFAATVEQAFDTARKRIAQRAWLITLVIVLVLGAVGVMLWVGGMDVIAGRISGGELAAFVFYSLIVGSAFGTLSEVIGELQRAAGAAERIAELLRSQNIIQPPATGLVTLPQRVRGDLRLEGVRFSYPSRPESYAVDGLDLSVNAGETVALVGPSGAGKSTVYDLLLRFYDPVQGQIYLDGVPLTLLDPLDLRRHFALVSQSPALFFGTVEENIRYGNPQATDEQVREAARIAHAHDFIEKMPDGYQTHLGDGGLGLSGGQRQRLAIARALLIDAPILLLDEATSALDAQSEHLIQQALPSLMKNRTTLVIAHRLATVKNADRIAVMDQGRVVAVGTHQELVASNALYARLAALQFNVSLESAADNANANANANA
D1-35_008321929sltCOG0741Soluble lytic murein transglycosylaseATGCGCAGTCGCCTTTTCAGTGTCTTATCTTGTTTGTTTGTGTGTGCCACTGCCGTTCAGACCGCCCAGGCGGTGGATATTTCCACCCAGCGCCAGTATTACGATGAGGCCAAGCGCGCCCTGGCCAAAGGTGATTCCGGCCCCTATTTGCGCTACAGCCAGGCCCTGCGCGATTATCCGCTGGAGCCCTACCTCGCCTACGATGAGTTGACCGCTCGCCTGAAAAGCGCGAGCAATGCCGAGATCGAGAAATTCCTCGCCGAACATGGCGACCTGCCCCAGGCCAACTGGATGAAGCTGCGCTGGTTGCGCTGGCTGGCGGAGCGTGGCGACTGGGCAACCTTCGTCAAGTATTACGACCCCAAGCTCAACTTCACCGAACTCGATTGCCTCAACGCTCAATATCAACTGAGCCATGGCCTCAAGGCCGAAGGCTACGCCAACGCTGAGAAACTCTGGCTTACCGGCAAATCCCAGCCGGCGGCCTGCGATGCGCTGTTCGGCATGTGGGCGGCCCAAGGCCAACTGACTGAGCAGAAACGCTGGGAGCGCGCCAAACTGGCCGCCCAGGCGCGTAACTATCCGCTGGCCAACAGCCTGGTGAGCGGCCTGACCACCCTGGCGCCTCGCGGCAGCCTGTTGATCGACGTGGCGCAGAGGCCCGAACTGCTCAACCAGCCTTCGCGCTTCGCGCCCGCCGATGAACCGATGTCCGATGTCGTGAGCCTCGGCTTGCGACGCCTGGCCCGCCAGGACCCGGAAAAAGCCATGGCGTTGCTGGACGGGTATGCCAGCACCATGCATTTCTCTCGAGACGAGAAAGTGGCAATCGCCCGGGAAATCGGTCTGACCCTGGCCAAACGCTTCGACAGCCGCGCCCTCGACGTGATGACCAAATACGACCCGGAGCTGCGCGATGACACTGTCTCGGAATGGCGTTTGCGCCTGCTGTTGCGCCTGGCCCGCTGGGAAGATGCCTATCAGTTGACCCGCCGCCTGCCCGAGTCGCTCGCCACCACCAACCGCTGGCGTTACTGGCAGGCCCGCAGCCTGGAGCTGGCGCAGCCGCAGAACCCGCAAGCGGTGACGCTCTACAAGCAACTGGCCCGGGAGCGTGACTTCTACGGCTTCCTGGCGGCCGACCGCTCCCAGTCACCCTATTCGCTCAACAACAAGCCGCTGGTGATGAGCCAGGCGCTGATCAACAAAGTGCGCAACACCCCGGGCGTGCGCCGCGCGCTGGAGTTTCATGCGCGCGGACAGATCGTCGATGGCCGCCGCGAGTGGTATCACGTCAGCCGTCATTTCAGCCGGGACGAAATGGTTGCCCAGGCGAAACTGGCCTATGACCTGAAATGGTACTTCCCGGCCATCCGCACCATCAGCCAGGCCAAATACTGGGACGACCTGGATATCCGCTTCCCGATGGCCCACCGCGACACGCTGGTGCGCGAAGCCAGGATCCGCGGCCTGCATCCAAGCTGGGCGTTCGCCATCACCCGCCAGGAAAGCGCATTCATGGACGATGCCCGCTCCAGCGTCGGTGCCAGCGGCCTGATGCAGTTGATGCCAGGCACCGCCAAGGAAACCGCCCGCAAGTTCAACATTCCCCTGGCATCGCCCCAGCAAGTGTTCAACCCGGACAAGAACATCCAGCTCGGCGCGGCTTACCTGAGCCAGGTGCACAGCCAGTTCAACGGCAACCGGGTCCTCGCCTCCGCCGCGTACAACGCCGGCCCTGGCCGCGTGCGTCAATGGCTGCGTGGCGCTGACCACCTGAGCTTCGACGTCTGGGTCGAAAGCATCCCTTTCGACGAAACCCGTCAATACGTACAGAACGTGCTGTCCTACTCGGTGATCTACGGCCAGAAACTCAACTCGCCACAACCGTTGGTGGACTGGCACGAGCGCTATTTCGATGATCAGTGAMRSRLFSVLSCLFVCATAVQTAQAVDISTQRQYYDEAKRALAKGDSGPYLRYSQALRDYPLEPYLAYDELTARLKSASNAEIEKFLAEHGDLPQANWMKLRWLRWLAERGDWATFVKYYDPKLNFTELDCLNAQYQLSHGLKAEGYANAEKLWLTGKSQPAACDALFGMWAAQGQLTEQKRWERAKLAAQARNYPLANSLVSGLTTLAPRGSLLIDVAQRPELLNQPSRFAPADEPMSDVVSLGLRRLARQDPEKAMALLDGYASTMHFSRDEKVAIAREIGLTLAKRFDSRALDVMTKYDPELRDDTVSEWRLRLLLRLARWEDAYQLTRRLPESLATTNRWRYWQARSLELAQPQNPQAVTLYKQLARERDFYGFLAADRSQSPYSLNNKPLVMSQALINKVRNTPGVRRALEFHARGQIVDGRREWYHVSRHFSRDEMVAQAKLAYDLKWYFPAIRTISQAKYWDDLDIRFPMAHRDTLVREARIRGLHPSWAFAITRQESAFMDDARSSVGASGLMQLMPGTAKETARKFNIPLASPQQVFNPDKNIQLGAAYLSQVHSQFNGNRVLASAAYNAGPGRVRQWLRGADHLSFDVWVESIPFDETRQYVQNVLSYSVIYGQKLNSPQPLVDWHERYFDDQPGPT0024070_1959DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-SOLUBLE_LYTIC_MUREIN_TRANSGLYCOSYLASE_ACTIVITY,PGPT0024070-slt-K08309NANA
D1-35_008331920uupCOG0488ABC transporter ATP-binding protein uupATGACCCTGCTCAAATTCAGCGATGTGTCCCTTGCTTTCGGCGCGATGCCGTTGTTGGACAAGGTGTCCTGGCAGATCGCCCGTGGAGAGCGGGTGTGCATCATCGGCCGCAACGGCACTGGCAAGTCCAGCATGATGAAGCTGGTCAAGGGCGACCAGAAGCCCGACGACGGCTCGGTCTGGCGCGCGCCAGGCCTGAAGATCGGCGAATTGCCCCAGGAACTGCCGGTAGCCGACGAGCGGACGGTATTCGACGTGGTCGCCGAAGGCCTGGACGGTGTCGGCGCGCTGTTGGCCGAATATCATCACCTGAGCCAGAACATCGTCACCGATGCCGACCTGGACAAGCTGATGCATGTCCAGCACGACCTCGAAGCCCGTGACGGCTGGCGCCTGCAGCAGTTGGTCGACAGCACGCTGAGCCGCTTGCAACTGCCGGCCGACAAGACTCTGGCCGAGCTGTCCGGTGGCTGGCGTCGCCGCGTCCTGCTGGCCCAGGCCCTGGTGTCCGAACCCGATCTGCTGCTGCTCGACGAGCCGACCAACCACCTCGACATCGGCGCCATCGCCTGGCTTGAAGAAGCCCTCAAGGATTTCCAGGGCGCGGTGCTGTTCATCACTCACGACCGTTCCTTCCTGCAGAACCTGGCGACCCGCATCCTCGAACTGGATCGCGGCGGCTTGATCGACTGGAACGGCGACTACGCCAGTTTCTTGGTGCACAAGGAAGCAGTACTGGCGGCGGAAGAAACCGCCAATGCGCTGTTCGACAAGCGCCTGGCCCAGGAAGAGGTCTGGATCCGCCAGGGCATCAAGGCCCGGCGTACCCGTAACGAAGGTCGCGTACGCGCCCTCAAGGCCTTGCGCGTTGAGCGTAGCGAGCGACGCGAGCGCACCGGCAAGGCGAATATCCAGCTGGAAACCGCCGACAAGTCGGGCAAGCAGGTCATGGTGCTGGAGAACGTCAGCTTCGCCCACCCGGGTGGCCCGTTCCTGGTCAAGGACTTCTCCATGGTTCTGCAGCGCGGCGATCGGATCGGCCTGCTGGGCGCCAACGGTACCGGCAAGACGACCTTGCTCAAGCTGATGCTTGGCGGTCTGGTGCCGACCAGCGGCAAAGTGGAAGAGGGGACAAAAATCGATGTCGCCTATTTCGACCAGTTGCGCCACCAGCTGGATCTGGAAAAAACCGTGATCGACAACGTGGCCGAAGGTCGCGACTTCATCGATATCGACGGCCAGAGCCGCCACGTGTTGAGTTACCTCGGCGATTTCCTGTTCAGTCCGCAGCGCGCCCGTACCCCGGTGAAGGCGTTGTCGGGTGGCGAGCGAGCCCGTCTGTTGCTGGCCAAGCTGTTCAGCAAGCCGGCGAACCTGCTGGTGCTCGACGAACCGACCAACGACCTGGACGTGGAAACCCTCGAACTGCTGGAAGAGGTGTTGCTCACCTTCAACGGCACCGTGCTGATGGTCAGCCACGACCGGGCCTTCCTCGACAACGTGGTCACCAGCACCCTGGTTTTCGAAGGCGAAGGGCTGGTTCGCGAGTACGTTGGTGGTTACCAGGACTGGCTGCGCCAGGGGGGCTCGCCACGTCTCCTGGGCGTGACCGAGAGCAAATCCGGCAAGGCCGACCTGAATTCGGCGGTCGTCAAGGCCGAGCCGGCTCCGGTTGCCGCCACTGCCGCGCCTGCCCCTGCGAAAAAGAAGCTCAGCTACAAACTGCAGCGTGAGCTGGAAGCATTGCCTGGCGATATCGAGGCGAAGGAGCAGCAGATTGCAGCGGTGGAGGCCGAGATGGCTGATGCCGGTTTCTACCAGCGACCAGCGGCCGAAACCGCCAAGGTGATTGCCCACCTGGAGCAGTTGCAGGCCGAGCTGGATGTACTGGTCGAGCGCTGGGCTGAACTGGACGCCTGAMTLLKFSDVSLAFGAMPLLDKVSWQIARGERVCIIGRNGTGKSSMMKLVKGDQKPDDGSVWRAPGLKIGELPQELPVADERTVFDVVAEGLDGVGALLAEYHHLSQNIVTDADLDKLMHVQHDLEARDGWRLQQLVDSTLSRLQLPADKTLAELSGGWRRRVLLAQALVSEPDLLLLDEPTNHLDIGAIAWLEEALKDFQGAVLFITHDRSFLQNLATRILELDRGGLIDWNGDYASFLVHKEAVLAAEETANALFDKRLAQEEVWIRQGIKARRTRNEGRVRALKALRVERSERRERTGKANIQLETADKSGKQVMVLENVSFAHPGGPFLVKDFSMVLQRGDRIGLLGANGTGKTTLLKLMLGGLVPTSGKVEEGTKIDVAYFDQLRHQLDLEKTVIDNVAEGRDFIDIDGQSRHVLSYLGDFLFSPQRARTPVKALSGGERARLLLAKLFSKPANLLVLDEPTNDLDVETLELLEEVLLTFNGTVLMVSHDRAFLDNVVTSTLVFEGEGLVREYVGGYQDWLRQGGSPRLLGVTESKSGKADLNSAVVKAEPAPVAATAAPAPAKKKLSYKLQRELEALPGDIEAKEQQIAAVEAEMADAGFYQRPAAETAKVIAHLEQLQAELDVLVERWAELDANANANANANA
D1-35_00834441uspA2COG0589Universal stress protein AATGTACTACGAACACGTCCTGGTCGCCGTCGACCTTACTGAAGAATGCGATCCTGTCGTCAAGCGAGCCCTCGCTCTCTGCGAAGGCCGGGACAACAAACTGTCGCTGGTGCATATCGTCGAGCCGATGGCCATGGCCTTCGGCGGCGACGTCCCAATGGACCTTTCCCAGTTGCAACAGCAACAATTTGACCAGGCCAAGGAACGCTTTGATCGACTGATCGTGAAATACCCGGCATTAAAAAAGGAAAACAGTCACCTGACCTACGGCCAGCCGCGCCAGGAGATTCATCACCTGGCCAAGGAGCAGGGCTGCGACCTGATCGTTGTCGGCAGCCATGGCCGCCACGGTCTCGCGCTGCTGCTGGGCTCCACTGCCAACGACGTATTGCATGGCGCTCCATGCGACGTGCTGGCGGTGCACCTGGTCAAGCGCTCGTAAMYYEHVLVAVDLTEECDPVVKRALALCEGRDNKLSLVHIVEPMAMAFGGDVPMDLSQLQQQQFDQAKERFDRLIVKYPALKKENSHLTYGQPRQEIHHLAKEQGCDLIVVGSHGRHGLALLLGSTANDVLHGAPCDVLAVHLVKRSPGPT0014970_241DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0014970-uspA-K06149NANA
D1-35_00835438hypothetical proteinATGACGGTCTGGATAGTGGTGTCAATCCTGTTGGTGGTATTGAGCCCCTTGGCATGGTTGCGGCCATCGCGTGTCCAGAGCGGTCGCATGGCCCTGCGCATGGAGGCGCGACGCCTCGGCCTGGCCATGCAACTGGCTTCCCAGGAGTGGCCGCACTGGCTCAGTCAGCCGCCGCCCAACCCTTGCGCTCAGTACCATCAGCCCCGACGTGGCAAGCAGCCGGCCCTCTGGAGCTACTGGCAGAGCGCCCCTGGCGTGTGGGTCAATCAGTGGCGCGAGCCCTGTCTGGACGAGTCGCTGCTGGCGCATTTCCACAAGCTGCCCGCCAACGTTTACAAAATCGAAGCCGACAAGCAGATGATTACCTTGTACTGGGGCGAAAAGGGCGAGGCGAGTGTTTTGCAGGATATATCCGCGGTGCTCAACGCATTGGCTTGAMTVWIVVSILLVVLSPLAWLRPSRVQSGRMALRMEARRLGLAMQLASQEWPHWLSQPPPNPCAQYHQPRRGKQPALWSYWQSAPGVWVNQWREPCLDESLLAHFHKLPANVYKIEADKQMITLYWGEKGEASVLQDISAVLNALANANANANANA
D1-35_008362148fadB_1Fatty acid oxidation complex subunit alphaATGATTTACGAAGGTAAAGCCATCACGGTTAAGGCTCTTGAAAGTGGCATTGTCGAACTGAAGTTCGATCTCAAGGGTGAGTCCGTCAACAAGTTCAACCGTCTAACCCTGAACGAATTGCGTCAGGCCGTGGACACTATCAAGGCAGATGCTTCGGTCAAGGGTGTGATCGTCAGCAGCGGCAAGGACGTGTTCATCGTCGGCGCCGACATCACCGAATTCGTCGACAACTTCAAGCTGCCCGATGCCGAACTGATCGCAGGCAACCTCGAAGCGAACCGTATCTTCAGCGATTTCGAAGACCTTGGCGTGCCAACGGTTGCGGCCATCAACGGCATCGCCCTGGGTGGCGGACTGGAAATGTGCCTGGCGGCCGATTACCGTGTCATGTCCACCTCCGCCAAGATCGGCCTGCCGGAAGTCAAGCTGGGCATCTACCCGGGCTTCGGCGGTACCGTGCGCCTGCCGCGCCTGATCGGTGCCGACAATGCCATCGAGTGGATTGCCGCTGGCAAGGAAAACCGTGCCGAAGACGCGCTGAGAGTCGGCGCCGTGGATGCCGTGGTCGAACCTGGCAAGCTCCAGGAAGCGGCCCTTGAGACGATCAAGCGCGCCATCAGCGGCGAGTTCGACTACAAGGCCAAGCGCCAGCCGAAGCTGGAAAAGCTCAAGCTCAACGCCATTGAACAAATGATGGCCTTCGAAACCGCCAAGGGCTTTGTCGCCGGCCAGGCTGGCCCGAACTACCCGGCCCCGGTCGAAGCCATCAAGACCATCCAGAAAGCCGCGAATTTCGGTCGCGACAAGGCCCTGGAAGTCGAGGCCGCCGGTTTCGTCAAGCTGGCCAAGACCTCGGCTGCGCAAAGCCTGATCGGCCTGTTCCTCAACGATCAGGAGCTGAAGAAAAAGGCCAAGGCCTACGACGAAATCGCTCGCGACGTGAAGCAGGCGGCTGTGTTGGGTGCTGGCATCATGGGCGGTGGTATCGCCTACCAGTCGGCGTCCAAGGGCACGCCGATCCTGATGAAAGACATCAACGAACATGGCATCGAACAAGGTCTGGCCGAAGCTGCCAAGCTGCTGGTCGGCCGTGTCGACAAAGGTCGCATGACTGCCGCGAAGATGGCCGAAGTGCTTAACGGCATTCGCCCGACGCTGTCCTATGGCGATTTCGGCCATGTCGACCTGGTGGTCGAAGCCGTTGTCGAGAACCCGAAGGTCAAGCAGGCGGTACTGGCTGAAGTCGAAGACAAGGTCAAGGAAGATACGATCCTTGCCTCCAACACCTCGACCATTTCCATCTCGCTGCTGGCCAAGGCCCTCAAGCGTCCGGAAAACTTCGTCGGCATGCACTTCTTCAACCCGGTGCACATGATGCCGCTGGTGGAAGTCATCCGTGGCGAGAAGTCCAGTGAGCAGGCGATCGCCACCACCGTGGCCTACGCGAAAAAAATGGGCAAGAACCCGATCGTGGTCAACGACTGCCCGGGCTTTCTGGTCAACCGCGTGCTGTTCCCGTATTTCGGCGGTTTCGCCAAGCTGGTCAGCGCTGGCGTGGACTTCGTGCGCATCGACAAGATCATGGAAAAATTCGGCTGGCCGATGGGCCCGGCGTACCTGATGGACGTGGTTGGCATCGACACCGGCCACCACGGTCGCGATGTCATGGCCGAAGGCTTCCCGGATCGTATGAAGGACGATCGCCGTTCGGCTGTCGACGTGCTCTATGAAGCCAAGCGCCTTGGCCAGAAGAACGGCAAGGGCTTCTACGCCTACGAGACCGACAAGCGCGGCAAGCAGAAGAAAGTCGCCGATTCGTCGGTGCTCGAAGTGCTCAAGCCGATCGTCTACGAGCAGCGCGAAGTCACCGACGAGGACATCATCAACTGGATGATGATCCCGCTGTGCCTGGAAACCGTGCGTTGCCTGGAAGACGGCATTGTCGAAACCGCCGCCGAAGCCGACATGGGTCTGGTCTACGGTATCGGTTTCCCTCCATTCCGTGGCGGTGCGCTGCGCTACATCGATTCGATCGGTGTCGCCGAGTTCGTTGCCCTGGCTGACCAGTACGCTGATCTGGGCGCGCTGTACCACCCGACCGCGAAGCTGCGTGAAATGGCCAAGAACGGCCAGCGTTTCTTCGGTTAAMIYEGKAITVKALESGIVELKFDLKGESVNKFNRLTLNELRQAVDTIKADASVKGVIVSSGKDVFIVGADITEFVDNFKLPDAELIAGNLEANRIFSDFEDLGVPTVAAINGIALGGGLEMCLAADYRVMSTSAKIGLPEVKLGIYPGFGGTVRLPRLIGADNAIEWIAAGKENRAEDALRVGAVDAVVEPGKLQEAALETIKRAISGEFDYKAKRQPKLEKLKLNAIEQMMAFETAKGFVAGQAGPNYPAPVEAIKTIQKAANFGRDKALEVEAAGFVKLAKTSAAQSLIGLFLNDQELKKKAKAYDEIARDVKQAAVLGAGIMGGGIAYQSASKGTPILMKDINEHGIEQGLAEAAKLLVGRVDKGRMTAAKMAEVLNGIRPTLSYGDFGHVDLVVEAVVENPKVKQAVLAEVEDKVKEDTILASNTSTISISLLAKALKRPENFVGMHFFNPVHMMPLVEVIRGEKSSEQAIATTVAYAKKMGKNPIVVNDCPGFLVNRVLFPYFGGFAKLVSAGVDFVRIDKIMEKFGWPMGPAYLMDVVGIDTGHHGRDVMAEGFPDRMKDDRRSAVDVLYEAKRLGQKNGKGFYAYETDKRGKQKKVADSSVLEVLKPIVYEQREVTDEDIINWMMIPLCLETVRCLEDGIVETAAEADMGLVYGIGFPPFRGGALRYIDSIGVAEFVALADQYADLGALYHPTAKLREMAKNGQRFFGPGPT0001865_612DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0001865-fadB-K01825NANA
D1-35_008371176fadA_23-ketoacyl-CoA thiolaseATGAGCTTGAATCCTAGAGACGTCGTGATTGTCGACTTCGGTCGTACGCCGATGGGCCGCTCCAAGGGCGGCATGCACCGCAACACCCGTGCCGAGGACATGTCGGCGCATCTGATCAGCAAGCTGCTGGAACGCAACGTCAAGGTCGATCCCAATGAGGTCGAGGACGTGATCTGGGGCTGTGTGAACCAGACCCTGGAGCAGGGCTGGAACATCGCTCGCATGGCGTCGCTGATGACCCAGATCCCTCACACCGCGGCCGGCCAGACCGTCAGCCGCCTGTGCGGTTCGTCCATGAGCGCGCTGCACACCGCCGCCCAGGCGATCATGACCGGCAACGGTGATGTATTCGTCGTCGGCGGTGTCGAGCACATGGGCCACGTGAGCATGATGCACGGCGTCGATCCGAACCCGCACATGTCGCTGTACGCGGCAAAAGCCTCGGGCATGATGGGCCTGACCGCGGAAATGCTCGGCAAGATGCACGGCATCACCCGCGAACAGCAGGACGCCTTTGGCGTGCGCTCCCACCAGCTCGCCCACAAGGCGACGGTGGAAGGCAAGTTCAAGGATGAAATCATCCCGATGCAGGGTTACGACGAGAACGGCTTCCTGAAGCTGTTTGACTACGACGAGACCATTCGTCCGGAAACCACCCTGGAAAGCCTGGCGACGTTGAAGCCGGCCTTCAATCCAAAGGGCGGCACCGTGACAGCCGGTACCTCGTCGCAGATCACCGATGGTGCCTCGTGCATGATCGTGATGTCGGCCCAGCGTGCCCAGGACCTGGGCATCCAGCCGATGGCGGTGATTCGTTCGATGGCCGTCGCCGGTGTGGATCCCGCAATCATGGGCTATGGTCCAGTACCGGCCACGCAGAAAGCCTTGAAGCGCGCGGGCCTGAGTATCTCCGACATCGACTTCTTCGAGCTCAACGAAGCTTTCGCCGCACAGGCCCTGCCAGTGCTGAAAGATCTGAAAATACTCGACAAGATGAACGAGAAGGTTAACCTGCACGGCGGCGCCATCGCCCTGGGTCATCCGTTTGGCTGCTCCGGTGCGCGTATCTCCGGCACGCTGCTCAACGTCATGAAGCAGAACGGCGGCACTTTTGGGGTGTCCACCATGTGCATTGGCCTCGGCCAAGGCATCGCCACCGTCTTCGAGCGCATCTAAMSLNPRDVVIVDFGRTPMGRSKGGMHRNTRAEDMSAHLISKLLERNVKVDPNEVEDVIWGCVNQTLEQGWNIARMASLMTQIPHTAAGQTVSRLCGSSMSALHTAAQAIMTGNGDVFVVGGVEHMGHVSMMHGVDPNPHMSLYAAKASGMMGLTAEMLGKMHGITREQQDAFGVRSHQLAHKATVEGKFKDEIIPMQGYDENGFLKLFDYDETIRPETTLESLATLKPAFNPKGGTVTAGTSSQITDGASCMIVMSAQRAQDLGIQPMAVIRSMAVAGVDPAIMGYGPVPATQKALKRAGLSISDIDFFELNEAFAAQALPVLKDLKILDKMNEKVNLHGGAIALGHPFGCSGARISGTLLNVMKQNGGTFGVSTMCIGLGQGIATVFERIPGPT0001565_3612DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0001565-fadA|fadI-K00632NANA
D1-35_00838237hypothetical proteinATGCCGATACAACCTGGGCTCTACCAACATTACAAAGGCCCGCAGTACCGCGTATTCAGTATTGCGCGGCATTCCGAGACCGAGGAAGAAGTGGTCTTCTATCAAGCCCTGTATGGCGATTACGGCTTCTGGGTGCGTCCGTTGAACATGTTCCAGGAGTCCGTCGAGGTTGACGGCGAACAGGTGCCACGCTTTGCTTTGGTGCAGGCCGAGGAGAGCATTTTTTCCAAGCCTTGAMPIQPGLYQHYKGPQYRVFSIARHSETEEEVVFYQALYGDYGFWVRPLNMFQESVEVDGEQVPRFALVQAEESIFSKPPGPT0012200_854DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-HYDROLASE,PGPT0012200-cd|ma|nplT-K01208NANA
D1-35_008392613topACOG0550DNA topoisomerase 1ATGGGCAAATCGCTGGTCATTGTGGAATCCCCGGCTAAGGCCAAGACCATCAACAAGTATCTGGGTAACCAATACGTGGTGAAGTCGAGTATCGGCCATATCCGAGACCTGCCCACCAGCGGTTCGGCTAGCGCCAGCAAAGAGCCTGCTGCCAAGCGCGGCAAGGCTGCCGCCGGCGAAGCGCCAGCGTTGTCGCCGAAGGAAAAGGCGCGCAAGCAGTTGGTCTCGCGCATGGGGGTTGATCCGGAACACGGCTGGAAAGCCAAGTACGAGATCCTCCCGGGCAAGGAAAAGGTCATCGAAGAGCTGCGCCGGCTCGCCAAGGATGCCGACACCATCTATCTCGCGACGGACTTGGACCGCGAAGGGGAAGCCATTGCCTGGCACCTGCGCGAAGCCATCGGTGGTGATGACAGCCGCTACAAGCGTGTGGTGTTCAACGAAATCACCAAGAAGGCCATCCAGGAAGCCTTCTCCCAGCCGGGCGAGCTGGATATCGATCGGGTCAACGCTCAACAGGCGCGACGTTTCCTTGACCGCGTGGTGGGCTACATGGTCTCGCCATTGCTGTGGGCCAAGATCGCTCGCGGCCTGTCCGCCGGACGTGTGCAATCGGTCGCGGTGAAACTGGTAGTGGAGCGCGAGCGGGAAATCCGCGCGTTCATCCCTGAAGAATATTGGGAAGTCCACGCTGATCTGGGTACCGCCAAGGGCGCCACCGTGCGCTTCGAAGTGGCCCGCGAGAAAGGCGAGGCCTTCAAGCCGCTCAATGAAGCGCAGGCCATGGCCGCGCTGGAAAAGCTCAAGGCTTCTAGCTACAGCATCGTCAAGCGTGAAGACAAGCCCACCAGCAGCAAGCCTTCGGCGCCGTTCATCACGTCCACGCTGCAGCAGGCCGCGAGTAACCGCCTGGGCTTCGGCGTGAAGAAAACCATGATGATGGCCCAGCGTCTGTACGAAGCGGGCTACATCACCTACATGCGTACCGACTCGACCAACCTCTCGGTCGATGCCGTGGCGATGGCGCGTACTTATATAGAAACCGAGTTCGGCAAGAAATACCTGCCGGAAACGCCAAACGTCTACAGCAGCAAGGAAGGCGCCCAGGAAGCTCACGAAGCGATTCGTCCATCCGACGCCAACACCACGCCAAGCAAGCTGTCTGGCATGGAGCGCGACGCCGAGCGTCTCTACGAGCTGATCTGGCGCCAGTTCCTGGCTTGCCAGATGCTGCCGGCCCAATACCTGTCGACCACCGTCAGCGTCGGTGCTGGCGACTTCGAGCTGCGTGCCAAGGGCCGTATCCTGAAGTTCGACGGCTACACCCGTGTCATGCCGCAGATCGCCAAGCCAGGGGATGACGACGTCCTGCCCGACATGGCCCAGGGCGACGTGATGAAGCTGCTCAAGCTGGATCCTACCCAGCACTTCACCAAGCCGCCGGCCCGGTATTCGGAAGCCAGCCTGGTCAAGGAAATGGAAAAGCGTGGCATCGGTCGCCCTTCGACTTATGCGGCTATCATTTCGACGATCCAGGATCGCGGCTACGTGGCGCTGCATAACCGACGTTTCTATTCGGAGAAGATGGGCGACATCGTGACCGAGCGCCTGTCCGAGAGCTTCTCGAACCTGATGGACTACGGCTTCACCGCCGGCATGGAAGAGAACCTCGATGACGTGGCCCAGGGTGAGCGGGACTGGAAAAACGTGCTCGACGAGTTCTACGGTGACTTCAAGAAAAAACTCGAAGTAGCCGAAAGCCCTGACAGCGGCATGCGCGCCAACCAGCCGGTGATGACGGATATTCCGTGCCTGACCTGCGGCCGACCAATGCAGATCCGCACGGCTTCGACCGGTGTTTTCCTCGGATGCTCGGGCTACAGCCTGCCGCCAAAGGAACGCTGCAAGGCAACGGTAAACCTGGTGCCCGGTGATGAAATCGCTGCGGACGACGAAGGTGAATCGGAATCCCTGGTGCTGCGCGGCAAGCATCGCTGCCCGATCTGCAGCACCGCAATGGACGCCTATTTGCTGGATGAAAAGCGCAAGCTGCACATCTGCGGTAACAATCCGGATTGCGCCGGTTACGAGATCGAAGAGGGCAGCTACCGCATCAAGGGCTATGAAGGTCCGAGCCTGGAATGCGACAAGTGCGGCAGCGAGATGCAGCTCAAGACCGGGCGTTTCGGCAAGTTTTTCGGCTGTACGAACCCAACCTGCAAGAATACCCGCAAGCTGCTCAAGAGCGGCGATGCGGCACCGCCAAAAATGGACCCGGTGAAGATGCCCGAGCTCAAGTGCGAGAAGGTCAATGACACCTACATCTTGCGCGACGGTGCTTCTGGCCTGTTCCTGGCGGCGAGCCAGTTCCCGAAAAATCGTGAAACCCGTGCGCCGTTGGTGATGGAGATTGTCCCGCACAAGGACGAAATCGATCCGAAGTATCACTTCCTTTGCGACGCACCGCAGAAAGACCCGGACGGCCGCCCGGCGGTGATTCGCTACAGCCGCAAGACCAAAGAGCAATACGTGCAGACCGAGGTTGACGGCAAGCCTACCGGCTGGAAGGCGTTTTACGACGGCGGCAAGTGGACCGTCGAAGACAAGCGCTGAMGKSLVIVESPAKAKTINKYLGNQYVVKSSIGHIRDLPTSGSASASKEPAAKRGKAAAGEAPALSPKEKARKQLVSRMGVDPEHGWKAKYEILPGKEKVIEELRRLAKDADTIYLATDLDREGEAIAWHLREAIGGDDSRYKRVVFNEITKKAIQEAFSQPGELDIDRVNAQQARRFLDRVVGYMVSPLLWAKIARGLSAGRVQSVAVKLVVEREREIRAFIPEEYWEVHADLGTAKGATVRFEVAREKGEAFKPLNEAQAMAALEKLKASSYSIVKREDKPTSSKPSAPFITSTLQQAASNRLGFGVKKTMMMAQRLYEAGYITYMRTDSTNLSVDAVAMARTYIETEFGKKYLPETPNVYSSKEGAQEAHEAIRPSDANTTPSKLSGMERDAERLYELIWRQFLACQMLPAQYLSTTVSVGAGDFELRAKGRILKFDGYTRVMPQIAKPGDDDVLPDMAQGDVMKLLKLDPTQHFTKPPARYSEASLVKEMEKRGIGRPSTYAAIISTIQDRGYVALHNRRFYSEKMGDIVTERLSESFSNLMDYGFTAGMEENLDDVAQGERDWKNVLDEFYGDFKKKLEVAESPDSGMRANQPVMTDIPCLTCGRPMQIRTASTGVFLGCSGYSLPPKERCKATVNLVPGDEIAADDEGESESLVLRGKHRCPICSTAMDAYLLDEKRKLHICGNNPDCAGYEIEEGSYRIKGYEGPSLECDKCGSEMQLKTGRFGKFFGCTNPTCKNTRKLLKSGDAAPPKMDPVKMPELKCEKVNDTYILRDGASGLFLAASQFPKNRETRAPLVMEIVPHKDEIDPKYHFLCDAPQKDPDGRPAVIRYSRKTKEQYVQTEVDGKPTGWKAFYDGGKWTVEDKRNANANANANA
D1-35_00840525hypothetical proteinATGGCCCACGAACTCTATACCCGCACCAATCAGAAAATTTATTTCGCCGGCCTTTCGCTTGAGGCGCTTGCGCGGGCGGAGGATGGGCGTGCAATGAATTCCCCTGCGCTGGTCCAGGCGGGGCGCGAATCGGCGTTGTTTCATTTGTACGGTGCGTTGTTGGGCCTGTGCCACGAAATCGCCGGTTTTTATCGCTTGCCCCAGGCGAATGCGTCACGGGCCGAGCTGGTGTTGACTCGTGAGGTGCTGGAAACCATCGCAATTCCGGAGCTGGCCGAAATGGTCGAACTGGCGCAGAACCCGGAAACCTGGCTGGCCAGATTGCTGGCGGCCCACCAGGCGCTGTTCCAGCCACCTCGGGCTCCGCGCAAGCCCAAGGGCGACGTGACCCAGCCGCTGATCGTGGCGGTCAATCTTGACGAAGAAGAGCCAGAGCAAGAGCTTAATCGGGAAGAGTTGGAGAGCTGGCGGCAGAATCTCAAGAACCTGGCCATTCGCTTTCGCGAAGGGTTGAACGAGTGCTGAMAHELYTRTNQKIYFAGLSLEALARAEDGRAMNSPALVQAGRESALFHLYGALLGLCHEIAGFYRLPQANASRAELVLTREVLETIAIPELAEMVELAQNPETWLARLLAAHQALFQPPRAPRKPKGDVTQPLIVAVNLDEEEPEQELNREELESWRQNLKNLAIRFREGLNECNANANANANA
D1-35_00841234hypothetical proteinATGCCTACGTCCTTTCTAGAAATTGTCGAGCTTCCTGATGGCCGCATCGAGCTGCGCCGGGCCGAAGACGAGGGGTCTCTGGTTACCCTGAACTTCTCTGAGGACGCCAAGGTATTCCTGCAAGGTCAACACGTTGAGGTCGCCAAGGCGATGCTGAGCGTGGGTGTCCAGATGGCTGGCCGCCTGGTTGAAGGCGAATTCAACAAAGAAGAGGGGCCACGGGTTCTTCATTGAMPTSFLEIVELPDGRIELRRAEDEGSLVTLNFSEDAKVFLQGQHVEVAKAMLSVGVQMAGRLVEGEFNKEEGPRVLHNANANANANA
D1-35_00842474sulACOG5404Cell division inhibitor SulAATGCAATTCCCCCACACACCACAGCACACGCAACTTCCGCTGTTCGAGGCATTCATGGCCCAACCGCTGGTTCCAGTGCTTAAAGAGGTCATCGAATCGCCTTGGGGCGTCGAACCCGAGGCCTTCAGCGAATTGTCGTTGCGTGGTGCGGCCGGGAATTGCCTGAACCTGCTGGCACCTATTCTGCGGGAGTTGAGCCAGGACCAGGACGCTCGGTGGCTGACGCTGATCGCGCCACCCGCCAGCGTTACCCAGGCCTGGTTGCGGGATGCCGGTCTCAATCGCGAGCGGATCCTGTTATTGCAACCGCGCGGCACACAGAGCGCCCAGCAATTGACGTGCGAAGCGTTGCGCCTGGGTCGCAGCCATACGGTGGTCAGCTGGCTCAACCCCCTGACCGCGACAGCTCGCCAACAGTTGATCAGCGCCGCACGCACCGGGGACGCACAAAGCCTGAATATTCGATTGGGCTAAMQFPHTPQHTQLPLFEAFMAQPLVPVLKEVIESPWGVEPEAFSELSLRGAAGNCLNLLAPILRELSQDQDARWLTLIAPPASVTQAWLRDAGLNRERILLLQPRGTQSAQQLTCEALRLGRSHTVVSWLNPLTATARQQLISAARTGDAQSLNIRLGNANANANANA
D1-35_00843609lexA_1COG1974LexA repressorATGCTAAAGCTGACGCCACGCCAAGCAGAGATTCTGGCCTTCATCAAACGTTGCCTCGAAGACAATGGCTACCCGCCAACCCGCGCGGAAATCGCTCAGGAATTGGGCTTCAAGTCGCCCAACGCGGCTGAAGAACACCTCAAGGCGCTAGCCCGCAAGGGCGCGATCGAGATGACACCCGGTGCCTCGAGAGGCATTCGGATCCCCGGCTTCGAAGCCAAGGCTGACGAAACCACGCTGCCAATCATCGGCCGTGTCGCCGCTGGCGCTCCGATCCTAGCCCAGCAGCACGTTGAAGAATCCTGCAACATCAACCCCTCGTTCTTTCACCCGAGGGCTGATTACCTTCTTCGCGTGCACGGTATGAGCATGAAGGATATCGGCATTTTCGACGGCGATCTGCTGGCTGTCCACACCACCCGCGAGGCTCGCAACGGGCAGATCGTGGTGGCGCGCATCGGCGACGAAGTCACCGTCAAGCGGTTCAAGCGCGATGGCAGCAAGGTCTGGCTGATAGCCGAAAATCCCGAGTTCGCCCCCATCGAAGTAGACCTGAAAGATCAGGACCTGGTCATCGAAGGCTTGAGTGTCGGCGTCATTCGCCGCTAAMLKLTPRQAEILAFIKRCLEDNGYPPTRAEIAQELGFKSPNAAEEHLKALARKGAIEMTPGASRGIRIPGFEAKADETTLPIIGRVAAGAPILAQQHVEESCNINPSFFHPRADYLLRVHGMSMKDIGIFDGDLLAVHTTREARNGQIVVARIGDEVTVKRFKRDGSKVWLIAENPEFAPIEVDLKDQDLVIEGLSVGVIRRPGPT0014895_3620DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014895-lexA-K01356NANA
D1-35_00844708hypothetical proteinATGGCCCAGTCGGAAACCGTTGAACGCATTCTCGATGCTGCCGAGCAGTTGTTCGCGGAAAAAGGTTTTGCCGAAACCTCTTTGCGTCTGATCACCAGCAAGGCCGGGGTAAACCTGGCTGCGGTGAACTATCACTTCGGTTCCAAGAAGGCGCTGATCCAGGCGGTGTTCTCACGTTTCCTCGGGCCGTTCTGTATCAGCCTCGACCGTGAACTGGAACGTCGTCAGGCCAAGCCTGACGTCAAGCCCACCCTAGAAGAGCTGCTCGAGATCCTGGTCGAGCAGGCCCTTGTTGTCCAACCACGCAGCGGTAATGATCTTTCCATTTTCATGCGCCTTTTGGGCCTGGCATTCAGTCAAAGCCAGGGTCACCTGCGGCGTTATCTGGAAGACATGTACGGCAAGGTGTTCCGTCGCTACATGCTGCTGGTCAATGAAGCCGCGCCACGCATACCACCGATCGAATTGTTCTGGCGCGTGCACTTCATGCTTGGCGCCGCTGCGTTCAGCATGTCTGGTATCAAGGCGCTGCGGGCCATCGCCGAAACCGATTTCGGCGTGAATACATCCATCGAACAGGTCATGCGTCTGATGGTTCCATTTCTGGCTGCCGGCATGCGTGCCGAAAGCGGCGTCACCGATGAGGCAATGGCGACAGCGCAGTTGCGTCCTCGCAGCAAATCCGCCCCGGCGCTCGCCAAGGCGTAAMAQSETVERILDAAEQLFAEKGFAETSLRLITSKAGVNLAAVNYHFGSKKALIQAVFSRFLGPFCISLDRELERRQAKPDVKPTLEELLEILVEQALVVQPRSGNDLSIFMRLLGLAFSQSQGHLRRYLEDMYGKVFRRYMLLVNEAAPRIPPIELFWRVHFMLGAAAFSMSGIKALRAIAETDFGVNTSIEQVMRLMVPFLAAGMRAESGVTDEAMATAQLRPRSKSAPALAKANANANANANA
D1-35_008451011nagZCOG1472Beta-hexosaminidaseATGACTGCTGGCCTGCAAGGCTCGTTGATGGTGGACGTCGCCGGTACCTGGCTGACGGCCGAGGATCGCCATCTGTTGCGTCAGCCCGAAGTGGGCGGCTTGATCATCTTCGCTCGCAACATCGAGCATCCGCGCCAGGTGCGCGAGCTGAGTGCGGCGATCCGCGCCATTCGTCCCGACCTGTTGCTGGCGGTCGATCAGGAAGGGGGGCGTGTCCAGCGCCTGCGCCAGGGGTTCGTGCGTCTGCCGGCGATGCGGGCCATTGCCGATAACCCGAATGCCGAATACCTGGCCGAACAATGCGGCTGGATCATGGCCACCGAGGTGCTGGCGGTCGGCCTTGATCTGAGTTTCGCCCCGGTGCTGGATCTCGATTATCAGCGCAGTGCCGTGGTTGGCAGTCGTTCATTCGAGGGCGATCCCGAACGCGCCGCATTGTTGGCCGGTGCTTTCATTCGGGGCATGAACGCCGCGGGCATGGCCGCCACGGGCAAGCATTTTCCTGGGCACGGCTGGGCCGAGGCGGATTCCCATGTGGCCATCCCCAATGATGAGCGCAGCCTGGAACAGATCCGCGCCAACGATCTGCTGCCGTTTGCCAGGCTGGGCAAGCAGCTTGGCGCCGTGATGCCGGCCCATGTGATCTATCCGCAGGTCGATGCCAGCCCGGCCGGGTTTTCCCGACGTTGGCTGCAGGACATCCTGCGAGGCGAGTTGCAGTTCGACGGGGTGATTTTCAGTGATGACCTGTCAATGGCCGGTGCCCATGTGGTGGGTGATGCCGCGAGTCGTATCGAGGCCGCATTGACTGCCGGTTGCGACATGGGGTTGGTGTGCAACGACCGCGCTGCCGCAGAGTTGGCATTGAGCGCCGCCCAACGCTTGAAGATCAAGCCGTCGGCGCGGATCGCCCGCATGCGTGGCCAAGCCTTCGCCAGTACCGAGTATCGCCAGGATCCACACTGGCTGACAGCGATTGGCGCACTGAAAGCCGCCCAACTGATCGATTAAMTAGLQGSLMVDVAGTWLTAEDRHLLRQPEVGGLIIFARNIEHPRQVRELSAAIRAIRPDLLLAVDQEGGRVQRLRQGFVRLPAMRAIADNPNAEYLAEQCGWIMATEVLAVGLDLSFAPVLDLDYQRSAVVGSRSFEGDPERAALLAGAFIRGMNAAGMAATGKHFPGHGWAEADSHVAIPNDERSLEQIRANDLLPFARLGKQLGAVMPAHVIYPQVDASPAGFSRRWLQDILRGELQFDGVIFSDDLSMAGAHVVGDAASRIEAALTAGCDMGLVCNDRAAAELALSAAQRLKIKPSARIARMRGQAFASTEYRQDPHWLTAIGALKAAQLIDPGPT0012175_4383DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GALACTOSAMINIDASE,PGPT0012175-nagZ-K01207NANA
D1-35_00846741COG0005S-methyl-5'-thioinosine phosphorylaseATGACCGTTTACGCAATTATCGGCGGCACAGGCCTGACCCAGCTGGAAGGCCTGACCATTCGCCAGTCCCTGGCGGTGGAAACGCCCTATGGCGCGCCATCGGCTGACGTGCAGATTGGCGAATATGCCGGGCGTGAGGTGCTGTTCCTGGCCCGTCATGGCCATCCTCATCGTTTTCCGCCGCACCAGGTCAACTATCGCGCCAATCTCTGGGCACTGAAGCAGGCGGGTGCCGAGGCCATCCTGGCGGTCAACGCCGTGGGCGGGATCCACGCGGCGATGGGCACCGGGCATTTCTGCGTGCCCCATCAGTTGATCGATTACACCAGTGGCCGCCAGCACACGTATTTTGCCGATGACCTGGAAGCGGTTACCCATATCGATTTCAGCTATCCCTACACGGAGACGCTGCGCCAGAAGTTGATTGCCGCCCTGGCCGCCGAGCGCTGCGGCTACAGCAGCCATGGCGTCTATGCCTGCACGCAGGGGCCGCGCCTGGAAACGGTGGCTGAAATCGCCCGCCTGGAACGCGATGGCTGCGACATTGTCGGCATGACAGGTATGCCGGAAGCGGCATTGGCTCGCGAGCTGGATTTGGACTATGCGTGCCTGGCCCTGGTGGTTAATCCCGCGGCAGGCAAATCCACGGCGGTGATCACCATGGCCGAGATCGAGCAAGCGCTGCATGACGGGATGGGGAAGGTGAAGTCGACCCTGGCGCGAGTGTTGGCGACAGGCTGAMTVYAIIGGTGLTQLEGLTIRQSLAVETPYGAPSADVQIGEYAGREVLFLARHGHPHRFPPHQVNYRANLWALKQAGAEAILAVNAVGGIHAAMGTGHFCVPHQLIDYTSGRQHTYFADDLEAVTHIDFSYPYTETLRQKLIAALAAERCGYSSHGVYACTQGPRLETVAEIARLERDGCDIVGMTGMPEAALARELDLDYACLALVVNPAAGKSTAVITMAEIEQALHDGMGKVKSTLARVLATGNANANANANA
D1-35_008472694hypothetical proteinATGCCCTCGCCCCTGAGCAAACCCCTGGCACCCTCCTGGGTCAATCGATTCAAGGAACAAAGCCTGGAGCGCGGACGCCGATACGCGCTGGAAAATCGCGTCAGGATCGTCGAGACCGGAGACAGCAGCATCATCGCCAGCTGCGAAGGCTCTGGCGGCAGCGTCTATCGTCAGACCATTCGCCTCAAGGAGTCAGCCAAGGGCACGCTGATCCTGCTCGAAGCGGCCTGCTCCTGCCCGGTGCGCATCAACTGCAAACATTGCGCGGCGGTCTTGTTGCAGGTCCAGGAAACCCTGGCCTACCCAGCCGCCGAGAAAGACGCGCATCTGCTGGAAAAACTCCAGACCGTGCTCGACAACCGCAGTCCCAAAGCCCCGCCGCAGGTGCTCGTGGAAAACGTGCAACCGGTGCCGCGCCTGTGGCTGGCGAGTATCGAGTTCAGCGCCTTCGAGCCGCGCAACGGCAAGATGCAGCGCTACATCCAGCACCGCGCTGCCCTGTCCTTCAGCTATCTGGACGAATACGTCAGCGGCCAGCGCAACACTGACGTACTGATTCGCCAGGAAACCCAGACGCTGCGTATTAAACGCCAGACCGATGTGGAACAGTCCTACCGCGAACAACTGCGAATCCTCGGTTTCAAGGTCGCCACCCGGCAAAGCAAGGCGCTGCCGGAAAGCGCCGGCGAGCTTTACGAGATGGTCAACGACAGTGCCTGGTTGACCTTTACCCTCAATGACCTGCCAAAACTGCGCAACCAAGGCTGGGAGCTGCAGATCGACGAGGATTTCGGCTTCGACCTGACGGCCGTGGACGAGTGGTACGCCAGCGTCGAGGAAACTCCGGAGCGAGACTGGTTTGATCTGGAATTGGGGATCATCGTCAACGGCGAGCGCTTGAGCCTGCTGCCGATCCTGCTGAACCTGATGCGCTCGCACATCGAGCTGTTCAACCCGGAACGCCTGGCCCGGCGCCGCGACGACGAACTCATCCTGGTCAACCTGCCGCACCGTCCCAATTCGGAATTCGGCCCGCAGCAAGTCGCCCTGCCCTATGGACGCCTGAAGCCGGTGCTGGCGACCCTTGGCGAGTTTTACCTGCAAGAACCCGGCACCAGCAAACTGCGCCTGAACAGTGCGGACGCCCTGCGCCTGAACCCGCTGCAAGACATGCCGCTGCGCTGGGAAGGGGGCGAACATATCCGTGGCCTGGCCCAGCGGCTGCGCGACATCAAGGACTACACCGCGGCGGCACCGGAAGGCTTGAACGCAACGCTGCGGCCCTATCAGCTCGAAGGCCTGAGCTGGATGCAATCGCTACGACAACTGGAGGTTGGCGGCATTCTCGCGGATGACATGGGCCTGGGCAAAACCCTACAGACCCTGGCGCACATTCTCAGCGAAAAAAACGCCGGCCGCCTCGACAGGCCGTGCATGGTGGTGATGCCGACGAGCCTGATTCCCAACTGGCTCGATGAAGCCAGCCACTTCACCCCGCAGCTCAAGGTATTGGCCCTGTACGGTGCCGGACGCAAGAAACATTTCGAGCGGTTGGCCGACTACGACCTGATCCTGACCACCTATGCATTGCTGCCCAAGGATGTCGAGCGCCTTAAAGCGCAACCGCTGCACGTATTGATCCTGGATGAAGCCCAGTACATCAAGAACCCCACCAGCAAGGCCGCCCAGGCCGCCCGTGAGCTCGATGCCCGGCAGCGGTTGTGCCTGTCCGGGACACCGCTGGAAAACCACCTGGGTGAATTGTGGTCGCTGTTTCATTTCCTGTTGCCGGGCTGGCTCGGCGACATCAAGGATTTCAACCGCGACTACCGCGTGCCGATCGAAAAACGCGGGAGCGCCGTACGATTGCAGCACCTTAACGGTCGGATAAAACCGTTTTTGCTGCGCAGGACCAAGGAACAGGTCGCAACCGAATTGCCGCCCAAGACCGAGATCATCCATTGGGTCGAACTCAGCGACGCCCAACGGGATGTCTATGAAACCATGCGCCTGGCGATGGACAAGAAGGTGCGTGACGAAATCACCCGCAAAGGCGTGGCGCGCAGCCAGATCATCATCCTCGAGGCGCTGCTCAAGCTGCGCCAGGTGTGCTGCGACCTGCGCCTGATCAGCGACGCCGCCCTGCCAGCCCGAGGCAGTGCTTCGGGCAAGCTCGACAGCCTGATGGAGATGCTCGAGGAGTTGTTTGAAGAAGGTCGGCGGGTGCTGCTGTTTTCCCAGTTCACGTCCATGCTGGCGCTGATCGAAGACGAACTGAAAAAGCGCGGTGTGGAATACGCCATCCTGACCGGCCAGACCCGGGACCGACGCACTCCGGTGAAGGAATTCCAGAGCGGCAAGCGTCAGATCTTCCTGATCAGCCTGAAGGCCGGCGGCGTGGGTCTGAACCTGACGGAAGCGGACACGGTGATTCACTACGACCCGTGGTGGAACCCGGCCACCGAAAACCAGGCGACCGACCGCGCTTATCGCATCGGCCAGGAAAAGCCGGTGTTCGTCTACAAGCTGATAGCCCGGGGAACAGTGGAAGAAAAGATCCAACTGCTGCAGAAGGAAAAGTCCGATCTCGCGGCCGGCGTGCTGGATGGGCGCGTGGCCGGGGACTGGAAACTGCAGAACGAAGACATCGAGGCGTTGTTCGCACCGCTGCCGGATAAGCTGGAGAAGCGCTGAMPSPLSKPLAPSWVNRFKEQSLERGRRYALENRVRIVETGDSSIIASCEGSGGSVYRQTIRLKESAKGTLILLEAACSCPVRINCKHCAAVLLQVQETLAYPAAEKDAHLLEKLQTVLDNRSPKAPPQVLVENVQPVPRLWLASIEFSAFEPRNGKMQRYIQHRAALSFSYLDEYVSGQRNTDVLIRQETQTLRIKRQTDVEQSYREQLRILGFKVATRQSKALPESAGELYEMVNDSAWLTFTLNDLPKLRNQGWELQIDEDFGFDLTAVDEWYASVEETPERDWFDLELGIIVNGERLSLLPILLNLMRSHIELFNPERLARRRDDELILVNLPHRPNSEFGPQQVALPYGRLKPVLATLGEFYLQEPGTSKLRLNSADALRLNPLQDMPLRWEGGEHIRGLAQRLRDIKDYTAAAPEGLNATLRPYQLEGLSWMQSLRQLEVGGILADDMGLGKTLQTLAHILSEKNAGRLDRPCMVVMPTSLIPNWLDEASHFTPQLKVLALYGAGRKKHFERLADYDLILTTYALLPKDVERLKAQPLHVLILDEAQYIKNPTSKAAQAARELDARQRLCLSGTPLENHLGELWSLFHFLLPGWLGDIKDFNRDYRVPIEKRGSAVRLQHLNGRIKPFLLRRTKEQVATELPPKTEIIHWVELSDAQRDVYETMRLAMDKKVRDEITRKGVARSQIIILEALLKLRQVCCDLRLISDAALPARGSASGKLDSLMEMLEELFEEGRRVLLFSQFTSMLALIEDELKKRGVEYAILTGQTRDRRTPVKEFQSGKRQIFLISLKAGGVGLNLTEADTVIHYDPWWNPATENQATDRAYRIGQEKPVFVYKLIARGTVEEKIQLLQKEKSDLAAGVLDGRVAGDWKLQNEDIEALFAPLPDKLEKRNANANANANA
D1-35_00848567hypothetical proteinATGCGCCTGTTTCGCTCCTTGACGTTGTTGATGACCCTGGTCGCCCCCCTGGCCTTCGCCGACGACCTGTATCAGGTGGAAATGATCCTGGTTCGCCAGAATGCCGAGCCGGCGATTCTCAGTCGCGCCGCGCCGGAAGACTGGGACGCCGGCGCACAACGCCTGCCCCCGGACAGCCAGCGCACGCCAGCATTGGGCAATATCGTCGAAAAACTCAACGCCAGCGGCCAATACAGCGTGCTGATGCACAAGGCCTGGCAACAGAACCTGGGCGAACAGGGCAGCAAGGTCGCTGTCAGCGACGGCACCGAACAGTTCGGCCAGTTTCCCATCGAGGGCACCCTGGAAATGAAACTGGGCCGCTTTACCGACGTCGACGCCGACTTCTGGGTCAACCAGATCGACGCCAATGGCCTGGTCACCGCCAGCGAACGCCTCAAGCAACAGAGCCACACCAAGAACGGCCAGCTGAATTTCCTCGATAACGGTCACCTCGGCCTGCTGATCAAGATCACCTCGCTGACCGCGCCCGCGCCACGGCAGGCGCCCGAAGCGATTCCGGACTGAMRLFRSLTLLMTLVAPLAFADDLYQVEMILVRQNAEPAILSRAAPEDWDAGAQRLPPDSQRTPALGNIVEKLNASGQYSVLMHKAWQQNLGEQGSKVAVSDGTEQFGQFPIEGTLEMKLGRFTDVDADFWVNQIDANGLVTASERLKQQSHTKNGQLNFLDNGHLGLLIKITSLTAPAPRQAPEAIPDNANANANANA
D1-35_008493450mfdCOG1197Transcription-repair-coupling factorGTGCCCGTTCTGCGTCTTCCGCTTCTCCCTGCCGCGGCAGGTAAACAGCACTGGGGCAACCTGCCCGGTGCCGCCCTGAGCCTGGCCATCGCCGAGGCTGCCAGCGCTGCAAAGCGCTTTACCCTGCTGCTGACCGCCGACAGCCAAAGCGCCGAACGGCTGGAACAGGAGCTGGCTTTCTTCGCCCCGGATTTGCCAGTGCTGCATTTCCCGGACTGGGAAACCCTGCCCTACGACCTTTTTTCGCCGCACCAGGACATCATTTCCCAGCGCATCGCCAGCCTTTACCGGCTGCCGGAGCTCAGTCATGGCGTTTTGGTAGTGCCGATTACCACAGCCCTACATCGCCTGGCGCCGACCCAATTCCTGCTGGGCAGCAGCCTGGTGCTGGACATCGGCCAGAAGCTCGACGTCGAGCAAATGCGCACCCGGCTTGAGGCCAGCGGCTACCGCTACGTCGATACCGTGTACGAGCACGGCGAGTTCACGGTCCGCGGCGCGTTGATAGACCTGTTTCCGATGGGCAGCAAACTGCCCTATCGCATCGACCTGTTCGATGACGAGATCGAGACCTTGCGCACCTTTGATCCGGAAAACCAGCGTTCCATCGACAAAGTGCAGTCGATCCGCCTGTTGCCGGCCAAGGAATTCCCTCTGCAAAAAGACGCGGTGACGCGTTTCAAGGCGCGGTTTCGCGAACGCTTCGACGTGGACTTCCGGCGCTGCCCGATCTTCCAGGACCTCAGCAGCGGCATCACCCCGGCCGGTATCGAGTATTACCTGCCGCTGTTCTTCGAAGAAACCTCCACCCTGTTCGATTACCTGCCCCAGGATACCCAGGTATTTTCCCTGCCCGGCATCGAGCAAGCGGCGGAAAACTTCTGGAATGACGTGCGCAACCGCTACGAAGAGCGGCGTGTCGACCCATCCCGTCCTCTATTGCCGCCCGCCGAGTTGTTCCTGCCGGTTGAAGACTGCTTCGCCCGCCTCAAGAGCTGGCCGCGCGTGGTGGCGAGCCAACAGGATGTGGAAACCGGCGTCGGTCGCGAACGCTTCCCCGCCAGAGCGCTGCCGGACCTGGCGATCGAAGCCAAGGCCACGCAACCGTTGGCGGCCCTGGCCGGTTTCCTCGACCAATTCCCTGGCCGCGTGCTGTTCACCGCCGAGTCCGCCGGCCGTCGCGAAGTATTGCTGGAGCTGCTCGAACGCCTGAAGCTGCGACCGAAGACTGTCGACAGCTGGCCGGATTTCGTCGCCGGCAAGGAGCGCCTGGCAATCACCATCGCGCCGCTCAATGACGGGCTGGTCCTGGATGATCCCGCCCTGGCACTGGTCGCCGAGAGCCCGTTGTTCGGCCAGCGGGTGATGCAGCGTCGCCGTCGCGAGAAGCGCGCAGACGCTGCCAACGACGCGGTCATCAAGAACCTTACCGAGTTGCGCGAGGGCGCGCCGGTGGTGCACATCGACCATGGCGTGGGCCGCTACCTGGGCCTGGCGACCCTGGAGATCGAAAACCAGGTCGCCGAATTCCTCACTCTGCAATACGCCGAGGGCGCCAAACTTTATGTGCCGGTGGCGAACCTGCACCTGATCGCCCGCTACACCGGCAGCGACGATGCGCTGGCGCCGCTGCATCGCCTGGGCTCGGAAACCTGGCAGAAAGCCAAGCGCAAGGCCGCCGAACAGGTGCGCGACGTGGCCGCCGAACTGCTTGACATCTACGCCCGTCGCGCCGCGCGCGAAGGCTACGCGTTCGCCGACCCGAAAGCCGATTACGAAACCTTCAGCGCCGGCTTCCCGTTCGAGGAAACCGTCGACCAGCAGACCACCATCGAAGCCGTGCGCGCCGACATGCTCGCGCCCAAGCCGATGGACCGACTGGTCTGCGGCGACGTCGGCTTCGGCAAGACCGAAGTGGCGATGCGCGCCGCGTTCATCGCCGTGCATGGCGGCAAGCAGGTGGCGATCCTGGTGCCGACCACCCTGCTCGCCCAGCAGCACTACAACAGTTTCCGCGACCGCTTCGCCGACTGGCCGGTGACTGTGGAAGTGATGAGCCGATTCAAGTCGACCAAGGAAGTGAATGCCGCCGTGGCCGACCTGGCCGAGGGCAAGATCGACATCGTCATCGGCACGCACAAACTGCTCCAGGACGACGTGAAATTCAAAAGCCTCGGCCTGGTGATCATCGACGAAGAACACCGCTTCGGCGTGCGCCAGAAAGAACAGCTCAAGGCCCTGCGTAGCGAAGTCGACATCCTGACCCTGACGGCCACGCCGATCCCGCGCACGCTGAACATGGCGGTGTCGGGCATGCGTGACCTGTCGATCATCGCCACGCCGCCGGCCCGCCGCCTGTCGGTGCGTACGTTCGTGATGGAGCAGAACAAAAGCACGGTCAAGGAAGCGCTGCTGCGGGAGTTGCTGCGCGGCGGCCAGGTCTATTACTTGCACAACGACGTGAAGACCATCGAGAAATGTGCCGCCGACCTCGCCGAGCTGGTGCCGGAAGCCCGTATCGGCATCGGCCACGGACAGATGCGCGAGCGCGAACTCGAACAGGTGATGAGCGACTTCTATCACAAGCGTTTCAACGTGCTGATCGCCTCGACCATCATCGAGACCGGCATCGACGTGCCGAGCGCCAACACCATCATCATCGAGCGCGCCGACAAGTTCGGCCTGGCCCAGTTGCACCAGTTGCGCGGCCGGGTCGGCCGTAGCCACCACCAGGCCTATGCCTACCTGCTGACGCCGCCGCGCCAGCAGATCACCCCAGACGCGGAAAAGCGCCTGGAGGCCATCGCCAACACCCAGGACCTCGGCGCCGGCTTCGTGCTGGCCACCAATGACCTGGAAATCCGTGGTGCCGGCGAATTGCTCGGCGACGGCCAGAGCGGCCAGATCCAGGCCGTCGGCTTCACGCTGTACATGGAAATGCTCGAACGCGCGGTCAAGTCGATTCGCAAGGGCGAGCAACCGAACCTCGACCAGCCTCTGGGCGGTGGGCCGGAGATCAATCTGCGGGTGCCGGCACTGATCCCGGAAGATTACCTGCCAGACGTCCATGCGCGGCTGATCCTCTACAAACGCATCGCCTCGGCCACCGACGAGGAAGGCCTGAAAGACTTGCAGGTGGAGATGATCGACCGCTTCGGGCTGCTGCCGGAGCCGACCAAGAACCTGGTGCGCACCACGCTGCTCAAACTCAAGGCCGAGCAACTGGGCATCAAGAAAGTCGACGGTGGGCCCAACGGCGGCCGCATCGAATTCGAAGCCCAGACGCCGGTCGATCCGCTGGTACTGATCAAGCTGATCCAGGGCCAGCCCAAACGCTACAAGTTCGAAGGCGCCACGATGTTCAAGTTCATGGTGCCCATGGAACGCCCGGAAGAGCGTTTTAATACCGTGGAGGCGCTGTTCGAGCGCCTCACTCCGACCACTGCTTGAMPVLRLPLLPAAAGKQHWGNLPGAALSLAIAEAASAAKRFTLLLTADSQSAERLEQELAFFAPDLPVLHFPDWETLPYDLFSPHQDIISQRIASLYRLPELSHGVLVVPITTALHRLAPTQFLLGSSLVLDIGQKLDVEQMRTRLEASGYRYVDTVYEHGEFTVRGALIDLFPMGSKLPYRIDLFDDEIETLRTFDPENQRSIDKVQSIRLLPAKEFPLQKDAVTRFKARFRERFDVDFRRCPIFQDLSSGITPAGIEYYLPLFFEETSTLFDYLPQDTQVFSLPGIEQAAENFWNDVRNRYEERRVDPSRPLLPPAELFLPVEDCFARLKSWPRVVASQQDVETGVGRERFPARALPDLAIEAKATQPLAALAGFLDQFPGRVLFTAESAGRREVLLELLERLKLRPKTVDSWPDFVAGKERLAITIAPLNDGLVLDDPALALVAESPLFGQRVMQRRRREKRADAANDAVIKNLTELREGAPVVHIDHGVGRYLGLATLEIENQVAEFLTLQYAEGAKLYVPVANLHLIARYTGSDDALAPLHRLGSETWQKAKRKAAEQVRDVAAELLDIYARRAAREGYAFADPKADYETFSAGFPFEETVDQQTTIEAVRADMLAPKPMDRLVCGDVGFGKTEVAMRAAFIAVHGGKQVAILVPTTLLAQQHYNSFRDRFADWPVTVEVMSRFKSTKEVNAAVADLAEGKIDIVIGTHKLLQDDVKFKSLGLVIIDEEHRFGVRQKEQLKALRSEVDILTLTATPIPRTLNMAVSGMRDLSIIATPPARRLSVRTFVMEQNKSTVKEALLRELLRGGQVYYLHNDVKTIEKCAADLAELVPEARIGIGHGQMRERELEQVMSDFYHKRFNVLIASTIIETGIDVPSANTIIIERADKFGLAQLHQLRGRVGRSHHQAYAYLLTPPRQQITPDAEKRLEAIANTQDLGAGFVLATNDLEIRGAGELLGDGQSGQIQAVGFTLYMEMLERAVKSIRKGEQPNLDQPLGGGPEINLRVPALIPEDYLPDVHARLILYKRIASATDEEGLKDLQVEMIDRFGLLPEPTKNLVRTTLLKLKAEQLGIKKVDGGPNGGRIEFEAQTPVDPLVLIKLIQGQPKRYKFEGATMFKFMVPMERPEERFNTVEALFERLTPTTANANANANANA
D1-35_008501464gap2Glyceraldehyde-3-phosphate dehydrogenase-like proteinATGTGGAAGGTTACCGTGACTCAGAAGCCCGACCAGTGTCTTGGTGAATGGATTGATCGTGAAGCACTCGCAGAAGCGATGATCCCTCTCATCGGTCAGCTCTACCGCAATAACAACGTGGTGAGCTCGATCTATGGCCGCAGCCTGATCAACCAGTCTGTCATCGCGATCCTCAAGGCCCACCGCTTTGCTCGCCACCGTTCTTCCGACGACAGCGAACTCTCCGTCCACGAAACATTCCCCCTGCTCAAGGCGATGAGCGAGCTCAAGCTCGGCGCGGCCTCGGTGGACCTGGGCAAGCTGGCGTTCAAATTCCGTAACGAAGCCAATGGCCGTAGTGCCGAACAGTTCGTGCGCGAAGAAATGGCTGACGTGGTTGGTCAGCAGAACGCTTCGGCTCGTAAAGGTACCGACGTGGTCCTGTACGGCTTCGGTCGTATCGGCCGTCTGCTGGCGCGTATCCTGATCGAGAAAACCGGTGGTGGCGACGGCCTGCGCCTGCGCGCCATCGTCGTGCGCAAGGGCGCCGAGAACGACCTGACCAAGCGTGCCAGCCTGCTGCGCCGCGACTCGGTGCATGGCTCCTTCAACGGCACCATTACCATCGACGAAGAAAACAACACCATCACCGCCAACGGTAACCTGATCCAGGTGATCTACGCGAAGAACCCGACCGAGGTGGACTACACCCAGTACGGCATCAAGGACGCCCTGCTGGTGGATAACACCGGTGTATGGCGCGATGCCGATGGCCTTGGCCAGCACCTGGCCTGCCCGGGTATCGACCGCGTTGTCCTGACCGCACCTGGCAAGGGCAAGCTGAAGAACATCGTTCACGGTATCAACCACACCGAAATCACCGCTGACGACAAGATCATCTCTGCCGCTTCCTGCACCACCAACGCCATCGTGCCGGTGCTCAAAGCCGTGAATGACAAGTTCGGCATCATCAACGGTCACGTCGAAACCGTTCACTCGTACACCAACGACCAGAACCTGATCGACAACTTCCACAAGGGCGATCGCCGTGGCCGTAGCGCCGCGTTGAACATGGTCATCACCGAAACCGGTGCCGCCACTGCTGCCGCCAAGGCCTTGCCTGAGCTCGCTGGCAAGCTGACCGGCAACGCGATCCGTGTGCCGACGCCGAACGTGTCGATGGCCATTCTCAACCTGAACCTTGAGAAAGCCGCCACCCGTGAAGAGATGAACGAGTACCTGCGCTACATGGCGCTGCACTCCGACCTGCACAAGCAGATCGACTTCGTCAACTCGCAGGAAGTGGTGTCCACTGACTTCGTCGGTTCGCGCCACGCTGGCGTTGTCGACGCCGAAGCGACCATCGTCCAGGACAATCGTGTTGTCCTGTACGTCTGGTATGACAACGAGTTCGGCTACAGCTGCCAGGTAGTTCGCGTAATGGAAGACATGGCTGATGTGAATCCGCCTGCGTTTCCGCGCTAAMWKVTVTQKPDQCLGEWIDREALAEAMIPLIGQLYRNNNVVSSIYGRSLINQSVIAILKAHRFARHRSSDDSELSVHETFPLLKAMSELKLGAASVDLGKLAFKFRNEANGRSAEQFVREEMADVVGQQNASARKGTDVVLYGFGRIGRLLARILIEKTGGGDGLRLRAIVVRKGAENDLTKRASLLRRDSVHGSFNGTITIDEENNTITANGNLIQVIYAKNPTEVDYTQYGIKDALLVDNTGVWRDADGLGQHLACPGIDRVVLTAPGKGKLKNIVHGINHTEITADDKIISAASCTTNAIVPVLKAVNDKFGIINGHVETVHSYTNDQNLIDNFHKGDRRGRSAALNMVITETGAATAAAKALPELAGKLTGNAIRVPTPNVSMAILNLNLEKAATREEMNEYLRYMALHSDLHKQIDFVNSQEVVSTDFVGSRHAGVVDAEATIVQDNRVVLYVWYDNEFGYSCQVVRVMEDMADVNPPAFPRPGPT0018000_129DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018000-gapA-K00134NANA
D1-35_008511299proP_1Proline/betaine transporterATGCCTTCCAACACGAGCAACGGCAAGGCGATTTTTCGCGTTGTCAGCGGCAACTTCCTGGAGATGTTCGACTTCATGGTCTATGGCTTCTACGCCACGGCCATTGCCAAGACGTTCTTCCCGACCGACAGTGCCTTCGCCTCGCTGATGCTGTCCCTGGCGACATTCGGCGCCGGGTTCCTGATGCGTCCGCTGGGCGCGATCTTCCTTGGCGCCTACATCGACCGTCACGGCCGGCGCAAAGGCCTGATCATCACCCTCGCGATGATGGCCGCCGGCACGGTGCTGATCGCCTGTGTACCGGGTTACGCCACGTTGGGCGTGGCGGCGCCGCTGCTGGTATTGCTGGGCCGATTGCTGCAGGGCTTTTCCGCAGGCGTGGAGCTCGGTGGGGTCTCGGTGTACCTGGCGGAAATCTCTACGCCGGGGCGCAAGGGCTTTTTTGTCAGTTGGCAGTCCGCGAGCCAACAGGCCGCCGTGGTCTTTGCCGGTCTGCTGGGGGTTGGCCTCAATCATTGGCTGAACCCGCAAGAAATGGGCGAATGGGGCTGGCGCGTGCCGTTCCTGATCGGTTGCCTGATCGTACCGGTCATTTTTGTAATTCGCCGCTCGCTGGAAGAAACGCCGGAATTCCAGGCGAGAAAACACCGCCCTACCCTGTCGGAAATCGTCCGCTCCATTGGCCAGAACTTCGGCATTGTCCTGGCCGGCATGGCACTGGTGGTGATGACTACGGTGTCGTTCTACCTGATCACGGCCTACACGCCGACATTTGGCAAGGCTGAGCTCAACCTGTCGGAGCTGGATGCGTTGCTGGTCACGGTGTGTATCGGCTTGTCGAATTTCTTCTGGCTGCCAGTCATGGGCGCGCTTTCCGACAAGATCGGGCGCAAACCCCTGCTGCTGGCTGCGACAATCCTGGCGATCCTGACCGCCTACCCGGCGCTGTCCTGGCTGGTGGCGAACCCCAGCTTCAGCCATTTACTGATCGTCGAGCTGTGGTTGTCGTTCCTGTATGGATCGTACAACGGCGCCATGGTGGTCGCCCTGACGGAAATCATGCCGGTTGAAGTGCGTACTACTGGCTTTTCCCTGGCCTATAGCCTCGCGACGGCAACGTTCGGCGGGTTCACGCCGGCGGCCTGTACCTATCTGATCCATGTGCTGGATAACAAAGCGGCGCCGGGGATCTGGCTCAGTGGTGCGGCGGTGTTGGGGTTGATTGCGACGTTGGTACTGTTCAAGGGTAATCGGCATGAACTGCGCACGGCGCAGGCCTCTGTAGTGGGCGGTGCCTGAMPSNTSNGKAIFRVVSGNFLEMFDFMVYGFYATAIAKTFFPTDSAFASLMLSLATFGAGFLMRPLGAIFLGAYIDRHGRRKGLIITLAMMAAGTVLIACVPGYATLGVAAPLLVLLGRLLQGFSAGVELGGVSVYLAEISTPGRKGFFVSWQSASQQAAVVFAGLLGVGLNHWLNPQEMGEWGWRVPFLIGCLIVPVIFVIRRSLEETPEFQARKHRPTLSEIVRSIGQNFGIVLAGMALVVMTTVSFYLITAYTPTFGKAELNLSELDALLVTVCIGLSNFFWLPVMGALSDKIGRKPLLLAATILAILTAYPALSWLVANPSFSHLLIVELWLSFLYGSYNGAMVVALTEIMPVEVRTTGFSLAYSLATATFGGFTPAACTYLIHVLDNKAAPGIWLSGAAVLGLIATLVLFKGNRHELRTAQASVVGGAPGPT0001505_212DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_CITRATE_TRANSPORT,PGPT0001505-citA|tcuC-K03288NANA
D1-35_00852987apbECOG1477FAD:protein FMN transferaseATGCTGGCCGGCGTTGTGTCCGGCTGCGGCCGGGGCGATACCCTGGAACGCTTCGATGGCCCGACCATGGGCAGCCGTTATTCCGTCCAGTACGTCAGGCATGCCGCCACGCCCGGTCCGAACGTGGTGCAGGCCGAGGTGGAAAAAATTCTCGCTGAAGTGGATCGGCTGTTTTCCACCTATCGCAGCGATTCGGAAATCGAGCGCTTCAATGCCCTGCCTGGCGGCAGTTGCCTGACCATGCCGGGACCTGTGTTTGAACTTGTCCGGGTGGGTGAGCAGCTATCTTCGCAAAGCCATGGCGCGTTCGATCTGACGGTGGAGCCTTTGCTGAACCTGTGGGGCTTCGGCCCGCAATCCCGGCGAGAGGCGGTGCCCAGCGCCGAGGCCCTGGCCCTGGCGCGACGACAGGTTGGCCATGGCTACTTGCGGATCGAAGGCGACCGGTTATGCAAGGACGCCGCGGTGGAAGTCGATTTCAACAGCATCGCGGCGGGTTATGCCGTCGACCGCATCGCCGCGAAGCTCCAGGCTTTGGGCATCGACAGCTACCTGGCCGAAGCCACCGGGGAGCTCAAGGCTGTCGGGCACAAGCCGGATGGGTCGGCCTGGCGCATCGCCCTGGAAGAGCCTCGGAACGATCGGCAAATGGCTGAGCGTGTCATCGAGGTCAACGGCTACGGGGTTTCAACGTCGGGCGACTATCGTAAATATTTCGAGCAGGGCGGCAAGCGTTACTCCCACACCTTTGATGCGCGCACCGGGGCGCCGGTCCTACACAACCTGGCGTCAGTCACGGTAATTCATCCTTCAGCGATGTTGGCCGATGGACTATCGACGCTGTTGCTGATTCTCGGTCCCGAAGAGGGTTGGGATTATGCCCAGGAGCACGGCATCGGAGTATTTTTTGTGCTGCGCGATGGAGAGCGTTTCGTCGTACGCACAAACGATGCGTTTGAACGGATGGCCGGCGAAAAAACCCAATGAMLAGVVSGCGRGDTLERFDGPTMGSRYSVQYVRHAATPGPNVVQAEVEKILAEVDRLFSTYRSDSEIERFNALPGGSCLTMPGPVFELVRVGEQLSSQSHGAFDLTVEPLLNLWGFGPQSRREAVPSAEALALARRQVGHGYLRIEGDRLCKDAAVEVDFNSIAAGYAVDRIAAKLQALGIDSYLAEATGELKAVGHKPDGSAWRIALEEPRNDRQMAERVIEVNGYGVSTSGDYRKYFEQGGKRYSHTFDARTGAPVLHNLASVTVIHPSAMLADGLSTLLLILGPEEGWDYAQEHGIGVFFVLRDGERFVVRTNDAFERMAGEKTQPGPT0000430_2450DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-Fmn|Dmk|Ppl|Ndh|Eet_SYSTEM,PGPT0000430-nosX|apbE|yojL|fmnB-K03734NANA
D1-35_008531395sthACOG1249Soluble pyridine nucleotide transhydrogenaseATGGCTGTCTATAACTACGACGTGGTGGTACTGGGTTCCGGCCCGGCGGGGGAAGGTGCGGCAATGAACGCCGCCAAGGCAGGGCGCAAGGTGGCGATGGTCGACAGCCGTCGGCAGGTTGGCGGCAACTGCACCCACTTGGGTACCATCCCGTCCAAGGCCTTGCGTCACTCGGTCCGGCAGATCATGCAGTTCAACACCAACCCGATGTTCCGGGCAATCGGCGAGCCGCGCTGGTTCTCCTTCCCGGACGTGCTCAAGAGCGCCGAGAAGGTGATTTCCAAGCAAGTAGCCTCGCGTACCGGCTACTACGCCCGCAACCGTGTGGACGTGTTTTTCGGCACCGGCAGCTTCGCCGACGAGCAAACGGTCGAAGTGGTCTGTGGCAATGGCGTCGTCGAGAAACTGGTGGCCAAGCACATCATCATCGCCACCGGCTCGCGTCCGTATCGCCCGGCGGACATCGATTTCAACCACGCACGTATCTACGATAGCGACACGATCCTGAGCCTGGGGCATACCCCGCGCAAACTTATCGTCTACGGTGCCGGCGTGATCGGTTGCGAATACGCCTCGATCTTCAGCGGCCTGGGCGTGCTGGTGGAACTGGTGGACAACCGTGGCCAATTGCTGAGCTTCCTGGACTCGGAAATTTCCCAGGCCCTGAGCTACCACTTCAGCAACAACAACATCACCGTGCGCCACAATGAAGATTACGAGCGCGTCGAAGGCGTGGACAACGGTGTGATCCTGCACCTCAAGTCCGGTAAGAAGATCAAGGCCGACGCCTTGCTCTGGTGCAACGGCCGCACCGGCAACACCGACACCCTGGGCCTGGAAAACATCGGCGTGAAGGTCAACAGCCGGGGCCAGATCGAAGTTGACGAGAACTACCGCACCTGCGTGCCGAACATCTACGGTGCCGGTGACGTGATCGGCTGGCCGAGCCTGGCCAGTGCCGCCCACGACCAGGGCCGTTCGGCCGCCGGCAGCATCGTCGACAACGGCAGCTGGCGTTTCGTCAATGACGTGCCGACCGGCATCTACACCATTCCGGAGATCAGCTCGATCGGCAAGAACGAGCAGGAGCTGACCCAGGCCAAGGTGCCTTACGAGGTCGGCAAGGCCTTCTTCAAGAGCATGGCGCGGGCGCAGATCGCCGGCGAGCCGCAAGGCATGCTGAAAATCCTGTTCCACCGCGAGACCCTGGAAGTGCTGGGCGTGCACTGCTTCGGCTACCAGGCCTCGGAAATCGTCCACATCGGCCAGGCGATCATGAACCAGCCGGGCGAACTGAACACGTTGAAGTACTTCGTCAACACCACGTTCAACTACCCGACCATGGCCGAAGCCTATCGGGTAGCGGCCTACGACGGGCTCAACCGGCTTTTTTGAMAVYNYDVVVLGSGPAGEGAAMNAAKAGRKVAMVDSRRQVGGNCTHLGTIPSKALRHSVRQIMQFNTNPMFRAIGEPRWFSFPDVLKSAEKVISKQVASRTGYYARNRVDVFFGTGSFADEQTVEVVCGNGVVEKLVAKHIIIATGSRPYRPADIDFNHARIYDSDTILSLGHTPRKLIVYGAGVIGCEYASIFSGLGVLVELVDNRGQLLSFLDSEISQALSYHFSNNNITVRHNEDYERVEGVDNGVILHLKSGKKIKADALLWCNGRTGNTDTLGLENIGVKVNSRGQIEVDENYRTCVPNIYGAGDVIGWPSLASAAHDQGRSAAGSIVDNGSWRFVNDVPTGIYTIPEISSIGKNEQELTQAKVPYEVGKAFFKSMARAQIAGEPQGMLKILFHRETLEVLGVHCFGYQASEIVHIGQAIMNQPGELNTLKYFVNTTFNYPTMAEAYRVAAYDGLNRLFPGPT0013495_807DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013495-sthA-K00322NANA
D1-35_00854723ugpQCOG0584Glycerophosphodiester phosphodiesterase, cytoplasmicGTGACCCTCATTTATGGCCACCGCGGCGCCAAGGGCGAAGCACCGGAAAACACCCTCACCGGCTTCCAGGAATGCCTCAAGCACGGCGTACGCCGTTGCGAGCTGGACCTGCACCTGTCCATGGACGGCGAGTTGATGGTGATCCATGACCCGACCCTCAAGCGCACCACCGATCGCCGGGGCAAGGTGGTCGAACACACCGCCGCTGAACTGGTGACTTATGACGCGCGCAAGGGTGGCCCGGGCTGGATCAAGCCGTGCCCGATTCCACGCCTGGAAGAGTTGTTCGAGAAGTGTGATTTCGAGCACTGGCAACTGGAGGTGAAAAGCGCCTCACGCACCCGCGCCGCCGCCACCGTGCTGGGCATCCGTGAAATGGCCCAGCGCTTCGGCCTGCTGGACAAAATCACCATCACTTCCAGTTCCCGGGAAGTGCTCAAGGCCGCGCTGGATCTGACGCCGGACATTTCCCGTGGACTGGTCGCCGAATACGCCTGGCTCGACCCGTTGAAGGTCGCCCAGAGCTATGGCTGTGAGATTCTGGCGCTGAACTGGACCCTGTGCACGCCGGAACGCCTGATCAAGGCGCAGCGCCAGGGGCTGCATGTGTCGGTGTGGACCGTCAACGAGCCCGCGCTCATGCGCAGGCTCGCCGACTTTGGCGCTGACAGCCTGATTACAGACTTTCCCGGTTTGGCCACCGCCACCCTCGAGAATTGCTGAMTLIYGHRGAKGEAPENTLTGFQECLKHGVRRCELDLHLSMDGELMVIHDPTLKRTTDRRGKVVEHTAAELVTYDARKGGPGWIKPCPIPRLEELFEKCDFEHWQLEVKSASRTRAAATVLGIREMAQRFGLLDKITITSSSREVLKAALDLTPDISRGLVAEYAWLDPLKVAQSYGCEILALNWTLCTPERLIKAQRQGLHVSVWTVNEPALMRRLADFGADSLITDFPGLATATLENCPGPT0018470_7944DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHODIESTERASE_ACTIVITY,PGPT0018470-glpQ|ugpQ-K01126NANA
D1-35_00855591hypothetical proteinATGTCGACATTAGATGAAGAAGATCGCCGCGAATACTACCGTATCGAGGACACGATCGCACTGGAAATTCGGCCCCTGTCCATTCCTGAAGCTGCCAGCCAGGAAGTGTTGCAGGATGAGTCCCCACTGTTCAACCTGCTCAGCGAGCTGCACCTGAGCGAGTTCGAATCACAACACCTGTTGCGCCAGATCAGCGAGCGCGAGCGCAGCATCGCGGCCTACCTCAAGGCCATGAACAAACGCATCGACCTGCTCAGCCAGGTCATCGCCGTAACGGTGCTCGGCGAAATCGGCGATCCCCAGCCGGTAATCATTTCCGAAGGCGGCATCGATTTCCAATACCCAAGCGCCATTGCTGTCGGCGCGCACCTGTCGGTCAAGCTGGTGCTGATGCCCCAGGCCCTGGGGCTGTTGTTGCGCGCCCGCGTCACCCATTGCGACCCCAAGGGCAACGGTTATGACGTAGGCACCGAGTTTGAGCACCCGACCGACGCCCAGCGCCAATTGCTGGCCCGCTACATCCTGCAGAAGCAGGCGCAGGAACGGCGCCTGGCCCGGGAACTGAACGAATCTGGCATCGATAAGGAATAAMSTLDEEDRREYYRIEDTIALEIRPLSIPEAASQEVLQDESPLFNLLSELHLSEFESQHLLRQISERERSIAAYLKAMNKRIDLLSQVIAVTVLGEIGDPQPVIISEGGIDFQYPSAIAVGAHLSVKLVLMPQALGLLLRARVTHCDPKGNGYDVGTEFEHPTDAQRQLLARYILQKQAQERRLARELNESGIDKENANANANANA
D1-35_008561251lolE_1COG4591Lipoprotein-releasing system transmembrane protein LolEATGTTCAGACCTCTCTTCGTATTCATCGGCACGCGTTATACCCGTGCAAAGCGTCGCAATCATTTCGTATCGTTCATTTCCCTGACGTCCATCATCGGCCTTGCCCTTGGCGTGGTCGTGATGATCGTCGTGCTGTCGGTCATGAACGGCTTCGACCATGAAATGCGCACCCGCGTGCTCGGCATGGTGCCCCACGCGACCCTCGAAACCGGCGAAGCCATCAGCGACTGGCCAAGCCTGGCCGCCAAGGTCAAGCAGAACCCGCAGGTGCTGGCCGTTGCGCCCTTCACCCAGATGCAGGGGCTGCTGACCAACGACGGCAAGGTCTCCAAGGTCTTGCTCAATGGCATCGATCCCGGGCTGGAGCGGCAGGTGTCGATCATCGACAACTTCATGCGGCAGGGCAAACTCGACGACCTCGCGCCGGGCAGCTTCGGTATCGTGATCGGCGACAAGGCGGCGACCAAGCTCGGCGTGGCCATCGGCGACAAGCTGACGTTTGTCGCGCCGGAGGTCACTGTCACTCCAGGCGGCATGTTCCCGCGCATGAAGCGCTTCACCGTGGTCGGCATCTTCCATGTTGGCGCCGGCGAGCTGGACGGTTACCTGGGGGTGACCAACCTTCAGGACCTCGCGCGCCTGCATCGCTGGAAACCGGATCAGGTCCAGGGGCTGCGGTTGAAGTTCGACGACCTGTTCCAGGCGCCGCGCGTGGCGTGGAACATCGCCCAGCAGCTCGGCGAAGACCGTTATTACGCCCGCGACTGGACCCGCACCCATGGCAACCTGTATCAGGCGATCCGCATGGAAAAAGCCATGATCGGCCTGCTCCTGTTGCTGATCGTCGCCGTGGCGGCGTTCAACATCATTTCCACGCTGGTGATGGTGGTGAACGACAAGAAAGGCGACATCGCCATCCTGCGCACCCTCGGCGCCACGCCGGGGCAGATCATGCGGATCTTCATGGTCCAGGGCACCGTCATCGGCGTCATCGGCACGTTTGTAGGCGCCTTGGTCGGGATGTTCGCCGCACTGAATGTCAGCGCCGCGATTGCCGCCCTCGAAGGGCTGATCGGGCACAAGTTTCTCAACGCCGACGTGTACTTCATCGACTACCTGCCCTCGCAGTTGCAGGCCGATGACGTGTTGATGGTCTGCGGCGCCGCGTTGATCCTGAGTTTCCTCGCCACCCTGTATCCAGCCTGGCGTGCCGCGCGCACCCAGCCTGCGGAGGCGTTACGTTATGAGTGAMFRPLFVFIGTRYTRAKRRNHFVSFISLTSIIGLALGVVVMIVVLSVMNGFDHEMRTRVLGMVPHATLETGEAISDWPSLAAKVKQNPQVLAVAPFTQMQGLLTNDGKVSKVLLNGIDPGLERQVSIIDNFMRQGKLDDLAPGSFGIVIGDKAATKLGVAIGDKLTFVAPEVTVTPGGMFPRMKRFTVVGIFHVGAGELDGYLGVTNLQDLARLHRWKPDQVQGLRLKFDDLFQAPRVAWNIAQQLGEDRYYARDWTRTHGNLYQAIRMEKAMIGLLLLLIVAVAAFNIISTLVMVVNDKKGDIAILRTLGATPGQIMRIFMVQGTVIGVIGTFVGALVGMFAALNVSAAIAALEGLIGHKFLNADVYFIDYLPSQLQADDVLMVCGAALILSFLATLYPAWRAARTQPAEALRYEPGPT0024510_1556DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINSCE-REMODELLING_LIPOPROTEIN_TRANSPORT,PGPT0024510-lolC_E-K09808NANA
D1-35_00857699lolD_2COG1136Lipoprotein-releasing system ATP-binding protein LolDATGAGTGAGTCGGGCATGAGTGAAAAAGCAATCTTGAGCTGCCGCAACCTGGGCAAGTCCTACGAGGAAGGCCCGGAATCGGTGGTGGTGTTGTCGGGCCTCCAATTGGAGCTGCATCCCGGTGAACGCGTGGCGATCGTCGGGACTTCCGGATCGGGCAAAAGTACCTTGTTGAACTTGCTCGGTGGCCTCGATACGCCGACCGCCGGCAGCGTCTGGCTGGCGGGCGAAGAGCTTTCGGCGCTGAACGAAAAGGCCCGCGGCCTGTTGCGTAACCGCTCCCTGGGCTTCGTCTACCAGTTCCACCATCTGCTGCCCGAGTTCACCGCGCTGGAAAACGTCTGCATGCCGCTGTTGATCGGCCGCACCGCTATTCCCGAAGCCCGCCAGCGAGCTACGGCGTTGCTGGAGCGCGTGGGACTGGGCCATCGCCTGGAGCACAAGCCGGCCGAGCTGTCCGGCGGCGAGCGCCAGCGCGTGGCGATTGCCCGGGCCCTGGTCAACAAGCCTGGGCTGGTGATGCTCGACGAGCCGACCGGCAACCTCGATTCCCACACCGCGCAAGGCATTCAGGACTTGATGCTGGAACTCAGCACCTCGATGCGCACGGCGTTCCTGGTGGTGACCCACGACATGAACCTGGCCCGGCAGATGGACCGCGTCCTGCATTTGCAGGAAGGTTGCCTGACGCCGATCTGAMSESGMSEKAILSCRNLGKSYEEGPESVVVLSGLQLELHPGERVAIVGTSGSGKSTLLNLLGGLDTPTAGSVWLAGEELSALNEKARGLLRNRSLGFVYQFHHLLPEFTALENVCMPLLIGRTAIPEARQRATALLERVGLGHRLEHKPAELSGGERQRVAIARALVNKPGLVMLDEPTGNLDSHTAQGIQDLMLELSTSMRTAFLVVTHDMNLARQMDRVLHLQEGCLTPIPGPT0024515_1171DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINSCE-REMODELLING_LIPOPROTEIN_TRANSPORT,PGPT0024515-lolD-K09810NANA
D1-35_008581245lolE_2COG4591Lipoprotein-releasing system transmembrane protein LolEATGTTCAGACCGTTATCGATTTTCATCGGCACGCGCTATACCCGCGCCAAGCGCCGCAATCGTTTTGTCTCGTTCATTTCCATGACCTCGATGATCGGCCTCGCCCTTGGCGTGTTGGCGATGATTGTCGTGCTGTCGGTGATGAACGGCTTCCAGCGCGAAATGAGCTCGCGCATCCTCGGCATGGTGCCTCACGCCACCATCGTCGGGGTCAACCCGATCGACGATTGGCAGCCGGTGGCCGCCGCGGCATTAAAAAATCCTGAAGTGACGGCTGCGGTGCCGTTCACCGAGATGGAAGGGATGTTGAGCCATAAAGGTTCGATGCAGCCGATCCAGATCAGCGGCGTCGATCCGGCCCATGAAGGCAAGGTCTCGATTGTCGCCCAGCACATCGTCCAGGGGCGTCTCGATGCCTTGAAGCCCGGCGAGTTCGGCGTGGTGATCGGTGAGATCACCGCGCGACGCTTTCGCTTGAATGTCGGCGACAAGGTCACCTTGATCGTGCCGGAAGTCAGCACCGCGCCGGGGGGCATCACCCCGCGGATGCAACGACTGAATGTGGTGGGGGTGTTCAAGGTCGGCGCCGAGCTGGACGGTTCCATGGCGCTGATTCACTTGGCCGACGCCGCGCAGATGCAGCATTGGCAACCGAACCAGGTACAGAGCGTGCGTCTGGCGGTGAAAGATTTGTACGCAGCGCCGAAAGTCTCCGGTGACATCGCCACCGGGCTTGGCGCGGCCTACAAGGCTGACGACTGGACCCACACTCAGGGCAGTCTGTTCAGTGCGATGAAAATGGAAAAAACCATGATCGGCCTGTTGCTGTTGATGATCGTCGCGGTGGCGGCGTTCAACATCATCGCCACGTTGATCATGGTGGTGAACGACAAGGGCGCGGACATCGCGATCCTTCGTACCATCGGCGCCACGCCGCGACAGATCATGGCAATCTTCATGGTCCAGGGCACGGTGATCGGCGTGGTGGGCACGTTGATCGGCGGGGTGCTGGGGGTGATTGCGGCGTTGAATGTCAGCGCGCTGGTGGGTTGGCTGGAAAGGGTCAGCGGCCAGCACATTTTCAGTTCCGATGTGTACTTCGTCAGCAACCTGCCGTCGGAACTGCAGCGTGGCGACGTGGTGCTGATCTGCTCCGCCGGGTTCATCCTCAGCTTCCTCGCCACCGTATACCCGGCCTGGCGCGCGGCGAAGATCGAACCTGCGCAGGCGTTGCGGTATTCCTGAMFRPLSIFIGTRYTRAKRRNRFVSFISMTSMIGLALGVLAMIVVLSVMNGFQREMSSRILGMVPHATIVGVNPIDDWQPVAAAALKNPEVTAAVPFTEMEGMLSHKGSMQPIQISGVDPAHEGKVSIVAQHIVQGRLDALKPGEFGVVIGEITARRFRLNVGDKVTLIVPEVSTAPGGITPRMQRLNVVGVFKVGAELDGSMALIHLADAAQMQHWQPNQVQSVRLAVKDLYAAPKVSGDIATGLGAAYKADDWTHTQGSLFSAMKMEKTMIGLLLLMIVAVAAFNIIATLIMVVNDKGADIAILRTIGATPRQIMAIFMVQGTVIGVVGTLIGGVLGVIAALNVSALVGWLERVSGQHIFSSDVYFVSNLPSELQRGDVVLICSAGFILSFLATVYPAWRAAKIEPAQALRYSPGPT0024510_2223DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINSCE-REMODELLING_LIPOPROTEIN_TRANSPORT,PGPT0024510-lolC_E-K09808NANA
D1-35_008591347cusSCOG0642Sensor histidine kinase CusSGTGAGTCGCCGATGGTCGCTGAGCAATCGGTTGGCGCTGCTTTTTGCCGCCTGCACTGCCATCGTGTCGTTGTTTGCCGGCGTGCTGTTCAGCCGCGGCAGCGAGGCACACTTCATCGAACTGGACCAGCAGTTGCTCGAAGCCAAATTGACTGGCGTGCGCCGCGCCCTGCAAGATGGCCCCAACCCCCAGGCGCGCCTGGCGGACGAGTTGAGCCGCCAGCCGGACCTTGCCTTGCGCATCAAGGACCGCGATGGCGTGCGCTGGCATGACAGCTCGATCCGCCTGCCGGCCCAGGTGCCTGAACGGCCGGGCCTGTCGACCCTCAACGACACCGACAATGACTACCGCGTATTAAACGCGCCGCTGGATCCCAATCGTGCGGATTCGCCCCAACTGACACTGTTGCTGGACATCACCCACCACCAGCATTTCCTGCAACGCATGCAGCGTCTGATCTGGCTGACCGTCGGCCTCTCGGCGCTGGCGACCGCCCTGCTTGGCGCCTGGGCCGCCCGGCGTGGCTTGCGCCCCCTGCGCCGTATGGGCGCCATTGCCAGCAGCGTCTCGGCACGTTCGCTCAATGCTCGACTGCCAGAAGAACACATGCCCGCCGAACTGGCGGAACTGGCCCACAGCATCAACGACATGCTTGGACGCCTCGACGATGCCTTCCAGCGCCTCTCCGCCTTCTCCGCCGATATCGCCCATGAGCTGCGTACGCCGTTGTCGAATCTGCTGACCCATACCCAGGTCACGCTCACCCGCGAACGCTCGCTGGACGACTATCGCGAAGCCCTGCACAGCAATCTCGAAGAGCTGCAATGGATGGCGCAACTGGTCAACGACATGCTTTACCTGGCCAAGGCCGACCATGGCTTGCTGGCCGTCCAGCGCGAGCCGCTGGAGCTGGCGCTGGAAACGGACCTGCTGCTGGAGTTTTTCGCGCCACTGGCCGAAGACGCCGAGGTAAAGCTGAGCCGCGAAGGGAACGGACGTATCGAGGGCGACCGCAGCATGCTGCGCCGCGCGCTGTCCAATCTGCTGGACAACGCCCTGCGCTTCAGCCGCGGTGGTGGCGAGGTGCGGATACGGATTGTCGACGGGCCGCAGACTGTGCGCATCGATGTGGAAAACAGTGGCGGGGAAATTCCGGCGGCGCTGCTGCCGCGCCTGTTCGACCGTTTTTACCGCGCCGACCCGGCTCGCCAGGAAGGCAGCAGTGAACACGCCGGGCTGGGGCTGGCCATTACCCGCTCGATTATCCGCGCCCATGGCGGGGATATCCGCTGTGAATCGGCCGATGGCTGGACGCGGTTCGTGGTGGAGTTGCCCAAGAGCAATTAAMSRRWSLSNRLALLFAACTAIVSLFAGVLFSRGSEAHFIELDQQLLEAKLTGVRRALQDGPNPQARLADELSRQPDLALRIKDRDGVRWHDSSIRLPAQVPERPGLSTLNDTDNDYRVLNAPLDPNRADSPQLTLLLDITHHQHFLQRMQRLIWLTVGLSALATALLGAWAARRGLRPLRRMGAIASSVSARSLNARLPEEHMPAELAELAHSINDMLGRLDDAFQRLSAFSADIAHELRTPLSNLLTHTQVTLTRERSLDDYREALHSNLEELQWMAQLVNDMLYLAKADHGLLAVQREPLELALETDLLLEFFAPLAEDAEVKLSREGNGRIEGDRSMLRRALSNLLDNALRFSRGGGEVRIRIVDGPQTVRIDVENSGGEIPAALLPRLFDRFYRADPARQEGSSEHAGLGLAITRSIIRAHGGDIRCESADGWTRFVVELPKSNPGPT0004980_1468DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0004980-cusS|copS|silS-K07644NANA
D1-35_00860681copR_2Transcriptional activator protein CopRATGAAACTGCTGATCGTCGAAGACCAACTGAAAACCGGCCAGTACTTGCGCCAAGGTTTGAGCGAAGCCGGGTTCAACGCCGATCTGGTGGCTGATGGCAGCACCGGCCAGCAACTGGCCGTGAGCGGTGAATACGCGCTGTTGATTCTTGACGTGATGCTACCCGGCCGCGATGGCTGGCAGATTCTGCAAGCGGTGCGCGGCGCCGGGCTGGACACGCCGGTGCTGTTTCTCACCGCGCGGGATGCGATAGAGGATCGTGTGCATGGCCTGGAACTGGGTGCCGATGATTACCTGATCAAGCCCTTCGCCTTTTCCGAACTGCTGGCCCGGGTGCGCAGCCTGCTGCGCCGAGGCAGTTCGGCGGCCCAGGAAACCAGCCTGCAACTGGCGGACCTGCGGCTGGACTTGATCCGGCGCCGGGTAGAACGCGGCGGCAAACGCATCGACCTGACCGCCAAGGAATTCGCCCTGCTGGAGATGCTGCTGCGGCGCCAAGGCGAGGTATTGCCAAAGTCGTTGATTGCCTCACAAGTCTGGGACATGAATTTCGACAGTGACACCAATGTCATCGAGGTGGCGATCCGGCGTCTGCGGATCAAGATCGACGACGAGTTTCCCGACAAGCTGATCCACACCGTGCGCGGCATGGGCTATGTCCTTGAAGAGCGCAACCTGTGAMKLLIVEDQLKTGQYLRQGLSEAGFNADLVADGSTGQQLAVSGEYALLILDVMLPGRDGWQILQAVRGAGLDTPVLFLTARDAIEDRVHGLELGADDYLIKPFAFSELLARVRSLLRRGSSAAQETSLQLADLRLDLIRRRVERGGKRIDLTAKEFALLEMLLRRQGEVLPKSLIASQVWDMNFDSDTNVIEVAIRRLRIKIDDEFPDKLIHTVRGMGYVLEERNLPGPT0004105_839DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0004105-cusR|copR|silR-K07665NANA
D1-35_00861831queFCOG0780NADPH-dependent 7-cyano-7-deazaguanine reductaseATGCATCCCGCAGCCGAACACTCGCCGCTGGGCAAATCCAGCGAATACATCGCCACGTACACGCCGTCACTGCTGTTTCCGATCCCGCGAACCGCGAAATGGGCGGAACTGGGCCTGACGGCCGAGACCCTGCCGTACAAGGGCGTGGATTTCTGGAACTGTTTCGAGCTGTCATGGCTGCTGCCGTCCGGCAAGCCGGTTGTCGCCATCGGTGAATTCGCGATCCCGGCGGATTCGCCGAATATCATCGAATCCAAATCCTTCAAGCTGTACCTGAACTCCTTGAACCAGACGGCGTTCAGCGACAGCGCGAGCCTGGAAGCCACGCTGCGCCAGGACCTTTCCGCCGCGGCGGGCAAGCCGGTAGGTGTGCGGATTCGCAGCCTCAAGGATGTCGAGAGCGAAGGCACCGTTGCATTACCCGGTGTCTGCGTTGACGACCTGGACATCACTGTCGACTCCTACGAGCACCCGCGTCCGGAGCTGCTGCGTTGCGATGCATCGCGTATCGTCGAGGAAAGCCTGCACAGCCATCTGCTCAAGTCCAACTGCCCGGTAACCAGCCAGCCGGACTGGGGCAGCGTGGCGGTGGAGTATCGCGGCGCGGCGCTGGACCACGCCAGCCTGCTGGCTTACATCGTCAGCTTCCGCCAGCATTCGGACTTCCATGAACAGTGCGTCGAGCGGATCTTCCTCGACCTGCAACGCTTGCTCAAGCCGGAGAAATTGACGGTGTATGCGCGGTATGTGCGCCGGGGTGGGTTGGATATCAATCCGTATCGCAGCACCGAGGATGTACAACTGCCGAACCAGCGTCTGGTTCGGCAATAAMHPAAEHSPLGKSSEYIATYTPSLLFPIPRTAKWAELGLTAETLPYKGVDFWNCFELSWLLPSGKPVVAIGEFAIPADSPNIIESKSFKLYLNSLNQTAFSDSASLEATLRQDLSAAAGKPVGVRIRSLKDVESEGTVALPGVCVDDLDITVDSYEHPRPELLRCDASRIVEESLHSHLLKSNCPVTSQPDWGSVAVEYRGAALDHASLLAYIVSFRQHSDFHEQCVERIFLDLQRLLKPEKLTVYARYVRRGGLDINPYRSTEDVQLPNQRLVRQNANANANANA
D1-35_00862267hypothetical proteinATGCCTGCCCGCCGCGAATTGCAAGAACAACTGAATGCCCTGCGCGAGCAATTGGAACAGAACCCGCCGCTGTCTGAGTCAGAGCGCGAAAACCTGCACCAGTTGATGGCGCAGATCGACTCTGAGATCCAATTGGAAAACCAACTTCAGGACAACAACCTGGTCGACGGCGTGAACTTGGCCGTGGAACGTTTTGAGGTGGACCATCCGACGATCGCCGGAACACTGCGCAATATCGTGAACACCTTGGGCAGCATGGGGATCTAAMPARRELQEQLNALREQLEQNPPLSESERENLHQLMAQIDSEIQLENQLQDNNLVDGVNLAVERFEVDHPTIAGTLRNIVNTLGSMGINANANANANA
D1-35_00863621phnX_1Phosphonoacetaldehyde hydrolaseATGCCCCGCGCCGAAACCAAGCCGCTCCCCGCCCCCAGCCTGACGGCCGTCCTGTTTGGCCTCAGCGGATGCCTGGTTGATTTCGGCTCGCGTGCTCGCCAGCCAGGGATTGTGCCGGCCGAGCACACGCAACTTACACCCGGGGCGTTGGAAAGCCTGCAACGCCTGCGGCAGCTCGACATCCCCTGCGCCTGGCTTGACGAATTGCCGCCCGCCATCAGCCACGGGTTGGCGGCCTCACTGCCGGCATGGGTGAAATCTCCGCAACTTCCTGCAACAAATAATCCGTGGCCAGCGCCCCATGCCTGTTGGCAAGCCCTTATGGCGCTGGATGTCAGGCAACTGGATGGCTGCGTATTGGTCAGCGGCGAACCGAAGCTGTTGCAGTCGGGGCTAAACGCCGGTCTATGGACCATCGGGCTGGCATCCTGCGGGTCGCTGTGCGGCCTTACGCCCGCCGAATGGCAAGCCTTGAGCCAGCAGGAACGGGAAATCAAACGGGCCAAGGCCACCGTGCAATTGTTCGGCCTGGGCGTGCATTCGGTGATCGATCACCTGGGCGAACTCGATACCTGCCTGGCCGATATCAGCCTGCGTCGCCTCAAAGGCGAGAAGCCGTGAMPRAETKPLPAPSLTAVLFGLSGCLVDFGSRARQPGIVPAEHTQLTPGALESLQRLRQLDIPCAWLDELPPAISHGLAASLPAWVKSPQLPATNNPWPAPHACWQALMALDVRQLDGCVLVSGEPKLLQSGLNAGLWTIGLASCGSLCGLTPAEWQALSQQEREIKRAKATVQLFGLGVHSVIDHLGELDTCLADISLRRLKGEKPNANANANANA
D1-35_00864690mlaA_1COG2853Intermembrane phospholipid transport system lipoprotein MlaAATGCGCTGGAGCCATCGTCTAGCTCAGCTGTGTCTATCTGCCAGCGTTCTGCTGGTGCCGTTCGCCGCTCACGCCGCCACGGAAGAAGATCCTTGGGAAAGCGTCAACCGTCCGATATTCACCTTCAACGACACCATCGATACCTACGCGCTGAAGCCGCTGGCCCAGGGTTACCAGTACGTGACGCCGCAGTTCCTCGAGGACGGCATCCACAATATGTTTCGCAACATCGGTGACGTCGGCAACCTGGCCAACGATGTGCTGCAAGCCAAGCCGGCTGCCGCCGGAGTCGATACTGCCCGGTTGATCTTCAACACGACGTTCGGCCTGCTGGGCTTCTTCGATGTCGGGACCCAGATGGGGCTGCAGCGCAACGATGAAGATTTCGGCCAGACCCTGGGATATTGGGGGCTGGGCAGCGGCCCCTACCTGATGTTGCCACTGCTGGGGCCGAGCACTCTGCGTGATGCGCCGGCCAAACTGGTCGACAGCTACGCCACCCCATACCCCTACATCGACAACGTCTCGGTGCGTAATTCGATCTGGGGCCTGAACATCGTCGATACCCGCGCCAGCCTGTTATCGGCCGAGAAAATGGTCAGTGGCGACAAGTATGTGTTCCTGCGCAACGCCTTCCTGCAGAACCGTGAATTCAAGGTCAAGGATGGTCAGGTCGAAGACGATTTCTGAMRWSHRLAQLCLSASVLLVPFAAHAATEEDPWESVNRPIFTFNDTIDTYALKPLAQGYQYVTPQFLEDGIHNMFRNIGDVGNLANDVLQAKPAAAGVDTARLIFNTTFGLLGFFDVGTQMGLQRNDEDFGQTLGYWGLGSGPYLMLPLLGPSTLRDAPAKLVDSYATPYPYIDNVSVRNSIWGLNIVDTRASLLSAEKMVSGDKYVFLRNAFLQNREFKVKDGQVEDDFPGPT0024485_2077DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINSCE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024485-mlaA|vacJ-K04754NANA
D1-35_008651182rssB_1Regulator of RpoSATGCCAAAAACCAGTGCCACGCTGCTGATAATCGATGATGACGAAGTGGTGCGAGCCAGCCTCGCCGCCTACTTGGAAGACAGTGGTTTCAGCGTCCTGCAGGCCAGCAACGGCCAGCAGGGTCTTCAGGTATTCGAGCAGGACAAGCCCGACCTGGTCATCTGCGACCTGCGCATGCCGCAGATGGGCGGACTCGAACTCATTCGCCAGGTCACCGAGCTGTCGTCACAGACTCCGGTGATCGTGGTGTCGGGCGCGGGGGTGATGAACGACGCGGTCGAGGCATTGCGCCTGGGCGCGGCGGATTACCTGATCAAGCCCCTCGAAGACCTTGCCGTGCTCGAGCATTCGGTGCGTCGAGCCCTGGACCGCTCGCGGCTGTTGGTCGAGAACCAGCGCTATCGCGAGAAGCTGGAAACGGCCAACCGTGAGCTGGAAGCCAGCCTGAACCTGTTGCAGGAAGACCAGAACGCCGGGCGTCAGGTGCAGATGAACATGCTGCCGGTCAGCCCCTGGACCGTCGACGGTTTCCGTTTTGCCCACCAGATCATCCCGTCGTTGTACCTGTCGGGTGATTTTGTCGATTATTTCCGGGTCGACGAGCGCCGAGTGGCTTTCTACCTGGCGGATGTTTCCGGACACGGTGCTTCGTCGGCATTCGTGACCGTACTGCTGAAGTTCATGACCACGCGCCTGCTGTTCGAATCCAAGCGCAATGGTACGTTGCCCGAATTCAAGCCTTCGGAGGTCCTTGGGCATATCAACCGAGGCCTGATCAGTTGTAAGCTGGGCAAACACGTCACGATGGTCGGTGGAGTCATCGACGAGGAGACTGGTTTGTTGACGTATAGCATCGGCGGTCACCTGCCGTTGCCCGTGTTGTACACACCTGACAGTGTTCGTTACCTGGAAGGGCGTGGCTTGCCGGTGGGCCTGTTCAACGAGGCCACCTATGAAGATCACGTGCTGGAACTGCCCCCGGCTTTCAGTCTGACGCTGATGTCTGATGGCATTCTGGACCTTTTGTCGGAACCTACACTCAAAGAGAAAGAAGCGGCCTTGCCTGAACGGGTAAGTGCGGCGGGCGGCAGCCTGGAAGGCCTGCGGCAAGTGTTTGGATTAGCCACGCTAGGGGAGATGCCGGATGATATCGCCCTGTTAGTGTTGAGCAGGAATCTTTGAMPKTSATLLIIDDDEVVRASLAAYLEDSGFSVLQASNGQQGLQVFEQDKPDLVICDLRMPQMGGLELIRQVTELSSQTPVIVVSGAGVMNDAVEALRLGAADYLIKPLEDLAVLEHSVRRALDRSRLLVENQRYREKLETANRELEASLNLLQEDQNAGRQVQMNMLPVSPWTVDGFRFAHQIIPSLYLSGDFVDYFRVDERRVAFYLADVSGHGASSAFVTVLLKFMTTRLLFESKRNGTLPEFKPSEVLGHINRGLISCKLGKHVTMVGGVIDEETGLLTYSIGGHLPLPVLYTPDSVRYLEGRGLPVGLFNEATYEDHVLELPPAFSLTLMSDGILDLLSEPTLKEKEAALPERVSAAGGSLEGLRQVFGLATLGEMPDDIALLVLSRNLNANANANANA
D1-35_00866483hypothetical proteinATGAGTACCGGTAGAATCCAGTTCGCCGAGCAGGACGGCACCTTCGTCCTGAAGTTTGTCGGTGAAGTGCGCCTGACCTTGTGTTCGGCGCTGGATGCGACAATCGAGAAGATCTTCACCGCGTTGAACTTCAACGCCATCGTGATCGACCTGACCGAAACCCGCAGCATCGACAGCACCACCCTGGGCCTGCTGGCCAAATTGTCGATCCTGTCGCGGCAAAAGGTCGGCCTGCTGCCGACCGTTGTCACCACCCACAACGACATTACCCGTTTGCTGCAGTCGATGGGCTTCGATCAGGTGTTCAACATCGTCGGCGATCCGGTGCCATGCCCGGAATGCCTGGATGATCTGCCTGATCAGGACCAGTCCGAAGAGGACGTGCGGATCAAGGTGCTTGAAGCGCACAAGATCCTCATGGGGCTGAACGACTCCAATCGTGAAGCGTTCCATGACTTGGTGAGTGCGTTGGAGCGGCCCTGAMSTGRIQFAEQDGTFVLKFVGEVRLTLCSALDATIEKIFTALNFNAIVIDLTETRSIDSTTLGLLAKLSILSRQKVGLLPTVVTTHNDITRLLQSMGFDQVFNIVGDPVPCPECLDDLPDQDQSEEDVRIKVLEAHKILMGLNDSNREAFHDLVSALERPNANANANANA
D1-35_00867927talTransaldolaseATGACTTCCAAGCTGGAACAACTCAAGCAGTTCACTACCGTCGTGGCCGATACCGGCGACTTCGAAGCCATCGCCCGCATCAAACCGGTGGACGCAACCACCAACCCTTCCCTGCTGCTCAAGGCTTCGGCCATTCACGGTTATGCCGAGCTGCTGAACGCCTGCGTGGCGGATTGCAAGGGTGACGTGGGCCTGGCCAGCGACCGTTTTGGTGTAGCGGTCGGGCAAGAAATCCTCAAGGTGATTCCGGGGCGCATCTCCACCGAAGTGGATGCACGCCTGTCGTTCGATACCGAGGCCATGTTGAAGCGCGCCCATCGCCTGGTCGACCTGTACGAAAAGGCCGGTGTGGGCCGGGATCGCGTGCTGATCAAGATCGCCTCTACCTGGGAAGGCATCCGCGCCGCCGAGCAACTGGAGCGAGAAGGCATCCAGTGCAACCTGACGCTGCTGTTCTCCTTCGCCCAGGCCGCGGCCTGCGCCGACGCCGGTGTGTTCCTGATTTCGCCATTCGTGGGCCGTATCTATGACTGGTACAAAAAGGCCAATGGCAATGACTACACCGGGGCCGACGATCCCGGCGTGCAGTCGGTGACGCGCATCTACAACTACTACAAGGCCAATGACTACAAGACCGTGGTCATGGGCGCCAGCTTCCGTAATCTCAATCAGATCGAGCAACTGGCCGGCTGCGACCGCTTGACCGTCAGCCCCGAACTGCTGGAAAAACTGGCCGCCGACGAGGGCAAGCTGGAACGCAAGCTGGCGCCTGGCCAGGCCGGGGAAGCGCGTCTGAGCCTCAATGAGGCGCAGTTCCGCTGGTTGTCCAACGAGGATGCCATGGCAACCGAGAAACTGGCTGAAGGCATTCGTCAGTTCGCTCGGGACCAGGAGAAGCTGGAAGCGTTGCTGCAAGCCAAGCTTTGAMTSKLEQLKQFTTVVADTGDFEAIARIKPVDATTNPSLLLKASAIHGYAELLNACVADCKGDVGLASDRFGVAVGQEILKVIPGRISTEVDARLSFDTEAMLKRAHRLVDLYEKAGVGRDRVLIKIASTWEGIRAAEQLEREGIQCNLTLLFSFAQAAACADAGVFLISPFVGRIYDWYKKANGNDYTGADDPGVQSVTRIYNYYKANDYKTVVMGASFRNLNQIEQLAGCDRLTVSPELLEKLAADEGKLERKLAPGQAGEARLSLNEAQFRWLSNEDAMATEKLAEGIRQFARDQEKLEALLQAKLPGPT0017375_3685DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_PENTOSE_METABOLISM,PGPT0017375-talA|talB-K00616NANA
D1-35_00868939dusACOG0042tRNA-dihydrouridine(20/20a) synthaseATGATGGATTGGACTGACCCCCATTGCCGGTACTTCCTGCGCATCCTCTCCAAACATGCCCTGCTCTACACCGAGATGGTCACCACCGGCGCCCTGCTCAATGGTGATCACGAGCGTTTCCTGCGTCACCACGAAGCCGAGCACCCGCTGGCCCTGCAATTGGGCGGCAGCGTTCCCGCCGACTTGGCCGCCTGCGCGCGAATGGCCGAGGAACATGGCTACGATGAAGTCAACCTGAACGTCGGTTGCCCCAGCGACCGGGTGCAGAACAACATGATTGGCGCCTGCCTGATGGGCCATCCCGGGCTGGTGGCCGATTGTGTGAAGGCCATGCGTGATGCGGTGTCGATTCCAGTGACGGTGAAACATCGGATTGGAATAAATGGTCGAGACAGCTACGAACAATTGTGCGATTTCGTCGGGACAGTGCGTGAGGCCGGGTGCGGCAGTTTTACCGTGCATGCGCGAATCGCCATTCTGGAGGGGTTGTCGCCCAAGGAAAACCGCGACATTCCACCGCTACGTTATGACGTGGTGGCGCAGCTGAAAGCTGACTTCCCTGAGCTGGAAATCGTCCTCAACGGCGGCATCAAGACGCTGGAGGCGTGTCATGAACACCTGCGGACGTTCGACGGGGTGATGCTCGGACGCGAGGCATACCACAACCCTTATCTGCTGGCCGAAGTGGACCAGCAATTGTTCGGCAGCACTGCGCCCGTCATCAGCCGCGCCGAGGCCTTGGCGCAATTGCGGCCTTATATCGCCGCCCACTTGGCGGCTGGCGGCGCCATGCATCACATCACCCGGCATGTGCTGGGGCTGGGCACGGGGTTTCCGGGGGCGCGGCGGTTCCGGCAGTTGTTGTCGGTGGACATTCACAAGACCAAGGATCCGTTGGCGCTCCTGGATCAGGCCGGGCAGTTGCTTGAAGGGCGTTAAMMDWTDPHCRYFLRILSKHALLYTEMVTTGALLNGDHERFLRHHEAEHPLALQLGGSVPADLAACARMAEEHGYDEVNLNVGCPSDRVQNNMIGACLMGHPGLVADCVKAMRDAVSIPVTVKHRIGINGRDSYEQLCDFVGTVREAGCGSFTVHARIAILEGLSPKENRDIPPLRYDVVAQLKADFPELEIVLNGGIKTLEACHEHLRTFDGVMLGREAYHNPYLLAEVDQQLFGSTAPVISRAEALAQLRPYIAAHLAAGGAMHHITRHVLGLGTGFPGARRFRQLLSVDIHKTKDPLALLDQAGQLLEGRNANANANANA
D1-35_00869276hypothetical proteinATGCTGATTTCTTATGACCCGGCCAAAGACGCTCGCAACGTGGAAGAACGTGGACTCCCGTTTGCTCTCGTGCGGGACTTTGAATGGTCTACCGCATTGATCCTGGAGGATGATCGATTCGACTACGGTGAGTGTCGTTATAGGGCGATGGGATACATAGGGGATCGGCTGCATGTCGTAGTGTTTACACCACGGGGTGACGCGGTCCACGTCATCAGCTTTCGTAAAGCCAACAAACGGGAGGTCAAAAATTATGACCAAGAAACCCAGTCTTGAMLISYDPAKDARNVEERGLPFALVRDFEWSTALILEDDRFDYGECRYRAMGYIGDRLHVVVFTPRGDAVHVISFRKANKREVKNYDQETQSPGPT0027803_6807DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-BrnA-BrnTTOXIN-ANTITOXIN_SYSTEM,PGPT0027803-BrnT_toxin-K09803NANA
D1-35_00870309hypothetical proteinATGACCAAGAAACCCAGTCTTGAGAAGGTCGATACGGCAAACCCCGAATGGTCGACCGAGGACTTTGCCAAGGCCAAACCCGCCAGCGAGGTGCTTGTGGGGTTGTTTGGTGGAGCTCAGGCAAAGGAAATGCTCAAGCCGAAGCGTGGCCGGCCAAAGTCGGCAGCCACTAAAGAGCACGTCAATGTTCGTTTCGATGCCGACGTGCTGGAGAGATTCAGAGCTTCAGGGCCGGGCTGGCAAACAAGGATGAACGCCGCCTTGGCCGATTGGCTTAAGACGCATAAGCCAGAAGAACTGAAGGCTTAGMTKKPSLEKVDTANPEWSTEDFAKAKPASEVLVGLFGGAQAKEMLKPKRGRPKSAATKEHVNVRFDADVLERFRASGPGWQTRMNAALADWLKTHKPEELKAPGPT0027802_2057DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-BrnA-BrnT_TOXIN-ANTITOXIN_SYSTEM,PGPT0027802-BrnA_antitoxin-naNANA
D1-35_00871675hypothetical proteinATGAGCAAATGTGCAGTCGCGTTAGGTGGTGGGAGCTTCGTATTGGTGAAGCTCAAAGCCTCGCCTGTGGAATTCTTGAGCTTAGCGGAAGACGATTTTGAACGAGGCGGCCTGTCGGCCCTTATCAATGCAACAACTAATGTGAAGCGCGCAATTGTCTGTCAGCTTGACCAACTGCTGATCTCGTTTGGGTATCAGTCACTCAGATTGGATGTACCGGAAAAGATAAGGCGATTGAGAGCGCTTGGCTTACTGGCGCCGAGCCTTTTGCGTAAAGTGGTCAAAATGCGGAATATTCTTGAGCATGAATATGGACTCCCAGAGCTTAAATCAGTTGAGGAAGCGCTAGACATCGCAAGTCTGTTTGTAATGTCCGCTTCAGCTATGTTCATTCCTTTTGATGATGTCTTAGAATTTACGCTTCCTGACGGCTCAAACGGAGAAAGCCATCTAACGCATCTCACTGCAGGTTTAAATCGAGACTCTCGTGGTGTTTTCTATACTGTCTACGCATATGAGCCCGGCGGATATGGTGGGCGATGCGTTGGTCAATGTGAGATTAAATCAGGGCACGTGCTTTTCGAAGCGATGGTTAAGCTTTCTGCATCGTTGATGCTTCGCTACAAAGTCGAACAGGCTTTCAGTGATTTTGACAAGGCGTACACGCTGATATGAMSKCAVALGGGSFVLVKLKASPVEFLSLAEDDFERGGLSALINATTNVKRAIVCQLDQLLISFGYQSLRLDVPEKIRRLRALGLLAPSLLRKVVKMRNILEHEYGLPELKSVEEALDIASLFVMSASAMFIPFDDVLEFTLPDGSNGESHLTHLTAGLNRDSRGVFYTVYAYEPGGYGGRCVGQCEIKSGHVLFEAMVKLSASLMLRYKVEQAFSDFDKAYTLINANANANANA
D1-35_00872600ficCOG2184putative protein adenylyltransferase FicATGCCCGACAAATACGGCGTCGGCGAAGACGCCTATTGTTACCCGGGCTCCACGGTCCTGCGCAATAAACTCGATATCCGCGATGAACAGACCTTGAGCGAAGCCGAACAACAGCTCTCGGCCATCGCCGCGGGCAACGTCGAATTCAACCCTCCTCCCTACAACCTGGCTTATCTGCAGGATATTCATCGAGCGCTGTTCTCGGATTTGTTCGAATGGGCCGGAGCGCTGCGGACCGTTGGCATGGCCAAGCAAGCCACGCGTTTTTGCCAACCTGAATACATGGAAAAGGAAGCCAACAAGATATTCGCCAACCTGGCGGCGTCGAACTGGTTCGAGGGACTGAGCAGAACTGAACTGATCATCGCCGTGGCAGATGCCTATTCCGATATCAACATCATCCACCCATTCCGCGAAGGCAACGGCCGCGCCCAGCGCATCCTGTTCGAACACCTCATCATGAATGCCGGATTCGAGATCAGTTGGTGGGGGATCGATAAAGACGAATGGATCGACGCCAATATCGCGGCTTATAACTGTGTGCTGGGCCCCATGGAGGCGGTTTTTGAGAAGTGCATTGGGGAAATGATTCAGACCTGAMPDKYGVGEDAYCYPGSTVLRNKLDIRDEQTLSEAEQQLSAIAAGNVEFNPPPYNLAYLQDIHRALFSDLFEWAGALRTVGMAKQATRFCQPEYMEKEANKIFANLAASNWFEGLSRTELIIAVADAYSDINIIHPFREGNGRAQRILFEHLIMNAGFEISWWGIDKDEWIDANIAAYNCVLGPMEAVFEKCIGEMIQTNANANANANA
D1-35_00873171hypothetical proteinATGGGCACTGTCAGCCTGGAAACAAAAAAGGCCTACGCGGCCAGGACTCGCCGGTCCAACTACGCGGCCAGCCTGCGCCTGGAAGGGTTCAAGGTGTCTGCGCAAGACAGCGAAGACAAGCTGCCTTCCCGTGAGGAAGTCTTGAAGACCTTCACCAAGACTCGAGCCTGAMGTVSLETKKAYAARTRRSNYAASLRLEGFKVSAQDSEDKLPSREEVLKTFTKTRANANANANANA
D1-35_008741221hypothetical proteinATGCAGCTCATCGCCAAGCTCGGCATTCTTGCAGACGCCGCCAAATATGACGCGTCGTGTGCCAGCAGTGGGGCGCCCAAGCGCAGTTCGCGTGGTCGCGACGGGCTTGGGGCCACGGATGGCATGGGGATCTGCCATAGCTACACGCCGGATGGGCGCTGTGTCTCGCTGCTCAAGGTGCTGCTGACCAATTTCTGTCTGTACGACTGCCAGTATTGCGTCAACCGTCGTTCCAGCAACGTGCCGAGGGCGCGCTTTACGCCGGAGGAAGTGGTGCGGTTGACGTTGGATTTCTATCGTCGCAATTGTATCAGCGGGCTGTTCCTGAGTTCCGGCATCATTCGCTCGGCCGATTACACCATGGAGCAACTGGTTCGTGTGGCGCGCTTGCTGCGCGAGGAGCATCAATTCCGAGGCTACATTCACCTCAAGACCATTCCCGATGCCGATCCGCTATTGATCGAGGAGGCGGGTCGGCTAGCGGATCGCCTGAGTGTGAACATCGAACTGTCCTCCGAGGTGAGCCTCAAGCGCCTCGCGCCGGAAAAGCAATTGACCACGATTCGTCAGGCCATGGGCACCATCCATGACGGTCAGCAGGCGGTGGCTGGCGAGCCGCGGGCGCCGCGCTTTGCGCCGGCCGGGCAGAGCACCCAGGTGATCGTGGGAGCGGATGCCACCGACGACCATGCCATCCTGAGCAACGCCGAGTCGCTCTACCAGGGCTATGGTTTGCGGCGGGTCTACTATTCCGCCTTCAGTCCGATTCCCGACAGCCCAGCCAGTGTGCCGCTCGCCGCGCCGCCGTTACTGCGTGAGCATCGGCTGTATCAAGCCGACTTCCTGATGCGTGGCTACGGCTACAAGGCGGGCGAACTGTTGAACACGTCCAGCAACCTGGACCTGGACATCGACCCGAAACTGGCCTGGGCGCTGGCTAATCGCGATGTGTTTCCACTTGACCTCAACCGTGCCGAGCCGGCGCTGCTGGCGCGCATTCCCGGGATCGGCCTGCGTAGCGTGCAGCGCCTGGTGACGCTGCGCAGGGAGCGGCGGATTCGGTATGACGATCTGGTGCAGTTGCGCTGCGTGCTGGAAAAGGCCCGCCCGTTCATTGTGACCAGCGATTACCGGCCCGCTGACGCGCAAACGCGCAGCGGCTTGCTGCGGGCACGTTTGCGCGATCCGCAAAGGCCTGTGCAAATGGGGCTGTGGGGATGAMQLIAKLGILADAAKYDASCASSGAPKRSSRGRDGLGATDGMGICHSYTPDGRCVSLLKVLLTNFCLYDCQYCVNRRSSNVPRARFTPEEVVRLTLDFYRRNCISGLFLSSGIIRSADYTMEQLVRVARLLREEHQFRGYIHLKTIPDADPLLIEEAGRLADRLSVNIELSSEVSLKRLAPEKQLTTIRQAMGTIHDGQQAVAGEPRAPRFAPAGQSTQVIVGADATDDHAILSNAESLYQGYGLRRVYYSAFSPIPDSPASVPLAAPPLLREHRLYQADFLMRGYGYKAGELLNTSSNLDLDIDPKLAWALANRDVFPLDLNRAEPALLARIPGIGLRSVQRLVTLRRERRIRYDDLVQLRCVLEKARPFIVTSDYRPADAQTRSGLLRARLRDPQRPVQMGLWGNANANANANA
D1-35_00875852hypothetical proteinATGATCGCGCTGGATTGCGATGACGATTTCGCCATCTGGCGCGACCAAGCCCGGACGTTGCTTGGTCACGGAATAGACCCCTGTGACGTGACTTGGGCTCAGGGCCCCATGGCCGATCTGTTGGCAATGCCGACGCTATTGCCGCAAGGCCCGGGTCCGTTCCGCACTCGCGTCCCGGCAGCGTTGTTGAGCCAGTTGCAACAGGCCAGTCGTTATCACGGCGAACAGCGCTGGAACCTGTTGTACGAAGTGCTCTGGCGCGTAGCGCATGGCGACCGCACCGCCATGCTCGCGGGCGATCGCCTGGGTAGCGAGTTGCAACGGCGCATCAAGCAGGTCAGTCGCGAGGCTCATCACTTGCACGCCTTCGTGCGCTTCATTCCCTTGCCGCCAGCCGTGGCAGAACAATTGCAGTTGGACCTGGTGGCGTTCCACCAGCCGGCGCACGACATCCTCGAAAGCGCGAGCGGTCATTTTGCCGAGCGGCTCGGTCGGCAACGCTGGCTGATTGCAACGCCTCGCGACGGTATTCGTTTTGACGGCCAATCGCTGGATTACCAGCGCCACTGCCCCGCGCAATGGCAACAATGGGCCCGCCACGCCGAAGACCCCGGCGCCGAGTTGTGGCGCACCTATTACAGGCACATCTTCAACCCGGCGAGGCTCAACCCGACCGCGTTGCGCCAGCACATGCCCGGGCGGTTCTGGAAGCATTTGCCTGAAGGGGAATTGATTCCTTTACTGGTGGGGCAGGCGCGGCAGGGGAAGCAGAAGGATGGGCAGGCGTTGGAGGTGGGGGAGAAGATGGGTAAGCGGATTGTCGTAGGCGCTGCGGTAGGGGCACAGGGATAAMIALDCDDDFAIWRDQARTLLGHGIDPCDVTWAQGPMADLLAMPTLLPQGPGPFRTRVPAALLSQLQQASRYHGEQRWNLLYEVLWRVAHGDRTAMLAGDRLGSELQRRIKQVSREAHHLHAFVRFIPLPPAVAEQLQLDLVAFHQPAHDILESASGHFAERLGRQRWLIATPRDGIRFDGQSLDYQRHCPAQWQQWARHAEDPGAELWRTYYRHIFNPARLNPTALRQHMPGRFWKHLPEGELIPLLVGQARQGKQKDGQALEVGEKMGKRIVVGAAVGAQGNANANANANA
D1-35_00876918rhaS_3HTH-type transcriptional activator RhaSATGACCAGCCATGGCAAATCGCCGCAGAGGATGCTCGCGGACCTCATCGCTCCCCGGACCACAGAATCGGGAGACGTCGAAACGTCGATGCCTGGCCTCTGCCTTTTCCGGCGCGACGCCCCTGCCCCGCCCGCGACCTGCATGATCGAACCGAGCATCGTCCTCGTCGCCCAGGGGATGAAGCAGGTCTGGATTGGTGGCCAGGCGTATGGGTACGACACCGGGCGATTCCTGATGACTTCACTGGATATGCCGGCAAATTCCGAAGTGATGGTCGCAAGCCCGGAACAGCCATGCCTGGGCTTGGTGCTGCGGCTGGATTTGCGCATGGTTGCCGATCTGGTCGCCCAAGGCGGGCTGGCGCCGCGTCTTGAGCGCCCAGTCGGGATTGGTGCGGGAATCGGCACCAGCACAGCGGACTTCCTGGCGCCGTTCGTACGCCTGCTGGCATTGCTGGATGAACCCGAGGCGATCCCCATCCTGGCGCCGCTGATCCAGCGCGAGATCCATTACCGATTACTGATGAGCGACCAGGCGGCACGGCTGCGCCAGATCGCGTCCGTCGACAGCCAGGGCTACCGGATCGCCAAGGCCATCGACTGGCTGAAGTTGAACTACGCCGCGCCAATCCGCGTGGATGACCTGGCGGCGCGGGTGCAGATGAGCGCCCCGACCTTTCACCATCACTTCCGCCAACTCACGGCGATGAGCCCCCTGCAATACCAGAAGTGGCTGCGGCTGAACGAAGCAAAACGGCTGATGCTCAACGAACACCTGGACGTGGCCAACGCCGCCTACCGAGTGGGTTACGAAAGCCCCTCGCAATTCAGCCGCGAATACGCCCGCCTGTTCGGTGCGTCGCCCAAGCGGGACATTGCGGCGTTGCGCAGGCCGGCAAGTGCGAGCAAGGGTATCTGAMTSHGKSPQRMLADLIAPRTTESGDVETSMPGLCLFRRDAPAPPATCMIEPSIVLVAQGMKQVWIGGQAYGYDTGRFLMTSLDMPANSEVMVASPEQPCLGLVLRLDLRMVADLVAQGGLAPRLERPVGIGAGIGTSTADFLAPFVRLLALLDEPEAIPILAPLIQREIHYRLLMSDQAARLRQIASVDSQGYRIAKAIDWLKLNYAAPIRVDDLAARVQMSAPTFHHHFRQLTAMSPLQYQKWLRLNEAKRLMLNEHLDVANAAYRVGYESPSQFSREYARLFGASPKRDIAALRRPASASKGINANANANANA
D1-35_008771050yahKCOG1064Aldehyde reductase YahKATGCGTGTACAAGCCTACGGCGCCCACGCGGGCGACAAACCCCTTGAACCAATGCAAATCAATCGCCGCGCACCCGGCGCGCATGACGTGCAAATCGACATCGCCTTTTGTGGGATCTGCCACTCGGACCTGCACCAGGTGCGCGCGGAGTGGGCAGGCACTCAGTTCCCTTGCGTCCCTGGCCACGAAATCGTCGGCCGCGTGTCGGCGGTGGGCGCCCATGTTTCCGCGTTCAAGACCGGTGATCTGGTCGGCGTCGGCTGCATTGTCGACAGCTGCAAACACTGCGAGGACTGCGAAAGCGGCCTGGAAAACTACTGCGATGGCATGATCGGTACCTACAACTTCCCGACGCCGGATGAACCGGGCTGGACCCTGGGTGGCTACTCGCAGAATATCGTGGTGCATGAGCGTTATGTGCTGCGCATCCGTCACCCCGAAGAACAGCTGGCCGCCGTCGCGCCACTGCTTTGTGCAGGCATCACCACCTATTCGCCATTGCGTCACTGGAACGCCGGGCCGGGCAAGAAAGTCGGCGTGGTCGGTATCGGTGGCCTGGGGCACATGGGCATCAAGCTCGCTCACGCGATGGGCGCACACGTCGTGGCGTTTACCACTTCGGAATCCAAGCGCGAGGCCGCCCGGCAGTTGGGCGCCGATGAAGTCATCGTGTCGCGCAATGCTGATGAAATGGCCGCCCACGCCAAGAGCTTCGACTTCATCCTCAACACCGTGGCGGCGCCCCACGACCTCGACGTTTTCCTGGTATTGCTCAAGCGCGACGGCGCGATGACCCTGGTGGGCGCTCCGGCGACGCCTCATTCGTCGCCCAATGTCTTCAACTTGATCCTGAAGCGTCGAACCATTGCCGGCTCGATGATCGGTGGGATTGCCGAAACCCAGGAAATGCTGGATTTCTGCGCTGAGCACGGCATCGTTGCCGACATCGAGCTGGTTCGTGCCGATCAGATCAACGCGTCCTACGAGCGGATGCTCAAGGGCGACGTCAAGTATCGCTTCGTGATCGACAACGCTACGTTGGCCGGTTGAMRVQAYGAHAGDKPLEPMQINRRAPGAHDVQIDIAFCGICHSDLHQVRAEWAGTQFPCVPGHEIVGRVSAVGAHVSAFKTGDLVGVGCIVDSCKHCEDCESGLENYCDGMIGTYNFPTPDEPGWTLGGYSQNIVVHERYVLRIRHPEEQLAAVAPLLCAGITTYSPLRHWNAGPGKKVGVVGIGGLGHMGIKLAHAMGAHVVAFTTSESKREAARQLGADEVIVSRNADEMAAHAKSFDFILNTVAAPHDLDVFLVLLKRDGAMTLVGAPATPHSSPNVFNLILKRRTIAGSMIGGIAETQEMLDFCAEHGIVADIELVRADQINASYERMLKGDVKYRFVIDNATLAGPGPT0024430_1220DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_DEHYDROGENASE|DEHYDRATASE_ACTIVITY,PGPT0024430-yahK-K13979NANA
D1-35_008781233nepI_1COG2814Purine ribonucleoside efflux pump NepIATGACCCATACTTTATCGCCCACCCCGCAGGGTAAGCCTGCGTGGGGCGCGGTGCTTGCCATGTCGTTGGCTGCCTTCGCGCTGGTCGCCTCGGAATTCATGCCGGTCAGCCTGCTGACACCGGTAGCGGCGGACCTTCATGTCAGCGAAGGGCAGGCCGGCCAAGGCATCGCCGTCTCCGGCGCCTTCGCCCTGGTCACCAGCCTGTCCGTCGCCTCGATTGCCGCCCGGGTCGACCGCAAATGGCTGCTCTCGGCATTGACACTGCTGATGATCGTTTCCGGCACAGTGGCTGCGCTGGCCCCCGACTACGTGACGTTCATGGTCGGCCGCGCCTTGATCGGCGTTGCGATTGGCGGCTTCTGGTCGCTGTCGGCGGCTACGGCCATGCGCCTGGTGCCGGAGGACAAGGTCCCCCGCGCATTGGCCATCGTCAACGGCGGCAATGCCTTGGCGACGGTAGTCGCTGCGCCATTGGGCAGCTTCCTGGGGGCAATCATCGGTTGGCGTGGGGCGTTCTTCTGCATCGTCCCCGTCGCCGCGCTCGCCCTGGCGTGGTTGCTGTTGAGCCTGCCCTCGCTGCCCTCGCGGGTGAAGCAGGACAGCGGCAATCCTTTCAGACTGATGACCCAGGCACCGGTTGCGTTGGGCATGCTGGCCGTCAGCACGTTCTTCATGGGCCAGTTCATGTTGTTCACCTATCTGCGTCCCTTCCTCGAAACGGTGACGCAGGTGAGCGTGTCGCTGTTGTCGTTCATGTTGTTGGTGATTGGCCTGGCCGGTTTGCTCGGAACCTTCCTGATCGGTTCGTTCTTGAGGAGCGGGCTGTATCGGACCCTCATCGTCATCCCGTTGTTGATGGCTGCAATCGCTCTTGCGCTGGTTGCGTTCGGCGGGTCAGCGGTCATGACCGCGGTGCTGCTGGGCGTCTGGGGGCTGGTGGCAACGGCGGCGCCGGTTGGCTGGTGGACCTGGCTGGCCAGGACGTTGCCGGAAAATGCCGAGGCCGGCGGCGGATTGATGGTGGCGATCGTCCAGCTCGCCATTGCGTCTGGTGCCACGGTGGGTGGCGTCCTGTTCGACCTGAGCGGTTATCGGGCGACGTTTGAAACCAGCGCGGCCGTGTTGGTCGTTGCGGCGGTGCTGACCATGCTGGCGGCCCGTGCCGCGGCTCGCAAGTCTTCGCAAGCGTCGAGCGACGCGACATATGGCGCGGTGCGGGAGTCAACCTGAMTHTLSPTPQGKPAWGAVLAMSLAAFALVASEFMPVSLLTPVAADLHVSEGQAGQGIAVSGAFALVTSLSVASIAARVDRKWLLSALTLLMIVSGTVAALAPDYVTFMVGRALIGVAIGGFWSLSAATAMRLVPEDKVPRALAIVNGGNALATVVAAPLGSFLGAIIGWRGAFFCIVPVAALALAWLLLSLPSLPSRVKQDSGNPFRLMTQAPVALGMLAVSTFFMGQFMLFTYLRPFLETVTQVSVSLLSFMLLVIGLAGLLGTFLIGSFLRSGLYRTLIVIPLLMAAIALALVAFGGSAVMTAVLLGVWGLVATAAPVGWWTWLARTLPENAEAGGGLMVAIVQLAIASGATVGGVLFDLSGYRATFETSAAVLVVAAVLTMLAARAAARKSSQASSDATYGAVRESTPGPT0021090_142DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021090-nepI-K03445NANA
D1-35_00879276hypothetical proteinGTGTCTACTGAAAGAATTTCCCAATTGGAGCAGGCGCTCCTGGCGGTCATTGCGGCCGCGGGCAAGATGGGCGTCAGTTGTGATGAACTTTGCGCGCAGGCTGTGGGCGGGCTGGTGTCCGAGCGCTACTGGAGCTGGGCGGATGCCCAGCACGCTCAAGGCGCGGCTGACGAGATCGATAACGCCTTGGCAGTCCTGGTCGGCCGGTATACGGCTACGCCTGGCAATCCCGTGCAAAGTGGGCCCGATGCTGCATTTGAATCGGCTGCCGGCTGAMSTERISQLEQALLAVIAAAGKMGVSCDELCAQAVGGLVSERYWSWADAQHAQGAADEIDNALAVLVGRYTATPGNPVQSGPDAAFESAAGNANANANANA
D1-35_00880477hypothetical proteinATGAGCAAGGCAGACGAACTCGCGGCGAAGCTGAGGCAGGCCCAACGAACCCCAGCCGGCGTCGACAACTGCGCTGACCTGGCCATCGAACACTGGCCCGGCCAGGTCTACGATTTGTACCGTCAGATCGAAACGTGGCTCGCGCCGGTGTGCGAGGCGGGCCTGGTTATCCGGCGCAATCCGACCCACGTCTTCGAGCGCCACTCCAGCGGTTCGACGTACAACTACGCCATTGACCAATTGGTGATCGAGGGCAACCACCGGCGTATCTCGCTCGATCCGATCGCCCGCTTCTCCACCAGCGCAGAGGGATGCATCGAAATCCATATGCAAGGCGTGAAGCACTGCATCCTGCGCACCGTGGGCGAGCATGGCGAATCGCTTTGGCAGCTGCGGCCGGCCGGGCAACACACCGAACCCGTAGCGCTGGATGAAGATGCTCTTCTCTTGATCATCGAGGAAGGGTTGGGGCTTTAAMSKADELAAKLRQAQRTPAGVDNCADLAIEHWPGQVYDLYRQIETWLAPVCEAGLVIRRNPTHVFERHSSGSTYNYAIDQLVIEGNHRRISLDPIARFSTSAEGCIEIHMQGVKHCILRTVGEHGESLWQLRPAGQHTEPVALDEDALLLIIEEGLGLNANANANANA
D1-35_00881288hypothetical proteinATGAGCAGATTTTTCGATGAGCTGATGGAAAGCGTGCAACAGATGGATGAGATTGTCCGAGGAGAGCGTCAGCCGTCCCGGGAATTCATCGTCGATGCGCTGCAGGTGAAGGAGATACGAAAAGCCACCGGCCTGACCCAAGCCAAGTTTGCAGCATTGATCGACGTTCAGTTGGGCACGCTACGCAATTGGGAGCAAGGGCGGCGCGAGCCAACCGGTCCCGCGAAAGCTCTGTTGCGCGCCATTCATAACGACCCTGAACACGTCATCAATGCCCTCGCCATATAGMSRFFDELMESVQQMDEIVRGERQPSREFIVDALQVKEIRKATGLTQAKFAALIDVQLGTLRNWEQGRREPTGPAKALLRAIHNDPEHVINALAINANANANANA
D1-35_008821278hypothetical proteinATGCCCGGGGCCGCTGACGGCAAGAAAATTGAACGGGCCTCTGCCATCTGCGAACTAACCAAGTTCATGGCCCGGCCGGTGCGGCCAGGGCACAACCTGAACAGAAATGGCACAGGTGATCCATCCATGGACTCAAGCTCCCTCGATATTTTTACCGACACCCAGGTACTGGGCATTTCCATCGCCAATTGGCTGCTGGCACTGAGCGTGATGACGGTGAGCTTCATCATCGCCAGGGCTGGCGTCGGTTTTCTGTTGAAAAACGTGCGTGCCCGGGCACAAAAACCCGACGCTTATGTCAGCCACATCGCCGTCGAAGTACTGTCCAGTACCAGCAATACCTTGTTATTGCTGGCCTCGATCCTGATCGGCGTTGGCGTACTGGACTTGCCGGAACGCTGGCTGAGTCGAGTCAGCAGCCTCTGGTTCGTGGTGGCGGCCCTGCAAGTGGGATTATGGGCAAACCGAGCGATCGCCCTGGCGCTGATGCATTATTTCGCCCGCCACAGCCACTCCGACATCCATCAGAAAAGCGCCTTGGCCACCCTGAGCCTGTGGGGTGCGAAAGTATTTCTCTGGGCGGTGGTGCTCCTGGCGATGCTTTCCAACCTGGGCGTGAACATCACGGCGTTCGTTGCGAGCCTCGGCGTGGGCGGCATCGCCGTGGCGCTCGCGGTGCAGAATATCCTCGGGGACCTGTTCGCTTCGCTGTCGATTGCCGTGGACAAACCTTTCGAAGTCGGCGACTTCATCGTCGTCGGCTCCCTGGCCGGGACCGTGGAACATGTCGGCCTGAAGACCACGCGAATCCGCAGCCTGGGTGGCGAGCAAATCGTCATGGCGAACGCCGGCATGATCAGCACCACCATCCAGAACTACAAACGCCTCCAGGAGCGCCGGATCGTCTTCGAATTCGCCCTGCCCCAGGAATGCTCGACAGAACAACTGCGGCAAGTGCCGGTCATCGTCGAAAAGATCATCAAGGCCCAGGAAAAAACCCGCTTCGACCGCGCGCATTTTCGTGGTTTCGGCGAAAGCGCACTGGAGTTCGAAACGGTCTATATCGTGCTGGACCCCAGCTACAACGTCTACATGGACATCCAGCAGGCGATCAACCTGGGCATGATGGAAGAGTTCGCCACGATCGGCGTGCGCTTCGCCATGCCGTCGCGCGCGGTGCATGTGGCTTCGTTGCCGGATGCGGTGGAGCGGATGGCCAGCAGAGGCAACGAGAGGCCCCCCACGCAAAGCGCTCCCTCGTTTCGGGCGCAACACTGAMPGAADGKKIERASAICELTKFMARPVRPGHNLNRNGTGDPSMDSSSLDIFTDTQVLGISIANWLLALSVMTVSFIIARAGVGFLLKNVRARAQKPDAYVSHIAVEVLSSTSNTLLLLASILIGVGVLDLPERWLSRVSSLWFVVAALQVGLWANRAIALALMHYFARHSHSDIHQKSALATLSLWGAKVFLWAVVLLAMLSNLGVNITAFVASLGVGGIAVALAVQNILGDLFASLSIAVDKPFEVGDFIVVGSLAGTVEHVGLKTTRIRSLGGEQIVMANAGMISTTIQNYKRLQERRIVFEFALPQECSTEQLRQVPVIVEKIIKAQEKTRFDRAHFRGFGESALEFETVYIVLDPSYNVYMDIQQAINLGMMEEFATIGVRFAMPSRAVHVASLPDAVERMASRGNERPPTQSAPSFRAQHNANANANANA
D1-35_008831359chrA1Chromate transport proteinATGAGCACTCCGAACCCGAGCACTGTAGAACAGGTACAGACCAGACCGTCGACCGTCAGCCTGCGAGAGGCCTTCTGGTTCTGGCTGAAACTGGGTTTCATCAGCTTCGGCGGACCGGCGGGCCAGATCTCGATCATGCACCAGGAATTGGTGGAGCGTCGGCGCTGGATCTCCGAGCGTCGCTTCCTCCACGCCTTGAACTACTGCATGCTGCTGCCCGGCCCCGAGGCCCAGCAACTGGCGACGTACCTGGGCTGGCTGATGCATCGAACCTGGGGCGGAGTAATCGCCGGGGCGTTGTTTGTCCTGCCCTCGCTGTTCATTCTCATCACATTATCCTGGCTATACGTCGCCTTTGGCGAAGTGCCGGTGGTGGCCGGCATTTTTTATGGCATCAAGCCCGCCGTGACGGCGATCGTCGTGCATGCCGCGCACCGGATAGGCTCGCGCGCGCTCAAGAACAACTGGCTGTGGGCAATCGCCGCCGCGTCGTTTACGGCGATCTTCGCCTTCAACGTACCGTTCCCGCTAATCGTACTGGGGGCGGCGGTCGTCGGTTACTTCGGCGGTCGCTGGGCACCGGCAAAGTTCAGCCTGGGCGGCCACGATGCCAGGCACAAGTCGTTCGGCCCGGCCCTGATCGATGACGATACACCGACCCCGGAACACGCTCGTTTCAGTGCCACCCGCCTGGCCCGACTGCTGATCGTCGGGGCGCTGCTGTGGATTCTGCCGATAGGCCTGTTGACCGCGATGTTTGGTTGGGAAGGAACCTTGACGCAGATGGCCTGGTTCTTTACCAAGGCGGCACTGCTGACTTTCGGCGGCGCCTATGCGGTTCTGCCCTACGTATATCAAGGCGCCGTCGGACATTTCGGCTGGCTGACACCGACCCAGATGATTGACGGCCTGGCCCTGGGCGAAACCACTCCGGGACCGCTGATCATGGTAGTCGCGTTCGTCGGTTTCGTCGGGGGTTACGTGACGCAGGTGTTCGGCCCCGAACAGGCGTTTCTGGCGGGCGCGGTTGCGGCCACGCTGGTGACCTGGTTCACCTTCCTGCCCTCGTTCCTGTTCATCCTGGCCGGCGGTCCGCTGGTGGAATCGACCCATGACGAGTTGAAATTCACCGCGCCGCTCACAGCGATCACCGCGGCGGTGGTGGGGGTGATTCTCAACCTCGCCTGCTTCTTTGGTTATCACGTGCTCTGGCCCAAGGGCTTACACGCAGCACTGGACTGGCCATCGGCAATTCTTGCAGTCGCGGCGTTCATTGCATTGTTCCGCTATAAACGCGGCGTCATCCAGGTGTTGCTGGCCTGCGGCCTGGCCGGGCTGGCGGTGCATCTGCTGCGCTAAMSTPNPSTVEQVQTRPSTVSLREAFWFWLKLGFISFGGPAGQISIMHQELVERRRWISERRFLHALNYCMLLPGPEAQQLATYLGWLMHRTWGGVIAGALFVLPSLFILITLSWLYVAFGEVPVVAGIFYGIKPAVTAIVVHAAHRIGSRALKNNWLWAIAAASFTAIFAFNVPFPLIVLGAAVVGYFGGRWAPAKFSLGGHDARHKSFGPALIDDDTPTPEHARFSATRLARLLIVGALLWILPIGLLTAMFGWEGTLTQMAWFFTKAALLTFGGAYAVLPYVYQGAVGHFGWLTPTQMIDGLALGETTPGPLIMVVAFVGFVGGYVTQVFGPEQAFLAGAVAATLVTWFTFLPSFLFILAGGPLVESTHDELKFTAPLTAITAAVVGVILNLACFFGYHVLWPKGLHAALDWPSAILAVAAFIALFRYKRGVIQVLLACGLAGLAVHLLRNANANANANA
D1-35_008841572hypothetical proteinTTGCCTATCCCCATCAACGATCCGCTCCATGCGCCCGGCGGCACCCTCAAGCGCCTGCCATTGCTCAAGGCTGCGGTGGCGTTTATTGCGGCGGTTTGCCTGTGCCTCTGCGGTTTGCTCTATCTGCAACTGGAGCAATCTCGTCGTCACGACCTGGAGTCGGCGCGGATTGCTTCGGCCAACCTTACCCGTGCCATGGCCCAGCAGGCCCAGGATACTTTCCTGCAGGCCGATCTCGTGCTCGGCAGCCTGGCAGACGGGATCCAGATCGATGGCTACGGCCCGGCCGTGCGCGCGCGCCTGCAACAGACATTCGCCCGGCGCGTGCAGTCTCTGGAACAACTGCATGGCCTGTTTCTGTTCGACAAGAGCGGCCAGTGGATCATCACCTCGTTTGAAAAGCTGCACCGGGGATCCGGTATCGCGGATCGCGAGTATTTCCAGTTTCACCAGGAGAATGCCTCGCTCGTCGCCCATATCGGCCCGGCGATCCGCAGCCGGCAGAACGGCGAATGGATCATCCCCGTTTCCCGTCGGCTGAATGACCGCAAAGGCAATTTCCAGGGCGTGCTGATGGCCGGGATCAAGATGTCGTATTTCGACCAGTTCCTGAAGAGTTTCAATCTCGATGACCAAGGCGAGATGGCCCTGGCGTTGTCCGATGGGACTTTGCTGGCGCGCCGGCCCTTCGACGAGGCGCTGATTGGTGCGTCCATGGCGCGGCATCATATTTTCCAGCACGATCCGGTGGTGGGGGCTTCCGGCGATGAGATGATCCGCTCCGACACCGATAATATCGTCAGGCTCTATGGCCATCGGCATCTGCAAGCCTACCCACTGGTGGTCGTTGCCGCGATGTCCGAATCAGCGATCCTGGCGGGCTGGTATGACCGGGCGGTGCAATCGAGCCTGATCGTGGCCTTGGTGGTGCTGGGTATCTGTCTGTTTGGCTGGGTTTTCGTGCATCAGGTGCGTAACAGCGAGCGGATTGAAGCGGACCTGCGCAAGGCCCAGCAAGCGCTGGAGCTGATCGCCACTCATGACAGCCTGACCGGGCTGGCAAACCGCCGGCTGTTCGAGCGGGCCCTGGGCATCGAGTTCGGCCGAGGCGCCCGCCAGCGCAGCCCCCTGAGCCTGATCATGCTCGACATCGATTTTTTCAAGCGCTACAACGATACCTACGGGCATGTCGCGGGTGATCATTGCCTGGCGGAGGTCGCGAAGGTGCTCAAGGACTGCTGTCATCGCAAGGCCGACCTGGCGGTGCGTTTTGGTGGCGAAGAGTTTGCTGTCCTGCTGCCCGATACCAACCTGCACGGCGCCATGGCATTGGCCGAACAGATCCGCCGCCGCGTCATCGACAGGCAGATTACCCATTCGGCTGCCCCCTCCGGCTACCTGACGGTGAGCCTGGGTTGTCATGCCTTCGTGCCCAGCAGCCTGGACAGTACGGAAGTCTTCATCCAGCGAGCCGATGCGGCGCTGTATCAGGCCAAACACAGCGGTCGCAACTGTGTCGCGGCGTTGTCCAGGGAAGACGCGTTCGATGCGCTGGAGCGTTCCGATCGCTGAMPIPINDPLHAPGGTLKRLPLLKAAVAFIAAVCLCLCGLLYLQLEQSRRHDLESARIASANLTRAMAQQAQDTFLQADLVLGSLADGIQIDGYGPAVRARLQQTFARRVQSLEQLHGLFLFDKSGQWIITSFEKLHRGSGIADREYFQFHQENASLVAHIGPAIRSRQNGEWIIPVSRRLNDRKGNFQGVLMAGIKMSYFDQFLKSFNLDDQGEMALALSDGTLLARRPFDEALIGASMARHHIFQHDPVVGASGDEMIRSDTDNIVRLYGHRHLQAYPLVVVAAMSESAILAGWYDRAVQSSLIVALVVLGICLFGWVFVHQVRNSERIEADLRKAQQALELIATHDSLTGLANRRLFERALGIEFGRGARQRSPLSLIMLDIDFFKRYNDTYGHVAGDHCLAEVAKVLKDCCHRKADLAVRFGGEEFAVLLPDTNLHGAMALAEQIRRRVIDRQITHSAAPSGYLTVSLGCHAFVPSSLDSTEVFIQRADAALYQAKHSGRNCVAALSREDAFDALERSDRNANANANANA
D1-35_008852577hypothetical proteinATGGACACCGCTGCCGATATCCCCCCTGACGTCACGCGTCACACGCCGATTACCCGTCGCCTGGTGGTGGCGGTCGGCGTGCTGTTCGTAATGGGTGTCCTGATGGCTGTCGCCGCGCTGTTCAACATTGCGCAAAAGCTGGACGCGGACGACGTGGGCAAGACCCACTTCTACATCGAGCGCGCGCTCGAGAATCGCATCACCGCGTCGAAAAACTACATGGCCAGTTACGCCTACTGGACCACCGGCTATGAGCGTCTTAACGGCGAGGTCGATGTGCAATGGGCCTATGCCGAACAGAACATCGGCAAGACCCTGTTCACCAACGATGAATACGAAGGGGTGTTCGTCATCGACCGTGAACGCACCAAATATGCGGTGGTGCGGGGACAAAATGTCCAGGCAGAGGCGACAGCCTACATCGATACACCGCTGAGGGACCTTGTCGATCAGCTCCAGGCGCAACCGGACCTGACCAGGCCCATGATCCGCTACACCTTGTTCGACGGCTGGCCGGCCATCGTCACGGCTTCGGTGATCCTGCCCAACGACGAACGTCCTCAGGTCGAGGCCAAGGGGACGTCGGTGCTGCTTTTTGTCGACCAGCTGACGCCGGTCAAGCTTCGCAAGGTAGGCAAGAGCTACGGCCTGAACGAGTTGAACCTGGTGAAAGATACGGCGCTGGCGCCCGGTCAGCCAGCCGTACCGCTGGATAGCACCGGTTACAGCCTGGTATCCCGACTGGAGCGGCCAGGCCACCAATTGTTGTGGTCCCTGGTTCCGCCATTGGGCGGGGCGTTGCTGATCCTGGCGTTGCTCACCGCTTATTTTTTCCGCTATGCCATGCGTACCGCTCGACAGGTGGACGCCAGCTACGACAGCCTGGAAACCTCAAAGCAGGCGCTCCAGGCGAGCGAAGAGCGCTTCCGTGCCGTGGCGGAGGCGGCGTCGGACTGGATATGGGAAATCGACAGCCAGCAGCGCATCACCTATCTGTCGGGGCGCTTCAACACCGTTACCGGTTTTTCCGATCAGCAATGGCTGGGACAGGACATCGAACAGTTGCTGTATTGCGACACCACGCCGATTGCCTTGTGGCTGGGCAAACTGGTCGAAGAACAGAATGCCAGCAACCTGCGGTGTTCCTACCGCGACCATTCCGGACAGTTGCGATTTTGTCGGGTATCGGCGCGGCCGATCTATGACAAGGCCTTGGTAACGGGCTATCGCGGCACCGCCAGCGACATCACCGATGAAGTTGCCGCCCACGCCCAGGTCCAGCATCTGTCGATGCACGATGCGCTGACCGGCCTGCCGAATCGAAACAAGTTGGCCCGGCACCTGGACGATGCATTGCTTGCCAAGGAGCATTCCGTACCGCTGGCCTTGCTGATGGTGGATCTGGATAACTTCAAGCCGATCAACGATTCACTGGGCCACCCGGCTGGCGATGCGGTGCTGCTGGAAGTGGCCCAGCGCCTGCGCGACTGCACCCGAGAGCACGATCTGGTGGCGCGCCTGGGTGGGGATGAGTTCGTGGTGGTGCTCAGCGGAGTGGAGCACTCCACTGAAATCGACCGGTTTTGTGCACGGCTGATCGACAGCCTGCAGCAACCGATCCATTACGAGACCCATTCGTTGCACATTGGCGCCAGCATCGGCATTGCCGTAAGCCGGCGCCAAGGTTATGTGCCGGGCGAGTTGATCCGTTGTGCCGACATCGCCCTGTACCAGGCCAAATCCGAGGGCAAGAAGACCTGGTGCTACTTCGCCTCGCACATGAACGATCAGATCCAGCATCGTCGCCAGCTGGAAAGCGACCTTCGCCAGGCATTGAAGAAAAATGAGTTCGTCCTGCATTTTCAGCCTCGCTATACCGTGGATGGCAAGACCATCGTCGCTGTCGAGGCGCTGGTCCGTTGGCAACATCCGACCCAAGGCTTGCTGGGGCCCGACGCGTTTATCCCGCTGGCCGAGCAAACCGACCTGATTGTCCCGCTTGGGCGTTGGGTGTTACGCGAGGCCTGCGAAACCGCGTTGACCTGGCCGGGCGAGCTGATGGTCTCGGTCAACCTCTCGCCTGCGCAATTCGAACGCAGCGATGTGGTCGAGGACGTGCGCCAGGTATTGATCGAAACCCACTTCCCGGCGAGTCGCCTGGAGCTGGAAATCACCGAGAACGTCATGCTGAACGATGTGGACGGTGCGCTCCAGGTCATGAATGCGCTCAAGGAACTGGGGGTGCGCCTGAACATGGACGATTTTGGTACCGGCTATTCGTCGCTCGGTTATTTGCGCACCTATCCGTTTGATGGCATCAAGATCGACAAGCGCTTCATCGCCTCCATGAGCAACAGCAGCAACGACCGCGCCGTGGTCCAGGCGATCATCAACCTGGGCAAGGCCATGGGCCTGACGGTCACCGCCGAAGGTGTCGAAACCCTGGCCCAACTGGGCACGCTGGGTTCGGATGAATGCCACGAGGTGCAAGGCTATTTTCTCAGCCGCCCCATCGACAAGCAGGCGTTCGCGCATCTGCTGGAGAGCGCCCCGCCCCTGTCGAAAACCGGCTCCTGAMDTAADIPPDVTRHTPITRRLVVAVGVLFVMGVLMAVAALFNIAQKLDADDVGKTHFYIERALENRITASKNYMASYAYWTTGYERLNGEVDVQWAYAEQNIGKTLFTNDEYEGVFVIDRERTKYAVVRGQNVQAEATAYIDTPLRDLVDQLQAQPDLTRPMIRYTLFDGWPAIVTASVILPNDERPQVEAKGTSVLLFVDQLTPVKLRKVGKSYGLNELNLVKDTALAPGQPAVPLDSTGYSLVSRLERPGHQLLWSLVPPLGGALLILALLTAYFFRYAMRTARQVDASYDSLETSKQALQASEERFRAVAEAASDWIWEIDSQQRITYLSGRFNTVTGFSDQQWLGQDIEQLLYCDTTPIALWLGKLVEEQNASNLRCSYRDHSGQLRFCRVSARPIYDKALVTGYRGTASDITDEVAAHAQVQHLSMHDALTGLPNRNKLARHLDDALLAKEHSVPLALLMVDLDNFKPINDSLGHPAGDAVLLEVAQRLRDCTREHDLVARLGGDEFVVVLSGVEHSTEIDRFCARLIDSLQQPIHYETHSLHIGASIGIAVSRRQGYVPGELIRCADIALYQAKSEGKKTWCYFASHMNDQIQHRRQLESDLRQALKKNEFVLHFQPRYTVDGKTIVAVEALVRWQHPTQGLLGPDAFIPLAEQTDLIVPLGRWVLREACETALTWPGELMVSVNLSPAQFERSDVVEDVRQVLIETHFPASRLELEITENVMLNDVDGALQVMNALKELGVRLNMDDFGTGYSSLGYLRTYPFDGIKIDKRFIASMSNSSNDRAVVQAIINLGKAMGLTVTAEGVETLAQLGTLGSDECHEVQGYFLSRPIDKQAFAHLLESAPPLSKTGSPGPT0023624_1186DIRECT 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
D1-35_00886795xthA_1COG0708Exodeoxyribonuclease IIIATGAAAAAGCTGCGAATCGCGACCTTCAATATCAACGGTATCCGGGCTCGGCTGCCCAACCTGCTGGAGTGGCTGGAGCGGGAGAAACCCGACATCGCCTGCTTGCAGGAGTTGAAGGCTGCCGATAAGGATTTCCCGGCGGCGGAGCTTGAGTCGGCCGGGTACGGGTCGATCTGGCACGGCCAGGCTTCCTGGAATGGCGTCGCGATCCTGGCCCGCGATGCGCAACCGCTGGAAAGTCGGCGCGGCCTGCCGGGCGGAGAGGAAGACAATCACAGTCGGTATATCGAGGCAGCCGTGCATGGCGTCCTGGTAGGTTGCCTTTATCTGCCCAACGGCAATCCGCAGCCGGGTCCGAAGTTCGACTACAAGCTGGCATGGTTCGAGCGGCTGATCGATTATGCCCAGGGACTACAAGCCAGCGATCACCCGGTGGTGCTGGCGGGCGACTACAATGTCGTGCCCACCGACTTCGACATCTACAACCCACGCTCCTGGCTCAAGGATGCCCTGTTGCAGCCGGAAAGCCGCGAGCGATACCAGCGCCTGCTGGACCAGGGCTGGACGGATGCGTTGCGTCATCTCTACCCGGAGGAACGGATCTATACGTTCTGGGACTATTTCCGCCAGCACTGGCAAAAAAACTCCGGGCTACGTATCGACCACCTGTTGCTCAACCCCGTCGCCAGTGCCTACCTGAGCGAGGCGGGGGTGGATGCCTGGGTCAGAAACCAGCCACACCCCAGCGACCATGCCCCGACCTGGATTCGTCTGTCTTCGCGCAAGCGCCGTTGAMKKLRIATFNINGIRARLPNLLEWLEREKPDIACLQELKAADKDFPAAELESAGYGSIWHGQASWNGVAILARDAQPLESRRGLPGGEEDNHSRYIEAAVHGVLVGCLYLPNGNPQPGPKFDYKLAWFERLIDYAQGLQASDHPVVLAGDYNVVPTDFDIYNPRSWLKDALLQPESRERYQRLLDQGWTDALRHLYPEERIYTFWDYFRQHWQKNSGLRIDHLLLNPVASAYLSEAGVDAWVRNQPHPSDHAPTWIRLSSRKRRPGPT0014910_15DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014910-ligD-K01971NANA
D1-35_00887828natCOG2162Arylamine N-acetyltransferaseATGAACCCACCTCGACTGAGTGATTGCGCTCGTTATCTGCGGCGCCTGGGCTTCGACACGGCACCACCCCCGACGCTCGATTCGTTGCGCCAGTTGCAGTGGCGTCATACGGCCGAGTTCCCTTTCGAAACCCTTGCGACGCTGCTGGGGCAGCCGGTGCCGATCGACCTTGAGTCGGTGGAACGAAAAATCTTCGAGCAAGGGCGCGGCGGTTATTGCTACGAGCTCAATCAGCTATTCCTGGCCCTTTTGCAGGACCTGGGCTTCGAGGCCCGCGGCATTACCGGGCGAGTAGTGATGAACGCACCTGAAGGCGCCTGGACCGCACGCACCCATCGCTTGAGCCTGGTGACGCTTGACGGCGTGCGCTATGTAACCGACGTCGGCTTCGGTGGCATGGTGCCGACCGCGCCACTGTTGCTGGACAGTCGCGAGGTCCAGGCCACTCCTCACGAGCCATACCGCATCGAGACCACTGAAGACGGCTACATGCTGCGCGCCAACATAGGGGGCGAATGGCGGCCGATGTACCTGTTCGACCTGCAGCGCCAGGAAGAGATCGATTACATCGTCGGCAATTGGTACGTCTGCAGTCATCCGGATTCCCCGTTCAAGGACCGGTTGATGGTCGCCCGCACGGGTGACGGTTTGCGCAAGACCCTCAACGGCAACAGCTATGCCGTGCACCAGATCGGGCAGGAAAGTGAGCGACGCACAATCATGGACGTCGACGAGTTGATCGACCTGCTGGAGACGGAGTTCGGGCTGCGGGTGCCGCCACGGGAACTGCTGCGGCCGGCGCTGGAAGGGCTGATAGCGCGAAGTTGAMNPPRLSDCARYLRRLGFDTAPPPTLDSLRQLQWRHTAEFPFETLATLLGQPVPIDLESVERKIFEQGRGGYCYELNQLFLALLQDLGFEARGITGRVVMNAPEGAWTARTHRLSLVTLDGVRYVTDVGFGGMVPTAPLLLDSREVQATPHEPYRIETTEDGYMLRANIGGEWRPMYLFDLQRQEEIDYIVGNWYVCSHPDSPFKDRLMVARTGDGLRKTLNGNSYAVHQIGQESERRTIMDVDELIDLLETEFGLRVPPRELLRPALEGLIARSPGPT0019890_711DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_NITRO-|AMINOBENZOATE_DEGRADATION,PGPT0019890-nhoA|yddI-K00675NANA
D1-35_008881521uacTCOG2233Uric acid transporter UacTATGAAAACGCCCCATGTTTCACTCCCACGGCCCGAGGACGAAAACCTTGGCGTCGGCGCGAATATGGCTTACGGCCTACAACATGTGTTGACCATGTACGGCGGCATCGTCGCGGTGCCCTTGATCATCGGCCAGGCGGCCGGCTTGTCGCCGGCGGACATCGGTCTGCTGATCGCCGCGTCATTGTTCGCGGGAGGGCTGGCGACGTTGCTGCAAACGCTTGGCTTGCCGTTCTTTGGCTGCCAGTTGCCGCTGGTGCAGGGCGTTTCGTTCTCCGGCGTCGCGACCATGGTGGCGATCGTTGGAACCGGCGGGGAAGGGGGCTTCCAGGCCATCCTTGGTGCGGTAATCGCGGCGTCCCTGATCGGCTTGTTGATCACTCCAGTATTCTCGCGCATTACCCGGTTCTTCCCGCCGCTGGTCACCGGCATCGTCATCACCACCATAGGCCTGACGCTGATGCCGGTGGCGGCGCGCTGGGCCATGGGCGGCAACAGCCACGCCGCGGATTTCGGCAGCATGGCGAACATCGGCCTGGCTGCGCTGACCCTGGTACTGGTGCTGGTACTGAGCAAAATGGGTAGTGCGACGATTTCACGCCTGTCGATCCTGCTGGCGATGGTCATCGGCACCGTCATCGCGGTATTCCTCGGCATGGCGGATTTTTCGTCCGTCAGTGAAGGCCCGATGTTCGGGTTTCCAACGCCGTTCCACTTCGGCATGCCGACTTTCCATATCGCGGCGATCCTGTCGATGTGCATCGTGATCATGGTGACGCTGGTGGAAACCTCCGCTGACATCCTGGCGGTGGGGGAAATCATCGACACCAAGGTCGATTCCCGCCGTCTGGGCAATGGTCTGCGAGCCGATATGCTGTCGAGCATGATCGCCCCGATCTTTGGCTCCTTCACCCAGAGTGCCTTTGCCCAGAACGTCGGGCTGGTGGCGGTGACCGGTATCAAGAGCCGTTTTGTCGTGGCAACTGGCGGGATATTCCTGGTGGTGCTCGGGCTGCTGCCGTTCATGGGGCGGGTGATCGCCGCCGTGCCGACCTCGGTGCTCGGTGGTGCTGGTATCGTGCTGTTCGGTACGGTTGCCGCCAGTGGTATCCGAACCCTGTCGAAGGTTGACTACCGCAACAATGTCAACCTGATCATCGTCGCCACTTCCATTGGCTTCGGCATGATCCCGATCGCCGCACCGAACTTCTACGACCATTTCCCCAGCTGGTTCGCGACGATCTTCCATTCGGGGATCAGTTCTTCGGCAATCATGGCAATTATCCTGAACCTGGCGTTCAACCATTTCACCACCGGCAACTCCGACCAGCAGTCAGTTTTTGCCGCCGGTACCGAGCGGGTGCTGCGCTACCAGGACCTGGCTGCATTGCGTGAAGGCGATTATTTCAGCGACGGAAAATTGCATGACTGCGACGGCAACGAGATTCCAGTGGTGGCGGAACCCGCCCACTCGCCGGGAGAGCACGGCCCGGTGCGGCTGAAGAGCAGCGAGCACGTCTGAMKTPHVSLPRPEDENLGVGANMAYGLQHVLTMYGGIVAVPLIIGQAAGLSPADIGLLIAASLFAGGLATLLQTLGLPFFGCQLPLVQGVSFSGVATMVAIVGTGGEGGFQAILGAVIAASLIGLLITPVFSRITRFFPPLVTGIVITTIGLTLMPVAARWAMGGNSHAADFGSMANIGLAALTLVLVLVLSKMGSATISRLSILLAMVIGTVIAVFLGMADFSSVSEGPMFGFPTPFHFGMPTFHIAAILSMCIVIMVTLVETSADILAVGEIIDTKVDSRRLGNGLRADMLSSMIAPIFGSFTQSAFAQNVGLVAVTGIKSRFVVATGGIFLVVLGLLPFMGRVIAAVPTSVLGGAGIVLFGTVAASGIRTLSKVDYRNNVNLIIVATSIGFGMIPIAAPNFYDHFPSWFATIFHSGISSSAIMAIILNLAFNHFTTGNSDQQSVFAAGTERVLRYQDLAALREGDYFSDGKLHDCDGNEIPVVAEPAHSPGEHGPVRLKSSEHVPGPT0007330_81DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-XANTHINE_METABOLISMPHYTOHORMONE-XANTHINE_TRANSPORT,PGPT0007330-pubX-K16169NANA
D1-35_00889369hypothetical proteinATGAAACGCAAACTTCCCATTATCGCCCTGCTCGTGGGGGCACTCGCGGCCACCGGCCAGGCATCCGCCCATGGTCGCGGTGGTTGGGAGGGTCCCGCGGTGTTTGGTGCAATCGTCGGCTCGGCCATTGTCGGCTCCGCGCTCATCAGCCGCGACCGACCGGTTTATGTCCAGCAACCGGTGTATGTCCAGCCACAACCGGTCTACGTGCAACAACCTGTCTATGTGCAGCAACCGCCACCGGTCTATTACGCGCCGCAACCGGTATACATCGAGCGCCCTGTCTACTATCGCCCGGCGCCGGTGTATTACGGGCCACCACGGGGCTTTTACGATGGCCCGCCGCGCGGCCATTACGGTCGCTGGTAGMKRKLPIIALLVGALAATGQASAHGRGGWEGPAVFGAIVGSAIVGSALISRDRPVYVQQPVYVQPQPVYVQQPVYVQQPPPVYYAPQPVYIERPVYYRPAPVYYGPPRGFYDGPPRGHYGRWNANANANANA
D1-35_00890819sdhLCOG0169Shikimate dehydrogenase-like proteinATGCAGATGAACCCCAACAAAGATACCCAGCTGTGCATGTCACTATCGGGGCGCCCGGGCAACTTCGGCCTGCGCTTTCATAATCACCTCTATGAACAACTGGGCCTGAATTTCTACTACAAGGCGTTCAGCAGTCGCGACCTGCCGGGTGCGGTGCGCGGAATTCGCGCCCTGGGCATCCGTGGGTGTGGCGTGTCGATGCCGTTCAAGGAGGCCTGCATCGCCCTGGTCGATGAGTTGGACCCTTCCGCCGCCGCGATCCAGTCGATTAACACCATCGTCAACACTGACGGCCATTTGAAGGCCTACAACACCGACTATATTGCCGTCGCCCAATTGCTGCAGACCCACGCCGTACCCAAGGATTCGACTTTCGCCCTGCGTGGCAGCGGCGGCATGGCCAAGGCGGTCGCCAGTGCCTTGCGCAATGGCGGCTATAAAAATGGCCTGATCGTCGCCCGCAACGAAACCACCGGCCGAGCCCTGGCCGACTCCCTGGGATACGAATGGCAAGCCGAGCTGGGCGATCGCCGGCCACAAATGCTGATCAACGTGACGCCGATCGGCATGGCCGGCGGTCCTGAAGCGGGCCACCTGGCGTTCGAGCCCGATGCCCTCGTGGCAGCCGAGACGGTATTCGACGTGGTGGCGATTCCATCGGAAACGCCGTTGATCGTCCGGGCCCGGGCAGAAGGCAAGCGGGTCATCACCGGGCTGGAGGTGATCGCGATCCAGGCCTTGGAGCAGTTTGTGCTGTACACGGGCGTGCGGCCCAACCTGGAGCAATTCGACAAGGCCGTGGCTTTCGCCCGGTCCTGAMQMNPNKDTQLCMSLSGRPGNFGLRFHNHLYEQLGLNFYYKAFSSRDLPGAVRGIRALGIRGCGVSMPFKEACIALVDELDPSAAAIQSINTIVNTDGHLKAYNTDYIAVAQLLQTHAVPKDSTFALRGSGGMAKAVASALRNGGYKNGLIVARNETTGRALADSLGYEWQAELGDRRPQMLINVTPIGMAGGPEAGHLAFEPDALVAAETVFDVVAIPSETPLIVRARAEGKRVITGLEVIAIQALEQFVLYTGVRPNLEQFDKAVAFARSPGPT0012890_4170DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATESBIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012890-aroE-K00014NANA
D1-35_00891651hypothetical proteinATGAGCATCGAAGAACAAAGCCAGGCCGAAGAACCACGGCTCAACAGCACGGAAATCCGCATCCTTGGCGCCCTGATCGAAAAACAGGCCACCAACCCCGAGACCTACCCTCTCACCCTCAACGCGCTAGTGCTGGCCTGCAACCAGAAGACCAGTCGCGAACCGGTGACCAATCTCAGTCCGGGCCAGGTCGGCCAGAGCTTGCGGGCCCTGGAAGGCCGCGGTTTTACCCGGCTGGTCATGGGCAGCCGCGCCGACCGCTGGGAGCACCGGGTCGACAAGGCGCTGGAGTTGGTGCCGGCCCAGGTGATCCTGATGGGATTGCTGTTCCTGCGCGGCCCACAGACCGTCAATGAACTGCTGACCCGCAGCGGCCGCATGCATGATTTCGAAGACACCGAGCAGGTCGTGCATCAGCTTGAGCGCCTGATCGCCCGAGGCCTGGCGCTGCTGGTGCCGCGCCAGGCTGGCCAGCGTGAAGACCGCTACGTGCACGCCATGGGCGACCCCGCGGACATCGAGGCCATCCTCGCCGCTCGCCAGCACCCGATAGAACGCAGTGGCGCCGGCAGCGGCGTGTCACTGGAACGCCTTGAAGAGCTCGAAGCGCGGATCGCCGCGCTGGAGGAGCGTCTGGCGCGCCTGGAGTAAMSIEEQSQAEEPRLNSTEIRILGALIEKQATNPETYPLTLNALVLACNQKTSREPVTNLSPGQVGQSLRALEGRGFTRLVMGSRADRWEHRVDKALELVPAQVILMGLLFLRGPQTVNELLTRSGRMHDFEDTEQVVHQLERLIARGLALLVPRQAGQREDRYVHAMGDPADIEAILAARQHPIERSGAGSGVSLERLEELEARIAALEERLARLENANANANANA
D1-35_00892510hypothetical proteinATGACCATTTCCCTGTACGCCGCCTCCGTCCCGGTTTTCAAACAGATGCTCAACGCCCTGAGTGATGTGCTGAACAAGGCCGAAGCCCACGCCACCGCGAAAAACATCGATCCGAACGCTTTCCTGCAAGCACGCCTGTTCCCGGACATGTTCCCGCTGGTGCGTCAGGTGCAGATCGCCGTCGACTTCGCCAAGGGCGTGTCCGCGCGCCTGGCCGAGATCGAAGTGCCGAAATACGACGACAGCGAGACCACCTTCGCTGAGCTGCAAGCGCTGATCGCCAAGGTGCTGGCCTTCATCGACGGCATCAGCCCCGAGCAGATCGATGGCAAGGAAGGCATTGAAATTGTCACCCGTCCGGGCACCCCGAAGGAAAAACGCTTCAGCGGTCAAACCTACCTGCTGACCTACGGCCTGCCGCAATTCTTCTTCCACGTCACCACCACTTATGCACTGCTGCGTCACAACGGCGTGGAAGTAGGCAAGCGCGATTACATGGGCGCGTTCTAAMTISLYAASVPVFKQMLNALSDVLNKAEAHATAKNIDPNAFLQARLFPDMFPLVRQVQIAVDFAKGVSARLAEIEVPKYDDSETTFAELQALIAKVLAFIDGISPEQIDGKEGIEIVTRPGTPKEKRFSGQTYLLTYGLPQFFFHVTTTYALLRHNGVEVGKRDYMGAFNANANANANA
D1-35_008931233sstTCOG3633Serine/threonine transporter SstTATGACTGCTGTGTCCTCTTCCCTTCTGCACCGCTTCAAACGCACCAGCCTGGTGACGCAAATTGTCATCGGCCTGATCGCCGGCATTGTCCTGGCGTGGCTGGCCCCTGACGTGGCGAAATCCACGGCGTTCATCGGCAAGGTCTTTGTGTCGGCGCTCAAGGCCGTGGCGCCGATCCTGGTGTTCGTGCTGGTCATGGCGTCGATCGCCAACCATAAGCACGGCCAGGAAACCCATATCCGCCCGATCCTCTTCCTTTATCTGCTGGGCACTTTCGCTGCGGCCGTGGTCGCGGTCATTGCCAGCACCCTCTTTCCCTCGAGCCTGGTGTTGAGCGCCCAGGACGTTGCCGTTACCGCGCCCGGCGGGATCAGTGAAGTGCTGCAGAGCCTGTTGCTCAGCGTGGTGGACAACCCCGTTCGAGCGCTGATGGACGGTAACTTCATTGGCATCCTGGCCTGGGCCATCGGCATGGGTATTGCCATTCGCCATGCCGGCGAAACCACGCGCACCGTACTCGAAGACTTGTCCAATGGCGTGACCGTGATTGTGCGGCTGGTCATCCGCTTCGCCCCGCTGGGTATTTTCGGCCTGGTAGCCTCGACCCTGGCCACCTCCGGCTTTGGTGCGCTGCTCGGTTACCTGCACCTGTTGACCGTGCTGATCGGCTGCATGCTGTTCGTGGCACTGGTGGTCAACCCGCTCATCGTGCTCTGGAAACTGCGTCGCAACCCCTTCCCGCTGGTGTTCACCTGCCTGCGTGAAAGCGGCATCACCGCGTTCTTCACGCGCAGCTCGGCGGCCAACATTCCCGTGAACCTGGAGCTGAGCAAGCGCCTCGGCCTGCACGAAGACACCTACTCGGTCTCGATCCCGCTGGGCGCCACCATCAACATGGCCGGGGCCGCCATTACGATCACCGTACTGACGCTGGCGGCCGTACATACCCTGGGCATCGTGGTGGATGTGCCCACGGCCGTGCTGCTCAGTGTCGTCGCCGCCATCTGCGCCTGCGGCGCGTCCGGGGTCGCCGGCGGTTCGCTGCTGTTGATTCCCCTGGCGTGCAGCCTGTTTGGCATCCCCAGCGAAATCGCCATGCAAGTGGTCGCGGTAGGGTTCATCATCGGCGTGCTGCAGGATTCAGCTGAAACCGCGCTCAACTCGTCCACGGATGTGCTGTTCACGGCGGCGGCTTGCCTGGGTGAAGAAGAGCGGGCGCGGCGTACTGCATAAMTAVSSSLLHRFKRTSLVTQIVIGLIAGIVLAWLAPDVAKSTAFIGKVFVSALKAVAPILVFVLVMASIANHKHGQETHIRPILFLYLLGTFAAAVVAVIASTLFPSSLVLSAQDVAVTAPGGISEVLQSLLLSVVDNPVRALMDGNFIGILAWAIGMGIAIRHAGETTRTVLEDLSNGVTVIVRLVIRFAPLGIFGLVASTLATSGFGALLGYLHLLTVLIGCMLFVALVVNPLIVLWKLRRNPFPLVFTCLRESGITAFFTRSSAANIPVNLELSKRLGLHEDTYSVSIPLGATINMAGAAITITVLTLAAVHTLGIVVDVPTAVLLSVVAAICACGASGVAGGSLLLIPLACSLFGIPSEIAMQVVAVGFIIGVLQDSAETALNSSTDVLFTAAACLGEEERARRTANANANANANA
D1-35_008941161pbuECOG2814Purine efflux pump PbuEATGCTGTTGCCCATCTTCCTGTTGTCCGCCGCCGGCTTCACGGTGCTGACCACGGAATTCATCATTGTCGGCCTGTTGCCAGCCATCGCCCGGGACCTGCAAGTCACCATCCCTCAGGCTGGACTGCTGGTGACTTTGTTCGCATTTACTGTCGCGGCGTTCGGGCCGTTCCTGACCGCGTGGTTTGCCCGTGTCGAGCGGCGTCGGCTGTTTATCAGCGTGCTGGTGATGTTCGGCCTGGCCAACACTTTGGCGGCGCTGGCGCCGAACATCTGGGTCATGGCCATTGCCCGGTTGGTCCCGGCTTTGGGTCTGCCGGTATTCTGGGCGTTGGCCAGTGAAACCGCAGTGGACATCGTCGGGCCGCAGTTTGCCGGGCGAGCCATCGCGCGGATCGGCTTCGGTATCGTCTGCGCCACGGTATTCGGCATTCCGGTCGGCACCCTGATCTCCGACGCATTCGGCTGGCGCAGCGCTTTTGCAATCCTGGCGGTCATCGCGTTTGCCAAGGCGCTGCTGCTGTTTATCTACCTGCCGAAAACCAATCTGCACCAGCATCAAGTGAGCTTTCGCTCGCAATTCAAGATCCTGCGCAGCCCCCTGATGCAGGGGCATGTGCTGCTGTCGATCCTGGTATTCAGCGGCATGTTTACCGCCTATACCTATCTGGCAGATATCCTCGAACGCCTGGCCGGGTTCGACGGTACGCTCGTGGGTTGGTGCCTGATGGGCTTCGGGGCCGTGGGCCTGCTCGGCAACTCCCTGGGTGGTCGCGCGGTAGACCGGCATCCGCTGATCGCCTCAATGGTGTTCTGCCTGTTCATGATCGGCGGCATGGTGGCGCTGGTGCCGAGCATTCATTCGACGCTGGGGTTGGCCGCCGCGATGGGTATCTGGGGCGTGACCCAGGCGGCGCTGTTCCTGGTCAGCCATGTGCGGCTGATGAAAGCGGCCCCTGAAGCGCCGGCGTTTGCTGCTTCGCTGAACATCGCCGGGGCCAACCTGGGCATTGGCCTGGGGGCGTTGGTGGGCGGTCGGGTCATCGATACGCTGGGCCTGGGCAGCGTCGGTTTCGCCGCGGCCGGATTCATCCTGGTATCGATCCTGCTGGCGCTGTTGCTGATGACGTTCAAGCCGCGCAATGCCTGCGCTGATTGCTAGMLLPIFLLSAAGFTVLTTEFIIVGLLPAIARDLQVTIPQAGLLVTLFAFTVAAFGPFLTAWFARVERRRLFISVLVMFGLANTLAALAPNIWVMAIARLVPALGLPVFWALASETAVDIVGPQFAGRAIARIGFGIVCATVFGIPVGTLISDAFGWRSAFAILAVIAFAKALLLFIYLPKTNLHQHQVSFRSQFKILRSPLMQGHVLLSILVFSGMFTAYTYLADILERLAGFDGTLVGWCLMGFGAVGLLGNSLGGRAVDRHPLIASMVFCLFMIGGMVALVPSIHSTLGLAAAMGIWGVTQAALFLVSHVRLMKAAPEAPAFAASLNIAGANLGIGLGALVGGRVIDTLGLGSVGFAAAGFILVSILLALLLMTFKPRNACADCPGPT0028991_4121DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0028991-ydhP-K19577NANA
D1-35_00895996nhaRCOG0583Transcriptional activator protein NhaRATGGCTCACCGATGGCCCGGCATTCTAGAGAGGCAGATACTTCAGGAAAATTCGTATTTTCAGCGGCTATACTTCGGTATTTACGAATCGGCGAAAACCATGCTCAATTATCGACAGCTGCATTATTTCTGGGTGGTGGCAAAAACCGGCAGCATCGTGCGCGCCTGTGAGCAATTGAACCTGACCCCGCAAACCATCAGCGGGCAGATCTCCCTGTTCGAACAGACCTACAACATCAAATTGTTCCAGCGCGTCGGGCGCCAGTTGGAGCTGACAGAAGCCGGTCGCCAGACGTTGCCTTACGCCGAACACATGTTCCAACTCGGCGGCGAACTGGAATTGATATTGCGCGCCCAACCCAACGAGCAGCAGACACTGTTTCGGGTCGGGGTGGCGGATGTCGTGCCCAAGTCCATCGTCTATCGGCTGCTGGCCCCGACCATGGAACTGAGCGAGCCACTGCGTATCACCTGTCGCGAGGACAAGCTCGAACGGCTGCTGGCGGACCTGGCAATCCAACGCCTGGACCTGGTGATTTCCGACAGCCCGATGCCGACTCACCTGGATATCAAGGGCTACAGCCAGAAGCTTGGAGAATGCGGGATCAGCTTTTTTGCCACCGCCGCGCTGGCCGATCGTCATGGGCAGAATTTTCCCCATGGCCTGCATGACGCCCCGCTGCTGATCCCGGGACCGGAAACCGTCGTACGCAGCCGCCTGCAACGCTGGTTCGCCGAACAGCAGATCCAGCCGCGGATTGTCGGCGAGTTCGACGACAGCGCGTTGATGCAGGCATTCGGCCAGTCAGGCAGCGGGATTTTTATCGGTCCCAGCGTGATTGCCGAAGAGGTTAAGCGGCAATATGGGGTGCAGGTCATCGGCCAGACCGAGGCAGTGAGCGAGTCGTTCTACGCCATTTCCGTGGAACGCAAGGTCAGCCACCCTGGCATCGTCGCAATTGCCGAAGGGGCACGCCGCGAGCTGTTCAGCGCCTAGMAHRWPGILERQILQENSYFQRLYFGIYESAKTMLNYRQLHYFWVVAKTGSIVRACEQLNLTPQTISGQISLFEQTYNIKLFQRVGRQLELTEAGRQTLPYAEHMFQLGGELELILRAQPNEQQTLFRVGVADVVPKSIVYRLLAPTMELSEPLRITCREDKLERLLADLAIQRLDLVISDSPMPTHLDIKGYSQKLGECGISFFATAALADRHGQNFPHGLHDAPLLIPGPETVVRSRLQRWFAEQQIQPRIVGEFDDSALMQAFGQSGSGIFIGPSVIAEEVKRQYGVQVIGQTEAVSESFYAISVERKVSHPGIVAIAEGARRELFSAPGPT0013946_626DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013946-nhaR-K03717NANA
D1-35_00896264hypothetical proteinATGACGTATAAATCCTTGGGTCTTGCAGCCTTCCTGTCGCTGTCATCGATAGCGCTCGTGGGTTGTGAACAAGCGGAAAAGAGCGCCCAGCAGTTGGCCCAGCAACTTAAGGAACAAGCAGTCGAAACGGCCAAGCAGGCAATCGACGATACTCACAAAGCTGCCGAGCAGGCCATCAGCGAGGCTACTGGTGGGCTGATAAGCCCCAAAAAAGAGCCGGAGAAAGACGCTGAAGAATCCGAATCCTCCACCAAGACCATCTAAMTYKSLGLAAFLSLSSIALVGCEQAEKSAQQLAQQLKEQAVETAKQAIDDTHKAAEQAISEATGGLISPKKEPEKDAEESESSTKTINANANANANA
D1-35_00897750hypothetical proteinATGGATTATCTGTTACAGCTTGCCGCCAGCCCCACCGCCTGGATTGCCTTGGCCACCCTGGTCGTCATGGAAATCGTGCTTGGCATCGACAACCTGATCTTCATTTCGATCTTGACCAACAAGCTGCCCGAACAGCATCGCGCCAAGGCGCGGCGGATCGGTATCGGCATGGCGCTGATCCTGCGCCTGGGCCTGCTGAGCACCATCGCGTTCATTGTGCAGTTGACGGAACCGGTCATCGAAATCCTTGGCCAGGCCTTTTCCTGGAAGGACATGATCCTCATCGCCGGTGGCCTGTTCCTGTTGTGGAAGGCGACCACCGAGATCCATCACAGCATGGACCCGGCGCCGAACGATCCCAAGTCGGCCACATCGGGCGTGACCCTCGGGTTCGCTGCTGCGATCGGTCAGATCCTGATGCTCGACCTGGTGTTTTCCATCGACAGCATCATTACCGCGGTGGGTATGACCGAACACTTGCCGATCATGATCATCGCCGTGGTGGTTTCGGTGCTGGTGATGCTGCTGGCCGCCGAGCCGTTGGCGAAGTTCATCAATGACAACCCCACCGTGGTCATGTTGGCCCTGGGCTTCCTGATCATGATTGGCATGACCCTGATCGCCGAAGGTTTCGGTGCCCATGTGCCCAAGGGCTATATCTACGCGGCCATGGCCTTCTCGGCGGCGATCGAGGTGTTGAACATGTTGTCCCGACGCGCCAGGGAGAAAGCGCTCGTCGACAAAGCCTGAMDYLLQLAASPTAWIALATLVVMEIVLGIDNLIFISILTNKLPEQHRAKARRIGIGMALILRLGLLSTIAFIVQLTEPVIEILGQAFSWKDMILIAGGLFLLWKATTEIHHSMDPAPNDPKSATSGVTLGFAAAIGQILMLDLVFSIDSIITAVGMTEHLPIMIIAVVVSVLVMLLAAEPLAKFINDNPTVVMLALGFLIMIGMTLIAEGFGAHVPKGYIYAAMAFSAAIEVLNMLSRRAREKALVDKANANANANANA
D1-35_00898678hypothetical proteinATGGTGCCGGTAATTTCATCTTTTCGATCACTGGTAGTGGCGCTGACCTGTGCCGCTGTCCTGGTTGGGTGCGCGGGGGGCGTGTCGCCGCAGATAAAGCGTCTGCCCGAGCGGGTCGAACTCAACAGCGTGCCGTTCTTTCGCGGCGAGATGTATCAGGGCGCTCCGCAATCGTTGGCGGCTCTGCTGACTCTGCAAGGGACGGTCATCACGCCCGGGTTGCTGGAAAAACCGTTACACCTGCCCGGTGGCGAGGCGCGTTTGCAGCAGAGTCTGCAAACCTTGGCGCGTGAATACGGACTGGTCGTCTATCCCCTCGACCATGAGCTCGCGGCGTTGCTCGAACAGGTGGCGGCGGGTTATCCCGTGCTGTTGCGCTACACCGAGGGTTCGGCGTTCTGGTCCGGGCCACGCTACGCGATCCTGGCTGGCTACAACCGACAAAAACGTACCGTGCTGCTGCGGTCGGGGATGAACCGGCGGTCGTTGATGAGTTTCGATGCATTCGAATCGGCGTTCAAAGGCGCGGGCGGTTGGGCGGTGTTGATACAGCAGCCCACGCAACTTCCGGCCAACGTTGACTCCCAGCGCTGGTTGAAGGCCGCCGACGAGTTAGCCGGGGCGGGGCAGGAGCAGGCCGCCGCGCGGGCCACCAAGGCGCTGGGCTCCGCACGCTGAMVPVISSFRSLVVALTCAAVLVGCAGGVSPQIKRLPERVELNSVPFFRGEMYQGAPQSLAALLTLQGTVITPGLLEKPLHLPGGEARLQQSLQTLAREYGLVVYPLDHELAALLEQVAAGYPVLLRYTEGSAFWSGPRYAILAGYNRQKRTVLLRSGMNRRSLMSFDAFESAFKGAGGWAVLIQQPTQLPANVDSQRWLKAADELAGAGQEQAAARATKALGSARNANANANANA
D1-35_00899204hypothetical proteinATGGCACAGTCGAAAACACCTTCAGGGCCGCATTCTTCCGAGCATTCATCCGGTGATGATGACTTGGGATTCGATCCGGACTCGCCGGATCTCGACGATCCGCAAGTGGACCCGGTAGGGCCGGCCAAGGCGCCCCGGGACGAGGAGGATGAGGAACCACCTTCCTCGAGAGCCTATGACCCACTGGGTAACCTTAAGCCCTGAMAQSKTPSGPHSSEHSSGDDDLGFDPDSPDLDDPQVDPVGPAKAPRDEEDEEPPSSRAYDPLGNLKPNANANANANA
D1-35_009001002pbpGCOG1686D-alanyl-D-alanine endopeptidaseATGCGGCGCTTTTTCAACAAGCCGCTGCTCGACAGCACCTTCAACTCCATCGAGTCTACTCGCGTGAAAATCCGTCTTTCGATCCTCAGCCTGTTTTTCCTTTTCACGGGCACCTTCATCACGCAGAACATCAGCGCGCAGGAAACCATTGCCCCGCCACGAGACACTTCAAAACTGCAGGTCGCCTCCGGCAGTGCGATCCTGCTGGACCTGCAGACGGACAAGGTGGTCTATTCGAGCAATCCGGACGTCGTGGTGCCGATCGCATCGGTAACCAAGTTGATGACCGGCCTGATCGTGCTGGACGCCAGGCAGAACCTGGACGAATACATTTCCATGACCATCGCCAACACGCCGGAAATGAAAGGTGTGTTTTCCCGGGTCAAGCTCAACAGTGAACTGTCACGCCGGGACACGCTGCTGATCGCCCTGATGTCGTCGGAGAACCGCGCCGCCGCCAGCCTCGCCCATCATTATCCGGGCGGCTACGCGGCGTTCATTGCGGCGATGAACGCCAAGGCCAAGGCGCTGGGCATGTCCAGCACCCACTATGTCGAGCCCACCGGCCTGTCCATTCACAACGTCTCGACCGCCCGGGACCTGACCAAGCTGTTGATCGCCGCTCGCAAGTATCCATTGCTGAGCGAATTGAGTACCACCAAGGAAAAGACCGTGACGTTCCGCAAGCCGGTCTACAGCCTGGGCTTTCGCAACACCGATCATCTGGTCCACAAGGCCAACTGGGACATTCAGTTGACCAAGACCGGCTTCACCAACCAGGCCGGTCATTGCCTGGTGCTGGTGACAAAAATGGGTAATCGTCCGATGGCGCTGGTGATTCTCGACGCGTTCGGCAAATACACTCATTTTGCCGATGCCAGCCGTATTCGCAGCTGGGTCGAGACAGGCAAAAGCGCCAGTGTCCCTGCCGTGGCCTTGCAATACAAGGCCGCCAAGAACCTCAAGAGCCGCCAGAGTGGCGTGGTAGAAGCGTCAAAATAAMRRFFNKPLLDSTFNSIESTRVKIRLSILSLFFLFTGTFITQNISAQETIAPPRDTSKLQVASGSAILLDLQTDKVVYSSNPDVVVPIASVTKLMTGLIVLDARQNLDEYISMTIANTPEMKGVFSRVKLNSELSRRDTLLIALMSSENRAAASLAHHYPGGYAAFIAAMNAKAKALGMSSTHYVEPTGLSIHNVSTARDLTKLLIAARKYPLLSELSTTKEKTVTFRKPVYSLGFRNTDHLVHKANWDIQLTKTGFTNQAGHCLVLVTKMGNRPMALVILDAFGKYTHFADASRIRSWVETGKSASVPAVALQYKAAKNLKSRQSGVVEASKPGPT0024065_475DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-CARBOXYPEPTIDASE_ACTIVITY,PGPT0024065-pbpG-K07262NANA
D1-35_00901855folDCOG0190Bifunctional protein FolD proteinATGACTGCACAACTTATCGACGGCAAATCGATCGCCGCCAGCCTGCGCCAGCAGATCGCCCAACGAGTCACCGAGCGCCGCCAGCAAGGCCTGCGCACGCCCGGCCTTGCGGTGATCCTGGTCGGCAGCGATCCTGCCTCTCAGGTTTATGTCTCGCACAAGCGTAAAGACTGTGAAGAGGTCGGCTTCCTTTCCCAGGCCTACGACCTGCCTTCCGAAACCACTCAGCAAGCGCTGGCCGATCTGATCGACCGCCTCAATGACGATCCGAACATCGATGGCGTGCTGCTCCAGCTACCGCTGCCCGAACACCTTGACGCCTCTAAACTGCTGGAGCGTATCCGCCCGGACAAGGACGTCGACGGTTTCCATCCTTATAACGTCGGTCGCCTCGCCCAACGCATCCCATTGCTGCGCCCGTGCACGCCCAAGGGCATCATGACCTTGCTGGAAAGCACTGGCGTGGATCTTTACGGGCTCGACGCCGTGGTCGTGGGCGCCTCCAACATCGTTGGCCGGCCGATGGCCATGGAATTGCTGCTCGCTGGCTGTACCGTCACCGTGACCCATCGCTTCACCAAGGACCTGGCGGGCCACGTCGGTCGGGCTGACCTGGTGGTGGTGGCCGCCGGCAAGCCGGGCCTGGTCAAAGGCGAATGGATCAAGGAAGGCGCCATCGTCATCGACGTCGGCATCAACCGCCAGGACGACGGCAAGCTGGTGGGCGATGTGGTCTACGAGACCGCCCTGCCCCGCGCCGGCTGGATCACGCCGGTACCCGGCGGCGTAGGACCGATGACCCGGGCCTGCCTGCTGGAAAACACCCTTTATGCGGCCGAGACGCTGCATAGCTGAMTAQLIDGKSIAASLRQQIAQRVTERRQQGLRTPGLAVILVGSDPASQVYVSHKRKDCEEVGFLSQAYDLPSETTQQALADLIDRLNDDPNIDGVLLQLPLPEHLDASKLLERIRPDKDVDGFHPYNVGRLAQRIPLLRPCTPKGIMTLLESTGVDLYGLDAVVVGASNIVGRPMAMELLLAGCTVTVTHRFTKDLAGHVGRADLVVVAAGKPGLVKGEWIKEGAIVIDVGINRQDDGKLVGDVVYETALPRAGWITPVPGGVGPMTRACLLENTLYAAETLHSPGPT0008075_4205DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008075-folD-K01491NANA
D1-35_009051269tigCOG0544Trigger factorATGAGCATCACCGTGCCAGCTGAGCGTATCGAGACTCAGGTCAACAAGCGTCTGCAGCAGACTGCCCAAAAGGCCAAAATCCCAGGTTTCCGCCCAGGCAAAGTGCCAATGAGCGTGATCCGTCAGCGTTACGAAGCTGATGCGCGCCAGGAAGCCGTGGGCGACGTGATCCAGTCTTCGTTCTACGAAGCGGTGGTCGAGCAGAAGCTGAACCCGGCTGGCGCTCCTTCCGTAGAGCCTAAAGTGCTGGAGAAAGGCAAGGATCTCGAGTTCGTTGCCACCTTTGAAGTGTTCCCCGAGTTCATCGTCGCCGGTTTCGAGTCCATTGCCGTCGAGCGCCTGAGCGCTGACGTTTCGGATGCCGACCTGGACAAGATGCTCGACATCCTGCGCAAGCAGAACACCCGTTTCGAAGCCACTGATCGTGCCGCCCAGAACGAAGACCAGCTGAACATCGATTTCGTCGGCAAGGTCGACGGTGAAGTGTTCGCTGGCGGTTCCGCCAAGGCTACCCAGCTGGTGCTGGGCTCCGGTCGCATGATCCCGGGCTTCGAAGACGGCCTGGTTGGCGCCAAGGCTGGCGAAGAGCGCGTTCTGAACGTGACCTTCCCAGAGGACTATCAGAACCTGGATCTGGCCGGCAAAGCCGCCGAATTCACCGTGACCGTCAACAGCATTTCCGAGCCTAAGCTGCCTGAGCTGAACGAAGAGTTCTTCGCCCAGTTCGGTATCAAGGAAACCGGTCTGGAAGGTTTCCGCGCCGAAGTTCGCAAGAACATGGAGCGCGAGCTGCGTCAGGCCATCAAGTCCAAGGTCAAGAACCAGGTCATGGACGGTCTGCTGGCCTCCAACCCGATCGAAGTGCCGAAGGCTCTGCTGGACAACGAAGTGAACCGTCTGCGCGTGCAGGCCGTTCAGCAGTTCGGTGGCAACATCAAGCCTGACCAACTGCCGGCCGAACTCTTCGAAGAGCAAGCCAAGCGCCGCGTCGTGCTGGGCCTGATCGTCGCTGAAGTGGTCAAGCAGTTCGAACTCAAGCCTGACGAAGCCCGCGTTCGCGAGCTGATCCAGGAAATGGCCTCGGCTTACCAAGAGCCTGAGCAGGTAGTGTCCTGGTACTACAAGAACGAGCAGCAGCTGAACGAAGTCCGTTCGGTTGTGCTGGAAGAGCAAGTTGTGGATACTGTTCTGCAGAAAGCTAGCGTGACCGACAAAGCGGTCTCTTACGAAGAAGCGGTCAAGCCGGTGGAAGCTCCACAAGCCGATTGAMSITVPAERIETQVNKRLQQTAQKAKIPGFRPGKVPMSVIRQRYEADARQEAVGDVIQSSFYEAVVEQKLNPAGAPSVEPKVLEKGKDLEFVATFEVFPEFIVAGFESIAVERLSADVSDADLDKMLDILRKQNTRFEATDRAAQNEDQLNIDFVGKVDGEVFAGGSAKATQLVLGSGRMIPGFEDGLVGAKAGEERVLNVTFPEDYQNLDLAGKAAEFTVTVNSISEPKLPELNEEFFAQFGIKETGLEGFRAEVRKNMERELRQAIKSKVKNQVMDGLLASNPIEVPKALLDNEVNRLRVQAVQQFGGNIKPDQLPAELFEEQAKRRVVLGLIVAEVVKQFELKPDEARVRELIQEMASAYQEPEQVVSWYYKNEQQLNEVRSVVLEEQVVDTVLQKASVTDKAVSYEEAVKPVEAPQADNANANANANA
D1-35_00906636clpP_1COG0740ATP-dependent Clp protease proteolytic subunitATGTCCCGCAATTCTTTTTATCAGCAGAGCTCTGACATCCAGGCCGCAGGCGGCCTGGTCCCTATGGTTATCGAGCAGTCCGCCCGTGGCGAACGTGCCTATGACATCTATTCGCGTCTGCTCAAGGAGCGAGTGATCTTTTTGGTAGGTCCGGTAGAGGACTACATGGCCAACCTGATCTGTGCACAACTGCTGTTCCTTGAAGCCGAAAACCCGGACAAGGACATCCATCTCTATATCAACTCCCCGGGCGGTTCGGTGACGGCGGGAATGTCGATCTACGACACCATGCAGTTCATCAAGCCTAACGTTTCGACGACCTGCATCGGTCAGGCGTGCAGCATGGGTGCGTTTTTGCTGACGGCCGGTGCCCAAGGCAAGCGTTACTGCCTGCCGAATTCCCGCGTGATGATTCACCAGCCTTTGGGTGGTTTCCAGGGCCAGGCATCTGATATCGAAATCCATGCCAAGGAAATCCTCTTCATCCGCGAGCGCCTCAACACGTTGATGGCCAAGCACAGCGGGCGCACGCTTGAAGAAATCGAGCGCGATACCAATCGCGACAATTTCATGAGCGCTGAAGCCGCACGTGAATATGGTCTGATCGATGAAGTGATCAGCCAGCGCCCCGCTTAAMSRNSFYQQSSDIQAAGGLVPMVIEQSARGERAYDIYSRLLKERVIFLVGPVEDYMANLICAQLLFLEAENPDKDIHLYINSPGGSVTAGMSIYDTMQFIKPNVSTTCIGQACSMGAFLLTAGAQGKRYCLPNSRVMIHQPLGGFQGQASDIEIHAKEILFIRERLNTLMAKHSGRTLEEIERDTNRDNFMSAEAAREYGLIDEVISQRPAPGPT0014595_3994DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014595-clpP-K01358NANA
D1-35_009071284clpXCOG1219ATP-dependent Clp protease ATP-binding subunit ClpXATGACTGACACCCGCAACGGCGAGGACAACGGCAAACTGCTCTATTGCTCCTTCTGTGGCAAAAGCCAGCATGAAGTACGCAAATTGATTGCCGGCCCCTCGGTCTTCATTTGCGACGAGTGCGTCGACCTGTGCAATGACATCATCCGCGAGGAGGTGCAGGAAGCCCAGGCCGAAAGCAGCGCGCATAAGTTGCCTTCGCCCAAAGAAATCAGCGGCATCCTTGACCAGTATGTAATCGGTCAGGAGCGCGCGAAAAAGGTACTGGCCGTAGCGGTGTACAACCACTACAAGCGCCTGAACCAGCGTGACAAGAAGAATGACGAAGTCGAACTCGGCAAGAGCAACATCCTGCTGATCGGCCCGACAGGCTCGGGTAAGACCCTGCTTGCCGAAACCCTGGCCCGTTTGCTGAACGTTCCGTTCACCATCGCCGACGCAACCACCCTCACCGAGGCGGGTTATGTGGGTGAGGACGTCGAGAACATCATTCAGAAACTGCTGCAGAAGTGCGACTACGACGTGGAAAAGGCCCAGATGGGCATTGTCTACATCGATGAAATCGACAAGATTTCCCGCAAGTCCGACAACCCGTCCATCACCCGGGACGTTTCCGGCGAGGGCGTGCAGCAGGCGTTGCTCAAGTTGATCGAAGGCACGGTCGCTTCCGTTCCGCCCCAAGGCGGTCGCAAGCACCCGCAGCAGGAATTCCTGCAGGTCGACACACGTAACATCCTGTTCATCTGCGGTGGTGCGTTCTCCGGCCTGGAAAAGGTCATCCAGAACCGTTCCACCCGCGGCGGCATCGGCTTCAACGCCGAGGTTCGCAGCAAGGAAGAGGGCAAGAAGGTCGGTGAATCCCTGCGTGAAGTCGAGCCTGACGATCTGGTCAAGTTCGGCTTGATTCCGGAATTCGTCGGTCGTCTGCCGGTCCTGGCGACACTGGACGAGCTGGATGAAGCTGCGTTGATGCAGATTCTGACCGAGCCGAAAAACGCCCTGACCAAGCAATATGCCAAGCTGTTCGAAATGGAAGGCGTAGACCTCGAATTCCGTTCCGACGCGCTGAAATCCGTCGCCAAGCGTGCCCTGGAGCGTAAAACCGGTGCCCGTGGGTTGCGTTCGATTCTCGAAGGCGTATTGCTCGATACGATGTACGAAATCCCCTCGCAGTCCGAGGTGAGTAAAGTCGTCATCGACGAAAGCGTCATAGAAGGCAAGTCCAAACCACTGTATATCTACGAAAACAGTGAGCCGGCTGCCAAGGCTGCGCCGGACGCATAAMTDTRNGEDNGKLLYCSFCGKSQHEVRKLIAGPSVFICDECVDLCNDIIREEVQEAQAESSAHKLPSPKEISGILDQYVIGQERAKKVLAVAVYNHYKRLNQRDKKNDEVELGKSNILLIGPTGSGKTLLAETLARLLNVPFTIADATTLTEAGYVGEDVENIIQKLLQKCDYDVEKAQMGIVYIDEIDKISRKSDNPSITRDVSGEGVQQALLKLIEGTVASVPPQGGRKHPQQEFLQVDTRNILFICGGAFSGLEKVIQNRSTRGGIGFNAEVRSKEEGKKVGESLREVEPDDLVKFGLIPEFVGRLPVLATLDELDEAALMQILTEPKNALTKQYAKLFEMEGVDLEFRSDALKSVAKRALERKTGARGLRSILEGVLLDTMYEIPSQSEVSKVVIDESVIEGKSKPLYIYENSEPAAKAAPDAPGPT0014600_1862DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CHAPERONE|PROTEASES,PGPT0014600-clpX-K03544NANA
D1-35_009082397lon_2COG0466Lon proteaseATGAAGACAACCATCGAATTGCCTCTCCTGCCATTGCGCGATGTCGTGGTATATCCGCACATGGTTATCCCGCTGTTCGTGGGGCGCGAGAAGTCCATCGAAGCCCTCGAGGCCGCGATGACGGGTGATAAGCAGATTCTTCTGATCGCTCAGAGAAACCCTGCCGACGATGATCCCGGTGAAGACGCACTTTATCGCGTAGGTACGATTGCAACGGTCCTGCAACTGCTCAAGCTTCCTGACGGCACCGTCAAGGTCCTGGTCGAGGGCGAACAGCGCGGGGCGGTCGAGCGTTTCAGCGAAGTGGACGGGCATTGCCGTGCCGAGGTGTCGCTGATCGACGAAGTCGAGGCGCCGGAGCGTGAGTCGGAGGTTTTTGTCCGCAGCCTGCTGTCGCAGTTCGAACAGTATGTGCAGTTGGGCAAGAAGGTGCCTGCCGAGGTCCTGTCGTCGCTCAACAGCATCGACGAGCCAGGACGCCTGGTCGATACGATGGCGGCCCACATGGCCCTCAAGATCGAGCAGAAGCAGGAAATCCTCGAGATTATCGAGTTGTCGGCGCGTGTCGAGCACGTACTGGCATTGCTCGACGGCGAAATCGACCTGCTGCAGGTTGAAAAACGCATTCGTGGTCGCGTCAAGAAACAGATGGAGCGCAGTCAGCGTGAGTACTATCTGAATGAGCAGATGAAGGCCATTCAGAAAGAGCTCGGCGATGGCGACGAAGGTCACAACGAAATCGAAGAGCTGAAGAAGCGCATCGATGCCGCTGGCCTGCCAAAGGATGCGCTCGCCAAGGCCCAGGCCGAGCTGAACAAGCTCAAGCAGATGTCGCCGATGTCTGCCGAAGCCACCGTGGTGCGTTCCTACATCGACTGGCTGGTCCAGGTGCCGTGGAAAGCCCAGAGCAAAGTCCGCCTGGACCTGGCGCGTGCCGAGGACATCCTCGATGCGGACCATTACGGCCTGGAAGAGGTCAAGGAACGCATCCTTGAATACCTCGCCGTGCAGAAACGCGTGAAGAAGATTCGTGGCCCGGTCCTGTGCCTGGTCGGTCCTCCGGGTGTCGGTAAGACTTCCCTGGCGGAATCGATCGCCCACGCCACCAACCGCAAATTTGTGCGAATGGCGCTTGGCGGGGTGCGTGACGAGGCGGAAATTCGTGGTCATCGCCGCACGTACATCGGTTCCATGCCAGGAAGATTGATTCAAAAGATGACGAAGGTGGGTGTACGCAATCCGCTGTTCCTTTTGGATGAAATCGACAAGATGGGCAGCGATATGCGCGGTGATCCTGCGTCTGCGTTGCTTGAGGTGCTCGATCCCGAGCAGAATCACAATTTCAACGATCACTATCTGGAAGTCGACTACGACCTCTCCGACGTGATGTTCCTGTGCACCTCCAACTCAATGAATATCCCGCCAGCGTTGCTGGACCGGATGGAGGTGATTCGTCTGCCGGGCTACACCGAAGACGAGAAAATCAACATCGCCGTCAAGTACCTTTCGCCCAAGCAGATCCAGGCCAACGGCTTGAAAAAGGGTGAGCTGGAATTTGACGAGGAGGCGATTCGCGACATCATTCGTTACTACACCCGTGAAGCCGGTGTGCGTGGTCTCGAGCGGCAGATTGCCAAGGTCTGCCGCAAGGCGGTCAAGGAGCACGCGCTGGAAAAACGCTTCGCGGTCAAGGTGACATCCGACCTGCTGGAGCACTTCCTCGGTGTGCGCAAGTTCCGCTACGGGCTCGCCGAGCAACAGGACCAGATCGGTCAGGTGACCGGCCTCGCGTGGACGCAGGTCGGCGGCGAGTTGCTGACTATTGAAGCCGCCGTGGTTCCGGGCAAGGGCCAATTGATCAAGACCGGTTCCCTCGGCGATGTCATGGTGGAGTCGATCACCGCGGCGCTGACAGTTGTGCGCAGCCGTGCGCGCAGCCTGGGCATTCCCCTGGATTTCCATGAGAAGCGGGACACGCATATCCACATGCCGGAGGGGGCTACACCCAAGGATGGACCGAGCGCCGGCGTGGGCATGTGCACCGCCCTGGTTTCTGCATTGACCGGCATTCCGGTGCGTGCGGATGTCGCCATGACCGGTGAAATCACCCTGCGTGGCCAGGTCCTGGCGATTGGCGGCCTGAAAGAAAAACTTCTGGCAGCTCACCGTGGCGGGATCAAGATCGTGATCATTCCGGAAGAGAATGTCCGTGATCTCAAGGAAATTCCCGACAACATCAAGCAGGATCTTCAGATCAAACCGGTTAAATGGATTGACGAAGTCCTGCAAATTGCGCTGCAATACGCGCCGGAGCCCTTGCCGGATGTGGCTCCGGAGATTGTCGCAAAGGAAGAAAAGCGAGAGTCTGACTCTAAGGAAAGAATTAGCACGCATTAAMKTTIELPLLPLRDVVVYPHMVIPLFVGREKSIEALEAAMTGDKQILLIAQRNPADDDPGEDALYRVGTIATVLQLLKLPDGTVKVLVEGEQRGAVERFSEVDGHCRAEVSLIDEVEAPERESEVFVRSLLSQFEQYVQLGKKVPAEVLSSLNSIDEPGRLVDTMAAHMALKIEQKQEILEIIELSARVEHVLALLDGEIDLLQVEKRIRGRVKKQMERSQREYYLNEQMKAIQKELGDGDEGHNEIEELKKRIDAAGLPKDALAKAQAELNKLKQMSPMSAEATVVRSYIDWLVQVPWKAQSKVRLDLARAEDILDADHYGLEEVKERILEYLAVQKRVKKIRGPVLCLVGPPGVGKTSLAESIAHATNRKFVRMALGGVRDEAEIRGHRRTYIGSMPGRLIQKMTKVGVRNPLFLLDEIDKMGSDMRGDPASALLEVLDPEQNHNFNDHYLEVDYDLSDVMFLCTSNSMNIPPALLDRMEVIRLPGYTEDEKINIAVKYLSPKQIQANGLKKGELEFDEEAIRDIIRYYTREAGVRGLERQIAKVCRKAVKEHALEKRFAVKVTSDLLEHFLGVRKFRYGLAEQQDQIGQVTGLAWTQVGGELLTIEAAVVPGKGQLIKTGSLGDVMVESITAALTVVRSRARSLGIPLDFHEKRDTHIHMPEGATPKDGPSAGVGMCTALVSALTGIPVRADVAMTGEITLRGQVLAIGGLKEKLLAAHRGGIKIVIIPEENVRDLKEIPDNIKQDLQIKPVKWIDEVLQIALQYAPEPLPDVAPEIVAKEEKRESDSKERISTHPGPT0014315_3338DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014315-lon-K01338NANA
D1-35_00909441hypothetical proteinATGCGCCTTCTCGTAACTGGCGGAGCGGACCGGGCTCGAACCCGCGAGCCCTGGCGTGACAGCCCGTTTGTGCCGGCTGCATTACCGCTCCGCTGCCAAGCCAGGCATGACCCCGACCCGGATAAACTCAATGAAACCTTAGTTGACGGCTTCTTTCAGCGCTTTACCAGCTTTGAAGCCTGGCTTTTTGGCAGCGGCGATTTGCAGCGTCTTGCCAGTCTGCGGGTTGCGACCAACACGAGCTGGACGATCGGTAACGGAGAAAGTACCGAAACCCACCAGAACAACAGAGTCGCCAGCCTTGAGAGCGCCAGTGACGGATTCGATTACAGCGTCCAGCGCACGGCCAGCAGCAGCTTTCGGGATATCAGCGGATGCAGCGATAGCATCAATCAGTTCCGACTTGTTCACTCTAAGTCCCCTTATATCTATTTGAGATGAMRLLVTGGADRARTREPWRDSPFVPAALPLRCQARHDPDPDKLNETLVDGFFQRFTSFEAWLFGSGDLQRLASLRVATNTSWTIGNGESTETHQNNRVASLESASDGFDYSVQRTASSSFRDISGCSDSINQFRLVHSKSPYIYLRNANANANANA
D1-35_009101872ppiDCOG0760Peptidyl-prolyl cis-trans isomerase DATGCTGCAGAATATCAGGGACAATTCACAAGGCTGGATTGCCAAGACCATCATCGGAATCATCGTCGCATTGATGGCGTTGACCGGTTTCGAAGCTATTTTTCAAGCCACCACCAACAGCAATGACGCGGCCAAGGTCAACGGCGAAAAAATCAGCCAGAACGAGCTGAGCCAGGCGGTCGATATGCAACGCCGTCAGCTCATGCAACAGCTGGGCAAGGATTTCGACGCCTCCCTGCTGGACGAGAAGATGCTGCGTGACTCGGCGCTCAAAGGGCTGATCGATCGCAAGCTGTTGCTGCAAGGCGCACACGATGCGAAATTCGCTTTCTCCGAAGCCGCGCTGGACCAGGTGATCCTGCAAACGCCGGAATTCCAGGTCGATGGTAAATTCAGTCCTGAGCGTTTCGACCAGGTGATTCGCCAGTTGGGTTATGGCCGACTGCAGTTCCGCGAGATGCTGGCGCAGGAAATGCTCATTGGCCAATTGCGTGCCGGTCTCGCTGGCAGCGGTTTTGTCACCGATGCCCAGGTGTTGGCATTCGCCCGCCTGGAAAAGCAGACCCGTGATTTCGCTACGCTCACCGTCAAGGCGGATCCGGCGGCCGTGAAGCTGACCGACGATGAGGTCAAGGCTTACTACGATCAGCACGCCAAGGAGTTCATGACGCCTGATCAGGTCGTCATCGACTATCTCGAGCTGAAGAAGGCTTCGTTCTTCGATCAGGTCAGCGTCAAGGATGAAGATCTGCAGGCGGCTTACCAGAAAGAGATCGCCAATCTTTCCGAACAGCGTCGTGCTGCGCACATCCTGATTGAAGTGAACGACAAGGTCACCGAAGCCCAGGCCAAGGCCAAGATCGAGGAAATCCAGGCTCGACTGGCCAAAGGCGAGTCGTTTGAGGCGCTGGCGAAGGAATTCTCCCAGGATCCGGGCTCAGCCAACAACGGCGGCGATCTCGGTTATGCCGGTCCAGGTGTCTATGATCCGGAGTTCGAAAAGGCGCTGTATGCGTTGAACAAGGATCAGGTCTCGGCACCGGTGCGAACCGATTTCGGCCTGCACCTGATCAAGCTGCTGGGTGTCGAAGCGCCTGAGGTTCCGAGTTTTGCGAGCCTGAAGGACAAGCTGACCCGCGACCTGAAGACCCAGCAAGTGGAGCAGCGGTTCGTCGAGGCGACCAAGCAACTGGAAGACGCTTCGTTCGAGGCTTCCGACCTGGCCCAGCCAGCCCAGGACCTTAAGCTGACCGTCCATACGTCGGCACCGTTCGGTCGTGAAGGCGGCGAAGGAATCGCGGCCAACCGTGCCGTGATCACCGCTGCGTTCAGCCCGGAAGTGCTGGAGGAGGGGGCCAACAGTACCGCCATCGAGCTGGATCCGGAAACCGTCGTGGTGCTGCGCGCCAAGGAGCATCGCAAGCCTCAGCAGCTTCCGCTGGAAAACGTGGCCGGGCCGATCCGCGCCCAATTGGCCAAGGAACACGCCAGCGCTGCCGCCAAGACCCAGGCCGATGAGTTGATTGCCAGCCTGCGTGATGGCAAGACGGCGCTGGACAAGCCTGTCAACGGTCAAGGCTGGAAAGTCGTCGAGGCGGCGACCCGCAGCCAGGAAGGTATCGACCCTGCGGTGCTGCAGGCGCTGTTCCGCATGTCCAAGCCTGAGTCGAAGGACAAGCCGACATTCGCCAGCGTGACCCTGCCTGACGGCGGCGTGACGGTCCTGCGCTTGAACGGCGTCAACGAAGGTGCTGCTCCGACCGAGGAAGAAAAGGCCGAATACCGTCGGTACCTGGCGTCCCGTGTCGGCCAGCAGGACTTCGCGGCTTATCGCAAGCAATTGGAAAGCGAGGCAGACATCAAGCGCTTCTGAMLQNIRDNSQGWIAKTIIGIIVALMALTGFEAIFQATTNSNDAAKVNGEKISQNELSQAVDMQRRQLMQQLGKDFDASLLDEKMLRDSALKGLIDRKLLLQGAHDAKFAFSEAALDQVILQTPEFQVDGKFSPERFDQVIRQLGYGRLQFREMLAQEMLIGQLRAGLAGSGFVTDAQVLAFARLEKQTRDFATLTVKADPAAVKLTDDEVKAYYDQHAKEFMTPDQVVIDYLELKKASFFDQVSVKDEDLQAAYQKEIANLSEQRRAAHILIEVNDKVTEAQAKAKIEEIQARLAKGESFEALAKEFSQDPGSANNGGDLGYAGPGVYDPEFEKALYALNKDQVSAPVRTDFGLHLIKLLGVEAPEVPSFASLKDKLTRDLKTQQVEQRFVEATKQLEDASFEASDLAQPAQDLKLTVHTSAPFGREGGEGIAANRAVITAAFSPEVLEEGANSTAIELDPETVVVLRAKEHRKPQQLPLENVAGPIRAQLAKEHASAAAKTQADELIASLRDGKTALDKPVNGQGWKVVEAATRSQEGIDPAVLQALFRMSKPESKDKPTFASVTLPDGGVTVLRLNGVNEGAAPTEEEKAEYRRYLASRVGQQDFAAYRKQLESEADIKRFNANANANANA
D1-35_00911876hypothetical proteinATGTTCAGATCATTTCACATGCGCACCGTTGGGCTGGCATTGCTGCTAGTCGTCGCGACCGGTTGCTCTTCCAAGAAAGCGGCCATTTACGAGCACGAGAACTTCGATGATTCGGGCACGTTCTCGCGTACCTATCCGGTGACTGACGTGGCGACTTGTGAAGCAGGACGTCGTGCGCTGCTGAGCCAGGGGTACATCATCACCAGCAGCGATCCGAAGCTGGTCAGCGGCCACAAGAGTTTCCAGCAGACTGGCGACACGCACATGGAGATCAGTTTCAACCTGGTCTGTGCCGAAGATGGCGGTCCGGGCCACCGCGCCACGATCTTTGCCAACGCTCTACAGGACCGGTATGCCCTGAAGAAGACCAATAACTCCGCCAGCCTGGGCGTGGGTGTATTGGGGTCGGTGTCGATGCCGATTGGCTCGTCGGACGATTCGATGGTCAAGGTCGCCAGCGAAACGGTGTCCGCAGCCAAATTCTATGAGCGTTTCTTTGCGCTGGTGGAGGTGTTCCTGCCTCCCGAAGCGAAAAAAGCCGCTGGAAACGTCGACAAACCGAAAGCCGAACTGGGCATTCCAGAGCCGAAGGTGGAGCCGGCTGCCCTGGCTCCCGCCGCAACTCCAGCGCCCGCGACAGTCCCGGTACCCGAGCCGACTCCTGCTCCCGTTGCGCCGGTCGAAGAGGCTGCTCCAGCGCCTGTCGAAACCGCGCCGGCCGCTTCCGAGCCGGTCGCGCCGCCTGCCGAGCCTGCGCCAATCGCTCCCAGCGAGCCGGAGTCCTACGCACCCCCGTCGACAGAGAGCATTACTCCGCCACCGCCCAGTTCCTTGCCGGCGCCAACCGAGCCGATCCAGCCGCTTCCTGCATCCTGAMFRSFHMRTVGLALLLVVATGCSSKKAAIYEHENFDDSGTFSRTYPVTDVATCEAGRRALLSQGYIITSSDPKLVSGHKSFQQTGDTHMEISFNLVCAEDGGPGHRATIFANALQDRYALKKTNNSASLGVGVLGSVSMPIGSSDDSMVKVASETVSAAKFYERFFALVEVFLPPEAKKAAGNVDKPKAELGIPEPKVEPAALAPAATPAPATVPVPEPTPAPVAPVEEAAPAPVETAPAASEPVAPPAEPAPIAPSEPESYAPPSTESITPPPPSSLPAPTEPIQPLPASNANANANANA
D1-35_00912144hypothetical proteinATGCTGATTCCAAGGCCATCAGGCATCGGTTTCAACGATTATTGGGAAGGACAGGCAATGGACGATTATCAGGAAGAGCTGCTCGAATATCAGGCTTATGAACTGGACCCCCTGGAACCTGCCGAAGACGCCACGGAACTGTAGMLIPRPSGIGFNDYWEGQAMDDYQEELLEYQAYELDPLEPAEDATELNANANANANA
D1-35_009131023putative HTH-type transcriptional regulatorATGCGCCTGGGTGACCTGTCCGTAGGTTTCGTCCATAGCCTGGCAGACGCGGTGACCAGCCACGGTCATGACCCACAGCCATTGCTCGAACAATACGGCCTCGATGCCGCGCGCCTGGCAGAGCCCGGGGCGCGCCTGTCGATCCCGCGCTACATGCGCCTGGGCCATGCCGCCATCCAACTGACACAGGATCCGGCCCTGGGCCTGCGCATGGGCCAGCTCAGTCGCCTGAGCCAGGCCGGGCTGGCCGGCGTCACCGCGGCCCAGGCGCCCACCGTACGCGAGGCCGCACGCTGCATGATCCGCTTCGAGCCGCTGTACGGTTCCAACTACCGTGGGCAATCGAGTCTTCACGAGGACGCCCGGGGCGCGTGGCTGCGGTTCTATTCCATCAGCCCGTATAACGCCTACAACCGCTTCGTCGTGGATTCGATCATTGCCGGCTGGCTCCAGCAACTGTCCAGCGTCTGCGACGTGGTGTTGCGGGCCGAACGTATCGAAATCGAATTCGAGGAGCCAACTTACCTCGAAGCCTACCGTAGCCTCGGCGAAGGCCCGATCCAGTTCGCAGCCGAGCAGAACCAATTGCGCCTGGGGCTGGACAGCCTCGCCCTGCGCAACCCACAGCATTGCCCCAGCACCTGGCGCCACCTGGTTCAGTTATGCGAACGGGAACTGGAACAGCTGACTCGCACTCGCACCCTGCGCGAGCGAATCATTCAATTGCTGGGGCCGCTGCTCAACGGCGGACGGGAGCCGGATCTGGAAGAAGTGGCGATGCGCCTGAAGCTGCCGACCTGGACGCTGCGCCGCAAGCTGGCGGAAGAAGGTACGCAGTTCCGGGCGATCCTCAACGACACTCGCCGAGACCTCGCCATGACGTACATCCGCGACACGGAGCTGGCCTTTGGCGAAATCGCTTACCTGCTGGGGTTCGCCTCGGCCGAGGCATTCCAACGGGCTTTCAAGCGCTGGAACAACCAGACGCCGGGAGAGTTCCGGCGTAGCCGTAGAGCGACTTGAMRLGDLSVGFVHSLADAVTSHGHDPQPLLEQYGLDAARLAEPGARLSIPRYMRLGHAAIQLTQDPALGLRMGQLSRLSQAGLAGVTAAQAPTVREAARCMIRFEPLYGSNYRGQSSLHEDARGAWLRFYSISPYNAYNRFVVDSIIAGWLQQLSSVCDVVLRAERIEIEFEEPTYLEAYRSLGEGPIQFAAEQNQLRLGLDSLALRNPQHCPSTWRHLVQLCERELEQLTRTRTLRERIIQLLGPLLNGGREPDLEEVAMRLKLPTWTLRRKLAEEGTQFRAILNDTRRDLAMTYIRDTELAFGEIAYLLGFASAEAFQRAFKRWNNQTPGEFRRSRRATNANANANANA
D1-35_009141170hypothetical proteinATGAAAATCACGAACCTGTACGCGGCCATCGACTGTCCCATGCGCAAATTTCTGTACCTGCTGTTCTCACTGGCCCTGACGGCCGTCCTGATCACTTATGCACTGTGGACAGCAGACCGTCCGGCGGGCCATTACCTGTCAGACCTGCGGATCAACCTGGCGGTCGACCGGGGCACGCCGGCCGACCGAGGCAACCTGCTGGGCATCCAGCCGGAATTGTTCCCCACCGACTACCAGAGCCCCGAACGCCTGCATCGCAAGCTGGCAGCGTACCTGCAGACTGCCCGCGACCAAGGGTTCATCAACGAAAAAACCGTCGTGGTCCTGCCCGAGCATATCGGCACCTGGCTGATGGTCAGCGGCGAAAAGGACGAGGTGTACCAGGCCACTACCTTCAAACAGGCCATGAACTGGCTCGCCATCAGCAATCCGCTGGCCTTTATCCGCGCATTGGCGGACGCTCAGGGCGACAGCCGGCTGGACGATGCGTACCTGCGCATGAAGGCGGACAGCATGGCCCATGACTACCAGGCGCTGTTCGGTGGGCTGGCCAAGGAGTTCGGCGTAACGCTCGTGGCCGGCTCCATCGTACTGCCCGAGCCCAGCGTCAGCGAAGGCGAGCTGAAAATCGGTGGTGGCGCGTTGTACAACAGCAGCCTGGTGTTCGGTCGTGACGGCCGGCCGATCGGCCAACCACAACGCCAGCGACACCCGGTGTTTGACCAGCAGGACGTGCTTGGGGCCGAACGACCGGACGTCACCCATGTCATTGACACGCCGGCCGGGCGCCTGGGCGTGCTGATCGGCAGCGACAGTTGGTATCCGCTTCATTATCGACAACTTGACGAACAAGGGGCCCAACTGATCGCCGTGCCCGCCTTTGTCATCGGCCGCGACGCCTGGAACAAGCCTTGGGCCGGCTACAAAGGCTTGTCCACGCCAAGCGAAGTGAGCCTCAAGCCCGGTGAGGTGAGTGAAGGGCAGGCCTGGCGTCGGCTGACGTTGACCAGCCGGTTGCCGATCAGCCAGGCCCGCGGCGGCGTCAGCGTATTCTTGCGTGGGCAGTTCTGGGACAACGGCAGCGCTGGCCAGAGCTTCATCAGCCACAACGGCGAGCAATTCACCGATGGTGAAGCCCGTGGCGCACGCCTGCTGAACTTGTGGCTTTAGMKITNLYAAIDCPMRKFLYLLFSLALTAVLITYALWTADRPAGHYLSDLRINLAVDRGTPADRGNLLGIQPELFPTDYQSPERLHRKLAAYLQTARDQGFINEKTVVVLPEHIGTWLMVSGEKDEVYQATTFKQAMNWLAISNPLAFIRALADAQGDSRLDDAYLRMKADSMAHDYQALFGGLAKEFGVTLVAGSIVLPEPSVSEGELKIGGGALYNSSLVFGRDGRPIGQPQRQRHPVFDQQDVLGAERPDVTHVIDTPAGRLGVLIGSDSWYPLHYRQLDEQGAQLIAVPAFVIGRDAWNKPWAGYKGLSTPSEVSLKPGEVSEGQAWRRLTLTSRLPISQARGGVSVFLRGQFWDNGSAGQSFISHNGEQFTDGEARGARLLNLWLNANANANANA
D1-35_009152040fadHCOG04462,4-dienoyl-CoA reductaseATGACCGCCCCTCATTACCCGCATTTGCTGGCCCCGTTGGACCTGGGTTTCACCACGTTGCGCAACCGTACCCTGATGGGATCGATGCACACCGGCCTTGAAGAAAAGCCCGGCGGCTTCGAGCGCATGGCGGCGTACTTCGCCGAGCGGGCCCGGGGTGGGGTCGGCCTGATGGTCACCGGTGGAATCGGGCCGAACGATGAAGGTGGCGTGTACTCCGGCGCGGCCAAGCTGACCACCGAGGAAGAGGCCCTCAAGCATCAGGTCGTCACGCGGGCCGTGCACGAAGCGGGGGGCAAGATCTGCATGCAGATCCTCCACGCGGGACGTTATGCCTACAGCCCCAAGCAGGTGGCGCCAAGCGCGATCCAGGCTCCGATCAACCCGTTCAAGCCCAAGGAGCTGGACGAAGAGGGCATCGAGAAACAGATCCGCGATTTTGTCACCTGTTCGGTATTGGCTCAAAAGGCCGAGTACGACGGTGTCGAAATCATGGGCTCGGAAGGCTATTTCATCAACCAGTTCCTGGCTGCGCATACCAACCACCGTACCGACCGCTGGGGTGGGAGCTACGAAAACCGCATGCGCCTGCCGGTGGAAATCGTGCGCCGCGTACGCGAAGCGGTGGGGCCGAATTTCATCATTATCTTTCGCTTGTCCATGCTCGACCTGGTTGAGGGTGGCAGCACCTGGGATGAAATCGTCCAGTTGGCCAAGGCCATCGAACAGGCCGGCGCAACTATCATCAATACCGGTATCGGTTGGCATGAGGCGCGTATTCCCACTATCGCCACCAAGGTCCCGCGGGCGGCGTTCAGTAAAGTCACCGCCAAGCTGCGCGGCTCGGTGAGTATTCCGTTGATCACCACCAACCGCATCAACACCCCTGAGGTGGCCGAGCAGATCCTCGCCGAAGGCGACGCCGACATGGTGTCCATGGCGCGGCCGTTCCTTGCGGACCCGGAGTTCGTCAACAAGGCCGCCGCTGGCCGCGCAGACGAAATCAACACCTGCATCGGCTGCAACCAGGCCTGCCTCGACCATACGTTCGGGGGCAAGCTCACCAGTTGCCTGGTGAATCCGCGGGCCTGCCATGAAACCGAACTCAATTACCTGCCCGTAACCCAGGTGAAGAAAATCGCCGTGGTGGGCGCCGGTCCTGCCGGATTGTCCGCGGCCACCGTGGCGGCCGAACGCGGTCATCAAGTGACACTGTTCGATTCGGCCAGCGAAATTGGCGGCCAGTTCAACGTCGCCAAGCGCGTTCCGGGCAAGGAGGAGTTCTTCGAAACCCTGCGTTATTTCAAACGCAAGCTGCAGACTACCCACGTCGAGTTGTGCCTCGACACCCGGGTCGATGTGGCGCAACTGGTGGCCGGCGGTTTTGACGAGATCATCCTGGCCACCGGCATCGCCCCGCGCGTACCGGCGATCCCGGGTGTCGAACATCCCAAGGTGCTGAGCTACCTGGACGTGATCCTTGAACGCAAGCCGGTGGGCCGCAGTGTCGCGGTGATCGGGGCCGGCGGGATCGGTTTCGATGTGTCGGAGTTTCTCGTTCATCAGGGGGTTGCCACCAGCCAGGACCGTGAGGCGTTCTGGAAGGAGTGGGGCATCGACACCCAGCTGCAGGCTCGCGGCGGCGTGGCTGGAATCAAGCCCGAACCTCATGCACCGGCGCGGCAGGTGTTCCTGTTGCAGCGCAAGAAGTCCAAGGTCGGCGACGGGCTGGGCAAGACGACCGGCTGGATTCATCGCACCGGCCTGAAGAACAAACAGGTGCAGATGCTCAACAGCGTCGAATACCTGAAGATCGATGACCAAGGCCTGCACATTCGCATCGGCGAAGCGGGCGAGCCACAAGTGCTGGCCGTCGACAACGTGGTTATTTGCGCCGGCCAGGATCCGTTGCGCGAGTTGCAGGAAGGCCTGGAGGCGGCGGGGCAGACTGTCCACCTCATCGGCGGCGCGGATGTGGCGGCGGAGCTGGATGCCAAACGCGCGATCAACCAGGGCTCGCGGTTGGCGGCGCAGTTGTAGMTAPHYPHLLAPLDLGFTTLRNRTLMGSMHTGLEEKPGGFERMAAYFAERARGGVGLMVTGGIGPNDEGGVYSGAAKLTTEEEALKHQVVTRAVHEAGGKICMQILHAGRYAYSPKQVAPSAIQAPINPFKPKELDEEGIEKQIRDFVTCSVLAQKAEYDGVEIMGSEGYFINQFLAAHTNHRTDRWGGSYENRMRLPVEIVRRVREAVGPNFIIIFRLSMLDLVEGGSTWDEIVQLAKAIEQAGATIINTGIGWHEARIPTIATKVPRAAFSKVTAKLRGSVSIPLITTNRINTPEVAEQILAEGDADMVSMARPFLADPEFVNKAAAGRADEINTCIGCNQACLDHTFGGKLTSCLVNPRACHETELNYLPVTQVKKIAVVGAGPAGLSAATVAAERGHQVTLFDSASEIGGQFNVAKRVPGKEEFFETLRYFKRKLQTTHVELCLDTRVDVAQLVAGGFDEIILATGIAPRVPAIPGVEHPKVLSYLDVILERKPVGRSVAVIGAGGIGFDVSEFLVHQGVATSQDREAFWKEWGIDTQLQARGGVAGIKPEPHAPARQVFLLQRKKSKVGDGLGKTTGWIHRTGLKNKQVQMLNSVEYLKIDDQGLHIRIGEAGEPQVLAVDNVVICAGQDPLRELQEGLEAAGQTVHLIGGADVAAELDAKRAINQGSRLAAQLNANANANANA
D1-35_00916909hypothetical proteinATGCTTTTGTCTGCCCTCGACTGGCATCCTCAACCGCGCCTCGAACCCCTTCACCTCGACTGGCTGGCGCGGGCCGGTATCGAGGTGGCGGTCTTGCGCCTGGACCGGATCGATCCGCTTATCAGCGGCAATAAATGGTTCAAGCTGCTTCATCATCTGCGTGCTGCCCATGCCAACGGCGCGGAGGGCGTGATGAGCCTCGGCGGCGCCTATTCCAATCATTTGCATGCGTTGGCGGCGGCGGGGCAGCGATTCGGTTTCCAGACGGTGGGGTTATTGCGCGGCCATCCCCGGGAGACGCCTACGACGCTTGATCTACAGACGTTCGGCATGACCTTGCACTGGTTGGGTTACGGCGGGTATCGAGAGCGGCATGAGCCGGGGTTCTGGGCTCCCTGGCAGGCAAAGTACCCGCATTTATGGCCGATAGCTGAAGGGGGCTCGGGGTTGCCCGGTGCGCAAGGCTGCATGTCCTGGGTAACGGCCGCCCGCAGCCAATTGGCCACGTTGGGTTGGGAGGATTATGACGGTTGGTGGCTGGCCTGCGGCACCGGGACGTCGCTGGCGGGGCTGGTTCTGGCTGAAGCGGGCGAGCATCCGGTTCATGGTGTCCTGGCGGTGCCTGAAGACCATGGGGTGCTGCAACATGTTGAAAGCATTCTGGTGGAGGCGGGGCTGGGCAATCCAGCTTATGAGTTGCTTGACGGCAGCCGTGGCGGTTTTGCCCGGGTGGATGCCGGGCTCAGCGAGTTCATCGAAACTACCAGCGCTATCGAACTGGAACCGCTGTACACGGGCAAGGCGCTGATGCTGCTCAGGGCCCGGATTGAAGCCGGGACATTTGTCGCCGGCACTCGCTTGATTTTCGTTCACACCGGCGGCTTGCAAGGTCGCCGCGGGTTCGATTAAMLLSALDWHPQPRLEPLHLDWLARAGIEVAVLRLDRIDPLISGNKWFKLLHHLRAAHANGAEGVMSLGGAYSNHLHALAAAGQRFGFQTVGLLRGHPRETPTTLDLQTFGMTLHWLGYGGYRERHEPGFWAPWQAKYPHLWPIAEGGSGLPGAQGCMSWVTAARSQLATLGWEDYDGWWLACGTGTSLAGLVLAEAGEHPVHGVLAVPEDHGVLQHVESILVEAGLGNPAYELLDGSRGGFARVDAGLSEFIETTSAIELEPLYTGKALMLLRARIEAGTFVAGTRLIFVHTGGLQGRRGFDNANANANANA
D1-35_00917711hypothetical proteinATGAATAAGTTTTGTGGCAACAACGGTTATAAAGGCATCGCGAGCAAACTGATGGCAATAGGGCCGCCGAGGCCGAGGCCGGTCAAGCCAGCGGTCAAACCGCCGGTCAAGCCACCGGTCAAACCACCGGTCAAACCACCGGTCAAACCACCGGTCAAACCACCGGTCAAACCACCGGTCAAGCCACCGGTCAAGCCACCGGTCAAGCCACCGGTCAAACCGCCAATCAAGCCGCCGGCCACCCCCCCAAAGCCGGTCAAACCCCCGGTCGCACCGCCAAAGCCGGTCAAGCCACCGGTCACACTCCCAAATAAGCCGGGCAATCGACCAGTATCCAAGCCCAAACCAAACGACGCGCCGTCAACTCCTCCACAAAATAAGCCTAAGCCCGCGCTCCCGCCGTCGCCTCCGTTGAACCCCTGGCCTGTTTTGGATCTCCTTGACGCTTCTGTCGCTATTGTAAATTTAGTCGATGCGGTCGGAAGTATTAAGAACAATGATGGAACCACTTCTTTACCCGATGGCAGTGTGGTCGATGCTGAAAAAACTTCCGTGACGCGGCCGGATGGGATTATTCAGTATGATGACGGAACAGTGGAGCATCCTGATGGAACTATTGTTTTTGCCAGTGGCGAAATTCAATATCCGGATGGCAGCGTGTTGTATCCCGACGGGGATTTGCTGGATAAAGATCACCATAAAATTAATTGAMNKFCGNNGYKGIASKLMAIGPPRPRPVKPAVKPPVKPPVKPPVKPPVKPPVKPPVKPPVKPPVKPPVKPPVKPPIKPPATPPKPVKPPVAPPKPVKPPVTLPNKPGNRPVSKPKPNDAPSTPPQNKPKPALPPSPPLNPWPVLDLLDASVAIVNLVDAVGSIKNNDGTTSLPDGSVVDAEKTSVTRPDGIIQYDDGTVEHPDGTIVFASGEIQYPDGSVLYPDGDLLDKDHHKINNANANANANA
D1-35_009181389vgrG1_1COG3501Actin cross-linking toxin VgrG1ATGCGCAACGACACGGATTATTCCTTCAGCCTCACACTCACCGAAAGCAACCTGCAGCTTCACGTCCAGAGATTTGGCGGCCGAGAAGCCCTCAACCAACCTTTTCGGTTCGACCTCGACTTGCTCGGCCTGACGCCGCCGATCGACCTCGATATCATTCTCGGCCAACAGGCGTTCCTGCACCTCAGTGCCGAGTCGGGCGTGCATGGGATCATCGCCAGCGTCAGCCTGACCTCCCATTCCCGGCAATGCGTAGGCTACCGCCTGACGCTGGTGCCTTACCTGCAGAGGCTGGAGCAGAGTCCGCGACGCCGGGTCTTTGGCCGACTCAGCGCAGTCCAGGTGCTGCAACACTTGCTGGAAGAACACCAACTGCCCACCCACAGTTACCGGTTTGAATTGCCACACGGGCACTACCCATGCCGGCCGTTCTGTGTCCAATACGACGAAAGCGACCTCGAACTGTTGCAACGGCTGTGTGAGGAAGAAGGCATCCACTATCACTTCGAGCACGCCCCTACCGGCCATGTGCTGGTATTTGCCGAAGAGGCGACAAGTTTCCCTGATCAGCCGGTCGGGTTGAACCTGCATCAGGAGGAAGGCCAACCGGCCGTTGAGCGCCTGTATCAGCGCCATCACCTGACGCCACCTCTGTTGCCGGCCAACGCCAGGGATCGGGCGTTGGCCGGGGTTTCTGAAACCTCGGCAGCCAACCACCCTTTCACCCCCACGCTGGAGGCGGCCTGGACCAACGTTGCGCAAGCCCAACAGGCAGGTCGCCGTACCCTCGAGCGGCTGCGCTGCACGCAAAGGGAAATCCACGGCCAGAGCAGCCAACCGACTTTGCGCAGTGCCTCCATCGTGCAGATCGGTGGCCATCCGATATCTACGTTCAACGATCAATGGTTAATTTCCGAGATCAAGCATCGCGGGCGACAGCCGTCGATCCTCGAAGCCCCATCTTCCTCTCCTGCGTCGCAACACTATCACAATCGGTTCCTGGCCATTCCCTGGTCCACTGTGTTCAGGCCAGCCCTCAAGCACCCAAAGCCGCGCATCGCCGGCAGTCATCTTGCCTATGTGCACGGTCAGCATGGGCATGACCAGGTAAACGTCAGCCTTTGGACCCCGGAGGGCGAAGTCATCACATTGCCTCTGTCGCGGTTGACCTTGCATGACTGCCAGGCGCCGCCGGCTGGCAGCCTGGTGCTGGTGACTTTTCTCGACGGCGATCCCGACAGGCCAGTGCTATGCCCAGGAATATTCAGCCTCCCGGGCTCCGGCGCCGGCGACCTCGGCGGGTCAATCGTTGGCCCCTCAACGCCGCCCTGTCGTGATGCGGGGTTATTGCTGGACTGGCTGCTGAACCGCCCTGACCCCATCGCTTGAMRNDTDYSFSLTLTESNLQLHVQRFGGREALNQPFRFDLDLLGLTPPIDLDIILGQQAFLHLSAESGVHGIIASVSLTSHSRQCVGYRLTLVPYLQRLEQSPRRRVFGRLSAVQVLQHLLEEHQLPTHSYRFELPHGHYPCRPFCVQYDESDLELLQRLCEEEGIHYHFEHAPTGHVLVFAEEATSFPDQPVGLNLHQEEGQPAVERLYQRHHLTPPLLPANARDRALAGVSETSAANHPFTPTLEAAWTNVAQAQQAGRRTLERLRCTQREIHGQSSQPTLRSASIVQIGGHPISTFNDQWLISEIKHRGRQPSILEAPSSSPASQHYHNRFLAIPWSTVFRPALKHPKPRIAGSHLAYVHGQHGHDQVNVSLWTPEGEVITLPLSRLTLHDCQAPPAGSLVLVTFLDGDPDRPVLCPGIFSLPGSGAGDLGGSIVGPSTPPCRDAGLLLDWLLNRPDPIAPGPT0030410_4421DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_PROTEINS,PGPT0030410-vgrG-K11904NANA
D1-35_00919705COG0217putative transcriptional regulatory proteinATGGGCGCACAGTGGAAGGTTAAACACAAAGAAGCGGCTGCCAACGCCAAAGGCAAGATTTTCGGCAAGCTGGTGAAGGAGATCACCATCGCGGCGCGTAACGGCGCCGATGTCGCTACCAATGCGCACCTGCGCCTGGTGGTTGAACAGGCGAAAAAGGCCTCGATGCCCCGCGAGACCCTGGAGCGCGCGATCAAGAAAGGCTCCGGCCAGCTCGGTGAAACCGTTCAGTATCATCGCGTGACCTACGAAGGGTTCGCGCCCCATCAGGTGCCGCTGATCGTTGAGTGTGTGACCGACAACATCAACCGTACCGTCGCCGAAATCCGTGTCGCGTTCCGCAAGGGCCAGTTGGGTGCTTCCGGTTCGGTCGCCTGGGATTTCAACCATGTCGGCATGATCGAAGCTGCGCCGGACAGCCCTGACGCCGATCCGGAAATGGCCGCCATCGAGGCCGGTGCCCAGGATTTCGAGCCGGGCGAAGACGGGGCGACGCTTTTCATCACCGAACCTGCCGACCTTGACGCCGTTCAGAAAGCGTTGCCGGAGCAGGGTTTCACCGTGTTGTCGGCCAAATTGGGCTATCAGCCGAAAAACCCGGTCAGCGGCCTGAGCGACGAGCAGATGGCCGAAGTCGAGGCGTTCCTGGAAGGCCTCGACAACCATGACGATGTGCAGGACATGTTTGTCGGCCTGGCCGGTTAAMGAQWKVKHKEAAANAKGKIFGKLVKEITIAARNGADVATNAHLRLVVEQAKKASMPRETLERAIKKGSGQLGETVQYHRVTYEGFAPHQVPLIVECVTDNINRTVAEIRVAFRKGQLGASGSVAWDFNHVGMIEAAPDSPDADPEMAAIEAGAQDFEPGEDGATLFITEPADLDAVQKALPEQGFTVLSAKLGYQPKNPVSGLSDEQMAEVEAFLEGLDNHDDVQDMFVGLAGNANANANANA
D1-35_009201344hypothetical proteinATGCACACCCTCACCCAACTGCGTACCGGCCAGCTGTCAGGCATTACCCGACTGAAGCTTTCGTGCGGCCTGACGGAGTTTCCCCGGGAAATTTTCAACCTGGCGGACTCCCTCGAAATTCTCGACCTGAGCGGCAACCAGCTCGATACGCTGCCCGACGACCTGTATCGGCTGCCGCACCTGCGCGTGCTGTTCTGCTCCGACAACCACTTCACTGAATTGCCCGAATGCCTGGGACGCTGCAGCGCGTTGACCATGATCGGCTTCAAGGCCAACCGCATCGAACACGTGACCGCTCAGGCTTTGCCGCCACTGCTGCGCTGGCTGATCCTGACCGATAACCGCGTCAGCCAGTTGCCGGATGAACTGGGCCATCGCCCGCACCTGCAAAAGCTGATGCTGGCGGGCAATCGTCTTCAGCAACTGCCCGAGAGCCTCGCCCAGTGTCATCGCCTCGAATTGCTGCGCATCGCCGCCAATCAACTGACCGAATTGCCGTCCTGGTTGTTGGAGCTGCCTAGCCTCAGTTGGCTGGCCTACGCCGGGAATCCCTTGGAAGCCCAGGCCGAGGCCGCCGCGCTGCATGCCGCCACGCCTGTCGACTGGCTGCAACTGAGATTGCAACACACTCTCGGCGAAGGTGCTTCGGGGGTGATTCATCAAGCGCTGTGGCAAGCACCGGGCCGCCCCGCGCGAAACGTCGCGGTCAAGCTGTACAAAGGCCAGATGACCAGCGATGGCTCGCCACTGCATGAAATGCATGCCTGCATCACAGCCGGCAAGCATCCTAACCTGATCGAAGTATTGGGCCAGGTCAGCGGTCATCCCGAGCAGCAGATCGGGCTGGTGATGGCCCTGATCGGACCCGATTGCCGCAACCTGGCCGGGCTGCCGAGCCTGGCGTCCTGCACCCGCGACGTCTACGACGACGAGCTGCGGCTGAGCGCAGCGGCGGCCTTGCGCATCGCCCAAGGCGTTGCGTCGGTGGCGGCGCACCTGCATCGCCAGGGCATCACCCATGGGGATCTGTACGGCCACAATATCCTCTGCAACGACCAGGGCGATTGCCTGCTCGGTGACTTCGGCGCGGCGTCTTTCCATGCCACGGCTGACACGCCGCAAACGCGCGCCCTGCAACGCATCGAGGTGCGGGCGTTCGGGATTCTGCTGGGGGAGTTGCTGGCGCGGATCGAGCCGGCGCTCGCGGATGAGACGCTTGAGCGGTTGCGACAGCTGGAGACGCGCTGCTGTCAGCCGGACGTACTGGCGCGGCCGGGGTTTGACGAGATAGCTGGCTTGTTCGGCGACCGTGGCGAGGGAGCTGCCTCCCTCACCACAAGGTAAMHTLTQLRTGQLSGITRLKLSCGLTEFPREIFNLADSLEILDLSGNQLDTLPDDLYRLPHLRVLFCSDNHFTELPECLGRCSALTMIGFKANRIEHVTAQALPPLLRWLILTDNRVSQLPDELGHRPHLQKLMLAGNRLQQLPESLAQCHRLELLRIAANQLTELPSWLLELPSLSWLAYAGNPLEAQAEAAALHAATPVDWLQLRLQHTLGEGASGVIHQALWQAPGRPARNVAVKLYKGQMTSDGSPLHEMHACITAGKHPNLIEVLGQVSGHPEQQIGLVMALIGPDCRNLAGLPSLASCTRDVYDDELRLSAAAALRIAQGVASVAAHLHRQGITHGDLYGHNILCNDQGDCLLGDFGAASFHATADTPQTRALQRIEVRAFGILLGELLARIEPALADETLERLRQLETRCCQPDVLARPGFDEIAGLFGDRGEGAASLTTRNANANANANA
D1-35_009211062hypothetical proteinATGAATAACGTCAAACGCAGTGCACTGTTCGGTTTCTGCTCGCTGGGCTCCGCTTGCCTGGGCGCCCTGCTCCCGGTCACCCAGGCGTTGGCCGAACCGACGCTTTACCTGGGCATGAACGGCGGCACCATGGAGCGGCTGTATGCCGACAAGGTCCTGCCGGCCTTTGAGAAAGCCAACAACGTCAAGGTGGTGATCGTGCCAGGCACCTCGGCCGACATCCTCGCCAAGGTCCAGGCCAGCAAGGGCAACCCGCAGATGCACGTGATGTTCCTCGACGATGGCATCATGTACCGCGCCATCGCCATGGGGCTGTGCGACAAGCTTGAAGACAGCCCGCCCCTGGCGCAGATTCCGGCCAAGGGCCGGATCAAGGACCAGGCCGTAGCTGTCAGCCTCGGGGTCACCGGGCTTGCTTACAACACGCGGCTGTTCAAGGAAAAAGGCTGGAACACACCCACCTCGTGGATGGACCTGGCCGATCCGCGGTTCAAGGACAAGGTGGTGTTCCAGTCCATGGCGTCGTCAACCTTCGGCCTGCACGGTTTCCTGATGTTCAACCGGATCCAGGGCGGCAGCGAAACCGACGTCGAACCGGGTTTCAAGGCCTGGCCGAACACGATCGGGCGCAACGTGCTGGAGTACATTCCCAGCTCGGCGAAAATCTCCGAAATGCTGCAAACCGACGAAGCCGCGCTGTTCCCGCTGACGCCGACCCAGGTGACCGCCTTGAAACTCAAGGGCATGCCAGTCGAGTATGCACAACCGAAGGAAGGCGCAGTGGTGCTCAACGTCGCGGAATGCGCGGTGGCCCACAACAGCGAACCCGAACTCGCGCAGAAACTTGCCGCGTTCCTGCTGACGCCTGAAGCCCAGGCCATTGCCCTGGAGGAAGGCGACCAGATCCCGTCCAACCCCAACACCCCGACCACCGACAAGACTCGTGGCCAGGTGGAAGCGATGAAGCAATACCTGGAAACCGCGATCGCGGTGGATTGGGACCAGGTCAATGAGCAACGTCCGGCCTGGAACGCGCGGTGGAATCGCAGCATCGAGCGCTAGMNNVKRSALFGFCSLGSACLGALLPVTQALAEPTLYLGMNGGTMERLYADKVLPAFEKANNVKVVIVPGTSADILAKVQASKGNPQMHVMFLDDGIMYRAIAMGLCDKLEDSPPLAQIPAKGRIKDQAVAVSLGVTGLAYNTRLFKEKGWNTPTSWMDLADPRFKDKVVFQSMASSTFGLHGFLMFNRIQGGSETDVEPGFKAWPNTIGRNVLEYIPSSAKISEMLQTDEAALFPLTPTQVTALKLKGMPVEYAQPKEGAVVLNVAECAVAHNSEPELAQKLAAFLLTPEAQAIALEEGDQIPSNPNTPTTDKTRGQVEAMKQYLETAIAVDWDQVNEQRPAWNARWNRSIERPGPT0007855_3151DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007855-ABC_SP_S|ydcS-K02055NANA
D1-35_009221116abo_14-methylaminobutanoate oxidase (formaldehyde-forming)ATGATCGAGGTGGATGCGCTGATCATCGGCGGCGGTATCGTCGGCGCCTCGGCGGCGTTGTTCCTGAGCCAGGCCGGGCGGAGCGTGGCGCTGCTGGAGCGGGACTTCTGCGGTTCGCATTCCAGTGGCGTGAATTACGGCGGCGTACGGCGCCAGGGGCGGCCATTGTCGCAACTGCCGTTGTCGCAACGCGCGCATGAGATCTGGGCGCGATTGCCGCAACTGATCGGCATCGACGGTGAGTATCAGCGTAGCGGTCATCTGAAGCTGGCCCGCAGCCTCGATGACCTGCGTGCGTTGCATGATTATGCCGCGAGCAGTCATGGCTTCGGCCTGGATCTGCAATTGCTGGATCGCGATCAACTGCGCAGGCGGTTTCCCTGGGTCGGCGACGTCGCGGTCGGCGCCTCGCTGTGCCCGGGCGACGGTCACGCCAATCCGCGCCTGGTCTCGCCGGCATTTGCCCAGGCGGCTCGCAGGCATGGCGCAAAGGTTTACGAACAATGCCAGGTCAGCCAGGTGACGCACGACGGCCAGCGCTTTGTCGTGCGCACCGAGACAGGCCTTGAGCTGCGCGCGCCGTGGCTGCTGAACTGCGCCGGGGCCTGGGCGAGTCGGTTCGCCGCGCAGTTTGGCGAGGCCGTACCGATGCACGCCGGGCACCCGGCCATGCTGGTCACCGAGCCGCTGCCGGTCGTGATGGACGCCAGCACTGGCGTAGAAGGCGGCGGCATTTATGCGCGCCAGGTCGCCCGGGGCAATTGCGTGTTGGGTGGCGGCCAGGGTTTCGCCCTCGATGACGCCCGCGCCCGCCCCGGCCAGAACGCCGTCATCGAGATCCTGCGCCAGGCCGTCGAACTCTACCCTTTCCTGGAGGGCGCCCAGGCGATTCGTACCTGGAGCGGCACCGAAGGTTACCTGCCCGATCGCCAACCGGTGATCGGCCCGAGCAGTACCCAGTCCGGCCTGTTGCATGCGTTCGGCTTTGCCGGCGCCGGTTTCCAGATCGGCCCGGCGGTGGGCCAGGCGCTCACTGAGATCATCTGCTGCGGCGCCTCAACCACGCCGCTGGATGCGTTTTCCATCACTCGGTTTCACTCCATCTCCGTTGCTTGAMIEVDALIIGGGIVGASAALFLSQAGRSVALLERDFCGSHSSGVNYGGVRRQGRPLSQLPLSQRAHEIWARLPQLIGIDGEYQRSGHLKLARSLDDLRALHDYAASSHGFGLDLQLLDRDQLRRRFPWVGDVAVGASLCPGDGHANPRLVSPAFAQAARRHGAKVYEQCQVSQVTHDGQRFVVRTETGLELRAPWLLNCAGAWASRFAAQFGEAVPMHAGHPAMLVTEPLPVVMDASTGVEGGGIYARQVARGNCVLGGGQGFALDDARARPGQNAVIEILRQAVELYPFLEGAQAIRTWSGTEGYLPDRQPVIGPSSTQSGLLHAFGFAGAGFQIGPAVGQALTEIICCGASTTPLDAFSITRFHSISVAPGPT0013510_1810DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013510-soxB_-K00303NANA
D1-35_009231356hcnB_1Hydrogen cyanide synthase subunit HcnBATGAACCCCATAGCCATCATCGGCGCCGGCCCCGCCGGCATCCGCGCTGCGCAAACCCTGATTGCCCATGGCGTGTACCCGGTCCTGCTGGACGAGGCGGCACGCGGCGGCGGGCAGATCTACCGGCGCCAGCCGGCCAACTTCACGCGCACGCCGAACCAGCTCTATGGCTTCGAAGCGCACAAGGCCAGCGCCCTCCACCAGACCGTGGATGAATTGCGCGAGCAGATCGACTATCGCCCCGACACGCTGGTGTGGAACGCCGAGGGCGGGCTGCTGGATACCTTGCATGAAGGCCGCGCCGCGCGCCTGGCGTATGCCAGCGTGATCGTCGCGACGGGCGCCACCGACCGGATCCTGCCGGTCCCTGGCTGGACGCTGCCCGGGGTGTACAGCCTGGGCGCGGCGCAAATCGCCCTGAAGTTCCAGGGCTGCGCCATCGGCGAGCGAGTGGTGTTCGCCGGCAGCGGGCCGTTGTTGTATCTGGTGGCGTACCAATACGCCAAGGCCGGCGCCCATGTCGTCGCGGTGCTCGACAGCTCCCCCTTGAGCGCCCAGGCCCGCGCCCTGCCCGGCCTGCTCGCACAACCGGCCACCCTCGCCAAAGGCCTCTATTACCGCGCCTGGCTCACAGCCCACGGCATCGCCGTGCAGCAAGGCGCCAGCCTTTCGCGCATCGACGGCGAACGCCGGGTGCAGTCGTTGTCATGGCAAAACGGAAAAGGCCAGCACCGGCTCGATTGCGATGCGGTGGCCTTCGCCCACGGCTTGCGCAGCGAAACCCAACTGGCCGACCTGCTCGGTTGTGAGTTTGCCTGGAACCCGCTCAACCGAGCGTGGCTGCCGCAGCGCGACCGCGCCGGGCGCAGCAGCTCTCCAGGGGTCTACCTGGCCGGCGATGGCGCCGGGATCATGGGCGCCGATGCCGCCGAAATGGCCGGCGAACGGGCAGCCCTGGCATTGCTCGAAGATCTCGGTTACCAGATCGACCCGCAACGCTGCGCCCAGCTGGAACAATCCCTCGAACGCATCGGCCGTTTCCGGCAAGGCCTGGAGCGCGCCTTTGCGTTTCCCGAGGACTGGGCGGACCGCGCCGCTGATGGGCTGATGATTTGCCGCTGCGAAGAAGTCAGCGTCGGTGACATCCGGCAAATCGTCGATGAAGGCCACTGGGAGATCAACCGGGTCAAGGCCCATTGCCGGGTCGGCATGGGCCGCTGCCAGGGGCGGATGTGCGGTGCCGCGGCGGCGGAAATCATCGCTCGGGAAAGTGGACGCAACATTCAGGAAATCGGCCGTCTGCGGGCACAGGCGCCGATCAAGCCGGTCCCGTTTGGCCTGGAGGTCGAGTCATGAMNPIAIIGAGPAGIRAAQTLIAHGVYPVLLDEAARGGGQIYRRQPANFTRTPNQLYGFEAHKASALHQTVDELREQIDYRPDTLVWNAEGGLLDTLHEGRAARLAYASVIVATGATDRILPVPGWTLPGVYSLGAAQIALKFQGCAIGERVVFAGSGPLLYLVAYQYAKAGAHVVAVLDSSPLSAQARALPGLLAQPATLAKGLYYRAWLTAHGIAVQQGASLSRIDGERRVQSLSWQNGKGQHRLDCDAVAFAHGLRSETQLADLLGCEFAWNPLNRAWLPQRDRAGRSSSPGVYLAGDGAGIMGADAAEMAGERAALALLEDLGYQIDPQRCAQLEQSLERIGRFRQGLERAFAFPEDWADRAADGLMICRCEEVSVGDIRQIVDEGHWEINRVKAHCRVGMGRCQGRMCGAAAAEIIARESGRNIQEIGRLRAQAPIKPVPFGLEVESNANANANANA
D1-35_00924291hypothetical proteinATGGCTCTGCTGAAACGACTGGCCGAGCGCGATCGCCCGGCCCTGGACTTCACGCTCGACGGCTTGCCTGCCAGCGGTCTGCTCGGCGATACCGTGCTGACCGCCGTGCTGACCTGCGCTGAGCACTTGCGCGGCAGCGACTTCAGTGCGGAGCCCCGGGCCGGTTTCTGCCTGATGGGCGCCTGCCAGGATTGCTGGGTCCGATTGGGCGACGGTCGCCGCGTGCGCGCCTGCTCGACGCTGCTCGAAGCCGGCCAGCAGATCAGCCGCGAACCGGGGCGCAAGGTATGAMALLKRLAERDRPALDFTLDGLPASGLLGDTVLTAVLTCAEHLRGSDFSAEPRAGFCLMGACQDCWVRLGDGRRVRACSTLLEAGQQISREPGRKVPGPT0020400_153DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0020400-lhpD-K22550NANA
D1-35_00925795ydcV_2Inner membrane ABC transporter permease protein YdcVATGTCCAGGAACGGTCCTTTCGCCCTGTTGTTTCACGCCCTGGTCGTGGTGTTCATGCTGGCGCCACTGGTGGTGGTCTGCCTGGTGGCCTTCACCCCGGAAAACACCCTGAGCCTGCCCACCACGGAGTTTTCCCTGCGCTGGTTCCGTGCCGTGTTCGAGCGCGCGGATTTTGTCGATGCGTTCTACAACAGCCTGGTCCTGGCGTTCTGCGCGGCGTCGCTGGCGACATTGATTGCGGTGCCGGCGGCACTGGCAATCACCCGGCTGGAGTTTCCTGGCCGGGATTTTTTCAATGGTCTGTTCCTGTCGCCGATCATTATTCCGCACCTGGTGCTGGGCGTCGCGTTACTGCGCCTGTTTGCGTTGATGGGCGTGAACGGCAGTTTTACCTGGCTGATCTTCGCCCACGTGCTGGTGATCACGCCCTATGTGCTGCGCCTGGTGCTGGCGTCGGCCATCGGCCTGGACCGCAGCGCCGAACAGGCTGCGCAATCGCTGGGCGCGGGGCGCTTCACCCTGTTCCGGCAGATCACCTTGCCGATGATTCTGCCGGGCGTGGCCGGAGGCTGGTTGCTGGCGTTCATCAATAGCTTCGATGAAGTCACGCTGTCGATCTTCGTCACCTCGCCGGCCACGCAAACCCTGCCGGTGCGCATGTATGTGTACGCCACCGAATCCATCGACCCGATGATGGCGGCGGTGTCGGCGCTGGTTATCGGGCTGACTGCATTGACGATGATTTTGCTCGACCGGGTCTATGGCCTGGATCGGGTCCTGGTGGGCAAACAATGAMSRNGPFALLFHALVVVFMLAPLVVVCLVAFTPENTLSLPTTEFSLRWFRAVFERADFVDAFYNSLVLAFCAASLATLIAVPAALAITRLEFPGRDFFNGLFLSPIIIPHLVLGVALLRLFALMGVNGSFTWLIFAHVLVITPYVLRLVLASAIGLDRSAEQAAQSLGAGRFTLFRQITLPMILPGVAGGWLLAFINSFDEVTLSIFVTSPATQTLPVRMYVYATESIDPMMAAVSALVIGLTALTMILLDRVYGLDRVLVGKQPGPT0007845_3512DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007845-ABC_SP_P|ydcV-K02053NANA
D1-35_00926870potBCOG1176Spermidine/putrescine transport system permease protein PotBATGAAGCTGATGGATGCCATCAAGCGCGGCCGCCAGGGTTACCTGATGTCGGCCCCGGCCCTGGCCTTGTACCTGAGCCTGCTGGTCATTCCCCTCGGGTTGACGCTGGTGTTGTCGTTCAACGTCTTCGACTACGGCTCGGGGATCAACAGCGAGGCCTACACGTTCGAGCATTACACCAGCCTGCTGGGCGATCCGTACTTTTATGAAATCTTCCTGCGCACGTTGTGGATCAGCGCCCTGACCACCGTGCTCTGCGTGCTGATCGGCGTGCCCGAGGCCTACATTCTCAGCCGCATGGGCGCGCCTTGGCGCTCGATTTTCCTGATTCTGATCCTCACGCCGCTGTTGATCTCGGTGGTGGTGCGGGCCTTCGGCTGGAGCCTGCTGCTCGGCGCCGACGGCCTGGTCAACCAGACCTTGCAGGCCCTTGGCGGCTCGCCGATGAAGCTGCTCTACACGCCGTTTGCCGTGGTCATCGCCCTGGTCCATGTGATGTTGCCGTTCATGATCATTCCGGTGTGGACTTCGTTGCAGAAACTTGACCCGGCCGCCGAACAGGCCGCGCTGTCCCTGGGCGCGAGCCAGTTCACGGTGATCCGCAAGGTCGTGTTGCCGCAGATCATGCCCGGCGTGCTGTCTGGCACCCTGATTGTGTTCGGCCTCGCCGCCAGTTCCTTCGCGATACCCGGCCTGCTCGGCGGGCGGCGCTTGAAGATGGTCGCCACGCTGATCTACGACCAGTACCTGTCGGAACTCAACTGGCCCATGGGCGCGGCCATTGCCGTCGCGCTGCTGCTGCTCAACCTGCTGATCATGCTCTCGTGGAACCGCATGATCGAAGGCCGCTACAAGAAATCATTGGGGTAAMKLMDAIKRGRQGYLMSAPALALYLSLLVIPLGLTLVLSFNVFDYGSGINSEAYTFEHYTSLLGDPYFYEIFLRTLWISALTTVLCVLIGVPEAYILSRMGAPWRSIFLILILTPLLISVVVRAFGWSLLLGADGLVNQTLQALGGSPMKLLYTPFAVVIALVHVMLPFMIIPVWTSLQKLDPAAEQAALSLGASQFTVIRKVVLPQIMPGVLSGTLIVFGLAASSFAIPGLLGGRRLKMVATLIYDQYLSELNWPMGAAIAVALLLLNLLIMLSWNRMIEGRYKKSLGPGPT0007850_2563DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007850-ABC_SP_P1|ydcU-K02054NANA
D1-35_009271026btuD_3Vitamin B12 import ATP-binding protein BtuDATGGCTTTCGTGCAACTTGAAAACTTGAGCAAACGTTATGGCGACCTCGACGCCGTGGTCGCCACCAACCTCTCGGTGGAAAAAGGCGAGTTCGTCTCCCTGCTGGGGCCATCAGGTTGCGGCAAGACCACGACCCTGCAAATGATCGCCGGCTTCGTCGAAGCCAGCAGCGGGCGCATCCTCCTCGACAGTCGCGACATCACTCACGCCAAGCCGGCCAGCCGGGGCCTGGGCGTGGTGTTCCAGAGCTACGCGCTGTTCCCCCACATGACCGTCAAGGACAACGTTGCCTTCGGCTTGCGTATGCGCAAAGTGCCGAGCACCGAATTGCAGACACGGGTCGATCGGGTACTCAAGCTGGTGCGCCTCGACCAGCACGCCGAGCGCTACCCGCGTGAACTCTCCGGCGGCCAGCGCCAGCGCGTGGCTTTGGCCCGGGCGCTGGTGATCGAACCGCCGGTGCTGCTACTCGACGAACCGTTGTCCAACCTCGACGCCAACCTGCGCGAGGAGATGCAGTTCGAGATCCGCCGCATCCAGCGCGAGGTCGGCATCACTACGTTGATGGTGACGCATGACCAGTCCGAGGCGCTGTCGATCAGCGACCGGGTGGTGGTGATGCAGGCCGGGCGCATCACCCAGATCGACGCGCCCTACACGCTTTATGAACACCCGCGCACCGAGTTCATTTCCGGTTTTGTCGGCAAAGCCAACCTGCTCCCGGGCCAGCGGGACAGCGCCGGCGTCGTGCAAGTCTTTGGCGCCGGTCAAGGCGAGCTGACCCTGAGCCTGCGCCCGGAGAAAATCGATCTGTGCGCCGCCGGCGCGGGGCGGCTGCAAGGCACTGTCACCAGCCGTTTTTTCCTCGGCAGCCAGTGGCTGTACGGCGTCGACACCAACCTGGGCGAGCTCAGCGTGGTGCGCCGCAACGACGGCTCGGCGCCCCTGACCGAAGGCACCGCCGTCGGCCTGGACTGGGATCCGGCGCTGCTGCGGGTGCTGAGCGTGGACGAGGTGTCGGCATGAMAFVQLENLSKRYGDLDAVVATNLSVEKGEFVSLLGPSGCGKTTTLQMIAGFVEASSGRILLDSRDITHAKPASRGLGVVFQSYALFPHMTVKDNVAFGLRMRKVPSTELQTRVDRVLKLVRLDQHAERYPRELSGGQRQRVALARALVIEPPVLLLDEPLSNLDANLREEMQFEIRRIQREVGITTLMVTHDQSEALSISDRVVVMQAGRITQIDAPYTLYEHPRTEFISGFVGKANLLPGQRDSAGVVQVFGAGQGELTLSLRPEKIDLCAAGAGRLQGTVTSRFFLGSQWLYGVDTNLGELSVVRRNDGSAPLTEGTAVGLDWDPALLRVLSVDEVSAPGPT0007860_3450DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007860-ABC_SP_A|ydcT-K02052NANA
D1-35_00928837kdgR_1COG1414Transcriptional regulator KdgRATGCCTTATTCCACTGAGCGGAATTTAGAAAAAGGTGAAGTTGGGGTCGGCTCGGTCTCACGGCTGTTCGCGGTGCTGCGCAGCCTGGGCGAGACCGTTGAAGGCGGTGAGCGCGTGACGCAACTGGCCCAGCGCATCGGCCTGTCCCAGCCGACCACGCACCGCTTGCTGCGCAACCTGATGGACGAGGGCATGGTCGAGCAGGATGCGCGCAGCAAACGCTATCGGCTCAGCCTGGACTTCTTTGCCCTGGCTGCCCGCGCCGGCAATACCGGTAACCTGCGTGAACTGGCCAGGCCCGCCATGTTGCGGCTGTCGGCGTCGCTGGGGGATTCGCTGTTTCTGCTGGCGCGTTGCGGTTTCGATGCCATCTGCCTGGATCGCAGCGAGGGGCCGTTTCCGATTCGCACCTTCACCGGTGACATCGGCGGCCGCGTGGCACTGGGCGTGGGGCAGGGCAGCCTGGCGATCCTGGCATTCCTGCCAGAGGAGGAGCGCGACACGGTGATCCATTACAACCTGCCGCGGCTCAAGGATTTTCATTTGTACGATGAAGTCTTCCTGCGCACCGAGGTCGAGAACGTGCGGACACTGGGCTACGCCGGACGCAACACGGGTGTGTTGCAAGGCATGGCCGGGGTCGCGGTGCCCATTCTCGATCGTGAAGGCCGGGCCGTCGCAGCGCTGAGCGTGGCGACCATCAGCGACCGGCTCGGGCCGGATCGCCTGCCGACGGTGGTGGAGATGCTCAAGCGCGAAGCCGCGGCGATCGGCCCGCGCATCAACCCGTTCGACCCGCTGCTGCGCAGGCCTTCGCAGGTGTTCAGGCAGGGGTGAMPYSTERNLEKGEVGVGSVSRLFAVLRSLGETVEGGERVTQLAQRIGLSQPTTHRLLRNLMDEGMVEQDARSKRYRLSLDFFALAARAGNTGNLRELARPAMLRLSASLGDSLFLLARCGFDAICLDRSEGPFPIRTFTGDIGGRVALGVGQGSLAILAFLPEEERDTVIHYNLPRLKDFHLYDEVFLRTEVENVRTLGYAGRNTGVLQGMAGVAVPILDREGRAVAALSVATISDRLGPDRLPTVVEMLKREAAAIGPRINPFDPLLRRPSQVFRQGNANANANANA
D1-35_00929753hypothetical proteinATGATCAGCATGCCCCCCAGCGACAGCGACCTGCACGCCTATGTCGATCGCCAGCTCAGCGAAGACGACCAACGCCAGGTGCAGATCTACCTCGACAGCCATCCCGATGTCGCCGCGCGGGTCCGCGGATGGCAGCAAGACACCCAGCAATTGCGCGCGGCCATGAGCGCGGCCCTGCAGCAATCACCCAACCCTGGCCTGGATCCGGCGATCATTCGGCAACGCCTCAGGCACCGGTCCCGACGCCAGCTGGCCAATGCGGCGGTGCTGGTGCTGGCGGTCGGGGTCGGCGGATTCGGCGGATGGCAGGCCCGGCAGATGACCCTGCTCAGCGCCGCAGCGCCCATGGCTGATGCGCTGCAGGCCTATCGCTTGATTGCCCAGCAGGGCGTCCTGCCCGCGGACTACCAGACGGGCGACGAGCAAAGCATGCAAGGCTGGCTCGACCGCTACTTCACCCAGGCCGACCGCTTGCCGGATCTCTCGGCGGCGGGCTTCAAGCCGGTCAGCGGACGATTGCTCAGTACTGACCAAGGCGCCGCTGCGATGGTGGTCTATCAGGACCCGAGCGGCCTGAAGATCAGTTTCTACGTGCGTCCACCTGGCCCGAAAAACTACCTGCTGCCCCGTGGCAGCCGGCGCGACGGTGAATTGCAGGCCGAATACTGGTCCGGGCCGGGATACAACTATGCGATGGTCATCCCGAGTGATATGCCGGCGGCGCAGAAGCTCAAGCAAACCCTGAACTTCTGAMISMPPSDSDLHAYVDRQLSEDDQRQVQIYLDSHPDVAARVRGWQQDTQQLRAAMSAALQQSPNPGLDPAIIRQRLRHRSRRQLANAAVLVLAVGVGGFGGWQARQMTLLSAAAPMADALQAYRLIAQQGVLPADYQTGDEQSMQGWLDRYFTQADRLPDLSAAGFKPVSGRLLSTDQGAAAMVVYQDPSGLKISFYVRPPGPKNYLLPRGSRRDGELQAEYWSGPGYNYAMVIPSDMPAAQKLKQTLNFNANANANANA
D1-35_00930507ecfGECF RNA polymerase sigma factor EcfGATGAACGAACTCGACGACCAGTTGCGCCTGCTCATCCCACGGCTACGACGTTTTGCCGTGTCGCTGACTCGCAACCCCAGCAATGCCGATGACCTGGTGCAGACATGCCTGGAACGGGCCTTGTCGAAATGGACCGACAAGCGCCCGGACGGCGACCTGCGGGCCTGGCTGTTTTCGATTCTCTACCGGCAGTTCCTCGATGCCCATCGCCGCTCCCGACGTTATGCGCGGATGCTCGAACTGTTCACCGGCCGCGACGATGCGCACCCTTCGGCCGAACGCAGTGTCATCGCCCAATCGTCACTCCAGGCCTTCGATCAACTGCCCACCGAGCAACGTGCGCTGCTGTTATGGGTCTCGGTGGAAGGCTTGAGCTACCAGCAAGTGGCCGACATCCTGGACGTGCCGACGGGCACCGTGATGTCGCGTCTGTCCCGTGCGCGCCAAGCGTTGCGTCAACTCAGCGAAGGCGAAATCGCCCGCCCTGCCCTGCGGATACTCAAATGAMNELDDQLRLLIPRLRRFAVSLTRNPSNADDLVQTCLERALSKWTDKRPDGDLRAWLFSILYRQFLDAHRRSRRYARMLELFTGRDDAHPSAERSVIAQSSLQAFDQLPTEQRALLLWVSVEGLSYQQVADILDVPTGTVMSRLSRARQALRQLSEGEIARPALRILKPGPT0014960_11085DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
D1-35_009311083srpACOG0753Catalase-related peroxidaseATGGTTGACCCTTCTTCTGAATCGAGTCGGCCGCCGTTGAGCGCTGCCAGCCTGGCGTTGCGCCTGACCGGCATCGCCGCGGTCGTCGCCGCGCTGGCCGGGGCATTCGCTTACGTGAACGGTACCCTGGACCCGCAACGACTGACGCCCAAGGCCTTGGTCAACGTGCTGGAAACCAATAACGGGGTTCATCCGGGTTTTCGGCGCAATCACTCCAAAGGTGTCTGCGTTGCGGGCTATTTTGAGAACAGCGGCGAGGCGCGAGCCTACTCCAGCGCGCAGGTGTTCAATGATGCGCGGACGCCGGTGGTGGGTCGTTTTGCACTGCCCAGCGGCAACCCCTACGCACCCGATGGCAGCGTGCCGATCCGCAGCCTGGCGTTGCGTTTTACCCAGTCCGATGGCCAGCAATGGCGCACGGGCATGAACAGCATGCCGGTTTTCCCGGTGGGGACGCCCGAGGCGTTCTTCCAGCTTCAACAGGCCCAGTCGCCGGATCCGGCCACGGGTAAACCGAATCCGGCGGCGGTGCCGGCGTTTTTTGCCGCGCATCCCGAGGCGATGCCGTTCCTGCAATGGATCAAGACCGCAAAACCCTCGGCCAGCTATGCCACCGAAACTTATAACGGGATTAACGCGTTCTATCTGGTCAACCCCTCGGGGGAGCGCCAGGCGGTGCGCTGGGCGGTAGTACCAACGAGCCAGGACGCGGCTCAGACCACGCCGCCCCAAGGCGCTGATTTCCTTGAGCAGGACCTGACGAAACGCCTGGCTGCCGGGCCACTGCGCTGGCAGCTGAACATTACCCTGGCCAATCCGGGCGACCCGGTCAACGACGCCAGCAAGGCCTGGCCCGGCGACCGCAAGGCGCTCAACGCCGGTACCCTGGTACTGGAGCGCGCCCAGGCGCAGGACAACGGGGATTGCCGCGACATCAACTATGACCCGCTGATCCTGCCCAGTGGCATCGAAGGCTCGGATGATCCGCTGCTGGCCGCCCGCTCGGCAGCCTATGCCAGTTCCTATCTGCGGCGCACCAGCGAAGTCAGCCAATTGCCCGCTACCCAGGAGTCCCGTCAATGAMVDPSSESSRPPLSAASLALRLTGIAAVVAALAGAFAYVNGTLDPQRLTPKALVNVLETNNGVHPGFRRNHSKGVCVAGYFENSGEARAYSSAQVFNDARTPVVGRFALPSGNPYAPDGSVPIRSLALRFTQSDGQQWRTGMNSMPVFPVGTPEAFFQLQQAQSPDPATGKPNPAAVPAFFAAHPEAMPFLQWIKTAKPSASYATETYNGINAFYLVNPSGERQAVRWAVVPTSQDAAQTTPPQGADFLEQDLTKRLAAGPLRWQLNITLANPGDPVNDASKAWPGDRKALNAGTLVLERAQAQDNGDCRDINYDPLILPSGIEGSDDPLLAARSAAYASSYLRRTSEVSQLPATQESRQPGPT0014380_5757DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0014380-katE|CAT|catB|srpA-K03781NANA
D1-35_00932537yceJ_1COG3038Cytochrome b561ATGAACGCCCCTCGACACTTCGCACCGCTGGCTCGGCTGCTGCATTGGCTGATGGCCCTGATGATCATCGCCATGCTGTTTATCGGCGCAGGCATGGTCGCCTCGGTGTCCGAGCGCCACGAATGGTTGCTCCAACTGCACAAACCTCTGGGCATCGCGATTCTGTTGCTGGTGATCGTGCGCCTGGTGGTGCGCTTCACCCGCCGTACGCCGCCGCTGCCAGCCGATCTGCCGGGGTGGCAGGTATTGGCGGCCAAGGCCTCGCATGTCTTGCTGTACGCCTTGATGCTGATCCTGCCGCTGTTGGGCTGGAGCATGATTTCGGCAGCAGGCGACCCGGTGATGCTTAGCGAATCGCTGCGGTTGCCCTCCATCCTGCCAGCGGATGCCCAGACTTTTGCGTGGCTGCGCAAGGCCCATGGCTACCTGGCCTATCTGTTGTTCCTGACCGTGCTGGTGCATTTGGCGGCGGCGCTGTTCCATGGGTGGGTGCGCCGGGATGAGGTGTTGGGCAGCATGTTGCGCGGCAAGGACTGAMNAPRHFAPLARLLHWLMALMIIAMLFIGAGMVASVSERHEWLLQLHKPLGIAILLLVIVRLVVRFTRRTPPLPADLPGWQVLAAKASHVLLYALMLILPLLGWSMISAAGDPVMLSESLRLPSILPADAQTFAWLRKAHGYLAYLLFLTVLVHLAAALFHGWVRRDEVLGSMLRGKDPGPT0013195_333DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_SUPEROXIDE_ANION_RADICALS,PGPT0013195-cybB-K12262NANA
D1-35_009331146hypothetical proteinGTGGCTAAATCTTCCTTTGATATCAGCGCCAACTTCGACAGTGGCAATATTGACGTCGTGGACATCAGCAACCCGTTGCAGTCGCTGCTGAAAATCAGGCCAGACACCCGTAGCGCGCATTTCCAATGGTTTCATTTCAAGGCCAGTGGCCTGCACGTCGGCCAGGAATATTCCTTCCGCCTGCTCAACGCCAGCCAATCGTCCTACAACAAGGCGTGGACAGGCTACCAAGCCGTAGCGTCCTACGATCATGTCAACTGGTTCCGTATTCCTACGCAATTCGAGGGCGACGCCCTGCGCTTTCATCTGGAAGCCGAACAGCCCCACGCCTGGTTTGCCTATTTCGAACCCTACAGCCGCGGCCGTCACGACTGGCTGATCGAACAGGCGCAGCACAAGGCCGGTACCGAACTGCTGGCGATCGGCAAAAGCGTCGAGGGCCGTGATATTCAATTGCTGCGCAAAGGCAGCGGTGCCGAGGGCCGACGCAAGATCTGGATCATTGCGCAGCAGCACCCCGGCGAGCACATGGCCGAGTGGTTCATGGAAGGAGTAATCGAACGTCTCCAGCATCAGGACGACGCCCAGCTGAACCGTTTGCTCGCCAAGGCCGATCTGTACGTGGTGCCGAACATGAATCCGGATGGCGCGTTCCACGGGCACCTGCGCACTAACGCGATGGGCCAGGACCTCAACCGGGCCTGGCAGAGCGCCAGTCCGCAAATCAGCCCCGAGGTCTATTTCGTACAGCAACAGATGGAAAAGTACGGCGTCGATCTGTTCCTTGATGTCCACGGTGACGAAGAGATACCCCACGTCTTCACTGCCGGTTGCGAAGGCAACCCGGGCTATACGCCGCGCATCGCCGGACTCGAAGAGCGCTTTCGCAGCCACCTCAAGCACCAGACCAAGGACTTCCAGACCGCCCATGGTTACATCCGCGACGAACCGGGTCAGGCTAACATGACCTTGGCCTGCAACGCGGTTGGCCAGAAATATGATTGCCTGTCCCTGACCTTGGAAATGCCGTTCAAGGACCACGACGATCACCCGAACCCACGCACGGGCTGGTCCGGCAGACGCTCAATGCAACTGGGCAAGGACGTGCTGAGCACGGTCGAGGACATCATCGACGAATTGCGCTGAMAKSSFDISANFDSGNIDVVDISNPLQSLLKIRPDTRSAHFQWFHFKASGLHVGQEYSFRLLNASQSSYNKAWTGYQAVASYDHVNWFRIPTQFEGDALRFHLEAEQPHAWFAYFEPYSRGRHDWLIEQAQHKAGTELLAIGKSVEGRDIQLLRKGSGAEGRRKIWIIAQQHPGEHMAEWFMEGVIERLQHQDDAQLNRLLAKADLYVVPNMNPDGAFHGHLRTNAMGQDLNRAWQSASPQISPEVYFVQQQMEKYGVDLFLDVHGDEEIPHVFTAGCEGNPGYTPRIAGLEERFRSHLKHQTKDFQTAHGYIRDEPGQANMTLACNAVGQKYDCLSLTLEMPFKDHDDHPNPRTGWSGRRSMQLGKDVLSTVEDIIDELRNANANANANA
D1-35_00935342hypothetical proteinATGGACAAGCCCAACAACGATGAGCCCGCAGCCCCCTCGAACAACCCATTTTTGTCGCTTCAGGATTGTCCGGCGGCCAAACGCGCCCTGGACCATTACCTGAAACCGGATATTGCCGACAACCCGGCGGAACATCGCTTCTTCGACGTCAACCGAAACATCAGTGGGGAGGAAGCCCTGGTTCATGCTTGCGACCTGCTACGTTGTGCAGCCGCGACCGCCCACGAATCCGCCAGCCGATTGAACGGCCCGAGCCGTGACCTGGCATTTTCGGTGGTGCATATGATCGATCTGGTCAAGGTCATGCTCGACCGGACCCTGGACGGCTATCCGGCACGCTAGMDKPNNDEPAAPSNNPFLSLQDCPAAKRALDHYLKPDIADNPAEHRFFDVNRNISGEEALVHACDLLRCAAATAHESASRLNGPSRDLAFSVVHMIDLVKVMLDRTLDGYPARNANANANANA
D1-35_00936615COG1974putative HTH-type transcriptional regulatorATGAAGGAGCAGCACATCACGCAAGTGGTGCTCGCAGAGCGTCTGGGGATGTCTCAGGGTGGGGTCGGCCATTGGCTGACCAAGCGCCGACAACCCAGTCTTGGAGACATGAACCGGGTGCTGCAGGAGCTGGGGCTGGAGTTCCTCGAGGTGGCAATGGTGATCCGCGAGCCGGACACTTCCACCGACGAGGGGATGGCCCTGGCGCAGAAGTACAACCCGTACTTTCGCTACCCGGTCAGTGACTGGCGCGACATCGGTCTCGTTCGCGAAGAGAATGTCGCGGACTACGGCCAGCCGCGCTATGAGCTGACGGATTACCATGCACGGGGCGACGCGTTCTGGCTGGTGGTGATGGGGGATGCGATGACGGCGCCAAGCGGCTTGAGCATTCCCGAGGGCATGTCGATCCTGGTGGATCCGGCGATCGAAGCGGTGCCCGGGAAACTGGTGATTGCCCGATTGCCAGGCAGCAGCGAAGCGACTTTCCGCAAGCTGATGGAAGAGAGCGGGCAGCGTTACCTGGTTCCGCTCAATCCGACTTATCCGAAAACCCTGTTTACCGACCAATGCCGCATCATCGGCGTGGTCGTACAGGCAACCATCAGGTTCTGAMKEQHITQVVLAERLGMSQGGVGHWLTKRRQPSLGDMNRVLQELGLEFLEVAMVIREPDTSTDEGMALAQKYNPYFRYPVSDWRDIGLVREENVADYGQPRYELTDYHARGDAFWLVVMGDAMTAPSGLSIPEGMSILVDPAIEAVPGKLVIARLPGSSEATFRKLMEESGQRYLVPLNPTYPKTLFTDQCRIIGVVVQATIRFNANANANANA
D1-35_009371950accA1COG4770Acetyl-/propionyl-coenzyme A carboxylase alpha chainATGAGCGCCCCTGCCCTCACTACCCTGTTGGTCGCCAACCGCGGCGAAATCGCCTGCCGCGTCATGCGCACAGCCAAGGCCATGGGCCTGACCACCGTTGCGGTGCACAGCGCCACCGATCGTGACGCGCGTCATAGCCGGGAAGCCGACGTGCGTGTCGATCTGGGCGGCAGCAAGGCCGCCGACAGCTATTTGCAAATCGACAAACTGATCGCTGCGGCGCAAGCCAGTGGCGCCCAGGCTATCCACCCAGGCTACGGTTTTCTTTCCGAGAATGCCGGGTTCGCCAGGGCCATCGAAAATGCCGGGTTGATCTTTCTCGGCCCACCCGCCTCGGCCATCGAAGCCATGGGCAGCAAGTCCGCCGCCAAGGCCTTGATGGAAACCGCCGGCGTGCCGCTGGTACCCGGCTATCACGGTGAAGCCCAGGATCTGGAGACGTTCCGCGCCGCCGCCGAGCGCATCGGTTATCCGGTGCTGCTCAAGGCCACGGCAGGCGGCGGCGGCAAAGGCATGAAGGTCGTCGAGGAAGTCAGCCAACTGGCCGAGGCATTGGCCTCTGCGCAGCGCGAGGCGCAATCGTCGTTCGGCGATGCGCGAATGCTGGTGGAAAAATACTTGCTCAAGCCACGCCACGTGGAAATCCAGGTGTTCGCCGACCGGCACGGCAACTGCCTGTATCTCAACGAACGCGACTGCTCGATCCAGCGTCGCCATCAGAAGGTCGTGGAGGAGGCACCGGCGCCGGGCCTGGGCCAGGAATTGCGCCGGGCGATGGGCGAAGCCGCCGTACGGGCGGCCAAGGCGATCGGCTATGTCGGCGCGGGTACGGTGGAGTTTCTGCTGGATTCGCGAGGCGAATTCTTCTTCATGGAAATGAATACCCGGCTGCAGGTCGAGCATCCGGTGACCGAAGCGATCACCGGGCTCGACCTGGTGGCCTGGCAGATCCGCGTCGCCCAGGGCGAGCCATTGCCGATCACCCAGGAGCAGGTGCCGCTGCTGGGTCACGCCATCGAAGTACGTCTGTACGCCGAAGATCCGGCCAATGATTTTCTTCCCGCCACGGGGCGCTTGTCGCTGTATCGCGAGTCGGCCGAAGACGCGGGTCGCCGGGTAGACAGTGGTGTTGACGAAGGCGATGAGATCTCGCCCTTCTACGACCCGATGCTCGGCAAGTTGATTGCCTGGGGGGAAAACCGTGAACAGGCACGTTTGCGGTTGTTGGCCATGCTCGACGAGTTCGCCATTGGCGGGCTGAAAACCAACATCGGTTTTCTCCGCCGTATCATCGCTCACCCCGCCTTCGCGGCGGCGGAACTGGACACCGGTTTCATCCCGCGCTACCAGGCGCAATTGCTGCCGGAGCCCGGCGAACTGGATGACGATTTCTGGCGCGCTGCGGCCCAGGGTTTCGCCTTGAGCCTGACGCCACGTGTCCGCGCCGATGACAGCAACTCGCCATGGGCCGCTACCGCCGGGCTGCGCCTGGGGCTGCCAGCGGAAATCACCCTCCACCTGAGTTGCGATGGCCAGGACCGCGCCGTGACGCTGGATGTTGCTGGTCGCGGCGCCGAGCTCAGGGGCGAGCAGTTGATCATCGAGCACAACGGTGTGCGCCGCGAACATCGAGCCATTCGCCACGACGACAGCCTCTACCTGCAATGGAAGGGCGATCTGTATCGAGTCGACTCCTACGACCCGCTGGCGGCGGCCGAGGCCAGCCACAGCCAGCAGGGCGGCCTGGTCGCCCCCATGAATGGAAGCATCGTTCGGGTGCTGGTGAGCGCTGGCCAGGCGGTGGAAGCCGGCGCGCAACTGGTGGTGCTGGAGGCGATGAAAATGGAGCACAGCATCCGCGCGCCCAAGGCTGGCGTGATCAAGGCGGTGTATTGCCAGGAGGGAGAGATGGTCAGCGACGGCAGCGCGCTGGTGGAACTGGAAGAATAGMSAPALTTLLVANRGEIACRVMRTAKAMGLTTVAVHSATDRDARHSREADVRVDLGGSKAADSYLQIDKLIAAAQASGAQAIHPGYGFLSENAGFARAIENAGLIFLGPPASAIEAMGSKSAAKALMETAGVPLVPGYHGEAQDLETFRAAAERIGYPVLLKATAGGGGKGMKVVEEVSQLAEALASAQREAQSSFGDARMLVEKYLLKPRHVEIQVFADRHGNCLYLNERDCSIQRRHQKVVEEAPAPGLGQELRRAMGEAAVRAAKAIGYVGAGTVEFLLDSRGEFFFMEMNTRLQVEHPVTEAITGLDLVAWQIRVAQGEPLPITQEQVPLLGHAIEVRLYAEDPANDFLPATGRLSLYRESAEDAGRRVDSGVDEGDEISPFYDPMLGKLIAWGENREQARLRLLAMLDEFAIGGLKTNIGFLRRIIAHPAFAAAELDTGFIPRYQAQLLPEPGELDDDFWRAAAQGFALSLTPRVRADDSNSPWAATAGLRLGLPAEITLHLSCDGQDRAVTLDVAGRGAELRGEQLIIEHNGVRREHRAIRHDDSLYLQWKGDLYRVDSYDPLAAAEASHSQQGGLVAPMNGSIVRVLVSAGQAVEAGAQLVVLEAMKMEHSIRAPKAGVIKAVYCQEGEMVSDGSALVELEEPGPT0019850_181DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TERPENE_UTILIZATIONvCITRONELLOL-CITRONELLAL-CITRONELLATE_DEGRADATION,PGPT0019850-atuC|atuF-K13777NANA
D1-35_00938819menB_11,4-dihydroxy-2-naphthoyl-CoA synthaseATGAATCATTACAACACGCTCCAATTGCAGATGGACCCGCGCGGCTTCGCCACCTTGTGGCTCGACCGCGAGTCGAAAAACAACGCGTTCAACGCCGAGATGATCCGCGAGCTGATCCTCGCCCTGGACCAGGTCGGCAGCGATCCGACCCTGCGTTTCCTGCTGATCCGTGGTCGTGGCAAACACTTCAGCGCCGGCGCCGACCTGGCCTGGATGCAGCAATCGGCCGAACTCGATTACCACACCAACCTCGACGACGCTCGGGAACTGGCGGAGCTGATGTACAACCTGGCCAAGCTGAAGATCCCGACACTCGCCGTTGTCCAGGGCGCGGCATTCGGCGGCGCGCTGGGTTTGATCAGCGCCTGTGACATGGCCATCGGTGCCGATGATGCGCAGTTCTGCCTGTCCGAAGTACGCATCGGCCTGGCGCCGGCCGTGATCAGTCCATTCGTGGTGCAGGCCATCGGCGAACGGGCGGCACGGCGTTACGCCCTGACGGCTGAACGTTTCGGTGGGCAACGGGCGAAGGAAATCGGTTTGCTGGCGGACAGTTACCCGGCCGAGGCCCTGGATGATCAGCTCGGCAAGTGGATCGACAACCTGCTGCTCAACAGTCCGGCGGCCATGCGCGCCAGCAAGGAACTGCTGCGCGAAGTCGGCAACGGTGCGTTGACCCCGGCGTTGCGGCGCTACACCGAAAATGCCATCGCGCGGATACGGGTCAGCCCCGAGGGCCAGGAAGGCCTGCGGGCGTTCTTGCAAAAACGGCCGCCGAGCTGGCAAGCCGAGTCCAACAACAAGGAGCCGCGTCGATGAMNHYNTLQLQMDPRGFATLWLDRESKNNAFNAEMIRELILALDQVGSDPTLRFLLIRGRGKHFSAGADLAWMQQSAELDYHTNLDDARELAELMYNLAKLKIPTLAVVQGAAFGGALGLISACDMAIGADDAQFCLSEVRIGLAPAVISPFVVQAIGERAARRYALTAERFGGQRAKEIGLLADSYPAEALDDQLGKWIDNLLLNSPAAMRASKELLREVGNGALTPALRRYTENAIARIRVSPEGQEGLRAFLQKRPPSWQAESNNKEPRRPGPT0026240_49DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR_VIRULENCE_REGULATORY_SYSTEM,PGPT0026240-paaK-K01912NANA
D1-35_009391608COG4799Methylmalonyl-CoA carboxyltransferase 12S subunitATGGCCACGCTGCACACTCAGCTCAACCCACGCTCACCGGAATTCAGCGCCAACCGCGACGCGATGCTCGGCCAGGTCGAGGCCCTGCGTACCTTGCTCGCCCACGTCCAGCAAGGCGGCGGAGCCAAGGCCCAGGAACGGCATACCTCACGGGGCAAATTGCTGCCCAGGGAACGCATCAATCGCTTGCTCGACCCGGGTTCGCCGTTCCTGGAGATCAGTCCGCTGGCGGCTTACGAAGTGTACGGCGAAGACGTTCCGGCCGCCGGCGTGATCGCCGGGATCGGTCGAGTGGAAGGCGTCGAATGCATGATTGTCGCCAACGACGCGACCGTCAAAGGTGGTTCGTATTACCCGCTGACGGTGAAAAAACACCTGCGCGCCCAGACCATCGCCCAACAGAACCGCCTGCCCTGCATCTACCTGGTGGATTCCGGCGGTGCCAACCTGCCGCGCCAGGACGAAGTCTTCCCCGATCGTGAGCACTTTGGCCGGATCTTCTTCAACCAGGCCAACATGAGTGCCCAGGGCATCCCGCAGATTGCCGTGGTCATGGGTTCCTGCACCGCTGGCGGCGCGTACGTGCCGGCGATGGCGGACGAGGCGATCATGGTCCGCCAGCAGGCAACGATTTTCCTCGCCGGCCCGCCGTTGGTAAAAGCGGCGACTGGAGAGGTGGTCAGTGCCGAGGACCTGGGCGGCGCCGACGTGCATTGCAAGGTTTCCGGTGTCGCCGACCATTACGCCGACAGCGATGAACACGCCCTGGCGCTGGCCCGCCGCAGCGTGGCCAATCTCAACTGGCGCAAGCTCGGTGATGTGCAGCGACGCGCGCCCACCGCCCCGCTGTATTCGAGTGAGGAGCTGTATGGCGTGGTTTCGGCCGACGCGAAGCAGCCATTCGACGTGCGAGAAGTGATCGCACGTCTGGTGGACGGCTCGGTGTTCGACGAGTTCAAAGCGCTGTTCGGAACGACCCTGGTCTGCGGTTTCGCCCACTTGCACGGTTACCCGGTCGCCATCCTGGCCAACAACGGCATCCTGTTCGCCGAGGCCGCACAAAAAGGCGCGCACTTCATCGAACTGGCCTGCCAGCGCGGCATACCGCTGCTCTTCCTGCAGAACATCACCGGGTTCATGGTCGGTCAGAAATACGAAGCCGGCGGCATCGCCAAGCATGGCGCAAAACTGGTAACCGCGGTGGCCTGCGCCCGAGTGCCGAAATTCACCGTGATCATCGGCGGCAGTTTCGGCGCCGGTAACTACGGCATGTGCGGCCGCGCCTATGACCCACGCTTTTTGTGGATGTGGCCGAATGCGCGGATCGGCGTGATGGGCGCCGAACAGGCGGCCGGCGTGCTGGTGCAGGTCAAGCGCGAACAGGCCGAACGCAGCGGCCAGCCGTTCAGCGCAGTTCAGGAGGCCGAGATCAAGCAACCGATCCTCGACCAGTACGAAGAACAGGGGCATCCCTACTATTCCAGCGCGCGGCTGTGGGATGACGGCGTCATTGACCCGGCGCAGACGCGCGATGTGCTGGGCCTGGCCTTGTCCGCGTCGCTGAACGCGCCCATCGAACCGAGCCGCTTCGGCGTGTTCAGGATGTAAMATLHTQLNPRSPEFSANRDAMLGQVEALRTLLAHVQQGGGAKAQERHTSRGKLLPRERINRLLDPGSPFLEISPLAAYEVYGEDVPAAGVIAGIGRVEGVECMIVANDATVKGGSYYPLTVKKHLRAQTIAQQNRLPCIYLVDSGGANLPRQDEVFPDREHFGRIFFNQANMSAQGIPQIAVVMGSCTAGGAYVPAMADEAIMVRQQATIFLAGPPLVKAATGEVVSAEDLGGADVHCKVSGVADHYADSDEHALALARRSVANLNWRKLGDVQRRAPTAPLYSSEELYGVVSADAKQPFDVREVIARLVDGSVFDEFKALFGTTLVCGFAHLHGYPVAILANNGILFAEAAQKGAHFIELACQRGIPLLFLQNITGFMVGQKYEAGGIAKHGAKLVTAVACARVPKFTVIIGGSFGAGNYGMCGRAYDPRFLWMWPNARIGVMGAEQAAGVLVQVKREQAERSGQPFSAVQEAEIKQPILDQYEEQGHPYYSSARLWDDGVIDPAQTRDVLGLALSASLNAPIEPSRFGVFRMPGPT0008345_76DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_FATTY_ACID_METABOLISM,PGPT0008345-accD-K01970NANA
D1-35_009401164mmgC_1COG1960Acyl-CoA dehydrogenaseATGAGCTACCCATCCCTGAATTTTGCCCTTGGCGAAACTATCGATATGTTGCGCGACCAGGTGCAATCCTTCGTCAAGGCAGAGTTGGCGCCTCGGGCGGCGCAGATCGACATAGACAATCTGTTCCCCGCCGATATGTGGCGCAAGTTCGGCGACATGGGCCTGCTGGGCATCACCGTCCCGGAAGAATATGGCGGCGCTGGCCTGGGTTACCTGGCCCATGTGGTGGCGATGGAAGAAATCAGCCGCGGCTCGGCCTCGGTCGCCCTCTCCTACGGCGCCCACTCCAACCTGTGCGTCAACCAGATCAATCGCAACGGCAACCATGAGCAGAAAACCAGATACCTGCCCAAGCTGATCAGCGGCGAACACATCGGCGCCCTGGCCATGAGCGAACCGAACGCCGGCTCCGATGTGGTTTCGATGAAACTGCGCGCCGACAAACGCGGCGACCGCTACGTTCTCAACGGCAGCAAGACCTGGATCACCAACGGGCCTGACGCCAACACCTATGTGATCTACGCCAAGACCGACCTGGAAAAAGGCGCCCACGGCATTACTGCGTTCATCGTCGAACGCGACTGGAAAGGCTTCAGCCGCAGCAACAAGTTCGACAAGCTCGGCATGCGCGGCTCCAACACCTGTGAGCTGTTTTTCGACGACGTCGAGGTGCCGGAAGAAAACATCCTCGGCGTACTCAATGGTGGCGTGAAGGTCCTGATGAGTGGCCTCGATTATGAACGCGTGGTCTTGTCCGGCGGCCCGACCGGGATCATGCAGGCCTGCATGGACCTGATCGTGCCCTATATCCATGATCGCAAGCAGTTCGGCCAGAGCATCGGCGAATTCCAGCTGATCCAGGGCAAGGTTGCGGATATGTACACCCAGCTCAACGCCAGCCGCGCCTACCTGTATGCGGTGGCCCAGGCCTGCGAGCGCGGCGAAACCACGCGCAAGGACGCCGCCGGAGTGATCCTCTACAGCGCCGAACGCGCGACGCAAATGGCCCTTGATGCCATCCAGATCCTGGGCGGCAATGGCTATATCAATGAATTCCCGGCCGGGCGCCTGCTGCGTGACGCCAAGCTGTATGAAATCGGCGCCGGCACCAGTGAGATCCGACGGATGCTGATCGGCCGCGAACTGTTCAACGAAACCCGCTAAMSYPSLNFALGETIDMLRDQVQSFVKAELAPRAAQIDIDNLFPADMWRKFGDMGLLGITVPEEYGGAGLGYLAHVVAMEEISRGSASVALSYGAHSNLCVNQINRNGNHEQKTRYLPKLISGEHIGALAMSEPNAGSDVVSMKLRADKRGDRYVLNGSKTWITNGPDANTYVIYAKTDLEKGAHGITAFIVERDWKGFSRSNKFDKLGMRGSNTCELFFDDVEVPEENILGVLNGGVKVLMSGLDYERVVLSGGPTGIMQACMDLIVPYIHDRKQFGQSIGEFQLIQGKVADMYTQLNASRAYLYAVAQACERGETTRKDAAGVILYSAERATQMALDAIQILGGNGYINEFPAGRLLRDAKLYEIGAGTSEIRRMLIGRELFNETRPGPT0002285_734DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0002285-bcd-K00248NANA
D1-35_009411710fadD3_1COG03183-[(3aS,4S,7aS)-7a-methyl-1,5-dioxo-octahydro-1H-inden-4-yl]propanoyl:CoA ligaseATGGATCAACCCGGTTCGCATACGCAACTCAGCTATACCCGCGGTTCCCAGGCCAAGGCCTTGCTGGCCCAAACCATCGGCGAGGCGTTTGACCAGACGGTGACCGACTGTCCTGACGGCGAAGCGCTGGTGGTTCGCCACCAATCATTGCGCTACAGCTGGCGCGAATTGGCCGCGGCGGTCGATCTGCACGCCCGGGCCATGCTCGCGCTGGGTTTGGAAACCGGCGATCGGCTGGGCATATGGGCACCCAATTGCGCGCAGTGGTGCATTACCCAATTTGCCAGCGCGAAGGTCGGCGTGATCCTCGTCAACATCAACCCGGCCTATCGGGCCTCGGAACTGGAGTACGTGCTCAAACAGTCCGGATGCCGCTGGCTGGTGTGTGCGGGGGCTTTCAAGACTTCGGATTACCACGCCATGTTGCAGGCATTGGCACCGGAACTGGCAGAGCAATCGATCGGCCAGCTGCGAAGCGAACGCTTGCCGGATCTGCGCGGCGTGATCAGCCTCGATTCCCAGCCGCCTTCAGGCTTCCTGCCCTGGTCGCAGCTGGCCGACCTCGGTGCAGCCATCTCGCCTGGGCAATTGGCCGAGCGCCAGGACAGCCTGCATTTCGAGCAGCCGGTGAATATCCAGTACACCTCCGGCACCACCGGATTTCCCAAGGGCGCGACCCTCAGTCACCAGAACATTCTCAACAACGGTTACATGGTCGGTGAAAGCCTCGGCCTGACCGCCGGCGATCGTCTGGTGATCCCGGTGCCGTTGTATCACTGCTTCGGCATGGTCATGGGTAACCTGGGATGCATGACCCACGGCAGTACCATGATCTACCCCAACGATGCCTTCGATCCGTTGCTGACGCTACGGACCGTGGCCGAAGAAAGAGCCACCGCGCTGTACGGGGTCCCCACCATGTTTATCGCCATGCTGGACCAGCCGCAGCGCGGGGATTTCGACCTGTCCAGCCTGCGCACCGGGATCATGGCCGGAGCCACCTGTCCGATCGAGGTGATGCGGCGGATCATCAGCGAGATGCACATGGCCCAAGTGCAGATTGCCTACGGCATGACGGAAACCAGCCCGGTGTCGTTGCAGACCGGTCCCACGGATGAACTGGAGTTGCGCGTCACGACCGTTGGGCGTACCCAGCCGCAGCTGGAGAGCAAGATCATCGACGGGAACGGCGAGGTTGTCCCTCGCGGCACCATCGGTGAATTGTGCACGCGCGGTTACAGCGTGATGCTCGGCTACTGGAACAACCCCAAGGGCACGGCCGAGGCGATCGATGCGCAGGGCTGGATGCACACCGGCGACCTGGCGAGCATGGATGAGCAGGGTTACGTCTGTATCGTCGGACGGAACAAGGACATGATCATCCGTGGCGGCGAGAATGTTTATCCCCGCGAACTGGAGGAGTTCTTTTTCACCCATCCCGCCGTGGCGGATGTGCAGGTGATCGGCATTCCATGCCCACGCTACGGTGAGGAGATCGTGGCCTGGATCAAACTCCATCCCGGCCACAGCGTCACCGAGGAGCAGTTGCAAGCGTGGTGCAAGGAACGCATCGCTCACTTCAAGACACCGCGTCATTTCAAATTTGTCGAGCAGTTCCCGATGACGGTTACCGGCAAGATCCAGAAATTTCGCATGCGCGAAATCAGTATCGAAGAGCTGCGCAATCACCAGGGCCAACCACAATCCTAGMDQPGSHTQLSYTRGSQAKALLAQTIGEAFDQTVTDCPDGEALVVRHQSLRYSWRELAAAVDLHARAMLALGLETGDRLGIWAPNCAQWCITQFASAKVGVILVNINPAYRASELEYVLKQSGCRWLVCAGAFKTSDYHAMLQALAPELAEQSIGQLRSERLPDLRGVISLDSQPPSGFLPWSQLADLGAAISPGQLAERQDSLHFEQPVNIQYTSGTTGFPKGATLSHQNILNNGYMVGESLGLTAGDRLVIPVPLYHCFGMVMGNLGCMTHGSTMIYPNDAFDPLLTLRTVAEERATALYGVPTMFIAMLDQPQRGDFDLSSLRTGIMAGATCPIEVMRRIISEMHMAQVQIAYGMTETSPVSLQTGPTDELELRVTTVGRTQPQLESKIIDGNGEVVPRGTIGELCTRGYSVMLGYWNNPKGTAEAIDAQGWMHTGDLASMDEQGYVCIVGRNKDMIIRGGENVYPRELEEFFFTHPAVADVQVIGIPCPRYGEEIVAWIKLHPGHSVTEEQLQAWCKERIAHFKTPRHFKFVEQFPMTVTGKIQKFRMREISIEELRNHQGQPQSPGPT0008380_8037DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897NANA
D1-35_00943900liuECOG01193-hydroxy-3-isohexenylglutaryl-CoA/hydroxy-methylglutaryl-CoA lyaseATGTCCCTCCCCTCCTTTGTACGTTTGATCGAAGTCGGCCCCCGCGACGGCCTGCAGAATGAATCCCAACCCATCAGCGTGGCGGACAAGGTGCGTCTGGTTGACGCCCTGAGCGATGCGGGCCTGGGTTACATCGAAGTCGGCAGTTTTGTCTCGCCCAAATGGGTGCCGCAGATGGCCGGTTCGGCCGAGGTATTTGCGCAGATCCAGCGCAAGCCTGGCGTGACCTATGGCGCCCTGGCACCGAACCTGCGGGGTTTCGAGGACGCACTGGCGGCGGGGGTCAGGGAGGTCGCTGTATTCGCCGCGGCGTCCGAAGCGTTTTCCCAGCGCAACATCAATTGCTCGATCCAGGAAAGCCTGGAACGCTTCGCACCGATCATGGAGGCGGCGAAGCACAGCGGCGTCAGCGTGCGCGGCTACGTGTCCTGCGTGCTGGGCTGCCCCTATGAGGGCGAGGTCAAGCCCGAGCAGGTCGCGTGGGTCGCCCGGGAGCTGTACGCCATGGGCTGTTACGAGGTGTCCCTCGGTGACACCATCGGCACCGGCACCGCCGGTGCAACGCGCAGGATGTTCGAGGTAGTCGGCGCGGACGTGCCCCGGGACAAACTGGCGGGACATTTCCATGACACCTATGGCCAGGCCATGGCCAACGTCTACGCCAGCTTGCTGGAGGGTATCGCCGTGTTCGACAGCTCAATCGCCGGCCTGGGCGGCTGCCCTTATGCCAAGGGCGCCAGCGGTAACGTCGCCACGGAAGACGTGCTGTACCTGCTCAACGGCCTCGGCATCGAGACCGGCATTAATCTGGATGCACTCATCGCCGCGGGCCGGCAGATCTGCGACGTGCTGGGTCGCTCGACCGGTTCGCGGGTGGCCAAGGCGCGCCTGGCGCGGTGAMSLPSFVRLIEVGPRDGLQNESQPISVADKVRLVDALSDAGLGYIEVGSFVSPKWVPQMAGSAEVFAQIQRKPGVTYGALAPNLRGFEDALAAGVREVAVFAAASEAFSQRNINCSIQESLERFAPIMEAAKHSGVSVRGYVSCVLGCPYEGEVKPEQVAWVARELYAMGCYEVSLGDTIGTGTAGATRRMFEVVGADVPRDKLAGHFHDTYGQAMANVYASLLEGIAVFDSSIAGLGGCPYAKGASGNVATEDVLYLLNGLGIETGINLDALIAAGRQICDVLGRSTGSRVAKARLARPGPT0008315_2854DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TERPENE_UTILIZATIONPLANT_DERIVED_CITRONELLOL-CITRONELLAL-CITRONELLATE_DEGRADATION,PGPT0008315-hmgL-K01640NANA
D1-35_00944402cueRCOG0789HTH-type transcriptional regulator CueRATGAGCAGCCAGACCTACAGCATCTCCGACCTCGCCCGCGAACTGGATATCACCACCCGCGCCATCCGCTTCTATGAAGAACAGGGTCTGTTGCGCCCGGAGCGCCGTGGTCAGGAACGTATCTACTCGCCGCGGGACAAGGTCAGCCTGAAACTGATCCTGCGGGGCAAGCGCATCGGTTTCTCTCTCGCCGAGTGCCGTGAGTTGATCGAACTCTACGACCCCAGCAGCGGCAATCAGAAACAACTGCACAGCATGCTGGCGAAAATCGCCGAACGGCGCGAACAGCTCGAACAGCAGTTGCTGGATATCGAACAGATGAAGCTGGAGCTCGACACCGCCGAAGAACGTTGCATCCAGGCGCTGGAGCAGACGATCAAAGGCGAGGAAGTCGTCCAGTAAMSSQTYSISDLARELDITTRAIRFYEEQGLLRPERRGQERIYSPRDKVSLKLILRGKRIGFSLAECRELIELYDPSSGNQKQLHSMLAKIAERREQLEQQLLDIEQMKLELDTAEERCIQALEQTIKGEEVVQPGPT0004135_1043DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexPQ-OpmE,PGPT0004135-cueR-K19591NANA
D1-35_00945930pcpR_1PCP degradation transcriptional activation proteinATGAATCTGAGCAAGGTCGACCTCAACCTTTTCATTGTCTTTGATGCGATCTACACCGAAGCCAACCTGACCCGGGCCGGGCAGATCGTCGGCATCACTCAACCGGCGGTGTCCAATGCCCTGGCGCGTTTGCGCGAGACGTTCAACGACCCGCTGTTCGTGCGTACTGCCCAAGGCATGGTGCCCACGCCGATGGCCCAGAATATTATCGGGCCGGTGCGCAACGCCCTGTCGCTGCTCCGGGTGTCGGTGCAGGAAAGCCGGATCTTCAACCCGCTGCAAGCCGTGAAGACCTATCGCATCAGCATGACCGACCTCACCGAGGGCGTGATCCTGCCGCCGCTGTTCCAGCGCCTGCGCCGCCTGGCGCCGACCGTGGCCATCGAGAGTTTCCTGTCCAAGCGTCGGGAAACCACCAAGGAGCTGGCCGCCGGGCGCCTGGATTTCGCGGTTGATGCTCCACTCAATACCGATCCGCAGGTGCGCCACGTCAAGCTGATGGAAGATCGCTACGTGTGTGCCATGCGCAAGGGCCACCCGTTGGCGGGCAAGGAAAAACTCAGCCTGGATGATTACCTGGCCCAGACCCATGTACATATCTCCAGCCGCCGCAACGGCCTCGGTTATGTCGACCTGGCATTGGGCAAGATGGGCATCCAGCGCAAGATCGCCCTGCGCTCGCAGCATTATCTGATGGCTTCCCAGGTACTCCAGCAGACCGACATGGTCATGACCGTTCCCGAACGTTTCGCCCGTCGCCACGACCTGCATGCGTTCCTGTTGCCCGTCAACGATGTGCCGCCGGTGGAAACCCATCTCTACTGGCACGAAAGCACCGACCAGGACCCGGCCAACCGCTGGATGCGCGAGCAGATGATCGAGCTGTGCCAGCAGGTGACGGCGCATGAGAAGAAGCTTGATAAGGTTTAGMNLSKVDLNLFIVFDAIYTEANLTRAGQIVGITQPAVSNALARLRETFNDPLFVRTAQGMVPTPMAQNIIGPVRNALSLLRVSVQESRIFNPLQAVKTYRISMTDLTEGVILPPLFQRLRRLAPTVAIESFLSKRRETTKELAAGRLDFAVDAPLNTDPQVRHVKLMEDRYVCAMRKGHPLAGKEKLSLDDYLAQTHVHISSRRNGLGYVDLALGKMGIQRKIALRSQHYLMASQVLQQTDMVMTVPERFARRHDLHAFLLPVNDVPPVETHLYWHESTDQDPANRWMREQMIELCQQVTAHEKKLDKVNANANANANA
D1-35_009461230bbsG(R)-benzylsuccinyl-CoA dehydrogenaseATGGATTTTGCCTACTCCCCCAAGGTTCAGGAACTGCGTGAGCGCGTCACGGCGTTCATGGATGCCTATGTCTACCCGGCCGAGGCCGTGTTCGAACGGCAAGTGGCTGAAGACGACCGTTGGCAGCCGACTGCAATCATGGAGGAGCTCAAGGCCAAGGCCAAAGCCGAAGGGTTGTGGAATCTGTTCCTGCCCGAGTCCGAGTTGGGGGCCGGCCTGACCAACCTGGAATATGCACCGCTGGCGGAGATCATGGGGCGTTCGCTGCTGGGCCCGGAGCCGTTCAACTGTTCGGCGCCGGACACCGGCAACATGGAAGTGCTGGTGCGTTACGCCAACGAGGAACAAAAGCAGCGCTGGCTCGAACCGCTGCTGCGGGGCGAGATTCGTTCGGCCTTTGCCATGACCGAACCGGACGTTGCTTCGTCGGACGCCACCAACATGGCTGCCCGTGCCGAGCGTGACGGCGATCAATGGGTCATCAACGGCAAGAAATGGTGGACCTCGGGCGCCTGCGACCCACGCTGCAAGATCCTGATCTTCATGGGCCTGAGCAATCCCGACGCACCTCGTCACGCCCAGCACTCGATGATCCTGGTGCCGGTGGACACCCCCGGAGTAAAGATCGTCCGGCCGCTACCGGTGTTCGGCTATGACGATGCACCTCACGGCCACGCCGAAGTGCTGTTCGATAACGTGCGGGTGCCGTACGAAAACGTCTTGCTGGGCGAAGGACGCGGCTTTGAAATTGCCCAGGGTCGCCTCGGGCCGGGCCGGATTCACCACTGCATGCGCTCCATCGGCATGGCCGAGCGTGCCTTGGAATTGATGTGCCAGCGCGCCATCAGTCGAACCGCTTTTGGCCAGCCGCTGGCGCGCCTGGGTGGCAACATCGACAAGATCGCCGACTCGCGAATGGAAATCGACATGGCGCGCCTGCTGACCTTGAAGGCGGCGTACATGATGGACACGGTCGGCAATAAAGTGGCCAAAAGCGAAATCGCCCAGATCAAGGTCGTCGCGCCGAACGTGGCCTTGAAAGTCATTGATCGGGCGATCCAGATCCACGGCGGGGCCGGGGTCTCCAACGATTTCCCGCTGGCCTACATGTATGCCATGCAGCGCACGCTGCGCCTGGCCGATGGTCCGGATGAGGTCCATCGGGCGGCTATCGGCAAGTTCGAGATCGGCAAGTATGTGCCCAAGGAGATGTTGCGTAGCGGGCGCTGAMDFAYSPKVQELRERVTAFMDAYVYPAEAVFERQVAEDDRWQPTAIMEELKAKAKAEGLWNLFLPESELGAGLTNLEYAPLAEIMGRSLLGPEPFNCSAPDTGNMEVLVRYANEEQKQRWLEPLLRGEIRSAFAMTEPDVASSDATNMAARAERDGDQWVINGKKWWTSGACDPRCKILIFMGLSNPDAPRHAQHSMILVPVDTPGVKIVRPLPVFGYDDAPHGHAEVLFDNVRVPYENVLLGEGRGFEIAQGRLGPGRIHHCMRSIGMAERALELMCQRAISRTAFGQPLARLGGNIDKIADSRMEIDMARLLTLKAAYMMDTVGNKVAKSEIAQIKVVAPNVALKVIDRAIQIHGGAGVSNDFPLAYMYAMQRTLRLADGPDEVHRAAIGKFEIGKYVPKEMLRSGRPGPT0008385_3077DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008385-acd-K00249NANA
D1-35_00947870COG2513Oxaloacetate decarboxylaseATGTCCAGGCTTTCCCATCAAGATTTGCGTCGAAATTTCCGCCAATTGCTGGCTTCCACAAATTGCTACCACACAGCTTCAGTGTTCGATCCGATGTCGGCGCGCATTGCCGCCGACCTGGGTTTCGAGGTAGGCATCCTTGGAGGCTCGGTGGCGTCACTGCAAGTATTGGGCGCGCCGGATTTTGCCCTGATCACCCTCAGCGAATTTGCCGAGCAGGCCACCCGCATCGGACGCGTCGCGCAACTACCGGTGATCGCCGACGCCGACCACGGCTACGGCAACGCACTGAACGTGATGCGTACCATCATCGAGCTCGAACGCGCCGGCGTGGCGGCGCTGACGATTGAAGACACCTTGCTGCCGGCACAATTTGGCCGCAAATCCACCGACCTGATCAGCGTGGCCGAAGGCGTCGGCAAGATTCGCGCGGCTCTGGAGGCGCGGGTCGACTCGGAAATGGCCATCGTCGCCCGCACGAACGCGGGGATTCTGCCGGTCCAGGAGATCATCAGTCGCACCCGGCAATACGAGCGCGCCGGCGCGGACGGCATTTGCATGGTAGGCGTGCAGGATTTCGAGCATCTGGAGCAGATCAGCGAGAACCTGAACGTACCGCTGATGCTCGTGACTTATGGCAACCCGCTGCTGCGCGACGATAAACGCCTGGCTGAACTGGGCGTGAGAATCACGATTGACGGCCACGGCGCGTATTTCGCCGCGATCAAGGCTACCTACGACAGCCTGCGGGAACAGCGTCAGATCTTCACCCAGGCATCAGACCTCAGCGCCACGGAACTGACCCACACCTACACCCAGCCCGAGGAATATATCCGCTGGGCCGAGGAGTATATGAGCGTCAAGGAGTGAMSRLSHQDLRRNFRQLLASTNCYHTASVFDPMSARIAADLGFEVGILGGSVASLQVLGAPDFALITLSEFAEQATRIGRVAQLPVIADADHGYGNALNVMRTIIELERAGVAALTIEDTLLPAQFGRKSTDLISVAEGVGKIRAALEARVDSEMAIVARTNAGILPVQEIISRTRQYERAGADGICMVGVQDFEHLEQISENLNVPLMLVTYGNPLLRDDKRLAELGVRITIDGHGAYFAAIKATYDSLREQRQIFTQASDLSATELTHTYTQPEEYIRWAEEYMSVKEPGPT0001930_62DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001930-bcpA-K01003NANA
D1-35_009481035aruG_2COG3138Arginine N-succinyltransferase subunit betaGTGGTAGTCCGCCCGGTTGCCCTGACCGACTTACCCGCATTGATGGACCTCGCCCGTTGCGCCGGCCCTGGGTTCACCAGCCTGCCGGCCAACGAGGAGCGCCTGGCGCACCGGGTACGCTGGGCCCAGCGCACCTTCGCCGGACAGGTCGAACGGGCGGACGCCGACTATCTGTTCGTGCTTGAAGACGATGACCGTCAGGTAGTGGGTATCAGCGCTCTCACTGGCGCAATCGGACTGCGCGAGCCCTGGTACAACTATCGGCTCGGGGTCACGGTCAGCTCGGCGCCCGAGCTGGGCATCCAGCGGCATATTCCGACGCTGTTCCTCAGTAACGAGATGACCGGGCAGTCGGAAATCTGCTCGTTGTTTCTTCATCCCCAGCACCGTCGCGGCCATAACGGGCGCCTGCTGTCCCTGGCGCGCCTGCTGTTCGTGGCGGAGTTTTCCGGGCTGTTTGGCGATAAGCTGATCGCCGAATTACGCGGCCACGCCGATGAACAAGGTTGCTCGCCGTTCTGGGACAGCCTGGGACGACACTTTTTCCAGAAGGACTTCAGCCACGCCGACCAGTTGTCCAGCATGGGCAACAAATCCTTCATCGCCGAGCTGATGCCCCGCCAACCGCTGTACACCTGCCTGCTCACCGAGCAGGCCCAGGCCGTGATCGGCAAGGCTCACCCCAACACCGAACCGGCCTTGAAGATCCTTGGCGATGAGGGTTTTTCCCATAAAGGGTACGTGGATATCTTTGACGCCGGCCCGGTGATCGAAGCGCCGGTATCGAACATCCGCAGCGTCCGCGACAGCCAGTCGCTGACGCTGACCATAGGCACCCCGGACGAACGGGCGCCGGGCTGGCTGATTCATAACCGGCGCCTGGAGAACTGCCGCGTCACCAGCGCCCGGGGGCACCTGCACGGCCAGGGCCTGGTCGTCGATCGCCTGACCGCCAAACGCCTGCAAGTACAACCGGGTGACACGGTGCGCGCCGTGCTGCTGTTCAAACAGGATCGCCAGGCGGTGGCGGCATAGMVVRPVALTDLPALMDLARCAGPGFTSLPANEERLAHRVRWAQRTFAGQVERADADYLFVLEDDDRQVVGISALTGAIGLREPWYNYRLGVTVSSAPELGIQRHIPTLFLSNEMTGQSEICSLFLHPQHRRGHNGRLLSLARLLFVAEFSGLFGDKLIAELRGHADEQGCSPFWDSLGRHFFQKDFSHADQLSSMGNKSFIAELMPRQPLYTCLLTEQAQAVIGKAHPNTEPALKILGDEGFSHKGYVDIFDAGPVIEAPVSNIRSVRDSQSLTLTIGTPDERAPGWLIHNRRLENCRVTSARGHLHGQGLVVDRLTAKRLQVQPGDTVRAVLLFKQDRQAVAAPGPT0020090_427DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020090-astA-K00673NANA
D1-35_009491017astA_2COG3138Arginine N-succinyltransferase subunit alphaATGCTGGCTTTACGTCCAGTTCAGTTAACCGATTTGCCGCAGTTGCAGCAGCTGGCCCGCGACAGCCTGGTGGGCGTCACCTCGCTTCCCGACGACACGGATCGCCTGCGAGACAGAATCCTCAGCTCATGCGCCTCGTTCGAAACCGACGTGCAACGCCCCGGTGCGCAGAATTACTTTTTTGTCCTGCAGGACCTGGTGTCGAGCCGCCTGCTGGGCTGCTCGGAAATCGTTGCGGCCACCGGTTGCGACGAGCCGTTCTACAGCCTGCGCAACCGGCCGTTTTCCAGCGAGTCCCGGGAGTTGAACATCCAGCATGGCGTACCGGCACTGTCGCTGTGCCAGGACCTGAATGGCCAGACGCTGCTGCGCGGCTTTCATATCGACGCCGCACACGTGCACACGCCGCAATCGCAATTGTTGTCCCGCGCCCGGCTGATGTTTGTCGGCGCCCATCCCCAACGCTTTGCCGACTCGGTGATCACAGAGATCGTCGGGTACAGCAGCAAGGAAGGCCATTCGCCCTTCTGGGATGCCATCGGTCAGCACTTTTTCGACCTGTCCTACACCGAAGCCGAACGATTGTGCGGCCTGCAGAGTCGGACCTTTCTCGCCGACCTGATGCCGCAATACCCGATCTATGTCCCTATGTTGCCGCCCCAGGCCCAGGCTTGTATCGGCCGGATCCACCCCGACGGCCAGGAAGCCTTCGACATTCTCGAACGCGAGGGTTTCGAAACCAATAGCTACGTGGACATCTTTGACGGGGGGCCGACGATGCACGCCCGGGTCGCGAACATCCGCTCGATCATTCACAGTCGCTCGGCCGTCGTGCGTCCGAGCCAGCAGGTTGACGCCACGGGGCGCTACCTGGTGAGTAATGATGGCCTGGGTAGTTACCGGGCCATCATCGCCGACCTGGACCTTGACGCCGAAGGCTTCGTGCGCCTGTCCCCTGACATGCTGGCAGCGCTTGAAGTTGCCGACGGTGACCGGGTCCGGGTGGTCAGCCTATGAMLALRPVQLTDLPQLQQLARDSLVGVTSLPDDTDRLRDRILSSCASFETDVQRPGAQNYFFVLQDLVSSRLLGCSEIVAATGCDEPFYSLRNRPFSSESRELNIQHGVPALSLCQDLNGQTLLRGFHIDAAHVHTPQSQLLSRARLMFVGAHPQRFADSVITEIVGYSSKEGHSPFWDAIGQHFFDLSYTEAERLCGLQSRTFLADLMPQYPIYVPMLPPQAQACIGRIHPDGQEAFDILEREGFETNSYVDIFDGGPTMHARVANIRSIIHSRSAVVRPSQQVDATGRYLVSNDGLGSYRAIIADLDLDAEGFVRLSPDMLAALEVADGDRVRVVSLPGPT0020090_1075DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020090-astA-K00673NANA
D1-35_00950753hypothetical proteinATGCGTGAATCCATTGAATGTGCCGAATCGGGCCTCTATACCAAGCCTGCTTTCCGGTTGCTGCGTGAAGACTCCGAGCATCCATTGTTGCTGGTTTGCGAACATGCCAGCCGCTACATTCCTGATGCACTGAACGACCTGGGCCTGGATGAAACCGCCGCTCAGGAACATATTGCCTGGGACATCGGTGCGCTGGCCCTGGCCGAGCGGCTGTCCGAAACCCTCGGCGCCACCTTGCTGTCGGCCAACTATTCAAGGTTGTTGATCGACCTGAACCGTCCGCTTCACGTCGCCGACAGCATTCCGGCGCAAAGCGAGATCTACCAGATTCCTGGCAACCAGTCCTTGGATGACGCTACGCGCGCGTATCGCCAACGGTGCCTCTTCCATCCATTCCATGATCAATTGCGCGCCTTGATCGACCAACGCCTGGCCGACAAGCGGACCGTGCGAGTGGTCGGCATCCACAGTTTCACCCCGGTGTTCTACGGCCAGCCGCGGGCGCTTGAGGCCGGAGTATTGTTTGGCGAAGCCCGGGAATATGCCCAGCGCATCGTCGGCGCGTTGGCGCGCCATTCGCTGCGGGCCGCCGGCAATCAGCCCTATAAGGTCAGCCCGTTGAGTGACATGACGGTTCCAGTCCACGGCGACGGCCGCGGCCTGGATTCGGTGCTGATCGAAGTACGCAACGACCTGTTGCGCAGTTCCGAATCGGTGCGGACCTGGAGCGCCTATCTCGCGCCGCTGCTGTAAMRESIECAESGLYTKPAFRLLREDSEHPLLLVCEHASRYIPDALNDLGLDETAAQEHIAWDIGALALAERLSETLGATLLSANYSRLLIDLNRPLHVADSIPAQSEIYQIPGNQSLDDATRAYRQRCLFHPFHDQLRALIDQRLADKRTVRVVGIHSFTPVFYGQPRALEAGVLFGEAREYAQRIVGALARHSLRAAGNQPYKVSPLSDMTVPVHGDGRGLDSVLIEVRNDLLRSSESVRTWSAYLAPLLNANANANANA
D1-35_00951150hypothetical proteinATGCCTCTCTTCAGAGACCCGATCACTGATCCGTGCCTGGCTATGATGCTTTCGGTACACAAGGTCATATGTGCCCTGTATGGCCGGGCGCCGCCCGACGCCTTGCCCCAGGCGCTGTCACCAGCCGAACTTTGTGAGCACTATGCGTGAMPLFRDPITDPCLAMMLSVHKVICALYGRAPPDALPQALSPAELCEHYANANANANANA
D1-35_00952579hypothetical proteinGTGCAAGCCACTCGCCTTACCCTGATCTGCCATGCCCGCACCGCCGCCCAGAAAGATGCACGTTTCGGCTTGGACGAACCGCTGGACGCCGGCTGGCTGGCGACGCGTGCCGAGATCGGCCATGAATACCGGAACGTCCGCCGCCTGCTCTGCGGGCCAGAGCTGCGCACCCGCCAGACCGCGGCGCTGTTGGGCGACGATCCGCAGGTGGTCCAGGCGTTGGCCGATTGTGATTTCGGGCGTTGGCGCGGGATGTCTGTCGATGAATTGCTCAAGACGGAGCCGGAATGCCTTCAAGCCTGGCGTGACGACCCGGACGCCGCGCCCCACGGCGGCGAGTCCGTCAGCGGAATATGTCGCCGGGTCGGCGACTGGCTGACGACGCTGCAACACACTCCGGGCCACTGGCTGGCCGTTACCCATCCGTTCGTGATTCGCGCTGCCCTGCTGAACGTACTGGGTTGCCCGCTGGGCATGTTCCACCGGATCGACATCGAATCGCTTTCCGTCACTGAGTTGCGTTTCAACGGGGTATGGCGATTTCGCACCCAGGGGCCTGGCCGGGAGCCGCAAGCATGAMQATRLTLICHARTAAQKDARFGLDEPLDAGWLATRAEIGHEYRNVRRLLCGPELRTRQTAALLGDDPQVVQALADCDFGRWRGMSVDELLKTEPECLQAWRDDPDAAPHGGESVSGICRRVGDWLTTLQHTPGHWLAVTHPFVIRAALLNVLGCPLGMFHRIDIESLSVTELRFNGVWRFRTQGPGREPQANANANANANA
D1-35_00953756hypothetical proteinATGAAGAGATTGTCGGTGATAGGCATCGGTGCCGGTGATCCCGATCACCTGACGATGCAAGCGGTGAAGGCCCTGAATCAGGTCGATGTGTTTTTCCTGATGGACAAAGGGCCCGGCAAGGACGCGCTGTTGGACCTGCGTCGCGACATCTGTCGCCGCTACATCACTGATCGCACCTACCGTTTTGTCGAAGCCGGCAGTCCCGAGCGCCAGCGCGAGGATCTGGACTACACGGCCAGTGTCGAGGCACTTAACCGGGCGAAGCAGGCAACGTTCGAAAGATTGATCAATGAGCAATTGTCTGACGGGCAGCGTGGCGGTTTCCTGGTGTGGGGCGACCCATCGCTGTACGACAGCACCCTGCGCATCCTGCAGGCGATCCTTGATTCGGGGCGCTGCGTCTTCGAGTTCGATGTCGTTCCGGGGATTACCAGCGTCCAGGCCCTCGCGGCGCGACACAAGGTGCCGTTGAACAGTATCGGCGGCTCGCTGGAGATCACCACGGGCCGCAGGCTGGCGGCGGGGCGGGTTGGCGATGCCGCGAGCACGGTGGTGATGCTTGATGCCGAGGATGCGTATCGCCAGGTCAGCGATCCTGATACGCAGATCTATTGGGGCGCCTACGTGGGAATGGCGGATGAATTGCTCATTGCCGGACGGCTGGGGGACGTGGCCGACGACATTGAACGCACCCGCAAGGCGGCGCGACAGGCGAATGGGTGGATCATGGATACGTATTTGTTGCGCAAACCCTGAMKRLSVIGIGAGDPDHLTMQAVKALNQVDVFFLMDKGPGKDALLDLRRDICRRYITDRTYRFVEAGSPERQREDLDYTASVEALNRAKQATFERLINEQLSDGQRGGFLVWGDPSLYDSTLRILQAILDSGRCVFEFDVVPGITSVQALAARHKVPLNSIGGSLEITTGRRLAAGRVGDAASTVVMLDAEDAYRQVSDPDTQIYWGAYVGMADELLIAGRLGDVADDIERTRKAARQANGWIMDTYLLRKPPGPT0009265_420DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0009265-cobF-K02228NANA
D1-35_00954960cdhR_2COG4977HTH-type transcriptional regulator CdhRATGCAGCCTACCCCTGGCCTCGTCGCGATTCTCGCCTACGACGGACTGTGCACGTTCGAATTCGGCGTCGCCGTCGAGATATTCGGGCTGGCACGGCCCGAGTTTGATTTTCCCTGGTATGAACACCGCATCGTCGCTGTCGACGACGGCCCGATGCGCGCCATGGGCGGCTTCCAGGTATTGGCCGATGGCGGCATGGAACTGCTCGACAGCGCGCGAACCATTATCGTGCCGGGCTGGCGCAGTCGCAGCGAACCGCCCTCCGATGCCCTGCTCCAGGCCTTGCGACGAGCCCATGCCCGTGGCGCCCGCTTGTTGTCGATCTGCTCGGGGGCTTTTGTCCTGGCGGCCACCGGGCTGCTCGACGGCTTGGGCGCCACCACGCATTGGCGCTACACCGACGAACTCGCCGACAGCTACCCGACCATCGAAGTCGATCCCGATGTACTTTATGTCGACTCCGGCCAGATCATCACCTCGGCTGGCAGCGCGGCCGGCATCGATGCCTGCCTGCACTTGGTGGCGCGGGATTTCGGCGCCCAGGTCGCCAATGCCGTGGCGCGCCGGCTGGTCATGCCGACCCAACGCACCGGTGGCCAGGCGCAGTTCATTCCCTCGCCGGTCAGCCGCACGCCGCGCAGCGATTTGTCCGGCGTCATGCAATGGGCCCGGGAACGTCTCCACGAGCCGCTGGGAGTGCGCGACCTGGCCAGTCACGCCGCTATGAGCGAACGGACCTTCCTGCGTCGCTTCACCCAGGCTTGCGGCCTCTCGCCCAAGGCCTGGCTGCAACATGAGCGCCTGGCACGGGCGCGGGAATTGCTGGAAAGCACGCAAGACAACACCGATAACATTGCCCAACTGTGTGGCTATCGTTCGGTGGAAAGTTTCCGGGTAGCGTTTCGCAACGTGGTGGGGCTGGCGCCGTCGGTGTACCGGGAGCGGTTTGGGCGAGGGTGAMQPTPGLVAILAYDGLCTFEFGVAVEIFGLARPEFDFPWYEHRIVAVDDGPMRAMGGFQVLADGGMELLDSARTIIVPGWRSRSEPPSDALLQALRRAHARGARLLSICSGAFVLAATGLLDGLGATTHWRYTDELADSYPTIEVDPDVLYVDSGQIITSAGSAAGIDACLHLVARDFGAQVANAVARRLVMPTQRTGGQAQFIPSPVSRTPRSDLSGVMQWARERLHEPLGVRDLASHAAMSERTFLRRFTQACGLSPKAWLQHERLARARELLESTQDNTDNIAQLCGYRSVESFRVAFRNVVGLAPSVYRERFGRGPGPT0014658_5DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014658-ypdC-NANANA
D1-35_00955435hypothetical proteinATGACCAGCCCTGTTCGCGAAGTGCCTGCCGCCCCGTCCGACATTGCCCTGCAGCATTTCAGCCGGCGTCTGATGTTCGAAACCGATTGTTCCGACGTACGTGCCAGCCAGGACGCCGCTGAGATCGATTTTGTCCTCGTCGATGTGCGCGGGCCGCAGGCCTACGCACGCGGGCACGTGCCCGGGGCGATCAACCTGCCGACCCGCACGCTGACCGCCGAGGCGCTTGCGGCCTATCCCCAGGCCACCCTGTTCGTGGTCTATTGTGCGGGGCCGCATTGCAACGGCGCCAACAAGGCTGCGGTGCGCCTGGCGACCCTGGGATACCCGGTCAAGGAAATGATCGGTGGCGTCATGGGTTGGCTCGACGAAGGTTTCCGCCTGACCGGTTCGGTGGAGCGCGTGGCGGAGCATGCGGTCAGCTGCGATTGTTGAMTSPVREVPAAPSDIALQHFSRRLMFETDCSDVRASQDAAEIDFVLVDVRGPQAYARGHVPGAINLPTRTLTAEALAAYPQATLFVVYCAGPHCNGANKAAVRLATLGYPVKEMIGGVMGWLDEGFRLTGSVERVAEHAVSCDCNANANANANA
D1-35_00956780argT_3COG0834Lysine/arginine/ornithine-binding periplasmic proteinATGAAGAAGCTTGTCATGTTCGGTGCCCTGGCACTGTCCGTACTCTCCCTGTCGGCCGTGGCCGAAGACGCCAAGCCGATCCGCCTCGGGATCGAGGCCGGCTATCCGCCTTTTTCGATGAAGACGCCTGACGGCAAGCTGACCGGCTTCGATGTGGATATCGGCGACGCGCTGTGCGCGCAGATGAAGGTCAAGTGCACCTGGGTCGAGCAAGAGTTCGACGGGCTGATTCCAGCGCTGAAGGTGAGGAAGATCGACGCGGTCCTGTCGTCGATGACCATCACTGATGACCGCAAGAAAAACGTCGACTTCACCATCAAGTACTACCACACCCCGGCGCGTTTCGTGATGAAGGAAGGTACGGACGTCAAGGACCCGCTGACCGAACTCAAGGGTAAGAAAGTCGGCGTGTTGCGCGCCAGTACCCATGACCGCTTCGCGACCGAAGTGCTGGTCCCGGCGGGGATCAACCTGGTGCGCTACAGCTCCCAGCAGGAAGCCAACCTGGACATGGTCGCCGGTCGCCTCGACGCCATGCTGGCCGACTCGGTCAACCTCGACGAAGGTTTCCTGAAAACCGCCGCCGGCAAAGGCTTTGCCTTCGTCGGGCCGACCTATGAAGACGCCAGGTATTTTGGCGGCGGCGCCGGCATCGCGGTGCGCAAGGGTGACAAGGCCCTGGCGGACCAATTCAACGCCGCCATCAGCGAAATCCGCGCCAATGGCACCTACCAGAAAGTGCAGGACAAATATTTCGCTTTTGACGTCTATGGGCATTAAMKKLVMFGALALSVLSLSAVAEDAKPIRLGIEAGYPPFSMKTPDGKLTGFDVDIGDALCAQMKVKCTWVEQEFDGLIPALKVRKIDAVLSSMTITDDRKKNVDFTIKYYHTPARFVMKEGTDVKDPLTELKGKKVGVLRASTHDRFATEVLVPAGINLVRYSSQQEANLDMVAGRLDAMLADSVNLDEGFLKTAAGKGFAFVGPTYEDARYFGGGAGIAVRKGDKALADQFNAAISEIRANGTYQKVQDKYFAFDVYGHPGPT0020680_155DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020680-aotJ-K10022NANA
D1-35_009571113hypothetical proteinATGCAACGCATCGACCATACCCTGCCGTGGAGCCACCTGGGCACGGAGCGCCGGCTCAGCGTGTTTCGTTTCGGCCATGGCCCGCGCAAGGCCTACATCCAGGCCAGCCTGCACGCCGATGAACTACCGGGCATGCGCACGGCATGGGAACTGAAACAGCGGCTCAGCGAACTTGAGTCCCGGGGCCTGCTCAAAGGCGTGATCGAACTGGTGCCGGTGGCCAATCCCATCGGCCTGGACCAGCATCTGCAGAGTGCGCACATGGGGCGTTTCGAGCTGGGCAGCGGGAAAAATTTCAACCGTTCCTTCGTCGAACTCAGCGCCCCGGTGGCGCAGCGCATCGGGGCTCGTCTGGGCGACGATCCGGCTGCCAACGTCACCTTGATCCGGCAAACCATGGCCGAGGTGCTCGACGAACTACCCGCGCCACCTTCGCAACTCGAAGCCATGCATCGGCTGTTGCTTCGCCATGCCTGCGACGCCGACATCACGCTCGACCTGCACTGCGATTTCGAGGCCACGATCCACTTGTACGCGTTGCCGCAACAATGGCCGCAGTGGCGCTCGCTGGCCGCGCGGCTGAGGGCCGGTGTGGCGTTGTTGTGCGAAGATTCCGGCGGCAGCTCGTTCGATGAGTCCTGTTCCACGCCCTGGTTGCGCCTGGCGAGGATCTTTCCGCAAGCGGCCATTCCGGCGGCCAACCTGGCGACGACGCTGGAATTGGGCAGCATGGGCGACACCCGGGTGGAGCAGGCCCGGGCGAATTGCGAGGCCATCCTCGGATTTCTCGCCGAACAGGGACTCATCGGCGGTGACTGGCCGGCCGCGCCGGCGCAATGCTGCGAGGGTTTTCCGTTCGAAGGCACCGAATACCTGTTTGCCCCGCACCATGGCGTGGTGAGCTTCCTGCGCGAAGCTGGCGAGTGGGTGGAGCGGGGCGATGCTTTGTTCGAGGTGGTCGATCCGTTGAACGACCGAGTGACCACGGTCCGCGCCGGCACCAGCGGCGTATTGTTCGCCCTGGATCGCGGGCGCTATACCCAGCCGGGCATCTGGCAGGCGAAAGTCGCCGGGCGTGAGCCGATTCGGGCGGGGAAATTGATCAACGACTGAMQRIDHTLPWSHLGTERRLSVFRFGHGPRKAYIQASLHADELPGMRTAWELKQRLSELESRGLLKGVIELVPVANPIGLDQHLQSAHMGRFELGSGKNFNRSFVELSAPVAQRIGARLGDDPAANVTLIRQTMAEVLDELPAPPSQLEAMHRLLLRHACDADITLDLHCDFEATIHLYALPQQWPQWRSLAARLRAGVALLCEDSGGSSFDESCSTPWLRLARIFPQAAIPAANLATTLELGSMGDTRVEQARANCEAILGFLAEQGLIGGDWPAAPAQCCEGFPFEGTEYLFAPHHGVVSFLREAGEWVERGDALFEVVDPLNDRVTTVRAGTSGVLFALDRGRYTQPGIWQAKVAGREPIRAGKLINDNANANANANA
D1-35_00958717estB_1COG0400Carboxylesterase 2ATGTTCAAAGCGTTCGCCCTGTTTCTGCTGCTGGTGTCTGCCGGAGCGCAGGCCCAACCGTCGCTGCATACCGACTTGCCACTCAACTACCTGGCCCGCGCCGATGAACAGGCCAGGAACCGGCCGCTGGTGATTTTCCTGCACGGTTCGGGCAGCAACGAAGAAGACCTGCTGACGCTCGCCGACGAACTGCCCAAGCACTACAACTACCTTTCGGTGCGGGCACCCAAGTCGATGGAGCCGGGGCGCTACCAATGGTTTGCCAGGAAAGGCGAGGGCGCCTATGAAGGTGACACGTCAGACCTGAAGGCCAGCGGCCAGATGCTCCTGGAATTCATCGAGAAGGCTCGGGCCAAATACCCGACCGATGCGAGCAACGTCTATCTGGTGGGTTTCAGTCAAGGCGCGATGATGAGCTACGAGGTAGCCCTGAGACACCCCGAAGCCGTTGGCGGCATTGCCGCGATGGGCGGGCGAGTTCTTTCGGTGTTGCGCGCCGAACTGACGCCCGATGAATCGCGCCGGGCGCTGGCGGTGTTCATAGGCCACGGCACGGTGGACCCGATCATTCCCTACCACGACGGTACCGACGCTGACTCGTTCCTCAAGACCCTGGCCCTGGAACCGGAATTCCACGCGTATCCGGGGCTTGGTCACAATATCAGCGCGCAGGAAGTGAAGGACCTGCGGGCCTGGCTGGAGCGGCTCAACCCTTGAMFKAFALFLLLVSAGAQAQPSLHTDLPLNYLARADEQARNRPLVIFLHGSGSNEEDLLTLADELPKHYNYLSVRAPKSMEPGRYQWFARKGEGAYEGDTSDLKASGQMLLEFIEKARAKYPTDASNVYLVGFSQGAMMSYEVALRHPEAVGGIAAMGGRVLSVLRAELTPDESRRALAVFIGHGTVDPIIPYHDGTDADSFLKTLALEPEFHAYPGLGHNISAQEVKDLRAWLERLNPPGPT0028515_506DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROQUINONE-DERIVATE_RESISTANCE,PGPT0028515-mhqD-K06999NANA
D1-35_00959591hypothetical proteinATGTCATTGCTGAGTAAACCAGCCGCCGCCCTGCTACTGGCAGCGATCACCAGCCTGGTCGCATTCCCGGCCCTTGCCGCCCAGCCCAAGAAACCCATGGCGCAAGCACCGGCCCAGAAGGTTTCGCTGCTGGGCGGCAAGTTCAGCTTCACCCTCCCCCCGGGCTTCACGGCGACGCCCTTGTCCGCAGGGGACGTGGCGCAGGGAACCGCCGGGGCGAGCGGTACGATGTACAGCAATGCCTCCCGCAAAACGGTGGTGATCACGGCGGAGAACACCCTGGTTGACGGGGCGAATGTAAACGATAACGACGCAGCCTTCCTGGATACGGCCTTCGCCGATTTCGCCGTCCAGAAGACCAAGGCCCTGCCGGATGCCAAAATCCTCGGGGAAAAAAGCCTGACCCTGAAAACCACCGGCCTCGGCCTGCGCCAGCTCGACACCCGGGCCACCCAAGGTGGCGGGCCCACGCTGGACACTACCCTGATAGGGGCTTCCGGCACGCGCATGGCCGTGGTGCAGATCATCTCCAGGGCGAGCGACCAGGCCGGTCATGAGGCATTGGTCAAGCAGATCGCCAGCGGGAAGTGAMSLLSKPAAALLLAAITSLVAFPALAAQPKKPMAQAPAQKVSLLGGKFSFTLPPGFTATPLSAGDVAQGTAGASGTMYSNASRKTVVITAENTLVDGANVNDNDAAFLDTAFADFAVQKTKALPDAKILGEKSLTLKTTGLGLRQLDTRATQGGGPTLDTTLIGASGTRMAVVQIISRASDQAGHEALVKQIASGKNANANANANA
D1-35_00960945dmlR_3HTH-type transcriptional regulator DmlRATGGAAACCCTCGCCAACCTCGAATGTTTCGTGCGCAGTGCCGAGACCGGCAGTTTTTCCGCTGCCGCCAGGCTGCTGGCGCTGACGCCCGCCGCCGTCAGCCGCAACGTGGCGATGCTGGAGCGAAACCTGGGTGTGCGCCTGTTCCAGCGTTCGACCCGCAAGCTTTCCCTGACCGAAACCGGCGAACATTTCCTCGCCAGCATCGGCGGCAACCTTCAAGCCCTGCAGGTTGCGATTGGCGCGGTGAGCGCCGAACGTGGCGAGCCGGCCGGCGTGTTGCGGGTCAGCCTCTCCCCCAGCTTCGGCATGGCTCACGTCTTGCCGTTAATGCCTGCTTTCCTCGGTCGATATCCCCTGATCCGGCCGGAATGGCATTTCGAAAATCGTCGGGTCGACTTGATTGCCGAGGGTTTCGACGCGGCGATTGGAGGCGGTTTCGAATTGACCCCCGGCGTGGTGTCCCGGACCTTGGCGCCAGCCCACCTGATTGCCGTCGCCAGCCCGCAGTACCTGGCCGTTCATGCCCAGCCCCAGCATCCGGAGCAATTCGCCAATCACGCTAACATCGTCCTGCGCTCCAGCCTGACCGGCCGTGTGCGCCAACCGATGATGCGCAACAGCGCCGGGCTCGAGTGCGCGGTGTCGTTGCCGGAGTCGATCACCTTCAACGATCCGGTCGCGATGCGTGAATCTGCCTTGCTCGGCCTGGGCGTTGCGCTGTTGACGGTGCCGGATGTCTTGCCCTGGCTGGAGCGCGGCGAGCTGGTGCGGCTGCTGCCGCAATGGTATGTCGACCTTGGCGCGATCTCGCTCTATTACCCGAGTCGTACGCTGATGCCCGCCAAGACCCGGGTCTTTGTCGACTTCATTACCGAGCACTTCGAACGTCAGGCGCTGGCGCGGCGCTTCAGTGCCGTCGGTGTTAACGTATCGAACCCATGAMETLANLECFVRSAETGSFSAAARLLALTPAAVSRNVAMLERNLGVRLFQRSTRKLSLTETGEHFLASIGGNLQALQVAIGAVSAERGEPAGVLRVSLSPSFGMAHVLPLMPAFLGRYPLIRPEWHFENRRVDLIAEGFDAAIGGGFELTPGVVSRTLAPAHLIAVASPQYLAVHAQPQHPEQFANHANIVLRSSLTGRVRQPMMRNSAGLECAVSLPESITFNDPVAMRESALLGLGVALLTVPDVLPWLERGELVRLLPQWYVDLGAISLYYPSRTLMPAKTRVFVDFITEHFERQALARRFSAVGVNVSNPNANANANANA
D1-35_00961603hypothetical proteinATGAACACCATCGGCATTATCGGCGCTGGCGCCATCGGCAGCGCATTCGCCCGGGCCCTGGCTCGCCAAGACATCAATGTGGTCATTTCCAACAGTCGCGGGCCGGAAAGCCTGACCGAGCTGGTCGCCGAACTGGGCCCGACCGTACGTGCCGGCACTGTGCAGGAAGCTGCCGCGCAACCCATGGTGCTGGTGGCCGTCAATTGGCAGAAGTTGCCGCAAGCCCTGGCAGGTTTGCCGGATTTCGCCGGGCGGATCGTGATCGACGCCAACAATGCCATCAAGGTGCCGGAATTCCAGGCGATCGATCTGCAAGGACGGGCCTCCACCGAGGTGTTCAGCGAGTGGGTGCCCGGCGCGCGGGTGGTCAAGGCATTCAACCATATGCTGGCGAAATTGCTCGAGGCTGATCCGGCGGCCGAGGGTGGCAAGCGTGTGCTGTTCCTGACCGGCGATGATCAACAGGCGCGTGTGGAAGTGGCCGGGTTGATCGAGCGGCTGGGATTCTTCGCCGTGGACCTCGGCCCGCTGAGCGCCGGAGCGCACCTGACGCAATTCCCCGGCGGCCCGTTGCCCGTGTTGAATCTGGTCAAGTTCGACTGAMNTIGIIGAGAIGSAFARALARQDINVVISNSRGPESLTELVAELGPTVRAGTVQEAAAQPMVLVAVNWQKLPQALAGLPDFAGRIVIDANNAIKVPEFQAIDLQGRASTEVFSEWVPGARVVKAFNHMLAKLLEADPAAEGGKRVLFLTGDDQQARVEVAGLIERLGFFAVDLGPLSAGAHLTQFPGGPLPVLNLVKFDNANANANANA
D1-35_00962936dmlR_4HTH-type transcriptional regulator DmlRATGCACGGTCTTGATGAACTGGGTTTCAAGGCACTCCGATTGTTCGTCGCGGTGCTCGATCTCGGCAGCTTCTCGGAAGTCGCGCGGCGCGAGGGGCTGGCGCCTTCCTCGATTTCCCGGCAGATCCAACTGATGGAGCAGGCGCTGAACCAGCAGTTGCTGTATCGCCATACCCGCGCCGTTTCGCCCACCGAAGCCGGCCGCCTGCTCGGGCACCATGCACGCTTGCTGCTGGTGCAATTGGAGGAAGCCGAACAAGCCTTGCAGGAACAGCGCAGCGAACCGGCCGGACTCGTGCGGATCAACGCCCCGGTAGTCTTCGGACAGCGCCACCTGACGCCCTGGCTGGGACAACTGTGCGAGCGCTACCCGAAGCTGCAGCTGGATATCCAGCAGACCGACAGTTACGTCGACCCGCTGCAGGAAGGTGCCGATCTGCTCTTTCGCATCGGCTCGTTGCATGACTCCAGTATGCAAGCGCGGATCATCGCGCCGCACCGTTTCCAGATCGCGGCGAGCCCCGCCTACCTGGCCCGCCACGGCGTTCCACAAGAACCCGAAGACCTGGCGGCCCATCAGTGCCTGGCCTACAAAGGCGTAGCCGGGCAACAGCGCTGGTTTTTCCGCAAGCCGGGTCAAGCCTGGATACGCTACAGCGTGAGCGGGCCGATCACCGGCAACCACGCCGACACCCTGACCCAGGCCGCCGAACAAGGCCTGGGCCTGGTGATGTTTCCGTCATGGCTGATCGGCGAAGCCGTGCGCAACGGCACGCTGGTGCCGGTCCTGGGCGATTACGAAGCGTCCAACAGCCTAGAACCCCAGCAAATCGCCATCCTCTGGCCCGGCAGCCGACGCCTGTCAGTGAAAGTGCGCACGGTGATCGATTTTTTCCTCGAGTGTTTCGGCGAAGTGCCCTACTGGGATCGTCCTTGAMHGLDELGFKALRLFVAVLDLGSFSEVARREGLAPSSISRQIQLMEQALNQQLLYRHTRAVSPTEAGRLLGHHARLLLVQLEEAEQALQEQRSEPAGLVRINAPVVFGQRHLTPWLGQLCERYPKLQLDIQQTDSYVDPLQEGADLLFRIGSLHDSSMQARIIAPHRFQIAASPAYLARHGVPQEPEDLAAHQCLAYKGVAGQQRWFFRKPGQAWIRYSVSGPITGNHADTLTQAAEQGLGLVMFPSWLIGEAVRNGTLVPVLGDYEASNSLEPQQIAILWPGSRRLSVKVRTVIDFFLECFGEVPYWDRPPGPT0028940_383DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-CHLORAMPHENICOL|TRIMETHOPRIN_EFFLUX_PUMP_BpeEF-OprC,PGPT0028940-bpeT-K18900NANA
D1-35_00963498hypothetical proteinATGCAATCAACATCCACCCCCTCCGCCGCAGCGGTAGCGGATGCCGCGCCACCCCGGACTTTCCTGCGCTGGCTCCTGCTACCCCTGGTGATCCTGGCGGGCATGGGGCTATCGGTGGAGGCCGGCCTGCTCGGGCCGCTTGGTGTCCAGGTCGGTCATCTGTGGGCAACGTTGAGCATCTTTGGCGTTGGCGCGGCGCTGTTGTTCCTGCTGTTGTTGCTCAGCGGTCCGCAACGAGGCCCGGCCCTGAGCGAACTGCCGCGCTGGCAATTGATCGGTGGCTTCCTGGGGCCGGTCTACGTGGTGGTACTGACCCTCGCCACCCCGCACATCGGCATTGCCATGACCATGATCGCGATTCTCTCCGGCCAGGTTGGCAAAAGCGTGCTGATCGACCATTTCGGCTGGTTCGGCGCGAGCCGCAAGCGTGTCAACCGCGAGCGCTGGCTGGCGTTGGCGTTGATTGTCGTGGCCCTTGTCCTGATTGCCCGAGGTTGAMQSTSTPSAAAVADAAPPRTFLRWLLLPLVILAGMGLSVEAGLLGPLGVQVGHLWATLSIFGVGAALLFLLLLLSGPQRGPALSELPRWQLIGGFLGPVYVVVLTLATPHIGIAMTMIAILSGQVGKSVLIDHFGWFGASRKRVNRERWLALALIVVALVLIARGPGPT0009795_652DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_HERBICIDIAL_STRESSHERBICIDIAL_STRESS-TOXOFLAVIN_METABOLISM,PGPT0009795-toxF-K09936NANA
D1-35_00964453hypothetical proteinATGAGCGTGATCCTGTTATTGCTGGTGGTTGTCGCCGCCGGCGCGGTATTGAGCGTGCAGGCGGCCATCAACGGGCGTCTGGGCGAGACGGTGGGCGTACTGCGCAGCAGTCTGCTGACCTTCGCGGTCGGCACGGTGGTCACCGGGTTGTTGATCGTGTTTTTCGAGCCGGCCCATGCGGTAAGCCTGTTGGACGTGCCGAAATGGCAGCTCAGCGGCGCATTGTTTGGTGTGGTGTACATGATCGTGATGGTCGGCGCGGTGCCGAGAGTCGGCACAGCCGTGGCAACCGTCGCGGTCATCGTCGGGCAACTTGCCATGGGCATGCTGATCGACAACTTCGGCTGGCTGGGCAATCCACCTGTCGAACTGTCCGCCAGCCGCTTGTTGGCCATGGCCTGCCTGGCACTGGCGCTGGTGTTCATGTATCGCAGCAGTACGCGGCAGACCTGAMSVILLLLVVVAAGAVLSVQAAINGRLGETVGVLRSSLLTFAVGTVVTGLLIVFFEPAHAVSLLDVPKWQLSGALFGVVYMIVMVGAVPRVGTAVATVAVIVGQLAMGMLIDNFGWLGNPPVELSASRLLAMACLALALVFMYRSSTRQTPGPT0009795_1326DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_HERBICIDIAL_STRESSHERBICIDIAL_STRESS-TOXOFLAVIN_METABOLISM,PGPT0009795-toxF-K09936NANA
D1-35_00965279hypothetical proteinATGGATTTGAACCCACGCGTGGACACCCACCTCGATTACGGCCTCGACACGCTGTTCGGACGCGAAACCAAAAGCGTCGACTGCCAGTTCGATGTCAAGCGCCTCGACGACGGCGAGCCGCCATGGTTCGCTCTGCATGTACGCCCACCGCTGCCCGAAGACCTGGCAAAAGCCCAGATCGTGGTGTTCAGCGTCGAAGGCCGGCGCATCAGCGGCATTGTCCGACGTACCGAGCGCCTGGCCGATGACAGCCTGCAACTGGACGTCGAACCGGAGTGAMDLNPRVDTHLDYGLDTLFGRETKSVDCQFDVKRLDDGEPPWFALHVRPPLPEDLAKAQIVVFSVEGRRISGIVRRTERLADDSLQLDVEPENANANANANA
D1-35_009661035selDCOG0709Selenide, water dikinaseATGAGCGAGCCGATTCGCCTGACCCAGTACAGCCACGGTGCCGGTTGCGGCTGCAAGATTTCGCCCCAGGTGCTGGAAGTGATCCTGGCCGGCAGCGGTGCGCAAAACCTTGATCCCAAGCTGTGGGTCGGGAACGCTTCCCGGGACGATGCGGCGGTCTACGCCATCGACGAGGAGCGCGGCGTGGTCTCGACCACCGATTTCTTCATGCCGATCGTCGACGATCCGTTCGACTTCGGTCGCATCGCCGCGACCAATGCCATCAGTGATATCTATGCCATGGGCGGTGATCCGCTGATGGCGATTGCGATCCTCGGCTGGCCAGTCAACGTGCTCGCCCCGGAAATCGCGCGCGAGGTGATTCGCGGTGGCCGCTCGGTGTGCGACGAGGCAGGCATCCCCCTGGCGGGCGGGCACTCGATCGATGCGCCCGAGCCGATTTTCGGTCTGGCAGTGACGGGCCTTGTGCAAAAGCGCCACATGAAACGCAACGACACCGCCACCGCGGGCTGTCGGCTGTACCTGACCAAACCCCTGGGCATCGGCATCCTCACGACGGCGGAAAAGAAAGGCAAGCTGCGCGCCGCCGATGTGGGCCTGGCCCGAGACTGGATGTGCACGCTGAACAAGCCCGGCAGCCGTTTCGGCAAGCTCGATGGCGTGACGGCAATGACCGATGTCACCGGTTTCGGCTTGCTCGGGCATTTGGTGGAAATGGCCGATGGCAGCCAACTGACCGCGCGTATCCGCTACGACGCGGTGCCGCGCCTGCCAGGCGTCGAGTACTACCTCGATCAAGGCTGCGTACCGGGCGGCACATTGCGCAACTATGACAGCTACGCCAGCAAGGTCGGTCGCGTCCAGGAGCTGCACAAGCGAGTGCTGTGCGACCCGCAGACCAGTGGCGGCCTGCTGATTGCCGTCACACCCGAAGGAGAGAGCGAGTTCCTGCGGGTCGCCGTTGAACTGGGTCTGGCGCTGGAACCGATTGGTGAATTGGTCGAGCGACAGAGCCACGCGGTCGAGGTGTCTTGAMSEPIRLTQYSHGAGCGCKISPQVLEVILAGSGAQNLDPKLWVGNASRDDAAVYAIDEERGVVSTTDFFMPIVDDPFDFGRIAATNAISDIYAMGGDPLMAIAILGWPVNVLAPEIAREVIRGGRSVCDEAGIPLAGGHSIDAPEPIFGLAVTGLVQKRHMKRNDTATAGCRLYLTKPLGIGILTTAEKKGKLRAADVGLARDWMCTLNKPGSRFGKLDGVTAMTDVTGFGLLGHLVEMADGSQLTARIRYDAVPRLPGVEYYLDQGCVPGGTLRNYDSYASKVGRVQELHKRVLCDPQTSGGLLIAVTPEGESEFLRVAVELGLALEPIGELVERQSHAVEVSPGPT0004820_1644DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_SELENIUM_RESISTANCESELENIUM_RESISTANCE-SELENIUM_HOMEOSTASIS,PGPT0004820-selD-K01008NANA
D1-35_009671104selUCOG2603tRNA 2-selenouridine synthaseATGCCCAACGACATCACCGACTACCGCGATATTTTCCTCAATGATCGCCCGATGATGGACACTCGCGCGCCGGTGGAATTTCTTAAGGGCGCGTTTCCCGGCGTGGCCAACCTGCCGTTGATGACCGACATCGAGCGGCAACGCGTCGGGACCTGCTACAAGCAGCAGGGACAGCAGGCCGCCATTGTCCTGGGGCATCAACTGGTCAGCGGCGAGACTAAGGCCCAACGTATCCAGGCCTGGGCCGAATTTGCCCAGGCCCATCCTGATGGCCTGCTGTACTGCTTTCGCGGTGGCTTGCGCTCACAGATCGTCCAGCAATGGCTCAAGGACGAGGCGGGCATCGAATACCCCCGAGTCGGCGGGGGCTACAAGGCGATGCGTACGTTCCTGTTGGGCACTATCGACCAGGCGGTCGCTCAGTGCGACCTGGTCCTGCTGGGCGGCATGACCGGCACCGGCAAGACCGAGGTGTTGACGCAGCTCGATAACGGCCTGGACCTGGAAGGTTATGCCAATCATCGCGGTTCGAGCTTCGGCAAGCGTGCGACCGGGCAGCCTTCCAATATCGATTTCGAAAACCTGCTGGCGGTGGATGTGCTGAAAAAGCGTGCCGCCGGCATCAAGCAATTCGTGCTGGAGGATGAAAGCCGCATGGTCGGCAGTTGCGCCTTGCCGTTGCCGTTGTACCAGCGCATGCAGCAGGTGCCGATGGTCTGGCTGGAAGATCGCCTGGAGCGGCGGGTCGAGCGGATCCTGCGCGACTACGTGATCAATCTCTGCGCCGAGTTTGTCGAGGTCCATGGCGACGAAGGGTTTTCGCTGTTTGGCGAACGGTTGCTGGCGAGCCTGGACAACATCCACAAACGCCTGGGTGGCGATCGCCATCGGCGATTGCTGGGCATCATGGAAGCCGCCCTGGCCGAACAGGCCGCCAGCGGCGCCGTCGACCTGCATCGCGCTTGGATCGAAGGCTTGCTGCGCGAGTACTACGACCCGATGTATGTATTCCAGCGGGAAAAGAAGGGCGGGCGCATAGAGTTTGTCGGGGAGCAGGCGGCGGTATTGGAATATCTGCGTGAACGCGCCGCTCGGGAAGGATAAMPNDITDYRDIFLNDRPMMDTRAPVEFLKGAFPGVANLPLMTDIERQRVGTCYKQQGQQAAIVLGHQLVSGETKAQRIQAWAEFAQAHPDGLLYCFRGGLRSQIVQQWLKDEAGIEYPRVGGGYKAMRTFLLGTIDQAVAQCDLVLLGGMTGTGKTEVLTQLDNGLDLEGYANHRGSSFGKRATGQPSNIDFENLLAVDVLKKRAAGIKQFVLEDESRMVGSCALPLPLYQRMQQVPMVWLEDRLERRVERILRDYVINLCAEFVEVHGDEGFSLFGERLLASLDNIHKRLGGDRHRRLLGIMEAALAEQAASGAVDLHRAWIEGLLREYYDPMYVFQREKKGGRIEFVGEQAAVLEYLRERAAREGPGPT0004830_283DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_SELENIUM_RESISTANCESELENIUM_RESISTANCE-SELENIUM_HOMEOSTASIS,PGPT0004830-selU|mnmH-K06917NANA
D1-35_00968672hypothetical proteinATGATCAACCCACTGAAGTTCGCCCAGTTGAAACGCCGTCCGTGGCTACTGCTACCGACGCTGCTCGTGACCTGTGGGCTGGTGCTGTCGCTGGAATCCAGCGTCAGCAGTGCCCAGCCCGTCGACGGCGTGCAGACGCTGGTGTTCCTGCGCCACGCGGAAAAACCGGTCGGCGGCCTCGGCCAACTCAATTGCCAGGGGCTGAACCGCGCCATCGACCTGGCCACCCTGCTGCCAGAAAAATTCGGCGAAGCCGACTACGTATTCGCGGCCAATCCGACCCGTAACGTCGAAGAGGGTGAGCTGGATAATTCCTACAGCTACATTCGCCCCTTGATGACAATCAGCCCCAGCGCCATCAAGCTCGGCCTGCCGGTAAACATCGAGTATTCAGCCAACGACACCAGTGACCTGGCTGATGAATTGATGCAGGACAAATACCACAACTCCACGATCTACACGGCCTGGTCCCACGGCTACCTGCCTGAACTGATCAACAAGGTCGCGGGTGAAGCGGTGGGCAAGCGGCAGACCATCACCGACGACTGGGCATCGAGCGATTTCGACTCCCTGTATGTACTGACCCTGACCTGGCACAACGGCAAGGCCAGCCTCACCAGCCAAAGCTACAAGCAAGGCCTGGATAACGGGCAGAAGACCTGCCCGACGTAAMINPLKFAQLKRRPWLLLPTLLVTCGLVLSLESSVSSAQPVDGVQTLVFLRHAEKPVGGLGQLNCQGLNRAIDLATLLPEKFGEADYVFAANPTRNVEEGELDNSYSYIRPLMTISPSAIKLGLPVNIEYSANDTSDLADELMQDKYHNSTIYTAWSHGYLPELINKVAGEAVGKRQTITDDWASSDFDSLYVLTLTWHNGKASLTSQSYKQGLDNGQKTCPTNANANANANA
D1-35_00969699yfcG_1COG0625Disulfide-bond oxidoreductase YfcGATGCCCGACCTGACCCCTTTCCCCATCACCCAGAAATGGCCCGCCCAGTTCCCTGAATGGCTCCAGCTCTATTCCCTGCCGACCCCCAACGGCGTGAAGGTGTCGATCATGCTGGAGGAGATCGGTCTGCCCTACGAGCCGCACAAGGTGGACTTTGGCAACAATGACCAACTGTCCCCCGAGTTCCTCTCGCTCAATCCCAACAACAAGATCCCGGCGATTCTTGACCCCCATGGGCCGGGAGATCGGCCGTTGGCGTTGTTCGAATCGGGAGCGATCCTGATTTATCTGGCCGACAAGAGCGGCCAGCTGCTTGCCCAGGAGTCGGCGGCGCGCTACGAGACGATCCAGTGGCTGATGTTCCAGATGGGCGGCATCGGGCCGATGTTCGGTCAGCTGGGGTTCTTCAACAAGTTCGCCGGCAAGGATTACGAGGACAAACGGCCGCGCGACCGATACGTCGAGGAAAGCAAGCGCCTGCTCAAGGTGCTGGACGGGCGTCTGGAAGGACGCGACTGGATCATGGGCGAGCGCTACACCATCGCCGATATCGCCACGTTCCCATGGGTGCGCAACCTTCTCGGTTTTTATGAGGCCGGTGATCTGGTGGGTATCCAGAACTTCCCGAACGTGACGCGGGTGCTGGAACGTTTCCTGGCGCGGCCGGCGGTGGCGCGCGGCTTGAAGATTCCGGAATGAMPDLTPFPITQKWPAQFPEWLQLYSLPTPNGVKVSIMLEEIGLPYEPHKVDFGNNDQLSPEFLSLNPNNKIPAILDPHGPGDRPLALFESGAILIYLADKSGQLLAQESAARYETIQWLMFQMGGIGPMFGQLGFFNKFAGKDYEDKRPRDRYVEESKRLLKVLDGRLEGRDWIMGERYTIADIATFPWVRNLLGFYEAGDLVGIQNFPNVTRVLERFLARPAVARGLKIPEPGPT0013045_1955DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-GLUTATHION_METABOLISM,PGPT0013045-yghU|yfcG-K11209NANA
D1-35_00970975hemB_1COG0113Delta-aminolevulinic acid dehydrataseATGTCCAGTCAGTTCCCCGCAGCCCGTCCACGCCGTCTGCGTCGCAATGCAAGCCTGCGCAACCTGTTCCAGGAAACCGAGTTGACCTTGAATGATCTGGTACTGCCGATTTTCGTCGAAGAGGAAATCGACGATTTCGTGCCGATCAAGAGCATGCCCGGCGTGGTGCGTATCCCGGAATCGAAGCTGGCCGGGGAAATCGAGCGGTATGCTCGTGCCGGTATCAAGGCGGTGATGACCTTTGGTGTGTCCCATCATCTGGACAGCGACGGCAGCGACACGTGGAGCGAGCGTGGCCTGGTTTCGCGCATGGCCGGAATCTGCAAGGACGCCGTGCCGGAAATGATCGTGATGTCCGATACCTGTTTTTGTGAGTACACCGATCATGGCCACTGCGGCGTGCTGCACGGTCACGAAGTCGATAACGACCGAACCCTGATCAACCTGGGCAAACAAGCGGTAGCGGCGGCACGCGCCGGTGCCGATGTCATCGCGCCGTCGGCGGCCATGGACGGGCAAGTCCAGGCCATTCGCAAGGCGCTCGATGACGCGGGCTTCAGCCAGACGGCGATCATGGCCTATTCCACCAAGTTCGCCTCCGCGCTCTACGGGCCGTTCCGCGAGGCCGGCGGCAGCGCCTTGAAAGGCGACCGCAAGAGCTACCAGATGAACCCGATGAATCGCCGCGAAGCCCTGCGCGAGTCGCTGCTCGACGAGCAGGAGGGCGCCGATGCACTGATGGTCAAGCCGGCCGGGGCCTATCTCGACATCATCCGCGACATCCGCGAGGCCTCGAACCTGCCATTGTCGGCCTACCAGGTCAGCGGCGAGTACGCGATGATCAAGTTCGCCGCACAGGCCGGCGCCATCGACGAAGCCCGAGTCGTGCGAGAAAGCCTCGGCGCGATCAAGCGGGCAGGGGCGGACCTGATCTTCACTTACTTCGCGATGGATCTGGCGCTGAGCGGGATCTGAMSSQFPAARPRRLRRNASLRNLFQETELTLNDLVLPIFVEEEIDDFVPIKSMPGVVRIPESKLAGEIERYARAGIKAVMTFGVSHHLDSDGSDTWSERGLVSRMAGICKDAVPEMIVMSDTCFCEYTDHGHCGVLHGHEVDNDRTLINLGKQAVAAARAGADVIAPSAAMDGQVQAIRKALDDAGFSQTAIMAYSTKFASALYGPFREAGGSALKGDRKSYQMNPMNRREALRESLLDEQEGADALMVKPAGAYLDIIRDIREASNLPLSAYQVSGEYAMIKFAAQAGAIDEARVVRESLGAIKRAGADLIFTYFAMDLALSGIPGPT0003655_4233DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003655-hemB-K01698NANA
D1-35_009711095hypothetical proteinATGCATTTCACTCGACTGATGATCACTCTTGCCGCATTGCTGGCCCTGGCCGGCTGCGGCAGCCGTCAGGCCCAGGAGCCTGAGCGCCAGCCTGCCGAAGTCAAGGCGCAGATCGTGCGCTTATTGCCGGCCAAGACCGCCGATCGGGAGGGCTGGGCCACGGACATCTACGTGGCCTTTGCGGCGCAGCAGATCCCGCCAACGACCCAGAACATCTGTTCGGTGCTGGCGGTGACCGAGCAGGAGTCGACCTTCCAGGCCGATCCCGCGGTGCCGGGGCTGGGCAAGATCGCCCGGCAGGAAATCGATCGCCGGGCGGCGAAGCTACGCATCCCCGGGTTTCTGGTGAGCGGCGCCCTCCAGGTGCGCTCGTCCAATGGCAAAAGCTACAGCGACCGCCTCAACGCGGCGCGCAGCGAGAAGGAACTCAGCGCAATTTTTGATGATTTCATCGGCATGGTGCCGCTCGGCAAAACCCTGTTCGATGGCTTCAACCCGGTGCATACGGGCGGGCCGATGCAGGTCAGCATCGCCTTTGCCCAGGCCAATGCGCGCGATTATCCCTACACGGCGGATGGCTCGATTCGTCGGGAAGTGTTCAGTCGTCGCGGAGGGATGTATTTCGGCATCGCGCATTTGTTGGGGTATCCCGTCAGTTATACCGAGCCGCTGTACCGTTTCGCCGATTTTAATGCTGGCTGGTATGCCAGTCGCAACGCGGCCTTCCAGCATGCGGTGAGTCGCGCTTCGGGCATTACGCTGGCCTTGGACGGTGATTTGATCCTGCCTGATTCGATCATGCCCGGCAGCACGGAGCTGGCGGTGCGCACGTTGGGCAAGTCATTGGGCATGCGCAACCCGACCATCCGCGATCAGCTGGAACTGGGCGACAGCCTGGCGTTCGAGGACAGCAAGCTCTACAAGCGGGTGTTCGAATTGGCCGAGAAGGCCGAGGGCAAGCCGCTGCCTCGGGCGGTGTTGCCGGGCATCGTGCTCAAGAGTCCGAAAATCACTCGCAAGCTGACCACTGCATGGTTTGCCAAGCGCGTGGACGAGCGGTATCAGCGGTGCATGACGCGGGCTTCGGGGCGCTGAMHFTRLMITLAALLALAGCGSRQAQEPERQPAEVKAQIVRLLPAKTADREGWATDIYVAFAAQQIPPTTQNICSVLAVTEQESTFQADPAVPGLGKIARQEIDRRAAKLRIPGFLVSGALQVRSSNGKSYSDRLNAARSEKELSAIFDDFIGMVPLGKTLFDGFNPVHTGGPMQVSIAFAQANARDYPYTADGSIRREVFSRRGGMYFGIAHLLGYPVSYTEPLYRFADFNAGWYASRNAAFQHAVSRASGITLALDGDLILPDSIMPGSTELAVRTLGKSLGMRNPTIRDQLELGDSLAFEDSKLYKRVFELAEKAEGKPLPRAVLPGIVLKSPKITRKLTTAWFAKRVDERYQRCMTRASGRNANANANANA
D1-35_00972435hypothetical proteinATGAAACGCCAAATCATCCTCAGCCTCGCTTTCTCCGTTCTGGCAGCCAACGTATTCGCCGCCACTTCCCAGCCCGTCGTTGCCGAAGGCGGCTCTGACCGACTGATCGAAAACCGTGTTGCCGAAGGCGGTGCCGACCGTCTGCTGGAACGCCGCGTCGCCGAAGGTGGCTCCGACAAGCTGATCGAAAACCGTGTTGCCGAAGGCGGAGCCGATCGTCTGCTGGAACGCCGCGTTGCCGAAGGTGGCTCCGACAAGCTGATCGAAAACCGTGTTGCCGAAGGCGGTGCCGACCGTCTGCTGGAACGCCGCGTCGCCGAAGGTGGCTCCGACAAGCTGATCGAAAACCGTGTTGCCGAAGGCGGTGCTGACCGTCTGCTGGAACGCCGCGTTGTCGAAGGTGGCTCCGATAATTTGGCCAAGAACCGCGCATGAMKRQIILSLAFSVLAANVFAATSQPVVAEGGSDRLIENRVAEGGADRLLERRVAEGGSDKLIENRVAEGGADRLLERRVAEGGSDKLIENRVAEGGADRLLERRVAEGGSDKLIENRVAEGGADRLLERRVVEGGSDNLAKNRANANANANANA
D1-35_00973630hypothetical proteinATGTATCAGTTATTCGGCCACAGCCAATCCGGTTCCTCTGCCGTGGAGGTCGCCTTGGATCTTTGCGGCGTGCCTTACCGCCGGGTAGATACCTATTCGACCGAGGACAACGATGCGGCGAAGGAACTCGAAGCCCTGAATCCACAGAAGCAGGTCCCGACCCTGCAATTGCCGGACGGCTCGGTGCTCACCGAGGCGGCGGCGATCCTGATTCACTTGGGGCTGTCTTTTCCGGAATCGAAACTGCTGCCGGATGATCCGGCCCAGCGTGCGCAGGTCATACGCGGCCTGGTGTATATCGCCGCCAATTGCTACACGCCGATCGGCATCATCGATTTTCCGCAGCGCTGGCTGCCCGACGCCGACGACGCTGCTCGGGAGCGATTGGTGGCGGGCACCAAGCAACGTCTGTATCGCAACTGGGCGTTGTTTGCCGACCAGTTTCCTGCGAGCCCTTTCCTCGGCGGTGCCGAGCCCGGTGCATTGGATATCCTGGCGGCGGTGATTACCAAGTGGGTCGAAACCCGGGAAGCGATGCTCAGTGCCCGTCCCGAGTTCTACGCCCTGCTGGAGCGCATCGACCGCCATCCGCGAATCGCGCCAGTGCTTTCATTGCACTGGCCCGAATGAMYQLFGHSQSGSSAVEVALDLCGVPYRRVDTYSTEDNDAAKELEALNPQKQVPTLQLPDGSVLTEAAAILIHLGLSFPESKLLPDDPAQRAQVIRGLVYIAANCYTPIGIIDFPQRWLPDADDAARERLVAGTKQRLYRNWALFADQFPASPFLGGAEPGALDILAAVITKWVETREAMLSARPEFYALLERIDRHPRIAPVLSLHWPENANANANANA
D1-35_00974537hypothetical proteinATGCCGCTGATGCTGAGATGTTCGTTGATCGCCCTGGCGCTGCTGCTCGGTGCCTGTCGCAGCGATCCCATCCACTACCACACCCTGAGCCCGGTCCAGCCGGCTGGTCAGGCGCGTGCAGGGGTGGATATCCAGATCGAACAACTCAGCGTCCCGCCGCAAGTGGATCGCACCCAGATGGTGATTCGTCAGGGCGACAGCGGTCTGGCGATCCTGGAAACCGAATGGTGGGGCTCAAGCCTGGCGGATGAACTACGCAGCAGCCTGGACGAGCAATTGAGCAACCCCGGGGCCCCCAGGCGGCTGTTGCGGGTGGAGGTGCAACGCTTCGACTCGATCCCCGGCCGCTATGCGCGCATGGACGTGCAATGGCGCTTGCGTAGCCATGGCAACGAAGCTCAGGCCGTTACCTGCCGCAGCAGCCTGCAGACACCGGCTGGCGGCAGTATCGACGACCTGGTGAAAGGCCATCAGCAGAACGTTCGACAGCTTGCAGAACTCGTCCGCCAGGCCGCCTCGCGCAATGCGTGTCCCTGAMPLMLRCSLIALALLLGACRSDPIHYHTLSPVQPAGQARAGVDIQIEQLSVPPQVDRTQMVIRQGDSGLAILETEWWGSSLADELRSSLDEQLSNPGAPRRLLRVEVQRFDSIPGRYARMDVQWRLRSHGNEAQAVTCRSSLQTPAGGSIDDLVKGHQQNVRQLAELVRQAASRNACPNANANANANA
D1-35_009751656pqiBCOG3008Intermembrane transport protein PqiBATGAAGTCACAAGCCACTGACGGACAACCCGCACCGGGCCGCGCCCATGTCTCCACCCGCCGCTGGACCGTGTCGCTGGTGTGGATCGTGCCGATCATCGCGGTGCTGGTGGGCGTGTCCCTGGTGGTCAACAACTGGCTGCAGGAAGGCCCGACCATCACCATCACCTTCAAGACAGGCGAAGGCCTGACCGCCAACAAGACCCCGGTCAAATACCGCAATGTGGTCATTGGCCAGGTCACCGACGTGCAACTGAGCGACGATCAGAAGAACGTGACCGCCACGGTCAAGCTCGCCAAGACCGCCGACACCTTCACTCATGAAGACTCGGTGTTCTGGGTGGTCCGGCCGCGGATTGGCGCGGGCGGGATCTCCGGGATCGACACCTTGCTGTCGGGGGACTTCATCGGCGCCGACGCCGGTCATTCGAAAGTGCGCGCCAAGTCGTTCACCGGCCTGGAGGCTCCGCCACCGATCACCTACGGCGAACCGGGCAAACGCTTTACCCTGCATTCCCAGGACCTCGGTTCGCTGGACATCGGCTCGCCGGTGTATTTGCGCAAGATTCCGGTGGGCCAGGTGGTGTCCTACGCATTGGACGCCGATGGCAAAGGCGTCAATATCGAGGTGTTCATCAACGCGCCAAATGACGCCTACGTCACCGAGAACACCCGGTTCTGGAACGTCAGTGGCGTCGACGTGAACGTCGGCGCCAACGGTTTTGCGGTCAAGACCGAGTCGCTGTCTGCCCTGCTCGTCGGCGGCATTGCATTCCGGGCCCCGGAATACAGCCCCAACGACACGCCCGCGGCCGAGGACAAGGATTTCGAACTGTTCGCCGACCAGCAAAGCGCCCTGGCCCCGCCCAGTGGCAAGGCGCAGTACCTGGCCTTGCGCTTCGACCAGGCCTTGCGCGGATTGCGCGTCGGCGCCCCGGTGGAATTCCTCGGGATCGAGATCGGCCGGGTGGTCTCCATGAACCTGGACTTCGACGAAAAGCAGCGCACGTTCCCGGTCAACGTAGGAATCGTGATCTACCCGCAACTGCTCGGCAAGGCCCACGAGAAACTGCTCAAGTCATTGAACTACGACCCGGAAGACGAAGCCGCCGCCGCGCGCCTGGTCGGCAGCTTCGTCGAACGCGGCCTGCGCGCCCAGGCCCGCAGCGGCAACCTGCTGACCGGGCAGTTGTACATTTCGCTGGATTTCTACCCCAAGGCCGAGAAAGTCGCGTTCGACCTCGCCGCGCGCCCCCTGCGGATCCCGACTATCCCGGGCAGCCTCCAGCAGTTGCAGGAACAATTGCAGACGGTGGTCGAGCGCATCAACAAGCTGCCGCTGGAAAGCATTGCCAGCAACCTGGACGGTAACCTCGTGGAGCTGCGCAAGGGCCTGTCGCAATTCAACAGCAAGACCCTCCCGGGCGTGCAAAGCACCTTGCAGGACGTGAGCAAAACCTTGCAGTCGGCGAACTCGACCCTGGCGGAAGATTCGCCGCAGCGCGAACAATTGACCCAGACCCTGGATGACCTGGGCCGAATGTCGCGCTCGCTGCGCGAGCTGTCCGATTACCTGAGCCGACACCCTGAGTCGCTGCTTCGTGGCCGTCCGAAAGATGCTCCGGCGCAGAACCTTACCTTTCCGGTGAAAGAATGAMKSQATDGQPAPGRAHVSTRRWTVSLVWIVPIIAVLVGVSLVVNNWLQEGPTITITFKTGEGLTANKTPVKYRNVVIGQVTDVQLSDDQKNVTATVKLAKTADTFTHEDSVFWVVRPRIGAGGISGIDTLLSGDFIGADAGHSKVRAKSFTGLEAPPPITYGEPGKRFTLHSQDLGSLDIGSPVYLRKIPVGQVVSYALDADGKGVNIEVFINAPNDAYVTENTRFWNVSGVDVNVGANGFAVKTESLSALLVGGIAFRAPEYSPNDTPAAEDKDFELFADQQSALAPPSGKAQYLALRFDQALRGLRVGAPVEFLGIEIGRVVSMNLDFDEKQRTFPVNVGIVIYPQLLGKAHEKLLKSLNYDPEDEAAAARLVGSFVERGLRAQARSGNLLTGQLYISLDFYPKAEKVAFDLAARPLRIPTIPGSLQQLQEQLQTVVERINKLPLESIASNLDGNLVELRKGLSQFNSKTLPGVQSTLQDVSKTLQSANSTLAEDSPQREQLTQTLDDLGRMSRSLRELSDYLSRHPESLLRGRPKDAPAQNLTFPVKEPGPT0014520_463DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_HERBICIDIAL_STRESSHERBICIDIAL_STRESS-PARAQUAT_STRESS_REDUCTION,PGPT0014520-pqiB-K06192NANA
D1-35_00976660pqiA_1COG2995Intermembrane transport protein PqiAGTGAACGCCGCAACGCCGGGCAATCCGCCCCGCGCCAGCGATCTGAACCTGTGCCTGTGCCACAGCTGCGGCCTGGCTTGCGACATGACCGACGAACCTGACACCTGCCCACGCTGCGATGCCGCCCTGCACCGGCGCAAACCCGATACCCTGACTCGCACCTGGGCCTACATGCTGGCGGCACTGGTGTTCTACATCCCGGCCAACCTGCTCCCGGTCATGAACACCCAGATGCTCGGCGACGGTGCGGACAGCACCATTATCAGCGGCGTTCTCGAGTTCTGGCAGAGTGGTGCCTGGGACATCGCGCTGATCATCTTCATCGCCAGCATCGCGGTGCCGGGCATCAAGTTCGTCGTGCTGACGTTGCTGCTGGTGTCCGTGCAACGGCGCAGTACCTGGGCCCAGGTGCAGCGCGCCAAGCTGTATCGGCTGGTCGAAGTCATCGGCTACTGGTCGATGCTTGACGTGCTGGTCGTGGCCCTGGTGGCGGCACTGGTCAAGTTCCAGGCCCTGAGCGACATCGAACCGCGACCGGGGATCCTGTTCTTCGGCCTCGTGGTGCTCTTTACCATGCTGTCGGCCATGAGTTTCGACCCGCGGCTGATCTGGGACACCCAACCATCCGAGGAGGTCATGGATGAAGTCACAAGCCACTGAMNAATPGNPPRASDLNLCLCHSCGLACDMTDEPDTCPRCDAALHRRKPDTLTRTWAYMLAALVFYIPANLLPVMNTQMLGDGADSTIISGVLEFWQSGAWDIALIIFIASIAVPGIKFVVLTLLLVSVQRRSTWAQVQRAKLYRLVEVIGYWSMLDVLVVALVAALVKFQALSDIEPRPGILFFGLVVLFTMLSAMSFDPRLIWDTQPSEEVMDEVTSHNANANANANA
D1-35_00977597yebSCOG2995Intermembrane transport protein YebSATGGCCGTTACCGACCGACTGATCATTTGTGAACATTGCGATGCAGTGTACGAGCCGGTTGCGCTCGCCCCGCATCAAAAAGCCTCGTGCGTGCAATGCCATGCAGTGATCCAGCGCTACAACGGCCTGACCATCGAACAGCGCCTGGCCCTGACCATCACGGCAGCGGTGCTGTGGGCCTTCGCCAATGTCTATCCGGTGATGAGCATCCGCCTCCAGGGCCTGAGCAACAGCGCGACCCTGTGGGATTCGGTCGTGGCCCTGAGCCAGGGACCCATCACCTTCATCGCCCTGGTGGCCGCGGTCGCGATCATCATCGCTCCGGCGTTCCAGTTGGCACTGCTGCTCTGGGTGCTGGGCTACGCCCATTCCAACCGGCGCGCCCCGGCGTTCAACCTGTGCATGCGCAGCCTGGAAACCCTGCGCCCGTGGAGCATGCTGGAGGTGTGCTTGCTGGGAGCCCTGGTGGCTGTCATCAAGCTTGCCGGGTTGCTGGATGTGCTTCCCGGTATCGGTCTGTTCGCCCTGGCGGCCTTGAGTCTGTTGATGATCCGCATTGCCGGTCGCGATGTGCGCGACCTGTGGAACACCCTGTGAMAVTDRLIICEHCDAVYEPVALAPHQKASCVQCHAVIQRYNGLTIEQRLALTITAAVLWAFANVYPVMSIRLQGLSNSATLWDSVVALSQGPITFIALVAAVAIIIAPAFQLALLLWVLGYAHSNRRAPAFNLCMRSLETLRPWSMLEVCLLGALVAVIKLAGLLDVLPGIGLFALAALSLLMIRIAGRDVRDLWNTLNANANANANA
D1-35_00978441IMPDH_1Inosine-5'-monophosphate dehydrogenaseATGAAAACCGTCGCGCAGTTGCTCCGGATAAAAGACGAGAAAAACCAGCAAGTGCACACCATTTCCCCGGATGACATGGTCTTGCAGGCCTTGATGCGCATGGCCGAGAAAAATGTCGGTGCCTTGCTGGTGGTCAAGAACGATGAAGTGCTGGGCATCATCAGCGAGCGTGACTATGCGCGCAAAATGGTCCTGCACGGACGCTCTTCGGTGGGCACGAAAGTCAGCGACATCATGGTTTCGCCCGTGATCACGATCGATCCACACCAGAACGTCGAGACCTGCCTGAGCATCATGACCGAGAAACACCTGCGGCATTTGCCCGTGGTGGAAAACGGCAAGCTGGTCGGCCTGTTGTCCATCGGTGACCTGGTCAAGGAAGCCATTGCCGAGCAGGCGGACCTGATCAGACAACTGGAGCAATACATTCGCGGCGAATGAMKTVAQLLRIKDEKNQQVHTISPDDMVLQALMRMAEKNVGALLVVKNDEVLGIISERDYARKMVLHGRSSVGTKVSDIMVSPVITIDPHQNVETCLSIMTEKHLRHLPVVENGKLVGLLSIGDLVKEAIAEQADLIRQLEQYIRGENANANANANA
D1-35_009792364polBCOG0417DNA polymerase IIGTGGATCTACAGCAGGGCTTCGTCCTGACCCGGCATTGGCGCGATACCCCGGCGGGCACCGAAGTCGAGTTCTGGCTGGCGACGGATGCCGGTCCCCGGCGCGTGCGCCTGCCGGTGCAGACGTCGGTGGCGTTCGTGCCGCAGATCCAGCGTGGCCATGTCGAGGCGCTGTTGCAGGGCGAGAAGGATGTCGAGTTGCGGCCCCTGGACCTGCTGGATTTCGAGCACCGCCCGGTGCTCGGCCTGTATTGCCGGCAGCATGCGCAACTGATGCGGCTGGACACGACATTGCGGCGGGCTGGCGTGGATGTATTCGAGGCCGACGTCCGGCCGCCGGAACGCTACCTGATGGAGCGCTTCATCACCGCACCGGTCTGGTTCGGCGGCACGCCCTCAGCCGATGGCTTGCTCCTGGATGCCCAGATGAAACCCGCGCCCGACTACCGGCCACCGCTGCGGCTGGTGTCCCTGGACATCGAAACCACCGCCCAGGGCGATTTGTATTCGATTGCCCTGGAGGGCTGCGGCGAGCGCCAGGTCTATATGCTCGGGCCGCCCAATGGCGATGATCGTGAAGTGGATTTCCAGCTGGAATACTGCGAGTCCCGCGCGGCGCTGTTGAAGAAACTCAACGAGTGGTTCGCCCGCTTCGATCCCGACGCGATCATCGGCTGGAACCTGGTGCAGTTCGATCTGCGCGTGTTGCATGAACACGCCCGCCGCCTGGCCGTGCCGCTGCGTCTTGGCCGTGGCGGGGAAGAAATGCAATGGCGCGAGCACGGCGCGCGCAACAACCATTTTTTTGCCTCGGCGGCTGGCCGGTTGATCATCGATGGGATCGAGTCCTTGCGCTCGGCGACCTGGAGTTTTCCTTCGTTCAGCCTGGAAAACGTCGCCCAGACCCTGTTGGGCGAGGGCAAGTCCATCGACAACCCGTACCAGCGCATGGACGAAATCAACCGCATGTTCGCCGAGGATAAACCGGCCCTGGCTCGCTACAACCTCAAGGATTGCGAGTTGGTCACGCGCATCTTCGCCAAGACCGAGCTGCTCAAGTTCCTGCTGGAACGGGCCAGCGTCACCGGCCTGCCGGCGGATCGCAGCGGCGGCTCGGTGGCGGCGTTCACGCATCTGTACATGCCGCTGATGCATCGCCAGGGTTTCGTCGCGCCGAACCTCGGCCAGCGTCCGCCGGAGGCCAGCCCTGGCGGGTTTGTGATGGATTCCCAGCCGGGGCTCTACGAATCGGTGTTGGTGCTGGACTACAAGAGTCTGTATCCGTCGATCATCCGCACCTTTCTCATCGACCCGGTGGGCTTGATCGAAGGCCTGCGCCACCCGGACCACACCGAATCGGTGCCAGGTTTCCGCGGGGCGCGGTTCTCGCGCACCCGGCACTGCCTGCCGGCCATCGTGGCGCGGGTTGCCGACGGCCGGGAAACCGCCAAGCGCGAACACAACGCGCCGCTGTCCCAGGCACTGAAAATCATCATGAACGCGTTCTACGGCGTGCTTGGCTCCAGTGGCTGTCGTTTCTTCGATTCGCGCCTGGCGTCGTCCATCACCTTGCGCGGCCACCAGATCATGCAGCGTACCCGGCAACTGATCGAAGCGCGGGGCCATGTGGTGATCTATGGCGATACCGATTCGACCTTCGTCTGGTTACGCCGCCCCCACGGCCAGGAAGAAGCCGCGACGATCGGCCGGGAGCTGGTCGCTCACGTCAACCAATGGTGGCGTGATCACGTACGAGAAGAGTTCGAACTGGAAAGCGCGCTGGAGCTGCAATTCGAAACCCACTTCAAGCGTTTCCTGATGCCGACCATCCGCGGCGCGGAGGAGGGCAGCAAGAAGCGCTACGCCGGTTTGGTGACCCGTGCCGACGGCAGCGACGAGATCATCTACAAGGGCCTGGAGACCGTGCGCACCGACTGGTCGCCCCTGGCCCGGCAGTTCCAGCAGGAACTGTATGGACGGATCTTCCATCGCCAGCCCTATCAGGATTACGTTCGCGATTATGTCCAGCAGACCCAGGCCGGCGCGTTCGACGAACGCCTGGTCTACCGCAAGCGCTTGCGTCGTCCGCTGGACGACTACGAGCGCAACGTGCCGCCACATGTGCGGGCCGCGCGGCTGGCCGACGAGTTCAACGAGCGCCAGGGCCGGCCACGGCAATACCAGAATGGCGGCTGGATCAGCTACGTCATCACCGTCGCCGGCCCCGAGCCGCTGGAAATCCGTAGCGCGCCGATTGACTATGACCACTACGTGACGAAGCAGCTGCAGCCGGTGGCGGATGCGATCCTGCCGTTTGTGGATGATGATTTTTCAACGTTGATCGGTGGACAGATGGGGTTGTTCTGAMDLQQGFVLTRHWRDTPAGTEVEFWLATDAGPRRVRLPVQTSVAFVPQIQRGHVEALLQGEKDVELRPLDLLDFEHRPVLGLYCRQHAQLMRLDTTLRRAGVDVFEADVRPPERYLMERFITAPVWFGGTPSADGLLLDAQMKPAPDYRPPLRLVSLDIETTAQGDLYSIALEGCGERQVYMLGPPNGDDREVDFQLEYCESRAALLKKLNEWFARFDPDAIIGWNLVQFDLRVLHEHARRLAVPLRLGRGGEEMQWREHGARNNHFFASAAGRLIIDGIESLRSATWSFPSFSLENVAQTLLGEGKSIDNPYQRMDEINRMFAEDKPALARYNLKDCELVTRIFAKTELLKFLLERASVTGLPADRSGGSVAAFTHLYMPLMHRQGFVAPNLGQRPPEASPGGFVMDSQPGLYESVLVLDYKSLYPSIIRTFLIDPVGLIEGLRHPDHTESVPGFRGARFSRTRHCLPAIVARVADGRETAKREHNAPLSQALKIIMNAFYGVLGSSGCRFFDSRLASSITLRGHQIMQRTRQLIEARGHVVIYGDTDSTFVWLRRPHGQEEAATIGRELVAHVNQWWRDHVREEFELESALELQFETHFKRFLMPTIRGAEEGSKKRYAGLVTRADGSDEIIYKGLETVRTDWSPLARQFQQELYGRIFHRQPYQDYVRDYVQQTQAGAFDERLVYRKRLRRPLDDYERNVPPHVRAARLADEFNERQGRPRQYQNGGWISYVITVAGPEPLEIRSAPIDYDHYVTKQLQPVADAILPFVDDDFSTLIGGQMGLFNANANANANA
D1-35_00980822dkgBCOG06562,5-diketo-D-gluconic acid reductase BATGAGAACTGTGGAATTGGCCGGCGTATCCGTACCGGTAATCGGCCAGGGCACCTGGCGGATGGGTGAGGAACCGTCCCATCACAAGAAAGAAGTAGCTGCCCTGCGCCTGGGCATCGAACTGGGCATGAGCCTGATCGACACGGCCGAAATGTATGCCGAGGGCGGCGCCGAGCAGGTCGTTGGCGAAGCGATCACCGGGCTACGCGACCAGGTGTTCCTGGTGAGCAAGGTCTACCCGCACAATGCCAGCCGCAAAGGCATTCCGTTGGCCTGCGAGCGCAGCTTGCGGCGCCTCGACACCGATTATATCGACCTCTATTTGCTGCATTGGCGCGGCCAGTACCCACTGGAGGAAACCGTCGAAGCGTTTGAGCGCCTGCGCGAAGAAGGCAAGATCGGCCGCTGGGGCGTGTCGAACTTTGACGTCGACGATCTGGAGGAGCTGGCCTCGCCGGTCTGCGCTACCAATCAAGTGTTGTACAACCTGCAAGAACGCGGCATCGAATTCGACCTGCTGCCCTGGAGCCAGCAACAGCGCATGCCGGTCATGGCCTATTGTCCGGTCGGCCAGGGCGGGCATTTGCTCAAGGACCACACCCTGCAACAGATCGCCGAACGCCACCGCGCGACGCCGGCACAGATCGCCCTCGCCTGGCTGCTGCGCCAGGACAATGTCATTGCAATCCCCAAGGCGGTGCAAGCTGAACACGTGCGCCTGAACGCCGAAGCGGCGAATCTGCAGCTTGAGCCTCAGGATCTGGCGGCATTGGACCTGGTGTTCCCGCAGCCACAGGGCAAGCAGCGGTTGGCGATGGTTTAGMRTVELAGVSVPVIGQGTWRMGEEPSHHKKEVAALRLGIELGMSLIDTAEMYAEGGAEQVVGEAITGLRDQVFLVSKVYPHNASRKGIPLACERSLRRLDTDYIDLYLLHWRGQYPLEETVEAFERLREEGKIGRWGVSNFDVDDLEELASPVCATNQVLYNLQERGIEFDLLPWSQQQRMPVMAYCPVGQGGHLLKDHTLQQIAERHRATPAQIALAWLLRQDNVIAIPKAVQAEHVRLNAEAANLQLEPQDLAALDLVFPQPQGKQRLAMVNANANANANA
D1-35_009811149mroCOG2017Aldose 1-epimeraseATGCTTGAATCCAGACATCTGCTCACGGCCCTCGGAGTCTCTCTGATGATTGCCACCTCTGCCCAGGCCGCCGGCCTGACCAATGAACGCGTTGCCTTCGGCAAGACCAACGACGGCACACCGGTTGAAAAATACGTACTGCGCAACAGCCACGGCGTCGAGGCGACCGTCATCACTTACGGCGGGATCCTCCAGTCACTGATCGTGCCGGACAAAAACGGCATGACTGCCGACATCGTGCTCGGCTTCGACGACGTGCAGGGCTACCAGAAGAACGGCAACGTGTATTTCGGCGCGACCATCGGTCGCTTCGGCAACCGTCTGGCCGGCGGTGCGTTCGAGCTGGATGGCAAACGCTACCAGGTGCCGCAGAACGACAAGGACAATTCCCTGCACGGCGGGCCGCAAGGCTTCGACAAGCGTGTCTGGAAGGCCGAGCCGAGCAATGGCAAAGACTCGGTAGGCGTGACCCTGACGTATGTGTCGGCGGACGATGAAATGGGCTTTCCCGGCAACCTGAAGACCGACGTCACCTACAGCCTCAACGACCAGAACGAATTGCGCATCGACTACAAGGCCACCACCGACAAACCGACCGTGCTGAACCTGACCAACCACAGCTATTTCAACCTGGCCGGCGCCGGTAATGGCGACATCCTCAAGCAAGTCGCGACGCTGCACGCGTCCCGCTACACACCAGTAACCGCCAAGCTGATTCCCACCGGCGAGCTGGCACCAGTAGCCGGCACCCCGATGGATTTCACCAAGCCCACGCCCATTGGCACGCATATCAAGGCTGATCATCCGCAGCTGAAATTTGCCGAACCGAAACAAGGCGGCTTCGATTTCAACTGGGTACTCGACGCCAAGGGCGACGTGAATAAACTCGCCGCCGAGGTCCAGGATCCGCAGTCCGGACGGCGCTTGCAGCTCTATACCAGCGAGCCGGGCGTGCAGTTCTACACCAGCAACTTCCTCGACGGCACGATCAAGGGCAAGCAAGGCAAGGTCTACCCGCACTGGAGCGCGTTTACCCTGGAAACCCAGCATTATCCCGATTCGCCGAACCAGCCGTCCTTCCCTACCACGCGACTTGATCCGGGCCAGACCTACACCCAGACCATGGTGCTGAAGTTCTCGGCCGAGTAAMLESRHLLTALGVSLMIATSAQAAGLTNERVAFGKTNDGTPVEKYVLRNSHGVEATVITYGGILQSLIVPDKNGMTADIVLGFDDVQGYQKNGNVYFGATIGRFGNRLAGGAFELDGKRYQVPQNDKDNSLHGGPQGFDKRVWKAEPSNGKDSVGVTLTYVSADDEMGFPGNLKTDVTYSLNDQNELRIDYKATTDKPTVLNLTNHSYFNLAGAGNGDILKQVATLHASRYTPVTAKLIPTGELAPVAGTPMDFTKPTPIGTHIKADHPQLKFAEPKQGGFDFNWVLDAKGDVNKLAAEVQDPQSGRRLQLYTSEPGVQFYTSNFLDGTIKGKQGKVYPHWSAFTLETQHYPDSPNQPSFPTTRLDPGQTYTQTMVLKFSAEPGPT0017825_664DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GALACOTOSE_METABOLISM|DEGRADATION,PGPT0017825-galK-K01785NANA
D1-35_00982750hypothetical proteinATGGCCGCTGTCTTACATTCCGTGAGGGTCTTGCCACGTCGCTGCGGCTTGCTGCTGGCGAGCCTGTTGCTGATGCTCAGCGGCGGATGCAGCCATCAGCAAGGCCAGGACATGGTTACGCAGTTCAGCAATGCCAGGCCCCAGGAGTTTTTGCAGACCAGCGTTGACCGCATGGCCACGCTGTCGATGCATGACAACCTGCAGAGCCTTTACCTGCTGATGCACAAGCTCTACCTGCGCAACCCGGAAGAACTGCGCAAATCCGGCTTTCTCGATGCCCGTATCGCCGTGAAACAAGTGCGCGAGGCGATTGAACAGCAGCAACCCTTGCCGGCCCTGGGCAACAGGAAGGACCTGGCAGCGCTGAGCTACGCGATGAGTCCCGAGTTTCTCGGTGACCGGGTCGGAGCGTTCATCTATGCCATTGGCAGCATGCTGGTGACGGCTCACGGCAACCGTCTCGAGTTCTACATGACCGACACCATCGATCCGCGCTTCGTCAGCAACGCGGCGCGCAACATTGAGAAAGCCACGTGGCTGTTGGGCCAGCGGCAGAACAAGGACGGCACGCCGATGCTGTTCTCCAATGAAATCTCGGAGGAGGGCAGCAATCTGAGCTTTGCCGTGGAGTTCGGTAAGATCGTCGCGCGCCTCGACCTGCTGACCCAGATGCTGGACGAGCGCTATCGGCGAATCGGCTTGAATTATGCGCAGAGTCTGCTGTTTCTCAATTTCCTGCCTGTTCAGTAGMAAVLHSVRVLPRRCGLLLASLLLMLSGGCSHQQGQDMVTQFSNARPQEFLQTSVDRMATLSMHDNLQSLYLLMHKLYLRNPEELRKSGFLDARIAVKQVREAIEQQQPLPALGNRKDLAALSYAMSPEFLGDRVGAFIYAIGSMLVTAHGNRLEFYMTDTIDPRFVSNAARNIEKATWLLGQRQNKDGTPMLFSNEISEEGSNLSFAVEFGKIVARLDLLTQMLDERYRRIGLNYAQSLLFLNFLPVQNANANANANA
D1-35_00983786hypothetical proteinATGGATTTCGGTAATGTCGGTTTAGTCGTAGCGGGACTGGTGGTCGGTTTCATCGTCGGGATGACCGGCGTCGGCGGCGGATCGCTGATGACGCCCATCTTATTGTGGTTCGGCATCAACCCTGCGACGGCGGTGGGGACCGATCTGCTGTACGCGGCCATTACCAAATCCGGCGGCGTTCTGGTCCATGCGAAAAACCGCAATATCGACTGGGCCATCACCGGTTGGCTGACTTTGGGCAGTGTGCCGGCGGTTGGGCTGACCCTGTGGTTTCTCAGCAGCCTGAACAGTTCTCCCGACGCGATGAACGCGGTCATCAAGCAAGCCCTGGGCTTTGTGTTGTTCGCCACCGCCCTGGCAATCCTGTTCAAGAAGCGCCTGCTGCAGTTTGCCCATGACCGCGCCGGCGGTCATTACAACCCCAGTGGCTCGCGGCTCAACCTGCTGACTGTCATCACCGGCCTGGTGCTGGGCACGATGGTCGCATTGACTTCCATCGGCGCCGGCGCCCTGGGCACCGTCGCGCTGTTCATCCTTTATCCGTTCCTGGTCACCAAGCGCCTGGTCGGCACCGAAATCGCCCATGCCGTGCCGTTGACCCTGGTCGCGGGCCTTGGCCATGCAAGCATGGGCAACATGGACTGGCACATCCTCGGCTTTCTGCTGATTGGTTCGTTGCCGGGCATCTATCTGGGCAGCCACTTGTCGGGACGCATTTCCGACGAGCTCCTGCGCCCTTGCCTGGCGGTGATGTTGGCCATGATCGGTTTCAAGCTCGCGTTCTGAMDFGNVGLVVAGLVVGFIVGMTGVGGGSLMTPILLWFGINPATAVGTDLLYAAITKSGGVLVHAKNRNIDWAITGWLTLGSVPAVGLTLWFLSSLNSSPDAMNAVIKQALGFVLFATALAILFKKRLLQFAHDRAGGHYNPSGSRLNLLTVITGLVLGTMVALTSIGAGALGTVALFILYPFLVTKRLVGTEIAHAVPLTLVAGLGHASMGNMDWHILGFLLIGSLPGIYLGSHLSGRISDELLRPCLAVMLAMIGFKLAFNANANANANA
D1-35_009841359COG1926putative proteinATGAACAGCCCAGCCAGAGATCTGCTGCAACGCCTGCGCCGTCGTCGCGCCGAACCGCGCACCGATATCGCCGACATTCTGCGCCGTCACGCCGAACCGCTGCCTGCCGAGGACAGCCCGAGCTTTGGTGAAATGTTTGATCGCTTCGCCGACGCCAAGGTCGTGCTGATCGGCGAAGCCAGCCACGGCACCCATGATTTCTACCGCACCCGCGCTGCTATTACCCGGCACCTGATCGAGCGTCACGGCTTCGGCATTGTCGCGGTCGAAGCCGACTGGCCCGATGCCGGACAGATCGACCGCTGCGTGCGCGACCTGGGGCCTTCGGCCTGGAAACAGCAGGCGTTCGCCCGGTTTCCCAGCTGGATGTGGCGCAACACCGATGTCCAGGACTTTGTACGTTGGTTGCGCCGCTACAACCTCGGCCAGCCTGACGCTCGCCGCGTGGAGTTTCGCGGCTTGGACGTCTATAGTCTGCGCCACTCCATTGACGAGGTGCTCGATTACCTCGACAAGAGCCATCCCCACCTGGCCCGTGACGCCCGCCATCGTTATGGCTGTCTGACGCCCTGGCACGACGACCCGGCGCTGTATGGCCATTTCACCGAGCGCGGCAACCTGGCGACATGCGAAGACGCCGTGGTCGAACAGCTCAACACGCTGCTCGCCGAGCGCCTTGATCCGTTGATCGAGGATGACGAGGGCTTCTTCAGCGCGGTGCAGAACGCCCGGGTCGTACGCGCCGCCGAACAGTACTACCGCGCCATGTATCGCGGCGGCAAGTCATCCTGGAACCTGCGCGACCGGCACATGTTCGACACCTTGCAAAGCCTGCTGGAGCATCGCGGGCCCGATGCGAAAGCGATCGTCTGGGCGCATAACTCTCACATCGGAAACGCCGCCGCGACACGAATGGGCTGGGAGGGTGAGTTCAACATCGGCCAGTTGTGCCGCATGGCTTATGGCCGCGACGCGGTATTGCTGGGCATGGGCACCGACCGTGGCAGCGTGGCGGCAGCCGATGACTGGGACGCGCCGATGAAAATCAAGCAGGTGGTGCCGGCGCTGGCCGGCAGTTGGGAGCGGGAGTTTTCGCTGGCGGGTGTGCGCGCATCGCTTACGGACTGGCGGACCGACCCGGACGAAGCGCTGTTGGACGTGCTGTCCGAGCCGTTGCTCGAACGCGCCATCGGGGTGATCTACCGCCCTGAAACCGAACGCCAGAGTCATTATTTCGAAGCGGTACTGGCCGAGCAGTTCGACGCCTGGCTCTGGTTCGAGCAGACCGAAGCCGTCACGCCGTTGCCCACGCCGCACACGCTGGAACGCGAGGAAGACACCTTCCCGTTTGGCCTCTGAMNSPARDLLQRLRRRRAEPRTDIADILRRHAEPLPAEDSPSFGEMFDRFADAKVVLIGEASHGTHDFYRTRAAITRHLIERHGFGIVAVEADWPDAGQIDRCVRDLGPSAWKQQAFARFPSWMWRNTDVQDFVRWLRRYNLGQPDARRVEFRGLDVYSLRHSIDEVLDYLDKSHPHLARDARHRYGCLTPWHDDPALYGHFTERGNLATCEDAVVEQLNTLLAERLDPLIEDDEGFFSAVQNARVVRAAEQYYRAMYRGGKSSWNLRDRHMFDTLQSLLEHRGPDAKAIVWAHNSHIGNAAATRMGWEGEFNIGQLCRMAYGRDAVLLGMGTDRGSVAAADDWDAPMKIKQVVPALAGSWEREFSLAGVRASLTDWRTDPDEALLDVLSEPLLERAIGVIYRPETERQSHYFEAVLAEQFDAWLWFEQTEAVTPLPTPHTLEREEDTFPFGLPGPT0027980_349DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-MACROLIDE_RESISTANCE,PGPT0027980-ereA_B-K06880NANA
D1-35_00985549hypothetical proteinATGCTTATTCGGTCGTTGACCTTCGCTACCTTGCTGGCCATCGCCGGCCCGTTGTTCGCCGCCGATGGCGACTCACCCCTGGTAGCGGAGGTGGGCAAGTCCCGGCCTGTGATTGTCATTGCGCCCAGCTCTGTCGATCCTGCGTGGGTCAGCCTGAAGAAAGCCTTGGACGAGCCGGCGGGCAAGCAGGGTTTTTCGGAGCGCAACATGGTGCTCTATACCGTGCTCAATACCATCGGCCAGCGTGATGGCAAGGACCTCGACCCGCAAAGCACCATGGCGTTGATCCGTTCTCTCAAGCTGGGAGCGGGAGCGCAGACCAAGATCATCCTGGTAGGCAAGGACGGGGAAAAGAAGCTTGAGCATTCCGGCGCGATCGAACTGAAGCAACTGTTCGATACCGTCGACAAGCTGCCCGAGACGGAAAAACAAGCCACGGCGCCCACCCCACCGCCAGCGCCGGAACCCGAGCCGGCCAAGGACGCCAAAGGCACCAAGCCGGGCAAGGCAACCAAGCCTGCGGCTGCGCCGAAACCGTTGGATGACTGAMLIRSLTFATLLAIAGPLFAADGDSPLVAEVGKSRPVIVIAPSSVDPAWVSLKKALDEPAGKQGFSERNMVLYTVLNTIGQRDGKDLDPQSTMALIRSLKLGAGAQTKIILVGKDGEKKLEHSGAIELKQLFDTVDKLPETEKQATAPTPPPAPEPEPAKDAKGTKPGKATKPAAAPKPLDDNANANANANA
D1-35_009861149ampCBeta-lactamaseATGCACATTGCCAAATCGATACTCGCCGGGACTTTTGCCCTGGCCTGCGGGACGACCCCGGGCTTCGCCCAGGAGCGCATTGAAGACACGGTCAATGCCGTTATCCAACCCTTGATGAAAGAACAGGATATCGCGGGCATGGCCGTGGCGATCACGCACAACGGCCAGCGCCGGTTCTTCAATTATGGCGTTGCCTCCAAAGACACCAGAAAATCCGTCACCGAGCAGACCCTGTTCGAAGTCGGCTCGATCAGCAAGACCTTTACCGCGACACTCGGCGCCTACGCCCAGGCCCAGGGCAAACTGCAGCTGTCAGACCTCGCCGGGCGCTATGCCCCCGAATTGCGTGGCAGTGCCCTTGAAAACGCCCGCCTGCTCGATCTCGCCACCTATAGCGCGGGCGGCCTGCCGTTGCAGTTTCCCGACGATGCCGACCATCCCGACCGGATGTTCGGCTACTACAAATCCTGGAAACCGCTCTACCCGGCCGGCACCCAGCGGCTCTATTCAAACCCGAGCATCGGCTTGTTCGGCTTCCTGGCGGCCCGCAGCCTGGGTCGACCGTTTGATGAGGTGATGGAACAGACCCTGATGCCCGGGCTGGGCCTCAAGCACAGCTACGTACAAGTGCCACACAATCAACTGGCAACCTACGCCCAAGGCTACGCCAAGGATGGCAAGCCTGTGCGGGTCGGGCCTGGCGCGCTGGCCTCCGAAGCCTACGGGGTGAAGATCAGCTCAGCGGACCTGATCCGCTTTGTCGAGGTCAATCTGCAACCCGGGAAACTGGACGCGGACCTGCAGCGAGCCATTGCTACGACACAAACAGGTTTCTACAAGATTGGAGGGATGCACCAGGGGCTGGGCTGGGAGTTCTACCTACCTCCGCTCACCCTCGATGGGTTGCTCGCCGGCAACAGTCCACAGATGGCTTTGACGCCGCAAAAGGCCGAGCTGCTCACCCCACCGCGCCCCGCGCCCGACGGCGCCTGGATCAACAAGACAGGGTCGACTAACGGTTTCGGCGCATACGCAGCGTTCGTCGCTGGAGAGGACTTGGGGATCGTGATGTTGGCGAACAAGAACTACCCGATTGAAGAACGGGTGAGAGCCGCGCACCAGATCCTGATGACTCTGGAACAGCAATGAMHIAKSILAGTFALACGTTPGFAQERIEDTVNAVIQPLMKEQDIAGMAVAITHNGQRRFFNYGVASKDTRKSVTEQTLFEVGSISKTFTATLGAYAQAQGKLQLSDLAGRYAPELRGSALENARLLDLATYSAGGLPLQFPDDADHPDRMFGYYKSWKPLYPAGTQRLYSNPSIGLFGFLAARSLGRPFDEVMEQTLMPGLGLKHSYVQVPHNQLATYAQGYAKDGKPVRVGPGALASEAYGVKISSADLIRFVEVNLQPGKLDADLQRAIATTQTGFYKIGGMHQGLGWEFYLPPLTLDGLLAGNSPQMALTPQKAELLTPPRPAPDGAWINKTGSTNGFGAYAAFVAGEDLGIVMLANKNYPIEERVRAAHQILMTLEQQPGPT0028115_670DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028115-ampC-K01467NANA
D1-35_00987879yfeXCOG2837Dye-decolorizing peroxidase YfeXATGAGTTACTACCAGCCCGGCATTCTCGCCACCCCTGTTCCGCCTCAGGCCCGTCATCTGTTTTTTGCCCTGGAATCGGTCGAGGCACTGCCGGCTGCGATCGACAAGCTGTTGCTGCAACTGGATGGCCGCGTGGTAGTCGGCTTTGGCGAGTCGCTGGTTCAGGCGCTGGGCGCCAAGGTCGAGGGCTTGCGCGCGTTCCCGGCGCTGGCGGGCGTCGGCGTGGACAACCCTTCGACCCAGCACGCGCTCTGGTGCTGGCTGCACGGCGAGGACCGGGGCGAGCTGATGCACCGCAGTCGCGCCATCGAAGCGGCATTGGCGCCGGCACTGCGTCTGGTGCAGATGAACGAAACCTTTCGACACATGACCGGCCACGACCTGACCGGCTACGAAGATGGCACCGAAAACCCTCACGACGAAGCGGCCGTGGCCGCCGCCCTGGCCCAGGGCAACGACGGGCTGCGCGGTGGCAGTTTTGCTGCGATCCAGCAATGGCAGCATGACCTGGACGGTTTCGCCGCGATGCAGCCCCATGAGCGAGACAACATCATGGGCCGGCGCCTGAGCGATAACGAAGAGCTCGAAGATGCGCCTGAGTCTGCCCACGTCAAGCGCACGGCCCAGGAAAGCTTTGCTCCGGAGGCTTTTGTCGTACGCCGTTCCATGCCCTGGATCGAAGGTGACCGCGCTGGCCTGATGTTCCTGGCGTTCGGTTTTTCCCTGGACGCCTTCGAGGCGCAATTGCGGCGCATGAGCGGTCTGGAGGACGGTATTACCGATGGCCTGTATCGCATGAGCCGGCCGATTACCGGTGGTTACTACTGGTGCCCGCCGCAGTTGGACGGGCGCCTGGACCTGCGGGCTCTCGCCCGCTAAMSYYQPGILATPVPPQARHLFFALESVEALPAAIDKLLLQLDGRVVVGFGESLVQALGAKVEGLRAFPALAGVGVDNPSTQHALWCWLHGEDRGELMHRSRAIEAALAPALRLVQMNETFRHMTGHDLTGYEDGTENPHDEAAVAAALAQGNDGLRGGSFAAIQQWQHDLDGFAAMQPHERDNIMGRRLSDNEELEDAPESAHVKRTAQESFAPEAFVVRRSMPWIEGDRAGLMFLAFGFSLDAFEAQLRRMSGLEDGITDGLYRMSRPITGGYYWCPPQLDGRLDLRALARPGPT0013090_1363DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013090-yfeX-K07223NANA
D1-35_00988747ygfF_1putative oxidoreductase YgfFGTGGATAAAGTCATCGTCATCACCGGTGGCGGGCGTGGGATCGGGGCGGCCACGGCGTTGTTGGCGGCCGACCTGGGCTATCGGATCTGCATCAACTACCAGTCGGATGAAAACGCCGCCCAGGATGTGCTCGCCCAGATCCGTGCCAAGGGCGCGCAGGCCATTGCGGTGCGGGCCGACGTGAGCATCGAGGACGAAGTGGTCGGCCTGTTCAACCGCGTGGACACCGAGCTGGGCCGCGTCACCGCCCTGGTGAACAACGCCGGTACGGTTGCCCACAAGTCCCGACTCGATGAAATGTCCGAGTTCCGCATGCTCAAGATCCTGAAGACCAACGTGCTCGGGCCGATGTTGTGCGCCAAGCAGGCGGTGCTGCGCATGTCGCCCCGGCATGGCGGGCAGGGCGGCAGCATCGTCAACGTTTCCTCGGTTGCCGCCCGCTTGGGCGCACCGGGTGAATATGTCGACTACGCGGCTTCCAAGGGCGCATTGGACACCTTCACCGTCGGCCTTTCCAAGGAGGTCGCTGGCGAAGGTATTCGCGTCAATGCGGTCCGCCCGGGCTACATCTACACCGATTTCCATGCCCTCAGCGGCGATCCGGAGCGGGTCAGCAAGCTGGAATCGGCGATCCCCATGGCCCGGGGCGGACGTCCGGACGAAGTGGCCGAGGCGATTATCTGGCTGCTGTCCGACAAGGCTTCGTATGCGACCGGGACGTTTGTGGAGCTGGGGGGCGGGCGCTGAMDKVIVITGGGRGIGAATALLAADLGYRICINYQSDENAAQDVLAQIRAKGAQAIAVRADVSIEDEVVGLFNRVDTELGRVTALVNNAGTVAHKSRLDEMSEFRMLKILKTNVLGPMLCAKQAVLRMSPRHGGQGGSIVNVSSVAARLGAPGEYVDYAASKGALDTFTVGLSKEVAGEGIRVNAVRPGYIYTDFHALSGDPERVSKLESAIPMARGGRPDEVAEAIIWLLSDKASYATGTFVELGGGRNANANANANA
D1-35_009891410norG_1COG1167HTH-type transcriptional regulator NorGATGAAACGCTACGAAAAATTTGCCGACGATATCGCCGAACTGATCCGCTCCGGCATGCTCGGGCCGGGCCAACGGGTGCCGTCGGTGCGCTACGCCAGCCAGACCTACGGCGTCAGTCCGTCCACCGTGTTCCAGGCTTATTACCTGCTGGAGCGACGTGGTCTGATCCGTGCCCGGCCGCGCTCCGGCTACTTCGTCAATCATCACGCGCCGAGCCCGTTCTGCGAGCCGGTCGCCAGCAGCCAGGTCCACGAGTCCACCGAGGTCGACGTCAGCGAACTGGTATTTTCGGTGCTCGACTCGATCAAGGATCCGACGACCGTACCGTTCGGCTCGGCATTCCCCAGCCCGACGCTGTTTCCCCTGCAACGCCTGTCCCGCTCGTTGTCCAGCGCCACGCGGGACATGGATCCGCGCGTAGTGGTCACCGACATGTCGCCGGGCAACCCTCAACTGCGCCGCCAGATCGCCCTGCGCTATATGGTCGGCGGGCTGATGCTCCCCATGGAGGAACTGCTCGTCACCAACGGCGCCCTGGAAGCATTGAACCTGTGCCTGCAAGCCGTGACCGAGCCGGGCGACCTGGTGGCAATCGAGGCGCCCGCGTTCTATGCCAGCCTGCAAGTGCTCGAACGGCTGAAACTCAAGGCGGTGGAAATCCCCGTCCACCCGCGCGACGGCATTGATCTCGATGTGCTGGAACAGACGCTGGCGCGCCATCCGGTCAAGGCCTGCTGGTGCATGACCAGCTTCCAGAACCCGATTGGCGCGACCATGCCCGAAGCGCGCAAACAGGCCCTGGTCGAATTGTTGCGTCGCTACCAGGTGCCGTTGATCGAGGATGATGTCTATGCCGAACTCTACTACGGCCAGCAGGCTCCCAAGCCGGCGAAAGCGTTCGACACCGAAGGCCTGGTGATGCACTGCGGCTCATTCGCCAAGAGTCTGGCCCCGGGCTACCGCATCGGCTGGGTCGCCGCCGGGCGCTACGCCCGGAAGATCGAGCGGCTCAAGCTGATGACTTCACTGTGCGCCTCGATGCCGGCCCAGGCCGCCATCGCCGATTACCTGCAACATGGAGGCTACGACCGTCACCTGCGCAAGTTGCGCTACGCCCTGGAAGAACAGCAAAGCGCCATGCTCGCCGCCATAGCCCGGTATTTTCCGGCGCAGACTCGGGTGAGCCAGCCGGCGGGTGGGTACTTCTTGTGGCTGGAGCTGCCGGAGCAGATTGATTCGCTGAAACTGTTCCAGATGGCTCTGGCGCAAGGCATCAGTATCGCACCGGGGCCGATCTTTTCAGCGACCCGGCGCTTCAGGAACTGTATTCGCCTGAACTATGGCGGGCCCTGGACCGATGTGTCGGAAAAGGCCATGGAGACGTTGGGGCGGATTATCCGGTCGTTCTGAMKRYEKFADDIAELIRSGMLGPGQRVPSVRYASQTYGVSPSTVFQAYYLLERRGLIRARPRSGYFVNHHAPSPFCEPVASSQVHESTEVDVSELVFSVLDSIKDPTTVPFGSAFPSPTLFPLQRLSRSLSSATRDMDPRVVVTDMSPGNPQLRRQIALRYMVGGLMLPMEELLVTNGALEALNLCLQAVTEPGDLVAIEAPAFYASLQVLERLKLKAVEIPVHPRDGIDLDVLEQTLARHPVKACWCMTSFQNPIGATMPEARKQALVELLRRYQVPLIEDDVYAELYYGQQAPKPAKAFDTEGLVMHCGSFAKSLAPGYRIGWVAAGRYARKIERLKLMTSLCASMPAQAAIADYLQHGGYDRHLRKLRYALEEQQSAMLAAIARYFPAQTRVSQPAGGYFLWLELPEQIDSLKLFQMALAQGISIAPGPIFSATRRFRNCIRLNYGGPWTDVSEKAMETLGRIIRSFPGPT0026010_15DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0026010-mucR-K21023NANA
D1-35_009901413hypothetical proteinATGAGCGAAAGAATCCCCGCCCAGTTGATACAGACTTTCGACCCCGCCCCCACGAGAATCAGGGCCAGGACTACCGACAACCTGATCCACACCCGTAGCTTCAGCGGTTTGTTTCGTACCCTGCGCATCAGCGGTGCCGGCGTCCTGTTCCTGCTGTTCTTCGGCACGGTTTGGCTGGACTGGAACGGTCGCCAGGCAGTGCTCTGGGATCTTTCCGAGAGCAAATTCCATATTTTCGGCGCGACCTTCTGGCCCCAGGACTTCATCCTGCTCTCGGCGTTGTTGATCATTGCCGCGTTCGGCCTGTTTGCGATTACCGTGTTCGCCGGGCGCGTGTGGTGCGGCTACACCTGTCCTCAGAGCTCATGGACCTGGATCTTCATGTGGGTCGAGAAGATCACCGAAGGTGAGCGCAATCAGCGGATCAAGCTGCAAGCCGCGCCGTGGGGCGTGAACAAACTGCTGCGACGCTCGGCCAAACATACGTTGTGGCTGGCCATCAGCCTGCTCACCGGCCTGACGTTCGTAGGCTACTTCACCCCGATCCGGCCGCTGGCGGAAGAGCTGCTGACCCTGCAAATGGCTGGCGTCAGCCTGTTCTGGGTGGTTTTTTTCACCGGGGCCACTTACGTCAACGCCGGCTGGCTGCGCGAAGCCGTGTGCATGCACATGTGCCCTTATGCGCGATTTCAGAGCGTGATGTTCGACAAGGACACGCTGACCGTTTCCTACGACGTGGCCCGTGGCGAAATTCGCGGCCCGCGCAAACGCGATGCGGTCCCGGCCAACATCGGGCTGGGCGACTGCATTGACTGCCAGATGTGCGTACAGGTCTGCCCGACCGGCATCGATATTCGCGACGGTCTGCAAATGGAGTGCATCGGCTGCGCGGCCTGCATCGACGCCTGCGATTCGATCATGGACAAGATGGGCTACGCCCGTGGCCTGATCAAATACACCTCCGAACGTCAGCTGCAAGGCGGCAAGACTCACCTGCTGCGACCACGGCTGGTCGGCTACACGGCGGTATTGATGGTCATGATCGCTGCGCTGGCCCTGGCACTGGTGGAGCGGCCAATGGTGTCGCTGGATGTGAGCAAGGACCGTGGCCTGTTCCGTGAGAACAGCCAGGGCCAGATCGAAAACATCTACAGCCTGAAGATCATCAACAAGACCCAGCAACGCCAGGCGTATCAATTATCGCTGGCGGACGGCGCTGGTTTCGTCCTGCAAGGCAAGACCCAGTTGAGCCTGGCGCCCGGAGAAATCGTCGACGTGCCGGTGTCGGTGGCGATGCTCAACGAACGGCCGGACAAAGGCTCGCAGGAACTGACGTTCAAAGTTGCCGACAGTGATAAGCCCGATGTTTACAGCGAAGCAAAAAGCCGTTTTGTAGCACCGATGAATCGGTGAMSERIPAQLIQTFDPAPTRIRARTTDNLIHTRSFSGLFRTLRISGAGVLFLLFFGTVWLDWNGRQAVLWDLSESKFHIFGATFWPQDFILLSALLIIAAFGLFAITVFAGRVWCGYTCPQSSWTWIFMWVEKITEGERNQRIKLQAAPWGVNKLLRRSAKHTLWLAISLLTGLTFVGYFTPIRPLAEELLTLQMAGVSLFWVVFFTGATYVNAGWLREAVCMHMCPYARFQSVMFDKDTLTVSYDVARGEIRGPRKRDAVPANIGLGDCIDCQMCVQVCPTGIDIRDGLQMECIGCAACIDACDSIMDKMGYARGLIKYTSERQLQGGKTHLLRPRLVGYTAVLMVMIAALALALVERPMVSLDVSKDRGLFRENSQGQIENIYSLKIINKTQQRQAYQLSLADGAGFVLQGKTQLSLAPGEIVDVPVSVAMLNERPDKGSQELTFKVADSDKPDVYSEAKSRFVAPMNRNANANANANA
D1-35_00991237hypothetical proteinATGACTGTACGAATCGATGACAACCAGACCTGCCACTTCGACACCCCCAACGTCCAGGAACAGCGACCGGCGTGCGAGTTGACGATCATTACCGACCCGGACAAGGCCATGTCAGCCGTGGAGCTCAATGGCGGGCGGGTCTACCTGACCGAGGCGGAAGTGGATGCCCTGACCGTGGCCGGAGCGGCTGACGGACGGCAGAACCTGAAGGCGACTGACAGCGACTCAGTGATCTGAMTVRIDDNQTCHFDTPNVQEQRPACELTIITDPDKAMSAVELNGGRVYLTEAEVDALTVAGAADGRQNLKATDSDSVINANANANANA
D1-35_00992501hypothetical proteinATGGAATCGTGGTGGGATGAAGTATGGATAACCCTGCAAGCTGAATTCGCCGACATCACCGATACCGAGCAGATGACACGGGTGACGGTGCGCCTGGTAATGGCTGCACTGCTGGGGGGCATCCTGGGGTTCGAGCGTGAGCACAAGGGCAAGGCCGCCGGCGTGCGCACCCATATGCTGGTGGCGCTGGGCGCCGCGCTGTTCGTGTTGGTGCCGCAGATGTCCGGCTCCCAGGCCGACGCGATGAGCCGGGTGATTCAGGGCGTCGTCGCTGGCATCGGCTTCCTCGGCGCCGGCACCATCCTGAAAAACGACAATGGCGACGAAAGCCACGTAAAAGGCCTGACCACCGCCGCCGGCCTGTGGATGACCGCCGCCATCGGCGTTGCCGCCGGATTGGGCCGGGAAGCGACAGCGTTGCTCAGTACGGTGCTGGCGCTGGCGATTTTCAGTGTGATGCCGATGATTGTTCGGGCGCTGGAAAAAGATGAAAAGTTGTAAMESWWDEVWITLQAEFADITDTEQMTRVTVRLVMAALLGGILGFEREHKGKAAGVRTHMLVALGAALFVLVPQMSGSQADAMSRVIQGVVAGIGFLGAGTILKNDNGDESHVKGLTTAAGLWMTAAIGVAAGLGREATALLSTVLALAIFSVMPMIVRALEKDEKLPGPT0014005_2650DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-MAGNESIUM_TRANSPORT,PGPT0014005-mgtC-K07507NANA
D1-35_00993165hypothetical proteinATGACCATTCCCATCCCGGCCGAAACACCCGATCCGAACATCGACGACCCAATCCTGCCGCCACCCGGTCCGGATCCCGAGCCGATTCCAGAGAAGGACCCACCGCTGGACCCGCAACCGCCTTTGGGAGATCCGCCGAGCGAGGCGCCGCCGGAGCGGGTTTGAMTIPIPAETPDPNIDDPILPPPGPDPEPIPEKDPPLDPQPPLGDPPSEAPPERVNANANANANA
D1-35_009941998glgE2COG0366Alpha-1,4-glucan:maltose-1-phosphate maltosyltransferase 2ATGACTGCCGAACAGCCAAATGACCTGGCGTACAACCCGCATCTGCCGTTGTCCCAGGCGTTGTTATTGCCACGTATTGCGATTGAAAACACCATGCCGGTGATCGATGGCGGGCAGTTTGCCGCCAAGGCCCTGGCGGGACAGGACGTGACGGTGACCAGCAAGGTGTTTGCCGATGGCCACGATAAGTTGGCTGTGCGGATCCGCTGGCGTGCGCTGGAAGACGATATCTGGAACAGCGAAGTGATGACCGAGCTGGGCAACAACAGCTGGCGCGGTCAATTTAACCTACCGGCCGTCGGCCGCTACGTGTTTTGCATCGAGGCCTGGTTTGATCAGTTCGCCAGCTTCCGCTATGAGCTGGAAAAAAAATTCGCCGCCGGGGTCCCCATCAGCCTGGAGCTGCAGGAGGGTCGCAATCACGTGCAACAGGCTGCCGAGCGCAGCGATGGGGAATTGAGCGAACAGCTGGCCGAGTTGCACCAGCAGCTTTCGAGTCTGTTGCCAGAAGAACAGGTCGCCCTGTTCCTTGAACCACGCAGCGCGGACCTGATGTCGCTGGCTGACCATCGGCCTTACCTGAGCATCAGTCCCGAATATCCGCTGGACGTGGAGCGTGAGCGGGCCGAGTTCGCCAGCTGGTATGAGTTGTTCCCTCGCTCGATCACCGATGATCCCAGCCGCCACGGCACGTTCAACGACGTGCATTCGCGCTTGGCGGTGATCCAGGACATGGGCTTCGACGTGCTGTACTTCCCGCCGATCCACCCGATCGGGCGCAGTTTCCGCAAAGGTCCGAACAACTCCCTGACCGCCGGCCCCGACGATCCGGGCAGCCCTTACGCCATTGGCAGCGAGGAGGGCGGGCACGAGGCGATTCACCCGCAGTTGGGCACTCGCGAGGATTTCCGCCGTCTGGTGGCCGCCGCAGCCGATCACGGCCTGGAAATCGCCCTCGACTTCGCCATCCAGTGTTCCCAGGACCACCCCTGGCTCAAGCAGCATCCGGGCTGGTTCAGCTGGCGGCCTGACGGCACGATCAAATACGCGGAGAACCCGCCGAAAAAATACCAGGACATCGTCAACGTCGATTTCTACGCCGCCGATGCGATACCGAGCCTGTGGACCGAACTGCGCGACATCGTGGTGGGCTGGGTCAACGAGGGTGTGAAGATATTCCGCGTCGACAATCCCCACACCAAGCCGTTGCCGTTCTGGCAGTGGCTGATCGCCGACGTGCGCGCGCAGTACCCAGAGGTGATGTTCCTGGCGGAAGCCTTCACCACACCGGCGATGATGGCGCGGCTGGGCAAGGTCGGTTATTCCCAGAGCTACACCTATTTTACCTGGCGCAACACCAAGGCCGAACTGGCGACCTATTTCACTGAGCTCAATGAGTCGCCTTTGCGCGAATGCTACCGGCCGAATTTCTTCGTCAATACGCCGGATATCAACCCGGCGTTCCTCCACGAGTCGGGGCGCGCCGGTTTTCTGATTCGCGCCGCGCTGGCGACCATGGGGTCGGGCCTGTGGGGCATGTATTCGGGCTTCGAGCTTTGCGAATCAGCAGCGGTGCCAGGCAAGGAGGAATACCTCGATTCGGAGAAGTATGAGATTCGGCCACGGGATTTCACCGCGCCGGGCAACATCATCGCCGAGATCGCTCAGCTCAACCGTATCCGCCGCCAGAACCCGGCGCTGCACACGCACCTGGGGCTGAAGATCTACAACGCCTGGAACGACAACATCCTGTACTTCGGCAAGCGCACGCCGGATGGCAGCAACTTCATCCTGGTGGCGGTGAGCCTCGATCCGCGCAATGTCCAGGAAGCCAATTTCGAATTGCCGTTGTGGGAGATGGGCCTGCCGGACGATGCCCAGACCCAGGGCGAGGATTTGATGAACGGCCACCGCTGGACCTGGTATGGCAAGTACCAGTTCATGCGGATCGACCCGGCATACCAGCCGTTCGGGATCTGGCGGATCAGCGTGGCGTGAMTAEQPNDLAYNPHLPLSQALLLPRIAIENTMPVIDGGQFAAKALAGQDVTVTSKVFADGHDKLAVRIRWRALEDDIWNSEVMTELGNNSWRGQFNLPAVGRYVFCIEAWFDQFASFRYELEKKFAAGVPISLELQEGRNHVQQAAERSDGELSEQLAELHQQLSSLLPEEQVALFLEPRSADLMSLADHRPYLSISPEYPLDVERERAEFASWYELFPRSITDDPSRHGTFNDVHSRLAVIQDMGFDVLYFPPIHPIGRSFRKGPNNSLTAGPDDPGSPYAIGSEEGGHEAIHPQLGTREDFRRLVAAAADHGLEIALDFAIQCSQDHPWLKQHPGWFSWRPDGTIKYAENPPKKYQDIVNVDFYAADAIPSLWTELRDIVVGWVNEGVKIFRVDNPHTKPLPFWQWLIADVRAQYPEVMFLAEAFTTPAMMARLGKVGYSQSYTYFTWRNTKAELATYFTELNESPLRECYRPNFFVNTPDINPAFLHESGRAGFLIRAALATMGSGLWGMYSGFELCESAAVPGKEEYLDSEKYEIRPRDFTAPGNIIAEIAQLNRIRRQNPALHTHLGLKIYNAWNDNILYFGKRTPDGSNFILVAVSLDPRNVQEANFELPLWEMGLPDDAQTQGEDLMNGHRWTWYGKYQFMRIDPAYQPFGIWRISVAPGPT0018610_961DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_COMPLEX_SUGAR_UTILIZATIONPLANT_DERIVED_MALTOSE_DEGRADATION,PGPT0018610-glgE-K16147NANA
D1-35_009953345Glucosamine kinaseATGGCCAAGAAACCCCGGTCTGCCACCTTTATCAATGACCCGCTCTGGTACAAGGACGCGGTCATCTATCAAGTCCACGTCAAATCCTATTTCGACTCCAACAACGACGGGATCGGCGACTTTCCCGGGCTGATCGAGAAGCTCGACTACATTGCCGACCTGGGCGTCAACACCATCTGGCTGCTGCCGTTCTATCCTTCGCCCCGGCGCGATGACGGTTATGACATTGCCGAGTACCGTGGCGTCAGCCCCGACTACGGCACCATGGCCGATGCGCGGCGCTTCATTGCCGAGGCCCACAAGCGCAACCTGCGGGTCATCACCGAGCTGGTCATCAACCACACCTCGGACCAGCATCCCTGGTTCCAGCGCGCGCGCAAGGCCAAGAAGGGCTCGAAGGCGCGTGATTTCTACGTCTGGTCGGATGACGATCACAAGTACGACGGCACGCGGATCATTTTCCTCGATACCGAGAAGTCCAACTGGACCTGGGATCCGGTGGCCGGCCAGTACTTCTGGCACCGCTTCTATTCCCACCAGCCGGACCTCAACTTCGACAACCCGCAGGTCATCAAGGCCGTGCTGTCGGTGATGCGCTACTGGCTCGACATGGGCATCGATGGCCTGCGCCTGGACGCGATTCCGTACCTGATCGAGCGCGACGGCACCAACAACGAAAATTTGCCCGAGACTCATGACGTCCTCAAGTTGATCCGCGCCGAGATCGACGCCAATTACCCCGACCGCATGCTGCTGGCCGAGGCCAATCAGTGGCCGGAAGACACCCAGCTGTATTTTGGCGATGTCGACGCTCAAGGCCTCAATGGCGACGAATGCCACATGGCGTTCCACTTCCCGTTGATGCCGCGCATGTACATGGCGCTGGCCCAGGAGGATCGTTTCCCGATCACCGACATCCTGCGCCAGACTCCGGAGATTCCAGCCAATTGCCAATGGGCGATTTTCTTGCGCAACCACGATGAGCTGACCCTGGAAATGGTCACCGACAAGGAGCGCGATTACCTATGGAATTACTACGCGGCCGATCGCCGGGCGCGGATCAACCTGGGCATTCGCCGTCGCCTGGCGCCGCTGATGGAGCGCGACCGTCGCCGCGTGGAATTGCTCAACAGTTTGCTGCTGTCGATGCCCGGTACGCCGACTTTGTACTACGGCGATGAAATCGGCATGGGCGACAACATCTACCTCGGTGACCGCGACGGCGTGCGCACGCCGATGCAGTGGTCCATCGACCGCAACGGCGGTTTCTCCCGCGCCGACCCGGCGAGTCTGGTGCTGCCGCCGATCATGGATCCACAGTACGGCTACCTCTCGGTGAACGTCGAGACCCAGGCCGGCGACCCGCACTCGCTGCTCAACTGGACCCGTCGGATGCTCGCGGTGCGCAAGCAGTCCAAGGCCTTCGGCCGGGGCACGCTGAAAATGCTGTCGCCGAGTAACCGCCGGATCCTTGCCTACACCCGTGAATACACCGGCCCGGATGGCAAGCATGAAATCATTCTCTGCGTCGCCAACGTTTCACGTAGCGCCCAGGCGGCGGAGCTGGACCTCTCGGCCTATGCCGGCATGGTCCCGGTGGAAATGCTCGGGGGTAATGCCTTCCCGCCCATCGGTCAGTTGAATTTCCTCCTGACCCTGGCGCCGTACGGCTTCTACTGGTTCGCCCTGGCGGCGGAAAACCAGATGCCGAGCTGGCATGTGGAACCTGCGCAGAGCCTGCCGGACTTCACCACGCTGGTACTGAAAAAGCGCTTGGAAGAATTGCTCGAGGCGCCGTCACGCACCACGTTGGAGCAGAGCATTCTGCCAAGCTGGCTGCAGAACCGTCGCTGGTTCGCCGGCAAGGACAGCGCTATCGAGAAAGTCGACATCGTCTATGGCGTGCGCTTCGGTGATCCGCAACGGCCTGTGCTGTTGAGCGAAATCGACGTGACCAGTGCCGGTCAGACGCTGCGCTATCAACTGCCATTCGGTCTGTTGGCCGAGGACCAGGTGGGCCCGGCGCTGCCCCAGCAACTGGCCTTGTCGCGGGTCCGCCGGGGGCGTCAGGTCGGGCTGATTACCGATGCGTTCACCCTGGAGAGCTTCGTGCGAGCCGTGATGCAAGGCATCCAGGCCAACACGGTATTGCCGTGCGCCGATGGCGAGTTGCGTTTTGAACCCACCGCAGGCCTGGCGGCGCTGAACCTTGGCGCCGAGCCGGAGGTGCGCTACCTGTCCGCCGAGCAGTCCAACAGTTCGGTGGTGGTTGGCGGCAGCCTAGTGCTCAAGCTCATCCGCAAGGTCGCGTCGGGCGTGCATCCGGAACTGGAGATGAGCGCTTACCTGACCGCTGCCGGCTTCAGCAATATTTCGCCGCTGCTGGGTTCGGTGATTCGCCGCGACGCGAGGGGCGAGGATGCGCTGCTGATGATCGCCCAGGGTTACCTGAGCAATCAGGGTGATGCGTGGGAATGGACACAGAACAACCTCGAGCGCGCCTTGCGCGACGAACTGGCGGACGCGGTGTCCGAACAGGAACAGCACTACAACGCCCTGGGCGAGCTGAAGGACTTCGCCGGCATGCTCGGCCAGCGTCTGGGGGAAATGCACAAGGTGCTTGCCCAGCCCACCGACAACCCGGACTTCGCGCCGCAGGCCACCAGCACCAAAGAGGCCCAGGCGATCGGCAAGGACGTTGTCGCCCAGGTGGAAAACGCCTTGCGTCTGCTCAAGCAGAACCAGGGGCAATTGAACCCGGCGGACCAAGCCATGGTCGCACGCTTGCTGGAACACAGGAAAACCGTGCTGGCCCATGTCCAGGAACTGGCCGGCAAGGCGGCCGGTGGCTTGCGTATCCGGGTGCATGGCGACCTTCACCTGGGGCAGGTGCTGGTGATCAAGGGCGACGCCTACCTGATCGACTTCGAGGGTGAGCCGGCGCGGCCGTTGCATGAGCGGCGTGGCAAGCACAGCCCGTACAAAGACGTCAGCGGCGTGCTGCGTTCCTTCGATTACGCGGCAGCGATGGCGGTCCAACTGCACACCGTGGACACGACGGCCGACGCCGATGCGGCGCGCAAACGGGTCGCCGACCGCTATTTGATTGAGGCCCGCCAGGCATTTGTCGAGGCGTATCGGCTGGCGGCAGCTAGTCTTGCCCATGAATGGAAGGATGCTGAAGGCGAGGACGCCGCGCTGGCGTTGTTCGGCCTGGAGAAGGCGGCCTATGAAGTGGCTTATGAAGCCGAGAATCGCCCCGCCTGGCTGCCCGTGCCGTTGCACGGTCTGTACGGGCTGTTGAGTGGGCTGCAACCCTTTTCCGATTTAGCCGGACCGATTTAGMAKKPRSATFINDPLWYKDAVIYQVHVKSYFDSNNDGIGDFPGLIEKLDYIADLGVNTIWLLPFYPSPRRDDGYDIAEYRGVSPDYGTMADARRFIAEAHKRNLRVITELVINHTSDQHPWFQRARKAKKGSKARDFYVWSDDDHKYDGTRIIFLDTEKSNWTWDPVAGQYFWHRFYSHQPDLNFDNPQVIKAVLSVMRYWLDMGIDGLRLDAIPYLIERDGTNNENLPETHDVLKLIRAEIDANYPDRMLLAEANQWPEDTQLYFGDVDAQGLNGDECHMAFHFPLMPRMYMALAQEDRFPITDILRQTPEIPANCQWAIFLRNHDELTLEMVTDKERDYLWNYYAADRRARINLGIRRRLAPLMERDRRRVELLNSLLLSMPGTPTLYYGDEIGMGDNIYLGDRDGVRTPMQWSIDRNGGFSRADPASLVLPPIMDPQYGYLSVNVETQAGDPHSLLNWTRRMLAVRKQSKAFGRGTLKMLSPSNRRILAYTREYTGPDGKHEIILCVANVSRSAQAAELDLSAYAGMVPVEMLGGNAFPPIGQLNFLLTLAPYGFYWFALAAENQMPSWHVEPAQSLPDFTTLVLKKRLEELLEAPSRTTLEQSILPSWLQNRRWFAGKDSAIEKVDIVYGVRFGDPQRPVLLSEIDVTSAGQTLRYQLPFGLLAEDQVGPALPQQLALSRVRRGRQVGLITDAFTLESFVRAVMQGIQANTVLPCADGELRFEPTAGLAALNLGAEPEVRYLSAEQSNSSVVVGGSLVLKLIRKVASGVHPELEMSAYLTAAGFSNISPLLGSVIRRDARGEDALLMIAQGYLSNQGDAWEWTQNNLERALRDELADAVSEQEQHYNALGELKDFAGMLGQRLGEMHKVLAQPTDNPDFAPQATSTKEAQAIGKDVVAQVENALRLLKQNQGQLNPADQAMVARLLEHRKTVLAHVQELAGKAAGGLRIRVHGDLHLGQVLVIKGDAYLIDFEGEPARPLHERRGKHSPYKDVSGVLRSFDYAAAMAVQLHTVDTTADADAARKRVADRYLIEARQAFVEAYRLAAASLAHEWKDAEGEDAALALFGLEKAAYEVAYEAENRPAWLPVPLHGLYGLLSGLQPFSDLAGPIPGPT0014120_253DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-AMYLASE,PGPT0014120-treS-K05343NANA
D1-35_009962235glgB_1COG02961,4-alpha-glucan branching enzyme GlgBATGAGCGTCTCGAACAAGGAAACCCAGGGGCAGGCCAAAGAGGCATTGTTGCCGGCCCCCCGCGACATCGACGCGCTGGTGCGCGCCGAACACCAAGATCCGTTCTCGATCCTGGGCCCGCATGGCGACGGGGCGGGCGGACAATTTATCCGCGCGTACCTGCCCGGTGCGTTGAGCGTGCATGTGCTCGCCCGTGACGGCGGCGAGGAGCTGGGCGAATTGCAGGCCACCGAAACGCCGGGCCTGTTCGTCGGCCATTTCGACCGCGCACAGCCGTACCTGCTGCGCACCCGTTGGGCGGGCGGCGAGCAGGTTGCCGAAGACCCCTACAGCTTCGGCCCGCTGCTGGGGGAGATGGATCTTTACCTGTTCGCCGAAGGCAATCACCGCGACCTCAGCGCGTGCCTCGGTGCGCAACTGAAGACGGTTGATGGCGTCGACGGTGTGCGCTTCGCGGTCTGGGCGCCGAACGCGCGCCGGGTGTCGGTGGTGGGGGACTTCAACGTCTGGGACGGGCGCCGGCATCCAATGCGCATCCGTTATCCGTCCGGCGTGTGGGAGATATTCATCCCGCGGCTCGGTCCGGGTGAAGGCTACAAATACGAAATCCTTGGCGCCCACGGCATCCTGCCGCTCAAGGCCGACCCGGTGGCCCTGGCCACCCAGATGCCACCGGACACGGCATCCAAGGTCGCCGCGCCGTTGAAAATCGAATGGCAAGACGACGAGTGGATGCAAAGCCGCCGCGAGCGCCAGCTACCCGGCGCGCCGCTGTCGATCTACGAGTTGCATGCCGGTTCCTGGCAGTGCGAGATCGACGAGGCGGGGGAGGTTTCCCGGCAGTACAACTGGCATGAAATGGCCGAGCGGTTGATTCCCTACGTCAAGGACCTGGGCTTCACCCACATCGAACTGATGCCGATCATGGAACACCCGTTTGGCGGCTCGTGGGGCTATCAACCGCTGTCGCAATTTGCCCCAACCGCGCGTTTCGGTTCGCCCGATGATTTCGCCGCGTTCGTCAACGCCTGCCACCAGGCCAATATCGGCGTGATCCTCGATTGGGTGCCGGCGCATTTCCCGACCGATACCCACGGCCTGGCCCAGTTCGACGGGACCGCGCTGTATGAATACGGCAACCCGCTGGAAGGCTTCCACCAGGATTGGGACACGCTGATCTACAACCTCGGGCGCACCGAAGTCCATGGGTTCATGCTGGCCTCGGCCTTGCATTGGCTCAAGCATTTCCATGTCGACGGCCTGCGGGTGGATGCGGTGGCCTCGATGCTGTATCGCGACTATTCGCGCAAGGCCGGCGAGTGGGTACCCAACCGCCACGGCGGACGGGAGAACCTGGAAGCCATCGACTTCCTGCGCCACCTCAACGACGTGGTTGCACTGGAGACGCCCGGCGCGCTGGTGATTGCCGAGGAGTCCACGGCGTGGCCGGGTGTCAGCCAGAGCACGCAGCAGGGCGGCCTGGGTTTCGCCTACAAATGGAACATGGGCTGGATGCACGATTCGCTGCATTACATCCAGCAGGACCCGGTGTACCGCGCTCATCACCACAACGAACTGAGCTTCGGCCTGGTTTACGCCTGGTCCGAGCGTTTTGTCTTGCCGATTTCCCATGACGAAGTGGTCCACGGCAAACGCTCGCTGATCGACAAGATGCCCGGTGACCGCTGGCAGAAATTCGCCAACCTGCGCGCCTACCTGAGCTTCATGTGGGGCCATCCCGGCAAGAAACTGTTGTTCATGGGCTGCGAGTTTGGCCAATGGCGCGAGTGGAACCATGACCAGCAATTGGACTGGTACCTGCTGCAATACCCCGAGCACCGGGGCGTGCAGAAGCTGGTGAGCGACCTGAACCGGCTCTATCGCGAAGAACCGGCGCTGCATGACCAGGACGATGCGCCGCAAGGCTTCCAATGGCTGATTGGTGACGATGCGGTCAACAGTGTCTATGCATGGCTGCGCTGGAGCAAGGATGGCCGGCCGGTACTGGTGGTCGCCAACTTCACGCCGGTGCCGCGCGAGGCGTATCGGGTCGGCGTGCCGTTTGGCGGACGCTGGGTGGAATTGCTCAACAGCGACGCCGACACCTATGCCGGTTCCAACTATGGCAACGGCGGCGGTGCATCCACCGAGGCGATCCCCAGCCATGGCCAGGCGCTGTCGCTGGAACTGAACCTGCCGCCGCTGGCGGTGCTGATCCTGCGACCGGAGGGATAGMSVSNKETQGQAKEALLPAPRDIDALVRAEHQDPFSILGPHGDGAGGQFIRAYLPGALSVHVLARDGGEELGELQATETPGLFVGHFDRAQPYLLRTRWAGGEQVAEDPYSFGPLLGEMDLYLFAEGNHRDLSACLGAQLKTVDGVDGVRFAVWAPNARRVSVVGDFNVWDGRRHPMRIRYPSGVWEIFIPRLGPGEGYKYEILGAHGILPLKADPVALATQMPPDTASKVAAPLKIEWQDDEWMQSRRERQLPGAPLSIYELHAGSWQCEIDEAGEVSRQYNWHEMAERLIPYVKDLGFTHIELMPIMEHPFGGSWGYQPLSQFAPTARFGSPDDFAAFVNACHQANIGVILDWVPAHFPTDTHGLAQFDGTALYEYGNPLEGFHQDWDTLIYNLGRTEVHGFMLASALHWLKHFHVDGLRVDAVASMLYRDYSRKAGEWVPNRHGGRENLEAIDFLRHLNDVVALETPGALVIAEESTAWPGVSQSTQQGGLGFAYKWNMGWMHDSLHYIQQDPVYRAHHHNELSFGLVYAWSERFVLPISHDEVVHGKRSLIDKMPGDRWQKFANLRAYLSFMWGHPGKKLLFMGCEFGQWREWNHDQQLDWYLLQYPEHRGVQKLVSDLNRLYREEPALHDQDDAPQGFQWLIGDDAVNSVYAWLRWSKDGRPVLVVANFTPVPREAYRVGVPFGGRWVELLNSDADTYAGSNYGNGGGASTEAIPSHGQALSLELNLPPLAVLILRPEGNANANANANA
D1-35_009971344gudD_1Glucarate dehydrataseATGACTACCCAAGAAACCAGCAAAGCCCCGATCATCACCAGCATGCAAGTTGTGCCCGTGGCTGGCCACGACGGCATGTTGCTCAACCTCAGCGGTGCCCATGGCCCGTTTTTCACCCGCAACATCGTGATTCTCAAGGACAACGCAGGGCATACTGGCGTGGGCGAAGTGCCCGGCGGTGAGCGCATTCGCCAGACCCTTGAAGATGCTCGCTCACTGGTGGTTGGCAGCCCGATCGGCACCTACCAGAAAATCCTCAACAGCGTACGCCAGGCCTTTGCCGATCGTGACGCCGGCGGTCGCGGCCTGCAGACCTTCGACCTGCGTATCACCATCCACGCCGTCACCGGCCTGGAAGCTGCGTTGCTCGACCTGCTCGGCCAGCACCTGGATGTACCGGTCGCCGCCCTGCTCGGCGAAGGCCAGCAGCGCGATGAAGTGAAGATGCTCGGCTACCTGTTCTACGTCGGTGATCGCCAGCAGACCGACCTGCCCTACCGCAGCGAACCGCAGGCTGAAAACGACTGGTTCCGCGTACGCCACGAAAAAGCCCTGGACGCTGACGCGGTGGTACGTCTGGCCGAGGCGGCCCACGCGCACTATGGCTTCGAGGATTTCAAGCTCAAGGGCGGCGTGCTCAGGGGCGATGAAGAGATCGAAGCGGTGACGGCGTTGGCCGAGCGTTTCCCCCAGGCGCGCATCACCTTGGACCCGAACGGCGCCTGGTCACTCAAGGAGGCCATCCGCCTGTGCCGTGACCAGCACAAGGTGCTGGCCTATGCCGAAGACCCTTGCGGTGCCGAGAATGGTTATTCGGGTCGTGAAGTCATGGCCGAATTCCGTCGCGCCACAGGCCTCAAGACCGCCACCAACATGATTGCCACCGACTGGCGCGAAATGGGTCACGCGATTACGTTGCAGTCGGTCGACATTCCCTTGGCGGACCCGCATTTCTGGACGATGCAGGGTTCGGTGCGGGTGGCGCAAATGTGCAATGAATGGGGCCTGACCTGGGGCTCTCACTCCAACAATCACTTCGATATTTCCCTGGCGATGTTTACCCACGTCGCGGCCGCCGCACCGGGCGACATCACCGCCATCGACACTCACTGGATCTGGCAGGACGGCCAACGGCTGACCAAGGCGCCCTTGCAGATCCGCGGTGGCTGCGTGCAGGTGCCGAAGAAACCGGGGCTGGGGATCGAACTGGACATGGACCAGTTGGCCAAGGCTCATGAGTTGTACAAAGGCATGGGACTTGGGGCGCGGGATGATTCGGTGGCGATGCAGTATCTGATCCCGGGCTGGACATTCAACAACAAGCAGCCGTGCCTGGTGCGCTGAMTTQETSKAPIITSMQVVPVAGHDGMLLNLSGAHGPFFTRNIVILKDNAGHTGVGEVPGGERIRQTLEDARSLVVGSPIGTYQKILNSVRQAFADRDAGGRGLQTFDLRITIHAVTGLEAALLDLLGQHLDVPVAALLGEGQQRDEVKMLGYLFYVGDRQQTDLPYRSEPQAENDWFRVRHEKALDADAVVRLAEAAHAHYGFEDFKLKGGVLRGDEEIEAVTALAERFPQARITLDPNGAWSLKEAIRLCRDQHKVLAYAEDPCGAENGYSGREVMAEFRRATGLKTATNMIATDWREMGHAITLQSVDIPLADPHFWTMQGSVRVAQMCNEWGLTWGSHSNNHFDISLAMFTHVAAAAPGDITAIDTHWIWQDGQRLTKAPLQIRGGCVQVPKKPGLGIELDMDQLAKAHELYKGMGLGARDDSVAMQYLIPGWTFNNKQPCLVRPGPT0018180_332DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTARATE|GLUCARATE_DEGRADATION,PGPT0018180-gudD-K01706NANA
D1-35_009981347ttuB_1Putative tartrate transporterGTGAACTCATCCAGCCTCAAGGCAGATGCCGGCGCGGATCCGGTGCTGTCCTCGGCCATATCCAAGGTCAAGCGCCACATCCTGCCGCTGTTCGTCATCATGTTCATCGTCAACTACATCGACCGTGTGAACATCGGCTTCGTCCGTTCCCATATGGAGCACGACCTGGGCATCGGCGCAGCCGCCTATGGTTTTGGCGCCGGCCTGTTCTTCATCGGCTACGCGCTGTTCGAAGTCCCGTCCAACATCCTCCTGCAACGCATCGGCGCCCGTATCTGGCTGACCCGCATCATGCTCACCTGGGGCCTGGTGGCGGCAGGCATGGCCTTCATCCAGAACGAAACCCACTTCTACATCCTGCGTTTCCTGCTGGGTGTGGCCGAAGCCGGTTTCTTTCCCGGCGTGATCTACTACTTCACGCGGTGGCTGCCCGGCGTCGAGCGCGGCAAGGCCATCGCGATTTTCCTCAGCGGCTCGGCGATCGCTTCGCTGATCTCCGGCCCGCTGTCGGGGCTGCTTTTGCAGATCAACGGCCTGGGCATGCACGGCTGGCAGTGGATGTACTTCATCGAGGGGATGTTTTCGGTCTGCCTCTGTGTGTTCGTCTGGTTCTGGCTGGACTCCAAGCCTCACGACGCCAAGTGGCTCAGTCGCGACGAGCAGGATGCGCTGGTCAAGGCCATCGACGATGAACAGGCGGCCCGTGAAGCGGCGACGCCGATCAAACTGTCGATCGGCCAATTGCTCAAGGACCGCCAGATCATCCTGTTCTGCCTGATCTATTTCTTTATCCAACTGACCATCTACGCGGCGACCTTCTGGCTGCCGAGCATTATCAAAAAGATGGGCGAGCTCAGCGACCTTCAGGTCGGCCTGTTCAATTCGATTCCCTGGCTGCTGTCGATCGTCGGCATGTACGCCTTCGCCTCGCTGTCGGCCAAATGGAAGTTCCAGCAGGCCTGGGTTGCCGCTGCCCTGTTGATCGCTGCGGCAGGCATGTTCATGTCCACCACCGGCGGGCCGATCTTCGCTTTCGTTGCGATCTGCTTTGCGGCCCTGGGTTTCAAGTCCGCCTCTTCGCTGTTCTGGCCGATCCCCCAGGCCTACCTGGACGCACGGATCGCCGCCGGTGTCATCGCGCTGATCAATTCGGTGGGCAACCTCGGCGGATTCGTCGCCCCGACTACTTTCGGCCTGCTTGAGCAGCACACCGGCTCGATCCAGGGCGGGCTCTATGGCCTGGCGGCCACGTCGATCATTGCCGCGATCATCGTGTTTGCCGCGCGCAATACGCCCAAGCCGAAAACCCTAAAGCCTTCCACCGACCCGGCTACCAGTCACGCCTGAMNSSSLKADAGADPVLSSAISKVKRHILPLFVIMFIVNYIDRVNIGFVRSHMEHDLGIGAAAYGFGAGLFFIGYALFEVPSNILLQRIGARIWLTRIMLTWGLVAAGMAFIQNETHFYILRFLLGVAEAGFFPGVIYYFTRWLPGVERGKAIAIFLSGSAIASLISGPLSGLLLQINGLGMHGWQWMYFIEGMFSVCLCVFVWFWLDSKPHDAKWLSRDEQDALVKAIDDEQAAREAATPIKLSIGQLLKDRQIILFCLIYFFIQLTIYAATFWLPSIIKKMGELSDLQVGLFNSIPWLLSIVGMYAFASLSAKWKFQQAWVAAALLIAAAGMFMSTTGGPIFAFVAICFAALGFKSASSLFWPIPQAYLDARIAAGVIALINSVGNLGGFVAPTTFGLLEQHTGSIQGGLYGLAATSIIAAIIVFAARNTPKPKTLKPSTDPATSHAPGPT0002325_530DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-ORGANIC_ACID_METABOLISMP-SOLUBILISATION-TARTARIC_ACID_TRANSPORT,PGPT0002325-ttuB-K13021NANA
D1-35_00999714lutR_1COG2186HTH-type transcriptional regulator LutRATGCAGCAAGACACTCAAACGCCTCTGCGCAAGCGCACCCACAACCTGGCCCATGACCTGGTGGCGAAGTTGAGCCAGAGCATCCTGCTGGGGCAGTTGAAGCCTGGAGAGAAACTGCCGTCGGAGGGTGCTTTCGTGCGCGAGCATGGGGTCAGCCGCACGGTGGTGCGCGAGGCGATCTCCAAATTGCAGGCCTCGGGGTTGGTGGAGACTCGCCATGGCATCGGTACTTTTGTGCTGGAGCAGACGGGAGAGCAGGGGCTGAGGCTCAACGTCGATACTGCAGCGGGCGTGCGCGGGATTCTCGAATTGCGCCTGGGCCTGGAAACCCAGGCCGCGGCGCTGGCGGCCCAGCGCCGCAGTGAGGAGCAATTGCAGCAGATGCGCCAGGCGCTGGACGACTACCAGCGCTTGCTCAACAACAACGACAGCTGCGTCGAGGCTGACCGGCGTTTTCATTTGCTGATTGCTGAGGCCACGGATAACAGCTGTTTTGTCGAAATCATGCAGCACCTGGGCAGTGCGATGATCCCCCGCACCCGGGTGAACATGGCCGAACGCGGCCAGGCGGACCTGGGCAAGCTGGCGCAGTTTGCGAACCTGGAGCACGAGGCGATTTTCAACGCCATCCAGCGCCAGGACCCCGATGCCGCCCGCGCCGCCATGTGGCTGCACCTGACCAACAGCCGCGACCGGTTTGGCGCAGGGGCCTGAMQQDTQTPLRKRTHNLAHDLVAKLSQSILLGQLKPGEKLPSEGAFVREHGVSRTVVREAISKLQASGLVETRHGIGTFVLEQTGEQGLRLNVDTAAGVRGILELRLGLETQAAALAAQRRSEEQLQQMRQALDDYQRLLNNNDSCVEADRRFHLLIAEATDNSCFVEIMQHLGSAMIPRTRVNMAERGQADLGKLAQFANLEHEAIFNAIQRQDPDAARAAMWLHLTNSRDRFGAGANANANANANA
D1-35_010001182thlA_1COG0183Acetyl-CoA acetyltransferaseATGCAAGAAGTCGTGATTGTCGCCGCTACCCGTACCGCCATCGGCAGCTTCCAGGGCTCGCTGGCGGCCATTCCCGCGCCGGAACTTGGCGCCGCGGTGATCCGTCGCTTGCTGGAACAGACCGGTCTTTCCGGCGAGCAGGTCGATGAAGTGATCCTCGGCCAGGTATTGACTGCAGGTTCCGGACAGAACCCGGCGCGCCAGGCGTCGATCCTCGCCGGCCTGCCCCATGCCGTGCCAGCACTGACTCTGAACAAGGTCTGCGGCTCGGGTCTCAAGGCGCTGCACCTGGGCGCCCAGGCGATTCGCTGCGGCGATGCCGAAGTCATCATCGCCGGCGGCATGGAGAACATGAGCCTGGCCCCGTACGTGTTGCCAGCGGCCCGCACCGGTTTGCGCATGGGCCACGCGAAGATGATCGACAGCATGATCACCGATGGCCTGTGGGACGCGTTCAACGATTACCACATGGGCATCACCGCCGAGAACCTGGTGGACAAATACGGCATCAGCCGCGAGGCGCAGGATGCTTTCGCCGCGGCGTCCCATCAGAAAGCCGTCGCCGCCATCGAAGGCGGGCGTTTCGCCGATGAGATCACGCCGATCCTGATTCCCCAGCGCAAGGGCGATCCGGTGGCCTTTGCTACTGACGAGCAGCCCCGCGCCGGTACTACCGCTGAATCCTTGGCCAAGCTCAAGCCGGCCTTCAAGAAAGACGGCAGCGTCACTGCGGGCAATGCGTCCTCGCTCAACGATGGCGCCGCCGCCGTGATCCTGATGAGCGCGGAAAAAGCCAAGGCGCTGGGCTTGCCGGTATTGGCGAAAATCAGTGCCTACGCCAACGCCGGTGTCGACCCGGCCATCATGGGCATCGGCCCGGTCTCGGCCACCCGTCGCTGCCTGGACAAGGCCGGCTGGTCGCTGGATCAACTTGACCTGATCGAAGCCAACGAAGCCTTCGCCGCCCAATCCCTGGCTGTCGCCAAGGAACTGCAATGGGACATGGACAAGGTCAACGTCAACGGCGGCGCCATTGCCCTGGGCCATCCGATCGGGGCATCGGGTTGCCGGGTGCTGGTGACGCTGTTGCATGAAATGATCAAGCGCGACGCCAGGAAAGGCCTCGCGACACTGTGCATCGGCGGCGGTCAGGGCGTGGCTCTCGCACTGGAGCGGGCGTAAMQEVVIVAATRTAIGSFQGSLAAIPAPELGAAVIRRLLEQTGLSGEQVDEVILGQVLTAGSGQNPARQASILAGLPHAVPALTLNKVCGSGLKALHLGAQAIRCGDAEVIIAGGMENMSLAPYVLPAARTGLRMGHAKMIDSMITDGLWDAFNDYHMGITAENLVDKYGISREAQDAFAAASHQKAVAAIEGGRFADEITPILIPQRKGDPVAFATDEQPRAGTTAESLAKLKPAFKKDGSVTAGNASSLNDGAAAVILMSAEKAKALGLPVLAKISAYANAGVDPAIMGIGPVSATRRCLDKAGWSLDQLDLIEANEAFAAQSLAVAKELQWDMDKVNVNGGAIALGHPIGASGCRVLVTLLHEMIKRDARKGLATLCIGGGQGVALALERAPGPT0008320_8814DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626NANA
D1-35_01001666scoBCOG2057putative succinyl-CoA:3-ketoacid coenzyme A transferase subunit BATGGCACTTTCCCGCGAACAAATGGCTCAGCGCGTCGCCCGCGAAATGCAGGACGGCTACTACGTGAACCTCGGTATCGGCATCCCGACCCTGGTAGCCAACTACATTCCCGAAGGCATGGAAGTCATGCTGCAATCGGAAAACGGCTTGCTCGGCATGGGCGCGTTCCCCACCGAAGCCGAAGTCGATGCGGACATGATCAACGCCGGCAAACAGACGGTTACCGCGCGCATCGGTGCTTCGATCTTTTCTTCGGCCGAATCCTTCGCCATGATCCGTGGCGGCCACATCGACCTGACCGTACTCGGCGCGTTCGAAGTCGACGTCGAGGGCAACATCGCGTCGTGGATGATTCCCGGCAAGCTGGTCAAGGGCATGGGCGGCGCGATGGACCTGGTGGCCGGTGCCGAGAACATCATCGTCACCATGACCCATGCGTCCAAGGACGGTGAGTCGAAACTGCTGCCGCGCTGCAGCCTGCCGCTGACCGGCGCCGGTTGCATCAAGCGCGTACTGACTGACCTCGCCTACCTGGAAATCCAGGACGGCGCCTTTATTCTCAAGGAACGTGCCCCAGGCGTCAGCGTCGAGGAAATCGTCGCCAAGACCGCCGGCAAGCTGATCGTGCCGGACCACGTACCTGAAATGCAGTTCGCTGCCCAGTGAMALSREQMAQRVAREMQDGYYVNLGIGIPTLVANYIPEGMEVMLQSENGLLGMGAFPTEAEVDADMINAGKQTVTARIGASIFSSAESFAMIRGGHIDLTVLGAFEVDVEGNIASWMIPGKLVKGMGGAMDLVAGAENIIVTMTHASKDGESKLLPRCSLPLTGAGCIKRVLTDLAYLEIQDGAFILKERAPGVSVEEIVAKTAGKLIVPDHVPEMQFAAQPGPT0008330_217DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008330-scoB-K01029NANA
D1-35_01002699scoACOG1788putative succinyl-CoA:3-ketoacid coenzyme A transferase subunit AATGGCAGGTTTCGACAAACGCGTGAGCTCCTATGAGGAAGCGCTTGAGGGCTTGAAGGACGGCATGACTGTCATTGCCGGCGGCTTCGGCCTGTGCGGTATCCCGGAAAACCTGATCGCCGAGATCAAGCGCAAGGGCACCCGCGATCTCACCGTGGTTTCCAACAACTGCGGCGTCGACGGTTTCGGCCTCGGCGTGCTGCTGGAGGACCGGCAGATCCGCAAGGTAGTCGCCTCCTACGTGGGGGAAAACGCCCTGTTCGAGCAGCAACTTTTGAGTGGCGAAATCGAAGTCGTGCTCACCCCTCAAGGCACCCTTGCGGAAAAAATGCGTGCGGGTGGCGCTGGCATCCCGGCCTTCTTCACCGCCACCGGCGTCGGCACGCCAGTGGCCGAAGGCAAGGAAGTGCGTGAGTTCCATGGCCGCCAGTACCTGATGGAAGAGTCCATCACCGGTGACTTTGCCATCGTCAAAGGCTGGAAGGCAGACCATTTCGGTAATGTGGTCTATCGCCATACCGCGCAGAACTTCAATCCGCTGGCCGCCACGGCGGGCAAGATCACCGTGGTCGAAGTCGAGGAAATCGTCGAGCCCGGCGAGTTGGACCCGGCGCACATCCATACGCCCGGCATCTACGTCGACCGGGTCATTTGCGGCACGTTCGAAAAGCGCATCGAACAGCGCACCGTGCGTAAGTGAMAGFDKRVSSYEEALEGLKDGMTVIAGGFGLCGIPENLIAEIKRKGTRDLTVVSNNCGVDGFGLGVLLEDRQIRKVVASYVGENALFEQQLLSGEIEVVLTPQGTLAEKMRAGGAGIPAFFTATGVGTPVAEGKEVREFHGRQYLMEESITGDFAIVKGWKADHFGNVVYRHTAQNFNPLAATAGKITVVEVEEIVEPGELDPAHIHTPGIYVDRVICGTFEKRIEQRTVRKPGPT0008325_1483DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008325-scoA-K01028NANA
D1-35_01003903cynR_1HTH-type transcriptional regulator CynRATGACCCTCAAGCAAATCCGCGCCTTCCTCGCCGTGGCCCAGAGCCTGAGCTTCGCCGTCGCCGGCGAGCGGCTGCATCTGTCCCAATCGGCCCTGAGCCTGACGATCAAGGCCCTGGAAGAAGGACTCGGCGGTCGCCTGTTCAGTCGTAACACCCGTAACGTGGCGTTGACGCCCGAAGGTGAATCGCTGCTGCCATTGGCACGCCGCCTGGTGGCCGACTGGGAAAACGCCGAGGATGAAATGCGCCAGCGCTTCACCTTGCAGCGCGGCCGCGTGACGCTGGCGGCGATGCCCTCGTTTGCCGGCAACCTGCTGCCGCCGATCCTCAAGACCTTCCGCGCCCGGTTCCCGAATGTCAACGTCACGGTCAACGACGTGATCAACGAGCAGGTGCTGGAAATGGTCCGCGATCGTCACGTGGAACTGGGCGTTGCGTTCGAGCCGATGCAAAGTTCATCGCTGGCGTTCACGCCGTTGTACCTGGATCGCTTCGTCGCGGTGGTGCCGCTGGATTCGCCGCTGGCCAAGCTCGGCGAGATCCGTTGGCAAATGCTGCTGGAGCAGCCGTTCATCACCTTGCAACGACCCTCGACGGTACGGGTGATGCTCGAAGAGCATCTGCAGGCTCGCGGTATGAAATTGCCGGTCGAGTTTGAAAGTCATCAGTTGGCGACAGTCGGACGGATGGTTGCCAGCGGCCTGGGCGTGAGCGCCGTACCGGCCCTGTGTGTCGGCCAGATGCACGAGCTGGGCGCCCGCTGCATCATCCTCAGCGATCCGGTAATAGAGCGGGCCATCGGCGTGCTGACCAAGCCGGGTCATGAATTGTCGGCGGCGGCCCAGGCGATGTTCGATACGCTCAGGGATCAGGATATGGGCGCGCAGTTACCTTCGGCATAAMTLKQIRAFLAVAQSLSFAVAGERLHLSQSALSLTIKALEEGLGGRLFSRNTRNVALTPEGESLLPLARRLVADWENAEDEMRQRFTLQRGRVTLAAMPSFAGNLLPPILKTFRARFPNVNVTVNDVINEQVLEMVRDRHVELGVAFEPMQSSSLAFTPLYLDRFVAVVPLDSPLAKLGEIRWQMLLEQPFITLQRPSTVRVMLEEHLQARGMKLPVEFESHQLATVGRMVASGLGVSAVPALCVGQMHELGARCIILSDPVIERAIGVLTKPGHELSAAAQAMFDTLRDQDMGAQLPSAPGPT0021950_358DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARNITHINE_USAGEPLANT_DERIVED_CARNITHINE_DEGRADATION,PGPT0021950-dhcR-K17737NANA
D1-35_01004828cobBCOG0846NAD-dependent protein deacetylaseATGCCCGACGATCTTCACCGTGACCCCGTCGAACAATTGCACGAATACCTGACCGGACGGCGCTACCTGGTGCTGACCGGAGCGGGCATCAGCACGCCGTCCGGCATACCCGATTACCGGGACAGCGACGGCGTGCGACGGGGCAGGCAACCGATGATGTACCAGGAGTTCCTCGCCAGGCCCGAAGCGCGGCGGCGCTACTGGGCGCGAGCGATGCTGGGCTGGCCACGCTTGCGCCAGGCACGGCCGAACCAGGCCCATGAGGCCTTGGCGGCGTTGCAGGGCCAGGCGCGCATCAGCGGCTTGATCACCCAGAATGTCGACGCCTTGCATGACCGGGCCGGGAGCCGCGATGTCATCGAGTTGCACGGCAGCCTGCATCGGGTGCTATGCCTGGACTGCGGCCAGCCGAGCGAGCGGCAGCAGATCCAGTTGTTGATGGAGGACCAGAACCCGTACCTGGCCGGTGTCGATGCGGTGCAAGCGCCCGACGGCGATACCTTGCTGGACCCGGCCTTCGAGGCCCGCTTTCAAATCCCCCGTTGCCCGCATTGCGATGGCGAACGCTTGAAACCCGACGTGGTGTTCTTTGGTGAAAACGTCGCCGCCGCTACCGCGACTCGCGCCACCGAGGCAGTCGGGCAAGCGGATGGATTGCTGGTGGTGGGTTCATCGCTGATGGCGTATTCGGCCTTTCGCCTGTGCCGGGCGATCAAGGATCAGGGCAAGCCGCTGCTGGCGATCAACCGAGGCAAGACCCGCGCCGATGAGCTGTTGGATCTGAAGGTTGAAGTGGCTTGCGAAGCCTTGTTGCCATTGCTGATCTAAMPDDLHRDPVEQLHEYLTGRRYLVLTGAGISTPSGIPDYRDSDGVRRGRQPMMYQEFLARPEARRRYWARAMLGWPRLRQARPNQAHEALAALQGQARISGLITQNVDALHDRAGSRDVIELHGSLHRVLCLDCGQPSERQQIQLLMEDQNPYLAGVDAVQAPDGDTLLDPAFEARFQIPRCPHCDGERLKPDVVFFGENVAAATATRATEAVGQADGLLVVGSSLMAYSAFRLCRAIKDQGKPLLAINRGKTRADELLDLKVEVACEALLPLLINANANANANA
D1-35_01005510yciECOG3685Protein YciEATGGCAACCCCTAAAGAGAACCTGCTGGATTGGCTCAACGACGCTCATGCCATGGAACAGCAAGCGGAGAAAATGCTCAAGGCCCAGGCCGAGCGGCTGGAGCACTACCCCGTGCTCAAGGCGCGGATCGAACAGCACATCGAAGAGACGCTCGGCCAGCAGAAGCTGGTGGAACAATGCATCCAGCGCCTGGGCGGTAGCCCGTCGATGCTCAAGGACATGGCCGGCAAGCTGATGGCGTTCGGTCAAGCCATGGGTGGCATGGCGATGAGCGACGAAGTGGTCAAGGGCGCCATGAGTGGCTACGTCTTCGAGAACCTGGAAATTGCTTCGTACACGGTGCTGATCGAAGCGGCGAAAGTGGCCGGCGATGTGGAAACGCAAAAGGCCTGCGAGCAGATTCTGCCGCAGGAAATCGCCATGGCTGAATGGCTGCGCGATCATCTGCCGGAAATCACCCAGGCGTTCCTTGAGCGTTCGGCCAATCCGCATACCGAAGCCAAGCGCTGAMATPKENLLDWLNDAHAMEQQAEKMLKAQAERLEHYPVLKARIEQHIEETLGQQKLVEQCIQRLGGSPSMLKDMAGKLMAFGQAMGGMAMSDEVVKGAMSGYVFENLEIASYTVLIEAAKVAGDVETQKACEQILPQEIAMAEWLRDHLPEITQAFLERSANPHTEAKRNANANANANA
D1-35_01006270hypothetical proteinATGAAGCAGACCACCGGTGAGGTTAGAGCCATCAATCGACAGAGTGCCAGGGTGGGCGTCTATGTGGCGGAAGAAGACGGCCATACGGTGCTTGAGCTAGGGCCCGCCAATGATGTCGACATTGGCGATGTCATTGAATGGAACAGCGGAGCGGCCCTTGGCACGCAGACTTATCGCAACCTGACCAAAGGCTGGACCGACGAAGTGTATGTAGCGAAGCACGGCGTCGCGGCGGCCAACCTTGAAGTTCAATTACTGGTGGGATCCTGAMKQTTGEVRAINRQSARVGVYVAEEDGHTVLELGPANDVDIGDVIEWNSGAALGTQTYRNLTKGWTDEVYVAKHGVAAANLEVQLLVGSNANANANANA
D1-35_01007249hypothetical proteinATGAGCGAACTGCAGTGTGGCTGCCCCGGCTGCCATTGCGAGGTAGATCCCGAGCGGGTGTTCAATCATGACGGCGAGGCCTATTGCAGCCAGGCCTGCGCGGAACAACACCCGAATGGCGAGCCATGTCCGGCGGCGGATTGTCATTGTGAACAAAGTGGCAAGGTCGGCGAGCGGGACATTACCAATAACCAACTGGATGAAGCGCTGGAGGAAACGTTCCCGGCCAGCGATCCGATTTCACCCTGAMSELQCGCPGCHCEVDPERVFNHDGEAYCSQACAEQHPNGEPCPAADCHCEQSGKVGERDITNNQLDEALEETFPASDPISPPGPT0004285_4DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_BISMUTH_RESISTANCEBISMUTH_RESISTANCE-BISMUTH_HOMEOSTASIS,PGPT0004285-smtA-K21904NANA
D1-35_01009378gsiBCOG3729Glucose starvation-inducible protein BATGGCAAATACAGGCAATAACAACCCTGGCAATTTCGCTAACGATCGTGAGAAAGCATCGGAAGCCGGCAAGAAAGGCGGCCAGGCATCGGGTGGCAACTTCGCCAACGATCCGGAACGCGCAGCCGAGGCCGGCCGTAAGGGTGGCCATATGTCGGGTGGCAATTTTGCCAACGATCCGGAACGTGCCGCAGAGGCCGGCCGCAAAGGTGGTCAAGCCTCGGGTGGCAACTTTGCCAATGACCCTGAACGGGCTTCTGAAGCGGGCCGCAAAGGTGGCCAGGCGTCGGGTGGCAACTTTGCCAACGACCGGGAAAAAGCTTCCGAAGCCGGTAAGAAAGGCGGTGAAAACAGCCACGGTGGCGGTCGCAAATCGTAAMANTGNNNPGNFANDREKASEAGKKGGQASGGNFANDPERAAEAGRKGGHMSGGNFANDPERAAEAGRKGGQASGGNFANDPERASEAGRKGGQASGGNFANDREKASEAGKKGGENSHGGGRKSNANANANANA
D1-35_01010882ydbDCOG3546putative manganese catalaseATGTTCGTACATAACAAACGACTGCAATATACCGTGCGTGTCGCTGAGCCCAATCCAGGACTGGCCAATCTGTTGCTTGAACAGTTTGGCGGCGCCCAGGGCGAGTTGGCGGCGGCGTCGCGCTATTTCACCCAGGCCTTGTCCGAAGATGATCCGGGCCGCAAGGACCTGCTGATGGACATTGCCACCGAAGAGCTCAGCCATCTGGAGGTGATCGGTTCGATCATCGTCATGCTTAACAAGGGGGCAAAGGGCAAGATGGCTGAAGGCGTCGAGCAGGAGGGCCAGCTGTACCGGGAAATCAACGGGGCCGGCAATGACTCGCACATCACCAGCGTGCTGTATGGCGCCGGCTCGCCGTTGACCAACTCGGCCGGTGTGCCATGGACCGCCGCCTACATCGATACGATCGGCGAACCGACGGCGGACATGCGTTCGAATATCGCCGCCGAGGCCCGGGCGAAAATTGTTTACGAGCGGCTGATGAACGTCACTGACGATCCTGGTGTAAAAGAAGCCCTGGGCTTCCTGATGACCCGTGAAATCGCCCACCAGCTGTCGTTCGAAAAAGCCCTGCATTCCATCCAGCCCAACTTCCCGCAAGGCAAACTGCCAGGCATGCCGGAGTTCACCAACGTGTACTTCAACATGTCCCAGGGTGAACCTACCGTACGCGGTCCATGGAACCAGGGCGACGATTGGGAGTACGTCGAGAACCCGACGCCAGCGGTCGACGGCGGCGATGGCCTGGCCAGCGTGCAGTTGAGTGAAAAGGACGAGGCACTGTTGATGGACATGAAGGCGCGGACGATGTCCAATCCTGAAAGCAATCCCACCACGGGCGCCGACTTGGGTTCGGGGATGCAAGGTGACAAACTGTAAMFVHNKRLQYTVRVAEPNPGLANLLLEQFGGAQGELAAASRYFTQALSEDDPGRKDLLMDIATEELSHLEVIGSIIVMLNKGAKGKMAEGVEQEGQLYREINGAGNDSHITSVLYGAGSPLTNSAGVPWTAAYIDTIGEPTADMRSNIAAEARAKIVYERLMNVTDDPGVKEALGFLMTREIAHQLSFEKALHSIQPNFPQGKLPGMPEFTNVYFNMSQGEPTVRGPWNQGDDWEYVENPTPAVDGGDGLASVQLSEKDEALLMDMKARTMSNPESNPTTGADLGSGMQGDKLPGPT0013240_506DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013240-katN|ctjC|ydbD|yjqC-K07217NANA
D1-35_01011930zupT_1Zinc transporter ZupTATGGACCAGCCCACCTCCCGGATCCGATCGCCCTGGCGTACCTGGCTTGATCCTGTGCAAAACAACCTGCTGCTGGGCGTAAGCTTCTGGCTGGGATTGGCACTGGTCGCGGTGCTGCTGCTGTATAGCGGCTACAACGCCCTGGTGGGGGCCGATCGCCAACACCTCGGCTATGCGGCATTGGGTGGGATATCCGGTTTTGCCGCTACCGCGCTGGGGGCGATGATGGCGGTGGTGCTACGCGATATCTCATCGCGGACCCAGGACATCATGCTCGGTTTCGCTGCCGGGATGATGCTCGCGGCCAGCTCGTTTTCGCTGATATTGCCGGGGATCGAGGCTGCGCAGATCATTTGCGGCAATCAGTTGCTTGCTGCCTTGGTGGTCGTTATCGGCCTGGCGCTGGGCGTCGCGCTGATGGTCGGGCTCGACCGCTTCGTGCCCCACGAACATGAGCTGAGTGGGCGCCGCGGTCCCGAGGCCAAGCGCATCAACCGGGTGTGGTTGTTCGTCCTCGCGATCACCCTGCACAACCTGCCGGAGGGCATGGCCATCGGCGTCAGCTTTGCCAATGGCGATCTCAAGGTCGGTCTGCCCCTGACCACCGCCATCGCGATCCAGGACATCCCCGAAGGCCTGGCCATTGCCATGGCGCTGCGTGTGACCGGGATCAGCACCCTGCGGGCCGCACTTATCGCGGTCGGTTCGGGATTGATGGAACCGCTGGGCGCGGTGATCGGCCTGGGCATGTCCTCGGGCGTGGCCGTGGCTTACCCCATCAGCCTCGGGCTGGCGGCGGGGGCGATGATCTTCGTGGTGTCCCATGAAGTCATTCCGGAAACCCATCGCAACGGCCACGAGACACCCGCGACCCTGGGCCTGATGATGGGCTTTGCGGTGATGATGTTCCTCGATACCGCGCTGGGTTAAMDQPTSRIRSPWRTWLDPVQNNLLLGVSFWLGLALVAVLLLYSGYNALVGADRQHLGYAALGGISGFAATALGAMMAVVLRDISSRTQDIMLGFAAGMMLAASSFSLILPGIEAAQIICGNQLLAALVVVIGLALGVALMVGLDRFVPHEHELSGRRGPEAKRINRVWLFVLAITLHNLPEGMAIGVSFANGDLKVGLPLTTAIAIQDIPEGLAIAMALRVTGISTLRAALIAVGSGLMEPLGAVIGLGMSSGVAVAYPISLGLAAGAMIFVVSHEVIPETHRNGHETPATLGLMMGFAVMMFLDTALGPGPT0004250_354DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ZINK_RESISTANCEZINK_RESISTANCE-ZINK-NICKEL_TRANSPORT,PGPT0004250-TC_ZIP|zupT|ZRT3|ZIP2-K07238NANA
D1-35_01012501yciFCOG3685Protein YciFATGGCCAGAAAAACCGTGACGGACCTGTTCATTCACGAACTGTCCGATGTCTACAGCGCCGAAAAACAGATCACTCGTGCCTTGCCACGCATGGCCCGAGCCACCACCAACCCCTTGCTGGCGCAAGCCTTCAACGATCACCTTGAAGAAACTCAAGGCCAGATCGAACGCATCGACACCCTTGTCGAAGTGGCGGGTATCAAGCTCAAGCGCATGAAATGCATTGCCATGGAAGGGCTGGTGGAAGAGTCCAAGGAGCTGATCGAAGAAATCGAAAAAGGCGCAGTGCTCGATGCAGGGCTGATCGGTGCCCAGCAGAAGATCGAGCACTACGAAATCGCCAGCTACGGCACGCTGATCGCCATGGCCAAGCACTTGAACCTGGGCGACGAAGTGGTCGGTTTGTTGCTGGCGACGCTCAAGGAAGAAAAAGCCACCGACGAGAAACTTTCGAAAATCGCCGAGCAGGGCGGGAACCAGGCGGCGACGATGGAAACCTGAMARKTVTDLFIHELSDVYSAEKQITRALPRMARATTNPLLAQAFNDHLEETQGQIERIDTLVEVAGIKLKRMKCIAMEGLVEESKELIEEIEKGAVLDAGLIGAQQKIEHYEIASYGTLIAMAKHLNLGDEVVGLLLATLKEEKATDEKLSKIAEQGGNQAATMETPGPT0013240_16DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013240-katN|ctjC|ydbD|yjqC-K07217NANA
D1-35_01013666hypothetical proteinATGACTATCCCGGACAACAACACCGAGCGACAAAGCGGTAACGCAAACCAGGGACGACCTGAAGAATCCCTGAACCACATCAAGGAGGACGTTAACGAAGCCATCGGCAGCGCCCGCGAAAAGGCCGATGCGCATTTCGGCCAGTACCGCGATACCGCGGCGGACCAGATCGATGCACTGGCGCGTGGCGCGAAGTCCGCGATGTCCGAGCTTGAAGCCAACGACACCCTTGGGTTGTCGCATTATCTGGCGGACATGGCCGACAGCATGAGTGGCCTGGCCAGCAAACTGCGCAACAAGAGCGCTGAAGAGCTGCTGCACGATGGCTCTCGCCTGGCGCGGGATAACCCCGGCCTGTTCCTCGCCGGCAGTATTGCGGTGGGGTTTGGGCTGTCGCGTTTCCTCAAGGCTGGCACCTCGCCGATCACCACCGAAGTGCAAAGCCCTGCCTCCACGGAGTCGGATCCAGCCGCCGAAGGTTTCGGCGCCCAGCCCTTCGACGCGCAGCCCTTTGACCCTGTGCCTGATCCTATCGGTCCGGGGGCGGGGACCAGCAGCGGCCTCGCCACCGGCGTAACCCCGACTTCACCCAGCGTTCAGGACCATCCCAGTGATTCCGCCACCGGCTCGCTGCCGGGTTCGGCCAATACCAGAGGAGAATTGTGAMTIPDNNTERQSGNANQGRPEESLNHIKEDVNEAIGSAREKADAHFGQYRDTAADQIDALARGAKSAMSELEANDTLGLSHYLADMADSMSGLASKLRNKSAEELLHDGSRLARDNPGLFLAGSIAVGFGLSRFLKAGTSPITTEVQSPASTESDPAAEGFGAQPFDAQPFDPVPDPIGPGAGTSSGLATGVTPTSPSVQDHPSDSATGSLPGSANTRGELNANANANANA
D1-35_01014432hypothetical proteinATGAATCGACCAGACCCGGATATCCAGCGTTCCGCCGGCGCCTCGACGCCCGAAAACGATGCCTCGGTCATGGGCTTGCTGCGGCAACTGACCCACGAAGTCCCCTCGCTCTTTACCAAGGAGCTGGCGCTGGCCAAGGCTGAATTCCAGGCGAGCCTCAACACCCTGAAGGCAGGTATCGCCGCAGTGGCCGGGGGCGCCATGGTGCTGATGGCCGGCTTCATCATCCTCCTGATGGCAGTGGTGTATGGCCTGAGCACGATGATGGCGCCGTGGCTGGCCGCGCTGATTGTCGGCGTGGTGGTGATGATCATCGGTTTTGTCATGGTCCAGTCCGGCAAGAAGCAATTCGAGCCTTCCCATTTCAAGCCTGACCGAACGCTCGATGCCATGCACAAAGACCAGGAAGCCCTGCGGAGGAAAGCCTCATGAMNRPDPDIQRSAGASTPENDASVMGLLRQLTHEVPSLFTKELALAKAEFQASLNTLKAGIAAVAGGAMVLMAGFIILLMAVVYGLSTMMAPWLAALIVGVVVMIIGFVMVQSGKKQFEPSHFKPDRTLDAMHKDQEALRRKASNANANANANA
D1-35_01015810hypothetical proteinATGAAGGATGAATTGAAGACTGAAGCGGAGAAGAGCCCGGAGACCATCGAGCGCGAGATCGACGAACAGCGCGCCCATATCAGCCACATCGTCGATGCCTTGGGCAGCAAGTTCACGCCGGGGCAGATGCTTGATCAGGCCTTAGGCATGGTGAAAGGCAATGGCGCCGAATTTTTCGGCAACCTGGGCACGACGGTGCGCAACAATCCGGTGCCAACCGTGCTGACCACGGTCGGCTTGTGCTGGCTGATGCTCGGCCAGAACCACCCGCCCCGGGTCGGTTATCGCGTTGGCCCCGACCAGGACACCAATGGCTGGAGCGAGGGGCTGTCCGGTGGCCTGGACAGCGCCCGCGGTCATCTGCATGACACCACCAACTCCTTGCGCGAAGGGTTTCATCAGCTCAAGGACAAGGCGTCGCATCTGGCTGATGGCCTGGGGGCGAGCGCCCGTAATGCACGGCATAGCGCCACGCAGACAGGCGACCGTCTGGCCCACGGTTCCCAGGATCTGGGCGATCAGTTCAGCCGCCTGCTCAAGGAGCAACCGCTGATGATGGCGGCAGCGGGTATCGCCTTGGGCGCCATGCTCGGAGCAGCCCTACCCAGCACGTCGACCGAACAGCGGGTAATGGGCAAAACCAGCGCCGGCTTGGCCGACAAGGCCAAGCAAAAGGCCCGCGACGGCTACGAAACGGTCCGCGATACGGTGAGCAAGACCACCGAGCACCGTGACGAGCCAAGCGCTGCGCCGGCCACCGGGCATGCGCATTCCGGCGCGGATCTGTCTGGCGGCCTGGGTACCTCGTAAMKDELKTEAEKSPETIEREIDEQRAHISHIVDALGSKFTPGQMLDQALGMVKGNGAEFFGNLGTTVRNNPVPTVLTTVGLCWLMLGQNHPPRVGYRVGPDQDTNGWSEGLSGGLDSARGHLHDTTNSLREGFHQLKDKASHLADGLGASARNARHSATQTGDRLAHGSQDLGDQFSRLLKEQPLMMAAAGIALGAMLGAALPSTSTEQRVMGKTSAGLADKAKQKARDGYETVRDTVSKTTEHRDEPSAAPATGHAHSGADLSGGLGTSNANANANANA
D1-35_010161407hssHomospermidine synthaseATGAACCATCAGGTTCCGTTCAGCGGCCACCTGGTCTTCATCGGCTTCGGCTCCATCGCCCGGGCCACGTTGCCATTGGTACTGGGGCAGGACCATATCGAGGTCAGGCAAATCACCGTGATCGCGCCGGTGATCGACCAGAACCTCTGGTTCAAGGATCGGGGGATCCGTTTTGTCCGCAAGGCATTGACCGAGCAAACCTTCGCGCAGACGCTGGATCGCTGGGTCAAACCCGGTGACTTCATCGTCAACCTTTCGGTGGAAGTCAGCTCTCTGGCCATTATCGAATATGCCTGCGCCAAGGGCGCCCTGTACCTGGATACCTGTGTCGAACCGTGGGCCGGCGGATATGACGATCCGCACCTGGATTTTTCCCATCGCACCAATTACGCGCTGCGTTATCAGGTCCTGAGCCTGCGCAAGAAATTGGCCGGAGGGCCGACGGCGGTGGTCGCTCACGGGGCCAATCCGGGCTTGATCACTCACTTGCTGAAGGCCGGCCTGGTGGAGCTGGCGGTGCAGTTGGAGCATCCGATACCTCAGCGCCGCGCCGGTGTCGATTGGGCCAGGTTATGCATGGAATTGGGGATCAAGGTGATTCATTTTGCCGAGCGTGATACCCAGCGTTCCCGGCAACCCAAGGAGGACGACGAGTTCGTCAACACCTGGTCAGTGGAGGGCTTCATCAGTGAAGGCAGCCAACCGGCGGAGCTGGCATGGGGCAGCCATGAGCGAACCTGGCCAGCGTCTGCCCGGCGCCATCGCTTCGGCAGTCGCAATGCGATCTACCTGGCACGCCAGAGCGCCAGCGTGCTGGTCAAGACCTGGACGCCGTTGGGCGGGCCATGCCTGGGGCTGATGATCACCCATCATGAAACCGCTTCCACAGCCGACCTGCTTACCGTGAAGGACCAGCGTCGACTGATCTATCGACCGACCCTGCATTACGCCTACCACCCCTGCAACGACGCCTTGCTCTCGGTCCACGAGCTGATCGGTCGCGGCTGGCAAACCCAAGCCCGGCAGCGCATCCTCAACGGCGAAATCGACAGCGGCGGTGCGGATGCGCTGGGGGTGTTGTTCATGGGGCATGAGCTGAATGCCTACTGGTTTGGCTCGGTGCTGAGCATTGACGAAGCTCGCGCGCTGGTGCCTTTCAACAGTGCCACCACCTTGCAGGTGGCGGCAGGCGTGCTGTCTGGCATCGTCTGGGCGGTTGAGCATCCGGATCGCGGCATCGTCGAGCCGGAACAGCTGGACCATGAGCGGGTGCTGGAAATCGCCAGGCCCTACCTCGGCACTCTGGTGGGGCAGCGCACCGACTGGACGCCGAGTGGCACTTCGCATAAACAGTCCGAGGAGGGCGCTGCGGATAGCTGGCAATTCGAACATTTCACCCGGTTTTAAMNHQVPFSGHLVFIGFGSIARATLPLVLGQDHIEVRQITVIAPVIDQNLWFKDRGIRFVRKALTEQTFAQTLDRWVKPGDFIVNLSVEVSSLAIIEYACAKGALYLDTCVEPWAGGYDDPHLDFSHRTNYALRYQVLSLRKKLAGGPTAVVAHGANPGLITHLLKAGLVELAVQLEHPIPQRRAGVDWARLCMELGIKVIHFAERDTQRSRQPKEDDEFVNTWSVEGFISEGSQPAELAWGSHERTWPASARRHRFGSRNAIYLARQSASVLVKTWTPLGGPCLGLMITHHETASTADLLTVKDQRRLIYRPTLHYAYHPCNDALLSVHELIGRGWQTQARQRILNGEIDSGGADALGVLFMGHELNAYWFGSVLSIDEARALVPFNSATTLQVAAGVLSGIVWAVEHPDRGIVEPEQLDHERVLEIARPYLGTLVGQRTDWTPSGTSHKQSEEGAADSWQFEHFTRFNANANANANA
D1-35_010171005hypothetical proteinATGCTGGCCGTGATGCTCGTTCTGGCGGGGTGCGCCACGTCGCAGCGCGGCCAACAGGTCGCCCCGGTGGTGATTGCGCCGGACACCTGGCGGCAGGCGGACCGGCAGATCATCGCCGCGTCGAAAAGCGCCACCGAGCAAGCCGAACTCTATGCGCGCGGATCGATGGAACATTGGCGAGTGCTGGTCTACGAGCGCACCGAGGCTGCATTCATCCCCTGGTTCAGTAGCTACTGGACCCAGGAGTGGCTGGCAGTGAAGGTCAGTTGGTATTCGGCAAGCGCCAAGGGCGATGCGGACTCGTCGTCCAGGCGCCTGGCGGGTTACCTGCAGGAGCAATATCGCGAGCAAGTGCTGGAGCCGGTGGCGGTGGAAATCGATCCCGAGGCGATCCGGGCCAACGCGACGGGGTATTACCTGCGCCTGCTCAACCAACAGGTCCAGGTCATTGCGCAACGGCACCGAATCCCGACCGAACTGATGAATCGACGTCTGCACGCGATTACGGCCGTCAACCTGGGACCGCCAGCGACGCGCAACGCAACGTTGTACGAAATGGTCCACACCGAACCGCTCAATACACTGCCGGCCTATGCGGCGCTGATCGATCATGTCGACAAAGCCGCCGACACCGGTTCCGGTCCGTCGGACGCCGTGATTGCCACGGTGGCGCAACGTACCAGTGAAAAAATCGAGGCGCAGTTCGCCACGCGAGGAGCGACCGGTGCGGCGGCGGCCGTCGCCGGGAAGGCGGCAGGGGCGCTGATTTCGGTAGGCGTGGCGGGCATCCGGGCGATCATCCATGAGGGCGAACGGCCGGAAATGGAAGCGCAGATCCGTAAAAGCCTGAGTGCGGCGTTCGACGAAGCGTGGTTCAAGTCGCTCAGGCATCCCCTCAGCGGCGTCATGGCGGCGGTCTACTACCTGGCCGGGCAAATCGACGATAGCCTGGTGGCGGCAGACCTGAGCAACCGACCGGTGTTCCTGCCTGTCATCGAACCATGAMLAVMLVLAGCATSQRGQQVAPVVIAPDTWRQADRQIIAASKSATEQAELYARGSMEHWRVLVYERTEAAFIPWFSSYWTQEWLAVKVSWYSASAKGDADSSSRRLAGYLQEQYREQVLEPVAVEIDPEAIRANATGYYLRLLNQQVQVIAQRHRIPTELMNRRLHAITAVNLGPPATRNATLYEMVHTEPLNTLPAYAALIDHVDKAADTGSGPSDAVIATVAQRTSEKIEAQFATRGATGAAAAVAGKAAGALISVGVAGIRAIIHEGERPEMEAQIRKSLSAAFDEAWFKSLRHPLSGVMAAVYYLAGQIDDSLVAADLSNRPVFLPVIEPNANANANANA
D1-35_01018195hypothetical proteinATGCGCCAGATCATGCAAAAGGAACCCTGGTGGGCCGCGCCGCCCCGGCCTGGGCAGGATGAAAGTGAATTGGAATGGGGCTGGCTGGTGGTCTACAGCGAAGGCGAGCCGCGTTTCGAGTTCATCAAGGAGCGCCCCACGGACGAACAGATCCGTCAGCGCAAAGGCTGCCGGGTCACGCTCGGGTCCGAGTGAMRQIMQKEPWWAAPPRPGQDESELEWGWLVVYSEGEPRFEFIKERPTDEQIRQRKGCRVTLGSENANANANANA
D1-35_01019909glsA2COG2066Glutaminase 2ATGCAAGCACTGTTGAACGAGATCCTCGATGCGGTTCGCCCCCTGATTGGTCAGGGCAAGGTGGCCGACTATATTCCTGCCCTCGGCACCGTGGCGGCCAATCAACTCGGCATTGCCGTGTACAGCAACGATGGCGAGATCTATTGCGCGGGCGATGCCGAGACGCCGTTCTCGGTGCAGAGTATTTCCAAGGTTTTCAGCCTGGTGCAGGCCATCGAGCATTCCGGCGAAGCCATCTGGGAGCGCTTGGGCCATGAGCCCTCTGGCCAGCCCTTCAATTCCCTGGTGCAACTGGAATTCGAGCGCGGCCGGCCGCGTAATCCGTTCATCAACGCCGGTGCCTTGGTGATTTGCGATATCAACCAGTCACGCTTCGCCGCTCCGGCGTTGTCGATGCGCGATTTCGTCCGACGGTTGTCGGGCAATCCCCAGGTGATGGTAGACGGCAAGGTTGCCGAGTCGGAATACCAGCACCGCGCGCGCAACGCGGCGATGGCTTATCTGATGCAGTCCTTCGGCAATTTCCATAACGACGTGGAAGCGGTATTGCGCAGCTATTTTAGCCATTGCGCGCTGCGAATGAACTGCATCGACCTGGCCCGCGCGTTCTGCTTCCTGGCCAACGATGGTTTTTGCAAGCACAGCGGTGAGCAGATCCTTAGCGCTCGCCAGACCCAGCAAGTCAACTCCATCATGGCCACCAGCGGCTTGTACGATGAGGCCGGCAACTTCGCCTATCGCGTTGGCCTGCCTGGCAAGAGCGGCGTGGGCGGCGGGATTGTGGCGGTGGTGCCCGGGCAGTTCAGCGTCTGCGTCTGGTCGCCGGAACTCAATACCGCCGGCAACTCCCTGGCTGGCATGGCCGCGCTGGAACTGCTCAGCCAACGGATCGGCTGGTCGGTTTTCTAGMQALLNEILDAVRPLIGQGKVADYIPALGTVAANQLGIAVYSNDGEIYCAGDAETPFSVQSISKVFSLVQAIEHSGEAIWERLGHEPSGQPFNSLVQLEFERGRPRNPFINAGALVICDINQSRFAAPALSMRDFVRRLSGNPQVMVDGKVAESEYQHRARNAAMAYLMQSFGNFHNDVEAVLRSYFSHCALRMNCIDLARAFCFLANDGFCKHSGEQILSARQTQQVNSIMATSGLYDEAGNFAYRVGLPGKSGVGGGIVAVVPGQFSVCVWSPELNTAGNSLAGMAALELLSQRIGWSVFPGPT0020215_2666DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0020215-glsA-K01425NANA
D1-35_01020330hypothetical proteinATGAATCTGAATAATCAACCATCTATTGATGAACTGGCTCGCATGTTCGCAGCACACAAGGACACCCTGGATAGCCATATCCTGTGGATCAGCAAGACTGGCCAGGTCCATATGGACTGCCTCTCGCCTTTCACCCAGGAAGAAGAATTCGAGAAAAGCCAGGAAGACCTGTGTGCCCGGCTGAAGATGTACCGTCGCGGCCAGGGCTACGTCGGCAAGAAAGCCGCCGCTGACAAGGATTTCATGGGCCGCGTGCTGCAAACGCTGACCCAGGCCTGGCAGTCGGTGCAGAACTCTGCCGAGGTCCGGGTCATCGACCGCCTCTGCTGAMNLNNQPSIDELARMFAAHKDTLDSHILWISKTGQVHMDCLSPFTQEEEFEKSQEDLCARLKMYRRGQGYVGKKAAADKDFMGRVLQTLTQAWQSVQNSAEVRVIDRLCNANANANANA
D1-35_010211953topBCOG0550DNA topoisomerase 3ATGCGGCTGTACCTGTGTGAAAAACCGTCCCAGGCCAAGGATATCGCCGCGGTGCTGGGCGCCACGCGACGCGGCGACGGCTGCTGGCTGGGCGCAAACGTCACGGTCACCTGGTGCATCGGTCACCTCCTGGAGACGGCCCCGCCCGACGCCTACGATGCCCGCTACAAGCGCTGGGTGCTGGCCGACCTGCCCATCGTGCCGGCGCAATGGAAGATGACCGTCAAACCGAAAACCGCCGGCCAGTACAAAGCGGTCAAGCGCTTGCTGGGCGAGGCAACGGAACTGATCATCGCCACCGACGCCGACCGCGAGGGCGAAATGATCGCCCGCGAACTGGTCGAGCATTGCCGCTATCGCGGGCCCATCCAGCGCCTATGGCTGTCGGCGCTGGACGAAGCATCGATCCGCAAGGCCCTGGCCGCCCTCAAGCCCGGAGCGGAAACCTTCAACCTCTACCACTCGGCCCTGGGCCGCTCTCGGGCCGACTGGCTGATCGGCATGAACATGAGTCGCCTGTTCACGCTCCTTGGGCGTCAGTCCGGCTATCAGGGCGTGCTGCCGGTAGGCCGCGTGCAGACACCGACTTTGCGGCTGGTGGTAGACCGCGACCGTAGCATTGCCGATTTCGTCCCGGTCGCCTACTGGGCCATCGACGTGCGACTGAGCCACGCCGGCACGGCCTTCACCGCCCAGTGGCGCGCCGATCCGGATGCCTGCGACGACCAGGAGCGCTGCCTGAACCAGGCCCTCGCCCGCGATGCGGCAAAAGCCATGGGCAGTGCCGCTACCGCCAGGGTGATCAAGGTCCGCACCGAACGGCTGCGTGAGGCCGCGCCGCTGCCGTTCGACCTGGGCACGCTGCAGGAGGTCTGCTCGAAGAAGCTCGGCCTTGGCGCCCAGGAAACCCTGGACATTGCCCAGTCGCTCTACGAAACCTACAAGCTCATCACCTATCCGCGCAGCGATTGCGGTTTCCTGCCCTTGAGCCAGCACGGCGAAGCACCCGCCATTCTCGCCGCCCTCGCCCAGGCCGACCCGGGCCTTGCGCCGCTGCGCGAGCACCTGCAACCGCAACGCAAATCCCGCGCCTGGAACGACGCCAAGGTCAGCGCGCACCACGGCATCATTCCCACGGCCGCGGCGAAGAACCTCGACAAGCTCGCCGGCAAGCAACGGGCCGTCTATACGCTGATTCGCGCGCGCTACCTGGCGCAATTCCTGCCCAACCATGAATACGACCGGACCCAGGCCGACTTCGATTGTGCCGGCCAGGCCCTGCGGGCCGTCGGCAAGCAGATCATCGAACCCGGCTGGAAACGCGCCCTGCCCGAAGCACTGGCACCCACACGCGGCCGCGAAGCCCCCGCGCCACAAACCCTGCCGCCGCTCGCCGAAGGCCGCGATTGCAATGTGGACGAGGTGATCCCCAAGGACCTGTGGACCCAGCCGCCCAAGCCGTTTACCGAGGGCGACCTGATCAAGGCGATGAAAAATGTCGCCAAGCTGGTGGAGGACCCGCTGCTCAAGCAGAAGCTCAAGGACACCACCGGCATCGGCACCGAAGCAACCCGAGCCTCGATCATCCAGGGTCTGCTCGATCGTGGTTACCTGGTGAAAAACGGCAAGGCCCTGTCCGCCACTCCAGCGGCGTTCAGCCTGATCGACGCGGTGCCTCGGGCGATCGCCGACCCCGGCACCACCGCCATCTGGGAACAGGCCCTGGACATGGTGCAGAGCGGTGAGATGAGCCTGGAAGAATTCGTCACGCGACAAGCCGCCTGGATGAGCAAGCACGTCGCCCGCTGCCAAGGCATGAGCCTGACCATCAACGGCACGGCCAGCCCCGCCGGACGTGGCGCGGCGCCGTGGAAGAAAAAACGCAAGCCGGCCAAGCGCAAGGCCGACGGCGCACCGCGCAAAGCGGGCAAGGCCAAGGCCAAGGCCACCTGAMRLYLCEKPSQAKDIAAVLGATRRGDGCWLGANVTVTWCIGHLLETAPPDAYDARYKRWVLADLPIVPAQWKMTVKPKTAGQYKAVKRLLGEATELIIATDADREGEMIARELVEHCRYRGPIQRLWLSALDEASIRKALAALKPGAETFNLYHSALGRSRADWLIGMNMSRLFTLLGRQSGYQGVLPVGRVQTPTLRLVVDRDRSIADFVPVAYWAIDVRLSHAGTAFTAQWRADPDACDDQERCLNQALARDAAKAMGSAATARVIKVRTERLREAAPLPFDLGTLQEVCSKKLGLGAQETLDIAQSLYETYKLITYPRSDCGFLPLSQHGEAPAILAALAQADPGLAPLREHLQPQRKSRAWNDAKVSAHHGIIPTAAAKNLDKLAGKQRAVYTLIRARYLAQFLPNHEYDRTQADFDCAGQALRAVGKQIIEPGWKRALPEALAPTRGREAPAPQTLPPLAEGRDCNVDEVIPKDLWTQPPKPFTEGDLIKAMKNVAKLVEDPLLKQKLKDTTGIGTEATRASIIQGLLDRGYLVKNGKALSATPAAFSLIDAVPRAIADPGTTAIWEQALDMVQSGEMSLEEFVTRQAAWMSKHVARCQGMSLTINGTASPAGRGAAPWKKKRKPAKRKADGAPRKAGKAKAKATNANANANANA
D1-35_01022408hypothetical proteinATGAATTCGATGCCGAAGGGCAACGGACAGGCGACCACACGTTTGATTCTCGTCGTTGAGGATGATCCGACCATCCTGGAGTTTCTGTGCGAAATCCTGGAAGAGGAAGGGTTTGTCGTCGAGCCTCGGGAAAGCGCAGATTCGGCGCTGACATTCTTGGAGGAGAGCGCCGACTATGTGGACCTGCTGCTGACCGATATCACCATGCCCGGGGCGATGGACGGAGCGGACCTGGCCAACCTGACCGGGGACCGCTGGCCGCAGATACCGCTGCTGATCATGTCGGGCTTCGAGACGCCGGAAAGCGCGGGGATCAAGCACCAGGCCTCGTTCATCGCCAAGCCATGGGCGCTGGGACAGATGCTCGATCTGGTGGAGAGCACGGTGAAAAGCCATTCGGTTCACTGAMNSMPKGNGQATTRLILVVEDDPTILEFLCEILEEEGFVVEPRESADSALTFLEESADYVDLLLTDITMPGAMDGADLANLTGDRWPQIPLLIMSGFETPESAGIKHQASFIAKPWALGQMLDLVESTVKSHSVHNANANANANA
D1-35_01023522fecI_1COG1595putative RNA polymerase sigma factor FecIATGTCCGCCCACGATCTGTCCCTACGCAGCGCCGTCAACGATCTGTATTGCGACCATCATGGTTGGCTTCAGGGGTGGCTGCGCAAGCGCCTCGGCAATACCTTCGATGCGGCGGACCTGGCCCAGGATACCTTCGTTCGGGTGATCAAGGCGCGCTCGGCACTGGATATCCGCGAGCCGCGGCCCTATCTGTCGATGATCGCCAAAGGGCTGCTGGTCGATCTCTTTCGCCGCCGTTCCCTTGAGCAGTCGTACCTCGAAGCGCTGGCCGCGATGCCTGAAGCGCAGCAGCCATCGCTGGAAGAGCAGGCGATCCTGTTCCAGGCCCTGATGGAAATCGATCGGCTGCTGCAAGGCCTGGGCCCCAAGGTCAAGCAAGCATTCATCCTCTCGCAGTTCAACGGCTTGACCTACCCGCAGATCGCCGAGCGCCTCGGCATTAGCGTACGTACGGTCAACAACCACATGGCCAAGGCCATGGAACACTGCTGTCTGATGCAAATCCAGTTGCAGCTCGAATGAMSAHDLSLRSAVNDLYCDHHGWLQGWLRKRLGNTFDAADLAQDTFVRVIKARSALDIREPRPYLSMIAKGLLVDLFRRRSLEQSYLEALAAMPEAQQPSLEEQAILFQALMEIDRLLQGLGPKVKQAFILSQFNGLTYPQIAERLGISVRTVNNHMAKAMEHCCLMQIQLQLEPGPT0003900_50DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003900-prhI|fecI-K23514NANA
D1-35_01024951fecR_1COG3712Protein FecRATGAACGTGTCGCCCGAGCAATTGCAGGCCATCCGTGTCGCGGCGCAATGGTATGCCCGGCTTCACTCCGGCACCACAACTGACGCGGAGCGCGAAGGGTGGTGGGCCTGGCTGGCCGCGGATCCGCTGAACGAGCAGGCCTGGCAACGCATGGCGGCGGTGTCGGAACAGATGGCCAGCGTGCCGGGCGCATTGGCTGCGCCAACCTTGAGTGCCCACCCTGGCCGACCTCGTCGAGAGGTGCTGCGCAGCGCCTTGCTGCTGACCTCCGCCGGCTGCCTGGGATGGCTGGGCTGGCGCAGCGAGACCGCGCAGAACCTACTTTGCGATTACCGGACCGGCGTGGGCGAGCGGCGTGAGTTCCAGTTGGTGGACGGCAGCACGCTGCTGCTCAACACCGACACCTCGGTAAACGTCCGTTTCGATGGCCGCCAGCGGACATTGACGCTGTTGTGGGGCGAAATTCTCGTAACGACCGGGGTCGATCCCTTGCAGCGGCCATTCAAGGTCGTCACTGGCCAAGTCGAAGTGCTGGCCCTGGGGACGCGATTCATCGTCCGCGCTCAGGACGACGGCGGTGAGGTGGCGGTGCTGGAGAAGGCCGTGCAAGTCAGTTTGCGCAGCGGCGGGCCAGCCCAGCGGGTCGACGCGGGTGATCGCCTGGGCTTCACCGGTCGGTCGCTGGGTGCGTTGCGCGCCAATGATGTATCGGTGGGTGCCTGGCAACAGGGCAGCATCATCGCCATCGACCGCCCGCTGTCGGCCTTGCTGGTGGAGCTTTCCCGCTATCGCACGGGAATATTGCGCTGCGACCCGGCCATCGGCGACTTGAAAGTCTCCGGCGTTTTTCCCATCGACAATACCGATCTTGCCCTGGCGGCACTCGAAACCGGTTTCTCGTTGCGCGTGACTCGCTACAGCCGGTTCTGGGTCCAGGTGTCGCGTGCCTGAMNVSPEQLQAIRVAAQWYARLHSGTTTDAEREGWWAWLAADPLNEQAWQRMAAVSEQMASVPGALAAPTLSAHPGRPRREVLRSALLLTSAGCLGWLGWRSETAQNLLCDYRTGVGERREFQLVDGSTLLLNTDTSVNVRFDGRQRTLTLLWGEILVTTGVDPLQRPFKVVTGQVEVLALGTRFIVRAQDDGGEVAVLEKAVQVSLRSGGPAQRVDAGDRLGFTGRSLGALRANDVSVGAWQQGSIIAIDRPLSALLVELSRYRTGILRCDPAIGDLKVSGVFPIDNTDLALAALETGFSLRVTRYSRFWVQVSRAPGPT0003910_5158DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003910-prhR|fecR-K07165NANA
D1-35_010252478fptACOG4773Fe(3+)-pyochelin receptorATGTCTCGCGTGAACACGCCAGGTCGTCTGGCAATCGCAATGAAAATCGGTTTTCTGGCCGCCACGTCTTTCGGCGCCTGGGCGGCGTACGCCAGTCCGGTTGCGCAGGCTTCGGTGCCACAACACTCGGCGCAGGCCTACGATATCGGCGCTGGCACCCTGGTGGATGTGCTGACGCGTTTCTCCAGCCTCGCCGGCGTCGCGATTTCGTTCGATGCCGCACAAATGCAGGGGATGCGGTCGCCAGGCTTGAAAGGCTCCTTTGGCGTGGCCGAAGGTTTCGCGCGCATCCTCGGCAGTAACGGCCTGCAAGCCGAACCCCAGGCCAACGGGACCTACCGGCTGCGTACCGCACCTGCGCCCGGCTCGGCGCTGGAGCTCGGCACCACGACCATCGACGGCCAACTGCTCACGGCAACCACCGAAAACAGCGGGTCCTATACCACTGGGGCGGTGACCATCGGCAAAGGCGAGCATTCGCTGCGCGAAACGCCGCAATCGGTCACCGTGATCACCCGCAAGATGCTCGACGATCAGAACCTGAACACCATCGAGCAGGTGATGGAAAAGACCCCGGGTATCACCGTCTACGACTCGACCATGGGCGGCAAGTATTTCTATTCCCGCGGGTTCCGGATGTCCGGCCAATACCAGTACGACGGCGTGCCGCTGGACATGGGCAACAGCTATGTCCAGGCCGACAGCTTCAGCAGTGACATGGCCTATTACGACCGGGTCGAAGTCCTGCGCGGCGCTGCCGGCATGATGAAGGGATCCGGCGGTACGTCCGGTGGCGTCAATTTCGTCCGCAAGCGCGGCCAGGCTACGGCGCAGACTGAACTCAGCCTCTCGGGCGGCACCTGGAACAACTATCGCGGGCAGGTCGATACCGGTGGCCCGTTGAACGACGCCGGCACCGTGCGGGGCAGGGCGGTGATCGCCGAGCAGAGCCGGCGCTATTTCTACGACGATGCCCGGCGTACGGATCAGGTCTATTACGGCGCCCTGGATATGGACCTTGCACCCGACACCACGCTCGGCCTGGGCGTGGCGTACGAGGATGTCGACGCGAGCCCTTGCTGGGGCGGGCTGCCACGCTACCGCAATGGCAGCGACCTGAAACTCGGCCGTTCCACTTGCCTGGACCCGTCGTGGAACACCTGGCGCAGCCAACGGACCACGGTCTTCGGCGACCTTCGACATCAGCTCAACGATGACTGGGCCGTGAAAGTCGCAGGCGTCTATACAAAAAACACCCAGGACACCAAATACGCGTTTGCATCGGGTGCGGTGACGCCGGGGGGCTCTACCACCAACCTGTTGGGCAGCCTGTATGACTACGATCAGGTCGACTACGGCCTCGACGCCTACCTGGACGGCAAGTTCGAAGCCTTCGGCCAGCAACATGAAATGATCTTCGGGGCCAACGCCAGTCGTTCGGACAAGGATGATTTCTATTCGGTCGCTTTGTTGCCGCAGAAGCAGAACGTCTTCGACCCGGATCGGCACATCCCGGAGCCGGACGACAGCTACTTCATTGATAACTCGACCCGCGGCGGGCCGGTCAAGACCCTCACCGAACAGCAGGGCGTGTATTCCACGTTGCGCCTGAAACTGGCGGATCCGTTGACCTTCGTTGTCGGCAGCCGGGTGAGCTGGTACAGCTCCAAGAGCGACTCGGTATTTCTCACCGGCGGTACGGAACACGCCAGGAGCACCGAGACCGGCCAGGTCACGCCATTTGCCGGCGTGTTGCTCGACCTCAACGAACACCTGACCGCCTACGCCAGTTACTCGGACATCTTCACGCCCCAAGGCAACTACCGCTCGCAAAGCGGCTCGGCGCTCAAGCCGCTGGTGGGCGAAAGTTATGAACTGGGGATCAAGGGCGAGTGGTTCGAAGGGCGCCTGAACACGGCATTCAACCTGTTTCGCACCGTGCAGAAGGATCAGGCTCAGACGGATTACAACTCCACCTGCGCCTCATCGGACGGCTACTGCTACGAGAACGCTGGCAAGGTCCGCGCCCAGGGCTTCGAGGCCGAGATCAGCGGCGAAGTCATCGAGCGCCTGCAACTGCTCGCCGGATATACCTACACCCAGACCAAGACCCTGGACGACATTGACAGCAGCCTCAATGGCGGTTCGTTCAACAGCTATGTGCCGCGCCACGTGCTGCGCCTTTGGGGCGATTACGCCCTCGGTGGCGCCTTCGAGCGGTTCAGCGTCGGCGCCGGGGTCAATGCGCAGAGCGATAATTTCCGCGTATCGCCGCTTAGCGGTGAAAAGATCACCCAGGCCGGTTATGCGGTGTGGAACGGTCGGATCGGCTACCGCATAGATGACACCTGGTCGGTGGCGCTCAACGGCAACAACCTGTTCGACAAGCGCTACTACACCACCATCGGCACCGAAAGCTTCGGTAACTATTACGGTGAGCCGCGCAATTTCACCGCGACGGTGAAGGCGCGCTTCTGAMSRVNTPGRLAIAMKIGFLAATSFGAWAAYASPVAQASVPQHSAQAYDIGAGTLVDVLTRFSSLAGVAISFDAAQMQGMRSPGLKGSFGVAEGFARILGSNGLQAEPQANGTYRLRTAPAPGSALELGTTTIDGQLLTATTENSGSYTTGAVTIGKGEHSLRETPQSVTVITRKMLDDQNLNTIEQVMEKTPGITVYDSTMGGKYFYSRGFRMSGQYQYDGVPLDMGNSYVQADSFSSDMAYYDRVEVLRGAAGMMKGSGGTSGGVNFVRKRGQATAQTELSLSGGTWNNYRGQVDTGGPLNDAGTVRGRAVIAEQSRRYFYDDARRTDQVYYGALDMDLAPDTTLGLGVAYEDVDASPCWGGLPRYRNGSDLKLGRSTCLDPSWNTWRSQRTTVFGDLRHQLNDDWAVKVAGVYTKNTQDTKYAFASGAVTPGGSTTNLLGSLYDYDQVDYGLDAYLDGKFEAFGQQHEMIFGANASRSDKDDFYSVALLPQKQNVFDPDRHIPEPDDSYFIDNSTRGGPVKTLTEQQGVYSTLRLKLADPLTFVVGSRVSWYSSKSDSVFLTGGTEHARSTETGQVTPFAGVLLDLNEHLTAYASYSDIFTPQGNYRSQSGSALKPLVGESYELGIKGEWFEGRLNTAFNLFRTVQKDQAQTDYNSTCASSDGYCYENAGKVRAQGFEAEISGEVIERLQLLAGYTYTQTKTLDDIDSSLNGGSFNSYVPRHVLRLWGDYALGGAFERFSVGAGVNAQSDNFRVSPLSGEKITQAGYAVWNGRIGYRIDDTWSVALNGNNLFDKRYYTTIGTESFGNYYGEPRNFTATVKARFPGPT0003775_226DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-IRON_COMPLEX_RECEPTOR,PGPT0003775-fptA|fhuE|fpvA|C_FEV_OM1|fauA-K16088NANA
D1-35_010261623nanTSialic acid transporter NanTATGTCTGAACATGTTCAGCCCCTGGAAGCCACGCGCAGCGCAGGCACCAGCCAGGAAACCCAGAAAGTCATCTTCGCCTCGTCCTTGGGGACGGTGTTCGAGTGGTACGACTTTTTCCTCTACGGCGCCCTCGCGGCGGTGATCAGCAAGCAATTCTTCGCCGGGGTGAACGACACCACGGCGTTCATTTTCGCCCTGATGGCTTTCGCCGCCGGTTTCATCGTGCGGCCCTTCGGGGCGCTGGTGTTTGGGCGGCTGGGGGACATGATCGGGCGCAAGTACACGTTCCTGGCAACCATCGTGCTCATGGGCCTGGCGACCTTCTGCGTCGGCCTGCTGCCCAACTACGCGAGCATCGGCATCGCCGCGCCCATCATCCTGGTGGTATTGCGCATGCTCCAGGGCTTGGCCCTGGGCGGTGAATACGGTGGCGCGGCGACCTATGTGGCCGAGCATGCACCGATGGGCAAGCGCGGCTTTCATACCAGCTGGATTCAGTCCACCGCGACACTGGGCCTGTTGCTCTCGCTACTGGTGGTGCTCGGTTGCCGTTACTTCACCGGTGACCAGTTCGAAGTCTGGGGCTGGCGCATTCCGTTCCTGCTGTCGATCCTGCTGCTGGGCATCTCCACCTGGATCCGCCTGAGCCTGCACGAGTCGCCGGCCTTCCTGAAAATGAAAGAAGAAGGCAAGTGCTGCAAGGCGCCGATCCGCGAGTCCTTCGGCAAGTGGGAAAACCTGAAGGTGGTGCTGATCGCCCTGTTCAGCATCAATGCCGGGCAAGCGGTGACCTTCTATGCCGCGCAATTCTACGTGCTGTTCTTCCTCACCCAGTTCCTCAAGATGGACCCGGCCCTTGCCAATAGCCTGTTGATTGTCAGCGTGGTGATCGGCGCGCCGTTCTTCATCTTCTTTGGCTGGCTGTCGGACAAGGTCGGGCGCAAACCGGTGCTGATGATCGGCCTGCTGCTGGCGACGGCGTTGTACTTTCCGATCTTCAAGACGCTCGCTCATTACGCCAACCCGGCCATCGACCTGGCGAGCCGCCAGGCGCCGATCACTGTCGTCGCCGACCCGGCCACCTGCACCTTCCAGTTCGACCCGGTGGGCAAGGCGCGTTTCGACAGCCCTTGCGACAAGGTCAAGACCTTCCTGGTCAAGCAAGGCCTGCCCTACACCAGCGTCGCGGCACCGGCCGGCAGCACCGTGCAGGTCAGCGTCGGCGACGTGAAACTTGAAGGCTACGACGAAGCCGCCCTGCGCGGCGCGGTGACCCTGGCGGGCTACCCGCAACAAGCCGATGCCCAGCAGATCAACCGGCCGATGATCGTCGCCCTGATCGTGGCGCTGATCATCATTTCGGCGATGTGCTACGGCCCGCTGGCGGCGCTGATGGTCGAACTGTTTCCGACCCGCATTCGCTACACCTCCATGTCCCTTCCGTACCACATCGGCAACGGCTGGTTCGGCGGTTTCCTGCCAACCGTGTCGTTCGCCCTGGTGGTCTACACCGGGGATATTTTCTACGGCTTGTGGTACCCGGTGGTGATCACGGGCGTGAGCCTGGTGGTGGGGATGATCTGCCTGCGGGAAACCCGCAACGTCGATCTGGATACCAACTGAMSEHVQPLEATRSAGTSQETQKVIFASSLGTVFEWYDFFLYGALAAVISKQFFAGVNDTTAFIFALMAFAAGFIVRPFGALVFGRLGDMIGRKYTFLATIVLMGLATFCVGLLPNYASIGIAAPIILVVLRMLQGLALGGEYGGAATYVAEHAPMGKRGFHTSWIQSTATLGLLLSLLVVLGCRYFTGDQFEVWGWRIPFLLSILLLGISTWIRLSLHESPAFLKMKEEGKCCKAPIRESFGKWENLKVVLIALFSINAGQAVTFYAAQFYVLFFLTQFLKMDPALANSLLIVSVVIGAPFFIFFGWLSDKVGRKPVLMIGLLLATALYFPIFKTLAHYANPAIDLASRQAPITVVADPATCTFQFDPVGKARFDSPCDKVKTFLVKQGLPYTSVAAPAGSTVQVSVGDVKLEGYDEAALRGAVTLAGYPQQADAQQINRPMIVALIVALIIISAMCYGPLAALMVELFPTRIRYTSMSLPYHIGNGWFGGFLPTVSFALVVYTGDIFYGLWYPVVITGVSLVVGMICLRETRNVDLDTNNANANANANA
D1-35_010271644alkJAlcohol dehydrogenase [acceptor]ATGCAACCTGTCGTCGATGAATACGATTACGTGATCGTGGGCGCCGGCCCTGCCGGCTGCCTGCTGGCGAACCGGCTTTCGGCCAATCCGCAACACCGCGTGCTGCTGCTCGAAGCCGGCGGGCGGGACAATTATCCGTGGATCCACATCCCGGTCGGCTACCTGTTCTGCATCGGTAACCCACGCACCGACTGGTGCTTCAAGACCGAAGCGCAACCCGGCCTGCAAGGGCGCGCCTTGAGTTATCCGCGCGGCAAGGTGTTGGGCGGCTGTTCGTCCATCAACGGCATGATCTACATGCGTGGCCAGGCGGCGGACTACGACGGCTGGGCCGCCGAAGGCAATGTCGGCTGGGGCTGGAAGGATGTGTTGCCGCTGTTCCGGCAGAGCGAAAATCACTTCGCGGGGGATTCCGAGCTTCACGGCGCAGCCGGGGAATGGCGAGTCGAACGCCAGCGCCTGTCATGGCCGATTCTCGATGCCTTCCGCACCGCCGCCGAACAGAGCGGCATCCCCAGCGTCGAGGATTTCAACGGTGGCGACAATGAAGGTTGCGGCTACTTCCAGGTCAACCAGAAAGCCGGGGTGCGCTGGAACGCGGCCAAGGCCTTCCTCAAACCGATTGGCAATCGCCCCAACCTGACGGTGCTGACCGACGTCGAGGTTGATCGGGTGTTGCTGCGTGACAACCGCGCCGACGCCGTCAGCGCCCGCTGGCAGGGCAAGAACATGAGCTTCAGGGCGCGCAAGGAAATCGTCCTGTGCGCCGGCGCCGTCGGCTCGCCGGGCATCTTGCAGCGCTCCGGGATCGGCCCGCGCAACCTGTTGCAGCGTCTGGGCATCGGCGTGCTGCATGAACTGCCCGGCGTCGGTGGCAACTTGCAGGACCACTTGCAACTGCGGCTGATCTATCAGCTGGAAAACGCCCGCACCCTGAACCAGATCGCCGGCACCCTGTGGGGCAAGATGGGCATGGGCCTGCGTTACCTGTACGACCGCAGTGGCCCGCTGTCCATGGCCCCCAGCCAACTCGGCGCGTTCGCCCGCTCGGGGCCGGAACAGGCCTCCGCCAACCTCGAATACCACGTACAACCGTTGTCCCTGGAACGTTTCGGCGAACCGCTGCACAGCTTCTCGGCGTTCACCGCGTCGGTGTGTGACCTGCGCCCGATGAGCCGTGGTCGCGTGGACATCCGCTCGGCCGATCCTCATGAGGCGCCGTCGATCCAACCCAATTACCTGAGCCATCCCGAGGACCTGCGGGTCGCCGCCGACGCCATCCGCCTGACTCGACGGATCGTCGCCGCGCCAGCCCTGAGTGCTTTCAAACCGGTGGAATACCTGCCAGGCCCAAGCCTGCAGACCGAGGAAGAACTGCACCAGGCCGCCGCCCGCATCGGCACGACAATTTTTCATCCGGTGGGCACCTGTCGCATGGGCCAGGACGGCGATGCGGTGGTCGATGCGCAACTGCGCGTCCACGGCATCAAGGGCCTGCGCATCGCCGACGCCTCGATCATGCCGCGCATCACCTCCGGCAACACCTGCTCGCCGACACTGATGATCGCCGAGAAGGCCGCGCGGATGATGCTTGAGCCGGCCACCGTGGGCGCTACGCTGCAGAAGGAGCCTGCCACGGTCTGAMQPVVDEYDYVIVGAGPAGCLLANRLSANPQHRVLLLEAGGRDNYPWIHIPVGYLFCIGNPRTDWCFKTEAQPGLQGRALSYPRGKVLGGCSSINGMIYMRGQAADYDGWAAEGNVGWGWKDVLPLFRQSENHFAGDSELHGAAGEWRVERQRLSWPILDAFRTAAEQSGIPSVEDFNGGDNEGCGYFQVNQKAGVRWNAAKAFLKPIGNRPNLTVLTDVEVDRVLLRDNRADAVSARWQGKNMSFRARKEIVLCAGAVGSPGILQRSGIGPRNLLQRLGIGVLHELPGVGGNLQDHLQLRLIYQLENARTLNQIAGTLWGKMGMGLRYLYDRSGPLSMAPSQLGAFARSGPEQASANLEYHVQPLSLERFGEPLHSFSAFTASVCDLRPMSRGRVDIRSADPHEAPSIQPNYLSHPEDLRVAADAIRLTRRIVAAPALSAFKPVEYLPGPSLQTEEELHQAAARIGTTIFHPVGTCRMGQDGDAVVDAQLRVHGIKGLRIADASIMPRITSGNTCSPTLMIAEKAARMMLEPATVGATLQKEPATVPGPT0013615_2901DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013615-betA|CHDH-K00108NANA
D1-35_01028885hdfR_2HTH-type transcriptional regulator HdfRATGTTCGACTGGAATGACCTGCGCTATTTCCTCGAACTGCAACGCAGCGGCCGCCTGCTGACGGCCGCGCGACGGCTCAACACCACCCATGCCACGGTGGCGCGGCACATCGAGGCGATCGAGAAAAGCCTCGGCACTGCGTTGTTCGTCCAGCACGCCCAAGGGTATGAATTGACCCCGGCAGGCGAAGCGCTGCTCAAGCATGCCGAGGCCATGGAGAATGTCGCGTTGCTGGCCCAGGAAGACATCACCCAATCCAGCGCGCCGCTGGGCAAGATCCGCCTCGGCGTGACGGAAGGGCTGGGCATCATGTTCCTCGCCAGTCGCATGGACGGCTTGTTCCAGCGCTATCCGGGGCTTGAAGTGGAACTGGTGGCCGTGCCGCGATTTGTCAGCATCCTCAACCGCGAGGCGGAAATCAGCATTCACCTCGAACGCCCGGCGGCCGACCTGCTGGTGACGCGCAAGCTCACCGACTACAGCCTGGCGCTCTACGCCAGCCAGGCTTACCTGGACCGTTCGCCATCGTTACGCAGTCGCGAGGATCTGGCCCGCCATGCCTGGATCGGCTACGTCGATGACCTGCTGTTCAGCCAGGAGCTGATGTTCCTCAACAGCTTTTGCCGAAACCCTCGCGTGGTGTTCCACAGCACCAGCGTCATTGCCCAGCAACAGGCCGCGCGCTCGGGCCTGGGGATCGCCGTGCTCCCGTGCTACATGGCCAGCAGCGACCCGACCCTGGTGCCGCTGCTGCCGGACGAAACCATCCGCCGCAGTTATTGGATCAGCACCCGCCGGGAGCTGCACAAGTCCGTCCGGTTGCGGGTGTTGTGGGATTACGTGGTGCAGTTGTGCGAGCGCGAGCAAGGGCTGCTGTTGCCCTGAMFDWNDLRYFLELQRSGRLLTAARRLNTTHATVARHIEAIEKSLGTALFVQHAQGYELTPAGEALLKHAEAMENVALLAQEDITQSSAPLGKIRLGVTEGLGIMFLASRMDGLFQRYPGLEVELVAVPRFVSILNREAEISIHLERPAADLLVTRKLTDYSLALYASQAYLDRSPSLRSREDLARHAWIGYVDDLLFSQELMFLNSFCRNPRVVFHSTSVIAQQQAARSGLGIAVLPCYMASSDPTLVPLLPDETIRRSYWISTRRELHKSVRLRVLWDYVVQLCEREQGLLLPNANANANANA
D1-35_01029753nagR_1COG2188HTH-type transcriptional repressor NagRATGCCCGACAACCTTCTTTCCCTCAGCAGCGTGCCGCTGCACACCCAACTGCGCGACGTGCTGCGCGCGCGCATTCTTGACGGTGAATACCCGCAAGGCAGCCAGATGCCTTCGGAAAGCGAGCTGGGCGCGCTGTTTCGCGTCAGCCGCATCACCGTGCGCCAGGCCTTGGGCGATCTGCAAAAGGAAGGGCTGATTTTCAAGATCCACGGCAAAGGCACGTTCGTCGCCAAACCCAAGACCTTCCAGAACGTCAGCACGCTGCAGGGCCTGGCCGAGTCCATGACCGGTCGTGGCTACGAGGTGATCAACCGCCTGCGCAGTTTCAAGTTCATCCCGGCGGACAAGTCGGTGGCCGAGCGCCTGAAACTGGCGGAAGGCGACGTGGTTACGCAGATCAAGCGGGTGCGGCTGATCAACCGCGAGCCGGTTTCCCTGGAAATCACCTACCTGCCCAAGGCCCTCGGCGAGCGCCTGGAAAAAGCCGACCTGGTGACCCGCGACATCTTCCTGATCCTCGAAAACGATTGTGGCCTGGCCCTCGGTCACGCCGACCTTGCCATCGATGCGGTGCTGGCCGACAGCGACTTGTGCCAGGCACTCGACGTCGAGCCCGGCTCGCCGGTCATGCGCATCGAACGGCTGACCCATGACGCCGGCGGCGAGCCGCTGGACTTCGAATACCTCTACTACCGTGGCGATGCCTTCCAGTATCGCTTGCGGATCGACCGGCAAAAAGGGACGCAGGCATGAMPDNLLSLSSVPLHTQLRDVLRARILDGEYPQGSQMPSESELGALFRVSRITVRQALGDLQKEGLIFKIHGKGTFVAKPKTFQNVSTLQGLAESMTGRGYEVINRLRSFKFIPADKSVAERLKLAEGDVVTQIKRVRLINREPVSLEITYLPKALGERLEKADLVTRDIFLILENDCGLALGHADLAIDAVLADSDLCQALDVEPGSPVMRIERLTHDAGGEPLDFEYLYYRGDAFQYRLRIDRQKGTQANANANANANA
D1-35_010301740aprAAdenylylsulfate reductase subunit alphaATGACCCAGAGCTCCAGGAATATCCTCGAACAGGAATATGACATCGTCGTCATCGGCGGCGGCACCGCCGGCCCCATGGCGGCGATCAAGGCCAAGGAGCGCAACCGCGACCTGCGCGTGTTGCTGGTCGACAAGGCCAATGTCAAGCGCAGCGGCGCCATCAGCATGGGCATGGACGGGCTCAACAACGCGATTATCCCGGGCCATTCGACGCCCGAGCAGTACACCAAGGAAATCACCATCGCCAACGACGGCATCGTCAACCAGGCGGCGGTGTACGCCTACGCCACCCACAGCTTCGAAACGATCGAGCAACTGGACCGCTGGGGCGTGAAGTTCGAGAAGGACGAAACAGGCGATTACGCGGTGAAAAAGGTTCACCACATGGGCGCTTATGTGCTGCCGATGCCGGAAGGTCACGACATCAAGAAAGTCCTCTATCGCCAGTTGAAACGGGCGCGAGTCAGCATCACCAACCGGCTGGTCTGCACCCGGTTGCTGACCGACGGGGAGGGCGCGGTGAACGGTGTGATGGGTTTTGACTGCCGCACCGCCGACTTCCATGTGATCAAGGCCAAGGCCGTCATCCTCTGCTGCGGCGCGGCGGGGCGCCTGGGGTTGCCGGCCTCCGGCTACCTGATGGGCACCTATGAGAACCCGACCAATGCCGGCGACGGTTATGCGATGGCCTATCACGCCGGGGCCGAGCTGGCGAACCTGGAGTGCTTCCAGATCAACCCGTTGATCAAGGATTACAACGGCCCGGCGTGCGCCTACGTCACCGGCCCGCTGGGCGGCTACACCGCCAACAACAAGGGCGAGCGCTTTATCGAATGCGACTACTGGAGCGGGCAGATGATGTGGGAGTTCCACCAGGAGCTCGAAGGCGGCAACGGTCCGGTGTTCCTCAAGCTCGATCACCTGGCCGAGGAAACCATCCAGAACATCGAGGAAATCCTGCACAGCAACGAGCGCCCCAGTCGCGGGCAGTTCCACGCCAACCGGGGCACCGATTACCGCACGCAGATGGTGGAGATGCACATTTCCGAGATCGGCTTCTGCAGCGGTCATTCGGCTTCTGGAGTGTGGGTCAACGAGCGGGCCGAGACCTCGGTCAAGGGTTTGTACTCGGCGGGCGACATGGCGGCAGTGCCGCACAACTACATGCTCGGCGCGTTCACCTACGGCTGGTTTGCCGGCCAGAACGCGGCGGACTTTGTCGCTGGCAAGGACTTTTCGGCACTGGATGCTCAGCAGATCGAGCAGGAGCAAAACCGCGTCTACGCGCCGCTCGACCGTGCGCATGGCCTGCCGCCGGCCCAGGTGGAATACAAGCTGCGCCGCTTCGTCAACGATTACCTGCAACCGCCGAAGGTCAGCAAAAAAATGCAGATCGGCCTGCAACGCTTCAGCGATATCCAGCGCGACCTTGATCAGCTCAAGGCCCACAACGCCCACGAATTGATGCGCGCCATGGAAGTCAGCGTGATCCGCGATTGCGCCGAGATGGCCGCTCGCGCCTCGCTGTTTCGCGCCGAAAGCCGTTGGGGGTTGTACCACTACCGGGTCGATCATCCGCAACGCAACGACAGCGACTGGTTCTGCCATTGCCATTTGAAGAAAGGCGAGGACGGCGCGATGACCTCGTTCAAGAAAGCCGTCGAGCCCTACATCATCGCCCTCGATGCCGACGAACTGCAGGCCTACGACCGGCTTCGGCTCGGTGCCGACGCGGCGTGAMTQSSRNILEQEYDIVVIGGGTAGPMAAIKAKERNRDLRVLLVDKANVKRSGAISMGMDGLNNAIIPGHSTPEQYTKEITIANDGIVNQAAVYAYATHSFETIEQLDRWGVKFEKDETGDYAVKKVHHMGAYVLPMPEGHDIKKVLYRQLKRARVSITNRLVCTRLLTDGEGAVNGVMGFDCRTADFHVIKAKAVILCCGAAGRLGLPASGYLMGTYENPTNAGDGYAMAYHAGAELANLECFQINPLIKDYNGPACAYVTGPLGGYTANNKGERFIECDYWSGQMMWEFHQELEGGNGPVFLKLDHLAEETIQNIEEILHSNERPSRGQFHANRGTDYRTQMVEMHISEIGFCSGHSASGVWVNERAETSVKGLYSAGDMAAVPHNYMLGAFTYGWFAGQNAADFVAGKDFSALDAQQIEQEQNRVYAPLDRAHGLPPAQVEYKLRRFVNDYLQPPKVSKKMQIGLQRFSDIQRDLDQLKAHNAHELMRAMEVSVIRDCAEMAARASLFRAESRWGLYHYRVDHPQRNDSDWFCHCHLKKGEDGAMTSFKKAVEPYIIALDADELQAYDRLRLGADAANANANANANA
D1-35_01031246hypothetical proteinATGGCCTATCAACCCCAGGAAATCTTCTTCCGCTCCAATGCCCCTGTCACCGTGGACGAGGACAAATGCATCGCCCACAAGGGCTGCACGGTCTGCGTCGATGTCTGCCCGATGGACCTGTTGGCGATCAACCCGGCCACCCAGAAGGCCTACATGGCGTTCGATGAATGCTGGTATTGCATGCCCTGTGAAAAGGACTGCCCGACGGGGGCGGTGAAAGTGGAGATTCCGTATCTGTTGCGGTGAMAYQPQEIFFRSNAPVTVDEDKCIAHKGCTVCVDVCPMDLLAINPATQKAYMAFDECWYCMPCEKDCPTGAVKVEIPYLLRPGPT0002775_151DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002775-aprB-K00395NANA
D1-35_010321407hypothetical proteinATGTTATTGCGTGCAGCGCTGGCCGGTCTGGTACTGGCTTCATTGACCTTGCCTGCCCAGGCAGAAACCATCCGCATTGCCATCGGCACCCAGGACACCACCATCAACTGCGCCGCTGGCGGGTTGCTGATCCGCGAGCTCGGCCTGCTGGACAAATACCTGCCCCACGACGGCGCGTACAAGGACGCCGAGTACGACATCCAGTGGAAAAACTTCACCAGCGGCGCGCCGCTGACCAACGAGATGGTTGCTGGCAAACTCGACTTCGGCGCCATGGCCGACTTCCCCGGGGCTTTCAACGGCGTGGCGTTCGAGACCGCCGGCAAGCACAGCCTGTTCATCAGCGTGTTGTCGGGCAGCACCCAGGGCAGCGGCAACGGCATTGTCGTGCCCAGCGCCTCGGGCGTGCAGTCCCTCGCCGAGCTCAAGGGCAAGACGATTTCCGTGCCGTTTGCTTCCACCGCCCATGGCATGTTGCTGCGAGCCGTCGCGGCCCAGGGCTGGGATCCGCTCAAGGACGTGAACATCATCGCCCAGCCGCCGGAGGTCGCCGGCTCGGCGCTGCAAGCTGGCAAGATCGACGCCCATGCCGATTTCGTACCGTTCGCCGAACTGTTCCCCAGCCGCGGTTTCGCCCGCAAGATCTACGACGGTGCCCAGGCCAGGACGCCGACTTTCCACGGCGCGCTGGTGGACCAGGCCTATGCCAGAAAGTACCCGGAAATCGTCGTCGCTTATTTGCGCGCGACCATCGAGGCCAATCAATTGCTGGCCGCCGAGCCTGAGAAATACAGCGAGCTGATCGCCAAGGTCACCGGGGTGGATGCCGAGGTCAATTACCTGTTCCACGGGCCGCTGGGCGTACAGACTCGCGACCTGACCTGGAAACCCGAATACCGGCAAGCCGTCGGCACCGCGATCGACACCCTCAAATTGCTGAAGAAGGCTGATCGCGGCCTGGACCTCAACACCTTCATCGACGATCAGTACATCCGCGCCGCGTTCAAGGCGTCGAACCTCGATTACGCCGCGCAACTGGGCAACTACGCCCAGACGCCCCTTGGCAACCCCGATGCCTTGACCGGCCAGCCCATCACCGATCCCCGCCATGTGGCGCAGATCTGGGTACGCGGCGAGCCGACAGTGCGCCATTACGCCTCGGCGCAATCGGCCTTCACCGCGCTGGCGAATCTCAAACAGGAAGGCAAGGGCATCCGCGCCGTCTACGCCCAGGCCAGCGACAGCGGAATCAAGCTGCTGGCCGAGCAGGCGTGGTTCGCCAGCGATGCCAAGGGCCAACTCAGCGCGTTCCTGTTGAAAGGGCAGGCTGAGCAATTTGCCACGGCCGAGGGCGGCAAGGTCCTGGATTTTACCGAAGCCACCACCCAGGCAGTCGCCGCCCGCTGAMLLRAALAGLVLASLTLPAQAETIRIAIGTQDTTINCAAGGLLIRELGLLDKYLPHDGAYKDAEYDIQWKNFTSGAPLTNEMVAGKLDFGAMADFPGAFNGVAFETAGKHSLFISVLSGSTQGSGNGIVVPSASGVQSLAELKGKTISVPFASTAHGMLLRAVAAQGWDPLKDVNIIAQPPEVAGSALQAGKIDAHADFVPFAELFPSRGFARKIYDGAQARTPTFHGALVDQAYARKYPEIVVAYLRATIEANQLLAAEPEKYSELIAKVTGVDAEVNYLFHGPLGVQTRDLTWKPEYRQAVGTAIDTLKLLKKADRGLDLNTFIDDQYIRAAFKASNLDYAAQLGNYAQTPLGNPDALTGQPITDPRHVAQIWVRGEPTVRHYASAQSAFTALANLKQEGKGIRAVYAQASDSGIKLLAEQAWFASDAKGQLSAFLLKGQAEQFATAEGGKVLDFTEATTQAVAARPGPT0001135_230DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001135-ABC_SN_S-K02051NANA
D1-35_01033783ssuC_1COG0600Putative aliphatic sulfonates transport permease protein SsuCGTGTACCCATCACCCAAACGCTGGCTCCTGCGAGCCGCTTCCTTGTGGCTCTGCCTGCTGTTCTGGCAGCTCGCCGCCAACGGCCACTGGGACCTCGGCCTGGTGACCTTCGCCAACGTCCCGGCCCCGCTGGCAGTGATCGAGGCCGCGCTCGGCCTGGGCGAGTCGGGCAATCTCGTTCGGCACTTGGGCAGCAGCCTGGGCCGGGTCTTCGCCGGGTATGGCGCGGCGTTGCTGGTGGGCGTGGCGCTGGGCCTGGCCATCGGCCGTTCCCGGTGGGCCGAGGACCTGTTGCTGCCACCGCTGGAAGTGCTGCGGCCGATTCCGGCGGTGGCCTGGATTCCGCTGGCGATCCTGATGTTTCCCTCGTCGGAACTGTCGATGGTGTTCATCACCTTCACCGGTGCGCTGTTCCCGATCCTGCTCAACACCGTGCACGGCGTCGAAGGGGTGGACCGGCGCCTGGTCGCATCTGCGAAAAGCCTGGGGGCAGGGCGCCGGGCGATCCTGCTGGAGGTGATCCTGCCGGGCGCGGCGCCGAGCATCATCACCGGCCTCGCCATCGGCATGGGCACGTCCTGGTTCTGCCTGGTGACGGCGGAAATGATCGCCGGCCAGTACGGCATCGGCTACTACACCTGGGCGTCCTACACCGTGCAGAACTACCCCGACATTGTCGTCGGCATGTTGCTGATCGGCGTGCTGGGCATGGGCAGCAGTTTGTTGATCAAGCGCCTGGGCGGGCTGTTCACGCCTTGGCACCGACCCCGAGGAAAAGCCTGAMYPSPKRWLLRAASLWLCLLFWQLAANGHWDLGLVTFANVPAPLAVIEAALGLGESGNLVRHLGSSLGRVFAGYGAALLVGVALGLAIGRSRWAEDLLLPPLEVLRPIPAVAWIPLAILMFPSSELSMVFITFTGALFPILLNTVHGVEGVDRRLVASAKSLGAGRRAILLEVILPGAAPSIITGLAIGMGTSWFCLVTAEMIAGQYGIGYYTWASYTVQNYPDIVVGMLLIGVLGMGSSLLIKRLGGLFTPWHRPRGKAPGPT0001145_6448DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050NANA
D1-35_01034849nrtDCOG1116Nitrate import ATP-binding protein NrtDATGAGCGCAATACAAACCCCTGAAGGGCGGATCGATATCCGCCAGTTATCCATTGTCCTGGGCCAGGGTGCCCAGGCCTTCGAAGCAGTGCAGGGGCTGGATTGCCAGATCGAGGCCGGCCAGTTCGTCTGCATCCTCGGGCCGTCCGGCTGCGGCAAATCGACGTTGCTCGGCGCGCTTGCCGGGCACCTGCAACCCAGTGCCGGCACGCTGAATGTCGATGCGCTGCCGGTGGCCGGCCCGTCGCCCCAGCGCGGCATGGTGTTCCAGCAGCACACCCTGTTTCCGTGGCGCAGTGTGCGCGACAACGTCGCTTTCGGCTTGAAGATGCGCGGCCAGGGCAAGCTTGAACGATACCGGGCTGCCGATGAAATCCTTGCCCTGGTGGGCCTGGAAGGTTTCGCCGGGCACTGGCCGGACCAACTGTCCGGCGGCATGCAGCAACGGGTGGAGATCGCCCGGGTGCTGGTCAACCGCCCGCGTTTGTTGCTGATGGACGAACCCTTCGGCGCGCTGGATGCATTGACCCGGTTGAACATGCAGGAGCTGCTGCTGGGCATCTGGACGCGCATCCGCACCACCGTTGTCTTCGTCACTCACGACATCGACGAGGCGTTATTCCTCGCTGATCGCTTGCTGGTGATGAGCCCGCGCCCGGGCCGGATCATCGAGGACCTGCGCCTGGATTTCCCGCGGCCACGAACCACCGACCTGGTCACCCGCCCTGAATTTTCCCGATTGAAACGCTATTGCCTCGAGCTGCTGCGCCATGAAGATGGCCGGCAATTGCCGCGCCTCAATCCCCTCGGGCTTCCTCCTGAAACCTCCTTGCCGCGATTTGCCCTATGAMSAIQTPEGRIDIRQLSIVLGQGAQAFEAVQGLDCQIEAGQFVCILGPSGCGKSTLLGALAGHLQPSAGTLNVDALPVAGPSPQRGMVFQQHTLFPWRSVRDNVAFGLKMRGQGKLERYRAADEILALVGLEGFAGHWPDQLSGGMQQRVEIARVLVNRPRLLLMDEPFGALDALTRLNMQELLLGIWTRIRTTVVFVTHDIDEALFLADRLLVMSPRPGRIIEDLRLDFPRPRTTDLVTRPEFSRLKRYCLELLRHEDGRQLPRLNPLGLPPETSLPRFALPGPT0001140_1506DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001140-ABC_SN_A|ytlC-K02049NANA
D1-35_01035963hypothetical proteinATGACTTCTCTATTCGAAAACACCGATAACGATGACATTCTTGCCCTGCAACCACGCCTGACGGACGACGACGCCGGGGTGCGCCGCATCGCCCTGATCGAACTGGCTGACCTGGAAGAACCCGAAGGCCTGCTGTGGCTTGTCGACCGTCTGGCCCGGGATCCCAGCGCCGAGGTGCGGGCCGAAGCCGCGCGCTTGCTCGAAGCCTGGGAGGACGCGCCGGTGGTCGCGGCCCTGTGCCAGGCCCTGACCGATACCGCCCCGACCGTGCAGGCCGCGGCTGCCCAGAGCCTGAGCCTGCTCAAGAGCGAGGCGGCGGGGGAGGTGATATTGCCTTGGACCACCCACGCGGATGCCAGCGTGCGCATCGCTGCGTTCCGGGCCTTGCGCGAGTTGCGCCTGGGCGCTGCCGCACCGGCTGCGATCGCGGCCCTGGTCGACGCCGATGCCGGCGTGCGTCGCGAGGCGGTTGGCGTGCTGGGCTGGCTCAAGCAGCTTGAGGCTCTGCCGGCCCTGGCCCGGCTCGCCAGCGCCGACCCGGACAGCGAAGTGCGCCGCGCGGCCACCGGCGCCCTGGGCCTGGCTGCGGATGCGCAAGTCTTGCCGGCGCTGCGCCAGGCCCTGCGCGACCCGGCCTGGACGGTGCGTGAAGAGGCCGCCACCACGCTGGGCAAAGTGGGTCACGCCGACGCCGGCCCGGCCCTGATCGATGCCCTGGATGATGATTACTGGCAAGTGCGCCTGCGCGCCACCCGCAGTCTTGGCCGCTTGCGTTATGTCCAGGCATTGCCGGCACTGATCGAAACCCTGGGCCATCGAATCAGCAATCTGCGCAAGGAAGCGGCGTTGGCGTTGGGCGAGTTGGACGATCCGGGAGCGATCCCCGCCTTGCAGGCAGCCCGGGACGATGGCGACCCTGAAGTGCGCAAGGCCGTGCGCATCGCCTTGGGCCAGTTGCAATGAMTSLFENTDNDDILALQPRLTDDDAGVRRIALIELADLEEPEGLLWLVDRLARDPSAEVRAEAARLLEAWEDAPVVAALCQALTDTAPTVQAAAAQSLSLLKSEAAGEVILPWTTHADASVRIAAFRALRELRLGAAAPAAIAALVDADAGVRREAVGVLGWLKQLEALPALARLASADPDSEVRRAATGALGLAADAQVLPALRQALRDPAWTVREEAATTLGKVGHADAGPALIDALDDDYWQVRLRATRSLGRLRYVQALPALIETLGHRISNLRKEAALALGELDDPGAIPALQAARDDGDPEVRKAVRIALGQLQNANANANANA
D1-35_01036273hypothetical proteinATGAGTCCGTTGACGATCGGCAATTCCCGGGACAAGGGCCAATTGCGGCTGAGTTGGCCCGATGGTCGCGAGCAACGGCTGGACCATGTCGAGCTACGCAGGCAATGTCCATGTTCCCAATGCCGGGCGTTTCGCCTGCAAGGGTTGACGGTTCAGGTCGATGCCCGGGTGCGTGTGGTTGAGGTCAATGCCCAGGGGTATGGGGTTCAGCTGGTGTTCAGTGATGGGCATCAGCGGGGGATTTTTCCCTGGGCTTATCTGGCGGGTTTTTAGMSPLTIGNSRDKGQLRLSWPDGREQRLDHVELRRQCPCSQCRAFRLQGLTVQVDARVRVVEVNAQGYGVQLVFSDGHQRGIFPWAYLAGFNANANANANA
D1-35_01037618lexA_2LexA repressorATGTACTCCATGACGACTCTCACTCCCCGCCGTACCGCCATCCTGACCTTCATCCGCGAACGCATCGCCGAGCAGGGCCAGCCTCCCAGCCTCGCTGAAATCAGCGAGGCGTTCGGTTTTGCCTCCCGCAGCGTGGCGCGCAAGCATGTGCTGGCGCTGACCGAAGCCGGTTTCATCGAAGTCAATCCGCACCAGGCCCGAGGCATCCGGCTGTTGAACCAGCCGCCGCGCCCCGAGCTGCTGGACGTGCCGGTGTTGGGTCGGGTGGCCGCCGGCCTGCCGATTGGCGCCGATGCCGAGGTCCACAGCCGCTTGTTGCTGGACCCGGCGATTTTCACCAAGGCGCCGGATTACCTGTTGCGGGTCCAGGGCGATTCGATGATCGAGGACGGTATCCTCGATGGCGATCTGGTCGGTGTACAACGTACGCCCCAGGCCGCCAACGGGCAGATCGTCGTGGCACGCCTGGACGGTGAAGTGACCATCAAGCGCTTCGAGCGAGTCGGCGAGCGCGTGCGCCTGTTGCCACGCAACCCGGCCTACCAGCCGATCATCGTCGAAGCCGACCAGGACCTGGCGATCGAAGGCGTGTTCTGTGGCCTGGTGAGACAAGGCTGAMYSMTTLTPRRTAILTFIRERIAEQGQPPSLAEISEAFGFASRSVARKHVLALTEAGFIEVNPHQARGIRLLNQPPRPELLDVPVLGRVAAGLPIGADAEVHSRLLLDPAIFTKAPDYLLRVQGDSMIEDGILDGDLVGVQRTPQAANGQIVVARLDGEVTIKRFERVGERVRLLPRNPAYQPIIVEADQDLAIEGVFCGLVRQGPGPT0014895_3090DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014895-lexA-K01356NANA
D1-35_01038624hypothetical proteinATGGGCGCCGTCGTTGCGCTGGACACGCTGTTCAATGGCGGCCAGGTCTGGAGGGGCCGGCCTGCGCCGCCGGCCGCCAGCCCGCAGCCCACCGGTCATGCTGCATTGGACGCGGCATTGCCCAGTGGTGGCTGGCCGGACGCGGCGTTGACGGAAATCCTCATCGGCGCGCCGGGCGTGGGCGAGTTGCAACTGGTGTGGCCGACCCTGGCGCGGCTGTCGGCGGCGGGGGAGCGCATCGTGCTGGTGGCGCCGCCGTTCGTGCCCTATCCCCAGGCCTGGCGAAATGCCGGGGTGGACCTGCGCCAGTTGTCGATCATCCAGGCCGACCCACGAGATGCCTTGTGGGCCACTGAGCAATGCCTGCGTTCGGGCAGTTGCGGCGCGGTGCTGTGCTGGCCCCGCCAAGCGGATGATCGGGCCTTGCGCCGCCTGCAGGTCGCGGCGGAAACCGGCCAGACCCTGGCGTTCGCCTGGCGCTCGATCCAGGAAGCGATCAACCCATCCCCGGCGGCCTTGCGCATCGCCATCGATGCTCGCCCCGCACAATTGCGGGTGCTCAAGTCCCGGGGTGGCCTGGCCCGTTCGGCGCCGATTGCGTTCACCACGCACACGGGGCATTGAMGAVVALDTLFNGGQVWRGRPAPPAASPQPTGHAALDAALPSGGWPDAALTEILIGAPGVGELQLVWPTLARLSAAGERIVLVAPPFVPYPQAWRNAGVDLRQLSIIQADPRDALWATEQCLRSGSCGAVLCWPRQADDRALRRLQVAAETGQTLAFAWRSIQEAINPSPAALRIAIDARPAQLRVLKSRGGLARSAPIAFTTHTGHNANANANANA
D1-35_010391422imuBProtein ImuBATGCGCTGGGTCTGTATCCTCTTCCCGCAATTGGCGCTGGACGCCGCGCTGCGCCAGCGCCCCGATCCCGACGAGCCCCTGGCGCTGTTGACCGGTCCGGCCCAGCGCCGGGTGTTGCAAGCGGTCAATGAGCCGGCGCGCGCCCTGGGCTTGCGGCCCGGCCAGACCATGACCGCCGCCCAGGCCCTGAACAAAGGGTTCGCCACGGCCGAATACGACGCGGCGCAGATCGAGCACTGGCAACAATTCCTGGCGGCCTGGGCCTACCGCTTCAGTTCCCAGGTCAGCGTGCATTACCCGCGCACTGTGCTGTTCGAGATCGAATCGAGCCTGGGGCTGTTCGGGCCCTGGCCGGTGTTCGAGGCTCGGTTGCGGGCCGAGCTGACTGAACTGGGTTTCCGTCATCGCATCGTCGCCGCCCCCAACCCAGTGGCGGCGCGGATGTTGGCCAATGCCCATGACGCCCTGGTCGTGCCCGATGGCGAAACCTTGCAAGCGTACCTGGCGCAAATGCCGGTGGACCGCATCGGCCTGGCCGCCGACGTCGCCACGGCACTGTCGCGCATGGGCCTGCGCCGCCTGGATCAGATCCGGGCCTTGCCTCGGCACACCCTGGCGCGGCGCTTCGAGGCCGATGTGCTCAAGCACCTCGACGCGCTGACGGGCAGTCGTACCCTGGCGCTGTCGTTCTACCTGCCTCCGGACCGTTTTGATGTGCGCATCGAACTCAATTACGACGTGCAGTCCCATCAGGCACTGCTGTTTCCGCTGCGCCGGTTGACCGGTGACCTGTCGGCTTTCCTGTGTGGGCGCGACAGCGGTGTGCAGCGTTTCGACTTGCATCTGGAACACGCCGGTCTGCCGGACACGGTGATCAAGGTCGGCCTGCTCAGCGCCGAGCGAGAGCCTTCGATGCTGTTCGAACTGGCCCGTGGTCGTCTTGAACAGGTACAGGTCGAGGCGCCAGTGCGCGGATTTCGCTTGTGTGCCGACAACCTGCCGAGCTTCGTGCCCCAGCGCCTGGAGTTGTTCGACGAGCGTCCTCAACAGTCCTTGCCCTGGGAACAACTGCGCGAACGGCTGCGGGCGCGCCTGGGGGATGACGCCGTGCTGGGGCTGGGATTCGGTGACGATCATCGACCCGAGTGCGCCTGGCAGATGACTCCCCAGCCGCGACAACAGGCATGCCCGCTGCGCGAGGAAGTCCAGCGTCCCGGCTGGCTGCTCGGCGAGCCCCAGGCGTTACCCGATGGCCAGGCGCGCATCCTCATGGGGCCGGAGCGCATCGAGTCCGGCTGGTGGGACGGAGCCGACGTGCGTCGCGATTATTACCTGATCGAAACCCGCGCCGGGCAACGCGGCTGGGCCTACCGACCGGTGGGCGAGGGCGGGCCGTTGTGGCTGCAGGGTTGGTTCGCATGAMRWVCILFPQLALDAALRQRPDPDEPLALLTGPAQRRVLQAVNEPARALGLRPGQTMTAAQALNKGFATAEYDAAQIEHWQQFLAAWAYRFSSQVSVHYPRTVLFEIESSLGLFGPWPVFEARLRAELTELGFRHRIVAAPNPVAARMLANAHDALVVPDGETLQAYLAQMPVDRIGLAADVATALSRMGLRRLDQIRALPRHTLARRFEADVLKHLDALTGSRTLALSFYLPPDRFDVRIELNYDVQSHQALLFPLRRLTGDLSAFLCGRDSGVQRFDLHLEHAGLPDTVIKVGLLSAEREPSMLFELARGRLEQVQVEAPVRGFRLCADNLPSFVPQRLELFDERPQQSLPWEQLRERLRARLGDDAVLGLGFGDDHRPECAWQMTPQPRQQACPLREEVQRPGWLLGEPQALPDGQARILMGPERIESGWWDGADVRRDYYLIETRAGQRGWAYRPVGEGGPLWLQGWFANANANANANA
D1-35_010403078dnaE2Error-prone DNA polymeraseATGAGCATCGAATACGCCGAGCTGCATTGCCTGTCGAACTTCAGTTTCCAGCGCGGCGCCTCCAGCGCCCTGGAATTGTGTCGCCGCGCCAAGGAGCAGGGTTATGCGGCCCTGGCGATTACCGATGAATGCACCCTGGCCGGGATCGTCCGGGCCTGGCAGGCGGCCAGGGAGCTTGGACTGCAACTGATTGTCGGCAGCGAAATCCAGGTCGAGGACGGCCCGAAACTGGTGCTGCTGGTGGAGAACCTCGAGGGCTACCAGACCTTGTGCCGGCTGATCACCCGCGCCCGGCGGCGTAGCGAGAAAGGCTATTATCGCATCGTTCGGGAAGACTTCGACGAACCTCTGCCGGGTTTGCTGGCGCTGTGGATCCCCGAAGGCAAGGCGCCCGAGGAGCAGGGGCGCTGGCTCCAACAGGTTTTCAACAGGCGATTATGGCTGGCCGTGCAGTTGCATTGCGGCCAGGACGATCGCCAGCGGCTGGCGGACTTGCTCGCGTTGGCCGGACACCTGGGCCTTCCCGCTATCGCCACGGGGGATGTGCACATGCATGTGCGTGGTCGGCGTGCCTTGCAAGACACCATGACCGCCATCCGTCACCACGTCAGCGTGGCCGAGGCCGGCCAGCGCCTGCACCCCAACGGCGAACGCCATCTGCGCAGCTTGCAGGCCCTGGCCGATCTCTACCCGCGGGCCTTGCTCGATGAAACCCTGAAGATCGCCCGGCGTTGTACGTTCGACCTCGGCCAGTTGCGCTACGAATACCCCCGCGAGCTGGTGCCTGATGGCCACGATCCGGCGTCCTGGCTGCGGGAATTGACCGAGCGCGGCCTGCGCGAGCGCTGGGTGAACGGCGTGACAGACAAGGTGCGCCTGCAGATCGACAAGGAATTGAAGCTGATCGCCGAACTGGGCTACGACAGCTACTTCCTCACCGTGCAGGACATCGTCAGTTTCGCCCGCAGCCGCCACATTCTCTGCCAGGGTCGAGGCTCGGCGGCCAACTCGGCGGTGTGCTACGCCCTGGGCATCACCGAAATCGATCCGAGCCGGACGGACATGTTGTTCGAACGCTTCCTGTCCCGCGAGCGCAATGAGCCGCCGGACATCGATGTCGATTTCGAACACGAGCGCCGCGAAGAAGTCTTGCAGTATGTGTTCCAGCGTTACGGCCGGCATCGCGCGGCGTTGACGGCGGTGGTCAGCAGTTACCACGGCGCCGGGGCGGTGCGCGATGTGGCCAAGGCCTTGGGCCTGCCGCCGGATCAGGTCAATGCGCTGGCCGATTGCTGCGGGCGCTGGAGCGATGAAGCGCCGCCCCTGGACCGCTTGCGCGAAGGTGGTTTCGACCCGGACAGCCCGGTGTTGCGCCGGGTGCTGGGCCTGACCCGGCAACTGATCGGCTTCCCCCGGCACCTGTCCCAACACCCAGGCGGTTTCGTGATTTCCCAGCAACCGCTGGACACTCTGGTGCCGGTGGAAAACGCCGCGATGGCTGAGCGCACCATTATCCAGTGGGACAAGGACGACCTCGATGCGGTCGGTTTGCTCAAGGTGGACATCCTCGCCCTGGGCATGCTCAGCGCGATCCGCCGCTGTTTCGACCTGATCGCGCATTACCGGGGTGTGCGGCATACATTGGCGTCGTTGCCCAAGGACGATCGAGCGACGTTCGAGATGATCAGCCGCGCCGACACCATCGGCGTGTTCCAGATCGAATCCCGGGCGCAGATGGCGATGTTGCCCCGGCTCAAGCCCAAGGAGTATTACGACCTGGTGATCGAGGTGGCGATCGTACGGCCGGGACCGATCCAGGGCGGCATGGTGCATCCGTATCTACGGCGACGAAATGGCGAAGAGCCCGTCACTTATCCTTCGGAAAAACTGAAAAAAGTACTGGGTCGCACCTTGGGCATTCCGTTGTTCCAGGAACAGGTAATGCAGATCGCCATTGTCGCGGCGGACTACACGCCCGGCGAGGCGGACCAGTTGCGTCGCTCGATGGCCGCGTGGAAACGCCACGGCGGCCTTGAGCCGCATCGCGAGCGCCTGGCGGAAGGTATGAAGAACAACGGCTACACGCCCGAGTTCGCCGCGCAGATCTTCGAGCAGATCAAGGGCTTCGGCAACTATGGCTTTCCGGAATCCCATGCCGCCAGTTTCGCCTTGCTGACCTACGCCAGCAGTTGGCTCAAATGTCACGAACCGGCGGCGTTCGCCTGCGCCCTGATCAACAGTTGGCCCATGGGTTTCTATAGCCCGGACCAGATCCTCCAGGATGCACGTCGGCATCACTTGCAGATCCGTGCGACGGACGTGCGCGCCAGCGACTGGGAATCCAGCCTCGAACCCCTGGAGGGTCGGCAGCCGGCGATCCGCATGGGCTTGCGCCTGATCAAGGGCTTTCGTGAAGACGATGCCCGCCGTATCGAGACGGCTCGCAGGCAGCGGCCTTTCAGCGATGTGGCGGACCTTGCCGAACGGGCTCGACTCGATGCCCGGGCCATGGAGCAACTGGCCGACGCCGGCGCGTTACGCGGTATGGCCGGCGATCGTCACCGTGCCCGCTGGGAAATTGCCGGGGTGCAAAAACAACTGGGCCTGTTCGCAGGTTTGCCCAGCGAGGAGGAACCGCCCGTGGTCTTGCCGACGCCCACGGTGGGGGAGAACCTGTTCGCCGACTACGCCACGTTGGGCACCACGCTGGGGCCGCATCCGCTGGCCTTGTTGCGTCCCGAATTGCGCGCCCGGCGCTGCCGCAGTTCGCGGGAATTGCAAGCGGTGGAACACGGTCGCAACGTCAGCGTCGCCGGGCTGGTCACCGGCCGCCAGCGCCCGGGCACGGCCAGCGGCGTGACCTTCGTCACTCTGGAAGATGAATTCGGCAACCTCAACGTGGTGGTCTGGCGCGACCTGGCCGAGCGTCAACGCAAGGTTCTGGTGGGTTCGCAATTGCTTCGGGTGGACGGGCGCTGGGAGAGTGTCGGCGAGGTCCGGCACCTGATCGCCGGGCGCCTGAGCGACCTGACTGGATTGCTGGCGGGCATCAATGTGCGCAGCCGCGATTTCCGCTGAMSIEYAELHCLSNFSFQRGASSALELCRRAKEQGYAALAITDECTLAGIVRAWQAARELGLQLIVGSEIQVEDGPKLVLLVENLEGYQTLCRLITRARRRSEKGYYRIVREDFDEPLPGLLALWIPEGKAPEEQGRWLQQVFNRRLWLAVQLHCGQDDRQRLADLLALAGHLGLPAIATGDVHMHVRGRRALQDTMTAIRHHVSVAEAGQRLHPNGERHLRSLQALADLYPRALLDETLKIARRCTFDLGQLRYEYPRELVPDGHDPASWLRELTERGLRERWVNGVTDKVRLQIDKELKLIAELGYDSYFLTVQDIVSFARSRHILCQGRGSAANSAVCYALGITEIDPSRTDMLFERFLSRERNEPPDIDVDFEHERREEVLQYVFQRYGRHRAALTAVVSSYHGAGAVRDVAKALGLPPDQVNALADCCGRWSDEAPPLDRLREGGFDPDSPVLRRVLGLTRQLIGFPRHLSQHPGGFVISQQPLDTLVPVENAAMAERTIIQWDKDDLDAVGLLKVDILALGMLSAIRRCFDLIAHYRGVRHTLASLPKDDRATFEMISRADTIGVFQIESRAQMAMLPRLKPKEYYDLVIEVAIVRPGPIQGGMVHPYLRRRNGEEPVTYPSEKLKKVLGRTLGIPLFQEQVMQIAIVAADYTPGEADQLRRSMAAWKRHGGLEPHRERLAEGMKNNGYTPEFAAQIFEQIKGFGNYGFPESHAASFALLTYASSWLKCHEPAAFACALINSWPMGFYSPDQILQDARRHHLQIRATDVRASDWESSLEPLEGRQPAIRMGLRLIKGFREDDARRIETARRQRPFSDVADLAERARLDARAMEQLADAGALRGMAGDRHRARWEIAGVQKQLGLFAGLPSEEEPPVVLPTPTVGENLFADYATLGTTLGPHPLALLRPELRARRCRSSRELQAVEHGRNVSVAGLVTGRQRPGTASGVTFVTLEDEFGNLNVVVWRDLAERQRKVLVGSQLLRVDGRWESVGEVRHLIAGRLSDLTGLLAGINVRSRDFRNANANANANA
D1-35_010412112rcsC_5Sensor histidine kinase RcsCATGAAGTTCTTATCCCAGAGTAACGGGTGTCCCGGTTGGGACGGTGAGATGGCCCGACGTATCCGGGCCTACGATTGGAGTCGCACCGATCTGGGCGCAATCGAGCACTGGTCCGCCAGCCTGCGCAGCGCTGTCCAGTTGATGCTGGCTTCGCCCTTGCCGATGGTCATGTTGTGGGGTCGCCAGGGCTTCATGATTTATAACGATGCCTATGCCGAGTTTGCCGGCGGCCGTCACCCGTACCTGTTGGGGCGCGCGGTGGAGCTGGGTTGGCCGGAAGTCGCTGAATTCAATCGCCATGTACTCGACGTGTGCCTGGCTGGCGGCACCTTGTCCTACCGCAGCAAGGAACTGGTATTGCTGCGCGACGGCAAGCCCGAAGACGTCTGGATGGACCTCTATTACAGCCCGGTGCCCGACGATGATCATTCGCCGGCTGGCGTCCTGGCGATCGTCGTGGAAACCACCGAACTGGTGCTCAGCGAGCGGGCCCGACAAGAGGCGGAACGCAGCTACCGTGCGGTCAACGAGCGTATTCAGTTGGCGCTTTCGGCCGGGCCGTTGCTGGGCTCGTTTGTCTGGGATATCCCGGCCGACACCCTGTCCGGCGACGAGCGTTTCGCCCGTACGTTCGGCTATCCGCCCGAATGTTCGTTGGATGCACTGCCCATCGAGATCGCTCGCCAGCGCATCCATCCGGATGATCTTGCCGACGTGGAGCAACGTGTCGACCTGACGGTGCGCACGGGCGCGCCCTACAGCGCTGAATACCGTGTGCGCCGTGGCGAGGACGAATACCTCTGGGTGCTGGCCAGCGGCCGCTGCGAGTTCGATGCGTTGGGCAAGCCCCTGCGTTTTCCCGGTGTGCTGATCGACATCAATGAGCGCAAGACTGCCGAAGCGTCGTTGCTCAAGTTCACCCGCGATCTGGAACAACGGGTCGCCGATGAAGTACAGGCGCGGCTGGCGGCTGAAGAACAGTTGCGCCAATCGCAGAAGCTCGAGGCCATCGGCGGGCTTACGGGGGGCGTGGCCCACGACTTCAACAATCTGCTCCAGGTGATCGGTGGAAACCTGCATTTGCTGGCTCGCCACGAACCCGACAATCCCAACGTGCAACGGCGGGTCGGGGCGTCCATCGAAGCCGTGGAGCGAGGCGCCAAGCTGTCATCGCAACTATTGGCTTTTGCCCGGCGCCAGCCCTTGTCCCCGGCCGTCTACAACCCCCGGCGCATCTACGATGGCCTGGGCGAGTTGTTGCAACGGGCACTGGGGGAAACCATCCGGATCGACGTGGCGTTGCCGGATGAGCCTTGGTGCATCCATGTCGACCGCAACCAATTGGAAAACGCCCTGTTGAACCTGGCGATCAACGCCCGCGATGCCATGGGCGGCGAAGGGACCATCTGCCTGATCGGCGAGAACATCGCACTGGATGAGTCATCATGCGCCGGTAAAGGTGTTGCGGCTGGCGATTACGTACGGCTGTCGGTGACCGATTGTGGCGCGGGCATGGCGCCTGAAGTCCTCAAACAGGTTTTCGAGCCGTTCTTTACCACCAAGACCGACGGCCACGGTACCGGACTCGGCTTGAGCATGGTGTTCGGGTTCGTCAAGCAGAGCGGCGGCCATATCGAGATTTCCAGTCATCCGGGAGAAGGCACCCAGGTGCACATGTACTTCCCGCGCAGCCATAGGCCCGAGTCGGAGGAGCAGACGCACCACCGCACGAATCAGCCGGGCTTGCAGGAAACTGTCCTGGTGGTCGAGGACAACGATGACGTGCGCGGAGCCTCGGTGGAATTGCTCGAGCTGTCGGGTTATCGGACCCTGACCGCGGCGAATGGCGACGAAGCCATGAAGCTGTTGCTGGAGGGCACCTCGGTCGACCTGATCTTCACCGACGTGGTCATGCCCGGGCTGATCAAGAGTTCCGACCTGGCCGCCTGGGCCAAGGTCCAGTCCCCGCCGGTGCCAGTGTTGTTCACGTCGGGGCACACCCGCGACATCATCTCGCGCAATCATCAGTTGAGCCCGGACACCCATCTGCTGAGCAAACCCTATAGCCCGGATGCGCTGACCCGGATGGTCAGGTCGGTACTGGGCGGCTGAMKFLSQSNGCPGWDGEMARRIRAYDWSRTDLGAIEHWSASLRSAVQLMLASPLPMVMLWGRQGFMIYNDAYAEFAGGRHPYLLGRAVELGWPEVAEFNRHVLDVCLAGGTLSYRSKELVLLRDGKPEDVWMDLYYSPVPDDDHSPAGVLAIVVETTELVLSERARQEAERSYRAVNERIQLALSAGPLLGSFVWDIPADTLSGDERFARTFGYPPECSLDALPIEIARQRIHPDDLADVEQRVDLTVRTGAPYSAEYRVRRGEDEYLWVLASGRCEFDALGKPLRFPGVLIDINERKTAEASLLKFTRDLEQRVADEVQARLAAEEQLRQSQKLEAIGGLTGGVAHDFNNLLQVIGGNLHLLARHEPDNPNVQRRVGASIEAVERGAKLSSQLLAFARRQPLSPAVYNPRRIYDGLGELLQRALGETIRIDVALPDEPWCIHVDRNQLENALLNLAINARDAMGGEGTICLIGENIALDESSCAGKGVAAGDYVRLSVTDCGAGMAPEVLKQVFEPFFTTKTDGHGTGLGLSMVFGFVKQSGGHIEISSHPGEGTQVHMYFPRSHRPESEEQTHHRTNQPGLQETVLVVEDNDDVRGASVELLELSGYRTLTAANGDEAMKLLLEGTSVDLIFTDVVMPGLIKSSDLAAWAKVQSPPVPVLFTSGHTRDIISRNHQLSPDTHLLSKPYSPDALTRMVRSVLGGNANANANANA
D1-35_01042267hypothetical proteinATGAGCGATCCTGCAAATACCCAGCAACAAGGCCAGACGCAGACCCAGTCTTCGCGTAACGATCCGGCCGTCGATCCCCAAGCGCCGGGCAACCCGCCCGCCGGTCCGGCTGGAACGCACCAGGCTCACAGCGCTGCCAGCGAGGTCGATCAGAAACAACATCACCAGGACAACGACAACACCTACAGCCCTGGCTTCAAGCCAGAGCCGGATCGACCTGGCCCCGGCGACAAGACCGACGCCGACATCGATACCGCCGACAGCTAGMSDPANTQQQGQTQTQSSRNDPAVDPQAPGNPPAGPAGTHQAHSAASEVDQKQHHQDNDNTYSPGFKPEPDRPGPGDKTDADIDTADSNANANANANA
D1-35_01043522hypothetical proteinATGGACAGATTTACCCTGCGTCAACTCGGCCTGGCAGTTGCCTTGAGTACCAGCATGGGCATGGCATGGGCCGCGACGTCCAACGACTTTGTCGATAACGCGGCGGCCAATGGCATAGCGGAAATCGAAACCAGCAAGCTGGCGCTGCAAAAAAGCCAATCGGCGGACATCAAGGAGTTCGCCAACAAGATGATCACCGACCACACCAAAGCCAACGAAGAGCTGAAGGCGCTGGCGCAAAAACACGACATCGAAGTACCGGATGACACCACGCTGATGAAAAAGGCCAAGGCCAAGATTCTCGATGTGCGTGACGAGTCCTTCGATCCAGCCTTCGCCAACAACCAGGTGATGGCCCATGAAGAAACCATCGCTCTGTTCAAGAAGGAAGCCGAGACCGTCACCGACGACAAGAAGCCCGGCAATACCGAACTCAAGGCGTTTGCCCAGAAAATGCTGCCCGACCTGCAGCACCACTTGGAAATGGCCAAGAAGCTCCAGGCCGCGCATCCTAGTAAATAAMDRFTLRQLGLAVALSTSMGMAWAATSNDFVDNAAANGIAEIETSKLALQKSQSADIKEFANKMITDHTKANEELKALAQKHDIEVPDDTTLMKKAKAKILDVRDESFDPAFANNQVMAHEETIALFKKEAETVTDDKKPGNTELKAFAQKMLPDLQHHLEMAKKLQAAHPSKNANANANANA
D1-35_01044228hypothetical proteinATGCCGGTGTCCCATGATCTTTGCCAGGATCTTGATTGCACAAAAGACCACATCCAGCAGAAGCGTAGCGAGGATCCGACGCTCGACGAATTGCTCAAGAAATATGCGCGAATCGACGCCGAGGTCGTGAATGCCGAGAAGCCGCCCGTCACGCTGTCCGATCCTGCTTTGGAGACACTCAAGAAAGAACGCTTGCAGACCAAGGACAAGATCGCCGCGCGGATATAGMPVSHDLCQDLDCTKDHIQQKRSEDPTLDELLKKYARIDAEVVNAEKPPVTLSDPALETLKKERLQTKDKIAARINANANANANA
D1-35_01045924hdfR_3HTH-type transcriptional regulator HdfRATGGTATCGGATAGCTGGGCCAGCTCTTACAATGCCCGCTCCACCCGCTTCGGCCCGACCATGGACATCGACCTCGCCCGTACCTTCCTGGAAATCGTCCGCCACGGCAGCCTCGCCGCTGCGGCGCAAAAACTGCACGTCACCCAGACGGCAATAACCGCCCGGGTCCAAAAGCTCGAAAGCCAGCTCGGCTGCGCGCTGTTCGTGCGTAACCGTGCCGGCGCGCGACTGACCGCCGATGGCGAAGCCTTCGTGGTCTACGCCAACCAGCTCGTACAGACGTGGGAGGCCGCCCGCCGGGACCTGCCGCTGCCCGAGGGTTATCGCAATGTCTTGCATCTCGGTGGCGAGGTCAGTTTGTGCAATCCCCTTATGCTTGCCTGGGCGGGGGAGCTGCGCCAGAAAATCCCCGGCCATGCCCTGCGCATGGACATCCGCGACGGTGAAAAACTCTTGCAGCAACTGGAGCTGGGTCTGCTGGATGCGGCGGTGGTCTATCAGCCTGAGTACTGGCCGCGATTGCAGGTGGAGCAGTTGCTGGAGGAAAAACTCATCCTGGTGCGCCTGGTCGCTCGCCCCGAGCCCTACGTGTACATCGACTGGAGCGCGGACTTCCGACGCCAGCACGACACGGCGCTTCCGGACAAGGCCAAGGCCGCCGCGACCTTCAATCTCGGTCCACTGGCGTTGCAATATATTCTGGAAAACGGCGGTAGCGGCTACTTCCGCACCCGGGTCGTGCAGAGCTACCTGGACAGCGGCATTCTGGAGCGGGTGCCCAAGGCGCCGGAGTTCAACTACCCGACCTACCTGGTGTATTCCAGGGACCGCGATTCGGCGGCATTGCAGCAGGCGTTCGAGGTGCTGCGGGGGATCGTCAAGGCTGGCAGCGACTGGTCCCAGCGTTGGGATCCGCTGGGCTGAMVSDSWASSYNARSTRFGPTMDIDLARTFLEIVRHGSLAAAAQKLHVTQTAITARVQKLESQLGCALFVRNRAGARLTADGEAFVVYANQLVQTWEAARRDLPLPEGYRNVLHLGGEVSLCNPLMLAWAGELRQKIPGHALRMDIRDGEKLLQQLELGLLDAAVVYQPEYWPRLQVEQLLEEKLILVRLVARPEPYVYIDWSADFRRQHDTALPDKAKAAATFNLGPLALQYILENGGSGYFRTRVVQSYLDSGILERVPKAPEFNYPTYLVYSRDRDSAALQQAFEVLRGIVKAGSDWSQRWDPLGPGPT0015580_246DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLUM_CONTROLMOTILITY-FLAGELLUM_REGULATION,PGPT0015580-hdfR-K23773NANA
D1-35_01046318hypothetical proteinATGACCTCCGTAGCCGACGCAGTAAAAGCCATGCAAGCCAAGTTCAACCCAGCCGCCGCTGCCGGCCTGGACCTGGTATTTGGTTTCAATATCACTGACGAAGACAAGCAGTACGCCCTGATCGTCAAGGATGGCACCTGCGATATCCAGGAAGGCGCGAACCCCGACGCCAACTGCACGCTGGTCCTGGATAGCCAAACCCTCAAGGACATCGTCAGCGGCGAAACCGACGGCATGCAAGCCTTCATGGGCGGCAAGCTGCGCGTTGAAGGCGACATGATGCTGTCGATGAAACTGTCCGAGCTGTTCCCGTCCTGAMTSVADAVKAMQAKFNPAAAAGLDLVFGFNITDEDKQYALIVKDGTCDIQEGANPDANCTLVLDSQTLKDIVSGETDGMQAFMGGKLRVEGDMMLSMKLSELFPSNANANANANA
D1-35_01047711hypothetical proteinGTGGGCAGCATTTATCTGATACGACATGGCCAGGCCTCCTTTGGTGCGGATGACTACGATGTCCTTTCGCCCAATGGCATACGTCAGGCCCAAGTGCTCGGCGGCCACCTGGCGGAGCTCGGCGTCGTGTTCGATCGCTGCCTCTCGGGCGACCTGCGTCGCCAGCAGGACACCGCTATCGGCACGCTGGGCGCGATGTCCGCTGTCGGGCTGCCGGTTCCCGAGGTGGAAATCGACGCGGCGTTCAACGAATTCGATGCCGACGCGGTGATCCGCGCGCTGCTCCCGGACATGCTGCCCCAGGAGCCCGAAGCGCTGCATATCTTGCGCAACGCGGCGCAGAACCGCGGAGAGTTCCAGCGCATTTTTGCCTTGATCGTCGAACGCTGGCTCAGCGGCCAGTATGACCCGCCCGGGCTGGAGAGCTGGCTGGGTTTTGTCGAGCGGGTCCAGGCCGGCCTGCACCGCATCCTCGAAAAGGCCGACAAGACCCACAAGATCGCCGTGTTCACCTCCGGCGGGACCATCACCGCCCTGCTTCACCTGATCACCCAGATGCCTGCCCGGCAAGCTTTCGAGCTGAACTGGCAGATCGTCAACACCTCGCTCAACCAACTGAAATTCAGAGGCCGCGAGGTGGCCCTGGCTTCCTTCAACAGTCATGCGCATCTGCAACTGCTGAAGACCCCGGACCTCATCACCTTCCGCTGAMGSIYLIRHGQASFGADDYDVLSPNGIRQAQVLGGHLAELGVVFDRCLSGDLRRQQDTAIGTLGAMSAVGLPVPEVEIDAAFNEFDADAVIRALLPDMLPQEPEALHILRNAAQNRGEFQRIFALIVERWLSGQYDPPGLESWLGFVERVQAGLHRILEKADKTHKIAVFTSGGTITALLHLITQMPARQAFELNWQIVNTSLNQLKFRGREVALASFNSHAHLQLLKTPDLITFRNANANANANA
D1-35_010481032sohBCOG0616putative protease SohBGTGGAGTTTTTTGTCGAATACGCCGGTTTTCTGGCCAAGACGGTGACGCTGGTGATCGCCATTCTGGTGGTCATGGCCAGTTTTGCTGCGTTGCGCAGCAAGGGACGGCGCAAGTCGGCCGGGCAGTTGCAAGTCAGCAAGCTCAACGATTTCTACAAGGGCTTGCGTGAGCGTCTGGAGCAGACGCTGCTGGACAAGGACCAGCTCAAGGCACTGCGCAAGAGCGAAGGCAAGGCTGAAAAAGCCGGGAAGAAACAGAAAGACAAACCGGCGGCCAAGCCCCGGGTATTCGTGCTGGACTTCGATGGCGATATCAAGGCTTCCGCCACCGAGAGCCTGCGTCACGAAATTACCGCGCTGCTGACCCTGGCGACCCCGAAGGACGAAGTGGTCCTGCGCCTGGAAAGCGGTGGCGGCATGGTCCACAGCTACGGCCTGGCCTCGTCGCAACTGGCGCGGATCCGTCAGGCCGGCGTGCCGCTGACGGTGTGCATCGACAAGGTTGCAGCCAGCGGCGGCTACATGATGGCGTGCATCGGCGAGAAGATCATCAGCGCCCCGTTCGCGATCCTCGGCTCCATCGGCGTCGTGGCCCAATTGCCCAACGTCAATCGCCTGCTGAAGAAGCACGACATCGATTTCGAAGTGCTGACCGCCGGCGAGTACAAACGCACATTGACGGTGTTTGGTGAGAATACCGAGAAGGGCCGGGAAAAATTCCAGGAAGACCTGGACATCACCCATGAGTTGTTCAAGAACTTCGTGTCCAACTACCGCCCGCAGCTGGCTATCGATGAAGTGGCAACCGGCGAGGTCTGGCTCGGTGTCGCCGCGCTGGAGAAACGCCTGGTGGACGAGCTCAAGACCAGCGATGAATACCTGGCCGAACGGGCCAAGGGTGCCGAGCTCTATCACCTGCACTATGCCGAACGCAAAAGCCTGCAGGAGCGCATCGGCATGGCGGCCAGCGGTTCGGTGGACCGGGTGCTGCTGAACTGGTGGAGCCGCCTGACGCAGCAGCGGTTCTGGTAGMEFFVEYAGFLAKTVTLVIAILVVMASFAALRSKGRRKSAGQLQVSKLNDFYKGLRERLEQTLLDKDQLKALRKSEGKAEKAGKKQKDKPAAKPRVFVLDFDGDIKASATESLRHEITALLTLATPKDEVVLRLESGGGMVHSYGLASSQLARIRQAGVPLTVCIDKVAASGGYMMACIGEKIISAPFAILGSIGVVAQLPNVNRLLKKHDIDFEVLTAGEYKRTLTVFGENTEKGREKFQEDLDITHELFKNFVSNYRPQLAIDEVATGEVWLGVAALEKRLVDELKTSDEYLAERAKGAELYHLHYAERKSLQERIGMAASGSVDRVLLNWWSRLTQQRFWNANANANANA
D1-35_01049495hypothetical proteinATGCAGCGAATCATTAAGAACAACGAGGTCATCGACGAAACCTGGCACTTGCTGCCCAAGGACGCGACCTTCGATGGCATTTCCAACTGCGACGACCTGATCGTGCCCCTCGCCCTTTGGCGCGACCATGCCCATGCGCTCAAAGCCCGTGATGGCGGCCTGGGCGTGTGGCTGGATGCCGACGAAGAAGCGGAAGAAATCGGCGATGACGCCAATCAGCTCCAGGTCATCGCACTGAACTTCCCGGCCTTCACCGACGGGCGCAGCTACTCCAACGCGCGCCTGTTGCGCGAACGGTATGGCTTCAAGGGCGAATTGCGCGCCATTGGCGATGTGCTGCGCGACCAGTTGTTCTACATGCGCCGCTGCGGTTTTGACGCCTTTGCCCTGCGTGCCGACAAAGACCCCTATGAAGCCCTCGAAAGCCTCAAGGACTTTTCGGTGACCTACCAGGCGGCCACTGACGAACCGTTGCCACTGTTTCGCCGCCGCTGAMQRIIKNNEVIDETWHLLPKDATFDGISNCDDLIVPLALWRDHAHALKARDGGLGVWLDADEEAEEIGDDANQLQVIALNFPAFTDGRSYSNARLLRERYGFKGELRAIGDVLRDQLFYMRRCGFDAFALRADKDPYEALESLKDFSVTYQAATDEPLPLFRRRPGPT0002785_230DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002785-cysH-K00390NANA
D1-35_010501659sir_1COG0155Sulfite reductase [ferredoxin]ATGTACGTATATGACGAGTACGATCAGCGGATCATCGAGGACCGCGTCAAGCAGTTCCGTGATCAGACCCGACGCTATCTGGCAGGCGAGCTGAGCGAAGAAGAATTCCGCCCTCTGCGCTTGCAGAATGGCCTGTATATCCAGCGCTTCGCCCCGATGCTGCGCGTGGCGGTGCCTTATGGCCAACTGACCGCGCGCCAGGCTCGCAAGCTGGCCCAGATTGCCCGCGACTATGACAAGGGCTACGCCCACATCAGTACCCGGCAGAACGTCCAGTACAACTGGCCTGCCCTGGAAGACGTGCCCGAGATCCTGGCGGAACTGGCCACCGTGCAGATGCACGCGATCCAGACCAGCGGCAACTGCCTGCGCAACGTGACCACCGACCAGTTTGCCGGCGTCGCGGCCGACGAACTGATCGACCCGCGCCCATGGTGCGAGATCGTTCGCCAATGGACCACGTTCCACCCGGAATTCGCCTACCTGCCGCGCAAGTTCAAGATCGCCATCAATGGCTCGACCTCGGACCGCGCGGCCATCGAAGTCCATGACATCGGCCTCGAAGCGGTCTACAACGCCGCCGGCGAGCTGGGCTTCCGCGTGCTGGTGGGCGGCGGCCTGGGCCGTACGCCGGTGGTCGGCGCGTTCATCAACGAGTTCCTGCCATGGCAGGACCTGCTGAGCTACCTCGACGCCATCCTGCGGGTGTACAACCGCTACGGGCGTCGCGACAACAAATACAAGGCGCGGATCAAGATCCTGGTCAAGGCCCTGACGCCTGAAGTGTTCGCCGAAAAGGTCGAGGCCGAAATGGTCCACCTGCGTGGCGGCCAGACCACCCTGACCGAAGCCGAAGTCCATCGCGTGGCCAAGCATTTCGTCGACCCGGCCTACAAGGCCCTGGACAACCAGGACGCCGAACTGGCCGCCCTCGACAAGGAACACCCGGGCTTCGCGCGCTGGCGGACACGCAACACCCTCAAGCACAAGAAACCGGGCTACGTCGCAGTGACCCTGTCGCTGAAGCCGACCGGTGTCGCACCGGGCGATATCACCGACAAGCAGATGGACGCCGTGGCCGACCTGGCCGACCGCTACAGCTTTGGCCAGCTGCGCACGTCCCACGAGCAGAACATCATCCTGGCGGACGTTGAACAGAGCCAGTTGTTCACCCTGTGGGGCGAGCTGCGCGAGCAAGGCTTCGCCACGCCGAACATCGGCCTGCTGACCGACATGATCTGCTGCCCGGGCGGGGATTTCTGCTCGCTGGCGAACGCCAAGTCGATTCCGATCGCCGAGTCGATCCAGCGCCGCTTCGACGACCTCGACTACCTGTTCGACATCGGCGAGCTGGACCTGAACATTTCCGGCTGCATGAATGCCTGCGGTCACCACCACGTCGGTCACATCGGCATCCTCGGCGTGGACAAGAAAGGCGAGGAGTTTTACCAAGTCTCCCTCGGTGGCAGCGGCAGCCGTGACGCCAGCCTGGGCAAGATCCTCGGCCCGTCGTTTGCCCAGGATGACATGCCGGATGTGATCGAGAAGCTGATCGACGTGTACATCGAACAACGTACCGAAGACGAGCGTTTCATCGACACTTATCAACGTATCGGCATCGACCTCTTCAAGGAACGCGTCTATGCAGCGAATCATTAAMYVYDEYDQRIIEDRVKQFRDQTRRYLAGELSEEEFRPLRLQNGLYIQRFAPMLRVAVPYGQLTARQARKLAQIARDYDKGYAHISTRQNVQYNWPALEDVPEILAELATVQMHAIQTSGNCLRNVTTDQFAGVAADELIDPRPWCEIVRQWTTFHPEFAYLPRKFKIAINGSTSDRAAIEVHDIGLEAVYNAAGELGFRVLVGGGLGRTPVVGAFINEFLPWQDLLSYLDAILRVYNRYGRRDNKYKARIKILVKALTPEVFAEKVEAEMVHLRGGQTTLTEAEVHRVAKHFVDPAYKALDNQDAELAALDKEHPGFARWRTRNTLKHKKPGYVAVTLSLKPTGVAPGDITDKQMDAVADLADRYSFGQLRTSHEQNIILADVEQSQLFTLWGELREQGFATPNIGLLTDMICCPGGDFCSLANAKSIPIAESIQRRFDDLDYLFDIGELDLNISGCMNACGHHHVGHIGILGVDKKGEEFYQVSLGGSGSRDASLGKILGPSFAQDDMPDVIEKLIDVYIEQRTEDERFIDTYQRIGIDLFKERVYAANHPGPT0002790_2020DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002790-cysI-K00381NANA
D1-35_01051114hypothetical proteinATGAGTAATCCGACCAAAGCAAGGAAAAGCGACAGTACCGTTGATGCCTGGGCCATCCTGTTCCTGATTATCCTGGTGGTGGGCACGGCGGTGTTCTGGGTCAGTCATCAATAAMSNPTKARKSDSTVDAWAILFLIILVVGTAVFWVSHQNANANANANA
D1-35_01052219hypothetical proteinATGGACGATCCAGTCGACAACAAGCCGCCGACCCTGTTGCAGATGATGCACAGCGTGCTGGCCGCCGCTTTCGGCGTGCAGAGCGGCAAGAACCGCGCCCGGGATTTCACCCACGGCAAGCCGAGTCACTTCGTGATACTGGGAATCGCGTTCACGGTGATCTTCGCCTTGACCCTGTTTGGCATCGTCAAGCTGGTGGTGCACCTGGCGGGGTTGTGAMDDPVDNKPPTLLQMMHSVLAAAFGVQSGKNRARDFTHGKPSHFVILGIAFTVIFALTLFGIVKLVVHLAGLNANANANANA
D1-35_010533711metHCOG0646Methionine synthaseATGTCTGATCGCAGCGCTCGCCTTTATCTTCTCCAGCAGGCCCTCAAGGAACGCATCCTGATCCTCGACGGCGGCATGGGCACGATGATCCAGAGCTACAAGCTGGAAGAGCAGGACTACCGTGGCAAACGCTTCGCCGACTGGCCGAGCGACGTCAAGGGCAACAACGACTTGCTCGTGCTGACCCGCCCCGACGTGATTGGCGCTATCGAAAAGGCCTACCTGGATGCCGGCGCCGACATCCTCGAAACCAACACCTTCAACGCCACCCAGGTGTCCCAGGCCGACTACGGCATGCAGGGCCTGGCCTACGAGCTGAACCTGGAAGGCGCGCGCCTGGCCCGCAAGGTGGCCGACGCCAAGACCCTCGAAACCCCGGACAAGCCGCGCTTCGTCGCCGGCGTGCTCGGCCCGACCAGCCGCACCTGCTCGCTGTCGCCGGACGTGAACAACCCCGGCTACCGCAACGTGACCTTCGACGAGCTGGTGGAGAACTACACCGAAGCCACCAAGGGCCTGATCGAAGGCGGCGCCGACCTGATCCTGATCGAGACCATTTTCGACACGCTCAATGCCAAGGCCGCGATCTTCGCCGTGCAAGGCGTCTATGAAGAGCTGGGCATCGAGTTGCCGATCATGATTTCCGGCACCATCACCGACGCCTCCGGCCGCACCCTCTCCGGCCAGACCACCGAAGCCTTCTGGAACTCGGTGGCCCACGCCAAGCCGATCTCCGTCGGCCTGAACTGCGCCCTCGGCGCCAGCGAACTGCGCCCGTACCTGGAAGAACTGTCGAACAAGGCCAGCACCCATGTGTCGGCGCACCCCAACGCCGGCCTGCCCAACGAATTCGGCGAATACGACGAGCTGCCGGTGGACACCGCCAAGGTCATTGAAGAATTTGCCCAGAGCGGCTTCCTCAATATCGTCGGCGGTTGCTGCGGCACCACCCCGGCACACATCGAAGCTATCGCCAAGGCCGTCGCTGGCTATGCTCCGCGGCAGATTCCCGAGATTCCCCGGGCGTGCCGCCTGTCGGGCCTGGAACCGTTCACCATCGATCGCAGCTCGTTGTTCGTCAACGTCGGCGAGCGGACCAACATCACCGGCTCCGCCAAATTCGCCCGGCTGATCCGCGAAGACAACTACACCGAAGCCCTGGAAGTGGCGCTGCAACAGGTCGAGGCCGGCGCCCAGGTGATCGACATCAACATGGACGAGGGCATGCTCGATTCGAAGAAGGCCATGGTGACCTTCCTCAATCTGATCGCCGGCGAACCGGATATTTCCCGCGTGCCGATCATGATCGACTCCTCCAAGTGGGAAGTCATCGAAGCTGGCCTCAAGTGCATCCAGGGCAAGGGCATCGTCAACTCCATCAGCATGAAGGAAGGCGTCGAGCAGTTCATCCATCACGCCAAGCTGTGCAAGCGCTACGGCGCGGCCGTGGTGGTGATGGCCTTCGACGAAGCCGGCCAGGCCGACACCGAGGCGCGCAAGAAGGAAATCTGCAAGCGCTCCTACGATATCCTGGTCAACGAGGTTGGCTTCCCGCCGGAAGACATCATCTTCGACCCGAACATCTTCGCCGTCGCCACCGGTATCGAAGAGCACAACAACTATGCCGTGGACTTCATCAACGCCTGCGCCTACATCCGCGACGAACTGCCCTACGCGCTGACCTCCGGTGGCGTGTCCAACGTGTCGTTCTCGTTCCGTGGCAACAACCCGGTGCGCGAGGCGATCCACTCGGTGTTCCTGCTGCACGCGATCCGCGCGGGCCTGACCATGGGCATCGTCAACGCCGGCCAACTGGAGATCTACGACCAGATCCCGGTGGAACTGCGCGACGCGGTGGAAGACGTGATCCTCAACCGTACACCCGAAGGCACCGACGCCCTCCTCGCGATCGCCGACAAGTACAAGGGCGACGGCAGCGTCAAGGAAGCGGAAACCGAAGAATGGCGCGGCTGGGAAGTGAACAAGCGCCTGGAGCACGCGCTGGTCAAGGGCATCACCACCCACATCGTCGAGGACACCGAGGAATCGCGCCTGTCTTTCGCCCGCCCGATCGAAGTGATCGAAGGCCCGCTGATGGCCGGCATGAACATCGTCGGCGACCTGTTTGGCGCCGGCAAGATGTTCCTGCCCCAGGTGGTCAAGTCCGCCCGCGTGATGAAGCAGGCCGTGGCGCACCTGATTCCGTTCATCGAAGCGGAAAAAGGCGACAAGCCAGAGGCCAAGGGCAAGATCCTGATGGCGACGGTCAAGGGCGACGTCCACGACATCGGCAAGAACATCGTCGGCGTGGTGCTGGGGTGCAACGGCTACGACGTGGTCGACCTCGGCGTGATGGTGCCGGCGGAGAAAATCCTTCAGGTGGCCAAAGATGAGAAGTGCGACATCATCGGCCTGTCCGGCCTGATCACACCGTCCCTGGACGAAATGGTGCATGTGGCGCGGGAGATGCAGCGCCAGGACTTCCACCTGCCGCTGATGATCGGTGGCGCCACGACCTCCAAGGCCCACACCGCCGTGAAGATCGAACCCAAGTACAGCAATGATGCAGTGATTTACGTCACCGACGCCTCCCGCGCCGTGGGCGTGGCGACGCAGTTGCTGTCCAAGGAGCTCAAGCCGGCGTTCGTCGAGAAGACCCGCCTGGACTACATAGACGTGCGCGAGCGCACCTCCAACCGCAGCGCCCGCACCGAGCGCCTGAGCTACCCGGCGGCCGTGGCGAAGAAGCCGCAGTTCGACTGGAGCAGCTACCAGCCGGTCAAGCCGACTTTCACCGGCGCACGGGTGCTGGACGATATCGACCTGAACGTCCTGGCCGAGTACATCGACTGGACGCCGTTTTTCATTTCCTGGGACCTGGCCGGCAAATACCCGCGCATCCTCACCGACGAAGTGGTCGGCGAAGCGGCCACCGCGCTGTACGCCGATGCCCGGGCGATGCTGCGCAAGCTGATCGACGAGAAACTTATCAGCGCTCGCGCGGTGTTTGGCTTCTGGCCGGCCAACCAGGTGCATGACGACGACCTGGAAGTCTACGATGATCAAGGCAAGCCACTGGCGCGCCTGCATCACCTGCGCCAGCAGATCATCAAGACCGACGGCAAGCCGAACTTCTCCCTGGCCGACTTCGTCGCACCCAAGGACAGCGGCGTGACCGACTACGTCGGTGGCTTCATCACCACCGCCGGCATCGGTGCCGAAGAAGTCGCCAAGGCCTACCAGAACGCCGGCGACGACTACAACTCGATCATGGTCAAGGCCCTGGCCGACCGCCTGGCCGAAGCTTGCGCCGAATGGCTGCACCAGCAGGTGCGCAAGGAGTATTGGGGCTATGCCAAGGATGAGCGCCTGGACAACGAGGCGCTGATCAAGGAGCAATACACCGGCATCCGCCCTGCCCCCGGTTACCCGGCCTGCCCGGATCACACCGAGAAAGCCACCCTGTTCCGCCTGCTCGACCCCGAGGCCAGCGAACTGAAAGCCGGACGCAGCGGCGTGTTCCTCACCGAACACTACGCGATGTTCCCGGCGGCGGCGGTCAGCGGCTGGTACTTCGCCCATCCCCAGGCGCAGTATTTCGCCGTGGGCAAGATCGACAAGGACCAGGTCCAGAGCTACACCGCGCGCAAGGGCCAGGACCTGAGCGTGACCGAGCGCTGGCTGGCGCCGAACCTGGGCTACGACAACTGAMSDRSARLYLLQQALKERILILDGGMGTMIQSYKLEEQDYRGKRFADWPSDVKGNNDLLVLTRPDVIGAIEKAYLDAGADILETNTFNATQVSQADYGMQGLAYELNLEGARLARKVADAKTLETPDKPRFVAGVLGPTSRTCSLSPDVNNPGYRNVTFDELVENYTEATKGLIEGGADLILIETIFDTLNAKAAIFAVQGVYEELGIELPIMISGTITDASGRTLSGQTTEAFWNSVAHAKPISVGLNCALGASELRPYLEELSNKASTHVSAHPNAGLPNEFGEYDELPVDTAKVIEEFAQSGFLNIVGGCCGTTPAHIEAIAKAVAGYAPRQIPEIPRACRLSGLEPFTIDRSSLFVNVGERTNITGSAKFARLIREDNYTEALEVALQQVEAGAQVIDINMDEGMLDSKKAMVTFLNLIAGEPDISRVPIMIDSSKWEVIEAGLKCIQGKGIVNSISMKEGVEQFIHHAKLCKRYGAAVVVMAFDEAGQADTEARKKEICKRSYDILVNEVGFPPEDIIFDPNIFAVATGIEEHNNYAVDFINACAYIRDELPYALTSGGVSNVSFSFRGNNPVREAIHSVFLLHAIRAGLTMGIVNAGQLEIYDQIPVELRDAVEDVILNRTPEGTDALLAIADKYKGDGSVKEAETEEWRGWEVNKRLEHALVKGITTHIVEDTEESRLSFARPIEVIEGPLMAGMNIVGDLFGAGKMFLPQVVKSARVMKQAVAHLIPFIEAEKGDKPEAKGKILMATVKGDVHDIGKNIVGVVLGCNGYDVVDLGVMVPAEKILQVAKDEKCDIIGLSGLITPSLDEMVHVAREMQRQDFHLPLMIGGATTSKAHTAVKIEPKYSNDAVIYVTDASRAVGVATQLLSKELKPAFVEKTRLDYIDVRERTSNRSARTERLSYPAAVAKKPQFDWSSYQPVKPTFTGARVLDDIDLNVLAEYIDWTPFFISWDLAGKYPRILTDEVVGEAATALYADARAMLRKLIDEKLISARAVFGFWPANQVHDDDLEVYDDQGKPLARLHHLRQQIIKTDGKPNFSLADFVAPKDSGVTDYVGGFITTAGIGAEEVAKAYQNAGDDYNSIMVKALADRLAEACAEWLHQQVRKEYWGYAKDERLDNEALIKEQYTGIRPAPGYPACPDHTEKATLFRLLDPEASELKAGRSGVFLTEHYAMFPAAAVSGWYFAHPQAQYFAVGKIDKDQVQSYTARKGQDLSVTERWLAPNLGYDNPGPT0008135_933DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008135-metH-K00548NANA
D1-35_01054219hypothetical proteinATGAATCTAGCTCATGTTTGCAAGCGGTACCGGCCCGATCTATTACCGGCTCTGGCCGGTGCAGGGGGGATCGTGCACAAGACCCACATCACCTATGGCTTGAGCGCAGCGAAGATGGCGCGGATCAAGCGCGACCTCGCCCGGCAGTTGCTGCTTCGCGCCCTTGCGCGGTCGGCTGCTTTCCTGACAAAAATACTGGGACTTTGTCCGGCGCGATGAMNLAHVCKRYRPDLLPALAGAGGIVHKTHITYGLSAAKMARIKRDLARQLLLRALARSAAFLTKILGLCPARNANANANANA
D1-35_01055585nfuACOG0316Fe/S biogenesis protein NfuAATGACCGCCATTACCATTACCGATGCCGCCCACGATTACCTGGCCGACCTGCTGTCCAAGCAGAACACCCCGGGTATCGGGATCCGCATCTTCATCACCCAGCCCGGCACCCAGTACGCAGAGACGTGCATTGCCTACTGCAAGCCGGGAGAAGAAAAACCCGAAGACACCGCGCTGGGGCTCAAGAGCTTCACCGCGTACATCGACTCGTTCAGCGAAGCTTTCCTGGACGATGCGGTGGTCGACTACGCCACCGACCGCATGGGCGGCCAGCTGACCATCAAGGCGCCGAACGCCAAGGTACCGATGGTCAACGCCGACAGCCCGGTCAACGAGCGCATCAACTATTACCTGCAAACCGAGATCAACCCGGGGCTGGCCAGCCACGGCGGCCAGGTGTCGCTGATCGACGTGGTGGAAGACGGCATCGCCGTGCTCCAGTTCGGCGGCGGTTGCCAGGGCTGCGGCCAGGCTGACGTGACCTTGAAGGAAGGCATCGAGCGCACCTTGCTCGAGCGCATCCCGGAACTCAAGGGCGTGCGCGACGTGACCGACCACACGCAGAAAGAAAACGCCTACTACTGAMTAITITDAAHDYLADLLSKQNTPGIGIRIFITQPGTQYAETCIAYCKPGEEKPEDTALGLKSFTAYIDSFSEAFLDDAVVDYATDRMGGQLTIKAPNAKVPMVNADSPVNERINYYLQTEINPGLASHGGQVSLIDVVEDGIAVLQFGGGCQGCGQADVTLKEGIERTLLERIPELKGVRDVTDHTQKENAYYNANANANANA
D1-35_01056747cobMCOG2875Precorrin-4 C(11)-methyltransferaseATGACCGTTTACTTCATCGGTGCCGGCCCCGGCGACCCGGAACTGATCACCGTGAAAGGCCAGCGCCTGATCCGCCGTTGCCCGGTGATCATCTACGCCGGCTCCCTGGTGCCGGCGGCCGTGCTCGAAGGCCACAGCGCCGAACAGGTGGTCAACAGCGCAGAGCTGCACCTGGAACAGATCGTCGAATTGATCAGGATCGCGCATTTGAACGGCCAGGACGTGGCCCGGGTGCACTCCGGCGATCCAAGTCTGTATGGCGCCATCGGCGAGCAGATCCGCTGCCTCCGGGAGCTGGACATCCCTTTCGAAATCGTTCCGGGCGTCACCGCCACCTCAGCCTGCGCGGCCCTGCTCGGCGCCGAGCTGACGCTACCGGACGTGTCCCAGAGTGTGATCCTGACCCGTTACGCGGACAAGACCGCGATGCCCGCCGGGGAAGAACTTGCCAGCCTGGCGCGGCATGGCGCAACCATGGCAATTCACCTGGGCGTCAATCACCTGGAAAAAATAGTCGCTGAACTGCTGCCCCACTACGGCGCGGATTGTCCGATCGCGGTGATTCACCGGGCCACGTGGCCGGATCAGGATTGGGTGGTGGGTACGCTGGAGGATATCGCCGGGAAGGTCCAAGCCAAGGGCTTTCGACGTACGGCGCTGATACTGGTGGGGCGCGTGTTGGGCAATGATGTGTTCAGCGAATCATCGCTGTATCGCGCCGGCCATGTGCATCTGTACAGGCCCTGAMTVYFIGAGPGDPELITVKGQRLIRRCPVIIYAGSLVPAAVLEGHSAEQVVNSAELHLEQIVELIRIAHLNGQDVARVHSGDPSLYGAIGEQIRCLRELDIPFEIVPGVTATSACAALLGAELTLPDVSQSVILTRYADKTAMPAGEELASLARHGATMAIHLGVNHLEKIVAELLPHYGADCPIAVIHRATWPDQDWVVGTLEDIAGKVQAKGFRRTALILVGRVLGNDVFSESSLYRAGHVHLYRPPGPT0004625_1794DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004625-cbiF-K05936NANA
D1-35_01057405cbiGCOG2073Cobalt-precorrin-5A hydrolaseATGAGTAGCGGGCCGCTCCTGGTGGTCGGCCTGGGCTGCCAACGCGGTTGCCCGGCCAGTGCGTTGCGGGCATTGCTTGAGCAGACGCTATTGGCCCACGGCATTGCGCTTGGTGACGTACAGGCCTTGGCCAGTATCGATCTCAAGCACGACGAACCGGGCCTGCTGGAGCTGGCCGAGCAATTGGCGCTGCCACTGACCTGCTTCACTGCCGAGCAGTTGGCGGGTTATCAAACGCAGCTCAGCCAGCGTTCCCGGATCGCCTTCGAGCGTACGGGCTGCCACGGCGTCGCCGAAAGCGCCGCCCTTGCCCTGGCCGATCAACTGGGCGATTCGCCCGCGAGACTGCTGATTACCCGCCAGAAAAGTGCGCAAGCCACCCTGGCATTGGCGGCAGCTTCGTAAMSSGPLLVVGLGCQRGCPASALRALLEQTLLAHGIALGDVQALASIDLKHDEPGLLELAEQLALPLTCFTAEQLAGYQTQLSQRSRIAFERTGCHGVAESAALALADQLGDSPARLLITRQKSAQATLALAAASPGPT0004630_1169DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004630-cbiG-K02189NANA
D1-35_01058696hypothetical proteinATGATCAAGCGTATCGCTCGGACTGCCGGTTTCAGTGGGCTGCTGGCCGCCCTGCTGTTGACTCTTCTACAAAGCCTGTGGGTCTCGCCGTTGATTCAGCAAGCCGAAACCTACGAAAAGGCCCCGGCCAGCGAAGTCCATGAGCATGTTTCGGGCGCTGCCCACAGCCATGACGACGAAGCCTGGGAGCCGCAAGACGGCTGGCAACGCCTGCTCGCCACCACGGGCGGCAACCTGGTGGTCGCGGTGGGTTTCGCCCTGATGCTGGCGGGCCTGTACACCTTGCGCGAGCCGACGCGTACGTCCCAGGGCTTGCTTTGGGGACTGGCCGGTTACGCCACCTTCGTCCTCGCGCCAACGCTTGGCCTGCCACCGGAACTGCCTGGCACGGCGGCGGCTGAGCTGGCCCAGCGGCAGATGTGGTGGATTGGCACGGCGGCGTCCACGGCGGTAGGCATAGCCCTGATTGCCTTCGGCCGGCAGTGGCTGCTGAAGCTGCTGGGTGTCGCGACCTTGGTCGTTCCTCATGTCATCGGCGCGCCGCAGCCTGAAGTCCATTCGATGCTGGCTCCCGAGGCGCTGGAAAGCCAGTTCAAGATCGCCGCGCAACTGACCAATGTCGCGTTCTGGCTCTCCCTGGGCCTGATCAGCGCCTGGCTGTTTCGCCGTGGCGCCCAGGCTCGCCACGACGCATGAMIKRIARTAGFSGLLAALLLTLLQSLWVSPLIQQAETYEKAPASEVHEHVSGAAHSHDDEAWEPQDGWQRLLATTGGNLVVAVGFALMLAGLYTLREPTRTSQGLLWGLAGYATFVLAPTLGLPPELPGTAAAELAQRQMWWIGTAASTAVGIALIAFGRQWLLKLLGVATLVVPHVIGAPQPEVHSMLAPEALESQFKIAAQLTNVAFWLSLGLISAWLFRRGAQARHDANANANANANA
D1-35_01059189hypothetical proteinATGTCGACCATCAGCAGCACCGCCCGTACCACCAGCAGCACTGTCACCCTGAGCCAGCGCCTGAGCGCGGCGGTCCTCGCCTCGATCCTCGGTGCGGGCCTGGTCTACTTCGCCGGTTTCTCCCACATCGAAGCGGTGCACAACGCGGCCCACGACACCCGGCATAGCGCCGCGTTCCCGTGCCACTGAMSTISSTARTTSSTVTLSQRLSAAVLASILGAGLVYFAGFSHIEAVHNAAHDTRHSAAFPCHNANANANANA
D1-35_010611626hypothetical proteinATGTCCCTACGCAGCTTGAATATCGCCCCCAGAGCCTTTCTCGGCTTCACTGTCATCGCACTGCTTGTCGTCGTCCTCGGCGTGTTCGCCGCCAATCGCATGTCGGTCATCCGCCAGGCTTCGGTGGACATGGAGCAGACCCAGGTGCCCAGCGTCAGCCATCTGGCCAGTGTGATGGAAAGCGTCTTGCGCATGCGCATCCTCTCGTTTCGCATACTGGTGAACCGTGACCCGGCCAGCCTGAACGAGGCCGACGGGCGCATCGGTGTGCTGGTGGAAAAACTGCACAAGGCCAATAACAGCTATGCGGCGCTGCCGGCCACCCCGCAAGAGGCCGAGCTGTACAAGACTTTTTCCGCGACGCTTGCAAAGTATCTCGAGGCCCAGCAGGAAATGCTCCAGCTGTCGCGTCAGGACAAGCTTGATCAACTGCGCGCCCATATCAATACGCGGATCAAGGAAGGCACCGACCTGATGGGCGAACAGCTCAACAAACTCATCGAGTTCAACGTGACCAGCGCCGGCGAAGCATCGGCCAAGGCTGACGGCTACTACAGCAGCGCCATCACCGGCATCATCGTCGTCTCGGTCATCGCCGCGCTGGCGACCGTGTTGCTGGCCTTGCTCCTGACCCGCAGCATTGTGACGCCGCTGAATCGAGCGCTCGAAGCAGCCCGGACCATTGCCAGCGGCAATCTGGTCACCGTCATCGTCGACGACGGCAAGGACGAACCTGCGCGATTGCTCCAGGCCTTGGGCGCCATGCAGGGCAGCCTGCGCCAGACCATCGAGCAGATTGCCGGTTCCGCCACCCAGCTGGGCGCCGCCGCTGAAGAGTTGAGTGCCGTCACCCAGGAGTCTTCCCGTGGCTTGCAACGGCAGCACAGCGAAATCGAGCAGGCGGCCACCGCCGTCAATGAGATGACCGCCGCGGTCGAGGAGGTTGCCCGCAACGCGGTGTCCACTTCCGAAGCCTCGAACCAGTCCACCCAGGCGGCCCGGGAAGGGCGCACGCGAGTGGTGGAGACCGTCGATGCGATCCAGACCATGACCCACGACGTGCAAGCCACCGCCGCGATGATCGAGGGCCTGGCAGTCCAGGGCCGCGACATCGGCAAGGTGCTGGACGTGATCCGCGCCATCGCCGAACAGACCAACCTGCTGGCCCTCAACGCGGCCATCGAAGCCGCCAGGGCCGGGGAGGCCGGACGTGGTTTCGCGGTGGTGGCCGATGAAGTCCGCGCCTTGGCTCATCGCACCGCGCAATCGACCCAGGAAATCGAAAAAATGGTCGCCGGCATCCAGAACGGCACCGGCCAGGCCGTGCAGTCGATGCAGCAAAGCAACCAGCGCACCCAAAGCACCCTGGAACTGGCCCGTGGCGCCGGCGTGGCGCTGGAACAGATCACCCAGTCGATCCACCAGATCAACGAGCGCAACCTGGTCATTGCCAGCGCGTCCGAAGAACAGGCCCAGGTCTCCCGCGAAGTGGACCGCAACCTGATGAACATCCGTGATCTGGCGACCCAATCGGCCAGCGGCGCGCAACAGACCAGCGACGCCACTCACGAACTGTCGCGGCTGGCGGTGGGTTTGAATGCGACGGTGGCGCGCTTCGTTATTTGAMSLRSLNIAPRAFLGFTVIALLVVVLGVFAANRMSVIRQASVDMEQTQVPSVSHLASVMESVLRMRILSFRILVNRDPASLNEADGRIGVLVEKLHKANNSYAALPATPQEAELYKTFSATLAKYLEAQQEMLQLSRQDKLDQLRAHINTRIKEGTDLMGEQLNKLIEFNVTSAGEASAKADGYYSSAITGIIVVSVIAALATVLLALLLTRSIVTPLNRALEAARTIASGNLVTVIVDDGKDEPARLLQALGAMQGSLRQTIEQIAGSATQLGAAAEELSAVTQESSRGLQRQHSEIEQAATAVNEMTAAVEEVARNAVSTSEASNQSTQAAREGRTRVVETVDAIQTMTHDVQATAAMIEGLAVQGRDIGKVLDVIRAIAEQTNLLALNAAIEAARAGEAGRGFAVVADEVRALAHRTAQSTQEIEKMVAGIQNGTGQAVQSMQQSNQRTQSTLELARGAGVALEQITQSIHQINERNLVIASASEEQAQVSREVDRNLMNIRDLATQSASGAQQTSDATHELSRLAVGLNATVARFVIPGPT0015710_21063DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_010621185aruHCOG0436Arginine--pyruvate transaminase AruHATGCGCTTTTCAGCCTTGACCCAACGCATCACCGGCGACGGCGCCGCCGCCTGGCAGATCCATGACCGGGCGCTGGCCATGCGCGAACAGGGCAGGGAGGTGCTGTTGCTGTCAGTGGGCGATCCGGATTTCGACACGCCACCGGCCATTGTCGAGGCCGCCGTCGCCAGCCTGCGGGCGGGGGACACGCATTATTCGGATACCCGTGGCCTGCATGCGTTGCGCGCCAGCATCGCCCGGCGCCACCAGCAACGTTGCGGCCAACCGGTGGGCGCCGGGCACGTTACGGTGCTGCCCGGCGCCCAGTGTGCGGTCTTCGCGGTCGCGCAGTGCCTGCTCGACCCCGGCGACGAGGTGATTGTCGCCGAACCGATGTACGTCACCTACGAAGCGGTCTTTGGCGCCTGCGGGGCGAAAGTGGTCCCGGTGGCGGTACGTCCGGAAAACGCTTTTCGGGTAGAGCCTGCCGACGTGGCCCGGCTGATCACGCCGCGTACCCGCGCGATGCTGCTCAACAGCCCCAACAATCCCTCCGGCGCCAGCCTGCCGCTGGCCACCTGGCAAGCGTTGGCGCAACTGTGCATCGAGCATGACCTGTGGCTGATCAGCGATGAGGTCTACAGCGACTTGCTCTACGACGGCGAACATATCAGCCCGGCCAGCCTGCCGGGCATGGCCGAGCGCACCGCCACCCTCAACAGCCTGTCCAAATCCCACGCCATGACGGGCTGGCGCATCGGCTGGGCCATCGGCCCCGAGTCCCTTGCCGGGCATCTGGCCAACCTGTCGCTGTGCATGCTGTTCGGCCTGCCGGACTTCGTCCAGCGCGCCGCCCAGGTTGCCCTTGAGCGGGATCTGCCTGAAGTGGCGCGGATGCGCGAGGAATATCGCCAGCGCCGTGACCTGGTGTGCGCGGCGCTGGAGGGGCGTGCGGGCCTCAGGCCGGTACGGCCTGATGGCGGGATGTTCGTGATGGTCGACGTGCGCCAGACGGGTCTCGCCGCCCAGGCATTTGCCGAGCGCCTGCTGGACGGCTATGGCGTGTCGGTGCTGGCGGGCGAGGCGTTCGGGCCGAGCGCGGCAGGGCATATCCGGATCGGCCTGGTGGTCGACCAAGTGCAATTGGCGGATGCGTGTCGGCGGATCGTCGAGTGTGCGGCGGCCTTGCTGCAGGTCGATTGGTGAMRFSALTQRITGDGAAAWQIHDRALAMREQGREVLLLSVGDPDFDTPPAIVEAAVASLRAGDTHYSDTRGLHALRASIARRHQQRCGQPVGAGHVTVLPGAQCAVFAVAQCLLDPGDEVIVAEPMYVTYEAVFGACGAKVVPVAVRPENAFRVEPADVARLITPRTRAMLLNSPNNPSGASLPLATWQALAQLCIEHDLWLISDEVYSDLLYDGEHISPASLPGMAERTATLNSLSKSHAMTGWRIGWAIGPESLAGHLANLSLCMLFGLPDFVQRAAQVALERDLPEVARMREEYRQRRDLVCAALEGRAGLRPVRPDGGMFVMVDVRQTGLAAQAFAERLLDGYGVSVLAGEAFGPSAAGHIRIGLVVDQVQLADACRRIVECAAALLQVDWPGPT0020890_2DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0020890-occP|nocP-K10021NANA
D1-35_01063744phoP_2COG0745Alkaline phosphatase synthesis transcriptional regulatory protein PhoPATGAGTCCCGCCCAGGCGCCACCGTATTTTCTGGACCACCCCATGCCCAACATCCTCCTCGTCGAAGACGACGCCGCCCTTTGCGAACTGATCTCCAGCTACCTGGAGCGCAACGGCTATCAGGTCAGCGTCCTCAACCGTGGCGATCACGTCCGTGAGCGGGCACGGGCCAACCCGCCGGACCTGGTGATCCTCGACCTGATGCTGCCGGGCCTGGATGGCTTGCAGGTCTGCCGTCTGCTGCGCGCCGATTCGGCGACCCTGCCGATCCTGATGCTCACCGCTCGGGATGACAGCCACGACCAGGTGCTGGGCCTGGAAATGGGCGCCGATGACTACGTCACCAAGCCCTGCGAGCCGCGGGTATTGCTGGCGCGGGTACGCACGCTGCTGCGGCGCAGCAGCCTCACTGAACCGCAAACGGTCAACGACCGTATTGTCATGGGCAACCTGTGCATCGATCTGTCCGAGCGCACCGTCACCTGGCGCGGGCAGCCGGTGGAGCTGTCCAGCGGCGAGTACAACCTGCTGGTGGTGCTGGCCCGGCATTCCGGCGAGGTGCTCAGCCGCGACCAGATCTTGCAGCGCTTGCGCGGCATCGAATTCAACGGCACCGATCGTTCGGTGGACGTGGCCATTTCCAAATTGCGGCGCAAATTCGACGACAACGCCGGCGAGGCGCGCAAGATCAAGACCGTGTGGGGCAAGGGTTACCTGTTCAGCCGTTCCGAGTGGGAATGCTGAMSPAQAPPYFLDHPMPNILLVEDDAALCELISSYLERNGYQVSVLNRGDHVRERARANPPDLVILDLMLPGLDGLQVCRLLRADSATLPILMLTARDDSHDQVLGLEMGADDYVTKPCEPRVLLARVRTLLRRSSLTEPQTVNDRIVMGNLCIDLSERTVTWRGQPVELSSGEYNLLVVLARHSGEVLSRDQILQRLRGIEFNGTDRSVDVAISKLRRKFDDNAGEARKIKTVWGKGYLFSRSEWECPGPT0022435_52DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0022435-parR-K18073NANA
D1-35_010641302rstBSensor protein RstBATGTGGAAACTGCTGATTCGTCTGTATCTGGTGACCATCGTCTCCTACAGCGCGGCGATCTACCTGATGCCGGAACTGGTGATCCGCCTGTTCCATGAGCGCTTCCAGACTTACAACCTCGACTATTCCCGTGGCCTGCAAACCTTGATGGCCAAGCAGTTTCGCGCCGTACCCAGCGCGCAATGGCCGGCGCTGGCAGCGCAGATGGACAAGGAGTTCGAGCCGCTGCGCATCGAGCTCGCCGCCACCGATGATGCGGATTTCACCACCGCCGAGCAGGCGCGTCTGCAACGCGGTGAGAATGTGGTGCGCATCGGCGACTGGGGTTGGCGAACCCTGGCGGCCGCGCCGCTGGATGGGCGCACCGCGGTGAAGATGATCGTTCCCCCGGATCCGGCGGATGTCAGCTGGCTGTACTGGAGCATCAACGTGCTGATCGGCGCGACGATGCTCGGCTGTCTGCTGCTCTGGCTGCGGCCGCACTGGCGCGACCTGGAGCGGCTCAAACGCACCGCCGAGCGTTTCGGCAAGGGCCACCTGGGTGAGCGCACGCACATCGCGCCGCGCTCCAACATCGGCAGCCTGGCCCATGTTTTCGACACCATGGCGGGCGATATCGAGAACCTGCTCAATCAGCAGCGCGACCTGCTCAATGCCGTCTCCCATGAACTGCGCACGCCTTTGACCCGGCTTGACTTCGGCTTGGCACTGGCCTTGTCCGAGGATCTGCCGGCGCCCAGCCGCGAGCGTCTGCAAGGGTTGGTGGCGCACATTCGCGAGTTGGATGAGTTGGTGCTGGAGCTGTTGTCCTATAGCCGTCTGCAGAACCCCGAGCGCCTGCCGGAGCGGGTCGAAGTGCCGCTGGACGAGTTCATCGACAGCATCCTCGGCAGCCTCGATGAAGACCTGGCGGCGCCGGAGGTGGTGATCGACGTTTTGCTGCACGGGGCGCTGGAGCGTTTCGAGCTCGACCCGCGCCTCACCGCCCGGGCCTTGCAGAACCTGCTGCGCAATGCGATGCGCTATTGCGAAAAACGCATCCAGGTGGGGGTGCTGGTCAGCGAGCAAGGCTGCGAAATCTGGGTCGACGATGACGGCATCGGCATTCCTGACAGCGAGCGTGAGCGGGTATTCGAGCCGTTCTACCGGCTGGACCGCAGCCGTGATCGCGCCACGGGCGGCTTCGGCCTCGGCCTGGCGATCAGCCGCCGCGCCCTGCAAGCCCAGGGCGGCACCCTGACGGTCGAAGCCTCGCCGCTGGGCGGGGCACGCTTCCGGCTCTGGCTACCCCCAACCTGCTGAMWKLLIRLYLVTIVSYSAAIYLMPELVIRLFHERFQTYNLDYSRGLQTLMAKQFRAVPSAQWPALAAQMDKEFEPLRIELAATDDADFTTAEQARLQRGENVVRIGDWGWRTLAAAPLDGRTAVKMIVPPDPADVSWLYWSINVLIGATMLGCLLLWLRPHWRDLERLKRTAERFGKGHLGERTHIAPRSNIGSLAHVFDTMAGDIENLLNQQRDLLNAVSHELRTPLTRLDFGLALALSEDLPAPSRERLQGLVAHIRELDELVLELLSYSRLQNPERLPERVEVPLDEFIDSILGSLDEDLAAPEVVIDVLLHGALERFELDPRLTARALQNLLRNAMRYCEKRIQVGVLVSEQGCEIWVDDDGIGIPDSERERVFEPFYRLDRSRDRATGGFGLGLAISRRALQAQGGTLTVEASPLGGARFRLWLPPTCPGPT0004100_3878DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-CUS_TRANSPORT_SYSTEM,PGPT0004100-cusS|copS|silS-K02484NANA
D1-35_01065642hypothetical proteinATGCCCCGCCTCACCCGCACTCACCCGCGTCTTTCCTGCGCCACGGTCATCGGCCTGGCGGCGGGCCTGCTGATCCCCGCAGATTCGATCATCGGCAAGGTCCTGATCGGCTGGAACGTCGGGGTCTGGACCTACCTGGCGCTGATGTTCTGGCTGACGGTGCGAGCCAAGGCACCTGACGTCAAGCGCATCGCCGAAATCGAAGACGAGAACGCCGGGCTGGTCCTGCTGATGGTCTGCATCGCGGCCTTGGCGAGCCTGGCGACCATCACCTTCGAACTGGCCGGCAGCCGCGACCTGCAAACCGCAGGCAAGCTGCTGCATTACGGTTTCACGGCATTGACCGTGATCGGTTCATGGCTACTGATCGGGGTGATTTTCAGCGTGCACTACGCGCGCCTTTATTACACCTGGTCCGGCAAGGAGCCCGCCCTGCGTTTTGCCGAGGGCCTGACCACGCCGAACTACTGGGATTTTTTGTACTTCTCTTTCACCATCGGCGTGGCGGTGCAGACTTCGGACGTGGGTGTTGCGACGCGGCAGCTGCGCAAGATCGTGTTGGCGCAGTCGTTGATCGGGTTTGTATTCAACACCGCGATCCTGGGGTTTTCGATCAATATTGCGGCGGGGTTGTTTGGCTGAMPRLTRTHPRLSCATVIGLAAGLLIPADSIIGKVLIGWNVGVWTYLALMFWLTVRAKAPDVKRIAEIEDENAGLVLLMVCIAALASLATITFELAGSRDLQTAGKLLHYGFTALTVIGSWLLIGVIFSVHYARLYYTWSGKEPALRFAEGLTTPNYWDFLYFSFTIGVAVQTSDVGVATRQLRKIVLAQSLIGFVFNTAILGFSINIAAGLFGNANANANANA
D1-35_010662079COG2200putative signaling proteinATGCTCATCGGCAGCTATTCCCCCGCCCTTGTTTCGATTTCCCTGTTTGTCGCGATCCTGGCGTCCTATACCGCGCTGGACCTGACCGGACGCATAACCACTGCCCAGGGTCGGGCCGTGCATTTCTGGATGGCGGGTGGTGCCTTGGCGATGGGGGTGGGCATCTGGTCCATGCATTTCATCGGCATGCTCGCGTTCAGCTTGCCGGTGGAGCTTGGCTACGATGTGGCAATTACTGCGTTGTCGCTGCTGATCGCCATCCTTTCCAGCGGCTTTGCCCTCTGGCTGGTCAGCCAGCCACAACTGCGGACCTGGCAGCTGGTGTTCGGCGCGCTGGTGATGGGCACTGGCATCAGCGCCATGCATTACACCGGTATGGCGGCCCTGCGGATGCAGCCGGGCATCGATTATGACCCGACGCTGTTCGGCGCCTCGTTGGTAATAGCCGTGGTGGCGTGCGCGGCGGCGTTATGGATCGCCTTTCACCTGCGCCAGAACACCCCTCATGTACGTCTCGCTCGCGCCGGTGCCGCCGTGGTGATGGGCGCTGCCATCGTCGGCATGCATTACACCGGCATGGCCGCGGCGCAGTTCAGCGAAGGCAGTTTCTGCGGTTCCCTGGACGGTTTGAGCGGTAAGGGCCTGGATAACCTGGTGCTGATCACCACCTTGGCGGTGCTGGCGATTGCCTTGCTGACTTCGATCCTCGATGCGCGCCTGGAAGCCCGTACCGCGGAACTGGCCAGGTCCTTGACCCAGGCCAATCGCGAACTGACCCAACTGGCCCTGCACGACCCCCTGACCGGCCTGCCCAACCGGGTCTTGCTGGCGGATCGCATCGGCCAGGCGATGCACCGGGTGCAAGAGCAGGGCGGTTGTTTCGCCCTGATGTTCATCGATCTGGACGGCTTCAAACCGGTCAACGATGCCTTTGGCCACCACATGGGTGACTTGTTGCTGCGGGACGTCGCGCTGCGTCTGCGTGAAGACCTGCGCAGCCAGGACACCCTGGCGCGGATCGGTGGTGACGAGTTTGTCCTGCTGGTGCAACTGGCCGAGCCGGACGACGCCTTGCGCCTGGCCGCGCGTCAGGTCGGGCTGATCGGTCGCACGTTCCGGGTCGCCGACCATGACCTGCAGATTTCCGCCAGCGTCGGCATCGCGCTGTACCCTGGCAATGGCCAGAGCGCCGATGAATTGCTGATGAATGCCGACGCGGCGATGTACCACGCCAAGGGTGCCGGCAAGAATGGCTACAGCTTTTTCGACGCCTCGATGAACAGCAACGCCCGCCGGCAACTGCAACTGCTGCAGGATTTGCGCATCGCGGTCGAACAGCGCCAGTTCAGCCTTTATTACCAGCCCAAGTTCGACGCAGCGAAAGGCCGCCCGGTGGGCGCCGAAGCACTGCTGCGCTGGAACCATCCGACCCAGGGCCTGCTGATGCCCGACACTTTCATCGACCTGGCGGAAAAGACCGGGTTGATCATCCCGATCGGCGAATGGGTGCTGAACGAAGCCTGCCGGCAGATGCGCGAATGGTACGTGTTGGGCTACACCGATTGGCGTATCGCGGTGAACCTGTCAGCGTTGCAGTTCTGCCATACGGGCCTGGTGCAGAGCGTGGCCAAGGCATTGGAGACGCACCACCTGCCGGCCAACAGCCTGACCCTGGAAATCACCGAGACCACTGCCATGAGCGACGCGGACGCGAGCATGACGGTACTGCAACAGCTCTCGGACATGGGCGTGGACCTGTCCATCGACGACTTCGGCACCGGTTATTCGAGCCTGATGTACCTCAAGCGCCTGCCGGCCAACGAGCTGAAGATCGACCGTGGTTTCGTGCGAGACCTTGAGCACGACAGTGACGACGCGGCCATCGTCTCGGCCATCGTCGCCCTCGGCCAGGCCTTGGGCCTGCGGATCGTTGCCGAAGGCGTGGAGACCGATGTGCAACAGGACTTCCTCACCCAGTTGGGCTGCGATTCGCTGCAGGGGTATCTGCTCGGGCACCCGCAGCCGGCCGAACACTTCCTGAAGAACATCCGCCAGGCGCGACGCGTCGAAATGGCCTGAMLIGSYSPALVSISLFVAILASYTALDLTGRITTAQGRAVHFWMAGGALAMGVGIWSMHFIGMLAFSLPVELGYDVAITALSLLIAILSSGFALWLVSQPQLRTWQLVFGALVMGTGISAMHYTGMAALRMQPGIDYDPTLFGASLVIAVVACAAALWIAFHLRQNTPHVRLARAGAAVVMGAAIVGMHYTGMAAAQFSEGSFCGSLDGLSGKGLDNLVLITTLAVLAIALLTSILDARLEARTAELARSLTQANRELTQLALHDPLTGLPNRVLLADRIGQAMHRVQEQGGCFALMFIDLDGFKPVNDAFGHHMGDLLLRDVALRLREDLRSQDTLARIGGDEFVLLVQLAEPDDALRLAARQVGLIGRTFRVADHDLQISASVGIALYPGNGQSADELLMNADAAMYHAKGAGKNGYSFFDASMNSNARRQLQLLQDLRIAVEQRQFSLYYQPKFDAAKGRPVGAEALLRWNHPTQGLLMPDTFIDLAEKTGLIIPIGEWVLNEACRQMREWYVLGYTDWRIAVNLSALQFCHTGLVQSVAKALETHHLPANSLTLEITETTAMSDADASMTVLQQLSDMGVDLSIDDFGTGYSSLMYLKRLPANELKIDRGFVRDLEHDSDDAAIVSAIVALGQALGLRIVAEGVETDVQQDFLTQLGCDSLQGYLLGHPQPAEHFLKNIRQARRVEMAPGPT0026010_1492DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0026010-mucR-K21023NANA
D1-35_010671095yhaZCOG4335putative protein YhaZATGACCTCTTCTTCCCCCGCCCTCAAGGAAATCTTCAACGCCGCGCGCCTTGAACACATCGCCAGCGAAATGCGCGCGGTGTACCCGGCCTTCGATGCCAAGGCGTTCTTGAACCTGGCCAACGACGGATTGGCCGAATTGTCGGTCATGCAGCGCATGGCTCGGGTCAGCGAGTGCCTGCATGAGGTCCTGCCGCTGAGTTACGAAGCCTCGCTGGAGGTGCTGCGGGCCGTGGCCCCGCGTGTGAACAGCATGTTCGTCAGCCTGTTCCTGCCGCACTATGTCGCCTCCTACGGTCGGCACACCTTCGAGCTGTCGATGGACGCGCTCAAGTATTTCACCCGGTTTGGCTCCGCTGAGTTTGCCGTGCGGCATTTTTTGCGTGACGACCTGACGCGCACCCTCGGGGTCATGCATGACTGGGCGCTGGACGCCAACGAGCACGTCCGCCGCCTGGCCAGCGAAGGCAGCCGGCCGCGCTTGCCTTGGTCGTTTCACCTGGAGCCGATCCAGGCCAACCCGGAACTCGCCGCCGGAATCCTTGATGCGCTCAAGGCCGACGACAGCCTGTACGTGCGCAAATCCGTCGCCAATCACCTGAACGACGTGACCAAGCAGCATCCCGATTGGGTCCTGGAGCGGATCGAAGGCTGGCCATTGCACGATCGCCATAGCGCATGGATTGCCCGACACGCGCTGCGTAGCCTGATCAAGCAAGGCAATCTGCGGGCGCTGGCGGTTATCGGCGCGGGCGCCAGGGCGCAGGTGGAAGTTTCCGAGCTGCAAGTGACGCCAGCGGTGATTCGCCTGGGCGAGCCCATCACCTTGTCGTTCAAGGTGCGGTCCACGTCCGGACAAGGCCAGCGCCTGGTGATCGATTACGCGATCGACTACGTGAAAGCGTCCGGCGGCACGTCAGCCAAAGTGTTCAAGCTGAAGACCTTCGACCTGCCCGCCCTGGCTTCTGCCAGCCTCAGCCGTTCCCAGCAGATTCGCGAGCTGACCACCCGCCGGCACTACGCGGGCCGGCATGCGGTCCATCTGCTGATCAATGGCGAACGGCTGGGCAGTACCGCGTTCGAGATCGTTCCCTGAMTSSSPALKEIFNAARLEHIASEMRAVYPAFDAKAFLNLANDGLAELSVMQRMARVSECLHEVLPLSYEASLEVLRAVAPRVNSMFVSLFLPHYVASYGRHTFELSMDALKYFTRFGSAEFAVRHFLRDDLTRTLGVMHDWALDANEHVRRLASEGSRPRLPWSFHLEPIQANPELAAGILDALKADDSLYVRKSVANHLNDVTKQHPDWVLERIEGWPLHDRHSAWIARHALRSLIKQGNLRALAVIGAGARAQVEVSELQVTPAVIRLGEPITLSFKVRSTSGQGQRLVIDYAIDYVKASGGTSAKVFKLKTFDLPALASASLSRSQQIRELTTRRHYAGRHAVHLLINGERLGSTAFEIVPNANANANANA
D1-35_01068309hypothetical proteinATGCGTAAACCAACCTTGATCGCCAGTCTGGTCCTGATCGCCGGCCTCGGAGCCTTTGGGCCCGTTGCGCAAGCGGTCGAGAAAACCGGAGACGCCCTTGAGCATTCGCCGAGCAATGGCCGCCGGCTGGTGGAAAATGACCGGGTACCGGCAGACTATCAGCGCGCGGACAGGGCCATGAAGGACTGGAAGCAGAAGAAACTCGAGCAGCCGACCGACGAGCAGCAATGGGTGCAGATCGACGACAAGTACCTGCTGATCGAAACCGTGTCCGGCGCCATCGTCAAGATCGTTCCCGCCACACGCTAGMRKPTLIASLVLIAGLGAFGPVAQAVEKTGDALEHSPSNGRRLVENDRVPADYQRADRAMKDWKQKKLEQPTDEQQWVQIDDKYLLIETVSGAIVKIVPATRPGPT0004560_184DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COBALT_RESISTANCECOBALT_RESISTANCE-COBALT_HOMEOSTASIS,PGPT0004560-rcnB-K23243NANA
D1-35_01069324hypothetical proteinATGAAAACCCTTCCAGACCTTGACGATAAAGCCGTGGTCAAGCTGTCACGCCAAGGTGGCGTGGCGGCCATCCATGCCCTGACCCGCCCCCGGGAAATAGAATTCGCCCAGTGCGATATCAACCAGCGCTCACGTATCTGCTCGGTGCTGGAGGGCTGCCTGCCGCTCACGTCCTCCACGCCGGGTCGGGGCGACCAAAGGTATTTCCAGATCGAGGTGCGTTATCGGGCGAACGATCAGGATGACGAGATGGTGCTGCAGGTGCCCGAGGACCGGGCACCTGGCGAGCTGGTCCACTTGTGGGACAAGGGCGAAGTGCTTTGAMKTLPDLDDKAVVKLSRQGGVAAIHALTRPREIEFAQCDINQRSRICSVLEGCLPLTSSTPGRGDQRYFQIEVRYRANDQDDEMVLQVPEDRAPGELVHLWDKGEVLNANANANANA
D1-35_010701065prtSProtease PrtSATGATCGACTCTCGTCCGCTCCACGGTTTCATTCCGCCTTATATCCTCAATCGCATCATTGCCCATGGCTCCGAACAGCAACGCTCCAGCGCCCTCGGCACCCTGACCCACGTCAAGAATCTGCGCCACAACCCTGGCCCGCCGAGCAACCCACCCGCCACGGCGAAACTGCCCAGACCCGGCAAGGCCGGTCATCCACAGCGCAGCGTGCACGACGCGCAGAACACCATGGAGTTGCCCGGCCAGCCGGTACGCCTGGAAGGCCAGGCGGCCAGCGGCGACCCGGCGGTGGACGAAGCGTATGACGCCCTCGGCGCCACTTATGAGTTTTTCTGGAAAGTGCTCGGGCGCGATTCCATCGATAACAAGGGTTTTGCATTGGTCGGCAGCGTGCATTACGGCCAAGGTTATGAGAATGCCTTCTGGAACGGCGCGCAGATGGTGTTCGGTGACGGTGATGGCGAGATCTTCCAGCGTTTCACCCGCTCCCTGGACGTGGTGGCCCATGAACTGGCCCATGGCGTCACCGAAAGCGAAGCCGGCCTGATCTATGCCAACCAGTCCGGGGCGTTGAACGAGTCGATCTCCGACGTGTTCGGCGTGTTGGTCAAGCAATTCGTATTGGGCCAGACCGCCGACCAGGCCGACTGGCTGATCGGCGCCGACCTGCTCACCGACAGGATCAACGGTGACGGCCTGCGCAGCATGTCCAACCCTGGCACCGCCTACGATGACCCGCTGCTGGGCAAGGACCCGCAACCCGGGCATATGCGCGAATTCGTCATCACCCGTGAAGACAACGGCGGCGTGCACATCAATTCCGGCATTCCCAACCGGGCCTTTTATCTGGTGGCAACAACCCTGGGCGGATTTGCCTGGGAAAAGGCCGGGCGAATCTGGTATGACACCTTGTGCGACAGACAACTGGCCAACGACGCCTCCTTCAGTGCGTTCGCCCGCCTGACCGTCGAGCATGCCCGCCAGCGTTTCGGTGAGCAGGAAGTGCAAGCGGTGCAGGATGGCTGGGCGCAGGTGGGCGTCGACCTGAACGAGGAGAACGGATGAMIDSRPLHGFIPPYILNRIIAHGSEQQRSSALGTLTHVKNLRHNPGPPSNPPATAKLPRPGKAGHPQRSVHDAQNTMELPGQPVRLEGQAASGDPAVDEAYDALGATYEFFWKVLGRDSIDNKGFALVGSVHYGQGYENAFWNGAQMVFGDGDGEIFQRFTRSLDVVAHELAHGVTESEAGLIYANQSGALNESISDVFGVLVKQFVLGQTADQADWLIGADLLTDRINGDGLRSMSNPGTAYDDPLLGKDPQPGHMREFVITREDNGGVHINSGIPNRAFYLVATTLGGFAWEKAGRIWYDTLCDRQLANDASFSAFARLTVEHARQRFGEQEVQAVQDGWAQVGVDLNEENGPGPT0020995_117DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020995-nprM-K01400NANA
D1-35_01071342fbp_1COG0545FK506-binding proteinATGAATGAAGAGCTGCAAATCATCGACCTGGAACCGGGCGACGGCAAAAGCGTAGTCAAAGGAGCGCTGATTACCACTCAATATCGCGGCACCCTCGAGGACGGCACCGAGTTCGATTCGTCCTACAGTCGTGGCAAGCCCTTTCAATGCGTGATCGGCACCGGTCGCGTGATCAAGGGCTGGGATATCGGCCTGACGGGGATGAAAGTCGGCGGCAAGCGCAAGCTGCTGGTGCCGGCCCATCTGGCCTATGGTGAGCGCTCCATGGGCGCTCACATCAAGCCCAACAGCAACCTGGTTTTTGAAATCGAGCTGCTGGAAGTGCTGACCCGCGATGATTGAMNEELQIIDLEPGDGKSVVKGALITTQYRGTLEDGTEFDSSYSRGKPFQCVIGTGRVIKGWDIGLTGMKVGGKRKLLVPAHLAYGERSMGAHIKPNSNLVFEIELLEVLTRDDPGPT0015110_171DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015110-ppiA-K03767NANA
D1-35_010721119bioICOG2124Biotin biosynthesis cytochrome P450ATGGACCCGATCACTGCCGCGACTCACGCTGATCCCTACCCTTACTACGCCAGCCTGCGAGCCAACGGAGGATTCGGTTTCGACGCGCATCTGAAACTCTGGGTCGCCAGCAGCGCCGAGGCGGTGTGCGCGGTACTGCATCATCCCGATTGCCATGTGCGCCCTGCTGACGAGCCGGTGCCCAAGGCAATTGCCGATGGCCCCGCCGGCCAAGTGTTCGCACACCTGATGCGCATGAACGAAGGCGAACGGCAGCGCTGTCCGAGGGCGGCGATTGCCCCGCGGTTGCAGGACATCGATCCGCGCCAGGTCGAGGCATTGGTCAGGGCACGCTTGCTCAGGGAGGGCGCCGCAGGTCTGCACCAGGCGCAGTTCGTCGGGCCGGCCAGCGTGGTGGCGGCATTGCTGGGTTTCAACCCGGCGGAGAGCCGCCTGATCAGCGAATTGACCGCAGACTTCGTCGCCTGCCTGTCCCCCCTGAGCCAGGTGAAGCAGCTTGAAGCCGCGCACCGGGCCAGCGAGCAACTGATGAGCCTTTTCCAGGAGCGGATCGAGGCACAGGACGCTCCGTTGCTGAGCCTCATGTGCCAGGGTTTTGAAGGCGCCGACCCGAACAGCCGGATCGCCAACCTGATCGGCCTGCTCTCGCAAACCTACGAAGCCACGGCGGGCTTGATCGGCAATGGACTATTGGCGTTAGCTCGCGACCCCGCTTTACATCAGCAAGTTCGGGACGATCCCAAACAGATCGGCGCGTTGCTGGCTGAAGTGCAGCGCTTCGACCCGGCGGTGCAGAACACTCGACGCTTCATCGCCATGCCCTGCGAAATCCTTGGCACTGCGCTAGAACCGGGAGATGTGGTACTGGTCCTGCTGGCTTCAGCCAACCGCGACCCGCAGCTCAACCCGCAACCGGACGCCTTGCTGCTGGCTCGCGCCAACCGCCGCAGTTTCAGCTTTGGCAGCGCCCGCCATGAATGCCCTGGCCAAGATTTGGCCATGAATATCGCTCGGGCCACCGTGGAAACAATCCTTGAGCGCAATCCACGCCTGGACCGGTTGGCCTGGAGCTATCGCCCCTCGATCAACGGACGCACCCCGCTGTTCAGCGACCGCTAAMDPITAATHADPYPYYASLRANGGFGFDAHLKLWVASSAEAVCAVLHHPDCHVRPADEPVPKAIADGPAGQVFAHLMRMNEGERQRCPRAAIAPRLQDIDPRQVEALVRARLLREGAAGLHQAQFVGPASVVAALLGFNPAESRLISELTADFVACLSPLSQVKQLEAAHRASEQLMSLFQERIEAQDAPLLSLMCQGFEGADPNSRIANLIGLLSQTYEATAGLIGNGLLALARDPALHQQVRDDPKQIGALLAEVQRFDPAVQNTRRFIAMPCEILGTALEPGDVVLVLLASANRDPQLNPQPDALLLARANRRSFSFGSARHECPGQDLAMNIARATVETILERNPRLDRLAWSYRPSINGRTPLFSDRNANANANANA
D1-35_01073756hypothetical proteinATGAACGCAGAACACCATGACATGGGCGTGTCCCAGGTGGCCGCAGCGATTGCCGAACCGGCCCGTACCCGAATGCTCTGCGCGCTGATGGACGGCCACGCTCGCACCAGCACGGAGTTGGCGGCGATTGCCGAGGTCAGCGCTTCCACCGCGAGTGCGCACTTGGCGAAGCTCAAGGACCTCGCCTTGGTGCGTTTGCACGTCCAGGGGCGCCATCGTTACTACAGCCTCGCCGACCAGCGCGTAGCCGAGGCTCTGGAGGCGTTGATGATGATTGGCCAGGGCGCCAGGCCGACCTTCACGCCGCGCACGCCGGATCGCCTGCAGTTCGCCCGCACTTGCTACGACCATATGGCCGGTACGCTGGCGGTGCGGCTGCATGATCGCTTGCTGGAGGCCGGGTGGCTGGTGGAAGTGGAGGGGTGGGGCTATCGGCTCAGTGAATCCGGCGAAGCGCTGTTTGAAGGGCTAGGCATGGACGTTTCTACGCTGATGATTCAACGACGCCGGTTCGCCTGCCCGTGCCTGGACTGGAGCATGCGCCGACCGCATCTGGGCGGTGCCTTGGGCGCGGCGTTGCTGCAACTGGCGATCAAGCGCAAATGGGTACGGCAGGACCTGGACAGCCGGGCCCTGACATTGACGGTCTGCGGACGCAGGGAAATGGCGGGGCGGTTCGGGGTCAATGCAGAAGTCGATGTCGTACCCACAGGCGCCATCGCGAGCAAGCTCGCTCCCACAGTGGATTTGAGGTGAMNAEHHDMGVSQVAAAIAEPARTRMLCALMDGHARTSTELAAIAEVSASTASAHLAKLKDLALVRLHVQGRHRYYSLADQRVAEALEALMMIGQGARPTFTPRTPDRLQFARTCYDHMAGTLAVRLHDRLLEAGWLVEVEGWGYRLSESGEALFEGLGMDVSTLMIQRRRFACPCLDWSMRRPHLGGALGAALLQLAIKRKWVRQDLDSRALTLTVCGRREMAGRFGVNAEVDVVPTGAIASKLAPTVDLRNANANANANA
D1-35_010741020ilvEputative branched-chain-amino-acid aminotransferaseATGGGTAACGAGAGCATCAATTGGGACAAACTGGGCTTTGACTACATCAAGACCGACAAGCGCTATCTGTCGCACTGGCGCGACGGCGCCTGGGACGCGGGCACCCTGACCGACGACAATGTGCTGCACATCAGCGAGGGCTCCACTGCCCTGCACTACGGCCAGCAATGCTTCGAAGGCCTGAAGGCCTATCGTTGCAAGGACGGTTCGATCAACCTGTTCCGCCCGGACCAGAACGCCGCCCGCATGCAACGCAGCTGCGCCCGCCTGCTGATGCCACATGTCGACACCGAGCAGTTCGTCGAAGCCTGCAAGCAAGTGGTCCGCGCCAACGAGCGCTTCATCCCGCCGTATGGCACCGGCGGTGCGCTGTACCTGCGCCCGTTCGTGATCGGCGTGGGTGACAACATCGGCGTGCGCACCGCGCCCGAGTTTATCTTCTCGATCTTCTGCATCCCGGTCGGCGCTTATTTCAAGGGCGGCCTGACCCCGCACAACTTCCTGATCTCCAGCTTCGACCGCGCGGCCCCGCAAGGCACCGGCGCGGCCAAGGTCGGTGGCAACTACGCCGCCAGCCTGATGCCCGGCTCGCAGGCCAAGAAGGCCAGTTTCGCCGACTGCATCTACCTGGACCCGCTGACCCATTCGAAAATCGAGGAAGTCGGCTCGGCCAACTTCTTCGGCATCACCCACGACAACAAATTCATCACCCCCAACTCCCCTTCGGTATTGCCGGGCATCACCCGCCTGTCGCTGATCGAACTGGCCAAATCGCGCCTGGGCCTGGAAGTGATCGAAGGCGACGTGTTCATCGACAAGCTGTCGGAGTTCAAGGAAGCCGGCGCCTGCGGTACCGCAGCCGTGATCACGCCGATCGGTGGTATCAGCTACAAGGACAAGCTGCATGTGTTCCACAGCGAAACCGAAGTCGGCCCGATCACCCAGAAGCTCTACAAAGAGCTGACCGGCGTACAGACCGGCGACGTGGAAGCACCCGCGGGCTGGATCGTCAAAGTCTGAMGNESINWDKLGFDYIKTDKRYLSHWRDGAWDAGTLTDDNVLHISEGSTALHYGQQCFEGLKAYRCKDGSINLFRPDQNAARMQRSCARLLMPHVDTEQFVEACKQVVRANERFIPPYGTGGALYLRPFVIGVGDNIGVRTAPEFIFSIFCIPVGAYFKGGLTPHNFLISSFDRAAPQGTGAAKVGGNYAASLMPGSQAKKASFADCIYLDPLTHSKIEEVGSANFFGITHDNKFITPNSPSVLPGITRLSLIELAKSRLGLEVIEGDVFIDKLSEFKEAGACGTAAVITPIGGISYKDKLHVFHSETEVGPITQKLYKELTGVQTGDVEAPAGWIVKVPGPT0008860_3724DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_VALINE_DEGRADATION,PGPT0008860-ilvE-K00826NANA
D1-35_010751383lpdVCOG1249Dihydrolipoyl dehydrogenaseATGCAGACTCTGAACACCAAGCTGCTGATCATCGGCGGCGGTCCTGGCGGTTACGTGGCGGCGATCCGCGCCGGCCAACTGGGCATTGAAACGATCCTGGTGGAAGGCCAGGCGTTGGGCGGGACTTGCCTGAACATCGGCTGCATTCCGTCCAAAGCGTTGATCCATGTCGCCGAGCAGTTCCACCAGACCCGCCATCACAGCCAGGGCTCGGCCTTGGGCATCACCGTGGCGGCGCCGAGCCTGGACATCGGCAAGAGTGTGGAATGGAAGGATGGCATCGTCGATCGCCTGACCACCGGCGTCGCTGCGTTGCTGAAAAAGCACAAGGTCCAGGTCGTTCACGGCTGGGCCAAGGTGATCGATGGCAAGACCGTTGAAGTTGGTGACACCCGCATCCAGTGCGAACACCTGCTGCTGGCCACCGGTTCGAAAAGTGTCGAGCTGCCGATGCTGCCGATTGGCGGGCCGGTCATCTCGTCCACCGAAGCCCTCGCCCCCACCTCGGTGCCCAAGCATCTGGTGGTGGTCGGCGGCGGCTACATCGGGCTGGAACTGGGCACCGCCTATCGCAAGCTCGGCGCCGAAGTGAGCGTGGTCGAGGCCCAGGAGCGGATCCTGCCGGCCTACGACGGCGAGCTGACGCAACCGGTGCACGAGGCGCTCAAGCAACTGGGCGTGAAGCTGTACCTCAAGCACAGCGTCGAAGGCTTCGATGCCCAGGCCAGCACCTTGCAAGTGCGCGATCCCAACGGCGACACGCTGAACCTGGAGACCGACCGCGTGCTGGTGGCGGTCGGACGCAAGCCCAACACCCAGGGCTGGAACCTCGAAGCGCTGGACCTGGCGATGAATGGCTCGGCGCTGAAAATCGATAACCGGTGCCAGACCAGCATGCGCAATGTCTGGGCCATCGGTGACCTGAGCGGCGAACCGATGCTCGCTCACCGGGCCATGGCCCAGGGCGAAATGGTCGCCGAGCTGATTGCTGGCGAGCATCGGGAATTCAACCCGATGGCCATCGCGGCAGTGTGCTTCACCGATCCGGAGGTGGTCGTGGTCGGCAAGACGCCGGACGAGGCCAAGGCCGCCGAAGTCGATTGCATCGTGTCGAGCTTCCCGTTCGCCGCCAATGGCCGGGCCATGACCCTGGAATCGAAAAGCGGCTTTGTCCGGGTCGTGGCGCGCCGGGACAATCATCTGATTATCGGTTGGCAAGCGGTCGGTGTCGGCGTGTCGGAGCTGTCCACCGCGTTTGGCCAATCCCTGGAGATGGGCGCACGGCTGGAAGACATCGCCGGCACCATCCACGCCCATCCGACGCTGGGCGAAGCGGTGCAGGAAGCGGCGCTGCGGGCATTGGGGCATGCGTTGCATCTGTAAMQTLNTKLLIIGGGPGGYVAAIRAGQLGIETILVEGQALGGTCLNIGCIPSKALIHVAEQFHQTRHHSQGSALGITVAAPSLDIGKSVEWKDGIVDRLTTGVAALLKKHKVQVVHGWAKVIDGKTVEVGDTRIQCEHLLLATGSKSVELPMLPIGGPVISSTEALAPTSVPKHLVVVGGGYIGLELGTAYRKLGAEVSVVEAQERILPAYDGELTQPVHEALKQLGVKLYLKHSVEGFDAQASTLQVRDPNGDTLNLETDRVLVAVGRKPNTQGWNLEALDLAMNGSALKIDNRCQTSMRNVWAIGDLSGEPMLAHRAMAQGEMVAELIAGEHREFNPMAIAAVCFTDPEVVVVGKTPDEAKAAEVDCIVSSFPFAANGRAMTLESKSGFVRVVARRDNHLIIGWQAVGVGVSELSTAFGQSLEMGARLEDIAGTIHAHPTLGEAVQEAALRALGHALHLPGPT0001380_7027DIRECT 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
D1-35_010761281bkdBCOG0508Lipoamide acyltransferase component of branched-chain alpha-keto acid dehydrogenase complexATGGGCACGCACGTTATCAAGATGCCGGACATCGGCGAAGGCATCGCGGAAGTTGAATTGTCGGTGTGGCACGTCAAGGTTGGCGACATGGTGGTCGAGGACCAGGTGTTGGCCGATGTCATGACTGACAAGGCGATGGTGGATATCCCTTCGCCGGTGCATGGCCGGGTCATTGCCCTCGGTGGTGAGCCGGGTGAGGTCATGGCAGTGGGCAGCGAGCTGATCCGCATTGAAGTGGAAGGCGCCGGCAACCTGAAGGAATCGGCGCAATCGGCGGCACCGGTGGCCAAGCCTGAGCCCGTCGCGAAGCCTGAACAGGCTTCCAGACCCGAGCCTGTGACGGAAAAACCCGTCGCCGCGCCTCGCCCGGCCCAAGCGGAACAGGCGCCGGTGGCCCGCGATCCCGACGAGCGCCCGCTAGCCTCGCCGGCCGTGCGCAAACACGCGCTAGACCTGGGTATCCAGCTGCGTCTGGTCCAGGGCAGCGGCCCCGCCGGGCGGATTCTGCACGAAGACCTGGAGGCTTATCTGGCCCAGGGCCCATCGTCCCAGGCCAAGAGCGGTTCGGGTTATGCCGAACGTCACGACGAGCAGCAGATCCCGGTGATCGGCATGCGCCGCAAGATCGCCCAGCGCATGCAGGAAGCCACCCAGCGCGCCGCCCATTTCAGCTACGTCGAGGAAATCGACGTCACCGCCCTGGAAGAACTGCGTGTTCATCTGAATGAGAAACACGGTGCCAGTCGCGGCAAGTTGACGTTGCTGCCGTTCCTCGTGCGCGCCCTGGTCGTGGCGCTGCGGGATTTCCCGCAAATGAACGCCCGTTACGATGATGAAGCCCAGGTCATTCACCGCTCCGGCGCCGTGCATGTCGGCGTCGCCACTCAGAGCGACGTCGGCCTGATGGTGCCGGTGGTGCGCCACGCCGAGGCCCGCAGCCTGTGGGACAGCGCGGCGGAAATCTCGCGCCTGGCGACAGCGGCCCGCAACGGCAAGGCCAGTCGCGACGAACTGTCCGGTTCGACCATAACCCTGACCAGCCTCGGCGCGTTGGGCGGCATCGTCAGCACGCCGGTGCTGAACCTGCCTGAAGTAGCGATCGTCGGCGTCAACAAAATCGTCGAGCGGCCCGTGGTGATCAAGGGCCAGATCGTGATCCGCAAGATGATGAACCTTTCCAGCTCCTTCGATCACCGAGTGGTCGACGGCATGGATGCGGCGCAATTCATCCAGGCCCTGCGTGGCCTGCTCGAACAACCCGCCACTTTGTTTGTGGACTAAMGTHVIKMPDIGEGIAEVELSVWHVKVGDMVVEDQVLADVMTDKAMVDIPSPVHGRVIALGGEPGEVMAVGSELIRIEVEGAGNLKESAQSAAPVAKPEPVAKPEQASRPEPVTEKPVAAPRPAQAEQAPVARDPDERPLASPAVRKHALDLGIQLRLVQGSGPAGRILHEDLEAYLAQGPSSQAKSGSGYAERHDEQQIPVIGMRRKIAQRMQEATQRAAHFSYVEEIDVTALEELRVHLNEKHGASRGKLTLLPFLVRALVVALRDFPQMNARYDDEAQVIHRSGAVHVGVATQSDVGLMVPVVRHAEARSLWDSAAEISRLATAARNGKASRDELSGSTITLTSLGALGGIVSTPVLNLPEVAIVGVNKIVERPVVIKGQIVIRKMMNLSSSFDHRVVDGMDAAQFIQALRGLLEQPATLFVDNANANANANA
D1-35_010771059bkdA2COG00222-oxoisovalerate dehydrogenase subunit betaATGAACGATCACAACAACAATATTGCGTTGGACACCGCCATGACCACTACCACCATGACCATGATCCAGGCGCTGCGCTCGGCCATGGACGTGATGCTCGAGCGCGACGACAACGTCGTGGTGTTCGGCCAGGACGTCGGTTATTTCGGCGGCGTGTTCCGCTGCACCGAAGGCCTGCAGAACAAGTACGGCACCTCGCGGGTATTCGACGCGCCGATTTCCGAAAGCGGCATCGTCGGCGTGGCCGTGGGCATGGGCGCCTATGGGCTGCGGCCGGTGGCCGAGATCCAGTTCGCCGACTACGTCTACCCGGCGTCGGACCAGATCATTTCCGAAGCCGCGCGCCTGCGCTATCGCTCGGCCGGCGAGTTCACCGCGCCGATGACCCTGCGCATGCCCTGCGGCGGCGGCATCTATGGCGGCCAGACCCACAGCCAGAGCATCGAGGCGATGTTTACCCAGGTCTGCGGGCTGCGCACCGTCATGCCGTCCAACCCCTACGACGCCAAGGGCCTGCTGATCGCCTCCATCGAAAACGATGACCCGGTGATCTTCCTTGAACCCAAGCGCCTGTATAACGGCCCGTTCGACGGTCACCATGACCGCCCGGTAACGCCGTGGTCCAAACACCCGCAGGCGCAAGTACCCGACGGCTACTACACCGTGCCGCTGGACGTCGCCGCCATCACCCGTCCGGGCAAGGACGTGACGGTGCTCACCTACGGCACCACGGTCTACGTCTCCCAGGTAGCAGCCGAAGAAACCGGGATCGACGCCGAAGTCATCGACCTGCGCAGCCTGTGGCCGCTGGACCTGGACACCATCGTCAAATCCGTGAAGAAGACCGGCCGTTGCGTGGTGGTCCACGAAGCCACCCGCACCTGCGGTTTCGGCGCCGAGCTGGTGTCGCTGGTGCAAGAACATTGCTTCCACCATCTGGAAGCGCCCATCGAGCGTGTCACCGGTTGGGACACCCCCTACCCGCACGCGCAGGAGTGGGCGTATTTCCCTGGGCCGTCCCGTGTGGGCGCGGCGTTGAAACGGGTCATGGAGGTCTGAMNDHNNNIALDTAMTTTTMTMIQALRSAMDVMLERDDNVVVFGQDVGYFGGVFRCTEGLQNKYGTSRVFDAPISESGIVGVAVGMGAYGLRPVAEIQFADYVYPASDQIISEAARLRYRSAGEFTAPMTLRMPCGGGIYGGQTHSQSIEAMFTQVCGLRTVMPSNPYDAKGLLIASIENDDPVIFLEPKRLYNGPFDGHHDRPVTPWSKHPQAQVPDGYYTVPLDVAAITRPGKDVTVLTYGTTVYVSQVAAEETGIDAEVIDLRSLWPLDLDTIVKSVKKTGRCVVVHEATRTCGFGAELVSLVQEHCFHHLEAPIERVTGWDTPYPHAQEWAYFPGPSRVGAALKRVMEVPGPT0008862_587DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008862-bkdA2|bfmBAB-K00167NANA
D1-35_010781236bkdA1COG10712-oxoisovalerate dehydrogenase subunit alphaATGAACCCAGCGTACGAACCGCTACGCCTGCACGTCCCCGAACCTTCGGGCCGTCCCGGCTGCAAGACCGACTTCTCCTACCTGCATCTGACCGATGCCGGCACGGTGCGCAAACCTCCCATCGACGTCGAACCCGCCGACACCGCCGACCTGGCGCGCAGCCTGATCCGCGTGCTCGACGACCAAGGCAACGCCTTGGGCGAGTGGGCCGAGAATGTCCCTGTCGAGATTCTGCGCAAGGGCATGCGCGCCATGCTCAAGACACGCATCTACGACAACCGCATGGTCGTCGCCCAGCGCCAGAAAAAAATGTCGTTCTACATGCAGAGCCTTGGCGAGGAAGCCATCGGCAGCGCCCAGGCCCTGGCCCTGAACATCGACGACATGTGCTTCCCGACCTACCGCCAGCAAAGCATCCTCATGGCCCGCGACGTGCCGCTGGTGGACCTGATCTGCCAACTGTTGTCCAACGAGCGCGATCCGCTCAAGGGCCGGCAGTTGCCGATCATGTATTCGGTCAAGGACGCCGGTTTCTTCACCATTTCCGGCAACCTCGCCACCCAGTTCATCCAGGGCGTGGGCTGGGGCATGGCCTCGGCGATCAAGGGCGACACCAAGATCGCCTCGGCCTGGATCGGCGACGGCGCCACCGCCGAATCGGACTTCCACACCGCCCTTACCTTCGCCCACGTCTACCGCGCCCCGGTGATCCTCAACGTGGTCAACAACCAGTGGGCGATTTCCACTTTCCAGGCGATTGCCGGCGGTGAAGCGACTACTTTCGCCGGACGCGGCGTCGGCTGCGGCATCGCCTCGCTGCGGGTCGATGGCAACGATTTCATCGCCGTCTACGCCGCGTCGCGCTGGGCCGCCGAACGGGCTCGCCGCAACCTCGGTCCGGCCCTGATCGAATGGGTCACCTACCGCGCCGGCCCGCACTCCACATCTGACGATCCTTCGAAATACCGCCCCGCCGATGACTGGAGCCACTTCCCGTTGGGCGACCCGATTGCGCGCCTCAAGCAGCACCTGGTGAAGATCGGCCAGTGGTCCGAAGAGGAACACGCCGCCGTCACCGCCGAACTCGAAGCCGAGGTGATCGCCGCGCAGAAAGAAGCCGAGCAGTACGGCACCCTCGCCGGCGGGCAGATTCCGAGCGCCGCGACCATGTTCGAGGACGTCTACAAAGAGATGCCGGAGCACTTGAAGCGCCAGCGTCAGCAGTTGGGGATCTGAMNPAYEPLRLHVPEPSGRPGCKTDFSYLHLTDAGTVRKPPIDVEPADTADLARSLIRVLDDQGNALGEWAENVPVEILRKGMRAMLKTRIYDNRMVVAQRQKKMSFYMQSLGEEAIGSAQALALNIDDMCFPTYRQQSILMARDVPLVDLICQLLSNERDPLKGRQLPIMYSVKDAGFFTISGNLATQFIQGVGWGMASAIKGDTKIASAWIGDGATAESDFHTALTFAHVYRAPVILNVVNNQWAISTFQAIAGGEATTFAGRGVGCGIASLRVDGNDFIAVYAASRWAAERARRNLGPALIEWVTYRAGPHSTSDDPSKYRPADDWSHFPLGDPIARLKQHLVKIGQWSEEEHAAVTAELEAEVIAAQKEAEQYGTLAGGQIPSAATMFEDVYKEMPEHLKRQRQQLGIPGPT0008861_810DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0008861-bkdA1-K00166NANA
D1-35_01079489lrp_1COG1522Leucine-responsive regulatory proteinATGCGCAAATTGGATCGCACCGACATCGGCATTCTCAACAGCCTTCAGGAAAACGCCCGCATCACCAATGCCGACCTTGCCCGTTCGGTCAACCTGTCGCCGACGCCGTGCTTCAATCGGGTCCGGGCGATGGAGGAGCTGGGAGTGATTCGCGAGCAGGTCACCCTGCTGGATGCCGACCTGCTGGGCCTGCACGTCAACGTGTTTATCCATGTCAGCCTGGAGAAACAGGTGGAAGAGGCGCTGCAGCATTTCGAAGAGGCGATCTCCGACCGGCCGGAAGTGATGGAGTGCTACCTGATGGCGGGCGACCCGGATTACCTGATCCGTGTGCTGGTGCCGACCATCCAGTCGCTGGAGCGGTTCATGATGGATTTCCTGACCAAAGTCCCCGGGGTGGCAAACATCCGCTCAAGCTTCGCCCTCAAGCAGGTGCGCTACAAGACCGCGTTGCCGCTGCCAGCCAATGGCTTGACCTTGGGCACCTGAMRKLDRTDIGILNSLQENARITNADLARSVNLSPTPCFNRVRAMEELGVIREQVTLLDADLLGLHVNVFIHVSLEKQVEEALQHFEEAISDRPEVMECYLMAGDPDYLIRVLVPTIQSLERFMMDFLTKVPGVANIRSSFALKQVRYKTALPLPANGLTLGTNANANANANA
D1-35_01080864putative metallo-hydrolaseATGCCCGCGCAGATCCAAAGCTTCCTCGACCCCGCTTCAAAGACCTATACCTACGTCGTGTATGAACACGCTGGCGGGTCCTGTGCGGTGGTCGACCCGGTGCTCGACTACGACCCGGCGTCAGGCCGCAGCGGCACGGAGCAGGCCGATCGGGTGATCGCTTTCGTGGCTGAACACCAGTTGACGGTGCAATGGCTGCTGGAAACCCACGCCCATGCCGATCACTTGTCCGCCGCTCCTTACCTGAGGGGAAAACTGGGCGGCAAGATCGCTATCGGCGAATCCATCCATCAGGTACAGAGTGTCTTCAAGACGCTGTTCAATCTCGAAGCGCAATTTGCCGTGGATGGTTCACAGTTCGATCACCTGTTCGCGGCCGACGAATCTTTTTTTATCGGCAACCTCAAGGCCACCGCGCTGCACGTTCCCGGCCACACCCCGGCGGACATGGCCTACCTGATCGATGGCGATGTGATCCTGGTGGGTGACACGCTGTTCATGCCTGATGTGGGCACTGCCCGCTGCGACTTCCCTGGCGGCAATGCCTGTCAACTCTACGCTTCGATCCGCAAGCTGCTGGCCTTTCCTGCCGGCGTTCGACTCTACGTTTGCCACGATTACCCGCCGGAGGGCCGCGAGCCCCAGTGCATGAGCACCGTGGGCGAGCAGCGCCAGCACAACATCCATGTTCGCGACGGCATCGACGAGACCGCATTCGTGGCCATGCGCACCCAGCGCGACAAGACCCTGGGCATGCCGACGCTGCTGTTGCCGGCGATCCAGGTGAATGTGCGGGCGGGCCACCTGCCGCCGGCGGAGGGGAATGGCGTGACCTATCTGAAGATTCCGATCAATCAGCTCTAAMPAQIQSFLDPASKTYTYVVYEHAGGSCAVVDPVLDYDPASGRSGTEQADRVIAFVAEHQLTVQWLLETHAHADHLSAAPYLRGKLGGKIAIGESIHQVQSVFKTLFNLEAQFAVDGSQFDHLFAADESFFIGNLKATALHVPGHTPADMAYLIDGDVILVGDTLFMPDVGTARCDFPGGNACQLYASIRKLLAFPAGVRLYVCHDYPPEGREPQCMSTVGEQRQHNIHVRDGIDETAFVAMRTQRDKTLGMPTLLLPAIQVNVRAGHLPPAEGNGVTYLKIPINQLNANANANANA
D1-35_01081801hypothetical proteinATGTTACTGGCAAGTTTTTTTGGTGTGATCATGGGCCTGATCCTTGGCCTGACAGGGGCGGGCGGCGGAATTCTGGCCGTGCCGGCGTTGGTGTTGGGCCTGGGTTGGAGCATGACCCAGGCCGCGCCGGTGGCGTTGTTTGCGGTGGGCAGCGCCGCAGCTGTCGGCGCCATCGATGGGTTGCGCCATGGGCTGGTGCGTTACCGCGCGGCCTTGCTCATCGCGCTGCTGGGCGCGGTGTTCTCGCCGGTGGGTGTCTATTTCGCCCACCAGCTTTCAGAAAAAATCCTGATGATTCTGTTCAGCCTGCTGATGGTGCTGGTGGCGGCGCGCATGCTGCGCCGAGAAACCCCGCAGCCGGGACCCAGCGACCACGGCGCGGCCAGTTGGGGCCAGAAGAACTGCATGCTGGATCAGCAGACCGGGCGCCTGGCCTGGACCGCCCGCTGCACCGCCACGCTGTCGGCGTTGGGCGCGGTCACGGGCATGGTTTCGGGCCTGCTGGGGGTGGGTGGCGGTTTCCTGATCGTCCCGGCGTTCAAGCAACTGACCGACGTGCAGATGCGCGGCATTGTCGCCACCTCCTTGATGGTCATCAGCCTGATTTCGTTGATCGGCGTGGTGGGCGCGTTTCATGCCGGGGTCAGCATCGACCGGGTAGGGGCGGCGTTCATTGCGGCGAGCATCGTCGGGATGATTTTGGGGCGACGCTTCTCGGCGAAGGTTCCAGCGCGGGCGTTGCAGGTGGGGTTTGCCGGGGTGTGTCTGGCGGTGGCGGGGTTCATGTTGTTGCGGGCTTAGMLLASFFGVIMGLILGLTGAGGGILAVPALVLGLGWSMTQAAPVALFAVGSAAAVGAIDGLRHGLVRYRAALLIALLGAVFSPVGVYFAHQLSEKILMILFSLLMVLVAARMLRRETPQPGPSDHGAASWGQKNCMLDQQTGRLAWTARCTATLSALGAVTGMVSGLLGVGGGFLIVPAFKQLTDVQMRGIVATSLMVISLISLIGVVGAFHAGVSIDRVGAAFIAASIVGMILGRRFSAKVPARALQVGFAGVCLAVAGFMLLRANANANANANA
D1-35_01082870yphBCOG2017putative protein YphBATGACACCGCCCCTTCTCCACCTCGAAGACGAACTCACCCGCCTCACCCTGGCTCCGCACCTGGGCGCCAGCCTCGTTGAATGGACATTGCGCAGCAGCGGAGCTCCGCTGCTGCGCCCGCCCGCACCGCAAGCACTGGAAAACCGCCTGCCGGGAAAGCTCGGCTGCTTTCCGTTGATCCCCTGGTCGAACAGGATCGCCCAAGGCGGTTTCGATTGCCCGGGCGGCTGGCTCGCCCTGGAAGCCAACAGCCCCAACGATCCCTTTCCGATCCATGGCAGTGCCTGGCAGCAGCCCTGGCAGATTACCGAACGAACTGATCAGGAAGTCTTGCTGCAGCTGGACAGCCAAACCCCGTTCGCCTATTGCGCCAGCCTGCGGATCCGCTTGAGCGGCGGCCAACTGCAAATCGCCCTGCACGTCACCCACATGGCCGAACAGGCCGCCTGGCACGGGTTGGGCTTGCATCCATATTTGCCACGCACCCCCGGCACTCGCCTGCAAACCCGCGCCAGCGAAGTCTGGATGTGCGACGCCTCGAAACTGCCAACGGAACTGACGGGCGTACCCCCAGCGTGGGATTTCCAGCAACCTCGACTACTGCCCGACACTCTCGTCGATAACGGTTTCGGCGGTTGGGATGGGCAGTGCCTGATCCAGCAACCTGACTTGGGCTACGAACTGGAATGTCGCGCCAGCGGCAGCGAATATTTCCTGTTGTACTGCCCCGTCGGTCTGGATTTCTTCTGCATCGAACCGGTCAGCCATCCGGTCAACGCGCATCACCTGCCAGGACGGCCGGGGTTGCGCTTGCTGGAGCAAGGGCAGTCGGTGGCGTTGGGGTTTTCGATGCAGTGCCGGGAGTCGTAGMTPPLLHLEDELTRLTLAPHLGASLVEWTLRSSGAPLLRPPAPQALENRLPGKLGCFPLIPWSNRIAQGGFDCPGGWLALEANSPNDPFPIHGSAWQQPWQITERTDQEVLLQLDSQTPFAYCASLRIRLSGGQLQIALHVTHMAEQAAWHGLGLHPYLPRTPGTRLQTRASEVWMCDASKLPTELTGVPPAWDFQQPRLLPDTLVDNGFGGWDGQCLIQQPDLGYELECRASGSEYFLLYCPVGLDFFCIEPVSHPVNAHHLPGRPGLRLLEQGQSVALGFSMQCRESPGPT0017825_5366DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GALACOTOSE_METABOLISM|DEGRADATION,PGPT0017825-galK-K01785NANA
D1-35_010831281dctM_1COG1593C4-dicarboxylate TRAP transporter large permease protein DctMATGGACGCTCTGATTCTGCTGGGCAGTTTTTTGTTGTTGATCCTGATCGGCATGCCGGTCGCCTACGCGCTGGGCGCTGCCGCCCTGATCGGGGCATGGTGGATCGATATTCCGTTCCAGGCCATGATGATTCAGGTGACGGGCGGGGTGAATAAATTCTCGTTGCTGGCCATTCCGTTCTTCGTCCTGGCCGGCGCGATCATGGCCGAGGGCGGCATGTCCCGCCGCTTGGTGGCATTCGCCAGTGTGTTGGTAGGCTTCGTGCGCGGTGGCCTGTCTTTGGTCAACCTCGTGGCCTCGAGTTTTTTTGGCGCGATCTCCGGCTCCTCGGTGGCCGATACCGCCTCGGTCGGCTCGGTGCTGATCCCGGAAATGACACGCCGGGGCTATCCGCGTGAATACGCCACCGCCGTCACTGTCAGTGGTTCGGTACAAGCGCTGCTGACACCGCCCAGCCACAACGCGGTGCTGTACTCCCTCGCCGCTGGCGGCACCGTCTCCATTGGTTCGCTGTTCATGGCCGGCATCGTCCCCGGCATCATGATGAACCTGTGCCTGATGGCGCTGTGCCTGGTTTTTGCGAAAAAGCGCAATTACCCCAAGGGCGAAGTGATTCCGCTCAAGCAAGCGTTAAAGATCTGCAAGGAAGCCATGTGGGGCATGATGACCCTGTTCATCATCCTTGGCGGCATTCTCTCGGGTGTGTTCACCGCCACCGAATCGGCCGCCATTGCCGTGGTGTGGGCATTCTTCGTGACCATGTGCATCTATCGCGACTACAAGTGGAGCGAGTTGCCGAAACTGATGCACCGTACGGTACGCACCATCTCCATCGTGATGATCCTGATCGGCTTCGCCGCCAGCTTCGGCTACATCATGACGCTGATGGAAATCCCGGCGAAGATCACCACCGCGTTCCTGACCCTTTCGGACAACCGCTACGTGATCCTGATGTGCATCAACGTGATGTTGCTGCTGCTGGGCACCGTGATGGACATGGCGCCGCTGATCCTGATCCTGACGCCGATCCTGATGCCAGTGATCGTGGGCATCGGTGTGGACCCGGTGCAGTTCGGCATGATCATGCTGGTGAACCTGGGTATCGGCCTGATCACACCTCCGGTGGGCGCGGTACTGTTCGTCGGTTCCGCCATCGGCAAGGTGAGCATCGAAAGCACCGTCAAGGCCCTGCTGCCGTTCTACGCCATGCTGTTCCTGGTCCTGCTGTTGGTGACCTACGTTCCTGCCATTTCGCTGTGGCTGCCGAATCTGGTGTTGTAAMDALILLGSFLLLILIGMPVAYALGAAALIGAWWIDIPFQAMMIQVTGGVNKFSLLAIPFFVLAGAIMAEGGMSRRLVAFASVLVGFVRGGLSLVNLVASSFFGAISGSSVADTASVGSVLIPEMTRRGYPREYATAVTVSGSVQALLTPPSHNAVLYSLAAGGTVSIGSLFMAGIVPGIMMNLCLMALCLVFAKKRNYPKGEVIPLKQALKICKEAMWGMMTLFIILGGILSGVFTATESAAIAVVWAFFVTMCIYRDYKWSELPKLMHRTVRTISIVMILIGFAASFGYIMTLMEIPAKITTAFLTLSDNRYVILMCINVMLLLLGTVMDMAPLILILTPILMPVIVGIGVDPVQFGMIMLVNLGIGLITPPVGAVLFVGSAIGKVSIESTVKALLPFYAMLFLVLLLVTYVPAISLWLPNLVLPGPT0017335_1576DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017335-dctM-K11690NANA
D1-35_01084528hypothetical proteinATGAAGAATTTGCTGCTGCGTATCAACGACACGATTTACATGACTTGCATCTGGGTCGCCGGCCTGTCTGTCCTCGCCGTTGCGCTGATGATCCCTTGGGGCGTGTTCGCCCGCTACGTCCTCGGCACCGGCTCAAGCTGGCCGGAGCCCACCGCCATCTTGCTGATGATCGTGTTCACTTTCATCGGTGCAGCTGCCAGCTACCGCTCCGGCTCGCACATGGCCGTGGATATGGTCACAAGCCGCCTGCCCCCGCACTTGCAAACCTTGGCTTCGGTTTTCACGCAACTGTTGATGGCGGCGGTGTGCATTTTCATGACTGTCTGGGGCGCCAAGCTGTGCATGACCACCTGGAACCAGTTCATGAGCGCCATCCCTACCCTGCGCGTTGGCATCACTTACATGCCGATCCCGATCGGTGGGTTCCTGACCCTTATTTTTGTCCTGGAAAAACTCTTGCTGGGTGATCAAAGCAAGCGTCGGGTCGTGCAGTTCGACCTGGTTGAAGAAAACGAAGGTGCCGTTTAAMKNLLLRINDTIYMTCIWVAGLSVLAVALMIPWGVFARYVLGTGSSWPEPTAILLMIVFTFIGAAASYRSGSHMAVDMVTSRLPPHLQTLASVFTQLLMAAVCIFMTVWGAKLCMTTWNQFMSAIPTLRVGITYMPIPIGGFLTLIFVLEKLLLGDQSKRRVVQFDLVEENEGAVNANANANANA
D1-35_01085972COG1638Solute-binding proteinATGAATTTCAAACGCACGCTTCTGATCGCGGCCCTGCCCCTGGCCTTCCTGGCCCAGGCGGCACACGCTGAACTCACCCTGAAAATCGCCGACATCCACCCCAAGGGCTACCCGACCGTAGTCGCCGAGGAGTCCATGGGTAAAGCCCTGGAAGCGCAGAGCAAGGGCGAACTGAAGTTCAAGTACTTCCCGGGTGGCGTACTGGGTTCTGAAAAGGAAGTCATCGAGCAGATGCAAGCCGGCGCGATCCAGATGTCTCGCGTCAGCCTGGGCATTGTCGGCCCTGTGGTGCCGGACGTGAACGTCTTCAACATGCCGTTCATCTTCCGCGACCAGGCCCACATGCGCGCCGTCATCGACGGCGACGTGGGCGACGCGATCCTCGACCGGATCACCAAATCCGAATTCGGCCTGGTGGCCCTGGCCTGGATGGACGGCGGCACCCGCAACCTCTACACCAAGAAACCGGTGCGCAAGCTCGAAGATCTGAAGGGCATGAAGATTCGCGTCCAAGGCAACCCGATGTTCATCGAGACCTTCAACGCCATGGGCGCCAACGGTATCGCCATGGACACCGGCGAGATCTTCAGCGCCCTGCAGACCGGCGTGATCGACGGCGCGGAAAACAACCCGCCGACCATGCTTGAGCACAACCACTACCAGAACGCCAAGTTCTACAGCCTGACCGGCCACCTGATCCTGCCTGAGCCGATCGTGATGTCGAAAATCACCTGGAACAAGCTCACGCCGGAGCAACAGGACATGGTGAAGAAAGCCGCCAAGGCAGCCCAGGCTGAAGAGCGCGTGCTGTGGGACAAGAAGTCCGCCGCCAGTGAAGAAAAACTCAAGGCCGCCGGCGTCGAGTTCATCACCGTCGATAAAAAACCCTTCTATGACGCCACCGCGCCGATCCGGGCCAAATACGGTGCTCCGTACGCCGACCTGATCAAGCGCATCGAGGCTGTCCAGTAAMNFKRTLLIAALPLAFLAQAAHAELTLKIADIHPKGYPTVVAEESMGKALEAQSKGELKFKYFPGGVLGSEKEVIEQMQAGAIQMSRVSLGIVGPVVPDVNVFNMPFIFRDQAHMRAVIDGDVGDAILDRITKSEFGLVALAWMDGGTRNLYTKKPVRKLEDLKGMKIRVQGNPMFIETFNAMGANGIAMDTGEIFSALQTGVIDGAENNPPTMLEHNHYQNAKFYSLTGHLILPEPIVMSKITWNKLTPEQQDMVKKAAKAAQAEERVLWDKKSAASEEKLKAAGVEFITVDKKPFYDATAPIRAKYGAPYADLIKRIEAVQNANANANANA
D1-35_010869066-deoxy-6-sulfogluconolactonaseATGCAAGCCGAATTGATTGTCGATGCACGCAACGCCGTCGGGGAAAGCCCGGTGTGGGTCCCCGAGGAGAACGCCTTGTACTGGGTGAACATCCCCAGCGGCGGCCTGCAACGCTGGAACGCCAGCACTGGAAAAATCCAGGGCTGGGAAGCACCGGAAATGCTCGCCTGCATTGCCCGTCACCAGGACGGCGGCTGGGTCGCGGGCATGGAAAGCGGTTTCTTCCGTCTGCAGCCCAATGACGATGGCAGCCTGGACAGCGAGCTGTGCGCCAGCGTGGAGCACAGCCGTACCGACATGCGCCTCAACGATGGCCGCTGCGATCGCCAGGGCCGTTTCTGGGCCGGCAGCATGGTGCTGAACATGGGCGCCAACGCCGACGAAGGCCGGATGTACCGATATGACGCCGGGCAACGCAGCCCGGTCGAGGCACAGCTCAGCGGTTTCATCGTACCCAACGGCCTGGGCTTCAGCCCCGACGGAAGGACGATGTATCTCTCCGATTCGCACCCGTTGAGCCAGCAGATCTGGGCCTTCGACTACGACATCGACAGTGGCACCCCGTCCAACCGGCGCCTGTTCGTCGACATGATGCCCCTGGCCGGTCGCCCGGACGGCGCAGCGGTGGACGCCGACGGTTGCTACTGGATCTGCGCCAACGACGCCGGGCTGATTCACCGCTTCACCCCGGACGGACGCCTCGACCGTTCGCTTGAAGTGCCGGTGAAAAAACCGACCATGTGCGCCTTCGGCGGAAGCCAGCTCGATACCCTCTTCGTCACCTCGATCCGTCCGGGTGACGACAATGATCCGCAATCCCTGGCCGGTGGCGTGTTCGCTCTCAAACCCGGCGTCAAGGGTCTGGCTGAACCTGCTTTCGGAGGACGGAAACACTCCGCGAACTGAMQAELIVDARNAVGESPVWVPEENALYWVNIPSGGLQRWNASTGKIQGWEAPEMLACIARHQDGGWVAGMESGFFRLQPNDDGSLDSELCASVEHSRTDMRLNDGRCDRQGRFWAGSMVLNMGANADEGRMYRYDAGQRSPVEAQLSGFIVPNGLGFSPDGRTMYLSDSHPLSQQIWAFDYDIDSGTPSNRRLFVDMMPLAGRPDGAAVDADGCYWICANDAGLIHRFTPDGRLDRSLEVPVKKPTMCAFGGSQLDTLFVTSIRPGDDNDPQSLAGGVFALKPGVKGLAEPAFGGRKHSANPGPT0017460_198DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_ARABINOSE_METABOLISM,PGPT0017460-araB|L_arabinonolactonase-K13874NANA
D1-35_01087822udhCOG0451Uronate dehydrogenaseATGACCACGACACAGATTCGCCACCCTTTCAATCGCTTGCTGTTGACCGGCGCCGCCGGCGGCCTTGGCAAAGTCTTGCGCGAACGCCTCAAGCCTTACGCCCGCCATATTCGCCTGTCGGACATCGCCAACATGGCACCGGCCATCGACGAAAGCGAAGAAGTGGTGCCCTGCGACCTGTCGGATAAACAGGCCGTGCACCAATTGGTGGAAGGCGTCGACGCCATCCTGCATTTTGGCGGTGTGTCGGTCGAGCGTCCGTTCGAAGAGATCCTCGGCGCCAACATCAGCGGCGTGTTCCATATTTATGAAGCCGCGCGCAAGCACGGCGTCAAGCGCGTGATCTTCGCCAGTTCCAACCACGTCATCGGCTTCTACAAGCAGGACCAGGCCCTCGACGCCCTCTCCCCTCGCCGTCCGGATGGCTACTACGGCCTGTCCAAGTCCTACGGCGAAGACATGGCCAGTTTCTACTTCGATCGCTACGGCATCGAGACCGTTAGCATCCGCATCGGCTCGTCATTCCCGGAACCACAGAACCGCCGGATGATGAGCACCTGGCTGAGCTTCGACGACCTCACCCAACTGATCGAATGCTCGCTCTACACCCCGAAGGTCGGCCACACCGTGGTCTACGGCATGTCCGCCAACCGCGACGTCTGGTGGGACAACAGCCACGCCGCGCACCTGGGCTACCAGCCCAAGGACACGTCGGAAATCTTCCGCGCCAAAGTCGAAGCCCAGCCGATGCCGGCCGAGGATGACCCGGCCAGGATCTACCAGGGCGGCGCCTTTGTTGCTGCCGGCCCGTTCGACAACTGAMTTTQIRHPFNRLLLTGAAGGLGKVLRERLKPYARHIRLSDIANMAPAIDESEEVVPCDLSDKQAVHQLVEGVDAILHFGGVSVERPFEEILGANISGVFHIYEAARKHGVKRVIFASSNHVIGFYKQDQALDALSPRRPDGYYGLSKSYGEDMASFYFDRYGIETVSIRIGSSFPEPQNRRMMSTWLSFDDLTQLIECSLYTPKVGHTVVYGMSANRDVWWDNSHAAHLGYQPKDTSEIFRAKVEAQPMPAEDDPARIYQGGAFVAAGPFDNPGPT0018290_356DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLACTURONATE|GLUCURONATE_DEGRADATION,PGPT0018290-udh-K18981NANA
D1-35_01088525nicP_1Porin-like protein NicPATGGGCGACTGGACCCTGGGCGCCAACCTGGGCTACTTCACCGGCAAGGAAGACGGCAGCGCCCTGGCCGGCGATCTCGACAACAAGACCGCGTTCGCCATGCTCTCCGCCAAGTACGGCGGCAACACCTTCTATGTCGGCCTGCAGAAAGTCGGCGGCGATGACGCCTGGATGCGCGTCAACGGCACCAGCGGCGGGACCCTGGCGAACGACAGCTACAACTCCAGCTACGACAACGCCAAGGAAAAATCCTGGCAACTGCGCCATGACTTCAACTTCGCCGCCGTCGGCGTGCCGGGCCTGACCCTGATGAACCGCTATATCAGCGGTGACAACGTGCACACCGCCACCGTCGATGACGGCAAGGAATGGGGCCGCGAGACCGAGCTGGCTTATACCGTGCAGAGCGGTGCGCTGAAGAGCCTTAACGTAAAATGGCGTAACGCATCGATTCGTCGCGACTTCAGCACCAACGAATTCGACGAGAACCGGATCTTCATCAGCTACCCGATTTCGCTGCTGTAAMGDWTLGANLGYFTGKEDGSALAGDLDNKTAFAMLSAKYGGNTFYVGLQKVGGDDAWMRVNGTSGGTLANDSYNSSYDNAKEKSWQLRHDFNFAAVGVPGLTLMNRYISGDNVHTATVDDGKEWGRETELAYTVQSGALKSLNVKWRNASIRRDFSTNEFDENRIFISYPISLLPGPT0023610_3DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GALLATE_RESISTANCE,PGPT0023610-galP-K16517NANA
D1-35_010893453recCCOG1330RecBCD enzyme subunit RecCATGCCGGACGCTAAGTCCCTCAGCCCTGCTTTCATGGTGGTCCACGGGAACCGCCTTGATGAGCTGCGCAGCCTGGTGATAAGCCTCATGCGGCGCTATCCGCTGGCCCCTCTTGAAAATGAAATCGCGCTCGTACAAAGCAACGGCATTGCCCAATGGCTGAAGCTGGCACTGGCTGAGGATCCCCTTGACGACGACATGGGCGGCTGCGGCATCGCGGCTGCGATTGATGTGCAGTTGCCCGGCAGTTTCATGTGGCAGCTCTATCGAACGGTGCTCGGGCGTGACGAGATTCCAGCCAAGTCCTTGCTGGACAAGGCCCCGCTTACGTGGCGCCTGATGCGCCTCCTGCCGCAATTGATTGAACAGCCCCATTTCGAGCCCCTGCGGCGTTTTTTGACCCATGACACGGACTTGCGCAAGCGGTACCAGTTGTCCGAGCGCCTTGCAGATTTGTTCGACCAATATCAGGTGTACCGAGCCGACTGGCTCGAAGACTGGGCCCAAGGGCGCCATCAGACCCGCAACGTCCGGGGTGAAATCAAGCCGCTCGCGCCGGCGAATTGCTGGCAAGCGGAATTGTGGCGGGCGTTATTGCTGGATGTGGGAGAGCAAGGCATGGCTCAAAGCCGTGCGGGTGTTCATCAGCGCTACATCGAGCGCATCAATAGTCTGGAAGCCGCTCCAAAAGGTCTGCCTGCACGGGTAATAGTCTTCGGTATTTCCTCACTGCCCGCCCAAGCGCTCGAAGCCCTGGCCGGTCTGTCACGGTTCAGTCAGGTTCTGCTGTGCGTCCATAACCCATGCCGTCACCATTGGGCAGATATCGTGGCCGACAAGGATCTGCTTCGCCACCAATACAAGCGGCAGGCACGCAAGAGCGGCATGCCGGACGTCCTGGACCCGCAAACCTTGCATCAGCATGCTCATCCATTGCTGGCTGCCTGGGGGAAGCAGGGGCGCGACTATATCAACTTGCTCGACAGCTATGACGAGCCAAACACCTATCGCTCGGTATTTCGCGAAGGGCGGATCGACCTGTTCAGCGAAGGCAATCCCACTACGCTCCTCAGCCAGTTGCAGGATGACATTCTTGAGCTGCGGCCACTGAGCGAAACCCGGGAAAAGTGGCCCGCGGTCGATACCTCGCGAGACGGATCGATCCGTTTTCATATCGCCCACAGCGCCCAGCGTGAAGTCGAGATTCTTCACGATCAGTTGCTTGCCCATTTCAGCAATGACCCGGCTTTACGCCCTCGGGATATCATCGTCATGGTCCCGGACATCGACAGTTATGCGCCGCATATTCGCGCGGTGTTCGGCCAACTCGACCGGGTCGATCCGCGTTTCATCCCATTCACACTGACGGACCAAGGTCAGCGTGGACGCGATCCGCTGCTGATTGCCGTCGAGCATTTGCTGAAACTTCCCGATAGCCGTTTCCCCGTCAGCGAAATCCTTGATTTGCTGGACGTCCCGGCATTGCGTGAGCGATTTGGCATTGATGAGGCCGATTTACCGACACTGCACCGTTGGATCGAGGGCGCAGGCATCCGTTGGGGGATAAGCGCCGAGCACCGAGCCGGGTTGGGCTTGCCCGCGGAGTTGGAGCAGAACAGTTGGCGTTTCGGCCTGCGTCGCATGTTGTTGGGGTATGCCGTTGGTGATTCGCAAGCCTATGAAGGCATAGAACCCTATGACGAAATCGGCGGTCTGGATGCCGCATTGATCGGTCCGTTGGTTGCATTGCTCGATGCCCTGGAGGTTGCTTACCAGGCGCTCAGTCAACCCGCCTCACCTCAGGACTGGGGGACACGCCTGCATGATCTGATGCAGTTGTTCTTTCTGGCGAGCAACGAGCATGACGATTATTTGCTGGCCCAGCTCGAGGACTTGCGTGAAAACTGGTTGGAAACCTGCGAGTCGGTCGGCCTGCACGACGAGCTGCCGTTGACGGTTGTCAGAGAGGCCTGGCTGGCGGGGCTGGATCAAGGGCGACTGTCCCAGCGCTTCCTCGCCGGAGCGGTCAATTTTTGTACCTTGATGCCGATGCGGGCGATCCCCTTCAAGCTGGTCTGCCTGTTGGGCATGAACGATGGTGATTACCCGCGGGCCCAACCGCCATTGGATTTCGATCTCATGGGCAGTGATTATCGGCCGGGAGATCGCTCTCGACGAGAGGACGATCGCTACCTGCTGTTGGAGGCGCTGCTTTCTGCGCGGGAAAAACTCTACATCAGTTGGGTCGGGCGCAGCATACGCGACAACAGCGAGCGGCCTGCCTCAGTCCTGGTCGGACAGTTGCGCGATCATCTCGCAAGTGGCTGGCAGTCGGCGGATGTCCATGGCGACCTTCTTGAAGCGCTGACCCAGGAGCACCCCCTGCAACCGTTCAGCGCTCGTTATTTCTACCAGGGCGATGAGCTGTTCAGCTATGCCAGCGAATGGCGAGGACTTCATGAGGATCATGAGCACGCTGGCAAGCCTGGGGCCCTGGAGCCCTACGTTCAGGAGGAACCCCTGGGGCTTGGTCAGTTGCAGGACTTCCTGCGTAATCCTGTCCGGCACTTTTTCAGCCAGCGACTCAAGGTGTTCTTCGAGCCTCTCGAAGCCCCATTGGCGGACGACGAACCTTTCATCCTGGATGCCCTGCAGCGCTATAGCCTGAGCGACAGCCTGCTCGAGGCTGCCCTTGTTCGCCTTGACCAAGCGGACCTTGCATTGGAGGCTCACGCCAAGAGGCTTCAGAACAGCGGCCTGTTACCCATGGCTGGCTTTGGCCAATGTATGCAGCGTGAATTGATCGAGCCGCTGCCTGATCTACTGCAACGCTACCAGCAACTTCTGGCGCTATGGCCGACTCCGCTGACCAGTGCCGTGCCCGTCAGCCTGCAATTACACGGTGTGAACATTGAAGGTTGGCTCAGCGGCCTGCACCAGCGCTCCGATGGTGCGGTCCTCGCCATCACTGCCATTCCCAACAGTATCGGTTCTACCAGGACCCGGAAATGGCACCGCTTGATACGACCCTGGGTGAACCATCTCGTGGCTTGCGCCAACGGTCTGTCGATGACGACGGCATTGGTCGCCAGCGATGACAGCTTGCTGCTGAATCCTTTTGACGAGTCGGTAGCCCGCAAGCTGCTCGGCGACTTGTTGCAAGCCTGGCAGGCTGGCATGCGCCAACCGCTGCCAATCGCAGTGAAGACCGCCTTCGCCTGGCTCGGCCAGAGTGATCCGGACAAAGCCGAAGCGGCCGCTCGAAAAGCCTACGAAGGCGATGGGCTGACGTCTGAAGGCGAGCGGCGCGAAAGCCCCGCTCTGGCTCGGCAATATGCCGACTTCGATGCGCTTATCGCTGACGAAACATTCCCCGACTGGTGTGACGCGCTCTATCGACCGCTTCTGGAAGCACCGTGGCGTTCGTTGGCGGGTGAGGAAGCGCATTCATGAMPDAKSLSPAFMVVHGNRLDELRSLVISLMRRYPLAPLENEIALVQSNGIAQWLKLALAEDPLDDDMGGCGIAAAIDVQLPGSFMWQLYRTVLGRDEIPAKSLLDKAPLTWRLMRLLPQLIEQPHFEPLRRFLTHDTDLRKRYQLSERLADLFDQYQVYRADWLEDWAQGRHQTRNVRGEIKPLAPANCWQAELWRALLLDVGEQGMAQSRAGVHQRYIERINSLEAAPKGLPARVIVFGISSLPAQALEALAGLSRFSQVLLCVHNPCRHHWADIVADKDLLRHQYKRQARKSGMPDVLDPQTLHQHAHPLLAAWGKQGRDYINLLDSYDEPNTYRSVFREGRIDLFSEGNPTTLLSQLQDDILELRPLSETREKWPAVDTSRDGSIRFHIAHSAQREVEILHDQLLAHFSNDPALRPRDIIVMVPDIDSYAPHIRAVFGQLDRVDPRFIPFTLTDQGQRGRDPLLIAVEHLLKLPDSRFPVSEILDLLDVPALRERFGIDEADLPTLHRWIEGAGIRWGISAEHRAGLGLPAELEQNSWRFGLRRMLLGYAVGDSQAYEGIEPYDEIGGLDAALIGPLVALLDALEVAYQALSQPASPQDWGTRLHDLMQLFFLASNEHDDYLLAQLEDLRENWLETCESVGLHDELPLTVVREAWLAGLDQGRLSQRFLAGAVNFCTLMPMRAIPFKLVCLLGMNDGDYPRAQPPLDFDLMGSDYRPGDRSRREDDRYLLLEALLSAREKLYISWVGRSIRDNSERPASVLVGQLRDHLASGWQSADVHGDLLEALTQEHPLQPFSARYFYQGDELFSYASEWRGLHEDHEHAGKPGALEPYVQEEPLGLGQLQDFLRNPVRHFFSQRLKVFFEPLEAPLADDEPFILDALQRYSLSDSLLEAALVRLDQADLALEAHAKRLQNSGLLPMAGFGQCMQRELIEPLPDLLQRYQQLLALWPTPLTSAVPVSLQLHGVNIEGWLSGLHQRSDGAVLAITAIPNSIGSTRTRKWHRLIRPWVNHLVACANGLSMTTALVASDDSLLLNPFDESVARKLLGDLLQAWQAGMRQPLPIAVKTAFAWLGQSDPDKAEAAARKAYEGDGLTSEGERRESPALARQYADFDALIADETFPDWCDALYRPLLEAPWRSLAGEEAHSNANANANANA
D1-35_010903690recBCOG1074RecBCD enzyme subunit RecBATGAGTCGACAAACACCCTTGGCGCTGGCTTTCCCACTACGCGGCAGTCAATTGATCGAAGCCAGCGCAGGAACTGGCAAGACCTTTACCATCTCGGCGTTGTACTTGCGCCTGGTGCTGGGCCATGGCGGCTCGACGGCCGGCTTTGGCCGTGAGCTGCTTCCTCCGCAGATACTGGTGGTGACTTTCACCGACGCTGCCACGAAGGAATTGCGCGAACGCATCCGCACCCGCCTCGCGGAAGCGGCGCGTTTTTTTCGTGACGAGATTCCCGCTCCCGACGCGTTGATAAACGCACTGCGTGATGAGTTTGATAAAGGGCAATGGCCTGGCTGTGCGAATCGGCTGGATATCGCCGCGCAATGGATGGATGAAGCCGCCGTTTCGACGATCCACAGCTGGTGCCAGCGGATGCTTCGTGAGCATGCCTTTGACAGTGGCAGCCTGTTCACCCAGACCCTGGAAACCGACCACAGCGAATTGCTCGGCGAGGTGCTGCGCGATTATTGGCGATTGTTCTGCTACTCGATGGAGGGTGAGGCACTGGATTGGGTGCGAGCGCACTGGGGCGGTCCTGCTGCGTTGTTGCCACGGGTGAGGGGGTTGTTTGCCAACTCGCGAGGTGGTGACGATGGGCTTGAACCGACGGAACTCATCACCGCGTCCCTGCGCGAGCGCAGCGCAGCCTTGCTCGATCTCAAGGCTCCCTGGCGGCAGTGGGCGGTGGAGTTGCTGGAGATCTGCCAGCAAGGCGTAGCCAATAAAACCGTCGACGGGCGCAAGATGCAGGCTCGTTACTTCGAGCCATGGTTTCAGAAGCTATCTGCATGGGTTGAAGACGAGAGCCTGGAGTTGCTCGACATCGGCACCGGCTTCACGCGCTTGACGCCCGAAGGCATGGCCGAGGCCTGGAAGGGCGACGTGCCCAGCCACCCAGGGCTGGACGCCATGGCGGGCCTGAAGGCCGGCCTGGATGCCTTGCCCACGCCCGACGCTGCGGTGCTGCAGCATGCTGCGCAGTGGGTCGGGGCGCGCTTCGAGGCGGAGAAGCGGCGCCGGGCGGAAATGGGATTCGACGACATGCTGCTGCGCCTGGACGCAGCTTTGCAGGCTGAAGGTGGGGAGCGCCTGGCGAGCCTGATTCGCGAGCAGTTTCCGGTTGCGCTGATTGACGAGTTCCAGGACACCGACCCGGTCCAGTACCGCATCTTCGAGAGCATCTATCGCATTGGCGACAACGATCCTGAAACGGGGCTGTTCCTGATCGGGGATCCGAAACAGGCCATTTATGCGTTTCGCGGCGCCGACATCTACACCTATCTGCGCGCCCGCGAAGCCACTGCCGGCAGGTTGCATACGCTGGGGACCAATTTCCGTTCCAGCCATGCCATGGTCGGCGCTGTGAACCATATTTTTCAATACGCCGAATCGCGGCTGAATGGGCGCGGGGCTTTTCTGTTCCGCGAGCCATCGGGTGAGAATCCGGTGCCATTCCTGCCGGTCGACTCCCAGGGCCGCAAGGAGTCCTTGCAGCTTGCGGGGCGGACGGTCGCGGCCTTGAATATCTGGCATCTGGCCTCGGACCAGCCGCTCTCCGGAGCGGTGTACCGACAGCAAATGGCCGTGGCCTGCGCCAGTGAAATCACGGCGCTGCTCAATGGCGGCCAGTCAGGGCACGATGGCTTCGTTGGTGATGGGGAAATGTTACGGGGGCTTCGACCGGCGGATATCGCCATCCTGGTGCGTGATGGCAAGGAAGCGCAGGCCGTGCGAAACGAGTTGTCGGCACGGGGTGTGCGCAGCGTTTATCTATCCGATAAGGACTCGGTCTTCGCCTCGCAGGAGGCAAGGGATTTGCTGGCCTGGCTCAAGGCTTGCGCCGAGCCGGACGTCGAGCGGCCGCTGCGAGCTGCGCTGGCCAGCGTCACCCTGAATCTGCCGCTTGCAGAACTGGAGCGCCTCAACCAGGACGAGTTGGCCTGGGAACGTCGAGTCATGCAGTTCCGTAGCTATCGGGTGGTCTGGCGCACCCAGGGCGTGCTGCCCATGCTGAGGCGCCTGCTGCATGACTTCAAGCTGCCCCAGGCCTTGATGATGCGTGGCGATGGCGAGCGGGTGCTGACCAACCTGTTGCATCTATGCGAGCTGTTACAGCAGGCCGCCGTCGAGCTGGATGGCGAGCAGGCCTTGATTCGCTATCTGTCCGAACACCTTGCATTGACCGGGCAGGCGGGAGAGGAACAGATCCTGCGCCTGGAAAGCGACGAGCAACTGGTCAAGGTGGTCACGATCCATAAATCCAAGGGGCTTGAGTATCCGTTGGTTTTCCTGCCGTTCATATGCTCGACGAAACCGGTGGACGGCACCCGATTGCCGTTGCATTACCACGATGAAGCCGGTCATGCGCAGATCAGTCTTACGCCCAGCCCCGAGTTGATCGCCAAGGCCGACGACGAGCGCCTGGCCGAGGATCTTCGGCTTCTATACGTGGCGCTTACCCGTGCGCAGCATGCCTGCTGGTTAGGTGTGGCCGATCTCAAGCGAGGCAGTAACAGCCGCTCGATCCTGCATCTGTCTGCGCTGGGGTATCTGTTGGGCGGTGGTGCGCCGTTGACCGAGTCGGTGGCGTTGAGACGTTGGCTGGAAGATCTGCAGCAGGGGAGCGACGCGGTGAGCTGCCAGGATATGCCGGAGGCCAACGATCAGCACTATCGACCCCCACGTAATGATGCGGTGTTGCTTGAACCCTTGCTTCCGGTACGTAAAGCCAGCGAGAACTGGTGGATCGCTTCGTACAGCGCGCTGCGCTTTGGAGAAAGTCTCAGCGCCGGCACCGATTCCGCGCCGGAAAACCCACAGGCGCAGAAAATGTTCGACGACGAACGGCTTGATCCTGACGCTCCCAGGGAAGTCATCGCCGTCGGCGGTGATATCCATCGTTTCCCCCGCGGTCCCAACCCCGGTACGTTTCTCCATGGTCTCTTGGAATGGGCTGCCGGAGAGGGATTTACCGCCTCGCCAATGGCCCTCGAAGATGCCATCGCGCGACGTTGCAACCGCCGCGGCTGGAAAGGCTGGATCAGCACCCTTGGAGACTGGTTGCAGCACCTGGTCACGACGCCCTTGCAGATCGGTGGCGGACAGTCTCCGGTGGTACTGGCTCAGTTGAGCCAATTTCAGGTCGAGATGGAGTTCTGGTTCTCCAGTCACAAGGTTGATGTGCTCAAGCTTGATGAGCTGGTTTGCCAGTCAACCCACGGTGGCGTGGCTCGTGTCGCCGCAGAACCGGCACTGCTCAACGGAATGTTCAAGGGCTTCATCGACCTGACCTTCGAGCATGACGGCCGGTATTACGTGGCTGACTACAAATCCAACTGGCTGGGCGCCGATGACATGGCCTACACCGCTCAAGCCATGGAGCAATCGATTCTGGATAATCGTTACGACCTGCAATACACGCTGTACCTGTTGGCCCTGCATCGCCAGCTCAAGGCGCGCCTGCCAGACTATGACTACGACCGGCATGTCGGTGGCGCGTTGTATCTTTTCCTGCGCGGCACACGTGCAGCCAGCCAGGGCGTGTTTTTCACCAAGCCCCCTCGGGCACTGATCGAACAGCTTGACCGCCTGTTCCAGGGAGCACCCGCGCCCAAGGCCGAGCCGGCATGGGTACAAGGAGAATTGTTATGAMSRQTPLALAFPLRGSQLIEASAGTGKTFTISALYLRLVLGHGGSTAGFGRELLPPQILVVTFTDAATKELRERIRTRLAEAARFFRDEIPAPDALINALRDEFDKGQWPGCANRLDIAAQWMDEAAVSTIHSWCQRMLREHAFDSGSLFTQTLETDHSELLGEVLRDYWRLFCYSMEGEALDWVRAHWGGPAALLPRVRGLFANSRGGDDGLEPTELITASLRERSAALLDLKAPWRQWAVELLEICQQGVANKTVDGRKMQARYFEPWFQKLSAWVEDESLELLDIGTGFTRLTPEGMAEAWKGDVPSHPGLDAMAGLKAGLDALPTPDAAVLQHAAQWVGARFEAEKRRRAEMGFDDMLLRLDAALQAEGGERLASLIREQFPVALIDEFQDTDPVQYRIFESIYRIGDNDPETGLFLIGDPKQAIYAFRGADIYTYLRAREATAGRLHTLGTNFRSSHAMVGAVNHIFQYAESRLNGRGAFLFREPSGENPVPFLPVDSQGRKESLQLAGRTVAALNIWHLASDQPLSGAVYRQQMAVACASEITALLNGGQSGHDGFVGDGEMLRGLRPADIAILVRDGKEAQAVRNELSARGVRSVYLSDKDSVFASQEARDLLAWLKACAEPDVERPLRAALASVTLNLPLAELERLNQDELAWERRVMQFRSYRVVWRTQGVLPMLRRLLHDFKLPQALMMRGDGERVLTNLLHLCELLQQAAVELDGEQALIRYLSEHLALTGQAGEEQILRLESDEQLVKVVTIHKSKGLEYPLVFLPFICSTKPVDGTRLPLHYHDEAGHAQISLTPSPELIAKADDERLAEDLRLLYVALTRAQHACWLGVADLKRGSNSRSILHLSALGYLLGGGAPLTESVALRRWLEDLQQGSDAVSCQDMPEANDQHYRPPRNDAVLLEPLLPVRKASENWWIASYSALRFGESLSAGTDSAPENPQAQKMFDDERLDPDAPREVIAVGGDIHRFPRGPNPGTFLHGLLEWAAGEGFTASPMALEDAIARRCNRRGWKGWISTLGDWLQHLVTTPLQIGGGQSPVVLAQLSQFQVEMEFWFSSHKVDVLKLDELVCQSTHGGVARVAAEPALLNGMFKGFIDLTFEHDGRYYVADYKSNWLGADDMAYTAQAMEQSILDNRYDLQYTLYLLALHRQLKARLPDYDYDRHVGGALYLFLRGTRAASQGVFFTKPPRALIEQLDRLFQGAPAPKAEPAWVQGELLNANANANANA
D1-35_010912097recDCOG0507RecBCD enzyme subunit RecDATGAGTCGCTCCTTTGCCGACCTGCTGCCTAAATCGCTCGACGACGAAGGGCTGGTCGACCTGGCGCCCCTGAGTCGTGCAGAGGACCTGCTGCTGTTGCTCACGCGCTGGGTTGAACGTGGCTGGTTGCGGGCCTTGGACAAGGCATTCGTGGTGTTCCTCCATGAATTGTCGCCTGGCGATGATCCGCTGGTATTGCTGGCGGCTGCGCTGACCAGCCACCAACTGGGCCATGGGCATGTTTGCCTGGACCTGTTCGAGACACTCAAGGAACCTGATTTCGCCCTGTCACTGCCCCCCGAGGGCGACCTGCAGACGGGCGTGATGCTGTTGCCTTCGCAGATCCTGAGAACGCTGGACGGTGCCCATTGGTGCAAGGTCCTGGCGTCCAGCCGCCTCGTGGCCCTGGCGGTCGATGACAGCGAAGAGGCGCAGCAGCGGCCACTGGTATTGTCCGGCAAACGGCTTTACCTGCGTCGTTACTGGGGCTATGAACGACGGATCGACGCGGCGTTGCGTCAACGCCTGGCCGAACAGGAAAGCGCCCCTGATGACCTGCGCGAGCGGCTGGACGGACTGTTCGGGCCGGCCAGCACTACCGGCCCGATCGACTGGCAGAAGCTGGCTTGCGCGCTGGCGACGCGGAGCGCGTTCAGCATCGTTACCGGCGGCCCGGGCACGGGTAAGACCACCACGGTCGTGCGCTTGCTTGCCTTGTTGCAGGCACCTGCCGTCGAGGCGGGGAAACCGCTGCGGATTCGCCTGGCCGCACCCACCGGCAAAGCCGCTGCGCGGCTGACCGAGTCGATCAGCCAGCAAGTTCGGACGCTGGATGTGATCGACTCCGTACGCGAGCGAATTCCCTGCGACGTCACCACGGTGCATCGCCTGCTCGGCAGTCGTCCCAGCACCCGACATTTTCGCCACCATCGTGGCAATCGATTGCCGTTGGATGTGCTAGTGGTCGATGAGGCGTCCATGATCGATCTGGAAATGATGGCCAATCTGCTGGACGCGCTGCCGTCCCATGCGCGGTTGATTTTGTTGGGCGACAAGGACCAGCTGGCTTCCGTGGAGGCCGGCGCGGTATTGGGGGATCTGTGTCGGGACGCCGAGGACGGCTGGTATAGCCCACAGACGCGCGCCTGGCTCGAGTCCGTCAGTGGCGAGAGCCTGGCGGCGAGCGATCTGAAACAGGACCTCGACGACACTCATCCCCTCGCGCAGCAAGTGGTGATGCTCAGGCATTCCCGACGCTTTGGCGAAGGCAGCGGTATCGGCCAACTGGCCCGACGGGTCAATCGCCAGCAGCCTGAAGAAGCTCGTCAGTTGCTAGAGGAGGGCCAATATGCCGACCTGTTCTCCCTGGCGCTGAAGAGCCAGCACGACGGGACGCTCGAGCGCTGGTTGCTCGATGGTCGACCCGGTGGTCCGCAGGGCTATCGGCATTATCTGAGCCTGCTGCGACAGCGACGTCCGGACATTTCTCGCCCGCTGGAGGACAGTTGCTGGACTGATTGGGCGCGTGAGGTCTTGTCGGCCTTTGACGAGTTCCAATTGCTCTGTGCCGTACGCAAGGGGCCGTGGGGCGTCGAGGGCCTGAACCCGAGAATCACCGCCGCGCTGCTCAAGGCTCGCCTGATCGATAGCGATCACCAGTGGTACGAGGGGCGTCCGGTACTGATGACTCGCAACGACTACGGGCTGGGATTGATGAACGGCGATATCGGGATCGCTCTCAAGTTGCCCGAGCGTGACGGTCCTGACGCTGGCAAGCAGGTCCTGCGGGTCGCCTTTCCTCGTAACGATGGCCGGGGTGGTGTGCGTTTCGTCCTGCCCAGCCGCCTGAATGACGTGGAAACCGTTTACGCCATGACGGTGCACAAGTCCCAGGGGTCGGAATTCACCCACACGGCCCTGATTCTTCCGGATGCCTTGAACCCCGTTTTGACCAAGGAACTGGTGTATACCGCCATTACCCGAGGCAAGCAGTGGTTCAGCCTGATAGAGCCGCGCACGGGAATATTCGAAGAAGCGGTTCGGCGCAAGGTCAGGCGTTTGAGCGGGTTGATGCTCGAATTGGATGGAAACGACTGAMSRSFADLLPKSLDDEGLVDLAPLSRAEDLLLLLTRWVERGWLRALDKAFVVFLHELSPGDDPLVLLAAALTSHQLGHGHVCLDLFETLKEPDFALSLPPEGDLQTGVMLLPSQILRTLDGAHWCKVLASSRLVALAVDDSEEAQQRPLVLSGKRLYLRRYWGYERRIDAALRQRLAEQESAPDDLRERLDGLFGPASTTGPIDWQKLACALATRSAFSIVTGGPGTGKTTTVVRLLALLQAPAVEAGKPLRIRLAAPTGKAAARLTESISQQVRTLDVIDSVRERIPCDVTTVHRLLGSRPSTRHFRHHRGNRLPLDVLVVDEASMIDLEMMANLLDALPSHARLILLGDKDQLASVEAGAVLGDLCRDAEDGWYSPQTRAWLESVSGESLAASDLKQDLDDTHPLAQQVVMLRHSRRFGEGSGIGQLARRVNRQQPEEARQLLEEGQYADLFSLALKSQHDGTLERWLLDGRPGGPQGYRHYLSLLRQRRPDISRPLEDSCWTDWAREVLSAFDEFQLLCAVRKGPWGVEGLNPRITAALLKARLIDSDHQWYEGRPVLMTRNDYGLGLMNGDIGIALKLPERDGPDAGKQVLRVAFPRNDGRGGVRFVLPSRLNDVETVYAMTVHKSQGSEFTHTALILPDALNPVLTKELVYTAITRGKQWFSLIEPRTGIFEEAVRRKVRRLSGLMLELDGNDNANANANANA
D1-35_01092576hypothetical proteinATGGAAGCGGCGGTTCGGGGGGCGGCGCGCGGAAACGGCCGGAGGCATTATGCGCTCGCCGGTCTGCTGTGCTTGCTGTCGCCTGCAATTGCCGCCCAGGAGCCGACCTCTACCACTCGGGCCGAACAGCGGGCCGAAGCGGTCACCCAGGTCGTGTTGGGGATCCTCAGCTACGCTCGCTGGCCTGTTGAACCGACGCAATTGCAGCTGTGCATCGTCGGTCCGACGCAATACACGGACGACCTGGTCAAAGGCACCGCCCAGGCCACCGGCAGGCCTGTGACGGTACAGCGCTTGCTGGCCGATCATCCCGGCATTGCGAACGATTGCAATGCCGTCTACATCGGCCGGCTGACCAACGACGAACGTTCCCGATTGTTTGCGTCCCTGATCGGCAAACCGGTGTTGAGCATCAGCGAAGGCGGCGACCAATGCACCGTGGGCAGCCTGTTCTGCCTGCGGGTCGGAGATGAACAGGTGTCGTTCGAGGTCAACCTCGACTCGGTGGCACGCAGCGGTGTACGCATCCATCCGAGCGTCCTCCAGCTGTCACGCCGTAGGCCCGCCGCGCCATGAMEAAVRGAARGNGRRHYALAGLLCLLSPAIAAQEPTSTTRAEQRAEAVTQVVLGILSYARWPVEPTQLQLCIVGPTQYTDDLVKGTAQATGRPVTVQRLLADHPGIANDCNAVYIGRLTNDERSRLFASLIGKPVLSISEGGDQCTVGSLFCLRVGDEQVSFEVNLDSVARSGVRIHPSVLQLSRRRPAAPNANANANANA
D1-35_010931269dgcNCOG2199Diguanylate cyclase DgcNATGAATTCGTCCAGATCACGAATTCGTCCCACGTTGGGCTCGGTCATCGGTCGCGGTCACCTGATCGTTGCGCTGGTGGCGATCACCATGGCCAGCGTCTCCCTGACCTTGTTGGGCGTGCTTGCCTTACGGGTCTATGCCGATCACAACTTGCATCTGATTGCCCGTTCGATCAGCTACACCGTGGAGGCGGCCGTGGTCTTCGATGACGCTGCGGCGGCCACCGAAGCGCTGGCCCTTATTGCTTCCACTGAAGAAGTCGCCGATGCCCAGGTCTTCAATGAAAGTGGCCGCCTGTTGGCGCATTGGCGGCGACCGGAAACCGGTCTTCTGTCGGAGCTGGAAATGCACATCGCCAAGGCATTCCTGGAAAAGCCCATCAGCCTGCCAATCATCCACCAGGAACAGAACATCGGCAGGATCCTGCTGGCAGGACACGGCGGTAGCCTGTTGCGTTTTCTGCTCAGCGGCCTGGCCGGGATCATCCTGTGCACGGCGGTCAGTGCCTGGGTCGCCCTGTATCTGGCGCGCCGTCAGCTGCGGGCGATTACCGGACCTTTGCGTAGCCTGGCTGAAGTAGCCCACGCCGCCCGTTGCGAGCGCGCCCTGGACCGCCGAGTGCCACCGGCCGATATCGCCGAACTGGATAATCTGGGCAACGACTTCAACGCACTGCTTGCCGAGCTGGAATCCTGGCAGACCCATCTGCAAAGTGAAAACGAGACCCTGGCTCACCAGGCCAGCCACGACAGCCTGACCGGGCTGCCGAACCGGGCCTTTTTCGAAGGTCGGCTGATCCGTGCCTTGCGCAATGCCAACAAGCTCGACGAGCAAGTGGCCGTCCTCTACCTGGACAGCGATCGCTTCAAGGGCATCAACGACAACTTTGGTCATGCCGCCGGTGACGCGGTGTTGACCGCCGTGGCGACCCGGGTCCGGGCGCAGTTGCGTGAGGATGACTTGGTCGCGCGTCTGGGCGGTGACGAGTTTGCCGTGCTGCTGGCGCCGTTGCACAAGACCGAGGATGCCGAACGGATCGCTGAAAAAATCATCGCCAGCATGGAGATGCCGATTCAATTGCCCGGCAATGCCTCGGTCCTGACGTCCCTCAGCATCGGCATCGCCGTTTACCCCGATCATGGCGCCACGCCCGGCGCCTTGCTCAGCGCCGCTGATGCGGCGATGTACCAGGCCAAACGCCTCGCCCGAGGCGGCCAACACACGGCGGGGTCGGAGCACCCGGTCGCGGATCTTCAAACCAGGAGCTGAMNSSRSRIRPTLGSVIGRGHLIVALVAITMASVSLTLLGVLALRVYADHNLHLIARSISYTVEAAVVFDDAAAATEALALIASTEEVADAQVFNESGRLLAHWRRPETGLLSELEMHIAKAFLEKPISLPIIHQEQNIGRILLAGHGGSLLRFLLSGLAGIILCTAVSAWVALYLARRQLRAITGPLRSLAEVAHAARCERALDRRVPPADIAELDNLGNDFNALLAELESWQTHLQSENETLAHQASHDSLTGLPNRAFFEGRLIRALRNANKLDEQVAVLYLDSDRFKGINDNFGHAAGDAVLTAVATRVRAQLREDDLVARLGGDEFAVLLAPLHKTEDAERIAEKIIASMEMPIQLPGNASVLTSLSIGIAVYPDHGATPGALLSAADAAMYQAKRLARGGQHTAGSEHPVADLQTRSPGPT0026000_234DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-c-di-GMP_SIGNALLING_PATHWAY,PGPT0026000-tpbB-K21021NANA
D1-35_01094504pal_4Peptidoglycan-associated lipoproteinATGTTTTCCAATTCGCGTTTTTCTCTGCTGCGTTATGCAGCATTTTTGTTCATCGCCATTTTTGCCCTCAGCGGATGCCAGACGACGCCGCAAAAAGGACTGAGCCCAGCGCAGATCGCTGTTCTCAAGGAGCAGGGGTTCAAACTGACAGACGACGGCTGGGCCTTCGGACTTTCGGGCAAAGTGCTGTTTGGCAGTGACGTGGAAAGCCTCAACCCGGCCAGTACCGAGATCGTCGAGCGGATCGGCAAGGCACTGCTGGGTGCGGGAATCGAGCGGGTACGTATCGACGGTCACACCGATGCATCGGGCTCCCAGGCCTATAACGAACAACTGTCGATACGTCGGGCCGAAAGCGTTGGCAAAGTCTTGAGAGGCGTGGGCATGCGCGAAGAGAACGTCCAGTTGCGCGGCCTTGGCAGCAGCCAACCCGTCGCCCCCAACGACACCGCCAGCGGGCGCACCGAAAATCGTCGCGTGGCCATCGTGGTCATCGCCGACTAAMFSNSRFSLLRYAAFLFIAIFALSGCQTTPQKGLSPAQIAVLKEQGFKLTDDGWAFGLSGKVLFGSDVESLNPASTEIVERIGKALLGAGIERVRIDGHTDASGSQAYNEQLSIRRAESVGKVLRGVGMREENVQLRGLGSSQPVAPNDTASGRTENRRVAIVVIADNANANANANA
D1-35_01095948hdfR_4HTH-type transcriptional regulator HdfRATGCAAAAAAACATCACCTCCTTAGGGTCGCTGAATTGGGACGACCTCAAGTTTTTCCTCGAAGTGGCCCGCACCCGCAAGGCCAGCACGGCCGCCAAGCGTCTGGCCGTCGACTACACCACGGTGTCGCGACGCATCAGCTCGCTGGAAGCTTCCTTGGGTACGCTGCTGTTCGAAAAATCCCGGACCAACGGTTTTGTCCTGACGGCTGAAGGCCAACGTTTACTGGGCTATGCCGAGTCGATCGAAAGCACGCTGCACATGGCTTGCGAACAAGTTTCAGGCTCAGGCGTCGCGCTGTCCGGTCATGTACGCATGGGCTGTACGGAAGGCTTCGGCAGCTTTTTCATCACCCCGCAGTTGAGCCATTTCGTCGACGCCTACCCGGCGATCTCGGTGGACATCCTGCCGCTGCCGCACTTCATCAGCCTCTCCAAGCGCGAAGCCGATATCGTCATCGCCCTCGAGCGCCCCGAACATGGGCCGTATGTGTGCTGCAAACTCTGCGACTACCGATTGCAGCTTTATGCAACCCGGCAATACCTGGACAACCACCCACCCATCCACCGCCCGGCAGACCTGAACAAGCATTCGTTCATCAGCTATGTGGATGACCTGGCGTTCAGTTCCGAGCTGCTCTACCTGGCCAACGTATTGCCCGGCGCCCACGCTCATCTGCGCAGCACCAGCGTGATCGCCCAATTCGTGGCGGCGCAACAAGGCCGGTCACTGGCGATCCTGCCGTGCTTTTTGGCCGCCCAAGACCCACGCCTGCTGCCGGTGCTGCCGGAGGAAATCACGGTCACCCGGCAATTCTGGATGTACTGCCGGGAGGATCTGCGCAAGCTCAAGCGGATTACGTTGTTGTGGGATTACATCCGCGAAGTCACCGAACAGAACCAGCCACTACTCATGGGCGACAGCCGGGAGATGGTGTTTGCCGATTAGMQKNITSLGSLNWDDLKFFLEVARTRKASTAAKRLAVDYTTVSRRISSLEASLGTLLFEKSRTNGFVLTAEGQRLLGYAESIESTLHMACEQVSGSGVALSGHVRMGCTEGFGSFFITPQLSHFVDAYPAISVDILPLPHFISLSKREADIVIALERPEHGPYVCCKLCDYRLQLYATRQYLDNHPPIHRPADLNKHSFISYVDDLAFSSELLYLANVLPGAHAHLRSTSVIAQFVAAQQGRSLAILPCFLAAQDPRLLPVLPEEITVTRQFWMYCREDLRKLKRITLLWDYIREVTEQNQPLLMGDSREMVFADNANANANANA
D1-35_010961527mmsACOG1012Methylmalonate-semialdehyde dehydrogenase [acylating]ATGAACGTTTCCCTTACGCCCAGCGACACAGCCCTGCAAACCGTCAGATTGCTGATCGATGGCGAGTGGGTCGAGTCCCAATCCAGCGAATGGCACGACATCGTCAACCCGGCCACCCAACAAGTGCTGGCGAAGGTACCGTTTGCCACCGCGTCGGAAGTCGATGCCGCCATCGCTGCTGCCCAGCGTGCTTTCCAGACCTGGAAGCTGACACCGATTGGTGCGCGGATGCGCATCATGCTCAAGCTCCAGGCGCTGATCCGCGAGCATTCCAAGCGCATCGCCGCGGTGCTCAGTGCCGAACAGGGCAAGACCATCGCCGACGCCGAAGGCGATATTTTCCGCGGCCTGGAAGTGGTCGAGCACGCCTGTTCCATCGGCACCCTGCAAATGGGCGAGTTTGCCGAGAATGTCGCCGGTGGGGTGGATACCTATACCTTGCGCCAGCCGATTGGTGTGTGCGCGGGTATTACCCCGTTCAATTTTCCGGCGATGATCCCGCTGTGGATGTTCCCGATGGCCATCGCCTGCGGCAATACGTTCGTCCTCAAGCCGTCGGAGCAGGATCCGCTGTCGACCATGCTGCTGGTGGAGCTGGCCATCGAGGCCGGTGTGCCGCCGGGCGTGTTGAACGTGGTGCACGGCGGCAAGGATGTGGTGGATGCGCTTTGCACTCACAAGGACATCAAGGCCGTTTCCTTCGTCGGCTCAACGGCGGTCGGCACCCATGTGTATGACCTGGCGGGTCGCCATGGCAAACGCGTGCAATCGATGATGGGCGCCAAGAACCACGCCGTGGTGCTGCCCGACGCCAATCGCGAGCAAACCCTGAACGCCCTGGTCGGTGCCGGTTTCGGCGCGGCGGGCCAGCGTTGCATGGCGACTTCGGTGGTGGTGATGGTGGGCGCGGCCAGGCAATGGTTGCCGGAGCTGAAGGCGCTGGCGCAGAAACTCAAGGTCAATGCCGGCAGCGAGCCGGGCACGGATGTCGGCCCGGTGATTTCCAAGCGAGCCAAGGCGCGCATCCTTGAACTGATCGAGAGCGGCGTGCAGCAAGGCGCAAAACTTGAACTGGATGGCCGCGACATCAGCGTGCCGGGCTTCGAGCAGGGCAACTTCGTCGGTCCGACCCTGTTTTCCGGCGTAACCACCGACATGCGCATCTACACCGAGGAAATTTTCGGCCCGGTGCTGGTGGTGCTGGAGGTCGATACCCTCGATCAAGCGATCGCCCTGGTCAACGCCAATCCGTTTGGCAACGGCACTGGCCTGTTCACCCAGAGCGGTGCGGCGGCGCGCAAATTCCAGAGCGAAATCGACGTCGGCCAGGTCGGTATCAACATCCCGATCCCGGTGCCGGTGCCGTTTTTCAGCTTCACTGGCTCCCGCGGCTCGAAACTCGGCGACCTCGGCCCTTACGGCAAACAAGTGGTGCAGTTCTACACTCAGACCAAGACCGTCACCGCGCGCTGGTTCGACGATGACAGCGTCAACGACGGTGTGAACACCACCATCAACTTGCGTTAAMNVSLTPSDTALQTVRLLIDGEWVESQSSEWHDIVNPATQQVLAKVPFATASEVDAAIAAAQRAFQTWKLTPIGARMRIMLKLQALIREHSKRIAAVLSAEQGKTIADAEGDIFRGLEVVEHACSIGTLQMGEFAENVAGGVDTYTLRQPIGVCAGITPFNFPAMIPLWMFPMAIACGNTFVLKPSEQDPLSTMLLVELAIEAGVPPGVLNVVHGGKDVVDALCTHKDIKAVSFVGSTAVGTHVYDLAGRHGKRVQSMMGAKNHAVVLPDANREQTLNALVGAGFGAAGQRCMATSVVVMVGAARQWLPELKALAQKLKVNAGSEPGTDVGPVISKRAKARILELIESGVQQGAKLELDGRDISVPGFEQGNFVGPTLFSGVTTDMRIYTEEIFGPVLVVLEVDTLDQAIALVNANPFGNGTGLFTQSGAAARKFQSEIDVGQVGINIPIPVPVPFFSFTGSRGSKLGDLGPYGKQVVQFYTQTKTVTARWFDDDSVNDGVNTTINLRPGPT0002295_909DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0002295-mmsA|iolA-K00140NANA
D1-35_01097888mmsBCOG20843-hydroxyisobutyrate dehydrogenaseATGAACATCGCATTTATCGGCCTCGGCAACATGGGCGCCCCGATGGCGCGCAATCTGCTCAAAGCCGGCCATTCGCTGAACCTGTTCGACCTGAACCAGACGGTGCTGGCCGAACTGGCGGCGCTCGGCGGCACCATCAGCGCCTCGCCTCGCGATGCGGCCCAGGGCGCGGCGCTGGTGATCACCATGCTGCCGGCCGCTGCCCATGTGCGCAGTGTCTGGCTGGGCGAAGACGGCGTGCTGGCAGGTATCGCCGCCGGCACGCCGGCGGTGGATTGCAGCACCATCGATCCACAAACCGCCCGTGACGTGGCGGCTGCCGCTGCCAGGCAGGGAGTGGCAATGGCCGATGCGCCTGTCTCGGGCGGCACCGGCGGCGCGGCGGCGGGCACCCTGACCTTCATGGTCGGCGCCACGCCTGAGCTGTTCGCCACCCTGCAACTGGTACTAGCGCAAATGGGCCGCAACATCGTGCATTGCGGCGAAGTCGGCACCGGGCAGATCGCCAAGATCTGCAACAACCTGCTCTTGGGGATTTCCATGGTCGGCGTCAGCGAGGCCATGGCTTTGGGCGATGCCCTGGGAATCGACACTCAGGTGCTGGCCGGCATCATCAACAGTTCGACCGGCCGATGCTGGAGTTCCGATACCTACAACCCATGGCCCGGCGTGATCGAAACGGCCCCGGCGGCGCGTGGATATACCGGCGGGTTTGGCGCGGACCTGATGCTCAAGGATTTGGGCCTGGCCACCGAAGCCGCGCGGCAGGCCCGCCAGCCGGTGATACTGGGGGCAGTGGCGCAGCAGTTGTACCAGGCGATGAGCCAGCGGGGCGAGGGCGGCAAGGATTTCTCGGCGATTGTGAACAGCTATCGCAAGCCGCAGTGAMNIAFIGLGNMGAPMARNLLKAGHSLNLFDLNQTVLAELAALGGTISASPRDAAQGAALVITMLPAAAHVRSVWLGEDGVLAGIAAGTPAVDCSTIDPQTARDVAAAAARQGVAMADAPVSGGTGGAAAGTLTFMVGATPELFATLQLVLAQMGRNIVHCGEVGTGQIAKICNNLLLGISMVGVSEAMALGDALGIDTQVLAGIINSSTGRCWSSDTYNPWPGVIETAPAARGYTGGFGADLMLKDLGLATEAARQARQPVILGAVAQQLYQAMSQRGEGGKDFSAIVNSYRKPQPGPT0018170_529DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTARATE|GLUCARATE_DEGRADATION,PGPT0018170-garR|glxR-K00042NANA
D1-35_01098345hypothetical proteinATGACCGCCCCCATCACCGTCCTGCGCGATACCCATCCGCTGCCCGTACTCGATGCCTGCAAATGGGAAAAACTCGAAGGCGACCCGCACACCGTCAACCTCAACGCTTATACCAGCGAGGACGGCAGCAAGATCATGGGGACCTGGATCTGCACGCCCGGCAAGTGGCGGGTGGACTACGTGAAGTGGGAATACTGCCATTTCCAGGAAGGCTACTGCGTGATCACCCCGGACGGCATGGCACCGATTCATCTGCGCGCCGGTGATATTTTTGTCGTCGAACCAGGCATGAAAGGCACTTGGGAAGTGGTCGAGACCGTGCGTAAATATTTCGTGTTTGCCTGAMTAPITVLRDTHPLPVLDACKWEKLEGDPHTVNLNAYTSEDGSKIMGTWICTPGKWRVDYVKWEYCHFQEGYCVITPDGMAPIHLRAGDIFVVEPGMKGTWEVVETVRKYFVFANANANANANA
D1-35_01099882cysLCOG0583HTH-type transcriptional regulator CysLATGCACTTCGATCTCACCGACCTGCGCCTCTACCTGAACATCCTCGACACCGGCAACATCACCGCCGGCGCCGCTCGCAGCCATCTTTCCCTGGCAGCGGCAAGCGCCCGGGTGCGTGCCATGGAGGCGTCCCTGGGCATCGACCTGCTCGAACGCGGGCGGCGCGGCGTCACTCCGACGCCGGCCGGCAAAGCCTTGGCCCAGCACGCCCGGGTCTTGCTGCAGCACGCCGAACATCTGCAACAGGACCTGGCCGAATACGCCAAAGGCGTCAAAGGCCAGGTGCGGCTGCTGTGCAACACCAGCGCGATGACCGAATACCTGCCCGAATTACTCGCCAGTTTCCTCAATAGCCACCCCAACCTGGACATCGACCAGCAGGAATTGCCCAGCTCACGGATCACCCATGCGTTGCGCCAAGGCGCCGCAGACCTGGGTATCGTTTCCGACGCGGTGGACACCGCTGGCCTTCAGACCTGGCCTTTTCGTGACGATCCGCTGGTCCTGATCCTACCTTCGGGACATCCCTTGGCTGACGGCCGCACGCCGAGTTTCAGCGAGACCCTCAACCACGACTATGTCGGCCTGAACGCCACCAGCGCGCTGGCGATTTACCTGGAGGAACAGGCGCTGCACACCGGAATGCGCATGCAGATCCGCATTCGCGCCGAGGGCTTTGACGGGGTGATCCGCATGGTGGCCCATGGCGCGGGTATTGCCGTCGTGCCGAAAGCCGCTATCGAACGCCGTCCATCCCAATCCTCATATCACTACGTGCCGCTGCAGGAGGCCTGGGCACACCGGGCCCTGTTGCTTTGCGCACGGAATTTCGAACGGCTTCCGGCCTACGCCAAGGCCCTGGCCCGGCATCTGGCCGAATGAMHFDLTDLRLYLNILDTGNITAGAARSHLSLAAASARVRAMEASLGIDLLERGRRGVTPTPAGKALAQHARVLLQHAEHLQQDLAEYAKGVKGQVRLLCNTSAMTEYLPELLASFLNSHPNLDIDQQELPSSRITHALRQGAADLGIVSDAVDTAGLQTWPFRDDPLVLILPSGHPLADGRTPSFSETLNHDYVGLNATSALAIYLEEQALHTGMRMQIRIRAEGFDGVIRMVAHGAGIAVVPKAAIERRPSQSSYHYVPLQEAWAHRALLLCARNFERLPAYAKALARHLAENANANANANA
D1-35_01100765hypothetical proteinATGAACACACTCCTCGACTTCTATCAAAACCTCGGCCTGGCCCTTTCCTTGCTGGTCATCGGCACCTTTCTGCTGGCCGGTACCATAAAGGGCGTGATTGGCGTAGGCCTGCCGACCATCTCGATGGGGCTGCTCGGCCTGGCTATGGCACCGACGCAGGCTGCTGCGTTGTTGCTGATTCCAGCCACGCTGACCAACGTCTGGCAACTGGCATCTGGCGGGCATCTGCAAGCATTGATCCGGCGCTTGTGGCCGCTGCTGCTGGCGATTTTCATCGGCACCGGCCTTGGCACGTTGTGGATCGGCATGGTGGGTGGCGCCTGGGCAGTACGGGCGCTCGGCGCGGCGCTGGTGTTGTATGCGCTGAGCGGGTTGTTGATGCCGACGTTGCGAGTGAGCGCCCGGAACGAATACTGGCTTGCGCCACTCTGTGGCGTGCTGACCGGTGTGATCACCTCGGCCACTGGCGTGTTTGTCATCCCGGCGGTGCCTTATCTGCAAGCGCTGGGCTTGAGCAAGGATGAGTTGGTGCAGGCCCTCGGCCTGTCATTCACCGTCTCGACACTGGCCTTGGCGGCCGGCCTGCTGTGGCACGGTGCGCTGGGGGGCGGTGAACTGAGCGCTTCGCTGCTGGCGCTGGTGCCGGCGCTGCTGGGGATGTGGCTGGGGCAATGGCTGCGCCAGCGGATCAGCGCCGTGTTGTTCAAGCGGGTGTTTTTTATTGGCCTTGGTGTGCTCGGCGGCCATCTGTTGATCAGCGGCTAGMNTLLDFYQNLGLALSLLVIGTFLLAGTIKGVIGVGLPTISMGLLGLAMAPTQAAALLLIPATLTNVWQLASGGHLQALIRRLWPLLLAIFIGTGLGTLWIGMVGGAWAVRALGAALVLYALSGLLMPTLRVSARNEYWLAPLCGVLTGVITSATGVFVIPAVPYLQALGLSKDELVQALGLSFTVSTLALAAGLLWHGALGGGELSASLLALVPALLGMWLGQWLRQRISAVLFKRVFFIGLGVLGGHLLISGNANANANANA
D1-35_01101315hypothetical proteinATGAGTGAATTGCACGGTTTCATCCTGCACGCCAAGACCCGCCCGGAAAAAGCCGAAGCCTTCGAAACGCTGTTTCGCGCCTACGTCGAACCGAGTCGTGCCGAGCCTGGCTGCATCGAATATCACATGCTGCGCGACCAGCAGGACCCGACGTTGTTCATCTTCTATGAGATCTGGGCATCCCAGGCTGACCTGGAAGTGCATTCGAGCCTGCCGCACATGAAGCAGTTCTTCGAGCAGCGCATGGACTATCTGGAACGCGACTTCGAGATTCGCCGCGTCGACATGCTCAGTCGATCCTCGGCTAGCCGCTGAMSELHGFILHAKTRPEKAEAFETLFRAYVEPSRAEPGCIEYHMLRDQQDPTLFIFYEIWASQADLEVHSSLPHMKQFFEQRMDYLERDFEIRRVDMLSRSSASRNANANANANA
D1-35_01102591mdaBCOG2249NADPH:quinone oxidoreductase MdaBATGAAAAAAATCCTGTTGCTCAATGGCGGTAAACAATTCGCTCACTCCGACGGTCGCTATAACGCAACCCTGCACGACACTGCGCTCAGCGTGCTCGACCGTGGCGGCCTGGATGTAAAAACCACGTTCATCGACGGCGGCTACGACATCAAGGAAGAAGTCGCGAAATTCCTTTGGGCCGACGTGATCATTTACCAGATGCCCGGCTGGTGGATGGGTGCTCCCTGGACGGTAAAAAAATACATCGACGAGGTCTTCACCGAAGGCCACGGCAGCCTCTATGCCAGCGACGGCCGTACCCGTTCCGATGCTTCGCAGAAATATGGCAGCGGTGGCCTGGTGCAGGGCAAGCAGTACATGCTGTCGCTGACCTGGAACGCCCCGCAGCAAGCCTTCGACGACCCGACTGATTTCTTCGAAGCCAAGGGCGTGGACGCGGTGTATTTCCCGTTCCACAAGGCCAACCAGTTCCTGGGCATGACCGGTCTGCCAACGTTTCTCTGCGTGGACGTGATGAAGCGTCCGAACATCGAAGAAGATGTGGCGCGGTATGAGCGGCATTTGATTGAGGTGTTCGGTCTAAACGCATAGMKKILLLNGGKQFAHSDGRYNATLHDTALSVLDRGGLDVKTTFIDGGYDIKEEVAKFLWADVIIYQMPGWWMGAPWTVKKYIDEVFTEGHGSLYASDGRTRSDASQKYGSGGLVQGKQYMLSLTWNAPQQAFDDPTDFFEAKGVDAVYFPFHKANQFLGMTGLPTFLCVDVMKRPNIEEDVARYERHLIEVFGLNAPGPT0023600_231DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-PLANT_2-METHYLENE-4-BUTYROLACTONE_RESISTANCEADAPTION_TO_PIS-2-METHYLENE-4-BUTYROLACTONE_DEGRADATION,PGPT0023600-mdaB-K03923NANA
D1-35_01103912dmlR_5HTH-type transcriptional regulator DmlRGTGAAAGCCAGATCCGACGAGTTGCAGATTTTTGTCTGCGTGATCGAATGCGGATCGATTTCCGCCGCCGCCGAGCAGGTCGGGCAGACGCCGTCGGCGGTCAGCCGTACGTTGTCGCGCCTGGAGGCCAAGCTCGACACCACGCTGATCAACCGCACCACGCGGCGCATGGACCTGACTGAAGAGGGCAAGTATTTCTTCGAGCAGGCCAAGGGCATTCTCGACCAGATGGACGAGCTGGAAGAGCGCTTGTCTTCCCGCCAGAAGAACCCCGCCGGGCGCTTGCGGATCAATGCCGCATCGCCGTTCATGCTGCACGCGATCGTTCCTCATATCGAAGAATTCCGCACGCTCTACCCCGACATTCAGCTCGAACTCAACAGCAACGACTTGATCATCGATCTGCTCGAGCAAAGCACAGACGTCGCCATCCGCATCGGCACCCTGACCGACTCGACGCTTCACGCACGGTCGCTGGGATGCAGTCCGTTGCACATCCTCGCCAGCCCGGCCTATCTCAAGCGGCATGGCACACCTTCCAGCGTTGCCGAGCTGGCGGAGCATTCGCTGCTGGGTTTTGCCCAGAACGACGGGCTCAACCAATGGCCGCTGCGCCACATCCACGGTGATCGCTGGCCGATCCAGCCGGCCATCAGCGCGTCCAGCGGCGAAACGGTGCGTCACCTGGCGCTGCAAGGGCAGGGCATCGCTTGCCTGTCGGATTTCATGACGCGCGACGATATCAGCGCCGGCCGCCTCAAGGTGCTGCTGGCCGATGCCAACAGCGGCTACCGCCAGCCGATCAACGCGGTGTACTACCGCAACTCTCAACTGGCGCTGAGGATCCAGTGCTTCCTGGACTTCATCCAAGGCAAGCTCGCCGGGTACGCATCGCGGGAATTCAACGGCTGAMKARSDELQIFVCVIECGSISAAAEQVGQTPSAVSRTLSRLEAKLDTTLINRTTRRMDLTEEGKYFFEQAKGILDQMDELEERLSSRQKNPAGRLRINAASPFMLHAIVPHIEEFRTLYPDIQLELNSNDLIIDLLEQSTDVAIRIGTLTDSTLHARSLGCSPLHILASPAYLKRHGTPSSVAELAEHSLLGFAQNDGLNQWPLRHIHGDRWPIQPAISASSGETVRHLALQGQGIACLSDFMTRDDISAGRLKVLLADANSGYRQPINAVYYRNSQLALRIQCFLDFIQGKLAGYASREFNGNANANANANA
D1-35_01104894hypothetical proteinATGAAAGTATTTGTTACCGGCGCTGCCGGCTTCATCGGCGGTTCCATTGCTACCGGTCTCGTGCGGGCCGGCCATCAGGTCACTGGCCTGGTGCGCAACGCCGAACAAGCCGACGAGTTGAGCGCGCTGAGCATCACGCCGGTTATCGGCACCCTTGAAGACAGCGCGCTGCTGATCAAACAGGCACGAGCTGCTGATGCGGTGATCAACGCCGCCAGCAGCGATCATCGTGGCGCGGCCGAAGCGTTGGTCGAGGCGCTCAAGGGCTCGAACAAGGTGTTGCTGCATACCAGCGGTTCGAGCATCGTCGGCGACGCATCGGGCGGTCGTGCCAGCGATGACATCTACTACGAAGACTCCCTGCCGCAACCTACCGCCGACAAGGCGCCCCGTGTCGCGATCGACAACCTGATTCTCGGCTCGGCAAAGCATGGCGTGAACTCGGCGGTGATCTGCAACACGCTGATCTACGGTCACAGCCTGGGCGTCAAGCGTGACAGCGTGCAACTGCCGCGCCTCCTCAAGCAGGCACGCAAAAGCGGCGTGGTGCGGCATGTCGGACCGGGGCAGAACATCTGGTCCAATGTGCACATCGAGGACGTGGTCGAGTTGTACACGCTGGCCCTGACCCGCAACCAGCCTGGCACGTTCTACTTCGTCGAAAGCGGTGAAGCTTCGTTCATTGAAATGACCACCGCGATGGCTCAGGCGCTGAACCTGGGCGAACCGCAGGATTGGCCGCTGGCGGATGCCGAAGCCGAGTGGGGTTATGAAATGGCCAATTACGGCCTGGGCTCCAACAGCCGCGTGCGCGGCAAGAATGCCCGCGAGCTGTTGGGGTGGACGCCGAAGCGCACGTCGGTGGTGGCTTGGACTCTTGATGAGATGGTGTGAMKVFVTGAAGFIGGSIATGLVRAGHQVTGLVRNAEQADELSALSITPVIGTLEDSALLIKQARAADAVINAASSDHRGAAEALVEALKGSNKVLLHTSGSSIVGDASGGRASDDIYYEDSLPQPTADKAPRVAIDNLILGSAKHGVNSAVICNTLIYGHSLGVKRDSVQLPRLLKQARKSGVVRHVGPGQNIWSNVHIEDVVELYTLALTRNQPGTFYFVESGEASFIEMTTAMAQALNLGEPQDWPLADAEAEWGYEMANYGLGSNSRVRGKNARELLGWTPKRTSVVAWTLDEMVNANANANANA
D1-35_011051446bicACOG0659Bicarbonate transporter BicAATGAAACCAGCTCGTCTTCGCGCCGACGCCCTCGCCGGCCTCACCACCTCTTTCGCCTTGCTCCCGGAATGCATTGCCTTCGCCCTGGTTGCGCATCTGAATCCGCTGATGGGTCTGTATGGCGCCTTCATCATCTGCACGTTGACAGCCCTGTTCGGCGGGCGGCCGGGCATGGTGTCGGGGGCGGCGGGATCGATGGCGGTGGTGATCGTCGCGCTGGTGGTGCAACACGGCGTGCAGTACCTGCTGGCCACGGTGCTGCTGGGCGGATTGATCATGATGGCGTTCGGGCTGCTGCGGCTGGGCAAGCTGGTGCGGATGGTGCCGCACCCGGTGATGCTCGGTTTCGTCAACGGCCTGGCGATCGTCATCGCGTTGGCGCAACTGGAGCACTTCAAGAGCGACGGAACCTGGCTGAGCGGCGCCCCGCTGTACCTGATGGCCGCCCTCGTGGCGTTGACCATGGCCATCGTCTATCTGCTGCCGCGCCTGACCCGTAGCGTACCGCCGGCCTTGGTGGCAATCCTCGGGATTGGCCTGGCGGTCTATTTGCTTGGCCTGCCGACCCGGACGCTGGGCGACATGGCGCACATCGCCGGTGGCTTGCCGGTCCTTACCCTGCCAGATATCCCCTGGAACCTGGAAACCCTGCTGATAATCGCGCCCTATGCGGTGGTCATGGCGATGGTCGGCCTGCTGGAAACGCTGCTGACCCTTAACCTCACCGACGAAATCACTGAGAGTCGTGGTTATCCGGACCGTGAGTGCGTGGCATTGGGCGCGGCAAACATGGCGTCCGGCCTGTTAGGCGGCATGGGCGGTTGCGCCATGATCGGCCAGACGGTGATCAACCTAAGCTCTGGCGGGCGCGGCCGGTTGTCCGGGGTGGTGGCTGGGGTGATGGTGTTGCTGTTCGTGCTGTTCCTTTCGCCCCTGATCGAGCGCATTCCGCTGGCCGCGCTGGTGGGCGTGATGTTCGTGGTCGCTCAGCAGACCTTTGCCTGGGCCTCGTTGCGGGTCATCAACAAGGTGCCGACCAATGATGTACTGGTGATCATCGCGGTCACCGTCATCACCGTGTTTACCGACCTGGCCGTCGCGGTCCTTTGCGGGATTATCATCGCGGCGCTCAACTTCGCCTGGCAACAGGCCCGGGAATTGTACGCCGACACGCACCTGGAAGCCGATGGCAGCAAGCTTTATCGGCTGCACGGCACGTTGTTCTTCGCCTCGACTACGCCGTTCCTCAACCAGTTCGACACGGCCAACGACCCCGACCTGGTGACCCTGGACTGCCGCCACTTGAGCTTCGTCGACTACTCGGCCATCGCCGCGCTGATGACCCTGCGCGAGCGCTACAGCAAGGCGGGCAAGCATCTGCGGGTGTTTCATCTGTCCGAGCGTTGCAAACAGATGCTCAAGCGCGCGGGCGTGCATCACGACTAAMKPARLRADALAGLTTSFALLPECIAFALVAHLNPLMGLYGAFIICTLTALFGGRPGMVSGAAGSMAVVIVALVVQHGVQYLLATVLLGGLIMMAFGLLRLGKLVRMVPHPVMLGFVNGLAIVIALAQLEHFKSDGTWLSGAPLYLMAALVALTMAIVYLLPRLTRSVPPALVAILGIGLAVYLLGLPTRTLGDMAHIAGGLPVLTLPDIPWNLETLLIIAPYAVVMAMVGLLETLLTLNLTDEITESRGYPDRECVALGAANMASGLLGGMGGCAMIGQTVINLSSGGRGRLSGVVAGVMVLLFVLFLSPLIERIPLAALVGVMFVVAQQTFAWASLRVINKVPTNDVLVIIAVTVITVFTDLAVAVLCGIIIAALNFAWQQARELYADTHLEADGSKLYRLHGTLFFASTTPFLNQFDTANDPDLVTLDCRHLSFVDYSAIAALMTLRERYSKAGKHLRVFHLSERCKQMLKRAGVHHDPGPT0003020_5800DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SULFATE|THIOSULFATE_TRANSPORT,PGPT0003020-TC_SULP-K03321NANA
D1-35_011061350gntT_1COG2610High-affinity gluconate transporterATGGCCCCTGATTTCGGTTATTGGCTGTTGGTCTACGCGGCGATCGCGATCATTGCGCTGATTGTCCTGATCGCGCGCTACCGTCTCAACCCGTTCATCGTGATTACCCTGGTTTCCATCGGCCTGGCGCTGCTGGCCGGGATGCCACCCTCCAGCGTCGTCGGCGCCTACGAGGCGGGCGTGGGAAAAACCCTGGGGCACATTGCGCTGGTGGTGGCCTTGGGCACGATGCTCGGCAAGATGATGGCCGAGTCCGGTGGCGCGGAGCGGATGGCGCAGACGCTGATCGAGCGCTTCGGCGAGCGCAACGCTCACTGGGCGATGGTGTGCATTGCGTTCCTGGTGGGGTTGCCGTTGTTTTTCGAGGTCGGCTTTGTGCTGCTGGTGCCTATCGCATTCACGATTGCCCGGCGTGTCGGCGTGTCGATCCTGATGGTCGGCCTGCCAATGGTGGCCGGGCTGTCGGTGGTCCACGCCCTGGTGCCACCGCATCCGGCGGCGATGCTGGCGGTGCAGGCATTCCAGGCTTCGGTGGGGCAGACCCTGCTGTATGCCATCCTGATCGGCATTCCCACCGCAATCATCGCCGGTCCCCTGTACGCCAGATTCATCGTGCCCCGCATTCAGCTGCCGGCCGAGAACCCATTGGAGCGGCAATTTCTCGACCGCGAGCCACGTGCAAATCTGCCGGGCTTCGGTATCACCTTGGGGACGATCCTGTTGCCGGTGGTCCTGATGTTGATCGGTGGCTGGGCCAACCTGATTTCCACACCGGGAAGCGGTTTCAACCAGTTTCTGTTGTTTATCGGCAACTCGGTGATCGCCTTGCTCCTGGCGACCATTCTCAGCTTCTGGACCCTCGGCCTGGCCCAAGGCTTCAACCGCGAATCGATCCTCAAATTCACCAACGAGTGCCTGGCGCCTACGGCCAGCATTACCCTGTTGGTGGGCGCCGGCGGTGGTTTGAACCGGATTCTGGTGGACGCGGGCGTGACCCAGCAAATCGTCGGGCTGGCCCAGGAGTTCCAGTTGTCGCCGTTGGTCATGGGCTGGCTGTTCGCCGCGTTGATGCGCGTCGCCACCGGTTCGGCGACGGTGGCGATGACTACGGCCTCGGGCATTGTCGCGCCCGTGGCGATCGGCCTCGGTTATCCCCATCCTGAACTGTTGGTGCTGGCGACTGGCGCCGGGTCGGTGATCTTTTCCCACGTCAACGACGGCGGCTTCTGGTTGATCAAGGAATACTTCAATATGACTGTCACCCAAACCTTCAAGACCTGGACCGTGCTCGAAACGTTGATCTCCCTGGTCGCGTTCGGCCTGACCCTCGGGCTTGCGCGCGTGCTCTGAMAPDFGYWLLVYAAIAIIALIVLIARYRLNPFIVITLVSIGLALLAGMPPSSVVGAYEAGVGKTLGHIALVVALGTMLGKMMAESGGAERMAQTLIERFGERNAHWAMVCIAFLVGLPLFFEVGFVLLVPIAFTIARRVGVSILMVGLPMVAGLSVVHALVPPHPAAMLAVQAFQASVGQTLLYAILIGIPTAIIAGPLYARFIVPRIQLPAENPLERQFLDREPRANLPGFGITLGTILLPVVLMLIGGWANLISTPGSGFNQFLLFIGNSVIALLLATILSFWTLGLAQGFNRESILKFTNECLAPTASITLLVGAGGGLNRILVDAGVTQQIVGLAQEFQLSPLVMGWLFAALMRVATGSATVAMTTASGIVAPVAIGLGYPHPELLVLATGAGSVIFSHVNDGGFWLIKEYFNMTVTQTFKTWTVLETLISLVAFGLTLGLARVLPGPT0001340_2059DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_GLUCONATE_TRANSPORT,PGPT0001340-TC_GNTP-K03299NANA
D1-35_01107861hexR_1COG1737HTH-type transcriptional regulator HexRATGGACATCCTTTACCAGATCCGCTCCCGTCAGGATTTCTTCAGTGCAGGCGAAGGAAGAATCGCCCGACTGATGCTCGACGACGTAGGATTTGCCGCTTCCGCCAGCCTGGATGAACTGGCCCAACGCGCCGAAGTCAGCAGTGCCACGCTGTCGCGGTTTGCCCGGACTGTCGGCTGTCGCGATTTGCGCGATCTGCGCCTGCAACTGGCCCAGGCCAGTGGCGTTGGCAGCCGTTTCCTCGACCCCACGGGCGCGCCCGAGCAGTCGGCGTTTTATGGGCAGATCGTCGGCGATATCGAGTCGACGCTGCGCCAGCACTTGTCGGCATTTGACGAGTCACGCTTCGCCGACGCGGTACGGATGATCGGCAAGGCGCGGATGATCCATGCGTTCGGGCTCGGCGGGTGGTCGGCGCTGTGCGGCGAAGAGTTGCAGGTGCGGCTGGTGCGTTTCGGCTACCCGATCGCCGCCTGCCGCGACCCGCTGATGATGCGTATCACGGCCACTTCGCTGAGCGATCAGCATCTGGTGATTGCCTGTTCGTTGACTGGTATCACCCCGGAGCTGCTCGGCGCGGTCGAACTGGCGCGCAGCTACGGTGCAGCGATCCTGGCGATTACCCGCACCGACTCGCCGCTGGCCCACCTGGCGGATGTGGTACTGCCCCTGCAAGGTGCCGAAACCTCGTTCATCTTCAAACCCACGGCGGCGCGCTACGGCATGCTGTTGGCGATCGATGTGCTCGCCACCGAGTTGGCGCTGGCCCATCCGCAAGACAATCAAGAGCGCCTGCGGCGGGTCAAGCTCGCCCTGGACGATTACCGAGGCGGCGAGGACGACCTGCCGCTGGGAGACTGAMDILYQIRSRQDFFSAGEGRIARLMLDDVGFAASASLDELAQRAEVSSATLSRFARTVGCRDLRDLRLQLAQASGVGSRFLDPTGAPEQSAFYGQIVGDIESTLRQHLSAFDESRFADAVRMIGKARMIHAFGLGGWSALCGEELQVRLVRFGYPIAACRDPLMMRITATSLSDQHLVIACSLTGITPELLGAVELARSYGAAILAITRTDSPLAHLADVVLPLQGAETSFIFKPTAARYGMLLAIDVLATELALAHPQDNQERLRRVKLALDDYRGGEDDLPLGDPGPT0017985_760DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017985-hexR|yebK-K19337NANA
D1-35_011081473danD-aminoacylaseATGCACTACGACACGCTTATTCGCAACGCGCTGATCATCGACGGCAGCGACAAGCCTGGCTACAGCGCCGACGTGGCGATACGCGCCGGTCGTATCGAGCACATCGGCGACCTCGGCGCCGCCCGGGCGACTGAAGAAGTCGACGCCGCCGGCCGGGTGCTGGCGCCGGGATTCATCGACGTGCATACCCACGACGACACGGTAGTCATACGCCAACCGCAGATGCTGCCCAAACTCAGTCAGGGCGTCACCACGGTCATCGTCGGCAATTGCGGCATCAGCGCTGCGCCCGTCAGCCTGCGGGGCGATCCACCGGACCCGATGAACCTGCTCGGTGCTGCCCAGGCGTTCGCCTACCCACGCTTCGCTGATTATCGTGCGGCGGTGGAAGCCGCCACGCCGGCGGTCAATGTCGCGGCACTGGTCGGGCACACGGCGCTGCGCAGCAACCACCTGGACGATCTGCTGCGCACCGCCAGCGCCGGAGAAATCGCCGCCATGCGTCAGCAACTGCGCGAAAGCCTGGAGGACGGTGCGCTGGGTTTATCCACCGGCCTGGCCTACGCCAACGCGTTCTGTGCGTCGACCGATGAAGTCATGCAACTGAGCGAAGAGTTGGCAGCGTTCGGCGCGGTCTACACCACCCACTTGCGCAGCGAATTCGAACCGGTGCTGGAAGCGATGGACGAGGCCTTCCAGATCGGCCGTCATGCCCGGAGCCCGGTAATCATTTCCCACCTCAAATGTGCGGGGGCCGGTAATTGGGGGCGTAGTCCACAGGTGCTCGCGGCGTTGGAAACTGCCGCCAGAAGCCATCCCGTCGGTTGCGACTGTTATCCCTACGCGGCGAGCTCTTCGACGCTGGACCTCAAGCAAGTGACCGATGCCCATCGCATCACCATCACCTGGTCGACGCCGCACCCGCACATGAGCGGACGGGACTTGATCGACATCGCCGCCGAATGGGGCATGCCACTGCTGGAAGCCGCGCGCTGCTTGCAGCCGGCCGGCGCGGTGTACTACGGCATGGACGAAAGCGACGTAAGACGCATCCTCGCACACCCATTGTCGATGGTCGGCTCCGACGGCTTGCCCGAGGACCCTTTTCCCCATCCTCGGTTGTGGGGCGCTTTCCCACGGGTGCTGGGACATTTCAGTCGAGACATCGGGCTGTTTCCGTTACACACCGCCGTGCACAAGATGACCGGCCTTTCGGCTGCACGCTTTGGCCTGAAGGAGCGGGGTGAAATCCATGAAGGATATTGGGCCGACCTGGTGTTGTTCAATCCGCAAACCGTCCGCGACGTCGCCGATTTCAACCAGCCGCAACGGGCTGCCGAGGGCATCGATGGCGTATGGATCAACGGCGTCCTGAGTTATCGCGATGGCCAGGCGAACGGCCGCCGGGAAGGCCGATTCCTGGCGCGGGAAGGCAATCTTCGCCAGGGATTTCGGACTTTTAAAGGTGTGTAAMHYDTLIRNALIIDGSDKPGYSADVAIRAGRIEHIGDLGAARATEEVDAAGRVLAPGFIDVHTHDDTVVIRQPQMLPKLSQGVTTVIVGNCGISAAPVSLRGDPPDPMNLLGAAQAFAYPRFADYRAAVEAATPAVNVAALVGHTALRSNHLDDLLRTASAGEIAAMRQQLRESLEDGALGLSTGLAYANAFCASTDEVMQLSEELAAFGAVYTTHLRSEFEPVLEAMDEAFQIGRHARSPVIISHLKCAGAGNWGRSPQVLAALETAARSHPVGCDCYPYAASSSTLDLKQVTDAHRITITWSTPHPHMSGRDLIDIAAEWGMPLLEAARCLQPAGAVYYGMDESDVRRILAHPLSMVGSDGLPEDPFPHPRLWGAFPRVLGHFSRDIGLFPLHTAVHKMTGLSAARFGLKERGEIHEGYWADLVLFNPQTVRDVADFNQPQRAAEGIDGVWINGVLSYRDGQANGRREGRFLAREGNLRQGFRTFKGVNANANANANA
D1-35_01109369hypothetical proteinATGAGCTTCGGTAAGACCACCCCGATCCTGCGGATTTTCGATGAAACCAAGGCCTTGGCGTTCTATGTCGATTTCCTGGGCTTTACCGTCGACTGGCAACATCGCTTTGGTGACGACTATCCGCTGTACCTGCAAGTATCGCGCGGTGATTGCGTGCTGCACCTGTCCGAACACCACGGCGATTGCACACCGGGCTCGGCGCTGCGGATCGAGACCGATGAGCTGGAAGCATTCCAGCAACAGTTGATGGCCAAGCAATACCGCTACGCCCACCCGCAAATCCAGGCCATGCCATGGGGTAGCCAGGACATGACCATCAGTGATCCGTTCGGGAATCGGTTGGTGTTTACCAATGCGATCAGTGTGTAAMSFGKTTPILRIFDETKALAFYVDFLGFTVDWQHRFGDDYPLYLQVSRGDCVLHLSEHHGDCTPGSALRIETDELEAFQQQLMAKQYRYAHPQIQAMPWGSQDMTISDPFGNRLVFTNAISVNANANANANA
D1-35_011101920mcpSCOG0840Methyl-accepting chemotaxis protein McpSATGAATAGCTGGTTTGGCAACATTAGCGTCAACATGAAATTGGGCCTGGGCTTCGGCCTGGTGCTGGTCCTGACCTGCCTGCTGGCCCTGACCAGCTGGACCAGCCTTGGCGGCCTGATCGACCGCAGCAACTGGATGAGCGACATCACCCAGCTCAACGCCGGCCTGACCAAACTGCGCGTGACTCGCCTGCAATACATGCTGGCCAACGGTGACGAAACCGCTGCACAGAATGTGCAAACCACCCTCGACGGTTTCGTCGCGCAACAGAACGCGCTGCTCAACAGCTTCAAGAGCCCGGAAAACGTCAAGCTGCTCAGAGAGCAGAGCGCGACCATCAGCGCCTATCAGGTATCACTGAACAAAATGCGCAGCGCCTACCGCACCGGTAACAGCGCTCGTGATGTCATGGGGGCGAACGCCGAAACGGCCTACAAGCTGATCGAGGCCATCGACGCCGACGTGAAGCAAATGGCCCTCAACGATGAACGCTTCGCCCAGTTCCAGGCCATCACTGAAGCCAAGCAGGCGTTCATGCTCGCTCGTTATGAAGTGCGCGGCTACACCGCCAACCCCAACGCCGATACCGAACGCAAGGCCTTCGCCCAACTGGACGCGGCGATTGCTTCGCTCAAGCCGCTGAACGAATATTTTGCCAGCGTCCATCAGGACGAACTGCGTCAGCTGGAAACCACCCTGGTGCAATACCGCAGCGCCGTGCAGGCCTTCAAATCGGCCACGGCCGACGTGGTGCAGGCGCGCAAGGAAATGACCGACCAGGGCGCGACCATCGTTTCCCTGAGCGAACAGCTGTACCAGATCCAACTCGACCGTCGCGACGCCGAAAGCGCCCAGGCGCGTACGTTGCAACTGGTCAGTACATTGCTGGCGTTGTTGGTCGGCATCATTGCTGCCGTCATCATCACCCGCCAGATCACCCGTCCGCTGCGCGAAACCCTGACCGTGGTCGAACGCATCGCCAGTGGCGACCTGTCGCAGGATGTGATCGTCACCCGTCGCGATGAGCTGGGCGTACTGCAACAGGGCATCGCGCGCATGGGCGTGACCCTGCGCGACCTCATCAGCGGCATCCGTGATGGCGTGACTCAGATCGCCAGCGCCGCCGAAGAATTGTCGGCGGTCACCGAACAGACCAGTGCCGGGGTCAACAGCCAGAAAGTCGAGACCGACCAGGTCGCAACCGCCATGCACGAAATGACCGCCACGGTGCAGGAAGTTGCCCGCAACGCCGAAGAAGCCTCCCAGGCAGCGGCCGCCGCCGACGGCGAAGCCCGTGCCGGCGACCAGGTGGTCAGCGAAGCCATTGCCCAGATCGAACGCCTGGCCAGTGAAGTGGTGCGCTCCACCGACGCCATGAGCGTGCTGCAACAGGAGAGCGACAAGATTGGCGCAGTGATGGATGTGATCAAGGCCGTGGCCGAACAGACCAACCTGCTGGCACTCAACGCCGCCATCGAAGCCGCCCGCGCCGGTGAAGCCGGTCGTGGCTTTGCGGTCGTCGCCGACGAAGTCCGTGGCCTGGCCCAACGCACCCAGAAATCCACCGAGGAAATCGAAGGCCTGGTGGCCGGCCTGCAGAACGGCACCCAGCAAGTGGCCGCCGTGATGAACAACAGCCGCAACCTCACCGACAGCAGCGTGGCCCTCACCCGCAAGGCCGGCGTATCACTGGAGAACATCACCCGTACGGTGTCGAACATCCAGTCGATGAACCAGCAGATCGCCGCCGCCGCCGAGCAGCAAAGCGCCGTGGCCGAAGAGATCAGCCGCAGCATCATCAACGTGCGCGACGTGTCCGAACAGACCGCCGCCGCCAGCGAAGAAACCGCAGCGTCCAGCGTTGAACTGGCGCGGCTTGGCAGTCAATTGCAGCAGATGGTCAGTCATTTCAGGGTTTGAMNSWFGNISVNMKLGLGFGLVLVLTCLLALTSWTSLGGLIDRSNWMSDITQLNAGLTKLRVTRLQYMLANGDETAAQNVQTTLDGFVAQQNALLNSFKSPENVKLLREQSATISAYQVSLNKMRSAYRTGNSARDVMGANAETAYKLIEAIDADVKQMALNDERFAQFQAITEAKQAFMLARYEVRGYTANPNADTERKAFAQLDAAIASLKPLNEYFASVHQDELRQLETTLVQYRSAVQAFKSATADVVQARKEMTDQGATIVSLSEQLYQIQLDRRDAESAQARTLQLVSTLLALLVGIIAAVIITRQITRPLRETLTVVERIASGDLSQDVIVTRRDELGVLQQGIARMGVTLRDLISGIRDGVTQIASAAEELSAVTEQTSAGVNSQKVETDQVATAMHEMTATVQEVARNAEEASQAAAAADGEARAGDQVVSEAIAQIERLASEVVRSTDAMSVLQQESDKIGAVMDVIKAVAEQTNLLALNAAIEAARAGEAGRGFAVVADEVRGLAQRTQKSTEEIEGLVAGLQNGTQQVAAVMNNSRNLTDSSVALTRKAGVSLENITRTVSNIQSMNQQIAAAAEQQSAVAEEISRSIINVRDVSEQTAAASEETAASSVELARLGSQLQQMVSHFRVPGPT0015710_10228DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_01111942gbpR_1HTH-type transcriptional regulator GbpRATGACCCGAATTCCTGTTGCCAATGTCATCCATAGTCGACTGCGTCTGCGCCAACTGCGGCTGATGCTGGCATTGCAGGAATTAGGTTCTCTGCGCCGCGCAGCCGACCACATCGGCATGACCCAACCGGCTGCCACCAAAATGCTGCACGAAGCCGAGGACTTGCTCGGCGTCGAGCTGTTCGAACGCCTGCCCCGTGGCATGCGCTCCACCCCATTCGGGGAAACCGTCATTTACTACGCGCGTATGGTCTTCGCCGAGCTCAGCGGCATGCGCGAAGAACTGGTGGCACTCGAATCCGGCAACCTCGGCCGGGTGGCAGTCGGCGCCATTCCGGCACTGGCTTCGGGACTGCTGACGCGCACCATCGCGACCTTGAAACAAAGCCATCCCCGCTTGTCCATGAGCATCCAGGTCGACACCAGCGACGTGCTGGTACAAGCGCTGTTGCAGGATCAACTGGACATTGTCCTCGGCCGTATTCCCGCCGGTGCCCGCGCCGAAGAGTTGCTCTTCGACAGCCTCGGGGAAGAGGCGCTGTGTGTCATTTGTGGCGCGCAGAATCCGTTGGCGCAGGCGAGCCGACTGGGCTGGGCCGAGCTACAGAGCATGACCTGGGTGTTGCAACAACACCCAAGCCCGATGCGCGCAATCATCAACCAGGTGTTTCACAACGCCCGGGTCGATATCCCCAGCAGCATCGTCGAAACCACCTCGATCATGACCTTGCTCTCATTGGTCCAGCAGACCGACATGCTCGGCGTCACCCCGATATCGGTCGTCGAGGATTATCCAGGTCGTGACTTGCTCGCCGTGTTGCCGATCAAGTTCGAAGCCCGGTTGCCACCGTACGGATTGATCACCCGCCGCCATCGCATTCAGTCATCGGCGATGCAGGCGTTCATGAATTCGGTACGTGCCGAGCATGCGTTATTGAACTGAMTRIPVANVIHSRLRLRQLRLMLALQELGSLRRAADHIGMTQPAATKMLHEAEDLLGVELFERLPRGMRSTPFGETVIYYARMVFAELSGMREELVALESGNLGRVAVGAIPALASGLLTRTIATLKQSHPRLSMSIQVDTSDVLVQALLQDQLDIVLGRIPAGARAEELLFDSLGEEALCVICGAQNPLAQASRLGWAELQSMTWVLQQHPSPMRAIINQVFHNARVDIPSSIVETTSIMTLLSLVQQTDMLGVTPISVVEDYPGRDLLAVLPIKFEARLPPYGLITRRHRIQSSAMQAFMNSVRAEHALLNNANANANANA
D1-35_011121530hypothetical proteinATGAGCGAGTTCGATTCCCTGTTGCAGGGCATGAACCTGATCCTGACCCCGGGCCACATCGGTCTGATGGTGATCGGCGTTCTGCTGGGCATCCTGGTCGGTGTGCTGCCCGGTCTCGGCGCGCCCAATGGCGTGGCGCTGTTGCTGCCCTTGACCTTCACCATGTCGCCGGTGTCGGCGATCATCCTGCTGTCGTGCATGTACTGGGGCGCGCTGTTTGGCGGCTCGATCACCTCGATCCTGTTCAACATTCCTGGCGAGCCTTCATCGGTGGCGACCACCTTCGACGGTTATCCGATGGCCCGCGAAGGCCGGGCTGCCGAGGCGTTGACCGCCGCGTTCAGCTCGGCGCTGATCGGTGCGTTGTGCGGGGTGTTGTTGCTGACGTTCCTGTCGACAAAAATCGCAGCGTTCGCCATGTCCTTCAGCTCGCCGGAGTTCTTCGCGGTGTACCTGTTGGCGTTCTGCACCTTCATCGGCATGAGCAAGAACCCGCCATTAAAAACCGTGGTCGCGATGATGATCGGCTTCGCCATGGCGGCAGTCGGCATGGACACGGTTTCCGGCAACCTGCGCCTGACGTTCGACCAGCCGATCCTGATGACCGGGATCAGTTTTGAAGTGGCGGTGATCGGCCTGTTCGGCATCGGAGAAATTCTCTGCACAGTCGAGGAAGGCCTGGTGTTTCGTGGCGAACATGCGCGCATCACACCGATGGTGATTTTGCGCACCTGGGCCAGGTTGCCGCGTTATTGGTGGACGATTGTGCGCAGCACACTGGTCGGTTGCTGGATGGGCATCACCCCCGGCGGCCCGACGGCGGCATCGTTCATGAGCTACAGCCTGGCGCGACGTTTCTCGAAAAACCGCGACAACTTCGGCAAAGGCGAGATCGAAGGGGTGATCGCCCCGGAAACCGCCGACCACGCTGCCGGCACCAGCGCGCTGCTGCCGATGCTGACGCTGGGCATTCCGGGTTCCGCCACGGCAGCGGTGATGCTCGGTGGCTTGATGATCTGGGGCCTGCACCCTGGGCCGACGCTGTTCGTCGAGCAACACGACTTTGTCTGGGGCCTGATCGCCAGCATGTACCTGGGCAACGTGGTCAGCCTGATCGTGGTGTTGGCCACCGTGCCGTTGTTTGCTTCGATCCTGCGCATTCCGTTCTCGATCATCGCGCCGATCATCATCATGGTCTGCGCCATCGGTGCGTACTCGGTGCACAACTCGTTCTTCGACGTGGTACTGATGCTGGGCTTCGGTGCGCTGGGTTACCTGTTCAAGAAACTCGGCTATCCGATTGCGCCGCTGGTGCTGGCAGCCGTCCTGGGGGACAAGGCCGAAGACGCATTCCGTCAGTCGATGCTGTTTTCTGACGGACAGCTGGGAATTTTCTGGTCCAACCCATTGGTGGGCAGCCTGACCACCGCCGCGCTGCTGATGCTGTTCTGGCCGCTGATCTCCAAGGCACTGGGCCTGCTGGTGGGCTTGCGCAAACCCCACGTCGCCGAGGCGAAATCATTGCTGTGAMSEFDSLLQGMNLILTPGHIGLMVIGVLLGILVGVLPGLGAPNGVALLLPLTFTMSPVSAIILLSCMYWGALFGGSITSILFNIPGEPSSVATTFDGYPMAREGRAAEALTAAFSSALIGALCGVLLLTFLSTKIAAFAMSFSSPEFFAVYLLAFCTFIGMSKNPPLKTVVAMMIGFAMAAVGMDTVSGNLRLTFDQPILMTGISFEVAVIGLFGIGEILCTVEEGLVFRGEHARITPMVILRTWARLPRYWWTIVRSTLVGCWMGITPGGPTAASFMSYSLARRFSKNRDNFGKGEIEGVIAPETADHAAGTSALLPMLTLGIPGSATAAVMLGGLMIWGLHPGPTLFVEQHDFVWGLIASMYLGNVVSLIVVLATVPLFASILRIPFSIIAPIIIMVCAIGAYSVHNSFFDVVLMLGFGALGYLFKKLGYPIAPLVLAAVLGDKAEDAFRQSMLFSDGQLGIFWSNPLVGSLTTAALLMLFWPLISKALGLLVGLRKPHVAEAKSLLPGPT0017350_686DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017350-tctA-K07793NANA
D1-35_01113534hypothetical proteinATGTCCCATTCTTCGGATTCACCGGCGCTGGTCGGTACCCGTTGGGTCGAGCTCGGCCTGACGCTGTTTACTACCCTGCTCGGTGCCGTGGTGATGTTCGGCAGTGTCGAACAAGGCATCGGCTGGGGCGATGCCGGCCCTGAACCGGGTTACTTCCCGTTCTATATCGGCCTGATACTGAGTGCGGCGAGCGTCGCCAACGGCGTGCTGACGGTGGTGCGCTGGCAGGCCCTGAGCGTTGCATTCCTCACCCGTAGTGCGTTCAAGCAAGTGCTATCGGTTTTCCTGCCCATTGCCCTGTTCGTCGGTGCGATGCCCTTCACCGGCATCTACCTCGCGTCGGCCTGCTTCATTGCCTGGTTCATGTGGCGCGACAAGGTCCGCGCCAAGCCTTACGGCAAGTGGATGATCGGTGCGGTTGCCCTCGGTGCGGCGCTCGCCAGCTACCTGATTTTCGCGCTGTGGTTCAAGGTCCCGCTGGATGCCGGCCCAATAGGCGACTGGATTGCCCTGGCCGGGAGAACCTTCAAATGAMSHSSDSPALVGTRWVELGLTLFTTLLGAVVMFGSVEQGIGWGDAGPEPGYFPFYIGLILSAASVANGVLTVVRWQALSVAFLTRSAFKQVLSVFLPIALFVGAMPFTGIYLASACFIAWFMWRDKVRAKPYGKWMIGAVALGAALASYLIFALWFKVPLDAGPIGDWIALAGRTFKPGPT0017355_411DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017355-tctB-K07794NANA
D1-35_011141017hypothetical proteinATGCGAAATGCATTCGTCCGTCGCACATCGCGTCTTCTTCTAGGCGGCGCCCTGATTGCCGTCGGCGTCCTTCCCGCCCTTGCCCACGCCGCCTGGCAACCGGACAAGAATGTCGAAATCGTCGTCGCCGGCGGCCCGGGTGGCGGAACCGACCAGCTCGGTCGCCTGATCCAGTCGATCATCACCACCCATAAGCTGCTCGACGTCAACACCATTGTCCTCAACAAGGGTGGCGGCAACGGTGCCGAGGCCTTCCTCGACATGAAGATGAACAAGGGCGATGCAGAGAAACTGGTGATTGCCACCAATAACGTTTACCTGTTGCCGCTGGTTTCCAAGCTCGGCTACCAATGGCAGGAACTGACCCCGATTGCCGCCGTGGCCGAAGATGACTTTATCCTCTGGAGCTACAAGGGCGCGCCGTGGAAAGACGCGAAAGGTTTCTACGAAGCGGCCAAGACCGACCCGGCGAAGCTGCGCATGGGGGGCAGCCAGTCCAAGGACGTCGACCAGACCCTCACCCTGCTGCTCAACCAGACCAACAACAGCAAACTGGTGTACATCCCGTTCAAGAGCGGCAGTGAAGCCGCGACCCAACTGGCCGGCAAACACATCGCGGCCAACGTCAACAACCCCAGTGAAAGCATCAGCCAATGGCGCGGTGATCAAGTCGAACCGCTCTGCGTATTCAGCAAGGAGCGCATGAGCTACACCGAGAAAGTCGCCGGAAACAAAGCCTGGGCCGATGTTCCAACCTGCCACGAACAGGGCCTGGGCATCGATCAGTACCGCTTCCCGCGTACGGTGTTCATGCCCGGCGATGTCAGTGCCGAACAACGGGCCTTTTATGTCGAACTGATGCGCAAAGTCACGCAGACCGATGAGTTCAAGGCCTACGTCAAACAGAACGCGCTGGTGCCGACGTTCCTTGAAGGCGAGCCCCTGACCGCCTACATCGAAAAGGACGTCGCCCGCGTCACCCCGGTGTTCAAGGAAGCCGGCTGGCTGAAAAACTGAMRNAFVRRTSRLLLGGALIAVGVLPALAHAAWQPDKNVEIVVAGGPGGGTDQLGRLIQSIITTHKLLDVNTIVLNKGGGNGAEAFLDMKMNKGDAEKLVIATNNVYLLPLVSKLGYQWQELTPIAAVAEDDFILWSYKGAPWKDAKGFYEAAKTDPAKLRMGGSQSKDVDQTLTLLLNQTNNSKLVYIPFKSGSEAATQLAGKHIAANVNNPSESISQWRGDQVEPLCVFSKERMSYTEKVAGNKAWADVPTCHEQGLGIDQYRFPRTVFMPGDVSAEQRAFYVELMRKVTQTDEFKAYVKQNALVPTFLEGEPLTAYIEKDVARVTPVFKEAGWLKNPGPT0017360_392DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017360-tctC-K07795NANA
D1-35_011151005pdxA2COG1995D-erythronate 4-phosphate dehydrogenaseATGAAAAAAACCGCTATCGCCATGGTCCTGGGTGACCCGGCTGGCATTGGCCCGGAATTGATTGCACGCTTGCTCGCCGAGCCCGAGATACGCAGCAAGGCCAACATCATTCTGATTGCCGACGAAGCGGAAATGCGTCGCGGCATGCGCATCGCCGGCAGCGAGTTTCCTTATCGCCGGGTGGAGACACTGGACGTGTTGGAGTTCGTCGATGACACGCCGCTGTTCCATGACTTTCGCGGCGACACGGTCGGCGAGTTCCCCCGTAGCGAGGCCAGCGTGATTGGCGGTCGCTACAGCCTCGACACCCTGGAAAAGGCCCTGCGCCTGACCGAAGCCGGGACCACCGACGCGGTCCTGTTCGGGCCGCTGAACAAGACCTCGCTGCACATGGCGGGCATGGCCCACAGCGATGAATTGCACTGGTTTGCCGAGCTGCTGGATTTCCACGGACCGTTCTGCGAATTCAACGTGCTCGACAACCTTTGGACTTCACGCGTGACCTCCCATGTGGCCCTGTCCGCAGTGCCGGGCCTGCTCAGTGAGCAGCGGGTGGTGGAAGCGATTCAACTGATCGACACCGCCCTCAAGCGCAATGGCCTGGAGCAACCGCGAATCGGTGTTTGCGGCTTGAACCCGCACAACGGCGACAACGGTTCGTTCGGTCGCGAGGAGCTGGACATCATCGGTCCGGCCGTACGCTCGGCGCAGGCGCTGGGCATCGCGGCACAAGGGCCGTATCCGGCAGACACGATCTTTCTCAAGGTCCAGGGCGATGCCAATGCCTTCGATGCTGTCGTGACCATGTATCACGACCAAGGCCAGATCGCGATCAAGTTGATGGGTTTCTCCCGTGGCGTGACGGTGCAGGGCGGCTTGCCGATTCCGATCACCACCCCGGCCCACGGCACCGCTTTTGATATCGCGGGGCAGGGCAAGGCCAACGTCGGTGCTACGCGCCAGGCCTTCGAAATCGCATGCCGGATGGGACGCAACCGGCACTGAMKKTAIAMVLGDPAGIGPELIARLLAEPEIRSKANIILIADEAEMRRGMRIAGSEFPYRRVETLDVLEFVDDTPLFHDFRGDTVGEFPRSEASVIGGRYSLDTLEKALRLTEAGTTDAVLFGPLNKTSLHMAGMAHSDELHWFAELLDFHGPFCEFNVLDNLWTSRVTSHVALSAVPGLLSEQRVVEAIQLIDTALKRNGLEQPRIGVCGLNPHNGDNGSFGREELDIIGPAVRSAQALGIAAQGPYPADTIFLKVQGDANAFDAVVTMYHDQGQIAIKLMGFSRGVTVQGGLPIPITTPAHGTAFDIAGQGKANVGATRQAFEIACRMGRNRHPGPT0009165_1082DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009165-pdxA-K00097NANA
D1-35_011161176rhmDCOG4948L-rhamnonate dehydrataseATGAAAATCAAAGCGATCCGTACCCGCGTTTTCGAGTGGAAGGGCAAAGTCGTCCCGCCCCAGGCGCACTTCTGCACCAACGCCAGCGACATCCTGTTCGAGCGCGGCGACGCGATGGGCTCCTTCCGTTTCCACGGCTGGCTGGTGGTGGAAGTCGAGACCGACAACGGCCTCGTCGGTATCGGTAACTGCGCCCTGGCACCGCGTGTGGCCAAGGAAATCATCGACACCTACCTGGCACCGATCGCCATTGGCGAAGACCCTTTCGACAACGAATACATCTGGCAGAAAATGTACCGTCAGAGTCACGCCTGGGGCCGAAAAGGCATCGGCATGGCGGCGATCTCGGCGATCGACATCGCGATCTGGGACATCATGGGCAAGGCCGTCAACAAGCCGGTGTTCAAGTTGCTCGGCGGTCGCACCAAGGAAAAGATCTGGACCTACGCTTCCAAGCTCTACGCCAACGACAACCTCGATCTGTTTCTCGAAGAGGCCCAGGGCTATCTCAACCAGGGTTTCACCGCGCTGAAGATGCGCTTTGGCTACGGTCCGAAAGACGGTCCGGCGGGGATGCGCCGCAACATCGAACAAGTGCGCGCCCTGCGGGAATTGGCCGGCCCTGACGTCGATATCATGCTCGAATGCTACATGGGCTGGACCCTGGAATACGCGAGGCGCATGTTGCCGAAACTGGCCGAGTTCGAACCGCGCTGGCTGGAAGAACCGGTGATCGCCGACGACATCGAAGGCTACATCGAACTGAAGAAGATGGGGATCATGCCGATCTCAGGAGGCGAGCACGAGTTCACCTCCTACGGCTTCAAAGACCTGTTGGAACGCCGCGCCGTCGACGTCATCCAGTACGACACCAACCGCGTCGGCGGCATCACTGCCGCGCGCAAGATCAACGCCATGGCCGAAGCCTGGTCGGTGCCGGTCATTCCCCACGCCGGGCAGATGCACAACTACCACTTGACGATGTCCACCACCGCCTCGCCGATGGCCGAGTTTTTCCCGGTGTTCGACGTCGAGGTTGGCAACGAACTCTTCTACTACGTGTTCAAGGGCGAGCCGCAACCGGTCAACGGGTACATCCAGCTCGACGACAACACTCCGGGCCTGGGCCTGGAAATCTCCGACGAATACCTGAGCGACTTCAACATCATCGAGTGAMKIKAIRTRVFEWKGKVVPPQAHFCTNASDILFERGDAMGSFRFHGWLVVEVETDNGLVGIGNCALAPRVAKEIIDTYLAPIAIGEDPFDNEYIWQKMYRQSHAWGRKGIGMAAISAIDIAIWDIMGKAVNKPVFKLLGGRTKEKIWTYASKLYANDNLDLFLEEAQGYLNQGFTALKMRFGYGPKDGPAGMRRNIEQVRALRELAGPDVDIMLECYMGWTLEYARRMLPKLAEFEPRWLEEPVIADDIEGYIELKKMGIMPISGGEHEFTSYGFKDLLERRAVDVIQYDTNRVGGITAARKINAMAEAWSVPVIPHAGQMHNYHLTMSTTASPMAEFFPVFDVEVGNELFYYVFKGEPQPVNGYIQLDDNTPGLGLEISDEYLSDFNIIEPGPT0017805_323DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LYXONATE_DEGRADATION,PGPT0017805-LRA3_like-K12661NANA
D1-35_011171032hypothetical proteinATGAGCGGCGCCTACCCTGACTATCTGGAGGCCACCATGCGCCTGATTCAATTTGAAAACTCCGCCGGAGAGCGCCAGGTCGGCGTCGTCGATGGGGCACTTGTTCAAGTGCTCAAAGGAACCCGCAATACCCGGGAACTGGCGCTTGCAGCGATCCGTGGCAATCGCAGCCTGCATGAAGAAGTCGCTTCGCGCGGCACCGAGCCGGGCCCGGATTACGCAGCGCTGTTGCACCAAGGCAAAGTCCTGCCGCCGCTGGATCACGAAGATCCGGCCCACTGCCTGATCAGCGGCACCGGCCTGACACATCTGGGCAGCGCCTCGGCGCGGGACAAGATGCACCAGCATGACGGTGAGGTCGAGGCCGGCATGACCGACACCATGCGCATTTTCAAATGGGGGATCGAGGGCGGAAAGCCGGCGCCGGGGCAGGTCGGTGCGCAACCGGAATGGTTCTACAAGGGTGACGGCAGCATCGTCGTGCACCCCGGCGCGGACTTCCCGGTGCCTCCGTTTGCCGAAGATGCCGGTGAAGAGCCGGAGCTGACCGGTCTCTATGTGATTGGCGACGATGGCCTGCCGTATCGCATCGGTTATGCCTTGGGCAATGAGTTCTCCGACCACGTCATGGAGCGGCGCAATTACCTGTACCTCGCCCACTCGAAACTGCGCAGTTGCTCCTACGGCCCGGAGCTGCGCGTCGGTGAGTTGCCCAGGCATCTGGTCGGCACCAGTCGCATCGAGCGCAATGGCGAAACCCTCTGGGAGAAGGCTTTTCTCAGCGGCGAGGACAACATGTGCCACAGCCTGGCCAACCTGGAATTTCACCATTTCAAGTACGCGCAGTTCTTGCGGCCGGGTGATGTCCATGTGCATTACTTCGGCACCGCTACCCTGTCGTTCGCCGACGGTGTGAAGACACAGCCGGGGGATCGCTTTCGGATCAGCCTCGATGAGTTCGGTGCGCCGCTGGTGAACGGTATCGGCGAGAGTGCCCAGCCGCTGCCCATCGGCCAGGTGCGTGCGCTCTAAMSGAYPDYLEATMRLIQFENSAGERQVGVVDGALVQVLKGTRNTRELALAAIRGNRSLHEEVASRGTEPGPDYAALLHQGKVLPPLDHEDPAHCLISGTGLTHLGSASARDKMHQHDGEVEAGMTDTMRIFKWGIEGGKPAPGQVGAQPEWFYKGDGSIVVHPGADFPVPPFAEDAGEEPELTGLYVIGDDGLPYRIGYALGNEFSDHVMERRNYLYLAHSKLRSCSYGPELRVGELPRHLVGTSRIERNGETLWEKAFLSGEDNMCHSLANLEFHHFKYAQFLRPGDVHVHYFGTATLSFADGVKTQPGDRFRISLDEFGAPLVNGIGESAQPLPIGQVRALPGPT0017806_1DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LYXONATE_DEGRADATION,PGPT0017806-2_keto3_deoxy_L_lyxonate_dehydratase-NANANA
D1-35_011181581Alpha-ketoglutaric semialdehyde dehydrogenaseATGACATTGCCACAGGGATACAACTACATCGGCGGCCGTCGCAGCGCCAACGGCACCCTGCAACTGCAAAGCTTCGATGCGAGCACCGGCGAGCCCTTGCCCGGCACCTTCTTCCAGGCATCCGAAGCCGAAGTGGATGCCGCCGCCAAGGCCGCTGCTGCGGTTTACCCGGTTTACCGCAACCTGAGCGCGGAAAAACGCGCTTCGTTTCTCGATGCAATCGCCGAGGAAATCGACGCGCTGGGCGATGACTTCATCGCTACCGTGTGCCGCGAAACCGCATTGCCTGCCGGGCGCATTCAAGGGGAGCGCGGTCGCACCAGCAGCCAGTTGCGTCTGTTTGCAAGCGTGCTGCGTCGTGGCGACTTCTACGGTGCGCGGATTGACCGCGCATTGCCCGATCGCCAGCCACTGCCACGTCCGGATCTGCGTCAATACCGCATCGCCCTGGGGCCGGTGGCGGTGTTTGGCGCCAGCAACTTTCCGCTGGCCTTTTCCACGGCCGGCGGTGACACCGCTTCGGCGCTGGCAGCGGGGTGCCCGGTGGTGTTCAAGGCCCACAGTGGCCACATGGCGACTGCCGAGTGGGTGGCGGACGCGGTCATCCGTGCCGCTGAACGGACTGAAATGCCGGCCGGCGTGTTCAACATGATTTATGGCGGGGGTGTCGGTGAATGGCTGGTCAAGCATCCGGCCATTCAGGCGGTGGGCTTCACCGGTTCGCTTAAGGGTGGCAACGCCTTGAGCCACATGGCCGCCACCCGGCCACAGCCGATTCCGGTGTTCGCCGAAATGTCGAGCATCAATCCGGTGTTCCTGCTGCCCGAAGCGTTGGCGGTACGCGGCGAGCAGATCGCGGCGCAGTTGGCCGGTTCGGTGACGTTGGGGTGCGGTCAGTTCTGTACGAATCCGGGTTTGGTCATTGGCCTGCGCTCGCCGCAGTTCAGCCTGTTCCTGGAAAGCTTCTGCGCGAGCATGAACCAGCAACCGCCACAAACCATGCTCAACCCGGGCACCTTGGCCAGTTACAGCCGCAGCCTCGGTGAGCTGTACGAGCATCCGGGCCTGACGCACCTGGCGGGCAAAACGCAACAGGGCAACCAGGCGCAGCCGCAGGTGTTCAAGGCCGATGTCAGCCTGTTGCTCAAGGGCGATGCGTTGCTTCAGGAAGAAGTGTTCGGGCCGACCACCATCGTCATCGAAGTGGAGAATCGGACACAGTTGGCGGCGGCGCTGCACGGCCTGCGCGGACAGTTGACGGCGACGTTGATCGGTGAGGCTGATGAATTACTGGAGTACCGTTGGCTGACAGAAGTACTGCAGGAAAAAGTCGGGCGGATCCTGCTCAACGGTTATCCGACCGGGGTGGAGGTGTGCGAGGCGATGGTGCACGGCGGACCGTATCCGGCAACATCCGATTCACGGGGAACGTCGGTGGGCACGTTGGCCATCGATCGTTTCCTGCGGCCGGTGTGTTTCCAGAATTACCCGGATGCGTTGTTGCCCCAGGCATTGCAGAACGGCAATCCGCTAGGGATTCGGCGGCTGGTGGATGGGGAGGTAACTGATCGAGCGCTGTGAMTLPQGYNYIGGRRSANGTLQLQSFDASTGEPLPGTFFQASEAEVDAAAKAAAAVYPVYRNLSAEKRASFLDAIAEEIDALGDDFIATVCRETALPAGRIQGERGRTSSQLRLFASVLRRGDFYGARIDRALPDRQPLPRPDLRQYRIALGPVAVFGASNFPLAFSTAGGDTASALAAGCPVVFKAHSGHMATAEWVADAVIRAAERTEMPAGVFNMIYGGGVGEWLVKHPAIQAVGFTGSLKGGNALSHMAATRPQPIPVFAEMSSINPVFLLPEALAVRGEQIAAQLAGSVTLGCGQFCTNPGLVIGLRSPQFSLFLESFCASMNQQPPQTMLNPGTLASYSRSLGELYEHPGLTHLAGKTQQGNQAQPQVFKADVSLLLKGDALLQEEVFGPTTIVIEVENRTQLAAALHGLRGQLTATLIGEADELLEYRWLTEVLQEKVGRILLNGYPTGVEVCEAMVHGGPYPATSDSRGTSVGTLAIDRFLRPVCFQNYPDALLPQALQNGNPLGIRRLVDGEVTDRALPGPT0018165_515DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLACTURONATE|GLUCURONATE_DEGRADATION,PGPT0018165-aldH-K13877NANA
D1-35_01119693aisLipopolysaccharide core heptose(II)-phosphate phosphataseATGCCGTCGGGGCGGCTTGATGTGGAACTGAGACTGAGTCTTTTCGGCCTGACGCGCTCGATCGATAGGCGCCGTTTTGCCCGTTACCAAAACACCGTGGTCGTGCTCGCCTCGGCGCTGCTGGCTGTCCCGTTGGTCCTGTGGCTACTCGGCCCGGCAGCGGTGCCGGACCTGGCCCATGGCAACGTCGCCGGCGCCCGGGCCCTGGCCGATGGCTGGGCCAAGGGCGAAATGATCGTGCTGGTGCGCCATGTCGAGCGCTGCGACCACTCCAAGGCTGCTTGCCTGGGTGACCGCGAAGGCATCACCGACCGCGCCCGTGCCGTTGCGGTGGGGCTCGGGGCTCGGTTCGAACAACTGGGCCTGGACCACGTCGACCTTTACAACAGCCCACGGGTGCGCACCGCGCAGACGGCGGGCTACATGTTCAACAAGGTGAGCGCCGGTGACGATTGGCTGTTCGACTGCCGACATGACCTGCTGCGCAATGCCCTGGCCCACAAAGTGGCCGGTCGCAACCTGATCCTGGTTACCCACAGCGAATGCATGCAGGCGATGGAAACCGCGCTTCTGCGCCCGACTTCCTCGTTCGGCTATGGGGCTTCGTTGTTCGTTTCCAGCGCTCAGCCACAAGCGCCACGAGTGCTCGGTTTTATCGAAGCCCCTGACTGGCGCTCGGTGACATTCCAGTAAMPSGRLDVELRLSLFGLTRSIDRRRFARYQNTVVVLASALLAVPLVLWLLGPAAVPDLAHGNVAGARALADGWAKGEMIVLVRHVERCDHSKAACLGDREGITDRARAVAVGLGARFEQLGLDHVDLYNSPRVRTAQTAGYMFNKVSAGDDWLFDCRHDLLRNALAHKVAGRNLILVTHSECMQAMETALLRPTSSFGYGASLFVSSAQPQAPRVLGFIEAPDWRSVTFQNANANANANA
D1-35_01120846hypothetical proteinATGCTGACGTCTGCCCGCGCCCGTTTCTACGGGCTCAACCTCGGAATTCCCTTGGCCGTTGCCGCCATGGTGTTCCTGCTTTTCGATCTGACCCGTATCGACATCGCCATCAGCAATCTTTTCTATGACCCGTTGCACCAGGTCTTTCCGTTGGGGCATGTGCGGCTGTTCGAGCAAATCACGCACAAATGGGCCAGGGCCATTCCGAACTGGACGGGGGAGGCGGCCATAATCGGCGCCGTGCTGTCGTTTTTCTGGCCGCTGTTGAAACCGGAAAAGCGCCCTGGGCTACTTCGCGTACTGGACAGAACCCGGCTGGCGAAACCGCTACGTTTTGCCTACAAACACCGGCGCGATTTCCTCTACGTTGTCTTCGCCTTTTCGCTCAGTACCGGGGTTATCCATTACCTCAAGGGCCATACCAGCGTGTACTGCCCGGTGGAAACCAGCCAATACGCCGGCAAGATCGAGCACAAGGAATGGTTCCGGAATTTCGACCTGCTGAAAGTGGCCGGTGAGGGGCGCTGCTGGCCGGGTGGCCATGCGTCCGGCGGCTTCACCCTGCTGGCGCTGTACTTCGTCGCCCGTCGTTATCGCTGGCGTCATTCCAAAGCGGTGATGTATGGGGCGTTGGCCTTGGGGTTCGTCTATGGCACGACGCGGGTCCTGCAGGGTTGGCACTACATGTCCCATACCTTCTGGGCGGGAATCTTTGTCTGGTTGAGCTGCTGGTTGATGGCGCTGGTGTTTTATGGGCGAGGCGCCTTGGAGCAGCCGCTGTCGAATCGACAGCGCACGGTGCCGCCCGTCGTGCAGGCGTTGGGCAACGCGCCTTCCTCCGTCTGAMLTSARARFYGLNLGIPLAVAAMVFLLFDLTRIDIAISNLFYDPLHQVFPLGHVRLFEQITHKWARAIPNWTGEAAIIGAVLSFFWPLLKPEKRPGLLRVLDRTRLAKPLRFAYKHRRDFLYVVFAFSLSTGVIHYLKGHTSVYCPVETSQYAGKIEHKEWFRNFDLLKVAGEGRCWPGGHASGGFTLLALYFVARRYRWRHSKAVMYGALALGFVYGTTRVLQGWHYMSHTFWAGIFVWLSCWLMALVFYGRGALEQPLSNRQRTVPPVVQALGNAPSSVNANANANANA
D1-35_01121354hypothetical proteinATGTCTTCCGCTGGCGAGCCCGTCTACGATGCAGGCTACTTCAAGCGCATACCGGGTTACCTGAAGAAAATGGCAGGTGGCACGGACAGCATCGATACGCTGGTAGAGGCCGAAAAGCCCCTGAAAGTGAGTGCGTCGGTGAAAAGGCAGATCGCTACCCTCAATGGCATACCCATGCATACGTTGTTCGGCTACGGCATAACACCACAGCCTGCTCCGCTGGTATTCACACCACGACCGCAAAAGAACTATCTCATTGAAACGGTGATCGCGGATTACTACATCATGAAGGTGTATGAAATTTCCGCGACGGGTGAGCGCAGAGAGGTCAGCGTGCCTGTGGGTACGAATTGAMSSAGEPVYDAGYFKRIPGYLKKMAGGTDSIDTLVEAEKPLKVSASVKRQIATLNGIPMHTLFGYGITPQPAPLVFTPRPQKNYLIETVIADYYIMKVYEISATGERREVSVPVGTNNANANANANA
D1-35_01122102hypothetical proteinATGGTAGCGAGCGAAAAATGCCCCTCCTATGCCGGTTTGCCTTGGGGCATTGCCTATTCCTATCAGCGCGTCAGAGGCATCGCCGCCAGCGCCCTACCCTAGMVASEKCPSYAGLPWGIAYSYQRVRGIAASALPNANANANANA
D1-35_01123834fabG_13-oxoacyl-[acyl-carrier-protein] reductase FabGATGCCCAGTCGCAAAACCCTATTCATCACCGGCGTGAGCAGCGGCTTGGGTAGCGCACTCGCGCAAGAGGCAATTGCAGCAGGCCACCGTGTCATCGGCACCGTGCGCAATGAGGCGGCCTTGCAGGCCTTCGAGTCGCTGTCGACGGAGCGTGCCCATGGCGTCATCCTGGACGTCACCGAGTTCGACCGGATCGACAGCGTTGTGGCGGCGACGGAGGCCGCCCACGGCCCGGTCGATGTGCTGGTCAATAATGCCGGTTATGGCCACGAAGGCGTCTTCGAAGAGTCGCCACTGGAGGAAATGCGTCGTCAATTCGACGTCAACGTGTTTGGCGCGGTGGCGGTGACCAAGGCCTTCGTGCCGTATTTTCGCCAGCGCCGTGCCGGTCATATCCTCAATATCACTTCCATGGGCGGCACGATTACCATGCCGGGCATCTCCTATTACTGCGCGAGCAAGTTTGCCCTCGAAGGTCTCTCCGATACGCTGAGCAAGGAGCTGCTACCGTTCAACATCTTCGTGACGGCCGTCGCGCCCGGCTCGTTTCGCACCGACTGGGCCGGCCGTTCGATGCAGCGCACGGCGCGGAGCATTGCCGACTACGACGCCAGTTTCGATCCGATACGTAAAGCGCGCGTGGAGAAAAGCGGCAAACAACTGGGCGACCCGCGGAAAGCGGCGCAGGCCATGCTGCAGATCATTGCCAGCCCGACGCCACCCGCGCATTTGCTGTTGGGCAGTGATGCGCTGAAGCTGGTGCGGGAGAAGCTGAGTCGTGCCGCCAGTGAGATTGATCAATGGGAAGCGCTGACCCGTTCGACTGACAGTTGAMPSRKTLFITGVSSGLGSALAQEAIAAGHRVIGTVRNEAALQAFESLSTERAHGVILDVTEFDRIDSVVAATEAAHGPVDVLVNNAGYGHEGVFEESPLEEMRRQFDVNVFGAVAVTKAFVPYFRQRRAGHILNITSMGGTITMPGISYYCASKFALEGLSDTLSKELLPFNIFVTAVAPGSFRTDWAGRSMQRTARSIADYDASFDPIRKARVEKSGKQLGDPRKAAQAMLQIIASPTPPAHLLLGSDALKLVREKLSRAASEIDQWEALTRSTDSNANANANANA
D1-35_01124480hypothetical proteinATGACTCAGGCCGCTGCGCGCATGGTGCAGTTGATGGAACAGCTCGCACCGGTGGAAGGCTACAACCTCAGCGCGCTGGACGACGTCCGCTTCCTGCGTTCGAACCGCCCCCTGACGCGCACGCCGGTGCTGTATGAACCCGGCATCGTGATCCTCTGCCAGGGGCGCAAGCGCGGTTATCTGGGCGATGACGTCTATGTCTATGACGCCCAGCATTACCTGATGGTCTCTGTCCCCGTTCCATTCACCATGGAGACCGCCGCCAGCGCCTCGGAACCCATGCTGGCGGTCTACATGCGCCTCGACTTGCAACTGGCCAGCGAACTCATGTTGCAAGTGGACGAAACCCACGGCCCCAGCGACGCCCAGCCCAAAGGCATGTACGCCTCGCCCATGGATGAGCCGCTGCGCGCCTCGACGCTGCGCTTCCTGGAGGCGATGGGCGTCCGGGCGAGGCGCAAATATTGGGCCCTTCTCTGAMTQAAARMVQLMEQLAPVEGYNLSALDDVRFLRSNRPLTRTPVLYEPGIVILCQGRKRGYLGDDVYVYDAQHYLMVSVPVPFTMETAASASEPMLAVYMRLDLQLASELMLQVDETHGPSDAQPKGMYASPMDEPLRASTLRFLEAMGVRARRKYWALLPGPT0014658_11DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014658-ypdC-NANANA
D1-35_01125450rhaS_4HTH-type transcriptional activator RhaSATGAGGGAAATCTACTATCGAATCCTGACCGGCGAACAGGGCGGCTCGATGCGCGCCGCCCTCAGTCGGCGGGGACATTTCGGCAAGATCACCCGGGCGATACGCAAGATCCACAGTTGCTATCACGAGCATCTGTACGTCGAAACCCTGGCCCAGGAAGCCGGCATGAGCGTCCCCAACTTTCACCTGCATTTTCGCAACGTGACGGGCGCATCACCCATGCAGTACCTGAAATCGACCCGCCTGCACCAGGCGCGATTATTGATGCTGCGCAACACCATGAACGCCTCGACGGCGGCGTTCAGTGTCGGCTATGAAAGCGCCTCGCAATTCAGCCGCGAGTTCAAGCGGATGTTTGGCCGGACGCCACAGGCCGAGGTGGAATGGATGAGGGCGATTTATGCGTTGCCGGAGGGGGTGGCGGCGTCGGGGTATGTTTCTTCGCATTAGMREIYYRILTGEQGGSMRAALSRRGHFGKITRAIRKIHSCYHEHLYVETLAQEAGMSVPNFHLHFRNVTGASPMQYLKSTRLHQARLLMLRNTMNASTAAFSVGYESASQFSREFKRMFGRTPQAEVEWMRAIYALPEGVAASGYVSSHPGPT0014658_11DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014658-ypdC-NANANA
D1-35_01126486hypothetical proteinATGACCGTCGAAAATAAAGTGCAAGATACACATATATCGGCGCAGATGAAGGATCTGCATCGGTCCTTGATCTCGATCGTGAGCGTGATGAACCGGCCTAGGAACGACGAGCGACTCATCGCGGAAGCTGGTGTACACCTGGACCAGGCGCTCTTTCGCCTGCTGGTGGTAATCGAGCGGGTGGGGCCGATTGGTGTCGTGGATCTGGCAGGTCGCCTAGGCAGGGACTATACGACCATCAGCCGTCAGGTCTCCAAGCTTGAACACATGGAGTTAGTGATCCGGCATGAGAACTCGGAAGATCGACGGATGCGCGAGGCGGTGGTGTCCGCGAAGGGCAAGGCGATCACCGACCAGATAGACCAAGCGCGCGAGCGCCTGGCACGAGGAATCTTTCAGGACTGGGCTGCCGAGGACATCACCGACCTGGTGCGTCTGATGCGTAAATTTGCCAAGGCCCTGGAACAGGGCACAGGGGCTGGTTAGMTVENKVQDTHISAQMKDLHRSLISIVSVMNRPRNDERLIAEAGVHLDQALFRLLVVIERVGPIGVVDLAGRLGRDYTTISRQVSKLEHMELVIRHENSEDRRMREAVVSAKGKAITDQIDQARERLARGIFQDWAAEDITDLVRLMRKFAKALEQGTGAGNANANANANA
D1-35_011271473tetXCOG0654Flavin-dependent monooxygenaseATGCGTAAGCCCGTTGACGTCCTGATTTGTGGTGCCGGTGCCGCGGGCCTTACCTTAGCGATTGACCTGGCGCGGCGAGGGGTGCGCTTTGCCCTCATCGAAAAGCTTTCCTCGCCCTTCTTGGGCTCGCGCGGCAAAGGCATTCAGCCCCGCACCCAGGAGGTCTTCGAAGATCTCGGGATCCTGGACCGGATCATGGCCGCAGGCGGTATCTACCCGACTATTCGCAAATACGCGCCCGATGGTAGTCACGTGGACCAAGACGTGACGAACGTTGCCGAGCCCACACCTGCCGAGCCCTATTGCCTGCCTTTGATGATTCCTCAATTCAAGACCGAAGCAGTCTTGCGCGAGCGCTTGATCGAACTGGGGCATGCGCCAGAGTTTGGTGTCGAGCTAACCGGGACGCTGGTCAGCGCCGACGGAGTCAAAGCCGTACTCGCAACCCCGGATGGAGAACAGACCCTCCATACCCGATACCTGGTGGGTGCCGATGGCGGGCGCAGCTTCGTGCGCAACACCTTGGGGATTGGCTTTCCGGGCAAGACCCTGGGCGTACGGGCAATCGTGGCCGATGTCATATTGGATGGACTGCCGCGCGACGTGTGGCACCAGTTTGATGGTGGGGGCTCAGGCCCATTGGCTATCTGCCCGTTGGCGGGCACAGACCTGTTCCAGATCCAGGCCCCTGTTCCCTTGGAGGGCGATATAGATCTCTGCGCGGCTGCGCTGACCGAACGCGTTGCCCTGCACACGGGGCGCACGGACATCATGGTCCATTCGGTCGCCTGGTCATCCATCTACAGCATGAATGCCAGGCTTGCCGATCGTTACCGGGATGGCCCGGTGTTCCTGGTCGGCGATGCGGCGCATGTCCATCCGCCTACCGGTGGACAAGGCCTCAACACCAGCGTCCAGGACGCTTACAACCTGGGCTGGAAGCTGGCGGCCGTATTGGCCGGCGCACCAGAGGCTCTACTGGACACCTACGAAGCTGAGCGCCGCCCGGTGGCCGCAGACGTGCTCGGGCTGTCCACGCGCCTGCTTGCAAGCTTCAAGACCGGGGACAACAGGCGGACCCGTGAGGTCCAGCAGCTGGATATCGGTTATCCCCACTCGCCGCTATCGCTCCCGTCGCAGGCCACTGACAGCGGGCTCGCGCCAGGCGATCGTGCACCTGATGCCGTCGTGCGAGGCGCAGGCGGCAGCCCAACGCGCTTGTTCAACCTGTTCAAGGGCACACATTGGACCTTGTTAGCCAATGGTCCCTCGAACTTCGCGCCAAGCGCGGGCTTGCATATCCACGGCATCGGGCCCGGCTCGGAAATCGAAGATTACCTGGGTCAATTCGCCCAGTTTTACGGCCTCGCTGAAGGCTCCGCCGTGTTGGTCAGGCCGGATGGCTATCTGGCAGGGGTCTTCACGAAAGATCAGGTGGTTGCATTGGACGGCTATCTGGCTCGCTACAACTAAMRKPVDVLICGAGAAGLTLAIDLARRGVRFALIEKLSSPFLGSRGKGIQPRTQEVFEDLGILDRIMAAGGIYPTIRKYAPDGSHVDQDVTNVAEPTPAEPYCLPLMIPQFKTEAVLRERLIELGHAPEFGVELTGTLVSADGVKAVLATPDGEQTLHTRYLVGADGGRSFVRNTLGIGFPGKTLGVRAIVADVILDGLPRDVWHQFDGGGSGPLAICPLAGTDLFQIQAPVPLEGDIDLCAAALTERVALHTGRTDIMVHSVAWSSIYSMNARLADRYRDGPVFLVGDAAHVHPPTGGQGLNTSVQDAYNLGWKLAAVLAGAPEALLDTYEAERRPVAADVLGLSTRLLASFKTGDNRRTREVQQLDIGYPHSPLSLPSQATDSGLAPGDRAPDAVVRGAGGSPTRLFNLFKGTHWTLLANGPSNFAPSAGLHIHGIGPGSEIEDYLGQFAQFYGLAEGSAVLVRPDGYLAGVFTKDQVVALDGYLARYNNANANANANA
D1-35_011281686hypothetical proteinATGATCAATACACATAAAGACAAATCTGAATCCATTGGCAGTGAACCAATTACCTACCAGAACGGCTGGCCCTGTTTCCGCGAGCACAGCTTGGTAGAGGCCGCTGTAACTGAGGCAGCCCGAGAGCTGCAGATTTCCCGTGAAATGGCAATGATGTGCGCCTTCGGGGCCATGGCCACCGCTTGCCAGAAACTTATTGATATACGAATGCCAACCGGACACCAAGTGCCAACCTCACTGATGCTGCTGACCATCGCGGACTCCGGTGAACGCAAGACCACTACACAGAACAATTTTTTCGAGGCGATCAACGACCTGAATGATGCAGCGCATCGCGCCAACGAGGTCGCCTTAGTGGAGCATCGGGTCGAACAGCAACTATGGAGCACGCGCAAGAGACACCTGGAGCGTATGTACAGCAAATACGCAGCCCAAGACGACGCCGCCGCCACGCACGCAGCCCTGAAGACTGTCGCTGAGCATGTCAGAGCTGAACCGCAACCCGCCCGCTCGGGCAAGTTCCTCTATGAAGACACCACCCCGCAGGCCCTAGTGCAGATGCTTTACGAACACACGCCCAGCGGCTGTCTGCTGACTAGCGAAGCCAACAGTATTTTCAGCGGCAAGGCCTTGGGTGAGCTCGACAAACTCAATACTCTCTGGGATGGCAGCAGCGTTATCGTCGATCGCATTTCCAGAGAAGGCTTCATTCTCCAAAATGCCCGTCTCACCTTGTCACTAATGGCACAACCGAGCGTGATCGCCCGCTTCATGGGCAGGCGCGGCGAGGAGGCTCGCGGCACGGGCTTTCTCGCCCGCTTCCTAGTCGCCAAGCCCCGCTCAATGGCTGGCCAGCGTACCGATCAAAAGCTATCTGAACTGCCTCGCCTACAGGCCTTCAATGCCCGCATCCGCGAGTGCTTGGCCCCCTCCGTTTCGCCTGATCGCCAAGTACTACGTTTCTCGGAGCCGGCCGCAAATCTCTGGTACCAGTACAGTCGGCATCTCGAACAACAAATGCAGGAAAACGGCCTATACCACTACGCTAAGGATCACGCTTCCAAGCTGCTGGAAAACGCGAGTCGTCTGGCGGCCATCCTGCATACGTTCGAGCGCACCTCAGACAGCAATACCGAGATCGACTACCTCACGCTGGAGTTCTGCTGGAAGTTCGCTCAGAACTGCTCAAAGCACTTCATCGAGCACTTGGCCAACGAGCCGCAGCTCGTGACGGATGCGAACCAACTGGCACACTACCTACTGAAAACCGCCCACAAAGAAAACCCTCTCACAGACAGACCTACAAACAGGAACAGAAACGACTCCTCACCCAACACGCGCCTCTCATCGACGCCACCTGACGATTTGATGACCGGGCAACGAACCACTTTCACACTAACCCAGGTGAAACAGTACGGCCCCAGCAGTCTCAGGGGACGGGCCAATACCGAGCGTTTGGAGGCAGCCATCGAGCTGCTGACCAAGCTGGGGCATATCGCCAAGGAAGGAGGCCGCTACCGGTTCCAAGAATCGATCCTCCTCAAAAGAGGAGAGCCCGAACTGAAGAACGGCGAAACGCTCACGATCAAAGAGCTTCCTCTGTTCAGCGAACATGAGTATTGGAAGCCTGAGGTAAGGAATGGGTTTGGGCCTCAGCCGAGCTACCTCATCAAAGTCCGCGATTAAMINTHKDKSESIGSEPITYQNGWPCFREHSLVEAAVTEAARELQISREMAMMCAFGAMATACQKLIDIRMPTGHQVPTSLMLLTIADSGERKTTTQNNFFEAINDLNDAAHRANEVALVEHRVEQQLWSTRKRHLERMYSKYAAQDDAAATHAALKTVAEHVRAEPQPARSGKFLYEDTTPQALVQMLYEHTPSGCLLTSEANSIFSGKALGELDKLNTLWDGSSVIVDRISREGFILQNARLTLSLMAQPSVIARFMGRRGEEARGTGFLARFLVAKPRSMAGQRTDQKLSELPRLQAFNARIRECLAPSVSPDRQVLRFSEPAANLWYQYSRHLEQQMQENGLYHYAKDHASKLLENASRLAAILHTFERTSDSNTEIDYLTLEFCWKFAQNCSKHFIEHLANEPQLVTDANQLAHYLLKTAHKENPLTDRPTNRNRNDSSPNTRLSSTPPDDLMTGQRTTFTLTQVKQYGPSSLRGRANTERLEAAIELLTKLGHIAKEGGRYRFQESILLKRGEPELKNGETLTIKELPLFSEHEYWKPEVRNGFGPQPSYLIKVRDNANANANANA
D1-35_01129231hypothetical proteinATGCGAATCATCCGTCTGAAAGAAGTCATCGACTCGACAGGACTTGCCCGGTCGACCATCTACAAATACATCGCGGAGGGCACCTTCCCGAAACCGGTATCTCTGGGCGACCGCTGCGTTGGCTGGGTCGAGAGCGAGGTGCACGATTGGATCTTGGCAAGGATTGAAGAGCGTGATCTGACCGAGAGCTCTGCAGTGCGGTCCACCGGTCACCTAAGCATGGCCAGTTAGMRIIRLKEVIDSTGLARSTIYKYIAEGTFPKPVSLGDRCVGWVESEVHDWILARIEERDLTESSAVRSTGHLSMASNANANANANA
D1-35_01130696hypothetical proteinATGCTTCGTCATTCCGATAACACGAGCCACCGTCCGCGTCGTCATCCAGGCAACACCAACCTCCATCTGCAGTACGGGCCTACCTACGGCGGCCTGCCCTTGATGGTCGACAAGGGGCCGTATGTAGAGGAGTACCTATTCAGTCTCCTGAGCGTTATCCAGCGGGCTCTGACTCAATATCCTAGGGTCATGGCATTCCGGGTGGACCTTCATCTGCCGAGGGAGATAGATCTGTCCGCTAACACCAACAAGAACATCAGCAGGTTTATCGAGTCCTTCTGCGCCAAGATTGACTACCACCGCAGCCAGCTGCGTGAGCAAAAGCAGGATGCTCGTGGTTGCAAGGTTCGCTATGCCTGGGCGAGGGAGGTCGGACAGAGAGGACAGCCGCACTACCACTTGGTGTTTCTGCTCAATCATGATGCCTATCACAGGCCAGGCCGGTTGCAATCTACGAATCGAAATCTCGTGACGCGCCTGCAGGAAGCTTGGGCTAGTGCTTTGCAGCTATCAGTCGATCAGGTACGTGGGCTGGTGCATATCACTGACAATGCCACATATCGAATCTACCGGGACGTCCCCGACGGCAAGATTGATGAGCTGCCAGAGTTGTTCCGGAGAGCCAGCTACCTATGCAAGGAGGCTACGAAGTCCTACGGGGATCGTCAGCGTGGATTCGGCACCAGCAGGGGATAAMLRHSDNTSHRPRRHPGNTNLHLQYGPTYGGLPLMVDKGPYVEEYLFSLLSVIQRALTQYPRVMAFRVDLHLPREIDLSANTNKNISRFIESFCAKIDYHRSQLREQKQDARGCKVRYAWAREVGQRGQPHYHLVFLLNHDAYHRPGRLQSTNRNLVTRLQEAWASALQLSVDQVRGLVHITDNATYRIYRDVPDGKIDELPELFRRASYLCKEATKSYGDRQRGFGTSRGNANANANANA
D1-35_01131807hypothetical proteinGTGGATCGCTTTGCCATCCAGTCCGCTGCGGCGACCCGGGATCTTGCGCTGTATAGGGAGCTAGCCTCCGGCAATATCGACTATGACTCCAAAGCCAAGACCTATGTCCTTGGAGCTGACTTCCGTTCGCTGTTCGATTACCCAGCAGAAAGAGTTATGTCGTGGCTGACACAGGCCTTCGGTGATGGCGAGCCGCTTAAGTTCAAAACTTGGGTGCCTAGTGAAATTCCTTCTAGGCTGACGAACCCTGATTTGGATGTGCTGGCGAGTGTGACGCGCGCCATCCATCACTGCTGTCCCTTGGTCGTTGAATACCACTCGATTTCCAGTGGCAAGTCGAAACGCGAGATCGTGCCTTTTGCTTTGATCGATACAGGTTTTCGCTGGCACGTTCGCGCGTTCGATCGAAAGTCAAAAGAATTCCGTGACTTCGTCATTACTCGGATAAGGCGCCCAGTGGTGCTTAATGGTCAGCCCGTGGCTCCTCAGGAGATGAGCGATCAAGACATTCAGTGGACCCGAATCGTCGAGTTAGAGCTGGTGCCGCATCCGAGCCAGCCGCGTCCAGAAATAACCGAAATGGACTACGGGATGGATGGAGGGGCACTACGCATGAAGCTGCGTGCCGCCACTGCCGGATACATCCTAAGGCAATGGAGCGTGGACTGCTCGCCAGACCATAGTCTGCGTGGGCATGAGTACCGGCTTTGGCTGAAGGACCAGTTGGCGCTATACGGTGTCAAGAATGCTGTTTTGGCTCCAGGCTACAAAGAACCCCGTCTGGACGAGGCGAAGCCAAATTACTAAMDRFAIQSAAATRDLALYRELASGNIDYDSKAKTYVLGADFRSLFDYPAERVMSWLTQAFGDGEPLKFKTWVPSEIPSRLTNPDLDVLASVTRAIHHCCPLVVEYHSISSGKSKREIVPFALIDTGFRWHVRAFDRKSKEFRDFVITRIRRPVVLNGQPVAPQEMSDQDIQWTRIVELELVPHPSQPRPEITEMDYGMDGGALRMKLRAATAGYILRQWSVDCSPDHSLRGHEYRLWLKDQLALYGVKNAVLAPGYKEPRLDEAKPNYNANANANANA
D1-35_01132504hypothetical proteinATGAATACCATCGCAAAAACAATCGCAGAGCTCCGGATACTGATTGGTTACCTGGGGGAAAAGGGCCAGGCTAATTGGTGGGGCAGCGAGTTCTTTGGCGCTACAGCGTCTGCTTTTTTGGCTCCAATATTCAACCGATCTCTATTTCTTGCCCAATACCAGGGGGCAACTGCGGCGGCAGCTAAGGTTCACGACGAGGTCATTGGTGTTGGCCGTATCTATCACCTATTTCGTTTGCCGATCGGGCTCGAGCAAGCATCTGCTGATGCGCTCAACGACACCGCTTTCGTGCAAATCTTGCAAGGCAGATTGGCAAGTCGTGAGCTGGCGATGGTGCGCCTGGCTGAATTGGCGGAAAAACCAGAGTCCGCATCGCCAGGCCCCATTTCGCTGGGCCAGATGAGTCAAGATCTACAAACCGAGCTAGAACGTGCTGCGGGCTTTTATTGTGCAGCCCTAACCTCTGGAATTCAGACGTTCCCCTACGTTCGGGAGGTTGAGTGAMNTIAKTIAELRILIGYLGEKGQANWWGSEFFGATASAFLAPIFNRSLFLAQYQGATAAAAKVHDEVIGVGRIYHLFRLPIGLEQASADALNDTAFVQILQGRLASRELAMVRLAELAEKPESASPGPISLGQMSQDLQTELERAAGFYCAALTSGIQTFPYVREVENANANANANA
D1-35_01133786hypothetical proteinGTGAGTCAGCAGCGCTACTACACCACTCAGCTACAAGCCGGGCTTGGGCTCTTAGAAGAAACAAGGCAACTGCTCCAGGTTTATCAATCTAGCATGAGTGCGTCCCAGCTTTATGAGGCCGCGCTGGCATCGGGTCGTTTCCCTTTGGTAACGGCAAGGCGCCTACGCAATATTGTTGCCGAGTGCTTTGCCCCACGCTACATGCGCGACCCCTGCGTTGCCGCGCGCCTCAAGTCCCTGGTTGATCGTTTTACGACCGCCGAGCTCAATCAACTGCTCTTTATCTATACCGCGCGAGCCAATCTTGTATTGGCAGACTTCGTTCGAGAAGTTTACTGGGCGCGCTATTCAGCAGGGCGAAATGACCTCCAGCTGGAGGACGCACGCACCTTTGTTGCTAACAGCGTGCGCGAAGGAAAAACGCAAAAGCCATGGTCTGAGACCACGATCAAGCGCATCTCATCGTATTTGATGGGCTGCTGCGCCGACTATGGACTGCTGACAACCACAGGCCGTAACCAGCGCTCGATTGCTGCTTATCGCATCTTGCCAAAGGTCGCCGCCTACTTGGCCTACGACTTGAAGTTCAGTGGTCTTGGTGACAACCAAATTGTTTCAAGCTCCGACTGGGATCTCTTTGGACTGGAACGTACCGACGTCCGAGACCAATTGAAACGTTTGTCATTACAAGGCCTGCTCATATTTCAGGCCGCTTCCGATGTCGTGCATATCGGTTGGACCTATAAAAACATGGAGGAACTGATCGATGTCATCGCTCAAAGCTGAMSQQRYYTTQLQAGLGLLEETRQLLQVYQSSMSASQLYEAALASGRFPLVTARRLRNIVAECFAPRYMRDPCVAARLKSLVDRFTTAELNQLLFIYTARANLVLADFVREVYWARYSAGRNDLQLEDARTFVANSVREGKTQKPWSETTIKRISSYLMGCCADYGLLTTTGRNQRSIAAYRILPKVAAYLAYDLKFSGLGDNQIVSSSDWDLFGLERTDVRDQLKRLSLQGLLIFQAASDVVHIGWTYKNMEELIDVIAQSNANANANANA
D1-35_01134573hypothetical proteinATGTCATCGCTCAAAGCTGATTTCAATGAGTTGATGGAGCGAATTAAGCAGGGGCGCGAGTTTGGCCATGCCAGCTTCGAGCCCATTTTCTATTTGGTTTTTCCGCCAAATCAGATCCTCAATGTGAAGCGCGAAACACCTGCGTGGGTGCACCGACTGCGTAACGAAGGCTGGGAAGTCGAAACCTTTTCGATCGCCGAGCATGTTGCAGACATTATCGAGAAGGCACCGCTTCGCAAGATCTGGCTCGCGGCCGATCAGAAAGCCCCCCTGGCATGGGGCAAGACCAATGCGTCGCTCGCTAATGCCATCAGTAATGGCGCGTTGCAGGCACGCATTGAAGCCAAGCTGGCCGAACTTGAAGGCAAGCCTAAGGCCATTTTGCTGGTCACCGATCTTGAGGCGTTGCATCCCTACACACGCATCGGTGTCATCGAAGGCAAGTTGCAAGGCAAATTCCATGTACCCACGGTGTTCTTTTACCCTGGTGTGCGCACCGGCAAGACACGACTCAAATTCCTGGGGTTCTACCCCGACGATGGCAACTACCGCTCTGTCCACGTCGGCGGCTAAMSSLKADFNELMERIKQGREFGHASFEPIFYLVFPPNQILNVKRETPAWVHRLRNEGWEVETFSIAEHVADIIEKAPLRKIWLAADQKAPLAWGKTNASLANAISNGALQARIEAKLAELEGKPKAILLVTDLEALHPYTRIGVIEGKLQGKFHVPTVFFYPGVRTGKTRLKFLGFYPDDGNYRSVHVGGNANANANANA
D1-35_011353642hypothetical proteinATGACGATCAAAAAACTCTTCGACCCCAGCAAGAGCATCAATCGCAGCATTGAAAAGGTCATCACTTATGGCGTGTCACAAGAGGCGCGCCTGAAATCGGAAATCTCGGAATACGTAGTTACCGACAGCATCGACCAGCAGTTTGAGAATCTCCTGCTCAAGATGGAAGCCGCCATGGACATTGGTGGCGAAAACGAAGTCGGCGTCTGGGTGTCGGGCTTCTATGGCTCGGGTAAGAGCTCGTTCACCAAATATTTGGGCTTGGCATTTGACGATCGCATCACCATTGATGGCGTTCCATTCATCCAGCACCTCCAAGATCGCCTCAAGCGTCAGCAAACCAAGTCCTTGCTTTCGAACGTAGCCAAGCGCTTTCCTGCCGCAGTGCTGATGTTGGACTTAGCCAGCGAACAGGTCGCAGGTGCAACCATGGAAGAGGTGTCGACGGTCCTGTTCTACAAGGTTCTGCAGTGGGCAGGTTATTCGCGCAATCTCAAGGTTGCTGCGCTGGAACGCAGGCTTAAGAAGGAAGGTCGTTACAACGAATTCCTGGATGCATTCAAAGAGGCGGCGGGCGGTGAAGACTGGAGCAACTACCGTAACGACGAGTTGGTGGTCGACAGCCTCATTCCTGAGATTGCGCACAAGCTTTACCCGACCCTTTTCAAGACATCCAGTTCGTTCACGACCGAATCAAGTGAAATCGTCGTTTTCGAAAACGACCGCGTGCGTGAAATGCTGGAGATTGCCCGCGAGGCATCGGGCAAGGAATACATCATCTTCATCATCGATGAAGTCGGTCAGTACGTTGGCCCACGGCCCAATCTGATCCTGAACCTCGATGGATTGGCGAAGAACCTGAAAAACATCGGCGACGGCAAGGTTTGGATCGTCGGAACGGCGCAACAAACGCTCACGGCGGACGACGCGAAGGCCGCCCTCAACTCGCCAGAACTGTTCAAGCTTAATGACCGCTTCCCGATTCAGATCGCCCTTGAATCCAACGATATCAAGGAAATTTGCTACACACGTCTGCTGGGCAAGTCGTCACCAGCGGAAGCCGAATTGGGCGGATTGTTTGATCAATATGGCCAGCAGCTGCGCCAGAACACCAAGCTTGTTGATGCGCGCGTCTATGGTGTCGATTTTGACCGCAAGACCTTTGTCGATCTCTACCCGTTCCTTCCCGCGCATTTCGACATCCTGCTGCACTTGCTAGGCGCACTGGCCAAGTCCACGGGTGGCATCGGCCTGCGCTCGGCGATCAAGGTGGTGCAAGATATTCTGATTGACGGCTCTGAAGGCAAACCTGCCGTTGCAGAGCAAGCCGTTGGCTGGCTCGCCACCACCGTCACGCTGTTTGATGCTCTGGATAAAGACATCAAGCGCGCCTTCGCCTCTTTGCACGCATCGGTCGAGAAAGTCACAAAGATCCGCTTCTCGCATTCCGAGTTGCATCAAAACATCGCCAAAACGGTCGCCGTTCTGCAAATCCTTGGCAACCTGCCGATCACTCGTCAAAACGTCACCAGCCTGATGCACGCCAGCATCGCCGGGGCGTCTCAAGGAGAGGCTGTGGCGAAGGCGGTCGAAGACCTGATCAACGACCCCATCGTTCCATTTGGCGAGCAAGACGGCAACCTTTGCTTCTTCAGTGAAAAGCTGAACGACATTGAACAGGAACGCAGCCAAGTTGCACTGCGCGGCGTTGAGCTGCGTCGCATCGTTAACGAAGCGTTGACCAGTGTCTATGCGCCGTTGCCCTCCACCCAATTGCACGGCTCCTATGCCGTATCCACCGGACTTAAGGCGCAATCGGCAGGCAATGTGCCCGCATCGTTGGCGGGTGAGCGTAACCAGATCCAAACCATTGTTGAATTGGTCGACCCCAAAGAAATCGACAGCACACGCACTCGAGTCACTGACGAGTCGCGTCACAACTCATCCAAGTTCAACATCTACCTAGTGGGCCGCACGACGCCGGAAATGGACGAACTGACGGCTGACATCCACCGCTGCCGTGAGATCGCCAACCGCTACCGCAGCGATCCAGATCAGGAAATTCGCGAATATTGCAACGGCCAGGCCGACCGGGCTGAACACCTTAGCATCAAACTGCGGGCACAGATCCAGCGCAGCCTGTTGCAAGGTTCGTTCATCTTCCGTGGCCAGGTTGTCGCAGTAGATACGCTGGCGGCGGAGCTGCTGGATGCCGCTCGCAAACACTTGAGCGAAGTGGCCGAGCAAGTGTTCGATCGCTATGTTGAGGCCCCGGTGCGCGCCGGAACCGAACTCGCTGAAAAATTCCTCCGGGTCGGCAATTTGTCGGGCATCACCAGCGCTCTCGATCCTCTGAACCTTGTGCAAACCCAAGGCGGGCGGCACAGCATTCGCACTGACCACTTGGCGATGGTGAGCATCCGTGACTACATCGATCGCAACGGCACAGTCGACGGCAAACGCCTGACTGATGCCTTTGCTGATGCGCCCTTCGGTTGGTCCGCTGACACCCTGCGCTATCTGGTGGCGGCCATGCTGCTGGCAGGTGAGATCAAGCTCAAGGTGGCTGGACGTGAGGTTACCGTCAATGGCCAACAAGCTATCGACGCCATCAAAACCAACAATACGTTCAAGATCATTGGCATTTCGCTTCGCGGCGGCGACCGTCCGACCAACGACGTACTGGCACGCGCTGCAACCCGGTTAACTGAATTGACTGGCGATACCGTCGTGCCGCTGGAAGACGACATCAGCAAAGTCACCACCAAGCTCTTTCCGCAACTGCAGCACCAATACGGCCCTCTCACTGAAAAACTGCGCAGCCTGAACTTGCCAGGTGTAGACCGCCTGCAAAACCTCACTCACGAGATTAACGATGTGCTGCTCACCGACGCTTCGGATGCGCCGCGACGCTTGGGCAACGAGCAATCAGAGCTGTTTGAAAATCTCAAATGGGCTGCCGAAGTCAAACTCAAGTTGGAGCAAGGCCTGGAGCAAACGCTACGCGATCTTCGCCAGCACTGCTCGGCCATTGCCAATCTGCCGAATGTGGCTTTGCTGGCCACACTAAAAGAAGAGTTGGCTGAGGCTCTCAGCCTTATCGACGAGCGCCTGCAGCAGGCCGACTTCTATCGTTTTGCGGCTGATTTCAGCACCAGCCTCACCACCATTCGCGCTCGCATTCGCGATACGGTGATTGCGATGCAAGATCTGCTCAAAACACGCATCAAAGAGGCCGAGGTTGACCTCAAACGGGTGCCGGAGTGGATCAAGCTCACCCAGCAAGAGCAGACTGAACTGTTGGGTAGCCTAGAGCGTTTGATTGTGGAAGTGACGCCTGATTTGTTGGGACTCAATTCCATTACAAACAAGCTCTCTGAACTGCAGGATGAAGTGCAAGGTTTGAAACACAGCATTGAGCGCCTTGGCACGAAGCGGATTAAGGAGGAGCTTGAAGCTGAGATTCCTGTACCAAGTGCTGTAAATGAACCGAAACCAGCCATCGCGCGCAGTATCAAAGCGCGCACCAAGATCACCACCATGGATGATCTGGATGCGCTGATCACGCAGCTGCAACAACTGCGTGGCGAGCTGAAGTATGCACATGCCTTCGCCGTCAACCTCGAACTGCAGGACGAATAAMTIKKLFDPSKSINRSIEKVITYGVSQEARLKSEISEYVVTDSIDQQFENLLLKMEAAMDIGGENEVGVWVSGFYGSGKSSFTKYLGLAFDDRITIDGVPFIQHLQDRLKRQQTKSLLSNVAKRFPAAVLMLDLASEQVAGATMEEVSTVLFYKVLQWAGYSRNLKVAALERRLKKEGRYNEFLDAFKEAAGGEDWSNYRNDELVVDSLIPEIAHKLYPTLFKTSSSFTTESSEIVVFENDRVREMLEIAREASGKEYIIFIIDEVGQYVGPRPNLILNLDGLAKNLKNIGDGKVWIVGTAQQTLTADDAKAALNSPELFKLNDRFPIQIALESNDIKEICYTRLLGKSSPAEAELGGLFDQYGQQLRQNTKLVDARVYGVDFDRKTFVDLYPFLPAHFDILLHLLGALAKSTGGIGLRSAIKVVQDILIDGSEGKPAVAEQAVGWLATTVTLFDALDKDIKRAFASLHASVEKVTKIRFSHSELHQNIAKTVAVLQILGNLPITRQNVTSLMHASIAGASQGEAVAKAVEDLINDPIVPFGEQDGNLCFFSEKLNDIEQERSQVALRGVELRRIVNEALTSVYAPLPSTQLHGSYAVSTGLKAQSAGNVPASLAGERNQIQTIVELVDPKEIDSTRTRVTDESRHNSSKFNIYLVGRTTPEMDELTADIHRCREIANRYRSDPDQEIREYCNGQADRAEHLSIKLRAQIQRSLLQGSFIFRGQVVAVDTLAAELLDAARKHLSEVAEQVFDRYVEAPVRAGTELAEKFLRVGNLSGITSALDPLNLVQTQGGRHSIRTDHLAMVSIRDYIDRNGTVDGKRLTDAFADAPFGWSADTLRYLVAAMLLAGEIKLKVAGREVTVNGQQAIDAIKTNNTFKIIGISLRGGDRPTNDVLARAATRLTELTGDTVVPLEDDISKVTTKLFPQLQHQYGPLTEKLRSLNLPGVDRLQNLTHEINDVLLTDASDAPRRLGNEQSELFENLKWAAEVKLKLEQGLEQTLRDLRQHCSAIANLPNVALLATLKEELAEALSLIDERLQQADFYRFAADFSTSLTTIRARIRDTVIAMQDLLKTRIKEAEVDLKRVPEWIKLTQQEQTELLGSLERLIVEVTPDLLGLNSITNKLSELQDEVQGLKHSIERLGTKRIKEELEAEIPVPSAVNEPKPAIARSIKARTKITTMDDLDALITQLQQLRGELKYAHAFAVNLELQDENANANANANA
D1-35_011363807hypothetical proteinATGGCTTTCGATCAATCCACACGAGGCCGCCTGCAAAAGCTGGTTAACACTTGTCGTAGTCTGTTGTCCGAGGAGTTTAGCATCCAGCTTCAGCAGGCCTATGGCCTAGACCCCAAGACCGGTGATGTCACGCCCATGGCGCGGCTTATCCATCTGGACGATCGCCAGCGCCACACGGCTCAAGTGCTGCGCCAAACTCTGGCGCACTACCTGGGCGCGGATGCCGACGACACCGATCACCGCATCGCAGTGCTCGACCGTGTGGTGCGCGAGCAGGCTTTTACCGTGCTCAACCGTTTGGCAGCACTGCTAATGATGGAAGCGCGTGGACAACTAATTGAATCGGTCAGCAAAGGCTACCAATCGCGTGGCTACCAGCTCTACAGTAAGATCGCCGGTAACGCCCTGGGTGAAACCGGCCAGGCGTACCAGGTTTATCTGTTCAGCGTGTTTGATGAGCTGACACAAGAGCTGCCCGCCCTATTTGATCGCTATGCCGCCAATGGTTTGCTATTCCCGCGCGAGACCGCCCTACGGGCGGTGCTGGGCGAGCTCAACCACTTTGAAGTTGAGCCACTTTGGGCCGAAGACGAAACCATTGGTTGGATCTACCAATACTTCAATTCCAAAGAAGAGCGCAAGGCCATGCGCGATGCCAGTCAAGCACCACGCAATAGCCGCGAGCTGGCCGTTCGCAACCAGTTCTTCACGCCGCGCTATGTGGTGGAGTTTTTGGTGGACAACACCCTGGGCCGCCTATGGTTCAACGACACAGGTGGGCAAACCGAACTGCGCGACCGTTGCCAATACTTGCTGGTAAAACCTGATGAGCAACCGCAGGCTTCAAGTAAAGTGCGCGACCCGCGCACACTTAAGCTGCTGGATCCGGCTTGCGGCTCTATGCACTTTGGCCTGTATGCCTTCGATCTCTTTCTGGAGATTTACCGAGAAACCTGGGCTTGGGAGCAGCAAAACGGCCCGGGCTCGTTGGATGTTTCCACGCAACCCCAAGCCGCGCTCAAGCCACTCTGCCGTACCTACGAAGACGAAGCTGCTTTTACGCGCGATTTACCTCGTTTGATCATCGAGCACAACATCTACGGTGTGGACATTGATCCGCGTGCCGCCCAGATCGCTTCCTTGGCGCTATGGTTGAGGGCGCAGCGTGCCTGGCATGAAGCAGGTGTCAAAGCCAAAGACCGTCCACGTATAGGGCAGGGCCACGTAGTGGCGGCCGTTGCGCCGCCAGCAGAACGTGAATTGCGCCATCAGTTTGCAGCTAATCTGGATCAGCGTGACGCCGAACTGTTCGAGAAGACCCTGCAATTGCTCAAGGGCCTGCCAGAGCTGGGAGTGCTGCTCCAAGTTGAACACGAGTTGCCGAGCCTGATCCGTCAGGTTTATGTGGGCAAGGGCACTGGCCTGTTTGCCGAGCAGGAACAGGAGAGCTGGCTGAATGCCGAGGCTCGCTTGCGTGCGGCGCTGACCGAGTTTACCCAGGCTTCCCATTCAACTTATCAAGGGCGTCTATTTGCGCAGGATGCCCTTCAGGGATTACGGCTGATAGATCTATGTAGTGAGGTGTTCGATGTAGTGGTTATGAATCCCCCTTTTGGTGATGGTTCCACTGAATGGTCTGGCTACTTAAGCAACCGATATGGAAAACATGCAAATAATCTTTTTTGTACTTTCATTGCACGAGCGATTTCGCTGTCTAAACTAGGCTTTGTCGGCGCTATAACTGACAATACATGGCTGAAGAAGACTGATTACGAAGACCTTCGGGAGTTGGTACTGGATGGCGATCTGCAATTGGCTAATTTAGTTGATCTAGGTTGGGGAGTGCTTGATGATGCGAATGTTGCTGCTTGCGCATTCACATTAAGTGCGTTGAGCACCGACATCGTGAATACGCTCGACTTGCAAGAATCGCCATTAGATGAGAAAGGAGACTTGCTACGCACTGTAGTTAGTCAGTTCTCCAATCCTTTTTCTTTGAAAGAACATCCCTCTGCCCCGCAGATCAATTCAGTAGATAGAAGGTTTTTCGACAATTTCCCAGGAAAGGCTATCGCCCATGAAGCTCCGCCCGCATTTGTTTCGTTGTTCACTTTGTGGCCTGGTATAGATCCATCGTTCTGTAAGACCCGTCGTGGGTACACTCCAGGCGACACATTTAGGTTTTTTAGATTGTGGTGGGAGGTGAGCTCGGACTTGGGGGCACAAAAGTGGTGGACCTTGAACAACGGGGGGGCATATTCACCAATAATTACTGATGGGCTTTTGGTTGGTTATCGTGATGACGGCTGGTCTCAATACCGCCCGCTTTCTGGGTTCAGACTTGAATCTGAGCAATGGTTCGGAAAGCCGGGAATTGGTTGGGGCAAAAGAACCGACTATATGTATGCTTACCCTTTGCCGGCCGGAAGTATATTTTCCCATGAAGGACATTGCGCATTTCCTACTGATGATGTGTATCTTTGGCCTTTATTGGCTTATTTAAACTCATCACTAGGTCAGCAGCTGCTCAATCTATTTTGTGGGCAGCACAAATTGGCAGGCTACGTCTCCAACCTGCCTTGCCCGCCGCTTAATTCTGAAGAGTTGCGACTGGCTGGAGATGCGGCTAAAGAATGTTGGGAAGCAGCGTCGAAAATTTCTCGCACTTCTGAACAGTCAGAAATATATAATTCGCCATTTAGCAAAATAGCGAAGCCGTGGGAAGTAAATAAACTACTAAGCGGTTGGGTTGACATATATTTTAAAAAGATTGCTGAGATAGACCGGTTGGTTGATAAGTGTGCGGCGAAGGCTACGAATATTTCAAGTTTTTCCTCATCTGGAGATGACCGGCCAAGAGCGTTTGTTGAGAAATTTTGTACGTCATATGACTGGGCGCGAGAACTTGTTTCGTACCTTTTTGGCTGCGCTGTAGGACGTTGGTCAGTTGGCGAGTTTGATTCTGATCTTGAAAATTTATGCGCTGGAAATCCTTTCGAGAAGATTAACTACCATTTTTTAGATGTTGATGCTCGCAATGTGGTTCTTGTTGATGACCCGGGTGCGCCGCTTGATGCATCTGGGTTGATACGATCATATTTGAGAAAGATATGGAATGAAGATGCTGATGTCATCGAGTCCGCTATATTGGAGCATATTGGTGAGGAGAGTCTTCGTTCGTATTTGGTAAGACCAAATGGGTTCTTCGCGGATCATCGGGATAGGTATTCAAAAGGAAGGCGATCAGCCCCAGTCTATTGGCCGCTTTCTACTGCATCGGGTAGTTACACGTTGTGGGTCTATTATCCATCCTTGAGTAATCAAACGCTGTTCTCAGCGGTGAATGATTTCCTCGACGGCCCCAACGGGAAGCTGACGCAAGTCAGCCGTGAGTGCGCAGAGTTGCGCATTACGGGCAGCGGCCGTTCTCGTGATGAGGAAAAGCAGTACGAAACGTTGCAAACCTTCGAGCAAGAGTTGACCGATCTGCGCGACAACTTGCTCAAGATCGCGCCGACCTTCCAGCCCAACCACGACGACGGTGTGCAAATCACCGCCGCGCCGCTTTGGCCGCTGTTCCGCCACAAGCCCTGGCAAAAGGTGTTGAAAGACACCTGGGGCAAGCTGGAAAAAGGTGATTACGACTGGGCGCGCCTGGCCACGGCCTACTGGCCCGAACGAGTGCGCGAGAAGTGCAAGAACGACAAATCCCTCGCCATCGCGCATGGGCTTGAAGAGCTGTACGTGGAGCCAGAGGCCGCTCCCAAGAAAACGCGCGGAAAAAAGAAGGCTGGGGGTGAGGAATGAMAFDQSTRGRLQKLVNTCRSLLSEEFSIQLQQAYGLDPKTGDVTPMARLIHLDDRQRHTAQVLRQTLAHYLGADADDTDHRIAVLDRVVREQAFTVLNRLAALLMMEARGQLIESVSKGYQSRGYQLYSKIAGNALGETGQAYQVYLFSVFDELTQELPALFDRYAANGLLFPRETALRAVLGELNHFEVEPLWAEDETIGWIYQYFNSKEERKAMRDASQAPRNSRELAVRNQFFTPRYVVEFLVDNTLGRLWFNDTGGQTELRDRCQYLLVKPDEQPQASSKVRDPRTLKLLDPACGSMHFGLYAFDLFLEIYRETWAWEQQNGPGSLDVSTQPQAALKPLCRTYEDEAAFTRDLPRLIIEHNIYGVDIDPRAAQIASLALWLRAQRAWHEAGVKAKDRPRIGQGHVVAAVAPPAERELRHQFAANLDQRDAELFEKTLQLLKGLPELGVLLQVEHELPSLIRQVYVGKGTGLFAEQEQESWLNAEARLRAALTEFTQASHSTYQGRLFAQDALQGLRLIDLCSEVFDVVVMNPPFGDGSTEWSGYLSNRYGKHANNLFCTFIARAISLSKLGFVGAITDNTWLKKTDYEDLRELVLDGDLQLANLVDLGWGVLDDANVAACAFTLSALSTDIVNTLDLQESPLDEKGDLLRTVVSQFSNPFSLKEHPSAPQINSVDRRFFDNFPGKAIAHEAPPAFVSLFTLWPGIDPSFCKTRRGYTPGDTFRFFRLWWEVSSDLGAQKWWTLNNGGAYSPIITDGLLVGYRDDGWSQYRPLSGFRLESEQWFGKPGIGWGKRTDYMYAYPLPAGSIFSHEGHCAFPTDDVYLWPLLAYLNSSLGQQLLNLFCGQHKLAGYVSNLPCPPLNSEELRLAGDAAKECWEAASKISRTSEQSEIYNSPFSKIAKPWEVNKLLSGWVDIYFKKIAEIDRLVDKCAAKATNISSFSSSGDDRPRAFVEKFCTSYDWARELVSYLFGCAVGRWSVGEFDSDLENLCAGNPFEKINYHFLDVDARNVVLVDDPGAPLDASGLIRSYLRKIWNEDADVIESAILEHIGEESLRSYLVRPNGFFADHRDRYSKGRRSAPVYWPLSTASGSYTLWVYYPSLSNQTLFSAVNDFLDGPNGKLTQVSRECAELRITGSGRSRDEEKQYETLQTFEQELTDLRDNLLKIAPTFQPNHDDGVQITAAPLWPLFRHKPWQKVLKDTWGKLEKGDYDWARLATAYWPERVREKCKNDKSLAIAHGLEELYVEPEAAPKKTRGKKKAGGEENANANANANA
D1-35_011371809hypothetical proteinATGATCCAGGACGTCAAAGCATTCCCCGTCAGTTTTTACTTCAACCCGGATGGGGCGACCTCGTTCTTCATCCCAAAATACCAACGTGAGTACGTTTGGGGGTGGTCGAACTGGGATGCGCTGTTCAACGATTTGAATGAGTCACCTTCTGGCCACTTCTTGGGGTCGATCATTTGTGTCAACGGGCAGACGGACTCTATGGCAGGAAGCAGGCTGGAGTTGATCGATGGCCAGCAGCGCTTTACTACCATTAGCCTGCTGTTCTGTGCGCTGTACGAGAAGCTGAAGACGAACCCTGAGCCGGATGACGACTTCAACGTCGAGATCGTGAACCTGAAGAACCGCATCTTCATCAAGGCAAACAGCCAGTGGCGGTTTGAGCCCAGCGAGCAGATGCAGAACAAAACAGACTTTCAGCGGATTCTGAGTGAGCTTTTTCCAAAACTTGTCACTGCACCGAAAGGGCTGGCCAACTTTGGGAATCGCCGTATCGCGAAGGCCTACAAGTATTTCCGCGAACGCCTTATGCCATTGACCATTGCTCAGGCCATGGAACTGTTGGAAAAACTCAAGTCGGCGATCCTGGTCAAGATTGAGGTTCAAAGCCACTCAGACGCGTTTATGTTGTTCGAGTCGATCAACAACCGGGGCATTCCGCTATCGGCCATCGACATCATCAAGAACAATTTGCTGGCAGAACTCGACAAACGTCCTGACTACGGCATTGACCGAGCGTTTGATAAGTGGAAAGAGCTGATTTACTGGCTCGATGAGCCAGCGCTACAGGAGCGGTTCCTGCGGCATTTATACAATATATTCAAGTATTTGAGGCGCGTAGAAGTTAAAGGATGTCCAAGGGCGACGAGATCAAATCTGATCACCATTTATGACGCTATTTTGCGGCGTCATCCGGTGTGGTTTATCGGGCAGCTATTAGAAAAAGGAAAGACCTATTCCTTACTTCATTATCCGGATAGTGATGATTGTGTTTGGTCTGAAGATACAAAAAATCGACTGTTGGATTTACAGCACCTCGGTACAGCACCTGCCTATGCATTTTTACTGTGGGTGAGTCAGGTCGCTAGAAGTCGGAGTTGGGATGAAGGCCTGGCACTAGGCCAAATAGCCTCTTTGCTCACTAAATGGTTTTTTTGGCGGAATCTTACCGACACGCCGCCAACCCGTGAGCTAGACCCGATGTTTGTGCAATTGATAGGCGAGCTGCTGAAGCAGATTCGCAATGGCTCGATTAGCAAGCTCGAAGAGTTTGTGGCGCAGGCCAGTGATTGGTTGGTGGCTCGTGCGGCACCAGAGGATGTGTGTGATGCGCGCCTGAAGGGCGATGTTTACCTCGATAACTACGAGGCCACACGTTTCATGTTGTGCAAGCTGGAAGAAGTACACCAGACTCGCGAGAACACGCGCGATTTGTGGGCACACGACGCAAACGATCGCCCCGTTTTCACGGTTGAGCACATCTTGCCCAAGACAGAAAACCTTGGTCCAGGCTGGGTGGCCATGCTGGAGCTCAACAGCAAGGACACTGCTGATGCCATACGCCAGCGCTGCGCCCACCAACTCGGCAACTTAACCCTGAGTGGGTACAACTCCAAACTCGGCACGATGGAATTCATCAAGAAGCGAGATCGCCAGAACGACAAGGACGATTTCATCGGGTATCGCAATGGGCTTTATCTGAACGCTGATTTGGCCACTCGCACCGAATGGAATGAGGCCGCGATGACGGCACGAACAGACAAGATGCTCAAGGAGGTGAAGTCCATCCTGAGCCTAAGGAGCAGCTCATGAMIQDVKAFPVSFYFNPDGATSFFIPKYQREYVWGWSNWDALFNDLNESPSGHFLGSIICVNGQTDSMAGSRLELIDGQQRFTTISLLFCALYEKLKTNPEPDDDFNVEIVNLKNRIFIKANSQWRFEPSEQMQNKTDFQRILSELFPKLVTAPKGLANFGNRRIAKAYKYFRERLMPLTIAQAMELLEKLKSAILVKIEVQSHSDAFMLFESINNRGIPLSAIDIIKNNLLAELDKRPDYGIDRAFDKWKELIYWLDEPALQERFLRHLYNIFKYLRRVEVKGCPRATRSNLITIYDAILRRHPVWFIGQLLEKGKTYSLLHYPDSDDCVWSEDTKNRLLDLQHLGTAPAYAFLLWVSQVARSRSWDEGLALGQIASLLTKWFFWRNLTDTPPTRELDPMFVQLIGELLKQIRNGSISKLEEFVAQASDWLVARAAPEDVCDARLKGDVYLDNYEATRFMLCKLEEVHQTRENTRDLWAHDANDRPVFTVEHILPKTENLGPGWVAMLELNSKDTADAIRQRCAHQLGNLTLSGYNSKLGTMEFIKKRDRQNDKDDFIGYRNGLYLNADLATRTEWNEAAMTARTDKMLKEVKSILSLRSSSNANANANANA
D1-35_011382523hypothetical proteinATGAGCATTGCCGAATTCATTCAGAACAAAATTCTTCGTCCTCGATTGCAGAAGACAGGCAGTCTCGTGGTGTATGACCCTGCCGGGCATTACCAAGATGTTTGCAAAGGGTTGGCCGACGAAAAACTGCTGGTTGTGGATGCTTCAAAGAGCAGCATTGAGAGTCGGATAGCTGCGATGCAGGGCTTGCGTGATGTGATTGATCGGCAGCTCGCTGGAATACTGGTCTATGTGCCTGCAAAAGCGCCCGAGAGCGATGAAGAAAGGCAGGCTGATCCCTTCGCGCCCATTGCCGCAGCAGGGTCGATTTTTCCCGAAGGGGATGGTGATAGCTTTGAGAGCCTATGCCTGAAGGCGAAACCAGATCAGACCATGGCCATTCGGGCCATCTTTGAGCAGGATGCTTCGCCTAGTTTTGCGGTGGTGGATGCTATTGGCGGCGGCTTGGGCTGGCCCAACTTGCGTGCGCTACTGGCAGTCGAGTCCGCCCGAGACATTCTGTTCTCGCTGCTTGTGCCAAACGATGCGCAGCAAGTGGCATTGAAAGGCAGCGATAGCTGGGTGACAGAGGCGCGTGATTTGCTCCGCAACAGCATGGGCCTGTCATTGAAGACTAGGGGAAAGACATGGGACTCGGTTGCCAACGAACTTTGGCGTTTTGTTTTGTTCAGCGAGTTTGTTTTTGATCTGCCTGGTGCATTGCCTGCCAGTTTGAACGATGTACCGCGAGCCGAAACGCAGGCGAAGCCGTTGATTGAATACCTGTGCGATTTGCTGCGCAATGATCGCCGCACGCAGAGTGTCTATATCGACCGCGCAGAAGAAATTGAGAGGGATCTCAACCTGGTCAGCCAATTTGGTAGCTGGTCTGATTTGGGCGACCGGGACACCTTCCCGTTTGAGGAACGTACGTTTTTGAGTCGGGCGATCGAAGGCATCCTACGTGATGACATCGACCGGGTGAGGAGCATCTCGGAGCGCCATCAGCAATCGGTGTGGACGGGCAAAGGCGAGAGCCGTGCCCAGTGGGATTTGATTCGATCGGCTACTGAGTTGCTTCAAACCTGCGACGACATGGAGCGGCAGCTTTCGGACAACGCACGCAATCTTGATGTGCTGTTGACCTTTTATGTGAGCAGTCTGCGTGAAGCTGATCGCTTGCATCGCGAGTTCGAACAGGCAGTTAGCGATTACGACTGGCAAGACGCGCAAGGTGTAATGACGCCAGTCAAGCAGCAGGTTCGTAAGCAGTACGGCAAACTGGTCGAGAAGGTGCAGTTGATCTTCACTCGTCACGTGCAGCAAAGTGGCTGGCCGTTGGCTGGGCAGCTATCGAATACCGATGTGTTTGACCGCATTGTTGCGCCCAAGCTGCAAAAGAACGGCCACAAGGTGGCGTACTTCATGATTGATGCGCTTCGCTACGAATTGGGCGTGGCGCTGGAACGACAGTTGACGGAAGACGGACAAGTTGAGGTGCAGGCTGCCATGGCGCAGCTACCAAGCATCACGCCAGTAGGTATGGCCAGCTTGTTGCCCGGGGCTGGCCAGCAGCTTCGTATCAAGAATGACGAACAGAGTCTGGTGCCAATGCTGGGTGACCAGGTGGTGGAAACTGTTGCGCAGCGCATGGATGTGTTTCGGAGGAAATACGGCCAGCGCTTTGAAGAGGGGCGTCTGGAAGACTTTGTTCGCGGGCGTTTCGATTTCTCGCCTGAAACCGATTTGTTGGTGTTGCGCGCTGTAGAGATAGATAGCCACTTTGAGAACCATCCTGACACCGCCCCTGCAGAGATTACCAATGCACTCAAACGCATTCGAGTCGCAATTCATAAGCTGAAAGAGCGTGGCTTTCATGAGGTGGTGATCGCGACCGATCACGGCTTTTTCATGAACACCCACGCTGGTGCGGGCGATGTCTGCAGCAAGCCCGCTGGCAACTGGATTGGCATTCATGACCGGTGCGCGCTGGGTGATGGTGCTGGCGACAGCAATCACCTAGTGGTCTCAGCCGAGAAAATGGGCATTCGCGGTGACTTTGCCAAGTTCACTGCGCCACATTCGTTGGCGGCCTATCGCAGTGGTTTGCTCTATTATCACGGTGGCATTTCTTTGCAGGAATGCGTGGTGCCGGTGATAACGATGCAGTTGAAAACCTCCAATCAACCGACACTGCATAAAGCATCTGTGGCGATGAGCTACAAGAACGGCGCCAAGGCGATCACTACACGTATGCCCGTGATTGACCTTGCAGTTGAAACGGCAGACATATTCTCGACTGAAAACGAGTTCGAGATTTTGCTGGAGGCACACGACAGCAAGGGCGAAGTGGTGGGTGAAGCGAAGGCCGGAGGTGCAGTGAATCCTGCAACAGGAACATTGTCGTTGAAGCCAGGTGATAAGGTTCAAGTCACGATCAAGATGCAAATGGATTTCGAGGGGAAATTCAAGATCAAGGCTTTGCATCCAACGACTTATACGGTGTACTGCCAACTTGACCTGGCAACCGACTATGCGGTGTAAMSIAEFIQNKILRPRLQKTGSLVVYDPAGHYQDVCKGLADEKLLVVDASKSSIESRIAAMQGLRDVIDRQLAGILVYVPAKAPESDEERQADPFAPIAAAGSIFPEGDGDSFESLCLKAKPDQTMAIRAIFEQDASPSFAVVDAIGGGLGWPNLRALLAVESARDILFSLLVPNDAQQVALKGSDSWVTEARDLLRNSMGLSLKTRGKTWDSVANELWRFVLFSEFVFDLPGALPASLNDVPRAETQAKPLIEYLCDLLRNDRRTQSVYIDRAEEIERDLNLVSQFGSWSDLGDRDTFPFEERTFLSRAIEGILRDDIDRVRSISERHQQSVWTGKGESRAQWDLIRSATELLQTCDDMERQLSDNARNLDVLLTFYVSSLREADRLHREFEQAVSDYDWQDAQGVMTPVKQQVRKQYGKLVEKVQLIFTRHVQQSGWPLAGQLSNTDVFDRIVAPKLQKNGHKVAYFMIDALRYELGVALERQLTEDGQVEVQAAMAQLPSITPVGMASLLPGAGQQLRIKNDEQSLVPMLGDQVVETVAQRMDVFRRKYGQRFEEGRLEDFVRGRFDFSPETDLLVLRAVEIDSHFENHPDTAPAEITNALKRIRVAIHKLKERGFHEVVIATDHGFFMNTHAGAGDVCSKPAGNWIGIHDRCALGDGAGDSNHLVVSAEKMGIRGDFAKFTAPHSLAAYRSGLLYYHGGISLQECVVPVITMQLKTSNQPTLHKASVAMSYKNGAKAITTRMPVIDLAVETADIFSTENEFEILLEAHDSKGEVVGEAKAGGAVNPATGTLSLKPGDKVQVTIKMQMDFEGKFKIKALHPTTYTVYCQLDLATDYAVNANANANANA
D1-35_011392076hypothetical proteinATGAATGAGCTCGATCAAAAGCTTACCGCCACCTTTGATGGCAAGGTACTGCGCAAAGATTTACTCCATCGGATTAAGAAGGGAACCAACGTCCCTACCTTCGTGCTGGAGTTTTTGCTTGCGCGCTTTTGTGCGAGTGATGATCAGGCTGAAATGGATGCGGGCATGGAGGCGGTGCTCGCCAGCCTACAAGACAACTATGTAAAGCCTGACGAGGCCAATGCCGCGCAGTCAAAGGTGGCAACCAAAGGCAAGCATCGCTTTATCGACAAGGTCCATGTTCGGTATGTCGAGAAGGAAAAGCGCCACTGGGCCTCATTGGAGAACTTCAATTCACAGCGTATCGCTATTGGCGAGAAGTTCTATCGAGACAATGACCGCCTACTGGAGGGCGGAATTTGGGCTGAGGTGACGTTGGCACATAACGCGATCGAAGAAGACGACTACGCGTTTTATATTGAAGACCTGCGCCCCATCCAGATCAGCCGCTTTGATTTTGACCGCTACTGTGATGGTCGTACTCAGTTCACCCGTGACGAGTGGATTGCGGCGATTTTGCGCACCGTTGGCTTGGAGCCAACAAAGCTATCAAAGCGCGTGTGCATGCACTTTATTGCGCGCTTGGCTGCTCTCGTCGAACCCAATTACAACTACATTGAGCTTGGGCCACGCGGCACGGGGAAGTCGTATTTCTTCAGTGAATTTTCGCCCTACGCCACATTGATTTCAGGCGGACAGGCGACCAAATCGGCGCTGTTCTACAACAACGCACGCCGTAAGGTTGGTCTGGTTGGGTTTTGGGATACCGTGGCTTTCGACGAAGTAGGCGGCATCAAAGTCAAAGATCCGGACACCATTCAAATCATGAAGGATTTCATGGCGAATGGTCGCTTTTCGCGTGGCGCTGAAGTGATCGCTGATGCCAGCCTTAGCTTTGTTGGCAATTTCGATCTCTCCATCAGCCAAGTAGTTAACTCGGTTGAGCATGATCTTTTCCAACCATTGCCCGCTGAGTTTGACTTGGCGATCATGGATCGATTCGCAGCCTACATACCTGGCTGGGAAATGCCCAAGAACAGCAGTGAATTTCTAACCAGTAGCTACGGGTTCATTACTGACTACCTGGCGGAAGCATTCCACTACCAGTTCAAGCACACCAATCGGTACGAAGAAGTCAGCAAACGCATCCGACTTGGCAAGAGTGTTGAGGGCCGTGATGAAAAAGGCATCAAGAAGACCGTCTGTGCCTTCCTGAAGATTCTTCACCCTACCGGTTCTCCGACCGATGAGGAGTTCGAAGAATATGTAGCCTACGCAGTTGAGTGCCGTCGACGTGTGAAGGAACAGATGAATAAACGCAAACCCGATGATGAGTTTGCGCGCATCGATCTCTCATTCCTTAATGCGCTGGGGCAAGAAGTTGTTGTCTATTGTCCCGAATCGAAGGATGCTGCAGCTACGCAGCAACCGTTTAGACGGCAGCTCAACGACAAACTTTCACCTGAGCGTGACGTTGCAACAGAGGCTACGCAAGAGCCGCGGGTGCCCGAGCCTGCTATCAAAGTCGAAGCAACTCCCCCTGTCGTCACCCCTGTTGTTCCAGAAGAGTTGGTGGAGAAGCACTTCACGATTATGTACGGTGACGTCGGCCACAGCTACGAATCGATCATTGGCCCCTACCTGCGAGGAGCAAAGACGGTAGTCATTGAAGACCCTTACATTCGCCTTCAGCATCAGATCCAGAATTTCGTTCGCTTTTGTGAGTGCGTCTTAAAGGCCGGAACGGTGAAAAAGATCAACCTCATTACCGGTTACGACGACAACACGCAGCTGGCCGATATTGCAGAGAAGCTGGAAGAGTTGAAGCAGAGCTTGCTCGAGATGGATGTGGAGCTAGAGGTCAAACTCAACCCGAACTTGCACGATCGGGAAATCCGCTTGGACAACGGCTGGGTCATCAAAGTCGGGCGAGGCTTGGATTTTTACCAAAAGCCGGGTGGCTGGTTTGAGGTGGGTGCGAATGACTTGAGCTTGCGAAAATGCCTTGAAACCAAGGTGGATGTTTTTCGTGAGTAAMNELDQKLTATFDGKVLRKDLLHRIKKGTNVPTFVLEFLLARFCASDDQAEMDAGMEAVLASLQDNYVKPDEANAAQSKVATKGKHRFIDKVHVRYVEKEKRHWASLENFNSQRIAIGEKFYRDNDRLLEGGIWAEVTLAHNAIEEDDYAFYIEDLRPIQISRFDFDRYCDGRTQFTRDEWIAAILRTVGLEPTKLSKRVCMHFIARLAALVEPNYNYIELGPRGTGKSYFFSEFSPYATLISGGQATKSALFYNNARRKVGLVGFWDTVAFDEVGGIKVKDPDTIQIMKDFMANGRFSRGAEVIADASLSFVGNFDLSISQVVNSVEHDLFQPLPAEFDLAIMDRFAAYIPGWEMPKNSSEFLTSSYGFITDYLAEAFHYQFKHTNRYEEVSKRIRLGKSVEGRDEKGIKKTVCAFLKILHPTGSPTDEEFEEYVAYAVECRRRVKEQMNKRKPDDEFARIDLSFLNALGQEVVVYCPESKDAAATQQPFRRQLNDKLSPERDVATEATQEPRVPEPAIKVEATPPVVTPVVPEELVEKHFTIMYGDVGHSYESIIGPYLRGAKTVVIEDPYIRLQHQIQNFVRFCECVLKAGTVKKINLITGYDDNTQLADIAEKLEELKQSLLEMDVELEVKLNPNLHDREIRLDNGWVIKVGRGLDFYQKPGGWFEVGANDLSLRKCLETKVDVFREPGPT0014315_5155DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014315-lon-K01338NANA
D1-35_01140372hypothetical proteinATGATGGGGATGCTCTTTTTTCGTCAGTCGGGCAAAATCTACGCCTCATTGAGCTTGCATCCGAAACCTATGAAACTGCTTAACACCTACGACGACCGCGACGAAGCTGAAGAGGCTGCGGAAAGGCTAACAGGCCAGAAGCGTCTGGCCAGCGAACGCGACGCCAGCGTGGTCATCTACAACCTGTTCGGTATTCCCAACTGGGGAAATTTCCATCGGCTAGGAATGTACAATCTGAGCGTACTGAAAAACCTACTTGACTGCCGTGCTACATGGAATGAAACCAACAGAACCCAACATGGCGAGATCATCACGACGTTAAAAACAGTGTCTAAAAACTACGGAATAGAAGTACCTGAACATTGGCTATGAMMGMLFFRQSGKIYASLSLHPKPMKLLNTYDDRDEAEEAAERLTGQKRLASERDASVVIYNLFGIPNWGNFHRLGMYNLSVLKNLLDCRATWNETNRTQHGEIITTLKTVSKNYGIEVPEHWLNANANANANA
D1-35_01141504hypothetical proteinATGCAAGGTGCGGAGGTAGGTCACTGGAAGGAGAACACTCCGTTCCAACTCTCTATTTGGTATCGCATAGGCAGTAGCACCGATGGCAAGCCAGTTGCCTACCGCACCGACACGACTCGGCAAGTATCGTACGTTGAAGCTGGCAGTCTCTTGATGAAGTTCTATCTGGATTCAGGCGTCCCCGACAATGAACTCGTTTCGACCTTCGATAAGCGCTACATCGGTGGCTGGGTCGCGTGGAATCAGGAGAAAAACGGAACTGCATCAACAACGACGAAGACCCCAGCCGCTCCTCAGTCCGAATGGCCAGAAGTCAAAACCGCCTGGTGCAACCCGCGAGCTGATGACGACTGCTATATCAACAACAAGAAGGTACCAGTCGCTGAGCTAGGTAAATGGTTACCCGATATCAGCGAATCAAATGCCGATCAGCTAGGCGGTCACTGTGAAACCATCCTCTGCTTCGACAAAGATGACCAGCCGATGGGTTATCTGCTGCAATAAMQGAEVGHWKENTPFQLSIWYRIGSSTDGKPVAYRTDTTRQVSYVEAGSLLMKFYLDSGVPDNELVSTFDKRYIGGWVAWNQEKNGTASTTTKTPAAPQSEWPEVKTAWCNPRADDDCYINNKKVPVAELGKWLPDISESNADQLGGHCETILCFDKDDQPMGYLLQNANANANANA
D1-35_01142354hypothetical proteinATGATCGTTGTAACCGGCCTAAACGAAGCACAGATTGAAGGTCTCGTGAAAAGCAAAGCGACCTTCGAGATCCATGGTCTCAGGGGAAATTTCATGGCAGGCATCAAACTGGTCGAAACCAAGATTGAAAGCCAGGGGCTGAAGTGTCGAGTCAAAAGCGATGTGAAAAGTGCAGTGGTACAAGGCGGCGCGCTGGGTGCCGTATTCAGCGTCCTGACAACACCCGCCACATTGACCATCGCGACATTAACGGCCGCAGCAGGAGTAGGTCATACGCTCGTTACCTACAACCCCGATTACGAAATCATCAAGGACTACGTCAACAAGCAGCTCAAGGTTGTTTACAAGCAATAGMIVVTGLNEAQIEGLVKSKATFEIHGLRGNFMAGIKLVETKIESQGLKCRVKSDVKSAVVQGGALGAVFSVLTTPATLTIATLTAAAGVGHTLVTYNPDYEIIKDYVNKQLKVVYKQNANANANANA
D1-35_01143348hypothetical proteinATGTCAAAAACCAAATCGAAGCAGCTAGCGGAGTTTGTTGGGCAAGCCATTGCGCGCCAGCGCATTCGCAGCAAGTTGAGTCAGGAGCAGGTTGCGGAAAAGCTCGGGATTGGAAGCGAGGCCGTATCCCGTATTGAGCGTGGCGTTGTGATGCCTAACATCGAACGCTTAATTGAGCTGGCGACGGTCTTCGGCTGCGAGACTGCTGACCTGCTAACTGAGGGCAGCACGCGTCAGGAGGATCAGGCACGTCGACTGCAGGGGCTGTTATCCGTGCTGGACTCAGGTGACCGTACGCTGGTGTTGGAGTTTGTGGAGAGTTTGGTGGCGCGCCTCAGCCGGGGTTAAMSKTKSKQLAEFVGQAIARQRIRSKLSQEQVAEKLGIGSEAVSRIERGVVMPNIERLIELATVFGCETADLLTEGSTRQEDQARRLQGLLSVLDSGDRTLVLEFVESLVARLSRGNANANANANA
D1-35_01144306hypothetical proteinATGAACAGACAGTGTTTGATCTGCGACTCCAGCGCCGTGCTGACACGTGACGCCGCCAAAGGGCTGACCTTGCTGATCGGGTTGTTTAATGGCGCAATCGAGGGTGCTCAACGTCCGCATGAAAGGAGCGGCCAGTTCGCTCTTCTCAGCGGGCTGGCCGCAGTTGTGTCTGCTTATCCAGCGGCCAGAAAAGAGGCAGATGAGGTTGTGCGGTTCCACTTCGCCGGCTTTGACTCTCTCTGCCTACGCTGTGGTGCTTTGTTCAACGAGGCAGCCGAAATCAAGGAGCGGCTTAACCCCGGCTGAMNRQCLICDSSAVLTRDAAKGLTLLIGLFNGAIEGAQRPHERSGQFALLSGLAAVVSAYPAARKEADEVVRFHFAGFDSLCLRCGALFNEAAEIKERLNPGNANANANANA
D1-35_01145210hypothetical proteinATGAAGCTACTACGCATGTTTGCGGCTGTACTCATGCTCACCGGCATTCTTGCGGGCTGCTTGGCCACTCTATTGTTGGTGCTTTTGATGGTGCGGTTCCCACCACTGCTGATCGCCGTACTGCTGGCGTGTTGGATGTTCTGCCGTCTCTTAAAGGCATTGGCACCCAAGCCAGCAGCGGCAGATGCCACCACGGCAGCACCGAAATAAMKLLRMFAAVLMLTGILAGCLATLLLVLLMVRFPPLLIAVLLACWMFCRLLKALAPKPAAADATTAAPKNANANANANA
D1-35_01146498hypothetical proteinATGCGTCTACACAAGCTGAAGGCCAGTGAATCTACTGGTACCTACCAAATCGAGTCACCGATCAGTGAAGCCGACATTCTGCTAATGGCCCGGCAATTGGCAAATCTACGCCTGCGCCGAGGACGGGCATTAACTTCGCCGAAGGACGTGTTCAGCCACCTGCAAGCATTGTTGGGCGATTACGAACATGAGGTATTCGCCTTGCTTCTACTCGATAACCGGCACCGAGTAATCGTCTTTCACGAACTGTTCCGGGGCACCCTGGACAGTGCAAACGTCTATCCCCGCGAAGTCGTCAAGACCGCCCTAGAGCACAACGCTGCAGCGACTGTATTAGTACACAACCACCCTTCCGGTGATCCAGAACCTAGCCAAGCAGACCTCACCCTGACCCACAAACTACAGGAGGCCTTGAACCTGGTTGGGGTGCGAACACTGGACCATATCGTGGTAGGTCACGAGGGCTGCGTATCGCTGGCGGAGCAGGGCTATCTATAAMRLHKLKASESTGTYQIESPISEADILLMARQLANLRLRRGRALTSPKDVFSHLQALLGDYEHEVFALLLLDNRHRVIVFHELFRGTLDSANVYPREVVKTALEHNAAATVLVHNHPSGDPEPSQADLTLTHKLQEALNLVGVRTLDHIVVGHEGCVSLAEQGYLNANANANANA
D1-35_01147345hypothetical proteinGTGCGAGTGGTGTGCAACAACACCCTGACCATCGCCCTGGACGGCACCAGCCGCGCGATCAAGGTGCCGCACAACACCCGCTTCGACCCGAAAGCAGTGAAGAAGCAGCTCGGCATCGCCGTCTCGCAGTGGGATGAGTTTATGTACCGCATGCGGGACTTGTCTGAGCGCAAGGTGCAGTGGCATGAGGCGCTGGGGTTCTTCATGACCGTGTTGTGTGAGACGAGTCCAACCGGCGCACTGCCGGAGGTACTGCCAAACGAACGCGCTCTGCGCAAGGTTCAGGAGCTGTACGAAGGTCGTGGTCGGGGCAGTCAGCTCGACTCGGCACGCGGCACCGCCTGAMRVVCNNTLTIALDGTSRAIKVPHNTRFDPKAVKKQLGIAVSQWDEFMYRMRDLSERKVQWHEALGFFMTVLCETSPTGALPEVLPNERALRKVQELYEGRGRGSQLDSARGTANANANANANA
D1-35_01148243hypothetical proteinATGGGCCAGGACGTGGCGATCGAGCGACTCACCCAACTGGGCGCCGAGGGCACAGCCACCGACACCGCCGGCCAGCCCACCGAGGATGGCACCCGATACCGAACCGAGTGTGATACCGACAGGGCCGGCGATAGCGCCAATAAGCGCGCCCGCTTGGCCTCCAGCCAAAGCAGTACTGACGCCGCGCGCGGCACCACCCAAGGTGCCGATGGCCGCGCCGACTTTCATGGCGTGATGGAATGAMGQDVAIERLTQLGAEGTATDTAGQPTEDGTRYRTECDTDRAGDSANKRARLASSQSSTDAARGTTQGADGRADFHGVMENANANANANA
D1-35_01149120hypothetical proteinATGAAAAATCTGTTTGCCGTCATCGGTTTTTGTGTGGTGCTGAAGAAAAGCTATGAACTGTATTGCGAGTACAGCGAACTGAAGCGTGACAAGGCAGGGCGCCAGTCTTCTCCCGGCTGAMKNLFAVIGFCVVLKKSYELYCEYSELKRDKAGRQSSPGNANANANANA
D1-35_011501023hypothetical proteinATGTCTCAAGCGAAGGATACGCTGCTCAGGCTATTCGCATTACTGCGCCTGATTCCCACCGAGCCGCAGCGTATTGCAACCCCGACCCTGCTCGAAAAGCTTCGCGATAGAGGTTTTTCCGTGACACTTCGCTCGGTTCAGCGTGATTTGAATCGGTTATCGATACCTTTTTCGTTGCAATGCGATGATAGCGAGACCCCTTTCCGCTGGAGTTTCACTCGGGATGCTCCATTGAAGCTGGAAGATATGGATGCTTCCACAGCACTGGCTTTGTATCTGTCGGAAAGCCATCTGGTTACCTTGCTGCCGCAGACGGTTCTGGATCAGCTTGGTCCGCAATTTCGACGTGCACGTAACTTCCTGGGCGATCTCGGTCATAACGGATTGGCCGATTGGGCGCGACGAGTGCGTGCGATTCCTAATGGGAAAACCTTGCTGCCAGCTGCGATCAACCCTGAAGTCTGGGGGCAAGTGTCTGCCGTTTTGCTGGAGCGCAGGCAATTGCAAGTGACCTATCGGAGTCGGAGCAAGGGCGAACTCAAACAGTTTCGCCTGCATCCTGCGGGCCTGGTATCGCGGCATGCCATCAGCTACTTGCTGGCCTCCGTGGATGGCTATGGTGATTTGCGCCAGTTTGCTCTGCATCGCATTCAGCACGTTCGCGTACTTGATGAGCCGTCCGTGCTGCACGCCAACTTTGATGTGAACGATTACATTGCGAGCGGCATATTCAGTCAACGCCAAACCAACACTCACGTGGAACTGATCGCAGATGTTCATCCGCAGATTGCCGTCCTGCTCGGCGAAACCCCGCTGAGTCATGAGCAGACCTTGAGCGATATTCCCTCGAATACCTGGAAGCGTCTGCACGCCCAAGTTCCGCTGGATCGTGAAACGCTGTGGTGGATCTTTGGCCTGAACGACAACATCCGCGTGCATGGGCCGCAGGTTTGGGTCGATGAGATCAGCGCCAGATTGAACAGTATGCAAAACCTCTACGCGTCGACTGATTGCGCGACATGAMSQAKDTLLRLFALLRLIPTEPQRIATPTLLEKLRDRGFSVTLRSVQRDLNRLSIPFSLQCDDSETPFRWSFTRDAPLKLEDMDASTALALYLSESHLVTLLPQTVLDQLGPQFRRARNFLGDLGHNGLADWARRVRAIPNGKTLLPAAINPEVWGQVSAVLLERRQLQVTYRSRSKGELKQFRLHPAGLVSRHAISYLLASVDGYGDLRQFALHRIQHVRVLDEPSVLHANFDVNDYIASGIFSQRQTNTHVELIADVHPQIAVLLGETPLSHEQTLSDIPSNTWKRLHAQVPLDRETLWWIFGLNDNIRVHGPQVWVDEISARLNSMQNLYASTDCATNANANANANA
D1-35_011511011hypothetical proteinATGACGGGCTCCACCGCTACGCCTGCAAAACCTAGAAAGGCCAGGAGGGCGGAGCCTTTTGTTACCACCACGTTCGATGTGTTGGTGTTGGCCACAATGAGCGCAGGCAAAACGTCGTTCATCAACGCGCTGATTGGCCAGGAACTGCTGTATACCGCCAATGAAGCCACCACTGCCTGCGTGACCCGTGTCGAGCATCGCCAGGGCGCCCGTCGATTCAGTGGCGCCTGTTATTGCTACAACGACACCGAGTTGGCCTCCCTGCATTCCCCGTCGGTAGCCTTGCTAAAGGACTGGAACGCCAATGCCGAGGTCAAGCGCATCAGCTTGGCTGGAACCTTCAAAGTGCAGCCGCGCCCAGCGCCCGGGCTGGTATTTCACGACACGCCAGGGCCTAACAACAGCCAGGATGAAAACCACGCCAGACTGATGCTGGAGGCTATCCGCACGGTGTCGTTCAATGCGCTTTGCTATGTGCTCAACGCCAGCCAACTGGGGACTTGTGACGACCGGTTGCTGCTCGAACAGCTGCGCGAAGAACTCGCCGCCAAGCCTGCCCAGCCGATTTATTTCATCCTCAACAAAGTGGATTTGCTCGATCCCGAGAAGGGCGAAAGCATTCAAGGCTATGTGCACAACGCCCAGCGCTATTTGCGCGATATCGGTTTTGAGCAGCCGATCATCATTCCGACAATGGCCAGTGCAGCGCTGTACGCGCGCAAGGCCCTGAGTGCCGAAACACTGACGCGCGCGCAACGCTCCAAATTGCGTCAGGTACTCGATGATCTGGAAGTGAACAAGCGCGATTTGCTCAATGCCACCGTCGTGCCAGAAGTGGTCAAGCGCCGAGTCTTCACATCACTCAACAACCTGGAACGCAGACAGCGAACCAAGGCACTCGATACCCGTGCCTACGATAAAAACCAATTGCAACAGTTGGTCACAATCAGTGGGCTCAAAACCGTTGAAGCCCTTATCCATCATCAACGCCGATTAGATGAGCAACCATGAMTGSTATPAKPRKARRAEPFVTTTFDVLVLATMSAGKTSFINALIGQELLYTANEATTACVTRVEHRQGARRFSGACYCYNDTELASLHSPSVALLKDWNANAEVKRISLAGTFKVQPRPAPGLVFHDTPGPNNSQDENHARLMLEAIRTVSFNALCYVLNASQLGTCDDRLLLEQLREELAAKPAQPIYFILNKVDLLDPEKGESIQGYVHNAQRYLRDIGFEQPIIIPTMASAALYARKALSAETLTRAQRSKLRQVLDDLEVNKRDLLNATVVPEVVKRRVFTSLNNLERRQRTKALDTRAYDKNQLQQLVTISGLKTVEALIHHQRRLDEQPNANANANANA
D1-35_011522256era_1GTPase EraATGAATACTATTGAAATCATCCATAACCCATTCATCGTCGAGACTCAGTTCCTGATCAGTGGCCAACCGCCGGCCGAAGGCTGCAAGCTGTCGAGCTATAAAGAATCGCGGCTGCAAGTGTGGATCGAGAAGCTGTTTGATGAGTTGAGTCAGTTGTTCAATGGTGACAATAACTTTGATGTCACTTTCAGAGGGGTCGAGTCGGACTACCTTGACGTGGTTGAGGCGGCAAAAGTCGCGACGGGCAAGGGCATGCAGGTCACTCTGCAGTTTATCGAGGCCGACCCAGCGGAGGAGCGGCTGACCCGCATTCGTGAGTTGATGGAAGAGGCCAAGCTTCATCCTGAATTTGAGCATTTCATTCGTGACAATGCCGATGTCAGCCAGTCCTTTGAAGAAGCGTTCAATAAGGATTTCGACGTGTATGTGGTGGCGACCATGTCCTCGGGCAAGTCGACACTGATTAACGCCATGCTTGGCCAGGACCTGCTGCCCGCGGCCAACGAAGCCACGACCGCGACCATTGCCCGCATCACCGACAACGCATCGATGGGCCAGCGCTTCGCCGCCCAACGCGTAACCAATGATCACCGTGTTGCGGAAAACAGCGATGACGTGAACCTGGAAGTGCTGCAGGCATGGAACAGCCTGCCGGACACGATGCGCATCGATATCGAGGGCAAAATTCACGCAATCCAAGATCGTGACAGCGTACGCCTGGTATTGACCGACACACCAGGGCCGAACAACAGCCAGGATGAAAAACACCAGCTCAAAACCATGAGTTTCATTCAGGACTCGCAGCGCAACCCGCTGATTCTGTATGTGCTTAATGCCAGCCAGTTGGGTACCAACGACGACAAAAACCTGTTGGGACTGGTCGCCGAAACCATGCGCAAGGGCGGCAAGCAGAGCAAGGATCGGTTCATTTTTGTCATCAACAAGATGGATGTATTCGACCCTGAGAAAGGCGAGGACCTGCCATCCGTGCTGGCCCGCGTCAAAAACTACCTGGTTGAAAACGGTATTTTCAATCCGCTGATCTACCCGGTGTCGGCCAACCTGACGCGGCTGCTGCGCAAGCCCCAGCACTTGCATTCACGCAAGGAACGCGGTGAGTTGAACTCCATGATGGACATGTTCGGTGAAGAGCCGAGCATGAATTTGCTGCAATACATGCCGATTACCGAGCGGGTCAAACGTAGTTTGCAAGAGAAGAAACTCCCCGAGATCGTGCTGAGCAGTGGCTTGCCGGCGGTAGAAGCGATGATTGACGAGTACATCGACAAGTACAACTTCCCGCATCGGGTCAAGCGTGCCTATGACGCGATGACCAAAGCCATTGCTGTTGGTCTCAACGAAACGCAACTGATCGAGCAATTGGATCAGGACGAGAAGATGCTGGCGCATATAAATGAAGAGATCCAGGCACTGGAGTGTCGGCAGGAGAAAGGGTTCGATACGCAGGCTTACAAGGACAAGATAAAGCGTGAAGGTAAGGTGTTGCCGCGGGTTACTGAGGATGCTCTCGCGGAGCTGGAGACTTCTGCTGGCAAGTATCTGAGGTCGGTCAGTGAGCGTTTCACCGAAACGGTCGAACCACACATCGCCGAAATGCGAGTCAAGGAAGTTGAAGAGGAACTCCAGTTCCAGTACCGCAAACTCATCAATGCATATGAAGCGGTGTTCATCACAAGTCAGCGAGTTATTAGTGAAGACCTTCAGGCTGAATATCAGCGCTACATCGTGGCTCTTTTCAACGACTGCCAACATTTGAAGTTGCCTATTCTGGAAAGCCTCCAAAAAGCTACGGCTGATATTTCCTTCAATCTTACTATCAAGAGTGATGAGGTGCAGACCAAGCGAGTGGTGATTGACCGTTACGAAGTCAGTGACAGCACTTGGTACAACCCCTTCTCGTGGGGGTCCACTCGCACGGTTTACAAATATGGCGAAGAGAAAACCGTCGATCTTAGAGCACTCTGGAAGGAGCGTAGCACGCGTGTTGACACCGAGTTTGCTCGCTTGGTAGTGGCCGCGCGTAGCGAAATCGACAATGGCAAGACCGTCCTGATTGATCAGTTCGTGGCGTTTATGGGGCGCGAATTCGACACCAAGTTCAATGAGTTGATCGACTCGCTCAAAGAAAAAATGACGGACCGCGACCTGCGTGAGCGAGCCCTTGAAGAGGCTCGTGAGTTGCAAGCGTGGATCAATCAATTCAAAGAAAAACTCGACGAAACCCTCGCCGTTTGAMNTIEIIHNPFIVETQFLISGQPPAEGCKLSSYKESRLQVWIEKLFDELSQLFNGDNNFDVTFRGVESDYLDVVEAAKVATGKGMQVTLQFIEADPAEERLTRIRELMEEAKLHPEFEHFIRDNADVSQSFEEAFNKDFDVYVVATMSSGKSTLINAMLGQDLLPAANEATTATIARITDNASMGQRFAAQRVTNDHRVAENSDDVNLEVLQAWNSLPDTMRIDIEGKIHAIQDRDSVRLVLTDTPGPNNSQDEKHQLKTMSFIQDSQRNPLILYVLNASQLGTNDDKNLLGLVAETMRKGGKQSKDRFIFVINKMDVFDPEKGEDLPSVLARVKNYLVENGIFNPLIYPVSANLTRLLRKPQHLHSRKERGELNSMMDMFGEEPSMNLLQYMPITERVKRSLQEKKLPEIVLSSGLPAVEAMIDEYIDKYNFPHRVKRAYDAMTKAIAVGLNETQLIEQLDQDEKMLAHINEEIQALECRQEKGFDTQAYKDKIKREGKVLPRVTEDALAELETSAGKYLRSVSERFTETVEPHIAEMRVKEVEEELQFQYRKLINAYEAVFITSQRVISEDLQAEYQRYIVALFNDCQHLKLPILESLQKATADISFNLTIKSDEVQTKRVVIDRYEVSDSTWYNPFSWGSTRTVYKYGEEKTVDLRALWKERSTRVDTEFARLVVAARSEIDNGKTVLIDQFVAFMGREFDTKFNELIDSLKEKMTDRDLRERALEEARELQAWINQFKEKLDETLAVNANANANANA
D1-35_01153879hypothetical proteinATGACGACTGACGCCATAATGATTGAAAAAGCTCGTAAGCAGTTTCTGACGGCGCTCGATGACACACAGTGCGACACCGATGTGTTGCAGAAGATAATGGACGCCGTGCAACAGACCCCAGGGGTGATGGAGGCTCATAAGGTCGATGCTGTCACTCGCGCCATTGATGTGGACCCTGTGAGTTGGAATCCGGACTATTTCAGTCGGCAAAAGGTTTTCGCTGCCCGCAACTTTTCCAAGGAGCGGCTGGAGCATTTGATCCAGGTCCGCGACGTGTTTCGTCAACGAAACGAAAAGGGATTCACACCAACTGTTGCCGCTTCACATGTGAGAAAAGATCCGATGAGCAGTGCGTCCTCCGATTACCAACCTTCCAGCAACCTCAAGAAGTTTGTCGAAGAAGGTGACTTGTTGACGACCCGCACCGCACTGCGCCTGGAGCTCAACGACCGTCGTCTGGATGGCGCCGAATTGCGCGCTGCGCTGGGGTGGATCAAAGATAGTGTTTCCGGGATATTCGAGGTTTTTTCAGAAGGCGCATTTGCGCGTGAGCTTGTGGCAGATCAGAACAAATGGACCGAAGATTATTACGATCTACAGGTCACTTACCTGAAAACCAACTTCTCGGAAAAGCGCTTTTTGCACCTGATCGACGTTCGCGAGCATTTGCGCAACAGCGCTGTTGAGGGCTTTGCTTCGACCAAGACAAAAGCCTCCACCGCACATTCAGCCTCCCCTGTAGCTCAAGCATCACGCCCCCACTCCCGCCAGCCCATTTACGATGGTGCATCAGAGCGTAATCCAGCCTTCAAGGCCGCACTGCTGATCGGCGGCGCCATTGCGGCCGTGGTGGTGTTCCTCATTGCACTGGTACGGTGAMTTDAIMIEKARKQFLTALDDTQCDTDVLQKIMDAVQQTPGVMEAHKVDAVTRAIDVDPVSWNPDYFSRQKVFAARNFSKERLEHLIQVRDVFRQRNEKGFTPTVAASHVRKDPMSSASSDYQPSSNLKKFVEEGDLLTTRTALRLELNDRRLDGAELRAALGWIKDSVSGIFEVFSEGAFARELVADQNKWTEDYYDLQVTYLKTNFSEKRFLHLIDVREHLRNSAVEGFASTKTKASTAHSASPVAQASRPHSRQPIYDGASERNPAFKAALLIGGAIAAVVVFLIALVRNANANANANA
D1-35_011543270hypothetical proteinATGACCTCTCCAATACTGACCCGCACTGCCGTGCAGGATATCCGTGAAAACGCCGGCCTGACCCTTGAAGCTGGGCGTGCGCTGATCAATCGCAGCTACCTGTCGGAGCTGGAGCGGTATCCGGTCCATGCCTTTGCCGAGAAGGGGCTGCGGTTCAATGCTGCCAGTGACGTGCGGATTTTTCGCATTGAGCGCATCGTCCAGGACAACAAACAATCTGTACTCGAGAGCACCACGGCCGCTTACACCGCACTGGGTGCTGCGGGTTACTCGGTTTTTCTGATATTGCGCTCCAACGGTATCGAAACCGACCTCTATATCGGTACCCGGGGTGAGCCCGGTAAAACCCTCGGGCACAGTTCTGGCGAGCTGCTGCGGGAGACCTTCAAGGGGCACTTCTCGGGCAGTTCGTTAGTGCCGCTGCCGCAACAGCATGCAGATGCCTTGCTGGGCGCTTTGCAGGCCGAGAAGGCCAACCCTTCGGCAAGCATCACGGCGGTCACGGGTGTGCCTGCGTTGTCGACAGAGAACCGCGAGCACTTCATGCAAGGGCTCGAGCGTTTTATCGATGCGGCTGAGCGCCGGGTGTACCACGCGATCATTCTTGCCGAGCCGGTTTCGTCGCAGAACCTTGACTTGATCCGCGCCGGATACGAGCAGGTCGCCACGCAACTTTCGCCATTGCTCAAACAGCAATTGTCGTTCGGCGAACAAGACAGTGATTCCGTTGGGCTCAGCATCAGCCAGGGCTTGAGTGACTCCCTTGGACACAGCCTTGGGCTGACCGAAACCAAGGGCACGTCGACGACGCTCGGCACATCAATCACCGACACAACCGGTACCAGCGAGTCGTTCAGTGCACAGACCCTGACATCCAAAACGGTCGCTATCGGTGCCAATGTGCTGGGTATGGTAGGTGGCGCGACATTGGGGCCATTCGGCGCGATGCTCGGTAGCCAGATCGGTTCGGCCGCTGCTGCGCTGCTCAACGAACAACGCACCACCGGCACCAGCCAGTCGACGTCCACCGGTCGCAATGAAAGCCACGGCACCTCCTTCAGTGAGGCCGCGTCGAAGACTACGTCGACCACACATACCACCAGCACCACCGATACTCATTCGTTGAACAAAACCCTGGGCTCTAATCGGCAGATTTCGATTGAGACCGTGGATAAGACCATCGAGCAGTTGCTCAGCAAAATCGATCACCACCTCGAACGTATCGACGAAGCCAAGACATACGGCGGCTGGAACTCGGCGGCGTATTTCATCGGTGACAGCACTGCGTCGTCCGAATCGTTGGCGAGTATCTTTCTTGGGCTGGTACGCGGCAGCAAGTCCAGTCATGAAGACTTCGCCCTGACCACCTGGAAATCCGCCAACAAGTCAGCCGTGCTGGACTGGCTCAGCGCGTTCAGCCATCCACAATTGAAACCGGCATTTTCCAAAAAGATCCCGATCAGTTACCTCACTCCGGCCACGCTGGTGTCGGGTAAGGAGATGGCGATCCAGTTGAGCCTGCCCCGACGCTCCACTTCCACGGTGGCCGTGCTGGAAACCCAGGCGTTCGGTCGTAAGGTGCAACGCCTGGATGGTCACAGCAGTGAGCCAGGCAAGGGCAAGACACTGACCTTGGGCAACATCCGCCACTTGTGGGAAAACCTGCCGCAAAAGATCGAGTTGAGTCTCGATCAGTTGGCCAGCCATGTGTTTGTCAGTGGTTCGACCGGTGCCGGTAAAAGCAACACGCTGTATGAAATGCTCAGCCAAATCAGCGCCGTCGGCGTGCCATTCCTGGTGATTGAACCGGCCAAGGGCGAGTACAAACACGTCTTCGGTCATCGCGATGACGTCAATGTATTTGGTACGCATCCGGCCCACAGTGAATTGTTGCGCATCAACCCGTTCCGCTTCCCGTTGGCCATTCATGTGCTGGAGCACGTTGATCGGCTCGTGGAAATCTTCAACGTCTGCTGGCCGATGTATGCCGCAATGCCTGCCGTACTCAAAGAGGCGATCCTGCAGGCGTATCAGCAATGTGGTTGGGACTTGGACGCGTCGACCAACCGTTACAGCGATGAATTATTTCCGACGTTCAGTGATCTGCTCAGTACCCTGCAAAGCGTGATCGAGGCGTCCGCGTACTCCCAGGAGCTCAAAGGTAACTACATCGGTTCGCTGTCCACGCGGATCAAATCCCTGACCAATGGTTTGAATGGGCAGATTTTTACCGCTAACGAAATCGACAGCGCCGTACTGTTTGATCAGAGCGCAATCGTTGACCTGAGCCGCATCGGCTCGTCCGAGACCAAAGCCCTGATCATGGGGATCCTGGTGATGCGCCTGAGTGAGCACCGAATGGCCGGTGGTGGCATGAACCAGCCGCTGCGCCACGTCACGGTCCTTGAAGAAGCGCATAACATCCTCAAGCGCAGCCCGTCCGAAGGCGGTGCTGAAGGGGCAAATGTGGTCGGCAAGTCAGTGGAGATGCTAACCAACGCTATCGCCGAAATGCGCACCTACGGTGAAGGTTTCATCATTGCCGACCAGTCGCCCCATGCGGTTGATATCGCCGCGATTCGCAACACCAACACCAAAATCATCATGCGTCTGCCGGATGAAATGGACCGTCGTTTAATCGGTAAGTCGGTTGCGTTGCGTGATGATCAGCTTGAAGAGATCGCCAAGTTACCCAAAGGCGTCGCCATCGTTTATCAAAATGACTGGCTGGAGCCGGTGCTGTGTCAGGTGAAGAAATTCGCCGGGCACGAAACCCCTTATGTGTATACCGCCAATGACAATCGCGCCGTGCGTAGCCAGGATTTCAACCTGCAGGTACTCAACCTGCTGCTGAGCAACCGTATCCGCACGCCAGTCGCCTTGGATTTAGCGTTGCTGGAAAACGGCTTGTGTGAATTGCCGTTGCTGGCTCGCAGCAAAATCGCGCTGTTCGAGGCGCTCAATGCTCACAAAGAAGAGAAACCGTCGGCGCTGTGCAAGCCCGAGGCATTTGCCTACGTCGCACAATTGGTGGTCGATGTGCTCGGTTGCCGGCAGCAGGTCCAGCAGATCATTCAAATGGCGACCGACTACGGGCATCTAAGCAATCAACTTGACCTGTTACTCCACGAGAGAGCCACTGGCTTGAGCGCTGAGCTGACCCTGGCTACTCAGCAGTGCCTGATGAAGGACTACAGCCTGCAGCACGAGAGCCATCTCGATATCTATTCCGCATGGCGTGCGCGCCTCGAAACAGGGAGTGTTCTGTGAMTSPILTRTAVQDIRENAGLTLEAGRALINRSYLSELERYPVHAFAEKGLRFNAASDVRIFRIERIVQDNKQSVLESTTAAYTALGAAGYSVFLILRSNGIETDLYIGTRGEPGKTLGHSSGELLRETFKGHFSGSSLVPLPQQHADALLGALQAEKANPSASITAVTGVPALSTENREHFMQGLERFIDAAERRVYHAIILAEPVSSQNLDLIRAGYEQVATQLSPLLKQQLSFGEQDSDSVGLSISQGLSDSLGHSLGLTETKGTSTTLGTSITDTTGTSESFSAQTLTSKTVAIGANVLGMVGGATLGPFGAMLGSQIGSAAAALLNEQRTTGTSQSTSTGRNESHGTSFSEAASKTTSTTHTTSTTDTHSLNKTLGSNRQISIETVDKTIEQLLSKIDHHLERIDEAKTYGGWNSAAYFIGDSTASSESLASIFLGLVRGSKSSHEDFALTTWKSANKSAVLDWLSAFSHPQLKPAFSKKIPISYLTPATLVSGKEMAIQLSLPRRSTSTVAVLETQAFGRKVQRLDGHSSEPGKGKTLTLGNIRHLWENLPQKIELSLDQLASHVFVSGSTGAGKSNTLYEMLSQISAVGVPFLVIEPAKGEYKHVFGHRDDVNVFGTHPAHSELLRINPFRFPLAIHVLEHVDRLVEIFNVCWPMYAAMPAVLKEAILQAYQQCGWDLDASTNRYSDELFPTFSDLLSTLQSVIEASAYSQELKGNYIGSLSTRIKSLTNGLNGQIFTANEIDSAVLFDQSAIVDLSRIGSSETKALIMGILVMRLSEHRMAGGGMNQPLRHVTVLEEAHNILKRSPSEGGAEGANVVGKSVEMLTNAIAEMRTYGEGFIIADQSPHAVDIAAIRNTNTKIIMRLPDEMDRRLIGKSVALRDDQLEEIAKLPKGVAIVYQNDWLEPVLCQVKKFAGHETPYVYTANDNRAVRSQDFNLQVLNLLLSNRIRTPVALDLALLENGLCELPLLARSKIALFEALNAHKEEKPSALCKPEAFAYVAQLVVDVLGCRQQVQQIIQMATDYGHLSNQLDLLLHERATGLSAELTLATQQCLMKDYSLQHESHLDIYSAWRARLETGSVLNANANANANA
D1-35_01155588hypothetical proteinGTGAACTTTGAAAATTTCTTTGCTGAAAAATCCGAGGTTCCGACCAGCCTGGCGTTATTGGCCCGTGAAATGCCAGACCGCTGCCTTATCGTTGTCGAGCTCGATCGTCCTATCGTGCTCACCCAGGAAACCCGCCTGGAGCTACCGCAAATGTCGCCGGAAACCCGTGAGCGGCTTGAGCTGCTGGGCGTTCCTAAAGAGGTTCTGGATGCAATAGGTAGTGAGGCCGAAGCGAAGATCTATGAAAATGCCAATCTTGAACCATCCGAGGTCAACGGCAAGGATGCACTGATTCGTACCGACATCGATTACGATCAAAAAGATGCCATGGGCACCACTAACCTGGATCGGATGAAGTCGGGAAGGGCCCCGCTCGATGCCAATGGAAAGCCGATCGAGTTACATCACATCGGCCAGAAACAGGACTCACCATTGGCAGAATTGACCAGCGCTGAGCACCGTGGCAACGGAAACGATAACGTGTTGCACAACAAGCAGAAGGAGTCCGAGATCAATCGCGAGGACTTCGATAAAGAGCGAAAAGACTACTGGAAGGCGCGAGCCGAACAGATTGAGAATCAGCGCTGAMNFENFFAEKSEVPTSLALLAREMPDRCLIVVELDRPIVLTQETRLELPQMSPETRERLELLGVPKEVLDAIGSEAEAKIYENANLEPSEVNGKDALIRTDIDYDQKDAMGTTNLDRMKSGRAPLDANGKPIELHHIGQKQDSPLAELTSAEHRGNGNDNVLHNKQKESEINREDFDKERKDYWKARAEQIENQRNANANANANA
D1-35_01156408hypothetical proteinATGAAAAAACTTGAACAACTCGTTGATCTCCATCAGGCCAACACCCGGCCAGTAGATACCGCCAGCATCCAGAATCTTGAGCAGAAACTGGGATTCGCACTGTCTGACGAATACAAGCGCTACCTGTCGGCTTTTGGAGTCATTGTCTTTGACGCCTACGAAACGTATGGCCTAGGCGTGCCTGACGACTATTACCTGAATGTGTTTGCCGCATTCTCGGACCTTGGCCGTGACCCGACCTACCCGAAAAATACTGTGCCACTGCTGGAGATTGGTGATGGTCAGTACTACCTGTACGACAACCAGGCACGGAAAATTCTGGTTTGGGCTACACCGAATGGCGGCATTGTGCGTGTCTTGGACGACGGGCTGGAAGCCTTTTTGATCAAGCATGTCTTCGCAGGCTAGMKKLEQLVDLHQANTRPVDTASIQNLEQKLGFALSDEYKRYLSAFGVIVFDAYETYGLGVPDDYYLNVFAAFSDLGRDPTYPKNTVPLLEIGDGQYYLYDNQARKILVWATPNGGIVRVLDDGLEAFLIKHVFAGNANANANANA
D1-35_01157978hypothetical proteinATGGCCGAGACGATAAACATCGCAAAGATGGCAGAGAAGCTGTCGAAAGGCATTTTCAACGAGTTTCTCTGGGGGCGTATGGAGCACACCAATATCAATTGGCCGTGCGAGAACCAGGACTTACATGAGGTCAAGACCCATCCCTCAGATGTCGTTTTTTGGTACAATGAGCCCTATTCTCAGTCCCGCACATATGTGAACTGCGATCTCAAGAGCTACGCGAAGGGCACCATTAAAACGAAGGCTATCCGGGAGGCAATCGAGAGTCTTGCCAAGAGTCTGCGATGCGCCGAGATCAGCCGAGAGTTTAGCGAAACTTACATCCATCCGGATGTATCGGCAAATATCCAGGGACTGCTTTTCGTCTACAACCACGATAGTGAGTATGACAAGGACTTCGCCAAAATCCTAGAAAAGGTAAAGTGCGATGAATTGGACATACCCAAAGGTTCTAAAATCGTTGTGATGGGGCCTGACGATATCTACTGGCTGAACAACGTTCACCACGAAATTATCCACCTTCGCGGAGGTGCAGGTCTCCTACCGGAACGGGATTACTGCAAGTTTTACTACCCCCATCTGGTTCGCAGAAAGAATGTCCAATTGGAGCACGCTAAGGCAGCCACGCTGGACATGCTGACCGCACCTTGGATCATCCTGTCCCATGTAAACCCCAAGAATGGAAGTAAGCAGGGTTTCGTGATCTTCATGCGTAAGCGGGGATTCACAACAGATGAGTTTCTGTATCTCATCGAGTATCTGATGCACTACCAGGTAATTAAGGCCGAAACGGAGGTCACTATCCGCATGGTCGACCCGCATCAGAATGCTTCAGCCAATTTTGCCAAAGCAAAAGACCAGTACGTCGCTGACTATCAAGGCGGTGGAGACCTTAGGCAGATCCTAGACTCCATTGACTTCGGCAAACTTGAGCACGTCCGTACCACTTTCTGTGACCTGGAGTTGTCTCGGCAATGAMAETINIAKMAEKLSKGIFNEFLWGRMEHTNINWPCENQDLHEVKTHPSDVVFWYNEPYSQSRTYVNCDLKSYAKGTIKTKAIREAIESLAKSLRCAEISREFSETYIHPDVSANIQGLLFVYNHDSEYDKDFAKILEKVKCDELDIPKGSKIVVMGPDDIYWLNNVHHEIIHLRGGAGLLPERDYCKFYYPHLVRRKNVQLEHAKAATLDMLTAPWIILSHVNPKNGSKQGFVIFMRKRGFTTDEFLYLIEYLMHYQVIKAETEVTIRMVDPHQNASANFAKAKDQYVADYQGGGDLRQILDSIDFGKLEHVRTTFCDLELSRQNANANANANA
D1-35_011581128hypothetical proteinATGAGCAAAAACGCGCTTCAGTATTGTGCTACGGATAAGGAAATTTACGACGCCTTGATGTCTGCTAAGCAGAAAATCAACGAAAAAATTCTGCTAGAGCTTGCGAAGGACAGGGGGATTTTCTTTTCTGCCAAGGACAGCCGGGATGATTTGGTCAGCGCCATTTCGCTCCTTCCACATGACTATCACGATCTTAATACCCTGCTGGAACAGCGTGAGCATTCTGGCCGGCAGGAAAAGCTCACGTCGGTAACGCTACCAACCGCGCTGACCGTGGAAGGAATCCGGGAGATTATTAGAGAGTACATTGAGGAGTCCCCGGAGGACGAGAAGGTCACTCAGCAGATTAAGGACGGCAACCAAGTGGTCGCCAACATTAAGTACTCCGACGTTGACTATGGCAAAACGCGGCTCGTTCAGCGCACACCCAAAGAAGCCTTGATCGAGTTCCACGTATCGGCGGACAAGACGGTCATTCGGATGCCTGCCAATGATCGTGTCAAGGCTATCTACTCGAAGCTCAAGGGCAAGCTGGATACCAGGGCCAAGGCTGAAATCCCCGCTATCCGCATCGAACTCGGCGAGTTTCAATCATCAGCATTGCGCACAGAGTTCTTTACTTCTCTCATCAGAGATCTAACGGGGTTCTCGCTGAAGAACGTCACTAGTGTGAAAGTTGAGCGCTTGCCCCAGGAACCTGAGGAAGACGAGCTTGATCTGGACGATGACCAGGAAGCTGAGGTGGCCAAAGAGGAGGCCTTGGCTCTGGTCAAGAATGTCGCACTGAAAGGTGAGACACTTCTGGCGTCTGAGGAGTACCAGAGTTTGACCCGGAAAGGCTTTTTCATCACGTCGATCATATGGCGCTCGGTGCTGAATAAAGCACCACAACCCATGGTGGAGTTTGAGGCTGCTTTTGAGGATCCGATGCAAGGAAAGGGGTTCAAGTACTTTGTCCGAGGCGCCTATCGTATCGTTGAGCTTGAGTACACCAAGACGATTCGACCGGTCAGTGCCGAAGACAAAGAAATCTATCTGGGTGTTATTGAAGAAACCGCGGCGAAAGTTATCAGGGAACTGAGAGCAAAAGCTCAAGCGAGCGCTGAGCCGCAAGGAGAACCAACATGAMSKNALQYCATDKEIYDALMSAKQKINEKILLELAKDRGIFFSAKDSRDDLVSAISLLPHDYHDLNTLLEQREHSGRQEKLTSVTLPTALTVEGIREIIREYIEESPEDEKVTQQIKDGNQVVANIKYSDVDYGKTRLVQRTPKEALIEFHVSADKTVIRMPANDRVKAIYSKLKGKLDTRAKAEIPAIRIELGEFQSSALRTEFFTSLIRDLTGFSLKNVTSVKVERLPQEPEEDELDLDDDQEAEVAKEEALALVKNVALKGETLLASEEYQSLTRKGFFITSIIWRSVLNKAPQPMVEFEAAFEDPMQGKGFKYFVRGAYRIVELEYTKTIRPVSAEDKEIYLGVIEETAAKVIRELRAKAQASAEPQGEPTNANANANANA
D1-35_01159681hypothetical proteinATGAACAGGGTTAGATGGCTTTATGCCCAATGGCCCTTACCAATTCGAGCAGTTGGGAAGAAGCTCGTTGAGACGCCATTTACGGATGAGAGAATGGATGGCTTCGCTATAGAACGAATTCGAGACGACTTCGTCGAGGGGCGTTACATCGAAAAGTACAATTACCAAGAAGTGATCTCGACTCCTTTTGGTACTGAAGAGGTGTTTGATCGGGTTGGGTACCGGACAACAGAGTTCACTCTCTTTGATTCGTCGCCCCACATTGAGCTAAGAAATTATCAGCGCAGTATCAAAGGATTTATCAGTCGGCTGCTCGAAGCTTGCAGTTTCAACCTAGTAGTTACGCCTATTACGGTTAACCTGATTGAGTGGGTATCGGCGCTGCAGCTTGCCGTGGATCAGGAAATCACTGTCGATTCGCTTCAGGTCTCGGGCGTCGAAATAGACCAAGGTGTGACGGGGAAAATATTGCTCAAAGGGCTAAGAGATGTGCGTGAAGCCACTGATGTTCTACTAGCCGGGCGTAAACATGTGCTGGAAAAAGTCCAAGTGAAATTCGCTGGCCTTCACAAGACAGTGGTCATCCAATTGTCCAATAACGGCACTGCGAAGCTCCCCGCAATGCTACCGAAAGACCTCCTTCATCATTTACGTGTGTCCTTTCCTACCAGCGTCAGATGAMNRVRWLYAQWPLPIRAVGKKLVETPFTDERMDGFAIERIRDDFVEGRYIEKYNYQEVISTPFGTEEVFDRVGYRTTEFTLFDSSPHIELRNYQRSIKGFISRLLEACSFNLVVTPITVNLIEWVSALQLAVDQEITVDSLQVSGVEIDQGVTGKILLKGLRDVREATDVLLAGRKHVLEKVQVKFAGLHKTVVIQLSNNGTAKLPAMLPKDLLHHLRVSFPTSVRNANANANANA
D1-35_011601257intA_1COG0582Prophage integrase IntAATGTGCGCACAAGCGGTTCGCCTCTCTGAACTCAAAATCAAATCTGCCAAGCCTGCTGAAAAGGACTACGTACTGTTCGATGGCGGCGGACTTCAAATGCGAGTGAGAAGTAATGGCTCAAAGCTATGGAACTTCAACTATCGACACCCCGTGACGAAGAAGCGGATCAACATGGGCCTCGGTACCTTCCCTGAAGTCTCACTAGCGCTAGCACGAAAAGGCTCCATTGCAGCCCGGGAAATACTTGCCAAAGGCCTCGATCCCAAAGAACAACGGGATGCAGTGCTGCAAGCAAAGCAAGCTGAAACCGAGCACACATTCCAGAATGTCGCGACGTCCTGGTATGAACTGAAGAAGGATGCGGTGACACCTGCTTATGCCGAGGACATCTGGCGTTCGTTGACGCTGCACGTTTTTCCAGACTTGGCCTCCACACAGATTTCAGCAATCAGTGCACCACAAGTCATCAACCTTCTTCGACCACTCGAAACCAAAGGTAGCCTTGAAACCGTTAAACGGCTGTCACAGCGACTCAACGAGATCATGACTTACGGGGTCAACTCAGGACTGATACACGCAAACCCACTCAGCGGGATTCGCTCCGTCTTCAAGAAGCCGAAAAAGAAAAACATGGCGGCACTTGCTCCAGATGAGCTGAAAGAGCTCATGGTGGCAATTGCCAATGCCAGCATAAAAAGAACTACGCGCTGTCTGATTGAATGGCAGCTCAATACCATGACTCGCCCAGCGGAGGCTGCAACCACGCGCTGGGTCGACATCGACTTCGAGAAGAAGATCTGGACGATTCCTGCTGAGCGCATGAAGAAACGCCGAGTACATATCGTGCCGCTCACAGATCAAGCATTGGCACTGCTGGAGGCAATCAAACCCTACAGCGGACACCGAGAGTATGTATTTCCTGCAGACCGGGACCCTCGGACCCATTGCAACAGCCAGACCGCCAACATGGCACTAAAGCGCATGGGCTTCGAAGGTCGGTTGGTGAGCCATGGCATGCGATCAATGGCCAGCACTACTCTCAACGAACACGGCTGGGATCCTGAGTTGATTGAGGTAGCGCTTGCACACGTCGATAAAGACGAGGTCCGCAGCGCCTATAACCGAGCGGACTACATCGAGCGCAGGCGTCCAATGATGAAGTGGTGGAGCGAGCACATCCAAAAAGCAGCTACCGGCAATCTTTCGATCTCGGCAATCCAGAACACCCGAGACACGAAGGTCGTCTCAATACGCTAAMCAQAVRLSELKIKSAKPAEKDYVLFDGGGLQMRVRSNGSKLWNFNYRHPVTKKRINMGLGTFPEVSLALARKGSIAAREILAKGLDPKEQRDAVLQAKQAETEHTFQNVATSWYELKKDAVTPAYAEDIWRSLTLHVFPDLASTQISAISAPQVINLLRPLETKGSLETVKRLSQRLNEIMTYGVNSGLIHANPLSGIRSVFKKPKKKNMAALAPDELKELMVAIANASIKRTTRCLIEWQLNTMTRPAEAATTRWVDIDFEKKIWTIPAERMKKRRVHIVPLTDQALALLEAIKPYSGHREYVFPADRDPRTHCNSQTANMALKRMGFEGRLVSHGMRSMASTTLNEHGWDPELIEVALAHVDKDEVRSAYNRADYIERRRPMMKWWSEHIQKAATGNLSISAIQNTRDTKVVSIRNANANANANA
D1-35_01162291hypothetical proteinATGAAACGCTCTGTGCTGTTAGGTCTGTTTGTCACTGCTTCGATGCTGGCATCACCCTCGTTTGCTGCCGGCGATTCGGACAGTCTCTGCGCCACCAACATCAAAACCATTGAGAATGCCAAGACCCAGTACCAAGGCTCGGATTCGCAAAGCCAGATCGAGGCGAGCCTTCAGCAAGCGAAGGCCCATCAAGCCTTGAAAACCAAGGAAGGCACCGAGAAATGCATCTCTGAAACCACCCAGACCATCCAAGAGATGCAGAAGACCAACAAAGACGGTAAAAACTCCTGAMKRSVLLGLFVTASMLASPSFAAGDSDSLCATNIKTIENAKTQYQGSDSQSQIEASLQQAKAHQALKTKEGTEKCISETTQTIQEMQKTNKDGKNSNANANANANA
D1-35_011632811hypothetical proteinATGACGCTTCCGGCCCCTTTCCTGCGCGACGTATACCAACTGATCCCGGAGAAACGACGCTTCGACGACCCGTTGTCGACCCTGGCCTTCGGCACCGATGCGAGCTTTTATCGGCTGATTCCGAAACTGGTGGTACGCGTCGAAAGCGAAGACGAAGTCATCGCCCTGCTGCAACTGGCCCAGCGCGACCGGGTTCCGGTGACCTTCCGTGCGGCGGGCACCAGCCTGTCCGGCCAGGCCATCAGCGACTCAGTGCTGATTGTGCTCGGGGACAACTGGAACGGCCGGGAAATTCGCGAGCAAGGCACACAGATCCGTTTGCAACCCGGCGTGATCGGCGCCCAGGCCAACGCCTGGCTGGCCCCGTTCGGGCGCAAGATCGGCCCGGATCCGGCGTCGATCAACGCCTGCAAGATTGGCGGCATCGTCGCCAACAACGCCAGCGGCATGTGCTGCGGCACGGCGCAGAATACCTATCACACCCTGGCCGGCATTCGCCTGGTACTCGCCGATGGCACGCGCCTGGACACCGAAGACGCCGCCAGCGTGGCGGCATTCAGGGCGAGCCACGGCGAACTGCTGGAGCGGCTGGCAACCCTTGGCCGTGAGACACGCGCCAACACGGAGCTCGCCGCCCGAATTCGCCACAAATACCGTCTGAAAAATACCACCGGCCTGTCGCTCAATGCCCTGGTGGATTTCGACGAGCCGGTGGATATCCTCAGCCACCTGCTGGTGGGCTCTGAAGGCACGCTGGGATTCATCAGCGCGGTGACCTACAACACCGTTATCGACCACCCGAACAAAGCCTCGGCACTGATCGTGTTTCCGGATGTGGAGACCTGCTGCAACGCCGTGACCGTACTGAAAAGCCAGCCGGTCTCCGCCGTTGAGCTGCTGGACCGCCGCAGCCTGCGCTCAGTGCAGGACAAGCCGGGCATGCCGGATTTCGTACAGCACCTGTCGAACAATGCCTGCGCGCTGCTGATCGAATCCCGCGCCGCTTCGTCATCGTTACTACAGGAACAACTGACCCGGATCATGGCTTCTCTGGCGGCTTTCCCGGTGGAAAGGCAAGTCGACTTCACCGAGGACCCGCGAGAAAACGCCCGCCTGTGGGCCATCCGCAAAGACACCTTCCCCGCCGTAGGCGCGGTGCGCAAGACCGGAACCACGGTCATCATCGAAGACGTGACCTTCCCGGTCGAGCAACTGGCCGCTGGCGTGAATCGCCTGATCGCCCTGTTCGACAAACATCACTACGACGAAGCGATCCTTTTCGGACACGCACTGGAAGGCAATCTGCACTTTGTCTTCACCCAAGGCTTCAACAGCACTGAAGAAGTCGCACGCTACCAGGCGTTCATGGATGACGTAGCGCAACTGGTGGCGGTGGAATTCGGCGGCTCGCTGAAAGCCGAACACGGCACCGGCCGCAACATGGCACCGTTCGTTGAGTTGGAATGGGGCACTGATGCCTATCAATTGATGTGGCAGCTCAAGCGCTTGCTCGACCCCAACGGCATCCTCAACCCGGACGTCGTGCTCAGCGAGGACCCGCAGATCCACCTCAAGCACCTCAAGCCATTGCCGGCAGCTGATGAGATTGTCGACAAGTGCATCGAGTGCGGCTTCTGCGAGCCGGTGTGTCCCTCCAAGGACCTGACCTTGAGCCCGCGCCAGCGCATCGTGATCTGGCGCGACATTCAAGCGAAAAAGCGCGCCGGTATCGATACCTCCGAGCTGGAAACGGCCTATCAATACCAGGGCATCGATACCTGTGCCGCCACGGGCCTTTGCGCCCAACGCTGTCCTGTAGGCATCAACACCGGCGAACTGGTGAAAAAACTCCGCAGCCGCACTGCGACGCGTACGAAAACCGCCGATTGGCTTGCGGGTAATTTCGCCACTGCGCTGCAAGGGGCGCGCTTTACCCTGCACGTCGCCAACGGTGCGCGAATGATGTTGGGAGCGCCGCGCCTGGCACGGTTGTCCGCCGGGCTGACGCGGCTGTCCAAAGGACAGGTTCCGCAGTGGACCAACGCCATGCCGCAACCGGAAAGGGCGATTCGGTTCAGCCCCAGCGTGGCGGACGAACGCCCGAGGGTGGTTTATCTGGCGGCCTGCGTGTCGCGGGTCATGGGCCCGGCGGCGGAGGACAAAGAACAGATGTCGTTGCACGACAAGACCCGCGGGCTGCTGGAAAAAGCCGGTTACCAAGTCGTTTTCCCGGACAACGTAGACAGCCTCTGCTGCGGCCAACCCTTTGCATCCAAAGGCTACGCCGAACAGGCCGAGCACAAGCGCCAGGAACTGATCGGCGCGCTGCTGCACGCCAGCCGCGGCGGGCTCGACCCGATCTATTGCGACACCAGCCCATGCACCCTGCGCCTGGTTCAAGACTTGGGTGAAGTACGTCTGGACCTGTACGACCCGGTGCGTTTCATTCGCACGCACCTGATGGATCGCCTCGACTTCACGCCTCAAGAGGCCCCCATTGCGGTGCACGTCACCTGCAGCACGCAGCACCTTGGCGAGAGCCAGGCGTTGATCGATCTGGCGCGCAGGTGCAGCAAAAACGTGGTCATTCCGGAAGGCATCCATTGCTGCGGATTTGCCGGGGACAAAGGCTTCACCACGCCCGAACTGAACGCCCACTCGTTGCGCACGCTGAAGGGCGCGGTAGAGCACTGCAGCGAAGGAATCTCCACCAGCCGGACCTGTGAGATCGGTCTTACGCAACACGGTGCGATTGATTACCACGGGCTGGTTTATCTGGTTGACCGAGTGACACGGGCCAGGGCGATGTGAMTLPAPFLRDVYQLIPEKRRFDDPLSTLAFGTDASFYRLIPKLVVRVESEDEVIALLQLAQRDRVPVTFRAAGTSLSGQAISDSVLIVLGDNWNGREIREQGTQIRLQPGVIGAQANAWLAPFGRKIGPDPASINACKIGGIVANNASGMCCGTAQNTYHTLAGIRLVLADGTRLDTEDAASVAAFRASHGELLERLATLGRETRANTELAARIRHKYRLKNTTGLSLNALVDFDEPVDILSHLLVGSEGTLGFISAVTYNTVIDHPNKASALIVFPDVETCCNAVTVLKSQPVSAVELLDRRSLRSVQDKPGMPDFVQHLSNNACALLIESRAASSSLLQEQLTRIMASLAAFPVERQVDFTEDPRENARLWAIRKDTFPAVGAVRKTGTTVIIEDVTFPVEQLAAGVNRLIALFDKHHYDEAILFGHALEGNLHFVFTQGFNSTEEVARYQAFMDDVAQLVAVEFGGSLKAEHGTGRNMAPFVELEWGTDAYQLMWQLKRLLDPNGILNPDVVLSEDPQIHLKHLKPLPAADEIVDKCIECGFCEPVCPSKDLTLSPRQRIVIWRDIQAKKRAGIDTSELETAYQYQGIDTCAATGLCAQRCPVGINTGELVKKLRSRTATRTKTADWLAGNFATALQGARFTLHVANGARMMLGAPRLARLSAGLTRLSKGQVPQWTNAMPQPERAIRFSPSVADERPRVVYLAACVSRVMGPAAEDKEQMSLHDKTRGLLEKAGYQVVFPDNVDSLCCGQPFASKGYAEQAEHKRQELIGALLHASRGGLDPIYCDTSPCTLRLVQDLGEVRLDLYDPVRFIRTHLMDRLDFTPQEAPIAVHVTCSTQHLGESQALIDLARRCSKNVVIPEGIHCCGFAGDKGFTTPELNAHSLRTLKGAVEHCSEGISTSRTCEIGLTQHGAIDYHGLVYLVDRVTRARAMPGPT0018110_189DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018110-dld2-K18930NANA
D1-35_01164672COG1556putative proteinATGAGCGCCAAGGAAAATATCCTCGCCAAGCTGCGTAAAAGCCTGACCGGCACCACGCCCGTTGCCGACAACTACGACGTCGAACTGGTGACACAGACCTACCGCTACGCGCCCGAGGAACGCATTCCACAACTGCGCAAGCTGATGGAAGCGGTACACACCGAAATTCACCTGACGTCCGGCGAAGCCTGGCCGACGCTGCTGGCGCAATTGCTGCGCGACCGGCAACTGCCGAGCCTGCTGATCGCACCGACAACGCCCCATGGGCAAAAAATCGTACAGTTCTGGGCGAACAATCCGGGCCTTCCTGCGCTCAAGGCCTACGATCGGCCGGTGGAGGAATGGAAAGCCGAACTGTTCAACGATACGCCTGCCAGCCTGACCGGCACCCTCGGAGCCATCGCCGCAACCGGTAGCCTGATTCTCTGGCCGACGCGGGAAGAACCGCGCCTGATGAGCCTCGTCCCGCCGGTGCACTTCGCCTTGCTCAAGGCCAGCGAAATCCGTGACAACTTCTATGAAGTGCAGCAGGAATTCGAATGGGCCCAAGGCATGCCGACCAACGCCCTGTTGGTGTCGGGCCCGTCAAAGACCGCCGACATCGAGCAGGTCCTGGCCTACGGCGCCCATGGACCAAAGGATCTGGTGGTGCTGATTCTGGAGGACCAATGAMSAKENILAKLRKSLTGTTPVADNYDVELVTQTYRYAPEERIPQLRKLMEAVHTEIHLTSGEAWPTLLAQLLRDRQLPSLLIAPTTPHGQKIVQFWANNPGLPALKAYDRPVEEWKAELFNDTPASLTGTLGAIAATGSLILWPTREEPRLMSLVPPVHFALLKASEIRDNFYEVQQEFEWAQGMPTNALLVSGPSKTADIEQVLAYGAHGPKDLVVLILEDQPGPT0018100_881DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018100-lldG|ykgG|lutC-K00782NANA
D1-35_011651458lutBCOG1139Lactate utilization protein BATGAGTACGCCGACGCTGATTCCGACCGTTGCAGTGCAGGAAGATTTTCGCGCCCGCGCCCACAAGGCGTTGGACGACACGCAACTGCGAAACAACTTTCGCACTGCGATGGATTCACTGATGACAAAACGGGCAGCGTCCTTCAGCGATGCCCACGAAAGAGAACACCTGCGGGTGCTGGGCAATGCTGTCCGCGCCCGCGCGTTATCCAGGCTGCCCGACCTGCTCGAGCAACTTGAAGCCAACCTGACCCGCAACGGTGTGAACGTGCACTGGGCGGAAACGGTGGACGAGGCCAATGGCATCGTCCTGTCGATCATCCGCGCTCACGAGGCGCGGCAAGTGATCAAGGGCAAATCGATGGTCAGCGAAGAGATGGAGATGAACCATTTCCTCGAGGCTCGGGACATTGAATGTCTCGAATCCGATATGGGGGAATACATCGTCCAGCTCGACCACGAGAAGCCTTCACACATAATCATGCCGGCAATCCACAAGAATGCCGGTCAGGTCGCGTCCTTGTTCCACGACAAACTTGGCGTGGAGTACACCAAGGACGTCGACCAACTCATTCAGATCGGTCGCAAGGTCTTGCGGCAGAAATTCTTCGAAGCCGACGTCGGCGTTTCCGGTGTCAACTTCGCCGTCGCCGAAACCGGCACGCTGCTGCTGGTGGAAAACGAAGGCAACGGGCGGATGTCGACCACGGTGCCGCCGGTGCACATTGCCGTGACCGGCATTGAAAAAGTCGTGGAGAACCTGCGGGACGTCGTGCCGCTGCTCTCGCTGCTGACCCGCTCGGCGCTGGGCCAGCCGATCACCACCTACGTCAACATGATCTCCGGCCCGCGCAAGGCAAACGAACTGGACGGGCCGCAGGAAGTTCACCTGGTCCTGCTCGACAACGGTCGCAGCCAGGCATTTGCCGACAGTGAGCTGCGCCAGACCCTGAACTGCATTCGCTGCGGCGCCTGTATGAATCATTGCCCGGTCTACACGCGAATTGGTGGTCATGCCTACGGCGAGGTTTACCCGGGACCTATCGGAAAAATCATCACGCCGCACATGGTCGGCCTGGCCAAGGTGCCGGATCACCCGAGCGCGTCTTCGCTGTGCGGTGCCTGCGGCGAAGTGTGCCCGGTGAAGATTCCGATCCCGGCACTGCTACGACGGCTGCGAGAAGAAAACGTCAAGGCGCCGGACAGCCCCAACCCGGTCATGCGCGGCCAGGGCAGCAAGTATTCGGCCAAGGAGCGCTTCATCTGGAATGCCTGGGCCCGGCTCAACAGCTCGCCACCGCTGTACCGGCTGTTCGCTTTCCTCGCCACGCGCCTGCGCGGCCTGACACCGCAGAACGTCGGCCCCTGGACCCAGAACCACAGCGCCCCGAAACCCGCCGCCCGCTCGTTGCATGACCTGGCCCGCGACCACCTGACCCCGCAGGGAGACCGCCGATGAMSTPTLIPTVAVQEDFRARAHKALDDTQLRNNFRTAMDSLMTKRAASFSDAHEREHLRVLGNAVRARALSRLPDLLEQLEANLTRNGVNVHWAETVDEANGIVLSIIRAHEARQVIKGKSMVSEEMEMNHFLEARDIECLESDMGEYIVQLDHEKPSHIIMPAIHKNAGQVASLFHDKLGVEYTKDVDQLIQIGRKVLRQKFFEADVGVSGVNFAVAETGTLLLVENEGNGRMSTTVPPVHIAVTGIEKVVENLRDVVPLLSLLTRSALGQPITTYVNMISGPRKANELDGPQEVHLVLLDNGRSQAFADSELRQTLNCIRCGACMNHCPVYTRIGGHAYGEVYPGPIGKIITPHMVGLAKVPDHPSASSLCGACGEVCPVKIPIPALLRRLREENVKAPDSPNPVMRGQGSKYSAKERFIWNAWARLNSSPPLYRLFAFLATRLRGLTPQNVGPWTQNHSAPKPAARSLHDLARDHLTPQGDRRPGPT0018095_564DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018095-lldF|ykgF|lutB-K18929NANA
D1-35_01166825lutA_1COG0247Lactate utilization protein AATGAGCGAGCTTTTTTACAACGCCGTGCCGAACGCGACCCGAGTCGCCCCGCCATTGCCTGAGCCGCGCCAGTATCCCAGCGAGAAACCCCGACGGGTCTATCTGTTCGGAACCTGCGTGGTGGATCTGTTCTACCCCGAAGCCGGGATGGACGCGATTCATCTGCTTGAGCGCGAAGGCATCCAAGTCGACTACCCGCAAGGCCAGACATGCTGCGGGCAACCGGCCTACACCTCGGGATATACCGAGCAGGCGCGGACGGTGGCGCGGGCGCAACTGGCCCTGTTTGCCGGGGATTATCCGGTGGTCGTGCCGTCGGGCTCGTGTGCCGGCATGCTGCGTGAACATTACGCCGACCTGTTCAAGGACGAACCGCAAATGCTCAAACAGGTCCAGGCCCTGGCGGCCAGGACCTATGAGCTGGCCGAGTTCCTGCTGTTCGTGTGCAAGGTGCAATTGAACGACGATGGCGCGCCGGTAAAGGTCGCGCTGCATACGTCCTGCTCGGCACGACGGGAAATGAATACGCACCTACATGGCCGTGAGTTGTTGGCACAGCTGCGCAACGTGGAACGGGTCGACCACAGTCACGAAAGTGAATGCTGCGGTTTTGGTGGGACGTTCAGCGTTCGCATGCCGGATATTTCCGGCGCGATGGTGGCCGACAAGACCCGCGCGCTGAAGGAATCCGGCGCGCATCAGGTGGTCAGCGCCGACTGCGGTTGCCTGATGAACATCAACGGCGCGCTGGAAAAACAGCGCGAAGCGCTACGCGGCCAGCATCTGGCGAGCTTCCTCTGGAAGCGTACCGGAGGTGTCGCATGAMSELFYNAVPNATRVAPPLPEPRQYPSEKPRRVYLFGTCVVDLFYPEAGMDAIHLLEREGIQVDYPQGQTCCGQPAYTSGYTEQARTVARAQLALFAGDYPVVVPSGSCAGMLREHYADLFKDEPQMLKQVQALAARTYELAEFLLFVCKVQLNDDGAPVKVALHTSCSARREMNTHLHGRELLAQLRNVERVDHSHESECCGFGGTFSVRMPDISGAMVADKTRALKESGAHQVVSADCGCLMNINGALEKQREALRGQHLASFLWKRTGGVAPGPT0018090_78DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018090-lldE|ykgE|lutA-K18928NANA
D1-35_011671695glcA_1COG1620Glycolate permease GlcAATGCAAACCTGGCAACAGCTTTACAGCCCGCTCGGCAGCCTAGGCTTGTCCGCACTCGCGGCCGTCATTCCCATCGTGTTTTTCTTCCTCGCCCTGGCGGTGTTTCGCCTCAAGGGGCACGTGGCGGGCAGCATCACCCTGGCCTTGGCGATTGCCGTCGCGATCTTCGCTTTCCAGATGCCGGCCGACATGGCGTTTGCCGCCGCCGGCTATGGCTTTGCCTATGGTCTTTGGCCGATTGCCTGGATCATCGTCGCCGCCGTGTTTCTCTACAAACTGACCGTCAAGAGCGGCCAGTTCGAAATCATCCGCAGCTCGGTGCTGTCGATTACCGATGACCAACGCCTGCAAGTGTTGCTGATCGGCTTCTGCTTCGGCGCATTCCTGGAAGGTGCCGCCGGTTTCGGCGCTCCCGTCGCGATTACCGCCGCGCTGCTGGTCGGCCTGGGTTTCAACCCGCTCTACGCCGCCGGCCTGTGCCTGATCGCCAACACCGCTCCGGTAGCCTTCGGCGCACTGGGTATTCCGATTATCGTTGCGGGCCAGGTCACCGGGATCGACGCTTTCAAGATCGGCGCCATGACCGGTCGCCAGCTGCCGTTGCTGTCGCTGTTCGTGCCGTTCTGGCTGGTGTTCATGATGGATGGGCTGCGCGGTGTGCGGGAAACCTGGCCGGCCGCCCTGGTAGCGGGCTTGAGTTTCGCCATCACCCAGTACTTCACTTCGAACTTCATCGGCCCGGAACTGCCGGACATCACGTCGGCCCTGGCCAGCCTGGTATCCCTGACGCTGTTCCTGAAAATCTGGCAGCCCAAGCGTACCGCCGGCGCCCAGATTGCCGGTGCAACCTCCAGCGCAGCGATCACCGCCAGCGTCGGCGGTTTCGGCCAGCCGCGCAGCACCGTGGCTTCGCCCTACAGCCTGGGGGAAATCATCAAGGCCTGGTCACCGTTCCTGATCCTGACCGTGCTGGTGACCCTCTGGACCCTGAAGCCCTTCAAGGCGATGTTCGCCGCCGGTGGCTCGATGTATGGCTGGGTGTTCAACTTCGCGATCCCGCACCTGGATCAACTGGTCATCAAGGTCGCCCCTATCGTGATCAACCCCACGGCGATTCCGGCGGTGTTCAAGCTCGATCCGATTTCGGCCACCGGCACGGCGATTTTCTTCTCGGCACTCATCTCGATGATCGTCTTGAAGATCAACTTCAGAACTGGTCTTACCACTTTGAAGGAGACCTTCTACGAACTGCGCTGGCCTATTCTGTCCATCGGCATGGTGCTGGCATTCGCCTTCGTCACCAACTTCTCGGGCATGTCATCAACCATGGCCCTGGTATTGGCCGGAACTGGCGCAGCGTTCCCGTTCTTCTCGCCATTCCTCGGCTGGCTGGGCGTATTCCTGACCGGCTCCGATACTTCCTCCAATGCGCTGTTCGGCTCGCTGCAAGCGACGACCGCGCACCAGATCGGTGTCAACGACACATTGCTCGTGGCAGCCAATACCAGTGGCGGCGTCACCGGCAAAATGATTTCGCCGCAATCGATCGCCGTAGCCTGCGCGGCAACCGGCTTGGTGGGCAAGGAATCGGATCTGTTCCGTTTCACCCTGAAACACAGCCTATTCTTTGCAACGATCGTCGGCTTGATCACGTTGGCCCAGGCCTACTGGTTCACCGGCATGCTGGTTCACTGAMQTWQQLYSPLGSLGLSALAAVIPIVFFFLALAVFRLKGHVAGSITLALAIAVAIFAFQMPADMAFAAAGYGFAYGLWPIAWIIVAAVFLYKLTVKSGQFEIIRSSVLSITDDQRLQVLLIGFCFGAFLEGAAGFGAPVAITAALLVGLGFNPLYAAGLCLIANTAPVAFGALGIPIIVAGQVTGIDAFKIGAMTGRQLPLLSLFVPFWLVFMMDGLRGVRETWPAALVAGLSFAITQYFTSNFIGPELPDITSALASLVSLTLFLKIWQPKRTAGAQIAGATSSAAITASVGGFGQPRSTVASPYSLGEIIKAWSPFLILTVLVTLWTLKPFKAMFAAGGSMYGWVFNFAIPHLDQLVIKVAPIVINPTAIPAVFKLDPISATGTAIFFSALISMIVLKINFRTGLTTLKETFYELRWPILSIGMVLAFAFVTNFSGMSSTMALVLAGTGAAFPFFSPFLGWLGVFLTGSDTSSNALFGSLQATTAHQIGVNDTLLVAANTSGGVTGKMISPQSIAVACAATGLVGKESDLFRFTLKHSLFFATIVGLITLAQAYWFTGMLVHPGPT0001740_28DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-GLYCOLIC_ACID_TRANSPORT,PGPT0001740-glcA-K02550NANA
D1-35_01168768pdhRCOG2186Pyruvate dehydrogenase complex repressorATGGGGTTTGATCAGATTCGTCAGCGCCGTTTGTCTGACGATATTGTCGAGCGGCTGGAAGGCATGATCCTCGAGGGCACGTTGAAGTCCGGCGAGCGATTGCCGGCCGAACGGACCCTGGCCGAGCAGTTCGGTGTGTCACGCCCTTCGTTGCGTGAGGCGATCCAGAAGCTGACGGCCAAGGGTTTGCTGATCAGTCGTCAGGGCGGCGGCAACTATGTGGTGGAGTCGCTGGGCTCGACGTTCAGTGATCCGCTGCTTCAGCTCCTGGAAAGCAATCCCGAAGCACAGCGTGATCTATTGGAGTTCCGGCATACCTTGGAGGCGTCCTGCGCTTATTACGCAGCATTGCGGGCTACCGAGGTCGATCGCGAGCGGCTGACAGCGGCGTTCGATGAGTTGCAGGATTGTTACTCGCGTCACGAACAGGTGAGTCGGGCGGAGGAGGGCGCGGCGGATGCGCGCTTTCACCTGGCGATCGCCGAGGCCAGTCATAACGCGGTTTTGCTGCACACCATTCGCGGCTTGTTCGACCTGCTCAAGCGCAACGTGGTGACCAATATCGGCGGCATGTACAAACAGCGCAGCGAGACCCGCGACATGCTGATCAGTCAGCATCGGGAGTTGTATCAAGCCATCATGGATGGTCACGCCGAGTTGGCGCGGGAGGTTTCCAGCCGACATATCCTGTATGTGCAGGAGGTGCTGGAAGAGGTGCGTCAGGAAGTGCAGCGGGTTGCCCGGGCGGAGCGGCGCAAGGGGATGTAGMGFDQIRQRRLSDDIVERLEGMILEGTLKSGERLPAERTLAEQFGVSRPSLREAIQKLTAKGLLISRQGGGNYVVESLGSTFSDPLLQLLESNPEAQRDLLEFRHTLEASCAYYAALRATEVDRERLTAAFDELQDCYSRHEQVSRAEEGAADARFHLAIAEASHNAVLLHTIRGLFDLLKRNVVTNIGGMYKQRSETRDMLISQHRELYQAIMDGHAELAREVSSRHILYVQEVLEEVRQEVQRVARAERRKGMPGPT0018120_202DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LACTATE_DEGRADATION,PGPT0018120-lldR-K14348NANA
D1-35_01169390smpBCOG0691SsrA-binding proteinATGGTCCTGGCCGGCTGGGAAGTAAAAAGCTTGCGTGCCGGCAAGGCGCAACTGGTCGACAGTTACGTCCTGCTCAAGGACGGCGAAGCCTGGCTGCTGGGCAGCCACATCACGCCGCTGACCACCGCCAGCACCCACGTCATTGCCGATCCTGTGCGCTCGCGCAAACTGCTGCTCAACAAGCGGGAGCTGGAGAAGCTCTTCGCCTCCGTGCAGCAGAAGGGTTATGCCTGCGTCTGTACCTCGCTGTACTGGAGCAAGCATTTGATCAAGTGCGAAATTGCACTGGGCAAGGGCAAGAAGGAATATGACAAGCGCGACACCGAGCGCGAACGCGATGCCGGGCGCGAGTTGCAGCGCGCGGTGCGTAACAAGGGCAAGGAAGACTAGMVLAGWEVKSLRAGKAQLVDSYVLLKDGEAWLLGSHITPLTTASTHVIADPVRSRKLLLNKRELEKLFASVQQKGYACVCTSLYWSKHLIKCEIALGKGKKEYDKRDTERERDAGRELQRAVRNKGKEDPGPT0014355_1055DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-RatA-RatB|YfjG-YfjF|RatAB-SsrAS_SYSTEM,PGPT0014355-smpB-K03664NANA
D1-35_011701455hypothetical proteinATGAATCCCGGACAATGCGGCCTCTTTTTTGAACGCTTGGGCGTGATCACGATGTCGACAGACAAGGTTTCTGTCCACGGCAGTTGGGCTAGCCGCTGGGTCTTCATATTCGCTGCGACCGGTTCGGCCGTGGGGCTGGGTAGTATCTGGAAGTTTCCGTACATGGTCGGCGTCTACGGCGGCGGTGCCTTCGTATTGATGTTCCTGGCATGCATCGCCCTGATCGGTGCGCCGGTCATGTTGGCCGAAACACTGATCGGTCGTCGTGCCCGGCAAAGCCCGGCCAATGCCTTGAAGGTGCTGGCGACGGAGGCGGGCCATTCGGCCAGGTGGTCGTGGGGGGCGTTCGCCGGAATGGTCACGGCACTGTTGATTCTTTCTTTCTACAGTGTGGTTGGCGGCTGGTCCCTGGATTACATCATCGATATGGGCCGGGGAGATTTCCAGGGGGCGACGCCCGATCAGGTCGGCGCCTACTTCGGCAACGTGATCGCCGACCCTTGGAGGCTGACACTTTGGCACACGCTTTTCATGGTGCTCTCTGCCGTAGTGATCGCCCGAGGCGTGGTCGCCGGGCTTGAGCGCAGCTTGCGGATCATGATGCCGCTGCTGTTCGTGATGATCCTGGTGCTGCTGGGCTACAGCATGACCACCGGACATTTCATGGAGGGCGTGCATTTCATGTTCGACTTCCAGCCGGAGAAAGTCATGGAAGGGCTGCTGCCGGCCATGGGGCATGCGTTTTTCTCCCTCAGCGTTGGGGTCGGCTCGATCATGATCTACGGCGCCTACATGCCCAAGAACGCCTCGCTGACCAGGACTGTCTTCGGCGTTGCGTTGCTGGATACCTTCGTGTCGCTGCTGGCGGGGGTGGCATTGTTCCCGATTGTATTCGCTGCTGGCCTGAATCCCAGTGAAGGGCCGGGGCTGATGTTCGTCAGCCTGCCTTTCGCCTTCGGCAGCATGCCGTTCGGCCAGGTAATGGGCGTGGTGTTTTTTGTCCTGGTGGCAGTCGCTGCCTGGAGCTCGGCCATTTCCTTGCTCGAGCCGATGGTCGCTTACCTGGTTGAACGAACCCGCCTGAGCCGCGCCTGGGTCACTTTCTGGCTGGCCTTCACCTGCTGGTTCGTAGGATTGGGCACGGTGTTTTCCTTCAATATATGGAAGCAGGCAAAGTTTTTCGTGAACGAAGGCGGTCTGTTCCACCTCTATCAGTGGGGAGCGACCGGAGGGCTGGATTTCTTCGGAGTGATTGATTTCTTCACGTCGCGGATCATGCTGCCTTTGGGCGGATTGTGTTTCGTGGTGTTTGCAGGGTGGATCATGGGGCGTGACGCGGTGCGTGATGAACTGTCGCTGCGCAGCCCGGTGGTGTTCGCCTTGAGTCTGTTCTTGATGCGCTATGTGGCGCCCATCGGCATCCTGGTAGTGTTTGCCGCCCAGCTGTGGAAGTGAMNPGQCGLFFERLGVITMSTDKVSVHGSWASRWVFIFAATGSAVGLGSIWKFPYMVGVYGGGAFVLMFLACIALIGAPVMLAETLIGRRARQSPANALKVLATEAGHSARWSWGAFAGMVTALLILSFYSVVGGWSLDYIIDMGRGDFQGATPDQVGAYFGNVIADPWRLTLWHTLFMVLSAVVIARGVVAGLERSLRIMMPLLFVMILVLLGYSMTTGHFMEGVHFMFDFQPEKVMEGLLPAMGHAFFSLSVGVGSIMIYGAYMPKNASLTRTVFGVALLDTFVSLLAGVALFPIVFAAGLNPSEGPGLMFVSLPFAFGSMPFGQVMGVVFFVLVAVAAWSSAISLLEPMVAYLVERTRLSRAWVTFWLAFTCWFVGLGTVFSFNIWKQAKFFVNEGGLFHLYQWGATGGLDFFGVIDFFTSRIMLPLGGLCFVVFAGWIMGRDAVRDELSLRSPVVFALSLFLMRYVAPIGILVVFAAQLWKPGPT0013950_1196DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013950-TC_NSS-K03308NANA
D1-35_01171444ratACOG2867Ribosome association toxin RatAATGACGACACATATTCAACGCTCGGCCTTGTTGCCCTACCCGGCGCAGGCGCTGTACGACCTGGTCAACGATGTGGCGAGTTATCCGGAGTTCTTGCCGTGGTGCTCGTCCGCCGAGGTACTTGAAAGCTCCGAAACCCACATGCGCGCCAGTCTCAATGTGGCCAAAGGCGGATTGAGCCAGCACTTTGTCACGCGTAACACCTTGGTGCCGGGGCAGTCGATCGAAATGAACCTCGAAGAGGGACCGTTCAATCAGCTCCATGGTGTCTGGGTGTTCAAGCCGCTCGGGGAAAAGGCCTGCAAGATCAGCCTGGATCTGTCGTTCGACTACGCGGGGCCAATCGTGCGGGCGACCTTGGGGCCGCTGTTCAACCAGGCGGCCAATACGCTGGTCGATGCGTTCTGCCAACGCGCGAAACAGAACGCCGAGCTCAAGCGTTGAMTTHIQRSALLPYPAQALYDLVNDVASYPEFLPWCSSAEVLESSETHMRASLNVAKGGLSQHFVTRNTLVPGQSIEMNLEEGPFNQLHGVWVFKPLGEKACKISLDLSFDYAGPIVRATLGPLFNQAANTLVDAFCQRAKQNAELKRPGPT0027444_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-RatA-RatB|YfjG-YfjF|RatAB-SsrAS_SYSTEM,PGPT0027444-toxin_ratA|yfjG-naNANA
D1-35_01172303hypothetical proteinTTGATCGAAATTGAAGTGGTGCATGCCAGCATCGACCGCCAGGTCTTGCGCACATGTTCAGTGCCCGAAGGTACCAGCGTTCGCGCTGCGCTGTTGGCGTCGGGTATTGCCGAGGATTTTCCGGAGCTGGACTTGAGCGCGTGTCCGATCGGTATTTTTGGCAAGGTCGTCGCCGATCCGGATCAGCAAGCGGTGCAAGCTTGTGATCGGCTCGAAATTTATCGACCGCTGCTGGCTGATCCGAAAGAAATTCGTCGTCTGCGAGCGGCCAAGGCTGCCCAGGCGCGTCAGGCGGATCAGTAAMIEIEVVHASIDRQVLRTCSVPEGTSVRAALLASGIAEDFPELDLSACPIGIFGKVVADPDQQAVQACDRLEIYRPLLADPKEIRRLRAAKAAQARQADQPGPT0027445_768DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-RatA-RatB|YfjG-YfjF|RatAB-SsrAS_SYSTEM,PGPT0027445-antitoxin_ratB|yfjF|pasI-K09801NANA
D1-35_01173528bamEOuter membrane protein assembly factor BamEATGCAAAACACCAAGCTCTTGCTAACCAGTTTCACCTTCGTGGGACTGCTCGCACTCGCCGGTTGTTCATTCCCCGGGGTTTACAAAATCGACATCCAGCAGGGCAATGTCGTCACGCAGGACATGATAGACCAGTTACGCCCGGGAATGACCCGTCGGCAAGTACGGTTTATCATGGGCAACCCCCTGCTGACCGACACGTTCCATGCCGATCGCTGGGATTACCTGTACAGCCTGCAGCCAGGCGGTGGTGAACGGCAACAGGAACGCATCAGCGTTATCTTCAATGCCAATGACCAACTTGTCAGCCTGTCGGGTGATTTCATGCCTGGTGTGAGCCGCGATGAGGCCATCATGGGCAAGGACAGCGGTACGACTGTCACCGACCCGACCCAGAATGCCGAACAGCCGAAACCGGAAAAACCGGCCAAGCCAGGTTCGTTGCTGGATCAGATCCAGAAGGATGTGGACAACGTCGAGACCGTACCTGTCCCGACGCCCGAGCCTCTGGACACCTCGCCGCAATAAMQNTKLLLTSFTFVGLLALAGCSFPGVYKIDIQQGNVVTQDMIDQLRPGMTRRQVRFIMGNPLLTDTFHADRWDYLYSLQPGGGERQQERISVIFNANDQLVSLSGDFMPGVSRDEAIMGKDSGTTVTDPTQNAEQPKPEKPAKPGSLLDQIQKDVDNVETVPVPTPEPLDTSPQNANANANANA
D1-35_01174405furCOG0735Ferric uptake regulation proteinATGGTTGAAAATAGCGAACTACGCAAAGCCGGCCTCAAAGTGACCCTGCCAAGGGTCAAGATTCTGCAAATGCTCGATTCCGCCGAGCAACGCCACATGAGTGCCGAAGACGTCTACAAGGCGCTCATGGAAGCTGGCGAGGACGTCGGTCTGGCCACGGTTTACCGTGTATTGACCCAATTCGAGGCGGCGGGACTGGTGGCTCGTCATAATTTTGATGGCGGTCATGCTGTCTTCGAATTGGCGGACGGGGAGCACCATGACCACATGGTGGATGTAGAGACTCGCGAGGTAATCGAGTTCGTCAGTCCTGAAATCGAGAAGCTGCAAAAGGCGATTGCTGACGAGTATGGCTTCGATTTGATCGATCACCATCTCGTCTTGCATGTCCGCAAGCGCAAGTAAMVENSELRKAGLKVTLPRVKILQMLDSAEQRHMSAEDVYKALMEAGEDVGLATVYRVLTQFEAAGLVARHNFDGGHAVFELADGEHHDHMVDVETREVIEFVSPEIEKLQKAIADEYGFDLIDHHLVLHVRKRKPGPT0003880_4952DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-IRON_UPTAKE_REGULATION,PGPT0003880-fur|furB|zur-K03711NANA
D1-35_011751674recNCOG0497DNA repair protein RecNATGCTGGTGCACCTGTCCGTACACAACTACGCCATCGTCGAACATCTCGACCTCGAACTCGACCGGGGCATGAGCGTGATTACCGGTGAAACCGGCGCTGGCAAATCGATCATGCTCGATGCCCTCGGGCTGACCCTGGGTGATCGTGCCGACAGCGGCGTGGTGCGCCCCGGCGCAGACAAGGCCGACATCCTGGCAACTTTCGACCTGGTCGACATTCCTGAAGCCAGTGCGTGGCTGGCCGAACGGGACCTGGACACCGACGGCCTATGCATCCTGCGCAGGGTCATCACCGCCGAAGGCCGCTCCCGCGGCTATATCAATGGCGCCCCGTGCCCGCTGGGTGATCTGAAAGCACTCGGCGAACTGCTGATCGATATTCACAGCCAGCATGAACACCAGTCCCTGCTCAAGACCGATACCCATCGCCGCCTGCTCGACGAATACGCCGGAGCCACCGACCTGGCCCGTCAGGTTCACCTGGCAGCCCAACGCTGGCGCCAGACCCGGCAGGAGCTGGACCGACTCGCCAATTCCGGCGACGAGCAACGCGCCCGCCACCAACTCTTGAGCTACCAGCTCGAAGAGCTGGAGAACCTGGCCCTGGGTGAAAACGAACTGGAGGAGCTGGAACAGGAACACAAGAACCTGACCAACGCCGAAGCACTGCTGGGCGTCTGCCGCCAGGTAGTCGAACAATGCAGCGAAAGCGACTCGGGCAATGTGCTCAGCGCATTGACGGCGAGCCTGAACCGGCTCTCCAGCGTCAGCAATTCGGTAGGCGCCCTGAGCGAGGCCAGCAACCTGCTGACCAGCGCACAGATCCAGGTCGAGGAAGCCGTCGGGGAACTGAACCGGTTCCTGGATCATTTCGATGCCGACCCCGCGCGCCTGCAATACCTGGAAGAACGCCTGGACACTATCTATACGCTTGCACGCAAGCACCGCGTCCAGCCAACCGAAGTCGTCGAACTGCAGCAACGCCTGCTGGAAGAACTGGAAACCCTGAACGCCAACGACGAATCCATCGAGCGACTCGCAGATGAGCTGGCTTCCTACGCGCGGCATTACCAGGAAAAGGCCAGGGAACTCAGCGAGCTGCGCCGCAAGGCCGCCACCGGCCTGGCCGGTGCCGTGGAGCAGGAAATCCAGCGCCTTGGCATGCCAGGCGGCCGATTTACCATCGAACTGCGCCCCAACGCCGGCGACGAGCTTCAGCCCAATGGCTTGGAACAAGTGGAGCTACTGGTCAGTGCCAACCCCGGGCAACCGCTCAAGGCCCTGGCAAAAGTGGCGTCCGGCGGTGAGTTGTCGCGCATCAGCCTGGCCATCCAGGTCATCACGGCGCAGACATCCCGTGTACCGACATTGGTCTTCGACGAAGTCGACGTGGGCATTGGCGGCCCGACAGCGGAGATCGTCGGTCAATTGCTGCGCAGGCTGGGTGAGCGCGGGCAGGTATTGACGGTGACTCACCTGCCTCAGGTCGCAGCCCAAGGCCATCAGCATTTGTTCGTGCACAAGGTGCGTGGCGAAGACGCGACTCGCACCGCCGTCTCCAAGCTCGACAAGAACGAGCGCGTGGAAGAAGTGGCACGGATGCTGGGAGGCATCGACCTGACCAAGGAATCCCTGGCTCATGCCAAAAAAATGGTGGTTGCGGCAAAAAGCTGAMLVHLSVHNYAIVEHLDLELDRGMSVITGETGAGKSIMLDALGLTLGDRADSGVVRPGADKADILATFDLVDIPEASAWLAERDLDTDGLCILRRVITAEGRSRGYINGAPCPLGDLKALGELLIDIHSQHEHQSLLKTDTHRRLLDEYAGATDLARQVHLAAQRWRQTRQELDRLANSGDEQRARHQLLSYQLEELENLALGENELEELEQEHKNLTNAEALLGVCRQVVEQCSESDSGNVLSALTASLNRLSSVSNSVGALSEASNLLTSAQIQVEEAVGELNRFLDHFDADPARLQYLEERLDTIYTLARKHRVQPTEVVELQQRLLEELETLNANDESIERLADELASYARHYQEKARELSELRRKAATGLAGAVEQEIQRLGMPGGRFTIELRPNAGDELQPNGLEQVELLVSANPGQPLKALAKVASGGELSRISLAIQVITAQTSRVPTLVFDEVDVGIGGPTAEIVGQLLRRLGERGQVLTVTHLPQVAAQGHQHLFVHKVRGEDATRTAVSKLDKNERVEEVARMLGGIDLTKESLAHAKKMVVAAKSNANANANANA
D1-35_01176567grpECOG0576Protein GrpEATGGCTGACGAACAGACGCAGGATACGCAAAATCTAGACGCCCATCAGGCTCCCCAGGATTCGGGCGAAGACCTGTCGGCTCGTGTACAAGTGCTCGAAGAGCAACTGGCCGGTGCTCAGGATCAGGCGTTGCGCGTAGCAGCCGACCTGCAGAATGTCCGCCGCCGCGCCGAGCAAGACGTGGAAAAGGCCCACAAATTCGCCCTGGAGCGTTTCGCCGGCGACCTGCTGCCGATCATCGACAGCCTGGAGCGCGGCCTGGAGCTGTCCAACCCGGACGACGAGAACATCCGTCCGATGCGTGAAGGCATCGAGCTGACGCTGAAAATGTTCCAGGACACCCTCAAGCGTTATCAGCTCGAAGCGATCGATCCCCACGGTGAACCCTTCAACGCCGAGCACCACCAGGCCATGGCGATGCAGGAAAGTGCCGACGTCGAGCCGAACAGCGTGCTGAAAGTATTCCAGAAGGGCTACCTGCTCAACGGCCGCTTGCTGCGCCCGGCCATGGTTGTGGTCAGCAAGGCGCCAGCGCCGGTTTCGCCTTCTATCGATGAGCAGGCTTGAMADEQTQDTQNLDAHQAPQDSGEDLSARVQVLEEQLAGAQDQALRVAADLQNVRRRAEQDVEKAHKFALERFAGDLLPIIDSLERGLELSNPDDENIRPMREGIELTLKMFQDTLKRYQLEAIDPHGEPFNAEHHQAMAMQESADVEPNSVLKVFQKGYLLNGRLLRPAMVVVSKAPAPVSPSIDEQAPGPT0014650_4753DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHIGH_TEMPERATUR_REGULATION,PGPT0014650-grpE-K03687NANA
D1-35_011771917dnaK_1COG0443Chaperone protein DnaKATGGGCAAGATTATCGGTATCGACCTGGGGACCACCAACTCGTGCGTCTCCGTGCTGGAAAACGGCAAGGCCAAAGTCATCGAGAATGCTGAAGGCGCGCGTACCACGCCGTCGATCATCGCTTACGCCAACGATGGCGAGATCCTGGTGGGCCAGTCCGCCAAGCGTCAGGCTGTGACCAATCCGCATAACACCCTGTACGCGGTGAAGCGTCTGATCGGCCGCAAGTTCGACGAAGAAGTCGTGCAGAAAGACATCAAGATGGTGCCGTACAAAATCGCCAAGGCTGACAACGGCGACGCATGGGTTGAAGTGAACGGCCAGAAAATGGCGCCGCCACAGATCTCGGCTGAAATCCTGAAGAAAATGAAGAAAACCGCCGAAGACTACCTCGGCGAGCCAGTGACTGAAGCGGTCATTACCGTTCCTGCGTACTTCAACGACAGCCAGCGCCAGGCGACCAAAGACGCCGGCCGCATCGCTGGCCTGGACGTGAAACGTATCATCAACGAACCAACCGCAGCCGCTCTGGCCTACGGTATGGACAAGGCCAAGGGCGATCACACCGTGATCGTTTATGACCTGGGTGGCGGTACTTTCGACGTTTCCGTGATCGAAATCGCCGAAGTCGATGGCGAGCACCAGTTCGAAGTATTGGCAACCAACGGCGATACATTCCTGGGTGGTGAAGACTTCGACATCCGCCTGATCGACTACCTCGTCGATGAGTTCAAGAAAGAAAGCGGCATGAACCTCAAGGGTGACCCGCTGGCCATGCAGCGTCTGAAGGAGGCCGCTGAGAAAGCCAAGATCGAACTGTCCTCGAGCCAGTCGACCGACGTGAACCTGCCGTACATCACCGCAGACGCTACCGGTCCGAAGCACCTGAACGTGAAAATCTCCCGCGCCAAGCTCGAAGCGCTGGTGGAAGACCTGGTTCAGCGCACCATCGAACCTTGCCGCATTGCGATGAAGGATGCCGGTATCGACGTTGGCTCGATCAACGACGTGATCCTGGTCGGCGGCCAGACCCGTATGCCGCTGGTCCAGAAGCTGGTAACCGATTTCTTCGGTAAAGAAGCACGCAAGGACGTGAACCCGGACGAAGCCGTTGCCATGGGTGCTGCCATCCAGGGTGCCGTTCTGGCCGGCGACGTGAAAGACGTTCTGCTGCTCGACGTCAGCCCGCTGACCCTGGGTATCGAAACCATGGGTGGCGTGATGACCGCGCTGATCGAGAAAAACACCACGATTCCTACCAAGAAATCCCAGGTGTTCTCGACGGCCGACGACAACCAGAGCGCCGTGACCATCCACGTGCTGCAAGGTGAGCGTAAGCAAGCGGCCCAGAACAAGTCCCTGGGCAAGTTCGACCTGGCCGAGATTCCACCGGCGCCACGCGGTGTGCCACAAATCGAAGTGACCTTCGACATCGACGCCAACGGCATCCTGCACGTCGGCGCGAAAGACAAGGCCACCGGCAAGACCCAGTCAATCGTGATCAAGGCCAACTCCGGTCTGTCCGAGGAAGAAATTCAGCAGATGGTTCGCGACGCTGAAGTCAACGCCGAGGAAGACCGCAAGTTCGAAGAGCTGGCCAGCGCTCGTAACCAGGGCGACGCCTTGGTTCACTCGACCCGCAAGATGGTTGCCGATGCCGGTGACAAAGTGACCGCTGAAGAGAAGACCGCGATCGAAGCCGCCGTGGTTGCCCTTGAAGCTGCCGTCAAAGGCGACGACAAGGCTGCCATCGAAGCGAAGATCGAAGAGCTGTCGAAAGTCTCCGCGCCAGTGGCCCAGAAGATGTATGCCGAGCAGGCCCAGCCAGCTGAAGGTGCTGCGCAGCAAGGCGAATCGGCCGAGAAAGCCGATGACGTGGTCGACGCTGAGTTCGAAGAAGTGAAAGACAACAAGTAAMGKIIGIDLGTTNSCVSVLENGKAKVIENAEGARTTPSIIAYANDGEILVGQSAKRQAVTNPHNTLYAVKRLIGRKFDEEVVQKDIKMVPYKIAKADNGDAWVEVNGQKMAPPQISAEILKKMKKTAEDYLGEPVTEAVITVPAYFNDSQRQATKDAGRIAGLDVKRIINEPTAAALAYGMDKAKGDHTVIVYDLGGGTFDVSVIEIAEVDGEHQFEVLATNGDTFLGGEDFDIRLIDYLVDEFKKESGMNLKGDPLAMQRLKEAAEKAKIELSSSQSTDVNLPYITADATGPKHLNVKISRAKLEALVEDLVQRTIEPCRIAMKDAGIDVGSINDVILVGGQTRMPLVQKLVTDFFGKEARKDVNPDEAVAMGAAIQGAVLAGDVKDVLLLDVSPLTLGIETMGGVMTALIEKNTTIPTKKSQVFSTADDNQSAVTIHVLQGERKQAAQNKSLGKFDLAEIPPAPRGVPQIEVTFDIDANGILHVGAKDKATGKTQSIVIKANSGLSEEEIQQMVRDAEVNAEEDRKFEELASARNQGDALVHSTRKMVADAGDKVTAEEKTAIEAAVVALEAAVKGDDKAAIEAKIEELSKVSAPVAQKMYAEQAQPAEGAAQQGESAEKADDVVDAEFEEVKDNKPGPT0014555_2896DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014555-dnaK-K04043NANA
D1-35_011791125dnaJCOG0484Chaperone protein DnaJATGGCGAAGCGTGATTTTTACGAAGTATTGGGTGTCGAGCGGGGAGCCAGCGAGGCAGAGCTGAAAAAGGCTTACCGTCGCCTGGCGATGAAGCACCACCCAGACCGTAATCCCGGCGATAAAGCGTCGGAAGAGATGTTCAAGGAAGCCAACGAGGCTTACGAAGTTCTGTCCGATTCCAGCAAGCGCGCGGCCTACGACCAATACGGGCATGCCGGTGTCGACCCGAGCATGGGTGGTGGCGGTGCCGGTTTCGGCGGCCAGAACTTCTCCGATATCTTCGGTGATGTGTTCAGTGATTTTTTTGGCGGCGGTCGCGGCGGCGCCCGTGGTGGTGCCCAGCGTGGCAGCGATTTGCGCTACACGCTGGAGCTGAACCTGGAAGAAGCGGTGCGTGGTACTACCGTGAATATCCGGGTGCCGACGCTGGTCAATTGCAAGCCGTGCGACGGTTCGGGCGCCAAGAAGGGCTCCTCGCCGGTCACCTGCCCGACTTGCGGCGGCATCGGCCAGGTTCGCATGCAGCAGGGCTTCTTCTCGGTCCAGCAGACCTGCCCGCGTTGCCATGGCCAGGGCAAGATCATTTCCGATCCGTGCGACTCCTGCCACGGCGAAGGGCGTGTCGAAGAGTACAAGACGCTGTCGGTCAAAGTGCCGGCCGGTGTCGATACCGGCGACCGCATTCGTCTGTCCGGCGAAGGCGAGGCGGGTGCCCAGGGCGGCCCGACCGGCGATCTGTATGTAGTAATCAACGTGCGCGAGCACGCGATCTTCCAGCGTGATGGCAAGCATCTGTTCTGCGAAGTGCCGATCAGTTTTGTTGATGCGGCCTTGGGCGGTGAGCTTGAAATCCCGACCCTTGATGGTCGCGTCAAGCTGAAGATTCCCGAGGGAACTCAAACCGGCAAGCAGTTCCGCATTCGCGGCAAGGGCGTGGCTCCAGTGCGTGGCGGCGGTGCGGGCGACCTGATGTGCCGCGTCGCGGTAGAGACACCGGTCAACCTGAGCCGGCGCCAGCGGGAGCTGTTGGAAGAGTTCCGCAGTTCCCTGGCGGATGACAACAGCCACTCGCCGAAAACCACCGGTTGGTTCGAAGGTGTGAAGCGCTTCTTCGGCGATCTGTAAMAKRDFYEVLGVERGASEAELKKAYRRLAMKHHPDRNPGDKASEEMFKEANEAYEVLSDSSKRAAYDQYGHAGVDPSMGGGGAGFGGQNFSDIFGDVFSDFFGGGRGGARGGAQRGSDLRYTLELNLEEAVRGTTVNIRVPTLVNCKPCDGSGAKKGSSPVTCPTCGGIGQVRMQQGFFSVQQTCPRCHGQGKIISDPCDSCHGEGRVEEYKTLSVKVPAGVDTGDRIRLSGEGEAGAQGGPTGDLYVVINVREHAIFQRDGKHLFCEVPISFVDAALGGELEIPTLDGRVKLKIPEGTQTGKQFRIRGKGVAPVRGGGAGDLMCRVAVETPVNLSRRQRELLEEFRSSLADDNSHSPKTTGWFEGVKRFFGDLPGPT0014545_4854DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014545-dnaJ-K03686NANA
D1-35_01180807dapBCOG02894-hydroxy-tetrahydrodipicolinate reductaseATGCGACGTATAGCTGTGATGGGCGCCGCGGGGCGTATGGGCAAGGCGCTGGTCGAGGCGGTGCAGCACCGCTCGCCGCTCTCTGGCCTGACGGCCGCCATCGTCCGGCCCGACAGTACGCTGGTGGGCGCCGATGCTGGCGAGCTGGCCTCGATCGGACGTATCGGCGTGCCAATGTCCGGTGGGCTGGAAAAGGTACTCGATGAATTTGACGTCCTGATCGACTTCACCCTGCCGGAAGTCATGCTGAAAAACCTCGCCACCTGCCGCAAGGCCGGCAAGGCCATGGTCATCGGCACGACCGGCCTGGACGCCGCGCAGAAGCAATTGTTGGCCGATGCCGGCAAGGACATACCGATCGTGTTCGCGGCGAACTTCAGCGTGGGCGTGAATCTCTCGCTCAAGCTGCTGGACCTGACGGCGCGGGTGTTGGGTGATGATGCGGATATCGAAATCATCGAGGCGCATCACCGTCACAAGATCGATGCGCCTTCGGGAACAGCCTTGCGCATGGGGGAAGTGATTGCCGATGCGCTGGGTCGTGACCTGCAGGAAGTGGCCGTGTATGGGCGCCAGGGGCACACCGGTGCGCGTGAGCGAGACACCATCGGTTTCGCGACCGTGCGTGGTGGCGACGTGGTAGGTGATCACACGGTGCTGTTCGCCACCGAGGGTGAGCGCCTGGAGATTACGCACAAGGCATCGAGTCGGATGACTTTCGCCAAGGGCGCCGTGCGTGCCGCGCTGTGGCTGGATGGTCGCGAGCCCGGCTTGTACGACATGCAGGACGTTCTCGACCTGCGTTGAMRRIAVMGAAGRMGKALVEAVQHRSPLSGLTAAIVRPDSTLVGADAGELASIGRIGVPMSGGLEKVLDEFDVLIDFTLPEVMLKNLATCRKAGKAMVIGTTGLDAAQKQLLADAGKDIPIVFAANFSVGVNLSLKLLDLTARVLGDDADIEIIEAHHRHKIDAPSGTALRMGEVIADALGRDLQEVAVYGRQGHTGARERDTIGFATVRGGDVVGDHTVLFATEGERLEITHKASSRMTFAKGAVRAALWLDGREPGLYDMQDVLDLRNANANANANA
D1-35_011821137carACOG0505Carbamoyl-phosphate synthase small chainTTGACTAAGCCAGCCATACTCGCCCTTGCTGATGGCAGCATTTTTCGCGGCGAAGCCATTGGAGCCGACGGTCAGACCGTTGGTGAGGTGGTGTTTAACACCGCAATGACCGGCTATCAGGAAATTCTTACCGATCCTTCCTACGCCCAGCAAATCGTTACCCTGACTTACCCGCACATTGGCAATACCGGCACCACGCCGGAAGATGCCGAGTCCGATCGTGTCTGGTCCGCTGGCCTGGTCATCCGCGACCTGCCGCTGGTAGCGAGCAACTGGCGTAACAAGATGTCCCTGTCCGACTACCTGAAAGCCAACAACGTCGTGGCGATCGCCGGTATCGACACCCGCCGCCTGACCCGCATCCTGCGGGAAAAAGGCGCGCAGAACGGCTGCATCATGGCCGGTGACAATATTTCCGACGAGGCCGCCATTGCCGCTGCCCAGGGTTTCCCAGGCCTCAAGGGCATGGACCTGGCGAAAGTCGTCAGCACCAAGAAACAGTACGAGTGGCGCTCCTCGGTCTGGGACTTGAAAACCGATAGCCACGCGACGATCGAGGCTTCCGAACTGCCGTATCACGTGGTCGCCTACGATTACGGCGTCAAGCTGAACATCTTGCGCATGCTGGTCGCGCGCGGTTGCCGCGTCACCGTAGTGCCGGCCCAGACCCCGGCGGCTGACGTCCTGGCCCTCAAGCCCGACGGCGTGTTCCTGTCCAACGGTCCGGGTGACCCGGAGCCATGCGACTACGCGATCCAGGCGATCAAGGACGTGCTGGAAACCGAGATCCCGGTATTCGGTATCTGCCTGGGGCACCAGTTGCTGGCCCTGGCTTCGGGCGCCAAGACCCTGAAAATGGGCCACGGCCACCACGGTGCCAACCACCCGGTCCAGGACCTGGATACCGGTGTCGTCATGATCACCAGCCAGAACCACGGTTTTGCGGTTGACGAGGCGACCCTGCCGGCCAACGTACGGGCCATCCACAAGTCGCTGTTCGACGGCACGCTGCAAGGCATCGAGCGTACCGACAAGAGCGCGTTCAGCTTCCAGGGCCACCCTGAGGCGAGCCCGGGCCCGAACGATGTGGCGCCGCTGTTCGATCGCTTCATCAATGAGATGGCCAAGCGACGCTGAMTKPAILALADGSIFRGEAIGADGQTVGEVVFNTAMTGYQEILTDPSYAQQIVTLTYPHIGNTGTTPEDAESDRVWSAGLVIRDLPLVASNWRNKMSLSDYLKANNVVAIAGIDTRRLTRILREKGAQNGCIMAGDNISDEAAIAAAQGFPGLKGMDLAKVVSTKKQYEWRSSVWDLKTDSHATIEASELPYHVVAYDYGVKLNILRMLVARGCRVTVVPAQTPAADVLALKPDGVFLSNGPGDPEPCDYAIQAIKDVLETEIPVFGICLGHQLLALASGAKTLKMGHGHHGANHPVQDLDTGVVMITSQNHGFAVDEATLPANVRAIHKSLFDGTLQGIERTDKSAFSFQGHPEASPGPNDVAPLFDRFINEMAKRRPGPT0021155_2770DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021155-carA-K01956NANA
D1-35_011833222carB_1COG0458Carbamoyl-phosphate synthase large chainATGCCAAAACGTACAGACATAAAAAGCATCCTGATTCTCGGCGCTGGCCCGATCGTGATCGGCCAGGCCTGCGAATTCGACTACTCCGGCGCCCAGGCTTGCAAGGCCCTGCGCGAGGAGGGTTATCGCGTCATCCTGGTGAACTCCAACCCGGCCACCATCATGACCGACCCGTCGATGGCCGACGCCACCTACATCGAACCGATCAAATGGCAGACCGTTGCCAAGATCATCGAGAAGGAGCGCCCGGACGCATTGCTGCCGACCATGGGTGGCCAGACCGCACTGAACTGCGCTCTGGACCTGGAGCGCGAAGGCGTCCTGGAGAAGTTCGGTGTGGAAATGATCGGCGCCAATGCCGACACCATCGACAAGGCCGAAGATCGTTCGCGCTTCGACAAGGCGATGAAATCCATCGGCCTGGACTGCCCACGTTCGGGCATCGCCCACAGCATGGAAGAAGCCAACGCCGTGCTGGAACGCCTCGGCTTCCCTTGCATCATCCGTCCTTCCTTCACCATGGGCGGCACGGGTGGTGGCATCGCCTACAACCGTGAAGAATTTGAAGAAATCTGCGCCCGTGGCCTGGACCTGTCGCCAACCAAGGAACTGCTGATCGACGAGTCCCTGATCGGTTGGAAAGAATACGAAATGGAAGTTGTCCGGGACAAAAAGGACAACTGCATCATCGTTTGCTCCATCGAAAACTTCGACCCGATGGGCGTGCACACCGGCGACTCGATCACCGTTGCGCCGGCCCAGACCCTGACCGACAAGGAATATCAGATCCTGCGTAACGCCTCCCTGGCGGTACTGCGCGAGATCGGCGTGGAAACCGGTGGCTCCAACGTCCAGTTCGGCATCTGCCCGAACACTGGCCGCATGGTGGTCATCGAGATGAACCCGCGCGTATCCCGTTCGTCGGCCCTGGCCTCGAAGGCCACCGGTTTCCCGATCGCCAAGGTCGCCGCCAAGCTGGCCGTCGGCTACACCCTGGACGAACTGTCGAACGACATCACCGGCGGCAAGACTCCGGCGTCCTTCGAGCCGTCCATCGACTACGTGGTGACCAAGCTGCCGCGTTTCGCCTTCGAAAAATTCGCCAAGGCTGACGCGCGCCTGACCACCCAGATGAAATCGGTGGGTGAAGTCATGGCCATCGGCCGGACTTTCCAGGAATCCCTGCAAAAAGCCCTTCGTGGCCTGGAAGTGGGTGTCTGCGGCCTCGATCCGAAGCTGGACCTGAGCAAGCCGGAAAGCATGAGCGAGCTCAAGCGCGAGCTGACCGTGCCGGGCGCCGAGCGTATCTGGTACGTGGCGGATGCCTTCCGCGCCGGCATGACTGTCGAGCAGATTTTCGACATGAACATGATCGACCCTTGGTTCCTGGTGCAGATCGAAGATCTGATCAAGGAAGAAGAGAAGGTCAAGACCATGGGCATGTCCAGCATCGATCGCAACACGATGCTGGGTCTCAAGCGCAAGGGCTTCTCCGACATGCGCCTGGCCAAGCTGCTGGGTGTCACCGAAAAGAGCCTGCGCACTCACCGCCACAAGCTGGAAGTCTTCCCGGTCTACAAGCGTGTCGACACCTGCGCGGCCGAGTTCGCCACCGACACTGCCTACCTGTACTCCACGTACGAAGAAGAGTGCGAAGCCGCGCCTTCGACCCGGGACAAGATCATGATCCTGGGCGGCGGTCCGAACCGGATCGGCCAGGGCATCGAGTTCGACTACTGCTGCGTCCACGCGGCACTGGCGCTGCGCGACGATGGTTACGAAACCATCATGGTCAACTGCAACCCAGAGACCGTTTCCACCGACTACGACACCTCTGATCGCCTGTACTTCGAGCCAGTGACCCTGGAGGACGTGCTGGAAATCGTCCGTGTCGAGAAGCCAAAAGGCGTGATCGTCCAGTACGGCGGGCAGACCCCTCTGAAACTGGCCCGCGCCCTCGAAGCCGCCGGCGTGCCGATCATCGGCACCAGCCCGGATGCCATCGACCGCGCCGAAGACCGCGAGCGCTTCCAGCAGATGGTCGAGCGCCTGAACCTGCGCCAGCCACCAAACGCCACCGTGCGCAGCGAAGACGAAGCGATTCGTGCAGCGGCGAAGATCGGTTATCCACTGGTGGTGCGCCCGTCCTACGTACTGGGCGGTCGTGCGATGGAAATCGTTTACCAGGAAGACGAACTCAAGCGCTACCTGCGCGAAGCGGTCCAGGTGTCCAATGACAGCCCGGTTCTGCTCGACCACTTCCTCAACTGCGCCATCGAAATGGACGTGGACGCGGTCTGCGACGGCAAGGATGTCGTGATCGGCGCAATCATGCAGCACATCGAGCAGGCAGGCGTTCACTCCGGTGACTCCGCCTGTTCGCTGCCGCCGTATTCGTTGCCGGCTCACATCCAGGACGAGATGCGTGAACAGGTCAAGAAAATGGCCCTGGAGCTCGGGGTTGTCGGCCTGATGAACGTGCAGCTGGCGCTTCAGGGCGAAGACATCTATGTCATCGAAGTCAACCCGCGCGCCTCCCGGACCGTACCGTTCGTGTCCAAGTGCATCGGTGTTTCCCTTGCGATGATCGCTGCTCGCGTGATGGCCGGTAAAACCTTGGCGGAGCTGAACTTTACCAAGGAAATCATCCCGAACTTCTACAGTGTGAAAGAGGCGGTGTTCCCATTCGCCAAATTCCCTGGCGTTGACCCGATCCTCGGCCCGGAAATGAAATCCACCGGTGAAGTGATGGGCGTTGGCGACACCTTCGGCGAGGCCTTTGCCAAGGCCCAGATGGGCGCCAGCGAAGTCCTGCCAACGGGCGGCACGGCGTTCATCAGCGTGCGTGATGACGACAAGCCACTGGTTGCGGGCGTGGCCCGTGATCTGATCAACTTGGGTTTCGAAGTGGTCGCCACTGCCGGTACCGCCAAGCTGATCGAGGCGGCGGGCCTGAAAGTGCGCCGCGTGAACAAGGTGACCGAGGGTCGTCCGCACGTGGTCGACATGATCAAGAATGACGAAGTCACGCTGATCATCAACACCACCGAAGGCCGTCAATCGATCGCCGATTCCTATTCCATTCGTCGCAATGCGCTGCAGCATAAGATCTACTGCACCACGACTATTGCTGCCGGCGAAGCGATCTGCGAAGCGCTCAAGTTCGGACCCGAGAAGACCGTACGTCGCTTGCAGGATCTACATGCAGGATTGAAGGCATGAMPKRTDIKSILILGAGPIVIGQACEFDYSGAQACKALREEGYRVILVNSNPATIMTDPSMADATYIEPIKWQTVAKIIEKERPDALLPTMGGQTALNCALDLEREGVLEKFGVEMIGANADTIDKAEDRSRFDKAMKSIGLDCPRSGIAHSMEEANAVLERLGFPCIIRPSFTMGGTGGGIAYNREEFEEICARGLDLSPTKELLIDESLIGWKEYEMEVVRDKKDNCIIVCSIENFDPMGVHTGDSITVAPAQTLTDKEYQILRNASLAVLREIGVETGGSNVQFGICPNTGRMVVIEMNPRVSRSSALASKATGFPIAKVAAKLAVGYTLDELSNDITGGKTPASFEPSIDYVVTKLPRFAFEKFAKADARLTTQMKSVGEVMAIGRTFQESLQKALRGLEVGVCGLDPKLDLSKPESMSELKRELTVPGAERIWYVADAFRAGMTVEQIFDMNMIDPWFLVQIEDLIKEEEKVKTMGMSSIDRNTMLGLKRKGFSDMRLAKLLGVTEKSLRTHRHKLEVFPVYKRVDTCAAEFATDTAYLYSTYEEECEAAPSTRDKIMILGGGPNRIGQGIEFDYCCVHAALALRDDGYETIMVNCNPETVSTDYDTSDRLYFEPVTLEDVLEIVRVEKPKGVIVQYGGQTPLKLARALEAAGVPIIGTSPDAIDRAEDRERFQQMVERLNLRQPPNATVRSEDEAIRAAAKIGYPLVVRPSYVLGGRAMEIVYQEDELKRYLREAVQVSNDSPVLLDHFLNCAIEMDVDAVCDGKDVVIGAIMQHIEQAGVHSGDSACSLPPYSLPAHIQDEMREQVKKMALELGVVGLMNVQLALQGEDIYVIEVNPRASRTVPFVSKCIGVSLAMIAARVMAGKTLAELNFTKEIIPNFYSVKEAVFPFAKFPGVDPILGPEMKSTGEVMGVGDTFGEAFAKAQMGASEVLPTGGTAFISVRDDDKPLVAGVARDLINLGFEVVATAGTAKLIEAAGLKVRRVNKVTEGRPHVVDMIKNDEVTLIINTTEGRQSIADSYSIRRNALQHKIYCTTTIAAGEAICEALKFGPEKTVRRLQDLHAGLKAPGPT0021150_3562DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021150-carB-K01955NANA
D1-35_01184483greACOG0782Transcription elongation factor GreAATGAGCATAACCAAGTACCCGATGACTGTTCAGGGCGCGAAGGCCCTGGAGGAAGAGCACGCTTTCCTGACCAAGGTCGAGCGCCCGCGCTTGAGCCAGGCGATCGGTGAAGCCCGTGAACTGGGCGACCTGAAGGAAAACGCCGAATACCACGCTGCCCGAGAGGAGCAGGGCATGGTCGAGGCGCGTGTCCGTGACATCGAAGGCCGCATGCAGAATGCGGTGATCATCGACGTCACGACGATTCCGCACACTGGCAAAGTGATTTTCGGCACTACCGTGGAAATCGCCAACGTCGAGACTGATGAAAGCGTCACTTACCAGATCGTTGGCGAGGACGAGGCGGACATCAAGCTCGGCAAGATTTCAGTCGGCTCGCCTATCGCCCGCGCCTTGATTGCCAAGGAAGAGGGTGATGTGGTTGCCGTGAAGACACCTGGCGGTGTCATTGAGTACGAGATTGTCGAAGTCCGTCATATCTGAMSITKYPMTVQGAKALEEEHAFLTKVERPRLSQAIGEARELGDLKENAEYHAAREEQGMVEARVRDIEGRMQNAVIIDVTTIPHTGKVIFGTTVEIANVETDESVTYQIVGEDEADIKLGKISVGSPIARALIAKEEGDVVAVKTPGGVIEYEIVEVRHIPGPT0030495_1175PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-TRANSCRIPTIONAL_CONTROLPUTATIVE-TRANSCRIPTIONAL_CONTROL-1,PGPT0030495-greA-K03624
D1-35_01185405hypothetical proteinATGATCTGGCAGCTCACCCAGATGTTATGGGTGGGCGGCGTCTGGTTGTTGCATATCGGTCTGCTGCCGGTGCTGGGTCGGATTGGCCTGGCACCGCTGCTCATCAATGAAATCGCGGGTATGCTGACGGCGCTGCTGGTGGGCTTTTCAGCAGTGTGCGTGATATTCCAGGCTTTGGTGCTGGTTCAGGCCGAGGGTCTTGGCAGTCTATGGCGCGACATTCGTGGGCAATTGCTGCTCATGGCCTTGTACGCTTGCGGGATGTTCCTGGCGGTGCGTCTCGGCTGGCCGGAGGCGAGCCAATGGCAGGTATTCAGCTATCTGGTGCTGGGTTTTTCCGGCCTGGTGCTGGTGTTGCAGCCGGTTCCCGGATGGAGCGGCAGGGTGCGCGAAGCACACCCTTGAMIWQLTQMLWVGGVWLLHIGLLPVLGRIGLAPLLINEIAGMLTALLVGFSAVCVIFQALVLVQAEGLGSLWRDIRGQLLLMALYACGMFLAVRLGWPEASQWQVFSYLVLGFSGLVLVLQPVPGWSGRVREAHPNANANANANA
D1-35_01186309yhbYCOG1534RNA-binding protein YhbYATGCCGCTCACTCAAGAGCAGAAGAAACAATACAAATCCATCGGCCACCATCTGAAACCGGTTTTGACTGTGGCTGACAACGGTTTGACTGAAGGTGTCCTCGCTGAACTGGAACGCGCCCTCGGCGATCACGAGCTGATCAAGATCAAGCTCAACATCCTCGACCGCGAAGCCCGCCTGGCTGCCGTTGCCGAGCTGTGCAAGGTCGGCAAGGCTGACCTGGTCCAGGTCATCGGCAAGATGGCGCTGATTTATCGCAAGAATTTCAGCGTCAACAAGCAACTGTCGAACGTTCACCGCTTCAAATGAMPLTQEQKKQYKSIGHHLKPVLTVADNGLTEGVLAELERALGDHELIKIKLNILDREARLAAVAELCKVGKADLVQVIGKMALIYRKNFSVNKQLSNVHRFKNANANANANA
D1-35_01187651rlmECOG0293Ribosomal RNA large subunit methyltransferase EGTGGCCCGTTCCAAGACTAGCCAGAACTGGCTCAGAGAGCATTTCAACGATCCGTACGTCAAAATGGCGCAAAAAGACGGTTATCGCTCGCGCGCCAGCTATAAATTGCTGGAGATCCAGGAGAAGGATCGCCTGATTCGTCCTGGCATGACCGTGATCGACCTCGGTGCGGCGCCGGGTGGCTGGTCGCAGGTGACCAGTCGTCTGATTGGCGGCCAGGGGCGATTGATCGCTTCAGACATCCTGGAAATGGACAGCATCCCTGACGTGACCTTTATTCAGGGTGATTTCACCGAGGACGCCGTATTGGCGCAAATCCTCGAGGCCGTCGGAAATACGCAAGTCGACCTTGTGATTTCCGATATGGCCCCCAATATGAGTGGATTGGCGGCTGTCGACATGCCTCGTGCAATGTTCCTCAGCGAGCTGGCCCTTGATCTGGCGGGGCGGGTTCTGCGTCCGGGTGGTGATTTCCTGATCAAAGTCTTCCAGGGTGAAGGCTTCGATGAATACCACAAGGGCATGCGCAAATTGTTCGACAAGGTGCAGATGCGCAAGCCTTTGTCGTCCCGCGACCGCTCTCGCGAGCAGTATCTGCTGGCGCGAGGGTTTCGCGGAATCGAAGGCGCTTCCAGTGATGAGCGGCTTTGAMARSKTSQNWLREHFNDPYVKMAQKDGYRSRASYKLLEIQEKDRLIRPGMTVIDLGAAPGGWSQVTSRLIGGQGRLIASDILEMDSIPDVTFIQGDFTEDAVLAQILEAVGNTQVDLVISDMAPNMSGLAAVDMPRAMFLSELALDLAGRVLRPGGDFLIKVFQGEGFDEYHKGMRKLFDKVQMRKPLSSRDRSREQYLLARGFRGIEGASSDERLNANANANANA
D1-35_011881923ftsHCOG0465ATP-dependent zinc metalloprotease FtsHTTGAACGATATGGCAAAGAATCTGATCCTGTGGTTGATCATCGCCGCTGTCCTTGTGACCGTGATGAACAACTTCTCCAGCCCTAACGAGCCGCAGACCCTCAACTATTCCGATTTCCTCCAGCAGGTCAAGGAAGGCAAGGTCGAGCGCGTAGCCGTTGATGGTTATGTGATTACCGGCAAGCGCAGCGATGGCGACAGCTTCAAGACCATTCGTCCGGCGATCCAGGACAATGGTCTGATCGGCGACCTGGTGGACAATCACGTCGTGATCGAAGGCAAGCAGCCTGAGCAGCAAAGTATCTGGACCCAGCTCCTGGTCGCGAGCTTCCCGATCCTGGTGATCATCGCGGTGTTCATGTTCTTCATGCGCCAGATGCAGGGCGGGGCTGGAGGGAAGGGCGGGCCGATGAGTTTCGGCAAGAGCAAGGCCCGACTATTGTCCGAAGATCAGGTCAAGACCACCCTGGCTGACGTCGCCGGTTGCGATGAAGCCAAGGAAGAGGTCGGCGAGCTGGTTGAATTCCTGCGTGATCCGGGCAAGTTCCAGCGCCTGGGCGGACGCATTCCCCGCGGCGTACTGATGGTGGGGCCACCTGGTACCGGTAAAACCTTGCTCGCCAAGGCAATCGCCGGCGAAGCCAAGGTTCCGTTCTTCACCATTTCCGGTTCCGATTTCGTCGAGATGTTTGTCGGCGTCGGTGCCAGCCGTGTTCGCGACATGTTCGAACAGGCGAAAAAGCACGCGCCATGCATCATCTTCATCGACGAGATCGACGCCGTTGGTCGCCACCGTGGTGCCGGCATGGGCGGCGGTCACGATGAGCGCGAGCAGACCCTCAACCAATTGCTGGTCGAGATGGACGGTTTCGAGATGAATGACGGCATCATCGTGATCGCCGCCACCAACCGTCCTGACGTGCTCGACCCTGCGCTGCTGCGTCCAGGTCGTTTTGACCGTCAGGTCGTGGTGGGGCTGCCGGACATTCGTGGTCGCGAGCAGATCCTGAAGGTTCACATGCGCAAGGTGCCAATGGGGGATGACGTTGCTCCGGCCGTCATCGCTCGCGGCACACCGGGTTTCTCCGGTGCTGACCTGGCGAACCTGGTAAACGAAGCGTCGCTGTTTGCTGCTCGTTCCGGCAAGCGTGTCGTGGAAATGAAGGAGTTCGAACTCGCCAAGGACAAGATCATGATGGGCGCCGAGCGCAAATCCATGGTCATGTCGGAAAAGGAAAAGCAGAACACCGCTTACCACGAGGCAGGACATGCCATCGTCGGTCGTGTCGTGCCTGAGCATGATCCGGTGTACAAGGTTTCGATCATTCCGCGCGGTCGTGCGCTGGGTGTGACGATGTTCCTGCCGGAAGAGGACCGTTACAGCCTGTCCAAGCGCGCGCTGATCAGCCAGATCTGTTCGCTGTACGGTGGCCGTATCGCCGAGGAAATGACGTTGGGCTTTGACGGCGTGACGACAGGTGCCTCCAACGACATCATGCGCGCAAGCCAGATTGCCCGGAACATGGTTACCAAGTGGGGCTTGTCCGAAAAGCTTGGTCCGTTGATGTATGCCGAGGAAGAGGGCGAAGTGTTCCTGGGTCGCGGCGGCGGTGGCCAGCATGCAAGCTTCTCTGGTGAGACGGCCAAGCTGATCGACTCGGAAGTTCGCAGCATCATTGACCAGTGCTACGGCACGGCCAAGCAGATCCTTACGGACAACCGCGACAAACTGGACGCGATGGCTGACGCACTGATGAAATATGAAACCATCGATGCTGAGCAGATCGACGACATCATGGCCGGCCGCACACCTCGTGAGCCTCGTGACTGGTCCGGTGGTGGCACGGGTACCTCCGGTACGCCGCCAGCGGTACAGGGTGAGCGTCCCGAGACGCCCATCGGTGGTCCGGCCGCCGACGTCTAAMNDMAKNLILWLIIAAVLVTVMNNFSSPNEPQTLNYSDFLQQVKEGKVERVAVDGYVITGKRSDGDSFKTIRPAIQDNGLIGDLVDNHVVIEGKQPEQQSIWTQLLVASFPILVIIAVFMFFMRQMQGGAGGKGGPMSFGKSKARLLSEDQVKTTLADVAGCDEAKEEVGELVEFLRDPGKFQRLGGRIPRGVLMVGPPGTGKTLLAKAIAGEAKVPFFTISGSDFVEMFVGVGASRVRDMFEQAKKHAPCIIFIDEIDAVGRHRGAGMGGGHDEREQTLNQLLVEMDGFEMNDGIIVIAATNRPDVLDPALLRPGRFDRQVVVGLPDIRGREQILKVHMRKVPMGDDVAPAVIARGTPGFSGADLANLVNEASLFAARSGKRVVEMKEFELAKDKIMMGAERKSMVMSEKEKQNTAYHEAGHAIVGRVVPEHDPVYKVSIIPRGRALGVTMFLPEEDRYSLSKRALISQICSLYGGRIAEEMTLGFDGVTTGASNDIMRASQIARNMVTKWGLSEKLGPLMYAEEEGEVFLGRGGGGQHASFSGETAKLIDSEVRSIIDQCYGTAKQILTDNRDKLDAMADALMKYETIDAEQIDDIMAGRTPREPRDWSGGGTGTSGTPPAVQGERPETPIGGPAADVNANANANANA
D1-35_01189852folPCOG0294Dihydropteroate synthaseATGACTTCTGTTCAGTCCTCTAACCGGTTGCCTTGCGGCAACCGGTTTCTTGATTTGGCCCGTGCGCACGTCATGGGCATTCTTAATGTCACTCCCGATTCCTTTTCCGATGGTGGAAGATTCTGCCAGCTCGACGCTGCATTGCGGCATGCCGAGGCCATGGTGGCAGCGGGCGCAACGCTGATCGATGTCGGCGGTGAATCGACCCGTCCCGGTGCGCGGGCAGTATCACCTACCGAGGAGCTGGAGCGAGTGGCGCCGATTGTCGAGCGTATACACCGCGAGCTTGATGTCATCATTTCGGTTGATACCTCTACGCCAGCGGTCATGCGCGAGGCAGCGCGGCTGGGGGCGGGGCTGATCAATGATGTCCGGTCCTTGCGGCGCGACGGCGCGCTGGACGCCGCGGCGGCAACCGGCTTGCCGGTGTGTCTGATGCATATGCTCGGCGAGCCGGGGACCATGCAGGACGATCCGCACTATGATGATGTGACCAGGGAAGTGGCCGGGTTCCTCGCGGAGCGCCTGGACCAGTGTGCTGCCGTGGGCATCCCTGCCGAGCGGGTCATCCTTGATCCCGGGTTCGGCTTTGCCAAGACCCTGGCTCACAACCTGAGCCTGTTCAAGCATATGGAAGCCTTGCATGCGCTGGGGCGGCCCCTGTTGGTTGGCGTCTCGCGAAAGAGCATGATAGGCAATGCCTTGGGCCGACCGGTGGGTGAGCGCTTGTATGGTGGTCTCGCCCTGGCTGCCTTGGCCCTTACCAAAGGTGCGCGCATTTTGCGCGTGCATGATGTAGCCGAAACGATGGATGTCGTGCGGATGATCGACGCAGTGGATTCAGCCGAATAAMTSVQSSNRLPCGNRFLDLARAHVMGILNVTPDSFSDGGRFCQLDAALRHAEAMVAAGATLIDVGGESTRPGARAVSPTEELERVAPIVERIHRELDVIISVDTSTPAVMREAARLGAGLINDVRSLRRDGALDAAAATGLPVCLMHMLGEPGTMQDDPHYDDVTREVAGFLAERLDQCAAVGIPAERVILDPGFGFAKTLAHNLSLFKHMEALHALGRPLLVGVSRKSMIGNALGRPVGERLYGGLALAALALTKGARILRVHDVAETMDVVRMIDAVDSAEPGPT0007915_2716DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007915-folP-K00796NANA
D1-35_011901338glmMCOG1109Phosphoglucosamine mutaseATGAGCAAGAAATATTTTGGCACCGACGGTATTCGTGGTCGGGTCGGCGAATACCCTATTACCCCCGATTTCATGCTCAAGCTCGGCTGGGCCGCCGGCATGGCGTTCCGCAAGATGGGCGCATGCAAGGTGCTGGTCGGCAAGGACACGCGGATTTCCGGCTACATGTTCGAATCGGCTCTCGAGGCCGGCCTTACGTCGGCGGGTGCCGATGTGATGTTGCTGGGCCCGATGCCGACGCCGGCCATTGCCTACCTGACCCGTACATTCCAGGCCCAGGCGGGTATTGTGATCAGTGCTTCGCACAATCCTCATGACGACAACGGCATCAAGTTTTTCTCTGGCAAGGGCACCAAGCTGCCGGATGAAATCGAGCTGATGATCGAAGAGCTGCTGGATGCGCCGATGACGGTGGTCGAGTCGAGCAAGATCGGCAAGGTGTCGCGGATCAACGATGCATCGGGCCGTTATATCGAGTTCTGCAAAGGCAGTGTTCCAACCGGTACGAGCTTTTCCGGTCTGAAAATCGTTGTCGATTGCGCGCATGGCGCAACCTATAAGGTCGCGCCCAGCGTTTTTCGCGAATTGGGCGCCGAGGTGGTGGTGCTCTCTGCCCAGCCCAACGGGCTGAACATCAACCACAATTGCGGCTCGACCCATACCGAGGCATTGCAGGCTGCGGTCCTGGCCGAACATGCCGATCTCGGGATCGCTTTCGACGGTGACGGTGACCGGGTGTTGATGGTCGACCATACCGGTACGGTCGTTGATGGTGATGAGTTGCTGTTCATCATCGCGCGCGATCTGCATGGTCGCGGCAAGCTGCAGGGCGGCGTGGTTGGTACGTTGATGAGCAACCTCGGGCTTGAATTGGCCTTGGCGGATCTAGATATCCCATTCGTCCGGGCTAATGTCGGCGACCGCTACGTGATCTCGGAATTGCTGGAGCGCAACTGGGTGATCGGAGGCGAGAATTCCGGCCACATCGTCTGCTTCGACCATACCACCACCGGTGATGCGATCATCGCTGCGCTGCAAGTGCTGATGGCGCTCAAGGCCCGTAACGAAGGGCTGGCGCAGTCGCGCCAGGCGCTGCGCAAATGTCCGCAAGTATTGATCAATGTGCGTTTTGGTGGAGGTGTCAGTCCTCTTGAACATGCGACGGTCAAGCAGGCCAGCGAGCGCATAACACAGGCAATGGCCGGGCGTGGACGGGTGTTGTTGCGCAAGTCTGGCACGGAGCCTTTGGTGCGCGTCATGGTCGAAGGCGAGGATGAAGTACAGGTCCGCGGTTATGCCGAAGAGCTGGCGAAGCTGGTTACTGAAGTTTCTGCCTGAMSKKYFGTDGIRGRVGEYPITPDFMLKLGWAAGMAFRKMGACKVLVGKDTRISGYMFESALEAGLTSAGADVMLLGPMPTPAIAYLTRTFQAQAGIVISASHNPHDDNGIKFFSGKGTKLPDEIELMIEELLDAPMTVVESSKIGKVSRINDASGRYIEFCKGSVPTGTSFSGLKIVVDCAHGATYKVAPSVFRELGAEVVVLSAQPNGLNINHNCGSTHTEALQAAVLAEHADLGIAFDGDGDRVLMVDHTGTVVDGDELLFIIARDLHGRGKLQGGVVGTLMSNLGLELALADLDIPFVRANVGDRYVISELLERNWVIGGENSGHIVCFDHTTTGDAIIAALQVLMALKARNEGLAQSRQALRKCPQVLINVRFGGGVSPLEHATVKQASERITQAMAGRGRVLLRKSGTEPLVRVMVEGEDEVQVRGYAEELAKLVTEVSAPGPT0018950_3563DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018950-glmM-K03431NANA
D1-35_01191756tpiACOG0149Triosephosphate isomeraseATGCGTCGCCCTATGGTAGCTGGTAACTGGAAGATGCACGGTACCCGCGCCAGCGTCGCTGAGCTGATCAAGGGCCTTCGTAACCTGGCCTTGCCAAGCGGTGTTGATGTGGCGGTGTTCCCGCCTTGCCTGTATATCAACCAAGTGGTTGATGGCTTGAAAGGCAAGTCGATTTCGGTCGGTGCACAAAACTCTGCAGTGGAATCCATGCAGGGTGCGTTGACCGGTGAAATCGCGCCGAGTCAGCTGGTGGACGCAGGGTGTTCACTGGTCCTGGTCGGTCATTCCGAGCGTCGCCTGATCATGGGCGAGCAGGACAAGACCCTGATTCGCAAATTTGCCGCGGCACAGGCTTGTGGTCTGATTCCGGTGTTGTGCGTAGGGGAGACCCTCGAACAGCGTGAGGCAGGCAAGACTCTCGAAGTTGTCGCTCGCCAGTTGGGCAGCATCATCGAGGACCTGGGTGTCGGTGCGTTTGCAAAGGCAGTCATCGCTTACGAGCCGGTCTGGGCCATTGGCACCGGGCTGACTGCTTCGCCTCAACAAGCGCAGGATGTGCACGCCGCCATCCGCGCGCAGTTGGCGCAAGAAAATTCTGAAGTGGCACGAGGTGTGCGGCTTCTATACGGCGGCAGCGTGAAGGCGGCCAATGCGGTCGAACTGTTCGGCATGCCGGATATCGATGGGGGGCTCATTGGTGGAGCGTCCCTGAATGCAGATGAGTTCGGTGCGATCTGTCGCGCCGCGGGAAACTGAMRRPMVAGNWKMHGTRASVAELIKGLRNLALPSGVDVAVFPPCLYINQVVDGLKGKSISVGAQNSAVESMQGALTGEIAPSQLVDAGCSLVLVGHSERRLIMGEQDKTLIRKFAAAQACGLIPVLCVGETLEQREAGKTLEVVARQLGSIIEDLGVGAFAKAVIAYEPVWAIGTGLTASPQQAQDVHAAIRAQLAQENSEVARGVRLLYGGSVKAANAVELFGMPDIDGGLIGGASLNADEFGAICRAAGNPGPT0017995_3593DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017995-tpiA-K01803NANA
D1-35_01194477rimPCOG0779Ribosome maturation factor RimPATGCACGAGGGGGTTCAGGTGTCGAGCAAGCTAGAACAGTTGCAGGCCTTGTTGGCCCCGGTGGTCGTGGCCCTTGGCTATGAATGCTGGGGTATTGAGTTTTCGGCTCAAGGTCGCCACTCACTGTTGCGCGTTTATATCGATAAGGAAGGCGGCGTGTTGGTGGATGATTGCGCCATCGTCAGCCGTCAGATCAGTGGTGTGCTGGATGTTGAAGATCCCATCACCTCCGAATACACCCTTGAAGTTTCCTCGCCTGGCATGGAACGCCCTCTGTTCACTCTTGAACAGTTCGCTTTGTTTGCCGGTGAACAAGTGAAGATCAAGCTGCGCTCGCCCTTTGAAGGCCGACGCAACTTCCAAGGCCTTCTGCGCGGTGTGGAAGAACAGGATGTCGTGGTGCAGGTAGATGACCATGAGTTTCTGTTGCCGATCGATATGATCGACAAGGCCAACATTATTCCCAGTTTTGACTGAMHEGVQVSSKLEQLQALLAPVVVALGYECWGIEFSAQGRHSLLRVYIDKEGGVLVDDCAIVSRQISGVLDVEDPITSEYTLEVSSPGMERPLFTLEQFALFAGEQVKIKLRSPFEGRRNFQGLLRGVEEQDVVVQVDDHEFLLPIDMIDKANIIPSFDNANANANANA
D1-35_011951482nusACOG0195Transcription termination/antitermination protein NusAATGAGCAAAGAAGTACTGCTGGTTGTTGAGTCGGTATCCAATGAAAAGGGCGTACCGGCTAACGTTATTTTTGAAGCACTGGAGCTGGCCCTGGCCACTGCTACCAAGAAGCGCTTCGAAGACGAAGTTGATTTGCGTGTGGAGATCAATCGCCACACCGGTGCCTACGAGACTTTCCGTCGCTGGACGGTAGTCGAGGAGGCCGACCTGGATGATCCGGCTATCGAAACCTGGCCGAGCAAGGTTGCAGAAACGCATCCTGCCGCCAAGGTGGGTGATGTCGTCGAAGAAAAAATCGAGTCCATCGAGTTTGGCCGCATTGCTGCACAGACTGCCAAGCAGGTCATTGTGCAGAAAGTTCGCGAAGCCGAGCGCGCGCAAGTCGTCGATGCCTATCGCGAGCGCCTGGGAGAGATCATCTCCGGCACCGTTAAAAAAGTCACCCGCGACAACGTGATCGTTGATCTGGGCAACAATGCCGAAGCATTGCTGGCCCGTGAAGACATCATTTCTCGCGAAACTTTCCGTGTTGGCGTGCGGTTGCGTGCGCTGCTCAAGGAAATCCGCACCGAGAACCGCGGCCCGCAGCTGATCCTGTCGCGTACCGCGCCGGAAATGCTGATCGAGTTGTTCCGCATCGAAGTGCCGGAAATTGCTGAAGGCCTGATCGAAGTAATGGCCGCCTCCCGTGATCCGGGTTCGCGGGCCAAGATCGCGGTCCGCTCCAAGGACAAGCGCATCGACCCGCAAGGTGCCTGCATCGGCATGCGTGGTTCGCGCGTCCAGGCCGTATCCGGCGAGTTGGGCGGCGAGCGTGTGGATATCGTCCTGTGGGACGACAACCCGGCTCAGTTCGTGATCAATGCCATGTCGCCCGCTGAAGTGGCGGCAATTATCGTCGACGAGGATGCCCATGCCATGGACATCGCCGTTGGCGCAGACAATCTCGCTCAGGCCATCGGTCGCGGTGGTCAGAACGTGCGTCTGGCTAGCCAATTGACTGGCTGGACCCTGAACGTGATGACCGAATCGGACATCCAGGCCAAGCAGCAAGCTGAAACCGGCGACATCCTGCGCAACTTCATCGAAGAGCTTGAAGTCGATGAAGAGCTGGCGCAGGTGCTGGTGGATGAAGGCTTTACCAGCCTGGAAGAGATTGCCTACGTACCGGTGGAGGAAATGCTCAACATCGACGGCTTTGACGAGGACATCGTCAACGAGCTTCGCGCTCGTGCCAAGGATCGCTTGTTGACCAAAGCCATCGCTACTGAGGAAAAGCTGGCAGACGCCCATCCGGCCGAAGACCTGCTCTCGCTTGAGGGCATGGACAAGGATTTGGCGATGGAACTGGCGGTGCGCGGCGTAATTACCCGCGAAGACCTGGCCGAGCAGTCTATTGACGATCTGCTCGACATCGACGGCATTGACGATGATCGTGCCGGCAAGTTGATCATGGCCGCCCGAGCCCACTGGTTCGAGTAAMSKEVLLVVESVSNEKGVPANVIFEALELALATATKKRFEDEVDLRVEINRHTGAYETFRRWTVVEEADLDDPAIETWPSKVAETHPAAKVGDVVEEKIESIEFGRIAAQTAKQVIVQKVREAERAQVVDAYRERLGEIISGTVKKVTRDNVIVDLGNNAEALLAREDIISRETFRVGVRLRALLKEIRTENRGPQLILSRTAPEMLIELFRIEVPEIAEGLIEVMAASRDPGSRAKIAVRSKDKRIDPQGACIGMRGSRVQAVSGELGGERVDIVLWDDNPAQFVINAMSPAEVAAIIVDEDAHAMDIAVGADNLAQAIGRGGQNVRLASQLTGWTLNVMTESDIQAKQQAETGDILRNFIEELEVDEELAQVLVDEGFTSLEEIAYVPVEEMLNIDGFDEDIVNELRARAKDRLLTKAIATEEKLADAHPAEDLLSLEGMDKDLAMELAVRGVITREDLAEQSIDDLLDIDGIDDDRAGKLIMAARAHWFENANANANANA
D1-35_011962520infBCOG0532Translation initiation factor IF-2ATGACGCAAGTCACGGTGAAACAACTGGCCGATGAGGTCAAAACACCGGTAGAGCGCCTGTTGCAGCAGATGCGTGAGGCAGGTCTGCCGCACACCGCCGCCGAGGAACATGTGACCGACAGTGAGAAGCAGTCCCTGCTCACTCACTTGAAGAGCAGTCACAAGGCGAAAGTGGAAGAACCGCGCAAGATCACTCTGCAGCGTAAAACCACCAGCACCCTGCGTGTTGCCGGTAGCAAAAGCATCAGCGTTGAAGTACGCAAGAAGAAAGTCTTCGTACAGCGCAGCCCGGAAGAAATCGAAGCCGAGCGCAAACGCGAACTGGAAGAACGTCGCGCGGCAGAAAATGCTGCACGTCAGAAGGCTGAAGAAGAAGCCAAGCGTCGCGCCGAAGAAGAAGCGCGTCGCCAGCCTGCTGCTGCGCAATCTGCTCCAGCCGAAGTGGTCGAGACACCTGCGGCGGCAGCTGAGCCAGTGCGTGAAAGCGCACCTGTCCTGGCAGCTGCTCCGGCGCCGGCGGACACCCGCAAGCGCGACGAACAGCGTCGTCCGGACAAACCACGTGCCGACGATAACCGTCGTGGCAGTGGCGATGGCGAGCGCAAAAACGCTCCTCATCGTGCTTCGGTCAAGGAGAAGGCGCCTGCGCCGCGTGTTGCGCCACGTACCACCGACGAAGAAAGCGATGGCTTCCGTCGCGGCGGTCGCGGCAAGGCCAAGCTGAAGAAACGCAACGCCCACGGTTTCCAGAGCCCTACCGGCCCTGTCGTGCGTGAAGTGAAGATCGGCGAGACCATCACTGTGGGCGATCTGGCCCAGCAGATGTCGGTCAAGGCTGCTGAAATCATCAAGTTCATGTTCAAGCTGGGCACGCCAGCCACCATCAACCAGGTACTGGACCAGGAAACTGCCCAACTGGTCGCCGAAGAGCTGGGCCACAAAGTGACCCTGGTCAGCGACACCGCCCTGGAAGATTCCCTGGCCGAGTCCCTGAAGTTTGAAGGTGAAGCTGTTTCCCGTGCGCCGGTCGTGACCGTCATGGGTCACGTTGACCACGGTAAAACCTCGCTGCTCGACTACATCCGTCGTGCCAAGGTAGCCGCTGGCGAAGCCGGTGGTATCACCCAGCACATCGGCGCGTACCACGTTGAAACCGACCGCGGCATGGTGACGTTCCTCGATACCCCGGGCCACGCCGCGTTTACCGCGATGCGTGCCCGTGGTGCCAAGGCAACCGACATCGTGATCCTGGTGGTTGCAGCGGACGACGGCGTGATGCCGCAAACCATCGAAGCCGTTCAGCATGCCAAGGCTGCTGGCGTGCCGCTGGTGGTTGCGGTGAACAAGATCGACAAGCCGGGCGCCGATCTCGATCGCATCCGCAGCGAACTGTCGGTCCACGGCGTGACCTCCGAAGAGTGGGGTGGCGACACTCCTTTCGTTCCGGTCTCGGCGAAGATGGGTACCGGCGTTGACGAACTGCTCGAAGCCGTTCTGTTGCAAGCCGAAGTTCTGGAGTTGACCGCTACACCTTCGGCTCCTGGCCGTGGCGTGGTCGTTGAATCGCGTCTCGACAAGGGCCGTGGTCCGGTCGCGACCGTCCTGGTTCAAGACGGTACCCTGCGTCAGGGCGACATGGTGCTGGTCGGTTCGAACTATGGCCGCGTGCGCGCCATGCTCGACGAGAACGGCAAGCCAATCAAGGAAGCCGGTCCGGCTATCCCGGTCGAGATCCTCGGTCTGGACGGTACCCCGGATGCTGGCGACGAGATGAGCGTTGTGGCTGACGAGAAGAAGGCCCGTGAAGTGGCTCTGTTCCGTCAAGGCAAGTTCCGCGAAGTCAAACTGGCTCGCGCTCACGCCGGCAAGCTGGAAAACATCTTCGAGAACATGGGCCAGGAAGAGAAGAAGACGCTCAACATCGTCCTCAAATCCGACGTCCGTGGTTCGCTCGAAGCGTTGAACGGCGCCTTGAATGGCCTGGGTAACGACGAAGTGCAAGTGCGCGTTGTCGGTGGTGGTGTCGGTGGTATCACCGAATCCGACGCCAACCTGGCACTCGCTTCCAACGCTGTACTGTTCGGCTTCAACGTGCGTGCCGATGCCGGCGCGCGCAAGATCGTCGAGCAGGAAGGCCTGGATATGCGTTACTACAACGTGATCTACGACATCATCGAAGACGTCAAGAAAGCCTTGACCGGTATGCTCGGCAGCGACGTTCGCGAGAACATCCTGGGCGTGGCCGAAGTGCGCGATGTGTTCCGTTCGCCGAAGTTCGGCGCGATCGCCGGTTGCATGGTGATCGAAGGTGTCGTTCACCGTAACCGTCCGATCCGCGTATTGCGTGAAGACATCGTGATCTTCGAAGGCGAGCTGGAATCCCTGCGCCGCTTCAAGGATGACGCTTCCGAAGTACGTGCCGGCATGGAATGCGGTATCGGCGTCAAGAGCTATAACGACGTCAAGGTCGGCGACAAGATCGAAGTCTTCGAGAAGGTCCAGGTTGCTCGCAGCCTCTGAMTQVTVKQLADEVKTPVERLLQQMREAGLPHTAAEEHVTDSEKQSLLTHLKSSHKAKVEEPRKITLQRKTTSTLRVAGSKSISVEVRKKKVFVQRSPEEIEAERKRELEERRAAENAARQKAEEEAKRRAEEEARRQPAAAQSAPAEVVETPAAAAEPVRESAPVLAAAPAPADTRKRDEQRRPDKPRADDNRRGSGDGERKNAPHRASVKEKAPAPRVAPRTTDEESDGFRRGGRGKAKLKKRNAHGFQSPTGPVVREVKIGETITVGDLAQQMSVKAAEIIKFMFKLGTPATINQVLDQETAQLVAEELGHKVTLVSDTALEDSLAESLKFEGEAVSRAPVVTVMGHVDHGKTSLLDYIRRAKVAAGEAGGITQHIGAYHVETDRGMVTFLDTPGHAAFTAMRARGAKATDIVILVVAADDGVMPQTIEAVQHAKAAGVPLVVAVNKIDKPGADLDRIRSELSVHGVTSEEWGGDTPFVPVSAKMGTGVDELLEAVLLQAEVLELTATPSAPGRGVVVESRLDKGRGPVATVLVQDGTLRQGDMVLVGSNYGRVRAMLDENGKPIKEAGPAIPVEILGLDGTPDAGDEMSVVADEKKAREVALFRQGKFREVKLARAHAGKLENIFENMGQEEKKTLNIVLKSDVRGSLEALNGALNGLGNDEVQVRVVGGGVGGITESDANLALASNAVLFGFNVRADAGARKIVEQEGLDMRYYNVIYDIIEDVKKALTGMLGSDVRENILGVAEVRDVFRSPKFGAIAGCMVIEGVVHRNRPIRVLREDIVIFEGELESLRRFKDDASEVRAGMECGIGVKSYNDVKVGDKIEVFEKVQVARSLNANANANANA
D1-35_01197402rbfACOG085830S ribosome-binding factorATGGCAAAAGAATATAGCCGTACCCAACGAATCGGCGATCAGATGCAGCGCGAGCTGGCCCAACTGATCCGTCGCGAAGTCAAAGACCCGCGCGTCGGCCTGGTGACCATCACCGCTGTTGAAGTCAGCCGTGACGTCGGTCACGCCAAGATCTTCATCACGGTGATGGGGCAGGACAGCGCCGAAGAAATTGCCCAGAGCATCAAGGTGCTCAACTCGGCAGCCGGTTTCCTGCGCATGCAACTGGCGCGGGAAATGAAGCTGCGCAGCGTTCCACAGCTGCACTTCCACTACGACGAAAGCGTCGTGCGGGGCGCGCATCTGTCGGCGCTGATCGAGCGTGCCGTGGCTGAAGACAGTCAGCATCCGGCTGCCGCTGAACCCGAAGACACCAAGGAGTAAMAKEYSRTQRIGDQMQRELAQLIRREVKDPRVGLVTITAVEVSRDVGHAKIFITVMGQDSAEEIAQSIKVLNSAAGFLRMQLAREMKLRSVPQLHFHYDESVVRGAHLSALIERAVAEDSQHPAAAEPEDTKENANANANANA
D1-35_01198918truBCOG0130tRNA pseudouridine synthase BGTGGCTCAGGTCAAACGTATCCGTCGTAACGTCAGCGGCATCATCCTGCTCGACAAGCCGTTGGGATTTACCTCCAACGCGGCGTTGCAGAAGGTTCGCTGGCTGCTCAATGCTGAAAAGGCCGGGCACACCGGCAGCCTCGATCCACTGGCTACCGGCGTGCTGCCGCTGTGCTTCGGCGAGGCGACCAAGTTTTCCCAATACCTGCTCGATTCCGACAAGGGTTATGAAACCCTGGCGCAACTGGGCAAGACCACCACCACGGCGGATGCCGAAGGTGAGGTTTTGCTGGAGCGTCCGGTGACCGTTGGTCAGGCGGATATCGAGGCGGTGTTGCCGAAATTTCGTGGGCAAATCAGTCAGATACCGCCGATGTACTCCGCGCTCAAGCGTGATGGACAGCCGTTGTACAAACTGGCCCGTGCAGGCGAAGTAGTGGAGCGCGAACCGCGTTCTGTTACTATTGCGCGCTTGGAATTGCTGGCCTTTGGCGGTAATACTGCACGGCTCGCCGTGGATTGCAGCAAAGGCACCTATATCCGTACCCTGGTGGAGGATATCGGCGAGCAGCTCGGCTGTGGCGCGTACGTGGCGGAATTGCGACGGACCCAGGCCGGGCCTTTCACCCTGGCCCAGACGGTCACGCTGGAAGAGCTCGAAGCGGTACACGCCGAAGGCGGCAACGAAGCGGTCGACCGTTTCCTCATGCCTTCGGACAGCGGTTTGCTCGATTGGCCGCTGCTGCAGTTCTCCGAACACAGTGCGTTCTACTGGCTCAACGGCCAGCCGGTGCGCGCTCCGGATGCGCCGAAGTTCGGCATGGTCCGGGTGCAGGATCACAATGGTCGCTTCATCGGTATCGGTGAAGTGAGCGAAGACGGGCGTATCGCGCCGCGTCGATTAATTCGGTCGGAATGAMAQVKRIRRNVSGIILLDKPLGFTSNAALQKVRWLLNAEKAGHTGSLDPLATGVLPLCFGEATKFSQYLLDSDKGYETLAQLGKTTTTADAEGEVLLERPVTVGQADIEAVLPKFRGQISQIPPMYSALKRDGQPLYKLARAGEVVEREPRSVTIARLELLAFGGNTARLAVDCSKGTYIRTLVEDIGEQLGCGAYVAELRRTQAGPFTLAQTVTLEELEAVHAEGGNEAVDRFLMPSDSGLLDWPLLQFSEHSAFYWLNGQPVRAPDAPKFGMVRVQDHNGRFIGIGEVSEDGRIAPRRLIRSENANANANANA
D1-35_01200270rpsOCOG018430S ribosomal protein S15ATGGCTCTCGACGTTCAAGAAAAAGCTCAAATCGTAGCTGACTACCAGCAAGCTGTTGGTGACACTGGTTCGCCAGAAGTGCAAGTTGCACTGCTGACCGCCAACATCAACAAACTGCAAGGTCACTTCAAGGCCAACGGTAAGGATCACCACTCCCGTCGTGGTCTGATCCGCATGGTAAACCAGCGTCGCAAGCTGCTGGACTACCTGAAAGGCAAGGACGTGAGCCGTTACAGCGCTCTGATCGCTCGCCTGGGTCTGCGTCGCTAAMALDVQEKAQIVADYQQAVGDTGSPEVQVALLTANINKLQGHFKANGKDHHSRRGLIRMVNQRRKLLDYLKGKDVSRYSALIARLGLRRNANANANANA
D1-35_012012106pnpPolyribonucleotide nucleotidyltransferaseGTGAACCCGGTAATCAAAAAATTCCAGTTCGGTCAGTCGACCGTTACCCTCGAGACTGGCCGTATCGCCCGTCAGGCCTCCGGCGCAGTGCTGGTCACCGTTGACGACGACGTCAGCGTATTGGTGACCGTCGTCGGTGCCAAGCAGGCCGATCCAGGCAAGGGTTTCTTCCCTCTGTCTGTGCACTACCAGGAAAAGACCTACGCCGCGGGCAAGATCCCTGGCGGTTTCTTCAAGCGTGAAGGCCGTCCTTCCGAGAAAGAAACCCTGACTTCCCGACTGATCGACCGTCCGATCCGTCCGCTTTTCCCTGAAGGTTTCATGAACGAAGTGCAGGTTGTCTGCACCGTCGTTTCCACCAGCAAGAAGACCGATCCGGACATCGCTGCGATGATCGGTACCTCGGCTGCGCTGGCGATCTCCGGCATTCCTTTCGATGGCCCGATCGGCGCTGCCCGCGTTGCGTTCCACGAAAGCACCGGCTACCTGCTGAACCCGACCTACGAGCAACAGAAGGCATCGAGCCTGGACATGGTCGTGGCCGGTACTTCCGAAGCCGTGCTGATGGTTGAATCCGAAGCCAAGGAACTGACCGAAGACCAGATGCTGGGCGCCGTGCTGTTCGCCCACGACGAGTTCCAGGTGGTCATCAACGCCGTCAAGGAACTGGCTGCCGAAGCCGCCAAGCCAACCTGGACCTGGGCTCCTCAGCCAGAAGCCACCGAGCTGCTTGGCGCGATCCGTGCCGAGTTCGGCGAAGCGATCTCCCAGGCCTACACCATCACCATCAAGGCCGACCGCTATGCGCGTCTGGGCGAGCTGCGTGACCAGGTCGTTGCCAAGTTCTCCGGCGAAGAAGGCCAGCCATCGGCCAGCGACGTCAAGGCGGCTTTCGGTGAAATCGAATACCGCACCGTTCGCGAAAACATCGTCAACGGCAAGCCGCGTATCGACGGTCGCGACACTCGCACCGTGCGTCCGCTGAACATCGAAGTCGGCGTTCTGCCAAAGACCCACGGTTCGGCGCTGTTCACCCGTGGTGAAACCCAGGCGCTGGTCGTTGCGACACTGGGCACCGCCCGTGACGCGCAACTGCTCGACACCCTGGAAGGCGAAAAGAAAGACCCGTTCATGCTGCACTACAACTTCCCTCCGTTCTCGGTGGGCGAGTGTGGTCGCATGGGTGGCGCCGGTCGTCGCGAAATCGGTCACGGCCGTCTGGCCCGTCGTTCGGTCCAGGCCATGCTGCCGGCCGCTGACGTGTTCCCGTACACCATTCGCGTGGTATCGGAAATCACCGAGTCCAACGGTTCGAGCTCGATGGCTTCGGTCTGCGGCGCTTCCCTGGCCCTGATGGACGCTGGTGTGCCGATGAAGGCGCCGGTGGCCGGTATCGCCATGGGTCTGGTCAAGGAAGGCGAGAAATTCGCCGTCCTGACCGACATCCTGGGTGACGAAGACCACCTGGGCGACATGGACTTCAAAGTGGCCGGTACCGCCAAGGGCGTCACCGCACTGCAGATGGACATCAAGATCAAGGGCATCACCGAAGAGATCATGGAAATCGCCCTGGGCCAAGCCCTGGAAGCGCGCCTGAACATCCTCGGTCAGATGAACCAGATCATCGGTCAGTCCCGTACCGAACTGTCGGAAAATGCTCCGACCATGATCGCGATGAAAATCGACACCGACAAAATCCGTGATGTCATCGGTAAAGGCGGCGCGACTATCCGTGCGATCTGTGAAGAAACCAAGGCTTCGATCGACATCGAAGACGACGGTTCGATCAAGATCTTCGGCGAAACCAAGGAAGCGGCAGAAGCAGCACGCCAGCGCGTCCTGGGCATCACCGCAGAGGCCGAGATCGGCAAGATCTACGTCGGCAAGGTTGAACGCATCGTCGACTTCGGTGCGTTCGTCAACATCCTGCCTGGCAAGGACGGTCTGGTTCACATCTCCATGCTGAGCGATGCTCGCGTCGAGAAAGTGACCGACATCCTGAAAGAAGGCCAGGAAGTGGAAGTGCTGGTACTGGACGTGGACAACCGCGGCCGTATCAAGCTGTCCATCAAGGACGTTGCAGCAGCCAAGGCGTCGGGCGTTTAAMNPVIKKFQFGQSTVTLETGRIARQASGAVLVTVDDDVSVLVTVVGAKQADPGKGFFPLSVHYQEKTYAAGKIPGGFFKREGRPSEKETLTSRLIDRPIRPLFPEGFMNEVQVVCTVVSTSKKTDPDIAAMIGTSAALAISGIPFDGPIGAARVAFHESTGYLLNPTYEQQKASSLDMVVAGTSEAVLMVESEAKELTEDQMLGAVLFAHDEFQVVINAVKELAAEAAKPTWTWAPQPEATELLGAIRAEFGEAISQAYTITIKADRYARLGELRDQVVAKFSGEEGQPSASDVKAAFGEIEYRTVRENIVNGKPRIDGRDTRTVRPLNIEVGVLPKTHGSALFTRGETQALVVATLGTARDAQLLDTLEGEKKDPFMLHYNFPPFSVGECGRMGGAGRREIGHGRLARRSVQAMLPAADVFPYTIRVVSEITESNGSSSMASVCGASLALMDAGVPMKAPVAGIAMGLVKEGEKFAVLTDILGDEDHLGDMDFKVAGTAKGVTALQMDIKIKGITEEIMEIALGQALEARLNILGQMNQIIGQSRTELSENAPTMIAMKIDTDKIRDVIGKGGATIRAICEETKASIDIEDDGSIKIFGETKEAAEAARQRVLGITAEAEIGKIYVGKVERIVDFGAFVNILPGKDGLVHISMLSDARVEKVTDILKEGQEVEVLVLDVDNRGRIKLSIKDVAAAKASGVNANANANANA
D1-35_01203549hypothetical proteinATGATGCGCAGTCTTGCGAAACGCTCGTCGACCCGGTTTGCTACCACGTCCCTCCTGCTCGGCAGCCTGAGCTTGATCGGTGCCGTTCAAGCGGCTGTCGAAGTTTCCTCCGGCCCCCCTCTGCCGTCTGACACGATCCCGCTGCTTCGCAACTCATTCGACAAGGATGTTCTGATCAAGACCAATATCAACGTGGGTGACCTGGAAAAATTACCAGAAGCAGTCAAGGACAACACCGCCGAGCTGGACAGTCAGAAGCGCACCCTTGGCGAGCAGGCCCGACAAATCGAAGAACTCAAACGCAACAGTGGCTCCAGCTCCACCTCCAGCAGCAAGGAGATAGACGATCTCAAGCGCATCATCAAGGAACAGGAACGCGATCTGAACGACCTTGGCAAGCAAGTGGAAGAACTCAAGCGCAACAGCGGTTCCAGCTCAAGTTCGAGCAGCAGCGAAATTTCGTCCCTGAAACGGGAGCTCAGCGATCAGGACAACGAGCTGACACAGCTCAAACGCACGGTCGAGGAACTGAGCAGGAAGGTGAAATAAMMRSLAKRSSTRFATTSLLLGSLSLIGAVQAAVEVSSGPPLPSDTIPLLRNSFDKDVLIKTNINVGDLEKLPEAVKDNTAELDSQKRTLGEQARQIEELKRNSGSSSTSSSKEIDDLKRIIKEQERDLNDLGKQVEELKRNSGSSSSSSSSEISSLKRELSDQDNELTQLKRTVEELSRKVKNANANANANA
D1-35_01204306hypothetical proteinATGACCGCTAAAGAATTGTCCCAAGAAGCCAGGCACGAAGAAGCCCTGGAAAAGTACCTCGAAGAAACGCCGCAGTTGCGCGATGAGATCAAGGACTTGTCCGCCGATGACCAGAAAGACCAGGTCCAGTGGGCGTTCGAGGATGAGGCCGAAGCCCAGGGCCTGCAGCCTTGGGAGCTGACGCTCAAGTACACCAGTACGCCGGAAGAGTTCGAGGCGCAGCGCCTTGTCTTGCACAAGGAGGCGGCCGAGGTGTTGGGTGTGGATTGGGATGAGTACTGCGAGATGAATAATCTGGTGGTCTGAMTAKELSQEARHEEALEKYLEETPQLRDEIKDLSADDQKDQVQWAFEDEAEAQGLQPWELTLKYTSTPEEFEAQRLVLHKEAAEVLGVDWDEYCEMNNLVVNANANANANA
D1-35_01205849nadCCOG0157Nicotinate-nucleotide pyrophosphorylase [carboxylating]ATGCCGAATCTACGCCTCGCCGATCTGACCGCCGAAATCGAAGCCAACGTGCGCCGTGCGTTGCTCGAAGACATCGGCAGCGGCGACATCACCGCACAACTGATCCCCGCCGAACGCCTGGCCAAGGCCACCATCATCACCCGGGAAGCCGCGACCATCAGCGGCACGGCCTGGGTCGATGCGGTGTTCAGACAACTGGATCCCCGCGTCGCGGTGCATTGGCAAGTGCGCGACGGCGACCGGGCAAGCCCCGACCAGGCCCTGTTCCACCTCGAAGGCCCGGCCCGCTCACTGCTGACGGGCGAACGCAGCGCGCTGAACTTCCTGCAGATGCTCTCGGGCGTTGCCACCCGGGCCCGCTATTTGGCGGACTTTGTTGCCGACACCCAGGTCAAGCTGCTGGATACCCGCAAGACCCTGCCCGGGCTGCGCCTGGCCCAGAAGTACGCGGTCACCTGCGGCGGCTGCCATAACCATCGCATCGGCCTTTACGATGCCTTTCTGATCAAGGAAAACCATATCGCCGCCTGCGGTGGCATTGCCCAGGCCATCAGCGCCGCCCACAAGATCGCACCGGGCAAGCTGGTGGAGATCGAAGTGGAAAGCCTGGCGGAATTGAAAGAAGCGCTGGCGGCCGATGCCGACATCATCATGCTCGACGAGCTGAGCCTGGACGACATGCGCGAAGCCGTGCGCCTGAACGGCGGCAAGGCGAAACTGGAAGCCAGCGGCGGCATCAACGAAAGCACGTTGCGCCCGATTGCCGAGACCGGCGTGGACTATATCTCCATCGGTGCGATGACCAAGGACGTCAAAGCCGTGGACCTGTCGATGCGCTTGAGCCTCTGAMPNLRLADLTAEIEANVRRALLEDIGSGDITAQLIPAERLAKATIITREAATISGTAWVDAVFRQLDPRVAVHWQVRDGDRASPDQALFHLEGPARSLLTGERSALNFLQMLSGVATRARYLADFVADTQVKLLDTRKTLPGLRLAQKYAVTCGGCHNHRIGLYDAFLIKENHIAACGGIAQAISAAHKIAPGKLVEIEVESLAELKEALAADADIIMLDELSLDDMREAVRLNGGKAKLEASGGINESTLRPIAETGVDYISIGAMTKDVKAVDLSMRLSLPGPT0013370_3255DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013370-nadC-K00767NANA
D1-35_012062211hypothetical proteinATGCACAACGACGGGAATGTAGTGCCTTTGCACAAGGCGTCTACCGATCAGGCGAGTCGCTCGCCGCTCGCCCGCCTGCCTGTGATTCTGCTTCAGGTTCGCGACAAGGCTGCGCAGCAGTTGCGCCTTGGCTTGCAGGAATTGTTCGATAATGCTGACGATACCTTGTTCGAAATGGCCGATCGGGCGCGGAACGATGTGGAGCAGAACCTCTACTTCGAAGCCATGCGAGACCTGCGGCTGAAACGCAAGAGCATCGAACGTGAATTCCTCGAGCAGTTTTTCGAGGCGTTCGTCAATCTTGCCCAGTACGATCTGACCCAGGCCACCCTCGCGCCCGTATTGGGCGCCATACCGGCCCAGCGAAACCATGATGACCTCGAACGCCGGCTGGCGGTGGAAACCATGGTCACCCGGGTGCTCAGTCGCGATGGCCTGTCTCTCGATCAACTCACGGCGCGCCTCGGCGCGTTACTGTCGCGGCCCCTGGCGAACCAGCACAACCCCTTGAGCCCGGCCCTGCTGTGTGAGAATTTTCTCCAGGCCGGGCGTAACCTGGGCGTAGGCATCAAGGTCAAACTGATCCTGCTCAAGCTCTTCGAGCGGTATGTGCTCAGCGAATGCGACAACCTTTATTCCGAGGCCAATCAGCTATTGGCGGCAACCGGGATCTTGCCGGATCTGAAGGTTTCTCCGTCGCGGCGGGCCTCGGACCGTGTCGAAGAGCCTGTTCGGCCCAGCACTGCCGGGCCTGCCAGGCCAAGGGTCGACGATGTCGATGACAGCGTGCACGAAGTCTTCGCCGCTTTGCAGAAGTTGTTGGTCCAGGTGCGCGGCAGTGTCGCGCCTACCCTTGAGCCCAGTGCACCGGCCCAGCCAATCACGACCCGTGACCTTTTGCGCTTGTTGTCTCATTTGCAGCAATACGTGCCGGCCCCCTCGGTTCAGGATGACTTCGACCTGCGCAGCCAGCTTGAACAGCTGTTGACCCGGGTCAGCGTCAAGAGCGGCAAATCCCGCGTGGTCGAAGGCGCCGACGAAGATGTGATCAACCTGATCGCGATGATGTTCGAATTCATCCTTGATGACCGTAACCTGCCGGACTCCCTCAAGGCCTTGATCGGCCGGCTGCAGATCCCGATGCTCAAGGTCGCGGTGCAGGACAAGAGTTTTTTCAGTCGCAATAATCATCCGGCGCGCCGGTTGCTCAATGAAATCGCAGCGGCGGCGATGGGTTGGGGTGATTGCGATGATCATCAGCGCGACAGCCTCTACCTGCGCATCGAGCAGGTGGTGCAGCGTCTGTTGAACGACTTCGTCGACGATCCGGCGATATTTTCCGAAGTGCTGGCCGATTTCCTGGCGTTCACCAGCGACGAGCGCCGCCGCTGTGAATTGCTTGAGCAGCGCATCCGTGACGCCGAAGAGGGAAGGGCAAAGGCCGACCTGGCTCGACAGCGGGTCGAAGGGGCACTGAACCAGGTCATGCTGGGCAAAGTCCTGCCCCAGGCCGTAGTAGATTTTGTACAGCAGGCCTGGAGCCAGGTGCTGCTGCTGACCGGCTTCAAGCATGGCGAGCATTCAGCCGAATGGCGGGCCGACGTGCTGACCCTGGAACAATTGGTCTGGAGTGTCCAGCATCACGAAGAGTCCGATGCGGGCCTGCGTTTGCTGGCGATGGTGCCGGAGCTGCTCAAGGCCCTGCGCGAGGGGCTGAGTCGCTCGGCGTTCGATCCGTTCGCCACCAGCGAATTCTTCAGCGAGCTGGAACTGCTTCATGTCCAGGCCCTGCAGCGGCTGGGCCAGGCAACGGAGGCTGGCGAGCCGGTGGATCTGCCGGTCATGGTCGAAGTGGCGGAACCCATCGTCCTTCGCACTGCGCCACAGACGCCCGCGCAGGAGCCGACCGTGCGTTTGCCGGCTGATGATGCAGGCCTGCTTCAGGTCGATCAATTGCGCCTGGGATGCTGGGTAGAGTTCCAGGAAGACGAAGACAACAGCCTGCGTTGCAAGCTGGCGGCAATCATCCAGGCCACCGGCAAGTTCGTTTTCGTCAACCGCACCGGCCTCAAGGTCCTGGAGCACAGCCGCACCAGCCTCGCCCTGGAGTTCCGCCGGGGAGCGGCACGTCTGCTGGACGACACCCTGCTGTTCGACCGGGCATTGGAGTCTGTTCTCGGCAACCTGCGCCAGCTCAATCGCGGCAAGTGAMHNDGNVVPLHKASTDQASRSPLARLPVILLQVRDKAAQQLRLGLQELFDNADDTLFEMADRARNDVEQNLYFEAMRDLRLKRKSIEREFLEQFFEAFVNLAQYDLTQATLAPVLGAIPAQRNHDDLERRLAVETMVTRVLSRDGLSLDQLTARLGALLSRPLANQHNPLSPALLCENFLQAGRNLGVGIKVKLILLKLFERYVLSECDNLYSEANQLLAATGILPDLKVSPSRRASDRVEEPVRPSTAGPARPRVDDVDDSVHEVFAALQKLLVQVRGSVAPTLEPSAPAQPITTRDLLRLLSHLQQYVPAPSVQDDFDLRSQLEQLLTRVSVKSGKSRVVEGADEDVINLIAMMFEFILDDRNLPDSLKALIGRLQIPMLKVAVQDKSFFSRNNHPARRLLNEIAAAAMGWGDCDDHQRDSLYLRIEQVVQRLLNDFVDDPAIFSEVLADFLAFTSDERRRCELLEQRIRDAEEGRAKADLARQRVEGALNQVMLGKVLPQAVVDFVQQAWSQVLLLTGFKHGEHSAEWRADVLTLEQLVWSVQHHEESDAGLRLLAMVPELLKALREGLSRSAFDPFATSEFFSELELLHVQALQRLGQATEAGEPVDLPVMVEVAEPIVLRTAPQTPAQEPTVRLPADDAGLLQVDQLRLGCWVEFQEDEDNSLRCKLAAIIQATGKFVFVNRTGLKVLEHSRTSLALEFRRGAARLLDDTLLFDRALESVLGNLRQLNRGKNANANANANA
D1-35_01207561ampD1,6-anhydro-N-acetylmuramyl-L-alanine amidase AmpDATGCAGCTGGACCCCGTGAGCGGTTGGTGCGATGGCGTGCGTCATTGCCCTTCGCCCAATTTCAATGCGCGCCCCGAAGGCGAGATCTCCCTGCTGGTGATCCACAACATCAGCCTGCCGCCGGCACAGTTCGCGACTGGCAAGGTGCAGGAATTTTTCCAGAATCGTCTGGATGTCACGGAACATCCCTACTTTGCCGGTATTGCCGACCTGCGTGTCTCTGCGCATTTTCTGATCGAACGTGACGGCGCCGTGACGCAGTTTGTCTCTTGTCTGGAGCGTGCGTGGCATGCGGGGGTTTCGTGCTTCGAAGGGCGGGAGACGTGTAACGATTTTTCCATAGGCATCGAGCTTGAAGGCACCGATGATCTGCCGTTCACCGACGCGCAATATGTCGCGTTGGTGGACCTGACCCGGCAGCTTCGCGCGGCGTTTACGGCGATCACGGTGCAGCGCATCTGTGGGCACAGCGACATTGCTCCGGGGCGCAAGACCGATCCGGGACCGGCATTCGACTGGGCGCGCTATCGCGCGGCCCTGACAGAAGGGGAAGGACAATGAMQLDPVSGWCDGVRHCPSPNFNARPEGEISLLVIHNISLPPAQFATGKVQEFFQNRLDVTEHPYFAGIADLRVSAHFLIERDGAVTQFVSCLERAWHAGVSCFEGRETCNDFSIGIELEGTDDLPFTDAQYVALVDLTRQLRAAFTAITVQRICGHSDIAPGRKTDPGPAFDWARYRAALTEGEGQPGPT0024100_860DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0024100-ampD-K03806NANA
D1-35_01208837hypothetical proteinATGAGTTTTCTGGTGTTGCTGCTGGCAGTCTGGATCGAGAAATTCTCGGCCCTGCGCCAGCGGGTCCAGCGTGACGGCGGTTGGCTGGGCGAGCTGAACAAGCTCGAAGCGAGCCCACGCTGGGTCAATCGGCCCTGGCTGGTGCTGATGGTGATGGTGCTGTTGCCGGTGGCGCTGTTGGCGTTGCTGCTGTGGGTGCTGGAGCCGGTGGCCTATGGTCTGCTGGCACTGCCGGTGCACCTGTTGGTGGTGATCTACAGCCTGGGGCGCGGCGATCTGTTGGCTGAACTCGGCCCGTTTCGCGACGCTTGGCGCCGTGAAGATCTGCAGGCAGCGAATCATGTGGCCAAGCGCGACCTGAACATCGATGCCGATGGCGGCGAGCAGTTGCTGGAGCGGGTCCAGGGGCACTTGCTGTGGCAGGCGTACCAGAGTTTTTTTGCGGTCATCTTTTGGTATTTCCTGCTGGGCCCGGTGGCTGCCCTGAGCTATCGATTGCTCGCCCTTGCCGCCGAACACAGCCACAACCCCGGCGTGGCCGAGCGTGCGGCGCAGCTGCGCCACGCGTTTGATTGGGTACCGGTGCGGTTGTTGGCGGCGAGCTTCGCCCTGGTGGGCAACTTCGTGGCGGTCAGCCGGGTGATGCTGCACGAACTGCTGAACTGGAACATCAGCGCGGCCGACCTGATCAACAAGGTCGGCCTGGTGGCCGGCGAGATCCCGACTCCCGTCGCCGGGCCGGACGGCATCAACAGCCTGGATCGGCTGTGGGAACTGCTGTTGCGCGCGGCAGTACTCTGGTATGCCGGGTTTGCGTTGTGGACGGTGTTGGCCTAGMSFLVLLLAVWIEKFSALRQRVQRDGGWLGELNKLEASPRWVNRPWLVLMVMVLLPVALLALLLWVLEPVAYGLLALPVHLLVVIYSLGRGDLLAELGPFRDAWRREDLQAANHVAKRDLNIDADGGEQLLERVQGHLLWQAYQSFFAVIFWYFLLGPVAALSYRLLALAAEHSHNPGVAERAAQLRHAFDWVPVRLLAASFALVGNFVAVSRVMLHELLNWNISAADLINKVGLVAGEIPTPVAGPDGINSLDRLWELLLRAAVLWYAGFALWTVLAPGPT0028120_528DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028120-ampE-K03807NANA
D1-35_012092031hypothetical proteinGTGAAGAGTTTGCTCTGGCCCGCCGTCGCCCTGATGAACCGCCTGAGCTTCGGCATGAAGTTCAGCCTGATCAGCGTGTTGTTCCTGCTGCCGATGCTGGTGACCAACTTCTTTCTGGTACGTGACTCCTACCGGGAGTTTCAGGGCACCCAAGTCGAGTTGCAAAGCCTCGACTTGCTGGGCAGCAGCCTGACTCTGCGCCGCGACCTGGAGACCTTGAACAACCTGGTGCAGATCAATGCCAGCCTGGGCCAGTCCGGCAAGGCGGGCGACGTGGAAAGCCGGATCAGCACCCTGGAGCAACAGATTCTCGCGCGCCTCCAGGGCATGCAGGCGATGGCCGCAGAGCCCGAGCACGTCAGCGCCTTCGATGCCAAGCGCGACGAAATGATTGCCGCCTTCAAGGCCCAGCAGGCCGAAAGCTCACTGCAAAGCAAAAGCGCGTTGATCGGCAGGTTGCTCAACAATGCGCAAATATTTGGCCAGGTCATCGCCAGCCAGGCGGGCCTGAGCCGCGACAACCAGGGCGACATCCGCCAACTCAGCGACCTGATGGTCGGCGTGACTCCCAAGGTCACCCAGATCCTGGGCGAAGGGCGTGCGCTGGGGGCTTCGTCGTTGGGCTTGGGGTTCCTCAATTCTGCTTCGAGCACCCGGTTTGACGAGTTGCTGGTACAGGTCGAAAAACTCCAGGGCGAATATGATCTTAAATTGCAGGACGCCCTTGGCTCCAGCAAGGCGGCCGGACAAGCGCTTGCCGAGCAGGCTGGCGCCAGCAGGAGTTCTCTCAAGCAGGCCGCCGAACTGATCGAGGAACAGGTGGTGATGGCTGATACGCTCGACGCCCCCTGGTCGGCGTTTTACCAGCAGGTCAGCGGCCTGATGGAACAGACCTATCGGCTGAACGAAGTGACACTGGGCTTTCTCGGTGTCCAGTTGCAGCACCGCCTGGAGCAGAACCGCAGCCACATGGTGCTGCAAGCGGTGGCACTGGCGGTGGTGTTCCTGTTGATTTTTTACCTGTACGCCGGTTTTTATGCCTCGACTCGCACCACGCTCAAGCATTTGGGCGCAATGATGGACAAGGTTGCGGCCGGCGACATGACGGTCAATTTCGTGGCGCGCAGCAAGGATGAGTTGGGGGAGCTGGGTGAAGTGTTCAACGGCACCGTGGCGAAAATCCATGACCTGATCGAGCAGGTCGGTCGCACGGTTGCCGAGGTCGAGCGCCAGGCCGGTCAGGTGCAAGCCGTGTCTGCCCAGAGCAACCAGGCCGTGGCCGGGCAGCGCAGCCAGATCGAGCTGGTCGCCACGGCGATGAACCAGATGTCGGCCACCGCCCAGGAAGTCGCCAGCAGTGCCGCCGCGGCGGTCAGCAGCGCCCATAGCGTGAACGATGAAACCCTCAGCGGGCGCGGCCTGGTTGAGTCACAGCAAAGCAGCATCGCCCGGCTGGCCAGTGAAATCGATCAGTCGGTGCAAGTGATCAATCAACTGGCCACCGACAGCCAGGCCATCAGCCGTGTACTGGACGTGATCAAGAGCATCGCCGAGCAGACCAACCTGCTGGCGCTCAATGCCGCGATCGAAGCGGCCCGGGCCGGCGAGCAGGGGCGTGGGTTCGCGGTGGTGGCCGATGAGGTCCGTACCCTCGCCAAGCGAACCCAGCAATCGACCGAGGAAATCGAAGCGATGATCAGCCGGCTGCACAGCGGCGTGGGCGCCGCCGTCAAGGCCATGGGCAGCAGTCATGAGATGGCCAGCGGCACCGTCGGCCAATCGGAAAGGGTTCAGCAGGCCCTGGAAAATATCCTCGGCGCCGTTGGCATGATCGTCGACCAGAACCAGCAGATCGCCGCTGCCGCAGAGCAACAGACGGCGGTAGCCCATGACATCGACCAGAACATCGTCGAGATCAACCGCGCCGGCGAGCGCACCGCCGAGGGCGCGCACCAGACCGAAGACGCCAGCCGCGAGCTGTCCGCGCAGGTGGTGCAGCTCAAGCAATTAATCAATGCGTTTCGGGTTTGAMKSLLWPAVALMNRLSFGMKFSLISVLFLLPMLVTNFFLVRDSYREFQGTQVELQSLDLLGSSLTLRRDLETLNNLVQINASLGQSGKAGDVESRISTLEQQILARLQGMQAMAAEPEHVSAFDAKRDEMIAAFKAQQAESSLQSKSALIGRLLNNAQIFGQVIASQAGLSRDNQGDIRQLSDLMVGVTPKVTQILGEGRALGASSLGLGFLNSASSTRFDELLVQVEKLQGEYDLKLQDALGSSKAAGQALAEQAGASRSSLKQAAELIEEQVVMADTLDAPWSAFYQQVSGLMEQTYRLNEVTLGFLGVQLQHRLEQNRSHMVLQAVALAVVFLLIFYLYAGFYASTRTTLKHLGAMMDKVAAGDMTVNFVARSKDELGELGEVFNGTVAKIHDLIEQVGRTVAEVERQAGQVQAVSAQSNQAVAGQRSQIELVATAMNQMSATAQEVASSAAAAVSSAHSVNDETLSGRGLVESQQSSIARLASEIDQSVQVINQLATDSQAISRVLDVIKSIAEQTNLLALNAAIEAARAGEQGRGFAVVADEVRTLAKRTQQSTEEIEAMISRLHSGVGAAVKAMGSSHEMASGTVGQSERVQQALENILGAVGMIVDQNQQIAAAAEQQTAVAHDIDQNIVEINRAGERTAEGAHQTEDASRELSAQVVQLKQLINAFRVPGPT0015710_5488DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_01210777yjjVCOG0084putative metal-dependent hydrolase YjjVATGGAGCTGATCGACACCCACACCCACCTGGACTTCCCGGATTTCGACGCGGATCGCTCGGCGCTGCTTGCCGAAAGCCGCGCCCTGGGCGTTCGGCAAATGGTCTTGCTGGGGGTATCTCGGGACAACTGGCAACGGGTCTGGGACCTCGTGCAAAGCGACCCCGACCTGCATGCCGCGCTGGGCCTGCACCCGGTGTACCTCGATCAGCATCGTGGCGAAGATCTTGAGCATTTACGTGACTGGCTGGCCCGCCTGGCCGGGCATCGGCAGTTGTGTGCGGTGGGGGAAATCGGCCTGGACTATTACATCGAGACCCTGGACCGTGATCGCCAGCAGGCATTGTTCGAGGCACAACTGGGCCTGGCCGTGGAGTTCGAACTGCCGGCACTGATCCATGTGCGCCGCAGCCACGCCGCGGTGATCGCGACCCTGAAGCGTATCCGCCCCACCCGCACCGGCATCATCCACGCCTTCGCCGGCAGCTTCGAAGAGGCCCGCGAATACATCAGGCTCGGTTACAAGCTCGGCCTCGGCGGCGCTGCGACATGGCCGCAGGCTTTGCGCATGCACCGGGTGCTGCCAAAACTGCCGCTGGACGCGGTGGTGCTGGAGACCGATTCACCGGACATGGCCCCGGCGATGTTCCCCGGCCAGCGCAACAGCCCGGCGCATTTGCCGGCGATTTGCGCGGCGTTAGCGCAGATCATCGGGATCAGCCCGGAGCGACTGGCCGAGGCCAGCACGGCCAACGCCCGCCAACTGTTCAATTGGTGAMELIDTHTHLDFPDFDADRSALLAESRALGVRQMVLLGVSRDNWQRVWDLVQSDPDLHAALGLHPVYLDQHRGEDLEHLRDWLARLAGHRQLCAVGEIGLDYYIETLDRDRQQALFEAQLGLAVEFELPALIHVRRSHAAVIATLKRIRPTRTGIIHAFAGSFEEAREYIRLGYKLGLGGAATWPQALRMHRVLPKLPLDAVVLETDSPDMAPAMFPGQRNSPAHLPAICAALAQIIGISPERLAEASTANARQLFNWNANANANANA
D1-35_012111032craCOG1609Catabolite repressor/activatorATGTCGCGGCACACTCGAAAAACAAGGAAAACCGGGTTGAAACTCAGTGATATCGCCCAGCTTGCCGGTGTGTCCGTCACCACCGCCAGCTACGTCATCAACGGCAAGGCCGAACAGCAACGCATCAGCAACGCGACCGTCGAACGGGTGCGGGCGGTGGTCGAAGAACATGGCTTCACGCCTAACCCCCAGGCCGCCGGGCTGCGCAGCCGGCACACGCGGACGTTGGGTTTCATCCTGCCGGACCTGGAAAACCCCAGCTATGCCCGTATTGCCAAACTCCTGGAACAAGGCGCCCGCGCCCGGGGCTATCAACTGTTGATAGCCAGTTCCGACGACGCGCCTGACAGCGAGCGGCAATTGCTGCAACTGTTCCGCGCCCGGCGCTGCGATGCGCTGATCGTCGCCAGTTGCCTGCCGGCCGAGGATGACAGTTACCGTCAGCTCCAGGCCAAGGGTATTCCGATCATCGCCATCGACCGGGTGATGGAACCGGCGCACTTCTGCTCGGTGATCAGCGATGACCGCCAGGCCAGCCTGCAACTGACCCGTAGCCTGCTGGGCACCCACCCGCGGCAGATCGCGCTGATCAGTGCCCGTCCCGAACTGAGCATCAGCCAGGAGCGGGCGGCGGGGTTTCGCGAGGCGCTGGCCGGGTTCGACGGCCAGGTGTTGATCGAACACGGCGAGTCGTTCAGCCGTGAATGCGGTCGCCAACTGATGGACGAGATGCTCGCGCGCCTGGGGCATTTGCCCGATGCGCTGATCACCACGTCCTATGTACTGCTGCAAGGTGTGTTCGACGCCCTGCATGATTTTCCGCTCAAGTCGCGGCCGCTGCGCCTGGGCACGTTTGGTGACACGCAACTGCTGGATTTCCTGCCGCTGCCGGTCAATGCCATGTCCCAACAGCATCAACTGATCGCCGCCAAGGCGCTGGAACTGGCGCTGGCAGCCATCGAGAACGATGACTACCAGCCTGGTGTCCAGGCGATTGCCCGCACGTTCAAACAGCGTATCCACCAAGGCTGAMSRHTRKTRKTGLKLSDIAQLAGVSVTTASYVINGKAEQQRISNATVERVRAVVEEHGFTPNPQAAGLRSRHTRTLGFILPDLENPSYARIAKLLEQGARARGYQLLIASSDDAPDSERQLLQLFRARRCDALIVASCLPAEDDSYRQLQAKGIPIIAIDRVMEPAHFCSVISDDRQASLQLTRSLLGTHPRQIALISARPELSISQERAAGFREALAGFDGQVLIEHGESFSRECGRQLMDEMLARLGHLPDALITTSYVLLQGVFDALHDFPLKSRPLRLGTFGDTQLLDFLPLPVNAMSQQHQLIAAKALELALAAIENDDYQPGVQAIARTFKQRIHQGPGPT0017585_564DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017585-fruR1-K03435NANA
D1-35_012122865hypothetical proteinATGCTCGAGCTCACTCTAGAGCAGATATCCATGGCCCAGGTGGCTGTGGATAAAGACGCCGCGCTGCAATTGCTCGCCGACAAACTGGTGGCCGATGGCCTGGTCGCCGAAGGTTACCTCGCCGGTTTACAGGCCCGCGAGGCCCAGGGCTCGACATTTCTTGGCCAAGGTATTGCCATTCCCCACGGTACCCCGCAGACCCGCGACCTGGTGTATGCCACCGGCGTGCGCCTGCTGCAATTCCCGGACGGCGTGGATTGGGGCGATGGCCAGATCGTCTACCTGGCGATTGGCATCGCGGCCAAATCCGACGAGCACCTGCGCCTGTTGCAACTGCTGACCCGCGCCCTCGGCGAGACGGACCTGGGTCAGGCCCTGCGCCGCGCCGGGTCTGCCGAGGCGCTGTTGAAACTGCTGCAAGGCGCGCCGCAGGAACTGGCGCTGGATGCGCAGATGATCGGCCTCGGCGTGTCGGCCGACGATTTCGAAGAACTGGTGTGGCGCGGCGCTCGTCTGTTGCGCCAGGCCGACTGCGTGAGCAACGGCTTCGCCGGTGTGTTGCAGCAGGTCGAGGCGCTGCCGTTGGGCGACGGCCTGTGGTGGCTGCACAGTGAACAGACTGTCAAGCGCCCTGGCCTGGCTTTCGTCACGCCGGACAAGCCCATCCGTTACCTCGGCCAGCCCCTGAGCGGACTGTTCTGCCTGGCCAGCCTCGGCGAGGCCCATCAGGCCTTGCTGGAAAGACTCTGCGCGCTGCTGATCGAAGGTCGCGGCCACGAACTGGGCCGCGCCACCAGCAGTCGCAAGGTCCTCGAAGTGCTGGGCGGCGAGCTGCCCGCCGACTGGCCCAGCGCCCGTATCGGCCTGGCCAATGCCCACGGCCTGCATGCACGTCCGGCGAAAATCCTCGCGCAATTGGCGAAAAACTTCGAAGGCGAGATCCGCGTGCGCATCGTCGACGGCCAGGACAGCGCCGTGTCGGCCAAGAGCCTGAGCAAACTGTTGAGCCTGGGCGCCCGTCGCGGCCAGGTCCTGGAGTTCATCGCCGAGCCGAGCATTGCCGCCGATGCGCTGCCGGCCTTGCTGGCCGCCGTCGAAGAGGGGCTCGGCGAAGAGGTCGAACCGCTGCCGCCACCGAGCGCGCCACGGGAAACCACCATCGCCGAAGTCGCCAGCGTGATGCTGGCGCCCGAATCCGGCAGCCTGCTCCAGGCGGTCGCCGCCGCACCGGGCATCGCCATCGGCCCGGCGCATATTCAAGTGCTGCAAGACATCGACTATCCGTTGCGCGGCGAGTCACCGGCCATCGAGCGCGAGCGCCTGCAAAAAGCCCTGAGCCAGGTGCGCCGCGACATCGAAGGCTTGATCGAGCGCGCGAAGGCCAAGGCCATCCGCGAGATTTTCATCACTCACCAGGAAATGCTCGACGATCCGGAGCTGACCGACGAGGTCGACACCCGCTTGAAGCTGGGCGAGAGCGCGCAAGCGGCGTGGATGGGCGTGATCGAAGCCGCCGCGAAAGAACAGGAAGCCCTGCAGGATGCCTTGCTTGCCGAACGTGCCGCCGACTTGCGGGACGTCGGCCGGCGGGTGCTGGCGCAGCTGTGTGGCGTGGAAACGCCGGCAGAGCCGGATCAACCGTACATTCTGGTGATGGACGAAGTCGGCCCCTCCGACGTCGCCCGCCTGGATCCGGCTCGGGTGGCGGGGATCCTGACCGCCCGGGGCGGCGCCACCGCCCACAGCGCGATTGTTGCCCGTGCCCTGGGCATTCCCGCCCTGGTCGGTGCGGGGGCAGCGGTATTGCTGCTGGCGCCGGGCACCTCCTTGCTGCTGGACGGCCAGCGCGGTCGGCTGCATGTCGACCCGGACGCCGCCACGCTGCAACGCGCCGCCGAAGAACGCGACACCCGCGAGCAGCGCCTCAAGGCCGCCGCCGAGCAGCGTCACCAACCGGCGCAGACCCGCGACGGTCACGCCGTGGAAGTGTTCGCCAACATCGGCGAAAGCGCCGGCGTCACCAGCGCGGTGGAGCAGGGCGCGGAAGGCATCGGCCTGCTGCGCACCGAATTGATTTTCATGGCTCACAACGAGGCCCCGGACGAAGCGACCCAGGAAGCCGAATACCGCAAGGTGCTCGATGGCCTGGCCGGTCGGCCGCTGGTGGTGCGCACCCTTGATGTGGGCGGCGACAAACCGCTGCCGTACTGGCCGATCGCGAAGGAAGAAAACCCCTTCCTCGGGGTGCGCGGCATCCGCCTGACCTTGCAGCGTCCGCAGGTGATGGAAGCGCAGTTGCGCGCCTTGTTGCGCTCGGCGGACAACCGTCCGCTGCGGATCATGTTCCCCATGGTTGGCAGCGTCGACGAGTGGCGCCAGGCCCGCGACATGACCGAGCGCCTGCGCCGGGAAATCCCGGTGGCGGACCTGCAACTGGGGATCATGATCGAAGTGCCGTCCGCCGCGCTGCTGGCGCCGGTGCTCGCCAAGGAGGTCGACTTCTTCAGCGTCGGCACCAATGACCTGACCCAATACACCCTGGCGATCGACCGGGGCCACCCGACTCTGTCGGCCCAGGCCGACGGCCTGCATCCAGCGGTATTGCAGCTGATCGACATCACCGTGCGCGCGGCCCATGCCCATGGCAAATGGGTCGGCGTGTGCGGCGAGCTGGCGGCTGATCCGCTGGCGGTGCCGGTGCTGGTGGGCCTGGGTGTCGACGAATTGAGCGTTTCGGCCCGCAGCATTGCCGAGGTCAAGGCGCGGGTTCGCGAATTGAGCCTGGCGCAAGTACAAACCCTGGCCCAAGAGGCCTTGGCCGTGGGCAGCGCCGACGACGTGCGCGCATTAGTGGAGGCGCTGTAAMLELTLEQISMAQVAVDKDAALQLLADKLVADGLVAEGYLAGLQAREAQGSTFLGQGIAIPHGTPQTRDLVYATGVRLLQFPDGVDWGDGQIVYLAIGIAAKSDEHLRLLQLLTRALGETDLGQALRRAGSAEALLKLLQGAPQELALDAQMIGLGVSADDFEELVWRGARLLRQADCVSNGFAGVLQQVEALPLGDGLWWLHSEQTVKRPGLAFVTPDKPIRYLGQPLSGLFCLASLGEAHQALLERLCALLIEGRGHELGRATSSRKVLEVLGGELPADWPSARIGLANAHGLHARPAKILAQLAKNFEGEIRVRIVDGQDSAVSAKSLSKLLSLGARRGQVLEFIAEPSIAADALPALLAAVEEGLGEEVEPLPPPSAPRETTIAEVASVMLAPESGSLLQAVAAAPGIAIGPAHIQVLQDIDYPLRGESPAIERERLQKALSQVRRDIEGLIERAKAKAIREIFITHQEMLDDPELTDEVDTRLKLGESAQAAWMGVIEAAAKEQEALQDALLAERAADLRDVGRRVLAQLCGVETPAEPDQPYILVMDEVGPSDVARLDPARVAGILTARGGATAHSAIVARALGIPALVGAGAAVLLLAPGTSLLLDGQRGRLHVDPDAATLQRAAEERDTREQRLKAAAEQRHQPAQTRDGHAVEVFANIGESAGVTSAVEQGAEGIGLLRTELIFMAHNEAPDEATQEAEYRKVLDGLAGRPLVVRTLDVGGDKPLPYWPIAKEENPFLGVRGIRLTLQRPQVMEAQLRALLRSADNRPLRIMFPMVGSVDEWRQARDMTERLRREIPVADLQLGIMIEVPSAALLAPVLAKEVDFFSVGTNDLTQYTLAIDRGHPTLSAQADGLHPAVLQLIDITVRAAHAHGKWVGVCGELAADPLAVPVLVGLGVDELSVSARSIAEVKARVRELSLAQVQTLAQEALAVGSADDVRALVEALNANANANANA
D1-35_01213942lacCCOG1105Tagatose-6-phosphate kinaseATGGCGAAGATTCTTACCCTGACCCTCAACCCGGCGCTCGACCTCACGGTGGAGTTGGCGCGCCTGGAACCGGGCCAGGTCAACCGCAGCGATGCCATGCACGCCCACGCCGCCGGTAAAGGCGTGAACGTCGCCCAGGTGTTGGCCGATCTCGGCCATACGCTGACGGTCAGTGGATTTCTCGGCGAGGACAACGCCCAGGTGTTCGAGACGTTGTTCGCCCAGCGTGGCTTCGTCGACGCATTCATCCGCGTTCCGGGCGAAACCCGCAGCAACATCAAGCTGGCCGAGCAGGACGGCCGCATCACCGATCTCAACGGCCCGGGCCCAATGGTCGACGAAGCCGCTCAGCAGGCGTTGCTGGCGCGCCTTGAGCAAATCGCCCCAGGCCATGATGTGGTGGTCGTGGCGGGCAGCTTGCCCCGTGGCGTCAGTGCGCAATGGCTGCAGGCGCTGATCACGCGCCTGAAACAACTTGGCCTGAACGTGGCCCTCGACACCAGCGGCGAAGCCTTGCGCGTCGCCCTGGCGGCGGGGCCGTGGCTGATCAAGCCGAACACCGAGGAGCTGGCCGATGCGCTGGGCTGCGCCGTGGTCAGCGAATTGGCCCAGGCGCAAGCGGCGCAGCGCCTGCATGCCGAGGGTATCGAGCACGTGGTGATTTCCCATGGCGCCGACGGCGTGAACTGGTTCAGCGTCGGTTCGGCGCTGCATGCTTCGCCGCCCAAGGTGACGGTTGCGAGTACCGTGGGTGCCGGTGATTCGCTGCTGGCCGGCATGCTGCACGGCTTGCTCGGTGGGCACACGCCGGAGCAGACCCTGCGCAGCGCCACGGCCATCGCCGCCATGGCGGTCACGCAGATCGGTTTTGGCATCCACGACACCGCGTTGCTGGCGTCGCTTGAACAGGGCGTGCGCGTGCGCCCCCTGACAGAACAATAAMAKILTLTLNPALDLTVELARLEPGQVNRSDAMHAHAAGKGVNVAQVLADLGHTLTVSGFLGEDNAQVFETLFAQRGFVDAFIRVPGETRSNIKLAEQDGRITDLNGPGPMVDEAAQQALLARLEQIAPGHDVVVVAGSLPRGVSAQWLQALITRLKQLGLNVALDTSGEALRVALAAGPWLIKPNTEELADALGCAVVSELAQAQAAQRLHAEGIEHVVISHGADGVNWFSVGSALHASPPKVTVASTVGAGDSLLAGMLHGLLGGHTPEQTLRSATAIAAMAVTQIGFGIHDTALLASLEQGVRVRPLTEQPGPT0017580_938DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017580-fruK|fpk-K00882NANA
D1-35_012141746fruACOG1299PTS system fructose-specific EIIB'BC componentATGAAATTAGCCATTGTGACGGCCTGCCCGAACGGCATGGTCACCAGTGTGTTGTGCGCCCGTCTGCTGGACGCGGCGGCCCAGCGCCAGGGCTGGAGCACCAGCGTCGAAGTGCATGACCCGGCGCACCCCGAGCGCCAGTTGTCGGCCGCCACGCTTGAGGCGGCCGAGTGGGTGCTACTGGTTGCCAGCGGCCCGGTGGACCTGTCGCGATTTGTCGGCAAGCGGGTATTTCGCAGCACCCCGGCCCAGGCCCTGCAAGACGTTGATACGGTGCTGCGGCGTGGCGCCGAAGAAGCCGAGGTAATGGCCGAGGCCGACGTGCTCGCCGAAGCACCACAGGCCTCCACCGAGCGCGCCCCGCGCCTGGTGGCCATCACCGCGTGCCCGACCGGCGTTGCCCACACCTTCATGGCCGCCGAAGCCTTGCAGCAGGCAGCGGCGCGCTTGGGCTACGACTTGCAGATCGAAACCCAGGGCTCGGTGGGCGCGCGTAATCCGCTGAGTCCCGAAGCGATTGCCGAGGCCGACGTGGTGCTGCTGGCGACGGACATTGAAGTCGCCACCGAGCGTTTCGCCGGCAAGAAAATCTACCGCTGCGGCACCGGCATCGCGTTGAAGCAGGCCGAAGCCACGCTGAACAAGGCTTTGGCCGAAGGTCGGCAGGAAAGCGCTGCCAGCGACACTTCCGGCGGTCCGGCGAAAGCGGAAAAAAGCGGCGTCTACAAACACTTGCTGACCGGTGTTTCGTTCATGCTGCCGATGGTGGTGGCGGGTGGCTTGATGATTGCCTTGTCGTTCGTGTTCGGCATCGAGGCCTTCAAGGAGCCTGGCACCCTGGCGGCGGCACTGATGCAGATCGGCGGCGATACCGCATTCAAATTGATGGTGCCGCTGCTGGCGGGCTACATCGCCTATTCCATCGCCGACCGGCCGGGCCTGGCGCCAGGCATGATCGGCGGGATGCTGGCGAGCACCTTGGGCGCCGGGTTCATCGGCGGGATCATTGCCGGCTTCCTGGCCGGCTATGCCGCCAAGGCGATCAACCGCTACGCGCGGCTGCCCCAGAGCCTGGAAGCGCTCAAGCCGATCCTGATCATTCCGCTGTTGGCGAGCCTGTTCACCGGCCTGGTGATGATCTACATCGTCGGCAAACCAGTGGCGGGCATGCTCGAAGGCCTGACGCATTTCCTCGACAGCATGGGCACCACCAATGCGCTGCTGCTGGGCGTGCTGCTGGGGGCGATGATGTGCGTCGACCTCGGTGGGCCGATCAACAAGGCCGCCTATGCGTTTTCGGTGGGGCTGCTGGCTTCGCAGAGTTATGCACCCATGGCCGCGACCATGGCCGCCGGCATGGTCCCGCCGATTGGCCTGGGCATCGCTACGTTCATCGCCCGGCGCAAATTCGCCAAGACCGAGCGCGAGGCCGGTAAAGCGGCATTGGTGCTGGGGCTGTGCTTCATTTCCGAAGGCGCGATTCCGTTCGCGGCCAAGGATCCGCTGCGGGTGATCCCGTCAAGTGTTGCCGGTGGTGCGCTGACCGGTGCGCTGTCGATGTATTTCGGCTGCAAACTCATGGCGCCTCACGGCGGCCTGTTCGTGATGCTGATCCCCAACGCCATCAATCATGCGTTGCTGTACCTGCTGGCAATCGTCGCGGGCAGCCTGCTGACGGCGGTGACCTATGCGCTGCTCAAGCGGCCGGAGGCGGTAGAGATGGCGCTGGAGCCGGCTAAGGCCTGAMKLAIVTACPNGMVTSVLCARLLDAAAQRQGWSTSVEVHDPAHPERQLSAATLEAAEWVLLVASGPVDLSRFVGKRVFRSTPAQALQDVDTVLRRGAEEAEVMAEADVLAEAPQASTERAPRLVAITACPTGVAHTFMAAEALQQAAARLGYDLQIETQGSVGARNPLSPEAIAEADVVLLATDIEVATERFAGKKIYRCGTGIALKQAEATLNKALAEGRQESAASDTSGGPAKAEKSGVYKHLLTGVSFMLPMVVAGGLMIALSFVFGIEAFKEPGTLAAALMQIGGDTAFKLMVPLLAGYIAYSIADRPGLAPGMIGGMLASTLGAGFIGGIIAGFLAGYAAKAINRYARLPQSLEALKPILIIPLLASLFTGLVMIYIVGKPVAGMLEGLTHFLDSMGTTNALLLGVLLGAMMCVDLGGPINKAAYAFSVGLLASQSYAPMAATMAAGMVPPIGLGIATFIARRKFAKTEREAGKAALVLGLCFISEGAIPFAAKDPLRVIPSSVAGGALTGALSMYFGCKLMAPHGGLFVMLIPNAINHALLYLLAIVAGSLLTAVTYALLKRPEAVEMALEPAKAPGPT0017120_1653DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_FRUCTOSE_PTS_SYSTEM_I,PGPT0017120-fruA-K02770NANA
D1-35_012151542phoDCOG3540Alkaline phosphatase DATGAGCGAATTCGACCTGGGCCGTCGCCGTGTAATGCAAGCCGTTGGTGCCGGTTTGTTACTGCCGGGGCTGGCGCCGGCGGTGATTGCTTCGGTCAAGGATCGGCCGGTGCTGACCGAAGGCGTGCAATCGGGCGACTTGCAGGGCGACCGGGCGATGATCTGGAGTCGCAGCGACCGCCCGGCGCGAATGGTGGTGGAGTGGGACACCCGCAGTCAGTTCTCCAACCCTCGGCGCTTTGTCTCGGCGCTGGCCGACAGCCGCAGCGATTTCACCGCCCGGGTCGAACTCACCGGCCTGCCGCCCGACCAGGCGATTTTCTACCGCGTGCATTTCGAAGACGCCCGCAGCGGTGTCGCCAGCGAGCCCTGGCTCGGCCATTTGCGCAGCGTGCCGCAGTTCAAGCGCAACATCCGGTTTGTCTGGAGCGGCGACACCGTAGGCCAGGGCTTCGGCATCAACCCGGACATTGGTGGCATGCGCATCTACGAAGCCATGCGCCTGCGCCTGCCGGACTTTTTTATCCACAGCGGCGACACCATCTACGCCGACGGCCCGGTGCCGGCGCAGGTCACCACCGAGGGCGGCCGCATCTGGCGCAACCTGACCACCGAAGCCAAGAGCAAGGTTGCCGAGACCATGGACGAATATCGCGGCAACTACCGCTACAACCTGATGGATGAAAATGTCCGTCGTTTCAACGCCGAGGTGCCGCAGATCTGGCAATGGGACGACCACGAGGTGGTCAACAACTGGTCGCCGGGCAAGCAACTGGACGAGCGCTACCAGACCAAGGATATCCACAGCCTGGTAGGCCGTGCGCGACAGGCCTGGCTGGAATATGCGCCGATGCGCCTGCAGAAGGCCGACCATGGTGGACGGATCTATCGCAAGCTCGGCTACGGGCCGATGCTCGATGTGTTCGTGCTGGACATGCGCAGCTACCGCGAAGCCAATGACGCCAACCTCGGCGCGGCGAAACCGTTCCTGGGGCGTGAGCAACTGAACTGGCTCAAGCGCGAGCTGAAGCAATCCCGGGCGCAGTGGAAAGTCATTGCCGCCGACATGCCCATTGGCCTCGGCGTACCCGACGGCGAAGTCAGTCCCGGTGTGCCGCGCTGGGAAGCGGTCGCCAACGGTGACCCGGGCGAGGCTCAGGGGCGTGAAGTGGAAATTGCCGAACTGCTCGGTTATCTGCGCAAGCATCAGGTGCGCAACTACGTCTGGCTGACTGCCGATGTGCACTATTGCGCCGCCCACCATTACCATCCTGAACAGGCCGCGTTCCAGGATTTCGAACCGTTCTGGGAGTTTGTCGCCGGGCCGCTGAACGCCGGCAGCTTCGGGCCCAATACCCTGGACAAGACCTTCGGTCCGGAAGTGGTATTCCAGAAAGCGCCCCCCGTGCAGAACACTTCGCCGTTTGCCGGGTATCAATTCTTTGGCGAGGTGAACATCGACGGACAGAGCGGCGAGATGAGCGTGGTGTTGCGCGATCTTGAAGGGGTGGCGGTGTTCGAGAAGAAGTTGCAGCCGGTTTGAMSEFDLGRRRVMQAVGAGLLLPGLAPAVIASVKDRPVLTEGVQSGDLQGDRAMIWSRSDRPARMVVEWDTRSQFSNPRRFVSALADSRSDFTARVELTGLPPDQAIFYRVHFEDARSGVASEPWLGHLRSVPQFKRNIRFVWSGDTVGQGFGINPDIGGMRIYEAMRLRLPDFFIHSGDTIYADGPVPAQVTTEGGRIWRNLTTEAKSKVAETMDEYRGNYRYNLMDENVRRFNAEVPQIWQWDDHEVVNNWSPGKQLDERYQTKDIHSLVGRARQAWLEYAPMRLQKADHGGRIYRKLGYGPMLDVFVLDMRSYREANDANLGAAKPFLGREQLNWLKRELKQSRAQWKVIAADMPIGLGVPDGEVSPGVPRWEAVANGDPGEAQGREVEIAELLGYLRKHQVRNYVWLTADVHYCAAHHYHPEQAAFQDFEPFWEFVAGPLNAGSFGPNTLDKTFGPEVVFQKAPPVQNTSPFAGYQFFGEVNIDGQSGEMSVVLRDLEGVAVFEKKLQPVPGPT0002575_2101DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0002575-phoD-K01113NANA
D1-35_012162544hypothetical proteinATGAACAAGGCGGGCGACGTGTTGAAGAAAACCCTGTTCCAGTTGCACTGGTTTTTCGGCATCAGTGCCGGGCTGGTCCTGGCATTGATGGGCGTTACCGGTGCGGTGGTGTCTTTCCAGGACGAGATCCTGCGGGCATTGAACCCCGAGGTGCTGACGGTTGAAAAACAACCGGCCGGCGTCCTGCCTCCCGCCGAACTGGTGGAACAGATCGAAGCCGCCTCCGGCAAGACCGTCGCCATGCTCTGGGTCGAGACCGACAGTGGCAACGCCGCGCGGGCGATCTTCACCGCCCCGCCGGGAGAGAAACGCGGGCCGATGCGTTACTTCAATCCTTACAACGCGCAGTTTCTCGGCGATGTGGTGGGCCAGGATTTCTTCGGCCTGATGCTCAGGCTGCACCGCGTCCTGACCCTGGACGACGTGGGCCGGCAGATTACCGGCGCCTGCACGCTGATCCTGGTGTTCTTCTGCTTGTCCGGCCTCTACCTGCGCTGGCCACGCCAGTGGAAAAACTGGCGCGCCTGGCTGACCCTCGACTGGGCGAAAAAGGGCCGCAGCTTCAATTGGGACCTGCACTCCGTCGCGGGCACCTGGTGCCTGCTGTTCTATCTGTTGGCCGCCCTGACCGGGTTGACCTGGTCCTATGAGTGGTACAACAAAGGCCTGACCCGCCTGCTTTCCGATTCGCCCAAGGATGAGCGCGTGCGCACCCGTGGCCCGGCACCGAGCGGCCCGGCGCCGATCGCCGATTACCGGGCCATGTGGAGCAGCATCTACAGCGCCGCCGGCCCCGGCCTGTCCGCCTACAACGTGCGCATGCCACCGGTGGCCGGGCAACCGGCGACGGTGTTCTACCTACTCAAGGACGCCCCCCATGACCGCGCCCTGAACCAACTCATGCTCGACCCGAGCACCGGCGTCATCAGCCGTCACAGCCGCTACACCGACAAGAGCCTCAAGGCGCAATTGCTCACCAGCATCTATGCCCTGCATGTCGGCAGTTACTTCGGCCTGGTCGGGCGGATCCTGGTGACCGCCGCCGCATTGGCGATGCCGCTGTTTTTCATCACCGGCTGGCTGCTCTACCTGGACCGCCGACGCAAAAAACGTCAGGTCCGCCAGGCTCGCCAGGCGCTTGCCGGCAACCCTGGCGATGCCCCGGCGTGGCTGATCGGCTTTGCCAGCCAGAGCGGTTTTGCCGAGCAACTGGCCTGGCAGACCGCCGGCCAGCTCCAGGCCGCCGGGCTACCGGTGAAGGTCCAGCCGTTGGCCGGCGTCAGCGAAAAGGATTTGAACAGCGCCACCCGCGCCTTGTTTGTCGTCAGCACCTTTGGCGACGGTGAAGGACCGGACAGCGCTCGCGGTTTCGAGCGCAAGGTGCTCGGCCGGGCGATGAGCCTGGAAAGCCTGCAATACTCGGTCCTCGGCCTCGGTGACCGGCAATATGACAATTTCTGCGGTTTCGCCCGCCGTCTGCACGCCTGGCTCGCGGAGCACGGCGGCAAGACGCTGTTCGCACCGGTGGAAGTGGATAGCGGCGACCCGTACGCCTTGCGGCACTGGCAACAGCAATTGGCCGAGCTGACCGGCCAGCCTCCGGCGGATGCGTGGCAAGCGCCGAGTTTTGAACACTGGACCTTGAGCCAACGCACCCTGCTCAACCCCGACAGCAGCGGTTCGGGCGTGTACCTGCTCGGCCTCGGCGCCCCCGGCCCGAGCAGCTGGCTGGCCGGTGACCTGGTGGAAATCCTGCCGCGCAATGACCCGTGGGCTATCGAACACTTCCTCGATGGCCTGGGTATCGCCGGTATCGCTCGGGTGCAGGTCGATGGCTTGCAGCAGACGCTCGAACAAGCCCTCGCCACGCGTCAACTGCCGGAAAACCGCGCACACCTGGTGGGTCTGCACGCCCAGGCGCTGGTGGAGGCGTTGGCACCGCTGGGAATACGTGAATATTCCATCGCCTCGATCCCCGCCGACGGTGTACTGGAACTGATCGTACGCCAGGAACGTCACGCCGATGGCAGCCTGGGCATCGGTTCCGGCTGGCTGACCGAGCATGCGCCGCTGGGCAGCCCCATCAGCCTGCGCGTCCGTCGCAACAGCAGTTTCCATCTGCCGCCCCAGGGCGTGCCGATGATTCTGCTGGGCAACGGCACCGGCCTGGCCGGCTTGCGCAGTTTGCTCAAGGCCCGTGTTGCCCAGGGCATGCAGCGCAACTGGCTGCTGTTTGGCGAGCGCAACCGCGAGCATGATTTCCATTGCCGCGACGAACTGCAGGAATGGGTGACCTCCGGCGACCTGGAACGCCTGGACCTGGCGTTCTCCCGGGATCAGGAAAAGAAAATCTACGTCCAGGACCGCCTGCTGGAATCGGCCGCGTTGCTCAAGCAATGGCTGGCCGACGGCGCGGTGATCTATGTCTGCGGCAGCTTGCAGGGGATGGCGTCAGGCGTGGACCACGTGCTCAATCTGGTGCTGGGCCGCGAGGAAGTGGAAAAGCTGATCGAGCAGGGCCGGTATCGGCGGGATGTTTACTGAMNKAGDVLKKTLFQLHWFFGISAGLVLALMGVTGAVVSFQDEILRALNPEVLTVEKQPAGVLPPAELVEQIEAASGKTVAMLWVETDSGNAARAIFTAPPGEKRGPMRYFNPYNAQFLGDVVGQDFFGLMLRLHRVLTLDDVGRQITGACTLILVFFCLSGLYLRWPRQWKNWRAWLTLDWAKKGRSFNWDLHSVAGTWCLLFYLLAALTGLTWSYEWYNKGLTRLLSDSPKDERVRTRGPAPSGPAPIADYRAMWSSIYSAAGPGLSAYNVRMPPVAGQPATVFYLLKDAPHDRALNQLMLDPSTGVISRHSRYTDKSLKAQLLTSIYALHVGSYFGLVGRILVTAAALAMPLFFITGWLLYLDRRRKKRQVRQARQALAGNPGDAPAWLIGFASQSGFAEQLAWQTAGQLQAAGLPVKVQPLAGVSEKDLNSATRALFVVSTFGDGEGPDSARGFERKVLGRAMSLESLQYSVLGLGDRQYDNFCGFARRLHAWLAEHGGKTLFAPVEVDSGDPYALRHWQQQLAELTGQPPADAWQAPSFEHWTLSQRTLLNPDSSGSGVYLLGLGAPGPSSWLAGDLVEILPRNDPWAIEHFLDGLGIAGIARVQVDGLQQTLEQALATRQLPENRAHLVGLHAQALVEALAPLGIREYSIASIPADGVLELIVRQERHADGSLGIGSGWLTEHAPLGSPISLRVRRNSSFHLPPQGVPMILLGNGTGLAGLRSLLKARVAQGMQRNWLLFGERNREHDFHCRDELQEWVTSGDLERLDLAFSRDQEKKIYVQDRLLESAALLKQWLADGAVIYVCGSLQGMASGVDHVLNLVLGREEVEKLIEQGRYRRDVYPGPT0002795_551DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002795-cysJ-K00380NANA
D1-35_012172319bfrDCOG4774putative TonB-dependent receptor BfrDATGTCGCGTCAACAATCACAATTACCGGTTAATTCACCTCGTCTGCTGGCCTCCGCCATCGGCGTCGCCCTCGGTGCGACGTCAATCGCACAGATGGCCCAAGCGGCGGAAAAGATCGACGAAAAAGCCCCGCGCAACGCCATCTCCCTGGACGCTACCAGCATTACGGGCGAGGCCCAGGACACGACGTCCTACCAGGTCGAAAAAGCCTCGTCCTCGAAATACACCGCGCCGCTGGTCGACACGCCGCGCTCGGTGACGGTCATCCCCCAGCAGGTGCTCAAGGACACCGGCGCCCTCAACATGCAGGATGCCCTGCGTACCGTGCCGGGCATCACTTTTGGCGCCGGCGAAGGCGGCAACCCCCAGGGCGACCGTCCATTCATCCGTGGCTTCGATGCCCAGGGCGACACCTACCTGGATAACGTGCGTGATACCGGTTCGCAAAGCCGGGAGATCTTTGCGGTGGAGTCCATCGAGGTCAGCAAGGGCCCGAACTCGGCCATCGGCGGCCGCGGCGCCGCCGGCGGCACCATCAACCTGGTGAGCAAGAAAGCCCACTTGGGCGACTCGTTCGACGGCGGCTTCACCTGGGGTTCGGACCAGACCCAGCGCTACACCCTCGACGGCAATTACCAGTTCAGCGACAGCGCCGCCGGCCGGCTCAACCTGATGAGCCACGAAAGCAATGTCGCCGGTCGTGACCAGGTCAACTACGATCGCTGGGGCGTCGCGCCGTCGCTGGCGTTCGGCCTGGGCACCGACACCCGGATCAACCTCGACTACTACCACCTGGAAAGCAACGATCTGCCGGATTCGGGCATTCCCTACAGCGTTCCCGCCTCGGGCCGCACCGCCGATCGCACCAAAGCCAACCCGGACAAGCCCGATGCCGGCGGCGACAGCAGCAACTTCTATGGCCTCACCGACCGCGACTTCCGCAAGACCCGCGTCGACACCGCGACCATCGCCATCGAGCATGACCTGAGCGATGCACTGACCGTCAAGAACACCCTGCGCCACGGCTCCAGCATGCAGGACTACATTCTCACCCAACCCGACGACAGCAAGGGCAACGTCAACAACGGTACGGTCTGGCGGCGCGTCAACAGCCGCGTCAGCAACGTCGACACCACCACCAACCAGACTGATCTGTTCGGTGATTTTTATGTGGCCGGCTTCAAGAACAGTTTCTCCACCGGCATCGAGCTGAGCCGCGAGACCGGCGAGAAAACTTCGTACAACGTCAACACCGACACCGTACCGGGCACCACCGCCGCGAACACCAACTGCACGCCGGCCCTGGTGGGCGCGCCGAGCGGCTACAACTGCACGTCGCTGTCCAATCCGAACCCGAACGATCCCTGGAACGGCGCGATTTCCCGCAACTATGCCGGCACCGACACCACCAGCGTCACCCGCGCGCTCTACGTGTTCGACACGCTGGAACTGTCACCGCAGTGGCTGGTGAACATGGGCTTGCGCTACGACCACTTCGACACGAAATACAAGACTTACGACGCCGCCGGTACCACCACGTCCAAGGGTGACGACACCAGCGAGTTCGTCACCGGCCAGTTCGGCCTGGTCTGGAAACCAGCCGACAACGGCAGCATCTATGCGTCCTACGCGACCTCGGCCACGCCGCCCGGCAGCATGGTTGGCGAAGGCATCGAGGGCAATCCGCTCGGTGGGACGCCAGACCGCAGTGGCAACCTGCTCGCCAGTGACATGGAGCCGGAAACCACCAAGAACTACGAGATCGGCACCAAGTGGGACTTGCTCGACAGCCGGCTTTCGCTGACCGCGGCGATTTTCCGCACCGAGAAGGAAAACGCCCGGGTGCAGGTCGACACCACGACCTATGAAAACGCCGGCAAGACTCGCGTCGACGGCCTGGAGCTGTCGGCCAGCGGCAAGCTCACCGAGAAATGGCAGGTGTTCGCCGGCTACAGCTATCTGGACAGTGAGCAGGTCGATGGCGGGCCAATGAGCACCAGCGATGGCAACGAGTTGCCGAACACGCCGAAAAACAGCGCCAGCGTCTGGACCACCTACGCACTCACGCCAAAGCTGACCATCGGTGGCGGGGCCTTCTATGTGGATGATGTGTTCGGCAGCGTGGCGAACACCACCATGGTCGACTCTTATGTGCGTTATGACGCCATGGCCAGCTACAAGGTCAGCAAGCACCTGGACCTGCAACTCAACGTGCAGAACCTGACCGACGAGACTTACTACGACAAGGCATTCTCGACCCACTTCGCCAACCAGGCGGCCGGGCGCACGGCGTTGTTGAGTACCAATTTCCACTTCTGAMSRQQSQLPVNSPRLLASAIGVALGATSIAQMAQAAEKIDEKAPRNAISLDATSITGEAQDTTSYQVEKASSSKYTAPLVDTPRSVTVIPQQVLKDTGALNMQDALRTVPGITFGAGEGGNPQGDRPFIRGFDAQGDTYLDNVRDTGSQSREIFAVESIEVSKGPNSAIGGRGAAGGTINLVSKKAHLGDSFDGGFTWGSDQTQRYTLDGNYQFSDSAAGRLNLMSHESNVAGRDQVNYDRWGVAPSLAFGLGTDTRINLDYYHLESNDLPDSGIPYSVPASGRTADRTKANPDKPDAGGDSSNFYGLTDRDFRKTRVDTATIAIEHDLSDALTVKNTLRHGSSMQDYILTQPDDSKGNVNNGTVWRRVNSRVSNVDTTTNQTDLFGDFYVAGFKNSFSTGIELSRETGEKTSYNVNTDTVPGTTAANTNCTPALVGAPSGYNCTSLSNPNPNDPWNGAISRNYAGTDTTSVTRALYVFDTLELSPQWLVNMGLRYDHFDTKYKTYDAAGTTTSKGDDTSEFVTGQFGLVWKPADNGSIYASYATSATPPGSMVGEGIEGNPLGGTPDRSGNLLASDMEPETTKNYEIGTKWDLLDSRLSLTAAIFRTEKENARVQVDTTTYENAGKTRVDGLELSASGKLTEKWQVFAGYSYLDSEQVDGGPMSTSDGNELPNTPKNSASVWTTYALTPKLTIGGGAFYVDDVFGSVANTTMVDSYVRYDAMASYKVSKHLDLQLNVQNLTDETYYDKAFSTHFANQAAGRTALLSTNFHFPGPT0003875_389DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-OTHER_IRON_BINDING_PROTEINS,PGPT0003875-fiu|bfrD-K16090NANA
D1-35_01218681COG3128PKHD-type hydroxylaseATGTTGCTGCACGTTCCCGGTGTATTTTCTCCTGAAGAAGTGCAGCGTATCCGCGAGGCGCTGGAGCAGGCCGAATGGGCAGATGGCAAGGTCACGGCCGGTTATCAATCGGCCAAGGCCAAGCACAACCTGCAACTGCCCGAGGGGCATCCCCTGGCCAAGGAAATCGGCGCGGCTATGCTGGATCGGTTGTGGAAAAACCCCTTGTTCATGTCGGCGGCGCTTCCACACAAAGTCTTCCCGCCGCTGGTGAACTGCTACACCGCCGGCGGCAGTTTCGATTTCCATATCGACAATGCCGTACGCCAGCCCAAGGGCAGTGCCGAGCGGGTGCGCACCGACCTGTCGGCCACGCTGTTCTTCAGCGACCCGGAGGACTACGACGGCGGCGAGCTGGAAATCCAGGACACCTACGGCACCCAACGGGTCAAATTGCCGGCCGGGGACATGGTGTTGTATCCGGGCACCAGCCTGCACAAGGTCAACGCGGTTACCCGTGGTACACGCTATGCCTCGTTCTTCTGGACCCAGAGCCTGGTGCGCGAAGACAGCCAGCGTGCGCTGCTGTTCGAGATGGACGGTGCGATCCGGGAACTGACCCGGGACGTGCCCGAGCATCCGTCGTTGATTCGCCTGACCGGCACCTACCACAACCTGTTGCGTCGCTGGGTCGAGGTGTAGMLLHVPGVFSPEEVQRIREALEQAEWADGKVTAGYQSAKAKHNLQLPEGHPLAKEIGAAMLDRLWKNPLFMSAALPHKVFPPLVNCYTAGGSFDFHIDNAVRQPKGSAERVRTDLSATLFFSDPEDYDGGELEIQDTYGTQRVKLPAGDMVLYPGTSLHKVNAVTRGTRYASFFWTQSLVREDSQRALLFEMDGAIRELTRDVPEHPSLIRLTGTYHNLLRRWVEVNANANANANA
D1-35_01219762hypothetical proteinGTGGCGGATTTTCGTCTGCGCCGCGAGGAAGTGCTCGACGGCGAGGCCCTCAAGGCCATGCTCGAGGACAGCCCGGCGCGGGCGGCCCAGGCGATTCTGATCGCAGCGGGCGAAGGGCTGCTGGAGGCCCAGGCGCTGCTCGGGCAGATCCTGCTCGACGGGCGCGGTATCGAACAGGACAAAACCCTGGCCCGGCGCTGGTTCGAGATCGCCGCCCAACGTGGGCACCTGATGGCGCGCAACATGTTGGGGCGTTGCCATGAGCATGGCTGGGGCTGTGTCGCCGATCCTTCGGTCGCGGCCGGACATTATCGTCAGGCAGCCGAGGCAGGACTGGATTGGGCGATGTACAACCTGGCCAACCTGCTGGCGACTGGGCGCGGCGTTGCTGAGAATCAGCCGCAGGCATTGGTCCTTTATTGGCGCGCGGCCGAGCTGGGGCACGCCAAATCAATGAATCTGTTGGGGCGTTATCTGGAAGAGGGGCGTTTCTGCCCGGCGGACCCGGTGGCGGCGGCCCGGTGGTATCGACGTTCGGCCGAAGGCGGGGATTTTCGGGGGCAGTTCAGCCATGGCTGCGTATTGATTGCCGATGCCCGTATCGAAGAGGGCTTGGTGTGGTTGCGCCGGGCGTTGGCCGGAGGGAATCTGAATTTTCTTCGTGTCGCCGTGCAAACCTTGCAGACGGCGCGGCTGACTGCGTTGTCTCCACTGATCGAGGCCTATCAGGCGCGAATCCAGCAGATGCAAAAAAGCCCGTGAMADFRLRREEVLDGEALKAMLEDSPARAAQAILIAAGEGLLEAQALLGQILLDGRGIEQDKTLARRWFEIAAQRGHLMARNMLGRCHEHGWGCVADPSVAAGHYRQAAEAGLDWAMYNLANLLATGRGVAENQPQALVLYWRAAELGHAKSMNLLGRYLEEGRFCPADPVAAARWYRRSAEGGDFRGQFSHGCVLIADARIEEGLVWLRRALAGGNLNFLRVAVQTLQTARLTALSPLIEAYQARIQQMQKSPPGPT0000855_4596DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISOTHER_MOTILITY_REGULATING_FUNCTIONSMOTILITY-ACIDITY|NITROGEN_RELATED_REGULATION,PGPT0000855-exoR-K07126NANA
D1-35_012201164ldcLysine/ornithine decarboxylaseATGTCGATCCAGGTCGAAGATTATTTCGCGCGCGAAACCTTTCAGAAAATGAAGGCGTTCGCCGACAAGCAGGAAACCCCGTTCGTGGTGATCGACACCGCGATGATCGCCAAGGCCTATGACGACCTGCGCGCCGGTTTCGAATTCGCCAAGGTCTACTACGCCGTCAAGGCCAACCCGGCGGTGGAAATCATCGACCTGCTCAAGGATAAAGGCTCGAACTTCGACATCGCCTCGATCTATGAACTGGACAAGGTGATGAGCCGCGGCGTCGGCCCGGACCAGATCAGCTACGGCAACACCATCAAGAAATCCAAGGACATCCGCTACTTCTACGAGAAGGGCGTGCGCCTCTACGCCACTGACTCCGAAGCCGACCTGCGCAACATCGCCAAGGCCGCGCCGGGTTCGAAAGTCTATGTGCGCATCCTCACCGAAGGTTCGACCACGGCTGACTGGCCCCTGTCGCGCAAGTTCGGCTGCCAGACCGACATGGCCATGGACCTGCTGATCCTCGCCCGCGACCTGGGCCTGGTGCCGTACGGCATCTCGTTCCACGTCGGCTCGCAACAGCGCGACATCAGCGTCTGGGACGCGGCCATCGCCAAGGTCAAGGTGATTTTCGAGCGTCTGAAAGAAGAAGACGGCATCGTCTTGAAGCTGATCAACATGGGCGGTGGCTTCCCGGCCAACTACATCACCCGCACCAACAGCCTGGAAACCTACGCCGAGGAAATCATCCGCTTCCTCAAGGAAGACTTCGGCGACGAACTGCCGGAAATCATCCTGGAGCCGGGCCGTTCGTTGATCGCAAACGCCGGCATCCTGGTCAGCGAAGTGGTACTGGTGGCGCGCAAGTCGCGTACCGCCGTCGAGCGTTGGGTGTACACCGACGTGGGCAAATTCTCCGGCCTGATCGAAACCATGGACGAAGCCATCAAGTTCCCGATCTGGACCGAGAAGAAAGGCGAGATGGAAGAAGTGGTCATCGCCGGCCCGACCTGCGACAGCGCTGACATCATGTACGAGAACTACAAATACGGTTTGCCGCTGAACCTGGCGATTGGCGATCGTTTGTACTGGCTGTCGACGGGTGCCTACACCACCAGCTACAGCGCTGTGGAGTTCAATGGCTTTCCGCCGCTGAAGTCGTTCTACGTGTAAMSIQVEDYFARETFQKMKAFADKQETPFVVIDTAMIAKAYDDLRAGFEFAKVYYAVKANPAVEIIDLLKDKGSNFDIASIYELDKVMSRGVGPDQISYGNTIKKSKDIRYFYEKGVRLYATDSEADLRNIAKAAPGSKVYVRILTEGSTTADWPLSRKFGCQTDMAMDLLILARDLGLVPYGISFHVGSQQRDISVWDAAIAKVKVIFERLKEEDGIVLKLINMGGGFPANYITRTNSLETYAEEIIRFLKEDFGDELPEIILEPGRSLIANAGILVSEVVLVARKSRTAVERWVYTDVGKFSGLIETMDEAIKFPIWTEKKGEMEEVVIAGPTCDSADIMYENYKYGLPLNLAIGDRLYWLSTGAYTTSYSAVEFNGFPPLKSFYVPGPT0007765_2059DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007765-speC|speF|ODC1-K01581NANA
D1-35_012211158osmVCOG1125Osmoprotectant import ATP-binding protein OsmVATGATCGAACTTCAAAACCTCAGCAAAACCTTCAAGAGCAACGGCAAGGATGTAAAAGCCGTGGACTCGGTGAACCTGACCGTCAACGAAGGCGAGATCTGCGTGTTCCTCGGGCCGTCGGGCTGTGGCAAAAGCACCACGCTGAAGATGATCAACCGCTTGATCCCGCCGACCTCGGGCAAGGTCTTGATCAACGGCGAAGACACCACCGGCCTCGACGAGGTGACCCTGCGCCGCAACATCGGCTACGTGATCCAGCAGATCGGCCTGTTCCCGAACATGACCATCGAGGAGAACATCACCGTGGTGCCGCGCCTGCTCGGCTGGGACAAGCAGAAATGCCACGACCGCGCCCGCGAGTTGATGAGCATGATCAAGCTCGAACCCAAGCAGTACCTGCATCGCTACCCCCGTGAACTGTCGGGCGGCCAGCAGCAGCGGATCGGCGTGATCCGCGCCCTGGCCGCCGATGCGCCGTTGCTGCTGATGGACGAACCTTTCGGCGCGGTCGATCCGATCAACCGCGAGATGATCCAGAACGAGTTCTTCGAGATGCAACGGGCGCTGAACAAAACCGTGATCATGGTCAGCCACGACATCGACGAAGCCATCAAGCTGGGCGACAAGATCGCGATCTTCCGCGCCGGCAAGCTGGTCCAGTGCGATCACCCGGACACGCTCCTCGCCCATCCGGCCGATGAATTCGTCAGCAACTTTGTCGGCCAGGACAGCACCCTCAAGCGCCTGTTGCTGGTCAAGGCCGAAGACGCGGCGGACAACGCCCCGTCGGTCAGCCCCGAAACACCGGTGGCCGAGGCGCTGGAGTTGATGGACGAACACGACCGTCGCTACGTGGTGGTCACCTGCGCCGAGAACAAGGCGCTGGGGTATGTGCGCCGGCGCGACCTGTACCGCCAGACCGGCACCTGCGGGCAGTTCCTGCGGGAATTCAACGCCACCGCGGCCTACGACGAACATCTGCGGATTCTGTTGTCGCGTATGTATGAGTTCAACCGTTCGTGGCTGCCGGTGATGGATGCCGAGCGGGTCTTTCTTGGGGAAGTGACCCAGGAATCGATTGCCGAATACCTGAGCTCCGGCAAGTCCCGTGGCGGCAAGACCAGTATCGTCTCGCCGGCCGAGACCGCGTCTACCTGAMIELQNLSKTFKSNGKDVKAVDSVNLTVNEGEICVFLGPSGCGKSTTLKMINRLIPPTSGKVLINGEDTTGLDEVTLRRNIGYVIQQIGLFPNMTIEENITVVPRLLGWDKQKCHDRARELMSMIKLEPKQYLHRYPRELSGGQQQRIGVIRALAADAPLLLMDEPFGAVDPINREMIQNEFFEMQRALNKTVIMVSHDIDEAIKLGDKIAIFRAGKLVQCDHPDTLLAHPADEFVSNFVGQDSTLKRLLLVKAEDAADNAPSVSPETPVAEALELMDEHDRRYVVVTCAENKALGYVRRRDLYRQTGTCGQFLREFNATAAYDEHLRILLSRMYEFNRSWLPVMDAERVFLGEVTQESIAEYLSSGKSRGGKTSIVSPAETASTPGPT0013585_614DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013585-opuA|osmV|yehX-K05847NANA
D1-35_01222654osmWCOG1174Osmoprotectant import permease protein OsmWATGGATTTTCTTGACGCCTTTTCCCATCTGGACTGGCCGCTGGTGCTGCACCTGACCTGGCAGCACATCACCCTGGTGGGCATCGCCGTGACCCTGGCGATAATCGTCGGTGTGCCGCTGGGCATTTTCATGACCCGCTTCCCGGCGCTCGCCGGCCCGTTGCAAGCCAGCGCCACGGTACTGTTGACCATTCCGTCGATTGCCCTGTTCGGCCTGCTGCTGCCGTTCTATTCCAAGTTCGGCCAGGGCCTCGGTCCGATGCCAGCGATCACCGCGGTGTTCCTTTATTCGCTGCTGCCGATCATGCGCAACACGTACCTGGCCTTGACCGGCGTCGAACCGGGCATTCGTGAAGCCGCCCGCGGCATCGGCATGACCTTCGGCCAGCGCCTGCGCATGGTCGAACTGCCGATTGCCGTGCCGGTGATCCTCGCCGGCGTACGCACCGCCGTGGTCATGAACATCGGCGTCATGACCATCGCCGCCACCATCGGCGCCGGTGGCCTGGGCGTGCTCATCCTCGCTTCCATCAGCCGCAGCGACATGTCGATGCTGATCGTCGGCGCCGTGCTGGTCAGCCTCCTGGCCCTCTTCGCCGACCTGCTTCTGCAATGGCTGCAACGCTCGCTGACCCCGAAAGGACTATTAAAATGAMDFLDAFSHLDWPLVLHLTWQHITLVGIAVTLAIIVGVPLGIFMTRFPALAGPLQASATVLLTIPSIALFGLLLPFYSKFGQGLGPMPAITAVFLYSLLPIMRNTYLALTGVEPGIREAARGIGMTFGQRLRMVELPIAVPVILAGVRTAVVMNIGVMTIAATIGAGGLGVLILASISRSDMSMLIVGAVLVSLLALFADLLLQWLQRSLTPKGLLKPGPT0013590_4228DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013590-opuBD|yehW-K05846NANA
D1-35_01223903osmXCOG1732Osmoprotectant-binding protein OsmXATGAAGAAGTTGAGCTTGATCCTGGGCTGCCTGCTGTTGTTCGCGGGGTTCGCCCAAGCCGCTGAAAAACCGCTGATCCGCCTCGGTGCCCGGGTGTTCACCGAGCAGACCCTGCTGGCCGAGATCACCGCGCAATACCTGCGCGACAAGGGCTACGACGCACAGATCACTGGCGGGCTGGGCAGCAACCTGGCCCGCAGCGCCCATGAAACCGGGCAGCTGGATTTACTCTGGGAATACACCGGCGTGTCGCTGGTTTCCTACAACCATGTCACGGAAAAACTCGACAGCGCCCAGTCCTACGCCCGGGTGAAAGAACTCGACGCGAAAAAAGGCCTGGTCTGGCTCGCGCCGTCGAAATTCAGCAACACCTACGCCTTGGCCCTGCCGGAGAAAGTCGCGAAGAAGTACCCGCAGATCAATTCCATCAGCCAATTGAATACGGTGCTGCAGACCGAGGCCGAGGAAAATCACCTGGTCGCGCTTGACACCGAGTTCGCCAACCGTTCCGACGGCCTGGCCGGCATGGTCGAGCGCTACGGCATGAACCTGACCCGCAAGAATATCCGGCAGATGGACGCCGGCCTGGTCTACACCGCCCTGCGCAACAGCCAGGTGTTCGCCGGACTGGTGTACACCACCGACGGCCGACTGAACGCGTTCAAGCTGAAGCTGCTGGAAGACGACAAGCACTATTTCCCCGACTACACCGCCGCGCCGGTGGTGCGCCAGGCCTTCCTTGACGCCCATCCGCAACTGGCCGCGCAGCTCAAGCCACTGGCCGAACTGTTCGACGACGAAACCATGCGCCAGCTCAACGCCCGTGTGGATGTCGATCATGAAAGCCCTTCCGCCGTTGCCGCCGATTTCCTGCGCCAGCATTCCCTGCTCTCAACCCAATGAMKKLSLILGCLLLFAGFAQAAEKPLIRLGARVFTEQTLLAEITAQYLRDKGYDAQITGGLGSNLARSAHETGQLDLLWEYTGVSLVSYNHVTEKLDSAQSYARVKELDAKKGLVWLAPSKFSNTYALALPEKVAKKYPQINSISQLNTVLQTEAEENHLVALDTEFANRSDGLAGMVERYGMNLTRKNIRQMDAGLVYTALRNSQVFAGLVYTTDGRLNAFKLKLLEDDKHYFPDYTAAPVVRQAFLDAHPQLAAQLKPLAELFDDETMRQLNARVDVDHESPSAVAADFLRQHSLLSTQPGPT0013595_3083DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013595-opuC|yehZ-K05845NANA
D1-35_01224717osmYCOG1174Osmoprotectant import permease protein OsmYGTGGCTATCCGCTATGGCAAAGGGCTTATCGGGGGGGCGGTCGTCGTCGCCCTCCTGGCCCTGTTGGTCCACTGGATCGGCATCGATACGATCCACCGTTACCGCGACGACCTGCTGTTCTACCTGCAAGCGCACCTGATGCTTGTACTGGCTTCCATGTTGGCGGCCCTGATCGTCGGCATTCCCGCCGGCATCGCCCTCAGCCGCCCCGGCATGGTCGGGCGCGCCGAACGCTTCATGCAAGTGTTCAACATCGGCAATACCGTGCCGCCCCTGGCCGTGCTGGCCATTGCCCTGGGTATCCTGGGCATCGGCAGCGGGCCGGCGATCTTCGCCCTGTTCCTCGCCTCGCTGTTGCCCATCGTGCGCAACACCTATGAAGGCTTGAAAAATGTCCAGGGCTCGCTCAAGGAAGCTGCCGTCGGCATCGGCATGACCCCGCGCCAGGTGTTGTGGAAAGTCGAACTGCCCAACGCCGTGCCGATCATCGTCGGTGGCGTGCGCGTAGCCCTGGCGATCAACGTCGGCACCGCACCGCTGGCGTTCCTGATCGGCGCCAACAGCCTTGGCAGCCTGATCTTCCCCGGCATCGCCTTGAACAATCAGCCGCAATTGCTGCTCGGCGCGGCCTGCACCGCCTTGCTGGCGCTGCTGCTCGACGGCCTGGTAACCCTGGCCAGCCGCCTCTGGCTGGAACGCGGTCTGCGACCGTCCTGAMAIRYGKGLIGGAVVVALLALLVHWIGIDTIHRYRDDLLFYLQAHLMLVLASMLAALIVGIPAGIALSRPGMVGRAERFMQVFNIGNTVPPLAVLAIALGILGIGSGPAIFALFLASLLPIVRNTYEGLKNVQGSLKEAAVGIGMTPRQVLWKVELPNAVPIIVGGVRVALAINVGTAPLAFLIGANSLGSLIFPGIALNNQPQLLLGAACTALLALLLDGLVTLASRLWLERGLRPSPGPT0013590_2772DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013590-opuBD|yehW-K05846NANA
D1-35_012251584prfCCOG4108Peptide chain release factor RF3ATGACCAAACAGGCCGCCGAAGTCGCGAAACGCCGCACTTTCGCCATCATTTCCCACCCCGATGCCGGTAAGACCACCATCACCGAAAAGCTCTTGCTGATGGGCAAGGCGATTGCGGTGGCCGGCACGGTGAAATCCCGCAAGTCCGACCGCCATGCCACCTCCGACTGGATGGAGATGGAAAAGCAGCGGGGTATTTCCATTACCACGTCGGTCATGCAGTTCCCGTATCGCGAGCACATGATCAACCTGCTCGACACCCCGGGCCACGAAGACTTCTCCGAAGACACCTACCGCACGCTGACCGCGGTGGACTCGGCCTTGATGGTCCTCGACGGCGGCAAGGGCGTCGAGCCACGGACTATCGCGCTGATGGACGTCTGCCGTCTGCGGGACACGCCGATCGTCAGCTTCATCAACAAGCTCGACCGCGACATTCGCGACCCGATCGAACTGCTCGACGAAATCGAAGCGGTCCTGAAGATCAAGGCAGCGCCGATCACCTGGCCGATCGGTTGCTACCGCGACTTCAAGGGCGTTTACCACCTGGCCGACGACTACATCATCGTCTACACCGCCGGCCACGGTCATGAGCGCACCGAAACCAAGATCATCGAGAAGCTCGACTCCGACGAGGCCCGCGCGCACCTGGGCGACGAATACGACCGTTTTGTCGAGCAGCTGGAGCTGGTGCAGGGCGCCTGCCATGAATTCAACCAGCAGGAATTCCTCGATGGCCAACTGACCCCGGTGTTCTTCGGGACCGCCCTGGGCAACTTCGGCGTCGACCATGTGCTCGACGCCGTTGTCGACTGGGCTCCGCGCCCGCTGCCACGCGTTGCCAACGAGCGCACCGTGGAACCGGTGGAAGAGAAGTTCGCAGGCTTCGTGTTCAAGATCCAGGCGAACATGGACCCCAAGCACCGCGACCGTATCGCCTTCATGCGCATCTGCTCCGGCAAATACGAAAAAGGCATGAAGATGCGCCACGTGCGCACCGGCAAGGACGTGCGCATCGGCGACGCCTTGACCTTCTTCTCCTCGGAACGCGAGCAACTGGAAGAGGCCTTCGCCGGTGACATCATCGGGTTGCACAACCACGGCACCATCCAGATCGGCGACACCTTCACCGAAGGCGAAGCCCTGGGTTTTACCGGCATCCCGCATTTCGCCCCGGAACTGTTCCGCCGGGTACGGCTGAAGGATCCGCTCAAGTCCAAGCAACTGCGCCAGGGCCTCCAGCAGTTGGCCGAAGAGGGCGCCACCCAGGTGTTCTTCCCGGAGCGCAGCAACGACATCATCCTCGGCGCCGTCGGTGTGCTGCAGTTCGACGTCGTCGCCAGTCGCCTGAAAGAGGAATACAAAGTCGAGTGCTCCTACGAGCCGATCACCGTGTATTCCGCCCGCTGGATTGAATGCGCCGACAAGAAAAAACTTGAGGAATTTTCCAACAAGGCCGTGGAAAACCTCGCGCTGGACGGCGGCGGCCACCTGACCTACCTGGCGCCAACACGGGTCAATCTCGCGCTGATGGAAGAGCGCTGGCCAGATGTGAAATTCCGCGCGACGCGCGAGCATCACTAAMTKQAAEVAKRRTFAIISHPDAGKTTITEKLLLMGKAIAVAGTVKSRKSDRHATSDWMEMEKQRGISITTSVMQFPYREHMINLLDTPGHEDFSEDTYRTLTAVDSALMVLDGGKGVEPRTIALMDVCRLRDTPIVSFINKLDRDIRDPIELLDEIEAVLKIKAAPITWPIGCYRDFKGVYHLADDYIIVYTAGHGHERTETKIIEKLDSDEARAHLGDEYDRFVEQLELVQGACHEFNQQEFLDGQLTPVFFGTALGNFGVDHVLDAVVDWAPRPLPRVANERTVEPVEEKFAGFVFKIQANMDPKHRDRIAFMRICSGKYEKGMKMRHVRTGKDVRIGDALTFFSSEREQLEEAFAGDIIGLHNHGTIQIGDTFTEGEALGFTGIPHFAPELFRRVRLKDPLKSKQLRQGLQQLAEEGATQVFFPERSNDIILGAVGVLQFDVVASRLKEEYKVECSYEPITVYSARWIECADKKKLEEFSNKAVENLALDGGGHLTYLAPTRVNLALMEERWPDVKFRATREHHNANANANANA
D1-35_01226252hypothetical proteinATGAATAAGCTGCTGCGCATGATGTTTTTTCTAAAGGTGTTGGTGATGCTGTCCCTCGGTTCCACCGCTGCGTGGGCCGAATGCGATGAGCACGAGAAGCACGCGTCGAATGGCTCGGTGGTTCAAGGCGAGTTGATGCTTGCCGCGACCGATGCGGACGCAGGCGATCCGGACGATGGCGAGGATGACGATGGTTCGCCAATCGACACACCGGATGGCGATGAGGATGAAGAGGGCGATAGCCAGACGTAGMNKLLRMMFFLKVLVMLSLGSTAAWAECDEHEKHASNGSVVQGELMLAATDADAGDPDDGEDDDGSPIDTPDGDEDEEGDSQTNANANANANA
D1-35_01227981ddpF_1COG1124putative D,D-dipeptide transport ATP-binding protein DdpFATGGCCGTCGTACTTACCGCCCGTGACCTGACCCGTCATTACGAAGTGTCCCGTGGCATGTTCAAGGGCCATGCGACCGTACGCGCCCTCAACGGTGTGTCGTTCGAACTGGAAGCCGGCAAGACCCTGGCCGTGGTGGGTGAATCCGGTTGCGGCAAATCCACCCTCGCCCGGGCCCTGACGCTGATCGAAGAGCCGTCCGCCGGTTCCTTGAAAATCGCCGGCCAGGAAGTGGCCGGCGCCAACAAGGCCGAGCGCAAGCAACTGCGCAAAGACGTGCAGATGGTCTTCCAGAGTCCTTATGCGTCCCTCAACCCGCGGCAGAAAATCGGTGATCAACTGGCCGAGCCGTTGCTCATCAACACCAACCTCTCGGCCACCGAGCGTCGCGACAAAGTCCAGGCGATGATGAAGCAGGTGGGCCTGCGCCCCGAGCACTACCAGCGCTATCCGCATATGTTCTCCGGCGGCCAGCGCCAGCGCATCGCCCTGGCCCGCGCGATGATGCTGCAACCCAAGGTGCTGGTGGCGGACGAACCGACCTCGGCGCTGGACGTGTCGATCCAGGCCCAGGTGCTGAACCTGTTCATGGACCTGCAACAGGAGTTCAACACCGCCTACGTGTTCATCTCCCATAACCTGGCGGTGGTGCAGCATGTCGCCGACGACGTGATGGTGATGTACCTCGGCCGCCCGGTAGAAATGGGCCCCAACGAGTCCATCTACAGCCGCCCGCTACACCCCTACACCCAGGCGCTGCTGTCGGCCACCCCGACCATCCATCCGGACCCGAACAAGCCGAAGATCAAAATCGTCGGCGAACTGCCCAACCCGCTCAACCCACCGTCCGGCTGCGCCTTCCACAAGCGCTGCCCGTACGCGACCGAGCGTTGCAAGACTGAAGAACCGGCGTTGCGGCCACTCGATAACCGGTTGGTGGCGTGTCACTACGCGGAGCGGTTCCTTGACGGCGCGGCGTAAMAVVLTARDLTRHYEVSRGMFKGHATVRALNGVSFELEAGKTLAVVGESGCGKSTLARALTLIEEPSAGSLKIAGQEVAGANKAERKQLRKDVQMVFQSPYASLNPRQKIGDQLAEPLLINTNLSATERRDKVQAMMKQVGLRPEHYQRYPHMFSGGQRQRIALARAMMLQPKVLVADEPTSALDVSIQAQVLNLFMDLQQEFNTAYVFISHNLAVVQHVADDVMVMYLGRPVEMGPNESIYSRPLHPYTQALLSATPTIHPDPNKPKIKIVGELPNPLNPPSGCAFHKRCPYATERCKTEEPALRPLDNRLVACHYAERFLDGAAPGPT0004520_455DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0004520-dppF-K12372NANA
D1-35_01228969dppDCOG0444Dipeptide transport ATP-binding protein DppDATGTCACTGCTAGAAATCAAGAATCTCAACGTCCGCTTCGGCGACGCCACCGCCGTGCCGGTGGTCGACGGCCTGGACCTGAGCGTGGATAAAGGCGAGGTGCTGGCGATCGTCGGCGAATCGGGCTCGGGTAAATCCGTGACCATGATGGCGCTGATGGGCCTGATCGAGCACCCCGGCATCGTCACCGCCGATGCGCTGAACTTCGACGGCAAGAACATGCTCAAGCTGAGCAACCGCCAGCGCCGGCAGATCGTCGGCAAGGACCTGGCGATGGTTTTCCAGGACCCGATGACCGCGCTCAACCCCAGCTACACCGTGGGTTTCCAGATCGAAGAAGTACTGCGCCTGCATCTGAAGCTGTCCGGCAAGGCCGCCCGCAAGCGCGCCATCGAACTGCTGGAAAAAGTCGAGATCCCGGGCGCCGCCAGTCGCATGGATGCCTACCCGCATCAACTGTCCGGCGGCATGAGCCAGCGTGTGGCGATTGCCATGGCGATTGCCGGCGAGCCGAAACTGCTGATCGCCGACGAACCGACCACCGCTCTGGACGTGACCATCCAGGCGCAGATCATGGACCTGCTGCTGGCCCTGCAGAAAGAGCAGGACATGGGCCTGGTGCTGATCACCCATGACCTCGCCGTCGTGGCTGAAACCGCGCAGCGCGTGTGCGTGATGTACGCCGGCCAGGCCGTGGAAGTGGGCAAGGTGCCGCAGCTGTTCGACATCCCGGCCCACCCGTATAGCGAAGCACTGCTGGCGGCGATTCCGGAGCACAGCATGGGCGCCGAGCGCCTGGCGACGTTGCCGGGCATCGTGCCCGGTCGCTACGACCGCCCGCAAGGCTGCCTGCTGTCGCCGCGCTGCCCGTACGTGCGTGACAACTGCCGCCAGGAGCGCCCTGCGCTCGATCCGAAATCCAACAGCCTCGCCCGCTGCTTCTACCCGTTGAACCAGGAGGTGGCGTGAMSLLEIKNLNVRFGDATAVPVVDGLDLSVDKGEVLAIVGESGSGKSVTMMALMGLIEHPGIVTADALNFDGKNMLKLSNRQRRQIVGKDLAMVFQDPMTALNPSYTVGFQIEEVLRLHLKLSGKAARKRAIELLEKVEIPGAASRMDAYPHQLSGGMSQRVAIAMAIAGEPKLLIADEPTTALDVTIQAQIMDLLLALQKEQDMGLVLITHDLAVVAETAQRVCVMYAGQAVEVGKVPQLFDIPAHPYSEALLAAIPEHSMGAERLATLPGIVPGRYDRPQGCLLSPRCPYVRDNCRQERPALDPKSNSLARCFYPLNQEVAPGPT0004515_546DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0004515-dppD-K12371NANA
D1-35_01229912dppCCOG1173Dipeptide transport system permease protein DppCATGAGTACTCCAACTACCGCGGTAGCAGTCGATCAAAGCCTGCTGTACCCGTCCCCGTACAAAGAATTCTGGCAAGCGTTTTCCCGCAACAAGGGCGCCGTCGCCGGGCTGCTGTTCATGATCCTGATCGTGTTCTGCGCACTCTTCGCCCCGTGGGTCGCGCCGCACGACCCGAGCGAGCAATACCGCGACTTCCTGCTGACGCCGCCGGCGTGGCTCGAAGGTGGGCAGATGCAGTTCCTGCTGGGCACCGACGAACTGGGCCGTGATTTGCTCTCGCGCCTGATCCAGGGTTCGCGGCTGTCGCTGCTGATCGGCTTGTCGTCGGTGGTGATGTCGCTGATCCCGGGCATCCTGCTGGGGCTGTTCGCCGGGTTCTTCCCGCGCATCCTCGGCCCGACCATCATGCGCCTGATGGACATCATGCTCGCCCTGCCCTCGCTGCTGCTGGCCGTGGCGATCGTCGCCATCCTCGGCCCAGGCCTGATCAACACTGTGATCGCCATCGCCATCGTCTCGCTGCCGTCCTACGTGCGCCTGACCCGCGCCGCCGTGATGGGCGAGCTGAACCGCGACTACGTGACCGCCGCCCGCCTGGCCGGTGCCGGCCTGCCGCGCCTGATGTTCATCACCGTGCTGCCCAACTGCATGGCACCGCTGATCGTCCAGGCGACCCTGAGCTTCTCCTCGGCGATCCTCGACGCCGCCGCCCTGGGCTTCCTCGGCCTCGGCGTGCAACCGCCGACCCCTGAGTGGGGCACCATGCTGGCCTCGGCCCGCGACTACATCGAACGCGCCTGGTGGGTCGTGAGCCTGCCTGGCCTGACCATTTTGCTCAGCGTGCTGGCAATCAACCTGATGGGCGACGGTCTGCGCGATGCGCTGGACCCGAAACTCAAGAATGCCGCCTGAMSTPTTAVAVDQSLLYPSPYKEFWQAFSRNKGAVAGLLFMILIVFCALFAPWVAPHDPSEQYRDFLLTPPAWLEGGQMQFLLGTDELGRDLLSRLIQGSRLSLLIGLSSVVMSLIPGILLGLFAGFFPRILGPTIMRLMDIMLALPSLLLAVAIVAILGPGLINTVIAIAIVSLPSYVRLTRAAVMGELNRDYVTAARLAGAGLPRLMFITVLPNCMAPLIVQATLSFSSAILDAAALGFLGLGVQPPTPEWGTMLASARDYIERAWWVVSLPGLTILLSVLAINLMGDGLRDALDPKLKNAAPGPT0004510_236DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0004510-dppC-K12370NANA
D1-35_012301011dppB_1COG0601Dipeptide transport system permease protein DppBATGTTTAGTTTTATTGCCCGCCGACTGGGATTACTGATTCCCACGTTCTTCGGCATCACCTTGCTGACCTTCGCGTTGATTCGCATGATTCCCGGCGACCCCGTGGAAGTGATGATGGGCGAACGTCGGGTCGATCCCGAAATGCATGCTCAGGCAATGGAACGCCTTGGCCTGAACAAACCGCTGTATGCCCAGTACCTGGACTACATCGGCAAACTGGCCCAGGGCGATCTTGGCGAATCGCTGCGCACCCGTGAAAGCGTATGGAGCGAGTTCAGCTCGCTGTTTCCCGCGACCCTGGAACTGTCCCTGGCCGCGCTGCTGTTCGCCGGTATCCTCGGCCTGCTGGCCGGGGTGATCGCGGCGCTCAAGCGAGGATCCCTGTTCGACCATGGGGTGATGGGCATCTCCCTGGCGGGATATTCGATGCCGATCTTCTGGTGGGGCCTGATCCTGATCATGTTCTTCTCGGTGTCCCTGGGCTGGACACCGGTGTCGGGACGGATCGACCTGCTCTACGACATCGAGCCGAAAACCGGCTTCATGCTGATCGATACGCTGCTGGCCGATGAGCCGGGCGCGTTCCTCGACGCACTGCATCACCTGATCCTGCCGGCTATCGTGCTGGGCACCATTCCGCTGGCGGTGATCGCCCGCATGACCCGCTCCTCGATGCTCGAAGTGCTGCGCGAGGACTACATCCGCACCGCCAAGGCCAAGGGCCTGTCGCCGTCGCGCGTGGTGTTCGTGCACGGCCTGCGCAACGCGCTGATCCCGGTGTTGACCGTGGTCGGCCTGCAAGTCGGCACGCTGCTGGCCGGCGCGGTCCTGACCGAAACGATCTTCTCCTGGCCGGGCATCGGCAAGTGGCTGATCGAAGCCATCGGCGCCCGGGACTATCCCGTGGTGCAGAACGGCATCCTGTTAATCGCCTGCCTGGTGATTCTGGTCAACTTCGTCGTGGACATTCTCTACGGCTTTGCCAACCCACGTATCCGTCACCAGCGCTGAMFSFIARRLGLLIPTFFGITLLTFALIRMIPGDPVEVMMGERRVDPEMHAQAMERLGLNKPLYAQYLDYIGKLAQGDLGESLRTRESVWSEFSSLFPATLELSLAALLFAGILGLLAGVIAALKRGSLFDHGVMGISLAGYSMPIFWWGLILIMFFSVSLGWTPVSGRIDLLYDIEPKTGFMLIDTLLADEPGAFLDALHHLILPAIVLGTIPLAVIARMTRSSMLEVLREDYIRTAKAKGLSPSRVVFVHGLRNALIPVLTVVGLQVGTLLAGAVLTETIFSWPGIGKWLIEAIGARDYPVVQNGILLIACLVILVNFVVDILYGFANPRIRHQRPGPT0004505_417DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0004505-dppB-K12369NANA
D1-35_012311596dppA_1COG0747Periplasmic dipeptide transport proteinATGAACATGAACCCCCTACGCGCCGCCATTGCCGCCGCACTGCTGAGTGTTGCCGTTGGCGCCACGGCCAAACCCCTGGTGGTTTGCACAGAAGCCAGCCCGGAAGGCTTCGACATGGTCCAGTACACGACTGCAGTCACCGCCGACGCCGTGGCCGAAACGATCTTCAACCGCCTGGCCGACTTCAAGCCCGGCACCACCGAAGTGATTCCTGCCCTGGCCGAGTCCTGGGACATCAGCGACGACGGCTTGACGTATACCTTCCACCTGCGCAAAGGCGTCAAGTTCCACACCACCGATTACTTCAAGCCGACCCGCGACATGAACGCCGACGACGTGGTCTGGAGCTTCCAGCGCCAGCTGGACCCGAATCATCCGTGGCACAAACTGTCGAGCGTGGGTTTCCCGTACTTTGAAAGCATGGGCTTCAAGGAACTGCTCAAGAACGTCGAAAAAGTCGACGAGCACACGGTCAAGTTCACCCTGACCCGCCGCGAAGCACCGTTCCTGGCCGACATCGCCATGGCGTTCTCCTCGATCTACCCGGCCGAATACGCCGACCAGTTGCTCAAGGCAGGCAAGGCCGCCGAGCTGAACAACAAGCCGATCGGCACCGGGCCGTTCATCTTCCAGCGCTACAACAAAGACGCCCAGGTTCGCTTCAAGGCCAACCCGGACTACTTCCGGGGCAAGCCGCCGGCCGATGCGCTGGTGCTGGCGATCGCCACCGATAACAATGTGCGCATGCAGAAACTCAAGACCAATGAGTGCCAGATTGCGCTGTACCCGAAACCGGACGATATCCCCAGCATCAAGAAAGACCCGAACCTGAAGGTCACCGAGCTGGATGCGATGACCGTTTCCTACACCGCCCTGAACACCAGCCACAAATACATGAGCGATGTGCGGGTGCGCAAAGCCATCGACCTGGCCTTCGACAAGGAAGCCTACGTCAACGCGCTGTTTGGCAAAGGTAACGCCACCGCCGCGGTCAATCCGTACCCGCCGACGCTGCTGGGTTACAACCACGACCTGAAGAACCCGACCCGCGACCTCGACAAGGCGCGCCAGTTGCTCAAGGAAGCCGGCGTGCCGGAAGGCACCGTGTTTACCCTGTTCACCCGCAACGGCGGCGGTCCGACCAACCCCAACCCGATGCTCGGCGCGCAAATGATGCAGGCCGACCTGACGAAAGTCGGGATCAAGGTCGATATCCGCGTCATGGAATGGGGCGAAATGCTCAAACGCGCGAAAAACGGCGAGCACGACATGGTTTCCGCCGGATGGGCGGGCGATAACGGCGACCCGGATAATTTCCTGACGCCTATGCTCAGTTGCGAAGCCGCCAAGAACGGCGAAAACTACGCGCGCTGGTGCAACGAAAAATTCCAGGCGCTGCTCGACCAGGCACGCGCCACAGTGAACCCCGAGGAGCGCGCCAGGCTCTATGAGCAGGCCCAGGTGATTTTCAACCAGGACCAGCCATGGATCAGCATGGCCCACACCCGCATGTTCACGGCAATGCGCAAGAACGTAGAGGGCTATGTGATTAGCCCGCTCACCACCAACAACTTCGCCACCACCCAGGTGAAGTAGMNMNPLRAAIAAALLSVAVGATAKPLVVCTEASPEGFDMVQYTTAVTADAVAETIFNRLADFKPGTTEVIPALAESWDISDDGLTYTFHLRKGVKFHTTDYFKPTRDMNADDVVWSFQRQLDPNHPWHKLSSVGFPYFESMGFKELLKNVEKVDEHTVKFTLTRREAPFLADIAMAFSSIYPAEYADQLLKAGKAAELNNKPIGTGPFIFQRYNKDAQVRFKANPDYFRGKPPADALVLAIATDNNVRMQKLKTNECQIALYPKPDDIPSIKKDPNLKVTELDAMTVSYTALNTSHKYMSDVRVRKAIDLAFDKEAYVNALFGKGNATAAVNPYPPTLLGYNHDLKNPTRDLDKARQLLKEAGVPEGTVFTLFTRNGGGPTNPNPMLGAQMMQADLTKVGIKVDIRVMEWGEMLKRAKNGEHDMVSAGWAGDNGDPDNFLTPMLSCEAAKNGENYARWCNEKFQALLDQARATVNPEERARLYEQAQVIFNQDQPWISMAHTRMFTAMRKNVEGYVISPLTTNNFATTQVKPGPT0004500_1300DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0004500-dppA-K12368NANA
D1-35_012321413oprD_1Porin DATGAAACTGAGCAGCACCGCGATACTGGCCCTGGCCATCAGCAGCATCACCGCGACGGCCTATGCCGAGTCTCAAAGTCAGGCGGTCACGCCCGTGGCTCTCAAGACCACCAGCGAGCAAAGCGAAGCCAAGGGTTTCATCGAAGGCCAGTCCATCAGTGGCACCACGCGCAACTGGTACGCCAACGAGCAATTCAAGCGGGGCACAAAGCTCACCTATCGCAAGAACGGCGAAGCGCGCGAGACCGACCGCCGTATCAACTGGGTTCAGGGCACCATCGTCAAATACAACTCGGGGTTCACCGAAGGCACCGTGGGTTTCAGCACCGAACTGGCCGCCTATAACGCTATCGCCCTTGACCAGGATCGCAAGGATCTGGCGTCCAACAATGGCGGAGCGCCGACCACCCGTCCGGGCGCCGGCAACAACCGTACCCTGACGCGCGAAGGCGGCGACGCCGTGGGCCAGTGGAGCAAACTGGGTCTGGCCAACCTCAAGGCCCGTGTTTCCAACACCACTCTGACCGCCGGCCGCCAGAACTTCAGCAGCCCGATGGTCGATGTCATCGGCAACCGTGCGCTGCCTTCCAGCTTCCAGGGTGTGAGCCTGCACAGTGAAGAATTCGAAAACCTGGCGTTCGATATAGCCACCTTCGACCGTAACTCTCCTCGCATGGAACAAAGCCAGCGCAAGTTTCGCTCCGAGTATGGCGACAGCAGCGTCGAGACCGATCACGTCAACACCGCCGGTATCAGTTACCAGCCACTGGCCAGCCTGAAGACCAGCCTCTGGGCGACCGAGGCCGAGGACATGTGGAACCAGTACTATTTCGGTGCCACCCATGAACTGGGCGACAGCTCGGTGCTGAGCCTGACTACCGGCCTGAACTACTACAAGACCGTGGACTCGGGTAAAAGCAAGCTGGGCGAAATCGACAACGACACCTATTCCCTGTCGTTCGGCTTGACGCACCAGGCCCACAGCCTGACGTTCTCTTACCAGCAAGTGAACGGCAACGAATACTTCGACTACCTGCACGAAACCAACGGCATCTACCTGGCCAACTCCCTGTTGTCGGACTTCAACGGCCCGAACGAGAAATCCTTCCAGGTCGCCTATGGCCTGAACATGGCCGAATACGGCGTTCCGGGCCTGAAATTCAACATTTATCAGGCTCGCGGCTGGGGCATCGACGGTACGCATTACAACAGCACCGGTTATGACGTCGCCGCGATGGACGGCGAGCATCACTACGAATACGGTATCGGTGCCTCCTATGCCGTCCAGAGCGGCCCGCTGAAAGCCACCGCGGTCCGTGCGACCTACACCGCACACCGAGCCAGCGAAAACCAGGCCGACGGCAGTCTCAACGAATTCCGCCTGGTTACCACCATCCCGTTCAACATTCTCTAAMKLSSTAILALAISSITATAYAESQSQAVTPVALKTTSEQSEAKGFIEGQSISGTTRNWYANEQFKRGTKLTYRKNGEARETDRRINWVQGTIVKYNSGFTEGTVGFSTELAAYNAIALDQDRKDLASNNGGAPTTRPGAGNNRTLTREGGDAVGQWSKLGLANLKARVSNTTLTAGRQNFSSPMVDVIGNRALPSSFQGVSLHSEEFENLAFDIATFDRNSPRMEQSQRKFRSEYGDSSVETDHVNTAGISYQPLASLKTSLWATEAEDMWNQYYFGATHELGDSSVLSLTTGLNYYKTVDSGKSKLGEIDNDTYSLSFGLTHQAHSLTFSYQQVNGNEYFDYLHETNGIYLANSLLSDFNGPNEKSFQVAYGLNMAEYGVPGLKFNIYQARGWGIDGTHYNSTGYDVAAMDGEHHYEYGIGASYAVQSGPLKATAVRATYTAHRASENQADGSLNEFRLVTTIPFNILNANANANANA
D1-35_012331602dppA_2COG0747Periplasmic dipeptide transport proteinATGCGCCATACCTTGGTTTTATCCGCATTGCTGGGCACCGGCCTGCTGGCCGCTACATCCGCGGCCCAGGCCGCCGGCGGCAGCCTGGTGTTCTGTTCCGAAGGCAGCCCCGCCGGTTTCGACACTGCGCAATACACCACCGCGACCGACAACGATGCCGCCGAACCGCTGTACAACCGCCTGGCCGAATTTGAAAAAGGCGCGACCAATGTCGTGCCGGGCCTGGCGACGAGCTGGGACATTTCCGAAGACGGCCTGAAATACACCTTCCATCTGCGCGCAGGGGTGAAGTTCCACACCACCGACTACTTCACGCCGACCCGGGATTTCAACGCCGACGATGTACTGTTCACCTTCAACCGCATGCTCGATCCGCAGCATCCGTTCCGCAAGGCCTACCCCACCGAGTTCCCGTACTTCAACGGCATGAGCCTGAACAAGAACATCGCCAAGGTCGAAGCGACAGGACCGTTGACGGTGGTCATGACGCTCAACAGCGTGGACGCCGCGTTCATCCAGAACATCGCCATGAGCTTCGCCTCGATCCTTTCGGCCGAGTACGCTGACAAGCTGCTCACTAGCGGCAAGCCGAGCGACATCAACCAGAAGCCGATCGGCACCGGGGCTTTCGAGTTCAAGAGCTACCAGAAAGACTCCAACATCCGCTACGTCGCCAACAAGCAGTACTGGGCGCCTGAGCGGGTCAAGCTGGACAACCTGATCTTCTCGATCAACACCGATGCGTCGGTGCGGGTGCAGAAGCTCAAGGCCAACGAATGCCAGATCACCCTGCATCCACGCCCGGCCGATGTGCCGGCGCTGAAGAACGATCCCAAGCTGCAACTGATCGAGAAACCCGGCTTCAACCTCGGCTACATCGCCTATAACACCCGCCACAAACCCTTCGACCAGGTCGAAGTGCGCCGGGCGCTGGACATGGCGGTGAACAAGCAGGGCATTCTCAACGCCGTTTACCAGGGCGCGGGGCAGTTGGCGCAAAACTCCATGCCGCCAACTCAATGGTCCTACGACGACACGATCAAGGACGCTCCCTACGACCCGGAAAAAGCCAAGGAGCTGCTCAAGGCCGCCGGGGTCAAGGAAGGCACCGAAATCACCCTCTGGGCCATGCCCGTGCAACGCCCGTACAACCCCAACGCCAAGCTGATGGCCGAAATGCTCCAGTCCGACTGGGCGAAAATCGGCTTGAAGGTGAAGATCGTCACCTACGAATGGGGCGAATACATCAAGCGCACCAAGAACGGCGAGCACGACATCAACCTGATCGGCTGGACCGGCGACAACGGGGACCCGGACAATTGGATGGGCACGCTGTACAGCTGCGACGCCATTGGCGGCAACAACTACTCCCAATGGTGTGACCAGGACTACGACAAGCTGATCAAGCAGGCCAAGATCGTCACCGACCGCGAGCAGCGCACCGTGCTCTATAAACAGGCCCAGCAGTTGCTCAAGCAGCAAGTGCCGATCACGCCTATCGCCCACTCGACGGTCAACCAGCCGCTGAGTGCCAAAGTCGAAGGGTTCAAGGTCAGCCCCTTCGGTCGCAACGTCTTCTCGGGCGTCAGCCTGAACCCATAAMRHTLVLSALLGTGLLAATSAAQAAGGSLVFCSEGSPAGFDTAQYTTATDNDAAEPLYNRLAEFEKGATNVVPGLATSWDISEDGLKYTFHLRAGVKFHTTDYFTPTRDFNADDVLFTFNRMLDPQHPFRKAYPTEFPYFNGMSLNKNIAKVEATGPLTVVMTLNSVDAAFIQNIAMSFASILSAEYADKLLTSGKPSDINQKPIGTGAFEFKSYQKDSNIRYVANKQYWAPERVKLDNLIFSINTDASVRVQKLKANECQITLHPRPADVPALKNDPKLQLIEKPGFNLGYIAYNTRHKPFDQVEVRRALDMAVNKQGILNAVYQGAGQLAQNSMPPTQWSYDDTIKDAPYDPEKAKELLKAAGVKEGTEITLWAMPVQRPYNPNAKLMAEMLQSDWAKIGLKVKIVTYEWGEYIKRTKNGEHDINLIGWTGDNGDPDNWMGTLYSCDAIGGNNYSQWCDQDYDKLIKQAKIVTDREQRTVLYKQAQQLLKQQVPITPIAHSTVNQPLSAKVEGFKVSPFGRNVFSGVSLNPPGPT0004500_819DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0004500-dppA-K12368NANA
D1-35_012341626dppA_3COG0747Periplasmic dipeptide transport proteinATGCTTAAACACGCGGTCATTCCGTTTTTAGTCGGCGCAGGCTTGTTAGCCAGCGCTCCTTTCGCTTCCGCCGCGACTAACCTGGTGTTCTGCTCCGAAGGCAGCCCGGCCGGTTTTGACCCTGGTCAGTACACCACCGGAACCGACTTCGATGCCTCTGCAGAAACCATGTTCAACCGCCTGACCCAGTTTGAGCGCGGCGGTACCGCCGTGATTCCTGGCCTGGCCACCAAGTGGGACATTTCCGAAGACGGCCTGACCTACACGTTCCATCTGCGTGAAGGCGTCAAGTTCCACACCACCCCGTATTTCAAGCCGACCCGTGAATTTAATGCCGATGACGTGCTCTTCACGTTCAACCGCATGATCAACAAGGACGATCCCTTCCGTAAGGCGTACCCAACCGAATTCCCGTACTTCACCGACATGGGGATGGACACCAACATCACCAAGGTCGATAAAGTCGACGACCACACCGTCAAGTTCACTCTCAAGGATGTCGACGCCGCGTTCATCCAGAACCTGGCCATGAGCTTCGCCTCGATCCAGTCCGCCGAGTACGCCGCCCAGCTGCTCAAGGACGGCAAGCCTGCCGACATCAACCAGAAGCCGATCGGCACCGGCCCGTTCGTGTTCAAGAGCTACCAGAAAGACTCCAACATCCGTTACACCGGCAACAAGGACTACTGGAAGCCTGAAGACGTGAAGATCGACAACCTGATCTTCGCCATCACCACCGACCCGTCGGTGCGTATCCAGAAGCTGAAGAAGAACGAGTGCCAGATCACCCTCTTCCCACGCCCGGCCGACCTCAAGGCCCTCAAGGACGACAAAGCGCTGAAGATGCCTGACCAGGCGGGTTTCAACCTGGGCTATGTAGCTTACAACGTGATGGAAAAAGTCAAAGGCGACGACAAGCCCAACCCGTTGGCTGACCTGCGCGTTCGTCAAGCCCTGGACATGGCTGTAAACAAGCAACAGATCATCGACTCGGTGTACCAAGGTGCGGGACAACTGGCGGTCAACGCCATGCCTCCGACCCAATGGTCCTACGACACCACCATCAAAGATGCCAAATACGACCCTGAAAAAGCCAAGGCTCTGCTCAAGGAAGCCGGCGTCAAGGAAGGCACGGAGATCGTTCTGTGGGCCATGCCGGTTCAGCGTCCGTACAACCCGAACGCCAAACTGATGGCGGAAATGCTGCAGAATGACTGGTCCAAGATCGGCCTGAAGGTCAAGATCACCAGCTATGAGTGGGGCGAGTACATCAAGCGCTCCAAGGGCGGCGAGAACCAGGCCATGATCATCGGCTGGAGCGGTGATAACGGTGACCCGGACAACTGGCTCAACGTGTTGTTTGGCTGCGACTCGCTGCAAGGCAACAACTTCTCCAAATGGTGTGACAAGAAGTTCGACGGCCTCGTCAAGGAAGCCAAGCGCACCACCGACCAGGCCAAGCGCACCGACCTCTACAAACAGGCGCAACACGTCCTCAAGGACGCCGTGCCGATGACACCTATCGCTCACTCGACGGTGTATCAACCCATGCGCGCCAACGTGCAGGACTTCAAGATCAGCCCCTTTGGCTTGAACTCCTTCTACGGCGTCAGCGTCAGCAAATAAMLKHAVIPFLVGAGLLASAPFASAATNLVFCSEGSPAGFDPGQYTTGTDFDASAETMFNRLTQFERGGTAVIPGLATKWDISEDGLTYTFHLREGVKFHTTPYFKPTREFNADDVLFTFNRMINKDDPFRKAYPTEFPYFTDMGMDTNITKVDKVDDHTVKFTLKDVDAAFIQNLAMSFASIQSAEYAAQLLKDGKPADINQKPIGTGPFVFKSYQKDSNIRYTGNKDYWKPEDVKIDNLIFAITTDPSVRIQKLKKNECQITLFPRPADLKALKDDKALKMPDQAGFNLGYVAYNVMEKVKGDDKPNPLADLRVRQALDMAVNKQQIIDSVYQGAGQLAVNAMPPTQWSYDTTIKDAKYDPEKAKALLKEAGVKEGTEIVLWAMPVQRPYNPNAKLMAEMLQNDWSKIGLKVKITSYEWGEYIKRSKGGENQAMIIGWSGDNGDPDNWLNVLFGCDSLQGNNFSKWCDKKFDGLVKEAKRTTDQAKRTDLYKQAQHVLKDAVPMTPIAHSTVYQPMRANVQDFKISPFGLNSFYGVSVSKPGPT0004500_291DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0004500-dppA-K12368NANA
D1-35_012351602dppA_4COG0747Periplasmic dipeptide transport proteinATGGACAGAACCACCTTCAAACCCCTCTTGCTTACGCTTGCCCTGCTGAGCGGCGCCCCACTGGCCCAGGCCGCGACCACCCTGGTCTATTGCTCCGAAGCCAGCCCCGCCGGCTTCGATCCCAGCCAATACACCAGCGGCACCGACTTCGATGCCTCGGCCGAAACCGTCTTCAACCGCCTCACCCAGTTCAAGCGCGGCGGCACCGAAGTCGAGCCCGGGTTGGCGTCAAGCTGGGACGTATCCGCCGATGGCCTGGCCTACACCTTCCACCTGCGCGAGGGTGTGAAGTTTCATACCACCGACTATTTCACCCCGAGCCGCGACTTCAACGCCGACGACGTGCTGTTCACGTTCCAGCGCCTGCTCGATCCGCAACATCCGTTCCGTCAGGCCTACCCCACCGAGTCGCCGTACTTCACCGACATGGGCCTGAACACCACGATCAAAAGCGTCGAAAAAATCGACGAGCACACCGTGCGCTTCAGCCTGAACAACGTCGACGCCGCATTCGTGCAGAACCTGGCGATGAGTTTTGCCTCGGTGCAGTCCGCCGAGTACGCAGCGCAGCTATTGAAGGAAGGCAAGGCCGGCGACCTCAACCAGAAGCCCATCGGCACCGGGCCGTTTGTGTTCAAGCGCTATCAGAAGGATTCGCAGATCCGCTACGCCGCCAACACGGCGTACTGGAAACCCGAGGACGTGAAGCTCGACAACCTGATTTTTTCCATTACCCCGGACGCTGCCGTGCGCCTGCAAAAGCTCAAGCGCGGCGAATGCCAGGTCAGCGGTTATCCGCGTCCGGCCGACATCGAAGTGATGGAGCAGGACCCGAACCTGCGCGTGCTCAGGCAGCCCGGTTTCAACCTGGGTTTCCTCGCCTATAACGTGACGCATCCGCCGCTGGACCAGCTCAAGGTCCGTCAGGCGCTGGACATGGCCATCGACAAGCCGGCGATCATCAAGGCCGTGTATCAGGGCGCCGGGCAGTTGGCGCAGAACGCCTTGCCCCCGGCTCAATGGTCGTTCGACCCGGCGATCCAGGACGCGCCCCATGACGTGACCAAGGCCAAGGCGCTCCTCAAGGAAGCCGGGGTTGCGCCCGGTACAACCATTGATTTATGGGCAATGACGGTGCAGCGCGCCTCCAACCCCAATGCGCGAATGTCTGCGCAAATGATCCAGCAGGACTGGGCCAAAGTTGGCATCAAGGCCAACATCGTCAGCTACGAATGGGGGGAGTACATCAAGCGCGCCAAGAATGGCGACCACGACGCGATGATCTACGGCTGGACCGGCGACAACGGCGATCCAGACAACTGGCTCGGCGTGCTGTACAGCTGCGCGGCGGTCAAGGGCAGCAACTACGCCAAGTGGTGCGACCCAGCCTACGACCGGCTGGTCCAGCAGGCCAAGGTCTCGACCGACCGCCAGCAACGCATCGACCTGTACCGCCAGGCGCAGAAAATCCTCAAGCAGCAGGTGCCCATCACGCCCATCGCCAACTCGACGGTGTTCCAGCCGATACGCAAGGAAGTGGTCGATTTCAAGCTCAGCCCGTTCGGGCTTACACCCTTCTACGGCGTGGGTTTGAACAAGTAAMDRTTFKPLLLTLALLSGAPLAQAATTLVYCSEASPAGFDPSQYTSGTDFDASAETVFNRLTQFKRGGTEVEPGLASSWDVSADGLAYTFHLREGVKFHTTDYFTPSRDFNADDVLFTFQRLLDPQHPFRQAYPTESPYFTDMGLNTTIKSVEKIDEHTVRFSLNNVDAAFVQNLAMSFASVQSAEYAAQLLKEGKAGDLNQKPIGTGPFVFKRYQKDSQIRYAANTAYWKPEDVKLDNLIFSITPDAAVRLQKLKRGECQVSGYPRPADIEVMEQDPNLRVLRQPGFNLGFLAYNVTHPPLDQLKVRQALDMAIDKPAIIKAVYQGAGQLAQNALPPAQWSFDPAIQDAPHDVTKAKALLKEAGVAPGTTIDLWAMTVQRASNPNARMSAQMIQQDWAKVGIKANIVSYEWGEYIKRAKNGDHDAMIYGWTGDNGDPDNWLGVLYSCAAVKGSNYAKWCDPAYDRLVQQAKVSTDRQQRIDLYRQAQKILKQQVPITPIANSTVFQPIRKEVVDFKLSPFGLTPFYGVGLNKPGPT0004500_749DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0004500-dppA-K12368NANA
D1-35_01236717hypothetical proteinATGCACACGTTCAGTCGCCCCGCCGCCCTGCTCGCCCTCAGCCTCGGCGCCGTCGCCAGCCTGCCGGCCCTGGCCGCCGATGAGCTGCACTACAACCAGATTTCCCTGCACGCCGAAGCCAGCCAGGAAGTGGCCCGCGACCTGATGATCGTCACCCTCTACACCGAGGAACAGAACACCGACCCGGCCAAACTCGCCGCCGCCGTCAGCACCACGCTGAACAAAGCCATCGGCCAGGCCAAGCAAGTCAAGGACATCAACCTGCGCCAGGGCAGCCGCAACAGCTACCCGGTCTATGACAACAAAGGCGGGAAAATCACCGGCTGGCGCGAACGCGCCGAGCTGCGCCTGGAAAGCGCCGACTTCGCCGCCCTGTCCAAACTCACCGGCGAACTGCTGGGCGACATGAAAATGGCCGGCATGGACTTCGCCATCGCCACCGCCACCCGCCAGACCAGCGAAGACGCCTTGCTCAAGGACGCCGTCAACGCCTTCAAGGCCCGCGCCCAACTCGCCACCGAAGCCTTGGGCGGCAAGGGCTACAAGATCGTCAACCTGAACTTCAACACCAACGGTTACCCACAACCGTACATGCGCCCGCAAATGATGATGAAAGCGGCATCCATGGACGCTGAGTCGGTCACGCCTGAGGTTGAAGCCGGCACCAGCAAAGTGACCATGACCGCGGATGGGGTGGTTGAGGTGTTGATGCAGTAAMHTFSRPAALLALSLGAVASLPALAADELHYNQISLHAEASQEVARDLMIVTLYTEEQNTDPAKLAAAVSTTLNKAIGQAKQVKDINLRQGSRNSYPVYDNKGGKITGWRERAELRLESADFAALSKLTGELLGDMKMAGMDFAIATATRQTSEDALLKDAVNAFKARAQLATEALGGKGYKIVNLNFNTNGYPQPYMRPQMMMKAASMDAESVTPEVEAGTSKVTMTADGVVEVLMQNANANANANA
D1-35_012371263regBSensor histidine kinase RegBATGCTCGCCCCTTTGCAAATGACTTCCGCTTCGCGCCAGAACCTCTGGCGTCTGACGTTCATCCGCATTCTGGTCCTCGCGGCCCAGGCCGGCTCCGTGGGGCTTGCCTATTGGTTCGACCTGCTGCCGCTGCCCTGGCTGCAACTGGCGATTACCCTGGCGTGCTCCAGCGTACTCTGCGCATTGACGGCGATTCGCCTGCGCACTTCCTGGCCAGTGACCGAGCTCGAATACGCCGTGCAACTGGCCTGCGACCTGTTTATCCACAGTGCGCTGCTGTATTTCTCCGGCGGGTCGACCAATCCCTTCGTGTCGTATTACCTGGTGCCGCTGACGATTGCTGCGGTCACGCTGCCGTGGCGTTTTTCGCTGATCCTGTCCGGCATCGCCCTGGCGCTGTACACCTTGTTGCTGGCGCGGTTCTATCCGCTTGAAACCTTTCCCATTGCCCGGGAAAACCTGCAGATCTACGGCATGTGGCTGAGTTTTGCCTTGGCCGCCGCGGTCATCACGTTTTTTGCCGCGCGCATGGCCGAAGAGCTGCGTCGCCAGGAAGAGCTGAGGGCGATTCGCCGCGAAGAGGGCCTGCGCGACGAGCAACTGCTGGCCGTGGCGACCCAGGCCGCCGGCGCCGCCCATGAATTGGGCACGCCGCTGGCGACCATGAGCGTGCTGCTCAAGGAAATGCGCCAGGATCATCACGACCCGGCGTTGCAGGAAGACCTCAGCGTGCTGCAGGACCAGGTCCAGCTGTGCAAGGAAACCCTGCAATACCTGGTGCGTGCCGCCGAGGCGAACCGCCGGCTGGCCATCGAAATGCAGGACGTCACCGACTGGCTCGACGAGGCCCTGAATCGCTGGCACCTGATGCGCCCCGAAGCCAGTTATCGCTTCCAGTGCCTGGGCCAGGGCACGGTGCCGCGCATGGCGCCGCCGCCGGACCTGACCCAGGCCTTGCTGAACCTGCTGAACAATGCCGCCGATGCCTGTCCCGAAGGCCTGGAAGTGGTGCTGGACTGGAACGCCCATGAACTGACGATCTGCATTCGCGACCACGGCGCCGGTGTGCCGCTGGCGATTGCCGAGCAGATCGGCAAACCGTTTTACACCACCAAGGGCAAGGGTTTCGGCCTCGGCCTGTTTTTGAGCAAGGCCAGCGTGACACGCGCCGGCGGCTCGGTGAAACTCTACCCCCATGAGGAGGGCGGCACGCTCACCGAGCTGCGCCTGCCCCATGCCGACCGAGGAGACGAATATGAGTGAMLAPLQMTSASRQNLWRLTFIRILVLAAQAGSVGLAYWFDLLPLPWLQLAITLACSSVLCALTAIRLRTSWPVTELEYAVQLACDLFIHSALLYFSGGSTNPFVSYYLVPLTIAAVTLPWRFSLILSGIALALYTLLLARFYPLETFPIARENLQIYGMWLSFALAAAVITFFAARMAEELRRQEELRAIRREEGLRDEQLLAVATQAAGAAHELGTPLATMSVLLKEMRQDHHDPALQEDLSVLQDQVQLCKETLQYLVRAAEANRRLAIEMQDVTDWLDEALNRWHLMRPEASYRFQCLGQGTVPRMAPPPDLTQALLNLLNNAADACPEGLEVVLDWNAHELTICIRDHGAGVPLAIAEQIGKPFYTTKGKGFGLGLFLSKASVTRAGGSVKLYPHEEGGTLTELRLPHADRGDEYEPGPT0000545_943DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0000545-regB|regS|actS-K15011NANA
D1-35_01238561regACOG4567Photosynthetic apparatus regulatory protein RegAATGAGTGACGAGATCCAAGTCGACGGCGAAGAACTGCCGCACCTTTTGCTGGTGGACGACGATGCCACCTTCACCCGCGTCATGGCCCGGGCCATGTCCCGACGCGGTTTTCGCGTCAGCACCGCCGGCTCCGCCGAAGAGGGCCTGACCATCGCCCAGGCCGACCTGCCGGACTACGCCGCCCTCGACCTGAAGATGGATGGCGACTCTGGGCTGGTGCTGCTGCCCAAGCTGCTGGAACTCGACCCGGAAATGCGCGTGGTGATTCTCACCGGTTATTCGAGCATCGCCACGGCGGTCGAGGCGATCAAGCGCGGCGCCTGCAATTACCTGTGCAAACCGGCCGACGCCGACGATGTGCTGGCCGCGTTGTTGTCCGAACATGCCGACCTGGACACGCTGGTGCCGGAAAACCCGATGTCGGTGGACCGGTTGCAGTGGGAACACATCCAGCGGGTGCTGACCGAGCACGAAGGCAACATCTCCGCCACCGCCCGCGCCCTGGGCATGCACCGGCGGACCTTGCAGCGCAAATTGCAGAAGCGTCCGGTACGTCGCTGAMSDEIQVDGEELPHLLLVDDDATFTRVMARAMSRRGFRVSTAGSAEEGLTIAQADLPDYAALDLKMDGDSGLVLLPKLLELDPEMRVVILTGYSSIATAVEAIKRGACNYLCKPADADDVLAALLSEHADLDTLVPENPMSVDRLQWEHIQRVLTEHEGNISATARALGMHRRTLQRKLQKRPVRRPGPT0000540_342DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0000540-regA|regR|actR-K15012NANA
D1-35_012391728bacACOG4178Vitamin B12 transport ATP-binding protein BacAATGAATCAGAACGCTGAATATTCCGCGGTCAATGACGCGGTGCGCGGCCAGTTTTTCCGCCGTGTCTGGCAAATGACCACGCCATACTGGCGCAGTGAGGAGAAGGGCAAGGCCTGGACGCTGTTGATCGCCGTGATTGCGCTGTCGCTGTTCAGCGTGGCGATTTCGGTGTGGCTGAACAATTGGTACAAGGATTTTTATAACGCCCTGCAGGAAAAGAACAGCGAGGCGTTCTGGAAGTTGATCCTGTATTTCGGCGGCATCGCCACGGTGGCGATCCTCGGCGCCGTGTATCGTCTGTACCTCACCCAGATGCTCACGATTCGCTGGCGGGCCTGGCTCACCGAGCAGCATTTTGCCCGTTGGCTGAACGACAAGAATTATTACCGGCTGGAGCAGGGCGGCTACACCGACAACCCTGACCAGCGGATTTCCGAAGACCTCAACAGCTTCACTTCCACGACGTTGAGCCTGGGCTTGGGGCTGCTGCGTACCGTGGTCAGCCTGGTGTCGTTCTCGATCATTCTGTGGGGCGTGTCGGGCAGCATCGAAGTGTTCGGCTACTCGATCCCTGGCTATATGTTCTGGTGTGCGCTGCTGTATGCGGCGGTGGGCAGTTGGCTGACGCATTTGATCGGTCGTCGCCTGATCGGCCTCAACAACAACCAGCAGCGCTTCGAAGCCGACCTGCGTTTTTCCATGGTGCGGGTGCGGGAAAACGCCGAGAGCATTGCGCTGTACAACGGCGAACCCAACGAGAACCGCCGCCTGAGCGAGCGTTTCGGCCTGGTGTGGCACAACTTCTGGGACATCATGCGCGTGTCCAAGCGCCTGACGTTCTTTACCTCTGGGTATGGGCAGATCGCGATCATCTTCCCGTTTATCGTCGCTGCGCCGCGTTATTTTTCCGGGAAGATCCAGCTGGGCGAGCTGATGCAGATCAACTCGGCGTTCGGCAATGTGCAGGAGAATTTCAGCTGGTTCATCGATGCTTACGCCTCGCTCGCCGCCTGGCGCGCCACTTGTGACCGTCTGCTGAGTTTCCGCCAGGCCATGAGCGACAACGAAGACCGGGTGCCGGCCATCGATGTGCAGAACCAGGGCAACGAACTGAAAGTCCGCAACCTCGGGCTGGACCTGAGCGACGGTCGTCATTTGCTGACCCGCGCTGAACTGAGTGTCGAACCGGGTGAGCGGGTGATGCTCAGCGGGCGTTCCGGCAGCGGCAAGTCCACCTTGCTGCGGGCGATGGGGCATTTGTGGCCCGCCGGGCACGGCAGCATCCTGTTGCCTTCGGCGCGTTATCTGTTCCTGCCGCAAAAGCCTTACCTGCCGATTGGCAGCCTGCGCGAGGTGTTGAGTTATCCACAAGCGGGCGATATCTACCCCAACGAACGTTATGCACAGGTGCTGGAAACCTGTCGCCTGCCGCACCTGATTTCGCGGCTGGACGAAAGCAACCATTGGCAACGCATGCTCTCGCCGGGCGAACAGCAGCGCCTGGCCTTCGCCCGTGCGTTGCTGTATGCGCCGCTATGGCTGTATATGGATGAAGCAACGTCGGCGATGGATGAAGAAGACGAGGCAACGCTGTACCAGGCGTTGCTCGACCAGCTGCCAGGCCTGAGCATCATCAGCGTCGGCCATCGAAGCAGTTTGAAACGTTTCCATGGGCGACATGTGCGCATCGAGAATGGCCAACTGGTGGAGCAGGCCGTAACCGCCTGAMNQNAEYSAVNDAVRGQFFRRVWQMTTPYWRSEEKGKAWTLLIAVIALSLFSVAISVWLNNWYKDFYNALQEKNSEAFWKLILYFGGIATVAILGAVYRLYLTQMLTIRWRAWLTEQHFARWLNDKNYYRLEQGGYTDNPDQRISEDLNSFTSTTLSLGLGLLRTVVSLVSFSIILWGVSGSIEVFGYSIPGYMFWCALLYAAVGSWLTHLIGRRLIGLNNNQQRFEADLRFSMVRVRENAESIALYNGEPNENRRLSERFGLVWHNFWDIMRVSKRLTFFTSGYGQIAIIFPFIVAAPRYFSGKIQLGELMQINSAFGNVQENFSWFIDAYASLAAWRATCDRLLSFRQAMSDNEDRVPAIDVQNQGNELKVRNLGLDLSDGRHLLTRAELSVEPGERVMLSGRSGSGKSTLLRAMGHLWPAGHGSILLPSARYLFLPQKPYLPIGSLREVLSYPQAGDIYPNERYAQVLETCRLPHLISRLDESNHWQRMLSPGEQQRLAFARALLYAPLWLYMDEATSAMDEEDEATLYQALLDQLPGLSIISVGHRSSLKRFHGRHVRIENGQLVEQAVTAPGPT0009345_1129DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES|BLEOMYCIN,PGPT0009345-bacA|yddA-K02471NANA
D1-35_01240747lutR_2COG2186HTH-type transcriptional regulator LutRATGGAAAACCCGCTCAACGTCCCACGTCTTCCCCGCAAGCGCCGCAGCCTGGCGCAGGAGCTGGTGACGGTGCTGTCCGAGCAGATTCGCGACGGTCTGCTCAAGCGTGGCGATAAATTGCCCACCGAGTCGGCGATCATGGAGGCCCATGGCGTCAGCCGTACCGTGGTGCGCGAGGCGATTTCCCGTTTGCAGGCGGCAGGGCAAGTGGAAACCCGCCACGGCATCGGTACATTCGTGCTCGACACGCCGAGCCCGAGCGGCTTTCGCATCGACCCGGCGACGGTGGTCACCTTGCGTGACGTGCTGGCGATCCTGGAATTGCGCATCAGCCTGGAGGTGGAATCGGCCGGGCTGGCGGCGCAGCGGCGTAGCGACGAACAATTGGCAGCGATGCGCGCGGCGCTCGACGCCCTGAATGAAAGCGCGGCCCACGCCAGCGACGCGGTGGCCTCGGACTTCGCTTTCCATCTGGAAATCGCCTTGTCCACCGGCAACCGCTATTTCACCGACATCATGACCCACCTGGGCACCAGCATCATCCCGCGCACCCGGCTGAACTCGGCGCGCCTGGCCCATGATGACCAGCAGCACTACATGGATCGCCTGAGCCGCGAGCACGAAGAAATCTACGAAGCCATCGCCCGCAGGGACTCCGATGCGGCCCGCGCGGCCATGCGCCTGCACCTGACCAACAGCCGCGAGCGGCTGCGCCAGGCCCATGAAGAGGCGCAAGCACAAGGCTGAMENPLNVPRLPRKRRSLAQELVTVLSEQIRDGLLKRGDKLPTESAIMEAHGVSRTVVREAISRLQAAGQVETRHGIGTFVLDTPSPSGFRIDPATVVTLRDVLAILELRISLEVESAGLAAQRRSDEQLAAMRAALDALNESAAHASDAVASDFAFHLEIALSTGNRYFTDIMTHLGTSIIPRTRLNSARLAHDDQQHYMDRLSREHEEIYEAIARRDSDAARAAMRLHLTNSRERLRQAHEEAQAQGNANANANANA
D1-35_01241342hypothetical proteinATGGCTATGTTCGACCCACCCATCCTGTCGATCAGTTTGTCGGCTTTGGGAAATACCCTGAATGTCTTGATCCCTGATGCCGACGGGATTTCCGCCGACTGGTGGGTTTTTCCGACGCTTCGCGCCGATAACATTCCCGATTGGGAAGGAGAACAAGTGCCCGCGGGCCGATGGGACGACCCCGACCAAGGGCCGATTAAATTGACGGGATTACGGGTGATCGTGCCCGAGAAAGAGCTGAGAAGGTATATCGGAAAGGAAGTTGAATTGCAGTACCGGTTTTCCAACGAGTCCAGCCAGGACATCCATTCAGCCCCGGTGAAGTTGAAGATCGAGAAGTAAMAMFDPPILSISLSALGNTLNVLIPDADGISADWWVFPTLRADNIPDWEGEQVPAGRWDDPDQGPIKLTGLRVIVPEKELRRYIGKEVELQYRFSNESSQDIHSAPVKLKIEKNANANANANA
D1-35_01242912COG0329putative 5-dehydro-4-deoxyglucarate dehydrataseATGAATCCACAAGAACTGAAGTCCATCCTCTCGTCTGGCCTGCTGTCGTTCCCGGTCACCGATTTCACTGCCAATGGCGATTTCAATCGCGACAGCTACATCAAGCGCCTCGAGTGGCTGGCCCCGTATGGCGCCTCTGCGTTGTTCGCAGCGGGCGGCACCGGTGAATTCTTCTCCCTGGCCGCCAGTGAGTATTCGCAAGTCATCAAGACTGCCGTCGATACCTGCGCCACCAGCGTGCCAATCCTCGCCGGTGTTGGCGGTGCGACCCGCCAGGCCATCGAATACGCTCAGGAAGCCGAGCGTTTGGGTGCCAAGGGCTTGCTGCTGCTGCCACACTACCTGACTGAAGCCAGCCAGGACGGCGTTGCCGCCCACGTTGAAGCCGTGTGCAAATCGGTGAAGATCGGCGTGGTGGTCTACAACCGTAACGTCTGCCGCCTGAACGCCACCCAGCTGGAGCAGTTGGCTGAGCGTTGCCCGAACCTGATCGGCTACAAGGACGGGCTGGGCGATATCGAATTGATGGTGTCGATCCGTCGTCGCCTCGGCGATCGTTTCAGCTACCTGGGCGGCCTGCCGACCGCCGAAGTCTACGCCGCTGCCTACAAGGCGCTGGGCGTACCGGTCTACTCCTCGGCGGTGTTCAACTTCATCCCGAAAACCGCGATGGACTTCTACCACGCCATTGCCCGCGAAGATCACGAAACCGTTGGCAAGATCATCGACGATTTCTTCCTGCCGTACCTGGACATCCGCAACCGCAAGGCCGGTTACGCGGTGAGCATCGTCAAGGCCGGTGCGAAAATCGTCGGCTACGACGCGGGCCCTGTGCGCACGCCGCTGACCGACCTGCTGCCAGAAGAATACGAAGCCCTGGCCGCGCTGATCGACAAGCAAGGCAAGCAGTAAMNPQELKSILSSGLLSFPVTDFTANGDFNRDSYIKRLEWLAPYGASALFAAGGTGEFFSLAASEYSQVIKTAVDTCATSVPILAGVGGATRQAIEYAQEAERLGAKGLLLLPHYLTEASQDGVAAHVEAVCKSVKIGVVVYNRNVCRLNATQLEQLAERCPNLIGYKDGLGDIELMVSIRRRLGDRFSYLGGLPTAEVYAAAYKALGVPVYSSAVFNFIPKTAMDFYHAIAREDHETVGKIIDDFFLPYLDIRNRKAGYAVSIVKAGAKIVGYDAGPVRTPLTDLLPEEYEALAALIDKQGKQPGPT0018160_516DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLACTURONATE|GLUCURONATE_DEGRADATION,PGPT0018160-kdgD|ycbC-K01707NANA
D1-35_012431446aldHTAldehyde dehydrogenase, thermostableGTGGCAGATTCAAAGCGTTTCGATAACTACATCAACGGTCAGTGGGTAGCCGGTGCCGACTATTGCACCAACATCAACCCGTCTGACTTGTCCGATGTCATCGGTGAATACGCCAAGGCTGACGCCGCTCAAGTCAATGCCGCCATCGACGCTGCTCGTGCTGCGTTCCCGGCCTGGTCGACCTCGGGTATCCAGGCCCGCCACGACGCGTTGGATAAAGTTGGCAGCGAAATTCTCGCCCGCCGCGAAGAACTCGGCCAGTTGCTGGCCCGGGAAGAGGGCAAGACCCTGCCCGAAGCCATCGGCGAAGTGACTCGCGCCGGCAATATTTTCAAATTCTTCGCCGGCGAGTGCCTGCGCCTGTCGGGCGATTACGTGCCGTCGGTGCGTCCGGGCGTCAACGTTGAAGTCACTCGTGAAGCCCTTGGTGTGGTCGGTCTGATCACCCCGTGGAACTTCCCGATCGCTATTCCCGCGTGGAAAATCGCCCCGGCCCTGGCCTACGGCAACTGCGTGGTGATCAAGCCCGCCGAGCTGGTGCCGGGCTGTGCCTGGGCCTTGGCCGAAATCATTTCCCGCGCCGGTTTCCCGGCCGGTGCGTTCAACCTGGTCATGGGCAGCGGCCGCGTGGTCGGTGAAGTCCTGGTCAACAGCCCCAAAGTCGACGGCATCAGCTTCACCGGTTCCGTGGGCGTGGGCCGGCAGATCGCGGTCAACTGCGTGTCGCGCCAGGCCAAGGTGCAGTTGGAAATGGGCGGCAAGAACCCGCAGATCATCCTCGACGACGCCGATCTCAAGCAGGCCGTCGAGCTGGCGGTGCAGAGCGCGTTCTACTCCACCGGCCAGCGTTGCACCGCGTCGAGCCGCCTGATCGTCACCGCCGGTATCCACGACCAGTTCGTCGCGGCGATGGCCGAGCGCATGCAGTCGATCAAGGTCGGTCATGCCTTGAAAGCCGGCACCGATATCGGCCCTGTGGTCTCCGAGGCCCAGCTCAACCAGGACTTGAAGTACATCGACATCGGCCAGAGCGAAGGTGCGCGGTTGGTCAGCGGTGGTGGTGTGGTGACCTGCGACACCGAAGGTTATTTCCTGGCGCCGACGCTGTTCGCCGACAGTGAAGCCTCGATGCGCATCAGCCGTGAAGAAATCTTCGGCCCGGTCGCCAACGTCGTGCGCGTGGCTGACTACGAGGCGGCGCTGGCGATGGCCAACGACACCGAGTTCGGCCTGTCGGCCGGTATCGCTACCACCTCGTTGAAGTACGCCAACCACTTCAAGCGCCATTCCCAGGCGGGCATGGTGATGGTCAACCTGCCAACCGCCGGCGTGGATTATCACGTGCCGTTCGGCGGGCGCAAAGGTTCGTCCTATGGTTCGCGCGAGCAAGGCCGCTACGCACAAGAATTCTACACCGTGGTGAAGACCTCCTACATCGGCTCGTAAMADSKRFDNYINGQWVAGADYCTNINPSDLSDVIGEYAKADAAQVNAAIDAARAAFPAWSTSGIQARHDALDKVGSEILARREELGQLLAREEGKTLPEAIGEVTRAGNIFKFFAGECLRLSGDYVPSVRPGVNVEVTREALGVVGLITPWNFPIAIPAWKIAPALAYGNCVVIKPAELVPGCAWALAEIISRAGFPAGAFNLVMGSGRVVGEVLVNSPKVDGISFTGSVGVGRQIAVNCVSRQAKVQLEMGGKNPQIILDDADLKQAVELAVQSAFYSTGQRCTASSRLIVTAGIHDQFVAAMAERMQSIKVGHALKAGTDIGPVVSEAQLNQDLKYIDIGQSEGARLVSGGGVVTCDTEGYFLAPTLFADSEASMRISREEIFGPVANVVRVADYEAALAMANDTEFGLSAGIATTSLKYANHFKRHSQAGMVMVNLPTAGVDYHVPFGGRKGSSYGSREQGRYAQEFYTVVKTSYIGSPGPT0006875_6807DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_DEHYDROGENASE|DEHYDRATASE_ACTIVITY,PGPT0006875-aldH|dhaS-K00128NANA
D1-35_012441365gudPputative glucarate transporterATGCAAGAGACCAAGCCGACGCACGTCCGCTATTTGATCCTGCTCATGCTGTTTTTGGTGACGACGATCAACTATGCCGACCGTGCCACCATCGCCATCGCTGGTTCCAGCCTGCAAAAAGACCTCGGCATCGATGCCGTCACCCTCGGTTATATCTTCTCCGCCTTCGGCTGGGCCTACGTAGCCGGGCAGATTCCTGGCGGGTGGCTGCTCGACCGTTTCGGTTCGAAAAAAATCTATGCCCTGAGCATTTTCACCTGGTCGTTGTTCACCGTGCTGCAAGGCTATGTCGGTGAATTCGGCATGTCCACGGCCGTGGTTGCGCTGTTCATGCTGCGCTTTCTGGTCGGGCTGGCCGAAGCGCCTTCCTTCCCGGGCAACGCCCGTATCGTCGCGGCCTGGTTCCCCACCGCGGAACGCGGCACCGCCTCGGCGATCTTCAACTCGGCGCAGTATTTCGCCACCGTACTGTTCGCACCGCTGATGGGCTGGATCGTCTACCGCTTCGGCTGGCAGCACGTGTTCATCGTGATGGGCGTGATCGGTATCGTGTTCTCGCTGGTCTGGCTGAAAGTGATCTACAGCCCGCGCCAGCACCCGATGATCAACGAGGCCGAGTTCAATCACATCGCGTCCAACGGCGCGATGGTCGACATGGACCAAGACAAGGGCAAGGAAAAGAAAGCCGATGGTCCGAAGTGGGATTACATCCGCCAGTTGCTGACCAACCGCATGATGCTCGGCGTGTACCTGGGCCAATACTGCATCAACGGCATCACCTACTTCTTCCTCACCTGGTTCCCGGTGTACCTGGTGCAGGAACGCGGCATGACCATCCTCAAGGCCGGTTTCATCGCGTCCTTGCCAGCCATCTGCGGCTTTATCGGCGGCGTGCTTGGCGGGGTGATTTCCGACTACCTGCTGCGCAAGGGCCACTCGCTGACCTTCGCCCGCAAGGCGCCGATCATTGCCGGCCTGCTGGTGTCCAGCAGCATCGTGGCGTGCAACTACGTGGACATCGAATGGATGGTGGTGGGCTTCATGGCCCTGGCCTTCTTCGGTAAAGGCGTCGGTGCATTGGGCTGGGCCGTGGTCTCCGACACTTCGCCAAAACAGATCGCCGGCTTGAGCGGTGGCCTGTTCAACACCTTCGGCAACCTGGCGTCGATTACCACGCCAATCGTCATCGGCTACATCATCAGCTCCACCGGTTCGTTCAAGTGGGCGCTGGTGTTTGTCGGTTGCAACGCGCTGATGGCGGTGTTCAGCTACCTGGTCATCGTGGGCCCGATCAAGCGTGTCGTGCTCAAGGAACCAGCGGCCAAAGAAGCCGATCTTTCCAGCCTGTCTGAAGCCAAATCCTGAMQETKPTHVRYLILLMLFLVTTINYADRATIAIAGSSLQKDLGIDAVTLGYIFSAFGWAYVAGQIPGGWLLDRFGSKKIYALSIFTWSLFTVLQGYVGEFGMSTAVVALFMLRFLVGLAEAPSFPGNARIVAAWFPTAERGTASAIFNSAQYFATVLFAPLMGWIVYRFGWQHVFIVMGVIGIVFSLVWLKVIYSPRQHPMINEAEFNHIASNGAMVDMDQDKGKEKKADGPKWDYIRQLLTNRMMLGVYLGQYCINGITYFFLTWFPVYLVQERGMTILKAGFIASLPAICGFIGGVLGGVISDYLLRKGHSLTFARKAPIIAGLLVSSSIVACNYVDIEWMVVGFMALAFFGKGVGALGWAVVSDTSPKQIAGLSGGLFNTFGNLASITTPIVIGYIISSTGSFKWALVFVGCNALMAVFSYLVIVGPIKRVVLKEPAAKEADLSSLSEAKSPGPT0016475_211DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLUCARATE_TRANSPORT,PGPT0016475-gudP-K03535NANA
D1-35_012451554garD_1COG2721Galactarate dehydratase (L-threo-forming)ATGAATCTGATTGAACATGCCGATTCGCCCCGTTACATCCGCCTGCATGAGCGGGACAACGTAGTGATCGTCGTCAACGACCAAGGCGTACCGGCCGGGACTGAATTCCCGGACGGCCTGGTTACCGTCGACTTCGTGCCGCAAAGCCACAAAGTCACCCTGGAGGATATTCCCGAGGGCGGCGAGGTGATTCGCTACGGCCAGGTCATTGGCTACGCGCTGCAGCCGATCCCGCGTGGCAGCTGGGTCAAGGAAGACCAGTTGCGCATGCCTACCGCGCCACCGCTGGACAGCCTGCCGCTGTCCACCGATGTGCCGGCCGCCGATGCGCCGCTTGAGGGCTACACCTTCGAAGGTTATCGCAATGCCGACGGTACCGTCGGCACGCGCAACATCCTGGGTATCACCACCACGGTGCAGTGTGTGACCGGCGTGCTGGACCATGCGGTCAAGCGCATCAAGGATGAGCTGCTGCCCAAGTACCCGAACGTCGATGACGTGGTGGCGCTGACCCACAGCTACGGCTGTGGCGTGGCGATCACCGCCACCGATGCCTATATCCCGATTCGCACCGTGCGCAACCTGGCGCGCAACCCGAACCTGGGCGGCGAGGCGCTGGTGATCAGCCTGGGCTGCGAGAAATTGCAGGCCGGGCAGGTCATGCACGAGGGCGACAGTTCGGTGGATCTCAGCGAGCCATGGTTGTATCGCTTGCAGGACTCCAGCCACGGTTTCACCGAAATGATCGAGCAGATCATGGAACTGGCCGAGACCCGTCTGAAGAAACTCGACCAGCGCCGTCGCGAAACCGTGCCGGCCTCGGAGCTGATCCTGGGCATGCAATGCGGCGGCAGCGATGCGTTTTCCGGCATCACCGCGAACCCGGCCCTGGGCTACGCCTCGGATTTGCTGCTGCGGGCCGGTGCGACGGTGATGTTCTCCGAAGTCACCGAAGTGCGCGATGCGATCTACCTGCTGACGTCCCGGGCGCAAACCCGTGAAGTCGCCGAGGAGCTGGTGCGCGAGATGGACTGGTACGACCGCTATCTGGCCAAGGGCGAAGCCGATCGCAGCGCCAACACCACGCCGGGCAACAAGAAGGGCGGGCTGTCGAACATCGTCGAGAAATCCCTGGGCTCGATCGTCAAGTCCGGCAGCAGCGCGATCAACGGCGTGCTCGGCCCGGGCGAGCGCTTCAAGCAGAAGGGCTTGATCTTCTGCGCCACGCCGGCCAGCGATTTTGTCTGCGGTACGCTGCAACTGGCAGCGGGGATGAACCTGCATGTGTTCACCACCGGACGCGGTACGCCGTACGGTTTAGCGATGGCGCCGGTGGTGAAGGTCTCGACCCGCACCGAACTGGCCCAACGCTGGCCGGACCTGATCGACATCGACGCCGGCCGGATCGCCACCGGGCGTGCAAGCATCGAAGAGCTGGGCTGGGAGCTGTTCCACTACTACCTGGATGTGGCCAGCGGCAAGAAACAGACCTGGGCCGAGCGGCACAAGCTGTACAACGACATCACGCTGTTCAACCCCGCGCCGATTACCTGAMNLIEHADSPRYIRLHERDNVVIVVNDQGVPAGTEFPDGLVTVDFVPQSHKVTLEDIPEGGEVIRYGQVIGYALQPIPRGSWVKEDQLRMPTAPPLDSLPLSTDVPAADAPLEGYTFEGYRNADGTVGTRNILGITTTVQCVTGVLDHAVKRIKDELLPKYPNVDDVVALTHSYGCGVAITATDAYIPIRTVRNLARNPNLGGEALVISLGCEKLQAGQVMHEGDSSVDLSEPWLYRLQDSSHGFTEMIEQIMELAETRLKKLDQRRRETVPASELILGMQCGGSDAFSGITANPALGYASDLLLRAGATVMFSEVTEVRDAIYLLTSRAQTREVAEELVREMDWYDRYLAKGEADRSANTTPGNKKGGLSNIVEKSLGSIVKSGSSAINGVLGPGERFKQKGLIFCATPASDFVCGTLQLAAGMNLHVFTTGRGTPYGLAMAPVVKVSTRTELAQRWPDLIDIDAGRIATGRASIEELGWELFHYYLDVASGKKQTWAERHKLYNDITLFNPAPITPGPT0018155_395DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTARATE|GLUCARATE_DEGRADATION,PGPT0018155-garD-K01708NANA
D1-35_01246942hypothetical proteinATGCTGGCAATTTTCCTCGAAACCCTGAACATCACCGCGCCGGTGTTTGCCATGCTGTTTCTGGGGACGCTGCTCAAGCGTATCAATTGGATCAACGACAACTTCATCTACATCGCCTCGTCGCTGGTGTTCAACGTCACCATGCCGGCGCTGTTGTTCCTCGGCATTCTGCATGCCGATCTGCATGCGGCGTTGCAGCCGGACCTGCTGATCTATTTCTCGATCGCCACCCTGGCGAGTTTTGCCATGGCCTGGGGCTGGGCGATCTGGCGTTGCCCGCGTGAAGATCGCGGTATCTACACTCAGGGCGCGTTTCGTGGCAACAACGGGGTAATCGGCCTGGCGCTGGCGGCAAGCATGTACGGTGACTACGGGATTTCCCTGGGCGCGATTCTCGCGGCGCTGGTGATCCTGTTCTACAACACCTTGTCGACCATCGTGTTGGCGGTCTACAGCCCGGTGATCAAGTCCGACCCATGGAGCATCTGCAAAAGCGTGATCAGCAACCCGCTGATCATCAGCGTGCTCGCCGCCGCGCCGTTCGCCTATTGGCAAATCGGCCTGCCGAACTGGTTCGAGACCTCGGCCAGGTACTTGTCGCAAATGACCTTGCCCCTGGCGTTGATCTGCATCGGCGGCACACTGTCGCTGGCGGCCTTGCGCAAGAGCGGCAAGATGGCCCTGAGTTCGAGCCTGGTGAAAATGGTCGGCCTGCCCCTGGTGACTACGTTGGGCGCCTGGCTGTGGGGCTTTCGCGGCGCCGAGTTGGGGATCCTGTTCCTGTACTTCGGCAGCCCCACCGCCGCCGCCAGCTTCGTCATGGCCCGCGCCGCAAATGGCAACCATGAGTTGGCGGCGGCAATCATCGTCATCACTACGCTGATGGCGGCGATTACCACCAACGTGGGGATTTTTGTGCTGCAGTGGGGTGGGTGGATCTAAMLAIFLETLNITAPVFAMLFLGTLLKRINWINDNFIYIASSLVFNVTMPALLFLGILHADLHAALQPDLLIYFSIATLASFAMAWGWAIWRCPREDRGIYTQGAFRGNNGVIGLALAASMYGDYGISLGAILAALVILFYNTLSTIVLAVYSPVIKSDPWSICKSVISNPLIISVLAAAPFAYWQIGLPNWFETSARYLSQMTLPLALICIGGTLSLAALRKSGKMALSSSLVKMVGLPLVTTLGAWLWGFRGAELGILFLYFGSPTAAASFVMARAANGNHELAAAIIVITTLMAAITTNVGIFVLQWGGWIPGPT0007208_1484DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-ABSCISIC_ACID_DEGRADATIONPHYTOHORMONE-AUXINE|INDOLE‐3‐ACETIC_ACID|IAA_METABOLISMPHYTOHORMONE-IAA-AUXIN_TRANSPORT_PLANT_LIKE,PGPT0007208-auxin_symporter-NANANA
D1-35_01247381hypothetical proteinATGACCAACACCCCGAAGACCGGCCTCGACATGCGTCGCCAGGTGATGGGCGACGCCTTCGTCGATCGCGCCCTGGGCAACGCCACCGAATTTACCCAGCCACTGCAGGATTTCGTCAACGAGCACGCCTGGGGCAGCGTCTGGAGCCGCGAAGGCCTGCCGCTGAAAACCCGCAGCCTGATCACCCTCGCCGCCCTCACCGCCCTCAAATGCCCGCAGGAACTCAAAGGCCACGTGCGCGGCGCCTTGAACAACGGCTGCACGGTAGAGGAGATTCGTGAGGCACTCCTGCATTGCGCGGTGTACGCGGGCGTGCCGGCGGCGATCGATGCGTTTCGGGCGGCGCAGGAAGTGATTGATAGTTACCAGAAGCCTGAGTGAMTNTPKTGLDMRRQVMGDAFVDRALGNATEFTQPLQDFVNEHAWGSVWSREGLPLKTRSLITLAALTALKCPQELKGHVRGALNNGCTVEEIREALLHCAVYAGVPAAIDAFRAAQEVIDSYQKPEPGPT0005005_3536DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005005-pcaC-K01607NANA
D1-35_012481050yrbGCOG0530Inner membrane protein YrbGTTGCTCGGCGCCTTGCTGTTGCTGATCGCCGGCGCCGAGCTGCTGGTGCGTGCCGCTGTCGGCCTGGCGGCGCGCTTGCAGGTGCGTCCGCTGATCATCGGCCTGACCGTCGTCGCCTTCGGCAGCAGCGCGCCACAGATGGCCGTCAGCCTGCAGGCGACCCTGGCGCAAAACGCCGACATCGCCGTGGGCAGCGTCATCGGCAGCACGATTTTCAACCTCCTCGTGACTCTGGGCCTGTCGGCGCTGATCATTCCGTTGCGCGTCTCGCGACAACTGGTGCGCCTGGACATCCCGCTGATGATCGGCGCGTGCCTGCTGGTTTTCGTACTGGCCTGGAACGAAGAGCTGAGCCGACTGGACGGAGCGCTGCTGCTGATAGCCCTGGCGGTGTACCTGGCGCTGCTGCTGCGCCAGTCCCGGCATTCGGGACGACCGCATCCGCTGGGCGAAGTGGTCGACATGGCCTGGCCCAAAAGCCTGGTGATGATCGCGTCGGGCCTGGCCATGCTGGTTTTCGCCGGGCACCTGTTACTGGGCGCCGCAGTGGAAGTGGCGACGGACCTGGGACTGTCGGAGCGCATCATCGGCCTGACCATCGTCGCCGTCAGCACCTCGCTGCCGGAACTCGCCACCTCACTGATCGCCGCACTGCGCGGCCAGCGGGACATTGCGGTAGGCAACGTGATCGGCAGCAACCTGTTCAACCTGCTGGGCGTACTCGGCGTGACCGCCCTCGCCGCCCCTTCGCCGCTCTCGGTCTCGCCCAATGCCCTGGACTTCGACCTGCCGGTAATGCTCGGCGTGGCGGTGCTGTGCCTGCCGGTATTCTATTCCGGCTACCGCGTCACCCGCGCCGAAGGGCTGCTGTTGCTGGGCTTGTACCTGGCCTACGGGCTGCACGTGGTGTCGTTCACCACCGGCATGCCCCTGGCCGGCCAACTGGAACGGCTGATGCTGTTCTACGTGCTGCCGGCGCTGCTGGCGTTCTTGCTGTTCACTTCCGTGCGCGCCTGGCGCCGCCAACACCACAAGAGGGATTTGCCATGAMLGALLLLIAGAELLVRAAVGLAARLQVRPLIIGLTVVAFGSSAPQMAVSLQATLAQNADIAVGSVIGSTIFNLLVTLGLSALIIPLRVSRQLVRLDIPLMIGACLLVFVLAWNEELSRLDGALLLIALAVYLALLLRQSRHSGRPHPLGEVVDMAWPKSLVMIASGLAMLVFAGHLLLGAAVEVATDLGLSERIIGLTIVAVSTSLPELATSLIAALRGQRDIAVGNVIGSNLFNLLGVLGVTALAAPSPLSVSPNALDFDLPVMLGVAVLCLPVFYSGYRVTRAEGLLLLGLYLAYGLHVVSFTTGMPLAGQLERLMLFYVLPALLAFLLFTSVRAWRRQHHKRDLPPGPT0014400_565DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0014400-yrbG-K07301NANA
D1-35_01249558rlpA_1Endolytic peptidoglycan transglycosylase RlpAATGGAGCCAGTCTTCCAATCTGGCTCACCCCCCTGTGGCGAGGGAGCTTGCTCCCGCTGGGTCGCGAAGCGGCCCCCAACAATCTGCTGCCAGATTCAGGGGGCTGCTGCGCAGCCCAGCGGGAGCAAGCTCCCTCGCCACAACAACTTTCACAACCACACTGATGTGGAACCCCCCTACATGAAGCGTCTCCTCGGCGCCTGCGCGCTGCTGTCCCTGCTGGCCGGCTGTGCCAGCCAGAGCGGGACGGTCGATCCAAACGGCTACGACCAGACCGGCGTCGCCTCCTATTACGGTTCCCGGCACCACGGCAAACGCACCGCCAGCGGCGAACGTTTTGACCAGCACGGCCTGACCGCCGCTCATCGCCAGTTGCCGTTCGGCACCCGGGTGAAAATCACCAACCTGAAAAACAACGACAGCGTCGTGGTCCGCATCAACGACCGTGGTCCGTATTCACGCGGCCGACTGATCGATGTATCGCGCGCCGCTGCCGAACAGTTGGGCATGCTGCGTAGCGGTACCGCGCGGGTGCGCGTACAAGCCCTCGACGACTGAMEPVFQSGSPPCGEGACSRWVAKRPPTICCQIQGAAAQPSGSKLPRHNNFHNHTDVEPPYMKRLLGACALLSLLAGCASQSGTVDPNGYDQTGVASYYGSRHHGKRTASGERFDQHGLTAAHRQLPFGTRVKITNLKNNDSVVVRINDRGPYSRGRLIDVSRAAAEQLGMLRSGTARVRVQALDDNANANANANA
D1-35_012501446gatBCOG0064Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit BATGCAATGGGAAGTCGTGATCGGGCTGGAGATTCATACCCAGCTCACCACCCGATCGAAAATCTTTTCCGGTAGCTCGACCACGTTCGGTTCCGAGCCCAACACCCAGGCCAGCCTGGTAGACCTGGGCATGCCCGGCGTATTGCCGGTGCTCAACGCCGAAGCGGTGCGCATGGCGGTGATGTTCGGCCTGGCGATCGACGCCGAGATCGGCCAGCACAACGTGTTCGCCCGCAAGAACTACTTCTACCCGGACCTGCCCAAGGGCTACCAGATCAGCCAGATGGAACTGCCGATCGTCGGCAAGGGCCACCTGGACATCGCCCTGGAAGACGGCACGGTCAAGCGCGTCGGCATCACCCGTGCGCACCTGGAAGAAGACGCCGGCAAGAGCCTGCACGAAGAATTCAACGGCGCCACCGGCATCGACCTGAACCGTGCCGGCACGCCGCTGCTGGAAATCGTCTCCGAGCCGGACATGCGCAGCGCCAAGGAAGCCGTGGCCTACGTCAAGGCGATCCACGCATTGGTGCGCTACCTGGGCATCTGCGACGGCAACATGGCCGAAGGCTCGCTGCGCTGCGACTGCAACGTGTCGATCCGGCCCAAGGGCCAGACCGAGTTCGGCACCCGCTGCGAGATCAAGAACGTCAACTCGTTCCGCTTCATCGAGAAGGCGATCAACAGCGAGATCCAGCGCCAGATCGAACTGATCGAGGACGGCGGCAAGGTCATCCAGCAGACGCGCCTGTACGATCCGAACAAGGACGAGACCCGTCCGATGCGCAGCAAGGAGGAAGCCAACGACTACCGTTACTTCCCCGATCCGGACCTGCTGCCGGTGGTCATCGAGAACTCCTTCCTCGACGAAGTGCGCGCCACCCTGCCGGAACTGCCGCCGCAAAAGCGCGAGCGCTTCCAGGCGCAGTTCGGGCTGTCGAGCTATGACGCGAACGTCCTGGCCACCAGCCGCGAACAGGCCGATTACTTCGAGAAAGTCGTGAGCATCGGCGGCGACGCCAAGCTGGCGGCCAACTGGGTGATGGTCGAACTGGGCAGCCTGTTGAACAAGCAGGGCCTGGAAATCGACGAGTCGCCGGTCTCGGCCGAGCAACTGGGCAGCATGCTGTTGCGGATCAAGGACAACACCATTTCCGGCAAGATCGCCAAGATGGTCTTCGAAGCCATGGCCAATGGCGAAGGCAGCGCCGACGAGATCATCGAGAAGCGCGGCTTGAAACAGGTCACCGACACCGGTGCGATCAGCGCCGTGCTTGATGAAATGCTCGCGGCCAATGCCGAGCAGGTCGAACAGTACCGCGCGGCGGACGAAGCCAAGCGCGGCAAGATGTTCGGCTTCTTCGTCGGCCAGGCCATGAAAGCCTCCAAGGGCAAGGCCAACCCGCAACAGGTCAACGAACTGCTAAAAAGCAAGCTCGAGGGCTGAMQWEVVIGLEIHTQLTTRSKIFSGSSTTFGSEPNTQASLVDLGMPGVLPVLNAEAVRMAVMFGLAIDAEIGQHNVFARKNYFYPDLPKGYQISQMELPIVGKGHLDIALEDGTVKRVGITRAHLEEDAGKSLHEEFNGATGIDLNRAGTPLLEIVSEPDMRSAKEAVAYVKAIHALVRYLGICDGNMAEGSLRCDCNVSIRPKGQTEFGTRCEIKNVNSFRFIEKAINSEIQRQIELIEDGGKVIQQTRLYDPNKDETRPMRSKEEANDYRYFPDPDLLPVVIENSFLDEVRATLPELPPQKRERFQAQFGLSSYDANVLATSREQADYFEKVVSIGGDAKLAANWVMVELGSLLNKQGLEIDESPVSAEQLGSMLLRIKDNTISGKIAKMVFEAMANGEGSADEIIEKRGLKQVTDTGAISAVLDEMLAANAEQVEQYRAADEAKRGKMFGFFVGQAMKASKGKANPQQVNELLKSKLEGNANANANANA
D1-35_012511452gatACOG0154Glutamyl-tRNA(Gln) amidotransferase subunit AATGCATCACATGACCCTGGCCGAGATCGCCCGCGGACTCGCCGACAAGAAATTTTCCTCCGAAGAGCTGACCAAGGCCCTGCTGGCGCGCATTGCCCAGCTCGACCCGCAGCTCAACAGCTTCATCAGCCTCACCGAAGAACTGGCCCTGAGCCAGGCCAAGGCCGCCGACGCCCGTCGCGCCAACGGTGAGAGCGGCGCCCTGCTCGGCGCGCCGATCGCCCACAAGGACCTGTTCTGCACCAAGGGCATCCGCACCAGTTGCGGCTCGAAGATGCTCGACAACTTCAAGGCCCCGTACGACGCCACCGTGGTCGCCAAGCTGGCCGCCGCTGGCGCCGTGACGCTGGGCAAGACCAACATGGACGAATTCGCCATGGGTTCGGCCAACGAATCCAGCTACTACGGCGCGGTGAAAAACCCCTGGAACCTGGAACACGTACCGGGCGGTTCGTCCGGTGGTTCCGCTGCCGCCGTGGCTGCGCGCCTGTTGCCGGCGGCCACCGCCACCGACACCGGCGGCTCGATTCGCCAGCCGGCGGCGTTCACCAACCTCACCGGCCTCAAGCCGACCTACGGCCGCGTCTCGCGCTGGGGCATGATCGCCTACGCCTCCAGCCTCGACCAGGGTGGCCCGCTGGCACGCACCGCCGAAGACTGCGCAATCCTGCTGCAAGGCATGGCCGGGTTCGACCCGAACGATTCCACCAGCATCGATGAACCGGTGCCGGACTACAGCGCCAGCCTCAACGGCTCGCTGCAAGGCCTGCGGATCGGCGTGCCGAAGGAATACTTCGGTGCCGGCCTCGATCCGCGCATCGCCGAACTGGTTCACAACAGCGTCAAGGCGCTGGAAAAGCTCGGCGCGGTGATCAAGGAAATCAGCCTGCCGAACATGCAGCACGCGATTCCGGCGTATTACGTGATCGCCCCGGCGGAAGCCTCCTCGAACCTGTCGCGCTTCGACGGCGTGCGCTTCGGCTATCGCTGCGAAAACCCGCAGAACCTGGTCGACCTGTACAAGCGTTCCCGTGGCGAAGGCTTCGGCGCCGAAGTGCAGCGCCGGATCATGGTCGGCGCCTACGCGTTGTCCGCCGGCTACTACGACGCCTACTACCTCAAGGCGCAGAAAATCCGCCGCCTGGTGAAAAACGACTTCATGGCCGCCTTCAACGAGGTCGACATCATCCTCGGCCCGACCACGCCGAACCCGGCCTGGAAGCTCGGCGCCAAGAACAGCGACCCGGTCGCCGAGTACCTGGAAGACGTCTACACCATCACCGCCAACCTCGCCGGCTTGCCGGGCCTGTCCATGCCGGCCGGCTTCGTCGATGGCCTGCCGGTGGGCGTGCAGCTGCTCGCGCCGTATTTCCAGGAAGGCCGCCTGCTCAACGTGGCGCACCAGTATCAGTTGAACAGCGACTGGCACACCCGCACCCCAACCGGCTTCTGAMHHMTLAEIARGLADKKFSSEELTKALLARIAQLDPQLNSFISLTEELALSQAKAADARRANGESGALLGAPIAHKDLFCTKGIRTSCGSKMLDNFKAPYDATVVAKLAAAGAVTLGKTNMDEFAMGSANESSYYGAVKNPWNLEHVPGGSSGGSAAAVAARLLPAATATDTGGSIRQPAAFTNLTGLKPTYGRVSRWGMIAYASSLDQGGPLARTAEDCAILLQGMAGFDPNDSTSIDEPVPDYSASLNGSLQGLRIGVPKEYFGAGLDPRIAELVHNSVKALEKLGAVIKEISLPNMQHAIPAYYVIAPAEASSNLSRFDGVRFGYRCENPQNLVDLYKRSRGEGFGAEVQRRIMVGAYALSAGYYDAYYLKAQKIRRLVKNDFMAAFNEVDIILGPTTPNPAWKLGAKNSDPVAEYLEDVYTITANLAGLPGLSMPAGFVDGLPVGVQLLAPYFQEGRLLNVAHQYQLNSDWHTRTPTGFNANANANANA
D1-35_01252288gatCCOG0721Glutamyl-tRNA(Gln) amidotransferase subunit CATGGCGCTTGAACGCTCCGACGTGGAAAAAATCGCTCATCTGGCCTGTCTGGGCCTCAATGAAGCCGATCTTCCACACATTACTTCTGCCCTGAACAGCATTCTAGGGCTGGTCGACGAGATGCAGGCGGTCGACACCGACGGTATCGAGCCGCTGGCCCACCCACTGGAAGCCAGCCAGCGCCTGCGCGCCGACGTCGTCACCGAGTCCGATAACCGCGAGGCCTACCAGGCCATCGCACCGGCGGTCGAAAACGGCCTGTACCTGGTTCCGAAAGTCATCGACTAAMALERSDVEKIAHLACLGLNEADLPHITSALNSILGLVDEMQAVDTDGIEPLAHPLEASQRLRADVVTESDNREAYQAIAPAVENGLYLVPKVIDPGPT0023460_3581DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0023460-gtaC-K02435NANA
D1-35_012531038mreBCOG1077Cell shape-determining protein MreBATGTTCAAGAAACTGCGTGGCATGTTTTCCAGCGATCTTTCCATCGACCTGGGCACTGCCAACACCCTTATTTACGTGCGCGAGCGCGGTATCGTCCTGAATGAACCCTCGGTCGTGGCCATCCGCACCCACGGTAACCAGAAAAGTGTCGTGGCTGTCGGTACTGAAGCCAAGCGCATGCTGGGCCGCACACCGGGCAACATTGCAGCCATTCGCCCGATGAAGGATGGCGTGATCGCCGACTTCAGCGTCTGCGAAAAGATGCTGCAGTATTTCATCAACAAGGTTCACGAAAACAGTTTCCTGCAGCCCAGCCCTCGCGTGCTGATCTGCGTGCCCTGCAAATCCACCCAGGTGGAGCGTCGCGCCATCCGCGAATCGGCCCTCGGTGCCGGTGCCCGTGAAGTATTCCTGATCGAAGAGCCGATGGCCGCTGCCATCGGTGCCGGCCTGCCGGTGGAAGAAGCCCGCGGTTCGATGGTCGTCGATATCGGTGGCGGTACCACTGAAATCGCCTTGATCTCCCTGAATGGCGTGGTCTATGCCGAGTCCGTGCGTGTCGGCGGCGACCGTTTCGACGAAGCGATCATCACCTACGTGCGCCGCAACTACGGCAGCCTGATCGGCGAATCCACCGCCGAGCGCATCAAGCAGGAAATCGGCACCGCCTACCCGGGCGGCGAAGTGCGTGAAGTCGACGTGCGCGGCCGTAACCTGGCCGAAGGCGTTCCTCGCGCCTTCACCCTCAACTCCAACGAAGTGCTCGAGGCGCTGCAAGAGTCGCTGGCGACTATCGTGCAGGCGGTCAAGAGCGCCCTGGAGCAGTCGCCGCCGGAGCTGGCGTCGGACATCGCCGAGCGCGGCCTGGTGCTGACCGGTGGTGGTGCGCTGCTGCGTGACCTCGACAAGCTGCTGGCCCAGGAAACCGGCCTGCCGGTGATCGTCGCCGAAGACCCGCTGACGTGCGTTGCCCGCGGCGGTGGCCGTGCGCTGGAAATGATGGACAAGCACACCATGGACCTGCTTTCCAGCGAATAAMFKKLRGMFSSDLSIDLGTANTLIYVRERGIVLNEPSVVAIRTHGNQKSVVAVGTEAKRMLGRTPGNIAAIRPMKDGVIADFSVCEKMLQYFINKVHENSFLQPSPRVLICVPCKSTQVERRAIRESALGAGAREVFLIEEPMAAAIGAGLPVEEARGSMVVDIGGGTTEIALISLNGVVYAESVRVGGDRFDEAIITYVRRNYGSLIGESTAERIKQEIGTAYPGGEVREVDVRGRNLAEGVPRAFTLNSNEVLEALQESLATIVQAVKSALEQSPPELASDIAERGLVLTGGGALLRDLDKLLAQETGLPVIVAEDPLTCVARGGGRALEMMDKHTMDLLSSEPGPT0027700_1715DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027700-mreB-K03569NANA
D1-35_012541095hypothetical proteinTTGGGCGTACGCCTGCTGGTGTTGGCCGTGCTATCGGTCGCGCTGATGGTGGTCGATGCCCGCTTCACGCTGCTCAAGCCGGTGCGCAGCCAGATGTCGCTGGTGTTGATGGAGTCCTACTGGATCACCGACCTGCCGCAGCGGCTGTGGCAGGGTGTGGCCAGCCAGTTCGGCAGCCGCACCGAACTGGTCGCCGAAAACGAAAAACTCAAGACCGAAAACCTGCTGTTGCAGGGGCGCATGCAGAAGCTCGCGGCCCTCACCGAGCAGAACGTGCGGCTGCGCGAGTTGCTCAACTCCTCGGCGCTGGTCAATGAGAAGGTCGAGGTCGCCGAGTTGATCGGCATGGACCCCAATCCCTTCACGCACCGGATCATCATCAACAAGGGTGAGCGCGACGGCGTGGTCCTCGGCCAGCCGGTGCTCGATGCCCGTGGCCTGATGGGGCAGGTGGTCGAGCTGATGCCCTATACCTCCCGCGTGCTGCTGTTGACCGATACCACCCACAGCATTCCGGTGCAGGTCAATCGCAACGGCTTGCGGGCGATTGCCAGCGGCGCCGGTAATCCTGAGCGCCTGGAGCTGCGGCATGTGGCCGACACCGCCGACATCAAGGAAGGCGACCTGCTGGTCAGCTCGGGTCTTGGCCAGCGATTCCCGGCGGGGTATCCGGTGGCGACGGTCAAGGAAGTCATCCACGATTCCGGTCAGCCATTCGCCATTGTCCGGGCGGTGCCCACGGCCGCGCTGAACCGTAGCCGTTACCTGCTGCTGGTGTTCAGCGACAACCGCACGCCTGAAGAGCGCGCCAATGACGCCGCCGTGGCCCAGGAAGTCCAGGATCGGCAGGGTGGCGAGTCGACGGCGCCTGCTGCGCCTGCGCCCGCACCTGCACCCGCGTCGGTCCCGGCCACGGTGCCAAAACCCCAAGTGGCGGCGCCCGTCACGGCAACCACCCCGCCGGCCGCACCCGCTGCGACGCCCGCCCGGCCGGCCGCCCATGCGACGACATCCCAACCTGCACGGCCCGCGGCCAAGCCACCGGCCTCGACACCCGCCGCTACACCGGCGACCAGGGGAGCACGAGAAGAATGAMGVRLLVLAVLSVALMVVDARFTLLKPVRSQMSLVLMESYWITDLPQRLWQGVASQFGSRTELVAENEKLKTENLLLQGRMQKLAALTEQNVRLRELLNSSALVNEKVEVAELIGMDPNPFTHRIIINKGERDGVVLGQPVLDARGLMGQVVELMPYTSRVLLLTDTTHSIPVQVNRNGLRAIASGAGNPERLELRHVADTADIKEGDLLVSSGLGQRFPAGYPVATVKEVIHDSGQPFAIVRAVPTAALNRSRYLLLVFSDNRTPEERANDAAVAQEVQDRQGGESTAPAAPAPAPAPASVPATVPKPQVAAPVTATTPPAAPAATPARPAAHATTSQPARPAAKPPASTPAATPATRGAREEPGPT0025445_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_IV_SECRETION_SYSTEMSCE-T4SS-TRB_SECRETION_SYSTEM,PGPT0025445-trbJ-K20266NANA
D1-35_01255489mreDCOG2891Rod shape-determining protein MreDATGAGCAGTACTCGATCCGGTAACGGCTGGATGGTCTGGCTGACCTTCGCCATCGGCCTGTTGCTCAGTGTGTCGCCGCTGCCGCAGTTCATGGAGATCCTGCGTCCGTTGTGGCTGGCCTTGCTGCTGGCCTTCTGGGCGCTGGCCTTGCCGCACAAGGTCGGCATGGTCACCGCCTGGTGCCTGGGCCTGACCGAAGATGTGCTTTATGGCACGTTGCTGGGGCAGAACGCGCTTATCCTGACCTTGATCACTTTCCTGGTGCTCTCGCTGCAACAGCGCCTGCGGATGTTTCCCATGTGGCAGCAGAGCCTGGTGATCCTAGTGATCTTTGGCCTGGCGCAACTGGTGCAATTGTGGCTCAGCGCACTGACCGGCAATCGTCAGCCGACGCTGGCGCTGGTGTTGCCGGCCCTGGTCAGTGCGTTGCTCTGGCCTTGGGTCAGCTTCGGTTTGCGTGGCTTGCGCCTGCGTTTCAAGATCAACTGAMSSTRSGNGWMVWLTFAIGLLLSVSPLPQFMEILRPLWLALLLAFWALALPHKVGMVTAWCLGLTEDVLYGTLLGQNALILTLITFLVLSLQQRLRMFPMWQQSLVILVIFGLAQLVQLWLSALTGNRQPTLALVLPALVSALLWPWVSFGLRGLRLRFKINNANANANANA
D1-35_01256597yhdECOG0424dTTP/UTP pyrophosphataseATGAAACCGCTTTACCTTGCCTCGGGCTCGCCGCGTCGGCGTGAATTGCTCACGCAGATCGGCGTTCCCTTTACCGCGATCGGCGCGGACATCGACGAAACTCCCCTCGACCACGAAACCCCATCGGCCTATGTCGAGCGCCTGGCGCGGGGCAAGGCCGAGGCCGGGCTGCACTCGTTGCAGAACGGCACCGATTGCTGTGTGCTGGGTGCCGATACCGCGGTGGTACTGGATGGCCGGATTCTCGGCAAGCCTCAGGACGAGGCCGATGCCAAGTCGATGCTGCTGAGCCTGTCCGGTCGCGACCATGAGGTATTGACCGCGATTGCCGTGCTCGATGGCCAGCGTTGCGAATCCCGGGTGGTTCGCAGTCGGGTGCGCTTTCGCCCGGTCACGGAGCAGGAAGCGATTGCCTATTGGGCCAGCGGCGAACCCCGGGACAAGGCGGGCGGCTATGGTATCCAAGGGCTGGGCGCGGTGTTCATCGCCGACCTCGAAGGCAGTTATTCGGCCGTGGTCGGCCTGCCACTATGCGAAACCGCAGAACTGCTCGGCCATTTCGGCATACCCTGTTGGCAAACCTTGAGCGCGCGCTGAMKPLYLASGSPRRRELLTQIGVPFTAIGADIDETPLDHETPSAYVERLARGKAEAGLHSLQNGTDCCVLGADTAVVLDGRILGKPQDEADAKSMLLSLSGRDHEVLTAIAVLDGQRCESRVVRSRVRFRPVTEQEAIAYWASGEPRDKAGGYGIQGLGAVFIADLEGSYSAVVGLPLCETAELLGHFGIPCWQTLSARNANANANANA
D1-35_012571458rngCOG1530Ribonuclease GATGAGTGAAGAGATCCTGATCAACATCACGCCGATGGAATCGCGCGTGGCGGTGGTTGAAAACGGCGTCCTGCAAGAGGTCCATGTCGAGCGTACGCAAAAACGCGGCATCGTCGGCAATATCTACAAGGGCAAGGTGGTACGGGTGCTGCCGGGCATGCAGGCGGCCTTCGTCGATATCGGCCTGGACCGCGCGGCGTTCATCCACGCCTCGGAAATTTCGATGCGCGAAGGGCCGGCGGTAGAGAGCATCAGCGCCTTGGTCCATGAAGGCCAGAGCCTGGTGGTGCAGGTCACCAAGGACCCCATCGGTTCGAAGGGCGCGCGCCTGACCACCCAGTTGTCGATTCCGTCGCGCTATCTTGTGTACATGCCGCGCACCGCCCACGTTGGCATCTCCCTGAAGATCGAGGACGAAGCCGAACGCGAGCGTCTGAAGAAGGTTGTCAGCGACTGCGTTGAGAAAGAAGGCATCAAGGAGGCCGGCGGTTTCATCCTGCGCACGGCCGCCGAGGGCGCCGGGGCCGATGAAATCCTCATGGATATCCGCTACCTGCGCAGGCTCTGGGACCAGATCGCCGAGCAGATCAAGACCATCGCCACGCCGAGTGTGATCTACGAGGACCTGGGCCTGGCGCTGCGGACCCTGCGGGACCTGGTCAGCCCGAAGATCGAGAAAATCCGTATCGATTCCCGGGAAACCTTCCAGAAAACCACGCAATTCGTCGCCGAGCTGATGCCGGAAATCGCCGACCGCCTGGAGCACTACCCTGGCGAGCGGCCGATTTTCGATCTGTACGGCGTCGAAGATGAAATCCAGCGAGCCCTTGAACGCAAGGTGCCGCTCAAATCCGGCGGTTACCTGGTGGTCGATCCGGCCGAGGCGATGAGCACCATCGACGTCAATACCGGTGCATTCGTCGGCCATCGCAACCTTGAGGAAACCATCTTCAAGACCAATCTTGAAGCGGCCACGGCCATCGCCCGGCAACTGCGCCTGCGTAACCTGGGCGGGATCATCATCATCGACTTCATCGACATGGAAGACGAAGAGCACCAGCGCCAGGTGCTGCGGACCCTGGAAAAACAGCTCGAACGCGACCACGCCAAGACCAACATCATCGGCATTACCGAACTGGGCCTGGTGCAGATGACCCGCAAGCGCACCCGCGAGAGCCTTGAGCAGGTGCTGTGCGAGCCGTGCAGCAGTTGCCAGGGCCGGGGCAAGCTGAAGACTCCGGAAACCGTGTGTTACGAAATCTTCCGGGAAATCCTCCGGGAGGCGCGCGCCTACCAGGCCACCGGCTATAGAGTGTTGGCGAACCAGAAGGTGGTGGATCGCCTGCTGGATGAGGAGTCCGGCAACGTCGCGGAACTGGAGGCCTTTATCGGGCGCACGATTCGCTTCCAGGTGGAAACCATGTATTCCCAGGAACAGTACGACGTGGTGTTGCTCTGAMSEEILINITPMESRVAVVENGVLQEVHVERTQKRGIVGNIYKGKVVRVLPGMQAAFVDIGLDRAAFIHASEISMREGPAVESISALVHEGQSLVVQVTKDPIGSKGARLTTQLSIPSRYLVYMPRTAHVGISLKIEDEAERERLKKVVSDCVEKEGIKEAGGFILRTAAEGAGADEILMDIRYLRRLWDQIAEQIKTIATPSVIYEDLGLALRTLRDLVSPKIEKIRIDSRETFQKTTQFVAELMPEIADRLEHYPGERPIFDLYGVEDEIQRALERKVPLKSGGYLVVDPAEAMSTIDVNTGAFVGHRNLEETIFKTNLEAATAIARQLRLRNLGGIIIIDFIDMEDEEHQRQVLRTLEKQLERDHAKTNIIGITELGLVQMTRKRTRESLEQVLCEPCSSCQGRGKLKTPETVCYEIFREILREARAYQATGYRVLANQKVVDRLLDEESGNVAELEAFIGRTIRFQVETMYSQEQYDVVLLNANANANANA
D1-35_012583804hypothetical proteinATGGAGCGTCTGACACGCCTTATGGGGACGCTGACTCGCTGGGGGCTGGGCCTGTGTGCGCTGCTGCTGATACTGCTGGCCCTGTATGTCAGCCTCGGCCGGGAGTTGATCCCGCTGGTGGCCGAGTATCGCGGTGAAGCCGAGAGCCGGGCCGGCGAAGCGTTGGGCATTCCCGTGCACGTTGGTAGCCTCGAAGGCAGTTGGAGCGCCCTGGCGCCCGTCCTGGCGGCGCGCGACGTGGTAGTCGGCGAGGGGCCCAACGCCTTGCACCTGGATCAGGTACGTGCCGTGCCTGCGGTGTGGGACAGCCTGCTGGCTCGCCAGGTGCGCATCGCTCATCTGGAAGTCAGCGGCCTGAAGGTCAGCCTGAAAGAGGGCGCTGACGGCAAATGGTCCCTTGAAGGCCTGCCGGTGAAGGACGATCAGCCGCTCGATCCGCAGCAATTGCTTGAACGCATGCAGATGATTTCAAAACTGTCGGTGCTCGACAGTCAGGTCACCTTGCAACCGCTGGACCATCCGCCGCTGAGCCTGACCTATGTTGGTCTGAGCTTGCGCACCGGTCCGGCTCGCCAGCGCCTGGACGCACGTATTACCCTGCCTGACGGCCAGCCCGTGGCGCTCAACCTGCGCACCCGTATCCGCGCCAGCGATTGGCGAAATGGCGAGGCCGACGCCTACCTGAGCCTGCCGCAAAGCGACTGGTCGAAATGGCTGCCGAAACGCCTGACCCGGCAGTGGAATTTTGCCGAGATCAAGGCCGGTGGGGAATTCTGGCTCAGTTGGGGAGAGGGCACGGTGCAAAGTGCCGCCGTGCGGTTGAACGCGCCACAGATCCAGGGCGCCTATGCCGATCGCAGGCCCGTGCAAATCCACAACCTGGCCCTCAACGGATATTTCCAGCGCAGCAGCCAGGGGTTCACCGCGACCTTCGACTCGCTGGCGATGAACCTGGGTGAGACGCGCTGGGAAACACGCCTGCAGTTGCAACAGAACAGCGCCACCGAGAAGGTCGAGGAGCGTTGGCACGTGCAGGCCGATCGCCTTGACCTGACGCCGCTCACGCCGTTGCTCAATGCCCTGGCGCCATTGCCCGAAGGTGTCGCCACGGCGATCGACCGGCTCAAGGTGACCGGTGGCCTGCGCAACGTGTTGCTGGATTACCGGCCACAGAACACCGGTGATCAGAAAATCAGCTTCGCCACCAATCTGGACACGGTCGGGTTTGACGCCTATCGCGGCGCCCCGGCGGCGCGCAACGTCTCAGGCAGCCTCAGCGGTGACCTCGGCGGCGGTGAGCTGCGCATGGACAGCAAGGATTTTTCCCTGCACCTGGACCCGATTTTCGCCAAGCCCTGGCAATACTTGCAGGCCAATGCCCGGCTGACTTGGAAGCTCGACAAGCAGGGGTTCACCCTGATCGCACCGTACTTGAAGGTGCTGGGAGAGGAAGGGCGGATTGCCGGCGACTTCCTGATCCGCCTGCATTTCGACCACAGCCAGGAAGACTACATGGACCTGCGGGTCGGCCTGGTGGACGGTGACGGGCGCTACACCGCCAAGTACCTGCCGGCCGTCCTCAGTCCGGCGCTGGATGAATGGTTGCGCACCGCCATCGTCAAGGGCGCGGTGGACGAGGGTTTTTTCCAGTACCAGGGCTCGCTGAACAAAGGTGCCGAGGACGCGTCTCGCAGCATCAGCCTGTTTTTCAAGGTGCATGACGCCGAGCTGGCGTTCCAGCCGGGCTGGCCTTCGGTCAGCAAGGTCAGCGGCGACGTCTTTGTCGAGGACAGCGGCGTACGTATCTATGCCAGCCAGGGGCAACTGCTGGACACCCAGGTCAAGGATGTTGCGGTAACCATTCCCCATGCGCCGGCCGGGCAGAATGTCCATCTGTTGTTGGACGGCGGCTTTGCCGGGGTATTGGGCGACGGGCTGAAAATCCTCCAGACCGCACCCATCGGCACGGCCGAGACCTTCGCCGGTTGGGAAGGCGAGGGCGACCTGCAAGGTAAGGTGAACCTGGATATCCCGCTGGCCAAAGGTGAACAGCCGAAGATCCTGGTGGATTTCAGTACCGACAAGGCCCGGCTCAAGCTCAGTGAGCCGGCGCTGGAGCTGACCCAGCTCAAGGGCGACTTCCGTTTCGACAGCAACAAGGGGCTCAGTGGCAAGAACATCGCGGCCCGGGCATTCGACCGGCCGGTAAGCGCGCAGATTTTTGCCGAGGGCCGTGCCGGTGCGCTCGACACACGGGTGGTGGCGTCCGGGCGGGTCGAGGTCAAGAAGCTTACGGACTGGTTGAGCGTGACCCAGCCGTTGCCCATCTCCGGCGTGGTTCCCTATCAGTTGCAAGTGACGCTCAACGGTGCCGACAGCCAATTGTCGGTCAGCTCCGATCTCAAGGGCGTGGCGGTGGATCTGCCGGCGCCCTTCGGCATGGCTGCGGATGTCGGGCGCGACACGGTGTTCCGTATGACGTTGCAAGGGGCGGAGCGTCGCTACTGGGTCGATTATGGCGACCTGGCCAGCTTCACTTACGCCGCGCCGAGCGGAAAAGTCGCTGACGGGCGTGGCGAATTGCTGCTGGGCGCCGGCGAGGCGGTTCTGCCTGGCGCCAAGGGGCTGCGGCTGCGCGGCACATTGTCGGAGCTGGACGTGAGCCCCTGGCAGGATCTGTTGGGCAAATATGCCGGCAAGGACCCGGGCGGCAGTGCCCGGCAGGTGCTCAGCAGTGCCGATCTCAAGGTTGGCAAGCTCACCGCGATGGGCACGACGCTTGACCAGGCCTCGGTACAGTTGGACCGTAAGGCTGATGCCTGGGCCCTGCGGCTCGATAGCCAGCAGGCCAAGGGCAGCGTCAACCTGCCGGATGCGAAGGCCGCGCCGATCGGGATCCGGCTCGACTATGTGCGCCTGCCGGCCGCGGACCCGACGGTCCAGGCCGACGAAAACGCCCCGGACCCGCTGGCCTCGGTCGATCCGAGCCAAATCCCGGCGATGGATATCGCCATCGACCAGTTGTTCCAGGGGCCGGATCTCATTGGTGCCTGGTCGCTGAAAGTCCGGCCGACGGGCAAGGGCATCGCGCTGAATGATCTGGACATGGGGCTCAAGGGCATGGTCCTGCATGGCAATGGCGCCTGGGAGGGCCTGCCCGGTTCCACCAGCAGTTGGTACAAGGGCCGGATCAAGGGCAAGAACCTCGCCGATGTGCTCAAGGGCTGGGGGTTTGCGCCTAGCGTGACAAGCCAGGAATTCCATCTGGACGTCGACGGACGCTGGCCCGGTTCGCCTGCATGGGTCGCCACCAAGCGTTTCTCCGGCAGCCTCGATGCGTCACTCAACAAGGGTCAGTTCGTCGAAGTCGAAGGCAGCGCGCAGGCCTTGCGGGTTTTCGGCCTGTTGAACTTCAACTCCATCGGCCGGCGCTTGCGCCTGGATTTCTCCGATCTGTTCGGCAAGGGGCTGAGCTACGATCGGGTCAAGGGCCTGCTGGTGGCGAGCAGTGGTGTATACGTGACTCGTGAGCCGATTACCCTGACCGGACCTTCGAGCAACCTGGAACTCAACGGAACGCTGGACATGGTGGCTGACCGGGTCGATGCCAAGCTGCTGGTAACCCTGCCCGTCACCAATAACCTGCCGATCGCCGCGTTGATCGTCGGCGCACCGGCGGTGGGTGGGGCGCTGTTTCTGATCGACAAGCTGATCGGCGACCGCGTCGCGCGTTTTGCCAGCGTAAGATACGACGTCAAGGGGCCGTGGAAAGAGCCGAAGATCACTTTCGACAAGCCGTTTTGAMERLTRLMGTLTRWGLGLCALLLILLALYVSLGRELIPLVAEYRGEAESRAGEALGIPVHVGSLEGSWSALAPVLAARDVVVGEGPNALHLDQVRAVPAVWDSLLARQVRIAHLEVSGLKVSLKEGADGKWSLEGLPVKDDQPLDPQQLLERMQMISKLSVLDSQVTLQPLDHPPLSLTYVGLSLRTGPARQRLDARITLPDGQPVALNLRTRIRASDWRNGEADAYLSLPQSDWSKWLPKRLTRQWNFAEIKAGGEFWLSWGEGTVQSAAVRLNAPQIQGAYADRRPVQIHNLALNGYFQRSSQGFTATFDSLAMNLGETRWETRLQLQQNSATEKVEERWHVQADRLDLTPLTPLLNALAPLPEGVATAIDRLKVTGGLRNVLLDYRPQNTGDQKISFATNLDTVGFDAYRGAPAARNVSGSLSGDLGGGELRMDSKDFSLHLDPIFAKPWQYLQANARLTWKLDKQGFTLIAPYLKVLGEEGRIAGDFLIRLHFDHSQEDYMDLRVGLVDGDGRYTAKYLPAVLSPALDEWLRTAIVKGAVDEGFFQYQGSLNKGAEDASRSISLFFKVHDAELAFQPGWPSVSKVSGDVFVEDSGVRIYASQGQLLDTQVKDVAVTIPHAPAGQNVHLLLDGGFAGVLGDGLKILQTAPIGTAETFAGWEGEGDLQGKVNLDIPLAKGEQPKILVDFSTDKARLKLSEPALELTQLKGDFRFDSNKGLSGKNIAARAFDRPVSAQIFAEGRAGALDTRVVASGRVEVKKLTDWLSVTQPLPISGVVPYQLQVTLNGADSQLSVSSDLKGVAVDLPAPFGMAADVGRDTVFRMTLQGAERRYWVDYGDLASFTYAAPSGKVADGRGELLLGAGEAVLPGAKGLRLRGTLSELDVSPWQDLLGKYAGKDPGGSARQVLSSADLKVGKLTAMGTTLDQASVQLDRKADAWALRLDSQQAKGSVNLPDAKAAPIGIRLDYVRLPAADPTVQADENAPDPLASVDPSQIPAMDIAIDQLFQGPDLIGAWSLKVRPTGKGIALNDLDMGLKGMVLHGNGAWEGLPGSTSSWYKGRIKGKNLADVLKGWGFAPSVTSQEFHLDVDGRWPGSPAWVATKRFSGSLDASLNKGQFVEVEGSAQALRVFGLLNFNSIGRRLRLDFSDLFGKGLSYDRVKGLLVASSGVYVTREPITLTGPSSNLELNGTLDMVADRVDAKLLVTLPVTNNLPIAALIVGAPAVGGALFLIDKLIGDRVARFASVRYDVKGPWKEPKITFDKPFNANANANANA
D1-35_01259864nit1Deaminated glutathione amidaseATGCCAGTCGCCGTGATTCAAATGGTCAGCCAGAGCGATGTGCTTGCCAACCTGGCCCGTGCCCGGGTGTTGCTGGAGCAGGCCGCGGCGGGTGGCGCACGGCTCGCGGTGCTGCCGGAAAACTTCGCGGCCATGGGCCGGCGGGACGTTGCCGATATCGCGCGGGCCGAAGCCTTTGGTCAGGGTCCGATCCTGCCGTGGTTGAAACAGGTCGCGCGCGACCTCAGGTTATGGATTGTGGCCGGCACGTTGCCGTTGCCCCCGGTGGGCCAGCCCGAGGCCAAGGCCCATGCATGTTCGTTGCTGGTGGACGACCAGGGCGAGATCGTCGCGCGTTATGACAAGCTGCACCTGTTCGACGTGGACGTGGCGGACAATCGCGGTCGTTACCGCGAATCCGATGACTATGCTTATGGCGGCAACGTGGTGGTTGCCGACACACCGGTGGGCCGGGTTGGCCTGACGGTCTGCTACGACTTGCGCTTCCCCGAGCTCTACAGCGAGTTGCGGGCGGCCGGGGCCGAGCTGATTACCGCGCCTTCGGCGTTTACCGCGGTGACCGGCGCTGCGCATTGGGACGTACTGATTCGCGCCCGGGCCATCGAAACCCAGTGCTACGTGCTGGCGGCCGCCCAGGGTGGGTTGCATCCGGGGCCCCGGGAAACCTTTGGCCATGCCGCGATAGTCGACCCGTGGGGGCGTGTGCTGGCGCAACAGGATCAAGGCGAGGCCGTGCTGCTGGCCGAGCGCGACGACAGTGAACAGGCGTCCATCCGGGCGCGCATGCCGGTGGCGAGCCACCGGCGCTTTTTCTCGCAGGGCGCTCGACAGCGACCTGTCCAAGACGACGAATTCAAGGCGTAAMPVAVIQMVSQSDVLANLARARVLLEQAAAGGARLAVLPENFAAMGRRDVADIARAEAFGQGPILPWLKQVARDLRLWIVAGTLPLPPVGQPEAKAHACSLLVDDQGEIVARYDKLHLFDVDVADNRGRYRESDDYAYGGNVVVADTPVGRVGLTVCYDLRFPELYSELRAAGAELITAPSAFTAVTGAAHWDVLIRARAIETQCYVLAAAQGGLHPGPRETFGHAAIVDPWGRVLAQQDQGEAVLLAERDDSEQASIRARMPVASHRRFFSQGARQRPVQDDEFKAPGPT0000835_1178DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRP-DEPENDENT_PATHWAY_3,PGPT0000835-nitA|nitB|nitR|nit1-K01501NANA
D1-35_012601443tldDCOG0312Metalloprotease TldDATGAGCGGGTTGTTGTCCTCAGTCAGTGAACACCTTTTAGCCCCCGGCGGCGTGACCCTCGAAAGCCTGCAAGGCGTGCTGGGCGACCTGGCCGGTCCGGGCATCGATGCGGCCGACCTGTATTTCCAGGGACAGATTTCCGAGTCCTGGTCGCTGGAAGACGGCATCGTCAAGGAAGGCAGTTTCAACCTCGACCAGGGTGTGGGCGTGCGTGCCCAATCCGGCGAAAAGACCGGGTTTGCCTACAGCAACGCCATCACCCTTGAGGCCCTCGGCGCCGCGGCTCGTGCGGCTCGCTCGATTTCCCGGGCCGGGCAGAATGGCACGGTCCAGGCGTTCAGCAGCCAGGACGTGGCCCAGCTGTATGCGCCGGACAACCCACTGGAAGTCATGAGTCGCGCCGAAAAGGTCGAGCTGCTCAAGCGCATTGACGTCGCCACACGTGCCCTCGACCCGCGTATCCAGCAGGTATCGGTGAGCATGGCCGGGGTCTGGGAGCGGATTCTGGTGGCCTCCACCGACGGTGGCCTGGCGGCGGATGTGCGGCCGCTGGTGCGTTTCAACGTCAGCGTGATCGTCGAGCAGAACGGTCGCCGTGAGCGCGGTGGCCACGGTGGGGGTGGTCGTACCGACTATCGTTATTTCCTCAGCGAAGACCGCGCCATGGGTTACGCCCGCGAAGCGCTGCGCCAGGCGCTGGTGAACCTTGAGGCCATCCCGGCCCCGGCCGGCACGTTGCCAGTGGTGCTCGGCTCCGGCTGGTCCGGCGTGCTGCTGCACGAAGCCGTGGGCCACGGCCTGGAAGGCGATTTCAACCGCAAGGGCAGTTCGGCCTACAGCGGTCGCATGGGCGAGATGGTCGCCTCGAAACTCTGCACCATCGTCGATGACGGCACGCTCGCCGGGCGTCGTGGTTCGCTGAGCGTCGACGACGAAGGCACCCCGACCGAATGCACCACGCTGATCGAGAACGGCGTGCTCAAGGGTTACATGCAGGACAAGCTCAATGCCCGCCTCATGGGCGTGGCCCGCACCGGCAACGGTCGCCGCGAGTCTTACGCGCACCTGCCCATGCCGCGCATGACCAACACCTACATGCTCGGCGGCCAGAGTGATCCGGCGGAAATCATCGCGTCGGTGAAGAAGGGCATCTACTGCGCCAATCTCGGCGGCGGCCAGGTGGACATCACCAGCGGCAAGTTCGTGTTTTCCACCAGCGAGGCCTACCTGATCGAAGACGGCAAGATCACCGCACCGGTCAAGGGCGCGACGTTGATCGGCAACGGGCCGGAGGCGATGAGCAAGGTGTCGATGGTCGGTAACGACCTGGCGCTGGACAGCGGCGTGGGCACGTGTGGCAAGGACGGTCAGTCGGTGCCGGTAGGCGTCGGTCAGCCGACACTGAAGATCGATGCGATTACCGTGGGTGGCACGGGCGCATAAMSGLLSSVSEHLLAPGGVTLESLQGVLGDLAGPGIDAADLYFQGQISESWSLEDGIVKEGSFNLDQGVGVRAQSGEKTGFAYSNAITLEALGAAARAARSISRAGQNGTVQAFSSQDVAQLYAPDNPLEVMSRAEKVELLKRIDVATRALDPRIQQVSVSMAGVWERILVASTDGGLAADVRPLVRFNVSVIVEQNGRRERGGHGGGGRTDYRYFLSEDRAMGYAREALRQALVNLEAIPAPAGTLPVVLGSGWSGVLLHEAVGHGLEGDFNRKGSSAYSGRMGEMVASKLCTIVDDGTLAGRRGSLSVDDEGTPTECTTLIENGVLKGYMQDKLNARLMGVARTGNGRRESYAHLPMPRMTNTYMLGGQSDPAEIIASVKKGIYCANLGGGQVDITSGKFVFSTSEAYLIEDGKITAPVKGATLIGNGPEAMSKVSMVGNDLALDSGVGTCGKDGQSVPVGVGQPTLKIDAITVGGTGANANANANANA
D1-35_01261531hypothetical proteinATGGTTGATTCTTACGACGACTCCCTCTACGAGGGTGAAAAAAGCAAATCCCAGGTCAAACGCGAGCTGCATGCTCTGGTTGACCTCGGCGAGCGCCTGACAACACTCAAGCCTGACTTGCTGGCCAAACTGCCCTTGACCGACGCCTTGCGCCGAGCCCTGGCCGATGCGCCCAAGCACACCGCGAATATCGCGCGTAAACGGCACCTGCAATTCATCGGCAAGCTGATGCGCGACCAGGACACTGACGCCATCCTGGTTCTGCTCGACCAGCTCGATGCCTCCACCCGGCAGTACAACGAGCGTTTCCACAACCTGGAACGCTGGCGTGATCGCCTGATCGCAGGCGATGACGGCACTCTGGAAAAATTCGTCATCGACTACCCGGACGCCGATCGCCAGCAACTGCGCTCGCTGATCCGTCAGGCCCAGCACGAACTGGCGCAAAACAAGCCGCCGGCGTCGAGCCGTAAAATCTTCAAGTACATCCGTGAGCTGGACGAGACTCAACGCGGCCTGCGCTTTGCGTAAMVDSYDDSLYEGEKSKSQVKRELHALVDLGERLTTLKPDLLAKLPLTDALRRALADAPKHTANIARKRHLQFIGKLMRDQDTDAILVLLDQLDASTRQYNERFHNLERWRDRLIAGDDGTLEKFVIDYPDADRQQLRSLIRQAQHELAQNKPPASSRKIFKYIRELDETQRGLRFANANANANANA
D1-35_012621347pmbACOG0312Metalloprotease PmbAATGAGTGCAGTTCAAAGCGTCGGCCCGCAAGCATTGCCGGCACTGCAGGAACAGGTCGAGCAGATCCTCGCCGAAGCCAGGCGACAGGGCGCCAGCGCGTGCGAAGTGGCGGTGTCGCTGGAGCAGGGGCTGTCGACGTCGGTGCGCCAACGCGAAGTGGAAACCGTCGAATTCAATCGCGACCAGGGCTTTGGCATCACCCTCTACGTGGGGCAGCGCAAGGGCTCGGCCAGCACCTCGGCCAGCGGCCCTGACGCCATTCGCGAAACAGTCGCCGCTGCATTGGCGATTGCCCAGCATACGTCCGAAGACGAAGCCTCCGGCCTGGCCGATGCCGCGCTGATGTGCAAGGAGCTCAAGGACTTCGATCTGTTCCACGCCTGGGACATCACGCCCGAGCAGGCCATCGAGCAGGCACTGCGCTGCGAAGCGGCGGCATTCGACGCCGACAGCCGGATCAAGAATGCCGACGGCACTACGCTCAACACCCACCAGGGTTGCCGCGTCTATGGCAACAGTCATGGGTTCATCGGCGGTTACGCATCGACCCGCCACAGCCTCAGCTGCGTGATGATCGCCGAGGCCGACGGGCAGATGCAGCGCGACTACTGGTACGACGTGAGTCGCCAGGGCACATTGCTGGCGGACCCGGTGAGCATCGGCCAGAAGGCCGCGCAACGGGCCGCCAGTCGCCTGGGCGCGCGGCCTGTGCCAACCTGTGAGGTGCCGGTGCTGTTCTCCGCCGAGTTGGCCGGTGGCTTGTTCGGCAGCTTCCTGTCGGCGGTGTCCGGCGGCAACCTGTACCGCAAATCCTCGTTCCTCGAAGGCGCGCTGGGCCAGAAACTGTTTCCGGAATGGATGACCATCGACGAGCGTCCGCACCTGATGCAGGCCATGGGCAGTTCGGCTTTCGACGGGGATGGCCTGGCCACCTATGCCAAGCCGTTCGTGGAAAACGGCGAGCTGGTTTCGTACATCCTCGGCACCTATTCGGGTCGCAAATTGGGCATGCCGAGCACCGCTAACGCCGGTGGCGTGCACAACCTGTTCGTCACTCATGGCGAGGAAGACCAGGCAGCGCTGCTGCGGCGCATGGGGCGTGGGTTGTTGGTCACCGAGCTGATGGGGCATGGCTTGAACATGGTGACCGGCGATTATTCCCGTGGCGCGGCGGGGTTCTGGGTCGAAAATGGCGAGATCCAGTTCCCGGTCCAGGAAGTCACCATTGCTGGCAACATGCGCGATATGTTCAAGCAGATCGTGGCGGTGGGCAGCGACTTGGAGCTGCGCAGCAACATCCGCACCGGCTCGGTGCTGATCGAGCGAATGATGGTGGCGGGTAGCTGAMSAVQSVGPQALPALQEQVEQILAEARRQGASACEVAVSLEQGLSTSVRQREVETVEFNRDQGFGITLYVGQRKGSASTSASGPDAIRETVAAALAIAQHTSEDEASGLADAALMCKELKDFDLFHAWDITPEQAIEQALRCEAAAFDADSRIKNADGTTLNTHQGCRVYGNSHGFIGGYASTRHSLSCVMIAEADGQMQRDYWYDVSRQGTLLADPVSIGQKAAQRAASRLGARPVPTCEVPVLFSAELAGGLFGSFLSAVSGGNLYRKSSFLEGALGQKLFPEWMTIDERPHLMQAMGSSAFDGDGLATYAKPFVENGELVSYILGTYSGRKLGMPSTANAGGVHNLFVTHGEEDQAALLRRMGRGLLVTELMGHGLNMVTGDYSRGAAGFWVENGEIQFPVQEVTIAGNMRDMFKQIVAVGSDLELRSNIRTGSVLIERMMVAGSNANANANANA
D1-35_01263396hypothetical proteinATGAGTCTTGCCCTGCACGAACAACCCTACCTTGAAAACTGGCGCTGGATGAGTCGCCAGATCCGCTGCGCGATGAGCCCGGACGAGCCGCGGCTGATCGAACACTACCTGGCCGAGGGGCGCTACCTGGCCTGCTGCACCGCCACGTCGCCGTGGATGATTGGCGAAACTGCCTTCCGGCTGTTGCTCGACACCGCTTCGGATGTCGCGCTGCCCTGGCACTGGCGCAACCTCTGCCTGGATCAAGCCTGGCGCCCGTTGCGTGAACTTGAGCGGCAGGCGCTTTGCCGCTGCCGCCTCAAGCGCTGGCAAAGCCATGCCTGGGCGCTGGCTACCTGCGCGCTGGAGCCGTCGATTTCTCTTATTGAACTGGAGCAAGGATTTCCCGATGAGTAAMSLALHEQPYLENWRWMSRQIRCAMSPDEPRLIEHYLAEGRYLACCTATSPWMIGETAFRLLLDTASDVALPWHWRNLCLDQAWRPLRELERQALCRCRLKRWQSHAWALATCALEPSISLIELEQGFPDENANANANANA
D1-35_012641377fumC_2COG0114Fumarate hydratase class IIATGAGTAATACCCGTATCGAACGCGACAGCATGGGTGAACTTCAGGTCCCCGTGGACGCACTCTATGGCGCGCAGACCCAGCGCGCGGTGGATAATTTTCCGGTCAGCGGCCAGCGCATGCCGGCGCAGTTCATTCGTGCCCTGATCCTGGCCAAGGCCGCCGCCGCACGAGCCAATGTCGAGTTGGAGCAAATCAGCGTCGCCCAGGGCAAAGCCATCGTCGATGCGGCCCAGGGCCTGCTCGAAGGCGACTTCATGGCGCATTTCCCGGTGGATATCTTCCAGACCGGCTCCGGCACCAGTTCCAACATGAACGCCAACGAAGTGATTGCCACGCTTGCCAGCCGCTTGCTGGGAGAGGTGGTCAACCCGAATGACCACGTCAATTGTGGCCAGAGCAGCAACGACATCATCCCCACCAGTATTCATGTCAGCGCCGCGCTGGCCCTGCACGAGCAATTGCTGCCGGCGCTGTTGCACCTGGTCCAGGTGATCGAACGCAAGGCCGAAGAAGTCCACCCCTTCATAAAGACTGGCCGCACCCACCTGATGGATGCCATGCCGGTGCGCTTGAGCCAGGTGCTCGACGGTTGGGCGCAACAGCTCAAGGCTAACATCGGCCACTTGCAGGATCTGTTGCCGAGCCTGCAGTCCCTGGCCCAGGGCGGTACGGCGGTTGGCACCGGCGTTAATGCCCATCCACGCTTCGCCGAATTGTTCAGCCAGCAGCTGACGCAACTGACCCAGGTGCAATTCACCCCGGGCAAGAACCTGTTCGCGCTGATCGGCTCCCAAGACACTGCCGTGGCGGTTTCCGGGCAGCTCAAGACTACTGCCGTGTCGCTGATGAAAATCGCCAACGACCTGCGCTGGATGAACTCAGGGCCGCTGGCCGGCCTGGGCGAAATCGAGCTGGAAGGCCTGCAGCCGGGCTCTTCGATCATGCCCGGCAAGGTCAACCCGGTCATTCCCGAAGCCACCGCCATGGTCGCAGCCCAGGTCATCGGCAACGACACGGTGATTACCATCGCCGGCCAGTCGGGCAATTTCGAACTCAACGTGATGCTGCCGATCATCGCCCAGAACCTGCTGAGCAGCATCGCCCTGATGTCCACCGCCAGCCAATTGCTGGCGGACAAGGCCATCGCCACGTTCAAGGTCAACGAAGCCAGGCTCAAGGAAGCGCTGTCGCGCAATCCTATCCTGGTCACGGCACTGAATCCGATCATTGGTTACCAGAAGGCCGCTGAAATAGCCAAGAAGGCTTATCAGCAAGGTCGCCCGGTGATCGATGTCGCCTTGGAACACACCGACCTGTCGCGCGCCGAACTGGAGATCCTGCTGGACCCGGAAAAGCTCACCGCCGGTGGTGTGTAAMSNTRIERDSMGELQVPVDALYGAQTQRAVDNFPVSGQRMPAQFIRALILAKAAAARANVELEQISVAQGKAIVDAAQGLLEGDFMAHFPVDIFQTGSGTSSNMNANEVIATLASRLLGEVVNPNDHVNCGQSSNDIIPTSIHVSAALALHEQLLPALLHLVQVIERKAEEVHPFIKTGRTHLMDAMPVRLSQVLDGWAQQLKANIGHLQDLLPSLQSLAQGGTAVGTGVNAHPRFAELFSQQLTQLTQVQFTPGKNLFALIGSQDTAVAVSGQLKTTAVSLMKIANDLRWMNSGPLAGLGEIELEGLQPGSSIMPGKVNPVIPEATAMVAAQVIGNDTVITIAGQSGNFELNVMLPIIAQNLLSSIALMSTASQLLADKAIATFKVNEARLKEALSRNPILVTALNPIIGYQKAAEIAKKAYQQGRPVIDVALEHTDLSRAELEILLDPEKLTAGGVPGPT0001650_4382DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001650-fumC-K01679NANA
D1-35_01265441hypothetical proteinATGGAGCATTGGAAACGTACGATCGAACGGGCCAATCACCATTTCCTGCAGGGCGAGTGGGTGGATGCCCGCGAAGCCTACCTGCAGGCCCTGGCCCTGGCGCAGGTGTTGTTCGAGCGTTGGGCGGATGCCGACGAAGCCGTGGCCGCCTGTGTCGTGTCGCATCACAACCTGGCGGACCTGCACTTGCGCCTGAACCAGCCGGAGGAGAGCGCCGAGTACCTCTGCGCGATTCACCAACGGTTATTGCAGACCATGCAGGACGAACGCCTGGCGCCGGCCCTGCGTGCCGCCGCGATGCGCCAAAGCCACAGGACCTACGTCGAACTGCTGAATTTCATCAGCGAGCATGGCGAGTACCCACGCACTCAGCGCCTGCTGCACAACGCTGCCGTTTCGTCCCGGCACAGCCACGTCCCTCATCATTACGGAGTCCACTGAMEHWKRTIERANHHFLQGEWVDAREAYLQALALAQVLFERWADADEAVAACVVSHHNLADLHLRLNQPEESAEYLCAIHQRLLQTMQDERLAPALRAAAMRQSHRTYVELLNFISEHGEYPRTQRLLHNAAVSSRHSHVPHHYGVHNANANANANA
D1-35_01266612sodB_1Superoxide dismutase [Mn/Fe]ATGGCTTTCACCTTGCCTGCATTGCCTTACGCCTACGACGCCTTGGAACCGCACATCGATGCGCAGACCATGGAGATCCACTACACCAAGCATCACCAGACTTACATCAACAACCTCAACGCGGCGGTGGATGGCACTGAATATGCCGATTGGCCCATCGAAAAACTGGTGGCCAGCGTGGAGCAATTACCGCAGGCGCTACGAGCCGCGGTGATCAACCAGGGCGGTGGTCATGCGAACCACTCGCTGTTCTGGGAAGTGATGACGCCCCACGGTGGCGGCCAGCCGGACGGTGCGCTGGCAGCGGCGATAGACGCGCAGTTGGGCGGTCTCGATCAGTTCAAGGAAGCCTTCACGAAAGCGGCACTGACCCGCTTCGGCAGCGGCTGGGCCTGGTTGAGTGTGACCCCGCAAAAGACTCTGGTGGTGGAAAGCAGCGGCAACCAGGACAGCCCGCTGATGGGCGGCAACACGCCGATCCTGGGCCTGGACGTCTGGGAGCATGCCTATTACCTGCTGTATCAAAACCGCCGTCCGGAATACATCAACGCGTTCTACAACGTGATCAATTGGCCAGAAGTCGCCCGGCGCTACCAGGCTGCGCTTGCTTGAMAFTLPALPYAYDALEPHIDAQTMEIHYTKHHQTYINNLNAAVDGTEYADWPIEKLVASVEQLPQALRAAVINQGGGHANHSLFWEVMTPHGGGQPDGALAAAIDAQLGGLDQFKEAFTKAALTRFGSGWAWLSVTPQKTLVVESSGNQDSPLMGGNTPILGLDVWEHAYYLLYQNRRPEYINAFYNVINWPEVARRYQAALAPGPT0004190_2928DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_SUPEROXIDE_ANION_RADICALS,PGPT0004190-chrC|sodB|sodA-K04564NANA
D1-35_01267891zupT_2Zinc transporter ZupTATGGACACTGAAACTCTGGCGATAGGCGGCGGGCGAATGTTCCGCTATGCCTTGGGCTCGCTGTTGCTGTTGGCTGGCATGACATTATTGGTGGCCCAAGGGCTGGCGTGGCTGGAGCTTGAGCCAAAAATGTTGCGTGCGCTCCAGGGCGGTGGGCTTTGCGCCTTGGGTACGGCGTTGGGCGCGGTGCCGGTGCTGGTGATACGGCGCATGCCTCAGGCCATGAGCGACTCGCTGCTGGGCTTCGGGGCCGGGGTGATGCTCGCCGCCACCGCGTTTTCGCTCATCGTGCCGGGCATTGCCGCAGCCGAGCAGTTGGGCTTCACGCCTTGGGCGGCCAGCGGGCTCATCTGTTTCGGCATCCTGTCGGGGGCGTTCGGACTGTACCTGGTGGACCGCAAGGTCTCTGCCAGCCCTGAACGACTGGTTGCGACCCCAGGACGACCGGTTATTGCGCCGCGGATCTGGTTGTTCGTGTTCGCCATCATCGCCCACAACATCCCGGAAGGCATGGCGGTGGGCGTTTCGGCGGGCGGCGGCATGGCGGATGCCGATAGCCTGGCGATGGGCATCGCTTTGCAGGATGTGCCGGAAGGGCTGGTGATTGCGCTGGTGCTGGCCGCGGCGGGGATGTCGCGGGTCAAGGCGTTCCTGATTGGCGCAGCGTCAGGGCTGGTCGAGCCGGTGTTCGCATTGCTCTGTGCCTGGCTGGTGACGTTGGCCGAGGTGCTGTTGCCGTTGGGGCTGGCGCTGGCCGCTGGAGCGATGCTGTTGGTGGTGACCCATGAGGTCATCCCCGAGTCGCGTCGCAATGGGCATGAAAAACTGGCGAGCCTGGGGCTCTTGCTTGGGTTCTGCTTGATGATGGTGATGGATACGGCGTTGGGGTGAMDTETLAIGGGRMFRYALGSLLLLAGMTLLVAQGLAWLELEPKMLRALQGGGLCALGTALGAVPVLVIRRMPQAMSDSLLGFGAGVMLAATAFSLIVPGIAAAEQLGFTPWAASGLICFGILSGAFGLYLVDRKVSASPERLVATPGRPVIAPRIWLFVFAIIAHNIPEGMAVGVSAGGGMADADSLAMGIALQDVPEGLVIALVLAAAGMSRVKAFLIGAASGLVEPVFALLCAWLVTLAEVLLPLGLALAAGAMLLVVTHEVIPESRRNGHEKLASLGLLLGFCLMMVMDTALGPGPT0004250_518DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ZINK_RESISTANCEZINK_RESISTANCE-ZINK-NICKEL_TRANSPORT,PGPT0004250-TC_ZIP|zupT|ZRT3|ZIP2-K07238NANA
D1-35_01268276ptsOCOG1925Phosphocarrier protein NPrATGCCTGCTCGGGAAATTGAAATCATCAACAAGCTGGGTTTGCATGCCCGTGCATCGGCGAAATTCGTAGGTGTCGCCGGCAAGTTTCCAGAAACCACGATCAGGGTCGGGCGCACGCCGGAGGCAACAGTCGACGGTAAGAGCATCATGGCGATGATGATGCTGGCTGCGGGTAAAGGCACCAAGATCCACCTGAGTACCGAAGGTGAACAGGCGCAGGAAGCCATGGATGCGCTGGTGGCACTGATCAACAACTATTTCGACGAAGGCGAGTAAMPAREIEIINKLGLHARASAKFVGVAGKFPETTIRVGRTPEATVDGKSIMAMMMLAAGKGTKIHLSTEGEQAQEAMDALVALINNYFDEGEPGPT0016875_959DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLUCOSE_PTS_SYSTEM_I,PGPT0016875-ptsH-K02784NANA
D1-35_01269858rapZCOG1660RNase adapter protein RapZATGCGTATGATCATCGTCAGTGGCCGCTCCGGCTCCGGCAAAAGCACGGCCCTCAACGTTCTTGAGGACAGTGGCTACTATTGCATCGACAATTTGCCGGCCGGCCTGCTCCCACAACTGGCCGAGCGCGCCTTGATCCACACCGAGCTGGCGCAACCGCTGGTCGCCGTCTCGATCGACGCGCGTAACCTGCCGAGCCATTTGTCGCGGTTTCCGGCATTGCTTGAAGAAGTGCGCAGCCGGCACATCCAATGCGACGTGTTGTACCTCGACGCTGACGAAGAAACCCTGCTCAAGCGCTTCTCGGAAACCCGTCGACGCCACCCGTTGAGCAACGCCAGCCGCTCCCTGGCTGAAGCGATCCATGACGAGAGCCAACTGCTGGGGCCGATTGCCGACCTGGCGGACCTGAAGGTCAACACCACCAACCTGAACCTGTACCAGTTGCGCGACACCATCAAGTTGCGCCTGCTGAACCAGCCGGAACCGGGTACGGCGTTCCTGGTGGAGTCGTTCGGCTTCAAGCGTGGCATGCCGGTGGATGCCGACCTGGTGTTTGATGTCCGCTGCCTGCCCAACCCTTACTGGAAACCCGAACTGCGCGAGCAGTCCGGGCTTGACCAGTCGGTGATCGACTACCTGGCTGCCCAGCCGGATGTCGAGGAAATGTACCAGGATATCTCCAGCTACCTGCTCAAGTGGCTACCGCGTTTTGCCGCCAGCAATCGTGCCTATGTCACGATTGCCATCGGCTGCACCGGCGGTCATCACCGCTCCGTGTACCTGACCGAACGCCTGGGTCAGCTCCTGCAAAAATCCCTGAAGAATGTCCAGGTTCGCCACCGCGACCTCAGCTAAMRMIIVSGRSGSGKSTALNVLEDSGYYCIDNLPAGLLPQLAERALIHTELAQPLVAVSIDARNLPSHLSRFPALLEEVRSRHIQCDVLYLDADEETLLKRFSETRRRHPLSNASRSLAEAIHDESQLLGPIADLADLKVNTTNLNLYQLRDTIKLRLLNQPEPGTAFLVESFGFKRGMPVDADLVFDVRCLPNPYWKPELREQSGLDQSVIDYLAAQPDVEEMYQDISSYLLKWLPRFAASNRAYVTIAIGCTGGHHRSVYLTERLGQLLQKSLKNVQVRHRDLSNANANANANA
D1-35_01270465ptsNCOG1762Nitrogen regulatory proteinATGATCCGACTAGAATCCATCCTGACCCCCGGCCGTTCACAGGTGAACGCGCCGGGTGGCAGTAAAAAGAAAGCCCTCGAACAAATCGCCAACCTGATCCACCGCGAAGTACCGGATCTGGAAATGCAGGACGTTTTCGAGGCGCTGGTTGCCCGTGAGAAACTCGGCTCCACCGGTTTTGGCAACGGCATCGCCATTCCCCATTGCCGCCTCAAGGGTTGTTCCGCGCCGATCAGTGCGCTGCTACACCTTGAAGCCCCCATCGATTTCGACGCCATCGACGGCGCCCCGGTCGACCTGCTGTTCGTATTGCTGGTCCCGGAAGCGGCGACCGATGCGCACCTCGAGCTGCTGCGCCAGATCGCCAGCATGCTCGACCGCAAGGAAGTACGCGAAAAACTGCGCAGCGCCCCGAGCAACGAAGCCTTGTATCAGGTAGTCCTGGACGAGCAGAACGGTCATTAAMIRLESILTPGRSQVNAPGGSKKKALEQIANLIHREVPDLEMQDVFEALVAREKLGSTGFGNGIAIPHCRLKGCSAPISALLHLEAPIDFDAIDGAPVDLLFVLLVPEAATDAHLELLRQIASMLDRKEVREKLRSAPSNEALYQVVLDEQNGHPGPT0000135_1093DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-ATMOSHPHERIC_NITROGEN_FIXATIONN-FIX-OTHER_NITROGEN_FIXATION_REGULATORS,PGPT0000135-ptsN-K02806NANA
D1-35_01271309hpfCOG1544Ribosome hibernation promoting factorATGCAAGTCAACATCAGTGGACACCAACTGGAAGTGACCGAACCCCTGCGCACCTACATCGGCGAAAAGCTCGACCGATTGGAAAGGCATTTCGACAAGATCACCAACGTGCAAGTCACGATGAACGTCGAGAAGCTGCTGCAGAAAATCGAAGCCACGCTGCATATCCCCGGCGGAGAAGTGGTTGCCAACGCAGAGCATTCAGACATGTATGCCGCGATTGACCTGCTGACCGACAAGCTGGATCGCCAACTCAAAAAGCATAAGGAAAAGACCCAGAGCCTCCTCCAGGGCGCAACCGGTCGTTAAMQVNISGHQLEVTEPLRTYIGEKLDRLERHFDKITNVQVTMNVEKLLQKIEATLHIPGGEVVANAEHSDMYAAIDLLTDKLDRQLKKHKEKTQSLLQGATGRNANANANANA
D1-35_012721470rpoNCOG1508RNA polymerase sigma-54 factorATGGGCCAGCAGCTGACGATGACACCGCAGCTGCAACAGGCTATCCGCCTACTCCAATTGTCGACCCTGGACCTGCAACAGGAAATCCAGGAGGCCCTGGAGTCCAATCCGATGCTCGAACGCCAGGAAGAAGGCGACGACTTCGACAATACCGACCCACTGGCCGACAACGTCGAGCAGAAAACCACCCCGGAGGTCCCGGAACCGTCCTATCAGGAAGCCGCCCCGACGGTGGATAACCTCGACGATGGCGAATGGAGCGAACGCATTCCCAATGACCTGCCCGTGGACACGGCATGGGAAGACGTCTACCAGACCAGCGCCAGCAGCCTGCCAGGCGGTGACGACGACGAGTGGGACTTCACCACTCGCACCTCTGCTGGCGAAAGCCTGCAAAGCCATCTGCTGTGGCAACTGAACCTGGCGCCGATGTCGGACACCGATCGCCTGATCGCGGTGACGTTGATCGATTGCATCAACAACCAGGGCTACCTGGACGAGACCCTCGAAGAAATCCTCGAAGCCTTTGACCCGGAGCTCGATATCGAGCTGGACGAGATCGAAGCCGTCCTGCATCGCATCCAGCAATTCGAACCCGCCGGCATTGGCGCTCGCAACCTAGGCGAATGCCTGCTGCTGCAATTGCGCCAGCTGCCCGCCAAGACGCCATGGCTGGCCGAAGCCAAGCGCCTGGTAACCGATTACATCGACCTGTTGGGCGGCCGCGACTACAGCCAGTTGATGCGCCGGATGAAGCTCAAGGAAGATGAGTTGCGCCAGGTCATCGAACTGGTGCAAAGCCTGAATCCGCGCCCCGGCTCGCAAATCGAATCCACCGAGCCCGAGTATGTCGTCCCCGATGTGATCGTGCGCAAACACAACGATCGCTGGCTGGTGGAGCTGAACCAGGAATCGGTACCCAAGCTGCGGGTCAATGCCCAATACGCCGGTTTCGTGAAGCGTGCCGACACCAGCGCCGACAATACCTTCATGCGCAATCAGTTGCAGGAGGCGCGCTGGTTCATCAAGAGCCTGCAAAGCCGCAACGAAACCCTGATGAAAGTCGCCACCCAGATCGTCGAGCATCAGCGCGGCTTCCTGGAGTACGGTGACGAAGCGATGAAACCGTTGGTCTTGCATGACATCGCCGAGGCGGTAGGCATGCACGAGTCGACGATTTCGAGGGTGACAACCCAGAAATTCATGCATACCCCAAGGGGCATCTATGAATTGAAATACTTTTTCTCCAGCCACGTCAGTACCTCCGAAGGCGGTGAATGCTCGTCCACGGCCATCCGCGCGATCATTAAAAAACTGGTCGCTGCGGAAAATCAGAAAAAGCCGTTGAGTGACAGCAAGATCGCTGGTTTACTGGAGGCACAAGGCATTCAGGTGGCCCGCCGTACCGTCGCCAAATACCGCGAATCCCTGGGAATCGCGCCTTCGAGCGAACGCAAGCGGTTGATGTAAMGQQLTMTPQLQQAIRLLQLSTLDLQQEIQEALESNPMLERQEEGDDFDNTDPLADNVEQKTTPEVPEPSYQEAAPTVDNLDDGEWSERIPNDLPVDTAWEDVYQTSASSLPGGDDDEWDFTTRTSAGESLQSHLLWQLNLAPMSDTDRLIAVTLIDCINNQGYLDETLEEILEAFDPELDIELDEIEAVLHRIQQFEPAGIGARNLGECLLLQLRQLPAKTPWLAEAKRLVTDYIDLLGGRDYSQLMRRMKLKEDELRQVIELVQSLNPRPGSQIESTEPEYVVPDVIVRKHNDRWLVELNQESVPKLRVNAQYAGFVKRADTSADNTFMRNQLQEARWFIKSLQSRNETLMKVATQIVEHQRGFLEYGDEAMKPLVLHDIAEAVGMHESTISRVTTQKFMHTPRGIYELKYFFSSHVSTSEGGECSSTAIRAIIKKLVAAENQKKPLSDSKIAGLLEAQGIQVARRTVAKYRESLGIAPSSERKRLMPGPT0000795_861DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000795-ntrA|rpoN-K03092NANA
D1-35_01273726lptB_2COG1137Lipopolysaccharide export system ATP-binding protein LptBATGGCAACTCTGAAAGCTCAGCATCTGGCCAAGAGCTACAAGAACCGCCAAGTCGTGCGTGATGTCAGCCTGTCCATCGAAAGCGGCCAGATCGTAGGCTTGCTCGGCCCCAATGGCGCGGGCAAGACCACCTGTTTCTACATGATTGTCGGCCTGGTGCAGGCCGACCAGGGTCGCGTACTGATCGATGACCTGGACGTCAGCCACCGGCCGATGCATGGCCGGGCAAAGGCTGGCATTGGCTACCTACCACAAGAGGCGTCGATCTTTCGCAAGTTGTCGGTAGCCGACAACATCATGGCGATCCTGGAAACCCGCCAGGAGCTCGACAAGGCCGGCCGTCGCCAGGAGCTGGAAAGCCTGCTGCAGGAGTTCCATATCAGCCACATTCGCGACAATCTGGGCATGAGCCTTTCCGGTGGCGAACGTCGCCGCGTGGAGATCGCCCGTGCCCTGGCCACCGCGCCGAAATTCATTCTGCTGGATGAGCCGTTTGCCGGCGTGGACCCGATTTCGGTGGGCGACATCAAGCAGATCATCCATCACCTCAAGGCCAAGGGAATCGGCGTGCTGATCACCGACCACAACGTACGCGAGACGCTGGATATCTGTGAAACCGCCTACATCGTCAACGATGGCCAGCTGATCGCCGAGGGCGACTCCGCCACCATCCTGGCCAACGAACTGGTCAAGGAAGTATACCTGGGCCATGAGTTCCGCCTTTAAMATLKAQHLAKSYKNRQVVRDVSLSIESGQIVGLLGPNGAGKTTCFYMIVGLVQADQGRVLIDDLDVSHRPMHGRAKAGIGYLPQEASIFRKLSVADNIMAILETRQELDKAGRRQELESLLQEFHISHIRDNLGMSLSGGERRRVEIARALATAPKFILLDEPFAGVDPISVGDIKQIIHHLKAKGIGVLITDHNVRETLDICETAYIVNDGQLIAEGDSATILANELVKEVYLGHEFRLPGPT0023300_2396DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_TRANSPORT,PGPT0023300-lptB-K06861NANA
D1-35_01274549lptACOG1934Lipopolysaccharide export system protein LptAATGAAGCTCGCTAAAACCCTCCCTATTTTGCTCAGTCTGGGCGCAGCACTGGGAAGCGCGAGCGCCTGGGCCCTCCCCACCGACCGCGACCAGCCTATCCGCATCCAGGCCGACGACGCGCAACTGGACGACAAGAACGGCGTCGCCACTTATAAAGGCGACGTGATCATCACCCAGGGTTCGATGAAGGTCACCGGCAATACCGTGACCATCACCCGCACCCAGTCCGGCGACATCGACGTGGTGACCTCGGTGGGCAACCTGGCCTACTTCGAGCAGATGCAGACCGCGGGCGACACCAAGCCGGTCCAGGGCTATGGCGTCACCATCCAGTATCACGCGTCCCAGGACCGCGTCGTGCTGATCGACCGCGCCAAGGTTGTCGACAAGGACAATAACGTGACCCAGGGCGAGAAAATCGTCTATGACACCAACAAGAAACTGGCCAGCGCCGGTCGCGCCACTGGCAGCAAGGTCACCGAATCGCGCCCACGCATCGACATGGTGATCCAGCCGAAAAAGAAAACCGACGAGCAGAAGGCCCAGTAAMKLAKTLPILLSLGAALGSASAWALPTDRDQPIRIQADDAQLDDKNGVATYKGDVIITQGSMKVTGNTVTITRTQSGDIDVVTSVGNLAYFEQMQTAGDTKPVQGYGVTIQYHASQDRVVLIDRAKVVDKDNNVTQGEKIVYDTNKKLASAGRATGSKVTESRPRIDMVIQPKKKTDEQKAQPGPT0023301_1210DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_TRANSPORT,PGPT0023301-lptA|yhbN-K09774NANA
D1-35_01275573lptCLipopolysaccharide export system protein LptCATGCTAAGCAAGAAAATTCGCACCATCCTGGTGTTCGGCTGTATCGCCGCGATCTTCGCGGCGGTGGGCTACTGGAACATCAGCCCGGAACGCTTCCTCGACCAGCCTGCGGTCCAGGCGCCGGAAAACGATATCGACTGGTACGCGACCAACACGCACACCTTGCAGTACCTGCCTGACGGCAAGCTGCAGTATGAGATGACGTCGGACAAGGTCGATCACGTGAAGGCCAGCGACATGACGCTGGTCACCAAGCCGGACCTGAACATGTTCCGCGGCACGGAGTTCCCGTGGCACGTACAAAGCGAGCGCGCCGAGGTCAATCCCGGCGGCACCGAGGTGGAACTGATCGACTCGGTACGCGTGGCCCGGACCGATGAGAAGAACCGTACGACCATCATTACCAGTACCCGTATGACAGTCTTCCCGCAGCGCCAATATGCGCAGACCGAGCAACCCGTTAGAATCGACGGCGCCGGCGGCGTGTCGACCGGCACGGGAATGAAGGCCTATTTGAAGGAAAGCAGGATACACCTGCTATCGAACGTAAGAGGACAGTATGAAGCTCGCTAAMLSKKIRTILVFGCIAAIFAAVGYWNISPERFLDQPAVQAPENDIDWYATNTHTLQYLPDGKLQYEMTSDKVDHVKASDMTLVTKPDLNMFRGTEFPWHVQSERAEVNPGGTEVELIDSVRVARTDEKNRTTIITSTRMTVFPQRQYAQTEQPVRIDGAGGVSTGTGMKAYLKESRIHLLSNVRGQYEARPGPT0023299_1364DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_TRANSPORT,PGPT0023299-lptC|yrbK-K11719NANA
D1-35_01276525kdsCCOG17783-deoxy-D-manno-octulosonate 8-phosphate phosphatase KdsCATGAGCACAGACCTGTTGCAACGCGGCAAAGCAATCAAACTGGCAGTGTTCGACGTGGATGGTGTGCTGACCGATGGCCGCCTGTACTTCCTCGAAGACGGCAGCGAATTCAAGACGTTCAACACCCTTGATGGCCAGGGCATCAAGATGCTGATGGCCACCGGCGTGCAGACCGCCATCATCAGTGGCCGCAAGACCCCAGTGGTCGAACGGCGCGCGAAGAACCTCGGCATCCCGCACCTTTATCAGGGCCGCGAAGACAAATTGGTGGTGCTGGACGAACTCCTCGGCCAACTCAATCTAAGCTATGAGCAGGTCGCCTACCTCGGTGACGATCTGCCAGACCTTCCGGTGATCCGCCGTGTCGGCCTGGGCATGGCAGTGGCCAACGCGGCTGCCTTCGTACGCGAGCACGCCCATGGCGTCACCACGGCGAGGGGCGGCGAAGGCGCGGCCCGCGAATTCTGTGAACTGATCCTGCGTGCCCAGGGCCACCTCGAAGCGGCCAACGCCGCGTACCTGTGAMSTDLLQRGKAIKLAVFDVDGVLTDGRLYFLEDGSEFKTFNTLDGQGIKMLMATGVQTAIISGRKTPVVERRAKNLGIPHLYQGREDKLVVLDELLGQLNLSYEQVAYLGDDLPDLPVIRRVGLGMAVANAAAFVREHAHGVTTARGGEGAAREFCELILRAQGHLEAANAAYLPGPT0023070_1605DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-8-AMINO-3|8-DIDEOXY_D_MANNO-OCTULOSONIC_ACID_MODIFICATION,PGPT0023070-kdsC-K03270NANA
D1-35_01277975kdsDCOG0517Arabinose 5-phosphate isomerase KdsDATGAGCCAATCCAGCGAACTGATTCAATCGGCACAACGTACCCTCCGCCTCGAACTCGAAGCCGTGCAAGGTTTGCTGGCCCATATCGATGCTGATTTCGTACGCGCGTGCGAGATGATTCTGTCCAGCAAGGGCCGCGTGGTCGTGGTGGGCATGGGCAAATCCGGGCACATCGGCAACAAGATTGCCGCGACCCTGGCCAGCACCGGCACCCCGGCGTTTTTTGTCCACCCCGCCGAAGCCAGCCATGGCGACATGGGCATGATCACTCGGGATGACATCATCCTGGCGCTGTCGAACTCCGGCTCCACCAATGAAATCGTCACCCTGCTGCCGCTGATCAAGCGCCTGGGCATCCAGTTGATCAGCCTCACCGGCAATCCTGACTCGCCGCTGGCCAAGGCCGCCGAGGTGAACCTCAACGTGCATGTCGAACACGAAGCCTGCCCGCTGAATCTGGCACCCACCTCTTCCACCACGGCGGCGCTGGTCATGGGCGACGCCCTGGCCGTGGCCTTGCTGGAAGCCAGGGGCTTCACCGCCGAAGATTTCGCTTTCTCCCACCCCGGTGGCGCCCTGGGCCGCCGGCTGCTGCTCAAGGTCGAAAACGTGATGCACGCGGGAGACGCATTGCCGCAGATACAGCGTGGCACGCTGCTCAAGGACGCCCTCATGGAGATGACCCGCAAGGGCCTGGGCATGACCGTTATTCTAGAAACGGACGGCAAGCTCGCCGGGATCTTCACCGACGGCGACCTGCGTCGTACCCTGGATCGCACCATCGATATCCACAGCACGACCATCGATGAGGTCATGACCCCCCACGGCAAGACAGCCCGGGCCGAAATGCTTGCCGCCGAAGCCTTGAAGATCATGGAAGACCACAAGATCAGCGCCCTGGTGGTGGTCGACGACGAAGACCGCCCGGTGGGCGCCCTGAATATGCACGACTTGCTGCGTGCGGGAGTCATGTAAMSQSSELIQSAQRTLRLELEAVQGLLAHIDADFVRACEMILSSKGRVVVVGMGKSGHIGNKIAATLASTGTPAFFVHPAEASHGDMGMITRDDIILALSNSGSTNEIVTLLPLIKRLGIQLISLTGNPDSPLAKAAEVNLNVHVEHEACPLNLAPTSSTTAALVMGDALAVALLEARGFTAEDFAFSHPGGALGRRLLLKVENVMHAGDALPQIQRGTLLKDALMEMTRKGLGMTVILETDGKLAGIFTDGDLRRTLDRTIDIHSTTIDEVMTPHGKTARAEMLAAEALKIMEDHKISALVVVDDEDRPVGALNMHDLLRAGVMPGPT0023075_1822DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-8-AMINO-3|8-DIDEOXY_D_MANNO-OCTULOSONIC_ACID_MODIFICATION,PGPT0023075-kdsD|kpsF-K06041NANA
D1-35_01278810mlaFCOG1127Intermembrane phospholipid transport system ATP-binding protein MlaFATGAGTGCCGACAACGCCTACGCGGTCGAGCTGAAGGGGCTGTCCTTCAAGCGAGGGACGCGCAGCATTTTTAATGACATCGATATTCGTATCCCGCGCGGCAAGGTGACCGGCATCATGGGGCCTTCCGGCTGCGGCAAGACCACGCTGCTGCGCCTGATGGGAGCACAATTGCGCCCCAGTGCCGGCGAAGTCTGGGTCAATGGCCAGAATCTTCCAGAACTGTCGCGCAGCGATCTGTTCGATGCGCGCAAGCATATGGGCGTGCTGTTCCAGAGCGGTGCGCTGTTTACCGATCTCGACGTATTCGAAAACGTGGCGTTTCCCCTGCGGGTCCATACGGAGCTGCCGGAAGAGATGATCCGCGATATTGTCCTGCTCAAATTGCAGGCCGTCGGGCTGCGCGGCGCCCTGGAGCTGATGCCGGACGAACTGTCCGGTGGCATGAAGCGTCGGGTCGCGTTGGCTCGGGCGATTGCCCTCGATCCGCAGATCCTCATGTACGACGAGCCCTTTGTCGGGCAGGACCCTATCGCCATGGGCGTGCTGGTGCGCCTGATCCGCTTGCTCAACGATGCGTTGGGCATCACCAGTATCGTGGTGTCCCACGACCTGGCCGAAACCGCGAGCATTGCCGACTACATCTATGTGGTCGGCGATGGCCAGGTGTTGGGGCAGGGCACGCCCGAGGAGCTGAAGGATTCGGAAAACCCGCGTATTCGCCAATTCATGAAAGGTGATCCGGACGGCCCGGTGGCGTTCCATTTTCCGGCCACGGATTACCGTACCGATCTGCTGGGGAAGCGCTGAMSADNAYAVELKGLSFKRGTRSIFNDIDIRIPRGKVTGIMGPSGCGKTTLLRLMGAQLRPSAGEVWVNGQNLPELSRSDLFDARKHMGVLFQSGALFTDLDVFENVAFPLRVHTELPEEMIRDIVLLKLQAVGLRGALELMPDELSGGMKRRVALARAIALDPQILMYDEPFVGQDPIAMGVLVRLIRLLNDALGITSIVVSHDLAETASIADYIYVVGDGQVLGQGTPEELKDSENPRIRQFMKGDPDGPVAFHFPATDYRTDLLGKRPGPT0007015_1866DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_PHOSPHOLIPID|CHOLESTEROL_TRANSPORT,PGPT0007015-mlaF|linL|mkl-K02065NANA
D1-35_01279798mlaECOG0767Intermembrane phospholipid transport system permease protein MlaEATGCGCAAGAAGTCATTGATAGAAAGAGTCCGCCTGTTCGGTCGCTCGGGCATCGACGTGGTGGCAGTGCTGGGGCGTTCCTCGCTGTTCCTGATGCATGCCTTGCTCGGTCGCAGTTCGACCGGCGGCGGTTTTGGCCTGCTGGTCAAGCAGCTGCATTCGGTGGGAGTGATGTCCCTGGTGATCATCGTCGTCTCGGGGATTTTCATCGGCATGGTCCTGGCGCTCCAGGGCTTCAGCATATTGTCCAGCTACGGTTCCGAGCAGGCGGTCGGGCAGATGGTTGCGCTGACCTTGCTGCGTGAGCTCGGCCCGGTGGTCACTGCGCTGCTTTTTGCCGGGCGCGCCGGTTCGGCGTTGACGGCCGAGATCGGTAACATGAAGTCCACCGAACAGCTGTCCAGCCTGGAAATGATCGGGGTCGACCCGCTCAAGTACATCATTGCCCCGCGCTTGTGGGCCGGGTTCATTTCCCTGCCGGTGCTGGCAATGATCTTCAGTGTCGTAGGGATCTGGGGCGGCTCATGGGTTGCCGTCGATTGGCTGGGGGTCTATGAAGGCTCCTACTGGGCCAATATGCAGAACAGCGTCGATTTTCTCGACGATGTGCTCAACGGTGTGATCAAGAGTGCCGTATTCGCTTTCGTGGTGACCTGGATCGCCGTGTTTCAAGGTTATGACTGTGAGCCCACGTCAGAGGGGATCAGCCGTGCCACAACCAAGACCGTGGTATACGCCTCGTTGGCCGTCCTGGGCCTTGACTTTATTCTGACCGCCTTGATGTTTGGAGATTTCTGAMRKKSLIERVRLFGRSGIDVVAVLGRSSLFLMHALLGRSSTGGGFGLLVKQLHSVGVMSLVIIVVSGIFIGMVLALQGFSILSSYGSEQAVGQMVALTLLRELGPVVTALLFAGRAGSALTAEIGNMKSTEQLSSLEMIGVDPLKYIIAPRLWAGFISLPVLAMIFSVVGIWGGSWVAVDWLGVYEGSYWANMQNSVDFLDDVLNGVIKSAVFAFVVTWIAVFQGYDCEPTSEGISRATTKTVVYASLAVLGLDFILTALMFGDFPGPT0007010_3340DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_PHOSPHOLIPID|CHOLESTEROL_TRANSPORT,PGPT0007010-mlaE|linK-K02066NANA
D1-35_01280468mlaDCOG1463Intermembrane phospholipid transport system binding protein MlaDATGCAAAACCGCACCCTGGAAATCGGTGTCGGCCTTTTCCTGCTGGCTGGCATCCTGGCTTTGCTGTTGCTGGCCCTGCGGGTCAGTGGACTGGCGCCGACCGCAAGCACCGATACTTATAAACTTTATGCTTATTTTGACAATATCGCCGGTTTGACTGTCAGAGCCAAGGTGACCATGGCCGGTGTGACCATCGGCAAGGTCACGGCAATCGATCTGGATCGCGACAGTTTCACCGGTCGGGTGACGCTGCAGCTGGAAAAGCGCGTGGACAACCTGCCGACTGACTCCACTGCATCTATCCTCACGGCTGGGCTGTTGGGTGAGAAATACATCGGTATCAGCGTGGGCGGGGAAGACTCCCTGCTCAAGGATGGCGGGACCATTCACGACACGCAGTCGTCGCTGGTGCTTGAGGACCTGATCGGTAAATTCCTGCTCAATACCGTTAGCAAAGACGCCAAATGAMQNRTLEIGVGLFLLAGILALLLLALRVSGLAPTASTDTYKLYAYFDNIAGLTVRAKVTMAGVTIGKVTAIDLDRDSFTGRVTLQLEKRVDNLPTDSTASILTAGLLGEKYIGISVGGEDSLLKDGGTIHDTQSSLVLEDLIGKFLLNTVSKDAKPGPT0007005_9558DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_PHOSPHOLIPID|CHOLESTEROL_TRANSPORT,PGPT0007005-mlaD|linM-K02067NANA
D1-35_01281654mlaCCOG2854Intermembrane phospholipid transport system binding protein MlaCATGATCTCTATCCTGCGACGCAGCCTGCTGGTCCTGCTGGCGGCGCTGCCGCTGATGGGCAACGCCGTGGCGGCCCCTTCGGCGCACGACATCATCAAGACGACCACCGACCAACTGTTGGCCGATCTGTCGGCGAACAAGGAAAAGTACAAGCAGGACCCGGGCGCATTCTACGAGTCCTTGAATCGTATCGTCGGGCCGGTGGTGGATGCCGACGGTATTTCCAAGAGCATCATGACCGTCAAGTATTCGCGCAAGGCTACGCCCGCGCAGATGACCCGCTTCCAGGAAAACTTCAAGCGCAGCCTGTTCCAGTTCTATGGCAACGCCTTGCTCGAGTACAACAATCAGGGGATAACGGTCGACCCGGCCAAGGATGAGTCAGGCGAGCGCACCAGCGTCGGCATGACGGTCAAGGGCAACAATGGCGCCGTGTACCCGGTGTCCTACACACTCGAGAAAATCAACGGCGAGTGGAAAGTCCGCAACGTGATCATCAACGGCATCAACATCGGCAAGTTGTTCCGTGATCAGTTCGCCGATGCGATGCAGCGCAATGGCAATGACCTGGACAAGACCATCAACGGTTGGGCCGGTGAAGTCGCCAAGGCCAAGGAAGTTGCCGAAGACGCCCAAGAGAAGCAGCAACAATGAMISILRRSLLVLLAALPLMGNAVAAPSAHDIIKTTTDQLLADLSANKEKYKQDPGAFYESLNRIVGPVVDADGISKSIMTVKYSRKATPAQMTRFQENFKRSLFQFYGNALLEYNNQGITVDPAKDESGERTSVGMTVKGNNGAVYPVSYTLEKINGEWKVRNVIINGINIGKLFRDQFADAMQRNGNDLDKTINGWAGEVAKAKEVAEDAQEKQQQPGPT0007670_447DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_PHOSPHOLIPID|CHOLESTEROL_TRANSPORT,PGPT0007670-mlaC-K07323NANA
D1-35_01282318hypothetical proteinATGAATGAGCCGGTGAGTGAATCGGCCGTTCGCCTGGGCGAGGCCGGCGAGCTGCTGCTCAGCGGCGTGCTGGATTACCGTACCGGCCCTGGATTGCGCAAGCAGGGCCAGGCGCTGATCGAGTCCGCGAAGGCTGCGGAGCTGGTTATCGACTGTTCGGGCGTGCAGAAGTCCAGCAGCGTCGGCCTGTCGCTGCTGCTGTGCTTCATGCGCGACGCCAGGGCCGCCGGCAAGACGTGGAGCATCCGCGGGATGCCCGAAGACATGCGCGAAATAGCCCAGGTCAGCGAATTGACCGAGCTGTTGGCGCATCCCTGAMNEPVSESAVRLGEAGELLLSGVLDYRTGPGLRKQGQALIESAKAAELVIDCSGVQKSSSVGLSLLLCFMRDARAAGKTWSIRGMPEDMREIAQVSELTELLAHPPGPT0007675_463DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_PHOSPHOLIPID|CHOLESTEROL_TRANSPORT,PGPT0007675-mlaB-K07122NANA
D1-35_01283240COG5007putative proteinATGCAGGCTGTAGAAGTGAAGAGCTTCCTTGAAGGAAAGCTGCCTGGTACGCAGGTGGAAGTTGAAGGCGAAGGCTGCAACTTTCAGTTGAACGTGATCAGCGATGAACTGGCGGCGTTGAGCCCAGTGAAGCGTCAGCAGAGCATCTATGCCCATTTGAACCCATGGATCGCCGACGGCAGCATCCACGCGGTCACGATGAAATTTTTCAGCAGCGCGGCCTGGGCCGAGCGCACCTGAMQAVEVKSFLEGKLPGTQVEVEGEGCNFQLNVISDELAALSPVKRQQSIYAHLNPWIADGSIHAVTMKFFSSAAWAERTPGPT0013203_97DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-CHAPERONES,PGPT0013203-grxD-K07390NANA
D1-35_012841266murACOG0766UDP-N-acetylglucosamine 1-carboxyvinyltransferaseATGGATAAACTGATTATTACCGGCGGCGTTCGTCTTGATGGCGAAATCCGTATTTCCGGGGCAAAGAACTCCGCCCTGCCGATCCTGGCCGCGACGCTGCTGTGCGATGGCCCGGTGACCGTGGCCAACCTGCCGCACCTGCACGACATCACCACGATGATCGAGCTGTTCGGTCGCATGGGCATCGAGCCTGTGATCGACGAGAAGCTCAGCGTCGAAATCGACCCGCGCACCATCAAGACCCTGATCGCGCCGTACGAACTGGTGAAGACCATGCGTGCGTCGATCCTGGTACTCGGCCCGATGGTCGCTCGTTTCGGTGAAGCCGAAGTCGCCTTGCCTGGCGGTTGCGCCATCGGTTCGCGTCCGGTGGACCTGCACATCCGTGGCCTCGAAGCCATGGGCGCGGTGATCGACGTCGAAGGCGGCTACATCAAGGCCAAGGCGCCTGAAGGCGGCCTGCGTGGCGCGCATTTCTTCTTCGACACCGTCAGCGTGACCGGTACCGAAAACATCATGATGGCCGCCGCCCTTGCCAAGGGCCGCAGCGTGCTGCAAAACGCTGCCCGCGAGCCTGAAGTCGTCGACCTGGCGAACTTCCTGATCGCCATGGGCGCCAAGATCAGCGGCGCCGGCACCGACACCATCACCATCGATGGCGTCGAGCGCCTGCACTCGGCCACCTATAAAGTGATGCCGGACCGTATCGAAACCGGCACCTACCTGGTAGCCGCCGCCGTCACCGGTGGTCGCGTCAAGGTCAAGGACACCGATCCGACCATCCTCGAAGCCGTCCTGGAGAAACTCAAGGAAGCCGGTGCCGAAGTCACCTGCGGTGCAGACTGGATCGAAGTGAACATGCACGGCAAGCGGCCGAAAGCCGTCAACGTGCGGACCGCTCCATACCCGGCGTTCCCGACTGACATGCAGGCGCAGTTCATCTCCCTCAACGCCATTGCCGAAGGCACGGGCGCGGTGATCGAGACGATCTTCGAAAACCGTTTCATGCACGTCTACGAGCTGCACCGCATGGGCGCCAGGATCCAGGTCGAAGGCAACACGGCCATCGTCACCGGGACCGAAAAACTGAAAGGCGCGCCTGTCATGGCGACCGACCTGAGGGCTTCGGCCAGCCTGGTCATCTCTGCACTGGTTGCCGAAGGCGACACGCTGATCGACCGCATCTACCACATCGACCGTGGCTACGAGTGCATCGAAGAGAAGCTGCAGATGCTCGGCGCCAAGATCCGTCGCGTACCGGGCTAGMDKLIITGGVRLDGEIRISGAKNSALPILAATLLCDGPVTVANLPHLHDITTMIELFGRMGIEPVIDEKLSVEIDPRTIKTLIAPYELVKTMRASILVLGPMVARFGEAEVALPGGCAIGSRPVDLHIRGLEAMGAVIDVEGGYIKAKAPEGGLRGAHFFFDTVSVTGTENIMMAAALAKGRSVLQNAAREPEVVDLANFLIAMGAKISGAGTDTITIDGVERLHSATYKVMPDRIETGTYLVAAAVTGGRVKVKDTDPTILEAVLEKLKEAGAEVTCGADWIEVNMHGKRPKAVNVRTAPYPAFPTDMQAQFISLNAIAEGTGAVIETIFENRFMHVYELHRMGARIQVEGNTAIVTGTEKLKGAPVMATDLRASASLVISALVAEGDTLIDRIYHIDRGYECIEEKLQMLGAKIRRVPGPGPT0024090_3748DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLGLUCOSAMINE_MODIFICATION,PGPT0024090-murA-K00790NANA
D1-35_01285636hisGCOG0040ATP phosphoribosyltransferaseATGTTGACCATCGCACTGTCCAAGGGCCGCATCCTTGACGACACCCTGCCGCTTCTGGCCGAAGCGGGCATCGTGCCGACCGAGAATCCGGACAAGAGCCGCAAGCTGATCATTCCCACGACCCAGGCCGACGTGCGCTTGTTGATCGTGCGCGCCACCGATGTGCCGACCTATGTGGAACATGGCGCCGCCGATCTGGGCGTAGCCGGCAAGGACGTGCTGATGGAGTATGGCGGCCAGGGCCTTTACGAGCCGCTGGACCTGCGGATCGCCCGCTGCAAGCTGATGACCGCCGGCAAGGTCGGCGCCCCCGAGCCCAAGGGCCGCCTGCGGGTGGCGACCAAGTTCGTCAACGTTGCCAAGCGTTACTACGCCGAACAAGGCCGTCAGGTCGACATCATCAAGCTCTACGGCTCGATGGAGCTGGCGCCGCTGATCGGCCTGGCGGACAAGATCATTGACGTCGTCGACACCGGCAATACGTTGCGGGCCAATGGTCTTGAGCCGCAGGATTTCATCGCCGACGTCACCTCCCGGCTGGTCGTCAACAAGGCTTCGATGAAAATGCAGCACGCCCGCATCCAGGCCTTGATCGATACCCTGCGCAAGGCAGTGGAATCGCGACACCGCGGCTGAMLTIALSKGRILDDTLPLLAEAGIVPTENPDKSRKLIIPTTQADVRLLIVRATDVPTYVEHGAADLGVAGKDVLMEYGGQGLYEPLDLRIARCKLMTAGKVGAPEPKGRLRVATKFVNVAKRYYAEQGRQVDIIKLYGSMELAPLIGLADKIIDVVDTGNTLRANGLEPQDFIADVTSRLVVNKASMKMQHARIQALIDTLRKAVESRHRGPGPT0017400_3992DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017400-hisG-K00765NANA
D1-35_012861338hisDCOG0141Histidinol dehydrogenaseATGACCGCTCCCACCTCGATTCGCCGACTCAACGCTGCCGACCCGGATTTCGCACATCATCTGGATCATCTGCTGAGCTGGGAGAGTGTGTCCGACGACTCGGTCAATCAGCGTGTGCTCGACATTATCAAAGCCGTGCGCGAGCGTGGTGATGCCGCACTGGTGGAGTTCACCCAGAAGTTCGACGGCCTCCAAGTCGCCTCGATGGCCGACCTGATCCTGCCGCGCGAGCGCCTGGAGCTGGCCCTGACCCGAATCACCGTGCCCCAGCGCGAAGCCTTGGAAAAAGCTGCGTCCCGCGTGCGCAGCTATCACGAAAGACAGAAGCAGGATTCCTGGAGCTACACCGAAGCCGATGGCACGGTGCTTGGCCAGAAGGTCACGCCGCTGGACCGCGCCGGCCTGTATGTGCCGGGTGGCAAGGCCTCCTATCCGTCTTCGGTGTTGATGAATGCGATTCCGGCCAAGGTGGCTGGCGTGACCGAAGTGGTCATGGTCGTCCCGACTCCGCGCGGGGACATCAACGAACTGGTGTTGGCGGCCGCCTGCATCGCCGGCGTCGACCGAGTGTTCACCATCGGCGGTGCGCAGGCCGTGGCTGCGTTGGCCTATGGCACCGAAAGCGTGCCGCGGGTCGACAAGGTGGTCGGGCCGGGCAATATCTATGTTGCCACCGCCAAGCGCCACGTATTTGGCCAGGTCGGCATCGACATGATCGCCGGCCCTTCGGAGATCCTCGTGGTCTGCGACGGCCAGACCGACCCGGACTGGATCGCCATGGACCTGTTTTCCCAGGCCGAGCACGACGAAGATGCCCAGGCCATCCTGGTCAGTCCGGATGCAGGGTTCCTCGACAAGGTCGCTGCCAGTATCGCCAAGCTGCTGCCGACCATGGACCGCGCCGAGATCATCAACACCTCGATCAATGGCCGTGGAGCGCTGATCAAGGTCGAAGACATGGAGCAGGCCATCGAGGTCGCCAACCGCATCGCGCCGGAACACCTGGAGTTGTCGGTGGCCGACCCGCAAGCCTGGCTGCCGAAGATTCGCCATGCCGGTGCGATCTTCATGGGCCGTCACACGTCCGAGGCATTGGGTGATTATTGCGCGGGCCCCAACCACGTGCTGCCGACTTCCGGCACCGCGCGTTTCTCGTCGCCGCTGGGCGTTTACGATTTCCAGAAACGTTCGTCGATCATTTTCTGCTCCGAGCAGGGCGCGTCCGAACTGGGCAAGACCGCTTCGGTGCTGGCCCGCGGCGAATCGCTGAGCGCCCACGCTCGTAGCGCCGAGTACCGCATTCTTGACGAGCCATCCATTGAAGGGCAGGGGAACTGAMTAPTSIRRLNAADPDFAHHLDHLLSWESVSDDSVNQRVLDIIKAVRERGDAALVEFTQKFDGLQVASMADLILPRERLELALTRITVPQREALEKAASRVRSYHERQKQDSWSYTEADGTVLGQKVTPLDRAGLYVPGGKASYPSSVLMNAIPAKVAGVTEVVMVVPTPRGDINELVLAAACIAGVDRVFTIGGAQAVAALAYGTESVPRVDKVVGPGNIYVATAKRHVFGQVGIDMIAGPSEILVVCDGQTDPDWIAMDLFSQAEHDEDAQAILVSPDAGFLDKVAASIAKLLPTMDRAEIINTSINGRGALIKVEDMEQAIEVANRIAPEHLELSVADPQAWLPKIRHAGAIFMGRHTSEALGDYCAGPNHVLPTSGTARFSSPLGVYDFQKRSSIIFCSEQGASELGKTASVLARGESLSAHARSAEYRILDEPSIEGQGNNANANANANA
D1-35_012871053hisC_3COG0079Histidinol-phosphate aminotransferaseATGAGTAAATTCTGGAGCCCGTTCGTCAAGAACCTGGTGCCCTACGTGCCGGGCGAACAGCCGAAGCTGACCCGGCTGGTCAAGCTCAACACCAACGAAAATCCCTACGGCCCATCGCCCAAGGCCCTGGCCGCGATGCAGACCGAGCTGAACGACAACCTGCGCCTGTATCCGGACCCCAACAGTGATTTGCTGAAAAGCGCCGTGGCCCGATATTACGCAGTGCAGACCAACCAGGTGTTCCTGGGCAACGGTTCGGATGAAGTGCTGGCGCACATTTTCCACGGCTTGTTGCAGCACGATCAGCCGTTGTTGTTCCCGGACATCAGCTACAGTTTCTATCCGGTTTATTGCGGGCTGTACGGTATCCAGTTCGATGCGGTGCCGCTGGATGAACAATTCCGGATCGACCCGGCAGACTACGCCAAGCCCAATGGCGGGATCATTTTCCCCAACCCGAATGCGCCGACCGGTTGCCTGCTGGCGCTGGACGCGGTGGAACAGATCCTCAGGGCCAGCCCGGATTCAGTGGTAGTGGTCGATGAGGCCTATATCGATTTCGGCGGCGAAACGGCCATCAGCCTGGTGGATCGTTATCCGAACCTGCTGGTGACACAAACCCTGTCCAAGTCACGCTCGCTGGCGGGGCTGCGCGTGGGCCTGGCGGTGGGCCATCCGGACTTGATCGAAGCGTTGGAGCGGATCAAGAACAGCTTCAACTCCTACCCGCTGGATCGCCTGGCGAATGTCGGCGGCGCGGCAGCGTTCGATGATCGCGAGTATTTTGACCAGACCTGCCGGTCGGTCATCGAGCACCGCGAATGGGTAGTTGGGCAGCTTGAAGCCAAGGGTTTTGAAGTACTGCCGTCGGCGGCCAACTTCATCTTCGCCCGTCACCCCCGACATGACGCGGCGGGGCTGGCGGCGAAACTGCGCGAGCAGGGCGTGATCGTGCGGCACTTCAAGCAGGCGCGCATCGCCCAGTTCCTGAGGATCAGCATCGGCACGCCGGAGCAGAACCAGGCACTGATCGAGGCTATGGGCGAGCTCTAAMSKFWSPFVKNLVPYVPGEQPKLTRLVKLNTNENPYGPSPKALAAMQTELNDNLRLYPDPNSDLLKSAVARYYAVQTNQVFLGNGSDEVLAHIFHGLLQHDQPLLFPDISYSFYPVYCGLYGIQFDAVPLDEQFRIDPADYAKPNGGIIFPNPNAPTGCLLALDAVEQILRASPDSVVVVDEAYIDFGGETAISLVDRYPNLLVTQTLSKSRSLAGLRVGLAVGHPDLIEALERIKNSFNSYPLDRLANVGGAAAFDDREYFDQTCRSVIEHREWVVGQLEAKGFEVLPSAANFIFARHPRHDAAGLAAKLREQGVIVRHFKQARIAQFLRISIGTPEQNQALIEAMGELPGPT0020305_7133DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020305-hisC-K00817NANA
D1-35_01288720COG5266putative proteinATGAAATACCCCAAGACCTTTGCCCTGCTCGGCATGCTCCTGGCTATCGACGCCTCGGCCCATGGCCTGTGGACCGAACAACGCCGCGGCAATATCGAGGTGATCTACGGCCACGGCGCCGAAGACAACGCCTTCAAGGCGCAGAAAATCAGTGGCGCCTGGGCCTACGACCTCGGCGGCAAGATGATCCCGGTCACGGTGGAGCGTTTGTCGGACCACGCGCGCCTGCAGCCGCTCAAGCCGCCGGCCGTGCTGGCGGTCGCCCTGGACAACGGCATGTGGTCGCAGACCGCCGACAAGAAATGGATCAACGAAGGCCGCAGCAAAGTGCCTGGGGCGATTGAATCAACCCAGACCTTCAAGTACAGCCTGGCGATCTACGAGCCGGGCGCCAAGCTGCCGAAGCTCGAACCGATCAAGTTCGTGATCCTGCCGGAAGTCGACCCGCTGACCGTCGGCCCCGGCCAATCGCTGCCGGTGCGGGTGCTGCTCGATGGCAAACCGGCCGCCGGTGTGAAGCTGGTGGGCGACTACCGCAGCGCACCGAACACCGTGAGCACTGAAACCGACGCCGAAGGCCGGGCCAAGGTGCTGGTGCGCAATGAAGGTTTGAACGTGATCGCCGCAAGCATGGAAATCCCGCTCAAGGACAACAAGGACGTGGCGACGCGCGGGGTGTTTACTTCGCTGACATTCCTCGGTGAGCCGCATCACGAGTGAMKYPKTFALLGMLLAIDASAHGLWTEQRRGNIEVIYGHGAEDNAFKAQKISGAWAYDLGGKMIPVTVERLSDHARLQPLKPPAVLAVALDNGMWSQTADKKWINEGRSKVPGAIESTQTFKYSLAIYEPGAKLPKLEPIKFVILPEVDPLTVGPGQSLPVRVLLDGKPAAGVKLVGDYRSAPNTVSTETDAEGRAKVLVRNEGLNVIAASMEIPLKDNKDVATRGVFTSLTFLGEPHHEPGPT0004475_45DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COBALT_RESISTANCECOBALT_RESISTANCE-CBI_TRANSPORT_SYSTEM,PGPT0004475-cbiK-K10094NANA
D1-35_012892106cntO_1Metal-pseudopaline receptor CntOATGTCATCCTTCAAACGGATTTCCGCTGCCAGTCTCGCCCTGGGCCTGCTCGGTGATCCCGCCTTCGCCGAAGAAATCCAGCCCCTGGAACTGGACGCCATCAACGTCACGTCCGAGTACGAATCCCCCACCGGCCCCGTTTCAGGTTATCGCGCCACCCGCTCCGCCAGCGCGACCAAAACCGACACCGCCCTGCGCGACGTCCCGCAATCCATCAGCGTGATTACCGCCAGCGTGCTCAAGGACCTGGGCAGTACCAGCGTCGAACGGGCGCTGGAATATGCCGGTGGCGTATCGAAGCAGAACAATTTCGGCGGCCTGACGCTTTATGAATACAGCGTGCGCGGCTTTACCACGTCGGAGTTCTACAAGGACGGCTTCAGCGCCAACCGCGGTTACCCAAGCACCCCGGACGCCGCCAATATCGAACGCATCGAAGTTTTGAAGGGCCCGGCGGCCAGCCTTTATGGTCGGGGAGACCCTGGCGGGACGGTGAACATTGTCACCAAGAAACCCCAACCCGAAGCCTTCACCACACTGCAGACCAGCGCCGGCAGTTGGGACCGATATCGCACAGCGCTGGACGTCAATACGCCACTGGACGCCGAAGGCAACCTGCTGTCGCGAGTAAACCTGGCGGTGGAGGACAACCACAGTTTCCGTGATCACGTCGACAGCAAGCGCGTCTTCGTGGCCCCGTCCATCAGTTGGCAACTGAGCCCGGACACTCGACTGCTGGTGGAAAGCGAAATCGTGCGCCACAGCTCGACGTTCGATCGCGGCATCGTCGCTCCGAATAATCGCTGGGGTGGCGTCTCCCGCTCGACTTTCCTCGGCGAACCCAACGACGGCGACATCGACAATCACAACAATATGCTCCAGGCCGCCCTTGAGCATCAGCTCAACGATACCTGGCAACTGCGTCTGGCCAGCCATTACAAGCAGGGTGAACTCTGGGGCTTCGCCTCAGAGGCGCGCGCCCTGAACGCCGACGGCCACACCGTGAACCGCCGCTACCGCGAGCGCGACAATGATTGGCACGACAGCATCACCCAGTTGGAACTGCGCGGCCAGTTCGACCTCGGCCCCTGGCGGCATGAACTGCTGATCGGCACGGAATACGAGGACTATCGCAAGAACGAACGCGTGACGACCATCGCCGGCAGCGCTTATCCCATCGACATTTACAACCCGATCTACGGCCAGCCGAAACCCAACGGTACGCGCTCCGGCACGGACTTCTTCGAGCATGTCGAAAGCAGGGCCCTGAACCTGCAGGACCAGATCGTCTTCACCGACAAACTACGCGGCCTGCTTGGCGTGCGCTATGAGCACTTCGAGCAAAGCATCGACAATCATGTCAACGACGTCACCAGCCGTCAGCGCCATGACGCCCTGACGCAACGCGCGGGGCTGCTGTATCAACTGACGCCTGAAGTCGGGCTGTTCGCCAACGCCTCCACTTCGTTCAAGCCCAATAACGGCCTGGATGCCGGCGGCAAGACCTTCGACCCGGAGGAAGGTGTCGGTTATGAACTCGGAATCAAGAGCGAGCTGTTCGACGATCGCCTGAGCACCACCCTGGCGGCTTTTCATATAGAGAAGGAAAACGTCCTGACCCAAGTCGCCGGAACCGACTTCAGCCGCGCCGTGGGCAAGGCCCGCAGCCAGGGCATCGACCTCCAGGTCACCGGCCAGGTGACCGACGCCGTGCGGGTAATTGGCGCCTTCGCCTACATCGATGCCGAAGTGACCAAGGGCGACGAGCAGATTCCCGACGGCAGCCGGATCCTCGGCGTTGCCAAGCGCAGCGGCAGCCTGCTTGGGGTCTACGAATTCCAGGACGGCCACCTGCGCGGCTCGGACGTTGGCGCGGCATTCACTTATGTCGGCGATCGCTCGGGCGAGGCCGGCAAGGACTTCGAACTGCCGGCCTACCACACCGTGGATCTGCTGGCCCATTACAAGGCCAGTGACAACGTCACCGTCGGCCTGAACCTGAACAACGTCCTCGACGAAAAATACTACGAACGCTCCTACAGCAATTACTGGGTCACCCCCGGCGATCCGCGCAACTTCACTGTCAGCCTCACCCTCGATCTATAAMSSFKRISAASLALGLLGDPAFAEEIQPLELDAINVTSEYESPTGPVSGYRATRSASATKTDTALRDVPQSISVITASVLKDLGSTSVERALEYAGGVSKQNNFGGLTLYEYSVRGFTTSEFYKDGFSANRGYPSTPDAANIERIEVLKGPAASLYGRGDPGGTVNIVTKKPQPEAFTTLQTSAGSWDRYRTALDVNTPLDAEGNLLSRVNLAVEDNHSFRDHVDSKRVFVAPSISWQLSPDTRLLVESEIVRHSSTFDRGIVAPNNRWGGVSRSTFLGEPNDGDIDNHNNMLQAALEHQLNDTWQLRLASHYKQGELWGFASEARALNADGHTVNRRYRERDNDWHDSITQLELRGQFDLGPWRHELLIGTEYEDYRKNERVTTIAGSAYPIDIYNPIYGQPKPNGTRSGTDFFEHVESRALNLQDQIVFTDKLRGLLGVRYEHFEQSIDNHVNDVTSRQRHDALTQRAGLLYQLTPEVGLFANASTSFKPNNGLDAGGKTFDPEEGVGYELGIKSELFDDRLSTTLAAFHIEKENVLTQVAGTDFSRAVGKARSQGIDLQVTGQVTDAVRVIGAFAYIDAEVTKGDEQIPDGSRILGVAKRSGSLLGVYEFQDGHLRGSDVGAAFTYVGDRSGEAGKDFELPAYHTVDLLAHYKASDNVTVGLNLNNVLDEKYYERSYSNYWVTPGDPRNFTVSLTLDLPGPT0003790_23684DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014NANA
D1-35_012901161degS_2COG0265Serine endoprotease DegSATGCTCAAGGCGCTGCGTTTTTCCGGCTGGCCGCTGTTGGCCGGCGTACTTGTCGCACTACTGATTATCCAGCGCTACCCGGAATGGGTCGGCTTGCCAAGCCTCGACGTCAACCTGCAACAGGCACCGCAGGCCAAGGCTCCGCAGCAGGGCCCCGTGTCCTATGCGGATGCGGTGACCCTCGCCGCGCCGGCGGTGGTCAACCTGTACACCACCAAGGTCGTCAACAAGTCCGGTCACCCACTGTTCGAGGACCCGCAATTCCGACGCTTCTTTGGTGACAATTCCCCCAAGCAGAAGCGCATGGAATCAAGCCTGGGCTCGGGCGTCATCATGAGCCCGGAAGGCTACATCCTGACCAACAACCACGTCACCAGTGGTGCCGACCAGATCGTGGTGGCACTCAAGGACGGTCGTGAAACCCTGGCGCGGGTGATCGGCAGCGACCCGGAAACCGATCTGGCCGTGCTGAAGATCGATTTGAAGAACCTGCCGGCGATCACCATCGGCCGCTCCGACAGCATCCGTATCGGCGACGTGGCCCTGGCGATCGGCAACCCGTTCGGCGTCGGCCAGACCGTGACCATGGGCATCATCAGCGCCACCGGTCGCAACCAGTTGGGCCTGAACAACTACGAGGATTTCATCCAGACCGACGCCGCGATCAACCCCGGCAACTCCGGCGGTGCGCTGGTGGATGCCAATGGCAATCTCACCGGGATCAATACGGCGATCTTCTCCAAGTCCGGCGGCAGCCAGGGCATTGGCTTCGCCATTCCGGTGAAGCTGGCCATGGAGGTGATGAAGTCGATCATCGAGCACGGCCAGGTGATTCGCGGCTGGCTGGGCATTGAAGTCCAGCCGCTGACCCAGGAGCTGGCGGAATCCTTTGGCTTGTCCGGGCGCCCCGGCATCGTCGTGGCGGGGATTTTCCGCGACGGTCCGGCCCAGAAAGCCGGCCTGCAATTGGGTGACGTGATCCTCAGCATCGACGGCGAACCGGCCGGCGACGGCCGCCGCTCGATGAACCAGGTGGCGCGGATCAAGCCCACCGACAAGGTCACCATCCAGGTGATGCGCAACGGCAAGGAGCTCAAGCTCACCGCCGAGATCGGCCTGCGTCCACCGCCGGCACCGGTGGTGCTCAAGGAAGAAGAGTAAMLKALRFSGWPLLAGVLVALLIIQRYPEWVGLPSLDVNLQQAPQAKAPQQGPVSYADAVTLAAPAVVNLYTTKVVNKSGHPLFEDPQFRRFFGDNSPKQKRMESSLGSGVIMSPEGYILTNNHVTSGADQIVVALKDGRETLARVIGSDPETDLAVLKIDLKNLPAITIGRSDSIRIGDVALAIGNPFGVGQTVTMGIISATGRNQLGLNNYEDFIQTDAAINPGNSGGALVDANGNLTGINTAIFSKSGGSQGIGFAIPVKLAMEVMKSIIEHGQVIRGWLGIEVQPLTQELAESFGLSGRPGIVVAGIFRDGPAQKAGLQLGDVILSIDGEPAGDGRRSMNQVARIKPTDKVTIQVMRNGKELKLTAEIGLRPPPAPVVLKEEEPGPT0014286_734DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS_SIGNALLING,PGPT0014286-degQ|hhoA-K04772NANA
D1-35_01291759COG0327GTP cyclohydrolase 1 type 2ATGGCCGTAGCCCTGAGCACCCTGGTTGAAGAAGCGGACCGATACCTGGCAAGCAGCCGGGTCGCCGATTACTGCCCCAATGGCTTGCAGGTCGAGGGCGCGCCGCAGGTGATGCGCATCGTCAGCGGCGTGACCGCCAGCCAGGCGCTGCTCGACGCCGCCGTGGAGGCCAGCGCCGACCTGGTGCTGGTGCATCATGGTTATTTCTGGAAGGGTGAGAACCCGTGCATCACCGGCATGAAGCAGCGGCGCCTGAAAACGCTGCTCAAGCACGACATCAGTCTCTTGGCTTACCACTTGCCGCTGGATCTGCACCCCGAGGTGGGCAATAACGTGCAACTCGCCCGGCAGTTGGACATCACCGTGGAGGGGCCGCTGGACCCGGACAATCCGAAAATCGTCGGCCTGGTCGGCTCCTTGTCCGAGCCGATGACGCCCCGGGATTTCGCTCGCAAGGTCCAGGAAGTGATGGGGCGCGAGCCGTTGTTGATCGAAGGCGAGCAGATGATCCGCCGGGTGGGCTGGTGCACCGGCGGTGGCCAGGGCTACATCGATCAGGCGGTACTCGCCGGGGTTGACCTGTATCTCAGCGGCGAAGCGTCGGAGCAGACCTTCCACAGCGCCCGGGAGAACGGCATCAGCTTCATTGCTGCCGGGCATCATGCGACCGAGCGCTACGGCGTCCAGGCGCTGGGTGACTATCTGGCGCGACGCTTCGCGCTGGAGCATATCTTCATCGATTGCCCGAATCCTATCTGAMAVALSTLVEEADRYLASSRVADYCPNGLQVEGAPQVMRIVSGVTASQALLDAAVEASADLVLVHHGYFWKGENPCITGMKQRRLKTLLKHDISLLAYHLPLDLHPEVGNNVQLARQLDITVEGPLDPDNPKIVGLVGSLSEPMTPRDFARKVQEVMGREPLLIEGEQMIRRVGWCTGGGQGYIDQAVLAGVDLYLSGEASEQTFHSARENGISFIAAGHHATERYGVQALGDYLARRFALEHIFIDCPNPINANANANANA
D1-35_01292918cysDCOG0175Sulfate adenylyltransferase subunit 2ATGGTCGACAAACTGACGCATCTGAAACAGCTGGAGGCGGAAAGCATCCACATCATCCGCGAGGTGGCCGCCGAGTTCGATAACCCGGTGATGCTGTACTCCATCGGTAAAGACTCCGCCGTGATGCTGCACCTGGCACGCAAGGCGTTTTTCCCCGGCAAGCTGCCGTTTCCGGTGATGCACGTCGACACCCGCTGGAAATTCCAGGAGATGTACAAGTTCCGCGACAAGATGGTCGAAGAACTGGGCCTGGACCTGATCACCCACATCAACCCGGACGGCGTCGCGCAGAACATCAACCCGTTCACCCACGGTAGCGCCAAGCACACCGACATCATGAAGACCGAGGGCCTGAAGCAGGCGCTCGACAAGCATGGTTTCGACGCTGCATTCGGCGGCGCCCGTCGCGATGAAGAGAAGTCCCGCGCCAAGGAGCGCGTCTACTCGTTCCGCGACAGCAAGCACCGCTGGGACCCGAAGAACCAGCGCCCCGAACTGTGGAACGTCTATAACGGCAAGGTCAACAAGGGCGAGTCGATCCGCGTCTTCCCGCTGTCGAACTGGACCGAGCTGGACATCTGGCAGTACATCTACCTCGAAGGCATCCCGATCGTGCCGTTGTACTTCGCCGCCGAGCGTGAAGTGATCGAGAAGAACGGCACGCTGATCATGATCGACGACGAGCGCATCCTCGAGCACCTGTCCGACGAAGACAAGGCGCGCATCGTCAAGAAGAAAGTGCGTTTCCGTACCCTTGGCTGCTACCCGTTGACGGGCGCGGTGGAGTCCGAGGCCGAAAGCCTGACGGACATCATTCAGGAAATGCTCCTGACGCGAACTTCCGAGCGCCAGGGCCGGGTCATCGACCACGATGGCGCAGGCTCGATGGAAGACAAGAAACGTCAGGGTTATTTCTAAMVDKLTHLKQLEAESIHIIREVAAEFDNPVMLYSIGKDSAVMLHLARKAFFPGKLPFPVMHVDTRWKFQEMYKFRDKMVEELGLDLITHINPDGVAQNINPFTHGSAKHTDIMKTEGLKQALDKHGFDAAFGGARRDEEKSRAKERVYSFRDSKHRWDPKNQRPELWNVYNGKVNKGESIRVFPLSNWTELDIWQYIYLEGIPIVPLYFAAEREVIEKNGTLIMIDDERILEHLSDEDKARIVKKKVRFRTLGCYPLTGAVESEAESLTDIIQEMLLTRTSERQGRVIDHDGAGSMEDKKRQGYFPGPT0002405_1198DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002405-cysD-K00957NANA
D1-35_012931899cysNCCOG0529Bifunctional enzyme CysN/CysCATGTCGCACGTATCTGATTTGATCAGCGAGGACATCCTCGCCTACCTGGGCCAGCACGAACGTAAAGAGCTGCTGCGCTTTTTGACCTGCGGTAACGTCGACGACGGCAAGAGCACCCTGATCGGGCGCCTGCTGCACGACTCGAAGATGATCTACGAAGATCATCTGGAAGCGATCACTCGCGATTCGAAGAAAGTCGGCACCACCGGTGACGACATCGACCTGGCGCTGCTGGTCGACGGCCTGCAGGCCGAGCGCGAGCAAGGCATCACCATCGATGTCGCCTACCGCTATTTCTCCACCGCCAAGCGTAAATTCATCATCGCCGACACGCCCGGCCATGAGCAGTACACCCGCAACATGGCCACCGGTGCCTCCACCTGTGACCTGGCGATCATCCTCGTGGATGCCCGCTACGGCGTGCAGACCCAGACCCGTCGCCACAGCTTCATCGCCTCGTTGCTGGGCATCAAGCACATCGTCGTGGCCATCAACAAGATGGACCTCAAGGACTTCGACCAGGGCGTATTCGAGTCGATCAAGGCCGACTACCTGAAGTTCGCCGAAGGCTTGAAGATGAAGCCCACCAGCATGCACTTCGTGCCGATGTCGGCGCTCAAGGGCGACAACGTGGTGAACAGGTCCGAGCGTTCGCCGTGGTACACCGGCCAGTCGCTGATGGAAATTCTCGAGACCGTGGAAGTGGCGGGCGACCGCAACTTCACCGACCTGCGTTTCCCGGTGCAGTACGTCAACCGTCCGAACCTGAACTTTCGCGGTTTCGCCGGCACCCTTGCCAGCGGCATCGTGCACAAGGGCGACGAAGTCGTGGTGCTGCCGTCGGGCAAGAGCAGCCGCGTGAAATCCATCGTCACCTTCGAGGGCGAGCTGGAACACGCCGGCCCAGGCCAGGCTGTGACGTTGACCATGGAAGACGAGATCGATATCTCCCGTGGCGACCTGCTGGTACACGCCGACAACGTTCCGCCGGTGACCGACAGCTTCGAAGCGATGCTGGTGTGGATGGCCGAAGAGCCGATGCTGCCGGGCAAGAAGTACGACATCAAGCGCGCCACCAGTTACGTGCCCGGCTCGATTGCCAGCATCGTCAACAAGGTCGATGTGAACACCCTTCAAGAAGGTCCGGCCAGCGCGTTGCAGCTCAACGAAATCGGCAAGGTGAAGATTGCTCTGGACGCGCCGATCGCCCTGGACGGCTACGAGAGCAACCGCACCACCGGCGCCTTCATTATCATCGACCGCCTGACCAACGGCACCGTCGGTGCCGGCATGATCGTCGCCCAGCCGCTGGCCCACGGCAGCAGCACGCACCACGGCAAACTGGCCCACGTGTCGGTGGAAGAACGCACCCAGCGTTTCGGCCAGCAGCCGGCCACCGTGCTGTTCAGCGGCCTGTCGGGCGCGGGCAAGAGCACGCTGGCCTATGCTGTAGAGCGCAAGCTGTTCGACATGGGCCGCGCGGTGTTCGTGCTCGATGGTCAAAACCTGCGCCACGACTTGAACAAAGGCTTGCCGCAGGACCGTGCCGGACGCACCGAGAACTGGCGTCGTGCGGCTCACGTCGCCCGTCAGTTCAACGAAGCGGGCCTGTTGACCCTGGCCGCCTTCGTTGCACCGAGTGCCGAAGGGCGTGAGCAGGCCAAGGACCTGATCGGCCGCGAGCGCCTGCTGACGGTCTATGTCCAGGCCTCGCCAACGGTGTGCGCCCAGCGTGATCCGCAAGGGCTGTATGCCGCCGCCGGCGACAACATCCCGGGCGAGTCCTTCCCGTACGACGTGCCGCTGGATGCCGACCTGGTGATCGACACCCAGTCGCTGACCCTGGAAGAGAGCGTCAAGCAGGTGCTGGATCTGCTGCGCAAGCGTGGGGCGATCTAAMSHVSDLISEDILAYLGQHERKELLRFLTCGNVDDGKSTLIGRLLHDSKMIYEDHLEAITRDSKKVGTTGDDIDLALLVDGLQAEREQGITIDVAYRYFSTAKRKFIIADTPGHEQYTRNMATGASTCDLAIILVDARYGVQTQTRRHSFIASLLGIKHIVVAINKMDLKDFDQGVFESIKADYLKFAEGLKMKPTSMHFVPMSALKGDNVVNRSERSPWYTGQSLMEILETVEVAGDRNFTDLRFPVQYVNRPNLNFRGFAGTLASGIVHKGDEVVVLPSGKSSRVKSIVTFEGELEHAGPGQAVTLTMEDEIDISRGDLLVHADNVPPVTDSFEAMLVWMAEEPMLPGKKYDIKRATSYVPGSIASIVNKVDVNTLQEGPASALQLNEIGKVKIALDAPIALDGYESNRTTGAFIIIDRLTNGTVGAGMIVAQPLAHGSSTHHGKLAHVSVEERTQRFGQQPATVLFSGLSGAGKSTLAYAVERKLFDMGRAVFVLDGQNLRHDLNKGLPQDRAGRTENWRRAAHVARQFNEAGLLTLAAFVAPSAEGREQAKDLIGRERLLTVYVQASPTVCAQRDPQGLYAAAGDNIPGESFPYDVPLDADLVIDTQSLTLEESVKQVLDLLRKRGAIPGPT0002395_608DIRECT 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
D1-35_01294909yihG_1COG0204putative acyltransferase YihGATGCTGGATTTCCTGCCTGCCCCCGTGCGCGGCGTCATTGCCTCGCTGCTGTTGGCGCTGAACACCATCGCCTGCTGTACGCCGCTGTTCGTCGTGGCGATCTTCAAGCTGTTGCTGCCCTTCCCCGCCGCCCAGCGTTTCACCGACTGGCTGATGAGCCACATCCACGAAGCCTGGATCAGTAACAACAAGGCCTGGATGAACCTGGTGCGCCCTACCCGCTGGCGCCTCAGCGGCCTGGAAGGCCTGGACTACCAGCACTCGTACCTGATCACCAGCAACCACCAGAGCTGGGTCGACATCATGGTGCTGCAATACGTGCTGAACCGACGCATCCGTCCATTGAAGTTCTTTCTCAAGCAGGAGCTGATCTGGGTGCCGGTGATCGGCCTGGCCTGGTGGGCGCTGGGGTTTCCGTTCATGAAGCGTTACTCCAAGACGTACCTGGAAAAGCATCCGGAGAAGAAAGGCAAGGACCTGGAAACCACCCGCAAGACCTGCGCGAAGTTTCGCAACAACCCCGTGGGCATCTTCAATTTCGTCGAAGGCACGCGCTTCACCGAGGGTAAGCATGCCCAGCAACAATCACCGTTTCGCTACCTGCTCAAGCCCAAGGCCGGCGGCATCGCGTTTGTGCTTGATGCGATGGGCGAGCAACTGGAGTCGATCATCAACGTGACGATCCATTATCCGGGCGGCCGTCCGGGCTATTGGGATTTGCTCTGCGGCAACGTTGGCGAGGTGGTGGTGCATTTCCAGGAGTTGAAGATCCCGCCGCAGTTCATCGGCAAAAGCTACGACCAGGATGGGGAGTATCGCCTGGAATTCCAGGGTTGGATCAATCAGTTGTGGCAAGACAAGGATGCGCTGCTTGAGCAGATGCATCGCGAGTATCCCGCCAAGTCTTGAMLDFLPAPVRGVIASLLLALNTIACCTPLFVVAIFKLLLPFPAAQRFTDWLMSHIHEAWISNNKAWMNLVRPTRWRLSGLEGLDYQHSYLITSNHQSWVDIMVLQYVLNRRIRPLKFFLKQELIWVPVIGLAWWALGFPFMKRYSKTYLEKHPEKKGKDLETTRKTCAKFRNNPVGIFNFVEGTRFTEGKHAQQQSPFRYLLKPKAGGIAFVLDAMGEQLESIINVTIHYPGGRPGYWDLLCGNVGEVVVHFQELKIPPQFIGKSYDQDGEYRLEFQGWINQLWQDKDALLEQMHREYPAKSNANANANANA
D1-35_012952100ptaCOG0280Phosphate acetyltransferaseATGCAGACTTTTTTTATCGCGCCCACCGACTTTGGTGTGGGTCTGACCTCCATCAGCCTCGGGCTGGTGCGTACCCTCGAACGGGCCGGGCTGAAAGTCGGCTTTTTCAAACCCATCGCCCAGCCCCACCCTGGCGATACCGGCCCGGAACGCTCCACCGAACTGGTGGCCCGTACCCACGGCCTCAAGCCACCGCAACCACTGGGCCTGGCCCATGTGGAGCGCATGCTCGGCGATGGCCAGCTCGATGAATTGCTGGAAGAAATCATCACCCTCTATCAACAGGCCGCGATCGGCAAGGACGTGCTGGTCGTCGAGGGCATGGTCCCGACCCGCAGCGCCAGCTACGCCGCCCGGGTCAACCTGCACCTGGCCAAGAGCCTGGACGCCGAGGTGATCCTGGTGTCGGCGCCGGAAAACGAAGTGCTGACCGAACTGTCCGGTCGTGTCGAGTTGCAGGCGCAACTGTTCGGCGGGCCGAAAGATCCGAAGGTCCTCGGCGTGATCCTCAACAAGGTGCGCACCGACGAAAGCATGGAAGCGTTTTCAGCACGGCTCAAGGAGCACTCGCCCCTGCTGCGCAGCGGCGACTTCCGCCTGCTCGGCTGCATCCCTTTTCGCCCCGAACTCAACGCCCCGCGCACCCGCGACGTGGCCGACCTGATGGGCGCGCAGGTACTCAACGCCGGCGACTACGAAACCCGGCGCATGAGCAACATCATCATCTGCGCCCGCACCATGCGCAACACGGTGGAGCTGCTCAAGCCCGGCGTATTGGTGGTCACCCCGGGCGATCGCGATGACATCATCCTGGCCGTGAGCCTGGCGGCGATCAACGGCGTGCCGCTGGCCGGCCTGCTGCTGACCAGCGACACCCTGCCCGACCCGCGCATCATGGACTTGTGCCGAGGCGCCTTGCAGGCGGGGTTGCCGGTGCTGTCGGTGAGCACCGGTTCCTACGACACCGCCAACCTGCTCAACAGCCTGAACAAGGAAATCCCCATCGATGACCGCGAACGCGCGGAGATCATCACCGATTTTGTTGCCAGTCACCTCGACGCCAACTGGCTGCACCAACGCTGCGGCACGCCCCGGGAAATGCGCCTGTCGCCGGCGGTGTTCCGCTACCAACTGATCCAGCGCGCCCAAGCGGCCAACAAGCGTATCGTCTTGCCCGAAGGCAGCGAACCGCTGACCGTACAGGCGGCGGCGATTTGCCAGGCCCGAGGCATCGCCCGTTGCGTGCTGCTGGCCAAGCCGGCCGACGTCGAAGCGGTGGCCCGCGCCCAAGGCATCGAACTGCCGCCTGGGTTGGAGATTCTCGACCCGGATACGATCCGCGAGCGCTACGTGGAACCCATGGTGCGGCTGCGCAAAAGCAAGAGCCTGAACGCACCGATGGCCGAGCAGCAACTGGAAGACACCGTGGTGATCGGCACCATGATGCTGGCGCTGGATGAAGTCGACGGGCTTGTCTCGGGGGTCATCCACTCCACCGCCAATACCATTCGCCCGGCGTTGCAACTGATCAAGACCGCACCCGGCTGTTCGCTGGTGTCCTCGGTATTTTTCATGCTGTTTCCCGAGGAAGTGCTGGTCTACGGCGACTGCGTGATGAACCCGCACCCCAGTGCAGCGGAGCTGGCCGAAATCGCCCTGCAAAGCGCCGATTCAGCCGCAGCGTTCGGCATCACGCCACGGGTGGCGATGCTCAGCTATTCCAGCGGCGAATCGGCCAGCGGTGAAGAAGTGGAGAAGGTCCGCGAAGCCACCCTGCTGGCCCACGAGGCACAACATGGCTTGCTGATCGACGGGCCGTTGCAATACGACGCCGCCGCCAACGAGGCCGTGGCCCGGCAATTGGCGCCCAACAGCCAGGTAGCCGGCCGCGCCACGGTGTTCATTTTCCCGGACCTGAACACCGGCAACACCACCCACAAGGCCGTGCAGCGCAGCGCCGACTGCGTCAGCCTCGGGCCGATGCTGCAAGGCCTGCGCAAACCGGTGAACGACCTGCCGCGCGGCGCCCAGGTCGATGACATCGTGTACACCATCGCCCTGACAGCGATCCAAGCCGCCAACCGACCTCTGGACATTTAAMQTFFIAPTDFGVGLTSISLGLVRTLERAGLKVGFFKPIAQPHPGDTGPERSTELVARTHGLKPPQPLGLAHVERMLGDGQLDELLEEIITLYQQAAIGKDVLVVEGMVPTRSASYAARVNLHLAKSLDAEVILVSAPENEVLTELSGRVELQAQLFGGPKDPKVLGVILNKVRTDESMEAFSARLKEHSPLLRSGDFRLLGCIPFRPELNAPRTRDVADLMGAQVLNAGDYETRRMSNIIICARTMRNTVELLKPGVLVVTPGDRDDIILAVSLAAINGVPLAGLLLTSDTLPDPRIMDLCRGALQAGLPVLSVSTGSYDTANLLNSLNKEIPIDDRERAEIITDFVASHLDANWLHQRCGTPREMRLSPAVFRYQLIQRAQAANKRIVLPEGSEPLTVQAAAICQARGIARCVLLAKPADVEAVARAQGIELPPGLEILDPDTIRERYVEPMVRLRKSKSLNAPMAEQQLEDTVVIGTMMLALDEVDGLVSGVIHSTANTIRPALQLIKTAPGCSLVSSVFFMLFPEEVLVYGDCVMNPHPSAAELAEIALQSADSAAAFGITPRVAMLSYSSGESASGEEVEKVREATLLAHEAQHGLLIDGPLQYDAAANEAVARQLAPNSQVAGRATVFIFPDLNTGNTTHKAVQRSADCVSLGPMLQGLRKPVNDLPRGAQVDDIVYTIALTAIQAANRPLDIPGPT0001370_894DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERSPLANT_DERIVED_PROPANEDIOL_UTILIZATION,PGPT0001370-pta-K13788NANA
D1-35_01296486slyDCOG1047FKBP-type peptidyl-prolyl cis-trans isomerase SlyDATGCTGATCGCCGCCAATAAGGCTGTCTCCATCGACTATACCCTGACCAACGACGCTGGTGAGGTCATCGACAGCTCCGCCGGCGGCGCTCCGCTGGTCTACCTGCATGGCGCAGGCAACATCATCCCGGGCCTGGAAAAAGCCCTGGAAGGCAAAACCACCGGTGACGAGCTGAAAGTGGCCGTTGAGCCGGAAGACGCTTATGGCGAATATTCCGCCGAGCTGGTCAGCACCCTGAGCCGCAGCATGTTCGAAGGCGTGGATGAGCTGGAAGTGGGCATGCAGTTCCACGCTTCGGCGCCTGATGGCCAGATGCAAATCGTCACTATCCGTGACCTCGACGGCGACGACGTGACTGTCGACGGCAACCACCCGTTGGCCGGTCAGCGCTTGAACTTCCAGGTCAAGATCGTCGACATCCGTGATGCCAGCCAGGAAGAAATCGCCCATGGCCACGTCCATGGTGAAGGCGGCCATCAGCACTGAMLIAANKAVSIDYTLTNDAGEVIDSSAGGAPLVYLHGAGNIIPGLEKALEGKTTGDELKVAVEPEDAYGEYSAELVSTLSRSMFEGVDELEVGMQFHASAPDGQMQIVTIRDLDGDDVTVDGNHPLAGQRLNFQVKIVDIRDASQEEIAHGHVHGEGGHQHNANANANANA
D1-35_01297483btuE_2COG0386Thioredoxin/glutathione peroxidase BtuEATGAGTGCTTTCCACGACCTTAAACTGCAAGCCCTGGATGGTCAGGAGCTTCCCCTCGCGCCATTCAAGGGCCAAGTCGTGCTGGTGGTCAACGTCGCCTCCAAATGTGGCCTGACGCCTCAGTACGCGGCGCTGGAAAATCTTTATCAGCAATACAAGGACCAGGGGTTCAGCGTGCTGGGCCTGCCCTGTAATCAGTTCGCCGGCCAGGAGCCTGGGACCGAGCAGGAGATCCAGGAATTCTGCAGCCTCAATTACGGCGTGACGTTTCCGCTGTCGAGCAAGCTGGAAGTGAACGGCCACGACCGTCACCAGCTGTACCGTCTGTTGGCGGGTGAAGGTGCCGAGTTTCCCGGGGACATCACCTGGAACTTCGAAAAATTCCTGCTCGGCAAGGACGGCCGGGTGCTGGCGCGTTTCTCGCCGCGCACGTCGCCGGATGATCCTTCGGTGATCCAGGCGATTGAAAAAGCGCTGAGCTAAMSAFHDLKLQALDGQELPLAPFKGQVVLVVNVASKCGLTPQYAALENLYQQYKDQGFSVLGLPCNQFAGQEPGTEQEIQEFCSLNYGVTFPLSSKLEVNGHDRHQLYRLLAGEGAEFPGDITWNFEKFLLGKDGRVLARFSPRTSPDDPSVIQAIEKALSPGPT0013115_4796DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013115-bsaA|gpx|btuE-K00432NANA
D1-35_012981104NADH oxidaseATGCCTGTAAGAGCCCTGTTCAAACCCTTTCATCTCGGCGCGCTGGAACTGCCGACCCGGGTCGTGATGGCGCCGATGACGCGCTCCTTTTCGCCTGGCGGCGTGCCGAACTCCAAGGTGATCGAGTATTACCGTCGTCGCGCGGCGGCCGGGGTCGGCCTGATCATCACCGAGGGCACCACGGTCGGCCACCGGGCGTCCAATGGCTATCCGAACGTACCGCACTTCTACGGCGACGCCGCGCTGGCCGGCTGGAAAAAAGTGGTCGATGCCGTGCACGCCGAAGGCGGCAAGATTGTTCCGCAACTGTGGCATGTGGGCAACGTGCGGCGCCTCGGCACCGAGCCGGATGGCGCCGTGCCGGGCTACGGCCCGACTGAAAAGCTCAAGGATGGCCAAGTCGTGGTCCATGGCATGAGCCAGACGGACATCGACGAGGTCATTGCGGCATTCGCCCAAGCGGCAAAAGATGCCCAGAGCATCGGCATGGACGGGGTGGAAATCCACGGTGCCCACGGCTACCTGGTGGACCAGTTTTTCTGGGAAGGCAGTAATCAGCGCACCGATGGTTATGGTGGCAGCCTGGCCAACCGTTCGCGCTTTGCGATCGAGCTGATTCGCGCGGTGCGGGCTGCGGTAGGTGAGGGCTTCCCGATCATTTTCCGTTTCTCCCAATGGAAACAGCAGGACTACACCGCGCGCCTGGTGCAGACGCCCGAAGCGCTGGGAGAATTTCTCAAGCCCCTGGCGGATGCCGGCGTGGATATCTTCCACTGTTCTACGCGTCGCTTCTGGGAGCCGGAATTCGAAGGCTCGGACCTGAACCTGGCCGGCTGGACCCGCAAGCTCACGGGCAAGCCCACCATTACCGTCGGCAGCGTCGGCCTTGATGGTGAGTTCCTGCAATTTATGGTGAACACCGACAAGGTTGCGCAACCGGCCAGCCTGGAGAATCTGCTCGAGCGCCTGAACAAGGAGGAATTCGATCTGGTGGCGGTGGGGCGCGCGCTGCTGGTGGATCCGGACTGGGCGCAGAAAGTGCGGGAAGGGCGCGAACAGGAGATCCTGCCGTTCAGCCGCGAGGCGTTGATGACCTTGGTTTAAMPVRALFKPFHLGALELPTRVVMAPMTRSFSPGGVPNSKVIEYYRRRAAAGVGLIITEGTTVGHRASNGYPNVPHFYGDAALAGWKKVVDAVHAEGGKIVPQLWHVGNVRRLGTEPDGAVPGYGPTEKLKDGQVVVHGMSQTDIDEVIAAFAQAAKDAQSIGMDGVEIHGAHGYLVDQFFWEGSNQRTDGYGGSLANRSRFAIELIRAVRAAVGEGFPIIFRFSQWKQQDYTARLVQTPEALGEFLKPLADAGVDIFHCSTRRFWEPEFEGSDLNLAGWTRKLTGKPTITVGSVGLDGEFLQFMVNTDKVAQPASLENLLERLNKEEFDLVAVGRALLVDPDWAQKVREGREQEILPFSREALMTLVPGPT0005930_2950DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_TOLULENE|DERIVATE_DEGRADATIONXENOBIOTIC_NITROTOLULENE_DEGRADATION,PGPT0005930-nemA-K10680NANA
D1-35_012991047IS110 family transposase ISPpu10ATGACAATCCTTACCTCCCCAGCGGTTATCGGTATTGATGTCGCCAAGGCTGAAATCGTGGCTTATCGCGAAGATCTAAAAAGCATTCAGATTGTTGATAACGACCGTAAGGCCCTTGTTCGTTGGCTCGAAACGTTGCCAGCGCAAAGTTTGATTGCACTGGAAGCCACCAGCTTTTATCACCTGGACACGGCTGAACTGGCTCATGGGATGGGGCACAGGGTTTACGTTGTGGATGCCTATCGGGTGGCCCACTACCGCGAAAGCATTGGACAGCGGGCCAAAACCGATCCTTGCGATGCACGTTTGCTGGCGCGCTATCTGACAAACGAACAGCAACGGCTACGCGTCTGGACCCCACCTCCGCAGGCCTACAAAGTATTAAAGAGCCTGCTACGCAAGCGCGCAGAACTCATCAAAGCGCGCGTCAGCCTCATGCTGAGTTGGTCGGGCGAACCGCTTCTGAAGGATATCCTGACCGAGCAACTGGAGGCCTTCAAGCAAAGCGATCGGGCCATCCAGAAGCTATTGCGCGAGGCCAGCCAAGAGGCGGGAATTACTGAAAACATCAACCGCTGCAAAGCCATTGAGGGCGTGGGTGAACTGACGGCAACAGGTCTGGCGACAGCCTTCATGCGAGGTGACTTCGCCAGCGGCGATGCGTTTATTGCCTTTTTAGGGATGGACCTGAGGCCAAAGGATTCCGGAAAAAAACACAGCCCCAGGCACCTAAGCAAAAAAGGAGATGGCGAACTGCGACGCTTGGCGCACACCGCGGCGATGGCGGCTAGCCGGTCTCCTGTCTGGAAACCTTACTACGAATCCTGCTTGGCAAGAGGTTTCGCCAGAACCCAAGCCTTGGTGATCCTCGCCCGGAAATTGTGCCGGGTGGCATTCGCCCTGATGAAAAACCAGAGCGAATATCGCCCTAAATTCTATGCTGCAGGGTTCCCCTGCAACATAGAATCTCCCACATTGAATCTTCGGCGGAATATATATCTGCTGTTCTACCGAAATCCCCTGTGGGAGCGAGCTTGCTCGCGATAGMTILTSPAVIGIDVAKAEIVAYREDLKSIQIVDNDRKALVRWLETLPAQSLIALEATSFYHLDTAELAHGMGHRVYVVDAYRVAHYRESIGQRAKTDPCDARLLARYLTNEQQRLRVWTPPPQAYKVLKSLLRKRAELIKARVSLMLSWSGEPLLKDILTEQLEAFKQSDRAIQKLLREASQEAGITENINRCKAIEGVGELTATGLATAFMRGDFASGDAFIAFLGMDLRPKDSGKKHSPRHLSKKGDGELRRLAHTAAMAASRSPVWKPYYESCLARGFARTQALVILARKLCRVAFALMKNQSEYRPKFYAAGFPCNIESPTLNLRRNIYLLFYRNPLWERACSRPGPT0030635_4607DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030635-tnp-K07486NANA
D1-35_013001200mgtA_1COG0438GDP-mannose-dependent alpha-mannosyltransferaseATGGCCCCGGTCGACACTGGGGTCATGACCACACTCCTGCACGTTACCCTCGTCACCGAAACCTTTGCGCCGGAAATCAATGGCGTAGCCAACACCCTGGGTCGTCTCTACGACGGCTTGCGTGCCCGCGGGCACCGGGTGGAACTGATCCGCCCACGCCAGGCCGGGGACCACGGCCTGGCCAGTGACGAGCAGTTGCTGCTATGCCGGGGCTGGCCTTTGCCCGGGTATCCGGGGCTGCAATGGGGGCAGGCGTCGATGCACAAGTTGCTCAGGCGCTGGAAACGTCATCGCCCGGACGTGCTGTATATCGCCACGGAAGGCCCGCTGGGCTTGTCCGCGCTACGAGCAGCGCGGCGCCTGGGGATTTCGGTGGTCAGCGGCTTCCATACCAATTTCCAGCAATACACCCAGCAATATGGCCTCGGCTTGCTAAGTCGCGGGCTGACCCATTACCTGCGCTGGTTCCACAACCGCTCCAGCCTGACACTGGTGCCCAGCCTCAGCCAGCGTCTGGAACTGGAACGCCGGCATTTCGAACGCGTGGCGTTGCTGTCCCGCGGCGTGGACAGCCAACTGTTCCATCCAGCCAAACGCTCCACAGACCTTCGTGAAACGTGGGGCCTGGGCGAGGACGACATTGCCGTCATCCATGTCGGACGCCTGGCGCCGGAGAAAAACCTCGGGCTGCTCAAGCGCAGTTTCGACACGCTGAGCAGCGCCTTCCCGGCACGGCGAATCAGACTGGTGATAGTCGGTGACGGCCCGCAGCGGCCCGCCCTCGAACAGCAATTGCCCGAGGCGATCTTTTGCGGCGCACAGCGTGGCGAAGCGCTGGCTGCGCATTATGCGTCCGGGGACGTGTTTGTCTTTCCGAGCCTGACCGAAACCTTTGGCAACGTCGTGCTCGAAGCACTTGCCTCGGGGCTGGGCGTGGTGGCCTACGATCAGGCTGCGGCGGCGCAGCACATCCGTCACGGCTATAACGGCGTGCTGGCGATGCCAGGGGATGAAGAGGCTTTTTGCGACGCGGCCCGCTGGCTGCTGGAAGAGCGCGAGGCCTTGCGTTGTGTGCGGCTCAATGCGCGCCAGCATGCCAGTCGCCAGGGCTGGGCATCGGTGATCGAGCAGTTCGAGGCGCAGTTACGCGGGGTTTGTGTGGGTGAGCAGGTGCTGCCTGCGGCGCCGACGGTGCGTTGAMAPVDTGVMTTLLHVTLVTETFAPEINGVANTLGRLYDGLRARGHRVELIRPRQAGDHGLASDEQLLLCRGWPLPGYPGLQWGQASMHKLLRRWKRHRPDVLYIATEGPLGLSALRAARRLGISVVSGFHTNFQQYTQQYGLGLLSRGLTHYLRWFHNRSSLTLVPSLSQRLELERRHFERVALLSRGVDSQLFHPAKRSTDLRETWGLGEDDIAVIHVGRLAPEKNLGLLKRSFDTLSSAFPARRIRLVIVGDGPQRPALEQQLPEAIFCGAQRGEALAAHYASGDVFVFPSLTETFGNVVLEALASGLGVVAYDQAAAAQHIRHGYNGVLAMPGDEEAFCDAARWLLEEREALRCVRLNARQHASRQGWASVIEQFEAQLRGVCVGEQVLPAAPTVRNANANANANA
D1-35_01301759cysZCOG2981Sulfate transporter CysZATGCCCGCCGCCCCTGTCCTGTCCGGCCCGCAATATTTGCGAGAAGGACTCAAACTGGTCCTGAGCCCCAGCCTGCGCCTGTTTGTCTTGTTGCCGCTGGCGATCAATCTGGTGTTGTTCGTCGGGCTGATCTACCTCGCCGGTCACCAGTTCAGCCTGTGGGTCGACACGCTGATGCCGTCGTTGCCGGATTGGCTGAGCTTTCTCAGTTACGTGCTCTGGCCATTGTTCGTCGTCCTTGTCGTACTGATGGTGTTTTTCAGCTTCACCATGCTCGCCAATATCATTGCGGCGCCCTTCAATGGCTTTCTCGCCGAGAAAGTCGAGGTAGTGGTTCGCGGCACCGATGATTTCCCCGCGTTCAGTTGGGGCGAGCTGGTTGCGATGATCCCGCGTACCTTGGCCCGGGAGGCGCGCAAGCTCGGCTATTTTCTGCCCCGGGCCCTGGGGCTGTTCGTGCTGTCATTCATCCCGGTGATCAATATCGTCGCCGCACCGCTGTGGCTGCTGTTCGGCATCTGGATGATGGCGATCCAGTACATCGACTACCCGGCGGACAACCACAAACTGGGCTGGAAAGAGATGCTCGCCTGGCTGCGGGAAAAACGCTGGCAGAGCCTGGGCTTCGGCGGCAGCGTTTACCTGGTGTTGCTGATCCCCTTCGTGAACATTTTGATGATGCCGGCGGCGGTGGCCGGGGCGACGCTGTTCTGGGTGCGCGAACAAGGTGCCGAGACCGCTTTGGCCCGTCAGGGCTGAMPAAPVLSGPQYLREGLKLVLSPSLRLFVLLPLAINLVLFVGLIYLAGHQFSLWVDTLMPSLPDWLSFLSYVLWPLFVVLVVLMVFFSFTMLANIIAAPFNGFLAEKVEVVVRGTDDFPAFSWGELVAMIPRTLAREARKLGYFLPRALGLFVLSFIPVINIVAAPLWLLFGIWMMAIQYIDYPADNHKLGWKEMLAWLREKRWQSLGFGGSVYLVLLIPFVNILMMPAAVAGATLFWVREQGAETALARQGPGPT0003010_874DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0003010-cysZ-K06203NANA
D1-35_01302963COG0492Glucosaminate ammonia-lyaseATGTCTGAAGTCCGTCATTCGCGAGTGATTATCCTCGGTTCCGGCCCTGCCGGTTACAGCGCCGCGGTCTATGCGGCACGTGCCAACCTCAAGCCGTTGCTGATCACCGGCATGCAGGCCGGCGGTCAGTTGACCACCACCACTGAAGTCGACAACTGGCCGGGTGATGTCCATGGCCTGACCGGTCCGGCCTTGATGGAACGCATGAAGGAACACGCCGAGCGCTTCGAGACCGAGATCGTTTTCGACCACATCAACGCCGTGGATTTCGCCGCCAAGCCCTACACCCTGACCGGCGACAGCGCGACCTACACCTGTGATGCCCTGATCATCGCCACCGGCGCCAGCGCCCGCTACCTGGGCCTGCCATCGGAGGAAGCTTTCATGGGCAAAGGCGTGTCCGCCTGCGCCACCTGCGATGGTTTCTTCTACCGCAACAAGCCGGTCGCCGTGGTCGGTGGCGGCAACACCGCAGTCGAGGAAGCGCTGTACCTGGCCAACATCGCCAGCACGGTCACGCTGATCCACCGTCGCGAAACCTTCCGCGCCGAGAAAATCCTGATCGACAAGCTCAACGCCCGCGTCGCCGAAGGCAAGATCATCCTCAAGCTCAACGCGACCCTGGACGAAGTGCTGGGCGACAACATGGGCGTGACCGGTGCCCGCCTGAAGAACAACGACGGCAGCTTTGACGAGATCAAGGTCGACGGCGTCTTCATCGCCATCGGCCACACGCCGAACACCTCGTTGTTCGAAGGCCAGCTGGAGCTCAAGGACGGCTACCTGGTGGTCAAGGGCGGTCGCGACGGCAACGCCACGGCCACCAGCGTCGAAGGTATCTTCGCGGCCGGCGACGTGGCCGACCACGTCTACCGCCAGGCGATCACCTCGGCCGGCGCCGGTTGCATGGCGGCCCTGGACACCGAGCGTTACCTGGATGGCTTGCAGAACGTTTCGTTCTGAMSEVRHSRVIILGSGPAGYSAAVYAARANLKPLLITGMQAGGQLTTTTEVDNWPGDVHGLTGPALMERMKEHAERFETEIVFDHINAVDFAAKPYTLTGDSATYTCDALIIATGASARYLGLPSEEAFMGKGVSACATCDGFFYRNKPVAVVGGGNTAVEEALYLANIASTVTLIHRRETFRAEKILIDKLNARVAEGKIILKLNATLDEVLGDNMGVTGARLKNNDGSFDEIKVDGVFIAIGHTPNTSLFEGQLELKDGYLVVKGGRDGNATATSVEGIFAAGDVADHVYRQAITSAGAGCMAALDTERYLDGLQNVSFPGPT0018945_25DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018945-trxB-K22345NANA
D1-35_013031251davT_1COG01605-aminovalerate aminotransferase DavTATGAGCCGCGAAAGCATCAGCCAATCGATTTCCTTCGTTCACCCCGTCAGCCTCGACCATGGAAGAAACGCCGAAGTCTGGGACACGGATGGCAAGCGCTACATTGATTTTGTCGGCGGCATCGGCGTGCTGAATCTCGGCCACTGTCATCCGCGTGTCGTCGAGGCGATTCGCGAGCAAGCCACCCGGTTGACCCACTATGCGTTCAACGCCGCGCCGCACCGGCCTTATCTCGAATTGATGGAGCGCCTGGCAAGATTCATCCCGGTGGACTATCCGGTTAGCGGCATGCTTACCAACAGCGGCGCCGAGGCAGCGGAGAACGCCTTGAAAATCGTCCGCGGCGCCACGGGGCGCACCGCCGTGATCGCGTTTGATGGCGGCTTCCACGGCCGGACCCTGGCCACCCTCAACCTCAACGGCAAGGTTGCGCCCTACAAACAGAAAGTAGGTGTCCTGCCCGGACCGGTCTATCACCTGCCCTATCCCAGCCAGGACAACGGCGTGACCTGTGCCGAAGCCTTGAAAGCCATGGACCGGTTGTTCAGCGTCGAGATCGATGTAAACGACGTAGCCTGTTTCATCGTCGAGCCGGTGCAGGGCGAAGCCGGTTTCCTGGCGATGGACATAGCCTTCGCCCAGGCGCTGCGCCAGTTCTGTGACGACAAGGGCATCGTGTTGGTCATCGATGAGATCCAGTCCGGTTTCGGCCGTACCGGCCAACGTTTTGCGTTTTCGCGGCTGGGCATCGAACCGGACCTGATCCTGCTGGGCAAGAGCATCGCCGGCGGTGTCCCGCTGGGGGCGGTGATGGGACGCAAAGCCCTGATGGACAACCTGCCCAAGGGCGGCCTCGGCGGCACCTACTCGGGCAACCCTATCGCCTGCGCCGCCGCGCTGGCGACCCTGGACGAGATGACCGACACGAACCTGCGGGCCTGGGGCGCACGCCAGGAGGAGGCCATAGTTAGCCGCTACGAATCCTGGCGCCGTCGCGGGTTGTCCCCCTATCTGGGGCGGTTGACCGGAGTCGGCGTCATGCGCGGCATCGAACTGGCCCACGCCGATGGCACCCCGGCGTCGGCTCAATTGACGCAATTGTTGGCGGCGGCACGGGACTCGGGCTTGCTGCTGATGCCCAGCGGCAAATCCCGGCACATCATTCGGCTACTGGCGCCGTTGACGACCGAGCCGGCGGTGCTGGAAGAGGGATTGGACATCTTGGAAGCGTGCCTGGCGGAACTGGCCTGAMSRESISQSISFVHPVSLDHGRNAEVWDTDGKRYIDFVGGIGVLNLGHCHPRVVEAIREQATRLTHYAFNAAPHRPYLELMERLARFIPVDYPVSGMLTNSGAEAAENALKIVRGATGRTAVIAFDGGFHGRTLATLNLNGKVAPYKQKVGVLPGPVYHLPYPSQDNGVTCAEALKAMDRLFSVEIDVNDVACFIVEPVQGEAGFLAMDIAFAQALRQFCDDKGIVLVIDEIQSGFGRTGQRFAFSRLGIEPDLILLGKSIAGGVPLGAVMGRKALMDNLPKGGLGGTYSGNPIACAAALATLDEMTDTNLRAWGARQEEAIVSRYESWRRRGLSPYLGRLTGVGVMRGIELAHADGTPASAQLTQLLAAARDSGLLLMPSGKSRHIIRLLAPLTTEPAVLEEGLDILEACLAELAPGPT0007660_1542DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSINSECTICIDAL_COMPOUNDSINSECTICIDAL-GAMMA-AMINOBUTYRIC_ACID_BIOSYNTHESIS,PGPT0007660-gabT-K07250NANA
D1-35_01304339hypothetical proteinATGCCTGACCTGAACACCTTCCGCGCCAGCCTCAAGAGTGGCGAACATGTTTTCGCCGATACCCTGGCCTTTGTCGCCGATGGCTACGATTACCAGCCCCAGGCTTTCAACAACGGTGGCGTCGAGAACGCCGCCGGGCAGAACGAAGGTTCGTGCAAGACCCTGGGCCTGGCGTTGCTTGAAGGCTTGAGCGATGAAGAAGCACTCCTGGCGTTTGGCGAGCATTACCGTTCGGTGCTGGCCACGCCCGAGGGCAGCGATCACGGCAATATCCGCGCGTTGATGGTCCATGGTCTCGCCGGCGTGAAGTTCGAGGCGCAGCCGCTGCAACGGCGCTGAMPDLNTFRASLKSGEHVFADTLAFVADGYDYQPQAFNNGGVENAAGQNEGSCKTLGLALLEGLSDEEALLAFGEHYRSVLATPEGSDHGNIRALMVHGLAGVKFEAQPLQRRNANANANANA
D1-35_01305297hypothetical proteinATGAACGATCAACAACGCCTCGAACTCGAAGCCGCCGCTTTCCGCCAGCTGGTTGCCCATCTGGACAGCCGCAAGGATGTGCAAAACATCGACCTGATGAACCTCGCCGGTTTCTGCCGCAACTGCCTGTCGAAGTGGTACAAGGCTGCCGCCGACGAGCGTCAGGTCGAGGTCAGCCTCGACGATGCCCGCGAAGTCGTCTACGGCATGCCCTATGCCGAGTGGAAAGCTCAATACCAGAAAGAAGCCAGCGCCGAACAGCAAGCGGCGTTCGCCAAAGGAACTCCCGATGCCTGAMNDQQRLELEAAAFRQLVAHLDSRKDVQNIDLMNLAGFCRNCLSKWYKAAADERQVEVSLDDAREVVYGMPYAEWKAQYQKEASAEQQAAFAKGTPDAPGPT0008420_5DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008420-moaB-K03638NANA
D1-35_01306381folXCOG1539Dihydroneopterin triphosphate 2'-epimeraseATGCCACAACTTCAGCCCGCCATGGCGCGCATCAAGGTCAAGGACCTGCGCCTGCGTACGTTCATTGGCATCAACGAGGACGAGATCCTCAACAAGCAGGATGTGTTGATCAACCTGACCATCCTCTACGCGGCCCAAGAGGCAGTGCGCGATAACGACATCGACCACGCCCTGAACTACCGCACCATCACCAAGACAATCATCGCCCATGTGGAGGGCAACCGATTCGCCTTGCTCGAACGCCTGACCCAGGAGTTGCTGGACCTGGTCATGGCCAACGAGTCGGTGCTGTACGCCGAGGTCGAAGTCGACAAGCCGCACGCCTTGCGCTTCGCCGAGTCAGTGTCGATTACCCTCGCGGCAAGCCGTGCTGCTTCGTAGMPQLQPAMARIKVKDLRLRTFIGINEDEILNKQDVLINLTILYAAQEAVRDNDIDHALNYRTITKTIIAHVEGNRFALLERLTQELLDLVMANESVLYAEVEVDKPHALRFAESVSITLAASRAASPGPT0008030_31DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008030-folX-K07589NANA
D1-35_01307558folE_1COG0302GTP cyclohydrolase 1ATGGCCCTGTCGCCCGAGCATTACCGCGAGATCCTGATCGGCCTGGGCGAAGACCCGGAACGCGAAGGCCTGCTTGATACACCGGTGCGGGCCGCGAAGGCCATGCAGTACCTTTGCCATGGCTATGAACAGAGCATCGAACAGATCGTCAACGGCGCCCTGTTCGCCTCCGACAGCGATGAAATGGTGATCGTTGCCGACATCGAACTCTATTCATTGTGCGAACATCACCTGCTGCCCTTCATCGGCAAGGCCCATGTGGCTTATATTCCTACGGGCAAGGTCCTGGGGCTGTCGAAGATCGCCCGGCTGGTGGATATGTTCGCCCGTCGCCTGCAGATCCAGGAAAACCTCACCCGGCAAATCGCTGACGCGGTGCAGCAGGTCACCCAGGCCGCCGGCGTTGCGGTGGTGATAGAAGCCCAGCACATGTGCATGATGATGCGCGGTGTCGAAAAACAGAACTCGACGATGAACACCTCGGTGATGCTCGGCGCCTTTCGCGAGTCCAGCACCACGCGCCAGGAGTTCCTGCAATTGATTCGACGGAGCCAATAAMALSPEHYREILIGLGEDPEREGLLDTPVRAAKAMQYLCHGYEQSIEQIVNGALFASDSDEMVIVADIELYSLCEHHLLPFIGKAHVAYIPTGKVLGLSKIARLVDMFARRLQIQENLTRQIADAVQQVTQAAGVAVVIEAQHMCMMMRGVEKQNSTMNTSVMLGAFRESSTTRQEFLQLIRRSQPGPT0007875_4334DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007875-folE-K01495NANA
D1-35_01308705folMCOG1028Dihydromonapterin reductaseATGCCTACCGCTCCGATCCTCATCACCGGCGCAGCCCAGCGTGTCGGCCTGCACTGCGCCCGTCGGTTGCTGGAAGACGGGCAACCGGTCATCGCCACCTATCGCACCGAACGCCCGGGCGTGCAGACGCTACGGGACTCAGGGGCCACGATGCTGTTTGCCGACTTTTCCAGTGAAGCGGGAATCCTCGCCTTCATCGAACAACTCAAGCAGCACACCGACCAGCTACGCGCCATTGTGCATAACGCCTCGGCCTGGCTGGCCGAAACCCCAGGCGATGAGGCGGCCGCCTTCGGCGCGATGTTTGGCGTGCACATGCTCGCGCCTTACCTGATCAACCTGCAGTGCGCCGAGCTGCTGCAACGCTCGGTGCCGGCCGATATCGTGCACATCAGTGATGACGTGACCCGCAAGGGCAGCAGCCGGCACATCGCCTATTGCGCCACCAAGGCCGGGCTCGAGAGCCTGACCTTGTCGTTTGCGGCAAAGTACGCACCCGCCATCAAGGTCAACGGTATCGCCCCGGCCCTGCTACTGTTCAATCCCGACGACGATGCGGCCTATCGGGCCAAGGCCCTGGCCAAATCCGCGCTGGGTTTCGAGCCGGGCAGTGAAGTGATCTACCAGAGCCTGCGTTATCTGCTGGACAACCCCTACGTCACCGGCACGACCCTGACCGTCAACGGTGGGCGGCACATTAAATAAMPTAPILITGAAQRVGLHCARRLLEDGQPVIATYRTERPGVQTLRDSGATMLFADFSSEAGILAFIEQLKQHTDQLRAIVHNASAWLAETPGDEAAAFGAMFGVHMLAPYLINLQCAELLQRSVPADIVHISDDVTRKGSSRHIAYCATKAGLESLTLSFAAKYAPAIKVNGIAPALLLFNPDDDAAYRAKALAKSALGFEPGSEVIYQSLRYLLDNPYVTGTTLTVNGGRHIKPGPT0008035_313DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008035-folM-K13938NANA
D1-35_01309561hypothetical proteinATGTCTGCCTCACCCGTCACGTTGATGGTTGCCCGCCGCGTCGCCAATGGCCGCTATCAGGACTTGATCGCCTGGTTGCGCGAAGGCGAGCAACTGGCGACCGACTTCCCCGGCTACCTGGGCTCAGGCGTACTTGCGCCGCCGCCCGAAGACGACGAATTCCAGATCATCTTCCGTTTCGCCGATGAGCAGACCCTGCATGCGTGGGAACATTCGGCCTCGCGCACGGCTTGGCTGGGACGCGGCAGCGAGCTGTTTGCCCATCCCTCCGAACACCGAGTGCGCGGCATCGACGGCTGGTTCGGCGCCGTCAACCAGCGCCCGCCGCGCTGGAAACAGGCGGTGGCTATCTGGCTGGCGTTTTTTCCGGTTTCGTTGTTGTTCAATTTCCTGCTGGGGCCATTACTGGTTGAACTGGGCATGTTGAGCCGGGTGCTGATCAGCACGCTCATCCTGACGCCGCTGATGGTTTATCTGTTTATCCCGTTATCGACCCACTTGCTGGCGAACTGGCTCGCCGGCGCACCGCAACGACCAGTGCCGGCGACGCAGAACCATTAAMSASPVTLMVARRVANGRYQDLIAWLREGEQLATDFPGYLGSGVLAPPPEDDEFQIIFRFADEQTLHAWEHSASRTAWLGRGSELFAHPSEHRVRGIDGWFGAVNQRPPRWKQAVAIWLAFFPVSLLFNFLLGPLLVELGMLSRVLISTLILTPLMVYLFIPLSTHLLANWLAGAPQRPVPATQNHNANANANANA
D1-35_01310960hypothetical proteinATGAGCGTGATCATCGAAGAGAACCTTGCGTTTCAGGCCTCCGTGGCTTTGAAAGGCGAGGATTTGTTTCCCATCCGCGAAGTGGCGCGGGTGACTGGCGTGAATCCGGTGACCTTGCGCGCGTGGGAGCGGCGCTACGGCCTCATCCAGCCCACACGCACCGAAAGCGGGCACCGCCTGTATTCATTGGGCGACATCGAGAAGGTTCGCAGCATTCTCGCCTGGATCGAACGCGGGGTAGCGGTGAGCAAGGTGGGGAAAATTCTCGCCAGGACCGAGTCGGTTCAGCCAGCCTCCAGGTTCATTTCGCCCGATCTGGTGCGCGCTGATTACGCCCAGTGGCAACAGCTCGTGGCTGAAGCAGTCGGCAACTTTGACGATGTGGAGCTGGATCGGGTCTATGGACAGATTTTTTCCAGCTATACGGCACCGGTCGTCTTCCAGGACATCCTGATGCCGCTCTGGCGAGCATTGCTCCAACGCCAGCATGAGTTCGGGCAGACCAGTGAGTGGCTGTTTTTCGACGGTTTCTTGCGCTCGCGTGTCATGCAACGACTCTTGCTGAAGCGCGAAACTTCGTCGCGCCGGGTCCTGGTCAGCGCCATAGCTGGCCAATGCCGGGAATTGGAGTTGCTGGTCACGACGCTATTCATCTCCAGGGCGGAGGTGGATGTCAGGGTCATGGCTGTCGGCCAACCCTTTGACGAATTGACCCTGATTTGCCAGAAGATCAAGCCATTGGCGCTCGTGCTGGTTTCCAATCATGCGCCGGCCGCGGAGCTGCCCAAGCGGCTGAACAGGCTGGCGATGAGCCTCGATTGCCCGGTCATGCTCGCCGGCGATGCGTCCGACCTGGCGCAGGAAAGCCTGGCGGGCTCTTCCATCGCTTGCCTGGGAAATGAAGGCATGCTGATGCGCCAACGCTTGCGTCAATTTCTGGCGGGTAACCTGGACACTTGAMSVIIEENLAFQASVALKGEDLFPIREVARVTGVNPVTLRAWERRYGLIQPTRTESGHRLYSLGDIEKVRSILAWIERGVAVSKVGKILARTESVQPASRFISPDLVRADYAQWQQLVAEAVGNFDDVELDRVYGQIFSSYTAPVVFQDILMPLWRALLQRQHEFGQTSEWLFFDGFLRSRVMQRLLLKRETSSRRVLVSAIAGQCRELELLVTTLFISRAEVDVRVMAVGQPFDELTLICQKIKPLALVLVSNHAPAAELPKRLNRLAMSLDCPVMLAGDASDLAQESLAGSSIACLGNEGMLMRQRLRQFLAGNLDTNANANANANA
D1-35_01311606hypothetical proteinATGCAGCGCGACGCCCTTCTTACCCAAGATGAGCTGGATTTCATCCGGACCATGCAGCACAGCCCGCAGTTGAACGAGCGGGATGTCACGTCGAGCTTGCTGGTAAACGGTGGGTCGCAGATCCGTGACCTTTTGACGCGCCTGGCAGCAAACGAGCAGGTCACGTTACAAGCCAATTTCGAAAACCAACAGATGACCTTTCCGTTGCATCTGGTGGAAGACGAATTCCATGCCATGCACCTGCGCCTGGGTGTGCCGAGCATCTATGAGGATGGACCAAAGGTGCGCCCATGGCGCCTGACGCTCGAGGCACCGGTTGCGCTGGAAAATGCCAAGGGTCAGCCAGGTCCTTTATGGGTGCACGAGGTATCTTGCAAGGGCGTTCTGCTGGAAATTCGCAACCGCACCAAACCGCCAAAACAGTTCGCGTTGTGGTTCAGCCCTTCAGGCTACGAGAGAATTTCGCTTCGCGGTACGTTCGAACGGGAAACCGATCAGGGCCTGTACGCCTACCATCTGAATCAGCATGACCAGGACGAAACCGAGCGCCTGCGTCAATACATCCTCCAGCAACATCGTCTGACCCATCCGGCGATGCACCTCTAGMQRDALLTQDELDFIRTMQHSPQLNERDVTSSLLVNGGSQIRDLLTRLAANEQVTLQANFENQQMTFPLHLVEDEFHAMHLRLGVPSIYEDGPKVRPWRLTLEAPVALENAKGQPGPLWVHEVSCKGVLLEIRNRTKPPKQFALWFSPSGYERISLRGTFERETDQGLYAYHLNQHDQDETERLRQYILQQHRLTHPAMHLNANANANANA
D1-35_01312477hypothetical proteinATGATTAATGCTCACTTGATGCAGTTGGTGATCAGCGCTTCGAACGACGGGATCGTCATCGCCGAAAAGGAAGGCGACGAAGACAATATCCTGATTTATGTAAACCCGGCGTTTGAACGGCTGACCGGCTACAGCCGCGACGAGATCCTCTACCAGGACTGCCGTTTCCTGCAGTCCGGCGATCGCGATCAACCGGCCCTGGAGCATATCCGCATGGCCTTGAAGCAAGGCGGATCATGCCGACAGGTCCTTCGCAACTATCGCAAGGACGGCACGCCGTTCTGGAATGAGCTGTCGTTGTCGACCGTGAAAAACCAGGCTGACGGGCACACTTATTTCGTCGGTGTGCAGAAGGACGTGACAATCCAGGTGAAAGCTCAACAGCGAATCGCCCAGCTTGAAAAGGAGTTGGCTGAAGCACGGGAGACCATTGCGCGCCTGGATGCGACGAACGGCGCAAACAAAACGGCGAATTAAMINAHLMQLVISASNDGIVIAEKEGDEDNILIYVNPAFERLTGYSRDEILYQDCRFLQSGDRDQPALEHIRMALKQGGSCRQVLRNYRKDGTPFWNELSLSTVKNQADGHTYFVGVQKDVTIQVKAQQRIAQLEKELAEARETIARLDATNGANKTANPGPT0014656_25DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014656-ytvA|pfyP-NANANA
D1-35_01313456COG0716putative proteinATGAAAGTCGCCATCCTTTCCGGCTCCGTATACGGCACCGCCGAAGAAGTCGCCCGGCATGCCGCCAAATTGCTTGATGACGCCGGTTTCCAGACATTCCACAATCCGCGGGCAACCCTGGCGGATATCCAGGCGTTTGGCCCGCAGGCGTTGCTGGCCATAACGTCCACTACCGGCATGGGCGAGCTGCCGGACAACCTGATGCCATTGTATTCGACGATTCGCGACCAATTGCCCGCGTCGTTTCGCGGCCTGCCCGGTGCGGTGATCGGCCTCGGGGATGCCAGCTATGGCGATACGTTCTGCGGTGGTGGCGAGCAGATGCGCGAATTGTTCGCCGAGCTGGGCGTGCACGAGGTGCTGGCCATGTTACGCCTGGATGCCAGCGAGAGTGTGACGCCGGAAAGCGATGCCGAGCCCTGGCTGGGCGAATTGATCGCTGCATTGCGCCATTGAMKVAILSGSVYGTAEEVARHAAKLLDDAGFQTFHNPRATLADIQAFGPQALLAITSTTGMGELPDNLMPLYSTIRDQLPASFRGLPGAVIGLGDASYGDTFCGGGEQMRELFAELGVHEVLAMLRLDASESVTPESDAEPWLGELIAALRHNANANANANA
D1-35_01314783fucAL-fuculose phosphate aldolaseGTGAGCGTGACGCCCATTCAATCGACACCCGGCATCAAGGACCAGGTCAGCGCCGCGGAATGGCAGACCCGCGTCGATCTTGCCGCCTGTTACAGACTGGTCGCGCTGCACGGCTGGGACGATCTGATCTTTACCCATATCTCCGCCAAGGTCCCCGGCACCGAAGATTTCCTGATCAACCCGTTCGGTTTGATGTTCCATGAAATCACCGCGTCGAGCCTGGTCAAGGTCGACCAGGCCGGCAACAAGCTGATGCCCAGCCCCTATGAGATAAACCCGGCGGGTTACACCATTCACAGTGCGGTGCACGAGGTGCGGCACGATGTGATGTGTGTGTTGCACACCCACACGGCCGCCGGTGTCGCGGTATCGGCGCAAAAACAGGGCGTCCTGCCGATCAGCCAGCAATCGCTGTTCGTGCTGTCGAGCCTGGCGTATCACCCTTACGAAGGGGTCGCCCTCAATCCTGAAGAGAAGGCCCGCCTGCAAGCGGACCTGGGCGACAGTAATTTCCTGATGCTTCACAACCACGGTCTGCTGACTTGTGGCGGCACCATCGCCGATACCTTCCTGATGATGTTCATTTTCCAGCGAGCCTGTGACATCCAGGTTCTGGCGCAGACCGGCGGCGCCGAGTTGATCGCCATCGAGCCCCAGGTGCTGGCCGGTGCCCGGGCGATGGTTGCCGGGGTGACCCGAAGCGCCCAAGGCATGGGGGGCGCGCTGGCCTGGCCGGCCTTGCTGCGCAAACTCGACCAGCAAGATCCGGGTTATAAAAGCTGAMSVTPIQSTPGIKDQVSAAEWQTRVDLAACYRLVALHGWDDLIFTHISAKVPGTEDFLINPFGLMFHEITASSLVKVDQAGNKLMPSPYEINPAGYTIHSAVHEVRHDVMCVLHTHTAAGVAVSAQKQGVLPISQQSLFVLSSLAYHPYEGVALNPEEKARLQADLGDSNFLMLHNHGLLTCGGTIADTFLMMFIFQRACDIQVLAQTGGAELIAIEPQVLAGARAMVAGVTRSAQGMGGALAWPALLRKLDQQDPGYKSNANANANANA
D1-35_01315903oleB_1COG0596Cis-3-alkyl-4-alkyloxetan-2-one decarboxylaseATGCCCATGGTCCAGATTCCGCTGCGTATCTGGCGCCAGCGCGGACAGACCTTCATGTTTCGGGGTCACGCTATCCGCTATTGGGTGGCGGGCCACGGCGAGCCTCTGCTGTTGATCCACGGGTTCCCTACCGCCAGTTGGGACTGGCATTACCTGTGGCAGCCGCTGGCACAGCGTTACCGGGTGATCGCCTGCGACATGCTCGGTTTCGGTGACTCCGATAAACCTGTGGATCACACCTATAGCCTGTTGGAGCAGGCCGATCTGCAGCAAGCGTTGCTGACGCATTTGAATGTGACACAGGGAGTTCATGTGCTGGCCCACGATTATGGCGACAGCGTGGCCCAAGAGTTGATTGCCCGGCACAGCGAGGCGCGCGCCGACGTCGCCAGTTGTGTCTTTCTCAATGGTGGACTGTTTCCCGAGACCCATCGTCCGGTGCTGATGCAGAAGTTGCTGCTCAGCCCCTTGGGGTGGCTGATAGGCCGGGCCTTCTCCAGGGACGGGCTGGTGAAGAGTTTCCAACGGATTTTCGGCCCCAGGACCTGCCCGACCGAAAGCGAGATGGATGATTACTGGAGCCTCGTCGAAACCCATCACGGGCCGCGGATCATGCACAAACTCATCGCCTATATTCCCGAACGACGGGTGCAACGCGACCGTTGGGTGCAGGCGATGCAGCGCGGCGAAGTGCCGTTGCGGGTCATCGACGGGGCAATCGATCCGATTTCCGGTGCGCATATGGTGGCGCGTTACCGCGCCTTGATTCCGAACGCCGACACGGTGCTGTTGCCTGACATTGGCCACTATCCACACACCGAGGCACCTGTTCAGGTACTCAAGCATTACCTGGCATTTCGCGAAATCATCGCGGCGCCGATCAGGCAAATGGCCTGTTCATGAMPMVQIPLRIWRQRGQTFMFRGHAIRYWVAGHGEPLLLIHGFPTASWDWHYLWQPLAQRYRVIACDMLGFGDSDKPVDHTYSLLEQADLQQALLTHLNVTQGVHVLAHDYGDSVAQELIARHSEARADVASCVFLNGGLFPETHRPVLMQKLLLSPLGWLIGRAFSRDGLVKSFQRIFGPRTCPTESEMDDYWSLVETHHGPRIMHKLIAYIPERRVQRDRWVQAMQRGEVPLRVIDGAIDPISGAHMVARYRALIPNADTVLLPDIGHYPHTEAPVQVLKHYLAFREIIAAPIRQMACSNANANANANA
D1-35_01316912COG1028Putative short-chain type dehydrogenase/reductaseATGAGTGAATCTGTGCGCTTCGAAGATAAAGTCGTGATCGTCACGGGAGCCGGCGGCGGCCTTGGCCGCGCTCATGCGTTGCTGTTTGCCCGGCAGGGCGCACGCGTGCTGGTGAACGATCTCGGCGGGTCGGCGCAGGGGGAGGGCGCCAACGCCTCGGCAGCGGATCGGGTGGTGGCTGAAATCCGTGCCGCCGGTGGTATTGCCGAGGCCAATCATGACTCGGTCACCGATGGCGACAAGCTTGTGCAAAACGCCCTCGACGCCTTCGGCAGGGTGGACGTGGTCGTCAATAATGCCGGTATCCTGCGCGACAAGACCTTCCATAAGATGGACGATGCCGACTGGGACCTGGTTTACCGTGTCCATGTCGAAGGTGCCTATAAAGTCACCCGCGCCGCCTGGCCGCACCTGCGCGAGCAGAACTACGGACGAGTGATCTTCACCGCCTCCACGTCCGGCATCTATGGCAACTTCGGCCAGTCCAACTACGGCATGGCCAAGCTTGGCCTGTACGGCCTCACTCGCACCCTGGCTATCGAAGGTCGCAAGAACAACATCCTCGTCAACGCCATCGCCCCCACCGGCGGCACGCGGATGACCGAAGGCCTGATCCCGCCGCAGGTATTCGAGCAGCTCAAGCCCGAGCTGGTCAGCCCGCTGGTCGTGTACCTGGCCAGCGAAGCCTGTCAGGAAACTTCCGGATTGTTCGAAGTAGGCGGCGGCTGGATGGGCAAGGTGCGCTGGGAGCGCAGCCTCGGTGCCGGCTTCGATCCGCGCGAGGGGTTCTCACCCGAGGACGTCGCCGCTCACTGGCAGCAGATTTGCGACTTCGAAAACGCAGTCCACCCGAACGACAACCTGGAAGCTTTGAAAGAGATGATGGCGAACCTGCAGCGTCACGCCATTTGAMSESVRFEDKVVIVTGAGGGLGRAHALLFARQGARVLVNDLGGSAQGEGANASAADRVVAEIRAAGGIAEANHDSVTDGDKLVQNALDAFGRVDVVVNNAGILRDKTFHKMDDADWDLVYRVHVEGAYKVTRAAWPHLREQNYGRVIFTASTSGIYGNFGQSNYGMAKLGLYGLTRTLAIEGRKNNILVNAIAPTGGTRMTEGLIPPQVFEQLKPELVSPLVVYLASEACQETSGLFEVGGGWMGKVRWERSLGAGFDPREGFSPEDVAAHWQQICDFENAVHPNDNLEALKEMMANLQRHAIPGPT0003180_18069DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-35_01317600hypothetical proteinATGTACCTCCAAAGGATGACAGCCCATGCGGGCCGGGCCTTTGCGTGGTGCATGAACGGACTGGATGAGAGGTTATCAACGGCGTGCATTTTCATCGCTGCGCCTGCACTGTTACATGCACTGCAACAGTGCATGTCCGGATCCGGGCTGTTTCCGAAAACGTCCCATCCCTATGCTGGCCGGGCTTGCGGGACAACGGGCCTGCAAGCGCAAGCCGCCAGGCGTCCCTCGCGCCTGGCGCACCGTCATTCGGATGGATTGCGCATCAATCCATCGTCCCCGTGTCCACTGACGTTGATTTGTAGCTCCTTTACAACGTCACGTTTAGGCCGCTGCGTTTTGCAGCGGCCTTTTTTATTTCCGGGTTATTTCCGCGAGGGAACTTCTTGTTTCCTGGATAACTCGAGCACTATTCAGAATATTCTCAAACGCTACCCGGAAATCGGTCCGGTAAACGTGCTCGGGCATTCGGACATCGCCGCGGGCGCAAGAGGTTATCCAGGCCCGATGTTTGCGAGGCATGCGTTGTATCTCAAGGGTATCGGCGCCTGGTTCGAGCCTTCCAGCTGCATTTTCGCCCGGCGAAACATGACGGTGTGAMYLQRMTAHAGRAFAWCMNGLDERLSTACIFIAAPALLHALQQCMSGSGLFPKTSHPYAGRACGTTGLQAQAARRPSRLAHRHSDGLRINPSSPCPLTLICSSFTTSRLGRCVLQRPFLFPGYFREGTSCFLDNSSTIQNILKRYPEIGPVNVLGHSDIAAGARGYPGPMFARHALYLKGIGAWFEPSSCIFARRNMTVNANANANANA
D1-35_013181794hypothetical proteinATGACAACAATAACAATGCGCGCCATCTTCAAGCCGCAGGCGCTGGCCGTCGCGGTGGCCTTGGGTTGCTGTGCCCAGGCGCAGGCCGTTTCATTCAACATTGGCGAAATCGAGGGGCAGTTCGATTCCTCGCTGTCGGTTGGCGCGAGCTGGGGCATGCGCGATGCCGACAGGGATCTGGTCGGCACCGTCAATGGCGGTACGGGCCAGTCTTCCACCGGTGACGACGGCCGATTGAATTTCAGGAAAGGCGAGACCTTCTCGAAAATCTTCAAGGGCCTCCACGACCTCGAACTCAAGTACGGCGACACCGGCGTGTTTGTCCGTGGCAAGTATTGGTACGACTTCGAGCTCAAGGACGAAAACCGCGAGTTCAAGGACATCAGCGACAGTAACCGCAAGGAGGGCGCCAAGTCGTCGGGGGCGCAGATCCTCGATGCCTTCGTCTATCACAATTATTCCATCGCCGATCTGCCGGGCACGGTGCGCGCCGGCAAGCAGGTGGTCAGTTGGGGCGAAAGTACCTTCATCGGCAACTCCATCAACAGCATCAACCCGGTGGATGTGTCCGCGTTCCGTCGCCCGGGTGCGGAGATCAAGGAAGGCCTGATCCCGGTCAACATGCTGTTCGCCTCCCAGGGCTTGACCGACAAGCTTACCGTCGAAGGTTTCTACCAACTGGAGTGGGACCAGACGGTTGTGGACAACTGCGGCACCTTCTTCGGTAACGATGTGGTCGCCGATGGTTGCACCGATGGCTATACCGTAGGCAGCCCGGCGATTGCGCCGTTCGTGCCGTTGACCACCGCGTTCGGCCAGGGCATCCAGGTGACCAGCGAAGGCGTGGTCATTCCCCGTGGCGGTGACCGCGATGCGCGGGACTCCGGCCAGTGGGGCACGGCGTTGCGCTGGCTCGGCGATGACACCGAGTACGGCCTGTACTTCATGAATTACCACAGCCGCACGCCGACTGTGGGCACCACTACGGCGGGGCTCTCTACGCTGGCTGCGCTGCCGGGGATGGTCGCGACTGCAAACGCCATCGCCCCTGGCAGCGGCGCGGGCCTGGCGCAAAGCGTGATGTTGGGGCGCGGTGGGTATTACCTCGAATACCCTGAAGACATCCGCCTGTACGGCGCCAGTTTCTCCACCACGTTGCCGACTGGCACGGCGTGGACCGGCGAAATCAGTTACCGCCCCAATGCACCGGTACAGGTCAACACCAACGACCTGACCCTGGCCTTGGTGAACCCGATCGCCGGAGGCGCCGCGTCACCGATCGCCACTTCGCCGGGCGCGGACAACACCGGTTACCGCCGCAAGGAAGTGACCCAGGTGCAGAGCACCCTGACGCACTTCTTCGACCAGGTGCTGGGCGCCGATCGCCTGACCGTGGTCGGTGAGGCCGCGGTCGTGCATGTCGGCGGTCTCGAATCGAAGGACGAGCTGCGTTATGGACGCGATTCGGTCTACGGCCAGTACGGCTTCAACGGCGACACCGACGGTTTTGTCACCTCGACCTCCTGGGGTTATCGCGCCCGGGCGATTCTTGACTATTCCAACGTTATCGGCGGGGTGAACTTCAAGCCCAACCTGTCCTGGTCCCATGACGTGGCCGGCTATGGGCCCAACGGTCTGTTCAACGAAGGCGCCAAGGCGGTCAGCGTGGGTGTCGATGCCGATTACCGCAACACTTACACCGCCAGCCTGAGCTACACCGATTTCTTCGGCGGCGATTACAACGTTCTCGAAGACCGCGACTTCCTCGCGCTGAGCTTCGGCGTGAACTTCTGAMTTITMRAIFKPQALAVAVALGCCAQAQAVSFNIGEIEGQFDSSLSVGASWGMRDADRDLVGTVNGGTGQSSTGDDGRLNFRKGETFSKIFKGLHDLELKYGDTGVFVRGKYWYDFELKDENREFKDISDSNRKEGAKSSGAQILDAFVYHNYSIADLPGTVRAGKQVVSWGESTFIGNSINSINPVDVSAFRRPGAEIKEGLIPVNMLFASQGLTDKLTVEGFYQLEWDQTVVDNCGTFFGNDVVADGCTDGYTVGSPAIAPFVPLTTAFGQGIQVTSEGVVIPRGGDRDARDSGQWGTALRWLGDDTEYGLYFMNYHSRTPTVGTTTAGLSTLAALPGMVATANAIAPGSGAGLAQSVMLGRGGYYLEYPEDIRLYGASFSTTLPTGTAWTGEISYRPNAPVQVNTNDLTLALVNPIAGGAASPIATSPGADNTGYRRKEVTQVQSTLTHFFDQVLGADRLTVVGEAAVVHVGGLESKDELRYGRDSVYGQYGFNGDTDGFVTSTSWGYRARAILDYSNVIGGVNFKPNLSWSHDVAGYGPNGLFNEGAKAVSVGVDADYRNTYTASLSYTDFFGGDYNVLEDRDFLALSFGVNFNANANANANA
D1-35_013191368putative proteinATGCGCAAGATGATCCTGCAATGCGGTGCCCTGGCCCTGAGCCTGCTGGCCGCGAACGTGATGGCGGCAGTCTCGCCGGAGGAAGCCAACAAACTGGGCACCAGCCTCACCCCGCTGGGCGCGGAAAAGGCCGGCAACGCTGATGGCTCGATCCCGGCCTGGACCGGCGGTATTCCGAAGAATGCCGGTGCCGTGGACAGCAAAGGCTTCCTCGCCGACCCGTTCGCCAGTGAAAAACCGCTGTTCACCATCACCGCCGCGACCGTGGACAAGTACAAGGACAAACTCTCCGAAGGCCAGGTCGCGATGTTCAAGCGCTACCCGGAAACCTACCGGATTCCGGTCTACCCGACCCACCGCAGCGTTGGCCTGCCGCCGGAGATCTATGAGGCGGCCAAACGTAGCGCACTGAACGTGAACGCCATCAACGACGGTAACGGCCTGGCCAACTTCACTGGCAACCGCTACTACGCGTTCCCGATTCCCAAGACCGGCGTGGAGGTGCTGTGGAACCACGTCACCCGCTACCACGGCGGCAACCTGCGGCGCGTCATCATCCAGGCCACACCGCAGACCAACGGCAGCTTCACGCCGATCCGCTTCGAAGAAGAGATCGCCGTGCCGTTTCTGATCAAGGACGCCGACCCGGAAAAAGCCAGCAACGTACTCACTTATTTCAAGCAAGAGGTGACGGCCCCGGCGCGCCTGGCCGGTAACGTGTTGCTGGTGCATGAAACGCTCGACCAGGTGACGGAGCCGCGTCTGGCATGGATCTACAACGCCGGCCAGCGTCGTGTGCGTCGTGCCCCACAAGTTGCCTATGACGGCCCGGGCACCGCTGCCGACGGCTTGCGTACTTCCGACAACTTCGACCTGTTTTCCGGCGCCCCGGATCGCTACGACTGGAAGCTGGTGGGCAAGAAGGAAATGTACATCCCGTACAACAGCTACAAACTTGATTCACCGAGTCTCAAATACGATGACGTGATCAAGGCCGGGCACATCAACCAGGACCTGACGCGCTACGAGCTGCACCGGGTCTGGGAAGTAGTGGGTACGGTCAAGCCCAGCGAGCGGCATATCTACGCCAAGCGTCACATGTACATCGATGAGGACAGCTGGCAAGCGGCACTGGTGGACCACTATGACGGGCGCGGCCAGTTGTGGCGCGTGGCCGAAGGGCATGCCCAGTTCTATTACGACCATCAGAACCCGGGCTACACACTCGAAGCGCTCTACGACATCATCGCTGGCCGCTATATTGCCCTGGGGATGAAAAACGAAGAGAAGCACGCCTACGTCTATGGGTTCGAGGCTCGGGCAGCCGACTACACGCCGGCAGCGTTGCGGTCGAGCGGGGTTCGCTAGMRKMILQCGALALSLLAANVMAAVSPEEANKLGTSLTPLGAEKAGNADGSIPAWTGGIPKNAGAVDSKGFLADPFASEKPLFTITAATVDKYKDKLSEGQVAMFKRYPETYRIPVYPTHRSVGLPPEIYEAAKRSALNVNAINDGNGLANFTGNRYYAFPIPKTGVEVLWNHVTRYHGGNLRRVIIQATPQTNGSFTPIRFEEEIAVPFLIKDADPEKASNVLTYFKQEVTAPARLAGNVLLVHETLDQVTEPRLAWIYNAGQRRVRRAPQVAYDGPGTAADGLRTSDNFDLFSGAPDRYDWKLVGKKEMYIPYNSYKLDSPSLKYDDVIKAGHINQDLTRYELHRVWEVVGTVKPSERHIYAKRHMYIDEDSWQAALVDHYDGRGQLWRVAEGHAQFYYDHQNPGYTLEALYDIIAGRYIALGMKNEEKHAYVYGFEARAADYTPAALRSSGVRNANANANANA
D1-35_013202553malT_1HTH-type transcriptional regulator MalTATGACCGCCATGACCCCGTGTCCGGACCGTCCCGGGCTGCTGCCGCGCCTGTCTTCGACGCATGTGCCACGCCGGTCCTTGAGCGAGTCGTTGCTGGCTTCCGAGGCGCGGGTAAAGCTGCTTTACGCACCGGCGGGCAGTGGCAAGAGCGCGTTGTTCGCTGAGTGCTTCCTGCAAGCGCCCCCGGGCTGCCGGCTGCATTGGCTGCCGCTGGGGGGCGCGGCGATGGATGTCGCGCAATTCTGTGAGTGCCTGGCCCAGGCCCTCGGATTGCCGGTGGTCGATGAGGCGAGCCTGCTGGCTCACCTGGCACGGTTGCAAACCCCGACATGGTTGTTCCTGGATGATTATTGCCGGGTGCCCAATCCGGCACTCGACCAATTGCTCGACCGCTTGCTCAACACCAGCAGTCCGGCGCTGCATCTGTGGCTCAATGGCCGTCGCCGCCCGCACTGCAATTGGCCGCGCCTGTTGCTGGACGACGAGCTGCACGAGTTCGACGCGCAAGCCCTGGTTTTTACCGCCGAGGACGTTCAGCAATTGCTCGGGCATTTGCCCGGCCCACTGGCAGCACGCACCGCCCGCGAGGTGGTTCAGCGCAGTGGTGGCTGGTGTGCCGGGGTGCGCTTCGCCTTGCTCGAACGTTGCGAGTGGGCGCGGAGCAACGCTTCGTCGGGGCGTGCCGGGACTTTGCCCGACTACCTCGAATATGAATTGTTTGGCGCCCTGTCCCCGGAACTGGCGCAGGCCTGGCGCGTGCTGGCGCATTTGCCGCGCTTCAATGCCCGGCTTTGCGAGCATCTGTTCGGCGATACGGTGGGGGCCGAATGCCTTCCCTTGCTGCTGGACCTGGGATGCTTCATCGAACCGTGGGCGCAGTCTTCGGAATGGATGCAGATTTTCCCTCCGCTGGCCCGCCTGGTGCGTGACGAGCCCTGGCCCCAGGCGCGCTCCTGGCACCGGCGGGCCTGCCAATGGTTCGCCGCCGAGCAGGATTGGCCGATGGCATTCGAACAGGCCATGCAAGCGGGGGAGTTCGAGACCGCCGTGAGTGTCCTCCAGCATCTGAATTTCGAGCATGTCTTGCAGGGCAACAACGTCCAGCTGTTATTGAGCCTGCATGACCAGCAGGACGAGGCGTTGTCCCTCGGTACGCCGCAATCGGTGGGGCTGGTTACCGCAGCCTTGCTGTGCGCCGGACGTTTCGCCGAGGCCGAGCGGTGCATCGAGCAATTGGGCCGGTTCGCGCCACAACCGCTGGCCTGCCGGCAGCGAGAACTGATTGCCCGCTGGCAGGTCTTGCGTGGTTGGCTGCTGCATCTGGACGGTGAGGGCGAACCGGCGCTTGAGCATTTCCTCCAGGCCGAAGCCGGCCTCGAACCGCACGCCTGGGCTCTCAAGGTGCTGTGCCTGATCGGCCAGACGCAGCAGGCACTGCTCAAAGGTGAGCTGGCGTCCGCGCAATGGATCAACCGTCAGGCGCTGTGCCTGGCCCGGGCTCATGGCTCGCTGGTGTTCGAAGGATTGCTGGAACTGGATCACGCCCAGGTACTTGAGCAACGCGGCGCGCCCCATCGGGCGGATCATTTGTTGAGCGCCGTCCAGGTGCTGCTCGACAAGCCCGGCCAGGATTTTTCCGCGCTGCTGGGACGTATCGCCCTGCGACGTGGGCGCCTGGCGTTACGCATGGGATCTGACGAGCAGGCCGCCGAACACTTTCAAGCCGGCCTGGAGGCGGGCCTGCGCAGCCAGGACAAACAAGTGCTCTACGGCTTTCTCGGCAAGGCTTGCCTGGCGGCCAACCGGGGTGACTATGGCGAAGCCTTCATGCAACTGCGCGACGCCGAGCGGATCATGCAGCAGCGACACATCCCCGACACGGTCTATCGCGGCGTGCTGCTGCAAACCAGCTGTCAATTCTGGTTGCAGCAGGGGCGCCCGGAGCTTGCTCATGAAGTCTTGACCCGGGTCTTGCGGCATTTCCACGGGCCGCAGGCCAAGCAGGCGCCGCCAGCGACCCTGGAGCTGATTCCGCGTCTTGAGTATCTGCTGGTGCTGGCCGAGGTCTACCTGCATCGGGCGCATGAGCCGCAGGCTCGCCTGCAGGCGATGATCGCCCAGGCACGGCAGCGCGAAATGCACGCATTGGAAACGGAGTTGCAGTTGGCGCTGGCCGAGGTCGTCTGGTTGTCCGTCGATCGCACTTCTCTTGGATTGATCGCGCCGGAGGCGCTCAAGCAAGTGGCCTGTTGGCGGGCGCAGCAAGCCTTGGGTGAGCTGCGTATGCGCCAGCCTGAACTGGTGCACTGGATGCAATCTCAGGAGCGGATCGAGCTGCCGGGACGCGCGGCGGAAGAAACGCTGCTCAGCCAGCGCGAACTGGAAGTACTGGAACTCATTGCCCAGGGCCATTCAAACCAGCAGATCGCCGAGCGCCTGTTCATCTCGCTGCATACGGTGAAAACCCATGCGCGGCGGATCCATAGCAAGCTGGGCGTACAGCGGCGGACACAAGCGGTCGCAAAAGCGAAAAACATGGGCGTGATGAGTTAGMTAMTPCPDRPGLLPRLSSTHVPRRSLSESLLASEARVKLLYAPAGSGKSALFAECFLQAPPGCRLHWLPLGGAAMDVAQFCECLAQALGLPVVDEASLLAHLARLQTPTWLFLDDYCRVPNPALDQLLDRLLNTSSPALHLWLNGRRRPHCNWPRLLLDDELHEFDAQALVFTAEDVQQLLGHLPGPLAARTAREVVQRSGGWCAGVRFALLERCEWARSNASSGRAGTLPDYLEYELFGALSPELAQAWRVLAHLPRFNARLCEHLFGDTVGAECLPLLLDLGCFIEPWAQSSEWMQIFPPLARLVRDEPWPQARSWHRRACQWFAAEQDWPMAFEQAMQAGEFETAVSVLQHLNFEHVLQGNNVQLLLSLHDQQDEALSLGTPQSVGLVTAALLCAGRFAEAERCIEQLGRFAPQPLACRQRELIARWQVLRGWLLHLDGEGEPALEHFLQAEAGLEPHAWALKVLCLIGQTQQALLKGELASAQWINRQALCLARAHGSLVFEGLLELDHAQVLEQRGAPHRADHLLSAVQVLLDKPGQDFSALLGRIALRRGRLALRMGSDEQAAEHFQAGLEAGLRSQDKQVLYGFLGKACLAANRGDYGEAFMQLRDAERIMQQRHIPDTVYRGVLLQTSCQFWLQQGRPELAHEVLTRVLRHFHGPQAKQAPPATLELIPRLEYLLVLAEVYLHRAHEPQARLQAMIAQARQREMHALETELQLALAEVVWLSVDRTSLGLIAPEALKQVACWRAQQALGELRMRQPELVHWMQSQERIELPGRAAEETLLSQRELEVLELIAQGHSNQQIAERLFISLHTVKTHARRIHSKLGVQRRTQAVAKAKNMGVMSPGPT0018616_1588DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_COMPLEX_SUGAR_UTILIZATIONPLANT_DERIVED_MALTOSE_DEGRADATION,PGPT0018616-malT-K03556NANA
D1-35_01321807kdgR_2COG1414Transcriptional regulator KdgRATGGAAAACCCGCCTAGCAACGGTAAACAGAAAGTCCGCTCCGCTGAGGTCGGCACCGACATCCTCAAGGCCTTGGCCGAGTTGTCCCCTTCCACCTCGCTGTCACGCCTGGCCGAACATGTGCAGATGCCGGCCAGCAAGGTTCATCGTTACCTGCAAGCCCTGATCGCGAGTGGCTTCGCCGAACAGAACAGCGCAACCAACCACTACGGTTTGGGCCGCGAAGCCTTGCGCGTAGGGCTGGCGGCGCTCAACGGCATGGATGTGCTGCAAGTGGCCGCCCTGCCCTTGGCCGAACTGCGCGACGACTTGAACGAAACCTGTTTTCTCGCGGTGTGGGGCAATCACGGCGCGACCGTGGTGCGGATCGAACCCGCCGTGCGGGCCGTGACCGTGGTGACGCAATTGGGCTCGGTCCTGCCGTTGCTCAGCTCATCCACGGGATTGGTTTTCAGTGCCTACCTGCCGGAGCGCGAGACCATCGAGCTGCGCGAACAGGAGGTGCGCGACGCCACCGACCACGCCTTGGCCGATGACAATGTCTATGCCGCCTTGCAGGGGCAGATCCGCAGTCGCGGCCTGCACCATGTGCATGGCTTGTTGATGCCCGGCATTGATGCCTTGTCCGCGCCGGTTTTCAACGCCATGGGCCAGGTGGCGGCAGTCATGACCATTGTGGGTCCGACATCGCTGTTCCACGCCGACGAAAACGGCCCGGCGGCGCAGCGCCTGTTGACCGCGACCCGGGCCGTGAGCCGGCGAATGGGGTATGACTCAGGGTCATCAGCCCAGCAGGATATTGGCTAAMENPPSNGKQKVRSAEVGTDILKALAELSPSTSLSRLAEHVQMPASKVHRYLQALIASGFAEQNSATNHYGLGREALRVGLAALNGMDVLQVAALPLAELRDDLNETCFLAVWGNHGATVVRIEPAVRAVTVVTQLGSVLPLLSSSTGLVFSAYLPERETIELREQEVRDATDHALADDNVYAALQGQIRSRGLHHVHGLLMPGIDALSAPVFNAMGQVAAVMTIVGPTSLFHADENGPAAQRLLTATRAVSRRMGYDSGSSAQQDIGNANANANANA
D1-35_013221305hmgACOG3508Homogentisate 1,2-dioxygenaseATGAACCTCGATTCCACGGCGTCGGACCTGGCTTACCAGTCTGGCTTCGGTAACGAATTCGCCAGCGAGGCGCTGCCCGGCGCACTGCCCGTTGGCCAGAACTCTCCGCAGAAAGCCCCGTACGGCCTGTACGCCGAACTGTTTTCCGGCACCGCCTTCACCATGGCCCGCAGCGAAGCGCGGCGAACCTGGATGTACCGCATCCGTCCTTCGGCCAACCATCCGGCCTTCGCCAGGTTGGAACGGCAATTGGCCGCAGGCCCGCTGGGCGAGGTGACACCCAATCGCCTGCGCTGGAGCCCGTTGCAGATCCCTGCGGAGCCCACCGATCTGATCGACGGCCTGGTGCGCATGGCGGCCAATGCCGGTGCGGACAAACCCGCCGGTATCAGCATCTATCACTACTGCGCCACCCGCTCCATGGAGCGGGTGTTCTTCAACGCCGATGGTGAGTGGCTGATCGTGCCGCAACTGGGGCGGCTGCGCATCGCCACCGAGCTGGGTGTGCTGGAAGTGGCTCCGCTGGAAATCGCCGTGCTGCCTCGAGGGCTGAAATTTCGCGTCGAACTGCTCGACGCGCAAGCTCGCGGCTACATCGCCGAGAACCACGGGGCGCCGTTGCGCCTGCCAGACCTCGGGCCGATCGGCAGCAATGGCCTGGCCAATCCAAGGGATTTCCTGGCCCCCGTCGCCCATTACGAAAACCTCGTGCAACCGACCACGCTGGTACAGAAGTTCCTCGGTGAACTGTGGGCCTGCGAGCTGGACCATTCGCCGTTCGACGTGGTGGCCTGGCACGGCAACAACGTGCCGTACAAATACGATCTGCGACGATTCAACACGATCGGCACGGTCAGCTTCGACCACCCCGATCCGTCGATTTTCACCGTGTTGACGTCGCCGACCAGTGTCCATGGCCTGGCGAATCTCGATTTCGTAATTTTCCCGCCGCGCTGGATGGTGGCGGAAAACACCTTCCGTCCGCCGTGGTTCCATCGCAACCTGATGAATGAATTCATGGGCCTGATCCAGGGCGCCTACGATGCCAAGGCCGAGGGCTTCCTGCCGGGCGGCGCGTCGCTGCACAGCTGCATGAGCGCCCACGGCCCGGATGGCGAGACCTGCACCAAGGCGATCAATGCCGAGCTCAAGCCAACAAAAATCGATAACACCATGGCCTTCATGTTCGAGACCAGCCAAGTGCTGCGTCCCAGCCGTTTCGCCCTGGACTGCGCACAATTGCAAACTGACTACGACGCCTGCTGGGCCTCGCTGCCGGTCACTTTCGACCCGACCCGGAGATAAMNLDSTASDLAYQSGFGNEFASEALPGALPVGQNSPQKAPYGLYAELFSGTAFTMARSEARRTWMYRIRPSANHPAFARLERQLAAGPLGEVTPNRLRWSPLQIPAEPTDLIDGLVRMAANAGADKPAGISIYHYCATRSMERVFFNADGEWLIVPQLGRLRIATELGVLEVAPLEIAVLPRGLKFRVELLDAQARGYIAENHGAPLRLPDLGPIGSNGLANPRDFLAPVAHYENLVQPTTLVQKFLGELWACELDHSPFDVVAWHGNNVPYKYDLRRFNTIGTVSFDHPDPSIFTVLTSPTSVHGLANLDFVIFPPRWMVAENTFRPPWFHRNLMNEFMGLIQGAYDAKAEGFLPGGASLHSCMSAHGPDGETCTKAINAELKPTKIDNTMAFMFETSQVLRPSRFALDCAQLQTDYDACWASLPVTFDPTRRPGPT0006025_1115DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_STYRENE_OXIDE_DEGRADATION,PGPT0006025-HGD|hmgA-K00451NANA
D1-35_013231305hypothetical proteinATGACCCAAGTTTCCCCTACCCTCAGCTGGGTTGTTTGCGCTAATAGTCATCCCGACTTCCCGCTGCAGAACCTGCCGCTGGGCATCTTCAGTGTCGCTGGCGAAGCTCCCCGTAGCGGCGTGGCGATTGGTGAGCGGATCTTCGATCTGCAGGCCGCGTTGCAGGCGGGCCTGTTTGACGGCAAGGCGGCTGAAGCCGTCGAGGCCATGCAGGGCGGCCAGTTGAACGCCTTCTTCGACCTGGGGCGCGAGGCCCGGGTTGCCCTGCGCGAAAGATTGCTCGAACTGTTGCGCGAGGACAGCCCCCAGCGGGACGCGATCCAGGCCCAGGGCGCGCGGTTGCTGCCACTGGCGGCGGACTGCCAGATGCACTTGCCAGCGAAAATCAATGACTACACCGATTTCTACGTAGGCATCGAGCACGCGCAGAATGTCGGCAAGCTGTTTCGGCCGGACAATCCGCTGCTCCCCAACTACAAGTACGTTCCCATCGGTTATCACGGTCGCGCTTCGACGGTTCGCCCCTCCGGTACCGATGTGCGCCGTCCGCAAGGCCAGACGCTGCCGCCCGGCCAGGCCGAGCCGATCTTCGGCCCGTGCGCGCGGCTGGATTATGAACTGGAGCTGGGTATCTGGATCGGCAAGGGCAACGCCCTGGGCGAGCCCATTGCCATCGGCGATGCGGCCGAGCACATCGGCGGTTTCTGCTTGCTCAACGATTGGTCGGCCCGGGATATCCAGGCTTGGGAGTACCAGCCGCTGGGGCCTTTCCTGTCGAAAAGTTTCCTCACCAGCGTATCGCCGTGGGTGGTGACGGCCGAGGCTCTTGAGCCGTTCCGTCGCCCGCAGCCGGCGCGCCCGGAAGGCGACCCCCAGCCACTGCCGTATCTGCTGGACAAGCGTGACCAGGCTGGCGGAGCCTTTGATATCGAACTGGAAGTCCTGCTGCTGACCGAATCCATGCGCGAGCAGGGCCTGGCGCCTCATCGCCTGACCTTGAGCAATACCCGGTACATGTATTGGACCGTGGCGCAGATGGTCGCGCACCACAGCGTCAACGGTTGCCAATTACAGGCCGGCGATCTGTTTGGCTCGGGCACATTGTCAGGACCTGAAAATGGTCAGTTCGGCAGCCTGCTGGAAATCACCGAGGGCGGTAAAAAGCCGATCGAACTGGCGTCCGGCGAAATCCGCAAATTTCTCGAAGACGGTGACGAAATCATCCTGCGCGCCCGTTGCGGCCGCGAAGGTGCCGCCTCCATCGGTTTCGGCGAATGCCGCGGCAAAGTCTTGCCGGCGCATTGAMTQVSPTLSWVVCANSHPDFPLQNLPLGIFSVAGEAPRSGVAIGERIFDLQAALQAGLFDGKAAEAVEAMQGGQLNAFFDLGREARVALRERLLELLREDSPQRDAIQAQGARLLPLAADCQMHLPAKINDYTDFYVGIEHAQNVGKLFRPDNPLLPNYKYVPIGYHGRASTVRPSGTDVRRPQGQTLPPGQAEPIFGPCARLDYELELGIWIGKGNALGEPIAIGDAAEHIGGFCLLNDWSARDIQAWEYQPLGPFLSKSFLTSVSPWVVTAEALEPFRRPQPARPEGDPQPLPYLLDKRDQAGGAFDIELEVLLLTESMREQGLAPHRLTLSNTRYMYWTVAQMVAHHSVNGCQLQAGDLFGSGTLSGPENGQFGSLLEITEGGKKPIELASGEIRKFLEDGDEIILRARCGREGAASIGFGECRGKVLPAHPGPT0001610_410DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_STYRENE_OXIDE_DEGRADATION,PGPT0001610-fahA-K01555NANA
D1-35_01324636nagLMaleylpyruvate isomeraseATGGAGCTTTACACCTATTACCGTTCCACGTCGTCTTACCGGGTGCGCATCGCGCTGGCGCTCAAGGGCCTGGATTACCGGGCCCTGCCGGTCAACCTGATCGCGCCGCCCGGGGGCGAACATCGCCAGCCGGCCTACCTGGGGATCAATCCCCAGGGGCGGGTACCCGCGCTGCGTACCGATGAGGGCGCTTTGCTGGTCCAGTCTCCGGCGATCATCGAATACCTGGAGGAACGTTATCCACAGGTGCCGTTGCTCAGCCGTGACCCCGTGCTTCGCGCACATGAGCGTGGCGTGGCCGCACTGATCGGCTGCGACATCCATCCACTGCACAATGTCAGCGTGCTCAACAAGCTCAGGCAGTGGGGCCACGACGAAGCACAGGTGACGGAGTGGATCGGGCACTGGATCAGCCAAGGGCTGGCAGCGGTGGAGCAGCTGATTGGCGAAGACGGCTATTGTTTCGGCGCGGCGCCAGGCCTGGCGGACGTTTACCTGATCCCGCAGCTGTATGCGGCCGAGCGCTTCAATGTGTCGTTGCAGGGGTATCCACGAATCCGCCGGGTGGCAGCGTTGGCGGCAGCCCATGCGGCGTTCCAGCAAGCGCATCCGGCGAGTCAGCCTGATACTCCCTGAMELYTYYRSTSSYRVRIALALKGLDYRALPVNLIAPPGGEHRQPAYLGINPQGRVPALRTDEGALLVQSPAIIEYLEERYPQVPLLSRDPVLRAHERGVAALIGCDIHPLHNVSVLNKLRQWGHDEAQVTEWIGHWISQGLAAVEQLIGEDGYCFGAAPGLADVYLIPQLYAAERFNVSLQGYPRIRRVAALAAAHAAFQQAHPASQPDTPPGPT0006040_900DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_STYRENE_OXIDE_DEGRADATION,PGPT0006040-maiA|GSTZ1-K01800NANA
D1-35_01325804hypothetical proteinATGAAACCGCGCCAAGCCTTTTTTGACTGTCTGCACCGCTCGCCACCCGCACTGCTCGAAGCAGCCCTGTGGATCGCAGCCGAGCATGATCGTGAAGTGGACGTGCCAGCGTTATTGAAGGATTTCAGGGAGCTGCAGCAGAAAGTCAGCCACGGCCTGCCGATGCTGCCTGTCAGCGAATTGGGCCAGCCCCTGCTTCGGCGCCTGAATGATCTGGGTTTCGCCCAGGACGACGCTACGCCGCTACGGCCTGGCGCGGCGCTGCTGGACAAGGTCCTGGTCCGCAAGCGAGGGCAACCGCTGGCCTTGGGCCTGATAGCCCTGGAACTGGCCAAGGGCCTGGAAATCCCGATGACCGGCGTCAATTTCCCCGGCCATTTCCTGCTGCGCGTACCTGGCGCGGACCACCTGCTCGACCCCTGCGGCGGTCGCCGCTTGTACCCCAATGACTGCCGGGACTTGCTGCATCGCCAATACGGCGCCAACCTGCCGCTCAAGGCCGAGCACATGGTCTGCGCCGAGCCGATGCAGATGCTCCAGCGGCTGTCGCGTAATCTCAGGCAATTACATCTGGCCAACGACGACTACATCGCCGCGCTGGTCGATGCCGAACGGGTGCTGGAACTGGGTAACGCCAGCGCCGCCGACTACCTGGCCCGCGCCAGCCTCTACCAGCGACTCGATTGCCCCAACGCCGAACGTTTCGATCTCGAACATGCATTGATGCTCAGTGATGACCCGATCCAGCGGATCCGGCTGACCGAGCGGCTGGGGCATCTGCCGCCAAATACGATTGTGCATTGAMKPRQAFFDCLHRSPPALLEAALWIAAEHDREVDVPALLKDFRELQQKVSHGLPMLPVSELGQPLLRRLNDLGFAQDDATPLRPGAALLDKVLVRKRGQPLALGLIALELAKGLEIPMTGVNFPGHFLLRVPGADHLLDPCGGRRLYPNDCRDLLHRQYGANLPLKAEHMVCAEPMQMLQRLSRNLRQLHLANDDYIAALVDAERVLELGNASAADYLARASLYQRLDCPNAERFDLEHALMLSDDPIQRIRLTERLGHLPPNTIVHNANANANANA
D1-35_013261020ldhLeucine dehydrogenaseATGTTTGCTCTCATGCAAAGCTCCCGCCTTGAATCGCTGCACTTGAGCGTAGACCCGGCAACCGGGTTGAAGGCGGTGATTGCCATTCATTGCAGCCGTCCTGGGCCTGCACTGGGTGGCTGTCGTTATCTTTCCTACCCCGACGACGAAAGTGCCGTGGCCGACGCCGTGCGCCTGGCCCAGGGCATGAGCTACAAGGCTGCGCTGGCCGGCCTGCCCGTGGGCGGGGGCGTGGCGGTCATCATGCGTCCGGCACACGTCGAGAGCCGTGCGGCATTGTTCGAAGCCTTCGGCCGCTGCATCGAGCAGCTGGACGGTCGCTACATTACCGCCATCGACAGCGGCACATCGGTGGCGGACATGGACTGTATCGCCCAGCAGACTCGTCATGTCACCAGCACCACTGCCGCGGGAGACCCGGCGCCCCATGCGGCAATGGGGGTGTTCGCCGGGATCCGCGCCACGGCCATGGCTCGCCTGGGTAGCGACAACCTGGAAAGCCTGCGGGTGGCCATCCAAGGCTTGGGCAATGTCGGTTATGCGCTGGCCGAGCAACTGCATGCGGCGGGCGCCGAACTGCTGGTCAGCGATATCGACCCCGGTAAAGTGCAGCTGGCGATGGAGCAACTGGGCGCCCATCCCATCGCCAACGACGCACTGCTCAGTACCCCCTGCGACATCCTGGCTCCCTGCGGCCTCGGCGGGGTACTCAACAGCCAGAGCGTGGCGCAACTGCGCTGCTCGGCCGTTGCCGGCTCGGCGCATAATCAGTTGAGCAACCTGCAAGTCGCCGACCAGTTGGAAAGACGTGGGATCCTCTATGCACCGGACTACGTGATCAATTCCGGCGGCCTGATCTATGTTGCCTTGAAACACCGCGGCGAAGAGCTGCCGACCATCACGGCGCATCTCGCCAAGATCGGTGCCCGGCTCACGGAAGTCTTCGCCCACGCCCAGGCCGAAAAACGCTCACCGGCCAGGGTGGCTGACGAGCTCGCGGAGCGTTTGTTGTACCGATAAMFALMQSSRLESLHLSVDPATGLKAVIAIHCSRPGPALGGCRYLSYPDDESAVADAVRLAQGMSYKAALAGLPVGGGVAVIMRPAHVESRAALFEAFGRCIEQLDGRYITAIDSGTSVADMDCIAQQTRHVTSTTAAGDPAPHAAMGVFAGIRATAMARLGSDNLESLRVAIQGLGNVGYALAEQLHAAGAELLVSDIDPGKVQLAMEQLGAHPIANDALLSTPCDILAPCGLGGVLNSQSVAQLRCSAVAGSAHNQLSNLQVADQLERRGILYAPDYVINSGGLIYVALKHRGEELPTITAHLAKIGARLTEVFAHAQAEKRSPARVADELAERLLYRPGPT0020320_1153DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_LEUCINE_DEGRADATION,PGPT0020320-ldh|leu-K00263NANA
D1-35_01327261hypothetical proteinATGGCCGTCGAAGTGGTATACCGCAGCAGCCGAGATCTGGAGCGATTGTTCATGGATAAAGCCGAAGCTGACCGTCATGACAAAATGCTGGAACTCGCTGAATTGCTCGCCGAAGTGTTGCAAAAAGCCGTTCCATCGCTGAGCGAACAACAGGTGGAGGAAGCCGGCATCTACATGGCGAAGAATCGCGATGTGTTCGCCAAGGCATTCAAGAGCCAGCCAGACGCGTTGTCCGAACTGCTCAATCCGTCAGACGAATGAMAVEVVYRSSRDLERLFMDKAEADRHDKMLELAELLAEVLQKAVPSLSEQQVEEAGIYMAKNRDVFAKAFKSQPDALSELLNPSDENANANANANA
D1-35_01328501psiEProtein PsiEGTGAAAATCAACTGGGCCGAGAACCTGCGCCAGAATGTCCACCAGCTGGCCGAATCCCTGGGCAACCTGTTCGTCGAGACCTTCCACTACCTGGCGCTGTTCGCCATCGGGGCGGTGACGGCATGGGCTGCCGTGATGGAGTTCCTGCAGATGATCGAGGAGGGTCATATCAAGATCGACGACATCCTCCTGCTGTTCATCTACCTGGAGTTGGGGGCGATGGTCGGGATTTACTTCAAGACCAATCACATGCCGGTGCGATTTCTCATCTACGTGGCGATCACCGCGTTGACGCGCCTGCTGATTTCCAACGTCTCGCATCACAGCCCGCCGGACCTGGGCATCATCTACTTGTGCGGCGGCATCCTGCTGCTGGCGTTCGCGATCCTGGTGGTGCGCTACGCCTCGTCGCAGTTTCCCTCGGTGAAGATCGAACACCCGCACCGTAAGGTCGGCGCGGGTTCGAGCGAGCATGCCGAAGTGGAGAAGGGCGAAATCTAGMKINWAENLRQNVHQLAESLGNLFVETFHYLALFAIGAVTAWAAVMEFLQMIEEGHIKIDDILLLFIYLELGAMVGIYFKTNHMPVRFLIYVAITALTRLLISNVSHHSPPDLGIIYLCGGILLLAFAILVVRYASSQFPSVKIEHPHRKVGAGSSEHAEVEKGEIPGPT0015090_21DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-PHOSPHATE_STARVATION_RESPONSE,PGPT0015090-psiE|yjbA-K13256NANA
D1-35_01329318hypothetical proteinATGGACAACCCTTTTCAGATCATTACGGACGCCTTCGCGCCGCAATACCAGATCAACCTGAGCATCCAAGGCCTGGACGGCAGCATCATGCTGACCCTGTCCAAGGCCGGGCGCGTCGTTGCCAAGCGCATGATCAGCGCGCAGCAACGCAACGACCCGGAACGGCTCAAGCGCCTGGTGCAGAGTATTCAATTCGGCATTGCCATCGAGCAGGGCCACAGCGCCGTGGCCATCCTCGAAGCCATGACCGGCGGCGACAACATCAAGGTGCCGCCACCGCAGGTACAGGGCCAGGCGTCCAGCGCCGCCGGTCTCTAGMDNPFQIITDAFAPQYQINLSIQGLDGSIMLTLSKAGRVVAKRMISAQQRNDPERLKRLVQSIQFGIAIEQGHSAVAILEAMTGGDNIKVPPPQVQGQASSAAGLNANANANANA
D1-35_01330411hypothetical proteinATGCAAATCCAAGTCAACAGCGATAACCATATTCAAAGCAGCATCCGACTGGAGGAGTGGGTACGTACTACCATTGAAAGCACGCTCGAACGTTACGAAGAAGACCTGACACGGATCGAGGTTCATTTGGGGGATGAGAACGGCGACAAGCCCGGTCCCCACGATTTGCGTTGCCAACTTGAGGCTCGGCCAAAAGGCCACCAGCCAATTTCCGTAACGCACAAGGCCGAGTCGCTGGAACTTGCGATCGAAGGCGCAGCCACCAAGCTGGAACATAAACTGGAGCATCTGTTCGGCAAACTGCGCGGCAAGCGCGCCGCCACCAACGGCCAGACCGAGTCGATTGCACTGGCTGATGCCATGCTGGAAGAAGAATTCCTCGAGAACGAACGGGCTGCGCTTAACGGCTGAMQIQVNSDNHIQSSIRLEEWVRTTIESTLERYEEDLTRIEVHLGDENGDKPGPHDLRCQLEARPKGHQPISVTHKAESLELAIEGAATKLEHKLEHLFGKLRGKRAATNGQTESIALADAMLEEEFLENERAALNGNANANANANA
D1-35_013312340fecA_1COG4772Fe(3+) dicitrate transport protein FecAATGCCGCAGCAACCCACCCGTCTCACCCCGCTCGCTCGCGCCGCGCGTCAACTGTTGCTGGGGGCCAGCTTGAGTTTCGTTGCACTGCCCGCCGTGCTGGCTGCAGAGGCCAAGGCCTATCACATTGCGCCGTCATCGCTGGAAAACGCCCTTAATCAATTCGGCCGCGAAGCCGGCGTGTTGATTTCCTTCGGCTCGCAACTGACCGGCGGCCTGCAGAGTCGCGGCCTGGAAGGCAGCTACAGCCCCGAGCAAGGCTTGAACGCGCTGCTTGAAGGCACAGGCCTGCAAGCTCGGCCCGAGGGGGACAATGCTTTCAGCCTGCAACCGGTCAGCAGCACTGCACTGGACATCGGCACCACGACCGTGGTCGGTGACTGGCTCGGCGACGCAGCGCCGACCAACGTCTTCGAACACCCGGGCGCTCGGGACGTTATCCGCCGCGATGAGTTCGAACGCCAGGGCGCGACGCAGGCCCGGGACGTGCTCAATCGCATTCCCGGCGTCAACGCACCGGAAAACAACGGCACCGGCAGTCATGACATGGCGCTGAATTTCGGTATACGTGGCCTCAATCCGCGCCTGGCTTCCCGCTCGACGGTACTGATGGATGGCATTCCAGTGCCTTTCGCGCCGTATGGCCAACCGCAGCTGTCCTTTGCTCCCGTGAGCATGGGCAACATGGACGCGGTGGATGTCGTGCGCGGGGGCGGCGCGGTGCGCTACGGCCCGCAAAACGTCGGCGGCGTGGTCAACTTCGTGACCCGGGCAATACCCGATGCACCGACCGTCAAAGGCGGTTTCCAGACCGAGGCGAGCCCGTCCTCCAGCCACGATGGCTTCAAGACGTCCGCCAATCTGCTGGCCGGCGGCACCGCCGATAACGGCCTGGGCGGCGCCCTGTTATATTCCGGCACCCGCGGCGGCGACTGGCGTGAGCACAGCGACACGCAGATCGACGACCTGATCCTCAAGGGCAACTATCAACTGGACGAGGCCAACAGCTTCAACGCCATGGCCCAGTACTACGAAGGCGAGGCCGACATGCCCGGCGGCCTGAACGTGGCCGACTACAACGCCGACCCGTACCAGTCCACTCGTCAGAAGGACCGATTCTGGGGCCGTCGTACCCTGGTCAATTTCGGCTATCGCTACCAGCAGGACCGGCGAGAATTCACCGCCAACACGTTTTTCACCAAGACCTTGCGCAGCGGCTATCTGGACCAGGGCTCCTTCCTGTCCCTGTCGCCTCGTGAATATTGGGTACGCGGCCTGGAAACCCGTTTTGCCCAAGGCTTCGACCTCGGCCCGACCAGCCACGAGGTCGGCGTCGGCTATCGCTATATCAACGAAGCCGGTCATGAACTGCGTTATCGCACACCGATCGCCAGCAACGAGCTGCCGACCACCTCCAGCCGCAACGACCGCGATACCCGCGGCGGAACCGAAGCCAATGCATTTTTCATCGATGACCGGATCGATATCGGCAAATGGACGATCACGCCCGGCATTCGCTACGAAATGATCGAGTCGCAGCAAACCAACAACCTGACCAATGTGAAGTACAAGGGCGACTACAACACCGCCCTGCCAGCGCTGAATGTGCTGTACCACCTGACCGACGAATGGAATCTGTATGCCAACACCGAAGGCTCGTTCGGCAGCGTGCAGTACAGCCAGATGCCCAACCGCGTCAGCAGCGGTGAAGTGAAACCGGAGAAGGCTCGCACCTGGGAGCTTGGCACCCGCTATGACAATGGCAACCTGCGGGCAGAGATCGGCGCCTTCCTGATCAACTTCGACAACCAGTACGAAAGCAACCAGACCAACGATTCGGTGATCGCCCGGGGCGAGACCCGCCACCAGGGCATCGAAACCAGCGTCAACTATGCCCTCGAAGGCCTGAGCCCGGCGCTGGCCGGTTTTGACGTGTACGCCACTTACGCCTACGTCGACGCCACCATCCGCGAAGACGGGCCGAACAAGGGCAACCGCGTGCCCTTCTCCTCCAGGCACAAAGGTACGCTGGGCGTAGGTTACACGGATGGGCCGTGGAAGCTGAACCTGGACAGCACCTACCAGAGCGCGCAGTTTGCCGACAACGCCAATACCCGCGCGGAAAGCGCCGATGGCAGCACCGGCAATATCCCTGGCTACATGCTGTTCAGCAGCCGCGCCGCTTATGATTTCGGCCCGCAACTGTCGGACCTGAACGTCGCGGTGGGCGTGAAGAACATCTTCAATACCCAATACTTCACCCGCTCGTTTGATGACAACAATCGGGGCAAATACGTAGGGGAACCGCGCACGTTGTATGTGCAGACGTCCGTGGCGTTCTGAMPQQPTRLTPLARAARQLLLGASLSFVALPAVLAAEAKAYHIAPSSLENALNQFGREAGVLISFGSQLTGGLQSRGLEGSYSPEQGLNALLEGTGLQARPEGDNAFSLQPVSSTALDIGTTTVVGDWLGDAAPTNVFEHPGARDVIRRDEFERQGATQARDVLNRIPGVNAPENNGTGSHDMALNFGIRGLNPRLASRSTVLMDGIPVPFAPYGQPQLSFAPVSMGNMDAVDVVRGGGAVRYGPQNVGGVVNFVTRAIPDAPTVKGGFQTEASPSSSHDGFKTSANLLAGGTADNGLGGALLYSGTRGGDWREHSDTQIDDLILKGNYQLDEANSFNAMAQYYEGEADMPGGLNVADYNADPYQSTRQKDRFWGRRTLVNFGYRYQQDRREFTANTFFTKTLRSGYLDQGSFLSLSPREYWVRGLETRFAQGFDLGPTSHEVGVGYRYINEAGHELRYRTPIASNELPTTSSRNDRDTRGGTEANAFFIDDRIDIGKWTITPGIRYEMIESQQTNNLTNVKYKGDYNTALPALNVLYHLTDEWNLYANTEGSFGSVQYSQMPNRVSSGEVKPEKARTWELGTRYDNGNLRAEIGAFLINFDNQYESNQTNDSVIARGETRHQGIETSVNYALEGLSPALAGFDVYATYAYVDATIREDGPNKGNRVPFSSRHKGTLGVGYTDGPWKLNLDSTYQSAQFADNANTRAESADGSTGNIPGYMLFSSRAAYDFGPQLSDLNVAVGVKNIFNTQYFTRSFDDNNRGKYVGEPRTLYVQTSVAFPGPT0003795_374DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_CITRATE_TRANSPORT,PGPT0003795-fecA-K16091NANA
D1-35_01332948fecR_2COG3712Protein FecRATGCCCAGCGCGCCGAACGTCAGCGCGCAAGTCGCCGAGCAGGCGGTGCATTGGCTGCTGGAAATGCAGCAAGGGCCACTCGATGCGCGCCAGCAGCAAGCCTGGGAACAGTGGCTCAATGCACACAGCGAACATCGCCGCGCCTGGGAGCATATCCAGCGGGTCAACCAGCGGCTGCGCAATGTGTCTTCTCCGTTGGCCCATGCGACGCTCAACACACCGAAGTCGGCAACGCGGCGCCGGACCCTCAAGATGTTGCTGCTGCTGGGTGCCGGCTCGGCCGCGACCTGGGGCCTGCGTGAACGCCAGTTGTTGCCGCCATTGCTCGCCGATTACCGCAGCCCGGTGGGCGAGCGGCGTCGCCTGGCGCTGGATGACGGCAGCCAGCTGCAGCTCAACAGCGGCAGCGCGGTCGATATTCGCTTCGACGCTCAGCGCCGCCTGATCCGCCTGCTGGAAGGCGAACTGCTATTGACCGCAGCCCAGGACCCACGCCCCCTGCAGGTGCTGACCGCCCATGGCCTGCTGGAAAGCCACGACGCCCGTTTCAACGTGCGTGAGTATGCAGACCACACCCAAGTCGCAGTGTTTGCCGGCCAGGTGGACATTCGCGGCAGGCACGGCACGGCTTTTCTGCTGGGGGCTTCCCGACAAGCGTCCCTTGGCATCAACGGCACCGGTCCCGCCACGGCGCTTGACGCCAACAGCGGTGCCTGGACGGAGGGCATGCTGGTCGCCGCGCACATGCGCCTGGCGGATTTCCTTGAGGAACTGGGCCGCTACCGACGCGGCCAGCTGCACTGCGACGAGGCGGTCGCCAACCTTCTGGTCTCCGGAACTTATCCGCTGGACAACGGCGAGCGAATCCTTGATCTGCTGGAAATCAGCCTGCCGGTAAAAGTGCGGCGTTTCACCCGCTATTGGGTCACGGTCGAAGCTCGCGCTTGAMPSAPNVSAQVAEQAVHWLLEMQQGPLDARQQQAWEQWLNAHSEHRRAWEHIQRVNQRLRNVSSPLAHATLNTPKSATRRRTLKMLLLLGAGSAATWGLRERQLLPPLLADYRSPVGERRRLALDDGSQLQLNSGSAVDIRFDAQRRLIRLLEGELLLTAAQDPRPLQVLTAHGLLESHDARFNVREYADHTQVAVFAGQVDIRGRHGTAFLLGASRQASLGINGTGPATALDANSGAWTEGMLVAAHMRLADFLEELGRYRRGQLHCDEAVANLLVSGTYPLDNGERILDLLEISLPVKVRRFTRYWVTVEARAPGPT0003910_5771DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003910-prhR|fecR-K07165NANA
D1-35_01333369fecI_2COG1595putative RNA polymerase sigma factor FecIATGCGCGTGCTGACCGCGCGCGATCCGCAGCCGGTCCTGGAGCCCCGTGCATTTCTCACCACCATCGCCAAGCGCGTATTGTTCAACCATTACCGACGCCAGGATCTCGAACGCGCCTACCTCGACACCCTCGCCCAGATGCCGGAGCAAGTGGCGCCGTCGGAAGAGGAGCGAGCGATCATCCTGCAGACCCTGCTGGAACTGGACCAACTGCTCGATGGACTGCCACGTGCGGTCAAAAAGGCGTTCCTGCTGGCGCAGATCGATGGCCTGACCTACAACGAAATCGCCCATGAACTGGGTATTTCCCTGCCGACGGTCAAGCGCCACCTGAACAGGGCAGCGATGCGCTGCTACTTCGCCCTGTGAMRVLTARDPQPVLEPRAFLTTIAKRVLFNHYRRQDLERAYLDTLAQMPEQVAPSEEERAIILQTLLELDQLLDGLPRAVKKAFLLAQIDGLTYNEIAHELGISLPTVKRHLNRAAMRCYFALPGPT0003900_392DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003900-prhI|fecI-K23514NANA
D1-35_01334894rhaS_5HTH-type transcriptional activator RhaSATGCTGGAGAAACCGATCATGACCAGTCTGCAAACCCTGCAAGTCTTCCAAGCCCTCAACAGCTCGCCCAATGCTCGCCTGGAGCACAGCGCCGAGCTCGGTGACGGCATGGCGGCGGCTTTGTGGAGCAACCATCACGACGCCCGTGACTACGAGGCGCCAACCCACCATACGCTGTCGTGCTACATCGCCGGCGGCACCGGCACTTTTCGCCGCGAGCGTCCCGACACCACGGGGGCGCCCGGCAAACTCTGCGTGTTGCCGGCCGGACATGAATCGGCCTGGGTCATCAACGGCGACATTCGCCTCGCCCACCTGTATTTCAGCCCCGAGCAATTCGCCCTGGGTTGCGTCACGCTGCTGGATCGCGAACCGCGGCAAGTGCAATTGCACGAGGCAACCTTTCTCGATGACCCGCGGCAGGCACAGCGCTTTCGACAGTTGATCGAGCTGGACTGGGCCGAGCCGGCTGAACGCCTGCTCGGCACCAGCCTCGCCCATGAACTGCTCAGCCACCTTCTGCTCAACCAGGTTGGCCAACGCCAGGGCCTGCGCCTGAAGGGTGGGCTGGCCGCGCACCAGCGACGCTTGCTGGTGGATTACATCGACGCTCAATTGGCCGAAGCCATCAGCCTTGGTCAACTCGCTGCGCTGTGTGCCCTGTCCGAATACCATTTCGCCCGGATGTTCCGCGAAACCTTCGGCCTGCCACCGCACCAGTACGTCCTGGCGCGGCGTCTCACCCGGGCGCGGCACTTACTGCGCCATACCCTACAACCGTTGGGCGAGGTAGCTCTGGCCTGCGGATTTGCCAGCGCCAGCCATTTCACCAACCGTTTTCGCCAGGCCCTGGGGGCAGCTCCCGGGGAGTATCGGCAGGCATTTTTGCGCTAGMLEKPIMTSLQTLQVFQALNSSPNARLEHSAELGDGMAAALWSNHHDARDYEAPTHHTLSCYIAGGTGTFRRERPDTTGAPGKLCVLPAGHESAWVINGDIRLAHLYFSPEQFALGCVTLLDREPRQVQLHEATFLDDPRQAQRFRQLIELDWAEPAERLLGTSLAHELLSHLLLNQVGQRQGLRLKGGLAAHQRRLLVDYIDAQLAEAISLGQLAALCALSEYHFARMFRETFGLPPHQYVLARRLTRARHLLRHTLQPLGEVALACGFASASHFTNRFRQALGAAPGEYRQAFLRNANANANANA
D1-35_01335900hypothetical proteinATGAACCTTTCGTTGTACCTGCTCACCGTGCTCATCTGGGGGACCACCTGGATCGCCCTGAAACTGCAGTTGGGCGTCGTCGCCATTCCGGTGTCGATTGTCTATCGCTTCGGCCTCGCCGCGCTGATCCTGTTCGTGATGCTCCTGCTCAGCCGCCGCCTTCAGGTCATGAACCGGCGCGGTCATTTGATCTGCGTCGCCCAGGGCCTGTGCCTGTTCTGCATCAACTTCATGTGTTTCCTGACCGCCAGCCAATGGATTCCCAGCGGCCTGATCGCCGTGGTGTTTTCCACCGCTACGCTCTGGAACGCCTTGAATGCGCGGGTGTTCTTCGGTCAGCGGATCGCCCGAAACGTCTTGCTCGGCGGTGCCCTTGGGCTGCTCGGGCTGGCGTTGTTGTTCTGGCCGGAGCTGGCCGGGCACCGCGCAAGTCCGCAAACGCTGCTCGGGTTGGCGCTGGCGCTGTTGGGCACCTTGTGTTTCTCGGCGGGCAACATGCTGTCGAGCCTGCAACAGAAGGCCGGCCTCAAGCCGTTGACCACCAACGCCTGGGGCATGGCCTACGGGGCCGCGATGCTGTCGGTGTGGTGCTTGTTCCAGGGCATTCCGTTCGAGATGGAATGGAATACGCGCTACGTCGGCTCGCTGTTGTACCTGGTGGTCCCGGGTTCGGTCATCGGCTTTACCGCGTACCTGACGCTGGTAGGACGCATGGGGCCGGAGCGGGCGGCGTATTGCACCGTGCTGTTCCCGGTAGTGGCCTTGAATGTCTCGGCTGTTGTCGAGGGTTATCAGTGGACGGCACCGGCGCTGGTCGGACTGGTGCTGGTGATGCTGGGCAACGTGTTGGTGTTTCGCAAGCCGCGACCCGTGACCGCGAAAGTCGTGCTGGCTCGTTAAMNLSLYLLTVLIWGTTWIALKLQLGVVAIPVSIVYRFGLAALILFVMLLLSRRLQVMNRRGHLICVAQGLCLFCINFMCFLTASQWIPSGLIAVVFSTATLWNALNARVFFGQRIARNVLLGGALGLLGLALLFWPELAGHRASPQTLLGLALALLGTLCFSAGNMLSSLQQKAGLKPLTTNAWGMAYGAAMLSVWCLFQGIPFEMEWNTRYVGSLLYLVVPGSVIGFTAYLTLVGRMGPERAAYCTVLFPVVALNVSAVVEGYQWTAPALVGLVLVMLGNVLVFRKPRPVTAKVVLARNANANANANA
D1-35_01336972ghrB_1COG1052Glyoxylate/hydroxypyruvate reductase BATGAAAAAAACCGTACTCGCCTTCAGCCGTATCACGCCCCCCATGATCGAGCGCCTGCGCCAGGACTTCGACGTGATCGTGCCCAACCCGTCGAACGGCGACATCAATGCGCAGTTCAACGAAGCCTTGCCCCATGTCCATGGGCTGATTGGCGTTGGCCGCAAGCTCGGCCGCGAGCAACTGCAGCACGCCACGAAGCTGCAAGTAGTCTCCAGCGTGTCGGTGGGCTATGACAATTACGACCTGGCGTACTTCAATGAACGCGGGATCATGCTCACCAACACTCCCGACGTGCTCACCGAAAGCACCGCCGACCTGGCGTTCGCCCTGGTGATGAGCAGTGCCCGGCGCGTCGCCGAACTGGACGCCTGGACCAAGGCCGGACAGTGGCAGGCATCTGTCGGGCCACAGCTGTTCGGCAGCGATGTACATGGCAAGACCCTGGGCATCGTCGGCATGGGCAATATCGGCGCGGCTGTTGCCCGACGTGGTCGGCTGGGGTTCAACATGCCGATCCTCTACAGCGGCAACAGTCGCAAGCCCGAACTGGAGAACCAGTTGGGCGCACAGTTCCGCGAACTGGACCAGTTGCTGGCCGAAGCGGACTTCGTCTGCCTGGTGGTGCCGTTGAGCGAGAAAACCCGCCACCTGATCGGCCAGCGCGAGCTGTCCCTGATGAAACCGAGCGCCATCCTGGTGAACATTTCCCGCGGTCCGGTGGTGGATGAGCCGGCGTTGATCGAAGCCTTGCAGAACAACCGCATCCGCGGCGCCGGGCTGGATGTCTACGAAAAGGAACCGCTGGCCGAGTCGCCGCTGTTCCAGTTGAAAAACGCCGTCACCTTGCCGCATATCGGTTCGGCTACCCATGAAACCCGTGAGGCCATGGCCAATCTGGCCGTGGAAAACCTGCGCAGCGCCTTGCTGGGCGAACGACCGAAGAACCTGGTCAACCCGCAAGTCTGGAAATAAMKKTVLAFSRITPPMIERLRQDFDVIVPNPSNGDINAQFNEALPHVHGLIGVGRKLGREQLQHATKLQVVSSVSVGYDNYDLAYFNERGIMLTNTPDVLTESTADLAFALVMSSARRVAELDAWTKAGQWQASVGPQLFGSDVHGKTLGIVGMGNIGAAVARRGRLGFNMPILYSGNSRKPELENQLGAQFRELDQLLAEADFVCLVVPLSEKTRHLIGQRELSLMKPSAILVNISRGPVVDEPALIEALQNNRIRGAGLDVYEKEPLAESPLFQLKNAVTLPHIGSATHETREAMANLAVENLRSALLGERPKNLVNPQVWKPGPT0001310_732DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-METHYLGLYOXAL_DETOXIFICATION,PGPT0001310-ghrB-K00090NANA
D1-35_01337669hypothetical proteinATGTGGGCGAATGATGGCGGCCAGGTGATTGTCCTGGTCGAGGCCTTCCTGCCCAATGGCCTCGGCCTGCCGGTGGCGCAACGCGAGCACGCCGAACGGCGCTCGGCAGTAGTGCGCAGCGGCGTCAGCGAGGCCCGCGTGGCGATCACCTTCGCCGCCTATAATCCCGGTCCTTGCCATAATCTGGACGCCGATAACCTGTGCCGCATCTATGAGCGTCGCCCCCTGGTGTGCCGCATCTATCCCATGGAAATCAACCCGCATATTCCTCTCGATACCGCCGCCAAGGATTGCCCGCCGGAGTCGTGGGAAACGGGGCCGCAGCTGATCGTCGGCGGTCAGTTGGTAGACCAGGAACTGGCCCGGTTGATCGAGCGCTCCCGCCAGGCCGACCGTGAAGAGATCGCCATCAAGGAACGCATCTGCGTGTCCCTGGGCATCCACACCACCGCACTGAAGGGCGACGGATTTACCGCGTACCTGCCGAACATGGCGGCGTTTGCCGCCGCCATCGATCAGGCTCGCGCGCAGCCGATGGGCCAAGAGGCAGGTGAATGGCAGTTCCACTTGTCCGGTGATGACATTGCTCGCCAGGTCACCGACAGCGGCGCAAGTGTTGTCACCGAGGAGCCGGTCAACTACGCGTTTATTTCGCTGCGGGCCGCCTGAMWANDGGQVIVLVEAFLPNGLGLPVAQREHAERRSAVVRSGVSEARVAITFAAYNPGPCHNLDADNLCRIYERRPLVCRIYPMEINPHIPLDTAAKDCPPESWETGPQLIVGGQLVDQELARLIERSRQADREEIAIKERICVSLGIHTTALKGDGFTAYLPNMAAFAAAIDQARAQPMGQEAGEWQFHLSGDDIARQVTDSGASVVTEEPVNYAFISLRAANANANANANA
D1-35_01338327hypothetical proteinATGAAAGTACCCTGCCTGATTTTCTTCGCCCTCAGCGCCCTGGCTGCACAGGCCCATGCCTCCAGCTCCGATGCCTGGGCTGCCTATGACAAGAAAGTCCTCGCCAGTTGCATCAAGGCCAGCGGTTTGAAAAATGCCGAACCGGTCGGCAGCCCCGCGCAATTCGACGACCGGGTGGGCTACACCGCGCTGTTGCTGCAAGGCCAATATCCGCAAAAGCACATGAAAGGCGCGACCGGCACCGAGCTGTGCCTCTACCGCAAGAAAACCAAGAGCGCGTTCGTGACCGAATGGGACTCGATCCGCCCGACCGAAACCTCCCGATGAMKVPCLIFFALSALAAQAHASSSDAWAAYDKKVLASCIKASGLKNAEPVGSPAQFDDRVGYTALLLQGQYPQKHMKGATGTELCLYRKKTKSAFVTEWDSIRPTETSRNANANANANA
D1-35_01339903cheV_3COG0784Chemotaxis protein CheVATGTCTTCCAACAAAGCCCGCGCAGATTCCCTTTCGCTTCTGCTGTTTACCTTGCGCAGCGGCAAGCTGATGGCAATCAACCTGCTCAAGGTCAGCGAAATCATTCCCTGCCCGCCGCTGACCAAACTGCCGGAGTCGCACCCACACGTAAAAGGCATCGCCACGTTGCGCGGAACGTCGTTGTCGGTGATCGACCTCAGCCGCGCCATTGGCGAGCGGCCGCTGGAAGACCCGGACGGCGGGTGCCTGATCGTCACCGACGTCAGTCGCTCCAAGCAGGGCCTGCACGTGCAGGCGGTGAGCAAGATCGTGCATTGCCTGACTACCGACATCAAGCCGCCGCCCTACGGCTCCGGCGGCGTGCGTGCGTTCATCACTGGCGTGACCTCGGTGGACGGCACGCTGGTGCAGGTGCTGGACATCGAAAAAGTCATCCACGGCATCGCCCCGGCGCAGATCGAGACGGCGCCCACCGAACTGAGCATGGAAGACGCCGAAGTCCTCGGCAACGCCCGGATCCTGGTGGTCGATGACAGCCAGGTGGCGCTCCAGCAATCGGTGCATACCCTGCGCAACCTGGGCCTGCAATGCCACACCGCCCGCAGCGCCAAGGAAGCCATTGACTGCCTGCTTGAGCTGCAAGGCACGGCGCAGGAAATAAACCTGATCGTTTCCGACATCGAAATGTCCGAGATGGACGGTTACGCCCTCACCCGGACCCTGCGCGAAACACCCGACTTCGCTCACCTCTACGTGTTGTTGCACACCTCGCTCGACAGCGCGATGAACAGTGAGAAAGCGCGGCTGGCGGGCGCCAACGGGGTGCTGACCAAGTTCTCCTCGCCGGAACTGACCAAATGCCTGATCACGGCGGCCAAGGCCGTCGCCGAACAAGGTCGCTGAMSSNKARADSLSLLLFTLRSGKLMAINLLKVSEIIPCPPLTKLPESHPHVKGIATLRGTSLSVIDLSRAIGERPLEDPDGGCLIVTDVSRSKQGLHVQAVSKIVHCLTTDIKPPPYGSGGVRAFITGVTSVDGTLVQVLDIEKVIHGIAPAQIETAPTELSMEDAEVLGNARILVVDDSQVALQQSVHTLRNLGLQCHTARSAKEAIDCLLELQGTAQEINLIVSDIEMSEMDGYALTRTLRETPDFAHLYVLLHTSLDSAMNSEKARLAGANGVLTKFSSPELTKCLITAAKAVAEQGRPGPT0015675_1723DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015675-cheV-K03415NANA
D1-35_013401554norR2COG3604Nitric oxide reductase transcription regulator NorR2ATGACCGCAACTTCCTTGCTGACCTCGCTATTGCCGCTGGTGGCCGACCTGTCCCGCGAACTGCCTGAAGGCGAGCGCTATCGGCGCCTGCTCGGAGCCCTGCGCAGCCTGTTGCCTTGCGACGCCGCTGCACTGTTGCGCCTGGACGGCGACTGCCTCGTCCCGCTGGCCGTGGATGGCTTGAGCACCGACACCCTGGGCCGGCGATTCCGGGTCAGTGAGCATCCGCGTTTCGAAGCTTTGCTGGCCAATCCGCAGCCCACTCGCTTCGCCACCGACAGTGACCTGCCCGATCCGTACGATGGATTGGTGGAAGGGCTGGATGAACATCTGGAGGTTCACGATTGCATGGGTTGCCCGCTGTTTGTCGATGAGCAGCCCTGGGGCTTGCTGACCCTGGACTCGCTGGACCCGGAACGCTTCGAACCTATTGACCTGAGCGCCCTGCAAGCCTTCGCCAGCCTCGCCGCCGCCACCGTCAGCGCCGCCGAACGCATCGAGCGCCTGGCGTTGAGGGCCGAGGACGAGCATCGCCGCGCCGAAGTCTACCGTCAGGCCAGCGGCCAGCAGCAGCGCGACATGGTCGGCCAGAGCAAGCCCCATAAACGCCTGGTGGAAGAGATCAAGCTGGTCGGGGGCAGTGACCTGACGGTACTGATCACTGGCGAAACCGGCGTCGGCAAGGAATTGGTCGCCCAGGCCATTCATGCCGCCTCCCACCGTGCCGACCAGCCGCTGATCAGCCTCAATTGCGCGGCGCTGCCTGACACTCTGGTGGAAAGTGAACTCTTCGGCCATGTTCGAGGCGCATTCACCGGTGCCACCCAGGACCGGCGCGGCAAATTCGAGCTGGCGGATGGCGGCACGCTGTTCCTCGACGAGGTGGGCGAACTGTCCCTGACCGTCCAGGCCAAATTGCTTCGCGTGTTGCAAAGCGGCCAGCTGCAACGCCTGGGCTCGGACAAGGAGCACCGCGTCGATGTACGCCTGATTGCGGCGACCAACCGCGACCTCGCCGAGGAAGTGCGCAATGGCCGTTATCGGGCCGACTTCTACCACCGGTTGAGTGTCTACCCGCTGCAAGTGCCCGCGCTGCGTGATCGCGGGCGCGATGTACTGCTGCTCGCCGGCTTTTTCCTGGAACAGAACCGCTCGCGCATGGGCCTTGGCAGCCTGCGCCTGACCAGCGACGCCCAGGCTGCGTTGCTGGCCTACGATTGGCCGGGCAACGTGCGCGAACTGGAACACCTGATCGGTCGCAGCGCGTTGAAGGCATTGGGCAAGCATCCGGTTCGGCCGAAGATTCTAAGCTTGAGCGCCGATGATCTGGATCTGCATCACGTAGTCCCGGAAAATGCTCCGACCAACAGCCTCGCGCCAGCCTCCACGGTGAAGGTTTCCGGTGACTTGCGCCAGGCCACGGAAAATTATCAACGGCAAATGATCAGCGCCTGCCTGGAACGCCATCAACACAACTGGGCCAGCGCTGCCCGGGAACTGGGCCTGGATCGGGCCAACCTGGGGCGGATGGCCAGGCGGCTGGGCCTCAAATAGMTATSLLTSLLPLVADLSRELPEGERYRRLLGALRSLLPCDAAALLRLDGDCLVPLAVDGLSTDTLGRRFRVSEHPRFEALLANPQPTRFATDSDLPDPYDGLVEGLDEHLEVHDCMGCPLFVDEQPWGLLTLDSLDPERFEPIDLSALQAFASLAAATVSAAERIERLALRAEDEHRRAEVYRQASGQQQRDMVGQSKPHKRLVEEIKLVGGSDLTVLITGETGVGKELVAQAIHAASHRADQPLISLNCAALPDTLVESELFGHVRGAFTGATQDRRGKFELADGGTLFLDEVGELSLTVQAKLLRVLQSGQLQRLGSDKEHRVDVRLIAATNRDLAEEVRNGRYRADFYHRLSVYPLQVPALRDRGRDVLLLAGFFLEQNRSRMGLGSLRLTSDAQAALLAYDWPGNVRELEHLIGRSALKALGKHPVRPKILSLSADDLDLHHVVPENAPTNSLAPASTVKVSGDLRQATENYQRQMISACLERHQHNWASAARELGLDRANLGRMARRLGLKPGPT0000375_234DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-ANAEROBIC_SIGNALLING,PGPT0000375-norR-K12266NANA
D1-35_013411182hmp_1FlavohemoproteinATGCTGAGTCGAGAACAACGCGCCATCATCCGTTCCACTGTCCCCTTGCTTGAAAGCGGTGGGGAAGCGCTGATCACTCACTTCTACCGCATGATGCTGTCGGAATACCCGCAAGTGCGCCCGCTGTTCAACCAGGCTCACCAGGCCAGCGGCGATCAGCCGCGTGCGCTGGCCAACGGTGTACTGATGTATGCGCGGCACATCGATCAGCTCGACCAGTTGGGCGACCTGGTGGCGAAGATCGTCAACAAGCACGTGGCCTTGCAGATCCAGCCACAGCATTACCCGATCGTCGGCTCCTGCTTGCTGCGGGCAATCGCCGAGGTACTGGGCGAAGAGATCGCTACACCTGAAGTGATTTCGGCGTGGGGCGCTGCCTATAACCAGTTGGCCGATATCCTGATCGGCGCCGAAACCAGCTTGTATGACCGCAAAGCCGCGGCACCCGGCGGCTGGCGCGGTGAACGTGAGTTCATCCTGACGGCCAAAGTGCAGGAAAGCGCGGAAATCACTTCGTTCTACTTCGAACCGGCGGACAAGGGGCCGATCCTGCAGGCCGAGCCCGGCCAGTACATCGGTATGAAGCTGGTGCTGGACGGTGAAGAAGTGCGCCGCAACTATTCGTTGTCGGCCTTGGCGAACAATGGCCAGTACCGCATCAGCGTCAAGCGCGAGGCGGGCGGACGGGTGTCCAATTACCTGCACGACCATTTCCAGGTCGGCAATAGCATCCAGCTGTTTCCGCCGTCGGGAGATTTTTACCTCACCGCCAGCGACAAGCCGCTGGTGCTGATCAGTGGCGGCGTCGGCATCACTCCGACCCTGGCGATGTTGCAAGCGGCGCTGCAAACCGAGCGCCCGGTGCATTTCATTCACTGCGCACGCAATGGCCAGGTCCATGCCTTTCGCGAGTGGATCGACGACCTGGCCAAGCGGCACCCGCAACTCAAGCGTTTCTACTGTTATGACGAGCACGACGGCGCTGGGCCGGCGGCTGACAAGGTAGGGCTGTTGAGTGAGGAGCAACTGGCGCAGTGGTTGCCGGAGCAGCGAGACCTGGACGCGTACTTCCTTGGGCCGAAGGGCTTCATGGCGGCCATCAAGCGTCATCTCAAGGCCTTAGGCGTACCGCCGGGACAAAGCCGTTATGAATTCTTCGGGCCGGCGGCTGCTTTGGAATAAMLSREQRAIIRSTVPLLESGGEALITHFYRMMLSEYPQVRPLFNQAHQASGDQPRALANGVLMYARHIDQLDQLGDLVAKIVNKHVALQIQPQHYPIVGSCLLRAIAEVLGEEIATPEVISAWGAAYNQLADILIGAETSLYDRKAAAPGGWRGEREFILTAKVQESAEITSFYFEPADKGPILQAEPGQYIGMKLVLDGEEVRRNYSLSALANNGQYRISVKREAGGRVSNYLHDHFQVGNSIQLFPPSGDFYLTASDKPLVLISGGVGITPTLAMLQAALQTERPVHFIHCARNGQVHAFREWIDDLAKRHPQLKRFYCYDEHDGAGPAADKVGLLSEEQLAQWLPEQRDLDAYFLGPKGFMAAIKRHLKALGVPPGQSRYEFFGPAAALEPGPT0013000_1498NANANANANA
D1-35_01342510dsbB_1COG1495Disulfide bond formation protein BATGAGTGAGGAAATGCTGCGGCTGGGCCGTGAGCGGCGCTATCTGGTGCTGCTGGGGTTGATCTGCCTGGGACTGATCGGCGGTGCTTTATATATGCAGGTAGTGCTTGGTGAAGCGCCATGCCCGCTGTGCATCCTGCAGCGCTATGCGTTGTTGCTGATCGCCATCTTCGCCTTCATCGGCGCGGCCATGCGCACGCGCCGCAGCCTGACGGTCTTCGAAGGCCTTGTCGTGCTTTGCGCGCTGGCGGGGGCGGGGGTGGCCGGGCACCATGTGTACACCCAGTTTTTCCCCGCGGTCAGTTGCGGTGTGGATGTGTTGCAGCCGATTGTCGATAGCCTGCCGCTGGCGAAGATCTTCCCGCTGGGCTTCCAGGTCGATGGTTTCTGTTCCACCCCGTACCCGCCGATCCTCGGCCTGTCGCTGGCGCAATGGGCACTGGTGGCGTTCGTCCTCACCGTCGTGCTGGTGCCATTGCTGGTGTCGCGCAATCGCAAGACGCTGCGCTGAMSEEMLRLGRERRYLVLLGLICLGLIGGALYMQVVLGEAPCPLCILQRYALLLIAIFAFIGAAMRTRRSLTVFEGLVVLCALAGAGVAGHHVYTQFFPAVSCGVDVLQPIVDSLPLAKIFPLGFQVDGFCSTPYPPILGLSLAQWALVAFVLTVVLVPLLVSRNRKTLRNANANANANA
D1-35_01343948cyoA_2COG1622Cytochrome bo(3) ubiquinol oxidase subunit 2ATGAGTAAAAACAGGTACCCCCGATTACTAGGCTTGTTGCCGCTGCTCGGCACGTTGCTGCTGGGAGGCTGCAACATGACCCTGCTCGATCCCAAGGGCCAGGTCGGCCTGGATGAGCGAAACCTGATCATCACCGCCACGCTGCTGATGTTGCTGGTCGTCGTGCCGGTTATCGTCATGACGTTCCTGTTCGCCTGGAAATATCGCGCGTCCAACACCAGTGCCACCTACACGCCGAAATGGTCCCACTCGACCAAGATCGAAATCGCGGTGTGGACCATTCCGGTACTGATCATCATTGCCCTGGGTTACATCACCTACAAGTCGACCCACGCCCTGGACCCGTACCGTCCGCTGGATTCCGACGTCAAGCCGATCACCATCGAAGTGGTCTCGATGGACTGGAAGTGGCTGTTCATCTATCCGGAACAAGGCATTGCCACGGTCAACAAGATCGTGTTCCCGGCCCACACGCCGATCAACTTCAAGGTCACCTCCGACACCGTGATGAACTCGTTCTTCATCCCGGGCCTGGGCGGCCAGATCTACGCGATGGCCGGCATGCAGACCAAGCTGCACCTGATCGCCAACCAGAACACCGAACTTGAAGGTATCTCCGCCAACTACAGCGGCGCGGGTTTCACCGGCATGAAGTTCAAAGCGACCGCCACCACCCAGGAAGAGTTCGACGCCTGGGTAAACGAAGTGAAGAAGGCACCTAAACAGCTTGAAAAAGCTGAATACGAAGCCCTTTCCAAGCCGAGCCAGAACAACCCTGTCGAACTCTACTCGTCGGTCACGCCGAACCTGTTCCAGACCATCATCGATAAGTATGAAGGGATGAATCCGGGCAAGCCGATGCATCACGAGAAGAAAGACAAGGAAGTGGCCCACAACATGGAAGGGATGGACATGAGCTCGCATTCAGCTGCCGGGGCAGAGGAGTAAMSKNRYPRLLGLLPLLGTLLLGGCNMTLLDPKGQVGLDERNLIITATLLMLLVVVPVIVMTFLFAWKYRASNTSATYTPKWSHSTKIEIAVWTIPVLIIIALGYITYKSTHALDPYRPLDSDVKPITIEVVSMDWKWLFIYPEQGIATVNKIVFPAHTPINFKVTSDTVMNSFFIPGLGGQIYAMAGMQTKLHLIANQNTELEGISANYSGAGFTGMKFKATATTQEEFDAWVNEVKKAPKQLEKAEYEALSKPSQNNPVELYSSVTPNLFQTIIDKYEGMNPGKPMHHEKKDKEVAHNMEGMDMSSHSAAGAEENANANANANA
D1-35_013442031cyoB_2COG0843Cytochrome bo(3) ubiquinol oxidase subunit 1ATGTTTGGTAAATTAAGTTGGGAAGCGATCCCGTTCCACGAGCCGATTGTCATGGTGACCCTCGCCATCATCGCGCTCGGTGGTCTGGCGTTGTTCGCGGGTATCACTTATTTCAAGAAGTGGACTTATCTGTGGACTGAATGGTTGACCTCGGTCGACCACAAGAAGATCGGCGTGATGTACATCATCGTCGCCATGGTCATGCTGCTGCGCGGTTTTGCCGACGCGATCATGATGCGTACCCAGTTGGCCATGGCCACCGAGGGCTCGCCCGGCTACCTGCCGCCTGAACACTATGACCAGATCTTCACCGCCCACGGTGTGATCATGATCATCTTCATGGCGATGCCATTCTTCACCGGCCTGATGAACCTTGCAGTGCCGCTGCAGATCGGCGCGCGTGACGTTGCCTATCCATTCCTGAACTCCCTGAGCTTCTGGCTGCTGGTGTCCGGCGTGGTGCTGATCAACCTTTCCCTGGGTGTCGGCGAATTCGCCAAGACCGGTTGGGTTGCCTATCCGCCGCTGTCGGGGCTGCAATACAGTCCGGGCGTCGGGGTGGATTACTACATCTGGGCGCTACAGCTATCCGGGCTCGGGACAACGCTGACGGGGGTCAACTTCCTGGCCACCGTGCTGAAAATGCGTACCCCTGGCATGAAGCTGATGGACATGCCGATCTTCACCTGGACCTGCACCTGGGCCAACGTGCTGATCGTCGCTTCGTTCCCGATCCTGACCGCTACACTCGCTCTGCTGACGCTTGACCGCTACATGGATTTCCACATTTTCACCAATGAACTGGGTGGAAATCCGATGATGTACGTCAACCTGTTCTGGGCCTGGGGTCACCCTGAGGTGTACATCCTTATCCTGCCGGCGTTCGGTATTTTCTCCGAAGTCATCTCGACCTTCTCCGGCAAGAAACTGTTTGGCCACCACTCGATGATCTACGCTTCCGGCGCGATCTCGGTACTGGGCTTCATGGTCTGGCTGCACCACTTCTTCACCATGGGTTCGGGTGCCAGCGTCAACGCCTTCTTCGGCCTGGCGACGATGCTGATCTCGATTCCGACGGGTGTGAAGCTGTTCAACTGGCTGTTCACCATCTACCAGGGCCGCCTGCGTTTCACCAGCCATGTGCTGTGGACCCTGGGCTTCATGGTGACCTTCGCCATCGGCGGCATGACCGGCGTACTGCTGGCCATCCCGGGTGCGGACTTCGTGCTGCACAACAGCCTGTTCGTGATCGCGCACTTCCATAACGTGATCATCGGCGGCGCCGTGTTCGGCTACATCGCGGGCTTTGCGTTCTACTTCCCGAAAGCGTTCGGCTTCAAGCTGCACGAAGGTTGGGGCAAGGCAGCGTTCTGGTTCTGGATCTCGGGCTTCTTCGTCGCGTTCATGCCGCTCTATGCACTGGGCTTCATGGGCATGACCCGTCGCCTGAACGCCACCACCAACCCTGAGTGGGTGCCGTACCTGTACGTCGCCATGTTCGGTGCGGTGATGATCGCTGTCGGTATCGCCTGCCAGCTGATCCAGCTGTACGTCAGTGTGCGTGACCGCAAGAAGCCGGAAAACATGTGCGAACACGGTGACCCGTGGAATGCCCATACCCTGGAATGGTCGACTTCTTCGCCACCACCGTTCTACAACTTTGCCGTGCTGCCGAAAGCGGAAACCATCGACCCGTTCACCGAAGCCAAGGAAAACGGTACCGCGTACCAGACTCCGGCCAGGTACGCGCCGATCCACATGCCCAACAACACCGCTACCGGTGTGGTCATGGGGGCTCTGTTGACCGTGTTCGGTTTCGCGATGATCTGGCACATCTGGTGGCTGGCCATCGCCAGCCTGGTCGGCACCGTGGTGTATTTCGCCATCCATGCCGCCCGTGATGATCAGGGCTACATGGTGCCGGTGGATGTCATCGAGCGCATCGAAGCCGAGCAGCACAAGCGTCTGGTCGCGGCCGGGAAAGTCCCAGCCTCCGCCACCCGTGTTGAAACCTCGTTGGAACAGGCTTAAMFGKLSWEAIPFHEPIVMVTLAIIALGGLALFAGITYFKKWTYLWTEWLTSVDHKKIGVMYIIVAMVMLLRGFADAIMMRTQLAMATEGSPGYLPPEHYDQIFTAHGVIMIIFMAMPFFTGLMNLAVPLQIGARDVAYPFLNSLSFWLLVSGVVLINLSLGVGEFAKTGWVAYPPLSGLQYSPGVGVDYYIWALQLSGLGTTLTGVNFLATVLKMRTPGMKLMDMPIFTWTCTWANVLIVASFPILTATLALLTLDRYMDFHIFTNELGGNPMMYVNLFWAWGHPEVYILILPAFGIFSEVISTFSGKKLFGHHSMIYASGAISVLGFMVWLHHFFTMGSGASVNAFFGLATMLISIPTGVKLFNWLFTIYQGRLRFTSHVLWTLGFMVTFAIGGMTGVLLAIPGADFVLHNSLFVIAHFHNVIIGGAVFGYIAGFAFYFPKAFGFKLHEGWGKAAFWFWISGFFVAFMPLYALGFMGMTRRLNATTNPEWVPYLYVAMFGAVMIAVGIACQLIQLYVSVRDRKKPENMCEHGDPWNAHTLEWSTSSPPPFYNFAVLPKAETIDPFTEAKENGTAYQTPARYAPIHMPNNTATGVVMGALLTVFGFAMIWHIWWLAIASLVGTVVYFAIHAARDDQGYMVPVDVIERIEAEQHKRLVAAGKVPASATRVETSLEQAPGPT0004025_442DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004025-foxA|coxA|ctaD-K02274NANA
D1-35_01345627cyoC_2COG1845Cytochrome bo(3) ubiquinol oxidase subunit 3ATGTCGAACTTAGTGACCAATGTTGGACACGCCCATGGTCATGACCATGGGCACGATGACCATCACCACGACTCGGGCGAGATGACCGTATTCGGTTTCTGGCTCTACCTGATGACCGACTGCATTCTGTTTGCGTCGATCTTCGCGGTATACGCGGTGCTGGTTAACAACGTCGCCGGTGGCCCGTCGGGCCACGACATCTTCGAACTGCCTTATGTACTGGGCGAAACCGCGCTGCTGCTGTTCAGTTCGATCACCTACGGCTTCGCCATGCTGGCGTTGTTCAAGGGCAAGAAAACCCAGGTACTGGGCTGGTTGGCAATGACCTTCCTGCTGGGCGCCGGCTTTATCGCCATGGAGATCAACGAGTTCCACATCCTGATCGCCGAAGGCTACGGCCCTAGCCGCAGCGGCTTCCTGTCCGGGTTCTTCACCCTGGTCGGCACCCACGGTCTGCACGTGACCAGCGGTCTGATCTGGATGGCGATCATGATGTACCAGGTCCAGAAAAATGGCCTGACCGCCACCAACAAGACGCGCCTGAGCTGCCTGAGCCTGTTCTGGCACTTCCTGGACGTGGTGTGGATCTGCGTATTCACCGTTGTTTATCTGATGGGGACCCTGTAAMSNLVTNVGHAHGHDHGHDDHHHDSGEMTVFGFWLYLMTDCILFASIFAVYAVLVNNVAGGPSGHDIFELPYVLGETALLLFSSITYGFAMLALFKGKKTQVLGWLAMTFLLGAGFIAMEINEFHILIAEGYGPSRSGFLSGFFTLVGTHGLHVTSGLIWMAIMMYQVQKNGLTATNKTRLSCLSLFWHFLDVVWICVFTVVYLMGTLPGPT0004035_2642DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004035-coxC|ctaE-K02276NANA
D1-35_01346336cyoD_2COG3125Cytochrome bo(3) ubiquinol oxidase subunit 4ATGGCTAACGCTCATTCCCATGATGGCCACGACGCCGGCCACGGCAGCGTCAAGTCCTACGCGATCGGTTTCATCCTGTCGGTGATCCTGACCGTCATTCCGTTCGGCCTGGTGATGTATCCAACGCTGCCGAAGAGCCTGACGCTCTGGATCATTCTGATCTTCGCCGTGGTCCAAGTATTGGTCCACCTGGTGTACTTCCTGCACCTGGACCGCTCGGCCGCCCAGCGTAACAACGTCATTGCGTTTGTCTTCGCTGCGCTGGTGATCGTACTGCTGGTCGGCTTGTCGTTGTGGATCATGTTCAGCATCCACTCCAACATGATGGCGCACTGAMANAHSHDGHDAGHGSVKSYAIGFILSVILTVIPFGLVMYPTLPKSLTLWIILIFAVVQVLVHLVYFLHLDRSAAQRNNVIAFVFAALVIVLLVGLSLWIMFSIHSNMMAHNANANANANA
D1-35_01347888cyoECOG0109Protoheme IX farnesyltransferaseATGTCACTGAAGCACTTTATCCAAATCACCAAGCCGGGGATCATTTTCGGTAACGTGCTTTCTGTGGCGGGCGGGTTTTTCCTGGCCTCGAAAGGGCATGTCGATCTGGCCATCTTCCTGGCGGCGATGATCGGCACTTCCCTGGTGGTGGCGTCCGGTTGCGTGTTCAACAACTGCATCGACCGCGACATCGACATCAAGATGGAACGCACCAAGAACCGGGCGCTGGTCCAAGGCCTGATTCCAGTGCAACTGGCCCTGGCATTCGCCACGGTGCTGGGCGTGGCCGGCGTGGCGCTGCTGTATTGGGTGGCCAATCCGTTGGCGGCGTTGTTCGCGGTGATCGGTTTTGTCATCTACGTCGGTCTCTACAGCCTGTACCTCAAGCGCAAGTCGGTCCACGGCACGCTGGTGGGCAGCCTGTCGGGGGCGATGCCGCCGGTGATCGGTTATGTCGCGGTCAGCAACAGCTTCGACATGGCTGCGCTGACGCTGCTGGTGATGTTCAGCCTGTGGCAGATGCCGCATTCCTATGCCATCGCGATCTTCCGCTTCAACGACTACCTGGCGGCTTCGATTCCGGTGCTGCCGGTCAAGCGGGGCATCCAGGTGGCCAAGAAGCACATCCTGCTCTACATCCTGGCCTTCCTCGTGGCGACCTTGATGCTGACGTTCAGCGGTTACGCCGGTATGAGCTACCTCGCCGTCGCCGCCGCCATGGGCATGTACTGGCTGTACATGGCCTGGACCGGTTACAAGGCGGTGGATGACACGGTCTGGGCACGCAAGCTGTTCGTGTTCTCGATCTTCACCATCACCGCCCTGAGCGTCATGATGTCCCTGGACTTCAAAGTGCCGAGTGAGCTGCTGCTGACGTACGCGCCTTAAMSLKHFIQITKPGIIFGNVLSVAGGFFLASKGHVDLAIFLAAMIGTSLVVASGCVFNNCIDRDIDIKMERTKNRALVQGLIPVQLALAFATVLGVAGVALLYWVANPLAALFAVIGFVIYVGLYSLYLKRKSVHGTLVGSLSGAMPPVIGYVAVSNSFDMAALTLLVMFSLWQMPHSYAIAIFRFNDYLAASIPVLPVKRGIQVAKKHILLYILAFLVATLMLTFSGYAGMSYLAVAAAMGMYWLYMAWTGYKAVDDTVWARKLFVFSIFTITALSVMMSLDFKVPSELLLTYAPPGPT0008520_3704DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008520-ctaB|cyoE-K02257NANA
D1-35_01348270hypothetical proteinATGTCCGGAAACTTCTCGACCAGCTTGATCAACAAAGCCGCCTGGGCGTTTTATCTGGCGAAGGGTAATCTTGCCCTCGCGGTGAGCGGCCATCTCTTCGACGCCTTGCATCATCTCGGCAAACAGATCGCGTTTTTTCATAAGGTACCTCGTACTTTCAACTCTGCTTCCATGGCTCGCTTGAGCGTCTTCTATTGCTCGGAGGTCAGGTTTTCCAAGTCGTCCTTGCTCGTCATAAATCGCTATTATCAAATTGACCAGCATTCATAGMSGNFSTSLINKAAWAFYLAKGNLALAVSGHLFDALHHLGKQIAFFHKVPRTFNSASMARLSVFYCSEVRFSKSSLLVINRYYQIDQHSNANANANANA
D1-35_01349705hypothetical proteinATGTCCGATTCCAATACCGCTGAATCTGTAGTCTCCCTGTCGTCCAAAGCGGAATACGAAAACTCCATCAATCTTTCACAGCATCTGCCCCAGGCCAAAAGCATCAGCGAAATGGTCCTCGATGCCTTCCAGTCGAACCGCGAAAGCGACCAGATCCGCGAACTGCGCACCGCCATTCGCCAGGCTCACGATGCGTTCGACGATGACAAGGCCTACGCACTGATGGGCCAGCTCAAGCAACTCAAGGACGCCGAAGCCGCCGACTTCGCTGCGCTGGAAGACCTCAGCAGCCGCTTCCCGATCAGCCGTATCCTTTCCAGCTACAAGGATGACCCGGCCTTCCAGGAACTGGTCTACGGCCTGGCCCTGAAGGTGCTGAACCAGACCCATCAGGCCATCAGCAACCCGAGCGGCGGCAAGGGCAAGGCCGCGCGCGCCAAGAAGGAAGCCGAGGTGTTTGTCATCAGCAAGGACGGCATCAGCGTCACCCTGCCCTTGCGCACACCACGCTCCAAGCCGAACGTCGACCGCGAGGCCTTCGAATTCCTCGGCTTCAACTTCATCGGCGAAGGCGACGAAGCCGAGCTGGAAAGCGAAACCTTCCTGGACAACGACGGCACCGAACAGCCGGTCACCCGCAAAAGCATCGTCACCGCCTTGCAGCAGCAAAAAGCCTTCGACGGCTACAGCATCGCCCAGCAATAAMSDSNTAESVVSLSSKAEYENSINLSQHLPQAKSISEMVLDAFQSNRESDQIRELRTAIRQAHDAFDDDKAYALMGQLKQLKDAEAADFAALEDLSSRFPISRILSSYKDDPAFQELVYGLALKVLNQTHQAISNPSGGKGKAARAKKEAEVFVISKDGISVTLPLRTPRSKPNVDREAFEFLGFNFIGEGDEAELESETFLDNDGTEQPVTRKSIVTALQQQKAFDGYSIAQQNANANANANA
D1-35_01350642hypothetical proteinTTGCAGCGCTACAGTGCCCGCTTCCCGGCGGTGGAAATCAACAGTTCGTTCTACCGCCCGCACCGTCCCGCCACCTATGCAAAATGGGCCGACAGTGTGCCGGCGGGTTTTCGCTTCTCAGTCAAGATGCCCAAGCAGATCACCCATGAGCGGCGCTTGCATGATTGCGAGGGGCTGGTGGATGAGTTCCTCGGGCAATGCTCGCAACTGAGGGAGAAACTTGGTTGCCTGTTGATCCAGTTGCCGCCGTCGCTGGCCTTCGATAACACCCAGGCCGAGGACTTTTTCAAAGCCTTGCGTGACCGTTACCAGCGCCACGCGGTACTCGAACCCCGGCACCCGAGCTGGCTCGCGCCACAGGCCATGGCATTGCTTGAGAAAGAGCGCATCGCCCGCGTCGCCGCCGACCCGTCGCCTGTGCCGGGCGGCGATCAACCGGCGGGCTGGGCGGGCGTGCGTTATTACCGGCTGCATGGCTCGCCGCGCATTTATTACTCCGCCTACGAAGACGCCTGGCTGCAGCGACTGGCAGACCTACTGAAGGCTGCCCCGGACACGCCGACCTGGTGCATCTTCGACAACACCGCCAGCGGCGCCGCGACGCCCGATGCGTTGCGATTGCTGCAGCTGCTGGGCGATTGAMQRYSARFPAVEINSSFYRPHRPATYAKWADSVPAGFRFSVKMPKQITHERRLHDCEGLVDEFLGQCSQLREKLGCLLIQLPPSLAFDNTQAEDFFKALRDRYQRHAVLEPRHPSWLAPQAMALLEKERIARVAADPSPVPGGDQPAGWAGVRYYRLHGSPRIYYSAYEDAWLQRLADLLKAAPDTPTWCIFDNTASGAATPDALRLLQLLGDNANANANANA
D1-35_013511014hypothetical proteinATGGACGACGCCTCGAAGATCGATTTGCTGCGGTTCGATTTGTCCGATCTGGACGAAAACGTGCTGCACACCATCATGGAACTGGTCAGCGATGGCATCTGGGACTGGAACGCCAACACCGGCTTCGTCTATCGAAATCCCGGCTGGTACACGATGCTCGGCTACACGCCTCACTCCCTGAGCAATACCGTGCTGACCTGGGAGAGTGTGATCCACCCGGAAGATTATCCCTACGTAATGGCGTTATTCGACGATTACCTCGAACAACGCGCCCCTAAGTACCAGGCCGAATACCGCTGCCGCGCCTATGACGGCTCCTATATCTGGATCGAAGACCGCGGCTACGTGATCGCCCGCAATCCCGATGGCAGCGTCGCCCGCATGATCGGTGCCCATCGCAGCATCGATGACAAGAAGCGTCTGTTCGAACAACTTGAACGGCGTAACAAGTCCCTCGAAGCCATCATCGAAGAACGCACCCGCGAACTGTCCCGGGTCAACGAGCAGTTGCAAATCCAGCTCGAGGAAAACCGCAGGCTCGCCGAAACCGACGCCCTCACGCTGGTCGCCAACCGCTATCGCCTGGAACAGGCGCTACCATTGGCCTGTGAACGCGCGCAGCGCTTTCGCGAGCCGTTGTCGCTGATTGCCATGGATGTCGACGATTTCAAGGACATCAACGATCGCTACGGCCATGCTTTCGGCGACGCGGCGCTGGTGCAAGTGGTACAGGCGGTCAAGCGCTGCGAGCGCGACGGCGACCTGCTGGTACGCTGGGGCGGCGATGAATTCATCATGATCTTGCCCAACACGTCCAAGGCCGATGCAGTCCTGTTGGCCGAAACCATTCGCCGAGGCTTGTCCGACCTGCTGCCGGTGGGCGATTTCCAGATCACCATGAGTTTTGGCGTGGTGCAACGCCACGAAGACGAACCGCAAGCAGCGCTACTGGATCGGGCTGACCAGGCACTGTATCGCTCCAAGATGGCCGGCAAGAATGTGATTTGTGATTGAMDDASKIDLLRFDLSDLDENVLHTIMELVSDGIWDWNANTGFVYRNPGWYTMLGYTPHSLSNTVLTWESVIHPEDYPYVMALFDDYLEQRAPKYQAEYRCRAYDGSYIWIEDRGYVIARNPDGSVARMIGAHRSIDDKKRLFEQLERRNKSLEAIIEERTRELSRVNEQLQIQLEENRRLAETDALTLVANRYRLEQALPLACERAQRFREPLSLIAMDVDDFKDINDRYGHAFGDAALVQVVQAVKRCERDGDLLVRWGGDEFIMILPNTSKADAVLLAETIRRGLSDLLPVGDFQITMSFGVVQRHEDEPQAALLDRADQALYRSKMAGKNVICDNANANANANA
D1-35_01352903dmlR_6HTH-type transcriptional regulator DmlRATGGACCTGTTCCAGGCAATGACCGTTTACGTGAAAGTGGTGGAAACCGGCAGCCTGACCGCAGCGGCCCAGGCGTGCGAAATGTCCACGACCATGGTCGGCAATCACCTTCGGGCGCTGGAGCAACGCCTGGGTGTGCGCCTGATCAACCGTACGACGCGTCGTCAGCGCTTGACCGAATTCGGCTCGGCCTACTATCAACGCTGCCTGGAAGTGATCGGGCTGGTTGACGATTCCGAACGCCTGGCCGAGCAGACCCAAGGCGACCCCAGCGGCACCTTGCGCATCACCGCGCCGCTGACCTTCGGCACGGAGCGCCTCGCCCCGGCGCTGGCCGAATACAGCCAGCGTTATCCCCAGGTCAAGCTCGACGTTGTCTTGACCAACCAGCGTCTGGACCTGCTCGACCACGGCTTCGACGTCGCCATTCGCCTGGGCAGTCCCGACCCGAAGCTGATCGTTCGTCCCCTGATGGACTACACACTGACCGTCTGCGCCTCCAAGGCCTACCTGGCACGGCGCGGCACGCCGCAGAAACCTGAAGACCTGCAACAGCATGACTGCCTGTCGTTTGCCTATTCCGCCGGAGACGAATGGCGTTTCGCCCAGGAGCACTGGCCCATCAACGGGCCGGACGGGGAGATCAAAGTGCCGGTGCGCGGGCCGATGCTGATCAACAGCTCGTCGGGTCTGCACCGCGCCGCCCTGGCCGGCATGGGCGTGGTGATGCTGCCGGACGCGCTGGTGGCGCAGGATCTGGAGGATGGACACTTGGTGGCGCTGTTGCAGGACTATCAACTGCCCCACCGGCCAATGAGCCTGATGTACGCCCAGGATCGCTATCGTTTGCCGAAGCTGCGCAGTTTCGTCGAGTTTGCGCTGCAAAAGTGGAGCAAACCCTGAMDLFQAMTVYVKVVETGSLTAAAQACEMSTTMVGNHLRALEQRLGVRLINRTTRRQRLTEFGSAYYQRCLEVIGLVDDSERLAEQTQGDPSGTLRITAPLTFGTERLAPALAEYSQRYPQVKLDVVLTNQRLDLLDHGFDVAIRLGSPDPKLIVRPLMDYTLTVCASKAYLARRGTPQKPEDLQQHDCLSFAYSAGDEWRFAQEHWPINGPDGEIKVPVRGPMLINSSSGLHRAALAGMGVVMLPDALVAQDLEDGHLVALLQDYQLPHRPMSLMYAQDRYRLPKLRSFVEFALQKWSKPNANANANANA
D1-35_013531176argD_1COG4992Acetylornithine aminotransferaseATGACTGCCGCCTGCCTGATGAGCACTTACCAACCCTTGGCGCTGAACTTCACCCATGGCTTGGGTACGCGCCTGTGGGATCAGGATGGTCGCGAATACCTTGATGCGGTGGCGGGCGTGGCAGTGACCAACGTGGGCCATTCCCATCCGCGGTTGGTGGCAGCCATCAGTGAACAGGCCGGCCTGCTGCTGCACACGTCCAACCTGTACAGCATTGACTGGCAGCAGCGGTTGGCCCACAGACTCACCCAGCTCTCGGGGATGGAACGGGCGTTTTTCAACAACTCCGGCGCCGAGGCGAATGAAACCGCATTGAAGCTGGCCCGCCTGTATGGCTGGCACAAAGGCGTCGAACAGCCGTTGGTCGTGGTGATGGACAATGCTTTCCACGGGCGCACCCTGGGCACGCTGTCCGCCAGCGACGGGCCCTCGGTGCGGCTGGGTTTCAATCGGTTGCCGGGGGACTTCATCAAGGTGCCGTTCGGCGATCTCGGCGCATTGGAAAAAGTCCAGCAAGCCCACGGCGAGCGCATCGTTGCGATCCTGGTAGAGCCGATCCAGGGCGAAAGTGGCGTACAACTCGCGCCACCGGGTTACCTGAACGCTCTGCGGGATTTGTGCAGCCGGCGCGCCTGGTTGTTGATGCTCGACGAGATCCAGACCGGCATCGGCCGCACCGGGCAGTGGTTCGCGTTCCAGCACGAGGGCATCGTCCCGGACGTGATGACCCTCGCCAAAGGCCTCGGCAACGGCGTGCCCATCGGTGCCTGCCTGGCGCGCGGCAAGGCCGCCGGACTGTTCACCCCCGGCAGCCACGGCAGCACGTTCGGCGGAAATCCTCTGGCTTGTCGGGTCGGCTGCACCGTGCTGGACATCATCGAGGAGCAAGGCCTGCTGGAGAACGCCAGACGTCAGGGCGAGCAATTGCTAAGCCGGTTGCGGGCTGAGTTGGCGGACAACCCGAATGTCCTGGAGATTCGGGGCCAAGGCTTGATGATCGGCATCGAGCTAAAGCAACCGGTGCGCGACCTGACCCTCTGTGCCGCCCGGGATCATGGTTTGCTGATCAACGTCACCCGGGGCAAGACCATTCGCCTGTTGCCGCCGTTGACGATCGACGGGCGGGAAGTCGAGATGATCGTCAGAGGGGTGAGCCGCTGCCTGGGGCAGGCGTGAMTAACLMSTYQPLALNFTHGLGTRLWDQDGREYLDAVAGVAVTNVGHSHPRLVAAISEQAGLLLHTSNLYSIDWQQRLAHRLTQLSGMERAFFNNSGAEANETALKLARLYGWHKGVEQPLVVVMDNAFHGRTLGTLSASDGPSVRLGFNRLPGDFIKVPFGDLGALEKVQQAHGERIVAILVEPIQGESGVQLAPPGYLNALRDLCSRRAWLLMLDEIQTGIGRTGQWFAFQHEGIVPDVMTLAKGLGNGVPIGACLARGKAAGLFTPGSHGSTFGGNPLACRVGCTVLDIIEEQGLLENARRQGEQLLSRLRAELADNPNVLEIRGQGLMIGIELKQPVRDLTLCAARDHGLLINVTRGKTIRLLPPLTIDGREVEMIVRGVSRCLGQAPGPT0014253_3540DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014253-argD|pqqI-K00821NANA
D1-35_01354735yiaDCOG2885putative lipoprotein YiaDATGTTCACCTCGCGTCGCTTGATCGTTGTCGCTACTGCCGTGGCCCTGTTGTCCGGCTGTGCGTCGCCCAACCCCTATGACAACCAGGGCCAGGCCTCTACCGAATCTTCGGGCATGAGCAAAACCGCCAAGTATGGCGGCCTCGGCGCCCTGGCCGGGGCATTGGCCGGTGCGGCCATCGGCCACGATAATCGGGGCAAGGGTGCGTTGATCGGCGCGGCGGTGGTGGGGGCCTCCGCGGCCGGCTACGGTTACTACGCCGACCAGCAGGAAAAGAAATTGCGCGCCAGCATGGCCAATACCGGCGTTGAGGTGCAGCGCCAGGGCGACCAGATCAAGCTGATCATGCCAGGCAACATCACCTTCGCCACCGACTCGGCGAACATCGCATCGAGCTTCTACCAGCCGCTGAACAACCTGGCCAACTCCCTCAAGGAATTCAACCAGAACCAGATCGAGATTGTCGGCTATACCGACAGCACCGGCAGCCGCCAGCACAACATGGACCTGTCCCAGCGTCGCGCGCAGAGCGTGGCGACCTACCTGACGTCCCAAGGTGTCAGCGGCGCCAACCTCTCGGCCCGTGGCGCCGGCCCGGACAACCCGGTGGCAAGCAACGCCGACGTCAACGGCCGTGCGCAAAACCGTCGCGTCGAGGTCAACCTCAAGGCCATTCCTGGCCAGCAGTACCAGGCGCCGCAGCAGCAGGGGCAGACTTACCAGCAATATCCATAAMFTSRRLIVVATAVALLSGCASPNPYDNQGQASTESSGMSKTAKYGGLGALAGALAGAAIGHDNRGKGALIGAAVVGASAAGYGYYADQQEKKLRASMANTGVEVQRQGDQIKLIMPGNITFATDSANIASSFYQPLNNLANSLKEFNQNQIEIVGYTDSTGSRQHNMDLSQRRAQSVATYLTSQGVSGANLSARGAGPDNPVASNADVNGRAQNRRVEVNLKAIPGQQYQAPQQQGQTYQQYPNANANANANA
D1-35_01355870glnQ_1COG1126Glutamine transport ATP-binding protein GlnQATGACTTTACCCCTGTCCACGTCCACCGATTTGTCCCGGCGCAGCACGCTGGCATCGCAGCAGGAGGCCCCGGCCATGCAGATTCCGACACCGTCCCGGCCGATTGTGAGTTTCCAGGACGTGACCAAAAGCTATGGCAGTTTCACCGTGCTCGATCATTTGAACCTGGATGTCGCGCCCGGTGAAAAGGTCGCGATCATCGGCCCCAGCGGCTCGGGCAAGTCGACGCTGCTGCGGGTGCTGATGACGCTCGAAGGCATCGATCAGGGCCAGATCCGCATCGAGGACGATTCCCTGACCCACATGCCCAACCGCAACGGCGTGCTGGTTCCGGCCAATGACCGGCACATCCGCCGGGTGCGTGGCAAGATCGGCATGGTGTTCCAGAGCTTCAACCTGTTTCCCCACATGACCGCGCTGCAAAATGTGATCGAAGCGCCAGTGCAGGTGCTGGGCATGAACCCCAAGGAAGCCCGCGAGCGCGCCGCCGACCTGCTGGAGCTGGTGGGCCTGGGCAACAAGCTCGACCATTACCCGTCGCAGTTGTCCGGCGGCCAGCAGCAGCGGGTGGCAATTGCCCGGGCGCTGGCGATGCGCCCCAAGGTGATGCTGTTCGATGAAGTGACCTCGGCGCTTGATCCGGAATTGTGCGGCGAGGTGCTGAGCGTGATCCGCAAGCTGGGCGCCGAGCACAACCTGACGATGTTGATGGTGACTCACCAGATGGGCTTTGCCCGGGAATTCGCCGACCGGGTGTGCTTTTTCTACAAGGGGCAGATTCACGAACAAGGCACCCCGGCGCAGATTTTCGAGCACCCGCAGCAGGAGCGGACGTGCGCATTCTTGAGTGCGGTGAAAGAAGCTAACTAAMTLPLSTSTDLSRRSTLASQQEAPAMQIPTPSRPIVSFQDVTKSYGSFTVLDHLNLDVAPGEKVAIIGPSGSGKSTLLRVLMTLEGIDQGQIRIEDDSLTHMPNRNGVLVPANDRHIRRVRGKIGMVFQSFNLFPHMTALQNVIEAPVQVLGMNPKEARERAADLLELVGLGNKLDHYPSQLSGGQQQRVAIARALAMRPKVMLFDEVTSALDPELCGEVLSVIRKLGAEHNLTMLMVTHQMGFAREFADRVCFFYKGQIHEQGTPAQIFEHPQQERTCAFLSAVKEANPGPT0020790_450DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020790-ABC_PA_A-K02028NANA
D1-35_01356657glnP_1COG0765Glutamine transport system permease protein GlnPATGACGCTGTTCGATTGGTCCTACGCCGCACAAATCCTCCCGGACCTGCTGCGCGCGTCGCTCAACACCGTGGGCATTACCCTGATCGGTTTCCTGATCGCGATCGTGCTGGGGCTGTTCCTGGCGATTGGCCGGCGCAGCCGCAAGTTCTGGCTGTCGTGGCCGGCCACGGCGGTGATCGAGTTCATCCGCAGCACACCGTTGCTGATCCAGGTGTACTTCCTTTACTACGTGCTGCCCAACTACGGCCTGAGCCTGACGGCCATGCAAGTCGGCGTCCTCGGCATCGGCCTGCATTACGCCTGCTACATCGCCGAGGTCTACCGCAGTGGCCTCGACGCCGTGCCACGGGCGCAGTGGGAGGCGGTGACCGCGCTGAACATCGCGCCGTACGACGCCTACCGCAACATCATCCTGCCCCAGGCGCTGCGGCCGATCGTGCCGCCGCTGGGCAACTACCTGGTGGCGATGCTCAAGGACACGCCAGTGCTGTCGGCGATCACCGTGGTGGAAATCATGCAACAGGCCAAGAACATCGGCTCCGAGCATTTCCGCTACCTGGAACCGATCACCCTGGTCGGCCTGTTCTTCCTTGCCCTGAGCCTTGTCCTGGCTTGGCTGGTACGGCGCCTTGAAACGCGCATGGAGCTACGCTAAMTLFDWSYAAQILPDLLRASLNTVGITLIGFLIAIVLGLFLAIGRRSRKFWLSWPATAVIEFIRSTPLLIQVYFLYYVLPNYGLSLTAMQVGVLGIGLHYACYIAEVYRSGLDAVPRAQWEAVTALNIAPYDAYRNIILPQALRPIVPPLGNYLVAMLKDTPVLSAITVVEIMQQAKNIGSEHFRYLEPITLVGLFFLALSLVLAWLVRRLETRMELRPGPT0020795_9830DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
D1-35_01357660yecS_1COG0765L-cystine transport system permease protein YecSATGGGCGAATTACTTCCGTTATTGATTCAAGGGGCCTGGGTCACGCTCCAGGTGACATTCTTTGGCTCGTTGCTGGCGATTGTCGCCGCGGTGCTGGCGGCACTCGGACGGCTCTCGCCGTGGCGCGCGTTGCGCTGGTTTTCCATCACCTACATCGAGGTGTTTCGCGGCACCTCGCTGCTGGTGCAGCTGTTCTGGCTATTCTTCGTGCTGCCACTTCCTCCGTTCAACATCGAGCTGAGTCCCTACGCCGTGGCGATTGTCGGCCTGGGGCTGCACATCGGCGCCTACGGGGCCGAGGTGATGCGTGGCGCGATCAGCTCGGTCGCCAAGGGGCAATACGAAGCCTGCACGGCGCTGAACTTCAGCAGCTATACGCGCTTCAAGCGAATCATCCTGCCCCAGGCCTTGCTGGCGGCCATTCCACCGGGCACAAACCTGCTGATCGAGTTGTTGAAGAATACCTCGCTGGTGTCGTTGATCACTTTGTCCGACCTGAGTTTCCGGGCACGCCAACTGGACCAGGCGACGTTCCAGACCCTGGAAATCTTCAGCCTGGCGCTGGTGATGTATTTCATCCTCGCCCAGGCCATCAACCTGGGCATGCGCCACGTCGAGCGGCGGCTGAGCCGGGGCCGGATGCGCGGAGGTCTGTCATGAMGELLPLLIQGAWVTLQVTFFGSLLAIVAAVLAALGRLSPWRALRWFSITYIEVFRGTSLLVQLFWLFFVLPLPPFNIELSPYAVAIVGLGLHIGAYGAEVMRGAISSVAKGQYEACTALNFSSYTRFKRIILPQALLAAIPPGTNLLIELLKNTSLVSLITLSDLSFRARQLDQATFQTLEIFSLALVMYFILAQAINLGMRHVERRLSRGRMRGGLSPGPT0020795_9491DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
D1-35_01358858hypothetical proteinATGAGCAATTTTCCAACCAGCAGCTGCACGCCCCTGCGCCGCCTCTTGTTGACGTGTGCCGCGCTTGGCCTGGCCGGCAGCGTTCAAGCGGCCACCCTGGACACCGTCAAAAGCAACAGCAGTATCCGCATCGGCTACGCCAACGAAACGCCGTTTGCGTTCACCGAAACCGACGGCAGCGTGACCGGCGAATCGCCGGAGATCGCCAAGATCATCTTCGCCAGGATGGGCATCAAGCAGGTCAATGGGGTGCTCACCGAATGGGGCTCGCTGATTCCGGGCCTGCGCGCCGGGCGTTTCGACGTGATTGCCGCCGGCATGTACATCACCCCGGCGCGGTGCAAGCAAGTGTTGTTCACCGACCCACAGTACCAGTTGCCCGACGCGCTGCTCGTGGCCAAGGGCAACCCGAAAAAGCTCCACAGCTACGAAGACATCGCCAAGCAACCGGACGTGAAGCTGGCGATCATGGCCGGTACGGTCAACCTCGCTTACGCCCGCGACTCGGGGGTCAAGGACGAACAGATCCTCCAGGTTCCCGACACCACGGCGCAACTGCAAGCGGTGCGCGCCGGTCGCGCCGATGCCGCCGTCGGCACACAACTGACCATGAAAGGCCTGGCCAGCAAGGGCGGCGACAAAGTCGAGGCGATGACCGAGTTCAAGGACGACCCGTCCCACATTGGCTACGGCGCCCTGGCCTTCCGGCCCGAGGACAAGGACCTGCGCGACGCGGTCAACGCCGAGTTGAAAAAGTGGCTGGGCTCGGAGGAACATCTCAAGGCCGTCGCGCCATTCGGTTTCGACAAGTCCAACGTCACCAGCAAGACCGCGGCCGAGCTCTGCGCTCAGCCGTAAMSNFPTSSCTPLRRLLLTCAALGLAGSVQAATLDTVKSNSSIRIGYANETPFAFTETDGSVTGESPEIAKIIFARMGIKQVNGVLTEWGSLIPGLRAGRFDVIAAGMYITPARCKQVLFTDPQYQLPDALLVAKGNPKKLHSYEDIAKQPDVKLAIMAGTVNLAYARDSGVKDEQILQVPDTTAQLQAVRAGRADAAVGTQLTMKGLASKGGDKVEAMTEFKDDPSHIGYGALAFRPEDKDLRDAVNAELKKWLGSEEHLKAVAPFGFDKSNVTSKTAAELCAQPPGPT0020800_4947DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-35_013591374norG_2COG1167HTH-type transcriptional regulator NorGTTGGACGTCGCCCGCAGCGGTGAATCCAAATACAAGATTCTGGTCCAGGCGATCGCCGACGACATCGAACAGGGCATCCTCGCCAACGACCAGCGCCTGCCGCCGCAACGACAAGTGGCCGACGCCATGGGCATCAGCGTGCAGACCGTCACCAACGCCTACAAGGAACTGGAGCGCCAGGGGCTGGTGCGTTGCGAAGTAGGGCGCGGCAGTTTCGTTTCGCGGCGCATGAGCGACCGGGTCGCCACTTACATACTCGACAGCCCCGAGCGGGCGCTGGTGGATTTTTCCATCACGCGGATCCTGCACACTCGCGAGCATGATCAGTTCTGGCGCGACACCTGCGCCGAGCTGAGCACCGAAGAAGACCAGCCATGGATTCATGCGTTTCGTCCGATTGCGGGGTTTGAATCCCATCGCGAAGCGGCGGCGCAATGGATCGGCCGGCAGGGGCTGAAGGTCGATCGCAACGACGTCTTGATCACCAACGGCGCGGCTCATGGCATCTTCCTCGCCCTGGCTTCCCTGGCCGGTCCCGACGATGTAGTGCTCTGCGAAGGGCTGACCGACCACGGTGTGATCGGCAATTCCCAGGTGCTGGGTTTCACCCTCAAGGGCCTGGACACCGACCGCCACGGCATTGATCCCGAGCATTTCGAGGACATGTGCAGCAACGAGCGCATCACCGCGCTGGTGTGTACACCCAACCTCAATAACCCCACCACCAGCCTGATGCCCGACACCCGCCGCCGGGAAATCGCCGAGATTGCCCGGCGCTTCGGCGTGCACATCATCGAAGACGATGTCTACGGTCCGTTGCTGGACGAGCGCCGGGCGCCGCCCATCAGCCATTACCTGCCGGAGCTGTCGTTCTACTGCACGAGCATGACCAAGTCAGTGCTCACGGGCTTGCGCATCGGTTATCTGGTGGTGCCCAAGCGCCTGGCGCTGCGCACCGAGAGCATCCTGCGGGTGAACAGTTGGATGGCCACCCCGATGGTCTCGGAGATCGCCGCTCGCTGGATCCGCGACGGGCGCGCCGACTCGTTGTTGCATTTACAACGGCGCCTGTTGGCCGGGCGCCAGGCGATGGTCACCGAGTACATGGGCGAGCACGTCTTGGCCCAGCATCCCCATGCCTTGAATGCCTGGATCGGCATCCCGCCCCACTGGGAAGTCGACAGCCTGGTGCGGGCGCTGCGCCACAAGCACATCGCCGTCACGTCCCCCGACCCGTTCACCGTGCGCGGCACACCGCGGCCACGGGCGGTGCGGGTCTGCGTTGGCGCCGAATGCAGCGATGAAGAAATGCGCCATGCATTGATCGGCATGCGGCAGATCTTCAACCAGTATCCGCAGATTCATGATTTTTGAMDVARSGESKYKILVQAIADDIEQGILANDQRLPPQRQVADAMGISVQTVTNAYKELERQGLVRCEVGRGSFVSRRMSDRVATYILDSPERALVDFSITRILHTREHDQFWRDTCAELSTEEDQPWIHAFRPIAGFESHREAAAQWIGRQGLKVDRNDVLITNGAAHGIFLALASLAGPDDVVLCEGLTDHGVIGNSQVLGFTLKGLDTDRHGIDPEHFEDMCSNERITALVCTPNLNNPTTSLMPDTRRREIAEIARRFGVHIIEDDVYGPLLDERRAPPISHYLPELSFYCTSMTKSVLTGLRIGYLVVPKRLALRTESILRVNSWMATPMVSEIAARWIRDGRADSLLHLQRRLLAGRQAMVTEYMGEHVLAQHPHALNAWIGIPPHWEVDSLVRALRHKHIAVTSPDPFTVRGTPRPRAVRVCVGAECSDEEMRHALIGMRQIFNQYPQIHDFNANANANANA
D1-35_01360972tdcBL-threonine dehydratase catabolic TdcBATGACAGGGTTGCAGCTTCAGGACATCTACCTCGCTCGCCAGCGCATCGAGTCGCTGGTGCGGCGCACGCCCATGGAGTACTCCGCCAGCCTGTCGCGATTGATCGGCGTGCCCGTATACCTCAAGTTGGAATCCCTGCAAATCACCGGCAGCTTCAAGCTGCGTGGCGCCAGCAATGCCGTGGCGCAACTCAGCCCGGAGCAGAAGGTGTCAGGCGTGGTGACGGCCTCGACCGGTAACCATGGTCGGGCACTGGCCCATGCCGCATCGCAACAAGGGGTCAAGGCGATTGTCTGCCTGTCGAACCTCGTGCCGGCCAACAAAGTGCAGGCGATCCGCGATCTGGGCGCCGAGGTGTGCATTGTCGGCCAGTCCCAGGACGACGCCCAGCGCGAGGCCGAGCGCATCGCCCGCGAGCAGGGCGCGACCTTCCTGCCGCCGTTCGATCATCCCGCAATCATCGCCGGCCAGGGCACCCTTGGCCTGGAGATCCTCGAACAGCAAGCGGATGTGGCCCAGGTGCTGGTGCCATTGTCCGGCGGCGGCCTGTTCGCCGGTGTGGGCCTGGCCCTGAAAAGCGCCAATCCAGCCATTCAAGTCCACTGCATCAGCATGGCGCGAGGCGCCGCGATGCACACCAGCCTCGCCGCCGGCCAGCCGCTGGAAGTCGAAGAGCTGCCGACCCTGGCGGACTCTCTTGGCGGCGGCATCGGCCTGGACAACCGCTACACCTTCGCCATGACCCGGCAGTTGGCCGATGACGTGCACCTGCTCTCGGAAGCTTCGATCGCCAATGCCCTGCGCCACGCCTATCACCACGAACGCCTGGTGCTCGAAGGTGCCGCCGTGGTGGGCATCGCGGCGTTGCTCGACGGCCTGGTCGAACCGCGCGGACCGATCGTGGTGGTGGTCAGCGGGCGCAACGTCGACACCGAACAACATGCCCGCGTGATCGCCGGCGCCAACGCCTGAMTGLQLQDIYLARQRIESLVRRTPMEYSASLSRLIGVPVYLKLESLQITGSFKLRGASNAVAQLSPEQKVSGVVTASTGNHGRALAHAASQQGVKAIVCLSNLVPANKVQAIRDLGAEVCIVGQSQDDAQREAERIAREQGATFLPPFDHPAIIAGQGTLGLEILEQQADVAQVLVPLSGGGLFAGVGLALKSANPAIQVHCISMARGAAMHTSLAAGQPLEVEELPTLADSLGGGIGLDNRYTFAMTRQLADDVHLLSEASIANALRHAYHHERLVLEGAAVVGIAALLDGLVEPRGPIVVVVSGRNVDTEQHARVIAGANAPGPT0001960_6172DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_THREONINE_DEGRADATION,PGPT0001960-ilvA|tdcB-K01754NANA
D1-35_01361987alaAlanine dehydrogenaseATGAGTGAAGTCACCCTATTGAGCGAGGCCGACCTGCGCAGTTGCGTGGCCCTCGACCTGGCCAGCATCGACGCCATCGAGCAGGCCTTCGTGATGCTGGCCACCGCGGCCGTGGCGATGCCGCCGATCCTGCGGCTGGACATTCCCGAGCACAACGGCGAAGTGGATGTGAAGACCGCTTACCTGCCGGGCCTGGAGCGCTTCGCCATCAAGGTCAGTCCGGGTTTCTTCGACAACCCCAAGCTCGGCCTGCCCAGCCTCAACGGCATGATGATGCTGCTCTCGGCGCGTACCGGTCTGTTGGAGGCGCTGCTGCTCGACAATGGCTACCTCACCGCCGTGCGCACCGCCGCGGCCGGGGCGGTGGCGGCGCGTTGCCTGTCTCGCGAGCAAAGCCGCAGCGTGGCGTTGATCGGGGCCGGCGAGCAGGCGGCGTTGCAGCTTCAGGCGCTGCGCCTGGTGCGGCCGATCGACGAGGTGCGGGTCTGGGCGCGGGATGCGCAAAAGGCCAAGGCGTTCAGTGATGGACTGGCCCGTGACAGCGGACTTGCCGTCACGCCCTGCAGCTCCATTGACGCTGCCCTGGAGGGCGTGGATATCGCGATCACCTGCACGCCCAGCCGCGAGCCGCTGATCGAGCCCCGCCACTTGCACCCTGGCCTGCACATCACCGCGATGGGCTCGGACGCGGAGCACAAGAACGAAATTTCCCCACAGGCCCTGGCAGCCGTCGACTGCTATGTCGCCGATCGCCTCAGCCAGACCCGCGTGCTCGGCGAACTGCACCATGCCTTGGCGGCCGGCTTTGTCCGTGACGATTTGATGGAACTCGGGCAAGTGCTGGCGGGCCAGCAGCCCGGGCGCTCCGATGCAACGCAGGTAACGCTTTGCGACCTGACCGGCACCGGCGCCCAGGACACCGCCATCGCCAATCTGGCGTTCGAGCGGGCGAGGGCGGCAGGCAAGGGTTTCGCGTTCGGTCGTTGAMSEVTLLSEADLRSCVALDLASIDAIEQAFVMLATAAVAMPPILRLDIPEHNGEVDVKTAYLPGLERFAIKVSPGFFDNPKLGLPSLNGMMMLLSARTGLLEALLLDNGYLTAVRTAAAGAVAARCLSREQSRSVALIGAGEQAALQLQALRLVRPIDEVRVWARDAQKAKAFSDGLARDSGLAVTPCSSIDAALEGVDIAITCTPSREPLIEPRHLHPGLHITAMGSDAEHKNEISPQALAAVDCYVADRLSQTRVLGELHHALAAGFVRDDLMELGQVLAGQQPGRSDATQVTLCDLTGTGAQDTAIANLAFERARAAGKGFAFGRNANANANANA
D1-35_013621191doeACOG0006Ectoine hydrolaseATGTCAGAGATAGTCGTCAATCTTCCGTTCCAGCGGGAGGAATACGCCCAGCGCCTGGCAAAGGTTCGCGCGGCGATGCAGGTCCAGGGCCTGGAGCTGTTGCTGGTCACCGATCCGTCGAACATGGCCTGGCTCACCGGCTATGACGGTTGGTCGTTCTATGTGCACCAGTGCGTGCTGCTGGCGCTGGACGGCGAGCCGGTGTGGTTCGGGCGTGGCCAGGATGCCAACGGGGCGAAGCGCACGGTGTTCATGCAGGCCGATAACATCGTCGGCTACCCGGACATTTACGTGCAGTCCCGCGAGCGTCATCCCATGGACTACCTGTCCCGCGAGGTGATCATTGCCCGTGGTTGGGGCGCGCTGAGCATCGGCGTGGAAATGGACAACTACTACTTCAGCGCCGCCGCGTACCTGTCGCTGCAAAAGCACCTGCCCGAGGCGAAGCTGGTGGACGCGGTGGGCCTGGTGAACTGGCAGCGTGCGGTCAAGTCGCCGCAGGAAATCGCCTACATGCGCATCGCCGCACGCATCGTCGAGAACATGCACAGCCGGATCCTCGAACGCATCGAGCCGGGCATGCGCAAGAACGAACTGGTGGCTGAGATCTACAGCAGCGGCATCCTCGGTGCCGACGGCCATGGCGGCGATTACCCGGCCATCGTGCCGCTGCTGCCCACCGGTGCCGACGCCAGCGCACCGCACCTGACCTGGGATGATTCGCCGTTCGAAAAAGGCGCTGGCACCTTCTTTGAAATCGCCGGCTGCTACAAGCGTTACCACTGCCCGCTGTCGCGCACCATTTACCTGGGCAAGCCGCCGCAGCATTTCCTCGACGGCGAAAAAGCCGTGGTCGAGGGCATCGCCGCTGGCCTGGACGCGGCCAAGCCGGGCAACACCACCGGCGACATTGCCGTGGCGTTTTTCAAGGTGCTGGAAAAGTTCGGCATCCACAAGGACAGCCGTTGCGGCTACCCCATCGGCATCAGTTATCCGCCGGATTGGGGCGAGCGCACCATGAGCCTGCGCCCCGGCGACAACAGCGTGTTGCAGCCGGGCATGACCTTCCACTTCATGCCGGGGCTGTGGATGGACGATTGGGGCCTGGAAATCACCGAGAGCATCCTGATCACCGAGACCGGCGTCGAGACGCTGTGCAACGTGCCCCGTCAACTGTTCGTGAAGGATTGAMSEIVVNLPFQREEYAQRLAKVRAAMQVQGLELLLVTDPSNMAWLTGYDGWSFYVHQCVLLALDGEPVWFGRGQDANGAKRTVFMQADNIVGYPDIYVQSRERHPMDYLSREVIIARGWGALSIGVEMDNYYFSAAAYLSLQKHLPEAKLVDAVGLVNWQRAVKSPQEIAYMRIAARIVENMHSRILERIEPGMRKNELVAEIYSSGILGADGHGGDYPAIVPLLPTGADASAPHLTWDDSPFEKGAGTFFEIAGCYKRYHCPLSRTIYLGKPPQHFLDGEKAVVEGIAAGLDAAKPGNTTGDIAVAFFKVLEKFGIHKDSRCGYPIGISYPPDWGERTMSLRPGDNSVLQPGMTFHFMPGLWMDDWGLEITESILITETGVETLCNVPRQLFVKDPGPT0014046_142DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014046-doeA-K15783NANA
D1-35_013631002doeBCOG3608N-alpha-acetyl-L-2,4-diaminobutyric acid deacetylaseATGCGCGAATTGCCCAGCAATCCCATCAGCGCCACGGTCGACTTCAGCCGCGAGGGTGTGCAGCACGGTTTTCTCAAGTTGCCGTATTCGCGGGACGATTCGGCATGGGGCGCGGTAATGATCCCCATCACCGTGATCCAGCGCGGCAGCGGTCCGACCGCGCTGCTCAGCGGTGGCAACCACGGCGACGAATACGAAGGCCCGGTGGCCCTGAGCAAACTGGCCCAGCAGTTGAGCGCCGAAGACGTCAGCGGGCGGATCATCATCGTGCCGTTCATGAACACCCCGGCGTTCCGTGCCGGACGCCGGACTTCGCCCATCGACAAAGGCAACCTGAACCGCAGTTTTCCCGGCAAGCCGGACGGCACCGTCACCGAGAAAATCGCCGACTATTTCAACCGCACCCTGCTGCCGTTGGCTGACCTTGTGCTGGACATTCATTCCGGGGGGCGAACCCTGGATTTCCTGCCATTCGCCGCCTGCCACGTATTGCCGGACAAACAGCAACAGGCGCGTTGCGAGGCCGCGATGCTGGCGTTCAACGCGCCGTATTGCATGCGCATGCTGGAGCTGGATGCCGGGTCGATGTACGACACGGCGGCGGAGTCCCAGGGCAAGGTGTTTGTTACTACCGAGCTGGGCGGCGGCGGTTCGTCCACCGCCCGCAGCGTGGCGATTGCCGAGCGCGGGGTGCGCAACCTGTTGATCCACGCCGGCATCCTGCGGGGTGCGATCGAGTTGCAGCCGTCGGTGATGCTCGACATGCCGGACGCCAGTTGCTTCGTTGCCAGCGAGCATGACGGCTTGTTGGAAATGTGTCGCGACCTCGGCGAAAGCGTGAACCAGGGAGAAGTGGTGGCGCGCATCCACGACGCAACCCGCAGCGGCGTCGCCCCGGTTGAATACCGCGCCGCCCGCAGCGGCCTGCTGGCGGCGCGGCACTTTCCCGGGCTGGTGCAGTGTGGCGATACGCTGGTGGTGATTGCGGATGTGTTGGCTTGAMRELPSNPISATVDFSREGVQHGFLKLPYSRDDSAWGAVMIPITVIQRGSGPTALLSGGNHGDEYEGPVALSKLAQQLSAEDVSGRIIIVPFMNTPAFRAGRRTSPIDKGNLNRSFPGKPDGTVTEKIADYFNRTLLPLADLVLDIHSGGRTLDFLPFAACHVLPDKQQQARCEAAMLAFNAPYCMRMLELDAGSMYDTAAESQGKVFVTTELGGGGSSTARSVAIAERGVRNLLIHAGILRGAIELQPSVMLDMPDASCFVASEHDGLLEMCRDLGESVNQGEVVARIHDATRSGVAPVEYRAARSGLLAARHFPGLVQCGDTLVVIADVLAPGPT0014047_225DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014047-doeB-K15784NANA
D1-35_01364480lrp_2COG1522Leucine-responsive regulatory proteinATGCACAAGCTCGATCGCTACGACCTGAAAATCCTGCAGATCCTCGCCGAGGACGGGCGGATCACCAAGTCGAGCCTCGCCGAGGCGATCAACCTTTCAGTGACCCCGGCCTGGGAGCGGGTGCGCAAACTCGAGGCGGCGGGGCTGATCATCGGCTACCGGGCGCAGATCGACTGGGGCGCGGTGTTCAAGCGCCAGCAGGTACTGGTGGAAATCACCCTGGCCCGGCACACCGCCCAGGACATGCGCCGTTTCGAGCAACGCCTGCTCGCCGCGCCCGAAGTGGTGTTCTGCTACGCCACCGGCGGCGGTGTGGATTACCTGGCGATGATCCAGGCGCCGGACGTCGATTCGTATCAGCGTTTCGTCGATCAACTGTTGCTTGAAGACCTCGGCATCGAACGCTACTTCACCTACATCGTCACCAAGACCATCAAGACCGTCGGCGCCTTGCCGGCGGAGCTCACACCGTCATCCTGAMHKLDRYDLKILQILAEDGRITKSSLAEAINLSVTPAWERVRKLEAAGLIIGYRAQIDWGAVFKRQQVLVEITLARHTAQDMRRFEQRLLAAPEVVFCYATGGGVDYLAMIQAPDVDSYQRFVDQLLLEDLGIERYFTYIVTKTIKTVGALPAELTPSSPGPT0014049_205DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014049-doeX-K15782NANA
D1-35_013651488davD_1COG1012Glutarate-semialdehyde dehydrogenaseATGCCTTATCAACACCCGCTGCTGTTCAAAGCGCTTTGCTACATCGATGGCCATTGGGTCCACAGCGACAGCGGCCAGAGCATCGCGGTGCAGAACCCAGCAACCCGCACGGTTATCGGCCATGTGCCGATGCTCGATCAACCTCAGATCGTCGCGGCGGTGGACGCGGCGCATCGCGCGTTCCCCGCATGGCGCGAGCAGAGCCTGGAGATTCGCGGCGCGATGCTGCGGCGCTGGGCGGCGTTGATCAGCGAGCACAGCGAAGACCTCGCGCGAATTCTCAGCCTGGAGCAGGGCAAGCCGCTGGCCGAGTCCCGTGGCGAAATCGCCTATGCCGCAAGTTTCATCCCGTGGTTCGCCGAGGAGGCCCGGCGCCTCTACGGCCAGAACATTCCCAGTCATATCCCGAACGCTCATTTGGGCACGGTCAAGGAACCAGTGGGCGTCTGCGCGCTGCTCACACCCTGGAACTTCCCCTCGGCGATGATCACCCGCAAGGCCGCTGCCGCGCTGGCGGCCGGATGCACCGTGGTGGTCAAGCCGGCCCATGAAACGCCTTACTCGGCGTTGGCCCTGGCGCAACTGGCCGAGGAAGCGGGCTTTCCTGCCGGCGTCTTCAACGTGGTATTGGGCGAGCCGCAGATGACCATGGAGACCCTGGTCAAGGACCGCCGCGTGCGTTCGGTGAGTTTCACCGGCTCGACCCGGGTCGGCAAACTGGTGCTGCAAGCAGCGGCCCATGACGTGAAAAAGGTCGCGCTGGAGCTGGGCGGCAATGCGCCGTTCATTGTCTGCGCCGATGCCGATCTGGCCTTGGCAGTCAAAGTCGCTGTCGAGGCGAAATTCCAGACCTCGGGTCAGGATTGCTGCGCGGCCAACCGGATCCTGGTGCAGCGCCCGGCGTATCAGGCGTTTCTCAGTCGTTTCGCCGCCGCGGTGCGCGCCTTGCGGGTCGGGCCGGCGATGGTTGATCAACAGGAGCAGGCGGTGGATGTCGGGCCGTTGATGCATCAGGCGGCGCTCGATGCGACCGCCGACCGCGTCGCCGATGCGCTGGCCCTTGGCGCCCAACGCCTGGCCGGTGGCGAGGCCCATGCTCTGGGCGGGTTGTTCTACCAACCGACCGTGCTGGCCGACGTCACGCCAAAAATGCGCATCTACCGTGAAGAGAACTTCGCGCCCATCGCCGGGGTGATGCCGTTCGACACCCTGGACGAAGCCATCGAACTGGCCAACGACACCGAATACGGACTGGCCGCGTATATTTGCTCCAATCGCCTGGATGTCATTTATCCACTGATCCGTCGTCTCGACCACGCCATGGTCGCCGTCAACGGCGTCAAGTTCACCGGTCATCCGATTCCCTTCGGCGGCATGAAAGCCTCGGGCCTCGGCCGCGAGGGCGGCACCGAGGGCTTCGAGCCCTTCGTCGAAACCAAATACTTTTGCCTGCACCATCAAGGCCAATTCCCAGGAGAGCCCGCATGAMPYQHPLLFKALCYIDGHWVHSDSGQSIAVQNPATRTVIGHVPMLDQPQIVAAVDAAHRAFPAWREQSLEIRGAMLRRWAALISEHSEDLARILSLEQGKPLAESRGEIAYAASFIPWFAEEARRLYGQNIPSHIPNAHLGTVKEPVGVCALLTPWNFPSAMITRKAAAALAAGCTVVVKPAHETPYSALALAQLAEEAGFPAGVFNVVLGEPQMTMETLVKDRRVRSVSFTGSTRVGKLVLQAAAHDVKKVALELGGNAPFIVCADADLALAVKVAVEAKFQTSGQDCCAANRILVQRPAYQAFLSRFAAAVRALRVGPAMVDQQEQAVDVGPLMHQAALDATADRVADALALGAQRLAGGEAHALGGLFYQPTVLADVTPKMRIYREENFAPIAGVMPFDTLDEAIELANDTEYGLAAYICSNRLDVIYPLIRRLDHAMVAVNGVKFTGHPIPFGGMKASGLGREGGTEGFEPFVETKYFCLHHQGQFPGEPAPGPT0014048_150DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014048-doeC-K15786NANA
D1-35_013661386spuC_1COG0161Putrescine--pyruvate aminotransferaseATGAGCCAAGAACTCAACACGTTGTTCGAACAAGACCGTGCGCATTTCATGCACCCCTCGACCCACGCCCACGACCACGCCAGCGGGGCGCTCAAGGGGCGCATCATCAAGAGCGCGTCGGGCATTCGCATACGCGATCACGAGGGGCGTGACTTCATCGACGCTTTCGCCGGGCTCTATTGCGTGAACATTGGTTATGGCCGTACCGAAGTGGCCGATGCCATCTACAAACAGGCCAAGGAACTGGCCTACTACCACACCTATGTCGGTCATTCGAGCGAGGCGATCATCGAACTGTCCAGCCGCATCATGGACTGGGCGCCGACGGGGATGAAGAAGGTCTATTACGGGCTGTCCGGCTCCGATGCCAACGAAACCCAGATCAAACTGGTGCGTTACTACAACAACGTACTCGGCCGGCCGCAGAAGAAAAAAATCATCTCCCGTGATCGTGGCTACCATGGCTCGGGCATCATGACCGGCAGCCTGACCGGGCTGCCGGCGTTCCATCAGCATTTCGACCTGCCGGCCGAAGGGGTCAAGCACACCGTGTGTCCGCACTGGTATCGCAAGGCCCGGGCGGGCATGGACGAAGCAACGTTCGTGCGTTATTGCGCCGATGAACTGGAAAAAATGATCCTCGCCGAGGGCCCGGACACGGTGGCGGCGTTCATCGGCGAACCGGTGATGGGCACTGGTGGCATCATCGTTCCGCCCGCCGGTTATTGGGCTGCGATCCAGGCCGTGCTGAACAGATACGACGTGCTGTTGATCGCCGATGAGGTGGTCTGCGCGTTTGGTCGCCTGGGTTCGAAGATGGGCAGCCAGCGCTATGGCATGCAGCCGGACCTGATCACCACGGCCAAGGGACTGACCAGCGCCTACGCGCCGTTGTCGGCGGTGATCATCGGTGAAAAGGTCTGGAGCGTGATCGAAAAAGCCTCCCAGGCCGAAGGTGCGATGGGCCATGGCTGGACTTACTCCGGACACCCGATCTGCGCGGCGGCGGCCCTGGCCAACCTGGATATCCTCGAAAGGGAAAACCTCATGGCCAACGCCGAAGACGTCGGTGGTTACCTCAACCGGCGTTTACGCGAAACCCTCGAAGGCCATCCGCTGGTGGGCGAAGTGCGCGGTGACGGCATGCTGGCGGCGGTGGAGTTCATGGCCGATCGTGAACAGCGTACGGCGTTCGACCCGGCACTCAAGGTCGGACCCAAGGTCTCGGCCGCCTGCCTGGAACGCGGAATGATCGCCCGCGCCATGCCCCACGGCGACATCCTGGGCTTCGCTCCGCCGCTGATCCTGACCCGCGAAGACGCCGACCTGATCGTCGACATCACCAAAGGGGCCATCGACCAGGTGGCGGAGGAAGTGTTGGCTTGAMSQELNTLFEQDRAHFMHPSTHAHDHASGALKGRIIKSASGIRIRDHEGRDFIDAFAGLYCVNIGYGRTEVADAIYKQAKELAYYHTYVGHSSEAIIELSSRIMDWAPTGMKKVYYGLSGSDANETQIKLVRYYNNVLGRPQKKKIISRDRGYHGSGIMTGSLTGLPAFHQHFDLPAEGVKHTVCPHWYRKARAGMDEATFVRYCADELEKMILAEGPDTVAAFIGEPVMGTGGIIVPPAGYWAAIQAVLNRYDVLLIADEVVCAFGRLGSKMGSQRYGMQPDLITTAKGLTSAYAPLSAVIIGEKVWSVIEKASQAEGAMGHGWTYSGHPICAAAALANLDILERENLMANAEDVGGYLNRRLRETLEGHPLVGEVRGDGMLAAVEFMADREQRTAFDPALKVGPKVSAACLERGMIARAMPHGDILGFAPPLILTREDADLIVDITKGAIDQVAEEVLAPGPT0007865_412DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007865-spuC-K12256NANA
D1-35_01367438hypothetical proteinGTGGAACACTCGCTCTTAGTTTGGCTGTTGCCGACTCTTGCCCTGGTTGCCGGTGTCGCCATTGGTTTCCTGATTGCCCGACTGCTGCCTAACGCGGTGCCCAACAGCACCCAACGTCAGCTCGACGACATCCAGGAACGTTTCGACAGTTACCAGAATGAAGTGGTAACCCACTTCAACAGCACCGCTTCCCTGGTGAAAAAGCTCACCCAGAGCTACCAGGAAGTCCAGGATCATCTGTCCGAGGGCGCCAACCGCCTGGCCCTGGACGAGCAGACGCGCCAGCGCCTGCTGGCCGCCCTGCAAGCCGACACGGCGCAGACGCCACGGGAGCGCCTGACCCCGCCCAAAGGGATCCAGGAACCGCCACGGGACTACGCCCCCAAGGCCCCGAACTCCCCAGGGATGCTGGATGAGCATTACGGTTTGAAGAAGTAAMEHSLLVWLLPTLALVAGVAIGFLIARLLPNAVPNSTQRQLDDIQERFDSYQNEVVTHFNSTASLVKKLTQSYQEVQDHLSEGANRLALDEQTRQRLLAALQADTAQTPRERLTPPKGIQEPPRDYAPKAPNSPGMLDEHYGLKKNANANANANA
D1-35_01368630hypothetical proteinATGCGCGAAACCCCTGTAGTCATCGATGGCCCGGTCGGCCAACTGGAAGCCTTGTACCTGGACAGCGAAGCGCCCCGTGGCCTGGCGCTGATCTGCCACCCCAACCCGGTACAGGGCGGGACCATGCTCAACAAAGTGGTCTCGACCCTGCAGCGCACCGCCCGCGACGCTGGCCTGGTTACGTTGCGTTTCAATTATCGCGGCGTCGGCGCCAGTGCCGGCAGCCATGACATGGGCACCGGCGAAGTGGACGATGCCCAGGCCGCGGCCGCCTGGTTGCTGGAAAAATACCCGCAGCTGCCCCTGACCCTGTTTGGTTTTTCCTTCGGCGGCTTCGTCGCCGCCACCCTTGGCGGACGCCTGGAAGCCCAAGGCCAGGCGCTCAAGCACCTGTTCATGGTTGCTCCGGCGGTAATGCGCCTGGATGCACAAGCGCCCCTGCCGACCAGTGGCGAATTGACCGTGATCCAGCCGGAAACCGACGAAGTGGTCGATCCCCAACTTGTCTACACATGGTCCGACGCGCTCCAGCGCCCCCATGAGCTGCTGAAAGTGGCAGAATGCGGACACTTTTTTCATGGCAAGCTGACTGATCTCAAGGATCTGCTCCTGCCGCGCCTCTCGAATTGAMRETPVVIDGPVGQLEALYLDSEAPRGLALICHPNPVQGGTMLNKVVSTLQRTARDAGLVTLRFNYRGVGASAGSHDMGTGEVDDAQAAAAWLLEKYPQLPLTLFGFSFGGFVAATLGGRLEAQGQALKHLFMVAPAVMRLDAQAPLPTSGELTVIQPETDEVVDPQLVYTWSDALQRPHELLKVAECGHFFHGKLTDLKDLLLPRLSNNANANANANA
D1-35_013691356hypothetical proteinATGACGACTCGTACCCGTATCCTGACCGGCATCACCACCACCGGCACCCCGCACCTGGGCAACTACGCCGGCGCCATCCGTCCGGCGATCCTCGCCAGCCGCGAAAGCAATGCCGATTCGTTCTATTTCCTGGCCGATTACCACGCCCTGATCAAATGTGATGACCCGCTGCGCATCCAGCGCTCGCGCCTGGAAATCGCCGCGACCTGGCTGGCCGGTGGCCTGGATGTGGACCGCGTGACGTTCTATCGCCAGTCCGATATCCCTGAAATCCCGGAACTGACCTGGCTGCTGACGTGCGTCGCCGCCAAGGGCCTGCTCAACCGTGCCCACGCCTACAAGGCGTCGGTGGACAAGAACGTCGAGACCGGCGAAGACCCTGACGCCGGCGTCACCATGGGCCTCTACAGTTACCCGATCCTCATGGCGGCCGACATCCTGATGTTCAACGCCCACAAGGTGCCGGTCGGTCGTGACCAGATCCAGCACGTGGAAATGGCGCGGGACATCGGTCAGCGCTTCAACCACCTGTTCGGCAAGGGCAAGGAGTTCTTCACCATGCCCGAGGCGCTGATCGAGGAAAGCGTCGCCACGCTGCCGGGCCTCGATGGCCGCAAGATGTCCAAGAGCTACGACAACACCATTCCGTTGTTCAGCAGCGCCAAGGACATGAAGGACGCGATCTCGCGGATCGTCACCGACTCGCGCGCGCCGGGCGAAGCCAAGGACCCGGACAACTCGCACCTGTTCACGCTGTTCCAGGCCTTCGCCACTGCCGAGCAGTCCGCCGCGTTCCGTAGCGAACTGCTGCAAGGCCTGGGTTGGGGCGAGGCGAAGAGTCGTCTGTTCCAACTGCTCGACGACCAGTTGGGTGAAGCGCGCGAGCGGTACCACCAGTTGATCGAACGCCCGGCGGACCTTGAAGACATCCTGCAACTGGGCGCGAAAAAAGCCCGGGCCGTAGCAACGCCGTTTCTCAATGAACTGCGCGAGGCAGTTGGCCTGCGGTCCTTCGTCAGCCAGGTGCAAGTGGCAACGCAGACCAAAAAGAAAGCGGCCAAGGCTGCGCGCTTCGTCAGCTTCCGCGACGATGACGGCAGTTTCCGCTTCCGCCTGCTTTCTGCCGATGGCGAGCAGTTGTTGCTTTCGAACAACTTCGCCGACGGCAAGACCGCTGGCCAGGTGACCAAGCAGTTGCAATCCGGCCAGCCCTTGGACGTGCGCAGCGATGAACTGAGTTTCAGCGTCTGGCTCGACGGCGAATGCGTGGCCCACAGCCCGGCCTTTGCCGACCGTAGCGCCCGAGACGCGGCCATCGATGCGTTGCGCGTGGCACTGACGCCTGCCCAGGATTGAMTTRTRILTGITTTGTPHLGNYAGAIRPAILASRESNADSFYFLADYHALIKCDDPLRIQRSRLEIAATWLAGGLDVDRVTFYRQSDIPEIPELTWLLTCVAAKGLLNRAHAYKASVDKNVETGEDPDAGVTMGLYSYPILMAADILMFNAHKVPVGRDQIQHVEMARDIGQRFNHLFGKGKEFFTMPEALIEESVATLPGLDGRKMSKSYDNTIPLFSSAKDMKDAISRIVTDSRAPGEAKDPDNSHLFTLFQAFATAEQSAAFRSELLQGLGWGEAKSRLFQLLDDQLGEARERYHQLIERPADLEDILQLGAKKARAVATPFLNELREAVGLRSFVSQVQVATQTKKKAAKAARFVSFRDDDGSFRFRLLSADGEQLLLSNNFADGKTAGQVTKQLQSGQPLDVRSDELSFSVWLDGECVAHSPAFADRSARDAAIDALRVALTPAQDPGPT0007120_452DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007120-trpS-K01867NANA
D1-35_013701095zapE_1COG1485Cell division protein ZapEATGACGCCCCTAGAACGATATCAAGCTGATCTGAAACGCCCGGAATTCTTCCACGACGCAGCCCAGGAAACGGCCGTGCGGCATTTGCAGCGCCTGTACGACGACCTGGTTGCCGCGTCGAACAACAAGCCGGGCTTGTTGGGCAAACTGTTCGGCAAAAAGGACCAGACACCGGTCAAGGGCCTGTACTTCTGGGGTGGCGTCGGCCGTGGCAAGACTTACCTGGTGGACACCTTCTTCGAAGCGTTGCCCTTCAAGGAAAAGACCCGGACGCACTTTCACCGCTTCATGAAGCGCGTGCACGAGGAAATGAAGACCCTGGGTGGCGAAAAGAACCCGCTGACCCTCATCGCCAAGCGCTTCGCCGCCGAGACGCGGGTGATCTGCTTCGATGAGTTTTTCGTTTCCGACATCACCGACGCCATGATCCTTGGCACGCTGATGGAAGAACTGTTCAAGAACGGCGTGACCCTGGTCGCCACCTCGAACATCGTCCCCGACGGCCTTTACAAGGACGGTCTGCAACGGGCGCGCTTCCTGCCGGCGATCAAGCTGATCAAGGAGCACACCGAAATCGTCAATGTCGACAGCGGCGTGGACTATCGCCTGCGTCACCTCGAACAAGCGGAGTTGTTCCATTTCCCGCTGGATGCCGCCGCTGAAGAAAGCCTGCGCAAGAGCTTCCGCGCCCTGACGCCGGAATGCACCCAGGCGGTTGAAAACGATGTATTGATCATCGAGAACCGCGAAATCCGTGCGATCCGCACCTGCGACGACGTGGCCTGGTTCGACTTCCGTGAACTGTGCGACGGCCCCCGCAGCCAGAACGACTACATCGAGCTGGGCAAGATCTTCCATGCCGTGCTGCTCAGCGGCGTCGAGCAGATGAGCGTCACCACCGATGACATCGCCCGCCGTTTCATCAACATGGTCGACGAATTCTACGACCGCAACGTGAAGCTGATCATCTCGGCTGAAGTCGAGCTCAAGGACCTCTATACCGGCGGTCGCCTGAACTTCGAATTCCAGCGGACCCTCAGTCGCCTGTTGGAGATGCAATCCCACGAATTCCTGTCGCGGGCGCATAAACCGTAAMTPLERYQADLKRPEFFHDAAQETAVRHLQRLYDDLVAASNNKPGLLGKLFGKKDQTPVKGLYFWGGVGRGKTYLVDTFFEALPFKEKTRTHFHRFMKRVHEEMKTLGGEKNPLTLIAKRFAAETRVICFDEFFVSDITDAMILGTLMEELFKNGVTLVATSNIVPDGLYKDGLQRARFLPAIKLIKEHTEIVNVDSGVDYRLRHLEQAELFHFPLDAAAEESLRKSFRALTPECTQAVENDVLIIENREIRAIRTCDDVAWFDFRELCDGPRSQNDYIELGKIFHAVLLSGVEQMSVTTDDIARRFINMVDEFYDRNVKLIISAEVELKDLYTGGRLNFEFQRTLSRLLEMQSHEFLSRAHKPNANANANANA
D1-35_01371987ansB_1COG0252putative L-asparaginase periplasmicATGGACTTGCCCAACCTGAGCATCGCTTCACTCGGCGGCACCGTGAGCATGCAGGCCCGGGTCTTCGGAGAAGGAGTGGTCCCGACCGTCAGCGGCGCAACCCTGCTGGCTTCGGTACCCGAATTGAGAGCCCTGGCCCGCGTCACCGTCGAAACGCTCCAACTGTTGCCCAGCGCCTCATTGAGTTTCGAGCATTTATTGAGTGTCCTGCGCTGGGCGAACACTCAGATCGAGCTAGGTGCGGTGGCGGTTGTCCTCACTCAGGGCACCGACACGCTGGAGGAATCCGCCGCATTTTTCGATCTCCTGTGGGACCACGACGAACCTCTGGTGCTTACTGGAGCGATGCGTTCCGCAGCCCAGACAGGCGCCGACGGACCGGGCAATCTGCTGGATGCCTGCCAGGTGGGCCTGGCCGAGAGCAGTTGGCGACGAGGTGTTCAGGTGGTCATGAACGGGCAGATTCATTCGGCGCAGGCGGTTCGCAAAACCGATTCGATGGCACTGCAGGCTTTTTCTTCGCCCGTCGTAGGCCCGGCAGGCCTGTTACTGGAGGGTGACGTTCACTATTTCCATCCACCACGCCAACGTCACACCTTGCCGTTGCCACAGCGCTCGACGCACAAGGTTGCGTTATTACAAGCGTCGCTGTCTGCCGACAGCCTGTTGCTGGAGAACGTTCTCGCGCTGGGTTACGACGGGCTGGTGATCGCCGGTTTCGGCGCAGGGCACGTTTCTGAAACCTGGGCTGGAAAAATTGACGCCATTGCCAGAAAAATCCCGGTCATTGTTGCGACTCGCTGCGATTGCGGCTCAACGGCTCGCTCGACTTACGGCTTCAAGGGCGGCGAGATGGATCTGGTTAAAAGAGGTGCTTCGATGGCTGGTTTTGTCTGCCCACGAAAATCGAGGATTCTCTTGTGGCTGCTGCTCGGTTGCCAGCGACAAGATGACCTGGCTCGCTATCTGAGGCTTTTGCAGTATTGAMDLPNLSIASLGGTVSMQARVFGEGVVPTVSGATLLASVPELRALARVTVETLQLLPSASLSFEHLLSVLRWANTQIELGAVAVVLTQGTDTLEESAAFFDLLWDHDEPLVLTGAMRSAAQTGADGPGNLLDACQVGLAESSWRRGVQVVMNGQIHSAQAVRKTDSMALQAFSSPVVGPAGLLLEGDVHYFHPPRQRHTLPLPQRSTHKVALLQASLSADSLLLENVLALGYDGLVIAGFGAGHVSETWAGKIDAIARKIPVIVATRCDCGSTARSTYGFKGGEMDLVKRGASMAGFVCPRKSRILLWLLLGCQRQDDLARYLRLLQYPGPT0020180_3032DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARAGINE_DEGRADATION,PGPT0020180-EC_3_5_1_1|ansA|ansB-K01424NANA
D1-35_013721134hypothetical proteinGTGATCCTGTTGGTGCTCGGCGCGCTGTCGCTGGTCTTCTGGCTTTCTTTCATGAGCCTCGCCTCCTGGCCCGACTACGGCCACATGGTGTCGAATTTGCCACAGCCAACCTCATGGCTACGCTGGGTGGTGGGAGACATCAGCGAAGTCGCCTTTTATAAGCATGAATTTGCTTCCATCGGACTGCTGGCGGGGGCATACCTGGCATACCGGGCCAATGAAACGGGAAAGGCCTGGCAAGGCTTTCCCATCTGCTACGGCAGCGGCCTGTGGCCGTGGGTCGTCGCCAGCTCACTGCTTGGGCTCCTGCTCAGCAACCTGTTATGGGGCTGGACCGTTACGGCCACCGCCTGGCAACCGACCTTTGCCGCATTCGTTTCATTGCCGGCGGCGATGGTGCTGATGTTTGGCGGTGGCTGGAAAGTGGCGATCAATGGCGCAGTCATGGGTGCATTGCTGGTCACCCCGGCGTGCTTGTTGCTGGTCAATTACGTCTGCAATCCACTGGGTTTGCCGGCAGTGATCGGCAACGTCTCGGGGATGGCTGTCGCCAGCGTCATGGCATTCCTGCTCTGTCGTTATGTGCCAAGCCTGGTGAGCTCGCAGGCCTCAATGAAACCATCCGAAACGCCATCAAGGCCCACGCCCAGCCGTGCACCCGACTACGGTGTCGTCTGGAGCCTGCGCCGAGTCTTGGCGGATTTCTCCGAAGCGCCGTTCTTCGGCAATGAGTGGGCCAGCCTTGGGCTCATATCGGGCGCCTTGCTGGCCTATGCCTTGAACCCGATGAGCCCGGTCTACGGCTCGGGCTTGCTGCCGCAACTGATCGGTGCGCAAGCGCTGACCTCGGCCTTGGGCGTGATGATCTGGCGTCGACAGTGGAGGTTGCGAGGCTGGTATCCCACCTATATCCCGCTGGTATCGGTCGTGCCTGCCGCGGTTCTGACCTACGGCGGCAGTTGGCCGGTGATTGTCTCCAGCGCCTTGCTAGGTGCACTTGTGGCGCCGCCACTGGCGTGTGCGATTGCCAAAAGGCTACCCACCGACATGCACGGATTTATTGCGAATGTCCTGTCCATGGCCATCAGTACCTTGCTCATCATTCCGCTTATCGGACGCCTGATAACCAACTGAMILLVLGALSLVFWLSFMSLASWPDYGHMVSNLPQPTSWLRWVVGDISEVAFYKHEFASIGLLAGAYLAYRANETGKAWQGFPICYGSGLWPWVVASSLLGLLLSNLLWGWTVTATAWQPTFAAFVSLPAAMVLMFGGGWKVAINGAVMGALLVTPACLLLVNYVCNPLGLPAVIGNVSGMAVASVMAFLLCRYVPSLVSSQASMKPSETPSRPTPSRAPDYGVVWSLRRVLADFSEAPFFGNEWASLGLISGALLAYALNPMSPVYGSGLLPQLIGAQALTSALGVMIWRRQWRLRGWYPTYIPLVSVVPAAVLTYGGSWPVIVSSALLGALVAPPLACAIAKRLPTDMHGFIANVLSMAISTLLIIPLIGRLITNPGPT0003290_336DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-ENTEROBACTIN|ENTEROCHELIN_TRANSPORT,PGPT0003290-entS|ybdA|cbsS-K08225NANA
D1-35_01373888N-carbamoyl-D-amino acid hydrolaseATGAGCGAGCCAACCAGTCCTGTCCGCGTAGCGGTTGTGCAATTCGACCCTCAGGTCGGCGTAAGGAATCATGAGCAGAACCTGCATCACAGCCTTGCGCTGGCGTTGGAGGCGGTAAACGGCGGAGCGAATCTCATCGTTCTGCCCGAGCTGTCAAATACCGGTTATTTTTTCAGCAACCGACAGGATGCGTTCGAACACTCCGAATTGGTCCCTAACGGGCCGAGCGTGCAGGCCTGGAAGGACTTCGCCCGCCAGCACAAGATTTACCTGGTGGCCGGCTTGACAGAGCGCGAGGGCATGCGGCTTTTCAACACCGGTGTTCTGTTGGGGCCAGACGGTTTTATTGGCAAGTACCGAAAAGCCCATTTGTGGAACCTGGAGAAACTCTGGTTCACACCAGGGGACCTGGGTTTTCCAGTGTTCGAAACCCCGATAGGCCGCATCGGAATGCTGATCTGCTGGGACATCTGGTTTCCGGAAGTGCCGCGAATCCTGACCCAGCAAGGCGCGGACATCATCTGCAGCCTGAATAACTGGGTCTGGACGCCCCCACCGCTGTTTGATGACGCAGGCAAGTGCATGGCGTCATATCTGACCATGACGGCGGCACACGTCAATAACGTGTTCATTGCAGCGGCAAGCCGCATCGGCGAAGAACGCGGTGCCCGCTATCTTGGCTGCTCGCTGATCGCGGGTACTAACGGTTGGCCGATTGGCGCGGTGGCCTCCGCCGACCAGCAGGAAGTGCTGTTCGCCGACATCGACCTGACCAGTTCCCGTAGCGCCGCCATCTGGAACAACCTGAACGACCTGCACCGTGATCGGCGTTCGGATCTCTACGATCCGATGCTTGGTTATACCCAGCACCCTCTCCTGCCGCGCTGAMSEPTSPVRVAVVQFDPQVGVRNHEQNLHHSLALALEAVNGGANLIVLPELSNTGYFFSNRQDAFEHSELVPNGPSVQAWKDFARQHKIYLVAGLTEREGMRLFNTGVLLGPDGFIGKYRKAHLWNLEKLWFTPGDLGFPVFETPIGRIGMLICWDIWFPEVPRILTQQGADIICSLNNWVWTPPPLFDDAGKCMASYLTMTAAHVNNVFIAAASRIGEERGARYLGCSLIAGTNGWPIGAVASADQQEVLFADIDLTSSRSAAIWNNLNDLHRDRRSDLYDPMLGYTQHPLLPRPGPT0008885_656DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_DEGRADATION,PGPT0008885-UPB1_like|pydC-K01431NANA
D1-35_01374990cdhR_3COG4977HTH-type transcriptional regulator CdhRATGCACGCCTCCACGCCCTTGCGGCGCGTCAGCATCCTGGCAGTCGACCGGGTTTTCGCTTCCACCCTCATGCAGGCCAAGGATTTTTTCCACCTGGCCAGCCTGCGCTACGGCAAACAGCTTGGCCACGGCCTGACCCCAGCGTTCGAAACCCGGCTGGTCAGCCCTGACGGCAAGCCAGTCAACAGCTTCAGCGATGTGCTCATGCCGGTGGACGGTGGCCTCGAAAATACCGATGTGATCATCCTGCCGGCGTTCTGGGATGACTTTGCCACGCTCTGCCAACATTATCCCCAGGTCCTGCCCTGGCTGCGCGAACAACACGCTCGCGGTGCGGTGCTCTGCGGCGAAGCCACCGGAGTATTCTGGCTGGCCGAGGCCGGGCTGCTCGACGGCAAGGAAGCCACCACCTACTGGCGCTTCTTCAATGCCTTCAAGGAGCGTTTCCCTCAGGTGCACCTGAACCAGGACAAGCACCTGACCGACGCCGACAATCTGTTCTGCGCCGGCGGCACCACGTCGGCCTGCGACCTTTACATCTACTTGATCGAACGCTTCTGCGGCGCCAACGTCGCCCAGGCCGTGGCGCGGGACATCCTGTATGAAGTGCAACGCAACTATTCGCCGGGACGCATCGGCTTTGGCGGGCAGAAACTGCATCAGGACGTGATCATCCTGCAGATCCAGCAATGGCTGGAGGAGCATTTCGCCGACAAGTTCCGCTTCGAGGACGTCGCCCGGGAGCACGGCATGAGCATCCGCAATTTCATGCGCCGCTTCCAGACCGCCACCGGCGACAAGCCCTTGCACTACCTGCAACGCCTGCGGATAGAAACCGCCAAGGGCCTGCTGTCCGGGAGCCGCAAGAGCATCAAGACGATCAGCTATGAAGTCGGCTACGACGACGCGAGCTTTTTCGCACGACTGTTCCGGCAGCACACCGACCTGTCACCGAACCAGTACCGGCAGCAATTCCAGCAGGCGGCGTGAMHASTPLRRVSILAVDRVFASTLMQAKDFFHLASLRYGKQLGHGLTPAFETRLVSPDGKPVNSFSDVLMPVDGGLENTDVIILPAFWDDFATLCQHYPQVLPWLREQHARGAVLCGEATGVFWLAEAGLLDGKEATTYWRFFNAFKERFPQVHLNQDKHLTDADNLFCAGGTTSACDLYIYLIERFCGANVAQAVARDILYEVQRNYSPGRIGFGGQKLHQDVIILQIQQWLEEHFADKFRFEDVAREHGMSIRNFMRRFQTATGDKPLHYLQRLRIETAKGLLSGSRKSIKTISYEVGYDDASFFARLFRQHTDLSPNQYRQQFQQAANANANANANA
D1-35_013751137mmgC_2COG1960Acyl-CoA dehydrogenaseATGATCCCCAGAACCCTGTTCAGTCCCGAGCACGAGTTGTTTCGCGACACCGTACGAACCTTCCTTGAAAAAGAAGCCGTGCCGTACCACAGCCAGTGGGAAAAACAGGGGCACATCGATCGCCAACTCTGGAACAAGGCTGGGGAGGCGGGGATGTTGTGCTCGCATCTGCCGGAGGCCTACGGCGGGCTGGAAGCGGATTTTCTCTACAGCACGGTGGTGATCGAGGAAATCGGCCGCCTGGGGCTGACCGGGATCGGTTTCTCGTTGCATTCCGATATCGTTGCGCCTTACATCCTGCATTACGGCAGCGAAGCGTTGAAGCATAAATACCTGCCGAAACTGGTGTCCGGCGAAATGGTCACGGCCATCGCCATGACCGAGCCGGGCGCCGGTTCCGACCTGCAAGGCGTGAAGACCACAGCAGTGCTCGACGGCGATGAATACGTGATCAACGGCTCCAAGACGTTCATTACCAATGGCTTCCTGGCCGACCTGGTTATTGTCGTCGCCAAGACCGACCCGAAGGCGGGGGCCAAAGGTACCAGCCTGTTCCTGGTGGAGGCGGGCACGCCGGGCTTTGAAAAAGGCAAGCGCCTGGAGAAAGTCGGAATGAAGGCCCAGGACACGTCGGAGCTGTTCTTCCAGGATGTCCGCGTGCCGAAGGAAAATCTGCTGGGCCAGGCCGGAATGGGCTTCGCCTACCTGATGCAGGAACTGCCTCAGGAGCGCCTGACCGTCGCCATCGGTGGCCTGGCCTCGGCCGAAGCGGCGCTGCAATGGACGCTGGATTACACCCGTGACCGCAAGGCGTTCGGCAAATCCATCGCGGATTTCCAGAACACCCGCTTCAAACTGGCTGAAATGGCCACCGAGATCCAGATCGGCCGGGTCTTTGTCGACCGCTGCCTGGAGCTTCATCTGCAGGGCAAGCTCGATGTACCGACGGCGGCGATGGCCAAGTACTGGGGCACCGACCTGCAATGCAAGGTGCTCGACGAATGCGTGCAGCTGCATGGCGGCTACGGTTTCATGTGGGAATATCCGGTCGCCCGGGCGTGGGCTGATGCGCGGGTGCAGCGGATCTATGCGGGGACCAACGAAATCATGAAGGAGATTATTGCGCGGTCGCTTTGAMIPRTLFSPEHELFRDTVRTFLEKEAVPYHSQWEKQGHIDRQLWNKAGEAGMLCSHLPEAYGGLEADFLYSTVVIEEIGRLGLTGIGFSLHSDIVAPYILHYGSEALKHKYLPKLVSGEMVTAIAMTEPGAGSDLQGVKTTAVLDGDEYVINGSKTFITNGFLADLVIVVAKTDPKAGAKGTSLFLVEAGTPGFEKGKRLEKVGMKAQDTSELFFQDVRVPKENLLGQAGMGFAYLMQELPQERLTVAIGGLASAEAALQWTLDYTRDRKAFGKSIADFQNTRFKLAEMATEIQIGRVFVDRCLELHLQGKLDVPTAAMAKYWGTDLQCKVLDECVQLHGGYGFMWEYPVARAWADARVQRIYAGTNEIMKEIIARSLPGPT0008385_7562DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008385-acd-K00249NANA
D1-35_013761041tasCOG0667Protein tasATGGACTATCGCAAGCTAGGCCGTACCGATCTGAATGTCAGCGCCTTGTGTCTCGGAACCATGACCTGGGGCGAGCAGAACAGCGAGGCAGAGGCGTTCGCCCAGATTGAACGCGCCAAGGGTGCCGGGATCAATTTCCTCGACACCGCCGAGATGTACCCCGTGCCGCCGAAGGCCGAGACCTACGCCACCACCGAGCGTTATATCGGCAACTATTTCAAGAGCCGTGGCGACCGCGCCGACTGGATCCTGGCCAGCAAGATCGCCGGCCCGGGCAATACCATCGACTATATCCGCGACAAGAATCTCAAGCACAACCGCCGCCACATCGTCGAAGCGCTGGACGCCAGCCTCAAGCGCCTGCAGACCGACTGGATCGACCTGTACCAACTGCACTGGCCGGAGCGCAGCACCAATTTCTTTGGCCAATTGGGCTACACGCACAAGGCCGACGAGGATTTCACTCCTCTGGAGGAAACCCTCGAAGCTCTGGACGAACAGGTCCGCGCCGGCAAGATCCGCCATATAGGCCTGTCCAACGAGACGCCGTGGGGCACCATGAAATTCCTCGCCCTGGCCGAAGCCCGCGGTTGGCCTCGCGCGGTGTCGATTCAAAACCCGTACAACCTGCTCAATCGCAGCTTCGAAATCGGCTTGGCGGAAATCGCCATTCGCGAGCAATGCGGCCTGCTGGCCTATTCGCCCCTGGCGTTCGGTTTCCTGTCGGGCAAATACGAAAACGGCGCACGGCCCGCCAAGGGCCGCCTGACGCTGTACAGCCGCTTCATGCGTTACTTCAACCCGCAATCGGAAGCCGCCTGCAGCCGCTATGTGGCACTGGCCCGCGAACACGGCCTGGACCCGGCGCAGATGGCCCTGGCATTTGTTACCCAGCAGCCGTTCGTGACCAGCAACATCATCGGCGCCACCACGCTGGAGCAACTGGACAGCAACATCGCCAGCTTCGACCTCAAGCTGTCGGATGAAGTGCTGGCGGGAATCGAGGCGATTCACAAGGACCAGCCGAATCCGGCGCCTTGAMDYRKLGRTDLNVSALCLGTMTWGEQNSEAEAFAQIERAKGAGINFLDTAEMYPVPPKAETYATTERYIGNYFKSRGDRADWILASKIAGPGNTIDYIRDKNLKHNRRHIVEALDASLKRLQTDWIDLYQLHWPERSTNFFGQLGYTHKADEDFTPLEETLEALDEQVRAGKIRHIGLSNETPWGTMKFLALAEARGWPRAVSIQNPYNLLNRSFEIGLAEIAIREQCGLLAYSPLAFGFLSGKYENGARPAKGRLTLYSRFMRYFNPQSEAACSRYVALAREHGLDPAQMALAFVTQQPFVTSNIIGATTLEQLDSNIASFDLKLSDEVLAGIEAIHKDQPNPAPNANANANANA
D1-35_01377429rplMCOG010250S ribosomal protein L13ATGAAAACTTTTACTGCTAAACCGGAAACAGTAAAGCGCGACTGGTTTGTCGTCGACGCTGCTGGTCAGACCCTGGGTCGTCTGGCCACCGAAATCGCGAGCCGTCTGCGTGGCAAGCACAAGCCTGAGTACACCCCTCACGTTGACACCGGTGACTACATCGTCGTGATCAATGCCGAGCAAGTACGTGTTACTGGCGCTAAAACCACTGACAAAATGTACTACTCCCACTCCGGTTTTCCTGGCGGCATCAAGTCGATCAACTTCGAAAAGCTGATCGCCAAAGCCCCTGAGCGCGTGATCGAGACCGCGGTTAAAGGCATGCTGCCTAAAAACCCACTGGGTCGCGACATGTATCGTAAGCTGAAGGTTTATGCGGGCGCTGCTCACCCTCATACTGCTCAGCAGCCCCAAGAACTGAAGTTTTAAMKTFTAKPETVKRDWFVVDAAGQTLGRLATEIASRLRGKHKPEYTPHVDTGDYIVVINAEQVRVTGAKTTDKMYYSHSGFPGGIKSINFEKLIAKAPERVIETAVKGMLPKNPLGRDMYRKLKVYAGAAHPHTAQQPQELKFNANANANANA
D1-35_01378393rpsICOG010330S ribosomal protein S9ATGTCGGCGACTCAAAATTACGGCACTGGCCGTCGCAAGACTGCAACCGCACGCGTTTTCCTGCGTCCGGGTACTGGCAACATCTCCATCAACAACCGCTCCCTGGATAACTTCTTCGGCCGCGAAACTGCCCGCATGGTAGTTCGTCAGCCGCTGGAACTGACCGAGACCGTCGAGAAGTTCGACATCTACGTCACCGTTATCGGTGGTGGTGTAAGTGGCCAGGCTGGCGCAATCCGCCACGGCATCACTCGCGCCCTGATGGATTACGACGAAACTCTGCGCAGCGCCCTGCGTAAAGCTGGCTTCGTAACTCGCGATGCTCGCGAAGTAGAACGTAAGAAAGTCGGTCTGCGTAAAGCGCGTAAGCGTCCGCAGTACTCGAAGCGTTAAMSATQNYGTGRRKTATARVFLRPGTGNISINNRSLDNFFGRETARMVVRQPLELTETVEKFDIYVTVIGGGVSGQAGAIRHGITRALMDYDETLRSALRKAGFVTRDAREVERKKVGLRKARKRPQYSKRNANANANANA
D1-35_01379594petACOG0723Ubiquinol-cytochrome c reductase iron-sulfur subunitATGAGCAATGACGGCGTGAATGCAGGCCGGCGTCGCTTCCTGGTAGCAGCCACATCCGTGGTGGGTGCTGCAGGAGCGGTGGGGGCTGCGGTCCCGTTCGTGGGGTCATGGTTTCCCAGTGCCAAGGCGAAAGCCGCAGGCGCACCGGTGAAAGTGAATGTCAGCAAGATCGAGCCAGGCCAGCAGATGATTGCTGAGTGGCGCGGCCAGCCGGTATTCATCGTCCGCCGTACAGAGGAGATCCTGGGGAATCTGAAAAAGATCGAGGGCCAGCTGTCCGATCCCTCTTCCAAGAACTCGGTCCAACCGGAGTACGTCAACCCTGAAACCCGTTCGATCAAGCCGGAAGTGCTGCTGCTGATCGGGATCTGCACTCACCTGGGTTGCTCGCCAACGTTCCGTCCCGAAGTGGCGCCTGCCGACCTGGGCAAAGACTGGGTCGGTGGTTATTTCTGCCCATGCCACGGCTCCCACTATGACCTGGCCGGTCGCGTCTACAAATCGCAGCCTGCACCTCTGAACCTGCCAGTTCCCCCGCATTCCTATGAGTCGGACGACATCATTGTCGTTGGCGTCGATACGGAGAAAGCGTGAMSNDGVNAGRRRFLVAATSVVGAAGAVGAAVPFVGSWFPSAKAKAAGAPVKVNVSKIEPGQQMIAEWRGQPVFIVRRTEEILGNLKKIEGQLSDPSSKNSVQPEYVNPETRSIKPEVLLLIGICTHLGCSPTFRPEVAPADLGKDWVGGYFCPCHGSHYDLAGRVYKSQPAPLNLPVPPHSYESDDIIVVGVDTEKAPGPT0030835_1324PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-ENERGY_METABOLISMPUTATIVE-PHOTOSYNTHESIS_ELECTRON_TRANSFER,PGPT0030835-petA-K00411
D1-35_013801212petBCOG1290Cytochrome bATGAGCAAATTAATGGACTGGTTTGATGCGCGCTTTCCCGCGACCAAAATGTGGGAAGACCATCTCAGCAAGTATTACGCGCCGAAGAATTTCAACTTCTTCTACTTTTTTGGCTCCCTGGCCTTGCTCGTCCTGGTCAACCAGATCGTTACCGGTGTCTGGCTGACCATGAGCTACACCCCGTCGGCGGAGGAAGCGTTTGCCTCCGTCGAGTACATCATGCGTGATGTCGAGTACGGCTCGATTCTGCGTCTGCTGCACTCCACCGGCGCCTCGGCGTTTTTCATCGTGGTCTATCTGCACATGTTCCGTGGCCTGCTCTACGGTTCGTACCAGAAGCCGCGTGAGCTGGTGTGGGTGTTCGGCATGCTGATCTACCTGGCGCTGATGGCCGAAGCCTTCATGGGTTATCTGCTGCCGTGGGGCCAGATGTCCTACTGGGGCGCCCAGGTGATCATCTCGCTGTTCGGTGCTATCCCGGTCATCGGCGATGACCTGACCCAGTGGATCCGCGGTGACTACCTGATCTCGGGCATTACCCTGAACCGCTTCTTCGCCTTGCACGTCGTGGCCTTGCCGATCGTGATCCTCGGCCTGGTGGTGCTGCACATCCTGGCGTTGCACGAAGTCGGTTCGAACAACCCCGATGGCGTGGACATCAAGAAACACAAGGACGAGAACGGCGTGCCGCTGGATGGCATCGCCTTCCACCCGTACTACACCGTGAAAGACATCGTCGGCGTGGTGGTCTTCCTGTTCATCTTCTGTTCGATCGTGTTCTTCTTCCCGGAAATGGGCGGCTACTTCCTCGAGAAGCCGAACTTCGAACAGGCCAACGCCTTCAAGACCCCTGAGCATATTGCCCCTGTCTGGTACTTCACCCCGTTCTACGCGATCCTGCGGGCGGTTCCCGACAAGCTGCTGGGCGTAATTGCCATGGGCGCCGCGATTGCCGTGCTGTTCGTCCTGCCCTGGCTGGACCGCAGCCCCGTCAAGTCGATGCGCTACAAGGGCTGGCTGAGCAAGATCTGGCTCTGGGTGTTCTGCATCTCGTTCGTGATCCTCGGCGTGCTGGGTGTGCTGGCACCGACACCGGGCCGGACGCTGCTGTCGCAGGTCTGCACCTTCCTGTACTTCGCCTACTTCATTCTGATGCCGTTCTACACCAGGCTCGAGAAGACCAAACCGGTTCCGGAAAGGGTGGCTGGCTGAMSKLMDWFDARFPATKMWEDHLSKYYAPKNFNFFYFFGSLALLVLVNQIVTGVWLTMSYTPSAEEAFASVEYIMRDVEYGSILRLLHSTGASAFFIVVYLHMFRGLLYGSYQKPRELVWVFGMLIYLALMAEAFMGYLLPWGQMSYWGAQVIISLFGAIPVIGDDLTQWIRGDYLISGITLNRFFALHVVALPIVILGLVVLHILALHEVGSNNPDGVDIKKHKDENGVPLDGIAFHPYYTVKDIVGVVVFLFIFCSIVFFFPEMGGYFLEKPNFEQANAFKTPEHIAPVWYFTPFYAILRAVPDKLLGVIAMGAAIAVLFVLPWLDRSPVKSMRYKGWLSKIWLWVFCISFVILGVLGVLAPTPGRTLLSQVCTFLYFAYFILMPFYTRLEKTKPVPERVAGPGPT0030840_1398PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-ENERGY_METABOLISMPUTATIVE-PHOTOSYNTHESIS_ELECTRON_TRANSFER,PGPT0030840-petB-K00412
D1-35_01381783petCCOG2857Ammonia monooxygenase gamma subunitATGAAAAAGCTATTTTCTGTACTGATTCTTGCTGCTTTGCCTGTTCTGTCCTTTGCGTCCACATCGAGTGGTCCGGAGCTGGAAAAAGTCGACATCGACGTTTCCGACAAAGCGGCCATGCAGGACGGCGCCCGTACTTTCGCCAACTATTGCATGGGCTGCCACAGCGCCAAGTTCCAGCGCTACGAGCGCGTGGCCGATGACCTGGGTATTCCCCATGAGTTGATGCTTGAAAAGCTGGTGTTCACCGGCGCCAAGCTGGGCGACCACATGAACATCGGCATGCAGCCGGCGGATGCCAAGACCTGGTTCGGCGCGGCGCCGCCCGACCTGACCCTGGTGGCGCGCGTGCGTGGTACCGACTGGCTCTATGGCTATCTGCGTTCGTTCTATGAAGACCCGGCGCGCCCTTGGGGCGTGAACAACAAGGTCTTCCCGAACGTCGGCATGCCGAACGTTCTGGTCGGCCTGCAGGGTCGTCAGGTGATAGGCTGCAAGCAGGTTCAGATCGTCGAGGACGGCAAGAAGCAATATGATCCGCTGACCGGCACCGCTTTGACCCATGAAGCCTGCGACCAGCTGACCATCGTGCCGAACTCCGGCAGCCTGACCCCGGAGCAGTTCGACGAGAAGGTCAAGAACCTGGTGACCTTCCTGGCCTACTCGGCCAACCCGGTGAAGCTGGAACATCAGCGCATCGGTACGTATGTATTGCTGTACCTGGCGTTCTTCTTCGTATTCGCTTATCTGCTCAAGCGTGAATACTGGAAAGACGTGCATTGAMKKLFSVLILAALPVLSFASTSSGPELEKVDIDVSDKAAMQDGARTFANYCMGCHSAKFQRYERVADDLGIPHELMLEKLVFTGAKLGDHMNIGMQPADAKTWFGAAPPDLTLVARVRGTDWLYGYLRSFYEDPARPWGVNNKVFPNVGMPNVLVGLQGRQVIGCKQVQIVEDGKKQYDPLTGTALTHEACDQLTIVPNSGSLTPEQFDEKVKNLVTFLAYSANPVKLEHQRIGTYVLLYLAFFFVFAYLLKREYWKDVHPGPT0030845_1401PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-ENERGY_METABOLISMPUTATIVE-PHOTOSYNTHESIS_ELECTRON_TRANSFER,PGPT0030845-petC-K00413
D1-35_01382618sspACOG0625Stringent starvation protein AATGGGCGTGACCAATCGGTTGGCCTGTTACTCCGACCCCGCCGACCACTATTCCCACCGGGTACGTATCGTACTGGCCGAGAAGGGTGTCAGCGCCGAGATCATTTACGTCGAAGCGGGCCGTCAGCCGCCGAAGCTGATCGAGGTGAACCCTTACGGCAGCCTGCCCACGCTGGTCGATCGTGACCTGGCACTGTGGGAGTCGACCGTGGTGATGGAGTACCTGGATGAGCGTTATCCGCATCCGCCGTTGCTGCCGGTGTACCCGGTCGCGCGTGCCAACAGTCGTTTGCTGATCCATCGCATCCAGCGTGACTGGTGCGGGTTGGTGGACCTGATCCTGGATTCCAGGACCAAGGAGCCGGCGCGTGTCGTGGCGCGCAAGGAATTGCGCGAAAGCCTGACAGGCGTGTCGCCGCTGTTTGTCGACAAGCCGTTTTTCCTCAGTGAGGAACAAAGTCTGGTGGATTGCTGCCTATTGCCCATACTCTGGCGTTTGCCGATCCTGGGTATCGAACTGCCACGGCCCGCCAAGCCGTTGCTTGATTATATGGAGCGCCAATTTGCGCGTGAGGCTTTCCAGGCGAGTCTGTCTGGTGTCGAACGTGACATGCGCTAAMGVTNRLACYSDPADHYSHRVRIVLAEKGVSAEIIYVEAGRQPPKLIEVNPYGSLPTLVDRDLALWESTVVMEYLDERYPHPPLLPVYPVARANSRLLIHRIQRDWCGLVDLILDSRTKEPARVVARKELRESLTGVSPLFVDKPFFLSEEQSLVDCCLLPILWRLPILGIELPRPAKPLLDYMERQFAREAFQASLSGVERDMRNANANANANA
D1-35_01383411sspBCOG2969Stringent starvation protein BATGAACTCCAGTCGACCTTATCTGGTCCGCGCGCTCTACGAGTGGATTGTGGACAACGATTGCACCCCGCACATGCTGGTCAATGCCGAGTATCCGTCGGTACAGGTGCCGCAGGGTTTTGCCAATGACGGGCAAATTGTCTTGAACGTATCGCCGGCCGCTGTGCGTCATTTGCACATGGACAACGATGCGGTCAGTTTCGAGGGGCGCTTCGGTGGGGTGCCGCATACGCTGTACGTGCCGATTGCCTCCATCCTGGGGATCTATGCCCGGGAGAATGGCCAGGGAATGGTATTCGAGCTGGAAGTGCCGTTGGACGGTGAGGAAGAGTTCGAGGCGGATGAGGATCTGCCGCCCGACGATGAGCCGCCGCGTCCTAGCGGGCGGCCTAGTTTGAAAGTGGTGAAGTGAMNSSRPYLVRALYEWIVDNDCTPHMLVNAEYPSVQVPQGFANDGQIVLNVSPAAVRHLHMDNDAVSFEGRFGGVPHTLYVPIASILGIYARENGQGMVFELEVPLDGEEEFEADEDLPPDDEPPRPSGRPSLKVVKPGPT0007945_6DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007945-folA-K00287NANA
D1-35_01384579hypothetical proteinATGACCCCTAATCGCCTAGGCCTTTTGGCCCTGACCCTGTGCCTCGGCATCAGCGGCTGCACATCGGTGGTTAACGCCAGCCGGGAAAAGCCGATTGAAGACGACCGCGGCACCCGCACCTTCGGCAGCAAGATCGACGACTCGTTGATCGAAACCAAAGTGGGCGTGAACATTGCCAAGGCCGACCCGGACCTGGACAACAATTCGCACATCGTCGTCACCAGCTTCAACGGCGTTGTGCTGCTGGCCGGCCAGACGCCCCGCGCCGACCTCAAGGCCAAGGCCGAACAGGAAGCCAGCGCCGTGCAGAGGGTCAAGACCGTGCACAACGAACTGCAGGTCCTCCAGCCCTCTTCGCTGCTGGCTCGCCAGAACGACGCCTGGCTGACCACCAAGATCAAGACCCAGATGCTCACCGACGCCAGCATTCCTGGTTCGCGCATCAAGGTTGTGACAGAGAACGGGATTGTCTATCTGCTGGGGTTGCTGACCAAGCAGGAGGCCGCGCAGGCGACCAATCTTGTTCAGGGTGTGTCTGGGGTGCAGAAGATTGTGAAGTTGTTTGAGTACATCGACTGAMTPNRLGLLALTLCLGISGCTSVVNASREKPIEDDRGTRTFGSKIDDSLIETKVGVNIAKADPDLDNNSHIVVTSFNGVVLLAGQTPRADLKAKAEQEASAVQRVKTVHNELQVLQPSSLLARQNDAWLTTKIKTQMLTDASIPGSRIKVVTENGIVYLLGLLTKQEAAQATNLVQGVSGVQKIVKLFEYIDNANANANANA
D1-35_01385594gmhACOG0279Phosphoheptose isomeraseATGGACATGCAATCGCGAATCCGCCAGCTTTTTCAGGCCAGCATCGACACCAAGCAACAGGCGATGGACGTACTTGCACCGCACATCGAGCAAGCCAGCCAAGTGATGGTCAATGCCTTGCTCAACGAGGGCAAGATGCTTTCGTGCGGCAATGGCGGTTCGGCCGGCGACGCCCAGCACTTCTCTTCGGAACTGCTCAACCGCTTCGAGCGCGAACGTCCGAGCCTGCCGGCCATCGCACTGACGACCGATAGCTCGACGATTACCTCGATCGCCAACGACTACAGCTACAACGAAGTGTTCTCCAAACAGATCCGCGCCCTCGGCCAGCCTGGCGATGTGCTCCTGGCGATCTCCACCAGTGGCAATTCGGCGAATATTATTCAAGCGATCCAGGCCGCACATGATCGCGAAATGATTGTCGTAGCATTGACCGGTCGCGACGGCGGCGGCATGGCTTCACTGCTGTTGCCTGAAGACGTCGAGATCCGCGTACCGGCCAATGTCACCGCACGTATTCAGGAAGTCCACCTGCTGGCGATCCACTGCCTTTGCGACTTGATCGACAGCCAACTGTTCGGGAGTGAAGAATGAMDMQSRIRQLFQASIDTKQQAMDVLAPHIEQASQVMVNALLNEGKMLSCGNGGSAGDAQHFSSELLNRFERERPSLPAIALTTDSSTITSIANDYSYNEVFSKQIRALGQPGDVLLAISTSGNSANIIQAIQAAHDREMIVVALTGRDGGGMASLLLPEDVEIRVPANVTARIQEVHLLAIHCLCDLIDSQLFGSEEPGPT0023030_955DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-MANNO-HEPTOSE|-PHOSPHATE_MODIFICATION,PGPT0023030-gmhA|lpcA-K03271NANA
D1-35_01386363hypothetical proteinATGCCCGACCGATCGCGCCAGCAAAGCGGCAGGGATGCCGAGGGCCTCGCCCTCGCGCATCTTGAGCAACACGGCCTGCGACTGCTGGCGCAAAACTGGCTGTGCAAACGCGGCGAGCTGGATCTGGTCATGCTTGACGGCGATACAGTAGTATTCGTCGAAGTCCGCTACAGAAAAAATACCCAATGGGGTGGCGCGCTCGACAGCATTGACCAGCGCAAGCGCCAGAAGCTGGTTTTCGCCGCGCAGTATTTCCTGCAACGCGAGTCTCGCTGGGCCGATCATCCTTGTCGCTTCGACGTGGTTGCCATCGATAGCAACGTCGACCAACTGAATTGGCTGCAAAACGCCTTCGACAGTTGAMPDRSRQQSGRDAEGLALAHLEQHGLRLLAQNWLCKRGELDLVMLDGDTVVFVEVRYRKNTQWGGALDSIDQRKRQKLVFAAQYFLQRESRWADHPCRFDVVAIDSNVDQLNWLQNAFDSNANANANANA
D1-35_013871812lpoACOG3107Penicillin-binding protein activator LpoAATGATCGCTTGCCTGCGGCTGCTCTCCGCCCTCTGCCTCGCTGCCCTCCTGGCGGCTTGCGTCAGCTCGCCCTCGTCCAGCCTTGGCGAACTTCCACGGACCCCGGACGCCAGTATCGAGCAATTGCTCGAACAGGCCGCCCAGAGTAAAAACCCGGAACAAGCCGCCCTGCTGCGCTTGAGCGCCGCCGACCTGGCCTACCGCCAGGGCAATGCTGGCCAGTCCGCACAGATCCTGCAACAAGTGCCGATGGAGCAGCTCAAGCCCGGCCAGCAGATTTTCGCCAACACGTTGTCAGCCGAACTGGCGATGACGCGCAACCAGCCCAAGGCCGCGCTGACTTCGCTGAGCCATCCGAGCCTGCAGCACCTGAGCGAAATGCCCGTGGAGCAGCAAGTCCGCACCGGTACCGTCCGCGCTCGCGCCCTGGAGGCCGATGGCCAGACCCTGGCCGCCGCCCGCGAGCGGATCTTCATTGCTCCGCTGTTGGAAAACGAAGCGCAGGCAAAAAATCACGAAGCCATCTGGACACTGATCGCCTCGCTGCCCACCGATCAACTGCAACCGACCACTACCGACGATCTCGGTGGCTGGCTGAGCCTGGCCAAAGCCGTGAAAACCGCCGGCACCCTGGAGCAGCAGCAAGCCGCCATCGACAGCTGGCGCGAACAGAACCCGAAACACCCTGCCGCACTCCAGTTGCCGACGCCGCTGGTCAAGCTCAAGGAGCTGGCAAGCCAGCCACTGGGCAAGATCGCCGTGTTGCTACCGCAGAATGGCCCGCTGGCCGCGGTCGCAAAAGCACTGCGCGAGGGCTTCATGGCCGCGCATTACCAGGCCCAACAGGCCGGGCAGAAGCCGCCGAGCATCCAGTTCTATGACAGCGCCAGCCTGACCTCGATGGACGAGTTCTATCGCAAGGCCCAGGCCGACGGCGTACAGCTGGTGGTCGGCCCGTTGGAAAAACCATTGGTCAAGCAGATCAGCACCCGCCCGCAATTGCCGATCACCACCCTGGCGCTGAACTACAGCGAAGGCGAACAAGGCCCGCCGCAACTGTTCCAGTTCGGCCTGGCGCCTGAAGACGAAGCCCGCGAAGTCTCCCGGCGCGCCCGCGCCGACGGCCTGCATCGTGCAGCCGTGATGGTGCCGAAAGGCGAATGGGGCGATCGCGTCTTGAAAGCCTTCAGCCAGGATTGGCAGGCCAATGGCGGGACCATCATGGCAATCGAGCGTGTCGACCAGCCGGTGCAACTGGCCCAGCAGATCGCCGACATGTTCCAGCTGCGCCAGAGCGAAGGTCGCGCCAAGAGCCTGCAAAGTACGGTAGGCACCGCGGTCGCGGCGCAGCCATCGCGTCGCCAGGACATCGAGTTCATTTTCCTCGCGTCGACCCCGCAGCAGGCCCAGCAGATCAAGCCGACCCTGAACTTCCAGTACGCCGGCGACGTGCCGGTCTACGCGACCTCCTCGGTGTTCAGCGTCAGCGGCGACCAGAACCAGTACAACGACATGAACGGCGTTCGCTTCTGCGAAACCCCATGGCTGCTCGACGCGAACGATCCGCTGCGCCAGCAGGTCACCGCGCAGTGGCCCCAGGCGGCCGGCAGCCTGGGCCGGCTGTACGCGATGGGCGCTGACGCCTATCGCCTGGCTCCACGCCTCGGCCAGCTCAAGGCCCTGCCGGACAGCCGCATCGAAGGCCTGTCGGGTAGCCTGGCTGTCTCCCCGACCCAGCGCGTGCAACGTCAACTCCCTTGGGCGCAGTTCGTCAACGGCCAGGTCCAGCGCCTGCCGGACACTCCGCGCTGAMIACLRLLSALCLAALLAACVSSPSSSLGELPRTPDASIEQLLEQAAQSKNPEQAALLRLSAADLAYRQGNAGQSAQILQQVPMEQLKPGQQIFANTLSAELAMTRNQPKAALTSLSHPSLQHLSEMPVEQQVRTGTVRARALEADGQTLAAARERIFIAPLLENEAQAKNHEAIWTLIASLPTDQLQPTTTDDLGGWLSLAKAVKTAGTLEQQQAAIDSWREQNPKHPAALQLPTPLVKLKELASQPLGKIAVLLPQNGPLAAVAKALREGFMAAHYQAQQAGQKPPSIQFYDSASLTSMDEFYRKAQADGVQLVVGPLEKPLVKQISTRPQLPITTLALNYSEGEQGPPQLFQFGLAPEDEAREVSRRARADGLHRAAVMVPKGEWGDRVLKAFSQDWQANGGTIMAIERVDQPVQLAQQIADMFQLRQSEGRAKSLQSTVGTAVAAQPSRRQDIEFIFLASTPQQAQQIKPTLNFQYAGDVPVYATSSVFSVSGDQNQYNDMNGVRFCETPWLLDANDPLRQQVTAQWPQAAGSLGRLYAMGADAYRLAPRLGQLKALPDSRIEGLSGSLAVSPTQRVQRQLPWAQFVNGQVQRLPDTPRNANANANANA
D1-35_01388873rsmICOG0313Ribosomal RNA small subunit methyltransferase ITTGACTGCTCCAGGTGCTTTGAATTCCGCTGCCGGCTCGCTTTACGTGGTGGCGACGCCCATCGGCAACCTGGACGATATCAGCGCCCGCGCGCTGAAGATCCTTGGCGAGGTCGCCCTTATCGCCGCCGAAGACACGCGTCACTCCCAGCGTCTGCTGCAGCACTTCGGTATTTCCACGCCATTGGCAGCTTGCCATGAACATAACGAACGGGACGAAGGCAGTCGTTTCATTACCCGTCTGCTGGCCGGCGACAATGTGGCGCTGATTTCCGATGCCGGCACGCCGCTGATTTCCGATCCGGGTTACCACCTGGTGCGCCAGGCCCGCGCTGCCGGTATCAATGTAGTGCCGGTGCCAGGTGCCTGCGCATTGATCGCGGCGTTGTCGGCGGCCGGCTTGCCATCGGACCGGTTTATCTTCGAAGGTTTCCTGCCGGCCAAGGCGGTGGGGCGGCGAGGGCGCCTGGAAGCTATAAAGGAGGAACCTCGAACGCTGATCTTTTATGAGGCGCCGCACCGTATCCTCGAATGTCTCCAGGACATGGAGCTGGTGTTCGGTCCCGAGCGCCAGGCATTGCTGGCTCGGGAACTGACGAAAACCTTCGAGACCTTGAAGGGGCTGCCTCTGGCGCAGTTGCGTGCGTTTGTTGAAAGCGACAGCAATCAGCAGCGTGGCGAGTGTGTGGTGCTGGTCGCGGGCTGGACACCGCCCCAGGACGAAGACGCCGTCAGTAGCGAAGCGATGCGCATCCTTGATCTGTTGCTGGAGGAAATGCCCCTCAAGCGAGCGGCGGCCCTCGCCGCGCAGATCACCGGCGAGCGCAAGAATGTGCTGTATCAGGCTGCGCTGGATAAACAGAAGGCCCAATGAMTAPGALNSAAGSLYVVATPIGNLDDISARALKILGEVALIAAEDTRHSQRLLQHFGISTPLAACHEHNERDEGSRFITRLLAGDNVALISDAGTPLISDPGYHLVRQARAAGINVVPVPGACALIAALSAAGLPSDRFIFEGFLPAKAVGRRGRLEAIKEEPRTLIFYEAPHRILECLQDMELVFGPERQALLARELTKTFETLKGLPLAQLRAFVESDSNQQRGECVVLVAGWTPPQDEDAVSSEAMRILDLLLEEMPLKRAAALAAQITGERKNVLYQAALDKQKAQNANANANANA
D1-35_01390456mraZCOG2001Transcriptional regulator MraZGTGTTTCGCGGAGCTAACGCTATCAGTCTCGATGCAAAAGGCCGTCTCGCCATGCCGAGCCGGTATCGTGACGAGCTCGTTTCGCGAAGTTCAGGACAGTTAATCGTCACGATCGACGCCGTTGATCCATGTTTATGCGTTTACCCTCTCGATGAGTGGGAAATCATCGAAACCAAACTGCGCGCACTGCCTTCGCTGCGGGAAGAGAACCGTCGCCTGCAACGCCTGCTGATCGGTAATGCCGTCGACCTCGAACTCGACGGCAGCGGTCGTTTCCTGGTGCCGCCGCGTCTGCGCGAGTACGCCAAGCTGGACAAGCGCGCGATGCTGGTGGGCCAACTGAACAAGTTCCAGCTGTGGGACGAAGATGCCTGGAATGCGGTTTCTGCCGCCGACCTTGCTGCTATTCAACAACCGGGCGCCATGCCTGATGAACTGCGTGATTTGATCCTGTGAMFRGANAISLDAKGRLAMPSRYRDELVSRSSGQLIVTIDAVDPCLCVYPLDEWEIIETKLRALPSLREENRRLQRLLIGNAVDLELDGSGRFLVPPRLREYAKLDKRAMLVGQLNKFQLWDEDAWNAVSAADLAAIQQPGAMPDELRDLILNANANANANA
D1-35_01391948rsmHCOG0275Ribosomal RNA small subunit methyltransferase HGTGACTACTGATAGCGGCTTTAACCACATCACCGTACTGCTTGACGAAGCCGTCGAGGCTCTCGCCGTACGTCCTGATGGCTGCTATCTGGACGGCACGTTCGGGCGTGGCGGGCATAGCCGGCTGATTCTCAGCCAGCTCGGTCCGGACGGTCGGCTGCTGGGGTTCGACAAGGATCCTCAAGCGATTGCCACCGGGCAAGCGCTAGCGGCCGAAGACGGCCGCTTTGTCGTTGTGCAGCGCAGCTTTGCGGAGCTCGGTTCGGAAGTCGCCCAACGCGGCCTGGCAGGCAAGGTCAGCGGCGTGTTGCTTGACCTGGGCGTGTCTTCGCCGCAGCTGGACGACCCGGAACGCGGCTTCAGTTTTCTCAACGACGGTCCGCTGGACATGCGCATGGATCCGTCCCGTGGCATCAGCGCGGCTGAATTCGTCAATACCGCGTCCGTAGAAGAAATCGCCCGCGTGTTCAAGGAGTACGGCGAGGAACGTTTTTCCGGGCGCATGGCGCGCGCGGTGGTCGAGCGTCGCGACATCAAGCCGTTCGAGCGTACCGGTGATCTGGCCGAAGTGCTGAAGGTTGCCAACCCTGCCTGGGAAAAAGGCAAGAACCCGGCGACCCGGGCTTTCCAAGGGCTGCGTATCCACGTCAACAACGAATTGGGCGATCTTGAGGCCGGTCTCGAAGCCGCTCTCGAGGCACTGGAAATCGGTGGGCGCCTGGTGGTGATCAGCTTCCATTCCCTGGAAGACCGTATCGTCAAGTTGTTCATGCGCAAGCTCACCAAAGGCGAAGCCGATAACCTGCCGCGCAATCTGCCGGTGCGTTTCGAGGCGTTCGTACCGAAAATCAAGATTCATGGCAAAGCGCAGTTCGCCTCCGAGGCCGAGCTCAAGGCCAACCCTCGCGCCCGTAGCGCCGTCATGCGTGTCGCGGAGAAGTTGCGGTGAMTTDSGFNHITVLLDEAVEALAVRPDGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQALAAEDGRFVVVQRSFAELGSEVAQRGLAGKVSGVLLDLGVSSPQLDDPERGFSFLNDGPLDMRMDPSRGISAAEFVNTASVEEIARVFKEYGEERFSGRMARAVVERRDIKPFERTGDLAEVLKVANPAWEKGKNPATRAFQGLRIHVNNELGDLEAGLEAALEALEIGGRLVVISFHSLEDRIVKLFMRKLTKGEADNLPRNLPVRFEAFVPKIKIHGKAQFASEAELKANPRARSAVMRVAEKLRNANANANANA
D1-35_01392294ftsLCell division protein FtsLGTGAGCAAGCTCTTCGCCAAGCCCCTGCCAGGCGGCAGCTTTTTCATGCTGCTGCTGTTTATTGGCGTGCTCGTTTCGGCCATTGCCGTGTCCTACAGCGCGCATTGGAACCGGCAGTTGCTCAACACCCTTTACAACGAGCTCAGCGTGCGCGACAAGGCGCAGGCCGAGTGGGGTCGGTTGATCCTGGAGCAAAGTACCTGGACCGCCCACAGCCGTATCGAAGTCCTGGCGACCGAACAGCTGAAGATGCGCATCCCCGGTGCGGCTGAAGTGCAGATGGTGGCGCCATGAMSKLFAKPLPGGSFFMLLLFIGVLVSAIAVSYSAHWNRQLLNTLYNELSVRDKAQAEWGRLILEQSTWTAHSRIEVLATEQLKMRIPGAAEVQMVAPNANANANANA
D1-35_013931743ftsICOG0768Peptidoglycan D,D-transpeptidase FtsIATGATGAAGCTCGAAGGGGCGCTGTTCCCGTGGCGGTTCCGCCTGGTCCTGGGTTTGCTCGGGATCATGGTCGCGGCCATCTCGTGGCGCATCATCGACTTGCAGGTGGTCGACCGTGACTTCCTCAAGGAGCAGGGCGACGCCCGTAGCGTGCGTCATATCCCGATCCCGGCTCACCGTGGCCTGATCACCGACCGCAATGGCGAGCCGCTGGCTGTCAGCACACCAGTGACCACCTTGTGGGCGAACGCCAAGGAAATGCAGCAGGCCAAGGAGAAGTGGCCGGCGCTGGCTGCCGCCCTCGGCCAGGACCCCAAGGCTCTGACCGAACGCCTCGAAGCCCAGGCCAACAAGGAATTCATCTATCTGGTGCGCGGGCTGACGCCCGAGCAAGGCCAGAGCGTGCTCGACCTGAAAGTGCCGGGGGTCTACGGCATCGAAGAGTTTCGGCGTTTTTATCCGGCCGGTGAGGTCACCGCCCATATGGTCGGGTTTACCGACATCGATGACCGGGGACGGGAAGGGGTCGAGCTGGCCTACGACGAATGGCTCGCCGGTGTCGCCGGCAAGCGCCAGGTCATCAAGGATCGGCGCGGCAGGCTGATCAAGGATGTCCAGGTCACCAAAAACGCCAAGGCCGGCAAGCCCTTGGCGTTGTCCATTGACCTGCGCCTGCAATATCTGGCCAACCGCGAGCTGCGCAACGCCATCGTCGAGAACGGTGCCAAGGCCGGCAGCCTGGTGATCATGGACGTGAAGACCGGCGAGATCCTCGCCATGGTCAACCAGCCGACCTACAACCCGAACAACCGTCGCAACCTGCAGCCGGCGATGATGCGCAACCGCGCGATGATCGACGTGTTCGAACCCGGTTCGACGATGAAGGCCGTGTCCATGGCCGCCGCCCTGGAAACCGGGCGCTGGAAGCCGAGCGACACCGTCGAGGTCTATCCGGGAACGTTGCAGATCGGCAAGTACACCATTCGTGACGTATCCAAGACCGAAGGACCGGTGCTCGACCTGACCGGCATCCTGATCAATTCCAGTAACGTCGGCATGAGCAAGATCGCCTTCGATATCGGTGGCGAGGCGATTTATCGCCTGGCCCAGAAGATCGGCCTCGGCCAGGACACGGGCCTGGGCTTCCCAGGCGAGCGCGTCGGCAACCTGCCCAACTATCGTGAATGGCGCAAGGCGGAAACAGCCACTTTGTCCTACGGCTACGGTGTTTCCGTGACGGCGATCCAGCTCGTCCACGCGTTTTCCGCGCTGGCTAACAATGGCCGTATTGCCCCGCTGACGCTGATCAAGACCGACAAGGCGCCGCAAACCACCCAGGTAATCCCTGAGGACGTCGCCAAGACCATGCAGGGCATGCTGCAACAGGTGATCGAGGCGCCGCGCGGTGTCTATCGCGCTCAGGTTCCGGCCTATCACGTTGCCGGCAAGTCCGGTACGGCGCGCAAGACTTCCGTGGGCACCAAGGGTTATGCCGAGAATTCCTATCGTTCGCTGTTCGCCGGCTTCGGGCCGATGAGCGATCCGCGCTATGCCATCGTGGTGGTCATCGACGAACCGAGCAAGGCCGGTTATTTCGGCGGCCTGGTATCGGCGCCGGTGTTCAGCAAAGTGATGTCCGGCACCCTGCGCCTGATGAACATCACCCCGGATAACCTGCCGCCGACCCAGCAGGCGAGTACCGCCCCGGTCGTCCCCCTGAAAGCCGACGGAGGGCGTGGCTGAMMKLEGALFPWRFRLVLGLLGIMVAAISWRIIDLQVVDRDFLKEQGDARSVRHIPIPAHRGLITDRNGEPLAVSTPVTTLWANAKEMQQAKEKWPALAAALGQDPKALTERLEAQANKEFIYLVRGLTPEQGQSVLDLKVPGVYGIEEFRRFYPAGEVTAHMVGFTDIDDRGREGVELAYDEWLAGVAGKRQVIKDRRGRLIKDVQVTKNAKAGKPLALSIDLRLQYLANRELRNAIVENGAKAGSLVIMDVKTGEILAMVNQPTYNPNNRRNLQPAMMRNRAMIDVFEPGSTMKAVSMAAALETGRWKPSDTVEVYPGTLQIGKYTIRDVSKTEGPVLDLTGILINSSNVGMSKIAFDIGGEAIYRLAQKIGLGQDTGLGFPGERVGNLPNYREWRKAETATLSYGYGVSVTAIQLVHAFSALANNGRIAPLTLIKTDKAPQTTQVIPEDVAKTMQGMLQQVIEAPRGVYRAQVPAYHVAGKSGTARKTSVGTKGYAENSYRSLFAGFGPMSDPRYAIVVVIDEPSKAGYFGGLVSAPVFSKVMSGTLRLMNITPDNLPPTQQASTAPVVPLKADGGRGPGPT0023865_3140DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023865-ftsI-K03587NANA
D1-35_013941464murECOG0769UDP-N-acetylmuramoyl-L-alanyl-D-glutamate--2,6-diaminopimelate ligaseATGTCCCTGAGCCTGAACAAGATTTTTGCCCACGCCGGGCATGACCTGCTGATTCGCGAGCTGGCCCTCGACAGCCGCGACGTGCGCGCCGGAGACCTGTTCCTGGCGGTGCCGGGTGCCCGTTTCGATGGTCGGGACCACATTGCCGACGCCTTGAAGCGCGGCGCGGCGGCGGTGGCTTATGAAGTGAACGGCGCAACCGTGCTGCCGATCACTGATGTTCCGCTGATCCCGGTCAAGGGACTGGCGGCGCAGTTGTCGGACATCGCCGGGCGTTTTTATGGCGAACCGAGCCGTCACCTGAACCTGATCGGCGTGACCGGCACGAACGGCAAGACCAGCGTTACCCAGTTGGTGGCGCAGGCGCTGGATCTGCTCGGCCAGCATTGCGGCATCGTCGGAACGCTGGGCAACGGTTTCCATGGCGCGCTGCAAAGCGGCCTGCACACCACGCCGAACCCGATTGCCGTGCAGGCGACCCTGGCCGACCTGAAGAAGGCCGGCGCCAAGGCCGTGGCGATGGAAGTCTCTTCCCATGGCCTCGATCAGGGTCGCGTCACTGCACTGGCGTTCGACGTCGCGGTGCTGACCAACCTGTCCCGGGATCACCTGGACTACCACGGCTCCATGCAAGCCTACGGCGAAGCCAAGGCCAGGCTGTTCGCCTGGAACGATCTGAAGTGCCGGGTCATCAACATTGATGACGAGTTCGGCCGCCAACTGGCCGCCGAGCAGCGCGAGTCCCGGTTGATCACCTACAGCCAGGAAGACCCCAGCGCCTACCTTTATATCCGTCAGGCGCAGTTCGATGACGAAGGCGTGCGCGCCACGCTGGTCACACCCCAGGGCGAGCACCACTTGCGCAGCACCTTGCTGGGGCGTTTCAACCTGAGCAACGTGTTGGCCGCCATTGGCGCCTTGCTCGGGCTGGACTATGCCCTGGACGAAATTCTCAAGGTGCTGCCGAAACTCGAAGGTCCGGCCGGTCGCATGCAGCGCCTGGGCGGCGGAACCCAGCCGCTGGTGGTGGTCGACTATGCCCACACCCCCGATGCACTGGAAAAAGTCCTCACGGCCCTGCGCCCGCACGCGAAGGGCAAGTTGCTTTGTCTGTTCGGCTGCGGCGGCGATCGTGATCGCGGCAAGCGCCCATTGATGGCCGAGGTCGTGGAACGACTGGCCGATGGCGTGCTGGTCACCGATGACAATCCGCGCAGTGAAGATCCAGCGCGCATTTTCGACGACATCCGCGCCGGTTTCTCGGAGGTCGATAACGTCACCTTCGTGGCCGGGCGTGGCCAGGCCATTGCCCAATTGATCGCCAGCGCTTCGGCGGACGACGTCATCGTCCTGGCCGGCAAGGGGCACGAGGACTACCAGGAAATAAACGGCGTGCGCCAGGCCTTTTCCGATCTGGTGGAAGCCGATCACGCCCTGACCGCGTGGGAGGTGGCCCATGCTTAAMSLSLNKIFAHAGHDLLIRELALDSRDVRAGDLFLAVPGARFDGRDHIADALKRGAAAVAYEVNGATVLPITDVPLIPVKGLAAQLSDIAGRFYGEPSRHLNLIGVTGTNGKTSVTQLVAQALDLLGQHCGIVGTLGNGFHGALQSGLHTTPNPIAVQATLADLKKAGAKAVAMEVSSHGLDQGRVTALAFDVAVLTNLSRDHLDYHGSMQAYGEAKARLFAWNDLKCRVINIDDEFGRQLAAEQRESRLITYSQEDPSAYLYIRQAQFDDEGVRATLVTPQGEHHLRSTLLGRFNLSNVLAAIGALLGLDYALDEILKVLPKLEGPAGRMQRLGGGTQPLVVVDYAHTPDALEKVLTALRPHAKGKLLCLFGCGGDRDRGKRPLMAEVVERLADGVLVTDDNPRSEDPARIFDDIRAGFSEVDNVTFVAGRGQAIAQLIASASADDVIVLAGKGHEDYQEINGVRQAFSDLVEADHALTAWEVAHAPGPT0024130_3529DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024130-murE-K01928NANA
D1-35_013951368murFCOG0770UDP-N-acetylmuramoyl-tripeptide--D-alanyl-D-alanine ligaseATGCTTAAGGCCTTGAAGCTCAGCGAGCTGAGCAACGCTTTGAATGCGCGCCTGATCGCCGCGGACGCCTCGTTCGACGGCGTCAGCATCGACAGCCGTGCGATCGCGCCGGGGCAGTTGTTCGTCGCTCTGGCCGGACCACGTTTCGACGGTCACGATTACCTCAACGAGGTGGCAGCCAAAGGCGCGGTCGCGGCACTGGTCGAGCGGGAAGTAAGCAACAGCACGCTGCCGCAGTTGCTGGTCAGCGACACTCGCCAGGCCCTGGGCCAGCTCGGTGCGCTGAATCGCGCGGCGTTTGCCAATCCGGTCGCGGCCATCACCGGTTCCAGCGGCAAGACCACGGTCAAGGAAATGCTCGCGAGCATCCTGCGCACACGCGGTCCGGTCCTGGCGACCCGTGGCAACCTGAACAATGACCTCGGCGTGCCTTTGACCCTGCTCGAACTGGCGCCGGAGCACAGCGCCGCGGTCATCGAACTCGGCGCTTCACGGCTCGGCGAGATTGCCTACACGGTCGGCATGACCAAGCCTCACGTGGCGGTGCTCAACAACGCCGGGACCGCCCATGTCGGCGAGTTCGGCGGCCCCGAGAAAATTGTCGAGGCCAAGGGCGAGATCATCGAAGGGCTGGCTAACGATGGCATCGCCGTGCTCAATCTCGACGATAAAGCCTTCGAAATCTGGAAGACCCGGGCCGGGGAGCGCAAGGTGCTGAGCTTCGCCCTGAGCAACCTGGCGGCGAATTTCTACGCCAGCGACCTGGATCGCGACGCCCGTGGTTGCCCGGCTTTCAACCTGCACAGCCCTGATGGCGCGGAGCGCGTGCAGTTGAACCTGCTTGGCACGCATAACGTTGCCAATGCCCTGGCCGCCGCGGCCGCCGCCCATGCGCTGGGTGTGTCGTTGCCGGGCATCGTTGCCGGGCTTACCGCCGTACAACCGGTCAGGGGACGCAGCGTCGCGCAGTTGGCGAGCAACGGCATGCGCGTTATCGACGACACCTACAACGCCAACCCGACGTCCATGTGCGCCGCTGTGGATATCCTTGCCGGTTTCTCCGGTCGCACCGTGCTGGTGCTGGGGGATATCGGTGAACTGGGCGAGTGGGCGCAGCAAGGCCATCACGATGTCGGTGCCTACGCGCGCGGCAAGGTCGATGCGCTGTATGCCGTCGGCCCGATGATGGCCCACGCCGTGGCGGCGTTTGGCGAGCACGCACAGCATTTCACCACGCAGGCCGAGCTGATACAGGCCCTGGGCGCCGAGCAAGACCCGAACACCACCCTATTGATCAAGGGCTCACGCAGTGCGGCGATGGAAAACATCGTTGCGGCTTTGTGCGGCACCCGTATGGAGAAACATTAAMLKALKLSELSNALNARLIAADASFDGVSIDSRAIAPGQLFVALAGPRFDGHDYLNEVAAKGAVAALVEREVSNSTLPQLLVSDTRQALGQLGALNRAAFANPVAAITGSSGKTTVKEMLASILRTRGPVLATRGNLNNDLGVPLTLLELAPEHSAAVIELGASRLGEIAYTVGMTKPHVAVLNNAGTAHVGEFGGPEKIVEAKGEIIEGLANDGIAVLNLDDKAFEIWKTRAGERKVLSFALSNLAANFYASDLDRDARGCPAFNLHSPDGAERVQLNLLGTHNVANALAAAAAAHALGVSLPGIVAGLTAVQPVRGRSVAQLASNGMRVIDDTYNANPTSMCAAVDILAGFSGRTVLVLGDIGELGEWAQQGHHDVGAYARGKVDALYAVGPMMAHAVAAFGEHAQHFTTQAELIQALGAEQDPNTTLLIKGSRSAAMENIVAALCGTRMEKHPGPT0024145_3450DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024145-murF-K01929NANA
D1-35_013961083mraYCOG0472Phospho-N-acetylmuramoyl-pentapeptide-transferaseATGCTGCTGCTGCTAGCGGAGTACCTGCAACAGTTCCACAAAGGCTTCGCGGTCTTCCAGTACCTGACCCTGCGCGGGATCCTGGGTGTGCTGACCGCGTTGTCGTTGTCGCTGTTCCTGGGCCCGTGGATGATCCGCACCCTGCAGAGCCTGCAGATCGGTCAGTCGGTTCGTAACGACGGCCCGCAGTCGCATCTGTCCAAATCCGGCACCCCGACCATGGGCGGCGCGCTGATCCTGTCGTCCATCGGTATCAGCACCTTGCTCTGGGCCGACCTGGCGAACCGTTACGTCTGGGTCGTGCTGCTGGTGACGCTGTTTTTCGGCGCCATTGGCTGGGTCGACGACTACCGCAAGGTCATCGAGAAGAACTCCCGTGGGCTGCCAAGCCGCTGGAAATATTTCTGGCAGTCGGTGTTCGGCCTCGGCGCGGCGATCTTCCTTTATATGACCGCCGCCTCGCCGGTGGAAACCACCCTGATCCTGCCGATGCTCAAGGACTACAGCATCCCGCTGGGCGCAGGTTTCATCGTGCTGACCTACCTGGTGATCGTCGGTTCGAGCAATGCGGTCAACCTCACCGACGGCCTCGACGGCCTGGCGATCATGCCGACGGTGATGGTCGGTGGTGCGCTGGGGATCTTCTGCTACCTGTCGGGTAACGTGAAATTCGCTGAATACCTGCTGATTCCTTATGTACCGGGGGCGGGCGAGCTGATCGTATTCTGCGGCGCGCTGATCGGTGCCGGCTTGGGCTTTCTTTGGTTCAACACCTACCCGGCGCAAGTCTTCATGGGCGACGTCGGCGCGCTGGCGCTGGGCGCGGCCCTGGGCACCATCGCCGTCATCGTTCGCCAGGAAATCGTCCTGTTCATCATGGGCGGCGTGTTTGTGATGGAGACCCTGTCAGTCGTCATTCAGGTTGCTTCCTTTAAATTGACCGGCCGCCGGGTATTTCGCATGGCGCCGATACACCACCATTTTGAACTCAAGGGCTGGCCCGAGCCGCGTGTGATCGTCCGTTTCTGGATTATCACCGTGATTCTCGTGTTGGTCGGCCTTGCCACCCTGAAGCTGAGGTAGMLLLLAEYLQQFHKGFAVFQYLTLRGILGVLTALSLSLFLGPWMIRTLQSLQIGQSVRNDGPQSHLSKSGTPTMGGALILSSIGISTLLWADLANRYVWVVLLVTLFFGAIGWVDDYRKVIEKNSRGLPSRWKYFWQSVFGLGAAIFLYMTAASPVETTLILPMLKDYSIPLGAGFIVLTYLVIVGSSNAVNLTDGLDGLAIMPTVMVGGALGIFCYLSGNVKFAEYLLIPYVPGAGELIVFCGALIGAGLGFLWFNTYPAQVFMGDVGALALGAALGTIAVIVRQEIVLFIMGGVFVMETLSVVIQVASFKLTGRRVFRMAPIHHHFELKGWPEPRVIVRFWIITVILVLVGLATLKLRPGPT0024105_2016DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024105-mraY-K01000NANA
D1-35_013971347murDCOG0771UDP-N-acetylmuramoylalanine--D-glutamate ligaseGTGTCCCTGATCGCTTCTGACCACTTCCGCATCGTTGTCGGCCTCGGCAAGAGCGGCATGTCCCTGGTTCGCTTCCTGGCGAACCGGGGTGTGTCGTTTGCCGTCGCCGATACGCGGGAAAATCCGCCTGAGCTGGCCACGCTGCGTCGTGACTATCCCCAGGTGGATGTGCGTTGTGGCGAGCTGGACGTCGAGTTCCTGTGCCGCGCCGACGAGCTCTACGTGAGCCCTGGCCTGGCCCTGGCGACCCCGGCCCTGCAGGCTGCCGCCGCCCGTGGCGTGAAATTGTCCGGCGATATCGAGCTGTTCGCGCGCAACGCCAAGGCGCCGATTATCGCCATCAGCGGTTCCAATGCGAAAAGCACCGTCACCACGCTGGTCGGTGAAATGGCCGCGGCCGCCGGCAAGCGTGTCGCCGTGGGCGGCAACCTCGGCACCCCGGCGCTGGATCTGCTCAGCGACGAGGTCGAGCTGTACGTCATGGAGTTGTCGAGCTTCCAGCTCGAGACCACCGATCACCTTGGCGCTGAAGTGGCCACTGTGCTGAACATCAGCGAAGACCACATGGACCGCTACAGCGGCCTGCCGGCCTATCACCTGGCCAAGCACCGGATTTTCCGTGGTGCCCGGCAAGTGGTGTTCAACCGCCAGGATGCCTTGACGCGTCCGCTGATGAGCGAAGGGCTGCCGTGCTGGACTTTCGGCCTCGGCGCTCCAGATTTCAAAGGCTTCGGTTTGCGCGAAGAGAACGGCGAGAAATATCTGGCCTTCGAGTTCCAGAACCTGATGCCGGTGCGCGAACTGAAGATTCGCGGCGCCCATAACCAGGCCAATGCCTTGGCCGCGCTCGCCCTCGGGCATGCCGTCGGGCTGCCGTTCGACGCCATGCTTTCGGCGCTGCGCAGCTTTGCCGGGCTCGAGCACCGCTGCCAGTGGGTGCGCGACCTGGATGGCGTGGCCTGGTACAACGATTCCAAGGCCACCAATGTTGGCGCCGCCCTGGCTGCCATCGAAGGCCTCGGCGCGGACATCCAGGGCAAGCTCGTGCTGATTGCCGGTGGCGACGGCAAGGGTGCCGATTTTAAAGACCTGCGCGATCCGGTGGCGGCCAACTGTCGTGCCGTGGTGCTGATGGGCCGCGATCGTGAACTGATCGCCCAGGCCCTCGGCGATGCCGTGCCGCAGGTTCGCGTCGCTTCGCTGGACGAAGCCGTGCAGCAATGCCGTGCCCTCGCGCAACCGGGCGATGCCGTGCTGTTGTCGCCGGCCTGCGCCAGTTTCGACATGTTCAAGAATTACGAAGAGCGCGGGCAACTGTTCGCCCGGGCTGCGGAGGACTTGGCATGAMSLIASDHFRIVVGLGKSGMSLVRFLANRGVSFAVADTRENPPELATLRRDYPQVDVRCGELDVEFLCRADELYVSPGLALATPALQAAAARGVKLSGDIELFARNAKAPIIAISGSNAKSTVTTLVGEMAAAAGKRVAVGGNLGTPALDLLSDEVELYVMELSSFQLETTDHLGAEVATVLNISEDHMDRYSGLPAYHLAKHRIFRGARQVVFNRQDALTRPLMSEGLPCWTFGLGAPDFKGFGLREENGEKYLAFEFQNLMPVRELKIRGAHNQANALAALALGHAVGLPFDAMLSALRSFAGLEHRCQWVRDLDGVAWYNDSKATNVGAALAAIEGLGADIQGKLVLIAGGDGKGADFKDLRDPVAANCRAVVLMGRDRELIAQALGDAVPQVRVASLDEAVQQCRALAQPGDAVLLSPACASFDMFKNYEERGQLFARAAEDLAPGPT0024125_3234DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024125-murD-K01925NANA
D1-35_013981218ftsWCOG0772putative peptidoglycan glycosyltransferase FtsWATGAGCCTGATGAACATCATCAAGCCGTACCCGTCGCCGCTGATTACCGGTCGCGGTATCGACCTGGATTTCCCGATGCTCGCCGGCTGCCTGGCGCTGCTCGGCCTGGGCCTGGTGATGATCACCTCCGCCTCGTCGGAAGTGGCCGCCGTGCAATCGGGCAACACCCTCTACCACATGATCCGCCACCTGATTTACCTGGTGATCGGCCTGGGCGCGTGCATTGTCACCATGATGGTGCCGATCGCCACCTGGCAACGCCTGGGCTGGCTGATGTTGCTGGGTGCCTTCGGCCTGCTGGTGATGGTGCTGGTGCCGGGTATCGGCCGCGAGGTCAACGGCTCCATGCGCTGGATCGGCTTCAGCTTCTTCAACGTGCAGCCCTCGGAAATCGCCAAGGTCTTTGTGGTGATCTACCTCGCCGGGTACCTGGTGCGTCGTCAGAAAGAAGTGCGCGAGAGCTGGATGGGCTTCTTCAAGCCGTTCATCGTGCTGCTGCCGATGGCCGGCCTGCTGCTGATGGAGCCGGACTTCGGCGCAACGGTGGTGATGATGGGCGCGGCGGCGGCAATGCTGTTCCTCGGCGGTGTCGGGCTGTTCCGCTTCACCCTGATGGTAGCGCTGGCGTTCGCGGCAGTGACCGTCCTGGTGCAGGCCCAGCCGTACCGGATGGCGCGCCTGATCACCTTTACCGATCCGTGGGCCGACCAGTTCGGTTCCGGCTACCAGTTGACCCAGGCGTTGATCGCCTTCGGTCGCGGCGAGTGGCTGGGCGTGGGCCTGGGCAACAGTGTGCAAAAGCAGTTCTACCTGCCGGAAGCTCACACCGACTTCGTGTTCTCGGTTCTCGCCGAGGAGCTGGGGGTAGTGGGTTCCCTGTGCACCGTCGCGCTGTTCGTCTTCGTTTGTGTGCGCGGCATGTACATCGGCTTGTGGGCCGAGAAGGCCAAGCAGTTCTTTGCCGCGTACGTGGCGTACGGCCTGTCGTTCCTGTGGATCGGCCAGTTCCTGATCAACATCGGGGTGAACGTCGGCCTGCTGCCGACCAAGGGCCTGACGCTGCCGTTCCTCAGTTATGGCGGCAGCTCCCTGGTGATCTGCTGTGCCTGCCTCGGCTTGTTGCTGCGCATCGAGTGGGAAAGTCGAACCCACCTGGGCAGCGAAGAAATGGAATTCCATGAAAGCGACTTCGCCGAGGAGCCGACTCATGGGCGCTAAMSLMNIIKPYPSPLITGRGIDLDFPMLAGCLALLGLGLVMITSASSEVAAVQSGNTLYHMIRHLIYLVIGLGACIVTMMVPIATWQRLGWLMLLGAFGLLVMVLVPGIGREVNGSMRWIGFSFFNVQPSEIAKVFVVIYLAGYLVRRQKEVRESWMGFFKPFIVLLPMAGLLLMEPDFGATVVMMGAAAAMLFLGGVGLFRFTLMVALAFAAVTVLVQAQPYRMARLITFTDPWADQFGSGYQLTQALIAFGRGEWLGVGLGNSVQKQFYLPEAHTDFVFSVLAEELGVVGSLCTVALFVFVCVRGMYIGLWAEKAKQFFAAYVAYGLSFLWIGQFLINIGVNVGLLPTKGLTLPFLSYGGSSLVICCACLGLLLRIEWESRTHLGSEEMEFHESDFAEEPTHGRPGPT0014810_1812DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CELL_GROWTH_SIGNALLING,PGPT0014810-ftsW|spoVE-K03588NANA
D1-35_013991071murGCOG0707UDP-N-acetylglucosamine--N-acetylmuramyl-(pentapeptide) pyrophosphoryl-undecaprenol N-acetylglucosamine transferaseATGGGCGCTAACGTGCTGATCATGGCGGGCGGAACCGGCGGGCATGTATTCCCGGCGCTGGCCTGCGCCCGGGAGTTCCAGGCGCGCGGCTACACCGTGCACTGGCTCGGCACGCCGCGTGGCATCGAGAATGAACTGGTACCCGCCGCCGGCCTCGAGCTGCATCGGATCAACGCCAGTGGCCTGCGGGGCAAAGGCAAGCTGTCGCTGCTCAAGGCACCGCTGATGCTGCTCAAGTCGATCTGGCAGGCGCGGGCGGTCATCCGTCGGCTGCGGCCGGTGTGTGTCGTCGGCTTCGGCGGTTATGTGACCGGTCCTGGCGGCGTCGCGGCAAAACTGGCCGGTGTGCCGGTGATCGTTCATGAGCAGAACGCGGTCGCTGGTACCGCCAATCGGTTACTGGTGCCGTTGGCCGCTCGAGTGTGTGAAGCCTTCCCCGACACCTTTACCCTGTCGGGCAGCCGTCGCACCACCGGTAACCCGGTGCGCACGGAGCTGTTCCTCGATACACCGCGCCCGGCCCTGGCCGGACGCAAGGCGCGTTTGCTGATCCTGGGCGGAAGCCTGGGAGCGGAACCGTTGAACAAACTGCTGCCCGAAGCCTTGTCCCAGGTCGCCCCCGAACTGCGCCCTGAAGTGTTTCACCAGGCTGGCAAAAACCACGATGAAGTGACCGCCGAGCGCTATCGCGCCGTTGGCGTCGAGGCGCAAGTGCAGCCTTTCATCAAAGACATGGCCCAAGCCTATGGCTGGGCCGACCTGGTGGTCTGCCGCGCAGGCGCGCTGACCGTCAGTGAACTGGCTGCCGCCGGTCTGCCCTCGATGCTGGTGCCTTTGCCCCACGCCATCGACGATCACCAGACCCGCAACGCCGATTATTTGGCCCGCGAAGGCGCTGCCTTCCTGATGCCACAAAGAACGACTGGCGCCGCGGATCTCGCTGCGCGCCTGACAGAGGTCTTGATGCAGCCGCAAACACTCGAAGACATGGCCCGCGCCGCACGCCGCCTGGCCAAACCCGATGCCACCGCCCAAGTGGTCGATACCTGCCTGGAGGTGGCCCATGGTTGAMGANVLIMAGGTGGHVFPALACAREFQARGYTVHWLGTPRGIENELVPAAGLELHRINASGLRGKGKLSLLKAPLMLLKSIWQARAVIRRLRPVCVVGFGGYVTGPGGVAAKLAGVPVIVHEQNAVAGTANRLLVPLAARVCEAFPDTFTLSGSRRTTGNPVRTELFLDTPRPALAGRKARLLILGGSLGAEPLNKLLPEALSQVAPELRPEVFHQAGKNHDEVTAERYRAVGVEAQVQPFIKDMAQAYGWADLVVCRAGALTVSELAAAGLPSMLVPLPHAIDDHQTRNADYLAREGAAFLMPQRTTGAADLAARLTEVLMQPQTLEDMARAARRLAKPDATAQVVDTCLEVAHGPGPT0024150_4049DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024150-murG-K02563NANA
D1-35_014001461murCCOG0773UDP-N-acetylmuramate--L-alanine ligaseATGGTTGAGAATCGCAAAGCCATGCCGCAGCCGGAAATGCGCCGCATCCGCCGCATCCACTTCGTCGGGATCGGCGGCGTGGGCATGTGCGGGATCGCCGAGGTGTTGCTGAACCTGGGTTACCAGGTCTCGGGTTCCGACCTGAAGGCTTCGCCGGTCACTGAGCGCCTGGAATCCTTCGGTGCACAGATTTTCATCGGCCATCGTGCCGAGAACGCCGCCAACGCCGATGTGCTGGTGGTCTCCAGCGCCGTGAACACTTCCAACCCGGAAGTCGCCACCGCCCTGGAACGTCGCATTCCCGTGGTGCCGCGCGCCGAGATGCTCGCCGAGCTGATGCGCTATCGCCACGGCATCGCCGTCGCCGGTACTCACGGCAAGACCACCACCACCAGCCTGATCGCCTCGGTGTTCGCTGCCGGTGGCCTGGACCCGACGTTCGTGATCGGTGGGCGCCTGAACGCCGCGGGCACCAACGCCCAACTGGGCACCAGCCGCTACCTGATCGCCGAAGCCGACGAGAGCGATGCAAGTTTCCTGCACCTGCAACCGCTGGTGGCCGTGGTGACCAACATCGACGCCGACCACATGGCGACCTACGACGGTGACTTCAACAAACTGAAGAAAACCTTCGTCGAGTTCCTCCACAACCTGCCGTTCTACGGTCTGGCGGTGGTGTGCCTGGACGATCCGGTGGTGCGCGAAATCCTCCCGCTGATCAAGCGTCCGACCGTGACCTACGGCTTTGGCGAAGACGCCGACGTGCGCGCGATCAACGTGCGCCAGCAGGGCATGCAGACGTTCTTCACCGTGCTGCGTCCTGATCGCGAGCCGTTGGACGTGTCGGTGAACATGCCCGGCAACCACAACGTGCTCAACTCGCTGGCGACAATTTGCATCGCCACCGACGAAGGCGTCAGCGATGAAGCCATCGTCCAGGGCCTGTCCGGGTTCCAGGGCGTAGGTCGACGCTTCCAGGTCTATGGCGAGCTGCCGGTGGACGGCGGCAACGTGATGCTGGTGGATGACTACGGCCATCACCCGACCGAAGTCGCGGCGGTGATCAAGGCCGTGCGCGGTGGCTGGCCGGAGCGCCGGCTGGTGATGGTCTACCAGCCGCACCGCTACAGCCGCACCCGCGACCTGTACGACGATTTCGTCCAGGTGCTGGCCGACGCCAACGTGCTGCTGTTGATGGAAGTCTACCCGGCCGGCGAAGAGCCGATCCCGGGCGCCGACAGCCGCCAGCTGTGCCACAGCATCCGCCAGCGCGGCCAGTTGGACCCGATCTACATCGACCGCGGCGTGGACCTCGCGCCGCTGGTCAAGCCGCTGCTGCGCGCCGGCGACATCCTGCTCTGCCAGGGCGCCGGTGATATCGGTGGCCTGGCCCCGAAACTGTTGAAAAGTCCGTTATTCGCCGGAGCCACCGTGGCCTCCAGCGAGGGGAAACTGAAATGAMVENRKAMPQPEMRRIRRIHFVGIGGVGMCGIAEVLLNLGYQVSGSDLKASPVTERLESFGAQIFIGHRAENAANADVLVVSSAVNTSNPEVATALERRIPVVPRAEMLAELMRYRHGIAVAGTHGKTTTTSLIASVFAAGGLDPTFVIGGRLNAAGTNAQLGTSRYLIAEADESDASFLHLQPLVAVVTNIDADHMATYDGDFNKLKKTFVEFLHNLPFYGLAVVCLDDPVVREILPLIKRPTVTYGFGEDADVRAINVRQQGMQTFFTVLRPDREPLDVSVNMPGNHNVLNSLATICIATDEGVSDEAIVQGLSGFQGVGRRFQVYGELPVDGGNVMLVDDYGHHPTEVAAVIKAVRGGWPERRLVMVYQPHRYSRTRDLYDDFVQVLADANVLLLMEVYPAGEEPIPGADSRQLCHSIRQRGQLDPIYIDRGVDLAPLVKPLLRAGDILLCQGAGDIGGLAPKLLKSPLFAGATVASSEGKLKPGPT0024120_848DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024120-murC-K01924NANA
D1-35_01401966ddlCOG1181D-alanine--D-alanine ligaseATGACTGCTGCCTACGCCAACCTGGTCTCGACCCTTGATCCGAAAGCCTTCGGCCGCGTGGCCGTGCTGTTCGGTGGCAAGAGCGCCGAGCGCGAGGTCTCTCTCAAGTCCGGCAACGCCGTGCTGCAAGCCCTGCAAAGCGCCGGCGTCGACGCATTCGGCATCGACGTGGGCGACGACTTCCTGCAGCGCCTGCTGAGCGAAAAGATCGATCGCGCCTTCATCATTCTTCATGGCCGTGGCGGCGAAGACGGCAGCATGCAGGGCTTGCTCGAATGCCTGGGCATTCCCTACACCGGCAGTGGCATCCTGGCTTCCGCCCTGGCGATGGACAAGTTGCGCACCAAACAGGTCTGGCACAGCCTCGGCATCCCGACGCCGCGTCACGCCGTGCTGGCGTCCGAGGCCGATTGTATTTCGGCGGCGACGGAACTGGGCTTCCCTTTGATCGTCAAACCGGCCCATGAAGGTTCAAGTATCGGCATGGCGAAAGTGAATTCGCTGCCTGAGTTGACCGCAGCCTGGAAGGACGCCAGTTCCTACGATTCGCAAGTGTTGGTCGAGCAATGGATCACCGGTCCCGAGTTCACCATCGCCACCCTGCGTGACCAGGTGTTGCCCCCGATTGCGCTGGGCACGCCCCACACGTTCTACGACTACGACGCCAAGTACATCGCTAATGACACCCAGTACCGCATTCCCTGCGGGCTGGACGCTGCCAAGGAAAAACAATTGATGGACCTCACGGCCAAGGCCTGTGAGGCGCTGGGTATCGCCGGTTGGGCGCGGGCGGACGTGATGCAGGACGCCGATGGGCAGTTCTGGTTCCTGGAAGTCAACACCGCGCCCGGCATGACCGACCACAGCCTGGTTCCGATGGCGGCTCGTGCTGCCGGCCTGGATTTCCAGCAACTGGTGCTGTCGATCCTGGCCGCCAGTGTCGGCAACCAAGAGTCCAGGGGTTAAMTAAYANLVSTLDPKAFGRVAVLFGGKSAEREVSLKSGNAVLQALQSAGVDAFGIDVGDDFLQRLLSEKIDRAFIILHGRGGEDGSMQGLLECLGIPYTGSGILASALAMDKLRTKQVWHSLGIPTPRHAVLASEADCISAATELGFPLIVKPAHEGSSIGMAKVNSLPELTAAWKDASSYDSQVLVEQWITGPEFTIATLRDQVLPPIALGTPHTFYDYDAKYIANDTQYRIPCGLDAAKEKQLMDLTAKACEALGIAGWARADVMQDADGQFWFLEVNTAPGMTDHSLVPMAARAAGLDFQQLVLSILAASVGNQESRGPGPT0020050_4011DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0020050-ddl-K01921NANA
D1-35_01402867ftsQCell division protein FtsQATGCAAGGCGCATCGCTTCGTCATCAGCCATCCGCACCCGGTCGCAAGCCGGTGCCGCGGGGTGCCAGCCGAATGGTGGCCAAAGAGCCGATGTCGGCGCGCTTGCCGAAAGCCAATTTCGGCTTTCTCAAGAGCTTGTTCTGGCCGGTGATGCTGGTGGTATTGGGGTTCGGCACGTATGAAGGCGCGCAGCGGCTGCTGCCTTATGCCGATCGGCCAATCGCCCGGATCAACGTCCAGGGTGACCTGAGCTACATCAGCCAGCAGGCGGTGCAGCAGCGGATCGCTCCGTTCGTCGCGTCGAGCTTCTTCACCATCGACCTGGCGGGCATGCGCACCGAGCTGGAGCAGATGCCCTGGATCGCCCACGCCGAAGTGCGGCGGGTATGGCCGGACCAGGTGTCGATTCGTCTGGAAGAGCAGTTGCCGGTGGCCCGTTGGGGCGACGAGTCGCTGTTGAACAACCAGGGCCAGGCGTTTACGCCACGGGAACTGGCCAATTATGAACATTTGCCACAACTGTTCGGTCCACAGCGGGCCCAGCAGCAAGTGATGCAGCAATACCAGGTGTTGAGTCAGATGTTGCGGCCACTGGGCTTCTCCATCGCGCGCCTGGAATTGCGTGAGCGCGGCAGCTGGTTCCTGACCACTGGCGCGGGCAGCTCGGGGCCGGGCATCGAGCTGTTGCTCGGGCGCGGCAACCTGGTGGAAAAGATGCGCCGCTTCATTGCCATCTATGACAAGACGCTCAAAGAACAGATTACGAACATTGCGCGCATCGATCTGCGCTACGCCAACGGCCTCGCTGTTGGCTGGCGGGAACCTGTAGCGCCGACGACGGCCGAACCCGCCGTCGCGAAGAATTAAMQGASLRHQPSAPGRKPVPRGASRMVAKEPMSARLPKANFGFLKSLFWPVMLVVLGFGTYEGAQRLLPYADRPIARINVQGDLSYISQQAVQQRIAPFVASSFFTIDLAGMRTELEQMPWIAHAEVRRVWPDQVSIRLEEQLPVARWGDESLLNNQGQAFTPRELANYEHLPQLFGPQRAQQQVMQQYQVLSQMLRPLGFSIARLELRERGSWFLTTGAGSSGPGIELLLGRGNLVEKMRRFIAIYDKTLKEQITNIARIDLRYANGLAVGWREPVAPTTAEPAVAKNNANANANANA
D1-35_014031260ftsA_1COG0849Cell division protein FtsAATGGCAAACGTGCAAAGCGGAAAAATGATCGTCGGTCTGGATATCGGCACTTCCAAGGTGGTAGCGCTGGTAGGCGAGGTCGCGGACGACGGCACGCTGGTCATCGTCGGGATCGGTACACACCCGTCCCGTGGCTTGAAGAAAGGCGTGGTGGTGAACATCGAGTCCACCGTCCAATCGATCCAGCGCGCCATCGAAGAAGCGCAGCTGATGGCCGGTTGCCGGATCCACTCGGCGTTCGTCGGTGTCGCGGGCAATCACATCCGCAGCCTGAACTCCCACGGCATCGTGGCGATTCGGGACCGTGAAGTCAGCTCCGCCGACCTTGAGCGCGTACTCGACGCGGCCCAGGCCGTGGCGATTCCGGCCGACCAGCGGGTGCTGCACACCCTGCCGCAGGATTACGTGATCGATAACCAGGAAGGCGTACGCGAGCCCCTGGGTATGTCCGGGGTACGCCTGGAAGCCAAGGTCCACGTGGTCACCTGCGCCGTGAACGCCGCGCAGAACATCGAGAAGTGCGTGCGTCGCTGCGGCCTGGAAATCGACGACATCATCCTCGAGCAACTGGCTTCGGCCTACTCGGTGCTGACCGACGACGAGAAAGAACTCGGCGTGTGCCTGGTCGATATCGGCGGCGGCACCACCGACATCGCGATCTTCACCGAAGGCGCCATCCGCCACACGGCAGTGATCCCGATTGCCGGCGACCAGGTGACCAACGACATCGCCATGGCGCTGCGCACCCCGACCCAGTACGCCGAGGAAATCAAGATCCGTTACGCCTGCGCCCTGGCCAAGCTGGCCGGTGCCGGTGAAACCATCAAGGTGCCGAGCGTCGGCGACCGTCCGCCGCGCGAATTGTCGCGCCAGGCCCTGGCCGAAGTGGTCGAGCCGCGCTACGACGAACTGTTCACGCTGATCCAGGCCGAACTGCGCCGCAGCGGCTACGAAGACCTGATCCCGGCCGGCATCGTGCTGACCGGCGGTACGTCGAAGATGGAGGGCGCGGTCGAGCTGGCCGAAGAGATTTTCCACATGCCGGTGCGCCTGGGCGTGCCCCATGGCGTCAAGGGCCTGGATGACGTGGTGCGCAACCCGATCTATTCGACTGGCGTGGGCCTGTTGATGTACGGCCTGCAAAAGCAATCCGACGGGATCTCGTTCTCGGGCATCGGCAGCCGTGACAGCTACAGCAGCGAAGAGCCCAAGGCACCGCTGTTCGAGCGGCTCCAGGCTTGGGTGAAGGGCAATTTCTAAMANVQSGKMIVGLDIGTSKVVALVGEVADDGTLVIVGIGTHPSRGLKKGVVVNIESTVQSIQRAIEEAQLMAGCRIHSAFVGVAGNHIRSLNSHGIVAIRDREVSSADLERVLDAAQAVAIPADQRVLHTLPQDYVIDNQEGVREPLGMSGVRLEAKVHVVTCAVNAAQNIEKCVRRCGLEIDDIILEQLASAYSVLTDDEKELGVCLVDIGGGTTDIAIFTEGAIRHTAVIPIAGDQVTNDIAMALRTPTQYAEEIKIRYACALAKLAGAGETIKVPSVGDRPPRELSRQALAEVVEPRYDELFTLIQAELRRSGYEDLIPAGIVLTGGTSKMEGAVELAEEIFHMPVRLGVPHGVKGLDDVVRNPIYSTGVGLLMYGLQKQSDGISFSGIGSRDSYSSEEPKAPLFERLQAWVKGNFNANANANANA
D1-35_014041194ftsZCOG0206Cell division protein FtsZATGTTCGAACTCGTAGACAACATCCCCGCCAGCCCGGTTATCAAGGTAATCGGTGTCGGCGGTGGCGGCGGCAACGCTGTCAACCACATGGTCAAGAGCAACATCGAAGGCGTTGAGTTCATCTGCGCCAACACCGATGCTCAGGCGCTGAAAAACATCGGCGCGCGGACCATCCTCCAACTCGGTACCGGCGTGACCAAGGGCCTGGGTGCCGGCGCGAATCCCGAGGTTGGCCGTCAGGCTGCCCTGGAAGATCGCGAGCGCATCGCTGAAGTCCTGGCTGGCACCAACATGGTGTTCATCACCACTGGCATGGGCGGCGGTACCGGTACCGGTGCAGCGCCGATCATTGCCGAAGTGGCCAAGGAAATGGGCATCCTCACCGTTGCGGTGGTGACCCGTCCGTTCCCGTTCGAAGGCCGCAAGCGCATGCAGATCGCCGATGAAGGCATCCGCGCGCTGAGCGAAAGCGTCGACTCGTTGATCACCATCCCCAACGAGAAGCTGCTGACCATCCTCGGTAAGGACGCCAGCCTGCTGTCGGCTTTCGCCAAGGCCGATGACGTACTGGCCGGTGCCGTTCGCGGTATCTCCGACATCATCAAGCGTCCGGGCATGATCAACGTCGACTTTGCCGACGTACGCACCGTGATGTCCGAAATGGGCATGGCGATGATGGGCACCGGCTGCGCCAGCGGTCCGAACCGTGCACGCGAAGCCACCGAAGCGGCCATCCGCAACCCGCTGCTCGAAGATGTGAACCTGCAGGGCGCCCGCGGCATCCTGGTGAACATCACCGCCGGTCCGGACTTGTCCCTGGGCGAGTACTCCGACGTGGGTAGCATCATCGAGGCGTTCGCTTCCGACCACGCAATGGTCAAGGTCGGCACCGTGATCGATCCGGACATGCGTGACGAACTGCACGTGACCGTGGTTGCCACTGGCCTGGGCGCGAAAATCGAGAAGCCGATGAAGGTGATCGACAACACCGTGCAGACCGCCATGGCTTCGCAGCCCCAGCAGCAAGCTGCCGCTCGTCAGGAAGCTCCCGCGGTGAACTACCGTGACCTGGACCGTCCGACCGTCATGCGCAACCAGGCCCAGGCCGGTGCTGCGACTGCCGCGAAGATGAATCCGCAAGACGATCTGGATTACCTGGACATCCCGGCATTCCTGCGTCGTCAGGCCGATTGAMFELVDNIPASPVIKVIGVGGGGGNAVNHMVKSNIEGVEFICANTDAQALKNIGARTILQLGTGVTKGLGAGANPEVGRQAALEDRERIAEVLAGTNMVFITTGMGGGTGTGAAPIIAEVAKEMGILTVAVVTRPFPFEGRKRMQIADEGIRALSESVDSLITIPNEKLLTILGKDASLLSAFAKADDVLAGAVRGISDIIKRPGMINVDFADVRTVMSEMGMAMMGTGCASGPNRAREATEAAIRNPLLEDVNLQGARGILVNITAGPDLSLGEYSDVGSIIEAFASDHAMVKVGTVIDPDMRDELHVTVVATGLGAKIEKPMKVIDNTVQTAMASQPQQQAAARQEAPAVNYRDLDRPTVMRNQAQAGAATAAKMNPQDDLDYLDIPAFLRRQADPGPT0027695_2944DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027695-ftsZ-K03531NANA
D1-35_01405912lpxCCOG0774UDP-3-O-acyl-N-acetylglucosamine deacetylaseATGATTAAACAACGCACCCTGAAGAATATTATCCGTGCCACAGGTGTCGGCCTGCACTCCGGCGAGAAGGTCTATCTGACCCTCAAGCCCGCGCCTGTCGACACCGGCATTGTGTTTTGTCGTGCCGACCTCGACCCTGTGGTGCAGATTCCTGCTCGCGCGGAAAACGTTGGTGAAACCACTATGTCGACCACGCTGGTCAACGGTGACACCAAAGTGGACACGGTGGAGCATTTGCTCTCGGCCATGGCTGGCCTGGGCATCGATAACGCCTACGTCGAGCTCTCCGCGTCCGAAGTCCCGATCATGGATGGCAGCGCCGGACCTTTCGTATTCCTGATTCAATCGGCTGGCCTGGAAGAGCAGGACGCGGCCAAGAAGTTCATCCGCATCCTGCGGGAAGTGACAGTGGAAGACGGCGACAAGCGCGCCACTTTCGTCCCTTTCGAAGGTTTCAAGGTGAGCTTCGAGATCGATTTCGATCACCCGGTTTTCCGTGACCGCACCCAGAGTGCAAGCGTGGATTTTTCCAGCACTTCGTTCGTCAAAGAAGTCAGCCGCGCGCGTACCTTTGGTTTCATGAGTGATATCGAGTACCTGCGCAAGCACAACCTCGCACTCGGTGGCAGTGTGGAAAACGCGATCGTGGTCGATTCCGATGGCGTGTTGAACGAAGACGGCCTTCGTTATGAAGACGAATTCGTCAAACACAAGATCCTCGATGCAATCGGCGACCTCTACCTGCTGGGCAACAGCCTGATTGGTGAGTTCAAGGGCTTCAAGTCCGGCCACGCACTGAACAACCAGCTGCTGCGCAAGTTGATTGAGCAGAAAGACGCTTGGGAAGTCGTGACGTTCGAAGACGCCAGCACCGCACCAATCTCTTACATGCGCCCTGTAGCGGCCGTGTAAMIKQRTLKNIIRATGVGLHSGEKVYLTLKPAPVDTGIVFCRADLDPVVQIPARAENVGETTMSTTLVNGDTKVDTVEHLLSAMAGLGIDNAYVELSASEVPIMDGSAGPFVFLIQSAGLEEQDAAKKFIRILREVTVEDGDKRATFVPFEGFKVSFEIDFDHPVFRDRTQSASVDFSSTSFVKEVSRARTFGFMSDIEYLRKHNLALGGSVENAIVVDSDGVLNEDGLRYEDEFVKHKILDAIGDLYLLGNSLIGEFKGFKSGHALNNQLLRKLIEQKDAWEVVTFEDASTAPISYMRPVAAVPGPT0022330_1518DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LIPID_A_METABOLISM,PGPT0022330-lpxC-K02535NANA
D1-35_014061506hypothetical proteinATGACAATGCAGATCGGAATCATGAGCGCGAGCAGTGCAACACCCGGCAACATCCCGCTTTCGATACGTTCGGAACGGGTACTCGTTTTGGCCAGCTCGCTGGTTGTCATCGCCATCGTAGCTATCGTGACGTTCCTGCTGATCCGTGAACACGCCAGCGCGCAGCAGGCAGCGACACGCGCGGCGAGCAACATTGTGCAGTTGATCGACGCCGACGTACTGCGCAATGTCGAACTCTACGATCTTTCGCTGCAAGGCCTGATTGCCGCAGCGAAACGCCAGGACCTCCAGGACGTTTCGCCAACGATCCGCCACCTCGCCCTGTTCGATCGCGCCACCGCAGCCCCTTATAAAGGCGACATATTGCTGCTCGACAAGCGCGGCGACGTGGTCGCCGATTCCGCTTCGATCGAACCGCGCAAGGGCAATTACGCCGATGGGGAATATTTCCAGTCCCATCTGCAGGAACCGGGCCCGGGCATGAAGATCAGCCGTCCGTTCCGGGCCCGGAGCAGTCCGCATGACTGGCGCATCAGCTTCAGCTACCGCTTGAACGACGACCGGGGCGGGTTCATGGGCGTGGCCGAGGCTGCAATGCGCCTGGGCTACTTCAGCCAGCTCTTCAAGAGCTTGAACATCGGCCATGGCGGCACGGTCAACCTGGTCAGCCGCGACGGGATCCTGTTGGCTCAGGAGCCGCCTCTGGCCGAAGACATGATCGGCAAGGATTTCAGCAGCCGACCGAACTTCGTGCGGATCCTGCGCGAAGGCGATGGCAGTTTTACCAGCGTGTCCAGCGTGGATCAGAAGCAGCGGCTGTACACCTTTTCCCAGGTAGGTAATCTGCCGCTGATCGTCGTGGTCGCGCTCTCTTCCCAAGAAGTTTTCGCGTCATGGCAACGCACGGCGCTGCTGGTCAGTGGCGCCACGGGCGCGCTGTGCTTCAGCTTGCTCTGGCTCACCTGGCTGCTGCGTCGGGAATTGAGACGCCGGCACACCGCTGAACGGGAACTGGCCCTGCTGGCATCCGTCGACCCCCTGACAGGCCTGGCCAACCGCCGGACGCTGGACCAGACGCTGCAACTGGAGTGGCTGCGCGCCCAGCGCTCCGGTCAATCGTTGTCGATCCTGATGATCGATGCCGACCACTTCAAGGCGCTCAATGATCGCCTGGGCCACCAACGCGGTGACGAGGCGTTACGAACCCTGGCGCAACTGATCGGCGGGTACGTGCGCCGACCGGCCGACCTGGCGGCGCGTTATGGCGGTGAAGAGTTCTCGGTGGTGCTGCCGGAGACGACGACCGCAGGAGCGTTCACCATGGCGCAAAACATTCGCGAAGCCGTTGAGCAACTGCCCGGTGAATTGACCATGACCGTCAGTATCGGCATCGCAACCTGGGCCCAAGGGCCTTATGACGAACTCGATCAATTGTTGCTCGCCGCTGACAAGGCGCTTTACCAGGCCAAGGCCAGTGGGCGTAATCGGGTGGTTTGCGCGATGTAAMTMQIGIMSASSATPGNIPLSIRSERVLVLASSLVVIAIVAIVTFLLIREHASAQQAATRAASNIVQLIDADVLRNVELYDLSLQGLIAAAKRQDLQDVSPTIRHLALFDRATAAPYKGDILLLDKRGDVVADSASIEPRKGNYADGEYFQSHLQEPGPGMKISRPFRARSSPHDWRISFSYRLNDDRGGFMGVAEAAMRLGYFSQLFKSLNIGHGGTVNLVSRDGILLAQEPPLAEDMIGKDFSSRPNFVRILREGDGSFTSVSSVDQKQRLYTFSQVGNLPLIVVVALSSQEVFASWQRTALLVSGATGALCFSLLWLTWLLRRELRRRHTAERELALLASVDPLTGLANRRTLDQTLQLEWLRAQRSGQSLSILMIDADHFKALNDRLGHQRGDEALRTLAQLIGGYVRRPADLAARYGGEEFSVVLPETTTAGAFTMAQNIREAVEQLPGELTMTVSIGIATWAQGPYDELDQLLLAADKALYQAKASGRNRVVCAMNANANANANA
D1-35_014071380sasA_3Adaptive-response sensory-kinase SasAATGTGTTGGAGAACCGCGGTGAGTAACAGCATCGCCCTGCGCCTGAGCGGCATGTTCACGCTGGTGGCGGCGCTGGTGTTCCTGCTGATTGGCGGCGGCTTGTACCAGCAGGTCGAAAAAGGTCTCGGCCTGTTACCAGAGGCGGAGCTCGATGCCCGCTACAGCGTGCTGGAGTCCACCGTCGGCCGCTATGGCACGCCGGAGCACTGGGTCAAGATCAACAACAAATTGCGCTTGCTCGGCGAGGAGGATAAACGCATCCACTTCTGGATCGTCAGCGATGACCCGCGCTTTGAATACGGTAACCCCGATGCACAGATCCGTGCCTTCGCCGCAGGTCCATTGGGCAAACGTGACCTGAAGCTGGCGACGCAGCATTACCCGATGAAAGTGCTGGTGAGCCAGTTCCCGGCCAAGGACCAGCGACCGCCGCTACGGTTCATGATCGGTATCGACACCGAGACCTTCTACCAGACTCAGCATCGTTTGCTGGTCGCGCTGGTGAGCCTGGCGATCGTCGGCGTGCTGCTGGCCTCGTTGCTGGGCTACTGGGTGGCGCGCATCGGTCTCAAGCCACTCATCAAGTTGTCGGACGAAGCCCGGCGCCTGGCCCCGCCCCGGCTCACCGGGCGCTTGCAATTGTCACCGCTGCCACCGGAACTCAACCAGTTCGTCAGTTCCTTCAACGCAACCCTGGACCGGGTCGAGCAGGCGTATTCAAGGCTGGAGTCATTCAATGCCGACGTTGCCCATGAACTGCGCTCGCCGCTGACCAACCTGATCGGCCAGACGCAGGTGGCGCTGACCCGCGGGCGCTCGGCAGAGCATTACTTCGAAGTGCTGCAATCGAACCTCGAAGAGCTGGAGCGACTGCGCTCGATCATCAACGACATGTTGTTCCTGGCCAGCGCCGACCAGGGTAGCAAGGCCACCAAGCTGACCACGACGTCCCTGGCCGATGAGGTGGCAACCACCCTCGATTATCTGGACTTCATCCTGGAAGACGCCCAGGTCCAGGTTCGCGTCAGCGGCGATGCCCAGGCCAGTATCGAGATCGCCCACCTGCGCCGGGCCTTGATCAATCTGCTCAGCAACGCCGTCCAGCACACCGCGCCCGGCCAGGTGATCGACGTGGACATCGAAGCCACCGGCGACCAGGTCATCCTGGGCGTCACCAATCCCGGCGAGCCTATCGCCGGCGAACACCTGCCGCGCCTGTTCGAGCGCTTCTACCGGGTCGACGTCTCCCGCAGCAACAGCGGCGCCAACCACGGCTTGGGCCTGGCCATCGTCAAGGCGATTGCGCTCATGCACGGCGGCGATGTATTCGTGCGCAGCGACCGTGGTGCCAACACCTTCGGGATCCGCTTGCCGGCCTGAMCWRTAVSNSIALRLSGMFTLVAALVFLLIGGGLYQQVEKGLGLLPEAELDARYSVLESTVGRYGTPEHWVKINNKLRLLGEEDKRIHFWIVSDDPRFEYGNPDAQIRAFAAGPLGKRDLKLATQHYPMKVLVSQFPAKDQRPPLRFMIGIDTETFYQTQHRLLVALVSLAIVGVLLASLLGYWVARIGLKPLIKLSDEARRLAPPRLTGRLQLSPLPPELNQFVSSFNATLDRVEQAYSRLESFNADVAHELRSPLTNLIGQTQVALTRGRSAEHYFEVLQSNLEELERLRSIINDMLFLASADQGSKATKLTTTSLADEVATTLDYLDFILEDAQVQVRVSGDAQASIEIAHLRRALINLLSNAVQHTAPGQVIDVDIEATGDQVILGVTNPGEPIAGEHLPRLFERFYRVDVSRSNSGANHGLGLAIVKAIALMHGGDVFVRSDRGANTFGIRLPAPGPT0004980_1308DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0004980-cusS|copS|silS-K07644NANA
D1-35_01408675czcR_1Transcriptional activator protein CzcRATGCGCGTTCTGATCATCGAAGACGAAGAAAAAACCGCCGACTACCTGCACCGCGGCCTGACCGAACAGGGTTACATCGTGGATGTGGCAGGGGATGGCGTCGAAGGGCTGCACCTGGCCCTGGAAAGCGATTATGCGGTGATCGTGCTCGACGTCATGCTGCCGGGCCTCGACGGCTTTGGCGTGCTGCGGGCCCTGCGCGCCCGCAAGCAGACGCCGGTCATCATGCTCACCGCCCGCGAACGGGTCGAAGATCGCATCAAGGGCCTGCGCGATGGCGCCGATGATTATCTGGGCAAGCCGTTTTCGTTCCTGGAGCTGGTGGCCCGCCTGCAAGCCCTGACCCGCCGCAGCAGCGGCCATGAACCGGTGCAGGTGAGCATCGCCGACCTGTGGATCGACCTGATCAGCCGCAAGGCCAGCCGCGCCGGGCAGCGTCTGGACCTGACCGCCAAGGAGTTTTCGCTGCTCAGCGTGCTGGCTCGCCGCCAAGGCGAGATCCTTTCGAAAACCGCGATTGCCGAAATGGTCTGGGACATCAATTTCGACAGCGACGCCAACGTCGTCGAAGTGGCGATCAAACGCCTGCGGGCCAAGCTCGACGGGCCTTTCGAGCACAAGCTTCTGCATACCATCCGAGGGATGGGTTATGTGTTGGAGAACCGCGGTGAGTAAMRVLIIEDEEKTADYLHRGLTEQGYIVDVAGDGVEGLHLALESDYAVIVLDVMLPGLDGFGVLRALRARKQTPVIMLTARERVEDRIKGLRDGADDYLGKPFSFLELVARLQALTRRSSGHEPVQVSIADLWIDLISRKASRAGQRLDLTAKEFSLLSVLARRQGEILSKTAIAEMVWDINFDSDANVVEVAIKRLRAKLDGPFEHKLLHTIRGMGYVLENRGEPGPT0004105_587DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0004105-cusR|copR|silR-K07665NANA
D1-35_014093114mdtB_1Multidrug resistance protein MdtBATGAAGGGCCGCGGCTCGATATCGGCGTGGTGCATCGACCACCCCATCGCCACGGTGCTACTGACGTTCGCCCTGGTATTGCTGGGGTTGATCGCCTTTCCCCGCCTGCCCGTCGCGCCTTTGCCCGAGGCGGAATTCCCGACCATCCAGGTCAACGCCCAACTGCCCGGCGCCAGTCCCGAAACCATGGCATCGTCCGTGGCGACCCCACTGGAGGTGCAATTCAGCGCCATTCCCGGCATTACCCAGATGACCTCAAGCAGTGCGTTGGGCTCGACCAACCTGACCCTGCAATTCAGTCTCGACAAGAGCATCGACACCGCCGCCCAGGAAGTGCAGGCGGCGATCAACACCGCCGCCGGCAAGCTGCCCAATGACATGCCGAACCTGCCGACCTGGCGCAAGGTCAACCCGGCCGACAGCCCGGTGCTGATTCTCAGCATCAGCTCCGACCTGATGCCAGGCACCGAACTGAGTGATTACGTCGAGACGCTGCTCGCCCGGCAGATCAGCCAGATCGACGGTGTTGGACAGATCTATATCACCGGCCAGCAGCGGCCGGCGATCCGGGTCCAGGCCTCGGCCGACCGGCTTGCCGCCATCGGCCTGACCCTCGCCGATATTCGCCAGTCCTTGCAGCAGGCCAGCCTCAACCTGGCCAAGGGCGCGCTGTATGGCGAGTCGAGTATTTCCACCTTGTCCACCAACGACCAGCTGTTCAAGCCGGAGGAATACGGCGAGCTGATCGTTTCCTACCGGGACGGCGCACCGGTCCATCTCAAGGACATCGCCAAAGTCGTCAACGGTTCGGAAAACGCCTACGTGCAGGCCTGGTCCGACGATCAGCCCGGCGTCAACCTGGTGATCTTCCGCCAGCCGGGGGCGAACATCGTCGAGACGGTCGACCGCATCCAGGCGGCGCTGCCGACCCTGGAAGCCATGCTGCCGGCCGCCATACAGGTCAAGGTGATGATCGATCGCACCCAGACCATTCGCGCTTCGCTGCATGAAGTGGAAATCACCCTGCTGATCGCGGTGCTGCTGGTGGTGGCGGTGATGGCGCTGTTCCTGCGCCAGCTCTCGGCGACGCTGATTGTCTCGGCCGTGCTCGGGGTGTCGCTGACCGCCAGTTTCGCGCTGATGTATGTGATGGGTTTCAGCCTCAACAATCTGACCCTGGTGGCGATCGTCATCTCGGTGGGATTCGTGGTGGACGACGCGATCGTGGTGGTGGAGAACATCCACCGGCACCTGGAAGCCGGCGATGGCATGCGCGAGGCGGCGATCAAGGGCGCCGGGGAAATCGGCTTCACGGTGGTGTCCATCAGCTTCTCGCTGGTGGCGGCGTTCATTCCGCTGCTGTTCATGGGCGGCGTGGTCGGGCGGCTGTTCAAGGAGTTTGCCCTGACCGCCACTTCGACCATCCTGATTTCCGTCGTGGTGTCCCTGACCCTGGCGCCGACCCTGGCTGCCTTGTTCATGCGCGCCCCGAAACATCACGCCCATGCCAGGCCGGGTTTCGGCGAGCGCCTGCTCGGCTGGTACGAACGCGGCCTGCGCCGGGCCCTGGCCCACCAGAAACTGATGATCGGCATGTTCGGCCTGACCCTCGCCCTCGCGGTCGTGGGCTACGTGTTCATCCCCAAGGGCTTCTTCCCGGTCCAGGACACCGGCCTGGTGCTGGGCACCAGCGAAGCGGCGGCCGATATCTCGTTCCCGGACATGGTGGCCAAGCACAAGGCCCTGGCCGAGATCGTCGCCGCCGACCCGGCAGTGCAGACCTTCTCGCACTCCGTCGGCGTCTCGGGCAACAACCAGACCATCGCCAACGGCCGCTTCTGGATCGCCCTCAAGCCTCGGGGCGAGCGCGATGTATCGGCCAGTGGCTTCATCGACCGGATCCGCCCCAAGTTGCTGAAGATTCCCGGCGTTGTGCTGTACCTGCGGGCCGGACAGGACATCAACCTCAGCTCCGGCCCGAGCCGCGCCCAGTATCAATACGTGCTCAAGAGCAACGACGGGCCGACCCTCAACGCCTGGACGCAGAAACTCACCGACAAGCTGCGCAGCATTCCGGCATTCCGCGACATTTCCAACGACTTGCAACTGGGCGGCAGCATCACCCACATCAACATCGACCGCAGCGCGGCGGCACGTTTCGGCCTCACCGCCAGCGATGTCGACCAGGCGCTCTACGACGCTTTCGGCCAGCGGCAGATCAATGAATTCCAGACCGAGACCAACCAGTACAACGTCATCCTGGAACTCGACACCCAGCAACGCGGCAAGGCCGAAAGCCTGGCGTATTTCTATCTGCGCTCGCCGCTGAGCGGGGAAATGGTCCCGCTCTCGGCCCTCGCCCGCTTCGACGCACCGACCAACGGCCCGCTGTCGATTGCCCACGACGGCATGTTCCCGGCCGCCAACCTGTCGTTCAACCTCGCGCCGGGCGTGGCGCTGGGGGATGCCGTGCGCCTGCTCGACCAGGCCAAGAACGAGATCGGCATGCCCGCCGCCATCACCGGCAGCTTCCAGGGCGCGGCCCAGGCGTTCCAGAGCTCGCTGAAAAGCCAGCCGTGGCTGATCCTCGCCGCGTTGGTGGCGGTGTACATCATCCTCGGCGTGCTCTACGAGAGTTTCGTCCATCCGTTGACGATTATTTCCACGTTGCCCTCGGCCGGCCTCGGCGCGTTGATCATGCTCTGGCTGTTGGGCCAGGACTTCTCGATCATGGCGCTGATCGGCCTGGTGCTGCTGATCGGCATCGTCAAGAAGAACGGCATCCTGATGATCGACTTCGCCCTCGATGCCCAGCGCAACGGCGGGATGGCGGCGCAGGAAGCGATTTTCCAGGCCTGCCTGACGAGGTTCCGTCCGATCATGATGACGACCCTGGCCGCCCTGCTCGGCGCCCTGCCACTGATGCTCGGCTACGGCCCCGGCGCGGAGTTGCGCCAACCCTTGGGCATCGCGGTGGTCGGTGGCCTGCTGGTGAGCCAGGCACTGACGCTGTTCACCACGCCAGTCATATACTTGTGGCTGGAGCGATTGTTCCATCGGCCCGCGCCTCGACCCGGTTCTGCGCCGACGGCGGCGCTGGCAAATGCAGACTGAMKGRGSISAWCIDHPIATVLLTFALVLLGLIAFPRLPVAPLPEAEFPTIQVNAQLPGASPETMASSVATPLEVQFSAIPGITQMTSSSALGSTNLTLQFSLDKSIDTAAQEVQAAINTAAGKLPNDMPNLPTWRKVNPADSPVLILSISSDLMPGTELSDYVETLLARQISQIDGVGQIYITGQQRPAIRVQASADRLAAIGLTLADIRQSLQQASLNLAKGALYGESSISTLSTNDQLFKPEEYGELIVSYRDGAPVHLKDIAKVVNGSENAYVQAWSDDQPGVNLVIFRQPGANIVETVDRIQAALPTLEAMLPAAIQVKVMIDRTQTIRASLHEVEITLLIAVLLVVAVMALFLRQLSATLIVSAVLGVSLTASFALMYVMGFSLNNLTLVAIVISVGFVVDDAIVVVENIHRHLEAGDGMREAAIKGAGEIGFTVVSISFSLVAAFIPLLFMGGVVGRLFKEFALTATSTILISVVVSLTLAPTLAALFMRAPKHHAHARPGFGERLLGWYERGLRRALAHQKLMIGMFGLTLALAVVGYVFIPKGFFPVQDTGLVLGTSEAAADISFPDMVAKHKALAEIVAADPAVQTFSHSVGVSGNNQTIANGRFWIALKPRGERDVSASGFIDRIRPKLLKIPGVVLYLRAGQDINLSSGPSRAQYQYVLKSNDGPTLNAWTQKLTDKLRSIPAFRDISNDLQLGGSITHINIDRSAAARFGLTASDVDQALYDAFGQRQINEFQTETNQYNVILELDTQQRGKAESLAYFYLRSPLSGEMVPLSALARFDAPTNGPLSIAHDGMFPAANLSFNLAPGVALGDAVRLLDQAKNEIGMPAAITGSFQGAAQAFQSSLKSQPWLILAALVAVYIILGVLYESFVHPLTIISTLPSAGLGALIMLWLLGQDFSIMALIGLVLLIGIVKKNGILMIDFALDAQRNGGMAAQEAIFQACLTRFRPIMMTTLAALLGALPLMLGYGPGAELRQPLGIAVVGGLLVSQALTLFTTPVIYLWLERLFHRPAPRPGSAPTAALANADPGPT0029055_7DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029055-mexN-K21133NANA
D1-35_014101158mdtA_2Multidrug resistance protein MdtAATGCCTATCCAGAAAAAAACCGTCCTGCTCGTCGCGTTACTGATCGCCCTGGCCGCCCTCGCCCTCTGGTTCATCATGAAGCCCGTCGCCAGCAAACCCAGTGCTTCCACCGCCGTGCCAGTGAAGGTGATAAGCGTTGTCGAGCAGGATGTGCCGCGCTTTGCCAGTGGCATCGGCACGGTACTGTCGCTGCACAGCGTGGTGATCCGTCCGCAGATCGACGGCATCCTCACCAGGCTGCTGGTCAAGGAAGGGCAACTGGTCAAGAAGGGGGACCTGCTGGCGACCATCGATGATCGTTCGATCCGCGCCAGCCTCGACCAGGCCCGCGCCCAGCTCAGCGAGAGCCAGGCGCAACTGGCCGTGGCCCAGGTCAACCTCAAGCGCTACAAGCTGCTGAGCGTCGATGACGGCGTATCGAAGCAGACCTACGACCAGCAACAGGCGCTGGTCAACCAGCTCAAGGCCACTGCCCAGGGCAACCAGGCGGCCATCGATTCGGCGCAGGTGCAGCTGTCCTACACGCAGATCCGCTCGCCGGTGAGCGGTCGCGTCGGCATTCGCAATGTGGATGAAGGCAATTTCCTGCGCACCAGCGACACCGAAGGCCTGTTCACGGTGACCCAGATCGACCCGATCGCCGTGGAGTTCTCCTTGCCCCAGCAAATGCTGCCGACCCTGCAGCGATTGATCGCCGCCCCGGACCAGGCCCTGGTCAAGGCCTACATCGGGGCCGACGGCGTGACCGGGGAATTGCTCGGCGAGGGGCGGCTCAGCCTCATCGACAACCAGATCAACACCAATACCGGAACCCTGCGGGCAAAGGCCGAATTCAATAACGCCGCGCAACGGCTGTGGCCGGGGCAACTGGTGACGCTGAAAATCCAGACCGCTATCGACAAGGGTGCCCTGGTAGTGCCGCCCACCGTGGTCCAACGCGGGCTGGAGCAACACTTCGTCTATCGGGTCAAAGGTGACAAGGTCGAAAGCGTGCCGGTGCAAATGGTTTATCAGGACAGCGACAGGCACATCATCAAAGGCGTGAACGCCGGCGACCAACTGGTGAGCGACGGCCAGTCACGCCTCAAGCCCGGCGCCAGTGTCCAGGTGCTCAGCGATCCGCCTGCCCTCGCCAAGACCGGGCAGGCGCAGCCATGAMPIQKKTVLLVALLIALAALALWFIMKPVASKPSASTAVPVKVISVVEQDVPRFASGIGTVLSLHSVVIRPQIDGILTRLLVKEGQLVKKGDLLATIDDRSIRASLDQARAQLSESQAQLAVAQVNLKRYKLLSVDDGVSKQTYDQQQALVNQLKATAQGNQAAIDSAQVQLSYTQIRSPVSGRVGIRNVDEGNFLRTSDTEGLFTVTQIDPIAVEFSLPQQMLPTLQRLIAAPDQALVKAYIGADGVTGELLGEGRLSLIDNQINTNTGTLRAKAEFNNAAQRLWPGQLVTLKIQTAIDKGALVVPPTVVQRGLEQHFVYRVKGDKVESVPVQMVYQDSDRHIIKGVNAGDQLVSDGQSRLKPGASVQVLSDPPALAKTGQAQPPGPT0029050_95DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029050-mexM-K21135NANA
D1-35_01411258hypothetical proteinATGACTTCCCCAACACCATCGCCTGTGGACGAGCACCCGAACGGTGAACCGTCCGGCCAGACCGACAGCGATGTTTCCAGCGCCGCCGACGACAAGGCGCCGATCCCGGCCTTCAAGTTTCCATTCAAACCAGGCGACCTGGCGGCGGCCAAAGGTGCCGGCCAACAACCGTGGTACAAGAACGGCGCGAAGAATGGCCATACCAAGACCCCCGGCGCCGCGCCTCCCGGCACGCGCCGTTCGATGGGCAAACGCTGAMTSPTPSPVDEHPNGEPSGQTDSDVSSAADDKAPIPAFKFPFKPGDLAAAKGAGQQPWYKNGAKNGHTKTPGAAPPGTRRSMGKRNANANANANA
D1-35_01412969dmlR_7HTH-type transcriptional regulator DmlRATGGACACTTTGCAAAACATGCGTGCGTTCAGCTGTGTTGCCGAAGCCGGCAGCTTCACCGCCGCCGCCGCGCAACTCGACACCACCACGGCCAACGTCTCGCGTGCGGTTTCCAACCTGGAAGCGCATCTGCAAACCCGTCTGCTCAACCGCACCACTCGCCGCATCGCCCTGACCGAAGCCGGCAAACGCTACCTGCTGCGGTGCGAGCAGATCCTGGCGTATGTCGAAGAGGCGGAAGCCGAGGCCAGCGATGCCCATGCGCGCCCGGCCGGACAATTGAAAGTCCACACCATGACCGGCATCGGCCAGCACTTCGTCATCGATGCCATCGCCCGTTATCGCAAGACGCACCCGGACGTGACCTTCGACCTGACCCTGGCCAACCGGGTGCCGGACATCCTCGACGAGGGCTACGACGTCTCGATCGTACTCGCCAGCGAGTTGCCGGACTCCGGCTTCGTGTCCCAGCGCCTGGGAATCACCTACAGCATCGTCTGCGCGTCGCCCGCCTACGTGAAGGCCAGCGGCTGCCCGCAGAAACCCAGCGACTTGCTGAACCACGCCTGCCTGCGCCTGGTCAGCCCGGTCATTCCGCTGGAGAAATGGGTGTTCGACGGCCCGGAGGGCCAGGAGATGGTCACCATCAACAGCTCACCGTTCCTGGTGAATTCCGCCGATGCGATGAAGACCGCGATCACCAGCGGCATGGGCGTGGGCGTGCTGCCGGTGTACGCCGCCATCGAAGGCTTGCGCAACGGCACGCTGGTGCGGGTCATGCCCAACTACCGCTCGCAGGAACTGAACCTTTACGCCATCTACCCTTCGCGCCAGTACCTGGATGCGAAGATCAAGACGTGGGTCGAATACCTGCGAGGCTCGTTGCCGGAAATCCTCGCGGCGCACCAGGCCGAACTGACGGCCTATGAATTGAGTGGAAGCCTGACGGGAGCACGGGTCGCGAACTGAMDTLQNMRAFSCVAEAGSFTAAAAQLDTTTANVSRAVSNLEAHLQTRLLNRTTRRIALTEAGKRYLLRCEQILAYVEEAEAEASDAHARPAGQLKVHTMTGIGQHFVIDAIARYRKTHPDVTFDLTLANRVPDILDEGYDVSIVLASELPDSGFVSQRLGITYSIVCASPAYVKASGCPQKPSDLLNHACLRLVSPVIPLEKWVFDGPEGQEMVTINSSPFLVNSADAMKTAITSGMGVGVLPVYAAIEGLRNGTLVRVMPNYRSQELNLYAIYPSRQYLDAKIKTWVEYLRGSLPEILAAHQAELTAYELSGSLTGARVANNANANANANA
D1-35_014131572ttgI_1Toluene efflux pump outer membrane protein TtgIGTGCCGCGTTGCATCAGCAGAGAGCTGAAGACTCTCAGTGTTTGGGTTTTGACGCTGACCCTCAGCGGTTGTATCGGGACGGGAGGGATCGCGCCGCAAGGCGAGCTCTTGTTGGCCAACCAGTTGGCGACCGATGCGGCGATACGCGAGGCCGCCCGCGATGCTCACTGGCCGACCCGCCAGTGGTGGAAAGCCTATGGTGACCCGCAACTGGACGGCTGGATTGACCTGGCCGTGCGAGACAGCCCGAGCCTGGCCATGGCCGTCGCCCGGGTGCGCCAGGCCAAGGCCATGGCGGGTGTCGCCGAGGCCGCCGAGTCGCTGCAGATCAATGGCGAGTCGGCCCTCAAGCGCCACAACTGGCCCACCGATCAGTTTTATGGCCCCGGCGAACTGGCCAACACCACCACTTGGGACAACAACGCCGCCCTGGGCCTGAGCTATGCGTTGGACCTGTGGGGCCGCGAGCGCAGCGCCAGCGAGCGGGCCGTCGACCTGGCCCATGTCAGCGTCGCCGAGGCGCGGCAGGCGCAGCTGGAATTGCAGGACAATATCGTGCGCGCCTACATCCAGTTTTCGCTGCATTACGCCCAGCACGACATCATCGCCGCGACCCTCCATCAGCAAGAGCAGATCCTCGAACTGGCGCAAAAGCGTCTGGACGGTGGCATCGGCACCCATTTCGAAGTCAGCCAGGCCCAGGCGCCATTGCCGGAAACCCATCGTCAGCTCGATGCCCTCGACGAAGCCATTGCCCTGAGCCGCAATCAATTGGCGGCGCTGGCCGGCAAGGGCCCGGGCGACGGCGCGCGCCTGCAACGGCCGAGCCTGGCGCTGGGGGCTCCGTTGAAACTGCCATCGGCGTTGCCCGCCGAACTGCTCGGCCAGCGCCCGGATGTGGTTGCCGCGCGCTGGCAGGTGGCGGCCCAGGCCCGTGGAGTCGAGGTGGCGCGCGCGGGTTTTTACCCCAACGTCGACTTGGTCGGTAGCCTGGGTTACATGGCTACTGGCGGTGGGGCGCTGGAGTTCCTGACAGGCAAGAAGCTCACCTACAACGTCGGCCCGGCGATTTCGCTGCCGATTTTCGATGGCGGACGCCTGCGTGGCGAGTTGGGCGAGGCTGCGGCGGGTTATGACATCGCCGTGGCGCGCTACAACCAGACGCTGGTGAATGCCCTCAAGAGCATTTCCGACCGGTTGATTCGCCGTGAGTCGATGGACAAGCAACAGGCCTTCGCCGCCGGATCGGTGGCCGCCGCCCAGCGCACCTACGACATCGCGCTGGTTGCGTTCCAGCGTGGGCTCACCGACTACCTCAACGTGCTCAACGCCCAGAGCCTGCTGTTCAAGCAACAACAGGTGCAACAGCAGGTAGAGGCAGCGCGGCTGAGCGCCCATGCCGATTTGGTCACCGCATTGGGCGGCGGGCTGGAGGCCGGCAGCGACATGCCTGTGGCAGGCGCTCCCCTGTGGCGAGGGAGCTTGCTCCCGCTGGGCTGCGAAGCAGCCCCAGGTTCTTCAGATGGGTGCTGCGCACCCGAGCGGGAGCAAGCTCCCTCGCCACGATGCTGAMPRCISRELKTLSVWVLTLTLSGCIGTGGIAPQGELLLANQLATDAAIREAARDAHWPTRQWWKAYGDPQLDGWIDLAVRDSPSLAMAVARVRQAKAMAGVAEAAESLQINGESALKRHNWPTDQFYGPGELANTTTWDNNAALGLSYALDLWGRERSASERAVDLAHVSVAEARQAQLELQDNIVRAYIQFSLHYAQHDIIAATLHQQEQILELAQKRLDGGIGTHFEVSQAQAPLPETHRQLDALDEAIALSRNQLAALAGKGPGDGARLQRPSLALGAPLKLPSALPAELLGQRPDVVAARWQVAAQARGVEVARAGFYPNVDLVGSLGYMATGGGALEFLTGKKLTYNVGPAISLPIFDGGRLRGELGEAAAGYDIAVARYNQTLVNALKSISDRLIRRESMDKQQAFAAGSVAAAQRTYDIALVAFQRGLTDYLNVLNAQSLLFKQQQVQQQVEAARLSAHADLVTALGGGLEAGSDMPVAGAPLWRGSLLPLGCEAAPGSSDGCCAPEREQAPSPRCNANANANANA
D1-35_014142181aaeB_1p-hydroxybenzoic acid efflux pump subunit AaeBGTGACGTATTTACTTCGGCTTCATCGCCTCGAATGGCGCCGTGGCTTTTTCGACTGGGCCCGCAGCGATGGGGTGACCTGGGTCTACATCTTCAAGGTATTGCTCGCCGTGTTCCTGACCCTGTGGCTGGCGATGCGCCTGGAGTTGCCGCAACCGCGTACGGCGATGATCACCGTGTTCATCGTCATGCAGCCGCAGAGTGGCCAGGTCTTCGCCAAGAGTTTTTATCGCCTGCTCGGTACCTTGGCCGGCTCGACGGTGATGGTGGCGCTGATCGCCCTGTTCGCCCAGAACACCGAGTTGTTTCTCGGCTGCCTGGCGATATGGGTCGGCATCTGTTCGGCCGGAGCAGCGCGTTATCGCAACTTTCGCGCCTACGGTTTTGTGTTGGCCGGGTACACCGCGGCGATGATCGGCCTGCCGGCCCTGGCTCATCCGGAAGGGGCTTTCATGGCGGCGGTATGGCGGGTGCTGGAGATTGCCCTGGGGATTCTCTGCGCCACCGCGGTGAGCGCTGCAATCCTGCCGCAAACCGCGAGCGCGGCCATGCGCAACGCGCTCTACCAGCGCTTCGGCGTGTTCGCCCTGTTCGTCACCGATGGCTTGCGCGGACGCAGCCAGCCCGAGGCATTCGAGGCACGCAACGTCGCTTTCATCGCCGAGGCGGTGGGCCTGGAAAGCCTGCGCAGCGTGACCGTGTTCGAAGACCCGCACATGCGCCGGCGCAACGGCCGACTGAGTCGCCTGAACAGCGAATTCATGGGCGTTACCACGCGCTTCAACGCCTTGCATCAGTTGCTTGAACGCTTGCGCAATGGCGCGGCCGATGCGGTGGTGGACGCGATCAAACCCGGCTTGCAAACCCTCGCCGAATTGCTCGACGGCTTCAGCGCGCGGGCCTTGACCGACGCCGATGCGACGCGTCTGGCGGCGGCGCTGGCGGCCTACAAGGCCGACTTGCCAGCCCGGGTGCGCCAACTGCGGGGACAATTTGAAGAGACGGATCCCAGTGAGGCGCAGCAGCTGGATTTCCATACTGCATACGAATTGCTCTATCGCTTCGTCGAAGACCTGCATGGCTACGCCCAGACCCACGCGTCACTGGCCGATCACCGCCACGAACGTGAGCGCTGGGACGAACCCTTCGTGTCGCAGACCAATGGCCTGGCCGCCGCGGCTGCCGGTTTTCGTGCCGCCTTCATCCTGGTGGTGCTGGGCAGCTATTGGGTCGCCACGGCCTGGCCGAGCGGTGCGACCATGACGATGATCGCCGCCGCCACCGTGGGCTTGTCGGCCGCCACGCCGAACCCCAAGCGCATGGCGTTCCAGATGGCCTGCGGCACGTTGTTCGGGGCGTTGATCGGGTTTGTCGAGATGTTCTTCATCTTCCCGTTGATCGACGGCTTCCCCTTGCTCTGCGTGATGTTGGCGCCCGTGATCATGCTGGGCGCGTTTCTCAGCTCACGTGCGCAATACGCCGGGGTCGGGCTGGGCCTGCTGATTTTTTTCAGCACCGGCTCGGTGCCGGACAACCTGACGGTCTACAACCCCTACGCCTTCATCAACGACTACCTCGCGATGATCCTCGGCATGCTGGTGTGTGCGGCTGCCGGGGCGATCATCCTGCCGCCCAACAGCCGCTGGATGTGGCGCCGGCTGGAACAGGACTTGCGCGAACAAGTGGTGTTCGCCATCAGTGGCAAGCTCAAGGGCCTCGCGTCGGGATTCGAGAGCCGTACCCGCGATCTGCTGCACCAGGCCTACGGGCTGGCGGCGGGACAGCCCCGGGTGCAACGGGACTTGCTGCGCTGGATGTTCGTGGTGCTGGAAGTCGGCCACGCGATCATCCAGTTGCGCAAGGAACAGGCGACGCTGCCGGTGCATCCGGCCTATGCCGAAAGCCAGCCATGGCGCCAGGCGATCCGGGTGATGGGGCGGGCGCTGGTGCGGCTGTTCCGCCAGCCTGGCCAGAAAAATCTGGAGCGCGCCCTGGTCGCGGTGGACCAGGCCATCAGCCGGGTCCAGTCCACCGACGAACCTTTCGCCCCGCATTTCGACACCTCCGCCCTGCGCCGGGTAAAGAGCTACCTGCACTTCATCCGCACCTCTCTGCTGGACCCGCAATCACCCTTGGCGGCTTATGCCGCGTCGCTGCCCCAGGAACCTGAACATGCTCCGTGAMTYLLRLHRLEWRRGFFDWARSDGVTWVYIFKVLLAVFLTLWLAMRLELPQPRTAMITVFIVMQPQSGQVFAKSFYRLLGTLAGSTVMVALIALFAQNTELFLGCLAIWVGICSAGAARYRNFRAYGFVLAGYTAAMIGLPALAHPEGAFMAAVWRVLEIALGILCATAVSAAILPQTASAAMRNALYQRFGVFALFVTDGLRGRSQPEAFEARNVAFIAEAVGLESLRSVTVFEDPHMRRRNGRLSRLNSEFMGVTTRFNALHQLLERLRNGAADAVVDAIKPGLQTLAELLDGFSARALTDADATRLAAALAAYKADLPARVRQLRGQFEETDPSEAQQLDFHTAYELLYRFVEDLHGYAQTHASLADHRHERERWDEPFVSQTNGLAAAAAGFRAAFILVVLGSYWVATAWPSGATMTMIAAATVGLSAATPNPKRMAFQMACGTLFGALIGFVEMFFIFPLIDGFPLLCVMLAPVIMLGAFLSSRAQYAGVGLGLLIFFSTGSVPDNLTVYNPYAFINDYLAMILGMLVCAAAGAIILPPNSRWMWRRLEQDLREQVVFAISGKLKGLASGFESRTRDLLHQAYGLAAGQPRVQRDLLRWMFVVLEVGHAIIQLRKEQATLPVHPAYAESQPWRQAIRVMGRALVRLFRQPGQKNLERALVAVDQAISRVQSTDEPFAPHFDTSALRRVKSYLHFIRTSLLDPQSPLAAYAASLPQEPEHAPNANANANANA
D1-35_01415201hypothetical proteinATGCTCCGTGAGATCGCCTTCCACGGCGTATACATGCCGACCATGACCCTGATGTTTTTCATCGCCGCCGGCCTCGCCTGGGCGTTGGATCGTTTCCTCTCGGGGCTGGATCTGTACCGTTTTTTCTGGCATCCGGCGCTGCTGCGCCTGAGCCTGTTCACTTGCCTGTTCGGCGCGCTGGCGCTGACGGTCTACCGTTGAMLREIAFHGVYMPTMTLMFFIAAGLAWALDRFLSGLDLYRFFWHPALLRLSLFTCLFGALALTVYRNANANANANA
D1-35_01416864aaeA_1COG1566p-hydroxybenzoic acid efflux pump subunit AaeAATGAAGAAATTTTTCAGCCTGCTGGCGACGCTGTTGGTGCTGGCGCTTGCGCTGTGGATCGGCCGGACGTTGTGGGTGCATTACATGAACACCCCATGGACCCGCGATGGCCGGGTCCGGGCCGACATCATCAACGTCGCCGCCGACGTCAGCGGCGAAGTGATCGAGGTGCCGGTGCGTGATAACCAGTTGGTCAAGAAGGGCGACTTGCTGATGCGCATCGACCCCGAGCATTACCGCATTGCGCTCAAGCAGGCGCGTTCCCTGGTGGCGTCCCGCAAGGCCACTTGGGAGATGCGCAAGGTCAACGCTCATCGGCGCGCCGACCTGGACAGCCTGGTGATTTCCCGGGAAAACCGTGACGACGCCAGCAATATCGCCGACTCGGCCCTGGCTGATTACCAGCACGCCCAGGCGCAGCTGGAGGCGGCCGAGCTGAACCTGGCTCGCACCGAGGTCCGTGCGGCGGTGGACGGCTACGTCACCAACCTCAATGTGCACCGTGGTGACTATGCACGCATCGGCGAGGCGAAGATGGCCGTGGTGGACATGAATTCGTTCTGGGTCTATGGCTTCTTCGAGGAAACCAAGTTGCCCAAGGTGCGGGTCGGCGATGCCGCGCAGTTGCAGTTGATGAGTGGCGAACTGCTCAAGGGGCACGTGGAAAGTATCTCCCGGGGCATCTACGACCGCGACAACCCCGAGAGCCGGGAACTGATTGCCGACGTGAACCCGACCTTCAACTGGGTGCGCCTGGCCCAGCGGGTGCCGGTGCGTATACATCTGGATGAAGTACCGGATGGCGTGCTGCTGGCGGCGGGGATGACGTGCACGGTGGTGGTAGAACCCCACGACAAGCGCTGAMKKFFSLLATLLVLALALWIGRTLWVHYMNTPWTRDGRVRADIINVAADVSGEVIEVPVRDNQLVKKGDLLMRIDPEHYRIALKQARSLVASRKATWEMRKVNAHRRADLDSLVISRENRDDASNIADSALADYQHAQAQLEAAELNLARTEVRAAVDGYVTNLNVHRGDYARIGEAKMAVVDMNSFWVYGFFEETKLPKVRVGDAAQLQLMSGELLKGHVESISRGIYDRDNPESRELIADVNPTFNWVRLAQRVPVRIHLDEVPDGVLLAAGMTCTVVVEPHDKRPGPT0023615_86DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYBENZOIC_ACID_GALLATE_RESISTANCE,PGPT0023615-aaeA-K15548NANA
D1-35_01417825ephDCOG1028putative oxidoreductase EphDATGCCCGTCGCGCTGATCACCGGATGTTCCAGCGGCATCGGCCGCGCCCTCGCCGATGCCTTCAAGACCGCCGGTTACCAGGTCTGGGCCAGCGCGCGCAAGGATGACGACGTGGCGCAGTTGCGCGCCGCCGGGTTCACCGCCGTGCAGCTGGATGTCAATGACGCTCAGGCGCTGGAACAGCTCGGCGAGCGAATCAACCAGGAACATGGCGGCCTCGATGTGCTGGTCAACAACGCCGGTTATGGCGCCATGGGCCCGTTGCTGGATGGCGGCGTGCCGGCCATGCAGCGTCAGTTCGAAACCAACGTGTTCGCCATCGTCGGCGTGACCCGCGCGCTCTTTCCGGTGCTGCGCCGGGCGAAGGGGCTGGTGGTGAACATCGGCAGTGTTTCCGGTGTGCTGGTCACGCCATTTGCCGGGGCGTACTGCGCCTCCAAGGCTGCCGTGCATGCCTTGAGTGATGCGCTGCGCATGGAACTGGCGCCGTTCGGGATCCGCGTGATGGAGGTCCAGCCCGGTGCCATTGCCTCCAGCTTCGCGAAAAATGCCGGGCATGAAGCCGAGCAGTTGATCAGCGAACAATCGCCCTGGTGGCCCCTGCGTGACGGTATCCGCGCCCGCGCCAAGGCCTCCCAGGACAACCCCACCCCCACCAGCGAATTCGCCGCCGCGCTGCTCAAAGCCGTGCAACAACCCAAACCACCGCGCTTGTTGCGTCTGGGCAATGGCAGCCGGGCGTTGCCGTTGATGGCCGGTCTGTTGCCCAAGGGGTTGCTGGAGAAAGGCTTGATGAAGCGGTTCGGGTTGGGTCGGTCGCTTTAAMPVALITGCSSGIGRALADAFKTAGYQVWASARKDDDVAQLRAAGFTAVQLDVNDAQALEQLGERINQEHGGLDVLVNNAGYGAMGPLLDGGVPAMQRQFETNVFAIVGVTRALFPVLRRAKGLVVNIGSVSGVLVTPFAGAYCASKAAVHALSDALRMELAPFGIRVMEVQPGAIASSFAKNAGHEAEQLISEQSPWWPLRDGIRARAKASQDNPTPTSEFAAALLKAVQQPKPPRLLRLGNGSRALPLMAGLLPKGLLEKGLMKRFGLGRSLNANANANANA
D1-35_01418465hypothetical proteinATGTTTATCGGCGTCTTGCTGGTCATCACCTGGCTCATCCTGCTGTTGCGCTACCCGGCCAAGGCATTGCCGGTGTCCCTGGCGGCGTTTGTCGGGTTGGGGCTGGTGGCGGCATGGGTACTCTGGGAAGAGAACCGGGAAACCCGGCAACTGGCACGTCTGGACCTGCGCGTCACGTTCGCTCCTGACCAGTGCCCCGCCGATCGCCCACTGCTGCTGAAAATGCGCAATGGCAACGACGTGCCTCTGACCGAACTGCGCTGGCGAATCGCAGCCTATGCCCCCGGCGATACCATCAACCTGGCGGACAACCAGTACAGCTCACCGCGCTACAGCGGCCCCGGCGAATTGCAACCCGGCGCCAACTGGCAGGACTGCCTGCCGATACCGCCACTGCGCCCCGGCTACCGCCCGCAAACCCTGGAGTTTCGTGCCGAGCGACTGCAAGGTAGTTTCTCCAACTGAMFIGVLLVITWLILLLRYPAKALPVSLAAFVGLGLVAAWVLWEENRETRQLARLDLRVTFAPDQCPADRPLLLKMRNGNDVPLTELRWRIAAYAPGDTINLADNQYSSPRYSGPGELQPGANWQDCLPIPPLRPGYRPQTLEFRAERLQGSFSNNANANANANA
D1-35_014191452algACOG0662Alginate biosynthesis protein AlgAATGATTCCGGTGATCTTGTCAGGTGGTAGCGGCTCACGTCTTTGGCCGCTTTCGCGCAAGCAATTCCCTAAACAGTTCCTGGCCTTGACCGGCGAACATACCCTGTTCCAGCAGACCCTCGAGCGCCTGGTGTTCGAAGGCATGGACACGCCGATCGTGGTCTGCAACAAGGACCACCGCTTCATCGTCAACGAGCAGCTGTCGGCCCGCAACCTGGAAGCCCAGCGCATCCTGATGGAACCGTTCGGTCGCAACACGGCACCTGCCGTGGCCCTGACTGCGATGATGCTGGTCAATGAAGGCCGCGACGAACTGATGCTGGTGCTGCCGGCCGACCACGTCGTCGAGGACCAGAAGGCCCTGCAACGCGCCCTGGCGCTGGCCACCGTGGCCGCCGAGCGTGGCGAAATGGTGCTGTTCGGCGTACCGGCGACCAAGCCGGAAACCGGTTATGGCTACATCAAGTCGACCAACGATGCCCTGCTGCCTGAAGGCGTCAGCCGCGTTTCGCACTTCGTCGAAAAACCCGACGTCAAGCGCGCCACTGAGTTCGTCGATGCCGGCGGTTACTTCTGGAACAGCGGCATGTTCCTCTTCCGCGCCAGCCGCTTCCTCGAAGAGCTGAAAAAGCACGATCCGGACATCTACGACACCTGCCTGCTGACTCTGGAGCGCAGCGAGCAGACCGCCGACACCATCACTTTTGACGAAGCCACTTTCGCCTGCTGCCCGGACAACTCCATCGACTACGCCGTGATGGAAAAAACCCAACGCGCCTGCGTAGTGCCGCTGTCGGCCGGCTGGAGCGATGTCGGCTGCTGGTCGTCGCTGTGGGAAGTCAATCCGAAGGACGCCAACGGCAACGTCACCAAGGGCGACGTCGTGGTCCAGGACAGCCGCAACTGCATGATCCACGGCAACGGCAAGCTGGTATCGGTGATCGGCCTGGACAACATCGTCGTGGTCGAAACCAAGGACGCCATGATGATCGCCCACAAGGACAAGGTCCAAGGCGTGAAGCAGATGGTCAACACCCTCAATGCCCAGGGCCGCACCGAAACCCAGAACCACTGCGAAGTCTATCGTCCATGGGGTTCCTACGACTCGGTGGACATGGGCGGTCGTTTCCAGGTCAAGCACATCTCGGTCAAGCCGGGCGCGTGCCTGTCGCTGCAGATGCACCACCACCGCGCCGAACACTGGATCGTGGTCAGCGGCACCGCCGAAGTGACCTGCGACGAGAATGTGTTCCTGCTCTGCGAAAACCAGTCGACCTACATCCCGATCGCGTCGGTCCACCGCCTGCGCAACCCGGGCAAGATCCCGCTGGAAATCATCGAAGTGCAGTCCGGTAGCTACCTGGGCGAAGACGACATCGAGCGCTTCGAAGACATCTACGGTCGCTCCACCCCGATCGAACGCGGCGTGTCGGTGAAGACCATCGCGCAGTAAMIPVILSGGSGSRLWPLSRKQFPKQFLALTGEHTLFQQTLERLVFEGMDTPIVVCNKDHRFIVNEQLSARNLEAQRILMEPFGRNTAPAVALTAMMLVNEGRDELMLVLPADHVVEDQKALQRALALATVAAERGEMVLFGVPATKPETGYGYIKSTNDALLPEGVSRVSHFVEKPDVKRATEFVDAGGYFWNSGMFLFRASRFLEELKKHDPDIYDTCLLTLERSEQTADTITFDEATFACCPDNSIDYAVMEKTQRACVVPLSAGWSDVGCWSSLWEVNPKDANGNVTKGDVVVQDSRNCMIHGNGKLVSVIGLDNIVVVETKDAMMIAHKDKVQGVKQMVNTLNAQGRTETQNHCEVYRPWGSYDSVDMGGRFQVKHISVKPGACLSLQMHHHRAEHWIVVSGTAEVTCDENVFLLCENQSTYIPIASVHRLRNPGKIPLEIIEVQSGSYLGEDDIERFEDIYGRSTPIERGVSVKTIAQPGPT0017875_559DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-ALGINATE_METABOLISMCE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0017875-algA|xanB|rfbA|wbpW|pslB-K16011NANA
D1-35_01420666algFAlginate biosynthesis protein AlgFATGACTTTCAACACTACTCCTCGCCGTCTCGCTGCTCGCTCCTTCAAGGCCGTTGCCCTGGTCGCCAGCATGAGTGCCCTGTCCTTCTCAGCGTTTGCCGGTGACTCGGCCCTGTACGGCCCGGTCGCGCCAAAAGGTTCGAGCTTCGTGCGGATCTACAACGCCAGCAACGCCGAAGTCAGCGCCACCGTCGGCAGCACCAATATCAGCGACGTGGCCCCACTGGCCAGCAGCGACTTCAGCTTCATGCCTGGCGGCGACTACAGCGCGAAGGTGGGCAGCCAGACCGTACCGGTTAAACTGGCCTCCGATCACTATTACACCCTGGTCAATAACGCCAGCGGCCAGCCACAACTGATCGAAGAGCCACCGTTCAAGAACAAGCAGAAATCCCTGGTCCGCATGCAGAACCTCAGCGACAAGCCGCTGACCCTCAAGACCGCTGATGGCAAGACCGAAGTGGTTCCGAACGTAGCGGCCAAGGGCCGTGGCGAACGTGAAATCAACCCGGTGAAAGTGAGCCTGGCACTGTACGAAGGCGACAAGAAAGTCGGCGACGTCAAGCCTGTTGCCCTGGAGCGTGGCGAAGCGGCCGTGCTGTACGTAACCGGCTCCGGCAGCAGCCTGTCGCCAGTCTGGGTGAAACGCCCGGTGTCGACCCGCTGAMTFNTTPRRLAARSFKAVALVASMSALSFSAFAGDSALYGPVAPKGSSFVRIYNASNAEVSATVGSTNISDVAPLASSDFSFMPGGDYSAKVGSQTVPVKLASDHYYTLVNNASGQPQLIEEPPFKNKQKSLVRMQNLSDKPLTLKTADGKTEVVPNVAAKGRGEREINPVKVSLALYEGDKKVGDVKPVALERGEAAVLYVTGSGSSLSPVWVKRPVSTRPGPT0026110_54DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-ALGINATE_METABOLISMCE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0026110-algF-K19296NANA
D1-35_014211176algJputative alginate O-acetylase AlgJATGACCCGCTCATTACGCATCTTCTACGTCGCACTGTTCATGCTGATACTGACAGCGCTGGGTATCTGGTCGATGCGCAGCTTCCTCGGCTTCAGCACCAACCCCGATGCGACCGTGCTCAACGGTCGCTGGGCCAAGGCCGTGGAAACGCATTACGACGAAGAATTCCCGATCAAACGCCTGGGCACCAACATCTGGGCGGCGCTGGACTACAAGCTGTTCAACGAGGGCCGCAAAGGCGTGGTCCTGGGCCGCGATCAGTGGCTGTTCAGCGATGAGGAATTCAACCCGATCGTCAACGAAGACCAGAACCTGCAAGGCAACTACGCGCTGATCGAAGGCGTGCGCCAGAAGCTCAAGGAGCAAGGCATTACCCTGGTCATGGCCATCGTGCCGGCCAAGGCGCGGCTGTATCCGGAGCACCTGGGTGAAGTGAAGCCTTCGAGCATTCACGCCAACCTGTACCAGGATTTCCACGCCCGTGTCGCGGCGGACAAGATCCTTGCCCCTGACTTGCTCGCCCCGCTGCAACAGGCCAAGCAAAGCGGTCAGCAAGTGTTCCTGCGCACCGACACCCACTGGACTCCGGAAGGCGCGCAAATCGCTGCGGAACATCTGGCCAAAGCGATTGCCGAACGCACACCACTGAACGGTGAGCCACAGCGTTTCGTCACAGAGCCTGCGGAAAAAATCATCCACAAGGGCGACCTGCGTCAGTTCCTGCCGCTGGACCCGCTGTTCGAAAACCTGATGCCAGCCCAGGAACCGCTGGTCAAGCGCAACACCCGCGAAGCCGACGACCAGCCGGCCAGCGAAGACGCACTGTTCGCCGATGCCCAGGTGCCCGTGGCTCTGATCGGTACCAGCTACAGCGCCAACCCGAACTGGAACTTCGTCGGTGCACTCAAGCAAGCCCTGCACAGCGACGTCGTCAACTACGCCGAAGACGGCCATGGCCCGATTCTGCCGATGCTCAGCTACCTCAAGAGCGACGCCTTCAAGAACAGCCCGCCACAAGTGCTGATCTGGGAGTTTCCTGAACGTTATCTGCCCGTGAACAACGAGATCGGCGACGCCGATCCGCAATGGGTCGCCGAGCTCAAACAAGCCGGCGCCCGCCAACAGAACGTAGCTGCAAACACACAATCCGAGACGCCCGACCGGGCGCAAAACTGAMTRSLRIFYVALFMLILTALGIWSMRSFLGFSTNPDATVLNGRWAKAVETHYDEEFPIKRLGTNIWAALDYKLFNEGRKGVVLGRDQWLFSDEEFNPIVNEDQNLQGNYALIEGVRQKLKEQGITLVMAIVPAKARLYPEHLGEVKPSSIHANLYQDFHARVAADKILAPDLLAPLQQAKQSGQQVFLRTDTHWTPEGAQIAAEHLAKAIAERTPLNGEPQRFVTEPAEKIIHKGDLRQFLPLDPLFENLMPAQEPLVKRNTREADDQPASEDALFADAQVPVALIGTSYSANPNWNFVGALKQALHSDVVNYAEDGHGPILPMLSYLKSDAFKNSPPQVLIWEFPERYLPVNNEIGDADPQWVAELKQAGARQQNVAANTQSETPDRAQNPGPT0026130_106DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-ALGINATE_METABOLISMCE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0026130-algJ-K19295NANA
D1-35_014221566hypothetical proteinATGGTATTTTCATCCAATGTGTTCCTGTTCCTGTTCCTGCCGATCTTTCTCGGCTTGTACTACCTGAGCGGGCAACGCTATCGCAACCTGCTGCTGCTGATCGCCAGCTACGTGTTCTATGCCTGGTGGCGGGTGGACTTCCTCGCCCTGTTCGCCGGCGTCACCCTGTGGAACTACTGGATCGGCCTGAAAGTCGGTGCCGCCGGCGTGCGCACCAAGCCGGCCCAGCGTTGGCTGCTGCTCGGCGTGGGCGTGGACCTGGCCATCCTGGGCTATTTCAAGTACGCCAATTTCGGTGTCGACAGCCTCAACGCGATCATCACCGGCTTCGGGCTGAACCCGTTCATCCTGACCCACGTACTGTTGCCGATCGGTATCTCGTTCTACATCTTCGAGTCCATCAGCTACATCATCGACGTGTATCGCGGTGACACACCGGCCACTCGCAACCTGATCGACTTCGCGGCATTCGTGGCGATCTTCCCGCACCTGATCGCCGGCCCCGTGCTGCGTTTCCGTGACCTGGCCGACCAGTTCAACAACCGCACCCACACGCTGGACAAGTTCTCCGAAGGCTGCACGCGCTTCATGCAGGGCTTCATCAAGAAAGTGTTCATCGCCGATACCCTGGCGGTGGTGGCCGACCATTGCTTCGCCTTGGAGAACCCGACCACGGGCGATGCCTGGCTCGGCGCCCTGGCGTACACCGCGCAGCTGTACTTCGACTTCTCCGGCTACAGCGACATGGCCATCGGCCTGGGCCTGATGATGGGTTTCCGTTTCATGGAAAACTTCAAGCAGCCCTACATCAGCCAGTCGATCACCGAGTTCTGGCGGCGCTGGCACATCAGCCTGTCGACCTGGCTGCGCGACTACCTCTACATCACCCTGGGCGGTAACCGCAAAGGCACGCTGATGACCTATCGCAACCTGTTCCTGACCATGCTGCTCGGTGGTCTGTGGCACGGTGCGAACATCACCTACGTGATCTGGGGTGCCTGGCACGGCATGTGGCTGGCCATCGAAAAAGCGGTGGGCATCGACACCAACCCACGCAGCATCAACCCGATCCGCTGGGCATTGACCTTCCTGCTGGTGGTGATGGGCTGGGTGATCTTCCGTGCCGAAAACCTGCACGTCGCCGGTCGCATGTACAGCGCGATGTTCAGCTTTGGTGACTGGTCGCTGTCGGAACTGACCCGCGCCAACCTCACCGGCCTGCAGATCGCTACGTTGGCGGTGGCCTACATCACCCTCGCCTTCTTCGGCCTGCGCGACTTCTACACCAATCGTCCGCCGGTCAAGGCCAAGCCTGAAGAGAGCACCGAAGCCAATGGGCCTGCCACTGCGCAACCGGGACTGATCAAAGCCGTACCGGGTGACAACCCGTCGACCATCCATGAACCAGGCTACACCGTCGGCGTCGAAGCCCAGGTGCAACCGGCCTACTGGACCGTGGACTGGTCGCGCTACGTGATGCGCACCCTGGTATTGGTGTTGTTCATCGCCTCGATTCTCAAACTGTCGGCGCAAAGCTTCTCGCCGTTCCTTTACTTCCAGTTCTGAMVFSSNVFLFLFLPIFLGLYYLSGQRYRNLLLLIASYVFYAWWRVDFLALFAGVTLWNYWIGLKVGAAGVRTKPAQRWLLLGVGVDLAILGYFKYANFGVDSLNAIITGFGLNPFILTHVLLPIGISFYIFESISYIIDVYRGDTPATRNLIDFAAFVAIFPHLIAGPVLRFRDLADQFNNRTHTLDKFSEGCTRFMQGFIKKVFIADTLAVVADHCFALENPTTGDAWLGALAYTAQLYFDFSGYSDMAIGLGLMMGFRFMENFKQPYISQSITEFWRRWHISLSTWLRDYLYITLGGNRKGTLMTYRNLFLTMLLGGLWHGANITYVIWGAWHGMWLAIEKAVGIDTNPRSINPIRWALTFLLVVMGWVIFRAENLHVAGRMYSAMFSFGDWSLSELTRANLTGLQIATLAVAYITLAFFGLRDFYTNRPPVKAKPEESTEANGPATAQPGLIKAVPGDNPSTIHEPGYTVGVEAQVQPAYWTVDWSRYVMRTLVLVLFIASILKLSAQSFSPFLYFQFPGPT0026125_214DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-ALGINATE_METABOLISMCE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0026125-algI-K19294NANA
D1-35_014231137algLAlginate lyaseATGACCAGAACCATGCGCACCCGAACGTTGAAAACGCTGTTGGCGCCATCGCTGCTGACCCTGGCGATATTCGCCGGGGCCACGCAGGCCGCGGCGCCACTGCGCCCGCCGCAGGGCTACTTCGCACCGATTGAAAAGGTCAAGGAAGGCTCCGGCGGCCAGGGCTGCGAAGCCGTGCCGACGCCTTACACCGGCTCGCTGCAGTTTCGCAGCAAGTACGAGGGCTCCGACAAGGCTCGCGCAACGCTGAACGTGCAGTCGGAAAAAGCCTTCCGCGACAGCACTGCCGACATCACCAAGATCGAGCGCGGCATCAGCAAGCAGGTCATGCAGTTCATGCGCGACGGTCGCCCCGAGCAACTGGAATGCACCCTGAACTGGCTGACCGCCTGGGCCAAGGCCGATGCGTTGATGTCCAAGGATTTCAACCACACCGGCAAGTCCATGCGCAAATGGGCGCTGGGCAGCATGGCTTCGGCCTATGTGCGCCTGAAGTTCTCCGAGTCGCGCCCGCTGGCGAATCACCAGGAACAGGCGCAACTGATCGAGAGCTGGTTCAGCAAGATGGCCGACCAGGTCGTCAGCGACTGGGACAACCTGCCGCTGGACAAGACCAACAACCACTCGTACTGGGCCGCCTGGTCAGTGATGGCGACCGCCGTGGCGACCAACCGTCGTGACCTGTTCGACTGGGCCGTCAAGGAATACAAGGTCGGCGTCAACCAGGTAGACGCCGAAGGCTTCTTGCCCAACGAGCTCAAGCGCAAGCAACGCGCCCTGTCCTACCACAACTATGCCCTGCCGCCGCTGGCGATGATCGCCAGTTTCGCCCAGGTCAACGGCGTGGACCTGCGCCAGGAAAACAATGGCGCCCTCAAGCGACTGGGCGACCGGGTGCTGGCCGGGGTGGAAGACCCGGACATCTTCGAAGAGAAGAACGGCGACGAGCAGGACATGAAGGATCTGAAGATCGATTCGAAATTCGCCTGGCTCGAACCGTTCTGCAGCCTCTACACCTGCTCCGAGGACGTGCTGGAACGCAAGCATGAAATGCAACCGTTCAAGACCTTCCGCCTCGGCGGCGACCTGACCCGCGTGTATGACCCTTCGCGGGAGAAAGGCGAGAAAGGTAGTTAAMTRTMRTRTLKTLLAPSLLTLAIFAGATQAAAPLRPPQGYFAPIEKVKEGSGGQGCEAVPTPYTGSLQFRSKYEGSDKARATLNVQSEKAFRDSTADITKIERGISKQVMQFMRDGRPEQLECTLNWLTAWAKADALMSKDFNHTGKSMRKWALGSMASAYVRLKFSESRPLANHQEQAQLIESWFSKMADQVVSDWDNLPLDKTNNHSYWAAWSVMATAVATNRRDLFDWAVKEYKVGVNQVDAEGFLPNELKRKQRALSYHNYALPPLAMIASFAQVNGVDLRQENNGALKRLGDRVLAGVEDPDIFEEKNGDEQDMKDLKIDSKFAWLEPFCSLYTCSEDVLERKHEMQPFKTFRLGGDLTRVYDPSREKGEKGSPGPT0019415_305DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-ALGINATE_METABOLISMCE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0019415-algL-K01729NANA
D1-35_014241452algXAlginate biosynthesis protein AlgXATGAACCCACAGATGATCAAACTTCTGGGCCTGTCCGCCCTGACTGCCGGCATTCTCGCCGCCGCAAGCGGCGCGCGCGCCGATGAAGTCAAAGCACCGACCTTTACCGCCGAACCCTGCTGCAACCTGTGCCCGGCTGCCCATGACGCGAAGAACTACACCACGCGCTACCAGCAGAACTTCACCACGCTGGTGCAGGCCCAGGGCGACTGGCTGTTCCGTACCCAGGAAGACCTGCGTACCGAGTTCAATACCACACCGGCCGGTTACAAGCGCATGCAGCAACTGCACGATGCGTTCAAGAAAAAAGGCGTCGAGCTGGTAATCGTCTACCAGCCGACCCGTGGCTTGGTGAACCGCAACAAGCTCAACCCGCAGGAGAAGGCTTCCTTCGACTACGAAAAGGCCCTGGCCAATTACAAAACCATGCTCGGCCGTTTCGCGCAGATGGGTTACGTGGTGCCGGACCTGTCGCCACTGACCAACGAAAACCTGCCCGAAACCCTGCCGGCCCACGACTTCTACTTCCGTGGCGACCAGCACTGGACCCCGTACGGCGCCCAGCGCACGGCGAAGATCGTGGCCGAGAAGGTCAAGCAGATCCCGGCCTTCGCTGACATTCCCAAGCAGGAATTCGAGACCAAGAAGTCTGGCCGCATGGGCAAGACCGGCACCCTGCACAACATGGCCGGGCAACTCTGCGGCACCAGCTACGCGATTCAGTACATGGACCAGTTCACCACCGAGCCCAAGGGCGAGGCTGGCGACGGCGACCTGTTCGGTGATTCCGGCAATCCGCAGATCACCCTCGTGGGCACCAGCCACAGCGGCAAGAACTACAACTTCGCCGGTTTCCTGCAAGAAGCCATCGGCGCCGACATCCTCAACGTGGCCTTCCCGGGCGGCGGTTTCGAGGGCGCGATGATCCAGTACCTGGGCAGCGAAGAGTTCCAGAAGAATCCGCCGAAGATTCTCATCTGGGAATTCTCGCCGCTGTATCGCCTGGACCAGGAAACCATCTATCGCCAGATGATGGCGCTGCTCGACAACAACGGTTGCGAAGGCAAGCCGGCGCTGATGAGCAGCAAGGCCAAGCTAAAGCCGGGCAAGAACGAATTGATGGTCAACAGCAAGAATATGGACCTGCGTAACGGCAGTCACCAGATCGACATCCGCTTCACCGACACCTCGGTGAAAACCTTGCAAGCCACCCTCTGGTACATGAATGGGCGCCACGAGGACATCAAGATCGAAAAACCGAACACCTCCGAAACCGACGGGCGTTTCGCCTTCCAATTGCGCACCGACGAAGACTGGGCCTCGCAGAACCTCCTGGCTCTAGAAGTCCAGGGTCCTGAAGCCGGTAAAGAGCCACTGCAAGTGGAAGCGAAAGTCTGCAAACGCAATGCATCTCCGCAAGCCGAGCAACAAACGGCTCAAATCGGACAATGAMNPQMIKLLGLSALTAGILAAASGARADEVKAPTFTAEPCCNLCPAAHDAKNYTTRYQQNFTTLVQAQGDWLFRTQEDLRTEFNTTPAGYKRMQQLHDAFKKKGVELVIVYQPTRGLVNRNKLNPQEKASFDYEKALANYKTMLGRFAQMGYVVPDLSPLTNENLPETLPAHDFYFRGDQHWTPYGAQRTAKIVAEKVKQIPAFADIPKQEFETKKSGRMGKTGTLHNMAGQLCGTSYAIQYMDQFTTEPKGEAGDGDLFGDSGNPQITLVGTSHSGKNYNFAGFLQEAIGADILNVAFPGGGFEGAMIQYLGSEEFQKNPPKILIWEFSPLYRLDQETIYRQMMALLDNNGCEGKPALMSSKAKLKPGKNELMVNSKNMDLRNGSHQIDIRFTDTSVKTLQATLWYMNGRHEDIKIEKPNTSETDGRFAFQLRTDEDWASQNLLALEVQGPEAGKEPLQVEAKVCKRNASPQAEQQTAQIGQPGPT0026140_26DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-ALGINATE_METABOLISMCE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0026140-algX-K19293NANA
D1-35_014251593algGMannuronan C5-epimeraseATGAACCACTACCTCAGGAACAGCCAGGCGATGAAAGGTTCGATCAGCCTGTTGGCCGCAGCCATGCTGCTGGCCGGCTCGTCGGCGTTCGCCAACGTTGAACCGGTGGTCAAGCCGGGCAACGTGGTCAAGGAACTGCAGCAAGCCAAGACCTACACCGTCAGCAGCGCGCCAACCGCACCGCTGGAACTGGCCGCACCGACCCTGCCCGACCTCTCCGGCTACACCGCCGAAGCGGTCGCGGCGAAGATCGTGCGCAGCAAGCCCGGCAAGGTCAGCGTGCGGCGGATGATGCAGGAAAACGCCTTGAAGGACTTCATCGGCGGCGACAACAAGATGGCCGAGTGGGTGGTGCGCCAGCACGGCATCCCGCAGGCCATCTTCATCGACGACGGCTACATGAACCTCAAGGATCTGGTCAAGAAGGTGCCCAAGCAGTACCTCAAGGAAACTTCGCCAGGCGTCTTCCTGGCGCGGATTCCGATTGTCGTGGGCGAAAAAGGCATCCTGGAGATCGACAAGCAGACCCAGGAACTGCGCCTGTCCCAAGAGGGAGGCTCGTTCCTGGTCAACGATGGCCGGATGTTCATCCGCGACACCAAGGTCACCGGCTGGCGTGAAAAGGACAACGGCCCCGCGACGTTTCGTTCGGCCAACGAGTTCCGGCCGTTCCTGCTGTCCTGGGGCGGCACCGAGACCTACATCGTCAACACCAAGATGGCCAGCTTCGGCTACGCCAACAGTAAGTCGTACGGCGTCAGTATTTCCCAGTACACGCCGAACATGGCCAAGGTCCTCAAGCGTCCGGAACCGACCGGCTGGATCATCGGTTCCGAGTTCTCGGACATGTGGTACGGCTTCTACTGCTACGAAACCAACGATTTCGTGGTCAAGAGCAACACCTACAAAGACAACATCGTCTACGGCATCGACCCCCACGACCGTTCCCATCGGCTGATCATTGCCGACAACACCGTCTACGGGACCAAGAAAAAGCACGGAATCATTATTTCCCGTGAGGTCAACGACAGCTTCATTTTCAACAACCGCAGCTACGACAACAAACTCTCGGGCCTGGTGATCGACCGTAACAGCGTGAACAACGTGATCGCCTACAACGAGATCTACAAGAACCACACCGACGGCATCACGCTTTATGAGAGTGGTGACAACCTGTTGTGGGGCAACAAGGTGATCAGCAACCAGCGCCACGGCATTCGGATTCGTAACAGCGTGAACATCCGCTTGTACGAAAACCTGTCCATGGCCAACGGCCTGACCGGTCTTTATGGCCACATCAAGGACCTTTCCGACACTGACCGGGACATCAAGCTCGACCCGTTCGACGCCCAAGTCTCCTTGATCGTGGTCGGCGGCGAACTGGCCGGCAATGGCAGCGGCCCGTTGTCCATCGACTCGCCATTGAGTGTCGAGCTGTACCGCGTGTCCATGCTCGCGCCGACCAAATCCAGCGGCATCAGCTTCACGGGGATCCTTGGCGAACGCCAGGACGAAATCCTCGACCTGCTGGTGCGCCAGCAAAAAGCCGTGCTGATCGACCCTGTCGAACGCCAGACCGAAATGCGGGACTGAMNHYLRNSQAMKGSISLLAAAMLLAGSSAFANVEPVVKPGNVVKELQQAKTYTVSSAPTAPLELAAPTLPDLSGYTAEAVAAKIVRSKPGKVSVRRMMQENALKDFIGGDNKMAEWVVRQHGIPQAIFIDDGYMNLKDLVKKVPKQYLKETSPGVFLARIPIVVGEKGILEIDKQTQELRLSQEGGSFLVNDGRMFIRDTKVTGWREKDNGPATFRSANEFRPFLLSWGGTETYIVNTKMASFGYANSKSYGVSISQYTPNMAKVLKRPEPTGWIIGSEFSDMWYGFYCYETNDFVVKSNTYKDNIVYGIDPHDRSHRLIIADNTVYGTKKKHGIIISREVNDSFIFNNRSYDNKLSGLVIDRNSVNNVIAYNEIYKNHTDGITLYESGDNLLWGNKVISNQRHGIRIRNSVNIRLYENLSMANGLTGLYGHIKDLSDTDRDIKLDPFDAQVSLIVVGGELAGNGSGPLSIDSPLSVELYRVSMLAPTKSSGISFTGILGERQDEILDLLVRQQKAVLIDPVERQTEMRDPGPT0026115_47DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-ALGINATE_METABOLISMCE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0026115-algG-K01795NANA
D1-35_014261494algEAlginate production protein AlgEATGAAGCTTTTGAAGCTCAATCCTTTTGTACAGGCTGGTATTGGCCTGTCGTTTGCCCTGCTGTGGTCCTGCCCGACCCTGGCGGCCCTGACCGATAGCAAGAATTTCGGCCTGGAAGTGAAGATCACCGGCCAGTCCGAAGATGACCGCGACCTCGGCACCCAGCGTGGTGGCGACGTCAACGGCATCGGCCTCGACCTGCGCCCTTGGGTCTACGGCGAAAGCGGTGCGTGGAGTGCCTATGCCATGGCCCAGGCCGTGACGTCCACCGACATCATCGAGACCGACACCCTGCAACAGTCGGACGACGCGACCCAGCAAACCGACAGCGGCGACCGCGAGGCCAAGAAAAGCTACCTGGCCATGCGCGAATTCTGGATTGGCTACCGGGGCCTGACCCCTTATCCGGGCGAGCAGTTGAAGTTCGGCCGCCAACGCCTGCGCAATGACGACGGGCAATGGCGCGACACCAACATCGAAGCCCTGAACTGGACCTTCGACACCACGCTGCTGCGCGCCAACCTGGGCGTCGCCGAGCGGTTCAGCGAATACCGCACCGACCTCAAGGAGCTGTCGCCCCAGGACAAGGACCGTATGCATGTCTACGGTGATGTCGGCTATCAGTGGATGCCAGGCCAATGGGCCGGGATCCGTGCCCACCACAGCCATGACAGCGGCAGCCTCGACTATCCGGTCCCGGGCCAGGCCACCGACACCCTGGACAAGACCCAGAACGGTGATCTGACCTGGCTCGGCCTGGAAGCCAACAGCGACGCCTACAACTGGCGCAACACCAATACCGTCAACTATTGGGCAAGCGTCACCGGCATGACCGGCGACCGCGACACCGTCAACCCGCTGAACGCCGACGGCACCCGCCCCGCGCAGCTCAAGCGCAGCGACGACGTCGACGGCTGGGCCACCGACCTGGGTATCCGCCTGCGCCTCGACCCGCAATGGCAAGTCGGTGCGGCCTATGCCCGCGCCAGCGAGGACTACGAACAGAACGGCCTGCAAAGCAACCGCTCGAACTTCACCGGCACCCGCTCGCGCGTGCATCGTTTCGGCGAAGCGTTCCGTGGCGAGATGGCCAACACCCAGAGCGCCAGCCTGTTCGGTTCCTGGCAGTTGCGTGACGAATACGACGCCAGCCTGGTGTACCACAAGTTCTGGCGCGTGGACGGCAACAAGGCAGTGGGCAGCAACGGCATCAACGCCGTGGAAAACAACACCGATGACGTGACCGGCGCGATCCTGTCCACCTCGTCCCTGCCGCTGCGCGACGGCGACAAGGACCTGGGCCAGGAAGTCGACCTGGTCGTCACCAAGTACTTCAAGCAAGGCCTGCTGCCGGCTGCGCTGAGTCAATCGATTGATGAGCCGTCGGCGCTGGTGCGCTTTCGTGGCGGCGTGTTCAAGCCAGGCGACGCCTACGGCAAAGAGGTCGATTCGTACATGCATCGCGCCTTTGTCGACGTGATCTGGCGCTTCTGAMKLLKLNPFVQAGIGLSFALLWSCPTLAALTDSKNFGLEVKITGQSEDDRDLGTQRGGDVNGIGLDLRPWVYGESGAWSAYAMAQAVTSTDIIETDTLQQSDDATQQTDSGDREAKKSYLAMREFWIGYRGLTPYPGEQLKFGRQRLRNDDGQWRDTNIEALNWTFDTTLLRANLGVAERFSEYRTDLKELSPQDKDRMHVYGDVGYQWMPGQWAGIRAHHSHDSGSLDYPVPGQATDTLDKTQNGDLTWLGLEANSDAYNWRNTNTVNYWASVTGMTGDRDTVNPLNADGTRPAQLKRSDDVDGWATDLGIRLRLDPQWQVGAAYARASEDYEQNGLQSNRSNFTGTRSRVHRFGEAFRGEMANTQSASLFGSWQLRDEYDASLVYHKFWRVDGNKAVGSNGINAVENNTDDVTGAILSTSSLPLRDGDKDLGQEVDLVVTKYFKQGLLPAALSQSIDEPSALVRFRGGVFKPGDAYGKEVDSYMHRAFVDVIWRFPGPT0026105_46DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-ALGINATE_METABOLISMCE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0026105-algE-K16081NANA
D1-35_014271506algKCOG0790Alginate biosynthesis protein AlgKGTGATCACTCCACAAAACAACAATGCACCGCATTCCCTGTGGGAGCGAGCTTGCTCGCGATGGGATCGACGCGGTCTGTCTGGTACACCGAGCGGCCTGCATCGCGAGCAAGCTCGCTCCCACACAGGATATGCGTTGTGTGCTCTGGCGCTGGCAGTCAGTCTTAGCGGTTGCGCCGGCCTGCCCGACCAGCGCCTGGCCAACGAAGCCCTCAAGCGCGGCGACACGGCGTTGGCGCAGCAGAACTATCAGCAACTGGCAGACCTGGGCTACAGCGAGGCCCAGGTGGGCCTGGCCGATATCCAGGTAGACAGCCGCGACCCCGAGCAGATGAGAAAGGCCGAGGCGACCTACCGCGCCGCCGCCGACATCTCGCCGCGCGCCCAGGCTCGCCTGGGTCGCCTGCTGGTGGCCAAGCCCGGCTCCACCGAAGCTGAAAAGCACGAAGCCGAAGGCCTGTTGAAAAAAGCCTTTGCCAACGGTGAGGGCAACACGCTGATCCCGCTGGCGATGCTGTACCTGCAATATCCCCACAGCTTCCCGAACGTCAACGCGCAGCAACAGATCAGCCAATGGCGCAGCGCCGGTTATCCGGAAACGGGCCTGGCGCAGATCCTGCTCTATCGCACCCAGGGTACGTACGACCAGCATCTGGACGAAGTGGAAAGAGTCTGCAAGGCCGCCTTGGCGACCACCGACATCTGCTACGTCGAACTGGCCACGGTCTATCAGAAACGCGGCCAGCCGGAACAGCAGGCCGAGCTGATCAAGCAGATGCAGGCCGGTCACGCTCGTGGTGTGGTCTCGGCCCAGCGCGTGGACAGTGTCGCGCGTGTCCTGGCCGATTCCAGCCTGGGCAAGACCGACGAGAAAACCGCTCAGTCGCTGCTCGAAGGCATCGCGCCCGGCAACCCTGCTTCCTGGGTCAGCCTGGCGCAGCTGCTCTACGATTTCCCTGAGTTGGGCGACGTCGACAAGATGATGCAGTACCTGGAAAACGGCCGCGCCGCCGACCAGCCGCGCGCCGAGCTGTTGCTGGGCAAGCTGTACTACGAAGGCAAGTGGGTACCCGCCGACGCCAAGGTCGCCGAGGCGCATTTCCAGAAAGCCGTGGGCCGTGAAGTGGCCGCCGATTACTACCTCGGCCAGATCTATCGTCGCGGCTACCTGGGCCAGGTGTACTCGCAAAAGGCCCTGGATCACCTGCTCAAGGCCGCCCGCAACGGCCAGAACAGCGCCGACTACGCCATTGCCCAGCTGTTTTCCCAAGGCAAGGGCACCAAGCCCAACCCGGTCAACGCTTATGTGTTCAGCCAGTTGGCCAAGGCGCAAAACACCCCGCAAGCCATCGAGCTTGCCCAGACCCTCGAAGAACAATTACCGCCGGAACAACTTGCACAAGCGCAACGCCTGCTACAACAAGAGCAGGCCATTCGCGGCGCCATGAGCCCCGATACGCTGGAACTGCAAGCCCTAAAAGAAGATGACGGCGAGGAACCTCTATGAMITPQNNNAPHSLWERACSRWDRRGLSGTPSGLHREQARSHTGYALCALALAVSLSGCAGLPDQRLANEALKRGDTALAQQNYQQLADLGYSEAQVGLADIQVDSRDPEQMRKAEATYRAAADISPRAQARLGRLLVAKPGSTEAEKHEAEGLLKKAFANGEGNTLIPLAMLYLQYPHSFPNVNAQQQISQWRSAGYPETGLAQILLYRTQGTYDQHLDEVERVCKAALATTDICYVELATVYQKRGQPEQQAELIKQMQAGHARGVVSAQRVDSVARVLADSSLGKTDEKTAQSLLEGIAPGNPASWVSLAQLLYDFPELGDVDKMMQYLENGRAADQPRAELLLGKLYYEGKWVPADAKVAEAHFQKAVGREVAADYYLGQIYRRGYLGQVYSQKALDHLLKAARNGQNSADYAIAQLFSQGKGTKPNPVNAYVFSQLAKAQNTPQAIELAQTLEEQLPPEQLAQAQRLLQQEQAIRGAMSPDTLELQALKEDDGEEPLPGPT0026135_14DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-ALGINATE_METABOLISMCE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0026135-algK-K19292NANA
D1-35_014281170Mannuronan synthaseATGAACACCGCCGTGAATGTCAACGTAGTGCATGAATCCGAAGCCCAACGCCAACACGCCCGGGTCAAAATCCCGGCCAAGTTGCGCTTCTTCGGCCCCGACCGTACGCCGATGGAAGTCAAGGTCCTCGACCTGTCCGCCGGTGGGTTGTGCTTCAACGCCGGCCAACTGCCGCTCAAGGTTGGCGAGACCTACAAGGCGCGCCTGCAGTTCGTGATCGACAACCTCGGCCTGGCCATGGACGTCGAATTGCAGATCCGTTCCTACGACCGCCAGACCGGCCGCGCCGGTTGCCAGTTCCAGAACCTGGAGCCGCGGGACATCTCGACACTGCGCCACATCATCACCTCGCACCTGGCCGGCGACATCGTCGGCGTCGGTGATGTGCTGGCGACCCTGCAACGCGACAACTTCACCAAGGCTCGCAAGCAGAAAGATGAAAACGGTGGCATGAGCGCCTTCGGTCGCCTGCGCGCCGTGACCTTCAGCCTGGGCATCTTCATTGTCGGCCTGGCGGCATTCGGCTTCATCTTCAAGTCGGTGTACGGCATGTACTTCGTCAGCCACGCCCAGGCCGGCATCGTCAACGTACCGGGCATGGCCATCACCATGCCGCGCGACGGCACCGTGCAAAGCCTGGTCAAGGCCGACGGCCTGGCCGCCAAAGGCGCTCCGCTGGCGACCTTCAGCACCAGCATGCTCGACGTGCTCAAGGGTCACCTGGACGACAACCAGCTGCAGCCAGCCAAGGTCGAGGAACTGTTCGGCAAGCAAATGACCGGCACCCTGACCTCGCCATGCGATTGCATCGTGGCCCAGCAACTGGTTTCCAACGGCCAGTACGCCAGCAAGGGTGACGTGATCTTCCAACTGGTTCCTCGCGGCGCCGAAGCCAACGTCGAGGCACGTTTCTCCTATCGCCAGTTCGGCGACGTGCGTCCAGGCACCCCGGTCAGCTTCCAGGTAGCCGGCGAAGACGCCACCCGCACCGGCAAGATCGTCAGCAGCACCAGCCTGAAAAGCGCCGACCTGTCTTCCGATATCCGTGTGCTGATCCAGCCTGACGAAGCCCTGGACAGCGCGCTGGCCGGCCGTCCGGTGGAAGTCGTCAGCGACCGTGGCCCGAACTTGAACTGGCTGATCGACAAAGCCATGGCCGTCGGTCTTTAAMNTAVNVNVVHESEAQRQHARVKIPAKLRFFGPDRTPMEVKVLDLSAGGLCFNAGQLPLKVGETYKARLQFVIDNLGLAMDVELQIRSYDRQTGRAGCQFQNLEPRDISTLRHIITSHLAGDIVGVGDVLATLQRDNFTKARKQKDENGGMSAFGRLRAVTFSLGIFIVGLAAFGFIFKSVYGMYFVSHAQAGIVNVPGMAITMPRDGTVQSLVKADGLAAKGAPLATFSTSMLDVLKGHLDDNQLQPAKVEELFGKQMTGTLTSPCDCIVAQQLVSNGQYASKGDVIFQLVPRGAEANVEARFSYRQFGDVRPGTPVSFQVAGEDATRTGKIVSSTSLKSADLSSDIRVLIQPDEALDSALAGRPVEVVSDRGPNLNWLIDKAMAVGLPGPT0026095_55DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-ALGINATE_METABOLISMCE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0026095-alg44-K19291NANA
D1-35_014291482alg8COG1215Mannuronan synthaseATGCACAGGCTAAAGCACGGCCTGCTTCAGGCCGCCGGTTGGCTGTTTTACTTGAGTTTATTGATGGGCATCGCCACGGCGCTGCCCACGTCCACGTTCGACTCCGAATCGAAGGATTTCATCTTTCTGATCGGCGCCGTGGGCATCTGGCGTTATTCCATGGGCGCGACGCATTTCGTGCGCGGCATGATTTTCCTGTACATCGTCTACCCACACCTGCGCCGCAAAGTGCGCAAGCTGGGCAAGGCGGCGGATCCGTCCCACGTTTACCTGATGGTCACCAGCTTCCGCATCGATGCGCTGACCACCGCCCAGGTCTACAGCTCGGTCATCCGCGAAGCCATCGACTGCGGGCTGCCGACCACCGTGGTCTGCTCCATCGTGGAAATGTCCGACGAACTACTGGTCAAGAGCCTCTGGGCCCGCATGAACCCGCCAGAGCACGTCAAGCTGGACTTCGTGCGCATTCCCGGTACCGGCAAGCGTGACGGCCTGGCCTTCGGTTTCCGTGCCATCTCCCGTCACCTGCCGGACGACCGCGCCGTCGTGGCCGTGATCGACGGCGATACCGTCCTGGCCGAAGGCGTCGTGCGCAAGACCGTGCCGTGGTTCCAGCTGTTCGGCAACGTCGGCGGCCTGACCACCAACGAGTTCTGCGAAGTGCGCGGCGGCTACATCATGAGCGAGTGGCACAAGCTGCGTTTCGCCCAGCGTCACATCAACATGTGCTCCATGGCCCTGTCCAAGCGCGTATTGACCATGACCGGGCGCATGTCGGTGTTCCGCGCCACCGTCGTGACCAACCCGGACTTCATCGCCGACGTCGAAAGCGACTCGCTGCAACACTGGCGCCTGGGCCGCTTCAAGTTCCTCACCGGCGATGACAAGTCGAGCTGGTTCAGCCTGATGCGCCTGGGCTACGACACGTTCTACGTGCCGGACGCCGCCATCAACACGGTTGAGCACCCGCCGGAAAAAAGCTTCATCAAGGCGAGCCGCAAACTGATGTTCCGCTGGTACGGGAACAACCTGCGGCAGAACTCCCGGGCATTGGGCCTGGGCATGAAACGTCTGGGCCTGTTCACCTCGGTCGTGCTGTTCGATCAGCGCGTGTCGATGTGGACCTCGCTGCTGGGCCTGACCGTAGCGATCATCGCCAGTGTCAAGTACGGCACCGCGTTCATCCTGGTGTACCTGCTGTGGATCGGTATCACGCGGTTGCTCCTGACGCTGCTGCTGTCGTGCTCCGGACACCGGATCGGTCCGGCCTACCCGGCGATTCTCTATTACAACCAGATCGTCGGCGCGCTGGTGAAGATCTACGTGTTCTTCCGCCTCGATCAACAATCCTGGACTCGCCAGCCCACCCACCTGACCCGTGATCTCGCCAGCTTTCAACGTTGGTTCAACACTTGGTCGTCTCGGACCATGACCTTCTCCGCCGGCAGCATCTTTGTCGCCGTGCTGCTGACGATGGTCTGAMHRLKHGLLQAAGWLFYLSLLMGIATALPTSTFDSESKDFIFLIGAVGIWRYSMGATHFVRGMIFLYIVYPHLRRKVRKLGKAADPSHVYLMVTSFRIDALTTAQVYSSVIREAIDCGLPTTVVCSIVEMSDELLVKSLWARMNPPEHVKLDFVRIPGTGKRDGLAFGFRAISRHLPDDRAVVAVIDGDTVLAEGVVRKTVPWFQLFGNVGGLTTNEFCEVRGGYIMSEWHKLRFAQRHINMCSMALSKRVLTMTGRMSVFRATVVTNPDFIADVESDSLQHWRLGRFKFLTGDDKSSWFSLMRLGYDTFYVPDAAINTVEHPPEKSFIKASRKLMFRWYGNNLRQNSRALGLGMKRLGLFTSVVLFDQRVSMWTSLLGLTVAIIASVKYGTAFILVYLLWIGITRLLLTLLLSCSGHRIGPAYPAILYYNQIVGALVKIYVFFRLDQQSWTRQPTHLTRDLASFQRWFNTWSSRTMTFSAGSIFVAVLLTMVPGPT0026100_118DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-ALGINATE_METABOLISMCE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0026100-alg8-K19290NANA
D1-35_014301317algDCOG1004GDP-mannose 6-dehydrogenaseATGCGCATTAGCATATTTGGTTTGGGTTACGTCGGTGCAGTATGTGCCGGTTGCCTGTCTGCACGGGGCCATGATGTAGTTGGCGTAGATGTCGCCAAAGACAAGATCGACATGATCAACGCCGGTAAATCACCGATCGTTGAACCGGGCCTGGGCGAGCTATTGGCGCAAGGCATTCAAACAGGTCGCCTGCGCGGTACTACCAACTTCGCCGAAGCTATTCGTGATACTGACCTGTCGATGATTTGCGTCGGTACACCGAGCAAAAAGAACGGCGACCTGGAACTGAACTACATCGAAGCCGTGTGCCGCGAGATCGGTTTTGTCCTGCGTGACAAGACCACCCGTCACACCATCGTGGTTCGCAGTACCGTACTGCCGGGCACCGTGGCCAATGTGGTCATCCCGATCCTCGAAGACTGCTCCGGCAAGAAAGCCGGCGTCGATTTCGGCGTCGCGGTCAACCCTGAGTTCCTGCGTGAAAGCACCGCGATCAAGGACTACGACCAGCCGCCAATGACCGTCATCGGCGAGTTCGACAAAGCGTCGGGCGACGTCCTGCAATCGCTGTACGAAGAACTCGACGCACCGGTCATCCGCAAGGACATCGCTGTCGCCGAGATGATCAAGTACACCTGCAACGTCTGGCACGCCACCAAGGTGACCTTCGCCAACGAGATCGGCAACATCGCCAAGGCCGTCGGCGTCGATGGTCGTGAAGTGATGGACGTAGTCTGCCAGGACAAGGTCCTGAACCTGTCCCAGTACTACATGCGTCCAGGCTTCGCTTTCGGCGGCTCGTGCCTGCCAAAAGACGTGCGCGCCCTGACCTACCGTGCAGGCTCGCTGGACGTGGAAGCGCCGCTGCTCAACTCGCTGATGCGCAGCAACGAATCCCAGGTGCAGAACGCCTTCGACATCGTCTCCAGCCACGACAAGCGCAAAGTCGCCCTGCTGGGCCTGAGCTTCAAGGCCGGCACCGACGACCTGCGTGAAAGCCCACTGGTGGAACTGGCGGAAATGCTGATCGGCAAGGGTTTCGACCTGAAGATCTACGACAGCAACGTCGAATACGCACGCGTCCACGGTGCGAACAAGGATTACATCGAGTCGAAGATTCCTCACGTCTCGTCCTTGCTCAATTCCGACTTCGACGCGGTGATCGACAACTCCGACATCATCATCCTCGGTAACCGCGACGAGAAGTTCCGCGCGCTGACCGAGAACGTACCGGAAGGCAAGCAGGTCATCGACCTGGTTGGCTTCATGTCCAAGGCCACCTCCCCGAGTGGCCGGACCGAAGGCATCTGCTGGTAAMRISIFGLGYVGAVCAGCLSARGHDVVGVDVAKDKIDMINAGKSPIVEPGLGELLAQGIQTGRLRGTTNFAEAIRDTDLSMICVGTPSKKNGDLELNYIEAVCREIGFVLRDKTTRHTIVVRSTVLPGTVANVVIPILEDCSGKKAGVDFGVAVNPEFLRESTAIKDYDQPPMTVIGEFDKASGDVLQSLYEELDAPVIRKDIAVAEMIKYTCNVWHATKVTFANEIGNIAKAVGVDGREVMDVVCQDKVLNLSQYYMRPGFAFGGSCLPKDVRALTYRAGSLDVEAPLLNSLMRSNESQVQNAFDIVSSHDKRKVALLGLSFKAGTDDLRESPLVELAEMLIGKGFDLKIYDSNVEYARVHGANKDYIESKIPHVSSLLNSDFDAVIDNSDIIILGNRDEKFRALTENVPEGKQVIDLVGFMSKATSPSGRTEGICWPGPT0022720_160DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-ALGINATE_METABOLISMCE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0022720-algD-K00066NANA
D1-35_01431780yaaACOG3022Peroxide stress resistance protein YaaAATGCTGATGGTGATTTCCCCCGCCAAGACCCTCGATTACGAAACACCGCCGGCCACCGAGCGTTTTACCCAGCCGCAGTACCTGGATCACTCCCAAGAGCTGATTGAACAATTGCGCGAATTCTCGCCAGCGCAGATCAGCGAGTTGATGCACGTCTCCGACAAGATCGGCGGCCTCAATGCCGCGCGATTCGGCAGCTGGAACCCGGCGTTTACCCCGGCCAATGCCAAACAGGCGTTGCTGGCGTTCAAGGGCGATGTGTACACCGGCCTCGACGCGCAAAGCCTCGGTGAAGCCGATTTCGACTACGCCCAACAGCACCTGCGCATGCTCTCCGGTCTCTACGGTCTGCTGCGTCCGCTGGACTTGATGCAGCCTTATCGCCTGGAGATGGGCACGAAGCTGGCCAATGCCCGGGGCAAGGACCTTTATGCATTCTGGGGCACCCGCATCAGCGAATGGCTGAACGAAGCCTTGGCCGATCAGGGCGACGACGTACTGTTGAACCTGGCTTCCAATGAATATTTCTCGGCGGTCAAGCGCAGTGCACTGAAAGCCCGCGTCATCGATGCCGAGTTCAAGGATCTGAAGAACGGCCAATACAAGATCATCAGTTTCTACGCCAAGAAAGCCCGGGGCTTGATGAGCCGGTTTGTCATCGAGCAGCGCATCAACGATCCCGTGCAACTCAGACACTTCGATGTACAGGGCTATCGTTACAACGCCGAACAATCCTCCCCGAACAAGTTGGTCTTTTTGCGCGACCACGCCCCGCAATAAMLMVISPAKTLDYETPPATERFTQPQYLDHSQELIEQLREFSPAQISELMHVSDKIGGLNAARFGSWNPAFTPANAKQALLAFKGDVYTGLDAQSLGEADFDYAQQHLRMLSGLYGLLRPLDLMQPYRLEMGTKLANARGKDLYAFWGTRISEWLNEALADQGDDVLLNLASNEYFSAVKRSALKARVIDAEFKDLKNGQYKIISFYAKKARGLMSRFVIEQRINDPVQLRHFDVQGYRYNAEQSSPNKLVFLRDHAPQNANANANANA
D1-35_014321125hypothetical proteinTTGCGTATCGTCCTTTTACTGTCGGCCTGGTTGTTGAGCCTCGGCGCTTTCGCTGCGCCCAACGACGTCGCTACCCTGGACCGCAGCACCTGGCCTGAACAGCTCACCAGCCCGACGCTGTTCGATGTGGCTTCGCGGGCCGAGGTCCTGATGTTCGCCCGGGTATTGCTGGATGCCGATGCCATGGACGAAATAGCCCTCAAGCAATACCTGGGGCTGCGCTCGGTCAATATGGTCGCGGTGAACGCCTTGCGCGCGCGGCTGTGGCAGCGCCTGCTTTCGAGCTACAACTTCGCCCAGCGCAGTTGCACGCTGGATGCCTCCTTCTGCTACCTGGTCGAGGACATGGCGACCCTGCGCGAGGAGGCGGGCCGGTTCAAGCTCGATGACAATTCCTATTACATCAAGTGGGCCGAGCCGAGCCGGATCTTTCATACGCAATACCGCGACGAGCTGCTGCGCAAGGCTGCGCTGTTTCCCCAGGTCAGCAGCGAAGTCGAGCGTTTCGGCGATTATGAGCGCAACGGTGAGCAGATGAATGACCGACTGTTCTTGCTGACCTTCGACAGCGCTGCCAACGTCGCACCGGACCACACGCCCTGGCTGACCGAGTACCTGCGCAAGTCGAACATGAACGGCACTTTTTTTGTGTTGGGCAAGGACATCCAGGCGCGCCTGACAGACGGCTCGGCAAATGATCTCCAGACTCTGTTTGCTGGGCAATGCGTCGGGGTGCAGGGCTGGGAGTTCCGCTCCCACAGCCATTGGCAGGATTGGCAGGACTCGGTACGGCGCAGCGTTGACCTGGTCAAGGGCCGGCTGCCGGAGAATTACGTGCCCTTGTTCCGTCCGCCACAGGGCCAGCGTCGAGGCGATGCCCAGGCATTCTTCAGGAACCAGGGACTGCAAGTGGCGCTATGGGATATCGATCCCCAGGACAGCACCAACCGCCTCAAGCCCGAGCAGAGTGCCCAGCGCGCGCTGACGCTGATGCTGTTGTGGCGCCACGGGGTCATCAACTTCAACGCCAAGCAGGACGCGGTGAAAACGGCGCTGCCCTGGCTCGTTACGCAAACGGCGCAAAGCGGGATCGGCTGGGAAGAGTGTCAGGACGCGTTTCGCTGAMRIVLLLSAWLLSLGAFAAPNDVATLDRSTWPEQLTSPTLFDVASRAEVLMFARVLLDADAMDEIALKQYLGLRSVNMVAVNALRARLWQRLLSSYNFAQRSCTLDASFCYLVEDMATLREEAGRFKLDDNSYYIKWAEPSRIFHTQYRDELLRKAALFPQVSSEVERFGDYERNGEQMNDRLFLLTFDSAANVAPDHTPWLTEYLRKSNMNGTFFVLGKDIQARLTDGSANDLQTLFAGQCVGVQGWEFRSHSHWQDWQDSVRRSVDLVKGRLPENYVPLFRPPQGQRRGDAQAFFRNQGLQVALWDIDPQDSTNRLKPEQSAQRALTLMLLWRHGVINFNAKQDAVKTALPWLVTQTAQSGIGWEECQDAFRPGPT0018645_963DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_HYDROLASE_ACTIVITY,PGPT0018645-pda|pgdA-K22278NANA
D1-35_014331395hypothetical proteinATGGATGACCACGGACGTAGCCCTTCCTCCAACCAGCCAATCCTGTATGTACTCGATACCAACGTATTGATCCACGATCCAAACGCGCTGCTGAATTTCGAAGAACACCACGTCGCCATCCCGATGACCGTGCTCGAGGAGCTGGATAAGCTCAAGAGCGGCCATCATAGCGTGGCGGCTGAATGCCGGCAGGCGATCCGCCTGATCGACAAGACCCTGGGCGATGCCTCTCCAGAAGACGTTGAACTGGGGGTGCCAATCCAGCGCGGCAAGAGCGGCCCCAAGGGCCTGCTCTCGATCCTGATGAGCAAGCGCACCGAACCCAACCTGGTGCTGCCTGAACACCTGAACGACAACATCATCATCAACCAGCTGATCGACCTGCACGCGCGCAACAAGGAACAAGCCGTGGTGCTGGTGACCAAAGACATCAACATGCGCCTCAAGGCCCGCGCCTGCGGGATCGCGGCGGAAGACTACAGCACTGACCAACTGGTCGACGACGTATCGCTGTTGCCTAACGGCTACCACACCATGACCGGCTCCTTCTGGGACCGCGTGAGCAAGGTCGAGACCCGCCAGGACCATGGGCGCACCTGGCACCAGGTGCAACTGATCGACAACCTGCCGGCGGTGCACATCAACGAATTCATTATCGATGAACAAGGATTCGTCGGCTGGATCAAGGAAATCCAGGTCGACAAGCTGCTGATCCTCGACCTGCACCAGGAACCCCTGCTGCATCAGGAGGCGTGGGGCCTCAAGCCTCGCGACATCTACCAGAGCCTGGCGCTGTTCGCCTTGCTCGACCCGGACATCCACCTGGTCAACCTGTCCGGCGCCGCCGGTTCCGGCAAGACCATCCTGGCCCTCGCCGCCGCCATCGAACAGACCATGGTCAGCAAGCGCTACCGGCGCATCATCGCCACTCGCAGCGTGCAGGGCCTGGACCAGGAAATCGGCTTCCTGCCCGGTACCGAAGCGGAAAAAATGGAGCCGTGGCTGGGTGCAATTACCGACAACCTCGAAGCCTTGCACATGGATGACGAGAGCACCCATGGCAGCGTCGACTACATCCTCAGCAAAGTGCCGTTGCAGTTCAAATCCCTCAACTACATCCGAGGCCGCAGCTTCCAGCAGAGCCTGATCCTGATCGACGAATGCCAGAACCTGACCCCGCACCAGATGAAAACCATCATTACCCGTGCCGGCGCCGGTTCCAAAGTGGTGTGCCTGGGTAACCTGGCGCAGATCGACACCCCTTACCTGTCCGCGACCAGCTCCGGGCTGACCTACCTGACCGAACGCTTCAAGGACTTCCCCAACGGCGTCCACATCACCCTGCAGGGCGTACCACGCTCGATCCTGGCCGAATACGCCGAATCTCATCTGTAAMDDHGRSPSSNQPILYVLDTNVLIHDPNALLNFEEHHVAIPMTVLEELDKLKSGHHSVAAECRQAIRLIDKTLGDASPEDVELGVPIQRGKSGPKGLLSILMSKRTEPNLVLPEHLNDNIIINQLIDLHARNKEQAVVLVTKDINMRLKARACGIAAEDYSTDQLVDDVSLLPNGYHTMTGSFWDRVSKVETRQDHGRTWHQVQLIDNLPAVHINEFIIDEQGFVGWIKEIQVDKLLILDLHQEPLLHQEAWGLKPRDIYQSLALFALLDPDIHLVNLSGAAGSGKTILALAAAIEQTMVSKRYRRIIATRSVQGLDQEIGFLPGTEAEKMEPWLGAITDNLEALHMDDESTHGSVDYILSKVPLQFKSLNYIRGRSFQQSLILIDECQNLTPHQMKTIITRAGAGSKVVCLGNLAQIDTPYLSATSSGLTYLTERFKDFPNGVHITLQGVPRSILAEYAESHLNANANANANA
D1-35_01434474moaCCOG0315Cyclic pyranopterin monophosphate synthaseGTGCTGACCCATCTCGATTCCCAAGGTCGCGCCAACATGGTCGACGTGACCGACAAGGCCGTGACGTTCCGCGAAGCCACCGCCGAAGCCTTTGTGCGCATGCTGCCCGATACTCTGCAAATGATCGTCAGCGGCGGCCATCCCAAGGGCGATGTGTTCGCCGTCGCGCGCATTGCCGGTATCCAGGCGGCAAAAAAAACCAGTGACCTGATCCCGCTCTGCCATCCGCTCATGCTCACCAGCGTCAAGGTCGAACTGACCGCCGAAGGCGAGGATCGCGTGCGCATCGTGGCCCGCTGCAAGCTCTCGGGACAGACCGGTGTCGAAATGGAGGCGCTCACCGCCGCCAGCGTCGCCGCGCTCACCATCTACGACATGTGCAAGGCCGTGGACCGGGGCATGACCATCGAGGGCGTGCGTGTGCTGGAAAAACTCGGCGGCAAGAGCGGCCACTTCCAGGCGGATGCGTCATGAMLTHLDSQGRANMVDVTDKAVTFREATAEAFVRMLPDTLQMIVSGGHPKGDVFAVARIAGIQAAKKTSDLIPLCHPLMLTSVKVELTAEGEDRVRIVARCKLSGQTGVEMEALTAASVAALTIYDMCKAVDRGMTIEGVRVLEKLGGKSGHFQADASPGPT0008405_3266DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008405-moaC_-K03637NANA
D1-35_01435243moaDCOG1977Molybdopterin synthase sulfur carrier subunitATGAACATCACCGTGAAGTTCTTTGCCCGTTATCGCGAAGCGCTCGGCGTGGATTCGCTGAAAGTGGAGGGCGTTTTCGCCACGGTTGACGATGTGCGCGCATTGCTCGCTCAGCGTGACGGAGCCGAAGTGCTGCGAGAGCAGAACCTGATGTGCGCCCGCAACGAAGACCTGTGCCAGCTCGATGAACCGCTGGCGGACGGCGACGAAGTGGCCTTCTTCCCCACCGTGACCGGAGGCTGAMNITVKFFARYREALGVDSLKVEGVFATVDDVRALLAQRDGAEVLREQNLMCARNEDLCQLDEPLADGDEVAFFPTVTGGPGPT0008405_240DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008405-moaC_-K03637NANA
D1-35_01436453moaECOG0314Molybdopterin synthase catalytic subunitATGGCGATTCGGGTGCAGGCCGAGCCGTTCGACCCGGGGGCCGAGGTCAATGCGATGCAGGCAGCAAATGTCGGCGTCGGCGCCGTGGTGAGTTTTGTCGGCTACGTGCGCGACTTCAATGACGGCCTCGATGTGTCCGGGATGTTCCTCGAGCATTATCCGGGCATGACCGAAAAAGCCCTGGGCAAGATCGCCACCGAGGCCGAGCAGCGCTGGCCGCTGCTCAAGCTTGAGGTATTGCACCGCATCGGCGCCCTGGAACCGGGTGAGCCGATCGTTTTTGTCGGCGCCGCCAGCGCCCATCGCCAGGCGGCCTTTGAGGCCTGCGCCTTTGTCATGGACTACCTGAAGACCCGCGCACCGTTCTGGAAAAAGGAAAATACCGCCGACGGCCCGCGTTGGGTCGAGGGGCGGGACAGTGATCATGCGGCGGCGGATCGCTGGAAGCGGTAGMAIRVQAEPFDPGAEVNAMQAANVGVGAVVSFVGYVRDFNDGLDVSGMFLEHYPGMTEKALGKIATEAEQRWPLLKLEVLHRIGALEPGEPIVFVGAASAHRQAAFEACAFVMDYLKTRAPFWKKENTADGPRWVEGRDSDHAAADRWKRPGPT0008415_12DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008415-moaX-K21142NANA
D1-35_014371476rhlBATP-dependent RNA helicase RhlBATGACCGTGCTCAAAGCACTCAAGAAGATGTTCGGTAAAAGCGAGGCCGAGCAACTCGCGCCTGAAGCCAGCGCCCCCGTCCACGGCGCGAGCCGCACCGATGCGCACCAACCACGTCGGACCGCCCCCGTTGCGGACGCAAAACTATCGCCGTCGACCGCATCCGTTGCGCAACCTGTGGCGGCATCCGAGCCGGAAAAACCACGCAGCGAAGCCCCCAAGCCACGTCGCGAGCGCGCACCCAAACCGCCGGTCGTTGCCTGGAAGCTCGAAGACTTCGTCGTAGAACCTCAGGAAGGCAAGACCCGCTTCCACGATTTCAAGCTCGCCCCCGAGCTGATGCATGCCATCCAGGACCTGGGCTTCCCGTACTGCACGCCGATCCAGGCGCAAGTGCTGGGCTATACCCTCGCCGGCAAGGACGCTATCGGTCGTGCCCAGACCGGCACCGGCAAGACCGCCGCGTTCCTGATTTCGATCATCACCCAGTTGCTCCAGACCCCGCCCCCCAAGGAACGCTACATGGGCGAGCCGCGGGCGCTGATCATCGCGCCAACCCGTGAGCTGGTGGTGCAGATCGCCAAGGATGCCGCCGACCTGACCAAGTACACCGGCCTGAACGTGATGACGTTCGTCGGCGGCATGGATTTCGACAAGCAGCTCAAGCACCTCGAGGCCCGCCACTGCGACATCCTCGTGGCGACGCCGGGCCGCCTGCTGGACTTCAACCAGCGCGGCGACGTGCACCTGGACATGGTCGAAGTGATGGTGCTCGACGAGGCCGACCGAATGCTCGACATGGGCTTCATCCCCCAGGTACGCCAGATCATTCGCCAGACCCCGCCGAAAAACGAACGCCAGACATTGCTGTTTTCCGCCACCTTCACCGAAGACGTGATGAACCTGGCCAAGCAATGGACCACCGATCCTGCAATCGTCGAGATCGAAGCCGAAAACGTCGCCAGTGAAAATGTCGAACAGCACATCTATGCGGTCGCCGGTGCCGACAAGTACAAACTGCTCTACAACCTGGTCAACGACAACGGTTGGGAGCGGGTGATGGTCTTCGCCAACCGCAAGGACGAAGTGCGCCGCATCGAAGAACGCCTGGTGCGCGATGGCGTCAACGCCGCGCAACTGTCGGGCGACGTGCCGCAGCACAAGCGCATCAAGACACTCGAAGGTTTCCGCGAAGGCAAGATCCGCGTGCTGGTCGCCACCGACGTGGCCGGTCGCGGCATTCACATCGACGGCATCAGCCACGTGATCAACTTCACCCTGCCGGAAGTGCCGGACGACTACGTGCACCGTATCGGCCGCACCGGTCGTGCCGGGGCCGCCGGGGTTTCGATCAGCTTCGCCGGCGAGGATGATTCCTACCAGTTACCCTCGATCGAGGCACTGCTGGGCCGCAAGATCAGTTGCGAGATGCCGCCGACTCATCTGTTGCGGCCGGTCGAGCGCAAGCGACCTTAAMTVLKALKKMFGKSEAEQLAPEASAPVHGASRTDAHQPRRTAPVADAKLSPSTASVAQPVAASEPEKPRSEAPKPRRERAPKPPVVAWKLEDFVVEPQEGKTRFHDFKLAPELMHAIQDLGFPYCTPIQAQVLGYTLAGKDAIGRAQTGTGKTAAFLISIITQLLQTPPPKERYMGEPRALIIAPTRELVVQIAKDAADLTKYTGLNVMTFVGGMDFDKQLKHLEARHCDILVATPGRLLDFNQRGDVHLDMVEVMVLDEADRMLDMGFIPQVRQIIRQTPPKNERQTLLFSATFTEDVMNLAKQWTTDPAIVEIEAENVASENVEQHIYAVAGADKYKLLYNLVNDNGWERVMVFANRKDEVRRIEERLVRDGVNAAQLSGDVPQHKRIKTLEGFREGKIRVLVATDVAGRGIHIDGISHVINFTLPEVPDDYVHRIGRTGRAGAAGVSISFAGEDDSYQLPSIEALLGRKISCEMPPTHLLRPVERKRPPGPT0013740_606DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927NANA
D1-35_01438657estB_2COG0400Carboxylesterase 2ATGACCGACCCCTTGATTCTCGAGCCCTCCAGCACCGCCGATGCGTGCGTTATCTGGCTCCACGGCCTGGGCGCCGATCGCTACGACTTCATGCCGGTCGCCGAAATGCTGCAGCAAAGCCTGCTGACTACGCGCTTCGTATTGCCCCAGGCGCCGACGCAACCGGTGACCATCAATGGTGGCTACGCCATGCCCAGCTGGTATGACATTCGGGCCTTGAGCCCGGCGCGGGCGATCGACGAGCAACAACTGGACGCCTCGGCGCAACGGGTCATCGACCTGATGGAAACCCAGCGAGCCAGCGGAATAGACGCCTCGCGGATTTTCCTGGCAGGTTTTTCCCAAGGCGGAGCAGTGGTTTATCACACGGCATTCGTCAAGTGGCAGGGGCCGCTGGGTGGCGTGATTGCGCTGTCCACTTATGCGCCAACTTTCGGCGAAGAACTGCAGTTGTCAGCCAGCCAGCAACGCGTTCCGGTACTGGCGCTGCACGGACAGTACGACGAAGTGGTACTCAACCCGATGGGCCGGACCGCCAAAGAGTATCTGAAGCAGCATGGTGTCACCGTGACATGGCAAGAATACCCAATGGGCCACGAAGTGTTACCCGAGGAGATTCGCGACATCGGTACCTGGCTGGCGGAACGCTTGCGCTAAMTDPLILEPSSTADACVIWLHGLGADRYDFMPVAEMLQQSLLTTRFVLPQAPTQPVTINGGYAMPSWYDIRALSPARAIDEQQLDASAQRVIDLMETQRASGIDASRIFLAGFSQGGAVVYHTAFVKWQGPLGGVIALSTYAPTFGEELQLSASQQRVPVLALHGQYDEVVLNPMGRTAKEYLKQHGVTVTWQEYPMGHEVLPEEIRDIGTWLAERLRPGPT0028515_2152DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROQUINONE-DERIVATE_RESISTANCE,PGPT0028515-mhqD-K06999NANA
D1-35_014391032yhdWPutative amino-acid ABC transporter-binding protein YhdWATGAAGTTACTGAAATCCACCCTGGCAGTCGTGACTGCAGCAGCAGTCCTCGGTGTCAGCGGGTTCGCTCAGGCGGGTGCAACCCTGGATGCCGTGCAGAAGAAAGGTTTTGTGCAATGTGGTGTAAGTGATGGCCTGCCGGGTTTCTCGGTGCCTGATTCCACCGGCAAGATCGTGGGTATCGACGCTGACTTCTGCCGTGCCGTGGCCGCTGCGGTGTTTGGCGATGCGACCAAGGTCAAGTTCAGCCAGTTGAACGCCAAGGAGCGCTTCACCGCGCTGCAATCCGGCGAAATCGACGTGCTGTCGCGCAACTCCACCATGACCAGCTCCCGTGATGCGGGCATGGGCTTGAAATTCCCGGGCTTCATTACCTACTACGACGGCATCGGCTTCCTGGCCAACAGCAAATTGGGCGTCAAGAGCGCCAAGGAACTGGACGGTGCAACCATCTGCATCCAGGCCGGTACCACCACCGAGCTGAACGTGTCCGACTACTTCCGCGCCAACGGCCTGAAGTACACCCCGATCACTTTCGACACCTCCGATGAAAGCGCCAAGTCGCTGGAATCCGGTCGTTGCGACGTGCTGACCTCCGACAAGTCCCAACTGTTCGCCCAGCGCAGCAAGCTGGCTTCGCCGAAGGACTACGTGGTCCTGCCGGAAACCATCTCCAAGGAGCCACTGGGCCCGGTCGTGCGTAACGGCGACGACGAGTGGCTGGCCATCGTGCGTTGGACTGGCTTCGCCATGCTCAATGCCGAAGAAGCAGGCGTGACCTCGAAGAACGTCGAAGCTGAAGCCAAGTCCACCAAGAACCCGGACGTCGCTCGTATGCTGGGCGCTGACGGTGAATACGGTAAAGACCTGAAGCTGCCGAAAGACTGGGTCGTGCAGATCGTCAAGCAAGTCGGCAACTACGGTGAAATGTTCGAGCGCAACCTCGGCAAGGACACCCCGCTGCAGATCGATCGCGGTCTGAACGCTCTGTGGAACGCAGGCGGCATCCAATACGCACCACCAGTGCGCTGAMKLLKSTLAVVTAAAVLGVSGFAQAGATLDAVQKKGFVQCGVSDGLPGFSVPDSTGKIVGIDADFCRAVAAAVFGDATKVKFSQLNAKERFTALQSGEIDVLSRNSTMTSSRDAGMGLKFPGFITYYDGIGFLANSKLGVKSAKELDGATICIQAGTTTELNVSDYFRANGLKYTPITFDTSDESAKSLESGRCDVLTSDKSQLFAQRSKLASPKDYVVLPETISKEPLGPVVRNGDDEWLAIVRWTGFAMLNAEEAGVTSKNVEAEAKSTKNPDVARMLGADGEYGKDLKLPKDWVVQIVKQVGNYGEMFERNLGKDTPLQIDRGLNALWNAGGIQYAPPVRPGPT0020815_384DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_L-AMINO_ACID_TRANSPORT,PGPT0020815-aapJ|bztA-K09969NANA
D1-35_014401182hypothetical proteinATGCAAAATTCAATCGGCGCACCTAAGCAGAGGCTCAGCCTCAGCGATCCACGAGTGCGTGCGTGGGTATTTCAGATCGTCACCATCGTGGCGGTTATTTCGCTGGGCTGGTTTCTGTTCGATAACACACAGACCAACCTGGAACACCGGGGCATCACGTCCGGTTTCGGCTTTCTGGAGCGCAGTGCCGGTTTCGGCATCGCCCAACACCTGATCGACTACACCGAAGCGGACAGTTATGCCCGCGTCTTTGTCATCGGTTTGCTCAACACCCTCCTGGTGACCTTCATTGGCGTGATTCTGGCGACCATCCTGGGGTTCATCATCGGCGTCGCACGCTTGTCGAAGAACTGGATAATCTCCAAGCTGGCGACCGTCTACGTGGAGGTCTTTCGTAACATCCCACCGCTGTTGCAGATCCTGTTCTGGTACTTCGCGGTATTCCTGACGATGCCGGGACCACGGGCTGCCCACAACTTCGGCGACACCTTCTTCGTCAGCAGCCGTGGCCTGAACATGCCGGCGGCGCTGGTGGCGGAAGGGTTCTGGCCGTTCGTGGCCAGTGTCGTGCTGGCGATCGTCGCCATCGTGCTGATGACCCGCTGGGCCAACAAGCGTTTCGAAGCAACGGGCGAGCCGTTCCATAAATTCTGGGTCGGCCTGGCGCTGTTCCTGGTGATCCCGGCGTTGTGCGCACTGATCTTCGGCGCGCCCGTGCATTGGGAAATGCCGCAGCTCAAGGGTTTCAACTTCGTTGGTGGCTGGGTTCTCATCCCGGAACTGCTGGCCTTGACCCTGGCGCTGACGGTGTACACCGCGGCGTTCATCGCCGAGATCGTGCGTTCTGGCATCAAGTCGGTCAGCCATGGCCAGACCGAGGCGGCTCACTCGCTGGGCCTGCGCAACGGTCCGACCCTGCGCAAGGTGATCATCCCGCAAGCCCTGCGCGTGATCATCCCGCCGCTGACCAGCCAATACTTGAACCTGGCGAAGAACTCTTCGCTGGCGGCCGGTATCGGTTATCCGGAAATGGTTTCGCTGTTTGCCGGCACGGTGTTGAACCAGACCGGTCAGGCCATCGAGGTGATCGCGATCACCATGAGCGTGTACCTGGCGATCAGTATCAGCATTTCCTTGCTGATGAACTGGTACAACAAGCGCATTGCGCTGATCGAGCGGTGAMQNSIGAPKQRLSLSDPRVRAWVFQIVTIVAVISLGWFLFDNTQTNLEHRGITSGFGFLERSAGFGIAQHLIDYTEADSYARVFVIGLLNTLLVTFIGVILATILGFIIGVARLSKNWIISKLATVYVEVFRNIPPLLQILFWYFAVFLTMPGPRAAHNFGDTFFVSSRGLNMPAALVAEGFWPFVASVVLAIVAIVLMTRWANKRFEATGEPFHKFWVGLALFLVIPALCALIFGAPVHWEMPQLKGFNFVGGWVLIPELLALTLALTVYTAAFIAEIVRSGIKSVSHGQTEAAHSLGLRNGPTLRKVIIPQALRVIIPPLTSQYLNLAKNSSLAAGIGYPEMVSLFAGTVLNQTGQAIEVIAITMSVYLAISISISLLMNWYNKRIALIERPGPT0020820_661DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_L-AMINO_ACID_TRANSPORT,PGPT0020820-aapQ|bztB-K09970NANA
D1-35_014411098yhdYCOG0765Inner membrane amino-acid ABC transporter permease protein YhdYATGACATCCCATACTTTCAAACCTGATATGCCGCCACCGAGCAAAGTGTTCGGGCCGGTGGCATGGATGCGCGCGAACATGTTCTCCAGCTGGCTCAACACGCTGCTGACGTTGTTCGCGTTCTACCTGATCTACCTGATAGTTCCACCGATCCTCGGTTGGGCTATCCTCGATGCCAACTGGGTCGGCACCACCCAGGCCGACTGCACCAAGGAAGGCGCCTGCTGGGTGTTCATCCAACAGCGTTTCGGCCAGTTCATGTACGGCTATTACCCGACAGGCCTGCGCTGGCGCGTAGACCTGACGGTGTGGGCGGCAGTGCTTGGCGTGGCGCCGCTGTTCATCTCGCGCTTCCCGCGCAAGGCGATCTACGGCCTCAGCTTCCTGGTGCTGTACCCGATCATTGCCTGGTGCCTGCTGCACGGTGGCGTTTTCGGTCTGGATACCGTGGCGACCAGCCAGTGGGGCGGCCTGATGCTGACGTTGGTGATCGCCACCGTCGGTATCGTCGGTGCTCTGCCGCTGGGCATCGTCCTGGCCCTGGGCCGGCGCTCGAACATGCCGGCGATTCGCGTGGTCTGCGTGACCTTCATCGAGTTCTGGCGCGGCGTGCCGTTGATCACGGTGCTGTTCATGTCCTCGGTGATGCTGCCGTTGTTTCTGCCTGAGGGCATGAACTTCGACAAGCTGCTGCGGGCATTGATCGGCGTGATCCTGTTCCAGTCGGCCTACGTGGCCGAAGTGGTGCGTGGCGGTCTGCAAGCGATTCCCAAGGGGCAATACGAAGCGGCCGCGGCGATGGGCCTGGGCTACTGGCGCAGCATGGGCCTGGTTATCCTTCCGCAGGCGCTGAAGATGGTGATCCCGGGGATCGTCAACACCTTCATTGCGCTGTTCAAGGACACCAGCCTGGTGATCATCATCGGCCTGTTCGACCTGCTCAACAGCGTGAAACAAGCTGCCGCCGACCCGAAATGGCTGGGCATGGCCACTGAAGGCTATGTGTTTGCCGCCCTGGTGTTCTGGATTTTCTGTTTTGGTATGTCCCGCTATTCCATGCATTTGGAACGCAAGCTGGACACTGGCCACAAGCGTTAGMTSHTFKPDMPPPSKVFGPVAWMRANMFSSWLNTLLTLFAFYLIYLIVPPILGWAILDANWVGTTQADCTKEGACWVFIQQRFGQFMYGYYPTGLRWRVDLTVWAAVLGVAPLFISRFPRKAIYGLSFLVLYPIIAWCLLHGGVFGLDTVATSQWGGLMLTLVIATVGIVGALPLGIVLALGRRSNMPAIRVVCVTFIEFWRGVPLITVLFMSSVMLPLFLPEGMNFDKLLRALIGVILFQSAYVAEVVRGGLQAIPKGQYEAAAAMGLGYWRSMGLVILPQALKMVIPGIVNTFIALFKDTSLVIIIGLFDLLNSVKQAAADPKWLGMATEGYVFAALVFWIFCFGMSRYSMHLERKLDTGHKRPGPT0020825_841DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_L-AMINO_ACID_TRANSPORT,PGPT0020825-aapM|bztC-K09971NANA
D1-35_01442765glnQ_2Glutamine transport ATP-binding protein GlnQATGAGTGAAGCGATCAAACAGCCTGTGAGCCCTGAAGGCATTATTCAGATGCAGGGCGTGAACAAGTGGTACGGCCAGTTCCACGTGTTGAAAGACATCAACCTGAACGTCAAGCAGGGCGAGCGTATCGTGCTGTGCGGCCCGTCGGGTTCCGGCAAATCCACCACCATCCGCTGCCTCAATCGCCTGGAAGAGCACCAGCAGGGTCGCATCGTGGTCGATGGCGTGGAACTGACCAACGACCTCAAGCAGATCGAAGCGATCCGTCGCGAAGTCGGCATGGTGTTCCAGCACTTCAACCTGTTCCCGCACCTGACCATCCTGCAGAACTGCACCCTGGCGCCGATGTGGGTGCGCAAGATGCCCAAGCGCAAGGCCGAGGAAATCGCCATGCATTACCTGGAACGCGTACGCATTCCAGAGCAGGCGCACAAGTACCCGGGCCAGCTCTCCGGCGGTCAGCAACAGCGCGTGGCGATCGCCCGTGCCCTGTGCATGAAACCGAAAATCATGCTCTTCGACGAACCGACCTCGGCCCTCGACCCGGAAATGGTGAAAGAGGTTCTGGACACCATGATCGGCCTGGCCGAAGACGGCATGACCATGCTGTGCGTGACCCACGAGATGGGCTTCGCCCGCACCGTGGCCAACCGCGTGATCTTCATGGACAAAGGCGAAATCGTTGAACAGGCTGCGCCGAATGACTTCTTCGACAACCCGCAGAATGACCGTACGAAGTTGTTCCTGAGCCAGATCCTGCACTGAMSEAIKQPVSPEGIIQMQGVNKWYGQFHVLKDINLNVKQGERIVLCGPSGSGKSTTIRCLNRLEEHQQGRIVVDGVELTNDLKQIEAIRREVGMVFQHFNLFPHLTILQNCTLAPMWVRKMPKRKAEEIAMHYLERVRIPEQAHKYPGQLSGGQQQRVAIARALCMKPKIMLFDEPTSALDPEMVKEVLDTMIGLAEDGMTMLCVTHEMGFARTVANRVIFMDKGEIVEQAAPNDFFDNPQNDRTKLFLSQILHPGPT0020830_476DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_L-AMINO_ACID_TRANSPORT,PGPT0020830-aapP|bztD-K09972NANA
D1-35_01443486hypothetical proteinATGAAACCCCAGCAATGTGTCAGCTGCGGCAGCATCGACGCGATGCATCATTTCAAAGGCCGTAGCTTTACGGTCGACTACAGGCAGGTGACTCGGCAAGTACACGATATTGCCGGATGGGAATGCCGGATCTGCGGTGAAATCGAATTCGATCACGACACTGACAGCGCCGAACGTTACTCCAGGGCCAGCGACCAATTGCTGGAAGATTACGCGCTGGCGACAGGTGCGGAAATCAAACGCATCCGCCGCAAACTGCACCTCACGCAAAAAGACGCGGTGAAGCTGCTATCCGGAGGCGGGCATAACGCGTTTTCCCGTTATGAACGCGGCGAAGTTACCCCGGCCCAGTCGTTATTCGTGCTGATGCGCCTGCTTGATCGGCATCCGCACCTGATGGCTGAAGTCCACTCGCTGAACGACGAAGCCCATTTGCAGCAACTGTTGTCGGGTCGCCATCCGGAACATGACACGGCGGATCTCTGAMKPQQCVSCGSIDAMHHFKGRSFTVDYRQVTRQVHDIAGWECRICGEIEFDHDTDSAERYSRASDQLLEDYALATGAEIKRIRRKLHLTQKDAVKLLSGGGHNAFSRYERGEVTPAQSLFVLMRLLDRHPHLMAEVHSLNDEAHLQQLLSGRHPEHDTADLPGPT0027590_40DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-MqsR-MqsA_TOXIN-ANTITOXIN_SYSTEM,PGPT0027590-antitoxin_mqsA-K13655NANA
D1-35_01444312mqsRmRNA interferase toxin MqsRATGGAAAAGAGCACACCCCATTACGACCTGACAGTGGTCAAGGCCGAGGTTCACAGGTTGCGAAGCAAGGCGTTCACATTGAACGCCCGCGAAGGCGGACGAAGGATGATGTTGAGTCTCGCCCGGATGCTGCGGATCGTTCACCTGTTGGAATACAGGATGCTGCATAAATCGATGACCACGTATGCCGATCACCGAATCTGGCAAGACGTCTATCACACAACATTTCAGGATCGGGAGATTTACATCAAGGTGACTTACCGCCCCGGCGGTGGGCATCCGGTGGTCTCCTTCAAGGAGAAAAACCAATGAMEKSTPHYDLTVVKAEVHRLRSKAFTLNAREGGRRMMLSLARMLRIVHLLEYRMLHKSMTTYADHRIWQDVYHTTFQDREIYIKVTYRPGGGHPVVSFKEKNQPGPT0025835_26DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-MqsR-MqsA_TOXIN-ANTITOXIN_SYSTEM,PGPT0025835-toxin_mqsR-K13651NANA
D1-35_01445660lutR_3COG2186HTH-type transcriptional regulator LutRATGTCAGAAATGTCCCCGCTAATAAAGCGCTCCCTGGTCGATCAAGCCTTGGAGCAACTGCGCCAACGCATCAGCGACGGCGTGTGGGCTGTCGGCCAGCGCCTGCCTACCGAGCCGGAATTGGTCGCCGAGCTAGGCATCAGCCGCAACACGGTGCGCGAAGCCATGCGCGTACTGGCGTTTTCCGGATTGATCGAGATTCGTCAGGGCGACGGCAGCTACGTGCGTGCGGTCGTCGACCCGCTGGACACGCTCAAGGCGCTATCCCGTTGTTCGTTGGAGCAGGCCCGGGAAACCCGGCACATCCTTGAAGTCGAGGCCATCGGCCTGGCGGCGCTACGGCGCACCGAGGATGATTTAGTTGCCTTGCGCCAGGCGCTGAAAACCAGCGGCGAGCATTATCACGGCGACCTGGAGCACTACATCGCCTGCGACCTGGTGTTCCATCGCCTGCTCGTGGACGCCGCGCACAACCCGGCCCTGAGCGAGCTGTATCGCTATTTCTCCAGCGTGATCGGCGCTCAGTTGCGTCAGAGCCTCAGTATTATTCCGCGCCATCAACACGTGTTCGACCTGCACATCGAAATCCTCGAAGCCGTTGAACGCCAGGATCCGGAGCGGGCCAAGGCCCTCTGCCGGCAGTTGATCAATGAACCCTGAMSEMSPLIKRSLVDQALEQLRQRISDGVWAVGQRLPTEPELVAELGISRNTVREAMRVLAFSGLIEIRQGDGSYVRAVVDPLDTLKALSRCSLEQARETRHILEVEAIGLAALRRTEDDLVALRQALKTSGEHYHGDLEHYIACDLVFHRLLVDAAHNPALSELYRYFSSVIGAQLRQSLSIIPRHQHVFDLHIEILEAVERQDPERAKALCRQLINEPNANANANANA
D1-35_014461305yycB_1COG2807putative transporter YycBATGTCCCGCGATCCGCTTGACCGCACTACCGCAACGCCGAACAAACGCGGCGCCGAACTCGAAGAATTGCTGATCGACGCCGAGGCGGACGACGAGCAGGCCCAGCAGAGCCACCCGCTGGTGCGCCGGCCCTGGTTGCTGCTGCTAGGCCTGATCCTGGTCGCGTTGAACCTGCGCCCGGCCTTGTCGAGCATGGCACCGCTGCTCAGCGACGTGTCGAAAAGCCTTGGCCTGTCGGCTGCCCAGGCCGGTCTGCTGACAACCTTGCCAGTGCTCTGCCTGGGCCTGTTCGCGCCATTGGCGCCAGTGCTGGCACGCCGCTTCGGCGCTGAACGAGTGGTGCTCGGGATCCTGCTCACGCTGGCTGGCGGCATCATCCTGCGCAGCTCGTTCGGCCAGTTCGGCCTGTTCGCGGGCAGCATCCTCGCTGGCGCCAGCATCGGTGTGATCGGCGTGTTGCTGCCGGGCATCGTCAAGCGCGACTTCGCCAAGCAGGCCGGCACCATGACCGGTGTCTACACCATGGCGCTGTGCCTGGGTGCGGCGATGGCGGCCGGCGCGACGGTGCCATTGAGCGAACATCTGGGCCATGACTGGGCCCTCGGCCTGGGCTTCTGGATGCTGCCGGCCCTGCTGGCCGCCGTGTTCTGGCTGCCGCAAGTGGGCCAGAAACACGGGGCGCATCAAGCGGCGTATCGTGTCCGCGGGTTGCTGCGTGATCCCCTGGCCTGGCAGGTGACCTTGTACATGGGGCTGCAATCGTCCCTGGCCTACATCGTGTTCGGCTGGCTGCCGTCGATCCTCATCGGTCGCGGGCTGACCCCGACCCAGGCGGGGCTGGTGCTGTCCGGCTCGGTAATCGTGCAACTGGTCAGCTCCCTCGCGGCGCCCTGGCTGGCAACGCGCGGCAAAGACCAGCGCCTGGCCATCGTGATCGTCATGCTGATGGTGCTCGGCGGGTTGTTCGGCTGCCTCTACGCGCCCATCGAAGGGCTGTGGGGCTGGGCGGTCCTGTTGGGCCTGGGGCAGGGCGCGACGTTCGCCCTGGCTCTGACGCTGATCGTGCTGCGCTCGCGCGACGCCCATGTGGCCGCCAACCTCTCCGGCATGGCCCAGGGTTTTGGTTATACGCTGGCGTCACTGGGGCCGTTCGCGGTCGGCGTGGTACATGACTTGACCGGCGGCTGGAATGCCCTGGGCTGGATCTTTGGCCTGGTTGGCCTGGGCGCGATCATCGCCGGCCTCGGCGCCGGCCGGGCGTTGTATGTCGGTGTCGTCAGCGAAAGAGTCGGCGAGCTTCGCTAAMSRDPLDRTTATPNKRGAELEELLIDAEADDEQAQQSHPLVRRPWLLLLGLILVALNLRPALSSMAPLLSDVSKSLGLSAAQAGLLTTLPVLCLGLFAPLAPVLARRFGAERVVLGILLTLAGGIILRSSFGQFGLFAGSILAGASIGVIGVLLPGIVKRDFAKQAGTMTGVYTMALCLGAAMAAGATVPLSEHLGHDWALGLGFWMLPALLAAVFWLPQVGQKHGAHQAAYRVRGLLRDPLAWQVTLYMGLQSSLAYIVFGWLPSILIGRGLTPTQAGLVLSGSVIVQLVSSLAAPWLATRGKDQRLAIVIVMLMVLGGLFGCLYAPIEGLWGWAVLLGLGQGATFALALTLIVLRSRDAHVAANLSGMAQGFGYTLASLGPFAVGVVHDLTGGWNALGWIFGLVGLGAIIAGLGAGRALYVGVVSERVGELRPGPT0005211_249DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_CYANATE_DETOXIFICATIONXENOBIOTIC_CYANATE_UPTAKE,PGPT0005211-cynX|yeaN-K03449NANA
D1-35_01447471hypothetical proteinATGAGCGATGCCCACACAGCCCTGATCACCCGGTTTTACCAGGCATTCCAGCGCCTCGATGCCGAGGCCATGAGTGCCTGCTACACCGATGACGTGGTGTTCAGTGATCCGGCCTTCGGCGAACTGCGTGGGCGCGATGCCGGCGACATGTGGCGCATGCTCACCACGCGGGCCAAGGATTTTTCCCTGACGTTCGATAACGTGCGCAGCGACGAACGTTCCGGCGGCGCCCATTGGGTGGCGACTTATCTGTTCAGCCAGACCGGCAATACAGTGGTAAACGACATCCAGGCGCGCTTCGTTTTTCGTGACGGCAAGATCTGCGAGCACCACGATCATTTCGACCTGTGGCGCTGGTCGCGCCAGGCCTTGGGCACCAAAGGCCTGCTGTTGGGCTGGACACCGCTGGTGCGCAACGCCGTCCGCGCCCAGGCGCTCAAGGGGCTGCGGGCGTTCCAGGCCAGTCGCTGAMSDAHTALITRFYQAFQRLDAEAMSACYTDDVVFSDPAFGELRGRDAGDMWRMLTTRAKDFSLTFDNVRSDERSGGAHWVATYLFSQTGNTVVNDIQARFVFRDGKICEHHDHFDLWRWSRQALGTKGLLLGWTPLVRNAVRAQALKGLRAFQASRNANANANANA
D1-35_01448324hypothetical proteinGTGACCACCGTTGAATCACCCCCCGACCTCGCTGCCCCCGCCACACCCGAACCGGCCAAGCCCTGGTTCGTCTACCTGGTGCGCGCCGCCAACGGCTCGCTGTACTGCGGCATCAGCGATGACCCGGTGCGGCGTTTCGCCAAGCATCAGAGCGGCAAGGGCGCGCGTTTCTTTCTCTCCAGCCCGGCGGTCGCGCTGGTCTATACCGAGGCCTGCCGTGACAAGGGCGAGGCGTTGCGGCAGGAGCGGTTGATCAAGAAGCTCAAGAAAAGCGCCAAGGAATGCTTGGTGGCCAGTGCGCTGTCGCTTCATCAGCCAGGCTGAMTTVESPPDLAAPATPEPAKPWFVYLVRAANGSLYCGISDDPVRRFAKHQSGKGARFFLSSPAVALVYTEACRDKGEALRQERLIKKLKKSAKECLVASALSLHQPGNANANANANA
D1-35_01449936hypothetical proteinATGTCTGAACTGATCCTCCATCATTACCCAACCTCCCCATTCGCAGAGAAAGCCCGCCTGCTGCTGGGTTTCAAGGGCTTGTCCTGGCGTTCGGTAGGTATACCGCCGATGATGCCCAAGCCGGACCTGACGGCCTTGACCGGTGGTTACCGCAAGACGCCGGTGTTGCAGATCGGCGCTGACATCTACTGCGACACGGCGTTGATAGCCCGGCGACTGGAGCAACAGAAAGCCTCCCCGGCGCTGTTTCCCGAGGGCCGGGAAATGATCGCTGCGTCCTTTGCGGCATGGGCGGATTCGGTGGTGTTTCAGCATGCGGTAAGCCTGGTGTTCCAGCCGGAATCGGTGGCGGTGCGTTTTGCCAAGTTGCCGCCCGAGGCGATCAAGGCGTTCATCAGCGACCGTGCCGGGCTGTTCAGTGGCGGCACGGCCACGCGTCTGTCCGCCGAGCAGGCCAAGCATCAATGGCCTGTGATCATGGCGCGCCTGGAGCAGCAGTTGCAGCGTGAAGACGGCGACTTCCTGCTAGGTGATCCGTCGATTGCCGACTTTGCCATGGCGCATCCGCTGTGGTTCCTCAAGGGCACGCCTGTCACTTCACCTTTGGTGGATGCTCACCCTGCGGTATCGGCGTGGCTGGCGCGGGTGTTGGGTTTCGGCCACGGTGCGTCGAGCCAGATGAGTTCCGAAGAGGCCCTGGAGGTGTCTCGCGATGCGACGCCGGCAGCGCTGCCGGATGAGTCATTCAAGGAGCCGAACGGATTTGTGGCGGGGCAGCGGGTGAGCATCGCGGCGACTGATTACGGTGTCGATCCGGTGGTTGGGGAGTTGTTGTTTGCCGGTAGCGAAGAATTGATTCTGCGTCGTCAGGACGAGCGTGGCGGGGTGGTGCATGTGCACTTTCCGCGGTTCGGGTTTCGCCTCGAGGCGGTCTGAMSELILHHYPTSPFAEKARLLLGFKGLSWRSVGIPPMMPKPDLTALTGGYRKTPVLQIGADIYCDTALIARRLEQQKASPALFPEGREMIAASFAAWADSVVFQHAVSLVFQPESVAVRFAKLPPEAIKAFISDRAGLFSGGTATRLSAEQAKHQWPVIMARLEQQLQREDGDFLLGDPSIADFAMAHPLWFLKGTPVTSPLVDAHPAVSAWLARVLGFGHGASSQMSSEEALEVSRDATPAALPDESFKEPNGFVAGQRVSIAATDYGVDPVVGELLFAGSEELILRRQDERGGVVHVHFPRFGFRLEAVPGPT0013170_472DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013170-gst-K00799NANA
D1-35_01450357hypothetical proteinATGCTCACCGGGGTACTGAAGAAGTGCCTGCTGGTTCTGCTGGTGGTGGTCGCGTACCAGAACTGGGGCAAAATCGAGCGGGTGCTCAATCCGTCGCAAATGGTTTCGAAACAGGTTCGCAGCAACGCCCGCGTCGTGCTGTACGCCACCGACTGGTGCGGATACTGCAAGGCAACCCGACGATTCCTGGACGAGAAAGGCGTGCCGTTTCGCGAGTTCGATATTGAAAAGGACGCCGAAGCGCGCAAGACCTACGAGGCGCTGGGCGGCCGGGGGATTCCGATCCTGGATGTGAACGGCACGTTGATTCGTGGGTATGAGCCGGAGAATATTCTCAAGGCATTAGCCGCGATATAAMLTGVLKKCLLVLLVVVAYQNWGKIERVLNPSQMVSKQVRSNARVVLYATDWCGYCKATRRFLDEKGVPFREFDIEKDAEARKTYEALGGRGIPILDVNGTLIRGYEPENILKALAAINANANANANA
D1-35_014511005yejKCOG3081Nucleoid-associated protein YejKATGCCGATCCGTCATTGCATCGTCCACCTGATCGACAAAAAACCCGACGGCACGCCCGCTGTGCTCCATGCCCGCGACTCCGAACTGGCGGAGTCCACGGCCATCGAGAACATGCTCGCCGACCTCAACGAGAGCTACAACGCCAAGCAAGGCAAGGCCTGGGGCTTCTTCCATGCCGAATCCGGGGCGCATCCGTTCAGTGGCTGGTTGAAGGAATACCTCGACGGCGGCAAGGACTTCACTGCGTTCAGTCGCGTGGCGGTGGAACACCTGCAAAAGCTGATGGAAGAATCCAACCTGTCGGTTGGCGGCCACGTGCTGTTCGCTCATTACCAGCAAGGCATGACCGACTACCTGGCGATCGCCCTGCTGCACCACAGCGAAGGCGTGGCCGTGACTGACGAGCTGGACGTGACCCCGTCGCGCCACCTGGACCTGGGCCAGTTGCACCTGGCGGCGCGGATCAACGTGTCGGAATGGCAGAACAACAAACAGTCCAGACAGTACATCTCGTTCATCAAGGGCAAGAACGGCAAGAAGGTTTCGGAGTACTTTCGCGACTTCATCGGTTGCCAGGAAGGCGTCGACGGCCCCGGCGAAACCCGCACCCTGCTCAAGGCTTTCAGCGACTTCGTCGAAAGCGAAGACCTGCCCGAAGACGACGCCCGGGAGAAAACCAAGACCCTGGTGGACTACGCCAGCAGCCAGGCCAAGCTCGGCGAGCCGATGGGCCTGGAAGAGCTCTCGGAGCTGATCGACGAAGAGCGCCCGAAAGCGTTCTACGACCACATCCGCAACAAGGACTACGGCCTGTCGCCGGAAATTCCGGCGGATAAACGCACCCTCAATCAGTTCCGCCGCTTCACCGGCCGCGCCGAAGGCTTGTCCATCAGCTTCGAAGCGCATCTGCTGGGCTCGAAGATCGAATACGACGAAGAGGCCGGCACGCTGATCATCAAGGGTTTACCGACCTCGCTGACCGATCAGCTCAAGCGGCGTAACTGAMPIRHCIVHLIDKKPDGTPAVLHARDSELAESTAIENMLADLNESYNAKQGKAWGFFHAESGAHPFSGWLKEYLDGGKDFTAFSRVAVEHLQKLMEESNLSVGGHVLFAHYQQGMTDYLAIALLHHSEGVAVTDELDVTPSRHLDLGQLHLAARINVSEWQNNKQSRQYISFIKGKNGKKVSEYFRDFIGCQEGVDGPGETRTLLKAFSDFVESEDLPEDDAREKTKTLVDYASSQAKLGEPMGLEELSELIDEERPKAFYDHIRNKDYGLSPEIPADKRTLNQFRRFTGRAEGLSISFEAHLLGSKIEYDEEAGTLIIKGLPTSLTDQLKRRNNANANANANA
D1-35_01452282hupB_1COG0776DNA-binding protein HRmATGGCTCTTACTAAAGACCAACTGATCGCTGATTTGGCTGAATCTGTAGACGCACCAAAAGCTACCGTGCGTGCGCTGCTGGACCAACTGGGCCAAGTGGTTGCCGATCAGCTGGAAAACGGCGGCGAACTGACCTTGCCAGGTGTTGGCAAGCTGAAAGTCACCGAGCGTCCTGCCCGTACCGGTCGCAACCCTTCGACTGGCGCAGCCATCGAAATCCCGGCCAAGAAAGTGATCAAGCTGGTTGTGGCCAAAGGCCTGACCGACGCGGTCAACAAGTAAMALTKDQLIADLAESVDAPKATVRALLDQLGQVVADQLENGGELTLPGVGKLKVTERPARTGRNPSTGAAIEIPAKKVIKLVVAKGLTDAVNKNANANANANA
D1-35_014531020rlmFCOG3129Ribosomal RNA large subunit methyltransferase FATGACCGCTCCTCGCCCTCCCCGCCCTCCCCGCCAGAAGCCCAAGCCCGTCGCCGAGACCAAAGCGCCGCGGGAGAAGGCCAGCCTGCATCCGCGCAATCGCCATCAGGGCCACTATGACTTCCCGGCGCTGATCAAGAGCACACCGGAACTGGCGAAGTTCGTGATCATCAATCCCTACGGCAAGGAAAGCATCGACTTTGCCAGCCCCGAGGCGGTGCGAGTGTTCAACCGGGCGCTGCTCAAGTCCTTTTATGGCATCGCCTATTGGGACATTCCGGCTGACTACCTGTGCCCTCCCGTGCCGGGGCGCGCCGACTACGTGCATTTTCTCGCCGACCTGCTCGCCAGCCACAATGAAGGCGAAATTCCTCGCGGCGCGGCGGTCAAGGTGCTGGACGTTGGCACCGGCGCCAACTGCGTTTATCCGCTGATCGGCTACAGCGATTACCGCTGGCACTTCCTGGGCTCGGAAATCGACCCGACGGCAATCGCGTCGGCCAAGGCCATCGTCCAGTCCAACGGCCTGAACAAAGCCATCCAGCTGCGCCAGCAACCCAACCGCAAGCACATCCTGTCAGGGCTTCTGGAAAGTACCGAACGGTTCGACCTGACGATGTGCAACCCGCCGTTCCACGCCTCCCTGGAGGAAGCCACCAAGGGCAGCCAGCGAAAATGGCGGGCACTGGGCAAGGCGGATCCGAAGCGCAAGTTGCCGGTCTTGAATTTCGGCGGCCAGGCGGCGGAGCTGTGGTGCGAGGGTGGCGAGGCGCGCTTCGTCACGCAGTTGATCAGTGAGAGCGCCCAGATCGCCGGGCAAGTGCTGTGGTTCAGCACGCTGGTATCGAAGGCCTCGAACCTGCCGGCGATTCAAGCCGCGCTGAAAAAGGCCGGAACGCTGCACAGCCAGGTGGTGGAAATGTCCCAGGGGCAGAAGCAGAGTCGGTTCGTGGCTTGGACCTTCCAGGACCAGGCGCAGCAACAAGCCTGGCGCCAGGCGCGCTGGGCTCGCAAGGACTGAMTAPRPPRPPRQKPKPVAETKAPREKASLHPRNRHQGHYDFPALIKSTPELAKFVIINPYGKESIDFASPEAVRVFNRALLKSFYGIAYWDIPADYLCPPVPGRADYVHFLADLLASHNEGEIPRGAAVKVLDVGTGANCVYPLIGYSDYRWHFLGSEIDPTAIASAKAIVQSNGLNKAIQLRQQPNRKHILSGLLESTERFDLTMCNPPFHASLEEATKGSQRKWRALGKADPKRKLPVLNFGGQAAELWCEGGEARFVTQLISESAQIAGQVLWFSTLVSKASNLPAIQAALKKAGTLHSQVVEMSQGQKQSRFVAWTFQDQAQQQAWRQARWARKDNANANANANA
D1-35_014542847valSCOG0525Valine--tRNA ligaseATGGATAAGACCTACCAGCCGCACGCCATTGAAACTTCCTGGTACAACACCTGGGAGTCCGAGAATTATTTCGCTCCGCAAGGCGCGGGCGATTCCTACACCATCATGATCCCGCCGCCGAACGTCACCGGCAGCCTGCACATGGGCCACGGTTTCAACAACGCGATCATGGACGCCCTGATCCGTTTCCGTCGCATGCAAGGCCGCAACACCTTGTGGCAGCCGGGCACCGACCACGCCGGTATCGCCACGCAAATGCTGGTGGAACGTCGCCTCGAAGCCCAGGGCCAGAATCGCCATGACCTGGGTCGCGAGAAATTCCTCGAGAAAGTCTGGGAATGGAAAGACGAATCCGGCGGCAACATCAGCCGTCAGATCCGTCGCCTCGGCTCGTCCGTGGACTGGAGCCGCGAGCGCTTCACCATGGACGACGGCCTGTCCGAAGCGGTCAAGGAAGCCTTCGTGCGCCTGCATGAAGACGGGCTGATCTATCGCGGCAAGCGCCTGGTCAACTGGGACACCAAGTTGCACACGGCGATTTCCGACCTCGAAGTGGAGAACCACGACGAGAAAGGTTTCCTGTGGAACCTGAAGTACCCGCTGGCCGACGGCGCCAAGACCGCCGAAGGCAAGGATTACCTGATTGTCGCCACCACGCGTCCGGAAACCATGCTGGGCGACTCAGCCGTAGCGGTGAACCCGAACGACGAGCGCTACCAGGCGCTGATCGGCCAGTTCGTCGAGCTGCCGCTGGTTGGCCGTCGTATCCCGATCATCGGCGACGACTACTGCGACCCCGAATTCGGCACCGGCTGCGTGAAAATCACCCCGGCTCACGATTTCAACGACTATGAAGTCGGCAAGCGCCACAACCTGCCGCTGCTGAACATCTTCGACAAGAACGCCAATGTCTTGCCGGCCGCCCAGGCATTCAACCTCGACGGCACCCTGAACGAAAGCGTCGACGGCCAGATCCCGGCCGAATACGCCGGCCTGGATCGCTTCGAAGCGCGCAAGCAGATCGTTGCTGCGTTCGAGGCCGCCGGCCTGCTGGTCAGCGTCGACGACCATGCCCTGAAAGTCCCGAAAGGCGATCGCTCTGGCACCATCATCGAGCCGTGGCTGACCGACCAGTGGTACGTGTCGACCAAGCCGCTGGCCGAGCCGGCGATTGCCGCCGTGGAAGACGGCCGCATCCAGTTCGTGCCCAAGCAATACGAAAACATGTACTTCTCGTGGATGCGCGACATCCAGGATTGGTGCATCAGCCGCCAGCTGTGGTGGGGCCACCGCATCCCGGCCTGGTACGACGAGTCGGGCAAGGTCTACGTCGGTCGCGATGAAGCCGAAGTCCGCGCCAAGCACAACCTTGGCCCGGACGTAGCGCTGGCGCAGGACAACGACGTTCTCGACACCTGGTTCAGTTCGGGCCTGTGGACGTTCTCGACCCTGGGCTGGCCGCAACAGACCGAGTTCCTGAAGAAATTCCACTCCACCGACGTGCTCGTCACCGGCTTCGACATCATTTTCTTCTGGGTCGCCCGGATGATCATGCTGACCATGCACTTGGTGAAGAACGAGGACGGCACGCCGCAAGTGCCGTTCAAGACTGTCTACGTCCATGGCCTGGTGCGCGACGGCCAGGGCCAGAAGATGTCCAAGTCCAAGGGCAACGTCCTCGACCCGCTGGACATCATCGACGGCATTGACCTGGAAACCCTGGTGCAGAAACGCACCTCGGGCCTGATGCAGCCGAAACTGGCGAAGAAGATCGAGAAGGCCACCCGCGAAGAATTTGCCGAGGGCATCGCCAGCTACGGCACCGACGCTCTGCGGTTTACCTTCTGCTCGCTGGCATCCACCGGTCGCGACATCAAGTTCGACATGGGCCGCGTCGAAGGCTATCGCAACTTCTGCAACAAGATCTGGAACGCCGCGCGCTACGTGCTGGACAAGGGCGAAGACTGCGGCCAGAACGGCGAAACCTACGAGCTGAGCCTGGCTGACCGCTGGATCATTTCGCAACTGCAACGCACCGAAGCCGAAGTGACCCGCCAGCTCGACCAGTTTCGTTTCGACCTGGCCGCACAAGCGCTGTATGAGTTCATCTGGAACCAGTATTGCGACTGGTACCTGGAACTGTCCAAGCCGGTACTGTGGGACGAAAACGCACCGGTCGAGCGCCAGCGCGGCACCCGTCGCACCCTGGTTCGCGTATTGGAAGTGGCCCTGCGCCTGGCGCATCCGTTCATGCCGTTCATCACCGAGGAAATCTGGCAGCGCGTCGCACCGCTGGCCGGTGCCCAGGGCAAGACGATCATGCTGCAACCGTGGCCGGTGGCCAACGAAAGCCGCATCGATCCGGCAGCCGAAGACGACATCGAGTGGCTGAAGACCTTCATGCTCGGCCTGCGCAACATCCGCGCCGAAATGAACATCGGCCCAGGCAAACCGCTGACCCTGTTCCTGAAAAACGCCAACGCCGAAGACCTGCGCCGTCTCAACGAGAACGAAGCGCTGCTCAAGAAGCTGGCGAAACTGGAATCGGTGACGGTACTGGCTGTGGGCGAAGAAGCACCGCTGTCGGCCACCGCCCTGGTTGGCGAGATGGAAGTGCTGGTGCCAATGGCCGGCCTGATCGACAAGGCCGCCGAACTGGCGCGCCTGGACAAGGAGATCCTGCGTCTGAAGGGCGAAGTCCAGCGCGTCGGCGGCAAGCTGTCGAACGCCGGCTTCGTCGACAAGGCACCGGCCGAAGTCATCGAGAAGGAGCGGGCCAAACTGGCCGAGGCCGAACAGGCCCTGGGCAAGCTGGCCGAGCAGCACGCGCGGATTGCCAGCCTGTAAMDKTYQPHAIETSWYNTWESENYFAPQGAGDSYTIMIPPPNVTGSLHMGHGFNNAIMDALIRFRRMQGRNTLWQPGTDHAGIATQMLVERRLEAQGQNRHDLGREKFLEKVWEWKDESGGNISRQIRRLGSSVDWSRERFTMDDGLSEAVKEAFVRLHEDGLIYRGKRLVNWDTKLHTAISDLEVENHDEKGFLWNLKYPLADGAKTAEGKDYLIVATTRPETMLGDSAVAVNPNDERYQALIGQFVELPLVGRRIPIIGDDYCDPEFGTGCVKITPAHDFNDYEVGKRHNLPLLNIFDKNANVLPAAQAFNLDGTLNESVDGQIPAEYAGLDRFEARKQIVAAFEAAGLLVSVDDHALKVPKGDRSGTIIEPWLTDQWYVSTKPLAEPAIAAVEDGRIQFVPKQYENMYFSWMRDIQDWCISRQLWWGHRIPAWYDESGKVYVGRDEAEVRAKHNLGPDVALAQDNDVLDTWFSSGLWTFSTLGWPQQTEFLKKFHSTDVLVTGFDIIFFWVARMIMLTMHLVKNEDGTPQVPFKTVYVHGLVRDGQGQKMSKSKGNVLDPLDIIDGIDLETLVQKRTSGLMQPKLAKKIEKATREEFAEGIASYGTDALRFTFCSLASTGRDIKFDMGRVEGYRNFCNKIWNAARYVLDKGEDCGQNGETYELSLADRWIISQLQRTEAEVTRQLDQFRFDLAAQALYEFIWNQYCDWYLELSKPVLWDENAPVERQRGTRRTLVRVLEVALRLAHPFMPFITEEIWQRVAPLAGAQGKTIMLQPWPVANESRIDPAAEDDIEWLKTFMLGLRNIRAEMNIGPGKPLTLFLKNANAEDLRRLNENEALLKKLAKLESVTVLAVGEEAPLSATALVGEMEVLVPMAGLIDKAAELARLDKEILRLKGEVQRVGGKLSNAGFVDKAPAEVIEKERAKLAEAEQALGKLAEQHARIASLNANANANANA
D1-35_01455366hypothetical proteinATGGACACTCCAAAACCGCCGCAAAAACCTGCTCACCTGCTGGATGACCTCGAGTCGATCCGCCAACTGCTCGGTGACGATACCTTGCAGCCACCGCTGTTGACCGACACGGTGGAACACGAAGCCGTGCATGACGAGCAGATTCCGCTGCTGTTCGAACCGATCAACGGCCAGCCCGAACCCAAGCCAGCCCCCAATGCCGAACCAAAAGGCCCCGACGCCCTGTTGCATCTGGACCAGGAATTGCGCGCCGCCGCCCAACTGATCCTGCAAGACGTGATCGACGATTTCGCCCCGCACATCGAAACCGAGATCAAGCGCCGGTTGGATGCGCGTATGGAGCGGTTGTTGAGCCAGTACGAATAGMDTPKPPQKPAHLLDDLESIRQLLGDDTLQPPLLTDTVEHEAVHDEQIPLLFEPINGQPEPKPAPNAEPKGPDALLHLDQELRAAAQLILQDVIDDFAPHIETEIKRRLDARMERLLSQYENANANANANA
D1-35_01456429holCCOG2927DNA polymerase III subunit chiATGACCAAAGTCGACTTCTACATCCTGCCCAGCGCCGATCCCTCGGCGCGACTGGATTTCGCCTGCAAGCTCACCGAGAAAGCCTGGCGCATGGGCCATCGCATCTATCTGCATTGCAGCGATGCCGCTCAGCGCGAAGACCTGGACGCGCGCCTGTGGGCGTTCAAGGGCGAGAGTTTCGTGCCCCACGGTCCGGCCGAAAGCGAACCCGAAGGGCTGATCGTGCTGGGGCTGGGGGAAGACTGCGGTCAGCATCAGGACCTGCTGGTCAATCTCGACCTGAAAGTGCCGGCGTTTGCCCAGCGTTTCGCCCGCGTGGCGGAAGTCGTGGTCGAAGACCCGGCCATCCGCCAAGCCGCGCGGGAGAGTTTCCGTTTCTACCGCGAACAGGGCTATGCTCTGCAAGACCACCGTTTACAGCGACTCTGAMTKVDFYILPSADPSARLDFACKLTEKAWRMGHRIYLHCSDAAQREDLDARLWAFKGESFVPHGPAESEPEGLIVLGLGEDCGQHQDLLVNLDLKVPAFAQRFARVAEVVVEDPAIRQAARESFRFYREQGYALQDHRLQRLNANANANANA
D1-35_014571491pepACOG0260Cytosol aminopeptidaseATGGAACTGGTTGTAAAAAGCGTCAGCCCAGAAACGTTGAAGACCGCCACGCTGGTGGTTGCCGTTGGTGAGAACCGCCAGCTCGGCGTCGTCGCCACCCAGCTCGACGCCTTGAGCGGCGGCGCCATCAGCGCTGTACTCAAGCGCGGCGACCTGGCCGGCAAGGTCGGCCAGAGCCTGCTGCTGCACAGCCTCCCCAACCTCAAGGCCGAGCGTGTGTTGCTGGTGGGCGTTGGCAAGGACGCTGAACTGGGCGACCGTCCGTTCCGCAAGATCATTGCCGGCGTCTTGGGCACCCTGAAAAACCTGGGCGGTGGCGACGCCGTGCTGGCCTTGGACGAACTGGTTGTAAAAGGCCGCGACAGCTACGGCAAGAATCGCCTGCTGGCCGAGACCCTGGTGGATGGCGAATACCAGTTCGACCAGTTCAAGAGCCAGAAAGCCGAACCCCGTGCGCTGAAAAAAATCACCCTGCTGACCATCAAGGCCGCCCAGGCCGAAGTCCAGCGCGCCGTGACCCACGCCACCGCGATCGCCAACGGCATGGCCTTCACCCGCGACCTGGGCAACCTGCCGCCGAACATCTGCCACCCGACCTTCATGGGTGAACAGGCCAAGGCACTGGGCAAGGAATTCAAGGGTCTGAAGGTCGAGGTCTTCGACGAGAAGAAAATCAAGGACCTGGGCATGGGTTCGTTCTATGCCGTCGGCCAGGGCAGCGCCCAGCCGCCACGCCTGATCGTGATGCAATACAACGGCGGCAAGAAATCCGAGAAGCCGTACGCCCTGGTGGGCAAGGGCATCACTTTCGACACCGGCGGCATCAGCCTCAAGCCCGGCGCCGGCATGGATGAAATGAAATACGACATGGGCGGCGCCGCCAGCGTGTTCGGCACCCTGCGCGCCGTGCTCGAGCTGCAATTGCCGATCAACCTGGTCTGCATCCTCGCCTGCGCCGAGAACATGCCCAGCGGCACGGCTTCGCGCCCGGGCGACATCGTCACCACCATGAGCGGCCAGACCGTGGAAATCCTCAACACCGATGCCGAAGGCCGTCTGGTGCTGTGCGACGCCCTCACCTATTCCGAACGCTTCAAGCCGCAAGCGGTGATCGACATCGCCACGCTGACTGGCGCCTGCGTCGTCGCCCTGGGCGCCCATACCTCGGGCCTGCTGGGCAACAATGACGAGCTGATCGGCCAACTGCTCAGCGCCGGCCAGCAGGCCGACGATCGCGCTTGGCAATTGCCGCTGTTCGATGAGTACCAGGAACAGCTGGACAGCCCGTTCGCCGACATCGCCAACATCGGTGGCCCGAAAGCCGGGACCATCACCGCAGCGTGCTTCCTGTCGCGCTTCACCAAGAACCTGAACTGGGCCCACCTGGACATCGCCGGCACGGCCTGGACCAGCGGCGGCAAGGACAAGGGCGCCACCGGCCGTCCGGTACCCCTGCTGACCCAGTACCTGCTGGACCGCGCCAAGGCCTGAMELVVKSVSPETLKTATLVVAVGENRQLGVVATQLDALSGGAISAVLKRGDLAGKVGQSLLLHSLPNLKAERVLLVGVGKDAELGDRPFRKIIAGVLGTLKNLGGGDAVLALDELVVKGRDSYGKNRLLAETLVDGEYQFDQFKSQKAEPRALKKITLLTIKAAQAEVQRAVTHATAIANGMAFTRDLGNLPPNICHPTFMGEQAKALGKEFKGLKVEVFDEKKIKDLGMGSFYAVGQGSAQPPRLIVMQYNGGKKSEKPYALVGKGITFDTGGISLKPGAGMDEMKYDMGGAASVFGTLRAVLELQLPINLVCILACAENMPSGTASRPGDIVTTMSGQTVEILNTDAEGRLVLCDALTYSERFKPQAVIDIATLTGACVVALGAHTSGLLGNNDELIGQLLSAGQQADDRAWQLPLFDEYQEQLDSPFADIANIGGPKAGTITAACFLSRFTKNLNWAHLDIAGTAWTSGGKDKGATGRPVPLLTQYLLDRAKANANANANANA
D1-35_014581122lptFCOG0795Lipopolysaccharide export system permease protein LptFTTGATCGTCTTCCGTTATCTATCCCGCGAAGTCCTGCTGACCCTGAGCGCGGTCAGTGCCGTGCTGCTGGTCATCATCATGAGCGGGCGCTTCATCAAGTACCTTGCCCAGGCGGCTTCGGGCGCCCTCGATCCGGGCTCGCTGTTCCTGATCATGGGGTTCCGCCTGCCGGGCTTCCTGCAACTGATCCTGCCGCTGGGATTGTTCCTCGGGATCCTGCTGGCCTACGGTCGCCTCTACCTGGACAGTGAAATGACCGTGCTGTCGGCCACCGGCATGAGTCAGCAGCGTCTGTTTCGCATCACTCTGTTCCCGGCCACATTGGTGGCGCTGGTGGTGGCCTGGCTGAGCCTGAGCCTGTCGCCCCAGGGCGCCAACCAGTTCCAGCTGTTGATCAACCAGCAGGACGCCATGACCGAATTCGACACCCTGGTACCGGGGCGCTTCCAGGCCCTGCGCGACGGGACGCGTGTCACCTACACCGAACAACTGTCGGACGACCGGGTCAACCTCGGCGGCGTCTTTATCACCCAGAAAAACGTCTCTTCGGACACCAAGAAGGACCGCGGCATTTCCGTGCTGGTGGCTGAGAAAGGCCGCCAGGAAATCAACCCCGACGGCAACCGCTACCTGATCCTGGAGAACGGCTATCGCTACGATGGCACCCCGGGACAGGCCGATTACCGGGCGATCAAGTACGACACCTACGGTGTGCTGCTGCCCAAGCCCGATGTCAGCGATGAAGTCACCGACCGCGATGCGATGCCTACCGCCAGCCTGCTGGGCAGTGATGACATCCGCGCCCGCACCGAACTGCAATGGCGCCTGTCGCTGCCGTTGCTGGTGTTCATTGTGACCCTCATGGCGGTCCCGCTGTCGCGGGTCAATCCGCGCCAGGGTCGTTTCCTCAAGCTGCTGCCGGCGATTCTTTTGTATATGGCCTACCTGACCATCCTGATTTCCGCCCGCAGTGCCCTGGAGAAAGGCAAGATCCCGCCGGCCCTGGGCCTGTGGTGGGTGCATTCGATCTTCCTGGTCATTGGCCTGGGCTTGCTCTATTGGGAGCCGTTGCGCTTGAAGCTGGCCAGTCGTCGCAGCGCGCTGGAGGTGGCCCGTGGTTAAMIVFRYLSREVLLTLSAVSAVLLVIIMSGRFIKYLAQAASGALDPGSLFLIMGFRLPGFLQLILPLGLFLGILLAYGRLYLDSEMTVLSATGMSQQRLFRITLFPATLVALVVAWLSLSLSPQGANQFQLLINQQDAMTEFDTLVPGRFQALRDGTRVTYTEQLSDDRVNLGGVFITQKNVSSDTKKDRGISVLVAEKGRQEINPDGNRYLILENGYRYDGTPGQADYRAIKYDTYGVLLPKPDVSDEVTDRDAMPTASLLGSDDIRARTELQWRLSLPLLVFIVTLMAVPLSRVNPRQGRFLKLLPAILLYMAYLTILISARSALEKGKIPPALGLWWVHSIFLVIGLGLLYWEPLRLKLASRRSALEVARGPGPT0023290_1383DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_TRANSPORT,PGPT0023290-lptF-K07091NANA
D1-35_014591062lptGCOG0795Lipopolysaccharide export system permease protein LptGGTGGTTAAACTCGACCGCTATATCGGCAGCAGCGTGTTCATGGCGATCCTCGCGGTGCTGGGAATCATTCTTGGCCTGGCGACCCTGTTCGCGTTCATCGACGAGATGGGCGATGTCAGCGATACCTATACATTGCTGGACGTGGCGAGCTACGTGTTGCTGACGGCGCCAAGGCGCCTGTACGACATGTTGCCGATGGCTGCGCTGATCGGTTGCCTGATCGGCCTGGGGAGCCTGGCGAGCAACAGCGAACTGACCATCATGCGCGCCGCCGGCGTGTCCATCGGCCGCATCGTGTGGGCGGTGATGAAACCGATGCTGGTGCTGATGCTGGTCGGGCTGCTGGTCGGCGAGTACGTCGCGCCGGCCACCGAGAACACCGCCCAGGCCAATCGCTCCCTGGCCCAGGGCGGCGGTGATGCCCAAAGCGCCAAGCATGGCTTGTGGCACCGCCAGGGTGACGAGTTCATCCACATCAACTCGGTCCAGCCTAACGGCACGCTGTACGGCGTGACCCGGTATCGCTTCGACGACGAGCGGCACCTGTTGTCGTCGAGCTTCGCCAAACGCGCCAATTTCGCCGAGGATCACTGGCAACTGACCGACGTCACCACCACCTTGTTCCATGACAAGCGCACCGAGGTGGTCGCCGCTCCACAGGAACGTTGGGACGTGCAGATCAGCCCGCAGTTGCTCAGCACCGTCGTGATGGCGCCGGAGTCGCTTTCGATCACCGGTTTGTGGGGTTACATCCACTATCTGGCGGACCAGGGCCTGAACAATGGCCGCTACTGGCTGGCATTTTGGGTCAAGGTATTGCAGCCGCTGGTTACTGCCGCCCTGGTGTTGATGGCGATTTCCTTCATCTTTGGTCCGCTGCGCTCGGTGACCCTCGGCCAGCGCGTCTTCACCGGCGTACTGGTCGGCTTCACCTTCCGCATCGCCCAGGACTTGCTGGGGCCATCGAGCCTGGTGTTCGGTTTCTCGCCGCTGTTCGCCGTGCTGGTGCCGGCCACGATCTGCGCGCTGGCCGGGCTCTGGCTGCTGCGCCGGGCGGGTTGAMVKLDRYIGSSVFMAILAVLGIILGLATLFAFIDEMGDVSDTYTLLDVASYVLLTAPRRLYDMLPMAALIGCLIGLGSLASNSELTIMRAAGVSIGRIVWAVMKPMLVLMLVGLLVGEYVAPATENTAQANRSLAQGGGDAQSAKHGLWHRQGDEFIHINSVQPNGTLYGVTRYRFDDERHLLSSSFAKRANFAEDHWQLTDVTTTLFHDKRTEVVAAPQERWDVQISPQLLSTVVMAPESLSITGLWGYIHYLADQGLNNGRYWLAFWVKVLQPLVTAALVLMAISFIFGPLRSVTLGQRVFTGVLVGFTFRIAQDLLGPSSLVFGFSPLFAVLVPATICALAGLWLLRRAGPGPT0023295_3036DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_TRANSPORT,PGPT0023295-lptG-K11720NANA
D1-35_014601800lepACOG0481Elongation factor 4GTGAGTGATTTGAGTCATATCCGCAATTTCTCCATCATCGCCCACATTGACCATGGCAAGTCGACGCTGGCTGATCGCTTCATCCAGATGTGCGGCGGTCTGGCCGAGCGTGAAATGGAAGCCCAGGTCCTGGACTCCATGGACCTCGAGCGTGAGCGCGGGATCACCATCAAGGCCCACAGCGTTACCCTCTATTACAAGGCTCGCGACGGCGTCACCTACCAGCTCAACTTCATCGACACCCCCGGCCACGTCGACTTCACCTATGAAGTCAGCCGGTCGCTGGCGGCCTGTGAAGGCGCGCTGCTGGTTGTCGATGCCGGCCAGGGCGTCGAGGCCCAGTCGGTCGCCAACTGCTACACGGCCATCGAGCAAGGCCTGGAAGTCATGCCGGTATTGAACAAGATCGACCTGCCCCAGGCCGATCCGGACCGCGTGAAAGAAGAAATCGAGAAAATCATCGGCATCGACGCCACCGACGCGGTCACTTGCAGCGCCAAGACCGGCCTGGGCGTGGATGAAGTGCTCGAGCGCCTGGTCACTACCATTCCGGCGCCGACCGGCAATATCGAAGATCCGCTGCAGGCGTTGATCATCGACTCGTGGTTCGACAACTACCTGGGCGTGGTCTCCCTGGTTCGCGTGCGCCATGGCCGCGTGAAGAAGGGCGACAAGATCCTGGTCAAGTCCACTGGCAAGATCCACCTGGTGGACAGTGTTGGTGTGTTCAATCCGAAACACACCGCCACCGTCGACCTGAAGGCTGGCGAAGTCGGCTTCATCATTGCCGGTATCAAGGACATCCACGGTGCGCCGGTCGGCGACACCCTGACCTTGAGCTCGACCCCCGACGTCGACGTGCTGCCGGGCTTCAAACGCATTCAGCCGCAGGTCTATGCCGGCCTGTTTCCGGTCAGCTCCGACGACTTCGAGGATTTCCGCGAAGCACTGCAGAAGCTGACCCTGAACGACTCGTCCCTGCAGTACACCCCGGAAAGCTCCGACGCCCTGGGCTTCGGTTTCCGCTGCGGGTTCCTCGGCATGCTGCACATGGAAATCATCCAGGAGCGCCTGGAGCGCGAATACGACCTGGACCTGATCACCACGGCGCCGACGGTAATCTTCGAGCTGCTGCTCAAGAACGGCGAGACCATCTACGTCGACAACCCGTCCAAGCTGCCGGACCTGTCGGCCATCGAGGACATGCGCGAGCCAATCGTGCGGGCGAATATCCTTGTGCCTCAGGAACACCTGGGCAACGTCATTACCCTGTGCATCGAGAAGCGCGGCGTGCAACACGACATGCTGTTCCTCGGCACGCAGGTCCAGGTGACCTACGACTTGCCGATGAACGAAGTGGTGCTGGACTTCTTCGACCGCCTGAAATCCACCAGCCGCGGCTATGCTTCGCTGGACTATCATTTCGATCGTTACCAATCGGCTAATCTGGTGAAGCTGGATGTGCTGATCAACGGCGAAAAAGTCGATGCCCTGGCATTGATCGTGCACCGTGACAACGCGCACTACAAAGGTCGTGCGTTGACCGAGAAGATGAAGGAGCTGATTCCGCGGCAGATGTTCGACGTGGCAATCCAGGCCGCCATTGGCGGGCAGATTGTGGCGCGCACAACCGTCAAGGCACTCAGAAAGAACGTATTGGCCAAATGCTACGGCGGCGACGTCAGCCGTAAGCGCAAGCTGTTGGAAAAGCAGAAGGCCGGTAAAAAACGCATGAAGCAGGTCGGTAACGTGGAAATTCCACAGGAAGCCTTCCTTGCGGTGCTCAGGTTGGATAGTTAGMSDLSHIRNFSIIAHIDHGKSTLADRFIQMCGGLAEREMEAQVLDSMDLERERGITIKAHSVTLYYKARDGVTYQLNFIDTPGHVDFTYEVSRSLAACEGALLVVDAGQGVEAQSVANCYTAIEQGLEVMPVLNKIDLPQADPDRVKEEIEKIIGIDATDAVTCSAKTGLGVDEVLERLVTTIPAPTGNIEDPLQALIIDSWFDNYLGVVSLVRVRHGRVKKGDKILVKSTGKIHLVDSVGVFNPKHTATVDLKAGEVGFIIAGIKDIHGAPVGDTLTLSSTPDVDVLPGFKRIQPQVYAGLFPVSSDDFEDFREALQKLTLNDSSLQYTPESSDALGFGFRCGFLGMLHMEIIQERLEREYDLDLITTAPTVIFELLLKNGETIYVDNPSKLPDLSAIEDMREPIVRANILVPQEHLGNVITLCIEKRGVQHDMLFLGTQVQVTYDLPMNEVVLDFFDRLKSTSRGYASLDYHFDRYQSANLVKLDVLINGEKVDALALIVHRDNAHYKGRALTEKMKELIPRQMFDVAIQAAIGGQIVARTTVKALRKNVLAKCYGGDVSRKRKLLEKQKAGKKRMKQVGNVEIPQEAFLAVLRLDSPGPT0015105_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015105-degP|htrA-K04771NANA
D1-35_01461855lepBCOG0681Signal peptidase IATGTCGCTAAATTTCCCGCTGTTGCTGGTGATCGCCGTGTTCGTCTGCGGCCTGTTGGCGTTGCTTGATCTGTTGTTCCTGGCGCCTCGGCGTCGGGCCGCCATTGCCTCATATCAGGGCAGCGTCAGCCAGCCTGATGGCGTGGTCATCGAAAAGCTCAACAAGGAACCGCTGCTGGTCGAATACGGCAAGTCGTTCTTCCCGGTGCTGTTCATCGTCCTGGTGCTGCGCTCGTTCCTGGTGGAGCCGTTCCAGATCCCGTCCGGCTCGATGAAGCCGACCCTGGACGTGGGCGACTTCATCCTGGTGAACAAGTTTTCCTACGGGATCCGGCTGCCGGTGATCGACAGGAAAGTCATCGAGATCGGCGACCCGCAACGGGGTGATGTGATGGTGTTCCGCTTCCCGAGCGACCCGAACGTCAACTACATCAAGCGTGTGGTCGGCCTGCCGGGCGACAGGATTCGCTACACCGCCGACAAGCGTCTGTTCGTCAACGGCGAACTGGTGGCCGAGCAGTTGATCGGCTCCGAGCCGGGCACGCTGGGCAGTGCCGAGCTCTACAAGGAAAAACTCGGCGAGGCGGAACACCTGATCCGCAAGGAAATGAGCCGCTACCGCGCCACGCCGGACCATTCATGGACCGTGCCGGCCGGGCACTATTTCATGATGGGCGACAACCGCGACAACTCCAACGACAGCCGCTACTGGGATGATCCGAACATTCCCAGGGACATGCTGGGCATGGTCCCCGACCGCAACATCGTCGGCAAGGCCTTTGCGGTCTGGATGAGCTGGCCGGAACCCAAACTCAGTCACCTGCCGAATTTCTCGCGGGTTGGCCTGATCAAGTAAMSLNFPLLLVIAVFVCGLLALLDLLFLAPRRRAAIASYQGSVSQPDGVVIEKLNKEPLLVEYGKSFFPVLFIVLVLRSFLVEPFQIPSGSMKPTLDVGDFILVNKFSYGIRLPVIDRKVIEIGDPQRGDVMVFRFPSDPNVNYIKRVVGLPGDRIRYTADKRLFVNGELVAEQLIGSEPGTLGSAELYKEKLGEAEHLIRKEMSRYRATPDHSWTVPAGHYFMMGDNRDNSNDSRYWDDPNIPRDMLGMVPDRNIVGKAFAVWMSWPEPKLSHLPNFSRVGLIKNANANANANA
D1-35_01462627rncCOG0571Ribonuclease 3ATGCTCCTGGCCCTGACTCACCGCAGTTTTGCCGGGCGCAACAACGAACGCCTGGAATTCCTCGGCGATGCCATCCTCAACTTCGTGGCCGGCGAGGCGTTGTTCGAACGCTTCCCCCTGGCGCGGGAAGGCCAGTTGTCGCGTTTGCGTGCACGGTTGGTAAAAGGTGAGACCCTGGCGGTACTGGCCCGTGGTTTTGACCTGGGCGATTACCTGCGCCTGGGCTCCGGCGAGTTGAAAAGTGGCGGTTTTCGTCGCGAATCGATCCTGGCCGATGCCCTGGAAGCGCTGATTGGCGCGATCTATCTGGATTCCGGCATGGAAATGGCCCGCGAGCGGGTGCTGGCCTGGCTGACTTCCGAGATCGACAGCCTGACGCTGGTGGACACCAACAAGGATCCCAAGACGCGCTTGCAGGAATTCCTGCAGTCGCGCAGCTGCGAACTGCCGCGCTACGAAGTGGTGGATATCCAGGGTGAGCCGCATTGCCGAACCTTCTTCGTCGAATGCGAAGTGGTCCTATTGAATGAAAAAAGCCGAGGCCAGGGCGTCAGCCGTCGTATTGCCGAACAGGTAGCGGCCGCTGCAGCACTGATCGCCCTGGGCGTGGAGAATGGCAATGACTGAMLLALTHRSFAGRNNERLEFLGDAILNFVAGEALFERFPLAREGQLSRLRARLVKGETLAVLARGFDLGDYLRLGSGELKSGGFRRESILADALEALIGAIYLDSGMEMARERVLAWLTSEIDSLTLVDTNKDPKTRLQEFLQSRSCELPRYEVVDIQGEPHCRTFFVECEVVLLNEKSRGQGVSRRIAEQVAAAAALIALGVENGNDNANANANANA
D1-35_01463903era_2COG1159GTPase EraATGACTGATACAACCGTCACCCGCTGCGGCTATGTCGCCATCGTTGGCCGGCCGAACGTGGGCAAGTCGACATTGCTCAACCACATTCTCGGCCAGAAGCTGGCGATCACGTCGCGCAAGCCGCAAACCACTCGCCACAACATGCTCGGCATCAAGACCGAAGGCGCCGTACAGGCGATCTACGTCGACACGCCCGGCATGCACAAGGGCGGCGAGAAGGCCCTGAACCGCTACATGAACAAGACGGCCTCGGCGGCGTTGAAGGACGTTGACGTGGTCATCTTCGTGGTCGACCGCACCAAGTGGACCGAAGAAGACCAGATGGTCCTCGAGCGTGTCCAGTACGTGACCGGTCCCTTGATCGTTGCGCTGAACAAGACCGACCGCATCGAAGACAAGGCCGAGCTGATGCCGCACCTGAGCTGGTTGCAAGAGCAGTTGCCGAATGCCCAGATCATCCCGATCTCTGCCCAGCACGGTCACAACCTCGACGCGCTGGAGCGGGTAATCGCCGAGCACCTGCCGGAAAACGATCACTTCTTCCCCGAAGACCAGATCACCGACCGCAGCAGCCGTTTTCTCGCCGCCGAACTGGTCCGCGAGAAAATCATGCGCCAGATGGGTGCCGAGCTGCCGTACCAGATCACGGTGGAAATCGAAGAGTTCAAGCAGCAGGGCAAGACCCTGCACATCCATGCCTTGATCCTCGTCGAGCGTGACGGCCAGAAAAAAATCATCATTGGCGACAAGGGCGAGCGCATCAAGCGCATCGGCACCGAGGCGCGCAAGGACATGGAGCTGCTGTTCGACTCCAAGATCATGCTCAACCTGTGGGTCAAGGTGAAGGGTGGCTGGTCCGATGACGAGCGGGCGTTGCGCTCGCTGGGTTACGGCGACCTCTGAMTDTTVTRCGYVAIVGRPNVGKSTLLNHILGQKLAITSRKPQTTRHNMLGIKTEGAVQAIYVDTPGMHKGGEKALNRYMNKTASAALKDVDVVIFVVDRTKWTEEDQMVLERVQYVTGPLIVALNKTDRIEDKAELMPHLSWLQEQLPNAQIIPISAQHGHNLDALERVIAEHLPENDHFFPEDQITDRSSRFLAAELVREKIMRQMGAELPYQITVEIEEFKQQGKTLHIHALILVERDGQKKIIIGDKGERIKRIGTEARKDMELLFDSKIMLNLWVKVKGGWSDDERALRSLGYGDLNANANANANA
D1-35_01464684recOCOG1381DNA repair protein RecOATGTCTCAACCCACCGCTCAATCCGCCTACGTCCTCCACAGCCGCGCCTACCGCGAAAGCAGCGCCCTGGTGGACTTCCTCACGCCTCAAGGGCGGCTGCGGGCGGTGTTGCGGGGGGCTCGGGGCAAGGCCGGGACCCTGGCGCGGCCGTTCGTGCCGCTGGAAGTCGAGTTTCGCGGCCGGGGTGAGTTGAAGAATGTCGGGCGCATGGAAAGCAATGGCGTCGCCTCCTGGCTCAATGGCGAAGCGCTGTTCAGTGGCCTGTACCTCAACGAATTGCTGATCCGCCTGCTGCCCGCCGAAGATCCCCATCCCGCCGTGTTCGACCATTACACCGCCACGTTGCTGGCCCTGGCCGAGGGTCGACCCTTGGAGCCATTGCTGCGCTCTTTCGAATGGCGCCTGCTGGATGACCTGGGCTACGGTTTTGCCCTGGACGCCGACCTGCACGGCGATCCTATTGCGGCCGACGGTCTGTATCGCCTGCAAGTGGATGCAGGCCTGGAGCGGGTCTACCTGCTGCAACCGGGACTGTTCAACGGCGTCGAGTTGCTGGCCATGGCGCAAGCCGACTGGACAGCGCCTGGCGCGCTGGCGGCGGCCAAGCGGCTGATGCGCCAGGCCCTGGCGGTTCATCTGGGCGGCCGGCCGCTGGTCAGTCGCGAGTTGTTTCGCAAGCCCTGAMSQPTAQSAYVLHSRAYRESSALVDFLTPQGRLRAVLRGARGKAGTLARPFVPLEVEFRGRGELKNVGRMESNGVASWLNGEALFSGLYLNELLIRLLPAEDPHPAVFDHYTATLLALAEGRPLEPLLRSFEWRLLDDLGYGFALDADLHGDPIAADGLYRLQVDAGLERVYLLQPGLFNGVELLAMAQADWTAPGALAAAKRLMRQALAVHLGGRPLVSRELFRKPNANANANANA
D1-35_01465744pdxJPyridoxine 5'-phosphate synthaseGTGAGTACCAGCAATCGCATTCTTCTCGGCGTCAACATCGACCATGTCGCCACTCTGCGCCAGGCCCGTGGTACGCGTTACCCGGACCCGGTCAAGGCCGCGCTGGACGCCGAAGAGGCGGGCGCCGATGGCATCACCGTGCACTTGCGCGAAGACCGTCGACACATCCAGGAACGCGACGTGCTGCTGCTCAAGGATGTGCTGCAGACTCGCATGAATTTTGAAATGGGCGTGACCGAGGAAATGATGGCGTTCGCCGAACGCATCCGTCCGGCGCACATCTGCCTGGTTCCGGAGACGCGCCAGGAACTGACCACCGAAGGCGGCCTGGATGTAGCGGGGCAGGAGTCGCGGATCAGCCTGGCGGTGGAGCGCCTGTCGAAGATCGGTGCCGAGGTCTCGCTGTTCATCGATGCCGATGAACGGCAGATCGAAGCCTCCAAGCGTGTCGGTGCGCCGGCCATCGAGCTGCACACCGGCCGTTACGCCGACGCCGAGACACCTAAGGACGTGGCCGATGAGCTGCAGCGGGTCGCCGACGGCGTCAGCTTCGGCCTGGCCCAGGGGCTGATCGTCAATGCCGGCCATGGTCTGCATTACCACAACGTTGAAGCCGTCGCGGCCATCAAGGGCATCAACGAGCTGAACATCGGCCACGCGCTGGTGGCCCATGCGTTGTTTGTCGGGTTCAAGTCGGCTGTGGCGGAGATGAAAGCGTTGATCCTGGCGGCTGCCCGACCCTGAMSTSNRILLGVNIDHVATLRQARGTRYPDPVKAALDAEEAGADGITVHLREDRRHIQERDVLLLKDVLQTRMNFEMGVTEEMMAFAERIRPAHICLVPETRQELTTEGGLDVAGQESRISLAVERLSKIGAEVSLFIDADERQIEASKRVGAPAIELHTGRYADAETPKDVADELQRVADGVSFGLAQGLIVNAGHGLHYHNVEAVAAIKGINELNIGHALVAHALFVGFKSAVAEMKALILAAARPPGPT0009170_1169DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009170-pdxJ-K03474NANA
D1-35_014661338mltF_2COG4623Membrane-bound lytic murein transglycosylase FGTGCTGCGGGTGGTTACCCGGAACAGCCCCGCCACCTACTTCCAGGATCGCAATGGTGAGACCGGCTTCGAATACGAGCTGGTGAAGCGCTTCGCCGAGGATTTGGGGGTCGAGCTGAAGATCGAGACCGCTGACAACCTTGACGACCTGTTCAGCCAGGTCGGCAAGCCCAATGGCCCGGTGCTGGCCGCGGCGGGCCTGGTCAGCAGCGAACAGCGCAAGAAACAGGTACGGTTCTCCCACGCCTACCTGGAGGTTACCCCGCAGGTCATCTACCGCAACGGCCAGTCCCGCCCCACCGATGCGGCCGCCCTGGCGGGCAAGAAGATCATGGTGCTCAAGGGCAGCTCCCACGCGGAGCAGCTCGCGCAGTTGAAACAGCAGTATCCGGGAATCGAATACGAGGAATCCGACGCGGTTGAAGTCGTCGACCTGCTGCGCATGGTCGATGAAGGCCAGATCGACCTGACGCTGGTGGATTCCAACGAAGTGGCGATGAACCAGGTGTACTTCCCTAACGTGCGCGTGGCGTTCGACCTCGGCGATGCCCGCAGCCAGAGCTGGGCGGTGGGCCCCGGCGAAGACAACAGCCTGCTCAACGAAATCAACGCCTACCTCGACAAGGTGCAGAAGAACGGCACGCTGCAACGCCTCAAGGACCGCTATTACGGGCACGTCGACGTCCTCGGCTACATGGGCGCGACCACCTTCGCCCAGCATCTGCAGCAACGCCTGCCCAAATACGAGCAACACTTCAAGACCTACGCCAAGAAGGAAAAGGTCGACTGGCGCCTGCTGGCTGCCATCGGCTACCAGGAATCGCTTTGGCAACCGACGGTCACCTCCAAGACCGGCGTGCGCGGCCTGATGATGCTGACCCAGAACACCGCCCAGGCCATGGGTGTGTCCAACCGCCTCGATCCGAAGCAGAGCATCATGGGCGGCGCCAAGTACCTGGCCTATATGAAGGAGCAACTGGACGAGAGCATCGAGGAGCCGGACCGCACCTGGTTCGCCCTCGCCGCCTACAACGTGGGCAGTGGTCACCTGGACGACGCGCGCAAGCTCGCCGCCAAGGAAGGGCTGAACCCGAACAAGTGGCTCGACGTGAAGAAGATCCTGCCGCGCCTGTCCCAGAAACAGTGGTACAGCAAGACCCGCTACGGCTACGCCCGGGGCGGCGAACCGGTGCATTTCGTGGCGAACATCCGTCGCTACTACGACATCCTCACCTGGGTGACGCAGCCACAGCTCGAAGGCGACCAGGTAGCCGAGGGCAACCTGCATGTACCGGGCGTGGACAAGAGCAAGCCTAACCAGGAATCTCCACAGCTCTAAMLRVVTRNSPATYFQDRNGETGFEYELVKRFAEDLGVELKIETADNLDDLFSQVGKPNGPVLAAAGLVSSEQRKKQVRFSHAYLEVTPQVIYRNGQSRPTDAAALAGKKIMVLKGSSHAEQLAQLKQQYPGIEYEESDAVEVVDLLRMVDEGQIDLTLVDSNEVAMNQVYFPNVRVAFDLGDARSQSWAVGPGEDNSLLNEINAYLDKVQKNGTLQRLKDRYYGHVDVLGYMGATTFAQHLQQRLPKYEQHFKTYAKKEKVDWRLLAAIGYQESLWQPTVTSKTGVRGLMMLTQNTAQAMGVSNRLDPKQSIMGGAKYLAYMKEQLDESIEEPDRTWFALAAYNVGSGHLDDARKLAAKEGLNPNKWLDVKKILPRLSQKQWYSKTRYGYARGGEPVHFVANIRRYYDILTWVTQPQLEGDQVAEGNLHVPGVDKSKPNQESPQLPGPT0014715_511DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-MUREIN_TRANSGLYCOSYLASE_ACTIVITY,PGPT0014715-yfhD-K18691NANA
D1-35_014673897purLCOG0046Phosphoribosylformylglycinamidine synthaseATGTTGATCCTGCGCGGCGCTCCTGCCCTTTCTGCCTTTCGCCACAGCAAACTCCTTGAGCAACTGAGCCGATGCGTTCCGGCTGTCAGTGGCTTGTATGCTGAATTCGCTCACTTCGCCGAAGTCACCGGCGGTTTGACCGGCGACGAACAGCAGGTGCTCGCGCGCCTTCTGAAGTACGGCCCCAGCGTTCCCGTCCAGGAACCGACCGGTCGTCTGTTCCTGGTATTGCCGCGTTTCGGCACCATTTCGCCGTGGTCGAGCAAGGCCAGTGATATTGCGCGCAATTGCGGCCTGGCGAAAATCCAGCGTCTGGAGCGCGGCATTGCCTTTTATGTCGCCGGTGAGTTCAGCGAGGCCGAGGCCCAACTGATTGCCGATGGCCTGCATGACCGCATGACCCAGGTCGTTCTGGGCAACCTGGAGCAGGCCGCCGGCCTGTTCAGCCATGCCGAACCCAAGCCGCTGACCGCTATCGACGTGCTGGGCGGTGGCCGCGCCGCGCTGGAAAAAGCCAACGCCGAGCTGGGCCTGGCCCTGGCCGAAGACGAGATCGATTACCTGGTCGACGCCTTCCAGGGCTTGCAGCGCAACCCGCACGACATCGAACTGATGATGTTCGCCCAGGCCAACTCCGAGCACTGCCGCCACAAGATCTTCAACGCCAGTTGGGACATTGACGGTCAGAGCCAGGAAAAAAGCCTGTTCGGCATGATCAAGAACACCTACCAGATGCACAACGAAGGTGTGCTGTCGGCCTACAAGGACAACGCGGCGGTGATCGTCGGCAACGTTGCCGGTCGCTTCTACCCGAACCCTGAGACCCGCCAGTACGGTGCGGTCCAGGAGCCGGTGCACATCCTGATGAAGGTCGAAACCCACAACCACCCAACCGCCATCGCCCCGTTCCCGGGCGCGTCCACCGGTTCCGGTGGCGAGATCCGCGACGAAGGCGCTACCGGCCGTGGCGCCAAGCCCAAGGCCGGCCTGACCGGCTTCACCGTGTCGAACCTGCAGATCCCGGGCTTTGAACAGCCGTGGGAAAAGCCTTACGGCAAGCCTGAGCGCATCGTCAACGCCCTCGACATCATGATCGAAGGCCCGCTCGGCGGCGCGGCATTCAACAACGAATTCGGCCGTCCGGCCCTGACCGGTTACTTCCGTACTTTCGAGCAGTCCATCAACACCCCGCGCGGTGAAGAGGTTCGTGGCTATCACAAGCCGATCATGCTCGCCGGCGGCATGGGCAACATCCGCGCCGAACACGTACAGAAGGGCGAGATCCTGGTCGGCTCCAAGCTGATCGTCCTCGGCGGCCCGGCCATGCTGATCGGCTTGGGTGGCGGCGCCGCTTCCTCCATGGCCACCGGCACCAGCTCGGCGGACCTGGACTTCGCCTCGGTCCAGCGCGAAAACCCGGAAATGGAACGCCGCTGCCAGGAAGTCATCGACCGTTGCTGGCAGCTGGGCGAGCAGAACCCCATCAGCTTCATCCATGACGTCGGCGCGGGCGGCCTGTCCAATGCCTTCCCGGAGCTGGTCAACGACGGCGGTCGTGGTGGTCGCTTCGAATTGCGCAACATTCCGAACGACGAGCCGGGCATGGCCCCGCACGAAATCTGGAGCAACGAATCCCAGGAACGTTACGTCCTGGCGGTCGGCCCGGCCGACTTCGAGCGCTTCAAGGCGATCTGCGAGCGTGAGCGCTGCCCGTTCGCGGTCGTCGGCGAAGCCACCGCCGAGCCGCAACTGACCGTCACCGACAGTCATTTCGGCAACAGCCCGGTGGACATGCCGCTGGAAGTGCTGCTGGGCAAAGCCCCGCGCATGCACCGTTCGGCCGTCCGCGAAGCCGAGCTGGGGGATGATTTCGATCCGTCCACCCTCGACATCGCCGACTCCATCGAGCGCGTCCTGCATCACCCGGCCGTGGCGAGCAAGAGCTTCCTGATCACCATTGGCGACCGCAGCATCACCGGCCTCGTGGCGCGCGACCAGATGGTCGGCCCATGGCAGGTGCCGGTGGCCGACGTGGCCGTGACCGCCACCAGCTTCGACGTTTACACTGGCGAAGCCATGGCCATGGGCGAACGTACCCCGCTGGCGCTGCTGGACGCCCCGGCGTCGGGCCGCATGGCGATCGGCGAGACCCTGACCAACATCGCGGCCTCGCGCATCGGCAGGATCTCCGACATCAAGCTGTCGGCCAACTGGATGTCCGCCGCCGGCCATCCTGGTGAAGACGCCCGCCTGTACGACACCGTCAAGGCTGTCGGCATGGAGCTGTGCCCTGAGTTGGGCATCACCATTCCGGTGGGCAAGGACTCCATGTCCATGGCCACCCGTTGGAACGATGAAGGCGTGGACAAGAGCGTGACCTCGCCGCTGTCGCTGATCGTGACCGGTTTTGCCCCGGTCACCGACATCCGCCAGACCCTGACCCCGCAACTGCGCATGGACAAGGGCACCACCGATCTGATCCTGATCGACCTGGGCCGTGGCCAGAACCGCATGGGCGCCTCGATCCTGGCCCAGGTGCATGGCAAGCTCGGCTCGCAAGCGCCGGACGTCGACGATGCCGAAGACCTGAAGGCGTTCTTCGCCGTGATCCAGGGCCTCAACGCCGACGGTCATCTGCTGGCCTACCATGACCGTTCCGATGGCGGCTTGCTGACCACCGTGATGGAAATGGCCTTCGCCGGCCACTGCGGCCTGAACCTGACCCTGGACAGCGTGGCCGAATCGGCCAGCGAAATCCCGGCCATCCTGTTCAACGAAGAACTCGGTGCGGTGATCCAGGTTCGCCAGGACGCCACCCCGGATATCCTCGCCCAATTCAGCGCCGCCGGCCTGGCCGAGTGCGTCTCGGTGATCGGCCAGCCGATCAACAACGCCCACATCAACATCACCTTCAACGGCGACACCGTCTTCGAAGGCCAGCGCCGCCTGTTGCAGCGCCAGTGGGCCGAGACCAGCTACCAGATCCAGCGCCTGCGCGACAACGCCGACTGCGCCGAGCAGGAATTCGACGCAATCCTGGAAGAAGACAACCCGGGCCTGAGCGCCAAGCTCAGCTACGACGTCAACGACAACGTGGCCGCGCCTTACATCAAGAAAGGCATTCGTCCGCAAGTGGCGGTCCTGCGCGAGCAGGGCGTCAACGGCCAGGTGGAAATGGCTGCGGCGTTCGACCGCGCCGGCTTCAACGCGATCGACGTGCACATGAGCGACATCCTCGCCGGCCGTGTCGACCTGAACGACTTCAAGGGCATGGTCGCTTGCGGCGGCTTCTCCTACGGCGACGTGCTGGGTGCCGGTGAAGGCTGGGCCAAGTCGGCGCTGTTCAACAGCCGCGCCCGCGACGCGTTCCAGGGCTTCTTCGAGCGCACCGACAGCTTCACCCTCGGCGTGTGCAACGGTTGCCAGATGATGTCCAACCTGCACGAGCTGATCCCGGGCAGCGAGTTCTGGCCGCACTTCGTGCGCAACCGCTCCGAGCAGTTCGAAGCGCGCGTGGCGATGGTCCAGGTGCAGGAGTCGAACTCGATCTTCCTGCAGGGCATGGCCGGTTCGCGCATGCCGATCGCCATTGCCCACGGCGAAGGTCATGCGGAATTCGAAAGCGAAGAAGCATTGCTTGAAGCCGATCTGTCCGGTTGTGTGTCGCTGCGTTTTGTCGACAACCATGGCAAGGTCACCGAGACCTACCCGGCCAACCCGAACGGCTCGCCACGCGGGATCACCGGCCTGACCAGCCGCGACGGCCGCGTCACGATCATGATGCCGCACCCGGAGCGGGTATTCCGCGCGGTGCAGAACTCGTGGCGTTCGGACGACTGGAACGAAGACGCGCCATGGATGCGCATGTTCCGCAACGCGCGCGTCTGGGTGAACTGAMLILRGAPALSAFRHSKLLEQLSRCVPAVSGLYAEFAHFAEVTGGLTGDEQQVLARLLKYGPSVPVQEPTGRLFLVLPRFGTISPWSSKASDIARNCGLAKIQRLERGIAFYVAGEFSEAEAQLIADGLHDRMTQVVLGNLEQAAGLFSHAEPKPLTAIDVLGGGRAALEKANAELGLALAEDEIDYLVDAFQGLQRNPHDIELMMFAQANSEHCRHKIFNASWDIDGQSQEKSLFGMIKNTYQMHNEGVLSAYKDNAAVIVGNVAGRFYPNPETRQYGAVQEPVHILMKVETHNHPTAIAPFPGASTGSGGEIRDEGATGRGAKPKAGLTGFTVSNLQIPGFEQPWEKPYGKPERIVNALDIMIEGPLGGAAFNNEFGRPALTGYFRTFEQSINTPRGEEVRGYHKPIMLAGGMGNIRAEHVQKGEILVGSKLIVLGGPAMLIGLGGGAASSMATGTSSADLDFASVQRENPEMERRCQEVIDRCWQLGEQNPISFIHDVGAGGLSNAFPELVNDGGRGGRFELRNIPNDEPGMAPHEIWSNESQERYVLAVGPADFERFKAICERERCPFAVVGEATAEPQLTVTDSHFGNSPVDMPLEVLLGKAPRMHRSAVREAELGDDFDPSTLDIADSIERVLHHPAVASKSFLITIGDRSITGLVARDQMVGPWQVPVADVAVTATSFDVYTGEAMAMGERTPLALLDAPASGRMAIGETLTNIAASRIGRISDIKLSANWMSAAGHPGEDARLYDTVKAVGMELCPELGITIPVGKDSMSMATRWNDEGVDKSVTSPLSLIVTGFAPVTDIRQTLTPQLRMDKGTTDLILIDLGRGQNRMGASILAQVHGKLGSQAPDVDDAEDLKAFFAVIQGLNADGHLLAYHDRSDGGLLTTVMEMAFAGHCGLNLTLDSVAESASEIPAILFNEELGAVIQVRQDATPDILAQFSAAGLAECVSVIGQPINNAHINITFNGDTVFEGQRRLLQRQWAETSYQIQRLRDNADCAEQEFDAILEEDNPGLSAKLSYDVNDNVAAPYIKKGIRPQVAVLREQGVNGQVEMAAAFDRAGFNAIDVHMSDILAGRVDLNDFKGMVACGGFSYGDVLGAGEGWAKSALFNSRARDAFQGFFERTDSFTLGVCNGCQMMSNLHELIPGSEFWPHFVRNRSEQFEARVAMVQVQESNSIFLQGMAGSRMPIAIAHGEGHAEFESEEALLEADLSGCVSLRFVDNHGKVTETYPANPNGSPRGITGLTSRDGRVTIMMPHPERVFRAVQNSWRSDDWNEDAPWMRMFRNARVWVNPGPT0021585_1293DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021585-purL-K01952NANA
D1-35_01468312COG0327GTP cyclohydrolase 1 type 2GTGTACAAACTCTGCTTTTTCGTCCCGGCCAGCCATGTGGAGGTGGTCAAAAGCGCTGTATTCGCCGCCGGTGGCGGACGGATCGGCGCGTATGACCACTGCGCCTGGCAAGTGCTGGGCCTGGGCCAGTTTCGCCCCTTGGACGGCAGCCAGCCGTTCATTGGCGAGGCGGGGCACGTCGAGCAGGTCGAGGAATGGAAGGTGGAGCTGGTAGTGGCCGACGGGTTGATCCGGCCTGTGGTGGAGGCGCTGAAGCAGAGCCACCCCTACGAGACACCGGCGTATGAAGTGTGGCGCTTGGAGGATTTCTGAMYKLCFFVPASHVEVVKSAVFAAGGGRIGAYDHCAWQVLGLGQFRPLDGSQPFIGEAGHVEQVEEWKVELVVADGLIRPVVEALKQSHPYETPAYEVWRLEDFNANANANANA
D1-35_014691710gamPCOG2190Putative PTS system glucosamine-specific EIICBA componentATGTACCAGCATTTCATCGAAGGGCTGCAACGCCTCGGCCGGGCGCTGATGCTGCCCATCGCGATCCTGCCGATTGCCGGCCTGCTGTTGCGCCTGGGTGACACGGACCTGTTGAATATCGCCATCATTCACGACGCCGGCCAGGCGATCTTCGCCAACCTGGCACTGATTTTCGCCATCGGCATTGCCGTGGGCTTCGCCCGGGACAACAACGGCACCGCCGGGCTGGCCGGGGCGATCGGCTACCTGGTCATGATCGCGACGCTGAAGGTACTCGACGCGACCATCAACATGGGCATGCTCGCCGGGATCATCAGTGGCCTGCTGGCCGGCGCGCTGTACAACCGTTTCAAGGACATCCGGTTGCCGGAGTACCTGGCGTTTTTTGGCGGCCGGCGTTTCGTGCCGATTGTCACCGGTTTCAGTGCCGTGGGCCTGGGCGTCGTGTTCGGTCTGATCTGGCCGCCGATCCAGCATGGCATCAACGGCTTCGGCGAACTGCTGATGGCCAGCGGCAGCTTCGGCGCGTTCGTGTTCGGCGTGTTCAATCGGCTGCTGATCGTCACCGGCCTGCACCACATCCTCAACAACATGGCCTGGTTCATCTTCGGCAGCTTCACCGACCCGGCGACCGGCGCGGTGGTCACCGGTGACCTGACCCGCTATTTCGCCGGCGACCCCAAAGGCGGCCAGTTCATGACCGGCATGTTCCCGGTGATGCTCTTCGGCCTGCCCGCCGCGTGCCTGGCGATGTATCGCAACGCCCTGCCCCAGCGGCGCAAAGTGATGGGCGGGATCCTGCTGTCGATGGCGCTGACCTCGTTCCTGACCGGCGTCACCGAGCCGATCGAATTCGCCTTCATGTTCCTTGCGCCGCTGTTGTACCTGGTCCACGCGCTGCTCACCGGTCTGTCGATGGCGGTGACCAACCTGTTGGACATTCACCTGGGCTTCACCTTTTCGGGTGGTTTCATCGACATGGTGCTGGGCTGGGGCAAATCCACCAACGGCTGGCTGGTCGTCCCGGTGGGCCTGGCGTACGCGCTGATCTATTACCTGGTGTTCGACTTCTGCATCCGCCGCTTCGATCTCAAGACCCCGGGGCGTGAAGAGATGCCGGCGGGCGACAAACCGGTCATCACCGAAAACCAGCGAGCCGCAGCCTACATCCAGGCGCTGGGCGGCGCCGACAACCTGATCACTGTCGGCGCCTGCACCACTCGCCTGCGCCTGGACATGGTGGACCGCAACAAGGCGTCCGACGCCCAGCTCAAGGCCCTCGGCGCCATGGCCGTGGTTCGCCCGGGCTATGGCGGTAGCTTGCAGGTGGTGGTCGGGCCGATGGCGGACAGCATCGCCGATGAAATCCGCCTGGCATTGCCCTCCTCCGAACAGACGGCCCCTGTCGCTGTACTGGATAGCGTTGAACCGTCACCACAGGTCGGCGCTGTCGAAGCACAGAAATGGCTGGATGCCTTGGGCGGCAATCACAACGTGGTGCAACTGGATTGCGTGGCGATGAGCCGGTTGCGGGTGCAATTGGCCGATGGCAAGGGATTGTCGGAAAGCCAGCTAAAGGCGCTTGGCTGCCAGGGGGTCAGCGCGCTGGAGGATGGCGTGTGGCATTTGTTGCTGGGGGAAAAAGCGCCCGGGGTGTGGCGGGCGTTGGAGGCGGTGGTGGTGAGTCGTAAGGCGGATGTCAAAGCCTGAMYQHFIEGLQRLGRALMLPIAILPIAGLLLRLGDTDLLNIAIIHDAGQAIFANLALIFAIGIAVGFARDNNGTAGLAGAIGYLVMIATLKVLDATINMGMLAGIISGLLAGALYNRFKDIRLPEYLAFFGGRRFVPIVTGFSAVGLGVVFGLIWPPIQHGINGFGELLMASGSFGAFVFGVFNRLLIVTGLHHILNNMAWFIFGSFTDPATGAVVTGDLTRYFAGDPKGGQFMTGMFPVMLFGLPAACLAMYRNALPQRRKVMGGILLSMALTSFLTGVTEPIEFAFMFLAPLLYLVHALLTGLSMAVTNLLDIHLGFTFSGGFIDMVLGWGKSTNGWLVVPVGLAYALIYYLVFDFCIRRFDLKTPGREEMPAGDKPVITENQRAAAYIQALGGADNLITVGACTTRLRLDMVDRNKASDAQLKALGAMAVVRPGYGGSLQVVVGPMADSIADEIRLALPSSEQTAPVAVLDSVEPSPQVGAVEAQKWLDALGGNHNVVQLDCVAMSRLRVQLADGKGLSESQLKALGCQGVSALEDGVWHLLLGEKAPGVWRALEAVVVSRKADVKAPGPT0016860_581DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_N_ACETYLGLUCOSAMINE_PTS_SYSTEM,PGPT0016860-nagE|nagP-K02804NANA
D1-35_014702514hypothetical proteinATGCCCAATAACAATAAAGAGCTGACCCTCAGCGCCCCGCTCAGCGGTCCGCTGCTCACCCTCGCCAACGTCCCGGACGCGGTGTTCGCCAGCGGCGCGATGGGCGACGGGATTGCCATCGACCCGCTGAACGACACGCTCTACGCACCCTGTGACGGTGAGGTGATCCACGTCGCTCGGACCGGCCACGCCGTGACACTGCGGGCCGACAACGGCGCCGAACTGCTGCTGCACCTGGGGCTGGACACCGTCGAGTTGCAGGGCGACGGGTTCTCGATGCTGGTCAAGCAAGGCGCCCGGGTCAGCAACGGGCAGGCGTTGCTGCGCTATGACCTGGACCGCGTGGCACTGCGCTGCAAAAGCCTGGTGAGCCTGCTGGTCATCACCAATGGCGAGCGCTTCCAGGCACGGCCCATCACCCTCAAAGCGGTCAAGGTCGGCGAGCCGTTGCTGCATATCGTCGCCCGGGCGGCGGGCGAAACCCGCAGCGATGAACCGCAGGTCGGCATCGAAGTGTCCGGCCAGATCCGCATCGTCCATCGAGGTGGCCTGCACGCCCGCCCCGCCGCCCTGGTTCGTCAGACGGCGCAACGCTTCAAGAGCCGCTCGCACCTGCATTTCGGCGACCGCTCGGCGCCGTGTGACAGCGTGATGGGCATGATGGGCCTGGCAATCACCGAGCAGGCCGAAGTCCATGTCAGTTGCCGCGGCAGCGATGCCGAAGCGGCGTTGCAAGCGTTGTTGAAGACATTATCCACAGCCTTGGCCGAAGAGGTTCACGCCGACACGCCACGGGTCCAGGCGCCGAACCATGCCGCCGAGGATGGCGTGCTGCAGGGTGTCTGCGCCGCACCCGGCCTGGTCACCGGCCCGCTGGTTCGATTGGAGGGCATTCAATTGCCCGAGGACCCCGGTGGTCACGACGTTGAAGAACAACGACAACGGCTGCGCCAAGCCCTGGAGCAGGTCAGCCGCGACATCGGTGTTACGTTGGAAAACGCCAAGGCCCGGCACCACGCGGATGAGCAGGCGATTTTCAGCGCTCATCTGGCGCTGCTGGAAGACCCGGTCCTGCTGGACGCCGCTTACCTTTCCATTGATCAGGGTTGCGCGGCGGCCCACGCCTGGAGCCGCTCCATCGACGTGCAGTGCCAGGTGCTGCGGCAATTGGGCAGCACGTTGTTGGCCGAGCGCGCCAATGATCTGCGCGACTTGCGTCAGCGGGTCTTGCGGGTGTTGCTTGGTGAAGCGTGGCAATTCGACGTGCCGGTGGGCGCGATTGTCGCCGCGCAGGAGCTGACCCCCTCGGACCTGCTGCAACTCGGCGCCCAGGGCGTGGCCGGCGTATGCATGGCCGAAGGCGGCGCGACGTCCCACGTAGCGATCCTGGCCCGGGGCAAAGGCCTGCCCTGCCTGGTGGCGTTGGGCGAGGCGCTGCTCGAACAGGCGCCGGGGCGAACGGTGGTGCTGGACGCTGACAATGACCGCCTCGAACTCACGCCCAGCGCCGAGCGCCTGACGCAGGTCCGCCAAGCCCAAGCCCAACGCGCCGCCCTGCGCACCTGGCATCAGTCCCTGGCCCACACGCCGGCGCGAACCGTTGATGGGGTCGATGTCGAAATCGCCGCCAACGTCGCTTCCAGCGCCGAAGCGGGCGAGGCCTTCGCCAACGGTGCCGATGGCGTCGGTTTGTTGCGCACCGAATTTCTTTTTGTCGACCGTCACACGGCCCCCGACGAAAGCGAGCAACGCCAGGCCTATCAAGCCGTGCTCGATGCCATGGGCGACAGGCCGGTGATCATCCGCACCATTGATGTCGGCGGCGACAAGCAGCTGGATTACCTGCCGCTGCCGGCCGAAGCCAACCCGGTGCTCGGCCTGCGCGGCATACGCCTGGCCCAGGTACGCCCGGAATTGCTCGATCAACAGTTGCGCGCCCTGCTGCAGACCCGTCCGTTGAATCGCTGCCGAATCCTGTTGCCAATGGTCACCGAAGTCGACGAACTGCTGCACGTCCGCCAGCGCCTTGATGCCTTGGGCACCGAGCTGGGCCTGGGCGAGCGTCCGCATCTGGGGGTGATGATCGAAGTGCCGGCCGCCGCCCTGCTCGCCGAGCAACTGGCCGAGCACGCGGACTTCCTGTCCATCGGCACAAACGACCTGTCCCAGTACACCCTCGCCATGGATCGCGACCACGCCGGCCTCGCCGCCCGGGTCGATGCCCTGCACCCGTCGCTGTTGCGGCTGATCGCCCAGACCTGCGCCGGCGCGGCCAGGCATGGACGCTGGGTCGGCGTGTGTGGCGCCCTGGCTTCCGATCCCCTGGCGACACCGGTGTTGATCGGGCTGGGTGTACGGGAGCTATCGGTCAGCCCGCCACAGATTGGTGAAATCAAGGACCGCGTGCGCCACCTCGACGCTGCCCAATGCCGCCGCATCAGTACCGATTTGCTGAATCTGCCGAGCGCCGCCGCTGTGCGCCAGGCCTGTCACCAACACTGGCCTCTGGGCTGAMPNNNKELTLSAPLSGPLLTLANVPDAVFASGAMGDGIAIDPLNDTLYAPCDGEVIHVARTGHAVTLRADNGAELLLHLGLDTVELQGDGFSMLVKQGARVSNGQALLRYDLDRVALRCKSLVSLLVITNGERFQARPITLKAVKVGEPLLHIVARAAGETRSDEPQVGIEVSGQIRIVHRGGLHARPAALVRQTAQRFKSRSHLHFGDRSAPCDSVMGMMGLAITEQAEVHVSCRGSDAEAALQALLKTLSTALAEEVHADTPRVQAPNHAAEDGVLQGVCAAPGLVTGPLVRLEGIQLPEDPGGHDVEEQRQRLRQALEQVSRDIGVTLENAKARHHADEQAIFSAHLALLEDPVLLDAAYLSIDQGCAAAHAWSRSIDVQCQVLRQLGSTLLAERANDLRDLRQRVLRVLLGEAWQFDVPVGAIVAAQELTPSDLLQLGAQGVAGVCMAEGGATSHVAILARGKGLPCLVALGEALLEQAPGRTVVLDADNDRLELTPSAERLTQVRQAQAQRAALRTWHQSLAHTPARTVDGVDVEIAANVASSAEAGEAFANGADGVGLLRTEFLFVDRHTAPDESEQRQAYQAVLDAMGDRPVIIRTIDVGGDKQLDYLPLPAEANPVLGLRGIRLAQVRPELLDQQLRALLQTRPLNRCRILLPMVTEVDELLHVRQRLDALGTELGLGERPHLGVMIEVPAAALLAEQLAEHADFLSIGTNDLSQYTLAMDRDHAGLAARVDALHPSLLRLIAQTCAGAARHGRWVGVCGALASDPLATPVLIGLGVRELSVSPPQIGEIKDRVRHLDAAQCRRISTDLLNLPSAAAVRQACHQHWPLGNANANANANA
D1-35_014711023hypothetical proteinTTGTCTTCCAGAATGCTTGAAGAGGCCCTCGCCTCGTCCGATGCCGTCGAGCGCCAGTTGCAGCGACTGGATCCGGCCCTGCAGGAAATCGCCGGACGCCTGCGCCGCCAGCCGCCGCAAGTGGCGATGACCGTCGCCCGGGGCAGCTCCGATCATGCCGCCAGTTACTTCGCCTACCTGACCATGCAGCACCTGGGCTTGCCGGTGGCGTCGTTGCCCATGTCGGTGGTAACCCTGCAACAGGCGCCGCTCAAGGTCAGCGGCCAGGTGGCCTTTGCCTTTTCCCAATCCGGGCAGAGCCCCGACCTGGTGAACAGCCTGCGTCTGTTGCGCAAGCGTGGCGCGCTGAGCGTGGCGATGGTCAACGCCGAGGATTCGCCGCTGGAGGCTGCCTGTGAATTCAGCGTGCCGCTGTGCGCCGGCGTCGAAAACAGCGTCGCCGCGACCAAGAGTTTCATCGCCACCCTCAGCGCCAGCACGCGGCTGGTGGCGCACTGGAAGGACGATTCCGAGTTACTGGAGGCTGGCCGCGCGTTGCCCGAAGGCTTGCGCGACGCCGCGCGCCAGGATTGGAGCCCGGCCGTCGAGGCCCTGCGCGACTGTACCCGGTTGATGGTGATCGGCCGTGGCGCCGGGTTCGCCATCGCCCAGGAAGCGGCGCTCAAATTCAAGGAAACCTCGGCGATTCAAGCCGAGGCCTTCAGCAGCGCCGAAGTCCGTCACGGGCCGATGGCGCTGATCGACGAACACTATCCGCTGCTGGTCTTCGCTCCGCGGGGAGCCGAGCAGGCCGGCGTGTTGAGCCTGGCCGCCGACATGCGCCAACGCGGCGCGCGGGTATTGCTGGCGGCCCCCGATGACATTGCCGAACGCGACCTGACGCTGTCCCGCGCCGAACACCCGGCCCTGGACCCGATCCTGGCGATCCAGAGCTTTTATGGCATGGCCGCCCGGCTGGCCGTGGCCCGAGGCCTGGATCCGGACCAGCCACGGCACTTGAGCAAGGTCACCCGAACCCACTGAMSSRMLEEALASSDAVERQLQRLDPALQEIAGRLRRQPPQVAMTVARGSSDHAASYFAYLTMQHLGLPVASLPMSVVTLQQAPLKVSGQVAFAFSQSGQSPDLVNSLRLLRKRGALSVAMVNAEDSPLEAACEFSVPLCAGVENSVAATKSFIATLSASTRLVAHWKDDSELLEAGRALPEGLRDAARQDWSPAVEALRDCTRLMVIGRGAGFAIAQEAALKFKETSAIQAEAFSSAEVRHGPMALIDEHYPLLVFAPRGAEQAGVLSLAADMRQRGARVLLAAPDDIAERDLTLSRAEHPALDPILAIQSFYGMAARLAVARGLDPDQPRHLSKVTRTHPGPT0017630_7038DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULATION_METABOLISM,PGPT0017630-glmS|nodM-K00820NANA
D1-35_014721107agaACOG1820N-acetylgalactosamine-6-phosphate deacetylaseATGTCCGAAGACAACATCCTCACCGCCAACGGCTGGATACGCGGCCGCCTGGTCCACGAACACGGCAAGGTCGCGGCCATCGAAGGCCAGCCCTGCGACCCGGCGAGCAACGACCTGCCCTATCTGCTGCCCGGCTTCATCGACCTGCATGTGCACGGCGGTGGCGGCAAGGACATCATGGAGGGCGCGACGGCGTTCGAGACGATCGCCCGAACCCACGTGCGCTTCGGCACCACGTCGCTGCTCGCCACCACCATGACGGCACCGAGCGAAGAAATCGCCGGGGTGCTCAAGGCCCTCGGCGAATACTGCGAACAGCGGCCCGGCGGCAGCGCGCGGGTGCTCGGCGTGCATCTGGAAGGGCCTTATATCAACCCCGGAAAACTCGGCGCCCAACCGAATTTCGCCCACACCGCGTTGATGGCGGAAGTGGAGGCTTATCTCGCCCTGGCGCCGATCCGGGTGATCACCATTGCGCCGGAAATCGCCGGGCACGATGCCTTGATCCGCGCCCTCAGCGCCCGCGGCGTGCGCATGCAGATCGGCCATACCCTCGGCAGCTACGAAGAAGGCGTCGCGGCGCTGGCCGCCGGGGCCAGCAGTTTTACCCATTTGTATAACGCCATGAGCCCGCTGCATCACCGCGAACCGGGCATCGTCGGCGCGGCGCTGGCCCATGCGCAATATGCCGAATTGATCCCGGATCTGCTGCACGTTCACCCCGGGGCCATGCGCGTGGCCTTGCGTTCGATCCCGTGCCTGTATTGCGTCACCGACTCGACGGCCGCCGCCGGGATGCCCGACGGCGAATACAAGCTGGGCAGCCACACCGTGACCAAATGCCTGGGCGGCGTGCGGCTGGCCGACGGCACGCTGGCCGGCAGCACCCTGACCATGGACCAGGCCCTGCGCAACCTGGTGAAGATCGGCCTGCCCATCGCCGAAGCCTCGCAACGCCTGTCGCAATTTCCCGCCGATTATCTCGGCCTGCCCGAACGCGGACGCCTGCGCCCCGGCGCCTGGGCCGACTGTGTGCGCCTTGACCGTTCCCTGAACCTGACCGACGTGATGGTCGAAGGAGAAGCCATTGTCTTCCAGAATGCTTGAMSEDNILTANGWIRGRLVHEHGKVAAIEGQPCDPASNDLPYLLPGFIDLHVHGGGGKDIMEGATAFETIARTHVRFGTTSLLATTMTAPSEEIAGVLKALGEYCEQRPGGSARVLGVHLEGPYINPGKLGAQPNFAHTALMAEVEAYLALAPIRVITIAPEIAGHDALIRALSARGVRMQIGHTLGSYEEGVAALAAGASSFTHLYNAMSPLHHREPGIVGAALAHAQYAELIPDLLHVHPGAMRVALRSIPCLYCVTDSTAAAGMPDGEYKLGSHTVTKCLGGVRLADGTLAGSTLTMDQALRNLVKIGLPIAEASQRLSQFPADYLGLPERGRLRPGAWADCVRLDRSLNLTDVMVEGEAIVFQNAPGPT0018860_3627DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018860-nagA-K01443NANA
D1-35_01473732nagR_2COG2188HTH-type transcriptional repressor NagRATGAACGACATCCAGACCCTGCGCCCTGACGATACCCAACCCACCCCGCTCTACCTGCAACTGGCCCGCAACCTGGAAGCCGCCATCCACGCCGGCCAATGGAAAGCCGAGCAGGCAATGCCGTCCGAGCGCAGCTTGAGCGAACAACTCGGCATCTCCCGGGTCACCGCCCGCAAAGCGCTGGAAGTGCTGTTCGAACAAGGCCTGATCCGCCGTAACCAGGGTTCGGGCACGTTCATCACCCCGCGCCTGGAACAACCGCTGTCACGCCTCAGCGGCTTCAGCGAAATGCTCCGGCTCAAGGGCTTCGTGCCCGGTTCGCAATGGCTGGAGCGCGAGATCACCCCGCCGACCCACGAAGAACTGATCCGCCTGGGCCTGTCGCCCACCGACAAAGTCGCGCGGCTCAAGCGCCTGCGCAAGGCCGATGACACGGTCATGGCGATTGAAATGAGCACGCTGCCGGCATCGATCATTCCCAAGCCACAGGCGGTGGGCGATTCGCTGTACGAGTTCCTCGATGGCATTGGCAAACCGGTCGTTCGCGCGCTGCAGCACATCCAGGCGATCAACGCTTCCGATGAATTCGCCGCCCTGGTGGGCATCGCCCCCGGCACCGCGATGTTGCTGATGACGCGGGTCGGCTACCTGGAAGACAACACGCCCATCGAAGTCACCGACACCTATTGTCGCAACGACTACTACGACTTTGTCGCCGAGCTGCGGCGCTAGMNDIQTLRPDDTQPTPLYLQLARNLEAAIHAGQWKAEQAMPSERSLSEQLGISRVTARKALEVLFEQGLIRRNQGSGTFITPRLEQPLSRLSGFSEMLRLKGFVPGSQWLEREITPPTHEELIRLGLSPTDKVARLKRLRKADDTVMAIEMSTLPASIIPKPQAVGDSLYEFLDGIGKPVVRALQHIQAINASDEFAALVGIAPGTAMLLMTRVGYLEDNTPIEVTDTYCRNDYYDFVAELRRNANANANANA
D1-35_01477309hypothetical proteinATGATCAAAGAAACCCCAAACCCGCCAAACCCCGCCGACCGCGCTATGGACCAGAATCCCAAGCCGGACGACAGCGACTCAGAACCCCAACCCTCGACCCAACTGTTCAACGTGACGGACTGCATCGACACCGAAACCCTGCTAGCCAACCTCAGCGAAACCCTGGCCTCGGCCAATGCAATGCTCAGCGACCTGGCATTCAGTCTCGAAGGCTCACGACGGCACGTAGCATTGGGAGTGGTGCAGATGATTGAGCTCGGGGAATTGCTGACAAACAAGGCCTTGGATCGGGTCGAGCTTCGGATTTGAMIKETPNPPNPADRAMDQNPKPDDSDSEPQPSTQLFNVTDCIDTETLLANLSETLASANAMLSDLAFSLEGSRRHVALGVVQMIELGELLTNKALDRVELRINANANANANA
D1-35_01478507hypothetical proteinATGCGCTGGTTGCTTGTCCTGTTTTGCCTGTCGTTCACCGCTGTGTCCCAAGCCGCCGCCGTGGGAACCTATAACGGCAAGGTCATTGAAAAAGTCCTGGTGCTGAAGTCCGCCCATCAATTGCAATTGATCAACGACGGCAAGCCGCTGAAGACCTATCGCATCTCCCTGGGCAAGGGCGCCAAGAAAGGCCCCAAGCTGATCGAAGGCGACAAGCGCACCCCCGAGGGTTTCTACTGGCTGGACTGGCGCAAGACCAGCGAGCGCTTCTATCTGTCGATGCACATTTCCTACCCCAACATCAGCGACGCCGCCCGCGCCCGCCGCGAAGGCGTGGAGCCGGGGGGAATGATCATGATCCATGGCACGCCGGATTCGGAGGAGAACCCGGAGCAGTTGTTCCATACGCTGGACTGGACCGATGGCTGTATCGCCATGCGCAATGTGGACATGCGTGAGGTGTGGAACCTGGTGCCGGATGGGACGATGATCGAGATTCGCCCGTAAMRWLLVLFCLSFTAVSQAAAVGTYNGKVIEKVLVLKSAHQLQLINDGKPLKTYRISLGKGAKKGPKLIEGDKRTPEGFYWLDWRKTSERFYLSMHISYPNISDAARARREGVEPGGMIMIHGTPDSEENPEQLFHTLDWTDGCIAMRNVDMREVWNLVPDGTMIEIRPNANANANANA
D1-35_01479552nudC_1NADH pyrophosphataseATGAAATTCTGCAGCCAGTGCGGTAACCCGGTGACCCAGCGCATACCCGAGGGCGACTCGCGCCTGCGCTTCGTCTGCGACACCTGCCACACCATCCATTACCAGAACCCCAATATCGTTGCCGGATGTGTACCGACCTGGGGTAGCAAAGTCCTTTTATGCCGCCGCGCCATCGAACCGCGCCGCGGTTATTGGACGTTGCCGGCGGGCTTCATGGAAAACGGCGAGACCGTCGAGCAGGCCGCCGTCCGTGAAACCGCCGAGGAAGCCTGCGCCCGGGTGCGAAACCTGAGCATCTATACGCTGATCGACGTACCGCACATCAGCCAGGTGCATGTATTCTTCCGCGCAGAGCTGGTCGACATTGATTTTGCCGCCGGGCCCGAGAGCCTGGAAGTGCAGCTGTTCGAAGAAACCGAGATTCCGTGGGACGAGCTGGCTTTCCGCACGGTGGGCCGTACCCTGGAATACTTTTACGCGGACCGACGGGCCGAGGATTTCCCGGTGCGATCCGAGTCGATACCGCCGCTGGCCCAGCCTGCCAATACCTGAMKFCSQCGNPVTQRIPEGDSRLRFVCDTCHTIHYQNPNIVAGCVPTWGSKVLLCRRAIEPRRGYWTLPAGFMENGETVEQAAVRETAEEACARVRNLSIYTLIDVPHISQVHVFFRAELVDIDFAAGPESLEVQLFEETEIPWDELAFRTVGRTLEYFYADRRAEDFPVRSESIPPLAQPANTPGPT0008680_25DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008680-NUDT23-K18453NANA
D1-35_01480600nudLputative Nudix hydrolase NudLATGCTGGACGAGCTACTGCATCGAGTAAGCAACCATACGCCGCGTGATCTGGAGACCGATCGGCGTTTCCCTGAAGCGGCGGTGCTGGTGCCGATCACCCGCAGCGACGAGCCGGAACTGGTCCTGACTTTGCGCGCCAGTGGGCTCTCGACCCACGGCGGCGAAGTGGCTTTCCCCGGCGGGCGCCGCGACCCGGAAGACCCGGACCTGATCTTCACTGCCCTGCGCGAAGCCGAAGAGGAAATCGGCCTGCCGCCTGGCCTGGTGGAAGTGATCGGCCCTCTCAGCCCGCTGATTTCCCTACACGGCATCAAGGTCACCCCCTATGTCGGGGTGATTCCCGATTACGTCGAGTACCAGGCCAACGATGCCGAGATCGCCGCGGTCTTCAGCGTGCCGCTGGAGTTTTTCCGCAAGGACCCGCGCGAACACACCCACCGCATCGATTACCAGGGGCGCAGCTGGTACGTGCCCAGTTATCGCTTCGGCGAATACAAGATCTGGGGCCTGACGGCGATCATGATCGTCGAGCTGGTCAACCTGCTGTACGACGCCGGTATCGACCTGCACACACCGCCCAACAGTTTCATCAATACCTGAMLDELLHRVSNHTPRDLETDRRFPEAAVLVPITRSDEPELVLTLRASGLSTHGGEVAFPGGRRDPEDPDLIFTALREAEEEIGLPPGLVEVIGPLSPLISLHGIKVTPYVGVIPDYVEYQANDAEIAAVFSVPLEFFRKDPREHTHRIDYQGRSWYVPSYRFGEYKIWGLTAIMIVELVNLLYDAGIDLHTPPNSFINTNANANANANA
D1-35_01481525yrdA_1COG0663Protein YrdAATGAAATACCGCCTGGGCGATGCCCGTGTCGAAACCCACCCACAGAGCTGGGTTGCGCCCAACGCCACGCTGGTGGGCAAGGTCCGCCTCGAAGAAGGCGCCAACGTCTGGTTCAACGCCGTGCTGCGCGGCGACAACGAACTGATCCTGATCGGCAGGAACAGCAACGTGCAGGACGGCACGGTGATGCACACCGACATGGGCTTTCCGCTGACCATCGGCACCGGCGTGACCATCGGCCACAACGCGATGCTCCACGGCTGCACGGTGGGGGACTACAGCCTGATCGGCATCAACGCGGTGATCCTCAACGGCGCGAAGATCGGCAGGAATTGCATCATCGGCGCCAACTCGCTGATCGGCGAAGGCAAGGAGATTCCCGATGGTTCGCTGGTGATGGGCTCGCCGGGCAAGGTCGTGCGCGAGCTGACCGAGGCCCAGAAGAAGATGCTCGAAGCCAGCGCGGCGCACTATGTGCACAACTCGCAGCGTTATGCCCGCGACTTGGTCGAGCAAGAACAATGAMKYRLGDARVETHPQSWVAPNATLVGKVRLEEGANVWFNAVLRGDNELILIGRNSNVQDGTVMHTDMGFPLTIGTGVTIGHNAMLHGCTVGDYSLIGINAVILNGAKIGRNCIIGANSLIGEGKEIPDGSLVMGSPGKVVRELTEAQKKMLEASAAHYVHNSQRYARDLVEQEQNANANANANA
D1-35_01482210hypothetical proteinATGAACCCGGCTGAACGTCCGGTTCCCTCGCCCTGCGTGAACATCTGCGCGCTGGATGATGACGACATCTGCACCGGCTGCCAGCGCACGGTGGCGGAAATCACCCGCTGGAGCCGGATGGACAATGAAGAGCGGCGCGGCGTTCTGGCGTTGTGTCACGAACGGGCCAAGGCCAGTGGGTTGGTGTGGATGTTGCCGGCAAAACCTTGAMNPAERPVPSPCVNICALDDDDICTGCQRTVAEITRWSRMDNEERRGVLALCHERAKASGLVWMLPAKPPGPT0013210_1424DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013210-ydhL-K06938NANA
D1-35_01483609hypothetical proteinATGGCGGCACTGCTTGGCTGGGCGGGACTGAGCATCCAGTTGTATCTGATCTTGCTCGGGCGTTGGGAGCTGGGCGCGAGCCTGCTGGGCGGGCTGGTGAATTGCTTCAGTTTTTTCACGGTGCTGACCAACACGCTGGTGGCCGTGGTGCTGAGCTTCGAACTGACCCACCGCGATTCAGCGGCGCGGCGCTGGTTCCTCGGGCCAGCGGTATGCAGCGGCATCGCCGTGAGCATTGCCCTGGTCGGCCTGGCCTACAGCCTGCTGCTGCGCCATCTCTGGCAACCCGAAGGCTGGCAGTTTATCGCCGACGAACTGCTGCACGACGTGATGCCCGTGCTGTTCATCGGCTACTGGTGGTTCTGCGTGCCCAAGGGCAGCTTGCGCCTGCGCCACATCGGGCTGTGGATGCTTTATCCCTTGGTGTACTTCGGTTATATCCTGCTGCGTGGCAATCTGCTGGCGGCTTACCCCTACCCTTTCATCGATGTTGCGACTCTGGGTTATCCACAGGTACTGATCAATGCCGGGGGGATATTGGCGGGGTTTGTCGGGATCGCGCTGGGGGTGGTGGGATTGGATTGGTGGCTGGGGCGGCGGCCCCACTAAMAALLGWAGLSIQLYLILLGRWELGASLLGGLVNCFSFFTVLTNTLVAVVLSFELTHRDSAARRWFLGPAVCSGIAVSIALVGLAYSLLLRHLWQPEGWQFIADELLHDVMPVLFIGYWWFCVPKGSLRLRHIGLWMLYPLVYFGYILLRGNLLAAYPYPFIDVATLGYPQVLINAGGILAGFVGIALGVVGLDWWLGRRPHNANANANANA
D1-35_01484366hypothetical proteinATGGATCCTTTCGGATTCGGTAACAGTCAAACGGGCTTCAACGACGCGGCCACTGCTTTCAAAGCGCGGCGCTTCCACCCGAACGGCACCTCGGCTAAGGTGCGCGGCATATCACTTACCTGGCGTACAGGCTTCATGACCGAACACAACGACAACCCACTGCACGGCGTGACGCTGGAGCAGATCCTCAATGCCCTGGTGCAGCACTACGAGTGGTCGGGCCTGGCCGAACGCATCGATATCCGCTGTTTCAAGAGCGACCCCAGCATCAAGTCGAGCCTGACCTTCCTGCGCAAGACGCCGTGGGCGCGGGAAAAAGTCGAGCGCCTGTACATCAAGCTGATGCGCACGAAACGGCCGGTCTGAMDPFGFGNSQTGFNDAATAFKARRFHPNGTSAKVRGISLTWRTGFMTEHNDNPLHGVTLEQILNALVQHYEWSGLAERIDIRCFKSDPSIKSSLTFLRKTPWAREKVERLYIKLMRTKRPVNANANANANA
D1-35_014852415gcdCOG4993Quinoprotein glucose dehydrogenaseATGAGCACTGAGGGTGCTTTGAGTCGAAGCCGTCTGCTACCGAGCCTGCTCGGCATTCTGCTTCTGTTGATGGGCCTGGCCCTGTTGGCCGGGGGAATCAAGCTGAGCACGCTCGGCGGCTCGCTGTATTACCTGCTTGCCGGTATCGGCCTGGCGCTCACCGGCGTCCTGCTGATCCTGGCCCGCCGTGCGGCGTTGGGGCTGTACGCGCTGGTGCTGTTCGCCAGTACCGTTTGGGCCCTGTGGGAAGTGGGCCTGGACTGGTGGCAACTGGTGCCGCGCCTGGCGATGCTGTTTGCCCTGGGCATCGTCTTGCTGCTGCCATGGTTCCGCCGCCCGTTGCTGACTGCCGATGCGTCGCCGATGGGCACCCGCGCATTGGGCGCTGCGGTGATCATCGCGGGTATCGCCGCGCTCGCCAGCCAGTTCACCAACCCGGGTGAAATCAAGGGCCAACTGGACCGCGACAGCGTGCCCGGCATGGCCAACACCGCACCGGCGATGCCGGACGGGGACTGGAACTCCTACGGCCGCAGCGCCCACGGCGACCGTTATTCGCCGCTGGCGCAGATCACCCCGCAGAACGTCGGCCAGTTGAAGGAAGCCTGGACGTTCCGCACCGGTGACCTGCCAGGGCCGAACGACCCGGGCGAGACTACCGCTGAAAACACCCCGCTCAAGGCCAACGGCATGCTCTACGTGTGCACGCCGCACAGCCAGGTGATTGCGCTGGAGCCTGAAACCGGCAAGGAAATCTGGCGTTTCGATCCGAAGCTTTCCACGCAGAATGCGGAAAACTTCAAGGGTTGGGCCCACATGACCTGCCGCGGTGTGAGCTATCACGATGACGCCGTGTACGCCTCGGCCGAGCAGAGCCCGACCGGCGCCGCCAGCACCACGCCCGCCAGCACCGTGTGCCCACGACGGATCTTCCTGCCAACCGCCGACACCCGCCTGATCGCCCTCAACGCCGACACCGGCAAGATGTGCGAAGACTTCGGCGACAAGGGCCAGGTCGACCTGACCGCCAACATCGGTGGTTTCACCGCCGGCGGTTACTACTCCACCTCGCCGCCGGCGGTCACCCAGAACCTGGTCGTGATCGGCGGCCACGTCACCGATAACGTTTCCACTGACGAGCCAAGCGGTGTAATCCGTGCCTACGACGTGCACACCGGCAAACTGGTGTGGAACTGGGACAGCGGCAACCCGGACGACACCACGCCGATTGCCGAAGGCCAGACTTACACCCGCAACTCGCCAAACATGTGGTCGATGTTCAGCGTCGACGAAAAACTCGGCATGCTCTACCTGCCGATGGGCAACCAGACGCCCGACCAGTTCGGTGGTTTCCGCACGCCCGAGTCGGAAAAATACGCTGCCGGCCTGACCGCGCTGGACATCGCCACCGGCAAGGTGCGCTGGTACTTCCAGTTCACCCACCACGACCTGTGGGACATGGACGTCGGCGGCCAGCCGACCCTGATGGACCTCAAGACTGCTGATGGCGTGAAACCGGCCGTGCTGGCTTCGACCAAGCAGGGCAGCATCTATGTGCTGGACCGCAGCAACGGCCAGCCGATCGTGCCGATCAAGGAGATCCCGGTGCCGCAAGGCGCGGTGGAAGGCGACTTCACTTCACCGACCCAACCTATGTCCGACCTGAACTTCGTGCCGCCGGTCCTTAAGGAACGCGACATGTGGGGCGTGACCCCGTTCGACCAGATGCTGTGCCGGATCGACTTCAAGTCGCTGCGCTATGAGGGCATGTTCACACCGCCGTCGTTGCAGGGCTCGATCGTCTATCCAGGCAACTTCGGTGTGTTCGACTGGGGCGGTATCTCGGTGGATCCGGTGCGCCAGATCGCTTTCGTCAACCCGAGCTACATGGCGTTCAAGTCGAAACTGGTGCCGGCGGCGGAAGTCGCGGGTGGTCCGGGTCGCAAGAGCGAAACCGAAGGCGTGCAGCCGAACAAGGGCGCGCCGTACGGCGTAATCCTCGAGGCGCTGCTTTCGCCAATGGGCCTGCCTTGCCAGGCGCCGGCCTGGGGTTATGTGGCGGCCGTCGACCTGACCAACAACAAGACCCTGTGGAAGCACAAGAACGGCACCGTGCGCGACAGCTCGCCGGTTCCGATCCCGCTGAGCATGGGCGTTCCGAGCCTGGGCGGCACGTTCACCACCGCCAGTGGCCTGGCGTTCCTGAGCGGCACGCTTGACCAGTACCTGCGCGCCTATGACGTGAAGAACGGCAAACAGCTGTGGGAAGGCCGCCTGCCCGCCGGCGCCCAGACCACGCCGATGACCTATACCGGCAAGGACGGCAAGCAATACGTGCTGGTCGTAGCCGGCGGCCATGGCTCGCTGGGGACCAAGCAGGGTGATTATGTGATCGCCTACAAGCTGCCGGATTAAMSTEGALSRSRLLPSLLGILLLLMGLALLAGGIKLSTLGGSLYYLLAGIGLALTGVLLILARRAALGLYALVLFASTVWALWEVGLDWWQLVPRLAMLFALGIVLLLPWFRRPLLTADASPMGTRALGAAVIIAGIAALASQFTNPGEIKGQLDRDSVPGMANTAPAMPDGDWNSYGRSAHGDRYSPLAQITPQNVGQLKEAWTFRTGDLPGPNDPGETTAENTPLKANGMLYVCTPHSQVIALEPETGKEIWRFDPKLSTQNAENFKGWAHMTCRGVSYHDDAVYASAEQSPTGAASTTPASTVCPRRIFLPTADTRLIALNADTGKMCEDFGDKGQVDLTANIGGFTAGGYYSTSPPAVTQNLVVIGGHVTDNVSTDEPSGVIRAYDVHTGKLVWNWDSGNPDDTTPIAEGQTYTRNSPNMWSMFSVDEKLGMLYLPMGNQTPDQFGGFRTPESEKYAAGLTALDIATGKVRWYFQFTHHDLWDMDVGGQPTLMDLKTADGVKPAVLASTKQGSIYVLDRSNGQPIVPIKEIPVPQGAVEGDFTSPTQPMSDLNFVPPVLKERDMWGVTPFDQMLCRIDFKSLRYEGMFTPPSLQGSIVYPGNFGVFDWGGISVDPVRQIAFVNPSYMAFKSKLVPAAEVAGGPGRKSETEGVQPNKGAPYGVILEALLSPMGLPCQAPAWGYVAAVDLTNNKTLWKHKNGTVRDSSPVPIPLSMGVPSLGGTFTTASGLAFLSGTLDQYLRAYDVKNGKQLWEGRLPAGAQTTPMTYTGKDGKQYVLVVAGGHGSLGTKQGDYVIAYKLPDPGPT0001290_395DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION_D_GLUCONATE_BIOSYNTHESIS,PGPT0001290-gcd|gdhAB-K00117NANA
D1-35_014861182purTCOG0027Formate-dependent phosphoribosylglycinamide formyltransferaseATGACCCGTATCGGAACCCCATTGTCGCCCACCGCGACCCGCGTTTTGTTGTGTGGCAGCGGTGAGCTGGGCAAGGAAGTGGTAATCGAACTGCAGCGCCTGGGCGTTGAAGTGATTGCCGTGGATCGCTACGCCAACGCGCCGGCCATGCAAGTGGCCCACCGCAGCCACGTGATCAACATGCTCGACGGCGCGGCCCTGCGCGCAGTGATCGAGGCCGAGAAGCCGCACTACATCGTGCCGGAAATCGAAGCCATCGCCACCGCGACCCTGGTGGAACTGGAAGCCGAAGGCTTCACCGTGATCCCTACCGCCCGCGCCGCGCAACTGACCATGAACCGCGAAGGCATCCGCCGCCTGGCCGCCGAAGAACTCGGCCTGCCGACCTCGCCGTACTTCTTCGCCGACACCGTGGAAGACTACCGCAAGGCCGTCGAGACCCTGGGTTTCCCATGCGTGGTCAAGCCGGTGATGAGTTCCTCGGGCAAGGGCCAGAGCCTGCTGCGCAGTGCCGATGACGTGCAGAAAGCCTGGGACTACGCACAGGAAGGCGGCCGCGCCGGCAAGGGCCGGGTGATCATCGAAGGCTTCATCGACTTCGACTACGAAATCACCCTGCTTACCGTGCGCCACGTCGGCGGCACCACGTTCTGCGCACCGGTCGGTCACCGTCAGGAAAAGGGCGACTATCAGGAATCCTGGCAGCCACAGGCCATGAGCCCGGTGGCCCTGGCCGAATCCGAGCGCGTCGCCAAGGCAGTGACCGAGGCCTTGGGTGGTCGTGGACTGTTTGGCGTCGAACTGTTCATCAAGGGTGACCAGGTGTGGTTCAGCGAAGTCTCGCCGCGCCCGCACGACACCGGCCTGGTGACGCTGATCTCCCAGGACCTGTCGCAATTCGCCCTGCACGCCCGCGCCATTCTGGGTCTGCCAATTCCGCTGATCCGCCAGTTCGGCCCATCGGCTTCGGCGGTGATTCTGGTGGAAGGCCAGTCGACGCAGACCGCCTTCGCCAACCTCGGCGCCGCCCTGAGCGAACCGGACACCGCCCTGCGCCTGTTCGGCAAGCCGGAAGTCAACGGCCAACGCCGCCTGGGCGTGGCCCTGGCCCGCGACGAATCCATCGAAGCCGCCCGCGCCAAGGCAACCCGGGCTTCGCAGGCGGTCAAGATCGAACTCTAAMTRIGTPLSPTATRVLLCGSGELGKEVVIELQRLGVEVIAVDRYANAPAMQVAHRSHVINMLDGAALRAVIEAEKPHYIVPEIEAIATATLVELEAEGFTVIPTARAAQLTMNREGIRRLAAEELGLPTSPYFFADTVEDYRKAVETLGFPCVVKPVMSSSGKGQSLLRSADDVQKAWDYAQEGGRAGKGRVIIEGFIDFDYEITLLTVRHVGGTTFCAPVGHRQEKGDYQESWQPQAMSPVALAESERVAKAVTEALGGRGLFGVELFIKGDQVWFSEVSPRPHDTGLVTLISQDLSQFALHARAILGLPIPLIRQFGPSASAVILVEGQSTQTAFANLGAALSEPDTALRLFGKPEVNGQRRLGVALARDESIEAARAKATRASQAVKIELPGPT0008100_849DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0008100-purT-K08289NANA
D1-35_01487468hypothetical proteinATGCTTTTCCTGATCGCCTACATCGGCAGCGTCGTGCTGATCAACTTCGCGTTCTCCGCCGCGCCGCACCTGGACATCATCTGGTCGGCCTGGGGTGGCCTGGTGTTCGTCCTGCGCGACATGGTGCAGACCCGCTTCGGCCATGGTGCCATTGCGGCGATGCTGGTGGCGCTGGTGCTGTCCTACGTCACCTCCGATCCGACCATTGCCCTGGCCAGCGCCACGGCATTCGCAGTGTCCGAATGCATCGACTGGCTGGTGTTCACCATCACCCGGCGCCCATTGCACGACCGATTGTGGATCAGCTCGGCCCTGAGTATTCCGCTGGATACCTTCATCTTTTTCGGCCTGATCGACGCCCTCACGCCAGGCGTGGTCGTCACCGCCCTGCTGTCGAAATTCGCCGGGGTCACGGCCGTCTGGCTGATCATGGCCTGGCGTCTGCGCAAACAGGCCGTCGCCGGCTGAMLFLIAYIGSVVLINFAFSAAPHLDIIWSAWGGLVFVLRDMVQTRFGHGAIAAMLVALVLSYVTSDPTIALASATAFAVSECIDWLVFTITRRPLHDRLWISSALSIPLDTFIFFGLIDALTPGVVVTALLSKFAGVTAVWLIMAWRLRKQAVAGNANANANANA
D1-35_01488786yqjHCOG2375NADPH-dependent ferric-chelate reductaseATGACTGAAGTCGATCCAGACACCATCCACCGCGTCAGCCACGAAATCAAACGCCGTCGCCTGCAAGTGCTGCGGGTGCAAGACCTGACACCACGCATGCGCCGCATCACCGTCGGCGGACCGGAACTGGCCGGGTTCGTCAGCCTCGGCACGGACGATCACGTGAAGTTGCTGTTCCCGCAGAACGCCGAAGAACACGCCGCCCTGGAAAACTTCAACCCCGGCGCCGGCAAGGCCCAGGGCCCGATGCCCGAGATGCGCGACTACACCCCGCGCCGCTACGACCTGGATGCCCTGGAGCTGGAGATCGATTTCGTCCTCCACGGCGACGGCCCTGCTTCAACCTGGGCGGCCCAGGCGGCGCCCGGGCAGTACCTGAACATCGCCGGGCCACGGGGCTCGATGATCGTGCCGGATATTTTCGACAGCTACTTGCTGATCGGCGACGAAACCGCCCTGCCCGCCATCGCCCGACGCCTCGAAGGCCTGGCACCCAACCGGCGGGCACTGGTGGTGGTGGAAGTGGAAAACGGCGCCGAACAGCAGATCCTTCACAGCCCGGCCCAGGTGCAAGTGATCTGGGTACTGCGCGAAGGCCACCGCGACAGCCTGCTTCGCACCGTCCAGCAGTTGGAAATGCCCGGTGGCAAGCTGTACGCCTGGGTCGCGACCGAGAGCAAAGTGTCGCGGCAGATTCGCAAAGTGTTGCTGGAGGAGAAAGGGCTGGACCAGGATTTCATCAAGGCGGCGGGGTATTGGAAGCTTGATGACAATGAGGAAGATTGAMTEVDPDTIHRVSHEIKRRRLQVLRVQDLTPRMRRITVGGPELAGFVSLGTDDHVKLLFPQNAEEHAALENFNPGAGKAQGPMPEMRDYTPRRYDLDALELEIDFVLHGDGPASTWAAQAAPGQYLNIAGPRGSMIVPDIFDSYLLIGDETALPAIARRLEGLAPNRRALVVVEVENGAEQQILHSPAQVQVIWVLREGHRDSLLRTVQQLEMPGGKLYAWVATESKVSRQIRKVLLEEKGLDQDFIKAAGYWKLDDNEEDPGPT0004045_30DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-RELATED_PROTEINS,PGPT0004045-ygjH-K07229NANA
D1-35_01489570hypothetical proteinATGAGAGACCCGCATTCCCACCCTCACCGCGAACATGTCGCTCACGACGGCTTCGACAAACGTGCGGCAAGCCGTGAGCGCGGCGGTCGCGGGCCGCGTGTTTTCGCCGCGGGCGACCTGAAACTGCTGTTGTTGGCACTGATTGCAGAACAACCCTGCCACGGCTATGACCTGATCCGCCGGATCGAAAGCATGTTCGATGGCGCCTACAGCCCCAGTCCCGGCGTGATCTATCCGACCCTGACCTTCCTCGAAGAAAGCGAAATGATCAGCGGCGATGCCGATGGCGGAAAAAAACGCTACAGCGTGACCGATGCCGGACGTCTATCCCTTGAAGACCAGGCCGTGGCGCTGGACGGCGTACGGATGCGCATCGAAGTCAGCAAGCGTTCGCTGCGCGGCCAGGATCGGCCGCCGGAAATCCACGAGGCGGTCCACAACCTGCGCCATGCCTTGCAGATGCACCATGGTCGCTGGAGCCCGGAAGAGATCCTGCGGGTACGCGACCTGCTCAACGACACCGCCAAAGCCATTGTCGACGGCCCTCGCCGTCCAACCGTTTCGGAGTAAMRDPHSHPHREHVAHDGFDKRAASRERGGRGPRVFAAGDLKLLLLALIAEQPCHGYDLIRRIESMFDGAYSPSPGVIYPTLTFLEESEMISGDADGGKKRYSVTDAGRLSLEDQAVALDGVRMRIEVSKRSLRGQDRPPEIHEAVHNLRHALQMHHGRWSPEEILRVRDLLNDTAKAIVDGPRRPTVSENANANANANA
D1-35_014903108hypothetical proteinATGGGCGCTTTGTGGCAAACCGATTCGAATAAACCTGTGGTCCCGACTGAACGTATGGAAGAAGCGCCTTTACCCCCGAAAAAACGCCGCGCACGGCATGGCTGGCGGGCGTTCTGGTTGTTGTTGCTGATTATCGTCGTGGTGGTCGGCTTTGCCGTGGCCAAGGAGATGCGCACGTCCCGGTTCCAGGCCCGGGAGATCAGCAAGTACGCCGCGTCCTTGACCTATTCGGTGCAACCGGGGCCCAGCGACGCCATCGTCTACCCTGGCGCGGGTCCGTTCGACCGGCGATTGGGCTACAGCTCGCTGGGGGAGTTCCTGCCACGACTGATCAAGCGCGACTATGTGATCCAGGCCCAGGCCCGTTTCTCCCCAGAGCTGACGGACTATGTCGATAAAGGCCTGTTCGTGCCCTACGCGGAAAAGATCCAGGCCGGACTGACCATCACCGATTGCCGCGCCGCGCCGGTGTATCAGTTCAAATACCCGCAACAGCTGTACGCCAGTTTCGACGCCATCCCGCCGCTCGTGGTGCAGAGCCTGCTGTTCATCGAGAACCGCTTCCTGCTCGATCCCAAGCAGCCGCTGGCTAACCCGGCGGTGGACTGGCCGCGTTTCGGCATGGCGGCCTGGTCGCAAGTGGCCAAGTTGCTGAGCTTGCCCGGCCAGTCGGCGGGCGGCAGCACATTGGCGACGCAGTTGGAGAAATACCGGCACTCCCCCGAGGGCCTGACCGTGTCGGGGGCGGAGAAGATCCGCCAGATGATTTCCGCCAGCGTGCGCGCCTACCAGGCCGGCCCGCAAACCCTCGAGGCCCGCCAGCGGGTCATCCGCGACTACCTCAACAGCGTGCCGCTTTCCGCGGTTCCAGGTCATGGCGAAGTCCATGGCATGGCGGAAGGACTGAGGGTCTGGTACGGCGCCGATTTCAACAAGGCCAACGAGCGCCTGTTCAGCACCGCCACCGACCCCGAGAGCCTGGCGCAAAAAGGCCTGGCCCTGCGGGAAATGCTCTCGCTGATGATCGCCCAGCGGCGGCCTTCCCATTACCTATCGAAGGGTCACGATGAACTCGCTCGCCTGACTGACAGCCACATCCGGCTGCTGGCGCAGAACGGCGTGATCGATGCGGCCCTGGCCGAGGCCGCCCTGGCGAGCAAAGTCAGTTATCGCGACTGGGTGCAGCAGCCGACGATCCAGCCCAACGAAACCAACAAGGGCATCAGCGCCGCCCGCAGTCGTCTCGCCACGCTGCTCAATCGTCCGCTGTACGACCTTGATCGCCTCGACCTGTCGGCCACCAGCACCTTGCAAAGCGAATTGCAGGCCCAGGCCACCGAGTACCTCAAGCGATTGGCCGACCCGGCGTTCGCCGCCGAGATCGGCCTGATGGGAGAGCGCCTGCTGACCCCCACCAGCACCACGCAGGTGCGCTACAGCTTTACCCTGCTGGAACTGACGCCGGACGGTTCGCGTGTGCGGGTACAGACCGACAGCACCGACCAGCCCTTCGACATCAACGAGGGCAGCAAGCTGGAACTGGGCTCCACCGCCAAATTGCGGGTGCTGACCACCTACCTGCAGATCATCGCCGAATTGCACGAGCGCTACGCCCAACAGACCCCGGCACAACTGAAGAAAACCGAGATCGCCGACCAGGACCGCCTCTCGCGCTGGGCGGTGGACTACCTGATTGAAAACACCGACCGCAGCCTGCCGAAAATGCTCGAAGCGGCACTCGACCGCACCTACTCCGCCAGCCCGGGCGAGGCATTTTTCACCGGTGGCGGACTGCACACCTTTCACAACTTTCGCAGGGAAGACGACGGTCGCCTGCCGACCCTGCGCGACGCCCTGCGCGAATCGATCAACTTGCCGTTCATTCGCCTGATGCGCGACCTGGTGCGCTACGCCACCTATGCCGGTCCCAACAACAGCTCCGAACTGCTCAAGGATGACAAGGACCCGCGCCGCCAGGAATACCTGGCCCAGTTCGCCGATCGCGAAGGCACCTCGTTCCTGCTCAGGTTCTGGAAGAAATACCAGAAAAAGGACACCGCCCAGCGCCTCGAAACCTTCCTCGACGGCATGCGTCCCACCGCGATCCGCCTCGCCGCCGTGCACCGCTATTTCTTTCCCAACGACAGCCAGGAGAGTTTCAACCGCTTCGTACGCGCCCATCTGAAAAACGCCAAGAGCGCCGAAAAGCTCACCGACGAGCGTCTGCAGCGGCTCTACCAAAGCTACGGCCCCGGCGCCTATGACCTGCCGGACCAAGGCTTCATCGCCAAGGTCCATCCACTGGACCTGTGGTTGGTGGGCTACCTGCTCAACAACCCCGACGCCAAGTTCAGCCAGATCGTCAAGGCCAGCCAGTTCGAGCGCCAGGAGGTCTACAGCTGGCTGTTCAAGAGCCGGCACAAGAGCGCCCGCGACAGCCGCATCCGCACCATGCTGGAGGTCGAAGCCTTCCTGGATATCCATCAGCGCTGGCAGCAAGTCGGCTATCCGTTCGACCACCTGGTGCCGTCGCTCGCCACTGCGATCGGCAGCTCCGGCGACCGCCCCGCCGCCCTCGCGGAACTGGTAGGGACCATTCTCAACGACGGCATCCGCCAACCGGCGCTGCGTGTCGACAGCCTGCAGTTTGCCGTCGACACGCCCTACGAAACGCGGCTGGTCAGCGATCCGGACAACGGCAAGCGGGTGATGCCGGTGGAAGTGGCCCGGGCCTTGCGCGGCGCCCTGTCGCAAGTGGTGGACGCCGGCACCGCGAAACGTGTCGCGGGCAGTTTCAAACTGGCCGACGGCACGCCGCTGGCCATGGGCGGCAAGACCGGCACTGGCGACAACCGCATCGAAGCCGTCGGCTCAGGCGGACGGGTGATCAGTTCCAAATCGATAAACCGCACCGCCACGTTCGTGTTCTACATCGGCGACAGCCATTTCGGCACCCTGACCGCCTTCGTCCCGGGCGCCTCGGCACAGAACTTCAAGTTCACCTCGGCCTTGCCGGTACAGGTGCTCAAGGGCATGGCGCCGTTTCTCTCGGCCTATTTGCAACCGGGCAGCCACACCCAATGTCAGCCATTGGTGACGAGCCGCTGAMGALWQTDSNKPVVPTERMEEAPLPPKKRRARHGWRAFWLLLLIIVVVVGFAVAKEMRTSRFQAREISKYAASLTYSVQPGPSDAIVYPGAGPFDRRLGYSSLGEFLPRLIKRDYVIQAQARFSPELTDYVDKGLFVPYAEKIQAGLTITDCRAAPVYQFKYPQQLYASFDAIPPLVVQSLLFIENRFLLDPKQPLANPAVDWPRFGMAAWSQVAKLLSLPGQSAGGSTLATQLEKYRHSPEGLTVSGAEKIRQMISASVRAYQAGPQTLEARQRVIRDYLNSVPLSAVPGHGEVHGMAEGLRVWYGADFNKANERLFSTATDPESLAQKGLALREMLSLMIAQRRPSHYLSKGHDELARLTDSHIRLLAQNGVIDAALAEAALASKVSYRDWVQQPTIQPNETNKGISAARSRLATLLNRPLYDLDRLDLSATSTLQSELQAQATEYLKRLADPAFAAEIGLMGERLLTPTSTTQVRYSFTLLELTPDGSRVRVQTDSTDQPFDINEGSKLELGSTAKLRVLTTYLQIIAELHERYAQQTPAQLKKTEIADQDRLSRWAVDYLIENTDRSLPKMLEAALDRTYSASPGEAFFTGGGLHTFHNFRREDDGRLPTLRDALRESINLPFIRLMRDLVRYATYAGPNNSSELLKDDKDPRRQEYLAQFADREGTSFLLRFWKKYQKKDTAQRLETFLDGMRPTAIRLAAVHRYFFPNDSQESFNRFVRAHLKNAKSAEKLTDERLQRLYQSYGPGAYDLPDQGFIAKVHPLDLWLVGYLLNNPDAKFSQIVKASQFERQEVYSWLFKSRHKSARDSRIRTMLEVEAFLDIHQRWQQVGYPFDHLVPSLATAIGSSGDRPAALAELVGTILNDGIRQPALRVDSLQFAVDTPYETRLVSDPDNGKRVMPVEVARALRGALSQVVDAGTAKRVAGSFKLADGTPLAMGGKTGTGDNRIEAVGSGGRVISSKSINRTATFVFYIGDSHFGTLTAFVPGASAQNFKFTSALPVQVLKGMAPFLSAYLQPGSHTQCQPLVTSRNANANANANA
D1-35_01491459hypothetical proteinATGCATCCGCACCCCAACTCACATCGCTTGCGCAGAGGTCGTTATTCAGAGCTTGGGCGTGCTTATCTGGTGACTGCTGTGGTTCACAAACGCCAGCCGGTTTTTTCCGATTGGAGGCTTGGACGCCTGTTGGTTGCCGAATTCAAGCATGCTCATGATTCCGGCCAGGTGAACTCTTTGGCCTGGGTGGTGATGCCGGACCATTTCCATTGGCTGCTGCAAGTCATGGATAGTCAGCTAAGTCGTATCATCGGCGCTACCAAGGCTCGATGCACCCACAGTGTCAATAACACGATCGGAGCCACTGGACCGCTGTGGCAAAGCGGCTTTCATGATCGTGCGATTCGAGATGACGTGGAGTTGTTGCCGTTAGCTCGCTACATCATTGCGAATCCGCTTCGTGCTGGGCTGGTGAGTCGAATTGGCGATCACCCGCTGTGGGACGCTGCATGGCTTTGAMHPHPNSHRLRRGRYSELGRAYLVTAVVHKRQPVFSDWRLGRLLVAEFKHAHDSGQVNSLAWVVMPDHFHWLLQVMDSQLSRIIGATKARCTHSVNNTIGATGPLWQSGFHDRAIRDDVELLPLARYIIANPLRAGLVSRIGDHPLWDAAWLPGPT0030655_3080DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030655-yafM|rayT|tnpA-K07491NANA
D1-35_014921422proYCOG1113Proline-specific permease ProYATGCCAGTCGGCAATCCTCTGCCCCATGGCGAGACCGCTCAGGGTGGTCCGCTCAAACGTGAGCTCGGCGAGCGGCATATCCGCTTGATGGCGCTCGGCGCCTGCATCGGTGTCGGGCTGTTCCTCGGTTCGGCCAAGGCCATCGAAATGGCCGGCCCGGCGATCATGCTGTCCTACATCATTGGTGGCCTGGCGATCCTGGTGATCATGCGCGCCCTCGGCGAGATGGCCGTGCATAACCCGGTGGCCGGTTCGTTCAGCCGTTATGCCCAGGATTACCTCGGCCCGCTGGCAGGCTTCCTGACCGGTTGGAACTACTGGTTCCTCTGGCTGGTGACCTGTGTGGCGGAGATCACCGCGGTGGCGGTGTACATGGGCATCTGGTTCCCCGATGTGCCCCGCTGGATCTGGGCGTTGGCCGCACTGGTCAGCATGGGCTCGATCAACCTGATCGCGGTCAAGGCCTTCGGTGAGTTCGAGTTCTGGTTCGCCCTGATCAAGATCGTGACGATCATCGCCATGGTCATCGGCGGCGTCGGCATCATCGCCTTCGGGTTCGGCAACGATGGCGTGGCCCTGGGCATTTCCAACCTGTGGACCCACGGCGGCTTCATGCCCAACGGCGTGTCCGGCGTGTTGATGTCTCTGCAAATGGTGATGTTCGCCTACCTGGGCGTCGAGATGATCGGCCTGACCGCCGGTGAAGCGCGCAACCCGCAGAAAACCATCCCCAACGCCATCGGTTCGGTGTTCTGGCGGATCCTGCTGTTCTACGTTGGTGCGTTGTTCGTGATCCTGTCGATCTACCCGTGGAACGAAATCGGCACTCAGGGCAGCCCGTTCGTGATGACCTTCGAGCGCCTGGGCATCAAGACCGCCGCTGGCATCATCAACTTCGTGGTCATCACCGCCGCCTTGTCGTCCTGCAACGGCGGGATCTTCAGCACCGGTCGCATGCTCTACAGCCTGGCGCAGAACGGCCAGGCCCCGGCCGGTTTCGCCAAGACCTCGAGCAACGGCGTGCCGCGCCGGGCGTTGCTGTTATCGATCGCCGCGCTGCTGCTGGGCGTGCTGCTCAATTACCTGGTACCGGAGAAAGTCTTCGTCTGGGTCACTTCCATCGCCACCTTCGGCGCGATCTGGACCTGGGTGATGATCCTGCTGGCCCAGCTGAAATTCCGCAGAGGCCTGAGCGCGTCCGAGCGTGCGGCGTTGAAGTACCGCATGTGGTTGTACCCGGTCAGCTCGTACCTGGCGCTGGCATTCCTGGTGCTGGTGGTGGGCCTGATGGCGTACTTCCCCGACACGCGTGTGGCGCTGTATATCGGCCCGGCGTTCCTGGTGCTGCTGACAGTGTTGTTCTACACGTTCAAGTTGCAGCCGAAGGAACAGGTGCAGGGTTCGATGCGTTCCGCATCGTAAMPVGNPLPHGETAQGGPLKRELGERHIRLMALGACIGVGLFLGSAKAIEMAGPAIMLSYIIGGLAILVIMRALGEMAVHNPVAGSFSRYAQDYLGPLAGFLTGWNYWFLWLVTCVAEITAVAVYMGIWFPDVPRWIWALAALVSMGSINLIAVKAFGEFEFWFALIKIVTIIAMVIGGVGIIAFGFGNDGVALGISNLWTHGGFMPNGVSGVLMSLQMVMFAYLGVEMIGLTAGEARNPQKTIPNAIGSVFWRILLFYVGALFVILSIYPWNEIGTQGSPFVMTFERLGIKTAAGIINFVVITAALSSCNGGIFSTGRMLYSLAQNGQAPAGFAKTSSNGVPRRALLLSIAALLLGVLLNYLVPEKVFVWVTSIATFGAIWTWVMILLAQLKFRRGLSASERAALKYRMWLYPVSSYLALAFLVLVVGLMAYFPDTRVALYIGPAFLVLLTVLFYTFKLQPKEQVQGSMRSASPGPT0000815_584DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0000815-TC_AAT|yifK-K03293NANA
D1-35_01493375yfdGCOG2246Prophage bactoprenol-linked glucose translocaseATGAAAGCGATATGGAATGGTTTTTTCAGCTATTCGCTCGTCGGATTGGCCAACACGCTGATCCACTGGCAGGTGTTCTTTGTGCTGCGCGTGGCGTTCGACTTCGATCAGTCGACGAGTAACTTCATCGCTTTTTGCCTCGCCGCGACATTTTCCTTTTATGCCAATGCGCTTTATACCTTCGAGGCCAAGCTCTCGGTGCCGGGTTATATGCTGTTCCTGTGTGTCATGGGCGCCCTTAGTTTCATCGTCGGGCATCTCGGGGATCGCTGGCAGTTGCATGGCCTGCTGACCGTCGCGGCGTTCTCGCTGTTAAGCCTGGTTCTCGGTTTTCTGTTTTCCCGGTTTGTCGTGTTTCGCGGACCTTGTCCATGAMKAIWNGFFSYSLVGLANTLIHWQVFFVLRVAFDFDQSTSNFIAFCLAATFSFYANALYTFEAKLSVPGYMLFLCVMGALSFIVGHLGDRWQLHGLLTVAAFSLLSLVLGFLFSRFVVFRGPCPNANANANANA
D1-35_01494951yfdHCOG0463Prophage bactoprenol glucosyl transferaseATGAAAATTTCGCTGATCGTTCCGGTGTACAACGAAGAGCAGGCGATCGGCCTGTTCTACCAAAGTGTCCGCGAGCATCCGCAGCTCCAGGAACATAGCGTCGAGATTGTTTTCATCAACGATGGCAGCAGCGACCAGACTGCCGCACTGGCGCGTGAGATAGCGTTGGCGGACAGCCAGGTTGTGTTGATCGACTTCTCGCGTAATTTTGGCAAGGAGCCGGCCTTGTTTGCCGGGATCGAACATGCCAGCGGTGATGTGGTGATCCCGATGGACGTGGACCTGCAAGATCCCATCGACGTCATCCCCCGGATGATCGAGCAATGGCACAAAGGCGCCGAAGTGGTGCTGGCCAAGCGTCGCAATCGTTCATCCGACAGTTACCTGAAGCGGCGCGGGGCGGCGTTGTTCTACCGCCTGCTCAATCGGATTGCCTACCCGCACATTGAACAGAACGTGGGCGACTTTCGCCTGATGGACCGCAAGGTCGTGGAGGTCATCAAGACCCTTCCCGAATATCAGTTGTTCATGAAAGGCGTTCTGTCGTGGGCCGGTTTCAACACCGTCATCATCGAATACGACCGCGCCGGCCGCGCCGCTGGCAACAGCAAGTTCAACGGCTGGAAGTTGTGGAACCTGGCACTCGAAGGCATCACTTCGTTCAGCACCGTGCCTTTACGGTTGTGGACTTACGTCGGCAGTTGCATTTCGTTGGTTTCGTTGCTGTATGCCGCCTACCTGATTCTGGACAAGTGGATCTTCGGGAACGATCTGCCCGGTTATCCATCGCTGATGACCGCGATCCTGTTCCTGGGCGGCGTGCAACTGATCGGGATTGGCGTGTTGGGTGAATACATCGGGCGCATTTACCTGGAGACGAAACATCGGCCTCGGTATGTCATCAAGGAAATGATCCAGGGCGGACGACCCAAAATGCGAGATGAACCGTGAMKISLIVPVYNEEQAIGLFYQSVREHPQLQEHSVEIVFINDGSSDQTAALAREIALADSQVVLIDFSRNFGKEPALFAGIEHASGDVVIPMDVDLQDPIDVIPRMIEQWHKGAEVVLAKRRNRSSDSYLKRRGAALFYRLLNRIAYPHIEQNVGDFRLMDRKVVEVIKTLPEYQLFMKGVLSWAGFNTVIIEYDRAGRAAGNSKFNGWKLWNLALEGITSFSTVPLRLWTYVGSCISLVSLLYAAYLILDKWIFGNDLPGYPSLMTAILFLGGVQLIGIGVLGEYIGRIYLETKHRPRYVIKEMIQGGRPKMRDEPPGPT0014540_2204DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0014540-csbB|gtrB|yfdH-K20534NANA
D1-35_014951524hypothetical proteinGTGAGCCAGTCCCTGTGGGCCAGGGTAATGACGCCACGGGAAGTGCTGCTGTTTTTCCTGGCGGCCAGTTTTCTTCATATCTTTCCCCTGGTTCAGGCTGATTATTTCTATAACGACGATAACTGGCGGGCGCTGGTGGCGGGCGAGGGCTGGCGCGAGGAAGGGCGGGTTGTCATCGAGCTGTTCTACAACGCCCTTTCGTTTGGTTCGAAAGCGCCAGATCTGTTTCCTTTGCCATTGTTCGTCGCCACCGCGGGCATCTCGTTTGCGCTGAGGTCGCTGACGTTTTTTTATTTCAAACGGCCGACGTTTGTTCATTGCCTGGTCGTCCTGCCGATCTGGTACAACCCGTTCTTCTTGCAGAACCTGTCCTACCACTACGACGGGCCGGCGATGGCATTGGGACTGGTGGCGCTTGTTTACGCCGCAATCTGGTCCAACGGCAGGGCCTGGCGAGACGTATGGATACCGGCATTGTTACTGGCCGTGGCCCTCGCGATCTATCAAGTGCTCATCGGTTTTTTTATCGCCATGTGTTGTGTCGATGTGATCAGACGGGTGTGGGAGGGCGAGCCGTCGGAGCAACTACTGCGGTTCATTACGCGCAAGCTTCTGGTCATTGTCGGCGGCGTATTGGTCTATTACGTCACGGCTTATCAACTGATGACCGGAGCGCGTCAGGCGTTGTTGCCGCTGCAAGCCAGCAGTCTGATGGAAATGGGCGACCGGCTTTTTTTTCTTGCGCATCTGCTGGTTGAAGGGGCCCGACCTTGGATCTGGAGCGGCGCGTTGCTCATGCTGGTCGGGTTCGCATGGGCAGGCATCGGGTTGTTCCGTCGTCCAGACCTGCTTTGGCGAAAAGCACTGCTGTTGCTCGTTTATCTACTGGCCCTTCCAGTGCTCCTGTTCTGCATCCCTGGCATCACGCTGTTATTTGCCGAGTTCAACTACGGTGCCAGGACGCTGGTGGCTTTTTCGGCGTTGTTATTGCTGACGTTCTTTCTGAGCCTGCAAATACTCACCCGTGTCCATGCAGGACTGGGACTGGTCTTGTTGATTCCGTTGTTGGCGATGTTGTCATTCTCCTTCGGACACGGCCGTGCCCTGTCGCTGCAAAAGGAACAGGAAGCCGTGGTGCTGGCTTCGCTGGCTTATGACATCAACCATTCGCCGCTGCGCGATAAAAGCCGTCTCTACATGGTCCCCGAACTGAAAGCCAACTGGCTCCCGGCGGCCAGTGGATTGTTCGCGGCGATGCCGGCTCAACGGTATGTGCTGGGCGTGGGTTACGTATTACTGCCGGAAAGCTTGCCGCGAGCGGGCATCACCAACGTGTATCTCGCCAAGGATGCAGAAGTGGTTGAATCGATCCGGCGCGGGGATTTCCTGCCGGTGGTGTCTACAGGGTTTTATGACCTGTTTGTCATCAATGACAGCGGCTATATCTTCATGAAAAAACCGCAGGGTGATCCTGATATGGCGCCCAAGTTGTGTTTGATGGTTGATATCGAGCGGTGTCGCTGAMSQSLWARVMTPREVLLFFLAASFLHIFPLVQADYFYNDDNWRALVAGEGWREEGRVVIELFYNALSFGSKAPDLFPLPLFVATAGISFALRSLTFFYFKRPTFVHCLVVLPIWYNPFFLQNLSYHYDGPAMALGLVALVYAAIWSNGRAWRDVWIPALLLAVALAIYQVLIGFFIAMCCVDVIRRVWEGEPSEQLLRFITRKLLVIVGGVLVYYVTAYQLMTGARQALLPLQASSLMEMGDRLFFLAHLLVEGARPWIWSGALLMLVGFAWAGIGLFRRPDLLWRKALLLLVYLLALPVLLFCIPGITLLFAEFNYGARTLVAFSALLLLTFFLSLQILTRVHAGLGLVLLIPLLAMLSFSFGHGRALSLQKEQEAVVLASLAYDINHSPLRDKSRLYMVPELKANWLPAASGLFAAMPAQRYVLGVGYVLLPESLPRAGITNVYLAKDAEVVESIRRGDFLPVVSTGFYDLFVINDSGYIFMKKPQGDPDMAPKLCLMVDIERCRNANANANANA
D1-35_014961620hypothetical proteinATGAGCCTATCGTTGCTGAGCCGCTACGCCTTCTTCGCCGGCTGTGTGATCTTTACCCTCGCCAGCCTGCCGTTCCTGCGACACGACTGGCTCTGGCCGATCGTGCTGTTGACCGGGCTGCTGAGCCTGCTGGGGGTGTTCGACCTGCTGCAAAGCCGTCACGCGGTACGCCGTAACTATCCGATCCTGGGCAACATCCGCTACCTGGTCGAAGGCATCCGCCCGGAGATCCGCCAGTACCTGCTCGAATCCGACAGCGATGCCCTGCCCTTTTCCCGCGCCCAGCGCTCGCTGGTGTACTCGCGGGCCAAGAACGAAAGCGCCGACAAACCGTTCGGCACCTTGATCGACGTCTACCAGACCGGCTTCGAATTCATCGGCCACTCCATGCGCCCGGCCCCGTTGAGCGACCCCAGCGGCTTTCGCGTCACGGTCGGCGGCCCGCAATGCACCCAGCCGTACTCGGCGTCGGTGTTCAACATCTCGGCGATGAGCTTCGGCTCCCTGAGTGCCAACGCCATCCGGGCGTTGAACCAGGGCGCGAAGCTCGGCAATTTCGCCCATGACACCGGCGAAGGCAGCATCAGCCCTTACCACCGCGAACACGGCGGCGACCTGACCTGGGAATTGGGCAGCGGTTACTTCGGTTGCCGCACCTCCGACGGGCGCTTCGACCCGGAGCGCTTCGCAATCCAGGCGCAGAACCCACAGGTGCGGATGATCGAAATCAAGATGAGTCAAGGCGCCAAGCCGGGTCACGGCGGGATCCTGCCCAAGCACAAGGTCACTCGGGAAATTGCCGAGACCCGGGGCATACTCATGGGCGAGGATTGTATTTCGCCGTCTTGCCACAGCGCGTTTTCCACGCCTATCGAACTGATGCAGTTCGTCCAGCAACTGCGCGAACTGTCCGGCGGCAAACCGGTGGGCTTCAAGTTCTGCCTGGGGCATCCGTGGGAATTCATGGGCATCGCCAAGGCCATGCTGGAAACCGGAATCCTGCCCGACTTCATCGTGGTCGACGGCAAGGAAGGCGGCACCGGCGCCGCGCCGGTGGAGTTCACCGACCACATCGGCGTGCCGCTTCGCGAAGGCCTGCTGTTTGTGCACAACACCTTGGTGGGCCTGAACCTGCGGGACAAGATCAAGCTCGGCGCCAGCGGCAAGATTGTCAGCGCCTTCGACATCGCCAGTGTCCTGGCCATCGGCGCCGACTGGGCCAACGCCGCACGCGGCTTCATGTTCGCCATCGGCTGCATCCAGTCACAAAGCTGCCACACCAACAAGTGCCCCACCGGCGTCGCCACCCAGGACACCCTGCGCCAGCGCGCCCTGGTCGTCCCGGACAAAGCCCAGCGGGTCTACAACTTCCACCGCAACACCCTCAAGGCCCTGGCCGAAATGCTCGCCGCCGCCGGCCTCGACCATCCTTCGCAACTGCAACCCAAGCATCTGGTGCGGCGCATGTCGGCTACGGAGATCAAGCTGTTCTCCCAACTGCATGTTTTCCTCAAACCAGGGGAGCTGCTGACTGGTGAGGTCAATGGCGAGTTCTATTCGCGGATGTGGCAGTTGGCACGGGCGGACAGTTTTGAGCCTCAGGAAATAGCGGCTGCTTAGMSLSLLSRYAFFAGCVIFTLASLPFLRHDWLWPIVLLTGLLSLLGVFDLLQSRHAVRRNYPILGNIRYLVEGIRPEIRQYLLESDSDALPFSRAQRSLVYSRAKNESADKPFGTLIDVYQTGFEFIGHSMRPAPLSDPSGFRVTVGGPQCTQPYSASVFNISAMSFGSLSANAIRALNQGAKLGNFAHDTGEGSISPYHREHGGDLTWELGSGYFGCRTSDGRFDPERFAIQAQNPQVRMIEIKMSQGAKPGHGGILPKHKVTREIAETRGILMGEDCISPSCHSAFSTPIELMQFVQQLRELSGGKPVGFKFCLGHPWEFMGIAKAMLETGILPDFIVVDGKEGGTGAAPVEFTDHIGVPLREGLLFVHNTLVGLNLRDKIKLGASGKIVSAFDIASVLAIGADWANAARGFMFAIGCIQSQSCHTNKCPTGVATQDTLRQRALVVPDKAQRVYNFHRNTLKALAEMLAAAGLDHPSQLQPKHLVRRMSATEIKLFSQLHVFLKPGELLTGEVNGEFYSRMWQLARADSFEPQEIAAAPGPT0014521_6DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_HERBICIDIAL_STRESSHERBICIDIAL_STRESS-PARAQUAT_STRESS_REDUCTION,PGPT0014521-yerD-NANANA
D1-35_014971407sasA_4Adaptive-response sensory-kinase SasAATGAACAGCCTGAGCAACCGGCGCATCCTCTTGATTGATGACACGCCCGCCATCCACGAAGATTTCCGCAAGATCCTGACCCCGGAGGACGAAAGCGACAGCGACTTGCAGGACATGGAAAGCGCGCTGTTCGGCGAGGCCCCGAAACCCGCCGCCACCGTGTTCGAACTCGACTCGGCCTACGGTGGCCAGGAAGGCTTGGCCAAATTGCAAGGGGCATTGGCCAAGGAGCTTCCCTATGCCCTGGCCTTCGTCGACATGCGCATGCCCGAAGGCTGGGACGGCGCCAAGACCATCGAAGAGCTGTGGAAAGTCGACCCGCAATTGCAGGTGGTGGTCTGCACCGCGTATTCGGATTATTCCTGGGACGAATTGCTCGACCGCCTGAACGGCCACGACCGTCTGCTCATATTGAAAAAGCCCTTCGACAACATCGAAGTCCAGCAGATGGCCAATACCCTGACCACCAAATGGGAAATGACTTCCCGTGCCCGTTTGAAAATGAACAAGCTCGAAGACCTGGTGGAGCAACGCACCCTGGCGTTCAAGCAGGCCAGCGAATTGCTGCAGATGGAAATCGACGAACGCAAGATGCTTGAAAGCCAGCTCGTGCAGTCGGAAAAGCTCGCTTCGCTCGGTCAGCTGGCGGCTGGTGTGGCCCACGAAATCAACAACCCGATCGGCTTCATTTCTTCCAACCTCGGCGCCTTGGGCGGTTACTTCAGCAAACTCGAGGAAATGCTCCAGGCCTACGGCAGCGCCGAACAGGCCATCGCCTCGCCAGAGCTGGCGATGAATTTGAAAAGCCTGCGCGAACAGGTGGAACTGGATTTCCTGGTGGAGGACATTCCAATACTGATCAAGGAATCCAAGGACGGCATCGCTCGCGTCGGGCAGATCGTCAAGGACCTCAAGGACTTCTCCCGCGTCGACTCCAGCCAGGAATGGCAGATGGCAAATCTGCAGCAGGGCATGGATTCGACATTGAACATCGTCGCCAACGAAATCAAATACAAGGCCGACGTGGTCAAGCAATACAGCCCTCTGCCGGAAGTCGAATGCCTGCCGTCGCAGATCAACCAGGTGATCATGAACCTGATCGTCAACGCCGCCCAGGCCATCGGCCCCGAGCGCGGCACCATCACCCTGCGCAACGGGGTCGAGGGCGACAACGTCTGGATCGAAGTCGCCGACAACGGCTCGGGCATCCCACCGGAAACCCTGCAGAAAATCTTCGACCCGTTCTTCACCACCAAACCCATCGGCCAGGGCACGGGGCTCGGGCTGTCGCTGTCCTACGGCATCGTGAAGAAACACCACGGCGAGATTACCGTGCGCAGCGAAGTCGGCGTCGGGACCACCTTTCGCGTGGAGCTGCCGGTACGGCAGATGAAGTTGGCGGGGTGAMNSLSNRRILLIDDTPAIHEDFRKILTPEDESDSDLQDMESALFGEAPKPAATVFELDSAYGGQEGLAKLQGALAKELPYALAFVDMRMPEGWDGAKTIEELWKVDPQLQVVVCTAYSDYSWDELLDRLNGHDRLLILKKPFDNIEVQQMANTLTTKWEMTSRARLKMNKLEDLVEQRTLAFKQASELLQMEIDERKMLESQLVQSEKLASLGQLAAGVAHEINNPIGFISSNLGALGGYFSKLEEMLQAYGSAEQAIASPELAMNLKSLREQVELDFLVEDIPILIKESKDGIARVGQIVKDLKDFSRVDSSQEWQMANLQQGMDSTLNIVANEIKYKADVVKQYSPLPEVECLPSQINQVIMNLIVNAAQAIGPERGTITLRNGVEGDNVWIEVADNGSGIPPETLQKIFDPFFTTKPIGQGTGLGLSLSYGIVKKHHGEITVRSEVGVGTTFRVELPVRQMKLAGNANANANANA
D1-35_014981806sasA_5Adaptive-response sensory-kinase SasAATGAACAGTCTCTCCCGCCGCCTCGGCCTGGCTTTCATCGGCGTCTTGCTGGCCTCAGTCCTGTTGTTCATGTATATCGAATCAGGCGCCCAGCAAGCCGCCTCGCACATCGAATCGCGCGACTTGATCCGCCTGCTCAAGCAGCAGGACGGGATCTGGGACAACGAAGTGCTCAAGTCGCGAATCGCCCTGAGCCACAACTACGACCCGCTGGTATCGCCGCTCAATGAAATGACGCGCCTGTGGCAGCGCCTCGATGCCATCGAGGCGGAGCCGGGCCGCCATGCGCCCGAGCTCTGGTCGACCCAGCGCGACGAGTACCTCAAGGCACTCAAGGAAAAAACCCGCCTGGTGGAACAGTTCAAGTCCCATAACGCGGTGCTGCGCAACTCCCTGGCTTTCCTGCCCACCGCCGAAGACGATATCCAGCGCCAGTTCTCCCTGCTGTCCGATAACGACAAGCTTCGGCTGCAGAGCGCCACCATCGACACCTACGACCTGCTGCTCGCCACGCTGGAGTTCGCGCAGATCACCACCCAGGACCAGGCTGCCGAAATCCTGATGGGCCTCAACCAGCTGGATATCAACAAGGAGCGCTTGCCGGACGGGCTCGTCAGCTCCGTGGAAATCCTGCGCAGGCACATTGCGCTGATCCTGCGTGAGCAACCCTTGGTCAACCAGCTACTGCGCGATTTCGAGGCCGTCCCCCTGGCCGCCCGCCTGGACACCATCACCAGTCTGCTGGAAAAGGATCAGGAAAAAGCCGCCGCCAAGCATCAGCGCAACCACATTATGTTGCTGGTGTTCGCTACCCTCCTGGTGCTGATCCTGATCTGGCTGGCGGTTCGGCTGGTACGCAGTTTCGGCGAGATCAAGCGGGTCAACAGTGCGCTGCAAACCGCCAACGACGAACTCGAACAACGGGTCGAAGAGCGCACCCGCCAGCTCAAGGACACCCAGAGCGAACTGATGGACACCGCCCGCCAGGCCGGCATGGCGGAGATCGCCACCAACGTATTGCACAACGTCGGCAACGTGCTCAACAGCGTGAACATCTCCGCCGACCTGGTCAGCCGCAAGCTGCGCAGCAGCAAGGCCCTGGGGCTGGGCAAGGCGATGAACCTGATCAACGAACACAACCACGACCTGGGGCATTTCCTCACCGAGGACGAAAAAGGCAAGCTGCTGCCCGGCTACCTCAACCAGTTGGTGGAAGCCATCGCGGTGGAACAACAAGGCCTGACCGATGAACTGGCGCAACTGAGCAAGAGCGTGGACCACATCAAGGACATCGTTTCCACGCAGCAGTCCTACGCCGGCGCCAACAGCCTGATGGAACCCCTGGTGGTCAGCGAACTGCTCGAAGACGCCCTGCGCATGAACTCCGGAGCCCTGACCCGCCACCATGTAACGGTCATCAAGGACTACGGCGAAGTGCCGCGGATCATGGGCGACAAACACCGCTTGTTGCTGATCCTGATCAACCTGATCAGCAATGCCAAATACGCCATGGCCGGGGTTTCCAACCATGCGCGAAACATGACGCTCAAGGCCACCGTCGTAGATGATGAGACCCTGCAGATCAGCGTGAAGGACGAAGGCGAAGGCATCCCGGAGGAGAACATGACACGCATCTTCGCCCATGGTTTTACCACCCGTAAGGACGGCCACGGGTTCGGCCTGCACAGTTGCGCACTGGCAGCGATTGAAATGAACGGCCACCTCACCGCACACAGCGAGGGGCCTGGTACCGGGGCGACGTTTGTATTGCAGCTGCCCCTGAAACTCGCAGAAGGTGAGCCATGAMNSLSRRLGLAFIGVLLASVLLFMYIESGAQQAASHIESRDLIRLLKQQDGIWDNEVLKSRIALSHNYDPLVSPLNEMTRLWQRLDAIEAEPGRHAPELWSTQRDEYLKALKEKTRLVEQFKSHNAVLRNSLAFLPTAEDDIQRQFSLLSDNDKLRLQSATIDTYDLLLATLEFAQITTQDQAAEILMGLNQLDINKERLPDGLVSSVEILRRHIALILREQPLVNQLLRDFEAVPLAARLDTITSLLEKDQEKAAAKHQRNHIMLLVFATLLVLILIWLAVRLVRSFGEIKRVNSALQTANDELEQRVEERTRQLKDTQSELMDTARQAGMAEIATNVLHNVGNVLNSVNISADLVSRKLRSSKALGLGKAMNLINEHNHDLGHFLTEDEKGKLLPGYLNQLVEAIAVEQQGLTDELAQLSKSVDHIKDIVSTQQSYAGANSLMEPLVVSELLEDALRMNSGALTRHHVTVIKDYGEVPRIMGDKHRLLLILINLISNAKYAMAGVSNHARNMTLKATVVDDETLQISVKDEGEGIPEENMTRIFAHGFTTRKDGHGFGLHSCALAAIEMNGHLTAHSEGPGTGATFVLQLPLKLAEGEPNANANANANA
D1-35_01499960ccpCOG1858Cytochrome c551 peroxidaseATGGCGTCACACGGACTGATTCTGGCTCTCTGCCTGCTTCTGGGATACAGCGTGACCACTCACGCAGAACCATTGGACGAACCGCTCAAACCCCTGCCCGCCGCGCCGGCCCTGGACCCCAAGCGGGTCCAGTTGGGCCAGCGGCTGTTCAACGACCCACGGCTGTCGGTCAACAACACGCTGTCCTGCGCCAGCTGCCATCGCCTGGACAAGGGCGGCGCCGATGACAAGCAGTTTTCCCTGGGCTTCGACGGCAAGCCGGTGGAGGTCAATACCCCTACCGTGTTCAACGCCAGCCTGAACTTCCATCAGTTCTGGGACGGTCGCGTCGATACCCTGGAAGAACAGGTGCACATCGTCGTGACCAGCCCCGGGGAAATGGGCAGCGACTGGAAAACGGTGGTCAAGCGCATCGCCGACGATCCGGGCTACGCCAGGGATTTTTCCGACGCCTACCCCGGCGGCGTGACCCAGCCCAACATCCAGGGCGCTCTCGCCGATTACGAGCGCACCCTGCTGACGCCGAATTCGCGCTTTGACCAATACCTGCTGGGCAACACTGACATTCTCACCCCCCGGGAAAAATTCGGTTACCAGCGCTTCAAGGAATACGGCTGCATCGCCTGCCATCAGGGCGTGAACATCGGCGGCAACATGTTTCAGAAGTTCGGCGTGATGGGCGACTACATCCAGGACCGGGGCAACCCCACCCGGGCCGACAACGGCCGCTTCAACATCACCGGCGACGAAGCCGACCGCCAGGTGTTCAAGGTGCCGAGCCTGCGCAACGTGGCCGTCACCGCGCCGTATTTCCATGGCGGCTCCGCGCCGACCCTGGAGCGCGCGGTGGAAGTCATGTTCAAGTACCAGCTGGGCCGTGAGCCGCTGAAAAACGATACCGAACTGATCGTCGAGTTCCTCAAGACCCTCACTGGCGAATGGGAGGGCAAGCCGCTATGAMASHGLILALCLLLGYSVTTHAEPLDEPLKPLPAAPALDPKRVQLGQRLFNDPRLSVNNTLSCASCHRLDKGGADDKQFSLGFDGKPVEVNTPTVFNASLNFHQFWDGRVDTLEEQVHIVVTSPGEMGSDWKTVVKRIADDPGYARDFSDAYPGGVTQPNIQGALADYERTLLTPNSRFDQYLLGNTDILTPREKFGYQRFKEYGCIACHQGVNIGGNMFQKFGVMGDYIQDRGNPTRADNGRFNITGDEADRQVFKVPSLRNVAVTAPYFHGGSAPTLERAVEVMFKYQLGREPLKNDTELIVEFLKTLTGEWEGKPLNANANANANA
D1-35_015001875hypothetical proteinATGAACCCCATGTCGGTACCTGCCAACCGGCGAATCCTGGTGGTGGACGACACGCCCGCCATCCACCAGGATTTTCGCAAGATCCTCAGCCCCAGCGCCGGCAATGACGATTCGCTGGACGACACCGAGAGCCTGCTGTTCGGAACACCGCAGGTCAATCGATTGCAATTCCAGATCGACTCGGCCTATCAGGGCGAGGAAGCGCTGGAGCTGGTCAAGCGCGCCCAGGCCGAGGGCCAGCCGTATGCGCTGGTATTCGCCGACATGCGCATGCCGCCGGGCTGGGACGGCCTGCAAACCATCGAACAGCTGTGGAAAGCCGACCCGCGACTGCAAATTGCCCTGTGCACGGCGTATTCGGACTATTCCTGGGAAACCATGTCCGAGCGCATCGAATTCGACGACCAGTTGCTGATTCTCAAGAAACCGTTCGACACCCTGGAAATCCGCCAGATGGCCAGCGCCATGACCTGGAAATGGCAACTGGCGCAAGACGCAGCGCGGAAGATGCGCAGCCTGGAGCGCACGATCGAAGAGCGGGTCCAGGAACTGCTCAAGGTCTCTCACCTGCTGCAATACGACGTCCTCACCGAACTGCCCAACAGCATGCTGCTAGGCGACCGCCTGACCCAGGCCCTGGCCCAGTGCCGTCGGCATGACCGGCAGCTGGCGGTGATGTTCATCGGCCTGGACCGTTTCAAGCGCATCAACAATGCGCTGGGCCATCCGGTGGGCGATGAGATGCTCAAGCGGGTGGCACGCACCCTGGCCACCGTGGTGCGTGAATCCGACTCGGTGTTTCGCTACGGCTCCGATGAGTTCGTGGTGATCCTCGGCGACGTCGCCGATCCGCAATTGATCAAGGGCGTGGCGGAAAAACTGCTCGCGGCGATCAACTCTCCACACCCCATCGACGGCCATGACCTGACGGTGACGGCAAGCCTGGGCATCAGCGTGTACCCGACTGACGGTTTCGACGCCGTGGCGCTGATCAAGAAAGCCGAGACGGCAATGCGCAACGTCAAGGAAACCGGCCCCAACGACTACCGTTTTTTCACCGAGGACATGAACCGCCGGGCACGGCAGCAGCAGACCATCGAATCAGGTTTGCGCCTGGCGCTGCAACGCAAGGAATTCGTGCTGCATTACCAACCCAAGCTCGATCTGACGAGCGGCGCGGTGGTCGGTGTCGAGGCGCTGGTGCGCTGGAACCGGCCCGACCAGGGGCTCGTCTTTCCGTCGGATTTCATTCCGGTGGCCGAAGACAGCGGGCTGATCGTACCGCTGAGCCAGTGGGTGCTCCAGGAAGCCTGCCAACAGGCCTGTCGCTGGCAAGCCGAGGGCATGCGACCGCTATACCTGTCGGTGAATGTCTCGGCGATCGATTTTCGCCAGCGCGGTTTCGTCGAAGGCATTGCGCGCACCCTCAAGGAAACCGGCCTGGACCCGACACAGTTGGAACTGGAGATTACCGAAAGCGTGCTCATGCAGAACATCGATACCACCGTCGCCACCCTCAAGGCCATCAAGCAGTTGGGGGTACGACTGGCCATCGATGACTTCGGCACCGGCTATTCGAGCCTGAGTTACCTGCAGAAATTTCCGGTGGACGTGTTGAAGATCGACCAGTCGTTCGTCGGCGACCTGAGCATCGACAGCAACGACGCGAAACTGGTGAGCACCATCATCAGCCTGGGCAAGAGCTTGAACCTGCACATCATTGCCGAGGGTGTGGAAACCCGCGAGCAACTGGCGTTCCTCAAGGCGCACCAGTGCGAGGAAGCCCAGGGCTATTACTTCAGCAAGGCCGTGGAGCCGCAGGCCTTTGCCCAGTGGATGGCGGCATGGGAAAAAAAACCGAATCCGTTTTCATGAMNPMSVPANRRILVVDDTPAIHQDFRKILSPSAGNDDSLDDTESLLFGTPQVNRLQFQIDSAYQGEEALELVKRAQAEGQPYALVFADMRMPPGWDGLQTIEQLWKADPRLQIALCTAYSDYSWETMSERIEFDDQLLILKKPFDTLEIRQMASAMTWKWQLAQDAARKMRSLERTIEERVQELLKVSHLLQYDVLTELPNSMLLGDRLTQALAQCRRHDRQLAVMFIGLDRFKRINNALGHPVGDEMLKRVARTLATVVRESDSVFRYGSDEFVVILGDVADPQLIKGVAEKLLAAINSPHPIDGHDLTVTASLGISVYPTDGFDAVALIKKAETAMRNVKETGPNDYRFFTEDMNRRARQQQTIESGLRLALQRKEFVLHYQPKLDLTSGAVVGVEALVRWNRPDQGLVFPSDFIPVAEDSGLIVPLSQWVLQEACQQACRWQAEGMRPLYLSVNVSAIDFRQRGFVEGIARTLKETGLDPTQLELEITESVLMQNIDTTVATLKAIKQLGVRLAIDDFGTGYSSLSYLQKFPVDVLKIDQSFVGDLSIDSNDAKLVSTIISLGKSLNLHIIAEGVETREQLAFLKAHQCEEAQGYYFSKAVEPQAFAQWMAAWEKKPNPFSPGPT0026010_2155DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0026010-mucR-K21023NANA
D1-35_015012280hypothetical proteinATGGATAGATCCAACCGGCGGATCCTGATCGTCGACGACACGCCAACGATTCATGAGGATTTTCGAAAGATCCTCGCCCCCCACGTGATCCCCGAAGACAGCCTGAGCAGCGCCGAAGAAGCCTTGTTCGGCGCACCGGTGGTGATCGCCGCCCAGAGTTTCGAGCTGGAGTCGGCATTCCAGGGCATGGAGGCCTTGAGCAAGGTAGAAACGGCCCTGGCCCGGGGTAAACCCTTCGCCATGGCGTTTATCGACATGCGCATGCCGCCAGGCTGGGACGGTCTTGAAACCATCGAGCGGCTGTGGCGCGTCGATCCCAAGCTGCAAGTGGCGCTGTGCACCGCTTATTCGGATTACTCCTGGGAGGACATCGCCGATCGCCTGGAATTGGGTGATCGCCTGCTGATCCTGAAGAAACCCTTCGACGCCATCGAGATCCGCCAGATGGCAAGCACCCTCACCGTCAAATGGCAGATGACCGAAGACGCGGCGCTGAAAATGGACATGCTCGAACGGGCGGTGGAGGAACGCACCCGGGAACTGGCCGACGCCAACATCATCGTGCAGAACAGCCCGACCATCCTTTACCGCCTGCGTGGCGAGCCGCCGTTCCCGTTGATGTACATCTCGCACAACATCACCAAGTTCGGCCATGTCGCGGCGCAACTGATCAGTTCGCCGGACTGGGCGCAAACCCTTATCCACCCCGATGATCAGGGCAAGGTCCAGGAGGCCATGGTCCGCGTCCTGGACCGCGACACGGTCGGGGCGTCCATCGAGTTTCGCATGCGCACCGGAGACGACACCTTTCGCTGGGTGGAGAACCGCTACATTCCTGTGCGCAACGAGCAAGGCCTGTTGCTGGAAGTCGAGGGCATCATCCTCGACATCACCGAGCGCAAAGTGGCCGAGGAAAAGATCGCCCTGCTCGCCCGCACCGATGGCCTGACCGGGCTCGCCAACCGCGCCACCATGATCGAACGCCTGCACCAGGCCTTCGCCGCCGCGCGCCGGGGAGCTGCGCCGTTTGCGATGTTCTACCTGGACCTGGACCACTTCAAGCGCATCAACGACACCCTCGGGCACCCCATCGGCGACCTGCTGTTGCAGGAAGTTGCGGCGCGCCTCAAGGGCTGTACCCGGGAAAACGACGTGGTGGCGCGCCTGGGCGGCGATGAATTCGCCATCCTGCAACTAGATGTCCACGAAGCGACGCACTGCGCCGCGCTGGCCGGCAAAATCCGTGACGCGCTGGTGGCGCCCTATTTCCTGGACGGCAACGATGTGCGCATCTCGGTGAGCATCGGCATCAGCCTGTACACGCCACAAAGCCTGAGCGCCGACAGCCTGATGGCGCAGTCCGACATGGCCCTGTACCGCTCGAAAGAGAAGGGCCGCAACCAATATCACTTCCACAACGAAGAGATCAATCAGGAAGTCACCGACCGGGTCGCCCTGGCCAATGACCTGCGCCAGGCCATCGAGAACAACGAACTGCATTTGCACTACCTGCCGGAAGTCGACCTCGGCACCGGCAAGATCCTCGGCATGGGCGTGCAGGTGCGCTGGAACCACCCCGAACGCGGCTGGCTGGAGCCGGCGGCGTTCATGCCTGCCGCCGAGAAAACCGGGATCATCATCGGCCTCGGTCACTGGGTCCTGGACCAGGCCTGCCAGCAGATGCGCCAATGGCGCGACCAGGGCATGGCGCCGCCGGTGATCGCCATCGACTTGTCCCTGACCCAGCTCAAGACCGGCCCGGAACTGATCTACGACGTGCTGCGCACCACCGCGCGCTGGGAGCTGGCGCCCTGGGACCTGCGCTTCGATGTCACCGAAGCGACCCTGGCCCAGACCAAATGGACCCACAACGACGTGCTGCCCCGCCTGTGCGAACTCGGCGTGCAGGTGGCCATCGATGATTTCGGCACCGAGTATTCCTCGTTCGATTATCTGAAGACCTACCGCGTCAACCATCTCAAGCTCGCCCAGCGATTCCTCGACAGCGCCAACGCCGATCCAGAAAACGCCACGACCCTGCGGGCGATCATCAACTTTGCCCGGGACGTCGGCATCGGCATCATTGCCGAAGGCGTCGAGACCCAGGAACAACGCACCACCCTGATGTCCAGCGGCGGCTCGATGCAGGCCCAGGGGCATTACTTCAGTACCGTGGTCGACAGCGACCAGGCGGCCGCACTGCTCAAGGCCGGTACCATCGTGCCGGTGGCGGACCACTGGACCCGGCCGGCCAGCCAGCTATCGGAGAGCAACCCATGAMDRSNRRILIVDDTPTIHEDFRKILAPHVIPEDSLSSAEEALFGAPVVIAAQSFELESAFQGMEALSKVETALARGKPFAMAFIDMRMPPGWDGLETIERLWRVDPKLQVALCTAYSDYSWEDIADRLELGDRLLILKKPFDAIEIRQMASTLTVKWQMTEDAALKMDMLERAVEERTRELADANIIVQNSPTILYRLRGEPPFPLMYISHNITKFGHVAAQLISSPDWAQTLIHPDDQGKVQEAMVRVLDRDTVGASIEFRMRTGDDTFRWVENRYIPVRNEQGLLLEVEGIILDITERKVAEEKIALLARTDGLTGLANRATMIERLHQAFAAARRGAAPFAMFYLDLDHFKRINDTLGHPIGDLLLQEVAARLKGCTRENDVVARLGGDEFAILQLDVHEATHCAALAGKIRDALVAPYFLDGNDVRISVSIGISLYTPQSLSADSLMAQSDMALYRSKEKGRNQYHFHNEEINQEVTDRVALANDLRQAIENNELHLHYLPEVDLGTGKILGMGVQVRWNHPERGWLEPAAFMPAAEKTGIIIGLGHWVLDQACQQMRQWRDQGMAPPVIAIDLSLTQLKTGPELIYDVLRTTARWELAPWDLRFDVTEATLAQTKWTHNDVLPRLCELGVQVAIDDFGTEYSSFDYLKTYRVNHLKLAQRFLDSANADPENATTLRAIINFARDVGIGIIAEGVETQEQRTTLMSSGGSMQAQGHYFSTVVDSDQAAALLKAGTIVPVADHWTRPASQLSESNPNANANANANA
D1-35_015021368rcsC_6Sensor histidine kinase RcsCATGGAAGATCAGTCGTCGAACGTTCCTGCTGCGAAGCCGACGGTGTTGCTGGTGGATGACGAAGAGTCGATTCTCAACAGCCTGCGTCGGCTGTTGCGCAGCCAGCCGTATGAAATCCTGCTGGCCGACAGCGGTGCGAAGGCCTTGGAAATCCTCAAGGAGCGGCCGGTCGACCTGGTGATGACCGACGCCCGGATGCCGAACATGGACGGCGCCACGCTGCTGGCGGAAATCCGCAAGCTGTATCCATCGACCTTGCGCATCCTGCTCACCGGCTACGCCGACGTGGACATGATGACCAAGGCCATCAACGAGGGGCAGCTCTATCGCTACCTCAGCAAACCCTGGAATGACGAGGAACTGGTGCAGGCCCTGCGCCAGGCCTTGGCCCACCAGCATTCGGAAAGCGAGCGTCAGCGCCTCGAAGCGTTGAACCGCGAGCAGAACCAGCAACTCAAGACCCTCAACGCCACGCTGGAAAAACGCGTGGCGTCGCGCACCGCCGAGCTGCAGCAGACCGCCGATATGCTCGACCTGGCCTACGAAGAGCTCAAGCGCAGCTACGTGACTGGCACCGAAGTGTTCTCGCTGATCGCCAACCTGCGCCTGCCCAAGGCCAAGCAGACCAACCGGCAGATCATCGAGTTGATCCGGGTCTACAGCCGGCTCAACTTTCTCGACGAGTCCACCGACCGCGACCTGACCATGGCCGCCGCCCTCTACAACATCGGCAAGCTGAGCTGGACCGATAACATGATGGTCACGCCCGCCGACATGCTGCACCACAGCGAACTGGAACTGTACCGGGCCTATCCGAAGCAGAGTGAATCGCTGCTGATGACCCTCGACCCGATGAAGGACGCGGCGCGCATCATCCTCCATCACCAGGAGCGCTGGGACGGCAGCGGTTTCCCCGATCACCTCAAGGGCGAGGCGATTCCGTTCGGTTCGCGGCTGTTGAAACTGGCGGTGGATTTCATCGAATTGCAGCGTGGGTTGATCCTGGAGCGGCAGATGAACAGCGATGAAGCGCTGGTCTACATCCGCAAATACGCCGGCAAGCTGTACGACCCGAACATGGTCGAGGACTTCATCAAGGCCTGCGGCGAATACCTGGAAGACGTGACCCTGTCCGACCCGACGGTGAAGGTCGTGACTACCCGCGAGCTGGCGGCCGGCATGGTCCTGGCGCGCAATCTCAATGCCGACAACGGCATGCTGTTGCTCAATGCCGGCAAGGTCATGAGTGCTCCGCTGATTGAAAAACTCATCGCCTTCGAGGCGATGGAAGGGGCGCGGTACAGCGTGTTCGTCAAGATCCCCGAGGAGGAAGCGGATCCTTCGGTGCCGAAGCCGATTTTGGGGTGAMEDQSSNVPAAKPTVLLVDDEESILNSLRRLLRSQPYEILLADSGAKALEILKERPVDLVMTDARMPNMDGATLLAEIRKLYPSTLRILLTGYADVDMMTKAINEGQLYRYLSKPWNDEELVQALRQALAHQHSESERQRLEALNREQNQQLKTLNATLEKRVASRTAELQQTADMLDLAYEELKRSYVTGTEVFSLIANLRLPKAKQTNRQIIELIRVYSRLNFLDESTDRDLTMAAALYNIGKLSWTDNMMVTPADMLHHSELELYRAYPKQSESLLMTLDPMKDAARIILHHQERWDGSGFPDHLKGEAIPFGSRLLKLAVDFIELQRGLILERQMNSDEALVYIRKYAGKLYDPNMVEDFIKACGEYLEDVTLSDPTVKVVTTRELAAGMVLARNLNADNGMLLLNAGKVMSAPLIEKLIAFEAMEGARYSVFVKIPEEEADPSVPKPILGNANANANANA
D1-35_01503417hypothetical proteinATGACCATTGCTCTTATCCGTATCGCCGCCGCCCTGCTCATCGGCCCTGACGGCCGGACCCTGCTGGTACGCAAGCGCGGCACCCAGGCCTTCATGCAACCGGGTGGCAAGATCGAAGCCGATGAACAACCGGTCCAGGCCCTGGCTCGGGAGCTGGAGGAGGAACTCGGCCTGAGGATCGACCCGGCGCATGCTCGTCACCTTGGACAGTTCAGCGCGCCGGCCGCCAACGAGCCGGGTTTTACCGTGCAGGCCGAAGTGTTTTTGCTGGACATCGATGCTCGGGTTTCTCCCGCCGCCGAGATCGAGGAAGTGTGTTGGATCGATCCGGCCGGTACCGGCGATTTGTTGCTGGCGCCGTTGACAGGCGAGGTGATCCTGCCGTTTTATCGAGCCACTTGTCTCGCGACTTGCTGAMTIALIRIAAALLIGPDGRTLLVRKRGTQAFMQPGGKIEADEQPVQALARELEEELGLRIDPAHARHLGQFSAPAANEPGFTVQAEVFLLDIDARVSPAAEIEEVCWIDPAGTGDLLLAPLTGEVILPFYRATCLATCPGPT0021230_1511DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021230-udk-K00876NANA
D1-35_01504639rhtB_1COG1280Homoserine/homoserine lactone efflux proteinATGATTCCATTGCCGGACCTGCTGATTTTCGCCGCCGCCGCGTTGTTGATGGTGCTCACGCCCGGCCCGAACATGATCTACCTGATTTCCCGTTCGATCTGCCAGGGCCGCAAGGCCGGCGTCACCTCCTTGCTTGGCGTGGTGGCGGGCTTCTTCGTGCACATGTTCGCCGCGGCGGCGGGGCTGACGGCGGTGTTCCTGGCAGTGCCGATGGCTTATGAAATCCTCAAGTGGGCCGGCGCGCTGTATCTGCTCTGGCTGGCCTGGCAAGCGGTGAAACCGGGGGCTCGCTCGCCTTTTCAGGCCCAGCAGTTGCCGGCGGACTCGACCCGCAAGCTGATCACCATGGGTTTTCTCACCAGCGCCCTGAACCCGAAGATCGCGGTGTTCTACCTCTCGGTGTTTCCGCAGTTCATCAGCCCGGAGCACGGCTCGCTGTTCACCCAGAGCATCATCCTCGGGCTGACTCAGATCAGCGTGAGCTTCAGCGTCAACCTGCTGATCGCGCTGTTCGCCGCCGGCATCGCCTCGTGGTTTGTCCACAACCCGACCTGGCTGGCGGCGCAGCGCTATTTCATGGGGTTTGTACTCGGCGCACTGGCGCTGCGACTGATGCTTGAGCAACGGCGTTCGGCATGAMIPLPDLLIFAAAALLMVLTPGPNMIYLISRSICQGRKAGVTSLLGVVAGFFVHMFAAAAGLTAVFLAVPMAYEILKWAGALYLLWLAWQAVKPGARSPFQAQQLPADSTRKLITMGFLTSALNPKIAVFYLSVFPQFISPEHGSLFTQSIILGLTQISVSFSVNLLIALFAAGIASWFVHNPTWLAAQRYFMGFVLGALALRLMLEQRRSANANANANANA
D1-35_01505498hypothetical proteinATGAACATCCGACGGCTGAAGGTGGCTGATGCCCAGGGCTATCGGGAGTTGATGCTCCAGGCCTATGAGTTGCATCCAGAGGCTTTCACCTCCAGTGCCAGTGAACGGGCGACGCTGCCCATCAACTGGTGGGAGTCACGCCTGACCAGCCGGCTCGATGTGATCCTCGGGGCGTTCGTGGTGGACGAACCGGTTGGTATCGTCGGCCTGTCCCTGGAGCATCGGTTGAAGGCCAGGCACAAGGCGACCCTGTTCGGCATGTACGTCGCCGCCGCCCATCGCCAAGGGGGGCTTGGCCAGCAACTGGTCCAGGCGGCCCTCGACGAAGCCCGTCGTCACGCCTTTCTGCGGCTGGTGCAACTGACCGTCACCGCCGGCAACGACCCGGCCGTCAAACTCTACCAGCGCAGCGGCTTCGTTTTGTACGGGCTCGAACCGATGGCGATTCGCGTGGGCGATGAGTATTTCGACAAGATCCACATGTGGCTTGAACTCTGAMNIRRLKVADAQGYRELMLQAYELHPEAFTSSASERATLPINWWESRLTSRLDVILGAFVVDEPVGIVGLSLEHRLKARHKATLFGMYVAAAHRQGGLGQQLVQAALDEARRHAFLRLVQLTVTAGNDPAVKLYQRSGFVLYGLEPMAIRVGDEYFDKIHMWLELNANANANANA
D1-35_01506918metRHTH-type transcriptional regulator MetRGTGCTTGAACTCCGTCACCTGAAGACCCTGCACGCCCTGCGCGAAGCCGACAGCCTGGTGGAGGCCGCCGAACGCCTGCATCTGACCCAGTCCGCGCTGTCCCACCAGTTCAAGGAACTGGAGGAGCGCCTGGGCATGCAGCTGTTCGTGCGCAAGACCAAACCGGTCCGGTTCACCAGCGCCGGCTTACGCCTGTTGCAACTGGCGGATGCCGCCCTGCCATTGCTGCGCAGCGCCGAGCGGGACATCGCGCGGCTGGCCGGCGGCACCGCCGGGCGTCTGCACATGGCCATCGAGTGCCACAGCTGCTTCCAATGGCTGATGCCGACCATCGACCAGTTCCGCGATGCCTGGCCGGAAGTCGAGCTGGACCTGGCCTCGGGCTTCGCCTTCGCCCCGCTGCCGGCCCTGGCCCGGGGCGACCTCGACCTGGTGGTCACTTCCGATCCGCTGGAGCTGGCGGGCATCACCTATGTGCCGCTGTTCACCTACGAGGCGATGCTCGCGGTGGCGAACCAGCATCGACTGGCGGGCAAACCGTACATCGTGCCCGAAGACCTGGTCAGCGAAACCCTGATCACCTACCCGGTGGAGCGTGATCGGCTGGACATCTTCACCCGTTTCCTGGAGCCGGCCGACATCGAACCGGCCCAGGTTCGCACCTCCGAGCTGACGGTAATGATGATGCAACTGGTTGCCAGCGGCCGGGGCGTCTGCGGCATGCCTCACTGGGCACTGCATGAATACAGCTCACGGGGCTACGTGAAGGCCAAGCGGCTGGGGGAGAAGGGTCTGTTCGCCACGCTCTACGCGGCGGTGCGCACCGACATGCTCGACGCGCCGTACATGCGCGATTTTTTGCTGACGGCCAAGGACACATCATTCTCGACACTCGACGGCGTCAGTGCCGTGCGCTGAMLELRHLKTLHALREADSLVEAAERLHLTQSALSHQFKELEERLGMQLFVRKTKPVRFTSAGLRLLQLADAALPLLRSAERDIARLAGGTAGRLHMAIECHSCFQWLMPTIDQFRDAWPEVELDLASGFAFAPLPALARGDLDLVVTSDPLELAGITYVPLFTYEAMLAVANQHRLAGKPYIVPEDLVSETLITYPVERDRLDIFTRFLEPADIEPAQVRTSELTVMMMQLVASGRGVCGMPHWALHEYSSRGYVKAKRLGEKGLFATLYAAVRTDMLDAPYMRDFLLTAKDTSFSTLDGVSAVRNANANANANA
D1-35_01507699metECOG06205-methyltetrahydropteroyltriglutamate--homocysteine methyltransferaseATGGCCCTGGCCCATACCCTCGGTTTTCTTCGCATCGGCGCCGATCGCCGCCCCGTGCGGCAAGCCCACAACCGGGTTCCGGAGTTTACCGCCGGGCAGACCTTCGCGCTGAGCTGGGAGCACCTGTTCGACGAGGTCGACGAAGCCCATGCGCTGGGGCATCGAGTCAAGCCGGCGATCATCGGCCCGCTGACGTACTTGTGGCTGGGCAAGGCCAAGGGCGGTGACTTCGACAAACTCGACCTGCTGGAAAGCCTGTTGCCGGTTTACGGCGAAATCTTCAATCGCCTCAAGGCCCAGGGCGTGGAGTGGGTGCAGATCGATGAACCGATCCTCACCCTCGACCTGCCGCTGGCCTGGCGAAGCGCCTTCGAGCGGGCCTACCACATCCTCCAGTATTCACCGCTGAAAAAATTGCTGGCGACCTGTTTCAGTGGCCTGCAAGACAACCTCGGCCTGGCGGCGGGCCTCCCGGTGGATGGGCTGCACGTCGACGCCGTGCGTGCGCCGGAACAACTCGGCCAGGTGCTCGATCGCCTGCCGACCTACAAGATCCTGTCGGTGGGCCTGGTCAATGGCCGCAACGCCTGGCGCTGTGAACTGGAACAGGCGCTGGCACAATTGCGACCGGCCCGGGAACGCTTCGGCGAGAACCTTTGGGTCAGTACCCTCGCCACGTGTGCTCAGGGCTTCAGATAAMALAHTLGFLRIGADRRPVRQAHNRVPEFTAGQTFALSWEHLFDEVDEAHALGHRVKPAIIGPLTYLWLGKAKGGDFDKLDLLESLLPVYGEIFNRLKAQGVEWVQIDEPILTLDLPLAWRSAFERAYHILQYSPLKKLLATCFSGLQDNLGLAAGLPVDGLHVDAVRAPEQLGQVLDRLPTYKILSVGLVNGRNAWRCELEQALAQLRPARERFGENLWVSTLATCAQGFRNANANANANA
D1-35_015081020rdmCAclacinomycin methylesterase RdmCATGCGTGTATTCATTTTTCTGGCCGCATTGTTGTGCGGCCTGCCGTCGTTGGCGGCTTCTCGTTGTGATGTCAATGTCGCGACCCAACGGGTCGACCTGGACCAGGTAAGCCTGGCGTACCAGAGCATCGGCCGTGCTTCGGATCCCGCGCTGCTGCTGGTGATGGGGCTGGGCGGTCAGTTGATCCATTGGCCGGACGAAGTGGTGGTGGCGCTGTGCGAACAGGGTTTCCGGGTGATTCGCTACGACAACCGGGATGTGGGCCTGTCCGCCTGGCGCCAGGCCCCAGGCACTGCCAACCTGACCTTCGAAGCCTTGCGCTACAAGCTTGGCTTGCCGGTGGCCGCGCCTTATACCTTGACCGACATGGCCGCCGATGGCCTGGGCTTGATGGATGCCTTGCAGGTGCAAAGCTTCCATGTACTGGGCGTAAGCATGGGCGGGATGATCGCCCAGCACATGGCGGCGATGGCGCCGCAACGGGTCGAGAGCCTGACCCTGATCATGACCAGTTCCGGCGCCGCAGGCTTGCCGGCGCCCAGTGAAACGCTGGTGCAGTTGCTGTCACGACGCAGCGCGCCGAATCGTGAAGTGGCGCTTGAGCAACAGGCCGACCTGCTCGCCGCGCTGGGCAGCCCGATGGTGGTCGATGACCGGCAGGCCTTGCTGCATCAAGCCGCCGTGGCTTACGACCGGGCCTTCAACCCCGAAGGTGTGAAGCGTCAGATCATGGCAATCCTGGCCGAGCCGAGTCGGGTGGCGCTGCTCAATCAATTGCAGGTGCCGACCCTGGTGGTCCATGGCACCGCCGATCCGTTGCTGCCGGTGATGCATGGTGTGCATCTGGCGGCGCATATTCGCGGCAGCCAGTTGAAACTGATCCCAGGCCTGGCCCATCGCTTTCAAGAGGCCTTCAAGGAACCCTTGCTGGGCGCGGTGTTGCCCTACTTGCAGCAGCACCGCGAAGACACCTCGCACTGGGCGCAGATCGAGCCGGCGCAGGCACCTAATCTGCTTTAAMRVFIFLAALLCGLPSLAASRCDVNVATQRVDLDQVSLAYQSIGRASDPALLLVMGLGGQLIHWPDEVVVALCEQGFRVIRYDNRDVGLSAWRQAPGTANLTFEALRYKLGLPVAAPYTLTDMAADGLGLMDALQVQSFHVLGVSMGGMIAQHMAAMAPQRVESLTLIMTSSGAAGLPAPSETLVQLLSRRSAPNREVALEQQADLLAALGSPMVVDDRQALLHQAAVAYDRAFNPEGVKRQIMAILAEPSRVALLNQLQVPTLVVHGTADPLLPVMHGVHLAAHIRGSQLKLIPGLAHRFQEAFKEPLLGAVLPYLQQHREDTSHWAQIEPAQAPNLLNANANANANA
D1-35_01509882gcvA_1Glycine cleavage system transcriptional activatorATGAAACGACTTCCTCCGCTGCCGGCGCTGCACACCTTCCTGATCACCGCCCAATGTTGCAATTTCACCCGCGCGGCGGAACTGCTGCATATCACTCAAGGTGCGGTGAGCCGACAAATTGCCGGACTGGAAGCGCACCTGGGTTACGCGCTGTTTCACCGCCAGGCGCGTGGCCTGAGCCTGACCGCCGAAGGCCAGGCGTGGCTGCCGCGGGTGCAGCAGGTGTTCGGCCTGATCGGCGAGGCGCTGGAGCAGATCGGCGAGAAACGCCAGGCCCTGCAACTCAAGGCGCCGACCTGCGTGATGCGCTGGTTGCTGCCGCGCCTGTTGCAATGGCAAAAGGAGCGGCCAGACGTGCCGGTGGAGCTGACCACCACGGTCCGGCACGGCGTGAATTTCCAACAGGAAACCTTCGACGCGGCGGTCGTCTACGGCCCGCCGCCCGATGCCTCGTTGGCCCGCCTGCACCTGTTCGATGAACAACTGACGCCGGTCTGCTCCCCGCCGCTGGTGGAAGGCCCCGCACCGTTGCGCTCGCCCGCCGACCTGCAACAGCACTTGCTGCTGCACCCCACCACCGACGAGCGCGACTGGAACGCCTGGCTCGCCGAGGCCGGCGTCCACCTGAACAACGTCAGCAAGGGCCAGCATTTCGAAACCCTGGACCTGGCGATGTCCATGGCGTCTCAAGGCACAGGCGTGGCAATTGGCGACTGGTCGCTGATCGGCGACGACCTCAGCGCCGGCAGGCTGGTGGCGCCGTTCGAATTGAAGGTCAGGACCGGGCTGGGTTATCACCTGGTTCATCCGCGCAAAGCCCAGGTGTCTGGCCAGTTGCAGGAACTGATGGAATGGCTGGTGGAGGAAGCTCACCGACGCTAGMKRLPPLPALHTFLITAQCCNFTRAAELLHITQGAVSRQIAGLEAHLGYALFHRQARGLSLTAEGQAWLPRVQQVFGLIGEALEQIGEKRQALQLKAPTCVMRWLLPRLLQWQKERPDVPVELTTTVRHGVNFQQETFDAAVVYGPPPDASLARLHLFDEQLTPVCSPPLVEGPAPLRSPADLQQHLLLHPTTDERDWNAWLAEAGVHLNNVSKGQHFETLDLAMSMASQGTGVAIGDWSLIGDDLSAGRLVAPFELKVRTGLGYHLVHPRKAQVSGQLQELMEWLVEEAHRRPGPT0026360_3731DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566NANA
D1-35_015101632aruICOG0028putative 2-ketoarginine decarboxylase AruIATGGCGACGTGCGGCGAAGTATTGGTCAAGTTACTCGAAGCTTATGGTGTGGAGCAGGTGTTTGGCATTCCTGGCGTGCACACCGTCGAGTTGTATCGCGGGCTGGCCAGTTCGAGCATCCGTCATGTGACGCCGCGTCACGAGCAAGGCGCCGGGTTCATGGCCGACGGTTATGCGCGGGTCAGCGGTAAGCCGGGGGTGTGTTTCATCATCACCGGGCCGGGCATGACCAACATCGCCACCGCCATGGGCCAGGCTTATGCCGACTCGATCCCGATGCTGGTGATCTCCAGCGTGCAGTCGCGCAGCCAGTTGGGCGGCGGGCGCGGCAAGCTGCATGAGCTGCCGAACCAGAGTGCGCTGGTGGGCGGCGTGGCGGCGTTTTCCCATACGTTGATGTCGGCTGCCGAGTTGCCCGGCGTGTTGGCCCGCGCCTTTGCCGTGTTCCAGGCCGGGCGCCCACGGCCGGTGCACATCGAAATCCCGCTGGACGTGCTGGTCGAGGACGCCGATGCGCTGTTGTGCAGCGCACCGGTGCACGTCAGCCGCGCCGGGGCTGCGCCAGACGCCGTGGAGCAGATGGCGGCATTGCTGGCGACGGCCAGACGGCCACTGATTCTTGCCGGCGGGGGCGCCATCGATGCAGCAGCCGAATTGACCGAACTGGCCGAACGCCTCGGTGCACCGGTGGCGTTGACCATCAATGCCAAGGGCTTGCTGGCGTCCTGGCACCCGTTGCTGATCGGCTCTACCCAGAGCCTGGTCGCGACCCGTGCGTTGGTGGCCGAGGCCGATGTGGTGCTGGCCATCGGCACCGAACTGGCCGAGACCGACTATGACGTGACCTTCGCCGGCGGCTTCGAGATTCCCGGTGCGCTGCTGCGCGTCGACATCGACCCCGACCAGACCGTGCGCAATTACCCACCGAAACTGGCGCTGGTGGCCGATGCGCGAAGTGCTGCTCGCGCCTTGCTCGACGCGCCGAGCCTGCAAGCGCCCGCCGCACGCCAGGACGACTGGGGAGTGGCGCGTGTGGCGCGGCTGTGGGCTGAACTCGACCGGCAATGGGACGCACCGACTCGCGCCCAGACCGTGTTTCTCGACAGCGTTTTACAGACGCTGCCCGAGGCGGTCTTTGTCGGCGACTCCACCCAGCCGGTGTACACCGGCAACCTCACTTTCAATCTCGAACAGCCGCGCCGCTGGTTCAACTCCTCGACCGGCTACGGCACCCTCGGCTACGCATTGCCGGCGGCGATCGGCGCCTGGCTTGGCGGTGTCGATAACGCCCATGGACGCCCGCCGGTGGTGTGCCTGATCGGCGATGGCGGCCTGCAATTCAGCCTGCCGGAACTGGCCAGCGCCGTGGAAGCGCGGGTACCGGTGATCGTATTGCTGTGGAATAACCAAGGCTACGAAGAGATCAGGAAGTACATGGTCAACCGTGCCATCGAACCGGTGGGCGTGGACATCTACACGCCGGATTTCATCGGCGTCGCCAAGGCGTTGGGCTGTGATGCCGAGGCGGTTGAGGATGTGCCGTCATTGCGGGTGGCGTTGCTTGCTGCACGTGAGCGGCGGGGGCCGACGTTGATCGAGATTGATCAGGACCTTTGGGCGGCGAAGTATTGAMATCGEVLVKLLEAYGVEQVFGIPGVHTVELYRGLASSSIRHVTPRHEQGAGFMADGYARVSGKPGVCFIITGPGMTNIATAMGQAYADSIPMLVISSVQSRSQLGGGRGKLHELPNQSALVGGVAAFSHTLMSAAELPGVLARAFAVFQAGRPRPVHIEIPLDVLVEDADALLCSAPVHVSRAGAAPDAVEQMAALLATARRPLILAGGGAIDAAAELTELAERLGAPVALTINAKGLLASWHPLLIGSTQSLVATRALVAEADVVLAIGTELAETDYDVTFAGGFEIPGALLRVDIDPDQTVRNYPPKLALVADARSAARALLDAPSLQAPAARQDDWGVARVARLWAELDRQWDAPTRAQTVFLDSVLQTLPEAVFVGDSTQPVYTGNLTFNLEQPRRWFNSSTGYGTLGYALPAAIGAWLGGVDNAHGRPPVVCLIGDGGLQFSLPELASAVEARVPVIVLLWNNQGYEEIRKYMVNRAIEPVGVDIYTPDFIGVAKALGCDAEAVEDVPSLRVALLAARERRGPTLIEIDQDLWAAKYPGPT0008185_9957DIRECT 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
D1-35_01511930rhaS_6HTH-type transcriptional activator RhaSATGTCGCCACTCGATCACGCCCACGTCCCGCTGGACACTTACCTGGAACAACAGCGCGCCGAGCTGGCATCGATCATCGAACGCAATACCAGCGAGGACGGCAGCTACGCCACCGCCATCGGCTCGCTGCACCTGTCGCGCCACAGCCAGCCGCATAAATTTGCCCCGGTGCTGGCCCAACCGGCGCTGTGCATCATGGCCCAGGGCAGCAAGCAGGTGCGCCTGGCAGACGAACTGTTCAACTACGACCCGTTGCACTACCTGGTGGTCTCGGTCTCGATGCCATTGAGCGGGTGCATCGCCGACGTCTCGCCCGAACAGCCGATCCTGGCGCTGCGCCTGGACATCGACCCGGCGGAAATCACCGCGCTGATCGCCGACGCCGGTCCCTTGGGCGTACCGACCCGCCCCGCTGGCCGCGGCCTGTATGTCGAACGCCTGGACACGCCGATGCTCGATGCCGTGCTGCGCCTGGCACGGTTGCTGGACAGCCCGAAAGACATCGCCATGCTCGCGCCACTGGTGCGCCGGGAAATCCTCTATCGCCTGCTGCGCAGCCCGCAAGGCTACCGGCTGTATGAAATCGCCATTGCCAACAGCCAGAGCCATCGCATCAGCCAGGCGATCAAATGGCTCAACGGCCATTTCGAACAGCCGCTGCGCATCGACGACCTGGCCCGGGAAGTCAACCTCAGCGTCTCGACTCTGCACCATCGTTTCAAGGCAATGACCGCCATGAGCCCGTTGCAGTACCAGAAGCAATTGCGCCTGCAGGAAGCCCGTCGCCTGATGCTGGCCGAAGGGCTGGAAGCCTCGGCGGCAGGGTATCGCGTGGGTTATGAAAGCCCGTCGCAGTTCAGCCGCGAATACAGCCGGCTGTTCGGCGCGCCGCCGCTGAGGGATCTGGCGCGGTTGCGGATGACCGTTTGAMSPLDHAHVPLDTYLEQQRAELASIIERNTSEDGSYATAIGSLHLSRHSQPHKFAPVLAQPALCIMAQGSKQVRLADELFNYDPLHYLVVSVSMPLSGCIADVSPEQPILALRLDIDPAEITALIADAGPLGVPTRPAGRGLYVERLDTPMLDAVLRLARLLDSPKDIAMLAPLVRREILYRLLRSPQGYRLYEIAIANSQSHRISQAIKWLNGHFEQPLRIDDLAREVNLSVSTLHHRFKAMTAMSPLQYQKQLRLQEARRLMLAEGLEASAAGYRVGYESPSQFSREYSRLFGAPPLRDLARLRMTVNANANANANA
D1-35_01512354hypothetical proteinATGACTACACAGATCCCCGTCAGTCACATGGCTTTCGTGCGGGCACGAGCCGGCCGCAGCCAGCAATTGGGTGCGCGCCTGAGTACCTTGATCACCCCGTCGCGGCAAGCTCCCGGTTGCCTGCACTTCGCCTTGCAGCAATCGCAATGCGACGCCGACTTGTGGCTGGTGTCCGGGCTGTGGACCCACCAGCAGGCGATGGAGGCCTACTTCAATTCCCCGGCGATGGCGATCTTCGCCGAGCTGGTGCAGGACCTGGTGGTGAGCAGCCTGGATTTCCATACCTTTCGCGAAGTGTCTGCCGCCAAGGCGACCGAAGGGTGCATGGCGAAGGTACACAAACTGGCCGGTTGAMTTQIPVSHMAFVRARAGRSQQLGARLSTLITPSRQAPGCLHFALQQSQCDADLWLVSGLWTHQQAMEAYFNSPAMAIFAELVQDLVVSSLDFHTFREVSAAKATEGCMAKVHKLAGNANANANANA
D1-35_01513234hypothetical proteinATGGCACGCAAAGCCTTTGAAACTTTTGAAGCTGTTTCCGCTGTTGTTCCCAAGGAGGGTGGCGGCTATTACGCAGCCATCGCCACCAAGGCCATCGGCAGTCCCGACAAGCCTCGCTTCAACAAAGTGCTCGAAGAGCAGACGTTCGAGACTGCTTTCAAAGCCGATGAAGCGGCTGCCCAGCAGTTGACTCACCTGCAGGGTGTCGATGGCGAAGGCGGCCTGATCTGGTAAMARKAFETFEAVSAVVPKEGGGYYAAIATKAIGSPDKPRFNKVLEEQTFETAFKADEAAAQQLTHLQGVDGEGGLIWNANANANANA
D1-35_01514621hypothetical proteinATGCCCGATGACATCCATTACTACGAACCCGCCAACGGTCACGGCCTGCCACACGATCCGTTCAACGCGATCATCGGTCCACGGCCCATTGGCTGGATTTCTTCCCAGGACGGCGAAGGACGCCTGAACCTGGCGCCTTACAGTTTCTTCAACGCCTTTAACTACGTTCCGCCGATCATCGGTTTCTCAAGTGTCGGGCGCAAAGACAGCCTGAACAATATCGAGCAGACCGGGGAGTTCGCCTGGAACCTCGCCACCCGCCCGCTGGCCGAGCAGATGAACCAGAGCTGCGCAATGGTCGCGCCAGAGGTCGATGAGTTCGAACTGGCAGGTTTGACAACCGCCCCGTCGCGGGTGATCCAGGTGCCGCGCGTGGCAGAGAGCCCGGTATCCTTCGAATGCAAAGTCACGCAGATCATCCAACTGCAACGTGCCGACAAGGCACTTGTACCGAGCTGGCTGATCCTCGGCGAAGTCGTCGCCGTGCACATCGCCAAGTGGCTGTTGAAGGATGGGGTATACGACACCGCCGCCGCCGAGCCGATTTTGCGTGGTGGCGGGCCGGCGGATTATTTCCAGCTGGGGCCGGAGGCGTTGTTCAGGATGCATCGCCCGAAGTAAMPDDIHYYEPANGHGLPHDPFNAIIGPRPIGWISSQDGEGRLNLAPYSFFNAFNYVPPIIGFSSVGRKDSLNNIEQTGEFAWNLATRPLAEQMNQSCAMVAPEVDEFELAGLTTAPSRVIQVPRVAESPVSFECKVTQIIQLQRADKALVPSWLILGEVVAVHIAKWLLKDGVYDTAAAEPILRGGGPADYFQLGPEALFRMHRPKNANANANANA
D1-35_01515219hypothetical proteinATGAAAACCCAACTCATTTTCGCCCTGACCCTCTCCGTATTGGCCACCAGCGCTTTTGCCGACGACGGCTTCGACCGCACCGGCACCGCCGCTTTTATCGCCGGCACCCATGACCGTAGCGGCTCGGCCGCTGTTGCCAGACAAGATGAAAATCACGCCACCGAGCCGACCGTCGCAACACAGGGCGCCGACCGCGCCGATGCGGCGTCCACCAACTGAMKTQLIFALTLSVLATSAFADDGFDRTGTAAFIAGTHDRSGSAAVARQDENHATEPTVATQGADRADAASTNNANANANANA
D1-35_015161320kgtP_1Alpha-ketoglutarate permeaseATGGATAACTCCAACGCCCTGCCCATTGGGTCGGCTGCCGTGCCCGCCCGTGAAAGAACCACCGCCAGCCGGATCAAATCGATCTTCAGCGGCTCGGTCGGCAACATGGTCGAGTGGTACGACTGGTACGTCTACGCTGCTTTCTCGTTGTACTTCGCCAAAGCCTTCTTCCCCAAGGGTGACACCACCGCCCAACTGCTCAACACCGCCGCGATCTTCGCCGTCGGCTTCCTGATGCGCCCGATCGGCGGCTGGCTGATGGGCCTGTACGCCGACCGCGCCGGCCGTAAACGCGCGTTGATGGCCTCGGTGTACCTGATGTGCTTCGGCTCGCTGATCATCGCCCTGAGCCCGAGCTACGAAACCATCGGCGTCGGCGCGCCGATCCTGCTGGTCTTCGCCCGCTTGCTCCAAGGCTTGTCGGTGGGTGGCGAATACGGCACGTCGGCCACCTACCTGAGCGAGATGGCGACCAAGGAACGACGTGGTTTCTTCTCCAGCTTCCAGTACGTGACCCTGATCTCCGGCCAGCTCATCGCCCTCGGCGTGCTGATCGTGCTGCAGCAGGTCCTCACCACCGAGCAACTCTACGCCTGGGGCTGGCGCATCCCGTTCGCCATCGGCGCGCTGTGCGCAGTCGTGGCGCTGTACCTGCGTCGCGGCATGGAAGAAACCGAGTCGTTCACCAAGAAGGAAAAAGCCAAGGAAAGCGCGATGCGCACCTTGATGCGTCATCCCAAGGAACTGCTGACCGTGGTCGGCCTGACCATGGGCGGTACGCTGGCGTTCTACACCTACACCACCTACATGCAGAAGTACCTGGTTAATACCGTCGGCATGAGCATCTCCGACTCCACCACCATTTCCGCCGCCACGCTGTTCCTGTTCATGTGCCTGCAACCGATCATCGGTGGGCTGTCGGACAAGATCGGTCGCCGGCCGATCCTGATTGCCTTCGGCATCCTGGGGACGTTGTTCACGGTGCCGATCCTCACCACCCTGCACACCATCCAGACCTGGTGGGGCGCGTTCTTCCTGATCATGGCCGCGCTGATCATCGTCAGCGGCTACACCTCGATCAACGCGGTGGTGAAAGCCGAGCTGTTCCCTACCGAGATCCGCGCCCTCGGCGTCGGCCTGCCGTATGCCCTGACCGTATCGATCTTCGGCGGCACCGCCGAATACATCGCGCTGTGGTTCAAGAGCATCGGCATGGAAACTGGCTACTACTGGTACGTGACAGGCTGCATCGCGGTATCGCTGCTGGTCTACATCACCATGAAAGACACCCGCAAGCACTCGCGGATCGTGACGGACTGAMDNSNALPIGSAAVPARERTTASRIKSIFSGSVGNMVEWYDWYVYAAFSLYFAKAFFPKGDTTAQLLNTAAIFAVGFLMRPIGGWLMGLYADRAGRKRALMASVYLMCFGSLIIALSPSYETIGVGAPILLVFARLLQGLSVGGEYGTSATYLSEMATKERRGFFSSFQYVTLISGQLIALGVLIVLQQVLTTEQLYAWGWRIPFAIGALCAVVALYLRRGMEETESFTKKEKAKESAMRTLMRHPKELLTVVGLTMGGTLAFYTYTTYMQKYLVNTVGMSISDSTTISAATLFLFMCLQPIIGGLSDKIGRRPILIAFGILGTLFTVPILTTLHTIQTWWGAFFLIMAALIIVSGYTSINAVVKAELFPTEIRALGVGLPYALTVSIFGGTAEYIALWFKSIGMETGYYWYVTGCIAVSLLVYITMKDTRKHSRIVTDPGPT0001525_592DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_KETO-|OXOGLUTARATE_TRANSPORT,PGPT0001525-kgtP-K03761NANA
D1-35_015171335dctD_1C4-dicarboxylate transport transcriptional regulatory protein DctDATGCTTGATTCGGTCATAGTCGTCGATGACGAGAGCAGTATCCGCAGTGCCGTGGAGCAGTGGCTGAGCCTGTCCGGATTCCGCGTGCAATTGTTCAGCCGCGCCGAAGACTGCCTGGTGCAGTTGCCGGAGAATTTTGCCGGGGTGATCCTGAGTGACGTGCGCATGCCTGGGCTCAGCGGCCTGGAACTGTTGGCCGAAGTACGCAAGCGCGACCCCGACCTGCCGGTGATCCTGTTGACCGGTCACGGCGATGTACCGATGGCGGTGGAAGCCATGCGCGACGGGGCCTACGACTTCCTGGAAAAACCCTTCAGCCCTGAAGCCCTGCTGGGCAGCCTGCATCGCGCCCTCGATAAACGTTTCCTGGTGCTGGAGAACCGCCGGCTGCACGAGCAGGCCGACGCCAGGGCCCGGCTGGACACCACGCTGCTGGGCGTCTCCCGGCCTTTGCAGAACCTGCGCCGCCAGGTGCTGGACCTGGCGACCCTGCCGGTCAACGTGTTGATTCGCGGCGAAACCGGCAGTGGCAAGGAACTGGTCGCCCGCTGCCTGCATGATTTCGGCCCAAGGGCGAGCAAGCCTTTCGTGGCGCTGAACTGCGCGGCCATTCCCGAGCCGCTGTTCGAGGCCGAACTGTTCGGCCATGAAAGCGGCGCGTTCACCGGCGCCCAGGGCAAGCGCATCGGCAAGCTCGAATATGCCGATGGCGGCACACTGTTTCTTGATGAAATCGAAAGCATGCCCCTGGCGCAACAGGCCAAGTTGCTGCGGGTTCTGCAGGAAAAGAAACTCGAGCGCCTGGGCTCCAACCAGAGCATCCCGGTGGACCTGCGCATCATTGCCGCGACCAAACCGGACCTGTTGGACGAAGCCCGTGCCGGGCGCTTTCGCGAAGACCTGGCCTATCGCTTGAACATTGCCGAACTGCGCCTGCCGCCGCTGCGTGAACGGCGCGAGGACATTCCGCTGCTGTTCGAACATTTCGCCCACAGCGCCGCCGAACGCCTGGGCCGCCCGGCAACGCCGCTGAGCGGCCCGCAACTGAGCCATTTGCTCAGCCATGACTGGCCAGGCAATGTCCGCGAACTGGCCAACGTCGCCGAACGCCAGGTGCTGGGCCTGGATCAACTGCCCGTCGAGGACGCGGCGCCCGGCCAATCCCTGGCGGCCCGGCAGGAAGCCTTCGAAGCGCAATGCCTGCGCGCCGCCCTCACGCGGCACAAGGGCGACGTGAAAGCCGTGCTCGAAGAACTGCAACTGCCGCGCCGTACCTTCAATGAAAAGATGCAGCGGCATGGGTTGAATCGGGAGATGTTTTTGCAGGAGCGCTGAMLDSVIVVDDESSIRSAVEQWLSLSGFRVQLFSRAEDCLVQLPENFAGVILSDVRMPGLSGLELLAEVRKRDPDLPVILLTGHGDVPMAVEAMRDGAYDFLEKPFSPEALLGSLHRALDKRFLVLENRRLHEQADARARLDTTLLGVSRPLQNLRRQVLDLATLPVNVLIRGETGSGKELVARCLHDFGPRASKPFVALNCAAIPEPLFEAELFGHESGAFTGAQGKRIGKLEYADGGTLFLDEIESMPLAQQAKLLRVLQEKKLERLGSNQSIPVDLRIIAATKPDLLDEARAGRFREDLAYRLNIAELRLPPLRERREDIPLLFEHFAHSAAERLGRPATPLSGPQLSHLLSHDWPGNVRELANVAERQVLGLDQLPVEDAAPGQSLAARQEAFEAQCLRAALTRHKGDVKAVLEELQLPRRTFNEKMQRHGLNREMFLQERPGPT0017310_981DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017310-dctD-K10126NANA
D1-35_015181767dctB_1C4-dicarboxylate transport sensor protein DctBATGCTGCCGACTCCTCGTACCTTGCGCCTGCTCCTGTCCATCGCTTTGATTCTAATCGGCGCAGCGTTGGCCGCCACCCTGGCCGTACGCCACGCCGAACGCGAGGCTCTGAAGGAAGACGCCAGCCGTGCCAGCCAACAATTGGCGTTGTACGCCAATTCCTTGCACACCCTGATCGAACGCTACCGCGCCCTGCCCTCCGTGCTGGCGCTGGACCCACAACTGCGCGATGCCCTGAAGGGCCCGGTCAGTGCGGCGCAACAGGATGAACTGAATCGCAAGCTGGAAAAGATCAACGGCGCCGCGCAGTCCTCCACCCTGGAATTGCTGGACCATACCGGCCTGGCCGTAGCGGCCAGCAACTGGCGGCTGCCGAGCAGCTATGTCGGCCACAACTATGGTTTTCGTCCCTACTTCCTCCAGACCCGCACCCAAGGCACCGGGCGGTTTTATGCCGTGGGCGTGACCAGTGGTATCCCTGGCTATTTCCTGTCCAGCGCGGTGACCGGCGACAACGGCGAGTTCCTCGGCGCCATGGTGGTGAAGCTGGAGTTTCCGGAGCTCGAACGCGAGTGGCGCCAGGGCAGCGACACGCTGTTGGTCAGCGATGCGCGCGGCATCATTTTCATCGCCAACCGGCCGGGCTGGCGTTATCGCCACCTGCGCCCACTGGCCGACAGCGACCGCGCCGAACTCAAGGCTACCCGTCAATACGACAAGCAACCGTTGCAGCCCCTGGCCTTCGATCCGCTGCGACGCTTCGACGACAACAGCCATCTGGCCCGGGTCGAAGCGCCCGATGGCACGGCGGACTATCTCTGGGAATCCCTGCCGTTGACCGGCGAAGGCTGGACCTTGCATTTGTTGCGCAGGCCGCAGATCGCCTTTGAAGACCTGCGCAACGCCGGGCTCGCCGCCGCCGGGTTGTGGCTGGCGCTGGTGTTCCTGTTGCTGTTTCTCAACCAGCGCTGGCGCCTGGCAAGACTGCGTCAACGCAGCCGCGAGGAACTCGAACGGCTGGTGGAGGAACGCACGCGTGAACTGCGCACTGCCCAGGACGGCCTGGTGCAATCGGCCAAGCTCGCGGCCCTGGGGCAGATGTCGGCGGCACTGGCCCACGAGATCAACCAGCCGCTGACCGCCCAGCGCATGCAGCTGGCGACCCTGCGCCTGTTGCTTGACCATGGCCGGATCGATGACGCCTACAAGGCGCTCAAACCGGTGGATGACATGCTCACACGCATGGCCGCCCTCACCGGCCACCTCAAAACCTTTGCCCGCAAAAGCCCGAGCGGCCTGCGAGAGCGCCTGGACCTGGCAGCGGTGGTCGACCAGGCCCTGCAATTGCTGGAGACACGCCTGCGCGATGAACACGTCAGCACGGTGTTGCACCTGGCCCGCCCGGCCTGGGTTCGCGGCGACGCGATCCGCCTCGAACAGGTGCTGATCAACCTGCTGCGCAACGCTCTCGACGCGATGGTCGACCAACCGATCAAGCGCCTGGAAGTGCGCCTGCAGGCCGATGAGCAGTTGTGGTGCCTGACGGTGAAAGACAGCGGCGGCGGAATTGCCGAAGAGCACCTGGCCCAGGTGTTCGACCCCTTTTTCACCACCAAGGCCGTCGGCGATGGCCTGGGCCTGGGCCTGGCGGTGTCGTTTGCGATCATTCATGAATCCGGCGGGCGGCTGACAGCGGGCAATCACGAAAACGGCGCGGTATTCTGCGTCACCTTGCCCATCGATCCGGAGGCGCCGCTGCATGCTTGAMLPTPRTLRLLLSIALILIGAALAATLAVRHAEREALKEDASRASQQLALYANSLHTLIERYRALPSVLALDPQLRDALKGPVSAAQQDELNRKLEKINGAAQSSTLELLDHTGLAVAASNWRLPSSYVGHNYGFRPYFLQTRTQGTGRFYAVGVTSGIPGYFLSSAVTGDNGEFLGAMVVKLEFPELEREWRQGSDTLLVSDARGIIFIANRPGWRYRHLRPLADSDRAELKATRQYDKQPLQPLAFDPLRRFDDNSHLARVEAPDGTADYLWESLPLTGEGWTLHLLRRPQIAFEDLRNAGLAAAGLWLALVFLLLFLNQRWRLARLRQRSREELERLVEERTRELRTAQDGLVQSAKLAALGQMSAALAHEINQPLTAQRMQLATLRLLLDHGRIDDAYKALKPVDDMLTRMAALTGHLKTFARKSPSGLRERLDLAAVVDQALQLLETRLRDEHVSTVLHLARPAWVRGDAIRLEQVLINLLRNALDAMVDQPIKRLEVRLQADEQLWCLTVKDSGGGIAEEHLAQVFDPFFTTKAVGDGLGLGLAVSFAIIHESGGRLTAGNHENGAVFCVTLPIDPEAPLHAPGPT0017305_1035DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017305-dctB-K10125NANA
D1-35_015192847yenC2Toxin subunit YenC2GTGAACACGGAAGCTCATCGCAAGACTCCGGCCGTGGCGGTGTTCGACGGGCGGGCAGGACCGGTTCGGCGGGTGGATTACCTGCGCGGTACGGCCCGCGACGAAACCCAAACGTTAGTCACCGCCCAGGCGTATGACGTCGCCGGGCGCATCGTCGACCAATGGGACCCTCGCTTTCACGGCACGGAAACCGTCAGCCTGCACAGCATTTACAGCCTGTCGGGCACACCGCTGCGCACTGAAAACATCGATGCGGGACTTCGTTGCGAGTTGCCTGGCCTGGCCGGCCAGCGCCTGCACAGCTGGGATCCCCGTGGCAGTGAGCAACAGACCGAATACGACTCGCAGTTACGGCCCACGCGGATCCGCGAACGCGACCACGACGAGGCCTGGGCCACGGTTGGCCTCCTGCGCTACGCCAGTCGTTCGACCGAAGACGCCCTGCACAATCGATGCGGCCAACTGGTGGAGCACTACGACACGGCCGGGCTTGTCACCGTTGACGACTTTTCGCTGGCAGGCTTGCCGCTGGATCAAGGACAACGCTTCCTGGACACGCTGATGCTACCCGACTGGGCGGACGATGAAGCTGGACGCGAGGATTTGCTGGAGCCTGCCCGCTACGACACACGCTGGCGCTACGACGCCGTGGGGGATGCCTTGGGCCAGACGGATGCCAAGGGGCACAACCAACACATCGAACTCGATGTGGCAGGACAACCCAAGAGCGTACATTTGCAATGGAGCGACAGCCCGACGGCCGAGCTGATCGCCCATGAGTTCCAATACTCCGCCGCAGGCCAGCGCCAGGCATACACCGCCGGTAACGGCATCATTACGACCTTTTTCTATGACCCGGCCGACGGACGCCTGACTGAGCTCAAGGCCACGAAAGGCAGCGATATCCACCAACACTTGAGTTACCTCTACGACCTCGTCGGCAATGTCACGTCCATTACCGACCACACCCATGTCGTGCGGTACCACGCCAACCAGCGCAGCGAAGGCGCTCGGACCTTTTTGTATGACACCCTCTATCGCCTGGAAAGCGCCACGGGACTGGAAATGTCCGGGGCAGGCACGCATCCGGGATTGCCGGGGCTCGTCCCGCCCTCCGATCTGACCCTGAGAACCCCGTACACCCAACGCTACGAGTATGACCACGGTGGCAATCTGCAGAAATTGATCCACAGCAGCGCGGCCCCTGGCCAGGCGCACACACTGCGCCTGACCATGGACCCGTCAAGCAACCGCTGCCGACAATGGCAAAAGGGCGAAGCCTCTCACGGCGACAATCTGGACTTCGATGCCGGCGGCAATCAACTGAGTCTGCCCTTCTCCGGGCATCACTTGACTTGGAACCGGCGCAGTCAATTGCAGAAAGTGACCCAGGTTCAACGCGAAAATGCCGAAGACGACGCCGAGCACTACACCTACGACGCCCAGGGCAGTCGCATGCGCAAACGGCAAAACACTCAGGCCGCATCCGTCGTCCATGTGCGAGACGTGCGTTATTTGCCGGGTTTGCAAATCCGTACCCTGGACGACAGTGAAGAACTGCACGTCTGCACGATGCAAGGCCCGGCGTCCAACGTACGCGGATTGTATTGGGTCAAACGCCGCCCGGCTGAAATCGATCAAGGCCAGCTGCGCTACAGCCTTGAAGATCATCTGGGTTCGTTGGTCAAGGAACTGGACCAGAACGCCCTGCTCATCAGTCACGAAGGTTATTACCCCTTTGGCGGCACAGCGTGGTGGGCGGCAGATTTACAAGTGCAGGCCAGTTACAAGACGGTTCGTTACTCCGGCAAGGAGCGTGATGCCAGTGGGCTTTATTACTACGGGTTTCGTTATTACGCACCCTGGATGATGCGCTGGATCAACCCGGACCCGGCGGGGCCGGTGGATGGGTTGAATTTGTATGCGATGGTGGGGAATAACCCCATTCGCTATAGCGACAACCTGGGGCTGATTAAAATAAAAGGAGAGCAGCTCATGAACAAGATGAGCCCCCGCACTCAGCACATAATAGGAGGAGGAGATGCCCCGTTTAATGAGAGCCAGATCAAGGGTTCAAACGCCAAAAAACTCAAGGCACGGGAGGAGCATTACGAAAAACATCCAGAGGCGCAGTTATTCAGTAAATCCGGTAGAGACGTACTGAGTGCGCATGCAGGTTTTGAGATCCCTAGTAGCGACCCTGAGGAGCCCCATTATTTGACGGACCTCTACAACATTCCGCTACCCGGCTCACTGGAACTTATGTCCGAGGGCGTTCAGGTGTCCCGTGGTCCAGTTCAGAATTCCCAGGAAGATTTCCTGACTTCGGGGGGCATATTCCAGTTTGGAGATGTCACCCGTTATGAAGCTTTTGTGGAGAACAAGCTCATTGAGACGTTCAATGACGCTAAACGCCCTATGAAACTCTACAAGGGATCAAACTCAGCGCCGACAAACTTGACGGGGATTGAACACGAGGCGCCGGTGTTGCATCCCCTGGTCAAACAGCGGCTCGAAAATCACATCAGTGCGGGCAACAACTACCTTCCCAAGGCTGCGGGACTTCCCGGACTGCATGCTGAAAGCATCGGCGCGAACGTCGCGCTGAATATCCAGCAGAGCATGACCGGGGTGGCGGACCCGTCGCAAATACTTGTCATCACTCAAAAGATTGCCGGCAGCAAGAACGGACTGGGTCGAGGCTTTCCCGCCTGCTTCAACTGCACCAATATCCTTAGAGGACCCTCGGACGCTGCAGACGATCTACCGAAATTTGACATCGTGACCGAATGGGTGCCGACAACTCATTCACAGTGGAATGACCTGGCCAGACCGTACATCAACTAGMNTEAHRKTPAVAVFDGRAGPVRRVDYLRGTARDETQTLVTAQAYDVAGRIVDQWDPRFHGTETVSLHSIYSLSGTPLRTENIDAGLRCELPGLAGQRLHSWDPRGSEQQTEYDSQLRPTRIRERDHDEAWATVGLLRYASRSTEDALHNRCGQLVEHYDTAGLVTVDDFSLAGLPLDQGQRFLDTLMLPDWADDEAGREDLLEPARYDTRWRYDAVGDALGQTDAKGHNQHIELDVAGQPKSVHLQWSDSPTAELIAHEFQYSAAGQRQAYTAGNGIITTFFYDPADGRLTELKATKGSDIHQHLSYLYDLVGNVTSITDHTHVVRYHANQRSEGARTFLYDTLYRLESATGLEMSGAGTHPGLPGLVPPSDLTLRTPYTQRYEYDHGGNLQKLIHSSAAPGQAHTLRLTMDPSSNRCRQWQKGEASHGDNLDFDAGGNQLSLPFSGHHLTWNRRSQLQKVTQVQRENAEDDAEHYTYDAQGSRMRKRQNTQAASVVHVRDVRYLPGLQIRTLDDSEELHVCTMQGPASNVRGLYWVKRRPAEIDQGQLRYSLEDHLGSLVKELDQNALLISHEGYYPFGGTAWWAADLQVQASYKTVRYSGKERDASGLYYYGFRYYAPWMMRWINPDPAGPVDGLNLYAMVGNNPIRYSDNLGLIKIKGEQLMNKMSPRTQHIIGGGDAPFNESQIKGSNAKKLKAREEHYEKHPEAQLFSKSGRDVLSAHAGFEIPSSDPEEPHYLTDLYNIPLPGSLELMSEGVQVSRGPVQNSQEDFLTSGGIFQFGDVTRYEAFVENKLIETFNDAKRPMKLYKGSNSAPTNLTGIEHEAPVLHPLVKQRLENHISAGNNYLPKAAGLPGLHAESIGANVALNIQQSMTGVADPSQILVITQKIAGSKNGLGRGFPACFNCTNILRGPSDAADDLPKFDIVTEWVPTTHSQWNDLARPYINPGPT0012380_147DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSINSECTICIDAL_COMPOUNDSINSECTICIDAL-OTHER_INSECTICIDIAL_TOXINS,PGPT0012380-tccC-K11021NANA
D1-35_015204407yenBToxin subunit YenBATGGCAGAGCAAGCGCCCCTCCAAATCATCACACCCACCATCGCCGGTAGCGCGTCAATCGCCGCCATTGGCAACGGCCTCGGCCCCGTTGGCACACGAGGGGCCGCATCCATTGAGTTGCCGCTGCCCGTGTCCAGCGCCCGGCACCTGACGCCCACCATGGCGCTGCACTACAACAGCCAGAGCGGCAACGGCACGTTCGGCATCGGCATGCAGTTGTCTATCCCCAGCATTACGCGCAAAACTCTCAAGGGCGTACCGCATTACAAGGATGACGATGTCATGGTCGGCCCCGACGGGGTAGATCGTTGGCCTGACCTTGAGGGGCGGACCAGCCGCAGGGTGGGCGACCGTACGTTCGAGGTGGTGCGCTATTACCCCAGGATCGAGAGCACCTTCGACATTTATGAACTCTGGACCTCCGATAGCCTACCGTTCTGGCGCGTACAGGGCAGCAACGGCAAGTTGTATTGCTACGGTAAAAGACCAGAGTCGCGCATTGCCGACCCGCAAGCCCCTTTGCGCATCGCCGAGTGGCTATTGCTGGAGGAAGTCAGCCCGTTGGGCGAGCACATCTACTATGAGTATGCGAGCGATCCCGCTGAGTCCGATGACCCGCATGACTACGGCGCCCAACGCTACCTGGTCCGGGTCTGCTACGGCAACGCGACGGCCAGCGACACCTTCTACTGCTTCGAAGAAGCAGACCCGGCAACGCTGGACTGGCACTTTCATTTGGTACTGGACTACGGACAACGCTCCCTCGATCTTGAGGAAAAGCCTGCCTGGGCGCCTCCTCCCGAGGATGACTGGCTACTGCGCAGCGATCCGGTCCATGCCTACCGGTACGGTTTCGAAGTCGGCACTCGGCGCCTTTGCCACCAGGCGTTGATGTTCCACCGTTTCCCCGCCGACGCCGAACCTGCACTGGTGCGGCGACTGTTGCTGGAATATACCTCCACCGACCTGGACTACAGCCTGCTGACTGCCGCCCATTATCAAGCATGGGACGCAGAAAGCAGGGTGCAGAACGCTCCGCCCGTTGAATTGGACTACAGCGTTTTCGACCTGAACCACGACCCCAAACCGTTCTTCGCTCTCCAGACCATGCCCGCCCTGGAAGACGGCTTGCACTACCAATGTGTCGACCTGTACGGCGAAGGCATTCCTGGCTTCTTGTGCCGCTACAGCAACGGTTGGTATTACCGCGAACCTGAGCGCCCAACTGGCGATAGAAGCGATGAGATCGGCTATGGCCCATGGTCGCTCTTGCCCAGCATCCCGGTCGCCGCCGACAACTCGGCGGTAATGCAAGTGCTCACCGACCTGACCGGTAGCGGTCGCCTCAATTGGGTCATCGCCCGGCCGGGCATGAGCGGCTTTTATACCCTCAACCCGGACCGCAGTTGGTCAGCCTTCACGAACTTCAAGCGTTTCCCCACGGAGTTCTTGCACCCCGCCGCGCAGTTGGGCGACCTGGTCGGCGACGGACTGCGTTCGCTGGCCATGATCGGCCCCAAAAGCGTGCGGCTGTACGCCAATCTTCGTGAACAGGGGTTCGCCCCGGGTGTGGACATTGCACATGAGCCGGACAGCGTCCTACCCTTGTTCAGCAATGCGCGCAGCGAGCTGGTGCTGTTCGGCAATATGCTGGGCAGCGACAGCTCCGACCTGTGCCGTATTCGCTGCGATGAAATCAAGTGTTGGCCGAACCTGGGCCATGGGCGTTTCGGCAAGGGCTTTGTGATGAGTGCCCTGCCTTTTACCTACCTCGAGTTCGATGCCGAGCGGGTTCGGATCGCCGATCTGGATGGCTCCGGGGCGCCGGCACTGATCTACCTGCGCAGCGATTGTTTTGAGATCTACTTCAACCACGGCGGCAATGGCCTGGAGCAAATACCGACGCAGGTAGCCTGGCCCGACGGTGTGCGCTATGACAACCTCTGCCAGGTTACCTTGGCCGATCTGCAAGGCTTGGGCTGCGCCAGCCTGGTCCTGAGCGTGCCCCATCACACCCCGGGCTTGAAACCCCGGCATTGGCGCTATGACTTTGTTGCGACGCGGCCCTATCTGCTCAGCCTCACCAATAACAACATGGGCTGCAAAAGCACCTTGGCCTATCGCAGCAGTGCGCAGTTCTGGCTGGACGAAAAAGCCCAAAGGGTGGCTTCGAACGAACCACTGGATTGCTACCTTCCCATGGCCCTGCCGCTGGTGGCGCGCCAACAACAGCTGGACGAAATCACCGGAAATTGCCTGACTCAGCGCTTCACCTATCTCGAGGGCGATTACGACAGCTATCACCGTGAGTTCCGAGGTTTTGGCCGGTTGTATCAGTTCGACAGCGAGCAACCCGAGGGCCCCGCGACGGCCGACTTCACCGCGCCGGTGCTGGCCAAGACGTGGTTCCACACCGGTCGCACCGTCGACCAGCCCCTCAAGGATTGTTTCAAAGCTGACCTCGACGCACCGCCTCTTGGCCTGACGTTGCTGACTCGGCTTCATGAGTCGGACGGAGCCGACGAGATCATCGCTGCCGACCCGGACACCGCAAGGGAAATGGCCTACGCCCTGGGCGGCCAAGTACTGCGTACCGAGACCCATCATGCCGAATCAATCGACATGCTCGAACCCTACACCGTGACGCAACAACGTTACCTGTTGCGCCAACCCCACAGCGGGCACAAGAGCCTGCTGGTGCTGGCGGTGGAATCGGTCAGCCATCAATACGACGGGTTTATCAACGACCCGCAAGCCCGGCACAGCATCAATCTGGCCTGGGACATCTACGGCCATACGACCCATGGTTTCACCGTTCATTACGCCCGCCGCCTGGGGCCGGAGAACGAACCCCCCTTCGCGGATGAATACGAAAAGACCTGGTGGCGCGATGCCCATGATGAGCAACAGCAGGTATTCCACATCGTCGAGAGTCGGGCTGAATATCATCACCTCACCGCTGACCAGGCTCGTCAGCGTCTAGGCCTGCCGTGGCGCGCCCGAACCAACGGGCTGCAACTTCCTAAAGGTGAGCTGCCCACAGGGTTGGCCCCGCGTCAGGTCAGCTACGAACAGTTCCTGGAGCACCAGGATTCAGAGCAATGGAACACTGCCAGAGTGCTGATGGCCCTTGAGAAGCAAACCTACGAGCAGGATGAATCGGGCGCTTCCCTGTTCCAGGCCTTGCGCGGCCCGCTGGAAGTCGCCGAGTTCGACGAGCAGGCGCTGGAAGCCTACGTTGCCGTGCCCCCACCCTTCGACATTCGCACAGAGCTGCGCACGATTGGTTTCGAGCCCATGGCGCTGTTCATGCCGGAATATCCCGACGAAGACGCGAACGAGAACCTCTGGTCGAAGAAGGTCGGCTTCGCCACCTACAGCGACCTCGCCGGTTTTTTCCAGGTCACCGCCCTGCAAGAGACGCAAAGCCATGGCCTCACGACCGTCACCTACGATGCCTATCATTTGCTGACAACGAGCGTCACCCTGCCGGACGGCTGCACGACCCTCGTCAACTACGACTACCACTCGCTGTTGCCGCGGAAAATCACCGATGCCAACGGCAATATTCAGCAAGCGCTCTACGGCCCGGACGGGGTTCCTCTGGGCGTCACCTTCCATGGCACCGAAGGTGGTGTCGCAGCGGGCTTCGACGCCATTGAAAATTATCAGCCGCCCGAAGACCTCACGCTGGGTCACGCCGTAGAAGACCCGGCGGGCACCTTGGGAAGAATCGCCAGCGCCGTGCGTATCGAGGATAGGAGCTGGATGGGTGCGCTGGAGCTGTCGGAGATACGCGACGAGTGGATCAGCGCCTGCTACCTGCTGCCCAGTGGTCACATCCGCGCCTCGGCACGCGCTCGCCTGGCCCAACTCGAAACGCGTACCCCTGACGAAGAATCGCTCTGGGCACTGATCCAGGCAGCGGCCCGAGAACCGGCCCACAGCGTCGTGCTGAGCGCCGACCGCTATCCGGATGATCCATTGCGACAGATCCGCATCGCCCTCAGCGCAGTCGACGGTTTCGGCCGCCCCTTGCAAAGCAAGCAATTGGTCGAGCCTGGACAAGCCTATGCCGTGGCCAAGGACGGCTTGCTGCGTTTGGACGACGAAGAGCGACCGATCCAGCATGAGGCCAACCCTCGGTGGCGTGTCAGCGAACGGGTCGAGTACAACAACAAAGGTTTGGTAACGCGGGTCTACCGACCTTATTTTGCCGATGCCTGGCGCTACATCAATGGTGCCTCTTTGCGCGAACACGGCCATCACGACCAGCAGTTCTATGACCCGCCGGGGCGGTTGGTCAAGATCGTCAATGCCAAGGGGCATGAAGCCTGGCATGTCTACCATCCGTGGTACCAGTGCGATCACGATTACAACGATACAGAGCCGACGGCTGCCAAGTGAMAEQAPLQIITPTIAGSASIAAIGNGLGPVGTRGAASIELPLPVSSARHLTPTMALHYNSQSGNGTFGIGMQLSIPSITRKTLKGVPHYKDDDVMVGPDGVDRWPDLEGRTSRRVGDRTFEVVRYYPRIESTFDIYELWTSDSLPFWRVQGSNGKLYCYGKRPESRIADPQAPLRIAEWLLLEEVSPLGEHIYYEYASDPAESDDPHDYGAQRYLVRVCYGNATASDTFYCFEEADPATLDWHFHLVLDYGQRSLDLEEKPAWAPPPEDDWLLRSDPVHAYRYGFEVGTRRLCHQALMFHRFPADAEPALVRRLLLEYTSTDLDYSLLTAAHYQAWDAESRVQNAPPVELDYSVFDLNHDPKPFFALQTMPALEDGLHYQCVDLYGEGIPGFLCRYSNGWYYREPERPTGDRSDEIGYGPWSLLPSIPVAADNSAVMQVLTDLTGSGRLNWVIARPGMSGFYTLNPDRSWSAFTNFKRFPTEFLHPAAQLGDLVGDGLRSLAMIGPKSVRLYANLREQGFAPGVDIAHEPDSVLPLFSNARSELVLFGNMLGSDSSDLCRIRCDEIKCWPNLGHGRFGKGFVMSALPFTYLEFDAERVRIADLDGSGAPALIYLRSDCFEIYFNHGGNGLEQIPTQVAWPDGVRYDNLCQVTLADLQGLGCASLVLSVPHHTPGLKPRHWRYDFVATRPYLLSLTNNNMGCKSTLAYRSSAQFWLDEKAQRVASNEPLDCYLPMALPLVARQQQLDEITGNCLTQRFTYLEGDYDSYHREFRGFGRLYQFDSEQPEGPATADFTAPVLAKTWFHTGRTVDQPLKDCFKADLDAPPLGLTLLTRLHESDGADEIIAADPDTAREMAYALGGQVLRTETHHAESIDMLEPYTVTQQRYLLRQPHSGHKSLLVLAVESVSHQYDGFINDPQARHSINLAWDIYGHTTHGFTVHYARRLGPENEPPFADEYEKTWWRDAHDEQQQVFHIVESRAEYHHLTADQARQRLGLPWRARTNGLQLPKGELPTGLAPRQVSYEQFLEHQDSEQWNTARVLMALEKQTYEQDESGASLFQALRGPLEVAEFDEQALEAYVAVPPPFDIRTELRTIGFEPMALFMPEYPDEDANENLWSKKVGFATYSDLAGFFQVTALQETQSHGLTTVTYDAYHLLTTSVTLPDGCTTLVNYDYHSLLPRKITDANGNIQQALYGPDGVPLGVTFHGTEGGVAAGFDAIENYQPPEDLTLGHAVEDPAGTLGRIASAVRIEDRSWMGALELSEIRDEWISACYLLPSGHIRASARARLAQLETRTPDEESLWALIQAAAREPAHSVVLSADRYPDDPLRQIRIALSAVDGFGRPLQSKQLVEPGQAYAVAKDGLLRLDDEERPIQHEANPRWRVSERVEYNNKGLVTRVYRPYFADAWRYINGASLREHGHHDQQFYDPPGRLVKIVNAKGHEAWHVYHPWYQCDHDYNDTEPTAAKPGPT0027804_70DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-OTHER_BACTERIAL_DEFENSE_SYSTEMSCE-BACTERIAL_FITNESS-BACTERIAL_TOXINS,PGPT0027804-spvB|eat1-K15366NANA
D1-35_015211524fumACOG1838Fumarate hydratase class I, aerobicATGACCGTGATCAAGCAAGATGACCTGATACAGAGCGTCGCCGACGCCTTGCAGTTCATTTCCTATTACCACCCCGTGGATTTCATCCAGGCGATGCACGAGGCCTACCTGCGCGAAGAATCGCCGGCGGCCCGTGATTCCATGGCGCAGATCCTGATCAACTCGCGCATGTGCGCCACCGGCCATCGGCCGATCTGCCAGGACACCGGTATCGTGACCGTGTTCGTGCGCGTGGGCATGGACGTGCGTTGGGATGGCGCGACCATGGGCCTGGACGACATGATCAACGAGGGCGTGCGTCGCGCCTACAACCTGCCGGAAAACGTCCTGCGCGCATCGATCCTCGCCGACCCGGCAGGCGCGCGCAAGAACACCAAGGACAACACGCCGGCGGTCATCCACTACTCCATCGTCCCGGGCAACACCGTGGAAGTGGACGTGGCGGCCAAAGGCGGCGGCTCCGAGAACAAGTCGAAGATGGCCATGCTCAACCCGTCCGACTCCATCGTCGACTGGGTACTCAAGACCGTTCCGACCATGGGCGCCGGCTGGTGCCCACCGGGCATGCTCGGTATCGGCATCGGCGGCACCGCCGAGAAAGCCGCGGTGATGGCCAAGGAAGTGTTGATGGAATCCATCGACATCCACGAGCTCAAGGCCCGCGGCCCGCAGAACCGTATCGAAGAGATGCGCCTGGAGCTGTTCGAGAAGGTCAACCAACTGGGCATCGGCGCCCAGGGCCTGGGCGGCCTGACCACCGTGCTCGACGTGAAGATCATGGACTACCCGACCCACGCCGCCTCCCTGCCGGTGTGCATGATCCCCAACTGTGCCGCCACCCGTCATGCCCACTTCGTGCTCGACGGCAGCGGCCCGGCCTCGCTGGAAGCGCCACCGCTGGACGCCTACCCGGAAATCGTCTGGGAAGCCGGTCCGTCGGCGCGTCGCGTGAACCTCGACACCCTGACCCCGGAAGAAGTGCAGAGCTGGAAGCCGGGCGAAACGGTATTGCTCAACGGCAAGATGCTCACCGGTCGCGACGCGGCGCACAAGCGCATGGTCGAGATGCTGAACAAAGGTGAAACCCTGCCGGTGGACCTCAAGGGCCGCTTCATCTACTACGTTGGCCCGGTCGACCCGGTCGGCGACGAAGTGGTTGGCCCGGCCGGCCCGACCACCGCCACGCGGATGGACAAGTTCACCCGCCAGATCCTCGAGCAGACCGGCCTGTTGGGCATGATCGGCAAATCCGAGCGCGGCCCGACCGCCATCGAAGCGATCAAGGACAACAAGGCGGTCTACCTGATGGCCGTCGGCGGTGCCGCTTACCTGGTGGCCCAGGCGATCAAGAAATCCAAGGTCCTGGCGTTCGCCGAACTGGGGATGGAAGCGATCTACGAGTTCGAGGTCAAGGACATGCCGGTGACCGTTGCGGTCGACAGCAAGGGCGAGTCGGTGCACATCACCGGTCCGGCGATCTGGCAGCAGAAGATCAGCGAAAGCCTGGCGGTAGAGGTGCAGTAAMTVIKQDDLIQSVADALQFISYYHPVDFIQAMHEAYLREESPAARDSMAQILINSRMCATGHRPICQDTGIVTVFVRVGMDVRWDGATMGLDDMINEGVRRAYNLPENVLRASILADPAGARKNTKDNTPAVIHYSIVPGNTVEVDVAAKGGGSENKSKMAMLNPSDSIVDWVLKTVPTMGAGWCPPGMLGIGIGGTAEKAAVMAKEVLMESIDIHELKARGPQNRIEEMRLELFEKVNQLGIGAQGLGGLTTVLDVKIMDYPTHAASLPVCMIPNCAATRHAHFVLDGSGPASLEAPPLDAYPEIVWEAGPSARRVNLDTLTPEEVQSWKPGETVLLNGKMLTGRDAAHKRMVEMLNKGETLPVDLKGRFIYYVGPVDPVGDEVVGPAGPTTATRMDKFTRQILEQTGLLGMIGKSERGPTAIEAIKDNKAVYLMAVGGAAYLVAQAIKKSKVLAFAELGMEAIYEFEVKDMPVTVAVDSKGESVHITGPAIWQQKISESLAVEVQPGPT0001635_1896DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001635-fumA|fumB-K01676NANA
D1-35_015221122hypothetical proteinATGGTGAGTCACCGATTGACCCATAACGCCATCCAACGTCTTTTGCTTAAACGCTTTGCCCTCGCAGCCACGACTTATGCGCTGGCACTGGTATTGTTGTGGCTGGCGTTTTTCAGTGGTCATTACCTCGACACATTGCGTGGCGTCATTGTTGGCAGCCTGTTGGTCGTGCTGTGCCAGGCTGGTCTGTTCACGCTGTTCATCACCGACCGCAACCTGCGATTCGCCGACCCCAGCCTCACGGAAATACAGGTCTGGATCGGCCTGGGCTGGCAGACCTGGATGATGGCGCACCTGGACCAGGCCCGGGGCGTGTTCCTGGTGTTCTATGTGCTGATCCTGCTGTTCGGGCTGTTTCACCTGTCCCGCCGGGCCTTCGTGCGTTGCGCGACGCTGGTGTTCATCAGCTTCACCGGGATCACGCTCTGGGACGGTTATTTCTTTCGCCTGCCCGATCCGACGCTGGCCGGTCTGCAGGTCTGCGTACTGTTCATCGTGTTGGTGTGGCTGGTGTTGTACGCCCGCTACGTCCAGACCTCGCGTCAACGCATGCGCCAGCGTCGATTTGCCTTGCAGGCGCACCAGGACACATTGCGCGGCATGATGCGCCAGCTCGAAGACCTGGTGGCCACCGATGAACTGACCGGCCTGTTCAACCGCCGGCACTTCCTGCGCCTGGCCGGCCGCGAGCTCAATACCCTCAGGCCCGGCGTCGCCCATGGCCTGGCCTTGATCGACCTCGACCATTTCAAACGCATCAACGACCTGCATGGCCATGCCGCGGGCGACCAGGTATTGCAGGCATTCGCCGCTGTCGCCACGGCGTGCCTGCGCGAGGGCGATGTGCTGGCCCGTTACGGTGGCGAGGAGTTTGTCATGCTGCTCCCCGCTTGCGATCCCGCGCGCCTGACGGCCTGTTGCGAGCGATTGCGGCTGGCGTTCACCGAGGTTCGATTGGTCGATCTGCCGGTGGGCAACCTCAGTTTGTCGGTGGGGATGACGATGCTGGAAATCGGCGATGACCTGGACAGCGCCTTGCAGCGCGCCGACCAGGCCTTGTACCGTGCCAAGCGGGACGGTCGCAACCGTTGCGCCGCCGCCTGGGAGAACGTCGATGCCTGAMVSHRLTHNAIQRLLLKRFALAATTYALALVLLWLAFFSGHYLDTLRGVIVGSLLVVLCQAGLFTLFITDRNLRFADPSLTEIQVWIGLGWQTWMMAHLDQARGVFLVFYVLILLFGLFHLSRRAFVRCATLVFISFTGITLWDGYFFRLPDPTLAGLQVCVLFIVLVWLVLYARYVQTSRQRMRQRRFALQAHQDTLRGMMRQLEDLVATDELTGLFNRRHFLRLAGRELNTLRPGVAHGLALIDLDHFKRINDLHGHAAGDQVLQAFAAVATACLREGDVLARYGGEEFVMLLPACDPARLTACCERLRLAFTEVRLVDLPVGNLSLSVGMTMLEIGDDLDSALQRADQALYRAKRDGRNRCAAAWENVDAPGPT0025990_359DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-c-di-GMP_SIGNALLING_PATHWAY,PGPT0025990-sadC-K21019NANA
D1-35_01523948nagAaNaphthalene 1,2-dioxygenase/salicylate 5-hydroxylase systems, ferredoxin--NAD(P)(+), reductase componentATGCCTGAACTGAAAGTCGCCGACCGGCAATGGACGGTGGCGGCTGGCGGCAATCTGCTGGACGCGCTTAACCACGGCGGCGTGCCGGTGCCCTATAGCTGCCGTGCCGGCAGTTGCCATGCCTGCCTGGTGCAATGTGTGAAGGGGGATGTGCGTGACAGCCGTCCCGACGCCCTGAGCCCGGCGCAGCGAGATAACGGTTGGCGCCTGGCATGCCAGTGCCAGGTGGTCGAAGACGTGCAGATCCACACCTTTGATCCGCAGCGCGACGGCCAGGCCGCCGCTGTGGACGCGGTGGATTGGCTGGGGGCTGACGTGCTACGCCTGCGCATCAGCCCGCAGCGACCACTGCGTTATCGAGCCGGGCAACATCTGGTGTTATGGGCCGGTGACGTGGCCCGGCCGTACTCCCTGGCGAGCCTGCCCGAAGAAGACCGATTCCTGGAGTTTCACCTCGATTGTCGCGAGCCCGGTCAATTCGTCGATGCGGCGCGACAACTGAGCACCGGAGACCCGATCCGCCTCGGCGAACTGCGCGGCGGCGCGCTGCATTACGACGCCGACTGGCACGATCGGCCGCTCTGGCTGCTGGCCGCTGGCACCGGCCTGGCACCGCTGTTCGGCATCCTCCGTGAAGCGCTGCGCCAGCAGCACCAAGGCACGATTCGGCTGATTCACCTGGCCCATGATGAGGCCGGGCATTACCTGGATAAACCTCTGAAGGCACTGGCGGCCAAACACCCCAACCTGAACGTCGAGCTACTGACCGCAGCCGAGGCGCCAGCGGCGCTCGCGCAACTGCGCCTGGCTTCGCGCCAGACCCAGGCCCTGGTGTGCGGTCATCCGGACCGGGTCGAGGCGTTTGCCAAGCGTTTGTACCTGGCGGGGCTGCCGCGTAATCAGTTGCTGGCGGATGTGTTTCTGACCCGCGAGGACAGTGACGGCTGAMPELKVADRQWTVAAGGNLLDALNHGGVPVPYSCRAGSCHACLVQCVKGDVRDSRPDALSPAQRDNGWRLACQCQVVEDVQIHTFDPQRDGQAAAVDAVDWLGADVLRLRISPQRPLRYRAGQHLVLWAGDVARPYSLASLPEEDRFLEFHLDCREPGQFVDAARQLSTGDPIRLGELRGGALHYDADWHDRPLWLLAAGTGLAPLFGILREALRQQHQGTIRLIHLAHDEAGHYLDKPLKALAAKHPNLNVELLTAAEAPAALAQLRLASRQTQALVCGHPDRVEAFAKRLYLAGLPRNQLLADVFLTREDSDGPGPT0022595_853DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PARATOSE|TRYLOSE|ABEQUOSE|ASCARYLOSE_MODIFICATION,PGPT0022595-ascD|ddhD|rfbI-K00523NANA
D1-35_015241452pykACOG0469Pyruvate kinase IIATGTCCGTCCGTCGCACCAAAATCGTCGCTACCCTTGGCCCGGCCAGTAACTCGCCGGAAGTTCTCGAACAGCTGATTCTGGCTGGCCTGGACGTTGCCCGCCTGAACTTCTCCCACGGCACCCCCGACGAGCACAAGGCTCGTGCCAAGCTGGTGCGCGACCTGGCCGCCAAGCATGGCCGCTTCGTCGCCCTGCTGGGTGACCTGCAAGGCCCGAAGATCCGCATTGCCAAATTCGCCAACAAGCGCATCGAGCTGAAGATCGGTGACAAGTTCACCTTTTCCACCAGCCATCCATTGACCGAGGGTAACCAGCAAGTCGTCGGTATCGACTACCCGGATCTGGTCAAGGATTGCGGCGTGGGCGACGAGCTGCTGCTCGACGACGGCCGCGTGGTGATGCGCGTCGAGACCGCCACCGCCACCGAACTGAACTGCGTCGTGACCATTGGCGGCCCGCTGTCGGACCACAAGGGTATCAACCGTCGCGGCGGCGGCCTGACTGCTCCGGCCCTGACCGACAAAGACAAAGCCGATATCAAGCTGGCCGCGGAAATGGAAGTCGACTACCTGGCGGTGTCCTTCCCGCGCGACGCGGCGGACATGGAATATGCCCGTCAATTGCGCGACGAGGCCGGCGGTACCGCCTGGCTGGTGGCCAAGATCGAACGCGCCGAAGCCGTGGCCGACGATGAAACCCTCGATGGCCTGATCAAGGCGTCCGACGCCGTGATGGTGGCCCGTGGCGACCTCGGCGTGGAAATCGGCGACGCCGAGCTGGTGGGCATCCAGAAGAAGATCATCCTGCACGCACGCCGCCACAACAAAGCGGTGATCGTTGCGACCCAGATGATGGAGTCGATGATCCAGAACCCGATGCCGACCCGCGCCGAAGTGTCCGACGTAGCCAACGCCGTGCTCGACTACACCGACGCCGTGATGCTCTCGGCCGAAAGCGCCGCCGGCCTCTACCCGCTCGAAGCGGTGCAGGCCATGGCACGTATCTGCATCGGCGCTGAAAAGCACCCGACCGGCAAGACGTCCAGCCACCGCATCGGCAAGACCTTCGAGCGCTGCGACGAGAGCATTGCCTTGGCGAGCATGTATACCGCTAACCACTTCCCGGGCGTAAAGGCGATCATCGCCCTGACCGAAAGTGGCTACACGCCGTTGATCATGTCGCGCATCCGCTCCTCCGTGCCGATCTATGCGTTCTCCCCGCACCGCGAAACCCAGGCCCGTGCCGCCATGTTCCGTGGCGTCTACACCGTGCCGTTCGACCCGGCCGCCCTGCAACCGGGCGAAGTCAGCCAGGCGGCGGTGGATGAACTGGTCAAGCGTGGCGTGGTGCAGACCGGCGACTGGGTCATCCTGACCAAGGGCGACAGCTACCACACCATCGGCGGCACCAACGGGATGAAGATCCTGCACGTCGGCGACCCGATGGTTTGAMSVRRTKIVATLGPASNSPEVLEQLILAGLDVARLNFSHGTPDEHKARAKLVRDLAAKHGRFVALLGDLQGPKIRIAKFANKRIELKIGDKFTFSTSHPLTEGNQQVVGIDYPDLVKDCGVGDELLLDDGRVVMRVETATATELNCVVTIGGPLSDHKGINRRGGGLTAPALTDKDKADIKLAAEMEVDYLAVSFPRDAADMEYARQLRDEAGGTAWLVAKIERAEAVADDETLDGLIKASDAVMVARGDLGVEIGDAELVGIQKKIILHARRHNKAVIVATQMMESMIQNPMPTRAEVSDVANAVLDYTDAVMLSAESAAGLYPLEAVQAMARICIGAEKHPTGKTSSHRIGKTFERCDESIALASMYTANHFPGVKAIIALTESGYTPLIMSRIRSSVPIYAFSPHRETQARAAMFRGVYTVPFDPAALQPGEVSQAAVDELVKRGVVQTGDWVILTKGDSYHTIGGTNGMKILHVGDPMVPGPT0002020_4006DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002020-pyk-K00873NANA
D1-35_01525375hypothetical proteinATGCGATTCGTGCTTTTTATTGCCTTGGCCCTGAGCATCACGGGCTGCACCCGTTGGTCGATGAACCACCACATGAACCTGGCCTACAAGGCCTACGAGCGCGGCAATTGCGAGCAAGTAATGCTTGAACTGTCCAAGGTCGACCGCGCCAGCCGTGCCCGTCGTTATATGCAGCCGGAAGTCTCGATGATGCGTGGTCAATGCCTGGAGCGGCAAAAGCTGTTCGTCGATGCGGCGCAGACGTACCAGTTCATTCTTACGCAATACCCCAACAGCGAGTACGCCTATCGTGCCCGCGCCCGGCTCGAAACCTTGCAGAGCCTTGGGCATTACCCGACCCGTAGCACCTCGGCCATCCGCCCGACGGCGTTCTGAMRFVLFIALALSITGCTRWSMNHHMNLAYKAYERGNCEQVMLELSKVDRASRARRYMQPEVSMMRGQCLERQKLFVDAAQTYQFILTQYPNSEYAYRARARLETLQSLGHYPTRSTSAIRPTAFNANANANANA
D1-35_01526360hypothetical proteinATGTACAAAGAGCGCCGCATTGAACGACATCAGTTGGCTTGTTTTCTTGAGGTGTTCAACGGCCTCAACGAGAAACCGATCGGTTTTCTGGGCAACGTCTCTGAAAGTGGCCTGATGTTGATCAGTCAGTTGCCGTTGATGATTGGCGCAAGCTTTGATCTTTATCTGAAAATCCCCACCGACGACGGATCACAGCAAGAGATCCGGTTGAAGGCCAAGTGCCTGTGGTGTCATGAAGACGTGACGCCGCAGCATTTCGATGCCGGTTTCAGCCTGCAATGGGCGCCGCCGGAGTACGGGGCGCTGGTCAGCGCGTTGCAGCAGTATTTCTGTTTTTATCCGTTGCCCGCCTCGGCTTGAMYKERRIERHQLACFLEVFNGLNEKPIGFLGNVSESGLMLISQLPLMIGASFDLYLKIPTDDGSQQEIRLKAKCLWCHEDVTPQHFDAGFSLQWAPPEYGALVSALQQYFCFYPLPASANANANANANA
D1-35_015271332hypothetical proteinATGAAACCCTCGCGTCTGTTGCTCATCTGGCTCGCGATCCTGCTGGCCGTCGGCATCGTGCTGGGCACGTTGCGAGCGCTGGGCATCGCGGTGCCGTCGACACTCCTGTCGATCAACTGGGGGATGCTGCTGGCCTTGCTGGCCTTGGCGCTGCTCGATGCCGTGCGGCTGCGGCGCCTGCCCTCGCCCCGCGTACAACGACACATGCCGGGCAGCCTGGCACTGGGCCGATGGGGCGAAGTGCGCCTGCAGATCAGCCATGATTTTGCCCAGCCAATGCCGATCCAGGTGTTCGATCACGTACCCGATGGCCTCGACTTCGACGACCTGCCCTTGTCGGTCGAACTTCAACCCGGCCAACGCAGCCAGCTCGGCTACCGCTTGCGCCCGCTCAAGCGCGGTCATTTCATTTTCAGCTACTGCGAGATCAGCCTGCCCAGCCCGCTGGGATTGTGGTCCGGCAAACGCCTGCTGGAGGCGCTCGACAACACTCGCGTCTACCCGGATTTCGCCAGGCTCTATGACGGCCAGCTATTGGCCGTCGACAACTGGCTGAGCCAGCTCGGCATACGCCAGCGGCAGCGCCGTGGCCAGGGCCAGGAATTCCATCAGTTGCGCGAGTTTCGCGAGGGCGACAGCCTGCGCCAGATCGACTGGAAGGCCACCGCCCGCCACCGTACGCCGATCGCCCGTGAGTACGAAGACGAACGCGACCAACAGATTATCTTCATGCTCGACTGCGGCCGGCGCATGCGCAGCCAGGACGACGAGCTGGCGCACTTCGATCACGCTCTCAATGCCTGCCTGTTGCTCAGCTATACCGCGTTGCGCCAGGGCGACGCCGTCGGCCTGTACACCTTCGCCAGTGAGCGACCGCGCTACCTCGCGCCAGTCAAAGGCAGCGGCCAGCTCAACGTCTTGCTCAACGCCGTCTATGACCTGGACAGCAGCCAGCATCCCGCCGATTACCAGGTCGCGGTCAATCAACTGCTGGCCCGGCAAAAACGCCGGGCCCTGGTGGTGTTGGTGACCAACCTGCGGGATGAGGACGACGAGGAACTGCTGGCTGCCGTCAAGCGCCTGGGGCAGCAGCATCGGGTGCTGGTGGCCAGCCTGCGCGAAGAGGCACTCGACCGGTTGCGCCAGGCGCCGGTACAAACCCAGCCCGAAGCCTTGGCCTATTGCGGGACGGTGGACTACATGAACACCCGCGCCGGACTCCATCTGCAGTTGGCGGCCCATGGCATCCCGACCCTGGATTCGCGCCCCGGCGAGCTAGGGGCGGATCTGGTGAGCCAATACCTGGCATGGAAAAAGGCCGGAACCGCTTAGMKPSRLLLIWLAILLAVGIVLGTLRALGIAVPSTLLSINWGMLLALLALALLDAVRLRRLPSPRVQRHMPGSLALGRWGEVRLQISHDFAQPMPIQVFDHVPDGLDFDDLPLSVELQPGQRSQLGYRLRPLKRGHFIFSYCEISLPSPLGLWSGKRLLEALDNTRVYPDFARLYDGQLLAVDNWLSQLGIRQRQRRGQGQEFHQLREFREGDSLRQIDWKATARHRTPIAREYEDERDQQIIFMLDCGRRMRSQDDELAHFDHALNACLLLSYTALRQGDAVGLYTFASERPRYLAPVKGSGQLNVLLNAVYDLDSSQHPADYQVAVNQLLARQKRRALVVLVTNLRDEDDEELLAAVKRLGQQHRVLVASLREEALDRLRQAPVQTQPEALAYCGTVDYMNTRAGLHLQLAAHGIPTLDSRPGELGADLVSQYLAWKKAGTANANANANANA
D1-35_015281008hypothetical proteinTTGACGACTGAACAGAACGAACCTGTCGACGGCCAGGCCCATGCCGCCCAACAGCGCCAGCGCGCCAGCCAGTTGGCCCAGGCGATCCGTACCGAACTGCACAAGGCGGTGGTCGGCCAGGCTGCGGTGGTCGACGATGTGCTCACGGCGTTGATCGCTGGCGGGCATGTGCTGCTCGAAGGCGTTCCAGGGTTGGGCAAGACGCTGCTGGTGCGCGCGCTCGCGCGCTGTTTCAGTGGCGAGTTCGCGCGCATCCAGTTCACGCCCGACCTGATGCCCAGTGACGTCACCGGCCATGCGGTGTACGACTTGCAGACCGAGCAGTTCAAGTTGCGCAAGGGTCCGGTTTTCACCAACCTTCTGCTGGCCGACGAGATCAACCGCGCGCCGGCAAAAACCCAGGCGGCGCTGCTCGAGGCCATGCAGGAACGCCAGGTCACCCTGGAAGGCCGCGCCCTGCCGATCGCCCAACCATTCATGGTGCTGGCGACCCAGAACCCCATCGAACAGGAAGGCACTTACCCGCTGCCGGAAGCCGAGCTCGACCGCTTCATGCTCAAGGTCCGCATGGACTATCCCGATGCCGACCAGGAACTGGACATGGTCCGCCAGGTCAGCCGCTCGACCCGGGGCGACATGCTTGACGTGCAACCGTTGCGCACGGTGCTGCAAGCCAAGGATGTGCAGGCCTTGCAGCGCATCGCCAGTGACCTGCCGATGGACGATCAGGTCCTCGACTACGCCGTCCGCCTGGCCCGCGCCACTCGCAGCTGGCCGGGGCTGACGCTGGGCGCCGGGCCGCGCGCCTCGATCGCGTTGGTACGCTGCGCAAGGGCCCGGGCGCTGCTGCGCGGTGGCGAATTCGTGGTCCCGGACGACATCAAGGGCTGCGCCCTGGCCGTGCTGCGCCATCGCGTAAGGCTGGCGCCGGAGCTGGACATCGAGGGGCTCTCGGTGGATCAGGTGCTGGGGCAGTTGCTCGATCAAGTCTCGGCGCCGCGGCTGTGAMTTEQNEPVDGQAHAAQQRQRASQLAQAIRTELHKAVVGQAAVVDDVLTALIAGGHVLLEGVPGLGKTLLVRALARCFSGEFARIQFTPDLMPSDVTGHAVYDLQTEQFKLRKGPVFTNLLLADEINRAPAKTQAALLEAMQERQVTLEGRALPIAQPFMVLATQNPIEQEGTYPLPEAELDRFMLKVRMDYPDADQELDMVRQVSRSTRGDMLDVQPLRTVLQAKDVQALQRIASDLPMDDQVLDYAVRLARATRSWPGLTLGAGPRASIALVRCARARALLRGGEFVVPDDIKGCALAVLRHRVRLAPELDIEGLSVDQVLGQLLDQVSAPRLNANANANANA
D1-35_015291188hypothetical proteinATGATTACCTCGAAAACGTACCTGGATCCAGTACTGCCGGAAAATCTTCCCGCCTCGATCATTCAGGCCGCGGATCAGTTGCCGCGCAAAGCAGAGTTTCTTGCCGGGCGGCTCGCCGATGAGACATCGAAGCAACTGGCGAGCCTGTTGCGCATCACCAATACCTACTATTCGAATCTGATCGAGGGGCATCGAACCGAGATCGCTGATCTCCAGGTCGCTCGCACCACGCCGAAACGCCAGCGAAAGGAGCTCAAAGAGCTTGCCGTGCAACACATGACACAGCAGGAGGTGATGGAGCGACTGCTTCGCATGCGCTCGACGGACAGTTTCTCTGCCTTGTTCGACCCCCAGTTGATCGCGACCATTCACCGTCGACTGTTCAAAGACGCTTCAACGCAGGAGCTGATCCTGAGCGACGGTCGGATGATGGAACCAGGAAAGCTGCGGGCCGAAGCGAATGAACAGGTCCAGGTCGGCGCACATGTCGCCCCAGCTGCTACTGCGGTATTGCCCATGCTTGAGCATCTGCAACTGCACTACGGACGTATAAACGACCCCCGACGCCAATTGATCGCCGCCCTGGCGAGTCATCACCGTGTGGCGCTTGTCCACCCCTTCCTTGATGGCAACGGTCGAGTGATCCGGATGCTCACCCACCTGCAGCTTGTCCACCTCGGGCTAAAACCGTTTCTCTGGTCACTGTCGCGTGGCTTGGCCCGAAGGCAGGATGAATACTATCGTTTCCTGGCTTTGGCTGATCGAACTCGAGAAGGCGACTGTGACGGACGAGGTCAACTCTCACAGCGCCATTACTTCAACTTCATCGAGTTCATGCTCGATGTCTGTCGCGACCAGATTGAATACATGACAACCTCACTCAACCCAGCCAGGCTACGCGAGCAGATCTTTCATGTGTTTTCGACGGATGCTGGCCTTCGCCGTGCGGGGATCAGACCCGCCAGTGCCGGTGCTGTGTTGGCGCTTCTCACCCAAGGCGCGATGCCGCGTGCGGAATTCAAGGTATTTACAGGATTGAAGGATCGACTCGCAACGGAAGAACTGAGCCACTTGATCGAAGCGGGAATAGTGGTCAGTAGTACGCCCAGGTCTCGAACGGTGGCAGCGGGCTTGCCCGCACGCTTCGCCGGACTGATCTTTCCGAACCTGCATATCCAGATGGGCTGAMITSKTYLDPVLPENLPASIIQAADQLPRKAEFLAGRLADETSKQLASLLRITNTYYSNLIEGHRTEIADLQVARTTPKRQRKELKELAVQHMTQQEVMERLLRMRSTDSFSALFDPQLIATIHRRLFKDASTQELILSDGRMMEPGKLRAEANEQVQVGAHVAPAATAVLPMLEHLQLHYGRINDPRRQLIAALASHHRVALVHPFLDGNGRVIRMLTHLQLVHLGLKPFLWSLSRGLARRQDEYYRFLALADRTREGDCDGRGQLSQRHYFNFIEFMLDVCRDQIEYMTTSLNPARLREQIFHVFSTDAGLRRAGIRPASAGAVLALLTQGAMPRAEFKVFTGLKDRLATEELSHLIEAGIVVSSTPRSRTVAAGLPARFAGLIFPNLHIQMGNANANANANA
D1-35_015301164hypothetical proteinATGAGCCGCCGCGCCGGATGGCTGGTCGCGGCGCTGGTTGCGGCGTTGGTCTGTGCAGTAGGCGTCTACTTGTCCACGAAAGCCGTGCCCTACCAGGAAACCATTGATCACGGCCCATCCCCCGAAGCCCAGGCCAATCCCTACCTGGCGGCGGAACATTTCCTGCGTCGGCATGGGGTAGAAGTCGATCACGCCAACAGCCTGGACGTCCTGCCCGGCCTCGAACCCCACCAGCGTAGCCTGCTGTTGCTGGGCGAGCGGAGCGACATGACGCCACGAGAGGCCGACCAGTTGATGAACTGGACCCGGGCCGGCGGACGGCTGCTGTTCGTCGCCGAGGCCTTGTGGGATGACAGCACCAGCAGCAGCGGCGACTTGTTGCTGGACCGCGTGGGTCTGCGCCAACTCCTCAGCAAGGACCTCGAGGAATCCGACGCCGAACTCATCAAGGATCGCTACCCGGAACTGACCAAGCTTTATCTGGAAGATGAAGAAGCGCCGGCCTATGTCGGCTTCGACACCGACTTCCATCTCGAAGACCCGCAGAACCTCGCCCAGGCCTGGGCCAACAGCGCACAGGCAACTCACATGATGCAACTGAACCACGGCCTGGGCACCATCACTGTGCTCACTGACGCCGAGCTTTGGAAGAACGACCAGATCGACCAATACGACAACGCCTGGCTGCTCTGGTACCTGAGTGCCGACACGAATGTGACGCTGCTGTTCGACATCGAGCACGACAACCTGCTGACCCTGCTACTGCGCTATTTCCCCCAGGCCCTGGTGGCGCTGCTGGTCCTGATCGGGCTGTGGTTCTGGCGCTCGGCGGTGCGGCATGGCCCGTTGCAACAACCCGCCCCCAAGGCGCGACGGCAGTTACTGGAACACCTGCAGGCCAGCGCCGCGTTCCAGCTGCGCCACCACGGCCGGCAACACCTGTTGCAAGGTTTGCAGCATGACGTGTTGCGCCGGGCGCGCCAGCTTCATCCAGGTTACGAACGGCTGGTCGTCGCCGAACAATGGCAAGTGCTTGCACGCCTGACCCGCCAACCCACGCGAACCATCAGCCAGGCCCTCAGCCCCCGGCCGGCGCAGCGCATGTCCAGCACTGAGTTCTGCCGCCAGGTTGCCCTTTTGCAAACTCTCAGGAATGCCTTATAGMSRRAGWLVAALVAALVCAVGVYLSTKAVPYQETIDHGPSPEAQANPYLAAEHFLRRHGVEVDHANSLDVLPGLEPHQRSLLLLGERSDMTPREADQLMNWTRAGGRLLFVAEALWDDSTSSSGDLLLDRVGLRQLLSKDLEESDAELIKDRYPELTKLYLEDEEAPAYVGFDTDFHLEDPQNLAQAWANSAQATHMMQLNHGLGTITVLTDAELWKNDQIDQYDNAWLLWYLSADTNVTLLFDIEHDNLLTLLLRYFPQALVALLVLIGLWFWRSAVRHGPLQQPAPKARRQLLEHLQASAAFQLRHHGRQHLLQGLQHDVLRRARQLHPGYERLVVAEQWQVLARLTRQPTRTISQALSPRPAQRMSSTEFCRQVALLQTLRNALNANANANANA
D1-35_015311557hypothetical proteinATGCGCCTGAGTGACGCCAGCGTTGTCATCCGCCCCCGCACCACCTGGGAAGCCATGGACCTCGGCGTGCTGATGAGCCAGCAGCACCGACGGCTGCTGATGACCAGTTGGGCCATCGTCACGCTACCGGTGTATGCGCTGCTGACCCTGTTGCTGTGGGACTCGCCGTCGCTGGTAGTCATTGTGTTCTGGTGGCTGAAACCGGCCTTCGACCGCCTGCCCCTGTTCATTTTGTCCAAGGCCCTGTTTGGCGAGCCGCCTACGCTGAAGCAGGCGTTGCGCCAATGGCTCGCGCTGCTCAAGCCGCAATTGCTGGCCAGCCTGACCTGGCGACGGCTGAGCCTGAACCGCAGCTTCCTGATGCCGGTGGTGCAACTCGAAGGCCTGACCGGCGAGGCGCGCGAGCAACGTTTGCGCGTCCTGCTGCAGCGCAACGGCGGCGCGGCGCAGTGGCTGACCATCATCGGCGTGCACCTGGAAACCGCGCTGTGGTTCGGCCTGATGGCGCTGTTCTATCTGTTCATACCGCAACAGGTCGAGCTGGAATGGGACTGGCAGACCCTGATCGCCGTGGCTGAGCACGACTGGCTGTGGCTCGAACACCTGGTCAACTTCCTGTATCCACTGTTGCTGATCTTCTGGGAACCGGTTTACGTCGCCTGTGGCTTCAGCCTCTACCTGAACCGCCGCACGATTCTCGAGGCCTGGGACATCGAACTGGTATTCCGGCGCCTGCGCCAGCGCCTGGCCGGCACGGCCCCGGCGCTGTTGCTGCTGGCAATGACGCTGCTGCCGTTGGCGCCACCTGCCTGGGCCGCGCAGGACGACAACGGTCCCGACAGCCCGCGCTTGCTCCACCAGCCGCTGACCAGCGAGGCCTCTCGGGAAAGCATTGAAGCGATTCTCGAAGCGCCGCCATTCAAGAATCCGGAAACGATCACCCGCTATCGTTTCGGCGAAGAAGCCGAAAAACCAGCCGAATCAGCCGAACCAGCTGAAACCGATGGAGCGCCGGGCTGGCTCAAATCGCTGTTCGAATGGCTGTCGAAAAAACGCTTCGAGGGTATTGCCGCGCTGATCCAGGTGCTGCTCTGGGCGGCCCTGTTGACGGCCATCGCCTGGCTGGCCTGGCATTACCGCCATAGTCTCAAGACCCTGGCGAACCGTAGGCCAGCACAGCGCATGCATTCGAAACCCGCTGCGCCGGTGCAGATGTTCGGCCTGGATATTCGCGAAGAGAGCCTGCCGGAAGATGTGGCGAGCCGCGCCGAGCAGTTATGGTCCACCGCGCCTCGCGAGGCGTTGGGTTTGCTCTATCGAGCCTTGCTCAGCCGATTGCACCATGAATTCGCCATCCCCCTGAAACCCGCGGACACGGAAGGCCAGGTGTTGCAGCGCGTCGAACGACTCCAGCAGCCGGACCTGCTGGTCTTCAGCAAAAACCTGACCCAGCACTGGCAAAACATCGCCTACGGGCACCGTCCACCAGCGCCGCATCTGCAACGAGAGCTGTGCGATGGCTGGCGCGGCCTGTTCGGTCCGGGAGTTTCCCGATGAMRLSDASVVIRPRTTWEAMDLGVLMSQQHRRLLMTSWAIVTLPVYALLTLLLWDSPSLVVIVFWWLKPAFDRLPLFILSKALFGEPPTLKQALRQWLALLKPQLLASLTWRRLSLNRSFLMPVVQLEGLTGEAREQRLRVLLQRNGGAAQWLTIIGVHLETALWFGLMALFYLFIPQQVELEWDWQTLIAVAEHDWLWLEHLVNFLYPLLLIFWEPVYVACGFSLYLNRRTILEAWDIELVFRRLRQRLAGTAPALLLLAMTLLPLAPPAWAAQDDNGPDSPRLLHQPLTSEASRESIEAILEAPPFKNPETITRYRFGEEAEKPAESAEPAETDGAPGWLKSLFEWLSKKRFEGIAALIQVLLWAALLTAIAWLAWHYRHSLKTLANRRPAQRMHSKPAAPVQMFGLDIREESLPEDVASRAEQLWSTAPREALGLLYRALLSRLHHEFAIPLKPADTEGQVLQRVERLQQPDLLVFSKNLTQHWQNIAYGHRPPAPHLQRELCDGWRGLFGPGVSRNANANANANA
D1-35_01532975hypothetical proteinATGAAACAAAGCCTTTTCGAAAAACGTCATCAAGAGGAATGGGACCGTCTGTCCCAACAGCTCGACCAATTGGAGCGCAGCCGCAACGTCGCGCAGAGCAGCGATTTCCCCAATGCCTATCGACGCCTCTGCCACCACCTGACGCTGGCCCAGGCCAGGGGCTACAGCAGCCTCTTAATAGACGCGTTGCAGCAATTGGCCCTGCGTGGTCACCAGCAACTCTACCGGGACCGCGGCCGGTTCTCGGCCAGCCTGTCAACCTTCATTCTGGCCGGTTTCCCCCGACTGGTTCGTGAGCAATGGCGTTTCGTGCTGGCGGCGGCCTTGATGTTCCTTGGTAGCCTGGTCGGCATCGGGCTGCTGGTCTACCTGTTCCCCGAACTGGTCTACAGCGTGTTGAGCGTCGAAGAAGCCAGCCAGATACGCGGCATGTACGACCCTGCCGCCGGCCACCTGGGGCGCTCGATCGAGCGGGCCGCCAGCGAAGACTGGGTCATGTTCGGCTATTACATCATGCACAACATCGGTATTGCCTTTCAGACGTTCGCCAGCGGCTTGCTGTTTGGCCTGGGCAGCGCATTCTTCCTGTTCTTCAACGGCCTGACCATTGGCGCGGTGGCCGGGCACCTGACCCAGATCGGTTCGGGATCGACGTTCTGGTCATTCGTGATCGGTCACGGCGCCTTCGAACTCACTGCCATCGTCCTGGCCGGCGCGGCGGGCCTGTTGCTCGGTTGGGCACTGATCGCGCCGGGGCGTCTCACCCGAGGCGAAGCGTTACGGCTCGCCGCCGGCAAAAGCGTGCTGATCATCGGCGGCGTGGTGCTGTTGCTGCTCATCGCCGCGTTCGTCGAGGCCTACTGGTCCTCCAGCGCGGTGACACCCACCACCAAATACATCGTCGGCGCCTTGTTGTGGCTGCTGGTGCTCGGGTATCTGCTGTTTGCCGGACGAGGCCACCATGCGCCTGAGTGAMKQSLFEKRHQEEWDRLSQQLDQLERSRNVAQSSDFPNAYRRLCHHLTLAQARGYSSLLIDALQQLALRGHQQLYRDRGRFSASLSTFILAGFPRLVREQWRFVLAAALMFLGSLVGIGLLVYLFPELVYSVLSVEEASQIRGMYDPAAGHLGRSIERAASEDWVMFGYYIMHNIGIAFQTFASGLLFGLGSAFFLFFNGLTIGAVAGHLTQIGSGSTFWSFVIGHGAFELTAIVLAGAAGLLLGWALIAPGRLTRGEALRLAAGKSVLIIGGVVLLLLIAAFVEAYWSSSAVTPTTKYIVGALLWLLVLGYLLFAGRGHHAPENANANANANA
D1-35_01533726hypothetical proteinATGCTCGAGACACCAGCATTGCAAAGGAACGCGCCGCTGCCCGCGCCACTGGACACGCGTTACCAGGTCGAGACGCCCGAGGGCATCGACCTGCCGCTGCGCCCGGCGGGGTTGATGCCTCGCGCCCTGGCCTTTGCCATCGACCTCGGCATACGGGGGCTGGCCTTGGGCCTGCTGTTCCTGATCCTGGCGTTTTTTGGCGAACTGGGCGTCGGCCTGGGCTCGATCCTGCTGTTTGTCATCAGCTGGTGGTACATGGTGCTGTTCGAGGTGCTGAACCAAGGGCGTTCCCCCGGCAAGCAGATCATGGGTTTACGCGTCGTGCAGGATGACGGCCGGCCTGTCGACTGGTCGGCCTCGCTGATCCGCAACCTGCTGCGCTTCGTCGACATGCTGCCCTTCGGCTATGCGTTCGGGGCGATTACCTGCCTGCAGCATCCAGCGTTCAAGCGCCTGGGCGACCTGGCGGCCGGGACCCTGGTGGTTTATCGCGAACAAGCGATCAAACGCCCCATCCTGCCATCGGCCCGACCGATACGGCCACCTTTTGTCCTCGACCTCAACGAGCAGCGTGCCGTGCTGGGCTTCGCCGAGCGCCAGGCAGAACTGTCCGGTGCCAGGGTCACCGAACTGGCGACGATCCTCGCCGCGCCGCTGAAGGTTCACCCTTCCGGCGCCGTGGCCGAACTCAATGGCATCGCCCGCGGCCTGCTGGGGCCGACATGAMLETPALQRNAPLPAPLDTRYQVETPEGIDLPLRPAGLMPRALAFAIDLGIRGLALGLLFLILAFFGELGVGLGSILLFVISWWYMVLFEVLNQGRSPGKQIMGLRVVQDDGRPVDWSASLIRNLLRFVDMLPFGYAFGAITCLQHPAFKRLGDLAAGTLVVYREQAIKRPILPSARPIRPPFVLDLNEQRAVLGFAERQAELSGARVTELATILAAPLKVHPSGAVAELNGIARGLLGPTNANANANANA
D1-35_015341428sbcBCOG2925Exodeoxyribonuclease IGTGACCTCCATTTTCTGGTACGACTACGAAACCACCGGCATCAATCCGCGTTGCGACCGCCCCTTGCAGGTGGCCGGGATACGTACCGATTTCGAACTCAATGAAATCGATGAACCGGTGAACCTGTACTGCCGGCCCAGCGATGACATCCTGCCCCATCCGGCCGCATGCGCGATCACCGGGATCACACCGGCCTGCCTGGCGGAAAAAGGCTTGAGCGAGGCCGATTTCATGACCCGCGTCCATGCGCAACTGGCCGCGCCCGGGACCTGTGGCGCCGGCTACAACACGCTGCGCTTCGATGACGAGATGACCCGCTACAGCCTTTATCGGAATTTCTTCGACCCGTACGCTCGGGAATGGCAGGGGGGCAACAGTCGCTGGGACCTGATTGACCTGGTGCGGGCCGCCTATGCGTTGCGCCCCGATGGGATTGTCTGGCCGCAGGAGGAGGGGCGCGTCACCCTCAAGCTCGAACGCCTGACCGCCGCCAACGGCATCGACCATGGCCAGGCCCATGATGCGCTGTCGGATGTACGTGCAACGATTGCCCTGGCCCGGTTGATCCGTCAGAAACAACCCCGGCTTTACGACTGGCTGTTCCAGTTGCGCACTAAACAGAAAGTGATGGACCAGGTCCGCCTGCTACAGCCCATGGTGCACATCTCCGGGCGCTTCTCGGCGGCGCGAAACTACATCGGCGTGGTCCTGCCGCTGGCCTGGCATCCGAAGAACCGCAACGCCCTGATCGTCTGCGATCTGCATCTGGATCCTCAAGGGCTGCTGGACCATGACGCCGAAATCCTGCGCCAACGCTTGTATACCCGCCGTGAAGAGTTGTTGGAAGGAGAATTGCCCGTACCCCTCAAGCTTATTCATATCAACAAGTGCCCGGTGGTCGCGCCGCTGTCAGTCCTGCGCGACGAGGACCAGCAACGCCTGCAACTGGACATGGAGGGTTATCGCCAGCGGGCGCTGCGGCTAAGTGACGCACAGCAAGTCTGGCACGATAAACTCCAAGCGATTTATGGTCGCGAGGATTTCACTGCGAGCGAGGACCCCGAACAACAGTTGTACGCTGGATTCATGGGTGATCGTGATCGGCGTTTGTGCGAACAAGTGCGCCAGGCAGATCCCGACCAGTTGGCGGGGGAACGTTGGCATTTCGATGATGAGCGCCTGCCGGAATTATTATTCCGATACCGGGCCCGTAACTTCCCCGACACCTTGAGCAGCGAAGAGCAGGCACGCTGGAAACTATTTTGCCAGCAGCGACTGAAATCACCGGAGTGGGGGGCGCCTAATACCCTGGCAAGTTTTGATGAGGCGATGACGCAGTGGCTGGCGCTTTCCAGCCCAATGCAGCAAGAGGTGCTGACTCAATGGCAGGGCTATAGCCAGCAATTGCGCAAACGTTTAAGCCTTTGAMTSIFWYDYETTGINPRCDRPLQVAGIRTDFELNEIDEPVNLYCRPSDDILPHPAACAITGITPACLAEKGLSEADFMTRVHAQLAAPGTCGAGYNTLRFDDEMTRYSLYRNFFDPYAREWQGGNSRWDLIDLVRAAYALRPDGIVWPQEEGRVTLKLERLTAANGIDHGQAHDALSDVRATIALARLIRQKQPRLYDWLFQLRTKQKVMDQVRLLQPMVHISGRFSAARNYIGVVLPLAWHPKNRNALIVCDLHLDPQGLLDHDAEILRQRLYTRREELLEGELPVPLKLIHINKCPVVAPLSVLRDEDQQRLQLDMEGYRQRALRLSDAQQVWHDKLQAIYGREDFTASEDPEQQLYAGFMGDRDRRLCEQVRQADPDQLAGERWHFDDERLPELLFRYRARNFPDTLSSEEQARWKLFCQQRLKSPEWGAPNTLASFDEAMTQWLALSSPMQQEVLTQWQGYSQQLRKRLSLNANANANANA
D1-35_01535378hypothetical proteinATGTCCCTGATCACCGAATACAACGCTACAAAACAAGCCATTGAAGAACTGCAACAACGTCTGGCCGACCTGTCCAAAGACGACAAACTGCAAAAAGAACTGGAATTCGAAGGCAAACTGCGCACGCTGATGGGTGAATACTCCAAGTCCCTGCGCGATATCATTGCCCTGTTGGATCCAGAGTCCAAGTCGAGCAAAGCCCCGCGTGGCGCTGTGAAAACTACCGGCACCAAGCGCGCTCGCAAAGTTAAGCAATACAAGAACCCGCACAACGGTGAAGTCATCGAAACCAAAGGTGGCAACCACAAGACTCTGAAAGAGTGGAAAGCCAAGTGGGGCGGCGACGTGGTTGAAGGCTGGGCGACCCTGCTGGGCTAAMSLITEYNATKQAIEELQQRLADLSKDDKLQKELEFEGKLRTLMGEYSKSLRDIIALLDPESKSSKAPRGAVKTTGTKRARKVKQYKNPHNGEVIETKGGNHKTLKEWKAKWGGDVVEGWATLLGNANANANANA
D1-35_01536849purU_1COG0788Formyltetrahydrofolate deformylaseATGCGCACTTTTCGGCTGGTGATCGCTTGCCCGGACCGCGTCGGTATCGTTGCTAAAGTCAGTAACTTTCTGGCGTCCCATAACGGCTGGATCACTGAAGCAAGCCACCATTCGGACAATCAGAGTGGTTGGTTTTTCATGCGTCACGAGATACGCGCCGACTCGCTGCCCTTCGGCATCGAAGCCTTCCGCGCGGCATTCGCCCCGATTGCCGAAGAGTTTTCGATGGACTGGCGTATCACCGATACCGCGCAGAAAAAGCGCGTAGTGCTGATGGCCAGTCGTGAGTCCCACTGCCTGGCTGATCTGTTGCACCGCTGGCACAGCGATGAGCTCGATTGCGACATCGCCTGTGTCATTTCCAACCATGACGACTTACGCAGCATGGTGGAATGGCACGGCATCCCGTACTACCACGTACCGGTCAACCCGCAGGACAAGCACCCGGCGTTCGCCGAGGTCTCGCGGCTGGTCAAGCAGCACGACGCCGAGGTGGTGGTACTGGCCCGCTACATGCAGATCCTGCCGCCGTCGCTGTGCAGCGAATACGCGCATAAAGTCATCAACATCCATCACAGTTTCCTGCCGTCGTTCGTCGGTGCCAAGCCTTACCACCAGGCCTCGATGCGCGGTGTGAAGCTGATCGGCGCCACGTGCCACTACGTGACCGAAGAGCTGGACGCCGGCCCGATCATCGAGCAGGACGTCGTCCGTGTCAGCCACAGCGACAGCATTGAAGACATGGTGCGCTTCGGCCGCGACGTGGAAAAAATGGTCCTGGCGCGCGGCTTGCGCTATCACTTGGAAGACCGCGTACTGGTGCACGGGAACAAGACCGTGGTCTTCTGAMRTFRLVIACPDRVGIVAKVSNFLASHNGWITEASHHSDNQSGWFFMRHEIRADSLPFGIEAFRAAFAPIAEEFSMDWRITDTAQKKRVVLMASRESHCLADLLHRWHSDELDCDIACVISNHDDLRSMVEWHGIPYYHVPVNPQDKHPAFAEVSRLVKQHDAEVVVLARYMQILPPSLCSEYAHKVINIHHSFLPSFVGAKPYHQASMRGVKLIGATCHYVTEELDAGPIIEQDVVRVSHSDSIEDMVRFGRDVEKMVLARGLRYHLEDRVLVHGNKTVVFPGPT0008155_2982DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008155-purU-K01433NANA
D1-35_01537180hypothetical proteinATGACCGATCCCTTGGACAAAGCCACCGCCAGAGCGCCGGCAACCGTGGGCGAGGGTTGCCTGAGTCGCTACGATCCCGAAGCGCTGGGCCCGGAAGACGGCACCGAATTTCCCGACGCCGCCCAGCTGTGGGAAGAGCTGCACGAGCAGCCCCAGGACGATCCCGAGTCCAAGGACTGAMTDPLDKATARAPATVGEGCLSRYDPEALGPEDGTEFPDAAQLWEELHEQPQDDPESKDNANANANANA
D1-35_01538996hypothetical proteinATGAAACGGCTGGTCTGGTTAGGCGCCGCCCTGTTGATTGCGGTATTGGTCCCGATGCTCGTGGGCGGCGGGGAAATGTGGTCGCGGCTGCAGCGCTTTCCGCTGTCCTTGCTGCTGGTCATGCTTGGCATGATCGTACTCTGCTGGGGCCTCAACTCGGTGCGCCTGCGCTTGCTGCTGGGTGAACACCGTGGGCGCATAGGCGGGTTGAAAAGCATTGGCGTGGTGATGTCCACCGAGTTCGCGATGTGCGCGACACCCGGCGGCAGTGGCGGGCCGCTGACGCTGATGGCGCTGCTCGCGCGCAACGGCGTGCGCCCCGCCCATGGCAGCGCGGTGTTCGCCATGGATCAGTTGAGCGACCTGCTGTTTTTTCTCTGCGCCTTGTTGGGCATCCTGTTTTATGCACTTTTCCAGAATCTCAGCCAGCGCATGGAATGGATGCTGGGGCTGAGCGCGGTTTCATTGTTCGGCGGGCTCTTTTGCTGCGCGCTGGTGGCCCGCTACCATCGCAGGCTGATTCTCCTGGGTGCACGGCTGTTGCGGCATTTGCGAGTGAAGCCGGTGACCCGTCGACGCTGGGGACGCAAGATCCTGAATTTCCTCGCGGCATTTACCGACACTCTGAAATTGCCACGCCAGACGCTGTTCCAGGTGTTCGTCTTGACCTGCCTGCACTGGGTCCTGCGCTACAGCGTGCTGTACCTGGCATTAAAAGGACTCGGGGCGGATCTGCAATGGGCCTGGAGTTTCCTGATCCAGATGCTATCCCTCAGCGCTGGGCAGTTCAGCCTGTTGCCGGGCGGCGCCGGAGCGGCGGAGTTGACCTCGGCGGCGTTGCTGGCACCGATGGTGGGCAAATCCACCGCGGCGGCAGCGATCCTGATCTGGCGGGCGGTGACGTATTACTTCTATCTGCTGGCAGGAGGACCGGTGTTCTTCATGATGGTCGGGCGACCTTTGATCAAGAAGCTGATGAAGCTGCGGCAAGCCTGAMKRLVWLGAALLIAVLVPMLVGGGEMWSRLQRFPLSLLLVMLGMIVLCWGLNSVRLRLLLGEHRGRIGGLKSIGVVMSTEFAMCATPGGSGGPLTLMALLARNGVRPAHGSAVFAMDQLSDLLFFLCALLGILFYALFQNLSQRMEWMLGLSAVSLFGGLFCCALVARYHRRLILLGARLLRHLRVKPVTRRRWGRKILNFLAAFTDTLKLPRQTLFQVFVLTCLHWVLRYSVLYLALKGLGADLQWAWSFLIQMLSLSAGQFSLLPGGAGAAELTSAALLAPMVGKSTAAAAILIWRAVTYYFYLLAGGPVFFMMVGRPLIKKLMKLRQANANANANANA
D1-35_01539768hypothetical proteinATGACCGCTCAATCCAGCCTGCTGCTGGTGCTGCACGATGTCGCACCGCAAACCTGGCCCGACTACCAGCCCTTCGTCGAAGCCGTCGACGCCCTCGGCCAGGTGCCGATGACCTGGCTGGTGGTGCCGGACTTCCACCACGCCAACGCGCTCGACGGACATCCCGGCTTCCGGCGCATGCTCGACAGCCGGGTCGAACGCGGCGATGAACTGGTGCTGCACGGTTATTACCACTGTGATGACGGTCCGCCGGCGCTTCATCCCAAGGACTGGTTCATGCGCCGGGTCTATACCCATGAAGGGGAGTTCTACGGTCTGTCCGAGGAAGCGGCCCTCGCCCGCCTTCGCGCCGGCATCGAAATCTTTCAGCGCTACCAGTGGCCGCTGGAAGGCTTCGTCGCGCCGGCCTGGCTGATGAGCGAGGGCACGCGCCAGGCCTTGCGCCAGTTGCCGTTGAGTTATACCAGCGACACCCAGCACCTCTACCGCTTGCCGGAGTTCACCCCGATCGATGCCCCGGGGCTGGTTTGGAGCGCCCGCAGCGCCTGGCGTCGAGGCCTGTCAAAAGTCATCAGCGACCGGCGTGAACAGCGCTGGCGCCAGGCACCGGTCATTCGCCTGGGCCTGCACCCGGTAGACATGCGCCACGGATTTTCCCGCAACTACTGGCTGCGAACCCTGGAGCGCCTGCTTGAGGACGGGCGCGTGCCGATGACCAAGATCGACTGGCTGGCGTCACTGCGCCAGCCAGTCAGCAGTGCCGCATGAMTAQSSLLLVLHDVAPQTWPDYQPFVEAVDALGQVPMTWLVVPDFHHANALDGHPGFRRMLDSRVERGDELVLHGYYHCDDGPPALHPKDWFMRRVYTHEGEFYGLSEEAALARLRAGIEIFQRYQWPLEGFVAPAWLMSEGTRQALRQLPLSYTSDTQHLYRLPEFTPIDAPGLVWSARSAWRRGLSKVISDRREQRWRQAPVIRLGLHPVDMRHGFSRNYWLRTLERLLEDGRVPMTKIDWLASLRQPVSSAANANANANANA
D1-35_015401092mgtA_2COG0438GDP-mannose-dependent alpha-mannosyltransferaseATGTTCTACGCCCCCGCCAGCGGAGGTGTACGCACTTATCTGGATGCCAAGCACCGGCGCCTGGGCAATCGGCCGGGTATTCGCCACAGCCTTCTGATCCCCGGCGCGCATTTGAGCGAGCAGGATGGGATCTACAAGGTCCCGGCCCCTCCGCTGCCCTTTGGCAAGGGCTACCGCTTCCCGCTGCGCCTGGCCCCTTGGCGTAACGTCCTGCGCGACTTGCAGCCCGACCTGATCGAGGTCGGCGACCCTTACCTGACCGCCTGGGCGGCACTGGATGCCCGGCGACAGCTGGACGTGCCCGTGATCGGCTTTTATCACTCCGACCTGCCGTTGTTGGTAAGCAACCGCATGGGCAACTGGTTCACGCCCAATATCGAAGCCTATGTCAGCAAACTGTACGGCAACTTCGACCGGGTGCTCGCGCCGAGCCAGGTCATGGCCGACAAACTCACCGGGCTTGGGGTCAAAAATGTTTACGTGCAGCCGTTGGGGGTAGACCTGCAGACCTTCAATCCCGCCGCTCGCGACCCGGAACTGCGGGCCGAACTCGGCATCGCCGAAGACGCGCGCCTGCTGATTTTCGCCGGTCGCGGCTCCAAGGAAAAAAACCTGCCGGTGCTGCTCAAATGCATGCAACGCCTGGGCGAACGCTATCACCTGCTGCTGGTGGGCTCTTCGATGCCAGCCGTGGTGCCGGACAACGTCACGGTGATCGACGAATTCTGCCCGGCTGCGCAAGTCGCCCGGCTGATGGCCAGCGCCGACGCCCTGCTGCACGCAGGCGACCAGGAAACCTTCGGCCTGGTAATCCTCGAAGCGATGGCCAGCGGCATCCCGGTGGTAGCGGTCGCGGCAGGCGCCTTCAATGAAATCGTCCACGAGGACTGTGGCCTGCTGTGCGCGCCCGACAATCCACAGGCGATGGCCAATGCCGTTCGGCAACTGTTCGCCGAAGGCTGCCAGCAGCGCGGCGCAAAAGCACGCCGACATGTAGAACGGCATTACGCCTGGGATTCGGTGGTCAATAGTCTGTTGGGCCACTATTACAGCGTGCTCGGCGCAGAAATGCCCCTGCTGGCCAATGGTTGAMFYAPASGGVRTYLDAKHRRLGNRPGIRHSLLIPGAHLSEQDGIYKVPAPPLPFGKGYRFPLRLAPWRNVLRDLQPDLIEVGDPYLTAWAALDARRQLDVPVIGFYHSDLPLLVSNRMGNWFTPNIEAYVSKLYGNFDRVLAPSQVMADKLTGLGVKNVYVQPLGVDLQTFNPAARDPELRAELGIAEDARLLIFAGRGSKEKNLPVLLKCMQRLGERYHLLLVGSSMPAVVPDNVTVIDEFCPAAQVARLMASADALLHAGDQETFGLVILEAMASGIPVVAVAAGAFNEIVHEDCGLLCAPDNPQAMANAVRQLFAEGCQQRGAKARRHVERHYAWDSVVNSLLGHYYSVLGAEMPLLANGPGPT0024305_363DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PHOSPHATIDYLINOSITOL_MANNOSIDE_REMODELLINGCE-REMODELLINGPHOSPHATIDYLINOSITOL_MANNOSIDE_BIOSYNTHESIS,PGPT0024305-pimC-K14335NANA
D1-35_015411488hypothetical proteinATGCCTGATTCATCGCAACTCGTTATCGGGGCCGACCTGGCCGGCCAACCTGTCGCCCAGGCCATGCGCCTGGCCAATCGTCATGGGCTGGTGGCGGGCGCCACCGGCACCGGCAAGACCGTCACCTTGCAGCGCCTGGCCGAGATGTTCAGCGATGCCGGCGTGGCGGTGTTCGCGGCGGACATCAAGGGTGACCTGTGCGGCCTCGGCGCCGCCGGCAATCCCCAAGGCAAGATCGCCGAGCGCATCGCCGGCATGCCCTGGCTCGGCCATGAGCCCCAGGCCTATCCGGTGACCTTGTGGGATATCCACGGCCAGTCCGGTCATCCGCTGCGCACGACGTTGAGTGAAATGGGCCCGTTGTTGCTCGGCAGCCTGCTGGAACTGACGGACAGCCAGCAAGCGGCGTTGTATGCGGCGTTCAAGGTCGCCGACCGCGAGGGCCTGTTGCTGCTCGACCTCAAGGACCTGAAGGCGCTGCTCAATCACCTCAAGGACAACCCTGAATTGCTCGGGGACGACGCGGCCCTGATGACCACCGGTTCCAGCCAGGCCTTGATGCGCCGACTGTCCACCCTGGAACAGCAGGGCGCGGACGCCTTGTTCGGCGAACCGGCGTTGCAGCTTGAAGACATCCTGCAACCGGCCAGTGACGGCCGTGGCCGCATTCATCTGCTGGACGCCAGTCGCCTGGTCCATGAAGCGCCGAAAGTCTACGCGACATTCCTGCTGTGGCTGCTGGCCGAGCTGTTCGAGCAACTGCCCGAGCGCGGCGATGCGGACAAACCCTTGCTGGCGTTGTTTTTCGATGAGGCACATTTGTTGTTCGCCGGCACGCCCAAGGCATTGCAAGAGCGCCTGGAACAAGTGGTGCGGCTGATCCGCTCCAAGGGCGTCGGGGTGTATTTTGTCACCCAGTCGCCGGGCGATCTGCCGGACGACGTGCTCGCGCAGCTGGGGTTGCGCATCCAGCATGGTCTGCGGGCGTTCACCGCCAAGGAACAGAAATCCCTGCGGGCGGTGGCTGACGGTTTTCGACCAAATCCGCAATTCGATGCCCTGGCGGTGCTGACCGAGCTGGGCATCGGTGAAGCGTTGGTCGGCACCTTGCAGGAAAAAGGCACGCCGGAAATGGTCCAGCGTGTGCTGGTGGCGCCGCCGCAGTCGCGCATCGGGCCGTTGACCGCGGCCGAGCGTGCCGGGCTGATCGCCAGCTCACCGTTGCAGGGCCGTTATGACAAACCCATCGACCGCGAGTCGGCCTATGAAGTGCTGATGGGGCGCAAGGGGCTGGAGCCGCAGGCCGAAGCCGCGCCAGGCAAACCGGCGACCGAGGAACCGAGCTTCACCGAAAAGGCCGGGGAATTCCTCGGCACCGCGGCCGGCCAGGCGCTGAAATCGGCGATGCGCCAGGCGGCCAATCAGTTGGGCCGGCAGTTGGTGCGTGGGTTGATGGGGTCGTTGCTGGGGGGCAGCAAGCGGCGGTAGMPDSSQLVIGADLAGQPVAQAMRLANRHGLVAGATGTGKTVTLQRLAEMFSDAGVAVFAADIKGDLCGLGAAGNPQGKIAERIAGMPWLGHEPQAYPVTLWDIHGQSGHPLRTTLSEMGPLLLGSLLELTDSQQAALYAAFKVADREGLLLLDLKDLKALLNHLKDNPELLGDDAALMTTGSSQALMRRLSTLEQQGADALFGEPALQLEDILQPASDGRGRIHLLDASRLVHEAPKVYATFLLWLLAELFEQLPERGDADKPLLALFFDEAHLLFAGTPKALQERLEQVVRLIRSKGVGVYFVTQSPGDLPDDVLAQLGLRIQHGLRAFTAKEQKSLRAVADGFRPNPQFDALAVLTELGIGEALVGTLQEKGTPEMVQRVLVAPPQSRIGPLTAAERAGLIASSPLQGRYDKPIDRESAYEVLMGRKGLEPQAEAAPGKPATEEPSFTEKAGEFLGTAAGQALKSAMRQAANQLGRQLVRGLMGSLLGGSKRRNANANANANA
D1-35_01542456hypothetical proteinATGGCCTTTCGCCCTCTTCCAGCCAAGGCGCCCGCCGTTCTGCTGCGCGAAGCCAAGCCGCTGAAAGCCATCTTCGGCCACGCCAGACGCCTGGGGCACCTGCAGCGCCTGCTCGACAGCCAGCTACAGCCCGCTGCGCGCGAGCATTGTCACGTAGCGTCCTGGCGGGAAGGCAGTTTGTTGCTGATCGTCACCGACGGTCACTGGGCCACGCGCCTGCGCTACCAGCAAAAGCGCCTGCTGCGCCAATTGCAGGCATTCGAGGAGTTCGCCAACCTGACGCGAATCCTGTTCAAGGTCCAGCCGCCCACGGTGCAAGTCGGCGCCAAGGGTCATACGCTGGATCTGTCCACCGACGCTGCTGCCACCATCCAGGCCACGGCCGATGGCATCAGCGACCCCAACCTGCGGGCAGCCCTGGAGCGATTGGCGGCCCATGCGCGGCCCAAGGATTGAMAFRPLPAKAPAVLLREAKPLKAIFGHARRLGHLQRLLDSQLQPAAREHCHVASWREGSLLLIVTDGHWATRLRYQQKRLLRQLQAFEEFANLTRILFKVQPPTVQVGAKGHTLDLSTDAAATIQATADGISDPNLRAALERLAAHARPKDNANANANANA
D1-35_015432742secACOG0653Protein translocase subunit SecAATGTTTGCGCCTTTGTTAAAGAAACTTTTTGGAAGCAAGAACGAGCGTGAAGTCAAACGCATGCTCAAGACGGTACAGATCGTCAATGCCTTCGAAGAGCAAATGGTGGCCCTTTCGGACGATCAGTTACGCGCCAAGACCGCCGAATTCAAGGACCGCATCGCCAAGGGCGAGACCCTTGACCAGATCCTGCCCGAAGCTTTCGCGGTCTGCCGTGAAGCCGGCAAGCGGGTCATGGGCATGCGCCACTTCGACGTCCAGTTGATCGGCGGCATGACCTTGCACGAAGGCAAGATCGCCGAAATGCGCACCGGTGAGGGCAAGACCCTGGTGGCGACCCTGGCGGTATATCTCAACGCACTGTCCGGCAACGGCGTGCACGTGGTGACGGTCAACGACTACCTGGCCCGCCGCGACGCCAACTGGATGCGCCCGCTCTATGAATTCCTCGGCCTGACGGTCGGCGTGGTCACGCCGTTCCAGCCGCCGGAAGAGAAGCGCGCGGCCTACGCCTCGGACATCACCTACGGCACCAACAACGAATTCGGTTTCGACTACCTGCGCGACAACATGGCGTTCAGCATGGAAGAAAAATTCCAGCGCGAACTCAACTTTGCCGTGATCGACGAAGTCGACTCCATCCTCATCGACGAAGCCCGTACGCCGCTGATCATTTCCGGCCAGGCCGAAGACAGCTCCAAGCTGTACATCGAGATCAACAAGCTGATCCCGCAGCTCCAGCTGCACGTCGAAGAAGTCGAAGGCGAAGTGACCCAGCCCGGCCACTACACCGTCGACGAGAAGACCCGCCAGGTCGAGCTCAACGAATCCGGCCACCAGTTCATCGAAGAGATGCTGACCCGCGTCGGCCTGCTGGCTGAAGGCGAAAGCCTCTACTCGGCCCATAACCTGGGCCTGCTGACCCACGTCTACGCCGGCCTGCGTGCCCACAAGCTGTTCCATCGCAACGTCGAATACATCGTCCAGGACGGCCAGGTCGTACTGGTTGACGAACACACCGGCCGCACCATGCCGGGCCGTCGCCTGTCCGAAGGCCTGCACCAGGCCATCGAAGCGAAGGAAGGCCTGAACATCCAGGCCGAGAGCCAGACCCTGGCCTCGACCACGTTCCAGAACTACTTCCGCCTGTACAACAAACTGTCCGGCATGACCGGTACCGCCGACACCGAAGCGTTCGAATTCCACCAGATCTACGGCCTGCAAGTGGTGGTGATTCCGCCGAACAAGCCGCTGGCGCGCAAGGACTACAACGATCTGGTGTTCCTGACCGCCGAAGAGAAATACGCGGCGATCATCAACGACATCAAGGAAGGCATGGCCCAGGGCCGTCCGATCCTGGTGGGTACCGCGACCATCGAGACCTCCGAGCACATGTCCGCCTTGCTCGCCAAGGAAGGTATCGAGCACAAGGTCCTCAACGCCAAGTTCCACGAGAAGGAAGCCGAGATCATCGCCCAGGCCGGTCGCCCGGGTGCGTTGACCATCGCCACCAACATGGCCGGCCGTGGTACCGACATCCTGCTGGGCGGCAACTGGGAAGTCGAAGTGGCTTCGCTGGAAAACCCGACCCCCGAGCAGATCGCGCAGATCAAGGCCGACTGGCAGAAGCGTCACCAGCAGGTGCTCGAATCCGGTGGCTTGCAGGTGATCGCGTCCGAGCGTCACGAATCGCGCCGTATCGACAACCAGCTGCGTGGCCGTGCCGGTCGCCAGGGCGACGCCGGCTCCAGCCGCTTCTACCTGTCCCTGGAAGACAGCCTGATGCGCATCTTCGCCTCTGATCGGGTGAAGAATTTCATGAAGGCCCTGGGCATGCAGCCGGGCGAGGCGATCGAGCACCGCATGGTGACCAACGCCATCGAGAAGGCGCAGCGCAAGGTCGAGGGCCGCAACTTCGACATCCGCAAGCAGTTGCTTGAATTCGACGACGTCAACAACGAGCAGCGCAAAGTGATCTATCACATGCGCAACAGCCTGTTGGCCGCAGACGACATTGGCGAAACCATCGCCGATTTCCGCCGCGAAGTGCTCGACGCCACTGTCAGCGCACACATTCCGCCGCAGTCGCTTCCGGAGCAGTGGGACGTTGCTGGTCTGGAAGCCTCCCTGCGCAGTGATTTCGGCGTGTCGTTGCCGATCCAGCAGTGGCTCGACGAGGACGATCACCTCTACGAAGAAACGCTGCGCGAGAAACTTCTGACCGAACTGATCGCCGCGTACAACGAGAAAGAAGACCAGGCCGGCGCCGAAGCGCTGCGCTCGTTCGAGAAGCAAATCGTGCTGCGGGTGCTGGACGACCTGTGGAAAGACCATCTGTCGACCATGGATCACCTGCGCCACGGTATCCACTTGCGTGGCTACGCGCAGAAGAATCCGAAGCAGGAATACAAGCGCGAGTCCTACACGCTGTTCTCCGAGCTGCTGGATTCGATCAAGCGCGACTCGATCCGGGTCCTGTCCCACGTTCAGGTTCGCCGCGAAGATCCGGTCGAAGAAGAAGCCCGCCTGCGCCAGGAGGCCGAAGCCCTGGCCGCGCGCATGCAGTTCGAGCACGCCGAAGCTCCGGGCCTGGAAGTGGTCCAGGCGATGGAAGAGGGCGTCGATGTGGACGTGGCACTGGCCACCGCACCGGTACGCAACGAGCAGAAACTGGGCCGAAACGAGCTGTGCTATTGCGGCTCGGGCAAGAAATACAAGCATTGCCACGGGCAGATCCAATAAMFAPLLKKLFGSKNEREVKRMLKTVQIVNAFEEQMVALSDDQLRAKTAEFKDRIAKGETLDQILPEAFAVCREAGKRVMGMRHFDVQLIGGMTLHEGKIAEMRTGEGKTLVATLAVYLNALSGNGVHVVTVNDYLARRDANWMRPLYEFLGLTVGVVTPFQPPEEKRAAYASDITYGTNNEFGFDYLRDNMAFSMEEKFQRELNFAVIDEVDSILIDEARTPLIISGQAEDSSKLYIEINKLIPQLQLHVEEVEGEVTQPGHYTVDEKTRQVELNESGHQFIEEMLTRVGLLAEGESLYSAHNLGLLTHVYAGLRAHKLFHRNVEYIVQDGQVVLVDEHTGRTMPGRRLSEGLHQAIEAKEGLNIQAESQTLASTTFQNYFRLYNKLSGMTGTADTEAFEFHQIYGLQVVVIPPNKPLARKDYNDLVFLTAEEKYAAIINDIKEGMAQGRPILVGTATIETSEHMSALLAKEGIEHKVLNAKFHEKEAEIIAQAGRPGALTIATNMAGRGTDILLGGNWEVEVASLENPTPEQIAQIKADWQKRHQQVLESGGLQVIASERHESRRIDNQLRGRAGRQGDAGSSRFYLSLEDSLMRIFASDRVKNFMKALGMQPGEAIEHRMVTNAIEKAQRKVEGRNFDIRKQLLEFDDVNNEQRKVIYHMRNSLLAADDIGETIADFRREVLDATVSAHIPPQSLPEQWDVAGLEASLRSDFGVSLPIQQWLDEDDHLYEETLREKLLTELIAAYNEKEDQAGAEALRSFEKQIVLRVLDDLWKDHLSTMDHLRHGIHLRGYAQKNPKQEYKRESYTLFSELLDSIKRDSIRVLSHVQVRREDPVEEEARLRQEAEALAARMQFEHAEAPGLEVVQAMEEGVDVDVALATAPVRNEQKLGRNELCYCGSGKKYKHCHGQIQPGPT0025735_2518DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025735-secA-K03070NANA
D1-35_015441218argJArginine biosynthesis bifunctional protein ArgJATGGCTGTTGGTCTTGGTCCGTTGCCAACGTTGCACCCGGTTGCCGGTTTTGAACTTGGTATCGCCTCGGCGGGCATCAAGCGTCCCGGGCGCAAGGATGTGGTGGTCATGCGTTGCGCCGAGGGCTCGACGGTCGCCGGCGTGTTCACGCTCAATGCGTTTTGTGCCGCGCCGGTGATCCTGGCCAAGCAACGCGTGCAAGGGCCGGTGCGTTACCTGCTGACCAACACCGGTAACGCCAACGCCGGCACCGGCGCGCCAGGCCTGGCCGCCGCCGAGCGCACCTGCGCCAGGCTGGCTGAACTGACCGGTGTCGACGCCAGCCAGGTGCTGCCGTACTCCACGGGTGTGATCGGCGAACCGCTGCCGGTCGAAAAAATCGAAGGCGCGCTGCAAGCCGCCCTTGATGGCCTCTCGGAAAACAACTGGGCCGCGGCCGCCACCGGCATCATGACCACCGACACCCTGCCCAAGGGCGCGAGCCGCCAGTTCCAGCACGACGGTGTAACCGTGACCGTGACCGGCATCAGCAAAGGCGCCGGCATGATCCGCCCGAACATGGCGACCATGCTCGGTTACATCGCCACCGACGCCAAGGTCTCCCGCCAGGTGTTGCAGGACCTGATGCTCGACGGCGCCAACAAGTCCTTCAACCGCATCACCATCGACGGCGACACTTCGACCAACGACTGCTGCATGCTGATCGCCACCGGCAAGGCCAACCTGCCGGAGATCACCGAAGCCAGCGGTCCGCTGTTCGCGGCGCTGAAACAGGCGGTGTTCGAGGTGTGCATGGAAGTGGCCCAGGCCATCGTCCGTGACGGCGAAGGCGCGACCAAGTTCGTCACCGTACAGGTCAACGGTGGTGGTAATCACCAGGAATGCCTGGACGTCGGTTATACCGTGGCGCATTCGCCGCTGATCAAGACCGCACTGTTTGCTTCCGACCCGAATTGGGGTCGTATTCTCGCCGCTGTCGGCCGCGCCGGGGTGCCTGAGCTGGACGTGAGCAAGATCGACGTCTTCCTCGGTGATGTCTGCATCGCCAGCCAGGGCGCCCGGGCGACGACCTACACCGAGGCGCAGGGCGCGGCGGTGATGCAGCAGGAGGAAATCACCATCCGCATCGAGCTGGGGCGTGGCGATTGCAGCGAAACGATCTGGACCACCGATCTGTCCCACGAGTACGTCAAGATCAACGCTGAGTATCGGACTTAAMAVGLGPLPTLHPVAGFELGIASAGIKRPGRKDVVVMRCAEGSTVAGVFTLNAFCAAPVILAKQRVQGPVRYLLTNTGNANAGTGAPGLAAAERTCARLAELTGVDASQVLPYSTGVIGEPLPVEKIEGALQAALDGLSENNWAAAATGIMTTDTLPKGASRQFQHDGVTVTVTGISKGAGMIRPNMATMLGYIATDAKVSRQVLQDLMLDGANKSFNRITIDGDTSTNDCCMLIATGKANLPEITEASGPLFAALKQAVFEVCMEVAQAIVRDGEGATKFVTVQVNGGGNHQECLDVGYTVAHSPLIKTALFASDPNWGRILAAVGRAGVPELDVSKIDVFLGDVCIASQGARATTYTEAQGAAVMQQEEITIRIELGRGDCSETIWTTDLSHEYVKINAEYRTPGPT0014244_2047DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014244-argJ-K00620NANA
D1-35_01545633hypothetical proteinATGAGCCTGCACCTGATCATCGGCGATAAACGAGCTTCATCCTGGTCCCTGCGGGGCGCGCTGGCCCTGTCGTTGACCGGCGCGAAGTACACCGAAGAACTGGTCAGGCTCGGCCAGCCCGACACCCGCGAAAAACTGCTGAAGTATTCGGCCACGGCCAAGGTCCCGCTGCTCAAGACCGAGTTCGGCGTGATCGCCGACTCCCTGGCCATTGCCGAGTACTTGGCCGAGCAGTTTCCCGAGGCCGGTCTCTGGCCCAAGGATGTAGCGGCACGGGCCCAGGCTCGTTCGGCCTGTGCACAGATGCACAGTGGTTTTTTTGCCATCCGCACCCACATGCCGTTCGACCTGGGCCGCGATGCGCCGTTGTCACCGATTCCGGCGGATGTGCAGGCGGAAATCCAGCGGATGCTGGCGTTGTGGGCAGAGTGCCGCGCGGCGGCTACCGAAGCCGGTCCCTACCTGTTTGGTACCCTGAGCCTGGCTGACGTATTTTTTGCGCCGATTGCCGTGCGCTTGCGCACCTACCAGGTGAAACTGCCGGAAGTCGACGCGGCCTACGTTGAAACCCTTTATCAATGGCCGGCCTTCAAAGCATGGCAGCAAGCTGGCCTGGAGGAAATCGCCCGGTGAMSLHLIIGDKRASSWSLRGALALSLTGAKYTEELVRLGQPDTREKLLKYSATAKVPLLKTEFGVIADSLAIAEYLAEQFPEAGLWPKDVAARAQARSACAQMHSGFFAIRTHMPFDLGRDAPLSPIPADVQAEIQRMLALWAECRAAATEAGPYLFGTLSLADVFFAPIAVRLRTYQVKLPEVDAAYVETLYQWPAFKAWQQAGLEEIARPGPT0013170_16203DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013170-gst-K00799NANA
D1-35_01546945thiE_1Thiamine-phosphate synthaseGTGAAACGCGTACATGTAGCGGCGGCAGTCATTCGCGACGCCGCCGGCAGAATCCTGATTGCCCGCCGGGCCGATTCCCAGCACCAGGGCGGCCTGTGGGAGTTTCCGGGGGGCAAGGTCGAGGCTGATGAGTCGGTCGAAACGGCCCTGGCCCGGGAGCTTCTCGAAGAGTTGGGCATTGTCGTCAGCGCTGCCCGGCCACTGATCAAGGTGCGCCACGATTATCCGGACAAGCAGGTGTTGCTGGATGTCTGGGAAGTCTCGGCGTTCAGCGGCGAGCCCCATGGCGCCGAAGGCCAGCCGCTTGCCTGGGTGACGGCCCGTGAATTGACCAACTACGAGTTTCCAGCGGCCAATCAGCCGATCGTCGCGGCGGCCCGTTTGCCGGGCGAGTACCTGATCACCCCTGAAGGCCTTGAAACGCCCGCCTTGCTGCGTGGCATTCAAAAGGCTGTTGCTGGCGGGATCAAGCTGCTGCAACTGCGCGCGCCCAACGGTTACGACCCGCAATACCGTGACCTGGCGGTGGACGCGGTGGGGCTGTGTGCCGGCAAGGCGCAATTGATGCTCAAGGGCCCGTTCGAATGGCTGGGTGACTTTCCGTCTGCCGGCTGGCATATCACCGCCGCGCAACTGCGCAAGCATGCGGCGGCGGGGCGACCGTTCGGCACCGACCGCTGGCTGGCGGCCTCGTGCCACAACGCCGAGGAACTCTCCCTGGCTCAGCAGATGGGCGTGGATTTCGTGACGTTGTCCCCCGTGCAACCGACCCAGACCCATCCCGATGCGCAGCCATTGGGGTGGGAAGAGGCTGCGCGACTGATCGAGGGGTTCGACAGGCCGGTGTATCTGTTGGGCGGGGTAGGCCCCGATCAGCGGCAGAAAGCCTGGGAAGCCGGGGCGCAAGGGGTGGCAGGGATTCGGGCGTTCTGGCCTGACGCTTGAMKRVHVAAAVIRDAAGRILIARRADSQHQGGLWEFPGGKVEADESVETALARELLEELGIVVSAARPLIKVRHDYPDKQVLLDVWEVSAFSGEPHGAEGQPLAWVTARELTNYEFPAANQPIVAAARLPGEYLITPEGLETPALLRGIQKAVAGGIKLLQLRAPNGYDPQYRDLAVDAVGLCAGKAQLMLKGPFEWLGDFPSAGWHITAAQLRKHAAAGRPFGTDRWLAASCHNAEELSLAQQMGVDFVTLSPVQPTQTHPDAQPLGWEEAARLIEGFDRPVYLLGGVGPDQRQKAWEAGAQGVAGIRAFWPDANANANANANA
D1-35_01547582cobO_2COG2096Cobalamin adenosyltransferaseATGGGTTTTCGTCTGTCGAAGATTTACACCCGTACCGGGGACAAAGGTGAAACCGGACTGGGGGATGGTCGCCGGGTGGCGAAGGATCATCCGCGGATCGAGGCCATCGGCGAAGTGGATACGCTGAACAGCCAACTGGGCTTGTTGCTGGCCGGGCTTGCCGCCGAAACGGAACGGTGCCCGGCGTTAAAGGAAGTAACCGAGATACTGACGCCTTGTCAGCATCGGCTGTTCGACCTGGGCGGCGAGCTGGCGATGCCGGCCTATCAGGCCCTGAACGATGCAGAAGTGGCGCGCCTGGAAGCGGCCATCGATGTATGGAATGAAGAGTTGGGGCCGCTGGAGAATTTCATCCTGCCCGGCGGCTCGACCCTGATCGCCCAGGCCCATGTGTGCCGCAGTCTGGCCCGTAGCGCCGAGCGCCGTTGCCAACAGTTGAACGCAGTGGAACCACTGGCCGGGCCGGGGCTGGCGTATATCAATCGGTTGTCGGACCTGCTGTTCGTGGCGGCGCGGGTCATCGCCCGGCGCCAGGGTGTGGCGGAAGTGCTTTGGGAGGCGGCGGCAAAGCCTGGGAGTTGAMGFRLSKIYTRTGDKGETGLGDGRRVAKDHPRIEAIGEVDTLNSQLGLLLAGLAAETERCPALKEVTEILTPCQHRLFDLGGELAMPAYQALNDAEVARLEAAIDVWNEELGPLENFILPGGSTLIAQAHVCRSLARSAERRCQQLNAVEPLAGPGLAYINRLSDLLFVAARVIARRQGVAEVLWEAAAKPGSNANANANANA
D1-35_015482037rcsC_7Sensor histidine kinase RcsCATGCCATTGCGCCAGCGCCTTGAAAATCTCCCGGTCGGCCAGAAACTGCTGGCGGCCCTGTTGGTATTGTTGACCACGGTTCTGCTGGTGGCCAACCTGACCTTCATCAGCGCGGCCTATTACATTTCCCAGGAAAGCATGGCGCCTCAGGCCTTGCAGACCATCGGCCGACTGGTAGCCAACCCGAGCCTGATCTCCGACGCGTTGCAATCGCCGCAAAGCGCCAAGCGTCTGCTCGATGAACTCAACAGCTATGCGCCGCTGCGGGCAGCGGCACTGTATGACGGTGACGGCGTACGCCTGGCCCAGTTGCAACAGGGCGAGAAACTCAAGTTGCCGGACCATTTCCGTCATGTGCAGGCGTGGCAGGCCGGGGAGTTTCGCAGCAACCAGGTCATTACCCTGCCCCGCCCCGGCACGGCGCCCGGCCATCTCCTGCTGGTGGCTAGCAGCGAACTGCCCACCGCGTTCTACACCGGCACCCTGACGGCCAGCCTGGGCATCCTGATTTTCAGCGTGCTGTTGTGGCTGGTCATTGCCCAGCAGATCAAGCGGCTGATCACCCAGCCGATCCATCAGCTCGAAGAGTTGTCGCGCCAGGTCACCCGCGAAGAAAACTATTCCCTGCGCGCCGCCCGGGGCAACCACGACGAAATCGGCAGCCTGGCCGAGGCGTTCAACACCATGCTCTCGCGGATCGAAGCCCGGGAACAGCAGCTCAAGCGCGCGCGGGACGATTCCCAGGCCGCCTACGACCAGGCCCAGGGCCTGGCGGAAGAAACCCGTCACACCAACCGCAAGCTGGAGCTGGAAGTCCAGGTCCGCAGCAAGATCGAGAAAAAACTCACCGGCTTCCAGAACTACCTCAACAGCATCATCGACTCCATGCCGTCGGCGCTGATTGCCCTCGACGAACAGCTCTATGTCACGCAATGGAACCAGGAGGCCAGCGCCCTTTCCGGCACCCGGCTGGATGAGGCGCTGAACCAGCCGATTTTCCTCGCCTTCGAGCCGCTCAAGCCGTACCTGCCGCAGCTCAAGCAGACGGTGGAACAGCACACAGTGGCCAAGATCGAGCGCGTCACCTGGACCAAGGACGATGAAGCCCGGCATTACGCCCTGACTTTCTATCCTTTGATGGGCGGTGCCGGGCGCGGCGTGGTGATCCGCATCGATGACATCACCCAGCGCCTGTCGCTGGAGGAAATGATGGTGCAATCGGAAAAAATGCTCTCGGTAGGCGGCCTCGCGGCGGGCATGGCCCATGAGATCAATAATCCGCTGGGGGCGATCCTGCACAACGTGCAGAATATTCGCCGACGCCTGTCTGCGGAATTGCCGAAGAACCTTGAGCAGGCCGAGCAGTTGGGGATCGATTTACCGGTGGTCAACCGCTACCTGGAAAGCCGGGAGATCCCGCAATTGCTCGATGGCATCCAGCAGGCCGGCGCCCGGGCAGCGAAAATCGTCACCCACATGCTCAGCTTCAGCCGCCGCAGCACAAGGCAGATGGCGCCTTGCGACCTGCCGGCACTCATCGACCAGGCCGTGGAAATTGCCGGTAACGACTTCGACCTGGCGATCGGTTTCGACTTCAAGGGCCAGGCGATCATCCGCCAGTTTGACCCGAACCTCGGCCCGGTGCCCGGCACCGCCAACGAACTGGAGCAGGTATTGCTCAACCTGCTGAAAAACGCCGCCCAGGCCATCCATCAACGCCAGGACGACAGCGAGCCCGGCCGTATCATCCTGCGTACACGGCTGAATCCGCCGTGGGCGGAAATCCAGGTCGAGGACAACGGCATCGGCATGAGCGAGAACGTGCGCAAGCGTACCTTCGAGCCGTTCTTCACCACCAAGGAGATCGGCCAGGGCACCGGGCTCGGATTGTCGGTGTCGTATTTCATCATCACCAACAACCACAAGGGCCAGATGGAAGTGCAATCAGCGCCGGGCCAAGGCACTTGCTTCACCCTGCGCCTGCCACTGGCGGGCACTTCGATGGTGGCGCAAGAACACAAGCAAGTGGAGCGCTGAMPLRQRLENLPVGQKLLAALLVLLTTVLLVANLTFISAAYYISQESMAPQALQTIGRLVANPSLISDALQSPQSAKRLLDELNSYAPLRAAALYDGDGVRLAQLQQGEKLKLPDHFRHVQAWQAGEFRSNQVITLPRPGTAPGHLLLVASSELPTAFYTGTLTASLGILIFSVLLWLVIAQQIKRLITQPIHQLEELSRQVTREENYSLRAARGNHDEIGSLAEAFNTMLSRIEAREQQLKRARDDSQAAYDQAQGLAEETRHTNRKLELEVQVRSKIEKKLTGFQNYLNSIIDSMPSALIALDEQLYVTQWNQEASALSGTRLDEALNQPIFLAFEPLKPYLPQLKQTVEQHTVAKIERVTWTKDDEARHYALTFYPLMGGAGRGVVIRIDDITQRLSLEEMMVQSEKMLSVGGLAAGMAHEINNPLGAILHNVQNIRRRLSAELPKNLEQAEQLGIDLPVVNRYLESREIPQLLDGIQQAGARAAKIVTHMLSFSRRSTRQMAPCDLPALIDQAVEIAGNDFDLAIGFDFKGQAIIRQFDPNLGPVPGTANELEQVLLNLLKNAAQAIHQRQDDSEPGRIILRTRLNPPWAEIQVEDNGIGMSENVRKRTFEPFFTTKEIGQGTGLGLSVSYFIITNNHKGQMEVQSAPGQGTCFTLRLPLAGTSMVAQEHKQVERNANANANANA
D1-35_01549918panECOG18932-dehydropantoate 2-reductaseATGTCCACCACCTGGCACGTCCTGGGCGCCGGCAGCCTCGGCACCTTGTGGGCGACGCGCCTGGCCCGGGCCGGCCTGCCGGTGCGGCTGGTGTTGCGCAATGAACAGCGGCTGCAGGCTTACCGGGAGGCCGGAGGGTTGACGCTGGTGGAACAAGGCCAGGCGCAGTGTTACCCGGTGCCAGGCGAAACCGCGCAGGGCCTCGAACCGATAAAACGCTTGCTGCTGGCCTGCAAGGCTTATGACGCGGAGGCGGCTGTGGCTTCGGTCGCCCATCGCCTGGATGGCGAGAGCGAACTGATCCTGCTGCAGAACGGCCTCGGCAGCCAGGACGCCGTGGCGAACCGCGTCCCCCAGGCCCGCTGTATCAGCGCCTCCAGCACCGAAGGCGCGTTTCGCGACGGTGACTGGCGCGTGGTGTTCGCCGGCCACGGCTACACCTGGCTGGGCGACCCCGCCCAGCCGGTGGCGCCGGTCTGGCTGGATGACCTGGGCATGGCCGGCATTCCCCACCAGTGGAGCGCCGACATCCTCACCCGCCTGTGGCGCAAACTGGCGCTCAACTGCGCAATCAACCCACTGACGGTACTGCATCAATGCAAGAACGGTGGCTTGCAGGAACACCGCTGCGAAGTGGCAACCCTTTGTGCGGAGCTCGCCGATCTGCTCGAACGCTGCGGCCAGCCGGCGGCGGCCGAGGATTTACAGTCGGAGGTGGAACGGGTGATCCAGGCCACAGCCGCCAACTATTCCTCCATGTACCAGGACGTTGCCAACCGGCGACGTACCGAAATCGGCTATCTGCTCGGCCATGCCTGCGCCGTCGCGCGGCGCCATGACGTGGCGGTGCCGCATCTTGAACAGATGCGCCAGCGCCTGATTGCCCACTTGGACAACCTCGGATTGCCCAGCGACTGAMSTTWHVLGAGSLGTLWATRLARAGLPVRLVLRNEQRLQAYREAGGLTLVEQGQAQCYPVPGETAQGLEPIKRLLLACKAYDAEAAVASVAHRLDGESELILLQNGLGSQDAVANRVPQARCISASSTEGAFRDGDWRVVFAGHGYTWLGDPAQPVAPVWLDDLGMAGIPHQWSADILTRLWRKLALNCAINPLTVLHQCKNGGLQEHRCEVATLCAELADLLERCGQPAAAEDLQSEVERVIQATAANYSSMYQDVANRRRTEIGYLLGHACAVARRHDVAVPHLEQMRQRLIAHLDNLGLPSDPGPT0008745_3845DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008745-panE|apbA-K00077NANA
D1-35_01550486hypothetical proteinATGCCGTCATTCGACGTGGTATCCGAACTGGACAAGCACGAAGTCACCAACGCCGTTGAAAACGCCGTCAAGGAACTCGACCGTCGGTATGACCTCAAGGGCAAGGGCAGTTTCGAGTTCAAGGAAAAGGACCTGACCGTCAACCTGACCGCCGAGGCCGATTTCCAGCTCGAGGCGATGATCGAGATCCTCAAGCTGGCGCTGGTCAAGCGCAAGATCGACGTGCAATGCCTTGAGGTCAAGGATGCCTACGCCTCCGGCAAGCTGATGAAGCAGGAAGCCGTGCTCAAGGAAGGCATCGACAAGGAACTGGCCAAGAAAATCGTCGCTCATATCAAGGACGCCAAGCTCAAGGTCCAGGCCGCCATCCAGGGCGAGCAGGTGCGTGTCACTGGCAAGAAACGTGACGACCTGCAAGAAGCCATCGCCGCGCTGCGGGGCAAGGAATTCGGCATGCCGCTGCAGTTCAACAACTTCCGCGATTGAMPSFDVVSELDKHEVTNAVENAVKELDRRYDLKGKGSFEFKEKDLTVNLTAEADFQLEAMIEILKLALVKRKIDVQCLEVKDAYASGKLMKQEAVLKEGIDKELAKKIVAHIKDAKLKVQAAIQGEQVRVTGKKRDDLQEAIAALRGKEFGMPLQFNNFRDPGPT0012210_1833DIRECT EFFECTCOLONIZING_PLANT_SYSTEMOTHER_COLONIZATION_RELATED_PROTEINSCOLONIZATION-HOST_INVASION_FACTORSHOST_INVASION-HOST_INFECTION_MEDIATOR,PGPT0012210-yajQ-K09767NANA
D1-35_01551843mscSCOG0668Small-conductance mechanosensitive channelATGGACTTGAACGCTGAAGTAGACCACCTGGTCAAGGCCTCCCAGGCCTGGATACCGATGATCATGGAGTACGGCAGCCGCGTGTTGCTGGCAATTGTCACCCTGGCCATCGGCTGGTGGCTGATCAACAAGGTCACCCAGAAGCTCGGGGCGCTGCTGGCCCTGCGTAACGCCGACCTCGCGCTGCAAGGCTTTATCAGTACCCTGGCAAACATCATTCTGAAGATCCTGCTGATCGTCAGCGTCGCCTCGATGATTGGTGTGGAAACCACGTCCTTCGTCGCGGCCATCGGTGCGGCAGGCCTGGCGATTGGCCTGGCCTTGCAAGGCAGCCTGGCGAACTTCGCCGGCGGCGTGCTGATCCTGCTCTTTCGTCCGTTTCGCATCGGTGACTGGATCGAGGCCCAAGGCGTAGCCGGAACGGTCGACAGCATCCAGATCTTCCACACGGTCCTGCGTACCGGTGACAACAAGACGGTCATCGTGCCCAACGGCAATCTGTCGAACGGCATCATTACCAACACCAATCGCCAGCCGACCCGCAAAGTGGTGTTCGACGTGGGCGTGGATTACCAGGCTGACCTGCAAAAGGCCCGGGAAGTGTTACTGGAGTTGGCCAAGGATGAACGGGTGTTGACCGATCCTGCACCTGAGGCGGTGATCTCCACCTTGGGCGACAGCTCGATCACTGTTTCGCTGCGCATCTGGGTGAAGACGGCGGACTACTGGAACGTGATGTTCATGCTCAATGAACAGGCGCGTGACCGCTTGAAAGATGCCGGTATCGATATTCCGTTTCCACAGCGTGTGATCCGAGTGGTTCAGGAATCTGCATCGGTCTGAMDLNAEVDHLVKASQAWIPMIMEYGSRVLLAIVTLAIGWWLINKVTQKLGALLALRNADLALQGFISTLANIILKILLIVSVASMIGVETTSFVAAIGAAGLAIGLALQGSLANFAGGVLILLFRPFRIGDWIEAQGVAGTVDSIQIFHTVLRTGDNKTVIVPNGNLSNGIITNTNRQPTRKVVFDVGVDYQADLQKAREVLLELAKDERVLTDPAPEAVISTLGDSSITVSLRIWVKTADYWNVMFMLNEQARDRLKDAGIDIPFPQRVIRVVQESASVPGPT0013773_2231DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-MECHANOSENSITIVE_ION_CHANNEL,PGPT0013773-mscS|yggB-K03442NANA
D1-35_015521329oprD_2Porin DATGCGCGTGATGAAGTGGAGCATGATCGCACTGGCCGTTGCTGCAGCAGCCAGTACTCAAATGGCTACGGCCGCACCTTTCGTAAGTGACCAGTCTGAAGCCAAAGGCTTTGTTGAAGACGCCAAGTTCGATTTGCTGCTGCGCAACTATTACTTCAACCGTGATAGGAAAGATGGCGCTACCGATCAGAAAGACTGGACCCAAGGCATCTGGGGCAACCTCAGCTCCGGCTACACCCAAGGCACAGTAGGCGTCGGCGTAGATGCATTCGGCTACCTGGCTTTGAAACTGGACGGCGGTGACGGCACTGGCGGCACCGGCAACATGAGCCGCGACGCCGATGGCGAAGTCAACGACAGCCAGGGCAAAGCCGGCGCAGCCATCAAGTTCCGCGTCTCCAAGACCGAGCTGAAAATCGGCGACATGCAGCCAAGCACCGCTCCAGTGTTTGCGGTTGGCGGCTCCCGTGTCCTGCCTCAGACTGCCAGCGGTTTCCAACTGCAGAGCAGCGAAGTCAAAGACCTTGACCTCGAAGCCGGTCACTTCTACTCGGGTACCAGCCAGGACCGTAACGCACGTGATGGCGGCCTGTGGGCTACCTACGCTGGCGTGGAAGCCAGCTCGATCGACTACGCAGGCGGCAAATATGCCATCAGCGAAAACCTGAGCGCATCGGTCTACGGCGCCCAGCTGGAAGATATCTGGAACCAGTACTACGGCAACCTGAACTACACCATCCCAATGGGTGGCGATCAGTCGCTGAATCTGGACGGTAACATCTACCGTACCTCCGACACTGGCAGCGCCAAGGCCGGTGACATCAGCAACACCACCTTCTCCCTGGCTGCGGCGTTCTCGTTCCTGAAAGCGCACACCGTTACTGTTGCCTTCCAGAAGGTCAACGGCGACACCCCGTTCGACTACATCGGTGTAGGTACCAACAACCGTGGTGGCGACTCGATCTTCCTCGCCAACTCCATCCAATACTCCGACTTCAACGCGCCTAACGAGAAATCTGCCCAGATCCGTTACGACATCAAGATGGCTGAGTACGGTGTTCCTGGTCTGAGCTTCATGACCCGTTACGTCAAAGGTTGGGACATCGACGGTACCAACACTCCTGCAGGCAGCCCTTACGCTGGTCTGTACGGTGAAGACGGCAAGCACAACGAAACCAACTTCGAAGCCAAGTACGTTGTTCAGTCTGGCCCGGCAAAAGATCTTTCCTTCCGTGTTCGTCAAGCCTGGCACTACGCTAACGCTGACGAAGGTGAAGGCGACATCAAAGAGTTCCGCCTGATCGTCGACTACCCGATTTCGGTTCTGTAAMRVMKWSMIALAVAAAASTQMATAAPFVSDQSEAKGFVEDAKFDLLLRNYYFNRDRKDGATDQKDWTQGIWGNLSSGYTQGTVGVGVDAFGYLALKLDGGDGTGGTGNMSRDADGEVNDSQGKAGAAIKFRVSKTELKIGDMQPSTAPVFAVGGSRVLPQTASGFQLQSSEVKDLDLEAGHFYSGTSQDRNARDGGLWATYAGVEASSIDYAGGKYAISENLSASVYGAQLEDIWNQYYGNLNYTIPMGGDQSLNLDGNIYRTSDTGSAKAGDISNTTFSLAAAFSFLKAHTVTVAFQKVNGDTPFDYIGVGTNNRGGDSIFLANSIQYSDFNAPNEKSAQIRYDIKMAEYGVPGLSFMTRYVKGWDIDGTNTPAGSPYAGLYGEDGKHNETNFEAKYVVQSGPAKDLSFRVRQAWHYANADEGEGDIKEFRLIVDYPISVLPGPT0028135_66DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028135-oprD-K18093NANA
D1-35_01553426hypothetical proteinGTGTTTGCCCTAGATCCACGACTGCAACAAGACACATTGCCTATCGGCGATTTCCCGCTGTGCCGTTTGCTGTTGTCCAATGATTCCAATTACCCGTGGTTCATTCTCGTGCCGCGCCGGGAAAATATCAGTGAATTGTTTCAATTGGATGACGCCGATCAACAACAGTTGTGGAAAGAAACCACGGCACTGGCTGAAACCCTCAAGGACTCGTTCGATGCCGACAAATTGAATGTTGCAACCTTGGGTAACGTTGTCAGTCAATTGCACATGCATGTGATCGTGCGCAAGCGAGAGGATGCCGCATGGCCTGCGCCGGTGTGGGGCAAGCATCCGGCACAGCCTTATGATGCCGAGCAGGTCAGCGTCATTCGTGAACGCTTGCGAGCGGTCCTGACCGATGATTTCAAGTTCCTGGAGGGCTGAMFALDPRLQQDTLPIGDFPLCRLLLSNDSNYPWFILVPRRENISELFQLDDADQQQLWKETTALAETLKDSFDADKLNVATLGNVVSQLHMHVIVRKREDAAWPAPVWGKHPAQPYDAEQVSVIRERLRAVLTDDFKFLEGPGPT0005685_256DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_CHLOROBENZENE_DEGRADATION,PGPT0005685-catA-K01061NANA
D1-35_01554207slyXProtein SlyXATGAACCTTGAAGAGCGTGTAACCGACCTTGAAAGCCGCCTGGCGTTTCAGGACGATACCATCCAGGCATTAAACGACGTGCTGGTGGAGCAGCAGCGAGTTGTCGAACGTCTGCAGCTGCAGATGGCGGCGTTGCTCAAGCGTCAGGAGGAAATGGCCGGCCAGTTCGAATCCTTTGAAGAAGAAGCGCCGCCACCGCATTACTGAMNLEERVTDLESRLAFQDDTIQALNDVLVEQQRVVERLQLQMAALLKRQEEMAGQFESFEEEAPPPHYNANANANANA
D1-35_01555606hypothetical proteinATGTTGAAAATCGTCCACTTGCTAATGGGCGCAGCTGCTCTGCTGCTGTCCTTCATCCCTAGCCTGGGTTCCGAAGCCACACCTTACCTGCAACATCCCGACGCGCTGTACCTGGCCTTTTTCGGCCTGCTCAACCTGACCCTGGCACCCGTCATCCCTTACTGGAACAAAGGTCCACGTCATCAACTGCAAAACCTTGTCAGCGCCCTGCTGGTGCTGGCCGTCGCCCTGCAAACACTGACCCTGCTGGCGCCCATGCCGGAAATCGGCGGCCAACCCGCCATTCTTTCCAGCCTGGCCGCCGCGTTGCTCGCTGTGTTGCTGCACCTGGCCGTCAGCTTCTACAAGAAGTCGTCGCCGGCCGCCGCGCCGCAGAACTACGACATGTCCAACCGTGATACCGGTACCGTGAAGTGGTTCAACACCTCCAAGGGGTTCGGCTTCATCTCCCGCGACTCCGGCGATGACATTTTTGTGCATTTCCGGGCCATTCGTGGCGAAGGCCATCGCGTCCTGGTCGAAGGCCAGCGCGTGGAGTTTTCCGTCATGCACCGTGACAAAGGCTTGCAGGCCGAAGATGTGATCGCCGCGCTGCCGCGCCGCTGAMLKIVHLLMGAAALLLSFIPSLGSEATPYLQHPDALYLAFFGLLNLTLAPVIPYWNKGPRHQLQNLVSALLVLAVALQTLTLLAPMPEIGGQPAILSSLAAALLAVLLHLAVSFYKKSSPAAAPQNYDMSNRDTGTVKWFNTSKGFGFISRDSGDDIFVHFRAIRGEGHRVLVEGQRVEFSVMHRDKGLQAEDVIAALPRRPGPT0014675_337DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
D1-35_01556474dps2COG0783DNA protection during starvation protein 2ATGGCAATTGATATCGGTATCAGCGAAGAAGATCGCAAGTCCATCGTCGACGGGCTTTCGCGCCTGTTGTCGGACACCTACGTGCTTTACCTCAAGACCCATAATTTCCATTGGAACGTCACCGGGCCGATGTTCCGGACCCTGCACTTGATGTTCGAGGAGCAGTACAACGAGCTGGCGCTGGCGGTGGACCTGATCGCCGAGCGGATCCGTGCCCTGGGCTTTCCGGCGCCGGGTGCCTACTCGGTGTATGCGCGCCTGTCTTCCATCAAGGAGGAGGAAGGCGTGCCTGGCGCCGAGGACATGATCCGGCAACTGGTCGAAGGCCAGGAGGCGGTGACACGTACGGCCCGAGGCATCTTTCCTTTATTGGACAAGGTCAGCGACGAGCCGACCGCCGACCTGCTGACCCAGCGCATGCAGGTTCATGAAAAAACCGCCTGGATGCTGCGTTCGCTGCTGGACGAGCGGTAAMAIDIGISEEDRKSIVDGLSRLLSDTYVLYLKTHNFHWNVTGPMFRTLHLMFEEQYNELALAVDLIAERIRALGFPAPGAYSVYARLSSIKEEEGVPGAEDMIRQLVEGQEAVTRTARGIFPLLDKVSDEPTADLLTQRMQVHEKTAWMLRSLLDERPGPT0004055_2971DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0004055-dps|dpsA-K04047NANA
D1-35_01557342hypothetical proteinATGATTCAAGGAAAAGCACCCAGGGGCGGTGCAGGCGGGCGCCTCAAGTCCGTCAGCATCGACCCGTTCGTCAGTGGGTTCGATATGCAACTGGCCCGGCCCCTGGCCCGCTCCATCCGGCTTAACGGGTTCGCCACCTGTTTACGCCTTGAGCAAGTCTATTGGGATATTCTCGGCGATATGGCCCAGCTCAACAGTTGCTCCGTCAGTACCTTGCTCTCCCATGTGGATCGGGAGGTGCAGTTGCGTCACGGCGGCGTGCGCAATTTCAGCGGGCTGGTGCGTGTTGTCTGCGTGGTGCACAGCCTGAAGGATATGGGCACCGATCATCGCGAGGCCTAGMIQGKAPRGGAGGRLKSVSIDPFVSGFDMQLARPLARSIRLNGFATCLRLEQVYWDILGDMAQLNSCSVSTLLSHVDREVQLRHGGVRNFSGLVRVVCVVHSLKDMGTDHREANANANANANA
D1-35_01558294hypothetical proteinATGGATATAATCCCGCTCTTTGCCGCAAAGCCCGGGTTTTGCGTGAATAACCTGATTGCCGAGACAACCCCCATGCCGATGTACGACTATCAATGTGCTTCCTGTGGTCATCAGATGGAAGCCATTCAAAAAATCAGCGCGGCACCGCTGGTCGATTGCCCTGCCTGCCAGGCGCCGGAGCTGAAAAAGATGCTGTCCATGCCAGGTTTCCGCCTCGGCGGCACCGGCTGGTATGAAACCGACTTCAAGACCGGTGCCAAGAAGAACCTGGCCGGTGGCGACAAGGCTGACTGAMDIIPLFAAKPGFCVNNLIAETTPMPMYDYQCASCGHQMEAIQKISAAPLVDCPACQAPELKKMLSMPGFRLGGTGWYETDFKTGAKKNLAGGDKADNANANANANA
D1-35_015591776aspSCOG0173Aspartate--tRNA(Asp/Asn) ligaseATGATGCGCAGCCATTATTGCGGCCAACTGAACGAAAGCCTGGAAGGTCAGGAAGTTACTCTTTGCGGATGGGTTCATCGTCGCCGTGACCATGGCGGGGTGATTTTCCTCGATATCCGTGATCGTGAAGGCCTGGCCCAGGTAGTGTTCGACCCCGACCGCGCGGAAACCTTCGCCACCGCCGACCGCGTACGCAGCGAATACGTGGTCAAGATCACCGGCAAGGTGCGCCTGCGTCCGGCCGGCGCCGGCAACGCCAACATGGCGTCCGGCATGATCGAAGTGCTGGGCTACGAGCTGGAAGTGCTGAACGAAGCGGAAACCCCGCCGTTCCCACTCAACGAATATTCCGACGTAGGCGAGGAAACCCGCCTGCGCTATCGTTTCATCGACCTGCGTCGCCCGGAAATGGCCGAGAAGCTGCGCCTGCGTTCGCGCATGACCACCAGCATCCGTCACTACCTGGACGAGAACGGCTTCCTCGACGTCGAGACGCCGATCCTGACCCGTGCCACGCCGGAAGGCGCCCGCGACTACCTGGTGCCGAGCCGTACCCACCCCGGCAGTTTCTTCGCCTTGCCGCAATCGCCACAATTGTTCAAGCAGTTGCTGATGGTGGCCGGGTTCGACCGCTACTACCAGATTGCCAAGTGCTTCCGCGATGAAGACCTGCGTGCCGACCGGCAGCCTGAATTCACCCAGATCGACATCGAGACCAGCTTCCTCGACGAAAAAGACATCATGGGCCTGACCGAGGGCATGATCCGCAACCTGTTCCGGGAAGTGCTGGGTCTTGAGTTCGGCGAATTCCCGCACATGACCTTCGAAGAGGCCATGCGTCGCTACGGTTCCGACAAGCCTGACCTGCGCAACCCGCTGGAATTGGTGGACGTCGCGGACCAGCTCAAGGAAGTCGAATTCAAGGTCTTCAGTGGTCCGGCCAACGATCCGAAATGCCGTATCGCCGCCCTGCGTGTTCCAGGCGGCGCCAGCATGCCGCGCAAGCAGATCGACGATTACACCAAGTTCGTCGGCATCTACGGTGCCAAGGGCCTGGCGTACATCAAGGTCAACGAGCGCGCCGCCGGTATCGACGGCCTGCAGTCGCCGATCGTCAAGAACATCCCGGAAGCCAACCTCAACGTGATCCTCGATCGCGTGGGCGCGGTCGATGGCGACATCGTGTTCTTTGGCGCCGACAAAGCCAAGATCGTCAGCGAAGCCCTGGGCGCGCTGCGCATCAAGCTGGGTCACGACCTGAAACTGCTGAGTTGCGAGTGGGCGCCGATGTGGGTCGTCGACTTCCCGATGTTCGAGGAAAACGACGACGGCAGCTTCTCTGCCTTGCACCACCCGTTCACCGCGCCGAAGTGCTCGCCTGAAGAGTTGGAGGCCAACCCGGCCGGCGCATTGTCCCGTGCCTACGACATGGTCCTCAACGGCACCGAGCTGGGCGGCGGTTCGATCCGTATCCATCGCAAGGAAATGCAACAGGCAGTGTTCCGTCTGCTGGGTATCAGCGAAGCCGAGCAGGAAGAGAAGTTCGGCTTCCTGCTGGACGCTTTGAAGTACGGTGCGCCGCCCCACGGTGGCCTGGCCTTCGGCCTGGATCGCCTGGTGATGCTGATGACCGGCGCCCAGTCGATCCGCGAAGTGATCGCATTCCCGAAAACCCAGAGCGCGGCCGATGTCATGACCCAGGCTCCGGGCGTGGTGGATGCCAAGGCGCTGCGCGAGTTGCATATCCGTTTGCGCGAACAGCCAAAGGCTGAGTAAMMRSHYCGQLNESLEGQEVTLCGWVHRRRDHGGVIFLDIRDREGLAQVVFDPDRAETFATADRVRSEYVVKITGKVRLRPAGAGNANMASGMIEVLGYELEVLNEAETPPFPLNEYSDVGEETRLRYRFIDLRRPEMAEKLRLRSRMTTSIRHYLDENGFLDVETPILTRATPEGARDYLVPSRTHPGSFFALPQSPQLFKQLLMVAGFDRYYQIAKCFRDEDLRADRQPEFTQIDIETSFLDEKDIMGLTEGMIRNLFREVLGLEFGEFPHMTFEEAMRRYGSDKPDLRNPLELVDVADQLKEVEFKVFSGPANDPKCRIAALRVPGGASMPRKQIDDYTKFVGIYGAKGLAYIKVNERAAGIDGLQSPIVKNIPEANLNVILDRVGAVDGDIVFFGADKAKIVSEALGALRIKLGHDLKLLSCEWAPMWVVDFPMFEENDDGSFSALHHPFTAPKCSPEELEANPAGALSRAYDMVLNGTELGGGSIRIHRKEMQQAVFRLLGISEAEQEEKFGFLLDALKYGAPPHGGLAFGLDRLVMLMTGAQSIREVIAFPKTQSAADVMTQAPGVVDAKALRELHIRLREQPKAENANANANANA
D1-35_01560747pmpRCOG0217Transcriptional regulatory protein PmpRATGGCAGGTCATTCCAAGTGGGCGAACATCAAGCACCGCAAAGAACGTCAGGATGCCAAGAGGGGCAAGATCTTTACCAAGTGGATCCGTGAGCTGACGGTCGCGGCCCGCCAGGGTGGCGGCGATCCGGGTTCCAATCCGCGCTTGCGCCTCGCGCTGGACAAGGCGCTGGGCGCAAACATGAGCCGCGACATCATCGACCGGGCCATTGCCCGTGGCGCGGGCGCCACCGAGGCCGACAACGTCGAGGAGCTGACCTATGAAGGCTACGGCCCGGGCGGCGTGGCGGTCATGGTCGAGTGCATGACCGACAACCGCAACCGCACCGCTGCGGCCGTGCGCCATGCGTTCAGCAAATGCGGTGGCAACCTGGGGACCGACGGTTCGGTGGCTTATCTGTTCGAGCGCAAGGGGCAGATCAGCTTCGCGCCAGGCATCGATGAAGATGCGCTGACCGAAGCGGCGCTGGAAGCCGATGCCGATGACGTGGTCAGCCACGAAGACGGTTCGTTCGACGTGTTCACCTCGTTCGCCAGCTTCTATGCCGTGCGTAATGCCCTTGAAGCTGCCGGTTTCAAACCGGTCGACGCGGAAATCGTCATGCAGCCGACCACCAGTGCCGAACTCGACCTGGAAGGCGCCGAGAAGGTGCTCAAGCTGATCGACATGCTTGAAGACCTGGACGATGTGCAGAACGTTTATTCCAACGCCGATATTCCGGAGTCGGTGGCTGAGCAACTGGGCTGAMAGHSKWANIKHRKERQDAKRGKIFTKWIRELTVAARQGGGDPGSNPRLRLALDKALGANMSRDIIDRAIARGAGATEADNVEELTYEGYGPGGVAVMVECMTDNRNRTAAAVRHAFSKCGGNLGTDGSVAYLFERKGQISFAPGIDEDALTEAALEADADDVVSHEDGSFDVFTSFASFYAVRNALEAAGFKPVDAEIVMQPTTSAELDLEGAEKVLKLIDMLEDLDDVQNVYSNADIPESVAEQLGNANANANANA
D1-35_01561525ruvCCOG0817Crossover junction endodeoxyribonuclease RuvCATGACTTTAATCCTTGGTATCGACCCCGGTTCGCGCATCACCGGCTACGGCGTGGTTCGCGATACCGGGCGTGGCTGCGTGTACGTTGCTTCCGGCTGTATCCGCACCGGTGCGGGCGAGTTGCACGAGCGCTTGCAGATCGTTTATCGCGGCGTGCGCGAAGTCATCCAGACCTACGGCCCGGTGACCATGGGCATCGAAAAGGTCTTCATGGCCCGCAACGCCGATTCCGCCCTGAAGCTGGGGCAGGCCCGCGGCGCGGCCATTGTGGCCGGCGCCGAGGAAAACCTGGAGATCGCCGAATACACCGCGACCCAGGTCAAGCAGGCCGTGGTAGGCACCGGCGCGGCAAACAAGGAACAGGTGCAGATGATGGTGATGCACCTGTTGAAACTGGTCAGCAAGCCGCAGATCGACGCCTCCGACGCCCTGGCCATCGCCATTTGCCATGCGCATACCCGTTCCAGCCTGCTGCCTCATGGTCTGGGAAGCGCACGCAGTCGTGGCGGGCGCCTGCGTCTCTGAMTLILGIDPGSRITGYGVVRDTGRGCVYVASGCIRTGAGELHERLQIVYRGVREVIQTYGPVTMGIEKVFMARNADSALKLGQARGAAIVAGAEENLEIAEYTATQVKQAVVGTGAANKEQVQMMVMHLLKLVSKPQIDASDALAIAICHAHTRSSLLPHGLGSARSRGGRLRLNANANANANA
D1-35_01562609ruvACOG0632Holliday junction ATP-dependent DNA helicase RuvAGTGATTGGACGCTTGCGCGGCACCCTGGCTGAAAAACAGCCGCCGCACCTGATTCTGGATGTAAACGGCCTCGGTTATGAGCTGGAAGTGCCCATGACCACCCTGTATCGCTTGCCGTCGGTCGGTGAGCCGCTGACGCTGCACACTCATCTGGTCGTGCGTGAAGATGCCCAGTTACTCTATGGTTTCTTCACCAAGCGCGAGCGGGATTTCTTTCGCGAGCTGATCCGGCTCAATGGCGTCGGCCCGAAGCTGGCGCTGGCCTTGATGTCCAGCCTGGAAGTCGATGAACTGATTCGTTGCGTGCAGTCCCAGGACACCTCGGCGCTGACCAAGGTGCCGGGAGTCGGCAAGAAAACCGCCGAGCGCCTGTTGGTCGAGCTCAAGGATCGCTTCAAGGCCTGGGAAACGGTGCCGGCAATGTTCGCCCTGGTGCCGAACCAGCCGGATGCGCCGATGCCGGCGGTCAGCGCTGAAAACGATGCGGTCACCGCGCTGATTTCCCTGGGCTACAAGCCGCAGGAAGCCAGCAAGGCGATCTCCGCGATCAAGGAAAAAGGCTTGAGTACCGAAGACATGATTCGCCGCGCCCTGAAGGGAATGATTTAAMIGRLRGTLAEKQPPHLILDVNGLGYELEVPMTTLYRLPSVGEPLTLHTHLVVREDAQLLYGFFTKRERDFFRELIRLNGVGPKLALALMSSLEVDELIRCVQSQDTSALTKVPGVGKKTAERLLVELKDRFKAWETVPAMFALVPNQPDAPMPAVSAENDAVTALISLGYKPQEASKAISAIKEKGLSTEDMIRRALKGMINANANANANA
D1-35_015631062ruvB_2COG2255Holliday junction ATP-dependent DNA helicase RuvBGTGATTGAAGCCGATCGTCTGATCGCCGCCACGGGCGCGCCCCGTGACCGCGAGGAAATCCAGGACCGTGCGATTCGTCCCGTCAGCCTCGCCGATTACATTGGCCAGCCGACCGTGCGCGAGCAGATGGAGCTGTTCATCCAGGCGGCCCGCGGGCGCAGCGAGTCGCTGGACCATACACTTATCTTCGGGCCGCCGGGCCTGGGCAAGACCACCCTGGCCAACATCATTGCCCAGGAAATGGGCGTGTCGATCAAGAGCACGTCCGGCCCGGTTCTCGAACGGCCGGGCGACCTGGCGGCGCTGCTGACCAATCTTGAGCCGCATGATGTGCTGTTCATCGACGAAATCCATCGGCTGTCGCCGATCGTCGAGGAAGTGTTGTACCCGGCCATGGAGGATTTCCAGCTCGACATCATGATCGGCGAAGGGCCGGCGGCGCGCTCCATCAAGCTGGACCTGCCACCCTTTACCCTGGTGGGCGCCACCACCCGCGCCGGGATGTTGACCAACCCGCTGCGCGACCGGTTCGGTATCGTCCAGCGCCTGGAGTTCTACAACAACGCCGACCTGGCGACGATTGTCAGCCGCTCGGCGGGCATCCTCGGGCTGCCCCTGGACCCTGACGGCGCCTATGAGATCGCTCGTCGGGCGCGGGGGACGCCGCGGATCGCCAACCGCCTCCTGCGTCGGGTCCGCGACTTTGCCGAAGTGCGGGCCAAGGGGCACATTACCAAGCCGATCGCCGACCTGGCCTTGAACCTGCTGGACATCGACGAGCGCGGCTTCGACCACCAGGACCGGCGCCTGCTGCTGACCATGATCGAGAAATTCGACGGTGGCCCGGTGGGCGTGGACAGCCTGGCGGCCGCCATCAGCGAAGAGCGCCACACCATCGAGGACGTGCTGGAACCGTACCTGATCCAGCAGGGCTATATCATGCGCACGCCCCGCGGACGCGTGGTGACCCGTCATGCTTATCTGCACTTCGGCTTAAACATCCCGACACGAATGGGTGAGATGCCGGTGGTAGACGAATTTCTCGATGCGGTGGACGATTGAMIEADRLIAATGAPRDREEIQDRAIRPVSLADYIGQPTVREQMELFIQAARGRSESLDHTLIFGPPGLGKTTLANIIAQEMGVSIKSTSGPVLERPGDLAALLTNLEPHDVLFIDEIHRLSPIVEEVLYPAMEDFQLDIMIGEGPAARSIKLDLPPFTLVGATTRAGMLTNPLRDRFGIVQRLEFYNNADLATIVSRSAGILGLPLDPDGAYEIARRARGTPRIANRLLRRVRDFAEVRAKGHITKPIADLALNLLDIDERGFDHQDRRLLLTMIEKFDGGPVGVDSLAAAISEERHTIEDVLEPYLIQQGYIMRTPRGRVVTRHAYLHFGLNIPTRMGEMPVVDEFLDAVDDNANANANANA
D1-35_01564468ybgCCOG0824Acyl-CoA thioester hydrolase YbgCATGCGCGCGCAAAACGGGCTTGAGTCGTTCGCACATCGCTGTCGCGTTTATTACGAGGACACCGATGCCGGCGGCATCGTTTACTACGTCAATTACCTCAAGTTTATGGAACGGGCTCGAACCGAACGGCTGCGGGAACTGGGTTTTGCCCAATCCGCGCTGGCAGGGGAGGACCTGTTATTCGTCGTGCATTCCAGCGAAGCGCGCTACCACGCGCCGGCGCGACTGGACGACGAGCTGGTGGTGACTGCCGATGTCATCGAATTGAACCGCGTCAGCCTGCGCTTCAAACAGCAGGTCAGGCGGGCTGCGGATAATGTGCTGCTCTGCGAAGGGCAGTTTTTGGTGGCCTGTGTGCGCACCCATAGTTTGAAACCCCGGGCCATTCCCGAAGCTTTACGCGCGGCCTTTGCCGGCGTGAGCGGCGCGGGTACACACTCAGAGCAGGAGATAAAGCGTGGAAGCTAAMRAQNGLESFAHRCRVYYEDTDAGGIVYYVNYLKFMERARTERLRELGFAQSALAGEDLLFVVHSSEARYHAPARLDDELVVTADVIELNRVSLRFKQQVRRAADNVLLCEGQFLVACVRTHSLKPRAIPEALRAAFAGVSGAGTHSEQEIKRGSPGPT0009505_71DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009505-ybgC|fcbC1-K01075NANA
D1-35_01565696tolQ_1COG0811Tol-Pal system protein TolQGTGGAAGCTAACGTCGTCGACCATTCCTCCATGTGGAGCCTGGTCAGCAATGCCAGCGTCGTGGTGCAACTGGTAATGCTGATCCTGGTAGCCGCATCGGTGACCTCATGGATCATGATTTTTCAGCGCAGCAACATGCTGCGTGCCGGTCGCCGTGCCCTGGAGAGCTTCGAAGAGCGCTTCTGGTCCGGCATCGACCTGTCCAAACTCTATCGCCAGGCCGGCAGCAATCCGGACCCGGATTCCGGCGTCGAGCAGATCTTCCGTGCCGGCTTCAAGGAATTCTCCCGTCTGCGCCAGCAGCCGGGCGTAGACCCTGAAGCGGTGATGGAAGGTGTGGCCCGCGCCATGCGCGTCGCCATATCCCGCGAGGAAGAAAAACTCGAACAGGGCCTGCCGTACCTGGCTACCGTCGGTTCGGTCAGCCCGTACATCGGCCTGTTCGGTACCGTGTGGGGGATCATGAACTCGTTCCGTGGCTTGGCTTCCGCCCAGCAGGCGACGCTGGCCACCGTAGCCCCGGGTATCGCCGAGGCGCTGATCGCCACCGCCATCGGCCTGTTCGCGGCGATTCCGGCCGTGATCGCCTACAACCGCTTCGCGGCTCGCAGCGAAACGCTGACCAGCCGTTACTACACCTTCGCCGATGAATTCCAGGCGATCCTGCACCGCAAAGTGCACACCAGCGAAGAATAAMEANVVDHSSMWSLVSNASVVVQLVMLILVAASVTSWIMIFQRSNMLRAGRRALESFEERFWSGIDLSKLYRQAGSNPDPDSGVEQIFRAGFKEFSRLRQQPGVDPEAVMEGVARAMRVAISREEEKLEQGLPYLATVGSVSPYIGLFGTVWGIMNSFRGLASAQQATLATVAPGIAEALIATAIGLFAAIPAVIAYNRFAARSETLTSRYYTFADEFQAILHRKVHTSEEPGPT0003750_3682DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003750-exbB-K03561NANA
D1-35_01566462exbD_1COG0848Biopolymer transport protein ExbDATGGCTTTAATCGCTCGAGCCCGAAACAAGCGCAAGCCGGTTGCCGAGATGAACGTGGTGCCCTACATCGACGTGATGTTGGTGCTGCTGGTCATCTTCATGGTGACCGCGCCGATGCTCAATCAGGGCGTGAAGGTCGATCTGCCCAAGGTTTCCAGCGAAGCCTTGCCGCAGGACAACAACACCCAGGTCCTGACCATTTCGATCAAGGCCGACAAGACCTATTACTGGAACCTTGGCAGCGAAGTCGACACCGAGAAGCAGCAGGACCGGGCCATGACCCTGCCGCAGATGACCGATGCGGTGACCAAGATCATCAATGCCGGCAACAGCAACGGCAAGCGCACCCAGGTCTTCATTCGCGGCGACAAGACCGTCGACTACGGTGCCGTGATGGGCGCCATGGGCGGCCTGCAGAAAGCCGGGGTCGGTAATGTTGGCTTGATCACCGAGGCGCCCTGAMALIARARNKRKPVAEMNVVPYIDVMLVLLVIFMVTAPMLNQGVKVDLPKVSSEALPQDNNTQVLTISIKADKTYYWNLGSEVDTEKQQDRAMTLPQMTDAVTKIINAGNSNGKRTQVFIRGDKTVDYGAVMGAMGGLQKAGVGNVGLITEAPNANANANANA
D1-35_015671080hypothetical proteinATGCAGCAACAGCGAGAGCCGTCCGCCTCGGAAAGCTACTTCTGGCCTAGTGTCCTGGCAATCGGCCTGCATGTGCTGGTATTCGGCATGCTGTTCGTCAGTTTTGCCATGACACCGGAGCTGCCGCCGGCCAAGCCGATCGTGCAGGCGACCCTGTACCAGCTCAAATCGAAAAGCCAGGCCACCACGCAGACCAACCAGAAGCTTGCCGGCGAGGCGAAGAAGTCCGCCGCGCGCCAGACCGAAGTCGAGCAGATGGAGCAGAAGAAGGTCGAGCAGGAAGCGGTGAGAGCAGCGGAACAAAAGAAAGAGGAAGCTGCTCAAAAGGCCGAAGAAGCCAAGAAGGCCGATGAGGCGAAAAAAGCGGACGAGGCCAAAAAGGCCGACGAAGCCAAGAAAGCCGACGAGGCGAAGAAAACCGCCGAAGCGAAAAAGGCAGAAGAGAAACAATTGGCTGATATAGCCAAGAAGAAAGCCGAAGAAGAAGCCAAGAAAGCCGCTGAAGAAGAGGCCAAGAAAGCGGCCGCTGAAGAAGCGAAGAAAAAGATTGTCGAGGACGCGAAGAAAAAAGCGGCCGAAGACGCCAAGAAGAAAGCTGAAGCTGAAGAGGCGAAAAAGAAAGTCGCCGAAGACGCGAAGAAGAAAGCCGCCGCCGACGCCGCCAAGAAGAAGGCCCAGGACGCAGCGCGTAAATCCGCCGAAGAGAAAAAGGCCCAGGCCCTGGCAGATTTGCTTTCCGACACGCCGGAGCGTCAGCAGGCCTTGGCCGACGAGCAGGGCGATGAAGTCGCCGGCAGCTTCGACGATCTGATTCGCGCCCGAGCGGCGGAAGGCTGGGCTCGTCCTCCTTCGGCGCGCAAAGGCATGACGGTAGTATTACAAATCGGCATGTTGCCCGACGGTACGGTTACCTCGGTCAGCGTGGCCAAGTCCAGTGGCGATGGTCCGTTCGACGCTTCGGCGGTCGCGGCGGTCAAGAACATTGGGCGATTGACGGAAATGCAAGGAATGAAGCCGAGCGATTTTGCTCCCTATCGTTCGTTCAAGATGACATTCACACCTGAGGATCTAGCCTTGTGAMQQQREPSASESYFWPSVLAIGLHVLVFGMLFVSFAMTPELPPAKPIVQATLYQLKSKSQATTQTNQKLAGEAKKSAARQTEVEQMEQKKVEQEAVRAAEQKKEEAAQKAEEAKKADEAKKADEAKKADEAKKADEAKKTAEAKKAEEKQLADIAKKKAEEEAKKAAEEEAKKAAAEEAKKKIVEDAKKKAAEDAKKKAEAEEAKKKVAEDAKKKAAADAAKKKAQDAARKSAEEKKAQALADLLSDTPERQQALADEQGDEVAGSFDDLIRARAAEGWARPPSARKGMTVVLQIGMLPDGTVTSVSVAKSSGDGPFDASAVAAVKNIGRLTEMQGMKPSDFAPYRSFKMTFTPEDLALNANANANANA
D1-35_015681281tolBCOG0823Tol-Pal system protein TolBATGCTTGTCGTTATCTGCTGCCTGGCAGGGATAGCGGTAGCAGAGGAAAAGAACATCCTGGTCACCAGCGGCAGCGACCGTGCGACCCCGATCGCCGTCGTTCCGTTCGGTTGGCAGGGCGGCAGCGTCCTGCCGGACGACATGGCGGAAATCATCGGCAACGACCTGCGCAACTCTGGCTACTACGCGCCGATTCCCAAGCAGAACATGATCAGCCTGCCGACCCAGGCCAGCGAAGTCATCTACCGCGACTGGAAGGCTCTTGGCGCCCAGTACATCATGGTCGGCAGCATCGTTCCGGCCGGTGGCCGCCTGCAGGTGCAGTACGCCCTGTTCAACGTCGCCACCGAGCAGCAAGTGCTGACCGGCAGCGTGTCGGGCAGCGTTGACCAGTTGCGTGACATGTCCCACTACATCGCCGATCAGTCGTTCGAGAAACTTACCGGCATCAAGGGCGCGTTCTCGACCCGCATGCTCTACGTGACCGCCGAACGCTTCTCCGAGAAAAATACCCGCTACACCCTGCAGCGCTCCGACTATGACGGCGCCCGCGCGGTGACCCTGCTGCAATCGCGCGAGCCGATCCTGTCGCCGCGTTTCGCCCCAGATGGCAAGCGCATCGCCTATGTGTCGTTCGAACAGAAGCGCCCGCGCATTTTCGTCCAACACATCGACACCGGTCGCCGCGAGCAGATCACCAACTTCGAAGGCCTGAACGGCGCGCCTGCCTGGTCGCCCGACGGTACGCGGCTGGCGTTCGTGCTGTCCAAGGATGGCAATCCGGACATCTACGTGATGAACCTGGCTTCACGCTCGATCTCCCGCGTGACCAACGGCCCGGGCATCAACACCGAACCGTTCTGGGGCAAGGATGGCTCGACTATCTACTTCACCTCGGACCGTGGCGGCAAGCCGCAGATCTACAAGACCAGCGCCGGTGGCGGTGGTGCCGAGCGCGTGACGTTCGTCGGTAACTACAACGCCAACCCTAAACTTTCGGCGGACGAAAAGACTCTGGTGATGATTCATCGCCAGGACGGTTTCACCAATTTCAAGGTGGCGGCCCAGGATTTGCAGCGCGGTAGCGTAAAAATCCTCACTGATAGCACTCTGGACGAGTCACCTACTGTTGCGCCCAACGGCACCATGGTAATCTACGCCACCCGCCAGCAGGGCCGGGGAGTCTTGATGCTCGTGTCCATTAATGGACGCGTGAGGCTCCCGCTTCCTACCGCTCAAGGCGAAGTCAGAGAACCGTCCTGGTCCCCTTACCTGAACTGAMLVVICCLAGIAVAEEKNILVTSGSDRATPIAVVPFGWQGGSVLPDDMAEIIGNDLRNSGYYAPIPKQNMISLPTQASEVIYRDWKALGAQYIMVGSIVPAGGRLQVQYALFNVATEQQVLTGSVSGSVDQLRDMSHYIADQSFEKLTGIKGAFSTRMLYVTAERFSEKNTRYTLQRSDYDGARAVTLLQSREPILSPRFAPDGKRIAYVSFEQKRPRIFVQHIDTGRREQITNFEGLNGAPAWSPDGTRLAFVLSKDGNPDIYVMNLASRSISRVTNGPGINTEPFWGKDGSTIYFTSDRGGKPQIYKTSAGGGGAERVTFVGNYNANPKLSADEKTLVMIHRQDGFTNFKVAAQDLQRGSVKILTDSTLDESPTVAPNGTMVIYATRQQGRGVLMLVSINGRVRLPLPTAQGEVREPSWSPYLNNANANANANA
D1-35_01569498pal_5COG2885Peptidoglycan-associated lipoproteinATGGAAATGCTGAAGTTTGGTAAATTTGCTGCGCTGGCTCTGGCCATGGCTGTAGCTGTAGGTTGCTCGTCCAAAGGCGGCGACAACGCCGGTGAAGGCGCTGTTGATCCAAACGCTGGTTACGGCGCTAACACTGGTGCAGTTGATGGCTCCCTGAGCGAAGAAGCTGCTCTGCGCGCAATCACCACCTTCTACTTCGAATACGACAGCTCGGACCTGAAGCCAGAAGCCATGCGCGCTCTGGACGTTCACGCCAAAGACCTGAAAGCAAACGGCGCTCGCGTTGTTCTGGAAGGCAACACCGACGAACGTGGTACTCGTGAGTACAACATGGCACTGGGCGAGCGTCGTGCGAAAGCCGTTCAGCGCTACCTGGTACTGCAAGGTGTTTCCCCAGCTCAGCTGGAACTGGTTTCCTACGGCGAAGAGCGTCCAGTTGCTACCGGCAACGACGAGCAGTCCTGGGCTCAAAACCGTCGCGTCGAACTGCGTAAGTAAMEMLKFGKFAALALAMAVAVGCSSKGGDNAGEGAVDPNAGYGANTGAVDGSLSEEAALRAITTFYFEYDSSDLKPEAMRALDVHAKDLKANGARVVLEGNTDERGTREYNMALGERRAKAVQRYLVLQGVSPAQLELVSYGEERPVATGNDEQSWAQNRRVELRKNANANANANA
D1-35_01570834cpoBCell division coordinator CpoBATGCGAACGTGCCGTCGTGCTGTAACTGTTCTGGCTCTCAGCCTCGCGCCGCTTGCGGCGTGGGCTGCGGTTCCTGTGGTCGATAACGATGCCGGCTATAACAATAGCGGGAGCAGTTATCCGCCTGCAGGTTACGGTACGAACGGCGCCTATGCCGGGGGAGGGGTTTCGGCCCCTGTCTCGGCACAGGGCGAGCTGTTCAACCAACTGCAGCAAATGCAGGATCAACTGTCACGCCAGCAAGGCGCGATTGAAGTTCTGCAAAACGAAGTATCGCGCATGAAGCAGGAAAACCTGGAGCGATACCAGGATCTTGATCGGCGCATAGGAACCGGCGTTGCACCTGCCGCGACTCCTGAGAATTCTCCAGCCGGTGGCGACTTGAACGCCCCCGGTGCAGCCGCAGGCGCCGGGGCGAGTGCTCCGGCAGCACCTGCCGCCGGTGGCGAGCCGGCTGACCCGGCGAAGGAAAAGCTCTATTACGATGCGGCCTTCGACCTGATCAAAGCCAAGGATTTCGACAAGGCCAGCCAGGCCTTCGGCGCTTTTCTGCGTAAATACCCCAACAGTCAGTATTCGGGTAATGCCCAATACTGGCTGGGCGAAGTGAACCTGGCCAAGGGCGACCTGCAAGGCGCCGGCCAGGCGTTCGCCAAGGTCTCGCAGCTGTATCCCAAGCATGCCAAGGTGCCGGATTCGCTGTACAAGCTCGCCGATGTCGAGCGCCGCCTCGGTCATACCGACAAGGTAAAAGGCATTCTGCAGCAGGTGGTGGCCCAATATCCGGGTACCTCCGCCGCTCAGTTGGCCCAGCGCGATCTGCAACGCATGTAAMRTCRRAVTVLALSLAPLAAWAAVPVVDNDAGYNNSGSSYPPAGYGTNGAYAGGGVSAPVSAQGELFNQLQQMQDQLSRQQGAIEVLQNEVSRMKQENLERYQDLDRRIGTGVAPAATPENSPAGGDLNAPGAAAGAGASAPAAPAAGGEPADPAKEKLYYDAAFDLIKAKDFDKASQAFGAFLRKYPNSQYSGNAQYWLGEVNLAKGDLQGAGQAFAKVSQLYPKHAKVPDSLYKLADVERRLGHTDKVKGILQQVVAQYPGTSAAQLAQRDLQRMNANANANANA
D1-35_01571648queE7-carboxy-7-deazaguanine synthaseATGCAAGACACATTGAGAATTACCGAAGTTTTTTACTCGTTGCAGGGTGAAACGCGGACGGCCGGGTTGCCCACTGTTTTTGTGCGCCTCACCGGTTGCCCGCTGCGTTGCCAATACTGTGACAGCGCCTACGCCTTCAGCGGCGGTACCTTGCGCACCCTCGATGACCTCGTTGAACAAGTCGCAGGTTTTCGTCCGCGCTATGTTTGCGTCACTGGCGGTGAGCCATTGGCACAACCCAATGCCATCCCTTTACTCAAGCGACTGTGCGATGCCGGCTATGAGGTCTCGCTGGAGACCAGCGGCGCCTTGGATATCTCGGCTGTCGATCCGCGCGTCAGTCGTGTCGTGGACCTGAAGACCCCGGGTTCGAAGGAGGCGCATCGTAACCGCTACGAGAACATGGAGCTGTTGACGTCCAACGACCAGGTCAAATTTGTTATCTGTTCGCGGGAAGATTACGACTGGGCGGTATCCAAGCTGATCCAGTACGGACTCGATCAGCGCGCCGGCGAGGTATTGTTCTCGCCGAGTCACCACGACCTGAACGCCCGGGATCTGGCCGACTGGGTGGTAGCGGACAACTTGCCGGTGCGCCTGCAATTGCAGCTGCATAAATATCTTTGGAACGACGAGCCGGGGCGCTGAMQDTLRITEVFYSLQGETRTAGLPTVFVRLTGCPLRCQYCDSAYAFSGGTLRTLDDLVEQVAGFRPRYVCVTGGEPLAQPNAIPLLKRLCDAGYEVSLETSGALDISAVDPRVSRVVDLKTPGSKEAHRNRYENMELLTSNDQVKFVICSREDYDWAVSKLIQYGLDQRAGEVLFSPSHHDLNARDLADWVVADNLPVRLQLQLHKYLWNDEPGRNANANANANA
D1-35_01572693queCCOG06037-cyano-7-deazaguanine synthaseATGACTGAACAATCAACCACTTCTGAAAAGCGTGCCGTCATCCTGCTGTCCGGTGGCCTGGACTCGGCGACTGTCGTGGCGATGGCCCGTGCCGAAGGTTATCGCTGCTACACCATGAGCTTCGATTATGGCCAGCGCCACCGTGCCGAACTGCATGCTGCCGAGCGAGTGGCACGAGACCTGGGTGTGATCGAACACAAGGTGATCGGCCTGAACCTCAACGGCATCGGCGGTTCGGCGTTGACCGACAGTTCCATCGACGTGCCCGAAGCACCGAGCGAGGGGATTCCGGTGACCTACGTGCCGGCGCGCAATACCGTGTTCCTGTCCCTGGCGTTGGGCTGGGCCGAAGTACTGGGGGCGCGTGAGATTTTCATTGGTGTCAATGCCGTGGATTATTCCGGTTATCCGGATTGCCGCCCGGAGTTCGTCGAAGCCTTCGAGCGTATGGCCAACCTGGCGACCAAGGCTGGTGTAGAAGGGCAAGGCTTTCGTATCCAGGCGCCGCTGCAAAATCTCAGCAAGGCTGACATCGTCAAGGCGGGGGTGAAGCTGGGCGTGGACTACGGCCTTACCGTCTCGTGCTATCAGGCCGATGATCAAGGGCGTGCTTGTGGCAAGTGCGACAGCTGCCGTCTGCGTGCTGAAGGCTTCGCGGCAGCCGGCGTGAGCGATCCAACCCCCTATTTTTGAMTEQSTTSEKRAVILLSGGLDSATVVAMARAEGYRCYTMSFDYGQRHRAELHAAERVARDLGVIEHKVIGLNLNGIGGSALTDSSIDVPEAPSEGIPVTYVPARNTVFLSLALGWAEVLGAREIFIGVNAVDYSGYPDCRPEFVEAFERMANLATKAGVEGQGFRIQAPLQNLSKADIVKAGVKLGVDYGLTVSCYQADDQGRACGKCDSCRLRAEGFAAAGVSDPTPYFNANANANANA
D1-35_015741452hypothetical proteinTTGTCCGTCAGACCTGACAGAACCTTCGCAGAAGTACTCAAGCACACCGTCAGACGCATTCTTTCCTATTGGACCCAGATCACAGTCACCTTGGGCCTGCTCGCAACAGGGCTAGGGTTCATCACACTGTATCTCTATACCCGCACGATTGGACGAATCGATCTGTTCATGCCGTCCATCGATGTGAAGTCCGCACTGTTGGTCTGGGTCGTACTGGTTTTACTGCTGATGCTTTCGTACCTGTTCATCCTCGGAGCAACAACCTGGATGTTCGGCTGCTCGGTTTCGCTGTTTTCAAACCTGAAGGATAACCAGCCGAAGATCGTTTTTTATCTGGCGTTCCCCACTGTCGTTGGATTTAGCGCATTCATCCTGACCACTTTCTTCCTGCCCGCATTAAACGCATGGGCGACATTCGCGGCGTTACTGGTGGTCGTCTTCGTTGCGTGCTTTCTCATGTACGCCTTCACGCCGTTCAAAAAAGTCATCAGGAAAAGCATCCTTGTCCAAGCCAGGCTGGATCGAGCCCGCCTGAAACGCCTGGCGCAGTATCAGCAGATAAAGCAAAAAAAACAAAAGCCGCAGAAGGCAGCCCGCGCCCCGAAGGTCCGGCTGCCAAAACGGCTTACTGATTCGTGGCAGGCACTCAAAAACAGGACGACGCCAACGTGGCTACGGATGACAGGAGAATGCCAGCGGCTATGGTCATGGGTATGGGCTCGCAAAGGATTCTGGCTCGTCTCCCTGCTCTCGCTCTCCATATTTGTCACTGTGATCTTCGCCGCTTTTCCAATCCTGTTGACGATACGTTCGTATATGGAGAGGGAAACGCCGGACACCGTCCCCTACGTGGCGGGTCTGTCTTGGTTGACACTCATCTTCACCCTGCTGCCAGTCATCATCTTTTATTGTTTCAAGGGGGACATCTACAGGCGTACCTTCAGTGGCCTGATGGCAATGATCCTCGCCTTCTGCGCCTTCACAATGCTTTCACCAGGCAGTTTGAGCCACATTACCTATATCGCGGCAGAAGGCTTGTCAGTCCGGCAAAAAACGGCAGAACGATATGCGTTGCCAGAAGACATGGAGCTGCAGGACCTGAGCGCCACCCTGTGGAAAACACGTCAGGTGGCCGCGAAAAAAATAGAAGTCGAGGCGTTCCAGTTGTATTCCTTTGGGGACGTACTGCTGCTGTGCCCAAAAGACATGCTGTCGCTTGAACTCAAGGAGCTGAAAAACTACTCGAAGTTCTGTGTCAGCACGCTCAATAGCAAAGTCGTACGAAAACCTCTGTTGCCGGCATTCGCCAGGAAGGCGCCAAATGAATGGTCCTGCCGGGTACCATCATGGCAAATCCACGCAGGACGTTGGCTAGGTTGGGAAGTGCTGGTTCCAGGTATCCATCGCTCCGCTTGGGGCGAGAAGAAAGCGCCAGACCAGGTCAGGTCATAGMSVRPDRTFAEVLKHTVRRILSYWTQITVTLGLLATGLGFITLYLYTRTIGRIDLFMPSIDVKSALLVWVVLVLLLMLSYLFILGATTWMFGCSVSLFSNLKDNQPKIVFYLAFPTVVGFSAFILTTFFLPALNAWATFAALLVVVFVACFLMYAFTPFKKVIRKSILVQARLDRARLKRLAQYQQIKQKKQKPQKAARAPKVRLPKRLTDSWQALKNRTTPTWLRMTGECQRLWSWVWARKGFWLVSLLSLSIFVTVIFAAFPILLTIRSYMERETPDTVPYVAGLSWLTLIFTLLPVIIFYCFKGDIYRRTFSGLMAMILAFCAFTMLSPGSLSHITYIAAEGLSVRQKTAERYALPEDMELQDLSATLWKTRQVAAKKIEVEAFQLYSFGDVLLLCPKDMLSLELKELKNYSKFCVSTLNSKVVRKPLLPAFARKAPNEWSCRVPSWQIHAGRWLGWEVLVPGIHRSAWGEKKAPDQVRSNANANANANA
D1-35_015751188yycB_2COG2807putative transporter YycBATGGAAAACATCCAAACCTCTGGCACCCGCGCCGTCTGGCTGATGGTCAGTATCGTGCTGGTAGCGCTGAACCTGCGGCCCTCGATGGCCGCGGTCGGGCCGCTGCTGTCAGCCATTCGCGACGAGGTGCCCCTGAGGTTCAGCAGCGCTTCACTGCTGACCATGCTGCCAGTCATGGCGATGGGCGTGGCCATGTTCCTGGGCATGCGCATCGCCCTGCGCATCGGTGAACACCGTACCGTCGTCCTGTCGCTGCTGATCATTGGTATCGCCACGGCATCGCGCTTGTATCTGGACAGCGCCGCCGGGTTGGTCACCAGCGCGGTGGTGGCCGGGCTCGGAATCGCCTTGATCCAGGCCGTGATGCCAGCACTGATCAAGGCGCGCTTCGCCGACAGCGTCTCGCTGCTGATGGGCTTGTATGTCACCTCAATCATGGGCGGCGCGGCGCTTGCCGCCTCGTTTTCACCCTTTGTCCTGGCGCAGACCGGCAGTTGGCGCATCGGCCTGGCGATCTGGGCCTTGCTGGCGCTGGTCGCCTTGGGCTGCTGGTGGGTCCAACGCTGGAGCGTCACGCCCCTGCCCCAAGCCGCATCCCAGCGCCACCAAGCGTTTTTCGGCAACGCCCGGGCCTGGCTGCTGGCGATTTTTTTTGGCTTGGGCACCGCCTCCTATACCTGCGTACTGGCCTGGCTGGCACCGTATTACGTGGAAAAAGGCTGGAGCGAACAGCACGCCGGCCTGCTGCTGGGATTTCTCACGACGATGGAGGTGTTGTCCGGCCTCATCACTCCGGCGATCGCCAACCGCAGGCAGGACAAACGTAAAATCCTGGTCGTTCTACTGGTCATGATCATGGCCGGCTTCTGCGGCCTGATTCTCAATCCGGAGCGCCTCAGCCTGTTATGGCCGAGCCTGTTGGGGCTGGGTATCGGCGGGCTGTTCCCCATGAGCCTGATCGTGTCCCTCGATCACCTGGACAACCCACGCCGCGCCGGGGGGCTCACTGCATTCGTGCAGGGCATCGGCTACCTCATCGCCGGGCTGTCGCCGCTGATTGCCGGGATGATCCGCGACCGGCTGGGGAGTTTCGAATGGGCTTGGTGGTCGCTCGTGGCGGTCATCGCGCTGATGATGGTTATGGTATTGCGCCTGGACCCGAAACATTACGCAAAGCACATCCGCTAAMENIQTSGTRAVWLMVSIVLVALNLRPSMAAVGPLLSAIRDEVPLRFSSASLLTMLPVMAMGVAMFLGMRIALRIGEHRTVVLSLLIIGIATASRLYLDSAAGLVTSAVVAGLGIALIQAVMPALIKARFADSVSLLMGLYVTSIMGGAALAASFSPFVLAQTGSWRIGLAIWALLALVALGCWWVQRWSVTPLPQAASQRHQAFFGNARAWLLAIFFGLGTASYTCVLAWLAPYYVEKGWSEQHAGLLLGFLTTMEVLSGLITPAIANRRQDKRKILVVLLVMIMAGFCGLILNPERLSLLWPSLLGLGIGGLFPMSLIVSLDHLDNPRRAGGLTAFVQGIGYLIAGLSPLIAGMIRDRLGSFEWAWWSLVAVIALMMVMVLRLDPKHYAKHIRPGPT0005211_2049DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_CYANATE_DETOXIFICATIONXENOBIOTIC_CYANATE_UPTAKE,PGPT0005211-cynX|yeaN-K03449NANA
D1-35_01576915copDCopper resistance protein DTTGACGAGCGACTCGATCAACATCGCGCTGCGCTTTGCCCTCTACCTGGATCTGATGTTGCTGTTCGGCCTGGCTGCGTTTGGCCTTTACAGCCTGCGAGGTCGGGAGCGGGCGTCAGGCGCGGTGTTGCCTTTCGCGTCGTTGCTGGCGACCACGGCCGTGCTTGGGATGTTGCTCTCCCTGGGCGCCATGGCGTGCATGACCTGGGCCATGAGCGGAGCTTCGGAGTGGGCGGAGCTGTGGCCGCACTTCGAAATGATGGTGCTGGAAACCGATGTCGGTCTGAGCTGGACGCTGCGCATGGCGGCGTTGTTGCTGGCCGGTTTCGCCGTGACGCTTGATAGCCGCTCGCCAACCGTCAGCCTGGTCCTGGCCATGCTGGGCGGAGCCGTGGCTCTGGCGACGCTGGCCTGGGCAGGGCACGGCGCCATGGACGAAGGCGCACGCCGGAGTTGGCATTTCATCAGCGACTTCCTGCATCTGTGGGCAGCGGGTGGCTGGGTCGGAGCCTTGGCCGCGTTTGCCCTGCTGCTTCGGCAGGCCGAACCTCAGATGGCGGTACTGGCCCGGACCTTGAGCGGATTTGCCACGGCCGGTGCGGTAATTGTGGCAGTCATCGCTGTGACAGGAGTCGCCAATTATCTGTTCATCGTCGGCACGAACTTCGCGGGGTTACTCGACAGCACCTATGGTCAGCTGCTGATGCTGAAACTCGGCCTGTTCCTGGCCATGCTGGGGTTCGCCGCGCTGAACCGTTTTCACCTGGGCCCGCTGCTGGAACAGGCCCGACAGACCGGCGAGCACCGAGCCGCGGTGAGGGCCCTGCGGCGCAGCATGCTGCTGGAGCTTGGTGTGGCGGTGATCATCCTGGGACTGGTGGCCTGGTTGGGGACGTTAAGCCCGGGGATGGAATAAMTSDSINIALRFALYLDLMLLFGLAAFGLYSLRGRERASGAVLPFASLLATTAVLGMLLSLGAMACMTWAMSGASEWAELWPHFEMMVLETDVGLSWTLRMAALLLAGFAVTLDSRSPTVSLVLAMLGGAVALATLAWAGHGAMDEGARRSWHFISDFLHLWAAGGWVGALAAFALLLRQAEPQMAVLARTLSGFATAGAVIVAVIAVTGVANYLFIVGTNFAGLLDSTYGQLLMLKLGLFLAMLGFAALNRFHLGPLLEQARQTGEHRAAVRALRRSMLLELGVAVIILGLVAWLGTLSPGMEPGPT0004120_545DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE_MEDIATION,PGPT0004120-pcoD|copD-K07245NANA
D1-35_01577387copCCopper resistance protein CATGTCATTCATCAAAACCGCTGTCATGGCCGCCGCGCTGTCCACCGGCCTGTTGGCCAGTGGCCTGGCCCAGGCCCATCCGAAACTGCTGTCCTCCAGCCCCGCCGAAGGCGCTGACGGGGCATCGCCAGCGAAGATCGAGCTGCACTTTTCCGAAAATCTCGTGACCCAATTTTCCGGCGCCAAGCTGATGATGACCGGGATGCCCGGCATGTCGGCGCACGCACCAATGCCCGTGCCAGCCAAGGTTTCCGGCAGCGATGATCCGAAAACCATGGTCATTACTCCCCATGCGCCTCTCACCGCCGGCACCTACCAGGTGCAGTGGCGCGCGGTATCGTCAGACACGCACCCGATCACCGGCAATATCACGTTCAAGGTGAAGTGAMSFIKTAVMAAALSTGLLASGLAQAHPKLLSSSPAEGADGASPAKIELHFSENLVTQFSGAKLMMTGMPGMSAHAPMPVPAKVSGSDDPKTMVITPHAPLTAGTYQVQWRAVSSDTHPITGNITFKVKPGPT0004115_969DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE_MEDIATION,PGPT0004115-pcoC|copC-K07156NANA
D1-35_01578903copBCopper resistance protein BATGATCAGCCTGTTTAAATCCCCCACCCTGCCCGTGGCTGTGCTTGCCCTCGGCACCAGCCTGTCAGCCTGGGCAGCAAGCGACACGATGCACGGCATGGATCACAGCCAGATGCCGGCAATGGACCACAGCCAGATGCAAGGCATGGACTCGATGCAGGGCATGGATTCCATGCAAGCCGCGCCCACCAGCAGCCGCACACCGATCCCCGAACTGACCGCCGCTGACCGCGCCGCCGTCTATGAAGACCATGGTGGCCACGCGGTGCATGACAGCGCCATCAACTCATTCTTCCTGATCGACCAGCTGGAGTGGCAAGACGCCGATGACGGCAGCGCCCTTAGCTGGGATGCCTCCGGCTGGATCGGCGGCGACATCGACCGTTTGTGGCTGCGCTCCGAAGGCGAGCGCACCCATGGCAAGACCGAAAAAGCCGAACTCCAGGCCCTCTGGGGCCATGCCATCAGCCCTTGGTGGGATGTGGTGGCCGGCGTGCGCCAGGACTTCAAACCAGGCGACTCACAGACCTGGGCAGCATTCGGCGTACAAGGCATGGCGCTGTACAACTTCGAAGCCGAGGCCACCGCCTTCATCGGTGAAGATGGCCAGAGCGCGGCGCGCCTGGAGGGCGACTACGACATTCTGCTGACCAATCGGCTGTTTCTGCAGCCCACCGCCGAAGCCAACTTCTACGGCAAGAATGACCCTGATCGGGGCGTCGGCTCGGGGTTGTCCGACACCGAAGTGGGGCTGCGGCTGCGCTACGAAATCCGCCGTGAGTTCGCCCCGTACGTTGGCGTGACCTGGAACCGCGTCTACGGCAACACCGCCGACTACGCCCGGGACGAAGGTGAAGACCGCAGCGAGGCACGCCTGGTAGTGGGTGTGCGCCTGTGGTTCTGAMISLFKSPTLPVAVLALGTSLSAWAASDTMHGMDHSQMPAMDHSQMQGMDSMQGMDSMQAAPTSSRTPIPELTAADRAAVYEDHGGHAVHDSAINSFFLIDQLEWQDADDGSALSWDASGWIGGDIDRLWLRSEGERTHGKTEKAELQALWGHAISPWWDVVAGVRQDFKPGDSQTWAAFGVQGMALYNFEAEATAFIGEDGQSAARLEGDYDILLTNRLFLQPTAEANFYGKNDPDRGVGSGLSDTEVGLRLRYEIRREFAPYVGVTWNRVYGNTADYARDEGEDRSEARLVVGVRLWFPGPT0004110_471DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE_MEDIATION,PGPT0004110-pcoB|copB-K07233NANA
D1-35_015791743copA_2Copper resistance protein AATGCAATCGAAAACTTCCCGGCGAACCTTCGTCAAGGGCCTGACTGCCGGCGGCATCCTTGGTGGCCTGGGCTTGTGGCGCTCGCCCGTCTGGGCGATTGCCAGCCCGGGCCAGCCCAACGTATTGAGCGGCACCGAGTTCGACCTGTCCATCGGCGAAAGCCCGGTCAATTTCACCGGCAACCCGCGCACCGCCCAGACCATCAACGGCGGCATTCCCGGGCCGTTGCTGCGCTGGCGTGAGGGCGACACCGTGACCTTGCGCGTACGCAATCGCCTGCAAGACAGCACTTCGATCCATTGGCACGGCATCCTCCTGCCGGCCAACATGGACGGCGTCCCCGGGCTGAGCTTCAAAGGCATCGAGCCCGGCGGCCTGTATGTCTACCAGTTCAAGGTCCGGCAGAACGGCACCTACTGGTACCACAGCCATTCCGGCTTCCAGGAGCAATCCGGGGTCTATGGCCCGCTGGTCATAGACGCCAGGGAACCCGAGCCTTTCCAGTATGAGCGGGACTACGTGGTCATGCTCACCGACTGGAGCGATGAGGACCCCACCCAAATCATTCGCAAGCTGAAGAAACAATCGGACTACTACAACTACAACAAACGCACGGTCGGCGACTTCATCGACGATGTCGGCAAGAACGGCTGGGCCGCCACCGTGGCCGATCGCAAGATGTGGGCCGAGATGAAGATGAATCCCACCGACCTTGCCGACGTCAGTGGCGCCACCTATACCTATCTCATGAACGGCCAGGCACCGGACACGAACTGGACCGGCCTGTTCAAGCCGGGTGAACGCATCCGCTTGCGTTTCATCAATGGCTCGTCGATGACCTATTTCGATGTGCGTATCCCCGGCCTGAAAATGACCGTCGTGGCCTCTGATGGCCAGTACGTCAAACCGGTGAGTGTCGATGAGTTCCGAATCGCCGTGGCGGAAACCTACGACGTCATCATCGAGCCGACGCAGCAAGCCTACACCCTGTTCGCCCAGGCCATGGACCGCACCGGCTACGCCCGCGGCACCCTCGCGACCCGGGCCGGATTGGCGGCGCCGGTACCGCCCCTGGACCCACGGCCGCTGGTGACCATGGACGACATGGGCATGGCCGGCATGGATCACGGATCAATGCGGGACATGGACCATAGCCAGATGCAGGGCATGGATGACATGACCGGCATGGACCACGGCACCATGCCAGGTATGGGCGGGATGCAAACCCATCCCGAAACGGAGAACGACAATCCGTTGGTGGACATGCAGGCCATGAGCGTCAAACCCAAGCTCGACGACCCAGGCATGGGCCTGCGCAACAATGGCCGCAAAGTGCTGACCTACGCGGACCTGCGCAGCACCTTTGCCGACCCCGACGGCCGCGAGCCGGGCCGCACGATCGAGCTGCACCTGACCGGGCACATGGAAAAATTCGTCTGGTCGTTCAACGGCGTGAAGTTCAGCGACGCCGCGCCGCTGCTGCTCAAGTACGGCGAGCGCCTGCGCATCGTGTTGATCAACGACACCATGATGACCCACCCCATCCACCTGCACGGCATGTGGAGCGACCTGGAAGACGAAAACGGCCAGTTCATGGTGCGCAAGCACACCATCGACGTACCGCCCGGTTCCAGGCGCAGCTATCGAGTGACCGCCGACGCGCTTGGCCGCTGGGCCTATCACTGCCACCTGCTGTTTCATATGGAAATGGGCATGTTCCGCGAAGTCCGGGTGCAGGAATGAMQSKTSRRTFVKGLTAGGILGGLGLWRSPVWAIASPGQPNVLSGTEFDLSIGESPVNFTGNPRTAQTINGGIPGPLLRWREGDTVTLRVRNRLQDSTSIHWHGILLPANMDGVPGLSFKGIEPGGLYVYQFKVRQNGTYWYHSHSGFQEQSGVYGPLVIDAREPEPFQYERDYVVMLTDWSDEDPTQIIRKLKKQSDYYNYNKRTVGDFIDDVGKNGWAATVADRKMWAEMKMNPTDLADVSGATYTYLMNGQAPDTNWTGLFKPGERIRLRFINGSSMTYFDVRIPGLKMTVVASDGQYVKPVSVDEFRIAVAETYDVIIEPTQQAYTLFAQAMDRTGYARGTLATRAGLAAPVPPLDPRPLVTMDDMGMAGMDHGSMRDMDHSQMQGMDDMTGMDHGTMPGMGGMQTHPETENDNPLVDMQAMSVKPKLDDPGMGLRNNGRKVLTYADLRSTFADPDGREPGRTIELHLTGHMEKFVWSFNGVKFSDAAPLLLKYGERLRIVLINDTMMTHPIHLHGMWSDLEDENGQFMVRKHTIDVPPGSRRSYRVTADALGRWAYHCHLLFHMEMGMFREVRVQEPGPT0004106_146DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE_MEDIATION,PGPT0004106-pcoA-NANANA
D1-35_015801059nadACOG0379Quinolinate synthase AATGACGCAGATTTCCGAACGCCTTCTGGTCCAGGCCCACCTCGATGCCAAGCAGCCCAAGCCGCTGACGGCCGAGCAAGAAGCCTGGTACCGCGCCGCCATCGCCGCCGAGCTCAAGGCTCAGGACGCGGTGCTGGTTGCGCATTTCTACTGTGACCCGATCATCCAGGCCCTGGCCGAGGAGACCGGGGGCTGTGTTTCCGACTCCCTGGAAATGGCCCGCTTCGGCAACGCCCATCCGGCCAAGACCGTGGTGGTGGCCGGGGTCAAGTTCATGGGCGAGACCGCGAAGATCCTCAACCCTGAAAAACGCGTGCTGATGCCGACCCTGGAAGCCACCTGCTCCCTGGACCTGGGCTGCCCGGTGGATGAGTTCTCGGCGTTCTGCGACCAGCATCCGGAGCGCACCGTGGTGGTCTACGCCAACACTTCGGCGGCGGTAAAGGCCCGGGCCGACTGGGTCGTGACGTCCAGCTGCGCACTGGAGATCGTCGAGAGCCTGATGGACAACGGCGAGACGATCATCTGGGGCCCGGACAAGCACCTGGGGACCTACATCCAGCGCAAGACCGGCGCCGACATGCTGCTCTGGGACGGTGCCTGCATCGTCCACGAGGAGTTCAAGTCCAAGCAATTGGAAGACATGAAGGCGCTGTACCCGGACGCCGCGATCCTGGTGCACCCGGAGTCGCCGACCTCGGTGATCGAGCTGGCGGATGCCGTGGGCTCCACCAGTCAGTTGATCGCTGCGGCGCAAAGCTTGCCGAACAAGACGCTGATCGTCGCCACCGACCGCGGCATCTTCTACAAGATGCAGCAGCTGTGCCCCGACAAAGTTTTCATCGAAGCTCCCACGGCCGGCAACGGCGCGGCGTGCCGCAGTTGCGCGCATTGCCCGTGGATGGCGATGAACACCCTGGAGCGCACACTCCAGGCGCTGAAGGACGGCAGCAACGAGATCTTCGTCGACCCGGCCTTGATCCCCCAGGCGATCCGCCCGCTCAAGCGCATGCTGGACTTCACCCAGGCAGCGCGGATGAAGTTGGCGGGGAATGCTTGAMTQISERLLVQAHLDAKQPKPLTAEQEAWYRAAIAAELKAQDAVLVAHFYCDPIIQALAEETGGCVSDSLEMARFGNAHPAKTVVVAGVKFMGETAKILNPEKRVLMPTLEATCSLDLGCPVDEFSAFCDQHPERTVVVYANTSAAVKARADWVVTSSCALEIVESLMDNGETIIWGPDKHLGTYIQRKTGADMLLWDGACIVHEEFKSKQLEDMKALYPDAAILVHPESPTSVIELADAVGSTSQLIAAAQSLPNKTLIVATDRGIFYKMQQLCPDKVFIEAPTAGNGAACRSCAHCPWMAMNTLERTLQALKDGSNEIFVDPALIPQAIRPLKRMLDFTQAARMKLAGNAPGPT0013365_1724DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013365-nadA-K03517NANA
D1-35_01581489hypothetical proteinATGCCGAAACACCTGCTCACTCCCCAGGGCGATTTCCCCCCCGTCGGCCTGGGCCGTCGCCTGGCAGCGATGTTTTATGACTTCCTGCTGTGCACGGCACTGCTGATCGTGACCGGCGGCGTCTACAAGATGATCCAGATGGCGATCATCGGCGAAGAAAAGATGCGCGCCCTCACTGACGCCGGAGCATTGGACGGTGACCCGCTGCTGTCCACCGTATTGCTCTTCGTGCTGTTCGGTTTCTTCGCCAAGTTCTGGTCCCACAACGGCCAGACCCTGGGCATGCAAGTCTGGTGTATTCGCGTGCAGAACGCCGATGGCACGGCCATCAGCCTGTGGCAGGCGCTGTTGCGGTTCGTGGTGTCGATTGCGTCGTTGCTGCTGCTGGGGCTGGGTTTCATCTGGGCGCTGTTCGACAAGCGCAAGCGCGGCTGGCATGACATCTACTCGGATACGCAACTGGTGCGGATTCCCAAGAAAACCAAATAGMPKHLLTPQGDFPPVGLGRRLAAMFYDFLLCTALLIVTGGVYKMIQMAIIGEEKMRALTDAGALDGDPLLSTVLLFVLFGFFAKFWSHNGQTLGMQVWCIRVQNADGTAISLWQALLRFVVSIASLLLLGLGFIWALFDKRKRGWHDIYSDTQLVRIPKKTKNANANANANA
D1-35_01583213cspA_2COG1278Major cold shock protein CspAATGTCTACTCGTCAGAGCGGTACCGTCAAGTGGTTCAACGACGAAAAAGGTTTTGGTTTCATCACCCCTGAAAGCGGTCCGGACCTGTTCGTGCACTTCCGCGCCATCCAGGGCAACGGCTTCAAGAGCCTGAAAGAAGGCCAGAAAGTCACTTTCGTCGCTGTGCAGGGCCAGAAAGGCATGCAGGCTGACGAGGTTCAAGCCGAGGCCTGAMSTRQSGTVKWFNDEKGFGFITPESGPDLFVHFRAIQGNGFKSLKEGQKVTFVAVQGQKGMQADEVQAEAPGPT0014675_3216DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
D1-35_015841125gcvT_1COG0404AminomethyltransferaseATGTCCACCGAACAATTGATGAAAACCCCGCTGCACGCGCTGCACCTTGAGCTGGGCGCGCGCATGGTGCCATTTGCCGGCTACGACATGCCCGTGCAATACCCGCTGGGCGTCATGAAAGAACACCAGCACACCCGTGATCAGGCCGGGCTGTTCGATGTGTCCCACATGGGCCAGATCCGCCTGACCGGCGCCGATGCCGCCAAAGCCCTGGAGACACTGGTGCCGGTGGACATCATCGACCTGCCGGTGGGCATGCAGCGCTACGCCATGTTCACCAACGATAACGGCGGCATCCTTGACGACCTGATGGTCGCCAACCTGGGCAATGACGAACTGATCCTGGTGGTCAACGCCGCCTGCAAGCATCAGGACCTGGCCCACCTGCAAGCGAAAATCGGCGACCGGTGCAGCATCGAACCGCTGTTCGAAGCCCGCGCCCTGCTCGCCCTGCAAGGCCCGGCCGCCGTCAGCGTACTCTCGCGCCTGGCGCCGGACGTGGCGAAAATGACCTTCATGCAGTTCCAGCGCGTCACGCTGCTGGGCGTGGATTGTTTTGTCAGCCGTTCGGGCTACACCGGCGAAGACGGTTTCGAGATTTCCGTGCCAGCCGCCGACGCGGAAAAACTCGCCCGCGCCCTGCTGGCCGAACCGGAAGTCGCGGCCATTGGCCTCGGTGCCCGCGACTCCCTGCGCCTGGAAGCCGGCCTGTGCCTTTATGGCCACGACATGAACACCGAAACCACGCCGATCGAAGCCAGCCTGCTCTGGGCCATTTCCAAAGTGCGCCGTGCCGACGGTGCCCGCGCCGGTGGGTTCCCCGGGGCTGAGACCATCTTCGCCCAACAACAGAGCGGCGTCAGCCGCAAACGCGTCGGCCTGCTGCCCCAGGAACGCACACCGGTGCGCGAGGGCGCGGAGATCGTCAACGAAGCTGGCGAGAACATCGGCACCGTATGCAGCGGCGGTTTTGGCCCGACGCTGGGCGGTCCGTTGGCCATGGGCTATCTGGACAGCGCCTACGTGGCAATGGATACACCGGTCTGGGCCATTGTGCGTGGGAAAAAGGTGCCCATGCTTGTAAGCAAAATGCCATTTGTCGCACAGCGCTACTACCGTGGTTGAMSTEQLMKTPLHALHLELGARMVPFAGYDMPVQYPLGVMKEHQHTRDQAGLFDVSHMGQIRLTGADAAKALETLVPVDIIDLPVGMQRYAMFTNDNGGILDDLMVANLGNDELILVVNAACKHQDLAHLQAKIGDRCSIEPLFEARALLALQGPAAVSVLSRLAPDVAKMTFMQFQRVTLLGVDCFVSRSGYTGEDGFEISVPAADAEKLARALLAEPEVAAIGLGARDSLRLEAGLCLYGHDMNTETTPIEASLLWAISKVRRADGARAGGFPGAETIFAQQQSGVSRKRVGLLPQERTPVREGAEIVNEAGENIGTVCSGGFGPTLGGPLAMGYLDSAYVAMDTPVWAIVRGKKVPMLVSKMPFVAQRYYRGPGPT0008130_1831DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008130-gcvT-K00605NANA
D1-35_015851377sdaB_1COG1760L-serine dehydratase 2ATGTCGTTAAGCGTGTTCGACCTGTTCAAGATCGGCATCGGCCCTTCCAGCTCCCACACGGTTGGCCCGATGCGTGCCGCGGCCCGGTTCGTCGAAGGGCTGCGCCGTGATGACCTGCTCAAGACCACTGCCAGCGTCAAAGTCGAGCTGTATGGCTCCCTCGGTGCCACCGGCAAGGGCCATGGCAGTGACAAGGCCGTGCTGCTGGGCCTGGAAGGCGAGCACCCGGACACCGTGGACACCGAAACGGTATCCGCCCGGCTCCAGGAGATTCGCAGCAGCGGTCGCCTGAACCTGCTCGGCGAACACCCCATCGAATTCAACGAAAAACTGCACCTGGCGATGATCCGCAAACCGTTGGCCTTCCACCCCAACGGCATGATCTTCCGCGCCTTCGACGCCGCCGGGCTGCAAGTGCGCAGCCGCGAGTACTACTCGGTGGGTGGCGGTTTTGTGGTCGACGAAGGCGCCGCCGGTGCCGACCGTATCGTCGAGGATGCAACGCCCCTGACCTTCCCGTTCAAAAGCGCCAAGGACCTGCTCGCCCATTGCACCACTTACGGCCTGTCCATCAGCCAGGTGATGCTGACCAACGAAAGTGCCTGGCGCCCCGAAGCCGAAACCCGCGCCGGCCTGCTGAAGATCTGGCAGGTCATGCAGGATTGCGTGGCGGCCGGCTGTCGCAATGAAGGGATCCTGCCGGGCGGGCTGAAGGTCAAGCGACGGGCCGCCGCGCTGCATCGCCAGCTGTGCAAGAACCCCGAAGCGGCATTGCGTGATCCGTTGTCCGTGCTCGACTGGGTCAACCTGTATGCCTTGGCCGTCAACGAAGAAAACGCCTACGGCGGACGCGTTGTCACCGCGCCGACCAATGGCGCGGCAGGCATCGTTCCGGCCGTGCTGCATTACTACATGCGCTTCATTCCCGGGGCCAACGAGGATGGCGTGGTGCGGTTCCTGCTGACGGCCGCCGCCATTGGCATCCTCTACAAGGAAAACGCTTCCATTTCCGGCGCCGAGGTCGGCTGCCAGGGCGAAGTCGGCGTGGCCTGTTCCATGGCGGCCGGCGCTCTGTGCGAAGTCTTGGGCGGCACCGTGCAACAAGTGGAAAACGCCGCCGAAATCGGCATGGAACACAACCTCGGCCTGACCTGCGACCCCATTGGCGGCCTCGTCCAGGTGCCCTGCATCGAGCGCAACGCCATGGGCTCGGTGAAAGCCATCAACGCGGTGCGCATGGCCATGCGCGGCGACGGGCATCACTTCGTCTCCCTCGACAAAGTCATCCGCACCATGCGCCAGACCGGCGCCGACATGAAAAGCAAATACAAGGAGACCGCCCGCGGCGGTCTGGCGGTCAACATCATCGAATGCTGAMSLSVFDLFKIGIGPSSSHTVGPMRAAARFVEGLRRDDLLKTTASVKVELYGSLGATGKGHGSDKAVLLGLEGEHPDTVDTETVSARLQEIRSSGRLNLLGEHPIEFNEKLHLAMIRKPLAFHPNGMIFRAFDAAGLQVRSREYYSVGGGFVVDEGAAGADRIVEDATPLTFPFKSAKDLLAHCTTYGLSISQVMLTNESAWRPEAETRAGLLKIWQVMQDCVAAGCRNEGILPGGLKVKRRAAALHRQLCKNPEAALRDPLSVLDWVNLYALAVNEENAYGGRVVTAPTNGAAGIVPAVLHYYMRFIPGANEDGVVRFLLTAAAIGILYKENASISGAEVGCQGEVGVACSMAAGALCEVLGGTVQQVENAAEIGMEHNLGLTCDPIGGLVQVPCIERNAMGSVKAINAVRMAMRGDGHHFVSLDKVIRTMRQTGADMKSKYKETARGGLAVNIIECPGPT0001975_1919DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001975-sdaA|sdaB|tdcG-K01752NANA
D1-35_015862850gcvPGlycine dehydrogenase (decarboxylating)ATGACCGTAAATCTCGGCACCGCCAACGAATTCATCGCCCGTCATATCGGCCCTCGGGCCAGCGACGAGCAAGCCATGCTCGAGCGCCTGGGTTTCGACTCCCTGGAAGCCCTGAGCGCCAGCGTCATCCCGGAAAGCATCAAGGGCACCAGCGTGCTGGACATGGGCGACGGCCAGAGCGAAGCCGATGCACTGGCCTCGATCAAGGCCATCGCCGGCAAGAACCAACTGTTCAAGACCTACATCGGCCAGGGTTACTACAACTGCCACACCCCAGCGCCGATCCTGCGCAACCTCCTGGAAAACCCGGCCTGGTACACCGCCTACACGCCGTACCAGCCGGAAATTTCCCAGGGCCGTCTTGAAGCGCTGCTGAATTTCCAGACCTTGATCAGCGACCTCACCGGCCTGCCGATCGCCAACGCCTCGCTGCTCGACGAAGCCACCGCCGCTGCCGAAGCCATGACCTTCTGCAAACGCCTGAGCAAGAACAAGGGCAGCAATGCTTTCTTCGCCTCCCGCCATTGCCACCCGCAGACCCTCGACGTGCTGCGCACCCGTGCCGAGCCCCTGGGTATCGACGTGGTGGTCGGTGATGAACGCGAACTGAGCGACGTCAGCGGCTTTTTTGGCGCACTGTTGCAATACCCGGCCAGCAACGGTGACCTGTTCGACTACAGCGAGCTGACCGAACGCTTCCACGCCGCCAATGCCCTGGTGGCCGTCGCGGCTGACCTGCTGGCCCTGACACTGCTGACCGCCCCCGGCGAATTCGGTGCAGACGTGGCCATCGGCAGCGCCCAGCGCTTCGGCGTGCCACTGGGTTTCGGCGGCCCGCACGCGGCGTATTTCTCCACCAAGGATGCGTTCAAGCGCGACATGCCGGGCCGTCTGGTCGGCGTGTCCGTAGACCGTTTCGGGAAGCCGGCCCTGCGCCTGGCGATGCAGACCCGCGAGCAACACATCCGCCGCGAGAAAGCCACCAGCAACATCTGCACCGCCCAGGTGCTGCTTGCCAACATCGCCAGCATGTACGCGGTGTATCACGGCCCCAAAGGCCTGGTGCAGATTGCCAACCGCATCCACCACCTGACCGCGATCCTCGCCAAGGGCCTGGGCGCGCTGGGCCTGAGCGTCGAGCAAGAGAGCTTCTTCGACACCCTGACCCTGCACACCGGCGCACAGACTGCCGCCCTGCACGACAAGGCCCACGCTCAACGCATCAACCTGCGCGTGGTGGATGCAGAACGCCTGGGCCTGTCCCTGGACGAGACCACCAGCCAGGCTGATATCGAGGCATTGTGGAGCCTGTTGGCCGACGGCAAGGCCCTGCCGGACTTCGCCTCCCTCGCCGCCAGCGTGCAAAGCCGCATCCCGGCCGAACTGGTGCGCCAATCGGCGATCCTCAGCCACCCGGTGTTCAACCGCTACCATTCCGAAACCGAGCTGATGCGTTATCTGCGCAAGCTCGCCGACAAGGACCTGGCCCTGGATCGCACCATGATCCCGCTGGGTTCCTGCACCATGAAACTCAACGCCGCCAGCGAAATGATCCCGGTGACCTGGGCCGAATTCGGCGCCCTGCACCCGTTCGCCCCGGCCGAGCAGAGCGCCGGCTACCAGCAATTGACCGACGAGCTGGAAGCGATGCTCTGCGCCGCCACCGGCTATGACGCGGTGTCGCTGCAACCCAACGCCGGTTCCCAAGGTGAGTACGCTGGCCTGCTGGCAATCCGCGCCTACCACCAGAGCCGTGGCGAAGACCGTCGCGACATCTGCCTGATCCCGTCCTCCGCCCACGGCACCAACCCGGCCACCGCCAACATGGCCGGCATGCGCGTGGTCGTGACCGCGTGCGATGCCCGTGGCAACGTCGACATCGAAGACCTGCGCGCCAAGGCCATCGAACACCGCGAACACCTCGCCGCGCTGATGATCACCTACCCGTCCACCCACGGCGTGTTCGAAGAAGGCATCCGCGAAATCTGCGGCATCATTCATGACAACGGCGGCCAGGTGTACATCGACGGCGCCAACATGAACGCCATGGTCGGCCTTTGCGCCCCAGGCAAGTTCGGCGGCGACGTGTCGCACCTGAACCTGCACAAGACCTTCTGCATCCCTCACGGCGGTGGCGGCCCGGGCGTCGGCCCGATCGGCGTCAAGTCGCACCTGGCACCGTTCCTGCCCGGCCATGCGAACATGGAGCGCAAGGAAGGCGCGGTGTGCGCGGCGCCGTTCGGCAGTGCGAGCATTTTGCCGATCACCTGGATGTACATCCGCATGATGGGCGGCGCCGGCCTCAAGCGCGCCTCGCAACTGGCGATCCTCAACGCCAACTACATCGCCCGTCGCCTGGAAGAGCACTACCCGGTGCTCTACTCCGGCAGCAACGGCCTGGTGGCCCACGAATGCATCCTCGATTTGCGTCCGCTCAAGGACAGCAGCGGCATCAGCGTCGATGACGTCGCCAAGCGCCTGATCGACTTCGGCTTCCACGCGCCGACCATGTCGTTCCCGGTGGCCGGCACATTGATGATCGAGCCGACCGAAAGCGAATCCAAGGAAGAACTGGACCGCTTCTGCGACGCCATGATCTGCATCCGTGAAGAAATCCGCGCGGTGGAGAACGGCAGCCTCGACAAAGACGACAACCCACTGAAAAACGCCCCGCACACCGCGGCGGAACTCGTCGGCGAGTGGACTCACCCCTACAGCCGCGAACAGGCCGTGTACCCGGTGGCGTCGTTGATCGAAGGCAAGTACTGGCCGCCCGTGGGCCGGGTCGACAACGTGTTCGGCGACCGCAACCTGGTCTGCGCCTGCCCGTCGATCGAAAGCTACGCTTGAMTVNLGTANEFIARHIGPRASDEQAMLERLGFDSLEALSASVIPESIKGTSVLDMGDGQSEADALASIKAIAGKNQLFKTYIGQGYYNCHTPAPILRNLLENPAWYTAYTPYQPEISQGRLEALLNFQTLISDLTGLPIANASLLDEATAAAEAMTFCKRLSKNKGSNAFFASRHCHPQTLDVLRTRAEPLGIDVVVGDERELSDVSGFFGALLQYPASNGDLFDYSELTERFHAANALVAVAADLLALTLLTAPGEFGADVAIGSAQRFGVPLGFGGPHAAYFSTKDAFKRDMPGRLVGVSVDRFGKPALRLAMQTREQHIRREKATSNICTAQVLLANIASMYAVYHGPKGLVQIANRIHHLTAILAKGLGALGLSVEQESFFDTLTLHTGAQTAALHDKAHAQRINLRVVDAERLGLSLDETTSQADIEALWSLLADGKALPDFASLAASVQSRIPAELVRQSAILSHPVFNRYHSETELMRYLRKLADKDLALDRTMIPLGSCTMKLNAASEMIPVTWAEFGALHPFAPAEQSAGYQQLTDELEAMLCAATGYDAVSLQPNAGSQGEYAGLLAIRAYHQSRGEDRRDICLIPSSAHGTNPATANMAGMRVVVTACDARGNVDIEDLRAKAIEHREHLAALMITYPSTHGVFEEGIREICGIIHDNGGQVYIDGANMNAMVGLCAPGKFGGDVSHLNLHKTFCIPHGGGGPGVGPIGVKSHLAPFLPGHANMERKEGAVCAAPFGSASILPITWMYIRMMGGAGLKRASQLAILNANYIARRLEEHYPVLYSGSNGLVAHECILDLRPLKDSSGISVDDVAKRLIDFGFHAPTMSFPVAGTLMIEPTESESKEELDRFCDAMICIREEIRAVENGSLDKDDNPLKNAPHTAAELVGEWTHPYSREQAVYPVASLIEGKYWPPVGRVDNVFGDRNLVCACPSIESYAPGPT0020480_2847DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020480-gcvP-K00281NANA
D1-35_01587384gcvH_1COG0509Glycine cleavage system H proteinATGAGCGAGTTGCGTTTTACTGAAGATCACGAATGGCTGCGCACCGAAGCAGACGGCAGCGTCACCGTAGGCATTACCGCCTTCGCGCAGAACGCATTGGGCGACGTGGTTTTTGTGCAACTGCCTGAATTGCACTCCTACGCCAAGGGCGACGAAGCCTCCACGGTTGAATCGGTAAAAGCCGCCAGCGGTGTGTACATGCCGCTGGACGGTGAAGTGCTTGAAGTGAACGACAAGCTCGACGGCAGCCCGGAACTGGTCAATGAAGATCCGCTGGGCGAAGGCTGGTTCTTCCGCTTTAAACCGACCGACGCCGACGCAGTGGCTAAGCTGTTGGATCAAGACGCCTACGATCGCCTGATCAAAGCCAACGCCGAAGCCTGAMSELRFTEDHEWLRTEADGSVTVGITAFAQNALGDVVFVQLPELHSYAKGDEASTVESVKAASGVYMPLDGEVLEVNDKLDGSPELVNEDPLGEGWFFRFKPTDADAVAKLLDQDAYDRLIKANAEANANANANANA
D1-35_015881509tyrR_2Transcriptional regulatory protein TyrRATGCGCATCCACGTCAGTTTCATCGACCGCGTCGGCATCACCCAGGAAGTCCTGGCCTTGCTCGGTGGGCGCAATTTGAACCTGGATGCGGTGGAGATGGTGCCGCCCAACGTCTACATCGATGCCCCGACCCTCAGCCCGCAGGTGCTCGACGAACTGCGCGAGGCACTGTTCAGCGTGCGCGGCGTGCAGGCGGTCACCGTGGTGGACATTCTGCCGGGGCAACGCCGACACTTGCAGCTCGATGCCTTGCTCGCCGCCATGACCGACCCGGTGCTGGCCCTCGACAGCGCCGGCAAGGTGCTGCTCGCCAACCCCGCGCTGATCGCCTTGTACGGTCGGGAACCGGCCGGGGAAAGCGTGGCCGAGCTGTTCGGCGACACGGCGCTGCTGGACGCGCTGCTGGAAAACGGCTTTCGCCTGCCGCTGCGGGAAATCACCCTCAACGGCCAGACCTTGTTGCTGGACGCCACGCCCATCACCGATGCCGGGGCGCTGCTGACGCTTTATCAGCCAAACCGCATCGGCGAACGCCTGTCGGCGCTGCATCACGACCACGCCGAGGGTTTCGATGCGCTGCTGGGCGAATCCCCGGCGATCCGCACGCTCAAGGCCCGGGCCCAGCGCGTCGCGGCCCTGGATGCGCCGCTGCTGATCCAGGGTGAGACCGGTACCGGCAAGGAACTGGTGGCCCGCGCTTGCCACGCCATCAGCGCCCGCCACGGCGCGCCATTCCTGGCCCTGAACTGCGCCGCGTTGCCGGAGAACCTCGCCGAAAGCGAACTGTTCGGCTATGCCCCCGGCGCCTTCACCGGCGCCCAGCGCGGCGGCAAGCCGGGGCTGATGGAACTGGCGAACCAGGGCACGGTGTTTCTCGATGAAATCGGCGAGATGTCGCCGTACCTGCAAGCCAAGCTGCTGCGTTTCCTCAATGACGGCAGCTTTCGCCGTGTGGGTGGCGATCGGGAGATCAAGGTCAATGTGCGGATCCTCAGCGCCACCCACCGCAACCTGGAGAAAATGGTCAGCGAAGGCTCGTTTCGCGAAGACTTGTTCTACCGCCTGAACGTGCTCAACGTCGAAGTCCCGCCGCTGCGTGAGCGCGGCCAGGACATCCTGCTGCTGGCGCGTTATTTCATGCAGCAGGCCTGCGCGCAGATCCAGCGCCCGGTCTGTCGGTTGGCCCCCGGCACCTATCCGGCATTGCTGGGCAATCGCTGGCCGGGCAATGTGCGGCAACTGCAGAACGTGATCTTCCGCGCCGCCGCCATCTGCGAAAGCAGCCTGGTGGACATCGGCGACCTCGACATCGCCGGCACCTCCGTGGCGCGCCAGGGCGATGTGGAAGTCGAAAGCCTGGAGCAAGCCGTCGAAGCGTTCGAGAAGCAATTGCTCGAATCGCTGTATGCCAACTACCCCTCTACTCGCCAACTGGCCAGTCGCTTGCAGACCTCCCATACCGCGATTGCCCATCGGTTGCGCAAGTACGGTATTTCCAACAAACCATAAMRIHVSFIDRVGITQEVLALLGGRNLNLDAVEMVPPNVYIDAPTLSPQVLDELREALFSVRGVQAVTVVDILPGQRRHLQLDALLAAMTDPVLALDSAGKVLLANPALIALYGREPAGESVAELFGDTALLDALLENGFRLPLREITLNGQTLLLDATPITDAGALLTLYQPNRIGERLSALHHDHAEGFDALLGESPAIRTLKARAQRVAALDAPLLIQGETGTGKELVARACHAISARHGAPFLALNCAALPENLAESELFGYAPGAFTGAQRGGKPGLMELANQGTVFLDEIGEMSPYLQAKLLRFLNDGSFRRVGGDREIKVNVRILSATHRNLEKMVSEGSFREDLFYRLNVLNVEVPPLRERGQDILLLARYFMQQACAQIQRPVCRLAPGTYPALLGNRWPGNVRQLQNVIFRAAAICESSLVDIGDLDIAGTSVARQGDVEVESLEQAVEAFEKQLLESLYANYPSTRQLASRLQTSHTAIAHRLRKYGISNKPNANANANANA
D1-35_01589906dmlR_8HTH-type transcriptional regulator DmlRATGGATCGTCTACAAGCAATGCGGGTGTTCGTAACCGTGGTGGACCTGGGCAGCCAATCGGCGGCGGCCGAACATCTTGACCTGTCGCGACCGGTGGTGTCGCGGTACCTGGCGGAGCTGGAAGACTGGGTCGGTGCTCGGCTCATGCACCGCACCACGCGCAAACTGAGCCTGACGGCCGCCGGCTCGGAGATCCTACCGCGCTGCCGACAGATGCTCGAACTGTCCGGCGACATCCAAGCCGCCGTCAGCACGCCGGAAGACGCGCCCCGGGGCATGCTGCGCATCACCGCCAGCCCGTCGTTCGGCCAGTCCCAGCTGGCGTCAGCCATGGCCGAGTTCGTCAAGCGCTACCCGGGGGTAAGCGTCGACCTGCAGATGCTCGATCGCACGGTGAACCTGGTGGATGAGCGCATAGACCTGGCGATCCGCATGAGCAACGATCTCGATCCCAACCTGATCGCCCGGCGCCTCACGGTGTGCCGCTCGGTGATCTGCGCCTCGCCCCGTTACCTGCGCGAGCAGCCGACACCGCAACGGGTGGAGGATTTGAGCCGGCACAACTGCCTGACCCATTCCTACGTCGGCAAGAGCTTGTGGCATTTCGAGCAGGACGGCGAACAGATCGCGGTGCCGGTGCAGGGCAACATCAGCGCCAACGAAGCCAGCACGCTGCTCCAGGCAACGATCGCCGGGGCTGGCGTGGCGATGCTGCCCAGCTACCAGGCCGGCCCTTATCTGCGCAGTGGTGAACTGGTGCGCCTGCTGGCCCACGCCGAACCGCGGCTGATGAACATGTATGCGGTGTATGCATCGCGCAAGCACATGCCCTCGGCGCTGCGTTGCCTGGTGGATTTTCTGGTGCTGAAGTTTCCCGAGACGCCTGAGTGGGATGACGGGCTATAAMDRLQAMRVFVTVVDLGSQSAAAEHLDLSRPVVSRYLAELEDWVGARLMHRTTRKLSLTAAGSEILPRCRQMLELSGDIQAAVSTPEDAPRGMLRITASPSFGQSQLASAMAEFVKRYPGVSVDLQMLDRTVNLVDERIDLAIRMSNDLDPNLIARRLTVCRSVICASPRYLREQPTPQRVEDLSRHNCLTHSYVGKSLWHFEQDGEQIAVPVQGNISANEASTLLQATIAGAGVAMLPSYQAGPYLRSGELVRLLAHAEPRLMNMYAVYASRKHMPSALRCLVDFLVLKFPETPEWDDGLNANANANANA
D1-35_01590879hypothetical proteinATGACCGGATTCACCCCAATCAAACGCCTGCTGCTGGCGACCGCCGCCTTGGCCTTCACCGCCCAGGCCTGGGCGGCCGACTTGACGCTCGATGTCTATAACCCCGGCGCCGCGGCGATTTTTCCGGTGACTTCGGTTCTGGTCAGCGGCGACAAGGAGGCAATCCTGGTGGACGCCCAGTTCGGCAAGGCCCAGGCCGAGCAGGTCGTGGAGAAAATCCGCGCCAGCGGCAAACGGCTGACCACGATTTACATCAGCCACGGCGATCCGGACTACTATTTCGGCCTCGAGACCCTGACCTCAGCGTTCCCTGAAGCCAAGGTGCTCGCGTCGGCAGCGACCGTCGAGCACATCCAGCACACCGCCGACGGCAAGTTGAAATACTGGGGGCCGATCCTGAAGGCCGATGCACCGGCCAAGACGCTCGTGCCCCAGGTACTCAAGGGCGACAGCCTGACGCTGGAGGGCAAGCGCTTGCAGATCATCGGCCTCGACGGCCCGCAACCGGACCGCAGCTTTGTCTGGATTCCATCGATCAAGGCAGTGGTTGGCGGCGTGGTGGTGGCGGAAAACATTCACGTCTGGATGGCTGATACCCAGACGCCGCAATCCCACAAGGACTGGCTGGCGACGCTGGCGGGCATTGAAAAACTGCAACCGGCCACGGTGATCCCCGGCCATTACCTGGGTGAAAGTGCCCGCTCCCTGAAGCCGGTGCGCTTCACCGCCGACTACATCAAGGCCTTCGACGAGGAGACCGCCAAGGCCAAGGATTCCGCTGCGCTGATCGCCGCGATGAAACTACGCTATCCCAACCTGGGGGAGGACAGCTCCCTGGAGCTCAGCGCCAAGGTCGCGAAGGGCGAGATGAAGTGGTGAMTGFTPIKRLLLATAALAFTAQAWAADLTLDVYNPGAAAIFPVTSVLVSGDKEAILVDAQFGKAQAEQVVEKIRASGKRLTTIYISHGDPDYYFGLETLTSAFPEAKVLASAATVEHIQHTADGKLKYWGPILKADAPAKTLVPQVLKGDSLTLEGKRLQIIGLDGPQPDRSFVWIPSIKAVVGGVVVAENIHVWMADTQTPQSHKDWLATLAGIEKLQPATVIPGHYLGESARSLKPVRFTADYIKAFDEETAKAKDSAALIAAMKLRYPNLGEDSSLELSAKVAKGEMKWNANANANANA
D1-35_01591615hypothetical proteinATGAGCAAAATCGCAATCATCGGCGCCACCGGCCGGGCCGGCAGCCAGCTGTTGGAAGAGGCCCTGCGACGCGGCCACAGCGTGACGGCCATTGCCCGCAATACGACCAAGATCGGCGAGCGGGTCGGCGTGGTCAGCAAGCAACTGGACGTACTGGACAGCGAGGCGTTGGCCGCAGCAGTCGCCGGCCATGACGTGGTAATCAGCGCCGCGCACTTTGCCACTGTGCCGGCCGATAAGGTCATCGCACCGGTGAAAGCCGCCGGGGTCAAGCGCCTGCTGGTGGTGGGCGGTGCCGGTTCGTTGTTGCTGCCGGATGACAGCCGTGTGATCGACAGCGAGGGCTTCCCGGAGGAATACCTGGCCGAAGCCAGCGCCGGTGCAATGTTCCTCGACGTGTTGCGCAAGGAACAGGACCTGGATTGGACCTTCCTCTCGCCCTCGGCGGAGTTCGTCGAAACCGAGCGCACCGGGCAGTTCCGTGTCGGCAAGGATCACTTGTTGTTCGACCAGGCCGGACGCAGTTGGATCAGCTTTGCCGACTACGCCATTGCGATGATCGATGAAATCGAAACGCCGCAGTTTTCACGGACGCGGTTTACCGTCGGCTATTGAMSKIAIIGATGRAGSQLLEEALRRGHSVTAIARNTTKIGERVGVVSKQLDVLDSEALAAAVAGHDVVISAAHFATVPADKVIAPVKAAGVKRLLVVGGAGSLLLPDDSRVIDSEGFPEEYLAEASAGAMFLDVLRKEQDLDWTFLSPSAEFVETERTGQFRVGKDHLLFDQAGRSWISFADYAIAMIDEIETPQFSRTRFTVGYPGPT0020900_1562DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0020900-putative_saccharopine_dehydrogenase-K07118NANA
D1-35_01592339ydgCCOG3136Inner membrane protein YdgCGTGGATCTGATTTTCAAGGCGGCGCTCGGCGCGGCCGTAGTGGTCATCCTGGCGATGCTCGCCAAGACCAGGAATTATTACATCGCCGGGCTGGTGCCGCTGTTTCCGACGTTCGCCCTGATCGCCCACTACATCGTCGGCAAGGGCCGCTCGGTGGACGACCTGAAGACCACCATCGTGTTCGGCATGTGGTCGATCATTCCGTACTTCGTCTATCTTGCGACGCTGTACTTGATGGTCGACCGCATGCGCCTCGAAGCTTCATTGGCCGTAGCAGCCGTCGCCTGGCTGATGGCGGCGACGGTGCTGGTCAGCGTCTGGGTGCGGCTTCACGGCTGAMDLIFKAALGAAVVVILAMLAKTRNYYIAGLVPLFPTFALIAHYIVGKGRSVDDLKTTIVFGMWSIIPYFVYLATLYLMVDRMRLEASLAVAAVAWLMAATVLVSVWVRLHGNANANANANA
D1-35_015931329dctD_2C4-dicarboxylate transport transcriptional regulatory protein DctDATGAACAACGACCTGAGCGTTCTGATCGTCGAAGACGACCCCCATGTCCTGTTGGGCTGCCAACAGGCCCTGACCCTGGAAGACATTCCCTGCGTGGGCGTGGGCAGCGCCGAAGAGGCCCTGGAACGGGTTGGCGATGATTTTGCAGGTATCGTCATCAGTGACATCCGGCTGCCGGGCATCGATGGGCTGGAACTGCTGACCCGGCTCAAGGCCCGCGACCGCAGCCTGCCAGTGGTGTTGATCACCGGCCACGGCGACATCTCCATGGCCGTCGGCGCCATGCAGAAAGGCGCCTACGATTTCATGGAAAAACCCTTCTCTCCCGAACGCCTGGTGGACGTCGCCCGCCGCGCCCTGGAGCAACGCAGCCTGGCCCGGGAAGTTTCAACGCTGCGCAGGAAACTGGCCGAACGCGATTCGCTGGAAGGCCGGATCATTGGCCGTTCGCCGGCCATGCAGCATTTGCGAGCACTGATCGCCAATGTCGCCGATACCTCGGCCAACGTACTGATCGAGGGCGAAACCGGCACCGGCAAGGAGCTGGTCGCCCGCTGCCTGCATGATTTCAGCCGACGCCACGACAAACAGTTCGTCGCGCTGAACTGCGGGGGGCTGCCGGAAAACCTGTTCGAAAGCGAGATTTTCGGTCACGAGGCCAACGCCTTCACCGGTGCGGGCAAACGTCGGATCGGCAAGATCGAGCACGCCGATGGCGGCACGCTGTTTCTCGATGAAGTGGAAAGCATGCCCCTGCCCTTGCAGATCAAGCTGCTGCGGGTATTGCAGGAACGCACCCTGGAGCGCCTGGGTTCGAACCAGAGCGTGGCCGTGGATTGTCGCGTGATCGCCGCCACCAAGTCCGACCTCGACGAAATGGGCCGGGCCGGGCAGTTCCGCAGCGACCTGTATTACCGCCTCAACGTGGTCACCCTGGAACTGCCGCCCCTGCGCGAACGGCGCGAGGACATCCTGCAACTGTTCGAGCATTTCCTCCAGCAATCGTCCCTGCGCTTCGACCGCACGGTGCCGGAGCTGGACAACCAGACCCTGTCGAACCTGATGAGCCATGACTGGCCGGGCAACGTACGTGAACTGCGCAACGTCGCCGAGCGTTATGCCCTTGGCCTGCCCGCTTTCAAGAAGTCCGGCGCCAGCGCGGGCAGCCAGGGCCTGGCTTTCGCCGAAGCGGTGGAAGCCTTCGAGCGCAACCTGTTGGTGGACGCATTGCAACGCAGCGGCGGCAACCTGACCCAGGCCAGCCAGGAACTGGGCATGGCCAAGACCACGCTGTTCGACAAAGTCAAAAAATATGGCTTGAGCCACTGAMNNDLSVLIVEDDPHVLLGCQQALTLEDIPCVGVGSAEEALERVGDDFAGIVISDIRLPGIDGLELLTRLKARDRSLPVVLITGHGDISMAVGAMQKGAYDFMEKPFSPERLVDVARRALEQRSLAREVSTLRRKLAERDSLEGRIIGRSPAMQHLRALIANVADTSANVLIEGETGTGKELVARCLHDFSRRHDKQFVALNCGGLPENLFESEIFGHEANAFTGAGKRRIGKIEHADGGTLFLDEVESMPLPLQIKLLRVLQERTLERLGSNQSVAVDCRVIAATKSDLDEMGRAGQFRSDLYYRLNVVTLELPPLRERREDILQLFEHFLQQSSLRFDRTVPELDNQTLSNLMSHDWPGNVRELRNVAERYALGLPAFKKSGASAGSQGLAFAEAVEAFERNLLVDALQRSGGNLTQASQELGMAKTTLFDKVKKYGLSHPGPT0000800_77DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000800-aauR-K17061NANA
D1-35_015941902dctB_2C4-dicarboxylate transport sensor protein DctBATGAAATGCGACCCCACCCTCTATCGCGCCGCGCCGCCATCACTTGCCGTGAAACCCCGCCTGATCCGCCACCTGTTCCTGCCGCCGCTGGTCATTGCGCTGATGATCGGCCTGGGTTACCTCGGCTTCTGGATCAGCGAGCACTACGGCATTCGCGGCCTGGCCGAGAATGGCGAACGCCAGCTGGAACTGCATGCCCGTGCGGTGGAAAGCGAGATCAGCAAATACACCTATCTGCCCAGCCTGCTGGAACTTGAATCCAGCGTCTCGAAACTGCTCGACGACCCGACACCCGAGCACCGCAAGACCGTCAATGAATACCTCGAAGGCCTGAATCGGCGCAGCCGTAGCCGGGCCATCTATGTCATGGACACCACCGGCCGGGTGATGGCCACCAGCAACTGGCGCGACGTCGACAGTTACCTGGGCGAAGACCTGTCATTTCGCGCCTACTTCCAGAACGCCGTTCGCGGCCAGCCGGGACGCTTCTACGGCATCGGCAGCACCAACGGCGAGCCGGGCTACTACCTGGCCCATGGGCTGGAAGAAAGGGGCAAGATCATCGGCGTGGCCGTGGTCAAGGTGCGTCTCGAAGCCATGGAGGAACGCTGGCAGCGAGCACGCCTGGAAGCCTTCGTCAGCGACGAGAACGGCATCATCATCCTCTCCAGCGATCCGGCGCGACGGCTCAAGTCCGTACGGCCGCTGAGCGACGAAACCAAGGAACGCCTGGCCCGCAGCCTGCAATATTACTGGTTCCCGCTGAACGAACTGATCCCCTTGGCCCGCGAGCAACTGGCCGAAGGCATGGAGAAGCTGACCTTCCCCGCCAATACCGAAATCGCCGCCGACCAGCAGGCCACCAGCTACCTCTCGCAAACCCGGCCGTTGAGCGACACGCCGTGGAATTTCACCTTGCTCACCCCGCTTGAAGACCTGCGCCGCCAAGCGATCAACCAGGGCATCCTGGTGGCCGTGGCGTTTGCCCTGGTGGCCTTCCTGCTGATCGCCTGGAACGAGCGGCGCAAGGTGATTGCCACCCGCCTCGCCGCCCGCGAAGCGTTGCAGGAAGCCAACAACCAGCTCGAACGTCGGATTACCGAACGCACCACCGACCTGCGGGCCAGCAACGAGCGGCTCAAAGGCCAGATCCGCGAACGCCGGCAAGCGGAAGAGACCCTGCGCCGCGCCCAGGACGAACTGGTACAGGCCGGCAAGTTGGCGGCCATCGGCCAGATGTCCACCAGCATCGCTCATGAACTCAACCAGCCGCTGGCTGCGTTGCGCACGTTGTCCGGCAACACGGTGCGCTTCCTGGAGCGCGGCCAACTGGACATTGCCAGCGCCAACCTCAGGACCATCAACGACCTGATCGATCGCATGGGCCGGATCACCGCCAGCCTGCGTGCCTTTGCCCGGCGCGGTGACGACAAAGGCCGGGCCAGCCTGGGCAAGGCCGTCGAGGCCGCGCTGCAATTGCTCGGGGCGCGTCTGGAAAAACTTGGCGTCCAGACACAGACAGCTTTCGAAGACGTCCAGCTGCAAATCGACCAGACACGCTTGGAGCAGATTCTGGTGAATCTGATTGGCAACGCCCTGGACGCGATGCAAGTCCAACCCGAGCCAAGACTGTGGCTCGCCGGTGAGATGAGCGATGGCAAATACCGCCTGCGGGTGCGCGATAACGGCCACGGCATCGATCCGCAGGCACGCAAGCATCTGTTCGAACCTTTCTTCACCACCAAGCCCGGCGAACAAGGCCTGGGCCTCGGCCTGACGCTTTCGGCGAGCCTGTGCGCCGCCGCGGGCGGGCACCTGGGCGTCGAGCACCCGGACGATGGTGGCACCACGTTTGTCCTCAGTTTACCGTTGGTAAGCCTTCCACCTGCCGAGCCGCTATGAMKCDPTLYRAAPPSLAVKPRLIRHLFLPPLVIALMIGLGYLGFWISEHYGIRGLAENGERQLELHARAVESEISKYTYLPSLLELESSVSKLLDDPTPEHRKTVNEYLEGLNRRSRSRAIYVMDTTGRVMATSNWRDVDSYLGEDLSFRAYFQNAVRGQPGRFYGIGSTNGEPGYYLAHGLEERGKIIGVAVVKVRLEAMEERWQRARLEAFVSDENGIIILSSDPARRLKSVRPLSDETKERLARSLQYYWFPLNELIPLAREQLAEGMEKLTFPANTEIAADQQATSYLSQTRPLSDTPWNFTLLTPLEDLRRQAINQGILVAVAFALVAFLLIAWNERRKVIATRLAAREALQEANNQLERRITERTTDLRASNERLKGQIRERRQAEETLRRAQDELVQAGKLAAIGQMSTSIAHELNQPLAALRTLSGNTVRFLERGQLDIASANLRTINDLIDRMGRITASLRAFARRGDDKGRASLGKAVEAALQLLGARLEKLGVQTQTAFEDVQLQIDQTRLEQILVNLIGNALDAMQVQPEPRLWLAGEMSDGKYRLRVRDNGHGIDPQARKHLFEPFFTTKPGEQGLGLGLTLSASLCAAAGGHLGVEHPDDGGTTFVLSLPLVSLPPAEPLPGPT0000790_44DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000790-aauS-K17060NANA
D1-35_01595735glnQ_3Glutamine transport ATP-binding protein GlnQATGATCTCTATCAAGAACATCAACAAGTGGTATGGGGACTTCCAGGTACTGACCAATTGCAGCACCGAGGTCAGCAAGGGTGAGGTTGTGGTGGTGTGCGGGCCGTCGGGTTCGGGCAAGTCCACGCTGATCAAGTGCGTCAACGCGCTGGAGCCGTTCCAGAAAGGCGACATCGTGGTCGATGGCACCTCCATCGCCGACCCGAAGACCAACCTGCCGAAACTGCGTTCGCGGGTGGGCATGGTGTTCCAGCACTTCGAATTGTTCCCGCACCTGACCATCACCGAAAACCTGACCATCGCGCAGATCAAGGTGCTGGGCCGCAGCAAGGAAGAAGCCACCAAAAAAGGCCTGCAACTGCTTGAGCGCGTCGGCCTGTCCGCCCACGCCCACAAGCACCCGGGCCAGCTTTCCGGCGGCCAGCAACAGCGCGTGGCGATTGCCCGTGCGCTGGCGATGGACCCGGTGGTGATGCTGTTCGACGAACCGACCTCGGCCCTCGACCCGGAAATGGTCAACGAAGTGCTGGACGTGATGGTGCAACTGGCCCACGAAGGCATGACCATGATGTGCGTGACCCACGAAATGGGCTTCGCCCGCAAAGTGGCGAACCGGGTGATCTTCATGGACCAGGGCCAGATCATCGAGGATTGCGAGAAGGAAGAGTTCTTCGGCGACATCAGCGCCCGCTCCGAACGCGCGCAGCATTTCCTTGAGAAAATCCTGCAGCATTAAMISIKNINKWYGDFQVLTNCSTEVSKGEVVVVCGPSGSGKSTLIKCVNALEPFQKGDIVVDGTSIADPKTNLPKLRSRVGMVFQHFELFPHLTITENLTIAQIKVLGRSKEEATKKGLQLLERVGLSAHAHKHPGQLSGGQQQRVAIARALAMDPVVMLFDEPTSALDPEMVNEVLDVMVQLAHEGMTMMCVTHEMGFARKVANRVIFMDQGQIIEDCEKEEFFGDISARSERAQHFLEKILQHPGPT0000765_270DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000765-gltL|aatP-K10004NANA
D1-35_01596672gltKCOG0765Glutamate/aspartate import permease protein GltKATGGAATTCGACTTCACAGGCATCATCCCGGCCATTCCCGGTTTGTGGAACGGCATGGTGATGACCCTCAAGCTGATGGCCCTGGGTGTCGTTGGCGGGATCATCCTGGGGACGATCCTGGCGCTGATGCGCCTGTCCCACAACAAGCTGGTCTCCAACATCGCTGGCGCCTACGTCAACTATTTCCGCTCGATCCCGTTGCTGCTGGTCATCACCTGGTTCTACCTGGCGGTGCCGTTCGTGCTGCGCTGGATCACCGGTGAAGACACGCCGATCGGCGCGTTCGGCTCTTGCGTCGTGGCGTTCATGATGTTCGAGGCGGCTTACTTCTGCGAAATCGTCCGGGCCGGCGTGCAGTCGATCCCCAAGGGCCAGATGGGCGCGGCACAGGCACTGGGCATGAACTATGGCCAGGTCATGCGCCTGATCATCCTGCCCCAGGCGTTTCGCAAGATGACCCCGCTGTTGCTGCAACAGAGCATCATCCTGTTTCAGGACACCTCGCTGGTCTACACCGTCGGCCTGGTGGACTTCCTCAATGCTTCGCGGGCCAATGGCGACATCATCGGCCGCTCCAATGAGTTCCTGATCATCGCAGGTCTCGTGTACTTCACAATCAGCTTTGCCGCCTCGCTGCTGGTCAAGCGTCTGCAAAAAAGGTTCGCCGTATGAMEFDFTGIIPAIPGLWNGMVMTLKLMALGVVGGIILGTILALMRLSHNKLVSNIAGAYVNYFRSIPLLLVITWFYLAVPFVLRWITGEDTPIGAFGSCVVAFMMFEAAYFCEIVRAGVQSIPKGQMGAAQALGMNYGQVMRLIILPQAFRKMTPLLLQQSIILFQDTSLVYTVGLVDFLNASRANGDIIGRSNEFLIIAGLVYFTISFAASLLVKRLQKRFAVPGPT0000755_553DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000755-gltK|aatM-K10002NANA
D1-35_01597747gltJCOG0765Glutamate/aspartate import permease protein GltJATGAATTACAACTGGGACTGGGGCGTGTTCTTCAAGTCCACCGGCGTGGGCAGCGAGATCTATCTCGACTGGTACGTGGCCGGCCTGGGCTGGACCATAGCCATCGCCGTCGTCGCCTGGATCATCGCCCTGCTGCTGGGCTCGATCCTGGGTGTGATGCGCACCGTGCCGAACCGGCTGGTGTCGGGCATCGCGACTTGCTACGTGGAACTCTTTCGTAATGTGCCGCTGCTGGTGCAGCTGTTCATCTGGTACTTCCTGGTGCCGGACCTGCTGCCCGCCGACATGCAGGAATGGTACAAGCAGGACCTCAACCCGACCACCTCGGCCTACCTGAGCGTCGTCGTCTGCCTGGGCCTGTTCACTGCCGCACGGGTTTGCGAGCAGGTGCGCACCGGCATCCAGGCGCTGCCACGCGGCCAGGAAGCCGCCGCCCGCGCCATGGGCTTCAAGCTGCCGCAGATCTACTGGAACGTGCTGTTGCCCCAGGCCTACCGGATCATCATTCCGCCGCTTACCTCGGAATTTCTCAACGTCTTCAAGAACTCCTCCGTGGCCTCGCTGATCGGCCTGATGGAGCTGCTCGCGCAGACCAAGCAGACCGCCGAATTCTCGGCCAACCTGTTCGAAGCCTTTACCCTGGCGACGCTGATCTACTTTACCCTGAACATGAGCCTGATGCTGCTCATGCGCATGGTCGAGAAGAAAGTCGCGGTGCCCGGCCTGATCTCCGTGGGGGGTAAATAAMNYNWDWGVFFKSTGVGSEIYLDWYVAGLGWTIAIAVVAWIIALLLGSILGVMRTVPNRLVSGIATCYVELFRNVPLLVQLFIWYFLVPDLLPADMQEWYKQDLNPTTSAYLSVVVCLGLFTAARVCEQVRTGIQALPRGQEAAARAMGFKLPQIYWNVLLPQAYRIIIPPLTSEFLNVFKNSSVASLIGLMELLAQTKQTAEFSANLFEAFTLATLIYFTLNMSLMLLMRMVEKKVAVPGLISVGGKPGPT0000760_146DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000760-gltJ|aatQ-K10003NANA
D1-35_01598915gltI_1COG0834Glutamate/aspartate import solute-binding proteinATGCGCATCGTTCCCCATCTCCTGGGCGCAGCCGTTGCTGCCGCTCTCATCAGCACTCCGGTCTTCGCCGCCGAACTGACCGGCACACTGAAAAAGATCAAAGAGTCCGGCGTCGTTACGCTCGGCCACCGCGACGCCTCCATTCCGTTTTCCTACATCGCGGACGCTTCCGGCAAACCGGTCGGCTACTCCCACGACATCCAGCTGAAAGTCGTCGAAGCTCTGAAAAAAGAGCTGGATGTGCCGAACCTGCAGGTCAAGTACAACCTGGTCACCTCGCAAACCCGTATCCCGCTGGTACAGAACGGCACTGTGGACCTGGAGTGCGGCTCCACCACCAACAACGTCGAGCGCCAGCAACAAGTCGCCTTCTCCGTTGGCATCTTCGAGATCGGCACCAAGCTGCTGTCCAAGAAAGACTCCAAGTACAAGGATTTCGACGACCTCAAGGGCAAGAACGTCGTGACCACAGCCGGCACCACGTCCGAGCGCCTGCTCAAGGCCATGAACGCCGACAAGCAGATGGGCATGAACGTCATCTCCGCCAAGGACCACGGCGAATCCTTCCAGATGCTGGAATCGGGTCGTGCCGTCGCGTTCATGATGGACGACGCGCTGCTGGCCGGCGAAGCCGCCAAGGCCAAGAAGGCCGATGACTGGGCCGTCACCGGTACTCCGCAATCCTACGAAATCTACGGCTGCATGGTGCGCAAGGGCGACGAGCCGTTCAAAAAGGTTGTCGATGACGCCATCAAGGCCACCTACGCGTCGGGCGAGATCAACAAGATCTACGAAAAATGGTTCATGCAACCGATCCCGCCAAAAGGCCTGAACCTCAATTTCCCGATGAGCGACGAACTCAAGGCACTGATCGCCACGCCGACCGATAAAGCGGCTGACGACAAGAAATCCTGAMRIVPHLLGAAVAAALISTPVFAAELTGTLKKIKESGVVTLGHRDASIPFSYIADASGKPVGYSHDIQLKVVEALKKELDVPNLQVKYNLVTSQTRIPLVQNGTVDLECGSTTNNVERQQQVAFSVGIFEIGTKLLSKKDSKYKDFDDLKGKNVVTTAGTTSERLLKAMNADKQMGMNVISAKDHGESFQMLESGRAVAFMMDDALLAGEAAKAKKADDWAVTGTPQSYEIYGCMVRKGDEPFKKVVDDAIKATYASGEINKIYEKWFMQPIPPKGLNLNFPMSDELKALIATPTDKAADDKKSPGPT0000750_245DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000750-gltI|aatJ-K10001NANA
D1-35_015991539glpDCOG0578Aerobic glycerol-3-phosphate dehydrogenaseATGCCCAATTCCACCTTGCCTATGCCCCCTCTCGCTGAAATCTATGACGTCGCCGTCATCGGTGGCGGTATCAATGGTGTAGGGATCGCCGCGGATGCTGCTGGTCGCGGTCTTTCGGTGTTCCTTTGCGAAAAGGACGATTTGGCCAGCCACACCTCTTCGGCCAGCAGCAAGCTGATCCATGGCGGCCTGCGTTATCTCGAACATTACGAATTTCGCCTGGTGCGTGAAGCACTCGCCGAACGCGAAGTGCTGCTGACCAAGGCTCCGCATATCGTCAAGCAGATGCGCTTCGTGTTGCCCCATCGCCCGCACCTGCGTCCGGCCTGGATGATCCGCGCCGGCCTGTTCCTTTATGATCACCTGGGCAAGCGCGAGCAACTCGCCGGCTCCCGGAGCCTGAAATTCGGCGCCGACAGCGCATTAAAAAGCGAGATCACCAAAGGCTTCGAATACTCGGATTGCTGGGTCGATGACGCCCGGCTGGTGGTGCTCAATGCCATGGCGGCGCGAGAAAAAGGCGCGCATATCCACACCCGCACCCGTTGCGTCAGCGCTCGGCGCAGTAAAGGCCTGTGGCAATTGAACCTGGAACGTTCCGACGGCAGCCTGTTTTCAATCCTGGCCAAATCGCTGGTAAACGCCGCCGGCCCATGGGTCGCCAAGTTCATTCGTGATGACCTGAAAATGGAATCGCCCTACGGCATCCGTCTGATCCAGGGCAGCCATCTGATCGTGCCAAAACTCTACGAAGGCGAGCATGCGCACATTCTTCAAAACGAAGACCAGCGCATCGTCTTCACCATCCCGTATCTGAATCAATTCACCCTGATAGGCACGACCGACCGCGAATACACCGGTGATCCGGCCAAAGTGGCAATTACCGAGGGTGAAACGGACTACCTGCTGAAGGTCGTCAATGCGCACTTCAAGAAGCAGATCAGCCGCGAAGACATCCTGCACAGCTACTCCGGGGTTCGGCCTTTGTGCAACGACGAATCCGACAACCCTTCCGCCGTGACCCGGGACTACACCCTGGCGCTGTCGGGCGGTGGCCAGGAGGCTCCGTTGTTGTCGGTGTTCGGCGGCAAACTGACCACGTACCGCAAGCTTGCCGAGTCGGCGATGGCCCAGCTGGCTCCGTATTTCACCCAGATGCGCCCGAGCTGGACGGCCCTGGAGACCTTGCCCGGCGGCGAGAACATGACCACGCCACAGGCTTTGTGCTCGGCAATCCGCGACAAGTTCGACTGGCTGCCCACCGATATCGCCCGCCGCTGGGCCACTACCTATGGCAGCCGCACCTGGCGCATGCTCGAAGGCGTGCACAGCCTTGCCGACCTGGGCGAGCACATCGGCGCGGGCCTTTATACCCGGGAGGTCGACTATCTGTGCAGCGACGAGTGGGCCATCGACGCCGAGGATATTCTCTGGCGTCGCAGCAAGCTGGGCTTGTTCACAACCGCCGCTGAACAGGAGAAGCTTCGCACGTACCTGGACAAGGTCGAGCACAACCGGCGCAAGATCGAAGCGGCCTGAMPNSTLPMPPLAEIYDVAVIGGGINGVGIAADAAGRGLSVFLCEKDDLASHTSSASSKLIHGGLRYLEHYEFRLVREALAEREVLLTKAPHIVKQMRFVLPHRPHLRPAWMIRAGLFLYDHLGKREQLAGSRSLKFGADSALKSEITKGFEYSDCWVDDARLVVLNAMAAREKGAHIHTRTRCVSARRSKGLWQLNLERSDGSLFSILAKSLVNAAGPWVAKFIRDDLKMESPYGIRLIQGSHLIVPKLYEGEHAHILQNEDQRIVFTIPYLNQFTLIGTTDREYTGDPAKVAITEGETDYLLKVVNAHFKKQISREDILHSYSGVRPLCNDESDNPSAVTRDYTLALSGGGQEAPLLSVFGGKLTTYRKLAESAMAQLAPYFTQMRPSWTALETLPGGENMTTPQALCSAIRDKFDWLPTDIARRWATTYGSRTWRMLEGVHSLADLGEHIGAGLYTREVDYLCSDEWAIDAEDILWRRSKLGLFTTAAEQEKLRTYLDKVEHNRRKIEAAPGPT0006775_3994DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_DEHYDROGENASE_ACTIVITY,PGPT0006775-glpA|glpD-K00111NANA
D1-35_01600756glpR_1COG1349Glycerol-3-phosphate regulon repressorATGAATCTGCCTCCCCGCCAGCAGCAAATCCTTGAACTGGTCCGCGAACGCGGCTATGTCAGCATCGAGGAAATGGCGCAGCTATTTGTCGTCACCCCGCAGACCATCCGCCGCGACATCAATCAACTGGCGGAAGTGAACCTGCTGCGCCGCTACCATGGCGGCGCCGCTTACGATTCCAGCGTGGAAAACACCGCCTACGCCATGCGCGCCGATCAGATGCGCGATGAGAAGCAACGCATCGCCGAAGCGATCGCTGCGCAGATTCCCGACCACGCCTCGCTGTTCATCAATATCGGTACCACCACCGAATCCATCGCCCGGGCGCTGCTCAATCACAACCATTTGAAAGTCATCACCAACAACCTGCACGTGGCATCGATCCTCAGTGCCAAGGATGATTTCGAAGTCCTGATCGCCGGCGGCAACGTGCGCCGTGACGGCGGCGTGGTCGGTCAGGCCAGCGTCGATTTCATCAGTCAGTTCAAAGTCGACTTCGCCCTGGTGGGCATCAGCGGGATCGACGAGGACGGCAGCCTGCTGGATTTTGACTACCAGGAGGTCCGGGTCTCCCAAGCCATCATCGCCAACGCCCGGCAGGTATTGCTGGCGGCGGATTCCAGCAAGTTCGGCCGCAACGCCATGGTCCGCCTGGGCCCGATCAGCCTGATCGATTGCCTGGTGACCGACCAACAACCGGTGCCGGCCCTGGCGCAGTTGTTGAGCCAGCACAAGATTCGCCTGGAAGTGGTCTGAMNLPPRQQQILELVRERGYVSIEEMAQLFVVTPQTIRRDINQLAEVNLLRRYHGGAAYDSSVENTAYAMRADQMRDEKQRIAEAIAAQIPDHASLFINIGTTTESIARALLNHNHLKVITNNLHVASILSAKDDFEVLIAGGNVRRDGGVVGQASVDFISQFKVDFALVGISGIDEDGSLLDFDYQEVRVSQAIIANARQVLLAADSSKFGRNAMVRLGPISLIDCLVTDQQPVPALAQLLSQHKIRLEVVPGPT0018445_1388DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULE_REGULATION,PGPT0018445-glpR-K02444NANA
D1-35_016011506glpKCOG0554Glycerol kinaseATGACTGACTCAGAGAACAAAAACTACATCATTGCCCTCGACCAGGGTACGACCAGCTCACGCGCCATTATTTTCGACCGTGACGCCAACGTGGTCTGCACCGCCCAACGGGAATTCGTCCAGCACTATCCGCAACCGGGCTGGGTCGAGCATGACCCCATGGAAATCTTTGCCACGCAAAGCGCGGTGATGGTGGAAGCCTTGGCTCAAGCGGGTTTGCATCACGACCAGGTCGCCGCAATCGGCATCACCAACCAGCGCGAAACCACCGTGGTCTGGGACAAGTCCACCGGCCGCCCCATTTACAACGCGGTAGTCTGGCAATGTCGACGCAGCACCGAAATCTGCCAGCAACTCAAGCGCGATGGCCACGAGCAGTACATCAGTGAAGCCACTGGCCTGGTGACCGACCCCTACTTTTCCGGTACCAAGCTCAAGTGGATCCTCGACAACGTCGAAGGCAGCCGCGAGCGCGCGCGCAACGGTGAATTGCTGTTCGGCACCGTGGACAGCTGGTTGATCTGGAAATTTACCGGCGGCAAGGTCCACGTCACCGACTACACCAACGCCTCTCGCACCATGCTCTTCAACATCCACACGCTGGAGTGGGACGCGAAGATGCTCGACATCCTCAACATCCCTCGCGAGATGCTGCCGGAAGTCAAATCATCCTCGGAAATCTACGGCCGGACCAAAAGCGGCATCGCTATTGGCGGCATCGCCGGCGACCAGCAGGCCGCCCTCTTCGGCCAGATGTGCGTGGAACCGGGCCAGGCGAAAAATACCTATGGCACCGGCTGCTTCCTGCTGATGAACACCGGTAACAAAGCCGTCAAATCCAACCACGGCATGCTGACCACCATCGCCTGCGGTCCTCGCGGCGAAGTGGCCTACGCCCTGGAAGGCGCCGTGTTCAACGGTGGCTCTACCGTCCAGTGGCTGCGCGATGAACTGAAAATCATCAACGACGCCCTCGACACCGAATACTTCGCCAACAAGGTCAAGGACAGCAACGGCGTTTACCTGGTGCCAGCCTTCACCGGCCTCGGCGCACCGTACTGGGACCCCTACGCCCGTGGCGCGCTGTTCGGCCTGACCCGTGGCGTGCGGGTCGATCACATCATCCGGGCCGCGCTGGAATCCATCGCCTACCAGACCCGCGACGTACTCGACGCCATGCAACAGGATGCCGGCGAACGCCTCAAGTCCTTGCGCGTGGACGGTGGCGCCGTGGCCAACAATTTCCTCATGCAATTTCAGGCCGACATTCTTGGCACGCAGGTCGAACGCCCGAAAATGCGCGAAACCACCGCCCTCGGCGCGGCATACCTGGCTGGCCTGGCATGCGGCTTCTGGGGCAGCCTGGAAGAGTTGCGTGGCAAAGCGGTCATCGAGCGCGAGTTCGAACCGCAGCTGGATGAGCAAGCCAAGGAAAAACTCTACGCAGGATGGAAAAAAGCCGTCAGCCGCACGCGCGATTGGGAACCCCACGAAGACGCTGAATGAMTDSENKNYIIALDQGTTSSRAIIFDRDANVVCTAQREFVQHYPQPGWVEHDPMEIFATQSAVMVEALAQAGLHHDQVAAIGITNQRETTVVWDKSTGRPIYNAVVWQCRRSTEICQQLKRDGHEQYISEATGLVTDPYFSGTKLKWILDNVEGSRERARNGELLFGTVDSWLIWKFTGGKVHVTDYTNASRTMLFNIHTLEWDAKMLDILNIPREMLPEVKSSSEIYGRTKSGIAIGGIAGDQQAALFGQMCVEPGQAKNTYGTGCFLLMNTGNKAVKSNHGMLTTIACGPRGEVAYALEGAVFNGGSTVQWLRDELKIINDALDTEYFANKVKDSNGVYLVPAFTGLGAPYWDPYARGALFGLTRGVRVDHIIRAALESIAYQTRDVLDAMQQDAGERLKSLRVDGGAVANNFLMQFQADILGTQVERPKMRETTALGAAYLAGLACGFWGSLEELRGKAVIEREFEPQLDEQAKEKLYAGWKKAVSRTRDWEPHEDAEPGPT0018435_3038DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0018435-glpK-K00864NANA
D1-35_01602852glpFCOG0580Glycerol uptake facilitator proteinATGACTACCGCTTTACAACAGCCCACCCTTTCCAGCCAATGCCTGGCCGAATTCCTCGGTACCGCCCTGCTGATTTTTTTCGGTACCGGTTGCGTCGCGGCGCTCAAGGTCGCGGGCGCGAGTTTCGGGTTGTGGGAAATCAGCATCATCTGGGGTGTCGGCGTCAGCATGGCCATCTACCTCAGCGCGGGTATTTCCGGCGCCCACCTCAACCCCGCCGTCAGCATCGCCCTGTGTATTTTTACCGATTTCGAAAAACGCAAACTGCCGTTCTATATTGTCTGCCAGGTGGCGGGGGCATTCTGTGGCGCGCTCTTGGTCTACACGCTGTACAGCAATCTTTTCTTCGATTTCGAACAGTCCCGACAGATGATTCGTGGCACCCAAGCCAGCCTCGAACTGGCTTCGGTATTCTCCACCTACCCGCACCCGGCGCTCTCCACCGGCCAAGCCTTTCTGGTGGAGGTGATCATCACTGCAATCCTGATGGGCGTGATCATGTCCCTGACCGACGACAACAATGGCCTGCCTCGTGGTGCGCTCGCGCCGCTGCTGATCGGTCTTCTGATCGCCGTGATCGGCAGCTCGATGGGACCGCTGACAGGCTTCGCGATGAACCCGGCGCGGGACTTCGGTCCAAAATTGATGACTTTCTTCGCTGGCTGGGGTGAAATTTCCCTCACGGGCGGGCGTGACATCCCTTACTTCCTGGTTCCGATTTTCGCGCCGATAGTGGGTGCGTGCCTGGGCGCTGCCGCGTATCGCGGATTGATTGCCCGACACCTGCCGGGTGCCAAGGCTGCTACAAAGGATGCAGAACCGGCCATTGACGGCAAGCCAAGAACTTCCTGAMTTALQQPTLSSQCLAEFLGTALLIFFGTGCVAALKVAGASFGLWEISIIWGVGVSMAIYLSAGISGAHLNPAVSIALCIFTDFEKRKLPFYIVCQVAGAFCGALLVYTLYSNLFFDFEQSRQMIRGTQASLELASVFSTYPHPALSTGQAFLVEVIITAILMGVIMSLTDDNNGLPRGALAPLLIGLLIAVIGSSMGPLTGFAMNPARDFGPKLMTFFAGWGEISLTGGRDIPYFLVPIFAPIVGACLGAAAYRGLIARHLPGAKAATKDAEPAIDGKPRTSPGPT0004760_295DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLYCEROL_UPTAKE,PGPT0004760-glpF|pduF-K02440NANA
D1-35_01603471ybaKCOG2606Cys-tRNA(Pro)/Cys-tRNA(Cys) deacylase YbaKATGACCCCCGCATTGGACCTGCTTAAAAAAGTGCGCGCCGAACATCGCATCCACAGTTACGAACATGACCCGAAGGCTGCCTCCTATGGGCTGGAGGCGGCTGAGAAGCTCGGTCTGGATCCGGCGCAGGTGTTCAAGACCCTGTTGGCGGCCAGCGAAAAAGGCGAATTGCTGGTGGCCGTGGTGCCGGTGGCCGGGAGCCTGGATCTGAAAGGCCTGGCTCATGCGGCCGGAGTGAAAAAAGTCGAGATGGCCGATCCGGCCGCCGCGCAGCGTTCGACCGGCTATTTGCTCGGCGGGATCAGCCCGCTGGGTCAGAAAAAGCGTCTTCGCACGTTTATCGACAACTCTGCGCAGCCGTTGGCCAGCATGTTCGTCAGCGCGGGGAGGCGCGGGCTGGAAGTGGAACTGGCGCCTGCGGTACTGGCGGAGCATACCGGAGCGATCTTTGCTGATATCGGGCGTGCCTGAMTPALDLLKKVRAEHRIHSYEHDPKAASYGLEAAEKLGLDPAQVFKTLLAASEKGELLVAVVPVAGSLDLKGLAHAAGVKKVEMADPAAAQRSTGYLLGGISPLGQKKRLRTFIDNSAQPLASMFVSAGRRGLEVELAPAVLAEHTGAIFADIGRANANANANANA
D1-35_01604783yddECOG0384putative isomerase YddEATGCAGCTCGCGTTTCATCAAGTCGATGCGTTCAGTGACCGGCCGTTTGGCGGTAACCCGGCGATGGTCTATCGGCTCGATGCCTGGCTTGCCGATGAACTGATGCAGAAAATTGCCGCCGAACACAACCTGGCCGAGACCGCTTTTCTGGTACGTGAGAACCAGCGTTGGCACATTCGCTGGTTCACGCCCACCACCGAAGTGCCGCTGTGTGGGCACGCGACGTTAGCCAGCGCTCATGTGCTGTTCGAGGTTTACCGCGAACCGGCCGAGCGACTCGACTTCATCTGCAGGTCCGGAGCGTTGAGTGTCTCTCGTGAAGGCGATCGGTTGTGGTTGGATTTCCCGGCCATCGTGCCGACTGAGTTGGGCGCCTCCCTGGCGGTCCAGAGCGCCTTGGGTGTCGAGGCGGTGGATGTGCTCAGTTGCAACGAATTGTTCGTGGTGCTGGAGTCGGAGCAGGCAGTGCTCGATTGCAAGCCGGACATGGCGGCCCTGGCGAAGCTGCCGTGGCCGGGCGCGATCGTTACCGCACCGGGAAGCAAGCACGATTTTGTCTCGCGCTATTTTGCCCCGGCGATCGGCATCAACGAGGATCCGGTAACCGGATCGACTCATTGCAGCTTGATTCCATATTGGTCCAAACGCCTGAACAAACATGGCCTGACGGCCTATCAATGCTCGGCGAGGGGCGGGGCATTGTTTTGCCGATTGGAAGGTGAGCGGGTGAAGATTGGCGGGGATGCGACGTTGGTGGCTAGCGGTACGCTAGTGCTCGGCTAAMQLAFHQVDAFSDRPFGGNPAMVYRLDAWLADELMQKIAAEHNLAETAFLVRENQRWHIRWFTPTTEVPLCGHATLASAHVLFEVYREPAERLDFICRSGALSVSREGDRLWLDFPAIVPTELGASLAVQSALGVEAVDVLSCNELFVVLESEQAVLDCKPDMAALAKLPWPGAIVTAPGSKHDFVSRYFAPAIGINEDPVTGSTHCSLIPYWSKRLNKHGLTAYQCSARGGALFCRLEGERVKIGGDATLVASGTLVLGNANANANANA
D1-35_016051110btuD_4Vitamin B12 import ATP-binding protein BtuDATGAGTGCTCCATTGTTATTGAATCTGCACAATCTGGCCTGCGGTTATCAGGACCAGCGGGTCGTCCAGAACCTCAACCTGCACCTCAATGCTGGTGACATCGGTTGCCTGCTCGGCTCGTCCGGGTGTGGCAAGACCACCACCCTACGGGCCATCGCCGGTTTCGAACCGGTGCATGAAGGCGAGATCCAGTTGGCTGGGGAAACCATTTCCCGCGCGGGGTTTACCCTCGCCCCGGAAAAACGCCGCATCGGCATGGTGTTCCAGGACTACGCGCTGTTCCCGCATTTGAGCGTCGCCGAAAATATCGCGTTCGGCATCCGCAAACATCCGGACAAGGATCGCGTGGTCGAAGAACTGTTGGAGCTGGTCAACCTGAAAAGCCTGGGCAAGCGTTTTCCCCACGAGCTGTCGGGAGGCCAGCAACAGCGCGTGGCGCTGGCCCGCGCACTGGCACCGGAACCCCAACTGCTGTTACTCGACGAGCCGTTCTCCAACCTCGACGGCGAGCTGCGACGCAAGCTCAGCCATGAGGTGCGGGACATTCTCAAGGCCCGCGGCACCAGCGCAATCCTGGTCACCCATGACCAGGAAGAAGCCTTTGCGGTGAGTGACCATGTTGGCGTGTTCAGAGAGGGTCGCCTGGAACAGTGGGATACGCCCTACAACCTGTATCACGAACCTCTGACGCCCTATGTCGCCAGTTTCATCGGCCAGGGTTACTTCATCCGCGGTCAGCTCGACAGCCCGGAATCGGTGCAGACCGAACTGGGCATGCTACGCGGCAACCGGGCGTACACCTGGCCCATCGGCAGTGCCGTAGACGTCCTGCTGCGCCCGGACGACATCGTCCACGCGCCGGACAGTCCGCTCACGGCGACTATCGTTGGCAAGACGTTCCTCGGTGCTTCAACCTTGTATCGCCTGCAACTGCCGACCGGCGCACAACTGGAGTCGATTTTTCCAAGCCATGCCGACCATCAGGTCGGGGCTACGGTCGGTATCCGCGTGGCGGCTGAACACCTGGTGCTGTTCCAGGCGTCGGGAAGCACGGCGGCGCATCTGCCGATCGGGGAAAGTGGTGTGCGGCGGTATGGCACGTCTGATTGAMSAPLLLNLHNLACGYQDQRVVQNLNLHLNAGDIGCLLGSSGCGKTTTLRAIAGFEPVHEGEIQLAGETISRAGFTLAPEKRRIGMVFQDYALFPHLSVAENIAFGIRKHPDKDRVVEELLELVNLKSLGKRFPHELSGGQQQRVALARALAPEPQLLLLDEPFSNLDGELRRKLSHEVRDILKARGTSAILVTHDQEEAFAVSDHVGVFREGRLEQWDTPYNLYHEPLTPYVASFIGQGYFIRGQLDSPESVQTELGMLRGNRAYTWPIGSAVDVLLRPDDIVHAPDSPLTATIVGKTFLGASTLYRLQLPTGAQLESIFPSHADHQVGATVGIRVAAEHLVLFQASGSTAAHLPIGESGVRRYGTSDPGPT0003735_768DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003735-afuC|fbpC-K02010NANA
D1-35_01606921argFCOG0078Ornithine carbamoyltransferase 1, anabolicATGAGCGCAAGGCACTTTCTCTCCCTGATGGATTTCACGCCCGAAGAGTTGCTCGGCGTGATCCGTCGAGGCGTGGAGCTCAAGGACCTGCGTAAGCGCGGCGTACTGTTCGAGCCCTTGAAAAACCGTGTGCTGGGGATGATCTTCGAGAAATCTTCCACGCGCACGCGCATTTCTTTCGAAGCCGGCATGATCCAGCTCGGCGGCCAGGCGATTTTCCTGTCGCCCCGTGACACCCAGCTGGGCCGTGGCGAACCCATTGGCGATTGCGCCATCGTCATGTCGAGCATGCTCGATGCGGTGATGATCCGGACCTTTGCCCATAGCACGCTGACCCAGTTCGCGGCGCATTCGCGCGTGCCGGTGATCAATGGCCTGTCCGACGATCTGCACCCGTGCCAGTTGCTCGCCGACATGCAGACCTTCCTCGAACATCGCGGCCCGATCCAGGGCAAGACCGTGGCCTGGATCGGCGATGGCAACAACATGTGCAACAGCTATATAGAAGCGGCGATCCAGTTCGACTTCCAGTTGCGCATCGCCTGCCCTGAAGGCTACGAACCCAACCCGCAATTCGTCGCCAGGGCCGGCGACCGGGTGACAATCCTGCGCGATCCGAAACAGGCCGTCGCCGGCGCGCACCTGGTGAGCACCGACGTCTGGACGTCCATGGGCCAGGAAGAAGAAACCGCCAAGCGCCTGGAGTTGTTTGCGCCCTTCCAGGTCAATCGGGCACTGCTCGACCTGGCGGATGCCGAGGTGCTGTTCATGCATTGCCTGCCAGCCCACCGTGGCGAAGAAATCAGCCTCGACCTGCTCGACGATCCCCGCTCGGTGGCGTGGGACCAGGCAGAAAACCGTCTCCATGCACAGAAGGCCCTGCTTGAATTCCTCGTCGAGCCGGCGTACCACCACGCATGAMSARHFLSLMDFTPEELLGVIRRGVELKDLRKRGVLFEPLKNRVLGMIFEKSSTRTRISFEAGMIQLGGQAIFLSPRDTQLGRGEPIGDCAIVMSSMLDAVMIRTFAHSTLTQFAAHSRVPVINGLSDDLHPCQLLADMQTFLEHRGPIQGKTVAWIGDGNNMCNSYIEAAIQFDFQLRIACPEGYEPNPQFVARAGDRVTILRDPKQAVAGAHLVSTDVWTSMGQEEETAKRLELFAPFQVNRALLDLADAEVLFMHCLPAHRGEEISLDLLDDPRSVAWDQAENRLHAQKALLEFLVEPAYHHAPGPT0020080_4471DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ARGININE_DEGRADATION,PGPT0020080-arcB|argF|argI-K00611NANA
D1-35_01607288hypothetical proteinATGGATTCGAAAGAGCAACAACTGATGGAACTGCTGGGGCTGACGGCACGCTCCCTGACGCACCTGACCGCTTCGGTGACCTCCATGTCATTCGAATTGTTGCGCAGCGAAGACGAAGTGACCAAGGCTGCCGGCCGCCGTATGATCGACCGCATGGCTACCATCAGCAGCGGCCTCGACGAACATTGGCGATTGATCGGCGAGTTGACCGGAGTGCCCATCGCTCAGGAACAAGTGGAAACCGTCGAGGAAATCCAGCTGCTGGCGCCGCCTCCCGAGCACCCCTGAMDSKEQQLMELLGLTARSLTHLTASVTSMSFELLRSEDEVTKAAGRRMIDRMATISSGLDEHWRLIGELTGVPIAQEQVETVEEIQLLAPPPEHPNANANANANA
D1-35_016082109napAPeriplasmic nitrate reductaseATGACCAAGACTCTTCATCACCGTGCGTGCCATCTATGTGAGGCCATCTGTGGCCTGACGCTCGAAACCACCGAAACTGAAGGCCAAGGCCTGGCGATCACCTCGATCAAGGGCGATCCGCTGGACAGTTTCAGCCGTGGGCACATCTGTCCCAAGGCCGTCGCCCTGCAAGATATCCAGAATGACCCGGACCGGCTGCGCCAACCCATGCAGCGAGTCGGCGGCGAGTGGCAGCCGATTGCCTGGGATGACGCTTTCGCCCTGGTCGCCGAACGCCTGGCGGCAATCCAGGAGCGCCACGGCCAGAACGCGGTGGGTGTCTACCAGGGCAACCCCAGCGTGCATAACTATGGGTTGATGACCCACAGCAACTATTTCCTCGGCCTGCTGAAGACACGCAGTCGCTTCTCGGCGACGTCGGTGGACCAACTGCCCCATCACCTGACCAGTCACCTGATGTACGGTCACGGCCTGCTGCTGCCGATACCGGACATCGACCATACCGATTTCATGCTGATCCTGGGCGGTAATCCCCTGGCTTCCAACGGCAGCATCATGACCGTGCCGGACGTCGAGAAGCGCCTCAAGGCGATCCAGGCCCGTGGCGGCAAAGTCGTGGTCGTCGATCCACGGCGCAGCGAAACGGCGGCGATTGCCGACCAGCATGTTTTCGTGCGTCCCGGTGGCGATGCCGCGCTGCTGTTTGGCCTGCTCAATACGCTGTTCAGCGAAGGCCTGAGCCGCGACAGCCATTTGCCCGTGGACGGCCTCGAAGAGGTGCGCCAGGCCGTGGCAGGGTTTACCGCCGAGGTGATGAGCCCCCTCTGTGCGGTGCCAGCGCCGCAGATCCGGCAGTTGGCCCGCGACTTTGCCGCTGCGCCCTCAGCGGTCTGCTACGGCAGAATGGGCGTGTCCACCCAGGCGTTCGGCACGTTATGCCACTGGCTGATCCAAGTGATCAATCTGGTCACCGGCAACCTCGATCGGGTGGGCGGTGCATTGTGCACCGAGCCGGCGGTGGACCTGGTGGCGACCACTTCGGGTGGCCATTTCAACCGTTGGCAGAGCCGGGTGTCCGGGCGTCCCGAATACGCCGGCGAGCTGCCCGTGTCGACCTTGGCCGAAGAAATGCTGACCGAGGGCGACGGGCAGATTCGTGCGCTGGTCACCGTGGCCGGCAACCCGGTGCTGTCCACGCCCAACGGGCGGCAGCTCGAACAGGCGCTGGATGGGCTGGAGTTCATGGTCAGCATCGATTTGTACATCAACGAGACCACTCGTTATGCCGATCTGATCCTGCCATCGACCTCGGCTTTGGAAAACGATCACTACGACACCACGTTCAACCTGTTCGCGGTGCGTAACGTCAGCCGTTTCAATCGGGCGATCCTGCCCAAGCTCGAAGGGGCGCTGCACGATTGGGAGATTTTTGTCGGCCTGGCCAAGGCCTTCGCCGCGCGGACTGGCAAGGAACTCAAGCCGACCATGCCGCCCGCGCAAATGATTGATTTTGGCCTGCGCGCGGGAAGGTATGGGGATGCCTCGCCACACAAATTGTCGCTGGCGACGCTGTTCGATCATCCCCACGGCATCGACCTCGGTGCGCTCAAGCCCAATCTGACGACGCGCTTGAAAACCGAAAATGGCCGCGTGCAGGCCGCGCCGGCGGTGATCCTCGCGGATCTGGCGCGCTTTGCCGCGCTGCGAGCGCCGGCATCGGACGAGCTGCTGATGATTGGCCGTCGGCATGTGCGCAGCAACAATTCCTGGATGCATAACTTTCATCGGCTGGTGAAGGGCAAGCCGCGCCACCAGTTGCTGATGCATCCTGAAGACCTCGCCAGTCGCGGTTTAGTCGATGGCCAGCGCGTGCAGGTCAGTTCACGGGTAGGCGTGATCGAAGTGGAGGTGCAAGGCAGCCTGGACATGATGAAAGGCGTGGTCAGCCTTCCCCATGGCTGGGGCCACGCCCGACCAGGCGTGCAGATGACCATCGCCAGCAGCCAGCCTGGTTCCAGCGCCAACGACCTGACCGATGAATGTCAGCTCGATGAGTTGTCCGGCAATGCGGCGCTTAATGGGGTTCCGGTGAAAGTGGCGGCTGCGTAGMTKTLHHRACHLCEAICGLTLETTETEGQGLAITSIKGDPLDSFSRGHICPKAVALQDIQNDPDRLRQPMQRVGGEWQPIAWDDAFALVAERLAAIQERHGQNAVGVYQGNPSVHNYGLMTHSNYFLGLLKTRSRFSATSVDQLPHHLTSHLMYGHGLLLPIPDIDHTDFMLILGGNPLASNGSIMTVPDVEKRLKAIQARGGKVVVVDPRRSETAAIADQHVFVRPGGDAALLFGLLNTLFSEGLSRDSHLPVDGLEEVRQAVAGFTAEVMSPLCAVPAPQIRQLARDFAAAPSAVCYGRMGVSTQAFGTLCHWLIQVINLVTGNLDRVGGALCTEPAVDLVATTSGGHFNRWQSRVSGRPEYAGELPVSTLAEEMLTEGDGQIRALVTVAGNPVLSTPNGRQLEQALDGLEFMVSIDLYINETTRYADLILPSTSALENDHYDTTFNLFAVRNVSRFNRAILPKLEGALHDWEIFVGLAKAFAARTGKELKPTMPPAQMIDFGLRAGRYGDASPHKLSLATLFDHPHGIDLGALKPNLTTRLKTENGRVQAAPAVILADLARFAALRAPASDELLMIGRRHVRSNNSWMHNFHRLVKGKPRHQLLMHPEDLASRGLVDGQRVQVSSRVGVIEVEVQGSLDMMKGVVSLPHGWGHARPGVQMTIASSQPGSSANDLTDECQLDELSGNAALNGVPVKVAAANANANANANA
D1-35_01609342grxDCOG0278Glutaredoxin 4GTGGATATCATCGAAACGATCAAAGACCAGATTGCCAACAACACTATCCTGCTTTACATGAAAGGCTCGCCGAATGCCCCTCAGTGCGGCTTCTCGGCCAAGGCTGCTCAGGCGGTAATGGCGTGTGGCGAGAAGTTCGCTTACGTGGACATCCTGCAGAACCCGGAAATCCGCGCCAATCTTCCCAAGTACGCCAACTGGCCAACCTTTCCACAGTTGTGGGTTGGCGGTGAACTGATCGGCGGCAGCGACATCATGACCGAGATGGCCGCTGATGGCTCTCTGCAGGCCACCATCAAGGCAGCTGTGGAAGCAGCGGCGGCGAACAAGACCGAAGCCTGAMDIIETIKDQIANNTILLYMKGSPNAPQCGFSAKAAQAVMACGEKFAYVDILQNPEIRANLPKYANWPTFPQLWVGGELIGGSDIMTEMAADGSLQATIKAAVEAAAANKTEAPGPT0013203_1221DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-CHAPERONES,PGPT0013203-grxD-K07390NANA
D1-35_01610474bfr_1COG2193BacterioferritinATGAAAGGCGACATTACAGTCATCCAGCATCTCAACAAGATCCTCGCCAATGAGCTGGTCGCGATCAATCAATACTTCCTGCATGCGCGCATGTATGAGGATTGGGGCCTGAACAAGCTGGGCAAGCACGAGTACCACGAATCCATCGACGAGATGAAACACGCGGACAAGCTGATCAAGCGCATCCTGTTCCTCGAAGGCCTGCCGAACGTCCAGGACCTGGGCAAGCTGCACATTGGCGAACACACCCGGGAAATGCTCGAATGCGATCTGCGCATCGAACGCACCGGCCACGCCGACCTGAAAGCCGCCATCGCCCATTGCGAAACCGTCGGTGACTTCGGCAGTCGCGAGTTGCTCAAGGATATCCTCGAGTCCGAAGAAGAGCACATCGACTGGCTGGAAACCCAGTTGGGCCTGATCGACAAGATCGGTCTGGAGAACTACCTGCAGTCGCAGATGGGCGAAGAATAAMKGDITVIQHLNKILANELVAINQYFLHARMYEDWGLNKLGKHEYHESIDEMKHADKLIKRILFLEGLPNVQDLGKLHIGEHTREMLECDLRIERTGHADLKAAIAHCETVGDFGSRELLKDILESEEEHIDWLETQLGLIDKIGLENYLQSQMGEEPGPT0003965_2191DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-RELATED_PROTEINS_FERRITIN,PGPT0003965-bfr-K03594NANA
D1-35_01611219bfdCOG2906Bacterioferritin-associated ferredoxinATGTATGTATGCCTCTGCACTGGCGTCACCGACGGACAGATCCGCGAAGCGATCTATGAAGGTTGCTGCAGTTATCGGGAAGTCCGCCAGGCCACCGGCGTAGCCAGCCAATGCGGTAAATGTGCCTGCCTTGCCAAGGAAGTGGTGCGTGAAACCCTCGCCAAAGTGCAGACTGCCCAGGCCTCGATCCCTTATCCGGTAGAATTTACTGCCGCATAAMYVCLCTGVTDGQIREAIYEGCCSYREVRQATGVASQCGKCACLAKEVVRETLAKVQTAQASIPYPVEFTAAPGPT0003975_583DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-BACTERIOFERRITIN-ASSOCIATED_FERREDOXIN,PGPT0003975-bfd|yheA-K02192NANA
D1-35_01612603ahpC_1COG0450Alkyl hydroperoxide reductase CATGAGCGTACTCGTAGGCAAACAAGCCCCTGACTTCACCGTTCCAGCCGTACTCGGCAACGGTGAAATCGTCGACAGCTTCACCCTGTCCTCGGCCATCAAAGGCAAATACGGCCTGGTGTTCTTCTACCCGCTGGACTTCACTTTCGTCTGCCCGTCCGAGCTGATCGCACTGGATCACCGCATGGACGACTTCAAGGCGCGCAACGTTGAAGTGGTCGCGGTTTCGATCGACTCGCACTTCACCCACAACGCCTGGCGCAACACCCCGATCAACAACGGCGGGATCGGCCCGGTGAAGTACACCATGGCCGCTGACATGAAGCACGAAATCGCCAAGGCCTACGACGTTGAGTCCGAAGGCGGCGTGGCCTTCCGTGGCGCGTTCCTGATCGACGACAAAGGCGTGGTCCGTTCGCAGATCATCAACGACCTGCCGCTGGGCCGTAACATGGAAGAGCTGATCCGTCTGGTCGACGCTCTGCAATTCCACGAAGAGCACGGCGAAGTCTGCCCGGCCAACTGGAAAAAAGGCGACAAGGGCATGACCGCATCGCCTGAAGGTGTAGCGGCTTACCTGGGCGAACACAGCGACAAGCTGTAAMSVLVGKQAPDFTVPAVLGNGEIVDSFTLSSAIKGKYGLVFFYPLDFTFVCPSELIALDHRMDDFKARNVEVVAVSIDSHFTHNAWRNTPINNGGIGPVKYTMAADMKHEIAKAYDVESEGGVAFRGAFLIDDKGVVRSQIINDLPLGRNMEELIRLVDALQFHEEHGEVCPANWKKGDKGMTASPEGVAAYLGEHSDKLPGPT0013130_1601DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013130-tsaA|PRDX2_4|ahpC-K03386NANA
D1-35_01613678rntCOG0847Ribonuclease TGTGAGTGAAGATCATTTCGACGACGAACTGGACGGCAACGGTGGTTCCGGCGGCGCTCGCCACCCCATGGCAGCCCGTTTCCGGGGTTACCTGCCGGTCGTGGTCGACGTAGAAACCGGCGGTTTCAACTCGGCCACCGATGCGTTGCTGGAAATCGCCGCGACGACCATCGGCATGGACGAAAAAGGCTTTGTGTTCCCGGACCACACTTATTTCTTCCGCGTTGAACCGTTCGAAGGCGCCAACATCGAAGCAGCCGCGCTGGAATTCACCGGGATCAAGCTCGACCACCCGCTGCGCATGGCGGTCAGCGAGGAAACGGCACTGACCGACATCTTCCGTGGCGTGCGCAAGGCCCTGAAGGCCAACGGTTGCAAGCGCGCGATCCTGGTCGGTCACAACAGCAGCTTCGACCTGGGCTTCCTTAACGCCGCCGTTGCGCGACTGGACATGAAGCGCAACCCATTCCACCCGTTTTCCAGCTTCGATACGGCGACCCTGGCCGGCCTGGCGTACGGCCAGACCGTATTGGCCAAGGCCTGCCAGGCCGCCGACATCGATTTCGACGGCCGCGAAGCCCACTCGGCCCGCTATGACACCGAGAAGACTGCCGAGCTGTTCTGCGGCATCGTCAATCGCTGGAAGGAAATGGGCGGCTGGCAGGATTTCGACGACTGAMSEDHFDDELDGNGGSGGARHPMAARFRGYLPVVVDVETGGFNSATDALLEIAATTIGMDEKGFVFPDHTYFFRVEPFEGANIEAAALEFTGIKLDHPLRMAVSEETALTDIFRGVRKALKANGCKRAILVGHNSSFDLGFLNAAVARLDMKRNPFHPFSSFDTATLAGLAYGQTVLAKACQAADIDFDGREAHSARYDTEKTAELFCGIVNRWKEMGGWQDFDDNANANANANA
D1-35_016141047pyrCCOG0418DihydroorotaseATGTCCGACCGCCTGACCCTGCTGCGTCCCGACGACTGGCATATTCATCTTCGCGATGGTGCTGTGTTGACCCATACCGTCGCCGATGTCGCGCGCACCTTCGGGCGCGCAATCATCATGCCTAACCTGGTTCCGCCTGTCCGCAACGCCGTCGAGGCCGATGGCTATCGCCAGCGCATCCTGGCCGCACGCCCGGCCGGCAGCCGCTTCGAACCGCTGATGGTGCTTTACCTCACCGACCGCACCCAGCCCGAGGAAATTCGCGAGGCCAAGGCCAGTGGCTTCGTCCACGCGGCCAAGTTGTACCCGGCCGGCGCCACCACCAATTCGGACTCCGGCGTCACCAGCATCGACAAGATCTTCCCGGCGCTTGAAGCGATGGCCGAAGTCGGGATGCCGTTGCTGATCCATGGCGAAGTCACCCGGGGCGATGTCGACGTGTTCGACCGCGAGAAAATCTTCATCGACGAGCACATGCGCCGCGTCGTGGAGCGTTTCCCGACGCTCAAGGTGGTGTTCGAACACATCACCACCGGCGATGCCGTGCAGTTCGTCAACGAGGCCTCGGCCAACGTCGGCGCGACCATTACCGCGCATCACCTGCTTTACAACCGCAACCACATGCTGGTGGGCGGGATCCGGCCGCACTTCTATTGCCTGCCGATCCTCAAGCGCAACACCCACCAGGAAGCCTTGCTCGACGCCGCGACCAGCGGCAGCGCGAAGTTTTTCCTCGGCACGGACTCGGCGCCCCATGCCCGCCATGCCAAGGAAGCCGCCTGCGGTTGCGCCGGTTGCTACACCGCCTATGCCGCCATCGAGATGTACGCCGAAGCGTTCGAGCAGCGCAACGCGCTGGACAAGCTCGAAGGTTTTGCCAGCCTGCACGGTCCGCGTTTCTATGGCCTGCCGGTGAACACCGATAGCATTACCCTGGTCCGCGACGAGTGGACTGCCCCCGCCAGCCTGCCGTTTGGCGAACAGACTGTCATCCCGCTGCGCGCCGGTGAAAAACTGCGCTGGCGCCTGCTGGAGGAAAACGCGTGAMSDRLTLLRPDDWHIHLRDGAVLTHTVADVARTFGRAIIMPNLVPPVRNAVEADGYRQRILAARPAGSRFEPLMVLYLTDRTQPEEIREAKASGFVHAAKLYPAGATTNSDSGVTSIDKIFPALEAMAEVGMPLLIHGEVTRGDVDVFDREKIFIDEHMRRVVERFPTLKVVFEHITTGDAVQFVNEASANVGATITAHHLLYNRNHMLVGGIRPHFYCLPILKRNTHQEALLDAATSGSAKFFLGTDSAPHARHAKEAACGCAGCYTAYAAIEMYAEAFEQRNALDKLEGFASLHGPRFYGLPVNTDSITLVRDEWTAPASLPFGEQTVIPLRAGEKLRWRLLEENAPGPT0021145_6728DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021145-pyrC-K01465NANA
D1-35_016151017pal_6Peptidoglycan-associated lipoproteinGTGCGCCAGCGTTATCTAGCCTTGCTCAGTGTGTTTGCCAGCCTTCCTGCGATGGCGCTCACTTTCCAGACTCGTCTGGAGAGCATCGAGTGGACGGTCGAAGGCGACAAGTTCGAGTGCCGGCTGAGCCAGCCGATCGCCGATTTTGGTAGCGGCGAGTTCGTCCGCCGGGCGGGCGAGCAGGCCACGTTCCGACTCAAGGCCTACAACCCGGTGCTGGGTGGCGGTTCCGCGACGCTGCTGGCGGCCGCTGCGCCGTGGCAACCGGGGCGGGGCGACATCAACCTGGGGTCGGTCAGGATCGGCAGCGGCGACGTGTTGTTCAACAGCTCCCAAGTCCAGGCGGGACGCCTGATCAGTGGGTTGATGGAAGGGCGCAGCCCCGTGGTCCGGCGTAATGCCGAGGATGGCCGGGTGTCGGAAGTTCGCCTGTTGCCTGTGCGCTTCAACAAGGCCTTCAGCGACTACCAGGGCTGTGTGGCGAAACTGTTGCCGAAGAATTTCGAGCAGATCAAGCAGACCCAGATCGGCTTTCCCGGCGAGGGGGTTGAGCTCGACGCCCAGGCCAAGGCTCAATTGCAGGTCATGCTCGACTTCATCAAGGCTGACCCGAGCGTCAACCATGTCGAACTCGATGGGCATTCCGACAACAGCGGCAACCGCTTGACCAATCGTGAGCTGTCGCGCCGCCGTGCGCTGGCGGTCATGGATTTCTTCAAGGCCAATGGCTTCCAGGAGTCGCAGTTCACTGTGCGTTTCCACGGTGAGCGTTATCCGCTCGTGCCTAATAACAACGCCGCCCATCGCGCCAAGAACCGGCGTGTGGTGGTGCAACTGGATCGAGTGGCGGCCACTCAGGCGCCAGCGGCCCAGCCCACCACGCCAACCCCGCCAGCAACGCCAGCAACGCCAGCTGTACCTGCGGCGACGCCCGCTGCAGCACCCGGCAAGGCTCCGGCGCCGGTCGCCCCCACCAAGGTCGTGGCCCCCGCAGCGGCAACTGCTCGAACTTCCTGAMRQRYLALLSVFASLPAMALTFQTRLESIEWTVEGDKFECRLSQPIADFGSGEFVRRAGEQATFRLKAYNPVLGGGSATLLAAAAPWQPGRGDINLGSVRIGSGDVLFNSSQVQAGRLISGLMEGRSPVVRRNAEDGRVSEVRLLPVRFNKAFSDYQGCVAKLLPKNFEQIKQTQIGFPGEGVELDAQAKAQLQVMLDFIKADPSVNHVELDGHSDNSGNRLTNRELSRRRALAVMDFFKANGFQESQFTVRFHGERYPLVPNNNAAHRAKNRRVVVQLDRVAATQAPAAQPTTPTPPATPATPAVPAATPAAAPGKAPAPVAPTKVVAPAAATARTSPGPT0015395_33DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_MOTOR|SWITCH,PGPT0015395-motY-K21218NANA
D1-35_016161218argGCOG0137Argininosuccinate synthaseATGGCGGACGTAAACAAGGTCGTTCTGGCGTATTCCGGCGGCCTGGACACTTCGGTGATCCTCAAGTGGCTGCAGGACACTTATAACTGTGAAGTGGTGACGTTCACCGCTGACCTGGGGCAGGGCGAAGAAGTTGAGCCTGCCCGCGCCAAGGCTCAGGCCATGGGCGTCAAGGAGATCTACATCGATGACCTGCGCGAAGAATTCGTCCGCGACTTCGTGTTTCCGATGTTCCGCGCCAACACTGTTTACGAAGGCGAATACCTGCTGGGTACCTCAATCGCCCGTCCGCTGATCGCCAAGCGCCTGATCGAAATCGCCAACGAAACCGGCGCCGACGCCATTTCCCACGGTGCTACCGGCAAGGGCAACGACCAGGTACGTTTCGAGCTGGGCGCCTATGCCCTCAAGCCGGGCGTCAAAGTCATCGCCCCGTGGCGCGAGTGGGACCTGCTGTCCCGTGAAAAACTGATGGACTACGCCGAGAAGCATGCGATCCCGATCGAGCGTCACGGCAAGAAAAAATCCCCGTATTCGATGGATGCCAACCTGCTGCACATCTCCTACGAAGGCGGCGTGCTGGAAGACACCTGGACCGAGCACGAAGAAGACATGTGGCGTTGGACCGTCTCCCCGGAGAAGGCTCCCGATACCCCGCAATACCTTGAGCTGACCTATCGCAACGGCGATATCGTTGCCCTCGACGGCGTGGAAATGAGCCCGGCCACCGTCCTCGCGACGCTGAACCGTATCGGCGGCGAACACGGCATCGGTCGCCTGGACATCGTTGAAAACCGCTATGTCGGCATGAAATCCCGTGGCTGCTACGAAACCCCCGGCGGCACCATCATGCTGCGTGCTCACCGGGCGATCGAGTCGATCACCCTGGACCGCGAAGTGGCTCACCTGAAAGACGAGTTGATGCCCAAGTACGCCAGCCTGATCTACACCGGCTACTGGTGGAGCCCGGAGCGTCTGATGCTGCAACAGATGATCGATGCTTCCCAGGCCCACGTGAACGGCGTCGTGCGCCTGAAGCTGTACAAGGGCAACGTGATCGTGACCGGGCGCAAGTCCGACGAGTCGCTATTCGATGCAAACATCGCGACCTTCGAAGAAGACGGTGGCGCCTACAACCAGGCCGACGCGGCCGGCTTCATCAAGCTCAACGCCCTGCGCATGCGCATCGCGGCGAACAAGGGTCGCAAGCTGTTCTGAMADVNKVVLAYSGGLDTSVILKWLQDTYNCEVVTFTADLGQGEEVEPARAKAQAMGVKEIYIDDLREEFVRDFVFPMFRANTVYEGEYLLGTSIARPLIAKRLIEIANETGADAISHGATGKGNDQVRFELGAYALKPGVKVIAPWREWDLLSREKLMDYAEKHAIPIERHGKKKSPYSMDANLLHISYEGGVLEDTWTEHEEDMWRWTVSPEKAPDTPQYLELTYRNGDIVALDGVEMSPATVLATLNRIGGEHGIGRLDIVENRYVGMKSRGCYETPGGTIMLRAHRAIESITLDREVAHLKDELMPKYASLIYTGYWWSPERLMLQQMIDASQAHVNGVVRLKLYKGNVIVTGRKSDESLFDANIATFEEDGGAYNQADAAGFIKLNALRMRIAANKGRKLFPGPT0020130_2972DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0020130-argG-K01940NANA
D1-35_01617627bvgA_2Virulence factors putative positive transcription regulator BvgAATGAATAAAGTGCTGATCGTGGATGATCACCCCGTCATTCGTCTTGCTGTACGTTTGTTAATGGAGCGCCATGGATATGAAGTCATCGCGGAAACAGACAATGGCGTCGATGCGTTACAGCTGGCGCGCGATAAAATGCCCGACATCGTTGTTCTCGATATCGGGATCCCGAAGTTGGACGGACTGGAGGTTATCGCGCGCCTGACCACCAATCCTTCGCCGCTCAAAGTGCTGGTGCTCACCTCTCAGTCGCCAGGGCATTTCTCGATGCGATGCATGCAGATGGGAGCGGCCGGTTATGTGTGCAAGCAACAGGACCTGACCGAGTTGTTGAGTGCAATAAAAGCGGTGCTCTCGGGCTACAGTTATTTTCCCAACCAGGCGTTGCATACCGTGCGTTCGAGCCTGGGCAACGCCAGCGAGTCGGATATGGTCGATCGTTTGTCCGGACGAGAGATGATGGTCCTGCAGCAGCTGGCCCGTGGGAGGACCAACAAGGAGATTGCCGACGGGATGTTCCTGAGCAACAAGACAGTGAGTACCTACAAGACCCGACTGTTGTTGAAGCTCAATGCCCGCTCACTGGTCGACCTGATCGAGCTGGCACAGCGTAACGGATTGGTGTGAMNKVLIVDDHPVIRLAVRLLMERHGYEVIAETDNGVDALQLARDKMPDIVVLDIGIPKLDGLEVIARLTTNPSPLKVLVLTSQSPGHFSMRCMQMGAAGYVCKQQDLTELLSAIKAVLSGYSYFPNQALHTVRSSLGNASESDMVDRLSGREMMVLQQLARGRTNKEIADGMFLSNKTVSTYKTRLLLKLNARSLVDLIELAQRNGLVPGPT0014490_145DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MdtEF-TolC,PGPT0014490-evgA|bvgA-K07690NANA
D1-35_01618183hypothetical proteinATGAGCGCTGGCAAAGAACAACTGGATGTAGAAGACGATTTCATCGCCGTCGAGGCTGACGATGCGGAACCTGTGGTCGTGGAAGTGGCGAAAACCAACCTGAGCAAACGTCGCACCATCGATAACCTGCTGGAAGAGCGTCGCTTGCAGAAACAATTGGCCGACTATGATTTTGACCTCTGAMSAGKEQLDVEDDFIAVEADDAEPVVVEVAKTNLSKRRTIDNLLEERRLQKQLADYDFDLNANANANANA
D1-35_01619639nthCOG0177Endonuclease IIIATGAACGCCGCAAAACGCCTGGAAATATTCCGTCGCTTTCATGAAGACAACCCGGAGCCAAAAACCGAACTGGCCTATTCCTCACCCTTCGAGCTGCTGATCGCGGTAATTCTGTCGGCCCAATCCACCGACGTCGGCGTCAACAAGGCCACCGCCAAGCTGTTTCCCGTGGCCAATACGCCGCAAGCGATCCACGCCTTGGGGGTCGAAGGGCTGTCGGAATACATCAAGACCATCGGGCTGTTCAACAGCAAGGCCAAGAACGTCATCGAGACCTGCCGCCTGCTGATGGAGCGTCATGGCGGCGAGATCCCGCAGACCCGCGAAGAGCTGGAAGCCCTTCCAGGCGTCGGCCGCAAGACCGCCAACGTGGTGCTCAACACCGCGTTTCGTCAGCTGACGATGGCAGTCGACACGCACATTTTCCGCGTCAGCAACCGTACCGGCATTGCTCCGGGCAAAAATGTCGTGGAAGTGGAAAAGAAACTGATGAAATTTGTCCCCAAGGAATACCTCCTGGATTCCCACCACTGGCTCATCCTCCATGGGCGTTACGTCTGCCTGGCGAGAAAGCCCCGTTGCGGCAGTTGCCGAATCGAAGACCTGTGCGAATACAAGCACAAGACATCTGACGATTGAMNAAKRLEIFRRFHEDNPEPKTELAYSSPFELLIAVILSAQSTDVGVNKATAKLFPVANTPQAIHALGVEGLSEYIKTIGLFNSKAKNVIETCRLLMERHGGEIPQTREELEALPGVGRKTANVVLNTAFRQLTMAVDTHIFRVSNRTGIAPGKNVVEVEKKLMKFVPKEYLLDSHHWLILHGRYVCLARKPRCGSCRIEDLCEYKHKTSDDPGPT0013735_4683DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013735-nth-K10773NANA
D1-35_01620528rnfECOG4660Ion-translocating oxidoreductase complex subunit EATGAATAAGCCGGTATTGAGCCGTGGCCTGCTGCTCGTGCCCTTGGTGGGTGCAAGCAGCTCGCTGACGAATGCACTGGGGGTGTGGCTGGCCTGGGTTTTGATCAGCTTCGGCCATGGCTGGGCCATGACGCTGGCCGGGCCACGCTGCACGACTTATCAGCGGCTGGTTGCAGGTATCCTGCTGGCCGCAGCCTTGAGTGCTTGCGCAAGCCTGGTCGCGCAGGCCTGGCTGCCCGAGTGGTATGCATCGTCAGGCCTTTACCTCGGCTGGATCGCCTTGAGCTGCGTAGCGCTGGATCAAGCGCCAGTGGACGAATCCCGGGTAGCTGACCGCCTCAGGCTGGCGGGCCAGTCTGGCCTCCTGATGGCCATTCTGAGCGCCCTGCGCGAATTGGTCGGCAATGGCGTCCCACTGGCCCTGCTCGCTCCCGGCGGGTTCATCCTGCTCGGCCTGCTGCTGGCGGCCCACCAGGCCTGGACGGCCAGCAAACCCCATCCACCCCTAGAGGAAACGCCGCGCCCATGAMNKPVLSRGLLLVPLVGASSSLTNALGVWLAWVLISFGHGWAMTLAGPRCTTYQRLVAGILLAAALSACASLVAQAWLPEWYASSGLYLGWIALSCVALDQAPVDESRVADRLRLAGQSGLLMAILSALRELVGNGVPLALLAPGGFILLGLLLAAHQAWTASKPHPPLEETPRPPGPT0013280_1293DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013280-rnfE|rsxE-K03613NANA
D1-35_01621612rnfGCOG4659Ion-translocating oxidoreductase complex subunit GATGAAAAGACCCGGCGGCGTGCTGATCCTGATCGTCCTGGCCGGCCTCGGCATCGGCGCCACGTACCTCATGCAGATCAATCTGGCCGGACGCATCGAAGCCCAACGGCAAGCCTTGACCGGCAGGACCTTGCTCGAGGTATTGCCCTCCGAGCGTTATGACAACCAGCCGCTGGCGCAACCGGTCATGACGAACCCGGTTGAGTTGAGCCACAGCCGGTTGCTGGGCGGTTACCTGGCGACCCGCAACGGCCAGCCCAGCGCGGTGCTGTTGCGCAGCCAGGCGTTGGGCTATGAGGGCAGCATCGAATTGATGATCGCCATTGATCCCAGCGGCCGCCTGCTTGGCGTTAAAACCCTGCGCCAGTCGGAAACACCCGGCCTGGGCGCGGTAATCGCCGACTGGCCGAATACCTGGCTGCAGACATTCACCGGAAAGTCGCGCCAGGCGCCGACCGATGACGGCTGGGCCTTGAAAAAGGACCAGGGCCAGTTCGATCAATTGGCCGGCGCGACGGTGACCTCGCGCGCGGTGCTCCAGGCGATCCACGATGCGCTGCGTTATTTCGATGAGCACCAGGCCCACCTGACCGGAGCGAGTGTCAATGAATAAMKRPGGVLILIVLAGLGIGATYLMQINLAGRIEAQRQALTGRTLLEVLPSERYDNQPLAQPVMTNPVELSHSRLLGGYLATRNGQPSAVLLRSQALGYEGSIELMIAIDPSGRLLGVKTLRQSETPGLGAVIADWPNTWLQTFTGKSRQAPTDDGWALKKDQGQFDQLAGATVTSRAVLQAIHDALRYFDEHQAHLTGASVNEPGPT0013285_1006DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013285-rnfG|rsxE-K03612NANA
D1-35_01622987rsxDCOG4658Ion-translocating oxidoreductase complex subunit DATGCTACGCCCTGATCCGGTGGACGAGCGGCTGCGGCAAGCGATGCGACGGGTGTTGCTGGCGATGCTGCCCGGCGTGCTGGCGATGGTCTGGTTTTATGGCTGGGGCGTGGCGCTGAACCTGCTGCTGTCGGCCCTCGCCGCTCTGGCTGTCGAGGCGCTGGCGTTGCGTCTGCGACGACGCCCTCTCAAGCCCGGCCTGAGCGACGGCAGCGCACTGGTCAGCGCCGCGCTGCTGGCCATGGCCTTGCCGGCGTATTGCCCATGGTGGCTGACCGTCACGGCCGCTGCCTGCGCCTTGCTGTTCGGCAAGCACTTATGGGGCGGGCTCGGCAGCAATCCCTTCAATCCGGCGATGCTCGGGTATGCCCTGGTGCTGGTGGCGTTTCCCCAGCACCTGAGCCAATGGCCCGTGCCCCATGACATGGACTTTCTCGAAGGTCTGCGACAAGTCGCCGGCATTGCCCAGGCGCCCGACGGCTGGGCCGGCGCCACGGCCCTGGACAGTCTGCGAATCAATACAAGCCTGACCGTCGACGAACTGTTCGCCAGCAATCCTGCGTTCGGTCGTTGGGGTGGGCGCGGTGTCGAGTGGGTCAACCTGGCCTTCCTCGCCGGCGGCCTGTTCCTGCTGCAACAGCGCGTGTTCAGTTGGCACGCGCCGGTGGGCATGCTTGCCAGCCTGTTCACCTTGAGCCTGCTGTGCTGGAACGGCTCGGGCTCGGACTCCCATGGCTCGCCGCTGTTTCATCTGTTGACCGGGGCAACCATGCTGGGCGCATTTTTCATCGTCACCGAACCGGTGTCAGGCGCCAAGGCCCCGCTCGCCCGACTGTTGTTCGGGGCCGGCGTGGGCGCGCTGGTCTACCTGATTCGTACCTGGGGCGGCTACCCGGACGGCGTGGCGTTTGCCGTGTTGCTGATGAACCTCGGTGTGCCTGCGCTGGATCGTCTCGCCGAGGCACGACAAAGGCGAGCGCTGACATGAMLRPDPVDERLRQAMRRVLLAMLPGVLAMVWFYGWGVALNLLLSALAALAVEALALRLRRRPLKPGLSDGSALVSAALLAMALPAYCPWWLTVTAAACALLFGKHLWGGLGSNPFNPAMLGYALVLVAFPQHLSQWPVPHDMDFLEGLRQVAGIAQAPDGWAGATALDSLRINTSLTVDELFASNPAFGRWGGRGVEWVNLAFLAGGLFLLQQRVFSWHAPVGMLASLFTLSLLCWNGSGSDSHGSPLFHLLTGATMLGAFFIVTEPVSGAKAPLARLLFGAGVGALVYLIRTWGGYPDGVAFAVLLMNLGVPALDRLAEARQRRALTPGPT0013275_1149DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013275-rnfD|rsxD-K03614NANA
D1-35_016231005rsxBIon-translocating oxidoreductase complex subunit BATGAACCTGATTCAACGTATCGATGCCCTGCTGCCGCAAACCCAATGCGGCAAGTGCGGCCATCCCGGCTGCAAGCCTTACGCCGAAGGCATCGCCCAGGGTGAACCGATCAACAAATGCCCACCCGGCGGACGCGAAACCATCGCGGCCCTGGCCGAGCTGATGACCGTGCCGGTACTCGAACTGGACGCCAGCCGTGGCTCGGCCCCGGCGCAGATCGCATACATTCGCGAAGCCGAATGCATCGGTTGCACCAAGTGCATCCAGGCGTGCCCGGTGGACGCGATTGTTGGCGCGGCCAAGCTGATGCACACCGTCCTCATCGATGAGTGCACCGGCTGCGACCTCTGCGTGGCGCCTTGTCCGGTGGATTGCATCGAGATGCGCCCACTGCCGATGGCAACCGTAACGCCGGTTGTCGGTGGCCTGGCCTCCAGCATCGAAGAACAGCAGGCGCGGACCGCCAAGCGCAATCACGCCCGCCGCCGCTTCGAGCTGCGCAATGCGCGCCTGCGCCGCGAAGAAGAGCAGCGCCTGGCCGAGCGCCTGGCCCGAACCCAGCGCAACGCTCAACCAGCCCAGGCCCAGCCACTTGATCCGGTGCAGGCTGCGCTGGAACGAGTGCGCGCGCAAAAAGCCGCCAGCGCCGACGCCGCCCTGAAAAAAGCCAAGGTCGACCTGGCCATGAGCCGGGCACAGCTGAATAAATCCTTGAAAGCGTTTGGCCATCCACCGACCTTCGAACAACAATCACAATTGATCGTGCTGCAACGCCAATTCGAAGCGGCAGAGCGGGCCCTGGCCAGACTGGAAGGCAGCGCGGCGCTCGCCGCCCCGGCACCGTCGCAAAGTGCTGAATTGAAGCGGGCCAAGATCCAGCTGGCGATGCGTCGCGCCGACCTCGGCAAGGCCCGTGCTGCCGCGGCTTCCGCAGAACAGCTACAAGCACTGGAACAAGCGGTGGAAGACGCCCAACGGCAGGTGGACGCCCATGCTACGCCCTGAMNLIQRIDALLPQTQCGKCGHPGCKPYAEGIAQGEPINKCPPGGRETIAALAELMTVPVLELDASRGSAPAQIAYIREAECIGCTKCIQACPVDAIVGAAKLMHTVLIDECTGCDLCVAPCPVDCIEMRPLPMATVTPVVGGLASSIEEQQARTAKRNHARRRFELRNARLRREEEQRLAERLARTQRNAQPAQAQPLDPVQAALERVRAQKAASADAALKKAKVDLAMSRAQLNKSLKAFGHPPTFEQQSQLIVLQRQFEAAERALARLEGSAALAAPAPSQSAELKRAKIQLAMRRADLGKARAAAASAEQLQALEQAVEDAQRQVDAHATPPGPT0013265_52DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013265-rnfB|rsxB-K03616NANA
D1-35_01624573rnfAIon-translocating oxidoreductase complex subunit AATGACTGACATTCTTCTCTCGCTGTTCAGCGCTGCCCTGATCAACAACCTCGTGTTGCATTGGCCGCTGGGCGTCGATCCGCTGCTGGCAGTCAGGGAGCGGAGCCGGGTACATGCACTGGGCCTGGCGACAGCCTGCCTGATGCTGGTTGTCGGGACCCTCGGTTATCTGGCCGACCGCTGGCTGCTGGTTCCGGCGCAGCTGACATCGCTACGGTTGTTCGTATGGCTGCCCCTGAGCGTGCTGCTGATCAGCCCGTTGCTGCGCCTGCTGACGCATTGGCTGCCGTCGCAGCCGTTCGATGGCTTGTGGCCGCTGCTGCTCGGCAATGCCGGCGTACTGGGCGTCACGCTGCTCAACAGCCGGAACGACCAGGGCCTGGGCCAGGCCATGGCCTTCAGCCTGGGCGCCGGGCTGGGTTTCTGGCTGGTCTTAAGCCTGTTCGAGGACTTGCGCCAGCGAGTCCAGGATAACGATATTCCCTTGCCTTTTCGGGGCCTGCCAATCCAGTTGATCAGCGTCGGATTGATGGCGGTGGCATTTCTCGGATTGCGCGGGTTGGTCAAGACATGAMTDILLSLFSAALINNLVLHWPLGVDPLLAVRERSRVHALGLATACLMLVVGTLGYLADRWLLVPAQLTSLRLFVWLPLSVLLISPLLRLLTHWLPSQPFDGLWPLLLGNAGVLGVTLLNSRNDQGLGQAMAFSLGAGLGFWLVLSLFEDLRQRVQDNDIPLPFRGLPIQLISVGLMAVAFLGLRGLVKTPGPT0013260_1021DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SODIUM_TRANSPORT,PGPT0013260-rnfA|rsxA-K03617NANA
D1-35_016252046metGCOG0073Methionine--tRNA ligaseATGTCCGAGCCACGCAAGATTCTCGTCACCAGCGCCCTGCCCTATGCCAATGGTTCGATTCACCTTGGCCATATGCTGGAATACATCCAGACCGATATGTGGACGCGCTTTCAGAAACATCGCGGCAACCAGTGCATCTACGTCTGCGCCGACGACGCCCACGGTTCGGCCATCATGTTGCGCGCGGAAAAGGAAGGTATCACCCCGGAACAACTGATCGCCAATGTCCAGGCTGAACACAGCGCCGACTTTGCCGAGTTCCTGGTGGACTTCGACAACTTCCACTCCACTCACGCCGAAGAAAACCGTGAGCTGTCGAGCCAGATCTACCTGAAGCTGCGTGACGCCGGGCATATCGCCACCCGTTCGGTCACCCAATATTTCGACCCGGAAAAGAAAATGTTCCTGGCCGACCGCTTCATCAAGGGCACCTGCCCGAAATGCGGCACCGAAGACCAATACGGCGACAACTGCGAAAAATGCGGCGCCACCTACGCACCGACCGACCTGAAAGACCCGAAATCGGCGATTTCCGGCGCGACGCCGGTACTCAGGGATTCCCAGCACTTCTTCTTCAAGCTGCCGGACTTCCAGGAAATGCTGCAGACCTGGACCCGCAGCGGCACGCTGCACGACGCGGTGGCCAACAAGCTCGCCGAATGGCTCGACTCCGGTTTGCAGGAATGGGACATCTCCCGCGATGCGCCGTATTTCGGCTTCGAAATTCCTGGCGAGCCCGGCAAATACTTCTATGTATGGCTGGACGCGCCCATCGGCTACATGGCGAGCTTCAAGAACCTTTGCGATCGTACCCCGGAGCTGGATTTCGACGCGTTCTGGGCCAAGGATTCTACGGCCGAGGTGTATCACTTCATCGGCAAGGACATCGTCAACTTCCACGCGCTGTTCTGGCCCGCCATGCTCGAAGGCGCCGGTTTCCGCAAGCCGACCGGCATCAACGTCCACGGCTACCTGACCGTCAACGGCCAGAAGATGTCCAAGTCCCGCGGCACCTTCATCAAGGCGCGGACGTACCTGGATCACCTGTCGCCTGAATACCTGCGCTACTACTACGCGGCCAAGCTCGGCCGTGGCGTCGACGACCTCGACCTGAACCTCGAGGACTTCGTGCAGAAGGTCAACTCCGACCTGGTGGGCAAGGTCGTCAACATCGCCAGTCGTTGCGCCGGGTTCATCCACAAGGGCAACGCCGGCGTGCTGGTGGCGGGTAACGCCGCGCCGGAACTCACCGACGCGTTCCTGGCTGCCGCACCAAGCATCGCCGAGGCCTACGAGAGCCGCGACTTTGCCCGCGCCATGCGTGAGATCATGGCCCTGGCCGACCGCGCCAACGCCTGGATCGCCGACAAGGCCCCATGGTCGCTGGCCAAGCAGGACGGCAAGCAGGACGAAGTCCAGGCCATCTGCGCCCTAGGCATCAACCTGTTCCGCCAACTGGTGATTTTCCTCAAGCCGGTGCTGCCGTTGCTGGCCGCCGATGCCGAGGCGTTCCTGAACGTTGCGCCGCTGACCTGGAACGACCACCAGACCCTGCTGAGCAACCATCAACTGAACGCGTTCAAACCGTTGATGACCCGCATCGACCCGGCCAAGGTCCAGGCCATGATCGACGCGTCCAAGGAAGACCTCGCCGCCAGCCAGACCGACACCGGTGCCCCTGCTGGCAACGGCGAGCTGACCAAGGACCCGCTGTCGCCGGAAATCGATTTCGATGCCTTCGCCGCCATCGACCTGCGCGTGGCGCTGATCGTCAAGGCTGAAGCCGTGGAAGGCGCCGACAAACTGTTGCGCCTGACCCTGGACATCGGCGATGAACAGCGCAACGTGTTCTCCGGGATCAAGAGCGCCTACCCGGATCCGGCCAAGCTCGAGGGCCGGCTGACGATGATGATCGCCAACCTCAAGCCACGCAAAATGCGCTTCGGCATATCCGAAGGCATGGTCATGGCGGCCGGTCCTGGCGGCGAGGAAATCTACCTGCTGAGCCCCGACAGCGGCGCCAAGCCGGGTCAGCGGATCAAATAAMSEPRKILVTSALPYANGSIHLGHMLEYIQTDMWTRFQKHRGNQCIYVCADDAHGSAIMLRAEKEGITPEQLIANVQAEHSADFAEFLVDFDNFHSTHAEENRELSSQIYLKLRDAGHIATRSVTQYFDPEKKMFLADRFIKGTCPKCGTEDQYGDNCEKCGATYAPTDLKDPKSAISGATPVLRDSQHFFFKLPDFQEMLQTWTRSGTLHDAVANKLAEWLDSGLQEWDISRDAPYFGFEIPGEPGKYFYVWLDAPIGYMASFKNLCDRTPELDFDAFWAKDSTAEVYHFIGKDIVNFHALFWPAMLEGAGFRKPTGINVHGYLTVNGQKMSKSRGTFIKARTYLDHLSPEYLRYYYAAKLGRGVDDLDLNLEDFVQKVNSDLVGKVVNIASRCAGFIHKGNAGVLVAGNAAPELTDAFLAAAPSIAEAYESRDFARAMREIMALADRANAWIADKAPWSLAKQDGKQDEVQAICALGINLFRQLVIFLKPVLPLLAADAEAFLNVAPLTWNDHQTLLSNHQLNAFKPLMTRIDPAKVQAMIDASKEDLAASQTDTGAPAGNGELTKDPLSPEIDFDAFAAIDLRVALIVKAEAVEGADKLLRLTLDIGDEQRNVFSGIKSAYPDPAKLEGRLTMMIANLKPRKMRFGISEGMVMAAGPGGEEIYLLSPDSGAKPGQRIKNANANANANA
D1-35_016261095apbCCOG0489Iron-sulfur cluster carrier proteinATGAGCGCCGTCAATCGCGCAGCGGTGGAAGCCGTCCTTCGCCAGTACACCGACCCCTACCTGAGCCAGGATCCGGTCAGCGCCGGATGCGTGCGAGCCATCGATATCCAGGGCGATCGCGTCAGCGTCGAACTGGAGATCGGTTATGCCGCCGATCTGTTCAAGAACGGTTGGGCGCAGATGCTGCAGATGGCGATCGAAGGCCTGGACGGCGTGGCGAGCGCCAAAGTCCAGGTTACCAGCGTGATTTCCGCCCACAAGGCCCAAGCCCAGGTGCCGGGGTTGGCGAACGTCAAGAACGTCATCGCCGTGGCCTCGGGCAAGGGCGGCGTAGGCAAGTCCACCACCGCCGCCAACCTGGCGCTGGCCCTGGCTCGCGAAGGGGCGAAGGTCGGCATCCTCGACGCGGATATCTACGGTCCGAGCCAAGGCATCATGTTCGGCATCGCCGAAGGCACCCGGCCGCAGGTCAAGGACCAGAAGTGGTTCGTACCGCTGCAATCCCATGGCGTGGAGGTCATGTCCATGGCCTTCCTCACCGATGACAACACACCGATGGTCTGGCGCGGGCCGATGGTCTCCGGTGCCTTGCTGCAACTGGTCACGCAAACCGCGTGGGGCGACCTGGATTATCTGGTGATCGACATGCCGCCGGGAACTGGCGACATCCAGCTGACCCTCGCGCAGAAAGTCCCGGTGGCCGGCGCGGTGATCGTTACCACGCCCCAGGACTTGGCCCTGCTGGATGCGCGCAAGGGTGTGGAGATGTTCCGCAAGGTGAACATCCCGGTACTGGGCGTGGTGGAAAACATGGCCGTGCACATCTGCTCGAACTGTGGGCATGCCGAGCATCTGTTCGGTGAAGGCGGCGGTGAAAAACTGGCGACCCAGTACGGTGTCGAGCTGCTGGCTTCGTTGCCGCTGTCGATGGTGATCCGCGAGCAGGCCGACGGCGGCAAGCCGACCGTCATCGCCGAGCCGGACAGCCAGATCGCCATGGTCTACCAGGAGTTGGCCCGCCACGTGGGCGCGCGGATCGTGTTGCAGGAGGCTGCGTCGCCGGCGATGCCGAACATTACTATCAGCGATGATTGAMSAVNRAAVEAVLRQYTDPYLSQDPVSAGCVRAIDIQGDRVSVELEIGYAADLFKNGWAQMLQMAIEGLDGVASAKVQVTSVISAHKAQAQVPGLANVKNVIAVASGKGGVGKSTTAANLALALAREGAKVGILDADIYGPSQGIMFGIAEGTRPQVKDQKWFVPLQSHGVEVMSMAFLTDDNTPMVWRGPMVSGALLQLVTQTAWGDLDYLVIDMPPGTGDIQLTLAQKVPVAGAVIVTTPQDLALLDARKGVEMFRKVNIPVLGVVENMAVHICSNCGHAEHLFGEGGGEKLATQYGVELLASLPLSMVIREQADGGKPTVIAEPDSQIAMVYQELARHVGARIVLQEAASPAMPNITISDDNANANANANA
D1-35_01627759fabG_23-oxoacyl-[acyl-carrier-protein] reductaseATGCAACTCACTGACAAAGTAATCATTATCACCGGCGGTTGCCAGGGCCTGGGTCGCTCCATGGCCGAGTATTTCGCCGGCAAGGGTGCAAAGCTCGCGCTGGTGGACCTCAATCAGGAAAAGCTCGACCAGGCGGTCGCCGCCTGCGCCGCCAAGGGCGTCGAGGCGCGTGCGTACCTGTGCAACGTGGCCAACGAAGATCAGGTGATCGACATGGTTGCCCGGGTGGCCGCTGACTTCGGCGCGATCCACGGGTTGATCAACAACGCCGGGATCCTGCGCGACGGCCTGCTGCTCAAGGTCAAGGACGGTGAAATGACCAGGATGAGCCTGGCCCAGTGGCAGGCGGTGATCGACGTCAACCTCACCGGCGTATTCCTCTGCACCCGCGAAGTGGCGGCGAAAATGGTCGAGCTGAAGAACAACGGCGCGATCATCAATATTTCCTCGATCTCCCGGGCCGGCAACGTCGGCCAGACCAACTATTCGGCGGCCAAGGCCGGCGTCGCGGCCGCTACCGTGACCTGGGCCAAGGAACTGGCGCGCTACGGCATCCGCGTGGCGGGGATTGCTCCGGGTTTCATCGAAACCGAAATGACCCTCGGCATGAAACCCGAAGCCCTTGAGAAAATGACCTCCGGGATTCCGCTCAAGCGCATGGGCAAGCCCGAGGAGATTGCGCACTCGGCGGCGTATATCTTCGAGAACGATTACTACACCGGGCGGATCCTGGAAATGGATGGCGGGCTGCGGATCTAAMQLTDKVIIITGGCQGLGRSMAEYFAGKGAKLALVDLNQEKLDQAVAACAAKGVEARAYLCNVANEDQVIDMVARVAADFGAIHGLINNAGILRDGLLLKVKDGEMTRMSLAQWQAVIDVNLTGVFLCTREVAAKMVELKNNGAIINISSISRAGNVGQTNYSAAKAGVAAATVTWAKELARYGIRVAGIAPGFIETEMTLGMKPEALEKMTSGIPLKRMGKPEEIAHSAAYIFENDYYTGRILEMDGGLRIPGPT0003180_9828DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-35_01628732hypothetical proteinTTGAGCGTTGAAGCTGCCAAGCATGCCCGCGAATTGCTGCTCAAGGAATATCGGGGCATGCTCTCCACCCATTCCAAATCGATGCCCGGTTTTCCGTTCGGCTCCGTTGTGCCGTATTGCCTGGACGCGCAAGGCCTGCCGCTGATACTCATCAGCCGCATCGCCCAGCACACCCACAATCTGCAAAAAGACCCTAAATGCTCAATGCTGGTGGGAGAGCGGGGCGCCGAGGATGTTCAGGCCGTCGGGCGCCTGACCTATCTGGCCGAGGCGCAGAAGCTGGAGGACAGCGCCGCCATCGAGGCCGCCGCCGAGCGTTACTACCGCTATTTCCCCGAGTCGCAGAACTACCATAAGGCCCACGACTTCGATTTCTGGGTTCTCCACCCGGTGCGCCATCGTTATATCGGCGGCTTCGGCGCGATTCACTGGATCGACCAGATCACCCTGGCCAATCCCTTTGCCGGCAAAGCCGAGGCGGGCATGATCGAACACATGAATGCCGATCATGCCAAAGCCATCGCCCACTACGTCGAATTGAGTGGCCTGCCAAAAAACCAACCCGCGCAATTGGTCGGTATCGACAGCGAAGGCATGCACTTGCGCATTGGGCAAGGCCTGCACTGGTTGCCGTTTGCGGCGCCTTGCAACACGCCGACACAAGTGCGCGAAGCCTTGGTTTACCTGGCTCACGCCGAGCAATGGCCAAAAAATGCCGAGGTTGATGCTTGAMSVEAAKHARELLLKEYRGMLSTHSKSMPGFPFGSVVPYCLDAQGLPLILISRIAQHTHNLQKDPKCSMLVGERGAEDVQAVGRLTYLAEAQKLEDSAAIEAAAERYYRYFPESQNYHKAHDFDFWVLHPVRHRYIGGFGAIHWIDQITLANPFAGKAEAGMIEHMNADHAKAIAHYVELSGLPKNQPAQLVGIDSEGMHLRIGQGLHWLPFAAPCNTPTQVREALVYLAHAEQWPKNAEVDAPGPT0003615_497DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-HEMOPHORES-HEME|HEMIN_UTILISATION,PGPT0003615-hugZ|hutZ|chuZ-K07226NANA
D1-35_01629477hypothetical proteinATGCGCCCTTTTTTATTGCTCTTTCTGCTGTTCCCGGTGTTGGAGCTGTTCGTATTCGTCAAGGTCAGCGGTGCGATCGGGTTCTTCCCGGCGTTGCTGCTGGTCATTCTCGGCTCGATGCTCGGCGTGTTCGTGCTGCGCATCGCCGGCCTGGCCACGGCACTGCGTGCCCGTGAAAGCCTGACCCGTGGCGAACTGCCCGCCCAGACCATGCTCGAAGGCCTGATGCTCGCGCTGGGTGGTGGTCTGTTGATCCTGCCTGGCTTCATCAGCGACGTGCTGGGCCTGGTCTTGCTGCTGCCCTTCACGCGCCGGTTGCTGGCCAACAAGATGCGCCAGCGCGCCGAAGAACAGGCGATGCGCCAGCGGGCTTTCGCCGATGACCTCCAGCCCCGTGGCGGTCCGACGCCGCGCGAACCGGTAGGCCGCGAGCCCAACGTGATCGAAGGCGAATTCGAACACCGCGATCCCAAGTAGMRPFLLLFLLFPVLELFVFVKVSGAIGFFPALLLVILGSMLGVFVLRIAGLATALRARESLTRGELPAQTMLEGLMLALGGGLLILPGFISDVLGLVLLLPFTRRLLANKMRQRAEEQAMRQRAFADDLQPRGGPTPREPVGREPNVIEGEFEHRDPKNANANANANA
D1-35_01631294groSCOG023410 kDa chaperoninATGAAGCTTCGTCCTCTGCATGACCGCGTCGTCATCCGTCGCAGCGAAGAAGAGAAGAAAACCGCTGGCGGTATCGTCCTGCCAGGTTCGGCTGCTGAAAAAGCCAACCACGGTGAAGTTCTCGCTGTAGGTCCGGGCAAGGCTCTGGAAAACGGTGAAGTACGTGCGCTGGCCGTGAAAGTGGGTGACAAGGTTGTGTTCGGCCCTTACTCCGGCAGCAACACTGTGAAAGTCGACGGCGAAGACCTGTTGGTAATGAGCGAGAACGAAATCCTCGCCGTTCTCGAAGGCTGAMKLRPLHDRVVIRRSEEEKKTAGGIVLPGSAAEKANHGEVLAVGPGKALENGEVRALAVKVGDKVVFGPYSGSNTVKVDGEDLLVMSENEILAVLEGPGPT0014565_2598DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014565-groES|mopB-K04078NANA
D1-35_016321644groLCOG045960 kDa chaperoninATGGCTGCTAAAGAAGTTAAATTCGGCGATTCCGCCCGCAAGAAAATGCTCGCCGGTGTCAACGTCCTGGCTGACGCAGTAAAAGCGACCCTCGGCCCGAAAGGCCGTAACGTGATCATCGAGAAGAGCTTCGGCGCTCCGACCATCACCAAGGACGGCGTTTCCGTAGCCAAGGAAATCGAGCTGAAAGATCGCTTCGAAAACATGGGTGCGCAGCTGGTCAAGGACGTTGCGTCCCGTGCCAACGATGACGCCGGCGACGGTACCACCACCGCGACCGTATTGGCTCAGTCGATCGTCAACGAAGGCCTGAAAGCCGTCGCTGCCGGCATGAACCCGATGGACCTCAAGCGCGGCATCGACAAGGCGACCATCGCCATCGTCAAGGAACTGAAAGGTCTGGCCAAGCCTTGCGCTGACTCCAAGGCAATCGCCCAGGTAGGTACCATCTCCGCCAACTCCGACAACTCCATCGGCGACATCATTGCCGAAGCCATGGAAAAAGTCGGCAAAGAAGGCGTGATCACCGTTGAAGAAGGCTCGGGCCTGGAAAACGAACTGTCGGTTGTAGAAGGCATGCAGTTCGACCGTGGCTACCTGTCGCCATACTTCGTCAACAAGCCGGACACCATGGTTGCCGAGCTGGACAGCCCGCTGATCCTGCTGGTCGACAAGAAGATCTCCAACATCCGCGAAATGTTGCCAGTGCTGGAAGCCGTTGCCAAAGCCGGCCGCCCTCTGCTGATCGTGGCTGAAGATGTCGAAGGCGAAGCCCTGGCGACCCTGGTCGTGAACAACATGCGTGGCATCGTCAAGGTTGCAGCCGTCAAGGCTCCAGGCTTCGGCGACCGTCGCAAGGCCATGCTGCAGGACATCGCCGTACTGACCGGCGGTACCGTTATCTCCGAAGAGATCGGCCTGAGCCTGGAAAGCACCACCCTGGAGCACCTGGGTAACGCCAAGCGCGTGATCCTGTCCAAGGAAAACACCACCGTGATCGACGGTGCTGGCAACGATGCCGATATCCAGGCTCGTGTCACCCAGATCCGCGCACAAGTGGCCGAGACTTCGTCCGACTACGACCGCGAAAAACTGCAAGAGCGCCTGGCCAAGCTGTCCGGCGGTGTTGCGGTGATCAAGGTTGGCGCCGGTTCCGAAGTTGAAATGAAAGAGAAGAAAGCCCGCGTTGAAGACGCCCTGCACGCAACCCGCGCAGCCGTCGAAGAAGGCGTGGTACCTGGCGGCGGCGTGGCACTGGTTCGTGCCCTGCAAGCCATCAGCGAGCTGAAAGGCGACAACGATGACCAGAACGTTGGCATCCAGTTGCTGCGTCGCGCTGTTGAAGCACCTCTGCGCCAGATCGTTGCCAACTCCGGCGACGAGCCAAGCGTAGTGGTCGACAAGGTCAAGCAGGGTTCGGGTAACTACGGTTACAACGCTGCCACCGGCGAATACGGCGACATGATCGAAATGGGTATCCTGGACCCGGCCAAAGTGACTCGTTCGGCTCTGCAAGCGGCTTCGTCGATTGCCAGCCTGATGATCACCACCGAGGCGATGATCGCTGAAATCAAGGACGACGCTCCAGCTGGCGGCGGCATGCCAGACATGGGCGGCATGGGTGGCATGGGCGGCATGATGTAAMAAKEVKFGDSARKKMLAGVNVLADAVKATLGPKGRNVIIEKSFGAPTITKDGVSVAKEIELKDRFENMGAQLVKDVASRANDDAGDGTTTATVLAQSIVNEGLKAVAAGMNPMDLKRGIDKATIAIVKELKGLAKPCADSKAIAQVGTISANSDNSIGDIIAEAMEKVGKEGVITVEEGSGLENELSVVEGMQFDRGYLSPYFVNKPDTMVAELDSPLILLVDKKISNIREMLPVLEAVAKAGRPLLIVAEDVEGEALATLVVNNMRGIVKVAAVKAPGFGDRRKAMLQDIAVLTGGTVISEEIGLSLESTTLEHLGNAKRVILSKENTTVIDGAGNDADIQARVTQIRAQVAETSSDYDREKLQERLAKLSGGVAVIKVGAGSEVEMKEKKARVEDALHATRAAVEEGVVPGGGVALVRALQAISELKGDNDDQNVGIQLLRRAVEAPLRQIVANSGDEPSVVVDKVKQGSGNYGYNAATGEYGDMIEMGILDPAKVTRSALQAASSIASLMITTEAMIAEIKDDAPAGGGMPDMGGMGGMGGMMPGPT0014570_2457DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CHAPERONE|PROTEASES,PGPT0014570-groEL|mopA-K04077NANA
D1-35_01633744hypothetical proteinATGGTTTCCACTGCCATCCGCCCCGCTTCCAGGCCCCTGAATCTATGGGTCGCCCTGGGCCTGCCCGCCGTGGTCGCAGCCATTCTGGTGTTGCTGGAACTGACCAGCCTGGACATGAACGTGGCCAAGCTGTTTTACGATCCGACGGCGGGTGGGTTTATCGGTCGACACAGTTTTTTCCTGGAAGACATCCTGCATGACCGGGCCAAACAGCTGGTCATCGGGTTTTCCGTGCTGGCGGTCGTGGGGTTTGTCGCCTCGTTTTTTATCGCTCGGCTCAAGCCGTACAAACGTGAGCTGGGTTGCCTGGTCCTGTCGCTGGCATTGGCGACTGCGTTTGTCACGCCTTTGAAGGCAGTGACGGCAGTGCAATGCCCATGGAGTCTCAAGGAGTTCGGTGGCAAGGAAACCTACAGTGAGCTACTGAGCCCACGCCCGGCTACCGACAAGCCCGGCCGATGCTGGCCCGGCGGGCATGCCGCCACCGGCTTCACGCTGTTCGCGTTGTTTTTCGTACTGCGTGACCGTCGCCCACGCCTCGCACGCCAGGCGCTGGTGTTCGCCTTTGCCCTGGGCACGGTGTTTTCCGTGGGACGCATGATGCAAGGGGCGCACTTTTTCTCCCACAACGTCTGGACGGCGGTGTTCTGCTGGCTGATTTGCCTCGGGTGTTATTACTGCGTTCTGTACCGACCAGTTTCCACACCTGAACGTATGATCGTCACCCGCTCCGTCAATGCCTGAMVSTAIRPASRPLNLWVALGLPAVVAAILVLLELTSLDMNVAKLFYDPTAGGFIGRHSFFLEDILHDRAKQLVIGFSVLAVVGFVASFFIARLKPYKRELGCLVLSLALATAFVTPLKAVTAVQCPWSLKEFGGKETYSELLSPRPATDKPGRCWPGGHAATGFTLFALFFVLRDRRPRLARQALVFAFALGTVFSVGRMMQGAHFFSHNVWTAVFCWLICLGCYYCVLYRPVSTPERMIVTRSVNANANANANANA
D1-35_01634684czcR_2Transcriptional activator protein CzcRATGCGAATTCTGTTGGTTGAAGACAACCGTGACATCCTGGCCAACCTGGCCGACTACCTGGGCCTCAAGGGCTACACGGTCGATTGCGCACAGGACGGTTTGTCAGGGCTGCACCTGGCCGCGACCGAACACTACGACTTGATTGTGCTGGATATCATGCTGCCGGGCATCGACGGCTATACGCTGTGCAAGCGCCTGCGCGAAGACGCCCGGCGCGATACACCGGTGATCATGCTCACCGCGCGGGACCAGTTGGATGATCGTTTGCAGGGTTTCAAATCCGGGGCGGATGATTACCTGGTCAAGCCTTTTGCCTTGTCGGAGCTGGCGGCGCGGATCGAAGCGGTCATGCGGCGTGCCCAGGGCGGTGGCCGACGCGCGTTGCAAGTTGGCGACCTGAGCTACGACCTCGATACGTTGGAAGTGACCCGGGAAGGCAAACTGCTCAAGCTCAACCCCGTGGGCCTCAAGTTGCTGGCGGTACTGATGCAGAAAAGCCCCCACGTGCTGCGGCGCGAGATCCTTGAGGAAGCCCTGTGGGGCGATGATTGCCCGGATAGCGACAGCCTGCGCAGCCATGTCCACCAATTGCGCCAGGTGATCGACAAACCGTTTGAAAAACCGTTGCTGCACACTGTGCACGGCGTCGGCTATCGGTTGGCCGAGGGCCGAGATGGAGTTTAAMRILLVEDNRDILANLADYLGLKGYTVDCAQDGLSGLHLAATEHYDLIVLDIMLPGIDGYTLCKRLREDARRDTPVIMLTARDQLDDRLQGFKSGADDYLVKPFALSELAARIEAVMRRAQGGGRRALQVGDLSYDLDTLEVTREGKLLKLNPVGLKLLAVLMQKSPHVLRREILEEALWGDDCPDSDSLRSHVHQLRQVIDKPFEKPLLHTVHGVGYRLAEGRDGVPGPT0004105_837DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0004105-cusR|copR|silR-K07665NANA
D1-35_016351278sasA_6Adaptive-response sensory-kinase SasAATGGAGTTTAAGCAAAGCCTTGCGCAACGGATCATCATCGCTTTTGCGCTGATGAGCGCATTGGTGGCGGGAGCGTTTGCACTGGGCATCGTGGCAACGGTCCATCTGGTGGAGGAAAAGCTGATTTCCGCCGGGCTCGGAGGCGACCTGCAACGCCTGCTGTTGATGGACAGCGTTTCCGACTGGAGTCATCGCCCGGAACCCGACCAGCTGTTCTATTTCAGCGGCGGCCCGGGAGACTTCGAGTTGCCCAGGGACCTGCGTCACCTGCAACGTGGCTTTCACGAAGTCTTTCGCGAACAGCTGTCCTATCACGCGATGGTAGAGATCGTTGACGGTCGGCATTACGTGCTGTTGCAGGACCAGAGCGATTTCGAGGAGCGCGAGCGGGTGCTGTTTGCCGTGGTGCTGGTGGGCTTCGTGCTCAGTCTGGCGCTCGCGGTGTTCCTGGGCTGGGTCCTGGCACGCCGGGTGATGGCGCCGGTGGTACGTCTGGCCCGGCAGGTACGGCATCGCGACCAGTTGCTCGGGCTCGCTCCGCCATTGGCGCCGGATTATGCCGCTGATGAGGTGGGCGAGCTGGCCGTGGCGTTCGATGCCACGCTGGGCCGGTTGCGCCAGGCCCTGACCCGGGAACGGTTGTTCACCAGCGACGTGAGTCACGAACTGCGCACGCCGTTGATGATCCTCGCCACCTCCTGCGAATTGCTGCTGGAGAATCCGGCGCTGGACCAGCGTGGTCGCACCCAGGTCGAGCGCATCAACCGCGCCAGCGAAGAAATGCGCGAACTGGTGCAGACCTTCCTGATGCTTGCCCGGGCCCAACGCGAGGATAACGGCATGTCGCCTCGCTCGACGCTGGGGCAGGTCGCGGAAAACCTCCTTGGGGTCTGGCGTGCGCCGATCGAATCCAAGGGCCTGACCTTGATCTTCGAACCAGGGCAAACCACCGATACGCAGTACAACGCCACGTTCCTGACTGCCGTCATGGGAAATCTGCTGCGTAACGCCTTGCATTACACCGACCAGGGTTTTATCCGCGTCTCGCTGACCGCCACGGGATTTGTCGTCGAGGACAGCGGCGTAGGCATTCCCGAGGAGAAGCGCGAGGCGATGTTCGAGCCCTTCGTGCGCGGTAACGAAAAGCGTGGCGAGGGACTGGGGCTGGGGCTGTCACTGGTGCAGCGGATCTGCGAGGACCAGGGCTGGACCGTGAGCCTCAGCACGATGGAACCCAACGGATGCCGTTTCGAGGTGGAGTTGAACCCGAAGTCCTGAMEFKQSLAQRIIIAFALMSALVAGAFALGIVATVHLVEEKLISAGLGGDLQRLLLMDSVSDWSHRPEPDQLFYFSGGPGDFELPRDLRHLQRGFHEVFREQLSYHAMVEIVDGRHYVLLQDQSDFEERERVLFAVVLVGFVLSLALAVFLGWVLARRVMAPVVRLARQVRHRDQLLGLAPPLAPDYAADEVGELAVAFDATLGRLRQALTRERLFTSDVSHELRTPLMILATSCELLLENPALDQRGRTQVERINRASEEMRELVQTFLMLARAQREDNGMSPRSTLGQVAENLLGVWRAPIESKGLTLIFEPGQTTDTQYNATFLTAVMGNLLRNALHYTDQGFIRVSLTATGFVVEDSGVGIPEEKREAMFEPFVRGNEKRGEGLGLGLSLVQRICEDQGWTVSLSTMEPNGCRFEVELNPKSNANANANANA
D1-35_01636669hypothetical proteinATGTCCAATCCCATCAAGCTAGCTTTTTCCGCCAAGTACGACGAGCGACATGCCCAGCAGTACCTGCGCAAACACAAGACGGGGCTGAGCCGCCGTCTTTCCCACCGTCGGGACGAACAACTGGCCCGGCGCGCCTTGATGCTCGCGGGCGACCCGGGCCTGGTCCTGGACCTGCCGTGCGGAGCCGGGCGTTTCTGGCCGCTGCTGGCGGAGAAACCCGGCCGGGTGATCGTCGGCGCGGACAATTCCACCGCCATGCTCCAGACGGCATTGAAGGCACAACCGGCCGATGTCGTAAAACGGGTACAACCTTTGCACACATCTGCGTTCGACATCGCCTTGCCTGATAACGCCGTCGACAGCATTTTTTGCATGCGCCTCTTGCACCACATCGGCGAACCCGCGCACCGACTGGCGATATTGCGGGAATTCGAGCGTGTCACCCGTGACAGCGTGATCGTTTCATTGTGGGTCGACGGCAATTTCAAGGCCTGGAAACGCAAGCGCCTGGAGCGCACCCGTGGGCAGAAAGACTACCAGAACCGATTTGTGTTACCGGTCGCTACAGTTGAAGAAGAGTTTCGGCAGGCCGGGTTTCGCATTGAGGAACAGTTGGATTTCCTGCCGCTCTATGCCATGTGGCGAGTTTATGTATTACGCAAGGGGTAGMSNPIKLAFSAKYDERHAQQYLRKHKTGLSRRLSHRRDEQLARRALMLAGDPGLVLDLPCGAGRFWPLLAEKPGRVIVGADNSTAMLQTALKAQPADVVKRVQPLHTSAFDIALPDNAVDSIFCMRLLHHIGEPAHRLAILREFERVTRDSVIVSLWVDGNFKAWKRKRLERTRGQKDYQNRFVLPVATVEEEFRQAGFRIEEQLDFLPLYAMWRVYVLRKGNANANANANA
D1-35_01637714inaAProtein InaAATGGTTGTACAGGTAGCAGGAGCCCAGGCGGCTTCTCGTAGTTGCTTTGACCAGATCTGGAATCAGCGTGGCGAGTGGGTGGAAGCCCCCAATACCCGGCGTGGCGGCGAAAGCGGTGTGCAGCGGATCAGCCATGATGGCGAGCTGTTTTATTCCAAGCGCCAGACCGGACACATTTACCGTAGCCTACTGCACCCGTTCGGCCGTCCGACCGTGTTGCGTGAAGAGCGAGCGCTGCTGGCCCTGGCGGAACTCGGCGTCACGGTACCCCAAGTGGTCTTTTGCGGCGCGCAGAGAGACCCGGTGCACAAGTGGCGGGCGCTGCTGGTCACCCGCGCTCTGGACGGCTTCGAGGAAATCGGGCGTTGGTATGCCGCAGGCGGCCGCGAGCGTCATGGCGAGGCGGTCCATGATCGTCTCCTTCAGGCCCTGGCCGAGAATCTCGCCCGCATGCACAAGGGGCGCTGGCAGCACAGTTGCCTCTACATCAAGCATGTATTCGTGCGAGTAACCGGAGAGGGCGAGTCGACCAAGGCCGAAGTGGCGTTGCTCGATCTTGAGAAATGTCGCCAACGGCTGACCGCACGCGGCGCGGCGTTCCATGACATGAGCCAGCTGCGGCGCCACTCGTCGTTCCAGGATTGCGACTGGGGAAAACTCGTCTATTTTTACGAGGCGGCGTTTGGCAGCGCTATCAAAGGTTTATCCCGATGAMVVQVAGAQAASRSCFDQIWNQRGEWVEAPNTRRGGESGVQRISHDGELFYSKRQTGHIYRSLLHPFGRPTVLREERALLALAELGVTVPQVVFCGAQRDPVHKWRALLVTRALDGFEEIGRWYAAGGRERHGEAVHDRLLQALAENLARMHKGRWQHSCLYIKHVFVRVTGEGESTKAEVALLDLEKCRQRLTARGAAFHDMSQLRRHSSFQDCDWGKLVYFYEAAFGSAIKGLSRNANANANANA
D1-35_01638228hypothetical proteinATGAAACTAGAAATTGCTAGAGGTTTGTTTTTAGTCGGAGCCCTGGCAGTTGCATCCCTGGCGCTGGTGGTGTGGGAGCAGCCGCGCTCGCAGATCCTCAGTGCCTCCACTGTCGGCGCACATTGCCCGGTGCCTCGGGTGGCCAAGGCCAGCGAGGCGATCCAGCCGGACGACGACCTGTTGCTGTTCATGTTCAGTCTGTCCCAGGGCATGCGACCGCAGAGTTGAMKLEIARGLFLVGALAVASLALVVWEQPRSQILSASTVGAHCPVPRVAKASEAIQPDDDLLLFMFSLSQGMRPQSNANANANANA
D1-35_016393027acrBCOG0841Multidrug efflux pump subunit AcrBATGGCCTTTACCGATCCGTTCATCCGCCGCCCGGTGCTCGCCACCGTGGTCAGCCTGTTGATCGTGCTACTGGGCTTCCAGGCCTGGAGCAAGCTGCCCCTGCGCCAGTATCCACAGATGGAAAATGCCCTGATCACGGTGACCACCGCCTACCCCGGGGCCAACGCCGAGACCATCCAGGGTTACATCACCCAGCCGATGCAGCAGAGCCTGGCCAGTGCCGAGGGCATCGACTACATGACTTCGGTCAGCCGCCAGAATTTCTCGGTCATATCGGTCTACGCGCGCATCGGTTCCAACAGCGACCGGCTCTTTACCGAACTGCTGGCCAAGGCCAACGAGGTGAAGAACCAACTGCCCCAGGACGCCGAGGACCCGGTCCTCAGCCGCGAGGCAGCCGATGCCTCGGCGCTGATGTACATCAGTTTCTTCAGCAAGGAGCTGAACAACCCACAGATCACCGATTATCTGTCGCGCGTCATCCAGCCAAAACTGGCGACGCTGCCGGGCATGGCTGAAGCGGAGATCCTCGGTAACCAGGTATTCGCCATGCGCCTGTGGCTGGACCCGGTCAAGCTCGCAGGCTTCGGCCTGACCGCCGCCGACGTGACCAACGCCGTGCGCCAGCACAACTTTCTCTCCGCTGCTGGTGAAGTGAAAGGCGAGTACGTGGTCACCAGCATCAACGCCAACACCGAACTCAAATCCGCCGAGGCATTCGCCGGTATCCCGCTCAAGACTGACGGTGACAGCCGCGTGTTGCTGCGGGACGTTGCGCGGGTGGAGATGGGCGCCGAAAACTACGACACCATCAGCTCTTTCGGTGGCACCCCTTCGGTGTACATCGGGATCAAGGCAACCCCTGGCGCCAACCCCCTCGATGTCATCAAGGAAGTGCGCAAGATCATGCCGGAGATGGAGGCCCAGCTGCCGTCCAACCTCAAGGCCGAGATCGCCTACGATGCCACGCTGTTCATCCAGGCCTCCATCGACGAAGTGGTGAAGACCCTGTTCGAGGCGGTGCTGATCGTCATCGTCGTGGTGTTCCTGTTCCTCGGCGCCCTGCGCTCGGTGCTCATTCCGGTAGTGACCATTCCGCTGTCGATGATCGGCGTGATGTTCTTCATGCAGTTGATGGGCTACTCCATGAACCTGCTGACACTGCTGGCCATGGTGTTAGCCATCGGCCTGGTGGTGGACGACGCCATCGTGGTGGTGGAAAACATCCACCGGCACATCGAGGAGGGCAAGACACCGTTCGACGCCGCGATTGAAGGCGCGCGGGAAATCGCCATGCCGGTGGTCTCGATGACCATCACGCTGGCGGCGGTCTATGCACCGATCGGCCTGCTCGAAGGCCTGACGGGGGCGCTGTTCAAGGAGTTCGCCCTGACCCTCGCCGGCGCGGTGGTGATCTCTGGAGTCGTCGCCCTGACCCTCTCGCCAATGATGTGCGCGATGCTGCTGCGTCATGACCAGAACCCCTCGGGGCTGGCCCATCGGCTGGACGTGATCTTCGAGCGCCTGAAGGCCCGTTACCAGCGCATGCTTCACGGCACGCTCAATACCCGGCCGGTGGTGCTGGTGTTTGCCCTGCTCGTGCTGTTGCTGATCCCGGTGCTGATCATGTTCACCAAGTCCGAACTGGCGCCTGACGAGGACCAGGGCATCATCTTCATGATGGCCAACGCCCCGAAGACCACCAACCTGGACTACCTGAACGCCTATACCGATCACTTCATCACGATCTTCAAGGAATTCCCCGAGTACTATTCTTCGTTCCAGATCAACGGCTACAACGGCGTACAGTCGGGCATCGGCGGCTTCCTGCTCAAGCCCTGGAACGAACGCAGCCGCACCCAGATGGAAATCCTCCCGGAAGTCCAGGCCAGGCTCGAAAGCGTGCCCGGCCTGCAGATCTTCGGCTTCAACCTGCCCTCGCTGCCCGGCACGGGCGAAGGCTTGCCCTTCGAATTCGTCATCAACTCGCCGAAGGACTACACGACGCTCCTGCAGATTGCCGAACGGGTCAAGAAGCGTGCGCTGGAGTCCGGCAAGTTCGCCTTCATGGACATCGACCTTGCGTTCGACAAGCCTGAAGTCGTGGTGGACATCGATCGCGCCAAAGCCGCCCAGATGGGCGTCTCGATGCAAGACCTCGGCGGCACGCTGGCGACCCTGCTGGGCGAGGCGGAGATCAACCGCTTCACGCTGGAGGGGCGTAGCTACAAGGTCATCGCCCAGGTCGAGCGGCCATTCCGGGACAATCCGGACTGGCTGAACAACTATTACGTAAAGAACGCCCAGGGCGAGTCGCTTCCGTTGTCGACGCTGATCAAGGTCAGCGACCAGGCACGACCGCGGCAACTGAACCAGTTCCAGCAGCTCAATGCCGTCACGATCTCGGGCTTTCCCACGGTAAGCATGGGCGAGGCCATCGAGACGGTTCGCCAGATAGCCCTTGAGGAAGCGCCGACAGGATTCGCCTTCGATTACGCCGGAGCTTCGCGTCAGTTCGTCCAGGAAGGCAGCGCGTTATGGGTCACCTTTGGCCTGGCCCTGGCAATCATTTTCCTGGTGCTGGCGGCGCAGTTCGAGAGCTTCCGCGACCCGCTGGTGATCCTGGTGACGGTGCCGTTGTCCATTTGCGGCGCACTGATTCCGCTGTTCCTCGGCTGGTCGAGCATGAACATCTATACCCAGGTGGGGCTGGTGACCCTGATCGGCCTGATCAGCAAGCACGGCATCCTGATCGTCGAATTCGCCAACCAGCTGCGCAAGGAGCAAGGCTTGAGTCCGCGTGACGCAGTGGAACAGGCCGCATCGATTCGCCTGCGTCCGGTGCTGATGACCACTGCCGCCATGGTGTTTGGCATGGTGCCGTTGATCCTGGCCACCGGTGCCGGCGCAGTGAGCCGCTTCGACATCGGCACGGTCATCGCCACGGGCATGTCGATCGGCACCTTGTTCACGTTGTTCGTGCTGCCGTGTGTCTACACCTTGCTGGCCAAGCCGGACAAAGCCTGAMAFTDPFIRRPVLATVVSLLIVLLGFQAWSKLPLRQYPQMENALITVTTAYPGANAETIQGYITQPMQQSLASAEGIDYMTSVSRQNFSVISVYARIGSNSDRLFTELLAKANEVKNQLPQDAEDPVLSREAADASALMYISFFSKELNNPQITDYLSRVIQPKLATLPGMAEAEILGNQVFAMRLWLDPVKLAGFGLTAADVTNAVRQHNFLSAAGEVKGEYVVTSINANTELKSAEAFAGIPLKTDGDSRVLLRDVARVEMGAENYDTISSFGGTPSVYIGIKATPGANPLDVIKEVRKIMPEMEAQLPSNLKAEIAYDATLFIQASIDEVVKTLFEAVLIVIVVVFLFLGALRSVLIPVVTIPLSMIGVMFFMQLMGYSMNLLTLLAMVLAIGLVVDDAIVVVENIHRHIEEGKTPFDAAIEGAREIAMPVVSMTITLAAVYAPIGLLEGLTGALFKEFALTLAGAVVISGVVALTLSPMMCAMLLRHDQNPSGLAHRLDVIFERLKARYQRMLHGTLNTRPVVLVFALLVLLLIPVLIMFTKSELAPDEDQGIIFMMANAPKTTNLDYLNAYTDHFITIFKEFPEYYSSFQINGYNGVQSGIGGFLLKPWNERSRTQMEILPEVQARLESVPGLQIFGFNLPSLPGTGEGLPFEFVINSPKDYTTLLQIAERVKKRALESGKFAFMDIDLAFDKPEVVVDIDRAKAAQMGVSMQDLGGTLATLLGEAEINRFTLEGRSYKVIAQVERPFRDNPDWLNNYYVKNAQGESLPLSTLIKVSDQARPRQLNQFQQLNAVTISGFPTVSMGEAIETVRQIALEEAPTGFAFDYAGASRQFVQEGSALWVTFGLALAIIFLVLAAQFESFRDPLVILVTVPLSICGALIPLFLGWSSMNIYTQVGLVTLIGLISKHGILIVEFANQLRKEQGLSPRDAVEQAASIRLRPVLMTTAAMVFGMVPLILATGAGAVSRFDIGTVIATGMSIGTLFTLFVLPCVYTLLAKPDKAPGPT0003280_3930DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexAB-OprM,PGPT0003280-acrB|acrE|mexB|adeJ|smeE|mtrD|cmeB-K18138NANA
D1-35_016401149acrA_1Multidrug efflux pump subunit AcrAATGCTGCGACGCCGCATGCTGATCATGTTGGGTGTTGTCCTGCTGGTGGTACTGGCGCTGGCGGGCTACAAGGCCTATTCCATCTATCAGCAGATCCAGATGTTCTCTGCGCCCAAACCTGCGGTCAGCGTCGCCGTGGCCAAGGCCGTCGAACAGCCGTGGCAAGCCCGCCTGCCCACTGTTGGCAGCCTCAAGGCGTTGCAAGGCGTCGACCTGAGCCTGGAAATCGCCGGCACCGTGCAAAAGGTCCAGTTCGAATCCGGCCAGAAGGTCAAGGCCGGGCAACCGATCCTGCAACTGGACAGCGAAGTCGAAAGCGCCCTGCTGGAAACTGCGCAGGCCGACCTTGGCCTGTCGCAACTGGATTTCGGCCGTGGCCGACAACTGGTGGGCAGCCAGGCGATTTCCAAGGGCGAGTTCGACCGGCTTTCGGCCCAGTTGAAGAAGAACCAGGCCACGGTCAACCAGCTCAAGGCTTCGCTGGCGAAAAAACACATCGTCGCGCCGTTCAGCGGCACCATCGGCATCCGCCAGGTGGATGTCGGCGACTACCTTGCCAGCGGCACGGTGATCGCGACACTGCAGGACCTCAGCAGCCTGTACGTCGACTTCTACGTTCCTGAACAGACGGTGCCTCGGCTGGCGGTTGCCCAGCCAGTCAACGTCAGCGTCTCGGCCTATCCCGGCCAGACCTTCGTTGGCACCATCAGCGCAATCAACCCCAAGGTCGAGGACAGCACCCGTAACGTGCTCGTGCGCGCCACGCTCGCCAACCCCGACGGCAAGCTGTTGCCCGGCATGTTCGCCAACCTGAACGTCATCCTGCCGGACCTCGCCGTCGGGATCGTCGTGCCGGAGAGCGCCGTGACCTACACCCTCTATGGCAACTCCATGTACGTGGTCACTCCGAAGAAAACCGCCGATGGCAGTGTCGAGAAGGATGACAAGGGCCAGCCGATCCTGATTGCCGAACGGCGCTTTGTCGAAACCGGTGAGCGCCGTGACGGGCAGGTCCTGGTGACCAAGGGCGTGCAGCGCGGCGAAGAAGTAGTGATTGCCGGCCAGATCAAGCTCGACAACGGTACGCCCATCGCCATCAGCGACGACAAGACCCTGACCGAACAGAACAGCCCACCGCGCGCGGACTGAMLRRRMLIMLGVVLLVVLALAGYKAYSIYQQIQMFSAPKPAVSVAVAKAVEQPWQARLPTVGSLKALQGVDLSLEIAGTVQKVQFESGQKVKAGQPILQLDSEVESALLETAQADLGLSQLDFGRGRQLVGSQAISKGEFDRLSAQLKKNQATVNQLKASLAKKHIVAPFSGTIGIRQVDVGDYLASGTVIATLQDLSSLYVDFYVPEQTVPRLAVAQPVNVSVSAYPGQTFVGTISAINPKVEDSTRNVLVRATLANPDGKLLPGMFANLNVILPDLAVGIVVPESAVTYTLYGNSMYVVTPKKTADGSVEKDDKGQPILIAERRFVETGERRDGQVLVTKGVQRGEEVVIAGQIKLDNGTPIAISDDKTLTEQNSPPRADPGPT0003275_3243DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexAB-OprM,PGPT0003275-acrA|lir|mtcA|mexA|adeI|smeD|mtrC|cmeA-K03585NANA
D1-35_016411098hypothetical proteinATGTTTCGACGTCAGGCTCTGACGCTGGGCAGCTTGCTGCTCGGCGCCATCACCCTGGGCGGCTGGACGCTGTTCAAGCAAAAGGACAAGAGTCCATTACTGCTGTCGGCACGGGACGATGCCGACGGCAAGCACTACGCGGTCGGCTATCGACTGGACGGCACACGGGTGTTCGCCACCCAGGTTGGCCAGCGCTGCCATGACATCATCAATCACCCTGCGCTGCCGATCGCCCTGTTCGTCGCCCGCCGCCCGGGCACCGAAAGCTATCTGGTCGACCTGCGCGACGGCACGCTGCTGCAGACCATCACCTCGCTGCCGAACCGGCATTTCTACGGTCATGCGGTGATCCACAAGAGCGGCGAATGGCTGTACGCCACAGAAAACGATACCAGCGATCCGGGACGCGGCCTGCTCGGCGTGTACCGTTTCGAAGGCGAACGGCTGGTGCACAGTGGCGAACTGTCTACCCACGGCATCGGCCCTCACCAGGTGTCGTGGCTGCCCGACGGTGAGACGCTGGTGGTGGCCAACGGCGGCATCCGCACCGAGGCCGAGAGCCGGGTCGAAATGAACCTCGACGCCATGGAGCCGAGCCTGGTGCTGATGCACCGCGATGGCACGCTGTTGAGCAAGGAAACCCTCGCCCAGCAGATGAACAGCGTGCGCCATATGGGCATCGCCAGCGATGGCACCATCGTCACCGGCCAGCAGTTCATGGGAGCGGCCCACGAATCGTCCGAATTGCTCGCGATCAAGCGTCCGGGCCAACCGTTCAAGGCGTTCCCGGTACCTGAATACCAGCTGCAAGCCATGGGGCATTACACCGCCAGCGTCGCCGTGCACAGCGACCTGCGCCTGGTAGCCCTGACGGCGCCACGGGGCAACCGTTTTTTCATCTGGGACCTGGACAGCGGCGAGGTTCGCCTCGACGCGCCCCTGCCGGACTGCGCCGGGGTCGGCGCGGTAGCCGACGGGTTTGTCGTGACGTCGGGCCAGGGACGATGCCGCTACTACGATTGTCGGCAGCCACAATTGGTTGCAAAGCCGCTGGATCTGCCGGCGGGGCTCTGGGACAACCATCTGCATCTGGTCTGAMFRRQALTLGSLLLGAITLGGWTLFKQKDKSPLLLSARDDADGKHYAVGYRLDGTRVFATQVGQRCHDIINHPALPIALFVARRPGTESYLVDLRDGTLLQTITSLPNRHFYGHAVIHKSGEWLYATENDTSDPGRGLLGVYRFEGERLVHSGELSTHGIGPHQVSWLPDGETLVVANGGIRTEAESRVEMNLDAMEPSLVLMHRDGTLLSKETLAQQMNSVRHMGIASDGTIVTGQQFMGAAHESSELLAIKRPGQPFKAFPVPEYQLQAMGHYTASVAVHSDLRLVALTAPRGNRFFIWDLDSGEVRLDAPLPDCAGVGAVADGFVVTSGQGRCRYYDCRQPQLVAKPLDLPAGLWDNHLHLVNANANANANA
D1-35_016421065hypothetical proteinATGTTCCGTCCCAAGCTGTTGTTCACCAGCCTCGCCGCCATCGCCCTGGGTGCCTGCTCGCCCCAGGACCCGCAAGCGGTCACCTCGGCCGCCATCGCCAAGCAGGTGATCCTGCCGACCTACAGTCGCTGGGTCGAGGCCGACCGCCAACTGGCGACCAGCGCCCTGGCGTTCTGCCAGGGCAAGGAAAACCTGGAAACCGCCCGCGCCGATTTCCTCAAGGCACAAAAAGCCTGGGCTGAACTCCAGCCGCTGCTGATCGGGCCGCTGGCGGAGGGCAACCGCGCCTGGCAGGTACAGTTCTGGCCGGACAAGAAAAACCTTGTGGGCCGCCAGGTCGAGCAACTGGTCAACAGCCAGCCGCAGATCGACGCCGCCGGCCTGGCCAAGTCCAGCGTCGTCGTGCAGGGGCTCTCGGCCTACGAATACCTGCTGTTCGACGCAAAGATCGACATGGCCGACAGCGCCCAGAAAGCCAAGTACTGCCCGCTGCTGATCGCCATCGGCGAACGCCAGAAGCAACTGGCCGAAGAGATCCTGTCGCGGTGGAACACCAACGACGGCATGCTCGCCCAGATGAGCAAGTTCCCGAACCAGCGCTATGCCGATTCCCATGAAGCGATCGCCGACCTGCTGCGGGTCCAGGTGACCGCCCTGGACACCTTGAAGAAAAAACTCGGCACGCCGATGGGCCGCCAGAGCAAGGGCGTGCCGCAACCGTTCCAGGCCGATGCGTGGCGCAGCCAGTCGTCGCTGCAAGGGCTTGAGGCCAGCCTGAGCGCCGCCCGGACCGTGTGGGTTGGCGTCGACAACAAAGGCTTGCGAGGTTTGTTGCCAAGCGAGCAGAAGCCGCTGGCCGACAAGATCGACGCTGCCTACGACGCCTCGTTGAAACTGTTCGCCAGCAGCCAGCGCTCACTGACCGAAATGCTCGGTGACGACGCCGGGCGCCAGCAACTCAACGATTTGTACGACAGCCTCAACGTCGTCCATCGCCTGCATGAAGGCGAACTGGCCAAGGCGCTGGGCATTCAACTGGGCTTCAACGCCAACGACGGTGACTGAMFRPKLLFTSLAAIALGACSPQDPQAVTSAAIAKQVILPTYSRWVEADRQLATSALAFCQGKENLETARADFLKAQKAWAELQPLLIGPLAEGNRAWQVQFWPDKKNLVGRQVEQLVNSQPQIDAAGLAKSSVVVQGLSAYEYLLFDAKIDMADSAQKAKYCPLLIAIGERQKQLAEEILSRWNTNDGMLAQMSKFPNQRYADSHEAIADLLRVQVTALDTLKKKLGTPMGRQSKGVPQPFQADAWRSQSSLQGLEASLSAARTVWVGVDNKGLRGLLPSEQKPLADKIDAAYDASLKLFASSQRSLTEMLGDDAGRQQLNDLYDSLNVVHRLHEGELAKALGIQLGFNANDGDNANANANANA
D1-35_016431428hypothetical proteinATGCTGTCGTTGCCTCTTCGCTTGTGCGCTCTGTTCATGGCCCTGGGCCTGACGGCCTGCGATGACGCCCCGCGTTTTACCCAGGCCGAGCCCGGCGAAGCCAGATCCGGCGGCAGCGCGACAGTACGCAAGGCCGACCAGAACGCCTTCTCGCTGCCCTCGGCCAATCTGCCGCCGTCGCGGCGCGTGGACTTCAGCGTCGGCAACAGTTTTTTCCGCAGTCCCTGGGTAATCGCGCCCTCGACTACCACCGCCCGGGACGGCCTCGGCCCCCTGTTCAACACCAACGCCTGCCAGAACTGCCACATCAAGGACGGTCGCGGCCATCCGCCGGCGCCGGATGCCAGCAGCGCGGTGTCGATGCTGGTACGCCTGTCGATCCCCGATGCGCCGCCCTACGCCAAGCTCATCGAACAACTCGGCGTCGTACCGGAGCCGGTCTATGGCGGGCAATTGCAGGACATGTCGGTGCCGGGCGTCGCGCCGGAAGGCAAGGTCAGGGTCGATTACTCTCCCGTCCCGGTGCGCTTCAAGGACGGCACCGTCGTCGAACTGCGCAAGCCGAGCCTGCAGATCACCCAGCTGGGCTATGGCCCGATGCACCCCGACACACGATTTTCGGCCCGTGTCGCACCGCCGATGATCGGCCTGGGTCTGCTCGAGGCCATCCCCGATGCAGCCATCCTGGCCAATGCCGAGTCACAGGCGCGGGAAAACAACGGCATCGCCGGTCGCCCGAACATGGTCTGGGACGACGTCCAGCAAAAAACCGTGCCGGGGCGCTTCGGCTGGAAGGCCGGACAACCGAACCTCAATCAACAGAACGTCCATGCGTTCTCCGGCGACATGGGCCTGACGACCAGCCTGCGGCCCTTCGACGACTGCACCCAGGCCCAGCTCGATTGCCAGCGCGCGCCCAACGGCAACGGCCCTGAGGGCGAACCGGAAGTCAGCGACAATATTCTGCGGCTGGTGCTGTTCTACAGCCGCAACCTTGCCGTGCCGGCCCGCCGCGACGTGGATTCGCCCCAGGTACTGGCGGGCAAGAACCTGTTTTTCCAGGCCGGTTGCCAGTCCTGCCACACTCCCAAGTACACGACGTCTGCCAACGCCGCCGAACCCGAGCTGGCGAACCAGGTCATCCGTCCCTATACCGACCTGCTGTTGCACGACATGGGCGAAGGCCTGGCGGACAACCGCAGCGAATTCAAGGCCAGCGGCCGCGACTGGCGGACCCCGCCGCTGTGGGGCATCGGCCTGACCGAAACCGTCAACGGCCACACCCAGTTTCTCCACGACGGTCGCGCCCGCAACCTGCTCGAAGCCGTGCTCTGGCATGGCGGCGAAGCCCAGGCGGCGCAGCGACAGGTTCTAGCATTCAACGCCGAGCAGCGCGCTGCGCTGTTGGCTTTCCTGAACTCTCTTTAAMLSLPLRLCALFMALGLTACDDAPRFTQAEPGEARSGGSATVRKADQNAFSLPSANLPPSRRVDFSVGNSFFRSPWVIAPSTTTARDGLGPLFNTNACQNCHIKDGRGHPPAPDASSAVSMLVRLSIPDAPPYAKLIEQLGVVPEPVYGGQLQDMSVPGVAPEGKVRVDYSPVPVRFKDGTVVELRKPSLQITQLGYGPMHPDTRFSARVAPPMIGLGLLEAIPDAAILANAESQARENNGIAGRPNMVWDDVQQKTVPGRFGWKAGQPNLNQQNVHAFSGDMGLTTSLRPFDDCTQAQLDCQRAPNGNGPEGEPEVSDNILRLVLFYSRNLAVPARRDVDSPQVLAGKNLFFQAGCQSCHTPKYTTSANAAEPELANQVIRPYTDLLLHDMGEGLADNRSEFKASGRDWRTPPLWGIGLTETVNGHTQFLHDGRARNLLEAVLWHGGEAQAAQRQVLAFNAEQRAALLAFLNSLNANANANANA
D1-35_016441002gapACOG0057Glyceraldehyde-3-phosphate dehydrogenase 1ATGACTCTTCGAATCGCAATCAATGGTTTTGGCCGCATCGGCCGCAACGTCCTCCGTGCACTGTATACCCAAGGCTATCGTCGCGACTTGCAGATCGTCGCTATCAACGACCTGGGTGACAGCGCGATCAATGCTCACCTGCTCAAGTTCGACACCGTCCACGGCACCTTTGATGCCGACGTGCAGCACGATCACGAGAGCCTGACGGTCAATGGCGACCGCATCGCGGTCAGTGCCATCCGCAACCCGGCCGAACTGCCCTGGGCCGCCGAAAAGATCGACGTCGTGTTCGAATGCACCGGCCTGTTCACCGACCGTGCCAAGGCCGCCGCGCACATCAGCGCCGGCGCCCGCAAGGTGATCATCTCGGCCCCGGCCAAGGGCGCCGACGCGACCGTGGTGTATGGCGTGAACCATGACATCCTGCGCCAGTCCCACCAGATCATTTCCAACGCTTCGTGCACCACCAACTGCCTGGCCCCGGTGGCCCAGGTGCTGCACCGCGAGCTGGGTATCGAAAGCGGCCTGATGACCACCATCCATGCCTACACCAACGACCAGAACCTGACCGACGTCTATCACAGCGACCCGTACCGCGCCCGTTCGGCCACCCAGAACATGATCCCGAGCAAGACCGGCGCCGCCGAAGCGGTAGGCCTGGTGCTGCCGGAGCTGGCGGGCAAGCTGACCGGCATGGCCGTGCGCGTGCCGGTGATCAACGTGTCGCTGGTGGACCTGACCGTGCAGCTCAAGCGCGAAGCTTCGGCCGATGAGGTCAACGCGCTGCTCAAGCAGGCCAGCCAGCATTCGAAGATCCTTGGCTACAACACCCTGCCGCTGGTCTCCAGCGACTTCAACCACAACCCGCTGTCGTCGATCTTCGATGCCAACCACACCAAGGCCAGCGGCAAGCTGCTCAAGGTACTGGCCTGGTATGACAACGAATGGGGTTTCTCCAACCGCATGCTGGATAACTGCCTGGCGCTGTGCAACGCCGAATAAMTLRIAINGFGRIGRNVLRALYTQGYRRDLQIVAINDLGDSAINAHLLKFDTVHGTFDADVQHDHESLTVNGDRIAVSAIRNPAELPWAAEKIDVVFECTGLFTDRAKAAAHISAGARKVIISAPAKGADATVVYGVNHDILRQSHQIISNASCTTNCLAPVAQVLHRELGIESGLMTTIHAYTNDQNLTDVYHSDPYRARSATQNMIPSKTGAAEAVGLVLPELAGKLTGMAVRVPVINVSLVDLTVQLKREASADEVNALLKQASQHSKILGYNTLPLVSSDFNHNPLSSIFDANHTKASGKLLKVLAWYDNEWGFSNRMLDNCLALCNAEPGPT0018000_6928DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018000-gapA-K00134NANA
D1-35_016451827eddCOG0129Phosphogluconate dehydrataseATGCATCCCCGCGTACTTGAGGTCACCGAACGGCTTATCGCCCGCAGTCGCGCTACACGCGAGGCTTACCTTGCATTGATCCGCGGTGCAGCCAGCGACGGTCCGATGCGCGGCAAGCTGCAATGCGCCAACTTCGCCCATGGCGTCGCCGGTTGCGGCACTGAAGACAAGCATCACCTGCGGATGATGAACGCCGCCAACATCGCCATCGTGTCGTCCTATAACGACATGCTCTCGGCCCACCAGCCGTACGAAACCTTCCCGGAACAAATCAAGAAAGCCCTGCGCGAGATCGGCTCGGTCGGCCAGTTCGCCGGCGGTACGCCAGCCATGTGCGATGGTGTGACCCAGGGCGAGGCGGGGATGGAGCTGAGCCTGCCGAGCCGCGAAGTGATCGCGTTGTCCACGGCGGTGGCGTTGTCCCACAACATGTTCGACGGTGCCTTGATGCTGGGCATCTGCGACAAGATCGTCCCGGGCCTGATGATGGGCGCGCTGCGCTTCGGTCATCTGCCGACGATCTTCGTGCCTGGCGGGCCGATGGTCTCGGGCATTTCCAACAAGGAAAAGGCCGATGTGCGTCAGCGCTATGCCGAAGGCAAGGCGACCCGCGAAGAGCTGCTGGAATCGGAGATGAAGTCCTACCACAGCCCAGGTACCTGCACGTTCTACGGTACCGCCAACACCAACCAGTTGCTGATGGAAGTGATGGGCCTGCACTTGCCGGGCGCCTCGTTCGTCAACCCGAACACGCCGCTGCGCGATGCCCTGACCCGCGAAGCGGCGTTCCAGGTGACGCGCCTGACCATGCAGAGCGGCAACTTCATGCCCATCGGCGAAATCGTCGACGAGCGTTCGCTGGTCAACTCCATCGTTGCGCTGCACGCCACCGGTGGCTCCACCAACCACACCCTGCACATGCCGGCCATCGCCATGGCGGCGGGCATCCAGCTGACCTGGCAGGACATGGCCGACCTCTCCGAAGTGGTGCCGACCCTGAGCCACGTCTACCCGAACGGCAAGGCCGATATCAACCACTTCCAGGCGGCGGGCGGCATGTCGTTCCTGATTCGCGAACTGCTGGAAGCCGGCCTGCTCCACGAAAACGTCAACACCGTGATGGGCCACGGCCTGAGCCGTTACACCCAGGAACCGTTCCTGGAGGACGGCGAACTGGTCTGGCGCGATGGCCCGACCGAAAGTCTCGACGAAAGCATCCTGCGTCCGGTAGCCCGGGCTTTCTCGCCGGAAGGCGGGTTGCGGGTGATGGAAGGCAACCTGGGCCGGGGCGTGATGAAGGTCTCGGCCGTGGCCCTGGAAAACCAGTTCGTCGAAGCCCCGGCCATGGTGTTCCAGGACCAGCAGGACCTGGCCGATGCGTTCAAGGCTGGTCTGCTGGAGAAGGATTTTGTCGCGGTGATGCGCTTCCAGGGCCCGCGCTCCAACGGCATGCCGGAGCTGCACAAGATGACGCCCTTTCTCGGCGTGCTGCAGGATCGCGGGTTCAAGGTAGCGCTGGTCACCGACGGGCGCATGTCCGGCGCATCGGGGAAAATCCCGGCGGCCATCCATGTCAGTCCCGAAGCCTATGTCGGCGGCGCGTTGGCTCGGGTGCGCGAGGGCGATATCATCCGTGTCGATGGCGTCAAAGGCACCTTGGAATTGAAGGTGGACGCCGAGGAATTCGCCGCGCGTGAACCGGCCAAGGGCCTGTTGGGCAACAACATCGGCACCGGTCGCGAGCTGTTCGGTTTCATGCGCATGGCCTTCAGCTCGGCAGAGCAGGGCGCCAGCGCCTTCACTTCTGCCCTGGAGACGCTTAATTGAMHPRVLEVTERLIARSRATREAYLALIRGAASDGPMRGKLQCANFAHGVAGCGTEDKHHLRMMNAANIAIVSSYNDMLSAHQPYETFPEQIKKALREIGSVGQFAGGTPAMCDGVTQGEAGMELSLPSREVIALSTAVALSHNMFDGALMLGICDKIVPGLMMGALRFGHLPTIFVPGGPMVSGISNKEKADVRQRYAEGKATREELLESEMKSYHSPGTCTFYGTANTNQLLMEVMGLHLPGASFVNPNTPLRDALTREAAFQVTRLTMQSGNFMPIGEIVDERSLVNSIVALHATGGSTNHTLHMPAIAMAAGIQLTWQDMADLSEVVPTLSHVYPNGKADINHFQAAGGMSFLIRELLEAGLLHENVNTVMGHGLSRYTQEPFLEDGELVWRDGPTESLDESILRPVARAFSPEGGLRVMEGNLGRGVMKVSAVALENQFVEAPAMVFQDQQDLADAFKAGLLEKDFVAVMRFQGPRSNGMPELHKMTPFLGVLQDRGFKVALVTDGRMSGASGKIPAAIHVSPEAYVGGALARVREGDIIRVDGVKGTLELKVDAEEFAAREPAKGLLGNNIGTGRELFGFMRMAFSSAEQGASAFTSALETLNNANANANANA
D1-35_01646960glkCOG0837GlucokinaseTTGAAACTGGCTTTGGTCGGTGATATCGGTGGGACCAACGCACGTTTCGCGTTGTGGAAGAACCACAACCTGGAAAACATCCAGGTGCTGGCGACGGCGGATTACGCCTGCCCGGAAGATGCCATCAAGGTTTACCTGAGCGGCATGGGCATGACGCCGGGTTCCATCGGCTCGGTGTGCCTGTCGGTGGCCGGTCCGGTGAGTGGCGATGAGTTTCGCTTCACCAACAATCACTGGCGCTTGAGCAACCTGGCGTTCTGCAAGACTTTGCAGGTGGAGAAGCTGCTGCTGGTCAACGATTTCTCCGCCATGGCGCTGGGCATGACCTGCTTGCGTCCCGATGAATACCGGGTCGTCTGCGCGGGCACGCCGGAGCCGATGCGCCCGGCGGTGGTGATCGGCCCGGGCACGGGGCTGGGCGTCGGTACGCTGCTGGACCTGGGCGAGGGCCGTTTCGCGGCGTTGCCGGGGGAGGGCGGGCATGTCGACCTGCCGATGAGCAGTCCGCGCGAGACCCAGCTCTGGCAGCACATCTACAACGAGATCGGCCACGTCAGCGCCGAAACGGCGCTGAGCGGCAGCGGTCTGCCTCGTGTGTACCGGGCGATCTGCGCGGTGGACGGCCATGAGCCGGTGCTTGATACCCCCGAGTCGATCACCGCCGCCGGCCTGGCCGGCGACCCGGTCGCCCTGGAGGTACTCGAACAATTCTGCCGTTGGCTGGGGCGCGTGGCGGGCAACAATGTGCTCACCGTGGGCGGGCGTGGCGGCGTGTACATCGTCGGTGGCGTGGTCCCGCGCTTTGCCGATTTTTTTGTCGAGAGCGGCTTCGCCAGATGCTTCGCCGACAAGGGCTGCATGAGCGATTATTTCAAAGGCATTCCGGTCTGGCTGGTGACGGCGCCGTATTCCGGCCTGATGGGTGCGGGCGTGGCGTTAGAGCAGTCCTCCGCAATTTGAMKLALVGDIGGTNARFALWKNHNLENIQVLATADYACPEDAIKVYLSGMGMTPGSIGSVCLSVAGPVSGDEFRFTNNHWRLSNLAFCKTLQVEKLLLVNDFSAMALGMTCLRPDEYRVVCAGTPEPMRPAVVIGPGTGLGVGTLLDLGEGRFAALPGEGGHVDLPMSSPRETQLWQHIYNEIGHVSAETALSGSGLPRVYRAICAVDGHEPVLDTPESITAAGLAGDPVALEVLEQFCRWLGRVAGNNVLTVGGRGGVYIVGGVVPRFADFFVESGFARCFADKGCMSDYFKGIPVWLVTAPYSGLMGAGVALEQSSAIPGPT0017730_1995DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017730-glk-K00845NANA
D1-35_01647732ompR_2Transcriptional regulatory protein OmpRGTGAGTTCAGTGAACAAATCGATTTTGCTGGTCGACGACGACCAGGAGATTCGCGAACTGCTGGACACTTACCTCAGTCGCGCGGGTTTCCAGGTGCGTACCACCCCCGATGGCGCCGGGTTTCGCCAGGCCCTCAACGAGGCGCCGAGCGACCTGGTGATCCTCGACGTGATGTTGCCCGACGAGGACGGCTTCAGCCTTTGCCGCTGGGTTCGCCAGCATCCGCGCCAGGCCCATGTGCCGATCATCATGCTCACCGCCAGTTCCGACGAGGCCGATCGGGTCATCGGCCTGGAGCTGGGGGCGGATGATTACCTGGGCAAGCCGTTCAGTCCTCGCGAATTGCAGGCGCGCATCAAGGCCTTGCTGCGACGGGCGCAGTTCGGCCAGGAGCGATCCGGCGGCGAAGTGCTGGCCTTCGATGAGTGGCGGCTGGACATGGTCAGCCACCGCCTGTTCCATGCCGATGGCGAAGAGGTGATCCTGTCGGGTGCCGATTTTGCCTTGCTCAAGCTGTTCCTCGATCATCCACAGGAAATCCTCGACCGCGACACCATCGGCAACGCCACCCGGGGGCGTGAATTGATGCCGCTGGACCGGATCGTCGACATGGCGGTGAGTCGCTTGCGCCAGCGCCTGCGCGATACCGACAAGCCGCCGCGATTGATCCGCACGGTGCGCGGCAGCGGTTATCAACTGGCGGCCAGTGTGGTTGCCAGCAATGGTCATTGAMSSVNKSILLVDDDQEIRELLDTYLSRAGFQVRTTPDGAGFRQALNEAPSDLVILDVMLPDEDGFSLCRWVRQHPRQAHVPIIMLTASSDEADRVIGLELGADDYLGKPFSPRELQARIKALLRRAQFGQERSGGEVLAFDEWRLDMVSHRLFHADGEEVILSGADFALLKLFLDHPQEILDRDTIGNATRGRELMPLDRIVDMAVSRLRQRLRDTDKPPRLIRTVRGSGYQLAASVVASNGHPGPT0012985_740DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OSMOLARITY_SIGNALLING,PGPT0012985-ompR-K07659NANA
D1-35_016481470sasA_7Adaptive-response sensory-kinase SasAATGGTCATTGAGGGAATCCGCAAGATTGCCCGACGGGTGCCCGTGCCGCGCTCGTTGCTCGGACGGATGCTGCTGCTGACGCTGCTGGTGGTGCTGTTCGCCCAGACGCTGTCCAGCCTGATCTGGGTTTCGCAACTGCGCGCCACGCAGCTCGAAGGCCTGGTCACCAGCGCCCGCAGTTTGGCTCACTCGATGACCGCCACCGTGACCTACCTGCGTTCGCTGCCGGTGGCCTACCGGCCGTTGGTGCTGGACCAGTTGCGCAGCATGGGCGGCACGCGGTTTGTCGTTACGCTCAATGACAAGCCGCTGGGCATGGATGTGCTGCCGGTCACGCCGCGCAAACTGGCGGTGCTCAAGGCCGTGGACGATGTGCTGCGCCGCTCCCTGGGCAATAACGCCGACATCTCCGTCAAGTTTGTCAGCCCGGAGGATCTGCGGATCTTCAACGGCGGGCTCAAGCTTGATGAGCTGCCCCGTTCGTGGGCCCACTACGCCCTGACGCTCGAGCCAGTGAACCCGCCGGTACTGGTCACGCAGATCCAGATGGCGCCGGGCGAATGGCTGTACATCGCCTCGCTGCTGCCCGAACCCTATACCAGTCTTGAAGAGCAGGACCTGCCCAAGCAGCAGGTGGGCTTCATCGTGCTCACCAGTAGCCTGTTGCTGTTGTTCATCGGCTTGCTGGTGCATTGGCAGAGTCGTCCGCTCAAGCGTTTGGCCCGCGCGGCGCGGGACATGTCCCTGGGCGCAGAAGTGCAGCCCGTGGCCGAGGGCGGCGGCAGCGAAGTGGTGGAGGTGGGGCGTGCGTTCAATGCCATGCGTGAGCGTATCAGCCGCTACCTGACCGAGCGCAGCCAGTTGTTCAGCGCGATTTCCCACGACCTGCGCACGCCGATCACCCGCCTGCGGCTGCGGGTCGAGTTGCTGGAGGATGAAAATCTGCAGGCCAAGTTCGGCCGCGACCTCGACGAGCTGGAGCTGCTGGTCAAAGGCGCGCTGCAATGCGTCAAGGACACCGATATCCACGAGAACATCGAGCCGGTGGACCTCAATCATGTGCTCGATTGCCTGGTGGAGCCTTACCTGGCGCCCCACGGCAACGGCCGGGTGACCCAGGATGGCCGGGCGTTGGCACCGTACCCGGGCAAACCGCTGGCCCTCAAGCGCTGCATCGGCAACCTGATCGACAACGCCTTGAAATACGGGCAGAGGGCCCACTTGCACATCGACGATGATGAAAACGCTTTCATCCTGCACGTTGACGATGAAGGCCCGGGCGTACCGGAACAACGCCTCGAACAGGTCTTCGAACCGCACTTTCGCCTGGCCGGGCAGCAGCAGGGATATGGCCTGGGGCTGGGCATCGCGCGCAACATTGCCCACAGCCATGGCGGCGAGGTGAGCCTGCAGAACCTGCGCGAGGGCGGGTTGCGGGTGACGCTGCAGTTGCCTCGCAGTGTGGATTGAMVIEGIRKIARRVPVPRSLLGRMLLLTLLVVLFAQTLSSLIWVSQLRATQLEGLVTSARSLAHSMTATVTYLRSLPVAYRPLVLDQLRSMGGTRFVVTLNDKPLGMDVLPVTPRKLAVLKAVDDVLRRSLGNNADISVKFVSPEDLRIFNGGLKLDELPRSWAHYALTLEPVNPPVLVTQIQMAPGEWLYIASLLPEPYTSLEEQDLPKQQVGFIVLTSSLLLLFIGLLVHWQSRPLKRLARAARDMSLGAEVQPVAEGGGSEVVEVGRAFNAMRERISRYLTERSQLFSAISHDLRTPITRLRLRVELLEDENLQAKFGRDLDELELLVKGALQCVKDTDIHENIEPVDLNHVLDCLVEPYLAPHGNGRVTQDGRALAPYPGKPLALKRCIGNLIDNALKYGQRAHLHIDDDENAFILHVDDEGPGVPEQRLEQVFEPHFRLAGQQQGYGLGLGIARNIAHSHGGEVSLQNLREGGLRVTLQLPRSVDNANANANANA
D1-35_016491260yihSCOG2942Sulfoquinovose isomeraseATGGACACCTTCCAACCGGCGTTCAGCAGTTGGCTGAATGCGCCTGCCCATCGGCAATGGCTCGCTGCCGAAGGTTTGCGGCTGCTGGCGTTCGCCAAGGCTTCGAAGCTGCCGGACGGTTTCGGCAACCTGGACGAGCTGGGTCGCCTGCCGGCCGGTGCGCGGGCCGAGACCATGAACACCGCACGCATGACCCACAGCTTCGCCATGGCCCACATCCAGGGCCTGCCGGGGTTCGCCGAGCTGGTGGATCATGGCGTCCAGGCCCTCGGCGGCCCGCTGCGCGATGCCGAACATGGCGGCTGGTTCGCCATGGCCGATCCCGATGCCAGCGACACCGGCAAGGCCGCTTACCTGCATGCTTTCGTGGCCTTGGCCGCCAGCTCCGCGGTAGTTGCCCAACGCCCCGGCGCCGAGGCATTGCTCAAGGAAGCGGTGCGGGTTATCGACGAGCATTTCTGGTGTGAAGAAGAGGGCGCCCTGCGCGAGTCCTTCAACCGCGACTGGAGCGAGGAGGAAGCCTATCGCGGCGCCAACAGCAACATGCACGCCACCGAAGCCTTCCTGGCCCTGGCCGACGCCACGGACGACCCGCGCTGGTTGGCCCGCGCGCTGCGTATCGTCGAGCGGGTCATCCATGGTCATGCGGCCGCCAACGACTACATGGTGGTGGAGCATTTCGACCGCGACTGGCAACCGCTGCGCGAGTACAACCAGGACAATCCCGCCGATGGCTTCCGTCCCTACGGCACCACGCCCGGTCATGGTTTCGAATGGGCGCGGCTGCTGCTGCATCTGGAAGCCGCGCGCGTGCAGATCGGCATGCTGACACCGGGCTGGCTGGCCCAGGATGCGCAGAAACTTTTCGATCAGAATTGCCGCCATGGCTGGGACATCGATGGCGCGCCGGGAATCGTCTACACGCTGGACTGGGGTAATCGCGCCGTGGTTCGCCATCGCCTGCACTGGGTGCACGCCGAAGCGGCAGCGGCGGCCAGTGCCTTGCTCAAACGTACCGACGAGGCCCAATACGAAGTCTGGTACCGGCGTTTCTGGGAATTTTGTGACAAACATTTCATCGACCGCTGCAACGGCAGCTGGCATCACGAGCTGGATCCGCAGAACCGCCCCAGCGCCGACATCTGGCCGGGCAAACCGGATCTTTATCACGCCTGGCAAGCGGTGCTGATACCACGCTTGCCATTGGCGCCGAGCATGGCGTCGGCCTTGGCGCGATTATCCGATCCTGCACCTGTGTAAMDTFQPAFSSWLNAPAHRQWLAAEGLRLLAFAKASKLPDGFGNLDELGRLPAGARAETMNTARMTHSFAMAHIQGLPGFAELVDHGVQALGGPLRDAEHGGWFAMADPDASDTGKAAYLHAFVALAASSAVVAQRPGAEALLKEAVRVIDEHFWCEEEGALRESFNRDWSEEEAYRGANSNMHATEAFLALADATDDPRWLARALRIVERVIHGHAAANDYMVVEHFDRDWQPLREYNQDNPADGFRPYGTTPGHGFEWARLLLHLEAARVQIGMLTPGWLAQDAQKLFDQNCRHGWDIDGAPGIVYTLDWGNRAVVRHRLHWVHAEAAAAASALLKRTDEAQYEVWYRRFWEFCDKHFIDRCNGSWHHELDPQNRPSADIWPGKPDLYHAWQAVLIPRLPLAPSMASALARLSDPAPVNANANANANA
D1-35_016501302putative sugar-binding periplasmic proteinATGAATGCGATTTCTCGCCTCGCTACTGTCATTTCTCTTGCTTCCTTGCTTCCCGTCGCAGCATTCCCCGTCAGCGCCCTGGCCGCCGAATCGAAAGGTTCCGTGGAAGTCGTCCACTGGTGGACGTCGGGTGGTGAAAAAGCCGCGGTCGATGTGCTCAAGGCCCAGGTAGAAAAAGACGGCTTTACCTGGAAGGACGGCGCTGTCGCCGGCGGCGGCGGTTCCACCGCCATGACCGTGCTCAAGAGCCGCGCCGTGGCCGGTAACCCACCGGGCGTAGCCCAGATCAAAGGTCCGGACATCCAGGAATGGGCGTCCACCGGCCTGCTCGATACCGACATCCTGGAAGACGTTGCCAAAGCGGAGAAATGGGACAGCCTGCTCGACAAGAAAGTCTCCGACACCGTGAAGTACGAAGGTGACTACGTCGCCGTGCCGGTGAACATTCACCGCGTCAACTGGCTGTGGATCAACCCGGAAGTCTTCAAGAAAGCCGGCATCACCAAGAACCCGACCACCCTCGAAGAATTCTACGCCGCCGGTGACAAGCTCAAGGCCGCGGGCTTCATTCCCCTGGCCCACGGCGGCCAGCCATGGCAGGACAGCACCGTGTTCGAAGCGGTGGTGCTCTCGGTCATGGGCGCTGATGGCTACAAGAAAGCCCTGGTCGACCTGGATAACAAGGCGCTAACCGGTCCGGAAATGGTCAAGGCATTGACCGAGCTGAAGAAAGTCGCGACCTACATGGACGCCGACGGCAAGGGCCAGGACTGGAACCTGGAAGCGGCCAAGGTCATCAACGGCAAGGCCGGCATGCAGATCATGGGTGACTGGGCCAAGAGCGAGTGGACCGCGGCCAAGAAGGTCGCCGGCAAGGACTACGAGTGCGTAGCCTTCCCAGGCACCGACAAGGCCTTCACCTACAACATCGATTCTTTGGCGGTGTTCAAGCAGAAAGACAAGGGCACGGCGGCGGGTCAGCAGGATATCGCCAAGGTCGTGCTGGGCGAGAACTTCCAGAAAGTCTTCAGCATCAACAAAGGCTCGATCCCGGTGCGTAACGACATGCTGGGCGACATGGCCAAGTACGGTTTCGACTCGTGCGCCCAGACCGCCGCCAAGGACTTCCTGGCAGACGCCAAGAGCGGCGGCCTGCAACCAAGCATGGCGCACAACATGGCGACCACGCTGGCGGTACAGGGCGCGTTCTTCGATGTCGTGACCAACTACATCAACGACCCGAAAGCCGACCCGGCCGATGCTGCCAAGAAGCTTGGCGCAGCGGTTCAGTCTGCGAAGTAAMNAISRLATVISLASLLPVAAFPVSALAAESKGSVEVVHWWTSGGEKAAVDVLKAQVEKDGFTWKDGAVAGGGGSTAMTVLKSRAVAGNPPGVAQIKGPDIQEWASTGLLDTDILEDVAKAEKWDSLLDKKVSDTVKYEGDYVAVPVNIHRVNWLWINPEVFKKAGITKNPTTLEEFYAAGDKLKAAGFIPLAHGGQPWQDSTVFEAVVLSVMGADGYKKALVDLDNKALTGPEMVKALTELKKVATYMDADGKGQDWNLEAAKVINGKAGMQIMGDWAKSEWTAAKKVAGKDYECVAFPGTDKAFTYNIDSLAVFKQKDKGTAAGQQDIAKVVLGENFQKVFSINKGSIPVRNDMLGDMAKYGFDSCAQTAAKDFLADAKSGGLQPSMAHNMATTLAVQGAFFDVVTNYINDPKADPADAAKKLGAAVQSAKPGPT0016570_115DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLUCOSE|MANNOSE_TRANSPORT_I,PGPT0016570-gtsA|glcE-K17315NANA
D1-35_01651909melD_1COG1175Melibiose/raffinose/stachyose import permease protein MelDATGAGTTCTGTTGCTGTGTTCAGCAAGGCCTCGCCGTTCGATGCATTGCAGCGCTGGCTACCAAAACTGGTGCTGGCGCCGAGCATGTTCATCGTCCTGGTGGGCTTCTATGGCTATATCTTGTGGACGTTCGTCCTGTCGTTCACCACATCGACCTTCCTGCCTACCTATAAGTGGGCCGGCCTGGCGCAATACGCACGGCTTTGGGACAACGACCGCTGGTGGGTGGCGAGCAAGAACCTGGCAGTCTTTGGTGGCATGTTCATTGGTATCACCCTGGTGATCGGCGTGCTGCTGGCGGTGTTCCTCGACCAGCGTATTCGCCGCGAAGGTTTCATCCGCACCATTTACCTGTACCCGATGGCGCTCTCGATGATCGTCACCGGTACCGCCTGGAAATGGCTGCTCAACCCGGGCATGGGCCTGGATAAATTGTTGCGTGACTGGGGCTGGGAAGGCTTCCGCCTGGACTGGCTGATCGACCCCGATCGCGTAGTGTACTGCCTGGTGATCGCTGCGGTCTGGCAGGCCTCGGGTTTCATCATGGCGATGTTCCTGGCCGGCCTGCGGGGCGTTGATCAATCGATCATCCGTGCCGCGCAGATCGATGGCGCGAGCATGCCGCGCATCTACTGGAAAGTGGTGCTGCCAAGCCTGCGTCCAGTGTTCTTCAGTGCCGTGATGATCCTGGCGCATATCGCGATCAAGAGTTTCGACCTGGTGGCGGCGATGACAGCTGGTGGTCCGGGGTATTCCTCCGACCTGCCTGCCATGTTCATGTACTCCTTTACGTTCAGTCGCGGCCAGATGGGCATGGGCTCGGCCAGTGCAATCCTGATGCTCGGTGCGATCCTCGCGATCATCGTGCCTTACCTGTATTCCGAGCTGAGGGCCAAGCGTCATGACTAGMSSVAVFSKASPFDALQRWLPKLVLAPSMFIVLVGFYGYILWTFVLSFTTSTFLPTYKWAGLAQYARLWDNDRWWVASKNLAVFGGMFIGITLVIGVLLAVFLDQRIRREGFIRTIYLYPMALSMIVTGTAWKWLLNPGMGLDKLLRDWGWEGFRLDWLIDPDRVVYCLVIAAVWQASGFIMAMFLAGLRGVDQSIIRAAQIDGASMPRIYWKVVLPSLRPVFFSAVMILAHIAIKSFDLVAAMTAGGPGYSSDLPAMFMYSFTFSRGQMGMGSASAILMLGAILAIIVPYLYSELRAKRHDPGPT0016575_421DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLUCOSE|MANNOSE_TRANSPORT_I,PGPT0016575-gtsB|glcF-K17316NANA
D1-35_01652846ngcGCOG0395Diacetylchitobiose uptake system permease protein NgcGATGACTAGTCTCGCTGCGAAACCTGCCATCAGCCTGAGCCGTATCGCGATCTATGCGGTGCTGATCCTTGCCGTGTTGCTTTACCTGGTGCCGTTGGTGGTCATGCTGTTGACCAGCTTCAAGACGCCGGAAGACATCAGTACCGGTAACCTGTTGAGCTGGCCGACCGTGGTCAGCGGCATCGGCTGGGTCAAGGCCTGGGCCACGGTCAACGGGTACTTCTGGAACTCGATCAAGATCACCGTGCCGGCCGTGCTGATCTCCACCGCCATCGGCGCGTTGAACGGCTATGTGCTGTCGATGTGGCGCTTCCGTGGCTCGCAGTTGTTCTTCGGCCTGTTGCTGTTCGGCTGCTTCCTGCCGTTCCAGACCGTGCTGCTGCCGGCCTCGTTCACCCTCGGCAAGATGGGCCTGGCCAGCACCACCACCGGCCTGGTGTTTGTCCATGTCGTCTACGGCCTGGCGTTCACCACGCTGTTCTTCCGCAATTACTACGTGAGCATCCCCGACGCGCTGGTGAAGGCCGCGCGCCTCGACGGTGCCGGGTTCTTCACGATCTTCCGGCGGATCATCCTGCCGATGTCGACGCCGATCATCATGGTCTGCCTGATCTGGCAGTTCACCCAGATCTGGAACGACTTCCTCTTTGGCGTGGTGTTCTCCAGCGGCGACTCCCAGCCCATCACGGTGGCGCTGAACAACCTGGTCAACACCAGCACCGGGGCCAAGGAATATAACGTGGACATGGCGGCGGCGATGATCGCCGGGCTGCCGACCCTGCTGGTCTATGTGATCGCAGGCAAGTATTTCGTGCGCGGCCTCACGGCTGGCGCGGTCAAGGGGTAAMTSLAAKPAISLSRIAIYAVLILAVLLYLVPLVVMLLTSFKTPEDISTGNLLSWPTVVSGIGWVKAWATVNGYFWNSIKITVPAVLISTAIGALNGYVLSMWRFRGSQLFFGLLLFGCFLPFQTVLLPASFTLGKMGLASTTTGLVFVHVVYGLAFTTLFFRNYYVSIPDALVKAARLDGAGFFTIFRRIILPMSTPIIMVCLIWQFTQIWNDFLFGVVFSSGDSQPITVALNNLVNTSTGAKEYNVDMAAAMIAGLPTLLVYVIAGKYFVRGLTAGAVKGPGPT0016580_646DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLUCOSE|MANNOSE_TRANSPORT_I,PGPT0016580-gtsC|glcG-K17317NANA
D1-35_016531161ugpC_1COG3839sn-glycerol-3-phosphate import ATP-binding protein UgpCATGGCTACGCTTGAACTTCGCAATGTAAACAAGACCTACGGCGCGGGCCTGCCCGACACCTTGAAGGACATCCAGCTGTCGATCAAGGAAGGTGAATTCCTGATCCTGGTCGGTCCTTCGGGCTGCGGCAAATCGACCCTGATGAACTGCATCGCCGGCCTCGAGACCATCACCGGTGGCGCGATCATGATCGGCGACCAGGACGTCAGCGGCATGAGTCCCAAGGATCGCGACATCGCCATGGTGTTCCAGTCCTATGCGCTGTACCCGACCATGAGCGTGCGCGAGAACATCGAGTTCGGCCTGAAGATCCGCAAAATGAAACAGGCGGACATCAACGAAGAAGTGGCGCGGGTGGCCAAGCTATTGCAGATCGAGCACTTGCTCAACCGCAAGCCCGGCCAGCTCTCCGGCGGGCAGCAACAGCGCGTCGCGATGGGCCGGGCCCTGGCGCGGCGGCCGAAGATCTACCTGTTCGACGAGCCGCTGTCCAACCTCGACGCCAAGCTGCGCGTCGAGATGCGCACCGAAATGAAACTGATGCACCAGCGCCTGAAGACCACCACGGTCTACGTGACCCACGACCAGATCGAGGCCATGACCCTGGGCGATAAAGTCGCCGTGATGAAGGATGGGATCATCCAGCAGTTCGGTACGCCGAAGGACATCTACAACAACCCGGCCAACCTGTTCGTGGCGAGCTTCATCGGTTCGCCGCCGATGAACTTCATCCCGCTGCGCCTGCAACGCAAGGACGGTCGCCTGTTGGCCCTGCTCGACAGCGGCCAGGCCCGTTGCGAGTTGCCGCTGGGCATGCAGGACGCCGGCCTGGAGGATCGCGAAGTGATCCTTGGTCTGCGTCCGGAACAGATCGTGCTGGCGGGCAACGAGCCGAACGGCCTGCCGACCATCCGCGCCGAAGTCCAGGTCACCGAGCCTACCGGTCCGGACACCCTGGTGTTCGTCAATCTCAACGACACCAAGGTCTGCTGCCGACTGGCACCGGACGTGGCGCCGTCGCCGGGAGAGACCCTGACGCTGCAATTCGATCCATCGAAAGTGCTGCTGTTCGATGCCAAGTCCGGCGAGCGCCTGGGCGTGGCCGCGCAACCCTCGATGGAAGCCCGAGCCGACAACGTGGCGCAGTTCAAAGGCCGCTGAMATLELRNVNKTYGAGLPDTLKDIQLSIKEGEFLILVGPSGCGKSTLMNCIAGLETITGGAIMIGDQDVSGMSPKDRDIAMVFQSYALYPTMSVRENIEFGLKIRKMKQADINEEVARVAKLLQIEHLLNRKPGQLSGGQQQRVAMGRALARRPKIYLFDEPLSNLDAKLRVEMRTEMKLMHQRLKTTTVYVTHDQIEAMTLGDKVAVMKDGIIQQFGTPKDIYNNPANLFVASFIGSPPMNFIPLRLQRKDGRLLALLDSGQARCELPLGMQDAGLEDREVILGLRPEQIVLAGNEPNGLPTIRAEVQVTEPTGPDTLVFVNLNDTKVCCRLAPDVAPSPGETLTLQFDPSKVLLFDAKSGERLGVAAQPSMEARADNVAQFKGRPGPT0016310_982DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLUCOSE|MANNOSE_TRANSPORT_I,PGPT0016310-msmX|msmK|malK|sugC|ggtA|msiK-K10112NANA
D1-35_016541347oprBCOG3659Porin BATGAAGAAGAAGAACAATGCCCAGCTTATCTGCCAGTTGTCAGCCGTTGCGGCGATGATGCTGGCCGGTAGCGCACACGCAGCCGACGCGTTCAGCGCCGACTCGAAGTGGATGACGGGCGACTGGGGCGGTGAACGGACCAAGCTGATCGAGCAAGGTATCGATATCAAGGCGGATTTCGTCGGTGAGATGGGTGCCAACCTCGACGGCGGCTACAACGATGACAAGACCGCGCGCTGGTCCCAGCAGTTTGGCCTTGGCGTAGCTCTTGACCTGGAGAAACTGGCAGGCTGGAACGATACCGAAGCCAAGATTCAATTCACTCGCCGGGACGGTCGCAACATCTCCAACGACCGTATCGGTGATCCACGTGCCGGCACCCTCAGTTCCTCCCAGGAAGTCTGGGGCCGTGGCCAGACTACCCGTCTGACCCAGTTGTGGATCAAGCAGAAGTACTTCGACAGCAAGCTGGATGTCAAAGCCGGTTACTTCGGTGAAGGCGAAGACTTCAACACCTTCCCGTGCGAGTTCCAGAACCTGGCGTTCTGCGGTTCGCAAGCGGGTAACTGGGCGACCGGCATCTGGTACAACTGGCCGATCATGCAGGCGGCGATCCGGGTTAAATACAACCTCACGCCTGAGCTCTATGCGCAAATCGGTGCCTACAACCAGAACCCTTCGCAACTGGAAAACAACAACCGCTACAAGCTCAGCGGCAGTGGCACCAAGGGCACTCTGATTCCGATCGAGTTGGTCTGGTCGCCGAAGCTCAACAACCTGCCGGGCGAATACCGCGTCGGTTACTACAAGAGCACGGCCAAGGCTGACGATGTTCGTGAAGACATCAACGGCGATGACGCCGCGACTACTGGCAACGCCTATCGTAGCCACAGCAGCAAACATGGCTACTGGCTCGTCGTGCAGCAGCAGCTCACCACTCACAATGGCGATGCTACCCGCGGCCTGAACATCGCGGCCAACGCTACCGTCCACGACAAGGACACCAACGTCGTCGACAACTACCAGTCGCTGATGTTCGTGTACAAGGGGCCGTTCGATGCGCGTCCGAAGGACGACGTTGGTATCGGTTTCGCCCGTATCCATGTCAACGAGGACGTCAAGAAAAACGCCGAGTTGACCAACGCCGCCAATGGCGTCAGCGACTACGACGATCCACTGTTCGCGCCTTTGCGTAGCACCGAGTACAACTACGAAATCAACTACGGCTTCCATGTCACCAACTGGCTGACCGTGCGTCCAAACCTGCAATACGTCACTCACCCGGGTGGTGTCGATGAAGTCGACAACGCGCTGGTGGCCGGCCTGAAAATTCAGTCGGTGTTCTAAMKKKNNAQLICQLSAVAAMMLAGSAHAADAFSADSKWMTGDWGGERTKLIEQGIDIKADFVGEMGANLDGGYNDDKTARWSQQFGLGVALDLEKLAGWNDTEAKIQFTRRDGRNISNDRIGDPRAGTLSSSQEVWGRGQTTRLTQLWIKQKYFDSKLDVKAGYFGEGEDFNTFPCEFQNLAFCGSQAGNWATGIWYNWPIMQAAIRVKYNLTPELYAQIGAYNQNPSQLENNNRYKLSGSGTKGTLIPIELVWSPKLNNLPGEYRVGYYKSTAKADDVREDINGDDAATTGNAYRSHSSKHGYWLVVQQQLTTHNGDATRGLNIAANATVHDKDTNVVDNYQSLMFVYKGPFDARPKDDVGIGFARIHVNEDVKKNAELTNAANGVSDYDDPLFAPLRSTEYNYEINYGFHVTNWLTVRPNLQYVTHPGGVDEVDNALVAGLKIQSVFNANANANANA
D1-35_01655855yeaD_1COG0676Putative glucose-6-phosphate 1-epimeraseATGCATGAGCATCCACTACAACGCTTTTTCAGATCCTTGCGCGAGCGTCCGGTGTTTGCGTGGGAGCGCTATCAGCAGCGCGATGTGTTGGTGATCGACCACCCGTTGTGCCAGGCGGTGTTCAGTCGCCAGGGCGCGCAGTTGCTGCACTTCCAGCCGCGCGGGCAGAAGCCGTGGTTGTGGTGCGCAGCCAGGTGGCCGCAAGTCGGGGCGATTCGCGGCGGGGTGCCGGTGTGTTGGCCATGGTATGGCCGTCATCCAAGTGAAAACGCCTGGCCCTCCCATGGTTGGGCGCGATTGATCGACTGGAAATTGCTCGAGAGCAGCAGCGACGAAGAGGGCGTCCACCTGCATTGGCAGTTGCAATTGTGTGACTGGCAGGTGGACCTGCATGCCGACCTGGGTGAGCGCATGGAACTGCGCTTGAGCACCGAACATCAGGACAGCCTGCCCTGCCAGTTGAGCCAGGCCTTGCACGCCTATTGGCGTATTGGTGACGTTGGCGAGGTAGCGCTGTCTGGCCTCGACGGCGCCCAGGGTTACGACCAGTTGAACCGGGCGGTTTGCCAGCAGGAGGGCGAGTTGCGAGTGGAGGGTGGCTGCCAGCGAGTGTTCCAGCATGAGGGCGAATTGCAGCTCAAGGATCACGCCTGGCAACGCGAGCTGCGCATCGACACCGGCGACAGCGCCGATACGGTGGTGTGGCATCCCGGCGCACGGCCACTGTTGGGTGTGAGCTGGGATGAAGTGAATGAATTCGTCTGCGTCGAAGCGGCCAGCGGCGGTACCGGGAGCCTGTGCCTGGCGCCGGGTGAGCGGGCGCATTTGAGTTTGCAGGCGCGGGTGGGGGTTTAGMHEHPLQRFFRSLRERPVFAWERYQQRDVLVIDHPLCQAVFSRQGAQLLHFQPRGQKPWLWCAARWPQVGAIRGGVPVCWPWYGRHPSENAWPSHGWARLIDWKLLESSSDEEGVHLHWQLQLCDWQVDLHADLGERMELRLSTEHQDSLPCQLSQALHAYWRIGDVGEVALSGLDGAQGYDQLNRAVCQQEGELRVEGGCQRVFQHEGELQLKDHAWQRELRIDTGDSADTVVWHPGARPLLGVSWDEVNEFVCVEAASGGTGSLCLAPGERAHLSLQARVGVNANANANANA
D1-35_01656870hexR_2COG1737HTH-type transcriptional regulator HexRATGGACCGCGTGCGAAATCTACTGGAGCAGATCCAGAGTCGCCTGGAAGACCTGAACAAGGCCGAGCGCAAGGTGGCCGAGGTGATCCTGCTCAACCCGCAGCAGGCGACCCGCTTCAGCATCGCCGCCCTCGCCCAGGCCGCTTCGGTCAGCGAACCGACCGTCAACCGCTTCTGCCGCTCGTTCGGCGTCAGCGGCTATCCGGAACTCAAGCTGCAACTGGCCCAAAGCCTGGCCAGCGGCGCGGCCTATGTCAGCCGTGCGGTCGAGGCCGATGACAATCCGGAAGCCTATACCCGCAAAATCTTTGGCAGTGCCATCGCTTCATTGGACAGCGCCTGCCAGGCCCTTGATCCAAATTTGATCAGTCGCGCCGTGGATCTGCTGATCCAGGCCCGCCAGATCCACTTCTTCGGCCTAGGCGCCTCGGCCCCCGTGGCGCTGGATGCCCAGCACAAGTTTTTCCGCTTCAATCTGGCGGTGACCGCCCATGCCGATGTGCTGATGCAGCGCATGATCGCGTCGGTGGCCCATACCGGCGAGCTGTTCGTGATCATCTCCTACACCGGGCGTACCCGCGAACTGGTGGAAGTGGCGCGCATCGCCCGGGAAAACGGCGCATCGGTGCTCGGCCTGACCACCGAAGGCTCGCCGCTGGCCAAGGCGAGCACCTTGAGCCTGAACATCCCTTTGCCGGAAGACACCGACATCTACATGCCGATGACATCGCGGATCATCCAGCTCACCGTGCTCGATGTGCTCGCCACCGGCATGACCCTGCGCCGGGGCGTGGATTTCCAACCGCATTTGCGCAAGATCAAGGAAAGCCTGAATGCCAGCCGGTATCCGGTTGGGGATGAGTTCAACTGAMDRVRNLLEQIQSRLEDLNKAERKVAEVILLNPQQATRFSIAALAQAASVSEPTVNRFCRSFGVSGYPELKLQLAQSLASGAAYVSRAVEADDNPEAYTRKIFGSAIASLDSACQALDPNLISRAVDLLIQARQIHFFGLGASAPVALDAQHKFFRFNLAVTAHADVLMQRMIASVAHTGELFVIISYTGRTRELVEVARIARENGASVLGLTTEGSPLAKASTLSLNIPLPEDTDIYMPMTSRIIQLTVLDVLATGMTLRRGVDFQPHLRKIKESLNASRYPVGDEFNPGPT0017985_428DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017985-hexR|yebK-K19337NANA
D1-35_016571473zwf_1COG0364Glucose-6-phosphate 1-dehydrogenaseATGCATTCGATTACGGTTGAACCGTGCACCTTTGCCTTGTTCGGCGCGTTGGGCGACCTGGCGTTGCGCAAGCTGTTTCCTGCCCTTTATCAGCTCGATGGTGCCGGCCTGTTGCATGAGGACACGCGAATTTTCGCGCTGGCCCGCGAACCTGGTAGCGAACAGCAGCACCTGACGTTCATCGCGACCGAGCTGCGTCGCTATGTGGGCGAAAAAGACCTCGACGAAACCGTGATCGAGCGCTTCCTGGCGCGGCTGACGTATCTGCATGTGGATTTTCTCAAGGCTGACGATTACGTCGCGCTTGCCGAGCAGGTCGGCCAGGCCCAGCAGCAAGTCATCGCCTATTTCGCCACGCCGGCGGCGGTCTACGGCGCGATCTGCGAGAACCTGGCGAAAGTCGGCTTGAGCGAGAACACCCGCGTCGTATTGGAAAAACCCATCGGCTCGGACCTGGAATCGTCGCGCAAGGTCAATGACGCCGTGGCGCAGTTCTTCCCGGAGAACCGCACCTACCGCATCGACCATTACCTGGGCAAGGAAACAGTCCAGAACCTGATCGCGTTGCGTTTCGCCAACAGCCTGTTCGAAACCCAGTGGAACCAGAATTACATCTCCCACGTGGAAATCACCGTGGCCGAGAAGGTCGGCATCGAAGGCCGCTGGGGCTATTTCGACAAGGCCGGCCAACTGCGCGACATGATCCAGAACCACTTGCTCCAGTTGCTGTGCCTGATCGCCATGGACCCGCCGGCCGACCTGTCGGCCGACAGCATCCGTGACGAGAAGGTCAAGGTGCTCAAGGCCCTCGCACCGATCAGCCCGGAAGGCTTGACCACACAAGTGGTGCGCGGCCAGTACATCGCCGGCCACAGTGAAGGCAAGGCCGTTCCCGGCTACCTGGAAGAACCCAATTCCAATACCCAGAGCGACACCGAGACGTTCGTCGCCCTGCGTGCCGACATTCGCAACTGGCGCTGGGCCGGTGTTCCGTTCTACCTGCGTACCGGCAAGCGCATGCCGCAGAAGCTGTCGCAGATCGTGATTCACTTCAAGGAACCGTCCCACTACATCTTCGCCCCCGAGCAGCGTTTGCAGATCAGCAACAAACTGATCATCCGGCTGCAACCGGACGAAGGCATTTCCTTGCGGGTGATGACCAAGGAGCAAGGCCTGGACAAGGGCATGCAATTGCGCAGCGGTCCGCTGCAACTGAACTTCTCCGACACCTATCGCAGCGCGCGGATTCCCGATGCCTACGAGCGGTTGTTGCTGGAAGTCATGAATGGCAATCAGAACCTGTTTGTCCGTAAAGATGAAATCGAAGCCGCGTGGACGTGGTGCGACCAGCTGATTGCCGGCTGGAAGAAGTCCGGCGATGCGCCCAAGCCGTATGCCGCCGGGTCATGGGGGCCGATGAGCTCCATCGCACTGATCACGCGGGACGGGAGGTCATGGTATGGCGATATCTGAMHSITVEPCTFALFGALGDLALRKLFPALYQLDGAGLLHEDTRIFALAREPGSEQQHLTFIATELRRYVGEKDLDETVIERFLARLTYLHVDFLKADDYVALAEQVGQAQQQVIAYFATPAAVYGAICENLAKVGLSENTRVVLEKPIGSDLESSRKVNDAVAQFFPENRTYRIDHYLGKETVQNLIALRFANSLFETQWNQNYISHVEITVAEKVGIEGRWGYFDKAGQLRDMIQNHLLQLLCLIAMDPPADLSADSIRDEKVKVLKALAPISPEGLTTQVVRGQYIAGHSEGKAVPGYLEEPNSNTQSDTETFVALRADIRNWRWAGVPFYLRTGKRMPQKLSQIVIHFKEPSHYIFAPEQRLQISNKLIIRLQPDEGISLRVMTKEQGLDKGMQLRSGPLQLNFSDTYRSARIPDAYERLLLEVMNGNQNLFVRKDEIEAAWTWCDQLIAGWKKSGDAPKPYAAGSWGPMSSIALITRDGRSWYGDIPGPT0017380_4042DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0017380-zwf-K00036NANA
D1-35_01658714pgl_16-phosphogluconolactonaseATGGCGATATCTGAATTGAAACTGCCCGAGGGCGTCACGGCCCTTGAGTTCAAGAGCCCGGTGCTGCTGGCGGAAAACCTCGCGCTGAACGTGGCGCAGCAGTTGCGCGCGGCGATCGATGCTCGCGGTGCGGCGACTCTGGTGGTGTCTGGCGGTCGCAGCCCGGTGGCATTTTTCCAGAACCTGTCCAAGCAGACGCTGGACTGGTCGAAGGTGGTGGTGAGCCTGGCCGATGAGCGCTGGGTGCCGGTTGAACATGCCGACAGCAATGCCGGTCTGCTCAAGCGTTACCTGCTTCAGGGCGCGGCGGCCAAGGCGCAGTTCCTGAGCCTGTACAGCGCCAGCGCCAACCTGGAGGCCGCGGCTGAACAGGCGGATCGTCTGTTGGCCGAGCTGCCGCCGATTGATGTGCTGGTACTGGGCATGGGGGACGATGGGCATACCGCCTCGCTGTTTCCCGACAGCCCGAACCTGGCCGAGGCCCTGGATGAAAAGGGCGCTCGCCGTTGCTGGCCGATGCTCGCGCCAACCGTCCCGCACCAGCGCCTGACCATGAGCCGCGCATTGCTGGCCTCGGCGAGGCACAAGGTGCTGTCGATTTCCGGTCAATCGAAGTTGACCACCCTGAACGCCGCGGCGGCCGATGACAACGTCGCCGAAATGCCGATCCGCGCGTTTTTGCAACCTACGTTAGAGATTTACTGGTGCCCATGAMAISELKLPEGVTALEFKSPVLLAENLALNVAQQLRAAIDARGAATLVVSGGRSPVAFFQNLSKQTLDWSKVVVSLADERWVPVEHADSNAGLLKRYLLQGAAAKAQFLSLYSASANLEAAAEQADRLLAELPPIDVLVLGMGDDGHTASLFPDSPNLAEALDEKGARRCWPMLAPTVPHQRLTMSRALLASARHKVLSISGQSKLTTLNAAAADDNVAEMPIRAFLQPTLEIYWCPNANANANANA
D1-35_01659666edaCOG08002-dehydro-3-deoxy-phosphogluconate aldolaseATGACAAACCCATCCCCGACCGTTTCCATGGCGGATAAAGTAACGCTGATCGACAGCCTCTGCGCCAAGGCGCGGATCTTGCCGGTGATCACTATTGCCCGTGAGCAGGACATCCTGCCGCTGGCCGATGCCCTGGCCGCCGGTGGCCTGACGGCGCTGGAAGTGACCTTGCGCTCGCAGTACGGCCTCAAGGCCATCCAGGTGCTGCGCGAGCAGCGTCCGGAACTGGTGACCGGCGCCGGCACGGTGCTCGATCGCCATATGCTGGCCGCCGCCGAGGCCGCCGGTTCGCAATTCATCGTGACCCCGGGTATTACCCGCGACTTGCTGGAGGCTAGCGTCCAGAGCCCGATTCCGTTGTTGCCGGGAATCAGCAATGCCTCGGGCATCATGGAAGGCTACGGGCTGGGTTATCGCCGCTTCAAGTTGTTCCCGGCGGAAGTCAGCGGTGGCGTGGCTGCCATCAAGGCCCTGGGCGGTCCCTTCGGCGAAGTGAAATTCTGCCCGACTGGCGGCGTCAGTCCGGCCAATATCAAGAGCTACATGGCGTTGAAGAACGTGATGTGCGTGGGCGGCAGCTGGATGCTGGATCCGGAGTGGATCAAGAACGGCGACTGGGCCCGCATCCAGGAATGCACCGCCGAGGCCCTGGCGCTGCTGGACTGAMTNPSPTVSMADKVTLIDSLCAKARILPVITIAREQDILPLADALAAGGLTALEVTLRSQYGLKAIQVLREQRPELVTGAGTVLDRHMLAAAEAAGSQFIVTPGITRDLLEASVQSPIPLLPGISNASGIMEGYGLGYRRFKLFPAEVSGGVAAIKALGGPFGEVKFCPTGGVSPANIKSYMALKNVMCVGGSWMLDPEWIKNGDWARIQECTAEALALLDPGPT0002060_530DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0002060-eda-K01625NANA
D1-35_016601188cefD_1COG0520Isopenicillin N epimeraseATGCCCGAAAACACCCTGCGCGCCCATGATGAAGCTTTCTGGCAGACCTTCGGCGACCGCTACGACGTCGAGCCCGAGGGCCCGCTCAACCTGGAAAACGGCTACTTCGGGCGGATGTCGCGTACCGTGGTCGAGGAGTACCAGCGCAACATCGAATTCGTCAATCGCGGCAACTCGGTGTACGTACGTCAGCATTTCGACCGGGAACATGGCGAAGCGATTCGCCGCCAAGTGGCGCAACTGATTCACGTCCCCTCCTCTGCCGTGGCGCTGGCCACCAGCGCGGTGGACGCCCTGCAGACGCTGATTCGCAATTACAACGGCCTCAAGCCTGGCGATCAGGTGCTGATAAGCGACGTCGAGTACGAGTCAGTCAAAAGCGCGATGCGCTGGCTGGCTCGCCAGCGAGGGGCGAAGATCATCGAACTGGTCCACCCGCATCCCGCCAGTTTCGAAAGCCTAGTGGGCACCTATCGGGAAACCTTCATTCGTTACCCGCGCCTGAAGCTGATGGCGCTGACTTACGTCAACCACCTGACCGGCCTCGTCATGCCGGTGAAGGCGATTGCCGAGGCGGCGCGGGAGTTCGATGTCGACATCATTCTCGACGGCGCGCACGCCCTGGGTCAGATCGAGTTCAACCTGAAGAAGCTGGGTATCCAGTTCGCCGGTTTCAACTTGCAGAAGTGGATTGGCGGCCCGCTGGCCCTGGGCTTTCTCTATATCGCTCCAGAGCGGCTGGTCGACATCGATCCGGACATGGACGAAGCCAATTACCCCGCCACCGATGTGCGCTCACGCACACCCCACAGCACGCCCAACATCCCTGCCCTGCTGACGCTGCCATTGGTCTTTGAAGAACACCGCACCCTGGGCGGCGCGTCGGCCAAAGGTGCCCGACTCTGCTACTTGCGGGACCTTTGGGTGAACGCGGTACGTGATGTGCCCGGCATTGAAGTCATGACTCCGGACGATCGGCGGCTCTATTGCGGCATCACCTCGATGCGCTTCACCGCCCAGCCCGATCAGCAAGTCATGGCCGATCGGCTGCTCAAGGAATATGAAATCTTTACCGTGGTGCGCAAGACCAGCGTCGGCCCGTGCATCCGCATCACGCCTGGGTTGATTACCTTGGCGCGGGATATCGAGCGGTTGACCCAGGCGCTTATCCACCTGAGCAACACATAAMPENTLRAHDEAFWQTFGDRYDVEPEGPLNLENGYFGRMSRTVVEEYQRNIEFVNRGNSVYVRQHFDREHGEAIRRQVAQLIHVPSSAVALATSAVDALQTLIRNYNGLKPGDQVLISDVEYESVKSAMRWLARQRGAKIIELVHPHPASFESLVGTYRETFIRYPRLKLMALTYVNHLTGLVMPVKAIAEAAREFDVDIILDGAHALGQIEFNLKKLGIQFAGFNLQKWIGGPLALGFLYIAPERLVDIDPDMDEANYPATDVRSRTPHSTPNIPALLTLPLVFEEHRTLGGASAKGARLCYLRDLWVNAVRDVPGIEVMTPDDRRLYCGITSMRFTAQPDQQVMADRLLKEYEIFTVVRKTSVGPCIRITPGLITLARDIERLTQALIHLSNTPGPT0010995_239DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-PENICILLIN_METABOLISM,PGPT0010995-cefD-K04127NANA
D1-35_01661237hypothetical proteinATGAATCCGCAAAAGCTTGAACTGCTGGTGACGCGCCAGATGCCCTTCGGCAAATACAAGGGCCGAATCCTTGCCGACCTGCCGGGCCAGTACCTGAACTGGTTTGCCCGGGAGGGTTTTCCCCACGGAGAACTGGGCGCTTTGCTGGCGCTGATGCAGGAGATCGACCACAACGGTCTGTCGGACCTGCTGGATCCGCTGCGCGCCAAACACGGCCTGCCCAAACCACGCCATTGAMNPQKLELLVTRQMPFGKYKGRILADLPGQYLNWFAREGFPHGELGALLALMQEIDHNGLSDLLDPLRAKHGLPKPRHNANANANANA
D1-35_01662465hypothetical proteinATGACTGACATCAATAAAGAATCCATCTCTGTCTTGAACGACCTGATCGAGACCAGCAAGGATGGCCAGGAAGGATTCAAGACCTGCGCTGAAGACATCAAGCATCCAGAACTCAAGGCCCTGTTCGTTAAACGCGCGGCCGATTGCGCAACTGCCGCGGCCGAGCTGCAAGCCGCTGTGCGTTCGTTGGGCGGCGATCCGGAAACCTCCACCAGCGTCGCTGGCGACCTGCACCGTCGTTGGGTAGACGTAAAATCGATGTTTACCGGCAAGGATGAAGAAGCGGTCCTCAACGAAGCCGAACGCGGCGAAGACCATGCACTCAAGGCGTACAAGGAAGCCATCGAGAAGATCAACAAGCACAACCTGGTAGGTATTCGTGACCTGGTTGAGCGTCAGTACCACGGCGTGCAACGCAACCACGACCAGGTCAAGGCGCTGCGTAACCAGGCGCGTGCCAGCTGAMTDINKESISVLNDLIETSKDGQEGFKTCAEDIKHPELKALFVKRAADCATAAAELQAAVRSLGGDPETSTSVAGDLHRRWVDVKSMFTGKDEEAVLNEAERGEDHALKAYKEAIEKINKHNLVGIRDLVERQYHGVQRNHDQVKALRNQARASNANANANANA
D1-35_016632001aaeB_2p-hydroxybenzoic acid efflux pump subunit AaeBGTGCCCATTACCTTCCAGGCCTTGTTCGCCCCTGACCGCCTCGCCGTGCAGTTCGCCATCAAAACCGTGCTCGGCGGCGGCCTGGCGTTGTGGCTGGCGTTGCGCTGGGGCCTGGAGCAGCCGTCGTGGGCATTGATGACGGCGTTCATCGTCGCCCAGCCGCTGTCCGGCATGGTGGTACAGAAGGGCCTGGCGCGTTTGGTCGGTACTTTGGTGGGGACGATCATGTCGGTGGTGTTCATGGGATTGTTCGCCCAGGCACCGTGGTTGTTCTTGCTGGCGCTGGCGCTGTGGCTGGGTGTGTGCACGGGCTGTTCGACGCTGTTGCGCAGCGCCTGGTCGTATTCTTTCGTGCTGGCTGGCTACACGGTGGCGATCATTGCCTTGCCGGCCCTTTCCCATCCACTTGGGGTCTTCGATCAGGCCGTGGCGCGGTGCACCGAGATCAGCCTGGGCATTACCTGCGCCACGGCGGCCAGTGCCTTGCTCTGGCCGTTGCGGGTCGAACGACAACTGGCGGATCAGGCCCGTGCCGCCTGGCAGAGCGGCATGCAGGCGGCGCGTGCAACGTTGGCCGGCGATGCCCAGGCGCGCAAAGGCTTGCTCGAAATCCTCGGCAAGATCGTTGCGGTGGATGCCCAGCGCGAACACGCCTGGTTCGAAGGCAGCCTGGGCCGCCAGCGCGCCCGGGCCATCAGCGGCTTGAGCCAGAAACTGCTGATGTTGTTGCGTATTTCCCGTTCGGTGCGTCGGCAGTGGAAACAACTCGAACCTCAGGAAGCCGAAGCGCTCCAGCCGTGGATGGACGAGGTGCAGCAGGCGCTCGCTGCAGACAGCGCGACGCTGCAGGCCCTGCGGCCTCGGGTTCTGGATGCTTCTCATGACCTGCGGATCAGCTCGGCGCAAAGTTACTGCCTGGCTCGTTTCGCCTTGTTGCTCGATACCGCCCTGGCTGCCTGTGCCGCGCTCGCGGCCGTGCAGGAGGGCAGGGCCGCCGCCGATCCGCCGCGCACGCTGGCGCCGCATCGTGATCTGTCCCTGGCCATGGTATTCGGCGCCCGCAGCGCCCTGGCATTCCTGGCGGTAGCCTGTTTCTGGCTGGCGACCGCCTGGCCCGCCGCATCCGGTGCGCTGTTGCTCACCTGCGTGGTGTGCAGCCTGTTTGCCAGCCGCGAAAACGGTGCGCAGATCGGCATGAGTTTCCTGCGGGGTATTTTCCTCGCAGTGCCGACGGCGTTTGTCATTGGCGAGATTTTCCTGCCGCAATGGAGCAGTTTCGCCATGCTGTGCATGGCCATGGGCGTGCCGTTGTTCCTGGGGGCGCTGTGCATGGCCAAGCCGCCGCTCTACGCCACGGCCACCTCGTTCTGCCTGCACTTTGTGGTGCTGGTCTCGCCGCTCAATGCGATGAAGTACGACGTTTCGGCATTCTTCAACAACGCCCAGGCAATGATGATCGGCGTCGGCGCGGCGGTGCTGGCGTTCAAGCTGCTGATCCTGCGCAACCCGGCCTGGCATAGCCGTCGGCTGCTGGCCGCGACGCTGGACGATCTGGTCAGGCTGACCCATCGCAATCTGCGTGGTGCTGAAAGCTGGTTCGGTGGCCGCATGGCTGACCGGCTGCTGCAACTGGCGCGGCATTATCCCGAGCTGCCGGTGCCGGCGCGCAGCCGTTGGGACGACGGCTTGCTGGGCCTGGACGTCGGTGACGAGTTGCTGCATCTGCGCCTGAGTCTGGCCGTTGCCCAGATACCCGACAGCCCGGCCCAGCGCGAATATTTCGAAACCCTGGAGCAGGCGCTGGAACACGGCCCCGGCGGCGATCAGGCCGAGGCTTTGGCCCAGGCAAGCGACGAATATCTGCGGGTGCTGTCGCAGCAACCGTCCAGCGATGCGCTGAAGCTCGCCCAAGGCGCGGTGGTGCAATTGCAGAACAGCTGGCGCGCCTGGTGCCGCCAGCACGAATTTGAAGAAGGGAAACATAGCCATGGGCTTGCGTGAMPITFQALFAPDRLAVQFAIKTVLGGGLALWLALRWGLEQPSWALMTAFIVAQPLSGMVVQKGLARLVGTLVGTIMSVVFMGLFAQAPWLFLLALALWLGVCTGCSTLLRSAWSYSFVLAGYTVAIIALPALSHPLGVFDQAVARCTEISLGITCATAASALLWPLRVERQLADQARAAWQSGMQAARATLAGDAQARKGLLEILGKIVAVDAQREHAWFEGSLGRQRARAISGLSQKLLMLLRISRSVRRQWKQLEPQEAEALQPWMDEVQQALAADSATLQALRPRVLDASHDLRISSAQSYCLARFALLLDTALAACAALAAVQEGRAAADPPRTLAPHRDLSLAMVFGARSALAFLAVACFWLATAWPAASGALLLTCVVCSLFASRENGAQIGMSFLRGIFLAVPTAFVIGEIFLPQWSSFAMLCMAMGVPLFLGALCMAKPPLYATATSFCLHFVVLVSPLNAMKYDVSAFFNNAQAMMIGVGAAVLAFKLLILRNPAWHSRRLLAATLDDLVRLTHRNLRGAESWFGGRMADRLLQLARHYPELPVPARSRWDDGLLGLDVGDELLHLRLSLAVAQIPDSPAQREYFETLEQALEHGPGGDQAEALAQASDEYLRVLSQQPSSDALKLAQGAVVQLQNSWRAWCRQHEFEEGKHSHGLANANANANANA
D1-35_01664207hypothetical proteinATGGGCTTGCGTGAATGGTCGATTGGCGGCGTGCTGCTCAGCCCGTTCCTGATTTATGTGGTCCTGGCCTTGCTGGCAACCGGGGCGCTGCGCCTGTTGCTCGGCCTGTTGCCGGTCGGGCGCTGGATCTGGCATGAAGCCTTGTTCGACTGCGCCCTGTACGTCTGTGTCCTGACTGTCATTACCCTGGTCCTCGGACCGTTATAAMGLREWSIGGVLLSPFLIYVVLALLATGALRLLLGLLPVGRWIWHEALFDCALYVCVLTVITLVLGPLNANANANANA
D1-35_01666864aaeA_2COG1566p-hydroxybenzoic acid efflux pump subunit AaeAATGCGTACACCCGTACGTGTCGCCGTCACGCTGGGCGTGGTGGCCGTGGCGATCTTCGCCGGGTTTCATCTGTGGCAGTACTACATGCTCACGCCCTGGACCCGGGATGCGCGAATCCGTGCCGACGTGGTGGTGGTCGCCCCTGACGTATCCGGTTGGGTGCGCGAACTCAAGGCCGTGGACAACCAGCAGGTCAAGGCTGGCGACCTGTTGTTGAGCATCGACCGCGAACGCTTCGAGGCCGCGCTGGAAAAGGCTCGCGCGGTGGTCCAGACCCGTCAGCAGCAGCTGAGCCTGCGTGAACACGAAGCCAGCCGCCGCGCCGCCCTGGGGCCTCAGGCGATCAGCGCCGAGCTGCGGGAAAATGCCCAGATCAACGCCGGCATTGCCCGTGGCGAACTGCGCGAGGCCCAGGCGCAGGCCAAGGTCGCCGAGCTGAACCTGGCCCGCAGCCAGGTCCTGGCCCCACGCAGTGGTCATATCACCAATCTGCGCCTGGCCGAAGGCAACTACGTCAACGCCGGGCAACCGGTGATGGCGCTGATCGATGATTCGACTTTCTACGTGCAGGCCTATTTCGAGGAAACCAAACTGCCGAGGATCCGCGTGGGCGATCCGGTCAAGGTCTGGTTGATGAGCGCCGACCATGCGCTGGACGGCCATGTGGAAAGCATCAGCCGCGGTATCACCGACCGCAACACCAACCCCGATGCGCAATTGCTGGCAGAGGTCGAACCGACCTTCAACTGGGTGCGCCTGGCCCAGCGGATCCCGGTGCGGATCAAGCTCGACAAGGTGCCGGAAGGGGTGAGCCTGAGCGCGGGGATGACGGCGAGTGTGCAGGTGCAAGAGCGGCTGCAATAAMRTPVRVAVTLGVVAVAIFAGFHLWQYYMLTPWTRDARIRADVVVVAPDVSGWVRELKAVDNQQVKAGDLLLSIDRERFEAALEKARAVVQTRQQQLSLREHEASRRAALGPQAISAELRENAQINAGIARGELREAQAQAKVAELNLARSQVLAPRSGHITNLRLAEGNYVNAGQPVMALIDDSTFYVQAYFEETKLPRIRVGDPVKVWLMSADHALDGHVESISRGITDRNTNPDAQLLAEVEPTFNWVRLAQRIPVRIKLDKVPEGVSLSAGMTASVQVQERLQPGPT0023615_41DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYBENZOIC_ACID_GALLATE_RESISTANCE,PGPT0023615-aaeA-K15548NANA
D1-35_01667471phaJCOG2030(R)-specific enoyl-CoA hydrataseATGACCCAGGTTACCAACATCCCTTACGAAGCCCTCGAAGTCGGCCAGACCGCCAGCTACAGCAAGACCGTCGAAGAGCGCGATATCCAGCTGTTCGCCGCCATGTCCGGCGACCACAACCCGGTGCACCTGGACGCCGAATTCGCCGCCGCCAGCATGTTCAAGGAACGCATCGCCCATGGCATGTTCAGCGGTGCGCTGATCAGCGCGGCGGTGGCGTGCGAGCTGCCTGGGCCGGGCACCATCTATATCGGCCAGCAGATGAGCTTTCAGAAACCGGTGAAGATTGGCGACACCCTGACCGTGCGCCTGGAAATCCTCGAGAAACTGCCGAAGTTCCGCGTGCGCATCGCCACGCGCGTGTTCAATCAGCGCGATGAACTGGTGGTGGACGGCGAGGCCGAGATCCTGGCTCCGCGCAAGCAGCAGACTGTTACGTTGCCGACGTTGCCGGCGATCAGCATCGGCTGAMTQVTNIPYEALEVGQTASYSKTVEERDIQLFAAMSGDHNPVHLDAEFAAASMFKERIAHGMFSGALISAAVACELPGPGTIYIGQQMSFQKPVKIGDTLTVRLEILEKLPKFRVRIATRVFNQRDELVVDGEAEILAPRKQQTVTLPTLPAISIGPGPT0014741_364DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_RELATED_GENESCE-BIOFILM-POLYHYDROXYBUTYRATE_PRODUCTION,PGPT0014741-phaJ|croR-K17865NANA
D1-35_01668945COG2267Monoacylglycerol lipaseATGATCCACCAAACGTTCTGGCTGACCGCGACCGATCACAGGCGCATCCTCGTCAACCAATGGTTGCCCGAAACCGCCCCGCAGGCCGTGCTCATGCTGGCCCACGGCATGGCCGAACACAGCGCTCGTTATGGGCGCCTGGCCCAGGCCTTGTGCGATGAAGGTTATGGCGTCTACGCACCGGACCTGCGCGGCCATGGCAAGACCGGCGAGGAAACAGTCCTGGGGCATTTTGCCGACGAGGACGGCTGGGCCAAGGTGGTCGGCGATCTCGCGAGCCTCAATCAGCACATCGGCCAGCAACATCCAGAAATACCAATTCTCCTGCTGGGCCATAGCATGGGCAGCTATATCGCCCAGGGTTACCTGCTGCACCACAGCGCCAGCCTGCACGGGGCGATTCTCAGCGGCTCGAATTTCCAGCCCGTGGCGCTGTACCGCGCGGCACGCCTGATCGCCCGCCTCGAACGTCGACGCCAGGGAGCCACGGGGCGTAGCGCGCTCATCGAGTGGCTGTCATTCGGCAGTTTCAACAAAAAATTCAAACCGGTGCGCACGCCCTTCGACTGGCTCAGTCGCGACCCGACCGAAGTGGACAAATACGTCCAGGACCCGCTGTGCGGCTTTCGTTGTACCAATCAGCTGTGGATCGACCTCCTCGGCGGCTTGCAGCAGATCAGCAAAGCGTCCAATCTCGCGCAGATCGATCCGGGCCTGCCGTTGCTGGTGATTGGCGGCGAATGTGATCCGGTGAGCGAAGGCAAGCGTCTGAAAGATCTGGCCGATGCCCTGCGCGACGCCGGCAATCAACATCTGCAATTGACGATCTACCCGCAGGCCCGGCACGAACTGTTCAATGAAATCAACCGCGATGAAGTGACGGCCGACGTGCTGGCCTGGATTGCCCAGGCGCTGAGCCACCAGCGGCCGCCACGTAGCGAGTAGMIHQTFWLTATDHRRILVNQWLPETAPQAVLMLAHGMAEHSARYGRLAQALCDEGYGVYAPDLRGHGKTGEETVLGHFADEDGWAKVVGDLASLNQHIGQQHPEIPILLLGHSMGSYIAQGYLLHHSASLHGAILSGSNFQPVALYRAARLIARLERRRQGATGRSALIEWLSFGSFNKKFKPVRTPFDWLSRDPTEVDKYVQDPLCGFRCTNQLWIDLLGGLQQISKASNLAQIDPGLPLLVIGGECDPVSEGKRLKDLADALRDAGNQHLQLTIYPQARHELFNEINRDEVTADVLAWIAQALSHQRPPRSENANANANANA
D1-35_016691689fadD_1COG0318Long-chain-fatty-acid--CoA ligaseATGCAGCCTGATTTCTGGAATGACAAACGCCCGACCGGCGTGCCCTCGGACATCGACCTGGGTGCCTACAAGTCGGTTGTCGAGGTGTTCGAGCGTTCCTGCAAGAAATTTGCCGACCGTCCGGCCTACAGCAACATGGGGGTGACCCTCACCTACGCCGAGCTGGAGCGCTACAGCGCGGCCTTTGCCGGTTACCTGCAAGCCAATACCGACCTGGCGCCGGGCGATCGCATCGCCGTGCAGATGCCCAACGTCCTGCAATACCCGATCGCCGTCTTCGGTGCCCTGCGCGCCGGCCTGGTCGTGGTCAATACCAACCCGCTGTACACCCCGCGGGAAATGCGTCATCAGTTCAAGGACTCCGGTGCCCGGGCGCTGGTGTACATGAACCTGTTCGGGCTGAAGGTCCAGGAAGTGCTGCCCGACACCGACCTGCAATACCTGATCGAAGCGAAGATGGGCGACTTGATGCCTACCGCCAAAGGCTGGCTGGTGAATACGCTGGTCAGCAAGGTCAAGAAAATGGTGCCGGCCTATTCGCTGCCCCAGGCCATTTCCTTCAAGAGCGCCTTGCGCCTTGGGCGCGGCCAGGGCATCAAGCCCCTCAACGTCAGCCTCGATGACATCGCCGTGCTGCAATACACCGGCGGCACCACGGGGCTGGCAAAAGGCGCGATGCTGACCCACGGCAACCTGGTCGCCAACATGCAGCAGGCCCGGGCGTGCCTGGGGCAGATCGGCGATGACGGCCAGCCGCTGTTGCGCGAGGGCCAGGAAGTCATGATCGCGCCGTTGCCGCTGTACCATATCTACGCGTTCACGGCGAACTGCATGTGCATGATGGTCACGGGCAACCACAACGTGTTGATCACCAATCCCCGGGACATCGGTGGCTTCATCAAGGAACTGAAGAACTGGCGGTTCTCGCTGTTGCTGGGGCTCAACACGCTGTTCGTGGCGCTGATGGACCATCCTGATTTCAAGACGCTGGATTTTTCCAACCTCAAGGTCACCAACTCAGGCGGCACCGCGCTGGTCAAGGCCACGGCCGAACGCTGGAAGCAGCTCACCGGCTGTGGCATCACCGAGGGCTACGGCCTGACGGAAACCTCGCCGGTGGCCAGTGCCAACCCTTACGGCGGCAAGTCGCGCCTGGGTACGGTGGGGCTGCCAGTGCCGGGTACGCTGATGAAGGTCATCAACGACGACGGCGTCGAGCTGCCCCTGGGCGAGCGCGGCGAGCTGTGCATCAAGGGCCCGCAGATCATGAAGGGCTACTGGAACAAGCCCGAGGCGACCGCCGAAGTGCTGGACAGCGAAGGCTGGTTCAAGTCCGGCGATATCGCGGTGATCGATCCCGACGGGTTTGTGCGCATCGTCGACCGCAAGAAAGACATGATCATTGTCTCGGGTTTCAATGTGTATCCCAACGAGATCGAGGACGTGGTCATGGCTCACCCGAAAGTCGCCAGTTGCGCGGTCATCGGCGTGCCGGACGAGCGTTCGGGGGAGGCGGTGAAACTGTTCGTGGTGGCCCGTGAGGCGGGCGTCAGCCTTGAAGAACTCAAGGCCTACTGCAAGGAGAACTTCACCGGCTACAAGATCCCCAAGCACATCGTATTGCGTGACTCGCTGCCGATGACGCCGGTGGGCAAGATCCTGCGGCGGGAGCTGCGCGATATCGCCTGAMQPDFWNDKRPTGVPSDIDLGAYKSVVEVFERSCKKFADRPAYSNMGVTLTYAELERYSAAFAGYLQANTDLAPGDRIAVQMPNVLQYPIAVFGALRAGLVVVNTNPLYTPREMRHQFKDSGARALVYMNLFGLKVQEVLPDTDLQYLIEAKMGDLMPTAKGWLVNTLVSKVKKMVPAYSLPQAISFKSALRLGRGQGIKPLNVSLDDIAVLQYTGGTTGLAKGAMLTHGNLVANMQQARACLGQIGDDGQPLLREGQEVMIAPLPLYHIYAFTANCMCMMVTGNHNVLITNPRDIGGFIKELKNWRFSLLLGLNTLFVALMDHPDFKTLDFSNLKVTNSGGTALVKATAERWKQLTGCGITEGYGLTETSPVASANPYGGKSRLGTVGLPVPGTLMKVINDDGVELPLGERGELCIKGPQIMKGYWNKPEATAEVLDSEGWFKSGDIAVIDPDGFVRIVDRKKDMIIVSGFNVYPNEIEDVVMAHPKVASCAVIGVPDERSGEAVKLFVVAREAGVSLEELKAYCKENFTGYKIPKHIVLRDSLPMTPVGKILRRELRDIAPGPT0008380_9627DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897NANA
D1-35_016701692fadD_2COG0318Long-chain-fatty-acid--CoA ligaseATGATTGAAGACTTTTGGAAGGATAAGTACCCAGCTGGGATTGCTGCCGACATCAATCCAGACGAGTATCCGAATATTCAGGCGGTGTTGAAGCAGTCCTGCCAACGCTTCGCCGACAAGCCGGCATTCAGCAACCTCGGCAAGACGATCACCTACGGTGAACTCTACGAATTGTCCGGTGCCTTTGCCGCGTACCTGCAACAGCATACCGATTTGCAGCCGGGCGATCGAATCGCCGTGCAGCTGCCCAACGTTCTCCAGTATCCGGTGGCCGTTTTCGGCGCGATCCGCGCCGGGCTCATCGTGGTCAACACCAACCCGCTGTACACCGCGCGGGAGATGGAACACCAGTTCAACGACTCCGGCGCCAAGGCGCTGGTGTGCCTGGCCAACATGGCGCACCTGGCCGAGAACGTGGTGCCCAGGACCAGCGTCAAGCACGTCATTGTCACCGAAGTGGCCGACCTGCTGCCGCCGCTCAAGCGCCTGCTGATCAACAGTGTGATCAAGTACGTCAAGAAGATGGTCCCGGCTTACCATTTGCCCAAGGCCATCAAGTTCAACGACGTGTTGAGCAAGGGCCACGGCCAGCCGGTGAACGAAGCCAACCCCACCAGCGATGATGTGGCCGTTCTGCAATACACCGGTGGCACCACCGGCGTGGCCAAGGGCGCGATGCTGACCCACCGCAACCTGGTGGCGAACATGTTGCAGTGCAAGGCATTGATGGGCTCCAACCTCAATGAAGGCTGCGAAGTGTTGATCACGCCGCTGCCGCTGTACCACATCTATGCGTTCACCTTTCATTGCATGGCGATGATGCTGATCGGCAACCACAACATCCTGATCAGCAACCCGCGCGACTTGTCGGCGATGGTCAAGGAACTGTCGAAGTGGAAGTTCAGCGGTTTTGTCGGCCTCAACACGTTATTCGTGGCCCTGTGCAATAACGAAGCCTTCCGCAAGCTGGACTTCTCCGCACTGAAGGTGACCTTGTCCGGTGGCATGGCGCTGCAACTGGCAGCGGCCGAGCGCTGGAAGGCGGTCACCGGCTGCCCGATCTGCGAAGGCTACGGCATGACCGAGACCAGCCCGGTGGCTACCGTCAACCCGATCCAGCACATCCAGGTCGGCACCATCGGCATTCCGGTGCCATCGACGCTGTGCAAGGTCATCAATGACGCGGGCGTCGAATTGCCACTCGGTGAAATCGGTGAATTATGTGTGAAAGGTCCGCAAGTGATGAAGGGCTACTGGCAGCGCCAGGAGGCCACCGACGAGATCCTCGACGGTGAAGGCTGGCTCAAGACCGGTGATATCGCGCTGATCCAGCCGGACGGCTACATGCGCATCGTCGATCGCAAGAAGGACATGATCCTGATCTCCGGCTTCAACGTTTACCCCAACGAACTGGAAGACGTACTGGCCACCCTGCCGGGTGTGCTGCAGTGCGCGGCGATTGGCGTACCGGATGAAAAGTCCGGCGAGGCGATCAAGATTTTCATCGTCGTACGTCCAGGGGCCACGCTCACCAAGGAACAGGTGATGGAGCACATGCGCGCCAACGTCACTGGCTACAAAGTGCCCAAGGCCGTGGAGTTCCGCGATGCATTGCCGACCACCAACGTGGGCAAGATCCTGCGGCGCGAGTTGCGCGATGAAGAACTGAAGAAGCTGGGGCTGAAGAAGTAAMIEDFWKDKYPAGIAADINPDEYPNIQAVLKQSCQRFADKPAFSNLGKTITYGELYELSGAFAAYLQQHTDLQPGDRIAVQLPNVLQYPVAVFGAIRAGLIVVNTNPLYTAREMEHQFNDSGAKALVCLANMAHLAENVVPRTSVKHVIVTEVADLLPPLKRLLINSVIKYVKKMVPAYHLPKAIKFNDVLSKGHGQPVNEANPTSDDVAVLQYTGGTTGVAKGAMLTHRNLVANMLQCKALMGSNLNEGCEVLITPLPLYHIYAFTFHCMAMMLIGNHNILISNPRDLSAMVKELSKWKFSGFVGLNTLFVALCNNEAFRKLDFSALKVTLSGGMALQLAAAERWKAVTGCPICEGYGMTETSPVATVNPIQHIQVGTIGIPVPSTLCKVINDAGVELPLGEIGELCVKGPQVMKGYWQRQEATDEILDGEGWLKTGDIALIQPDGYMRIVDRKKDMILISGFNVYPNELEDVLATLPGVLQCAAIGVPDEKSGEAIKIFIVVRPGATLTKEQVMEHMRANVTGYKVPKAVEFRDALPTTNVGKILRRELRDEELKKLGLKKPGPT0008380_9353DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897NANA
D1-35_01671378hypothetical proteinATGAAACTCGATAAAAAGCAGGCCATCGCCCGCAGGAACCAGCAACTGGGCGGCGCCGTCCTGGGCGTTAACAATTGCCATTTCAGCGAACTGAACCGCAATCGCAACATCTTCTGGTTCGACATTCCGGTGGCCCGGCTGGCCATTGGTCAATACGAATGGATTCACCTGCTGCTGCACACCCCCGCCACCGATGAACTGCTGCACCTGAAAGTACCGACGGTGTTCCTGCGGGAAAAACTGGAAGGCCTGGAAGTACGCAACCAGGGCAAACGCAAGGCGGCCCTGAGCCTGGAACTGAGTGCCGACAAGGATTCCTACCTGCAAGACATGCGGCCGGGTGGCACCAACCTGGATTTTGCGCAGTTTCGGTTGTAGMKLDKKQAIARRNQQLGGAVLGVNNCHFSELNRNRNIFWFDIPVARLAIGQYEWIHLLLHTPATDELLHLKVPTVFLREKLEGLEVRNQGKRKAALSLELSADKDSYLQDMRPGGTNLDFAQFRLNANANANANA
D1-35_01672192hypothetical proteinATGAGTAGCACGAGCGATAAAGTGAAGGGCGTTGCCAACGAAGCCGTCGGCAACATCAAGCAAGGCGTCGGCAAGGCCACCGATAACGACCGCATGCGCGCCGAGGGCGTGGTCCAGGAGAAAAAGGGTGAAGCCCAGCAAAACGTGGGCAAGGCCAAGGATGCCGTCAAGAAAGGCGTCGACCAGGCGTAAMSSTSDKVKGVANEAVGNIKQGVGKATDNDRMRAEGVVQEKKGEAQQNVGKAKDAVKKGVDQANANANANANA
D1-35_01673951hypothetical proteinATGATGTTCCCGGCCTTGAAAGGCTTGCCCCTGCACCGCGTGATGATGCGCACGGTGACCGAATTTCTCGACGACGAGATGTCGACGTACGCCTCCGCACTGGCTTACCAGATGTTGTTTTCGCTGTTCCCCTTCATTCTTTTCCTGATAGCCCTGATCGGTTTTCTGCACCTGCCGGATTTTTTCTCCTGGCTGCGCCTGCAATCGGAACTGGTGCTGCCGCCACAGGCGCTGGAGCAGGTCAACCCGGTGATCGACCAGCTCCAGCAGTCCAAAGGGGGGCTGCTGTCGGTCGGTATCGTGATTGCGTTGTGGACCGCGTCGGCCGGCGTTCGGCTGATGATGAGCGCCATGAATGCCGCTTATGACGTGGTCGAAGGGCGTCCGGCCTGGAAGCGTTTTCCGCTGTCGATCCTGTACACCGTCGGCATTGCCGGCATGCTCCTGGCGGCCGCGGCGCTGATGGTGCTGGGGCCGCAGGTGATGGGCTGGATTGCCGCCCAGATCGGGCTGGAGGAATTCATTGTCACCGTCTGGACGCTCGCGCGCTGGCCGGTCATCGTGTTTTTGCTGATGGTCGCGGTGGCGCTGATCTATTACGTGATGCCCGACGTCAAACAGGAGTTTCGCTTCATCACGCCGGGCTCGGTATTGGCGGTGGTGGTCTGGATCATCGCGTCCCTGGGCTTCGCGTTCTACGTCAAGACCTTCGCCGACTACAACGCCATGTATGGCAGTATCGGCGCGATCATCGTGCTGTTGCTGTACTTCTATATCTCGGCGGCGGTACTGTTGCTCGGCGCTGAGATGAACGCGGTGATCGAGCACATGTCCGCCGAAGGCAAGGACCATGGCGAAAAGAGCCCCGGCGAGCATGAAAAACAGCATGTGTCGGGCCTTGGGCGCGACCATTCCATTCCTCACGATCACACTGACGAAGCCCGACCATGAMMFPALKGLPLHRVMMRTVTEFLDDEMSTYASALAYQMLFSLFPFILFLIALIGFLHLPDFFSWLRLQSELVLPPQALEQVNPVIDQLQQSKGGLLSVGIVIALWTASAGVRLMMSAMNAAYDVVEGRPAWKRFPLSILYTVGIAGMLLAAAALMVLGPQVMGWIAAQIGLEEFIVTVWTLARWPVIVFLLMVAVALIYYVMPDVKQEFRFITPGSVLAVVVWIIASLGFAFYVKTFADYNAMYGSIGAIIVLLLYFYISAAVLLLGAEMNAVIEHMSAEGKDHGEKSPGEHEKQHVSGLGRDHSIPHDHTDEARPPGPT0014525_4081DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0014525-yfkH-K07058NANA
D1-35_01674540def_1COG0242Peptide deformylaseATGATCCGCGAAATCCTGAAGATGGGCGACGAACGCCTGCTGCGCATCGCACCGCCGGTGCCGCCAGAAATGTTCGACAGTCCCGAGTTGTGGCAACTGATCGATGACATGTTCCAGACCATGGAAAGTGTCGGCGGTGTCGGCCTGGCGGCGCCGCAGATCGGCGTCGACCTGCAACTGGTGATCTTCGGCTTCGAGCACAGCGAGCGTTACCCGGATGCCGAGGCGGTGCCGCAGACCATCCTGATCAACCCGTTGATCACGCCGCTGAGCCCGCTGATGGAAGAGGGCTTCGAGGGCTGCCTGTCGGTGCCGGGCCTGCGCGGTGCGGTGGATCGCTACCAGCACGTCCGCTATGAAGGTTTCGACCCGAAGGGCGAGCCGATCGTGCGCACCGCCTCAGGCTTCCACGCGCGGGTAGTCCAGCATGAATGTGATCACCTGATCGGCCGCTTGTACCCATCGCGCATCACCGACTTCAGCAAGTTCGGGTTCACCGAGGTGATGTTTCCGGAGCTGGATCCCACCGCCGACGATTAGMIREILKMGDERLLRIAPPVPPEMFDSPELWQLIDDMFQTMESVGGVGLAAPQIGVDLQLVIFGFEHSERYPDAEAVPQTILINPLITPLSPLMEEGFEGCLSVPGLRGAVDRYQHVRYEGFDPKGEPIVRTASGFHARVVQHECDHLIGRLYPSRITDFSKFGFTEVMFPELDPTADDPGPT0008125_40DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008125-fmt-K00604NANA
D1-35_01675420hypothetical proteinATGTCCGAAATCCGTTATGCAGCGCTCGAAGAATCGTTCTGGCCGTTGATGAACAAATTTTATCGTGCCCACCAATCCTCGATGAAAGCCGTGCGCGACGCGCAACTCTGGGTGGCGCGGCGCGATGGAATCGTCGCGGCCCTGTGCCTGCGACCGGTGTCCGGTGGGCATTGGTTGACGGGGTTGTTCGTCGACCCGGCGTTCCGCGCGCAAGGCATCGCGGCGCGGTTGATAGAAGAGGCAGTGAAAGGCGTGGAGGCGCCGGTGTGGCTGTTCTGCCACCCTGACCTGCGCAGCTTCTATGAGCGACGCGGGTTCGCCTTCGATCCGGAACTGCCTTATGCAATGGCTGAACGGCTGAGCCGGTACGCACGGAGCAAGCCGATGATTGCGATGGGGTTGGTGCCTGCAAGACCCTGAMSEIRYAALEESFWPLMNKFYRAHQSSMKAVRDAQLWVARRDGIVAALCLRPVSGGHWLTGLFVDPAFRAQGIAARLIEEAVKGVEAPVWLFCHPDLRSFYERRGFAFDPELPYAMAERLSRYARSKPMIAMGLVPARPNANANANANA
D1-35_01676111hypothetical proteinATGGCCAAAGGCATGGATTCAAAAAAAGCGGCAAAGAAAAAACCAGCGAAGAGCGCCGATGAAAAACGCGCTGACAAAAAAGCCAAGAAGGTCAATCTGTTCGGTCATTGAMAKGMDSKKAAKKKPAKSADEKRADKKAKKVNLFGHNANANANANA
D1-35_01677534hypothetical proteinATGTTGGTCAGTGCAAATCAGCAAGCAATGATCCTGCCGCTCAAGCGCCCCGGCGAAGACCCGACAGCCGAAGCCGCCAGCGGCCTGCAAAGCGCCGCGCTGCAGGCGTTGCGAGATAACGTCCAGACCCAGGCCGGCCAGGCCAGCGCCCAAGTCCAGGACTCCGCCACTCGACACGCCACGCAACAGGTGAGCGCCGCCACCGCCGTCAGCGACAAGGTCGACGAAGCCTTCGCCAAGACCCGTGTGCAATTGCAGACGGTTGGCTCGCCAGCCTTCGCAGAGACCAGCTCTGCCATGGCGCAGTTCAAGGACTACATGAGCAAGACGCCTGAACAACGCTTGCGGGACAGCATCCTCAAGGAAATGGGCATCACCGAAGAAGAGTACGCCGCAATGCCGCCGGAGAAACAATTGGCGGTCGGCGAGGAAATTGCCCAGCGCATGCAGGACAAGTCGGCCATGGCGCAAATGGAAAAAGATCAGCAGAGCGAGAAAAACCCTGCCAAGAGCACTGTCATCGCCACCCTCTGAMLVSANQQAMILPLKRPGEDPTAEAASGLQSAALQALRDNVQTQAGQASAQVQDSATRHATQQVSAATAVSDKVDEAFAKTRVQLQTVGSPAFAETSSAMAQFKDYMSKTPEQRLRDSILKEMGITEEEYAAMPPEKQLAVGEEIAQRMQDKSAMAQMEKDQQSEKNPAKSTVIATLNANANANANA
D1-35_016781032gntRHTH-type transcriptional regulator GntRATGACCGCCCCTAAAAACGATAAGAATACTCGCACCACCGGTCGCCCCACGCTCAACGAAGTCGCACGCCTGGCCGGGGTCAGCCCGATCACCGCCTCCCGTGCGCTACGCGGCGTCAGCACCGTGGCCGTCGAACTGGTGGACAAGGTCCGCCAGGCCGCCCTGGAACTCAACTACGTCGTCAACCCCGCCGCCCGCGCCCTGGCTTCGGCCCAGAGCCATTCGGTGGTGGTGCTGGTGCCATCGTTGTCGAACCTGTTGTTCATCGACACTCTCGAAGCCATTCATCGCGTGCTGCGGCCCAAGGGCTTCGAAGTGGTGATCGGCAATTACCATTATTCCCGGGATGAAGAAGAGGACCTGCTGCGCAACTACATGGCCTATCAGCCGCGAGGACTGTTGCTCACCGGGTTCGACCGCACCGAAAGCGCTCGACGGATGATCGAGGCCAGCAACATTCCCTGCGTGTACATGATGGAACTGGACCCGGGCGCCGGCCTCAACTGTGTGGGCTTCTCCCAGCTCAAGGCCGGCGAAACCGCTGCCGAACACCTGGTTTCCCGAGGCCGCAAGCGCCTGGCCTACATCGGCGCGCAACTGGACCAGCGCACGCTGTTGCGCGGCGAAGGTTTCCGGCGCGCATTGCAGGAGGCCGGGCTCTACGACCCGGACCTGGAAATACTCACGCCGCGTCCGTCATCGGTGGGCCTGGGCGGCGAGTTGTTCCTGCAGTTGCTCGCCAGCCATCCGGACGTCGATGCGATCTTCTTCGGTAACGACGACCTGGCCCACGGCGCCCTGCTCGAAGCGTTGCGCAGCGGTATCAGGATCCCCGAGCAGGTTTCGATCCTCGGTTTCAACGACCTGCCCGCCTCGGCCCACATGGTGCCGCGCTTGAGCAGCATCAGCACCCCACGGGAAGCCATCGGCCGCCGTGCCGCTGAACAGATGCTCACCTTGATGGCTGGCAACCGCATCGCCCAGCCGGCGGTGGACCTGGGGTTCGAACTCAAGGTCCGCGAAAGCACCTGAMTAPKNDKNTRTTGRPTLNEVARLAGVSPITASRALRGVSTVAVELVDKVRQAALELNYVVNPAARALASAQSHSVVVLVPSLSNLLFIDTLEAIHRVLRPKGFEVVIGNYHYSRDEEEDLLRNYMAYQPRGLLLTGFDRTESARRMIEASNIPCVYMMELDPGAGLNCVGFSQLKAGETAAEHLVSRGRKRLAYIGAQLDQRTLLRGEGFRRALQEAGLYDPDLEILTPRPSSVGLGGELFLQLLASHPDVDAIFFGNDDLAHGALLEALRSGIRIPEQVSILGFNDLPASAHMVPRLSSISTPREAIGRRAAEQMLTLMAGNRIAQPAVDLGFELKVRESTNANANANANA
D1-35_01679534COG3265GluconokinaseATGAATAATCCAATCACCGCCCTGGTCATCATGGGCGTTGCCGGTTGCGGCAAAACCTGCGTCAGCCAGGCCCTGTGCCAACTGAGCGGCGCCACCGCCATTGAAGGCGACACTTTCCACCCCGCGGCCAACATCCAGAAGATGAGCGCCGGTATCCCCCTGAACGACGACGACCGTGCCGGCTGGCTCGACAGCCTGTGCGACGAGTTGCGCCGTGTCGACGCCGTGGGTGCGCGCCCGGTGCTGACCTGCTCGGCCCTCAAGCACAGTTATCGCGAGCGCCTGCGCAGCGCCTTGCCGGGCCTGGGCTTCGTATTTCTTGAACTGACCCCGGAAGTGGCCGCTGATCGCGTGTCCCATCGCCCGGGCCATTTCATGCCGTCGACCCTGATCGACAGCCAGTTTGCCACCCTTGAATCTCCTGTCGGCGAGCCCCTGACCCTGGCTCTGGATGCGTCCAGCCACAGCGTTGATGAACTGGCCCGCCAGGCTTACGTCTGGTGGCTGGCCCACGGCCTGAAGCTCGCGAGCTGAMNNPITALVIMGVAGCGKTCVSQALCQLSGATAIEGDTFHPAANIQKMSAGIPLNDDDRAGWLDSLCDELRRVDAVGARPVLTCSALKHSYRERLRSALPGLGFVFLELTPEVAADRVSHRPGHFMPSTLIDSQFATLESPVGEPLTLALDASSHSVDELARQAYVWWLAHGLKLASPGPT0018055_972DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_GLUCONIC_ACID_UTILIZATION,PGPT0018055-gntK|idnK-K00851NANA
D1-35_016801353gntT_2COG2610High-affinity gluconate transporterATGTTCGGCATGTCCCACGAGACGTTCCTGCTGCTAGATGCAGTGGTTACGGTGATCGGACTCATCGTCCTCATCACCAAGTTCAAATTCCACCCGTTCATTGCACTGACCATCGCCGCCGCGTTTCTCGGCCTGACGTCGGGCATGCCGACCGGCACCATCATCAAGGCGTTCCAGGACGGCTTTGGTGGCGTGCTCGGTTTTGTCGGCATCATCCTGGCGCTGGGCACGATGCTCGGCAAAATGATGGCCGAGTCGGGCGGTGCCGATCAGATCGCCCAGACCCTGATCCGTGCCTTCGGCAAGGAGAAGGTGCAGTGGGCCATGATGTTCGCCGCGTTCCTGGTGGGCATCCCGCTGTTCTTCGAAATCGGCTTCGTGCTGCTGATCCCGCTGGTGTTCATCGTCGCGCGCCGCACCGGCGTGTCGATCATCAAGATCGGTATCCCGCTGCTCGCCGGTCTTTCCGCCGTCCACGGCCTGGTGCCACCGCACCCGGGTCCGCTGCTGGCGATCGGCATCTTTGGCGCTGACATCGGCAAGACCATTCTCTACGGCCTGATCGTAGCGCTGCCGACCGCCATCATTGCCGGACCGATCTTCGGTACGTTCATCGCCAAGCACATTCCCGGTCATCCGAATCAGGAGCTGGTGGACCAACTGGCCCGCGAGACGAACGCCGCCGAACTGCCAAGCTTCAGCATCACCCTGATCACCGTGCTGTCGCCGGTATTCCTGATGCTGCTCAAGACCTTCGCGGATGTGGCGCTGCCGGACGGCAACCTGTTCCGTGTCTGGATGGACATGATCGGCCACCCGATCTCGGCCTTGCTGCTGGCGTTGCTGCTCTCGCTGTACACCTTCGGCTACAAGCAGGGCATCGGTTCCAGCCAGATGCTGAAGTGGCTGGACGCGAGCCTGGCGCCGACGGCGGCGATCATCCTGATCATCGGTGCCGGCGGTGGCTTCAAGCAGATGCTGGTGACCAGCGGCGTGGGTGACGTGATTGGCCACATGGCCGTGAGCGCACAGATTTCGCCGATCCTGCTGGCCTGGCTGGTGGCGGCGGTGATCCGGATTGCGACCGGTTCGGCGACCGTGGCGACCATTACCGGTGCCGGGATCGTGGTGCCGGTGGTGGGGATGATGCCAGGGGTGAACCGTGAGCTGCTGGTACTGGCGACTGGCGCCGGCTCGCTGATCCTGTCTCACGTCAACGATGCGGGCTTCTGGCTGGTCAAGCAGTACTTCAACATGACCGTGGCGGAAACCTTCAAGACCTGGACCGCGATGGAAACCATCCTGTCGGTGGTGGGACTGATCTTTATCCTGCTGTTGTCGCTGGTGATCTGAMFGMSHETFLLLDAVVTVIGLIVLITKFKFHPFIALTIAAAFLGLTSGMPTGTIIKAFQDGFGGVLGFVGIILALGTMLGKMMAESGGADQIAQTLIRAFGKEKVQWAMMFAAFLVGIPLFFEIGFVLLIPLVFIVARRTGVSIIKIGIPLLAGLSAVHGLVPPHPGPLLAIGIFGADIGKTILYGLIVALPTAIIAGPIFGTFIAKHIPGHPNQELVDQLARETNAAELPSFSITLITVLSPVFLMLLKTFADVALPDGNLFRVWMDMIGHPISALLLALLLSLYTFGYKQGIGSSQMLKWLDASLAPTAAIILIIGAGGGFKQMLVTSGVGDVIGHMAVSAQISPILLAWLVAAVIRIATGSATVATITGAGIVVPVVGMMPGVNRELLVLATGAGSLILSHVNDAGFWLVKQYFNMTVAETFKTWTAMETILSVVGLIFILLLSLVIPGPT0001340_1837DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_GLUCONATE_TRANSPORT,PGPT0001340-TC_GNTP-K03299NANA
D1-35_016811218alaCCOG0436Glutamate-pyruvate aminotransferase AlaCATGGCCGAACAAGGTTCGCCGCGCCGCTTTGCGCGCATCGATCGACTCCCCCCGTACGTATTTAATATCACTGCCGAGCTGAAGATGGCTGCGCGTCGGCGCGGCGAAGACATCATCGACTTGAGCATGGGTAACCCCGACGGCGCCACGCCCCCGCATATTGTCGAGAAGCTGGTCACCGTCGCCCAGCGCGAAGATACCCACGGCTACTCCACTTCCAAAGGCATCCCACGCCTGCGCCGAGCCATTTCGCGCTGGTACAAGGACCGCTACGAAGTGGACATCGACCCGGAAAGCGAAGCCATCGTCACCATCGGCTCCAAGGAAGGCCTCGCACACCTGATGCTGGCCACCCTGGACCAGGGCGACACGGTGCTGGTGCCCAACCCCAGCTATCCGATCCACATCTACGGCGCGGTGATCGCCGGCGCCCAGGTGCGTTCGGTGCCGCTGGTGCCCGGCGTGGATTTCTTCGATGAACTGGAGCGGGCCATTCGCGGTTCGATCCCCAAGCCGAAGATGATGATCCTCGGTTTCCCGTCCAACCCGACCGCGCAATGCGTGGAGCTCGACTTCTTCGAGCGGGTCATCGCCCTCGCCAAGCAATACGACGTACTGGTCATCCACGACCTGGCCTACGCCGACATCGTCTATGACGGCTGGAAAGCCCCGTCGATCATGCAGGTGCCAGGCGCGAAAGACATCGCGGTGGAGTTCTTCACCCTGTCCAAGAGCTACAACATGGCCGGCTGGCGCATCGGTTTCATGGTGGGTAACCCGGAACTGGTCAGCGCCCTGGCGCGGATCAAGAGTTACCACGACTACGGCACCTTCACCCCGCTGCAAGTGGCCGCCATCGCCGCCCTCGAAGGCGATCAGCAATGCGTGCGCGACATCGCCGAGCAGTACCGCCAGCGCCGCAACGTACTGGTCAAGGGCCTGCATGAACTGGGCTGGATGGTGGAGAATCCCAAGGCATCGATGTATGTCTGGGCGAAGATACCCGAGGCCTATGCGCACCTGGGCTCACTGGAGTTTGCCAAGAAGCTCCTGGCCGAAGCCAAGGTCTGCGTCTCGCCGGGGGTGGGGTTCGGGGAATACGGGGACGATCATGTGCGCTTTGCGCTGATCGAGAACCAGGACCGGATTCGCCAGGCGGTACGCGGGATCCGCGGGATGTTCCGGGCGGATGGGTTGATCAAAAAACCTGAGGCCTGAMAEQGSPRRFARIDRLPPYVFNITAELKMAARRRGEDIIDLSMGNPDGATPPHIVEKLVTVAQREDTHGYSTSKGIPRLRRAISRWYKDRYEVDIDPESEAIVTIGSKEGLAHLMLATLDQGDTVLVPNPSYPIHIYGAVIAGAQVRSVPLVPGVDFFDELERAIRGSIPKPKMMILGFPSNPTAQCVELDFFERVIALAKQYDVLVIHDLAYADIVYDGWKAPSIMQVPGAKDIAVEFFTLSKSYNMAGWRIGFMVGNPELVSALARIKSYHDYGTFTPLQVAAIAALEGDQQCVRDIAEQYRQRRNVLVKGLHELGWMVENPKASMYVWAKIPEAYAHLGSLEFAKKLLAEAKVCVSPGVGFGEYGDDHVRFALIENQDRIRQAVRGIRGMFRADGLIKKPEANANANANANA
D1-35_01682663hypothetical proteinATGGAATTTTCCAGCGGCTTCCTGCTGAGCCTTTCCTTGTGCCTGGACATCGGCGTGGCCAATATCGCGATGATCACCCTGGCGATGCAGCGCGGCTATTTCCAGGGCTTTGCCCTGGGCCTGGGCACCTGCGTAGGCGACCTGGTCTATGCGGTCCTGGCGCTGGCCGGAATGACTGTCCTGCTGCAATACGAAACGGTGCGGTGGGTGCTGTGGATCGGCGGTTCGGTGCTGTTGCTGTATTTCGCCGCGAAGATGGTTCATTCGGCGATCTTTCACAGTGCGGTGCTGGCCGAGGCCGGCGAGGTCCGGGGCAACTCGTCTCGGCAGGAGTTTTTTCGCGGGATTTTCCTGGCGATGTCATCCCCCAGCGCCATCCTCTGGTTCGCGGCGGTGGGGGGTACGCTCATTGCCCGCTCAGGGGGTGGCACGGTAGTCAGTTCGGCGCTGTTTCTGAGCGGATTCCTCTGCGCCGGGCTGCTCTGGAGCGCCGGCCTGTGCCTGGCGGCAACCCAGGGCGGAAAATTGTTGGGGGATAAGTTGCTGCGTTATTCCTATTGGGCATCGGCGGCGATTTTCTGCTATTTCGCCGTCTACGTGATCGTTTCTGGCTACAACGAGTTTGTCGGAACAACCGCCTCGGCTGTCCCGCCTGGACTCTGAMEFSSGFLLSLSLCLDIGVANIAMITLAMQRGYFQGFALGLGTCVGDLVYAVLALAGMTVLLQYETVRWVLWIGGSVLLLYFAAKMVHSAIFHSAVLAEAGEVRGNSSRQEFFRGIFLAMSSPSAILWFAAVGGTLIARSGGGTVVSSALFLSGFLCAGLLWSAGLCLAATQGGKLLGDKLLRYSYWASAAIFCYFAVYVIVSGYNEFVGTTASAVPPGLPGPT0020651_239DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020651-lysE|argO-K06895NANA
D1-35_01683489hypothetical proteinATGGAATCGCAAAAACGCGTTAATGCATCCGAGCCGCGCTTCGAGCAAGGACGCTTTCAGCTCATCGCCGGTTTCGGCGCGCGTTTTACCCAGGACACCGCCCAGGACATCCCGCTGCTCTGGGAAAAGTTTCTGCCCTGGCTTGGCAAAGTGCCGGGGCAGAAAGACGAAGTGACTTACGGCGTGTGTTGCAACCCGGACGGCACAGGCGGCTTTGAATACATTGCCGGCGTGGAAATCAGCCGGCTTGACGACCTTCCGGAACAATACCGCTGGATCGAAATCCAGCCCGGGCCCTACGCCGTATTCGAGCACAAAGGGCCATTGAAGAACCTGCCGGACACCTTCCACTACATCTGGAAGGAATGGTTGCCGCAGTCCGGCCACCAGGCAGCTGATGAGCCTGAGTTCGAGCGCTACAGCGAAGACTTCAACCCGCGGACGGGGGAAGGCAGCCTGGAGATCTGGATACCCCTCAAGCCGAGTTGAMESQKRVNASEPRFEQGRFQLIAGFGARFTQDTAQDIPLLWEKFLPWLGKVPGQKDEVTYGVCCNPDGTGGFEYIAGVEISRLDDLPEQYRWIEIQPGPYAVFEHKGPLKNLPDTFHYIWKEWLPQSGHQAADEPEFERYSEDFNPRTGEGSLEIWIPLKPSNANANANANA
D1-35_01684501hypothetical proteinATGGACGTTTTCGTGACTGCTCAGCTCGTATCCTATGAAGACCTGACCGCGCTGCAACGGCAACAGGTCGAAGCCATCGAAATCCACCCCGAACAGATCAGGTTTTCCGGCGATATCCATGGTGCGCTGCATACGCTGCTGTCCAGGCCCGCCCCTGGGGTAAAGGGTTTTGCGCTGCTGGCCGACGAAGTGCCCGTCGCGTTCCTGCTGCTCAAGCGGCCACCCGTACTGCCCGCCTGGGCCAACGAACACAGCGCCACCCTGCACGCCTTGCAGGTAGACCGCCGGGCTCAAGGCAAAGGCTACGGCAAGGCCTGCCTGCAAGCGCTACCCACCGTCGCCCGAGCGGCATGGCCAGAGATAAAGGGGCTTGAGCTTTCGGTGGATGCAGACAACGACGCGGCCATCAGCCTGTACACCCGCCTGGGCTGGGTCGACAGCGGCGAGGCCTACAAGGGCCGTATCGGTTATGAGCGGCGGATGGGGTTGGTCTTTGAATAAMDVFVTAQLVSYEDLTALQRQQVEAIEIHPEQIRFSGDIHGALHTLLSRPAPGVKGFALLADEVPVAFLLLKRPPVLPAWANEHSATLHALQVDRRAQGKGYGKACLQALPTVARAAWPEIKGLELSVDADNDAAISLYTRLGWVDSGEAYKGRIGYERRMGLVFENANANANANA
D1-35_01685426hypothetical proteinATGAATACCGAAACCGAAATCCAAGCGTTGATCGACACCTATCGCCAGGCCGTCATGGCCAAGGATGTGGAAAAAGTCATGGCGCTCTATGACGACGATATCGTCTCGTTCGATGCCATCCAGGCCCTGCAATTCAAGGGCAAGACCGCCTACCGCGCGCACTGGGAAGCCTGCATGGAAATGTGCCCTGGCCCGCACAAGTTCGATTTCCATCAGGTCCAGATCACGCCGGCCGAGAACATCGCCTTCGCCCATTGGCTGGCCTATTGCGGCGGCACCAACGACAAAGGCGAGGAACAGGCATGCTGGATGCGTGTGACAGCTTGCTACAAGCGTACGGCCGGCGCGTGGAAGATCGTCCATGAACATTGGTCGGCGCCATTCGACCCGATGGCGGGTACGGCGATATTCGACTTGCAGCCCTGAMNTETEIQALIDTYRQAVMAKDVEKVMALYDDDIVSFDAIQALQFKGKTAYRAHWEACMEMCPGPHKFDFHQVQITPAENIAFAHWLAYCGGTNDKGEEQACWMRVTACYKRTAGAWKIVHEHWSAPFDPMAGTAIFDLQPPGPT0030505_2PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISMPUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM-1,PGPT0030505-phnB|yjdN-K04750
D1-35_01686345hypothetical proteinATGAAGTATCTATGCCTGGTGTACAGCAATGAACAGGTCCTGCACGACTCGCCCGAGAGCCCGCAGGACGCCGAATGCATGGCTTACGCCGAATCGGTCCAGGGCAGCGGCCGCATGCTCGCCGCTGAAGCCCTGGAGTCGGTGCAGACCGCCACCACGGTGCGTATGCGCGGCGGCAAACTGTCGATTACCGACGGCCCGTTCGCCGAAACCAAGGAGCAACTGGCGGGCTTCTACCTGATCGACGCCAAGGACTTGAACGAAGCCATCCAGGTCGCCGGGCACATCCCGGCGGCCCGGGTCGGCTGCGTCGAAGTCCGGCCGGTACGCCAGCTGAATCCCTGAMKYLCLVYSNEQVLHDSPESPQDAECMAYAESVQGSGRMLAAEALESVQTATTVRMRGGKLSITDGPFAETKEQLAGFYLIDAKDLNEAIQVAGHIPAARVGCVEVRPVRQLNPNANANANANA
D1-35_016871236hypothetical proteinATGTCGGCCGAAGCGGTCAAGGCGCGGGTCGAGCAGGTTTATCGCCAGGATTCGCGGCGAATCCTGGCGACGCTGATTCGCCTGCTGGGTGATTTCGATCTCGCCGAGGAAGCCTTGCACGAGGCGTTCTTCGTCGCGGTCGAGCGCTGGCAGCGCGACGGCGTGCCGGACAATCCCCGGGCCTGGCTGGTGTCGGCCGGGCGTTTCAAGGCGATTGACAGCCTGCGTCGGCGGGCGCGCTTCGCGGCGTCCCAGCCGATGCTGATCGCGCAACTCGAAGCGCTTGAACAGGCCGAGTGGAGTGATGAGGACGTGGAAGATGACCGCCTGCGGCTGATTTTCACCTGTTGCCACCCGGCTCTGGCCGCTGATGCCCAGGTACCGTTGACGCTGCGGGAAGTCTGCGACCTGACCACCGAGGAAATTGCTCGTGCGTTTCTTGCCGCGCCGGCAGCCATCGCCCAGCGCATCGTGCGGGCCAAGGCGAAGATTCGCGATGCGAAGATTCCCTATCAGGTGCCGTCCCGCACGGAGCTGCCTGAACGACTCGACAGCGTGCTGCGGGTGATCTACCTGGTGTTCAACGAGGGCTATTCAGCCTCGATGGGGGCCGAGTTGACCCGCGATGACCTGACCCGTGAAGCCATACGCCTCGCACGCCTGCTGCTGGAGTTGCTGCCCGAAGCTGAAGTGATGGGCTTGCTGGCGCTGATGCTGCTGCACGAGTCGCGGCGGCCTGCGCGAATGTCGATGGCCGGCGATCTGGTCTTGCTCGATGAGCAGGACCGGTCGCTATGGGACCCGGCAATGATTGCCGAAGGTTGCGCGATGGTCGAGGCCGCGCTCAACACCCGGCGGTTCGGACCGTATTGCCTGCAAGCCGCGATTGCTGCGGTGCACGCCGAAGCGCCGACCGCCCGGGAGACCGATTGGCCGCAGATCGTCGGCCTCTACGATGTGCTGTTGCGGGCCGTGCCGTCGCCAGTGATCGAACTCAACCGCGCGGCCGCCCTGGCCAAGCGCGATGGGCCGCAGGAGGGGCTACGCCTGGTTGACGGGATACTCGGCAGGGGCGAGCTGCTTGACTATCACCTGGCCCATTCGGCGCGGGCTGAGTTCTGCCGGCAGTTGGGGCGAGTGGAGGAGGCGAGGGCCGCCTATCGACGGGCGCTTGAATTGACGCAGCAACTGCCGGAGCGGCGGTTCATTGAAGCCAGGCTTGCGGGATTGGACTGAMSAEAVKARVEQVYRQDSRRILATLIRLLGDFDLAEEALHEAFFVAVERWQRDGVPDNPRAWLVSAGRFKAIDSLRRRARFAASQPMLIAQLEALEQAEWSDEDVEDDRLRLIFTCCHPALAADAQVPLTLREVCDLTTEEIARAFLAAPAAIAQRIVRAKAKIRDAKIPYQVPSRTELPERLDSVLRVIYLVFNEGYSASMGAELTRDDLTREAIRLARLLLELLPEAEVMGLLALMLLHESRRPARMSMAGDLVLLDEQDRSLWDPAMIAEGCAMVEAALNTRRFGPYCLQAAIAAVHAEAPTARETDWPQIVGLYDVLLRAVPSPVIELNRAAALAKRDGPQEGLRLVDGILGRGELLDYHLAHSARAEFCRQLGRVEEARAAYRRALELTQQLPERRFIEARLAGLDPGPT0014960_512DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
D1-35_016881344hypothetical proteinATGATTCGTATGCCTCTGGCTACCGCCAGTCTGTTGGCCATCGCTATTTCCCTCGCCGGTTGCGGCGAAGGCAAAGACAAGGCGGCCGCGCCGCAAGCGCCAACGCCGGCCGCCAGCACTGCGGCTCCGGCTGCCCCCGCTGCCGCTGGCAAGATCGACGAAGCCGCTGGCAAGGCCGTTGTCGCGCACTACGCCGACATCGTCTACGCCGTCTACAGCGATGCCGAATCCACCGCGAAAACCCTGCAGACCGCCGTCGACGCCTTCCTCGCCAAGCCGAACGCAGATACCCTGAAAGCCGCCAAGGCTGCCTGGGTTGCCGCGCGCGTGCCTTACCTGCAGAGCGAAGTGTTCCGCTTCGGCAACACCATCATCGACGACTGGGAAGGCCAAGTGAACGCATGGCCCCTGGACGAAGGCCTGATCGACTACGTCGACAAATCCTACGAGCACGCCCTGGGTAACCCGGGCGCTACCGCCAACATCATCGCCAACACCGAAGTGCAGGTCGGCGAAGACAAGGTCGACGTCAAAGACATCACCCCGGAAAAACTCGCCAGCCTGAACGAGCTGGGTGGTTCCGAGGCCAACGTTGCCACCGGCTACCACGCCATCGAATTCCTGCTGTGGGGCCAGGACCTCAACGGCACCGGCCCGGGTGCCGGCAATCGTCCGGCTTCGGACTACCTGGAAGGCGCCGGCGCCACTGGCGGCCACAACGACCGTCGGCGTGCCTACCTCAAGTCCGTGACCCAGCTGCTGGTGAACGACTTGCAGGAAATGGTCGGCAACTGGAAACCGAACGTCGCCGACAACTACCGCGCCACGCTGGAAGCCGAACCGGCTGAAACCGGTCTGCGCAAGATGCTGTTCGGCATGGGCAGCCTGTCCCTGGGTGAACTGGCGGGCGAGCGCATGAAGGTCTCCCTGGAAGCCAACTCGCCAGAAGACGAACAGGATTGCTTCAGCGACAACACCCACTACTCGCATTTCTACGATGCCAAGGGTGTGCGTAACGTCTACCTCGGCGAATACACCCGCGTCGACGGCACCAAGATGACCGGCGCGAGCCTGTCCTCCCTGGTGGCCAAGGCCGACCCGGCCGCCGACACCACGCTCAAGGCCGAGCTGGCCGACACCGAAGCCAAGATCCAGGTCATGGTCGATCACGCCAACAAGGGTGAGCACTATGACCAGCTGATCGCCGCCGGTAACACCGCGGGCAACCAGATCGTGCGTGACGCCATCGCCGCCCTGGTCAAGCAGACCGGCTCGATCGAACAGGCTGCGGGCAAGCTGGGTATCAGCGACCTGAACCCGGACAACGCTGATCACGAGTTCTGAMIRMPLATASLLAIAISLAGCGEGKDKAAAPQAPTPAASTAAPAAPAAAGKIDEAAGKAVVAHYADIVYAVYSDAESTAKTLQTAVDAFLAKPNADTLKAAKAAWVAARVPYLQSEVFRFGNTIIDDWEGQVNAWPLDEGLIDYVDKSYEHALGNPGATANIIANTEVQVGEDKVDVKDITPEKLASLNELGGSEANVATGYHAIEFLLWGQDLNGTGPGAGNRPASDYLEGAGATGGHNDRRRAYLKSVTQLLVNDLQEMVGNWKPNVADNYRATLEAEPAETGLRKMLFGMGSLSLGELAGERMKVSLEANSPEDEQDCFSDNTHYSHFYDAKGVRNVYLGEYTRVDGTKMTGASLSSLVAKADPAADTTLKAELADTEAKIQVMVDHANKGEHYDQLIAAGNTAGNQIVRDAIAALVKQTGSIEQAAGKLGISDLNPDNADHEFNANANANANA
D1-35_016892052hypothetical proteinTTGAAGCTGGAACTCAAGAACAGCTTGTCTGTGAAGTTGCTCCGGGTCGTGCTCCTTTCGGCATTGATCGTTGGCGTGGTCTTGAGCTGCGCCCAGATCGTTTTCGATGCCTACAAAACCAATCGGGCCGTCGCCGACGACGCCCAGCGCATCCTCGATATGTTCCGCGACCCTTCCACCCAGGCGGTCTACAGCCTCGACCGGGAAATGGGCATGCAGGTCATCGAAGGCCTGTTCCAGGATGAGGCCGTGCGCATGGCCTCCATCGGCCACCCCCACGAAACGATGCTCGCCGAGAAGACCCGGCCCCTCCAGCATTCCGAAAGCCGCTGGCTGACCGACCTGATCCTGGGCCAGGAGCGCACCTTCACCACGCAACTGGTGGGACGCGGGCCCTACAGTGAATACTACGGCGACCTGAGCATCACCCTCGACACCGCCACCTATGGCCAGGGCTTCATTGTCAGCTCGGTGATCATTTTCATTTCCGGAATGCTCCGGGCCCTGGCCATGGGCCTGGTGCTGTACCTGGTCTATCACTGGCTGCTGACCAAACCGTTGTCGCGGATCATCCAGCACCTGACCGAAATCAACCCCGATCGCCCCAGCGCGCACAAGATTCCGCAGCTACGGGGCCACGAGCAAAACGAACTCGGCCTGTGGATCAACACCGCGAACCAGTTGCTCGAATCCATCGAGCGCAACACGCACTTGCGCCACGAAGCGGAAAACAGCCTGCTGCGCATGGCCCAGTACGACTTCCTCACCGGCCTGCCCAATCGCCAGCAGCTGCAACAACAACTGGACAAGATCCTGGTGGACGCCGGGCGCCTGCAACGTCGCGTGGCCGTGTTGTGTGTGGGACTGGACGACTTCAAGGGCATCAACGAGCAGTTCAGCTATCAGACTGGCGACCAGTTGCTGCTGGCCTTGGCCGATCGGCTGCGCGCCCACAGTGGGCGCCTCGGCGCCCTGGCGCGGCTGGGCGGCGACCAGTTCGCCCTGGTGCAAGCCGATATCGAGCAGCCTTACGAGGCCGCCGAACTGGCCCAGAGCATCCTCGACGATCTGGAAGCGCCATTCATCCTCGACGACCAGGGGATCCGCCTGCGAGCCACCATCGGTATCACGCTGTTCCCCGAAGACGGCGACAGCACCGAGAAGCTCCTGCAAAAAGCCGAGCAGACCATGACCCTGGCCAAGACGCGCTCGCGCAATCGTTACCAGTTCTATATCGCCAGCGTCGACAGTGAAATGCGCCGTCGGCGTGAACTGGAAAAAGACCTGCGCGAGGCGTTGGCTCGCGACCAGTTCACCCTGGTCTACCAGCCGCAGGTCAGCTACCGCGACCTTCGGGTGGTCGGCACCGAAGCGCTGATCCGCTGGCATCACCCCGAGCACGGCCTCGTGCCGCCTGACCTGTTCATTCCCTTGGCGGAACAGAACGGCACCATTATCGCCATCGGCGAATGGGTGCTGGACCAGGCCTGCAAACAGTTGCGCGAATGGCACGATCAGGGTTTTGTCGACCTGCGCATGGCCGTCAACCTGTCGACGGTGCAACTGCACCACGCCGAACTGCCCCGGGTGGTGAGCAATTTCCTGCAGATGTACCGCTTGCCCCCGCGCAGCCTGGAGCTGGAGGTCACTGAAACCGGCCTGATGGAAGACATCACCACGGCCGCCCAGCATCTGTTGAGCCTGCGCCGTTCCGGCGCGCTGATTGCCATCGACGACTTCGGCACCGGCTATTCGTCCTTGAGTTATCTCAAGAGCCTGCCGCTGGACAAGATCAAGATCGACAAGAGTTTCGTCCAGGACCTGCTCGATGACGAAGACGATGCGACCATCGTTCGCGCCATCATCCAGCTCGGCAAGAGCCTGGGCATGCAGGTGATCGCCGAAGGCGTCGAAACGATCGAGCAGGAAGCCTACATCATTGCCGAGGGCTGCCATGAAGGTCAGGGCTACTACTACAGCAAACCGTTGCCGGCACGGGAGCTGGGTAACTATCTGAAGCAAGCCGAGCGCATCAACGCCTCGATCATCTGAMKLELKNSLSVKLLRVVLLSALIVGVVLSCAQIVFDAYKTNRAVADDAQRILDMFRDPSTQAVYSLDREMGMQVIEGLFQDEAVRMASIGHPHETMLAEKTRPLQHSESRWLTDLILGQERTFTTQLVGRGPYSEYYGDLSITLDTATYGQGFIVSSVIIFISGMLRALAMGLVLYLVYHWLLTKPLSRIIQHLTEINPDRPSAHKIPQLRGHEQNELGLWINTANQLLESIERNTHLRHEAENSLLRMAQYDFLTGLPNRQQLQQQLDKILVDAGRLQRRVAVLCVGLDDFKGINEQFSYQTGDQLLLALADRLRAHSGRLGALARLGGDQFALVQADIEQPYEAAELAQSILDDLEAPFILDDQGIRLRATIGITLFPEDGDSTEKLLQKAEQTMTLAKTRSRNRYQFYIASVDSEMRRRRELEKDLREALARDQFTLVYQPQVSYRDLRVVGTEALIRWHHPEHGLVPPDLFIPLAEQNGTIIAIGEWVLDQACKQLREWHDQGFVDLRMAVNLSTVQLHHAELPRVVSNFLQMYRLPPRSLELEVTETGLMEDITTAAQHLLSLRRSGALIAIDDFGTGYSSLSYLKSLPLDKIKIDKSFVQDLLDDEDDATIVRAIIQLGKSLGMQVIAEGVETIEQEAYIIAEGCHEGQGYYYSKPLPARELGNYLKQAERINASIIPGPT0026015_214DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-c-di-GMP_SIGNALLING_PATHWAY,PGPT0026015-bifA-K21024NANA
D1-35_01690597sodB_2COG0605Superoxide dismutase [Fe]ATGGCTTTCGAATTGCCGCCGCTGCCCTATCCTCACGATGCACTGCAGCCGCACATCTCCAAAGAAACTCTGGAGTACCACCACGACAAGCACCACAACACCTATGTCGTGAACCTGAACAACCTGGTGCCTGGCACCGAGTTCGAAGGCAAGACCCTGGAAGAAATCGTCAAGACTTCCTCGGGCGGTATCTTCAACAACGCCGCTCAGGTCTGGAACCACACTTTCTACTGGAACTGCCTGGCGCCAAATGCTGGCGGTCAACCAACCGGCGCCCTGGCTGAAGCCATCAATGCAGCCTTCGGTTCGTTCGACAAGTTCAAGGAAGAATTCAGCAAGACTTCCATCGGCACCTTCGGTTCCGGCTGGGGCTGGCTGGTTAAAAAGGCCGACGGCTCCCTGGCCCTGGCCAGCACCATCGGCGCCGGCAACCCGCTGACCAGCGGCGACACTCCGCTGTTGACCTGCGACGTTTGGGAACACGCCTACTACATCGACTACCGCAACGTTCGTCCGAAGTACGTCGAAGCGTTCTGGAACCTGGTCAACTGGAAGTTCGTGGCTGAGCAGTTCGAAGGCAAGACCTTTACTGCGTAAMAFELPPLPYPHDALQPHISKETLEYHHDKHHNTYVVNLNNLVPGTEFEGKTLEEIVKTSSGGIFNNAAQVWNHTFYWNCLAPNAGGQPTGALAEAINAAFGSFDKFKEEFSKTSIGTFGSGWGWLVKKADGSLALASTIGAGNPLTSGDTPLLTCDVWEHAYYIDYRNVRPKYVEAFWNLVNWKFVAEQFEGKTFTAPGPT0004190_5325DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_SUPEROXIDE_ANION_RADICALS,PGPT0004190-chrC|sodB|sodA-K04564NANA
D1-35_01691603argOCOG1279Arginine exporter protein ArgOATGTGGCAAAGTTATGTGAACGGGCTGCTGGTCGCCCTCGGATTGATCATGGCCATTGGCACGCAGAACGCCTTCGTGCTCGCCCAGAGCTTGCGCCGCGAGCACCATTTGCCGGTGGCTGCCCTGTGCATCATCTGCGATGCGTTGCTGGTCGCCGCCGGCGTGTTCGGCCTGGCGACGCTATTGGCGCAAAGCCCGTTGCTGCTTTCAATCGCACGCTGGGGCGGCGCCGCGTTTCTGCTCTGGTACGGTACCCAGGCGCTGCGCCGCGCCTGCTCGAAACAGAGCCTGCAGCGCGATGAAAAACAGGCCGCGCGCTCACTGGGAACAGTCCTGCTGAGCGCACTCGCGGTCACGCTGCTCAACCCCCACGTCTATCTCGACACCGTGTTGCTGATCGGCTCCCTCGGCGCCCAGCAGAGCATGCCCGGCGCCTACGTCATGGGGGCGGCCAGTGCCTCGCTGCTGTGGTTTTCGACCCTGGCCATCGGCGCCGCATGGCTGGCTCCCTGGCTGGCCCGACCCAGTACCTGGCGGATCCTGGACCTGCTGGTGGCGCTGATGATGTTCACCGTGGCGCTGCAACTGATCGTCTCGGGCTGAMWQSYVNGLLVALGLIMAIGTQNAFVLAQSLRREHHLPVAALCIICDALLVAAGVFGLATLLAQSPLLLSIARWGGAAFLLWYGTQALRRACSKQSLQRDEKQAARSLGTVLLSALAVTLLNPHVYLDTVLLIGSLGAQQSMPGAYVMGAASASLLWFSTLAIGAAWLAPWLARPSTWRILDLLVALMMFTVALQLIVSGPGPT0020651_2201DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020651-lysE|argO-K06895NANA
D1-35_01692894argPCOG0583HTH-type transcriptional regulator ArgPATGTTCGATTACAAACTGCTGTCTGCCCTGGCGGCCATTGTCGAGCAGGCCGGATTCGAGCGTGCCGCCCAGGTGTTGGGACTGTCGCAGTCGGCCATCTCCCAGCGGATCAAGCTTCTGGAAGCGCGTGTCGGCCAGCCCGTGCTGGTGCGTGTCACACCGCCGGTGCCCACTGAAATCGGCCGACGCCTGCTCAACCATGTGCAACAGGTTCGTTTGCTTGAACGCGACCTGCAAAGCCTGGTGCCGGCGCTGGATGAGGCCGGGTTACCGGAGCGCCTGCGAATTGCCCTGAACGCCGACAGCCTGGCTACCTGGTGGGCCGGTGCGGTGGGGGCGTTCTGTGCCGAGCGGCAGCTCTTGTTGGACCTGGTGGTGGAAGACCAGAACGTCGGCCTCAAGCGCATGCGCGCCGGGGAAGTGGCGGCCTGCGTCTGCGCCAGCGAACGGCCGGTGGCCGGTGCCCGCAGCGTATTGCTGGGGGCGATGCGCTACCGGGCGCTTGCCAGCCCTGCGTTCATCGCCCGGCACTTCCCCGGCGGGGTGCGCGCCGATCAGTTGGCTCGCACGCCGGCCCTGGTATTCGGCCCGGATGATTTCCTGCAACACCGTTACCTGGCTTCCCTCGGTATCGAGGGCGGTTTCGAGCACCATTTGTGCCCGTCGTCCGAAGGTTTCATCCGTCTCGCTGAAGCGGGGCTTGGCTGGGGACTGGTGCCGGAACTGCAAGTGCGCGAGCAACTGGCGCGGGGCGTGCTGGTGGAGTTGTTGCCTGACAAGCCGATTGATGTGCCGCTGTACTGGCATCATTGGCGCAATGGCGGACACTTGCTCGGTCTGTTGACCGAGCAACTGATTCAGGCGTCCCGGCAGTGGCTGGTGCCGTTGGCCTGAMFDYKLLSALAAIVEQAGFERAAQVLGLSQSAISQRIKLLEARVGQPVLVRVTPPVPTEIGRRLLNHVQQVRLLERDLQSLVPALDEAGLPERLRIALNADSLATWWAGAVGAFCAERQLLLDLVVEDQNVGLKRMRAGEVAACVCASERPVAGARSVLLGAMRYRALASPAFIARHFPGGVRADQLARTPALVFGPDDFLQHRYLASLGIEGGFEHHLCPSSEGFIRLAEAGLGWGLVPELQVREQLARGVLVELLPDKPIDVPLYWHHWRNGGHLLGLLTEQLIQASRQWLVPLANANANANANA
D1-35_01693993oleDCOG04512-alkyl-3-oxoalkanoate reductaseATGAAGATTCTGGTCACCGGCGCAAGCGGCTTCATCGGCGGACGCTTCGCGCGTTTCGCCCTTGAGCAGGGCCTGGATGTACGGGTCAATGGCCGCCGGGCCGAAAGCGTCGAGCATCTGGTGCGGCGTGGCGCCGAGTTCATCCAGGGCGACCTCAGCGAGCCGATGCTGGCCCTCGACCTGTGTCGCGATATCGATGCCGTGGTGCATTGTGCCGGCTCGGTGGGGCTGTGGGGGCGCTATCAGGACTTTCACCAGGGCAACGTCCAGCTCACCGAAAACATCGTCGAGGCGTGCCTCAAGCAAAAGGTCCGGCGATTGGTGCACCTCTCCTCACCGTCGATCTATTTTGATGGCCGTGACCACTTGGGACTGACCGAAGAGCAGGTGCCCAAACGTTTCAAGCATCCCTACGCCGCCACCAAGTACCTGGCCGAACAGAAGGTCTTCGGCGCCCAGGAGTTCGGCCTGGAGGTGTTGGCGCTGCGGCCGCGCTTCGTCACTGGTGCCGGTGACATGAGCATTTTTCCGCGCTTGCTCAAGATGCAGCGCAAGGGACGACTGGCGATTATCGGCAACGGCTTGAACAAGGTCGATTTCACCAGCATGCAGAACCTCAACGAAGCACTGCTCAGCAGCCTGCTGGCCACCGGTTCGGCCCTGGGCAAGGCTTACAACATCAGTAACGGGGCGCCCGTTCCGTTGTGGGACGTAGTCAATTATGTGATGCGGCAGATGGAAGTCCCACAGGTCAGGCGTTACCGCTCCTACGGGCTGGCTTACAGCGTTGCGGCCATGAACGAAGGGTTCTGCGCATTATGGCCGGGTCGCCCGGAGCCGACGTTGTCGCGCCTTGGCATGCAGGTGATGAACAGGAATTTCACCCTGGACATCGGTCGGGCCCGGCATTATCTCGATTACGATCCGCAAGTCAGCCTGTGGGCCGCGCTCGATGAATTTTGCGCCTGGTGGCGCGTCCAATATGCCCGCTGAMKILVTGASGFIGGRFARFALEQGLDVRVNGRRAESVEHLVRRGAEFIQGDLSEPMLALDLCRDIDAVVHCAGSVGLWGRYQDFHQGNVQLTENIVEACLKQKVRRLVHLSSPSIYFDGRDHLGLTEEQVPKRFKHPYAATKYLAEQKVFGAQEFGLEVLALRPRFVTGAGDMSIFPRLLKMQRKGRLAIIGNGLNKVDFTSMQNLNEALLSSLLATGSALGKAYNISNGAPVPLWDVVNYVMRQMEVPQVRRYRSYGLAYSVAAMNEGFCALWPGRPEPTLSRLGMQVMNRNFTLDIGRARHYLDYDPQVSLWAALDEFCAWWRVQYARNANANANANA
D1-35_01694882hypothetical proteinATGCCCACGCGTAACGATGCCAACGACGACTTCGACGATGTACCGAGCCTGCGGATGCGGGCGGACATTCCCGATGACGATGACTTCCTGACCAACCGCCAGCCCCACGTGCAAGCGCGTCCGGCACCTGTTGCGGCGGCCAGGGTCAAGGCACCAAGCACCGGGCCGTTGTGGGCATTGGTCGGTGCCTTGCTGTGCGCCTTGGCGTTTCTCGCGTGGTGGAGTTTCCAGCAGATTTCCCTGATGGAGCAGCAGCTGGTGGCCACCCAGGAGAGCTTCGCACGGATCAGTGAGGATGCCGCGGGCCGCCTGCAGGACATCTCCGGCAAAGTGGTTGCCGGGCAGTCCAACGTGATGAGCGACAGTGAAGCCTTGAAATTGCAGATCAAGCAGTTGGACAGCAAGCTGCAGGAGCAGGGCCGGCAATTCGACGGCAAGTTGATGGAGCAGTACAAGCAGCTGCAAGGCGCGTTCGGACCGTCCGCCGACCTGGACAAGCAATTGGCCCAGATGATCGCCCAGGATTCCGAACAGCAGAACGCCTACACCCAGTTGCAAGCGGCCAATACCCAGCTCCAGGCCCAGGTCAAGGCGTTGGCGGCCGAGGTTGCAACCTTGAAGAACCAAGGCGAGGGCGGCGCGCTGGATGCCCAGCTCAAGAGCATCGGTGCCGACATCACGGCCTTGAAAAGAGCCAACTCGAACTCGGCCATCGAGCGCCTGGAGCAGGACATGATTGTGCTCAAGAGTCAGCAGGAGAACCGCTCGGGCGGCAATAACGCCGAGTTCGATGCCTTCCGCGGCCAGGTCACGCGCAACATCAATACCCTGCAATCGCAGATCCAGTACCTGCAACAGCAACTGAGCAATCGGGCCCAGTAAMPTRNDANDDFDDVPSLRMRADIPDDDDFLTNRQPHVQARPAPVAAARVKAPSTGPLWALVGALLCALAFLAWWSFQQISLMEQQLVATQESFARISEDAAGRLQDISGKVVAGQSNVMSDSEALKLQIKQLDSKLQEQGRQFDGKLMEQYKQLQGAFGPSADLDKQLAQMIAQDSEQQNAYTQLQAANTQLQAQVKALAAEVATLKNQGEGGALDAQLKSIGADITALKRANSNSAIERLEQDMIVLKSQQENRSGGNNAEFDAFRGQVTRNINTLQSQIQYLQQQLSNRAQNANANANANA
D1-35_01695843hypothetical proteinATGGGGTTTATTCGAAGGCTGGCCTGGCTGGCCGCAATGCTGGCGCTGGGGCTGAACCACGCACAGGCCGCTACGCCGGATGAAGGCCAGGCGGCTCGGGCGCTGTTGGAAAGGGCGTTGGCCTACTATCACGATTACGGCGACTATGCGTTCGCCGCCTTCAGCCGCCAAGGCGAATTCGTCGACAAGGACCGCTACGTGTTCGTGGTCGACACCCAGGGAGTAATGCTTGCCAGCGGCGGCCCATCGTCAGCGCTGATCGGGCGAGACGTGTCCGAGGTATTGGGGCCGGATCTGCGCAAGGCGTTCAAGGATGCGTTGAAGACCCCGGAAGCCAGCGGCATCCAGCAGGCCGAGTATCGCTGGCAGAACTGGGCGGACGGCAAGGTCGAGCGCAAGCGTGTGTATTTCCAGCGGGTCGGCGAGCATATCCTCGCGGTTGGCTATTACTTGCCAAGGGCTTCTGCCGAACAGGCCAGGGCGCTACTGGACAAGGCTTCGGCGGACCTGCTGAAGAGTGAGAAAGCCACGCTGACGGCGATCAATTCCCTCAAGGGCGGTTACCTTCAGGATGACCTGTACGTCTTTGTCGTTGATCTCGATACCCGCCGTTATGTCGGTCATGGCACCAATCTGCGTTTGATCAATACCGATTTTGCGAAGGTCAAGGATCCGGCTGGCAAACCGGTGGGTGAGCCGATCCTGGCAATGATGGGCAAGCAGGATGCGGGGGAATATGAGTATCGCTGGAAGAATCCGGTCACGGGGAAGGTCGAGAACAAGCATGCCTATTTGAAGAAGGCTGGGCATTTGTTGGTGGCTGTGGGGTATTACAGTCCTTGAMGFIRRLAWLAAMLALGLNHAQAATPDEGQAARALLERALAYYHDYGDYAFAAFSRQGEFVDKDRYVFVVDTQGVMLASGGPSSALIGRDVSEVLGPDLRKAFKDALKTPEASGIQQAEYRWQNWADGKVERKRVYFQRVGEHILAVGYYLPRASAEQARALLDKASADLLKSEKATLTAINSLKGGYLQDDLYVFVVDLDTRRYVGHGTNLRLINTDFAKVKDPAGKPVGEPILAMMGKQDAGEYEYRWKNPVTGKVENKHAYLKKAGHLLVAVGYYSPPGPT0004005_520DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-OTHER_CYTOCHROME-RELATED_PROTEINS,PGPT0004005-cycA|cycM-K08738NANA
D1-35_016962847rapACOG0553RNA polymerase-associated protein RapAATGGCGCAGCAGTATCAACCGGGGCAACGCTGGATCAGTGACAGCGAAGCCGAGCTGGGTTTGGGCACCGTTCTGGCACAGGACGGCCGCTTGTTGACCGTGCTCTACCCGGCCACTGGCGACACTCGCCAGTACGCGCTACGGAATGCGCCCCTCACCCGCGTGCGGTTTTCGCCGGGCGACGTGATCACTCACTTCGAAGGCTGGAAAATGACCGTGCGCGAAGTCGATGACGTCGACGGGCTGTTGGTCTACCACGGCCTCAACGGGCAGAACGAAGTCGTCACGCTGCCGGAAACCCAACTGTCGAACTTCATCCAGTTCCGCCTGGCCAGCGATCGCCTGTTCGCCGGGCAGATCGATCCGCTGGCCTGGTTCTCCCTGCGCTACCACACGCTGGAACACACCAGCCGCCAACTGCAGTCACCGCTCTGGGGCCTGGGTGGCGTGCGTGCCCAACCGATCGCTCACCAGTTGCATATTGCCCGTGAAGTCGCCGACCGCATTGCGCCACGGGTATTGCTGGCGGACGAAGTGGGCCTGGGCAAGACCATCGAAGCCGGCTTGATCATCCATCGGCAACTGCTTTCCGGCCGCGCCAGTCGCATCCTGATCCTGGTCCCGGAAAACCTGCAGCACCAGTGGCTGGTGGAGATGCGTCGGCGCTTCAACCTGCAGGTCGCGCTGTTCGACGAAGAACGCTTTATCGAAAGTGATGCCAGCAACCCGTTCGAGGACACCCAACTGGCGCTGGTCGCGCTGGAATGGCTGGTAGAGGACGAAAAGGCCCAGGACGCGCTGTTCGCCGCCGGCTGGGACCTGATGGTGGTCGACGAAGCGCACCACCTGGTGTGGCACGAAGACCAGGTCAGCCCGCAATACGCGCTCGTCGAACAATTGGCCGAGACCATCCCTGGCGTGCTGCTGCTGACCGCCACCCCGGAACAACTGGGCCAGGACAGCCACTTCGCTCGCCTGCGCCTGCTGGACCCGAACCGCTTCCACGATCTGCAAGCCTTCCGTGCCGAAAGCGAGAACTATCGCCCGGTGGCCGAAGCCGTCCAGGAGCTGCTGGACAAGGGACGCTTGTCGCCCGAGGCCCACCAGACCATCCATGGTTTCCTGGGCAATGAAGGCGAAGCGCTGCTGACCGCCGTCAACGATGGCGATATCGAAGCCAGCGCCCGCCTGGTTCGCGAACTGCTGGACCGCCACGGCACCGGCCGCGTGCTGTTCCGTAACACCCGCGCTGCCGTCCAGGGTTTCCCCGAGCGCAAGCTGCACGCCTATCCGCTGCCGTGCCCTGACGAATACCTGGAACTGCCGCTGGGCGAACACGCCGAGCTGTATCCGGAAGTCAGCTTCCAGGCTCAGCCTGAAGCCGGCGAAGAAGAACGCTGGTGGAAATTCGACCCGCGCGTCGAATGGCTGATCGATCAGTTGAAGATGCTCAAGCGCACCAAGGTCCTGGTGATCTGCGCCCACGCCGAAACCGCGATGGACCTGGAAGACGCCCTGCGCGTGCGTTCCGGCATTCCGGCCACGGTGTTCCATGAAGGCATGAACATCCTTGAGCGCGACCGCGCGGCGGCCTACTTTGCCGACGAAGAGTTCGGTGCCCAGGTGCTGATCTGCTCGGAAATCGGCAGTGAGGGTCGCAACTTCCAATTCGCCCATCACCTGGTGCTGTTCGACCTGCCGGCGCACCCGGACCTGCTGGAACAGCGGATCGGCCGTCTGGACCGGATCGGCCAGAAACACACTATCGAGTTGCATGTGCCGTACCTGGAAACCAGCCCGCAGGCGCGGCTGTTCCAGTGGTATCACGAGGCGCTGAATGCTTTCCTCAACACCTGCCCGACCGGCAACGCCTTGCAACATCAGTTCGGCCCGCGCCTGCTGCCGTTGCTGGAAGAAGCCGACGACGGCGAGTGGCAAGCATTGATCGACGAGGCGCGCGCCGAACGCGAACGCCTGGAGGCCGAGCTGCACACCGGTCGCGACCGTCTGCTGGAGCTCAATTCCGGCGGTGCGGGCGAAGGCGACGCTTTGGTGGAGGCCATCCTTGAACAGGATGACCAGTTCGCCCTGCCGATCTACATGGAAACCCTGTTCGACGCCTTCGGTATCGACAGCGAGGACCACTCCGATAACGCACTGATCCTCAAGCCGAGCGAAAAAATGCTCGACGCCAGTTTCCCCCTGGGCGACGACGAAGGCGTGACCATCACCTATGACCGCAACCAGGCGCTGTCTCGTGAAGACATGCAATTCATCACCTGGGAGCACCCGATGGTGCAAGGCGGCATGGACCTGGTGCTGTCTGGCTCCATGGGCAACACCGCCGTGGCGCTGATCAAGAACAAGGCGCTCAAGCCTGGCACCGTGTTGCTGGAACTGCTCTATGTCAGCGAAGTGGTCGCCCCGCGCTCGCTGCAATTGGGCCGTTACCTGCCACCGGCCGCCCTGCGCTGCCTGCTGGATGCCAACGGCAACGACCTGGCGGGCCGGGTGTCGTTCGAAACCCTTAACGACCAGCTCGAAAGCGTTCCCCGCGCCAGCGCCAACAAGTTCATCCAGGCCCAGCGCGACCAGCTCTCGCCACGGATCAACGCCGGCGAAGAGAAGATCGCCCCGCGTCACGCCGAACGCGTGGCCGAGGCGCAACGCCGTCTGGCGGCCGACACCGAAGAGGAACTGGCCCGTTTGACCGCTTTGCAAGCGGTGAACCCTACCGTGCGCGACAGCGAACTGGAGGCTCTGCGCCAGCAGCGTGAGCAAGGGTTGGCGATGCTGGAGAAGGCTGCGTTGCGGCTGGAGGCGATTCGGGTGTTGGTGGCGGGGTGAMAQQYQPGQRWISDSEAELGLGTVLAQDGRLLTVLYPATGDTRQYALRNAPLTRVRFSPGDVITHFEGWKMTVREVDDVDGLLVYHGLNGQNEVVTLPETQLSNFIQFRLASDRLFAGQIDPLAWFSLRYHTLEHTSRQLQSPLWGLGGVRAQPIAHQLHIAREVADRIAPRVLLADEVGLGKTIEAGLIIHRQLLSGRASRILILVPENLQHQWLVEMRRRFNLQVALFDEERFIESDASNPFEDTQLALVALEWLVEDEKAQDALFAAGWDLMVVDEAHHLVWHEDQVSPQYALVEQLAETIPGVLLLTATPEQLGQDSHFARLRLLDPNRFHDLQAFRAESENYRPVAEAVQELLDKGRLSPEAHQTIHGFLGNEGEALLTAVNDGDIEASARLVRELLDRHGTGRVLFRNTRAAVQGFPERKLHAYPLPCPDEYLELPLGEHAELYPEVSFQAQPEAGEEERWWKFDPRVEWLIDQLKMLKRTKVLVICAHAETAMDLEDALRVRSGIPATVFHEGMNILERDRAAAYFADEEFGAQVLICSEIGSEGRNFQFAHHLVLFDLPAHPDLLEQRIGRLDRIGQKHTIELHVPYLETSPQARLFQWYHEALNAFLNTCPTGNALQHQFGPRLLPLLEEADDGEWQALIDEARAERERLEAELHTGRDRLLELNSGGAGEGDALVEAILEQDDQFALPIYMETLFDAFGIDSEDHSDNALILKPSEKMLDASFPLGDDEGVTITYDRNQALSREDMQFITWEHPMVQGGMDLVLSGSMGNTAVALIKNKALKPGTVLLELLYVSEVVAPRSLQLGRYLPPAALRCLLDANGNDLAGRVSFETLNDQLESVPRASANKFIQAQRDQLSPRINAGEEKIAPRHAERVAEAQRRLAADTEEELARLTALQAVNPTVRDSELEALRQQREQGLAMLEKAALRLEAIRVLVAGNANANANANA
D1-35_01697342hypothetical proteinATGTTGCCACCCATGCTCCCCTTGAGCGCCGTACCCATCACCGCTCAGCAGGATCCGATCCGCCCGCGACCGGATATTCCTCCCGTGGTCCCGGTACAACAAAGCTCCAACGAAAGCACCATCGACCTGCAAAAGGGTGACCCGGAGGAGGCCGCTCTGTTGCTGCGCGAAGAGCAGCGTCGCCAGCAGGAGCGCAACCGGCGCCGCCGCGAAGCCGACGAGGATCCCGAGGAGCATCTGGCTGTTCCGGGCACGGAACTGAACGCCGACAACACCGTGCCGGTCGTTCCGCTCGTCGAGGGCGAAGAGCGCCAGGGCCTATGGGTGGATATCCAGATCTGAMLPPMLPLSAVPITAQQDPIRPRPDIPPVVPVQQSSNESTIDLQKGDPEEAALLLREEQRRQQERNRRRREADEDPEEHLAVPGTELNADNTVPVVPLVEGEERQGLWVDIQINANANANANA
D1-35_01698162hypothetical proteinATGAGCCAAGAAGACAAACTGATTGATCTCGGTGCAGAGCGCGCAAAGCGCGTTCACGACCTCAACGAAAAACGTCTCAATGAAGTCCGCCAGGCCTTCGAGCAGGCCATGCCCTTGGGCAAGCCGAAGAAAAAATCGAAAAACAAACCGAAAAAGCGCTGAMSQEDKLIDLGAERAKRVHDLNEKRLNEVRQAFEQAMPLGKPKKKSKNKPKKRNANANANANA
D1-35_01700117hypothetical proteinATGTTTATCGATAATGTGGTGTTTGCCGGTGTGTTGACGGTCGGCCTCATGTTCGTGTTTTTCGCAGGGTTTGGATTATTCATCTGGAAAGACGCACACAAGCGCAAAAAGCCGTAGMFIDNVVFAGVLTVGLMFVFFAGFGLFIWKDAHKRKKPNANANANANA
D1-35_017011476pitACOG0306Low-affinity inorganic phosphate transporter 1ATGATCGATTTATTCAGCGGACTGGATGCTTGGGTGCTCGTGAGCCTCTTGCTCGCCCTGGCTTTTGTCCTCGCCTTCGAGTTCATCAACGGCTTTCATGACACCGCTAACGCGGTTGCCACTGTTATCTACACCAAAGCCATGCCGCCTCACCTGGCGGTGTTCTTTTCCGGTGTGTTCAATTTCCTCGGCGTACTGCTGGGTGGCGTGGGGGTGGCGTACGCCATCGTTCACCTGTTGCCCGTGGAGCTGCTGATCAATGTGAACACCGGACACGGCTTGGCCATGGTGTTCTCGCTGCTCGCGGCGGCCATCACCTGGAACCTCGGCACGTGGTACTTCGGTATCCCGGCGTCCAGCTCCCATACGCTGATCGGCTCGATCCTCGGCGTGGGCCTGGCCAATGCGCTGATCAACGATATCCCGTTGGCCGACGGGGTGAACTGGCAGAAAGCGATCGATATCGGCGCCTCCCTGGTGTTCTCGCCGATGGCCGGCTTCCTGATCGCGGCCCTGGTGTTGCTCAGCCTGAAATGGTGGCGCCCGCTGTCGAAGATGCACAAGACGCCGGAACAGCGCCGCAAGATCGACGACAAGAAACATCCGCCGTTCTGGAATCGCCTGGTACTGGTGATTTCCGCCATGGCCGTCAGCTTCGTCCACGGCTCAAACGATGGCCAGAAAGGCATCGGCCTGATCATGCTGGTGTTGATCGGTATCGTACCCGCACAGTTCGTACTCGACCTGAACAGCACTACCTACCAGATCGAGCGCACCCGCGACGCGACGTTGCACCTTAGCCAGTTCTACAAGCGCAACAACGAGTCGCTGGGTGAGTTCCTGGCCTTGGGCAAGAGCGTCGAAGGCGACCTGCCGGAGAAATTCCGCTGCAACCCGCAGCAGACCGAACCGACCATCAATGCGCTGCTCGACACCCTCAAAGGCGTGGCGGATTACCACTCGCTGCCGTCGGAAAGCCGCATCGAAGTGCGCCGCTACCTGCTTTGCCTGGACGACACGGCGAAAAAGGTCGGCAAGTTGCCTGGCTTGGCAGCCCGTGAAAAAGACGACCTGAACAAGCTGCGCAAGGACCTGACCGCGACCACCGAATACGCCCCGTTCTGGGTAATCCTGGCGGTTGCCCTGGCCCTCGGCCTGGGCACCATGGTCGGCTGGAAGCGCGTGGTACTGACCATTGGCGAGAAGATCGGCAAGCAAGGCATGACCTACGCCCAAGGCATGTCGGCGCAGATCACCACGGCCTGCATGATCGGTGCAGCGAATATCTTCAGCCTGCCGGTTTCCACCACCCACGTGCTGTCTTCCGGCGTGGCGGGCACGATGGTGGCCAACAAGAGCGGCCTGCAGGGCGGCACGGTCCAGACCATCCTGCTGGCCTGGGTGCTGACCCTGCCAGCGACGGTGGGCCTGTCGGCGGCACTGTTCTGGCTGGCGTCGAAGGCCATCGGCAGCTGAMIDLFSGLDAWVLVSLLLALAFVLAFEFINGFHDTANAVATVIYTKAMPPHLAVFFSGVFNFLGVLLGGVGVAYAIVHLLPVELLINVNTGHGLAMVFSLLAAAITWNLGTWYFGIPASSSHTLIGSILGVGLANALINDIPLADGVNWQKAIDIGASLVFSPMAGFLIAALVLLSLKWWRPLSKMHKTPEQRRKIDDKKHPPFWNRLVLVISAMAVSFVHGSNDGQKGIGLIMLVLIGIVPAQFVLDLNSTTYQIERTRDATLHLSQFYKRNNESLGEFLALGKSVEGDLPEKFRCNPQQTEPTINALLDTLKGVADYHSLPSESRIEVRRYLLCLDDTAKKVGKLPGLAAREKDDLNKLRKDLTATTEYAPFWVILAVALALGLGTMVGWKRVVLTIGEKIGKQGMTYAQGMSAQITTACMIGAANIFSLPVSTTHVLSSGVAGTMVANKSGLQGGTVQTILLAWVLTLPATVGLSAALFWLASKAIGSPGPT0002645_329DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002645-pitA|pit-K16322NANA
D1-35_01702201hypothetical proteinGTGACGAAAGACGAACTGCGCGCGGAACTTGAGCGCCAGGAACAACGTTACAAGGAAGTTTACGGCGGAGAAATCACCACCTACGCCGCGCAACCTGAACCGGAACGCAAACCCTGGCGCAAACGCGCCACTGTTCAGGACCAGGCGTTCAGCCAGGAACTGCAAAAGATGGAAAAAGAACTCAAGGCCGAGGAAGAATGAMTKDELRAELERQEQRYKEVYGGEITTYAAQPEPERKPWRKRATVQDQAFSQELQKMEKELKAEEENANANANANA
D1-35_01703843pcaRCOG1414Pca regulon regulatory proteinATGAACGACCAATTGCGCAACGCCTTCACTTCAGTAGCGCCGCCGATCGTCGCTTCGCCGGCCAAGCGGATCCAGGCCCTGACCGGTGACCCGGACTTCATGACCTCGCTGGCCCGTGGACTGGCGGTGGTCCAGGCATTCCAGGAGCGCAAGCGGCACCTGACCATCGCCCAGATCAGCCACCGCACCGAAATTCCCCGCGCGGCGGTGAGGCGCTGCCTGCACACGTTGATCAAGCTCGGCTACGCCACCACGGACGGACGGACTTATTCGCTGTTGCCCAAAGTGCTGACCCTGGGCCATGCCTATCTGTCATCGACACCGCTGGCGGTTTCTGCCCAACCCTACCTGGACCGCATGAGCGAACAGCTGCACGAGGCCTGCAACATGGCGACGCTGGAAGGCGATGACATCCTTTACATCGCCCGGTCGGCCACGACTCAAAGGCTGATTTCGGTGGACCTGTCCGTCGGTGGCCGCCTGCCAGCCTATTGCACGTCAATGGGCCGGATTTTGCTGGCGGCACTGGATGACGCGTCGCTGCGTGATTATCTCGAGCATGCCGACCTGCAGGCCAAGACCAGCCGCACCCTGCACACGCCCGAGGCGCTGCTCGAATGCCTGCAACAGGTCCGGCAGCAGGGTTGGTGCATTGTCGATCAGGAACTGGAACAGGGCCTGCGCTCGATTGCCGTGCCGGTATACGATGCTTCGGGCCAGGTGGTGGCGGCCCTGAACGTCAGCACCCATGCCGGACGGGTCAGCCGCAACGAGCTGGAGCAGCGCTTTTTGCCTGGCCTGCTCGGGGCCAGCCGGGACCTGAGCGCGCAACTGTTCACTTAAMNDQLRNAFTSVAPPIVASPAKRIQALTGDPDFMTSLARGLAVVQAFQERKRHLTIAQISHRTEIPRAAVRRCLHTLIKLGYATTDGRTYSLLPKVLTLGHAYLSSTPLAVSAQPYLDRMSEQLHEACNMATLEGDDILYIARSATTQRLISVDLSVGGRLPAYCTSMGRILLAALDDASLRDYLEHADLQAKTSRTLHTPEALLECLQQVRQQGWCIVDQELEQGLRSIAVPVYDASGQVVAALNVSTHAGRVSRNELEQRFLPGLLGASRDLSAQLFTNANANANANA
D1-35_017041347pcaKCOG04774-hydroxybenzoate transporter PcaKATGAACCAGCCCCAGACCTCCGTAGGCACCTGCCTCGATGTGCAGTCCTTCATCAATGCCCAGCCCATTTCTCGTTACCAATGGCGAGTGGTCATTCTCTGTTTCCTGATCGTTTTCCTCGATGGCCTCGACACCGCGGCCATGGGATTCATCGCCCCGGCGCTTTCCCAGGATTGGGGCATCAACCGGGCCAGCCTTGGCCCGGTGATGAGCGCAGCGCTGATCGGCATGGTATTCGGCGCACTGGGTTCCGGCCCATTGGCTGACCGTTTCGGACGAAAAATCGTATTGGTGGGGGCGGTCGTGTTGTTCGGTGCTTTCAGCCTGGCCTCGGCCTTCTGTACCAACGTCGACCAACTGCTGGTGCTGCGTTTCCTGACCGGCCTGGGATTGGGGGCCGGGATGCCGAATGCCACGACCCTGCTCTCGGAATACACGCCGGAACGCAAGAAGTCCCTGCTGGTCACCAGCATGTTCTGCGGCTTCAACCTGGGTATGGCCGGTGGCGGTTTCATCTCTGCCAAGCTGATACCGGCGTTCGGCTGGCACAGCTTGCTGCTGATCGGCGGCGTGCTGCCGTTGATCCTGGCGGTGGTGCTGGTGTTCTGGCTGCCGGAGTCGGCGCGTTACCTGGTGGTGCGTAACCGTGGCACCGACAAGGTGCGCAAGACCCTGGCGCCGATCGACCCGCCGACCATCGCCCAGGCGGCCAGCTTCAGCGTGCCCGAACAAAAGACCGTAAAAGCGCGCAACGTGCTGGCGGTGATCTTTTCCGGTACCTACAGCGCCGGCACCTTGTTGTTGTGGCTGACGTATTTCATGGGGCTGGTGATCGTCTATCTGCTGACCAGTTGGCTGCCGACGCTGATGCGCGACAGCGGCGCGAGCATGGAGCAGGCGGCGTTCATCGGCGCGCTGTTTCAGTTTGGCGGCGTATTGAGTGCCGTCGGGGTGGGTTGGGCGATGGACCGCTTCAATCCGCACAAGGTCATCGGCATTTTCTACCTGATGGCCGGGATATTTGCCTACGCAGTGGGGCAGAGTCTGGGCAACATTACCTTGCTCGCTACCCTGGTGCTGGTGGCCGGCATGTGCGTCAACGGCGCGCAATCGGCGATGCCGTCCCTGGCGGCGCGCTTCTACCCAACCCAGGGCCGGGCCACCGGGGTGTCGTGGATGCTGGGCATCGGCCGGTTCGGCGCAATTCTTGGCGCGTGGATGGGCGCGACGTTGTTGGGGTTGGGCTGGAACTTCGAACAGGTCCTGACCGCGCTGGTGATTCCAGCGGCATTGGCGACCGCGGCGGTCGTTATCAAAGGCATGGTCAGCCATGCGGATGCGACCTGAMNQPQTSVGTCLDVQSFINAQPISRYQWRVVILCFLIVFLDGLDTAAMGFIAPALSQDWGINRASLGPVMSAALIGMVFGALGSGPLADRFGRKIVLVGAVVLFGAFSLASAFCTNVDQLLVLRFLTGLGLGAGMPNATTLLSEYTPERKKSLLVTSMFCGFNLGMAGGGFISAKLIPAFGWHSLLLIGGVLPLILAVVLVFWLPESARYLVVRNRGTDKVRKTLAPIDPPTIAQAASFSVPEQKTVKARNVLAVIFSGTYSAGTLLLWLTYFMGLVIVYLLTSWLPTLMRDSGASMEQAAFIGALFQFGGVLSAVGVGWAMDRFNPHKVIGIFYLMAGIFAYAVGQSLGNITLLATLVLVAGMCVNGAQSAMPSLAARFYPTQGRATGVSWMLGIGRFGAILGAWMGATLLGLGWNFEQVLTALVIPAALATAAVVIKGMVSHADATPGPT0005400_984DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-HYDROXYBENZOATE_METABOLISM,PGPT0005400-pcaK-K08195NANA
D1-35_01705861catI3-oxoadipate CoA-transferase subunit AATGGCTGAAATCCTTTCGCTGCACGACGCGGTGAAGCAGTTCGTCAACGACGGCGATACCGTCGCGCTCGAAGGCTTCACGCACCTGATCCCGACGGCGGCGGGTCATGAAATCATTCGTCAGGGCAAGAAGAACCTGGCCCTGGTGCGCATGACGCCTGACCTGATCTACGACCAGTTGATCGGCGCCGGCTGTGCTCGCAAGCTGATTTTTTCCTGGGGCGGCAATCCTGGAGTGGGTTCCTTGCACCGGCTGCGCGATGCGGTCGAAAAGCAATGGCCGCATCCGCTGGAGATCGAGGAGCACAGCCACGCCGACCTGGCAAATGCCTACGTTGCCGGCGCCTCCGGCCTGCCGTTTGCGGTGCTTCGGGCCTACGCCGGCTCCGACCTGCCGAAGGTCAATCCGCTGATCAAGAGCGTCACCTGCCCCTTCACCGGGGAGGTACTGGCCGCCGTCCCTTCGGTGCGGCCGGACATTACCGTGATCCACGCACAGAAGGCCGACCGCAAGGGCAACGTGTTGCTGTGGGGCATCCTCGGTGTGCAGAAAGAAGCGGCCCTGGCGGCCAAGCGTTGCATCGTCACCGTGGAAGAAGTCGTTGACGACCTGAACGCGCCGATGAATGCCTGCGTGCTGCCAACCTGGGCCTTGAGCGCGGTATGTCATGTACCGGGTGGCGCGCATCCGTCCTACGCCCACGGCTACACCGAGCGTGACAATCGTTTCTACCAGGCGTGGGATCCTATCGCCCGGGACCGTGAGACATTTACCGCATGGATTGACGAGTACATCCATGGCACCAGGGACTTCAGTGAATTCCAGGCCCGGCTGGCGGCCGCTTCGCAGGTGAAACCATGAMAEILSLHDAVKQFVNDGDTVALEGFTHLIPTAAGHEIIRQGKKNLALVRMTPDLIYDQLIGAGCARKLIFSWGGNPGVGSLHRLRDAVEKQWPHPLEIEEHSHADLANAYVAGASGLPFAVLRAYAGSDLPKVNPLIKSVTCPFTGEVLAAVPSVRPDITVIHAQKADRKGNVLLWGILGVQKEAALAAKRCIVTVEEVVDDLNAPMNACVLPTWALSAVCHVPGGAHPSYAHGYTERDNRFYQAWDPIARDRETFTAWIDEYIHGTRDFSEFQARLAAASQVKPPGPT0006105_569DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_ACRYLONITRITE|ACRYLAMIDE_DEGRADATION,PGPT0006105-gctA-K01039NANA
D1-35_01706780catJ3-oxoadipate CoA-transferase subunit BATGACCTATTCCACCAATGAGATGATGACCGTCGCCGCGGCCCGTCGGCTGAAGAACAACGCCGTGTGTTTCGTTGGCATCGGCCTGCCGTCGAAAGCGGCCAACCTGGCGCGGCTGACTTCGTCGCCTGATGTTGTCCTGATCTACGAATCCGGTCCGATCGGCGCCAAGCCCAGCGTATTGCCGCTGTCCATCGGCGACGGTGAACTGGCGGAAACCGCGGACACCGTCGTACCCACCGGTGAGATTTTTCGCTATTGGCTGCAGGGCGGGCGCATCGACGTCGGCTTCCTCGGCGCGGCCCAGGTGGACCGTTTCGGCAACATCAACACCACCGTGGTCGGCGATTATCATCAGCCGAAAGTCCGTTTGCCGGGGGCCGGTGGCGCGCCGGAAATCGCCGGCTCGGCGAAAAGTGTGTTGATCATCCTCAAGCAATCGGCGCGTTCGTTTGTCGACAAGCTGGACTTCATCACCTCGGTCGGTCACGGCGAAGGCGGTGATTCGCGCAAGCGCCTCGGCCTGCCGGGCGCTGGCCCCGTAGGGATCATCACTGACCTGTGCATCATGGAACCGGAAGCCGGCAGCCATGAGTTCGTGGTCACTTCGCTGCACCCCGGGGTGACCCGTGAGCAAGTGATTGCCGCCACCGGCTGGGCGATCCGTTTCGCCGACCAGGTGCAGACCACCGCCGAACCGACCGAGGTCGAGTTGCGCGCATTGCGCGACCTTGAGGCCCGTACCGCTGCGGCCCACGGCCAGACTCCAGGAGAAGCCTGAMTYSTNEMMTVAAARRLKNNAVCFVGIGLPSKAANLARLTSSPDVVLIYESGPIGAKPSVLPLSIGDGELAETADTVVPTGEIFRYWLQGGRIDVGFLGAAQVDRFGNINTTVVGDYHQPKVRLPGAGGAPEIAGSAKSVLIILKQSARSFVDKLDFITSVGHGEGGDSRKRLGLPGAGPVGIITDLCIMEPEAGSHEFVVTSLHPGVTREQVIAATGWAIRFADQVQTTAEPTEVELRALRDLEARTAAAHGQTPGEAPGPT0006110_342DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_ACRYLONITRITE|ACRYLAMIDE_DEGRADATION,PGPT0006110-gctB-K01040NANA
D1-35_017071203pcaFBeta-ketoadipyl-CoA thiolaseATGCGCGACGTTTTTATCTGTGATGCGATTCGAACCCCCATCGGCCGGTTCGGCGGCAGCCTGTCCGCGGTGCGTGCCGATGACCTGGCGGCCGTGCCGATCAAGGCGCTGATGGAACGCAACCCATCGGTGGACTGGCGCGCGGTGGACGAAGTGTTCCTCGGCTGCGCCAACCAGGCCGGTGAAGACAACCGCAACGTAGCGCGCATGGCCTTGTTGCTGGCCGGTCTGCCGGAGAGCATCCCCGGCGTGACGGTCAACCGCCTCTGCGCCTCGGGCATGGACGCTATCGGCACGGCGTTTCGTGCCATTGCCAGCGGCGAAATGGAGCTGGCCATCGCCGGCGGCGTCGAATCGATGTCCCGCGCGCCGTTCGTGATGGGCAAGGCCGATGCGGCGTTCTCACGCAACATGAAGCTGGAGGACACGACCATTGGTTGGCGCTTCATCAACCCGCTGATGAAAGCCCAGTACGGCGTTGATGCAATGCCGCAGACCGCTGATAACGTGGCGGATGACTACGCGGTGTCCCGCGCAGATCAAGACGCCTTTGCCGTGCGCAGCCAGCAGCGTGCGGCGGCGGCCCAGGCGGCGGGATTTTTTGCCGAAGAAATCGTGCCGGTTCGCATCGCCCACAAAAAGGGCGAAACGGTGGTCGAGCAGGACGAGCATCCACGCGCCGACACCACGTTGGAAACCTTGGGCCGACTCAAACCGGTCAACGGCCCGGACAAGACCGTGACCGCCGGCAACGCCTCGGGCGTGAATGACGGGGCGGCGGCGCTGATCCTCGCGTCCGCCGAAGCGGTGAAGAAACACGGCCTGACCCCCAGAGCCAGAGTGCTGGGCATGGCCAGCGCCGGCGTCGCGCCACGGGTGATGGGCATCGGCCCGGTGCCAGCGGTGCGCAAACTGACTGAGCGCCTGGGCCTGGCGGCCGCCGATTTTGACGTGATCGAGCTCAACGAAGCCTTTGCCAGCCAGGGCCTGGCGGTGTTGCGCGATCTTGGGCTGGCGGACGATGCTCCGCACGTCAATCCGAACGGTGGCGCCATTGCCTTGGGCCATCCACTGGGCATGAGCGGGGCGCGGCTGGTGATGACAGCGCTGCATCATCTGGAAAAGACCGGCGGCAAGAAAGGCCTGGCGACCATGTGCGTTGGCGTCGGCCAAGGTCTGGCACTGGCTATCGAACGCGTCTGAMRDVFICDAIRTPIGRFGGSLSAVRADDLAAVPIKALMERNPSVDWRAVDEVFLGCANQAGEDNRNVARMALLLAGLPESIPGVTVNRLCASGMDAIGTAFRAIASGEMELAIAGGVESMSRAPFVMGKADAAFSRNMKLEDTTIGWRFINPLMKAQYGVDAMPQTADNVADDYAVSRADQDAFAVRSQQRAAAAQAAGFFAEEIVPVRIAHKKGETVVEQDEHPRADTTLETLGRLKPVNGPDKTVTAGNASGVNDGAAALILASAEAVKKHGLTPRARVLGMASAGVAPRVMGIGPVPAVRKLTERLGLAAADFDVIELNEAFASQGLAVLRDLGLADDAPHVNPNGGAIALGHPLGMSGARLVMTALHHLEKTGGKKGLATMCVGVGQGLALAIERVPGPT0001570_149DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0001570-pcaF-K07823NANA
D1-35_01708705pcaHCOG3485Protocatechuate 3,4-dioxygenase beta chainATGACTGACAAGCCTGGTTACCGTCGCCCTCAAGTGGGCACTCAGCCGGAGTATCTGCACCCGCCGTACCAGTCCACCAACCTGCGCTCGCCGTCCAAGCCGTTGGTGTACCTGCCCCATTCATTGTCGGAAATCACCGGGCCGACCGTAGGTGCTGATCGTCTTCAGGAGAAGGACCATGACCTGACCGCCCAGCATGCCGGTGAGCCGCTCGGTGAACGGATCATCATTCACGGGCGCGTGCTCGATGAGCACGGCGAGCCGGTACCGGGCATCCTGATCGAGATCTGGCAGGCCAACGCCGCCGGTCGCTACAACCACGACCGTGACAACCACGATGCGCCGCTGGACCCGAACTTCACCGGCACCGGTCGCACCGTGACCGATGCCGATGGCGGGTATCAGTTCCAGACCATCAAGCCCGGCGCCTATCCGTGGGGCAACCACCACAACGCCTGGCGCCCGGCGCATATCCATTTTTCATTGTTCGGGCCGAGCATCCTGACGCGCCTGGTCACGCAGATGTATTTCCCCGGTGATCCGTTGCTGGAATACGATCCGATCTACAACTGCGTGCCGGACAGCCGTGCCAAGGAACGCTTGATCGCCAGTTTCGACCTGGAAAAAACCATTCCTCACTACGCCCTCGGTTATCGCTGGGACATCGTCTTGCGCGGCCGCGAAGCCACGCCGATGGAGAAATAAMTDKPGYRRPQVGTQPEYLHPPYQSTNLRSPSKPLVYLPHSLSEITGPTVGADRLQEKDHDLTAQHAGEPLGERIIIHGRVLDEHGEPVPGILIEIWQANAAGRYNHDRDNHDAPLDPNFTGTGRTVTDADGGYQFQTIKPGAYPWGNHHNAWRPAHIHFSLFGPSILTRLVTQMYFPGDPLLEYDPIYNCVPDSRAKERLIASFDLEKTIPHYALGYRWDIVLRGREATPMEKPGPT0005015_811DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005015-pcaH-K00449NANA
D1-35_01709567pcaGCOG3485Protocatechuate 3,4-dioxygenase alpha chainATGACGCTCAACGCCACTACGTCCCACACCGTCGGCCCTTACTACCACATCGGCCTGACGTGGCTGAACCGCGAAGACCTGACCGACGCCCAGACGCTCGGCCAGCGCGTGGCGATCACCGGGCAAGTGATCGACGGCAACGGCCAGTTCGTCAACGACGCCATGCTGGAAGTCTGGCAGGCCAACGCCGCCGGTAAATACGCTCACCCGGAAGACGATCAGGACAAACCGCTGGACCCGCATTTCGACGGTTTCGGCCGGGTGCCGGTGGATGCCGAAGGGCGGTTCCGCTTTACCACCATCAAGCCGGGCACCGTGCCGGGGTTGGGCGGTACGACCCAGGCGCCGCATCTCGTTGTACTGGTGTTCGCCCGCGGGTTGGTCAAGCATCTGTTGACGCGCATCTATTTCGCCGACGAACCCGCCAACGAAGCTGATCAACTGCTGGCCTGCGTACCCGAGGAGCGTCGCGACACCATCGTGGCCAGGCCCGATGCGTCGGGTGTTTACCAGTGGAACGTGATTCTCCAGGGCACGGATGCCGAGACAGTGTTCTTCGATTACTGAMTLNATTSHTVGPYYHIGLTWLNREDLTDAQTLGQRVAITGQVIDGNGQFVNDAMLEVWQANAAGKYAHPEDDQDKPLDPHFDGFGRVPVDAEGRFRFTTIKPGTVPGLGGTTQAPHLVVLVFARGLVKHLLTRIYFADEPANEADQLLACVPEERRDTIVARPDASGVYQWNVILQGTDAETVFFDYPGPT0005010_750DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005010-pcaG-K00448NANA
D1-35_017101296kgtP_2Alpha-ketoglutarate permeaseATGACCACCCCAATCAGCCATTACACCGGCGAAGAACGCAGCAAGCGCATCTTCGCCATCGTCGGTGCCTCTTCCGGCAACCTGGTCGAATGGTTCGACTTCTACGTCTATGCGTTCTGCGCGATTTATTTCGCCCCGGCGTTTTTCCCATCGGACAATCCGACGGTGCAACTGGTTAACACGGCGGGGGTATTCGCCGCCGGGTTCCTGATGCGGCCCATTGGCGGCTGGATTTTCGGCCGGGTAGCGGACCGTCACGGGCGCAAGAATTCGATGATGATCTCGGTGATGATGATGTGCTTCGGCTCGTTGCTCATCGCCTGCCTGCCCACCTACAAGGACATCGGCGTCTGGGCGCCGGTGCTGCTGCTGTTCGCTCGCCTGCTGCAAGGCCTGTCGGTGGGTGGCGAGTACGGCACGACCGCGACCTACATGAGCGAAGTCGCCCTCAAGGGGCATCGCGGCTTTTTTGCCTCGTTCCAGTACGTGACGCTGATCGGCGGGCAACTTTTGGCGGTGTCGCTGGTGGTGATCCTGCAGCAGTTTCTCAGCGAAGACGAACTGCGCGCTTACGGTTGGCGAATCCCGTTCGTGGTGGGCGCCGCCGCGGCGTTGATTTCCCTGTTCCTGCGCCGGTCCTTGAAGGAAACCACCAGCAAGGAAATGCGCGAAAACAAAGACGCTGGCAGCATCGCCGCGTTGTTTCGCGACCACAAGGCTGCGTTCATCACCGTGCTGGGCTACACCGCCGGCGGTTCGCTGATTTTCTACACCTTCACCACTTACATGCAGAAGTACCTGGTGAACACCGCCGGCCTGCATGCCAAGACCGCCAGTTACATCATGACCGGCGCGCTGTTTCTCTACATGTGCATGCAACCGCTGTTCGGCATGCTCGCAGACAAGATCGGCCGGCGTAACTCCATGCTCTGGTTCGGCGGCCTGGGGGCGTTGTGCACCGTGCCGATCCTGCTGACGCTCAAGGGCACCAGCAACCCGTTCCTGGCGTTTGTCCTGATCACTTTTGCCTTGGCGATCGTCAGCTTCTACACCTCCATCAGCGGTCTGGTGAAAGCCGAAATGTTTCCACCAGAAGTGCGGGCGCTGGGAGTAGGGTTGGCCTATGCGGTGGCAAACGCGATTTTTGGCGGTTCGGCCGAGTACGTTGCCTTGAGCCTGAAAGCCCAGGGCATGGAAAACGCTTTTTATTGGTATGTCACGGTGATGATGGTCGTTGCGTTCCTGTTCAGCTTGCGCCTGCCAAAACAGCCAGCGTATTTGCACCACGATCTTTAAMTTPISHYTGEERSKRIFAIVGASSGNLVEWFDFYVYAFCAIYFAPAFFPSDNPTVQLVNTAGVFAAGFLMRPIGGWIFGRVADRHGRKNSMMISVMMMCFGSLLIACLPTYKDIGVWAPVLLLFARLLQGLSVGGEYGTTATYMSEVALKGHRGFFASFQYVTLIGGQLLAVSLVVILQQFLSEDELRAYGWRIPFVVGAAAALISLFLRRSLKETTSKEMRENKDAGSIAALFRDHKAAFITVLGYTAGGSLIFYTFTTYMQKYLVNTAGLHAKTASYIMTGALFLYMCMQPLFGMLADKIGRRNSMLWFGGLGALCTVPILLTLKGTSNPFLAFVLITFALAIVSFYTSISGLVKAEMFPPEVRALGVGLAYAVANAIFGGSAEYVALSLKAQGMENAFYWYVTVMMVVAFLFSLRLPKQPAYLHHDLPGPT0001525_96DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_KETO-|OXOGLUTARATE_TRANSPORT,PGPT0001525-kgtP-K03761NANA
D1-35_017111365pcaBCOG00153-carboxy-cis,cis-muconate cycloisomeraseATGAGCGAACGACCGGGCAATCAGCTGTTCGATGCCTACTTCACCGCCCGCGACATGCGCGAAGTGTTCTGTGATGCGGGGCGTGTGCAGGCGATGCTCGACTTTGAGGCGGCGCTGGCCCGGGCCGAGGCGCGGGTTGGGCTGATTCCCCAGGAGGCGGTGGCGCCGATCGGGAATGCCTGTCGCGCCCAGCTGTACGACTTTTCAGCGTTGAGCGAAGCGATTGCCAGTGCCGGCAATTCTGCGATCCCTCTGGTCAAGGCGTTGGGCAAGCGCATCGCTGCCGAGAGCGCCGAGGCCGAACGCTACGTGCACTTGGGCGCAACCAGCCAGGACGTGATGGACAGTGGCTTGGTGCTGCAACTGCGCCAGGCGCTCGGACTGATCGAAGGTGAGCTGGCGCAACTGGCTGTCACCCTGGCTCGACAAGCCGAACGTTACGCCGCCGCGCCGCTGGCCGGGCGCACCTGGCTGCAACATGCCACGCCGGTCACCCTGGGGATGAAAATCGCCGGCTGGCTGGGGGCCGTCACGCGCAGTCGCCAGCGCTTGCGGGAACTCAAGCCGCGCCTGTTGGTACTGCAATTTGGAGGCGCCTCCGGGACCCTCGCCGCTTTGGGTGAGCAGGCGCTGCCGGTGGCCGAAGCCTTGGCCGCCGAGCTGCAACTGAACCTGCCGGAGCAGCCTTGGCACACCCAGCGCGATCGTTTGGTGGAGTTCGGCGCGGTGCTGGGCTTGATCGCCGGCAGCCTGGGCAAACTGGGGCGCGACGTCAGCCTGTTGATGCAGACCGAGGCAGGCGAGGCGTTCGAACCTTCGGCACCGGGCAAGGGCGGTTCGTCGACCATGCCCCACAAGCGCAACCCGGTGGGCGCGGCGGTGCTGATCGGCGCTGCGACGCGGGTGCCCGGTTTGTTGTCGACGCTGTTCAGCGCCATGCCTCAGGAACATGAGCGCAGCCTCGGCCTGTGGCACGCCGAATGGGAAACCCTGCCGGACATCTGCTGCCTGGTGTCCGGCGCGCTGCAACAGGCGCGACTGCTGGCCGAAGGGTTGGAAGTGGATACGGCGCGCATGGCCCGTAACCTGGAACTGACCCAAGGGTTGGTGCTGGCCGAAGCCGTCAGCATCGTCCTGGCCCAGCGGGTTGGTCGCGACACCGCGCATCATCTGCTGGAGCAATGCTGCAAGCGCGCGGTGGCCGAACAACGGCATTTGCGCGAGGTGCTGGGGGAAGAACCCCAGGTCACCGCGCAGTTATCCGCGACCGAGCTTGATCATCTGCTCGACCCGGCCCACTACCTCGGACAAGCCCAGGCCTGGGTTGCCCGAGCGGTGGCCGAACACCTTGCCTTGAATGCCTGAMSERPGNQLFDAYFTARDMREVFCDAGRVQAMLDFEAALARAEARVGLIPQEAVAPIGNACRAQLYDFSALSEAIASAGNSAIPLVKALGKRIAAESAEAERYVHLGATSQDVMDSGLVLQLRQALGLIEGELAQLAVTLARQAERYAAAPLAGRTWLQHATPVTLGMKIAGWLGAVTRSRQRLRELKPRLLVLQFGGASGTLAALGEQALPVAEALAAELQLNLPEQPWHTQRDRLVEFGAVLGLIAGSLGKLGRDVSLLMQTEAGEAFEPSAPGKGGSSTMPHKRNPVGAAVLIGAATRVPGLLSTLFSAMPQEHERSLGLWHAEWETLPDICCLVSGALQQARLLAEGLEVDTARMARNLELTQGLVLAEAVSIVLAQRVGRDTAHHLLEQCCKRAVAEQRHLREVLGEEPQVTAQLSATELDHLLDPAHYLGQAQAWVARAVAEHLALNAPGPT0005000_370DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005000-pcaB-K01857NANA
D1-35_01712816catD_1COG05963-oxoadipate enol-lactonase 2GTGGGATTGGTCAAACTCGCCGAGGGCGATCTGAGCTATTGTTTTGATGAGCGGCGATTGGACGGGCCGCAGGCCGCCCCGGTGCTGGTGCTCTCCAACTCTTTGGGTACCGATTTGCATATGTGGGACGAGCAGGTCGCGGCGTTCAGTGAACACTTTCGGGTCTTGCGTTTCGACACCCGTGGTCACGGCCGGTCGCTGGTCACCGAGGGCCCCTACAGCATCGAACAGCTGGGCCGCGACGTGCTGGCGATGCTTGATGCGCTGGATATCGACAAGGTGCATTTCTGCGGCCTTTCAATGGGTGGCCTGATCGGCCAGTGGCTGGGAATCAACGCCGGCGAGCGCCTGCACAAACTGGTGGTGTGCAATACCGCCGCGAAGATTGGCGACCCTTCGATGTGGAACCCGCGCATCGAAACCGTGCTGCGTGATGGCAAGGCGGCGATGGTGGCGTTGCGTGATGCGTCGATTGCCCGCTGGTTCACGCCGGATTTCGCCAAGGCCCATCCGGCGACGGCGGAAAAAATTACCGACATGCTGGCGGCGACCTCGCCCCAAGGCTATGCGGCCAACTGCGCCGCAGTACGCGACGCCGATTTTCGTGAGCAGCTATCGCTGATCCGTGTGCCACTGCTGGTGATCGCTGGCACCGAAGATGCCGTGACGCCGCCAGCGGGCGGACGTTTTATCCAAGAGCGGGTCGAGGGTGCCGAATACGCCGAGTTTCATGCCGCGCACTTGTCCAACGTCCAGGCCGGCGCCGCGTTCAGCGCGCGGGTACTGGATTTCCTGCTTGATACTGGCCGCGCCTGAMGLVKLAEGDLSYCFDERRLDGPQAAPVLVLSNSLGTDLHMWDEQVAAFSEHFRVLRFDTRGHGRSLVTEGPYSIEQLGRDVLAMLDALDIDKVHFCGLSMGGLIGQWLGINAGERLHKLVVCNTAAKIGDPSMWNPRIETVLRDGKAAMVALRDASIARWFTPDFAKAHPATAEKITDMLAATSPQGYAANCAAVRDADFREQLSLIRVPLLVIAGTEDAVTPPAGGRFIQERVEGAEYAEFHAAHLSNVQAGAAFSARVLDFLLDTGRAPGPT0004995_1014DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0004995-pcaD|catD-K01055NANA
D1-35_01713393hypothetical proteinGTGGACGAGAAACAACGTTACGACGAAGGCATGCAAGTACGCCGCGCAGTGCTGGGCGATGCCCACGTCGACCGCAGCCTCAATGCATTGACCGAATTCAACAGCGAATTCCAGGAGATGATCACCCGCCACGCCTGGGGCGACATCTGGACCCGCCCGGGCCTGCCGCGCCATACCCGCAGCCTGATCACCATCGCCATGCTGATCGGCATGAACCGCAACGAAGAACTCAAGCTGCACCTGCGCGCCGCCGCCAACAACGGCGTGAGCCGCAGCGAGATCAAGGAAGTAATCATGCAGAGCGCCATCTACTGCGGCATCCCGGCGGCCAACGCCACCTTCCACCTGGCCGAATCCGTCTGGGATGAACTGGGCATCGAATCACGAACTTGAMDEKQRYDEGMQVRRAVLGDAHVDRSLNALTEFNSEFQEMITRHAWGDIWTRPGLPRHTRSLITIAMLIGMNRNEELKLHLRAAANNGVSRSEIKEVIMQSAIYCGIPAANATFHLAESVWDELGIESRTPGPT0005005_2856DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005005-pcaC-K01607NANA
D1-35_01714525nicP_2Porin-like protein NicPATGGGCGACTGGACCCTGGGCGCCAACCTGGGCTACTTCACCGGCAAGGAAGACGGCAGCGCCCTGGCCGGCGATCTCGACAACAAGACCGCGTTCGCCATGCTCTCGGCCAAGTACGGTGGCAACACCTTCTACGTCGGCCTGCAGAAAGTCGGCGGCGATGATGCCTGGATGCGCGTCAACGGCACCAGCGGCGGGACCCTGGCGAACGACAGCTACAACTCCAGCTACGACAACGCCAAGGAAAAATCCTGGCAACTGCGTCATGACTTCAACTTCGCCGCTGTTGGCGTGCCGGGCCTGACCCTGATGAACCGCTACATCAGCGGTGACAACGTGCACACCGCCACCGTCGATGACGGCAAGGAGTGGGGCCGCGAGACTGAGCTGGCTTATACCGTGCAGAGCGGTGCGCTGAAGAGTCTCAACGTGAAGTGGCGCAACTCGACGATGCGCCGGGACTTCAATACCAATGAGTTCGATGAGAACCGGTTGATTGTCAGCTATCCGATCAGCTTGTTGTAAMGDWTLGANLGYFTGKEDGSALAGDLDNKTAFAMLSAKYGGNTFYVGLQKVGGDDAWMRVNGTSGGTLANDSYNSSYDNAKEKSWQLRHDFNFAAVGVPGLTLMNRYISGDNVHTATVDDGKEWGRETELAYTVQSGALKSLNVKWRNSTMRRDFNTNEFDENRLIVSYPISLLPGPT0023610_3DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GALLATE_RESISTANCE,PGPT0023610-galP-K16517NANA
D1-35_017151458ttgCCOG1538putative efflux pump outer membrane protein TtgCATGAGCAAGTCGCTACTCTCCCTGACCATCGCCGCCGTCGTGCTCAGCGGATGCTCGCTGATTCCCGACTATCAGCGGCCCGAAGCACCGGTCGCGGCGCAGTACCCGCAAGGGCCGGCCTACGAGCCGGCCAAAGCACCCGGCCAGGCCGCCGCCGAGCAGGGCTGGAAACAGTTCTTCCACGATCCGGCACTGCAACAGCTGATCCAGGTCGCCCTGGAAAACAACCGCGACCTGCGCGTCGCGGCGCTGAACATCGACGCCTACGCCGCGCAGTACCGCATCCAGCGCGCCGACCTGTTCCCGGCGGTCTCGGCCACCGGCTCCGGCAACCGCCAGCGGGTGCCGGCACGCGCCTCGCAAACCGGTGAAGCGGCAATCAGCAGCTCCTACTCGGCGACGCTGGGGATCAGCGCCTACGAACTGGACCTGTTCGGTCGTGTCCGCAGCCTGAGCGAGCAAGCGTTGCAAAGCTACTTCGCCACCGAAGAAGCCCGCCGCAGCACCCAGATCAGCCTGGTGGCCAACGTCGCCAACGCTTACCTGACCTGGCAGGCCGACAAGGAACTGCTCAAATTGACCCAGGATACCCTCGGCACCTATGAGCAAAGCCTGAAGCTGACCTCGCGCAGCGCCGAAGTCGGCGTGGCCTCGGCCCTGGACTTGAGCCAAGCCCGTACGGCGGTGGAAAACGCCCGCGTGCAACTGGCCCGCTACACCCGCCAGGTGGCCCAGGACGAAAACAGCCTGACCCTGCTGCTGGGCACCGGCCTGCCGGCCAACCTGCAGACACAACCGCTGAGCGCCGACCTGCTCAGCGAAGTGCCACCCGGCTTGCCCTCGGACCTGCTGCAACGGCGCCCGGACATCCTCCAGGCCGAACGCAACCTGCTCGCCGCCAACGCCAATATCGGCGCCGCGCGGGCCGCGTTCTTCCCAAGCATCAGCCTGACGGCCAATGCCGGCACCCTCAGCCCGGACCTGTCCGGCCTGTTCAAGGGCGGCTCGGGCACCTGGACCTTCGCTCCGCAGATCAACCTGCCGATCTTCAACGCCGGCAGCCTGCGGGCAAGCCTGGATTACGCGAAGATCCAGAAAGACATCAACGTCGCGCAGTATGAGCAGTCGATCCAGACCGCGTTCCAGGAAGTCTCCGACGGCCTGGCCGCGCGTCAGACCTACAACGAACAGTTGCAGGCACAGACCGACTTCGTCGCCGCCAACCAGGACTACTACCGCCTGGCCGAGCGTCGCTACCGTATCGGCGTCGACAGCAACCTGACTTTCCTCGACGCCCAGCGCCAGTTGTTCAGCGCGCAGCAATCGCTGATCACCGATCGCCTTGCGCAACTGACCAGCGAGGTCAATTTGTACAAGGCCCTGGGCGGCGGCTGGAATGCCGAGACGGGCAAGCGCGAACCGATCGCGGAGAAAGCGCCGGAGACGAAGTTGTTTTGAMSKSLLSLTIAAVVLSGCSLIPDYQRPEAPVAAQYPQGPAYEPAKAPGQAAAEQGWKQFFHDPALQQLIQVALENNRDLRVAALNIDAYAAQYRIQRADLFPAVSATGSGNRQRVPARASQTGEAAISSSYSATLGISAYELDLFGRVRSLSEQALQSYFATEEARRSTQISLVANVANAYLTWQADKELLKLTQDTLGTYEQSLKLTSRSAEVGVASALDLSQARTAVENARVQLARYTRQVAQDENSLTLLLGTGLPANLQTQPLSADLLSEVPPGLPSDLLQRRPDILQAERNLLAANANIGAARAAFFPSISLTANAGTLSPDLSGLFKGGSGTWTFAPQINLPIFNAGSLRASLDYAKIQKDINVAQYEQSIQTAFQEVSDGLAARQTYNEQLQAQTDFVAANQDYYRLAERRYRIGVDSNLTFLDAQRQLFSAQQSLITDRLAQLTSEVNLYKALGGGWNAETGKREPIAEKAPETKLFPGPT0009810_1023DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexXY-OprM,PGPT0009810-toxI|oprM|oprM|emhC|ttgC|cusC|adeK|smeF|mtrE|cmeC|gesC-K18139NANA
D1-35_017163165ttgBCOG0841putative efflux pump membrane transporter TtgBATGTCGAAATTCTTTATCGACCGTCCAATCTTCGCCTGGGTGATTGCCCTGGTGATCATGCTGGTCGGGGCCCTATCGATCCTCAAGTTGCCGATCAACCAGTACCCGAGCATCGCGCCGCCGGCCATTGCGATCCAGGTGACCTACCCGGGTGCATCCGCACAAACCGTGCAGGACACCGTGGTGCAGGTCATCGAGCAACAGCTCAACGGTATCGACAACCTGCGTTATGTGTCGTCGGAAAGTAACTCCGACGGCAGCATGACCATCACCGCAACCTTCGAGCAAGGCACCAACTCCGATACCGCGCAGGTCCAGGTGCAGAACAAGCTGAACCTGGCCACTCCGCTGTTGCCGCAGGAAGTGCAGCAACAAGGCATCCGCGTGACCAAGTCGGTGAGAAACTTCCTGATGGTGATCGGCGTGGTCTCGCGCGATGGCAGCATGACTCGTGAGGACCTGTCCAACTACATCGTGTCGAACATGCAGGACCCGATCTCGCGCACCAAGGGCGTCGGCGACTTCCAGGTCTTCGGTGCCCAGTACGCCATGCGGATCTGGCTCGACCCGGCCAAGTTGAACAAATTCAACCTGACCCCGGTGGATGTGAGCAACGCGGTTTCCGCGCAGAACGTCCAGGTCGCGTCCGGCCAGCTCGGCGGCCTGCCTGCCCTGCCCGGCCAGCAATTGAACGCCACCATCATCGGCAAGACCCGCCTGCAGACCGCCGAGCAGTTCAAGGCGATCCTGCTCAAGGTCAACCCGGACGGCTCGCAAGTGCGCGTCGGCGATGTCGCCGATGTGGCCCTGGGCGGCGAAAACTACAGTATCAACGCTCAGTTCAACGGCTTGCCGGCCTCCGGCCTGGCGGTGCGACTGGCGACCGGTGCCAACGCCCTTGACACGGCCAAGGCCCTGCGCCAGACCGTCGATGATCTCAAACCATTCTTCCCGCAAGGCCTGGAAGTGGTATTCCCGTACGACACCACGCCAGTGGTGAGCGAATCGATCAAGGGCGTGATTGAAACCCTGATCGAAGCGGTCGCGCTGGTGTTCCTGGTAATGTTCCTGTTCCTGCAGAACTTCCGCGCCACCATCATCACCACGATGACGGTGCCGGTGGTACTGCTGGGTACTTTCGGGATCCTCGCCGCGTTCGGTTTCAGCATCAACACCCTGACCATGTTCGGCATGGTGTTGGCCATCGGCTTGCTGGTGGACGATGCCATCGTGGTGGTGGAAAACGTCGAACGGGTGATGAGCGAAGAAGGCCTGTCGCCCAAGGAAGCGACCAAGAAATCCATGGGCCAGATCCAGGGCGCCCTGGTGGGCATCGCCCTGGTGCTGTCGGCGGTACTCCTGCCGATGGCGTTCTTCGGCGGCTCCACCGGCGTGATCTACAAGCAGTTCTCCATCACCATCGTCTCGGCCATGGCCCTGTCGGTGCTGGTGGCCCTGATCTTCACCCCGGCCCTGTGCGCCACCATGCTCAAGCCAATCCCCAAGGGCGAGCACGGCACGCCGAAACGCGGTTTCTTCGGCTGGTTCAACCGCAACTTCGACCGTGGCGTCCGCAGCTACGAGCGTGGCGTGGGCAACATGCTCAAGCACAAGGCTCCGTACCTGTTGGCCTACGTGATCATCTTGGTCGGCATGGTCTGGCTGTTCACCCGCATCCCCACCGCGTTCCTGCCGGAAGAAGACCAGGGCGTGTTGTTCGCCCAGGTGCAGACACCGGCCGGCTCCAGTGCCGAGCGCACCCAGGTGGTCGTGGACAAGATGCGTGAGTTCCTGCTGCGTCCGAGCAAGGACGGCGGTGAAGGGGATGGCGTGGCCTCGGTGTTTACCGTGACCGGCTTCAACTTCGCCGGTCGTGGCCAGAGCTCCGGCATGGCATTCATCATGCTCAAGCCGTGGGAAGAGCGAAACGCCGACAACACCGTATTCAAGATCGCCGGCCGCGCCCAGCAGCACTTCTTCACGTTCCGCGACGCGATGGTGTTTGCCTTTGCTCCGCCCGCGGTGATGGAACTGGGTAACGCCACCGGTTTCGACGTGTTCCTGCAGGACCGCGCCGGCATCGGTCACGAAAAACTGATGGAGGCTCGCAACCAGTTCCTGGGAATGGCTTCGCAGAGCAAGGTCCTGACCCAGGTGCGTCCGAACGGTCTCAACGACGAGCCCCAGTACCAGTTGGACATCGATGACGAGAAGGCCAGTGCCCTGGGCATCACCCTTTCGGACATCAACAATACGCTGTCGATTGCCCTCGGCAGTAACTATGTCAATGACTTCATCGACCGTGGTCGGGTGAAGCGCGTCTACGTTCAAGGCCGACCGGACGCGCGCATGAGCCCGGAGGACCTGAACAAATGGTACGTGCGCAACAGCGCCGGGACCATGGTGCCGTTCAGCGCCTTCGCCAAGGGCGAGTGGACCTACGGATCGCCGAAACTGGCCCGTTACAACGGCGTGGAAGCGATGGAAGTCCTCGGTGCTCCGGCGCCAGGTTACTCCACGGGTGAAGCGATGGCCGAAGTCGAGGCCATTGCGCAGAAGCTGCCGGCGGGTGTCGGCATCTCCTGGACAGGCCTGTCGTACGAGGAACGCCTGTCGGGTTCCCAGGCGCCGGCTCTGTACGCGCTCTCGCTGCTGATGGTATTCCTCTGCCTGGCGGCGCTGTATGAAAGCTGGTCGATTCCGATCGCGGTCATGCTCGTGGTGCCGCTGGGGATCATCGGTGCCCTGCTGGCCACCAGCCTGCGCGGCCTGTCCAACGACGTGTACTTCCAGGTGGGTCTGTTGACGACCATCGGCCTGGCGGCGAAAAACGCCATCCTGATCGTCGAGTTCGCCAAGGAGCTCCATGAACAGGGCCGGACTCTGGTGGAGGCCGCGATCGAAGCCTGCAGGATGCGTCTGCGGCCGATCATCATGACGTCCTTGGCATTCGTCCTCGGCGTGGTCCCGCTGGCCATTTCCACCGGCGCCGGCTCGGGCAGCCAGCACGCCATCGGTACCGGCGTGATTGGCGGTATGCTCACCGCGACCATCCTGGCAATCTTCTGGGTGCCATTGTTCTTCGTGACGGTGTCGTCAATCGGTCGACGTAAAAATATCGACCAGGACCACACTCCTGAAACTTCTAAAGAGGCTGGCCAATGAMSKFFIDRPIFAWVIALVIMLVGALSILKLPINQYPSIAPPAIAIQVTYPGASAQTVQDTVVQVIEQQLNGIDNLRYVSSESNSDGSMTITATFEQGTNSDTAQVQVQNKLNLATPLLPQEVQQQGIRVTKSVRNFLMVIGVVSRDGSMTREDLSNYIVSNMQDPISRTKGVGDFQVFGAQYAMRIWLDPAKLNKFNLTPVDVSNAVSAQNVQVASGQLGGLPALPGQQLNATIIGKTRLQTAEQFKAILLKVNPDGSQVRVGDVADVALGGENYSINAQFNGLPASGLAVRLATGANALDTAKALRQTVDDLKPFFPQGLEVVFPYDTTPVVSESIKGVIETLIEAVALVFLVMFLFLQNFRATIITTMTVPVVLLGTFGILAAFGFSINTLTMFGMVLAIGLLVDDAIVVVENVERVMSEEGLSPKEATKKSMGQIQGALVGIALVLSAVLLPMAFFGGSTGVIYKQFSITIVSAMALSVLVALIFTPALCATMLKPIPKGEHGTPKRGFFGWFNRNFDRGVRSYERGVGNMLKHKAPYLLAYVIILVGMVWLFTRIPTAFLPEEDQGVLFAQVQTPAGSSAERTQVVVDKMREFLLRPSKDGGEGDGVASVFTVTGFNFAGRGQSSGMAFIMLKPWEERNADNTVFKIAGRAQQHFFTFRDAMVFAFAPPAVMELGNATGFDVFLQDRAGIGHEKLMEARNQFLGMASQSKVLTQVRPNGLNDEPQYQLDIDDEKASALGITLSDINNTLSIALGSNYVNDFIDRGRVKRVYVQGRPDARMSPEDLNKWYVRNSAGTMVPFSAFAKGEWTYGSPKLARYNGVEAMEVLGAPAPGYSTGEAMAEVEAIAQKLPAGVGISWTGLSYEERLSGSQAPALYALSLLMVFLCLAALYESWSIPIAVMLVVPLGIIGALLATSLRGLSNDVYFQVGLLTTIGLAAKNAILIVEFAKELHEQGRTLVEAAIEACRMRLRPIIMTSLAFVLGVVPLAISTGAGSGSQHAIGTGVIGGMLTATILAIFWVPLFFVTVSSIGRRKNIDQDHTPETSKEAGQPGPT0003280_802DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexAB-OprM,PGPT0003280-acrB|acrE|mexB|adeJ|smeE|mtrD|cmeB-K18138NANA
D1-35_017171158ttgAputative efflux pump periplasmic linker TtgAATGCAATTCAAGCCAGCTGTTACCGCTCTGGTCACTGCCATCGCCCTGGCATCGCTGCTCAGCGGATGCAACAAGGAAGAGGCTGCCCCTGCCCCTCCCCCTCCTCAGGTCGGCGTCGTAACCCTCAAGACTCAGCCTTTTACCCTGACCTCCGAATTGCCGGGCCGCACCAGTGCGTTCCGCGTCGCCGAAGTGCGTCCGCAGGTCAACGGCATCATCCTCAAGCGCCTGTTCAAGGAAGGCGCCGACGTCAAGGCCGGCCAGCAGCTGTACCAGATCGACCCGGCCGTCTATGAAGCGAACCTCAAGAGCGCCGAGGCCAACCTGCGATCCACCAAGTCGATCGCCGATCGCTACAAGCAATTGGTCGACGAGCAGGCCGTCAGCCGCCAGGAGTACGACACCGCCGTGGCCAACCGCCTGGAGTCGGAAGCGAACCTGCAGACGGCCCAGATCAACGTGCGCTACACCAAAGTCTACGCGCCGATTTCCGGTCGCATCGGGCGCTCCTCGGTCACCGAGGGTGCGCTGGTGAGCAATGGCCAGACCGACGCCCTGGCGACCATCCAGCAACTCGATCCGATCTACGTCGACGTGACGCAGAGTTCCGTCGAGCTGCTGAACCTGCGCCGTGAGCTGGAAAGCGGTCGCTTGCAGAAGGCTGGCGATAATGCCGCCATGGTCAAGCTGACGCTGGAAGACGGCAGCCAGTATCCCCATGAAGGCAAGCTGGAGTTCTCTGAAGTCTCGGTCGACCCGACCACTGGTTCCGTGACCTTGCGCGCCGTGTTCCCCAACCCTGAGCACACGCTGCTGCCGGGCATGTTTGTCCACGCGCAGCTGCAGGCCGGCGTGAACAGCGCCGCAATCCTGGCGCCGCAGCAAGGCGTGACCCGCGACCTCAAGGGTACGCCGACTGCGCTGGTCGTGGGCGCGGACAACAAGGTCGAGCTGCGTCAGCTCAAGGCCAGCCGTACCGTCGGCAGCCAGTGGCTGATCGAAGACGGCCTCAAGGCCGGTGATCGCCTGATCACCGAAGGGTTGCAGTACGTACGGCCAGGGGTGGAAGTCAAAGCCACCGAAGCCACCAACGTCGACGCAAAGAACCCGGCCCCCGCTCAGGCAGCTGACAAAGCCGCCGGCGGCAAAGGGGAGTAAMQFKPAVTALVTAIALASLLSGCNKEEAAPAPPPPQVGVVTLKTQPFTLTSELPGRTSAFRVAEVRPQVNGIILKRLFKEGADVKAGQQLYQIDPAVYEANLKSAEANLRSTKSIADRYKQLVDEQAVSRQEYDTAVANRLESEANLQTAQINVRYTKVYAPISGRIGRSSVTEGALVSNGQTDALATIQQLDPIYVDVTQSSVELLNLRRELESGRLQKAGDNAAMVKLTLEDGSQYPHEGKLEFSEVSVDPTTGSVTLRAVFPNPEHTLLPGMFVHAQLQAGVNSAAILAPQQGVTRDLKGTPTALVVGADNKVELRQLKASRTVGSQWLIEDGLKAGDRLITEGLQYVRPGVEVKATEATNVDAKNPAPAQAADKAAGGKGEPGPT0003275_2969DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexAB-OprM,PGPT0003275-acrA|lir|mtcA|mexA|adeI|smeD|mtrC|cmeA-K03585NANA
D1-35_01719633ttgRHTH-type transcriptional regulator TtgRATGGTACGTCGTACCAAAGAAGAAGCCCTGGAGACTCGCAGCCAGATCCTTGAAGCGGCCGAAAAGGCCTTCTTCGAGCGCGGCGTGGCGCGAACGACGCTGGCCGACATCGCGACGCTGGCCGGTGTGACGCGTGGTGCGATCTACTGGCATTTCAGCAACAAGGCGGATTTGCTCCAGGCCATGCTCGATACCTTGCATGAGCCGCTCGATGAGTTGGCCCGCGCCAGCGAAAGCGAGGAGGAACTCGACCCGCTGGGGTGCGTGCGCAAGCTGCTGGTGAGGTTGTTCCAGCAGGTGGCCCTGGACCCGAAAACCCGCCGCATTAATGAGATTCTGTTCCATAAGTGCGAATTCACCGATGAAATGTGCGACTTGCGCCAGCAGCGGCGCGAGGTCAGCCTCGACTGTAACGTGCGAATCGCGCTGTCCCTGCGCAATGCAATGAAACGCGGTCAGATGCCGGATGACCTGGATCCCGAGAGAGCTGCGGTGGCTATCCATGCCTATATCGACGGGATCCTGTATCAGTGGCTGCTGGCGCCGGACAGCTTCGCCCTGGCCGGTGAGGCCGAGCGCTGGGTGGATATCGGGTTGGACATGCTGCGCCTGAGCCCTAACCTGCGCAAATGAMVRRTKEEALETRSQILEAAEKAFFERGVARTTLADIATLAGVTRGAIYWHFSNKADLLQAMLDTLHEPLDELARASESEEELDPLGCVRKLLVRLFQQVALDPKTRRINEILFHKCEFTDEMCDLRQQRREVSLDCNVRIALSLRNAMKRGQMPDDLDPERAAVAIHAYIDGILYQWLLAPDSFALAGEAERWVDIGLDMLRLSPNLRKPGPT0003255_578DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexAB-OprM,PGPT0003255-acrR|smeT-K03577NANA
D1-35_01720525hypothetical proteinATGAATAACTTTCCAGAAAACCCAGCAGATACAAAACCAAACGATTCCGCTGAAGAAAAAGCGTACCACGAACACTACGACAGGCAGATCCAGGCGTTGGAATCTGCCAAGGCGCCCGCCCACTCAACACGATTCATCATGAAAGTCGTCAACAATACCGAGCACGACCTTGATGCCAATAAAAACACGCTTGGCCTGAGCGCCGACAACCTCGCCACCTTGCAACTTCCCTCGGGAGGTATCAGCGTCTATGGTCAAGACTTCCGCTACGTTCGAAACCCAGGCTCTCGCAGCAAGGACATATACCACCACTGTATTCAATTCGGCGGAATGACGGTGGGAGCTTTCGTTGAGTTTGGTTTGCGCGTTGACACTTCGTTCGGGCTTTTCGCGCCGACAGTGACGCCAGTTCGGATATGTAAAATCATGTCTATCGGCACCACCCCAATCAACTGTACTGCCCGTATTACTCGTGCATTAAGCACAGACCCTTATAGCTTTACCATGGAGGTGACGCTGGGCTGAMNNFPENPADTKPNDSAEEKAYHEHYDRQIQALESAKAPAHSTRFIMKVVNNTEHDLDANKNTLGLSADNLATLQLPSGGISVYGQDFRYVRNPGSRSKDIYHHCIQFGGMTVGAFVEFGLRVDTSFGLFAPTVTPVRICKIMSIGTTPINCTARITRALSTDPYSFTMEVTLGNANANANANA
D1-35_017211050nemA_1COG1902N-ethylmaleimide reductaseATGGCGACAATTTTCGACCCCATCAAACTCGGTGACATCGAGCTGAAAAACCGCATCATCATGGCCCCGCTCACCCGCTGCCGCGCTGACGCAGGCCGAGTCCCCAACGCGCTGATGGCCGAGTATTACGTGCAACGCGCCTCCGCCGGGCTGATCCTCAGCGAAGCCACTTCGGTGACGCCGATGGGCGTGGGCTACCCCGATACCCCAGGCATCTGGTCCAACGACCAGGTACGCGGCTGGGCCAACGTGACCAAAGCCATCCACGGCGCCGGCGGCAAGATTTTCCTGCAGCTCTGGCACGTCGGCCGGATTTCCCACCCGTCCTACCTGGACGGTGAGCTTCCGGTGGCTCCGAGCGCCATCCAGCCCAAGGGGCATGTGAGCCTGGTACGTCCGCTGGCCGACTACCCGACGCCGCGCGCATTGGAAACCGCGGAAATCGCCGACATCGTCGATGCCTACCGCGTGGGTGCCGAAAACGCCAAGGCCGCCGGGTTTGATGGCGTGGAAATTCATGGCGCCAACGGCTACCTGCTCGACCAGTTCCTGCAAAGCAGCACCAACCAGCGCACCGACAACTACGGCGGCTCCCTGGAAAACCGTGCTCGCCTGCTGCTGGAAGTGACTGATGCGGCGATCGAAGTCTGGGGCCCCGGCCGCGTGGGCGTCCACCTGGCGCCGCGCGCCGACTCCCATGACATGGGCGACGAAAACCGCCTGGAAACCTTCAGCTATGTGGCCCGCGAACTGGGCAAGCGTGGCATCGCCTTCATCTGCTCGCGCGAGAAAGAAGGCGCGGACAGCATCGGCCCGCAACTGAAGCAAGCGTTCGGCGGCCCGTACATTGCCAATGAGCGCTTCACCAAAGAGAGTGCCAATGCCTGGCTGGCGGAAGGCAAGGCTGACGCCGTGGCGTTCGGCGTGCCGTTCATTGCCAACCCGGACCTGCCGGCACGCTTGAAAGCCGATGCACCGCTGAACGAACCTCACCCGGAAACCTTCTATGGCAAAGGACCGGTGGGGTATATCGACTATCCAGTCATGTAAMATIFDPIKLGDIELKNRIIMAPLTRCRADAGRVPNALMAEYYVQRASAGLILSEATSVTPMGVGYPDTPGIWSNDQVRGWANVTKAIHGAGGKIFLQLWHVGRISHPSYLDGELPVAPSAIQPKGHVSLVRPLADYPTPRALETAEIADIVDAYRVGAENAKAAGFDGVEIHGANGYLLDQFLQSSTNQRTDNYGGSLENRARLLLEVTDAAIEVWGPGRVGVHLAPRADSHDMGDENRLETFSYVARELGKRGIAFICSREKEGADSIGPQLKQAFGGPYIANERFTKESANAWLAEGKADAVAFGVPFIANPDLPARLKADAPLNEPHPETFYGKGPVGYIDYPVMPGPT0005930_2955DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_TOLULENE|DERIVATE_DEGRADATIONXENOBIOTIC_NITROTOLULENE_DEGRADATION,PGPT0005930-nemA-K10680NANA
D1-35_017221167ydhP_1COG2814Inner membrane transport protein YdhPATGCCCCTTTCACTCTTGATTCTGGCGCTCAGCGCCTTCGCCATCGGCACGACGGAATTCGTCATCATGGGCCTGTTGCCCGATGTGGCGGCGGACCTCGGCGTATCGATTCCCGGCGCCGGCTGGCTGGTGACCGGCTATGCGCTGGGCGTGGCCATCGGTGCGCCGTTCATGGCAATGGCCACCGCGCGGCTGCCGCGCAAGGCTGCGCTGGTGGCGCTGATGGGGATTTTCATAGTCGGCAACCTGCTCTGCGCCGTCGCCAGCGACTACAACGTACTGATGTTCGCCCGGGTCGTTACTGCCCTGTGTCACGGTGCGTTCTTCGGCATCGGCTCGGTGGTGGCGGCCGGCCTGGTGGCGCCGAACAAGCGCGCTTCGGCCGTGGCCCTGATGTTCACTGGCCTGACCCTGGCCAACGTGCTCGGCGTACCGCTGGGCACCGCACTGGGCCAGCAGGCCGGCTGGCGCTCGACTTTCTGGGCCGTGACGGTCATCGGTGTGATCGCGCTGATCGGCCTGATCCGCTTCCTGCCGGCCAAGCGCGACGAGGAAAAACTCGACATGCGTGCCGAGCTGGTGGCGCTCAAGGGCGCAGGCCTGTGGCTGTCGCTGAGCATGACTGCGTTGTTCTCCGCCTCGGTGTTCACGCTGTTTACCTACGTCGCCCCCCTGCTCGGCGAAGTCACCGGCGTTTCGCCCCGTGGCGTGACCTGGACCCTGGTCCTGATCGGCCTCGGCCTGACGCTTGGCAACATCATCGGCGGCAAGCTGGCGGACAAGAGCCTGGCGAACACGCTGATGGGCGTCTTTTTGACCATGGCGCTGGTATCCACCGTACTGAGCTGGACCAGCGTGGCGCTGATCCCGACTGAAATCACCCTGTTCCTCTGGGCCACCGCCTGCTTTGCCGCCGTGCCGGCCTTGCAAGTCAACGTGGTGACCTTCGGCAAAGCCGCGCCAAACCTGGTGTCCACCCTGAACATCGGTGCCTTCAACATCGGCAATGCCTTGGGTGCCTGGGTCGGCGGCAGTGTCATCGACCATGGCCTGGGCCTGACAGCCGTGCCCCTGGCCGCCGGCGCGCTGGCCGTGCTGGCGCTGCTGGTAACCCTGATCACTTTTCGCCAGGGCGGCAATGCCGACCTGGCCCCTGCCACTCACTGAMPLSLLILALSAFAIGTTEFVIMGLLPDVAADLGVSIPGAGWLVTGYALGVAIGAPFMAMATARLPRKAALVALMGIFIVGNLLCAVASDYNVLMFARVVTALCHGAFFGIGSVVAAGLVAPNKRASAVALMFTGLTLANVLGVPLGTALGQQAGWRSTFWAVTVIGVIALIGLIRFLPAKRDEEKLDMRAELVALKGAGLWLSLSMTALFSASVFTLFTYVAPLLGEVTGVSPRGVTWTLVLIGLGLTLGNIIGGKLADKSLANTLMGVFLTMALVSTVLSWTSVALIPTEITLFLWATACFAAVPALQVNVVTFGKAAPNLVSTLNIGAFNIGNALGAWVGGSVIDHGLGLTAVPLAAGALAVLALLVTLITFRQGGNADLAPATHPGPT0028991_3757DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0028991-ydhP-K19577NANA
D1-35_01723303hypothetical proteinATGACCCTCGACCTCGACGAAATAATAAAAGCCCTGGCGCACCCAGTACGGCGAGACATCCTCAACTGGCTCAAGGACCCCAAAGTCCAGTTCCCCGAACAGTTGCACAACCATGAATTCGGTATTTGCGCCGGCCAGATCGATCAGCGCTGCGGCCTTTCGCAGTCCACGGTTTCGGCGCATCTGGCGGTGCTGCAGCGGGCGGGGTTGATCACCAGCCAGAAGGTCGGTCAATGGCACTTCTTCAAACGCAACGAGGACGTGATCCAGCAATTCCTCAAGCAAATGAGCCAAGAGCTCTGAMTLDLDEIIKALAHPVRRDILNWLKDPKVQFPEQLHNHEFGICAGQIDQRCGLSQSTVSAHLAVLQRAGLITSQKVGQWHFFKRNEDVIQQFLKQMSQELPGPT0004735_436DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE_SYSTEM,PGPT0004735-arsR-K03892NANA
D1-35_01724585acpHCOG3124Acyl carrier protein phosphodiesteraseATGAACTATCTCGCACACCTGCACCTCGGCGGCCCTGGCCGGGAACAACTGCTCGGCAGCCTCTACGGCGATTTCGTCAAAGGGCCGCTGCAGGGGCAGTTCACTCCGCAGATCGAAGCGGCGATCGCCCTGCATCGACGCATCGACATGTACACCGATCGCCATCCGTTGGTGGATATCGCCTTGTCGCGCTTCTCCACGGTCCGCCGGCGTTATGCCGGGATCGTGCTGGATGTGTTTTTCGACCATTGCCTGGCCCGCGACTGGGCGCAGTACGGCGAAGGGCCGCTGCTGGATTTCACTTCCCGGGTCTACCAGGTGCTCGCCGCCGAAGCGCAACTGCCCGGGCGCCTGGCGCAGATCGCGCCGTTCATGGCAGCGGATGACTGGTTGGGTTCCTATAGGGAATTCGACGTGCTCGGGCAGGTGCTGCGCGGTATTTCCCGGCGCCTGTCGCGGCCCGAGGAACTGGCCGGGGCGATGGAGGAGTTGGTCAGGCTGTATGAGCCGTTGAGCGAGGATTTTCGGTTGTTCTATCCACAGTTGCAGGATTTTGCGCAGAATCAGATCACACCGCAAAATTGAMNYLAHLHLGGPGREQLLGSLYGDFVKGPLQGQFTPQIEAAIALHRRIDMYTDRHPLVDIALSRFSTVRRRYAGIVLDVFFDHCLARDWAQYGEGPLLDFTSRVYQVLAAEAQLPGRLAQIAPFMAADDWLGSYREFDVLGQVLRGISRRLSRPEELAGAMEELVRLYEPLSEDFRLFYPQLQDFAQNQITPQNPGPT0008850_556DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008850-acpH-K08682NANA
D1-35_01725795hypothetical proteinATGAGCCGGCTGCGGGTGTACGCGCGAATCGCGCGCGTGTTGCTGGTCGTCGCGCTGGGCCTGGCCATGGCCAGTGTGTTCGGGCTGCTGGAACGCCTGGGGCTGGCCCATTCGATGGTGCGCCGCCAGCGCTGGTCGAGGTTTTTCATGGCGCGACTGAGCAATGCCCTGCCCTTTCGCGTCACCGTTCATGGACACCTGCCAAAACAGCCGATGCTGTGGGTCAGCAACCATGTGTCCTGGACTGACATTCCGCTGCTGGGCATGCTCACGCCGCTGTCATTCCTGTCCAAGGCCGAAGTGCGCACCTGGCCGGTGGCTGGATGGCTGGCGGCCAAGGCCGGCAGCCTGTTCATCCGGCGCGGCTCGGGCGACAGCCAATTGATTCGTAAACAGATGAGCCGCCATCTGGAGCAAGCGCATCCGCTGCTCATGTTCCCTGAGGGCACGACCACCGACGGACGTTCGCTGCGCACGTTCCATGGTCGCCTGCTGTCGGCGGCCATCGATGCCGACGTGGCCTTGCAACCGGTGGCGATCCGTTACCTGCGTAACGGCAAACCCGACTTGCTGGCTCCCTTCATTGGCGATGATGACCTGCTGTCGCACCTGATGCGCCTGTTTGCCAATGACCTGGGCGACGTGGAAATCCACTTGCTGAAGCCCATCGCCTGCCACGGCCAGGAACGCGCGGCCCTGGCGTTCCAGGCGCAACAGGCGGTGCACAAGGCGCTGTTCGGAACGATTCCAGAGAAACAGCAAGCGCCGGTACGGCCTGCGGCGATTGCGGCTTGAMSRLRVYARIARVLLVVALGLAMASVFGLLERLGLAHSMVRRQRWSRFFMARLSNALPFRVTVHGHLPKQPMLWVSNHVSWTDIPLLGMLTPLSFLSKAEVRTWPVAGWLAAKAGSLFIRRGSGDSQLIRKQMSRHLEQAHPLLMFPEGTTTDGRSLRTFHGRLLSAAIDADVALQPVAIRYLRNGKPDLLAPFIGDDDLLSHLMRLFANDLGDVEIHLLKPIACHGQERAALAFQAQQAVHKALFGTIPEKQQAPVRPAAIAAPGPT0014465_479DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULE-ORNITHINE_LIPIDS_BIOSYNTHESIS,PGPT0014465-olsA-K22617NANA
D1-35_01726756hypothetical proteinATGACTCAGATCGCCCGCATCAGCGACACCGGCAATGAACGCCGCCTGCAAGCCGAACGCCTGATTGGCGCCAAGGCCTTGCACGAAGCACAGGCCCTGCGCTTCAACGTCTTCAGCGGCGAATTCAACGCCAAGCTCAAGGGCGCGGAACTGGGTCTGGACATGGATGACTATGATGTTCACTGCGCCCACATCGGCGTACGCGACCTGAACACCGGCCGCCTCGTGGCCACCACCCGCCTGCTCGACCACCAGGCCGCCAGCAGCCTGGGCCGGTTCTACAGCGAAGAAGAATTCAGCCTGCACGGGCTGGTCCATCTCCAGGGTCCGATCCTGGAAATCGGCCGCACCTGCGTCGACCCGGCCTACCGCAACGGCGGCACCATCGCGGTGCTCTGGGGCGAACTGGCCGAAGTCCTCAATGAAGGCGGCTACAGCTACCTGATGGGTTGCGCGAGCATTCCGATGCAAGACGGCGGCATCCAGGCCCAGGCAATCATGCAACGCCTGCGCGAACGCTACCTGTGCACCGAACACCTGCAAGCCGTGCCGAAAAAACCCTTGCCGGCACTGGACGTTCCGTCCAACGTCATCGCCGAGATGCCACCGCTGCTCAAGGCGTATATGCGCCTGGGCGCGAAGATTTGCGGCGAGCCGTGCTGGGACGAGGATTTCCAGGTCGCCGACGTGTTCATCCTGCTCAAGCGCGACGAACTCTGCCCGCGTTATGCCCGTCACTTCAAGGCGGCGGTGTGAMTQIARISDTGNERRLQAERLIGAKALHEAQALRFNVFSGEFNAKLKGAELGLDMDDYDVHCAHIGVRDLNTGRLVATTRLLDHQAASSLGRFYSEEEFSLHGLVHLQGPILEIGRTCVDPAYRNGGTIAVLWGELAEVLNEGGYSYLMGCASIPMQDGGIQAQAIMQRLRERYLCTEHLQAVPKKPLPALDVPSNVIAEMPPLLKAYMRLGAKICGEPCWDEDFQVADVFILLKRDELCPRYARHFKAAVNANANANANA
D1-35_01727873hypothetical proteinATGCCTTGGCAAACCCTGATCGAACGCGGCGAGCGGTTGCCTGCCTTTGTGGATCTGGCGGAAGGTTACGCGGGCTTGTTGCAACGGCTGGGGCCGGTCACGCCATTCGAGCTGGCCGTGGCCGGCGCCAAGTTGATGGCCACGCCGGGGCTCGCGTTCCTGGTGGGCTACCAGGCGGCCCTGCGGGCGCTCTGGCCAAGCGCGCCGCAGAGCCTCGGCGCCTTGTGCGCCACCGAGCAGCGCAGCCTGCGCCCGGCGGATATGCAGACCCGTCTCAGCGACTTGCGGGTGAATGGACGCAAGGATTTCGTCACCGCGGGCGATGCCGCCGAATGGCTGCTGATCGCGGCCCGAAGCGAAGCGGCCGGCGAAGCACCGCGGCTGAAGCTGGCGGTGGTCTATGGCGGAGAACCCGGTGTAAACCTGGAAAAACTCCCCGCCATCCCCTTGATGCCGGACATCGGCCATGCTCGGGTATTGCTCGATGGCGCGTTGTGCGAAGTGCTGCCAGGGGACGGCTGGGATGCCTACGTCAAACCGTTCCGTACCCTGGAAGACCTTTATGTGCTCAGTGCAATGGCTGCCTGGCTCTATGGTGTGGGCCAGGAGTGTGATTGGCCGCAGGCCTTGCAACTGCGCCTGTTGGCTCTGCTGGCGGGGTGCGCGGAGGTAAGTCGGCAAAATCCGTCCAGTGCGGCCGGGCATGTGCTGCTGGGTGGGCTGTTCGCGCAGTTCAAGGGGCTTGATGTTGAATTGAACGAGGCACTGGCTGCTGGGCCGGCGTCGTGGCGAGAAATGTGGGGGCGCGACAAAGGAGTCATGGATATCGCGGCGGGCGCGCGGGCCAAGCGGTTGGCCAAGGCGTTGGGCTAGMPWQTLIERGERLPAFVDLAEGYAGLLQRLGPVTPFELAVAGAKLMATPGLAFLVGYQAALRALWPSAPQSLGALCATEQRSLRPADMQTRLSDLRVNGRKDFVTAGDAAEWLLIAARSEAAGEAPRLKLAVVYGGEPGVNLEKLPAIPLMPDIGHARVLLDGALCEVLPGDGWDAYVKPFRTLEDLYVLSAMAAWLYGVGQECDWPQALQLRLLALLAGCAEVSRQNPSSAAGHVLLGGLFAQFKGLDVELNEALAAGPASWREMWGRDKGVMDIAAGARAKRLAKALGPGPT0008385_9327DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008385-acd-K00249NANA
D1-35_017281095hypothetical proteinATGCCCAGACGCTGGCTGTTGCTTCCGCTGTTGCTGTTGACCCTCACAGCCGGCGCTGAAGACTGGCCCTCAGAACAATGGCCAACCGGCCCGACGCCCACCGGGCCGGCCCTTGAAGCGCTGGAGCAATACGCCTTTACCCAAAGGGATGACAGCACCCGCGAGGGCATCCGCACCGACGCGCTCCTGATCATCCAGGACGGCCGACTGGTCTATGAACGCTACGCCGGACCCACGACCGCCCAGACTCCGCACCTGACCTGGTCCATCAGTAAAAGCCTGCTGGCGACAATCTTCGGCGTGGCCTACGGCGAAAGGCTGTTCGCCCTGGATGATCCCGCTGCCAAGTACTACCCGCCGCTGCAGCGGCACCCGGACATGACCCTGGCCGATCTGTTTCATTGGACTTCCGGCCTGGACTGGCAGGAAGACTACGAATACGCGCCACTCAATTCCTCGGTGGTGGCGATGCTCTACACGCGGGGGCGCCACGACATGGCGGCGTTCACTGCCGCGCACGCAAGCTTCGGCCCGCCCGGGCAAGTGTTCCGTTACTCCAGTGGCGACAGCAACCTGCTGGCGGCGGCGCTGAAAACCATCGTCGGCCCGGCGCGCTATGCCGATTACCCCTGGACGGCCCTGTTCGAACCGCTGGGCATCCGCCACGCGACCTGGGAAACCGACGCCAGCGGCACGTTTGTCGGGTCGTCCTATACCTACCTGACGGCGCAGGACCTGGCGCGTGTCGGCTTGTTGATGCAGCGCGATGGCCGCTGGGGCGACCGACAATTGGTGTCCAAAGACTGGATAGCATTCAATCGCGAGCCTTTCGCCGGATTCCAGGCGGGCCAGGATGAAGCCGTGCCTGGCGGGCATTGGTGGCTCAATCGCGGTGCCGACTCCACCCTCCGCCCATGGCCTGACGCACCGCCGGATACGTTCGCCGCGCTCGGTCACTGGGGCCAGGCGCTGTATATCATTCCCAGCGCCAGGCTGGTGATTGTGCGCTACGGCGATGACCGCGACGGCAGCTACCGCCACAACGAATTGCTCAAGCGCGCCATGGCGGCCTTCGCCGGGGCGGTGCGACCATGAMPRRWLLLPLLLLTLTAGAEDWPSEQWPTGPTPTGPALEALEQYAFTQRDDSTREGIRTDALLIIQDGRLVYERYAGPTTAQTPHLTWSISKSLLATIFGVAYGERLFALDDPAAKYYPPLQRHPDMTLADLFHWTSGLDWQEDYEYAPLNSSVVAMLYTRGRHDMAAFTAAHASFGPPGQVFRYSSGDSNLLAAALKTIVGPARYADYPWTALFEPLGIRHATWETDASGTFVGSSYTYLTAQDLARVGLLMQRDGRWGDRQLVSKDWIAFNREPFAGFQAGQDEAVPGGHWWLNRGADSTLRPWPDAPPDTFAALGHWGQALYIIPSARLVIVRYGDDRDGSYRHNELLKRAMAAFAGAVRPNANANANANA
D1-35_01729309hypothetical proteinATGAGACGCAACGTGTTGCTCAGCCTGGCGTCGGTGCTGCTCATTGCCCTGTTCGGTTGGGTCTGGTTGGAGCGGGTAGCCCTGCAGGCCTTCCCCGACATCATCAGCGCGTACACCGCCAAGGAGTATTGCTCGTGCCGCTATGTGATGCGGCAGCCAGCCGAGTATTGCCGCGGGTATGTGAAGCAGTCGGTTCCCGTCAGTGATTTTTTCGAGAGTGTTGAAGCCAGACGCGTCACGGTCAGCGGGTTGGGGCGTAGCCACAGTGCGCGCTGGATCGGCGAGCGGCAGGGGTGTCGGTTGGAGTAAMRRNVLLSLASVLLIALFGWVWLERVALQAFPDIISAYTAKEYCSCRYVMRQPAEYCRGYVKQSVPVSDFFESVEARRVTVSGLGRSHSARWIGERQGCRLENANANANANA
D1-35_01730591hypothetical proteinATGTTCAAGCGGTTTCTCCCCCACGCTGTCATCACGTTGCTGCTGGCCTGCGCCGCGTTGCCGGCCCAGGCCGACTGGTACCTGGACGGCGAATCGTCGCGGCTTTCGTTTATCAGCAGCAAAAACGGCAATGTGTCCGAGGTCCAGCGCTTTCTCGTGCTTCATGGCCAGGTCCAGCCCAAGGGCCTGGCGCGGCTGGAGGTCGAGCTGGAGTCCATCAACAGCGGCGTCCCGCTGCGGGACGAACGCATGCGCGCCGAGCTGTTCGAGATCAAGCAGTTTGCCGAAGCCACTATCACCGCGCAGCTTGACCTGATGCCGATCCAGGACCTGGCCAACGGCGCACAGTTGGAGTTGCGCCTGCCGGTAACGGTGGACCTGCATGGCAAGCAGCACGAATACAACGCCCAACTGCTGGCGACGCGCCTGGATGAGCGACGTTTCCAGGTCGTGACCCTGGAGCCGGTGGTGCTCAACGCGGCGGATTTCGGCCTGACGCCGGGCCTGGAAAAGCTGCGCGCACTGGCCGGATTGTCGACCATCAGCCTGTCGGTGCCGGTGAATGCGGTGCTGATTTTCACGGCGCGCTGAMFKRFLPHAVITLLLACAALPAQADWYLDGESSRLSFISSKNGNVSEVQRFLVLHGQVQPKGLARLEVELESINSGVPLRDERMRAELFEIKQFAEATITAQLDLMPIQDLANGAQLELRLPVTVDLHGKQHEYNAQLLATRLDERRFQVVTLEPVVLNAADFGLTPGLEKLRALAGLSTISLSVPVNAVLIFTARNANANANANA
D1-35_017311158clsA_1COG1502Major cardiolipin synthase ClsAATGAGCGGTCCGGTATTTCCCTGGCGCGAAGGCAATCGCTTCGAGTTGTTGATCGACGGTCCGCAGTTCTTTCCGCGCATGCTGGTGGAAATCGCCCGCGCCCAGGAGCAGGTGGAACTGGAGCTGTATCTGGTGGAGGCGGGCGCTTGCGCCGAGGCGATGGTCCAGGCGCTCGTCCAGGCCGCCGAGCGGGGTGTTCGCGTGCGCTGCCTGTTCGACGACTACGGCAGCCTGGCGTTTACCCTGGGCCTGCGCAATCGCCTGGTCGAGGCAGGTGTGGAGCTGCGGTTCTACAATCGCCTGAGCTGGCGTCGCTGGGTGCGCAATCTTTACCGCGACCATCGCAAGCTGCTGCTGGTCGATCAGCGCCTGGCGGTGGTCGGCGGCACCGGGGTCACCGACGAATTCTGGAACCCTTTGGAAGACCAAAGCGACTGGCACGAGGTGATGGTGGAAATCGTCGGCCCGCTGGTGCTCGACTGGCAGCTTCTGTTCGACCGCCAGTGGCTCGCCAACCGCCATCGTCGGGCCTGGAAACCGGCTTCCAATTTCGGCTTGCCGCGCTTGCCCCGTGTTCCGCCGGTAGGCGAGGGCATGGGCCGGGTGGCCTATGCCGACGCCCGCCAGCACCGCGACATCCTGCAATCACTGTCCCGGGCGTTAAACAGCGGTCAGAAACGTATCTGGATGGCCACGCCGTATTTCCTGCCGACCTGGAACGTGCGCCGCTCCTTGCGCAAGGCCGCCGCCCGGGGCGTCGATGTGCGCCTGCTGCTGACCGGCCCGCGCACCGATCACCCCTCCGTGCGCTACGCCGGCCATCGTTATTACCCGCGCCTGCTCAAGGCCGGTGTGAAGATCTATGAATACCAGCCATGTTTCCTGCATTTGAAAATGGTTCTGGTGGACGATTGGGTCAGCATCGGCTCGTGCAATTTCGATCACTGGAACCTGCGCTTCAACCTGGAGGCCAATCTGGAAGCATTGGACTCAGGACTGAGCAAGGCCGTGGCGATCAGTTTTGAGCGCGATTTCGACCAAAGCCTGCAAGTGAGCCTCGACGCCTGGCAGCGCCGGCCGCTGTGGAAGCGCGTCAAGCAACGGTTGTGGGGATGGGTGGACCGGCTGGTGGTGAATCTGCTGGATCGACGGGGTTAGMSGPVFPWREGNRFELLIDGPQFFPRMLVEIARAQEQVELELYLVEAGACAEAMVQALVQAAERGVRVRCLFDDYGSLAFTLGLRNRLVEAGVELRFYNRLSWRRWVRNLYRDHRKLLLVDQRLAVVGGTGVTDEFWNPLEDQSDWHEVMVEIVGPLVLDWQLLFDRQWLANRHRRAWKPASNFGLPRLPRVPPVGEGMGRVAYADARQHRDILQSLSRALNSGQKRIWMATPYFLPTWNVRRSLRKAAARGVDVRLLLTGPRTDHPSVRYAGHRYYPRLLKAGVKIYEYQPCFLHLKMVLVDDWVSIGSCNFDHWNLRFNLEANLEALDSGLSKAVAISFERDFDQSLQVSLDAWQRRPLWKRVKQRLWGWVDRLVVNLLDRRGPGPT0007725_5152DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QUORUM_SENSING_RELATED_GENESCE-QSR-CARDIOLIPIN_SYNTHESIS,PGPT0007725-clsA_B|ybhO|ywiE-K06131NANA
D1-35_017322292Beta-xylosidaseATGAAGAAGCTGTGTTTGCTGGGCCTGTTTGTCACCCTGGCCAGTCAATCCGTATTAGCCGACAACCTGCCAGCCCCCATGGAGAACAAGGACGCTTTCATCAGCAGCCTGATGAAGCAGATGACCCTCGAGGAAAAGATCGGCCAACTGCGCCTGATCAGCATCGGCCCGGAAATGCCCCGGGAGATGATCCGCAAGGAAATTGCCGCGGGCAACATCGGTGGTACGTTCAACTCCATCACCCGCGACGAAAACCGTCCGATGCAGGACGCGGCCATGCGCAGCCGGTTGAAGATCCCGATGTTCTTCGCCTATGACGTGATCCATGGCCACCGGACCATTTTCCCGATTCCCCTGGCCCTGGCTTCGAGCTGGGACATGGACGCCATCTACCGCTCCGGTCGTATCGCGGCCAAGGAAGCGGCGGCCGACAGCCTGGACATCACCTTTGCGCCGATGGTCGATATCTCCCGCGACCCGCGCTGGGGCCGGACCTCCGAAGGTTTCGGCGAGGACACTTACCTGGTGTCGCGCATTGCCGGGGTGATGGTCAAGGCATTCCAGGGCAGCGGCGCCAACGCCGCCGACAGCATCATGGCCAGCGTCAAGCACTTCGCCCTGTATGGCGCGGTGGAAGGCGGCCGGGACTACAACACCGTGGACATGAGCCCGGTGAAAATGTACCAGGACTACCTGCCGCCCTACCGCGCTGCCATCGACGCCGGTGCAGGCGGGGTGATGGTCGCGCTGAACTCCATCAACGGCGTGCCGGCCACCGCCAACACCTGGCTGATGCACGACCTGTTGCGCAAGGAATGGGGCTTCAAGGGCCTGGCCGTCAGCGACCACGGGGCGATTTTCGAGTTGATCAAGCATGGCGTCGCCCGGGACGGTCGCGAAGCGGCAAAACTGGCGATCAAGGCCGGCATCGACATGAGCATGAACGACTCGCTCTACGGCAAAGAGCTGCCAGGACTGCTCAAGGCTGGCGAAATCGAGCAGAGCGACCTTGATAACGCGGTGCGTGAAGTGCTGGCCGCCAAGTACGACATGGGCCTGTTCAAGGACCCGTACCTGCGCATCGGCAAGGCCGAGGATGACCCGGCCGACGTCTATGCCGACAGCCGCATGCATCGCGCCGATGCCCGTGACGTGGCGCGCCGCAGCCTGGTACTGCTGGAAAACCGCAACCAGACCCTGCCTCTGGAGAAGACCGCGAAGGTCGCCCTGGTCGGTCCGCTGGCCAAGGCGCCGATCGACATGATGGGCAGCTGGGCCGCCGCCGGTCGCCCGGCGATGTCGGTCACCGTGTACGACGGCATGGCCCGTGCGCTGGGCGGCGAGTCGAAGCTGATCTACGCCCGTGGCGCCAATATCACCGGCGACAAGAAGGTGCTCGACTACCTCAACTTCCTCAATTTCGACGCACCGGAAGTGGTGGATGACCCGCGCCCGGCCCAGGTGCTGATCGATGAAGCGGTGAAAGCCGCCAAGGAAGCCGACGTGGTCGTGGCCGCCGTGGGCGAGTCCCGTGGCATGTCCCACGAGTCCTCGAGCCGCACCGAGTTGAACATCCCGGCCAGCCAGCGCGAGCTGATCAAAGCCCTGAAAGCCACCGGCAAACCCTTGGTGCTGGTGCTGATGAACGGCCGTCCGCTGTCGCTGCTGGAGGAACAACAGCAAGCCGATGCGATCCTGGAAACCTGGTTCAGCGGCACCGAAGGCGGCAACGCCATTGCTGACGTGCTGTTCGGCGACTACAACCCGTCGGGCAAGCTGCCGATCACCTTCCCACGCTCGGTCGGGCAGATTCCTACCTACTACAATCACCTGAGCATCGGCCGGCCGTTCACGCCGGGCAAGCCGGGCAACTACACCTCGCAATATTTCGACGACACCACCGGCCCGCTCTACCCGTTCGGCTATGGCTTGAGCTACACGACGTTCAACCTGTCGGACATGGCCTTGTCGTCCACCACGCTGAACAAGACCGGCAAGCTCGACGCCAGCATCACCCTGGAAAACACCGGCGAGCGTGACGGTGAAACCGTGGTGCAGCTGTACATCCAGGATGTGACCGGGTCGATCATCCGCCCGGTCAAGGAGCTGAAGAACTTCCGCAAGGTGATGCTCAAGGCCGGCGAGAAGAAAGTCATCCACTTCACCATCACCGAAGACGACCTGAAGTTCTTCAACGCCCAGCTCAAGTACGCCGCTGAACCGGGCAAGTTCAACGTGCAGATCGGCCTGGATTCCCAGGACGTGAAGCAGCAGAGTTTCGAGTTGCTCTGAMKKLCLLGLFVTLASQSVLADNLPAPMENKDAFISSLMKQMTLEEKIGQLRLISIGPEMPREMIRKEIAAGNIGGTFNSITRDENRPMQDAAMRSRLKIPMFFAYDVIHGHRTIFPIPLALASSWDMDAIYRSGRIAAKEAAADSLDITFAPMVDISRDPRWGRTSEGFGEDTYLVSRIAGVMVKAFQGSGANAADSIMASVKHFALYGAVEGGRDYNTVDMSPVKMYQDYLPPYRAAIDAGAGGVMVALNSINGVPATANTWLMHDLLRKEWGFKGLAVSDHGAIFELIKHGVARDGREAAKLAIKAGIDMSMNDSLYGKELPGLLKAGEIEQSDLDNAVREVLAAKYDMGLFKDPYLRIGKAEDDPADVYADSRMHRADARDVARRSLVLLENRNQTLPLEKTAKVALVGPLAKAPIDMMGSWAAAGRPAMSVTVYDGMARALGGESKLIYARGANITGDKKVLDYLNFLNFDAPEVVDDPRPAQVLIDEAVKAAKEADVVVAAVGESRGMSHESSSRTELNIPASQRELIKALKATGKPLVLVLMNGRPLSLLEEQQQADAILETWFSGTEGGNAIADVLFGDYNPSGKLPITFPRSVGQIPTYYNHLSIGRPFTPGKPGNYTSQYFDDTTGPLYPFGYGLSYTTFNLSDMALSSTTLNKTGKLDASITLENTGERDGETVVQLYIQDVTGSIIRPVKELKNFRKVMLKAGEKKVIHFTITEDDLKFFNAQLKYAAEPGKFNVQIGLDSQDVKQQSFELLPGPT0019110_3885DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0019110-bglX-K05349NANA
D1-35_01733609lemACOG1704Protein LemAATGAATCCACGACTGAACCACCTTCGCGGCCTGCAAATGCTGGCCCTGATGCTCTTCACAACATTGCTGGCCGGTTGTGGCATCAACAACATCCCGACGCTGGACGAGCAGGCCAAGGCGGCCTGGGGTCAGGTGCAGAACCAATACCAACGCCGCGCCGACCTCATTCCCAACCTGGTGGAAACCGTCAAGGGTTATGCCCGGCACGAACAGGAAACCCTGACCGCAGTAATCGAAGCGCGGGCCAAGGCCACCTCGATCCAGGTCGATGCCAATACCTTGGACAATCCGGAAAAACTCAAGCAGTTCCAACAAGCCCAGGACCAGTTGAGCGGGGCGTTGAGCCGCTTGATGGTGGTGTCCGAGCGCTACCCGGACCTGAAGGCCAACCAGAACTTCCTGGCGTTGCAATCGCAACTCGAAGGCACCGAGAACCGCATTGCCGTGGCGCGTCGCGACTTCATCCTGGCGGTGCAGAAGTACAACACCGAAATCCGTACGTTCCCCGGCCGCCTGTGGCACAGCGTGATGTACAGCGACTTGCCGATCCGCGAAACCTTCGAGGCGACCAGCCCGAATGCCGAAAAAGCGCCTGAAGTGAAGTTCTGAMNPRLNHLRGLQMLALMLFTTLLAGCGINNIPTLDEQAKAAWGQVQNQYQRRADLIPNLVETVKGYARHEQETLTAVIEARAKATSIQVDANTLDNPEKLKQFQQAQDQLSGALSRLMVVSERYPDLKANQNFLALQSQLEGTENRIAVARRDFILAVQKYNTEIRTFPGRLWHSVMYSDLPIRETFEATSPNAEKAPEVKFNANANANANA
D1-35_01734750hypothetical proteinATGCGAGTGTTGAAATTTGGCCTGGTGCTGTTGCTCTGGGTCTTTGCCATCACGGCCCAGGCCGAGTTGAAATTTCCGGCATTGACGGGGCGGGTGGTGGACTCCGCCCAACTACTCGACCCGTCGGTGCGCACGCAACTCGATGCGCAACTCAAGGCCCATGAGCAGGCGACCAGTGAGCAGGTGGTTGTCGTCACCCTGCCGGACCTGCAGGGCACCAGCATCGAAGACTTCGGTTACCAATTAGGCCGCCACTGGGGCATCGGGCAGAAGGATAAAAACAACGGCGCGCTGCTGATCGTCGCCCGCGATGACCGTAAACTGCGGATCGAAGTGGGGTATGGCCTGGAAGATCGGCTGACCGATGCCCAGAGCTCCGTCATCATCAATCAGGTCATCACTCCGGCATTCAAGACGGGAAATTTCAACAAGGGCATCAGCGACGGCGTCGCGGCGATGCTCGTGGTGTTGGGCGGCAGTCCGCTGGATGAGCCAGCCCCTGCGTATGACGCGGGAGGGCAGGGTGAGGGCGACTTCATCGACCGGCATGCGGGGCTGATAATCTTCCTGGCGATGCTGTTCATCCTGACGATAGGCGTTTGCCAGGTGCTTGGTATCCTGCCGAGCAGTGGCGGTTCCGGCGGTGGCAGCTCCAGAAGCGGCGGTGGCGGTTTCGGCGGCGGCGGTGGCGGAGGCTTCAGCGGTGGCGGAGGCAGTTTTGGTGGCGGCGGTTCGTCGGGCGGCTGGTGAMRVLKFGLVLLLWVFAITAQAELKFPALTGRVVDSAQLLDPSVRTQLDAQLKAHEQATSEQVVVVTLPDLQGTSIEDFGYQLGRHWGIGQKDKNNGALLIVARDDRKLRIEVGYGLEDRLTDAQSSVIINQVITPAFKTGNFNKGISDGVAAMLVVLGGSPLDEPAPAYDAGGQGEGDFIDRHAGLIIFLAMLFILTIGVCQVLGILPSSGGSGGGSSRSGGGGFGGGGGGGFSGGGGSFGGGGSSGGWNANANANANA
D1-35_01735618hypothetical proteinATGGCATTACTGACTGAACACGAACAACGCAAGGTGGCCGAGGCCATTGCCCGGGTCGAGCGCGACACCGATGCCGAACTGGTAACGGTGCTTGCTGCTCGCGCCGACGACTACGCCTACATCCCGCTGCTCTGGGCCAGCTTGCTGGCCCTGGTGGCCCCCGGCGTGGTGCATTACCTGACGGGCTGGCTGACCACGCACAGCTTGCTGTTGGTGCAGTGGGGCAGTTTCATCGGGTTGTGCCTGCTGTTTCGCCTGCCTGCTATCACCACGTACCTGATCCCTCGCTCAGTACGTCACTGGCGAGCGTCGAACCTGGCGCGCCGGCAATTTCTCGAGCAGAACCTGCACCATACGGTGGACGGCACAGGCATGCTGATCTTCGTTTGCGAGGCCGAGCGGTATGTGGAAATCCTGGTGGACGAGGGCATTTCCAAGCGACTCGACAATAAGCATTGGGAGGCGATTGTCGCGGCATTTACCCAGCAGGTTCGCCAGGGCCAGACGTTGCAAGGCTTTGTGACGTGCATTGAAGCCTGCGGCGAACTGCTCAAGGCGCATGTGCCGGTGACCCATGCGCGCAATGAGTTGCCGAATCGGTTGGTGGTGCTCGGCTGAMALLTEHEQRKVAEAIARVERDTDAELVTVLAARADDYAYIPLLWASLLALVAPGVVHYLTGWLTTHSLLLVQWGSFIGLCLLFRLPAITTYLIPRSVRHWRASNLARRQFLEQNLHHTVDGTGMLIFVCEAERYVEILVDEGISKRLDNKHWEAIVAAFTQQVRQGQTLQGFVTCIEACGELLKAHVPVTHARNELPNRLVVLGNANANANANA
D1-35_017361218hypothetical proteinATGTCCGTCACTGCAACTTCCGCCCGTCCCGCGCCGGATCACCACGCCCAGTTCATCGAGCTGTTGCAGGCCAGCCTTGGGCAGAACGCCTTCATCAAGCTCGTACTGGCCAAATACGTCGGTGACGAAGCCGATCTGCAGCGGCTGATCATCAAGCAACTGACGGTCAAGGATCAGCCGTGCCTGTCCTTCGTCTACCGCTACAAGACGCGCGACATCACCAAGAACTTCCCGCTGGCCGAAGGCGTTGAGACGGTCGCCGCGCTGTTGCCGGCCTCGTTCAAGAACGCACATCTGCTGGCAATCACTGACGAGGCGCAGCTGGAATACAGCAAGAAGGGCAAGAGCTCGTTGTTCAAGAGCAAGCCCCAGCAACTGCGGGAAGTGCCGTCCGCGGGGCACAACCGTGAAAAAAACCGCTTCCTCGATCTGAGCCGGCCGTTCCTCGCCGACCTGGGCGTGACCAACCACAAGCACGAGCTGATTCCGGCGATGTCGCGCAAGTGGAAGCAGATCAACAAGTTCATCGAAGTCTTCAGCCACGCGTTGACGTCTTCGCCGCTGGCGCTGGACAAACCGGTGCGGGTCGCGGATTTCGGCTCGGGCAAGGGCTACCTGACGTTCGCCATCCATGATTACTTGCGCAACACCTTGCAGGCCGAGGGGCTGGTGACAGGCGTCGAATTGCGCGAGGACATGGTCAAGCTGTGCAACGAAGCCGCCGCGCGGCTTGAGCATCCGGGCCTGGAGTTCCAGCACGGGGACGTGCGCAGCGTCGCGCCGCGTGAAGTGGACGTGATGATCGCCCTGCATGCCTGCGACATTGCCACCGACTACGCGATCCACATGGGCATCCGCTCGGGAGCCTCGATCATCATGTGTTCACCGTGCTGTCACAAGCAGATCCGCCTGCAGATCCAGAGCCCGGCGCTGCTCAAGCCGATGCTCCAATATGGCCTGCACCTGGGCCAACAGGCGGAAATGGTCACCGACAGTCTGCGGGCGCTGTACCTCGAAGCCTGTGGCTACGAGACCAAGGTATTCGAGTTCATCTCCCTGGACCACACCAACAAGAACAAGATGATCCTGGCGGTCAAGCGCCCGGAACCGGTGGATGCCATCGAACTCCTCGCCAGGATCGAAGAGCTGAAGGCGTTTTACCGCATCACCGAACATTGCCTGGAAACGCTGCTGCGGGCTGACGGCTACCTCGCCTGAMSVTATSARPAPDHHAQFIELLQASLGQNAFIKLVLAKYVGDEADLQRLIIKQLTVKDQPCLSFVYRYKTRDITKNFPLAEGVETVAALLPASFKNAHLLAITDEAQLEYSKKGKSSLFKSKPQQLREVPSAGHNREKNRFLDLSRPFLADLGVTNHKHELIPAMSRKWKQINKFIEVFSHALTSSPLALDKPVRVADFGSGKGYLTFAIHDYLRNTLQAEGLVTGVELREDMVKLCNEAAARLEHPGLEFQHGDVRSVAPREVDVMIALHACDIATDYAIHMGIRSGASIIMCSPCCHKQIRLQIQSPALLKPMLQYGLHLGQQAEMVTDSLRALYLEACGYETKVFEFISLDHTNKNKMILAVKRPEPVDAIELLARIEELKAFYRITEHCLETLLRADGYLANANANANANA
D1-35_01737582yhbOCOG0693Protein/nucleic acid deglycase 2ATGGCCGCGAAGAAAATCCTCATGCTGGTCGGCGATTACGTCGAAGATTATGAAGTGATGGTGCCTTTTCAGGCCTTGCAGATGATCGGCCACACAGTGCACGCGGTGTGCCCGGACAAAACCACCGGACAGACGGTGCGCACCGCGATCCATGATTTCGAAGGCGACCAGACCTACAGCGAGAAGCCTGGGCATCTGTTTGCCCTCAACCATGATTTCGCCAGCGTCCAGGCCAGCGACTATGACGCGCTGCTGGTGCCGGGCGGTCGTGCGCCGGAATACCTGCGCCTGAATGAAAGCGTCCTGCAACTGGTGCGCGATTTCGATTTGGCGGGCAAGCCGATCGCCGCGGTGTGCCATGGGGCGCAATTGCTGGCGGCGGCAGGCATCCTGGAAGGGCGCGAATGCAGCGCCTATCCAGCATGTGCTCCGGAGGTGCGCCTGGCCGGCGGGACGTTCATCGATATTCCAGTGACCGAAGCCCATGTCCAAGGCAACCTGGCCACCGCACCGGCGTGGCCCGCCCATCCGAACTGGCTGGCGGGGTTCCTGACGCTGCTGGGCACGGCCATCACCTTGTAGMAAKKILMLVGDYVEDYEVMVPFQALQMIGHTVHAVCPDKTTGQTVRTAIHDFEGDQTYSEKPGHLFALNHDFASVQASDYDALLVPGGRAPEYLRLNESVLQLVRDFDLAGKPIAAVCHGAQLLAAAGILEGRECSAYPACAPEVRLAGGTFIDIPVTEAHVQGNLATAPAWPAHPNWLAGFLTLLGTAITLPGPT0015010_717DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-METHYLGLYOXAL_DETOXIFICATION,PGPT0015010-yfkM|pfpI|yraA-K05520NANA
D1-35_017381020hypothetical proteinATGACCGATTTCCAGGAATACGACGCCCGGCTCGAAAATTGGGAGACGTTGCGCACCGACACCGCTTTCAGCGGCCTGCTGGTGGGCAATGGCGCGAGCCGCGCCGTGTGGGACGATTTCGGCTATGACTCGTTGTTCGAGAACGCCCGCACCGTCGAGGAAAAACCACTGAGCCCTTCGGAACTGAGCGTCTTCGACGCCCTGCAGACCCGCAGTTTCGAGCAGGTACTGGGCGCGTTGAAAACCACCAGCCGGGTCAACAAGGCCCTGGCCGTCAGCTCCGCCGCCCCGCGCAATCGCTATTACGCGATCAAGGAAGCCTTGATCAACACCGTGCACGCGGTGCATATCCCCTGGCGACTGGTGCAACCCTCGACCCTGGGAAGTCTCAATCAGGAGCTGGGCCGCTACCGCACAGTGTTCACCACCAACTACGATCTGCTCAGCTATTGGGCGATCCAGCATACGCCCGAGAACCTCACCGATCTGTTCCTGGGTGCCGATCACAGCTTCGATCCGAGTCGGACCAGTACAGACAAGCCGCGCCTGTTGTATCTGCACGGCGGCCTGCATTTGGTGCGCGACCAGGACGGCACGGCACGCAAGCTCGCTTCCACCGAAGGCACGCTGTTGGGCAGTTTTGCCATCAACAACACCCTCAAGACCCTCGACGACGTGCCGCTTTTTGTCAGCGAAGGGCCGAGCCAGGACAAACTCAAGACCATCCGCAGCAGCGATTACCTGTCGTTCTGCTACGACCAGTTGTTGCACCACGACGACAATCTGTGTCTGTTCGGCCACGCCTTGGGCGAGCAGGACAGCCATATCGTCCATGCCCTGCGCCAAGCGGCGCCGAGGACCGTGGCCATCTCGATTTACCCGCGCAGCCAGGCGTTCATCCAGCATCAGAAGCGGCATTACGCCAAATTGTTCGAGGGCCTGGACACGCAATTGCGCTTCTTCGATGCCAAGACCCACCCACTGGGCGATCCGAAGCTGGCGGTGCCGGTGGAGGTTTAGMTDFQEYDARLENWETLRTDTAFSGLLVGNGASRAVWDDFGYDSLFENARTVEEKPLSPSELSVFDALQTRSFEQVLGALKTTSRVNKALAVSSAAPRNRYYAIKEALINTVHAVHIPWRLVQPSTLGSLNQELGRYRTVFTTNYDLLSYWAIQHTPENLTDLFLGADHSFDPSRTSTDKPRLLYLHGGLHLVRDQDGTARKLASTEGTLLGSFAINNTLKTLDDVPLFVSEGPSQDKLKTIRSSDYLSFCYDQLLHHDDNLCLFGHALGEQDSHIVHALRQAAPRTVAISIYPRSQAFIQHQKRHYAKLFEGLDTQLRFFDAKTHPLGDPKLAVPVEVNANANANANA
D1-35_017391350hypothetical proteinATGGATATTCGAAACTCCACGCCGCTGGCCGGTTACCTTGATCTGCTGATGGATGCCGTGTGCGCCGTCGACGCCCTGGGGCGTTTCGTGTTTGTCAGTGCCGCCAGCGAGCGGATCTTCGGCTACACGCCGAAGGAGCTGATCGGCCGTTCGATGATCGATATGGTCCACCCTGCCGACCGCCAGCGGACCCTTGATGCGGCGCGCGAAGTCATGCGCGGAGAACCCAAGCTCAATTTCGAGAACCGCTATCTGCGCAAGGACGGTGGGGTCGTCCATATCCTCTGGTCGGCGCGCTGGTCCGAGCCTGACCAATTGCGGATCGCCGTGGCGCGGGACATCACCGAGCGCAAGCAGGCGGAGTCCCGGCAGGCCGCGTTGTACGCGATTTCCGAGGCCGCCCATGCTGCCGCCGACCTGCTGGCGTTGTTCAAACGTATCCATTCGATAATCGGCGAGTGGCTGCCGGCACTGAATTTTTCGGTGGCGTTGTATGACGAGCAATGTGCCCAGCTCAACTTTCCCTATCACGTCGACGACCGGGAGCGACAGCCGGAACTGCCGGGTACGACCATTGGGCGTTTGTGTGCCGAAGTCATACGCAGCGGTCAGCCGATCCTGCTGACGCCCGGCTCCAGCTCGTTGCCCGTGGAGCTGCACGACCTCGTGGCGAAACCGGACGCGCCGTGCTGGCTGGGTGTGCCACTGAATTCGCAGAGCGGCACGATTGGCGCGTTGATCGTCAAGAGCGCGGCGGATAACGAGCGCTACACCGAGCAGGACAAGGAATTGCTGCAGTATGTTTGCGCGCAGATTGCGATTGCCATCGAGCGCCAGCAACTGCATACCCGGTTGCAGCACATGGCCCAGTACGATCAGCTCACTCAGGTACCCAATCGTGAGTTGCTGCGTGACCGCTTCAAGGCCGCATTGACCACGGCCCGTGTTGCATCGGGGCGGATGGCATTGCTCTACATCGATCTGGATCGCTTCAAGCAGATCAACGACACCTACGGTCATGCCGTTGGCGACATGCTGCTGCAAGCGGTGGCCAGCCGACTCAAGGGTTGCATACGTGACACCGACACTGTCGCCCGCATCGGGGGCGATGAATTCGTGGTACTGCTCCATAGCATCCAGAGCGTGGCAGACGCCGACCGGGTGCAGGAGCAGATTCGTCACGCGCTGGCCCAGCCGCTGCGGCTGGACGGTCATTGCCTGAGCATCGAACCGAGCATTGGCGTGGCGTGTTTCCCCGAACACGGCACGGAAGACATCACCTTGTTCCGCCACGCCGACGAGGCGATGTACGCAGCCAAACGCCACAATCACCGGGCCTTCGGCATCTGAMDIRNSTPLAGYLDLLMDAVCAVDALGRFVFVSAASERIFGYTPKELIGRSMIDMVHPADRQRTLDAAREVMRGEPKLNFENRYLRKDGGVVHILWSARWSEPDQLRIAVARDITERKQAESRQAALYAISEAAHAAADLLALFKRIHSIIGEWLPALNFSVALYDEQCAQLNFPYHVDDRERQPELPGTTIGRLCAEVIRSGQPILLTPGSSSLPVELHDLVAKPDAPCWLGVPLNSQSGTIGALIVKSAADNERYTEQDKELLQYVCAQIAIAIERQQLHTRLQHMAQYDQLTQVPNRELLRDRFKAALTTARVASGRMALLYIDLDRFKQINDTYGHAVGDMLLQAVASRLKGCIRDTDTVARIGGDEFVVLLHSIQSVADADRVQEQIRHALAQPLRLDGHCLSIEPSIGVACFPEHGTEDITLFRHADEAMYAAKRHNHRAFGINANANANANA
D1-35_01740504hypothetical proteinATGAGCCGGATGGCCACCTTTTTACGCACCACCAGTATTGTCGTGCTGATGGGCCTGGGTGCCAGCAGTGCCTGGGCCCAGTCACCCGCCGAATTCATCAACGATGCATCCGCCAAAGGCATGGCTGATATCGAAGCCAGCCGTGCCGCACATTCGAAGGCGGAATCAAGGGAGGTCAAGGACTACACCATCATGGTGATCAACGACCGCACCACCGCCAACCAACACCTGGCGAAAATCGCCAAGAAGCTCGACTTGCCCGTCGCGCCCCGGGAAGAAGTCGCGGACAAGGCCAAGACCTTGATGCCGCAAGTGGCCGAGGGCGAGTCGTTCGAGGCGGCATATGCCGCCAGCCAGGTCAAGGCCACTGAGGAAGCCATCGAGCAGATCCAGCAACAGGCCCAGACCACCAACGTGCCGGAGATCAAGGCGTTCGCCGACGAAACCCTGCCCAAATTGCAGACGCATCTTGAGATGGCCAGGGCGCTGCAGGCCAGTCGCTGAMSRMATFLRTTSIVVLMGLGASSAWAQSPAEFINDASAKGMADIEASRAAHSKAESREVKDYTIMVINDRTTANQHLAKIAKKLDLPVAPREEVADKAKTLMPQVAEGESFEAAYAASQVKATEEAIEQIQQQAQTTNVPEIKAFADETLPKLQTHLEMARALQASRNANANANANA
D1-35_01741909yghAputative oxidoreductase YghAATGTCCACACGCCGAGAACCCAACCAATACGCGATGCAGAATCCACTGACCCAATACCCTCGTCCGGAATTCCCCGACCAGCCGCAATCACCCCCTGGCATTGACCAGGACATGGAACCACAGCCCGATCACGGCGAAAAAACCTATCAAGGCTTCGGTCGCCTGGAGGGGCGCAAGGCGCTGATCACGGGCGGCGATTCGGGGATCGGTCGCGCGGCGGCCATTGCCTATGCCCGCGAAGGCGCCGATGTAGCTATCAACTATCTGCCCAGCGAAGAACGCGACGCGCAGCAAGTCATCGAGCTGATCAAGGCCGAAGGCCGCAAGGCCATTGCGATTCCGGGAGATCTCAAGGACGAAGCGTTCTGCGTCCAGATGGTGAAGATGGCGCAGCAGGAGCTCGATGGCCTGGATATCCTGGTCAACGTCGCTGGTAAGCAGGAAGCGCAAAAGGACATTGCCGACATCACCACCGCGCAATTCGATGACACCATGAAAACCAACATCTACGCGATGTTCTGGATCTGCAAGGCCGCGGTACCGCTGATGCCGGCCGGGGCGACGATCATCAATACCGCGTCGATCCAATCCTACGATCCGTCCGCGACGCTGCTCGATTACGCCACCACCAAAGCGGCGATCGTGGCGTTTACCAAGGCGTTGGCGGGACAGGTCATCAGCAAGGGAATCCGGGTCAATGCCGTGGCCCCGGGGCCGATCTGGACGGTGCTGCAACCCAGCGGCGGACAGCCTAGGGAGAAGATCCCTACATTCGGCTCCCAGGTTCCGATGAAGCGTCCGGGGCAGCCAGCGGAATGTGCGCCGCTGTACGTGCTGCTGGCCTCGCAGGAGTCGAGTTATATCACCGGGGAAGTATTCGGCGTGACGGGAGGGAATCCGTTGCCCTGAMSTRREPNQYAMQNPLTQYPRPEFPDQPQSPPGIDQDMEPQPDHGEKTYQGFGRLEGRKALITGGDSGIGRAAAIAYAREGADVAINYLPSEERDAQQVIELIKAEGRKAIAIPGDLKDEAFCVQMVKMAQQELDGLDILVNVAGKQEAQKDIADITTAQFDDTMKTNIYAMFWICKAAVPLMPAGATIINTASIQSYDPSATLLDYATTKAAIVAFTKALAGQVISKGIRVNAVAPGPIWTVLQPSGGQPREKIPTFGSQVPMKRPGQPAECAPLYVLLASQESSYITGEVFGVTGGNPLPNANANANANA
D1-35_01742405hypothetical proteinATGACGTTCGCAAAGATTGCTCAAAAACTGGCCCTGTGGGCAGGAAGTCCCAAGACCTTTCTCGGAGCTATTGTGTTGTTGGCGCTCTGGGCCGCCAGCGGACCGTTCTTCGGTTTCAACGACACCTGGCAACTGATCATCAATACCTCGACCACGATCATCACCTTCCTCATGGTTTTCCTGATCCAGAACACGCAAAACCGCGATACCGATATCCTGCACTTGAAAGTCGATGAATTGTTGCGCGCGACCAAGGACGCGCAGAACGCAATGCTCGGTCTCGAGTCGCTGGACCTCAAGCAGCTGGAAGCGTTGCGCAAGCGCTACCAGGACATGGGCAAAGACGAGGCCAAGAGCCTTGATGGTGTAGAAGAAGAGAAGAAAGTCGACTTGAACCAGTGCTGAMTFAKIAQKLALWAGSPKTFLGAIVLLALWAASGPFFGFNDTWQLIINTSTTIITFLMVFLIQNTQNRDTDILHLKVDELLRATKDAQNAMLGLESLDLKQLEALRKRYQDMGKDEAKSLDGVEEEKKVDLNQCNANANANANA
D1-35_01743147hypothetical proteinATGAACCTCACCCGCACCTTTTGCCTCGCCTGCTGCCTGTTCGCACTACAGGGCTGCTTTGACAATTCGGATAACGAGACCAAGGACAACACCGACGGCACCAAGTCTTCGGTGCAGATGCAGGAGTCCAAGTCGGAGAGCAAATAAMNLTRTFCLACCLFALQGCFDNSDNETKDNTDGTKSSVQMQESKSESKNANANANANA
D1-35_01744411hypothetical proteinATGCTTTACCCGATTGCGATTTCCATGGGCGATGAGCACCACGCCTGGGGCGTTGAAGTGCCGGATATCCCTGGTTGTTTTTCCGCAGGCGATGATCTGGACGATGCGATGGCCATGGCGCGCGAGGCCATCGAAGGGCACTTTGAAATTCTTGCCGAAGATGGGTCGCCCATTCCGCCGGCCAACACCGTGACGCTGCACGCGGCCAATCCGAAATATGCCGGGTGCGCGTGGGCATTGGTGGACATTGATGTGACCAGATATCTGGGCAAGGCGCAGAAACTCAACATCACCCTGCCCGGCTATCTGCTCAACCGTATCGATGAATATGTGCTGCATCATCCGGAGGAAAAGAGCCGGTCAGGCTTCCTGGCATCGGCGGCACTCAAGGTTTTGCAACAAGGACGTTGAMLYPIAISMGDEHHAWGVEVPDIPGCFSAGDDLDDAMAMAREAIEGHFEILAEDGSPIPPANTVTLHAANPKYAGCAWALVDIDVTRYLGKAQKLNITLPGYLLNRIDEYVLHHPEEKSRSGFLASAALKVLQQGRNANANANANA
D1-35_01745216hypothetical proteinGTGAACAGCCGATTCCTGATAAGCCAGATTGTTGCGGATGGTTGGTACCTGGTACGGATCCGAGGCAGTCACCACCATTTCAAGCACCCGACCAAACCGGGACTGGTTACGGTTCCTCATCCCAAGAAGGATCTGCTCAAGAAAACGGCCATCAGTATTTTGCAACAGGCCCTGCTCCAGACGGCCAGTTGCCCAGCTTCCCCGGAGGACGATTGAMNSRFLISQIVADGWYLVRIRGSHHHFKHPTKPGLVTVPHPKKDLLKKTAISILQQALLQTASCPASPEDDNANANANANA
D1-35_01746630rhtB_2COG1280Homoserine/homoserine lactone efflux proteinATGACAGAGCTCTGGTTGTTTTTCATGGCGTTGACGGTGGCGTATCTGTTGCCCGGGCCGGACATGATCCTGGTGCTGCAAACCGGTGCCCGTCAGGGCAAGGCTGCGGCGCTGGCAACGGCGGTAGGCTTGGGGATTGCCCGGGCATGTCATGTCGCGCTGGCGGCAATGGGGCTATCGGTATTGTTCAAGGCAGCGCCCTGGACCTTTGATGTGGTGCGCCTGGCCGGGGCTGCGTATCTGGCGTGGATCGGGTTTCAGTGTTTGCGGACCACGTTGTTGCCAAGCTTTGGAGGAGCTGACGCCGAGGTCGGAAAGCGACAGTGGTACCAAGCGATACAACGCGGTCTGCTGACCAACCTGCTCAACCCCAAGGCGCTGCTGTTTTGCTCAGTGTTGCTGCCGCAGTTCATCGACCCACAGGGCGGGCCGGTGCTGGGGCAATTCGCGATGCTCGGTTTGGTGCTGGTCGGCGTCGGCCTGCTGTTTGACAGCGCCTACGCACTGGTGGGCGTAGCGCTCGGACGCTGGATTCAGCGATCGCCCTCGGCCCAACGTGTGCAGCAGTGGGTGTTTGGCAGCGTGCTGATTGGGTTTGCGGTACGGCTGACGTTTGTGCAGCAGTCGTAGMTELWLFFMALTVAYLLPGPDMILVLQTGARQGKAAALATAVGLGIARACHVALAAMGLSVLFKAAPWTFDVVRLAGAAYLAWIGFQCLRTTLLPSFGGADAEVGKRQWYQAIQRGLLTNLLNPKALLFCSVLLPQFIDPQGGPVLGQFAMLGLVLVGVGLLFDSAYALVGVALGRWIQRSPSAQRVQQWVFGSVLIGFAVRLTFVQQSNANANANANA
D1-35_01747477decR_1COG1522DNA-binding transcriptional activator DecRATGAAACTTGATGCCTTCGACCGCAAAATTCTCGCTGCACTGCAGCGGGACGGCCGGCTGAGCAACGTACAACTGGCCGAAGAAATCGGCCTGTCCCCCTCGCCATGCCTGCGCCGCGTGCGGATGCTCGAGGAAGCGGGAGTGATCCGCGGCTATCAAGCCATCCTGGATCGCGATGAAGTGGGCCTCGGTATGACGATCTTTGTCGGCATCAAGGTCGAACGGCACACCGATGAACGAGCCGAGGCATTTCGCCTGGCGGTGACCGCGCTACCCGAAGTGATCTCGGCATTCCTGGTGTCAGGCGAGTCGGATTTCCTGCTACAAGTGGTGGTGCCGGACTTGCGGGCCTATGACCGATTTGTCACGGGCAAGCTGTTGAAGCTGCCGGGGGTGAGTGACATTCGCAGTAATTTTGCGATCAACACGGTGAAGGCTCCGGGTGCGCTGCCGTTGGGGCATTTGCCAGATGCTTGAMKLDAFDRKILAALQRDGRLSNVQLAEEIGLSPSPCLRRVRMLEEAGVIRGYQAILDRDEVGLGMTIFVGIKVERHTDERAEAFRLAVTALPEVISAFLVSGESDFLLQVVVPDLRAYDRFVTGKLLKLPGVSDIRSNFAINTVKAPGALPLGHLPDANANANANANA
D1-35_017483786hypothetical proteinATGGCAGTCATTAATGGAACAGCTGGCGCAGATGCACTGATTGGCACCGCAGGGGACGATGAGATCAACGCTCTGGGTGGCAACGATGTCATCAAGGGGACTGCTGGCGCAGACAAAATCGATGGCGGTGCGGGTTTAGATACTGTCGACTATTCGGCATCTACTGAAGGTATCAGTATAGATTTGCGTCAGGGCACTGGACTTGTTGGACGAGGTGGCGATGCAGAGGGAGATACGCTCATTGGTATCGAAACTGTCATAGGCTCTGCCTTCAATGACGTGCTTTCCTCTGGTCCGTACACCGTAATCCCAACGGTACAGCTGGAAGGGGGAGCTGGCGACGATATCTACAACATCAATCTGGGGCTGACCCCCTACATCATCGAACAGGCCGGTGGCGGCAACGATGAAGTCCGCGTGTCGGTGATCAATGCCAACGGCACGGTCCTGGCGGCGAACGTCGAGCGCCTGACCTACGTCGGCACCGGCGCATTCACCGGTTACGGCAACGACAGCGACAACGTCATTACCGGCGGTTCGGGTAACGACACCTTGTTCGGTGGCGCGGGAGCGGACCAGTTCATCGGCGGTGCCGGCTATGACATAGCGGGTTATACCGACAGCAAGCAAGCTGTGAACATCAATCTCAAGACGGGCGTGCATTCCGGGATCGCGGCAGGTGATACCTACACCGGTATCGAGGTGATCAGAGGATCGAATTTCAACGACACGTTCGTTGGCGATGGCAGCGGTATACGACTCGACGGCGGCGCCGGGATCGACGTGATCGATTACTCGGGCTCGACTGCCGGGGTAAACGTCGATATCCGTAATGGGTGGGGAACCGCAGGCACGGGCGGAGATGCCGAAGGCATCATTTTGGCGAATATCGAAACCGTCATAGGCTCTGCCTTCAACGACGTGCTCTCCGCTGGCCCGTACACCGTAATCCCCACGGTACGGCTGGAAGGGGGGGCTGGCGACGACATCTACAACATCAATCTGGGGCTGACCCCCTACATCATCGAACAGGCCGGTGGCGGCAACGATGAAGTCCGCGTGTCGGTGATCAATGCCAACGGCACGGTCCTGGCGGCGAACGTCGAGCGCTTGACCTACGTCGGCACCGGCGCATTCACCGGTTACGGCAACGATAGCGACAACGTCATTACCGGCGGTTCGGGTAACGACACCTTGTTCGGTGGTGCGGGAGCGGACCAGTTCATCGGTGGTGCCGGCTATGACATAGCGGGATATACCGACAGCAAGCAAGCCGTGACCATCAATCTCAAGACGGGTGTGCATTCAGCGATCGCGGCAGGCGATACGTACACCGGTATCGAGGTGATCAGGGGATCGAATTTCAACGACACGTTCGTTGGCGATGGCAGCGGTATGCAACTCGACGGCGGTGCCGGGATCGATACGGTCGACTACTCGGGCTCGACTGCCGGGGTAAACGTCGATATCCGTAATGGGTGGGGAACCGCAGGCACGGGCGGAGATGCCGAAGGCATCATTTTAGGGAATATCGAAACCGTCATAGGCTCTGCCTTCAACGACGTGCTCTCCGCTGGCCCGTACACCGTAATCCCAACGGTACAGCTGGAAGGGGGGGCTGGCGACGATATCTACAACATCAATCTGGGGCTGACCCCCTACATCATCGAACAGGCCGGTGGTGGCAACGATGAAGTCCGCGTGTCGGTAATCAATGCCAACGGCACGGTCCTGGCGGCGAACGTCGAACGCCTGACCTACGTCGGCACTGGTGCATTTACCGGTTACGGCAACGACAGCGACAACGTCATTACCGGTGGTTCGGGTAACGACACACTGTACGGTGGTGGGGGAGTAGATCAGTTAATCGGCGGTTCGGGTAACGACACATTATACGGAGGCGCGGGCGCGGATCAGTTCATCGGTGGTGCTGGCACTGACGTAGCGGGTTATACCGACAGCAATGAAGCTGTGACCATCAATCTCAAGACGGATGTGCATTCCGCGATCGCGGCAGGCGATACCTACACCGGTATCGAGGTGATCAGGGGATCGAATTTCAACGACACGTTCGTTGGCGATGGCAGCGGTATGCAACTCGACGGCGGTGCCGGGATCGATACGGTCGACTACTCGGGCTCTACTGCCGGGGTAAACGTCGATATCCGTAATGGGTGGGGAACCGCAGGCACGGGCGGAGATGCCGAAGGCATCATTTTAGGGAATATCGAAACCGTCATAGGCTCTGCCTTCAACGACGTGCTCTCCGCTGGCCCATACACCGTAATCCCAACGGTACAGCTGGAAGGGGGAGCTGGCGACGATATATACAACATCAATCTGGGGCTGACCCCCTACATCATCGAACAGGCCGGTGGCGGCAATGATGAAGTCCGCGTGTCGGTGATCAATGCCAACGGCACGGTCCTGGCGGCCAACGTCGAGCGCCTGACCTACGTCGGCACTGGTGCATTTACCGGTTATGGCAACGACAGCGACAACATCATTACCGGCGGTTCGGGTAACGACACACTGTACGGTGGCGCGGGAGCGGATCAGCTCATAGGCGGTGCTGGCTATGACATAGCGAGCTATCTCGACAGCAAAGCAGCCATGGCCATCAACCTCAAGACGGGCGTGCATTCCGGGATCGCGGCGGGTGATACCTACACCGGTATCGAGGCGATCAGAGGATCGAATTTCAACGACATTTTCTACGGTGGTAGTTCGCCCGTGGCGCACGATGGCGCGGCTGGCATCGATCTGGTCACTTATGAACAGTCTGACAGCGCGGTGACGATCGACCTGACGAACGGCACGAACATAGGGGCGGCTGCTGGTCAGACCTACGCCAACATTGAAATGTTTCAAGGCAGCAATTTTGACGACACGCTATCGGGCTCGGGTCTGAAGGATATCTTCATTGGTGGAGCCGGGGCAGATGTAATCGATGGCCGGGTAGGTCTGGACAGTGCTTTTTACATTACAAGTACAACAGGCATCTCGATCAACTTGCAGACGCAAATCAATCAAGGTGGCGATGCCGAAGGTGATGTATTGCTTAACATCGAACATGTGTTGGGCAGTCATTTCAACGATGTCCTGGTTGGAGACACGGGTGTTAATTATCTGGAGGGTGGATTGGGCAACGACGTCATCGACGGCGGTGACGGCAATGATTTCCTCTATGGTGGGCTGACTTCTTGGATAGGACCTTTCAGCGTCGATAGCTCGGCGAACGGGCCGCAGGCAGACATCCTGTACGGTGGCGGCGGTAACGACACCATCGTCACGACTGCGAGCGACGAGGGGACTCAAGCCTACGGTGAGGCCGGAAATGACACTATCACTGTGATACATGGCATGGCTGACGGTGGGGAAGGCAACGACCTGCTGACCGGTAGAGGCGTGGGCTTTTCACTGTCAGGAGGTCAGGGGGATGACAGGCTGATATTGCAGACCGGCGGTTTTGCTAACGGCGGTGAGGGTGAGGATATCTACACCATCGATACTCCAAAGTTAGTGACGATTCAGGACGACGGTATCAGCAGCGGTGACAAATTGGTTTTGTCCTACATCGATAGCTCTGAACTGTTGGCTGATCGCATCGGTGATGACCTCTATCTGCACCGATCAAGTTTCACTCCGGGACAGGCACCGCAAGAAGGTGTGCGCCTGAAGGATTGGTATGCAGGTTACGACACCATCGAACAGATCCAGACAGCTGATATGCAGCTCATCAGTCTGGTGGGCATCAACACATTTGCCAATGATATGTTTTCCTGAMAVINGTAGADALIGTAGDDEINALGGNDVIKGTAGADKIDGGAGLDTVDYSASTEGISIDLRQGTGLVGRGGDAEGDTLIGIETVIGSAFNDVLSSGPYTVIPTVQLEGGAGDDIYNINLGLTPYIIEQAGGGNDEVRVSVINANGTVLAANVERLTYVGTGAFTGYGNDSDNVITGGSGNDTLFGGAGADQFIGGAGYDIAGYTDSKQAVNINLKTGVHSGIAAGDTYTGIEVIRGSNFNDTFVGDGSGIRLDGGAGIDVIDYSGSTAGVNVDIRNGWGTAGTGGDAEGIILANIETVIGSAFNDVLSAGPYTVIPTVRLEGGAGDDIYNINLGLTPYIIEQAGGGNDEVRVSVINANGTVLAANVERLTYVGTGAFTGYGNDSDNVITGGSGNDTLFGGAGADQFIGGAGYDIAGYTDSKQAVTINLKTGVHSAIAAGDTYTGIEVIRGSNFNDTFVGDGSGMQLDGGAGIDTVDYSGSTAGVNVDIRNGWGTAGTGGDAEGIILGNIETVIGSAFNDVLSAGPYTVIPTVQLEGGAGDDIYNINLGLTPYIIEQAGGGNDEVRVSVINANGTVLAANVERLTYVGTGAFTGYGNDSDNVITGGSGNDTLYGGGGVDQLIGGSGNDTLYGGAGADQFIGGAGTDVAGYTDSNEAVTINLKTDVHSAIAAGDTYTGIEVIRGSNFNDTFVGDGSGMQLDGGAGIDTVDYSGSTAGVNVDIRNGWGTAGTGGDAEGIILGNIETVIGSAFNDVLSAGPYTVIPTVQLEGGAGDDIYNINLGLTPYIIEQAGGGNDEVRVSVINANGTVLAANVERLTYVGTGAFTGYGNDSDNIITGGSGNDTLYGGAGADQLIGGAGYDIASYLDSKAAMAINLKTGVHSGIAAGDTYTGIEAIRGSNFNDIFYGGSSPVAHDGAAGIDLVTYEQSDSAVTIDLTNGTNIGAAAGQTYANIEMFQGSNFDDTLSGSGLKDIFIGGAGADVIDGRVGLDSAFYITSTTGISINLQTQINQGGDAEGDVLLNIEHVLGSHFNDVLVGDTGVNYLEGGLGNDVIDGGDGNDFLYGGLTSWIGPFSVDSSANGPQADILYGGGGNDTIVTTASDEGTQAYGEAGNDTITVIHGMADGGEGNDLLTGRGVGFSLSGGQGDDRLILQTGGFANGGEGEDIYTIDTPKLVTIQDDGISSGDKLVLSYIDSSELLADRIGDDLYLHRSSFTPGQAPQEGVRLKDWYAGYDTIEQIQTADMQLISLVGINTFANDMFSNANANANANA
D1-35_01750885rhlA3-(3-hydroxydecanoyloxy)decanoate synthaseATGAGGCCAGAAATCGCTGTGCTGGATATACAGGGTCAGTATCGGGTTTACACGGAGTTCTATCGCGCAGACGCCGCGCAAAAGACCATCATCCTGGTCAACGGCTCGATGGCCACCACCGCGTCGTTTGCACAGACCACCAAAAACCTCTACCCGCAATTCAATGTCGTGCTGTACGACCAGCCCTACGCGGGCAAGTCCAAGGCTCACAACCGCCACGAGAAAATGCTGACGAAGGAAATCGAAGGCCAGATCCTGCTGGAGCTGATCGACCACTTCGCCGCCGATCACGTATTGTCGTTTTCCTGGGGCGGAGCCGCCACCCTGACCGCCTTGGCCCAGCGCCCGCGGCGCATCGAAAAAGCCGTGATCAGTTCTTTCTCACCGGTGCTCAACGCACCGATGCGCGACTACCTGGAACGTGGCGTGGACTATTTGAGCAGCCTGGACGGCGATCGTGTCGGACACCTGGTCAACAGCACGATTGGCAAGCACCTGCCACCGCTGTTCAAGCGCTTCAACTATCGCCACGTCAGCAACCTGGCCGAGCATGAATACGGACAGATGCACTTTCACATCAACGATGTGCTCCACAGCGACCAGCAGTGCTATGTCAACGCGGCGAAAAAGATCAACGTGCCGGTGCTGTTCCTGAATGGCGAATGGGACGAATACACCGCGGCCACCGACGCCAGGCTCTTCGCCAACCATGTCCAGCACAGCAGCTTCACCACGCTGCAAGCCACCGGGCACTTCCTCGACATGGAACACAAGGCCGCCTGCCGCGACAGCCGCGAGGCGTTGCTGGGTTTCCTCAAGCCAACCCACCACGCCAGCCGACCGCGCTACAGCTATGTACAGGACTACCATGCAGTGGCCATCTGAMRPEIAVLDIQGQYRVYTEFYRADAAQKTIILVNGSMATTASFAQTTKNLYPQFNVVLYDQPYAGKSKAHNRHEKMLTKEIEGQILLELIDHFAADHVLSFSWGGAATLTALAQRPRRIEKAVISSFSPVLNAPMRDYLERGVDYLSSLDGDRVGHLVNSTIGKHLPPLFKRFNYRHVSNLAEHEYGQMHFHINDVLHSDQQCYVNAAKKINVPVLFLNGEWDEYTAATDARLFANHVQHSSFTTLQATGHFLDMEHKAACRDSREALLGFLKPTHHASRPRYSYVQDYHAVAIPGPT0006830_121DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-AI-1_RhlI|CepI|SolI_PERCIPITATION|SIGNALLING|AHL|NAHL,PGPT0006830-rhlA-K18100NANA
D1-35_01751693rsuACOG1187Ribosomal small subunit pseudouridine synthase AATGCGCGTTGACCGTTTCCTCAGTAACCTGCCGCGTTTCAACCGCCAACAGGTCCGCCTGCTGCTGGTGGAACGGCGCGTACGGATCGACGACCAGACCGTCATCGATCCACAGGCACAGGTGCGTGAATTCAGCCGCGTCGAGGTGGATGACGAAGTGCTGCAAGCAGGCCGACCGGCGCGCTATTTCATGCTGCACAAGCCGCCCGGCTGCGTGAGTGCCACCCGCGATCCGCAGCACCGCACCGTCCTCGATCTGCTGGACGAACCGGACAAGGACGACTTGCACATCGCCGGTCGCCTGGACTTCAACACCACCGGGCTGATGCTGATCACCAACGACGGCAGCTGGTCGCGGCGCCTGACCCAGCCGCAGACCAAACTGCCGAAGGTCTACTACGTCGAGACCGAGCAAACCATTACCGCCGAGTACGCCTTCACGTTTGCCCAAGGCCTGTACTTTGCGTTCGAAGACCTCACCACCCAACCGGCGCAATTGACCCAACTGGGGCCGACATCCGCGCGCTTGAGCATCGTTGAAGGCCGTTATCATCAGGTCAAGCGCATGTTTGGTCACTTCAACAACAAGGTGCTGCGCCTGCACCGTGAAAGCATGGGCCCGCTGCTGCTGGACGCTGATCTCGCACCGGGCCAATACCGCGCCTTGAGCCCAGAAGAAGTTGGCCTGATCTGAMRVDRFLSNLPRFNRQQVRLLLVERRVRIDDQTVIDPQAQVREFSRVEVDDEVLQAGRPARYFMLHKPPGCVSATRDPQHRTVLDLLDEPDKDDLHIAGRLDFNTTGLMLITNDGSWSRRLTQPQTKLPKVYYVETEQTITAEYAFTFAQGLYFAFEDLTTQPAQLTQLGPTSARLSIVEGRYHQVKRMFGHFNNKVLRLHRESMGPLLLDADLAPGQYRALSPEEVGLINANANANANA
D1-35_01752219hypothetical proteinATGAATAAACCCGATCTCTGCCCGGCGTGCGGCGCCACCAACGACTGCACCCTGGCCAATCCGAAAACCGTTGATCGTGCCTGCTGGTGCTATGGCGTGAGCATCGACCCGGCGGTGCTGGAAAATTTGCCGGCCGAGCTGCGCAACCAATCCTGCCTGTGCCCGCGATGCGCCCGGGTCGATGACCAGTTGCGCGCCAAGCACCAACCGATCGCGTAAMNKPDLCPACGATNDCTLANPKTVDRACWCYGVSIDPAVLENLPAELRNQSCLCPRCARVDDQLRAKHQPIANANANANANA
D1-35_01753747dosCDiguanylate cyclase DosCATGTCGCTTCGTTCGCCGTTGTATTCCCAGCGCTCGCCGGTGCTCATCCTGGCCATTTTGCTCGGCGCCGGCTTCCTGGTGACGTCGCTGCTGGGGTACTACGCCGCCAACACGTCGCTGCGGGACAACGTGCTCAAGACGCTGTATTTCAATCTGCTGATCGGCCTGCTGGTGACAGTGGCCGCGCTCGTGGTGCTGCATCGGCTGATGGTCAGCTATCAGCGGCGGATCGACGCCCAAGCGATTCTTGACGGCCTGACCGAGCTGCCCAATCGGCGGGGCTTCGACCTCCTGGCGGTGCAGGCCCTGCACGAAGCCCAACGCGAGCCCAGGCCATTGGGGGCGCTGTTGCTGGAGGTGGATGACTTCAAGCGACTGGACGCCAACCATGGCCACATCGCCAGTGATCAATTGCTCACTGGTTTCGCTCGCGACCTGACCGATACACTGCGCCATTCAGACATTGTCTGCCGCTGGAGCGCCGATGCCTTCGTCCTGCTGCTCAAGGACACCGATGGACAGAACGCTCTGAAAATCGCCGAGAAAATTCGCCAGCGCATCGAGCAACAGCGCTACTTTTGCAGCGGCAAGCAATTGCGGATCACCATCAGCATCGGCCTGACCACGTTGCAGGATAAAGACACCTTGCACAGCCTGCTGTCCCGGGCCGATCATGCGCTGCAACGCGCCCGACAGACCGGAAGCAACCGAACCTGCGTGGAAATGCCTCATTCCAGTTATGAATAAMSLRSPLYSQRSPVLILAILLGAGFLVTSLLGYYAANTSLRDNVLKTLYFNLLIGLLVTVAALVVLHRLMVSYQRRIDAQAILDGLTELPNRRGFDLLAVQALHEAQREPRPLGALLLEVDDFKRLDANHGHIASDQLLTGFARDLTDTLRHSDIVCRWSADAFVLLLKDTDGQNALKIAEKIRQRIEQQRYFCSGKQLRITISIGLTTLQDKDTLHSLLSRADHALQRARQTGSNRTCVEMPHSSYEPGPT0015900_2283PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-CELL_FATE_CONTROLPUTATIVE-CELL_FATE_CONTROL-1,PGPT0015900-pleD-K02488
D1-35_017541779atzFAllophanate hydrolaseATGACCTTCTCTCTGCGCCTGGACAACCTGCGCGACGCCTACCGCAAGGGTGAAACGACACCGCGCCAGCTGCTGTTGGCCCTGCGGGAAAAAGCCGCTGCGCTCAACCCGGACTATCACCTGTTCATCCACCTGCTCTCGCCCGAAGAACTCGAACCTTACCTTTCGGCACTGGAAAACCGCGACCTGGAAAGCCTGCCGTTGTATGGCGTGCCATTCGCGATCAAGGACAACATCGACCTGGCTGGCATTCCCACCACCGCCGCCTGCCCGGCCTTTGCCTACGTGCCGCAACGTTCGGCGAGCATCGTCGAGCAATTGCTGGCGCTGGGTGCGGTTCCTGTTGGCAAGACCAACCTCGACCAGTTCGCCACTGGCCTCAACGGTACCCGCACGCCCTACGGAGCTTGCCGCAACAGCGTGCTGGCCGACTACCCGGCGGGCGGCTCCAGCGCGGGCTCGCCGCTGGCGGTGGCCCTGGGCGTGGCCAGCTTTGCCCTGGGCACCGACACCGCCGGCTCCGGTCGCGTGCCTGCGGCGCTGAACAACCTGGTGGGGTTGAAAGCCACCAAGGGCCTTATCTCCACCGCTGGCGTGGTGCCGGCCTGCCGTACGCTGGACTGCGTGACCACATTCACCGCGACGGCGCGCGAAGCCAGCCAGCTGTTGGCATTGACTGCGCGTCTCGACCCGCGCGACGAATACAGCCGCCCCAACCCGCAATGGAACGACGGCTCGGCGTTCGGCGCACCACGACGTTTTCGCTTCGGCGTGCCCCGCCGGCAAGACCTGGAATTTTTCGACTTCGACGAAGGCCCACGGCTGTTCGCCGATGCCATCGAGCGCCTCGAACACCTGGGCGGCGAAGCTGTCGAGTTGGACTTGTCACCCTTCCTCGAAGCGGCACGCCTGCTCTATGAGGGGCCGTGGGTTGCCGAACGCTACAGCGTGGCCGGGGAACTGATGGAGCGCGAACCCGACGCGGTACTGCCGGTGATCCGCGCCGTGCTGGCGCAAGCGCCGACGGTGACCGGCGTGGAAACCTTCCGTGCCCAGTACCGTTTGCAGGCGCTCAAGGCCCAATGCGACCGCGCGATGGAAGCGCTCGATTGCGTCCTCACCCCGACCATCGGGCGCCCGGTGACGCTCGCCGAACTCGCCGCCGAACCGCTCCTGCGCAATTCGCAACTGGGTTACTACACCAACTTCATGAATCTGCTGGACTACGCCGCCGTGGCCGTTCCCAGCGCATTCATGGCCAACGGTTTGCCTTGGGGCGTGACGCTGTTCGGCCGCGCCTTCACCGATCAGTACCTGCTGAGCGTGGCCGACGCCTTGCAGCGTCAGCAAGCGCCTGATCTGCCAGTGCCTGCCAACCCGGCGCGCCATGATCGGGCACGGTTGGTCGTGTGCGGCGCGCACCTGGATGGGCTGGCTTTGAACTGGCAGCTCAAGCAACGTGGCGCCCGCCTGATCGAGGCGACCCGAAGCTCAGCGAATTATCGCCTCTACGCCTTGGCCGGCGGCCCGCCCCTGCGCCCTGGCATGCTTCGGGTCGGCGAGGGAGGCGTGGCGATCGAAGTGGAAGTCTGGGAATTGCCAAGCAGCGAGCTGGGTTCGTTCCTCACCGGTATCCCCGCACCGCTGGGGCTGGGTAAGGTGCAACTGGCCGACGGACGCTGGGAAAGCGGCTTCATTTGCGAGCCGTATGGTCTGGACGGCGCGCAGGACATCAGTCATCTGGGCGGATGGCGGGCTTATCTGAGTACCCGTCAGTAAMTFSLRLDNLRDAYRKGETTPRQLLLALREKAAALNPDYHLFIHLLSPEELEPYLSALENRDLESLPLYGVPFAIKDNIDLAGIPTTAACPAFAYVPQRSASIVEQLLALGAVPVGKTNLDQFATGLNGTRTPYGACRNSVLADYPAGGSSAGSPLAVALGVASFALGTDTAGSGRVPAALNNLVGLKATKGLISTAGVVPACRTLDCVTTFTATAREASQLLALTARLDPRDEYSRPNPQWNDGSAFGAPRRFRFGVPRRQDLEFFDFDEGPRLFADAIERLEHLGGEAVELDLSPFLEAARLLYEGPWVAERYSVAGELMEREPDAVLPVIRAVLAQAPTVTGVETFRAQYRLQALKAQCDRAMEALDCVLTPTIGRPVTLAELAAEPLLRNSQLGYYTNFMNLLDYAAVAVPSAFMANGLPWGVTLFGRAFTDQYLLSVADALQRQQAPDLPVPANPARHDRARLVVCGAHLDGLALNWQLKQRGARLIEATRSSANYRLYALAGGPPLRPGMLRVGEGGVAIEVEVWELPSSELGSFLTGIPAPLGLGKVQLADGRWESGFICEPYGLDGAQDISHLGGWRAYLSTRQPGPT0001010_620DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_ATRAZINE|DERIVATE_DEGRADATIONXENOBIOTIC_CYANURIC_ACID_DEGRADATION,PGPT0001010-atzF-K01457NANA
D1-35_017553630carB_2Carbamoyl-phosphate synthase large chainATGTTCGAAAAAATCCTGATTGCCAACCGTGGCGCCATTGCCTGCCGCATCCTGCGGACCCTGCGCGAGCTGGACGTCAAAGCCGTCGCCGTTTACTCCCAGGCCGACGAAGCCAGCCTGCACATCCTTCAGGCCGACGAAGCCCACTGCCTGGGCGAAGGCGCGGCGGCGGGCACCTACCTGGCGGTGGACAAGCTCCTGGCGATCGCCCGGGACAGCGGCGCGACCGCGATCCATCCCGGCTACGGTTTTCTCTCGGAAAACGCCGCTTTCGCACAAGCTTGCGAGGCCGCCAACATTGCCTTCATCGGCCCGACACCGGAGCAGTTGCGAGTGTTCGGCCTCAAGCACACCGCACGCGCCCTGGCTCGCCAGCACGGCGTGCCCCTGCTCGAAGGCACGGAGCTGCTCGACAGCCTGGATGCCGCGCTACTGGCCGGCGCGCAGGTCGGCTACCCGGTCATGCTGAAAAGCACGGCGGGCGGCGGCGGAATCGGCATGCGCGTATGCCGCAGCGCCGCTGAATTGAGCGAGTCCTTCGAAGCGGTCAAGCGCCTCGGGCAGAACAATTTCAGCGACGCCGGCGTGTTCATCGAGAAGTACATCGAACGGGCGCGGCACCTTGAGGTTCAAGTGTTCGGCGACGGCCAGGGCCAGGTGATCGCTCTGGGCGTGCGCGACTGCTCGGTGCAGCGGCGCAACCAGAAAGTCATCGAAGAAACCCCGGCGCCCAACCTGCCCGAGGGCATGGCCGACGCGCTTTGCGCTGCCGCGATCAAGCTGGCCCGGGCGGTCGACTACCGCAGCGTCGGCACCGTGGAGTTTGTCTATGACAGTGACACCGGGCGCTTCTATTTCTTGGAAGTGAACACACGCCTGCAAGTGGAGCATGGCGTCACCGAGCAGGTGTGGGGCGTGGACCTGGTGCGCTGGATGGTGCAATTGGCCGCCGGAGAACTGCCGCCACTGAGCGAACTGAGCCAAGGGCTGAAAGCCGAGGGCCACGCGATCCAGGCGCGCCTGTATGCCGAGGACCCAGGCCGGGATTTCCAGCCGAGCCCAGGGCTGCTGACTGCGGTGGAATTTGCGCAGGCCAACGGCAAGGAACTGCGCATCGACACCTGGGTCGAGGCCGGTTGCCAGATCCCGCCGTACTTCGATCCGATGATCGCCAAAGTCATTCGCTGGGCGCCGACCCGCGAGCAGGCACGCCTGGGCCTGCATCAAGCGCTGGACGAAAGCCTGCTCTATGGCGTGGAAACCAACCGTGTCTACCTGCAACAGATCCTGCTCGACGCGCCCTTCGCCGATGGCCAGCCCTGGACCCGCTGCCTGGAGACCCTGGCCTACCGCGCCAACACCGTCGAAGTGCTCAGCCCCGGCACTCAGACCAGCGTTCAGGATTACCCCGGTCGCCTCGGTTATTGGGCGGTGGGCGTGCCGCCGTCGGGACCGATGGACAGCCGTTCGTTGCGCCTGGGCAATCGCCTGCTGGGCAACGAGGAAGGTGTGGCGGCCTTGGAAATCACCATGAGCGGGCCGCTGCTGCGCTTCAACTGCGCTGCGCGAGTGGCGGTGACCGGCGCAGAAATCGCCCTGACGCTGGACGGCGAAACGGTGCCGATGGACACCCCGCTGTCGATCGGTGCAGGGTCCACCCTCGCCATCGGCACGATTACTGGCGCCGGGGCGCGGAGTTATCTGTGTGTACATGGCGGCTTGCAGGTACCGGATTACCTGGGCAGCAAAAGCACCTTCACCCTCGGCCAGTTCGGCGGCCACGGCGGGCGAGCATTGTGCACCGGCGACGTGCTGCACCTGGCTGCGTTGGATGAGCACGTCGTGGTGCCGTCGATCGAAGAGCCGCCCCTGGTGTTGCCAGCCGTGCGGCAGATCCGTGTGATCTACGGTCCCCACGGCGCGCCGGAATATTTCACCGAGCGCTACATCCAGACGTTCTTCGACACCGCCTGGGAAGTGCATTTCAACTCCAGCCGAACCGGCGTGCGGCTGATCGGGCCGAAGCCGGAATGGGTACGTGCCGACGGCGGCGAAGCAGGCCTGCATCCGTCCAATATCCATGACAACCCGTACGCCATCGGCGCGGTGGACTTCACCGGCGACATGCCGGTCATCCTCGGCCCCGACGGCCCGAGCCTGGGTGGCTTCGTCTGCCCCGTGACGGTGATCGAGGCGGACCTGTGGCAACTGGGACAGCTCAAGGCGGGGGACAAGGTGCGGTTTGTGCCGGTGGACCTGAAGACTGCCCGCTCACTGGCCTTGAAATGGGATCAATGTGGGAGCGAGCCTGCTCGCGAAGGGGCCAGATCAGACACCGCATTGACTGCTTCGCGAGCAGGCTCGCTCCCACAGGGGGTTGAGTCGCCTGTGGTTTTGGACATCGGCCAGGACGACACCCGCCTGGTCGCGCGGCTGTCCGGCGACACCCATCTGCTGCTTGAAATCGGCGCTCCGGAACTGGACCTGGTGCTGCGTTTTCGCGCTCACGCCTTGATGCAGGCCCTGGAGCAAAAACACCTGCAAGGGGTGATCGACCTGACGCCGGGTATTCGCTCGCTGCAAGTGCATTACCAGCCCGAACAATTACCCCTGGCCGATCTGCTGGCCATCGTCGCCGGCGAGTGGGACGCCGTGTGCGCCGCGCAAGATTTGCAGGTGCCGTCGCGCATCGTCCATCTGCCGCTGTCCTGGGACGATCCGGCCTGCCAGCTGGCGATCGAAAAGTACATGACCACCGTGCGCAAGGACGCGCCCTGGTGCCCGAGCAACCTGGAGTTCATCCGGCGCATCAACGACCTGCCCAACCTCGACGAAGTACAACGCACAGTGTTCGATGCCAGCTATCTGGTGATGGGCCTCGGCGATGTCTACCTCGGCGCGCCGGTCGCCACGCCGCTGGACCCGCGGCACCGGCTGGTGACCACCAAATACAACCCGGCCCGCACCTGGACCGCGGAAAATTCGGTGGGCATCGGCGGCGCCTATCTGTGCGTGTACGGCATGGAGGGCCCCGGCGGCTATCAGTTCGTCGGCCGCACGTTGCAGATGTGGAATCGTTATCGGGACGTCGCCGCATTTGACGGCAAGCCCTGGCTGCTGCGCTTCTTCGACCAGATCCGCTTCTACCCGGTCAGCGCCGATGAACTGCTGCGCATCCGTCGGGATTTCCCGTTGGGCCGCTTCGAACTGGCGATCGAACACAGCCAACTCAACCTCGCTGATTACCAGCGCTTCCTGGCCCGGGAAGCGGACAGCATCGACGCGTTCCGCGAGCAGCAACAAGGCGCCTTCCGTGCCGAGCGCGAGCGCTGGATCGCCAGTGGCCAGGCGCATTTCGACAGCGAGGAACCAGCAACCGCGCCGAGCGAAGATTCAGTGCTGGACGAGGGCCAACTGAGCGTCGACAGCCACATCGCCGGCAACCTCTGGCAGGTCCAGGTGGAGGTGGGCGCGCGGGTCATCGCGGGTGACGTGCTGGTGATTCTGGAGTCCATGAAAATGGAAATCCCGGTGCTTGCGCCCATCGCCGGCGTGGTCCGAGAAGTGCGCGTCCAGCCCGGTTCAGCGGTGCGCGCCGGGCAACGCGTGGTGGTGCTGGAACGTGACTGAMFEKILIANRGAIACRILRTLRELDVKAVAVYSQADEASLHILQADEAHCLGEGAAAGTYLAVDKLLAIARDSGATAIHPGYGFLSENAAFAQACEAANIAFIGPTPEQLRVFGLKHTARALARQHGVPLLEGTELLDSLDAALLAGAQVGYPVMLKSTAGGGGIGMRVCRSAAELSESFEAVKRLGQNNFSDAGVFIEKYIERARHLEVQVFGDGQGQVIALGVRDCSVQRRNQKVIEETPAPNLPEGMADALCAAAIKLARAVDYRSVGTVEFVYDSDTGRFYFLEVNTRLQVEHGVTEQVWGVDLVRWMVQLAAGELPPLSELSQGLKAEGHAIQARLYAEDPGRDFQPSPGLLTAVEFAQANGKELRIDTWVEAGCQIPPYFDPMIAKVIRWAPTREQARLGLHQALDESLLYGVETNRVYLQQILLDAPFADGQPWTRCLETLAYRANTVEVLSPGTQTSVQDYPGRLGYWAVGVPPSGPMDSRSLRLGNRLLGNEEGVAALEITMSGPLLRFNCAARVAVTGAEIALTLDGETVPMDTPLSIGAGSTLAIGTITGAGARSYLCVHGGLQVPDYLGSKSTFTLGQFGGHGGRALCTGDVLHLAALDEHVVVPSIEEPPLVLPAVRQIRVIYGPHGAPEYFTERYIQTFFDTAWEVHFNSSRTGVRLIGPKPEWVRADGGEAGLHPSNIHDNPYAIGAVDFTGDMPVILGPDGPSLGGFVCPVTVIEADLWQLGQLKAGDKVRFVPVDLKTARSLALKWDQCGSEPAREGARSDTALTASRAGSLPQGVESPVVLDIGQDDTRLVARLSGDTHLLLEIGAPELDLVLRFRAHALMQALEQKHLQGVIDLTPGIRSLQVHYQPEQLPLADLLAIVAGEWDAVCAAQDLQVPSRIVHLPLSWDDPACQLAIEKYMTTVRKDAPWCPSNLEFIRRINDLPNLDEVQRTVFDASYLVMGLGDVYLGAPVATPLDPRHRLVTTKYNPARTWTAENSVGIGGAYLCVYGMEGPGGYQFVGRTLQMWNRYRDVAAFDGKPWLLRFFDQIRFYPVSADELLRIRRDFPLGRFELAIEHSQLNLADYQRFLAREADSIDAFREQQQGAFRAERERWIASGQAHFDSEEPATAPSEDSVLDEGQLSVDSHIAGNLWQVQVEVGARVIAGDVLVILESMKMEIPVLAPIAGVVREVRVQPGSAVRAGQRVVVLERDPGPT0001005_218DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-UREA_USAGEN-AQUISITION-UREA_METABOLISM,PGPT0001005-uca|dur|urd-K01941NANA
D1-35_01757642hypothetical proteinATGTCACTCGCCATCGCCACTGCACACAAGCAACCCGAGACCGCCGTATACCGTTCCACGATTCCCGCCGGCGAACCCTGGCTGACCGAGGTCAAGGCCGGCCAGACCCTGCGCATCCTCGACCTGGAAGGCAACCAGGCGGTCGATACGTTGTTCTACAGCCTGGCCAACCCCAAGGAACGCTACGACGTGCAACGCACACTGCGCCGGCAGAACAGCGTCTACCTGAGCACCGGCAGCGTGCTGTATTCCAACCTTGGCCGCCCGATGCTGACCATCGTCGAGGACACCTGCGGGCGCCACGACACCCTCGGCGGCGCCTGCGCGCAGGAAAGCAACACCGTGCGCTACGCCCTGGAAAAACGCTACATGCACAGCTGCCGCGACAATTACCTGCGGGCCTGCGCCCACGACGGTCGACTGGGCAAGGGTGACATCGGACCGAACATCAATTTTTTCATGAACGTGCCGGTGACCGCCGACGGCGGCCTGACTTTCGAAGACGGGATCTCGGCGCCGGGCAAATACGTCGACCTGCGGGCCGAGATCGATGTGATCGTGTTGATCTCCAACTGCCCGCAACTGAACAACCCGTGCAACGCCTACAACCCTACCCCTGCGGAGCTGCTGATATGGAACTGAMSLAIATAHKQPETAVYRSTIPAGEPWLTEVKAGQTLRILDLEGNQAVDTLFYSLANPKERYDVQRTLRRQNSVYLSTGSVLYSNLGRPMLTIVEDTCGRHDTLGGACAQESNTVRYALEKRYMHSCRDNYLRACAHDGRLGKGDIGPNINFFMNVPVTADGGLTFEDGISAPGKYVDLRAEIDVIVLISNCPQLNNPCNAYNPTPAELLIWNPGPT0001000_1266DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-UREA_USAGEN-AQUISITION-UREA_METABOLISM,PGPT0001000-ycgI-K09967NANA
D1-35_01758726hypothetical proteinATGACCGATTCGATCCAGCTGTTTCCCCCCTTCGCCGAAGAATTGCTGCCCGGTGGCGGCCATCGCTCGTTCGTCCTCAAGCGAGGCCAGTTGCTGCGCCTGACCGATGTGCGTGGCGGTGCCAACGTGAGCCTTACCTTGCTCAATGCCAACGAAAAAACCGAGCGCCTGAACCTGCCGGACAGTCTGAAATGCCAACACACCGCCAAGCTCACCGCCGGTCATTGCCTGTATTCGGACATGGGCCGGGTATTGGCGGCAATCACTGCGGATACCTGTGGCTGGAGCGATAGTTTTGGCGGCGTGCTCTGCGCCGAGGAAGTCGCTGAAAAGTATGGTCAGGGCCGTTACCAGGAACTGCGCAACGGCTTCTTCCGCAACGGCACCGACAACCTGTTGGTAGAACTGGGCAAATGGGGGTTGGGTCTGTCCGACCTGCTGATGACCCTCAACCTGTTCAGCCGGGTCGATGTCGACGAGGCCGGCCACTTCCATTTCGTGGAGGGCAACTCCAAGGCCGGTGACTACATCGAGCTGTACGCACCGATGGACACCCTGGTGGTGCTGACCGCGCTGCAACATCCGATGGACCCGAACCCGCTATACGCGCCGCAGCCGCTCAAACTCAGCTGGATGAACGCCAACCCCAGCGTCGCCGAACACTGCCGCCAATCGCGCCCGGAAAACCAGCGCGGCTTCATCAACACCGACCGCCTGTTCGCCTGAMTDSIQLFPPFAEELLPGGGHRSFVLKRGQLLRLTDVRGGANVSLTLLNANEKTERLNLPDSLKCQHTAKLTAGHCLYSDMGRVLAAITADTCGWSDSFGGVLCAEEVAEKYGQGRYQELRNGFFRNGTDNLLVELGKWGLGLSDLLMTLNLFSRVDVDEAGHFHFVEGNSKAGDYIELYAPMDTLVVLTALQHPMDPNPLYAPQPLKLSWMNANPSVAEHCRQSRPENQRGFINTDRLFAPGPT0001000_758DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-UREA_USAGEN-AQUISITION-UREA_METABOLISM,PGPT0001000-ycgI-K09967NANA
D1-35_01759789cmpD_1Bicarbonate transport ATP-binding protein CmpDATGAGCTTCATTACCGTGAACAACGTCTGGCAGCAGTATGCCGATCAAGTGGTGCTCGAGCGCTTGAACCTGAGCGTTGCCGAGGGTGAGTTCTGCACCCTGGTGGGTGCCTCGGGTTGCGGCAAGTCGACTTTCCTGCGGCTGCTGCTGGGCCAGGAACGCGCCAGTCGCGGACAGATCCTGCTGGACGGCGAGCCGTTGGCGGGCGAGCCGGATGCCAGCCGTGGAGTAGTGTTCCAGCGTTACTCGGTATTCCCGCACCTGACGGTACTGGACAACGTCGCCCTCGGCCTGGAATTGCCGCGCTCGCCGTTGCTGGGGCGTCTGTTCGGCGGCGCCAAACGCCAGGCCCGCGAAGACGCCGCACAACTGCTGGACAAAGTCGGCCTCGGCCACGCGCTGGACAAATACCCTGCGCAGCTCTCCGGCGGCATGCAGCAACGGCTGGCCATCGCCCAGGCGCTGATCATGAAGCCGCGGGTGTTGTTGCTCGACGAACCCTTCGGCGCCCTCGACCCCGGCATTCGCAAAGACATGCATGCCCTGCTGCTGGAACTCTGGCGGGAAACCCGGCTGACCGTGTTCATGGTGACCCATGACCTGTCCGAAGGTTTCAGCCTTGGCACCCGCCTGCTGGTGTTCGACAAGGTTCGTGTCGATCCCCATGCCCCCGGCGCCTATGGCGCACGCATCACCTACGACATCCCACTGAACAGCGACCGCCGCACCGCCCGTGCCGCCGTCGACGCCCTGCCTGCCGAACTGGCCGGCACGTTGCGTATCGCTTGAMSFITVNNVWQQYADQVVLERLNLSVAEGEFCTLVGASGCGKSTFLRLLLGQERASRGQILLDGEPLAGEPDASRGVVFQRYSVFPHLTVLDNVALGLELPRSPLLGRLFGGAKRQAREDAAQLLDKVGLGHALDKYPAQLSGGMQQRLAIAQALIMKPRVLLLDEPFGALDPGIRKDMHALLLELWRETRLTVFMVTHDLSEGFSLGTRLLVFDKVRVDPHAPGAYGARITYDIPLNSDRRTARAAVDALPAELAGTLRIAPGPT0001140_5213DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001140-ABC_SN_A|ytlC-K02049NANA
D1-35_01760816hypothetical proteinATGCGCCTGATCAACCGCTACCCCGATCGCCCCAGCCGCTTGTTGCTGGTGATCCTGCCATTTGCGCTGGTGCTGTTTGCCTACTTCATGGGCTCGGCGGAACGGCTGACGGACAACCCCAACGACAAGCTGCTGCCCAGCGCTGTGCAGATGGCCGATGCAGTCAAACGCCTGGCGTTCACCGCCGACGCTCGCAGCGGCGATTACCTGCTCTGGCAGGACACCGCTTCGAGTCTGCGCCGGTTGGCGATCGGCCTGGGCATCAGCGCCCTGGCCGGGCTGTGCCTGGGCATCGCCGCCGGCACGCTGCCGCTGTTCGGCGCGCCGTTGTCGCCGCTACTCACCGTGGTGTCGATGGTGCCGCCATTGGCGATCCTGCCGATCCTGTTCATCGTCTTCGGCCTGGGGGAGTTGTCCAAGGTGATGCTGATCGTCATCGGCATCACCCCGTGCCTGGCCCGCGACCTGGAGCAGCGTGCCCGGGAAATTCCGCCTGAGCTATTGATCAAGGCCCAGACGCTGGGTGCCTCGACCTGGACCCTGATGTTGCGGGTGGTCCTGCCGCAATTGCTGCCGCGCCTGTTGATTTCCCTGCGGCTGATGCTGGGTTCGGCCTGGCTGTTCCTGATCGCTGCCGAAGCCATCGCTTCCACCGATGGCCTGGGCTATCGGATTTTCCTCGTGCGTCGTTACCTGGCGATGGATGTGATCCTGCCCTACGTGGTGTGGATCACCCTGCTCGCCTGGCTGATGGACTGGGGCCTCAAGCGCCTGACCCGCCGAGCATTTCCCTGGTACGAGGGGGCGAAGGCATGAMRLINRYPDRPSRLLLVILPFALVLFAYFMGSAERLTDNPNDKLLPSAVQMADAVKRLAFTADARSGDYLLWQDTASSLRRLAIGLGISALAGLCLGIAAGTLPLFGAPLSPLLTVVSMVPPLAILPILFIVFGLGELSKVMLIVIGITPCLARDLEQRAREIPPELLIKAQTLGASTWTLMLRVVLPQLLPRLLISLRLMLGSAWLFLIAAEAIASTDGLGYRIFLVRRYLAMDVILPYVVWITLLAWLMDWGLKRLTRRAFPWYEGAKAPGPT0001145_5042DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050NANA
D1-35_017611068hypothetical proteinATGCTCAAGCTTCGTCTGTCCTCACTGCTCCTCGCCGCGCTTGCGGCCTTCGCGAGCATCCCATCCCACGCCGCGCCCAAGGACCATTTCAACGTCTGCTGGACCATCTATGCCGGCTGGATGCCCTGGGAATACGCCGGCAGCCAGGGCATCGTTGACAAATGGGCGAAGAAATACGGCATCACCATCGATGTCGTGCAGCTCAACGATTACGTCGAGTCCATCAACCAGTACACCGCCGGTCAGTTCGATGGCTGCACCATGACCAACATGGATGCCCTGACCATTCCCGCCGCCGGCGGCGTGGACAGCACCGCACTGATCGTCAGTGACTTCTCCAACGGCAACGACGGCATCGTCCTCAAGGGCGAGGGCAAGAAAGTCGCCGACCTCAAGGGCATGGACGTCAATCTGGTGGAACTGTCGGTGTCCCACTACCTCTTGGCTCGGGCCCTGGATTCGGTCGGCCTCGCCGAGAAAGACCTGAAAGTCGTCAACACCTCCGACGCCGATATTTCTGCCGCCTTCAACACCGACTCGGTCAAGGCCGTCACGACATGGAACCCGATGCTCTCGGACATCAAGGCCCAGCCGGGTGTCAGCGAAGTATTCAACTCCAGCCAGATCCCAGGCGAAATCATGGACATGATGGTGGTCAACACTCAGACCCTCAAAGACAACCCGGCCCTGGGCAAGGCACTGACCGGCGCCTGGTTCGAAGTGGTGGCGCTGATGAACGCCAGGAACGCAGCCGCCAATGCCGCGCTGGAACACATGGCCAAGGCGTCGGGTACTGATCTCAAAGGTTTCCAGGCGCAACTGGACACTACCAAGCTGTTCGCCACCCCCAAGGAAGCCCTCGCCTTCGCCACCAGCGAACAACTGCCCGCCACCCTGCGCAAGGTCGCCGAGTTCTCGTTCCGCCACGGTCTGCTGGGTGAAGGCGCCAAGGATGCCGACGCAGTGGGCATGGCGTTCGCCAATGGCGTGACCCTGGGCGACAAAACCAACCTCAAGCTGCGCTTCGATCCCACCTACGTGCAACTGGCCGCCGACGCCAAGTTGTAGMLKLRLSSLLLAALAAFASIPSHAAPKDHFNVCWTIYAGWMPWEYAGSQGIVDKWAKKYGITIDVVQLNDYVESINQYTAGQFDGCTMTNMDALTIPAAGGVDSTALIVSDFSNGNDGIVLKGEGKKVADLKGMDVNLVELSVSHYLLARALDSVGLAEKDLKVVNTSDADISAAFNTDSVKAVTTWNPMLSDIKAQPGVSEVFNSSQIPGEIMDMMVVNTQTLKDNPALGKALTGAWFEVVALMNARNAAANAALEHMAKASGTDLKGFQAQLDTTKLFATPKEALAFATSEQLPATLRKVAEFSFRHGLLGEGAKDADAVGMAFANGVTLGDKTNLKLRFDPTYVQLAADAKLPGPT0001135_1786DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001135-ABC_SN_S-K02051NANA
D1-35_01763420hypothetical proteinATGTATCGACGACTGCTGCTCATTGCGTTTCTCGGTTTGACTCTTTCGGCCTGCGTGCCTTACTCCGACGGAGGCTCCAGCTACTACCGTTCCGAGGTCTACACCTCACCGGCGCCGGTCTATTACAGCGGCGGTGGAAGTTACTACTCGGCACCGCGTGGCTATTACGCACCACCACGGTACTACCAGCCGGCGCCGCGTTATTACTCGGCTCCACGCTACTACCAGCATGGCCCACGCTATTACTCGCCACCGCGAGCGGCGTATCGCCCCTATCCGCATCGGGGCGGTTGGGACGGCCGGGACCGGGGCGGCTGGAATGACGACCGTCGCGGCCGGGGCGGACGTGACCGTGGGCATGATCATCGGGGACGTGGCCATGATGGACGTGGTCATGACGGACGGGGCGGTCACCGCTGAMYRRLLLIAFLGLTLSACVPYSDGGSSYYRSEVYTSPAPVYYSGGGSYYSAPRGYYAPPRYYQPAPRYYSAPRYYQHGPRYYSPPRAAYRPYPHRGGWDGRDRGGWNDDRRGRGGRDRGHDHRGRGHDGRGHDGRGGHRNANANANANA
D1-35_017641113fadJ_1Fatty acid oxidation complex subunit alphaATGAATCTGCACTTCGAAGAACTGACCGGCATCAACGGGGCGCGCCTGGGCGTCGCCACCCTGGATGCCGAAAGATCCTTGAACGCCCTTTCCCTGCCGATGATCAACGCCCTGCGCGATCGCCTCGACGCCTGGGCCCGGGAATCGCAGATTGTCTGTGTGCTGTTGCGCGGCAATGGTGCCAAGGCCTTCTGCGCCGGTGGCGAGGTGCGCAGCCTGGTCGAAGCGTGTCGCGCCCACCCCGGCGAAGTGCCGCCGCTGGCTGCGCAGTTTTTCGCTGCCGAATACCGGTTGGACTTCAATCTGCACACGTATCCGAAACCGTTGATCTGCTGGGGGCATGGCTATGTACTCGGCGGCGGCATGGGCCTGCTGCAAGGCGCCAGCACGCGAATCGTCACGCCGAGCAGTCGACTGGCGATGCCGGAAATCAGCATCGGCTTGTATCCGGACGTCGGCGCCAGTTGGTTCCTGTCGCGCCTGCCGGGCAAGCTTGGCCTGTTCCTCGGCCTTACCGGCGCCCACATGAACGCCAGGGATGCCATCGACCTGGGCCTGGCCGATCGCTTTCTGCTCGATGAGCAGCAGGATGACCTGATCGAAGGCTTGTTGCAGCTTAACTGGCAAGAACAGACCGAGATGCAGCTCAACAGCCTGCTCAAGGCTCTACAGCAAGAAGCACTGCCGCAACAACCCGAAGCCCAATGGTTGCCGCGTCGGCAGCAAATCGATGAGTGGCTGGATGTCAGCGACGTGCGCTGCGCCTGGAAAGCCCTCAGCCTGCTGGTGGATCATCCGGACCCATTGATCGCCCGGGCAGCCAGGACCATGACCGAAGGCTCGCCGCTGACGGCGCACCTGGTCTGGGAGCAGATCAGCCGCGCCCGCCCTTTGTCATTGGCCGGTGTGTTCCGCATGGAATACACCTTGAGCCTCAACTGCTGCCGCCATCCGGAATTCAGCGAAGGCGTGCGGGCGCGGTTGATCGACAAGGACCACAAGCCGCGCTGGCATTGGCCGGATATCAATCATGTGCCGCAAGCGGCGGTCGAGGCGCATTTCCATAAGGTATGGGAGGGGCGGCATCCGTTGGCGGATTTGTCCAATGAGTAAMNLHFEELTGINGARLGVATLDAERSLNALSLPMINALRDRLDAWARESQIVCVLLRGNGAKAFCAGGEVRSLVEACRAHPGEVPPLAAQFFAAEYRLDFNLHTYPKPLICWGHGYVLGGGMGLLQGASTRIVTPSSRLAMPEISIGLYPDVGASWFLSRLPGKLGLFLGLTGAHMNARDAIDLGLADRFLLDEQQDDLIEGLLQLNWQEQTEMQLNSLLKALQQEALPQQPEAQWLPRRQQIDEWLDVSDVRCAWKALSLLVDHPDPLIARAARTMTEGSPLTAHLVWEQISRARPLSLAGVFRMEYTLSLNCCRHPEFSEGVRARLIDKDHKPRWHWPDINHVPQAAVEAHFHKVWEGRHPLADLSNENANANANANA
D1-35_01765693ungCOG0692Uracil-DNA glycosylaseATGACCGCTGACGACCGTATCAAACTCGAACCCAGCTGGAAGCAGGCACTGCGTGCCGAGTTCGACCAGCCGTACATGGCGGAGTTGCGCGAGTTCCTGCGCAGTGAATACGCCGCCGGCAAGGAAATCTATCCGCCGGCCCCGCTGATTTTTAATGCACTCAATTCCACGCCGCTGGACAAGGTCAAGGTGGTGATCCTCGGCCAGGACCCGTACCACGGCCCGGGCCAGGCCCATGGCTTGTGCTTTTCGGTGCAGCCGGGCGTGCCGACGCCGCCGTCGCTGGTGAACATCTACAAGGAATTGAAGCGCGACCTGAACATCGATATCCCCAACCATGGCTATCTGCAGAGCTGGGCCGACCAGGGTGTGTTGTTGCTCAACACGACCTTGACCGTGGAGCGCGCCAATGCCAATGCCCACGCTAAAAAAGGCTGGCAGCACTTTACCGACAAGGTCATCGAAGTGGTCAGCGAACACCAGCCGCACCTGGTTTTCCTGCTGTGGGGGGCTCATGCCCAGAGCAAGCAGAAGCTGATCGATGCGACCAAGCATCTGGTGTTGACCTCGGTCCACCCGTCACCGCTGTCAGCCCATCGGGGCTTTATCGGCTGCGGGCATTTCAGCCGGACCAACAAGTTTCTCCAGCAGCATGGCGAGCAGCCGATCGATTGGCGGTTGCCGCCGGTTTAGMTADDRIKLEPSWKQALRAEFDQPYMAELREFLRSEYAAGKEIYPPAPLIFNALNSTPLDKVKVVILGQDPYHGPGQAHGLCFSVQPGVPTPPSLVNIYKELKRDLNIDIPNHGYLQSWADQGVLLLNTTLTVERANANAHAKKGWQHFTDKVIEVVSEHQPHLVFLLWGAHAQSKQKLIDATKHLVLTSVHPSPLSAHRGFIGCGHFSRTNKFLQQHGEQPIDWRLPPVPGPT0007090_2DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007090-trpD-K00766NANA
D1-35_017661044hypothetical proteinATGTCTGAGGCGACAACTTTCAGACAATGGTGGGGAACACCGCTGGTCGGTCTGGCCGGCGGTTATCTGGCCAGCCTGATCGGCTGGCCCTTGCCCTGGATGGTCGGCTCGCTGTTGGCGATCATCCTGGTGCGCTGTCTAACTCCCTGGCAACTGATGGAAATCCCCGGCGGCCGCAAATGCGGCCAATGGGTGGTGGGCATCGGTATCGGCCTGCACTTCACGCCGGTGGTGATGGAACAGGTCCTCAGCCACTTCGGCCTGATCTTCTTCGGCGCGCTGATCACCAGCGTGTCCAGCATCGTGAGTGTCTGGCTGATGCGCCGCACCGGCGAAGACCGCGCCACGGCCTTTTTCTCCAGCATGCCGGGCGGTTCCGGCGAGATGGTCAACCTCGGCGCCCGCAATGGCGCGATGCTCAGCCATGTTGCCGCGGGCCAGAGCCTGCGCGTGCTGGTGGTGGTGTTGTGCGTGCCGGCTGCCTTCAAATATCTGCTCGGTGACGGCACGCCGGTGCAACACGCCACGGCGGTGGATTGGTTGTGGCTGGCGGTTCTGTTTCCGGCGGGTGCCCTGCTCGCCTGGATCTGGGAGCGCTTGCGCCAACCCAATCCATGGCTGTTCGGGCCCTTGTTGGTCAGCGCGGCGGTGAGCATCGGCTGGGACCTGCACATCGGCCTGCCCGACGGCGGCAGCCAGATCGGCCAATGGCTGATCGGCAGCGGCCTGGGCTGTCATTTCAACCGGCAGTTCTTCCGCCGCGCACCGTCGTTCATGGGTCGTACCTTGATTGGCACGGTGCTGACCATGCTGATCGCCACGCTTGCGGCCCTGGGCCTGAGCACCTGGACCCACCTGGACTTGCGCTCGCTGACCCTGGGCATGATGCCCGGCGGCATCGCCGAAATGAGCCTGACGGCGGAGACCCTGCAACTGTCGGTGCCGTTGGTGACGGCGCTGCAGGTGATGCGGTTGCTGTTCGTGCTGTTTCTGGCGGAGCCGTTGTTCAGGTATTGGGTTCGCAGGCCGGATCCGGACTTGTAGMSEATTFRQWWGTPLVGLAGGYLASLIGWPLPWMVGSLLAIILVRCLTPWQLMEIPGGRKCGQWVVGIGIGLHFTPVVMEQVLSHFGLIFFGALITSVSSIVSVWLMRRTGEDRATAFFSSMPGGSGEMVNLGARNGAMLSHVAAGQSLRVLVVVLCVPAAFKYLLGDGTPVQHATAVDWLWLAVLFPAGALLAWIWERLRQPNPWLFGPLLVSAAVSIGWDLHIGLPDGGSQIGQWLIGSGLGCHFNRQFFRRAPSFMGRTLIGTVLTMLIATLAALGLSTWTHLDLRSLTLGMMPGGIAEMSLTAETLQLSVPLVTALQVMRLLFVLFLAEPLFRYWVRRPDPDLPGPT0027725_1267DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-AbrB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027725-antitoxin_abrB-K07120NANA
D1-35_017671515hypothetical proteinATGGATACCCTGAATTATCTCGGCCAGGGTTTTGGCGTTGCACTGACGCCGTACAACCTCGTCACCGCGTTGAGCGGCACGCTGATCGGTACCGTGGTCGGCCTGCTGCCGGGCCTGGGCCCGATCAACGGCGTGGCGCTGCTGATACCGATTGCCTTCGCCCTGGGCCTGCCGCCGGAATCGGCGCTGATCCTGTTGGCGGCGGTGTACCTGGGCTGCGAATACGGCGGACGTATCAGCTCGATCCTGCTGAACATCCCCGGTGAAGCCTCCACCGTGATGACCACCCTGGACGGCTACCCGATGGCCCGCCAAGGCCTGGCCGGGGTGGCGTTGTCGCTGTCGGCGTGGAGTTCGTTCATCGGCGCGTTCATTGCCACCTGCGGCATGGTGTTGTTTGCGCCACTGCTGGCCAAATGGGCGATCGCCTTCGGACCAGCGGAATATTTCGTCCTGATGGTGTTTGCCATTGTCTGCCTCGGCGGCATGGCCGGCGACCGACCGCTCAAGACTTTCATCGCTGCGCTGATCGGGCTGTTCCTGTCTTGCGTCGGCATCGATGCGAACAGCGGCGTGTACCGTTTTACGGGTGACAACATCCATTTGACCGATGGCATCCAGTTCGTCGTGCTGGTGCTGGGCCTGTTCTCCATCAGCGAGATTCTGTTGCTGCTGGAAAAAACCCATCGCGGCCAGGAAGCGGTGAAAGCCACCGGGCGGATGATGTTCAACTTCAAGGAAGCGGCCTCGGTGTTCTGGGTGAACATCCGCTGCGGCGTGCTCGGTTTCATCATGGGCGTATTGCCTGGCGCGGGCGCGACCCTGGCCAGTGCCGTGGCCTACATGACCGAAAAACGCATGGCTGGAGCCAGTGGGACGTTCGGCCAGGGCGACAAGCGTGGCCTCGCGGCGCCGGAAACCGCCATCGGCGGCGCGGCCTGCGGCGCGCTGGTGCCGATGCTGACCCTCGGCGTCCCAGGTTCCGGCACCACGGCGGTGATGATCGGCGCGCTGTCGCTCTATAACATCACGCCCGGCCCGCTGCTGTTCCAGCAACAGCCGGACATCGTCTGGGGCCTGATCGCTTCGTTGTTCGTCGCCAACGTCATGCTGGTGATCCTCAACATCCCGATGATTCGTATCTTCACCCGCATCCTGGCCGTGCCGAACTGGGCGCTGGTGCCGGTCATCGCGATCATCACCGGGATCGGCGTTTACGCGGTGCACGCGACCACATTCGACCTGTTCCTGATGATCGGCATCGGCATCTTCGGTTACATCCTGCGCAAGCTGGATTTCCCGCTGTCGCCCGTGCTGCTGGGCTTCATCCTTGGCGGTCTGATGGAGCAGAACCTGCGTCGTGCATTGTCGATTTCCAATGGCGCGTTGGAAATCCTCTGGTCCAGCCCGATCACCTTCGGCTGCTGGGTCCTGACGGCAATCATGCTGTTCCTGCCGCTGCTGCGCATCTGGCGTCGTCGCAGTGCCCAGCGTCGTGCCCTGGCCAATGTCTGAMDTLNYLGQGFGVALTPYNLVTALSGTLIGTVVGLLPGLGPINGVALLIPIAFALGLPPESALILLAAVYLGCEYGGRISSILLNIPGEASTVMTTLDGYPMARQGLAGVALSLSAWSSFIGAFIATCGMVLFAPLLAKWAIAFGPAEYFVLMVFAIVCLGGMAGDRPLKTFIAALIGLFLSCVGIDANSGVYRFTGDNIHLTDGIQFVVLVLGLFSISEILLLLEKTHRGQEAVKATGRMMFNFKEAASVFWVNIRCGVLGFIMGVLPGAGATLASAVAYMTEKRMAGASGTFGQGDKRGLAAPETAIGGAACGALVPMLTLGVPGSGTTAVMIGALSLYNITPGPLLFQQQPDIVWGLIASLFVANVMLVILNIPMIRIFTRILAVPNWALVPVIAIITGIGVYAVHATTFDLFLMIGIGIFGYILRKLDFPLSPVLLGFILGGLMEQNLRRALSISNGALEILWSSPITFGCWVLTAIMLFLPLLRIWRRRSAQRRALANVPGPT0017350_1491DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017350-tctA-K07793NANA
D1-35_01768462hypothetical proteinATGCTCGTCATCCAACGTATTATTGCCGCGGTGCTGCTGCTGGCCTGCATCGGCCTGGCACTGATGGCCTGGCCCTATCAGGCTGCCTTTTCCTATGAACCGGTTGGCCCGCGTGCCTTTCCCCTGCTGATACTCGGGCTGATGGGGCTGGCGCTGCTGTACATGCTGTTTCGTCCCACGCCCGTCGTGCACAGCGAAGACGATCCGCACCTGGACCGTGAAACCCTGCAGAAGATCGGTATCTGCGTGGCGCTGTTGCTGGTATTCGCCGGGACCTTCGAGCCCTTGGGATTCATCCTCGCCAGCATTCTGATCGGCGTGCCGATGGCACGTCTGTACGGCGGCCGCTGGGTGCCGAGCGTGGTGATCATCAGCCTCATGGCCATTGGTCTTTATCTGTTGTTCGACAAGCTGATGGACGTGCCGCTGCCCCTGGGCCTGCTCGGCGTCCTGGAGAATTGAMLVIQRIIAAVLLLACIGLALMAWPYQAAFSYEPVGPRAFPLLILGLMGLALLYMLFRPTPVVHSEDDPHLDRETLQKIGICVALLLVFAGTFEPLGFILASILIGVPMARLYGGRWVPSVVIISLMAIGLYLLFDKLMDVPLPLGLLGVLENPGPT0017355_1912DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017355-tctB-K07794NANA
D1-35_01769993hypothetical proteinATGAACCTATCACTGCGCAAAGTAGCCTTGGCCGCCGGATGCCTGATGTTCGCCGGGCAATTGCTCGCCGCGGACCCATCCAAAGAGCCGAAGCGCCCGGAATGCATCGCACCCGCTGCCCCTGGCGGCGGTTTCGACCTGACCTGCAAACTGGCGCAGAGCGCGCTGGTCAACGAAAAACTGCTGACCAAGCCGATGCGCGTCACTTACATGCCCGGCGGTGTCGGCGCGGTGGCCTACAACGCAGTCGTCGCACAACGCCCTGCCGACGCCGGCACGCTGGTGGCCTGGTCCAGTGGCTCGTTGCTGAACCTGGCGCAAGGCAAGTTTGGCCGTTTTGATGAAACCAATGTGCGCTGGCTCGCTGCCGTCGGCACCAGCTATGGCGCCATCGCCGTGAAAAGCGATTCGCCCTACAAAAACCTCGACGATCTGGTACAGGCCCTGAAGAAAGATCCGGGCTCGGTGGTGATCGGTTCCGGCGGTACCGTCGGCAGCCAGGACTGGATGCAGACCGCTTTGATTGCCAAGGCCGCCGGCATCGACCCGCGCAAACTGCGCTACGTGGCCCTTGAAGGCGGCGGTGAAATCGCGACCGCCCTGCTCGGTGGCCATATCCAGGTGGGCAGTACCGACATCTCCGACTCCATGCCACACATCCAGAGCGGCGACATGCGTTTGCTGGCGGTGTTCTCTGATAAACGCCTGGACGAGCCGGAGATGAAAGACATCCCGACCGCCGTGGAACAAGGCTACGACATCCGTTGGCCGGTAGTCCGTGGCTTCTACCTGGGCCCGAAGGTCACCGATGCAGAATACGAATGGTGGAAAAACGCCTTTGACAAGCTGCTGGCCTCCGAAGAGTTCGCCAAGCTGCGCGACCAACGGGAACTGTTCCCGTTCGCCATGACCGGTCCGGAGCTGGACGCCTACGTGAAGAAGCAAGTGGCCGACTACAAGATGCTGGCCAAAGAATTCGGCCTGATTCAGTAAMNLSLRKVALAAGCLMFAGQLLAADPSKEPKRPECIAPAAPGGGFDLTCKLAQSALVNEKLLTKPMRVTYMPGGVGAVAYNAVVAQRPADAGTLVAWSSGSLLNLAQGKFGRFDETNVRWLAAVGTSYGAIAVKSDSPYKNLDDLVQALKKDPGSVVIGSGGTVGSQDWMQTALIAKAAGIDPRKLRYVALEGGGEIATALLGGHIQVGSTDISDSMPHIQSGDMRLLAVFSDKRLDEPEMKDIPTAVEQGYDIRWPVVRGFYLGPKVTDAEYEWWKNAFDKLLASEEFAKLRDQRELFPFAMTGPELDAYVKKQVADYKMLAKEFGLIQPGPT0017360_1031DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017360-tctC-K07795NANA
D1-35_01770672tctD_1COG0745Transcriptional regulatory protein tctDATGCGTGTCCTGCTCGTCGAAGACCATCTGCAGCTCGCCGAAAGTGTCGCCCAGGCCCTCAAGAGCACAGGGTTGACGGTGGATGTGCTGCACGACGGGGTGGCCGCCGATCTGGCCCTGAGCAGCGAGGAATACGCGGTGGCGGTCCTTGATGTCGGGCTGCCGCGCATGGACGGCTTCGAGGTGCTGGCGCGCTTGCGGGCGCGGGGCAAGACGCTGCCGGTGCTGATGCTGACCGCTCGCAGCGACGTCAAGGATCGGGTCCATGGCCTGAACCTCGGCGCCGACGATTACCTGGCCAAACCTTTCGAACTCACCGAGCTTGAGGCGCGGGTAAAGGCACTGCTGCGCCGTAGCGTACTGGGTGGCGAGCGGCAGCAGCGCTGTGGTGGGCTGGTCTACGACCTGGACACCCGGCGCTTTACCCTCGACGAGGAACTGATGACCCTGACCTCTCGCGAGCAGGCTGTCCTGGAAGCGTTGATCGCCCGGCCCGGGCGGGTGATGAGCAAAGAACAACTGGCAGCCCAGGTGTTCGGCCTGGATGAAGAGGCCAGTCCCGACGCCATCGAAATCTATGTCCATCGCCTGCGCAAGAAGCTCGACGGCCATGCGGTGGCAATCGTGACATTCCGCGGACTGGGCTATCTGTTGGAAAACCGCGATGCATAAMRVLLVEDHLQLAESVAQALKSTGLTVDVLHDGVAADLALSSEEYAVAVLDVGLPRMDGFEVLARLRARGKTLPVLMLTARSDVKDRVHGLNLGADDYLAKPFELTELEARVKALLRRSVLGGERQQRCGGLVYDLDTRRFTLDEELMTLTSREQAVLEALIARPGRVMSKEQLAAQVFGLDEEASPDAIEIYVHRLRKKLDGHAVAIVTFRGLGYLLENRDAPGPT0017365_822DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-AMINOGLYCOSIDES_RESISTANCE-GENTAMICIN|TOBRAMYCIN|KANAMYCIN_RESISTENCE,PGPT0017365-tctD-K07774NANA
D1-35_017711392sasA_8Adaptive-response sensory-kinase SasAATGCATAAGCCCGACAGCCTGCGCTGGCGGCTACTTCGCAACCTCGCTTCGTTGCTCGTGGTACTGATGCTCGCCAGTGGCCTGAGCGCCTACTGGAATGGTCGTGAAGCCGCCGATACGGCCTACGACCGGACGCTCCTGGCGTCGGCCAGAACCATCGCCGCCGGTCTTTCGCAGCGCGACGGTACCCTCAGCGCGGACGTACCTTATGTCGCTCTGGACACCTTCGCCTATGACAGTGCCGGACGTATCTATTATCAAGTCAACGACATCCACCAGAAGCTGATCTCCGGCTACGAGAATCTTCCCGGGCCGCCGCCCGGTACGCCGCGCACCGACGATTACCCGGCGCTGGCACGTTTCTACAACGCCAGTTACCAAGGGCAGAATGTGCGCGTGGTGAGCCTGCTCAAGGCCGTGAGCGAACCCGAAATGAACGGCATGGCGGAAATCCGCGTGGCGGAAACCGAAGAAGCTCGGGTCAGCATGGCCCGCGGCTTGATGGCCGATACCTTGTTGCGGCTGGGCATGCTGGCGGTGGGCGCGCTGTTGCTGGTGTGGTTCGCGGTCAGCGCGGCGTTGCGCCCGCTGGAACGCTTGCGCACGGCGGTGGAGGAACGCCAGCCGGACGATCTGCGGCCGTTGCCGCTGGTGGAAGTCCAGCACGAATTGTGGCCGTTGGTACGTGCCCTCAATCATTTCACCGAACGGCTGCGCGGCCAGTTCGAACGCCAGGCGCAATTCATTGCCGATGCCGCCCATGAGCTGCGCACGCCACTCGCGGCGCTCAAGGCTCGCCTGGAGCTGGGCTTGCGCGCCAGCGAACCGTCGACCTGGCGCGAAACCCTGGAAACCGCCGCCCAGGGCACTGATCGCTTGACCCATCTGGCGAATCAACTGCTGTCGCTGGCGCGGGTGGAGAACGGCGCGCGGGCAATTGCCGAAGGCGGTGCACAGTTGCTCGACCTGAGCCAGCTCGCCCGAGAACTGGGCATGGCCATGGCGCCACTGGCCCATGCCCGTGGGGTTGCGTTGGCCCTGGAAGCCGATGAACCCGTCTGGTTACGGGGCGAGCCGACTTTGCTCAACGAGCTGTTGAGCAACCTGGTGGACAATGCCCTGGCCCATACTCCTTCGGGCGGTAACGTGATCCTGCGGGTCACCGCGCCGGCGGTACTGGAAGTCGAGGATGACGGCCCGGGCATTCCCGAGACTGAGCGGGAACGGGTATTCGAGCGCTTCTATCGGCGCAACCAGCAAGTGGCCGGCTCGGGATTGGGGTTGGCAATTGTCGGAGAAATCTGCCGTGCGCATCTGGCGCAGATCACCCTGCATGATGGGCAGGAGGGCGGGTTGAAGGTGCGAGTGAGTTTTGCTCCTGGCTCAGAATGAMHKPDSLRWRLLRNLASLLVVLMLASGLSAYWNGREAADTAYDRTLLASARTIAAGLSQRDGTLSADVPYVALDTFAYDSAGRIYYQVNDIHQKLISGYENLPGPPPGTPRTDDYPALARFYNASYQGQNVRVVSLLKAVSEPEMNGMAEIRVAETEEARVSMARGLMADTLLRLGMLAVGALLLVWFAVSAALRPLERLRTAVEERQPDDLRPLPLVEVQHELWPLVRALNHFTERLRGQFERQAQFIADAAHELRTPLAALKARLELGLRASEPSTWRETLETAAQGTDRLTHLANQLLSLARVENGARAIAEGGAQLLDLSQLARELGMAMAPLAHARGVALALEADEPVWLRGEPTLLNELLSNLVDNALAHTPSGGNVILRVTAPAVLEVEDDGPGIPETERERVFERFYRRNQQVAGSGLGLAIVGEICRAHLAQITLHDGQEGGLKVRVSFAPGSEPGPT0017370_845DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-AMINOGLYCOSIDES_RESISTANCE-GENTAMICIN|TOBRAMYCIN|KANAMYCIN_RESISTENCE,PGPT0017370-tctE-K07649NANA
D1-35_01772822hypothetical proteinATGAGCGATTTGGCGGATAAGGTCCAGCGGGATTTGGTGGCGGCCATCGATAATGATGACCTGGTCCTGCCAACATTACCGGAAGTGGCCATGCAGATTCGCCGGGCCGCCGAAGACCCGGAAATCAGCGTCAGCAACCTGAGTAAAGTGATTGGTCGTGACACCGCCCTCTCGGCGCGCCTGATAAAAGTAGTCAACAGCCCCCTGCTGCGTGCCACCCAGGAAGTAACGGACCTGCACACGGCCATCACGCGGTTGGGGGTCAACTACAGCAGCAACCTGGCGATCGGGCTGGTCATGGAGCAGATATTCCATGCTCGCTCCGAAGTGGTTGAGCAAAAGATGCGGGAAGTCTGGCGCAAGAGCCTGGAGATCGCCGGCGTCAGCTATGCGTTATGTCGCAGCTACACGCATCTCAAGCCCGATCAGGCGGCGCTGGGTGGACTGGTCCATCAGATCGGCGTGCTGCCGATCCTGACGTACGCCGAGGACAACAATGAACTGCTGTCGGACCCGGTCAGCCTCAATCACGTCATCGAGACGATCCATCCCGTGCTGGGGGACAAGCTGCTCAGCGTCTGGGAGTTTCCGGAGCGGTTGGTGAAGTTGCCGGGGCTGTACCTGGATTTCACCCGAGACTCGAAGCAACTCGATTATGTCGACCTGGTGCAGGTTGCCGCGCTGTACTGCTACAAGGATGCCGACCACCCGCTGAGCAGGATTGACGCGTTCGGGGTTCCGGCGATCAGGAAGCTGGGCATCGACCTGGACAACAAGGACCGCTGCGCGGATATCGAAGAAGCTCGGTCGATGTTTTATTAAMSDLADKVQRDLVAAIDNDDLVLPTLPEVAMQIRRAAEDPEISVSNLSKVIGRDTALSARLIKVVNSPLLRATQEVTDLHTAITRLGVNYSSNLAIGLVMEQIFHARSEVVEQKMREVWRKSLEIAGVSYALCRSYTHLKPDQAALGGLVHQIGVLPILTYAEDNNELLSDPVSLNHVIETIHPVLGDKLLSVWEFPERLVKLPGLYLDFTRDSKQLDYVDLVQVAALYCYKDADHPLSRIDAFGVPAIRKLGIDLDNKDRCADIEEARSMFYNANANANANA
D1-35_01773942ygfZtRNA-modifying protein YgfZATGGCTGATTCCGCTTTTTTCTGCACCCTGTCCCACGAAGGCGTTCTCGCGGTCCGTGGCGTGGACGCAAGCAAATTCCTGCAAGGCCAATTGACCTGCAACCTCAACTACCTGAGCGACAGCCGGGCCAGCCTCGGCGCACGTTGCACCCAGAAGGGCCGGATGCAATCGAGCTTCAGGATCCTGCTTGAAGGCGACGGCGTGCTCCTGACAATGGCCAGCGAATTGCTCGAACCGCAACTGGCGGACCTGAAAAAATACGCAGTGTTCTCCAAATCCAAGCTCACCGACGAGAGCGCCGCATGGGTTCGTTTCGGACTGGAAGGCGCCGATGCCACGCTCACCGACCTGGGCCTGGAACTGCCGGTCGATACCGACAGCGTGGTTCGCCATGAATCCTTGATCGCCATCCGCGTCTCTCCAGGCCGCGCCGAACTCTGGGCTCGCGCCGAACAGGCCGATACGCTGCGCACTCGCCTGAGCGCGAAACTGGCCGAAGGCGATCTCAACCGCTGGCTGCTGGGCCAGGTTCGCGCGGGCATTGGCCAGGTCATGCCGGCTACTCGCGAGCTGTTCATTCCGCAGATGCTCAACCTGCAGGCCGTAGGGGGCGTGAGTTTCAAGAAAGGCTGCTATACCGGCCAGGAAATCGTCGCGCGCATGCAGTACCTCGGCAAGCTCAAGCGCCGGCTGTATCGCCTGCAGCTGGAGGCAGGCGAGCTGCCAGAGCCGGGCACTCCACTATTCTCCCCCACTCACGGCAGTTCCATCGGCGAAGTGGTCATTGCTGCCCGCGCCGAACAAAACATTGAACTGCTGGCGGTGTTGCAGGCCGAAGCAGCGGAAGATGGCAATTTGCACCTCGGAGCTTTGGAAGGACCCGCGCTACAATTGCTGGACTTGCCTTACGAACTGGACCGCGACCGCGAAATCCAGCGTTGAMADSAFFCTLSHEGVLAVRGVDASKFLQGQLTCNLNYLSDSRASLGARCTQKGRMQSSFRILLEGDGVLLTMASELLEPQLADLKKYAVFSKSKLTDESAAWVRFGLEGADATLTDLGLELPVDTDSVVRHESLIAIRVSPGRAELWARAEQADTLRTRLSAKLAEGDLNRWLLGQVRAGIGQVMPATRELFIPQMLNLQAVGGVSFKKGCYTGQEIVARMQYLGKLKRRLYRLQLEAGELPEPGTPLFSPTHGSSIGEVVIAARAEQNIELLAVLQAEAAEDGNLHLGALEGPALQLLDLPYELDRDREIQRNANANANANA
D1-35_01774255sdhECOG2938FAD assembly factor SdhEATGGTCGAAGATGTTGAACTGAATCGCCTCTACTGGCACAGCCGCCGCGGCATGCTTGAGCTTGACGTGCTGCTGGTGCCGTTCGTGAAGGAGGTCTACCCACACCTTGATGAAGTCGACCGTGCGTGTTACGTCCGTTTGCTCGAATGCGAGGATCAGGACATGTTCGGCTGGTTCATGGAACGCAGTGAATCCGAGGATCCGGAACTGCAGCGCATGGTCCGGATGATCCTGGACCGTGTCCAGCCCAAGTAGMVEDVELNRLYWHSRRGMLELDVLLVPFVKEVYPHLDEVDRACYVRLLECEDQDMFGWFMERSESEDPELQRMVRMILDRVQPKPGPT0027750_1281DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-CptA-CptB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027750-antitoxin_cptB|ygfY|sdhE-K09159NANA
D1-35_01775453hypothetical proteinGTGTCCAGCCCAAGTAGCCGCTTCGAGTGCCGCTGGCGCGCCTCCCGGCAGCTGCTGGCGGCCTATCTCCTGGCCCAGGTGTTTGCCTTGGGCTCGTTGTTTCTGTGCTCGATTCCTCCCTGGCTCGCAGTCGTTGCTTCGATGTTGTGCCTGGGCCACGGCGCCTGGGTGCTACCGCGATATCTGTTGCTGAGCCATCGCCAGGCTTTTCGTGGTTTGCGTCGCGATGCCGACGGCTGGCAGCTCTGGAGCGAGGGCGGCGGCTGGCAGGCGGTGCAGTTGCGGCCGGACAGCCTGGCATTGCCGATGATTGTGGTGCTGCGCTTTCGCTTGCGGGGCGAGTGGTGGGTCCGCTCGTTGTGCGTGCCCCGCGACGCGCTGGCGCCGGATGTCCATCGGCGCCTGCGGGTCCGGCTCAGGTTCAGCCGGCGTAGGTGGGCGGCACCAGGATAGMSSPSSRFECRWRASRQLLAAYLLAQVFALGSLFLCSIPPWLAVVASMLCLGHGAWVLPRYLLLSHRQAFRGLRRDADGWQLWSEGGGWQAVQLRPDSLALPMIVVLRFRLRGEWWVRSLCVPRDALAPDVHRRLRVRLRFSRRRWAAPGPGPT0027745_182DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-CptA-CptB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027745-toxin_cptA|ygfX-K19168NANA
D1-35_017761617nadBCOG0029L-aspartate oxidaseATGAGCCAACAGTTTCAACATGATGTTCTGGTAATCGGCAGCGGCGCCGCCGGATTGAGCCTTGCGCTGACATTGCCAGCGAACCTGCGCATAGCAGTGCTGAGCAAAGGCGACCTGGCCAACGGCTCGACGTTCTGGGCCCAGGGCGGCGTCGCCGCCGTGCTGGATGACACGGACACTATCCAATCCCATGTCGACGACACGCTTAACGCCGGCGGCGGGTTGTGCAATCGCGAAGCCGTGCGTTTTACCGTCGAGCACAGCAGGGAAGCCATCCAATGGCTGATCGACCAGGGCGTGCCTTTCACCCGTGACGAGCAATCGGGCACCGAAGATGGCGGCTTTGAATTCCATCTGACACGCGAAGGCGGCCACAGCCACCGGCGGATCATCCATGCAGCCGATGCGACCGGCGCGGCAATTTTCAAGACCCTGCTGGCCCAGGCCCGGCAACGGCCGAACATCGAATTACTGGAACAGCGAGTCGCGATCGACCTGATCACCGAGAAACGCCTCGGCCTGGAAGGCGACCGCTGCCTGGGGGCCTATGTGCTCAATCGTGGCACCGGCGAAGTCGACACCTACGGGGCGCGCTTCGTGATCCTCGCCTCCGGCGGCGCGGCCAAGGTCTATCTCTATACCAGCAACCCCGATGGTGCCTGCGGTGACGGCATTGCCATGGCCTGGCGTTCAGGCTGCCGAGTGGCGAACCTGGAATTCAACCAGTTCCACCCCACTTGCCTGTATCACCCCTTGGCCAAGAGCTTCCTGGTGACCGAGGCACTGCGCGGCGAAGGCGCTCATCTGAAGCTCCCCAACGGCGAACGCTTCATGCAGCGCTTCGATCCTCGCGCCGAACTGGCCCCACGGGACATCGTTGCGCGGGCCATCGACCATGAAATGAAGCGCCTGGGCATCGACTGCGTGTACCTGGACATCAGCCACAAACCCGAAGCCTTCATCAAAAGTCATTTCCCCACGGTGTATGAGCGCTGCCTGGAATTTTCCATCGACATCACCAAGCAGCCGATCCCGGTGGTGCCAGCGGCGCATTACACCTGCGGCGGGGTGATGGTCGACCAGCACGGCCGCACCGATGTACCCGGCCTGTATGCGATTGGCGAAACCAGCTTCACCGGATTGCACGGAGCCAATCGCATGGCCAGCAATTCGCTGCTGGAATGTTTCGTCTATGCCCGCTCGGCGGCGGCGGACATCCTCGATCAGTTGCCGCAGGTTGCCATCCCGACCACCCTGCCTACCTGGGATGCCAGCCAGGTGACCGACTCGGACGAAGACGTGATCATCGCCCACAACTGGGACGAACTGCGGCGCTTCATGTGGGACTACGTCGGCATCGTACGCACCAACAAGCGCCTGCAACGGGCCCAGCATCGGGTGCGTTTGCTGCTCGATGAGATCGATGAGTTCTACAGCAACTATAAAGTCAGCCGCGACCTGATCGAGTTGCGCAACCTGGCGCAGGTGGCGGAACTGATGATTCGCTCAGCCATGGAGCGCAAGGAAAGCCGAGGACTGCACTACACCCTCGACTACCCGGACCTGCTGCCCGAGGCATTGGACACTATCCTGGTGCCGCCCACCTACGCCGGCTGAMSQQFQHDVLVIGSGAAGLSLALTLPANLRIAVLSKGDLANGSTFWAQGGVAAVLDDTDTIQSHVDDTLNAGGGLCNREAVRFTVEHSREAIQWLIDQGVPFTRDEQSGTEDGGFEFHLTREGGHSHRRIIHAADATGAAIFKTLLAQARQRPNIELLEQRVAIDLITEKRLGLEGDRCLGAYVLNRGTGEVDTYGARFVILASGGAAKVYLYTSNPDGACGDGIAMAWRSGCRVANLEFNQFHPTCLYHPLAKSFLVTEALRGEGAHLKLPNGERFMQRFDPRAELAPRDIVARAIDHEMKRLGIDCVYLDISHKPEAFIKSHFPTVYERCLEFSIDITKQPIPVVPAAHYTCGGVMVDQHGRTDVPGLYAIGETSFTGLHGANRMASNSLLECFVYARSAAADILDQLPQVAIPTTLPTWDASQVTDSDEDVIIAHNWDELRRFMWDYVGIVRTNKRLQRAQHRVRLLLDEIDEFYSNYKVSRDLIELRNLAQVAELMIRSAMERKESRGLHYTLDYPDLLPEALDTILVPPTYAGPGPT0013355_1308DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013355-nadB-K00278NANA
D1-35_01777582algUCOG1595RNA polymerase sigma-H factorATGCTAACCCAGGAAGAGGATCAGCAGCTGGTCGAGCGCGTTCAACGCGGCGACAAGCGAGCTTTCGATCTGCTAGTGCTGAAATACCAGCACAAAATTCTCGGGTTGATCGTGCGTTTTGTGCACGACACCCATGAAGCCCAGGATGTTGCCCAGGAAGCTTTCATCAAGGCGTACAGGGCACTTGGTAATTTTCGCGGGGATAGCGCGTTTTATACGTGGCTTTACCGCATCGCCATCAACACGGCGAAAAACTATCTGGTTTCACGCGGCCGCCGGCCGCCGGATAGCGATGTTAGCTCCGAGGATGCAGAGTTCTATGACGGCGATCACGGCCTCAAGGATCTCGAATCACCGGAACGTGCATTGCTGCGGGATGAGATCGAAGGCACTGTCCATCGAACCATTCAGCAACTGCCTGAAGATTTGCGTACGGCGTTAACTTTACGTGAATTCGACGGTCTGAGTTACGAGGACATTGCCAGCGTCATGCAATGTCCGGTGGGTACCGTGCGCTCCCGGATCTTCCGCGCTCGGGAGGCCATCGATAAAGCCCTGCAACCATTGTTGCAGGAAAACTGAMLTQEEDQQLVERVQRGDKRAFDLLVLKYQHKILGLIVRFVHDTHEAQDVAQEAFIKAYRALGNFRGDSAFYTWLYRIAINTAKNYLVSRGRRPPDSDVSSEDAEFYDGDHGLKDLESPERALLRDEIEGTVHRTIQQLPEDLRTALTLREFDGLSYEDIASVMQCPVGTVRSRIFRAREAIDKALQPLLQENPGPT0014960_6447DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
D1-35_01778588mucACOG3073Sigma factor AlgU negative regulatory proteinATGAGTCGTGAAGCCCTGCAGGAATCGCTGTCCGCAGTGATGGATAACGAAGCGGACGAATTGGAATTGCGTCGGGTATTAAATGCCTTTGACGATGTTGAAACCCGTGAGACCTGGGCTCGCTACCAGATTGCCCGGGCGGTGATGCACAAGGACTTGTTGCTTCCACGCCTGGATATCGCTGCGGCCGTTTCTGCTGCGCTGGCTGACGAAGCCGTGCCGGCAAAAGCCTCTCGCGGACCATGGCGCAGCCTGGGTCGCCTGGCAGTTGCTGCCTCGGTTACCGTAGCTGTATTGGCAGGTGTGCGTCTGTACAACCAGGATGAGATTGCCGGCGTGCAAATGGCGCAGCAGTCCAATCAGCCTGGCCTGGCAGCACCACAGGTCAAGGGTCCGGCGGTACTGGCCGGCTACAGCGAAGGTTCGGAAGCTGCCGGTCCGATGACCAACGGTGTACTGCAAGGCCAGCCAGGCTGGCATGATCAGCGTTTGCCTAATTACCTGCGTCAGCATGCCCAGCAGGCTGCGCTGAAAGGTACTGAAAGCGCGCTGCCATACGCTCGTGCGGCCAGTCTGGAAAACCGTTAAMSREALQESLSAVMDNEADELELRRVLNAFDDVETRETWARYQIARAVMHKDLLLPRLDIAAAVSAALADEAVPAKASRGPWRSLGRLAVAASVTVAVLAGVRLYNQDEIAGVQMAQQSNQPGLAAPQVKGPAVLAGYSEGSEAAGPMTNGVLQGQPGWHDQRLPNYLRQHAQQAALKGTESALPYARAASLENRPGPT0014976_792DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014976-rseA-K03597NANA
D1-35_01779948mucBCOG3026Sigma factor AlgU regulatory protein MucBATGCGCGCCATACCTCTTTTCTCGCTTCTGGTAGGTGGCTGGTGCGTTGTTCCAGCCTATGCCGGTGAAGCTCAGGACTGGCTCAATCGTCTGAGTCAAGCCGAGCAGCAGCAAAGCTTCCAAGGCACTTTCGTTTACGAGCGTAACGGTAGTTTTTCTACCCATAACATCTGGCATCGCGTCCAGGATGGCAAAGTCCGCGAGCGGCTGCTCCAGCTCGATGGTTCGGCACAGGAGGTCATGCGCATTGACGGAAAGACTCAATGCGTCAGCGGCACCTTGATCGCCGGGCTGGGCAATACGCCAGATGGCACCGCACGTGCGCTCGATCCGCAGAAACTCAAGAATTGGTATGACCTTGCCGTTATTGGCAAGTCGCGCGTGGCTGGGCGTCAGGCTGTCATTGTCGCCCTGACCCCCAAGGATCAGCATCGCTATGGCTTTGAGCTGCATCTCGACAGAGAGACCGGCTTGCCGCTCAAGTCCCTGTTGCTCAGTGACAAAGGCCAGTTGCTCGAACGTTTCCAATTCACTCGCTTGAACATCGGTGAGCCTTCAGACGCTGATCTGCAGGCCAGTGTCGAATGCAAGGCTGTTGCGCAGGGGCCCGGTAAGGCCGCCACGGTGAAAACCGCCTGGCATTCCGACTGGCTTCCGCCCGGCTTTGAATTGACCAGTAGCGCTGCGCACAAGGACCCGGACACCAAGATCCAGGTCAGTAGCTTGATGTATGACGATGGCCTGGCCCGTTTCTCGGTGTTCCTGGAGCCGCTGAACGGTGCAACTGCCACCGACACCCGCACGCAGCTTGGCCCGACCGCAGCGGTATCGCGTCGGCTTACTACACCCCAAGGCGAGATGATGGTGACGGTAGTTGGCGAAATACCTATCGGTACGGCGGAACGGATCGCATTGTCCATGCGTTCCGACGTCGCGGCAGCCCAATAAMRAIPLFSLLVGGWCVVPAYAGEAQDWLNRLSQAEQQQSFQGTFVYERNGSFSTHNIWHRVQDGKVRERLLQLDGSAQEVMRIDGKTQCVSGTLIAGLGNTPDGTARALDPQKLKNWYDLAVIGKSRVAGRQAVIVALTPKDQHRYGFELHLDRETGLPLKSLLLSDKGQLLERFQFTRLNIGEPSDADLQASVECKAVAQGPGKAATVKTAWHSDWLPPGFELTSSAAHKDPDTKIQVSSLMYDDGLARFSVFLEPLNGATATDTRTQLGPTAAVSRRLTTPQGEMMVTVVGEIPIGTAERIALSMRSDVAAAQNANANANANA
D1-35_017801428degPCOG0265Periplasmic serine endoprotease DegPATGTCGATACCACGCTTGAAAACCTATCTCTCCATTTTTGCCACCGTGCTGGTGCTCGGTCAGGCCGTTCCCGCTGTGGCGGTCGAGTTGCCGGACTTCACTCAACTGGTCGAACAGGCTTCGCCTGCCGTGGTGAACATCAGTACCACGCAGAAGCTGCCGGAGCGTCGGGTGATGGACCCGCAGATGCCGGACCTGGAAGGCCTGCCGCCCATGCTGCGCGAGTTCTTCGAGCGAGGGATGCCACAGCCGCGTTCGCCTGGCGGTGGTCGTCAGCGTGAAGCGCAGTCCTTGGGCTCGGGCTTCATCATCTCGCCAGACGGCTACATCCTGACCAACAACCATGTGATTGCCGACGCCGATGAGATCCTCGTGCGCCTGGCAGATCGCAGTGAACTGAAGGCCAAGCTGATCGGCACCGACCCGCGTTCGGACGTGGCCTTGCTGAAAATCGAAGGCAAGGACCTGCCGGTGCTCAAGCTCGGCAAATCGCAGAACCTGAAAGCCGGCCAGTGGGTGGTGGCAATCGGTTCGCCGTTCGGCTTCGACCATACCGTGACCCAGGGCATCGTCAGCGCCATTGGGCGTAGCCTGCCAAACGAAAACTACGTGCCATTCATCCAGACCGACGTGCCGATCAACCCGGGCAACTCCGGTGGGCCGCTGTTCAACCTCGACGGCGAAGTGGTGGGTATCAACTCTCAGATCTACACCCGTTCGGGCGGTTTCATGGGGGTGTCCTTCGCTATTCCGATCGACGTGGCCCTGGATGTATCCAACCAGCTTAAAAGCGAGGGCAAGGTCAGCCGTGGCTGGCTGGGCGTGGTCATCCAGGAAGTGAACAAGGACCTGGCCGAGTCGTTTGGCCTGGAGAAACCTGCCGGCGCGCTGGTGGCGCAGATCCAGGAAGGTGGTCCGGCCGCCAAGGGCGGCTTGCAAGTGGGCGATGTGATTCTCAGCCTCAATGGGCAGCCGATCGTCATGTCCGCCGACTTGCCGCATCTGGTGGGCGCCCTCAAGGCCGGGGCCAAGGCCAACCTGGAAGTGATTCGCGAAGGCAAGCGCAAGAATGTCGAGTTGACTGTCGGCGCGATCCCGGAAGAAGGCAAGGAACTGGATTCGCTGCCCAAGTCCGGCGTCGAGCGCAGCAGCAATCGCCTGGGTGTCGCGGTGGTCGAGCTGACCGATGAGCAGAAGCGAACCCTGGAATTGCAGGGTGGTGTGGTGATCAAGGAAGTACAGGACGGTCCCGCTGCGTTGATCGGCCTGCAACCTGGCGACATCATTACTCACCTGAACAACCAGGCCATCGGCTCGGCCAAGGAGTTCACCGACATCGCCAAGGCGTTGCCGAAGAATCGCTCGGTGTCGATGCGCGTCCTGCGCCAGGGGCGTGCAAGCTTCATTACCTTCAAGCTGGCTGAATAAMSIPRLKTYLSIFATVLVLGQAVPAVAVELPDFTQLVEQASPAVVNISTTQKLPERRVMDPQMPDLEGLPPMLREFFERGMPQPRSPGGGRQREAQSLGSGFIISPDGYILTNNHVIADADEILVRLADRSELKAKLIGTDPRSDVALLKIEGKDLPVLKLGKSQNLKAGQWVVAIGSPFGFDHTVTQGIVSAIGRSLPNENYVPFIQTDVPINPGNSGGPLFNLDGEVVGINSQIYTRSGGFMGVSFAIPIDVALDVSNQLKSEGKVSRGWLGVVIQEVNKDLAESFGLEKPAGALVAQIQEGGPAAKGGLQVGDVILSLNGQPIVMSADLPHLVGALKAGAKANLEVIREGKRKNVELTVGAIPEEGKELDSLPKSGVERSSNRLGVAVVELTDEQKRTLELQGGVVIKEVQDGPAALIGLQPGDIITHLNNQAIGSAKEFTDIAKALPKNRSVSMRVLRQGRASFITFKLAEPGPT0015105_3270DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015105-degP|htrA-K04771NANA
D1-35_017811434bepA_1COG4783Beta-barrel assembly-enhancing proteaseATGACATTTCTGCGCCCCACCCTGCTGACGCTCGCTTGCCTGCTCGCCTCACCGGGCTTCGCCGACGACCTGCCGTCACTTGGCGATGCCAGTTCTGCCATCGTCTCGCCGGAACAGGAGCATCAGCTGGGCCGCGCCTGGCTGGCCTTGTTGCGCAGCCAGGTCTCGCAACTCAACGATCCGCAGCTCAAGGACTATGTCGAAACCAGCGTCTACAAGCTGGTGGAGACCAGCCAGGTCAACGACCGGCGCCTGGAATTCATCCTGATCAACAGCCCCCAGCTCAACGCTTTCGCCGCGCCCGGCGGGATCGTCGGGGTCAACGGCGGCCTGTTCCTCAACGCCCAGACCGAAGGCGAATATGCTTCGGTCATGGCCCACGAGCTGGCGCACTTGTCGCAACGCCATTTTGCCCGCGGCGTCGAAGCCCAACAGCGCATGCAGGTGCCGATGATGGCGGCGCTGCTGGCCGGCATCGTGATTGCCGCCGCCGGTGGCGGTGACGCCGGGATCGCCGCCATTGCCGGGACCCAGGCCGCCGCCATCCAGGAGCAACGGCGTTTCTCGCGGCAAAACGAACAGGAAGCCGACCGCATCGGCATCCAGAATCTGGAGAAGGCCGGTTACGATCCGCGGTCGATGCCGACGATGTTCGAGCGTCTGATGCGCCAGTACCGGTTTGACGCCAAGCCCCCGGAATTCCTGCTGACTCACCCGGTCACCGAATCGCGCATCGCCGACACCCGCAACCGCGCCGAACAGGCCAAGCCGGGCGGAATCGAGGACAGCATGCGTTACCAACTGATCCGCGCGCGGGTCCAGTTGACCTATGAAGAAACCCCCGGCCTGGGGGCCAAGCGCTTCCGCGCACAGCTGGACGAGAACCCGAAGAGTGACGTGGCCCGCTACGGACTGGCGATCGCCCAGATCAAGGGTGGCCAACTGAATGAAGCCCGGGAGAACCTCAAGCCATTGCTGGCCAAAGCGCCCAACGAGATCATCTACAACCTCGCCCAGGTAGACCTGGACATCACCAGCAACAAGCTGGCGGACGCTCAATCTCGCGTGGATCGACTGCTGAGCCAATATCCGGGCAACTACCCGCTCAATCAGGTGCGCGTCGATCTGTTGCTCAAGCAGAATCGCCCCGCCGATGCGGAAAAGGCCCTGGAAACCCTGCTCAAGAGCCGCCCGGACGATCCGGACATCTGGTACATGGTGGCCGAGACGCGTGGCCTGTCAGGCAATATCATTGGCTTGCACCAGGCACGCGCCGAATACTTCGCGTTGGTTGGCGACTATCGTCAGGCGATCCAGCAACTGGACTTCGCCAAACGACGCGCCGGGAGCAATTTTCCTTTGTCATCGCGCATCGACGCCCGCCAGCGCGAACTCATGGAACAGGAGCGCATGGTCAAGGACATGATGGGCTGAMTFLRPTLLTLACLLASPGFADDLPSLGDASSAIVSPEQEHQLGRAWLALLRSQVSQLNDPQLKDYVETSVYKLVETSQVNDRRLEFILINSPQLNAFAAPGGIVGVNGGLFLNAQTEGEYASVMAHELAHLSQRHFARGVEAQQRMQVPMMAALLAGIVIAAAGGGDAGIAAIAGTQAAAIQEQRRFSRQNEQEADRIGIQNLEKAGYDPRSMPTMFERLMRQYRFDAKPPEFLLTHPVTESRIADTRNRAEQAKPGGIEDSMRYQLIRARVQLTYEETPGLGAKRFRAQLDENPKSDVARYGLAIAQIKGGQLNEARENLKPLLAKAPNEIIYNLAQVDLDITSNKLADAQSRVDRLLSQYPGNYPLNQVRVDLLLKQNRPADAEKALETLLKSRPDDPDIWYMVAETRGLSGNIIGLHQARAEYFALVGDYRQAIQQLDFAKRRAGSNFPLSSRIDARQRELMEQERMVKDMMGNANANANANA
D1-35_01782240tusA_2COG0425Sulfur carrier protein TusAATGACCGATGCTGTAGCCCACGATGCCGAGCTGGACGCCAGTGGACTGAACTGTCCGCTGCCGTTGCTCAAGGCCAAGCTGGAACTCAATCGCCTGGCCAGTGGCGCCGTGCTCAAAGTGACGGCCACGGATGCGGGCTCCCAGCGCGACTTTCGCACCTTTGCCCGCTTGGCCGGTCATACGCTGCTGCGCGAAGAAGACGATAACGGCGTCTACCGTTACTGGCTGAAAAAAGCCTGAMTDAVAHDAELDASGLNCPLPLLKAKLELNRLASGAVLKVTATDAGSQRDFRTFARLAGHTLLREEDDNGVYRYWLKKANANANANANA
D1-35_017831071hypothetical proteinATGTTCAAAGTGTTACGCGACTGGATTCAGCGCTACTTCTCCGATGAGGAAGCGGTGGTCCTGGCAGTGCTGCTGTTCCTGGCGTTTACGGCGGTCCTGACGCTGGGCGGGATGCTCGCGCCGGTGCTGGCGGGAATGGTGCTGGCGTATCTGATGCAGGGGCTGGTCACAGCCTTGGAACGCCTGCGTTTGCCTGGCTCCGTGGCGGTAGGGCTGGTGTTCGCGCTGTTCATGGGGCTGCTGGTGGTGTTCCTCGTGGTCATCGTGCCGTTGCTCTGGCATCAATTGGTGACCCTGTTCAATGAACTGCCGGGAATGCTCGCCAAATGGCAATCGCTGTTGTTGCTGCTGCCGGAACGCTACCCGCACCTGGTCTCGGACGAGCAAGTGCTGCAGACCATCGAAGTGGTGCGTGGCGAGATCGGCAAGTTCGGCCAGTGGGCGCTGACGTTTTCGCTGTCCAGCCTGCCGTTGCTGGTGAACATCATGATCTATCTGGTGCTGGTGCCGATTCTGGTGTTTTTCTTTCTCAAGGATCGGGAAATGATCGGACGCTGGGTCCGAGGCTACCTGCCGCGCGAGCGGGCATTGATCACCCGTGTGGCCCAGGAGATGAACCGGCAGATTGCCAACTACATCCGTGGGAAAGTCATCGAGATTTTCATCTGTGGCGGCGTCACGTACATCGGTTTTGTGGCGCTGGGGCTCAACTATGCTGCGTTGCTCGCGTTGCTGGTGGGCATTTCGGTGGTGGTGCCTTACGTCGGCACTGTGGTCGTGACCGTGCCGGTGGCGCTGATCGCGCTGTTTCAGTGGGGTTGGAGCGACCAGTTCATCTATCTGATGGCGGTGTACGGGATCATCCAGACGCTGGACGGCAATGTGCTGGTGCCGCTGCTGTTCTCCGAGGCGGTGAACCTGCATCCGGTGGCGATTATCTGCGCGGTGTTGTTGTTTGGCGGGCTGTGGGGCTTCTGGGGGGTGTTCTTTGCGATTCCCCTGGCGACGTTGTTCAAGGCGGTGCTGGATGCGTGGCCGAGCAAGGAGCCGGTGGTGGCGCCGTTGTTGTAGMFKVLRDWIQRYFSDEEAVVLAVLLFLAFTAVLTLGGMLAPVLAGMVLAYLMQGLVTALERLRLPGSVAVGLVFALFMGLLVVFLVVIVPLLWHQLVTLFNELPGMLAKWQSLLLLLPERYPHLVSDEQVLQTIEVVRGEIGKFGQWALTFSLSSLPLLVNIMIYLVLVPILVFFFLKDREMIGRWVRGYLPRERALITRVAQEMNRQIANYIRGKVIEIFICGGVTYIGFVALGLNYAALLALLVGISVVVPYVGTVVVTVPVALIALFQWGWSDQFIYLMAVYGIIQTLDGNVLVPLLFSEAVNLHPVAIICAVLLFGGLWGFWGVFFAIPLATLFKAVLDAWPSKEPVVAPLLNANANANANA
D1-35_01784474bcpCOG1225Peroxiredoxin BcpATGGCCGTTGCCATCGACCAGCCGGTTACCGATTTCCAGGCGCCCGCCACCAGCGGGCAGACCATCAGCCTCGCCGCCCTGAAAGGCAAACAGGTGGTCATTTATTTCTACCCGAAAGACAGCACCCCCGGTTGCACCACCGAAGGCCAGGGTTTTCGCGACCACTACGCGCAATTCCAGGCCGCCAACACCGAAATATTCGGTGTGTCGCGGGACAGCCTCAAGTCCCACGAGAACTTCAAGTGCAAGCAGGAGTTCCCCTTCGAGCTGATCAGCGACAAGGACGAAACGGTCTGCCAACTGTTCGACGTGATCAAGCTGAAGAAGCTGTACGGCAAGGAATATCTGGGCGTTGATCGCAGCACCTTTTTGATCGACAAGGATGGCGTGCTGCGCCAGGAGTGGCGTGGTGTGAAAGTGCCGGGGCATGTGGATGCGGTGCTGGCGGCGGCTCAGGCGCTCAACCAAGCCTGAMAVAIDQPVTDFQAPATSGQTISLAALKGKQVVIYFYPKDSTPGCTTEGQGFRDHYAQFQAANTEIFGVSRDSLKSHENFKCKQEFPFELISDKDETVCQLFDVIKLKKLYGKEYLGVDRSTFLIDKDGVLRQEWRGVKVPGHVDAVLAAAQALNQAPGPT0013120_2837DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013120-bcp|PRXQ|DOT5-K03564NANA
D1-35_01785561gcvRCOG2716Glycine cleavage system transcriptional repressorATGTCCACCCCCACAGTCCGCGAACAATTCCTTGTTATCAGTGCCCTTGGCGCAAACCCCATGGAGCTGACTAACGTCCTGTGCCGCGCCAGCCATGAAAATCGCTGCGCCGTCGTGACCTCACGCCTGACCCGTCATGGCGAATGCAGCGCCCTCGTGCTGGAGATTTCCGGCAGCTGGGACGCCCTGGCGCGCCTGGAGGGCAGCCTGCCGGTGCTGGCCAAGAAGCACGCCTTCACCGTCAACGTGGTGCGCAGCGCCGCGCTGGAAAATCGTCCCCAGGCCTTGCCGTATGTAGCTTATGTGAGTTCGGCCTACCGCCCGGACATCATCAACGAACTGTGCCAGTTCTTCATGGACCATCACGTCGAGCTGGAAAACCTGACCTGCGATACCTATCAGGCCCCGCAGACTGGCGGCACCATGCTCAACGCCACGTTCACCGTGACATTGCCGGCCGGCACCCAGATCAGCTGGCTGCGCGATCAGTTCCTGGATTTCGCCGACGCGATGAACCTGGACGCACTGATCGAACCGTGGCGCCCACAAAACCCAATGTAAMSTPTVREQFLVISALGANPMELTNVLCRASHENRCAVVTSRLTRHGECSALVLEISGSWDALARLEGSLPVLAKKHAFTVNVVRSAALENRPQALPYVAYVSSAYRPDIINELCQFFMDHHVELENLTCDTYQAPQTGGTMLNATFTVTLPAGTQISWLRDQFLDFADAMNLDALIEPWRPQNPMPGPT0026370_281DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026370-gcvR-K03567NANA
D1-35_01786879dapA_1COG03294-hydroxy-tetrahydrodipicolinate synthaseATGATTGCGGGCAGTATGGTGGCACTGGTCACACCCATGGATGCACAAGGGCGTCTTGACTGGGCCAGCCTCAGCAAACTCGTGGACTTCCACCTTGAGAACGGCACCCACGCGATCGTCGCCGTCGGTACCACCGGCGAGTCGGCCACCCTTGACGTCAACGAGCACATCGAAGTCATCCGCGCGGTGGTCAAGCAGGTCAATGGCCGCATTCCGGTAATCGCCGGCACCGGCGCCAATTCGACCCGCGAAGCCGTCGAGCTGACCCGTAACGCCAAGGAAGCCGGGGCCGATGCCTGCCTGCTGGTCGTTCCGTACTACAACAGGCCGACCCAGGAAGGCCTGTACCAGCACTTCAAGCACATTGCCGAAGCCGTCGACATCCCGCAGATCCTCTATAACGTTCCCGGCCGCACCTCCTGCGACATGCAGGCCGAGACCGTGATCCGCCTGTCCACCGTGCCGAACATCATCGGCATCAAGGAAGCCACTGGCGACCTGACGCGTGCCAAGGCCATCCTCGATGGCGTGAGCGAGGACTTCATCGTCATGTCCGGCGATGATCCGACCGCTGTCGAGCTGATCCTGATGGGCGGCAAGGGCAACATTTCCGTCACCGCCAACGTCGCGCCACGCGCCATGGCCGACCTGTGCGAGGCCGCGCTCAAGGGCGACGCCGAGACCGCACGGGCAATCAACGAAAAACTGATGCCGCTGCACAAGGACCTGTTCATCGAAGCCAACCCGATCCCGGTGAAATTCGCCCTGGTCGAAATGGGCCTGATGCACGAAGGCATCCGCCTGCCGCTCACCTGGTTGAGCACTACCTGTCACGAACAGCTGCGGCAGGCCATGCGCCAGTCCGGCGTCCTGGTTTAAMIAGSMVALVTPMDAQGRLDWASLSKLVDFHLENGTHAIVAVGTTGESATLDVNEHIEVIRAVVKQVNGRIPVIAGTGANSTREAVELTRNAKEAGADACLLVVPYYNRPTQEGLYQHFKHIAEAVDIPQILYNVPGRTSCDMQAETVIRLSTVPNIIGIKEATGDLTRAKAILDGVSEDFIVMSGDDPTAVELILMGGKGNISVTANVAPRAMADLCEAALKGDAETARAINEKLMPLHKDLFIEANPIPVKFALVEMGLMHEGIRLPLTWLSTTCHEQLRQAMRQSGVLVPGPT0002080_7806DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISMCE-BACTERIAL_FITNESS-RHIZOPINE_BIOSYNTHESIS,PGPT0002080-dapA|mosA-K01714NANA
D1-35_017871116bamCOuter membrane protein assembly factor BamCATGAAGCGAATGGCCGGCCTTTCCGCACTTGCCTTGATTATCTCCAGCACCAGTGGCTGTGGATGGATCTGGGGCCCGGATGGTTATTTCCGCGACCGTGGTAGCGATTACCTCGAAGCGCAACAGACTGCACCGATGCAACTGCCACCTGATGTCAGCGTTGCCAAGCGCCTGGATCCGCTGCTGCCGATCCCGCGCAACGTCGCCGACGACAGCGTCAAGGGCGAATACGTTGTCCCGCGTCCACAGCCGCTGTCGGCCGTGGCCGATGCCAGCGACTACACGCTGCAGAAGAGCGGTGATTCGAGCTGGGTCATGGGCCAGCATCCACCGGCCGAAGTCTGGCCCGTGGCTATCCAGTTCTTCCAGGACAACGGTTTCCGCCTGGACGAACAGCGCCCGCAGACCGGCGAATTCACCACCACCTGGCAGCGCTCCGATGAACTGTCCGCGGCCATGGCCAAGCGCCTGAGCGCCGCCGGTGTCGCAGCCGACAGCGAAACCCGCGTGCGCGTGCGCATCGAGCCGGGCGTGCAGCGCAACACCAGTGAAATCTACGTGGTCAGCGCCGAGCGTCCCGCCGGCAGCACTGCCGACGTGGCTTTCACCAATCGCTCGGTCAATGGCAGTCTCGACGCCGCGCTGGTCGACGACATGCTCGCCAGCATGAGCCGTAACGCCGAGCAGGGCGGTTCGGTCTCGATGCTCGCGACCCGTGACTACGACACGCCGAGCCGGGTCAGCCTGAGCGAAGACGGCAGCGGCAACCCGGTGCTCAACGTCGGCTCCGACCTCGATCGCGCCTGGTCGAGCGTTGGCCGCGCGCTGGAGCAGGGCGAATGGCGGGTTGAAGACATCAACCGCAGCCTGGGCCTCTACTACATCAACCTCGCTGAAAAAGCCGAGAAGAAAGACGAGAAGCCTGGCTTCTTCAGTAGCTTGTTCGGCAGTGCGCCGGACAAGGAAGAAGTCGAAGCCCGCGCCGAGCGTTACCAGGTTCGCCTGAGCAAGGTCGGCGACAACGTCCAGGTCACCGTCGAGAAAAACATCAATACCGTGGCGCCAGCCGATGTGGCTCGCAAGGTATTGGGTGTGATTCAGGACAACCTGGGCTGAMKRMAGLSALALIISSTSGCGWIWGPDGYFRDRGSDYLEAQQTAPMQLPPDVSVAKRLDPLLPIPRNVADDSVKGEYVVPRPQPLSAVADASDYTLQKSGDSSWVMGQHPPAEVWPVAIQFFQDNGFRLDEQRPQTGEFTTTWQRSDELSAAMAKRLSAAGVAADSETRVRVRIEPGVQRNTSEIYVVSAERPAGSTADVAFTNRSVNGSLDAALVDDMLASMSRNAEQGGSVSMLATRDYDTPSRVSLSEDGSGNPVLNVGSDLDRAWSSVGRALEQGEWRVEDINRSLGLYYINLAEKAEKKDEKPGFFSSLFGSAPDKEEVEARAERYQVRLSKVGDNVQVTVEKNINTVAPADVARKVLGVIQDNLGNANANANANA
D1-35_01788759yycJCOG1235Putative metallo-hydrolase YycJATGCGTTTTGCCGTTCTCGGCAGCGGTAGCCAGGGGAACGGCACGCTGATAGCCAGTGCTGGCACCTACGTGCTGGTCGATTGCGGTTTCTCCCTGCGGGAAACCGAGAAGCGCCTGTTGCGCCTGGGTGTGCACCCGGCGCAACTGAGCGCGATACTCGTGACCCACGAACATGCCGACCACGTGCATGGCGTGGGTTTGCTGTCTCGGCGCTACAATCTGCCGGTCTACCTCAGTCGCGGGACGTTCGGTGGCCTGCGCAAGCCCATCGAGCCGGCTGGCTTCGTGGCCGGTGGCGAGCAGTTGCGTATCGGTGCCCTGGACATCAGCGTGGTCAGCGTGGCGCACGATGCCCGCGAGCCGACGCAGTATGTGTTCAGTGATGGCGAGCGGCGTTTCGGATTGCTCACCGACCTGGGCTCGTACTGCGACAGGGTGATGGACAGTTATCGGGACCTCGACGCATTGATGATCGAGTCCAACCACTGCCGCGACATGTTGGCGCGAGGGTACTATCCCTACTTCCTGAAGCAACGGGTAGGCGGGGAACACGGACATCTGAACAACCACCAGGCGGCATTCCTGGTGGCCGAGTTGGGCTGGCAAGGCCTGCAACACCTGGTCCTGGCCCATCTGAGCAGCAAGAACAACCTGCCGCAGCTGGCCCGGCAATGTTTCGTCGACACCCTCGGGTGCGACCCGGACTGGCTGCAACTGGCCGATCAAGATTCAGGGCTCGACTGGCGACATATCGCCTAGMRFAVLGSGSQGNGTLIASAGTYVLVDCGFSLRETEKRLLRLGVHPAQLSAILVTHEHADHVHGVGLLSRRYNLPVYLSRGTFGGLRKPIEPAGFVAGGEQLRIGALDISVVSVAHDAREPTQYVFSDGERRFGLLTDLGSYCDRVMDSYRDLDALMIESNHCRDMLARGYYPYFLKQRVGGEHGHLNNHQAAFLVAELGWQGLQHLVLAHLSSKNNLPQLARQCFVDTLGCDPDWLQLADQDSGLDWRHIANANANANANA
D1-35_01789714purCCOG0152Phosphoribosylaminoimidazole-succinocarboxamide synthaseATGGAAAAACGTGAAGAACTCTACCGCGGCAAAGCCAAGTCGGTTTACAAGACCGATGACGCTGACCGCTTGATCCTGCTGTTTCGCAACGACACCTCGGCGTTCGACGGCAAGCGCATCGAACAGCTGGACCGCAAGGGCATGGTGAACAACAAGTTCAACGCCTTCATCATGCAAAAGCTCGAAGCCGCCGGCGTGCCGACGCAGTTCGACAAGCTGCTGGGCGACAACGAATGCCTGGTCAAGAAGCTGGACATGATCCCGGTCGAATGCGTCGTGCGTAACTACGCCGCCGGCAGCCTGGTCAAGCGCCTGGGCGTGGAAGAGGGCATGAAGCTCAACCCTTACACGTTCGAGCTGTTCCTGAAGGACGACGCCAAGGGCGACCCGTTCATCAACGAATCCCACGTCGTGGCATTCGGTTGGGGCACCGCCGAGCAACTGGCGCGCATGAAGGAACTGTCGCTCAAGGTCAACGAAGTGCTGACCAAACTGTTCGACGACGCCGGTCTGCTGCTGGTCGACTTCAAACTCGAATTCGGCGTGTTCAGCGACGGCTCCATCGTCCTGGGTGACGAATTCAGCCCGGACGGCTGCCGCCTCTGGGACAAGGACACCAAGAAGAAGATGGACAAGGACCGCTTCCGCCAAGGCCTCGGTGACGTGATCGAAGCCTACGAAGAAGTCGCCCAACGCCTGGGTGTCCCGCTGTAAMEKREELYRGKAKSVYKTDDADRLILLFRNDTSAFDGKRIEQLDRKGMVNNKFNAFIMQKLEAAGVPTQFDKLLGDNECLVKKLDMIPVECVVRNYAAGSLVKRLGVEEGMKLNPYTFELFLKDDAKGDPFINESHVVAFGWGTAEQLARMKELSLKVNEVLTKLFDDAGLLLVDFKLEFGVFSDGSIVLGDEFSPDGCRLWDKDTKKKMDKDRFRQGLGDVIEAYEEVAQRLGVPLPGPT0021565_4194DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021565-purC-K01923NANA
D1-35_017911635hypothetical proteinATGCTACGGTTTTTCGCCGACCTTGGCTTTCGTTGGAAAATCACTCTGCCGATTGCGTTCCTGGCGGTGCTGCTGGTGCTGATGGGGTGGACGGGCATGCGCGGCATCGGTCAGGTGACCGAGTCCAGTACGCAGTTGACCAAGCGCTATCTGCCGGCCATCAGCCTGTTGCTCAATGCCGACCGCGATCTTTATCAGGCCTTTGTGGCCGAGCGCAGTCTGCTGGATGGTCATGCGGATGAGCATATTCAAGCGCTGAGTGCCAGTCATGGCGAGAATGCCAAGCAGGCCTATGACCGTGTGCAGAAATATGCCGCGATGCAGCCCGGCGCAGAGGCTCAGGCCTTGGTCAGCCAGTTCAATGACAGTTTCGGGAAATGGATGCAGGTTTCGCGGCGGGTCGTCGAGCAGTCGGTAGGCGATCCGCAGGGCGCCAGCGCGCTGAGCTTTGGTGACAGCGAGCGCCTGTTCGAAACCATGCGTGATTCAATCGACAAGCTGGGTGATCTGGAAGATGCGGCGTCCCATCGCGAGGGCGATGCGGCCATCGCCAATGGCGAGGCGGTCGGCGTGCAGCAGGGCGTTATTCTGCTGGTTGGCCTGCTCGGTTGCATCCTGGTTCTGGTTGCCTTGCCGCTCGTGGTGCTGAGCCCGATGCGCCGTTTGTTGCACCGCGTCGAGCAGATTGCAGAGGGCGGCGGCGATCTCAAGGGGCGCCTTGAAGTGCGTTCGGCTGATGAGCTCGGGCAGCTTGGCAGCGCGTTCAACCGGTTCCTGGACAAGTTGCAGCCGCTGATTGCCGAGGTCGGACGGGTAACCGGGGAAGTGGACTCGGCAGCCCGGGCCATGGCTGCTATGGCTGCGACGAATGACCGGCTGATCAGCAGCGAGCACGCGGCGCTCGACCAAGTCAGCACCGCCGCGACGCAGATGAGCGCCGCTGTGCATGAGGTTGCTCATAACGCCGTGAGCGCCTCGGACGCCGCGCAACAGGCCACCAGCCAATCCCGCGACGGCGCCGAGGTGGTCAGCAGCACGATCGAGTCGATCCGCCAACTGGCCCACGAAGTGGAAAGTGCCTCGGGCACGATCGAGGCATTGGCCCAGGAAACGTCCAGTATCGGTGCGGTGCTGGAGGTGATCCGTGGCATCGCCGAGCAGACCAACCTGCTGGCGCTGAACGCCGCCATCGAGGCAGCGCGAGCTGGCGAACAGGGTCGTGGTTTTGCGGTGGTGGCCGATGAGGTCAGGGCGCTGGCGGCGCGTACCCAGGATTCGACCAAGGATATCCAGGTCCGCATCGAGCGCTTGCAGAGCGGTGTCGCCAAGGCCGTGCAGGCCATGCAGGTCGGCAGCAGCAAGGCGCGGGACAGCGTCGAGCGCGCCGCCGGTGTCGACCAGGTGCTCAGTGGTACTGGCGGGTCGATCCAGCGGATCAATGACATGGCCGCGCAGATCGCCAATGCCTGTGAAGAGCAGAGCAGCGTGACCGAGGAGATTGCCCGCAACATTTCCGATATTCGTGACCTGTCCAACGAAGCGGCAGCGAACTCCGCCCAAAGCATGCACGCCAGCCAGCAGCTGTCGAACCTGTCCAGGAACCTGGCGGAGCTGACCGGCCGTTTCCGCACCTGAMLRFFADLGFRWKITLPIAFLAVLLVLMGWTGMRGIGQVTESSTQLTKRYLPAISLLLNADRDLYQAFVAERSLLDGHADEHIQALSASHGENAKQAYDRVQKYAAMQPGAEAQALVSQFNDSFGKWMQVSRRVVEQSVGDPQGASALSFGDSERLFETMRDSIDKLGDLEDAASHREGDAAIANGEAVGVQQGVILLVGLLGCILVLVALPLVVLSPMRRLLHRVEQIAEGGGDLKGRLEVRSADELGQLGSAFNRFLDKLQPLIAEVGRVTGEVDSAARAMAAMAATNDRLISSEHAALDQVSTAATQMSAAVHEVAHNAVSASDAAQQATSQSRDGAEVVSSTIESIRQLAHEVESASGTIEALAQETSSIGAVLEVIRGIAEQTNLLALNAAIEAARAGEQGRGFAVVADEVRALAARTQDSTKDIQVRIERLQSGVAKAVQAMQVGSSKARDSVERAAGVDQVLSGTGGSIQRINDMAAQIANACEEQSSVTEEIARNISDIRDLSNEAAANSAQSMHASQQLSNLSRNLAELTGRFRTPGPT0015710_20161DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_01792747hypothetical proteinGTGTCCACCGCTGATCTTTTGCACGCATTGCATCAGGACGGTTTTGTCCTGATGCCCGGTGTGTTGACCGCCACGCAAATCACCGAAATACGCCAGGCCATCGACCAACTGAAACCCCACCACTGGGACTACAGCGGCGTCATCGATCATTACAAATGCGTCTTCAATCGAGACCCGTTCTGGCTGCCGTATCTGGAGGTGAGCGGGGTGATCGAGCTGGCCGAGGCGGCGTTGGGCGAGGATTGCCACATCATCGGGCAGACCGCCTGGCGCTGCCATCCCGGTTTTGTCGGCGCTGCGCTGCACCTGGATTACCTGCCGATGCAGCTGCCCCCCAGCCTGTTGGCCGAGCCTTCTTTTGAACTGCCGATGCAGGTTTTCACCGCACAGTTCTACCTTGATGACATCGACGCCGACTTGAGCCCGACGCGGGTCATTACCGGCAGCCACAAGGCGGGGCGGGCGCCCATGGCCGGCGAAACCCAGTGGCAGGGCCGTGCGGCTAAACCGGTGCTGTGCCAGGCGGGTGATGTGCTGATATTGCGCAGCGAGTTGTGGCACGCCGGCAGTGACAACCGGACCGCCGACCGCACCCGCTACATGCTCCAGGTGCACTATGGCCGGCGGATGGTCGCGCAGAAGTTTTCACCTTACCTGCACTGGCAGTTCAATCCCGCGGTGCTGGCCGCCGCGACACCTCGCCAACGGCGGCTGTTGGGTGACCATCAGGAGGCGGAATACGATTGAMSTADLLHALHQDGFVLMPGVLTATQITEIRQAIDQLKPHHWDYSGVIDHYKCVFNRDPFWLPYLEVSGVIELAEAALGEDCHIIGQTAWRCHPGFVGAALHLDYLPMQLPPSLLAEPSFELPMQVFTAQFYLDDIDADLSPTRVITGSHKAGRAPMAGETQWQGRAAKPVLCQAGDVLILRSELWHAGSDNRTADRTRYMLQVHYGRRMVAQKFSPYLHWQFNPAVLAAATPRQRRLLGDHQEAEYDNANANANANA
D1-35_01793369hypothetical proteinATGACTCGATATTCGCCCATCAACTTCGCGCAGAAGTACACGCTGTTCCATGATCAGTGGGCACCGAAAGTCGTGGCTGAAATGAATGACTACCAGTTCAAGATCGTCCGCCTGGAAGGCGATTTCATCTGGCACACCCACGCCGACACGGATGAAACCTTCATCGTGCTGGACGGCGAACTTCGTATCGACTTTCGCGATGGCGCGGTGCTGATCGGTCCGGGCGAGATGTATGTCGTCAAGCAAGGCGTCGAGCACAAGCCCAGTGCCGCGCAGGAAGTGAAACTGTTGCTGATCGAACCGCGGGGAGTCATCAACACCGGCGAACAAGTGAATGCGCGAACCGCGATCAATGACGTCTGGATCTGAMTRYSPINFAQKYTLFHDQWAPKVVAEMNDYQFKIVRLEGDFIWHTHADTDETFIVLDGELRIDFRDGAVLIGPGEMYVVKQGVEHKPSAAQEVKLLLIEPRGVINTGEQVNARTAINDVWINANANANANA
D1-35_01794807hypothetical proteinATGACTCAACCCGGTAACCGTCGCGACTGGCTGCTGCGCGCGCCTGAATCGAAGAAGCTGGAGCGCATCGAAGCCTACTTCAGTGGGCACGGCTATAGCGCCCACCGGCATGACACCTATGCCATAGGGTTCACGCTCGCCGGGGTCCAGAGCTTCAACTACCGGCAGAGCAAACGTCATAGCCAGCCCGGCGGAACCATCGTCCTGCACCCGGACGAAGTCCATGACGGCGAGGCGGGGACAAGCGATGGTTTTCATTATCGAATGTCCTACATCGAACCGTCATTGATCCAGCAGGTATTGGGGGGCCGGCCATTGCCTTTCATCGAAGGCGGGTTGTCGAACGATCCCCGGCTCAACGTTGCGACTCGCAGGCTCTTGGGCAGTCTCGGGCATCACCTCGACCCGCTGGAGGAAGACGACGCCCTCTACGACGTGGCCCAGGCACTGGCTGACGCGGCAGGTAACCAGCGCGGACGCCGACTGCTTGACTACCCCGCAGCGGAGCGCGCGCGCCTGTTCATTCATGATGCCCTTGACCAGGCCATTACCCTGGATGACCTCGTGCAGGCCAGTGGCCGGGACCGATGGAGCCTGTCCCGGGACTTTCGCGCCCTGTACGGCACCAGCCCCTATCGCTACATCACCCAGCGTCGATTGAATGAAGCCCGTCGCCTCGTGCTGCATGGCATGCCGCTGAGCGAAGCCGCACTGGCCTGCGGCTTTTTCGACCAGAGCCACATGACCCGGCTGCACACCCAGGCCTTTGGCATTTCACCGGCACGCTGGCTGAAAATGCTGCGCTAGMTQPGNRRDWLLRAPESKKLERIEAYFSGHGYSAHRHDTYAIGFTLAGVQSFNYRQSKRHSQPGGTIVLHPDEVHDGEAGTSDGFHYRMSYIEPSLIQQVLGGRPLPFIEGGLSNDPRLNVATRRLLGSLGHHLDPLEEDDALYDVAQALADAAGNQRGRRLLDYPAAERARLFIHDALDQAITLDDLVQASGRDRWSLSRDFRALYGTSPYRYITQRRLNEARRLVLHGMPLSEAALACGFFDQSHMTRLHTQAFGISPARWLKMLRNANANANANA
D1-35_01795192hypothetical proteinATGTACTTTGAAATCTACCGACAAACCCGAGGGACCCCGAACACAGGACAAGGCCAATGGCGCTGGCGCCTGCGAGCCGGCAATCACGAAACCATCGCCAGCGGTGAATCCTACGTGAACAAGGCAGACTGCCTTCACGTCATCGGATTGATCAAAACCGCCCAATGCGAGACGCCTGTAAAGGAAATCTGAMYFEIYRQTRGTPNTGQGQWRWRLRAGNHETIASGESYVNKADCLHVIGLIKTAQCETPVKEINANANANANA
D1-35_01796936nodD2_1Nodulation protein D 2ATGAACCGCAACGAATTGCGCAAGGCCGATATCAACCTGATGGTGGTTTTCGAAACGCTGATGCTTGAGCGTAACGTGACACGGGCGGCGGAAAAGCTGTTCCTCGGCCAGCCAACCATCAGCTCGGCCCTGAATCGCTTGCGCACGCTGTTCAATGATCCGTTGTTCATTCGGGTCGGGCATCGCATGGAGCCCACCGCGCGGGCCGAGGAAATCATCCAGCACCTGTCGCCGGCACTGGATTCGCTGTCGGTTGCCTTGAGCTTGACCCATGATTTCGACCCCTCCAGCAGTGCCATGACGTTTCGCATCGGGCTGTCCGACGATGTCGAGTTTGGCCTCTTGCCGCCGCTGTTGCGCAGCTTGCGGCAAGAGGCGCCGCAGATCGTGTTCGTGGTCCAGCATGTCGATTACTGGCGTATCCCCGATTTGCTGGCCTCGGGCGATATCACTGTCGGCATCAGCCAGACCCGTGGGCTGCCGGCCAATGCCAAGCGCAAGCTGTTGCGACATATCCAGCCCTGCGTGTTGCGCGCCGATGCCTCGGATACCCCGCTGACCCTGGATGAATACTGTTCGCGGCCCCACGTGCTGGTTTCCCATACCGCCAACATTGCCGGGTTTGCTGACGAATGGCTGGCCGAGATCGGTCGCAAGCGCCAGGTAGTGCTGTCGGTGCCGCAGTACAGCGCGCTACCGGCGTTGCTGGCTGGCACCGACCTGATCGCCAGCCTGCCGGACTACACCGCCACCGCCATGGCCGCTTCCGGCCAGGTGTTCTGCGAACCCTTTCCCTTCCAGACGCCGACCCTGGACCTCTCCATGGTCTGGCTGAGCCATGTCGACAATGACCCGGCCGAACGCTGGTTGCGGTCCCGCCTGGAGGCTTTCATGAGCGAGCGTGCCGGCTTGCTGGACGAAACAAAACCTGCCTGAMNRNELRKADINLMVVFETLMLERNVTRAAEKLFLGQPTISSALNRLRTLFNDPLFIRVGHRMEPTARAEEIIQHLSPALDSLSVALSLTHDFDPSSSAMTFRIGLSDDVEFGLLPPLLRSLRQEAPQIVFVVQHVDYWRIPDLLASGDITVGISQTRGLPANAKRKLLRHIQPCVLRADASDTPLTLDEYCSRPHVLVSHTANIAGFADEWLAEIGRKRQVVLSVPQYSALPALLAGTDLIASLPDYTATAMAASGQVFCEPFPFQTPTLDLSMVWLSHVDNDPAERWLRSRLEAFMSERAGLLDETKPAPGPT0028130_230DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexEF-OprN,PGPT0028130-mexT-K18297NANA
D1-35_01797366hypothetical proteinATGCCTCACCTGCACATGGAGTACACCGCGAACCTGACCGAGCTGAACGCCGACGTCGCGCTGTTGCGCATGAACAACGCACTGGTGGCATCCGGTCAGTTCGCCGCCGAGTTCGACATCAAGAGCCGGGCCGTGAAAATCGATACGTTTCGCGTCGGCACCGGCATGGGGGAGCGTGGGTTCGTGCATGTGAAGCTGGCTTTGCTGAGCGGCCGTTCGCCGGAAATCAAGAAGCAGCTGGCCGATAGCCTGCTGGCGGTGATCCAGGATCTTGGCCCATGGCCCGCCGGTGTGAGCGTGCAACTGTGCGTGGAAGTCCTCGATATCGACCGCGGCCCCTACGCCAAGGCCGCCATCGGTCTTTGAMPHLHMEYTANLTELNADVALLRMNNALVASGQFAAEFDIKSRAVKIDTFRVGTGMGERGFVHVKLALLSGRSPEIKKQLADSLLAVIQDLGPWPAGVSVQLCVEVLDIDRGPYAKAAIGLNANANANANA
D1-35_01798936pcpR_2PCP degradation transcriptional activation proteinATGCTGAACAGCAACACCCTCAGAAAGCTCGACATGCAGGACCTCATGGTGTTCAGCGCCGTATTCGAGCAAGGCAGCGTCACCGGTGTGGCGGAAATCCTCTGCGTCAGCCAGTCAACGGTCAGCTACAGCCTGAAAAAGTTGCGGGCCTGCTTTGACGACGAACTGTTCATCAACACCCGGACCGGCATGCGCCCCACCTTCAAGGCCGAAGGCATGCACGAGCATGTGCGCAGCATCTTGCAAAGCATCAACCTCTGCCATGCCGGCACGCCGGCCTTCGATCCGACCCGGCAGGCCGTGACCTTCGAGATTTGCGCACCGGAATACTTTGAACAGCTGCTCCTGCCACAACTGCTGCAAGGCTTCGATCATGCAGACCTGCCCGTCGTGGTGAACGTGCACAAGCTCGGAGCCGATATTCCCGTTGATGACTTGCGTGACGGCAGCCTGGACCTGGTGATCTGTTTCGGCCCCCATTTCCACAGCAGCCATGCCGATCTCAAGACCCAACGCCTGCTGGAAGAAGAACTGGTCTGCGTGACAGACAAACGGTCGGCTCCGCTGGAATCGCCGTTGAGCATCGAAGCGTTCGTACAGCGTCGACACGTTTTCCCCACGCCTTGGGCGTCGCCCACCAACATGGTCGACGGCTGGCTGACGCGGCAGGCTCGGCAACGGCAGATCGCCGCACGTGCCAACAGTTACGGCGCGGCGTTGAAGATGATCACCGGTACCGATTTCCTCCTGACCCTGCCCCGTCGCATCCAGCAATTGCTGGCCAGCGCAGCGACATTCCAGCACTGCCGGGCGCCGGCGGGCTTGCCGGGATTTACCCTGGACATGCAATGGAGCCTTGCGGCCGATCAGGACAGCGCCAACGCCTGGCTGCGTGAACAGATCGTCAAGGCCTGTCCCGGGCAAGACCTCGCTTGAMLNSNTLRKLDMQDLMVFSAVFEQGSVTGVAEILCVSQSTVSYSLKKLRACFDDELFINTRTGMRPTFKAEGMHEHVRSILQSINLCHAGTPAFDPTRQAVTFEICAPEYFEQLLLPQLLQGFDHADLPVVVNVHKLGADIPVDDLRDGSLDLVICFGPHFHSSHADLKTQRLLEEELVCVTDKRSAPLESPLSIEAFVQRRHVFPTPWASPTNMVDGWLTRQARQRQIAARANSYGAALKMITGTDFLLTLPRRIQQLLASAATFQHCRAPAGLPGFTLDMQWSLAADQDSANAWLREQIVKACPGQDLANANANANANA
D1-35_017991383puuA_1COG0174Gamma-glutamylputrescine synthetase PuuAATGAGTCTTGTCGAATCTTCTTTTGCCTCCGTGCAGCAAGCCCAGGCGTTCCTGGCACAGAATCCGGATATCGAGCTGTTCGAATTGTTTATCGTGGATAACAACGGTGTGCCTCGGGGCAAGTGGCTGCATCGGGACGAGCTGCTCGCGGTCTACCAGAGTGGCCGGCCACTGCCGAGCACGATCCTCGGACTGACGCTCAATGGCGACGATGTTGAGAACTCTGGCCTGGTCTGGGACGTCGGTGATATCGATTGTCGTGCCTACCCCATCAGCGGCAGCTTGCAGCGCATGCCGTGGCGGCGGATTCCTACCGCCGCCGTGCAAGTCGGCATGCATCCCCGGGAGGGCATGCCGGCGGCCATCGCCGATCCGCGCTATCTGCTCAGTCGGGTGATCGAAGCCTTGCAGGCGCAGGGTTATTACCCGGTGATGGCGGCGGAGCTGGAGTTCTACCTGCTGGATGCGCAACGGGACAGCGAGGGGCGGCCGCAACCGGCGCGGGACGCAGATGGGAGCAGGCCGCGTTCCACCCAGGTCTATGGTTTGCGTGAGCTGGAACAGATCGAGCCCTTCCTTGCTGATCTTTATGCGGCCTGCAAGCTGCAGGGTATCCCGGCCCGTACGGCCATTTCCGAATACGCGCCGGGGCAGGTCGAGATCACCCTTGAACACCGCACCGATGCCCTGCAAGCCATGGATGACGCAGTGCGCTACAAACGGCTGGTCAAGGGCGTGGCGCACCAGCACGGCATGGCTGCCTGTTTTATGGCCAAACCGTTCGATCACCTGGCGGGTTCCGGCATGCACATGCATGTGAGTCTCGCCGACCGGGAGGGCAATAACCTGTTTGCCAGCGAAGCCGCCGACGGCACGCCGTTGCTGCGTCATGCGGTGGGCGGGATGCTCGCGACTTTGCTCGATTCGCTGCTGTTGTTTTGCCCTAATGCCAATTCCTACCGCCGTTTCCAAAGCCACAGCTACGCGCCGCTGGCTGCGACCTGGGGCGTGGACAACCGCACCGTCAGCCTGAGAGTCCCGGGTGGCCCGGCCTTTTCTCGGCACATCGAACACCGTATCTGTGGTGCCGATGCCAATCCGTACCTGGCCGCAGCGGCGATCCTGGCCGGTATCCATCTTGGCATATGCGAACAGCGCGATCCCGGAGCGCCTGTCGAGGGCAACGGATACGCCCAGGCGAGCCAATTGTTGCCCACCGACTGGCTGACCACCTTACGTGCCCTTGAATCTTCGACATGGGCGCGGGACGCGTTGGGGGATGAATTCCTTGGCGTCTACCTGGCGGTCAAGCGCGCCGAATATCGCCAGTTCATGGGCGAGGTCGGCGAGCAGGATTGGCGTTGGTACCTGAACCAGGCCTGAMSLVESSFASVQQAQAFLAQNPDIELFELFIVDNNGVPRGKWLHRDELLAVYQSGRPLPSTILGLTLNGDDVENSGLVWDVGDIDCRAYPISGSLQRMPWRRIPTAAVQVGMHPREGMPAAIADPRYLLSRVIEALQAQGYYPVMAAELEFYLLDAQRDSEGRPQPARDADGSRPRSTQVYGLRELEQIEPFLADLYAACKLQGIPARTAISEYAPGQVEITLEHRTDALQAMDDAVRYKRLVKGVAHQHGMAACFMAKPFDHLAGSGMHMHVSLADREGNNLFASEAADGTPLLRHAVGGMLATLLDSLLLFCPNANSYRRFQSHSYAPLAATWGVDNRTVSLRVPGGPAFSRHIEHRICGADANPYLAAAAILAGIHLGICEQRDPGAPVEGNGYAQASQLLPTDWLTTLRALESSTWARDALGDEFLGVYLAVKRAEYRQFMGEVGEQDWRWYLNQAPGPT0000645_4915DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMATE_DEGRADATION|CONVERSION,PGPT0000645-glnA-K01915NANA
D1-35_018001650eptACOG2194Phosphoethanolamine transferase EptAATGCTGACTATTAAAGCCGTGCGCCCCGAGTGGGTGACGCTGGTCGCCAGTGCCTTTTTGTTAGTGGCCTTCAATGCCATTCTGTGGCAACACCTGCTCGCCATCACGGCGGCGGACGGACACGGTGTGTTGCTGTGCATCGCGTTTGCCGTGATGGTGTTCTGCGCGTTCAACCTGGTGCTGACACTGGTGGCGTTCCGTCCGCTGCTCAAGCCGTTGTTGATGCTGTTGTTCATGATCAGCGCCGGGGTCGCTTATTTCATGGCCCAATACGGTGTTTTGATTGATGCCGGCATGTTGCGTAACTTTGCCGAAACCAATGCCACGGAAGTGCGTGACCTGTTGTCGTTAAAGTTGTTTGGCTACCTTTTACTGTTAGGTGTACTGCCTGCATGGTTACTGTTCAAGACCCCGATAAGTTATCGTCGCTGGCCCAGGGAGTTGTTAAGCAAGTTGCTCGTCGGCGTCGTCTCGGCTGCGCTGTTGGGCGGGGTTGCCTTGATCAATTACCAAGGGTTGTCTTCGCTGTTTCGCAATCATCACGAGTTGCATCTGATGGTGGTGCCGAGCAACTACATCGGCGCCTCGATCGGCTACTTGCGCGAGCAGGTCGCCTCGGCCAAGCAGCCGTTCATTACATTGGGCGAGGATGCGCAGCGCAACCCGGCCTGGCAAACCCAAGGGCGCAAATCCCTGACGGTGCTGGTGGTGGGCGAGAGCGCGCGTGCAGAGAACTTTGGCATTCTCGGCTATCACCGCGATACCACGCCGCAGTTGGATAAAGAGGCCGGCCTGATTGCCTTTACCGACGTGCATTCCTGCGGCACCGAGACCGCCGTGTCGGTGCCGTGCATGTTTTCCAACATGGGCCGCAAGAACTACGACGCGAGCAAGGCCAAGAACGAAGAGGGCCTGCTGGATGTGCTCAAGCGCGCCGGACTGGAAGTGATCTGGCGCGACAACCAGTCCGGCTGCAAAGGCACCTGTGATCGGGTTGCGGTGCAGGACGTGAGTAATCTCAAGGACCCGGCCCTGTGTGCCAACAGTGAATGCCGCGATGAAATCCTGCTCCAGGGCCTGCAGCAGTTCATCGATACCCTCGACAAGGACACGGTGCTGGTGTTGCACCAGATGGGCAGCCACGGACCGGAATACTTCAAGCGTTATCCCAAGGAGTACGAGCATTTCACCCCGGTGTGTGAAAGCAACGCGTTGAATAATTGCAGCCGCGAAAGCATCGTCAACGGCTACGACAATACATTGGTATACACCGATCATGTGCTGTCGACGCTGATCGACCTGCTGCGGGCGAATCAGGACAAGGTCGACACGGCCATGCTGTACCTGTCGGACCATGGCGAGTCGCTTGGCGAATACAACCTGTTCCTCCATGGCACGCCTTATATGCTCGCTCCGGAGCAACAGAAACATGTGGCGATGCTGGCCTGGTTCTCCGACGGTTATCAGCAAGCCTTCTCGGTCGACACGCATTGCCTGCAACTGAGTCGGGAAAAACCCCTCAGTCAGGACAACCTGTTTCATTCGATGCTCGGGCTGCTGGAGGTCAACAGCAAGGTCTACAACCAGGAGCTGGACATGTTTGCCGGTTGTCGCGGCGCAGTCATCGACGGCGTGCTGGCCCGTGAGTAGMLTIKAVRPEWVTLVASAFLLVAFNAILWQHLLAITAADGHGVLLCIAFAVMVFCAFNLVLTLVAFRPLLKPLLMLLFMISAGVAYFMAQYGVLIDAGMLRNFAETNATEVRDLLSLKLFGYLLLLGVLPAWLLFKTPISYRRWPRELLSKLLVGVVSAALLGGVALINYQGLSSLFRNHHELHLMVVPSNYIGASIGYLREQVASAKQPFITLGEDAQRNPAWQTQGRKSLTVLVVGESARAENFGILGYHRDTTPQLDKEAGLIAFTDVHSCGTETAVSVPCMFSNMGRKNYDASKAKNEEGLLDVLKRAGLEVIWRDNQSGCKGTCDRVAVQDVSNLKDPALCANSECRDEILLQGLQQFIDTLDKDTVLVLHQMGSHGPEYFKRYPKEYEHFTPVCESNALNNCSRESIVNGYDNTLVYTDHVLSTLIDLLRANQDKVDTAMLYLSDHGESLGEYNLFLHGTPYMLAPEQQKHVAMLAWFSDGYQQAFSVDTHCLQLSREKPLSQDNLFHSMLGLLEVNSKVYNQELDMFAGCRGAVIDGVLAREPGPT0022420_401DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0022420-eptA-K03760NANA
D1-35_01801642hypothetical proteinATGCCCGGGCAATCCCCATCCACCGTCGAGCTTGAATTCACCCGACAGCACGAGCAGGAGCATGCGCAAACCTGCCATCAACCGGCGCCTCGGCGGTTGCGCCTGGTGTTCTGGCGTGACGAGCAGTTGGTGCGCAACGCTCTGAAGGCCGCCGGCGAGCCCGGCCTGGTGCTGGATGTGGCGTGCGGGGCGGGGCGCTTCTGGCCGGTGCTGGCCGAACATGCCAACCGGGTGATCCTGGCGGCGGACCCGTCGCCGCAAATGCTTGATCACGCGCTCGCCCACCACGAGCAAGCGTTGCTTGAGCGGGTCAGGACCTTCCCGAGTTCCGCGTTCACCCTCGGGCTATCCGCGAACGCGGTGGACTGTATTTTTTGTCTGCAACTGTTTCTGCATATCCAGGCCAGCGAGCATCGCCTGGCGTTGCTGCGCGAATTCCATCGGGTCAGCCGCGACACAGTGATCGTGTCGGTCCAGATCGAGGGCCGGCTGAGAACCGGCCAGCCGCCACCCAGGCGCCTGGTCGACCGGGCCCGGGTCGAAGCCGAGTTTATCGAGGCCGGTTTCAGCGTGCAGTGGTATCAGGATTTCCTGCCCGGTTTCGCCTTGAAGCGAGTTTATGTATTACGTAAGACCAGTTAAMPGQSPSTVELEFTRQHEQEHAQTCHQPAPRRLRLVFWRDEQLVRNALKAAGEPGLVLDVACGAGRFWPVLAEHANRVILAADPSPQMLDHALAHHEQALLERVRTFPSSAFTLGLSANAVDCIFCLQLFLHIQASEHRLALLREFHRVSRDTVIVSVQIEGRLRTGQPPPRRLVDRARVEAEFIEAGFSVQWYQDFLPGFALKRVYVLRKTSNANANANANA
D1-35_018021134rndCOG0349Ribonuclease DGTGGCCATCGATATTCACTGGATTCGCGACAACGATAGCCTCGGTCGGTTTTGCGCCGAATGGCAACAGTTGCCATTCGTCGCCCTCGACACCGAATTCATGCGGGTCGACACCTTTTATCCCATTGCCGGCTTGCTGCAGATCGGTGACGGTAAAAGCGCCTACCTGATCGACCCATTGACCATTGATGACTGGCAACCCTTGGCTGCGCTGCTGGAGAACCCGGCTGTGCTCAAGGTGTTGCATGCCTGCAGCGAGGATCTGGAAGTCTTGCTGCGCCTGACGGGCAGCCTGCCCGCGCCGCTGTTCGACACCCAGCTGGCCGCCGCTTACCTGAACCTGGGCTTTTCGATGGGTTACTCGCGGCTGGTGCAGGAAGTGCTGGGTATCGAGTTGCCCAAGGGCGAGACCCGTTCCGACTGGTTGCAGCGGCCCCTTTCCGAGACGCAGATCAGCTACGCCGCCGAGGATGCCGTGCACCTGGCGGAAGTTTTCGTCGAGTTGCGCCCGAAGCTTTCCGGCGAAAAATACGCCTGGGTGCTGGAGGATGGCGCCGAGCTGGTGGCCAACCTGCGACGTGAAGTCGACCCGTATGAGGTCTACCGCGACGCCAAGCTGGCCTGGAAACTCTCCCGTGCGCAACTGGCCGTGCTGCGTGAGCTTTACGCTTGGCGCGAACGCGAGGCGCGAGCCCGTGACCTGCCACGTAACCGCATCCTCCGCGAGCATTCGCTGTGGCCCCTGGCCCGCACGCAACCGGATAACCTCGGCGCGCTGGCAAAAATAGAAGACATGCACCCGCGCACGGTGCGTCAGGACGGCGAATTCCTGCTGGACCTGATCAAGCGTGCCGGCAGCGTGCCGCCCGAACAATGGCCGCCCGCCGTGGCCGAGCCGCTGCCCATCGAGGCCGCGGCGCTGATCAAGCGCCTCAAGGCGCTGGGCCAGGCTGAAGCCGAGCGCCTGGGCATTGCTCCTGAATTGATGCTTCGCAAGAAAACCCTCGAAGCCCTGATCAAGAGCGGCTATCCCGAGGGACCTTACCAACTGCCCGATTCGCTGCGTGGCTGGCGCCGCGAGTTGATGGGCCAGGCGCTGCTCGACAGCCTGGCCACCGCCGGAGAACAGCCTTGAMAIDIHWIRDNDSLGRFCAEWQQLPFVALDTEFMRVDTFYPIAGLLQIGDGKSAYLIDPLTIDDWQPLAALLENPAVLKVLHACSEDLEVLLRLTGSLPAPLFDTQLAAAYLNLGFSMGYSRLVQEVLGIELPKGETRSDWLQRPLSETQISYAAEDAVHLAEVFVELRPKLSGEKYAWVLEDGAELVANLRREVDPYEVYRDAKLAWKLSRAQLAVLRELYAWREREARARDLPRNRILREHSLWPLARTQPDNLGALAKIEDMHPRTVRQDGEFLLDLIKRAGSVPPEQWPPAVAEPLPIEAAALIKRLKALGQAEAERLGIAPELMLRKKTLEALIKSGYPEGPYQLPDSLRGWRRELMGQALLDSLATAGEQPNANANANANA
D1-35_01803294ycgLCOG3100Protein YcgLTTGAAACGTATCTGCTCCATCTACCGAAGCTCGAAAAAAAACGAGATGTACCTGTATGTGCTCAAGAGCGACGCCTTGAAGCGTGTGCCTGAGCCATTGATGGCGGCCTTCGGCAAGGCGATCCATGCCTTCGACCTGGTTCTGAGCCCGGAGCGGCAATTGTCCCGCGAAGACATCAACAAGGTGCTTGAGAACCTCGATACCCAGGGTTATCACCTGCAGATGCCACCGGCGGAAGACGAGTACATCGAGCATCTGCCCGAAGAGTTGTTGCGCCGCAACGACCCGGTCTGAMKRICSIYRSSKKNEMYLYVLKSDALKRVPEPLMAAFGKAIHAFDLVLSPERQLSREDINKVLENLDTQGYHLQMPPAEDEYIEHLPEELLRRNDPVNANANANANA
D1-35_01804933ghrA_1Glyoxylate/hydroxypyruvate reductase AATGCGCGTTCTGATTGCCGAACACGACCACGCGATGTATGCCCAGCTCCTGCGCCAGGCTGCAGCCGATATCGAAATCCTGACCAGCGGCGACTCCGCTGAACTGTCACGCCTGGCCGCCGATTGCCCGGTCTGGCTCGGCCAGCCGGACTTGCTGGCGACCTTGTTGCGTCAGGGCCACAAGCCCCGTTGGTTGCAATCGACCTGGGCGGGGATCACGCCGCTGCTGGCCGAGGGCCTGACCCGTGACTACCGTCTGACCCGCGCGGTGGGCATTTTTGGCCAGGTCATGGCCGAATATGTGCTCACCTACATGCTCGGGCATGAGCGCGAAGTCCTGGCGCGCCTGGTCAGCCAGGTGGAGCGCAAATGGGATAATCGCCAGAGCCAGAGCCTGGCGGGCCGCAAGGTATTGATCGTCGGGACCGGCGATATCGGTCGCCGCGTGGCTGAGTTCCTGGTGCCATTTGGCGTGCAGTTGTACGGCATCGCCAGTGAAGCTCGGGAATTGGTGCCGTTTATTGAAGTTGGCGCGTTGCAGGACTTGCCCCGTCTGGTGGGCGAGGTGGACTACGTGATCAACCTGTTGCCGAATACACCGGACACTCACGATATCTACGACGCGGCGTTGTTCAAGCAATTCAAACCCACCGGGCTGTTCATCAATGTCGGCCGTGGCGTGGCCGTGGTCGATGCGGACCTGGTGCAAGCGTTGCAGGACGGGCACCTGGCCGGTGCGGTAATCGACGTGTGCCGCCAGGAGCCGTTGCCACAGCGCCATCCGTTCTGGACCGCCTGGGGATTGTTGCTGACCGGCCACAGCTCCGCACCGACGTCGCCGCCGATGATGGTGCAGTTGTTCCTGGAGAACCTGCGCGCCTATGAGGCCGGCGAAGCGTTGCGCGGGGAAGTGGATTTCAGTCGGGGCTACTGAMRVLIAEHDHAMYAQLLRQAAADIEILTSGDSAELSRLAADCPVWLGQPDLLATLLRQGHKPRWLQSTWAGITPLLAEGLTRDYRLTRAVGIFGQVMAEYVLTYMLGHEREVLARLVSQVERKWDNRQSQSLAGRKVLIVGTGDIGRRVAEFLVPFGVQLYGIASEARELVPFIEVGALQDLPRLVGEVDYVINLLPNTPDTHDIYDAALFKQFKPTGLFINVGRGVAVVDADLVQALQDGHLAGAVIDVCRQEPLPQRHPFWTAWGLLLTGHSSAPTSPPMMVQLFLENLRAYEAGEALRGEVDFSRGYNANANANANA
D1-35_01805594rutEmalonic semialdehyde reductase RutEATGAGTGCCAATCCCCGCATCGCCGAATACGCCATCCACCCCCAGTTCATCGAACGCTGGTCGCCCCGCGCTTTCACCGCTGAAAGCATTTCCCAAGAAACCCTGCTGAGCTTCTTCGAAGCCGCGCGCTGGGCGCCTTCGGCCTATAACTCGCAGCCGTGGCGTTTCCTGTATGCCCGTCGCGACACGCCGAACTGGGAGCGTTACCTGGGCCTGCTCAACGAATTCAACCGTGGCTGGGCCCAACACGCCTCGGCGCTGGTGATCATCGCCTCGAAAACCACCTTCGCGGTGCCCGGCGCCACCGAGGAAACCCCGGCCCAGTGCCACACCTTCGACACGGGCGCGGCCTGGGGCCACCTGGCGTTGCAAGCGAGCCTCAGCGGCTGGCACACCCACGGCATGGCCGGCTTCGACCAGGACCTGACCCGCAAGGAACTGAAGATCCCCGACGGCTACGCCCTGCACGCGGCCGTGGCGATTGGCAAGCTGGGAGACAAATCGACGCTGGCCGACTACCTCCAGGCCCGCGAAGTGCCGAGCCCGCGCCGGCCGTTGAGCGAGCTGGTGGCCGAGGGTGATTTCACCCTCTGAMSANPRIAEYAIHPQFIERWSPRAFTAESISQETLLSFFEAARWAPSAYNSQPWRFLYARRDTPNWERYLGLLNEFNRGWAQHASALVIIASKTTFAVPGATEETPAQCHTFDTGAAWGHLALQASLSGWHTHGMAGFDQDLTRKELKIPDGYALHAAVAIGKLGDKSTLADYLQAREVPSPRRPLSELVAEGDFTLNANANANANA
D1-35_01806450hypothetical proteinATGGCCGCCAAAGTCGAACCGTTCTGGATACGCAAAACCCTCGATCAGCTCGATTCACAGGAGTGGGAATCGCTGTGTGACGGCTGTGGCCTGTGCTGCCTGCAAAAGCTCGAAGACGAAGACGACAACAGCGTCTACTACACGCGCATCGCCTGCAAGTTGCTCGACCTGAAGACGTGTCAGTGCACCGATTACCCCAATCGTCGCGACTTTGTTCCTGATTGCATCCAGCTCACGCCGGGCAAGGCCGATGAGTTCAAATGGTTGCCGCCAACCTGCGGCTATCGCCTGGTCAGCGAGGGCAAGGACCTGCCGCTTTGGCACCATCTGGTCTGCGGCGACCGTGACGCGGTGCACCACGAACGCATTTCCCAATCCGGGCGCATGCTCGCCGAAGGCAGCGTGGCTGAAGAGGATTGGGAAGATCACCTGATTTTCCGCGCCGGCTGAMAAKVEPFWIRKTLDQLDSQEWESLCDGCGLCCLQKLEDEDDNSVYYTRIACKLLDLKTCQCTDYPNRRDFVPDCIQLTPGKADEFKWLPPTCGYRLVSEGKDLPLWHHLVCGDRDAVHHERISQSGRMLAEGSVAEEDWEDHLIFRAGPGPT0009760_669DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-AI-1_ExpI|EsaI_PERCIPITATION|SIGNALLING|AHL|NAHL,PGPT0009760-ycgN-K09160NANA
D1-35_018071230hypothetical proteinATGGCTGCAGGATTGAAACGGATGCTGGCGGCCGGGCTGCTGGCGGTGAGCGGACCGCTGTGGGCCGCGCAGAAAGTCGATCTGGATTATCACGTCCACCTGTTGCCGCAGAGCGACCAGGCCGAAGTGCGCCTGACGCTGGCGCGGGGCTCGGCGGTGCGCAGCCTGGATTTCGATCTTGGAAGCGATGGTCGCTACAGTGATTTCAAAGCCGATGGCCAGTGGCAACTGACCCCCGGTCACGAAGCTCGGGGCGTCTGGCGCCCAGCCGCCGACAAGGCGAGCCTGACTTATCGCGTCCGCCTCAGCGAGTCGCGCAAAAACGGCTCCTTTGAGACCCGCATGACCCCCGGATGGGCGCTCCTGCGCGGTGATGATCTGGTACCGCCAGCCAGGCTGGATCAGCAGGACGGCACCGAGCTGGTGTCACGCCTGGAATTCGAATTGCCGGGTGGCTGGCAAAGCATCGAGACGCCCTGGCCGCGTATCGGCAAGCAGCGTTTTCGCATCGACAACCCTTCGCGCCTGTTCGACCGGCCGACGGGCTGGATGCTGGCCGGCAAACTCGGCAGCCGCCGCACGCGCCTGGGCGAGACCGAAGTGACCGTGGCTTCGCCGCGAGGCCAGGGCATGCGGCGGATGGACGTGCTGACGCTGCTGACCTTCGTCTGGCCGCAGGTGCAGGCAATCGTGCCGCGCCATCCGGCCAAGCTGTTGATCGTTGGCGCGGGCGATCCGATGTGGCGTGGCGCCCAGGGCGGCCATGAATCGATTTACCTGCACAGCCGTCCGGCGCTGGTCAGCGAACGGGGCAGCAGCCCGTTATTGCGGGAGTTGATCCAGGTGCTGGCGCGCATCAACGATCATGATCGCAGCGACTGGATCAGCGAAGGGCTCAACGAGTATTACGCCATCGAATTGCTGCGCCGTGCCGGCGGCATGAGCGACGAGCGTTATCAGGCATTGAATGATCGACTCGCCCGGGACAGCAAGGGCGTCACGATGTTGCGTGGTGAACAGGTGAGCCCGGCGATGGTGTCCAAGGCGGTGCTGCTGTTGCAGGAGCTGGACCGGGAAATCCGCCTGAAAACCCGCAACAAGCGTTCGCTGGATGATGTGCTGCAAGGGGCGATGCGCTTGGAAACCGTCGACACCGAGGAGTTTGTGCAGCTCAGCGAGAGCATCCTGGGCGGGGGCTCCAGCGTTCTGGATACGCGGTTACTTCAGTAAMAAGLKRMLAAGLLAVSGPLWAAQKVDLDYHVHLLPQSDQAEVRLTLARGSAVRSLDFDLGSDGRYSDFKADGQWQLTPGHEARGVWRPAADKASLTYRVRLSESRKNGSFETRMTPGWALLRGDDLVPPARLDQQDGTELVSRLEFELPGGWQSIETPWPRIGKQRFRIDNPSRLFDRPTGWMLAGKLGSRRTRLGETEVTVASPRGQGMRRMDVLTLLTFVWPQVQAIVPRHPAKLLIVGAGDPMWRGAQGGHESIYLHSRPALVSERGSSPLLRELIQVLARINDHDRSDWISEGLNEYYAIELLRRAGGMSDERYQALNDRLARDSKGVTMLRGEQVSPAMVSKAVLLLQELDREIRLKTRNKRSLDDVLQGAMRLETVDTEEFVQLSESILGGGSSVLDTRLLQNANANANANA
D1-35_01808378hypothetical proteinATGAGCGACAACAATCCGTTCGGGCCGGTTGAGACCACCCCTTTCCAAACCCGCAGCCCGCAGAACGTGCACGGCTGGGAGCGCATTGGGTCACTGGCCGGTGGGGTGCTGATGATGGGCAAGGGATTGCGCCGCGGCGGTGTGATCGGCCTGGCCCAACTGGCAATCGGCGGCATGGCCCTGGCCCGCGGCATCACCGGACATTGTTCGGCCAAGACCCTGCTGGAAAAAAATCGTCAGCACCTGCACGACGCCCGCGCCCGGATCGAGCAGGCCGGCGATGAACTGAGCCGCATGAAAACCAATGCCGAGGCGGCGACCGGCACCGCTACGGTAACGGGGAATGATTCGTTGGTTTCGCCGAAGGCTGGGCTCTGAMSDNNPFGPVETTPFQTRSPQNVHGWERIGSLAGGVLMMGKGLRRGGVIGLAQLAIGGMALARGITGHCSAKTLLEKNRQHLHDARARIEQAGDELSRMKTNAEAATGTATVTGNDSLVSPKAGLNANANANANA
D1-35_01809471hypothetical proteinGTGGCCAACAAACGCTACAGCTGCATCGGTCTGTTCAACCCCAAGTCGCCGGAAAACGTCGGTTCGGTCATGCGTGCCGCCGGCTGTTACGGCGTCGCGTCGGTGTTCTATACCGGCAAGCGCTACGAACGCGCTGCCGACTTCGTTACCGACACCAAAAAAGTCCACTACGACATCCCGCTGATCGGCATCGACGACCTGAAAAAGATCCTGCCCCTGGGCTGCGTGCCGGTGGCCGTGGAACTGGTGGACGGCGCCCGTCCCTTGCCCGAATACACCCATCCGGACCGGGCCCTGTACATCTTCGGTCCGGAAGACGGTTCTCTGGACAAGGACATCCGCGACTGGTGCGAAGATGTGATCTACATCCCCACCAACGGCTGCATGAACCTGGCCGCTACAGTCAACGTCGTGCTCTACGACCGCATGGCCAAAGGCAACAACACCCGCTCGGGGCCGCAATTTCGCTGAMANKRYSCIGLFNPKSPENVGSVMRAAGCYGVASVFYTGKRYERAADFVTDTKKVHYDIPLIGIDDLKKILPLGCVPVAVELVDGARPLPEYTHPDRALYIFGPEDGSLDKDIRDWCEDVIYIPTNGCMNLAATVNVVLYDRMAKGNNTRSGPQFRNANANANANA
D1-35_01810375hypothetical proteinATGAGTTCGTCCACCCCACCGTCCAACACCGCCAAGCTCGACCGCATCCTCGCCGACGCCCAGCGCGACCGGGAAATGGGCTACCGCGACAAAGCCCTGAAAATGTACCCCCACGTCTGCGGTCGCTGCGCCCGTGAGTTTTCCGGCAAGCGCCTGAGCGAACTGACCGTCCATCACCGTGACCACAACCACGACAACAACCCGCAGGACGGTTCCAACTGGGAACTGCTGTGCCTGTACTGCCACGACAACGAGCACTCGCGCTACACCGACCAGCAATACTTCGGCGACGGCTCCCTGAGCACGCCGAAGATCGCCAAGGCGACGCATAACCCCTTCGCCGCGCTGGCCGGGCTGATGAAAAAAGACGAGTAGMSSSTPPSNTAKLDRILADAQRDREMGYRDKALKMYPHVCGRCAREFSGKRLSELTVHHRDHNHDNNPQDGSNWELLCLYCHDNEHSRYTDQQYFGDGSLSTPKIAKATHNPFAALAGLMKKDENANANANANA
D1-35_018111011speE_3Polyamine aminopropyltransferaseATGCCCGGGATCGGCTGGTCCTTCGGCGGCCTGGGCATTTCGATCGGCGGCAACAGCGGCGGGCCGCCACCCGGTGGGGCAGCCTTGGGCACGCCGTTGGGCGTGACCGGCGGATACGGCATGGGCGTGGCGGTGCCCGGCGCCCCGGGAATGCTCGGCGGGTTGACGGGAATCGTCGGTTGCTGGGCCTGGGCGCAACTTATCGAGAGCGCCGCCACGGCAATGGCCGTTAGAATGGTGCACTTCATCAATGGCTCCGTGGCTATTGTCTGCTTTCAGGCTAGTCCCAACCGGGCCGGTCTGCCCCATTCCCATGAGATTTCCATGAAACGTTTCGTTCTTCTCGACACCACGCCCATTCCCGACAACGGCGGTGCCTTGTGCCTTTTCGAGTATGGCGAAGATTTCGTCATCAAGATCCAGGGCGGTGACGGCGGACAGTTGATGAATACCCGCATGCACGGTTCCGAAGATGCCCTGGCCGAGATTCCCTGTCGCAAGGTCGCCGGCCGTCCCGGCTCGCGGGTGCTGATCGGTGGTCTCGGCATGGGCTTCACCCTCGCCTCCGCCCTGAAACACCTGGGCAAGAGCGCCGAAGTGGTAGTGGCCGAGCTGGTCCCGGGTGTGGTCGAGTGGAACCGCGGCCCCCTCGGCGAAAAGGCCGGGCGACCGCTGTCGGACCCGCGCACCGTGGTCCGCATGGAAGACGTCGCCAAGGTCCTGCAAGCCGAGCCGCAAGGGTTCGACGCGATCATGCTGGATGTCGACAACGGCCCGGAAGGCCTGACCCAGAAAGCCAACAGTTGGCTGTATTCGGCCGGCGGCCTGGCCGCGTGCGCCAAGGCCCTGCGCCCCAAGGGCGTGCTGGCGGTATGGTCGGCCAGCGCTGACCGGCAGTTTTCCGACAAGCTGAAAAAGGCCGGCTTCAAGGCCGAAGAGGTGCAAGTGTTCGCCCATGGCAACAAAGGCACCCGCCACACCATCTGGATTGCCGAGAAGCTCAAGGGCTGAMPGIGWSFGGLGISIGGNSGGPPPGGAALGTPLGVTGGYGMGVAVPGAPGMLGGLTGIVGCWAWAQLIESAATAMAVRMVHFINGSVAIVCFQASPNRAGLPHSHEISMKRFVLLDTTPIPDNGGALCLFEYGEDFVIKIQGGDGGQLMNTRMHGSEDALAEIPCRKVAGRPGSRVLIGGLGMGFTLASALKHLGKSAEVVVAELVPGVVEWNRGPLGEKAGRPLSDPRTVVRMEDVAKVLQAEPQGFDAIMLDVDNGPEGLTQKANSWLYSAGGLAACAKALRPKGVLAVWSASADRQFSDKLKKAGFKAEEVQVFAHGNKGTRHTIWIAEKLKGNANANANANA
D1-35_01812474hypothetical proteinATGTCAGAACCGACCTTACTGAACAACCAAATTCGCGACTGGCTGATGGACTGTGGTCTGTTCGACCAACTGCTGCCCGTCGACTTTGCCGCGGCATCGGGCTATTTCAGCATCAGTACCGTCGCCCAGGGCGAAGCGATTTTTCGCGAGGGCGATGCCGGCAGTTTCATGTGCATCCTTCACACCGGCCAGGTGGCCGTGCAGAAAACCGGCCCCGACGGCCAGCCCGTGACCATCGCCACGCTGCGCAGCGGCCGCGCCTTCGGCGAAATGGCCGTGCTCGACGGCGAACGACGCTCGGCCAGTTGCATCGCCGCCACCGAATGTCAGTTGTTGAACCTGGGCAAGGACTCCCTGGAAAAAATGCTCAACGACGCACCGAAGATCGCCGCCAAGATCATCCGCGCCCTCGCCGTCTCCCTGTCCAAGCGCCTGCGCATGGCCGACGGGCAGTTGCTGTCGCAGCAGGTGTAGMSEPTLLNNQIRDWLMDCGLFDQLLPVDFAAASGYFSISTVAQGEAIFREGDAGSFMCILHTGQVAVQKTGPDGQPVTIATLRSGRAFGEMAVLDGERRSASCIAATECQLLNLGKDSLEKMLNDAPKIAAKIIRALAVSLSKRLRMADGQLLSQQVPGPT0015075_5300DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-CARBOHYDRATE_LIMITATION_SIGNALLING,PGPT0015075-clp|crp-K10914NANA
D1-35_018132055dapb1Dipeptidyl aminopeptidase BIATGCCCCTATCCGCCCACGTTCCCGACGCCCCGATTGCCCGCAAGGCCCCCGGTGTTGACCCCTACGCCTGGCTGCAGGAGCGCGACACCGACGCCGTGCTCGAATACCTGAAGGCTGAAAACAGCTACCAGCAAGCCCGGCTCGCCGATCAGGCCGAACTGCGCGAAACGCTGTTCCAGGAAATCAAGGGACGAATCCTCGAAACCGACCTCTCCCTGCCCTCGCCCTGGGGTCCTTACCTGTATTACACCCGCACCACGGCGGGTGATGAATACGCTCGCCATTACCGTTGCCCGCGTCCGGCCGATGACAGCCTGACGGTCGATGAAAGTCGTGAACAGCTGTTGCTGGACCCGAACGCGCTGGCAGGCGGCGGTTTCTTTTCCCTCGGCGCGTTCAGCATCAGCCCCGACCATCAGCGTCTGGCCTACAGCCTGGACACCAGCGGCGATGAGATCTATACGCTGTTCGTCAAGGAGCTGTCCAACGACAAGGTCAGCGAACTGTCCTTCGAAAACTGCGACGGCAGCATGACCTGGGCCAACGACAGCCTGACGCTGTTCTTCGGCGAACTCGACGATACCCATCGCCCGCACAAGCTGTTGCGCTATCGCCTGGACGGCACCGCCGCCGAAGAAGTGTTCAATGAACCGGACGGGCGTTTTTTCCTGCATTGCTACCGTTCAAGCTCCGAGCGGCAGTTGATCCTGTCCCTGGGCAGCAAGACCACCAGCGAAGTCTGGGTGCTGGACGCGGCGCAACCACAACAACCGTTTACCTGCGTCGCGCCACGGGTAGAGAACCACGAATACGATGTCGACCATGGCCTGCTCGAAGGGCAATGGACCTGGTTCATCCGCAGCAACCGCGACGGCATCAATTTCGCCCTGTACCAGGCGCCCGATATGGGCGAAGCGCCGGCCGAAGCCGACTGGCAGAACCTGATCCCCCACAGTGACACGGTGATGATCGACGGCCTGAGCCTGAACGCCAGCGCCATGACATTGAGCCTGCGCGAGGGCGGCCTGCCGATCATCGAAGTCCACCCACAAGGTTTACCGGCCTATCGGGTGCAATTGCCGGACGCGGCCTACAGCCTGCACGTGCAGAACAGCCTGGAGTTTGTCAGCGAGCGCATTCGCCTGCGCTACGAAGCGCTGAATCGTCCGGCGCAGATCCGCCAGCTGGACCTGGCCAGCGGTGTTCAGGTCGTACTCAAGCAAACCCCGGTGCTGGGTCCGTTTGATGCCGATGCGTATGTCAGCCAACGGCTTTGGGCGACGGCACCGGACGGTACGCAAGTGCCCATCAGCCTGGTGGTCAAGCGCGAGGCCTTGGGCAAGCCCGTGCCGCTGTACTTGTACGGCTACGGCGCCTATGGCGAAAGCCTCGACCCATGGTTCTCCCATTCGCGCTTGAGCCTGCTGGACCGTGGTGTAGCGTTTGCCATCGCCCATGTGCGCGGCGGCGGCGAACTGGGCGAGGCCTGGTATCGCGCTGGCAAGCAGGAGCACAAGCACAACACTTTCAGTGATTTCATCGCTTGCGCCGAACACCTGATCGCCCAGGGCTTCACCTCGGCCGATCAGTTGGCGATCAGCGGCGGCAGCGCCGGTGGCCTGCTGATCGGCGCAGTCCTCAACCAACGCCCGGAGCTGTTCAAGGTGGCGATCGCCGAAGTGCCGTTCGTCGACGTGCTCAACACCATGCTCGACCCCGAACTGCCACTGACCGTGACCGAATACGACGAATGGGGCAACCCCGAGGAGCCGGACGTTTATGATCGGATTCGGGCCTACGCGCCGTACGAAAACGTCCGCGCCCAGGCGTATCCGGCAATGCTGGTGATCGCCGGCTACAACGACAGCCGCGTGCAGTACTGGGAAGCGGCCAAGTGGGTGGCGAAACTGCGCGCGACCAAGACCGACGAAAACCCGCTGCTACTCAAGACCGAACTGGGCGCTGGCCATGGCGGCATGAGCGGCCGCTACCAGGGATTGCGTGACGTAGCGCTCGAATACGCATTTGTCTTGAAGGTTTTGGGCGTGGCTTGAMPLSAHVPDAPIARKAPGVDPYAWLQERDTDAVLEYLKAENSYQQARLADQAELRETLFQEIKGRILETDLSLPSPWGPYLYYTRTTAGDEYARHYRCPRPADDSLTVDESREQLLLDPNALAGGGFFSLGAFSISPDHQRLAYSLDTSGDEIYTLFVKELSNDKVSELSFENCDGSMTWANDSLTLFFGELDDTHRPHKLLRYRLDGTAAEEVFNEPDGRFFLHCYRSSSERQLILSLGSKTTSEVWVLDAAQPQQPFTCVAPRVENHEYDVDHGLLEGQWTWFIRSNRDGINFALYQAPDMGEAPAEADWQNLIPHSDTVMIDGLSLNASAMTLSLREGGLPIIEVHPQGLPAYRVQLPDAAYSLHVQNSLEFVSERIRLRYEALNRPAQIRQLDLASGVQVVLKQTPVLGPFDADAYVSQRLWATAPDGTQVPISLVVKREALGKPVPLYLYGYGAYGESLDPWFSHSRLSLLDRGVAFAIAHVRGGGELGEAWYRAGKQEHKHNTFSDFIACAEHLIAQGFTSADQLAISGGSAGGLLIGAVLNQRPELFKVAIAEVPFVDVLNTMLDPELPLTVTEYDEWGNPEEPDVYDRIRAYAPYENVRAQAYPAMLVIAGYNDSRVQYWEAAKWVAKLRATKTDENPLLLKTELGAGHGGMSGRYQGLRDVALEYAFVLKVLGVAPGPT0020980_1965DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020980-ptrB-K01354NANA
D1-35_01814495hypothetical proteinATGGACACCATGACCGAGAACGATTATCTGATTGCCTGGGGTCTCTACGCCTTCGCCGCCCTCGGCTGCCTCCTGGTGTGGATGCGCATGACCCGCTTCATGTGGCGCTGGTTGCGCGAGCCGCTGCGGCTGCTGATGGCGGTGTTGCTGTTCAGCCCGACCATCGTCGACCCGGTGAAGGAAAAGGTCGCCCCGGCGCTGGCCATTGCCGCCCTGGACTTGCTCTTCAAGGTTGGCAACAACGTCTGGCGCGCAGCGTCCGACCTGCTCATGTACGCCATGATCGCCTTCGGCCTCTATCTGGTCCTGGTGCTGATCCGTATTCCTGTCGAACGCGCGGCCAAGGCTCGCCAGGAGCGGGCCGCCGCAGCCAAAGCGGCCGCCGCTGCCGAGCCTGACGACGAGCCTGCGTTCGGCGTGGCCGGTGACGACCGTTATGGTCGCCCACCCGTGCCGAGCAATCCCCAGCGTTCGCGTATCGAACCGCGCCTGTAAMDTMTENDYLIAWGLYAFAALGCLLVWMRMTRFMWRWLREPLRLLMAVLLFSPTIVDPVKEKVAPALAIAALDLLFKVGNNVWRAASDLLMYAMIAFGLYLVLVLIRIPVERAAKARQERAAAAKAAAAAEPDDEPAFGVAGDDRYGRPPVPSNPQRSRIEPRLNANANANANA
D1-35_01815777yafJCOG0121Putative glutamine amidotransferase YafJATGTGTGAGTTATTGGGCATGAGCGCCAATGTGCCGACCGATATCGTCTTCAGCTTCACCGGGCTGATGCAGCGCGGCGGCAAGACCGGGCCGCACCGCGACGGCTGGGGCATCGCTTTTTATGAAGGCCGTGGCCTGCGCCTGTTCCAGGACCCGGCCGCCAGCAGCGAGTCGGAAGTGGCGAACCTGGTGCAACGCTATCCGATCAAGAGCGAAGTGGTCATCGGTCACATCCGCCAGGCCAACGTCGGCAAGGTCTGCCTGTCCAACACCCACCCGTTCGTGCGGGAGTTGTGGGGGCGCAACTGGTGTTTCGCCCACAACGGCCAGCTCGCCGATTTCCAGCCGGGCGTGAGCTTCTACCGCCCAGTGGGCGATACCGACAGCGAGGCGGCGTTCTGCGACCTGCTCAACCGCGTGCGCCAGGCTTATCCTGAGCCGGTGGAGGTCGAGCAGTTGCTGCCGGCCTTGATCGAGGCGTGCGGCGAATACCGCAGCAAGGGCGTGTTCAACTGCCTGCTCAGCGACGGCGACTGGCTGTTCTGCTATTGCTCGACCAAACTGGCGCAGATCACCCGGCGCGCACCGTTCGGCCCGGCGCGGCTCAAGGATGTGGACGTGATTGTCGACTTCCAGGCCGAAACCACGCCCAACGACGTGGTCACGGTGATTGCCACCGAACCCTTGACCGAAAACGAAACCTGGACCCGCTACGAACCGGGCCAATGGAGCCTGTGGCGACGCGGCGAATGCGTCAGCCACGGCCGGACCGAATAAMCELLGMSANVPTDIVFSFTGLMQRGGKTGPHRDGWGIAFYEGRGLRLFQDPAASSESEVANLVQRYPIKSEVVIGHIRQANVGKVCLSNTHPFVRELWGRNWCFAHNGQLADFQPGVSFYRPVGDTDSEAAFCDLLNRVRQAYPEPVEVEQLLPALIEACGEYRSKGVFNCLLSDGDWLFCYCSTKLAQITRRAPFGPARLKDVDVIVDFQAETTPNDVVTVIATEPLTENETWTRYEPGQWSLWRRGECVSHGRTENANANANANA
D1-35_01816543hypothetical proteinATGTTGCTCAGTTATCTACGGTTGGTGTTGTTCGCGGTGGGCCTGCTGGTCGGGGTCCAGGTGCCGGGCTTCGTCAATGATTACGCCAAGCGGGTCGAGGCCCACCTGATCGAGGCGCAGACTGGCCTGCAGGGGTTCCAGGGCACCGCCAACCAGTTCTTCAAGGGTGACATGCAGGCCCTGGTGGCGCATTACCGCGCCAGTGAAGACCCGATCTTTCGCAGCGATGCCGACAGCCTGAACACCTTGCTCGTGCGCCAGCAGGCTTTGGACAAACAGTTCCAGGCAATGCAGGGCCCGTGGTACATCCGCCTGCTGCAGGTGGCCCTGGCCGCCGATCCGGACATCCGCAAGGAAACCTGGAACGGCTACAGCTACCAGATCCTGCTGACCCCCGAGGCGATGATCTGGGGCATCAGCGGCGCGATGTTGCTGTCGTTCGGCCTGGAATGCCTGTTCCGCCTGATCGACTGGGTGGTGCTGGGTGGCAAGCGCCTGCGCCAGAGCCGGCCGATCGAAGAGCGTGACCTGCGCGGACTGTAGMLLSYLRLVLFAVGLLVGVQVPGFVNDYAKRVEAHLIEAQTGLQGFQGTANQFFKGDMQALVAHYRASEDPIFRSDADSLNTLLVRQQALDKQFQAMQGPWYIRLLQVALAADPDIRKETWNGYSYQILLTPEAMIWGISGAMLLSFGLECLFRLIDWVVLGGKRLRQSRPIEERDLRGLNANANANANA
D1-35_018171287naiP_1Putative niacin/nicotinamide transporter NaiPATGAGTGCACCCGACACGCTCGGCGTCCCCCAACCCCAGGCCCGCTCCGGACCGTTCGATTGGTATCGCAACATCAACCAGCAGGAACGGCGTACCTTCTGGAGCTGCAAGATCGGTTACGCCCTGGACGGCATGGACACCCAGATGCTCAGCTTCGTGGTGCCGACGCTCATCGCGATGTGGGGCATCAGCACGGGTGAAGCGGGGCTGATTCACACCAGCACCTTGATCGCTTCGGCCATCGGCGGCTGGGTGGCGGGCATTCTCTCGGACCGCATCGGTCGGGTGCGCACGTTGCAATTGACGGTATTGTGGTTCGCCTTCTTCACCTTCCTCTGCGGTTTCGCCCAGAACTACGAACAACTGTTGATCGCCCGCACGCTGATGGGCTTCGGCTTCGGCGGCGAGTGGACCGCCGGCGCCGTGTTGATGGGCGAAGTGATTCGCGCCAAGGACCGTGGCAAGGCGGTCGGCATGGTGCAATCGGGCTGGGCCCTGGGCTGGGGCATGACGGCGATTCTGTATGCGCTGCTGTTCTCGGTGCTGCCGCCGGAAGACGCCTGGCGCGCATTGTTCATCCTCGGCATCGTGCCGGCGGTGTTCGTGATCTTCGTTCGCCGGCTGGTCAAGGATCCGGAAGTCTATAACCAGGCCAAGGCCCGGCTGACGCCCGAGAACCCGGCGAAGTTCTACGAGATTTTTGCCCCTGGCATTCTGTTCACGACGATTCGAGCCTCGCTGCTGACCACTGGCGCGCTGGGTGGCTACTACGCCATCACCTCCTGGCTGCCGACCTTCCTGAAAAACGAGCGCGGCTTGAGCGTCCTGAGTACCGGCGGCTACCTGGCGATGGTGATCGTCGGCTCGTATGTGGGTTACGTCATCAGCGCCTATCTGTCCGACATCCTCGGGCGCAAGAAGAATTTCGTCCTGTTTGCCGTCGGTTCCTTCACTATCGTGCTGCTGTATACCCAGGTGCCGGTGAGCAACAACGTGATGCTGTGGCTGGGCTTCCCCTTGGGCTTCTTCGCTTCGGGCATGTTCAGCGGCATGGGGTCGTTCCTCACCGAACTGTTCCCCACGCGCATCCGCGGATCGGGGCAGGGCTTCTGCTACAACATTGGCCGCGCGGTGGCGGCGCTGTTTCCGCTGTTGATCGGTATCCTGAGCCAGAAGGTGCCGCTGAGCGTCGGCATCGGAGCCTTCGCGGCGGTGTCCTATGGCGTGGTGATCCTGGCGGCCCTGAGCCTGCCGGAGACTCAGGGCAAGCAGTTGGAAGCCGACTGAMSAPDTLGVPQPQARSGPFDWYRNINQQERRTFWSCKIGYALDGMDTQMLSFVVPTLIAMWGISTGEAGLIHTSTLIASAIGGWVAGILSDRIGRVRTLQLTVLWFAFFTFLCGFAQNYEQLLIARTLMGFGFGGEWTAGAVLMGEVIRAKDRGKAVGMVQSGWALGWGMTAILYALLFSVLPPEDAWRALFILGIVPAVFVIFVRRLVKDPEVYNQAKARLTPENPAKFYEIFAPGILFTTIRASLLTTGALGGYYAITSWLPTFLKNERGLSVLSTGGYLAMVIVGSYVGYVISAYLSDILGRKKNFVLFAVGSFTIVLLYTQVPVSNNVMLWLGFPLGFFASGMFSGMGSFLTELFPTRIRGSGQGFCYNIGRAVAALFPLLIGILSQKVPLSVGIGAFAAVSYGVVILAALSLPETQGKQLEADNANANANANA
D1-35_01818753pxpA3COG15405-oxoprolinase subunit A 3GTGAACCGCCTGCTACTGAACTGCGACATTGGCGAAAGCTTCGGCAACTGGACCATGGGTCTGGACGCCGAGGTGATGCCCTTTATCGATTGCGCCAACATCGCCTGCGGCTTTCATGCCGGCGACCCGAGCATCATGCGCAAGACCGTCAGCCTCGCCCTGAGCCACGGCGTACGGATCGGCGCGCACCCGGCCTATCAGGACCTGGCGGGCTTCGGCCGCCGCTCCATGGCCTATGGCGCCCAGGAGCTGCAAGACCTGCTGCACTACCAGATCGGCGCCCTGGACGGTATCTGCCGGGCCCAGGGTGGACAGGTCAGCTACGTCAAACCTCACGGTGCGATGTACAACGACATGATGGCCAACCCGGCGCAACTGCGTGCTGTTATCGAGGCCATCGCCGCGTATGACCGGCAGTTGCCGCTGATGCTGCTGGCGACCCGGGACAACAGCGCCGCCCAGGCCCTGGGCGACGAATACGGTGTGACCCTGTGGTTCGAAGCCTTCGCCGACCGGGCCTATGACAGCGCCGGTCGCCTGGTCTCGCGGCAGTTGCCGGGGGCGGTGCATCACGATTCCGAGGTGATCATCGGGCAGGCGCTGACCATTGCCCGCGGCGACGCGCTGACGGCCAGCGACGGCAGCGCGTTGAATCTGCACGCCGATACGTTGTGCGTGCACGGCGACAACGCCAGCTCCGTGGCGGCCGTGCAGCGTATCCGCGAGGCCCTCGACCGGCAGAGCGCGCCATGAMNRLLLNCDIGESFGNWTMGLDAEVMPFIDCANIACGFHAGDPSIMRKTVSLALSHGVRIGAHPAYQDLAGFGRRSMAYGAQELQDLLHYQIGALDGICRAQGGQVSYVKPHGAMYNDMMANPAQLRAVIEAIAAYDRQLPLMLLATRDNSAAQALGDEYGVTLWFEAFADRAYDSAGRLVSRQLPGAVHHDSEVIIGQALTIARGDALTASDGSALNLHADTLCVHGDNASSVAAVQRIREALDRQSAPNANANANANA
D1-35_01819705pxpBCOG20495-oxoprolinase subunit BATGAAACCACGCGTGGAAGTGGTGGCGGTGGACTGCCTGATGGTGCGCCTGTTCGACGAAATCGCCGAGGCCAACATGCCGTGGATGCTCGCTGCCAGCGCGCGCCTGCGCGCGGTTTTCGCCGATGATCTGATTGATCTGGTGCCGTCCTACACCACCCTGATGGTGCATTACGATTTGCTCGCCCTGACTCCGAACCAGGCCCGCGAGTTGATCGGCGAAGCGCTGAACAACCTCTCGCCGGATGCCCGGTCCGCCGGGCAATGCCATGTGCTGCCGGTGTGGTACGACCCAAGTGTCGGGCCGGAGCTGGACCTGCTGGCGAGCCGCAGCGGGTTGACGGTGACGCAAGTCATCCAGCGTCACAGTGAGCGGGAATATCAGGTGTTCGCCCTGGGCTTCGCGCCGGGATTCGCTTTCATGGGGCTGGTGGACGAGGAACTGGCCGCACCGCGACTCGACACCCCACGCAAACGGGTCGCGGCGGGCAGCGTCGGAATCGCCGAGCGCCAGACCGCCGCGTATCCGGTGGTATCGCCTGGCGGCTGGAACCTGATCGGCCGCACCCCGGCCAAATTGTTCGATCGCGAGCGCGATGGCTACAGCCTGATGCAACCCGGCGACACGGTGCGTTTTGCCGCTGTCGATCACGCTGAGTTCATTGCCCTGGGCGGCGATGACACACCGTTGGAGGCACAGGCATGAMKPRVEVVAVDCLMVRLFDEIAEANMPWMLAASARLRAVFADDLIDLVPSYTTLMVHYDLLALTPNQARELIGEALNNLSPDARSAGQCHVLPVWYDPSVGPELDLLASRSGLTVTQVIQRHSEREYQVFALGFAPGFAFMGLVDEELAAPRLDTPRKRVAAGSVGIAERQTAAYPVVSPGGWNLIGRTPAKLFDRERDGYSLMQPGDTVRFAAVDHAEFIALGGDDTPLEAQANANANANANA
D1-35_01820921pxpCCOG19845-oxoprolinase subunit CATGAGCCGTCTGTTGATCGAGGCCAGCACAGCGCTGTGCCTGTTGCAGGATAATGGCCGCTTCGGCGTCAGGCACCTGGGCGTGACCCAGGGCGGCGCGGCGGACTGGCTGTCGATGAGCTGGGCCAACTGGATGCTGGGCAACGCCCCGGATGCCGCAGTGGTGGAAATCACCCTCGGCGGTTTTACCGTGGTGGCCGAGGAGGATTGCGTGCTGGCGCTGGCCGGTGCGGACCTGGGCGCGCGGATAGACGGGCAGGGCGTGGCGTCGTGGCGATTCTTCAGCCTGCGCCAAGGCCAGGTGTTGGCGTTCACTCAGCCGGTGCTCGGTGCCCGCGCCTACCTGGCGGCTCCCGGTGGTTTTGATGCGCCTGCGGTGCTGGGCAGCCGGGCGACGGTGGTGCGCGAAGAACTCGGTGGCCTGGATGGGCGGGGGCGGGCGCTGAGTCGCGGTGAGCAGCTGAGTTATTCAGGCTCGGCAACGCCTCGGCCGATGCCCCACAGGCGGATTCCGGATTTTCAGCAGCTGCAGCCGCTGGACCTGATCCTCGGTGCGCAAAATGGCGCGTTCAGCGGACGCAGCCTGTTCGATGCCTTCAATACACCATGGACGCTGGACAGTCGCGCCGATCGCATGGGCATGCGCTTGCTCGGTCCGGCGCTGGAATACCAGGGCCCAGCGATGATTTCCGAAGGCATTCCGCTCGGCGCCGTGCAGGTGCCGCCGGACGGCCAACCGATCGTGCTGCTCAATGATCGGCAGACCATCGGCGGTTATCCGCGCCTGGGCGCCTTGACGCCGCTGTCCCTGGCCCGGTTGGCGCAATGCCTGCCAGGGACGCAGCTGCGGTTGCGGCCGGTGGTGCAGGCCGTTGCGCATCGGCAGCAGGTGGAGTGTATGCGCAGTTTTCTCGGCCGCTAAMSRLLIEASTALCLLQDNGRFGVRHLGVTQGGAADWLSMSWANWMLGNAPDAAVVEITLGGFTVVAEEDCVLALAGADLGARIDGQGVASWRFFSLRQGQVLAFTQPVLGARAYLAAPGGFDAPAVLGSRATVVREELGGLDGRGRALSRGEQLSYSGSATPRPMPHRRIPDFQQLQPLDLILGAQNGAFSGRSLFDAFNTPWTLDSRADRMGMRLLGPALEYQGPAMISEGIPLGAVQVPPDGQPIVLLNDRQTIGGYPRLGALTPLSLARLAQCLPGTQLRLRPVVQAVAHRQQVECMRSFLGRNANANANANA
D1-35_018211179hypothetical proteinATGCTGCTTAACCTGTTCAATGAGATGCGCGCCGCCAAGGTGCCGGTGTCGGTGCGCGAACTGCTGGACCTGATCAACGCGCTGAAACAGCGGGTGATCTTCGCCGACATGGACGAGTTCTATTACCTGTCCCGGGCCATCCTGGTGAAGGACGAACGGCACTTCGACAAGTTCGACCGGGCGTTCGGCGCTTACTTCAATGGCCTGGAAAAACTTGATGATCATCTGCAGGCGTTGATTCCCGAGGACTGGTTGCGCAAGGAGTTCGAGCGCTCCCTGACCGATGAGGAACGGGCACAGATCCAGTCCCTGGGCGGTCTGGACAAGCTGATCGAAGAGTTCAAGAAGCGTCTGGAAGAACAGAAGGAACGCCACGCCGGCGGCAACAAGTGGATCGGCACTGGCGGCACCAGCCCGTTCGGTTCCGGTGGCTTCAACCCCGAAGGTATACGGGTCGGCGACGCTGGCAAGCGCCAGGGCAAGGCCGTGAAAGTCTGGGACCAGCGCGAGTACAAGAACCTCGACGACCAGGTGGAACTGGGCACCCGCAATATCAAGATCGCCCTGCGCCGCCTGCGCAAGTTTGCCCGCCAGGGCGCGGCCGAAGAGCTGGACATCGACGGCACCATCGATCACACCGCCCGGGACGCTGGCCTCTTGAACATCCAGATGCGCCCGGAGCGACGCAACACCGTCAAGCTCCTGCTGCTGTTCGACATCGGCGGCTCGATGGACGCCCATGTGAAGATCTGCGAGGAGCTGTTCTCGGCCTGCAAGACCGAGTTCAAGCACCTGGAGTATTTCTACTTCCACAACTTCGTCTACGAATCGGTGTGGAAGAACAACCTGCGTCGCACCTCGGAGCGCACGTCGACCCAGGACCTGCTGCACAAATACGGCGCCGACTACAAAGTGATCTTCATCGGCGACGCGGCCATGGCCCCTTACGAGATCACCCAGGCCGGCGGCAGCGTCGAGCACTGGAACGAAGAAGCCGGTTACGTGTGGATGCAGCGCTTCATGGAGAAGTACAAGAAGCTCATCTGGATCAATCCGTACCCGAAAGACACCTGGGGTTACACCGCCTCGACCAATATCGTCCGTGAGTTGGTGGAGGACCGGATGTATCCGCTGACGTTGCGAGGGTTGGAGGAAGGGATGCGGTTTCTTTCCAAATAAMLLNLFNEMRAAKVPVSVRELLDLINALKQRVIFADMDEFYYLSRAILVKDERHFDKFDRAFGAYFNGLEKLDDHLQALIPEDWLRKEFERSLTDEERAQIQSLGGLDKLIEEFKKRLEEQKERHAGGNKWIGTGGTSPFGSGGFNPEGIRVGDAGKRQGKAVKVWDQREYKNLDDQVELGTRNIKIALRRLRKFARQGAAEELDIDGTIDHTARDAGLLNIQMRPERRNTVKLLLLFDIGGSMDAHVKICEELFSACKTEFKHLEYFYFHNFVYESVWKNNLRRTSERTSTQDLLHKYGADYKVIFIGDAAMAPYEITQAGGSVEHWNEEAGYVWMQRFMEKYKKLIWINPYPKDTWGYTASTNIVRELVEDRMYPLTLRGLEEGMRFLSKNANANANANA
D1-35_01822846hypothetical proteinATGAAGTTCGAAGGCACCCGCGCCTACGTGGCCACCGATGACCTGAAACTGGCGGTGAACGCCGCCATCACCCTGGAACGGCCGTTGCTGGTCAAGGGCGAACCGGGCACCGGCAAGACCATGCTGGCCGAACAACTGGCGGAGTCCTTCGGCGCGCGCCTGATCACATGGCACATCAAGTCCACGACCAAGGCCCACCAGGGCCTGTACGAATACGATGCGGTCAGCCGCCTGCGGGATTCACAGCTGGGCGTGGACAAGGTCCACGACGTGCGCAACTACTTGAAGAAGGGCAAGCTCTGGGAAGCGTTCGAGTCCGAAGAGCGGGTCATCCTGCTGATCGACGAAATCGACAAGGCCGACATCGAGTTCCCCAACGACTTGCTGCAGGAACTCGACAAGATGGAGTTCTACGTCTACGAGACGGACGAAACCATCAAGGCCAAGCAGCGCCCGATCATCATCATTACCTCCAACAACGAAAAGGAACTGCCGGACGCCTTCCTGCGCCGCTGCTTCTTCCATTACATCGCCTTCCCCGACCGCGCCACCCTGCAGAAAATCGTCGACGTGCACTACCCGGACATCAAGAAAGACCTGGTCAGCGAAGCGCTGGACGTGTTCTTCGACGTGCGCAAGGTACCGGGCCTGAAGAAAAAACCTTCCACCTCCGAGCTGGTGGACTGGCTCAAGCTGCTGATGGCCGACAACATCGGCGAAGCGGTGCTGCGCGAGCGTGATCCGACCAAGGCTATCCCGCCGCTGGCCGGCGCCCTGGTCAAGAACGAACAGGACGTGCAATTGCTCGAGCGCCTGGCGTTCATGAGCCGTCGCGGCACTCGCTGAMKFEGTRAYVATDDLKLAVNAAITLERPLLVKGEPGTGKTMLAEQLAESFGARLITWHIKSTTKAHQGLYEYDAVSRLRDSQLGVDKVHDVRNYLKKGKLWEAFESEERVILLIDEIDKADIEFPNDLLQELDKMEFYVYETDETIKAKQRPIIIITSNNEKELPDAFLRRCFFHYIAFPDRATLQKIVDVHYPDIKKDLVSEALDVFFDVRKVPGLKKKPSTSELVDWLKLLMADNIGEAVLRERDPTKAIPPLAGALVKNEQDVQLLERLAFMSRRGTRNANANANANA
D1-35_01823297hypothetical proteinATGTTGACTCAGTCTCGGCGTCTTGCCAGTATTGCCTATCGCCAAATCGGCGATACATTCGATGGCATGTCTACTAAATATCGATTCAGAGATACCTATCGCATCCAATTGCGGGAAAGGGATCATCCACCTCCCCATGTCCACCTCACCGGTGGCGGAGTGGATGTCGTCCTGAGTCTGGAAACCGTTGAAGTCATGATGGGCCGCGCTCCGCCATTGATTATCAAGGAAGCGCTGGACTGGGTCCGGGCCCATCAGGCGCAACTGCTGGAGGATTGGCAACGATGCTACCCATGAMLTQSRRLASIAYRQIGDTFDGMSTKYRFRDTYRIQLRERDHPPPHVHLTGGGVDVVLSLETVEVMMGRAPPLIIKEALDWVRAHQAQLLEDWQRCYPNANANANANA
D1-35_01824501hypothetical proteinATGCTACCCATGAAACGGCCGCGGCTAATGGCCGTGCAGCCTTTATTGCCGTTCAGTCTCGAACTGACATTCATCGACGGTCAGCAACTGAGGCTGGACTTGAGCGCCGATGTGCAAAGTTATCCGGGCTTGCAGCCATTGCTTGAAGACGGTGCGTTTGGTGGCGCAGCCCTGGGCGACGACGGCTGGAGTGTGGAGTGGCCGGACCTGGATATCCAGATCGGCGCCGACACCTTGTATTTCAACGCATTGGCCCAGAACGCCGCGGATGAAAACACCCGTATTTTCATCGATTGGCGCGCCCGAACCGGGTTGCCATTGAACAAGGCGGCCGAAGCGCTGGGGGTCAGTCCTCGCAGTATCACTCGCTACAGTAGCGGCCGTGAGGCGGTACCACGATCGCTGGCTCTTGCATGCCTGGGCTGGGACTCTCTGCAGCGCGGTACGGGCCGGGCGGTGGCGGAGCAAAAAGGTCGCTACGTTGTCACTCCCAAGACCTAGMLPMKRPRLMAVQPLLPFSLELTFIDGQQLRLDLSADVQSYPGLQPLLEDGAFGGAALGDDGWSVEWPDLDIQIGADTLYFNALAQNAADENTRIFIDWRARTGLPLNKAAEALGVSPRSITRYSSGREAVPRSLALACLGWDSLQRGTGRAVAEQKGRYVVTPKTNANANANANA
D1-35_018251077hypothetical proteinATGAAGCGTCGATACAGTTGGCCACTGTGGGCCTTCGTCGCCATCGTTGCACTGCTGGTGGCCGTGCATTTCGCGCTGCCTTATCTGGTGCGCGACTACCTGAACGATAAATTGGCGGACATGGGCGACTACCGTGGCCAGGTCAGCGATGTCGACCTCGCGCTCTGGCGCGGCGCCTACCGGATCAATGGCCTGAAAATCGTCAAGGTCGATGGCAAGATCCCGGTGCCATTCGTCGACGCGCCGCTGGTCGACCTGTCCGTGAGCTGGCACTCGCTCTGGTATGACCATGCGGTGGTCGCCGCCGTGGAGTTCACCCATCCCGAGGTCAACTTCGTTGACGGCGGGCCCAACCGGCAGAACTCCCAGACCGGCCGTGGCACCAATTGGCGTGAACAATTGAGCAAACTGATGCCCATCACCCTGAACGAGGTGCGGATCAGCGACGGCAAGGCCACGTTTCGCAACTTCAACTCCAAACCACCGGTCAATCTGCGAGCTACCAACGTCAACGCCAGCTTTTATAACCTGACCAATGTGGTCGACACCGAAGGCAAGCGCGACGCCCGTTTCGAAGGCAAGGCCCTGGTGGCCGAGCATGCGCCACTGGAAGTCCAGGCAACCTTCGACCCATTGAGCGACTTCGAGGATTTCGATTTCCGCCTGCGCGCCACCAACATCGAGCTCAAGCGCCTGAACGACTTTGCCGCGGCCTATGGCAAGTTCGACTTCAACGCCGGCCACGGCGACCTTGTAGTCGAGGCCGAAGCCGACAACGCCCGGCTCAGCGGTTACATCAAGCCACTGCTTCGCGATGTGGACGTGTTCGACTGGCAACAGGACGTCGAAAACAAGAACAAGAACATCTTCCGTTCGGTCTGGGAAGCCTTGGTCGGCACGGGCGAAACCGCCCTGAAAAACCAGAGCAAGAACCAGTTCGCCACTCGCGTGGAGCTCAGCGGCAACGTGCACCAGCAGAACATCAGCGCCTTCGAAGCCTTCCTGCAAATTCTGCGCAACGGTTTCGTCCAGGCCTTCAATGCCCGTTATGAACAGCCGCCGCCCTCCAAAGACTAGMKRRYSWPLWAFVAIVALLVAVHFALPYLVRDYLNDKLADMGDYRGQVSDVDLALWRGAYRINGLKIVKVDGKIPVPFVDAPLVDLSVSWHSLWYDHAVVAAVEFTHPEVNFVDGGPNRQNSQTGRGTNWREQLSKLMPITLNEVRISDGKATFRNFNSKPPVNLRATNVNASFYNLTNVVDTEGKRDARFEGKALVAEHAPLEVQATFDPLSDFEDFDFRLRATNIELKRLNDFAAAYGKFDFNAGHGDLVVEAEADNARLSGYIKPLLRDVDVFDWQQDVENKNKNIFRSVWEALVGTGETALKNQSKNQFATRVELSGNVHQQNISAFEAFLQILRNGFVQAFNARYEQPPPSKDNANANANANA
D1-35_01826975cysKCOG0031Cysteine synthase AATGAGTCGTATATACGCTGACAACGCCCATTCCATCGGCAATACGCCACTGGTGCAGATCAACCGCATCGCCCCGCGCGGCGTGACCATCCTGGCGAAGATCGAAGGGCGCAACCCGGGTTATTCGGTCAAGTGCCGGATCGGCGCAAACATGATCTGGGACGCTGAAAGCTCAGGTCGTCTCAAGCCCGGGATGACCATCGTCGAGCCAACCTCGGGCAATACCGGCATTGGCCTGGCGTTCGTGGCCGCCGCCCGTGGCTACAAGCTGATGCTGACCATGCCGGCGTCCATGAGCATCGAGCGGCGCAAGGTGCTCAAGGCGCTGGGCGCGGAGCTGGTGCTCACCGAGCCGGCCAAGGGCATGAAGGGCGCCATCGAGAAGGCCGCCGAGATCCTCGCCAGCGACCCGTCGAAATATTTCATGCCGCAGCAGTTCGATAATCCGGCGAACCCGGCGATCCACGAAAAAACCACCGGTCCGGAAATCTGGAACGATACCGATGGCGCGGTGGATGTGCTGGTCGCGGGCGTGGGCACGGGTGGAACCATTACCGGGGTCTCGCGGTATATCAAGAACACCTGTGGCAAACCGATCCTGTCGGTGGCGGTGGAGCCCGAGGCGTCGCCGGTGATTACCCAGGCGATGGCGGGGCAGGAAATCAAGCCGAGCCCGCACAAGATCCAGGGGATCGGTGCGGGTTTTGTACCGAAGAACCTCGATCTGTCGATTGTCGATCAGGTCGAGCGCGTCACCGATGAGGAGTCCAAGGCCATGGCCCTGCGCCTGATGCAGGAAGAGGGCATCCTCTGCGGCATTTCCTGCGGCGCGGCCATGGCCGTGGCGGTGCGCCTGGCGGAAAAACCGGAAATGCTGGGCAAGACGATCGTGGTGATCCTGCCTGATTCGGGCGAACGGTACCTGTCGAGCATGTTGTTCAGTGACCTGTTTACCGAGCAGGAGACTCAGCAGTAAMSRIYADNAHSIGNTPLVQINRIAPRGVTILAKIEGRNPGYSVKCRIGANMIWDAESSGRLKPGMTIVEPTSGNTGIGLAFVAAARGYKLMLTMPASMSIERRKVLKALGAELVLTEPAKGMKGAIEKAAEILASDPSKYFMPQQFDNPANPAIHEKTTGPEIWNDTDGAVDVLVAGVGTGGTITGVSRYIKNTCGKPILSVAVEPEASPVITQAMAGQEIKPSPHKIQGIGAGFVPKNLDLSIVDQVERVTDEESKAMALRLMQEEGILCGISCGAAMAVAVRLAEKPEMLGKTIVVILPDSGERYLSSMLFSDLFTEQETQQPGPT0002810_3392DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002810-cysK-K01738NANA
D1-35_01827999hypothetical proteinATGGCCAGCCGCCGCGTCGGGCTGATGGCGCTGCGCAATTCAAACAAGGAGTTGAAAGAAATGAGCGTTTCGTTTGTCGCCAAGGCCTCGGTGTTGCTGCTGTTTGTGGGCAGTACGCTTTTTGTGCATTTGCGTGGCAAGGCGCGTCTGCCGGTGTTGCGCCAGTTCGTCAACCACTCGGCGTTGTTTGCCCCTTACAACGCCTTGATGTACTTGTTTTCCAAGGTGCCCTCCAAACCCTACCTGGATCGCCGCGAATTTCCGGAATTGGATGTGCTCAAGGAAAACTGGCAAGTGATCCGCGACGAAGCCATGCATCTTTTCGACGAGGGTTATATCCGCGCCGCCGAGAAAAACAACGACGCCGGTTTTGGTTCGTTCTTCAAGAAAGGCTGGAAGCGCTTCTATCTCAAGTGGTACGACAAGCCGCTGCCATCGGCGGAGTTGTTGTGCCCCCAGACCGTCGAGCTGGTCAATCGGATTCCCAACGTGCGGGGCGCGATGTTTGCCCTGTTGCCGGGGGGCAGCCATCTCAATCCCCATCGTGACCCGTTCGCCGGTTCGCTGCGCTATCACCTGGGGCTGTCCACGCCCAACTCCGATGATTGCCGGATCTTCGTCGACGGGCAGGTCTACGCCTGGCGCGACGGCGAAGATGTGATGTTCGATGAAACGTATGTGCACTGGGTCCGCAATGAAACAGACCAGACGCGCGTGATCCTGTTCTGCGATATCGAGCGTCCCCTCAAAAACCCATTGATGACTCGTTTCAATCGCGCCATCAGTGCCTTCCTCGGCCGCGCCACCGCGCCGCAGAACCTGGATGACGAGCGCGTCGGCGGCATCAACCGCGCCTATGCCTGGAGCAAGACGTTCAGCGACGGCATCAGCGGCCGGGTCAAGCAATTCAAGCGCCGGCATCCCAAGGCCTATCGGGTGATGCGACCGGTGTTGGCGGTGGCTGTGTTGACGGCGCTGGGCTACTGGTTGTTCGTTTAAMASRRVGLMALRNSNKELKEMSVSFVAKASVLLLFVGSTLFVHLRGKARLPVLRQFVNHSALFAPYNALMYLFSKVPSKPYLDRREFPELDVLKENWQVIRDEAMHLFDEGYIRAAEKNNDAGFGSFFKKGWKRFYLKWYDKPLPSAELLCPQTVELVNRIPNVRGAMFALLPGGSHLNPHRDPFAGSLRYHLGLSTPNSDDCRIFVDGQVYAWRDGEDVMFDETYVHWVRNETDQTRVILFCDIERPLKNPLMTRFNRAISAFLGRATAPQNLDDERVGGINRAYAWSKTFSDGISGRVKQFKRRHPKAYRVMRPVLAVAVLTALGYWLFVPGPT0022350_75DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LIPID_A_METABOLISM,PGPT0022350-lpxO-K12979NANA
D1-35_01828864hypothetical proteinATGTTTTCCTTTTCCAAGAACGCCTTATTGGCGACGGCTTCCACGAGCCTGTTCGTTTTGTTGTGGAGCAGCGGAGCGATCTTTTCCAAACTGGGCCTGGCCCACGCGTCACCCTTCGCTTTCCTGCTGATCCGTTTTGCGCTTGCGCTGTGCGCGCTGGTGCTGTTGATCCCGCTGTTGAAGTTCAAGCTGCCGAAGGCTGGCAAGCCGATGCTGTACGCGGCGGCGACCGGCCTGGTGTTGTTGGGTGCCTATCAGATTTTCTATCTGCTGGCGCTGCAATTGAACGTTACGCCCGGTGTGATGGCCACGTTGATGGGCGTACAACCGATCCTCACCGTGGTGCTCATGGAGCGCCAGCGTTCCTGGCAACGGATGTTCGGCCTGGCGCTGGGCCTGGTGGGCTTGATCATGGTGGTGTACCAAGGCATTGGCCTGGCCGGCATGTCGTTGACGGGCATGCTGTGCGGGTTGCTGGCGCTGGTGAGCATGACGGCAGGTTCGATCATGCAGAAGCGCATCACCGACAATCCCCTCGGTACATTGCCGGTGCAGTACCTGGCCGGGCTCTTGCTGTGCGTGGTGTTCGTGCCGTTTCAACCGTTTCACTTCGAGCACAATGCGGGGTTCATCGTGCCGGTGTTGTGGATGGGGCTGGTGGTGTCGGTGTTGGCGACCTTGTTGCTTTACCGCTTGATCGCCCGGGGCAACCTCGTCAACGTCACCAGCCTGTTCTACCTGGTGCCGGCAGTGACGGCGATCATGGACTACCTGGTGTTCGGCAACCGGCTGGCGTTATTGAGCCTGCTGGGCATGGTGCTGATCATCGTCGGGTTGGTGTTTGTGTTCCGTAAGAGCCGCTAGMFSFSKNALLATASTSLFVLLWSSGAIFSKLGLAHASPFAFLLIRFALALCALVLLIPLLKFKLPKAGKPMLYAAATGLVLLGAYQIFYLLALQLNVTPGVMATLMGVQPILTVVLMERQRSWQRMFGLALGLVGLIMVVYQGIGLAGMSLTGMLCGLLALVSMTAGSIMQKRITDNPLGTLPVQYLAGLLLCVVFVPFQPFHFEHNAGFIVPVLWMGLVVSVLATLLLYRLIARGNLVNVTSLFYLVPAVTAIMDYLVFGNRLALLSLLGMVLIIVGLVFVFRKSRNANANANANA
D1-35_01829891IS1595 family transposase ISBsp7GTGAATCTCGTCGACACCCTGCGCTTGCTGTCGCTGGCCGCCATCTGGGGGGCCAGCTTCCTGTTCATGCGCATCATCGCCCCGGTGATTGGCACGATTCCTACGGCTTTTTTCCGCGTTTCCATTGCCTTCGTCGGCCTGCTGGTCATTCTTGCGCTGATGCGTATCGACTGGAATTTTCGCGGCAAGCTGAAAGCGGTGATGGTGCTGGGCCTGATCAACTCGGGCATTCCGGCAACGTTCTATTCCCTTGCCGCCCAGGTGTTGCCGGCCGGTTATTCGGCAATCTTCAACGCCACCACACCGTTGATGGGCGTGCTGATTGGCGGGTTGTTTTTCAGCGAGCAACTCACCGTGGCCAAGGTCAGCGGGGTGTTCCTCGGCCTGTTCGGCGTTGGCATCCTGACCGGTGCCGGCCCGGTGGCATTCGACCACCAGTTACTGATGGGTGCCCTCGCCTGTCTGCTCGCCACCACTTGCTATGGTTTTGCCGGCTTCCTCACCCGTCGTTGGCTCGACCATCAAGGTGGGCTGGACAGCCGCCTCTCCGCCTTGGGCAGTATGTTCGGCGCCACGGTTTTCCTGTTGCCGTTGTTCGGTTACAGCGTCATCAGCCAACCGCCGGCCAGTTGGGGCGGCTGGAGCGTCTGGCTATCGTTGCTGGGGCTGGGCCTGGTGTGTACCGCGCTGGCGTACATCCTGTATTTCCGCTTGCTCAGCTCTATCGGTCCGGTCAAATCCATGACAACGACCTTTTTGATCCCGCCGTTCGGCGTGCTGTGGGGCGCGTTGTTGCTGGATGAGCCGTTGGGGATGGCGCATTTGTATGGCGGGGTGTTGATTGCGGCGGCGTTGTGGCTGGTGTTGAAGCCTGGGGCGTCTAGCCGGTAAMNLVDTLRLLSLAAIWGASFLFMRIIAPVIGTIPTAFFRVSIAFVGLLVILALMRIDWNFRGKLKAVMVLGLINSGIPATFYSLAAQVLPAGYSAIFNATTPLMGVLIGGLFFSEQLTVAKVSGVFLGLFGVGILTGAGPVAFDHQLLMGALACLLATTCYGFAGFLTRRWLDHQGGLDSRLSALGSMFGATVFLLPLFGYSVISQPPASWGGWSVWLSLLGLGLVCTALAYILYFRLLSSIGPVKSMTTTFLIPPFGVLWGALLLDEPLGMAHLYGGVLIAAALWLVLKPGASSRNANANANANA
D1-35_018301722aceKCOG4579Isocitrate dehydrogenase kinase/phosphataseATGTCGCAGCCATGGCCCGCCACCGATATCGCCCGTTCGATTCTCGACGGCTTCGATGATTACCGTGAGCAATTCCGGCACATCACCGATGGCGCCCGTGCCCGGTTCGAGCAGGCGCAGTGGCAGGAGGCGCAAGCGGCGTCGGCGGCGCGCATCAACTTGTATGAAGAAAAAGTCTTCGAAACCGTGGCCAGGCTGCGCAACACCTTCGATGCCGAGGCCTTGATGGATGTCGGTTGCTGGCCGCTGGTGAAAAGCGCCTATATCAGCCTGATCGACCTGCGTTTTGACGATGAGCTGTCGGAAACCTGGTACAACTCGATCTTCTGCGGCCTGTTCAGCCATGACCTGATCAGCGACGGCACCATGTTCATCCACACCACCCGGCCGAGCCTGCGCCGTGCCCGTGCGGCCCAGACTCGGACCTACAAACCCCAGGGGCAACTGGACAGGATGCTGGCGGCGATTTTCGCCGACTATCGCTTCAGCGAGGACTACGCCGACCTGCCCGGCGACCTGCAACGCCTCGAAAGCCAACTGCGCGAGAACCTGCCGGATTGGGTCTGCAAGGATCCGGAGTTGACGGTCGAGTTGTTCTCCTCGGTGCTCTACCGCAACAAGGGCGCCTACCTGGTGGGGCGCATCTACACCCGTGACGACCAATGGCCGCTGGTGATCCCGCTGCTGCATCGCGAGGGGCGCGGCATCCAGATCGACGCGCTGATTACCGACGAGGCGCAGGTGTCGATCATTTTCTCGTTCACGCGTTCGTATTTCATGGTCGATGTGCCGGTGCCGGCGGAATTCATCGGTTTCCTCAAGCGCATCCTGCCGGGCAAGCACATCGCCGAGTTGTACACGTCCATCGGTTTCTACAAGCACGGCAAATCGGAGTTCTACCGGGCGCTGATCAACCACCTGGCGAATACCGACGACCAGTTCATCATGGCCCCGGGCGTGCGCGGCATGGTCATGAGCGTGTTTACCCTGCCGGGCTTCAACACGGTCTTCAAAATCATCAAGGACCGCTTCTCGCCGTCGAAAAACGTCGACCGGGCCACAGTGATCGAGAAGTATCGACTGGTGAAAAGCGTCGACCGGGTCGGGCGCATGGCCGACACCCAGGAGTTCGCCGACTTCCGTTTTCCCTTGAGTAAATTCGAACCGGCCTGCCTGGAAGAATTGCTGGAAGTGGCGCCGTCCACGGTGTCGGTGGAAGGCGACACGGTGCTGATTCGCCACTGCTGGACCGAACGCCGGATGACGCCGCTGAACCTCTATCTGGAAAACGCCAACGAGGCCCAGGTACGCGAGGCGCTGGAGGATTATGGCCTGGCGATCAAGCAGCTGGCGGCGGCCAATATCTTCCCCGGCGACATGCTGCTGAAGAACTTCGGCGTCACTCGCCATGGTCGCGTGGTGTTCTACGACTACGATGAAATCTGCTTCCTGACCGAAGCCAATTTTCGCCACATCCCGCAGCCGCGTACACCGGAAGACGAGATGGCCTCCGAGCCCTGGTATTCCATCGGGCCGCTAGACGTCTTCCCCGAAGAATTCCCGCCCTTCCTGTTCGCCGATGCCGGGCAGCGCAAGCTCTTCGACCAGTTGCATGGCGAGCTGTACAACGCCGATTACTGGAAGGGCCTGCAAGAGGCGATTCGGGCGGGGAAGGTGATCGATGTGTTTCCGTATCGGCGCAAGGACCTGGACAGCGAATAAMSQPWPATDIARSILDGFDDYREQFRHITDGARARFEQAQWQEAQAASAARINLYEEKVFETVARLRNTFDAEALMDVGCWPLVKSAYISLIDLRFDDELSETWYNSIFCGLFSHDLISDGTMFIHTTRPSLRRARAAQTRTYKPQGQLDRMLAAIFADYRFSEDYADLPGDLQRLESQLRENLPDWVCKDPELTVELFSSVLYRNKGAYLVGRIYTRDDQWPLVIPLLHREGRGIQIDALITDEAQVSIIFSFTRSYFMVDVPVPAEFIGFLKRILPGKHIAELYTSIGFYKHGKSEFYRALINHLANTDDQFIMAPGVRGMVMSVFTLPGFNTVFKIIKDRFSPSKNVDRATVIEKYRLVKSVDRVGRMADTQEFADFRFPLSKFEPACLEELLEVAPSTVSVEGDTVLIRHCWTERRMTPLNLYLENANEAQVREALEDYGLAIKQLAAANIFPGDMLLKNFGVTRHGRVVFYDYDEICFLTEANFRHIPQPRTPEDEMASEPWYSIGPLDVFPEEFPPFLFADAGQRKLFDQLHGELYNADYWKGLQEAIRAGKVIDVFPYRRKDLDSEPGPT0001475_754DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-CITRIC_ACID_BIOSYNTHESIS,PGPT0001475-aceK-K00906NANA
D1-35_018313912hypothetical proteinATGACTGACCAAGCCCCCGCTATCGACAAACTGCTGAAGAACCTCGATCACGCCATGCTCGCCGACCGTCACCGGTTGCGGCGGCAGTTGCTCGAGCTGCGCAAGAAACCCGACGAGGCCAAGCTGGCCCAGTGGGTGACGCGCATGCAGGCATCGTGCGACCAGGTGCTGGCGCGCAAGGCGAGCGTGCCGTCGATTCGCTACGATGACAACTTGCCGATCGCGGCCAAGCGCGACGAGATCAAAGAGGCGCTGCTCAAGCATCAGGTGTTGATCATCGCCGGCGAAACCGGCTCGGGTAAAACCACACAGTTACCGAAAATCTGCCTGGAAATCGGTCGCGGCCAGCATGGCTTGATCGGCCACACCCAGCCACGCCGGATCGCCGCTCGCAGCGTGGCAAGCCGTGTCGCCGAAGAACTCGGCACGCCGCTGGGGGCGTTGGTGGGTTATCAGGTGCGCTTCGAGGACCAGAGCGACGCCAACACCCTCATCAAGCTGATGACCGACGGCATTCTGCTGGCCGAGACCCAGAATGACCGGTACCTCGAACGCTACGACACGATCATCGTCGACGAGGCCCACGAACGCAGCCTCAACATCGATTTCCTGCTCGGCTACCTCAAGACCCTGTTGCCGCGCCGTCCGGACCTGAAGGTGATCATCACTTCGGCGACCATCGACCTGGAACGCTTCTCCAAGCACTTCGATGACGCGCCGATCGTCGAAGTCTCGGGCCGTACCTTTCCAGTGGAGACCTGGTATCGCCCGTTGACGCTGGAGCAGGACGAGGAGGGCAATCGGGTCGAGGACGACTTGACCGTCGACCAGGCGATCCTCGCCACCCTCGATGAAATTGCCGCCCATGAACGCAGCGAGCGGCGCAGCCCCGGCGATGTGCTGGTGTTCCTGCCGGGCGAGCGGGAGATTCGCGACGCGGCGGAGATGCTGCGCAAGGCCCAGCTCAAGCACACCGAAATCCTGCCGTTGTACGCGCGACTGTCGCCGGCCGAACAACAGCGTATCTTCCAGTCCCACCCGGGCCGGCGCGTGGTGCTGGCGACCAACGTCGCCGAAACGTCGCTGACCGTGCCGGGCATCCGCTACGTGATCGACAGCGGCACCGCGCGCATCAGCCGCTACAGCTACCGCGCCAAGGTCCAGCGCCTGCCCATCGAAGCCATTTCCCAGGCCAGCGCCAACCAGCGCAAGGGCCGCTGCGGACGAGTCGAGCCGGGGATTTGCGTGCGCTTGTACAGCGAAGAGGATTTCCTTGGCCGGCCCGAGTTTACCGATCCGGAGATCCTGCGCACCAACCTGGCGGCGGTGATCCTGCAGATGCTGCATCTGCGTCTCGGCGAGATCACTGACTTTCCATTTATCGAGCCGCCGGATGGCAAGGCCATCAGCGACGGTTTCAACCTCCTGCAAGAACTCTCGGCGGTGGACCGCAACAGCCAGCTGACGCCGTTGGGGCGCCAGTTGGCGCGCTTGCCGGTGGACCCGCGCATGGGCCGCATGTTGCTGGAAGCGGCGAAACTGGGCAGCCTCCAGGAAGTCCTGATCGTTGCCAGTGCCATGTCGATCCAGGATCCGCGCGAACGCCCGCCCGAGCGCCAGCAGGCCGCCGACCAGGCCCACGCGCAATGGAAGGACGCGGACTCGGACTTCGCCGGGCTGGTCAATCTGTGGCGCGGCTTTGAAGAGCAGCGCCAGGCCCTGACCGCCAGCCCCCTGCGTAACTGGTGCCGCAAGAACTTCCTGAATTACTTGCGCCTACGCGAATGGCGCGATTCCCATCGCCAGTTGAGCCTGATCTGCCGCGACATGCAGTTGAGCCTCAATAAGGAACCGGCCGATTATCCGAAACTGCACAAGGCGGTGCTCTCGGGCCTGTTGAGCCAGATCGGCCAGAAAACCGAGGACGGCGATTACCTCGGTGCGCGGCAGCGACGCTTTTGGGTCCATCCCTCGTCCGGGCTGGGCAAGAAGCGCCCGCAGTGGCTGATGACCGCCGAGCTGGTGGAAACCACCAAGTTGTATGCGCGCATGGTGGCGAAGATCGAACCGGACTGGATCGAACCGCTGGCCGGGCACCTGATCAAGAAAAACCACTTCGAACCCCATTGGGAGAAGAAGCGCGGGCAGGTGGTGGCTTACGAGCAGATCACCTTGTTCGGGCTGATCGTGGTCGGTCGCCGGCCGGTGCACTACGGGCCGGTGGACCCGGTGGTGTCCCGCGAACTGTTCATCCGCGAGGCGCTGGTGCGTGGCGAAATCCAGTCCCGGGCCAAGTGCCTGAGCGCCAACACCCGATTGCTGGAGCAGCTTGACGAGCTCGAGGCCAAGGCTCGTCGCCGCGACATCCTGGCAGACGAGGAAACCCTCTTCGCCTTCTACGATGCACGCCTGCCCGCCGAGATCCACCAGACCGCGACGTTCGATAGCTGGTACCGGATCAACAGCCAGAAAGACCCGCAGCTGCTGATCATGCGCGAAGAAGACGTGCTCGCTCGCGAGGCCAGCGAGGTGACGGCCAATCTGTATCCCGACACCTTGCGCGTCGGCGACCTGACCTTGCCGTTGAGCTATCACTTCGAGCCCAACCACCCGCGCGATGGCGTGACGCTGCGGGTACCGGCGCCGCTGTTGCCTATGTTGCCGCCGGAGCGCCTGGAATGGCTGGTGCCGGGGATGATCGAGGCCAAGTGCATCGCCCTGGTGCGCAACCTGCCCAAGGCTCTGCGCAAGAACTTCGTGCCGGTGCCGGACTTCGTCAAGGCGGCGCTGCAGCGCATCACTTTCGCCGACGGCTCGCTGCCGCAATCCCTGGGGCGGGAGCTGCTGCGCATGACCGGCGCGCGGGTCAGCGACGAAGCCTGGGCGGAGGCGGCGCAGCAGGTGGAAAGCCATTTGCGCATGAATCTGGAGATCGTCGACGGCCAAGGCAAGTTCCTTGGCGAAGGCCGCGATGTTGCTGAGCTGACCGCGCGTTTTGCCGAAGCCAGCCAGGCGGCCCTGGCCGTGCCACAAACGGCGAAGAGCCAGGAACCGGTGGAGGCGAAAGTCTTCGCGCCGGTGGCGGAAAAAACCCAACAGAAGATCGCCGGGCTGTCGATGACGGTGTACCCGGCGCTGGTGGAAGAGGGCGGCGTCGTCAAGGAAGGGCGTTTCCCGACCCCGGCCGAAGCCGAGTTCCAGCATCGCCGCGCCTTGCAACGCTTGCTCATGCAGCAACTGGCCGAAACGGCGAAATTCCTTCGCGGCAAGCTGCCGGGCCTGACCGAACTGGGCCTGCTGTATCGCGAACTTGGGCGCATCGACGGTCTGGTGGAAGACATCCTGCTGGCAAGCCTCGACAGTTGCGTCCTCGAAGGCGAGCCGAGCCTGCCACGCGACGGCGCCGCGCTGGCGGCCCTGGCCGAACGCAAGCGTGGCGGCTGGACCGAGCATGCCGAACGCCTGGCCAGGCTGACCCTGGATATCCTGAAACTCTGGCACGGCCTGCAAAAACGCTTCAAGGGCAAGATCGACCTGGCCCAGGCCGTGGCGCTGAACGACATCAAGCAGCAGCTCAGCCACCTGGTGTACCCGGGCTTTGTGCGTGAAACCCCGCATCAATGGCTCAAGGAACTGCCGCGCTACCTCAAGGCTATCGAGCAACGCTTCGAGAAGCTCGGCAGCCAGGTACAGAAGGACCGGGTCTGGAGCGGCGAGCTGTCCAACCTCTGGGCGCAATACCAGGCCCGCGCCAGCAAGCATGCCCAGGAAGGCAAGCGCGATCCGCAGCTGGAACTGTACCGCTGGTGGCTGGAGGAATACCGCGTATCGCTGTTCGCCCAGCAACTGGGCACCAAGGTGCCGATTTCCGACAAACGCCTGAGCAAGCAGTGGGGGTTGGTGGAGGGCTGAMTDQAPAIDKLLKNLDHAMLADRHRLRRQLLELRKKPDEAKLAQWVTRMQASCDQVLARKASVPSIRYDDNLPIAAKRDEIKEALLKHQVLIIAGETGSGKTTQLPKICLEIGRGQHGLIGHTQPRRIAARSVASRVAEELGTPLGALVGYQVRFEDQSDANTLIKLMTDGILLAETQNDRYLERYDTIIVDEAHERSLNIDFLLGYLKTLLPRRPDLKVIITSATIDLERFSKHFDDAPIVEVSGRTFPVETWYRPLTLEQDEEGNRVEDDLTVDQAILATLDEIAAHERSERRSPGDVLVFLPGEREIRDAAEMLRKAQLKHTEILPLYARLSPAEQQRIFQSHPGRRVVLATNVAETSLTVPGIRYVIDSGTARISRYSYRAKVQRLPIEAISQASANQRKGRCGRVEPGICVRLYSEEDFLGRPEFTDPEILRTNLAAVILQMLHLRLGEITDFPFIEPPDGKAISDGFNLLQELSAVDRNSQLTPLGRQLARLPVDPRMGRMLLEAAKLGSLQEVLIVASAMSIQDPRERPPERQQAADQAHAQWKDADSDFAGLVNLWRGFEEQRQALTASPLRNWCRKNFLNYLRLREWRDSHRQLSLICRDMQLSLNKEPADYPKLHKAVLSGLLSQIGQKTEDGDYLGARQRRFWVHPSSGLGKKRPQWLMTAELVETTKLYARMVAKIEPDWIEPLAGHLIKKNHFEPHWEKKRGQVVAYEQITLFGLIVVGRRPVHYGPVDPVVSRELFIREALVRGEIQSRAKCLSANTRLLEQLDELEAKARRRDILADEETLFAFYDARLPAEIHQTATFDSWYRINSQKDPQLLIMREEDVLAREASEVTANLYPDTLRVGDLTLPLSYHFEPNHPRDGVTLRVPAPLLPMLPPERLEWLVPGMIEAKCIALVRNLPKALRKNFVPVPDFVKAALQRITFADGSLPQSLGRELLRMTGARVSDEAWAEAAQQVESHLRMNLEIVDGQGKFLGEGRDVAELTARFAEASQAALAVPQTAKSQEPVEAKVFAPVAEKTQQKIAGLSMTVYPALVEEGGVVKEGRFPTPAEAEFQHRRALQRLLMQQLAETAKFLRGKLPGLTELGLLYRELGRIDGLVEDILLASLDSCVLEGEPSLPRDGAALAALAERKRGGWTEHAERLARLTLDILKLWHGLQKRFKGKIDLAQAVALNDIKQQLSHLVYPGFVRETPHQWLKELPRYLKAIEQRFEKLGSQVQKDRVWSGELSNLWAQYQARASKHAQEGKRDPQLELYRWWLEEYRVSLFAQQLGTKVPISDKRLSKQWGLVEGNANANANANA
D1-35_018321122COG0332Beta-ketodecanoyl-[acyl-carrier-protein] synthaseATGCATAACGTCGTCATCAGCGGCACCGGCCTGTACACCCCGGCCAACAGCATCTCCAATGAAGAGCTGGTGCAGTCTTTCAATACCTATGTCGCGCAGTTCAACGCCGACAACGCCGACGCCATCGAGCGCGGCGAAGTCGAGGCATTGACCGAGTCCAATGCGGCCTTCATCGAAAAGGCTTCAGGCATCAAGAGTCGTTTCGTGATGGACAAGGACGGTATTCTCGATCCCAAGCGCATGACGCCGCGCCTGCCGGAGCGCTCCAACGAAGAATGGTCGGTGCTTTGCGAAATGGCCGTCGGCGCCGCGAAACAGGCGCTTGAGCGCGCCGGTCGCAGCGCCGCTGACATCGACGGCGTGATCGTTGCCTGTTCCAACCTGCAGCGTCCCTATCCGGCCATTGCCATCGAAGTCCAGGAAGCTTTGGGTATCGAAGGGTTCGGTTTCGACATGAACGTGGCCTGTTCTTCGGCGACCTTCGGCATCCAGGCCGCCGCCAACAGCGTACAGCTGGGCCAGGCCCGGGCGATCCTGATGGTCAACCCGGAAGTGTGCACCGGCCACTTGAATTTCCGTGACCGCGACAGCCATTTCATCTTCGGCGACGCAGCCACGGCGGTGATCATCGAGCGGGCGGACCAGGCGACATCGCCGTACCAGTTCGACGTGGTCAGCACCAAGCTGCTCACCAAGTTCTCCAACAACATCCGCAACAACTTCGGCTTCCTCAACCGCGCGGCGGAAGAGGGCATCGGCACGCGGGACAAACTGTTCGTCCAGGAAGGCCGCAAGGTGTTCCGCGACGTCTGCCCGATGGTCGCCGAATTGATTGGCGCTCACTTGCAGGAAAACCAGCTGAACGTCGGCGAAGTGAAGCGTTTCTGGCTGCATCAGGCCAACCTGAGCATGAACCAGCTGATCGTGCGCAAGCTGCTGGGGCGCGAAGCCAGCGAGGAAGAAGCTCCGGTGATTCTCGACCGCTACGCCAACACCAGCTCGGCGGGTTCGGTGATTTCCTTTCACCTGTACCAGGACGACCTGCCCAGCGGCTCGGTCGCGGTGCTCAGCTCGTTTGGCGCTGGCTACTCGATCGGCAGCGTGATCCTGCGCAAGCGCTGAMHNVVISGTGLYTPANSISNEELVQSFNTYVAQFNADNADAIERGEVEALTESNAAFIEKASGIKSRFVMDKDGILDPKRMTPRLPERSNEEWSVLCEMAVGAAKQALERAGRSAADIDGVIVACSNLQRPYPAIAIEVQEALGIEGFGFDMNVACSSATFGIQAAANSVQLGQARAILMVNPEVCTGHLNFRDRDSHFIFGDAATAVIIERADQATSPYQFDVVSTKLLTKFSNNIRNNFGFLNRAAEEGIGTRDKLFVQEGRKVFRDVCPMVAELIGAHLQENQLNVGEVKRFWLHQANLSMNQLIVRKLLGREASEEEAPVILDRYANTSSAGSVISFHLYQDDLPSGSVAVLSSFGAGYSIGSVILRKRPGPT0008355_521DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008355-fabH-K00648NANA
D1-35_018331311oprOCOG3746Porin OATGATCCGTAAGCACTTCGCAGGTTTTGCCGCCAGCGCTCTGGCAATGGCAGTAACCGCCCAGGCTTTCGCCGGCACCGTAACCACCGACGGCGCCGATATCGTGGTCAAGACCAAGGGCGGCCTGGAGGTCGCTACCACTGACAAAGAGTTCAGCTTCAAGCTCGGCGGTCGTTTGCAGGCTGACTACAGCCAGTTCGACGGGATCTACACCGACAACGGCGACAAGGCTGATGCCGCTTACATCCGCCGCGGCTTCCTGGAGCTGTCCGGTGTGCTGTACACGGACTGGGCCTACACCATCAACTACGATTTCTCCCACAACAGCGGCGATTCCGACAACGGCTACTTCGACGAAGCCTCCCTGGCCTACAACGGCTTCAAGCCGGTGTCGATCAAGGTTGGTCGTTTCGACCCGGACTTCGGCCTGGAAAAAGCCACCAGCTCCAAGTGGGTCACCGCGCCTGAGCGTAACGCCGCCTACGACCTGATCGACTGGGCCAACGGCCACCAGAACGGCCTGGGCCTGCAAGCCTCCGGCGTCTTCGCCGACTCGTTCTATGCCTCGGCTGGCGTGTTCAGCAAAGATACCGACGACACCGACGGCAACAGCATCAAGCAAGCCAACGGTCGTTTCGTATTCGCTCCGATGCACGACGCCGGCAACGTGCTGCACTTCGGTGTGAACGTGGCCTCGCGTGACGTTTCGGACACCGCGTTCGACGCGCGTTATCGCTCCCGTCTGGGCATGCGTGGTGTCGAGACCCTGGGCGGCAACGATGCCGGTCCTAACGGCAACCGTCCGGTACTGGGTGGCGCGAACAACTCGCCGGCCGGCTCCTACGACACCGACACCGCTTTCGGCCTGGAAGCCGCGTTCGCCATGGGGCCTGCGTCGATCCAGGGTGAATACATCACCCGCAAGACCAAGGCTGACGACAGCGCCTTCGAAGACCTCAAGGGCCATGGTTTCTACGTGCAGGGCGCCTACACCCTCACCGGCGAGGCGCGCGGTTACAAAATCGGCAAATTCGATTCGATCAAGCCTGCCAACAAATCCATCGGCGCCTGGGAACTGTTCTATCGCTACGACAGCATGACGGTCGAAGACGACAACATCACCACCGCCACCGCGACCCGTGATGTGGGCGACGCCGAAGCCAAGGTGCACAACCTGGGCGTCAACTGGTACGCCAACGAAGCGGTGAAGATCTCTGCCGCTTACGTCAAGGCCAAGACCGACAACGTGACCAACGTCAACGGCGACGACGACGGCAAAGGTGTGGTCGTGCGTGCCCAGTACGTGTTCTAAMIRKHFAGFAASALAMAVTAQAFAGTVTTDGADIVVKTKGGLEVATTDKEFSFKLGGRLQADYSQFDGIYTDNGDKADAAYIRRGFLELSGVLYTDWAYTINYDFSHNSGDSDNGYFDEASLAYNGFKPVSIKVGRFDPDFGLEKATSSKWVTAPERNAAYDLIDWANGHQNGLGLQASGVFADSFYASAGVFSKDTDDTDGNSIKQANGRFVFAPMHDAGNVLHFGVNVASRDVSDTAFDARYRSRLGMRGVETLGGNDAGPNGNRPVLGGANNSPAGSYDTDTAFGLEAAFAMGPASIQGEYITRKTKADDSAFEDLKGHGFYVQGAYTLTGEARGYKIGKFDSIKPANKSIGAWELFYRYDSMTVEDDNITTATATRDVGDAEAKVHNLGVNWYANEAVKISAAYVKAKTDNVTNVNGDDDGKGVVVRAQYVFPGPT0002640_462DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPHATE_TRANSPORT,PGPT0002640-oprO-K07221NANA
D1-35_018341125hypothetical proteinATGCCGCTTCACGTCCTGGACAACCTGTCCGCCATCGCGTCACCCGAGTGGGACGCGATGGTGCCCGCCAATCAACCGTTCCTGCGCCACGCTTTTTTAAGCACACTTGAAGACAGCGCCAGCCTGGGTGCGCATTCCGGTTGGCAGCCCGAGCACCTGTTGCACATGGAAGACGGACGGCTGCTGGCGGCCCTGCCCAGTTACCGCAAGTGGCATTCCTACGGCGAGTACGTGTTCGATCATGGTTGGGCCGACGCCTGTGCCCGGGCGGGCATCGACTATTACCCCAAGCTGTTGACAGCGGTGCCGTTCAGTCCGGTCAGCGGGCCGCGGCTGCTGGCGGCGTCATTGGAGGACGGTCTGGAATTGCTCGGCAGCCTGCCGGGTTATCTGGAAATCGAAGGGCTTTCCAGCGCTCACATCAACTTCACCGATGCCTTTACCGATGCGGCGCTGGCCGGTCAGGACGGTTGGCTGCAGCGGATCGGTTGCCAGTATCACTGGCAGAATCGCGGCTATCGGGATTTCCAGGATTTCCTTGATGCGCTCAGTTCCCGCAAGCGCAAGCAGATGCGCAAGGAGCGCGAGCAAGTGGCAGGGCAGGGCATCGAGTTCGAGTGGCTCGAAGGCCATCAACTGGACGAGGCGCAATGGGATTTTGTCTACGCCTGTTACGCCAATACCTATGCGGTGCGTCGGCAAGCACCTTATCTGACCCGGACATTCTTCAGCCTGCTGGCCGAGCGCATGCCCGAAGCCATTCGCGTGGTCCTGGCCAAGCAAGGTTCGCGGCCGGTGGCGATGGCATTCAGCCTGGTCGGTGGCGACAGTTTTTACGGCCGTTACTGGGGCTGTCTCGCGGAGTTCGATCGCCTGCACTTCGAGACGTGTTTCTACCAGGGCATGGACTATGCGATCGCCAACGGCCTGCAGCGCTTTGACGCCGGAGCCCAGGGCGAGCATAAATTGATTCGTGGGTTCGAGCCGGTGATTACCCGCTCGTGGCATTACTTGCGCCATCCGGGCCTGAAGGCGGCGGTGGCGGATTTCCTCGTGCGTGAGCATGAGGGCGTGCTGGCGTATGCCGAAGAGGCCAGGACAGCACTGCCGTATCGGCAATGCTGAMPLHVLDNLSAIASPEWDAMVPANQPFLRHAFLSTLEDSASLGAHSGWQPEHLLHMEDGRLLAALPSYRKWHSYGEYVFDHGWADACARAGIDYYPKLLTAVPFSPVSGPRLLAASLEDGLELLGSLPGYLEIEGLSSAHINFTDAFTDAALAGQDGWLQRIGCQYHWQNRGYRDFQDFLDALSSRKRKQMRKEREQVAGQGIEFEWLEGHQLDEAQWDFVYACYANTYAVRRQAPYLTRTFFSLLAERMPEAIRVVLAKQGSRPVAMAFSLVGGDSFYGRYWGCLAEFDRLHFETCFYQGMDYAIANGLQRFDAGAQGEHKLIRGFEPVITRSWHYLRHPGLKAAVADFLVREHEGVLAYAEEARTALPYRQCNANANANANA
D1-35_018351842COG1132Putative multidrug export ATP-binding/permease proteinATGTACCCCATGGTTTACCGCCGTTTTGAAAAACTGATCGACATCTTCCGCAACGCCCCGACCTCGGCCCCGCCGAACCGCGTCCTGCCCTTCTACACGTATTACCTGAAACAGGTCTGGCCCAGCTTCGCCGCACTGCTGGTGGTCGGCCTGATCGGCGCGCTGATCGAAGTGGCGCTGTTCAGCTACCTGAGCCGCATCATCGACCTGACCCAGGCCACGCCCAACACCGACTTCTTCAAGCTGCACGGCCTCGAGCTGGCCTGGATGGCGGTGGTCGCACTGGTGTTCCGGCCGATCTTCGTGGCCCTGCATGACCTGCTGGTGCACCAGACCCTGAGCCCGAGCATGACCAGCCTGATCCGCTGGCAAAACCACAGCTACGTGCTCAAGCAGAGCCTGAATTTCTTCCAGAACGACTTCGCCGGGCGCATTGCCCAGCGCATCATGCAGACCGGCAACTCCCTGCGCGACTCGGCGGTACAGGCCGTGGATGCGTTGTGGCACGTGCTGATCTACGCCATCAGCTCACTGGTGCTGTTCGCCGAAGCCGACTGGCGCCTGATGATCCCGCTGCTGGCCTGGATCGCTGCCTACATCGGCGCGCTCTGCTACTTCGTGCCACGGGTCAAGGAACGCTCCGTGGTGTCCTCCGATGCGCGCTCCAAGCTCATGGGCCGGATCGTCGACGGCTACACCAACATCACCACCCTGAAGCTGTTCGCCCACACCAACTTCGAACAGCAATACGCTCGCGAAGCCATCGAGGAACAGACCGAGAAAGCCCAGTTGGCCGGCCGCGTGGTGACGAGCATGGACGTGGTCATCACCAGCATGAACGGGCTGCTGATCGTCGGCACCACGGCCCTGGCGCTGTGGTTGTGGACCCAGTCGCTCATCAGCGTCGGCGCCATTGCCCTGGCCACCGGCCTGGTGATCCGCATCGTCAACATGTCCGGCTGGATCATGTGGGTGGTCACCGGCATTTTCGAAAACATCGGCATGGTCCAGGACGGCTTGCAGTCTATCTCCCAGCCGGTCAGCGTCACCGACCGCGAGCAGGCCAAGCCGCTCGCGGTAGCCCGTGGCGAGGTGCGTTTCGAGCATGTGGATTTCCACTACGGCAAGAAAAGCGGCGTCATCAGCGACCTGAACCTGACCATCAGGCCCGGCGAAAAAATCGGCTTGATCGGGCCGTCCGGCGCGGGTAAATCCACGCTGGTGAACCTGCTGCTACGCCTCTATGACGTGCAGGGCGGACGCATCCTAATCGACGGCCAGGACATTGCCCATGTCGGGCAGGAAAGCCTGCGCGAACGCATCGGCATGATCACCCAGGACACCTCGCTGCTGCACCGCTCGATCCGCGACAACCTGCTTTACGGCAAGCCCGACGCCACCGACGCGCAACTCTGGGAAGCGGTGCACAAGGCCCGTGCCGATCAGTTCATCCCGTTGCTGTCGGACGCCGAAGGCCGCAGCGGTTTCGATGCGCATGTCGGTGAGCGCGGCGTGAAGCTCTCCGGTGGCCAGCGCCAACGCATCGCCATCGCCCGGGTATTGCTCAAGGATGCGCCGATCCTGATCATGGACGAAGCGACCTCCGCGCTGGATTCGGAAGTCGAAGCGGCGATCCAGGAAAGTCTCGAGACGCTGATGCAAGGCAAGACCGTGATCGCCATCGCCCACCGCCTCTCGACGATCGCCCGGATGGACCGGCTGGTGGTGCTGGAAAACGGCCACATCGCCGAGACCGGCAGTCATGCCGAGCTGTTGGCCCATGGCGGGCTGTATGCGCGGCTCTGGCAGCATCAGACGGGTGGATTTGTCGGGATTGATTGAMYPMVYRRFEKLIDIFRNAPTSAPPNRVLPFYTYYLKQVWPSFAALLVVGLIGALIEVALFSYLSRIIDLTQATPNTDFFKLHGLELAWMAVVALVFRPIFVALHDLLVHQTLSPSMTSLIRWQNHSYVLKQSLNFFQNDFAGRIAQRIMQTGNSLRDSAVQAVDALWHVLIYAISSLVLFAEADWRLMIPLLAWIAAYIGALCYFVPRVKERSVVSSDARSKLMGRIVDGYTNITTLKLFAHTNFEQQYAREAIEEQTEKAQLAGRVVTSMDVVITSMNGLLIVGTTALALWLWTQSLISVGAIALATGLVIRIVNMSGWIMWVVTGIFENIGMVQDGLQSISQPVSVTDREQAKPLAVARGEVRFEHVDFHYGKKSGVISDLNLTIRPGEKIGLIGPSGAGKSTLVNLLLRLYDVQGGRILIDGQDIAHVGQESLRERIGMITQDTSLLHRSIRDNLLYGKPDATDAQLWEAVHKARADQFIPLLSDAEGRSGFDAHVGERGVKLSGGQRQRIAIARVLLKDAPILIMDEATSALDSEVEAAIQESLETLMQGKTVIAIAHRLSTIARMDRLVVLENGHIAETGSHAELLAHGGLYARLWQHQTGGFVGIDPGPT0029145_990DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029145-vcaM-K18893NANA
D1-35_01836564ppiACOG0652Peptidyl-prolyl cis-trans isomerase AATGCTGAAAAAAATCGCCCTCGCCGCCGGCACCGTACTGTTTGCTGCCAACCTGATGGCCGCCACGCCGGCCAAGGCACCACACGTCCTGCTGGACACCACCAACGGCCAGATCGAAATCGAACTGGACCCGGTCAAGGCGCCCATCAGTACCAAGAATTTCCTTGAGTACGTCGACAGCGGCTTCTACAACAACACGATTTTCCATCGCGTCATTCCGGGCTTCATGGCTCAGGGCGGCGGTTTCACCCAGCAGATGCAGCAGAAAGACACCAAGCCACCGATCAAGAACGAAGCCAGCAATGGCCTGCATAACGTTCGCGGCACCTTGTCGATGGCCCGTACATCCAACCCGGATTCGGCCACCAGCCAGTTCTTCATCAACGTGGCCGACAACGCCTTCCTCGACCCGGGCCGCGACGCCGGCTACGCGGTATTCGCCAAGGTGGTCAAGGGCATGGACGTGGTGGACATCATCGTCAACTCCCAGACCACCACCAAATCAGGCATGCAAAACGTGCCGGTCGATCCTGTGATCATCAAGTCGGCCAAGCGCATCGACTGAMLKKIALAAGTVLFAANLMAATPAKAPHVLLDTTNGQIEIELDPVKAPISTKNFLEYVDSGFYNNTIFHRVIPGFMAQGGGFTQQMQQKDTKPPIKNEASNGLHNVRGTLSMARTSNPDSATSQFFINVADNAFLDPGRDAGYAVFAKVVKGMDVVDIIVNSQTTTKSGMQNVPVDPVIIKSAKRIDPGPT0015110_1671DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015110-ppiA-K03767NANA
D1-35_01837804tgnD_1(E)-2-((N-methylformamido)methylene)succinate hydrolaseATGGCCTTTTTCGAACATGAAGGTTGCAGCCTGCACTATGAGGAATATGGCCACGGCACACCGCTAGTGCTGGTCCACGGGTTGGGCTCCAGCACGCGCGACTGGGAAAAGCAGATTCCCGTGTTGTCGCGCCACTACCGCCTGATCGTGATGGATGTGCGCGGCCACGGCCGCTCCGACAAGCCGCGCGAGCACTACAGCATCGCGGGCTTCAGCGCCGACCTGGGCGCCCTGATCGAGCGCCTCGATCTCGGCCCGGTGCACCTTGTGGGCTGGTCCATGGGCGGCATGATCTGTTTCCAGCTGGCCGTGGACGAACCCGCACGGGTCAGGAGCCTGTGCATCGTCAACAGTGCCCCTGAAGTCAAAGTCCGTACGCCCGACGATTGCTGGCAATGGTTCAAGCGCTGGAGCCTGATGCGCCTGCTGAGCCTGGAAACCATCGGCAAGGCCCTCGGCGAGAAGTTGTTCCCCAAGCCCGAACAAACCGAACTGCGCCTGGAGATGGCCCGGCGTTGGGCAGAGAACGACAAACGTGCCTATCTCGCCAGTTTCGACGCCATTGTCGGCTGGGGCGTGCAGGAACGCCTGGCGCAAATTGCCTGTCCAACCCTCATTATCTGCGCCGACCACGACTACACCCCGGTGGCGCTGAAAGAGGCCTATGTAAAACTGCTGCCTGACGCACGACTGGCAGTCATCGCCGATTCACGGCACGCTACGCCCCTGGATCAACCCGAACGCTTCAACCAGACCCTGCTCGAATTCTTGACCGCAACCGACTTCACTACCCAGGATCACTGAMAFFEHEGCSLHYEEYGHGTPLVLVHGLGSSTRDWEKQIPVLSRHYRLIVMDVRGHGRSDKPREHYSIAGFSADLGALIERLDLGPVHLVGWSMGGMICFQLAVDEPARVRSLCIVNSAPEVKVRTPDDCWQWFKRWSLMRLLSLETIGKALGEKLFPKPEQTELRLEMARRWAENDKRAYLASFDAIVGWGVQERLAQIACPTLIICADHDYTPVALKEAYVKLLPDARLAVIADSRHATPLDQPERFNQTLLEFLTATDFTTQDHPGPT0004995_986DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0004995-pcaD|catD-K01055NANA
D1-35_01838924yhaJ_1HTH-type transcriptional regulator YhaJATGAAAGCGCCCCGCGTGACCCTTGATCAATGGCGAACGTTGCAGGCGGTGGTGGACCATGGTGGTTTCGCCCAGGCCGCCGAAGTACTGCACCGCTCTCAGTCATCGGTGAGCTACACCGTGGCCCGCATGCAGGATCAGCTCGGCGTGCCGTTGCTGCGTATCGACGGGCGCAAGGCCGTGCTGACCGAAGCCGGCGGCGTGCTGCTGCGCCGCTCCCGGCAACTGGTGAAACAGGCCAGCCAGCTGGAAGACCTGGCCCACCACATGGAGCAGGGTTGGGAAGCTGAAGTGCGCCTGGTGGTCGACGCGGCCTACCCCACTGCCCGCCTCGTCCGCGCCCTGACCGCATTCATGCCGCAGAGCCGGGGCTGCCGGGTAAGGCTGCGCGAAGAAGTCTTGTCCGGTGTCGAAGAGGTACTGCTCGAAGGCGTCGCCGACCTGGCCATCAGCGGCTTCAGCATTCCCGGTTACCTGGGCGCGGAACTGAGCGATGTCGAATTCGTCGCGGTGGCCCATCCCGAGCACGCCCTGCACCGACTCAACCGCGAGCTGACGTTCCAGGACCTGGAGAGCCAGCTGCAAGTGGTGATCCGCGACTCCGGTCGCCAGCAGCCGCGCGATGTCGGCTGGCTCGGCGCCGAACAGCGCTGGACCGTCGGAAGCCTGGCCACCGCTGCGACATTCGTCGGCAGCGGCCTGGGCTTTGCCTGGCTGCCCCGGCACATGATCGAGCGAGAACTCAGGGAGGGCACGCTCAAACGTCTACCCTTGGATCAGGGCGCCAGCCGCAACCCGAGCTTCTACCTGTATTCGAACAAGGAAAAGCCCCTGGGACCGGCCACGCAGATTCTCATCGAGCTGCTGCGCACCTTCGATACCGCGCCGCTGGATGCGCCGTTCGCTGCCCCTGAACAAGCCTGAMKAPRVTLDQWRTLQAVVDHGGFAQAAEVLHRSQSSVSYTVARMQDQLGVPLLRIDGRKAVLTEAGGVLLRRSRQLVKQASQLEDLAHHMEQGWEAEVRLVVDAAYPTARLVRALTAFMPQSRGCRVRLREEVLSGVEEVLLEGVADLAISGFSIPGYLGAELSDVEFVAVAHPEHALHRLNRELTFQDLESQLQVVIRDSGRQQPRDVGWLGAEQRWTVGSLATAATFVGSGLGFAWLPRHMIERELREGTLKRLPLDQGASRNPSFYLYSNKEKPLGPATQILIELLRTFDTAPLDAPFAAPEQANANANANANA
D1-35_01839315hypothetical proteinATGAAAAAAATCTGTTGTGCGCTGCTGACCCTGCTGCCGCTGAGTGCCTTTGCCTACCCGATCGACGTGGAAAAACACCTCAACGGCTTGAGCATCGACTACACCGCCTACGACACCGATGCCGACATCGGCTCGATCCAGGTCAACAACTACGGCAGCACCGACGCGGCGTGCAGCGTGGTGTTTCGCAACGGCCCCGAAGCGCCGCGAACCCGCAAGATCGAAGTCGCCGCCGGCAAGTTCAAGAACGCCACCGCCAAGTTCAACCGCAACATCATCAAGCTGCGCATCGAGCTGACCTGCAAGCCGAAATAAMKKICCALLTLLPLSAFAYPIDVEKHLNGLSIDYTAYDTDADIGSIQVNNYGSTDAACSVVFRNGPEAPRTRKIEVAAGKFKNATAKFNRNIIKLRIELTCKPKNANANANANA
D1-35_01840600azoRCOG1182FMN-dependent NADH-azoreductaseATGTCCCGCGTTCTGATCATCGAAAGCAGTGCCCGCCAGCAAGACTCGGTTTCCCGTCAACTGACCCAGACCTTCATCAGCCAGTGGAAAGCCGCGCATCCGGCCGATGAGATCAGCGTTCGCGACCTGGCAGTCAACCCTGTTCCGCACCTGGACGCCCATCTGCTGGGGGGCTGGATGAAACCGACCGAGCAGCGCAACGACCTCGAGAACGCCTCCCTGGAGCGCTCCAACCAGCTGACCGATGAGCTGCTCGCCGCCGATGTTCTGGTGATGGCCGCGCCGATGTACAACTTCGCCATCCCGAGCACCTTGAAAGCCTGGCTCGACCACGTGCTGCGCGCCGGCGTGACCTTCAAGTACACCCCCACCGGTCCCCAGGGGCTATTGACCGGCAAGCGCGCTTTCGTGCTCACCGCCCGCGGCGGCATTCACGCCGGTGGCAGCACCGATCACCAGGAACCGTACCTGCGCCAGGTCATGGGCTTCATCGGTATCCACGACGTGACCTTCATCCATGCCGAAGGCATGAACCTGGGCGGCGACTTCCAGGAGAAGGGCCTGAACCAGGCCAACGCCAAGCTATCCCAAGTAGCCTGAMSRVLIIESSARQQDSVSRQLTQTFISQWKAAHPADEISVRDLAVNPVPHLDAHLLGGWMKPTEQRNDLENASLERSNQLTDELLAADVLVMAAPMYNFAIPSTLKAWLDHVLRAGVTFKYTPTGPQGLLTGKRAFVLTARGGIHAGGSTDHQEPYLRQVMGFIGIHDVTFIHAEGMNLGGDFQEKGLNQANAKLSQVAPGPT0006790_2691DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_DEGRADATION_OF_OTHER_NITRO-COMPOUNDSXENOBIOTIC_AZO_DYE_DEGRADATION,PGPT0006790-acpD|azoR-K01118NANA
D1-35_01841867bioPCOG0697Biotin transporterATGGGCTATCTACTTTTTGTGACCTTGATCCAGGCGTTTTCCTTCAGCCTGATCGGCGAATACCTGGCCGGGCATGTCGACAGTTATTTCGCGGTGCTGGTGCGCGTAGTGTTGGCGGGGCTGGTGTTCATTCCACTGACCCGCTGGCGCCAGGTTGAGCCGTCGTTCATGCGCGGCATGCTGTTGATCGGCGCCCTGCAGTTCGGCGTGACCTACGTCTGCCTCTACCTGAGTTTCCGCGTACTGACGGTGCCGGAAGTGCTGTTGTTCACCATCCTCACCCCGCTGCACGTGACTTTGATCGAAGATGCACTCAATCGACGTTTCAACCCCTGGGCCTTGATTGCGGCGCTGGTGGCGGTGGCCGGCGCGGCGGTGATTCGTTATGACCGGATCAACCCGGATTTCTTCATGGGCTTTTTGCTGCTGCAACTGGCGAACTTCACCTACGCGGCCGGGCAAGTGTTGTACAAGCACCTGGTGGCACGGCACCCGAGCGACCTGCCGCACTATCGGCGTTTCGGCTATTTCTACCTAGGCGCGCTGATGGTCGCGCTGCCGGCCTTCCTGCTGTTCGGCAAGGACGATTTCTGGCCTGAAGCGCCGTTGCAATGGGGCGTGCTGGTATTCCTCGGCCTGGTCTCCACCGCGCTGGGGCTGTATTGGTGGAACAAGGGCGGGTGCCTGGTGAACGGCGGGACATTGGCGGTAATGAACAACCTGCACGTGCCGGTGGGGTTGCTGGTGAACCTGCTGATCTGGAACCAGCATGAGGCGTTGGGTCGGTTGCTGCTGGGTGGGTCGGTGATACTCGCGGCGGTGTGGATCAGTCGGTTAGGGATACGCCAGCCCCAGCCTTCACGCTGAMGYLLFVTLIQAFSFSLIGEYLAGHVDSYFAVLVRVVLAGLVFIPLTRWRQVEPSFMRGMLLIGALQFGVTYVCLYLSFRVLTVPEVLLFTILTPLHVTLIEDALNRRFNPWALIAALVAVAGAAVIRYDRINPDFFMGFLLLQLANFTYAAGQVLYKHLVARHPSDLPHYRRFGYFYLGALMVALPAFLLFGKDDFWPEAPLQWGVLVFLGLVSTALGLYWWNKGGCLVNGGTLAVMNNLHVPVGLLVNLLIWNQHEALGRLLLGGSVILAAVWISRLGIRQPQPSRNANANANANA
D1-35_018421299ybdGCOG0668Miniconductance mechanosensitive channel YbdGATGGATATCAAACAATTCTGGCTCAACCTTCAGGATTTCTGGGGGGCCCTGGATCAGCACCCGCTCCTGCATTCCGGTCTCGCCCTGGCCCTGCTGCTGGCGATCGCGCTGGTGCTCGGACGCGTGGCGCGTTACCTGATCCTGCACGGCGCCAAGCTGATCGGCCGCCAACCGGCCCTACACTGGGTCAACGACCTGCGCCAGAACAAAGTCTTCCATCGCCTGGCGCAGACGACGCCGTCGCTGATCATCCAGTTCGGCCTGCACCTGGTGCCGGGGCTGAGCAAGACCAGCATGGTCTTCCTCGGCAATGTCGCGCTGGCCTTCACCATCCTGTTCATGCTGCTGGCCGTCAGTGCCCTGCTCAGTGCGCTATTGGACGTCTATGCGCGCACCGAACACGCCCGCACCCGCTCGATCAAGGGCTACGTGCAGCTGACAAAAATGGTCCTCTACGTGTTCGGCGCGATCATCATCGTCGCCACGCTGATCGACCGCTCGCCGCTGTTGCTGCTGTCGGGCCTGGGTGCGATGTCGGCGGTGATCCTCCTGGTCTACAAAGACACGCTGCTGTCGTTTGTCGCCAGCGTGCAGTTGACCAGCAACGACATGCTGCGGGTCGGCGACTGGATCGAAATGCCCCAGGTCGGCGCCGACGGTGATGTGGTGGACATCACGTTGCACACGGTGAAGGTGCAGAATTTCGACAAGACCATCGTCTCGATCCCCACCTGGCGCCTGATGTCCGAATCGTTCAAGAACTGGCGCGGCATGCAGCAATCCGGCGGACGGCGGATCAAGCGCAGCCTGTTCATCGATGCCAGCGGCGTGCGCTTCCTGCACGACGAGGAAGAACAGCGCTTGACGCAGGTGCGCCTGCTGACCGATTACATCGGCCGCAAGCAGGCCGAGCTCAAGGCCTGGAACGAAGCCCAGGGCAACGTCGCGGCGATGTCGGCCAACCGCCGGCGGATGACCAACCTGGGCACTTTCCGCGCCTATGCCCTGGCCTATCTGAAAAGCCACCCGGAGATCCAGCCGAACATGACCTGCATGGTCCGCCAGCTGCAGACCACTGCCCAGGGTATCCCGCTGGAAATCTACTGCTTCACCGGCACCACCGTGTGGGCCGACTACGAGCGCATCCAGGGGGATATCTTCGATTACCTGCTGGCGGTGATGCCAGAGTTCGGGCTGGGCTTGTACCAACAGCCGAGCGGTACGGATCTGCGGGCGGGGTTGCTGCCGGCGGTGCTGGGGGCAAGCCATATTCCGGAGCCGGAAAAGCAGGTGGTCTGAMDIKQFWLNLQDFWGALDQHPLLHSGLALALLLAIALVLGRVARYLILHGAKLIGRQPALHWVNDLRQNKVFHRLAQTTPSLIIQFGLHLVPGLSKTSMVFLGNVALAFTILFMLLAVSALLSALLDVYARTEHARTRSIKGYVQLTKMVLYVFGAIIIVATLIDRSPLLLLSGLGAMSAVILLVYKDTLLSFVASVQLTSNDMLRVGDWIEMPQVGADGDVVDITLHTVKVQNFDKTIVSIPTWRLMSESFKNWRGMQQSGGRRIKRSLFIDASGVRFLHDEEEQRLTQVRLLTDYIGRKQAELKAWNEAQGNVAAMSANRRRMTNLGTFRAYALAYLKSHPEIQPNMTCMVRQLQTTAQGIPLEIYCFTGTTVWADYERIQGDIFDYLLAVMPEFGLGLYQQPSGTDLRAGLLPAVLGASHIPEPEKQVVPGPT0013774_187DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-MECHANOSENSITIVE_ION_CHANNEL,PGPT0013774-mscM|ybdG-K16053NANA
D1-35_018431347rhlE_1COG0513ATP-dependent RNA helicase RhlEGTGTTTTCCCAATTCGCCCTGCACGAACGCCTGCTCAAAGCCGTGGCCGAGCTTAAATTTGTCGAGCCAACGCCGGTGCAGGCAGCGGCTATTCCGCTCGCGCTCCAGGGGCGTGACCTGCGGGTGACGGCGCAGACCGGCAGCGGCAAGACCGCTGCGTTCGTGCTGCCGATCCTCAATCGCCTGATCGGCCCGGCCAAGGTCCGCGTCAGCATCAAGACCCTGATCCTGCTGCCGACCCGCGAGCTGGCCCAGCAGACCTTGAAGGAAGTGGAACGCTTCGCGCAGTTCACCTTCATCAAGTCCGGCCTGATCACCGGCGGGGAAGATTTCAAGGTCCAGGCCGCCATGCTGCGCAAGGTGCCGGATATCCTGATCGGCACGCCGGGGCGGATGATCGAGCAACTGAACGCCGGCAACCTCGACCTCAAGGAAGTCGAAGTGCTGGTGCTGGACGAAGCCGACCGCATGCTGGACATGGGTTTTGCCGAAGATGTGCAGCGCCTGGTGGATGAATGCGTCAATCGCCAGCAGACCATGCTGTTCTCCGCCACCACTGGCGGTTCGGGCCTGCGCGAGATGATCGCCAAGGTCCTGAACAACCCTGAGCACTTGCAGCTCAACGCGGTCAGCCAGCTGAACTCCACGACTCGCCAGCAGATCATCACCGCTGACCACAACCAGCACAAAGAGCAGATTGTGAACTGGTTGCTGGCCAACGAGACCTACGAAAAAGCCATCGTGTTCACCAACACCCGGGCCATGGCCGACCGCATCTACGGTCGTCTCGTCGCCCAGGAATACAAGGCGTTCGTGCTGCACGGCGAGAAAGACCAGAAGGACCGCAAGCTGGCCATCGACCGCCTCAAGCAGGGCGGTGTGAAAATCCTGGTTGCCACCGACGTCGCGGCCCGTGGCCTGGACGTCGAAGGCCTGGACATGGTCATCAACTTCGACATGCCCCGCAGCGGCGACGAGTACGTGCACCGCATCGGCCGCACCGGTCGCGCCGGCAACGATGGCCTGGCGATCTCGCTGATCTGCCACGGCGACTGGAACCTGATGTCGAGCGTCGAGCGCTACCTCAAGCAGAGCTTCGAGCGCCGCACCATCAAGGAAGTCAAAGGCACCTACGGCGGACCGAAAAAGGTCAAGGCGTCGGGCAAGGCCGTTGGCGTGAAGAAGAAAAAGGTCGACGCCAAGGGCGACAAGAAGAAAACCGGCGCCAAGGCTCCGACCAAGCGCAAGACCGCCAACCGCCCGAAGAGCGACGCGCCATCGCTGGTCAGCAAGGACGGCATGGCCCCGCTCAAACGCCGCAAGCCCGAGGCGCCAGCGGCTGAATAAMFSQFALHERLLKAVAELKFVEPTPVQAAAIPLALQGRDLRVTAQTGSGKTAAFVLPILNRLIGPAKVRVSIKTLILLPTRELAQQTLKEVERFAQFTFIKSGLITGGEDFKVQAAMLRKVPDILIGTPGRMIEQLNAGNLDLKEVEVLVLDEADRMLDMGFAEDVQRLVDECVNRQQTMLFSATTGGSGLREMIAKVLNNPEHLQLNAVSQLNSTTRQQIITADHNQHKEQIVNWLLANETYEKAIVFTNTRAMADRIYGRLVAQEYKAFVLHGEKDQKDRKLAIDRLKQGGVKILVATDVAARGLDVEGLDMVINFDMPRSGDEYVHRIGRTGRAGNDGLAISLICHGDWNLMSSVERYLKQSFERRTIKEVKGTYGGPKKVKASGKAVGVKKKKVDAKGDKKKTGAKAPTKRKTANRPKSDAPSLVSKDGMAPLKRRKPEAPAAEPGPT0013740_2632DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927NANA
D1-35_01844786hypothetical proteinATGAAACGTACGTGCACCAGCCTGATACTCGCAGGATCGTTGCTCGCCGGCAGCCAAGCCATGGCCGGCGATCTGTTGCAGTGGCAGAACAACAGCCTGAGTTACCTCTACGGCAAGGATTTCCAGATCAATCCGCGTATCCAGCAGACCGTGACGTTCGAACACGCCGATGCCTGGGCCTACGGCGACAACTTCTTCTTCCTCGACCGGATCTTCTACAACGGCGAGGACGACAGCAATTCCGGCCCGAACACCTACTACGGCGAGTTCAGTCCGCGCCTGTCGTTCGGCAAGATCTTTGATCAAAAGCTCGAACTGGGCCCGGTCAAGGACGTGCTGCTGGCGATGACCTATGAGTTTGGCGAAGGTGACAACGAGTCCTACCTGATCGGCCCGGGTTTCGACCTGGCGATTCCCGGCTTCGATTACTTCCAGCTGAACTTCTACAACCGCCAGACCGAAGGCTCGCGGGCGGGCGACAACGTCTGGCAGATCACCCCGGTCTGGGCCGTCACCGTCCCGGTGGGTTCATCCGACATTCTGTTCGATGGGTTCATCGACTGGGTCGTCGACAACGACAGCAACGCCAAGGGCACGTACCACGCCAACCTGCATATCGTCCCGCAGATCAAATATGACCTGGGCAAGGCGTTGAAGCTCGGCGCCAAGCAGCTGTACGTGGGCGTGGAATACGACTACTGGAAGAACAAGTACGCCATCGAGGACAGCGAAAGCTTCAAGACCAACCAGAGCAATACCAGCCTGCTGGTCAAATATCATTTCTGAMKRTCTSLILAGSLLAGSQAMAGDLLQWQNNSLSYLYGKDFQINPRIQQTVTFEHADAWAYGDNFFFLDRIFYNGEDDSNSGPNTYYGEFSPRLSFGKIFDQKLELGPVKDVLLAMTYEFGEGDNESYLIGPGFDLAIPGFDYFQLNFYNRQTEGSRAGDNVWQITPVWAVTVPVGSSDILFDGFIDWVVDNDSNAKGTYHANLHIVPQIKYDLGKALKLGAKQLYVGVEYDYWKNKYAIEDSESFKTNQSNTSLLVKYHFNANANANANA
D1-35_018451290hypothetical proteinATGCTGGAATGGCTGAACCTGAGCGTGCGCTGGGTTCACATGATCACTGGCGTGGCCTGGATCGGCGCGTCGTTCTACTTCGTCTGGCTGGAAAACAACCTCAATCGCGTCAATCCCCGGAGCGGCCTGGCCGGTGATTTATGGGCCATCCACGGTGGCGGCATCTACCACCTGGAAAAATACAAACTCGCGCCGCCGTCCATGCCGGACAACCTGCACTGGTTCAAATGGGAAGCCTATTTCACCTGGATGTCGGGCATCGCCCTGCTGTGCCTGGTGTTCTATTGGAACCCGACCGTCTACCTGCTGGCTCCCGGCAGCAGCCTGAGCGGCGCCGAGGGTGTTGCCCTGGGCATCGGTTCACTGTTCGTTGGCTGGTTCGTCTATTCGGCACTCTGCGACTCGGCACTCGGCAAGCGCCCCGCCCTGCTCGGCCTGATTCTGTTCGTGCTGTTGATCGCCGCGGCCTACGGCTTCAGCAAGGTGTTCAGCGGTCGCGGCGCCTACCTGCATGTCGGCGCCGTCATCGGTACGATCATGGTCGGCAACGTGTTCCGCATCATCATGCCGGCACAGCGCGCCTTGGTGGCGGCCATCGCCGAGAACCGCACGCCTGACCCGGCGTTGCCGGCCAAGGGCCTGTTGCGTTCGCGCCACAACAACTACTTCACCCTGCCGGTGCTGTTCATCATGATCAGCAACCACTTCCCGAGCACCTACGGCAGCCAGTACAACTGGCTGATCCTGGCCGGGATCGCCGTGGCGGCCGTGTTGGTGCGTCATTACTTCAACACTCGCCATGACAGCAACCGGTTCGCCTGGACGCTGCCGGTCGGCGCCCTGGCGATGATCTGCCTGGCTTACGTCACCGGGCCCAAGCCAATGCCAACGGCACCGGAAGTCGCCAAGGCTCCTGGCGTGATCGAGTATCAACCGTTGCCGGAAACGGCGGTGGGCGGCGGGGCCAAACCGGCCGCGGCGCCAGCCGCTCCGGCAACGGCGCCCGCCCAGGCGTCCACTGCGCAGGGCCCGTTATTTGAAAAGGTCCACAGCGTGATCCAGGAGCGCTGCTCGGTCTGTCATTCGGCCAAGCCCACCAGTCCGCTGTTCAGCGCCGCGCCAGGCGGGGTGATCTTCGATACGCCGCAGCAGATCCAGCAACAGGCCGCACGCATCCAGGCCCAGGCCGTGACCACCCAGATCATGCCCTTGGGCAACATCACCCAGATGACCCAGCAGGAACGTGACCTGATCGGCGCCTGGATCACCCAGGGCGCACGCACCAACTAGMLEWLNLSVRWVHMITGVAWIGASFYFVWLENNLNRVNPRSGLAGDLWAIHGGGIYHLEKYKLAPPSMPDNLHWFKWEAYFTWMSGIALLCLVFYWNPTVYLLAPGSSLSGAEGVALGIGSLFVGWFVYSALCDSALGKRPALLGLILFVLLIAAAYGFSKVFSGRGAYLHVGAVIGTIMVGNVFRIIMPAQRALVAAIAENRTPDPALPAKGLLRSRHNNYFTLPVLFIMISNHFPSTYGSQYNWLILAGIAVAAVLVRHYFNTRHDSNRFAWTLPVGALAMICLAYVTGPKPMPTAPEVAKAPGVIEYQPLPETAVGGGAKPAAAPAAPATAPAQASTAQGPLFEKVHSVIQERCSVCHSAKPTSPLFSAAPGGVIFDTPQQIQQQAARIQAQAVTTQIMPLGNITQMTQQERDLIGAWITQGARTNNANANANANA
D1-35_01846504allACOG3194Ureidoglycolate lyaseATGCGCACACTCAAGATCGAGCCATTGACCAAAGAAGCCTTCGCCCCGTTCGGTGACGTGATCGAAACCGACGGCAGCGATCACTTCATGATCAACAACGGTTCGACCATGCGCTTCCACCGCCTGGCGACGGTCGAGACCGCCACGCCGGACGACCACGCGATCATCAGCATCTTCCGCGCCGACGCGCTGCAGATGCCGTTGACCGTGCGCATGCTGGAGCGCCATCCGCTGGGCAGCCAGGCCTTCATTCCGCTGCTCGGCAACCCCTTTCTGATCGTGGTCGCGCCACTTGGCGATGCACCTGTATCAGGCTTGGTCCGCGCCTTCGTCACCAACGGCAGGCAGGGCATCAATTACCATCGCGGCGTCTGGCACCACCCGGTGCTGACGATCGAAAAGCGGGATGACTTCCTGGTGGTTGATCGCAGTGGCACAGGCAACAACTGCGATGAGCATTTTTTTCAAGAGGATGAGTACTTGATCCTCGCCCCCCACCAATAAMRTLKIEPLTKEAFAPFGDVIETDGSDHFMINNGSTMRFHRLATVETATPDDHAIISIFRADALQMPLTVRMLERHPLGSQAFIPLLGNPFLIVVAPLGDAPVSGLVRAFVTNGRQGINYHRGVWHHPVLTIEKRDDFLVVDRSGTGNNCDEHFFQEDEYLILAPHQPGPT0021505_649DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021505-allA-K01483NANA
D1-35_01847996alcallantoicaseATGAAAGCTTACGCCGTACCGTTCGAGAAATTCGTCAACCTGGCCGACGCCCGCCTGGGCACCAGGATCATTTCGGTGACCGATGACTGGTTCGCCGATGCCAACCGCCTGTTCCAGCCGACCCCGGCCGTGTGGAAGGAGGGTGTGTTCGACGATAACGGCAAATGGATGGACGGCTGGGAGTCGCGCCGCAAGCGTTTCGAAGGCTACGACAGCGCGGTGATCCGCCTGGGCGTGCCGGGCTCGATCAAGGGCGTGGATATCGACACCTCGTTCTTCACCGGTAATTACCCACCGTCGGCCTCCCTGGAAGCCTGTTTCCTGGCTGAAGGCGAGCCGGATGAAAACACCCAGTGGACCGAAGTGCTGTCGGCCGTCGAGCTGAAGGGCGACAGCCACCACTACCACGAAATCAGCAATGACCAGGCGTTCAGCCATCTGCGCTTCAACATCTATCCGGACGGCGGCGTGGCCCGCCTGCGCGTCTACGGCATTCCGTACCGCGACTGGTCCGCGGTCGGCGACAACGAACAGATCGACCTGGCCGCCGCCCTCAACGGTGGCCGTGCCCTGGCCTGCTCCGATGAACACTTCGGCCGCATGAGCAACATCCTCAACCCGGGCCGTGGCGTGAACATGGGCGACGGCTGGGAAACCGCCCGTCGGCGCACCCCCGGCAATGACTGGGTGATCGTCGCCCTGGGCCATGCCGGCATTGTTGAGAAAGTCGTCGTCGATACCCTGCACTTCAAGGGCAACTACCCGGACAGCTGCTCGATCCAGGGCGCGTTCGTCAAAGGCGGCACCGACAGCCAGATCGAAACCCAGTCGCTGTTCTGGCGCGAACTGCTGCCGAGCCAGAAGCTGGAAATGCACGCCGAACACACCTTCGCCGAGCAGATCAAGGCGCTGGGGCCGATCACGCACATCCGCCTGAACGTGTTCCCGGACGGTGGCGTGAGCCGCCTGCGGGTATTGGGCAAGGTCGCTAAATAGMKAYAVPFEKFVNLADARLGTRIISVTDDWFADANRLFQPTPAVWKEGVFDDNGKWMDGWESRRKRFEGYDSAVIRLGVPGSIKGVDIDTSFFTGNYPPSASLEACFLAEGEPDENTQWTEVLSAVELKGDSHHYHEISNDQAFSHLRFNIYPDGGVARLRVYGIPYRDWSAVGDNEQIDLAAALNGGRALACSDEHFGRMSNILNPGRGVNMGDGWETARRRTPGNDWVIVALGHAGIVEKVVVDTLHFKGNYPDSCSIQGAFVKGGTDSQIETQSLFWRELLPSQKLEMHAEHTFAEQIKALGPITHIRLNVFPDGGVSRLRVLGKVAKPGPT0000880_876DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0000880-alc-K01477NANA
D1-35_01848516pucLCOG3195Uric acid degradation bifunctional protein PucLATGACTGCCTTCCAGACCCTCAAGCCTTCCCGCCTGAGCCGCGAAGCGTTCGTCGAAGCCTTCGCCGACATCTACGAACATTCGCCATGGGTGGCCGAAAAGGCCTTCGACCTAGGCCAGGATCCCTCGATCGACCAGATCGAAACCCTGCACCAGCGCATGAGCGACATCCTGTTGAGTGCCGACCACGCCAGCCAGCTGGCGCTGATCAACGCTCACCCGGACCTGGCCGGCAAAGCCGCCGTCCAGGGCCAACTGACCGAAGCCAGCACCAACGAACAGGCTGGCGCCGGTATTCACCAATGCACGGCCGAAGAGTTCCAGCGCTTCACCGAGCTGAACGAGGCCTACAAGGCCAAGTTCAAGTTTCCCTTCATCATGGCGGTAAAAGGCAGCAACCGGCACCAGATCCTTGCCGCGTTCGAAACGCGCATTCACCACTCGGCGGATGCCGAATTCAAATGCGCATTGGCAGAGATCAACAAGATCGCGTTGTTCCGATTACTGACCCTTTAGMTAFQTLKPSRLSREAFVEAFADIYEHSPWVAEKAFDLGQDPSIDQIETLHQRMSDILLSADHASQLALINAHPDLAGKAAVQGQLTEASTNEQAGAGIHQCTAEEFQRFTELNEAYKAKFKFPFIMAVKGSNRHQILAAFETRIHHSADAEFKCALAEINKIALFRLLTLPGPT0021130_514DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0021130-uraD-K13485NANA
D1-35_01849927hypothetical proteinGTGAGCGCTGACTACCCACGCGACCTGATCGGTTACGGCAGTAACCCTCCCCACCCGCAATGGCCGGGCAATGCCCGAATCGCCCTGTCTTTCGTACTCAACTATGAGGAAGGCGGCGAGCGCAACATCCTGCATGGCGATCGTGAGTCCGAAGCGTTCCTCTCGGAAATGGTTTCGGCGCAACCGTTGCTGGGCGAGCGCAACATGAGCATGGAGTCGCTGTACGAGTATGGCAGCCGTGCCGGCGTCTGGCGGATCCTCAAGCTGTTCAAGCAATTCGATATCCCGCTGACTATCTTCGCCGTGGCCATGGCCGCTCAGCGCCATCCGGACGTGATCCGCGCCATGGTCGCCGCCGGCCATGAAATATGCAGCCACGGCTATCGCTGGATCGACTACCAGTACATGGATGAAGCGCAGGAGCGCGAACACATGCTCGAAGCGATCCGCATCCTCACCGAACTTACCGGCGAGCGGCCGTTGGGCTGGTACACCGGACGCACCGGCCCCAATACCCGGCGATTGGTAATGGAAGAAGGCGGCTTTCTCTATGACAGCGACACCTACGACGACGACCTGCCGTACTGGGAGCCGAATAACCCCACCGGCAAGCCGCACCTGGTAATCCCTTACACACTCGACACCAATGACATGCGCTTCACCCAGGTGCAGGGTTTCAACAAGGGCGACGACTTCTTCCAGTACCTCAAGGATGCCTTCGACGTACTGTATGCCGAAGGCGCCGAAGCACCGAAGATGTTGTCCATCGGCCTGCATTGCCGCCTGATCGGCCGCCCTGCCCGCCTCGCCTCCCTCAAGCGTTTCCTGGAATACGTCAAGGGCCACGAACAGGTGTGGTTCAGCCGCCGGGTCGACATTGCACGCCACTGGCAGCAGACCCACCCGTATCCGGGAGTTTCGAAATGAMSADYPRDLIGYGSNPPHPQWPGNARIALSFVLNYEEGGERNILHGDRESEAFLSEMVSAQPLLGERNMSMESLYEYGSRAGVWRILKLFKQFDIPLTIFAVAMAAQRHPDVIRAMVAAGHEICSHGYRWIDYQYMDEAQEREHMLEAIRILTELTGERPLGWYTGRTGPNTRRLVMEEGGFLYDSDTYDDDLPYWEPNNPTGKPHLVIPYTLDTNDMRFTQVQGFNKGDDFFQYLKDAFDVLYAEGAEAPKMLSIGLHCRLIGRPARLASLKRFLEYVKGHEQVWFSRRVDIARHWQQTHPYPGVSKPGPT0012156_295DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSFUNGICIDAL_COMPOUNDS|ANTIBIOTICSFUNGICIDAL-CHITINOLYTIC_ACTIVITIES,PGPT0012156-chitin_deacetylase-NANANA
D1-35_01850354pucMCOG23515-hydroxyisourate hydrolaseATGGGACGTCTGACTACACACGTTTTGGATGCTGCACACGGTTGTCCGGGCAGCTTGATCAGGATCGAGCTGTACCGCGTCGAAGGTTCGCAAATGCAGCTGGTCGCCAGCGCATTGACCAACAGCGATGGCCGTTGCGACGCACCGCTTCTGCAAGGGGATGACTACCGCAGCGGGGTCTACCAGATTCAATTCCACGCCGGCGACTACTACCGCGCCCGTGGCGTGCAATTGGCCGAGCCGGCGTTCCTTGATGTGGTGGTGCTGCGCTTCGGTATTTCGCAGGAGCAGGAGCATTACCATGTGCCCCTGCTGATTTCGCCTTACGCCTATTCAACCTATCGAGGCAGCTGAMGRLTTHVLDAAHGCPGSLIRIELYRVEGSQMQLVASALTNSDGRCDAPLLQGDDYRSGVYQIQFHAGDYYRARGVQLAEPAFLDVVVLRFGISQEQEHYHVPLLISPYAYSTYRGSPGPT0021125_1404DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0021125-uraH|pucM|hiuH-K07127NANA
D1-35_01851627rhtB_3COG1280Homoserine/homoserine lactone efflux proteinATGAATCTGGAAACCTGGTTGTTGTTCAGTGGCGCCGCCTTGGTGGTGATCCTCATCCCCGGCCCGCTGTCGCTGCTGATGATCAGCAACAGCCTCAACTACGGTCTGCGCCGTTCTTATCCGGCATTCCTCGGTGGGGTGGTCGCCTCGATCTGCCTGTTGAGCGCCTCAGCGCTGGGGCTCGGGGCGCTGTTGCTGGCTTCGGAACAATTGTTCAGCGCCCTGAAAATTGTCGGCGCGCTGTATCTGTTCTACCTCGCCTGGCAGAGCTGGCAGCAATCGCACCAGCCATCCCAGGGCGCCGAAGTGCCCCAGGCTACCGCCACTCCAAGGTTTCGCGCGCTGTTCGGCCGGGCATTCGTGCTGGGCGCGAGCAACCCGAAAGACATCCTCTTCTTCGCGGCGTTCCTGCCGCAATTCCTGAGCGCCGAGCAGCCATTCCTGCCGCAACTGCTGATCATGATCGCCACCTGGACCGTGCTCGACCTGCTGTGCAAGCTGGCCTATGGCCTGGGTGCCCACGGCGCCGCCCGGTATCTGCGTACCGGCAAGGGTCAGAGCTGGTTCAACCGGGTCAGTGCGGGGTTGTTCAGTGGGGCGGGGGCGGCTTCTTTGTTGAGCCGCTGAMNLETWLLFSGAALVVILIPGPLSLLMISNSLNYGLRRSYPAFLGGVVASICLLSASALGLGALLLASEQLFSALKIVGALYLFYLAWQSWQQSHQPSQGAEVPQATATPRFRALFGRAFVLGASNPKDILFFAAFLPQFLSAEQPFLPQLLIMIATWTVLDLLCKLAYGLGAHGAARYLRTGKGQSWFNRVSAGLFSGAGAASLLSRNANANANANA
D1-35_018521350adeP_1COG2252Adenine permease AdePGTGGAAAGCCGCAAACCCGAAGCCCAGACCCTGGACCTTTCGCCGCCACTACGCAGTGGCTGGCTGGAGCGAATCTTCAAACTCAGCTTGCACGGCACCACGGTGAAGACCGAGCTGATCGCCGGCCTGACGACCTTCATCACCATGGCCTACATCATCTTCGTCAACCCCAACATCATGGCCGACGCGGGCATTGATCACGGCGCTGCGTTCGTCGCTACGTGCATTGCCGCCGCCCTGGGTTGCCTGTTGATGGGCCTGTATGCCAATTGGCCGGTAGGCCTGGCGCCGGGCATGGGCCTGAACGCTTTTTTTACCTACACGGTCGTCGGGACCATGGGCTACAACTGGGAAACCGCGCTGGGCGCGGTGTTCGTTTCCGGGGTGTTGTTCATGTTCCTGACCCTGTCGCGGGTGCGTGAGTGGTTGCTCAACAGCATTCCGGTGAGCCTGCGCTACGCCATGGGCGCGGGGGTCGGACTTTTCCTCGGGCTGATCGGCCTGAAGACCGCCGGTATCATCGTCGACAGCCCGGCGACGCTGATCAAGCTGGGTTCCTTGCATGAGCCAGGACCGCTGCTGGCCGCCGTGTGTTTCCTGATGATCGCCGTGCTGAGCTATCACCGCGTGTTCGGCGCGATCCTGATCAGCATCATTGCCGTGACCCTGGCCGGTTGGGGCCTGGGACTGGTGCAATACAACGGCGTGATGTCGACGCCGCCGAGCCTGGCTCCGACCTGGATGGCGATGGACGTCGCCGGCGTGTTCAACGTCAGCATGATCAGTGTGGTGCTGGCCTTCCTGTTCGTGCATATGTTCGACACCGCCGGCACCTTGATGGGCGTCGCCCAGCGCGCTGGCCTGGTAAAGCCCGACGGCAAGATCGAAAACCTGTCCAAGGCCCTCAAGGCCGACAGCGCCTCCAGCGTATTCGGCGCGATGGTCGGTGTTCCGCCAGTGACCAGCTATGTGGAAAGCGCGGCCGGCGTCGCAGCCGGCGGCCGCACGGGGCTTACGGCGGTGACGGTCGGTGTGCTATTTATTGCCGCCATGTTCTTTGCCCCGCTGGCCGGGATGATTCCTGCCTATGCAACGGCCGGCGCCTTGATTTATGTGGCCATGCTGATGATGGGCGGCATGGCCCACATCGAGTGGGACGAAGCGACCGACAGTATTCCAGCCATCGTCACCGCCATCATGATGCCGCTGACCTTCTCGGTCGCCGATGGCATCGCGCTGGGTTTCATCACCTACGTGGTACTCAAGGCCGGCACCGGTAAACACAAGGAAATATCCGTCAGCCTGTGGGTGCTCTGCGCGATCTTTATCGCCAAGTTCATCTTCTTGTAAMESRKPEAQTLDLSPPLRSGWLERIFKLSLHGTTVKTELIAGLTTFITMAYIIFVNPNIMADAGIDHGAAFVATCIAAALGCLLMGLYANWPVGLAPGMGLNAFFTYTVVGTMGYNWETALGAVFVSGVLFMFLTLSRVREWLLNSIPVSLRYAMGAGVGLFLGLIGLKTAGIIVDSPATLIKLGSLHEPGPLLAAVCFLMIAVLSYHRVFGAILISIIAVTLAGWGLGLVQYNGVMSTPPSLAPTWMAMDVAGVFNVSMISVVLAFLFVHMFDTAGTLMGVAQRAGLVKPDGKIENLSKALKADSASSVFGAMVGVPPVTSYVESAAGVAAGGRTGLTAVTVGVLFIAAMFFAPLAGMIPAYATAGALIYVAMLMMGGMAHIEWDEATDSIPAIVTAIMMPLTFSVADGIALGFITYVVLKAGTGKHKEISVSLWVLCAIFIAKFIFLPGPT0007325_2796DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-XANTHINE_METABOLISMPHYTOHORMONE-XANTHINE_TRANSPORT,PGPT0007325-pbuG|azgA|ghxP|ghxQ|adeQ-K06901NANA
D1-35_01853438hypothetical proteinATGCTTGACCTTAAAAATCCGACCTCCCAACAAATGGCCATGGAAGCGTTCTTCTTCGGTTATCAGGCGTTCACCGCCAAAGCCGATGAAATGCTTGAGCGCCGGGGCTTGAGCCGCGTGCATCAGCGCATCGTTTTTTTCATCGCCCGTTATCCATCATTGAGTGTGAAGGAGCTGCTGGCGCTGCTTGGCGTGAGCAAACAGGCATTGAACATGCCGCTGCGGCAATTGATGGAAATGCATTTGGTGAACAGCGTTGCCTCCGAGGCCGACAAGCGCAAGCGGCTGCTGGAACTGACCGCCGAGGGCGCGCGCTTTGAACAGGCGTTACGGCGCGAGCAGGTGAAATTGCTTGAACGGGTGTTTGCCGAGGCGGGGGAAGCGGCGGTGGATGGGTGGCTGGCGGTGAATCTGGGGTTGGGGAAATCCAGCGACTAGMLDLKNPTSQQMAMEAFFFGYQAFTAKADEMLERRGLSRVHQRIVFFIARYPSLSVKELLALLGVSKQALNMPLRQLMEMHLVNSVASEADKRKRLLELTAEGARFEQALRREQVKLLERVFAEAGEAAVDGWLAVNLGLGKSSDNANANANANA
D1-35_018541167lysNCOG11672-aminoadipate transaminaseATGGCTTTTTCCGAACGTGTCTCGCGCCTCAAAAGTTCTTTGATCCGGGAAATTCTCGCCGCGGCGCAGCGCCCGGAAGTGATGTCGTTTGCCGGCGGCCTGCCGGCCGAAGCCATGCTGCCGAAGGTGCAGTGGGAGGACATGCCGCTGTCCATGGGCCAATACGGCATGAGCGAAGGTGAGCCGGCCTTGCGTGAAGCGCTGGCAGCGCAGGCGCGATCGTTGGGCCTGGCTTGTGAGGCCGGTCAGGTATTGGTCGTGAGCGGTTCCCAGCAAACCCTCGATCTGGCGGCAAAGCTGCACATTGACGTCGGCACCGAGATCCTGCTCGAAGCGCCGACCTACCTTGCGGCTCTACAGATTTTCCATTTGTTCGGCGCCAATTGCATCACCGTGCCCCTTGAAGCGGATGGCCCGGACCTTGAGCAATTGCGGGCCCGGCTGCAGCAGCATCGACCGGCGTTCATCTACCTGATCCCAACGTTCCAGAACCCTTCGGCGGTACGCTACAGCGAGGCCAAGCGCGATGCGGTCGCGGCACTGCTGGACGAGTTCGGCGTGACGCTGGTGGAGGACGAGCCCTATCGCGAACTGACCTTCGATGGTGGCAGCGCCACGCCAATTGCCGGCCGTTTGAAAAAGGCCAGCTGGATCTACACCGGCACGGTGTCGAAGACGCTGCTGCCTGGGTTGCGTGTGGGTTACCTGATTGCCAGCCCGGACCTGTTCCCGCATTTGCTACGGCTCAAGCAGTCAGCGGACCTGCACACCAATCGCATCGGCCAGTGGCAGGCGTTGCAATGGATCGGCACCGAGCAGTACCGCAGCCATTTGAGTGAATTGAGGGATTTCTACCGGGATCGCCGCGACAGGTTCCAGGCCGCGCTGCAAAAGCATTTCGCCGACATCGCCGACTGGAACGTGCCCCAGGGCGGGCTGTTTTTCTGGCTGACCCTCAAGCAACCGCTGGATACCCGGACCTTGCTTGCCGCAGCCCTGGAGGAGGACGTGGCGTTCATGCCAGGAGAACCGTTTTTTCCCGAGCCGGACAAGCATCCCGGGCACTTGCGGTTGAATTTCAGCTATATCGATCCGGCGCGGCTGGATGAAGGGCTCAGGCGACTGGCGGGGGTGGTGCGGGGGGCTTTGGCTGCCGAGGCGGCTTGAMAFSERVSRLKSSLIREILAAAQRPEVMSFAGGLPAEAMLPKVQWEDMPLSMGQYGMSEGEPALREALAAQARSLGLACEAGQVLVVSGSQQTLDLAAKLHIDVGTEILLEAPTYLAALQIFHLFGANCITVPLEADGPDLEQLRARLQQHRPAFIYLIPTFQNPSAVRYSEAKRDAVAALLDEFGVTLVEDEPYRELTFDGGSATPIAGRLKKASWIYTGTVSKTLLPGLRVGYLIASPDLFPHLLRLKQSADLHTNRIGQWQALQWIGTEQYRSHLSELRDFYRDRRDRFQAALQKHFADIADWNVPQGGLFFWLTLKQPLDTRTLLAAALEEDVAFMPGEPFFPEPDKHPGHLRLNFSYIDPARLDEGLRRLAGVVRGALAAEAAPGPT0007135_1902DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007135-lysN-K05825NANA
D1-35_01855372hypothetical proteinGTGATCGTCAAAGCGCTTCGAGTTGGTCTGGGCCAGCTCATCATCTTCATCGATTTCATTACTCGCCCCGGCAAGAAAAAGCGCTCGGCCGAAGCCCAGGCGCAAGTCGACCAGGCGGCCCGCAGCCTGACGCTTTATCAGTTCCATGCCTGCCCGTTCTGCGTGAAGACCCGCCGCGCCCTGCACCGCCTCAACGTGCCCGTGGCGCTGCGCGATGCGAAAAACAACGAGCAGGATCGCCAGACTCTGCTGGAACAGGGTGGCCGGATCAAGGTGCCTTGCCTGCGCATTGAAGAGAATGGCGAGACCACCTGGATGTATGAATCCAATGTGATCATTGATTATCTGGATAAGCGGTTTTCGGCGGTCTGAMIVKALRVGLGQLIIFIDFITRPGKKKRSAEAQAQVDQAARSLTLYQFHACPFCVKTRRALHRLNVPVALRDAKNNEQDRQTLLEQGGRIKVPCLRIEENGETTWMYESNVIIDYLDKRFSAVNANANANANA
D1-35_01856561folE_2COG0302GTP cyclohydrolase 1ATGGAATCAGCCTCTGTGACACTGGAACAGAATTACACCGCGATCCTCGGGCAACTCGGCGAGGACGTTTCCCGCGAGGGCCTGCTCGACACGCCCAAGCGCGCTGCCAAGGCCATGCAGTACCTTTGCCGCGGTTATGAACAGACCCTGGAAGAAGTCACCAACGGTGCCTTGTTCAGCTCCGACAACAGCGAAATGGTGCTGGTCAAGGACATCGAGTTGTACTCGCTGTGCGAGCACCACCTGTTGCCTTTCATCGGCAAGGCCCATGTGGCCTATATTCCGAGTGGCAAGGTGCTGGGCCTGTCGAAAGTCGCGCGTATCGTCGATATGTATGCGCGTCGCCTGCAGATCCAGGAAAACCTCAGCCGCCAGATCGCCGATGCGGTCCAGCAGGTGACGGGGGCCATGGGCGTGGCAGTGGTGATCGAAGCCAAGCACATGTGCATGATGATGCGCGGTGTGGAAAAACAGAATTCTTCGATGATCACGTCGGTGATGCTCGGTGAATTCCGTGAAAACGCGGCGACCCGCATGGAATTTCTCAGCCTGATCAAGTAAMESASVTLEQNYTAILGQLGEDVSREGLLDTPKRAAKAMQYLCRGYEQTLEEVTNGALFSSDNSEMVLVKDIELYSLCEHHLLPFIGKAHVAYIPSGKVLGLSKVARIVDMYARRLQIQENLSRQIADAVQQVTGAMGVAVVIEAKHMCMMMRGVEKQNSSMITSVMLGEFRENAATRMEFLSLIKPGPT0007875_4417DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007875-folE-K01495NANA
D1-35_018571209intQCOG0582Putative defective protein IntQATGGCTCGAAAGCCAATGGGATTGCCCACCGGAGTTGAATTTGTCGGCCAGTCCGTCAGGATTCGCTTCACATGGAACGGGCAACGCCGTTGCGAAACCCTCCCCTATCCCCAGACACCGAAAGGCATTAAAGCGGCATCCGATCTACGCGCTAACGTAACCAGCCTGATCAAGCATGGCGTGCTCGATGACCAACGCTATGCCGAGCTGTTTCCCAACTCCACTTATGCCACCTACTCGGCTACTCCCCGCTTCGGGGAGTATGCTCAGGAGTGGTTAAACAGTCGGGAGGTCGTAGCAGGCACACGCAAGAACTACCGGGCATCCCTCAATCTGTACTGGATGCCTCACCTCGCCTTGCTACCCGTCGATAGCATCACCTCGGTGCTGCTGCGCAAAATCGTAGCCAATACTGAATGGAAATCGCCGGGCGTTAAGCGTTCGGCAATCCAGCGACTCACTACAGTGTTCAGTACTGCCGTCAAAGATGGGCTGATCAATCGCAACCCGGTCGAGTCCATCGAGCTTCCCGTGAAAACGAAAAAGCCCATCGACCCCTTCACGGTGGCGGAAGCCAACGCCATCATTGAACACCTCTATAAGACGCTGACCCATTCGATGCGGATCTACGCGGCTTACTTCGAGTTCGCCTTCTATACCGGTATGCGCCCTAGCGAGATAGCAGCCCTTCGCTGGGGCGAGATAGACAAGGACAAGCGCCTAGCCAACGTGTGTCGGATCGTCGCGGACTATAAGATCGAGGAGCGCACCAAAACCCGCAATGAACGGCAAGTCATGCTCAACAGCCGTGCCCTGCACGCCCTTCAGGTGGCGGAGCACATCGCCGAGCAGCGTGCGAAACAGAGCCGCAGGAAGCAGCCGAAATCGCCCTATGTGTTCCCACCCACAAAAAATTTCGAGTTCATCCAGCAATCCAGCGTCACCGACAAACACTTCCAGGCGGCGCTGACCGAATTGGAGATTCGCGCCCGCCGGCAATACAACTGCCGACACACATACGCTACCATGTGCCTCATGGCGGGTATGAACCCTGCGTTTATTGCCACTCAGCTGGGTCACAGCGTTCAGATGTTGCTCTCGACCTATGCCCGATGGATCAACTCCAGCACCGACTGGGGCGAACTCGGGAAACTCGAAAACAGCTTGATTGGTACAAAATTGGTACAGACAGAACAAGTACCCTCCTGAMARKPMGLPTGVEFVGQSVRIRFTWNGQRRCETLPYPQTPKGIKAASDLRANVTSLIKHGVLDDQRYAELFPNSTYATYSATPRFGEYAQEWLNSREVVAGTRKNYRASLNLYWMPHLALLPVDSITSVLLRKIVANTEWKSPGVKRSAIQRLTTVFSTAVKDGLINRNPVESIELPVKTKKPIDPFTVAEANAIIEHLYKTLTHSMRIYAAYFEFAFYTGMRPSEIAALRWGEIDKDKRLANVCRIVADYKIEERTKTRNERQVMLNSRALHALQVAEHIAEQRAKQSRRKQPKSPYVFPPTKNFEFIQQSSVTDKHFQAALTELEIRARRQYNCRHTYATMCLMAGMNPAFIATQLGHSVQMLLSTYARWINSSTDWGELGKLENSLIGTKLVQTEQVPSPGPT0021996_592DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-INTEGRASES|RECOMBINASES,PGPT0021996-int|intR|intV|intQ|intW|xerC-K14059NANA
D1-35_01858543hypothetical proteinATGAATTGGATCCTCACGCATACCGGCAAACGCTTTGACCTGTTCGAACCGGACGCCGACATGATCGACCCACGAGACATTGCGCACTCGCTCGCTCATTTGTGCCGCTTCAACGGGCACACCCACGAGTTCTACAGCGTGGCCCAGCATAGTTGCTTGGTTGCGGATCTGGTGCCGGCCGAGCACAAGCTCTCCGCCCTGCTCCACGACGCCACCGAGGCTTACCTGGGCGACATGACCCGGCCGCTCAAAGAGTGGATGCCTTACTACCGTGGATTCGAGGACGTCATATGGGGGCGTATTTGCGAGCGCTTTGGCTTGGAGATCGACCTCCCCGCAAGCGTGCACCAAGCCGACCTGATCGCCTTGACCACCGAACGGCGCGACCTGATGCCGCCCGATCCGGACCCATGGGATTTCCTTGTCGGTATCGAACCCGCGCCCGAACGCATCCGGCCATGGTCACCCACCGAAGCCCGGCTCACGTACCACCAGCGACTGATGGACCAACTCGCTATTGAACACCGGAGGAAAGCGGCATGAMNWILTHTGKRFDLFEPDADMIDPRDIAHSLAHLCRFNGHTHEFYSVAQHSCLVADLVPAEHKLSALLHDATEAYLGDMTRPLKEWMPYYRGFEDVIWGRICERFGLEIDLPASVHQADLIALTTERRDLMPPDPDPWDFLVGIEPAPERIRPWSPTEARLTYHQRLMDQLAIEHRRKAANANANANANA
D1-35_01859222hypothetical proteinATGAGCCGCCACAGCCCGATGCTACGCCTCTCACCTCAAGATGCCGGCGTGCTGCACCAGCAACACGCCAAAGCCACCGCCGAACTGCGCGAAGTGACTCGATTCCGCAAGGAGTTCGACCGGCAACTGTCGCTGCTGATCGGCTACGACGCCCTGCGCAAGTTGCACAAGGACACCCAGAACGCCCTGCTACTCGCCGACCTGGTCAAGGAGGCAGCATGAMSRHSPMLRLSPQDAGVLHQQHAKATAELREVTRFRKEFDRQLSLLIGYDALRKLHKDTQNALLLADLVKEAANANANANANA
D1-35_01860429hypothetical proteinATGACTGCAATTCAAATATGCGCGTTGATCGGCCTGATAGTCGGCGCGGCCCTTATCTACTGGACCGGCTACCGAGGCGGGCTGCTCGACGGACGTGCTGCGGGACAGATTGAAGGAATTGAGGAAGGCAAAGCAATACAGAGATCCGACTCATCAGGGACGATCCGGGATCTGAACTTACTACTCAATCAGTCGAGAGCGAGCAGAAAGGAACTATATGCTCAATACGAGCGCGCCCTTGCCGCCTCGAAGCTCGGTAAAAAAGACCGCGATACCCTATTAGCCGTTGCTCAGCAGCTGCAATTGGCAGCCGAAACGTTCAAGGCACTGAAGTCTACCGAGCAAGAAATCCGCACCCATCGACTGCGCACAAAGACTCTGGAGATTGCAGCTCTACTGGATCAGGTCAAAGTGGAGGACGCAGCATGAMTAIQICALIGLIVGAALIYWTGYRGGLLDGRAAGQIEGIEEGKAIQRSDSSGTIRDLNLLLNQSRASRKELYAQYERALAASKLGKKDRDTLLAVAQQLQLAAETFKALKSTEQEIRTHRLRTKTLEIAALLDQVKVEDAANANANANANA
D1-35_01861330hypothetical proteinATGACTAGCCAGCCTCAAAACCCGCTGCGCCTGATGCCAGCACCGGAGACGGCCACCGTCGAGCTGCTGTATCGCACCTTCGGCGACGTTCTTATCCCCCTCGAAAAGCTGCGCGTGCAGTACTTCCGCAACCTTAACGAGCAGTCATTTGCAGCCGAAATCACCAGCGGCCGCATTCAACTGCCCGTGACCACGCTGGACAGCAGCCGCAAGGCACCGAAATACGCGCACATCCGCCACGTCGCTGCACTGATCGACATCCAGGCCTACAAGGCCGACGAAGTCCACGCGAAGGCCCACGCCGACGCAACGGAAGAAGTCCAACCGTAAMTSQPQNPLRLMPAPETATVELLYRTFGDVLIPLEKLRVQYFRNLNEQSFAAEITSGRIQLPVTTLDSSRKAPKYAHIRHVAALIDIQAYKADEVHAKAHADATEEVQPNANANANANA
D1-35_01862285hypothetical proteinATGGAGCGCAATCTCGAAAAGACCGCCAAGCACTTTGGCCTGACCCGCCCCACCCTGATCAAGCTCATGCGTGAGAAGGGTCTGCTCACCGACCGCAACCTGCCGGCGTTCCCCGTCCGCGACCGTGAATACCTTCGGGTCAAGGACAGCAACTGGTACCACGACACGCTGGGCATGCAGTACAGCCAATCGACACGCGTCCGGCAGGCCGGCATCCCCTGGCTAGCAGAACAACTGGGCCTCGACCTTCCTGCCATCCCGGCAGACAACCGTGACGTGGCCTAGMERNLEKTAKHFGLTRPTLIKLMREKGLLTDRNLPAFPVRDREYLRVKDSNWYHDTLGMQYSQSTRVRQAGIPWLAEQLGLDLPAIPADNRDVANANANANANA
D1-35_01863585hypothetical proteinATGAGCAAATTCAAGATCGACAACCGCGCACTGACGTTGCTTAGCGCCCAGGTAAACCTCAGCGGGACTATCAACCACACCCTACGGTCAACGCCTCGACGCGATGTGCTGGCGTTTCGGTTGAAGGTTGAACGCAACAAGGCGGACAGCACCTTCACCATTGAGCTGGGCTCAGAGCGCCACACGTTGACTTTGCCCAACACCAAGAAAACTCACCTGAAGCTGGCCGACTTCATTGAGGAGATCGTCAACGGCCCTTTTGACCAGACTGGCGAACAGCATCCGGTACGACATGCTGAGCGCGAGTACGGCGCTTTCAGCGCCCAGCAGCGCGAACAAGTTTACAGGCTGGTTTGCACGGGCGGATTTATCGACCTGGACCTGGGCTTTGAACTGCCGATCCGACTCGCCGTGCACCGCACACGTACACGCTCGGGCATCACCGTAGTCATGAGCATCGGCATTAAAAGCCCGCGTACCAAGTGCTTCACCGCGTACGGCACCGACGCCGAGATGTACGAGCAGGTTTGCGAATCCATCAACCACCTGGCTGCGCTGGCAACACCCGCCGCGCACGCAGCATAGMSKFKIDNRALTLLSAQVNLSGTINHTLRSTPRRDVLAFRLKVERNKADSTFTIELGSERHTLTLPNTKKTHLKLADFIEEIVNGPFDQTGEQHPVRHAEREYGAFSAQQREQVYRLVCTGGFIDLDLGFELPIRLAVHRTRTRSGITVVMSIGIKSPRTKCFTAYGTDAEMYEQVCESINHLAALATPAAHAANANANANANA
D1-35_01864177hypothetical proteinATGCACACCACAGCATCCATTCACATCCATCCGGCAGTTGCCGACCTAACCCGCATCTTCGAAGTAAGGCGTCTGGCCCGCATCTACGGCTGCGCATTCATCCCGTCTAAACCCAAGCAACAGGCCCGTAGCGCACCGGCGTCCTTCGATCCAAACGACGGAGGACGGGCGGCATGAMHTTASIHIHPAVADLTRIFEVRRLARIYGCAFIPSKPKQQARSAPASFDPNDGGRAANANANANANA
D1-35_018651317hypothetical proteinATGGCGTCGCCTCTTTCCGATTTAGATGAACTGGTTTTGAAATGCCGGGACGAAAAGGCCAAGAGCTATATTCGCGAGGCTGTAGCATGCTATAAATCTGGTGCATTTCGCTCATCGATTGTTTCGACTTGGATTGCCGTGGCTTTTGATATCATCGATAAATACAAGGAGTTATCCTTGGCAGGTGATAAGCAAGCCGAGGGAGTAATACATGCCTTCGAAGCGGCGCGAGTGGCGAATGATATCTCTGCCTCTTTGAAGTTTGAACGAGAGCTGCTAACTAATGCTCGAGACAAATTTCAACTGATATCGCACGTTGAGTTTACAGATTTAGATCGGCTACAACAGGACCGTAATAGATGCGCTCATCCATCAATGACCGTAGATAGTGAAATTTTCAACCCTCCTGCCGAACTCGCAAGGGTACATATGAGATCGGCAGTTGAGTATTTACTCCAGTACCCACCTGCTCAAGGAAAGTACGCGCTTGGCTTGTTGCTCAAGGAGGTTGACTCGGGCTATTTTCCCGCCGATACAGAGAAGGCAGTCGTTGCGTTTAGAAACGGCCCTTTGCTTAAGGCGCGTTCGGCTCTCGTGACCAGTTTCATTGTGGTTCTTTTAAAGAAATTTTTCTCGGGTTTAACGCTTAAAGAAGAGCTGCAAGTTTCAACTGCGCTTAAAGCGATTGAAACGATGCATAAAGTCGTATATGACCAAACAATGGCGGAAAAGCTTTCTCCAGTTGTTCGTGCTTTAGACGCAGAGGATCTCGATAACGTTCTCACCCTACTTACCTTGTTAGACGACGCATGGGTTATGCTTGATGAAGATCAGCAGCAGAGAATTTCTGCCTACGTTGAAGAGCTGCCTACCGATAATTTTGACCAGTTAATCCCCCTGTTGGCACTTGAAGGCTTAGAGGTACCTGCGAAAAACCGAGTTATGAAAGCTAATCGTTCGGAAATTAATCGCTCAAAAACAACCTTATACAATGACGTCGTCGGGGAGAGGGTGGCCGAGCTATTCGCTATCTCGCCTTCTTTTGCTATGGCAAATGACTTTGGTCACACGGTTATCAGGTTCGCGAACCATTTTACCAAGCAACAAGTCCTTGACTTAATTCGAGCGTGTGGAACAAATGATCAAATCAAATACAGCTTTGTAGTGGGTGCTGTAATATCTGCTTTGAAGGATAATAAGCAAGTTGAGCTTGGGGAGTTGAATGCTGTTTTGATTGAAGTAGGTCTGGAAGAGTATGTTAATGACCCTGAGCAGATAGGAGATGACCTAGAAGACCAGTCTCCGGATGCGGCATAGMASPLSDLDELVLKCRDEKAKSYIREAVACYKSGAFRSSIVSTWIAVAFDIIDKYKELSLAGDKQAEGVIHAFEAARVANDISASLKFERELLTNARDKFQLISHVEFTDLDRLQQDRNRCAHPSMTVDSEIFNPPAELARVHMRSAVEYLLQYPPAQGKYALGLLLKEVDSGYFPADTEKAVVAFRNGPLLKARSALVTSFIVVLLKKFFSGLTLKEELQVSTALKAIETMHKVVYDQTMAEKLSPVVRALDAEDLDNVLTLLTLLDDAWVMLDEDQQQRISAYVEELPTDNFDQLIPLLALEGLEVPAKNRVMKANRSEINRSKTTLYNDVVGERVAELFAISPSFAMANDFGHTVIRFANHFTKQQVLDLIRACGTNDQIKYSFVVGAVISALKDNKQVELGELNAVLIEVGLEEYVNDPEQIGDDLEDQSPDAANANANANANA
D1-35_01866648lexA_3LexA repressorATGAAGATTTCAGACACGCGCCTGCAGAATTTCCGAAGAGTCTTGGCTGAGAAAAAACTCCGCTTGACCGACATCGCTGACCTTTTGGGCAAAGCACCGGCTCAAGTGAGCGCGTTCGGTGGGAAGAATCCCACGAAAGGTATTGGTGATCAGATTGCCCGGGAAATAGAGCAGGCATTAAGTCTTCACACCGGTTATCTAGACATGCCTTTTGGAATAGGCGAATTCAATAATGCGACCGTATTGAGTCACACAGGACGTAAATTGCCTGTTATTGGATCTATCGCCGCCGGGGCATGGTGTGAGTCGGATATAGTTTTCGATCCGCGTGATGCGGAGGAATGGATCGATGCCCCCGGACCTGTCGGGCCTCGGGCTTTCATACTTCGCGTCGAAGGAATGAGCATGGAGCCGAAATTCGTCGAGGGCGATAAAATAGTCATCGATCCCTCTCTAGAAGCTCTACCTGGTCATTTTGTTGCCGCAAAAAGAACCAGAGATCAAGCGGCAACACTCAAGCAATTGAAGCAAGAAGGGAATGAGCAGTATCTCTATGCGCTAAACCCTGACTGGCCGGAAAGAATTATAAGAATGACCGAAGAATGGACCATCTGTGGAAGAGCAAGATGGAAAATATCAGACCTATAGMKISDTRLQNFRRVLAEKKLRLTDIADLLGKAPAQVSAFGGKNPTKGIGDQIAREIEQALSLHTGYLDMPFGIGEFNNATVLSHTGRKLPVIGSIAAGAWCESDIVFDPRDAEEWIDAPGPVGPRAFILRVEGMSMEPKFVEGDKIVIDPSLEALPGHFVAAKRTRDQAATLKQLKQEGNEQYLYALNPDWPERIIRMTEEWTICGRARWKISDLNANANANANA
D1-35_01867231hypothetical proteinATGAATCTGCGCGATTACATCAACAATTTGGGTCCCGAGGAGCTCATGGCTTATGCAGCGCGTTGCAGCATAGCGGTTAGCTATCTAAGGCTACACGTCAAGTACGCGAGCAAAGATCCCAGCGTCTCGCTGATCAAGTCATTGACCCGCGAAAGCGAAGGCTGCGTCTCCCTTGCCGAAGTGCTAGAGCATTTTGGTATTACCGAAACGATTGTATCCAAAGCTGCTTAGMNLRDYINNLGPEELMAYAARCSIAVSYLRLHVKYASKDPSVSLIKSLTRESEGCVSLAEVLEHFGITETIVSKAANANANANANA
D1-35_01868519hypothetical proteinATGAGCCGAATCGCTCTGAGTTGCGTCGAACGAGCACAGCGGGAAGTCCTGCCGCTCGATCTGGCGCTTTACCATGCCGCTCGGGACTACCCTGGCGGCGCCGCTGCAATTGCCGCCACCACCGGCCGAAACCCCACCACGCTGCAGCACAAGCTGTCCCCCACGCACCCCAGCCATTCGGTAAACATTCAAGAGTTTGGCGAGATCCTCGAACTGACGAAGGACAGGCGCATCCTGGATGCGGTGCATGCCTTGGTCGGCGATACGATCTGGCACGAGCTGTCTGAGGTGTACACCACTGACATGCCGGAAACCCTGACCGTCGGCCTTGCTGAGTACTTTCGGCAGGTGGCAGATCTGGCCGACACCTGGGCCAAGAGCATTGGTGATGGGGTGGTCAGCGATCAAGAGCTGGCCGCGATCCGCCTGCAGGTGTTTCGAGGTATCCAGGGGCTGCTGGGCTTGTTCAACCGCGCCACGTACGTCAACCAGACAACGCGGGGTGATGGCCGTGGCTGAMSRIALSCVERAQREVLPLDLALYHAARDYPGGAAAIAATTGRNPTTLQHKLSPTHPSHSVNIQEFGEILELTKDRRILDAVHALVGDTIWHELSEVYTTDMPETLTVGLAEYFRQVADLADTWAKSIGDGVVSDQELAAIRLQVFRGIQGLLGLFNRATYVNQTTRGDGRGNANANANANA
D1-35_018692220hypothetical proteinATGCTCGATGACGTGCTGAATCAGTTTGCGGACTTCGGTCTGGAGCCCGCGCAGCCACTGCTTTACGGCAAGCTGACTCGATGCAAGACCGTCCTGGATAAGGGCAAAGAGAAAAACGGTTGGTACGTTCTACACGAGCACCACACCGAGAAAGGCGAAACTTTGATCTTCGGTGCGTTCGGCGACTGGCGTACAGGGGAAACGCAAAAGATCAAGGTGAAGCCTGGCCGGATGACGCCTGAAGAGCGTGAAGTCATGCGCGCTCGTCAGGAGGAAGCCAAGCGCAAGGCCGCCGAGAAGGCTGCCAACGCTGCCCGTCGAGCGGCTAACCGTGCTGCTGGTTTATTCAAGCGGATGCCCGAGAAGGGCCGTAGCGCCTACTTGGACCGAAAGCAGATCGTGGGCCTCGGCGTTCGTTATGCTCCGCGCTCCGGCGCGGTTTTGGTGCCCATGCAAAACGCTCGGGACCAGATCGTCGGGTTACAAGTGATATTCCCCGAGAAGCAAGAGGACACCGGCCGCGACAAGTCTTATTGGCCCTATGGGATGGCGAAGGAAGGCGCCTTCCACCTCATTGGTCCGCACCCTGAGCCGGGTGAGCCAGTGCTGGTGTGTGAGGGCTACGCCACCGGTGCAAGCCTGCACATGGCGACCTCGTTGACGGTCGCCATTGCCTTTGATGCGGGCAACCTCATGACGGTCGCCAAGGCAATGCGCGAGCGGTTCCCGGGGCGTCCACTAATCATCTGCCGGGATGATGACTGGAAAACCAAGCGCCCGAATGGCGAGCCCTGGAACCCAGGTGAAGAGAAAGCCAACAACGCGGCAACGGTTGTAGGCGGTCAGGTAGTAGGTCCGATCTTTTCGGGGGAGCGAGAGGACAAGTGGACCGACTTCAACGACCTGCACTGTGCTGAAGGATTGGAGGCGGTGCGCCGCCAGGTACTGGCGGTGGTCAAGCCACCTGCAGCGGGTGGCTGGAAAGACCAGCTGGCCCGCACTGAAAACGGCATGTTGATCGCGCACATGCAAAACGTAGAGCTGATCCTGGGCAACGACGAACGTTGGGCCGGTGTGATTGGCTTCAGTGCGTTCAGCTCCAAGATCGTCAAGCTGCGTGCTGCCCCGTATGGCGGCGGTGTCGGCGATTGGGCCGACATTGATGACATGCTGGTCATGAAGTGGCTCGCGCAACAGTACAACCTGCGGGTCAAGGCGAGCAGCGTTATTGAAGCTGTCAGTGTTGTTGCACATGACCATGCCTTTCACCCGGTACGCGATTATCTCAATGGCTTGGAGTGGGATCGGGTACCTCGGCTCGACACCTGGTTGACAGACATCATGGGCGTAGCCCCGACGGATTACAGCTCCAAGGTCGGTAAGCGCTGGATGGTGTCGGCGGTCGGCCGGGTGATGCAGCCGGGCTGCAAGGCTGACTCGGTGATGATTCTCGAAGGCGCGCAAGGTGCCGGTAAGTCCACCGCCATGTCGGTCTTGGGCGGCGCTTGGTTTATGGACACTCCTTTCGCCTTGGGCGACAAGGATGGGTTCCAGGCCATTCGCGGAAAGTGGATCGTTGAGCTGGGAGAGCTGGACAGTTTCAACAAGGCCGAGTCCACCAAGGCAAAGCAGTTCTTCTCGGCCTCGACGGACACTTACCGCGAGAGCTATGGCCGTAGAACGATGGACGTGCCACGCCAGTGTGTTTTCGTGGGTACGACGAACCAGGATGAGTACCTGAAGGATGCCACAGGGAACCGTCGGTATTGGCCGGTGGCTTGTACCAAGGTGGACCTTGATAAGTTGCGCGAGATCCGCGACCAGCTGTGGGCCGAGGCGATGTTTTGCTATCAGTCCGGCGATATCTGGTGGGTCAACCGGGAGGAGGCGCCGCTGTTCGCCGAGGCGCAGGAAGAGCGCTTTGTGGTGGATGAATGGGAAGGCCCGATTCTGGCCTGGCTCGAAGAGTCTCAGATTGGCGAAACCGCGACCGGCACCGACATTCTTCTGGGGGCTTTGAAGCTGGACTTCGGTCACTGGGGCAAACCAGAACAGATGCGGGTCGGGGCAATCATGCACCGGTTGGGTTGGCGCAAGGTCCGGCAACCTGCTCTGCGTAAGAGCGGCATCAGGCCTTGGGCTTACAAGAAGCCAGAAAACTGGGGCAGGTCATCGAACCTTGAGCAGCAGCCGGTTGAGGAGCCATGTTTCGATGATTAAMLDDVLNQFADFGLEPAQPLLYGKLTRCKTVLDKGKEKNGWYVLHEHHTEKGETLIFGAFGDWRTGETQKIKVKPGRMTPEEREVMRARQEEAKRKAAEKAANAARRAANRAAGLFKRMPEKGRSAYLDRKQIVGLGVRYAPRSGAVLVPMQNARDQIVGLQVIFPEKQEDTGRDKSYWPYGMAKEGAFHLIGPHPEPGEPVLVCEGYATGASLHMATSLTVAIAFDAGNLMTVAKAMRERFPGRPLIICRDDDWKTKRPNGEPWNPGEEKANNAATVVGGQVVGPIFSGEREDKWTDFNDLHCAEGLEAVRRQVLAVVKPPAAGGWKDQLARTENGMLIAHMQNVELILGNDERWAGVIGFSAFSSKIVKLRAAPYGGGVGDWADIDDMLVMKWLAQQYNLRVKASSVIEAVSVVAHDHAFHPVRDYLNGLEWDRVPRLDTWLTDIMGVAPTDYSSKVGKRWMVSAVGRVMQPGCKADSVMILEGAQGAGKSTAMSVLGGAWFMDTPFALGDKDGFQAIRGKWIVELGELDSFNKAESTKAKQFFSASTDTYRESYGRRTMDVPRQCVFVGTTNQDEYLKDATGNRRYWPVACTKVDLDKLREIRDQLWAEAMFCYQSGDIWWVNREEAPLFAEAQEERFVVDEWEGPILAWLEESQIGETATGTDILLGALKLDFGHWGKPEQMRVGAIMHRLGWRKVRQPALRKSGIRPWAYKKPENWGRSSNLEQQPVEEPCFDDNANANANANA
D1-35_01870360hypothetical proteinATGATTAAGGAGATCGACGCGCGGCTGCGCAAATGGGCCGAGGAGCTGCATAGCGACCTTAGTGCCGGCGGGCTCGCCGGTGGGAACATGGTTGCCATGATGATGGAGAGCAATGGACAGCTGATTCGAGGCCGGCGGGCGTTCCGTGCGCCGCTGGAAGGTTCGCTTGATATCGAGCTGATCGTGACCAAACATCTCGATCCTCTGCATGTGCAAATCGTGCGAGAGCACTACTGCAACCAGGACAGCGACATGCGCTTGAAGTATGCCCACTGCGGCTGCGGGCGCGACACCTACTACCAGCGTCTGCATGACGCGCACCTGTGCATCTATTGGCTGCTGATGGGAGTTGCTGCTTGAMIKEIDARLRKWAEELHSDLSAGGLAGGNMVAMMMESNGQLIRGRRAFRAPLEGSLDIELIVTKHLDPLHVQIVREHYCNQDSDMRLKYAHCGCGRDTYYQRLHDAHLCIYWLLMGVAANANANANANA
D1-35_01871345hypothetical proteinATGACGAACGAGCAGCAAGCACTGGCAGAAATGCCGATCTGGTTAGTAATTCTTTTGGCCTTGGTCGGCGGCGTATCGGGGGAGATGTGGCGGGCCGACAAGGATGGGGCGCGGGGCTGGGCGTTGTTGAGGCGCCTGGCACTGCGGTCCGGTGCCTGCGTTGTCTGCGGGGTGTCGGCGATGATGTTGATGATCGCCGCCGGCATGTCGCTCTGGACAGCGGGCAGCCTGGGCAGCATCACCGCGATGGCCGGCGCCGATGTCGCCATCGGCCTTTACGAACGCTGGGCCGCCAAGCGGCTGGGTGTAGCAGAGGCACCGCCGGCCGGTGGCGGGCAGGGATGAMTNEQQALAEMPIWLVILLALVGGVSGEMWRADKDGARGWALLRRLALRSGACVVCGVSAMMLMIAAGMSLWTAGSLGSITAMAGADVAIGLYERWAAKRLGVAEAPPAGGGQGNANANANANA
D1-35_01872129hypothetical proteinATGATTTTGACGCCGGGGACCCTGCCGTTTTCCCTGGGGTACGGGGTCGCAAACCCGCGGGAAAGCGTTAGCGGCAGGGTTGCCAGCTTACTGAAATTCAAGCCATTGAAATTGAAAGGTCTGCATTGAMILTPGTLPFSLGYGVANPRESVSGRVASLLKFKPLKLKGLHNANANANANA
D1-35_01873603hypothetical proteinATGACAGAACCACAGTACCTGTCGAAGAGCGCCTTCGCGGCCCGGATCGGCAGGGCGCCGAGTTACATCACCTGGTTGAAAAACAACAACCGGCTGGTGCTCAGTGCCGACGGCAAACAAGTTGATGTTCAGGCCAGCGAAGCGTTGATTCGCGACACTGCCGACCCGAGCAAAGCCGCCGTCGCCGAGCGTCACCAGCAGGACCGGATTCAGCGTGACGTGTACGGCCAGCTTTCAACCTCGGTTGAGCCGACTTGCACGGCTGCGCCGCCGCCCGCGAACACCCCTGCGGGGCAGCTCCCCGATTTCCAGAAAGCCCGCGCTCTGCGCGAGCACAACTTGGCCCAGCTCGCGGAAATCGAGCTGCACAAAGCCAAGGGATCGCTAGTCGCATTACCCGCTGTGAAATTGGGTGCCTACAACGCTGGCCGCCTCCTGCGCGATCAGCTGTTCGGCATGCCGCCACAGCTGGCGCCGGAGCTGGCGGTCATGACTGACCCCTGGGAAATCGAAAAGCACCTGACGGCGGCCTTGCGCCGCACGCTGGAGGACGCGGAGCGCTTGTCCTCGGCGGACCTTGAACACGCCCTGAACACGAGTTGAMTEPQYLSKSAFAARIGRAPSYITWLKNNNRLVLSADGKQVDVQASEALIRDTADPSKAAVAERHQQDRIQRDVYGQLSTSVEPTCTAAPPPANTPAGQLPDFQKARALREHNLAQLAEIELHKAKGSLVALPAVKLGAYNAGRLLRDQLFGMPPQLAPELAVMTDPWEIEKHLTAALRRTLEDAERLSSADLEHALNTSNANANANANA
D1-35_018742013hypothetical proteinATGCCCACGGAAATTCCTGACGGTGCAGAGGTGTACCGCGAGGCGTATTTCCGTGGGCTGCGTCCCGACCCGGATGTCTGGATCGATGTATGGGCCGACGAATACATGCGCATCCCGCGTGACACCGGTGCCGCCGAGCCCGGCCAGTACCGCACTTCGCGCACGCCGTATGCCCGCGAACCCATGCGTTGCTTGTCACCGGCTCACCCCTGCAAACGCGTGGTGACCATGGTCGCCTCGCAGTTGATGAAAACCCAGATCGCCTTGAACTGGATCGGCGGCCTGATCCACATGGCGCCGTCGAACATTCTGACGTTGCTGCCGAGCCTGGGCTTGGCGAAGCGGGTCTCCTCGCGGATTGGCAAGACCATCAAGGCTACGCCGGTACTGCGTGAACGGGTGGCGTCCAGCCGCTCGCGAGACTCACGCAACACCATGGACACCAAGGAGTTCGAAGGCGGTTCGCTGTACGTCACCACAGCCGGCTCGGCGGCCAACCTTTCGGAGTTATCGGCGCGCTACGTCTACGGCGACGAGATCGACCGCTGGGAAGTGGACATCGGCGAGGAGGGTGACCCCATCGAGCTGGCGGAAACGCGGGGTAGTACGTTCGGTCGCAATGCGAAGTTCTACTTCTCCAGTTCGCCAACCATCAAAGGTGCCTCGCGGATCTCCGACCTGTTCGAGGGCAGCGACCAGCGTCACTACTACGTGCCGTGCCCCACCTGCGGCCACATGCAGACTCTGGAATGGGAAAGCTTGCACTACTCGCGGGACTTCAGCGTGGTGCACTACCAGTGCGCAGGCCCTGATTGTGACGTGCTGATCGAGGAGTACCACAAGGCCGAGATGCTCGCCAAAGGCGAATGGCGCGCCCATGCCGAGGGTGACGGCGAGACGGTAGGGTTTACCCTCAACGCCTTGTATTCACCGCTCGGCTGGATGGACTGGAAATCCCTCGCCAAGCAGTTCGAAAAGGCTAAAAAAGCCCAGGCCAAGGGCGACCTTGAACCGATGCAGGTGTTCTATAACACCCGTTTGGCGAAGGTGTGGGACAGCGCCCAGGAGCAAACCAAGGCCGATACCCTGAAGCACCGGGCACGCCTGGAAAACTTCACCCTCGGCTCGATGCCGGCCGGCGTGCTCATGGTCACCGGCGCCGTTGACGTCCAGGCCAACCGCCTAGAGTTCATGGCGATGGGCTGGGGCGTCGGCATGGAGCGCTGGGTCATTGACTACCAGATCGTCGCGGGCGACCCGGCTGACGACCGCACCTGGGCGGCGCTGGACGAGTTGCTCAAGGCCAAGTATCGGCATCCATGCGGTGTTGGCCTGGGCATCCTGGCAACGGCTGTCGACTCCGGCGGTCATCACACCGACGAGGTTTATCAGTTCTGCCGCGTGCGCCGCTGGCGAAACGTGTTCGCCATCAAGGGCGCGAGCAAGCCCGGCAAGCCGGTGATTGCCCAGCGGCCGTCCATGGTGGATGTGACCTGGAAAGGCCAGACAGAACGCAACGGCGCCGAGCTGTGGTTTGTCGGTACCGACACGGCGAAAGACTGGATCTACAACCGCTACCCATTCGAGTCCGGCCCGGGCGCGTTGCACTTTGCCAGCGACTTGCCGGACGACTTCTTCGCGCAGTGCGTGGCCGAACGTAAGGTCGCCCGATATGTGCGTGGTCACAAACGCATCGAATGGGTCAAGGGCAAGGCTGAGCGCAACGAGGCCCTCGACCTGATGGTGTACTGCCTTGCCATGGCGCATTACCTGGGCATCAACCGCTACAAGGAGCACGACTGGGAGCGGGTCCGTCAGGCCTTGGCGCAGTCTGGGTTGTTCGATGACGCGTTGGGCATCAAGCCCGTGCAGGGCGAACGAGTCACTCAGCCGGTTCCGGCGGCCTTGTCACAACCAACACCGCAACCCGTCGCCCAAGCGGCTCAACCACGATCCGCTACGCCACCCCCTCAACGCCGCAGTTCCACTAGCGGCTATCTGAAGAGACGCTGAMPTEIPDGAEVYREAYFRGLRPDPDVWIDVWADEYMRIPRDTGAAEPGQYRTSRTPYAREPMRCLSPAHPCKRVVTMVASQLMKTQIALNWIGGLIHMAPSNILTLLPSLGLAKRVSSRIGKTIKATPVLRERVASSRSRDSRNTMDTKEFEGGSLYVTTAGSAANLSELSARYVYGDEIDRWEVDIGEEGDPIELAETRGSTFGRNAKFYFSSSPTIKGASRISDLFEGSDQRHYYVPCPTCGHMQTLEWESLHYSRDFSVVHYQCAGPDCDVLIEEYHKAEMLAKGEWRAHAEGDGETVGFTLNALYSPLGWMDWKSLAKQFEKAKKAQAKGDLEPMQVFYNTRLAKVWDSAQEQTKADTLKHRARLENFTLGSMPAGVLMVTGAVDVQANRLEFMAMGWGVGMERWVIDYQIVAGDPADDRTWAALDELLKAKYRHPCGVGLGILATAVDSGGHHTDEVYQFCRVRRWRNVFAIKGASKPGKPVIAQRPSMVDVTWKGQTERNGAELWFVGTDTAKDWIYNRYPFESGPGALHFASDLPDDFFAQCVAERKVARYVRGHKRIEWVKGKAERNEALDLMVYCLAMAHYLGINRYKEHDWERVRQALAQSGLFDDALGIKPVQGERVTQPVPAALSQPTPQPVAQAAQPRSATPPPQRRSSTSGYLKRRNANANANANA
D1-35_01875207hypothetical proteinATGTCCTTTACACAAAAGCACCTCGACGCGGTTGAGGCGGCCATCGCTCGCGGTGAGAAAGTCGTGCGCTACACCGACCGCACCGTGGAGTACCGCACCGTCGACGAGCTGATCAAGGCCCGCGACGAGATCCGCACCTCTCTGGTCAACTCGGCCGGGCCGCGCTCCCGCGTAGTCCGACTTTATCATGGAGGCAAAGGAGTCTGAMSFTQKHLDAVEAAIARGEKVVRYTDRTVEYRTVDELIKARDEIRTSLVNSAGPRSRVVRLYHGGKGVNANANANANA
D1-35_018761482hypothetical proteinATGGCCCGACACTATCCGACGCTCAGCCGTAGCGGATTCTTGTTGCCGTCGAACATCAAGGCCAGTTACGAAGGCGCCGGAGAGGGTCGCCGATCCACTGGCTGGGATGCGCCCGACAACGGAATCAACAGCATCAACACACCGGCACTGCGCAACCTGCGCGGCCGGTCGCGGGCAGCGGTACGCAACGACCCGTATGCCTTCAACGTCATCGACAAACGCGTCAGCAACTTGATCGGCACGGGCATCACGCCCAGGCCGAACACCGAAGACAACGCGCTTCGCAAGCTGCTGCAGCTGCTATGGGATGACTGGGTGGACGAGTCGGACGCCGATGAGCACACCGACTTCTATGGGCAGCAGGCGCTGGTCGCTCGCACCGTCGAGACTTCCGGCGAATGCTTTGTCCGCTTACGACCACGCCGCCTGGATGAGGGGCTGGCGGTACCACTCCAGGTGCAGATCCTCGCGCCGGAGTTCGTACCCCACGATAAATTCGAGACCACGCGCACCGGCAACGCCATTCGTGCTGGCATTGAGTTCAATCCGGAGGGCAAGCGGGTGGCCTACTGGATGTACCTGTCGCACCCCCGCGACGGCGTATCGCTGAACGCGGGTTATAACCAGTTGGTGCGGGTACCGGCATCGCAGGTGCTGCATGTCTTCGAACCGGTAGAGCCGGGGCAATTGCGCGGTGTACCGCGCCTGTCTCCCGTACTCAAGCGCCTGCGTAGCCTGGATAACTATGACGACGCGGTGCTGTTCAGGCAGGAAGTAGCAAACCTCTTCGCCGGCTTCATCAGCCGCCCGGCGCCGGACTCTGGCCCCGTGCCAAGGGATCCCGTCACCGGTGAGCCGCTGAGCTTTGACCGTGACGGATTCACGCCCATGGTCGCGCTGGAGCCCGGCACCATGCAGGAGTTGGGGCCGGGTGAGGAGGTTGAGTTCTCCAAACCGCCGGACGCCGGCAACAACTACCCCGACTTCATGCGCCAACAACTGATGGCCGCAGCTGCGGGTACCGGCACGCCATACGAGATCCTCACCGGTGATATGCGCGAAGTGAATGACCGGGCGTTGCGCGTCGTGTTGAACGAGTTCCGGCGCCGTTTGGAACAACTGCAATTCGGCGTGTATGTGCATCAGCTCTGCCGCCCGATCCGTGCTGCCTGGATGGACATGGCGGTCCTGTCCGGTGCCTTGGTGTTGGACGACTACGCCAAACGGCGCCGCGAATACCTGCGCACACGCTGGGTGCCGCAAGGCTGGGCCTACATCCAGCCTGTTCAGGACGTGCAGGCCCGCCGCATGGAAGTGCAAGCTGGCTTCGCCTCACGCAGCGAAATGGTCACCCGTACCGGTTATGACGCCGAAACCGTCGACGCGGAAAACGCTGCCGACAACGCAAGGGCCCAAGCGCTGGGCCTCAACTACAACACGCACGAAGCCGTCGAGGTTACTGACGACAAGGAGCAACCATGAMARHYPTLSRSGFLLPSNIKASYEGAGEGRRSTGWDAPDNGINSINTPALRNLRGRSRAAVRNDPYAFNVIDKRVSNLIGTGITPRPNTEDNALRKLLQLLWDDWVDESDADEHTDFYGQQALVARTVETSGECFVRLRPRRLDEGLAVPLQVQILAPEFVPHDKFETTRTGNAIRAGIEFNPEGKRVAYWMYLSHPRDGVSLNAGYNQLVRVPASQVLHVFEPVEPGQLRGVPRLSPVLKRLRSLDNYDDAVLFRQEVANLFAGFISRPAPDSGPVPRDPVTGEPLSFDRDGFTPMVALEPGTMQELGPGEEVEFSKPPDAGNNYPDFMRQQLMAAAAGTGTPYEILTGDMREVNDRALRVVLNEFRRRLEQLQFGVYVHQLCRPIRAAWMDMAVLSGALVLDDYAKRRREYLRTRWVPQGWAYIQPVQDVQARRMEVQAGFASRSEMVTRTGYDAETVDAENAADNARAQALGLNYNTHEAVEVTDDKEQPNANANANANA
D1-35_018771161clpP_2ATP-dependent Clp protease proteolytic subunitATGAGCAAACCAGCGCTTCCGCGCATTTACAACAGAGCCGGCCAGCGGGTGAAGGTCCAGGACAAGACCTGGTACGCCATGCAAGAGAGCGGCGATGCCGAAGAGCGGGTTATCGAGGTGTTCGTCTACGGCGAGATCGGCACCTGGGGCATCACCGCCAATCAGTTCGTGCAGGATCTGCGCGCCATGGATGACGGCGTATCGCCGGTTATCGCGGCATTCAACAGCATCGGCGGCGACCTGTTCGACGGGCTGGCGATGCACAACGCGCTGTCTCGCCTGGGCGAGCGTTGCACCGGCCGTGTCGATGCGCTGGCAGCCAGCGCGGCCAGTGTCGCGGTATGCGGGGCGCACCGTGTGGTCATCGCCTCCAACGCGATGCTGATGATCCACAACCCGTGGACCTACGCGGCGGGGGACGCCGAAGACTTTCGCAAGGTAGCCGACGTCCTGGATCAAACCATGGAGGCCATTATCGCGGCCTATAAGGCCAAGGCGCCGGATATCGACGAAGCCGAGCTTCGGCGTCTGGTGGCGGCTGAAACCTGGCTGACCGCCAACGAAGCGGTGGCCCTGGGGCTGGCCGATGAGGTGGGCGACGGGGTGAAGGTCAAGGCGTGTCTGGGGCAGGGCGCCGTGCTGCAGCGTTACCAGCATGCCCCGGCTGAATTGCTTGCCCAACTGGACGAGCCACCTGAACCGGATATCGAGCAGGAGCCTGAACCTACTGATCCGCTCCAGGATCCTCCTGTGGCGAACTCGGCCAAGCTGGCCCTGATGATCACCCAGCGTTGTACGGCGGACGGCATCAGCAACCTGATTGAGCCGCTGCTCAACTCGACCAAGCTGGAAAGCGAGGCCATCGTCCTGGCAGGCTTGGCCCGTGCCAAAGCCGTAAACGATCTCTGCGTTGCCGCACGACTGCCTGAGTTCAGCGCCGAATACGTCGCGGCCGGTTTGGATGCCGCCTCGGTTCGAGCGCGTCTGTTCGACAAACTGGTGGGCAGCGGCAAAGGCTTCGAGATCGATAACAGCCTACCGCTCAATGCAGATCCGGCCCCGAAGGTTCAGGCCAAACAACCCGACCCCACCTCTATCTGGGCAGCCCGTCAGGCGGCGCAGTCAGGTACCGCTAATACCTCGAAAGGAGCAAGACCATGAMSKPALPRIYNRAGQRVKVQDKTWYAMQESGDAEERVIEVFVYGEIGTWGITANQFVQDLRAMDDGVSPVIAAFNSIGGDLFDGLAMHNALSRLGERCTGRVDALAASAASVAVCGAHRVVIASNAMLMIHNPWTYAAGDAEDFRKVADVLDQTMEAIIAAYKAKAPDIDEAELRRLVAAETWLTANEAVALGLADEVGDGVKVKACLGQGAVLQRYQHAPAELLAQLDEPPEPDIEQEPEPTDPLQDPPVANSAKLALMITQRCTADGISNLIEPLLNSTKLESEAIVLAGLARAKAVNDLCVAARLPEFSAEYVAAGLDAASVRARLFDKLVGSGKGFEIDNSLPLNADPAPKVQAKQPDPTSIWAARQAAQSGTANTSKGARPNANANANANA
D1-35_01878345hypothetical proteinATGACCATCAAACTGGAACCGATGCACGCCGGAGAATTCCTCCTGTCCGAGGGGGCCGGGAACATCTCGCGTGAAGCGATCAATGTCGCGGCAGGCCCAGCCTTGAATCCAGGGCAAGTACTCGGGCTGATCACTGCCACTGGCGAGTTCGCCCCTTACGACCCGACAGCTGAAGACGGCACGCAAACCGCCGTGGCGATCCTCTTCGGCCCGCTTGGCGAATCCGACGTGGTACGTCGAGCCCGCGCCGTGGTGCGTCTTGCGGAGGTGAGCGAAGTCCATCTGACCGGACTCGACCCCGACGCGGAAAAAGCCCTCGCCGCGCATTTTCTGATCGTTCGTTAAMTIKLEPMHAGEFLLSEGAGNISREAINVAAGPALNPGQVLGLITATGEFAPYDPTAEDGTQTAVAILFGPLGESDVVRRARAVVRLAEVSEVHLTGLDPDAEKALAAHFLIVRNANANANANA
D1-35_01879210hypothetical proteinATGCCAGACCACAACGAAGCCCTAGCCAGCGCCCTGGAGCTGTTGCTGATCAATCAGAACGCCATCGGCGCTGCTGTTGAAGAACTTTCCAAGTGGGTCGCTGAGCGAGGCTCATCGGACGTTGCGGACAACGTCACGACTGCCTTAGAAACACTGGACCTCAATGCCGATGGGATTGGCAATGCAATTCGAGTCCTGCGTCAGGGATAGMPDHNEALASALELLLINQNAIGAAVEELSKWVAERGSSDVADNVTTALETLDLNADGIGNAIRVLRQGNANANANANA
D1-35_01880996hypothetical proteinATGGCCGATATCGCCATTTTTGACGACGAAGCGTTTGCCGTACCGGCGCTCACCGCCGCAATCAACGAACAACCCTATCTGCCGGGCCGTATCAGCAGCCTCGGCCTGTTTCAAGAAGAGGGCGTTGCTACCCTGACAGTGCAAATCGAGAAGGATGGCGACACCCTGGCCCTTGTGCCTGCAGGTGAGCGCGGAACTTCAGGTCTGGTCGTCGGTGCCAGCAAACGCAAGATGATCCCTTTCAACACCGTGCACCTGCCGGAACGTTTCACCATCAAGGCCGACGAGATCCAGGGCATCCGGGCGTTCGGCACCCGCACCGAGTTGCAAGCGGTACAGGACGTCGTGAATACCCGGCTGGCAAAAGCGCGCCGCCAGTTGGACGCGACGCACGAGTTTCAACGCATGGGCGCACTCAACGGCTTGGTGCTGGATGCCGACGGTAAGACACCACTGCTCGATCTCTACGCCGCCTTCGGAGTGTCTCGACAAAAACTGTCCATGGGGCTGAATGACCCGAGTACCGAACTGCGCGTTATGTGCGGGGAGGCGCTGGACATGCAGGAGGACGCGCTGGGTAGCGTCACCAGCACCGGCTCCCGCGCCTTCTGTGGCAAGAATTTCTGGAACAAGCTGATCGTTCACAAGTCGGTCAAGGAAACCTACATCGCCACGCAGCAAGCGGCGGCATTGCGCGGTGACGCTCGGGAGAGTTTCGAGTTCGGCGGCATCGTCTGGGAGCGCTACCGTGGCAAGGTGGCCGGTGTGGCCTTCGTCCATGATGACAAGGCGCTGCTGGTCCCTGAAGGCGTGCCGGACCTGTACATCTCGGTGTTCGCTCCAGCGGATTACATGGAAACGGTTAATACCCAGGGCATTCCGTACTACAGCAAGCTGGAGCCGTTGCCGTTCAACAAGGGGGTGGCCGGCGAAGCGCAATCCAACCCGCTGCACCTGTGCTCACGGCCCCGTGCGCAGATCCTGCTGGAACTCTAAMADIAIFDDEAFAVPALTAAINEQPYLPGRISSLGLFQEEGVATLTVQIEKDGDTLALVPAGERGTSGLVVGASKRKMIPFNTVHLPERFTIKADEIQGIRAFGTRTELQAVQDVVNTRLAKARRQLDATHEFQRMGALNGLVLDADGKTPLLDLYAAFGVSRQKLSMGLNDPSTELRVMCGEALDMQEDALGSVTSTGSRAFCGKNFWNKLIVHKSVKETYIATQQAAALRGDARESFEFGGIVWERYRGKVAGVAFVHDDKALLVPEGVPDLYISVFAPADYMETVNTQGIPYYSKLEPLPFNKGVAGEAQSNPLHLCSRPRAQILLELNANANANANA
D1-35_01881315hypothetical proteinATGAGCTTTCGCGAGCTGGTCGGTGACCTGGACCACACGGTATTTGATGTCCTCGGCGACTCGGTGCTGATCGAAGGCCGACCAGTCCTGGGCATGTTCTCCGCTCCCTGGTTGCAACCCAAACTCGGCCGGATTAACACCGGCCTTCGCGAGCCGCACCTGGTCATCCGCGTGGCGGACGCTGAAGGGATCAGTGAGCGGCACCAGGTCGTGGTCGACCTGCCGGTGCATGACGGCGGTGGCAACTACATCGTCGTCAGGCTGGAGCCCGGCGGCGATGGCTTGGTAACTCTGGTGTTGAGGAAATCCCCATGAMSFRELVGDLDHTVFDVLGDSVLIEGRPVLGMFSAPWLQPKLGRINTGLREPHLVIRVADAEGISERHQVVVDLPVHDGGGNYIVVRLEPGGDGLVTLVLRKSPNANANANANA
D1-35_01882663hypothetical proteinATGAGTGTCGGCAGCTATGTCAAGCAGTCAGCCAGCAGCGGCATGATCACGTTGCAGGCTGATCGGTCGGATCTGAAAGCGTTTGCGGACTTCGCTGCGCTGGTACCCAAGGCTTCCTTAGCTGCACAGCGCCGGGCCATCAACAAAACGTTGCGGTGGCTGCGAACTCACATTGCCCGCACCGTCAGCCGGCAGGAGCGCATTGCAGTGGCTGCGGTACGGCAGCGCCTGAGGGCCTACCCGCTTTCTGGAAACGGTCAGGGCAAGCTGTGGTTCGGTATCAATGCGATTGAGGCCAGCCGTGCGGGTCGACCTCGACAATCACGGTCGGGTGTTTCGGTAGCAGGCCGTCGATATGGGGGAGCGTTTTTCAAGAAGGTCTACGGCAGTCGGCCCGATATCTGGATCCGAACCGCGAGCAAGCACTTCAAGGCCAGCGACTACCCCGACAGTGAGGTGTCTGGCGGTGGTGGGGCAAGCTCAGGCTGGGTCTCGGAGAACGATAGCCGCTTTCCGCTCGCCAAGGCCAAGATATCCCTGGAAGACGTCCGGCCGCACTTCGAGTCCTGGACCAATCGGGCTCACCAGCGCCTGCTTGAGATCCTGGAGCAGGAGCTGAACTTTGAACTGCAGAAGTATCTGCGAGGATCGGCCCGTGTCTGAMSVGSYVKQSASSGMITLQADRSDLKAFADFAALVPKASLAAQRRAINKTLRWLRTHIARTVSRQERIAVAAVRQRLRAYPLSGNGQGKLWFGINAIEASRAGRPRQSRSGVSVAGRRYGGAFFKKVYGSRPDIWIRTASKHFKASDYPDSEVSGGGGASSGWVSENDSRFPLAKAKISLEDVRPHFESWTNRAHQRLLEILEQELNFELQKYLRGSARVNANANANANA
D1-35_01883525hypothetical proteinGTGTCTGACTTCAGTCTTGAACTTTTGTATCAGGCCGTTGAGGCTCATATCGACCAAGCGATCCCAGGATTGGCCTGCGTGCGGACCATGCCCTATATGGCCGATCACATCGACTTGCCTGCTGCGGTGATTGAGTTGGTCGAGCTGGAGCCCGGCCGAGATCCCGGAACAGGGGAGACGGCGCTGGTTGCGCGTTTGGAGGTGCGCTTCATCGTTGGCGGTGAGGATGCCGAGTGCCAACAGAAAGCGGCATTCGCCGCCGCACAAATGGCCGTGCTGTTGCGTATCCAGACATGGGGGCTGGAGGTCGAGCCCGCCGAGTTTGTTCGGGCAGCCCAAGACTGGACCCGCCCCGAGTTGGATGGTTACGCGGTCTGGGTCGTTGAATGGACGCAGACAATTTACCTCGGTCAGGAGGAGTGGCCGTGGCCGAATCAACCGCCGGGTTCCTTGCTCTGGGGTTTCAGCCCTGACACGGGACCTGGTAGCGAAGGTAACTATCAGACACCGGAGGATATGGCATGAMSDFSLELLYQAVEAHIDQAIPGLACVRTMPYMADHIDLPAAVIELVELEPGRDPGTGETALVARLEVRFIVGGEDAECQQKAAFAAAQMAVLLRIQTWGLEVEPAEFVRAAQDWTRPELDGYAVWVVEWTQTIYLGQEEWPWPNQPPGSLLWGFSPDTGPGSEGNYQTPEDMANANANANANA
D1-35_01884564hypothetical proteinATGAGCTACCCCAGTGCGCAGCATGACCGCATGCTGGCCGGCCTGGTCAAGGATTGTTATGTGGTCGCGCTGGATCTGACCGCTTCGCCACCCGCATGTCGGGTGTCGGATGGGGACTGGGTCAGTGCCTGGGTGCGTTGGCACAGCATCGCCGCCGGCAAAGCCCGTCATTGGCGAGCCCCCAGCATGGGCGAGCAGGGAACTCTGGTAAGTGCCAGCGGCGATGTGGCGCAGGGCACATTTATCCCCGGCCTCTATGGCGATGCCGGGGCACCGCCGGACAACCGCGACCACGTCGAGGTATGGCGTTTCGAGGATGGGGGCTCGCTGGTCTATGACTGGCAGGCCGGCACCTACACCATCACCGTGCCAAGCGGTACCGTGACGATCAAAGTCGGCGGAACCGAAGTGGTCGTAACGGACAGCGAGATCAACGCCACGGCAGGCGATATCACCCTGACGGGCAATGTGCTGATCAACGGCCCGTTGCAGGTCACGGGCGATATCAACGGCGGCGGAAAAATCATCGATACCGGTGGCAACACGCCGAACCACAAACACTGAMSYPSAQHDRMLAGLVKDCYVVALDLTASPPACRVSDGDWVSAWVRWHSIAAGKARHWRAPSMGEQGTLVSASGDVAQGTFIPGLYGDAGAPPDNRDHVEVWRFEDGGSLVYDWQAGTYTITVPSGTVTIKVGGTEVVVTDSEINATAGDITLTGNVLINGPLQVTGDINGGGKIIDTGGNTPNHKHNANANANANA
D1-35_01885249hypothetical proteinATGAGCAAAACGCGAACAGACACCGAGCGGCCAACTGCCGTCGCGGCGGTGCCTGAGCCCTTCCAAACCGAGTCGTCGGCCCCCATCGGAGCGGCACGAGTGTTTCGTGACACCCGATACACCTCACGCACGCTGATCATGCCGGACGGCAGCAGCTTGCCGATCATCGCCGGCCAGGTCACAGCCTGCGGCGATGATCAATACGCCTTTCTCAAGGCCCACCCGGATATGCAACAGCTGACGGAGTAAMSKTRTDTERPTAVAAVPEPFQTESSAPIGAARVFRDTRYTSRTLIMPDGSSLPIIAGQVTACGDDQYAFLKAHPDMQQLTENANANANANA
D1-35_01886327hypothetical proteinATGATCGGAGTGGACCGTCGCACGGGGCAGCCGCTGTCCGGGCAGGCGCATTTGCGGCAGTCTATTGAGGACATTCTGAGCACGCCTGTCGGCAGCCGCCGCATGCGGCCAGAGTACGGCAGCCAAATGCGTCGCTATGTCGACCTGCCAGTTAATGAGGGCTGGAAAAGCGCGGTACAGGCTGAAGTCGCTCGTGCCCTCGGGCGCTGGGAGCCCCGTTTGAAACTTGAACGTGTCCGGGTCATTGCGGTGGTGGATGGACAAATCACCTTGCAACTGACGGGCTCTTACATTGGCGATGGCGTGGTGCTGGAGGTGAACGCATGAMIGVDRRTGQPLSGQAHLRQSIEDILSTPVGSRRMRPEYGSQMRRYVDLPVNEGWKSAVQAEVARALGRWEPRLKLERVRVIAVVDGQITLQLTGSYIGDGVVLEVNANANANANANA
D1-35_01887885hypothetical proteinATGAGCACTATCGACCTTTCGGCGTTGCCGGCACCACAGGTGCTGGAGAGTCTGGATTTTGAAGAGTTGTATCAGGGCGAGCTGGCGACGTTCCGCGACTACATGGGCGATAACTGGACCGCTTTCCTTGAAAGCGATCCGGTGACCAAGCTGCTGGAGCTGGGCGCCTATCGACGCATGCAGAATCGGGCGAGGGTCAACGACGCGGCCAAGGCACTGTTTCTGGCTCATGCCACTGGTGCTGACCTGGTGCAGTTGGCCGCGAACGTGAACCTTGAACGGCTGGTCATTCAGGCCGAGGACCTGTCCGCCGTGCCGCCGGTGTCGGCGGTGCTGGAAAGCTACGACGCACTGCGCGAGCGCATCCAATTGAGGTACGAAGGGCTGACCACTGCTGGGCCTCGGAACAGTTACATCCTGCACGCCCGTAACGCCTCGGGCCTGGTGGCAGACGCCACGGCCGAAAGCCCGGCGCCGGCCGAGGTGGTCGTGACGGTACTGTCCCTGGAGGGCGATGGTACGGCCAGCCCCGAGTTGTTGGCCGAGGTGGCCACTCACCTCAACGACGAAGATCGGCGGCCTGTTGCTGATCGGCTGACGGTGCAGGGCGCCGAGATCCTGCCTTATCGAATCGATGCCGTGGTGTACATGGCCGGTAATGGCCCGGAAAACGAGGCAGCGCTGGCCGAATGCAATGCGCGATTGCAGGCCTGGATCAACCCCCGGCGCCGCTTAGGCGTTGAGGTGGCCCGTTCGGCGATTGATGCACAAATCCACGTCAGTGGCGTGGCCCGGGTCGAGATCCCTGGATGGATGGACATCCGCCCAACCAAAGCCCAAGCGGCGTGGTGCACGGGGTTCACCATAACGCGGGGTAGCAAATGAMSTIDLSALPAPQVLESLDFEELYQGELATFRDYMGDNWTAFLESDPVTKLLELGAYRRMQNRARVNDAAKALFLAHATGADLVQLAANVNLERLVIQAEDLSAVPPVSAVLESYDALRERIQLRYEGLTTAGPRNSYILHARNASGLVADATAESPAPAEVVVTVLSLEGDGTASPELLAEVATHLNDEDRRPVADRLTVQGAEILPYRIDAVVYMAGNGPENEAALAECNARLQAWINPRRRLGVEVARSAIDAQIHVSGVARVEIPGWMDIRPTKAQAAWCTGFTITRGSKNANANANANA
D1-35_01888609hypothetical proteinATGAAAAGTCTGCTTCCCCTCAACAGCACGCAGCTCGAACGGGCAATTGAAGCGGCTATCGACGAAACAACAGAGATACCGCTTCGAACCTTATACAACCCGGACACCTGCCCGGCGCACCTGCTTTACCAACTGGCTTGGGCCTGGTCCGTGGACCGCTGGGACGAGGCATGGCCCGAAGAGATCAAGCGTTCGGTGATTCGCTCTTCGTTCTACGTTCATGCCCATAAGGGAACCATTGGCGCCCTGCGCCGGGTGGTGGAACCGTTCGGTTATCTGATCGAGGTCGTCGAGTGGTTCCAGACAGAGCCCAAGGGCGTGCCGGGAACGTTCGCGTTGAAGATCGGTGTTTCCGATGGAGGCATCAGCGAAGAAACCTATCAGGAACTGACGTGGTTGATCGATGACGCTCGGCCGGTCAGTCGCCACATGACAGGGCTGGCGATCAGCCTCGAAACCACAGGCCATTTGAACATCGGCGTTGCCTTGTATGAAGGCGACGAAATCGACGTGTACCCGCCGGTCATGCGTGACATTGAAGTTACGGGCCGTTTTGGTGTGGTGGGACGCGAACACTCCATAGACACCTTGGACGTTTATTATGATTGAMKSLLPLNSTQLERAIEAAIDETTEIPLRTLYNPDTCPAHLLYQLAWAWSVDRWDEAWPEEIKRSVIRSSFYVHAHKGTIGALRRVVEPFGYLIEVVEWFQTEPKGVPGTFALKIGVSDGGISEETYQELTWLIDDARPVSRHMTGLAISLETTGHLNIGVALYEGDEIDVYPPVMRDIEVTGRFGVVGREHSIDTLDVYYDNANANANANA
D1-35_018892166hypothetical proteinATGATTGATGTGAACTCGCAATTTTTCGCGATCCTCACGAACGTGGGTATGGCAAAACAAGCGAACGCCGACGCCCTCGGTATTCCCTGGAAAATCACTGAAATGGGGGTGGGGGATGCCAATGGTACTGACCCTATCCCCAATGCAGCTCAAACCAAACTCATCAACGAATGGCGCCGTAGGCCACTGAATCAACTTAAAGTTGATCCTGTCAACCCGGCGGTCATCATTGCCGAGCAGATCATCCCGGCTGATGAGGGTGGCAAGTGGATTCGCGAAATCGGTCTGTATGACGCGGACGGGGATCTGGTGGCGGTGGCGAATTGCGCGCCGAGCTTCAAGCCGGTGCTGTCGCAGGGATCGGGCCGTACGCAAGTGGTGCGGATGAATTTGATCGTTTCCAGCACCGCCAACATCTCGCTCAAAATAGACCCTGCAGTGGTGCTGGCCACACGTGAGTACGTCGATACAAGAATCTTTGAAGAATTGTGCAAGCTGGACACCAAACAATCGGTGCGGGTTGCCACCACGGCGAACATCACGCTGGCGGGGTTGCAGACGATTGATTCGGTAGTCTTGCTCGACGGCGACCGTGTGCTGGTAAAAAACCAGGCTGCTGCTAAGGACAATGGCCTTTATGTCGCAGCCACGGGAGCGTGGTCGCGCTCACTTGATGCTGACAGCAGCGTTGAAGTGACCTCTGCGCTGTTGGTCTCGGTTGAGCAGGGCGCTTCGCAGGCGGATACACGCTGGCAGCTAGTGACGGATGGGGCAATCGTCCTGGGTACAACGCCGTTGGTTTTCCAGAACGTCAATCATGGCTTGGCACCCATCAGTTCCCCTGCATTTACCGGTACGCCTACTGCCCCGACGGCGCCGGTGGGGACCAATACCAACCAGTTGGCAACGACGGCATTTATTCAGGCCGCCATAGCGGCACTGGTGGACTCGTCGCCAGGCACGTTGGATACGCTCAACGAGCTGGCTGCCGCGCTGGGCGACGACCCAAACTTTGCCACCACGGTCACCAACGCTTTAGCCACGAAAGCGCCGCTCAACGGTCCGGTTTTCACTGGCGAGCCACGAGCGCCTACCCCGGCGCCTGGGGATAGCGACACCTCCCTAGCGACCACCGCTTACGTTCAGCAGGCATTGAACGGCGGCAGCGTTCTCAACGTTGCAGGCTCGGGGAATATCGTGTTGACCGCCTCGCAACTAGGGGCCGGGTTGATTGTGTTAACCGGTGCTTTGACTGGCAACAGGGTGGTAATTGTTCCTACAGTGATCGGGCGTTATCAGTTCTGGAACGCCACGACCGGAAACTTCACGCTTACAGTAAAAACTGCGGCGGGGACCGGCGTCGGTATCAGTCAGGGCCAGTCGTCGCTCCTGTTCGGTGACGGCTCGAATATTTACCTTCAGCAATCTGATTTCATCAGTCCTGTACTCAGAGGAACGCCGACGGCGCCCAAAGCGCCGCGTTTCGATGTCAGTGATCAGGTGATGACGGCGGCAGCGGTACAGGCCCGAGGCCTTCAATATTCCGGCTTTGTTTCTCTCGGCGGCGCAGTGCCAGGTAACGTTTCGCATATCGGTGGGATTGTGCATTTTACCGGCGCGGGCTTTCCCTCCTACAGCCTGCCCGACTCCACCGCGAACAACATACTCCCAGGCGCGGTAATACGGCTTCACAACTGGTCCGTTTCAAACCTGGCGCTCGCCGTGCAAGGCGCAGACAAAGCGCAGGAAAACAATGACACCACCTCTTCTGCGGCTACCCGGTCGATTCCGCCGGACACTTACGTAGATTGCATATACATCGGATCCGGAGTTTGGATGTTGATGGGTACAGGGGTCGCTGGGAAAACCCGTCAGTTCGGCGCTCTGCTGGCCCCGAATGGTTACCAGCGATTGCCGTCTGGCTTGTTGATGCAGTGGATGACTGCAAACTTTGCTTCGGCGTTTAAGGGGGTCGTCTTCAATCTGCCAGCTGCTTTCCCTAACCAGTTTTTCGGGTGCAGCGTCAGTCTGACGGACAGCGCCATTTACGACAGTACCGGTCAGCCCTTCGTGGCTGGAATGCCCAACGGACTGGGTCAGGTTCTTTTGCAATCCAACTACACCGCCAGTCAGTCGGCTGTCCGGGTACTTGCGTTCGGTTATTAAMIDVNSQFFAILTNVGMAKQANADALGIPWKITEMGVGDANGTDPIPNAAQTKLINEWRRRPLNQLKVDPVNPAVIIAEQIIPADEGGKWIREIGLYDADGDLVAVANCAPSFKPVLSQGSGRTQVVRMNLIVSSTANISLKIDPAVVLATREYVDTRIFEELCKLDTKQSVRVATTANITLAGLQTIDSVVLLDGDRVLVKNQAAAKDNGLYVAATGAWSRSLDADSSVEVTSALLVSVEQGASQADTRWQLVTDGAIVLGTTPLVFQNVNHGLAPISSPAFTGTPTAPTAPVGTNTNQLATTAFIQAAIAALVDSSPGTLDTLNELAAALGDDPNFATTVTNALATKAPLNGPVFTGEPRAPTPAPGDSDTSLATTAYVQQALNGGSVLNVAGSGNIVLTASQLGAGLIVLTGALTGNRVVIVPTVIGRYQFWNATTGNFTLTVKTAAGTGVGISQGQSSLLFGDGSNIYLQQSDFISPVLRGTPTAPKAPRFDVSDQVMTAAAVQARGLQYSGFVSLGGAVPGNVSHIGGIVHFTGAGFPSYSLPDSTANNILPGAVIRLHNWSVSNLALAVQGADKAQENNDTTSSAATRSIPPDTYVDCIYIGSGVWMLMGTGVAGKTRQFGALLAPNGYQRLPSGLLMQWMTANFASAFKGVVFNLPAAFPNQFFGCSVSLTDSAIYDSTGQPFVAGMPNGLGQVLLQSNYTASQSAVRVLAFGYNANANANANA
D1-35_01890426hypothetical proteinATGATTTATTCCAGCAAAACAACAAATCTCTTCTATGACTCGGACTGGGGCGCGGATCTGCCGGCAGACGCAACCGAAATATCGTTTGAGTTGCGCCAACACTTATTGGACGGGCAGACGCGGGGCTTGGCTATCAACTTCGATACCGAGCCGCCATCTCTCCTCGAGCGACCACCGTTGTCGTTGGAACAGTTGACCGAGATCGAACGCAGCTGGCGTGCGTCGCAATTGTCTGCGACTGACGGTGTGGTTGCGCGCCACCGGGACGAATCAGAAAGCGGTATGACTACCACACTTGCTGCTGAACAATACGTTGCATTGCAGGCCTATCGGCGCCAGTTGCGAGACTGGCCACAAGCGGGCCAGTTTCCACTGGCAGAACATCGCCCCATTGCCCCGGGCTGGCTCGCCGAACATACCCATTAAMIYSSKTTNLFYDSDWGADLPADATEISFELRQHLLDGQTRGLAINFDTEPPSLLERPPLSLEQLTEIERSWRASQLSATDGVVARHRDESESGMTTTLAAEQYVALQAYRRQLRDWPQAGQFPLAEHRPIAPGWLAEHTHNANANANANA
D1-35_018911164gpFI_2Putative prophage major tail sheath proteinATGAGCTTCTTTCACGGCGTTACCACCACGAACGTCGACACCGGCGCTCGTGTCGTTGCGTTGCCTTCGTCCTCGATCATTGGACTGGTTGACACCTTTGTACCGGCGCCGGCCTACAGCGCGCAGCCGAACGACCTGGTGGTGATCACCAACGAACGCGAAGCGGTGGCCGCCTTCGGCCCCGACTCGGCAATGACCAAAGCCTGCAAGGCCATCTATACCCGAGCCAAGGCGGTGATCGTCGCCTGTGGTGTGGCCCAGTTGGCCGATCCGGCTGCACAGACCTCGGCGATCATCGGCGGCGTTCAGGCTGACGGTAAGCGTACCGGTCTGCAGGCGCTGCTGGACGGCAAGAGCCGGTTCAACGCGCAGCCGCGGCTGTTGGTCACTCCCAAGCACAGCGCGACACAGGCTGTCGGTACCGCCCTGGTGGCAGTGGCCGACAAGTTGCGAGGGCTCGCCATTCTCGACGGTCCAAACACCACCGATGAGGCGGTGATGGCCTACGCCGAGAACTTCGGCGCCAAGCGGGCGTACCTGGTTGATCCGGGTGTGCAGTATTGGGACACCACGGCGGACGCCACGGTCGACGCGCCGGGCTCGGCCTGGGTGGCGGGCTTGTTCGCCTGGACCGACAGCGAATACGGCTTTTGGGCTTCGCCTTCGAACAAGGAGTTTGTTGGTATCACTGGCACTACGCGGCCGATTGAGTTCCTGGACGGTGACGAAACCTGCCGGGCCAACCTGCTCAACAACGCCAACATCACCACGATCATCCGTGATGACGGCTTCCGCCTGTGGGGCAACCGCACCCTTTCGAGCGATCCGAAGTGGGCGTTCGTCACTCGCGTACGGACGATGGACATCGTCATGGACGCGATCCTCTACGGCCACAAATGGGCGGTCGACCGCTCCATCACAGCGACTTACATCAAGGACGTGACTGAAGGTCTGCAGGCGTTCATGCGCGACCTGAAAGCCCAAGGCGCAATCATCAACTTCGAGGTGTATGCCGACCCGGAGTTGAACACGGCCAGCCAGCTGGAGCAGGGCAAGGTGTATTGGAACATCCGCTTCACCGACGTTCCGCCGGCAGAAAACCCCAACTTCCGCGTAGAGGTCACCAACCAATGGCTGACCGAAGTGCTCGACACCGCCGCTTAAMSFFHGVTTTNVDTGARVVALPSSSIIGLVDTFVPAPAYSAQPNDLVVITNEREAVAAFGPDSAMTKACKAIYTRAKAVIVACGVAQLADPAAQTSAIIGGVQADGKRTGLQALLDGKSRFNAQPRLLVTPKHSATQAVGTALVAVADKLRGLAILDGPNTTDEAVMAYAENFGAKRAYLVDPGVQYWDTTADATVDAPGSAWVAGLFAWTDSEYGFWASPSNKEFVGITGTTRPIEFLDGDETCRANLLNNANITTIIRDDGFRLWGNRTLSSDPKWAFVTRVRTMDIVMDAILYGHKWAVDRSITATYIKDVTEGLQAFMRDLKAQGAIINFEVYADPELNTASQLEQGKVYWNIRFTDVPPAENPNFRVEVTNQWLTEVLDTAANANANANANA
D1-35_01892510hypothetical proteinATGGCAATGATTCCCGAAACCCTGGCGAACCTGAACTTGTTCGCCGACGGCGTCAGCTTCCAGGGCGATGTGCCGAGCCTGACGCTGCCCAAGCTCACGCTCAAGATGGAAGAGCATCGCGGCGGCGGTATGGATGCGCCGGTCGAGCTGGACATGGGCATGGAAAAACAGGAAGCGAACTTTACTACCACTGGCGTACGCCGTGAGTCGTTGAAGTTCTTCGGCTTGGCCGACGGCACGGCGTTCAACGGTACGTTCCGAGGGGCCTATAAAGGGCTCAAGGGCAAAGTCACGCCGGTCATCGTCACCCTGCGCGGCACGTTGAAAGAAGTCGACATGGGCGACTGGAAGCCGGGCGACAAGGCCGAGATCAAACACTCCATCGGGCTGACGTACTACAAGCTCGAAGTGGACGGCCGAACCGTCTACGAGATCGACCCCATCGGCATGCGCCGCGTGATTAATGGCGTTGATCAACTGGCCGCCCAGCGTTCCGCATTGGGCCTTTAAMAMIPETLANLNLFADGVSFQGDVPSLTLPKLTLKMEEHRGGGMDAPVELDMGMEKQEANFTTTGVRRESLKFFGLADGTAFNGTFRGAYKGLKGKVTPVIVTLRGTLKEVDMGDWKPGDKAEIKHSIGLTYYKLEVDGRTVYEIDPIGMRRVINGVDQLAAQRSALGLNANANANANA
D1-35_01893327hypothetical proteinATGAGCAGTACCGCAACTCCAAGCTGGATGACCCTGACCGTTGACCGCGTCACCGTGAAACTGACTGTGCCATCAGAAGCCAACGGCGTGCGTGTCGATACGCTGAGCCTCCGAACACCGACCGTGCGTGACCTTCGGATTGCCCGCCAGACAGCGCCCAATGATGAGGAGCAACAAGATCTGAACTTGTTCGCCTCCCTGGCCGAAGTCGGGACCAAGGATCTGGATGGCTTGACGCTGAAGGACTTCAACCGCATACAGGCCGGCTATTTTCGCCTGGTGCGAGAAGATGAATTTCAACCCCAAGGTGCAGAAGCAACTGGCTAAMSSTATPSWMTLTVDRVTVKLTVPSEANGVRVDTLSLRTPTVRDLRIARQTAPNDEEQQDLNLFASLAEVGTKDLDGLTLKDFNRIQAGYFRLVREDEFQPQGAEATGNANANANANA
D1-35_01894123hypothetical proteinATGAATTTCAACCCCAAGGTGCAGAAGCAACTGGCTAAGCGTCTTGCCACCGAACTGAACTTTTCCGCCGCTGAAATCCTCGCCATGCCGTTCTCCGACATGGTCTGGTGGCTGTCAGACTGAMNFNPKVQKQLAKRLATELNFSAAEILAMPFSDMVWWLSDNANANANANA
D1-35_018952577hypothetical proteinATGGCTAGCAAACTGGCGTTATCGCTGGTGATTGGCGGCGCCGTCAGTTCGACGATGGCGTCTGCCTTCCGCACGGTTGATGGCCACATCAAAAAGCTGGAGGAAAAAGGCAGCAAGGCCAAGGTGCTCAAGAGCACCATTGGCGAAACCATTCGCCTGCGCGATGAATGGAAGCGGGCGCACGACAGCGGTGCTGCTTCGGCGGATGGTCTGTTGCGCAAGCTCAACGGCAACCTTGACGCCCTGCGTAAACAGGGCGTGGAGGTGGGCAGGCTGGGGCAGGAGTACCAGCGCCTCGGCCGGGCAGCCAAAGCCGCCGATCTGCAGCTTAAAGGTCACCAGCAGCTCGATGCCGGCAAGAAAGGACTCACGTCGAGCATTGGTCAAGGTGTTGTCGCCACCGGCCTTGCAGCGATTCCGACCAAGGTCAGCGCGGATTATCAGGCGATCATCCGCGACATTGCGATCAAGGCGGATGTGGTCAACAAGCCGCAAGAAACACAGCTTAGCCAGACAGTAATCCAGACCTCCCGCGATACGGGCATGGCCCGTAACGACGTGGCGGACCTGGTAAACCAGCTGGTTGGTGCCGGTATGGACCTCAAGCAGGCTATGGCCTACGCGCCGACGGCGGCGAAGTTTGCCATCGGCCAGGGCGCCTCCGGCGTCGACACGGCCAGCATGATCATGGCGCTGCAGCAAAACGCCAAGATCACCGACCCCAAGGTAATGCAACAGGCCCTGGAGGCCATCGCCTACCAAGGACAGGCGGGGAGCTTCGAGGCCAGCGACATGGCCCGGTGGTTCCCGCAACTGCTGGCCAGCATGGAGAAGAACGGCAGCACCGGCATGGAGGCGGTCAGCTCCTTGGGCGCGATGCTTCAAGTCCAGATGAAAACGGCCGGCGGCTCGGACGAAGCGGCCAACAACCTGAAAAACTGGATGGAGAAAATCGGTTCGGGCGACGTGGTCAAGGCGTACAAGGACGCCGGCATTGACTATCAAGGCTCCCTGAACACTGGCATTCAGAAGGGCATGTCGACCCTGGAATCCAGTTTCGCCCTGGCGATGAAATACATCCAGGCCACCGACCCGGCGAAGGCCGCGAAGATGGCCGAGGCCCAGGCCAAGATCAGCAAGGAGACGGACCCGGAGAAGGCCAAGGCGGCGCTCGATGCGCTGGAAAAATCCCTGCGTACCGGTGACCTGTTCGCCGACATGCAGGTCAAGGCAGCGCTCACTGCCTACTCGCAAAACAAGTCGCTGTACGAGCAGTTGAAAAAGGATTCGCAGTCTTCTGGCGGGATCCTCGATAAGAACCTGGCCGAGCGGCGCGAAACGTCGAAACAGATGTGGGACGAGCTGGGCCAGGCGGTTAGCGATGGCATGCGCAGCGTGGGTGACGCCATCCGCCCGGCGACCGATGCGGTCGCCCAGGGCCTGACCTCAATTGTGCGTGGGTTGACGAAGCTTTCGGATGGCTCGCAACCGGTGGTGCTTGGCATTGCTGCTATCACCACCGGCCTGTTGGCCCTCAAGACGGCTGCCAGCGCGGTGAAGATTGGCAAGGGGCTGTACAACATATCGCGTGGTCGGGCGATGGAGCGAGGCGTGGGCGCCCTCGGTAACGCCGCTGCCAAGGCTCCTAAAACCGGTATCAAGACGGTGGATAAGGGGCTCGGCGTACTCGGTAAGCTGATGGGAGCGGGCAATGATTCCGGTGGGGGGCTGAGCACTGAGCCGCAACGCGTGTTCGTCGTCAACGCTGATGCGATAGGCCGAGCAGGCTCTGGTCCAAGCTCAGGCCCCGACGCTGCAGGCAGACGTCAGCGTGGGCGACGCGGTCGCCGTTCCGGCATCGGAAACCTCCCACGTCGCCGATTGCCCGGCCGGGCGTCGAATATCCCGTCCGTATCGGCTCCTGCCGCCGTTTCTATGATGCCAAAGGTTGGCCTGTTGGCTGCTGCGCCTATTGCCGCTGCGGCGGAGGCGGTGCCCGATAGCTCGCTCGGCCGTGCGGTTCAGTCGATTAGGGGCGTCACCCGAGCCACCAAGCGTCTCCCCGGCGGTTCGGTATTAGATGCCGGGGTGGGAGTTATCGATACCGCGCTTAACGCCAAGACCCAAGACGAAAAAGCCGAGGGATACGGCGGTGCTGCGGGTGGTTTCGCGGGCGCCCTGGCCGGCGGTGCAGCAGGTGCCGCTATCGGTTCGGTGGTGCCGATCATCGGTACGGCCATCGGCGGCGCAATCGGTGCCGCGCTGGGCGGCCTGGGTGGCGAAAGCATCGGCAGCTTCTTGGGTAAGTCCTGGTTTGGCAGTGAGGCCAAGGCGGAAGAGGCCAAGCCTGCCGAGGTCGCCAAGCCAGCTGACCCCACACCGCCCGTGCCGCCAAAGGTTGAGCAAGCTTTCAGCTTTGCGCCGAATGTCTCCATCACTGTTCAGGGCGATGTTAAAGATCCTGCGCAGCTGGCTCGGGAGCTGGAGCCGCATTTGCGTCAGCTCATGGAGGCTTTCTCTCGGGAGACGCTTGCTCGACAGTCGTCGAGCCAGTTGTTCGATGCTCCCCACGTTTAAMASKLALSLVIGGAVSSTMASAFRTVDGHIKKLEEKGSKAKVLKSTIGETIRLRDEWKRAHDSGAASADGLLRKLNGNLDALRKQGVEVGRLGQEYQRLGRAAKAADLQLKGHQQLDAGKKGLTSSIGQGVVATGLAAIPTKVSADYQAIIRDIAIKADVVNKPQETQLSQTVIQTSRDTGMARNDVADLVNQLVGAGMDLKQAMAYAPTAAKFAIGQGASGVDTASMIMALQQNAKITDPKVMQQALEAIAYQGQAGSFEASDMARWFPQLLASMEKNGSTGMEAVSSLGAMLQVQMKTAGGSDEAANNLKNWMEKIGSGDVVKAYKDAGIDYQGSLNTGIQKGMSTLESSFALAMKYIQATDPAKAAKMAEAQAKISKETDPEKAKAALDALEKSLRTGDLFADMQVKAALTAYSQNKSLYEQLKKDSQSSGGILDKNLAERRETSKQMWDELGQAVSDGMRSVGDAIRPATDAVAQGLTSIVRGLTKLSDGSQPVVLGIAAITTGLLALKTAASAVKIGKGLYNISRGRAMERGVGALGNAAAKAPKTGIKTVDKGLGVLGKLMGAGNDSGGGLSTEPQRVFVVNADAIGRAGSGPSSGPDAAGRRQRGRRGRRSGIGNLPRRRLPGRASNIPSVSAPAAVSMMPKVGLLAAAPIAAAAEAVPDSSLGRAVQSIRGVTRATKRLPGGSVLDAGVGVIDTALNAKTQDEKAEGYGGAAGGFAGALAGGAAGAAIGSVVPIIGTAIGGAIGAALGGLGGESIGSFLGKSWFGSEAKAEEAKPAEVAKPADPTPPVPPKVEQAFSFAPNVSITVQGDVKDPAQLARELEPHLRQLMEAFSRETLARQSSSQLFDAPHVNANANANANA
D1-35_01896846hypothetical proteinATGGCCTACATGGAGCAAATGCAATCGGCGCTGAAATCGCTGCTTGCAGCGGGGGAGTCTGGCCGTACCAGTCTCGACGGCATGCTGGGCCCGCTCAACGGCGCCGTCAGCGACATGACGGGCGCAGCCTCGGAGCTGGAGGGTGTGCCCTTCATTGGGCCTGCCATCGGCGCCAAGGTGCAACGGACCATGCGGGCAATCAACGCGGCGCAGTCCACCGTGGGCCAGGTGGCGGCCAAGTACAACCAATCCGTCACCGCAGCCGGCCAAGTCCAGAAGCGGCTGGGTTCGCTCAAAGAACAGGCTGGCAAAGCGGGTGCAGCGATTAATCGCATCGCCGGCCAGGTGAGCCCATCGCTGAGCAACATCATGCCCACGGGTTCATTTGCCCCCCAACTGACACCAGCTGCCGAGGCGGTGAAGCCGTTCCCGCACCTGCTGATCATGCAGCCCCTGGTGCCGAACGCGCAGCCGTACTACTTCAACCTGGATACGGCGGCTTTCGAGGAACTACGTCGGCAGACGTCGTTTCGTTGGGCAGGCCAGGAACGGCTGACACGCAGCATCGCCCAGCAGGCGGTCGGCCAAGGAGAGGACAAGATCAGCCTAAAGGGCGCGATTTTTCCGGGCTTCAAAGGTGGGCTCAAACAGCTGGACACCCTGCGCACCATCGGGCGACGTCTGCAGCCGGTGAACCTGACCACCGGCTACGGCGAAGTGCTCGGCACCTGGTGCCTGCTCAACATCGAGGAAGATCAAAGCAACCTGCTCGCGGGTGGCATTCCGCGTAAGCAATCCTTTTCACTGGAGTTTGTGAGCTATGGCGACGATCTGCAGAACGTCTGAMAYMEQMQSALKSLLAAGESGRTSLDGMLGPLNGAVSDMTGAASELEGVPFIGPAIGAKVQRTMRAINAAQSTVGQVAAKYNQSVTAAGQVQKRLGSLKEQAGKAGAAINRIAGQVSPSLSNIMPTGSFAPQLTPAAEAVKPFPHLLIMQPLVPNAQPYYFNLDTAAFEELRRQTSFRWAGQERLTRSIAQQAVGQGEDKISLKGAIFPGFKGGLKQLDTLRTIGRRLQPVNLTTGYGEVLGTWCLLNIEEDQSNLLAGGIPRKQSFSLEFVSYGDDLQNVNANANANANA
D1-35_01897207hypothetical proteinATGGCGACGATCTGCAGAACGTCTGATGGGGATCTGTTGGACACCGTATGTCATCACTACTACGGCCATTTGAATGGCACGGTGGAGGCCGTGCTTGCCGCCAATCAAGGCCTGGCCGATGAGCCTCAACCGTTTCGCGCTGGTGTGATTATCCTGCTGCCGGATCTGCCAGCGCAGACGCTGGAGGATATCCAGCTGTGGGATTAAMATICRTSDGDLLDTVCHHYYGHLNGTVEAVLAANQGLADEPQPFRAGVIILLPDLPAQTLEDIQLWDNANANANANA
D1-35_018981047hypothetical proteinATGAAGCCGACCTATCGCATCGTTGCGGACGGCAAAGACATCACCGCGTTGATCAATGACCGGTTATTGAGTCTGCGCACCTCGGATAAGCCGGGCATGGACTCGGACGACTTCGAGTTGCGGATCGATGATCGTGATCAAGCGGTTGCGCTGCCCACACGTGGGGCGGGTGTCGAGGTTTACCTGGGATATACCGGCCAGGCCCTGACCCGCTTGGGGCGCTACACCGTCGACGAGATCGAGTTGTCGGGGCCGCCTGACACGATGGTGATCCGGGGTAAAGCCAGTGACATGCGTGGCAGCGGCAAGACCGTGCGCAGCGGGTCCTGGGAAAACGTGCCCCTGCAGCAGATTGTCCGCGACGTGGCAGCCCGCAATGGTTGGCAGCCAGTGTGCCCAGTGCAAACCAAAGTGCCCCGCGTCGACCAGCTCAACGAGTCGGACTACAACTTCATCACCCGCCTTGCCAAACAGTATGACTGCACGGCCAAGCTGGCCGACGGCAAGCTGTTGGTCATGCCTCGGCAGGGCGGCCAGACCGCGAGCGGCAAGAACCTGAGCCCTGTGGTTCTGAGGCGCTCTGATCTGAGCCGTTATCAATTCCGTCTCGGCGATCGCAATACGCAAAAGGCGGTACGCACCAAGCACCAGGACAAAAAGTCAGGAGCCCTGAAGGTAGTCGAGCTGGACAACGACGACCTGCCGAACGGCCTGCCAGCGGTCCATACCGACCGGCATATCTACCCCAACAAGTCAGCCGCCGAGCAGGCCGCCAAGGCGCGCTTGGCTGCGTTCAATCGCAGCAGCGCCGGGGTTCGCCTGGAAATGGCCGGGCGCACCGATGTATTTGCCGAGCGGTCGATCATCGTCCAGGGGATCAAGCCCGGGCTTGATGGTGAATACCTGGCTGAGGCGGTGGAGCAACTGTTCACCTCCAGTGGCTGGACCACCACCGTCGAGTGCAACGGCGGCAAGAAGGGCAAGGCCAATGCCAAAGGTAAGAAAAAGAAGAAGGAAGCCAAGCCGGTCAAGGTCGTCCAGCTTTAGMKPTYRIVADGKDITALINDRLLSLRTSDKPGMDSDDFELRIDDRDQAVALPTRGAGVEVYLGYTGQALTRLGRYTVDEIELSGPPDTMVIRGKASDMRGSGKTVRSGSWENVPLQQIVRDVAARNGWQPVCPVQTKVPRVDQLNESDYNFITRLAKQYDCTAKLADGKLLVMPRQGGQTASGKNLSPVVLRRSDLSRYQFRLGDRNTQKAVRTKHQDKKSGALKVVELDNDDLPNGLPAVHTDRHIYPNKSAAEQAAKARLAAFNRSSAGVRLEMAGRTDVFAERSIIVQGIKPGLDGEYLAEAVEQLFTSSGWTTTVECNGGKKGKANAKGKKKKKEAKPVKVVQLNANANANANA
D1-35_01899564hypothetical proteinATGCCACTCACTGAGCAGCAACTACAGCGCATCATGCCCAACGCCCGCCGCCAAGCGGGCGTTTTTGTATCGGCCCTGAACGCCGCCATGGCACACCGACAGATCGATACGCCCAAGCGGCAGGCGGCATTCCTGGCCCAGGTTGGGCATGAGTCCGGCCAACTGCAGTACGTGCGGGAGCTGGGCGGCGATCAGTACCTCAGTAAATACGACACCGGTTCGCTGGCTTCGAAACTCGGCAACACGCCCGAGCCTGACGGTGATGGCCAGCGCTATCGTGGTCGCGGCTTAATCCAGATTACCGGTGCCCACAATTACCTGCGCTGCAGCTTGGCGCTGTTCGGGGACGAGCGCCTGTTGCGTACGCCTGAACTACTGGAGCTGCCCCTATGGGCGGCCGAGTCGGCTGCATGGTTCTGGTGGGTCAGGGAGTTGAACGTGTTGGCTGATCGGGGTGAGTTCGAAACGATCACCCGGAAAATCAATGGCGGGCTCAATGGTCTGCAGGAACGCCTGCAGCTGTGGGAGCGGGCGAGGGCGGTGTTATGCGTCTCGTCGACATGAMPLTEQQLQRIMPNARRQAGVFVSALNAAMAHRQIDTPKRQAAFLAQVGHESGQLQYVRELGGDQYLSKYDTGSLASKLGNTPEPDGDGQRYRGRGLIQITGAHNYLRCSLALFGDERLLRTPELLELPLWAAESAAWFWWVRELNVLADRGEFETITRKINGGLNGLQERLQLWERARAVLCVSSTPGPT0012140_613DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSFUNGICIDAL_COMPOUNDS|ANTIBIOTICSFUNGICIDAL-CHITINOLYTIC_ACTIVITIES,PGPT0012140-putative_chitinase-K03791NANA
D1-35_01900543hypothetical proteinATGCGTCTCGTCGACATGATCCCGCTGCAGTACCGCGTGCTGGCCGCCGGGCTTCTGTTGTTCGCTCTGGTTGCCGCTTCGGCGGTCATCGCCTGGACGGTTCAAGGCTGGCGATACGGTCAGCAGCTGGAAAAACAAGCCCGGCTCCACACCGAAACTCTCAACCAAATAACCCTGGCCTCGACCGCGCTGCAGCGCACCGAGCAGGACAAGCGCCTGGCCCTGGAGCAGCGGCTGGCCGCCAATGACCAAACCCACTATCGAGCCCTAACCGATGCCCAACGTGACCAGGATCGCCTGCGTGATCGCCTCGCTACTGCTGATGTCCGGCTGTCAGTCCTACTCGACGCCACCGATACCACCTGCAGCGGTGCGGTGCCAGCCACCACCAGCGCCGGCGGCGTGGTTCATGGAACCACACGTGCCCGACTTAACCCGGCGCATGCTCAAAGAATTATCAGCATCACCAATGACGGCGACCAAGGATTAATTAAACTTGCCGCCTGTCAGGCTTATCTGAAGGATATAAATTTAGCGCGGTAGMRLVDMIPLQYRVLAAGLLLFALVAASAVIAWTVQGWRYGQQLEKQARLHTETLNQITLASTALQRTEQDKRLALEQRLAANDQTHYRALTDAQRDQDRLRDRLATADVRLSVLLDATDTTCSGAVPATTSAGGVVHGTTRARLNPAHAQRIISITNDGDQGLIKLAACQAYLKDINLARNANANANANA
D1-35_01901795dpnMModification methylase DpnIIAATGTCTTCACCCATCATTCCTTGGATGGGCGGCAAACGTCGCCTAGCCGACCGCCTCATTCCGCTTTTTCCTCCACACGAGTGCTATGTCGAAGTCTTTGCCGGCGGTGCCGCGCTTTACTTTATGCGACCCCAGGCCGCACCCGTTGAAGTCCTGAACGATATCAACGGCGACCTGGTGACGCTCTATCGCGTTGTGCAGAACCACCTGGAAGAATTCGTGCGCCAGTTCAAATGGGCGCTCAGCTCCCGCCAGTTGTTCGAGTGGCAGAAAATGACCCGTCCCGAAACCCTTACCGACATCCAGCGCGCCGCCCGGTTCTTCTATCTGCAACACCATGCTTTCGCCGGCAAGGTCACCGGGCAGACGTTCGGCACCGCGACCACTGGCCCGGCCATCAACCTGCTGCGGATCGAGGAGAACCTCTCGGCCGCGTGGCAGCGACTGTCCGGCACCTACGTCGAAAACCTTCCCTGGCTTGATTGTGCTGAGCGCTACGACCGCGCTCATACGTTCCACTACATGGACCCACCGTACTGGCAGACCGCTGGATATGGCGTGGATTTCCCGTTCGAGAATTACGAGCGGATGGCCGACTTTATGCGTCGTTGCAAGGGCAAGGTAATGGTCAGCATCAACGACCACCCGGACATCCGTCGCGTGTTTGAAGGCTTTCACTTCGAGACGTTGGACATTCGGTACAGCAACACGAACCAGCGTCAGTGCAAGGCTGAGGTCAGCGGTGAACTGGTGATCATGAACTGGGAGCCGGCAGCGTTGGGAGGGCTGTTTTAAMSSPIIPWMGGKRRLADRLIPLFPPHECYVEVFAGGAALYFMRPQAAPVEVLNDINGDLVTLYRVVQNHLEEFVRQFKWALSSRQLFEWQKMTRPETLTDIQRAARFFYLQHHAFAGKVTGQTFGTATTGPAINLLRIEENLSAAWQRLSGTYVENLPWLDCAERYDRAHTFHYMDPPYWQTAGYGVDFPFENYERMADFMRRCKGKVMVSINDHPDIRRVFEGFHFETLDIRYSNTNQRQCKAEVSGELVIMNWEPAALGGLFPGPT0027190_2355DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_R-M_SYSTEM,PGPT0027190-dam-K06223NANA
D1-35_01902276hypothetical proteinATGGTTGTCGCGCTCGATCTGATCCGCTTGCTATGTGATTACGCTGGAGCGTTACTGTGGTCACACAAACGAAGGACCAAGACCATGGAAACCGAAACCGCTGATAAATACTTGAACATCTTCCCCTCCGAGCTGCTGGCGGCGGTGGCACGCGGGGAGGTGGATCTGAATCACTGGGCCGGCGTGGTGCTGGCTGGGCGAGGGTTGGACCAGAACGCACGCTGGGTGGGATTCCCAGAGGCGGCCCGCCTTCTGGATCAACGCAGTCAGGCTTAGMVVALDLIRLLCDYAGALLWSHKRRTKTMETETADKYLNIFPSELLAAVARGEVDLNHWAGVVLAGRGLDQNARWVGFPEAARLLDQRSQANANANANANA
D1-35_01903702yedK_1COG2135SOS response-associated protein YedKATGTGCGGGAGATTCGTGCAGTACGAGGGCATGGCGGTGTTTATGGAGGAGCTTGGCCCTCAGCTGCCATTGTTCGGCGGGTACGACGCAGAGCCGATCAGCCGGTACAACGTGGCTCCGACGACCCGCGTGCAGATCCTGCACAGCACAGAGGCAGGTATCCACATCACTCCAGTGAGGTGGGGATGGGCGCCCTTTTGGGCGAAGGGAAAACGTCCGGATCCGATCAATGCCAGGATCGAGACCGTTACGACGGGAAAGTTTTTCAAACAGCTTTGGCCGGCCGGGCGCGCACTGGTGCCCAGCGAGGGTTGGTATGAGTGGGTTAAAGACCCAAATGATCCGAAGAAAAAACAACCCTATTTCATCCGGTTGAAGGATCAGAAGCCGATGTTCTTCGGGGCGCTCGCACAGGCCCGTCCAGGTCTGGACGAGCAAGACGGTGACGGTTTCGTAATCATTACCGCGTCATGCGACCAGGGCATGGTAGATATCCATGATCGCCGGCCGTTGGTGTTATCACCTGAGCAAGCGCGGGAGTGGCTGGACCCGGATCTCAGCCCAGGGCAAGCAGAGGAAATTGCAAGAGACCATTCCAGGCCTGAGGCCGATTTCGAATGGTATGCCGTGGGAAAAGAGGTGGGGAATGTCAGAAACCAGGGAGCACAGTTGTTGCTCCCCTGGAATCCGGAAGAAAACTAAMCGRFVQYEGMAVFMEELGPQLPLFGGYDAEPISRYNVAPTTRVQILHSTEAGIHITPVRWGWAPFWAKGKRPDPINARIETVTTGKFFKQLWPAGRALVPSEGWYEWVKDPNDPKKKQPYFIRLKDQKPMFFGALAQARPGLDEQDGDGFVIITASCDQGMVDIHDRRPLVLSPEQAREWLDPDLSPGQAEEIARDHSRPEADFEWYAVGKEVGNVRNQGAQLLLPWNPEENNANANANANA
D1-35_01904426umuDCOG1974Protein UmuDATGAGCTTTTCAATTCTAGGCCCTATTGCTGAGGGTGGCTTGAAGCTGCCCCTGTGTTCGTTTCGTGTGCCCGCCGGGTTTCCATCTCCAGCGGCGGACCACATCGAAGCGCACATCTCATTGGATGAGGTTCTGAACATTCGCGCTCCGCATGTCTACCTGGTTTCCATCGCCGGGGAGAGCATGCAAGGCGCTGGGATCTTTGAAGGGGACCTAGCCGTTGTGGACCGTGCGATGGAACCTGCGCATGGTCACATCGTCGTGGCGCTGCTGAACAACGAACCCGTGTGCAAGCGCCTCTGCATCCGTGGGAAGGAGGTGATTCTCCTGTCGGAGAACCCAAAGTACCCACCAAGGTACGTGCTCGAGGGCGACGAGCTGGTCATCTGGGGCGTTATCACCTGCAGCGTGCGCAGCCATGTCTAAMSFSILGPIAEGGLKLPLCSFRVPAGFPSPAADHIEAHISLDEVLNIRAPHVYLVSIAGESMQGAGIFEGDLAVVDRAMEPAHGHIVVALLNNEPVCKRLCIRGKEVILLSENPKYPPRYVLEGDELVIWGVITCSVRSHVPGPT0015094_950DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ADAPTIVE_MUTATIONCE-BACTERIAL_FITNESS-ENVIRONMENT-INDUCIBLE_DNA_POLYMERASES,PGPT0015094-umuD-K03503NANA
D1-35_019051278umuCCOG0389Protein UmuCATGTCTAAAGCCCAGCCCGTTTTCGCCCTGATCGACTGCAACAGCTTCTACGCCAGTTGCGAAAGAGTGTTCCGCCCGGACCTGGTCCGCGTGCCCATCGTCGTGCTGAGCAACAACGACGGGTGCGTGATCGCCCGCAGCTACGACGCCAAGCCCTACGTGAAGATGGGCGAGCCGTATTTCCAGATCAAGCACAAGCTGCAGAAACACGGCATCGTCCCGTTCTCGTCGAATTACGCGCTCTACGGTGACATGAGCGAGCGCGTGATGACCCTCATTGAAGCAATGGTGCCGGCCGTCGAGGTTTACAGCATCGACGAAGCCTTCGCGGATCTCACCGGCATCGACGGCCGGGATGCCCTCGGCCGGAAGATCCGCAGCCAGGTGCTGCGCTGCACCGGCATCCCGGTTGGGGTAGGGATCGCTCATACCAAAACCCTGGCAAAACTGGCGAACCACACCGCCAAGCGGCTCCAGGCGCAAACGGGCGGCGTTGTCGACATCTGCGACCCGTTTAAGCGCGACTGGGTGTTGCGCAACACCGACGTGTCTGAAGTCTGGGGAGTCGGTCGCAAGATGAAACTTCACTTGGACACCATGGGCATCAAGACCGCGATGGACCTGGCAAAGGCCGATCCGTGGACGCTACGGAAGAAATTCAGCGTGGTGATCGAAAAGACCGCCCGGGAGCTGGCCGGCACGCCGTGCCTGGAGCTGGACGAGCCGGACCCGCCGAAGCAAGAAATCTGCTGTAGCCGGATGTTTGGTATGCGGCTCACGGAGCTGGCCCCGATCAAGGAAGCGGTAGCCACCTACATGATGCGCGCATCGGAAAAGCTCAGAGCGCAGAAGTCGCTGTGCAAGAAGGTCCGCGTGAGCATCCGCACCGGCATGTTTAATCCCGAGGAGGCGAAGTATGCCAATGGGGTGCTGATTGACCTGCCATATCCGACTGACGATGTACGATTGCTGACGAAGGCGGCCGTGGATTCGCTTGATCGGGTGTTTCGGCCAGGCTTCAAGTACAGCAAGGCGGAAGTGTTGTTGATGAACCTCTGTCAACCGGGAGAGTATACCGACGATCTGTTCGCATTCTCCCAGCCAACTGACGCCACGAAGCTAATGACCGTACTGGATGAGATCAATAGTCGGTGGGGGAGAGGGACGTTACGCACGGCCGGGGTGCCTGCAGAACCGGACTGGGGGATGCGTAGAGAAATGATGAGCCGGAGTTACACCACCAAGCTGGGTCAGCTTTGGCGGGTTACGTGTCGATAAMSKAQPVFALIDCNSFYASCERVFRPDLVRVPIVVLSNNDGCVIARSYDAKPYVKMGEPYFQIKHKLQKHGIVPFSSNYALYGDMSERVMTLIEAMVPAVEVYSIDEAFADLTGIDGRDALGRKIRSQVLRCTGIPVGVGIAHTKTLAKLANHTAKRLQAQTGGVVDICDPFKRDWVLRNTDVSEVWGVGRKMKLHLDTMGIKTAMDLAKADPWTLRKKFSVVIEKTARELAGTPCLELDEPDPPKQEICCSRMFGMRLTELAPIKEAVATYMMRASEKLRAQKSLCKKVRVSIRTGMFNPEEAKYANGVLIDLPYPTDDVRLLTKAAVDSLDRVFRPGFKYSKAEVLLMNLCQPGEYTDDLFAFSQPTDATKLMTVLDEINSRWGRGTLRTAGVPAEPDWGMRREMMSRSYTTKLGQLWRVTCRPGPT0014882_935DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ADAPTIVE_MUTATIONCE-BACTERIAL_FITNESS-ENVIRONMENT-INDUCIBLE_DNA_POLYMERASES,PGPT0014882-umuC-K03502NANA
D1-35_019061131hypothetical proteinATGTTACTCAGCCCGGGGGTTGCAATACAAATGGTCAAGAAAAGCAGGGGCGTTAAGCCAACTGAAGAGTCAAAGCGTGAGGCTGAGGCTGCCGTTTCTGTTGTAGCGCGTCAGGTTAAGTTTAACGTCGCTGAGTATCCCGTTTCCATGTATGTCGACAGATTTAAAAACGATATAGATGACCGATACTTTGTTCCATCATACCAGCGAAATCTTGCTTGGAACGATGAGCAGAAATCGCAATTTATTGAATCGTTAATAATAGGTTTGCCTATCCCATTTATGTTTTTTTATCAAACAGGGGACGGTAGGATGGAAATTGTGGACGGGTCTCAGAGAATGAGAGCTATGAGGTCGTTCCTCAAAGAAGGGCTCCGTCTGCGTGACTTGGTTTTGGTCCCTGAGCTGAACGGTTTTTCGGTTGAGGATCTTCATGCTGACAGAGTTAATAAGCTAGAAGATATAACTATACGTACAATTATTCTTGATACGGATACTGACCCGTCTACACGAGCGGAGATGTTTGCACGTATCAATCGGATGGGAACGACTGCAAACGAAGCAGAAATTCGCCGAGGATCACTGCCAGGTGCAGTGACCGAAATGATAACCAAATTAGCAGAGGATCGCAGGTTTGTGGCGATGACTCCACTAACTGCTAAAGCGATAAGTTCACGGGAGCGTGAAGAACTCGTTACTCGTTTCTTTGCGTACCTGAATAGAAATGATACCCCCGATGGTCGGTTTCCTGGTTATAGAGATCGTCCAAAGAAATTTATATATGATTATCTGAAAGATGCTAACTCGGCTGCTAAGGATAATCCGGAAATTATCGAGCAGATGAGTGAAGAGTTTTTTCGGATGTTGGATTTTGTCCGAAAAACATTTGAGTTGGGCTTCAGAAAGAATGGAACTGCGAACACGGTGCCGCGTGTCAGGTTTGAAGCTATAGCGGTGGGCTCAGCACTTGCCTTGAGGAAGTTTCCTGATTTGGAAGTTGACTCTAAGGTGATTTCAGAACGAATGAAAACCGAGCATTTCGACAGTGTCGTTGTCTCCGATGGAGCGAACGTGCGTTCCAAGCTAGAGGGACGGATTGACGTTGTGGTACGTATGTTGGTTAACGAATGAMLLSPGVAIQMVKKSRGVKPTEESKREAEAAVSVVARQVKFNVAEYPVSMYVDRFKNDIDDRYFVPSYQRNLAWNDEQKSQFIESLIIGLPIPFMFFYQTGDGRMEIVDGSQRMRAMRSFLKEGLRLRDLVLVPELNGFSVEDLHADRVNKLEDITIRTIILDTDTDPSTRAEMFARINRMGTTANEAEIRRGSLPGAVTEMITKLAEDRRFVAMTPLTAKAISSREREELVTRFFAYLNRNDTPDGRFPGYRDRPKKFIYDYLKDANSAAKDNPEIIEQMSEEFFRMLDFVRKTFELGFRKNGTANTVPRVRFEAIAVGSALALRKFPDLEVDSKVISERMKTEHFDSVVVSDGANVRSKLEGRIDVVVRMLVNENANANANANA
D1-35_01907711hypothetical proteinATGACTACTCTACGAGCGGCTTTGGCAGAGCGGAAAGAAGAGTTTTCTGTCCATATGGCCCTGGCGCACGCTTTGGACCGCAGACTTATCTCCGGCGATCCGGTTTCGATTGGAGAGACGGCAGTAACAGTGCGGCACTTGCTGACAATTAAGTCAGGCCTGATAGTCCATTTGTATAACATAGTTGAGTCAGTAATGACACGAACGATTCAGGAGGTTGGAGAGGCAGTTCAAGCCGCTCGTCCTTCTGAATGGACAACGGAAACTTTGAAAGAATGGCTTCGGTACTATGCGGCTTCAGGAGGGGATGGGAATGAAGACACCCGCCTGGACGTTGTTCACAAGGCTGCCTTAAAACTGTTAACCAAAGAGCCAATTCGAGAGCTTACTTTTAAAAAGCCATCTGGAACGTGGTCGGATAAGGTAATTTATACTTTTTCGCAACGACTGAAAGTGGATTTTAGGTTTACGGCGGCGTTGGCGATAAAGATGGCCAAGAGCTCGACATATGCAGATAAAACCCCGCTGGAGTTTTTGGCTGACAGAAGAAATGCGATTGCACATGGAAGGCGCTCGTTTGAAGACGGTGCGCGTGAATTGAGTTTGCAGAGTATACAGGATCTTGCTGATGTAACTATTGAGTACATGGAGCATGCTGTAGATGCATTTCAGAAGTTTGTAGACGATAAACATTATGTGGCGGCCGTTTGAMTTLRAALAERKEEFSVHMALAHALDRRLISGDPVSIGETAVTVRHLLTIKSGLIVHLYNIVESVMTRTIQEVGEAVQAARPSEWTTETLKEWLRYYAASGGDGNEDTRLDVVHKAALKLLTKEPIRELTFKKPSGTWSDKVIYTFSQRLKVDFRFTAALAIKMAKSSTYADKTPLEFLADRRNAIAHGRRSFEDGARELSLQSIQDLADVTIEYMEHAVDAFQKFVDDKHYVAAVNANANANANA
D1-35_019081089ydiOCOG0270putative BsuMI modification methylase subunit YdiOATGCGCAATACAGAAAAAATTTTGGCGGTCGATTTGTTTTGTGGGGCCGGCGGTCTTACTTACGGGTTGGAGAGCTCCGGTATTTCAGTGACCCTTGGAGTTGATATCGACCCGAACTGTGCTCATGCTATTGAAGCAAATTCAAATGCTAGGTTTCTGCAAGCCGACGTTGCTTCGTTGGACGTCGCGGAAGTTAAGAAGGCGCTGTCGGGCGGTGATTTTACACTTCTTGCCGGCTGCGCGCCGTGCCAGCCTTTCTCCACATATTCACGTGCCGCAAAACAGAGGCATGGAGTTGGTGCGGGTGATGGGCGAAGCGAGGATTGGCGTCTTGCGGAGCACTTCGGAAATGTTATACGTGAGGTGCAGCCTGATATCGTGACAATGGAGAACGTCCCTCCATTGGCGCAGCAGGACGTGTTTAAAACTTTTTTAGAAAAGCTTGAGGGTTATTGGGTGGATTGGAAGGTTATCGAATGTAATTCGATCGGTCTTCCCCAAACTAGAAAGCGACTAGTGCTTGTTGCTTCGAAGTTGGGTCCAATCGAAATCCCTGACTTCGATTTGCCTCAGAAAACAGTGCAGGACACAATTGGTGGTCTTCCTAAGATAGTAGCGGGGGGAGGAGATCCGAACGATAAACTTCATAAAGCTAGTCGACTCAGTGCACTGAATATGAGGCGGATACGCTCTTCGATTCCCGGCGGTACTTGGAGGGACTGGCCTGAAGAACTTCTTTCCTCGTGCCACACAAAGGAAACTGGTGCAACTTACCCTTCAGTTTACGGACGGATGGAGTGGGATTCTCCAGCTCCCACCATTACAACGCAATGTTTTGGCTATGGAAACGGTCGTTTTGGACACCCTGAGCAGGACAGAGCTATAAGCCTTCGCGAAGCAGCAATGCTGCAAGGGTTTCCACGTGATTACTCGTTTCTTCCCGATGGAGAGCCTGTTTCCTTTGCTAAGGTTGGTAGGTTAATTGGCAATGCCGTACCTGTAACATTGGGAGAGGTGATTGGTCGATTTATCAGGCAGCATGTCACTGAATATAGTCAATTGCGTACCGTTGAGCAGCGTGCAGGATAAMRNTEKILAVDLFCGAGGLTYGLESSGISVTLGVDIDPNCAHAIEANSNARFLQADVASLDVAEVKKALSGGDFTLLAGCAPCQPFSTYSRAAKQRHGVGAGDGRSEDWRLAEHFGNVIREVQPDIVTMENVPPLAQQDVFKTFLEKLEGYWVDWKVIECNSIGLPQTRKRLVLVASKLGPIEIPDFDLPQKTVQDTIGGLPKIVAGGGDPNDKLHKASRLSALNMRRIRSSIPGGTWRDWPEELLSSCHTKETGATYPSVYGRMEWDSPAPTITTQCFGYGNGRFGHPEQDRAISLREAAMLQGFPRDYSFLPDGEPVSFAKVGRLIGNAVPVTLGEVIGRFIRQHVTEYSQLRTVEQRAGPGPT0020015_4560DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESTRICTION|MODIFICATION_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_R-M_SYSTEM,PGPT0020015-dcm-K00558NANA
D1-35_01909531hypothetical proteinGTGAGAAAGTTATTTGCTACAGATTTAGACGCGAAAATTGCGCTGTTCCATAAGGCATTTGATGGCCCCGCTAATTTGCTCACCGCAGTACTTCGAGGGCACATGATGGTCGAAGAAAGGCTGCATGATGTGATATCGGCTGGTGTAGCCATTTATAGCCGCCCTTTCAAAGAGAACGACATATTTACCTTCGGCACTGCAGCCAAGCTAGCCCAGGCAATCATAGGTTCTGCCGGAGATGTTGATTTATGGAAAGCGGTTGCATCGTTAAACGCGCTCCGTAATGCCGTGGGGCACCGATATGAGCCTGCGCGGTTAGATCAGCTATTAACAAAGTTCTTCAGGGACACCGACCAAACGGCTTGTAATGTTTTTAAAGGCGAATACCATTCTTATCAGCATAAAAGCGAGTCGGAAGATACCCACGCCTTGGTCGTTCGATTACGCTGCATGGCGATATGGGCTCAATTAGGTGTGCATGCTGATAAACTTACACAGGACTTAGGTGGTATATTGCTAAGCCGACGGTAAMRKLFATDLDAKIALFHKAFDGPANLLTAVLRGHMMVEERLHDVISAGVAIYSRPFKENDIFTFGTAAKLAQAIIGSAGDVDLWKAVASLNALRNAVGHRYEPARLDQLLTKFFRDTDQTACNVFKGEYHSYQHKSESEDTHALVVRLRCMAIWAQLGVHADKLTQDLGGILLSRRNANANANANA
D1-35_01910870hypothetical proteinATGACATCTAACAAGACATACGAAGAGCCTCGACCAGCCATCCCAGCAGACCTCCGCCGGTCTGTTGAAGTCGAATCAGGCCACTGCTGCGCTATTAAAGGCTGCAATGAGCATACCTACCTAGAAATTCACCACATTGACCAGAACCGTAACAATAACACTCTAGAAAATCTTATTCTGCTATGCGATAAGCACCATAAAATGTCTCATGCCAACGTCATTGATCGAAAGGCATTGAAACAATATAAGGATCTGCTTGCTGACTCTTTCAATAATTTGATCACTGATAAATTCGAAGAACTAAAGGCTTTAATCACCGGTGACAAACCGTCAACCCTTGCGCCAATAAACTCCACTGACCAGCCTGCCAACCATCAAGTTGAGAAGCGTGCTGCCTCCAGATCCGACATACTAAACTTTGCTCTTATCCATGTAGCTATAGCCCACTATGAAAAAGAGAATAAGCTGTACTTTGAGCATCAAGTAGAATTTCGCCAAGGGGATACTTCACTAACGCTAGACGCTCTACGCCAAGACGACGATTTACAAGAGGACATCATTCTTGATGTCCATTACTTACGTAAACCTTATCTGGATGCGCCTGTTTACGGCCCTTGGCTCGCTAAGAAAATCGAAATCTACGAGCTTCTCACTGGACGTCCCGCCAAAGGTGTGCTTATCGCAGTGGTAGGTCGCGAGCGTATGCTTGAAGGGAGTTACCTAGACCTTACTCAACAAGGCATCAAGTCATGCGAAGGTAAAGTTACACTTCAGGTTTATAGTTGCGAGCAGGTAGGCTTTCACCCCGGAACAGTAAGTGCCGCCATGTTTGCCTCGAATCTTAAGAGCTCAACTTTACCGTCGGCTTAGMTSNKTYEEPRPAIPADLRRSVEVESGHCCAIKGCNEHTYLEIHHIDQNRNNNTLENLILLCDKHHKMSHANVIDRKALKQYKDLLADSFNNLITDKFEELKALITGDKPSTLAPINSTDQPANHQVEKRAASRSDILNFALIHVAIAHYEKENKLYFEHQVEFRQGDTSLTLDALRQDDDLQEDIILDVHYLRKPYLDAPVYGPWLAKKIEIYELLTGRPAKGVLIAVVGRERMLEGSYLDLTQQGIKSCEGKVTLQVYSCEQVGFHPGTVSAAMFASNLKSSTLPSANANANANANA
D1-35_01911558smrACOG2840putative DNA endonuclease SmrAATGCAAGACGACGACTTTTCCCTGTTCAAAAGTGCGATCCAGGGCGTAAAACCGATCAAACACGATCGCGCCGAAACCGGCAAGCCAAAGGCCGATCGCGCGCAGATCGCCAAGTTGCGCCAGGCCGCCACCGTGCGCACCGATGCAACAACCGTGGATGGCCTGTCCGATCAGTTCGTCATCGACGTCGGCCCTGAAGACGAGTTGATGTGGGCGCGCGACGGGGTCCAGGAAAGCCAGATGCGCAAGCTGAAGGTCGGTCAGATCCCCTTCGAAGGCAGCCTCGACCTGCACGGTATGACTGTCGAAAAGGCCCGGGAAACCCTCTGGGCCTTCCTCGCCGAAGCCACCCGATTCGAAATCCGCTGCGTGCGCGTCACCCACGGCAAGGCGGTGCGGCTGGACGGCAAGCGACCGATGATCAAGAGCCACGTCAACACCTGGCTGCGCCAGCACCCGCAAGTGCTCGGCTTCACCTCCTGCCAGGCCAGGCACGGCGGCGCCGGGGCGGTCTACGTGATGCTCAAGCGCACCATGATGGAAGGTCGCGACGAGTAAMQDDDFSLFKSAIQGVKPIKHDRAETGKPKADRAQIAKLRQAATVRTDATTVDGLSDQFVIDVGPEDELMWARDGVQESQMRKLKVGQIPFEGSLDLHGMTVEKARETLWAFLAEATRFEIRCVRVTHGKAVRLDGKRPMIKSHVNTWLRQHPQVLGFTSCQARHGGAGAVYVMLKRTMMEGRDENANANANANA
D1-35_01912321hypothetical proteinATGAAGTTATCCGATGGTTTTGACGCACGTCGCTTGCGGCCCAAGGGCCCGAGCAACTGGCGATTTCGTATCGGCGCAGGGATCGCGGCGCTGCTGGCAACGCTCGGTGTGCTGCTGGCGATGGCCGGCGCCGCCAGCCTGCTCGGCCGTCCGCCCGCGCTGGGCGAGTTGAACGCCACCCCGCTCGGCTCGGCGATCATCCTGGCAATCGGTCTGTTGGTCCTGCTGTTGGGCATCTGGCTCTGGCGCCGTTGCCGCCGTCGCGCCCGCCAATCCCTGGAGCTGGCCATGGCTCCCCATCTGATGAAAAAACACGACTGAMKLSDGFDARRLRPKGPSNWRFRIGAGIAALLATLGVLLAMAGAASLLGRPPALGELNATPLGSAIILAIGLLVLLLGIWLWRRCRRRARQSLELAMAPHLMKKHDNANANANANA
D1-35_01913591hypothetical proteinATGTCCGTTCCAAAAACGATGTTTCAACTCAGCGGCCGCGGTTATGCAGCGGCCAACCTGAGTCAAGCGACGCTGATCATCATCGATGCCCAGAAAGAGTATCTCGCCGGCCCCCTGGCCCTCAGCGGCATGGATGCGGCGGTCGCGAACATCAAGCAACTGCTCGGCGCAGCCCGCACCGCCGGCCGGCCCATCGTGCATGTACGCCACCTCGGTACCCACGGCGGGCTGTTCGACCCACAGGGCGAACGGGGGGAATTCATTCCAGGCCTTGAGCCGCGGGACGACGAAACCATTATCGAAAAGCTCTTGCCGAGTGCTTTCCACGGCACCGAACTGAAGAAGCGCCTGGAAGATTTCGGCCCACTGGATCTGATCGTCTGCGGTTTCATGAGCCATTCCAGCGTCAGCACCACCGTGCGCGCCGCCAAGAACCTGGGCTTTCGCTGCACCCTGGTCGAAGACGCCTGCGCCACCCGTGATCTGCCGCACAAGGCCGGCGTGCTGAGCGCCGAACACGTCCACCAGACTGAAATGGCGATCATGGCGGACAACTTCGCCACCCTGGCCATGACCCGCGACTTCACCTGAMSVPKTMFQLSGRGYAAANLSQATLIIIDAQKEYLAGPLALSGMDAAVANIKQLLGAARTAGRPIVHVRHLGTHGGLFDPQGERGEFIPGLEPRDDETIIEKLLPSAFHGTELKKRLEDFGPLDLIVCGFMSHSSVSTTVRAAKNLGFRCTLVEDACATRDLPHKAGVLSAEHVHQTEMAIMADNFATLAMTRDFTNANANANANA
D1-35_01914909prmBCOG289050S ribosomal protein L3 glutamine methyltransferaseGTGATCACTTCCCGCCTTCGTACCCTGCGCGACCATATTCGTTGGGCCGTCAGCCGTTTCCATGGCGAGGATCTGTTCTTTGGCCATGGCACCGACAATGCCTGGGATGAGGCTCGCCAACTGGTGTTGGGCGCGCTGCATTTGCCTTGGGAAATTGCCGACAGCTATCTGGATTGCCGTCTCGAAGACGAAGAGCTGGTGCATGTACAGCGCCTGCTGCGCCGACGTATTGCCGAGCGCATTCCGACTGCCTACCTGCTCGGTGAAGCGTGGTTCTGCGGAATGTCTTTCATCGTCGACGAACGCGTGCTCATCCCGCGTTCGCCCATCGGCGAGCTGATTGAAAAACGCTTCGAGCCCTGGCTGGGCCAGGAGCCTGCGCGGATCCTCGACCTGTGCACCGGTTCCGGCTGCATCGGGATCGCCTGTGCCTATGAATTCCCGGAAGCCGAAGTGGTGTTGGCCGACCTGTCGTTCGAAGCGCTGGAGGTGGCCAATCAGAATATCGAGCGCCATGGCGTCGATGAGCGGGTGTTCACAGTCCAGGGCGATGGTTTCGATGGCTTGCCGGGGCAACGTTTCGATCTGATCGTGTCGAACCCGCCTTACGTCGACGCGGAGGATTTCGCCGACATGCCCCAGGAATACCAGCACGAACCTGAGTTGGGCCTGGCCTGTGGCGATGACGGCTTGAACCTGGTTCGCCGGATGCTGGCCGAGGCGGCCGACCATCTGACCGAGAAGGGCCTGTTGATTGTCGAGGTGGGCAACAGCCAGGTGCATGTCGAGGCGCTTTACCCGGAGGTCGACTTCGCCTGGCTGGACTTCGAACGCGGCGGGCATGGCGTGTTCATGCTCAGCGCCGGACAGTGCCGCCAGCATCAGGTGTTGTTTGCCTCAAGGGTTTGAMITSRLRTLRDHIRWAVSRFHGEDLFFGHGTDNAWDEARQLVLGALHLPWEIADSYLDCRLEDEELVHVQRLLRRRIAERIPTAYLLGEAWFCGMSFIVDERVLIPRSPIGELIEKRFEPWLGQEPARILDLCTGSGCIGIACAYEFPEAEVVLADLSFEALEVANQNIERHGVDERVFTVQGDGFDGLPGQRFDLIVSNPPYVDAEDFADMPQEYQHEPELGLACGDDGLNLVRRMLAEAADHLTEKGLLIVEVGNSQVHVEALYPEVDFAWLDFERGGHGVFMLSAGQCRQHQVLFASRVNANANANANA
D1-35_01915789hypothetical proteinATGACTGAGACTCAAACTTCTCCCGACACCGTCGCCGAACCGGCCGCCGCGCCTGCGGTGGAGCAGCCTTGGGCGGATGTGCAGGCCGAGCAGCATAAAATGCTCCGGCTGGCCCCGCTCAAGACCGATCGCGCCACCGGTGTGCGGCCCTTGCGCTTTGTCGAGTTCAGCTACGCCGAGCGTCACAGCAAGGAGCGCAGTTTGCTGCGCATGAGCATCAAGTTGCCGGGCCAACGGGTGCGCAAGGAACAGAACCATCTGGACGTCTGGGCCGACCACGTCGAGAAACGTCTGTCTTTCTCCCCTGACAACTTGCAAGTCGAGCCTTTGAATCGTGGGCTCGGACGCTTTCTCGCCGCTCAGGGCATCACCTGGGCGAAGAAGCGCTGGTCGAGCTATCGGGTGGACGGCAGCGACCTGAACAACAAGGACGCGCTGAACGAAGACACGCGCCTGCGCCGCGATCACTTCCTCAAGGCCCACGGCTTCGAGGTGGTCTACGCCGACGCCCAGCATCTCAAGGGCAGCGTCAAGGCCGCCCAGGTTGGCGACCTGGTGGGCGACTGGAACACCGAGAAGCTGCAGTTCGTCGAGATTCTCGAAGCCGCGCAGATGCTGCAACAAGCCGAGCAGAACCTGGCGGAGCAGGAAGTCAAACTCAAGAAGCAGGAAGAGAAGGTCAACAAGTTCAAGCGCGAAGACACCGGCTTGCGCTTTACCATCACTTGCCTGGTGGCGTTTGCGATGTTCCAGGCGGGATTGCTGATCTGGATTGCGACGCGGCATTGAMTETQTSPDTVAEPAAAPAVEQPWADVQAEQHKMLRLAPLKTDRATGVRPLRFVEFSYAERHSKERSLLRMSIKLPGQRVRKEQNHLDVWADHVEKRLSFSPDNLQVEPLNRGLGRFLAAQGITWAKKRWSSYRVDGSDLNNKDALNEDTRLRRDHFLKAHGFEVVYADAQHLKGSVKAAQVGDLVGDWNTEKLQFVEILEAAQMLQQAEQNLAEQEVKLKKQEEKVNKFKREDTGLRFTITCLVAFAMFQAGLLIWIATRHNANANANANA
D1-35_01916966estDCOG1073Esterase EstDATGATGTTAAAACTGTTTGCCTTGAGTCTCGCCCTCTTGACTGGCCTGGTTTGCGGCCAGGCCCAGGCCACCGTCCTGCAACGTCCCATCAGCCTCGACACCGGCAACGGTGAACTTTTCGGCTCGCTGCTGTTGCCCAAGTCCGACACACCGGTGCCCGTTGTCCTGATCATTTCCGGGTCAGGTCCTACGGATCGTGACGGAAACAACCCCGAGGGCGGGCGCAACGACAGCCTCAAGCGCCTGGCCTGGGTACTCGCCAGGCATAACATCGCCAGCGTGCGCTACGACAAGCGCGGTGTGGCCGCCAGCCTCGCCGCCACGCCGGACGAGCGCAACCTCAGCGTCGAGGCCTACGTCGCCGATGCCGTGGCCTGGAGCCACAAGCTCGCCGCCGATCCGCGACTGGGCCCGTTGATCCTGCTGGGCCACAGCGAAGGTGCGCTGATCGCCAGCCTCGCCGCGCCCCAGGCCAACGCTGCGGCAGTGATTTCGGTGTCCGGCAGTGCACGGCCGATCGACCAGGTGCTACGGCAACAACTGAGCAGCCGCTTGCCACCGGCGCTGATGTTGCGCAGCAACGAGTTACTCGACAGCCTCAAGGCCGGGCGCCCCGACGCGGACGTTCCTGCGCAGCTGCAGGTGATTTTCCGTCCCAGTGTGCAGCCTTACCTGATCTCCTTGTTCCGCCAGGACCCGGCCCAAGCCTTCGCGGCATTGAAGATGCCGGCGCTGATCATCCAGGGCAGCCATGACATCCAGGTCAGCGTCGAGGATGCCAGGCAGCTGAAAGCCGCCAAGCCTGACGCACAACTGGCCCTGATCGAGGGCATGAACCATGTGATGCGCATTGTGCCCAACGACGTGAAGCGGCAACTGGCGTCCTATAAAGACCCCAATCTGCCCCTGGCGGCTGAACTGGGTGTGCAGATCCTGCGCTTTATCGGCTCGATCGGTTCCCGTTGAMMLKLFALSLALLTGLVCGQAQATVLQRPISLDTGNGELFGSLLLPKSDTPVPVVLIISGSGPTDRDGNNPEGGRNDSLKRLAWVLARHNIASVRYDKRGVAASLAATPDERNLSVEAYVADAVAWSHKLAADPRLGPLILLGHSEGALIASLAAPQANAAAVISVSGSARPIDQVLRQQLSSRLPPALMLRSNELLDSLKAGRPDADVPAQLQVIFRPSVQPYLISLFRQDPAQAFAALKMPALIIQGSHDIQVSVEDARQLKAAKPDAQLALIEGMNHVMRIVPNDVKRQLASYKDPNLPLAAELGVQILRFIGSIGSRNANANANANA
D1-35_019171092aroCChorismate synthaseATGTCCGGCAATACCTACGGCAAGCTGTTCACCGTCACCACCGCGGGCGAAAGCCATGGCCCGGCGTTGGTCGCCATTGTCGACGGCTGCCCGCCGGGCCTGGAGATTTCCCTGGAGGACCTGCAGCGTGACCTTGATCGCCGCAAGCCCGGCACCAGCCGCCACACCACCCAGCGCCAGGAAGCCGATGAAGTCGAAATCCTCTCCGGTGTGTTCGAAGGTCGCACCACCGGTTGCGCCATCGGCCTGCTGATTCGCAACACCGACCAGAAGTCCAAGGACTACTCGGCCATCAAGGACCTGTTCCGCCCGGCCCACGCCGACTACACCTACCATCACAAATACGGCGAGCGCGACTACCGTGGCGGCGGTCGCAGTTCGGCCCGGGAAACCGCCATGCGCGTAGCGGCCGGGGCAATTGCCAAGAAGTACCTGGCCAGCCAGGGCATCGTCATCCGTGGCTACATGAGCCAGCTGGGCCCGATCGAAATCCCGTTCAAGACCTGGGATTCGGTGGAGCAGAACGCCTTTTTCAGCCCCGACCCGGACAAGGTACCCGAGCTTGAAGCCTACATGGACCAGTTGCGCCGGGATCAGGATTCGGTCGGCGCGAAAATCACCGTGGTCGCCGAAGGCGTGATGCCTGGCCTGGGCGAGCCGATCTTCGACCGTCTCGACGCCGAACTGGCGCACGCGCTGATGAGCATCAACGCAGTCAAGGGCGTGGAGATCGGCGCCGGTTTCGCCTGTGTCGCCCAGCGTGGCACCGAACACCGCGACGAGTTGACTCCCGAGGGATTTCTGAGCAACAACGCCGGCGGCATCCTTGGCGGCATCTCTTCGGGCCAGCCGATTGTTGCCCACCTGGCATTGAAGCCGACGTCCAGCATCACCACGCCGGGACGCTCGATCGACATCCACGGCAACCCGGTGGATGTCATCACCAAGGGCCGCCACGACCCTTGCGTGGGCATTCGCGCAACGCCGATTGCCGAGGCGATGATGGCGATCGTGCTGATGGACCACCTGTTGCGTCATCGCGGACAGAACGCCGACGTTCGGGTCGGCACGCCGGTGTTGGGTCAGCTTTGAMSGNTYGKLFTVTTAGESHGPALVAIVDGCPPGLEISLEDLQRDLDRRKPGTSRHTTQRQEADEVEILSGVFEGRTTGCAIGLLIRNTDQKSKDYSAIKDLFRPAHADYTYHHKYGERDYRGGGRSSARETAMRVAAGAIAKKYLASQGIVIRGYMSQLGPIEIPFKTWDSVEQNAFFSPDPDKVPELEAYMDQLRRDQDSVGAKITVVAEGVMPGLGEPIFDRLDAELAHALMSINAVKGVEIGAGFACVAQRGTEHRDELTPEGFLSNNAGGILGGISSGQPIVAHLALKPTSSITTPGRSIDIHGNPVDVITKGRHDPCVGIRATPIAEAMMAIVLMDHLLRHRGQNADVRVGTPVLGQLPGPT0012875_3365DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_SHIKIMATE_DEGRADATION,PGPT0012875-aroB-K01736NANA
D1-35_019181146hcaTputative 3-phenylpropionic acid transporterATGGCGGCAGTGCCGTACTGGCGGCTTTCCAGCTTCTATCTGTTTTACTTTGCGCTGCTCGGTTCGACCGCGCCGTTCCTGGCGCTGTATTTCGATCACCTCGGGTTCAACGCCGCGCGCATCGGCGAGCTGGTGGCGATTCCCATGCTGATGCGTTGCGTCGCGCCGAACCTCTGGGGTTGGCTGGGTGACTACACCGGCCGGCGCCTGGCAATCGTGCGGTTTGGCGCGATCTGTACGCTGCTCAGTTTCTCGCTGATCTTCATCGACAAAAGCTACGCCTGGCTGGCGATGGTCATGGCGCTGCATGCGTTCTTCTGGCACGCGGTACTGCCGCAATTCGAAGTCATCACCCTGGCCCACTTGAGCGGGCAGGCGGCGCGCTACAGCCAGATCCGACTGTGGGGCTCCATCGGCTTCATCATCACCGTGGTCGCGCTCGGTCGGTTGTTCGAATGGTTGAGCCTGGACATCTATCCCGTGGCGCTGGCGTTGATCATGGGTGGCATCGTGCTCAGCAGTTTCTGGGTGCCCAACGCCCAGCCCGTTCAGGGGCCGCGGGTGGCCGGGGACGGTTTCCTGCGGCAGTTGCGCAATCCGGGCGTGCTGGCGTTTTATGCCTGCGTCGGCCTGATGCAACTGAGCCATGGGCCGTATTACACCTTCCTGACGTTGCACCTGGAGCGCCTGGGCTACAGCCGCGGATTGATCGGCATGCTCTGGGCCGTCGGCGTGGTTGCGGAAGTGCTGGTTTTCCTGCTGATGAGCCGGATCCTGGCGCGGTTTTCCATGCGCCGGGTGTTGATGGCCAGCTTCCTGCTGGCGGCGCTGCGCTGGTTGCTACTGGGGTCGTTGGCGGAGTTTCTCTGGGTGCTGTTGCTTGCCCAGGTCCTGCACGCAGCGACCTTTGGCAGCTTTCACGCCGCTGCCATCCATTTCGTGCAACGTAGCTTCGGCTCACGCCAGCAAGGTCAGGGGCAGGCGCTGTACGCCGCGCTGGCCGGAACCGGCGGGGCGCTGGGCGCGTTGTATTCCGGCTACAGCTGGAATGCCCTGGGCGCCGGTTGGACTTTCAACATCGCCAGTCTCGCAGCCTTCGCTGCAGCCGTTATCATTGCCACACGCATGCAAGAGGACAGGCCATGAMAAVPYWRLSSFYLFYFALLGSTAPFLALYFDHLGFNAARIGELVAIPMLMRCVAPNLWGWLGDYTGRRLAIVRFGAICTLLSFSLIFIDKSYAWLAMVMALHAFFWHAVLPQFEVITLAHLSGQAARYSQIRLWGSIGFIITVVALGRLFEWLSLDIYPVALALIMGGIVLSSFWVPNAQPVQGPRVAGDGFLRQLRNPGVLAFYACVGLMQLSHGPYYTFLTLHLERLGYSRGLIGMLWAVGVVAEVLVFLLMSRILARFSMRRVLMASFLLAALRWLLLGSLAEFLWVLLLAQVLHAATFGSFHAAAIHFVQRSFGSRQQGQGQALYAALAGTGGALGALYSGYSWNALGAGWTFNIASLAAFAAAVIIATRMQEDRPPGPT0028051_1364DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID,PGPT0028051-hcaT-K05820NANA
D1-35_01919621mtnBCOG0235Methylthioribulose-1-phosphate dehydrataseATGAGCCTTACCCGTGAACAACTCACCCGGGAAATCATCGACGCCGGGCGTTTTCTGTATGGTCGCGGCTGGTCCCCGGCCACCAGCAGCAATTATTCGACCCGGTTGTCTTCCGACCAGGCCCTGCTTACCGTTTCCGGCAAACACAAGGGGCAACTGGGCGTCGACGATGTGCTCGCCACCGACCTGGATGGCAACAGCCTGGAGCCGGGCAAGAAACCGTCTGCCGAAACCCTGTTGCACACGCAGCTGTATCGCTGGCGGCCGCAGATCGGCGCGGTGCTGCACACCCATTCGGTGAATGCCACGGTGCTCTCGCGCTTGACCGGCGCAGCCTTCATCGACTTCGAGGACTACGAGCTGCAAAAGGCCTTCAGCGGAGTCACGACCCATGAGTCCCAGGTTCGCGTGCCGATTTTCGACAACGACCAGGACATCGTGCGTCTCGCCGCCAAGGTTCAGCCCTGGCTCGACGCGCACCCCGATTGCGTCGGTTATCTGATCCGTGGGCACGGCCTGTACACCTGGGGGCCGGGCATGAACGATGCGCTGCGGCAAATCGAGGCGTTCGAGTTCCTGTTCGAATGCGAGCTCAAGACTCGCACACTCTTGAACCGTTAAMSLTREQLTREIIDAGRFLYGRGWSPATSSNYSTRLSSDQALLTVSGKHKGQLGVDDVLATDLDGNSLEPGKKPSAETLLHTQLYRWRPQIGAVLHTHSVNATVLSRLTGAAFIDFEDYELQKAFSGVTTHESQVRVPIFDNDQDIVRLAAKVQPWLDAHPDCVGYLIRGHGLYTWGPGMNDALRQIEAFEFLFECELKTRTLLNRNANANANANA
D1-35_01920546mtnDCOG1791Acireductone dioxygenaseATGAGCAGCCTGTCCGTCTATCACGTTTCAAGTCCCGAGATTCCGAACAAGGTCCTGACCCATTTCGAAGACATCGCCGCGACCCTCGCCGAAAAAGGCGTGCGCTTCGATCGTTGGGAAGCCGCGACGAAGATCCAGCCCGGCGCCAGCCAGGAGGAAGTGATTGGCGCCTACCGGAGCCAGATCGACAAGCTCATGACCGAGCGCGGCTACGTCACGGTGGATGTCATCAGCCTCAACAGCGACCACCCGCAAAAAGCCGAACTGCGCGCCAAGTTTCTGGATGAACACCGTCACGGCGAGGACGAAGTGCGCTTTTTTGTCGCCGGTCGTGGCCTGTTCACCTTGCACATCGACGACTACGTCTACGCGGTACTGTGCGAAAAGAACGATCTGATCTCGGTGCCCGCCGGTACGCCGCATTGGTTCGACATGGGCGAACACCCCCATTTCGTCGCCATTCGGCTGTTCAATAACCCGGAAGGCTGGGTCGCCAAGTTCACCGGTGATGAAATCGCCAGCCGTTTCCCGCGCCTGGAGGACTGAMSSLSVYHVSSPEIPNKVLTHFEDIAATLAEKGVRFDRWEAATKIQPGASQEEVIGAYRSQIDKLMTERGYVTVDVISLNSDHPQKAELRAKFLDEHRHGEDEVRFFVAGRGLFTLHIDDYVYAVLCEKNDLISVPAGTPHWFDMGEHPHFVAIRLFNNPEGWVAKFTGDEIASRFPRLEDNANANANANA
D1-35_01921684mtnCEnolase-phosphatase E1GTGACGATCAAGGCCATCCTCACCGACATTGAAGGCACCACCAGCGCGGTCAGTTTTGTATTCGACGTGCTGTTTCCCTATGCCGCCCGACACCTGCCGGATTTTGTCCGGCACAACGCCGGGCGTGCCGACGTCGCGGAGCAACTGGACGCCGTGCGCCGCGACAGTGCCGAGCCGGACGCAGACGTCGAACGGGTCATCGCGATCCTGCTGGGCTGGATTGCCGAAGACCGCAAGGCCACGCCGCTCAAGGCCTTGCAGGGTATGGTCTGGGAGCAGGGATACACGGCCGGCCAGTTGAAAGGGCACGTTTATCCTGACGCGGCGCAGGCGCTCGAGGCCTGGCATCAGCAAGGTTACCGGTTGTTTGTCTATTCCTCGGGGTCGATCCAGGCACAGAAGCTGATTTTTGGCTGTTCCGAGGCTGGCGACCTGTCGCCGTTGTTCAGCGGTTATTTCGACACCACGTCGGGAGCCAAGCGGGACGCGCAGTCGTATCGGCGAATCAGCGAGGCGATGGGGATCGCGCCGCAGGAAATCCTGTTTCTGTCGGATATCGTCGAGGAACTGGACGCGGCCAGGAATGCCGGAATGGCAACCTGTGGATTGGCCCGCGAGGGCGGTGATCTGGCCGGCCACACGACGGTTGAAAGCTTCGCGCAGATCGAACCTTCGCGCTTCTGAMTIKAILTDIEGTTSAVSFVFDVLFPYAARHLPDFVRHNAGRADVAEQLDAVRRDSAEPDADVERVIAILLGWIAEDRKATPLKALQGMVWEQGYTAGQLKGHVYPDAAQALEAWHQQGYRLFVYSSGSIQAQKLIFGCSEAGDLSPLFSGYFDTTSGAKRDAQSYRRISEAMGIAPQEILFLSDIVEELDAARNAGMATCGLAREGGDLAGHTTVESFAQIEPSRFNANANANANA
D1-35_01922279hypothetical proteinATGAACATGATTCAAGAGAAGTTTGCATCGCTGTTTTCCAACTACGAAGTCACCACGCAGCCTCGCCCGGACGGCGGCATTCTGCTGACCTTGCGCAACAGCGATGGCAAACTGTTCAAGCGTACGATTTCCTACGCTCAGTTGCATGCCGGGGACCAACTTTCCTGGGCGATCAGTGCCATTCGCCGCGACCTGGCTGAACAGGCCAGCGAACTGCCACCGGTCGCGATGCTGCAGAGCCAGCACCGTTTCGCGCTGCCGACCTATCACAGCGCCTGAMNMIQEKFASLFSNYEVTTQPRPDGGILLTLRNSDGKLFKRTISYAQLHAGDQLSWAISAIRRDLAEQASELPPVAMLQSQHRFALPTYHSANANANANANA
D1-35_019231824caiCCrotonobetaine/carnitine--CoA ligaseATGAGTCGTACACCCAGCGACGCTATTACCTGGGGCATGATGCTGCGCAAACTGCCCGTCATCGCCAAAGTTGTTCCGCGAATCATCAAGGGCCTGAAACTCGCCAACGTCCAGGACCCCACCCAGCCTTGCGGCCTTGGCTGGTGTTTCGAACAGGCCACGCAACGCAATCCCCACGGCCCGGCGCTGCTCTGCGGCGACACGGTACTGTCTTATGCACAGGTCAACGAACAGGCCAATCGCATTGCCCATTACTTGCTGGCGCAAGGTCTTGGCAAGGGCGACTGCGTGGCGATTGTTCTGGAAAACCGCCCGCAGCTGCTGATTACGGTGTTGGCGGTGGCGAAGGTCGGGGCGGTGAGCGCGATGATCAACACATCGCAAACCGGAGATGCCCTGGTGCACAGCCTGGCGTTGGTCGCGCCGGTGGCGGTGGTGGTCGGGGATGAACGGGTCGCTGTCTTCAACGACGTGCGCGGCCGAACGGCGCTGGCGGATGCGCGGACCTGGTGGGTTGCCGACCAGGACAGTGGCGCGGTTCCGTGCGGATTCGTCGACCTGATGGTCGGCAGCGAGGATTACCCAGGCGATAACCCGCTTGGCAGACAGGTGTTTTTCAACGATCCCTGTTTTTATCTCTACACCTCGGGCACCACCGGGTTACCCAAGGCCGGCGTATTCCGCCATGGACGCTGGATGCGCACCTCGACCAGTTTTGGCCTGATCGCCCTGGACATGCAGCCCGATGACGTCGTTTATTGCACGCTGCCGCTGTATCACGCCACCGGCCTGTGTGTGTGCTGGGGCGCGGCAGTTTGCGGTGCCTCGGGGTTCGCCATCCGCCGCAAGTTCAGCGCCAGCCAATTCTGGAGCGACGTGCGTCGCTACCGGGCGACCACGTTGGGTTATGTCGGCGAACTGTGTCGCTACCTGATCGAGCAGCCCGCCAGCGCCGACGACCGGCGGCATGAGGTCCGGAAGATGATCGGCAACGGCTTGCGCCCGGGCGCCTGGCTGGCCTTCAAGACCCGCTTCGGGATTGGCCATATCTGTGAATTGTATGCGGCCAGCGACGGCAATATCGGCTTCACCAACATCCTGAACTTCGATAACACGGTCGGGTTTTCCCTGATGGGTTGGGAACTGGTGCAGTACGACCATGACAGCGGCGCGCCGTTGCGCAACCTGCAAGGGCGCATGCAGAAAGTCCCCAAGGGCGAGCCGGGCCTGCTGCTGGCGCGCATCGACGACAAGGCGCCGCTGGATGGCTACACCGATCCGGCCAAGACCGAAAAAACCGTCTGCCGAGACGTCTTCGTCCCAGGCGATCGTTATTTCAACACCGGCGACCTGCTGCGCAATATCGGCTTCGGCCACGGGCAGTTCGTTGATCGCCTCGGCGACACCTATCGCTGGAAAGGCGAAAACGTCTCCACCACCGAAGTCGAAAACGCGCTCCTGCAACATCCACAGATCGCCGAGGCGGTGGCCTACGGCGTGGAGATCACCGGAACCAACGGCCGCGCCGGGATGGCCGCGATCACCCCGGCCGAGTCCCTGGCGACCCTGGATTTCAGCGAGCTGCTGCAATTTCTGCAAGGCAAGCTGCCGGCCTACGCGGTGCCGCTGTTCCTGCGGATCAAGGTGAAGATGGAAACGACCGGCACGTTCAAGTACCAGAAAACCCGCCTCAAGGCCGAAGCCTTTGACCCCTGCCTCACGGGCGAGGAACCGATCTACGCCTGGCTCCCCGACACCTCGACCTACGTGCGGGTGGACCGCCAACTGGCGACGCGGATCCAGGGTGGGCAGTACCGCTATTGAMSRTPSDAITWGMMLRKLPVIAKVVPRIIKGLKLANVQDPTQPCGLGWCFEQATQRNPHGPALLCGDTVLSYAQVNEQANRIAHYLLAQGLGKGDCVAIVLENRPQLLITVLAVAKVGAVSAMINTSQTGDALVHSLALVAPVAVVVGDERVAVFNDVRGRTALADARTWWVADQDSGAVPCGFVDLMVGSEDYPGDNPLGRQVFFNDPCFYLYTSGTTGLPKAGVFRHGRWMRTSTSFGLIALDMQPDDVVYCTLPLYHATGLCVCWGAAVCGASGFAIRRKFSASQFWSDVRRYRATTLGYVGELCRYLIEQPASADDRRHEVRKMIGNGLRPGAWLAFKTRFGIGHICELYAASDGNIGFTNILNFDNTVGFSLMGWELVQYDHDSGAPLRNLQGRMQKVPKGEPGLLLARIDDKAPLDGYTDPAKTEKTVCRDVFVPGDRYFNTGDLLRNIGFGHGQFVDRLGDTYRWKGENVSTTEVENALLQHPQIAEAVAYGVEITGTNGRAGMAAITPAESLATLDFSELLQFLQGKLPAYAVPLFLRIKVKMETTGTFKYQKTRLKAEAFDPCLTGEEPIYAWLPDTSTYVRVDRQLATRIQGGQYRYPGPT0019835_108DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TERPENE_UTILIZATIONvCITRONELLOL-CITRONELLAL-CITRONELLATE_DEGRADATION,PGPT0019835-atuD-K13776NANA
D1-35_01924519hypothetical proteinATGTCCGATACAAGCCGCCAGATGACCCCGGAAGAAGCTGCGGAGTTTGCCGAGCAGGTATTCAACGTCGCTCGTCAGGGCGATGCCGCGATGATGGCCGCGCTGTTGAGCAAGGGCCTGCCGCCGAACCTGCGCAATCACAAGGGCGACACCTTGCTGATGCTGGCCGCGTACCACGGGCACGTGGAGACGGTAAAAGTGCTGCTGGAGAATAAGGCCGATCCGGAAATCCGCAACGACAACGGCCAGAGCCCGATTGCCGGTGCGGCGTTCAAGGGCGATCTGGCGGTGGTTTCGGCCCTCGTCGATGGCGGCGCGCAAGTCGAAGGCTCCTCGTTCGATGGCCGCACGGCGCTGATGATGGCGGCGATGTTCAACCGAGTGGAAATAGTCGATTACCTGATCAGCAAAGGCGCCGACCCGAAGGCCAAGGATGCCAACGGCGTCTCGGCGCTGGACGCGGCCAGGACCATGGGGGCGGTGGACACCACGGCGCAGCTGGAAAAGTTGTTGGGCTGAMSDTSRQMTPEEAAEFAEQVFNVARQGDAAMMAALLSKGLPPNLRNHKGDTLLMLAAYHGHVETVKVLLENKADPEIRNDNGQSPIAGAAFKGDLAVVSALVDGGAQVEGSSFDGRTALMMAAMFNRVEIVDYLISKGADPKAKDANGVSALDAARTMGAVDTTAQLEKLLGNANANANANA
D1-35_01925531hypothetical proteinATGAAAGCCGCACTCGTCGAACTCATCAGCAAAATCAGCTCCGGCTGCCTGGGCGAGGCGGACATCGAGAAAATCGCCGACGAAGCGGCCCAGGCCTACGCCGACCCGGTGACGTTCCTGGCGGCGAACCCGGACATCAACTATGACGACAGCTTCCCGATCCCGCTGGGGGAGTGGGTGGTGGTAGGCAGTCTGCCGGACACCGTGCTGTTCCAGGCCGACTCCTACGTCGACCTGTTCGAGCAGATCGTCGCCTCGTTCGGCCCTGGCGTCGCGTTCAACCTCAAGCCCAAGCAACTGGCGAAGACCGAGGCGCTGACCGCGCTCAATCGTATCCAGATCCAGATGAGCAGCCTGAACAAGGAGAGCGGCGGCTACGTGCTGATGAACTTCAGCCAGTTGCTCGACGATGAATTGCAGATGGTGCTGGTGTACGGCAACGACGTGCCGCGTGTGCTGGAGTTGTGTGGCGAAGTCGGCATCGCCGCGGCCCCCGCCCTGGAAGCGCTCAAGATCGCGGTTCACGTCTGAMKAALVELISKISSGCLGEADIEKIADEAAQAYADPVTFLAANPDINYDDSFPIPLGEWVVVGSLPDTVLFQADSYVDLFEQIVASFGPGVAFNLKPKQLAKTEALTALNRIQIQMSSLNKESGGYVLMNFSQLLDDELQMVLVYGNDVPRVLELCGEVGIAAAPALEALKIAVHVNANANANANA
D1-35_01926192hypothetical proteinATGGGTTCCACTTTCAACGGCCTGATTGGCCTGATCATCCTGGCGCTCGATATCTGGGCGATCATCAATGTGCTCAAGAGTGGCGCGGGCACCGGGGCGAAAGTCCTGTGGGTGCTGCTGATTCTCCTGCTGCCGGTGTTGGGCCTGATCATCTGGGCGATTGCCGGGCCGCGGGGCAACGTGCGGGTCTGAMGSTFNGLIGLIILALDIWAIINVLKSGAGTGAKVLWVLLILLLPVLGLIIWAIAGPRGNVRVNANANANANA
D1-35_019271200sotB_2sugar efflux transporterATGAGTGCTCATTCACCCGCCTCGCCCGCTGCCCTGACCCGAGGCATGGTCCTGCTGTTTGCCTTCTGCTGCGGCGCCATCGTTGCCAATATCTACTACGCCCAACCCATCATCGAACTGATCGCGCCCGACGTCGGCCTGTCCAGCACCATGGCCAGCCTGATCGTCTCGCTGACCCAGATCGGCTACGCCCTGGGCCTGTTTTTCCTGGTGCCGCTGGGGGATCTGCTGGAAAACCGGCGCTTGATGATTTTCACCACCGTGGTGGCAATTGCCAGCCTGCTGGGCGCGGCGTTTACCGAGCAGCCGAACGTGTTCCTGCTGGTGTCATTGCTGGTGGGGTTCAGTTCCGTCTCGGTGCAAGTGCTGATTCCGCTGGCGGCGCACCTGGCACCGGAAGAATCCCGGGGACGGGTCGTGGGCGGGATCATGGGCGGCCTGCTGTTGGGGATCCTGCTAGCGCGGCCGGTGTCCAGCCTTGTCGCCGATCACCTTGGCTGGCGGGCGATGTTCATGATCGCCGCCGCGTTGATGGCGGCAATCAGCATCGTCCTGGCATTCACCGTGCCCAAGCGCCAGCCCGAGCACCGCGCCTCCTACGCGCAACTGCTGGGCTCGCTCGGCACCCTGTTACGCCAGCAGCCGCAGTTGCGCCAGCGGGCTTTGTACCAGGCGTGCATGTTTGCCACGTTCAGCCTGTTCTGGACCGCCGTCCCCCTGGAGCTGTCGCGCAACCATGGTTTGTCCCAGACTGAAATTGCGCTGTTTGCGCTGGTCGGCGCCATCGGTGCCGTCGCCGCGCCGATTGCCGGCCGCCTGGCGGACGCCGGCCACACCCGAATTGCTTCGCTGCTGGCCATGCTGTTCGCCAGCCTGAGTTTCCTGCCGGCGTTCATCCATCCCGCTTATAGCGTGATCGGCCTTGCGGTGACCGGCGTGGTTCTGGATTTCTGCGTGCAGATGAACATGGTCCTGGGCCAGCGCACCATCTACGCCCTTGACGCAAAAAGCCGCAGCCGCCTGAACGCGCTGTACATGACCAGCATCTTTGTCGGCGGCGCTTTCGGTTCGTCCATCGCCAGTGCCGTCTACGAACATGGCGGCTGGCTGTGGGTGGTGATCATCGGTAGCGCCTTCCCGTTGCTGGCCCTGTTGCGTTTCCTGAGTGCTTCGCAGAAGGCTTCGCTGGCGACGGCCTGAMSAHSPASPAALTRGMVLLFAFCCGAIVANIYYAQPIIELIAPDVGLSSTMASLIVSLTQIGYALGLFFLVPLGDLLENRRLMIFTTVVAIASLLGAAFTEQPNVFLLVSLLVGFSSVSVQVLIPLAAHLAPEESRGRVVGGIMGGLLLGILLARPVSSLVADHLGWRAMFMIAAALMAAISIVLAFTVPKRQPEHRASYAQLLGSLGTLLRQQPQLRQRALYQACMFATFSLFWTAVPLELSRNHGLSQTEIALFALVGAIGAVAAPIAGRLADAGHTRIASLLAMLFASLSFLPAFIHPAYSVIGLAVTGVVLDFCVQMNMVLGQRTIYALDAKSRSRLNALYMTSIFVGGAFGSSIASAVYEHGGWLWVVIIGSAFPLLALLRFLSASQKASLATANANANANANA
D1-35_01928999sbp_1COG1613Sulfate-binding proteinGTGAAGAATTTCTTTGGCGCCTCCCTCCTCGCCGCCGGCCTGGCGTTCGGCAGCCTGGCCCACGCCGCCCCGACTCTGCTCAACGTTTCCTACGACGTGATGCGGGATTTCTATAAGGACTACAACGCCGCGTTCCAGAAACACTGGCAGGCCGAGCACAACGAAAGCATCACCGTGCAGATGTCCTTTGGCGGTTCGAGCAAGCAGGCGCGCTCGGTAATCGATGGGCTGCCAGCGGATGTCATCACCATGAACATGGCGACTGACATCAATGCCTTGGCCGACAACGGCAAGCTGGTTCCGGATAACTGGGTCACCCGCCTGCCGAACAACAGCGCGCCGTTCACCTCGGCCACCGTGTTTATCGTGCGCAAGGGCAATCCGAAAGCGCTGAAGGACTGGCCGGACCTGCTCAAGGACGGCGTCCAAGTGATCGTGCCCAACCCGAAAACCTCGGGCAACGGCCGCTATACCTACCTTTCGGCCTGGGGCTATGTGCTGAAGAATGGCGGCGATGAGAACAAGGCCAAGGATTTCGTCGGCAAGCTGTTCAAGCAGGCCCCTGTGCTGGACACCGGCGGTCGTGCCGCGACGACTACGTTCATGACCAACCAGATCGGCGATGTGCTGGTGACCTTTGAGAACGAAGCGGAAATGATCGCCCGTGAATTCGGTCGCGACCAGTTCGAAGTGGTCTACCCAAGCGTCTCCGCCGAAGCCGAGCCACCGGTCAGCGTTGTGGATAAAGTCGTCGAGAAGAAAGGTTCCCGCGCCGCCGCCGAGGAGTACCTCAAATACCTGTGGTCGCCCGAAGGCCAGGAAATTGCCGCCGCCAACTACCTGCGTCCTCGCGACCCGGCGGTGCTGGCCAAATACACCGACCGTTTCCCGAAAGTGGATTTCCTCTCGGTGGAAAAAACCTTCGGCGACTGGCGCACCGTGCAGAAGACCCATTTCAACGATGGTGGGATTTTTGACCAGATCTATAGCGGGCAATAAMKNFFGASLLAAGLAFGSLAHAAPTLLNVSYDVMRDFYKDYNAAFQKHWQAEHNESITVQMSFGGSSKQARSVIDGLPADVITMNMATDINALADNGKLVPDNWVTRLPNNSAPFTSATVFIVRKGNPKALKDWPDLLKDGVQVIVPNPKTSGNGRYTYLSAWGYVLKNGGDENKAKDFVGKLFKQAPVLDTGGRAATTTFMTNQIGDVLVTFENEAEMIAREFGRDQFEVVYPSVSAEAEPPVSVVDKVVEKKGSRAAAEEYLKYLWSPEGQEIAAANYLRPRDPAVLAKYTDRFPKVDFLSVEKTFGDWRTVQKTHFNDGGIFDQIYSGQPGPT0002995_720DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002995-cysP|ylnA-K02048NANA
D1-35_01929825hypothetical proteinATGGACAGCAATAACAACTGGCGTGAACGCCTCTACGTGATCATTTTCCAGACCGACACGGTGGCCGGCCGCCGCTTCGACAGCACGCTGCTGTTGATCATCCTTGCGAGCCTGGTGATCGTGATGCTCGACAGCATCGACAGCGTGCACAAGAACTACGCGGCCCTGCTGGCCTACATCGAGTGGGGTTTCACGTTGATTTTCATCGTTGAATACGGCCTGCGCCTGTACTGCTCGCCCAAGCCGCTGCGCTATGCGTTCAGCTTTTATGGCCTGGTGGACCTGCTGGCGATCGTGCCGGGCATCCTCGCGTTGTACTACAGCGATGCCCAGTACCTGCTGATCGTACGGATCATCCGCATGCTGCGGATTTTCCGCGTTCTCAAGCTCAGCCCCTACCTCAAGCAGGCCAACTATCTATTGGCCGCACTGCGCGGCAGCAAGCAGAAAATCATCGTGTTCCTGGTCAGCGTGTCGACCCTGGTGACGGTGTTTGGCACCCTGATGTATGTCATCGAAGGCCCCGAGCATGGTTTCACCAGCATTCCCAAGGGCATCTATTGGGCTATCGTGACATTGACCACCGTAGGCTTCGGCGACATCGTGCCGAAGACGCCGCTGGGCCAAGTGGTTTCGTCCCTGGTGATGATTACCGGCTACTCGATCATCGCCGTACCGACGGGTATCTTCACTGCGGAACTGGCCACCGCCATGCGCGGTGACCAGCTCAAGCACAATTGCCCGGTGTGCAGCAAAAACAACCACGACCATGGCGCTGCTTTCTGTTCTCGTTGCGGTAACGCACTGTTTAAGAAATTGGAATAAMDSNNNWRERLYVIIFQTDTVAGRRFDSTLLLIILASLVIVMLDSIDSVHKNYAALLAYIEWGFTLIFIVEYGLRLYCSPKPLRYAFSFYGLVDLLAIVPGILALYYSDAQYLLIVRIIRMLRIFRVLKLSPYLKQANYLLAALRGSKQKIIVFLVSVSTLVTVFGTLMYVIEGPEHGFTSIPKGIYWAIVTLTTVGFGDIVPKTPLGQVVSSLVMITGYSIIAVPTGIFTAELATAMRGDQLKHNCPVCSKNNHDHGAAFCSRCGNALFKKLEPGPT0002715_3538DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0002715-kch|trkA|mthK|pch-K10716NANA
D1-35_01930900COG4413Urea transporterATGCCCAACACCCACTGCCCAGACTGGGCCACCGCCCTGCTCAACGGCTTCAGCCAGATTTTCCTCCAGCGCCATCCCCTGTGCGGCCTGTTCTGCCTCTTGGCGATTCTGCTCACCGCGCCAGCGTTGTTCGGCGGCGCGCTACTGGGCGGCGTGGCCGGATTGCTGACGGCCCAACGACGTGGTTATGCCAAGGAGGATCGGCAGGCCGGGCTGTTCAGCTATAACGGCATCCTGCTGGGTTTGCTGCTGAGCCTGGCATTGCCTTGGTCAGCCCTGTTGCCGCCATTGATCATCGCCGCTGGCGGCCTCAGCGCAATGCTCACCCAACAGTGGCTCAAGCGCACCCGAGGCCCACGCTGCCTGCCCGCCTACACCGCGCCTTTCGTCGGGCTCGGCTGGTTGCTGCTGGGTCTCGCCCCGCCTGCGCCCTCGCCCGCTGCACTGGAGCAGACACTCCCCAACCTGTTGCTTGCCCCGCTTAACGGCCTCGGCCAGGTCATGTTTCTCGACCAGCCCCTGGCTGGTGTGCTGATCACCATCGGCCTGCTGATCGCCAACCGTCGCGCCGTCGGCTGGGCGCTGTTCGGTTCCGTCGCAGGCTTTGCCTTCGCCTGGCTGCACGATTGCCCGCACACCTTGTCCGGCCTGGGCGGCTACAACCCGGCCTTGGTGGCCGTGGCCCTCGGCCAACAGGCACGCGGGCCATGGCAGCCGCTGGCGGGCGTGCTGCTGGCGGTCCTTCTCGCACCGGGTTTCGCGGCGCTGGGCGTGGCGCCATTGACGGCGCCATTCATTCTCGCGTGCTGGCTGGTGCATGCCACCGCGCGGCTTTGGCACCCAGGCTGTCTCGACATCGCGCCTTGCGCTCTGCGGGGCAATCACCCTAGGCTGCGCTGAMPNTHCPDWATALLNGFSQIFLQRHPLCGLFCLLAILLTAPALFGGALLGGVAGLLTAQRRGYAKEDRQAGLFSYNGILLGLLLSLALPWSALLPPLIIAAGGLSAMLTQQWLKRTRGPRCLPAYTAPFVGLGWLLLGLAPPAPSPAALEQTLPNLLLAPLNGLGQVMFLDQPLAGVLITIGLLIANRRAVGWALFGSVAGFAFAWLHDCPHTLSGLGGYNPALVAVALGQQARGPWQPLAGVLLAVLLAPGFAALGVAPLTAPFILACWLVHATARLWHPGCLDIAPCALRGNHPRLRPGPT0000950_317DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-UREA_USAGEN-AQUISITION-UREA_TRANSPORT,PGPT0000950-utp-K08717NANA
D1-35_019311416ttuEPyruvate kinaseATGACGCCTGACAAGAAGGTCAAGATCCTCGCGACACTCGGCCCCGCCACCCGTGGGATCGATGACATCCGCGAACTGGTGCAGGCCGGAGTGAACATCTTTCGCCTGAACTTCAGCCACGGCGACCACGCCGACCACGCCCAGCGCTACCAGTGGATCCGCGAAGTCGAGCAGCAGCTCAATTACCCGCTGGGCATCCTGATGGACCTGCAAGGACCAAAACTGCGGGTCGGCAAGTTCGCCGATGGCAAGGTGCTGTTGCAGCGCGGTCAAGCCTTGCGTCTGGACCTGGACCCGACGCCAGGCGATCAGCGTCGGGTCAACCTGCCCCACCCGGAAATCATCGCCGCGCTGGAGCCGGGCATGGACTTGCTGCTCGATGACGGCAAGCTGCGCCTGCGGGTAACCGCCAGACACACCGACGCCATTGATACCGAGGTGCTCAACGGTGGCGAACTGTCGGACCGCAAGGGCGTGAACGTGCCCCAGGCCGTGCTCGACCTGAGCCCGCTGACCGCCAAGGACCGCCGCGACCTGAGTTTCGGCCTGGAGCTGGGCGTGGACTGGGTGGCGCTGTCGTTCGTGCAGCGTCCCGAGGACATTCGCGAAGCCCGCGCGCTGATCGGCGACAAGGCGTTCCTGATGGCCAAGATCGAGAAGCCCTCGGCCGTCGCGCAACTGCGGGAAATCGCCGAACTGAGCGACGCGATCATGGTTGCCCGAGGTGACCTGGGCGTCGAGGTGCCGGCCGAGAGCGTGCCGCAGATTCAGAAAAACATCATCGGCACCTGCCGCGCCCTCGGCAAACCGGTGGTGGTGGCGACACAGATGCTTGAGTCGATGCGCTTCTCCCCGGCGCCGACCCGCGCCGAAGTCACCGATGTCGCCAACGCCGTGGCCGAAGGTGCCGACGCGGTGATGCTGTCGGCGGAAACCGCCTCGGGCGACTATCCCCTCGAAGCCGTGCAGATGATGAGCAAGATCATCCGCCAGGTGGAAAACGGCCCGGACTACCAGGCACAACTCGACGTCAGCCGACCGAAAGCCGAGGCCACGGTGTCGGACGCCATCAGTTGCGCGATCCGCCGGATCAGCAACGTGCTGCCCGTGGCGGTGCTGGTCAACTACAGCGAGTCGGGCAGCTCCAGCCTGCGGGCGGCGCGGGAACGGCCGACGGTGCCGATCCTCAACCTGACGCCCAACCTGCAGGCGGCCCGTCGCCTGACCGTCGCGTGGGGCGTGCATTCGGTGGTCAACGATCGGCTGCGGCAGGTGGACGAAGTGTGTTCCACCGCGCTGGAAATCGCCCAGGCCCAGGGCATGGCCCAGCGTGGCGACACCCTGCTGATTACCGCCGGCGTGCCGTTCGGGCAGCCGGGGTCGACCAACTCGCTGCGTATCGAGACCCTCATCTAGMTPDKKVKILATLGPATRGIDDIRELVQAGVNIFRLNFSHGDHADHAQRYQWIREVEQQLNYPLGILMDLQGPKLRVGKFADGKVLLQRGQALRLDLDPTPGDQRRVNLPHPEIIAALEPGMDLLLDDGKLRLRVTARHTDAIDTEVLNGGELSDRKGVNVPQAVLDLSPLTAKDRRDLSFGLELGVDWVALSFVQRPEDIREARALIGDKAFLMAKIEKPSAVAQLREIAELSDAIMVARGDLGVEVPAESVPQIQKNIIGTCRALGKPVVVATQMLESMRFSPAPTRAEVTDVANAVAEGADAVMLSAETASGDYPLEAVQMMSKIIRQVENGPDYQAQLDVSRPKAEATVSDAISCAIRRISNVLPVAVLVNYSESGSSSLRAARERPTVPILNLTPNLQAARRLTVAWGVHSVVNDRLRQVDEVCSTALEIAQAQGMAQRGDTLLITAGVPFGQPGSTNSLRIETLIPGPT0002020_7110DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002020-pyk-K00873NANA
D1-35_019321281ttuDPutative hydroxypyruvate reductaseATGTCGGTCGATCCGCAACAATTGCTGCGCGAGCTGTTTGCCACGGCCATCGACGCGGCCCATCCGCAGCACGTCCTCGAACAGTACCTGCCCGCTGACCGCAGCGGTCGGGTGATCGTCATCGGTGCCGGCAAGGCCGCCGCGGCCATGGCGCAAGTGGTCGAGCGCTGCTGGCGCGGCGAAGTCAGCGGCCTGGTGGTGACCCGCTACGGCCATGGCGCGCCCTGCGAGAAAATCGAAGTGGTCGAGGCCGCTCATCCAGTACCGGACGCCGCTGGCCTGGAAGTGGCCGGACGGGTGCTCGAACTCGTCAGCAACCTCAACGAAGACGACCGGGTGATCTTCCTGCTGTCCGGCGGGGGCTCGGCGTTGCTGGCCTTGCCGGCGGCCGGCATCACCCTGGCCGACAAGCAATCGATCAACAAGGCCCTGCTCAAGTCCGGCGCCACCATTGGCGAGATGAATTGCGTGCGCAAGCACCTCTCGGCGATCAAGGGAGGCCGACTGGGCAAGGCCTGCTGGCCGGCGACCGTCTACACCTACGCGATTTCCGATGTGCCCGGCGATCTCGCCACGGTTATCGCCTCCGGCCCCACCGTGGCCGACCCCAGCACTTCGGCCGACGCGCTGGCGATTCTCAAGCGCTACGGCATGGAGATCCCGGCCTCGGTGCGCACCTGGCTGCAAAGTCCGGAATCGGAGACCGTCAAGCCCGGCGACCCGAGCCTGACGCGCAGTCATTTCCAGCTCATCGCCCGCCCTCAGCAATCCCTCGAAGCCGCGGCGGTGAAGGCTCGCCAGGCCGGTTTCAGCCCATTGATCCTCGGTGACCTGGAAGGCGAATCCCGGGACGTGGCGAAGGTCCATGCCGGCATCGCCCGGCAAATCGCCCTCCACGGCCAGCCCTTGGCTGCGCCGTGCGTGATCCTTTCCGGCGGCGAAACCACGGTCACCGTGCGCGGCAATGGCCGTGGCGGGCGCAACGCCGAGTTCCTGCTGAGCCTGACCGACAGCCTCAAGGGCCACCCCGGCATCTATGCACTGGCGGGCGACACCGACGGCATCGACGGCTCCGAAGACAATGCCGGCGCCATCATGACCCCGGACAGCTATCGCCGCGCCACCGAGCTGGGCCTGAACGCCAGTGATGAACTGGATAACAACAACGGCTACGGCTACTTCGCCGCGCTGGACGGGTTGATCGTCACCGAGCCGACCCGCACCAATGTCAACGATTTTCGCGCCATCCTGATCCTCGAGAACCCGAAAAATGACGCCTGAMSVDPQQLLRELFATAIDAAHPQHVLEQYLPADRSGRVIVIGAGKAAAAMAQVVERCWRGEVSGLVVTRYGHGAPCEKIEVVEAAHPVPDAAGLEVAGRVLELVSNLNEDDRVIFLLSGGGSALLALPAAGITLADKQSINKALLKSGATIGEMNCVRKHLSAIKGGRLGKACWPATVYTYAISDVPGDLATVIASGPTVADPSTSADALAILKRYGMEIPASVRTWLQSPESETVKPGDPSLTRSHFQLIARPQQSLEAAAVKARQAGFSPLILGDLEGESRDVAKVHAGIARQIALHGQPLAAPCVILSGGETTVTVRGNGRGGRNAEFLLSLTDSLKGHPGIYALAGDTDGIDGSEDNAGAIMTPDSYRRATELGLNASDELDNNNGYGYFAALDGLIVTEPTRTNVNDFRAILILENPKNDAPGPT0024440_1000DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0024440-gck|gckA-K11529NANA
D1-35_01933891glxRCOG20842-hydroxy-3-oxopropionate reductaseATGGCTAAAATCGGATTCATCGGCACCGGCATCATGGGCCACCCCATGGCACTGAACCTGCAAAAGGCCGGTCACAGCCTGTTCCTGACCCAGCATCACGACGCTGCCCCGGCCGACCTCGTGGCAGGCGGCGCGGTGGCGCTGGCCAACCCGAAGGAAGTCGCCCAGGAGGCCGAATTCATCATCGTCATGGTCCCGGATACCCCACAGGTCGAGGACGTGCTGTTCCGCGCCGACGGCGTAGCGGCCGGCGTGGGCGCGGGCAAGGTGGTGATCGACATGAGTTCGATCTCCCCCACCGCCACCAAGGCGTTCGCGGCGAAGATCAATGAAAAAGGCGCGCAGTACCTCGACGCCCCGGTGTCCGGCGGTGAAGTCGGCGCCAAGGCCGCGACCCTGAGCATCATGGTCGGTGGCGACAGCGCCGCGTTCGAGCGTGCGCTGCCACTGTTCCAGGCGATGGGCAAGAACATCACCCTGGTGGGCGGCAACGGCGATGGCCAGACCGCCAAGGTGGCGAACCAGATCATCGTCGCGCTGAACATCCAGGCCGTGGCCGAGGCCCTGCTGTTCGCCTCGAAGAATGGCGCCGACCCGGCCAAGGTCCGTGAAGCGTTGATGGGCGGTTTCGCCTCGTCGAAGATCCTCGAAGTACACGGTGAGCGCATGATCAAGGGCACCTTCGACCCGGGCTTCCGCATCAGCCTGCACCAGAAGGACCTGAACCTGGCCCTGCAAGGCGCCAGGGAGCTGAACATCAACCTGCCCAACACCGCCAACGCCCAGCAAGTGTTCAGCACCTGCGCGGCCATGGGTGGCAGCAATTGGGACCACTCGGCGCTGATCAAGGGGCTGGAGCATATGGCCAATTTCTCGATTCGCGATAACTGAMAKIGFIGTGIMGHPMALNLQKAGHSLFLTQHHDAAPADLVAGGAVALANPKEVAQEAEFIIVMVPDTPQVEDVLFRADGVAAGVGAGKVVIDMSSISPTATKAFAAKINEKGAQYLDAPVSGGEVGAKAATLSIMVGGDSAAFERALPLFQAMGKNITLVGGNGDGQTAKVANQIIVALNIQAVAEALLFASKNGADPAKVREALMGGFASSKILEVHGERMIKGTFDPGFRISLHQKDLNLALQGARELNINLPNTANAQQVFSTCAAMGGSNWDHSALIKGLEHMANFSIRDNPGPT0018170_447DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTARATE|GLUCARATE_DEGRADATION,PGPT0018170-garR|glxR-K00042NANA
D1-35_01934783hyiCOG3622Hydroxypyruvate isomeraseATGCCGCGTTTCGCCGCCAACCTGTCCATGCTGTTTACCGAGCAGGATTTCCTCGCCCGTTTCGAAGCGGCCGCCAAGGCCGGTTTCAGTGGTGTCGAGTACCTGTTCCCCTACGACTACAGCTCCGCCGAACTCAAGGCCCTGCTCGACGCCTATGGCCTGACCCAAGTGCTGTTCAACCTGCCGGCCGGCGACTGGGCCAAGGGTGAGCGCGGTATCGCCTGCCTGCCGGATCGGGTCGAGGAGTTCCGCGCCGGGGTCGACCTGGCGATTGCCTATGCCAAGGTGTTGGGCAACACCCAGGTCAATTGCCTGGCCGGGATCCGTTCGCAGAAGTGCGACGAAGCGCTGGCGGAAAAAACCTTCGTCGCCAACCTGAAGTACGCCGCCGAAAAGCTCCAGGGCGCCGGCATCAAGCTGGTGATGGAAGCCATCAACACCCGCGACATCCCGGGTTTTTTCCTGAACAACACCGCCCAGGCCCTGTCGATCCGCGAACAGGTGGGCAGCGCCAACCTGTTCCTGCAATACGACATCTATCACATGCAAATCATGGAAGGCGACCTGGCCCGGACGCTGTCGGCGCACCTGGGCGAAATCAACCATGTGCAACTGGCGGACAACCCGGGCCGCAACGAGCCCGGCACCGGCGAGATCAATTATCGGTTCCTGTTCGAACACCTGGATCGCATTGGTTATCAGGGTTGGATCGGCTGTGAATACAAGCCGCTCACCACGACCGAAGCGGGACTGGGCTGGTTGAAAAGCCATAACGCGATCTGAMPRFAANLSMLFTEQDFLARFEAAAKAGFSGVEYLFPYDYSSAELKALLDAYGLTQVLFNLPAGDWAKGERGIACLPDRVEEFRAGVDLAIAYAKVLGNTQVNCLAGIRSQKCDEALAEKTFVANLKYAAEKLQGAGIKLVMEAINTRDIPGFFLNNTAQALSIREQVGSANLFLQYDIYHMQIMEGDLARTLSAHLGEINHVQLADNPGRNEPGTGEINYRFLFEHLDRIGYQGWIGCEYKPLTTTEAGLGWLKSHNAIPGPT0018150_462DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ERYTHRONATE_UTILIZATION,PGPT0018150-otnI|ygbM-K22131NANA
D1-35_019351776gclCOG3960Glyoxylate carboligaseATGAGCAAAATGAGAGCAATCGAAGCCGCCGTCCTGGTGATGCGCCGTGAAGGCGTGGACACCGCCTTCGGCATCCCGGGTGCCGCGATCAACCCGCTGTACTCTGCCCTGCAAAAGGTTGGCGGCATCGATCATGTCCTCGCTCGCCACGTTGAAGGCGCCTCGCACATGGCCGAGGGCTACACCCGGACCAAGGCCGGCAACATCGGCGTGTGCATCGGTACTTCGGGGCCGGCGGGCACTGACATGGTCACTGGCCTCTACAGCGCTTCGGCCGACTCGATTCCGATCCTGTGCATCACCGGACAAGCGCCCCGCGCCCGCATGCACAAGGAAGATTTCCAGGCGGTGGATATCACCAGCATCGTCAAGCCCGTGACCAAATGGGCGACTACCGTGCTGGAGCCGGGACAGGTGCCCTACGCCTTTCAGAAGGCTTTCTTCGAGATGCGCTCCGGCCGTCCGGGCCCGGTGCTGATCGACTTGCCGTTTGACGTGCAGATGGCCGAGATCGAATTCGACATCGACGCCTATCAGCCGCTGCCCCTGGCCAAGCCGGCCGCCAACCGGGTGCAGATCGAGAAGGCCTTGGCGATGCTGAACCAGGCCGAGCGCCCATTGCTGGTGGCGGGTGGCGGCATCATCAATGCCGATGCCAGCGACCTCTTGGTGGAGTTTGCCGAGCTCACCGGCATCCCGGTGATCCCGACCTTGATGGGCTGGGGCACGATCCCGGACGATCATCCGTTGATGGTCGGCATGGTCGGCCTGCAAACCTCGCACCGCTACGGCAACGCCACCTTGCTCAAGTCGGACGTCGTGCTGGGCGTCGGCAACCGTTGGGCCAACCGCCACACCGGTTCGGTGGACGTCTACACCGAAGGCCGCACATTCATTCACGTCGACATCGAACCGACCCAGATCGGCCGGGTGTTCACCCCCGACCTGGGTATCGTTTCCGACGCAGCCTCGGCCCTGACCGTGTTCATCGAAGTGGCCCGCGAATGGCAAGCCGCCGGCAAGCTGAAGAACCGCAGCACCTGGCTTCAGGATTGCCAGCAACGCAAGGCCAGCCTGCAGCGCAAGACCCATTTCGACAACGTGCCGGTGAAGCCGCAGCGCGTCTATGAGGAAATGAACCAGGTGTTCGGCAAGGACACCTGCTATGTCAGCACCATCGGTCTATCGCAGATCGCCGGGGCGCAGTTCCTCCACGTCTACAAACCACGCCACTGGATCAACTGCGGCCAGGCCGGTCCCCTGGGCTGGACCATTCCGGCCGCGCTGGGAGTGGTCAAGGCCGATCCGGATCGCAAGGTCGTGGCGCTGTCGGGCGACTATGATTTCCAGTTCATGATCGAAGAACTGGCGGTGGGCGCACAATTCAAGCTGCCCTACATCCATGTCGTGGTGAACAACTCCTACCTGGGCTTGATCCGCCAGGCTCAGCGCGGCTTCGACATGGACTACTGCGTGCAGCTGTCCTTCGACAACCTCAACGCCCCGGAGCTCAACGGTTATGGCGTGGACCACGTCGCCGTGGCCGAGGGCCTGGGTTGCAAGGCATTGCGGGTGTTCGAGCCGTCAGGTATCCAGCCAGCGCTGCGCAAGGCCCAGGAGATGATCGAAGAGTTCAGGGTGCCAGTGATCGTCGAGATCATCCTTGAGCGGGTGACCAACATTTCCATGGGCACCGAGATCAACGCCGTCAATGAATTTGAAGACCTGGCGCTGGTGGGCAACGATGCACCCACCGCGATTTCATTGCTCGACTGAMSKMRAIEAAVLVMRREGVDTAFGIPGAAINPLYSALQKVGGIDHVLARHVEGASHMAEGYTRTKAGNIGVCIGTSGPAGTDMVTGLYSASADSIPILCITGQAPRARMHKEDFQAVDITSIVKPVTKWATTVLEPGQVPYAFQKAFFEMRSGRPGPVLIDLPFDVQMAEIEFDIDAYQPLPLAKPAANRVQIEKALAMLNQAERPLLVAGGGIINADASDLLVEFAELTGIPVIPTLMGWGTIPDDHPLMVGMVGLQTSHRYGNATLLKSDVVLGVGNRWANRHTGSVDVYTEGRTFIHVDIEPTQIGRVFTPDLGIVSDAASALTVFIEVAREWQAAGKLKNRSTWLQDCQQRKASLQRKTHFDNVPVKPQRVYEEMNQVFGKDTCYVSTIGLSQIAGAQFLHVYKPRHWINCGQAGPLGWTIPAALGVVKADPDRKVVALSGDYDFQFMIEELAVGAQFKLPYIHVVVNNSYLGLIRQAQRGFDMDYCVQLSFDNLNAPELNGYGVDHVAVAEGLGCKALRVFEPSGIQPALRKAQEMIEEFRVPVIVEIILERVTNISMGTEINAVNEFEDLALVGNDAPTAISLLDNANANANANA
D1-35_01936441hypothetical proteinATGAGCGATCTCACCTTGAAAATCGCCGTCAGCCTGGCGGGGCAAGCCCTTGCCGCAGGCCGCGAGATCAGCGCAGCCCCCTTGACCGTCGCGGTCCTGGACAGCGGCGGACACCTCGTAGCCTTGCAGCGCGAGGACGGCGCCAGCCTGTTGCGCCCGCAAATCGCCATCGGCAAGGCCTGGGGCGCCATCGCCCTGGGCAAAGGCTCACGCCTGCTCGCCCAGGACGCCCAGCAGCGCCCGGCGTTCTTTGCCGCTTTGAACGGCATGGGCCAAAGCAACATCGTGCCGGCACCGGGCGGAGTGTTGATCAGGGATCAGGACGGGAAGGTGCTGGGGGCGATTGGTGTCAGCGGGGATGTTTCGGATGTGGATGAGCAGGTGGCGGTCAGGGCGGTGGAGGTGTCGGGGTTGAGGGCGGATGTGGGGGTTGTTGTTTGAMSDLTLKIAVSLAGQALAAGREISAAPLTVAVLDSGGHLVALQREDGASLLRPQIAIGKAWGAIALGKGSRLLAQDAQQRPAFFAALNGMGQSNIVPAPGGVLIRDQDGKVLGAIGVSGDVSDVDEQVAVRAVEVSGLRADVGVVVNANANANANA
D1-35_01937459hypothetical proteinATGTCTGACCTACCCGCTTCACACCGCTTGCGAACCGGCCGCTACGGTGAGTTGAATCGAATCTATTTATTGACCACTAACACGGCTGATCGAAAGCCCGTCTTCCATGATTTCGCTTTAGGCAGATTGGTCGTTGAACAATTTCGATGTGCTGAGGATAAACGATGGGCAAAGTCATTAGCCTGGGTGGTCATGCCGGACCATTTTCATTGGCTGGTTGAGTTGCAACAAAGCTCACTGAACGAGCTGATGCAAAAGACCAAGTCCTTGAGCGCTCGGGCAGTAAACATATCCACCGGCTATAGAGGCAGCCTTTGGCAGCCGGGATACCATGAACGAGCATTGAGGCAGGAGGATGGATTGATAGTTATGGCGCGCTATGTCGTCGCCAACCCACTGCGGGCAGGCCTGGTGAAGCGGCTTGGCGACTATCCGCTGTGGGATGCCATCTGGCTTTGAMSDLPASHRLRTGRYGELNRIYLLTTNTADRKPVFHDFALGRLVVEQFRCAEDKRWAKSLAWVVMPDHFHWLVELQQSSLNELMQKTKSLSARAVNISTGYRGSLWQPGYHERALRQEDGLIVMARYVVANPLRAGLVKRLGDYPLWDAIWLPGPT0030655_3057DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030655-yafM|rayT|tnpA-K07491NANA
D1-35_01938609rutR_1COG1309HTH-type transcriptional regulator RutRATGAGCACTATCCGCGAGCGCAACAAAGAACTGATCCTGCGTGCCGCCAGCGAAGAGTTTGCCGACAAGGGCTTCGCCGCGACCAAAACCAGCGACATCGCGGCCAAGGCGGGCCTGCCCAAACCCAACGTCTACTATTACTTCAAATCCAAGGAGAACCTCTACCGCGAGGTCCTGGAAAGCATCATCGAGCCGATCCTCCAGGCCTCCACGCCCTTCAACGCCGACGGCGAGCCGGGCGAAGTATTGAGCCACTACATCCGCTCCAAGATCCGCATCTCCCGCGACCTGCCCTTCGCCTCGAAAGTCTTCGCCAGTGAAATCATGCACGGCGCCCCGCACCTCAGCGCCGACCTGGTCGAACAACTCAACGCCCAGGCCCGGCACAACATCGACTGCATCCAGACCTGGATCGACCGCGGCCAAATCGCCCCCATCGACCCCAACCACCTGATGTTCAGCATCTGGGCCGCCACCCAGACCTACGCCGATTTCGACTGGCAGATCAGCGCCGTGACCGGCAAGGCCAAGCTCGACGAAGCGGATTACGAAGCGGCGGCGCAGACGATTATCCGGTTGGTTTTGAAGGGGTGTGAGGTGGATCGCTAGMSTIRERNKELILRAASEEFADKGFAATKTSDIAAKAGLPKPNVYYYFKSKENLYREVLESIIEPILQASTPFNADGEPGEVLSHYIRSKIRISRDLPFASKVFASEIMHGAPHLSADLVEQLNAQARHNIDCIQTWIDRGQIAPIDPNHLMFSIWAATQTYADFDWQISAVTGKAKLDEADYEAAAQTIIRLVLKGCEVDRNANANANANA
D1-35_01939915yedICOG2354Inner membrane protein YedIATGGCTGGAAGCAGTTTGCTGGTTTTGATCGACGACATCGCCACCGTGCTCGACGATGTGGCGCTGATGACCAAGATGGCCGCCAAGAAAACCGCCGGCGTGCTCGGCGACGACCTGGCGCTCAATGCCCAGCAAGTCTCCGGCGTGCGGGCCGAGCGGGAGCTGCCGGTGGTCTGGGCGGTGGCCAAGGGTTCCTTCATCAACAAGCTGATCCTGGTGCCGTCGGCGCTGGCAATCAGTGCCTTCGTGCCTTGGCTGGTGACACCCCTGTTGATGGTGGGTGGCGCCTACCTGTGTTTCGAAGGGTTCGAAAAACTCGCCCACAAGTTCCTTCACAGCAAGGCTGAAGACCAGGCCGGGCATGCGCAACTGGTGGAGGCGGTGGCCGACCCGGCGGTGGACCTGGTGACCTTCGAAAAGGACAAGATCAAAGGCGCGGTTCGCACCGACTTCATTCTCTCGGCGGAAATCATCGCCATCACCCTCGGCACTGTCGCCGATGCGCCGCTGACCCAGCAGGTTATCGTGCTGTCGGGCATTGCGATTGTCATGACTGTCGGCGTGTACGGCCTGGTGGCGGGGATCGTCAAGCTCGATGACCTGGGCTTGTGGCTGACCAAAAAGCCAGGGCAGGCCGCCAAAAGCATCGGCGGCGCCATCCTGCGCGCCGCGCCCTACATGATGAAAAGCCTGTCGGTGATCGGTACGGCGGCGATGTTCCTGGTGGGCGGCGGCATCCTGACCCATGGCGTACCGGCGGTGCATCACTGGATCGAAGGCGTGGCGGCTGGTGCCGGCGGCGCCGGGTTCATCGTGCCGATGCTGCTCAATGCGGTGGCGGGGATTGTCGCGGGTGCTGCCGTGTTGGCGGGTGTGCTCGTCGTGGGCAAAATCTGGAAAGCGCTGAAAGGCTGAMAGSSLLVLIDDIATVLDDVALMTKMAAKKTAGVLGDDLALNAQQVSGVRAERELPVVWAVAKGSFINKLILVPSALAISAFVPWLVTPLLMVGGAYLCFEGFEKLAHKFLHSKAEDQAGHAQLVEAVADPAVDLVTFEKDKIKGAVRTDFILSAEIIAITLGTVADAPLTQQVIVLSGIAIVMTVGVYGLVAGIVKLDDLGLWLTKKPGQAAKSIGGAILRAAPYMMKSLSVIGTAAMFLVGGGILTHGVPAVHHWIEGVAAGAGGAGFIVPMLLNAVAGIVAGAAVLAGVLVVGKIWKALKGNANANANANA
D1-35_01940789hypothetical proteinGTGGCTAAATACCTCCTGCTTATCGCCGCGTTAATGAGTGCGGGCATGGTCCACGCCGATAACAGCAAGGCCAATGCCCCCGTGGTGGTGGATTCGGACGGCTTCAAGGAGCCGCTGACCAAACTCAAGTTCAACCCGGGCCTGGACCAGCGCGAATTCGAACGCTCGACGCTCAACGCTTTGAACGTCTACGACCCGCTGGAATCGTGGAACCGCCGCGTCTACCACTTCAACTACCGCTTTGACGAATGGGTCTTCCTCCCTGTTGTCGACGGCTACCGCTACGTCACCCCGGCCTTCGTGCGCACCGGCGTCAGCAATTTCTTCAACAACCTGGGGGACGTGCCGAACCTGATGAACAGCCTGCTGCAATTGAAGGGCAAGCGTTCGATGGAAACCACGGCGCGCCTGCTCCTCAATACCACCGTCGGCATCGCCGGCCTCTGGGACCCGGCCACGGCCATGGGCCTGCCGCGCCAGAGCGAGGACTTTGGCCAGACCCTGGGTTTCTATGGTGTGCCCGGCGGCGCGTATTTCGTGCTGCCGATCTTCGGTCCTTCGAACCTGCGCGACACTTCGGGCCTGCTGGTGGACTACACCGCGGAATCGGCGATCAACTTCCTGAACGTCTCGGAGGTCAGCTCCAACCACCCGGAACTGCTGCTGTTGCGCGGCGTGGACAGGCGCTACCAGACCAGCTTCCGCTACGGGCAGCTGAACTCGCCGTTCGAGTATGAGAAGGTGCGGTACGTGTACACCGAGTCGCGCAAGTTGCAGATCGCCGAGTAAMAKYLLLIAALMSAGMVHADNSKANAPVVVDSDGFKEPLTKLKFNPGLDQREFERSTLNALNVYDPLESWNRRVYHFNYRFDEWVFLPVVDGYRYVTPAFVRTGVSNFFNNLGDVPNLMNSLLQLKGKRSMETTARLLLNTTVGIAGLWDPATAMGLPRQSEDFGQTLGFYGVPGGAYFVLPIFGPSNLRDTSGLLVDYTAESAINFLNVSEVSSNHPELLLLRGVDRRYQTSFRYGQLNSPFEYEKVRYVYTESRKLQIAEPGPT0024485_990DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINSCE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024485-mlaA|vacJ-K04754NANA
D1-35_019411299hypothetical proteinATGCTCCGTTCCTTGCGCTTCGCTGCCTTCGCCGGCGGCCTTATCCTGAGTGCGTCCGCGCTGGCGGTGGATGTCGACGCCGCCAGCTATGGCTACCCCTTGACCAACCCGTTCGAGGCGACCATCGCCACCACGCCGCCGGACCTGCGCCCGGAGCTGCCGCTCAATGAGGACATCAACCAGTCGGACCAGAGCCTGACCCTGCGTCCGGAGCGCGAATTCATCCTGCCGGACAATTTCTGGCCGGTGAAAAGCCTCACCTACCGCATGGCCACCCAGGACAAACCCGCGCCGCTGATCTTCCTGATCGCGGGCACCGGCGCGCGGTATGACAGCACGCTCAACGAGTATTTGAAGCGCCTCTACTACAAGGCCGGCTACCACGTGGTGCAGTTGTCCTCGCCCACCAGTTTCGATTTCATGAGTGCCGCTTCGCGCTTCGCCACGCCAGGCATCACCAAGGAAGACGCCGAAGACATGTATCGCGTGATGCAGGCCGTGCGCGCGCAAAATCCGAAAGTGCCCGTCACCGAGTACTACCTGACCGGCTACAGCCTCGGCGCCCTGGACGCGGCCTTCGTTGCGCACCTGGACGAGACCCGGCGCAGTTTCAACTTCAAGAAAGTCCTGTTGCTGAACCCGCCGGTGAACCTCTACACCTCGATCACCAACCTGGACAAGCTGGTCCAGACCGAGGTCAAGGGCATCAACAGCACCACGACATTCTATGAACTGGTGCTGAACAAACTGACCCGCTACTTCCAGCAGAAAGGCTACATCGACCTCAACGACGCCCTGCTCTATGACTTCCAGCAGTCCAAGCAACACCTGACCAACGAGCAGATGGCGATGCTGATCGGCACCTCGTTCCGTTTCTCGGCGGCCGACATCGCCTTTACCTCGGACCTGATCAACCGTCGCGGCCTGATCATCCCGCCGAAGTTCCCGATCACTGAAAGCACCAGCCTGACGCCGTTCCTCAAGCGCGCGCTGCAATGCGATTTCGACTGCTACCTCACCGAGCAGGTGATCCCGATGTGGCGTGCGCGCACCGACGGCGGCAGCCTGCTGCAACTGGTTGACCAGGTGAGTCTGTACGCGTTGAAGGATTATCTGCAGGCCAGCACGAAAATCGCGGTGATGCACAACGCCGACGATGTGATTCTCGGCCCGGGCGACCTCGGCTTCCTGCGCAAGACTTTTGGCGACCGCCTGACCGTTTATCCACTGGGCGGCCATTGCGGCAACCTTAACTATCGCGTCAACAGCGACGCCATGCTGGAGTTCTTCCGTGGCTAAMLRSLRFAAFAGGLILSASALAVDVDAASYGYPLTNPFEATIATTPPDLRPELPLNEDINQSDQSLTLRPEREFILPDNFWPVKSLTYRMATQDKPAPLIFLIAGTGARYDSTLNEYLKRLYYKAGYHVVQLSSPTSFDFMSAASRFATPGITKEDAEDMYRVMQAVRAQNPKVPVTEYYLTGYSLGALDAAFVAHLDETRRSFNFKKVLLLNPPVNLYTSITNLDKLVQTEVKGINSTTTFYELVLNKLTRYFQQKGYIDLNDALLYDFQQSKQHLTNEQMAMLIGTSFRFSAADIAFTSDLINRRGLIIPPKFPITESTSLTPFLKRALQCDFDCYLTEQVIPMWRARTDGGSLLQLVDQVSLYALKDYLQASTKIAVMHNADDVILGPGDLGFLRKTFGDRLTVYPLGGHCGNLNYRVNSDAMLEFFRGNANANANANA
D1-35_01942855hypothetical proteinATGAAGATGCGACGACTCTTGGGCGCAGGTGCCGCACTGGTACTGGCGATCAGCTCCACCCTGGCCAGCGCCGAAACCAAAACCCTGAGCATTGGTTATGTCGACGGCTGGTCCGACAGCGTCGCGACCACCCATGTGGCGGCCGAAGTGATCAAGCAGAAACTCGGTTATGACGTGAAGCTGCAAGCGGTGGCGACCGGGATCATGTGGCAGGGCGTGGCCACCGGCAAGCTCGATGCAATGCTTTCGGCCTGGCTGCCGGTGACTCACGGTGACTACTGGACGAAAAACAAGGACAACGTGGTCGACTACGGCCCGAACTTCAAGGACGCCAAGATCGGCCTGATCGTGCCAGAGTACGTCAAGGCCAAGTCGCTGGAAGACCTCAAGACCGACGATTCCTTCAAGAAACGCATCGTCGGCATCGACGCCGGTTCAGGCGTGATGCTCAAGACCGAACAGGCGATCAAGGACTACGACCTGACCGGTTATCAACTCAAGGCCAGTTCCGGCGCCGGCATGATCGCCGAGCTGACCCGTGCCGAGAAGAAACAAGAGTCCATCGCCGTCACCGGTTGGGTGCCGCACTGGATGTTCGCCAAGTGGAAACTGCGCTTCCTGGAAGATCCGAAGGGTGTCTACGGCGCGGCTGAAACCGTAAACAGCATCGGCAGCAAAGGCCTGGAAGCCAAGGCGCCGGGAGTGGTCGCGTTCCTGAAGAAGTTCCAGTGGGCCTCGAAAGACGAAATCGGTGAAGTCATGCTGGCGATCCAGGAAGGCGCCAAGCCGGACGCCGCCGCCAAGGATTGGGTTGCCAAGCACCCGGACCGCGTGAAGGAGTGGACCGGCAAGTAAMKMRRLLGAGAALVLAISSTLASAETKTLSIGYVDGWSDSVATTHVAAEVIKQKLGYDVKLQAVATGIMWQGVATGKLDAMLSAWLPVTHGDYWTKNKDNVVDYGPNFKDAKIGLIVPEYVKAKSLEDLKTDDSFKKRIVGIDAGSGVMLKTEQAIKDYDLTGYQLKASSGAGMIAELTRAEKKQESIAVTGWVPHWMFAKWKLRFLEDPKGVYGAAETVNSIGSKGLEAKAPGVVAFLKKFQWASKDEIGEVMLAIQEGAKPDAAAKDWVAKHPDRVKEWTGKPGPT0013640_3825DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013640-gbuC|proX-K02002NANA
D1-35_01943312yjcHCOG3162Inner membrane protein YjcHATGAACGACAGCATTTACCTCTCGATACAAAACAGCCCGCGCTTCAAGGAGCTGGTGAGTAAAAGGGAAAAGTTCGCCTGGATTCTCTCGGCGATCATGCTAGGGCTTTACTCGGGATTCATCCTTCTGATTGCCTACGGGCCGCATATTCTCGGCGCCAAGATCACGCCTGAGGGAACGATCACCTGGGGCATTCCCATCGGGATCGGCCTGATTCTCTCGGCTTTTGTCCTGACCGGCATTTACGTACGACGCGCCAATGGCGAGTTCGACGACCTGAACAATGCGATTCTCAAGGAGGCTCAGCAATGAMNDSIYLSIQNSPRFKELVSKREKFAWILSAIMLGLYSGFILLIAYGPHILGAKITPEGTITWGIPIGIGLILSAFVLTGIYVRRANGEFDDLNNAILKEAQQNANANANANA
D1-35_019441659actPCOG4147Cation/acetate symporter ActPATGATCCGGCGTCTACTGGCTCTTTTGAGCATCGCTGCGTTCGCACCGAGCGTCTGGGCGGCTGATGCCGTGGCGGGGGCTGTGCAGAAACAACCCCTCAACGTCGCGGCTATCCTGATGTTCGTGGCCTTCGTCGGCGCGACTCTGTACATCACCTACTGGGCGTCCAAGAAAAACAACTCGGCGGCCGACTACTATGCGGCTGGCGGCAAGATCACCGGCTTCCAGAACGGCCTGGCGATTGCCGGCGACTACATGTCGGCGGCTTCCTTCCTGGGTATTTCCGCGCTGGTGTTCACGTCCGGTTATGACGGCCTGATCTACTCCATCGGCTTCCTGGTGGGCTGGCCGATCATTCTGTTCCTGATCGCCGAGCGTCTGCGCAACCTAGGTAAATACACCTTCGCCGACGTGGCGTCCTATCGCCTCGGGCAAACCCAGATCCGCAGCCTGTCGGCTTGCGGTTCGCTGGTGGTGGTGGCGTTCTACCTGATCGCGCAAATGGTCGGTGCCGGCAAGCTGATCCAGCTGCTGTTCGGCCTGGACTACCACGTTGCGGTGATCCTGGTCGGTATCCTGATGTGCCTCTACGTGCTGTTCGGCGGCATGCTGGCCACCACCTGGGTACAAATCATCAAGGCCGTGCTGTTGCTGTCGGGTGCTTCGTTCATGGCGCTGATGGTGATGAAGCACGTCAACTTCGACTTCAACATGCTGTTTGCCGAAGCGGTCAAGGTTCACCCTAAAGGTGAAGCGATCATGAGCCCTGGCGGCCTGGTGAAGGATCCGATCTCGGCCTTCTCCCTCGGCCTGGCGCTGATGTTCGGTACCGCTGGCCTGCCACATATCCTGATGCGCTTCTTCACCGTTAGCGACGCCAAGGAAGCTCGCAAGAGCGTGCTGTATGCCACCGGCTTCATCGGCTACTTCTACATCCTGACCTTCATCATCGGCTTCGGCGCGATCCTGCTGGTCAGCACCAACCCGGCCTTCAAGGACGCGGCAGGTGCCTTGCTGGGCGGCAACAACATGGCGGCGGTGCATCTGTCCAACGCGGTTGGCGGCAGCATCTTCCTGGGCTTCATCTCGGCGGTGGCGTTCGCGACCATCCTGGCGGTGGTAGCGGGGCTGACCCTGGCCGGTGCCTCGGCGGTGTCCCATGACCTGTACGCCAGCGTGATCAAGAAAGGCAAGGCCAACGAGAAGGATGAGATTCGGGTTTCGAAAATCACCACCATCTGTCTGGCGGTGCTGGCGATCGGCCTGGGCATCCTGTTCGAGAAGCAGAACATCGCGTTCATGGTGGGCCTGGCGTTCTCCATCGCGGCGAGCTGCAACTTCCCGGTACTGCTGCTTTCGATGTACTGGAAGAAGCTGACTACCCGTGGCGCGATGATCGGCGGCTGGCTGGGCCTGGTCAGTGCCGTGGGCCTGATGGTGCTCGGTCCGACCATCTGGGTGCAGATCATGGGTCACGAGAAGGCGATCTTCCCGTACGAATACCCAGCGCTGTTCTCGATGGCCATTGCGTTCGTCGGCATCTGGTTCTTCTCCATCACCGACAAGTCGGCTGAAGGCGCTAACGAGCGGGCGCTGTTCTTCCCGCAGTTCGTGCGTTCGCAGACGGGTCTGGGGGCGAGTGGGGCGGTTAATCACTGAMIRRLLALLSIAAFAPSVWAADAVAGAVQKQPLNVAAILMFVAFVGATLYITYWASKKNNSAADYYAAGGKITGFQNGLAIAGDYMSAASFLGISALVFTSGYDGLIYSIGFLVGWPIILFLIAERLRNLGKYTFADVASYRLGQTQIRSLSACGSLVVVAFYLIAQMVGAGKLIQLLFGLDYHVAVILVGILMCLYVLFGGMLATTWVQIIKAVLLLSGASFMALMVMKHVNFDFNMLFAEAVKVHPKGEAIMSPGGLVKDPISAFSLGLALMFGTAGLPHILMRFFTVSDAKEARKSVLYATGFIGYFYILTFIIGFGAILLVSTNPAFKDAAGALLGGNNMAAVHLSNAVGGSIFLGFISAVAFATILAVVAGLTLAGASAVSHDLYASVIKKGKANEKDEIRVSKITTICLAVLAIGLGILFEKQNIAFMVGLAFSIAASCNFPVLLLSMYWKKLTTRGAMIGGWLGLVSAVGLMVLGPTIWVQIMGHEKAIFPYEYPALFSMAIAFVGIWFFSITDKSAEGANERALFFPQFVRSQTGLGASGAVNHPGPT0001400_1788DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-CATION_TRANSPORT,PGPT0001400-actP-K14393NANA
D1-35_019451998asnB_2COG0367Asparagine synthetase [glutamine-hydrolyzing] 1ATGTGCGGTATTTTCTCATCCCTTGGTTTTGACATCGATACTCATTATGTGGAGCGTGCGCTAGACGCTTTGCACCACAGGGGTCCTGATGGACGTAGCTCCTACTTTGATCATGAGGAAAAACTCGTTCTGGGTCATACCCGACTGTCCATTATCGATCTTGATAATGGTGGTCAGCCACTGTTCAGCAAAGACGGCAACAAGGTCCTTGTTTGTAATGGCGAGATCTATGATCACGACCGGTTAAGAGCCGAGTTGATCGAAGAGGGTTATTCATTTTCCTCATGTTCGGATTCTGAAGTCATTCTTCATCTTTATGAACGTGATGGGATCGATTTTACCAGCTCCCTGCGGGGCGAATTTGCGTTCATACTATTTGACCGAACTCAACGAAAACTGCATATCTGCCGAGACCGTTTTGGTATTAAGCCGTTGTACTATCATCTGGATCAAACCTGTGGCCTGAAGATAGCCTTCGCCTCGGAAGCCAAGGCCCTTTTCGCGGCTGGCATTCTTGCTCCAAAGCTAGATGTCGTTGCTATTCGCGACATGCTCAGCTTTGTGCCAATGGACAGTATTTTTGAAAATATCAATGTGGTGAAGCCTGCTACGTTGATCACCATCGACCTTGAGCGCTCAAGTCTCGAAAGCCATGTGTACTGGGAACCAGACCTGCTACCTGATGCCTTTGATGCCAAACGGCACGATGAAGCTCAGGTATTGGCAGAACTGAAGCAAAGACTTGAGGAATCCATCTCACTAAGGCTTCGAGCGGACGTGCCCGTGGGCATTTATCTCAGCGGTGGCCTGGATTCGGCGGCGGTCGCTGCGATCGCCGCGAAAATCCTGCCGTCGCCACCCGAAGTTTTTTCCATTTCCTTCAATGAAGATGAGGACTATGACGAAGCAGCCATTGCAATGCGCATGGCCGCGAAAATTGGCGCCAACTTCCATAAAATTCAATGCAGCGAAGACGACCTGCTGGGTAACCTTGAGGATTGCCTCTGGTTCAGTGAAACCCCGGCAGTCAATTACAACGGCGTCGGCAAATACCTGTTATCCAAACTAGCAGCCCAGCATGTCACCTGCGTCCTGACGGGGGAGGGCTCAGACGAACTGTTTCTAGGCTATGCCTACTTCAAGGACCGCAACGAGGGGTTATCGAGTCACGCCTATCGGCGCGCGCCGAAGAAGCCCACAAGAGCGCAAAACCGCTCGGAACAACGGATCAATCGAACCTTCGGGTTCGTTCCTCAGGTCGAGATGATTGATCTTTTTTCTACCAGTACTCAGGCGTTTCTGCACAATCTCTTCGCCAAGTGCAAGCGGCCGATATTGCGCACTACATCGCCGATAAGCCGTTTAACACAACGTATCGACAAAGCGCAGACCGACCCGCTTGAACCGGTCAATAAGATGCAGATGTTCAGCATCAAGGGTTTGCTGTCCCCCTTCATTCTGTCCAATCTTGGGGATCGCCAGGAAATGGCTCACTCCCTTGAAGGTCGAACTCCTTTTTTGGATCATCATTTGTTCGACTGGGCGTGCAAGCTGCCGAACACGCTGAAGATCAAAGACGGTGTAGAAAAATACATTCTTCGTGAGCTGGTCAAAAATGACATTACGGATGAAGTCTATGCTCGCAAGAAGTGGCCCTACATCACGCCTCCCATTTGGGTCGACGCCGGAAGGTCAGAAAAAATGGCCAAGCTGGTCGACACCTATCTAACGCCTCAAGCGATCAAGACCAGCGGGATATTTTCAGCATTTTCCATTCGACTGATGCTCAAGCTGGTGAAAACGCGCGTGGTGCCACGACACCTTCGAGAGAGGCTCAACAACATCCTGCTTTATGTTCTGACCGTACAGATCCTTGACAACCAGTACGTTCAGAATCTCGATACGTGGTTGGAGTCAAGTAAAGCGACCAGGTCTCGTAAAGCGCAAAATGACGTCCCTGTATCGCGCCATCGAGCGCCTCCGATGATGATTCCATAAMCGIFSSLGFDIDTHYVERALDALHHRGPDGRSSYFDHEEKLVLGHTRLSIIDLDNGGQPLFSKDGNKVLVCNGEIYDHDRLRAELIEEGYSFSSCSDSEVILHLYERDGIDFTSSLRGEFAFILFDRTQRKLHICRDRFGIKPLYYHLDQTCGLKIAFASEAKALFAAGILAPKLDVVAIRDMLSFVPMDSIFENINVVKPATLITIDLERSSLESHVYWEPDLLPDAFDAKRHDEAQVLAELKQRLEESISLRLRADVPVGIYLSGGLDSAAVAAIAAKILPSPPEVFSISFNEDEDYDEAAIAMRMAAKIGANFHKIQCSEDDLLGNLEDCLWFSETPAVNYNGVGKYLLSKLAAQHVTCVLTGEGSDELFLGYAYFKDRNEGLSSHAYRRAPKKPTRAQNRSEQRINRTFGFVPQVEMIDLFSTSTQAFLHNLFAKCKRPILRTTSPISRLTQRIDKAQTDPLEPVNKMQMFSIKGLLSPFILSNLGDRQEMAHSLEGRTPFLDHHLFDWACKLPNTLKIKDGVEKYILRELVKNDITDEVYARKKWPYITPPIWVDAGRSEKMAKLVDTYLTPQAIKTSGIFSAFSIRLMLKLVKTRVVPRHLRERLNNILLYVLTVQILDNQYVQNLDTWLESSKATRSRKAQNDVPVSRHRAPPMMIPNANANANANA
D1-35_019461005hypothetical proteinATGGCTGTTGATTTTTCCTGGAGTAAAATTTCCCAGTATTTCCATCCTGTTCTTGATGAAAAGAAATTGCGTAATTCACCCGTTCAGGTCGAAATTGGTGATTTCAAGATTGTGCTTTTCAGGGGGGCGGAAAACGAAATCGTAGCCATGCCTGATCGGTGCCCTCATCGATTTACTCCCCTGTCAATGGGAACTGTTTTACCCAACGGTTCGATAGAATGTCCTTACCACGGCTGGACCTTCGATAAAGACGGCAAAGGCGCCATTCCTTCCTGTCCAAAAGTAAAAACATGCACGATTCCTGTATTAAAGACGGTGCAACGCCATGGCGTCATTTGGGTAGGAGGACAGGAAGCCTCTCCTCCTCCTGAGTTTGAAGATCCTGATTACGTATTTTTGGGACAGTTCCCCGTTGTCTTCAAGTGTCCCTTACACGTTGCCCTGGATAATTTCTCTGAAGATGAGCATTTTCCGTATGTACATCAAACGTTCGGTTGGGACCGGGAAGGCGCAAAGCACGTCGAATACGAATTTGAACAGTTCGATGACAGCACCAATAACTATTACCGAGGTCCCATTCGAAAATTTCCGCTAATGTTCCTTACCGGTGTTCAGCCAGGGGATATCTCCCACAACCGGTTTATTACGTTTTTTAATCCAGTTCGCAGTACCTACGAGTCCTGGGTCACGCGTCGGGAAACCGCCGCATCTATTGGCGGGCGGATCAAAACCACCATATTCTTTGTTCCAAACAGTGCGCAGCGCACTACCCTCTACAGCTTCGTCTTTGGAAAAGCGGAGGATAAGAAATCTGCTTTCCTTCAAAAGAACCTTAAACGCTTTGTCTTGAAATTCATAAAAAAAGAATTTGAAGCAGACGGTAAATTCTCCGAGCGTCTTGCTCATCTTCCCTATGCACTGAACGGCACCAGGCTAGGAAAATATGACAAGCCTCTGGTTGTGCACAGAAAAATGCTTGAACGTATTTATTTAGGCGATCGCTAGMAVDFSWSKISQYFHPVLDEKKLRNSPVQVEIGDFKIVLFRGAENEIVAMPDRCPHRFTPLSMGTVLPNGSIECPYHGWTFDKDGKGAIPSCPKVKTCTIPVLKTVQRHGVIWVGGQEASPPPEFEDPDYVFLGQFPVVFKCPLHVALDNFSEDEHFPYVHQTFGWDREGAKHVEYEFEQFDDSTNNYYRGPIRKFPLMFLTGVQPGDISHNRFITFFNPVRSTYESWVTRRETAASIGGRIKTTIFFVPNSAQRTTLYSFVFGKAEDKKSAFLQKNLKRFVLKFIKKEFEADGKFSERLAHLPYALNGTRLGKYDKPLVVHRKMLERIYLGDRNANANANANA
D1-35_01947252hypothetical proteinATGAACACGGCTCAAGTCAAAGAGGAGTTACATCACCTATGGAGAGAGTTGCTCCCCTCGCAGAGCTTCGATGAAGACTCAGATTTTCTAAGTGTCGGTGGCAGTTCATTAAAGGTCATGAGTCTTTTCGTAAAGTGTATGAAGAAATTTGGTGTGAAGATGGAAGTCAAAAATTTTTACGCATTGAATACTATCAATAGGCAAAGCGCTTTCATTACAAGCGAGTTGCAGCTTGAAGCACAGCTTGAGTAGMNTAQVKEELHHLWRELLPSQSFDEDSDFLSVGGSSLKVMSLFVKCMKKFGVKMEVKNFYALNTINRQSAFITSELQLEAQLENANANANANA
D1-35_01948750hypothetical proteinATGCACAGTCCGATTGCGGTCGTCACCGCTCCAAAAATCCCCAAGGCATATAAATCTCTATTTGAAAAAGCCGAGCAGGACCGGCTTTTAGTGGGGGACCTCGAAGTGAGGCTGTATCGCTGGCCCGGCGAACGTACTGTGTTATGCCTCCACGGTTCCAATGGCAATTCGGCTCAGTTTGGAAAGCTGATTTCCAAGTTGACTGAAGTGGGTCATGGCGTTATTGCGGTAGATATACCATCCCACGATGCGCAGGGTCGTTTTATCCCGTCCAACAATATCGGGTTCAGCCTCCTCGCCCTGCAAAAAAAATACGGCGAAATCTATGCGGTGGTCGCGCATTCCATGGCGTGCAGCTGGGCACTGTGGGCGATGAGGAACGGATTACACGTCCAACGTGTGGTCTGCTTGTCCCCCGCTGCGACTCAGGAATATGTCTTCAAGCGGTTCCTCGCGCTTCAGGCTGACCGGGGTGTTTGCATGGATGACCTGGAGCAAGAAATATCATCGTCATTCGGCAGTTCATGGAGGGAGGAGTATTCGACGATCAACCTATGCCAATTCCTGACGCTAGATGCGCTGATCTATCACGATCGCGATGATCCGGTAATTGAATTCGAACAAGGTGGCGAGCAACTTGCGGAACGTTGGGTCGGCGCCTTGTTTCGAGCGACGAATGGGCAAGGACACTCTGGGTTTTTTAGGAGTGAAACGATAATGGAAGAAGTTAAGAGTTTTATTGTTTCGTAAMHSPIAVVTAPKIPKAYKSLFEKAEQDRLLVGDLEVRLYRWPGERTVLCLHGSNGNSAQFGKLISKLTEVGHGVIAVDIPSHDAQGRFIPSNNIGFSLLALQKKYGEIYAVVAHSMACSWALWAMRNGLHVQRVVCLSPAATQEYVFKRFLALQADRGVCMDDLEQEISSSFGSSWREEYSTINLCQFLTLDALIYHDRDDPVIEFEQGGEQLAERWVGALFRATNGQGHSGFFRSETIMEEVKSFIVSNANANANANA
D1-35_01949306hypothetical proteinATGGAAGCTGATGTGACCAAAGAGGCGCTGTACAGCAATATTGAACGAATCATTTTGCAGTACTGCGATGCGGCGGATCTGGGTATTACCGGTATCGATCCCGACGTCAGTCTGACCCAAGAGCTAGGCGTTGACAGTGTTGACTTCCTCGATATCGTTTTTGAGATCGAAGATACCTATAAAATTCAGTTTCCACTTGAGCAATGGTCGGCGGATGTGCCTGACGGTAAAAAAAATGAATCCAAGATGTGCGATTTCGTGGATGCAGTTTACGCACTAATAGTGCCGAAATTGGTTGAGGCATGAMEADVTKEALYSNIERIILQYCDAADLGITGIDPDVSLTQELGVDSVDFLDIVFEIEDTYKIQFPLEQWSADVPDGKKNESKMCDFVDAVYALIVPKLVEANANANANANA
D1-35_01950447hypothetical proteinATGAATTTCGAAGTTAACGCGTTGGTCGATAAGGTTGTGGACGTTTCTGAATGGGAACGTATTACCTGTCGCAGCACGGTGCCAACACAGGCCCCTCTCTTTGAGGGGCATTTTCCAGGTAACCCAATCGTTCCAGGCGTGTTGCTGGTGGAGATGATGGCTCAAGCGAGTGGTTATCTTTATATGTTGTCATCGGGTTTTCAGCGGATGCCTTACCTGGTAAATATCAAAAGCGCGAAGTTTAAGCGGTTTGTCTCGCCAGGTGAGGTGCTTGACGTGAAGTCGCAGTTAACTCATCAAGGAGACGGTTATTTGGTTTTCAAAGCCAGTATTAGCGCGCCGTTGATGGTGGCCAACGCCGAGCTCATGTTGAAACTAATGGATTTTCCTAATGACGTTCTCAAGGAAAGTGTTGTCAGTTCGGTAAAGTCGGCGAGGGGTGAGTGAMNFEVNALVDKVVDVSEWERITCRSTVPTQAPLFEGHFPGNPIVPGVLLVEMMAQASGYLYMLSSGFQRMPYLVNIKSAKFKRFVSPGEVLDVKSQLTHQGDGYLVFKASISAPLMVANAELMLKLMDFPNDVLKESVVSSVKSARGEPGPT0008365_1475DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008365-fabZ-K02372NANA
D1-35_01951999hypothetical proteinATGAATAACAGCGCCTTTATTCTGGGTGTCGGCGGAGTCTCCAACTTGGGATGTTTACAGGCCCGCGATCCATGGATGGCTTTTTCGCCGCTCCTTATCGGCACGAGCAAAGTCAGCGCGTCTGAATTCCCGGTGAGTAGATATATTACTAAACAGCGTGATATCAACTCTATGGGTTTGGGACAAAAAATGTTGGTCTGTGCCGCAGGCTTGGCATTGGAGGACGCACGCTTGCTGGGCAGCGATCTTACAAGCTATGACATTTTTATGGCTTCGAAAATCGGTGAACGAAATAAGGATGTCGATGCCGCTATTATACAAGGGGCTAAAATCGGTACGCTCGACATCAACGCCGAGTTGAGCCGTTTACGGCCTACCCATTTCCTTGCTGAACTACCGAATTTGTATTCAGCTAACATTTCGATAGTGTTTGGTGCTAAAGGCGAGAGCGTAACGTTCGTCGGAGAAGCGTCTGCTTCGGTACAAGCGGTGACGCATGCTATCGAGAAACTCTCGAGTGGGCAGGCGCACCATTCTATCGTAGGGGGCGTGTTCAACGGTGATCAGGAAATTCACGATGAGTACGTTGCCTCAATAAACCATTGTGGATCAACGCCCATCGTATTCGGCAGCGCAGCGACTTGTATGGTACTCGGATCGGTACCGACCGACGCGATAGCCGGTATTTCACGACTTGAGCGCTTTGATCTGAAGAACTTAGCCGAGATTATTATCGAGAATGAAGTGTCGGCCGTTTCGGCAAGTTTTCATCCCGGCATCAGTCCTCCTGCATATTGGTTCCCTGAAGGCGTTGGGATTGTAGGCGTCAATATCGCCGATTATTTCGGCAGTCTATTTGAATCGACATTGCCCACTCAAGTCCTGTTTTCATTGTTGCATTTTAAGCCAATGCTGCAGTTGCAACGCCGCAAGCGAATACTACTGATAACCCAAGTAGGAAGAGCACATTTCGAAGCATTTCTCGTGGATGTTTTATAGMNNSAFILGVGGVSNLGCLQARDPWMAFSPLLIGTSKVSASEFPVSRYITKQRDINSMGLGQKMLVCAAGLALEDARLLGSDLTSYDIFMASKIGERNKDVDAAIIQGAKIGTLDINAELSRLRPTHFLAELPNLYSANISIVFGAKGESVTFVGEASASVQAVTHAIEKLSSGQAHHSIVGGVFNGDQEIHDEYVASINHCGSTPIVFGSAATCMVLGSVPTDAIAGISRLERFDLKNLAEIIIENEVSAVSASFHPGISPPAYWFPEGVGIVGVNIADYFGSLFESTLPTQVLFSLLHFKPMLQLQRRKRILLITQVGRAHFEAFLVDVLNANANANANA
D1-35_01952996kshA3-ketosteroid-9-alpha-monooxygenase, oxygenase componentATGGACTCGCAAAATCAAATTCACCCGGTGACTAATCGGTTTCCATTTGGCTCGTATCCCTGCGGCTGGTATGCCGTAGCATGGGCTGACGATATTGATAATGAAACTATCCGAAGTGTGCGGCTCTGTGGCAAAGACATTGTTGTCGTTAGGACTGCTTCAGGGGAAGTTGCGGTATATGATGCCCATTGCCCTCATCTAGGCGCACACTTGGGGTTTGGTGGGGTGGTCATCGGTGAAAATATCCGGTGCCCGTTTCATGGCTGGGAGTTTGGTAGCGGTGGGCAGTGTAGCCGTATTCCATTCTATGACGGTACCATGAAAGTTGGCTTGAAACGGTGGCACTCGATTATTCACGCAGGCATGCTCCAAGTCTGGTACGGCGGCACGCAAAGTGAGCCTGGTTGGAATGTGGACCCAGTGGATTCTGTTGGATGGACCTCGCCGCGACTGGATAAGGGAAGTGTCTGGTCATTGAAGACGCACGTCCAAGAGGTGGCGGAAAATGGAGTGGATGTTGCTCACTTTACAACGGTACATAATGCGGAATCCATTGGCGAGTTAAGAGAGCTCTCATTCACTTGGCCACGTGCTAGTTGGACATCAATCAGCTCCAGTGATATCGGTGGGAAGTCTTCGGTGGCGCACGCCAACGTCGTATTGGATGGGTTGGGGTTGCATAAAGTTGAAGTCAATGTGGATGGTGGGAAGATAAGGTTTAGGAGTTTTCTCTACGTTTCCCCGATAGACAATGAGAACGTTGTAATCCGCATGAGCGTTTCCGTAAAACACACGGGCGACCCTCGTAAAGATGCGATGCTGATTAAATACCTTACCCCTCGATTAGCTGGTGAGTTGGCCAAGGATTTCGATATTTGGGAGAACAAAAAGTATATAGAACGCCCTCCATTAAGTCGCGTTGATGGTCCGATTGCCAAGTTTCGCCAATGGTGCCAGGGGTTTTACGACGGAAGTGCGGCATTTCAAGGTTGGTAGMDSQNQIHPVTNRFPFGSYPCGWYAVAWADDIDNETIRSVRLCGKDIVVVRTASGEVAVYDAHCPHLGAHLGFGGVVIGENIRCPFHGWEFGSGGQCSRIPFYDGTMKVGLKRWHSIIHAGMLQVWYGGTQSEPGWNVDPVDSVGWTSPRLDKGSVWSLKTHVQEVAENGVDVAHFTTVHNAESIGELRELSFTWPRASWTSISSSDIGGKSSVAHANVVLDGLGLHKVEVNVDGGKIRFRSFLYVSPIDNENVVIRMSVSVKHTGDPRKDAMLIKYLTPRLAGELAKDFDIWENKKYIERPPLSRVDGPIAKFRQWCQGFYDGSAAFQGWNANANANANA
D1-35_01953345pchB_1COG1605Isochorismate pyruvate lyaseATGATGATGACGGTCGATAAAATATTTAGAGAACTTACCGCCAAACAACCGGATGAGTGTGAAAATCTCGCAGATATCCGTAGGGCGATTGACGGCTTGGATGAACACATTATCCGTGCGATGGGACAACGTATGTTATATGTCCGGTCCGCGTCTCGTTTCAAACCCTCTGAATCTAGTATCCCAGCGCCTGCGCGTGTGGCAGAAATGCTTCCTCAGCGTCGGAAATGGGCAGAAGAGGCGGGGTTGGATGGTGATTTTGTACAAGGTCTGTTTAGCCAGATTATCAATTGGTATATCGCTGAGCAGGTTGGTTATTGGCGACAACAACGAGGCCTCGCATAAMMMTVDKIFRELTAKQPDECENLADIRRAIDGLDEHIIRAMGQRMLYVRSASRFKPSESSIPAPARVAEMLPQRRKWAEEAGLDGDFVQGLFSQIINWYIAEQVGYWRQQRGLAPGPT0003065_308DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_AQUIRED_RESISTANCE|SARSAR-SALICYLIC_ACID_METABOLISMSAR-SALICYLIC_ACID_BIOSYNTHESIS,PGPT0003065-pchB|pmsB-K04782NANA
D1-35_019541413pchACOG1169Salicylate biosynthesis isochorismate synthaseATGAGTATTCTCGATGTGGATTACACAGGGCTTTATCTATGTATTGAAGAGGCTCATAAAAAAGCGCTTGAAACGGCAAGCCCTGTGCTCGCGGCTTTTTCTTGTGTTGTCGCAACGGTGGATCCGCTGTCGCTGTTGGAAAGAGCTCAGGGCTACCACGATTCCTACGCGTTTTGGAAGGCTAGAGACCCGGCGGTCTGCATGTTTGGCTGGGGTACGGAGGTTGAAATCAACGTCCAAGGCGAAACACGTTTTTCCGAGGTGCAGGCACTCTGGCGTTCGCTTCTTGAGCACTCGGTATGCCGGGGACCTTTAGGGCCTAGGTTGGTTGGCGGATTTCGATTTGATGTGGATGGTGACAAGGATCCGTGTTGGAGGGACTTCCCCGACGCCTGCATGAGTTTGTACAAAACGCTGGTTGTCCATGCGCCAGATCGGGATTGGCTGCTTTGCCACTGCTATGTCGATCCAGATGCGGATGTGGCTTTGTTGGTGGCTAGCTACAAAAAACACATCGAACTTTTATGCGGGCGCGAAAAGAAACTGGCGCACGGATCGTCCAACTTTGCGTTGTACGAACCGGCGAACGCTGGTCAATGGAAGTCAAAAGCCAGACTGGCTGTCGAGAAAATACAGTGCCAGGCATTTACCAAAGTCGTGCTGGCCCGGTCCGTCCAGCAGGTACATGACGAGCCCATCAATCCCGGCGCTTTGGTGAGAGCTTTAAGCAGCAATAGCCAAGCGCATCTGTTCGCTTTTAGCCGGGGTGATAGTTGCTTTGTTGGAGCAACGCCTGAGCGTCTGGCTTGTGTCCTCGACGGAAATCTTCACACCCATGCATTGGCGGGAACCACTCGCCGGGATGAGGACGCTGCAATAGACCGGCGCTTAGGGGAGATGCTTTTTGAGTCGAACAAGGAGCGGCACGAGCATGCCCTTGTCGTCGAGGCGATTCGTGAGGCGCTGACGCCGTTGGTATCCGAGCTGGAAATCTCCCAAGAGCCGACTTTGCACTGCCTTCCCAAAGTCCAGCATCTCAATACCGCCATTCGTGCTCAAGTCAAAGGGGAGGTTAGCTTACTCAATATAGTCGCGGCTATGCATCCAACGCCTGCGGTTGCCGGCCATTCACGCCAGGCGGCGCTTGATTATATTCGCAAGCACGAAGAACTGGATCGAGGTTGGTACGCTGCTCCTCTTGGTTGGCTTGATGCCGACGGGAATGGAGATTTTATTGTAGGGCTCAGATCCGCACTAATATCAGGCGTTAATTGTAGGCTCTTTGCGGGATGCGGCATTGTCAGCGACTCGGACCCAGAACAAGAATATCAAGAAACATGTCTGAAATTATCCGGTCTGCAACAGGCGCTAATTGATAGCGCTCGACCTATTGCAAGTCTGATGCTGGCTTGAMSILDVDYTGLYLCIEEAHKKALETASPVLAAFSCVVATVDPLSLLERAQGYHDSYAFWKARDPAVCMFGWGTEVEINVQGETRFSEVQALWRSLLEHSVCRGPLGPRLVGGFRFDVDGDKDPCWRDFPDACMSLYKTLVVHAPDRDWLLCHCYVDPDADVALLVASYKKHIELLCGREKKLAHGSSNFALYEPANAGQWKSKARLAVEKIQCQAFTKVVLARSVQQVHDEPINPGALVRALSSNSQAHLFAFSRGDSCFVGATPERLACVLDGNLHTHALAGTTRRDEDAAIDRRLGEMLFESNKERHEHALVVEAIREALTPLVSELEISQEPTLHCLPKVQHLNTAIRAQVKGEVSLLNIVAAMHPTPAVAGHSRQAALDYIRKHEELDRGWYAAPLGWLDADGNGDFIVGLRSALISGVNCRLFAGCGIVSDSDPEQEYQETCLKLSGLQQALIDSARPIASLMLAPGPT0003060_47DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_AQUIRED_RESISTANCE|SARSAR-SALICYLIC_ACID_METABOLISMSAR-SALICYLIC_ACID_BIOSYNTHESIS,PGPT0003060-pchA|pmsC-K01851NANA
D1-35_01955843hypothetical proteinATGGATAGAAATAAAAGTTCTCGTGATGTTGATCTGGATATGGTATCCCGGCGGTACGAGTTCTGTTTGGAAAGGGACCTGAGTGCGAACTGGAACCAGGATGACCAATTTAAAACAATTTTGGCCAACGCGCTTTCCATTCCATTGCCCAGTGGTGAAAAGCTATTCATAAAATCAGTCAGGTATTTTCTTGAACAATTAAGTGATCCGCAGTTGAAGAGGGTGGTCGGTGTTTTTTTTAAACAAGAGTCGGCTCACACCAAAGAGCATATTGCCTATAATCGTTTGATTGCAGAACATCGAGGCTACGATCTGGAGCGGTTAGAAGCTCCCTATAAAAAACACAATGAATATATTTCGGAGCACGCTTCGCCAGTTTCGTTGTTAGCCACTACAGTGTGCATGGAACACCTGACGGCCGTTACATCGCACTTGGTAATTACTGATGAGCGTTGCCTCGGCCGTGCGAAAGGAGCAGTGAAAGACTTTTGGTTATGGCATTCGTTGGAGGAGATTGAACATAAAGCAGTTGCCTTTGATGTTTATATGAACGTATGTGGCGATAAAGCCCTGCTTAATCAGACGATGGATTTTACCGTCGGCCAGCTGTGCAAAAACCTAACGTACACAATTTGCCAGATGTACATGATGGAAGGTGGGAAACCTCGAGTCATCAAGGAATGGTTGGAGAAAACGGAGTTTTTGAATGCTGGCGACGGGTTGTTGAAAGGTATGATGAAATACATAGAAGATTTTTATCGTGACGATTTTCACCCGTGGGATCACGATAATAGTCATCTGATTGCCTCGGTCGTCAATCATCTTGACAATGCGCTAGCGTGAMDRNKSSRDVDLDMVSRRYEFCLERDLSANWNQDDQFKTILANALSIPLPSGEKLFIKSVRYFLEQLSDPQLKRVVGVFFKQESAHTKEHIAYNRLIAEHRGYDLERLEAPYKKHNEYISEHASPVSLLATTVCMEHLTAVTSHLVITDERCLGRAKGAVKDFWLWHSLEEIEHKAVAFDVYMNVCGDKALLNQTMDFTVGQLCKNLTYTICQMYMMEGGKPRVIKEWLEKTEFLNAGDGLLKGMMKYIEDFYRDDFHPWDHDNSHLIASVVNHLDNALANANANANANA
D1-35_019561815tycBTyrocidine synthase 2ATGGAAAAATGTTTAAGTTTTTATTTAAGCGCTCAGGCTGAGCGGACTCCGTATGCCCCGGCACTGACCGGCGATAAAGGTTCGTACGATTATTTTACACTAGAACAAGATGTCCGCGCACTTGCGGAAATCTTGACAGAAATGACGCCGGAGAAACAGAGAAGAATAGGTGTGTATCTGGATGATAAGTTTGATGTCTTCATCGCGATGCTGGCCATATTTAGAGCGGACTTGGTATATGTTCCTATTGATGTGACGCTTCCTTTTGAACGTTGTCGATATATGATCAACGACAGTGATCTGGCTTTTGTGATCACCGATCCTGTTCACGCTTCTGCGTTGATGCAAGAGGGCGTACGCACACTGTTCATGAATACACCAAGGCAGGGGGAAAGTGATTCTACACTGCGACGGCAGAAGCGACCACGAGGCATAGAGAGTGCCGACCCCGATAGAATTGCCTATGTTTTGTACACGTCTGGGTCAACGGGGATGCCCAAGGGTGTGGAAATGCCGCACAAGTCGATAGCCAATCTGATTGACGACCAGTTGGAAAATGATGCTTTGTTTAGACGGCCCCTGCGTACGCTGCAATTTGCATCACCTGGATTTGATGTCTCTTGCCAAGAGGTACTTTCATGTCTCGCGGTCGGTGGTGAGTTGGTCATTGCTCCTGACGATATTAGAGCCGATACATCGAAGCTGTTCGAGTTCATTCGTGTCCACGAACTGGAAAGAGCATTTCTCCCTTACTCTGTATTGCAGACCTTAGCGATAGAGTATGAACGTCAGGAGGCGAAAGGTCCTGGCGCCTTTATACACATGATCACCGCTGGCGAACAGTTGCTAATGACCAAAGAAATCATCAAATGGTTAAGTCGATTGGACTGCCGCTTGATCAATCATTATGGTCCGACAGAAACGCATGTGGTTACCACGTATAGTAATAATGCTCCATTTGATCGCTGGCCTTATCACGTTCCCATTGGCAAAGCGATTGGCAATGTGCAGACGTACATTCTAAATGAGTTACTTCAGCCATGCGCGATGGGGGAGGACGGTGAGCTATGTGTGGGCGGAGCATGCCTGTCAAAGGGGTATATTAATTCGGCTGCCGGTAGCCATGATAAGTATATTGAAATATTAACCCCCTCCGGGAAGGCGCAACGTGTTTATAGAACCGGGGATATTGCTCAAGTCAATGAGGCCGGTGAGATTATTTACAAAGGGCGTCGAGACACACAGATAAAGTTGAACGGATATCGTGTCGAGTTGGGTGAGGTCGAGGCTGGCTTAAAGAGCATTCCGGAGGTCAAAGAGGCCGTTGCTGTCGTCAGGCAGCTGGGTGAGAGCTCCGTTGAGAAAGTTTTAATCGGGCTCGTCGTGTTAACGGGTAGGGCGTGGGAGGGGCCGCTCGAAATCGATGAAGTGGACGCGACCTACTTTTCCGGTTTTATCGGAAAACTGCCTGCTTTTATGCAGCCCAAACAGATGTATGCAATCAACAAAATTCCTGTGACGAGCAACGGTAAGCTGGATCGAAGGGCAATTGAGGCGCTGCTTGATGCTCGGATCAACTCGACGTCGCTTGGATTCAACGAAAACGAGGCTGTCGTTGCGAAGTTGTTTTCAAAGCTCTTAGGTATTTCTGTAACCAGCCTTGAAACAGATTTTTTTGAAAAAGGTGGCAACTCACTGTTGGCCGTTCGATTTGTCAAGGCGTTAGAGGACCAGTGTGGCGTTAGGATTAATTTAAGTAGTTTTTTGTTGAGGCCTAACGTTAAAAATACAGCCTCTTTAATTAAGGTCGGATGAMEKCLSFYLSAQAERTPYAPALTGDKGSYDYFTLEQDVRALAEILTEMTPEKQRRIGVYLDDKFDVFIAMLAIFRADLVYVPIDVTLPFERCRYMINDSDLAFVITDPVHASALMQEGVRTLFMNTPRQGESDSTLRRQKRPRGIESADPDRIAYVLYTSGSTGMPKGVEMPHKSIANLIDDQLENDALFRRPLRTLQFASPGFDVSCQEVLSCLAVGGELVIAPDDIRADTSKLFEFIRVHELERAFLPYSVLQTLAIEYERQEAKGPGAFIHMITAGEQLLMTKEIIKWLSRLDCRLINHYGPTETHVVTTYSNNAPFDRWPYHVPIGKAIGNVQTYILNELLQPCAMGEDGELCVGGACLSKGYINSAAGSHDKYIEILTPSGKAQRVYRTGDIAQVNEAGEIIYKGRRDTQIKLNGYRVELGEVEAGLKSIPEVKEAVAVVRQLGESSVEKVLIGLVVLTGRAWEGPLEIDEVDATYFSGFIGKLPAFMQPKQMYAINKIPVTSNGKLDRRAIEALLDARINSTSLGFNENEAVVAKLFSKLLGISVTSLETDFFEKGGNSLLAVRFVKALEDQCGVRINLSSFLLRPNVKNTASLIKVGNANANANANA
D1-35_019571182fabF_1COG03043-oxoacyl-[acyl-carrier-protein] synthase 2ATGAAAAGCAAAGTTGTGGTGGTGGGGCTGGGTGTGAGTACGTCTGTTGGTCAGGGGGTTAATGAAAATTGGCAGGCGATGGTGAGCGGTGGGTCAAATTTTAAACATTCAAAGCGGCTATGCGGGAAAAGTATACGAACTTCTTTCGCGGCAGTCGATGATCGCTTCGAAGAAGAATTAAATCCTCGGGTAGTTATAGAAACGTATATTAAGGAGGTTGTTGCGGAAGCCTGCATTGATGCCGGCGGTGGTACGTTTGATCGCATGTATTATTCGCTTCCTAATGGCATGTATTATTGGCATGAGCGTCTCGCGGATCGAACGGCAAGCCCCCAATCGGTACGCAATGCTTTTGAGACGTTTTCTTCTGAGGAGGAATTGTCTGCGTTTTTTTTTGAAACGTATGGCCTTGCTCAGTATCCGGCAATCATCGCAACCGCATGCGCATCCTCTGCAAGCGCAATTCAGTTGGGTTACGAAGCAATTGTCCGCGGGAATGCCAAAAGGGTCTTAGTTGCAGCCGCGGACAGCTCGATTTATGACGAAACCGTTACTAAGTTTAATAACCTGTCGGCGTTGTCAACACGTAATGATTCGCCGAGTACGGCATGTCGCCCTTTTAGTCAAAGTCGTGACGGGTTTGTAATTGGTGAAGGGGGTGGGTGTATCGTGCTTGAAAGGGAAGATATAGCCAAGAAACGAAACGCGAGAATCTACGCTTATCTCAGCGGCTGCGGAAATACCACGGATAACGTTCATCGGACCAAAGGTGATCCGCAAGGGGCCGGTATCAAGAACTGCATGCTCAAAGCGATTGAAGATGCCGGACTGACTCCCTCGGCGATCAGTTGCGTGAATGCGCACGGTACGAGTACACCCGAGAATGATCGGATGGAAACCAAGATTATTGGGGAGTTGTTGGGAAAAGAAACATTAGTGACGTCAGTTAAGTCGTTGATCGGTCATACCATTCATGCCGCCGGCGTGATTGAGGCGGTGGTGTCGGTTTTAAGTTTGAAGCATCAGGTCGTAACACCAACGCTAAACTATGATGGTGGCATGGCGGATCACGGTGTCACGATTGTTGATGCCAATCACCACCATGCTCATATTGAAAGTGTCATTTCTAACTCATTCGGCTTTGGTGGGCAGAATGTATCGGTCGTCTTTACGCGAGCCTGAMKSKVVVVGLGVSTSVGQGVNENWQAMVSGGSNFKHSKRLCGKSIRTSFAAVDDRFEEELNPRVVIETYIKEVVAEACIDAGGGTFDRMYYSLPNGMYYWHERLADRTASPQSVRNAFETFSSEEELSAFFFETYGLAQYPAIIATACASSASAIQLGYEAIVRGNAKRVLVAAADSSIYDETVTKFNNLSALSTRNDSPSTACRPFSQSRDGFVIGEGGGCIVLEREDIAKKRNARIYAYLSGCGNTTDNVHRTKGDPQGAGIKNCMLKAIEDAGLTPSAISCVNAHGTSTPENDRMETKIIGELLGKETLVTSVKSLIGHTIHAAGVIEAVVSVLSLKHQVVTPTLNYDGGMADHGVTIVDANHHHAHIESVISNSFGFGGQNVSVVFTRAPGPT0008360_1793DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008360-fabF-K09458NANA
D1-35_019581251hypothetical proteinATGATTGTTGCAGGGAAAAATGAGGTGCCAGCGCTATTATTGAATGGTGTTGATGTAATGCTTGAATCTTGGGCGGATTATATAATTGTGTATCCGCACACCTTGGATAAGGAGCGCTTCGTTACGAGTCTTCAGGCTGCGCTTGATATTAATCCCTATTTTTCCGGAAGGAAATATTCCAAGGATGGTGTTCAAACGTTTGTCACTGGTGGAAATGAAGGTGTGTTGCTGGAGACCCAACAGTTCAACGTTGAGTTACCATCGCGCTTCTACGAGAACGACTACCACGGGTATGACCTGCTCTGTGGGAAGGACTTCAGGGCAGGGCATAGGCTTTCACGCTCAAGCTTCAAGCACCCCCTGTTCCAGATAAAACTATCTGAATTTGAGGGGGCGAGCGTTTTGGGTTTGAGTGTCTGGCACTCGTTGTCGGATGGCTCCACCTTCTTTAATTTCATCCGGCTCCTGTCACGTTTGTACATGGGGCTCGAGACCGAAAGCCATACACCGGATTTTGCTCGTATCGGCAAGGGAAGGGGGGCAGATGTCACTTCGTTGCTTGTTGATGTATGGGATACACCTACCGGCCCGGAAAAATCTCCCCTCTTTTCGGAGGCCACTTTCGTTTTGAATGAAGCGTCAGTGGCTCGAATCGTAGGCGGCTTCGACTGCGTTGGTTTTATGCGTTACGACTACATCATAGCGGACGCATGGAAGTACATCAGTGCAGGTTTGGCTTTGGACGTTGATGATACTGTGTCACTCTATCCAGTGTATGACGCAAGGCAACTTACCACGGTGGGACCAAACTATGTTGGGAATTTATTATGTTACCCTTCTATCCACCTGTCGACGTCAGACATTGCCACTATTAAGTTGGATATGCTGTCCTCGTTGATACGCGAAGGGGCTTTTGATCTCGTCGTTAAGGGTGACGAATTGCTTGAAGAGATTCAGGAGATTGCGTGTTTTTCTCAGCGGAGCGCTAAAGGCCGTTATTTGCTTAAGCCGCTTTATGACAGTATGTACGGCTCGGGGCTGTTATTTAATAACCTGATGGCCATGCCTTATAAGGAATTTGATTTTGGTGGTGGCCCGTCTCACATTGACTTGCCTCTTTCGGACCCTATTCGATTTGTTCAAATATATCCGTCGGTCGCTAATCCGGGGTGTTTGGTTGTTAAGGTAAATTTGCCAGAGGCCGAGTTGATTTTATTCAGTGAGGCATACACGAAAGGACTACAAGAATGAMIVAGKNEVPALLLNGVDVMLESWADYIIVYPHTLDKERFVTSLQAALDINPYFSGRKYSKDGVQTFVTGGNEGVLLETQQFNVELPSRFYENDYHGYDLLCGKDFRAGHRLSRSSFKHPLFQIKLSEFEGASVLGLSVWHSLSDGSTFFNFIRLLSRLYMGLETESHTPDFARIGKGRGADVTSLLVDVWDTPTGPEKSPLFSEATFVLNEASVARIVGGFDCVGFMRYDYIIADAWKYISAGLALDVDDTVSLYPVYDARQLTTVGPNYVGNLLCYPSIHLSTSDIATIKLDMLSSLIREGAFDLVVKGDELLEEIQEIACFSQRSAKGRYLLKPLYDSMYGSGLLFNNLMAMPYKEFDFGGGPSHIDLPLSDPIRFVQIYPSVANPGCLVVKVNLPEAELILFSEAYTKGLQENANANANANA
D1-35_019591587dhbECOG10212,3-dihydroxybenzoate-AMP ligaseATGAAGTCGAGCACGCCTGAAATCATATTCGATGATTATTTCAAGAAGGGGGTGCTACCTAAGGCCGATCTATTTTCATCGCTCGTTGATTGGGCTGATGAGTTTGGCGAACGTGTTGCGTTGAAGGATGAGTTTCGGCAACTGTCTTATCGGCAGTTGCTTGAGGAAGCATCAGGATTTGCCCGCTTACTCTCATCTCGTGGTTTGCAGCGTGACGATCGGGTGCTTGTTCAGTTACCTAACTGTGTCAATTTTTTTATCGTACTGTTCGCTGTTATTCGTGTGGGGGCCTTGCCGGTTCTGGTACTGCCGGGGCATCGGTCGCATGAGATCAGGGGCGTGCATAAGGTCGCTGACGCTCGTTTCTATATAGCGCAACGCGAGCATGATCACTTCAGCTATGAAAGCATTGCGACGATGCTGATCGGTGAGGGGCTGGATAAAAATAGTGTTGTCTTTTTCGATGATCTCGGCTTTTCAAGGGCGATCGATGAGCACGAAGAAGATGCCTTTGTTCCTCCTGCACCTGATGATATTGCCTTGTTGTTGTTGTCGGGAGGCACTACGAATACACCAAAGCTAATTCCTAGGACTCATGCCGATTATGTGTTCAATTTCACCCACATGGCCACCGAGTGCCTGCTTGACACTTCTTCTCGTTATTTGTGTGCAGTGCCGGTGGCTCATAACTTCGCGCTTGGCTGCCCGGGCGTTCTGGGCATCATGGCCATGGGCGGATTTGCTTACCTCTTGGCGCGCCCCGATATCCTGGTTTTTTCTGAAATAGTCTCTCAGGAGCGGATCACCGTTACGGCGCTGGTGCCTGCTTTGGCTGAGCTGCTTGTTGAGTATATGGAGTTGGGCGTCGAGGCGTTCTCCAGCCTCACACTGATCCAGGTCGGTGCGGCGAAGTTTTCCGAAGCGTCAGCCCAGAAGATACGGTCTTTTTTGAATTGTGAGCTCCAGCATATTTATGGGATGGCGGAAGGGCTGCTCTGTTTCAACCGTCGTTTTGATCCGGTGTCACTCAAGATCAGCACCCAGGGACGGCCGTTGAGCGCCGTCGATCTTCTGCGCGTTGTTGATGAACACGGTCAGGATTTGCCACAAGGTGGGGTGGGAGAGCTGTATGTCAGAGGCCCCTACACGATTCGGGGATATTTCAATAATGCAGAAGCCAACCGTGAGGGGTTCGACTCGGAAGGTTTTTATAAGACTGGAGACTTGGTTCGGCTTGATGAGGGTGGCAATGTGATAGTGCTGGGCAGAGTCAAAGAGCAGATCAATCGAGCGGGAGAAAAGTACTCGCCCGCAGATACCGAAGGAGTATTGCTCGCGTGGGACAGAATCGATGCTTGTTCCGTAGTTGGGGTGGAGCGCATAGCGGAGGGTGACCGGGTTATATTTTTTATCCAGCCTCGTGGGCAGACCCTCAGTAGGGAAGAGGTTTGTCGCTACCTTGAGGTCCAGGGCGTCGCAGGCTACAAATATCCCGATGAGGTCATCATGGTCAGTGCCCTACCGCTTACGGCTGTTGGCAAAATTGATAAGAAGAAGCTGGCCGCGCAGTACGCGTCGATGGCGTGAMKSSTPEIIFDDYFKKGVLPKADLFSSLVDWADEFGERVALKDEFRQLSYRQLLEEASGFARLLSSRGLQRDDRVLVQLPNCVNFFIVLFAVIRVGALPVLVLPGHRSHEIRGVHKVADARFYIAQREHDHFSYESIATMLIGEGLDKNSVVFFDDLGFSRAIDEHEEDAFVPPAPDDIALLLLSGGTTNTPKLIPRTHADYVFNFTHMATECLLDTSSRYLCAVPVAHNFALGCPGVLGIMAMGGFAYLLARPDILVFSEIVSQERITVTALVPALAELLVEYMELGVEAFSSLTLIQVGAAKFSEASAQKIRSFLNCELQHIYGMAEGLLCFNRRFDPVSLKISTQGRPLSAVDLLRVVDEHGQDLPQGGVGELYVRGPYTIRGYFNNAEANREGFDSEGFYKTGDLVRLDEGGNVIVLGRVKEQINRAGEKYSPADTEGVLLAWDRIDACSVVGVERIAEGDRVIFFIQPRGQTLSREEVCRYLEVQGVAGYKYPDEVIMVSALPLTAVGKIDKKKLAAQYASMAPGPT0003525_4DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-YERSINIABACTIN_METABOLISM,PGPT0003525-irp5|ybtE-K04783NANA
D1-35_019601290gltACOG0372Citrate synthaseATGGCTGACAAAAAAGCGCAGTTGATCATCGAGGGCGCAGCCCCCGTCGAGCTGCCCATTTTAACCGGCACCGTTGGTCCCGATGTAATCGACGTACGGGGCCTGACGGCCACGGGCCGTTTCACCTTTGACCCAGGTTTCATGTCGACCGCCTCGTGCGAGTCGAAAATCACCTATATCGACGGCGACAACGGCATCCTGCTGCACCGCGGCTACCCGATCGAGCAACTGGCTGAAAAATCGGACTACTTGGAAACCTGCTACCTGCTGCTCAACGGCGAGCTGCCAACCGCAGAGCAAAAGGCCCAGTTCGTCAGTACCGTGAAGAACCACACCATGGTTCATGAACAGTTGAAGACCTTCTTCAACGGTTTCCGTCGCGATGCCCACCCGATGGCCGTCATGTGCGGCGTTGTCGGCGCCCTTTCGGCCTTCTACCACGACTCCCTGGACATCAATAACCCCCAGCATCGCGAAATCTCCGCGATCCGCCTGGTGGCGAAGATGCCGACCCTGGCAGCCATGGTCTACAAGTACTCCATGGGCCAGCCCATGATGTATCCGCGCAACGACCTGACCTATGCAGAGAACTTCCTGCATATGATGTTCAACACCCCGTGCGAGATCAAACCGATCAGCCCGGTGCTCGCCAAGGCCATGGACCGGATCTTCATCCTCCATGCCGACCACGAGCAGAACGCCTCCACGTCCACCGTGCGCCTGGCCGGTTCGTCGGGTGCCAACCCGTTCGCCTGTATCGCCGCCGGTATCGCTGCACTCTGGGGCCCGGCCCACGGCGGTGCCAACGAAGCGGTACTGACCATGCTCGATGAAATCGGCGATGTCTCGAACATCGACAAGTTCATCGCCAAGGCCAAGGACAAGAACGATCCATTCAAGCTGATGGGCTTCGGTCATCGGGTCTACAAGAACCGCGACCCACGCGCCACCGTGATGAAGCAGACCTGCGACGAAGTGCTCAAGGAACTGGGAATCAAGAACGATCCGCAACTCGAACTGGCCATGCGCCTGGAGGAGATCGCCCTGACCGACCCGTACTTCATCGAGCGCTCGCTCTACCCGAACGTCGACTTCTACTCGGGGATCATCCTCAAGGCGATCGGCATTCCAACCAGCATGTTCACCGTGATCTTCGCCCTGGCGCGGACCGTGGGCTGGATCTCCCACTGGAAGGAAATGCTCTCCAGCCCGTACAAGATCGGCCGCCCACGCCAGTTGTACACCGGCTACGAGTCGCGTGACATTACCCGGTTGGAAGACCGCAAGTAAMADKKAQLIIEGAAPVELPILTGTVGPDVIDVRGLTATGRFTFDPGFMSTASCESKITYIDGDNGILLHRGYPIEQLAEKSDYLETCYLLLNGELPTAEQKAQFVSTVKNHTMVHEQLKTFFNGFRRDAHPMAVMCGVVGALSAFYHDSLDINNPQHREISAIRLVAKMPTLAAMVYKYSMGQPMMYPRNDLTYAENFLHMMFNTPCEIKPISPVLAKAMDRIFILHADHEQNASTSTVRLAGSSGANPFACIAAGIAALWGPAHGGANEAVLTMLDEIGDVSNIDKFIAKAKDKNDPFKLMGFGHRVYKNRDPRATVMKQTCDEVLKELGIKNDPQLELAMRLEEIALTDPYFIERSLYPNVDFYSGIILKAIGIPTSMFTVIFALARTVGWISHWKEMLSSPYKIGRPRQLYTGYESRDITRLEDRKPGPT0001455_2802DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001455-CS|gltA-K01647NANA
D1-35_01961258sdhCCOG2009Succinate dehydrogenase cytochrome b556 subunitATGCTTTATGCATTGAGCAAGTCGCTGGAGTCCGCCGAAGGGTTTGCCGAGGTGAAGGCGTACATGACCAGCCCCTTGGCCAAGTTCATAGCTTGGGCCCTGCTTTCGGCGTTGCTCTATCACATGGTGGCCGGCGTGCGCCATCTGATGATGGACATGGGCATCGGCGAGACGCTAGAGGGTGGCAAGCTGGGCTCGAAGATAATTATTGCCGTATCCGCGGTACTGATCGTTTTGGCAGGAGTATGGATATGGTAAMLYALSKSLESAEGFAEVKAYMTSPLAKFIAWALLSALLYHMVAGVRHLMMDMGIGETLEGGKLGSKIIIAVSAVLIVLAGVWIWPGPT0001595_3553DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001595-sdhC|frdC-K00241NANA
D1-35_01962369sdhDCOG2142Succinate dehydrogenase hydrophobic membrane anchor subunitATGGTAACTAATGTCACGAACCTCTCGCGTTCGGGTCTGTACGACTGGATGGCTCAGCGGGTGTCTGCGGTCGTTCTCGCGGCTTATTTCATCTTCCTGATTGGATATCTCATTGCAAATCCTGGCATTGGCTACGACCAGTGGCACGCGCTGTTTGCAAATAACTGGATGCGTATTTTCAGCCTCCTGACTCTTGTTGCGCTAGGGGCTCACGCCTGGGTTGGGATGTGGACCGTCGCGACCGACTATCTAACGCCTATGGCGCTTGGCAAGTCTGCGACTGTAGTGCGTTTCCTCTTCCAGGCGGTATGCGGCGTTGCGATGTTCGCTTACTTCGTCTGGGGTGTGCAGATTCTCTGGGGTATCTGAMVTNVTNLSRSGLYDWMAQRVSAVVLAAYFIFLIGYLIANPGIGYDQWHALFANNWMRIFSLLTLVALGAHAWVGMWTVATDYLTPMALGKSATVVRFLFQAVCGVAMFAYFVWGVQILWGIPGPT0001590_1239DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001590-sdhD|frdD-K00242NANA
D1-35_019631773sdhACOG1053Succinate dehydrogenase flavoprotein subunitATGGCTAACATTCCAACGATTTCTTTCGACGCCATCATCATTGGTGGTGGCGGTGCCGGCATGCGCGCAGCGCTGCAACTGGCACAGGGCGGTCACAAGACTGCCGTGATCACCAAGGTTTTCCCGACCCGTTCGCACACTGTTTCCGCCCAGGGTGGCATCACTTGCGCCATCGCTTCGGCCGACCCGAACGATGACTGGCGCTGGCACATGTACGATACCGTCAAGGGTTCCGACTACATCGGTGACCAGGACGCTATCGAATACATGTGTCAGGAAGGCCCGGCTGCTGTTTACGAGCTGGACCACATGGGCATGCCGTTCTCGCGTACCGAACAGGGCCGTATCTACCAGCGTCCGTTCGGCGGCCAGTCCAAGGACTACGGCAAGGGCGGCCAGGCTGCACGCACTTGCGCTGCGTCCGACCGTACCGGTCACGCACTGCTGCACACCCTTTATCAGGGCAACCTGAAAGCCGGTACCGTGTTTCTGAACGAGTACTACGCTGTCGACCTGGTGAAGAACCAGGACGGCGCCTTCGTCGGCGTGATCGCGATCTGCATCGAAACTGGCGAAACCACCTACATCCGCGCCAAGGCCACCGTGCTGGCGACCGGCGGTGCGGGCCGTATCTACGCGTCCACCACCAACGCCCTGATCAACACCGGTGACGGCGTCGGCATGGCCCTGCGTGCCGGCGTGCCGGTGCAGGACATCGAGATGTGGCAGTTCCACCCGACCGGCATCGCCGGCGCTGGTGTACTGGTCACCGAAGGCTGCCGTGGTGAAGGTGGTTACCTGATCAACAAGCACGGCGAGCGTTTCATGGAGCGTTATGCTCCGAACGCCAAGGACCTTGCCGGTCGTGACGTCGTGGCTCGTTCGATGGTTAAAGAGATCATTGCCGGTAACGGCTGTGGCCCGAACGGCGACCACGTGATGCTCAAGCTCGACCACCTCGGCGAAGAAGTGCTGCACAGCCGCTTGCCAGGTATCTGCGAACTGTCCAAGACCTTCGCTCACGTCGATCCAGTCGTTGCGCCGGTTCCAGTGGTTCCAACCTGCCACTATATGATGGGCGGCGTTGCCACCAACATTCATGGCCAGGCAATCACCCAAAGCGCCGAAGGCGTGGACGAAATCATCCCTGGCCTGTTCGCAGTGGGTGAAGTGGCGTGCGTATCGGTGCACGGTGCCAACCGCCTGGGTGGCAACTCGCTGCTCGACCTGGTGGTATTCGGCCGCGCTGCCGGTCTGCACCTGGAAAAAGCGCTGACCGACGGTATCGAATACCGCGACGCCAGCGACACCGACATCGACGTGGCCCTCAAGCGTCTGGCCGGTCTCAACGAGCGTACCGAAGGCGAAGACGTCGCCACCCTGCGTCGCGAGCTGCAAAGCTGCATGCAGAACTACTTCGGTGTGTTCCGTACCGGCGAATACATGCAGAAGGGTATTGCCCAGCTGGCGCAATTGCGTGAACGAATCGCCAACGTGAAGATCAACGATAAGTCGCAGGCGTTCAACACTGCCCGTATCGAAGCGCTGGAACTGCAGAACCTGCTGGAAGTGGCCGAAGCCACCGCCATCGCGGCTGAAGTGCGTAAAGAGTCCCGTGGTGCCCATGCCCGCGAAGACTTCGAAGACCGTGACGACGAAAACTGGCTGTGCCACACCTTGTACTTCCCGGGTGAAAAACGCGTCGCCAAGCGTGCCGTGAACTTCTCGCCGAAGACTGTTCCGACTTTCGAACCTAAAGTCCGGACTTATTAAMANIPTISFDAIIIGGGGAGMRAALQLAQGGHKTAVITKVFPTRSHTVSAQGGITCAIASADPNDDWRWHMYDTVKGSDYIGDQDAIEYMCQEGPAAVYELDHMGMPFSRTEQGRIYQRPFGGQSKDYGKGGQAARTCAASDRTGHALLHTLYQGNLKAGTVFLNEYYAVDLVKNQDGAFVGVIAICIETGETTYIRAKATVLATGGAGRIYASTTNALINTGDGVGMALRAGVPVQDIEMWQFHPTGIAGAGVLVTEGCRGEGGYLINKHGERFMERYAPNAKDLAGRDVVARSMVKEIIAGNGCGPNGDHVMLKLDHLGEEVLHSRLPGICELSKTFAHVDPVVAPVPVVPTCHYMMGGVATNIHGQAITQSAEGVDEIIPGLFAVGEVACVSVHGANRLGGNSLLDLVVFGRAAGLHLEKALTDGIEYRDASDTDIDVALKRLAGLNERTEGEDVATLRRELQSCMQNYFGVFRTGEYMQKGIAQLAQLRERIANVKINDKSQAFNTARIEALELQNLLEVAEATAIAAEVRKESRGAHAREDFEDRDDENWLCHTLYFPGEKRVAKRAVNFSPKTVPTFEPKVRTYPGPT0001605_2930DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001605-sdhA|frdA-K00239NANA
D1-35_01964705sdhBCOG0479Succinate dehydrogenase iron-sulfur subunitATGTTGCAAGTCAGTGTGTATCGCTACAACCCTGATCAGGACGCCGCGCCGTTCATGCAGGACTTCCAGGTCGATACCGGTGGTAAAGACCTGATGGTGCTGGACGTGCTGGCCTTGATCAAAGAGCAGGACGAAGGTTTTTCCTATCGTCGCTCGTGCCGCGAGGGCGTTTGCGGCTCCGACGGCATGAACATCAACGGCAAGAACGGCCTGGCCTGCATCACGCCGCTGTCGGCGGTGGTCAAGGGCAACAAGCTGATCGTTCGGCCGCTGCCAGGTCTGCCGGTCATCCGTGACCTGGTCGTCGATATGAGCATCTTCTACAAGCAATACGAGAAGGTGAAGCCATTCCTGCAGAACGACACGCCGGCTCCGGCCATCGAGCGTCTGCAGTCTCCTGAAGAGCGTGAAAAGCTCGACGGTCTGTACGAGTGCATCCTGTGCGCCTGCTGCTCGACCTCGTGCCCATCGTTCTGGTGGAACCCGGACAAATTCCTGGGCCCGGCCGCCCTGCTGCAAGCGTATCGCTTCCTGGCAGACAGCCGTGACACCAAGACGTCCGAGCGTCTGGCCGCACTGGATGACCCGTTCAGCGTATTCCGCTGCCGCGGGATCATGAACTGCGTCAACGTCTGCCCGAAAGGCCTGAACCCGACTAAGGCCATCGGTCACGTACGTAACATGCTGCTGCAAAACGGCGTGTGAMLQVSVYRYNPDQDAAPFMQDFQVDTGGKDLMVLDVLALIKEQDEGFSYRRSCREGVCGSDGMNINGKNGLACITPLSAVVKGNKLIVRPLPGLPVIRDLVVDMSIFYKQYEKVKPFLQNDTPAPAIERLQSPEEREKLDGLYECILCACCSTSCPSFWWNPDKFLGPAALLQAYRFLADSRDTKTSERLAALDDPFSVFRCRGIMNCVNVCPKGLNPTKAIGHVRNMLLQNGVPGPT0001600_3951DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001600-sdhB|frdB-K00240NANA
D1-35_019662832sucACOG05672-oxoglutarate dehydrogenase E1 componentATGCAAGAAAGCGTGATGCAGCGCATGTGGAACAGTGCCCACCTCTCCGGTGGTAACGCTGCCTATGTGGAAGAGCTCTACGAGCTCTACCTGCACGACCCTAACGCTGTGCCAGAAGAATGGCGCACCTACTTTCAGAAGTTGCCGGCTGACGGTAACTCTGCCACCGATGTTTCGCACTCGACGATTCGCGATCATTTCGTGCTGCTGGCAAAGAACCAGCGCCGCGCCCAACCGGTGTCTGCCGGCAGCGTGAGCTCCGAGCATGAGAAGAAGCAAGTTGAAGTACTGCGACTGATCCAGGCCTACCGGATGCGCGGCCACCAGGCAGCCCAGCTGGACCCGCTGGGGCTGTGGCAGCGTCCTGCACCTGCAGACCTGTCGATCACTCATTACGGCTTGACCAATGCCGATCTTGATACGACCTTCCGTGCCGGCGACCTGTTCATCGGCAAAGAGGAAGCGAGCCTACGCGAAATTCACGAAGCGTTGCAGCAGACATATTGCCGCACCATCGGCGCTGAATTCACGCACATCACCGATTCCGAGCAGCGCCAGTGGTTCCAGCAGCGTCTGGAAAGCGTTCGTGGCCGTCCGACGTACTCCGCCGACATCAAGAGCCACTTGCTCGAGCGCGTCACCGCCGGTGAAGGTCTGGAGAAATACCTGGGTACCAAATACCCGGGCACCAAACGTTTCGGCCTGGAAGGCGGCGAAAGCCTGATTCCGATGCTCGACGAGCTGATCCAGCGTTCCGGCTCCTACGGTACCAAGGAAGTCGTCATCGGCATGGCCCACCGTGGTCGCCTGAACGTACTGGTCAATACCTTCGGCAAGAACCCGCGCGAGCTGTTCGACGAGTTCGAAGGCAAGAAGAAGGTCGAGCTGGGTTCCGGTGACGTGAAATACCACCAGGGCTTCTCGTCCAACGTGATGACCACCGGTGGCGAAGTCCACCTGGCCATGGCCTTCAACCCGTCCCACCTGGAAATCGTTTCCCCGGTGGTCGAGGGTTCGGTCCGTGCCCGCCAGGATCGTCGCAACGACCCGACCGGTGAAAAGGTCCTGCCGATTTCCATCCACGGTGACGCGGCATTCGCCGGTCAGGGCGTGGTCATGGAAACCTTCCAGATGTCGCAGACCCGCGGCTTCAAGACTGGCGGTACGGTTCACATCGTCATCAACAACCAGGTCGGTTTCACCATCAGCAACCCGCTGGACTCGCGTTCCACCGAGTACGCTACCGACGTCGCGAAAATGATCCAGGCGCCGATTCTCCATGTGAATGGTGATGACCCGGAAGCCGTGCTGTTCGTGACCCAGCTGGCCATCGACTACCGCATGCAGTACAAGCGCGACGTGGTGATCGACCTGGTCTGCTACCGTCGTCGCGGCCACAACGAGGCCGACGAGCCAAGCGGTACCCAGCCACTGATGTACCAGCAGATCGCCAAGCAGCGCACCACCCGCGAGCTGTACGCCGATCGCCTGACCCAGAGCGGTGTTCTGGATGCCGCACGTATCCAGGAAAAAGTCGATGAATATCGCAACGCCCTGGATAACGGCCTGCACGTTGTAAAAAGCCTGGTCAAGGAACCGAACAAGGAACTGTTCGTGGACTGGCGTCCTTACCTGGGTCACGCCTGGACCGCGCGTCACGACACGCGCTTCGACCTCAAGACCTTGCAGGAACTGTCGGCCAAGCTGCTGGAAATCCCGGAAGGCTTCGTGGTCCAGCGCCAGGTTGCGAAGATCTACGAAGACCGCCAGAAGATGCAAGCCGGCGGCCTGCCGATCAACTGGGGTTACGCCGAAACCATGGCGTACGCGACCCTGGCGTTCGAAGGTCACCCGATTCGCATCACCGGCCAGGACGTAGGCCGCGGTACTTTCTCGCACCGCCACGCGGCGCTGCACAACCAGAAAGACGCCAGCACCTACATCCCGCTGCAACACCTGTACAAAGGCCAGCCACGTTTCGACCTGTACGATTCGCTGCTGTCCGAGGAAGCCGTCCTGGCGTTCGAATATGGCTATTCCACCACCGAGCCGAATGCGCTGGTGATCTGGGAAGCCCAGTTCGGCGACTTCGCCAACGGTGCCCAGGTGGTGGTCGACCAGTTCATCACCAGCGGCGAGCACAAGTGGGGTCGTCTCTGCGGCCTGACCATGCTGCTGCCACACGGTTATGAAGGGCAGGGGCCGGAGCACTCTTCGGCACGTCTGGAGCGTTACCTGCAATTGTGCGCCGAGCACAACGTCCAGGTTTGCGTACCGACGACCCCGGCGCAGATCTACCACCTGCTGCGTCGCCAGGTCATCCGTCCGCTGCGCAAGCCGCTGATCGTGCTGACGCCCAAGTCGCTGTTGCGGCACAAGCTGGCGATTTCCACGCTCGAAGACCTGGCCGAAGGCTCCTTCCAGACCGTTATCTCGGAAATCGACACCCTGGACGCGGCAAAGGTGACTCGCCTGATCCTGTGCAGCGGCAAGGTCTACTACGATCTGCTGGAAAAACGTCGTGCCGAAGGCCGCGAAGACATTGCCATCGTGCGTATCGAGCAGCTCTACCCGTTCCCGGAAGACGACCTGATGGAGGCCATCGCGCCTTACACCAACCTCACCCACGTGGTGTGGTGTCAGGAAGAACCGATGAACCAGGGCGCGTGGTACAGCAGCCAGCATCACCTGCGTCGCAGCATCGGCAACCATAACAAGGCCCTGGGCCTGGAGTACGCCGGTCGTGACGCTTCTGCCGCCCCTGCGTGTGGTTATGCGTCGATGCACGCCGAGCAGCAGGAAAAACTGCTGCAAGATGCCTTCACTGTTTAAMQESVMQRMWNSAHLSGGNAAYVEELYELYLHDPNAVPEEWRTYFQKLPADGNSATDVSHSTIRDHFVLLAKNQRRAQPVSAGSVSSEHEKKQVEVLRLIQAYRMRGHQAAQLDPLGLWQRPAPADLSITHYGLTNADLDTTFRAGDLFIGKEEASLREIHEALQQTYCRTIGAEFTHITDSEQRQWFQQRLESVRGRPTYSADIKSHLLERVTAGEGLEKYLGTKYPGTKRFGLEGGESLIPMLDELIQRSGSYGTKEVVIGMAHRGRLNVLVNTFGKNPRELFDEFEGKKKVELGSGDVKYHQGFSSNVMTTGGEVHLAMAFNPSHLEIVSPVVEGSVRARQDRRNDPTGEKVLPISIHGDAAFAGQGVVMETFQMSQTRGFKTGGTVHIVINNQVGFTISNPLDSRSTEYATDVAKMIQAPILHVNGDDPEAVLFVTQLAIDYRMQYKRDVVIDLVCYRRRGHNEADEPSGTQPLMYQQIAKQRTTRELYADRLTQSGVLDAARIQEKVDEYRNALDNGLHVVKSLVKEPNKELFVDWRPYLGHAWTARHDTRFDLKTLQELSAKLLEIPEGFVVQRQVAKIYEDRQKMQAGGLPINWGYAETMAYATLAFEGHPIRITGQDVGRGTFSHRHAALHNQKDASTYIPLQHLYKGQPRFDLYDSLLSEEAVLAFEYGYSTTEPNALVIWEAQFGDFANGAQVVVDQFITSGEHKWGRLCGLTMLLPHGYEGQGPEHSSARLERYLQLCAEHNVQVCVPTTPAQIYHLLRRQVIRPLRKPLIVLTPKSLLRHKLAISTLEDLAEGSFQTVISEIDTLDAAKVTRLILCSGKVYYDLLEKRRAEGREDIAIVRIEQLYPFPEDDLMEAIAPYTNLTHVVWCQEEPMNQGAWYSSQHHLRRSIGNHNKALGLEYAGRDASAAPACGYASMHAEQQEKLLQDAFTVPGPT0001530_2185DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001530-sucA-K00164NANA
D1-35_019671224sucBCOG0508Dihydrolipoyllysine-residue succinyltransferase component of 2-oxoglutarate dehydrogenase complexATGGCTATCGAAATCAAAGCCCCGTCATTCCCGGAATCGGTTGCCGATGGCACCGTTGCCACCTGGCACAAGAAACCAGGCGAGGCCGTCAAGCGTGACGACCTGATCGTCGACATCGAGACCGACAAGGTCGTGCTGGAAGTATTGGCCGAAGCCGACGGCGTGCTGGGCGCAATCATTGCCGAAGAGGGCGCCACCGTTCTGTCGAACCAGGTCCTGGGCTCGATCGAAGAGGGCGGCGCTGCCGCCGCCGCTCCAGCCGCTGCTGCTGCACCGGCTGCCGCTCAGGCCGCTGCTCCTGCTGCATCGGGCGAAGACGATCCAGTCGCTGCCCCTGCTGCTCGCAAGCTGGCTGAAGAGAACGGTATCAACATCGCTTCCGTTGCCGGCACCGGCAAGGGTGGTCGCGTGACCAAGGAAGACGTGGTTGCAGCTGTTGCCGCCAAGAAAGCCGCACCGGCCGCAGCACCAGCCAAGCCTGCCGCGCCTGCCGCTTCCGCACCAGTGTTCGCTGCCGGCGACCGCGTGGAAAAGCGCGTACCGATGACCCGCCTGCGTGCCAAGGTTGCCGAGCGTCTGGTCGAAGCCCAGTCGAACATGGCGATGCTGACCACTTTCAACGAAGTCGACATGACCGAAGTCATGGCCCTGCGTTCGAAGTACAAGGATCTGTTCGAGAAGTCCCACAACGGCGTACGCCTGGGCTTCATGTCGTTCTTCGTCAAGGCTGCCACCGAAGCGCTGAAACGCTTCCCGGCCGTCAACGCGTCGATCGACGGTTCCGACATCGTCTACCACGGCTACGCCGACATCGGTGTCGCGGTCTCCAGCGACCGTGGCCTGGTGGTTCCGGTACTGCGCAACGCCGAACTGATGAGCCTGGCCGAAATCGAAGGCGGCATCGCCACCTTCGGCAAGAAGGCCCGTGACGGCAAGCTGTCCATCGAAGAGATGACCGGCGGTACGTTCACCATCACCAACGGTGGTACATTCGGTTCGATGATGTCGACCCCGATCGTCAACCCGCCACAAGCGGCTATCCTCGGCATGCACAACATTCTGCAGCGTCCGATGGCGATCAATGGTCAAGTCGTGATTCGTCCGATGATGTACCTGGCACTGTCCTACGATCACCGCCTGATCGACGGCAAAGAAGCCGTGACGTTCCTGGTCACCATCAAGAACCTGCTTGAAGATCCGGCTCGTCTGCTGCTGGATATCTGAMAIEIKAPSFPESVADGTVATWHKKPGEAVKRDDLIVDIETDKVVLEVLAEADGVLGAIIAEEGATVLSNQVLGSIEEGGAAAAAPAAAAAPAAAQAAAPAASGEDDPVAAPAARKLAEENGINIASVAGTGKGGRVTKEDVVAAVAAKKAAPAAAPAKPAAPAASAPVFAAGDRVEKRVPMTRLRAKVAERLVEAQSNMAMLTTFNEVDMTEVMALRSKYKDLFEKSHNGVRLGFMSFFVKAATEALKRFPAVNASIDGSDIVYHGYADIGVAVSSDRGLVVPVLRNAELMSLAEIEGGIATFGKKARDGKLSIEEMTGGTFTITNGGTFGSMMSTPIVNPPQAAILGMHNILQRPMAINGQVVIRPMMYLALSYDHRLIDGKEAVTFLVTIKNLLEDPARLLLDIPGPT0001535_2848DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001535-sucB-K00658NANA
D1-35_019681437lpdGCOG1249Dihydrolipoyl dehydrogenaseATGACTCAGAAATTCGACGTGGTAGTGATTGGTGCGGGCCCTGGCGGCTACGTAGCGGCCATCAAGGCTGCGCAACTGGGCCTTACCACTGCCTGCATCGAGAAATACACCGACAAGGAAGGCAAGCAAGCCTTGGGCGGTACTTGCCTGAACGTCGGTTGCATTCCTTCCAAGGCGCTGCTGGACAGCTCTTGGAAATACAAGGAAGCGAAAGAAAGCTTCAACGTTCACGGTATCTCTACCGGTGAAGTGAAAATGGACGTCGCCGCGATGGTTGGCCGCAAGGCCGGCATCGTCAAGAACCTGACCAGCGGTGTTGCCACCCTGTTCAAGGCCAACGGCGTGACTTCCATCGAAGGCCACGGCAAGCTGCTGCTGGGCAAGAAAGTCGAAGTGACCAAGCCAGACGGCTCGGTTGAAGTGATCGAAGCCGAAAACGTCATCCTGGCGCCAGGCTCGCGTCCGATCGACATCCCGCCGGCTCCGGTCGACCAGAACGTCATCGTCGACTCCACCGGTGCCCTGGAATTCCAGACCGTGCCAAAACGCCTGGGCGTGATCGGCGCTGGCGTGATCGGCCTGGAACTGGGTTCGGTATGGTCGCGCCTGGGCGCTGAAGTGACCGTGCTCGAAGCCCTCGACACCTTCCTGATGGCCGCCGACACCGCGGTTTCCAAGGAAGCGCTGAAGACCCTGACCAAGCAAGGCCTGGACATCAAGCTGGGCGCTCGCGTGACCGGCTCCAAGGTCAACGGCGAAGAAGTCGTGGTCAACTACACCGACGCCAACGGCGAACAGACCATCACGTTCGACAAGCTGATCGTAGCGGTCGGTCGTCGTCCGGTGACCACTGACCTGCTGGCCGCCGATTGCGGCGTGGAAATCGACGAGCGCGGCTTCATCGCGGTCGATGACCATTGCGCAACCGCCGTACCGGGCGTCTTCGCCATCGGTGACGTGGTTCGCGGCATGATGCTGGCGCACAAGGCGTCCGAAGAAGGCATCATGGTTGTCGAGCGCATCAAGGGCCACAAGGCCCAGATGAACTACGACCTGATCCCATCGGTTATCTACACCCACCCGGAAATCGCATGGGTCGGTAAAACCGAGCAGGCCTTGAAAGCCGAAGGCGTTGAAGTTAACGTCGGCACCTTCCCGTTCGCCGCCAGCGGCCGCGCCATGGCAGCCAACGACACCGGCGGTTTCGTGAAAGTCATCGCCGACGCCAAGACCGACCGCGTATTGGGCGTTCACGTCATTGGCCCAAGCGCTGCCGAGCTGGTACAGCAAGGCGCGATCGGTATGGAATTCGGCACCAGCGCTGAAGACCTGGGCATGATGGTCTTCTCCCATCCGACCCTGTCCGAAGCCTTGCACGAAGCGGCCCTGGCCGTGAATGGCGGCGCCATCCACGTGGCCAACCGCAAGAAGCGTTAAMTQKFDVVVIGAGPGGYVAAIKAAQLGLTTACIEKYTDKEGKQALGGTCLNVGCIPSKALLDSSWKYKEAKESFNVHGISTGEVKMDVAAMVGRKAGIVKNLTSGVATLFKANGVTSIEGHGKLLLGKKVEVTKPDGSVEVIEAENVILAPGSRPIDIPPAPVDQNVIVDSTGALEFQTVPKRLGVIGAGVIGLELGSVWSRLGAEVTVLEALDTFLMAADTAVSKEALKTLTKQGLDIKLGARVTGSKVNGEEVVVNYTDANGEQTITFDKLIVAVGRRPVTTDLLAADCGVEIDERGFIAVDDHCATAVPGVFAIGDVVRGMMLAHKASEEGIMVVERIKGHKAQMNYDLIPSVIYTHPEIAWVGKTEQALKAEGVEVNVGTFPFAASGRAMAANDTGGFVKVIADAKTDRVLGVHVIGPSAAELVQQGAIGMEFGTSAEDLGMMVFSHPTLSEALHEAALAVNGGAIHVANRKKRPGPT0001380_2638DIRECT 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
D1-35_019701167sucCCOG0045Succinate--CoA ligase [ADP-forming] subunit betaATGAATCTTCACGAGTATCAGGGTAAGCAGCTGTTCGCTGAGTACGGCCTGCCAGTATCCACCGGTTACGCGGTAGACACCCCGGAAGCGGCAGCAGAAGCTTGCGACAAGATCGGCGGCAGCGAATGGGTTGTCAAAGCCCAGGTTCACGCCGGTGGTCGCGGTAAAGCGGGCGGCGTCAAGCTGGTTCGCAGCAAAGAAGACGCCAAAGCCTTCGCGCAGCAGTGGCTGGGCAAGCGTCTGGTGACTTACCAGACTGACGCCAACGGTCAGCCAGTCACCAAGATCCTGGTTGAATCGTGCACTGATATCGCTAAAGAGCTGTACCTGGGCGCTGTCGTTGACCGTTCGAGCCGTCGTATCGTGTTCATGGCTTCCACCGAAGGTGGCGTGGACATCGAGAAAATCGCTCACGACACCCCTGAGAAAATCCTCAAGGCCACCATCGATCCACTGGTTGGCGCACAGCCATTCCAGGGTCGCGAGCTGGCTTTCCAGCTGGGCCTGGAAGGCAAGCAGGTTGCCCAGTTCGCCAAGATCTTCGTGGGTCTGGCCAAACTGTTCCAGGATCACGATCTGGCCCTGCTGGAAGTGAACCCGCTGGTGATCAAGGCCGACGGCGATCTGCACTGCCTCGATGCCAAGATCAACATCGACGCCAACGCCATGTACCGTCAGCCTAAGCTGAAGACTTTCCACGATCCGTCGCAGGACGATCCGCGCGAAGCGCACGCTGCCAAGTTCGAACTGAACTACGTAGCGCTGGAAGGCAACATCGGCTGCATGGTCAACGGTGCCGGCCTGGCCATGGGTACCATGGACATCGTCAACCTGCATGGCGGCAAGCCAGCCAACTTCCTCGACGTGGGCGGCGGTGCTACCAAGGAACGCGTTACCGAAGCGTTCAAGATCATCCTGTCCGACTCCAACGTCGCTGCAGTACTGGTCAACATCTTCGGCGGCATCGTTCGCTGCGACATGATTGCCGAAGGCATCATTGGCGCCGTGAAAGAAGTCGGCGTGAAAATCCCGGTTGTTGTGCGCCTTGAAGGCAACAACGCTGAACTGGGCGCTAAAGTACTGGCAGAAAGCGGTTTGAACATCATCGCTGCTACCAGCCTGACCGACGCTGCTCAACAAGTCGTCAAAGCTGCGGAGGGCAAATAAMNLHEYQGKQLFAEYGLPVSTGYAVDTPEAAAEACDKIGGSEWVVKAQVHAGGRGKAGGVKLVRSKEDAKAFAQQWLGKRLVTYQTDANGQPVTKILVESCTDIAKELYLGAVVDRSSRRIVFMASTEGGVDIEKIAHDTPEKILKATIDPLVGAQPFQGRELAFQLGLEGKQVAQFAKIFVGLAKLFQDHDLALLEVNPLVIKADGDLHCLDAKINIDANAMYRQPKLKTFHDPSQDDPREAHAAKFELNYVALEGNIGCMVNGAGLAMGTMDIVNLHGGKPANFLDVGGGATKERVTEAFKIILSDSNVAAVLVNIFGGIVRCDMIAEGIIGAVKEVGVKIPVVVRLEGNNAELGAKVLAESGLNIIAATSLTDAAQQVVKAAEGKPGPT0019515_2116DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0019515-sucC-K01903NANA
D1-35_01971885sucDCOG0074Succinate--CoA ligase [ADP-forming] subunit alphaATGAGCGTCCTGATCAACAAAGACACCAAGGTTATCTGCCAGGGCATTACCGGTTCGCAAGGTAGCTTCCACACCCAGCAAGCCATCGAATACGGCACCCAGATGGTCGGCGGTGTAACGCCGGGCAAAGGCGGCACCGAGCACCTGGGCCTGCCAGTGTTCAACACCGTGAAAGACGCTGTAGCTGCCACTGGCGCCACCGCCAGCGTGATCTACGTTCCAGCTCCTTTCTGCAAGGACTCCATCCTGGAAGCAGCATTCGGCGGCATCAAGCTGATCGTTTGCATCACCGAAGGCATTCCTACCCTGGACATGCTGGATGCCAAGGTCAAGTGCGACGAACTGGGTGTTACCCTGATCGGCCCTAACTGCCCAGGCGTGATCACTCCAGGCGAATGCAAGATCGGCATCATGCCAGGTCACATTCACTTGCCAGGCAAGGTCGGTATCGTTTCCCGTTCCGGCACCCTGACCTACGAAGCCGTGAAGCAGACCACTGACGCCGGTTTCGGTCAGTCCACTTGCGTCGGCATCGGCGGTGACCCGATCCCAGGCTCCAACTTCATCGACATCCTGAAGCTGTTCCAGGAAGACCCGAAGACCGAAGCGATCGTCATGATCGGTGAGATCGGCGGTTCCGCTGAAGAAGAAGCCGCTGCCTACATCAAGGCAAACGTGACCAAGCCGGTCGTTTCCTACATCGCTGGTGTGACTGCCCCTGCGGGCAAGCGCATGGGCCATGCGGGTGCAATCATCTCCGGCGGCAAAGGCACTGCGGACGAGAAGTTCGCTGCGCTGCAAGACGCAGGCGTGAAAACCGTGCGTTCGCTGGCAGACATCGGCAAGGCCCTGGCCGAGCTGACTGGCTGGGAAATGAAGAAGTAAMSVLINKDTKVICQGITGSQGSFHTQQAIEYGTQMVGGVTPGKGGTEHLGLPVFNTVKDAVAATGATASVIYVPAPFCKDSILEAAFGGIKLIVCITEGIPTLDMLDAKVKCDELGVTLIGPNCPGVITPGECKIGIMPGHIHLPGKVGIVSRSGTLTYEAVKQTTDAGFGQSTCVGIGGDPIPGSNFIDILKLFQEDPKTEAIVMIGEIGGSAEEEAAAYIKANVTKPVVSYIAGVTAPAGKRMGHAGAIISGGKGTADEKFAALQDAGVKTVRSLADIGKALAELTGWEMKKPGPT0001540_1578DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001540-sucD-K01902NANA
D1-35_019721314brnQCOG1114Branched-chain amino acid transport system 2 carrier proteinATGAAAGTGTTGAAAGGCCAGGACATCCTGGCGCTTGGTTTCATGACATTTGCCCTGTTCGTCGGGGCCGGCAACATCATCTTTCCGCCTATCGTCGGTTTGCAGTCCGGGCCTCATGTCTGGATGGCGGCGCTGGGCTTTCTCATCACGGCGGTCGGGCTGCCGGTGATCACGGTCGTTGCGCTGGCCAAGGTCGGTGGCGCGATGGACGCCTTGAGCAGCCCCATCGGCAAGATCGCCGGTGGTTTGCTGGCAGCGGTGTGCTACCTGGCGGTCGGCCCGCTATTCGCCACCCCGCGAACCGCCACCGTATCGTTCGAAGTCGGCCTGGCACCGCTGACCGGCGAGAGCCCGTTGGCGTTGTTCCTGTACAGCGCGGTGTACTTTCTGGTGGTGTTCTTCATCTCGCTTTATCCGGGCCGCTTGCTGGACACCGTCGGGCGCTTTCTCGCGCCGCTGAAAATCATCGCCCTGGCGGTGCTGGGCATCGCCGCGTTTGCCTTGCCGGCGGGCGACATCGGCGTGGCGACTCCCGAATACGTGGCGGCGCCGTTTTCCCAAGGCTTCATCAATGGCTACCTGACCATGGATACCCTCGGTGCCTTGGTGTTCGGCATCGTCATCGTCAACGCCATCCGTTCCCGAGGGGTCGAGTCTCCGGCCTTGATCACCCGCTACGCCATCATCGCCGGGCTTATCGCCGGGGTGGGGCTGGCGCTGGTCTATGTCAGCCTGTTCCGCCTGGGTTCGGGCAGCCATGAAGTCGCCGCGGGCGCGACCAACGGCGCGGCCGTCCTGCATGCCTACGTGCAACATACCTTCGGCAGCCTGGGCAGCGGCTTCCTTGCGGTACTGATCTCCCTGGCGTGCCTGGTGACGGCGGTTGGCCTGACCTGCGCCTGCGCCGAGTACTTCAGCCGCGTCCTGCCGCTGTCCTACAAGACGCTGGTGATCATCCTGGCGGCGTTTTCGCTGCTGGTGTCCAACCTCGGGCTGACCAAGCTGATCGCTTTCTCGATTCCGGTCCTCACCGCGATCTATCCACCTTGCATCGCATTGGTCGCCCTGAGCTTCTGCAAAGACTTCTGGCATGAGCAGGGGCGGATCGTCGGCCCGGTCATGCTGGTGTCGTTCCTGTTCGGCTTGATCGACGCCCTCAAGGGCGCCGGGCTGGCGGATTGGCTGCCGACGCAGTTGGCCCACCTGCCGTTGAGCGACCAGGGCCTGGCCTGGCTGGTCCCTTCGGTCATGACCCTGGTGGTCGCGGTGGTCTGCGATCGACTGCTGGGCAAGCGCAGCGAAGCGTTGGCGTAAMKVLKGQDILALGFMTFALFVGAGNIIFPPIVGLQSGPHVWMAALGFLITAVGLPVITVVALAKVGGAMDALSSPIGKIAGGLLAAVCYLAVGPLFATPRTATVSFEVGLAPLTGESPLALFLYSAVYFLVVFFISLYPGRLLDTVGRFLAPLKIIALAVLGIAAFALPAGDIGVATPEYVAAPFSQGFINGYLTMDTLGALVFGIVIVNAIRSRGVESPALITRYAIIAGLIAGVGLALVYVSLFRLGSGSHEVAAGATNGAAVLHAYVQHTFGSLGSGFLAVLISLACLVTAVGLTCACAEYFSRVLPLSYKTLVIILAAFSLLVSNLGLTKLIAFSIPVLTAIYPPCIALVALSFCKDFWHEQGRIVGPVMLVSFLFGLIDALKGAGLADWLPTQLAHLPLSDQGLAWLVPSVMTLVVAVVCDRLLGKRSEALAPGPT0014385_1686DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_BRANCHED-CHAIN_AMINO_ACID_TRANSPORT,PGPT0014385-TC_LIVCS|brnQ-K03311NANA
D1-35_01973738hypothetical proteinATGTCATTCATCCAAGCCAACCTGATCCATCTGCTCGCCGCCGTCTGGTTCATCATCTGCTGGGCCGGCTATACCCGTTACGCCTCCTGGAAGGCCCGCGACACGGCGTGCCTGGCCAGCGTGATGCACCTGTACCGCGAAGACTGGATGCGTCGCATGCTGCTGCGCGACAACCGCATTGCCGATGCCAGCGTGATCGGCAACCTGGAGCGCAACGCGTCCTTCTTCGCCTCCAGCACGCTGATCATCCTGGCCGGTATCCTGACCGTGCTCGGGGCGTCTGACCGCGCGGTATCGCTGCTTGCGGACCTGCCGCTGGTACAACAGGCCTCCCAGGGCATGGCGGAAGTGAAGCTGCTGTGTCTTGCGCTGGTGTTCGTCTACGCGTTCTTCACGTTCAGCTGGTGCATGCGCCAATACAACTTCGCCGCGGTCCTGGTAGGTTCTGCGCCGATGATCGGCGAGCGGCATGTGTCCGAGCTGGAGCGCAAGGCCTTTGCTTCGAGGGCGGCGCGGGTCATTTCGATGGCGGCCAACCAGTTCAACTTCGGCTTGCGTGCCTATTATTTCGGCATGACCATGCTGGCATGGTTCGTCAGCCCCTGGCTGTTCATGCTGATGAGCGCCGGCGTGGTGTTTGTGTTGTATCAACGCGAGTTTCATTCGGATGTGCTGGACGTGATGGTCTACACGCCTACCGAAGCGCCGGTGCCCGAAACCGGCAAGGAAGCGGCTTGAMSFIQANLIHLLAAVWFIICWAGYTRYASWKARDTACLASVMHLYREDWMRRMLLRDNRIADASVIGNLERNASFFASSTLIILAGILTVLGASDRAVSLLADLPLVQQASQGMAEVKLLCLALVFVYAFFTFSWCMRQYNFAAVLVGSAPMIGERHVSELERKAFASRAARVISMAANQFNFGLRAYYFGMTMLAWFVSPWLFMLMSAGVVFVLYQREFHSDVLDVMVYTPTEAPVPETGKEAANANANANANA
D1-35_01974252hypothetical proteinATGCGTAAGACTTTTGCTATTGCCTTGATGTTGGCCGCCTCCCTCGGTCTCGCTGCCTGCGATAAAAAATCCGAGGACAAGGCTCAAGATGCCAACCAACACGCTGAACAAGCTCAGCAAGACATGAACAAAGCACAGGATAAAGTGAACGACGCGGCGAAAGAAAACGCCGAAGCTGCCAAAGCTCAGTCTGAATCGAACAGTGCCGCCCAGCAGGAACAAGCCCCTGCTACCGCGCCTAAAACCAACTGAMRKTFAIALMLAASLGLAACDKKSEDKAQDANQHAEQAQQDMNKAQDKVNDAAKENAEAAKAQSESNSAAQQEQAPATAPKTNNANANANANA
D1-35_01975477hypothetical proteinATGGCTGAGGATTCCGTTTTTGAGCGTGCGACACGCTTCTTATCCGCGCTAAGGCATTGCCAGGTGCTGGGTCTGACATTGCACAGCGCCAATTCCGAAGGTTTGACCGTGATGTTGCCCTACAGCCCATCTATCGTTGGTAATCCGCTGACAGGCATCGTCCATGGCGGAGCGCTGACCACGCTGATGGATACCGCTTGCGGCATGTCGACCTTGTGCGTGCTGCCGCAATTCGAGGTCTGCCCGACCCTGGATCTGCGCATCGATTACATGCACGCGGCCATGCCTGATAAAGCCATCTATGGTTTCGCACAGTGCTATAGGGTCACGCCGGACGTGATTTTCAGCCGGGGTTTTGCCTACCAGGATGATCCCGGGCAACCCATCGCCCATGTGGTGGGCACTTTCATGCGCCTGGGCGATAGCGCTCGGGGAATGGGAAAGGGTGGCCTGACGGCTGCGGCGCAAAAGCCATGAMAEDSVFERATRFLSALRHCQVLGLTLHSANSEGLTVMLPYSPSIVGNPLTGIVHGGALTTLMDTACGMSTLCVLPQFEVCPTLDLRIDYMHAAMPDKAIYGFAQCYRVTPDVIFSRGFAYQDDPGQPIAHVVGTFMRLGDSARGMGKGGLTAAAQKPPGPT0001841_42DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001841-yigI-NANANA
D1-35_01976462hypothetical proteinATGAGCGATATCACCGAGGAACAACTGCGCCAGGCCTGCGAGCATGGCGACTACGCGCTGCTGCTGGCCTCGATCCCCTATGCGCGCCTCATCGGCGTCGAATGTTCTCGTCAGGGCGACGAGTTGCTGTTTTGCCTGCCGGCCAACAAGGACAACATTGGTAACCCTTTACTGCCCGCGATCCATGGCGGGGTGATTGCCGGTTTCATGGAGCTGTCGGCCGCCGTTCATCTGCTGATTGCGACCCGTGCGACCGGGGTGCCGAAGATCATCGATTTTTCCCTGGATTACCTGCGCGCCGGGCAGTTTCGTGACACCTATGCCCGGTGTCAGGTCTGGCGCCAGGGCCGGCGCGTGGCCAATGTGGCGATCACCGCCTGGCAGGAATCCGAAGCCGAACCGATTGCCACGGCTAGGGCCCATTTCAAGATCCCTGCACCCTCCAGGCCGACCGCCCCTTGAMSDITEEQLRQACEHGDYALLLASIPYARLIGVECSRQGDELLFCLPANKDNIGNPLLPAIHGGVIAGFMELSAAVHLLIATRATGVPKIIDFSLDYLRAGQFRDTYARCQVWRQGRRVANVAITAWQESEAEPIATARAHFKIPAPSRPTAPPGPT0001841_14DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001841-yigI-NANANA
D1-35_019771905htpGCOG0326Chaperone protein HtpGATGAGCGTGGAAACTCAAAAGGAAACCCTGGGCTTCCAGACCGAGGTGAAGCAGCTGCTGCACCTGATGATTCACTCGCTGTATTCGAATAAGGAAATTTTTCTTCGCGAGCTGATCTCGAACGCCTCTGACGCAGTCGACAAATTACGTTTCGAAGCGCTGTCCAAGCCAGAACTGCTGGAAGGCGGCGCGGAGCTGAAAATCCGTGTGAGCTTCGACAAGGACGCGAAAACCGTCACGCTCGAAGACAACGGCATCGGCATGAGCCGCGACGAGGTGATCACGCACCTGGGCACCATCGCCAAGTCCGGCACCGCCGATTTCATGAAAAACCTGTCGGGCGACCAGAAGAAGGATTCCCATCTGATCGGTCAGTTCGGCGTCGGTTTTTATTCCGCGTTCATCGTTGCCGATCAGGTCGAAGTGTTCAGCCGCCGTGCCGGCCTCGCAGCGAGCGAAGGCGTGCACTGGTCCTCCAAGGGCGAAGGCGAATTTGAAGTCGCGACCATCGACAAGGCTGAGCGCGGTACCCGCATCGTCTTGCACCTGAAGTCCGGTGAAGAAGAGTTCGCCGATGGCTGGCGCCTGCGCAACATCATCAAGAAATATTCTGACCATATCGCGCTGCCGATCGAGTTGCCGAAGGAAGTCACCGCTGCCGAAGGCGAAGAAAAACCTGAAGTGGAATGGGAAACCGTCAACCGCGCCAGTGCCCTGTGGACCCGTCCTCGTACCGAGATCAAGGACGAGGAATACCAGGAGTTCTACAAGCACATCGCCCACGACTACGAGAACCCGCTGAGCTGGAGCCATAACAAGGTCGAAGGCAAGCTGGAATACAGCTCGCTGCTGTACGTGCCGACCCGTGCGCCATTCGACCTGTACCAGCGCGAAGCACCACGCGGGCTGAAGTTGTACGTGCAGCGCGTGTTCGTGATGGACCAGGCCGAATCGTTCCTGCCGCTGTACCTGCGCTTCATCAAGGGTGTGGTGGACTCCAATGACCTGTCGCTGAACGTTTCGCGGGAAATCCTGCAGAAAGATCCGATCATCGACTCCATGAAGTCGGCGCTGACCAAGCGCGTCCTCGACATGCTGGAAAAGCTGGCAAAGAGCGAGCCTGAGCAATACAAGAGCTTCTGGAAGAACTTCGGCCAGGTGATGAAAGAAGGCCCGGCCGAAGATTTCGCTAACAAAGAGAAGATCGCCGGCCTGCTGCGTTTTGCCTCGACCCAGAGTGACGACGGCGAGCAGAGCGTCAGCCTGGCCGATTACCTGGCCCGCGCCAAGGAAGGCCAGGACAAGATCTACTACCTGACCGGCGAAACTTATGCGCAGGTCAAGAACAGCCCGCACCTGGAAGTCTTCCGCAAGAAAGGCATCGAAGTGCTGCTGCTGACCGACCGCATCGACGAGTGGCTGATGAGCTACCTCAACGAGTTCGACGGCAAGAGCTTCGTCGATGTGGCCCGTGGCGACCTCGACCTTGGCAACCTGGATTCGGAAGAAGACAAGAAAGCCGCCGAAGAAGTCGCCAAGAGCAAGGAAGGCCTGGTCGAGCGGATCAAGACTGCGTTGGGCGATGCCGTCAGCGAAGTGCGTGTCTCGCACCGCCTGACCGACTCCCCGGCCATCCTGGCCATCGGCGAGCAGGACCTCGGCCTGCAGATGCGCCAGATCCTTGAGGCCAGCGGCCAGAAGGTTCCGGATTCCAAGCCGATCTTCGAATTCAACCCGGCTCACCCGCTGGTGGAAAAACTCGACAACGAGCAGAGCGAAGAGCGTTTTGGCGACCTCTCGCACATCCTGTTCGACCAGGCGGCCCTGGCGGCCGGCGACAGCCTGAAGGACCCGGCGGCCTATGTCCGGCGTTTGAACAAGCTGCTGGTTGAGCTGTCAGCTTGAMSVETQKETLGFQTEVKQLLHLMIHSLYSNKEIFLRELISNASDAVDKLRFEALSKPELLEGGAELKIRVSFDKDAKTVTLEDNGIGMSRDEVITHLGTIAKSGTADFMKNLSGDQKKDSHLIGQFGVGFYSAFIVADQVEVFSRRAGLAASEGVHWSSKGEGEFEVATIDKAERGTRIVLHLKSGEEEFADGWRLRNIIKKYSDHIALPIELPKEVTAAEGEEKPEVEWETVNRASALWTRPRTEIKDEEYQEFYKHIAHDYENPLSWSHNKVEGKLEYSSLLYVPTRAPFDLYQREAPRGLKLYVQRVFVMDQAESFLPLYLRFIKGVVDSNDLSLNVSREILQKDPIIDSMKSALTKRVLDMLEKLAKSEPEQYKSFWKNFGQVMKEGPAEDFANKEKIAGLLRFASTQSDDGEQSVSLADYLARAKEGQDKIYYLTGETYAQVKNSPHLEVFRKKGIEVLLLTDRIDEWLMSYLNEFDGKSFVDVARGDLDLGNLDSEEDKKAAEEVAKSKEGLVERIKTALGDAVSEVRVSHRLTDSPAILAIGEQDLGLQMRQILEASGQKVPDSKPIFEFNPAHPLVEKLDNEQSEERFGDLSHILFDQAALAAGDSLKDPAAYVRRLNKLLVELSAPGPT0014640_2025DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONTRIGGERED_IMMUNITYPAMP|EFFECTOR_TRIGGERED_IMMUNITY|PTIPTI-PR1_LIKE_PROTEINS,PGPT0014640-hptG-K04079NANA
D1-35_01978729hypothetical proteinATGAGTCAGGTTACGGTTCGTTCACTGGTGTATCAGATCGATGGGCAAAGCTATGAAGGTCGCCTGGCCTTCGACGTCAACCAGCAGGGCCCGCGTCCGGGGTTGCTGATGGCGCCGAACTGGATGGGCGTGGGGGCGGGGGCCGAGGACATTGCCAGGTTGGTGGCCGCCAACGGCTACGTGGTGCTGATCGCCGACCTGTACGGGCAGACGCTGCGCCCGAGCAACGCCGACGAGGCGGGAGCGGCAATGATGCCGCTCAAGAACGACCGGGCCTTGTTGCGCAAGCGCATGCAGGTAGCGCTGGAGCAATTGCAGAACCAGGGCGAAGCGCAGGTCGACACGGCGAAACTGGCCACGTTCGGCTTCTGCTTCGGTGGTTGCTGTTCACTGGAGCTGGCTCGCAGCGGCGCACCGCTCAAGGCTGCGATCTCGTTCCACGGGACCCTGGATACGCCGAACCCGGCCGATGCGCAGAATATCCAGGGCGCCGTCCTGGTGATGCATGGCGCTTCCGATCCGCTGGTGCCGAAAGAACAGTTGCCGGCTTTCGAGGAGGAGATGAACGCCGCCGGGGTGGACTGGCAATTGCTGAGTTATGGCGGCGCGGTGCATTCCTTCACCGATCCACAGGCCAATGTGCCGGGCAAGATGATGTACAACGCCAAGGTCGCCGGGCGGGCGTTCCGGTCGATGCATAATTTGCTGGATGAGGTGTTCAAGGGCTGAMSQVTVRSLVYQIDGQSYEGRLAFDVNQQGPRPGLLMAPNWMGVGAGAEDIARLVAANGYVVLIADLYGQTLRPSNADEAGAAMMPLKNDRALLRKRMQVALEQLQNQGEAQVDTAKLATFGFCFGGCCSLELARSGAPLKAAISFHGTLDTPNPADAQNIQGAVLVMHGASDPLVPKEQLPAFEEEMNAAGVDWQLLSYGGAVHSFTDPQANVPGKMMYNAKVAGRAFRSMHNLLDEVFKGNANANANANA
D1-35_01979861hypothetical proteinATGACCGCTCCCCTGATCGTTCGTCCCCGCGCAGAAGACGTGGAGGGCCAGCCGATTCTTCGCCCGCTGCCGTCCGCCAAATGCCGCAGCGTCGGGCCTTTCGTGTTTTTCGACCATATGTTGCAAACCACCTACCCGGCAGGCAAAGGCATGAACATCCGCCAGCACCCGCACATCGGGTTATCCACCCTCACCTACCTGTTCGAAGGGAAACTCCAGCACAAGGACAGCCTGGGTTCCGACCAGGTAGTGGATGCCGGGGATGTCAGCTGGATGACGGCGGGCAGCGCGATCGCCCATGTCGAGCGCACTCCGCAATCGTTGCTGGCCAGCGCTTTTGTCATGCATGGCCTGCAAGTCTGGCTGGCCTCGCCCCAGCCTCATGAGCAGGGGCCCGGGCACTACAGCCATCATCCGGCACCGACCCTGCCGGTCTCCGAGAACCTGGGCGTCAGCATCCGCATGATTGCCGGGTCAGGCTTTTGCCTGGAGTCGCCAGTACCGGTGCTCTCGCCTACGTTGTATGCCGAACTGAACCTGCAAACCGCGACGACATTGCTGATTCCCACCGAACATGAAGAGCGTGCACTGTATGTATTGAGCGGCGAGGCGCAACTGGACGGTGAGCCGCTGGAGCCTCACTCGCTGGTCATCCTGCCGGCCGGAGAAGAAATGGCCCTGTTCGCCAGCAGCGACTGCCATGCCGTGCTGTTCGGCGGGGCACCGCTGGACGGGCCACGGCGGATGAACTGGAATTTCGTCGCCAGCGACCCGGCCCGTATCGATGAAGCCCGCCGGCGCTGGGCGGCCGGGGACTGGCCGACTGTGCCGGGGGAAAGCGAGCGGATCGAATTGCCCTGAMTAPLIVRPRAEDVEGQPILRPLPSAKCRSVGPFVFFDHMLQTTYPAGKGMNIRQHPHIGLSTLTYLFEGKLQHKDSLGSDQVVDAGDVSWMTAGSAIAHVERTPQSLLASAFVMHGLQVWLASPQPHEQGPGHYSHHPAPTLPVSENLGVSIRMIAGSGFCLESPVPVLSPTLYAELNLQTATTLLIPTEHEERALYVLSGEAQLDGEPLEPHSLVILPAGEEMALFASSDCHAVLFGGAPLDGPRRMNWNFVASDPARIDEARRRWAAGDWPTVPGESERIELPNANANANANA
D1-35_019801134hypothetical proteinATGTCTTCCAGGTTGAACGACGAATGCGCAAAGCATAACCCGAGGCTACAGCGGACGGCAGCGCTGGCTGAACCCAGGCGGGACGGATGGGTCTATGCTGCTTATGGCTTTCGGAGACTGCCTGTGCCTTTGACCCGTTTGATCTTCATTTGGCTGCTGGCTGTTTCGAGCACCGGCGCTGTGTCTCGCGAATACACCTACAGTGATGCGCACCTGCACTACGTCGATTTCTTCCAGGAAACGGCCGGCATGCCCAAGTTGCTCAAGGCCATGGCGGACAATCGCATCGAGCATGTGATGATCTCCGGCGTGCCGGTGGCCAAGAAATGGCATGAAGACGAACCCAAGCGCCCGCGCTATTACGCCGGTGACGATGCCGACGCCTATTGGTACAGCGCCACCGATGTGATTGTGGCCGCCGCGGTAAACAAACTGCCCGCCGAACAGCGGCAGTACTTCCATCCGTTCCTGTCCGGCTTCAATCCCAATGACAAGAACTCCGACGCTCATATCCAGCGCATGCTCGACCTGTATCCGGGGCTGTGGCAAGGCATCGGCGAAGTCTTCACTCGCCATGATGACCTGACGGCGCTGACCTCCGGCGACACACCGCGCGCCAACAACGAAGCGATGACGCGGATCTATCACCTCGCGGCGGAAAATGACCTGCCGGTGATGCTGCATTCCAACATCACCTCCAAGCGTGAGAAAAATCCGCTGTACCTGGCGGAGGTCGAAGAGCCGTTGCGCAATCATCCCCATACGCGATTCATCTGGGCCCATGCCGGCACCAGCATGGAAATCCATCGGCACCAGACTCGGCTGGATTTCCTGTTGCCCACCCTGACGCGGATGCTTGAGTCTTATCCCAATCTGTTCATCGACCTGTCCTGGAGCATGCTCACGCCCTATTTGCTCGACGAGGCGGGTAAGCCCCGCGAGGAATGGGTAAAACTGGTGGAGCGCTTCCCGGAGCGCTTCATGCTCGGGTCTGATGTGGTCGGACGCTTCAACAAGCTGGGCAAGGAGCTGCACAGCTTCGACCCGTTCCTTGATGCCTTGCCGGAAGATGTCGCGAGGAAAGTGGCGCGGGATAACTTCCTTTCGGTATTGCCCCGTACCGCCCCACGCTGAMSSRLNDECAKHNPRLQRTAALAEPRRDGWVYAAYGFRRLPVPLTRLIFIWLLAVSSTGAVSREYTYSDAHLHYVDFFQETAGMPKLLKAMADNRIEHVMISGVPVAKKWHEDEPKRPRYYAGDDADAYWYSATDVIVAAAVNKLPAEQRQYFHPFLSGFNPNDKNSDAHIQRMLDLYPGLWQGIGEVFTRHDDLTALTSGDTPRANNEAMTRIYHLAAENDLPVMLHSNITSKREKNPLYLAEVEEPLRNHPHTRFIWAHAGTSMEIHRHQTRLDFLLPTLTRMLESYPNLFIDLSWSMLTPYLLDEAGKPREEWVKLVERFPERFMLGSDVVGRFNKLGKELHSFDPFLDALPEDVARKVARDNFLSVLPRTAPRNANANANANA
D1-35_01981465hypothetical proteinATGCATCTCACCCGTTCAAGCGCACTGGTCGCGCTGTTGTTGACCTGCGGCCTGGCACAGGCCGAAGTCCGTGTCGAAGGTCCGGTGGAATACGGTGTCTTCGAAGGGCCGCAAGCCGAATTGCAATCGGGCGAGCGGGTCTTGCGGCGCAGCAATGAGCAGATCCGCCAGACCGAGAGCGTACCGGCAAAGCTGGGCACCAAATTTGGCATGCGCTACCAGTTGGCCGGCAAGGTCGCGGATGACCAGCCGTTGACCCTGTTGTATTTCACCCCGGGCATCCGTACCCCCGATGGCGTGCGCCATGACAAATTCGAAGTCATTCAGAAGCTGGTGCCTGGCGCGCCGCAGGATGTGATGGCCTACGAATTCACCGAAAGCCACGAAGTGGTGCCGGGGGAGTGGCGATTCATGGTGTTCCAGGGGGATCGTTTGCTGACGCAGCAGCGGTTTGTCGTGCGCTAAMHLTRSSALVALLLTCGLAQAEVRVEGPVEYGVFEGPQAELQSGERVLRRSNEQIRQTESVPAKLGTKFGMRYQLAGKVADDQPLTLLYFTPGIRTPDGVRHDKFEVIQKLVPGAPQDVMAYEFTESHEVVPGEWRFMVFQGDRLLTQQRFVVRNANANANANA
D1-35_019821221fabB3-oxoacyl-[acyl-carrier-protein] synthase 1ATGCGCCGCGTCGTTATCACTGGTCTGGGCATCGTTTCGTGCCTGGGCAATGACAAAGAGACCGTCTCCGCTAACCTGCGTGCAAGTCGCCCTGGCATCCGGTACAACCCGGAATACGCCGAAATGGGTCTGCGTAGCCAGGTTTCCGGCTCCATTGACCTCAATCTCGAAGAGCTGATCGATCGCAAGATCTACCGTTTCGTCGGCCACGCGGCAGCTTATGCCTACCTGGCCATGAAGGACGCCATCGCTGACTCCGGCCTGACCGACGAGCAGGTTTCCAACGTGCGCACCGGCCTGATCGCCGGTTCCGGTGGCGCGTCGACCCTGAATCAGATGGAAGCGCTGGACATCCTGCGCGAAAAAGGCGTCAAGCGTGTCGGCCCGTACCGCGTCACGCGGACCATGGGCAGCACCGTGTCGGCCTGCCTGGCCACGCCATTCAAGATCAAGGGCCTGAACTACTCGATCTCCTCCGCCTGCGCCACCAGTGCCCACTGCATTGGCACCGCGGTCGAGCAGATCCAGATGGGCAAGCAGGACATCGTCTTCGCCGGCGGCGGCGAAGAAGAACATTGGAGCCAGTCGTTCCTGTTCGACGCGATGGGCGCCTTGTCCAGCAAGCGTAACGACTCCCCGCAGACAGCTTCCCGTGCCTACGATGCCGACCGTGACGGTTTTGTCATCGCCGGCGGTGGCGGCATGGTCGTGGTCGAGGAGCTGGAACACGCCCTCGCCCGTGGCGCGAAAATCTATGCGGAAATCGTCGGCTACGGCGCCACTTCCGACGGCTACGACATGGTCGCGCCAAGCGGCGAAGGTGCCGTGCGCTGCATGCAGATGGCCATGTCCACCGTCGATACGCCAATCGACTACCTGAACACCCACGGCACCTCGACTCCGGTCGGCGACGTCGCGGAGATGAAAGGCGTACGTGAAGTGTTCGGCGACAAGGCCCCGGCCATCAGTTCCACCAAGAGCCTGTCGGGTCACTCCCTGGGCGCCGCCGGCGTTCACGAAGCGATCTACTGCATGCTGATGATGGAAGGCAACTTCATGGCCGGTTCGGCCAACATCGACGAGCTGGACCCGGAAGTGGCCGACCTGCCAATCCTGACCAAGACTCGCGAAAATGCCACCATCAACACCGTGATGAGCAACAGCTTCGGCTTCGGTGGCACCAACGCCACCCTGGTGATGAAGCGCTGGCAGGGCCAGTAAMRRVVITGLGIVSCLGNDKETVSANLRASRPGIRYNPEYAEMGLRSQVSGSIDLNLEELIDRKIYRFVGHAAAYAYLAMKDAIADSGLTDEQVSNVRTGLIAGSGGASTLNQMEALDILREKGVKRVGPYRVTRTMGSTVSACLATPFKIKGLNYSISSACATSAHCIGTAVEQIQMGKQDIVFAGGGEEEHWSQSFLFDAMGALSSKRNDSPQTASRAYDADRDGFVIAGGGGMVVVEELEHALARGAKIYAEIVGYGATSDGYDMVAPSGEGAVRCMQMAMSTVDTPIDYLNTHGTSTPVGDVAEMKGVREVFGDKAPAISSTKSLSGHSLGAAGVHEAIYCMLMMEGNFMAGSANIDELDPEVADLPILTKTRENATINTVMSNSFGFGGTNATLVMKRWQGQPGPT0013310_893DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0013310-fabB-K00647NANA
D1-35_01983516fabACOG07643-hydroxydecanoyl-[acyl-carrier-protein] dehydrataseATGACCAAACAAAACGCCTTTACTCGGGAAGATCTGCTGCGCTGCAGTCGCGGTGAGCTGTTCGGCCCAGGTAACGCGCAACTGCCCGCCCCGAACATGCTGATGGTGGATCGCATCACCCATATCAGCGACGAGGGTGGCAAGTACGGCAAAGGTGAATTGGTCGCCGAGCTGGATATCACTCCGGACCTGTGGTTCTTCGCCTGCCATTTCGAAGGTGACCCGGTGATGCCGGGCTGCCTGGGCCTGGATGCCATGTGGCAACTGGTCGGCTTCTTCCTTGGCTGGCAGGGCCTGCCGGGTCGCGGTCGCGCCCTGGGTTCGGGCGAGGTGAAGTTCTTCGGTCAGGTGCTCCCGACCGCGAAGAAGATTACCTATAACATTCATATCAAACGCGTCCTCAAGGGCAAGCTGAACATGGCCATCGCCGATGGTTCGGTGGCTGTCGACGGTCGCGAGATCTACACCGCCGAAGGCCTTCGGGTCGGCGTTTTCACCTCCACTGACAACTTCTAAMTKQNAFTREDLLRCSRGELFGPGNAQLPAPNMLMVDRITHISDEGGKYGKGELVAELDITPDLWFFACHFEGDPVMPGCLGLDAMWQLVGFFLGWQGLPGRGRALGSGEVKFFGQVLPTAKKITYNIHIKRVLKGKLNMAIADGSVAVDGREIYTAEGLRVGVFTSTDNFNANANANANA
D1-35_019841902rcsC_8Sensor histidine kinase RcsCATGACCTTGCGTCGACGTTGGGATATCAATACCCGCACCCAGCTCATTGCCCTCGGCCCGGCATTGTTGCTGACCGTGCTGTTGATCAGCTTCTTTACCTTCGTGCGAATCCAGGACTTGCGCCAGGAGCTCAACCACACCGGGCAACTGATCGCCAACCAACTGGCTCCGGCTGCGGAATACGGGGTGATTTCCGGCAACAACGAGGTGCTGGAAAGTTTGCTCACCGCCACCCTGGCCACTCCTCATGTGCGCTTCCTGGAAGTCCAGGACCGCACGGAGCGGATCCTCGTGTACGTCGAGCAACCGGCGCAGACGCGCAACCACTCGCGGCAGGTGGAGGTGTTCCAGGCTCCGGTTCGCCTGCAACGCATTGCGCTGAACAATGACTTCCTGCAAGGCACCAGCCCGTCCACCGAGGCGCCCGGCGAAGACTACCTGGGCCGCGTGATCGTCGGCATGTCCAGTGATGCCTTCAGCGAGCGCCAGCAGGAGATCCTGCTCAAGGCCGCGATCCTGGCGTTGTTCGCCCTGCTCTTTACCTTCCTGGTGGCGCGCCGACTGGCCGCCAGCCTGTCACAGCCGATCCGCGACATCGGCAATGCGGTCAAGGCGATCCAGCAAGGCGACTACAGCACCCCTTTGCCGATCGTCGACGACGGCGAACTGGGCGCTCTGTCGCGGCACATCAACAATCTGGCCGACGGCCTCGAGCAGGCCAGCCGCGAACAGCAGCAAGCCATGGCGCAGTTGATCCAGACCCGCGAGGAAGCGGAAAAGGCCAACAGCGCCAAATCGGAATTCCTGGCCATGATGAGCCATGAACTGCGCACGCCCATGAATGGCGTCCTGGGCATGTTGCAGTTGCTGGAAACCACCCAGATGACCGACGAGCAGCACGAGTACACCGCGCTGGCTTCGGAATCCACCGAGCACCTGCTGAAGGTGATCAACGACATTCTCGACTTCTCGCGCATCGAACGTTCGGCCCTGGAACTTGAACATATCGCTTTCAACCTGGCGGAACTGGTCGGCAGCTGCGCCCAGTCGTTCCAGCACAGCGCCGCGCAACGCAAGCTGGGCCTGGACCTGCTGATCCCCGACGACATGCGGGCCCTGCAAGTGCAAGGCGACCCGACGCGGATCCGCCAGATCCTGGTCAACCTGATCGGCAACGCACTGAAGTTCACCGACCAGGGGCGCGTCACCGTGCAATGCCAGTGGCAGGCGCTGGATCACGAACTGCTGTGGTTCACCTGCACGGTACGCGACAGTGGGATCGGCATCCCGGCCGACAGCCTGGAGCGCATGTTCGATGCGTTCCAGCAGGCCGACAGTTCGATTTCCCGGCGCTATGGCGGCACGGGCCTGGGCCTGCCGATCGCGCGCACCCTGGCCGAACGCATGGGCGGCACACTGCGGGCCCAGAGCGTGGAAGGCCAAGGTTCGGTGTTCACCCTGGAAATCCCGCTCGCGCTGTCCCGGCAGTCCCCACCGACCCTGGCCCCGCGCGCGCCCGGTGGCGGCAATGATGGCGAGGGCCGCAACGTCTTGCTGGTGGAAGACAATCCGGTCAACCAGACCGTGATCGAAGCCATGCTGCGCAGCCTGGGCTTCACGGTCAGCGTCGCCACCGATGGCGCCCAGGCCGTGCGCAGCGCCGAAAGCCTGATTTTCGAAGTGATCCTGATGGACTGCCGGCTTCCGGTGATCGACGGCTACGAAGCCACGCGACAGATCCGTCAGTTGCCAGGCTGCGCCGAGGTGCCCATCATCGCCCTGACGGCCAACGCGTTGCAGGGCGACCGTGAAGCCTGCCTGGCCGCAGGCATGAACGATTACCTGGCCAAGCCATTCAAAAGAATTGACCTGCAGCAGATTTTGCAGCGCTGGGTACGTTGAMTLRRRWDINTRTQLIALGPALLLTVLLISFFTFVRIQDLRQELNHTGQLIANQLAPAAEYGVISGNNEVLESLLTATLATPHVRFLEVQDRTERILVYVEQPAQTRNHSRQVEVFQAPVRLQRIALNNDFLQGTSPSTEAPGEDYLGRVIVGMSSDAFSERQQEILLKAAILALFALLFTFLVARRLAASLSQPIRDIGNAVKAIQQGDYSTPLPIVDDGELGALSRHINNLADGLEQASREQQQAMAQLIQTREEAEKANSAKSEFLAMMSHELRTPMNGVLGMLQLLETTQMTDEQHEYTALASESTEHLLKVINDILDFSRIERSALELEHIAFNLAELVGSCAQSFQHSAAQRKLGLDLLIPDDMRALQVQGDPTRIRQILVNLIGNALKFTDQGRVTVQCQWQALDHELLWFTCTVRDSGIGIPADSLERMFDAFQQADSSISRRYGGTGLGLPIARTLAERMGGTLRAQSVEGQGSVFTLEIPLALSRQSPPTLAPRAPGGGNDGEGRNVLLVEDNPVNQTVIEAMLRSLGFTVSVATDGAQAVRSAESLIFEVILMDCRLPVIDGYEATRQIRQLPGCAEVPIIALTANALQGDREACLAAGMNDYLAKPFKRIDLQQILQRWVRPGPT0004750_833DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QUORUM_SENSING_REGULATORSCE-QSR-QUORUM_SENSING_REGULATED_FLS,PGPT0004750-aoxS-K20974NANA
D1-35_01985933hypothetical proteinATGTCTGCGGACCAACCGCGCAAGACGCCCCTCCGCGGCCGCCTGCCGCTACTCCTGTGCCTGGCGTTTGTCAGTCTGCTGACGACCCTCGATGCCCGGGCCGCCGAGATTCTCTTGACCGGCGCCCAGGATAGCCCCGGCGTGCAATCGTTCACCCAGGCCCTGCAAGCCCGACGCCCGCAAGACAACGTGCGGTTCGCGCCATTGGCCAGCCTGCCGTCGCCGGACCGTCTGCCCGGCGATGTGCGCCTGGTCCTGCTTGATCCGCCAAGCCTCGACTGGCGCCTGCAAAAAAACCACGGCCCGGCCACGCTGGTCCTGCGCATCAGTCGCTTGCAGGCATACGAACGCCTGGGCGAGGCAACGCCTGAGCGTCTGAGCCTGCTGTGGAGCGATCCGCCCATGGCGCGGCAACTGCAACTGATCCGCAGGGTGCTGCCGCAAGTGCGGCGGGTCGGCGTGCTGTTCGACCGGCACAGCGAATTCCTGCTCAAGGACATCCAGCAGGCAGCCAGGCCGCTGGGCCTGGAAATCGTCAGCGAACGCTGGGACGACAGCAGCGACAACCGTCCCTTGCAGAACCTGCTGGGCCGCAGCGACGTACTGCTGGGCCTCGATGACCCCGACCTCTACAACCCCAAGACCGTGAAAAACCTGCTGCTCAGTAGCTACGCCCGGCAACGCGCGCTGATCGGGCCAAGCGCCGCGTTTGTCAGGGCCGGCAGCCTGGCCAGCACCTACAGCGACCAGGACGACTGGCTGGCGATCCTCGACGAATTGCTCGACCGTCCCACCGCCAGCTGGCCGCGCACGCTGTATCCGGTCCGTTTCAAAGTCATGAGTAACCAGCAGGTCGCCCGCTCGCTGGGCATTGAACCGATTGATGCCGAAGCCGTCGCTGCGCAGTTGGCAGAAGGAGAACACCGCCCATGAMSADQPRKTPLRGRLPLLLCLAFVSLLTTLDARAAEILLTGAQDSPGVQSFTQALQARRPQDNVRFAPLASLPSPDRLPGDVRLVLLDPPSLDWRLQKNHGPATLVLRISRLQAYERLGEATPERLSLLWSDPPMARQLQLIRRVLPQVRRVGVLFDRHSEFLLKDIQQAARPLGLEIVSERWDDSSDNRPLQNLLGRSDVLLGLDDPDLYNPKTVKNLLLSSYARQRALIGPSAAFVRAGSLASTYSDQDDWLAILDELLDRPTASWPRTLYPVRFKVMSNQQVARSLGIEPIDAEAVAAQLAEGEHRPNANANANANA
D1-35_019862187btuB_1Vitamin B12 transporter BtuBATGGAAAAGTCGCACGGCTCGGTTAACATGCCCGCCATCCCTCCTTCAATCAAAGGCTGTGCCGTGTTCGTTGGCCCTTCCCGTCCAGGTTCATCACTGCTGTTGGCGCTGGTCATCAGCCCCTCCGTGGTGGCCGATGATCTGTTCGTGGACCACCAGCCCCTGCCCCAGGTACTTACCGCCACGCGCCTGAAACAGTCGCCGGCGGCGGTGCCGGGCAGCATGACCGTGCTTGACAGCGAGTTGATCAAGGCCAGCGGTGCCCGGGACATCAGCGAACTGTTGCGCCTGGTGCCGGGCATGATGGTCGGCAACCTCAGCGGCAACCAGGCCACGGTGAACTACCACGGCACCAACGCCAGCGAAGCGCGACGCATGCAAGTGCTGATCGACGGCCGCTCGGTGTACCGCGCCGGCCTCGCCACGGTGGACTGGAGTGACATTCCGGTCGCCATGGAAGACATCGACCGGATCGAAGTCTTCCGCGGCCCCAACACCGTCAGCTACGGCGCCAACGCGCTGATGGCAGTCGTCAATATCATCACCCGCGCCCCGGCGGGTAGCCACGGCACCCGCTTGAAAATGACCCGGGGCCAGCGTGGCATCAGCGACTGGTACGCCAGCCAGGGCAGCGGTTGGGAAAATGGCGATATGCGCCTGTCCTTGTCCGGCCAGGAAGACGACGGTTTCGACAGTGACCGCAACGGCGCGGACTACCGCGACAGTCGGCGCCTGAATCGCATCAACCTTTCCGTCAGCCAGGCCCTGGACGAATGGCAGAGCATCGATTGGCAACTGAGCGCCAAAGAGGGCAGCAACCAGCGGCCCTATACCTATCGCCCGGTTTTCGCCGGGATAACCGCGGCCGGGGACAACTCCGATGTCATCGCCAAGGACTACGCCGGTTCGTTGCGCTGGAACCTCGACCTGGACCCCAACCACAGTCTCTACGTACAGGGCTCGATCCAGCATTGGGATCGCCAGCAGACCTGGCGCGCCTGCGATGCCGAGGTGTCCTTCAGCCCGCAATTGACCGACCTCTGGCAGCTCAACCCGAATTACGCCGAGAAGCTGGCGCGCAATATTCCAAGCTTCCTTGGCACAGGGGCACCTGCCGGCACGGCCCAGGAGCAGGCGCTGGCCAACCAGGTGATCGATCAATGGCGCAACGGTGCCTCGCGAACCCTGTGCGGCGACATCGACCAGAGCGCCCGGGAGTCACGTTACGACCTGGAAATCCAGGACACCCTGAGCCTGTCCGATAGCCTGCGCCTGGTCACCGGGGCGAATTATCGCTACGACCGGGCCGACTCCGAGACGTACTTCAACGGCACGCTGGACGACACCACCTGGCGTCTGTTCGGCCAACTCGAATGGCGCGCCAGCGAGCATTGGCTGCTGCAGGGTGGGGCGATGTTCGAGGACACCCGCCTGACCGGCAGCTCACTGACCCCGCGAGTCGCGGTCAATTACCTGATCAACCCGCGACACGGGCTTCGGGCGGTGTACTCCGAAGCGGTGCGCTCGCCAGACATGTTCGAGAACAACGTCAACTGGAGCTACCAGGTCACCAACCTGCGGCCCGCCGCGTTCGGCCAGGACAGCGCGCGCTATTTCGTCCGCACGCGCGGCCCGGGGAACCTCGAGCAGGAGCACATGCGCTCGCGAGAGCTGGGCTACAACGGTTATTTCATGGACCTGGGCCTGACGGTGGATGTGAAGCTGTTCCATGACGAAATCACCGGCATGATCAGCGAACCGCTGCGCAACAACCAGTACATCGCCAGCAATGCCAACGACTCGCAGTTCGACGGTGCCGAGACCCAGCTCGACTGGCGCCTGACCAGCGCCGATCGCCTGCGCCTGACCTATGCCTACGTCGATGCCCAGGCCAGCAATCCTCTCGACGAACAACTGACCGCCCGCAACAGCGGCTCGGCGGGATGGCTGCACGACTGGGGCCAGGGCTGGAACAGCGCGGTTTTCTATTACGGGGCCGACGATCTCAATGGCTACCGCTACGAGCGGGTCGATACCCGCGTCGCCAAGCGGATCCCCCTGGGCAAGGCCAGCCTGGAGCTGGCGGGTATCGTGCAGCAGCGCCTCGATAACCAGCCGACCACATTCGCCGACAATCGCTACGACGCCCGTCACGTCCTGTATTTCAGCGCGGAGCTGTCGTTCTAGMEKSHGSVNMPAIPPSIKGCAVFVGPSRPGSSLLLALVISPSVVADDLFVDHQPLPQVLTATRLKQSPAAVPGSMTVLDSELIKASGARDISELLRLVPGMMVGNLSGNQATVNYHGTNASEARRMQVLIDGRSVYRAGLATVDWSDIPVAMEDIDRIEVFRGPNTVSYGANALMAVVNIITRAPAGSHGTRLKMTRGQRGISDWYASQGSGWENGDMRLSLSGQEDDGFDSDRNGADYRDSRRLNRINLSVSQALDEWQSIDWQLSAKEGSNQRPYTYRPVFAGITAAGDNSDVIAKDYAGSLRWNLDLDPNHSLYVQGSIQHWDRQQTWRACDAEVSFSPQLTDLWQLNPNYAEKLARNIPSFLGTGAPAGTAQEQALANQVIDQWRNGASRTLCGDIDQSARESRYDLEIQDTLSLSDSLRLVTGANYRYDRADSETYFNGTLDDTTWRLFGQLEWRASEHWLLQGGAMFEDTRLTGSSLTPRVAVNYLINPRHGLRAVYSEAVRSPDMFENNVNWSYQVTNLRPAAFGQDSARYFVRTRGPGNLEQEHMRSRELGYNGYFMDLGLTVDVKLFHDEITGMISEPLRNNQYIASNANDSQFDGAETQLDWRLTSADRLRLTYAYVDAQASNPLDEQLTARNSGSAGWLHDWGQGWNSAVFYYGADDLNGYRYERVDTRVAKRIPLGKASLELAGIVQQRLDNQPTTFADNRYDARHVLYFSAELSFPGPT0003790_22338DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014NANA
D1-35_019871026gpsAGlycerol-3-phosphate dehydrogenase [NAD(P)+]ATGACTGAACAGCGCCCGATCGCGGTCCTGGGAGGCGGGAGTTTCGGCACCGCCGTGGCTAACCTGCTGGCGGAGAACGGCCACGCGGTGCGCCAGTGGATGCGTGACCCGGAGCAGGCCGAGGCCATCCGGCTCAACCGGGAGAATCCGCGTTACCTCAAAGGCATCAAGGTTCGCCCTGAAGTGGAGCCGGTCACCGATTTGCAGGCCACGCTCGAGGGCAGCGATCTGTTTTTCGTTGCCTTGCCTTCCAGCGCCCTGCGCTCGGTGCTGGCGTCCCACGCCGAACGCCTGAGCGGCAAGTTGCTGGTGAGCCTGACCAAAGGCATCGAGGCGCAGACCTTCAAGCTGATGAGCGAGATTCTTGAGGAAATCGCCCCCAAGGCGCGCATCGGCGTGATTTCCGGGCCGAACCTGGCGCGGGAAATCGCCGAGCATGCGCTGACCGCCACCGTGGTCGCCAGTGAAGACGAGGAGCTTTGCCAGCGGGTCCAGGCCGCCCTTCATGGCCGAACCTTCCGGGTCTATGCCAGCGCCGATCGTTTCGGCGTGGAGCTGGGCGGGGCGCTGAAGAACGTCTACGCGATCATCGCCGGCATGGCGGTCGCGCTGGGCATGGGCGAAAACACCAAGAGCATGCTGATCACCCGGGCGCTGGCGGAGATGACCCGTTTTGCCGTCAGCCAGGGTGCCAACCCGATGACATTCCTCGGGCTGGCCGGGGTGGGCGACCTGATTGTCACCTGCTCTTCGCCCAAGAGTCGCAACTACCAGGTCGGCTTCGCCCTTGGCCAGGGCCTGAGCCTGGACGAGGCCGTGTCGCGCCTGGGCGAAGTGGCCGAAGGGGTCAATACCCTCAAGGTCCTCAAGGCCAAGTCCCAGGAGACCGGGGTGTATATGCCGCTGGTCGCGGGACTGCACGCCATTCTGTTTGAAGGGCGCACGCTGGAGCAGGTCATCGAACTGTTGATGCGTGGCGAACCGAAGACCGATGTCGATTTCATTTCCACCAGCGGTTTCAACTGAMTEQRPIAVLGGGSFGTAVANLLAENGHAVRQWMRDPEQAEAIRLNRENPRYLKGIKVRPEVEPVTDLQATLEGSDLFFVALPSSALRSVLASHAERLSGKLLVSLTKGIEAQTFKLMSEILEEIAPKARIGVISGPNLAREIAEHALTATVVASEDEELCQRVQAALHGRTFRVYASADRFGVELGGALKNVYAIIAGMAVALGMGENTKSMLITRALAEMTRFAVSQGANPMTFLGLAGVGDLIVTCSSPKSRNYQVGFALGQGLSLDEAVSRLGEVAEGVNTLKVLKAKSQETGVYMPLVAGLHAILFEGRTLEQVIELLMRGEPKTDVDFISTSGFNPGPT0024330_1148DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_DEHYDROGENASE_ACTIVITY,PGPT0024330-gpsA-K00057NANA
D1-35_01988348hypothetical proteinATGAACGATCCGAAAGGGCAGCCCCAATACGAATCCATCCTGCTGCGTGTGCTGTGGATGGTGATCTATCTGCTGGTCTGGCAGGTGGCGCAATTCATCCTCGGCGCCGTGGTGCTGGTGCAATTGGTTTATCGACTGATCTACGGCGCACCCAGCGCCAGCCTGATGAATTTTGGCGACAGCCTGAGCCAGTTCCTCGCGCAGATCGGCCGCTTCGGCACTTTCCACAGCGACCAGAAACCCTGGCCCTTCGCTGACTGGCCGACCCCGCGGACACCGGAAGGCGAAGCGCCTCACACCGTGGCGCCAGCGCCGCACCCGGTCCGTGACGAGGAGCCGAAACTATGAMNDPKGQPQYESILLRVLWMVIYLLVWQVAQFILGAVVLVQLVYRLIYGAPSASLMNFGDSLSQFLAQIGRFGTFHSDQKPWPFADWPTPRTPEGEAPHTVAPAPHPVRDEEPKLNANANANANA
D1-35_01989453hypothetical proteinATGAAACTGTGGGTATTGCGTCACGGTGAAGCAGAGCCGCACGGGGCTCGTCCGGACCCTGAGCGGGTATTGACGGTCCATGGCCGCGAAGAGGTGCTGCGCAGCGCCGGGCAGTTGATGGCTGAGCCGTTGCGGGCCATTTATGCCAGTCCCTACGTGCGTGCCCAGCAGACCGCGCAACTGGTGCGTGAAGCCCTGGGGTTCGAGCCAGAGTTGATCACGGTCGACTGGCTCACCCCGGAGACCCGGCCGGCCGATGTGTTGAAACATCTGGAGGACCAGGACGACGTACTGCTGGTCAGCCACAACCCGCTGGTGGGCAGCCTGTTGGGCTTGTTGCAGCACGGCCACCTGCAGCAACCTGAACAGGTGCAAACGGCCGGTCTGGCAGAGCTGGAAGGCGACCTGCCGCTGGCCGGCTCGATGAAACTCAAGAGCCTCAGGCATCCCTGAMKLWVLRHGEAEPHGARPDPERVLTVHGREEVLRSAGQLMAEPLRAIYASPYVRAQQTAQLVREALGFEPELITVDWLTPETRPADVLKHLEDQDDVLLVSHNPLVGSLLGLLQHGHLQQPEQVQTAGLAELEGDLPLAGSMKLKSLRHPNANANANANA
D1-35_01990444COG2050Putative esteraseATGAGTCTTTGGCGCACCACCCCCAACATCGAACAACTGAACGCCGCCGGTAAAAATACCATCAGCGAAGTGCTGGACATCCGTTTCGAATCCTTCGATGAAGAATCCCTGACCGCGAGCATGGTGGTCGATCACCGCACCCACCAACCGTTCGGGTTGCTGCACGGCGGCGCTTCGGTGGTGCTGGCCGAAACGGTCGGGTCCATGGCCGCCTACCTGTGCGTGGACACCAGCAAGTTCTATTGCGTCGGCCTGGAAATCAACGCCAACCACCTGCGCGGTGTGCGCAGCGGGCGGGTCACCGCGACGGCTCGCGTGGTTCACCTGGGCCGCACCACGCAGGTCTGGGATATTCGCCTGGTCAATGATGATGGCAAGGTCAACTGTGTATCGCGCCTGACCATGGCGGTGGTGCCGCTGGGCGAGCAGCCGCCGGCGCGTTGAMSLWRTTPNIEQLNAAGKNTISEVLDIRFESFDEESLTASMVVDHRTHQPFGLLHGGASVVLAETVGSMAAYLCVDTSKFYCVGLEINANHLRGVRSGRVTATARVVHLGRTTQVWDIRLVNDDGKVNCVSRLTMAVVPLGEQPPARPGPT0001845_733DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0001845-menI|ydiI|ydiL|ydiI|ybdB-K19222NANA
D1-35_01991795hypothetical proteinATGTCGCAACAGGTGTTTTTCGCCCACGCCAATGGTTTCCCCTCGGCTACCTACGGCAAGCTGTTCGCCGCGCTGGCGCCGCAATATGAGGTCGCGCACCTCGAACTGCACGGTCACGACCCACGGTTTCCGGTGGACGACAACTGGAACAACCTGGTGGACGAGCTAATTCATCACCTGGAGCAGCAACCGGAACCGGTGTGGGGCGTCGGCCATTCCCTGGGCGGTGTGTTGCACTTGCATGCGGCGTTGCGTTGCCCTCGGTTGTATCGCGGCGTGGTCATGCTCGATTCCCCGGTGCTGACCCGCGCCGACCGATGGCTGATCCTGGCCGCCAAGCGCATGGGGTTCATTGATCGCCTGACCCCGGCCGGGCGGACCCTGGGACGGCGCGAGGAATTCAGCGACCTGGCGTCGGCGCGGGCCTATTTTGCCGGCAAAACGCTGTTTCGCGGTTTCGACCCGGAATGCTTTGAAGCTTATCTGCAACATGGCTTGCAACCTGTCGGTGACCGGTTGCGGCTGCGCTTCGACCCGGCCACGGAGATCAGCATCTACCGTGGCGTGCCCCATACCCGCCCCGCGAGGGCTGGAACACTCCAGGTTCCGCTGGCGGTAGTACGGGGCCGGCAGAGTCGCGTGGTGATGCGTCATCACACGCGTGTGGTGGGGCGCATGCCGCAGGGTGAATCCCTGACCATGCCCGGTGGCCACATGTTTCCCCTCGAATATCCCCAGGACACGGCCAACCTGCTCAAGGACCTGCTCCAGCGCTGGCAAGGGCCTGACGCATGAMSQQVFFAHANGFPSATYGKLFAALAPQYEVAHLELHGHDPRFPVDDNWNNLVDELIHHLEQQPEPVWGVGHSLGGVLHLHAALRCPRLYRGVVMLDSPVLTRADRWLILAAKRMGFIDRLTPAGRTLGRREEFSDLASARAYFAGKTLFRGFDPECFEAYLQHGLQPVGDRLRLRFDPATEISIYRGVPHTRPARAGTLQVPLAVVRGRQSRVVMRHHTRVVGRMPQGESLTMPGGHMFPLEYPQDTANLLKDLLQRWQGPDANANANANANA
D1-35_01992852menH_12-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseATGAACGCCGTCGAAGAGGTTCGCCTGAGCTTGCCCCATATCGAACTCGCCGCCCACCTGTTCGGACCGGAGGATGGCCGGCCGGTGATCGCGCTGCATGGCTGGCTGGACAACGCCAACAGCTTCGCCCGGCTCGCCCCACGGCTGGAGGGTGTGCGGGTGATTGCCCTGGACATGGCCGGCCACGGTCATTCCGGACACCGCCCGCCCGGGGCCGGCTACGCCCTGTGGGACTACGCCCATGATGTGCTGCAAGTGGCCGAGCGATTGGGCTTGAAACGTTTCGCGCTGTTGGGGCACTCCATGGGCGCCATCGTTTCGCTGGTGCTGGCCGGCTCCCTGCCGGAGCGGATCACGCACCTGGGCCTGATCGACGGCGTGATTCCGCCTACAGCCAAGGGCGACAATGCGGCGGAGCGGCTGGGCATGGCCCTGCAGGCGCAGCTGGATTTGCAGGAAAAGCGCAAACCGGTCTACACAACCCTCGACCGAGCCATCGAAGCGCGCATGAAAGGGCTGGTGGCGGTCAGTCGCGAGGCCGCCGAGTTGCTCGCCCAGCGCGGTCTGATGCCAGTGTCGGGCGGCTATACCTGGCGCACCGACAACCGCCTGACCTTGCCATCGCCACTGCGCCTGACCGATGAACAGGCCATGGCGTTCGTGGCCCGAGTCGCCTGTCCAGCGCACCTGGTGGTGGCAGCTGACGGCATGCTGGCCCAGCATCCGGAGTTGCTGGAACGTCTACCCTTCAGTCATGAGCGGTTGCCTGGCGGTCATCATTTGCACCTGAACGATGAGGTCGGTGCGGCTCTTGTAGCAGACTGTTTCAATCGGTTCTTCAGCGTTTCTTGAMNAVEEVRLSLPHIELAAHLFGPEDGRPVIALHGWLDNANSFARLAPRLEGVRVIALDMAGHGHSGHRPPGAGYALWDYAHDVLQVAERLGLKRFALLGHSMGAIVSLVLAGSLPERITHLGLIDGVIPPTAKGDNAAERLGMALQAQLDLQEKRKPVYTTLDRAIEARMKGLVAVSREAAELLAQRGLMPVSGGYTWRTDNRLTLPSPLRLTDEQAMAFVARVACPAHLVVAADGMLAQHPELLERLPFSHERLPGGHHLHLNDEVGAALVADCFNRFFSVSNANANANANA
D1-35_01993807hypothetical proteinATGTATTCATTCGCCCTGCTGGCGCTGGCCGCTTTCGGTCCGGCCGCCCTGGCCGCCGATGTGCCCGGCAGCCAGGACCTGGCGCGCGTGCCGCGGATGCCCGACGCGCAAATCGTCGATTACAAGCAAACCAGCGACCTTGAGCGTATCTACCCGATGGGCTCGATCCGCAGGATCAGCGGCCAGCTGCGCTTCGATGGGCAGGTCGACGCCCGCGGCAACGTCACGTCGGTCACCTATGAATTACCGCCGGAGCACACCGCCACCCAGGCTTTTACCGCTGCTCGCGAAGCACTGCAGAAGCAGGACGCCGAGCTGCTTTTCTGGTGCCAGGCGCGTGATTGCGGTGAGAGCAGCCTGTGGGCCAACCAGGTGTTTGGCAATGCCAAGCTCTATGGTGCCGACAGCGGCCAGGCCTATCTGCTGTTGCGCCTGGCGCCGCCGGCGGACAACACGCTGATCGCGCTGTATGCCATCACCCGCGGCAACCGCAAGGCCTACCTGCACGTCGAACAGTTCGAAGCGAACGCTCCCCTGGGGGATCTGCTGCCGACATCTGCGACGTTGCTGCGCCAGCTCAAGGACACCGGCGTGCTGGATCTGCCGCGTCTTGCCGGCGAGCCGGACGACGCCTGGCTGCGCTTGCTCTCCCGGGCGCTGAACCTGGACACCGGCCTTCGGGTCAGCATCGCCGGCCCGCAGGCCGAGGTGTGGCGCCAGGCCCTCATTGGCCAGGGTGTGCGGGCCGCGCGCATGGAGACGGCCAGCGATGAGGCGAAGGGTCTGCACCTTGAACTGTTGCGATAAMYSFALLALAAFGPAALAADVPGSQDLARVPRMPDAQIVDYKQTSDLERIYPMGSIRRISGQLRFDGQVDARGNVTSVTYELPPEHTATQAFTAAREALQKQDAELLFWCQARDCGESSLWANQVFGNAKLYGADSGQAYLLLRLAPPADNTLIALYAITRGNRKAYLHVEQFEANAPLGDLLPTSATLLRQLKDTGVLDLPRLAGEPDDAWLRLLSRALNLDTGLRVSIAGPQAEVWRQALIGQGVRAARMETASDEAKGLHLELLRPGPT0013045_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-GLUTATHION_METABOLISM,PGPT0013045-yghU|yfcG-K11209NANA
D1-35_019941038ydiK_1COG0628Putative transport protein YdiKATGCTCAATAACGATCGGCTATTGGTGCAGATCCTGCTGTTGGTGTTGTTCGGCGCAAGCCTCTGGGTGATGGCGCCATTCTGGTCGGCGCTGTTCTGGGGCGCCGTGCTGGCTTTCGCCAGCTGGCCGCTGATGCGCTTGCTGACCCGCTGGGTCAACGGGCGTGAATCCCTCGCCGCGGCGTTGCTGACGGTCGGCTGGATGTTACTGGTGGCGGTGCCGCTGGTGTGGCTGGGATTCAACCTGGCCGATCATGTGCGCGATGCCACGGCGTTCATCAGGGATGTCCAGGTCGACGGCCTGCCCGCAGCGCCGGAATGGCTGGCTGGTGTGCCGCTGGTAGGTGGGCGGCTGGTGACGCTCTGGGACAGCATCGACCAACAGGGCGCGGCGATGATGGTGTCCATCAAGCCGTACCTCGGAAGGGTCGGCAATTGGTTGCTGGCCCGCAGCGCGCAAGTAGGCGGCGGTATTCTCGAACTGACGTTGAGCATCGTGTTCGTGTTCTTTTTCTACCGTGACGGCCCGCGCCTGGCGGCCTTTGTCCAAGGCTTGCTGGAGCGGTTGATTGGTGACCGTGCCGGGTACTACGTCGACCTGGTGGCCGGTACGGTGCAGCGGGTGGTCAACGGCGTGATCGGTACCGCGGCGGCCCAGGCCGTGCTCGCGCTGATCGGTTTCCTGATCGCGGGCGTGCCGGGAGCACTGGTGCTTGGTATTGTCACTTTCCTGCTCAGCCTGATTCCCATGGGCCCGCCGCTGGTCTGGATCCCCGCCACGGCGTGGCTGGCGTGGAAGGGCGAATACGGGATGGCGGTGTTCCTCGGTATCTGGGGCACCTTCATCATCAGCGGCGTGGATAACGTGCTCAAGCCTTACCTGATCAGCCGCGGCGGAAACCTGCCGCTGGTCATCGTGCTGCTGGGGGTTTTCGGCGGGTTGATCGCCTTTGGTTTCATCGGCCTGTTCATCGGTCCGACGCTGTTGGCGGTGGCGTACAGCTTGCTGACGGATTGGAGCAAGAGCCACGCGCGGTAAMLNNDRLLVQILLLVLFGASLWVMAPFWSALFWGAVLAFASWPLMRLLTRWVNGRESLAAALLTVGWMLLVAVPLVWLGFNLADHVRDATAFIRDVQVDGLPAAPEWLAGVPLVGGRLVTLWDSIDQQGAAMMVSIKPYLGRVGNWLLARSAQVGGGILELTLSIVFVFFFYRDGPRLAAFVQGLLERLIGDRAGYYVDLVAGTVQRVVNGVIGTAAAQAVLALIGFLIAGVPGALVLGIVTFLLSLIPMGPPLVWIPATAWLAWKGEYGMAVFLGIWGTFIISGVDNVLKPYLISRGGNLPLVIVLLGVFGGLIAFGFIGLFIGPTLLAVAYSLLTDWSKSHARNANANANANA
D1-35_019951047sasA_9Adaptive-response sensory-kinase SasAATGCGCATGCGCCTGGACACCCTGTTCGGCCGGCTGTTCGGCGTGCTTTTGCTGGCGATCGTCCTGGCGCACCTGCTGGCTTTTGCCTGGTTTTTCTACTACGGCCCGCCACCGCCTCCGGGACCACCGCCCGAGTCTTCCCGGCCAATCGAAGGCGGCCAAGGCTCGGCGCCACCAACCGATCGTCCTTTGCGCCCGCGGTTCGGCGGTCCCGTGGTGCCGCTGACATTTCAGTTTGTGTTCCTGATCGTAGCCGCCTGGTACGGCGCCAAGCTGTTGACCCGGCCGATCCAGCGCCTGAGCGAGGCCGCCGAACGATTAAGCGAGAACCTCGACAGCCAGCCATTGGATGCAAGCGGCCCCAGGGAGGCACGCCAGGCGGCCCATACGTTCAACTTGATGCAGCAGCGGATCCGTGAGCAGGTACAACAGCGCTCGCGGATGCTCGGCGCGGTCTCCCACGATTTGCGAACGCCGCTGTCACGGCTAAAGTTGCGCCTGGAACAGATTGACGACCCCAAGCTGCAAAACCAGATGCGCCAGGACCTGGACGACATGATCGGCATGCTCGACGCCACGCTTTCCTACTTGCATGAACAACGCACCAGCGAAGCGTTGCAATGGATGGATGTGCAAGCCTTGGCGGAATCACTGAGCGAGAATGCCCAGGATCAGGGTGCCGATGTCCAGGTCAGTGGTGCCTGCGCCCCGCTGCTGGTGCAACCCATGGCGCTGCGCTCGTGCATCAACAACCTCATCGACAATGCCTTGCGCTACGCCGGTCATGCCTCGATCGTCCTGGAAGACCAGCGCCACCAATTGCTGATCCGAGTGATCGATCACGGCCCCGGCATCGCCGCAGACAAACGCGAAGCTGTGTTCGAGCCGTTCTTTCGCCTGGAAGGCTCGCGCAACCGCAACTCCGGCGGCGTAGGCCTGGGCATGACCATCGCCCGGGAAGCCGCCGAACGTCTGGGTGGGCAATTGAGCCTGGAGGAAACTCCCGGGGGCGGATTGACGGCGGTGATCGGCCTGCCCCGTCGTTGAMRMRLDTLFGRLFGVLLLAIVLAHLLAFAWFFYYGPPPPPGPPPESSRPIEGGQGSAPPTDRPLRPRFGGPVVPLTFQFVFLIVAAWYGAKLLTRPIQRLSEAAERLSENLDSQPLDASGPREARQAAHTFNLMQQRIREQVQQRSRMLGAVSHDLRTPLSRLKLRLEQIDDPKLQNQMRQDLDDMIGMLDATLSYLHEQRTSEALQWMDVQALAESLSENAQDQGADVQVSGACAPLLVQPMALRSCINNLIDNALRYAGHASIVLEDQRHQLLIRVIDHGPGIAADKREAVFEPFFRLEGSRNRNSGGVGLGMTIAREAAERLGGQLSLEETPGGGLTAVIGLPRRPGPT0004100_5298DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-CUS_TRANSPORT_SYSTEM,PGPT0004100-cusS|copS|silS-K02484NANA
D1-35_01996759ompR_3Transcriptional regulatory protein OmpRATGCAGAACACCCCTGTTGCAAATTCTGGCGACCCACAAGTACTCGACGACGATAAGCGTTGGAGCACCCACGCACTGATCGTCGATGACGACGTACCGATCCGAGAACTGCTGATCGACTACCTGGCCCGCTTCAGCATTCGCGCCATCGGCGTGACCGATGGCGCGGCCATGCGCCAGGCGCTGCAGGCCGGGCATTTCGATGTGGTCGTCCTGGACCTGATGTTGCCGGGCGAGGACGGCTTGCAGCTGTGCCGCTGGCTGCGGGCCGAATCGGACATTCCGATCCTGATGCTGACTGCCCGCTGCGAACCCACCGATCGCATCATCGGCCTGGAACTGGGTGCCGACGACTACATGGCCAAGCCCTTCGAACCCAGGGAGTTGGTGGCGCGAATCCAGACCATCCTGCGCCGCGTGCGTGATGATCGCACCGAGCAGCGCGCCAATATCCGCTTCGACAACTGGCGGCTCAACAGCGTACTGCGCCAACTGATTTCCGCCGACGGGCTGGTGGTGCCGCTATCCAACGCCGAGTTCCGGCTGCTATGGGTGTTCATCGAGCGTCCGCACCGAGTGCTCAGCCGTGAACAACTGCTGGACGCGGCCCGCGGTCGTTCGATCGAAGCCTTTGATCGCAGTATCGACCTGCTGGTCTCGCGCTTGCGTCAAAAGCTGGGTGACGACCCGAAGGCCCCGCAGTTGATCAAGACCGTACGCGGTGAAGGCTACCTGTTCGACGCGCGAGCCATCAGTTGAMQNTPVANSGDPQVLDDDKRWSTHALIVDDDVPIRELLIDYLARFSIRAIGVTDGAAMRQALQAGHFDVVVLDLMLPGEDGLQLCRWLRAESDIPILMLTARCEPTDRIIGLELGADDYMAKPFEPRELVARIQTILRRVRDDRTEQRANIRFDNWRLNSVLRQLISADGLVVPLSNAEFRLLWVFIERPHRVLSREQLLDAARGRSIEAFDRSIDLLVSRLRQKLGDDPKAPQLIKTVRGEGYLFDARAISPGPT0012985_762DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OSMOLARITY_SIGNALLING,PGPT0012985-ompR-K07659NANA
D1-35_01997699pyrFCOG0284Orotidine 5'-phosphate decarboxylaseATGTCCGCCTGCCAGACGCCTATCATCGTCGCCCTGGATTTCCCTACCCGTGACGCCGCCCTGAAGCTGGCCGACCAGTTGGACCCCAAGCTCTGCCGGGTCAAAGTCGGCAAGGAACTGTTCACCAGTTGTGCTGCGGAGATCGTCGGCACCCTGCGGGACAAGGGCTTCGAGGTCTTCCTCGACCTGAAATTCCACGACATCCCCAACACCACCGCCATGGCCGTCAAGGCCGCTGCGGAGATGGGCGTGTGGATGGTTAACGTGCACTGCTCCGGTGGCCTGCGCATGATGGCGGCGTGCCGGGAAGTGCTGGACCAGCGCAGCGGTCCGAAACCGCTGCTGATCGGCGTGACCGTGCTGACCAGCATGGAGCGTGAGGACCTGGCGGGAATCGGCCTGGACATCGAGCCCCAGGAGCAGGTGTTGCGTCTGGCGGCGCTGGCGCAGAAGGCCGGCATGGACGGTCTGGTCTGTTCGGCCTTGGAAGCCGGCGCCCTGAAGACGGCCCACCCGTCGCTGCAACTGGTGACCCCGGGGATTCGTCCAGCGGGCAGTGCCCAGGACGACCAGCGTCGTATCCTCACGCCGCGCCAGGCACTGGATGCCGGTTCTGACTATCTGGTGATCGGCCGTCCGATCAGCCAGGCCGCCGATCCGGCCAAGGCCTTGGCGGCGGTGGTGGCCGAACTGGCCTGAMSACQTPIIVALDFPTRDAALKLADQLDPKLCRVKVGKELFTSCAAEIVGTLRDKGFEVFLDLKFHDIPNTTAMAVKAAAEMGVWMVNVHCSGGLRMMAACREVLDQRSGPKPLLIGVTVLTSMEREDLAGIGLDIEPQEQVLRLAALAQKAGMDGLVCSALEAGALKTAHPSLQLVTPGIRPAGSAQDDQRRILTPRQALDAGSDYLVIGRPISQAADPAKALAAVVAELAPGPT0014965_3864DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0014965-pyrF-K01591NANA
D1-35_019981005yfmJCOG2130Putative NADP-dependent oxidoreductase YfmJATGACTGCTCAGATCAATCGCCAGTTCCTGCTCGCCAAACGCCCGGTAGGCGCCGCGACCCGCGAGACATTCACTTATCAACAAGTGCCGGTCGGCGAACCGGCAGCCGGTCAGATCCTGGTGAAGAACGAATACCTGTCTCTGGACCCGGCCATGCGTGGCTGGATGAACGAGGGTAAGTCCTATATCCCGCCGGTCGGCATCGGTGAAGTCATGCGAGCCTTGGGCGTAGGCCAGGTTGTCGTGTCGAACAATCCGGGCTTCGCGGTCGGGGACTACGTCAACGGTGCATTGGGCGTGCAGGATTATTTTCTCGGCGAGCCACGAGGTTTCTACAAGGTAGATCCGAAACTGGCGCCGCTGCCGCGTTATTTGTCCGCGCTGGGCATGACCGGCATGACCGCCTATTTCGCCCTGCTGGATGTCGGCGCCCCCAAGGCCGGCGAAACCGTAGTGCTCTCGGGAGCCGCCGGGGCGGTGGGCAGCATCGCTGGGCAGATCGCCAAAATCAAAGGCTGCCGCGTGGTCGGCATTGCCGGCGGCGCCGATAAATGCCGGTTTCTCATTGATGAGCTGGGCTTTGACGGCGCCATCGACTACAAGAGCGAAGACGTCCACGCCGGCCTCAAGCGCGAATGCCCGAAAGGCGTGGATGTGTATTTCGACAACGTCGGCGGCGACATCCTCGATGCGGTGCTCAGCCGCCTGAACATGAAGGCCCGCGTGGTGATTTGCGGTGCGATCAGCCAATACAACAACAAGGAAGCGGTGAAAGGACCGGCCAACTACCTGTCGCTACTGGTCAATCGTGCGCGCATGGAAGGCTTCGTGGTCATGGACTACGCCGCGCAATTCGCCGCCGCCGGGCAGGAAATGGCCGGCTGGATGGCCAAGGGGCAGCTCAAGAGCAAGGAAGACATCGTCGAAGGGCTGGAGACCTTCCCCGAGACGCTGACCAAGCTGTTCAGCGGGGAGAACTTCGGGAAGTTGGTGTTGAAGGTCTGAMTAQINRQFLLAKRPVGAATRETFTYQQVPVGEPAAGQILVKNEYLSLDPAMRGWMNEGKSYIPPVGIGEVMRALGVGQVVVSNNPGFAVGDYVNGALGVQDYFLGEPRGFYKVDPKLAPLPRYLSALGMTGMTAYFALLDVGAPKAGETVVLSGAAGAVGSIAGQIAKIKGCRVVGIAGGADKCRFLIDELGFDGAIDYKSEDVHAGLKRECPKGVDVYFDNVGGDILDAVLSRLNMKARVVICGAISQYNNKEAVKGPANYLSLLVNRARMEGFVVMDYAAQFAAAGQEMAGWMAKGQLKSKEDIVEGLETFPETLTKLFSGENFGKLVLKVPGPT0023605_873DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-PLANT_CURCUMIN_RESISTANCEADAPTION_TO_PIS-CURCUMIN_DEGRADATION,PGPT0023605-curA|yncB-K23256NANA
D1-35_01999762linCCOG10282,5-dichloro-2,5-cyclohexadiene-1,4-diol dehydrogenaseATGAGCATGACGTTTTCCGGACAGGTTGCCGTGGTGACGGGCGCGGCGGCAGGCATTGGCCGCGCCACCGCCCAGGCGTTCGCGGCGCAAGGCCTGAAAGTGGTCGCGGCGGACCTGGACATGGCGGGCGGCGAGGGTACGGTGCAGTTGATTCGCGATGCCGGTGGCGAGGCGGTGTTCGTGCGCTGTGACGTGACCGTGGAAAGCGATGTGCAACGTCTGATGGACGAGGTGATCAGTGCCTACGGTCGCCTGGATTACGCATTCAACAACGCCGGCATCGAGATCGAGAAGGGCAAGCTGGCCGATGGCACGCTGGACGAGTTCGACGCGATCATGGGGGTCAACGTCAAAGGCGTCTGGCTGTGCATGAAGTATCAATTGCCGTTGCTGCTGGCCCAAGGGGGCGGCGCTATCGTCAATACGGCCTCAGTGGCCGGGCTAGGGGCCGCGCCGAAAATGAGCATCTATGCAGCCTCCAAGCACGCGGTGATCGGGCTGACCAAGTCGGCTGCCATCGAATACGCCAAGAAGAAAATCCGTGTGAACGCGGTCTGCCCGGCGGTCATCGACACCGATATGTTCCGGCGCGCCTACGAGGCGGACCCGAAGAAAGGCGAGTTCGCCAATGCGATGCACCCCGTGGGGCGTATTGGCAAGGTCGAGGAGATCGCCAGCGCGGTGCTGTACCTGTGCAGCGACGGGGCGGCATTCACTACGGGGCATTCGCTGGCCGTGGACGGCGGGGTCACGGCGTTCTGAMSMTFSGQVAVVTGAAAGIGRATAQAFAAQGLKVVAADLDMAGGEGTVQLIRDAGGEAVFVRCDVTVESDVQRLMDEVISAYGRLDYAFNNAGIEIEKGKLADGTLDEFDAIMGVNVKGVWLCMKYQLPLLLAQGGGAIVNTASVAGLGAAPKMSIYAASKHAVIGLTKSAAIEYAKKKIRVNAVCPAVIDTDMFRRAYEADPKKGEFANAMHPVGRIGKVEEIASAVLYLCSDGAAFTTGHSLAVDGGVTAFPGPT0003180_8999DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-35_020001398hisC_4Histidinol-phosphate aminotransferaseATGGAGTTGAGAATCGACCGGCAGGCCCTGGTGCCTGTCGTGCAGCAAATTGTCGACGCGCTGGCCAGCCGGATCCGCCAGGGTGTGGTGCCGCCAGGGGCGCGCCTGCCATCGATCCGGCGGCTCGCGCGGGAAAACCTGCTAAGCCAGGCGAGTGTCCACGAAGCCTGCCAGCGGCTGGTGGCGCAGGGGCTGCTGGCCTCTCGTCATGGCTCAGGTTTTCTGGTCGCCTCAGGCCCTTTGGCATGGCATGAGCCGGTCGATCAGTTTTGGCCGCCGGGCATTTCTTACCAGCAGGCGGGGTTGGGGGCCGGTTCGCCAGGGGCTCTGGAACTGGGGGGCGGCGGGTTGCCCGAGAGCTGGCGTGAAAGCGACGACCTTGGTTATGCGATCCGCCAGGTTACCCGCACCGATATGGCGGGGTTGTTCAACTACAGCACGCCGATGGGGCTGCCGGCCTTGCGCGAGCAATTGTCCAGGCGCCTGAAACAGTTCGATATCGATGCCGATGAAAACCTGATCCTGACCACGACGGGGGTAAGCCACGGGCTGGACCTGATCGTGCGCACACTGCTGCAACCAGGGAGCTGCGTCGTGGTGGAAAGCCCGGGTTATTCGAAGCTGTTCGACCTGCTCAGGCTGCACAGGATCGACATGATCGAACTGCCGAGAACACCGCACGGCCCGGACATCGCTGCGCTCGAATGTCTGTTGGCGATGCATCGCCCCAACGCCCTGTTCATCAACAGTGCCTGCCACAACCCAACCGGCAGCAATCTTTCCCTGGCTGTAGCCCAGCGATTGCTTGAGTTGGCGAAAGAGCACGCCATGCTGGTTATCGAGGACGATGTCTATGCCGATTTCCAGGGTTCGACGCGAGTCCGCCTGGCCGCTCTGGATGCCGATGTGATCTACCTCGGCAGTTTCTCGAAAACCCTCAGCAGTTCGTTACGAGTCGGCTTCGTGGTGGCCGGGCCCTGCGTTATCGCGCGATTGAGCGAGGTCAAGGGGATAACCAGCATGGGCGGGTCGCGATTCTCTGAAGCGGTACTGACCAATCTGTTGGCCAACGGTGCCTACCGAAAACTGGTCCAGCGCCAGCGGCAGCGGCTGAATGCCGATATGGCCATGACGTTGCAGTTGCTCGACGAGGCCGACTGGGAAGTTTTTGGCAAACCGGCAGGGGGGCTGTTCATTTGGGCGCGCCCGCCCATTTGCGACTACGGCAGGTTGCAGTGTCTGGCCAGGTACTCCGGCATCCAGCTGTCCTCGCGTACGGCGTTCAGTCCTTCAGGCACCGACACTGACTGGTTGCGGATCAACGTGGCCCATGCCCGAGACCCCAAGGCGTTGGCGTTTTTCCATGCCACGGCTCTGGATCGACCTCAAGTGTCCTGAMELRIDRQALVPVVQQIVDALASRIRQGVVPPGARLPSIRRLARENLLSQASVHEACQRLVAQGLLASRHGSGFLVASGPLAWHEPVDQFWPPGISYQQAGLGAGSPGALELGGGGLPESWRESDDLGYAIRQVTRTDMAGLFNYSTPMGLPALREQLSRRLKQFDIDADENLILTTTGVSHGLDLIVRTLLQPGSCVVVESPGYSKLFDLLRLHRIDMIELPRTPHGPDIAALECLLAMHRPNALFINSACHNPTGSNLSLAVAQRLLELAKEHAMLVIEDDVYADFQGSTRVRLAALDADVIYLGSFSKTLSSSLRVGFVVAGPCVIARLSEVKGITSMGGSRFSEAVLTNLLANGAYRKLVQRQRQRLNADMAMTLQLLDEADWEVFGKPAGGLFIWARPPICDYGRLQCLARYSGIQLSSRTAFSPSGTDTDWLRINVAHARDPKALAFFHATALDRPQVSNANANANANA
D1-35_020011968mcpQ_1COG0840Methyl-accepting chemotaxis protein McpQATGATTACGGCCGTGCAAGGACGTTTCGCCAACCTCGGTATGGCGAAAAAACTGGGCATCGGGTTTTTCCTGGTGTTGCTGCTCACTGCGTTGGTGGCGGCCATCGGTGTCTGGTCGCTGCAAACCATCAGTCAGCGTTTCGATGGTTTGAAACAGATGTCGTCCCTCAACAGCGGGTTGCTCAAGGTCCGGTTGCTTGAGCAGGAATACGCCTCGCGCTCCGACCCCAAGACGGCCGATGCCTTGCGCCAGGGTGTCGATGCATTGGTTGCCCTGGCGAATGAGCTCAAGGCGCAATCGGCTGCCAATGTACCGGTGATGGATGAAGTGGAGCAGGCTCTGGCGGCGTATCGCAAGGCATTCGATGAGTTTGTGGATCTGAGCCAGAGCAAGGACCTGGCCCTGGAAATGGCCAGTTGGTCGGTTTCCAGTGTCGCCAACAACCTGGATGTGTTGCAGGCGGGTCTGGCCGATGACGGCGCCTATACCTTGAAAGAGTCCGAAGGCAAGGACGGTGCGGAATTCATCGAGCAGGCCAACCAGGTCAGCGAGGTCTCGCGGCTGATGCTGCAGGCCATGAACGAAGCGCGGGTTCGCCTGGACCAGAGCCGTAAAGGCAGCGAGGAGAACGCCGGGCAAGGCAACATCGAACAGGCCGAGCAGGCCATGAAACTGGCCGAAGTACTCAAGGGCGCGGTCAAGGATCCGGGTTACCAGACCGTACTCAACGAAGTGGCCGGGCACATCGGCGGATTCAATCAGCAGTTGGCCGAATACACCGGTTTGCTGGCCAAGGAGAAAACCGTCTACCAGCAATTGCATGAGCGTGCCGACCAGGTTGTGGCGCGGGTCGACCAAGCCTACAACGCTGAAGACAGTGCAATGCAGGCGGAGCTGAAGAAAAATTCGCTGATGATCGTCGGTTCGTCGGCCCTGGCCCTGCTGGTGGGATTGATCGCTGCCTGGCTCATCACCCGGCTGATCGTTACGCCGCTGCGCAGTGTCATTCGCGTCGCCCAACAGATTGCTTCAGGTGACTTGAGTGCCAAGGTTGATGTGACACGTCGGGATGAGATCGGCCAGTTGATGCTGGCCATGCAGCAGATGGCGGCCGGCTTGAGCAGCATCGTCAGCGGTTTGCAGGCCGGCATCGAGCAATTGGCCAGCTCGGCACAGTCGCTGTCGTCCGTGACCGAGCAGACCAACCTTGAAGTCAGCAGCCAGAAGGAGGAAACCGAGCAGGTGGCCACGGCCATGAACCAGATGACCGCCACCGTGCATGACGTGGCGCGCAACGCCGAAGAGGCCGCGCGAGCAGCCCAGACCGCCGACGACAAGGTTGAAAGCGGCCAGCGGGTGGTGCGCCAGAGCATGGTGCGTATCGAACAACTGGCTGATTCGGCGACGTCGGCCAGCACCAGCATCGAAAGCCTCAGCGCCGAGATACAGAACATCGGCACGGTGCTGAGCGTGATCAAGAGCGTCGCCGAACAAACCAACCTGCTGGCGCTCAACGCCGCTATCGAGGCGGCCAGGGCGGGCGAGCAGGGCAGGGGTTTTGCCGTGGTGGCCGATGAGGTGCGAGCCCTGGCCAAGCGTACGCAACAGTCCACTGAGGAAATCGAGCGATTGGTCAGCGCCCTGCGCTCGGCCGCCCAGACCTCCGTACAACAGATCCAGAGCAGCGGCGAATTGGTCAAAATGGCCGTCAGCGATGCGCTGCAGACCGAAAGCGCATTGGGCAGCATTGCGGCGGCGGTGTCGTTGATCCAGCAGATGAACCAACAGATCGCGGCGGCAGCCGAGCAACAGAGTTCGGTGGCTGAAGAGATCAACCGCAGTGTTACCAGTATCCGTGCCAGCGCCGATCAATCGTCCATGGCCATGCAGGGCAATGCCGCTTCAAGCATTGAGCTGGCACAGCTGGGGAGCGAGTTGAAGGGGATGGTGGGGCATTTCAGGTTGTGAMITAVQGRFANLGMAKKLGIGFFLVLLLTALVAAIGVWSLQTISQRFDGLKQMSSLNSGLLKVRLLEQEYASRSDPKTADALRQGVDALVALANELKAQSAANVPVMDEVEQALAAYRKAFDEFVDLSQSKDLALEMASWSVSSVANNLDVLQAGLADDGAYTLKESEGKDGAEFIEQANQVSEVSRLMLQAMNEARVRLDQSRKGSEENAGQGNIEQAEQAMKLAEVLKGAVKDPGYQTVLNEVAGHIGGFNQQLAEYTGLLAKEKTVYQQLHERADQVVARVDQAYNAEDSAMQAELKKNSLMIVGSSALALLVGLIAAWLITRLIVTPLRSVIRVAQQIASGDLSAKVDVTRRDEIGQLMLAMQQMAAGLSSIVSGLQAGIEQLASSAQSLSSVTEQTNLEVSSQKEETEQVATAMNQMTATVHDVARNAEEAARAAQTADDKVESGQRVVRQSMVRIEQLADSATSASTSIESLSAEIQNIGTVLSVIKSVAEQTNLLALNAAIEAARAGEQGRGFAVVADEVRALAKRTQQSTEEIERLVSALRSAAQTSVQQIQSSGELVKMAVSDALQTESALGSIAAAVSLIQQMNQQIAAAAEQQSSVAEEINRSVTSIRASADQSSMAMQGNAASSIELAQLGSELKGMVGHFRLPGPT0015710_8507DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_02002771hypothetical proteinGTGACACCACTCATGATCACCCTGCTCGTCGTAGCCGGGATCGCACTGTTGATCGCCATTGGCTACATGAACCATGTGGTGGAAAACAACAAGCTGGAAAAGGCCCGCACCAAAGTCGAACTCAACGACCGCTTGCGGCGTTGCGGCGAGCTCACGGAAACTTTCCCCGGCCAGTTGATGACCCCGGCCCTGAAGTTGCTGATGACGCGCCTGGAGATGAATGTCTGCCAGCGCTTGCTCAACCTTGAAAAGTCCAACGCTGCGGTCAAGGCTCGCCTGGATGAACTGTCCGCATTGGCTGCTCAGGGTGAGTCGATTCCGGTAAGCAACCCGCCGGCACCGATACAAACCGAGGCCAAGGCCAAGGATGTGCGGTTTCTGCTCGAAGCGTTGCACGGCCAGATCACCCGCGCCGCGCAGGATGGCTTCCTGCCGCCCAACGAGGCCAAGCGCTGGATCCGTGAAGTGCGGCACCTGCTGGTGCTGCTGCACATCGAGTTCTTCAACAATCTCGGTCAGCAAGCCTTGCAACAGGAGCAACCGGGGCAGGCCCGCCTGGCATTCGAGCGAGGCGTGCAATACCTGCGCAAACAGCAGGAGCCGCAGGTCTATGCCGAACAGTTGGCCTATCTGGAGAAGCTTCTGGCCCGCGCCAATGCCCAGGTCCTGGCCAGCACCCAGCCGGTCGAGGGCGAGGTTAACCAGTTGACTGAAGGGTTGAAGGAAGACGAAGCGAACGACGAGTGGAAGAAAAAGAAAGTCTACGATTGAMTPLMITLLVVAGIALLIAIGYMNHVVENNKLEKARTKVELNDRLRRCGELTETFPGQLMTPALKLLMTRLEMNVCQRLLNLEKSNAAVKARLDELSALAAQGESIPVSNPPAPIQTEAKAKDVRFLLEALHGQITRAAQDGFLPPNEAKRWIREVRHLLVLLHIEFFNNLGQQALQQEQPGQARLAFERGVQYLRKQQEPQVYAEQLAYLEKLLARANAQVLASTQPVEGEVNQLTEGLKEDEANDEWKKKKVYDNANANANANA
D1-35_020071902acoR_1COG3284Acetoin dehydrogenase operon transcriptional activator AcoRATGCTGATAAAAACAACTCATCCCAAACTTCATCGCGAAGCTCGGCTGGCCCGGGAAAAACTGCACCTCGAGGGCACCGTTCCCGATGGCGTATTGCGCGCCGAAATCGATGCTTCGTGGCGGCGCAGTCTCAGTCATGGCGTGCATTTCAATGCCAAGCAAGAACTGGCGTTGGAGTCGAACGCCAGTCTTGAAGTGCTGCTGGAAAGCAATCGGTTGTTGATCGATGCGGCGGTGCCGGCCATCGATTATCTGGCCGAGCGCCAGGGCAAGGAAGGGCTCATCATCCTCGCCAATTCCGACGCCACCATCCTGGCAGCCGAAGGGCGCGCCGATCGTTTCAAAGGTAGCAACCTGCAAGACATCACGCTGGGCGCTTGCTGGAGCGAAGCGGCGCGCGGCACCAACGCGCTGGGTACCGCGCTGGTGGAAGCCCGGCCAACGATGATCGATTGCGGTGAACATTACCTAGATCGTCTGACCGATTTTTCCTGCACCTCGGTGCCGATTTATTGCGCGCAGGGTGACATCCTCGGCGTCCTTGACCTGACCCGCGAAGGCCCGCTCGGCCGCGTTCACGACAGCACGGCGTTGCTGGCCATGGCCGTCAGCCAGATCGAAAGTCGCGTGTTCAACGCTTGTTACCCGGACCAGATCGTCCTCGCCTTCCACAGCCGTCGCCAATACCTCGAGTCCCCCTGGCAGGGTTTGCTCGCGGTGAGTCTCGGCGGGCAGATCCTCGCGGTCAGCGCCCAGGCATGTCAGTTGCTCCATGCCGAGCGTTCGGCGCTGGTTGGCCGAGGCTGTGAAGAGTTCCTGGGTGTCGATGGCCTGCAACTGTTATCGCGTCTGCATCAGGGCGGCATCGGCAGTCTGCAAACGGCCAAGGGTGAATTTTTCTACAAAACCCTGCGCGCGCCGCAGCGCTCGATCAACGTCAGCGTTCCATCGCGCACCCCAATCAAAACCGCTAAACCGCAACCCGATCTCGAATCCCTGGCCGGCAACAATGCCCGTTACGCCAGGGCGCTGCGCATGGCCCGCCAAGGTCTGGCCAATGAATTGCCAGTATTGCTGCTGGGCGAAACGGGCACCGGAAAGGAAGTCATCGCCCGAGCGCTCCATATGGCTGGAACCCGCTGCGACAAACCTTTCGTCGCGGTGAACTGCGCGGCCATCCCCGAAGGCCTGATCGAGTCGGAGCTGTTTGGCTACCGCGAAGGTGCCTTTACCGGTTCGCGCCGGGGCGGCATGGTCGGGCGCCTGCAACAGGCCCATGGCGGCACGTTGTTTCTCGATGAAATCGGCGACATGCCACTGGCCTTGCAGGCCCGTTTACTCAGGGTACTGCAGGACCGCAAGGTCGCGCCGCTGGGCGCTGGAGAGGAGCAAGACATCGACATCGCGCTGATCTGCGCCACGCACCGCGACCTTAAGCGTCTGGTGGAAGACAAACACTTTCGCGAGGATCTGTTTTACCGGGTCAACGGCATCAGCGTAATGCTCCCGGCCCTGCGCGAGCGCGACGACTTCAATGGCCTGGTCGATCGTTTGCTGGCCAAACTCGACGCGCCGACAGTGGTCCTGCGTGACGATTTGATCCGCTTGCTAGGCGGCTATCACTGGCCGGGCAACATCCGCCAATTGGAAATGGTTCTGCGCACCGCGCTGGCCATGCGTGAGCCGGGGGACACCGTGCTCACCCTCGACCATCTGCCCGACAGTATGCTCGACGAACTGACCGCCGGCGAACGCCCTCAGAGTGGCAGTATTCGTGAACATGAACTGGAGCTGATTCGTCAGTCCCTGGACACGCACCAAGGTAACGTCTCGGCGGCCGCCGATGCCTTGGGTATCAGCCGCGCGACCCTGTATCGCAAGCTCAAACTGTTGCGTTCGTGAMLIKTTHPKLHREARLAREKLHLEGTVPDGVLRAEIDASWRRSLSHGVHFNAKQELALESNASLEVLLESNRLLIDAAVPAIDYLAERQGKEGLIILANSDATILAAEGRADRFKGSNLQDITLGACWSEAARGTNALGTALVEARPTMIDCGEHYLDRLTDFSCTSVPIYCAQGDILGVLDLTREGPLGRVHDSTALLAMAVSQIESRVFNACYPDQIVLAFHSRRQYLESPWQGLLAVSLGGQILAVSAQACQLLHAERSALVGRGCEEFLGVDGLQLLSRLHQGGIGSLQTAKGEFFYKTLRAPQRSINVSVPSRTPIKTAKPQPDLESLAGNNARYARALRMARQGLANELPVLLLGETGTGKEVIARALHMAGTRCDKPFVAVNCAAIPEGLIESELFGYREGAFTGSRRGGMVGRLQQAHGGTLFLDEIGDMPLALQARLLRVLQDRKVAPLGAGEEQDIDIALICATHRDLKRLVEDKHFREDLFYRVNGISVMLPALRERDDFNGLVDRLLAKLDAPTVVLRDDLIRLLGGYHWPGNIRQLEMVLRTALAMREPGDTVLTLDHLPDSMLDELTAGERPQSGSIREHELELIRQSLDTHQGNVSAAADALGISRATLYRKLKLLRSPGPT0001030_1196DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0001030-acoR-K21405NANA
D1-35_020081719COG1132Putative multidrug export ATP-binding/permease proteinATGCTGCGTTTGATCGTTCGGCTGGTCGACAGCCAGAACCCCGCGGCGCTGCAAGCGGCGTTGCGCTGGCTCTACAGCTTCGTGCGCCCGCACCGGTTGGCGATTGCCGGGCTGCTTGGGCTGTCGGTCTGCGCTTCGTCGCTGGTATTGGTACAACCCTGGCTAACCAAGCTGCTGATCGACGACGGCCTGTTGGCGCGCAACTTTGCGATGCTGGCGCTGATCGCCGGGTTGATGATTGTCGCCGGGTTGTTGGGCACGGCGCTGTCGGGCATCAATCGGTACCTGCACACGCGATTGTCCGGACGGATTCTGTTTGCCCTGCGCGATGACCTTTATCGGCATCTGCAGACGCTCTCGCCGGGTTTCTACGGCGAGCGGCGTATCGGTGATCTGATGTCGCGTCTGGATGGCGATGTCGCGGAGATCCAGCGCTTTGCCGTGGATTCGCTGTTCTCGGCGGTGTCGGGCGTGATTGGCCTGGTGGTCGCCGTGGCGATGTTGGTGACCCTGTCGTGGCAACTCTCGCTGCTGGCCTTGGTGCTGATTCCACTCGACGTGCTTTGGCTACGCTGGATGCGGCGTAAGGTCGAGCGCGATGTGCGGCAGCTGCGCGAGCGTTCGGCGGACATGTCCTCGTTCATGGTCGAGACCTTGCCGGTGATGAAATTCATCCAGTCCGCCGGTCAGCAACAGCGCGAGGCGCGGCGACTGGAGACGTTGGGCCAAGGGTACATGAGTCAGCTCTTGCGCCTGCAAGTCACTGAGTTTTTCACCCAAGCGGTGCCCGGCACGCTGACATCGTTGTCGCGGGCCTGTGCGTTTTTGATTGGCGGGTACTGGGTGGTGCAAGGGACTTGGCAATTGGGCGCGTTGATCGCGTTTTCCACCTATCTGGGCATGGCTGTCGGCCCGGTCCAGAGCCTGCTAGGGCTCTACGTCGCGATTCAGCGGATGACCGTGAGCCTTGGGCGGGTCATGGAACTGCGCGGTGAAGAGCCAACCGTCCTTACTCCGGTTGCGCCGCAGCCGATGCCGGTCTCTGGCGAACTGCGTTTCGACAACGTGCACTTCAGCCATCCCGGTCGCCCGACCACCTTGCGTGGTATTCAAGCGCGAATTCCTTATGGGTTGAAAGTCGCCCTGAGCGGCGGCTCTGGTGTCGGTAAGTCGACCCTGATCGATCTGCTGCAGCGGCACCACGATCCGCAGTCCGGTCGGGTCTTGCTGGGGGAGGTCGATCTGCGGGAACTGGACCTGTTCCAGCTGCGTCGGCGGATAGCCGTGGTCAGTCAGGACATCGTGCTGTTTCGCGGCAGCCTCGCCGACAACCTGGCATACGCGGTGCCCGACGCCAGTCGCGAAGCGATTGCCGAAGTGGCGCGGCTGGCGCAGCTCGACAGCCTGATCGAGTCACTGCCCGAAGGCCTCGACAGCCCTTTGGGCGAGCGTGGCCAGCAGTTGTCCGGCGGACAGAAACAGCGCATCGCCATCGCCCGGGCGCTGCTACAGGATCCGTTGATCCTGGTGCTGGACGAAGCGACTTCGGCGGTCGACGAAGCCACCGAGCGCGAAGTGATCGCGGCCATCGACCGGTTGTTCGCCGGGCGTACTCGGATCCTGATCAGCCATCGCCCCTCGACCCTGGCCGATGCCGATCTGTGCTTTGAACTGCTGGATGGCGTGCTCACGTCAAGAACGGTGCAGCATGAGGCCTGAMLRLIVRLVDSQNPAALQAALRWLYSFVRPHRLAIAGLLGLSVCASSLVLVQPWLTKLLIDDGLLARNFAMLALIAGLMIVAGLLGTALSGINRYLHTRLSGRILFALRDDLYRHLQTLSPGFYGERRIGDLMSRLDGDVAEIQRFAVDSLFSAVSGVIGLVVAVAMLVTLSWQLSLLALVLIPLDVLWLRWMRRKVERDVRQLRERSADMSSFMVETLPVMKFIQSAGQQQREARRLETLGQGYMSQLLRLQVTEFFTQAVPGTLTSLSRACAFLIGGYWVVQGTWQLGALIAFSTYLGMAVGPVQSLLGLYVAIQRMTVSLGRVMELRGEEPTVLTPVAPQPMPVSGELRFDNVHFSHPGRPTTLRGIQARIPYGLKVALSGGSGVGKSTLIDLLQRHHDPQSGRVLLGEVDLRELDLFQLRRRIAVVSQDIVLFRGSLADNLAYAVPDASREAIAEVARLAQLDSLIESLPEGLDSPLGERGQQLSGGQKQRIAIARALLQDPLILVLDEATSAVDEATEREVIAAIDRLFAGRTRILISHRPSTLADADLCFELLDGVLTSRTVQHEANANANANANA
D1-35_02009678eprCOG1404Minor extracellular protease EprATGAGGCCTGAGCTGCGGATTGGGGTGGTGGACAGTGGTCATTCGCCGGCGCAACGGGCGCAGGTGATTGCCGGTCGACGGTTCTCGCTGCTGGAGGATGGACTGGCCGAAAGCGATCTACACAACGATCCGCTGGGCCATGGTAGCGCGGTGATCGAGGCCATCAGCCGGCGTGCACCGGCGGCGGTTTTTTGCGTAGCCCAGGTGTTCGACCAGCGTGGCGTCACCAGCGCCTTGCAGATCGCTACCGCCATCGATTGGCTGGTGGCGCAGGACGTGCGGTTGATCAATCTGAGCCTCGGATTGCGGCAGGATCGTCACCTGTTGCGTGAAGCCTGTGCTGCGGCGGTGGCGCGGGGCATTTTGCTGTGTGCGTCCAGCCCGGCCCAGGGCGAAGGAGTGTTCCCGGCAAAGTATCCGCAGGTGCTGCGGGCCACCGGCGACGCTCGTTGCACCGAGCAGCAATGGTCGTGGCTCAACAGCGCCCAGGCGGATTTTGCCGCGTGTGTTCACGGTACCTACCCGGGGCAGTCGGGTGCGAGCCTCGGCTGTGCGGCATTGAGCGGGCACATTGTGGGTTTCCTCATCGAAAATCCCGAGGCGAGCAACGAACACGTTGTCGAGTGGCTGCAAAAGAACGCCCGTTATCACGGCCCTGAACGGCGCGTCGGCGCATGAMRPELRIGVVDSGHSPAQRAQVIAGRRFSLLEDGLAESDLHNDPLGHGSAVIEAISRRAPAAVFCVAQVFDQRGVTSALQIATAIDWLVAQDVRLINLSLGLRQDRHLLREACAAAVARGILLCASSPAQGEGVFPAKYPQVLRATGDARCTEQQWSWLNSAQADFAACVHGTYPGQSGASLGCAALSGHIVGFLIENPEASNEHVVEWLQKNARYHGPERRVGANANANANANA
D1-35_020101296hypothetical proteinATGAAGCCGATTGTGATTCTTGGCGCGGGGCCTGCGGGGGCGGCGGTGGCCCTGGGGTTGCGACGGCTTGGGTATCCCGTGAAATTGGTCAGTGAATGGCGGCGCTTCGCGGCACTGGAAGGGGTTTCCGTGCGGGTGTTGGATGCCTTGCGCGGTTCGGGGCTGCATCAAGCATTGACGGATGCGACGCAGCCTTCCCAGCGGCAGGTGTCCTGGAACGGTCAGCAGCATGCTCAGAACATTGAATTTTTACTGGATCGCCCGCGCTTCGATCGCGGCTTGCGCGAGGATTTGCGCCTGGCCGGCGTTGAGTTGATCGAGGGCCGAGTGCTGACGGTGCAGCCACACGCTTCGGGACATCGAATCGAACTGCAAGGGCGTGACGCACTGCTCGCGGATTTCCTGGTGGAGGCCCGCGGACGCCAGGCACCTGCCCTTGGCAAAGGCCTGCGTGGGCCAGAGACGGTCAGTTTGCTCAATCGCTGGCAAGGTGCGCCGGGTAGCAGCGCCAGTGCTGTGGAAAGCCTTGCGGACGGCTGGGCCTGGATGGCGCGCCGGGCCGACGGCCAGTGTTATTGGCAATGGACGGTGGACGTGGCCAGTGCCGAGTTGCCGGGCAAAGCGCTGTTGCTCGATTACTGCCGCCATCGGTTCCAGCAGTCGGCATTGACCCACGCGTTTTTTGGGGGTGAACCGCAAACCGATCTGCACCTGCATGCCCGCAGCAGTACGGCGATCTTGTGTCCGCAGGTCTGCGGTGATCAATGGATTCGTGTGGGCGACGCCGCCATGGCGGTGGATCCGCTGTCGGGTAATGGCATCTTCCAGTCGTTGTCTTCGGCGTTGCAAGCGCCTGCGGTGATCAACACGCTGTTGCGCAAACCTGAGCGGAGTTTGCTGGCACAGCGTTTTCATCAGCAACGGGTGGAGCAGTTGTTTTTACGCTTCGCGCGCATTGGCCGGGACTTTTATGCCGATGAGCAGCGTTGGTCGAACCAGCCGTTCTGGCAGGCGCGGCGGCAGTGGCCGGATGCTGAGGTCGCCCACGCCGAGGCGGATTTCTCCGCTCTGAGGATTGAGCTGGCGCCGGTATTGCGCGATGGATTTGTGGATGAGGCCGAGGTGGTGATCACGGCGGATCAACCGCTGGGGACCTGGCATGTGCAAGGGGTTGAGTTGGCACCGTTGGTGCGACGGTTGCGTAGCGAGCCGGCCGAGCGAGTCTTGGCGGGGTTGACAGTGGAGCAGGGAAGGATGGTTCGGGGGTGGTTGTTGGGGCAGGGGTTCAAGCCCTGAMKPIVILGAGPAGAAVALGLRRLGYPVKLVSEWRRFAALEGVSVRVLDALRGSGLHQALTDATQPSQRQVSWNGQQHAQNIEFLLDRPRFDRGLREDLRLAGVELIEGRVLTVQPHASGHRIELQGRDALLADFLVEARGRQAPALGKGLRGPETVSLLNRWQGAPGSSASAVESLADGWAWMARRADGQCYWQWTVDVASAELPGKALLLDYCRHRFQQSALTHAFFGGEPQTDLHLHARSSTAILCPQVCGDQWIRVGDAAMAVDPLSGNGIFQSLSSALQAPAVINTLLRKPERSLLAQRFHQQRVEQLFLRFARIGRDFYADEQRWSNQPFWQARRQWPDAEVAHAEADFSALRIELAPVLRDGFVDEAEVVITADQPLGTWHVQGVELAPLVRRLRSEPAERVLAGLTVEQGRMVRGWLLGQGFKPNANANANANA
D1-35_020111491styD_1Phenylacetaldehyde dehydrogenaseATGCCCCTGCCTTATTTGCTCCCCGCCACCTCGGCCTTCGTCCAACGCGCCCCACGCATGCTCATCGGCGGCGACTGGGTCGAGGCCGCCGACGGTCAGACCATGCCGCTGCATAATCCGGCCACCGGCGAAGTGCTGTGCTTGGTGCCACGAGCCACCCCCGACGATGTCGACCGCGCAGTGTTGGCCGCCCGTCAGGCTTTCGACGATTCGGCCTGGACGCGCACCCGCCCTCGGGAGCGGCAGAATCTATTGTGGAAACTCGCCGACCTGATGCAGCGCGACGCCGAACTGCTGGCGCAGCTCGAATGCCTGAACAACGGCAAAAGCGCGGCGGTGGCGCAAGTGATGGACGTGCAACTGTCCATCGACTTCCTGCGCTACATGGCCGGTTGGGCCACCAAGATCGAAGGCTCCAGCGTTGACGTGTCGCTGCCGTTGATGCCCAACGATCAATTCCACAGTTTCATTCGCCGCGAAGCGGTGGGCGTGGTCGGGGCTATCGTCGCCTGGAATTTCCCGCTGCTGCTGGCTTGCTGGAAACTCGGCCCGGCACTGGCCACCGGTTGCACCGTCGTGCTCAAACCTGCCGACGAAACGCCGCTGACCGCGCTGAAGCTCGCAGAACTGATGTTGGAAGCCGGTTACCCCGAAGGCGTGTTCAACGTGGTCACCGGCACCGGTATCACGGCGGGCTCCGCCCTGACTCACAATCCGTTGGTGGACAAGCTGACGTTCACCGGCTCCACCGCCGTGGGCAAGCAGATCGGCAAGACCGCCATGGAATCCATGACCCGGGTCACTTTGGAACTGGGCGGCAAGTCGCCGACCATCGTCATGGCCGATGCCGACCTGAAGACCGCTGCCGCGGGCGCCGCCAGTGCGATTTTCTTCAACCAGGGCCAGGTCTGCTGCGCCGGTTCGCGGCTGTATGTGCAGCGCAAGTATTTCGACAATGTGGTGGCGGATATCGCCGACATCGCCAATGCAATGAAGCTCGGCAACGGACTGGACCCCAGTGTCGAAATGGGCCCGCTGATCTCCGCGCGGCAACAGGAACGGGTTTATGGCTACATCGAAAAAGGTCGGGAAAGCGGCGCGACCATCGCCTGCGGCGGTGAGCAATTTGGGCCGGGGTTCTTCGTCAAACCCACGGTGATAGTCGATGTCGACCAGCGGCATTCACTAGTACAGGAAGAAATCTTCGGCCCGGTGCTGGTGGCGATTCCGTTCGATGACGAGGCCGATGCGTTGCGCATGGCCAATGACAGCCCTTATGGCCTTGGGGCGAGCATCTGGTCGAATGATTTGGCGGCGGTGCACCGGATGATTCCGCAGATCAAGTCGGGTTCGGTGTGGGTCAACTGCCACAGCGCCCTGGACCCGGCGTTGCCGTTTGGCGGCTACAAGATGTCAGGGGTCGGGCGCGAGATGGGGTATGCGGCGATCGAGCATTACACCGAGTTGAAATCGGTGTTGATCAAGTTGTGAMPLPYLLPATSAFVQRAPRMLIGGDWVEAADGQTMPLHNPATGEVLCLVPRATPDDVDRAVLAARQAFDDSAWTRTRPRERQNLLWKLADLMQRDAELLAQLECLNNGKSAAVAQVMDVQLSIDFLRYMAGWATKIEGSSVDVSLPLMPNDQFHSFIRREAVGVVGAIVAWNFPLLLACWKLGPALATGCTVVLKPADETPLTALKLAELMLEAGYPEGVFNVVTGTGITAGSALTHNPLVDKLTFTGSTAVGKQIGKTAMESMTRVTLELGGKSPTIVMADADLKTAAAGAASAIFFNQGQVCCAGSRLYVQRKYFDNVVADIADIANAMKLGNGLDPSVEMGPLISARQQERVYGYIEKGRESGATIACGGEQFGPGFFVKPTVIVDVDQRHSLVQEEIFGPVLVAIPFDDEADALRMANDSPYGLGASIWSNDLAAVHRMIPQIKSGSVWVNCHSALDPALPFGGYKMSGVGREMGYAAIEHYTELKSVLIKLPGPT0006035_518DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_LIGNIN_DEGRADATION|LIGNINASESPLANT_LIGNIN_DEGRADATION-DEHYDROGENASE_ACTIVITY,PGPT0006035-feaB-K00146NANA
D1-35_020121581hypothetical proteinATGAAGAGAAAACTCCGATCAGGCCTGAGCGTCAGTCTGCTGACCGCGGCGGCCTGCGTGGCGCTGCATTCGCCTCACAGCCTGGCAGCTCGCGACGCCCAGACTGTCCTCAAGGAAACCTGCCAGGGCTGTCACACCCCCGAAGCCGATAACGCCCTGAGCCGTATCAGCCACCAGCGTAAAACCCCGGAAGGCTGGCTGATGAGCATCGCCCGGATGCAGGTCATGCATGGTTTGCAGATCAGCGATGACGACCGCCGAACCCTGGTCAAATACCTGGCCGACACCCAGGGCTTGGCGCCGAGCGAGACCGATGGGGTGCGTTATGCGCTGGAGCGACGGCTCAATACCGTCGAGAAATTCGACGACCAAACCAGCCAGATGTGCGGCCGCTGCCACTCCGGCGCGCGGGTTGCGCTGCAGCGCCGACCCGCCCAGGAATGGGAGCGCCTGGTGAACTTCCACCTCGGCCAGTGGCCGTCCCTCGAATACCAGGCCCTGTCCCGCGACCGCGACTGGTTCGACCTGGCCCGCAAAGAAATGGTGCCGCTGCTGGCCAAGCGTTATCCGCTGGACAACCCGGCCTGGAAAGCATGGCAGGGCAGCGCGCCGAAAGCCGAGGCGCTGGTCGGCGACTGGAGCTTCAGCGGGAACCTGCCGGGTAAAGGCGAGCTGGCTGGCGTCATGAGCGTGACTGCCGATGGCAGCGACACGTTCAAGGTCAACGTCAAAGGTCAGTATGCCGACGGTAGCCCGTTCAATGGTGAGGGCAGTGCGATTCTCTACACCGGTTACGAATGGCGCGGCAACGTGTCCATCGATGGCGTGACCATGCGCCAGGTATTCGCCGCCCAGGGCAATGCCATGCAGGGCCGGATGTTCGAGGCCGAGCACGACGAGCGGGGGCTGGACTTTGTCGCCGCCAAGCAGGGTTCCAATCGTTTGCTGGCGGTGCAGCCGGGTTATCTGAGGGCGGGCAGCGAAACTGAAGTCACCCTGGTCGGCAGCGGTCTCACTGGCAAACCTGACTTTGGCAAAGGCGTGGAAGTGGTCCAAGTGCTGGAGCAAACGCCCGAGCGCCTACGGGTCAAACTCAAGGCGGCTGCCAATGCGCAACCGGGCCTGCGCAACGTCACGGTCGGCACGCTGAAAGGCCCGACGCTGTCGGTCTACAGCAAGATCGCTGAAGTCAAAGTCGTGCCCGAATTCTCGGTGGCGCGGATCGGCGAGGGTGGTGGCTCGACGCCGAAAGTCCAGGGCCGTTTCGATGCTGAAGCCTGGGGCAAGGGCGCTGACGGCAAACCCTATCGAATCGGCGTGTTCCCGGCGCAATGGACAGTCGAGGCTTTCGATGACCGCGCCAAAGAGGATGAAGACGTCAGGTTTGCGGGCACCATGCAGGCCGATACCGGCGTGTTTACCCCAGGCGATGCCGGGCCGAACCCGCAGCGCAAGATGTCCACCAACAATGCCGGCAATCTCAAGGTGATCGCCGCCGTCGACGACGCAGGGAGGTCCTTGACCGGCGAAGGCCACATGATCGTCACCGTGCAACGCTGGAACAATCCACCCATTCCATAAMKRKLRSGLSVSLLTAAACVALHSPHSLAARDAQTVLKETCQGCHTPEADNALSRISHQRKTPEGWLMSIARMQVMHGLQISDDDRRTLVKYLADTQGLAPSETDGVRYALERRLNTVEKFDDQTSQMCGRCHSGARVALQRRPAQEWERLVNFHLGQWPSLEYQALSRDRDWFDLARKEMVPLLAKRYPLDNPAWKAWQGSAPKAEALVGDWSFSGNLPGKGELAGVMSVTADGSDTFKVNVKGQYADGSPFNGEGSAILYTGYEWRGNVSIDGVTMRQVFAAQGNAMQGRMFEAEHDERGLDFVAAKQGSNRLLAVQPGYLRAGSETEVTLVGSGLTGKPDFGKGVEVVQVLEQTPERLRVKLKAAANAQPGLRNVTVGTLKGPTLSVYSKIAEVKVVPEFSVARIGEGGGSTPKVQGRFDAEAWGKGADGKPYRIGVFPAQWTVEAFDDRAKEDEDVRFAGTMQADTGVFTPGDAGPNPQRKMSTNNAGNLKVIAAVDDAGRSLTGEGHMIVTVQRWNNPPIPNANANANANA
D1-35_020131431hypothetical proteinATGGGCGCTATTTTGAATCTGGTCGAACGAAATCTGCACGAAGTGCATGTCGACGCCGACCGCATGCTGTTCCACATTCCCAGCAGCTCGCTGTTCGCCAGCGATGAGCTGACGGGCACCATCATCGATACCTTGCGCGGTCCCGGCTGTTCATCGGACGACCTGATCCAACGCTTGGCCGCACGCTTCAACGGCGAAGAAATCACCGAAACCCTGCGTGAGCTGATTTCCCTGGAACTGGTCAGCGACGGCTCGCCACTGACCCCGGACATCGGTACTAAACGCGTCGAGCGCACCGCGATCAATACCGTGGTGCTCAACGTCAACACGGGCTGCAATCTGAGCTGCACCTACTGCTACAAAGAAGACCTCGACAAGCCCTCGGCCGGCAAGAAGATGGACGTTGAAACAGCGGTCGCTTCGGTAGAAATGCTGCTGCGCGAATCCCCGGATGAAGAGCGTTTCACGGTGGTGTTCTTCGGAGGAGAGCCGCTGAGCAATCGCAAGCTGATCGAGTACATGGTCGATTATTGTGAAAAGCGTTTTGCCGAAGCGGGCAAGTTCGTCGAATTCGTCATGACCACCAACGCCACGCTGCTCACCGAAGAGACCGTGGACTACCTCAACGCTCACCGTTTCGGCCTGTCAGTCAGTATCGACGGACCGAAAACCGTCCACGACCGCAACCGCATTACCGTGGGCGGGCAGGGCACTTACGATGTGGTTCGGCGCAAGGCTGAAATGCTGCTGTCGCGCTACAACAGTCGTCCGGTCGGTGCCCGCGTCACCTTGACCACCGGCGTCACCGACGTCGAAACCATTTGGGACCACCTGTTCAACGAACTGGGTTTTGCCGAAGTCGGGTTTGCCCCGGTGACCTCCGGTGACATCAGCACCTTCAACCTGTCCAGCGACGAGCTGATCGAAGTTTTCGCCAACATGAAGAAGCTCGGCCGGCGTTATCTGGAAGCGGCGCTGGAGCACCGCAATATCGGTTTCTCCAACCTGCATCAGCTGATCACCGACATCCACGAAGGCCACAAAAAAGCCCTGCCATGCGGCGCGGGCCTGAAGATGCTGGCGGTGGATCACAAGGGCGAATTGAACCTGTGCCACCGCTTTACCGGCTCATCGTTGCCGACCTTCGGCAACGTTCACAGCGGGGTGAAACAGGTCGAGTTGAACGATTTCCTGTCCCAGCGCCTGGACCGCACCAACACCGGTTGCGAAGACTGCCAGATCCGCAATCTCTGCTCTGGCGGCTGCTACCACGAGAGCTACGCCCGATACGGCGACCCGACTCATCCGACCTATCACTACTGCGAACTGATGCGTGACTGGGTCGACTTCGGCATCGAGGTCTACACCCGGATCATGGCTCACAACCCTGCGTTTATCAGCAGCTACATCACTCCGCGCAAGGCTCACTGAMGAILNLVERNLHEVHVDADRMLFHIPSSSLFASDELTGTIIDTLRGPGCSSDDLIQRLAARFNGEEITETLRELISLELVSDGSPLTPDIGTKRVERTAINTVVLNVNTGCNLSCTYCYKEDLDKPSAGKKMDVETAVASVEMLLRESPDEERFTVVFFGGEPLSNRKLIEYMVDYCEKRFAEAGKFVEFVMTTNATLLTEETVDYLNAHRFGLSVSIDGPKTVHDRNRITVGGQGTYDVVRRKAEMLLSRYNSRPVGARVTLTTGVTDVETIWDHLFNELGFAEVGFAPVTSGDISTFNLSSDELIEVFANMKKLGRRYLEAALEHRNIGFSNLHQLITDIHEGHKKALPCGAGLKMLAVDHKGELNLCHRFTGSSLPTFGNVHSGVKQVELNDFLSQRLDRTNTGCEDCQIRNLCSGGCYHESYARYGDPTHPTYHYCELMRDWVDFGIEVYTRIMAHNPAFISSYITPRKAHPGPT0026880_384DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-ANAEROBIC_SIGNALLING,PGPT0026880-ydeM|yidF|alsB|chuR-K06871NANA
D1-35_02014324hypothetical proteinATGAAACATCTTAAGGCAATCAATAACAAAGCGTTGAAGTTGGATCAGGCCGCAGCGGAAAACCGCATCGAAGAAGTGGTGGCGATGAGCTCCGTCGCCGGCTGCGCCTCGACCACCGACCCAGGTTGGGAAATCGACGCGTTTGGCGGCGTGTCGTCGCTGTGCCAACCGATGGAAGCCGATCTGTATGGTTGCTCCGACCCATGCTGGTGGCCGGCCCAGGTGCCGGACATGATGAGCACCTACCCGGACTGGAACAAGGATGCCCAGGCGTCCAACGAAAACTGGCGCAACCTCGGCACTGTCTTTCCGAAAGACAAGTGAMKHLKAINNKALKLDQAAAENRIEEVVAMSSVAGCASTTDPGWEIDAFGGVSSLCQPMEADLYGCSDPCWWPAQVPDMMSTYPDWNKDAQASNENWRNLGTVFPKDKNANANANANA
D1-35_020151119hypothetical proteinATGCAATGCATCAAAGCCTGCGGCTTGGCCGCGTTCGGTGTCCTGGGCGTTATATCGCTCAATGTTCTGGCCGATGAAAACACCGCGCTCCAAAGCGGTCACGAATACATGGTGACCACCAATTATCCGAACAACCTGCACGTAATCGACCTGGCCACCGACAGCCTGTTCAAGACCTGCAAAATGCCGGATGCCTTCGGTCCTGGCACCGTGCAGCTGTCGCCGGATCGCAAGACCGCCTACGTGCTGAACAACCACTACGCGGATGTCTACGGCGTTGAGCTGGACAGCTGCAAGCAGGTCTTCCACGCCAGCATTACCCAGAAACCGGGGGAGAAAGCGAAGTCGATGTTCGCCTTTACCCTCAGCCATGACGGCAAGGAACTGTTCACCATCGCCAATCCGACGTTGATGCTCAACGATCGTTACGAGGTGCAGCAACCTCGGCTCGATGTGTACGCCACCGATGCCGGCATGGACGCCAAACCCATTCGCAGCTTCCCGGCGCCACGGCAGCTGACCATCATGCAAAGCGGCGACGATGGAACGTTGTATGTGGCGGGAGCGGATGTCTACAAGGTCAACGTGAACACTGGCAAGTTCGACGTGCTGATTCCCAGTCGCCATTGGAAACGTGCCAATTACAGCGCACCGGATGTGCTCTACGTGTGGAACCAGCAGACCTACCGTCATGATTTTTCGCTGCTCTACACCGCAGCGAAATTCAAGGACAAGAATCAGGACCTGGCGACCGCCGAGTACCTCTATGGGCTGTTCAGCATCGACTTGAAAACCGGCAAGACCGAAACCACCGACTTCGGCCCCCTGACGGAAATCTACTTCAGTGGCATGCGCTCGCCCAAGGACCCGAACCTGATGTTCGGCGTGCTCAACCGGCTGGCCAAGTACGACATCAAGCAGAAAAAACTGCTTCAGGCCGCTACGTTGGATCATTCCTACTACTGCATTTCGTTCAACAAGGCCGGCAGCAAGATTTACCTGGCGGGAACCTTCAACGACGTAGCGGTGTTCGATGCCGATAGTTTGAAGCAGATTGGCAACATCAAATTGCCCGGCGGCGACATGGCGATTACCACGGCGCAAATATTCACGCGTTAAMQCIKACGLAAFGVLGVISLNVLADENTALQSGHEYMVTTNYPNNLHVIDLATDSLFKTCKMPDAFGPGTVQLSPDRKTAYVLNNHYADVYGVELDSCKQVFHASITQKPGEKAKSMFAFTLSHDGKELFTIANPTLMLNDRYEVQQPRLDVYATDAGMDAKPIRSFPAPRQLTIMQSGDDGTLYVAGADVYKVNVNTGKFDVLIPSRHWKRANYSAPDVLYVWNQQTYRHDFSLLYTAAKFKDKNQDLATAEYLYGLFSIDLKTGKTETTDFGPLTEIYFSGMRSPKDPNLMFGVLNRLAKYDIKQKKLLQAATLDHSYYCISFNKAGSKIYLAGTFNDVAVFDADSLKQIGNIKLPGGDMAITTAQIFTRNANANANANA
D1-35_020161668fadD3_2COG03183-[(3aS,4S,7aS)-7a-methyl-1,5-dioxo-octahydro-1H-inden-4-yl]propanoyl:CoA ligaseATGAGTGTTCCCAGTTACACCATTGGACCGCAAACCACACCCTTGTTGGCGATGACCATTGGCGCGGCGTTCGACCGAGCGGTGGAACGGTTCACCGATCGCGAAGCTTTGGTCGTGCGGCATCAAGGGTTGCGCTACACCTGGGCACAGTTGGCCGAGGAGGTGGATGGTTGCGCACGAGGGTTGCTCGCGCTGGGCCTCAAGGCCGGCGAACGGATAGGCATCTGGTCGCCGAACTGCGCGCAGTGGTGCATCACCCAGTTCGCATCGGCCAAGGTGGGGGCGGTGCTGGTGAACATCAACCCGGCCTACCGTCTGACCGAGCTCGAGTACACGCTCAAGCAATCGGGGTGTCGCTGGCTGATTTGTGCCGACTCGTTCAAAACTTCCAACTACCACGCGATGCTTCAAGATCTGCTGCCCGAACTCCACCGCTGCGCTGTCGGCGCACTGGAAAGCGACCGGTTGCCTGAATTGCAGGGCGTGATCAGCCTCGGCGACACGCCGGCTGACGGTATGTTGTCATGGGAGGGCCTGTTGGAGCTGGCGGAACAAATGTCTGCGGAACAACTACGGCAATGCGGCGAGCAACTGCAGTTCGACGACCCCGTCAACATCCAGTACACCTCGGGTACTACTGGATTTCCCAAAGGTGCCACCCTCAGTCACTACAACATCCTGAATAACGGTTTCATGGTCGGTGAAAGCCTGAAGCTCAGCGCGCACGACAGGTTAGTGATACCGGTGCCGCTGTATCACTGCTTCGGCATGGTCATGGGCAATCTGGGGTGTGTCACCCACGGAACGACAATGATCTACCCCAGCGCAGCCTTCGATCCGCTGGAGACCCTGCGGGCCGCGGCACAGGAGAAAGCGACCGGCATGTATGGCGTGCCGACGATGTTCATTGCCATGCTCGACCACCCGGAGCGCCAATTATTGGACTTGAGCCATCTGCGAACGGGCATCATGGCCGGCTCCACCTGCCCGATCGAAGTCATGAAGCGGGTGATCGACGACCTGCACCTCAAGGAGATGCAGATCGCCTACGGCATGACCGAAACCAGCCCGGTCTCCACCCAGACCGGCCCGGACGACGATATCGAGCACCGGGTCACCCGTGTCGGCCGCACTCAGCCGCATTTGGAAAGCAAGGTCGTCGATGAGCAAAACCGGATCGTTGCTCGCGGTCAGATCGGCGAACTGTGTACCCGAGGCTACAGCGTAATGCTCGGCTACTGGAACAACCCGCAAGCGACCGCGGAGGCCATCGACGACGCAGGCTGGATGCACACCGGTGACTTGGCAATCATGGATGAGGAGGGTTACCTGAGGATCATCGGGCGCAATAAGGACATGATCATCCGGGGCGGCGAGAATGTTTATCCGCGCGAAATCGAAGAGTTCTTCTTTACTCATCCTGCGGTGGCAGACGTGCAGGTCATCGGTGTGCCGGACAAGGTCTACGGAGAAGAGATCGTAGCTTGGGTCAGGTTGCATGAGGGGCACCAGGCAGATGCCGACGAGCTGCGCGATTACTGCAAGGGCCGGATCGCTCACTTCAAGGCGCCGCGCCATTTCAAGTTCGTTGACGATTTTCCGATGACCGTCAGCGGCAAGGTGCAGAAATTTCGCATGCGTGAAATCAGCGTAGAGGAATTGGGATAAMSVPSYTIGPQTTPLLAMTIGAAFDRAVERFTDREALVVRHQGLRYTWAQLAEEVDGCARGLLALGLKAGERIGIWSPNCAQWCITQFASAKVGAVLVNINPAYRLTELEYTLKQSGCRWLICADSFKTSNYHAMLQDLLPELHRCAVGALESDRLPELQGVISLGDTPADGMLSWEGLLELAEQMSAEQLRQCGEQLQFDDPVNIQYTSGTTGFPKGATLSHYNILNNGFMVGESLKLSAHDRLVIPVPLYHCFGMVMGNLGCVTHGTTMIYPSAAFDPLETLRAAAQEKATGMYGVPTMFIAMLDHPERQLLDLSHLRTGIMAGSTCPIEVMKRVIDDLHLKEMQIAYGMTETSPVSTQTGPDDDIEHRVTRVGRTQPHLESKVVDEQNRIVARGQIGELCTRGYSVMLGYWNNPQATAEAIDDAGWMHTGDLAIMDEEGYLRIIGRNKDMIIRGGENVYPREIEEFFFTHPAVADVQVIGVPDKVYGEEIVAWVRLHEGHQADADELRDYCKGRIAHFKAPRHFKFVDDFPMTVSGKVQKFRMREISVEELGPGPT0008380_8037DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897NANA
D1-35_02017861rhaS_7HTH-type transcriptional activator RhaSATGGCGCCGAATCAGACTGGAAAGCCCAAGCTGTTGTGGTTCGATCTGACGCATGATCGGTCCACCAAGGAACTCGCCAGCCAGTTCGAGCAAACGTGCAACTGCGTCCTGGCAAAAAACACCCTGCTGCCCAATGGCGTACAGGCCGACATGATCTGCATTCATTTCGACCGGCCGGATACACAGGGACTCAGGCGGCTGCTGGACATCAAGCGCACCGTCCCGGCAATTCCCATCAGCATGTTCACGGTGCAGCACTCCGAGGAGCTGGCGGTCTGGGCCATGCGCTCGAGCGTCTGGGAATACATGGTACTTCCCCTGACAGCCGCCGAGAGGAAACGCTACCTGACCGCCGTGGTGCAATTGTGCGAATTGCGCAGGCAGGCTGGTGGCCATGGCTCGACCTCGCAGATCGACCATGCGCCAACGCTGCCGGACAGCATCCGCCTGACCTCCGGGCATCAGAAACACCAGGCCCTCACCCACATCATGCTGTACATCGACCAGCACTTTCGCGACAGCATCGATCAGCGCGACCTGGCCAAGCGTTGCGGCATGACGACGTTTCGCTTCAGCCGCGTGTTCAAGGAGACCAATGGCCTGGGGTTCACCGACTACGTGCTGAACAAGCGCATGAGTTTCGCCAAGGAATTGCTCGACAACAGCCAGATGCCCATCACCAGCATCGGCTACGAGGCCGGATTCAAGGACCCGTCCTACTTCGCGCGTGCCTTCAAGCAGTACGCCAACTGTACGCCGAGCGAATATCGCCTTGCCTATCAGATGCGTTGCGCAAGCCCGGCGCCGTTGCCATCGGATGAGGAGGCGCTGGAAAGCCTGGTACACAGCCTTGAGGGCTGAMAPNQTGKPKLLWFDLTHDRSTKELASQFEQTCNCVLAKNTLLPNGVQADMICIHFDRPDTQGLRRLLDIKRTVPAIPISMFTVQHSEELAVWAMRSSVWEYMVLPLTAAERKRYLTAVVQLCELRRQAGGHGSTSQIDHAPTLPDSIRLTSGHQKHQALTHIMLYIDQHFRDSIDQRDLAKRCGMTTFRFSRVFKETNGLGFTDYVLNKRMSFAKELLDNSQMPITSIGYEAGFKDPSYFARAFKQYANCTPSEYRLAYQMRCASPAPLPSDEEALESLVHSLEGNANANANANA
D1-35_02018195hypothetical proteinATGACTCTTCAAACTATCAAGGCTTCGGTACTGAAGTTCGCCAAAGATGAAGATGGCCTGACCATTGTGGAATACGCGGTGGCCGGTGGCCTGATCACCGTATTGGTCGCCGCAGCCTTCGTCCTTCTGGGCGGGGCCGTCAACACCAAGATCCGTGCGTTGTGCCAGGCCGTCAACGGCAACGTTGCCTGCTGAMTLQTIKASVLKFAKDEDGLTIVEYAVAGGLITVLVAAAFVLLGGAVNTKIRALCQAVNGNVACPGPT0015910_604DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0015910-flp|pilA-K02651NANA
D1-35_02019195hypothetical proteinATGACTCTTCAAACAGCAAAAACTGCAATCAGCAAGTTCGCCAAGGATGAAGATGGCCTGACCATCGTCGAATACGCCGTGGCGGGCGGCCTGATCACGGTGTTGGTGGCAGCGGCTTTCGTCCTCCTGGGCGGTGTCGTGGATACCAAGATCCGCGCGCTGTGCCAAGCCGCCAACGGCAACGTGGCCTGCTAAMTLQTAKTAISKFAKDEDGLTIVEYAVAGGLITVLVAAAFVLLGGVVDTKIRALCQAANGNVACPGPT0015910_633DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0015910-flp|pilA-K02651NANA
D1-35_02020531hypothetical proteinATGTCCATGGAATTGCTCATATCGACAATATTGCTGCTAGGACTGCTGGGAGTGGCGGTGGTGGGCGATCTGCGTCGCCACCGTATCCCCAACGCGCTGGTCCTGACGGGGGTTGCGCTGGGATTGGCCGGCCAGGTTTATACCGGCGGGTTGAGCGGGTTGGGTGACAGCCTGCTGGGCATGCTGATCTGTTTCGCGCTGTTCCTGCCGATGTACGCCGTGGGCGGCATGGCCGCTGGCGACGTCAAGTTGATGACCATGGTCGGTGGTTTCCTGCCCTTTCATTACGCCCTCTGGGCGGCGCTGTTCAGCCTGATCGCCGGCGGGGTGTGCGGTTTCCTGATTGTTCTGGCCCGCGGCCAACTGCTCCAGACCCTGCAGCGTTACTGGTTGAGCGTCCGGGCCCAGGCCTATCTGGCGCCCACTGTCGATGAGGTGGCTGGCAAACCTTTTCCCTATTCGATTGCAATCCTGATCGGCACCTTGAACAGCGTTTACTGGCAACTGGTTGCCGACGGCTGGGGAGTCTAGMSMELLISTILLLGLLGVAVVGDLRRHRIPNALVLTGVALGLAGQVYTGGLSGLGDSLLGMLICFALFLPMYAVGGMAAGDVKLMTMVGGFLPFHYALWAALFSLIAGGVCGFLIVLARGQLLQTLQRYWLSVRAQAYLAPTVDEVAGKPFPYSIAILIGTLNSVYWQLVADGWGVPGPT0016000_382DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016000-cpaA-K02278NANA
D1-35_020211329hypothetical proteinATGCACGTCATCAACGATAGCGATGCCTACCCCAGTGAACGGGAAGCGGTGCAGCGCCTGGCGCCCCAGCCTGGCTCCATACGCGACACCGGCCTGACCGACAGCTTTCTCGGCGAACTGGTCTGCAAACATTTGCACGAAGCCGGCGTGCTGGACATGTCGCGACTGGTGGAACGCCTGGCCCTGACCGGCGCGGTGCTGGAGGAAGTATTGGCCTTCCTGCGCAAGGACGGTCGGGTCGAAGTGCTGGGCCAACTGGCCCAGGCAGGCGGGCAGTCGCTGCGTTACGGCCTGACTGAACGCGGCCGCAGTTTCGCCCGGGATGCGCTGGCCCGCAGTGGCTACATCGGCGCGGCACCGTTCCCGGTCAGCACGTATCGCTCGCTGATCAAGATCCAGACCATCCACCACGGCCGCATCACCGCCAAGGATATGAACCACGCCCTGGCGGGCATGGTGCTGAGCCAGGGGATGCTCGACCAGTTGGGCGTCGCGCTGAATTCCGGGCGGGCGATCATGATCTACGGCCCGGCTGGCACTGGGAAAACCTACGTCAGCAGCCGACTGATCCGGTTGTTTGCCGAGGCCATCTGGGTGCCCCACGCCATCGTCATCAACGAGTCGGTGATCGAGATCTACGATCCGCAGGTGCACCAGCGTCTGGATGACAGCGGCCAGACGAACAGCCTCATGCTCAACGAAGGCATCGATCGCCGGCTGCTGTGCTGCAAACGTCCGATCGTCATCACCGGCGGCGAATTGAGCATGGAGCAACTGGACGTACGCTACGACCCGTTCACCCGCCAATACCAGGCGGCCTTGCAGCTCAAGGCCAGCAACGGCCTGTTCATCATCGACGACATGGGCCGCCAGCGCATGGCCCCGGCTGAATTGCTCAATCGCTGGATCGTGCCGATGGAGGAAAAGCGCGACTTCATCAACCTGGGCGGCGGGCGCCACTGCGAGCTGCCGTTCGACCTGGTGCTGGTGTTCTCCACCAACCTCAATCCCCTCGAACTGGCCGACGAGGCCTTCTTGCGGCGCATCGGCTACAAGGTCCAGTTCGGCTACCTCAAACCCGAGGAATACGAGCGCATCTGGCGCCAGGAATGCGAACGCCTGGGCATCGTGCATGACCCGCAGCTGGTGCGTCATGTCCTGCAGCGGTTGTATGGGGGCGAGGGCATGCCGCTGGTGCCCTGCCATCCCCGCGACCTGTTGAGCATGGCGCTCGACCGCCAGCGTTACCTGGGCGGTTCCGGGCCCCTGGCGCCCCAAGAGCTGGAGTGGGCCTGGCACAACTACTTCGTTCAGCTCGACTTCCTTTGAMHVINDSDAYPSEREAVQRLAPQPGSIRDTGLTDSFLGELVCKHLHEAGVLDMSRLVERLALTGAVLEEVLAFLRKDGRVEVLGQLAQAGGQSLRYGLTERGRSFARDALARSGYIGAAPFPVSTYRSLIKIQTIHHGRITAKDMNHALAGMVLSQGMLDQLGVALNSGRAIMIYGPAGTGKTYVSSRLIRLFAEAIWVPHAIVINESVIEIYDPQVHQRLDDSGQTNSLMLNEGIDRRLLCCKRPIVITGGELSMEQLDVRYDPFTRQYQAALQLKASNGLFIIDDMGRQRMAPAELLNRWIVPMEEKRDFINLGGGRHCELPFDLVLVFSTNLNPLELADEAFLRRIGYKVQFGYLKPEEYERIWRQECERLGIVHDPQLVRHVLQRLYGGEGMPLVPCHPRDLLSMALDRQRYLGGSGPLAPQELEWAWHNYFVQLDFLNANANANANA
D1-35_02022816hypothetical proteinATGAGCTCTCGTACGTTTTCGCTGATAGGCGTTTCCCTGGTAATGGGCCTTGGTGCCGCATGGATGGCTGACTCCTGGCTGAGCGCGCGACTCAACGCGACCCCCGACGATCATCTGCGCAGCGTCGTCATCGCGACGGTGCAAATCCCCTTCGGGCAAATGGTCGAGGCCCAGCAGGTGACGACCGTGCGCATGCCCATGGACACCATCCCGGACGATGCCTTCGATGCCAGTGAAAAAGCCGTGGGCAAGATCGCCACGTTCGACATCCTGCGCGGCGACATCGTGCGCGGTGCCCGGCTCAGCGAGCACTTGGGCGGCAGCACCCTGGCCTCGCTGATCGCGCCGGACAAACGCGCCATATCGGTACGCGTGGATGATGTGGTCGGTGTCGGTGGATTCCTGTTGCCAGGTAATCGGGTCGATGTGCTGGCGACCAAGACCACCAACGCCGGTAGCAACAGCGCCACGTCCCGGACGCTGCTGGAGAACCTGCGAGTGCTGGCGGTGGACCAGACGGCGGGTACTGACAAGACCCAACCGGTAGTGGTGCGGGCCGTGACCCTGGAAATGTCCGCCAGCGAAGCGGAATTGCTGGTCACCGCGCAGACCGAAGGCAAGCTGCAACTGGCCTTGCGCAACCCGTTGAACCTGGAGAAGAGAGCCTTGGCCGTTGCGCCGCCAGCTCCGGCGCCGATGATGGCGGTGGCTGCAGCTCCGGTGCCACGGCCTGCGGTGCAGCGCAGCGCCAAGCCTGAGGGAAGTGCGGTCACGTTGATCCGTGGGGTTGAAAGCACTGTGATCAACATCCGCTGAMSSRTFSLIGVSLVMGLGAAWMADSWLSARLNATPDDHLRSVVIATVQIPFGQMVEAQQVTTVRMPMDTIPDDAFDASEKAVGKIATFDILRGDIVRGARLSEHLGGSTLASLIAPDKRAISVRVDDVVGVGGFLLPGNRVDVLATKTTNAGSNSATSRTLLENLRVLAVDQTAGTDKTQPVVVRAVTLEMSASEAELLVTAQTEGKLQLALRNPLNLEKRALAVAPPAPAPMMAVAAAPVPRPAVQRSAKPEGSAVTLIRGVESTVINIRPGPT0016005_1234DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016005-cpaB-K02279NANA
D1-35_020231332hypothetical proteinATGAACTCCAGTACCCGGCAGCCCTTGACGCTGCCTCGACGCCAGGGAGGGGCGGTGAGTGTATTGATGGTGATTGCGCTGGTGGCGATTTCCATGATGGCGGCGTTGGCCCTGGATGGCGGTCACATGTTGCTGAACAAGACGCGCCTGCAGAACGCGGTGGATGCCGCGGCCTTGGGTGGCGCGAAGACCCTGAGCCAGGTGAGCGGTGGCGTCAACATGTCCAGCAGTACCCGCACGGCGGCCCTGGACACCCTGACGCTCAATGCCGACGCCGCTGGCAACGCCGAACTCGCAACGGCCATCGCCGGCAATCCGGGGGCGTTTGCCGTGGTCGAGTTGGCCAGCAGCGTCTATGGGCCTTTCTCCTATCCTGGCCCGACCGATGCGAAGTACGTACGGGTATCGGTCGCCAGTTATCAACTGAACGGGTTCTTCTGGAGTGCCGTCCAGACGATGGGCAGCGACGGCCTGGGCAACAAAAGAGTCGCGGCGATCGCCACGGCAGGCCCCAGCCCGACGGCTCCGTGCGATCTGGCGCCGCTCATGGTCTGTGGCGATACCTCTCAATACAACCCGGCCGCCGGCAATTTCTGGGGCTACCGCTTTGGTGACCTGGAAGTGTTGAAGACTGCGGCAGGCAATACTTCGCCCATCGGACCGGGCAACTTCCAACTGCTCGATTTCGGCTCCGGCGGCAGTGCGGTACGGGAAGACCTGGCCGGTGGTGGTTCGATTTGCCGCAGTGTCGGGGACAACGTCCAGACCTCGCCCGGCAACAAGGCGGGCCCGACATCCCAGGGCCTGAACACCCGCTTCGGGATCTACAACGGTCCGGTCAGTTCCTCCGACTACCCGCCCGATCTGGTTACGGCCTCCAACACGCCGGCAATGACCTATGACGATGCGCTTGGCCCCAGATACGAAGGCCAGTCTGTCACCTCGAGCAATGGCGACCTGTCGGCGGGCGGCCAGGCAATCCTGGATTACAACGATTGGCGCGCCAGCGTTGCCGCGTGTGTCGCGGGAGGCGGCAGCGGCTGTGAAAGCAATGGGGTGTTCGAGCGCAGGATGCTGAAGATCGTCATCGGCGACTGCGCCGGGAAACTCAGCGGCTCGACCTCGATCCCGGTCCTCGGTTTCGGCTGCTATTTCGTCGTGCAGCCGGTGAACGGCGGTGGTTCGGAATCCGTCATCTTTGGTCAGTTCGTCCAGGAGTGCGAGGGCGACAACGTCCCCGGGCCGACGCCGTCCAGCGATGCTGGCCCGCAAATCATCCAGCTCTATAAAACCTACCTCAACGGCAGCGGCACTCCGAGCACCGACTCGTAGMNSSTRQPLTLPRRQGGAVSVLMVIALVAISMMAALALDGGHMLLNKTRLQNAVDAAALGGAKTLSQVSGGVNMSSSTRTAALDTLTLNADAAGNAELATAIAGNPGAFAVVELASSVYGPFSYPGPTDAKYVRVSVASYQLNGFFWSAVQTMGSDGLGNKRVAAIATAGPSPTAPCDLAPLMVCGDTSQYNPAAGNFWGYRFGDLEVLKTAAGNTSPIGPGNFQLLDFGSGGSAVREDLAGGGSICRSVGDNVQTSPGNKAGPTSQGLNTRFGIYNGPVSSSDYPPDLVTASNTPAMTYDDALGPRYEGQSVTSSNGDLSAGGQAILDYNDWRASVAACVAGGGSGCESNGVFERRMLKIVIGDCAGKLSGSTSIPVLGFGCYFVVQPVNGGGSESVIFGQFVQECEGDNVPGPTPSSDAGPQIIQLYKTYLNGSGTPSTDSNANANANANA
D1-35_02024465hypothetical proteinATGAGACTTGTCCCGTTCAGACCGCGTCGCGCCCAGCAAGGGGTGGCGCTGGTGGAATTCACTCTGGTGCTGCCGTTGTTGCTGCTGCTGTTGCTGGCCTTCGGCGAGTTCGGTCGCATGCTTTACCAGTACAACGTGCTGCTGCAAGCCAGTCGCGATGCCGGCCGCTTCGTCTCCAGCCAGGCCTGGAACACCACCCTTGGCGCCATCGACTTGAACGGCACGCTGCGGACCCGGACAAAAAACGTCGCGGTGTATGGCGTGCCCAGCACCGTCGGTGCGGCGGTAGTGCCGGGGTTGACAGTCGGCAACGTGGTGGTCGAGGCCGTTGGCAGCAATCACGTGAGGGTGACCATCACCCATGCCTTTTCTCCGGTCATCGGCACTGTGATTCCGGGCTTCTTCGGTGCTCCTACCCGCCTGGGCATCGATCTGGTCGCGACTACCGTGATGAGGGCGCTCTGAMRLVPFRPRRAQQGVALVEFTLVLPLLLLLLLAFGEFGRMLYQYNVLLQASRDAGRFVSSQAWNTTLGAIDLNGTLRTRTKNVAVYGVPSTVGAAVVPGLTVGNVVVEAVGSNHVRVTITHAFSPVIGTVIPGFFGAPTRLGIDLVATTVMRALNANANANANA
D1-35_02025495hypothetical proteinATGAACCGCAAGCACATGCGCGGCACCTATGTCGTGGAGTTCGCCTTCGTCGGCCTGCTGGTGTTCACCCTGCTGTTCGGCGTCGTCGAAATGGGCCGCCTGTATTTCACTGCCAACGCCCTGGATGAAGCGGCGCGGCGCGGGGCACGGCTGGCGGCGGTGTGCAACATCAGCGATCCGGTGGTCTTGCGCCGGGCCATTTTCAACGCCGCGACGGACGCCGGCACCAGCCAGCTGATCAGCAACCTGGCCACCACGAACCTGGCGCTGACCTACCTGGACGTCGACGGTGCTGTCGTCGCCAACCCGGCCAACACCACTGGCACCGCAGGTTTTCGGGCCATCCGCTACGTGCAGTTGAGCGTGCAGAACTTCAATTTCAATCTGTTCATCCCCGGCTTGGGCGTGTCGATTACGTTGCCTACCTTCAGGGCGACCTTGCCACGCGAAAGTCTTGGGCGTCATTCCGATTCAGGGGAGATCACACCATGCTGAMNRKHMRGTYVVEFAFVGLLVFTLLFGVVEMGRLYFTANALDEAARRGARLAAVCNISDPVVLRRAIFNAATDAGTSQLISNLATTNLALTYLDVDGAVVANPANTTGTAGFRAIRYVQLSVQNFNFNLFIPGLGVSITLPTFRATLPRESLGRHSDSGEITPCNANANANANA
D1-35_020261221hypothetical proteinATGCTGAACACCCGGGAAACTCCGCTTACGACCGCTACCGGCAGGCCCGGCTTGCGGTTACTGGTCAGCAGTCGCGATGCGACGTCGCTGCGTGATCTGCAATGCGTCTGCCAGCGCATGCCGGGCCTTGAAGTCAGCACCCGACTGGTCAGCAACGGGCATGTCGATCCGCTCTTCGGCCTCGATCGCATGCCTGACCTGCTGCTGTTGCGGGTCAGCCATCTGTGGCGCGAGGAACTGTCGGCGCTGCTGCAACGTCCGGCCCATGAGCGCCCGCCGATGCTGGTGTGCGGTCTGTTGGGCGAGCAGGAGGGCATGCGCCTGGCCATGCAGGCCGGTGCGCGTGACGTGCTGCCCGAGCCCTTCGCCGATACGGAGCTGGCGGCTGCGCTGAACCGGCTGGTGGCCGAAGTGCGTCTCGGCAACGGCAACGAAGGCAAGCTGATCGCAGTGATCAGCGCCAAGGGCGGCTCCGGCGGGACCCTGGTGGCGTGCAACATGGCCCAGCAACTCAGCGCTCGTGCAGGCAATACCCTGCTGTTGGACATGGACTTGCAGTTTGGCAGCGTGACCCATTACCTGGACGTGGCGCAGTCCCACAGCCACCTTGAAGTGCTGCAGCAGGTCGATGACATGGACAGCGTGGCGCTTCGCGGTTTTTGCAGCCATTTCAGCCCGACCTTGCATGTGCTGGGTGGCCGGGCCGGCGAGCTGTGCCTGCCCCAGGATGCCCAGCCCGAGCAGCTCGATGCGCTGTTGCAACTGGCACGCGGCAGCTATGACTGGGTCGTGGTGGACCTGCCCAGGCAGATCGACCACCTCACCGGCGCAGTCCTGGAACAGGTCGACCGGGTGTACGTGGTGGTCCAGCAGAGCGTCAGCCACCTGCGTGATGCCAGCGCCCTGGTGCGGATCCTTCGCGAAGACCTGGGCGTTCGCGGCGAGCAACTGCAGATCGTGATCAACCGCTACGACAAGACCTCCGCCGTCAGTCTGAAGGATGTTGGCGAGGCCCTGCGTTGCGCGAACCTGTCGAAATTACCCAATGACTTCAACCTGGTCAGCCAGAGTCAGAACACTGGCGTGCCGTTGGGGCTGCATGCGCCGAAGGCGGCTATCACCGCCGCCCTGCGCGATTTGGCCGAGGACCTGGTCGGTCACCAGATGGCCGCAGACAAAGGCCTGCTCAAACGCGCCTTCAACCGTTTTTTCGGGGGATGAMLNTRETPLTTATGRPGLRLLVSSRDATSLRDLQCVCQRMPGLEVSTRLVSNGHVDPLFGLDRMPDLLLLRVSHLWREELSALLQRPAHERPPMLVCGLLGEQEGMRLAMQAGARDVLPEPFADTELAAALNRLVAEVRLGNGNEGKLIAVISAKGGSGGTLVACNMAQQLSARAGNTLLLDMDLQFGSVTHYLDVAQSHSHLEVLQQVDDMDSVALRGFCSHFSPTLHVLGGRAGELCLPQDAQPEQLDALLQLARGSYDWVVVDLPRQIDHLTGAVLEQVDRVYVVVQQSVSHLRDASALVRILREDLGVRGEQLQIVINRYDKTSAVSLKDVGEALRCANLSKLPNDFNLVSQSQNTGVPLGLHAPKAAITAALRDLAEDLVGHQMAADKGLLKRAFNRFFGGPGPT0016020_909DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016020-cpaE-K02282NANA
D1-35_020271440hypothetical proteinATGATCAGCGACTTCCGCAACCGCTTGCGCAAACAGTCCGCCAGAGCCGCGGCTCCAGCCGCCCAGCCGAGAGACAGCCTGCCCGATAGCATGGATGAATTGATGCCATGGGAGCAGGCCATCCCGGATGTGCTCTATGAAACCCGCAGCCAGGTTACCCCGGTGGAAGCCGAGTGGCGGGAAAAAATCTATCAGCAACTGCTCAAGGTCATGGACCTGTCCCTGCTCGATGCCCTGGAGCAGGCCGAGGCTGCGCGGCAGATCCGCGATATCTGCCAGCGCTTGCTGGAAGAACATTCGGCCCCTGTCAGCACGGCCAGCCGCCAGCTGATCATCAAGCAGATCACCGATGAAGTGCTCGGGCTCGGGCCACTGGAACCGTTGCTGGCCGACCACAGCGTCTCCGATATCCTGGTCAACGGCTTCGCCTCGGTCTATGTCGAACGCTTCGGCAAGCTGCAACGCACCGACGTGCGTTTCCGCGACGACCAGCACTTGCTGAATATCATTGACCGCATCGTTTCCAGCCTCGGCCGGCGCATCGATGAATCCTCGCCGTTGGTCGACGCACGCCTCAAGGACGGCTCGCGCGTCAACGCGATCATTCCGCCGCTGGCCATCGACGGCCCGAGCATGTCGATCCGGCGTTTTGCCGTGGACCTGCTCAACACCGACAGCCTGATCCAGGTGGGCACCATGACCCCGGCCATCGCCTTGCTGCTCAAGGCCATCGTCCGCGGGCGCCTGAACGTGCTGATTTCCGGCGGGACCGGCAGCGGCAAGACCACCATGCTCAACGTGTTGTCGAGCTTCATCCCGCATAACGAGCGCATCGTCACCATCGAGGATTCGGCCGAGTTGCAATTGCAGCAACCCCATGTGGTGCGCCTGGAAACCCGGCCCTCGAACATCGAAGGTCGTGGCGAGGTGAGCCAGCGTGAACTGGTGCGCAACAGCCTCCGGATGCGTCCCGACCGCATCGTCATCGGCGAAGTGCGTGGCGCCGAAGCGATGGACATGCTCACCGCCATGAACACCGGCCACGATGGTTCCCTCACGACGATCCATGCCAACACCGCCCGCGATGCACTGGGGCGAATCGAAAACATGGTGTCGATGACCGGGGCGACGTTTCCCATCAAGGCCATGCGTCAACAAATTGCCTCGGCCATCGATGTCGTGATCCAACTGGAGCGTCAAGAAGACGGCAAGCGTCGCGTTGTGAGCATGCAGGAGATCAATGGCATGGAAGGGGAGATCATCACCATGACCGAAATCTTCTCGTTTGCCCGCCACGGTCTCGGCGAGCACGGTGAGGTGCTCGGGGAATATCGGCCCAGCGGCATGATCCCGGCGTTTCGCGACGTGCTGGCCAAGCGCGGCATCGAGCTGCCGCTGACACTGTTCCGTCCTGAGTGGATGGAGGGTCGGCAGTCATGAMISDFRNRLRKQSARAAAPAAQPRDSLPDSMDELMPWEQAIPDVLYETRSQVTPVEAEWREKIYQQLLKVMDLSLLDALEQAEAARQIRDICQRLLEEHSAPVSTASRQLIIKQITDEVLGLGPLEPLLADHSVSDILVNGFASVYVERFGKLQRTDVRFRDDQHLLNIIDRIVSSLGRRIDESSPLVDARLKDGSRVNAIIPPLAIDGPSMSIRRFAVDLLNTDSLIQVGTMTPAIALLLKAIVRGRLNVLISGGTGSGKTTMLNVLSSFIPHNERIVTIEDSAELQLQQPHVVRLETRPSNIEGRGEVSQRELVRNSLRMRPDRIVIGEVRGAEAMDMLTAMNTGHDGSLTTIHANTARDALGRIENMVSMTGATFPIKAMRQQIASAIDVVIQLERQEDGKRRVVSMQEINGMEGEIITMTEIFSFARHGLGEHGEVLGEYRPSGMIPAFRDVLAKRGIELPLTLFRPEWMEGRQSPGPT0016025_895DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016025-cpaF-K02283NANA
D1-35_02028987hypothetical proteinATGAATAACATTCCTGGTGAATTCATCCTGGCGTTCCTCGGCATGGTCTTTGTGGCTGTGTTCCTGCTGTCCCAGGGCGTGGTGGTCCCGGTCTTCGGCGAGGCGGGGAAAATGCGCAAGCGCATTCGTGGCCGTCTGCATGTGCTGGAGAAAGCCAACCACTTGCCCAACATGCGGACGGTATTGCGGCAGAAATACCTGACGCGCCTGTCTCCCTTGGAGGCCCGGCTGGAGCAACTGCCGTTCATGGCCAGCCTGACCCAGATGATCGAACAATCCGGCCATGAATACCGGGCCTATCGGGTGATGCTGCTCGGCCTCGCGCTGGGGGTGGCCGCCGGGGCCGCGGTGCTGCTGGTGTCGCCGCTCTGGTGGATGGCGCTGATCGCGTCGTTTGTCGTGACGTGGCTGCCGCTGCTGAAAGTCATGCGCGACCGCAACAGGCGTTTCGCTGCGTTCGAGGAGGGCTTGCCGGATGCGCTGGACGCCATGTGCCGGGCCTTGCGCGCCGGGCATCCGTTCAACGAAACCTTGCGACTGGTGGCCGAGGAGCACAAGGGGCCGGTGGCCCAGGAGTTCGGCATGACCTTCTCCGACATCAACTATGGCAACGACGTGCGCAGGGCCATGCTGGGTCTGCTGGAGCGCATGCCGAGCATGACCGTGATGATGCTGGTGACCTCCATCCTCATTCACCGCGAGACCGGCGGCAACCTGACCGAAGTGCTCGAGCGCCTGAGCCGATTGATCCGCGGGCGTTTTCGCTTCCAGCGCAAGATCAGGACGTTGTCGGCGGAGGGACGCATGTCGGCCTGGGTACTGGTGGCGATCCCGTTCGTGCTGGCGATCGCCATCGTGCTCACCAGCCCCAGCTACATGCCTGTGCTGATCAACGACCCCATCGGTCACAAGCTGATCATCGGTGCCTTCTGCGCCATGTTGATCGGAATTTTCTGGATCAAGAAAATTATCCGGATCCAGGTTTAAMNNIPGEFILAFLGMVFVAVFLLSQGVVVPVFGEAGKMRKRIRGRLHVLEKANHLPNMRTVLRQKYLTRLSPLEARLEQLPFMASLTQMIEQSGHEYRAYRVMLLGLALGVAAGAAVLLVSPLWWMALIASFVVTWLPLLKVMRDRNRRFAAFEEGLPDALDAMCRALRAGHPFNETLRLVAEEHKGPVAQEFGMTFSDINYGNDVRRAMLGLLERMPSMTVMMLVTSILIHRETGGNLTEVLERLSRLIRGRFRFQRKIRTLSAEGRMSAWVLVAIPFVLAIAIVLTSPSYMPVLINDPIGHKLIIGAFCAMLIGIFWIKKIIRIQVPGPT0022290_407DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022290-tadB-K12510NANA
D1-35_02029966hypothetical proteinATGGATTTCTTACTTGGGTTGTTCAGTCGGTTCACCGGAAGCGAGGAGCTCGCCCGGCTGTTGTTCATCGTTGTGATCGGCCTCAGCACGGTGCTCGCGGCCGTTGCCGTCAGCCTGCTTTTGCTGGGCTTGCAGGACCCGGTCCAGCGGCGCCTGGCGTTGATCAAGCGCGGCTATGCCGGCAGCACGGCGGGGCAGGAGGCGCCCGGCAACCTGCAACTGCTGCTGGAGCGGGTCGGCCAGCGCTTTGCCTCAGCCGACCCGACGCAGGTTTCGGCGACCCAGATGCTGCTGACGCATGCTGGCTACCGCTCCGCCTCGGCGGTCCAGATGTACTGGGCTGTGCGCCTGATCCTGCCGCTACTGATGATTGGCCTTGCGCTGGTGTTGCTGCCGATGATCAAGGTTTCAGTGGCTATTGGTTTGCTGGCCGTGACGCTCGTTGCCGGCATCGGCTGGCTGTTGCCGGCGCTCTATGTCGGCAAGCGCAAGCAGGCACGGCAAACCCGGTTGCGCGCGGCGTTCCCGGATGCGCTGGACCTGATGGTCGTCTGCGTCGAGTCAGGCCTGGCCCTGCCCACGACCATAGAACGGGTGGCCGAAGAAATGTCGGTCAGCCAGGTCGAGCTGGCCGAGGAACTGGCCTTGGTCAACGCTCAGATCCGCGCGGGCATCACCAGTACCGAGGCGCTCAAGCAATTGGCCGTGCGCACCGGTCTGGAAGACATCCAGGGCCTGGTCAGCCTGTTGGCGCAAAGTATCCGTTTCGGCACCAGCGTGGCCGATACCCTGCGAATCTATGCCGACGAATTTCGTGACCGGCGGACCCAGGCCGCCGAAGAAATGGGTGCCAAGATCGGCACCAAACTGATCTTCCCGCTGATCTTCTGCCTCTGGCCAAGCTTCTTCCTGGTCGCCATAGGCCCCGCCATGATCGGTGTGTTCAGGGCTTTCGGGAATATGTAGMDFLLGLFSRFTGSEELARLLFIVVIGLSTVLAAVAVSLLLLGLQDPVQRRLALIKRGYAGSTAGQEAPGNLQLLLERVGQRFASADPTQVSATQMLLTHAGYRSASAVQMYWAVRLILPLLMIGLALVLLPMIKVSVAIGLLAVTLVAGIGWLLPALYVGKRKQARQTRLRAAFPDALDLMVVCVESGLALPTTIERVAEEMSVSQVELAEELALVNAQIRAGITSTEALKQLAVRTGLEDIQGLVSLLAQSIRFGTSVADTLRIYADEFRDRRTQAAEEMGAKIGTKLIFPLIFCLWPSFFLVAIGPAMIGVFRAFGNMPGPT0022295_699DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0022295-tadC-K12511NANA
D1-35_02030270hypothetical proteinATGAAAACCCAACAATTGATGATCGTTTGCGTGGCCTGCCTGTCTACCACCGCCTGGGCGATCGAGCCAGGTCCTTCCTCCGCGGCGCAGCAAGGCACCGAGCGCTGGATGCAACTGCAGATCCGCGGTGTCGTGGCATCGACCAATCTGCAGACCGTCTCGGCCACCGAACGTGAGCTGGCCATGCAGCGCTGGCTCAATAGTTTCACCTACCCGATCCCGGAATTTTTTGACCAGGACTCGGGGGGAGAAATCACCAGCAGCAAATAGMKTQQLMIVCVACLSTTAWAIEPGPSSAAQQGTERWMQLQIRGVVASTNLQTVSATERELAMQRWLNSFTYPIPEFFDQDSGGEITSSKNANANANANA
D1-35_02031714hypothetical proteinATGAAAACATTGACCGCTATAGCGGCGGCCCTGGTGTTGACCGGTTGCGCCAGCAACGGCACCGTGGCCTCGCACCCGGGCAGTTGCGCCAAGCCCGGATCCGATCAGGATCTGGCCCTCAACCTGGCCGATGACATGGCCAATGATGGGCGCTTGTATGCCAGCCTGGCGAACCTCGAAGGTTTACCCGAGGAGCTGGTCCAGGTTCGCCTGCGCAAGGCTCGGGTGCTGCGCCTGATGGGGCGCAACGAGGCCGAGCCGCTGTATAGGAGCCTGCTCGGGACTTGCCTGGCCGCCGACGGTGAACATGGCCTGGGGCAGTTGGCCGCCGCTCGAAATGATTACGCCAGCGCTACGGAACACCTTGAGCACGCCGCCAGGATGGCCCCCACCGAAGGCAAGATCCGCAACGACCTGGGGGTGGTCTATCTCAACCAACGCCGGATTCCCCAGGCCCGCTTCGAGTTCATGACGGCCATGGAACTTCAGCGATCAGACTCGCTGGCGGCACTTAACATGGTCACCCTGTTGATCTACCAGGACAACTGGAAGCAGGCCGCCGAGCTCGCGAACATGGCCAAGCTGAGCCCTCAGCAGATAGCTGATGCCCAGGCCCGCGCGGAAAAAATCAGGGGCTCGGCCAGTCATCCCCTGACGACACAAGCGAACCGCCTGAACGAGGTCGTCGAGGCCTCAACCGGCGCGGCCAAGTAGMKTLTAIAAALVLTGCASNGTVASHPGSCAKPGSDQDLALNLADDMANDGRLYASLANLEGLPEELVQVRLRKARVLRLMGRNEAEPLYRSLLGTCLAADGEHGLGQLAAARNDYASATEHLEHAARMAPTEGKIRNDLGVVYLNQRRIPQARFEFMTAMELQRSDSLAALNMVTLLIYQDNWKQAAELANMAKLSPQQIADAQARAEKIRGSASHPLTTQANRLNEVVEASTGAAKNANANANANA
D1-35_020321224sctC_1Type 3 secretion system secretinATGACCTATCGCACCGTGCCTACACTAAAACGCTTCATACATGGATTGTTCTGGATGAGCCTCGGCCTGGAAGCAGCCCACGCGGCTTCGGCCAACTGCTCGCAACTGGACAATCTGCCCGCGACCTTCGAGGTCGGCCAAGGGCTGCAGAATGAACTGCGCATCCTGGCCCCCGTGACGAAGCTGGCGGTGGGCGATCCGAAGATTGCCGACGTGCAACCCAGTGGCAGCGATGCCTTCATTCTCACCGGCCTGATGCCCGGTGCTACCAGTCTGATGGTCTGGACCGAGTGCTCGAAAATACCGCGCCAGAGCATGGTCTTCGTGACGGGCCGGGCCACCGCGGCGCTGACCAGCGCCGCGAGCGTACCGTCGGAAGACCCGATGCTGCTCGCCCAGGTCCAGACCGACATCCGCTTCGTCGAGGTCAGCCGGACCAAGCTCAAGGAGGCCTCGACTTCGATTTTCGGCAGCCGTGGCAACTTCCTGTTCGGCTCGCCCAGAACGCTGCCCACGATCGGCGGCGTAGTCCGTCCTTCCCTGCCGGTCAACAACGACATGTTCAACCTGTCCTTCGCCACCGGGCAGACGCTGCTGATGATCAACGCGCTGGAGGGCAGCGGTTTTGCCTATACCCTGGCGCGGCCGAGCCTGGTGGCGCTCAGCGGGCAAAGCGCGAGCTTCCTGGCCGGTGGCGAAGTACCGATTCCGGTGCCGAGTGCCGGGAGCGACAACGTGTCCATCGAGTACAAGGAGTTCGGGATTCGCCTGACGCTCACGCCGACCGTCATCGGCAAGAATCGCATCGTGTTGAAGGTGGCGCCCGAAGTCAGTGAACTGGATTTCACCAACGCCGTGAACATTGCCGGCACGCTCGTCCCGGCGCTGACCGTGCGCCGCACCGATACCAGCATCGCCCTGGCCGACGGTGAAAGCTTTGTCATCAGCGGTCTGATCAGCACACGCAATGCGTCTCAGGTGAACAAATTTCCGGGCCTGGGCGACGTGCCGATTCTCGGTGCATTTTTCCGTGACAACTCGATCAATCGCGAAGAGCGCGAACTGCTGATGATCGTCACGCCGCACCTGGTTCAGCCTTTGGCCGCCAACGCTCAGTTGCCGACGCTACCGGGCGAGCAACTGCGCAATTATGACCCGAACTTCTATCGCATGTATTTCCTTGAAAACGGCGAATTCGACAAGCGCAGCGGGCTTTCCCAATGAMTYRTVPTLKRFIHGLFWMSLGLEAAHAASANCSQLDNLPATFEVGQGLQNELRILAPVTKLAVGDPKIADVQPSGSDAFILTGLMPGATSLMVWTECSKIPRQSMVFVTGRATAALTSAASVPSEDPMLLAQVQTDIRFVEVSRTKLKEASTSIFGSRGNFLFGSPRTLPTIGGVVRPSLPVNNDMFNLSFATGQTLLMINALEGSGFAYTLARPSLVALSGQSASFLAGGEVPIPVPSAGSDNVSIEYKEFGIRLTLTPTVIGKNRIVLKVAPEVSELDFTNAVNIAGTLVPALTVRRTDTSIALADGESFVISGLISTRNASQVNKFPGLGDVPILGAFFRDNSINREERELLMIVTPHLVQPLAANAQLPTLPGEQLRNYDPNFYRMYFLENGEFDKRSGLSQPGPT0016010_1503DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TIGHT_ADHERENCE_EXPORT,PGPT0016010-cpaC-K02280NANA
D1-35_02033408hypothetical proteinGTGTCCAACGTCGTTGCCGATCACCTCGTCTTGCTTGACCACTTGCGCAGCATCCTGGTCGCCGTGGGTGAGGCCGAACAGGTTCCCGAAGAAAGCCATGCGCTGTTCCTGGAGCGTTTTGACGAATTGCGCGCGCAACTGCCAGTCGACCCGATCGAAAGCCAGTACCTTGGCCAGGACCTGCTGTGCCAGGTGATCGTGCGTTATCCACAAATCGCCCACCTGGTGCCTCGAGACCTGCTGTGGTATTTCGGCGGCGATTGCCTGCACTACATGCCCGACGAAGAGATCGCCCTGTATCAGGCCCTCGAGGAACGTCGTTTCGAAGCCGAGCAAAACGACGAGCCGTTCGACTGGAACCAGGAAAAACAATTGCTGGCCATGTCTGATCAGGACAGCAAGCACTGAMSNVVADHLVLLDHLRSILVAVGEAEQVPEESHALFLERFDELRAQLPVDPIESQYLGQDLLCQVIVRYPQIAHLVPRDLLWYFGGDCLHYMPDEEIALYQALEERRFEAEQNDEPFDWNQEKQLLAMSDQDSKHNANANANANA
D1-35_020342448fadECOG1960Acyl-coenzyme A dehydrogenaseATGCTGTTGTTGTGGATACTGGTTCTGGTCGTCGGGATAGCCTGGCTGGCACACCGCCGCACCGCCCCGCTGCCAGCGCTGGGCATCGTTGCGGTCTACCTGTTGGCGATGGGCATCTTCAGCCATGCGCCCGGGTGGCTGCTGCTTGTCCTATGGTTGGTACTTGCCGCCGTTGCAGCCCCGCTGTTGCTACCTGACCTGCGCCGTAGATATTTCAGCGCGCCGATGTTCGACTGGTTCCAGAAAACCTTGCCACCGATGTCCGAGACCGAGCGCGATGCCATTGATGCCGGCACGGTGTGGTGGGACGGGGAATTATTCAGCGGCCGGCCGGACTGGGACATGCTGCTGGCCTACCCAAAAGTAAAACTGACTGACGAAGAGCAGGCGTTTCTCGACGGTCCAACCGAAGAACTCTGCGCGATGGTCAGCGACTGGCAGATCGGCCAGGCCATGGACCTGCCGCCCGAAGCCTGGGCCCATATCAAGGAACATGGTTTCTTCGCCCTGATCATTCCGAAGGAATACGGCGGCAAGGGATTTTCCGCCTATGCCCACTCCCAGGTGGCGATGAAACTGGCGACCCGCAGTGGCGACCTGGCGTCCACCGTGATGGTCCCCAACTCCCTCGGCCCGGCGGAACTGCTGCTGCACTACGGCACCGATGAACAACGCAACCATTATCTGCCGCGACTGGCCCGGGGTGACGATATTCCCTGCTTCGCCCTGACCGGGCCGCTGGCTGGCTCCGATGCGGGGGCGATGCCCGACACCGGGATCATTTGCAAAGGCGAATGGCAAGGCCAGGAAACCATCGGCCTGCGCTTGAACTGGGAAAAACGCTACATCACCCTCGGCCCCGTCGCCACCCTCCTCGGCCTGGCCTTCAAAGCCTACGACCCGGAGCACCTGTTGGGTGAAGAAGAGGACCTGGGGATCAGCCTGGCGCTGATCCCCACGGATACGGCCGGGGTCAATATCGGTCGCCGTCACCTGCCTCTTGGCGCCGCCTTCATGAACGGACCGAACTGGGGCAAGGACGTGTTCATCCCGCTGGACTGCCTCATCGGCGGCCAGGCCATGCTCGGCAAGGGCTGGATGATGCTGATGAATTGCCTGTCGGTCGGGCGCTCGATTTCCCTGCCAGCGGTAGGGACCGGCGCGGCGAAGTTCACCAGCCTGGTCACCGGCCAGTACGCCCAGGTAAGGGAACAATTCAACGTGCCGTTGTCCGCCTTCGAGGGCATCCAGGAAGCCATGGCACGTATCGGCGGCAATGCCTGGTTGATGGACGCCGCACGCATGCTGACCGCCAACGCGGTGGACCTCGGCGAAAAGCCTTCGGTACTGTCTGCCATCCTCAAGTACCACCTGACCGAGCGCGGCCGCGAGTGCATCAGCCACGCCATGGACGTGCACGGCGGCAAAGGCATCATCATGGGGCCGAACAACTACCTGGGCCGCAGCTGGCAAGGCGCGCCGATCTTCATCACGGTCGAAGGCGCGAATATCCTCTCGCGCAACCTGATGATCTTCGGCCAGGGGGCGATTCGCTGCCATCCGTTCGTATTGAAGGAAATGGCCCTGGCAACTCGAGAAGACAAAGACCAGGCATTGGTCGAATTCGACGAGTTGCTGCTCAAGCACATCGGTTTTGCCATCGGCAACGCCGCCAGCACCCTGGTCCTGAACCTCGGCCTGGGGCACTTCGACAACGTGCCGGGCAATGCCCTGAGCCAAGGGTATTTCCGTGCCCTCAACCGGCAGGCGGCGGCGTTCGCCTTGCTGGCGGACCTGAGCATGATGCTGCTGGGTGGCGAACTCAAACGTCGCGAACGCCTGTCGGCCCGCCTGGGGGATGTATTGAGCAACCTTTACCTGGCCTCGGCGGCGCTCAAGCGCTATCACGACCTTGACTCGCCAGACCATATGGGGCCGCTGTTTCGCTGGGCCATGGAGGAAAGCCTGGGTCAATCGGAGCGGGCACTGGACGAACTGCTGGTCAACTTCCCGAATCGGCTGCTGGGCGGCCTCTTGCGAGTGGTGGTGTTTCCTTTCGGCCGCCGTCACAAGGGACCGAGCGACAGGCTGGACGCCGAGGTGGCTGCCGTTATCGGCCGCGCCAAGGGCGATCCGACTCTGGAAGAGCTGCTCCAAGGCTGTTATCGCCCGCAGTCGGAAGAGGACCCGGTGGGCGCGCTGCAACATGCCGCCGACCTGCTGGCCGCCGCCCAGCCGCTTCACAAAAAGCTCCATGGAGCGTTCAAGCAGGGCCAACTCAACCCTGCGCCCGGCGAACCTATCATCGATGCGGCCCTGGAGGCGGGTGTCCTGCAAGCCGGTGAGGCGCAGACCCTGCGCGCAGCCGAAGCGGCACGCCGCAAGGTCATCGATGTGGATGATTTCGACAAGGAGGAACTGACGCTCGCCGAGGCCAAGGTGCGGTGAMLLLWILVLVVGIAWLAHRRTAPLPALGIVAVYLLAMGIFSHAPGWLLLVLWLVLAAVAAPLLLPDLRRRYFSAPMFDWFQKTLPPMSETERDAIDAGTVWWDGELFSGRPDWDMLLAYPKVKLTDEEQAFLDGPTEELCAMVSDWQIGQAMDLPPEAWAHIKEHGFFALIIPKEYGGKGFSAYAHSQVAMKLATRSGDLASTVMVPNSLGPAELLLHYGTDEQRNHYLPRLARGDDIPCFALTGPLAGSDAGAMPDTGIICKGEWQGQETIGLRLNWEKRYITLGPVATLLGLAFKAYDPEHLLGEEEDLGISLALIPTDTAGVNIGRRHLPLGAAFMNGPNWGKDVFIPLDCLIGGQAMLGKGWMMLMNCLSVGRSISLPAVGTGAAKFTSLVTGQYAQVREQFNVPLSAFEGIQEAMARIGGNAWLMDAARMLTANAVDLGEKPSVLSAILKYHLTERGRECISHAMDVHGGKGIIMGPNNYLGRSWQGAPIFITVEGANILSRNLMIFGQGAIRCHPFVLKEMALATREDKDQALVEFDELLLKHIGFAIGNAASTLVLNLGLGHFDNVPGNALSQGYFRALNRQAAAFALLADLSMMLLGGELKRRERLSARLGDVLSNLYLASAALKRYHDLDSPDHMGPLFRWAMEESLGQSERALDELLVNFPNRLLGGLLRVVVFPFGRRHKGPSDRLDAEVAAVIGRAKGDPTLEELLQGCYRPQSEEDPVGALQHAADLLAAAQPLHKKLHGAFKQGQLNPAPGEPIIDAALEAGVLQAGEAQTLRAAEAARRKVIDVDDFDKEELTLAEAKVRPGPT0021800_552DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0021800-fadE-K06445NANA
D1-35_02035624gstB_1COG0625Glutathione S-transferase GstBATGCTGAAGATCTGGGGTCGGAAGAATTCGTCGAACGTACGCAAGGCGCTGTGGTGTGCCGAAGAGCTGGGGCTGGCCTACGAGGCCATCGACGCGGGCGGCGCGTTTGGCGTGGTGGATACGCCCGAGTACCGCGCGAAGAATCCCAACGGCCGGGTTCCGATGATAGAAGACGACGGCTTCGTGCTCTGGGAATCCAATACCATCGTGCGTTACCTGGTGGCTCGCCATGCCTCAGGCTCGGCCTGGTATCCCGATGACATACAGGCCCGCGCCAGCGCTGAAAAATGGATGGACTGGACCACGTCCAGCTTTGCCGCTCCGTTTCGCACGGTGTTCTGGGGCGTGCTGCGCACCCCGGCCGAGCAGCAGGACTGGCCGGCCATCAATGCGGCAATCAAGGAGTGCGACCAGTTGCTGGCAATGGTGGAGCAAGCCCTCGGCGAACAGCCTTACCTCTGCGGTGAGGAAATCGGAATGGGCGACATTCCCTTGGGCAGTTTCATTTATGCCTGGTTCGAGATGCCCATCGAGCGCGCCGCATTGCCTCGGCTGGAGGCCTGGTATGCGCGGCTCCAGCAGCGTCCGGCTTATCGCAAGGCCGTCATGACCGCGTTGACTTAAMLKIWGRKNSSNVRKALWCAEELGLAYEAIDAGGAFGVVDTPEYRAKNPNGRVPMIEDDGFVLWESNTIVRYLVARHASGSAWYPDDIQARASAEKWMDWTTSSFAAPFRTVFWGVLRTPAEQQDWPAINAAIKECDQLLAMVEQALGEQPYLCGEEIGMGDIPLGSFIYAWFEMPIERAALPRLEAWYARLQQRPAYRKAVMTALTPGPT0013170_17671DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013170-gst-K00799NANA
D1-35_02036933yadGCOG1131putative ABC transporter ATP-binding protein YadGATGAGTTCCGCTCTGTCCATACGGCAGCTAACCAAAACCTACGGCAACGGTTTCCAGGCCCTGAGTGGTATCGATCTGGATGTCGCCGAAGGTGATTTTTTTGCCTTGCTGGGCCCCAACGGTGCCGGCAAATCCACCACCATCGGCATTCTTTCCACGCTGGTGAACAAATCCGGCGGGACGGTGAACGTCTTCGGCCATGACCTGGACCGCGAGCCCGCCGCGCTCAAGCGCTGCATCGGCGTGGTGCCCCAGGAATTCAACTTCAACCAGTTCGAAAAGACCTTCGACATCGTCGTGACCCAGGCCGGCTACTACGGCATCCCGCCGAAGATCGCCAACGAGCGCGCCGAGCAGTATCTGACCCAGCTTGGCTTGTGGGACAAGCGCGATGTGCCGTCCCGTTCGTTGTCCGGCGGCATGAAGCGACGCCTGATGATTGCCCGCGCGCTGGTGCATGAACCGCGCCTGCTGATCCTCGACGAACCCACCGCCGGCGTGGACATCGAGCTGCGTCGTTCGATGTGGACCTTCCTCACCGAGCTGAACCAGAAAGGCATCACCATCATCCTCACCACGCACTATCTGGAAGAGGCCGAGCAGCTGTGCCGCAACATCGGCATCATCGACCACGGCACCATCGTCGAGAACACCAGCATGCGGCAGTTGCTGAGTCAGCTGCATGTGGAAACCTTCCTGCTGGATCTCAAGCATGACCTGAGCGCCGCGCCGCAGCTGGTGGGTTATCCGGCTCGCCTGCTCGACGGCCATACCCTGGAAGTCCAGGTCGACAAGTCCGCTGGTATTACCGGGCTGTTCACCCAGCTGGCCGTGCAAAACATCGAAGTGCTGAGCCTGCGCAACAAGACCAATCGCCTTGAGGAGTTGTTCGTGTCCCTGGTGGAAAAAAACCTGGCGAAGGTGGCGGTATGAMSSALSIRQLTKTYGNGFQALSGIDLDVAEGDFFALLGPNGAGKSTTIGILSTLVNKSGGTVNVFGHDLDREPAALKRCIGVVPQEFNFNQFEKTFDIVVTQAGYYGIPPKIANERAEQYLTQLGLWDKRDVPSRSLSGGMKRRLMIARALVHEPRLLILDEPTAGVDIELRRSMWTFLTELNQKGITIILTTHYLEEAEQLCRNIGIIDHGTIVENTSMRQLLSQLHVETFLLDLKHDLSAAPQLVGYPARLLDGHTLEVQVDKSAGITGLFTQLAVQNIEVLSLRNKTNRLEELFVSLVEKNLAKVAVPGPT0006725_8790DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
D1-35_02037786yadHCOG0842Inner membrane transport permease YadHATGAGTATGAGTTCGGAACTGCGCCCCAACCTCATCGCCCTCAATACCATTGTCTATCGTGAAGTCCGGCGCTTCATGCGGATCTGGCCGCAGACCTTGCTGCCCCCGGCGATCACCATGGTCCTGTACTTCGTGATTTTCGGTAACCTGATCGGCCGGCAGATCGGCGACATGGGCGGCTTCACGTACATGGACTACATTGTGCCGGGGCTGATCATGATGTCGGTGATCACCAACTCCTACGGCAACGTGGTATCGAGTTTCTTCGGCAGCAAGTTCCAGCGCTCCATCGAAGAGCTGATGGTTTCGCCGGTTTCACCCCATACGATCCTGATCGGCTTCACCCTGGGCGGCGTGCTGCGCGGGCTGGCGGTCGGCCTGATCGTGACGCTGCTGTCGCTGTTCTTCACCGATCTGCAGGTGCATCACCTGGGGGTGACGATCCTGGTGGTGGTCCTGACGGCGACGATCTTTTCGCTGCTGGGCTTCATCAACGCGGTGTTCGCGCGAAACTTCGATGACATCTCCATTATCCCGACGTTCGTGCTCACGCCGCTGACGTATCTGGGCGGGGTGTTCTACTCGATTTCCCTGCTGCCACCGTTCTGGCAGACCGTATCGCTGGCCAACCCGGTGCTGCATATGGTCAATGCTTTCCGCTACGGGATCCTTGGCGTTTCGGACATTCGCATCAGTATTGCAATTACCTTCATGCTAGTGGCGACCGTGGTGCTTTATGTGAGCTGTGCGCGGTTGCTGGTGAGTGGGCGAGGGATGCGTACCTGAMSMSSELRPNLIALNTIVYREVRRFMRIWPQTLLPPAITMVLYFVIFGNLIGRQIGDMGGFTYMDYIVPGLIMMSVITNSYGNVVSSFFGSKFQRSIEELMVSPVSPHTILIGFTLGGVLRGLAVGLIVTLLSLFFTDLQVHHLGVTILVVVLTATIFSLLGFINAVFARNFDDISIIPTFVLTPLTYLGGVFYSISLLPPFWQTVSLANPVLHMVNAFRYGILGVSDIRISIAITFMLVATVVLYVSCARLLVSGRGMRTPGPT0006730_16348DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
D1-35_02038531hypothetical proteinATGCCCCGGCGATTATTCAAACGTTACATGCCTGACCCCGCGAGCATTCGGGAACATAAATCCTTACGCTTTCTCGGCACCCTGCTGCACGATCCCAACCTCTGGCACCTCAATCGTCATTCGGTGGCGCGGGCGATGGCCGTTGGCCTGTTCGCCGCTTTTCTGCCGATACCGCTGCAAATGCTCCTGGCCGCCGCGCTGGCCGTCACGGTTCGCGGCAACATCCCGATCGCGGTAAGCCTGGTCTGGCTGACCAACCCCATCACCATGCCCGCGGTATTCTTCTGCACCTATCAGACCGGCGCCTGGCTGATGGACGTTCCAGCCCGGACGCTGCCCGACGAATTGACCTGGGAGTGGATCACCAACCAGCTGTCAACGTTGTGGCAGCCGTTTTTGCTGGGGTCGGTGGTCACTGGGTTGGTGCTTGGAGTCTTGGCTTATTTCGTCACCATGGCGTATTGGCGATGGTGGGTTGCCAGGCAGTGGCGGCGGCGCAAGCGCAGCCGGATGAGAGAAAAACTGGACTGAMPRRLFKRYMPDPASIREHKSLRFLGTLLHDPNLWHLNRHSVARAMAVGLFAAFLPIPLQMLLAAALAVTVRGNIPIAVSLVWLTNPITMPAVFFCTYQTGAWLMDVPARTLPDELTWEWITNQLSTLWQPFLLGSVVTGLVLGVLAYFVTMAYWRWWVARQWRRRKRSRMREKLDNANANANANA
D1-35_020392247comECCOG0658ComE operon protein 3ATGCGCACGGCAATGGTCGCGCTTGCACTGGGGCTGCTGGCCCCGGTTTTTCTACCGGTACTGCCGTCGCCATGGCTGATCGCAGCCATGGCGACGCTGGCGTTGATGGTACTGCCGTTTCGTCTGTACCCGGCGGGTTGCTTCCTCTTCGGGCTGGTCTGGGCGAGCCTCGCCGCACACCATGCACTGGACGGACGGTTGCCCTTCGCACTGGACGGCGAGACGCGCTGGGTCGAAGGGCGGGTCGTCGGTTTGCCGCAACACGGCGATGGAACGGTGCGTTTCGAGTTGGCCGATATCCAGTCAAGGCGCACGCGCTTGCCAACCTCGATGCGCCTGGCCTGGTATGGCGGGCCGCCGGTCAGCAGCGGTGAGAAATGGCGCCTGGCGGTAAAGCTCAAGCGACCCGCGGGGCTGCTCAATCCCCATGGCTTCGACTATGAGGCGTGGCTGTTGAGCCGCGGCATTGGCGCGACCGGCAGCGTCAAGCAAGGGCGACGCCTGCAACCGGCCCAGGGCGCCTGGCGCGACGGGGTGCGCCAGGCATTGGCGAAAGTCGATGCCCAAGGGCGTTCCGGGGCGCTGATGGCATTGGTCCTTGGCGATGGCTCCGGGTTGAGTCGCGAAGATTGGCAGGTGCTGCAAGACACCGGCACGATCCATCTGCTGGTCATTTCCGGGCAGCACATCGGCCTGTTCGCCGGCCTCGTATACCTGCTGGTCGCCGGCGCGGCGCGTCATGGTGTCTGGCCGGCGTGGTTGCCATGGCTGCCTTGGGCGTGCGTGCTGGCGTTCACCGCGGCGCTGGGTTACGGCCTGCTCGCCGGTTTCGAAGTGCCGGTGCGGCGGGCCTGTGTGATGATCGGACTGGTGCTGCTGTGGCGCTTGCGCTTTCGCCAGGCCGATCCTTGGAAAGCCTGGCTGTTGGCGCTCCTGGCAGTGCTGCTGCTCAATCCGCTGGCGAGTCTGCGGCCGGGGTTCTGGTTGTCGTTCGCCGCGGTGGCCGTTCTGATGTTTACCTTCTGCGGTCGCCTGGGCCCCTGGCGTTGGTGGCAGACCTGGACCCGCGCCCAGTGGTTGATTGCTCTCGGGTTGTGCCCGCTACTCTTGATCCTCGGGCTGCCGGTCAGCCTCAGCGGTCCGTTGGCCAATCTGCTGGCGGTGCCCTGGGTCAGTCTGCTGGTGTTGCCTTCGGCCTTGCTTGGCACCGCGTTGCTACCGATACCTTACATAGGCGAGAGCCTTCTCTGGATTGCCGGCGGCTTGCTCGATCTGCTGTTCAAGGCGCTCGCGCTGGCAGCCGGGCAGATGCCAGCCTGGGTGCCTCCCGCGGTGCCGCTGTGGGCCTGGTGCGTGGCGGCGCTCGGCACTGCGCTGCTGTTGCTGCCCAAGGGCGTACCGCTGCGGATCCTGGGTTGGCCGATGCTGATGCTGATGGTTTTTCCCCCACGGGAAGAAGTACCCCACGGGCAAGCCGAAATCTGGCAACTGGACGTCGGCCAGGGGCTGGCGATCCTCGTGCGCACCCAGCGGCACGTCTTGCTTTATGACGCGGGGCCGCGTTTTGGCGACGCCGATGCGGGCGAGCGCGTGGTGGTGCCGACCTTGCACAGGCTCGGTGTGCATGCCTTGGACATGCTGCTGCTCAGTCACGCCGATGCCGATCACGCCGGCGGTGCACAAGCCGTACGCAACGGATTGCCGACCCGTCGGGTGGTCAGCGGCGATCCCGAGGCGCTGCCCGTCGATCTGCAGGCAGGGGCGTGCGATAGCGGCGAACGCTGGGAATGGGACGGGGTGAGGTTCGAACTGTGGCGCTGGGCATCGGCTGTCGAGAGCAACCAGAAATCCTGTGTCTTGCTGGTCGAGGCCGGTGGCGAGCGGTTGCTGCTGACCGGAGATATCGATACCCATGCCGAACGGGCCTTGCTCGACAGTCCCCTGGCGATGCCGACCCAGTGGCTGGCAGCGCCGCACCATGGCAGCCGCAGCTCATCGTCGATGGCGCTGCTGGCGCGCCTCGAGCCCCATTCGGTATTGATTTCCCGGGGGCGCAACAATGCGTTCGGCCATCCCCATCCGTGGGTGATGGAGCGTTATCGACGCTTGGGCATGGTGATCTACGACAGTGCTGAACAAGGTGCCATTCGTCTGCAACTCGGCGCCTTTACACCTGCGCTTGGCCAGGCGGGCATTCGCCGTTACTGGCGTGATCCGCCGCCCGCCGGGCCAGCGTCGGAGCATTGAMRTAMVALALGLLAPVFLPVLPSPWLIAAMATLALMVLPFRLYPAGCFLFGLVWASLAAHHALDGRLPFALDGETRWVEGRVVGLPQHGDGTVRFELADIQSRRTRLPTSMRLAWYGGPPVSSGEKWRLAVKLKRPAGLLNPHGFDYEAWLLSRGIGATGSVKQGRRLQPAQGAWRDGVRQALAKVDAQGRSGALMALVLGDGSGLSREDWQVLQDTGTIHLLVISGQHIGLFAGLVYLLVAGAARHGVWPAWLPWLPWACVLAFTAALGYGLLAGFEVPVRRACVMIGLVLLWRLRFRQADPWKAWLLALLAVLLLNPLASLRPGFWLSFAAVAVLMFTFCGRLGPWRWWQTWTRAQWLIALGLCPLLLILGLPVSLSGPLANLLAVPWVSLLVLPSALLGTALLPIPYIGESLLWIAGGLLDLLFKALALAAGQMPAWVPPAVPLWAWCVAALGTALLLLPKGVPLRILGWPMLMLMVFPPREEVPHGQAEIWQLDVGQGLAILVRTQRHVLLYDAGPRFGDADAGERVVVPTLHRLGVHALDMLLLSHADADHAGGAQAVRNGLPTRRVVSGDPEALPVDLQAGACDSGERWEWDGVRFELWRWASAVESNQKSCVLLVEAGGERLLLTGDIDTHAERALLDSPLAMPTQWLAAPHHGSRSSSSMALLARLEPHSVLISRGRNNAFGHPHPWVMERYRRLGMVIYDSAEQGAIRLQLGAFTPALGQAGIRRYWRDPPPAGPASEHPGPT0029415_2388DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-COMPETENCE-RELATED_DNA_TRANSFORMATION_TRANSPORT,PGPT0029415-comEC-K02238NANA
D1-35_02040636tolQ_2COG0811Tol-Pal system protein TolQGTGTGGGAATTGGTCAAATCCGGCGGCTGGATGATGTTGCCGATCATTCTGAGTTCCATCGCGGCACTGGGTATCGTTGCCGAACGCCTGTGGACCCTGCGGGCCAGCCGCGTGACCCCGGAGCATCTGCTCGGGCAGGTCTGGGTCTGGATCAAGGACAAGCAGCTGAACAAGGACAAGCTCAAGGAACTGCGAGCCAGCTCGCCGCTGGGGGAGATCCTCGCGGCAGGCCTGGCGAATTCCAAGCATGGTCGCGAGATCATGAAGGAGTGCATCGAGGAGGCCGCCGCGCGCGTCATCCATGACCTGGAACGCTACATCAATGCCCTTGGGACCATCGCGGCCATGTCGCCATTGCTGGGCCTGTTGGGCACGGTCCTGGGCATGATCGACATTTTCAGCGCGTTCACCGGTTCCGGCATGACGACCAATGCCGCCGTGCTGGCGGGCGGTATTTCCAAGGCACTGATCACCACCGCCGCGGGCCTGATGGTGGGTATTCCGGCGGTGTTCTTCCATCGCTTCCTGCAACGCCGCGTCGACGAGCTGGTGGTGGGCATGGAGCAGGAAGCCATCAAGCTGGTCGAGGTGGTGCAGGGCGACCGTGACGTGGACCTGGCCGGGGGCAAGAAGTGAMWELVKSGGWMMLPIILSSIAALGIVAERLWTLRASRVTPEHLLGQVWVWIKDKQLNKDKLKELRASSPLGEILAAGLANSKHGREIMKECIEEAAARVIHDLERYINALGTIAAMSPLLGLLGTVLGMIDIFSAFTGSGMTTNAAVLAGGISKALITTAAGLMVGIPAVFFHRFLQRRVDELVVGMEQEAIKLVEVVQGDRDVDLAGGKKPGPT0003750_3961DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003750-exbB-K03561NANA
D1-35_02041429tolRTol-Pal system protein TolRGTGAAATTCCGCCGCAAACCACGGGAAAATATCGAGATCAACCTGGCGTCGCTGATCGACGTGGTGTTCATCCTGCTGCTTTTTTTCGTCGTGACCACCACCTTCACCCGGGAAACCCAGTTGAAGGTTGAGCTGCCGCAAGCGGTGAGTGGCTCGCCGGCCGAGGACCAGCAGTTGAAAAACCTGGAAGTCACCATCAGCGCCGAGGGCGCGTTCTCGGTGAACAACCAGTTGCTGCCCAAGAGCGACCTGGCGAGCCTGATCGAGGCGCTGCAGAGGGAGTCCGGCGGTGATACCAACCTGCCGCTGGCCATCAGCGCCGACGGCAAGACGCCTCACCAATCGGTCATCACCGCCATGGACGCGGCCGGCAAGCTCGGCTTCAGCCACCTGCGCATGACCACGATCGAGGCGGCGCCGGCACCTTGAMKFRRKPRENIEINLASLIDVVFILLLFFVVTTTFTRETQLKVELPQAVSGSPAEDQQLKNLEVTISAEGAFSVNNQLLPKSDLASLIEALQRESGGDTNLPLAISADGKTPHQSVITAMDAAGKLGFSHLRMTTIEAAPAPPGPT0003755_1583DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003755-exbD-K03559NANA
D1-35_020421011lpxKCOG1663Tetraacyldisaccharide 4'-kinaseATGGCCATGTCCGATCGATTGCTTGCCGCGTGGTACAAGGGGCATCCCGCCCTGGTGCTGCTGCGCCCGCTTGAATGGCTGTACCGACGCGTAGTGATCGGCAAGCGCGAGCGCTTCCTGGCGGGCGAGGGCGAGATCTACCAGCCGCCGGTGCCGCTGATTGTGGTGGGTAACATTACCGTCGGCGGCACCGGCAAGACGCCGTTGATCCTCTGGATGATCGAGCATTGCCAGCGCAGTGGCCTGCGGGTCGGCGTGGTCAGCCGGGGTTACGGCGCCAGGCCGCCGCAATTGCCATGGCGAGTCGAGGCCGAGCAGGGCGCCGACGTCGCGGGCGACGAACCGCTGCTCATCGTCCAGCGCAGCGGCGTGCCGTTGATGATCGATCCTGATCGCAGCCGCGCTGTCCGGGCGCTGCTGGACGCCGAGCCGCTGGACCTGATCCTGTCCGACGACGGTATGCAGCATTACCGCCTGGCCCGTGACCTCGAACTGGTATTGATCGACAGCGCCCGTGGCCTGGGCAACTGCCGTTGCCTGCCGGCCGGCCCGTTGCGCGAGCCGGTGGAGCGCCTGCGCTCGGTCGACGCCGTGCTGTTCAACGGCGCCAGCGCTGATCGCGAGGACGGCTTCGCGTTCGAGTTGCGGCCCACCGCGCTGATCAACCTGGCCAGCGGCGAGCGGCGCCCCCTCGACCATTTTCCTCCCGGCCAGACCCTGCATGCCGTGGCCGGCATCGGCAATCCCCAGCGTTTCTTCAAGACCCTCGAAACGCTACACTGGCGGCCTGTACCGCACGGGTTTGCCGATCATGCCGAATACAGTGCCCAGGCCTTCGATTTCGAACCGTCATTTCCAGTGGTCATGACGGAAAAGGACGCGGTCAAATGCCGTGCCTTCGCCGCGCCCGACTGGTGGTACCTGGCGGTTGACGCAGCGCCTTCGCCAGCCTTCGCGGCCTGGTTCGATACGCAGCTGATGCGCCTGTTGCCGGATCGGCTCTTGCCTTAAMAMSDRLLAAWYKGHPALVLLRPLEWLYRRVVIGKRERFLAGEGEIYQPPVPLIVVGNITVGGTGKTPLILWMIEHCQRSGLRVGVVSRGYGARPPQLPWRVEAEQGADVAGDEPLLIVQRSGVPLMIDPDRSRAVRALLDAEPLDLILSDDGMQHYRLARDLELVLIDSARGLGNCRCLPAGPLREPVERLRSVDAVLFNGASADREDGFAFELRPTALINLASGERRPLDHFPPGQTLHAVAGIGNPQRFFKTLETLHWRPVPHGFADHAEYSAQAFDFEPSFPVVMTEKDAVKCRAFAAPDWWYLAVDAAPSPAFAAWFDTQLMRLLPDRLLPPGPT0022380_1521DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LIPID_A_METABOLISM,PGPT0022380-lpxK-K00912NANA
D1-35_02043186hypothetical proteinATGGACACCAAACTGCTCGATATCCTGGCTTGCCCGGTCTGCAAAGGCCCGCTCAAGCTCAGTGCCGACAAGACCGAGCTGATCAGCAAGGGCGCCGGCCTGGCCTATCCGATTCGCGACGGCATCCCGGTGATGCTCGAAAGCGAAGCCCGTACCCTGACCACCGACGAGCGCCTGGATAAATGAMDTKLLDILACPVCKGPLKLSADKTELISKGAGLAYPIRDGIPVMLESEARTLTTDERLDKPGPT0022380_102DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LIPID_A_METABOLISM,PGPT0022380-lpxK-K00912NANA
D1-35_02044765kdsBCOG12123-deoxy-manno-octulosonate cytidylyltransferaseATGAATACAGCGTTTACTGTTGTCATTCCGTCGCGCTTTGCCTCCACGCGCTTGCCCGGTAAACCGTTGCTGCTGATCGCCGGCAAGCCGATGATCCAGCATGTCTGGGAGCAGGCTTGCAAGAGCAGCGCCCAGCGTGTGGTGGTGGCAACGGACGACGCGCGCATCGTGGAGGCCTGCCAGGGCTTTGGCGCCGAAGTGGTGATGACCCGCGAGGATCACAACTCCGGTACTGACCGCCTGGCGGAAGTGGCTGGGAAACTCGGTCTGGCGCCCGACGCCATCGTCGTCAACGTGCAGGGTGACGAGCCGCTGATCCCGCCGAGCGTAATTGATCAGGTCGCCGCGAACCTGGCGGCGCACCCAGAGGCGCGCATGTCCACCCTGGCCGAGCCGATCGAGGACGTGCAGACCCTGTTCAATCCCAACGTGGTCAAGGTGGTCAGCGACCTCAACGGCCTGGCACTGACGTTCAGTCGTGCCAGCTTGCCTTGGGCCCGAGAGGCATTCGCTCAGGACCGCGACGTGCTGCCCGACGGCGTGCCGTACCGTCGCCATATCGGCATCTATGCCTACCGCGCCGGTTTCCTTCAGGACTTCGTCGCTTGGGGCCCGTGCTGGCTGGAAAACACCGAAGCCCTCGAGCAACTTCGAGCGTTGTGGCATGGCGTGCGGATCCATGTCGCCGATGCGCTGGTCGCGCCGCCGACCGGTGTAGACACTGCCGAAGACCTCGAGCGCGTTCGTCGCCTGCTGGAGGCTTGAMNTAFTVVIPSRFASTRLPGKPLLLIAGKPMIQHVWEQACKSSAQRVVVATDDARIVEACQGFGAEVVMTREDHNSGTDRLAEVAGKLGLAPDAIVVNVQGDEPLIPPSVIDQVAANLAAHPEARMSTLAEPIEDVQTLFNPNVVKVVSDLNGLALTFSRASLPWAREAFAQDRDVLPDGVPYRRHIGIYAYRAGFLQDFVAWGPCWLENTEALEQLRALWHGVRIHVADALVAPPTGVDTAEDLERVRRLLEAPGPT0023065_1177DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-8-AMINO-3|8-DIDEOXY_D_MANNO-OCTULOSONIC_ACID_MODIFICATION,PGPT0023065-kdsB-K00979NANA
D1-35_02045465Putative low molecular weight protein-tyrosine-phosphataseATGCGGGTTCTGTTCGTCTGCCTTGGCAACATTTGCCGGTCGCCCACCGCCGAAGGCATCTTGCGCCATAAGCTGCGCGAAGCCGGGCTGGAGGGGCAAGTGGAAGTCGCCTCTGCCGGTACCGGTGACTGGCACGTCGGCAAGGCCCCGGATAAACGCAGCATGGCCGCGGCCCTGCGACGTGGCTACGATCTGTCGGCCCAGCGGGCCCGGCAAGTCACCCGCGCCGATTTCGCCGCCTATGACCTGATCCTGGCGATGGACAGCAATAACCTGCGCAACCTCAAGGCACTGCAACCGGCCAGTGGCAAGGCCGAGCTCGATCTGTTCCTGCGTCGCTACGAGGCTGAGCTCGATGATGTCCCAGATCCGTACTACGACGGCGAACAGGGTTTCGAGCAGGTGCTCGACCTGATCGAACAGGCCACGGATCGTCTGGTCATCGAAGTGAAGGGGCGGTTATGAMRVLFVCLGNICRSPTAEGILRHKLREAGLEGQVEVASAGTGDWHVGKAPDKRSMAAALRRGYDLSAQRARQVTRADFAAYDLILAMDSNNLRNLKALQPASGKAELDLFLRRYEAELDDVPDPYYDGEQGFEQVLDLIEQATDRLVIEVKGRLPGPT0014530_6245DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-WZA-WZC-WZB-WEC_METABOLISMCE-EPS-EPS-WZA-WZC-WZB-WEC_SYSTEM,PGPT0014530-yfkJ|wzb-K01104NANA
D1-35_020461020murBCOG0812UDP-N-acetylenolpyruvoylglucosamine reductaseATGACCTTGCATGTCCAGGCCGGTGTCAGCCTCAAGCCGTTCAACAGCTTTGGCGTGGACGTCGCCGCACGGTTGTTCGCCGAGGCCCACAGCGATGCCGATGTCCGCGAGGCGCTGGTCTATGCCGCCGGGCATGATCTGCCGTTGCTGCTGATCGGCGGCGGCAGCAACCTGCTATTGACCGACGACATCGACGCGCTGGTGTTGCGCATGGCCAGTCGGGGGATCCGCCTGCTCAGCGACGACGGCGAACGCGTGGTGATCGAGGCCGAGGCCGGGGAGCCCTGGCATCCTTTTGTCCAGCACACGCTGGCGCAAGGTTGGTCGGGGCTGGAGAACCTCAGCCTGATTCCCGGTACGGTAGGGGCGGCACCGATGCAGAATATCGGTGCCTACGGCGTCGAGATAAAGGATGTCTTCGCCGGCCTTACCGCGCTGGATCGCCATAACGGCGAGTTGCGCGACTTCACTCTTGAAGAATGCGCCTTCGCCTACCGCGACAGCCTGTTCAAGCAGCAGGCGGGACGCTGGCTGATCCTGCGGGTACGTTTTGCCCTCAGTCGTGTCGCGCATCTGCACCTGGAATACGGCCCGGTCCGCCAGCGCCTGAGCGAGCAAGGCATCGATCAGGCAACGCCTTCGGACGTCAGCCGGGCGATTTGCAGCATTCGCAGCGAAAAGCTTCCGGACCCCGCCGTACTCGGCAACGCCGGCAGCTTCTTCAAGAACCCCTTGGTGCCGGTCAGTCATGTGGCGCATCTCAAGCTGCAATACCCTGACCTGGTGGCTTATCCACAGCCTGGAGGGCAGATGAAAATCGCGGCCGGCTGGCTGATCGAACGGGCCGGCTGGAAGGGCTTTCGCGAGGGCGACGCTGGCGTGCACAAGTTGCAGGCACTGGTGCTGGTCAATTATGGCAACGCCACGGGCCTGCAATTGCTGGACCTGGCTCAACGGATCCAGAAGGACATTGCCGAACGTTTCCAGGTCGATCTGGAGATGGAGCCGAATCGGTACTGAMTLHVQAGVSLKPFNSFGVDVAARLFAEAHSDADVREALVYAAGHDLPLLLIGGGSNLLLTDDIDALVLRMASRGIRLLSDDGERVVIEAEAGEPWHPFVQHTLAQGWSGLENLSLIPGTVGAAPMQNIGAYGVEIKDVFAGLTALDRHNGELRDFTLEECAFAYRDSLFKQQAGRWLILRVRFALSRVAHLHLEYGPVRQRLSEQGIDQATPSDVSRAICSIRSEKLPDPAVLGNAGSFFKNPLVPVSHVAHLKLQYPDLVAYPQPGGQMKIAAGWLIERAGWKGFREGDAGVHKLQALVLVNYGNATGLQLLDLAQRIQKDIAERFQVDLEMEPNRYPGPT0024115_1927DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024115-murB-K00075NANA
D1-35_02047471iorA_1Isoquinoline 1-oxidoreductase subunit alphaATGATTACCCTGAAACTCAATGGAACAGATCATCAACTGGATGTCACCGAGGACATGCCGCTGCTGTGGGCAATCCGCGATGTGGCCGGTTACAACGGCACCAAGTTCGGCTGCGGCATGGGCCTGTGCGGCGCGTGCACGATCCACATCGATGGCGCCCCGGCGCGCAGTTGCATCACGCCGATCGGCTCGGTGAAGGGCCAGAACATCAGCACCATCGACGCGCTTCACGTCGACCCGGTCGGCCAGGTGGTACAGAAGGCCTGGCTGGACACCGCCGTGGCCCAGTGTGGTTTTTGCCAGGGCGGGCAGATCATGTCCGCCACGGCATTGCTCAAGACCAACCCCAACCCGACGGATGAACAGATCGAAGAGGCCATGGTCGGCAACCTCTGCCGCTGCGGCACCTACAACCGGATCAAGACCGCGATCCGTCAGGCCTCCACTCACCTGAAGGAGGCCAAGGCATGAMITLKLNGTDHQLDVTEDMPLLWAIRDVAGYNGTKFGCGMGLCGACTIHIDGAPARSCITPIGSVKGQNISTIDALHVDPVGQVVQKAWLDTAVAQCGFCQGGQIMSATALLKTNPNPTDEQIEEAMVGNLCRCGTYNRIKTAIRQASTHLKEAKAPGPT0009812_697DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-QUINOLINE_RESISTANCE,PGPT0009812-iorA-K07302NANA
D1-35_020482316iorB_1Isoquinoline 1-oxidoreductase subunit betaATGAGCCGCTTGCCGAATGATTTTGTGCTGAGCAACCTCAGTCGTCGGGGTTTCCTCAGGGGCGCCAGCGCCACGGGCGTGCTGGTGCTGGCCGCCAGTTGGGGGCTGCCGGAGGCCTTTGCCGAAGAGAAGAAATTCGGCGCCGAGGGCATGCCCCATGGTGCGGTCGACGACCCCAAGGTCTACGTGAGCATTGCCGCCGACGGCAGCGTCACGGTGATCTGCAACCGTTCGGAAATGGGCCAGGGGGTGCGCACCAGCCTGAGCATGGTGGTGGCCGACGAACTCGACGCCGACTGGGCGCTCGTCAAGGTCAGGCAGGCGCCGGCTGATGAGGCGCGCTTCGGCAACCAGGACACCGACGGCTCGCGCAGCATGCGTCACTGGTACGAGCCGATGCGCCGCTGCGGTGCCGCCGCCCGAACCATGCTTGAATCGGCCGCCGCTGCCCAGTGGAAAGTGCCGGTGGGCGAATGCCGTGCGCAACTGCATAAAGTGGTGCATCAGCCTTCGGGGCGCGAACTGGGTTATGGCGAGTTGGCCGCCGCCGCGGCGGCCTTGCCGGTTCCGGCCCGCGACAGCCTGCGCCTCAAGCAGCCGTCGGAGTTTCGTTACATTGGCAAGGAAGCGAGCCGTGCCATCGATGGCGCGGACATTGTCAACGGCCGAGCGGTATTCGGTGCCGATGTGCATTTCGACGGCATGCTTTACGCCGTCATGGCCCGCCCACGGGTCTACGGTGGCAAGGTCAAGAGCGTGGACAGCAGCGCGGCGTTGAAGGTGCCGGGCGTGATCAAGGTGGTGCAGATCGAAGGACGCCCTTTGCCCTCCGAATTCCAGCCGCTGGGCGGCGTGGCGGTGGTAGCGAAAAACACCTGGGCGGCGATCAAGGGCCGCGAAGCGTTGAAAATCGAATGGGACGATGGCCCGAACGCCGGCTATGACTCCATCGCCTACCGCAAGGAACTGCAAGCGGCTGCTCTGAAACCGGGCAAAGTCCTGCATAGCACTGGCGATCTTGACGACGCACTGGCCAAAGCCGATTCGACGTTGGAGGCTGCCTACTACCTGCCGCACCTGTCCCAGTCACCGATGGAGCCGATGGTCGCGGTCGCCCGCTTCAAGGACGGTCAATGCGAAGCCTGGGCACCGAGCCAGGCACCCCAGGTCACCCGCGAGCGCGTCGCCGAACGCCTGGGCATCCCTTTCGACAAAGTCACGATAAACATCACGTTGCTGGGCGGCGGTTTCGGACGCAAGTCCAAACCCGATTTCGTCGTCGAGGCGGCGGTGCTCGCCAAGGAATTCCCCAGCCAGGCGGTTCGGGTGCAATGGACCCGCGAGGACGATATTCATCACTCGTATTTCCATACCGTATCGGCCGAATACCTGAAGGCCGGCCTGAACAAGGACGGGCTGCCCTCCGCTTGGCTGCATCGCACCGTGGCCCCGACCATCACCGCGCTGTTCGCGCCGGGCATGACCCACGAAGCGCCGTTCGAAGTGGGCATGGGCGTGACCAACATGGCCTATGCCATTCCCAACCTGCGCCTGGAGAACCCCGAGGCGGTGGCCCATACCCGGGTTGGCTGGTACCGCTCGGTGTCGAACATTCCCCATGGTTTTGCGATCCAGAGCTTCATCGACGAACTGGCCCACAAGGCCGGCCAGGACCCGCTCAAGTACCATCTGAAGTTGCTGGGCCCGGACCGCAGGATCAACCCCAACAGCCAGAATGACAGCTGGAACTACGGCGAATCGCCCGAGCGTTATCCCATCGATACGGCGCGGATCCGCACCGTGCTGGAGACTGCCGCGAAGGCCGCTGGCTGGGGCCGTGAATTGCCCAAGGGCCGGGGCTTGGGGCTGGCGGTGCACTACAGCTTCGTCACCTATGTGGCCGCGGCAATTGAAGTCGAGGTCAAGGATGACGGCACGATAATCGTGCACAAGGCGGACATTGCCGTGGACTGTGGGCCGCAGATCAATCCCGAGCGTATCCGCTCGCAGTTCGAAGGCGCCTGCGTGATGGGCCTGGGCAACGCGATGGTCGGGGAGATCAGCTTCAAGGACGGCAAGGTCCAGCAGGACAATTTCCACATGTATGAAGTGGCGCGCATGTCCCTGGCACCCAAGGAAGTAGCCGTGCACCTGGTCACTCCGCCGGGCGAAGTGCCGCTGGGGGGCGTTGGTGAACCGGGCGTGCCGCCGATCGCGCCGGCATTGTGCAACGCAATCTTCGCCGCCACCGGCAAGCGCATCCGTGATCTGCCTGTGCGTTACCAGTTGCAAGGCTGGCAGCAGGCCAAAGCCTGAMSRLPNDFVLSNLSRRGFLRGASATGVLVLAASWGLPEAFAEEKKFGAEGMPHGAVDDPKVYVSIAADGSVTVICNRSEMGQGVRTSLSMVVADELDADWALVKVRQAPADEARFGNQDTDGSRSMRHWYEPMRRCGAAARTMLESAAAAQWKVPVGECRAQLHKVVHQPSGRELGYGELAAAAAALPVPARDSLRLKQPSEFRYIGKEASRAIDGADIVNGRAVFGADVHFDGMLYAVMARPRVYGGKVKSVDSSAALKVPGVIKVVQIEGRPLPSEFQPLGGVAVVAKNTWAAIKGREALKIEWDDGPNAGYDSIAYRKELQAAALKPGKVLHSTGDLDDALAKADSTLEAAYYLPHLSQSPMEPMVAVARFKDGQCEAWAPSQAPQVTRERVAERLGIPFDKVTINITLLGGGFGRKSKPDFVVEAAVLAKEFPSQAVRVQWTREDDIHHSYFHTVSAEYLKAGLNKDGLPSAWLHRTVAPTITALFAPGMTHEAPFEVGMGVTNMAYAIPNLRLENPEAVAHTRVGWYRSVSNIPHGFAIQSFIDELAHKAGQDPLKYHLKLLGPDRRINPNSQNDSWNYGESPERYPIDTARIRTVLETAAKAAGWGRELPKGRGLGLAVHYSFVTYVAAAIEVEVKDDGTIIVHKADIAVDCGPQINPERIRSQFEGACVMGLGNAMVGEISFKDGKVQQDNFHMYEVARMSLAPKEVAVHLVTPPGEVPLGGVGEPGVPPIAPALCNAIFAATGKRIRDLPVRYQLQGWQQAKAPGPT0009811_234DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-QUINOLINE_RESISTANCE,PGPT0009811-iorB-K07303NANA
D1-35_02049972paoDCOG1975Molybdenum cofactor insertion chaperone PaoDATGGACAGCGTTGATCTGAACGTGCTGCGCAGCGTGCTGGAATGGCGTCGCGCCGGGCAGCGGGTGGTGCTGTTCACCGTGGTCCAGACCTGGGGCACCGCGCCGAGACCTCCGGGGGCTATGCTGGCCCTGCGCGAAGACGGCGTGGTGATCGGTTCGGTATCGGGCGGTTGTGTCGAGGATGACCTGATCGCCCGGCTGCACGACGGCCGGATTCCGGCGGATGGCCCGCCCGTGCAGCTCATCACCTACGGTGTCACCCGTGAGGAAGCGGCGCGTTTCGGCTTGCCGTGCGGCGGCACCTTGCGCCTGACGGAGGAGCGAGTCGGCGATCCAGGCTGGGTCGCCGAGTTGCTGGCGCGGTGCGAGGCCCACGAAATAGTTGCCCGGGAATTGACCATCGCGACCGGCGCTGTGCTGCTGACACCAGCGAGCAAAAGCGATGCCTTGGTGTTCGATGGCGAAACTCTGCGGGCGATTTATGGCCCGCGCTGGCGGCTGTTGCTGATCGGCGCCGGACAGCTGTCGCGTTACGTGGCGGAAATGGCCCGGTTGCTGGATTTCGAGGTGTTGATCTGCGACCCGCGCAAGGAATTCGTCTACGGTTGGGAAGAGCAGCATGGCTGCTTTGTTCCGGGCATGCCCGACGAGGCGGTGCTGAGCATCGAGACCGATGAGCGCACCGCGATTGTTGCCCTAACCCATGACCCGCGCCTGGACGACATGGCCTTGCTCACCGCCCTGGATTCCAGGGCTTTTTATGTGGGCGCCCTCGGCTCACGGGTCAACAGCCAGAAGCGCCGGGACAACCTCGCTCAGCTAGGCTTGTCAGCACAAGCCATCGAGCGGCTGCACGGCCCTATCGGCCTGCATATCGGCAGTCACACCCCGGCGGAAATCGCCCTGTCGCTGCTGGCGGAAATCGTCGCGATCAAGAATGGCGTCGAATTGCGCCAAAAGAAACCGCTGTAGMDSVDLNVLRSVLEWRRAGQRVVLFTVVQTWGTAPRPPGAMLALREDGVVIGSVSGGCVEDDLIARLHDGRIPADGPPVQLITYGVTREEAARFGLPCGGTLRLTEERVGDPGWVAELLARCEAHEIVARELTIATGAVLLTPASKSDALVFDGETLRAIYGPRWRLLLIGAGQLSRYVAEMARLLDFEVLICDPRKEFVYGWEEQHGCFVPGMPDEAVLSIETDERTAIVALTHDPRLDDMALLTALDSRAFYVGALGSRVNSQKRRDNLAQLGLSAQAIERLHGPIGLHIGSHTPAEIALSLLAEIVAIKNGVELRQKKPLPGPT0007280_2321DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-XANTHINE_METABOLISMPHYTOHORMONE-XANTHINE_BIOSYNTHESIS,PGPT0007280-xdhC|paod|ygeB|pucA-K07402NANA
D1-35_02050591glmU_1Bifunctional protein GlmUATGTCTGAGTCCATTGGCGTGATCATCCTCGCGGCTGGCTCGGGCCGCCGTTTCCGCCAGGTCGCCGGGCCTGACAAGGACAAGCTGCTGACTGATTGCATAGGACGTGACGGCGCGGTGCGCTCGGTAATCGAACACGTGCTGGTCAATCTGCCGGCCTCGCTGGACAAGCGCGTGCTGGTCACCCGCAATGACCGTCCGCAGGCCATTCGCATGGCCCAGGCCTACGGATGCGATTTTATCGAGCTGGATTCGCCTGGCCTGGGCGACAGCATTGCCGCCGGCGTCCGGGCCTGTCCGGAGGTGGCTGGCTGGCTGATCGTGCTGGGCGACATGCCGTTTGTCCTGCCGTCGAGCATCGAAAATGTGGCGGCAGGGATTCGCGAGGATGGCATCAGCGTGCCGGTTCTTGCCGGGGAGTATGGGCATCCGGTGGGATTTGGTCGTGGGTTTGGCCCGCAGTTGATGGCGTTGTCCGGTGACCGTGGTGCGAAGGTGTTATTCGCCGGGGCGCAAGTCGTCGAGGTGTCGGTGGACGATCCTGGTGTGACCTGGGACATTGATGTGCCGGAGGCATTGATCTTCAGATAGMSESIGVIILAAGSGRRFRQVAGPDKDKLLTDCIGRDGAVRSVIEHVLVNLPASLDKRVLVTRNDRPQAIRMAQAYGCDFIELDSPGLGDSIAAGVRACPEVAGWLIVLGDMPFVLPSSIENVAAGIREDGISVPVLAGEYGHPVGFGRGFGPQLMALSGDRGAKVLFAGAQVVEVSVDDPGVTWDIDVPEALIFRNANANANANA
D1-35_020513195rneRibonuclease EATGAAAAGAATGCTGATTAACGCAACTCAACCCGAAGAGTTGCGTGTTGCACTGGTAGACGGCCAGCGCCTCTACGACCTGGATATCGAATCCGGTGCACGCGAGCAGAAGAAGGCCAACATCTATAAAGGCCGGATTACTCGCATCGAACCAAGCCTTGAGGCTGCCTTTGTCGATTTCGGCTCCGAGCGCCACGGCTTCCTGCCCCTCAAAGAAATCTCCCGCGAATACTTCAAGAAGGCCCCCGAAGGCCGCGTCAACATCAAGGACGTCCTGAGCGAAGGCCAGGAAGTCATCGTCCAGGTCGAAAAAGAAGAACGTGGCAACAAGGGCGCCGCCCTGACCACCTTCATCAGCCTCGCCGGCCGCTACCTGGTCCTGATGCCGAACAACCCACGTGCCGGCGGTATCTCCCGCCGCATCGAAGGCGAAGAGCGCAACGAACTGCGCGAAGCCCTGAACGGCCTGGTCGCACCCGCCGACATGGGCCTGATCGTGCGCACTGCCGGCCTGGGCCGCAGCAGCGAAGAAATGCAGTGGGACCTCGACTACCTGCTGCAACTCTGGACCGCGATCAAGGAAGCCTCGCTGGATCGTTCCGCACCTTTCCTGATCTACCAGGAAAGCAACGTGATCATCCGCGCCATCCGCGACTACCTGCGCCAGGACATCGGCGAAGTGCTGATCGACAGCGTCGAAGCCCAGGACGAAGCCCTGACCTTCATTCGCCAGGTGATGCCGCAGTACGCCAGCAAGATCAAGCTCTACGAAGACAGCGTTCCGCTGTTCAATCGTTTCCAGATCGAAAGCCAGATCGAGACCGCCTTCCAGCGCGTCGTCGAACTGCCGTCGGGCGGCTCCATCGTCATCGACCCGACCGAAGCCCTGGTGTCCATCGACATCAACTCGGCGCGCGCCACCAAAGGCAGCGACATCGAAGAAACCGCCCTGCAGACCAACCTTGAAGCCGCCGAAGAAATCGCCCGCCAGTTGCGCCTGCGCGACATCGGCGGCCTGATCGTCATCGACTTCATCGACATGACCCCGGCCAAGAACCAGCGCGCCGTGGAAGAAAAGGTCCGTGAATGCCTGGAAGCCGACCGTGCCCGCGTACAGGTCGGTCGTATCTCGCGCTTCGGCCTGCTGGAAATGTCCCGTCAGCGCCTGCGTCCATCCCTGGGCGAAAGCAGCGGCATCGTTTGCCCGCGCTGCAACGGCACCGGCATCATCCGTGACGTCGAGTCGTTGTCCCTGGCGATCCTTCGCCTGATCGAAGAAGAAGCCCTGAAGGACCGCACCGCTGAAGTTCGTGCCCAGGTGCCGATCCCGGTGGCCGCGTTCCTGCTCAACGAAAAACGCAACTCGATCACCAAGATCGAACTGCGCACCCGCGCCCGCATTGTGATCCTGCCGAACGACCACCTCGAGACGCCGCACTTCGAAGTGCAGCGCCTGCGTGATGACAGCCCCGAGGCCCACACCAACCAGTCCAGCTACGAAATCGCCGCGGCCGCCGCCGAAGTCGAAGACGTCCAGCCAGCTGCCGCCACCCGCACCCTGGTTCGCCAGGAGGCAGCGGTCAAGACCGCGCCGGCCCGTGCCAACGCTCCGGTCCCGACCGAAGCCGCCGCACCGGTTGCCGCCCCAGCCGCAGCCCCGGAACCTAGCCTGTTCAAAGGCTTGGTGAAGTCCCTGGTCAGCCTGTTCGCCACCAAGGAAGAGCCTGCCGCCCCGGCCGTTGTCGCCAAGCCTGCCGCTACCGAGCGTCCGGCCCGCAACGAAGAACGCCGCAACGGTCGCCAGCAGACCCGCAACCGCAACGGTCGTCGCGACGAAGAGCGCAAGCCGCGCGAAGAACGTGCTCCGCGTGAAGAGCGCGCACCCCGTGAGCCGCGTGAAGAGCGTCAACCACGCGAAGCCCGTGAGGAAGTTCCAGCGGTAGCCCGCGAAGAACGCGCACCACGTCCGCCTCGCGAAGAGCGCCAGCCACGCGCACCACGTGAAGATCGCAAGCCGCGTGGCGAGCGTGAAGAACGTGTTCGCGAATTGCGCGAGCCTCTGGACGCCGCACCGGCTGTTGCTGCGACGCCTGCGACTCCGGCAGCAGAACGCCCGGCTCGCCAGCCTCGCGAAGAGCGTGCACCGCGTCCGCCGCGTGAAGAGCGTCAGCCGCGCGCCGAGCAGGCAGCCGCCGAAGCCAGCGAAGAGGAAGTACTGAACACCGAAGAGCAGTTGCAGGAAGACGGTCAGGACAGCGCCGAGGGCGATCGTCCACGTCGTCGCTCCCGCGGCCAGCGTCGTCGCAGCAACCGTCGCGAGCGCCAACGCGATGCCAACGGCAACGTGATCGAAGGCTCGGAAGAGTCCGACGCCGGCGAGAACGCCGAAGCGCCTAGCGCTGCCGACCTGGCCGCCGGCCTGGCCGTCACCGCGGCTGTTGCCAGCAGCGCGATCAGCGCCCCAGCCGAGGCCCAGGCACACGAGCAGGCCGAACGGGCCACCGCTGCGGTGGAAGAGGCAGCGGTCGAAGCGCCAGTTGTCGAAGCGACCACTCCGGTAGAAATCACTGCTTCGCCAGAGGTGGAACTCGCACCGGTTCGTGAAGCCGAGCCGCAAGCCGAAGCCGCCGCCGAGCCTGCCCCGGTCGTCGAGCAGCCGGTGGTAGCCGCTGAAATGCCTGCCGAGGAAACCGCACCAGAGCCAGTACGCGAAGAGCAGACCGCTTTCAACTGGAACGCAGAGCCAGCCGCACCAGCGCCGGTTGCTGAACCTGAGCCGGTAGTAACCGTCGAACCGCAAGTGGTCGAGCCTGCGCCAATGGTCGAAGCGCCTGTGGTTGCCGAAGCAGTGGTTGCCGAAGCCCCAGCCCCGGTTGAAGCGCCTGCACCGGTCAGTGCCCTGACCCCTAACGGCCGCGCCCCGAACGATCCACGCGAAGTACGTCGTCGCAAGCGTGAAGCCGAGCGTCTGCAGAAAGAAGCTGAACTGGCCGCCGCAGCTGCCACTCAAGCGCCTGCCGCCGAACCGGCTCCGGTCGTGGAAGAAGTCGCCGAGGCAGCCCTTGCCCCGGTAGCTGAAGCCCCGACTGAATCGGCCCCGGTGATCGACGAACCTCAGCACGCCGCTGAAGAAGAAGTCGCTCCGCGTCACACTGAAGCCCTGGAAAAAGAGCACGAGCCTAAACCTCACGCCTGAMKRMLINATQPEELRVALVDGQRLYDLDIESGAREQKKANIYKGRITRIEPSLEAAFVDFGSERHGFLPLKEISREYFKKAPEGRVNIKDVLSEGQEVIVQVEKEERGNKGAALTTFISLAGRYLVLMPNNPRAGGISRRIEGEERNELREALNGLVAPADMGLIVRTAGLGRSSEEMQWDLDYLLQLWTAIKEASLDRSAPFLIYQESNVIIRAIRDYLRQDIGEVLIDSVEAQDEALTFIRQVMPQYASKIKLYEDSVPLFNRFQIESQIETAFQRVVELPSGGSIVIDPTEALVSIDINSARATKGSDIEETALQTNLEAAEEIARQLRLRDIGGLIVIDFIDMTPAKNQRAVEEKVRECLEADRARVQVGRISRFGLLEMSRQRLRPSLGESSGIVCPRCNGTGIIRDVESLSLAILRLIEEEALKDRTAEVRAQVPIPVAAFLLNEKRNSITKIELRTRARIVILPNDHLETPHFEVQRLRDDSPEAHTNQSSYEIAAAAAEVEDVQPAAATRTLVRQEAAVKTAPARANAPVPTEAAAPVAAPAAAPEPSLFKGLVKSLVSLFATKEEPAAPAVVAKPAATERPARNEERRNGRQQTRNRNGRRDEERKPREERAPREERAPREPREERQPREAREEVPAVAREERAPRPPREERQPRAPREDRKPRGEREERVRELREPLDAAPAVAATPATPAAERPARQPREERAPRPPREERQPRAEQAAAEASEEEVLNTEEQLQEDGQDSAEGDRPRRRSRGQRRRSNRRERQRDANGNVIEGSEESDAGENAEAPSAADLAAGLAVTAAVASSAISAPAEAQAHEQAERATAAVEEAAVEAPVVEATTPVEITASPEVELAPVREAEPQAEAAAEPAPVVEQPVVAAEMPAEETAPEPVREEQTAFNWNAEPAAPAPVAEPEPVVTVEPQVVEPAPMVEAPVVAEAVVAEAPAPVEAPAPVSALTPNGRAPNDPREVRRRKREAERLQKEAELAAAAATQAPAAEPAPVVEEVAEAALAPVAEAPTESAPVIDEPQHAAEEEVAPRHTEALEKEHEPKPHANANANANANA
D1-35_02053957rluCCOG0564Ribosomal large subunit pseudouridine synthase CATGACAACTACTGCCCCTTCGACCCCAGGCGTTCAACTGCTTGAGGTCTCGCCGGAATATGCCGGCCAACGAATTGATAATTTCCTGCTTGCCCGGCTCAAAGGCGTGCCCAAGACCTTGATCTATCGCATTTTGCGCAAAGGCGAAGTGCGGGTGAACAAAGGTCGGATCAAGCCCGAATACAAGCTCCAGGCGGGCGACGTCGTGCGCGTACCGCCGGTTCGCGTGCCCGAGCGCGATGAGCCGGTGCCACTGGCGCAAGGTTTGTTGCAACGCCTGGAAGCCGCCATCGTCTTCGAAGACAAGGCGCTGATCGTGGTCAACAAGCCCGCGGGCATCGCGGTCCACGGCGGCAGCGGCCTGAATTTCGGCGTGATCGAAGCCTTCCGTCAGCTGCGTCCCGATGCCAAGGAGCTGGAGCTGGTCCATCGTCTGGATCGGGACACCTCCGGGCTGTTGATGATTGCCAAGAAGCGCAGCATGTTGCGCCATCTGCACGAACAGTTGCGCGGCGATGGCGTCGACAAGCGCTACATGGCGCTGGTGCGCGGTCGTTGGGAAACATCCGTCAAGCAGGTCCGCGCGCCGCTGCTCAAGAGCAACCTGCGCTCCGGCGAGCGCATGGTGGAAGTCAACGAAGAAGGCAAGGAAGCGCTGACCGTGTTCAAGGTGCTGCGCCGTTTCGGCGACTTCGCCACCATGGTCGAGGCCAAGCCGGTCACTGGGCGGACCCACCAGATCCGCGTCCACACCCTGCATGCCGGGCATTGCATTGCCGGTGACAGCAAGTACGGGGACGATGACTTCAGCAAGGAAATCCGTGACCTGGGCGGCAAGCGCCTGTTCCTTCATGCCTACATGCTGACCGTGCCGTTGCCGGACGGCGGCGAGCTGAAATTGCAGGCCCCCGTGGATGACATGTGGGCCAAGACCGTGGAGCGGTTGAGTGCATCCTGAMTTTAPSTPGVQLLEVSPEYAGQRIDNFLLARLKGVPKTLIYRILRKGEVRVNKGRIKPEYKLQAGDVVRVPPVRVPERDEPVPLAQGLLQRLEAAIVFEDKALIVVNKPAGIAVHGGSGLNFGVIEAFRQLRPDAKELELVHRLDRDTSGLLMIAKKRSMLRHLHEQLRGDGVDKRYMALVRGRWETSVKQVRAPLLKSNLRSGERMVEVNEEGKEALTVFKVLRRFGDFATMVEAKPVTGRTHQIRVHTLHAGHCIAGDSKYGDDDFSKEIRDLGGKRLFLHAYMLTVPLPDGGELKLQAPVDDMWAKTVERLSASNANANANANA
D1-35_02054663ppaXCOG0546Pyrophosphatase PpaXGTGCATCCTGACTACAAGCTGCTGATATTTGATTGGGACGGCACTCTGGCCAACTCCATCGGTCGGATTGTCGAGTCGATGCACGTCGCGTCGGACCGAACGGGTTTTGCTCGGCGGGATGATTTTGCGGTGAAGGGCATTATCGGTCTTGGGCTGCCGGAAGCGATTCGCAGCCTGTACCCGGAAATCGCTGATGATGAGTTGAGCGTTTTTCGCCAGCATTATGCCGACCACTACATCGCGCTGGAGGCCGAGCCTTCGCCGCTGTTCGACGGCGTGGCCGACACGCTCCAGGCCCTGCGGGAAGAGGGCTATCACCTGGCTGTCGCGACCGGCAAGGCTCGACGCGGGCTGGATCGGGTGCTGAAGTCCCATGGCTGGGACGATTATTTCGACATCACCCGCGCCGCCGACGAAACCGCCAGCAAGCCGCATCCGCTGATGCTTGAGCAAATCCTGGCCCACTGTAATGTGCGGCCCGAGCAGGCGCTGATGGTCGGGGATTCGTCGTTCGACCTGCAGATGGCGCGTAATGCCGGCATGGGCTCTGTCGCTGTCAGTTATGGCGCTCAGACGATCGAGGCGCTTCGGGCGTTTGAACCGTGCCTGGCGATTGACCATTTTCCCGAATTGCACGCGTGGCTGAGCCAGCGTGCCGGTTGAMHPDYKLLIFDWDGTLANSIGRIVESMHVASDRTGFARRDDFAVKGIIGLGLPEAIRSLYPEIADDELSVFRQHYADHYIALEAEPSPLFDGVADTLQALREEGYHLAVATGKARRGLDRVLKSHGWDDYFDITRAADETASKPHPLMLEQILAHCNVRPEQALMVGDSSFDLQMARNAGMGSVAVSYGAQTIEALRAFEPCLAIDHFPELHAWLSQRAGPGPT0001730_4600DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0001730-gph-K01091NANA
D1-35_02055990hypothetical proteinATGACCGATGAATGGAAAGCACCGGCCAAGGCAGATGCCGAGAGCGGTGATGGAAAAAGCTGGAAGCTGTTGGAAAAGACTCTGTTGGCCGGTGTGCAAGAGCAGCGTCGGTCGCGTCGCTGGGGGATCTTCTTCAAGCTGCTGACCTTTGTTTATCTTTTCGTTGCGCTGCTGCTGTTTACGCCGTTGATGAGTATCGAAAAGGGTGCGGTCAGTGGTTCGGCGTATACCGCGTTGATCGACGTTGAAGGAGTGATCGCCGACAAGGAGCCAGCCAGTGCGGATAACATCGTCGGCAGTCTGCGGGCTGCCTTCGAAGATCCGAAGGTCAAGGGCGTGGTGCTGCGCATCAACAGCCCGGGCGGCAGTCCGGTGCAGTCGGGTTACGTCTACGACGAGATCGTCCGGTTGCGCGCGCTTCACCCGAACACCAAGGTCTATGCAGTCATCGCCGATCTCGGCGCGTCGGGTGCCTATTACATTGCCAGCGCTGCGGACCAGATCTATGCCGACAAGGCCAGCCTGGTCGGCTCCATTGGCGTGACGGCGGCCGGTTATGGTTTTGTCGGGACCATGGAGAAGCTCGGTGTGGAGCGGCGGGTCTATACCTCTGGCGAGCACAAGTCGTTCCTTGATCCGTTCCAGCCGCAAAAGCCTGAAGAAACCGCGTTCTGGCAGGGCGTACTCGACACGACTCACAAGCAATTCATTGCCAGCGTCAAGAAAGGCCGCGGCGAGCGCTTGAAGGACAAGGAACATCCGGAATTGTTTTCCGGGTTGGTCTGGTCCGGGGAGCAGGCTTTGCCGCTGGGCCTGATCGATGGCCTGGGCAGCGCCAGTTCGGTGGCTCGGGATGTGATCGGTCAGAAGGACCTGGTGGACTTCACCATCGAAGAATCGCCGTTTGACCGCTTCTCGAAGAAGCTGGGCGCAAGCATCGCCGAGCATCTGGCGATGTGGATGGGCTTCCAGGGCCCGGCGTTGCGCTAGMTDEWKAPAKADAESGDGKSWKLLEKTLLAGVQEQRRSRRWGIFFKLLTFVYLFVALLLFTPLMSIEKGAVSGSAYTALIDVEGVIADKEPASADNIVGSLRAAFEDPKVKGVVLRINSPGGSPVQSGYVYDEIVRLRALHPNTKVYAVIADLGASGAYYIASAADQIYADKASLVGSIGVTAAGYGFVGTMEKLGVERRVYTSGEHKSFLDPFQPQKPEETAFWQGVLDTTHKQFIASVKKGRGERLKDKEHPELFSGLVWSGEQALPLGLIDGLGSASSVARDVIGQKDLVDFTIEESPFDRFSKKLGASIAEHLAMWMGFQGPALRPGPT0030320_2680DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_V_SECRETION_SYSTEMSCE-T5a_AUTOTRANSPORTER_SECRETION,PGPT0030320-pspA-K04773NANA
D1-35_02056579yceFCOG04247-methyl-GTP pyrophosphataseATGCTGCCTTTATTACTTGCCTCAAGCTCGGTCTACCGTCGGGAACTGCTTGCCCGCCTGGGGCTGCCGTTCGTCTGCGACTCACCGGACATCGACGAAAGCCATCGCGCCGGCGAGGCCGCGCTCGAACTGGTGAAACGCCTGGCCCGGGAAAAAACCTTCGCCCTGGCGGACCGTTACCCGGCACACCTGATCATTGGCTCGGACCAGGTCGCCGTGATCGGAGAGCGCATCCTGGGCAAGCCCCACACCTTCGAGAACGCCCGCGAGCAACTGCTGGCCGCCAGCGGGACCAAGGTAACCTTCCTGACCGGCCTGGCACTACTCAACAGCCAGACCGGCGCCTGCCAGGTCGATTGCGTTCCGTTTACCGTAACCATGCGGACATTGGATCAGGCTCGCGTGGAGCGCTATCTGCGCACCGAGCAACCGTACGACTGCGCCGGCAGCTTCAAGGCCGAAGGCCTGGGCGTGAGCCTGTTCCAGCGCACCGAAGGGCCGGACGCCACCAGCCTGGTCGGCCTGCCGCTGATTCGTCTTGTGGACATGTTGCTAGTTGAGGGTGTGGAGGTTCCCTGAMLPLLLASSSVYRRELLARLGLPFVCDSPDIDESHRAGEAALELVKRLAREKTFALADRYPAHLIIGSDQVAVIGERILGKPHTFENAREQLLAASGTKVTFLTGLALLNSQTGACQVDCVPFTVTMRTLDQARVERYLRTEQPYDCAGSFKAEGLGVSLFQRTEGPDATSLVGLPLIRLVDMLLVEGVEVPNANANANANA
D1-35_02057528yceDCOG1399Large ribosomal RNA subunit accumulation protein YceDATGTTGAATGACCCGATTCCACCTCACGTTGACCCGCGCAAATTGGCTGACCGTGGCACCACCCTTCAAGGTGAATTGCTGCTGGCCGATTTGAAGAGACTCTGCGACCCGCTTTCCGACGATGTCGGTACGGTCCAGGCCAAATTCGTTTTTGAACGAGATGAACGTAAATCTGTGGTGATCCACAGCTTTATCGACACTGAAGTCAAAATGGTTTGCCAGCGTTGTCTTGAGCTGGTCACCCTGCCGATCCACAGCGAATGCAGTTACGCCGTGGTGAAGGAGGGTGCGAATACCCAGTCGTTGCCGAAAGGTTATGACGTGCTGGAACTGGGCGAAGATCCATTGGATCTGCAGTCACTGATCGAGGAGGAGCTTCTGCTCGCCTTGCCCATTGTGCCTGCTCATCATCCGGAAGAATGCCAGCAGCCGGCGGGAGCAGATGAGCCCGAACCGAGCGAGGACGAGGTAACGCGGTCCAACCCGTTCAGTGTATTGGCGCAGTTAAAGCGTGACCCAAACGTTTAGMLNDPIPPHVDPRKLADRGTTLQGELLLADLKRLCDPLSDDVGTVQAKFVFERDERKSVVIHSFIDTEVKMVCQRCLELVTLPIHSECSYAVVKEGANTQSLPKGYDVLELGEDPLDLQSLIEEELLLALPIVPAHHPEECQQPAGADEPEPSEDEVTRSNPFSVLAQLKRDPNVNANANANANA
D1-35_02058183rpmFCOG033350S ribosomal protein L32ATGGCTGTTCAGCAGAACAAAAAATCCCGCTCTGCCCGTGACATGCGCCGTTCGCACGACGCTCTCGAGGCTAGCACCCTGTCTGTAGAAAAAACCACCGGTGAAGTTCACCTGCGTCACCACGTATCGCCAGAAGGCGTATACCGTGGCCGTAAAGTGATCGACAAGGGCGCCGACGAGTAAMAVQQNKKSRSARDMRRSHDALEASTLSVEKTTGEVHLRHHVSPEGVYRGRKVIDKGADENANANANANA
D1-35_02059981plsXCOG0416Phosphate acyltransferaseATGGGCGGGGACTTCGGTCCCCGCAGCATTGTCCAGGCCAGCCTCGCTTGCCTGAATGCTACGCCCTCGCTGCACCTGACCCTCGTCGGTCAACCCTCCCTCCTGGAAGAATTGCTCAGTGGCTATCCCGCTGCGGATCGCGCGCGCCTGACGATTACCCCGGCGTCCGAAGTCATCGCCATGGACGAGAAGCCTGCCCAGGCTCTGCGCGGCAAGCCCGACGCCTCGATGCGCGTGGCATTGGAGCTGTTGCGCGACGACAAGGTCCAGGCGTGTGTCAGTGCGGGTAATACCGGGGCGTTGATGGCGCTGTCCCGCTACGTGCTGAAAACCCTGCCGGGGATCGATCGGCCCGCCATGGTCGCGGCGATCCCGACCCAGCGCGGTTTCTGCCAGCTATTGGACCTGGGCGCCAATGTCGACTGCAGCGCCGAGCATTTGCTGCAGTTCGCGGTGATGGGCTCGGTCGCGGCTGAAACCCTCGGCATCGCTCGCCCTCGCGTGGCACTGCTGAATATCGGCACCGAAGACATCAAGGGTAATCAGCAGGTCAAGCTCGCGGCCACATTGTTGCAAAGCGCCCGGGGCATCAATTACATCGGTTTTGTCGAGGGTGACGGGCTATATCGCGGCGAGGCGGACGTGGTGGTATGCGACGGTTTTGTCGGCAATATCCTGCTCAAGTCCAGCGAAGGCCTGGCGACCATGATTGGCGGCCGCATCGAGGCCCTGTTCAAGCAGAGCCTGGCTTCCAGGGCGGTGGGTGCGCTGGCATTGCCGCTGATGCGTCGTCTGCAGGCGGATCTGGCCCCGGCGCGGCACAATGGTGCGAGTTTTCTCGGGCTGCAGGGCATCGTGATCAAGAGTCATGGTTCGGCTGGGGTGCAGGGCTTTCAGAGTGCAATCAACCGGGCGGTGATTGAAATCGAGGAAAACCTGCCTGAGCGCCTGCATGGCCGTCTTGAAGATTTGTTAACTTAGMGGDFGPRSIVQASLACLNATPSLHLTLVGQPSLLEELLSGYPAADRARLTITPASEVIAMDEKPAQALRGKPDASMRVALELLRDDKVQACVSAGNTGALMALSRYVLKTLPGIDRPAMVAAIPTQRGFCQLLDLGANVDCSAEHLLQFAVMGSVAAETLGIARPRVALLNIGTEDIKGNQQVKLAATLLQSARGINYIGFVEGDGLYRGEADVVVCDGFVGNILLKSSEGLATMIGGRIEALFKQSLASRAVGALALPLMRRLQADLAPARHNGASFLGLQGIVIKSHGSAGVQGFQSAINRAVIEIEENLPERLHGRLEDLLTPGPT0024410_2289DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_ACYLTRANSFERASE_ACTIVITY,PGPT0024410-plsX-K03621NANA
D1-35_02060939fabD_1COG0331Malonyl CoA-acyl carrier protein transacylaseATGTCTGCTTCCCTCGCATTCGTCTTTCCAGGACAGGGCTCGCAGTCCCTCGGCATGCTGGCCGAGCTGGGCGCGCAATACCCGTTGATCCTGGAAACATTCAAAGAAGCATCCGATGCACTCGGCTACGACTTGTGGGCACTGACCCAGCAAGGGCCGGAAGAGCAACTTAACCAGACCGACAAGACCCAACCCGCGATCCTGACCGCCTCCATTGCGCTGTGGCGCTTGTGGCTGGCTGAAGGCGGCGCGCGTCCGGCGTTTGTCGCCGGTCACAGCCTGGGTGAGTACAGCGCCCTGGTGGCGGCTGGCAGCCTGAGCCTTGGCGACGCGGTCAAGCTGGTGGAACGGCGTGGCCAGTTGATGCAGGAAGCGGTTCCGGCCGGGCAGGGTGGCATGGCCGCTATCCTCGGCCTGGAAGACGCCGATGTGTTGGCAGCCTGTGCCGAAGCGGCGCAAGGCGATGTGGTCAGCGCGGTGAATTTCAATTCGCCGGGCCAGGTGGTCATTGCCGGCGCCAAGGCGGCTGTCGAGCGCGCGATCGAAGGTTGCAAGGCCCGTGGCGCCAAGCGCGCGATGCCCTTGCCGGTCAGCGTTCCGTCGCACTGCGAGCTGATGCGCCCGGCCGCCGAGCGGTTTGCCGAATCCATCGCCGCCATCGACTGGCAGGCGCCGCAGATTCCCGTGGTTCAGAATGTCAGCGCCAACGTGGCGCCGGATCTCGAGACCCTCAAGCGCGATCTGCTGGAACAACTCTACAAGCCGGTTCGCTGGGTCGAATCGGTACAGACCCTGGCAGCCAAGGGCGCGACCGAACTGGTCGAGTGCGGCCCTGGCAAGGTGCTGGCAGGTCTGAACAAACGCTGCGCCGAAGGCGTGTCGACTTCCAATCTCAACACCCCAGACGCTTTCGCTGCCGCTCGTGCAGCGCAAGCCTGAMSASLAFVFPGQGSQSLGMLAELGAQYPLILETFKEASDALGYDLWALTQQGPEEQLNQTDKTQPAILTASIALWRLWLAEGGARPAFVAGHSLGEYSALVAAGSLSLGDAVKLVERRGQLMQEAVPAGQGGMAAILGLEDADVLAACAEAAQGDVVSAVNFNSPGQVVIAGAKAAVERAIEGCKARGAKRAMPLPVSVPSHCELMRPAAERFAESIAAIDWQAPQIPVVQNVSANVAPDLETLKRDLLEQLYKPVRWVESVQTLAAKGATELVECGPGKVLAGLNKRCAEGVSTSNLNTPDAFAAARAAQAPGPT0008350_2395DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_FATTY_ACID_METABOLISM,PGPT0008350-fabD|bmyD-K00645NANA
D1-35_02061744fabG_33-oxoacyl-[acyl-carrier-protein] reductase FabGATGAGTCTGCAAGGTAAAGTTGCACTGGTGACCGGTGCAAGCCGCGGCATCGGCCAGGCTATCGCACTGGAATTGGGTCGCCAAGGCGCCATTGTCATTGGCACCGCGACTTCCGCTTCAGGCGCCGAGCGTATCGCCGCGACCTTGAAGGAAAACGGCATCCAAGGCACCGGCCTTGAGCTGAATGTCACCAGCGACGAATCTGTTGCGGCGGTTCTGGCAAGCATCCAGGAGCAGTTCGGCGCTCCGGCGATCCTGGTCAATAATGCCGGCATCACTCGCGATAACCTGATGATGCGCATGAAAGATGACGAATGGTTCGATGTGGTCGATACCAACTTGAACAGCCTGTATCGGCTGTCCAAGGGCGTTCTGCGTGGCATGACCAAGGCCCGTTGGGGCCGAATTATCAGTATCGGCTCGGTTGTGGGTGCCATGGGCAACGCTGGCCAAGTAAACTATGCTGCGGCTAAAGCCGGCCTGGAAGGTTTCAGCCGTGCGCTGGCACGGGAAGTCGGTTCGCGCTCGATTACGGTAAACTCGGTTGCACCGGGTTTCATCGACACCGACATGACCCGCGAACTGCCGGAAGCACAGCGTGAAGCTTTGTTGACACAGATTCCGCTGGGCCGTCTGGGGCAAGCTCAAGAAATCGCGTCCGTGGTCGCTTTTCTTGCTTCGGACGGTGCGGCATACGTGACTGGGGCTACAATCCCGGTAAACGGCGGGATGTACATGAGTTAAMSLQGKVALVTGASRGIGQAIALELGRQGAIVIGTATSASGAERIAATLKENGIQGTGLELNVTSDESVAAVLASIQEQFGAPAILVNNAGITRDNLMMRMKDDEWFDVVDTNLNSLYRLSKGVLRGMTKARWGRIISIGSVVGAMGNAGQVNYAAAKAGLEGFSRALAREVGSRSITVNSVAPGFIDTDMTRELPEAQREALLTQIPLGRLGQAQEIASVVAFLASDGAAYVTGATIPVNGGMYMSPGPT0003180_14371DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-35_02062237acpP_1COG0236Acyl carrier proteinATGAGCACCATCGAAGAGCGCGTCAAGAAAATCGTTGCCGAGCAACTGGGCGTTAAAGAAGAAGAAGTTGTGAACACCGCTTCCTTCGTCGAAGACCTGGGTGCCGACTCCCTTGACACCGTTGAGCTGGTGATGGCTCTGGAAGAGGAATTCGAGACCGAGATTCCTGACGAAGAAGCTGAAAAGATCACTACTGTACAAGCTGCTATCGACTACGTTACCAGCCACCAGGCGTAAMSTIEERVKKIVAEQLGVKEEEVVNTASFVEDLGADSLDTVELVMALEEEFETEIPDEEAEKITTVQAAIDYVTSHQAPGPT0011375_6292DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0011375-acpP-K02078NANA
D1-35_020631245fabF_2COG03043-oxoacyl-[acyl-carrier-protein] synthase 2GTGTCGCGTAGACGCGTCGTAGTCACCGGTATGGGTATGTTGTCGCCACTGGGCACGGATGTGCCGAGCAGCTGGCAGGGCATTCTGGCTGGCCGTAGTGGCATTGGTCTGATCGAACACACCGACCTTTCTGCCTATTCCACCCGTTTTGGCGGCTCGGTAAAGGGTTTCAATGTCGAGGAATACCTGTCGGTCAAGGAAGCCCGCAAGCTTGACCTGTTCATTCAATACGGCCTGGCAGCCGGTTTCCAGGCGGTGCGCAATGCCGGGCTGGAAGTCACCGACGCCAACCGTGAGCGCATCGGCGTGGCCATGGGTTCGGGTATTGGCGGCTTGACCAATATCGAAGAAACCAGCCGTACGCTGCATGATTCCGGGCCGCGGCGTATTTCGCCGTTTTTCGTGCCGGGCTCGATCATCAATATGATTTCCGGTTTCCTGTCCATCCACCTTGGTGCACAGGGACCCAACTACGCCATCGCTACTGCCTGCACCACGGGCACGCACTGCATCGGCATGGCCGCGCGCAACATCATGTACGACGAAGCTGACGTGATGATTGCCGGTGGCGCCGAAATGGCCGCCTGCGGCCTCGGCATGGGCGGTTTCGGCGCGTCCCGTGCGCTGTCGACCCGCAACGATGAGCCGGACCGGGCTAGCCGCCCGTGGGACAAGGGCCGCGATGGTTTCGTACTGTCGGACGGTGCCGGTGCGCTGGTGCTCGAAGAACTTGAGCACGCCAAGGCTCGTGGCGCGACCATCTATGCCGAACTGATCGGCTTCGGTACCAGCGGCGATGCGTTCCACATGACGTCGCCACCGGCCGATGGCGCCGGTGCGGCCCGTTGCATCACCAATGCCTTGCGCGACGCCAAGCTCAATCCAGGGCAGGTGCAGTACATCAACGCCCATGGTACGTCGACCCCGGCCGGCGATCTGGCCGAAGCCCAGGCCATCAAGACGGTGTTTGGCGACCACGCCTACAAACTGGCTGTCAGCTCGACCAAATCGATGACCGGCCACCTGTTGGGCGCGGCAGGTGCGGTGGAAGCGATCTTCAGCGTACTGGCGATCAACAGCCAGGTGGCGCCGCCGACCATCAACCTTGATGAGCCGGACGAGGGCTGCGACCTCGACTTCGTGCCACATACCGCCCGCAGCATGGACATCGACGTCGTGTTGTCCAATTCCTTCGGCTTCGGCGGGACCAACGGCTCGCTGGTGTTTCGCCGGTTCGCCGGTTGAMSRRRVVVTGMGMLSPLGTDVPSSWQGILAGRSGIGLIEHTDLSAYSTRFGGSVKGFNVEEYLSVKEARKLDLFIQYGLAAGFQAVRNAGLEVTDANRERIGVAMGSGIGGLTNIEETSRTLHDSGPRRISPFFVPGSIINMISGFLSIHLGAQGPNYAIATACTTGTHCIGMAARNIMYDEADVMIAGGAEMAACGLGMGGFGASRALSTRNDEPDRASRPWDKGRDGFVLSDGAGALVLEELEHAKARGATIYAELIGFGTSGDAFHMTSPPADGAGAARCITNALRDAKLNPGQVQYINAHGTSTPAGDLAEAQAIKTVFGDHAYKLAVSSTKSMTGHLLGAAGAVEAIFSVLAINSQVAPPTINLDEPDEGCDLDFVPHTARSMDIDVVLSNSFGFGGTNGSLVFRRFAGPGPT0008360_4554DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008360-fabF-K09458NANA
D1-35_02064816pabCCOG0115Aminodeoxychorismate lyaseATGGAAAGCTGGGTCGACGGTCAGCCGGCTGACGCTCTGTCGCTGAAAGATCGCGGCCTGGCCTACGGTGATGGGTTGTTCGAAACCATCGCCGTGCGGGACGGTAAGCTCGTTCTGCTTGAGGGGCATCTGCAACGCCTCGCGTTGGGATGCCGACGGTTGGCAATCAGTGCCGATTGGGCGGTATTGAATGCAGAACTGCAAGCCTATGCGCAGCAGCTCGGCGATGGCGTTCTGAAACTGATCGTGACCCGTGGCGACAGTCTGCGGGGCTATGCCGCCAATCCTTCAGCCCAGGCCCGCCGCATCTTGCAGGGCAGCCCGCCGGCGGCCTATCCACTGGCCCATGCCGAGCAAGGCGTTCAGCTGTTTCCTTGCACTACACGCCTGTCCGAGCAACCGTTGCTCGCCGGCCTCAAACACCTCAATCGCCTTGAACAAGTGCTGGCCCGCGCCGAGTGGAGCGACACCGAGCATGCCGAAGGCTTGATGCTGGATATGTCCGGGCGGGTGATCGAAGGCGTGTTCAGTAATCTGTTCACGGTGCACGACGGAGCGCTGATCACGGCGGATCTGAGCCGTTGTGGTGTCGCCGGGGTGATGCGTGGGCAATTATTGTTTCAAGCCGAGTCTGATGGCATCGCTACTCAGGTCACCAATATCCGCCTCGAACAGCTGCACCAGGCCGACGAGGTCTTTGTCTGCAACAGCGTTTATGGCGTGTGGCCGGTACGCGGATGCGGTTCGGCGCGCTGGTCGGTTGGCCCGCTCACCCGTAAACTGCAGACCCTTGCCCGTGCGCTATTGGATGCTTGAMESWVDGQPADALSLKDRGLAYGDGLFETIAVRDGKLVLLEGHLQRLALGCRRLAISADWAVLNAELQAYAQQLGDGVLKLIVTRGDSLRGYAANPSAQARRILQGSPPAAYPLAHAEQGVQLFPCTTRLSEQPLLAGLKHLNRLEQVLARAEWSDTEHAEGLMLDMSGRVIEGVFSNLFTVHDGALITADLSRCGVAGVMRGQLLFQAESDGIATQVTNIRLEQLHQADEVFVCNSVYGVWPVRGCGSARWSVGPLTRKLQTLARALLDAPGPT0008020_1166DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008020-pabC-K02619NANA
D1-35_020651173mltGCOG1559Endolytic murein transglycosylaseGTGAGACGTAAATTCTTGCTGCTGCTGGAAGTCGGACTGGTTCTGGCAGGGCTGTTGCTGGGCGCTTCGGCGTGGAAAATTCACTCGGCGCTGCAGCAGCCGTTGAACATCACCCAGGAAGAACTGCTTGACGTACCCAGCGGCACCACGCCGACCGGGACGCTCAATCGCCTGGAAGCCGATGGCCTGATCAAGGATGCATTCTGGCTGCGGGTGTACTGGCGCTTCAACCTCGCCGGCCAACCCCTGCACTCCGGCGAATACCGGATGGTCCCAGGGATGACGATGGACGGCCTGATCGGTGTCTGGAAGCGTGGTGACGTGGTGCAATACAGCGTCACGCTGGTGGAGGGCTGGAATTTCCGTCAGGTTCGCGCAGCGCTGGCCAAGGATGAGAAGCTCCAGCAGACCCTCGCCGGCCTGAGCGACAGTCAGGTGATGGACCGTCTTGGTCATTCCGGGATATTTCCCGAAGGCCGGTTCTTCCCGGATACCTATCGGTTCGTGCGCGGTACGTCGGATACCGATCTGCTGAAGAAGGCCTACGATCGGCTGGAAGAGGTGCTCGCCAAGGAGTGGGCGCAACGAGCCGCCGACGTGCCTTACACCCAGCCCTACCAAGCATTGATCATGGCTTCCCTGATCGAGAAGGAGACCGGCGTGCCCCAGGAGCGTGGCCAGATCGCCGGGGTGTTCGTGCGCCGCTTGCGCCTGGGCATGTTGTTGCAGACCGATCCCACCGTAATCTATGGCCTGGGGGAGCGCTACACCGGCAAGCTCACCCGTGCCCATCTGAAAGAACCGAATCCCTACAACACCTATCTGGTTCCAGGGCTGCCGCCGACGCCGATCGCGATGGTCGGGCGCGAGGCGATTCATGCGGCGTTGAACCCGGCGGACGGCAACAGCCTTTATTTCGTGGCCCGGGGCGATGGCAGCCATGTGTTTTCCGATGACCTGGAAACGCACAATAACGCGGTGCGCGAATACCAACTCAAGCGCCGCGCCGATTATCGTTCGAGCCCGGCCCCGGTTGCGCCGGACGATGTGGCGCCGATTCCCGCCGCTTCACCTGATACGGCGCCTGAAGCCGTGCCCCAGGTGCCGCCTCAGGAGCCCGCGCCGCAACCTGCCCCCGAACCGAATGCCAGCGAGCCGCCGAGCCCGCAATGAMRRKFLLLLEVGLVLAGLLLGASAWKIHSALQQPLNITQEELLDVPSGTTPTGTLNRLEADGLIKDAFWLRVYWRFNLAGQPLHSGEYRMVPGMTMDGLIGVWKRGDVVQYSVTLVEGWNFRQVRAALAKDEKLQQTLAGLSDSQVMDRLGHSGIFPEGRFFPDTYRFVRGTSDTDLLKKAYDRLEEVLAKEWAQRAADVPYTQPYQALIMASLIEKETGVPQERGQIAGVFVRRLRLGMLLQTDPTVIYGLGERYTGKLTRAHLKEPNPYNTYLVPGLPPTPIAMVGREAIHAALNPADGNSLYFVARGDGSHVFSDDLETHNNAVREYQLKRRADYRSSPAPVAPDDVAPIPAASPDTAPEAVPQVPPQEPAPQPAPEPNASEPPSPQNANANANANA
D1-35_02066633tmkCOG0125Thymidylate kinaseGTGACTGGCTTGTTTATAACCCTGGAAGGCCCCGAAGGCGCCGGCAAGAGCACCAACCGCGAATACCTCGCCGAACGTTTGCGGGCTGAAGGCATCGAGGTGGTGCTGACCCGTGAGCCGGGCGGCACGCCATTGGCCGAGAGGATTCGCGAGGTGCTGCTGGCACCCCTTGACGAGGTCATGAACCCCGACACCGAGCTGTTGCTGGTTTTCGCTGCCCGGGCGCAACATCTGGCCGAGGTGATCCGCCCGGCGCTGGCCCGTGGTGCGGTGGTGCTGTGTGATCGCTTCACCGATTCGACCTATGCCTACCAGGGGGGCGGCCGGGGCTTGTCCCTTGAGCGTATCGCCGCGTTGGAAACCTTTGTCCAGGCGGACCTGCGGCCAGACCTGACTCTGGTGTTCGACTTGCCGGTGGACATCGGTCTGGCCCGCGCCAGCGCCCGGGGTCGGCTTGATCGCTTCGAGCTGGAAGGGCAGGCCTTCTTCAACGCCGTGCGCAATGCCTTCCTGGAGCGTGCCCAGGCTGATCCGGCGCGTTACCTGCTGATCGACGCCGCCCAACCGCTGGCACAGGTCCAGCAATCGCTGGATGGTCTGCTGCCGCGTCTGCTGGAGCGTGCCCGTGGCTGAMTGLFITLEGPEGAGKSTNREYLAERLRAEGIEVVLTREPGGTPLAERIREVLLAPLDEVMNPDTELLLVFAARAQHLAEVIRPALARGAVVLCDRFTDSTYAYQGGGRGLSLERIAALETFVQADLRPDLTLVFDLPVDIGLARASARGRLDRFELEGQAFFNAVRNAFLERAQADPARYLLIDAAQPLAQVQQSLDGLLPRLLERARGPGPT0021395_3499DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021395-tmk-K00943NANA
D1-35_02067987holBCOG0470DNA polymerase III subunit delta'GTGGCTGAAGCCTATCCGTGGCAGGACAGCCTCTGGCAGCAATTGGCCGGGCGTGCCCAGCATGCCCATGCCTACCTGCTGCACGGTCCGGCCGGGATCGGCAAGCGGGCGCTGGCCGAACGCCTGATGGCGAGCCTGTTGTGCCAGGCCCCGGTGGCCGCGGGCGCCTGCGGCGAATGCAAGTCCTGCCTGCTGCTCAAGGCCGGTAGCCATCCAGACAATTACGTGCTGGAGCCTGAAGAGGCGGACAAGGCGATCAAGGTCGACCAGGTCCGGGACCTTGTGAGTTTCGTCGTCCAGACCGCGCAGATGGGCGGGCGCAAGGTCGTGTTGATCGAACCGGTGGAGTCGATGAACATCAACGCTGCCAATGCCTTGCTCAAGAGTCTCGAAGAGCCTTCCGGGAATACCGTCCTGCTGTTGGTCAGCCACCAGCCGAGTCGGTTGTTGCCGACCATCAAGAGCCGTTGCGTGCAGCAGGCTTGTCCGCTGCCCAGCGAGGCCATGAGCCTGCAGTGGCTGGGCCAGGCCTTGCCTGACAGCAGCGATGAGGAGCGTGTCGAGCTGCTGACCCTGGCCGCCGGTTCGCCACTGGCGGCCGTCAGCCTCCAGGCCCAGGGCGTGCGTGAGCAGCGGGCACTGGTAGTGGACGGCGTCAAGAAGCTGCTCAAGCAACAGCAGTCGCCGACGCAACTGGCCGAGGGCTGGAACGCCATTCCGTTGCTGCTGCTGTTCGACTGGTTCTGCGACTGGTCGAGCCTGATCCTGCGTTATCAGCTCACCGAGGACGAGGCTGGGCTGGGACTGGCGGACATGCGCAAGGTGGTCCAGTACCTGGCGCAAAAAAGCAGCCAGGACAAAATCCTGAACATTCAGGACTGGATCCTTGCCCAACGCCAGAAGGTGCTGAGCAAGGCCAACCTCAATCGCGTCCTGTTGCTGGAGGCGCTGTTGGTGCAATGGGCAAGTTTGCCTGGTCGTAACTGAMAEAYPWQDSLWQQLAGRAQHAHAYLLHGPAGIGKRALAERLMASLLCQAPVAAGACGECKSCLLLKAGSHPDNYVLEPEEADKAIKVDQVRDLVSFVVQTAQMGGRKVVLIEPVESMNINAANALLKSLEEPSGNTVLLLVSHQPSRLLPTIKSRCVQQACPLPSEAMSLQWLGQALPDSSDEERVELLTLAAGSPLAAVSLQAQGVREQRALVVDGVKKLLKQQQSPTQLAEGWNAIPLLLLFDWFCDWSSLILRYQLTEDEAGLGLADMRKVVQYLAQKSSQDKILNIQDWILAQRQKVLSKANLNRVLLLEALLVQWASLPGRNNANANANANA
D1-35_02068357hypothetical proteinATGAACGAACCTGTCAGCCCCGGGCCACGCAATGGCATCCTGTCCCTGACCATCAAGGACAAGTCGGTGCTCTACGCCGCCTACATGCCCTTCATCAGGAATGGCGGCCTGTTTATCCCGACCAACAAGAATTATCGCCTGGGCGATGAGGTGTTCATGCTGTTGAGCCTGATGGACGAACCGGAGAAAATCCCGGTCGCCGGCAAGGTGATCTGGCTCACCCCCAAAGGCGCCCAGGGCAACCGGGCGGCCGGGGTTGGCGTGCAGTTCAACGAAGGCGACAACTCGGCTCGCAATCAGATCGAAACCCACCTGGCCGGAACCCTCAAGTCCGACCGTCCTACCCATACGATGTAGMNEPVSPGPRNGILSLTIKDKSVLYAAYMPFIRNGGLFIPTNKNYRLGDEVFMLLSLMDEPEKIPVAGKVIWLTPKGAQGNRAAGVGVQFNEGDNSARNQIETHLAGTLKSDRPTHTMPGPT0015970_293DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015970-pilZ-K02676NANA
D1-35_02069795ycfHCOG0084putative metal-dependent hydrolase YcfHATGCTTGTAGATTCCCATTGTCACCTTGATCGCCTCGACCTTGCCGCCCATGGCGGTTCGCTGGACGCCGCGCTGGATGCAGCGCGCCAACGAGGCGTCGGGCATTTCCTGTGCATCGGTGTCAGCGCCGATAACGCCGCCGACGTCAAGGTCCTGGCCGACCGTTATGCGGATGTTGATTGTTCGGTGGGTATCCACCCGCTGGACGTACAGCCCGATGCCGCGCCGGCCCTGGACTGGCTGCTGCGCGAGCTCGACCATCCTCGGGTGGTGGCCATTGGCGAGACTGGCCTCGACTATCACTACGAGCCGGAGGCCGCCGAGGTGCAGCAGGCTTCGTTCCGCTTGCACCTGGAAGCGGCTCGTCAGACTGGCAAGCCGGTAATCATCCACACCCGCGGTGCCCGCGCCGATACCCTGGATCTGCTGCGCGACGCGGCGTTGCCCCAGGCGGGCGTGCTGCATTGCTTCACCGAGGACTGGGACATGGCCAAGGCTGCGCTGGACATGGGTTACTACATCTCCCTGTCCGGAATTGTCACGTTTCGCAATGCCGATGCCCTGCGCGACGTCGCCAGCAAAGTGCCGGCAGATCGATTGCTGGTGGAGACCGATTCGCCCTACCTGGCGCCAATACCCTATCGCGGCAAGCCGAACCTTCCTCAGTATGTGCGCGAGGTGGCCGAGTTCCTGGCCATGTTGCGCGGTGAATCCTATGAGCGGTTCGCGCAGCAGACCACGGAAAACTTCAAGCGCCTGTTCCCCCTGGCGCATGTCGGTTCGCCGAGGGCCTGAMLVDSHCHLDRLDLAAHGGSLDAALDAARQRGVGHFLCIGVSADNAADVKVLADRYADVDCSVGIHPLDVQPDAAPALDWLLRELDHPRVVAIGETGLDYHYEPEAAEVQQASFRLHLEAARQTGKPVIIHTRGARADTLDLLRDAALPQAGVLHCFTEDWDMAKAALDMGYYISLSGIVTFRNADALRDVASKVPADRLLVETDSPYLAPIPYRGKPNLPQYVREVAEFLAMLRGESYERFAQQTTENFKRLFPLAHVGSPRANANANANANA
D1-35_02070639hypothetical proteinATGCACAAAGAACCCCGTAAGGTCCGTGAGTTTCGTCGCCGCGAGCAGGAAATTCTCGACACCGCGCTCAAGTTGTTCCTCGACCAGGGTGAAGACAGTGTCACCGTCGAGATGATTGCGGATGCCGTGGGTATCGGCAAAGGCACGATTTATAAACATTTCAAATCCAAGGCCGAGATCTACCTGCGGCTGATGCTCGATTACGAGCGCGATTTGAACGAGTTGTTGCATTCGGCCGATGTGGACAAGGACAAGGAAGCGCTTTCCCGGGCCTATTTCGAGTTCCGCATGCGCGACCCGCAGCGTTACCGCTTGTTCGACCGTCTGGAAGAGAAGGTGGTCAAGGGCAACCAGGTGCCGGAAATGGTCGAGGAGCTGCACAAGATCCGCGCTTCCAACTTCGAACGCCTGACCCTGCTGATCAAGGGCCGGATCAGCGAAGGCAAGCTCGAAGATGTGCCGCCGTATTTCCATTACTGCGCAGCCTGGGCGCTGGTGCATGGCGCCGTGGCGCTGTATCACTCGCCGTTCTGGAGCAATGTGCTTGAAGATCAGGAAGGCTTCTTCCAGTTCCTGATGGACATTGGCGTGCGCATGGGCAACAAGCGCAAGCGCGACACCGACGTCCCGAGCAGTTGAMHKEPRKVREFRRREQEILDTALKLFLDQGEDSVTVEMIADAVGIGKGTIYKHFKSKAEIYLRLMLDYERDLNELLHSADVDKDKEALSRAYFEFRMRDPQRYRLFDRLEEKVVKGNQVPEMVEELHKIRASNFERLTLLIKGRISEGKLEDVPPYFHYCAAWALVHGAVALYHSPFWSNVLEDQEGFFQFLMDIGVRMGNKRKRDTDVPSSNANANANANA
D1-35_02071969moaACOG2896GTP 3',8-cyclaseATGATCGTTGACCGTCAAGGCAGGCGTTTTCGCAATTTGCGGATCAGCCTGACTTCAGCCTGCAACTATGCCTGTACCTACTGCGTGCCAGACGGCAAGCGGCTGGTGGCTGCGCAGGATGAACTGTCGGCCGAGGCCATGGCGCGGGGCGTGGCCTATCTGATCGAAGCCGCCGGCATCGAGCGGTTGCGCATCACCGGTGGAGAGCCACTGGTCAGCCCCAAGCTGGAAAGCTTCATGACGGCGGTGGGGCAGATGGGGCTGCAGGACATCAGTCTGACCACCAATGGTCAACTGCTGGCAAAGAAGCTGCCGCTGCTGGTCAACGCCGGTATCCGCCGTATCAACGTCTCCCTCGACACCCTGGACCCCGTGGCGTTTCGCAGCATTGCCCGTGGTGGTGACCTGGCGACTGTGCTGGACGGCATGGAGCAGGCCCGGGCGGCGGGAATGAAGATCAAGGTCAACATGGTGCCGTTGCGCGGGCAGAACCTGGACCAGGTGATGCCATTGCTCCAGTACTGCCTGGAGCGTGGTTATGAGTTGCGTTTCATCGAGTTGATGCGCATGGGCCACCTGGCCAAGGACTCCAATGCGTTCCTTCAACAGTTCGTCAGCCTCCAGCAGTTGCTGGGCCTGATTGGCGACCAGTACGAATATCTGCAGGCCGATGCGCCGATCGATGCCACGGCCGTGCGTTACGAGATTCCGGGGTTGGGGCATTTCGGTGTGATTGCCAACGAAAGCGTGCCGTTCTGCCGCACCTGTTCGCGGCTGCGGCTGTCTTCCACGGGCTGGTTGCATGGCTGCCTGTCGTCGAGTAACCGTCACTACGTTGGCGATCTGTTGGACAAACCGCGTCACCAGGCATTGCCGGCGCTCCAGCGGCTGTTGGTCAAGGCCTTGGGGGACAAGCAGGAAGTGGCGTTCTCCGGTGGTGCGACGATCATGAAAATCATCGGCGGCTGAMIVDRQGRRFRNLRISLTSACNYACTYCVPDGKRLVAAQDELSAEAMARGVAYLIEAAGIERLRITGGEPLVSPKLESFMTAVGQMGLQDISLTTNGQLLAKKLPLLVNAGIRRINVSLDTLDPVAFRSIARGGDLATVLDGMEQARAAGMKIKVNMVPLRGQNLDQVMPLLQYCLERGYELRFIELMRMGHLAKDSNAFLQQFVSLQQLLGLIGDQYEYLQADAPIDATAVRYEIPGLGHFGVIANESVPFCRTCSRLRLSSTGWLHGCLSSSNRHYVGDLLDKPRHQALPALQRLLVKALGDKQEVAFSGGATIMKIIGGPGPT0008410_3947DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_BIOSYNTHESIS,PGPT0008410-moaA-K03639NANA
D1-35_02072606hypothetical proteinATGCGTAGCCTGTTTTTGCTGCTGGCCGTTTTGACGCTGGGTGGCTGCATGAATGTCAGCGACATGGGGGAGGGCGTTCGTTATCACATGAGCGACGCCGGCCTGCTGGACCATAGCGACAGCCGTCGGGTGAACAACCTGCGCATTCAGCCGGATTCCTTCATCTACATTGCCCAGGGTGCTTTTGCTCCGCCAGGCAGCGCTTATCCGCGGCCCAATGTCGTGGCTGAAGAAGCGTTCAACGGTTTCATCGAGTATTTCCCCATGGTTCGTCGCGCCCGGGTCCCGGAAGGCCTCGACCAGGCGATGGGCGAAGCGCGGGCCGCCGGTGCTCATTACTTGCTGTATACCCGGTTCGCCAAGGCGGACAACCGCATCGGCAACACCGACGAATGGCTGGACGAAGAAGCCGTGGATCGACTGGGTGTCGATACCGGTGTCATTCAGATCATGTTGATCGAGACCAGCACCCAGTATTTGATTGATACTGCGCGTATCAAAAGTCGTGGCGGTTTACTGACGTTGCACGACAAACAGCCAGAAGACTTGATCGCCGCCCCACTGCGTGAATATGCCCGCACCTTGCTGGGGATAAGCGACCAGTAAMRSLFLLLAVLTLGGCMNVSDMGEGVRYHMSDAGLLDHSDSRRVNNLRIQPDSFIYIAQGAFAPPGSAYPRPNVVAEEAFNGFIEYFPMVRRARVPEGLDQAMGEARAAGAHYLLYTRFAKADNRIGNTDEWLDEEAVDRLGVDTGVIQIMLIETSTQYLIDTARIKSRGGLLTLHDKQPEDLIAAPLREYARTLLGISDQNANANANANA
D1-35_02073567hypothetical proteinATGAGCGGACCGCAAAAAGCCAATGACCTGCTGGGACAGATCCCGAAGACCAAAGGCCTGCCGCCGGTCCACTTGTGGAACCCCGACTTCTGCGGCGACATCGACATGCGCATCGCCCGTGATGGCACCTGGTATTACCTGGGCACGCCGATCGGGCGCAAGCCGATGGTCAAGCTGTTCTCCACCATCATTCGCCGCGACGGCGATGATTATTTCCTGATCACCCCTGTGGAAAAAGTCGGCATCAAAGTCGACGACGCCCCGTTCGTGGCCGTGACCCTTGAGGTCGAGGGGGAGGGGGAGGGGGAGGGGCAGTTGTTGCGCTTTACTACCAATGTCGAGGAAACCACCGAAGCCGGCCCCGATCATCCGATGCGGGTGGTCATCGACCCCCGGACCCAGGAGCCTGCGCCGTACGTGCATGTGCGCAGCAATCTCGAAGCGCTGATTCATCGCAACGTGTTCTATCAACTGGTGGAGCTGGCGGTGAGTCGCGAGATCGATGGTCAGCGCTGGCTGGGCGTGTGGAGCGGCGGCGTGTTTTTCCCCATCGGCCTTGAGCCCTGAMSGPQKANDLLGQIPKTKGLPPVHLWNPDFCGDIDMRIARDGTWYYLGTPIGRKPMVKLFSTIIRRDGDDYFLITPVEKVGIKVDDAPFVAVTLEVEGEGEGEGQLLRFTTNVEETTEAGPDHPMRVVIDPRTQEPAPYVHVRSNLEALIHRNVFYQLVELAVSREIDGQRWLGVWSGGVFFPIGLEPNANANANANA
D1-35_02074747hypothetical proteinATGTCCAGCAGTTTTCACGCGTCGACCGTCGATTGGCTGGGTGGCTGGATTGCCGCCGGCCAGGTCAAGCCTGGGCAAACCATCAAGGTCGAGGCAGATCTGGGCGAGCAACTGGGCGTCAGCCGCACGGTGATCCGTGAGGCAATCAAGACGCTGGTGGCCAAAGGCATGTTGGAAGTCGGCCCGAAAGTCGGCACGCGGGTACTGCCGGTGCGCCGCTGGAACCTGTTCGACCCGCAGGTGGTTGGCTGGCTGTCACGCAGCGGCCTGCCGGAAAACTTCGTCGACGACCTGCTGGACCTGCGGCGCACCATCGAACCGATGGCGGTGCGCTGGGCCTGCGAACGGGCGACGGCTGATCAGGTGCAGGCGATCCGCCTGGCTTATCATGCGCTGGAGCGGGCGGTGGACAGCGGCGCCGATTACAACCTTGCCGACCAGTTTTTCCACGAATGCATTCTCGCCGCCAGCCACAATCAATTCATCGAGCAGATGGTCCCGGCCCTGGGCGCGTTGCTGGCGGTCTCGTTCGAGGTGTCGGCGGCCGATCCGGACGAATTGCGGCGCACCTTGCCGATCCACAAGGATATCGCCGAAGCCATCGCCGAGCGCGACGCGGCGCGCGGCGTCTGGGCCTGCATGACCCTGATCGACAACGCTGACCTGGCCATCAAGCGCTTTTACCCCGACGTCATGGCCGGTCGAACAGACAATACCGGGCGAGCCGGGAACGGGAGGTTGCAATGAMSSSFHASTVDWLGGWIAAGQVKPGQTIKVEADLGEQLGVSRTVIREAIKTLVAKGMLEVGPKVGTRVLPVRRWNLFDPQVVGWLSRSGLPENFVDDLLDLRRTIEPMAVRWACERATADQVQAIRLAYHALERAVDSGADYNLADQFFHECILAASHNQFIEQMVPALGALLAVSFEVSAADPDELRRTLPIHKDIAEAIAERDAARGVWACMTLIDNADLAIKRFYPDVMAGRTDNTGRAGNGRLQPGPT0018085_154DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTONATE_DEGRADATION,PGPT0018085-dgoR-K19776NANA
D1-35_020758766-deoxy-6-sulfogluconolactonaseATGAACTGGACGGCTGTGACGGAACATCGGGCGAAACTGGGCGAGGGACCGTTCTGGGACGAGCCGACCCAGGCGCTGTATTGGGTAGATATCGCCGGCAAGCAGGCGCTGCGGCTGATCGGCGCCAATGTACAGATCTGGCAGATGCCCGAACACGTTTCCGCCTTCATCCCGACCCAGAGCGGCGATGCGTTGGTGACATTGAGCAGTGGCGTCTATCGACTGGACCTGGATTCGCCTGGGCTGGAGCCGCGCCTGAAGTTGCTGTGCATGGCCGATCCCCAGCCCGGCAATCGTGCCAACGAAGCGCGCTGTGATGCGCTGGGCCAGCTTTGGCTGGGCACCATGCAAAACAATATCGGAGAAGAGGGCGAGGACCTGCCCATCGAGCGACGTTCCGGCGGCCTGTTCCGTGTCGGCGGCGATGGCCGGGTGATGCCCCTGCTGCGCGGGCTGGGCATTCCAAACACGCTGCTATGGAGCCCCGATGGCACGACGGTGTATTTCGGTGAGAGCCTCGATGGCACGCTCTATCGGCACTTCATCTACCCCGACGGCAAACTCGCGCCCGCGGAGGTCTGGTTCGGCCCCCATTCCCGTGGCGGGCCGGACGGTTCGGCGATGGATGCGCAAGGTTACATCTGGAATGCTCGCTGGGATGGCAGTTGCCTGCTGCGGCTGCATCCGGACGGCCACGTCGATCGGGTGATCGAGTTACCGGTCAGCCGTCCCACCAGTTGTGTATTCGGTGGAGACGACCTGCGGACGCTGTACATCACCAGTGCGCAAAGTCCGCTTGGGCATCCGCTGGACGGTGCGGTGCTGTCGATGCGAGTGGACGTTCCGGGTGTGGCTTGTACGAGGTTTGCTGGCTAGMNWTAVTEHRAKLGEGPFWDEPTQALYWVDIAGKQALRLIGANVQIWQMPEHVSAFIPTQSGDALVTLSSGVYRLDLDSPGLEPRLKLLCMADPQPGNRANEARCDALGQLWLGTMQNNIGEEGEDLPIERRSGGLFRVGGDGRVMPLLRGLGIPNTLLWSPDGTTVYFGESLDGTLYRHFIYPDGKLAPAEVWFGPHSRGGPDGSAMDAQGYIWNARWDGSCLLRLHPDGHVDRVIELPVSRPTSCVFGGDDLRTLYITSAQSPLGHPLDGAVLSMRVDVPGVACTRFAGPGPT0017460_298DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_ARABINOSE_METABOLISM,PGPT0017460-araB|L_arabinonolactonase-K13874NANA
D1-35_02076819ucpA_1Oxidoreductase UcpAATGGCTGAAGCGCTTTGCTTGCCACCGGTGCCGGAGCCGCCGCAGGGCGAACGGTTGAAAGGCAAGGTCGTGCTGCTGACGGGTGCTGCCCAGGGCATTGGCGAGGCAATCGTTGCTGCGTTTGCTTCCCAACAGGCGCGGCTGGTCATCAGCGACATCCAGGCTGAAAAAGTCGAGGCCGTCGCCGCCCATTGGCGTGGGCGCGGTGGGGATGTACAAGCACTCAAGGTCGATGTTTCAAGCCAGCAGGACCTGCACGCCATGGCCCGGCGAGCGGTTGAACTGCATGGTCGCATCGACGTATTGGTGAACTGCGCTGGCGTCAATGTGTTCCGCGATCCGCTGGAAATGACCGAGGAAGACTGGCGCCGTTGCTTCGCCATCGACCTGGACGGTGCCTGGTATGGCTGCAAGGCCGTATTGCCACAGATGATCGAGCAGGGCGTGGGCAGCATCATCAATATCGCGTCGACCCATTCGTCCCACATCATTCCCGGCTGTTTCCCTTACCCGGTGGCCAAGCATGGCCTGCTCGGGCTGACCCGTGCCCTGGGCATCGAATACGCCCCCCAAGGCGTGCGGGTGAATGCCATTGCGCCGGGCTACATCGAGACCCAGCTGAATATCGATTACTGGAATGGCTTCACCGATCCACGGGCCGAACGCCAGCGTGCGCTGGATCTGCACCCGCCACGGCGTATCGGCCAGCCGATCGAAGTGGCAATGACGGCGGTGTTTCTGGCCAGTGACGAAGCACCTTTCATCAACGCTTCATGCATCACCATTGATGGTGGACGTTCGGTCATGTACCACGACTGAMAEALCLPPVPEPPQGERLKGKVVLLTGAAQGIGEAIVAAFASQQARLVISDIQAEKVEAVAAHWRGRGGDVQALKVDVSSQQDLHAMARRAVELHGRIDVLVNCAGVNVFRDPLEMTEEDWRRCFAIDLDGAWYGCKAVLPQMIEQGVGSIINIASTHSSHIIPGCFPYPVAKHGLLGLTRALGIEYAPQGVRVNAIAPGYIETQLNIDYWNGFTDPRAERQRALDLHPPRRIGQPIEVAMTAVFLASDEAPFINASCITIDGGRSVMYHDNANANANANA
D1-35_020771005araFCOG1879L-arabinose-binding periplasmic proteinATGAAACATCGTCGTGGGATCCGTTCCCTGTGTCGCGCCGCCCTGGCGGTTACCGCGTTCAGTCTCAGCAGCCACCTGCTGGCGGCCGATGCGGTGAAAATCGGTTTCCTGGTCAAGCAGGCCGAGGAGCCCTGGTTCCAGACCGAATGGGCATTCGCCGAGAAGGCGGCCAAGGACAAAGGCTTCCAGTTGATCAAGATCGCCGTGCCTGACGGCGAGAAAACCCTCTCCGCTATCGACAGCCTGGCCGCCAACGGTGCCAAGGGCTTTGTGATCTGCCCGCCGGACGTGTCCCTGGGCCCGGCCATCATGGCCAAGGCCAAGCTCAACGACCTCAAGGTGATCGCCGTGGACGACCGTTTCGTCGACGCCAGCGGAAAATTCATGGAAGACGTGCCGTACCTGGGCATGGCCGCGTTCGAGGTTGGCCAGAAACAAGGCGCCGCGATGGCTGCCGAAGCGAAAAAACGCGACTGGGACTGGAAAGACACCTACGCGGTGATCAACACCTTCAACGAGCTGGACACCGGTAAGAAACGCACCGACGGTTCGGTCGATGCCCTGAAGAAGGCCGGGATGCCGGAAGACCATATCCTGTTCACAGCGCTGAAGACCCTCGACGTGCCGGGCAGCATGGACTCCACCAACTCGGCGTTGGTCAAGCTGCCTAGCGCCGCGAAAAACCTGATCATCGGCGGCATGAATGACAACACCGTGCTGGGTGGCGTGCGCGCTACCGAAGCAGCCGGCTTCAAGGCGGCCAACGTGATCGGTATCGGCATCAACGGCACCGACGCCATCGGCGAGCTGAAGAAACCAAATAGTGGCTTCTTCGGTTCGATGCTGCCAAGCCCGCACATCGAAGGCTACAAGACCGCCGAAATGATGTACGAGTGGATCACCACCGGCAAGGAGCCGCCGAAGTACACCGCCATGGACGAGGTGACGCTGATCACCCGGGAGAACTTCAAGCAGGAACTGGAAAAGATCGGCCTGTGGAATTGAMKHRRGIRSLCRAALAVTAFSLSSHLLAADAVKIGFLVKQAEEPWFQTEWAFAEKAAKDKGFQLIKIAVPDGEKTLSAIDSLAANGAKGFVICPPDVSLGPAIMAKAKLNDLKVIAVDDRFVDASGKFMEDVPYLGMAAFEVGQKQGAAMAAEAKKRDWDWKDTYAVINTFNELDTGKKRTDGSVDALKKAGMPEDHILFTALKTLDVPGSMDSTNSALVKLPSAAKNLIIGGMNDNTVLGGVRATEAAGFKAANVIGIGINGTDAIGELKKPNSGFFGSMLPSPHIEGYKTAEMMYEWITTGKEPPKYTAMDEVTLITRENFKQELEKIGLWNPGPT0016605_90DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_ARABINOSE_TRANSPORT_I,PGPT0016605-araF-K10537NANA
D1-35_020781545araG_1COG1129Arabinose import ATP-binding protein AraGATGCAAGCGCAAACAGCGACACGGCAACACAACACTGGCGGCAGCTTGCGATTCAACGGGATCGGCAAGACCTTTCCCGGCGTGCAGGCCCTGGCCAATATCAGTTTCGTCGCCCATCCAGGACAGGTTCATGCCTTGATGGGTGAAAACGGCGCGGGCAAGTCCACGTTGCTCAAGATCCTTGGCGGCGCCTATATCCCGAGCAGCGGCGACTTGCAGATCGGTGAGCAGACGATGGCGTTCAAAGGCACCGCCGACAGTATCGCCAGCGGTGTGGCGGTGATTCACCAGGAGCTGCACCTGGTGCCGGAAATGACCGTCGCCGAAAACCTGTTCCTTGGCCATTTGCCGGCGCGTTTCGGCCTGGTCAATCGCGGTGTGCTGCGCCAGCAGGCGTTGGCGCTGCTCAAAGGCCTGGCGGACGAAATCGACCCGCAGGAAAAAGTCGGTCGCCTGTCCCTCGGCCAGCGCCAGTTGGTGGAAATCGCCAAGGCCTTGTCCCGTGGCGCCCACGTCATTGCTTTCGACGAACCGACCAGCAGCCTCTCGGCGCGGGAAATCGACCGTTTGATGGCGATCATCGCCCGCCTGCGGGACGAGGGCAAAGTGGTGTTGTACGTCAGCCACCGCATGGAAGAAGTCTTTCGAATCTGTAATGCGGTGACGGTGTTCAAGGACGGTCGTTATGTCCGGACCTTCGAAAACATGAGCGAGCTGACCCATGATCAACTCGTCACCTGCATGGTCGGTCGTGATATCCAGGACATCTATGACTACCGTCCGCGTGAGCGTGGCGATGTGGCGCTGCAGGTGAAGGGGCTGCTGGGGCCGGGCCTGCGCGAGCCGGTGAGTTTCGAGGTGCACAAGGGTGAAATCCTTGGCCTCTTCGGGCTGGTCGGCGCCGGTCGTACCGAGCTGTTTCGCTTGCTCAGTGGCCTGGAGCGCCAGAGCGAGGGCAGTCTTGTCCTGCACGGCAAGGAACTGAAACTGCGTTCGCCACGGGACGCCATCGCCGCTGGCGTGCTGCTCTGCCCGGAGGACCGCAAGAAGGAAGGCATCATTCCGTTGGGCAGTGTCGGCGAGAACATCAACATCAGCGCGCGTCCGTCCCATTCGACCCTCGGCTGCCTGCTGCGCGGCGAATGGGAGCGGGGCAATGCCGACAAGCAGATCAAGTCGCTGAAAGTGAAGACCCCGGCGGCCAGCCAGAAAATCATGTACCTGTCCGGTGGCAACCAGCAGAAGGCGATCCTCGGGCGTTGGCTGTCGATGCCGATGAAGGTCCTGCTGCTGGACGAGCCGACACGGGGCATCGACATCGGTGCCAAGGCCGAGATCTACCAGATCATCCACAACCTGGCGGCCGATGGCATCGCCGTGATCGTGGTGTCCAGCGACCTGATGGAAGTGATGGGCATTTCCGACCGGATCCTGGTGCTGTGCGAAGGGGCCATGCGCGGCGAGCTGCCGCGTGACCAGGCCAATGAATCCAACCTGCTGCAACTGGCGCTGCCGCGCCAACGCGTTGCCGACGCGGCGAACTGAMQAQTATRQHNTGGSLRFNGIGKTFPGVQALANISFVAHPGQVHALMGENGAGKSTLLKILGGAYIPSSGDLQIGEQTMAFKGTADSIASGVAVIHQELHLVPEMTVAENLFLGHLPARFGLVNRGVLRQQALALLKGLADEIDPQEKVGRLSLGQRQLVEIAKALSRGAHVIAFDEPTSSLSAREIDRLMAIIARLRDEGKVVLYVSHRMEEVFRICNAVTVFKDGRYVRTFENMSELTHDQLVTCMVGRDIQDIYDYRPRERGDVALQVKGLLGPGLREPVSFEVHKGEILGLFGLVGAGRTELFRLLSGLERQSEGSLVLHGKELKLRSPRDAIAAGVLLCPEDRKKEGIIPLGSVGENINISARPSHSTLGCLLRGEWERGNADKQIKSLKVKTPAASQKIMYLSGGNQQKAILGRWLSMPMKVLLLDEPTRGIDIGAKAEIYQIIHNLAADGIAVIVVSSDLMEVMGISDRILVLCEGAMRGELPRDQANESNLLQLALPRQRVADAANPGPT0016615_103DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_ARABINOSE_TRANSPORT_I,PGPT0016615-araG-K10539NANA
D1-35_02079969araHCOG1172L-arabinose transport system permease protein AraHATGACCATTCAAAACAATGCACTGCCAACGGCACGCAAGCCCCTCGACCTGCGCCGCTTCCTCGACGACTGGGTCATGCTGCTGGCGGCCATCGGCATCTTTGTGCTCTGCACCTTGATGATCGACAACTTCCTGTCGCCGCTGAACATGCGGGGCCTGGGCCTGGCGATTTCCACCACCGGCATTGCCGCCTGCACCATGCTTTATTGCCTGGCTTCCGGGCACTTCGACCTGTCGGTGGGCTCGGTGATTGCCTGTGCCGGCGTGGTCGCTGCCGTGGTAATGCGCGACACCAACAGCGTGTTCCTCGGTGTCAGCGCGGCGCTGGTGATGGGCCTGATCGTCGGTCTGATCAACGGCATCGTCATTGCAAAACTACGGGTCAACGCGTTAATCACCACGCTGGCGACGATGCAGATCGTTCGCGGCCTGGCGTATATCTTCGCCAACGGTAAAGCGGTCGGCGTGTCCCAGGAATCGTTCTTCGTGTTCGGCAACGGCCAGCTGTTTGGCGTGCCGGTGCCGATCCTGATCACCATCGTCTGCTTCCTGTTCTTCGGCTGGTTGTTGAACTACACCACCTACGGGCGCAACACCATGGCCATCGGCGGCAACCAGGAAGCGGCGTTGCTGGCGGGGGTGAACGTTGATCGCACCAAGATCATCATCTTTGCCGTGCATGGCGTGATTGGCGCGCTGGCGGGTGTGATCCTGGCGTCGCGCATGACCTCGGGCCAGCCGATGATCGGCCAGGGCTTCGAGCTGACGGTGATCTCGGCCTGTGTATTGGGTGGGGTTTCGCTGAGTGGCGGGATCGGCATGATTCGCCATGTCATTGCCGGTGTACTGATCCTCGCGATCATCGAGAACGCGATGAACCTGAAGAATATCGACACCTTCTACCAGTACGTCATCCGTGGTTCGATCCTGTTGCTGGCGGTGGTGATTGACCGGTTGAAGCAACGCTGAMTIQNNALPTARKPLDLRRFLDDWVMLLAAIGIFVLCTLMIDNFLSPLNMRGLGLAISTTGIAACTMLYCLASGHFDLSVGSVIACAGVVAAVVMRDTNSVFLGVSAALVMGLIVGLINGIVIAKLRVNALITTLATMQIVRGLAYIFANGKAVGVSQESFFVFGNGQLFGVPVPILITIVCFLFFGWLLNYTTYGRNTMAIGGNQEAALLAGVNVDRTKIIIFAVHGVIGALAGVILASRMTSGQPMIGQGFELTVISACVLGGVSLSGGIGMIRHVIAGVLILAIIENAMNLKNIDTFYQYVIRGSILLLAVVIDRLKQRPGPT0016610_371DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_ARABINOSE_TRANSPORT_I,PGPT0016610-araH-K10538NANA
D1-35_02080381hypothetical proteinATGCCTCGTGGAAGCAAAGACAAATACACCGACAAGCAAAAGCGCAAGGCCGAGCACATCGAAGAGAGTTATGAGCAAAAAGGCGTGCCGGAGGGCAAGGCCGAAGCTCGGGCCTGGGCGACCGTCAATAAGCAGTCCGGGGGTGGCGAACGCTCCGGTGGGTCCGGCAAGAAAAAACCCGCCGAGGCCAAGCAATCCGATCGCAAGGAATCGGCCCGGCGCGCCGTCAAGTCGCGTGAAGGCCATCCGCGCACCAGCAACGCCTCCCATGAGGCTCAGACGGTGGACAGCCTGATGAAGGAAGCCCGGGCGAAAAACATTCCCGGACGCTCGAAGATGCGCAAGCAGGAGTTGGTCGAGGCGTTGCGCAAGGCCGGGTAAMPRGSKDKYTDKQKRKAEHIEESYEQKGVPEGKAEARAWATVNKQSGGGERSGGSGKKKPAEAKQSDRKESARRAVKSREGHPRTSNASHEAQTVDSLMKEARAKNIPGRSKMRKQELVEALRKAGNANANANANA
D1-35_02081342hypothetical proteinATGATCAGATCCAGGCTGACTGCGTTCACATTTGCCGCTTTGTTGTCCTCGGCGGCTTTCGCAGCCACGACTTCAGGGACCGGCCCGACCGATCCGGTACAGGCACCGAATTCGCCCGCCACCCAAGGCTTGCCCAAGCTGAATACCGACGGCACCGGCGGCACCTTGAACAATGGCCAGCCGCCCGCCACGGGCACCGATCCACGGGTCCAGGGTAATGACACCGGTCGCCAGGGTGGCATGAACACCCCGGACTCCACCGCTCCGGATAACGCCGACACCGGCGTGGGTTCGAAAACCACCACCGGCGGTTCCGGTTCGGAAGGTGGCGCCAACCAATAGMIRSRLTAFTFAALLSSAAFAATTSGTGPTDPVQAPNSPATQGLPKLNTDGTGGTLNNGQPPATGTDPRVQGNDTGRQGGMNTPDSTAPDNADTGVGSKTTTGGSGSEGGANQNANANANANA
D1-35_02082483hypothetical proteinATGTCGATCGAGATCCGTCCTGCGCAACCCAGCGATGCGCCGCAAATCCTTGCCTTCATCACTGAGCTTGCCGATTACGAAAAAGCCCGCCACGAAGTCATCGCCAGCGTTGCCGATATCGAGCGCAGCCTGTTCAGCGAAGGCGCAACCGCCCATGGGTTGATGTGCCTGCGCGATGGCGTGCCGATCGGTTTCGCAGTGTTTTTCTTCAGTTACTCCACTTGGCTGGGCAGCAATTGCCTGTACCTCGAAGACCTCTATATCACTCCCGAACAACGCGGCGGCGGGGCGGGCAAGACGTTGTTGCGGCATCTGGCGAAGATCGCCTGCGACAACGACTGCGGTCGCTTCGAGTGGAGCGTCCTGGATTGGAACACCCCGGCCATCGAGTTCTACAAATCCCTTGGCGCGCAGCCCCAGGAAGAATGGGTGCGCTACCGCATGGATGGCAAGGTACTGCGGGATTTCGCCAACGGCAATTGAMSIEIRPAQPSDAPQILAFITELADYEKARHEVIASVADIERSLFSEGATAHGLMCLRDGVPIGFAVFFFSYSTWLGSNCLYLEDLYITPEQRGGGAGKTLLRHLAKIACDNDCGRFEWSVLDWNTPAIEFYKSLGAQPQEEWVRYRMDGKVLRDFANGNNANANANANA
D1-35_02083633gstB_2COG0625Glutathione S-transferase GstBATGGAACACTCACTGAAGATCCTCGGCCGCACCTCTTCGATCAACGTCAGAAAAGTACTCTGGACCTGTCAGGAACTGGACATCCCTTACGAACGCGAAGATTGGGGTATCGGCTTTGCGTCGACCCATGACCCGGCATTCCTGGCCCTCAACCCCAACGCCCAGGTGCCGGTGATCATTGATGAGAACGGCGTGCTCTGGGAGTCGAACACTATCTGCCGCTACCTGGTGGGCAAGCATGGGCGCGACGACCTGTTACCCATAGAACCTGCCGCCCGCGCGCGCGTCGAGCAGTGGATGGACTGGCAAGCCACGGAGCTCAATCCGTCGTGGGGGGATGCATTTTATGGGTTGGTGCGCAAACATCCGGATTTCCAGGACCCGCAGCTCATCGCTGCCGGGGTTAAAGGCTGGAACGAGAAAATGGGGTTGCTCGAGCATCAGTTGAATCACACCGGCGCCTACGTGGCCGGTGCGAAATTTTCCCTGGCGGACGTGCTTATCGGCCTGTCCGCGCACCGCTGGCGCCAGACGCCCATGGAGCGTCCGGACTATCCAGCCGTGGCCGCTTATTGCAAGCGGCTCGAACAGCGTCCCGGATTTGCCGAGTACGCGTCCAGCGCCTACTCGTAAMEHSLKILGRTSSINVRKVLWTCQELDIPYEREDWGIGFASTHDPAFLALNPNAQVPVIIDENGVLWESNTICRYLVGKHGRDDLLPIEPAARARVEQWMDWQATELNPSWGDAFYGLVRKHPDFQDPQLIAAGVKGWNEKMGLLEHQLNHTGAYVAGAKFSLADVLIGLSAHRWRQTPMERPDYPAVAAYCKRLEQRPGFAEYASSAYSPGPT0013170_18140DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013170-gst-K00799NANA
D1-35_02084984dgoK1COG3734putative 2-dehydro-3-deoxygalactonokinase DgoK1ATGCAGGCGCAATTGATAGCGCTCGATTGGGGTACCACCTCATTACGAGCTTACAAACTTGCCGCTGGAGGCGAGGTGCTCGAACAGCGTTCGCTGTCGTCGGGGATCATGCAGTTGCCGTCCGGGCCGCGCACGGTCGCCGGCCAGGCGTGCAACAACGGTTTCGAACTGGCCTTCGATGAAGCCTGCGGCGACTGGCTCGATGCGCAGCCAGGTTTGCCCGTCATCGCTTGTGGCATGGTCGGCAGCGCCCAGGGCTGGCGTGAAGCGCCTTACTGCGACACGCCGGCAAACGTCGCCAACCTCGGACATTCCCTACAGGTCATCCGCAGTCTTCGCGGAGTCAATGTGCACATTGTGCCGGGAGTGATCCAACGTTCCCGGCTGCCCAATGTCATGCGCGGCGAAGAAACCCAGGTGCTCGGTGCGTTGGCCAGCCTGCCGAACGAAGCGGTGCTGATCGGCCTGCCGGGCAGCCATTCGAAATGGGTGGAAGTGGCCGATGGCTGCATCGTGCATTTCGACACCTTCATGACTGGCGAGATCTTCGCCGTGCTCAGTGACCACAGCATTCTCGGCCGCACCCAGCAACGCGGTGTGGCGTTCGACGGCGCGGCGTTTGATCGTGGCGTGCAGGTAGCGCTGTCGGTAGACGGCCAGATCGGCCCGCTGTCCACGGTATTCAGCGCCCGCAGCCTGGGCTTGACCGGCGAACTCGGTGCCAGCGCCCAGGCCGACTATCTTTCCGGCCTGCTCATCGGCCATGAACTGACCGCCCTGGCCGCCGTGCAGCGGCAGCGACGCAACAGCGTGCATCTGCCAACGGTGGTGCTGATCGGCAACTCTCAACTATGTGCCCGCTATCAACGGGCTCTCGACGCCTGCGGGTTCGCCCGCGTGACCTTGGCCGAACAGGCCACCGAACGCGGGCTGTGGCAACTGGCCGTGGCGGCCGGGCTGCTCGATTCCACCGCATCGCGCTAAMQAQLIALDWGTTSLRAYKLAAGGEVLEQRSLSSGIMQLPSGPRTVAGQACNNGFELAFDEACGDWLDAQPGLPVIACGMVGSAQGWREAPYCDTPANVANLGHSLQVIRSLRGVNVHIVPGVIQRSRLPNVMRGEETQVLGALASLPNEAVLIGLPGSHSKWVEVADGCIVHFDTFMTGEIFAVLSDHSILGRTQQRGVAFDGAAFDRGVQVALSVDGQIGPLSTVFSARSLGLTGELGASAQADYLSGLLIGHELTALAAVQRQRRNSVHLPTVVLIGNSQLCARYQRALDACGFARVTLAEQATERGLWQLAVAAGLLDSTASRPGPT0018080_268DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTONATE_DEGRADATION,PGPT0018080-dgoK-K00883NANA
D1-35_02085621dgoACOG08002-dehydro-3-deoxy-6-phosphogalactonate aldolaseATGCTCACCCAAGCACTGGCGCAAAACGGGCTGATCGCGATCTTGCGCGGCCTACGTCCCGAAGAGGCGGCCGCTATCGGCGAAGTCCTTTATGACGCCGGATTTCGCGTCATCGAAGTACCGCTCAATTCTCCTGAGCCGTACGAAAGTATCCGCATCCTGCGCAGCACGTTGCCCGCCGATTGCCTGATCGGTGCCGGCACCGTGCTCACACCGGAGCAGGTCGAGCAGGTGAAAGCGGCTGGCGGCCAGGTGATCGTCATGCCCCACAGCGATCCAAAGGTGCTGCGCGCGGCGAAAGCGGCGGGCCTGTACCTGTCGCCCGGCGTCGCCACGCCCACCGAAGCCTTCGCCGCGCTGGCCGAGGGTGCTCATGTGTTGAAGATGTTTCCGGCCGAGCAGATGGGCCCGGCAGTGGTGAAGGCCTGGCTTGCGGTGTTGCCGTCCGGGACCGTGCTGGTGCCGGTGGGCGGGATCACGCCGGACAACATGGCGGTGTTCATCGAGGCTGGCGTCAAGGGTTTCGGCCTCGGTTCCGGGCTGTTCAAGCCGGGCCTGACAGTGGACGAAGTGGCGGTGCGCGCCAAGGCCTACGTGGCCGCATGGAACGCTTTGAGCTGAMLTQALAQNGLIAILRGLRPEEAAAIGEVLYDAGFRVIEVPLNSPEPYESIRILRSTLPADCLIGAGTVLTPEQVEQVKAAGGQVIVMPHSDPKVLRAAKAAGLYLSPGVATPTEAFAALAEGAHVLKMFPAEQMGPAVVKAWLAVLPSGTVLVPVGGITPDNMAVFIEAGVKGFGLGSGLFKPGLTVDEVAVRAKAYVAAWNALSPGPT0018075_527DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTONATE_DEGRADATION,PGPT0018075-dgoA-K01631NANA
D1-35_020861149dgoDCOG4948D-galactonate dehydrataseATGAAAATCACCAAGTTGACCACCTTTATCGTTCCGCCGCGCTGGTGCTTCCTCAAGGTCGAGACCGACGAGGGCGTGACGGGTTGGGGCGAGCCGGTGGTCGAAGGCCGTGCCCACACAGTGGCGGCCGCCGTCGAGGAATTGTCCGACTACCTGATCGGCAAAGACCCACGCAACATCGAGGACATCTGGACCGTGCTCTATCGCGGCGGTTTCTACCGCGGTGGTGCCATTCACATGAGCGCGCTGGCCGGTATCGATCAGGCGTTATGGGACATCAAGGGCAAGGCCTTGGGCGTGTCGGTCAGCGATCTGCTGGGTGGCCAGGTGCGCGACAAGATCCGTGTGTATTCGTGGATCGGCGGCGACCGCCCGGCGGACACCGCCCGAGCGGCGAAGGAAGCCGTTGCACGGGGCTTCACTGCGGTGAAGATGAACGGCACCGAGGAGCTGCAATTTCTCGACACGTTTGAAAAAGTCGACCTGGCCCTGGCCAACGTGGCGGCGGTGCGCGATGCGGTCGGGCCGAACGTCGGCATCGGCGTGGACTTCCATGGCCGCGTGCACAAGCCGATGGCCAAGGTGCTGATGAAGGAGCTCGACCCTTACAAGTTGATGTTCATCGAGGAGCCGGTGCTCAGCGAAAACTACGAAGCGCTCAAGGAACTGGCACCCCTGACCAGCACGCCGATCGCCTTGGGCGAACGGTTGTTCTCGCGCTGGGACTTCAAGCGGGTGCTCAGCGAAGGCTACGTGGACATCATCCAGCCGGATGCCTCCCACGCCGGCGGCATCACCGAAACCCGCAAGATCGCCAACATGGCCGAGGCCTATGACGTGGCGCTGGCGTTGCACTGCCCGCTGGGCCCGATCGCGCTGGCGGCGTGCCTGCAGCTGGACGCGGTTTGCTACAACGCGTTCATCCAGGAGCAGAGCCTGGGTATCCATTACAACGAGAGCAACGACTTGCTGGATTACATCAAGGATCCGCAGGTGTTCGACTATGACAAAGGCTTCGTGAAGATCCCCAACGGCCCGGGCCTGGGCATCGAGATCAACGAGGAATACGTCATCGAGCGCGCGGCCATCGGCCACCGCTGGCGCAACCCGATCTGGCGCCATGCCGATGGCAGTTTTGCCGAGTGGTGAMKITKLTTFIVPPRWCFLKVETDEGVTGWGEPVVEGRAHTVAAAVEELSDYLIGKDPRNIEDIWTVLYRGGFYRGGAIHMSALAGIDQALWDIKGKALGVSVSDLLGGQVRDKIRVYSWIGGDRPADTARAAKEAVARGFTAVKMNGTEELQFLDTFEKVDLALANVAAVRDAVGPNVGIGVDFHGRVHKPMAKVLMKELDPYKLMFIEEPVLSENYEALKELAPLTSTPIALGERLFSRWDFKRVLSEGYVDIIQPDASHAGGITETRKIANMAEAYDVALALHCPLGPIALAACLQLDAVCYNAFIQEQSLGIHYNESNDLLDYIKDPQVFDYDKGFVKIPNGPGLGIEINEEYVIERAAIGHRWRNPIWRHADGSFAEWPGPT0002220_1457DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTONATE_DEGRADATION,PGPT0002220-dgoD-K01684NANA
D1-35_020871311dgoTD-galactonate transporterATGCAAGCGCACACCCTGAGCGCGCAGGCGTCGTTGGTGACGCCCAGCCGCAAGCGTTTTTTCATCATGGTCCTGCTGTTCATCACCGTGGTGATCAATTACCTGGACCGCAGCAACCTCTCGATTGCCGCCCCCGCACTGACCAGCGAACTGGGGATCGATCCGATCCATGTCGGGCTGATTTTCTCGGCGTTCGGCTGGACCTACGCCGCCATGCAAATTCCCGGTGGCTGGCTGGTGGACCGCGTGCCGCCACGCATTCTCTACAGCGTGGCGTTGCTGCTGTGGTCGGTGGCCACGGTGATGCTCGGTTTCGCTGCCAGCTTCATCGCGCTGTTTGTCCTGCGCATGGCCGTCGGCGCCCTGGAGGCGCCGGCTTATCCAATCAACAGCCGCGTGGTTACCACTTGGTTTCCCGAGCGTGAACGGGCCACGGCAATCGGTTTTTATACGTCCGGGCAATTTGTCGGCCTGGCATTCCTGACGCCGGTCCTGGCCTGGCTGCAGCATGCCTTCGGCTGGCACATGGTGTTCGTGGTGACCGGTGCCGTCGGCATTCTCTGGGCGGTGATCTGGTACGCGGTGTATCGCGAGCCGCGGGATTTCAAAGGCGCCAACGCCGCTGAAATCGAACTGATCCGCGAAGGGGGCGGGCTGGTGGATATCCAGGCCGAGACGGCCAAGGCCAAGGCGAAATTCAGCTGGACCGACCTTGGGATAGTCCTGACCCAGCGCAAGCTCTGGGGGATTTACCTGGGCCAGTTCTGCCTCAACTCCACGCTGTGGTTCTTCCTGACGTGGTTTCCGACCTACCTGGTGAAATATCGCGGCATGGATTTCATCAAATCCGGCTTGCTGGCGTCGCTGCCGTTCCTCGCGGCGTTTGTCGGCGTGTTGTGTTCCGGGTTCTTTTCCGACTGGCTGATCCGTCGCGGCGCCACGGTGGGGTTCGCGCGCAAGCTGCCGATTATTGGTGGTCTGTTGATTTCCACGGCAATCATCGGCGCCAATTTCGTCGAGTCGACGCCGCTGGTGATTGCATTCCTGGCCCTGGCCTTTTTCGGCAACGGCCTGGCGTCGATCACCTGGTCGCTGGTATCGACTTTGGCGCCGGCACGGCTGTTGGGATTGACCGGTGGGGTGTTCAATTTCATCGGCAACCTGGCGGCCATCGCCACGCCGATCGTCATTGGTTTTCTCGCCAGCGGCGATTCGTTTGCCCCGGCCATCACCTACATCGCCGTTCTGGCGTTGATTGGCGCGCTGTCCTACATCCTGCTGGTCGGGAAAGTCGAGCGCATCGAGTTGTAGMQAHTLSAQASLVTPSRKRFFIMVLLFITVVINYLDRSNLSIAAPALTSELGIDPIHVGLIFSAFGWTYAAMQIPGGWLVDRVPPRILYSVALLLWSVATVMLGFAASFIALFVLRMAVGALEAPAYPINSRVVTTWFPERERATAIGFYTSGQFVGLAFLTPVLAWLQHAFGWHMVFVVTGAVGILWAVIWYAVYREPRDFKGANAAEIELIREGGGLVDIQAETAKAKAKFSWTDLGIVLTQRKLWGIYLGQFCLNSTLWFFLTWFPTYLVKYRGMDFIKSGLLASLPFLAAFVGVLCSGFFSDWLIRRGATVGFARKLPIIGGLLISTAIIGANFVESTPLVIAFLALAFFGNGLASITWSLVSTLAPARLLGLTGGVFNFIGNLAAIATPIVIGFLASGDSFAPAITYIAVLALIGALSYILLVGKVERIELPGPT0002190_511DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_GALACTONATE_TRANSPORT,PGPT0002190-dgoT-K08194NANA
D1-35_02088804xynR_1COG1414HTH-type transcriptional regulator XynRATGCAGCAAGACGATCCAAAAATCACCAAGGACGCCGCGCCTACAGGCACCCAGACATTGCTGCGTGGCCTGGGCGTCGTCCAGGCGGTCGCCAGCGGCGCCCGTGACTTGAAGGAAATCGCCCGGCTGATCGGCACCACTCGCAGCACCACCCATCGCCTCGCCAGTTGCCTGGTGGACGAGCGTTATCTGCGCGTGGTGCCGCAAGTGGGCTATCTGCTGGGGCCGAAGCTGATCGAGCTGGGTTTCCAGGCGCGGGAAGAACTGCCGTTGGTGAGCCTGGCGGGGCCATACCTGGACGAGCTGTCGGCGCTCACCGGAGACACCGTCCACCTGGCGATTCGCGAGGGCGACGAGGTCCTGTACCTGTTGAAAAATCCGGGCCGCAACGGACCGGAAATGCGCTCACGGGTGGGCCACCGCATGCCGCTCGCGCGCACCGGGATCGGCAAGGCACTGATGCTCGATGACTCCCAGGAGCAATGGAAAAGGCTGTACGAGATCAGCCTTCCGGCGGGTGGGAAGAATCAGTTCTGGCCCCAGCATCAGGAGCAATCCTGGGAGCAGTTCCAGCAACGAATGGTGGAATACGTAGCAGGCGGCTATGCCTTCGACCTCGAAGACAACGAACCGTCGATTCGTTGCGTGGCGGCACCGATCCGCGACGCCGGCAAGCGTATCGTCGCCGGTATCAGCATCGCCAGCACCGTGCCGTACATGCCGCTGGAAAAGATGGCCGAGCTGATTCCCTTGGTCAAAGGCGTCACCGCGCGGCTGTCGGCGGAGCTGGGCGCCAAGGTCTGAMQQDDPKITKDAAPTGTQTLLRGLGVVQAVASGARDLKEIARLIGTTRSTTHRLASCLVDERYLRVVPQVGYLLGPKLIELGFQAREELPLVSLAGPYLDELSALTGDTVHLAIREGDEVLYLLKNPGRNGPEMRSRVGHRMPLARTGIGKALMLDDSQEQWKRLYEISLPAGGKNQFWPQHQEQSWEQFQQRMVEYVAGGYAFDLEDNEPSIRCVAAPIRDAGKRIVAGISIASTVPYMPLEKMAELIPLVKGVTARLSAELGAKVNANANANANA
D1-35_020891665COG0644Electron transfer flavoprotein-ubiquinone oxidoreductaseGTGGAACGCGAATACATGGAATTCGACGTGGTCATCGTCGGTGCCGGCCCCGCTGGCCTGTCTGCCGCTTGCCGACTGAAACAGAAGGCCGCCGAAGCCGGTAAGGAAATCAGCGTCTGCGTGGTCGAAAAAGGCTCCGAGGTCGGTGCGCACATTCTCTCCGGCGCGGTGTTCGAACCGCGTGCCTTGAACGAACTGTTCCCGGACTGGAAAGAACTCGGCGCGCCGTTGAACACGCCGGTCGTGCGCGATGACATTTATGTCCTGCGAAACGCCGAGGCGGCGAGCAAAATCCCCGACTTCTTTGTGCCCAAGACCATGCACAACGAAGGCAACTATATTATTTCCCTGGGCAACCTGTGCCGCTGGCTGGCCCAGCAGGCCGAGAACCTGGGCGTGGAAATCTACCCTGGCTTCGCCGCCCAGGAAGCGCTGTTCGATGAAAACGGCGTGGTTCGCGGCATCATCACCGGCGACCTGGGTGTCGACCGTGAAGGCAACCCGAAGGAAGGCCTCTACACGCCCGGCATGGAACTGCGTGGCAAATACACGCTGTTCGCCGAAGGCTGCCGTGGTCACATCGGCAAGCAACTGATCAAGCGCTTCAACCTGGACAGCGAGGCCGACACCCAGCACTACGGCATCGGTCTGAAAGAGATCTGGGAAATCGACCCGGCCAAGCATCAGCCTGGCCTGGTGGTGCATACCGCCGGTTGGCCGCTGGACATCATGGGCACCGAAAACACCGGCGGCTCGTTCCTTTATCACTTGGAAAACAATCAGGTGGTGGTCGGTCTGATCGTCGATCTTTCCTACAGCAACACCTTTCTGTCGCCGTTCGACGAGTTCCAGCGCCTCAAGCATCACCCGGTGCTCAAGCAGTACCTGGAAGGTGGCAAGCGCGTCAGTTACGGTGCTCGCGCCATCGCCAAGGGCGGCCTGAATTCGTTGCCGAAAATGGTCTTCAAGGGCGGCGCGCTGATCGGTTGCGACCTCGGTACGTTGAACTTCGCCAAGATCAAGGGCAGCCACACCGCAATGAAGTCGGGCATGCTCGCCGCCGAAGCAGTGGCTGATCGCCTGTTCGCCGAGTCCGAAGGCGGTGACGAACTGACCGCCTATGTCGATGGCTTCAAGAGCAGCTGGCTGTACGAAGAACTTTTCGCCAGTCGCAACTTCGGCGCAGCGATCCACAAATACGGCGCGATCGTCGGCGGCGGCTTCAACTGGCTCGACCAGAACATCTTCGGCGGCAAGATTCCGTTCACCCTGCGCGATACCAAGCCGGACTATGCGTGCCTGAAACTGGCGGCCGATTGCAAGAAGATCGACTACCCGAAACCGGACGGCAAGATCAGCTTCGACAAGCTCAGTTCGGTGTTCATCTCCGGTACCAACCATGAAGAAGAACAGCCTTGCCACCTGAAGCTGACCGACCCGAGCATCCCGATCGGCAAGAACCTGCCACTGTACGACGAACCGGCCCAGCGCTACTGCCCGGCCGGCGTGTATGAAGTGATCACCAAGGAAGACGGTGAGAAGCGCTTCCAGATCAACGCCCAGAACTGCGTTCACTGCAAGACCTGCGACATCAAGGACCCTGCACAGAACATCACCTGGGTCACGCCGGAAGGCGCCGGCGGACCGACCTACCCGAACATGTAAMEREYMEFDVVIVGAGPAGLSAACRLKQKAAEAGKEISVCVVEKGSEVGAHILSGAVFEPRALNELFPDWKELGAPLNTPVVRDDIYVLRNAEAASKIPDFFVPKTMHNEGNYIISLGNLCRWLAQQAENLGVEIYPGFAAQEALFDENGVVRGIITGDLGVDREGNPKEGLYTPGMELRGKYTLFAEGCRGHIGKQLIKRFNLDSEADTQHYGIGLKEIWEIDPAKHQPGLVVHTAGWPLDIMGTENTGGSFLYHLENNQVVVGLIVDLSYSNTFLSPFDEFQRLKHHPVLKQYLEGGKRVSYGARAIAKGGLNSLPKMVFKGGALIGCDLGTLNFAKIKGSHTAMKSGMLAAEAVADRLFAESEGGDELTAYVDGFKSSWLYEELFASRNFGAAIHKYGAIVGGGFNWLDQNIFGGKIPFTLRDTKPDYACLKLAADCKKIDYPKPDGKISFDKLSSVFISGTNHEEEQPCHLKLTDPSIPIGKNLPLYDEPAQRYCPAGVYEVITKEDGEKRFQINAQNCVHCKTCDIKDPAQNITWVTPEGAGGPTYPNMNANANANANA
D1-35_02090750etfB_1Electron transfer flavoprotein subunit betaATGAAGGTTCTTGTAGCTGTCAAACGAGTGGTCGACTATAACGTCAAGGTTCGCGTCAAGGCGGACAACTCCGGCGTCGACCTCGCCAACGTCAAGATGTCGATGAACCCCTTCTGCGAAATCGCCGTGGAAGAAGCCGTACGCCTGAAAGAGAAAGGCGTGGCAACCGAGATCGTTGTCGTCTCCATCGGCCCGACCACCGCCCAGGAGCAACTGCGCACTGCGCTGGCGCTGGGTGCCGATCGCGCCATCCTCGTCGAATCCGCCGAAGAGCTGACTTCCCTGGCCGTTGCCAAACTGTTGAAAGCCGTTGTCGACAAGGAACAGCCACAGCTGGTGATCCTCGGCAAACAGGCCATCGACAGCGACAACAACCAGACTGGCCAGATGCTTGCTGCGTTGAGCGGCTACGGCCAGGGCACCTTCGCTTCGAAAGTCGAAGTGTCCGGCGACAGCGTTGCCGTGACCCGCGAGATCGACGGCGGCGCGCAGACGGTTTCCCTGAAACTGCCAGCCATTGTCACCACCGACCTGCGTTTGAACGAGCCGCGTTATGCGTCCCTGCCAAACATCATGAAAGCCAAGAAGAAGCCGCTTGAAGTGCTGACTCCGGATGCTTTGGGCGTTTCCACCGCCTCCACCAACAAGACCCTGAAGGTCGAAGCGCCGGCTGCACGCAGCGCGGGCATCAAGGTCAAGTCGGTGGCTGAACTGGTCGAGAAACTGAAAAACGAAGCGAAGGTAATCTGAMKVLVAVKRVVDYNVKVRVKADNSGVDLANVKMSMNPFCEIAVEEAVRLKEKGVATEIVVVSIGPTTAQEQLRTALALGADRAILVESAEELTSLAVAKLLKAVVDKEQPQLVILGKQAIDSDNNQTGQMLAALSGYGQGTFASKVEVSGDSVAVTREIDGGAQTVSLKLPAIVTTDLRLNEPRYASLPNIMKAKKKPLEVLTPDALGVSTASTNKTLKVEAPAARSAGIKVKSVAELVEKLKNEAKVIPGPT0001035_4224DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0001035-fixA|etfB-K03521NANA
D1-35_02091930etfA_1COG2025Electron transfer flavoprotein subunit alphaATGACTATCTTGGTAATCGCCGAACACGATAACAAGGCGCTGGCTCCGGCCACGCTGAACACCGTTGCTGCCGCAGCCAAAATCGGTGGCGATCTGCACGTGCTGGTGGCCGGGCAGGGCGCAAGTGCCGTTGCCGAAGCTGCTGCAAAAATTGCCGGCGTGGCAAAAGTACTGTCGGCCGACAACGCCGCCTACGCACATCAGCTGCCGGAAAACGTTGCTCCGCTGGTGGCCGAGCTGGGCAAGGGCTACAGCCACATCCTGGCTGCCGCTACCTCCAACGGCAAGAACATCCTGCCGCGCGTGGCTGCCGCACTGGACGTCGACCAGATCTCCGAAATCATCTCGGTGGAAAGCGCCGATACTTTCAAGCGCCCGATCTACGCTGGCAACGCCATCGCCACCGTACAATCGACCGCTGCGATCAAGGTCATCACCGTGCGCGCCACCGGTTTCGACCCGGTTGCCGCCGAAGGTGGCTCGGCTGCCGTTGAAGCGGTAGGCGCTGCTCACGACGCCGGCATCTCCAGCTTCGTCAACGAAGAACTGGCCAAGTCCGACCGTCCTGAACTGACCGCTGCCAAGATCGTCGTTTCCGGCGGTCGCGGCATGCAGAACGGTGACAACTTCAAGCACCTGTACGCCCTGGCCGACAAGCTGGGCGCTGCCGTTGGTGCTTCGCGCGCCGCGGTCGACGCCGGTTTCGTGCCGAACGACATGCAGGTCGGCCAGACCGGCAAGATCGTTGCGCCACAGCTGTACATCGCCGTCGGTATCTCCGGCGCGATCCAGCACCTGGCCGGCATGAAAGACTCCAAGGTGATCGTTGCGATCAACAAGGACGAAGAAGCGCCGATCTTCCAGGTGGCCGATTATGGTCTGGTGGCTGATCTGTTCGAAGCCATCCCCGAGCTGGAGAAGCTGGTCTAAMTILVIAEHDNKALAPATLNTVAAAAKIGGDLHVLVAGQGASAVAEAAAKIAGVAKVLSADNAAYAHQLPENVAPLVAELGKGYSHILAAATSNGKNILPRVAAALDVDQISEIISVESADTFKRPIYAGNAIATVQSTAAIKVITVRATGFDPVAAEGGSAAVEAVGAAHDAGISSFVNEELAKSDRPELTAAKIVVSGGRGMQNGDNFKHLYALADKLGAAVGASRAAVDAGFVPNDMQVGQTGKIVAPQLYIAVGISGAIQHLAGMKDSKVIVAINKDEEAPIFQVADYGLVADLFEAIPELEKLVPGPT0001040_5001DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0001040-fixB|etfA-K03522NANA
D1-35_02092825hypothetical proteinATGGATCTTCGCCATTTGGCCGGTTGGTCGTTGTTGTGGGCATTGGCTTGCATGCCGGGCCTGTCTGTCGCCGCTGGCAAATGTGAGCGTCTGGTCGCCACTGGCAGCCCCGATGCGCCGCCTTATCTTTGGCAAGACTCCCAGGACCCCAAGCACCTGATCGGCGCTGGCGCCGACCTGCTGGAGGAGGTGGCTAAGGCGCTGGGCATCAAGATCGAGCTGCTCTACGCCGGCAAGCGTGCCCAGGCATTGGACGAGGTGCGCAGCGGGCGCATGGACCTGCTCACCGATGCTCCGCTGACCACGAACGGGCTGGACAGCCTCGATTACGTGCATCCGGCCTTGCTGGAAAATGATTACCTGGTCTGGACCCGCAAGGACTCGACGTTGCTCATCACCCGGCCCGAGGATCTTCATGGACATCCCGGAGCCTTGTCGGAGAAGGCCCGAATGACCCAGGGATTCAGCGTCTTTGCCGAGCAGAATCTAACCCTGACCCGGACACCCAACCTGACCCAGGCCTTTCAGAAATTGCTGCTGGGTGAAGTGGAATATGTCTTGGCAGGACGCTACTCGGGCATGGCGATGGCGCAGACATTGGGGATGGCCAACGATCTGCAGGCGGCACCGCAACCGGTGGATAAACCGGGATTGTTCCTCGCGGTTTCCCATAACTCCGCCTGCAACGATCCATGGTTGCGCGGACAGCTGGCGCAAAAGATGACAGAATTGGCCGCGTCCGGCCTGACGGAGGCTGTGTTGCAGCGCAATCTGGAGTGTTGGAGAACACAGTTGCAGCCACCTGTCAGTGCCCCAAAACCGTAGMDLRHLAGWSLLWALACMPGLSVAAGKCERLVATGSPDAPPYLWQDSQDPKHLIGAGADLLEEVAKALGIKIELLYAGKRAQALDEVRSGRMDLLTDAPLTTNGLDSLDYVHPALLENDYLVWTRKDSTLLITRPEDLHGHPGALSEKARMTQGFSVFAEQNLTLTRTPNLTQAFQKLLLGEVEYVLAGRYSGMAMAQTLGMANDLQAAPQPVDKPGLFLAVSHNSACNDPWLRGQLAQKMTELAASGLTEAVLQRNLECWRTQLQPPVSAPKPPGPT0020800_7740DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-35_02093360hypothetical proteinGTGACTATTCGACCTCTTTTCGCTGCCCTGGCCGTTCTGGCTCTGGCGGGTTGTGCAGCCGATCCGGCGCCGAATGAACAGCTGCGCCTGACTGAACAGGCCATCGAGCAGGCCCATGCGGTGGGCGCCACCGCCGATGACGTGCCTGAACTCAAACTCGCCGAAGAAAAATTCGCCCGCGCCAAGAGCAACATGGCCGACGAATCCTACAAGAAGGCACGCATGCGCGCCGAGCAGGCCGAGCTGGACGCGCGCCTGGCCGAAGCGAAGGTGCTCAGTCTCAAGCGCCAGGAGCAGTTGAACGTGCTCGATACTCGAATCAAGCGCTTGCGCAAACAGTTGAGGGATGATGCCCAATGAMTIRPLFAALAVLALAGCAADPAPNEQLRLTEQAIEQAHAVGATADDVPELKLAEEKFARAKSNMADESYKKARMRAEQAELDARLAEAKVLSLKRQEQLNVLDTRIKRLRKQLRDDAQNANANANANA
D1-35_02094810pal_7Peptidoglycan-associated lipoproteinATGAAGCCGTCCCATGTATGTGGCAGCCTGGTCCTCGCGGGCCTCGCCAGTTTGTATGGCTGCGCCGGGCAGCGTAGCGAAGCGGCGCTGGAACAGGCCAGTGCCAGCTTCCAGAAGGTCAAGGAAGACGCCAATGTCCTGCGCGCCGCGCCCAAGGATGTCATCCGCGCCGGCGAATCCCTGGCCCGGGCCGATCGCCTGTCCAGCTATTGGGGCAGCGGCGAGGATGTCCAGCATTACGCTTACCTGAGCCAGCGCTACAGCGAGATCGCGCGGGAACACAGCAATCAGTTGCTCAACGAAGAGCGCGCGGCGAAGCTTGAGCTGGAACGCCAGCGCCTGCAATTGGCCTTGCGCGAATCCAAGTTGCTGAGCGTCCAGCAGCAAGGCAAGTGGCTGGAAGAACAGATCATGGCGATGGCCACCACCCAGACTGATCGCGGCTTGGTGATGACCCTGGGTGACGTGCTGTTCGACACCGGCGAAGCGGAACTGAAGAACTCGGCCAACCGCGTGGTGCTCAAGATCGTGCAGTTCCTGCAGCTCAATCCCAAGCGCGTGGCGCGTATCGAGGGCTACACCGACAGCACCGGTGGCAAGCAGGAGAACCTCAAGCTGTCCCGTGATCGCGCGCAGGCGGTGGCGGACGTGCTGGTGGACCTGGGGATCGATGAAAAGCGCATTCAGGTCGAAGGCTACGGCGATCAATACCCGGTGGATGTCAACGCTTCCGAGCGTGGCCGGGCCCAGAATCGTCGTGTGGAAATCGTCTTTTCCGACGAGAAAGGCCAGCTCGGCGCCGCCCGCTGAMKPSHVCGSLVLAGLASLYGCAGQRSEAALEQASASFQKVKEDANVLRAAPKDVIRAGESLARADRLSSYWGSGEDVQHYAYLSQRYSEIAREHSNQLLNEERAAKLELERQRLQLALRESKLLSVQQQGKWLEEQIMAMATTQTDRGLVMTLGDVLFDTGEAELKNSANRVVLKIVQFLQLNPKRVARIEGYTDSTGGKQENLKLSRDRAQAVADVLVDLGIDEKRIQVEGYGDQYPVDVNASERGRAQNRRVEIVFSDEKGQLGAARNANANANANA
D1-35_020951443norG_3COG1167HTH-type transcriptional regulator NorGATGACCAACCTCCTGCTCTACCAACGTATTGCTCAACAGCTGGCTGAAGATATCCGGCGCGGTGTATATCAGCCCGGCGAACGCGTGCCGTCGGTGCGCAAGATGAGTTCGCAGCTCAACGTCAGCCATGCCACTGTGTTGCAGGCCTATGCCAACCTGGAAGACCAGGGGTTGATCCGGGCGCGGCCGCAGTCGGGTTACTACGTGCACCAGACGCCGGCCCTGACCGCGCCGACGCCGGACATCGCCCGGGTCGAGCGCCCCGGCCTGGTGACGCGCAGCAGCATCATCCAGCAGGTGTTGGTCGAGTCGCGTCGTGAGGGGGTCTTCCCGCTGGGCGCGGCGGTACCGAGCGTCGATTATCTGCCAGTGCGGGCGTTGCACCAGCAGTTGGCCAAGGTCACACGGTTTCACAGTCCGCGGGCCTTCAGCTACATGTTCAGCCCCGGCTTCGAGCCGTTACGGCGCCAGGTGGCGATTCGCATGCGTGATGCCGGAGTCGTGGTCGACCCCTCCGAAGTGGTGATTACCCATGGCTGCGTCGATGCGTTGCAAATGTCGCTGCGCGTGCTGACCCGGCCGGGGGACCTGATCGCCGCCGAGTCGCCGACCTATTACGGTTTGCTGCAGTTGGCGGATCTGTTGGGACTCAAGGTGATCGAGATCCCCAGCGATCCGGTCACCGGTATGAGCCTTGAAGCCTTGCAGCTGGCGGCCAACCAATGGTCGATCAAGGCGTTGGTCCTGACCACGCGCCTGAGCAATCCCCTCGGCGGCACGATGCCTGAGGAGCGGCAAAAGCAGCTGCTGCGCCTGGCGTCGGATTTCGACATTCAGATTGTCGAGGACGACATTTACGGCGAACTGATGTTCGAGCAGGGGCGTACCAAGGCACTCAAGGCGTACGACCGCCTGGATCGGGTGATCTACTGCTCGAGTTTTTCCAAGACCTTGTCGCCGGGTGTGCGCATCGGCTGGATGACCGCCGGCAAGTTCCAGCAAGAGATCCAGCGCCTGCAAACGTTCAGTACTCATTCGGCGTGCAGCGTCACGCAGATGGGCATCGCGGCGTACCTGGAAAACGGCGGCTACGACCGGCACCTGCGCTACATTCGCCAGGAGTACCGCAAGAACCTCAGCGCCTTTCAACTGGCTGTGCAGCAGTATTTTCCCGAAGGCACGCAAATGAGCCGTCCTACCGGGGGTTTCATCCTTTGGGTCAGCCTGCCGGGACGGGTCAATACCCAGGAGTTGCACGTGCGGGCGCTGCAACAGGGCATCAGCATCGCCCCCGGGCTGATCTTCAGTAACACCGAGCAGTTCAACCACTGCATTCGCCTGAACTGCGGAACACCCTGGAACCGCGAGGCAGAGCGGGCCCTGATGACGCTGGGGCTGTTGGCCACCCAGCTGTGCCAGGAGACCGCGAGCGGGCTCCTTTAAMTNLLLYQRIAQQLAEDIRRGVYQPGERVPSVRKMSSQLNVSHATVLQAYANLEDQGLIRARPQSGYYVHQTPALTAPTPDIARVERPGLVTRSSIIQQVLVESRREGVFPLGAAVPSVDYLPVRALHQQLAKVTRFHSPRAFSYMFSPGFEPLRRQVAIRMRDAGVVVDPSEVVITHGCVDALQMSLRVLTRPGDLIAAESPTYYGLLQLADLLGLKVIEIPSDPVTGMSLEALQLAANQWSIKALVLTTRLSNPLGGTMPEERQKQLLRLASDFDIQIVEDDIYGELMFEQGRTKALKAYDRLDRVIYCSSFSKTLSPGVRIGWMTAGKFQQEIQRLQTFSTHSACSVTQMGIAAYLENGGYDRHLRYIRQEYRKNLSAFQLAVQQYFPEGTQMSRPTGGFILWVSLPGRVNTQELHVRALQQGISIAPGLIFSNTEQFNHCIRLNCGTPWNREAERALMTLGLLATQLCQETASGLLNANANANANA
D1-35_02096405hypothetical proteinGTGGCGGCTGCGGCACAGGAAAAACCCGCGGCCAGCGCCACGAAGAATTCTGGCAAGGCACCCGCAGCGGTGAAAAAAGCCCCCGCGAAGAAAGCCGCGAATACCAGAAAAAAACGTGCCCCCGTCGCCTCCAAAAGCAAATCCGCTCGCGAAATTGCCAAGACCCGACTGCCACCGGCGAAGCTCGATTTGAGCTTGCCCAATGAAATGGTCGAGGAGCTGAAGCCCCCGGGAACTGTGCCGCTGCCCAAGCGTGAGCCGTTGTTGCCGCCCATGTTCGGCGATAAGCCTGGGCCGTTCCAACTCAACGGACGTTTGCTGAGCAATGAAATGCAGCTGCCGTTGCGCAACCAGGAGCGCAACGAAGTGGAAGGCGCAGCGCTGGAGTTCGAATTCAAGCAGTAGMAAAAQEKPAASATKNSGKAPAAVKKAPAKKAANTRKKRAPVASKSKSAREIAKTRLPPAKLDLSLPNEMVEELKPPGTVPLPKREPLLPPMFGDKPGPFQLNGRLLSNEMQLPLRNQERNEVEGAALEFEFKQNANANANANA
D1-35_02097255hypothetical proteinATGAAATGCCGCGAGGGCTGTGGCGCCTGCTGCATCGCCCCCTCCATCAGCTCACCCATCCCAGGGATGCCTCAAGGCAAGCCGGCGGGCGAGCGTTGCGTGCAGTTGTCGGTCGACAATCTGTGCCAGATATTCGACCGGGCCGATCGCCCTGCGGTGTGCTCGGCGTTTGAGGCTGACATCGAGGTCTGTGGCGACAGCAGCGAAGACGCCATTCGACTGATCGGTTGGTGGGAGCAAGTCACGGCAGCGTAAMKCREGCGACCIAPSISSPIPGMPQGKPAGERCVQLSVDNLCQIFDRADRPAVCSAFEADIEVCGDSSEDAIRLIGWWEQVTAANANANANANA
D1-35_02098609hypothetical proteinATGGGTTCGCTGCATCGTATGGCTGTGTTGTGTGGTTTGACCGTGTTGCTGGCGACGGCTACCGCCCAGGCTGAGGATTGGCAGGTTGCCAAGGAAAAGGACGGCATCAAGGTTTCACTCAGTGAAGTCAGCCTTTCCAAGTACAAGGCCTACCAAGGCGTGACCGTGATGAAGACCACCATGGCGAAGTTGCGCGCCTTGCAGGAGGACGTATCGGGTGCCTGTGCCTGGATTCATGAATGCAAGAGCCAGAAGCTGCTCAAGCACGAGGGCGACAAGAGCTGGACCTACACTCGATTCAACACGCCGTGGCCGGTTACGCCGCGTGACTCCGTGCTGGAAGTTACCACCGTCGAAGGCGCGGATGGCAGCCTGACCCGCAACCTCAAGGGCGTGCCTACTTACGCTCCTGAAGAAAAAGGTTTTGTGCGAGTGGCACAAGTCGACGGTTTCTGGAAATTCACTCCCAAGGGCGCGGATCAGGTCGAGGTGATTTACCAGGTCCATACCGAGCCGGGGGGCGACGTTCCGTCCTGGCTGGCTAACAAGTTCGTGGTGGATGCGCCGTTCAATACCCTGAAAGCGTTGAAAGAACGCGCCGAAAAATAGMGSLHRMAVLCGLTVLLATATAQAEDWQVAKEKDGIKVSLSEVSLSKYKAYQGVTVMKTTMAKLRALQEDVSGACAWIHECKSQKLLKHEGDKSWTYTRFNTPWPVTPRDSVLEVTTVEGADGSLTRNLKGVPTYAPEEKGFVRVAQVDGFWKFTPKGADQVEVIYQVHTEPGGDVPSWLANKFVVDAPFNTLKALKERAEKNANANANANA
D1-35_02099237hypothetical proteinATGCAAAAGTGGGAAATCACCTTCGTTGACGATCACGGCGAAACGATCGCCGAGCAGTTTGATTACGCCCAGGAGCCCACGATGGAACAAGCGGCACAACTGATTCAGGAAAAGCTGGTACCTCTCTCGAAAGAGCTGGACCTCAACGACCTGGAGGGCCGCACCGACGACCCCACGGTCAAGAGCCTGAAAACCCAGAACAGCATTGAGATCATCAGCATTAAACCGGTTTCATGAMQKWEITFVDDHGETIAEQFDYAQEPTMEQAAQLIQEKLVPLSKELDLNDLEGRTDDPTVKSLKTQNSIEIISIKPVSNANANANANA
D1-35_02100342hypothetical proteinATGAGCACAGCCTATCAAGAAGATGTCAGCACCAGCGTGTTGCGCCGCATGAAAGAAGGCGGTTTCGATTTCTCCCAATTCCATCCCATCGAGTTCTACGCCATTTTTCCCGACGAGGAACGGGCGCGCAGGGCGGCAGGTCATTTTCGGGGAGAATCGTTGAATGCGCAGATCAGCGCTCGGGAAGATGGAGCCTGGTCACTGGAACTGAGCCGGGTGATGTACGCCACTTATGACGATATCGGCGACTTCGAACTGAATTTCGAGGCGGTGGTTGAGCCACTGGGTGGCATCATTGAAGGGTGGGGCGTCAAGCAGGAGATCCGTCGCCTGCAGGCCTGAMSTAYQEDVSTSVLRRMKEGGFDFSQFHPIEFYAIFPDEERARRAAGHFRGESLNAQISAREDGAWSLELSRVMYATYDDIGDFELNFEAVVEPLGGIIEGWGVKQEIRRLQANANANANANA
D1-35_02101819hypothetical proteinATGGAAGGCGATTCATTGAAAGCTCTCATTGCGATCGGGGCGCTGCTGCTCAGCACGCCTCTATTTGCCGCGCAACTCGTGCTTGAACTGGGCACGCAGGCACGCACCTGGCAAACCGAGGAACTGCTCAAGCATCCTGAAGCTCGGACGGTTCGGATCAATGAAGATGTTTCCTACAAGAAACCCATGAGCTATCGCGCCGTACCCCTCACGGCGTTGTTGACTGGCGTCCAGCCGGATGACCACTTGCAGGCCGTGGCGCTGGATGGCTTTGCCGCGGAAATGCCCGCTGCACCGTTGCTCAACCAGAGTGGCGCCCGTGCGTGGCTGGCGATCGAAGACCCCGCAGCCCCCTGGCCGTCGCTGGGCGAGGGCAAGCGCAGTGCCGGGCCCTTTTACTTGGTCTGGACCGATCCCCAGGCGGGACATATCAGCCCCGAACAGTGGCCATACGCGCTGGCGAGCATCAAGCGCCTGTCCGCGGTGGCCGAGCGCTTCCCTGCCCTGCTGCCCGCCCCGGGCCTGGCCAAGGACGACCCGATCAATCAGGGTTTTGCGCTGTTCCAGAAAAACTGCCTGGCCTGCCACCGCCTCAACGGTGCAGGCGATGCCCAGTTCGGCCCGGACCTGAACATTCCCTTCAATCCAACCGAGTACTTCTCGGGGGATTTTCTCAAGCGTTACATACGGGATCCGCAGAGCCTGCGGCGCTGGCCTCAAGGGAAGATGCCGGGGTTCTCGGCGGCGGTGCTGCCGGATGCGGAGCTTGATTTGCTGGTGGGATATTTGAAGCATATGGCGGGACGCAAGCAGCCGTAGMEGDSLKALIAIGALLLSTPLFAAQLVLELGTQARTWQTEELLKHPEARTVRINEDVSYKKPMSYRAVPLTALLTGVQPDDHLQAVALDGFAAEMPAAPLLNQSGARAWLAIEDPAAPWPSLGEGKRSAGPFYLVWTDPQAGHISPEQWPYALASIKRLSAVAERFPALLPAPGLAKDDPINQGFALFQKNCLACHRLNGAGDAQFGPDLNIPFNPTEYFSGDFLKRYIRDPQSLRRWPQGKMPGFSAAVLPDAELDLLVGYLKHMAGRKQPNANANANANA
D1-35_0210296hypothetical proteinATGTTCAAACATTCGAAAGTTCGTCAAGCCGGACTCATTCTCTTTGCCACTACGCTGCTGTTGATTTTGCCGAACATTACCAAGGTCATCGGCTGAMFKHSKVRQAGLILFATTLLLILPNITKVIGNANANANANA
D1-35_021031206fadA_3COG0183Putative acyltransferaseATGACCCAAGCTTTGATTTTCGATGCATTACGCACGCCCCGCGGCAAGGGCAAGGCCGATGGCGCCCTGTATACCGTCAAGCCGGTGAACCTGGTCGCCGGCCTGCTCGACGCGTTGCGCCAGCGCATGGACCTGGACACCCGTCACGTCGATGACATCGTGCTCGGCTGCGTGACTCCGGTAGGCGACCAAGGCGCCGACATTGCCAAGACGGCGGCCCTGGTGGCGGGCTGGGACGTCAGCGTGGCGGGCGTGCAACTCAACCGTTTCTGCGCCTCGGGCCTTGAAGCGGTGAACCTGGCGGCGATGAAAGTGCGCTCCGGCTTCGAGGACCTGGTGGTGGCCGGCGGCGTGGAGTCGATGTCGCGGGTACCGATGGGCAGCGATGGAGGCGCGTGGGCGCTGGACCCACAATCGAACCTGCAGGGGCATTTTGTCCCCCAGGGCATTGGCGCGGACCTGATCGCTACCCTGGAAGGCTTCAATCGCGAAGAGGTCGATACCTTCGCGCTGCAATCCCAGCGCAAGGCCGCTCGGGCTCGGGACGACGGATCGTTTGCTAAATCCCTGGTGGCGGTGCGGGAACAGAATGGCATCGTGCTGCTGGAACACGACGAATTCATCCGTGGCGACTCGACCCTTGAAGGGCTGGGCAAGCTTCGGCCGAGTTTCGAGGCGATGGGCCAGATGGGTTTCGACGCGACGGCGTTGCGTGTCTATAGCCATGTCGAACGAATCAATCATGTGCACACCCCGGGCAACAGCTCGGGCATCGTCGACGGCGCGGCGCTGATGCTGATCGGCACCGAGGCAAAGGGCCGCGAGCTGGGCCTGGAGCCCCGGGCGCGAATCGTCGCCACTGCGGTCACCAGCACCGAGCCGACCATCATGCTCACTGGCCCGGCCCCGGCCACCCGCAAGGCCTTGGCGAAAGCCGGGTTGCGGGTGGAAGACATCGATCTGTTCGAGGTCAACGAAGCCTTCGCCTCGGTGGTGCTCAAATTCATCAAGGACATGGCCATCGATCCCGCAAAGGTGAATGTCAACGGCGGTTCTATCGCCATGGGGCACCCACTGGGTGCCACCGGGTGCGCAATTCTTGGCACTTTGCTCGATGAGCTGGAGGCGCGTCGCCTGCGTTACGGCCTGGCGACGCTGTGTGTCGGCGGCGGAATGGGCATCGCCACCATCATCGAACGCCTCTGAMTQALIFDALRTPRGKGKADGALYTVKPVNLVAGLLDALRQRMDLDTRHVDDIVLGCVTPVGDQGADIAKTAALVAGWDVSVAGVQLNRFCASGLEAVNLAAMKVRSGFEDLVVAGGVESMSRVPMGSDGGAWALDPQSNLQGHFVPQGIGADLIATLEGFNREEVDTFALQSQRKAARARDDGSFAKSLVAVREQNGIVLLEHDEFIRGDSTLEGLGKLRPSFEAMGQMGFDATALRVYSHVERINHVHTPGNSSGIVDGAALMLIGTEAKGRELGLEPRARIVATAVTSTEPTIMLTGPAPATRKALAKAGLRVEDIDLFEVNEAFASVVLKFIKDMAIDPAKVNVNGGSIAMGHPLGATGCAILGTLLDELEARRLRYGLATLCVGGGMGIATIIERLPGPT0008320_4601DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626NANA
D1-35_021042145fadJ_2COG1024Fatty acid oxidation complex subunit alphaATGACCGAAGCCATTCGTTACGAAACCGGCCAGGACCGGATCGTTCTCCTGACCCTGGACATGCCGGGCCAGATCAGCAATACCATGAACGCGACCTATCGCGAGGCGATGGCCGCCTGCGTGGCGCGTCTGTTGGCCGAAAAAGATTCGATCGCCGGGGTGATCATCACCTCGGCCAAAAAAACCTTTTTTGCCGGTGGCGACTTGAACGAGCTGGTCAGGATAGACCCATCCGAGGCCCAGGCGTTCTATCAGATGGTCCTGGGGCTGAAAGCGCAACTGCGCGCCCTCGAAACCCTCGGTGTACCCGTCGTCGCGGCGATCAATGGTGCGGCCTTGGGCGGCGGCTGGGAAATCTGCCTGGCGTGTCATCATCGCGTAGCGCTGGACCATCCATCGGTGCAGATCGGCTTGCCGGAGGTCACCCTCGGCTTGCTGCCGGGCGGTGGCGGTGTGGTGCGGATGGTGCGGGTGCTGGGTTTGGAAAAGGCTTTGCCGTATCTGCTCGAGGGCAAGCGACTTGGCCCGCAGCAGGCGTTGCAGGCCGGCTTGATCGACGAGCTGGCGGCGGATCGCGACGAGCTGCTGGCCAAGTCCCGAGCCTGGATTCTCGCCCATCCAGATGCAATCCAACCTTGGGATGTGAAGGGGTATCGGCTTCCAGGCGGGACCCCGTCCGACCCGAAGGTCGCCCAGATGCTGGCGATCGCGCCTTCGATCCTGCGCAACAAGACCCAGGGCTGCCTGCCGGCCCCGGAAAAGATTCTCTGCGCTGCGGTAGAGGGCGCGCAGGTGGCGTTTGACGCGGCGCATCTGATCGAGACGCGCTATTTCACCGAACTCGCCACGGGACAAGTGGCGAAGAACCTGATCGGCACCTTCTGGTTTCAACTCAACGAAATCAAGGCCGGCAGATCCCGCCCACAGGGTGTTGTGCCTTATCTGACAAAAAAAGTCGGCGTGCTCGGTGCAGGCATGATGGGCGCCGGTATCGCCTGCGTCAGCGCGGTGGCCGGCATCGACGTGGTGCTCAAGGACATCGACCTGGCCGCCGCACAGAAGGGCAAGGCACGCTCGGCGGCGTTGCTGGACAAAAAAGTCGCGCGCGGCCAACTCACCGAGGAACAACGCGACGCCACGCTGGCGCGGATTCACCCTACCGACAACGATGCCGAGCTGGCCGGTTGCGACCTGATCATCGAGGCCGTCTTTGAAGACCGTTCCCTGAAAGCCAAGGTATCGTCAGCAGCCCAGGCGGCAGCGGGGCCTGAGGCGGTGATCGCTTCCAACACCTCGACCCTGCCCATCACCGGCCTGGCCGAGGCGGTGTCGGACGCGAGCAGATTCATCGGGCTGCACTTCTTCAGTCCGGTGGAAAAAATGCCGCTGGTGGAAATCATCAAGGGGGTCGGGACCAGTGATGAAACCCTGGCCCGGGCTTTCGATTTTGTCCGGCAGATCGACAAGACGCCCATCGTGGTCAACGACAGCCGGGGTTTTTTCACTTCGCGGGTGTTTGGCACCTTCATCAACGAAGGCATTGCGATGCTCGGCGAGGGCGTGAGTGCGCCGATGATCGAAACCGAAGCGCGCAAAGCCGGGATGCCGGTCGGGCCCCTGGCTGTTTCGGACGAAGTTTCCCTCGGTTTGATGAGCCATATCCGCGCTCAAACCGCCAAAGACCTGCACGCAGAAGGGAAAGCGCCGACAGAGCATCCTGCATTCGCCGTGATCGACCTGCTGCTTGATGAGTACAAACGACCAGGCAAAGCGGCCGGAGCCGGTTTTTATGACTATCCAGCCCAAGGGCAGAAGCATCTCTGGCCGGAGCTCAAGAGCCGTTTCGAGAAAGCCGATGGGCAAATCCCCGCGCAGGATATCCGCGATCGCCTGCTGTTCATCCAGGCCTTGGAAACTGTTCGCTGCGTAGAGGAAGGCGTCGTCACTTCGACGCCGGATGCCAATGTCGGCTCGGTATTCGGCATCGGTTTCGCGGCCTGGACAGGTGGGACGTTGCAGTTCATCAACCAGTACGGTTTGCCGGCATTTATCGCTCGTGCCCAGTACCTGGCCGAGCAATATGGCGAACGTTTCTCACCGCCGGCCCTGTTGCTGGAAAAAGCCGCCAGCCGGGCGACGTTCTGAMTEAIRYETGQDRIVLLTLDMPGQISNTMNATYREAMAACVARLLAEKDSIAGVIITSAKKTFFAGGDLNELVRIDPSEAQAFYQMVLGLKAQLRALETLGVPVVAAINGAALGGGWEICLACHHRVALDHPSVQIGLPEVTLGLLPGGGGVVRMVRVLGLEKALPYLLEGKRLGPQQALQAGLIDELAADRDELLAKSRAWILAHPDAIQPWDVKGYRLPGGTPSDPKVAQMLAIAPSILRNKTQGCLPAPEKILCAAVEGAQVAFDAAHLIETRYFTELATGQVAKNLIGTFWFQLNEIKAGRSRPQGVVPYLTKKVGVLGAGMMGAGIACVSAVAGIDVVLKDIDLAAAQKGKARSAALLDKKVARGQLTEEQRDATLARIHPTDNDAELAGCDLIIEAVFEDRSLKAKVSSAAQAAAGPEAVIASNTSTLPITGLAEAVSDASRFIGLHFFSPVEKMPLVEIIKGVGTSDETLARAFDFVRQIDKTPIVVNDSRGFFTSRVFGTFINEGIAMLGEGVSAPMIETEARKAGMPVGPLAVSDEVSLGLMSHIRAQTAKDLHAEGKAPTEHPAFAVIDLLLDEYKRPGKAAGAGFYDYPAQGQKHLWPELKSRFEKADGQIPAQDIRDRLLFIQALETVRCVEEGVVTSTPDANVGSVFGIGFAAWTGGTLQFINQYGLPAFIARAQYLAEQYGERFSPPALLLEKAASRATFPGPT0001870_1311DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0001870-fadJ-K01782NANA
D1-35_02105735hypothetical proteinATGTCGTTACGCATCTGCATTCTGGAAACCGATATCCTGCGTCCGGAACTGGTCGAGCAATATCAGGGTTACGGGCAGATGTTCCAGCGCCTGTTTTCGCAACAGCCTATTGCGGCCGACTTTGTCGTGTACAACGTGGTGGAAGGGCAATACCCCAGCGATGACGAGCAATTCGACGCCTATCTGGTGACCGGCAGCAAGGCCGACTCCTTCGGCAGCGACCCTTGGATCCAGACCCTCAAGACCTATCTGATGGACCGCTACCAGCGTGGCGACAAACTGCTGGGCGTCTGCTTTGGTCATCAGTTGCTGGCCTTGTTGCTGGGCGGCAAGACCGAGCGCGCCAGCCAGGGATGGGGGGTTGGCACCCATCGTTACAAACTCGCGGCAAAGGCGCCCTGGATGAGCCCGGTGATGGAGGAACTGACTTTGTTGATCAGTCATCAGGACCAGGTTACCGAGCTGCCGGAAAATGCCACGGTCATCGCCTCAAGCGATTTCTGCCCATTCGCGGCCTATCACATCAATGATCAGGTCCTGTGCTTCCAGGGCCACCCGGAATTCATCCATGATTATTCCCGGGCCTTGCTGGAGATTCGCCAGCAACACCTCGGCGAGCAGATCTACAGCCAGGGCGTGGCGAGCCTTGAACAGGAGCATCACGGCACGACGGTAGCGGAGTGGATGATGCGTTTCGTCGCCCACAAACCCCAAGCTGAAGCCGCCCAAGGCTGAMSLRICILETDILRPELVEQYQGYGQMFQRLFSQQPIAADFVVYNVVEGQYPSDDEQFDAYLVTGSKADSFGSDPWIQTLKTYLMDRYQRGDKLLGVCFGHQLLALLLGGKTERASQGWGVGTHRYKLAAKAPWMSPVMEELTLLISHQDQVTELPENATVIASSDFCPFAAYHINDQVLCFQGHPEFIHDYSRALLEIRQQHLGEQIYSQGVASLEQEHHGTTVAEWMMRFVAHKPQAEAAQGNANANANANA
D1-35_02106972corACOG0598Cobalt/magnesium transport protein CorAATGGGTAGAGTCGTTGCTGCTGCGGTTTACAGCGCCGGTAAGAAAGTCACCAATATCACCCTCGACGAAGGCAGCGCCTGGGCTGCAAAACCAGGACATTTTGTCTGGATCGGCCTCGAAGAGCCCAGCGCGCTGGAACTGACCAACCTGCAACGCCAGTTCAACCTGCATGAACTGGCAATTGAAGACGCCATGGAGAAACATAGCCGTCCCAAGCTGGAGACGTTTGGCGATGCGCTGTTCATCGTCACTTATTCACCGGTACGCGAGAACGGCAAGCTGCAATTCATCGAGACCCATATCTTCGCCGGCAAGGGCTATATCATCACCGCTCGCAACGGCCACTCGGCGTCCTACGCACATGTCCGGCAGCGCTGTGAGGCGCGTCCCATCTTGCTGGAGCATGGGGAGGATTTTGTCCTCTACGCCATCCTCGATTTCGTCATCGAGAACTACCAGCCCGTCGGCGAAGCCATCCACACCGAGATCGATGAACTGGAGCGCAACGTACTGTGCAGCGCCTTGAACGAGCGCGATATCCAGAACCTGCACAGTCTGCGCCGCGACGTGCTACGCCTGCGTCGTTATGCGGCACCTATGGTGGAGATCAGCGAAGAGCTGCAGCGCCTGGACTTTCCGTTCATCGACAAGAACATGAGTCCATATTTCCGCGATGTGCAGATTCATGTCACCCGGCAGATGGAAGACCTGGCGACGCTGGCGGACATTGCCAGCCAGACTATCGAGATCGGCGTGTTGCTGGAAGCCTCGCGCCAGAGCGTGGTGCAGCGCAAGTTCGCAGCGTGGGCGGCGATCCTGGCGTTTCCAACGGCGGTGGCCGGGATCTACGGGATGAACTTTGAAAACATGCCGGAGTTGACCTGGCACTACGGGTATTTCCTGGTGCTCGGGTTTATCGGGGTGGGGTGTACGTCGTTGTGGGCGAGTTTCAAGCGATCGGGATGGTTGTAGMGRVVAAAVYSAGKKVTNITLDEGSAWAAKPGHFVWIGLEEPSALELTNLQRQFNLHELAIEDAMEKHSRPKLETFGDALFIVTYSPVRENGKLQFIETHIFAGKGYIITARNGHSASYAHVRQRCEARPILLEHGEDFVLYAILDFVIENYQPVGEAIHTEIDELERNVLCSALNERDIQNLHSLRRDVLRLRRYAAPMVEISEELQRLDFPFIDKNMSPYFRDVQIHVTRQMEDLATLADIASQTIEIGVLLEASRQSVVQRKFAAWAAILAFPTAVAGIYGMNFENMPELTWHYGYFLVLGFIGVGCTSLWASFKRSGWLPGPT0014010_2982DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-MAGNESIUM_TRANSPORT,PGPT0014010-corA|yfjQ-K03284NANA
D1-35_02107783plsCCOG02041-acyl-sn-glycerol-3-phosphate acyltransferaseTTGCCGAAAACAGTGCACATCCGTACACTGCGCCACCTTTTGTCCCGATGGGGCCTGTTGATGTTGTTTGCACTGCGTATGTGTTTGATGGGCCTGCATTTTATTTTGGCGGGTGTGCTGGGCGTGATCCTGGGTCTGTGCCGGCCGTTCAATCCTGACAACAGTCGTATATGCGCCAGGTTATACGCGCTGCCTGCGATGTGGTTTCTACGCCTGCGGGTCAAGGCAGAGGTCGACACGCTGATCAACAAGACTCACGGCTGCGTGATCATCGCCAATCATCAGTCCAACTACGATCTTTTCGTGTTCGGCAACGTGGTGCCGCGTCGTACCGTGTGCATTGGCAAGAAGAGCCTGAAGTGGGTGCCGTTGTTCGGCCAACTCTTCTGGCTGGCGGGCAACGTGTTGATTGATCGCGGCAATGCGATCAAGGCGCGCAAATCGATGCTGACCACCACCCATACATTGCAGCATGAAAACACGTCCATCTGGGTGTTCCCGGAAGGGACGCGCAATTTGGGGGAAGACCTGTTGCCCTTCAAGAAAGGCGCGTTCCAGATGGCGATTGCCGCCGGGGTGCCGATTATCCCGGTGTGCGTCAGCACTTATATCAAGCATATGCGCCTGGATCGCTGGCACGCCGGTGACATTCTCATTCGTTCGCTGCCAGCCATTCCTACCGCTGGCCTGAGCATGGATGACATGCCCCGCCTCATCGCCCAATGCCGCGAACAGATGCGTGAATGCATCGAGACGATGGACCGGCAACTGCGCGTCGCGTAAMPKTVHIRTLRHLLSRWGLLMLFALRMCLMGLHFILAGVLGVILGLCRPFNPDNSRICARLYALPAMWFLRLRVKAEVDTLINKTHGCVIIANHQSNYDLFVFGNVVPRRTVCIGKKSLKWVPLFGQLFWLAGNVLIDRGNAIKARKSMLTTTHTLQHENTSIWVFPEGTRNLGEDLLPFKKGAFQMAIAAGVPIIPVCVSTYIKHMRLDRWHAGDILIRSLPAIPTAGLSMDDMPRLIAQCREQMRECIETMDRQLRVAPGPT0024380_4438DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_ACYLTRANSFERASE_ACTIVITY,PGPT0024380-plsC-K00655NANA
D1-35_02108690fadB_2Fatty acid oxidation complex subunit alphaATGAGCGACCTGATTGCCTACCATCTCGAAGACGGTATCGCGACCCTGACCTTGAACAATGGCAAGGTCAATGCCATTTCGCCTGATGTGATCGTCGCATTCAACGCTGCGCTGGACCAGGCAGTGTCTGATCGCGCGGTGGTGATCATTACCGGGCAACCGGGGATTCTGTCGGGCGGTTACGATTTGAAGGTGATGACCGCCGGCCCCAAGGAGGCAGTCAGTCTGGTCGCGTCTGGCTCGACCCTAGCCCGTCGTTTGTTGTCGCACCCCTTCCCCGTCGTTGTCGCCTGCCCTGGGCATGCGGTGGCCAAGGGTGCGTTCCTGCTGCTGTCGGCGGACTACCGCATTGGTGTGGAGGGGCCGTTTACCATCGGGCTGAACGAGGTGCAGATCGGCATGACCATGCACCACGCCGGTATCGAGCTGGCCCGTGATCGCTTGCGCAAGTCTGCGTTCCACCGCTCGGTGATCAATGGCGAGATGTTCAATCCGCAGAGCGCCGTGGACGCTGGTTTCCTCGACAAGGTGGTCGCGGCTGACGAGTTGCAAGCTGCAGCACTGGAGGCAGCGCGTCAGTTGAAGAAGATCAACATGACCGCCCACAAGAATACCAAGCTCAAGGTTCGCAAGGCCTTGCTGCATGCATTGGACAGCGCGATTCTGCTGGATCAGGAATACACGGGCTGAMSDLIAYHLEDGIATLTLNNGKVNAISPDVIVAFNAALDQAVSDRAVVIITGQPGILSGGYDLKVMTAGPKEAVSLVASGSTLARRLLSHPFPVVVACPGHAVAKGAFLLLSADYRIGVEGPFTIGLNEVQIGMTMHHAGIELARDRLRKSAFHRSVINGEMFNPQSAVDAGFLDKVVAADELQAAALEAARQLKKINMTAHKNTKLKVRKALLHALDSAILLDQEYTGPGPT0001860_8280DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0001860-paaF|echA-K01692NANA
D1-35_02110150hypothetical proteinATGAAAACCATAGAGCGGTACAGTCCGCCCTCCGCGGACGCATTGGCGCGCCTGAAAATCAATCTCGGCTATACCAGCCAGCAAACGGCCGAACTGGTAGGGCTGGCTCAGGGTGGGCAATGGGGCAAGTACACGGGTGGCGCGAGCTGAMKTIERYSPPSADALARLKINLGYTSQQTAELVGLAQGGQWGKYTGGASNANANANANA
D1-35_02111198hypothetical proteinATGCGGGAATTCGGTATGAGCGGCGCAGAATTGGAAAAGGTCCATGTCGAAATTGCTAAATTGATGGCTGAGACCAAAAAGCTCAACGCCGAAGCGGGCAAGATGACCCGCGAAACGTTCTGGTACCCAGTCGCGGTTGCCACCGGCCTGATCGGTACAGTGGCCACCGTCACCACGCTGCTAATCAAATTCGTCTAAMREFGMSGAELEKVHVEIAKLMAETKKLNAEAGKMTRETFWYPVAVATGLIGTVATVTTLLIKFVNANANANANA
D1-35_021121041uvsEUV DNA damage endonucleaseATGACTCACCCACGAATCGGCTTCGCCTGCCAATACCGGCACCCTGATCGCGGCCTCGCAGCGAGTGCATTAAAGACCATCGAAGCGCCATACAACCCCCGCACCACGACGTTACGCTGGATGGATGGCGTCCCTCTCCAGGTCGCCCGCGACAAGCTGCTTGAAGTCGTGGCGCACAATCTCGACGCACAACTGCGCCTCATCGCCTACGTTGCCGAGCTTGCGCCGACCCTGCGCATGCTCCGACTGAGCAGTGATCTGTTGCCGTTCTACAGTCATCCGAAGGTGAGTGCTTTCTATCAGGACCCGGTCATTCAAAGCCAGCTGGAAGAACGCTTCGCTGTGATTGGCAACCTCGCGCGTTCGGCGGATATCCGGCTGTCCTTCCACCCTGGCCAGTATTGTGTGTTGGGCTCGGATAAACCGGGTGTGGTGGAGAACAGCATCGCCGAGTTCGAGTACCACGCCGACATGATCCGGATGATGGGCTACGGTCGGCGCTTCCAGGACTTCAAATGCAACGTGCACATCGCCGGGCGCCTCGGGGGCGAGGGGATCCGTTCGATCTGGCCGCGATTGTCGGAGGTGGCGCGCAATTGCATCACCTTCGAAAACGAGGAGAAGACCTACGGCGTCGATGATTGTCTGCAACTGGCTGACCTTGCCCCCGTCGTGCTGGATATCCACCACTGTTGGATCAACGAGAACGATTACATCGCACCGGACTCCCCGCGAGTCGATCGCATCATCGAAAGTTGGCGTGGAGTTCGGCCAACCATGCATTATTCACAGCCGCCGGAGCGATTGCAGGAATTGGGTTTCGATGCAGGCAAAAAGCTTGAGATGGATGCGTTATTGAAGGTGGTGTCCAAACGTGACTTGTACGGTCACAGTGACCAGATGTGGAATCGCTGGACCAACTCATACGCGCTCAAGTTTCTGGACCGTTTCGACATCATGTTGGAGGCGAAAGACAAGAATCTGGCTGCGCAGGCATTTTATGAAGATGTCGCTCGGCCTTATCTTCATCCCTGCGTATAGMTHPRIGFACQYRHPDRGLAASALKTIEAPYNPRTTTLRWMDGVPLQVARDKLLEVVAHNLDAQLRLIAYVAELAPTLRMLRLSSDLLPFYSHPKVSAFYQDPVIQSQLEERFAVIGNLARSADIRLSFHPGQYCVLGSDKPGVVENSIAEFEYHADMIRMMGYGRRFQDFKCNVHIAGRLGGEGIRSIWPRLSEVARNCITFENEEKTYGVDDCLQLADLAPVVLDIHHCWINENDYIAPDSPRVDRIIESWRGVRPTMHYSQPPERLQELGFDAGKKLEMDALLKVVSKRDLYGHSDQMWNRWTNSYALKFLDRFDIMLEAKDKNLAAQAFYEDVARPYLHPCVNANANANANA
D1-35_02113498hypothetical proteinATGACTACATGGAAAAGTTTGGCCTGGCGTGCCCAGGTTGTTGTCTTGGCGTTAATGCTTTCCACGAACACCTCCTGGGCTTCGGGAAACACTCAAGAGGCCAATACGAATCTGGTCCGCCAGGCATTCGCGAACTGGCAGCAGGGCAAAGGCACGGTCTTCGACCTGCTGGCGCCCGATGCGGTCTGGACAGTCGCGGGATCGAGCCCGGTTTCCGGCGTGTATTACGGCAAGACCGAGCTGATCGAACAGGCCGTGCGGCCGATCAGCGCCCGACTGGCGACGCCAATTTCCCCCATGTTACAGAGCATCGTCGCCCAGGACGACATTGTCGTTGTCCTGTGGAACGGCACTGCGACAGCCCTCGATCAAAAACCCTACAACAATACCTACCTGTGGCAACTGACCTTCAAGGATGGCCGGATCACTCAGGCAATGGCCTTCCTCGACACCTACGCGTTGAATGAGCTCATGCGCCGGGTAACGCCTGCGCAGTAGMTTWKSLAWRAQVVVLALMLSTNTSWASGNTQEANTNLVRQAFANWQQGKGTVFDLLAPDAVWTVAGSSPVSGVYYGKTELIEQAVRPISARLATPISPMLQSIVAQDDIVVVLWNGTATALDQKPYNNTYLWQLTFKDGRITQAMAFLDTYALNELMRRVTPAQNANANANANA
D1-35_02114816hypothetical proteinATGTCCCCACACCAGAGCCTGGTGCTACTTGCCCGAGGCGGTTATGCCGCTCGTGGCGTTATTTATCTCATCGTCGGCATTCTTGCCTTGCTCGCGGCCCAGGACTCCACCAAACCGAAGGACAGTCACAAAAGCCTTGAAATGCTGCTGAGCCAGCCCTTCGGCCATGCCTTGGTCGGCCTGGTAGTAGCGGGCCTGCTTGCCTTCGCCGGCTGGCGCATCTTGCAAGCCACGCGCGACGTTGATCATCACGGTACGCAGTTCAAGGGCCTGGTGATTCGCGCCGGGTTGCTGGCGAGCGGCCTGGTCAATGGCGCGCTGGCATTCTTTGCCTTGGGCCTGCTGATCAGCGGCTTGAAAAGCTCCGGGAATTCCGGCGGTGGGCAAACCCAGGACCTGCTGGCGCGCGTCCTGTCCTGGGACCATTCGAACCTGTTAGTTTACCTCGTCGCGCTGGTGCCACTGGGCGTCGGCATTGCCCACATCATCAAAGGCTGGAAGGCCTCGTTCGAAAAATATTTCGAGGCTGACGAAGAAGTGATGCGTTATGTGCGGCCGGTATCGCGCTTCGGCCTGATCGCCCGCGGGGTGGTGTTTATCGAGATCGCCGTGCTGCTGATCATCAGCGGCTCGACCTATAAAGCCGTGGACCCGCCCGGAATGAAAGATGCCCTCGATGCGTTGCAGAATCTGCCGGCCGGAGGCTTGGTGTTGATGGTGATGGCCCTGGGGCTGATTGCCTTTTCGGTCTACAGCTTTTCCGAGGCGGCATGGCGCAAGATCAATATGGATGTGCCAGGAGTGGTGCACACATAGMSPHQSLVLLARGGYAARGVIYLIVGILALLAAQDSTKPKDSHKSLEMLLSQPFGHALVGLVVAGLLAFAGWRILQATRDVDHHGTQFKGLVIRAGLLASGLVNGALAFFALGLLISGLKSSGNSGGGQTQDLLARVLSWDHSNLLVYLVALVPLGVGIAHIIKGWKASFEKYFEADEEVMRYVRPVSRFGLIARGVVFIEIAVLLIISGSTYKAVDPPGMKDALDALQNLPAGGLVLMVMALGLIAFSVYSFSEAAWRKINMDVPGVVHTNANANANANA
D1-35_02115843hypothetical proteinATGACGACTATAAATACGTCAAATGCTACTCAGGTAACAACCGTCACCCTCAAACCCAACTCCATCAAAAGTGACGCGGACACGGCCAGCTCCGCGGCGCCGTTACCGGCGATCGAGAGCAAACCCTTCCTTTCAGACCAGGCAAAAATACTCTCGTCCTTATACACCTCTGCAAGCGATTATTTGAAGACCGAACACATGGAGCCTTTCCCCGGAATAGTGAAAGGCTACATCGCTCCTTCCGGCTATATAAACGTTGAAAAATACAACGCCTATCTGTTCGACAAGGCTGCGACCACTATGGTCGCAGCGGCCATGGATAAAGGCATCCCCTTGGACAAGGAAGAAGTCCTGGCCCAGTTGAAAGGTGATCATTCTGATATAGCCGCTATAACACTTGACGACCCGCATCGAAAAGCCAAGCTGGGGGAAAACAGTGTTTTCACCGACTTGACGCTTTCCGATCTGGGCAACATGACTGACGTCTACATCACAGCTAAAGAGAATGGGCTGGACCTTGAGGAAGTAGGAGGGCTTGCTCTGGACAGAGCGATCCAAAACCACTACGGAGAAACCTTGCAAGAAAGTGATATCTACCCTAGCGGCTGGGATTTTACAGAAACAGACCCGGATAAAATCGCTGCCGCCGTCAATTGGCTACCGGAATCATTCACCAGCGGGGCCGACGAGATAAGAAACAAGATCCAAGGTGATTTGGGGTTGGGCAGTGATTTCATAGACTTCCTGCTAAACCCCAGACTTGGACTTAGGGGAGCCACCGACGCTTCTCTTGATTTCTTATCGAAGCTGGTCGATATATACAACAAACAGAAGCAAGCTTAAMTTINTSNATQVTTVTLKPNSIKSDADTASSAAPLPAIESKPFLSDQAKILSSLYTSASDYLKTEHMEPFPGIVKGYIAPSGYINVEKYNAYLFDKAATTMVAAAMDKGIPLDKEEVLAQLKGDHSDIAAITLDDPHRKAKLGENSVFTDLTLSDLGNMTDVYITAKENGLDLEEVGGLALDRAIQNHYGETLQESDIYPSGWDFTETDPDKIAAAVNWLPESFTSGADEIRNKIQGDLGLGSDFIDFLLNPRLGLRGATDASLDFLSKLVDIYNKQKQANANANANANA
D1-35_02116438hypothetical proteinGTGAAAAAATTGATCCAAGTGTCTGCCGGTATCGTCGCAGTGGCCCTGAGCCAAACTTCTTTTGGTGCAACATCCAACTGGACACAAACCCGCTTGGCGCCTAGCGTGTACGGCCCGAGCTCCGAGAATTCTAACTTTTTCTCGACTCCGCTCGATATCCCCTTGGGAGCTACGATAACATCCGTATCCTGGAATATCGGGCTCTACAAACACGGAGCCACGACTCAGCTATATAAGGTCTGCTATGCGGCCCGCTACTCTACTGTCTACGACAAGTGCACGGACTCCGTACCGATTCTTGCCAACGCAACCGAATTTTTTTATGGACTGGATGCCAAGGGAAAATTCAAGATAACAGGAATTCTGTTTGGCGGGACCTACCCTGCTTATCCGTCCCATAGCAACTCAATCACCGCACACTATCGAAGCCCACGATAAMKKLIQVSAGIVAVALSQTSFGATSNWTQTRLAPSVYGPSSENSNFFSTPLDIPLGATITSVSWNIGLYKHGATTQLYKVCYAARYSTVYDKCTDSVPILANATEFFYGLDAKGKFKITGILFGGTYPAYPSHSNSITAHYRSPRNANANANANA
D1-35_02117351COG10522-ketogluconate reductaseATGCATTCTGCGTTCGCCGCCGCCGACAAAGGTGAAGCGATCATTAATGCCGAGGTGCTACGTGCCTTGGGCAAGGGCGGTTACCTAATCAACGTGGCCCGAGGCAAACTGGTCAACGAGCCGGACCTGGTAGCCGCCCTTGCCACCGGTGACATTGCCGGTGCCGCGCTGGATGTGTTTATCGATGAGCCGAACGTGCCTGAAGCGTTGTTTGGTAATGAGCAAGTGGTGCTGCAACCGCACAGGGCGAGCGCGACGCTGCAGACCCGCACGCGAATGGGCGAAATGGTGGTGGCGAGCCTGGTGGACAGTTTTGCTGGAAAAGTCCCTCAGGGGTGCGTGACGGGTTGAMHSAFAAADKGEAIINAEVLRALGKGGYLINVARGKLVNEPDLVAALATGDIAGAALDVFIDEPNVPEALFGNEQVVLQPHRASATLQTRTRMGEMVVASLVDSFAGKVPQGCVTGPGPT0001315_9DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-VITAMIN_C|ASCORBIC_ACID_BIOSYNTHESIS,PGPT0001315-2_ketogluconate_reductase-K22229NANA
D1-35_02118333hypothetical proteinATGGATATACTCACGCCATCCCGCTTTGACGACGCTGCGATTCTGTACCCGAACGAGAGGGCTGGGCTTGAGCGCTGCCTGCGCATTTTGAGAATGGCGCGCCCCAAGGAATTCGCAGACCTGCAAAAGCTTTTCGGTACGCACGGTGTCGACTTGTTCAAGCCAAGAGCCGCAATGAATTGGGTTGTGATTGATGTAGGCGGCAATAATCTCAGGGTGATAGGCGGCGTTAACTACGCGCGGCAGAAGTTCTACGTCAAACACGTCTACACGCATGCCGATTACGACGTCGCCAACGTCTGGTATGCAAGAAACAAAGGGACAAAACGATGAMDILTPSRFDDAAILYPNERAGLERCLRILRMARPKEFADLQKLFGTHGVDLFKPRAAMNWVVIDVGGNNLRVIGGVNYARQKFYVKHVYTHADYDVANVWYARNKGTKRPGPT0027570_60DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-HigB-HigA_TOXIN-ANTITOXIN_SYSTEM,PGPT0027570-toxin_higB-K19166NANA
D1-35_02119486hypothetical proteinATGAGCGCAGCCCGGAACGACTTTCAAACGGTGATCGCAACGCTTGGCGAGCTTTACGCGATACTGGATCGCCTGCGGGGTGAGTTTGTGCACGGCATCAAGACCCCGGCCGACTACGAGCGCGCGACCGATTTGCTCGATGAGCTCACCGATGGGCGTGGGCTGAGCAAGACCGAGGAAAGGATTCTCGCTGAGCTTGAAGAGGAAATCCTGGCGTACCAGCGTGATTCCGACCAGTTTCGCGAATCGAACGCTGCTTTTGAGGCAACCTGCACCCCGGTGCAACTGATCAAGGACCTTATGGAGACGCTCGGGCTCACTGGCTCAGACCTTCCTGAAATCGGTGATAAAACCGCGGTGTCCAAGGTGCTCAATGGCGATCGCCCCATCAGTCACAAGATGGCTTATGCGCTGGCTGAGCGGTTTGCGATGGAACCGAGCGCTTTCTTGTCGGCTGGTCCTGCAAAGGAGCCGGATAAGAGGTAGMSAARNDFQTVIATLGELYAILDRLRGEFVHGIKTPADYERATDLLDELTDGRGLSKTEERILAELEEEILAYQRDSDQFRESNAAFEATCTPVQLIKDLMETLGLTGSDLPEIGDKTAVSKVLNGDRPISHKMAYALAERFAMEPSAFLSAGPAKEPDKRPGPT0027580_336DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-HigB-HigA_TOXIN-ANTITOXIN_SYSTEM,PGPT0027580-REGULATION_higA-K18831NANA
D1-35_02120966ytfFInner membrane protein YtfFATGATGCGGGTCCGCTCGAACCTCATCGTCGGATTGGCCCTCGCGGTAGTCGCGACGCTGAGCTGGGCGCTGAACTTCATTGCGCCCTACGTCACCGGGGCCTACACAATCTATGATTTGATGATCGTACGATTCCTGATCGCCGGAGCGCTGGGCCTGGGTGTCGTGCTGCTCTACCGGGCCCGACTTCGGCTCCTGCGCCTCGATCAGGTGCTCCTGGCCGCTGGCCTGGGTGTGATCGGCTATCTCGGCTATAGCGCATGCATCGCCGCCGGTATCATTTTTGGTGGGCCGGTGCTGACCCCGGCCTTTATTGGCATGGTGCCGGTCTTGCTGGCACTGCTGGGCAACGCCACGACCAAAACTCTCCAGTGGAGCAAACTGGCGATCCCACTGGTTTTCCTGACCGTGGGCCTGCTGCTGTCCAATCTCGGCGCTGTCCATCAACCCGTTGCAGGCCAGGGTTCCTGGCTGATGGGTTTGCTGTTTTCTATCGGTGCCGTGATCTTGTGGCTCGCGTTCAGTTGGTTGAATCAACGCGCCTTGCTGAAGCTATCGCCCAACGCCTCGGGCGTATGGACAGGCCTCATGATGGCGGGTGCGGGAATCGGCACCGTGTGCCTGTTACCGGCGATACAAGCGTTCGACCTGCTCGAACTGCCGCGCGTGGGTTTCAGTTTTTCCGTTGCAGGGCACTTGTACCTCTGGAGTTTCGTTATTGCGCTGATGTCATCCTTCGTCGGTGCCTGGGCCTGGAACGCCGCGTCCCGGCGCCTGCCCATGGTGCTTTCCGGGCAGTTGATCGCCCTGGAATCGCTGTTCGCGACACTGCTTGGCTTGTGGTTTCATGGCCGGCTGCCGACGCTACTGGAGATGTCGGGGCTTGCTGCCGTGCTTGTCGGGGTGATCATGGCGGTGCGTATCATTCTGGTTTCGCGTGGATCGACAGTGGCCCGTGTCCCTTGAMMRVRSNLIVGLALAVVATLSWALNFIAPYVTGAYTIYDLMIVRFLIAGALGLGVVLLYRARLRLLRLDQVLLAAGLGVIGYLGYSACIAAGIIFGGPVLTPAFIGMVPVLLALLGNATTKTLQWSKLAIPLVFLTVGLLLSNLGAVHQPVAGQGSWLMGLLFSIGAVILWLAFSWLNQRALLKLSPNASGVWTGLMMAGAGIGTVCLLPAIQAFDLLELPRVGFSFSVAGHLYLWSFVIALMSSFVGAWAWNAASRRLPMVLSGQLIALESLFATLLGLWFHGRLPTLLEMSGLAAVLVGVIMAVRIILVSRGSTVARVPNANANANANA
D1-35_02121342hypothetical proteinGTGAAGAAGCCTTATATCGCACTTGTTACGCTGCTGTTTTTTACCGTTTACACGGCGTGTACGTTGTTGCTCGCCGAGCAATCGCTCTTGGCGTTCGGCGTCAGACTCATGTCCAGCGCAGACACCGCGCAAGTAGTCATCGACCTTTATCTGCTCGCCTGCATGGCGTGCATCTGGATGTACCGGGACATACGCGCAAGAGGCAAATCGCTCGTATCGTTGCTACCTTACATCCTGATCACGGCCATCTTCGTATCAATCGGTCCGTTGCTGTACATCGTTGTTAACGGATTTGGACGTCAATCGCCGGTGACGGTTGCACCTGCTCATCCGCCGTCTTGAMKKPYIALVTLLFFTVYTACTLLLAEQSLLAFGVRLMSSADTAQVVIDLYLLACMACIWMYRDIRARGKSLVSLLPYILITAIFVSIGPLLYIVVNGFGRQSPVTVAPAHPPSNANANANANA
D1-35_02122600hypothetical proteinTTGGAGCAATGCAACGGCATCTTTCTCGCCAGCGGCTACGCCCCTCGCTACGAAACGACACCGCTCACGTCGTCGTCAATGGAAGTGGTACGTGATGCCATTGATCATATCCTTAATGCCAATAATCCCGCGCCGGCGATTGTTCTGGGCGCTCAATGGGACATCCTTGCAGCCAACGCCAGCGCGGGTGTCCTGTTCGATCTGGTGGGTCTTGCCAGGGATGCCGCGGATGGACTCAATCTCTTGGTGACACTGCTGCAACCCGGCGGCTTGGGCGACCATCTGAGCAACGCCGAGGAAATAAGATTAGTGGCCTGGCAACGGGCATCTCGGGAAGCCTTGAACAATCCCGCATTGGCTGGGATTCTGAAGAGTCTGCCGACTCCACACAGCGCTTCGGCGCTGGCTGACGATCTGCCTCCGTTGTTATTGACGCAGGTCGAGTCGCCCCATGGCGAGCTGACGTTCATGTCAACATTCACCACTTTTGGCATGCCGCTCGACATCACGATGAGCTCGTTGCGTATCGAGCATCTCATTCCTGCCGACGCCAAGACCTGGAAGGTCATGACCAAGGCGTACGAGCAGACGCAACGCTAAMEQCNGIFLASGYAPRYETTPLTSSSMEVVRDAIDHILNANNPAPAIVLGAQWDILAANASAGVLFDLVGLARDAADGLNLLVTLLQPGGLGDHLSNAEEIRLVAWQRASREALNNPALAGILKSLPTPHSASALADDLPPLLLTQVESPHGELTFMSTFTTFGMPLDITMSSLRIEHLIPADAKTWKVMTKAYEQTQRNANANANANA
D1-35_02123816dapF_1Diaminopimelate epimeraseATGCAACCGACACTCAATCTCAACTTCCAAAGAATGCACGCCAATGGCGACGATTTTGTCATCGTCGATTCGCGAAACTCGCCCAGTCCGGTGACCAGTGCGATAGCCCGGCGGATGGGGGATCGGAACCGCGGCGTGGGCTTCAATCAACTCGCGGTGCTGCTCGATTGTGAAGATGCCGATGCGCGGGTGGTGTTCTGGAACGCAGATGGCTCCGCGCTGGATGTGTGTGGCAGCGCGACGCGCGGGGCGGCGGACCTGCTCATGCGCGAAGCCAATGTTGCTTCGGTAGCGCTACGCACCAACCGCGGTCTGTTGATCTGCGAGCGAACGCCAAACGGCGACATTTGCGTCGACATGGGCGTGCCACTTTGCGGCTGGTCGGACATTCCCCTGTCGCAGGAACTGGACTCCACCGTTTTGCCCCTTGCCGGTAGTCCAGCCGCGTGCAGCATGGGCAACCCGCATTGCACATATTTTGTCGACGATCTGGCTGACGTTGATATCGCCACTATCGGACCAGCCATCGAAACCCACCCGCTATTTCCACTCAAGACCAATGTTCATTTCGTCCAGGTCGTTGATCGCACGCATATCCGATTGCGCATCTGGGAGCGCGGGGCGGGCATTGCGCTGGGTTCAGGTTCTTGCTCGTGCGGCGCGGTTGTCAACGGAATCCGTCGTGGACTGCTGGACAGTACCGTCGAAGTTGAATGTGATGGCGGAAACGTGACGGTGCAATGGGACGGCGTGGGTTCGGTCTTTCTGATCGGGCCGGTGGAGGCAAGCTTCTCAGGGACAATGAGTCAAGCTTGAMQPTLNLNFQRMHANGDDFVIVDSRNSPSPVTSAIARRMGDRNRGVGFNQLAVLLDCEDADARVVFWNADGSALDVCGSATRGAADLLMREANVASVALRTNRGLLICERTPNGDICVDMGVPLCGWSDIPLSQELDSTVLPLAGSPAACSMGNPHCTYFVDDLADVDIATIGPAIETHPLFPLKTNVHFVQVVDRTHIRLRIWERGAGIALGSGSCSCGAVVNGIRRGLLDSTVEVECDGGNVTVQWDGVGSVFLIGPVEASFSGTMSQAPGPT0007230_4122DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007230-dapF-K01778NANA
D1-35_02124816hypothetical proteinATGAATTTCTTCAAGAAGCTCTTCGGTTCATCAAAAGCCCCTGAAACCCAGGACGCGCAGCCAACGCCGCAGGTCCACGAGCTCGGCGACCTGACCGAGGCAGAAGCAGCCAATCTGGCCATCCGGGAAGCGGGTGAAGCGTGCCTGGATCGTCATTGGCGCGCTGTCGGCACCGTCGAGCGGGATGTCCTTGCCTATATGATCAGTCCAACCTTTTCCGGTGGCCCTTACTGGCCCTCCACCCGCCAGGCCTACCGCGTGGTTCGCCGTGGCGACACGATCATTCTCGCCACGGAAGGCCTGTCGGATCCGTTCGATGATACGGAAGGAATGGGCAACGGTTTCGAAATGGAGCTGTTCGTCGAAACTGCGGATATACCCGAGCACGCCTATGGCCCCGTGGGTGAGGTCGATCCTTTCAAGCGCAGCTGGGCGTTCGAACTTGTGGAGCATGTTGCCAGGACGGTCGCCGACGCGGGCGGCATCACGCACCAGCTTGATCAGTACGGGGCGCTGTCCCTGGAGATTCCCGGGTTCAGTCAATCGCACCCTATGAGCGAGCAACTGCCCAAGCTCTTCGTAACGGATGATGATTGCACCGGGGTCCTGCTGGGAGCCCCCGAGCCGGACTTCTCTACCCGAGTGGAGGATATGCCCCTGTCACCGGTCAGATTGGTGCCGGTGGTGTTGATCACCGCGGCGGAGCTGGAGTACGTGCGTTCCGGTGGGCGAGCGGCGCGGGAGGATCTGGTGAGCCGTTTGCAGGAGGCAGGCATCGGACATATGAGCAGCCTGCATCGGGCGAGTGTGGTGTGAMNFFKKLFGSSKAPETQDAQPTPQVHELGDLTEAEAANLAIREAGEACLDRHWRAVGTVERDVLAYMISPTFSGGPYWPSTRQAYRVVRRGDTIILATEGLSDPFDDTEGMGNGFEMELFVETADIPEHAYGPVGEVDPFKRSWAFELVEHVARTVADAGGITHQLDQYGALSLEIPGFSQSHPMSEQLPKLFVTDDDCTGVLLGAPEPDFSTRVEDMPLSPVRLVPVVLITAAELEYVRSGGRAAREDLVSRLQEAGIGHMSSLHRASVVNANANANANA
D1-35_02125303hypothetical proteinATGGAATTGATCGAAATATTCAAAGCGCTCTCGAACCCTACACGCCTTCAGATCCTGAAAGGTCTGAAGGATCCCGCAAAGAACTTCCCTCCGCAGGATGAAGGTGACGTTCATACGGTGGGAGTCTGCGTCAGCAGTATTCAAGAAGGTATCGGACTGTCGCAGTCGACGGTGTCCGGTTATCTTGCGACGTTGCAACGAGTGGGGTTGGTCGAAGTCAGGCGCATCGGTCAGTGGACTTACTACAAGCGCAATGAAGCAGCCATCAGCGCGCTTGCGGAGATCATAGGGACAGAACTGTAAMELIEIFKALSNPTRLQILKGLKDPAKNFPPQDEGDVHTVGVCVSSIQEGIGLSQSTVSGYLATLQRVGLVEVRRIGQWTYYKRNEAAISALAEIIGTELNANANANANA
D1-35_02126975Zinc-type alcohol dehydrogenase-like proteinATGAAAGCGATGGTACTCAAGTCATTTGGCGGGTCGGGTTCGTTCGAGCTTCATGATGTGCCCAAGCCTGTGCCGCAGGCAGGACAAGTCCTGGTCCGGGTACATGCAACCTCCATCAATCCGTTGGATTACCAGGTTCGACGCGGCGACTATCCCGACCTGGTGCAACTGCCGGCCATTACCGGCCACGATGTATCGGGCGTTGTCGAAGAAGTTGGGCCGGGAGTGACCAACTTCGCTCCGGGCGATGAAGTCTGGTACACCCCGCAAATATTCGACGGGCCAGGAAGTTATGCCGAGTACCACGTCGCTGCCGAGAGCATCGTCGGGAAGAAGCCAGCCTCGCTGAGCCATCTTGAGGCGGCGAGCCTGACCCTGGTTGGCGGGACGGTATGGGAAGCATTGATCGTGCGTGCGGCGCTCAGAGTGGGAGAAAGCATTCTGATACACGGCGGCGCGGGAGGCGTCGGCCATGTGGCGATCCAGTTGGCAAAAGCCATGGGAGCACAGGTATTCACCACCGTGCGCGAGGCAAACGCCGAGTTCGCACGCAGCATGGGCGCCGATGTGATCATCGACTACGAAAAACAGGATTATGTTGAAGCCGTCATGCGAGAAACGGGTGGCCGCGGTGTGGATGTCGTGTTCGACACCATCGGCGGCAACACATTGTCACGCAGCCCTGACGTGCTCGCACAACTTGGCCGCGTCGTCACGATCGTCGACATTTCACAGCCACAGAACGTCGTTCAGGCCTGGGGCAAGAACGCGAGTTATCACTTCGTTTTCACCAGACAGAACCGCGGCAAACTCGATGAGTTGAGCGCATTGGTAGCGCGAGGTCTGCTGCGGCCACATGTCGGCGCCGTCTATTCGCTGGCCGACATCGGGCTCGCCCATGCCCGGCTGGAAAGTCCAAACAATGGCATTCGAGGAAAAATCGCGATCGCAGTCGAGCCGTCGCTCATCGCGTAAMKAMVLKSFGGSGSFELHDVPKPVPQAGQVLVRVHATSINPLDYQVRRGDYPDLVQLPAITGHDVSGVVEEVGPGVTNFAPGDEVWYTPQIFDGPGSYAEYHVAAESIVGKKPASLSHLEAASLTLVGGTVWEALIVRAALRVGESILIHGGAGGVGHVAIQLAKAMGAQVFTTVREANAEFARSMGADVIIDYEKQDYVEAVMRETGGRGVDVVFDTIGGNTLSRSPDVLAQLGRVVTIVDISQPQNVVQAWGKNASYHFVFTRQNRGKLDELSALVARGLLRPHVGAVYSLADIGLAHARLESPNNGIRGKIAIAVEPSLIAPGPT0013255_7537DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
D1-35_02127342hypothetical proteinATGATTTACGAGATCGCTCTGCTCCCGGTTCACAAAGAACGCATTGAAATGTTCAGACGAGCATTTGCCGAGGTCGCCCCTTTGCTCACCCGAGCAAAGGGCTACGGCGGCCATTTGCTGGCGCAAGGGATTGAAACCCCCGAGCAATTCAACCTGATCGTGCGATGGCAATCGCTTGAGCATCACACACCGGGTTTCGAAGAGAGTGAAGACCACCGGCTGTTCATGCTGGGCTTGGAGGAATACTTTTCGCAAGAGCCGAGGGTCTACCACATTGAGGGGGCGGCTTTTTTTATCGGTGAAGGTGCTGATCCAGGCGGCGCCGTCAGCCGGGGAATCTAAMIYEIALLPVHKERIEMFRRAFAEVAPLLTRAKGYGGHLLAQGIETPEQFNLIVRWQSLEHHTPGFEESEDHRLFMLGLEEYFSQEPRVYHIEGAAFFIGEGADPGGAVSRGINANANANANA
D1-35_021282190rcsC_9Sensor histidine kinase RcsCATGACAGATTGGCTCCAGAGCTACGGAGAAATGGCTGAACGGGTCCGCCGCCATGACTGGGACAGCACGCCACTCGGGCCGCCCGCACAATGGCCCGATGTGCTGAAGACGACCGTGGCGCTGAGCCTGGCTTCGCATTTCCCTCAGGCCATCGTCTGGGGACCGGACTTGATCACGTTATACAACGATGCGTTCATGCCCATTCTCGGCAGCAAACCCGAGGCGCTGGGGCGGCCGTTCAATGAGGTCTGGCGGGAGGCCTGGAGCGAGATCGGCCCTATCGTGGGGGCGGCTTTCGATGGACAGGCGACGTTTATCGAGAACTTTCCCCTGGTGATCGAGCGCGGTGGTGGTCCTGAACAGGCCTATTTCACCTTCTGCTACAGCCCTATCCGCGACCAGTTCGGCAAAGTGGTGGGCATGCTCGACACGGTCACCGAGACCACTGCGACTGTATTCATGACCCAGCGCCTGGCGGTGCTCGATGCAATCGGCAGCGCCGTGGCGAATGCCACCGATCCACAGGCGATCATGGCGGCCACCGCCCGGATCCTGGCGGCGCACCTCAACCTGTCCAACTGCGCATACGCAGACATGGACGAAGACGAGGACGGCTTTACGATTCGCGGCGATTGGGCCCGGGCCGGGTCGCCGAGTATCGTCGGGCACTACCGACTGGCGGATTTCGGTCGGCTGGCGGTCGCCAACCTGGGCGCCGGCAAGCCGCTGGTGATCAATGACAACCTCGCGGAGTTGGCACCGGAGGAGGCGGCAGCGTTCCAGTCGATCGGTATTGCGGCGACTATTTGTGTTCCGTTGATCAAGAATGGACGGTTGACCGCCCTGATGGCCATCCACGACAAAACGCCCCGGATCTGGTCGTCCAACGATCTGGCGCTGCTGCTGGAAGTCACCGAGCGATCCTGGGCGCACATCGAACGTGCTCGGGCGGACGCGGCCGTGCGCGAAGGCCTCGCCGCCCTGGCCGAACTGAACGCAACGCTGGAGCAACGGGTCGAGGAGCGCACTACACGATTGAGGCAGACCGAAGCGGCGCTGCACCAGTCGCAGAAACTCGAAGCCATCGGCCAGCTCACCGGCGGCGTGGCCCACGATTTCAACAACCTGCTGACGATCATCCGCTCCTCTGTCGATTTCCTGCGCATGCCCAACCTGTCCGACGAGCGCCGGCAACGCTACATGACCGCCGTTTCCGAGACGGTGGAACGTGCTTCGAAGCTGACCAGCCAACTGCTGGCGTTTGCCCGGCGCCAGCCGTTGACGCCGGAAATCATCGACGTGCGCAAGCAGGTACAGAGCCTCGGCGACATGCTGGAGACCGTGACCGGGGCGCGTATTCACGTCAAGGTCGAACTGTGCGAGCAGCCTTGTTACATCCGCGCCGACCTGAGCCAGTTCGAAACGGCGTTGATCAACATGGCCCTGAACGCCCGGGATGCGATGAACGGCCAGGGAACGCTGTGGCTACGGCTCAATTGCGGTGCAGGCATGCCGCCGATCCGCGGCCATTCCGGGGCAGGGCAGGCATTTGCCGCGATTGCCCTGGAAGACACCGGCACGGGTATTGCCCCGGAGGCACTTGAACACATCTTCGAACCGTTCTTCACCACCAAGGAGGTGGGCAAGGGAACGGGGTTGGGATTGTCCCAGGTGTTCGGTTTTGCCAAGCAGTCTGGCGGCAATGTCGATGTCTCTACCGTGGTCGGAAAGGGCAGCGTGTTTACTTTGTATCTCCCGGAAGTGGAGCCCGAGGAGCAGCATGAACCCGAGGGAGAGGAAAACTCTCTGCTGGTGCTGGAAAAAGGCCGGCACCGGGTATTGGTAGTGGAAGACAACCTGGAAGTAGGGCGCTTTGCCAACCAGATCCTGCAAGACCTCGGATACGAAACGGCCTGGGCGACCAATGCCGAACAGGCGCTGGAAATGGTCGGCCCGGATGCGATGGCGTTCGACGCGATATTTTCCGACGTGGTCATGCCGGGCATCAGTGGCATTGCCCTGGCCAGGCAACTGCGCCAACGCCGCAAGGATCTGCCGGTGGTGCTGACCTCCGGCTACAGCGAGGAGCTGGCCCACAGCGGGCATGAAGGTTTCGCGTTTTTGTCCAAGCCTTACTCGGCCGATCAGGTTTCCCGGGTTTTAAACCAGACGCTGTTGGGCTCGGACTGAMTDWLQSYGEMAERVRRHDWDSTPLGPPAQWPDVLKTTVALSLASHFPQAIVWGPDLITLYNDAFMPILGSKPEALGRPFNEVWREAWSEIGPIVGAAFDGQATFIENFPLVIERGGGPEQAYFTFCYSPIRDQFGKVVGMLDTVTETTATVFMTQRLAVLDAIGSAVANATDPQAIMAATARILAAHLNLSNCAYADMDEDEDGFTIRGDWARAGSPSIVGHYRLADFGRLAVANLGAGKPLVINDNLAELAPEEAAAFQSIGIAATICVPLIKNGRLTALMAIHDKTPRIWSSNDLALLLEVTERSWAHIERARADAAVREGLAALAELNATLEQRVEERTTRLRQTEAALHQSQKLEAIGQLTGGVAHDFNNLLTIIRSSVDFLRMPNLSDERRQRYMTAVSETVERASKLTSQLLAFARRQPLTPEIIDVRKQVQSLGDMLETVTGARIHVKVELCEQPCYIRADLSQFETALINMALNARDAMNGQGTLWLRLNCGAGMPPIRGHSGAGQAFAAIALEDTGTGIAPEALEHIFEPFFTTKEVGKGTGLGLSQVFGFAKQSGGNVDVSTVVGKGSVFTLYLPEVEPEEQHEPEGEENSLLVLEKGRHRVLVVEDNLEVGRFANQILQDLGYETAWATNAEQALEMVGPDAMAFDAIFSDVVMPGISGIALARQLRQRRKDLPVVLTSGYSEELAHSGHEGFAFLSKPYSADQVSRVLNQTLLGSDNANANANANA
D1-35_02129186hypothetical proteinATGGGAGCACCGTACAGCGAGGAGAACGGAGCCGCGTATCCGATCAATGAAGGGTTGCAGTGTGGGCAATCGGCCTATCGGTCGGATTTTGGTGACGAGCCAATCAAGTCAATCCGGACCAGGGTGGCCAAGGTGCCGCGGGGTGAGAAGGCCAAATTCTTGCCCAGGGTCCCGCTCAGCAAATAAMGAPYSEENGAAYPINEGLQCGQSAYRSDFGDEPIKSIRTRVAKVPRGEKAKFLPRVPLSKNANANANANA
D1-35_02130411hypothetical proteinATGCGTTTGACTTTGTCCACCTTGGTGCTTGGGCTTGTGTTCGCTCAGGGCGCGATGGCCGCTGGCGACGGTACCGCTGCGGTTGGCGGTGGCTTGGGCGGTGTTCTGGGGAACGTGGTCGGCCAGCAGATGGGCGGCAGCACAGGCGCGGCGATTGGCGCCGGTGTCGGCGGTGCAGCCGGCAGTGCGGTCGGGGCTCGCAAGGGCAGCCGTACGGAAGCGGCCATCGGTGGTGGTCTGGGATCGGCCGGTGGTTCGATTGTTGGCAATCGCCTGGGCGGGTCCACGGGCTCGACCATCGGCGCGGGCGTCGGTGGGGCGGCAGGCGGCGCATTGGGCAGCAACCTGTCCAACGATAACGACGGACATTCAAAAAGCAAGAAGCACAAGCACAAGAGAAAGCATCGCTGAMRLTLSTLVLGLVFAQGAMAAGDGTAAVGGGLGGVLGNVVGQQMGGSTGAAIGAGVGGAAGSAVGARKGSRTEAAIGGGLGSAGGSIVGNRLGGSTGSTIGAGVGGAAGGALGSNLSNDNDGHSKSKKHKHKRKHRNANANANANA
D1-35_02131174hypothetical proteinATGACCCCGGAAACCGAAGGCAAGGAAGAAAAAGGCCCCTCGGGCGTCCCGTTCATCAATGATCCAGGCGTCAACGACCCGGGCAACGAAGATCCCGGTTCCCTGATGGATGACGCCCAGGTGCCCTTGATCGAGGATGAAGAAACCGAAGTTGAGGATGAATCCTACGATTGAMTPETEGKEEKGPSGVPFINDPGVNDPGNEDPGSLMDDAQVPLIEDEETEVEDESYDNANANANANA
D1-35_02132204hypothetical proteinATGACTGCCGACTCGCCTGTTCCCGACGACGATGAAACCCCGGAATATCCGTTGCCTTCGCCCACCGACTCATTGAGCCGCGATCAGCGTCCACCTGATGACGATGCTGGAGTTGAGCAGGTGCCAAGCGAAGATGAAGACGTCGAGGCGGCGCCGGACGATCCCGATATTGCCGGTGATGATGCTTCCGGCAAGCCAAGCTGAMTADSPVPDDDETPEYPLPSPTDSLSRDQRPPDDDAGVEQVPSEDEDVEAAPDDPDIAGDDASGKPSNANANANANA
D1-35_02133369hypothetical proteinATGATGAAGCCAAACATGACCGCGCTGGCGTTGGCCGGGATTCTGTCGGCCAGCTCGTTGGCGGCTTTCGCCCAATCCGACAGCGCGCCCGTGGACAAGGGAGGCATGCCGCCCTCTACCCAGATGGACGCCGGCTCCACCACCGAGAAAGCCGGTAACGCTCTGCCACCCGGTTCCGTGGGAGGAGGCAATGGCGGCGACGCCAGCGGCAGCAGCACCAGCCCGGGAACCGGGAGTGGCTCCACCAGCGGTGGCAGTACGATGGGCGGCGGTTCTTCCGGCTCAAGTAGTGGAACCGGTAGCAGCAGTAGCGGTGGCAGCTCCAGCGGCGGCGGATCAGGCTCCGGCTCAGGCGGCTCCGGCGGCTAAMMKPNMTALALAGILSASSLAAFAQSDSAPVDKGGMPPSTQMDAGSTTEKAGNALPPGSVGGGNGGDASGSSTSPGTGSGSTSGGSTMGGGSSGSSSGTGSSSSGGSSSGGGSGSGSGGSGGNANANANANA
D1-35_02134696gph_1Phosphoglycolate phosphataseATGAATGCACCGCTGAAAAAGTTTGGACCGATCAAGGCTGTGATTTTCGATATGGATGGCCTGCTGCTGGATACCGAAGGTATCTACACCGAGGTCACCTCCATCATCGCCGAGCGCTACGGGCGCACGTTCGACTGGAGCGTCAAGCAGAACATCATCGGGCGCGGCGCCGGGGACCTGGCGCGCTACGTGGTGCAGGCGCTGGAGCTGCCGATCACCCCGGAGGAATTTCTGGTGATTCGTGAACCGCTCATGCGTGAACGTTTCCCCCACGCCCTGGCGATGCCCGGCGCGGAGGAATTGGTGCGGCATCTCAAAGCCCACCACGTGCCGATAGCGGTGGGAACCAGTTCGTCGCGTCAGTCGTTCGAGCTGAAAACCACTTTGCACCGGGATTGGTTCGCGCTGTTCGACTTCATCGTCACCGCCGATGACCCGGAAGTGGGCGCGGCGAAACCGGCCCCGGATATCTTCCTCACCGCCGCCCGGCGCCTGGGTGTCGCGCCGGCGGATTGCCTGGTCTTCGAGGATTCCCCGTTTGGTGTGACGGCGGCGAAGGCGGCAGGCATGACGGCTATTGCGATTCCCGACTCGGCCATGGCCGACGAAAAGTACAGCCATGCCGACGCCATTATCCGTTCGCTCAAGCTGTTCCAGCCAGGCCTGTGCGGTTTGCCGGAACTGGAATGGGCCTGAMNAPLKKFGPIKAVIFDMDGLLLDTEGIYTEVTSIIAERYGRTFDWSVKQNIIGRGAGDLARYVVQALELPITPEEFLVIREPLMRERFPHALAMPGAEELVRHLKAHHVPIAVGTSSSRQSFELKTTLHRDWFALFDFIVTADDPEVGAAKPAPDIFLTAARRLGVAPADCLVFEDSPFGVTAAKAAGMTAIAIPDSAMADEKYSHADAIIRSLKLFQPGLCGLPELEWAPGPT0008620_152DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008620-FHY-K20884NANA
D1-35_02135747bdcACOG1028Cyclic-di-GMP-binding biofilm dispersal mediator proteinATGAGCACGCAAACACTGAGTGGCAAAGTCGCCTTGGTCCAAGGCGGTTCCCGTGGCATCGGCGCCGCCATTGTCAAACGCCTTGCCGCAGAAGGCGCGGCCGTGGCCTTCACCTATGTCAGCTCCGGCGCCAAGTCTGAAGAACTGCAGAACAGCATCACCGCCGCCGGCGGCAAGGCCCTGGCGATCAAGGCCGACAGCGCCGATGCCGACGCCATCCGCCATGCCGTCCAGGCCACCGTCGACGCCTTTGGCCGATTGGACATCCTGGTCAACAACGCGGGCATCCTGGCGTTGGCGCCGCTGGATGAATTCAAGCTGGAAGATTTTGACCAGACCCTCGCCATCAACGTGCGCAGCGTATTTGTCGCCACTCAGGCAGCCGCACGGCATATGAGCGAAGGGGGCCGGGTCATCAATATCGGCAGCACCAATGCCGACCGCATGCCCTTCGCTGGCGGCGCCACCTACGCCATGAGCAAATCCGCGCTGGTGGGCCTGACCAAAGGCCTGGCTCGCGACCTGGGCCCACGCGGCATTACCGTCAACAATGTTCAGCCCGGCCCGGTGGACACTGACATGAACCCGGCGGATAGCGATTTCGCCTCCAGCCTGATGGAACTCATGGCGGTAGGCCGTTATGGCACGGTGGAAGAAATCGCCAGCTTCGTCGCCTACCTCGCGGGTCCGGAAGCGGCCTATATCACCGGGGCCAGCCTGACAATCGACGGTGGTTTCGGCGCCTGAMSTQTLSGKVALVQGGSRGIGAAIVKRLAAEGAAVAFTYVSSGAKSEELQNSITAAGGKALAIKADSADADAIRHAVQATVDAFGRLDILVNNAGILALAPLDEFKLEDFDQTLAINVRSVFVATQAAARHMSEGGRVINIGSTNADRMPFAGGATYAMSKSALVGLTKGLARDLGPRGITVNNVQPGPVDTDMNPADSDFASSLMELMAVGRYGTVEEIASFVAYLAGPEAAYITGASLTIDGGFGAPGPT0003180_13205DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-35_02136924pgrR_1HTH-type transcriptional regulator PgrRATGGAGACTTTCAGCAGTATCGAATGTTTTGTCCGCAGTGCCGAGGTCGGCAGCTTCGCCGAGGCCGCACGCCGCTTGAGCCTGACCCCGGCGGCGGTAGGCAAAAGCGTCGCCAAGCTTGAAGCGCGCCTGGGCGTTCGGCTGTTCCAGCGCAGCACCCGCAGCCTGGCCTTGACCGAGGCCGGCCAACTGTTCCTGCGGGAAGTGGGCAGCAGTTTTAATACCATCCAGAACGCCGTCGCCAACCTGGCCAGCGCCGGCGGGCAGCCAGCCGGCACGCTGAAGGTGAGCATGGGAACGGCGTTCGGCCGGTTGTATATCGTGCCGTTGTTGGGTGAGTTTTTGCGCCGATACCCGGCAATCAACCCGGACTGGCATTTCGATAACCGTCAGGTGGACCTGATCGGCCAGGGTTTCGATGCCGCCATCGGCGGCGGCTTCGAGCTGCCCCAGGGCGTCGTGGCGCGCAAATTGACGGTGGCCCATCGGGTGCTGGTTGCGTCCGGACAGTACCTGCAAAACCATGCCGCCGTCGTTGAGCCGCAGGATCTGGGGCAACATCAGGGAATCCTGATCCGCTCACCGCAGACAGGGCGTATCCGTTCCTGGCAACTGACCAGCCGTAACCGCGAACACAGCCCGCTGACACTCAAGGCGCAAATGACCATGAGTGACTCGGAAGCCGCCTGCATCACCGCAGCCCAAGGGCTGGGCATTGCCCTGGTGAGCATGCCGTTTGCCGTGCCGTTCCTGAGCAGCGGCGCACTGCAACGGGTGCTGCCGGACTGGTACGTCGACGACGGCAATATCTCGATCTACTACGCCGAGCATAAACTGCTGCCGGGCAAGACCCGGGCGTTCGTGGATTTCATCATCGAGCAGTTTGCCGAGCAGGGGCTGGCGCAGCGGTTCAGTGCTGTTTGAMETFSSIECFVRSAEVGSFAEAARRLSLTPAAVGKSVAKLEARLGVRLFQRSTRSLALTEAGQLFLREVGSSFNTIQNAVANLASAGGQPAGTLKVSMGTAFGRLYIVPLLGEFLRRYPAINPDWHFDNRQVDLIGQGFDAAIGGGFELPQGVVARKLTVAHRVLVASGQYLQNHAAVVEPQDLGQHQGILIRSPQTGRIRSWQLTSRNREHSPLTLKAQMTMSDSEAACITAAQGLGIALVSMPFAVPFLSSGALQRVLPDWYVDDGNISIYYAEHKLLPGKTRAFVDFIIEQFAEQGLAQRFSAVNANANANANA
D1-35_02137729hyuEHydantoin racemaseATGCGAATTCTCATCGTCAACGTCAACACCACCGAGTCCATCACTCAGTCCATCGCGCGCCAGGCCCAGGCCGTTGCCGCGCCGGGAACCGAGATCGTCGGGCTGACGCCGCATTTCGGGGCAGACTCGATCGAAGGCAATTTTGAAAGCTACCTGGCCGCCATCGCCGTAATGGACCGGGTGATGTCCTACGACCAGCCGTTCGACGCGGTGATCCAGGCGGGCTACGGCGAACACGGTCGGGAAGGACTGCAGGAACTGCTCAACGTGCCAGTGGTGGACATCACCGACGCCGGCGCCAGCACGGCCATGTTTCTTGGTCATGCCTACTCGGTCGTCACCACCCTGGACCGCACGGTGCCGCTGATCGAGGACCGGCTCAAGCTTTCCGGCCTGTTCGACCGCTGCGCCTCAGTCCGGGCCAGTGGCCTGGCGGTGCTGGAACTTGAGCAAGACCCGCAGCGGGCGGTTGAAGCCATCATCCATCAGGCGGAACTCGCCGTCAGCCAGGACAAGGCCGAAGTGATCTGCCTGGGTTGCGGCGGCATGGCCGGGCTGGATGAGCAGATTCGTCAACGCACCGGAGTGCCTGTGGTCGATGGCGTGACGGCGGCGGTGACGATTGCCGAGTCGCTGGTGCGGCTGGGGTTGTCCACGTCGAAAGTGCGCACTTATGCGACGCCGCGACCGAAGACCATCATTGGCTGGCCGGGGCGGTTTGGGCGGTGAMRILIVNVNTTESITQSIARQAQAVAAPGTEIVGLTPHFGADSIEGNFESYLAAIAVMDRVMSYDQPFDAVIQAGYGEHGREGLQELLNVPVVDITDAGASTAMFLGHAYSVVTTLDRTVPLIEDRLKLSGLFDRCASVRASGLAVLELEQDPQRAVEAIIHQAELAVSQDKAEVICLGCGGMAGLDEQIRQRTGVPVVDGVTAAVTIAESLVRLGLSTSKVRTYATPRPKTIIGWPGRFGRPGPT0000895_881DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0000895-hpxA-K16841NANA
D1-35_021381530pucI_2COG1953putative allantoin permeaseATGCGTACAAGTCTTTCCAATAACATCGCGCTGGATCTGCCCTCCCCAACCGCTGCCCTGGATGAACAACCCGCAGCCCCTCTCACCTTGAGTCCAAGGCTGCATAACAAGGACCTCGCGCCCACCAAAGCCGAAGGGCGACGCTGGGGCCGCTACAGCATCTTCGCCCTGTGGACCAACGACGTGCATAACATTGCCAATTATTCATTCGCCATCGGCCTGTATGCCTTGGGACTGGGCGGTTGGCAGATTCTACTGTCGCTGGGGATCGGCGCGGCGCTGGTGTACGGCTTCATGAATCTGTCCGGCTATATGGGGCAGAAGACCGGCGTGCCGTTTCCGGTCATCAGCCGGATCAGTTTTGGCATACACGGTGCGCAGATTCCCGCACTGATCAGGGCCGTCATCGCAATTGCCTGGTTTGGTATCCAGACTTACCTGGCGTCCGTGGTGTTTCGGGTCCTGCTGGTGGCGATTCATCCGGGCTTTGCCGATTATGATCAGAACTCGATCCTCGGGCTGTCGAGCCTGGGCTGGGTATGCTTCGTCGCCATCTGGTTCGTGCAACTGATGATCCTGGCCTATGGCATGGAAACCGTGCGGCGCTATGAAGGCTTCGCCGGCCCGGTCATCCTGGTGACCGTCGCGGCGTTGGCCGGTTGGATGTACTTTCAGGCCGGTGCGACGATTGCCTGGTCGATCCGCGAGCCGCTGGCCGGCGGTGAGATGTGGCGCAACATATTCGCCGGTGGTGCGCTGTGGCTGGCGATCTATGGCACGTTGATCCTCAACTTCTGCGATTTCGCTCGCTCTTCGCCGTGCCGGCGGACAATCGTCGTCGGAAATTTCTGGGGCCTGCCGGTGAATATTCTGGTATTTGCCGCCATCACCATCCTGTTGTGCGGTGCGCAGTTCCAGATCAATGGCCAGGTCATCGAGAGCCCGACCCAGGTCATCGCCTCGATTCCCAACACGTTTTTCCTGGTGCTTGGTTGCCTGGCGTTCCTGATCGTCACCGTGGCGGTGAATATCATGGCCAACTTTGTCGCCCCGGCCTTCGTCCTCAGCAACCTGGCGCCCAGGTACCTGAACTTCCGTCGTGCCGGACTGATCAGCGCCGCCATTGCCGTGCTGATCCTGCCGTGGAACCTCTACAACAGCCCGCTGGTGATCGTGTATTTCCTCTCCGGTCTCGGCGCCCTGCTCGGGCCGCTGTACGGCGTGATCATGGTCGACTACTGGTTGCTGCGAAAAGGCCGCATCAACGTGCCGCAACTCTACAGCGAGGACCCAAATGGTGCGTATTTCTACAGCAACGGGGTCAACCTGCGGGCGGTAGCGGCGTTCATTCCAGCGGCGCTGATCGCGATTGTCCTGGCGCTGGTGCCCGGTTTCGACAGTATTTCTCCGTTTTCCTGGCTGATTGGCGCTTCGATTGCAGGGTTGCTGTACCTGATCGTTGCCAAGCGCGAGGTGCATTACGAGGACGTCAGCGGTGAGTCCATTGCCGTGGATAACGTCAGCCATTGAMRTSLSNNIALDLPSPTAALDEQPAAPLTLSPRLHNKDLAPTKAEGRRWGRYSIFALWTNDVHNIANYSFAIGLYALGLGGWQILLSLGIGAALVYGFMNLSGYMGQKTGVPFPVISRISFGIHGAQIPALIRAVIAIAWFGIQTYLASVVFRVLLVAIHPGFADYDQNSILGLSSLGWVCFVAIWFVQLMILAYGMETVRRYEGFAGPVILVTVAALAGWMYFQAGATIAWSIREPLAGGEMWRNIFAGGALWLAIYGTLILNFCDFARSSPCRRTIVVGNFWGLPVNILVFAAITILLCGAQFQINGQVIESPTQVIASIPNTFFLVLGCLAFLIVTVAVNIMANFVAPAFVLSNLAPRYLNFRRAGLISAAIAVLILPWNLYNSPLVIVYFLSGLGALLGPLYGVIMVDYWLLRKGRINVPQLYSEDPNGAYFYSNGVNLRAVAAFIPAALIAIVLALVPGFDSISPFSWLIGASIAGLLYLIVAKREVHYEDVSGESIAVDNVSHPGPT0009075_906DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_TRANSPORT,PGPT0009075-cytX-K03457NANA
D1-35_02139744cysHCOG0175Phosphoadenosine phosphosulfate reductaseATGAGCCCATCGTTTGATGTCGTGGAACTCGCCACGACCTATGCCAACAAGTCCCCGCAGGACATCCTCAAGCTGGCCTTCGCCGAATTCGGCGACGACCTGTGGATATCCTTCAGTGGCGCTGAAGACGTCGTGCTGGTGGACATGGCCTGGAAGCTGAACAAGAACGTCAAGGTGTTCAGCCTCGACACCGGTCGCCTGCACCCGGAAACCTATCGTTTCATTGAACAAGTGCGCGAGCATTACAAGATCGATATCGAACTGATCTCGCCCGACCATACGAAACTGGACCCTTTCGTGAAGGAAAAAGGCCTGTTCAGCTTCTACAAGGACGGTCACGGTGAATGCTGTGGCATCCGCAAGATCGAGCCGCTGCGCCGCAAACTGACCGATGTCCGCGCTTGGGCTACCGGTCAGCGCCGCGACCAGAGCCCGGGCACCCGCAGCCAGGTGGCCGTGCTGGAAATCGACACGGCGTTCTCCACGCCGGAGCGCACGCTGTACAAATTCAACCCGTTGTCGCAGATGACCAGCGAGGAAGTCTGGGGTTATATCCGCATGCTGGAGTTGCCTTATAACAGCCTGCATGAGCGCGGTTTCATCAGCATCGGCTGTGAGCCCTGCACCCGCCCTGTCCTGCCGAACCAGCACGAGCGCGAAGGCCGCTGGTGGTGGGAAGAAGCCACGCAAAAAGAATGCGGGCTGCACGCTGGCAATATCATCGCCAAATCCAAGACCGTCTGAMSPSFDVVELATTYANKSPQDILKLAFAEFGDDLWISFSGAEDVVLVDMAWKLNKNVKVFSLDTGRLHPETYRFIEQVREHYKIDIELISPDHTKLDPFVKEKGLFSFYKDGHGECCGIRKIEPLRRKLTDVRAWATGQRRDQSPGTRSQVAVLEIDTAFSTPERTLYKFNPLSQMTSEEVWGYIRMLELPYNSLHERGFISIGCEPCTRPVLPNQHEREGRWWWEEATQKECGLHAGNIIAKSKTVPGPT0002785_1499DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002785-cysH-K00390NANA
D1-35_02140618COG0560Phosphoserine phosphataseGTGGAAATTGCCTGTCTCGACCTGGAAGGTGTGCTGGTCCCGGAGATCTGGATCGCCTTCGCTGAAAAAACCGGGATTGACTCCCTCAGGGCAACCACTCGGGACATTCCCGATTACGACGTGCTGATGAAGCAACGGTTGCGCATCCTGGATGAGCATGGCCTGAAGCTCTCCGACATCCAGGAAGTCATCGCTACGCTCAAGCCGCTGGACGGCGCCATCGAGTTCGTCGACTGGCTGCGCGAGCGCTTCCAGGTGGTGATTCTTTCCGACACGTTCTACGAATTTTCCCAGCCGCTGATGCGTCAGCTGGGCTTCCCGACGCTGCTCTGCCATCGTCTGGTTACCGACGACAGCGGACGGGTGACCGGCTATCAATTGCGTCAGAAAGATCCGAAGCGCCAGTCGGTCCTGGCCTTCAAGAGTTTGTACTACCGAGTAATTGCCGCCGGGGATTCTTACAACGACACGACGATGCTGGGCGAAGCCGATGCCGGGATTCTGTTCCACGCGCCGGAAAACGTGATCCGTGAGTTCCCGCAGTTTCCGGCGGTGCATACGTTTGCCGAGTTGAAGCAGGAGTTCATCAAGGCCTCGAACCGCAATCTCAACTTGTAAMEIACLDLEGVLVPEIWIAFAEKTGIDSLRATTRDIPDYDVLMKQRLRILDEHGLKLSDIQEVIATLKPLDGAIEFVDWLRERFQVVILSDTFYEFSQPLMRQLGFPTLLCHRLVTDDSGRVTGYQLRQKDPKRQSVLAFKSLYYRVIAAGDSYNDTTMLGEADAGILFHAPENVIREFPQFPAVHTFAELKQEFIKASNRNLNLPGPT0020280_72DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_SERINE_DEGRADATION,PGPT0020280-trhH-K02203NANA
D1-35_021411344pabBCOG0147Aminodeoxychorismate synthase component 1ATGCCAACCTGCTTCGTACACCCTCTGCCCTACCGCGCCAACCCCGCCGAGTATTTCGCGGCGATCCGTCATGCCCCAGGCAGCGTGCTGCTCGACAGTGGCCGGCCGAGCGCCGAGCGCGGGCGTTATGACTTGCTCAGCGCCTGGCCGCTGAAGCAACTGGCGGTATTGCCGGAAGAGAGTGGCAGCGATTTCCTGCAACGTCTTCGGATACAGCTGACGCAACTGGGCCACGCCGAATTACCAGCCGCCGTGCAATTGCCCTTCGCCGGTGGCCTGATCGGTTATTTGAGTTACGACTTCGGCCGACGCCTCGAAGCCCTGCCGTCCTGCGCCAAGGACGATCTGCAACTGCCGGACGCGCGTTTTGGCGTGTACGACTGGGCACTGGTCACCGATCACCAGACTCGCACAAGCCAATTGGTCTTCCATCCCCATTGCGGCGAAAACCAACGCCAACGCTTGATCGAGCTGTTCCGTCAGCTAACCTCGGTGCCTCTCTCCTCGTTCAGTCTGGACGGCCCGATGGCGCCCGATCTCGACGCTGAAGCCTATCGACAGGCATTCGAGCGTATCCAGGCGTATATCCAGGCCGGCGACTGTTATCAGGTCAACTTTGCCCAACGCTTTCGCGCGCCGTGCCAGGGCGATGCGTGGGCCGCTTACCAGGCGCTGCGGGCGGCTTGCCCGACGCCGTTTTCCGGTTTCCAGAGCCTGCCGGAGGGCGGTGCGGTGCTGAGCCTGTCGCCCGAACGCTTCGTCCAGGTCAGTGAAGGTCACGTCGAAACCCGTCCGATCAAGGGCACCCGCCCTCGCGGCACGACGCCCGAAGACGACGCGGCTCACGCCGCCGAGCTGCTGGCCAGCCCCAAGGACCGTGCCGAGAACCTGATGATCGTCGACTTGCTGCGCAACGACCTGGGCCGCACCTGCCGCATCGGCTCGGTGCGGGTGCCGGAATTGTTCAGCCTGGAAAGCTACCCGAACGTCCATCATCTGGTCAGCAGCGTGACTGGCGAACTGGCGGACGACAAGGACGCCCTGGACCTGATCGCCGACAGCTTTCCCGGCGGCTCGATCACCGGCGCGCCGAAGATCCGTGCCATGCAGATCATCGACGAGCTCGAACCGACCCGACGCGGTCTGTATTGCGGCTCGTTGTTGTACCTCGATGTGCGCGGGGAGATGGACAGCTCCATCGCCATCCGCAGCTTGCTGGTCAAGGACGGGCAGGTATGTTGCTGGGGTGGCGGCGGGATCGTCGCGGATTCGGATTGGCAGGCGGAGTATCAGGAGTCGATGACCAAGGTGAGGGTCTTGCTGGAAACCTTGCAGAACCTCTGAMPTCFVHPLPYRANPAEYFAAIRHAPGSVLLDSGRPSAERGRYDLLSAWPLKQLAVLPEESGSDFLQRLRIQLTQLGHAELPAAVQLPFAGGLIGYLSYDFGRRLEALPSCAKDDLQLPDARFGVYDWALVTDHQTRTSQLVFHPHCGENQRQRLIELFRQLTSVPLSSFSLDGPMAPDLDAEAYRQAFERIQAYIQAGDCYQVNFAQRFRAPCQGDAWAAYQALRAACPTPFSGFQSLPEGGAVLSLSPERFVQVSEGHVETRPIKGTRPRGTTPEDDAAHAAELLASPKDRAENLMIVDLLRNDLGRTCRIGSVRVPELFSLESYPNVHHLVSSVTGELADDKDALDLIADSFPGGSITGAPKIRAMQIIDELEPTRRGLYCGSLLYLDVRGEMDSSIAIRSLLVKDGQVCCWGGGGIVADSDWQAEYQESMTKVRVLLETLQNLPGPT0008005_1350DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008005-pabB-K01665NANA
D1-35_02142987hypothetical proteinATGTTCGGCCTCTGGAAGACCTGGAAGGCCCTGGAAGCCCGGGGCATCATGGGCATCAACCGGCGTAATGCCGACTACGTGCTCAAGTACAACAAGCGCAGCCTTTACCCGATTGTCGATGACAAGATCATCACCAAGGAACGGGCCATCGCCGCCGGCATTCACGTGCCGGAGCTGTACGGGGTGATCTCCACCGAGAAGGAAATCGACAAGCTCGACGGGATCATCGGCGGACGCACCGACTTCGTCATCAAGCCGGCCCAGGGCGCCGGCGGTGACGGCATCATCGTTATTGCCGACCGCTTCGAGGGCCGCTATCGAACCGTGTCCGGGAAGATCATCAGCCACGAGGAAATTGAGCATCACATCTCCAGCATCCTCACCGGCCTGTACTCCCTCGGCGGGCACCGTGACCGGGCGCTGATCGAGTACCGCGTGACGCCGGACCAGATCTTCAAGAGCATCAGCTACGAAGGCGTACCGGATATCCGCATCATCGTGCTGATGGGCTATCCGGTGATGGCCATGCTGCGCTTGCCGACCCGCCAGTCCGGCGGCAAGGCCAACCTGCACCAGGGCGCCATCGGCGTCGGCGTCGACCTCGCCACCGGCCTGACCTTGCGCGGTACCTGGCTGAACAACATCATCACCAAGCACCCCGACACCACCAACGCGGTGGATGGCGTGCAACTGCCCTATTGGGACGGCTTCATGAAACTGGCCGCCGGTTGCTATGAACTGTGCGGGCTGGGCTACATCGGCGTCGACATGGTGCTGGACCAGGAAAAAGGCCCGTTGATCCTGGAACTGAACGCCCGCCCAGGGCTGAACATCCAGATCGCCAACGACTGCGGCCTGACCCTGCGCACCCACGCCGTGGAGGCACGCCTGGAAGAACTCAAGGCCAGGGGCGTCACCGAAACCGTGGAAGAGCGCGTGGCGTTTGCCCAGGAATTGTTCGGGCATATTCCGCCGGTTGAGGGCTAGMFGLWKTWKALEARGIMGINRRNADYVLKYNKRSLYPIVDDKIITKERAIAAGIHVPELYGVISTEKEIDKLDGIIGGRTDFVIKPAQGAGGDGIIVIADRFEGRYRTVSGKIISHEEIEHHISSILTGLYSLGGHRDRALIEYRVTPDQIFKSISYEGVPDIRIIVLMGYPVMAMLRLPTRQSGGKANLHQGAIGVGVDLATGLTLRGTWLNNIITKHPDTTNAVDGVQLPYWDGFMKLAAGCYELCGLGYIGVDMVLDQEKGPLILELNARPGLNIQIANDCGLTLRTHAVEARLEELKARGVTETVEERVAFAQELFGHIPPVEGNANANANANA
D1-35_021431533hypothetical proteinATGCGCTCCCTTACCCTCCATCTGAAAATGCTGATCGCCATCTTGGTGGTGCTGGGCCTGTCAGTGACGGCCTATCAGATTTTCGTGCTCGGCATCCCGGTGACCGAAGACGCCACCGATGACCTGTGGAATATCGATGCCAAGGTCGAGTTCGTGCCCAACGCCAAGGATCCGGTGAAGATCCAGATGTTCGTGCCGCCCCTGAGCCGCGATTACGTCAGCCTCAACGAGAGCTTCATCTCCAACAACTACGGCGTAGCGGTGAACCGCGTCGACGGCAACCGCAAGGTGACGTGGTCGGCCCGGCGCGCCAAGGGCAACCAGACCCTTTATTACCGCCTGGTGCTGACCAAGCGCTACAGCGCCGAGAAAACCAAGGTCAAGGGCCCGACCTTCCGCGACAGCATCGCCGTCGAAGGGCCGGAAAAACTCGCCGCCGAAGCGCTGTTGGCACCGATTCGCCAGCATTCGGCCGACGTCGAAACGTTCATCAGCGAAGCCATCAAGCGGGTCAACAACCTCAACGACGACAACGTCAAGCTGTTGCTGGCCGGCGACCCGTCTTCGAGCAACAAGGCCAGAATCGTCGAACTGGTACTGTCCATTGCCCACGTGCCGGTCGAGAAGGTCCACACCATCCGCCTGGTGGCCGACCAGCCTCAGACGCCCGAGCTGTGGCTGCGCAGCTTCAACGGCACCGACTGGCTGTACTTCAACCCCGACACCGGCGAGCAAGGCCTGCCCACCGATCGCCTGCTGTGGTGGACCGGCGATGAAAACCTGATCACCGTCGATGGCGGCAAGAAAGCCACCGTCACGTTCAGCATGAACAACAGCGAAATGAACGCCATTCGCCTGGCCAAGCTGACGGACGAGAACACCGACGCCAACTTCCTCGAATACTCGCTCTACGGCCTGCCGCTGCAAACCCAGCAGACCTTCATGATCATGGTGATGATCCCGATCGGCGTGCTGGTGATCCTGGTGTTGCGCAACCTGATCGGCCTGCAGACCCTCGGGACGTTCACCCCGGTGCTGATCGCCCTGGCCTTCCGCGAAACCCAACTGGGCTTCGGCATCATCCTGTTCACGGTGATCACTACCCTGGGCCTGTCGCTGCGTTCCTACCTGGAACATCTCAAGCTGCAAATGCTGCCGAGGCTTTCGGTGGTGCTGACGTTCGTAGTGGTGCTGATCGCCGCCATCAGCCTGTTCAGCCATAAGCTGGGCCTGGAGCGTGGCCTGTCGGTGGCATTGTTCCCGATGGTGATCCTGACCATGACCATCGAACGCCTGTCCATCACCTGGGAAGAGCGCGGCGCCGGCCATGCGATGAAAGTCGCCATCGGCACCCTGTTCGCCGCGTCCCTGGCGCACCTGATCATGAGCGTCCCGGAGCTGGTGTACTTCGTGTTCACGTTCCCGGCGATCCTGCTGATCCTGGTGGGTTTCATGCTGGCCATGGGTCGTTATCGCGGCTACCGCCTGACCGAGCTGGTGCGGTTCAAGGCTTTCGTCAAGGCTGACTCCTGAMRSLTLHLKMLIAILVVLGLSVTAYQIFVLGIPVTEDATDDLWNIDAKVEFVPNAKDPVKIQMFVPPLSRDYVSLNESFISNNYGVAVNRVDGNRKVTWSARRAKGNQTLYYRLVLTKRYSAEKTKVKGPTFRDSIAVEGPEKLAAEALLAPIRQHSADVETFISEAIKRVNNLNDDNVKLLLAGDPSSSNKARIVELVLSIAHVPVEKVHTIRLVADQPQTPELWLRSFNGTDWLYFNPDTGEQGLPTDRLLWWTGDENLITVDGGKKATVTFSMNNSEMNAIRLAKLTDENTDANFLEYSLYGLPLQTQQTFMIMVMIPIGVLVILVLRNLIGLQTLGTFTPVLIALAFRETQLGFGIILFTVITTLGLSLRSYLEHLKLQMLPRLSVVLTFVVVLIAAISLFSHKLGLERGLSVALFPMVILTMTIERLSITWEERGAGHAMKVAIGTLFAASLAHLIMSVPELVYFVFTFPAILLILVGFMLAMGRYRGYRLTELVRFKAFVKADSNANANANANA
D1-35_02144537hypothetical proteinATGACACTCAAGCCCTTATCTGCTGCCCTATGCTTTATCTGCCTGCCAGGGATTGCCGCGGCGGGTGAAAAAACCGTGTACGGCCTCAACGAATATGCAGCCCTGCAGGGCATTGACCTGGAGGTCGCGGCCAAGCTCGACACCGGTGCCAAGACCGCCTCCCTCAGCGCCCGTGACATCAAGCGCTTCAAGCGCAACGGCGAATCCTGGGTGCGTTTCTACCTGGCCATCGACGCGGCCCATTCGCACCCCATCGAACGCCCGCTGGCCCGGGTCAGCAAGATCAAGCGCCGCGCCGGTGACTACGACCCGGAAGAAGGCAAGAAATACACGGCCCGGCCGGTCATCGAACTGGATATCTGCATGGGCTCGGCCCTGCGCAGCATCGAAGTGAACCTGACCGACCGTAGCGCCTTCCAATACCCGTTGCTGATCGGCTCCGAAGCGCTCAAGCGTTTCGACGCGCTGGTCGATCCCAGTCTCAAATACGCTGCCGGCAAACCCGCCTGCGCCAATGCCGCTCATACCGCAGAGTAAMTLKPLSAALCFICLPGIAAAGEKTVYGLNEYAALQGIDLEVAAKLDTGAKTASLSARDIKRFKRNGESWVRFYLAIDAAHSHPIERPLARVSKIKRRAGDYDPEEGKKYTARPVIELDICMGSALRSIEVNLTDRSAFQYPLLIGSEALKRFDALVDPSLKYAAGKPACANAAHTAENANANANANA
D1-35_02145714glaRCOG1802HTH-type transcriptional repressor GlaRATGCTCGATCAGCTCGAAACGCCGGTCCTCGTCCAGGAAGATGCCGAGACGCTGTCCGAGAACGTCTTCCGGCGTATCCAGGCCGCCATCGTCAAGGGTGAAATTGCCCCCGGCAGCAAGATCTCCGAGCCCGAGCTGGCCCGTACCTACGGCATCAGTCGCGGGCCGCTGCGCGAGGCGATCCATCGCCTGGAAGGCCAGCGGCTGCTGGTGCGCATTCCCCATGTTGGCGCGCGGGTGGTCTCGCTGAGCCATGCCGAGCTGCTGGAACTCTACGAAATTCGTGAATCCCTGGAGGGCATGGCCTGTCGCCTTGCGGCGGAGCGTATGACCCAGGAAGAAATCGACGAACTGCGTCGAGTGCTGGAAACCCACGAGCGCGATGCGGCGTTCCAGGCCGGCGTCGGTTATTACCAGCAGGAAGGCGATTTCGACTTCCACTACCGGATCATCCAGGGCAGCGGCAATCGCACCCTCACCCAAATGCTCTGCGGCGAGCTGTATCAACTGGTGCGCATGTACCGCATCCAGTTTTCCACCACGCCGAACCGTCCGCGCCAGGCTTTTGCCGAGCACCACCGGATTCTCGACGCCATCGCCGACCGTGACGGCGAACTGGCCGAATTATTGATGCGCCGGCACATCGGCGCCTCCAAACGCAACATTGCGCGTCATTTCCAGGACAGCGCCGCCACTCAACGAGGTGAGTCATGAMLDQLETPVLVQEDAETLSENVFRRIQAAIVKGEIAPGSKISEPELARTYGISRGPLREAIHRLEGQRLLVRIPHVGARVVSLSHAELLELYEIRESLEGMACRLAAERMTQEEIDELRRVLETHERDAAFQAGVGYYQQEGDFDFHYRIIQGSGNRTLTQMLCGELYQLVRMYRIQFSTTPNRPRQAFAEHHRILDAIADRDGELAELLMRRHIGASKRNIARHFQDSAATQRGESNANANANANA
D1-35_02146891prpBCOG25132-methylisocitrate lyaseATGAGTTCCAGCAAGAGCACGCCAGGCCAGCGTTTTCGCGATGCGGTCGCCGCCGAGCATCCATTACAAGTGGTCGGCACCATCAACGCCAACCATGCGCTGCTGGCCAAGCGCGCCGGCTTCAAGGCGATCTACCTGTCGGGTGGCGGCGTGGCGGCCGGTTCCCTCGGCGTGCCGGACCTGGGCATCACCGGCCTGGATGACGTGCTCACCGATGTGCGCCGCATCACCGACGTGTGCGACCTGCCGTTGTTGGTGGACGTGGACACCGGCTTCGGCTCCTCGGCGTTCAACGTGGCGCGCACGGTCAAGTCGATGAGCAAGTTCGGCGCGGCGGCGATTCACATCGAGGACCAGGTCGGCGCCAAGCGTTGCGGCCATCGTCCGAACAAGGAAATCGTTTCGCAACAAGAGATGGTCGATCGCATCAAGGCTGCCGTCGACGCCCGTACCGATGACAGTTTTGTGATCATGGCGCGTACCGATGCGTTGGCAGTGGAAGGCCTGGAGTCGGCCCTGGACCGCGCCGCCGCTTGCATCGAGGCCGGTGCCGACATGATTTTCCCGGAAGCGATCACTGAACTCGAAATGTACAAGCTGTTCGCCAGCCGTGTGAAAGCGCCGATCCTGGCCAACATTACCGAATTCGGCGCGACCCCGCTCTACACCACCGAACAACTCGCCGGGGCCGACGTGTCCCTGGTGCTGTACCCGCTGTCGGCGTTCCGTGCGATGAACAAGGCCGCCGAAAATGTCTACACCGCCATCCGTCGCGATGGTACGCAGCAGAACGTCATCGACACCATGCAGACCCGCATGGAGCTTTACGATCGCATCGACTACCACACCTTCGAGCAGAAGCTCGACGCGTTGTTCGCCGCGAAAAAGTAAMSSSKSTPGQRFRDAVAAEHPLQVVGTINANHALLAKRAGFKAIYLSGGGVAAGSLGVPDLGITGLDDVLTDVRRITDVCDLPLLVDVDTGFGSSAFNVARTVKSMSKFGAAAIHIEDQVGAKRCGHRPNKEIVSQQEMVDRIKAAVDARTDDSFVIMARTDALAVEGLESALDRAAACIEAGADMIFPEAITELEMYKLFASRVKAPILANITEFGATPLYTTEQLAGADVSLVLYPLSAFRAMNKAAENVYTAIRRDGTQQNVIDTMQTRMELYDRIDYHTFEQKLDALFAAKKPGPT0001555_854DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-SUCCINIC_ACID_ACID_BIOSYNTHESIS,PGPT0001555-prpB-K03417NANA
D1-35_021471128prpC_1COG03722-methylcitrate synthaseATGGCCGAAGCAAAAGTACTCAGTGGCGCCGGGCTCCGTGGCCAGGTGGCCGGACAAACCGCCTTGTCCACCGTGGGCCAGTCAGGCGCCGGGCTGACCTATCGCGGCTACGACGTTCGCGACCTGGCGGCTGACGCGCAATTCGAAGAGGTGGCCTACCTGCTGCTGTACGGCGAGCTGCCGACCCAGGCACAGCTGGACGCCTACACGGGCAAACTGCGCCAGTTGCGCGACCTGCCCCAAGCCTTGAAAGAAGTGCTGGAACGCATTCCCGCCGACGCCCATCCGATGGATGTGATGCGCACGGGCTGCTCGTTCCTCGGCAACCTGGAGCCCGAGCAGGATTTCTCCCAGCAGCACGACAAGACCGATCGTCTGCTGGCCGCGTTCCCGGCGATCATGTGCTACTGGTATCGCTTCAGCCACGAAGGCCAGCGCATCGAATGCGTAACCGACGAAGTCTCCATTGGCGGCCACTTCCTGCATCTGCTGCACGGCAAAAAGCCGAGCGAGTTGCACGTCAAGGTGATGAACGTGTCGCTGATCCTTTACGCCGAGCACGAATTCAACGCCTCGACCTTTACCGCGCGGGTTTGTGCTTCGACATTGTCCGACCTGTTCTCCTGCATCACCGCTGCCATCGGCTCCCTGCGTGGCCCGTTGCACGGCGGCGCCAACGAGGCGGCGATGGAAATGATCGAGCGTTTCAGCTCGCCGCAAGAAGCCATCGAGGGCACCCTCGGCATGCTCGCGCGCAAGGACAAGATCATGGGCTTCGGCCATGCCATCTACAAGGACAACGACCCGCGCAACGAGGTGATCAAGGGCTGGTCGAAAAAGCTCGCCGATGAAGTCGGCGACACGGTGCTGTTCCCGGTTTCCGAAGCTATCGACAAGACCATGTGGGAGCAGAAGAAACTGTTCCCCAACGCCGATTTCTACCATGCCTCGGCGTACCACTTCATGGGCATCCCGACCAAGCTGTTCACGCCGATCTTCGTCTGCTCGCGCCTGACCGGCTGGGCCGCCCATGTGTTCGAACAACGTGCCAACAACCGCATCATCCGACCGAGCGCCGAATACACCGGCGTCGAACAGCGCAAGTTCGTGCCAATCGAACAACGCTGAMAEAKVLSGAGLRGQVAGQTALSTVGQSGAGLTYRGYDVRDLAADAQFEEVAYLLLYGELPTQAQLDAYTGKLRQLRDLPQALKEVLERIPADAHPMDVMRTGCSFLGNLEPEQDFSQQHDKTDRLLAAFPAIMCYWYRFSHEGQRIECVTDEVSIGGHFLHLLHGKKPSELHVKVMNVSLILYAEHEFNASTFTARVCASTLSDLFSCITAAIGSLRGPLHGGANEAAMEMIERFSSPQEAIEGTLGMLARKDKIMGFGHAIYKDNDPRNEVIKGWSKKLADEVGDTVLFPVSEAIDKTMWEQKKLFPNADFYHASAYHFMGIPTKLFTPIFVCSRLTGWAAHVFEQRANNRIIRPSAEYTGVEQRKFVPIEQRPGPT0001480_947DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-CITRIC_ACID_BIOSYNTHESIS,PGPT0001480-prpC-K01659NANA
D1-35_021482592acnDCOG10482-methylcitrate dehydratase (2-methyl-trans-aconitate forming)ATGAACACAGAATTTCGCAAACCGCTGCCCGGCACATCGCTGGATTATTTCGACGTTCGCGCGGCCGTGGATGGCATTCGGCCTGGCGCCTACGATAGCCTGCCGTACACCTCCCGCGTGCTGGCGGAAAACCTCGTGCGCCGCTGCGATCCGGCGACGCTGCGCGAATCGCTGCTGCAACTGATCGAGCGCAAGCGCGACCTGGATTTCCCCTGGTTCCCGGCGCGCGTGGTCTGCCATGACATCCTCGGCCAGACCGCATTGGTCGACCTGGCCGGCCTGCGCGACGCCATCGCCCTGCAAGGCGGCGACCCGGCGCAGGTCAATCCGGTGGTGCCGACCCAACTGATCGTCGACCACTCGTTGGCGGTAGAGAGCGCCGGTTTTGATCCGCAGGCGTTCGCCAAGAACCGCGCCATCGAAGACCGCCGCAACGAAGACCGCTTCCACTTCATCAACTGGACCAAGAAGGCCTTCAAGAACGTCGACGTGATCCCGCCGGGCAATGGGATCATGCACCAGATCAACCTGGAGAAAATGTCTCCCGTCATCCAGCAGCGTGACGGCGTGGCGTTCCCCGACACTTGCGTAGGCACCGACAGCCACACGCCTCACGTCGATGCCCTGGGTGTGATCGCGATCGGTGTCGGTGGCCTGGAAGCCGAAAGCGTCATGCTCGGTCGCGCCTCGTGGATGCGCCTGCCGGAAATCATCGGCGTCGAGCTGACCGGCAAGTTGCAACCGGGCATCACTGCCACCGACATGGTGCTGGCGCTGACCGAATTCCTGCGCAAGCAGAAAGTCGTCGGGGCCTGGCTGGAGTTCTTCGGCGAAGGCGCCCGCGCCCTGACCCTGGGGGATCGCGCGACGATCTCCAACATGGCCCCGGAATACGGCGCCACGGCAGCGATGTTCCATATCGATCAGCAAACGATCGATTACCTGAAGCTCACCGGCCGCGAAGACCAGCAAGTGCAGTTGGTCGAACATTACGCCAAGACCACCGGCCTCTGGGCTGACAGCCTGGAAGGCGCGGTATATGAGCGCGGTCTGACCTTCGACCTGTCCTCGGTGGTGCGTAACATGGCCGGTCCGAGCAACCCGCACGCCCGTGTCGCGGTGTCCGATCTGGCTGCCAAAGGCATTTCTGGCCAGTGGGACGATGTGCCCGGGCAAATGCCCGACGGCGCGGTGATCATCGCGGCGATCACCAGTTGCACCAACACCAGCAACCCGCGCAACGTGATCGCCGCCGGTTTGCTGGCGCGCAACGCCAATCGCCTGGGCCTGGCGCGCAAGCCGTGGGTCAAGTCATCCCTCGCACCGGGCTCGAAAACCGTCGCGTTGTACCTGGATGAAGCGGGCCTGACGTCTGAACTTGAGCAACTGGGTTTTGGCGTGGTCGCGTTCGCCTGTACTACCTGCAACGGCATGTCCGGCGCGCTGGACCCGGTGATCCAGCAGGAAATCATCGACCGTGACCTGTACGCCACCGCCGTCTTGTCGGGTAACCGCAACTTCGACGGGCGGATTCACCCGTACGCCAAGCAGGCGTTCCTGGCGTCGCCGCCATTGGTGGTGGCTTATGCCATCGCCGGGACCATCCGTTTCGACATCGAGAAGGATGTGTTGGGTGTGGTGGACGGTCAGGAAATACGCCTCAAGGACATCTGGCCGAGCGACGAGGAAATCGACGCGGTGGTCAAGGCTTCGGTGAAACCCGAGCAGTTCCGCCAGGTGTACATCCCGATGTTCGCCATCCAGGAAGACACCGGGCCGAAAGTGACCCCGCTGTACGACTGGCGCCCGCAAAGCACCTATATCCGTCGTCCGCCCTATTGGGAAGGCGCATTGGCCGGTGCGCGGCCGCTCAAGGGCATGCGTCCGCTGGCGGTGCTGCCGGACAACATCACCACCGATCACCTGTCGCCGTCCAACGCCATCATGCTCGACAGTGCCGCGGGTGAATACCTGGCGAAAATGGGCCTGCCGGAAGAAGACTTCAACTCCTACGCGACCCACCGCGGCGATCACCTGACCGCGCAACGGGCCACCTTTGCCAACCCGAAACTGTTCAACGAAATGGTCGTTGAGGACGGCAAGGTCAAGCAGGGCTCCCTGGCTCGGGTCGAACCGGAAGGCAAGGTCATGCGCATGTGGGAAGCCATCGAAACCTACATGGAACGCAAGCAGCCGTTGATCATCATCGCCGGCGCCGACTACGGCCAGGGTTCGTCCCGGGACTGGGCGGCCAAGGGCGTGCGCCTGGCCGGTGTCGAGGCGATCGTCGCCGAAGGTTTCGAGCGCATCCACCGCACCAACCTGGTGGGTATGGGCGTGTTGCCGCTGGAGTTCAAACCCGGCACGGATCGCAAGACGCTTGGCATCGACGGCAGCGAAGTCTATGACGTGATCGGCGAGCGCACCCCGCGGGCGACGCTGACCCTGGTCATCACGCGCAAAAATGCTGAACGCGTCGAAGTGCCGGTGACCTGCCGCCTCGATACCGCCGAGGAAGTGTCGATCTACGAAGCCGGGGGCGTGCTGCAACGCTTCGCCCAGGATTTCCTTGAATCGGCGATTGCCGTTTAAMNTEFRKPLPGTSLDYFDVRAAVDGIRPGAYDSLPYTSRVLAENLVRRCDPATLRESLLQLIERKRDLDFPWFPARVVCHDILGQTALVDLAGLRDAIALQGGDPAQVNPVVPTQLIVDHSLAVESAGFDPQAFAKNRAIEDRRNEDRFHFINWTKKAFKNVDVIPPGNGIMHQINLEKMSPVIQQRDGVAFPDTCVGTDSHTPHVDALGVIAIGVGGLEAESVMLGRASWMRLPEIIGVELTGKLQPGITATDMVLALTEFLRKQKVVGAWLEFFGEGARALTLGDRATISNMAPEYGATAAMFHIDQQTIDYLKLTGREDQQVQLVEHYAKTTGLWADSLEGAVYERGLTFDLSSVVRNMAGPSNPHARVAVSDLAAKGISGQWDDVPGQMPDGAVIIAAITSCTNTSNPRNVIAAGLLARNANRLGLARKPWVKSSLAPGSKTVALYLDEAGLTSELEQLGFGVVAFACTTCNGMSGALDPVIQQEIIDRDLYATAVLSGNRNFDGRIHPYAKQAFLASPPLVVAYAIAGTIRFDIEKDVLGVVDGQEIRLKDIWPSDEEIDAVVKASVKPEQFRQVYIPMFAIQEDTGPKVTPLYDWRPQSTYIRRPPYWEGALAGARPLKGMRPLAVLPDNITTDHLSPSNAIMLDSAAGEYLAKMGLPEEDFNSYATHRGDHLTAQRATFANPKLFNEMVVEDGKVKQGSLARVEPEGKVMRMWEAIETYMERKQPLIIIAGADYGQGSSRDWAAKGVRLAGVEAIVAEGFERIHRTNLVGMGVLPLEFKPGTDRKTLGIDGSEVYDVIGERTPRATLTLVITRKNAERVEVPVTCRLDTAEEVSIYEAGGVLQRFAQDFLESAIAVPGPT0001515_670DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-ACONITIC_ACID_BIOSYNTHESIS,PGPT0001515-acnD-K20455NANA
D1-35_021491191prpFCOG28282-methyl-aconitate isomeraseATGGCTCACTCGCCTCAAATCAAGATCCCCGCGACCTATATGCGTGGCGGCACCAGCAAAGGCGTGTTCTTCAGCCTGCAAGACCTGCCCGAAGCAGCGCGCGTTCCCGGCCCGGCCCGGGATGCGCTGCTGCTGCGGGTGATCGGTAGCCCCGATCCGTACGAAAAGCAGATCGATGGCATGGGCGGTGCGACGTCCAGCACCAGCAAGACCGTGATCCTGTCCAAGAGCACCCGGGCCGATCACGACGTCGATTACCTGTTCGGCCAGGTGTCCATCGACAAGCCGTTCGTGGATTGGAGCGGCAACTGCGGCAACCTGTCGGCGGCGGTGGGGGCGTTTGCCATCGGTAGCGGTCTGGTGGATGCCAGCCGTATCCCGCAGGACGGTATGGCCGTGGTGCGGATCTGGCAGGCGAACATCGGCAAGACGATCATCGCCCATATACCGATCACCGACGGCGCGGTGCAGGAAACCGGTGACTTCGAACTCGACGGCGTGACCTTTCCGGCCGCTGAAGTGCAGCTGGAGTTCATGGACCCGGCGGCCGAGGAGGAGGGCGGCGGTGGTTCGATGTTTCCTACCGGCAACCTGGTGGACGACCTGGAAGTGCCCGGTGTCGGCAAGCTCAAGGCGACGCTGATCAACGCAGGCATTCCGACGATATTCATCAACGCCCGGGATGTCGGTTACACCGGCACCGAATTGCAGGGCGCCATCAACGGCAATCCCAAGGCGCTGGCGATGTTTGAAACGATTCGTGCCCATGGCGCTTTGCGCATGGGCCTGATCAAGCACCTGGACGAAGCTGCCCAGCGCCAGCACACGCCGAAAGTGGCGTTTGTCGCGCCGCCGGCGGATTACCTTTCATCCAGCGGTAAAACCGTGGCGGCGGGTGACGTCGACTTGCTGGTTCGGGCGTTGTCCATGGGCAAGCTGCACCACGCCATGATGGGCACCGCCGCTGTCGCCATCGGCACCGCCGCGGCGATTTCCGGCACCCTGGTCAACCTCGCGGCCGGTGGCGTCGAACGCAACGCGGTGCGCTTCGGCCACCCGTCCGGCACCTTGCGCGTTGGCGCCGAGGCGAGCGTAGTCAATGGCGAATGGACCGTGAAAAAAGCCATGATGAGCCGCAGCGCGCGGGTGTTGATGGAAGGGTTTGTGCGGGTGCCGGGGGATGTTTTCTAAMAHSPQIKIPATYMRGGTSKGVFFSLQDLPEAARVPGPARDALLLRVIGSPDPYEKQIDGMGGATSSTSKTVILSKSTRADHDVDYLFGQVSIDKPFVDWSGNCGNLSAAVGAFAIGSGLVDASRIPQDGMAVVRIWQANIGKTIIAHIPITDGAVQETGDFELDGVTFPAAEVQLEFMDPAAEEEGGGGSMFPTGNLVDDLEVPGVGKLKATLINAGIPTIFINARDVGYTGTELQGAINGNPKALAMFETIRAHGALRMGLIKHLDEAAQRQHTPKVAFVAPPADYLSSSGKTVAAGDVDLLVRALSMGKLHHAMMGTAAVAIGTAAAISGTLVNLAAGGVERNAVRFGHPSGTLRVGAEASVVNGEWTVKKAMMSRSARVLMEGFVRVPGDVFPGPT0001520_250DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-ACONITIC_ACID_BIOSYNTHESIS,PGPT0001520-prpF-K09788NANA
D1-35_02150894hypothetical proteinATGGTTTTTTCATTACGACAATTGGTCTGGGCTCTAGCCCTCGGCGGCGCAGTGATCACCTCGTCGATGGCCGCCGAAAAGACCCAACTGCTGGCCTCGCTGCCCGTCACCTACGGGTTGGGCGAGGCCTTGCTCAAGGGCACCGACGTCAGCCTGGCCCGGGCCGCTCCGGACAATCTTCCCGGCACCCGGCAAAGCGCCTATTTCAGTGGCCGTGGCGCCCCGGCCCTGAGCAAGCTGGCCGGCGAGGCCGACGCGGTGATCGGGCTGCGTTCGCTCTGGCCGGACGATCCGCTGTACCCCATGGCCCGCCGCAGCAATATCCGTATCGTTGAAATCGACGCTGCTCGTCCGGTGGACGGCGCCCTGCCCGGCATCGCCATACAGCCGGGCATGACCGACGGCCTGGCGAGCCAGCCGTGGATGGCCAGCCACAATCTGGGGCGGATGGCCGACGTGATCGCTGCTGATCTGGTGCGCCTCGTCCCGGCGGACAAACCGAAAATCGATGCCAACCTGGCGGCACTCAAGCAGCGCCTGCTCAAGCTCAGCGCCGACAGTGAAAAGCGCCTCGCCAGCGCTGACAACCTGAGCGTGGTCAGCCTGAGCGAGCACTTCGGTTACTTGATCAGTGGCTTGAACCTGGATGGCATCAACACCGATGCCCGCCCCGACGCCGAATGGACAGCCGAAGCCCTGAAGCAGCTGACAGCCACGCTCAAGGAGAACGATGTCGCACTGGTGCTGCATCACCGACAGCCGCCGGAAGCTGTGAAAGCGGCCATCGCCGAAGGCGGTAGCCAACTGCTGGTGCTGAGCACCGACGGTGCCGATCCGGTGGCGGAACTGGAAAACAACGTGGAGCTGGTCGTCACCGCACTGACGAAAGGCTGAMVFSLRQLVWALALGGAVITSSMAAEKTQLLASLPVTYGLGEALLKGTDVSLARAAPDNLPGTRQSAYFSGRGAPALSKLAGEADAVIGLRSLWPDDPLYPMARRSNIRIVEIDAARPVDGALPGIAIQPGMTDGLASQPWMASHNLGRMADVIAADLVRLVPADKPKIDANLAALKQRLLKLSADSEKRLASADNLSVVSLSEHFGYLISGLNLDGINTDARPDAEWTAEALKQLTATLKENDVALVLHHRQPPEAVKAAIAEGGSQLLVLSTDGADPVAELENNVELVVTALTKGNANANANANA
D1-35_02151900znuB_1COG1108High-affinity zinc uptake system membrane protein ZnuBATGAGTTATGAAGCCTTCCGCCTGATGGTCCAGGGTTGGGCCTCCTCCGGTTACCTGCCCGAGGCGCTGGCCTATGGTTTTGTGGTCAACGCCTTGCTGGCCGGGCTGTTGATCGGCCCGGTGCTGGGCGGCCTCGGCACGCTGGTGGTGGTCAAGCGCTTTGCGTTTTTCTCCGAAGCGGTGGGCCATGCGGCGCTGACCGGCGTGGCCGTCGGCATCCTGCTCGGCGAACCCTACACCGGGCCCTACGGCAGCCTGTTCGGCTACTGCCTGCTGTTCGGCATCCTGCTCAATTACCTGCGCAACCGCACCGGCCTGGCCCCGGATACGTTGATCGGCGTCTTCCTCTCGGTGTCCCTGGCCCTGGGCGCGAGCCTGCTGCTGATCCTGGCGGGCAAGATCAATGTGCACATCCTGGAAAACGTGCTGTTCGGCTCAGTGCTGACGGTCAACGGCAATGATCTCGCGGTGCTGGCGGTGGTCGGTTCGCTGGTGATGGCGCTGGCGCTGCCGCTGTACAACCGGATCATGCTCGCCAGCTTCAACCCGCAGCTGGCGGCGGTACGCGGGGTGGCGGTCAAGACGCTGGACTATCTGTTCGTGGTCCTGGTGACGCTGATCACTGTGGCGGCGGTGAAAGTCATCGGCGCGATCCTGGTGGGTGCGTTGCTGGTGATTCCGGCCGCGGCCGCGCGTTTGCTCAGCCAATCGTTGAAAGGTTTTTTCTGGTGTTCGGTGCTTATCGCAACCGTCAGTACTTTATGCGGGATCCTGGCGCCGATCGTTTTCGACCTGCCGATCCCGTCCGGTGCCGCGATTATTCTTGTGGCCGGCATCGCCTTCGCCCTGAGCGCCATCGCCCGTGGCGTCGTCCCCCATCTGAAAGGGAATCTTGGATAAMSYEAFRLMVQGWASSGYLPEALAYGFVVNALLAGLLIGPVLGGLGTLVVVKRFAFFSEAVGHAALTGVAVGILLGEPYTGPYGSLFGYCLLFGILLNYLRNRTGLAPDTLIGVFLSVSLALGASLLLILAGKINVHILENVLFGSVLTVNGNDLAVLAVVGSLVMALALPLYNRIMLASFNPQLAAVRGVAVKTLDYLFVVLVTLITVAAVKVIGAILVGALLVIPAAAARLLSQSLKGFFWCSVLIATVSTLCGILAPIVFDLPIPSGAAIILVAGIAFALSAIARGVVPHLKGNLGPGPT0004225_305DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ZINK_RESISTANCEZINK_RESISTANCE-ZNU_TRANSPORT_SYSTEM,PGPT0004225-znuB-K09816NANA
D1-35_02152753scaC_1COG1121Manganese import ATP-binding protein ScaCATGACGGCTCAGGAACCCCTCATCCAGCAACATGTCGGCCCGATGATCGAGTTCGCCGACATCAGCCTGAATCTTGGGCGCACCGCGATTCTCGACAATGTGGCCTTTCAGGTACAAGCCGGCAGCATCCATGCACTGGTCGGCCCCAACGGCGGCGGCAAGAGTTCGCTGATCAAGACCTTGCTTGGACAGATGCCGCACCAGGGGCGCTTGAGCCTGCAATGGCCGGGCGAACCCGGCGTCATCGGCTACGTGCCCCAGGCGCTGGAATTCGACCGGGGCCTGCCCATGACGGTGGACGACTTCATGGCGGCCATGTGTCAGCGGCGCCCGGCCTTCCTCGGTTTGAGCAAGCATTATGCTGGCGCCATCGGTCAGGCCCTCGAGCGGGTCGGCCTGCAGGACAAGCGCAAGCGACGCATGGGCGCGCTGTCCGGTGGCGAGCGTCAGCGGGTATTGCTGGCCCAGGGATTGATCCCGCCGCCGCAACTGCTGGTACTGGATGAACCCATGTCGGCTTTGGACGAGGCCGGCATCCAGGTATTTGAACGCTTGCTGCAGGACTGGCGCCAGGCCGGCATTACCGTGCTCTGGATCGAGCACGACCTGGAAGCCGTCGGACGCCTGGCCGATCACGTCACCGGGCTGAATCGACGGGTGTTGTTCGACGGCCCGCCGCGCCAGACCCTGACCCCGGAACGGCTGCTGACGCTGTTTTCGACCCATCCACGTGCCAACGGGAGCGCCGCCTGAMTAQEPLIQQHVGPMIEFADISLNLGRTAILDNVAFQVQAGSIHALVGPNGGGKSSLIKTLLGQMPHQGRLSLQWPGEPGVIGYVPQALEFDRGLPMTVDDFMAAMCQRRPAFLGLSKHYAGAIGQALERVGLQDKRKRRMGALSGGERQRVLLAQGLIPPPQLLVLDEPMSALDEAGIQVFERLLQDWRQAGITVLWIEHDLEAVGRLADHVTGLNRRVLFDGPPRQTLTPERLLTLFSTHPRANGSAAPGPT0004230_1760DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ZINK_RESISTANCEZINK_RESISTANCE-ZNU_TRANSPORT_SYSTEM,PGPT0004230-znuC-K09817NANA
D1-35_02153930ssaBCOG0803Manganese ABC transporter substrate-binding lipoproteinATGTCTATTGCACCTTCACGCCGCCCCTTGCTGCGCCTGCTGCTGATTGGCCTGCTCGCCTGCCTGTTCACTCCCATGGCCAGCGCCGAAACGGCCAAGCGCCTGCGCATCGGCATCACCCTGCACCCTTATTACAGCTACGTGGCCAACATCGTCGGCGACAAGGCCGAGGTGGTGCCGTTGATCCCAGCCGGCTTCAACCCTCACGCCTATGAACCCCGCGCCGAGGACATCAAGCGCATCGGCGGGCTCGATGTGATCGTGCTCAACGGTGTGGGTCACGACGATTTCGCCGACCGCATGATCGCCGCCAGCGAAACCCCGGACGTGAAGGTGATCGAGGCCAACGAGAACGTCCCCTTGCTCGCCGCCACCGGCACCGCGGCGCGGGGCGCGGGCAAAGTCGTCAATCCGCATACGTTCCTGTCCATCAGCGCCTCCATTGCCCAGGTCAACAACATCGCCCGGGAACTGGGCAAGCTCGACCCGGACAACGCCAAGACCTACACGCAGAACGCCCGGGCCTACGGCAAGCGCCTGCGGCAGATGCGCGCCGCCGCCCTGGCCAAGCTGACACAGGCGCCGAACGCCGAGCTGCGGGTCGCCACGGTACATGCCGCCTACGATTACCTGCTGCGCGAATTCGGCCTGGAAGTGACTGCCGTGGTCGAACCGGCCCATGGCATCGAGCCAAGCCCCAGCCAGTTGAAAAAGACTATCGACCAGCTGCGTGAGCTGGACGTGAAGGTGATCTTCTCGGAGATGGATTTTCCATCCACCTACGTCGACACCATCCAGCGTGAATCGGGAGTGAAGCTGTACCCGCTGTCGCACATTTCCTACGGCGACTACAGCGCCGAGAAATACGAAAAGGAAATGACCGGCAACCTCGACACCGTGGTCCGGGCGATCGAGGAGTCCGGCGCATGAMSIAPSRRPLLRLLLIGLLACLFTPMASAETAKRLRIGITLHPYYSYVANIVGDKAEVVPLIPAGFNPHAYEPRAEDIKRIGGLDVIVLNGVGHDDFADRMIAASETPDVKVIEANENVPLLAATGTAARGAGKVVNPHTFLSISASIAQVNNIARELGKLDPDNAKTYTQNARAYGKRLRQMRAAALAKLTQAPNAELRVATVHAAYDYLLREFGLEVTAVVEPAHGIEPSPSQLKKTIDQLRELDVKVIFSEMDFPSTYVDTIQRESGVKLYPLSHISYGDYSAEKYEKEMTGNLDTVVRAIEESGAPGPT0004220_2324DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINROOT_COLONIZATION-ZINK_TRANSPORT_LIPOPROTEIN,PGPT0004220-znuA-K09815NANA
D1-35_02154576hypothetical proteinATGAGCGCACCCACCACCCAGGTCATCCGCCCCGCCGGTGCCGGCCACGAAACCCTGTATGTATTGTTGCTGTGCCTGATTATCCTGCTGGGCGCCGGTTCGGTCGTGGCCTGGCATGGGGAAACCCGGGATGTTGCCCACCTGGACGCCCATCAATTGGACGCACGCCGCGACCTCAGCGCCGCCGAGCAAGGCATTTATGCCGACCTGCGGGTGACACTGGATGAGATCCGGATCCTGCGCGAGAGCGAGCAAGCCCTCCCCGGTCCGCAAGTCCTGGCCGATGAAGGCTTCGCCCCGTTCGCCCAAGACGCCAGTTCCGTCAGCCGCGGCGGCCACGCCTGGCAATTGCTGGCAGACCGAGCCTACTTCGGCGCGAGCGCCAATTCGTCCGTCGCAGGCTCCTTTCTGATGCGCATCAGCGAAGTGCCCGATGCGTCCCCGGACATCTGGCTCAACCGCGGCAATCCTCCAACCACCCCTACCACGTTGGACGACGCCGCTTTGTCCGCCGCCGGCTGGCAACAGATCGTCGCGCAATTCGACGCTGGCGTAACCCGCCAGCATCGGCATTGAMSAPTTQVIRPAGAGHETLYVLLLCLIILLGAGSVVAWHGETRDVAHLDAHQLDARRDLSAAEQGIYADLRVTLDEIRILRESEQALPGPQVLADEGFAPFAQDASSVSRGGHAWQLLADRAYFGASANSSVAGSFLMRISEVPDASPDIWLNRGNPPTTPTTLDDAALSAAGWQQIVAQFDAGVTRQHRHNANANANANA
D1-35_02155327hypothetical proteinATGAACCTCCGCGCCTCTTTCAACAGCCTGGCGCTGCTGCTCTGCGCAGGCTTGAGCACCAGCGCCCTGGCCCACAATCCGATGTGCGAATGCAAGGCTATCGACGCTGAACAGATTCAGTGTACTGGCGGTTTTTCCGATGGCAGCGGCGCCCCCGGAGTGACGCTGGACGTGATCGGCTACGACGAAACCATCCTGGTCCCCGGCAAGCTCGGCGCCGACTCGACGTTGACCTTCAAGAAACCCAACGCCGAGTTCTACGTACTTTTTGACGCCGGCCCCGGCCACGTCGTGGAAATCGACCAAGCCGACATCGAGGCCCCATGAMNLRASFNSLALLLCAGLSTSALAHNPMCECKAIDAEQIQCTGGFSDGSGAPGVTLDVIGYDETILVPGKLGADSTLTFKKPNAEFYVLFDAGPGHVVEIDQADIEAPNANANANANA
D1-35_02156543hypothetical proteinGTGAACCCGTCCACTACGACAACATCACCGTCACGCCTGGGCCAGTTCTGGCATAAATGGCGCTTCCATATCAACGTCCTGTTGCTGCTGATTCCCCTGGGTTTCATGCCCAAGTACTTGTCGGAGGCCGCGTTGTTCCGAGGCGACGGCGGGCTTGGCGAGCGGGAAGTCGGCGAAGTCCAGGTGGGCCCCTGGAGCTTGCGCCTGGCGGAGTTTCGCGACGAAGCGCCACGCACCCAGGGCCCCGCCGGGCCGATGAAACACTTCAACGCCGCCCTGTGCCAGCGCTGCATCAGCGAGGTTAAAGCCACCTATCTGCGCATCGGCAAGCCCCGCAGCCTGCGGGCCGCCGGGGTGATTTTCTTCGGCTCGCCCTATCGCATGGGTGCCTTGTTGCCGGTGCCGAAAAAGACCCAGCCAGACGCCGAACTGTGGATCACCCTCGAAGGCTGGGACGGCTCGATGCATCAAGCTTCCATCCCCCTGAGCCAGGCCTCCCCGGCCACCGTCGCCTGGTTGCAATCCCAAGGAGCCCGACCATGAMNPSTTTTSPSRLGQFWHKWRFHINVLLLLIPLGFMPKYLSEAALFRGDGGLGEREVGEVQVGPWSLRLAEFRDEAPRTQGPAGPMKHFNAALCQRCISEVKATYLRIGKPRSLRAAGVIFFGSPYRMGALLPVPKKTQPDAELWITLEGWDGSMHQASIPLSQASPATVAWLQSQGARPNANANANANA
D1-35_021571215hypothetical proteinATGTCGAAGAAGTCCCGCTCCAAACTCTGGTTCCTGGTTCACAGCTGGCTGGCGTTGCCCATCTGGTTTTTCGTTCTGATCGTTTGCGTCACCGGTACGCTGGCGGTGGTCAGCCAGGAGATCGTCTGGCTGGTCAATCCGGAAATGCGCGCCAGCAAGCCCGCCGATGATGCGCCGTTGCTCAGCTACGACCAGGTCGTTGCCGCCATCAAGCAAGCCCAGCCCCTGACTCAGGTGCAAAACATTGTGCGTCCGGACGAGTCGCACTTCGCCCTGGAGGTCAAGGTCACCTACCCCGACGGTCGCCCCGACACTGTTTACGTCAACCCCTACAGCGGCGTCATCCAGGGCTCGGCACCGGCCTTCAACTTCAGGGGGTTCACCCGTGCATTGCATGGCTGGTGGCTGGTGCCGTTCACCAACGGCTACAGTTGGGGCTGGTACCTGGTGTCCTTCCTCGGCCTGCCGATGCTCGCGTCGCTGGTGACCGGGCTGGTTGTATATAAACGTTTCTGGAAAGGTTTTTTCAGCCCGACCCTGCGTATTCGCCACGGGGCCCGCATTTTCTGGGGCGATTTCCATCGGCTCAGCGGCATCTGGTCGATTTGGTTCATTGCCGTCATTTCCATCACCGGCACCTGGTTCCTGATCGAGGCCACGCTGGCCGATAACGGCATTTCCATCTCCAGTGCTCCGGTCGTCCCCGTGGTGGCCCGGGAAAACGTTCCGCTGTCGACGGGTGGTACGCCTCCGCCGCAACTGAACCTGGACCGCGCCATTGAAATTGCCCAGCAGCGGATCCCGGGCCTGGAAGCGAGTTTCGTCAGCCTGCCCGGCAATGCCTACAGCCATCTGGAAGTCGGCGGACGCGGCTGGTATCCGCTGATGTACCAGACGGCGACCATCAATCCCTACAACGGTGATGTCGACGCTTCCCGATTGTTGTCGGACCGCACGGCGCTGGAGTTCGTGACCGAATCCATGCGCCCGCTGCACACCGGGGATTTCGGTGGCCTCTGGATCAAGCTCATCTGGTGTTTCTTCGGCCTGGTGCTAAGCATGATGGTCCTCAGCGGCCTGCTGATCTGGACCAAACGCACGGCGCTGGCGACCGCCAACGCCCTCAAGCGCAACCAGAAACCTGTGCGGCCAGCCCAAACCACGCCGCAACTGCAGCCTTCCATGCACCGTGACTCACCGGAGGGCAGCCTGTGAMSKKSRSKLWFLVHSWLALPIWFFVLIVCVTGTLAVVSQEIVWLVNPEMRASKPADDAPLLSYDQVVAAIKQAQPLTQVQNIVRPDESHFALEVKVTYPDGRPDTVYVNPYSGVIQGSAPAFNFRGFTRALHGWWLVPFTNGYSWGWYLVSFLGLPMLASLVTGLVVYKRFWKGFFSPTLRIRHGARIFWGDFHRLSGIWSIWFIAVISITGTWFLIEATLADNGISISSAPVVPVVARENVPLSTGGTPPPQLNLDRAIEIAQQRIPGLEASFVSLPGNAYSHLEVGGRGWYPLMYQTATINPYNGDVDASRLLSDRTALEFVTESMRPLHTGDFGGLWIKLIWCFFGLVLSMMVLSGLLIWTKRTALATANALKRNQKPVRPAQTTPQLQPSMHRDSPEGSLNANANANANA
D1-35_02158462soxRCOG0789Redox-sensitive transcriptional activator SoxRGTGATTCAGGTGACGACGTCGATCAACATTCACAAGGAACTGACCGTCGGCCAGGTGGCCGCCCGCAGCGGCGTGGCGGTCACCGCGCTGCACTTCTATGAAACCAAGGGCCTGATCAAAAGCACGCGCAACCCGGGCAACCAACGTCGTTACCCCCGGGCCGTCCTGCGGCGCGTGGCGCTGATCAAAGTCGCCCAGCGCCTGGGCATACCCCTGGCGGAAATTGGCGAGGCGCTGAAAAACCTGCCGGACAACCGTGCGCCCACGGCGGCCGACTGGAAGACCCTGTCAGCGCAGTGGAGCCGGAACCTGGATGACCGGATCAATCAACTGATCGCATTGCGAGACCGGCTCAACGGTTGTATCGGCTGCGGCTGCCTGTCGATGGAAAATTGCCCGCTGCGCAACCAGGCTGATGTGCTCGGCAAACGCGGGCCAGGGGCGCATTTGCTGGAACCCTGAMIQVTTSINIHKELTVGQVAARSGVAVTALHFYETKGLIKSTRNPGNQRRYPRAVLRRVALIKVAQRLGIPLAEIGEALKNLPDNRAPTAADWKTLSAQWSRNLDDRINQLIALRDRLNGCIGCGCLSMENCPLRNQADVLGKRGPGAHLLEPPGPT0012955_870DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGNITROSATIVE|OXIDATIVE_STRESS|ROS_REGULATORY_PROTEINS,PGPT0012955-soxR-K13639NANA
D1-35_02159414hypothetical proteinATGCAATCGCCAAGTGGTCATCGCAGCTTCACGCAGTTGATCGAGTTCGACATCGAGCCTCAGTGGCAGCAGACGCTGGTCAACGCCCTGTCAGCGCAGACCGAGCGCCTGGCTCGTGATCATTCGGGTTTCCTCAATGCCAGTATCCAGGTCAGCGAGGACGGACGTCGGGTGCTTAATTACCTGCAATGGCAAACCCGCGAGGCGGGTGAAGCGGCGTTCCGCAGCGTTGAGAATGGTGAGGAAAGTTTCTGGCAGTTCATCCAGGCGCATCGGGCCAAAGCGGTGACGTTTGGCTCGTTCCAGGTGCTGCGCAACATCGAGCGCAGCCTGGACGATGCGTTGCATTGCCCGTTGGTCAACCAAGCGCAACGGGAGATCCGAGAGGGCGATACCCATTATCAAAAGCGTTGAMQSPSGHRSFTQLIEFDIEPQWQQTLVNALSAQTERLARDHSGFLNASIQVSEDGRRVLNYLQWQTREAGEAAFRSVENGEESFWQFIQAHRAKAVTFGSFQVLRNIERSLDDALHCPLVNQAQREIREGDTHYQKRNANANANANA
D1-35_02160267hypothetical proteinATGAATCGTATCCTTGCTGTCTTGTTGCTGTTGACTGTCACCGTATTGAGCGGTTGCGCTTCGTCGTCCCCGGAGCTGCGTCCTTACACCGCCGAGGAATCCCGTGAGCTGGCCCTCGAAGCCTTGAATCGGCGGGGGCTTTCGTTTGATGAATACCATGCGAAGAAAGCCGAATTGCTCGGTCCTTCGCAGAAAAACGTCGGCTTCGACGAGCGCGGCGAGATGAGCGCCGAGCAGACAGTCCAGGCACCGGGCCGGTCGAGCTGAMNRILAVLLLLTVTVLSGCASSSPELRPYTAEESRELALEALNRRGLSFDEYHAKKAELLGPSQKNVGFDERGEMSAEQTVQAPGRSSNANANANANA
D1-35_02161615eamB_1COG1280Cysteine/O-acetylserine efflux proteinATGACCCTCTCGCTTGACCTGCTGCTGGGCTTCGCCCTGTTTGCCCTGGTGACCTCGATAACGCCCGGCCCCAACAACACCATGTTGCTGGCCTCGGGTGTGAATTTCGGCTTCAACCGGACCATCCCGCACATGCTCGGCATCACTTGCGGCTTCTTTTCCCTGGTCCTGGCGGTGGGCCTTGGGCTGGGCGCGGTGTTCCAGACATATCCGCTGCTCTACACCGTGCTGCGCTACGTCGGTGCGGCATATCTGATATACCTGGCCTGGAAAATCGCCCACTCCGGTCCTGTCTCGGACGGCGGCGCGGGTGAGAACAAGCCGATCAGCTACTGGGGCGCAGCAGCGTTCCAATGGGTCAACCCAAAGGCCTGGATCATGGCCATCGGCGCCATCAGCACCTATACGCCTCTGCAAGGTTACTTTTTCAATGTGGTGGTGATCGCGGCGGTGTTTGCGTTGATCAACCTGCCTAGCGTCAGCCTGTGGGTAGTCTGCGGCAGCCTGCTGCGCAACTTGTTGCAGGATCGCCGGTGGCTGCGTGTCTTCAACTGGGGCATGGCGCTGCTGTTGGTCGCGTCGCTGTATCCGTTGTTGCTCGAAAGCGTGAGTTAAMTLSLDLLLGFALFALVTSITPGPNNTMLLASGVNFGFNRTIPHMLGITCGFFSLVLAVGLGLGAVFQTYPLLYTVLRYVGAAYLIYLAWKIAHSGPVSDGGAGENKPISYWGAAAFQWVNPKAWIMAIGAISTYTPLQGYFFNVVVIAAVFALINLPSVSLWVVCGSLLRNLLQDRRWLRVFNWGMALLLVASLYPLLLESVSNANANANANA
D1-35_021621167iscS_2COG1104Cysteine desulfurase IscSATGAATAAGCGTCCTTTGTATTTTGATTACGCCGCCACCACCCCGGTGGACGAGCGGGTGATCCAGGTCATGGTCCAATGCCTGGGTTTCGACGGTAACTTCGGTAACCCGGCCTCCAGCTCTCATGCCTTCGGCCAGGAGGCCCGGCGCTCGGTGGAACTGGCGCGCCAGCAGGTGGCTCGGTTGGTGGGTGCTCAGGCCGGACAAATCGTCTGGACTTCCGGCGCCACCGAATCCAATAACCTGGCCCTCAAGGGCGTGGCCCAGGCGCGTGAAGCGCGTGGCGGCCACGTCATTACCAGCCTGATCGAACATAAGGCCGTTCTCGATACGGTCAGGCAGCTCGAGGAAAGTGGCGTCGCGGTAACCTGGCTGGCGCCGTGCGCTGATGGCCTGATCGACCCGCAAGCGGTTCGCGAGGCGCTCCGCGAAGACACTTTCCTGGTGTCGCTGATGCTGGTCAATAACGAGTTGGGCACGGTCAATGACGCCATCGCCATTGGCGAGATCGTTCGAGCGCATGGCGCGTTGTTTCATATGGACGCGGCCCAGGGTGCGGGAAAAGTGAGCATCGACCTGGCCCGGTGGCCGGTGGACTTGATGTCGTTTTCCGCACACAAGATCTACGGCCCCAAGGGGATCGGCGCACTTTATGTTGGTGATCGCGCGCGCCCGCGGCTGTCGGCCCAGATCCATGGCGGCGGTCATGAAGGTGGCTTGCGCTCCGGGACCTTGGCGACCCATCAGATTGCCGCGATGGGCGCGGCATTCGAGCTGGCGGCGCAGGCCTTTGAGGAAGAACTCGCCGACATCGCCCGACTGCGCAATCGTTTGCTTGAACCTTTGCTGGCCTTGCCCGGTGTGTGTATGAATGGCAGTGCCAACTGTCGCATTCCCCATACGGTGAGCCTGACGTTCAACGAAGGTGAGTTCAACCTGGCGACGCTGGGCGCAACGATGGCATTCTCCGCGACCTCGGCTTGCAACTCGGCGCAAAACACTCCATCCCACGTGTTGCTCGCCCTTGGGCATGATGCACGCGCGGCCGGGCGGACCATTCGTTTGAGCCTGGGCCGCTTTACCAGCGGACAGGACATTGATGAGGCGGTGCGATTGATCAAGGCCGCCTGTGTTGCCGCGCCGGCCTTCTGGGCGGCAACCCCCTGAMNKRPLYFDYAATTPVDERVIQVMVQCLGFDGNFGNPASSSHAFGQEARRSVELARQQVARLVGAQAGQIVWTSGATESNNLALKGVAQAREARGGHVITSLIEHKAVLDTVRQLEESGVAVTWLAPCADGLIDPQAVREALREDTFLVSLMLVNNELGTVNDAIAIGEIVRAHGALFHMDAAQGAGKVSIDLARWPVDLMSFSAHKIYGPKGIGALYVGDRARPRLSAQIHGGGHEGGLRSGTLATHQIAAMGAAFELAAQAFEEELADIARLRNRLLEPLLALPGVCMNGSANCRIPHTVSLTFNEGEFNLATLGATMAFSATSACNSAQNTPSHVLLALGHDARAAGRTIRLSLGRFTSGQDIDEAVRLIKAACVAAPAFWAATPPGPT0000065_4241DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-SULFUR_MODIFICATION_PROTEINS,PGPT0000065-nifS|iscS-K04487NANA
D1-35_021631809hypothetical proteinATGAGTACCCAGCCTTCGACCCCGGGACAGGTTCCCCAGCGCCTGGCCCGAATTCGCCAATTGATGAGCCAGGAGGACATCCATGCGCTGTTGGTGCCTTCCGCCGACCCGCATCTTTCGGAGTATCTGCCTGGGTACTGGCAAGGGCGCCAATGGTTGTCCGGGTTCCATGGCTCGGTCGGTACATTGATCGTGACCGCGGATTTCGCCGGGGTCTGGGCGGACAGTCGTTACTGGGAACAAGCCACCAGCGAACTGGAAGGCAGCGGCATCGAGCTGGTCAAACTCATCCCCGGAAAGCCCGGGCCGTTGGACTGGCTGGCCGAAAACACGCCTGAAGGGGGGGCGGTAGCGGTCGATGGTGCGGTCATGGCGGTGGCATCGGCGCGGACCCTGAGCAGCAAGCTGCAAGAGCGTGGCGCACGGTTGCGTACCGACATCGATCTGCTCGCACAAGCCTGGACCGATCGTCCGAGCCTGCCGGATCAACCGGTCTACGCGCATTTGCCGCCGCAAGCCACGATCGGTCGTGTCGAGAAAATCGCCCAGTTGCGCGAAGCCCTGAAGGAGCGTGCTGCGGATTGGCATTTCATCGCCACCCTGGACGACATCGCCTGGCTGTTCAACCTGCGCGGCGCGGATGTGTCATTCAATCCGGTATTCGTCTCCTTTGCCCTGATCAGCCAGCAACAGGCGACGCTGTTTGTGGATTTGAACAAGGTCGACGCTGCGCTGCGTTCTGTTCTTGAGCAAGACGGCGTAACGCTGCGCGACTACAGCGAAGTGGCCACTGCGTTGCGTGAAGTGCCGAGCGGCGCGAGCCTGCAGGTCGATCCGGCCCGGGTCACGGTCGGTTTGCTGGACAATCTGGACAGCGGCGTGAAACTCGTCGAAGTGCTCAACCCCACAACACTGGCCAAATCGCGCAAAAGCCCGGCCGATGCCGAGCACATCCGTCGAGCCATGGAGCAGGACGGAGCGGCGCTCTGCGAATTTTTTGCCTGGCTGGAAAGTGCCTGGGGCCATGAGCGCATCACTGAACTGACCATCGATGAGCACCTGACCGCAGCGCGCAAGCGCCGGCCGGAGTTCGTCTCCTTGAGCTTCAATACCATCGCGGCGTTTAATGCCAATGGCGCGATGCCTCACTATCACGCCACCGAAGAGGCGCACGCGGTCATTGAGGGAGATGGCTTGCTGTTGATCGATTCGGGCGGCCAGTACCTTGGCGGTACGACCGATATCACCCGCATGGTGCCGGTCGGGACACCGACGTCGGAGCAGAAGCGTGACTGTACCCGCGTGCTCAAAGGCGTAATTGCCTTGTCCAGGGCCAAATTCCCCAAGGGCATTCTGTCGCCTCTGCTGGATGCCATCGCCAGGGCGCCGATCTGGGCTGAACAGGTGGATTACGGTCATGGCACCGGCCACGGTGTCGGCTATTTCCTCAACGTCCACGAGGGCCCGCAAGTGATTGCCTATCAGGCTGCCGCTGCACCCCAGACCGCCATGCAGCCGGGCATGATCACGTCCATCGAGCCGGGTACTTATCGCCCGGGTCGCTGGGGTGTTCGTATCGAGAACCTGGTGTTGAACCGGGAGGCGGGCAGCAGCGAGTTCGGCGAATTCCTCGCATTCGAAACCCTGACGTTGTGCCCGATCGACACCCGCTGCCTTGAGCCGTCGTTGCTGAACCAGGACGAAAAGGACTGGCTCAACGCCTACCACGGCGAGGTTCAGCGTCGCTTGAGTCCGCTGCTCGATGGCGCTGCGCTGCAATGGCTGAACACACGGACAGCGGCAATCTGAMSTQPSTPGQVPQRLARIRQLMSQEDIHALLVPSADPHLSEYLPGYWQGRQWLSGFHGSVGTLIVTADFAGVWADSRYWEQATSELEGSGIELVKLIPGKPGPLDWLAENTPEGGAVAVDGAVMAVASARTLSSKLQERGARLRTDIDLLAQAWTDRPSLPDQPVYAHLPPQATIGRVEKIAQLREALKERAADWHFIATLDDIAWLFNLRGADVSFNPVFVSFALISQQQATLFVDLNKVDAALRSVLEQDGVTLRDYSEVATALREVPSGASLQVDPARVTVGLLDNLDSGVKLVEVLNPTTLAKSRKSPADAEHIRRAMEQDGAALCEFFAWLESAWGHERITELTIDEHLTAARKRRPEFVSLSFNTIAAFNANGAMPHYHATEEAHAVIEGDGLLLIDSGGQYLGGTTDITRMVPVGTPTSEQKRDCTRVLKGVIALSRAKFPKGILSPLLDAIARAPIWAEQVDYGHGTGHGVGYFLNVHEGPQVIAYQAAAAPQTAMQPGMITSIEPGTYRPGRWGVRIENLVLNREAGSSEFGEFLAFETLTLCPIDTRCLEPSLLNQDEKDWLNAYHGEVQRRLSPLLDGAALQWLNTRTAAIPGPT0006770_1438DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0006770-pepP-K01262NANA
D1-35_02164591nsaD2-hydroxychromene-2-carboxylate isomeraseATGAACAGATCCGTCGAGTTTTTTTTCGACCTGGGCAGCCCGACCACCTACCTGGCCTATACCCAATTGCCCGCGCTCTGCGCTGAAACCCATAGCGAGCTCATCTATCGCCCCATGCTTCTGGGCGGCGTATTCAAGGCAACGGGCAACGCGTCGCCCGTTACCGTGCCGGCCAAGGGGCCTTATCTGTTCCAGGACTTGAACCGTTTCGCCAAGCGCTACGGTGTCGACTTCAAGCTCAACCCGCATTTTCCAATAAACACATTGCTATTGATGCGCGCCGTCACGGGCATGCAACTGCGTCATCCGGATCGTTTCGAGACTTTCACGAGCTGTCTGTTCCGGGCGCTCTGGGTGAATGCCCGCAACCTCAACGACCCGGCAACAGTCGCGGCCGTGCTGGACGAAGGGGGTTTCGACCCTGCCTATGTGCTTGCCCTTACAGCCGACGAGCAGGTCAAGGAAACATTAAGGAGCACAACCGAAGAGGCCGTGCGCCGAGGTGTGTTCGGTGCGCCGAGCATGTTTGTCGGCAACGAGATGTTCTTTGGCCAGGATCGCCTGGACTTCGTCCGTGAAGCCCTCGGCTGAMNRSVEFFFDLGSPTTYLAYTQLPALCAETHSELIYRPMLLGGVFKATGNASPVTVPAKGPYLFQDLNRFAKRYGVDFKLNPHFPINTLLLMRAVTGMQLRHPDRFETFTSCLFRALWVNARNLNDPATVAAVLDEGGFDPAYVLALTADEQVKETLRSTTEEAVRRGVFGAPSMFVGNEMFFGQDRLDFVREALGNANANANANA
D1-35_02165729kduD2-dehydro-3-deoxy-D-gluconate 5-dehydrogenaseATGAATAACAAGAAGGTGGTACTGGTAGTGGGAGCTGGCGATGCTACTGGTGGCGCGATAGCCCGGCGTTTCGCTCGGGAAGGCTTCGTGGCCTGCGTCACTCGCCGCAACGCTGACAAGCTCGAAGCTTTGGTCGATGAAATCCGTACCCAGGGCTGTGAAGCCCACGGTTTTGCCTGCGACGCACGCAAGGAAGATGATGTGATCGCACTGATCGAGCAAATCGAGGAGCAGGTTGGCCCGATCGAAGCCTTCGTATTCAACATCGGCGCCAACGTGCCTTGCAGCATTCTCGAAGAGACGGCTCGCAAATATTTCAAGATTTGGGAAATGGCCTGCTTTTCAGGTTTCCTCAATGCTCGAGAAGTAGCCAGGCGCATGGTCAAACGTCAGCGCGGCACGATCCTGTTTACTGGCGCCACGGCAGGCTTGCGCGGGGCATCAGGGTTCGCCGCATTTGCGGGGGCCAAGCATGGCATCCGGGCCTTGGCCCAGAGCATGGCGCGAGAATTGGGGCCGATGAATATTCATGTAGCCCATGTTGTGGTGGATGGCGCCATCGACACTGACTTCATCCGCGATAATTTCCCGGAAAAGTACGCAACCAGGGCAGAAGACGGCATCCTCGGCCCGGAGCACATCGCCGAAAACTATTGGTACTTGCATACCCAGCCGCGGGATGCCTGGACCTTCGAACTGGATCTGCGCCCCTGGAACGAACGCTGGTAAMNNKKVVLVVGAGDATGGAIARRFAREGFVACVTRRNADKLEALVDEIRTQGCEAHGFACDARKEDDVIALIEQIEEQVGPIEAFVFNIGANVPCSILEETARKYFKIWEMACFSGFLNAREVARRMVKRQRGTILFTGATAGLRGASGFAAFAGAKHGIRALAQSMARELGPMNIHVAHVVVDGAIDTDFIRDNFPEKYATRAEDGILGPEHIAENYWYLHTQPRDAWTFELDLRPWNERWNANANANANA
D1-35_02166570hypothetical proteinATGCGTTATTCAGCCAATCACAAGATGGAAACCCGAGAGAAACTGCTGACCAGCAGTGCCATGTCGGCCAAGAAATCAGGATTTTCGACGGTCGGGGTAGATGGCCTGATGAAGGCGATCGGTCTTAGCGGCGGGGCGTTCTACAGCCATTTCTCATCCAAGGATGAGCTTTTCAAGGCGATCGTCGAGCGCGAGTTGAGCCAGAGCCTGGAGCGCTTGAGTGGTAACGGCGTCATGGACTCGATGAAACTGGAGCGTTGCCTCAAGCAGTACCTGAGCATGAGCCATGTGGAGCAACCCGAGGCTGGTTGCGCCTTGCCGGTTCTGGGGGCTGAGATTGCGCGTTCGGATATGTCGGTGCGTGAGGCCGCGCAAAGCTGGATCTGCCGCCTGCACGAAAGCTGGGCGCGGATACTTGAGAGCGATAGCCTGGCTTGGGCGATCCTGTCTCAATGCGTGGGTGCGCTGGTTGTTGCGCGAATGCTGGCAGCGCCTGAGCTCCAGCAGGAGGTTCTCAGGTCCAGCCATGACGAGATCAGCCATCGCCTGGCCGAACGACAGTCCAGCTGAMRYSANHKMETREKLLTSSAMSAKKSGFSTVGVDGLMKAIGLSGGAFYSHFSSKDELFKAIVERELSQSLERLSGNGVMDSMKLERCLKQYLSMSHVEQPEAGCALPVLGAEIARSDMSVREAAQSWICRLHESWARILESDSLAWAILSQCVGALVVARMLAAPELQQEVLRSSHDEISHRLAERQSSNANANANANA
D1-35_02167282hypothetical proteinATGAAACGAATCTTGATACTGATCGCCGTACTAGCGGTTACGGGCTGCGCGGCGACGTCGAAAATCGAAGTCAAACGCGGAAAAAAAGGCCTGCATATCAACTGCTCCGGCCTGTCCTCTTCCTGGGACCAGTGCAGGGCCAGCGCCGCCAACTCATGCGCGCCCAAGGGTTACAAAATCATCGCCAAATCAGGTGACGCCGTTGAGGAGCCTGGGGACTATCCTTTCGGGCTCAATCCAGCCGGATACACCAGCCGCAGCATGATCGTCATCTGCAAATAGMKRILILIAVLAVTGCAATSKIEVKRGKKGLHINCSGLSSSWDQCRASAANSCAPKGYKIIAKSGDAVEEPGDYPFGLNPAGYTSRSMIVICKNANANANANA
D1-35_02168888rhtACOG5006Threonine/homoserine exporter RhtAATGACTTCACCACATCGCAGCCTGGCAACCACCTTGTATCCGGTTGCCCTGCTACTAATAGCCATGGCATCCATCCAGTCTGGAGCCTCTCTTGCCAAAAGCATGTTCCCTGTAGTCGGTGCGCAAGGCACCACGACGCTACGGCTCATTTTCGCAAGCCTTATCATGTTGATACTGCTGCGGCCGTGGCGAGCCAAACTTACCGCCCAATCCTTGCGCACGGTGATTGTCTATGGGCTGGCGCTCGGCGGCATGAACTTTCTCTTCTATATGTCGCTTCGTACCGTTCCACTGGGCATTGCAGTGGCTCTGGAATTCACCGGCCCCTTGGCAGTCGCTATCTATGCCTCGCGCCGGGCGATTGATTTTCTCTGGATCGCCCTGGCGGTGGTTGGCTTGCTCCTGCTAATACCCACCGGAGCCACCAGCGCGGGCATCGACCTGATCGGAGCCGGCTATGCATTGGGGGCGGGGGTCTGTTGGGCCCTGTATATCCTGTTTGGCCAGAAGGCCGGGGCGGACAATGGTGTGCAGACCGCTGCGCTCGGCGTCATGATCGCAGCCTTGTTCGTAGCCCCCATCGGCATCGTGCATGCCGGGACCGCTTTGCTGACCCCGAGCCTCATCCCTGTCGCCATTGGCGTCGCCATTCTGTCAACCGCCCTGCCCTACACGTTGGAAATGATCTCACTCACCCGCATACCAGCCCGCACCTTCGGCACACTGATGAGCGTCGAGCCTGCGGTCGGCGCGCTATCGGGGCTGCTGTTTCTCCAGGAGTATCTATCCCTGGCCCAATGGGCAGCCATAACCTGCATCATCCTCGCGTCGATCGGCGCTACGTTGACCATGGGCGACTCTGCCAAGCCCGCCATTGCCGCAGATTGAMTSPHRSLATTLYPVALLLIAMASIQSGASLAKSMFPVVGAQGTTTLRLIFASLIMLILLRPWRAKLTAQSLRTVIVYGLALGGMNFLFYMSLRTVPLGIAVALEFTGPLAVAIYASRRAIDFLWIALAVVGLLLLIPTGATSAGIDLIGAGYALGAGVCWALYILFGQKAGADNGVQTAALGVMIAALFVAPIGIVHAGTALLTPSLIPVAIGVAILSTALPYTLEMISLTRIPARTFGTLMSVEPAVGALSGLLFLQEYLSLAQWAAITCIILASIGATLTMGDSAKPAIAADNANANANANA
D1-35_02169405hypothetical proteinATGATGTACACCCGTTTGTTGCTGCCCCTGATTCCGCTGTTGTTCATTGGCGCTGTCCAGGCTGACGTTTGTACCAACGCCACGACCCAAGGCGACATAAACCAGTGTGCAGCCCAAGAGACAAAGGCCGCCGACAAGGAACTGAACAGCCTGTACAAACAGATCACAGCGCGTTTGAAAGACAATGCCGAGGCCAAGCAATTGCTGGTCAAGGCACAGCGAGCCTGGATTGACTTCCGTGACGCCGAATGCAGCTTTTCTGCTTCTGGTGCCGAAGGGGGGAGCGTCTATCCGATGATTCAGAATGACTGCATTACAGCCCTGACGAAGGCGCGAGTAGAGGCGTTCAAGACGTACCTTAACTGCGAAGAAGGAGACCTGAGCTGCCCGGTACCTGGGGCTTGAMMYTRLLLPLIPLLFIGAVQADVCTNATTQGDINQCAAQETKAADKELNSLYKQITARLKDNAEAKQLLVKAQRAWIDFRDAECSFSASGAEGGSVYPMIQNDCITALTKARVEAFKTYLNCEEGDLSCPVPGANANANANANA
D1-35_02170459hypothetical proteinATGCATCTATCTGATCGTATCGAAAGAAAGATCTTGTTGAAGGCGCCGCGTTCGCAGGTCTGGCGAGCCATGGCCAATGCTGAAGCCTTCGGCCAATGGTTTGGCGTGGATCTCGCGGGCAAGCGGTTTGTCGCCGGTGAGCGCACCCAAGGGCAGATTACCTATCCGGGTTATGAGCATCTTGTGTGGGATGTCCTGGTGGAGCGTGTCGAACCCGAGCGAGTGTTCTCGTTTCGCTGGCATCCTTACGCAGTGGAGCCGCAGACCGACTATTCCCAAGAGTCCGAGACGCGTGTGCTATTCGAGCTTGAAGACATGGGCGGTGGCACTCTGCTGAAGGTAGTGGAGTCGGGGTTCAATGACATTCCCGAGGCGCGTCGACTCAAGGCTTTCCGAATGGACAGTCGTGGTTGGGATGAACAGATGGCCAATATTGAAGAGTATCTGAACAAGCCATGAMHLSDRIERKILLKAPRSQVWRAMANAEAFGQWFGVDLAGKRFVAGERTQGQITYPGYEHLVWDVLVERVEPERVFSFRWHPYAVEPQTDYSQESETRVLFELEDMGGGTLLKVVESGFNDIPEARRLKAFRMDSRGWDEQMANIEEYLNKPNANANANANA
D1-35_02173210hypothetical proteinATGAAAACTTTCAATTCCTTGATCGCCGTTACCAGCCTTGTCCTGAGCGCCAGCGCTTTCGCATTGCCAAGCCAGCAACAGGATCGATTCTTTACCCAGTCGCCTGAGCCTTCGCAGTCAGTAGCAGCAGACGGCGCCGATCGCACTCCTGGCGGCCAGACTCTCGCTGCTGATGGCGCTGACCGCACCATCGGACGGCGCCTGGCATGAMKTFNSLIAVTSLVLSASAFALPSQQQDRFFTQSPEPSQSVAADGADRTPGGQTLAADGADRTIGRRLANANANANANA
D1-35_02174948pchRCOG2207Regulatory protein PchRATGTCGGTATCCACGTCCATCACCATCACGCCCATTAACGGCGTAGATCAGCGTCGCGCCGAGCTGGCGAACCTGATGAAGCGCTTCGCACCGGAATATGGTGTCCACGCAACGGCCATCGAGGCCTTGCACCTGATCCGCAGCGATCAACCCACCGAGGCCTTGCACGTTGTGCACAAGCCCGGGCTGTGCGTGATTGTCCAGGGGCGCAAGGAAGTCACGCTGTCTGACGAGCGCTATGTTTACGATCCGCTCAATTACCTGGTGGTCTCGGTGACGCTGCCGCTGGCCGGCCAGGTGATCGAGGCCAGCCCCGAGCAACCGTACTTGTGCATACGCCTGGACATCGACCCGGCACAGATCTGCCAGTTGATCGCCGATGCCAGCCCAATTGGCGTACCGAGCGAAAGAGCCGATCGCGGATTGTTCCTGGACCGCATCGACGAGCCGCTGCTCGACGCAATGCTGCGTTTGCTGCGACTGCTCGACAGCCCGGACGACATCGCCACCCTCGCGCCACTGGCCCAGAAAGAGATTTTCTATCGACTGTTGCGAGGCGCCCAAGGCAGGCGGCTGCACGAAATCGCTATTCCTGACACACAGACCCACCGCATCAGCCGCGCCATCGAGTGGCTTAACACCCATTACGCCGAACCATTGAGCATCGACAGCCTGGCGCAGATGATCAATCTGAGTCCCTCGGCACTGCATCATCGCTTCAAGGCCGTGACCGCCATGAGCCCGTTGCAATACCAGAAACAGTTACGCCTGCAGGAAGCCCGACGACTGCTGCTGGCGGAGAACAGCGATGTTTCGTCAATCGGCTACAAGATGGGCTACGAGAGCCCCTCGCAGTTCAGCCGTGAATACAGCCGTCTATTCGGCGCCTCACCGAGCAAGGACGTCGCTCGCCTTCGCGCCCAGGCGTTGCAAGCGAGCAGCGCCTGAMSVSTSITITPINGVDQRRAELANLMKRFAPEYGVHATAIEALHLIRSDQPTEALHVVHKPGLCVIVQGRKEVTLSDERYVYDPLNYLVVSVTLPLAGQVIEASPEQPYLCIRLDIDPAQICQLIADASPIGVPSERADRGLFLDRIDEPLLDAMLRLLRLLDSPDDIATLAPLAQKEIFYRLLRGAQGRRLHEIAIPDTQTHRISRAIEWLNTHYAEPLSIDSLAQMINLSPSALHHRFKAVTAMSPLQYQKQLRLQEARRLLLAENSDVSSIGYKMGYESPSQFSREYSRLFGASPSKDVARLRAQALQASSANANANANANA
D1-35_02175738putative oxidoreductaseATGTCCGATATTCAAAACAAGGTAGTGGTCATCACTGGCGCCAGCAGCGGGATTGGTGAGGCGGCAGCACGGTTGTTGGCGGCCCGCGGGGCTTGCGTGGTGCTTGGCGCCCGGCGCGTGGAGCGCTTGCAAGCGCTGGTGCAGGAACTTGAAGCCGCCGGTCACCGGGCTGCCTGCAAAGTCGTGGACGTGACCCGTCGCGACGATGTCCAGAGCCTGATCGATTTCGCCGTCGAGAAATTCGGCGGGCTTGACGTGATCATCAATAACGCCGGCGTCATGCCGCTCTCCAAGCTTGAGGCGCTGAAGGTCGAGGAATGGGGCCGCATGATCGACGTCAACATCCGTGGCGTGCTCCACGGCATCGCCGCCGGCCTGCCGTTGATGCAGCGCCAGCGCAGCGGACAGTTCATCAATATTGCCTCCATCGGTGCGTACACCGTCAGCCCGACTGCCGCTGTGTACTGCGCGACCAAGTTTGCCGTACGGGCGATTTCCGAAGGCCTGCGCCAGGAGGTGGGTGGGGATGTCCGGGTGACGGTGATTTCCCCCGGCGTGACCGAGTCGGAACTGGCGGAAAGCATTTCCGACGAAGGCGGACGGGCCGAGATGCGCGAGTTCCGCAGGATCGCCATCCCCGCAGAGGCCATCGCTCGGGCAATTGCCTATGCGATCGAGCAACCGGCAGACGTGGACGTCAGCGAATTGGTGGTGCGGCCGACGGCCAGCCCATTTTAAMSDIQNKVVVITGASSGIGEAAARLLAARGACVVLGARRVERLQALVQELEAAGHRAACKVVDVTRRDDVQSLIDFAVEKFGGLDVIINNAGVMPLSKLEALKVEEWGRMIDVNIRGVLHGIAAGLPLMQRQRSGQFINIASIGAYTVSPTAAVYCATKFAVRAISEGLRQEVGGDVRVTVISPGVTESELAESISDEGGRAEMREFRRIAIPAEAIARAIAYAIEQPADVDVSELVVRPTASPFPGPT0021285_300DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021285-ydfG-K16066NANA
D1-35_02176258hypothetical proteinGTGAGAAAGGCATTTGGAGATCAGGACAAATTCGTCGGCCTGTGGGTGACGGCCGATGGCGTGATTCGCCATCGGTTGCTTCCGGGCGGGCGCTACGACGAAGCGCGGGGCACTCGGGAGAGTGCCTATGAGGGCGACTATTGGCTGCAGGACGACCATATCGAATACCACGACGATACGGGTTTCACCGCCGACGGGGATTTCCGCGATGGCGTGCTGTATCACGCCGGAATGGTCCTGTATCGCCAGGAAGAATAGMRKAFGDQDKFVGLWVTADGVIRHRLLPGGRYDEARGTRESAYEGDYWLQDDHIEYHDDTGFTADGDFRDGVLYHAGMVLYRQEENANANANANA
D1-35_02177687inhAIsonitrile hydrataseATGACGTTGCAGATCGGTTTTCTGTTATTCCCCCAGGTTCAGCAGTTGGACCTCACCGGGCCTTATGACGTGCTGGCTTCGCTGCCAGATGTGAAAGTGCATCTGATCTGGAAAGACCTGGCGCCGGTTACCTCCAGCACGGGCTTGGTCCTGCTGCCAACCACCACATTCGAGGACTGTCCGAAGCTCGACGTCATTTGTGTCCCCGGTGGTAGCGGCGTCGGTCCGTTGATGGAAGATGAGCAGACCCTGGCCTTCATCAAACGCCAGGCCACTCACGCCAAATACATCACCTCGGTGTGCACCGGTGCGCTGGTACTCGGCGCGGCGGGATTGTTGCGCGGCAAGCGCGCCACCACCCACTGGGCCTTCCACAGTTTGTTGCAGCCGCTGGGGGCGACGCCGGTCAAGGACCGTGTGGTCCGCGACGGCAACCTGCTTACCGGTGGCGGCATCACCGCGGGAATCGATTTTGCCTTGACCCTGGCGGCCGAGCTGTTCGACCGGGACACCGCCGAGCTGGTCCAATTGCAGCTTGAATACGCACCGGCTCCGCCGTTCGCCGCAGGTTCCCCGGACACCGCGCCGACGCTGGTGCTCGAAGAGGCCAACCGGCGTTCGGCGGAATCGTTCCGCGTGCGCTCGCAGATCACCCAGCGGGCTGCGGCACGCTTGGAAACAGCGTAGMTLQIGFLLFPQVQQLDLTGPYDVLASLPDVKVHLIWKDLAPVTSSTGLVLLPTTTFEDCPKLDVICVPGGSGVGPLMEDEQTLAFIKRQATHAKYITSVCTGALVLGAAGLLRGKRATTHWAFHSLLQPLGATPVKDRVVRDGNLLTGGGITAGIDFALTLAAELFDRDTAELVQLQLEYAPAPPFAAGSPDTAPTLVLEEANRRSAESFRVRSQITQRAAARLETANANANANANA
D1-35_02178993cdhR_4COG4977HTH-type transcriptional regulator CdhRATGCCAAACACAGCAAAAACCGTTCATGTGCTGGCCTTCGCCAACGTACAAGTGCTGGATGTCACCGGGCCTCTGCAGGTCTTCGCGTCGGCCAATGACCTGGTTCGTGGACAAGGCTTGCCGGCGCCGTATGCGCCGACTGTTATTGCTGCGGGTGGCGGGGCGGTGATGTCGTCGGCGGGGTTGGCGCTGATGGCCGAACCACTGCCCAGCGAGGGCAGTGACACCTTGTTGATTGCCGGCGGTTGGGGCGTGTACGAAGCCGCGAAAGATCCTGCGCTGGTGGCCTGGGTCAAGGATCAGGGAGCGTGTTCGCGAAGAGTCGCATCGGTGTGTACCGGGGCGTTTCTGCTGGCGGCCAGTGGCTGGCTGGACGGACGACGGGTGGCGACCCATTGGACCCGCTGCGAACAGCTGGCCCGGCAACATCCAGAACTGCAGGTCGAACCCAATCCGATTTTCATCAAGGATGGTTCGGTCTGGACCTCGGCTGGAGTCACGGCCGGCATTGACCTGGCGTTGGCGCTGGTCGAAGAGGACCTGGGCCGGGCGATGGCGCTGGAGGTGGCGCGGCATCTGGTGGTGTTCCTCAAGCGCCCCGGGGGACAGTCGCAGTTCAGCGCTACCTTGGCGTTACAGGAGCGGGGTGGTCGCTTCGATAAACTGCACGCCTGGATCGCCGAAAACCTCACCCGCGACCTGGGCTTGTCGAGCCTGGCCGCCGAGGCCGGTATGAGCGAGCGCAGCTTTGTCCGTCATTACCGCGCCGAGACCGGCCAGACCCCGGCCCGTGCGGTGGAACTGATCCGCGTGGAAACTGCCCGGCGGCTGCTCTGCGACAGTGCGGTGCCGATCAAGCGCGTCGCCCTGCAATGCGGCTTCGGCAGCGAAGAAACCTTGCGTCGCAGTTTTCTCCGGGGCATGGGCGTGACGCCCCAGGCTTATCGCGAGCGGTTTGCGCTCAGCCCTCAAGCAAATCCAGCAATGCCCTGAMPNTAKTVHVLAFANVQVLDVTGPLQVFASANDLVRGQGLPAPYAPTVIAAGGGAVMSSAGLALMAEPLPSEGSDTLLIAGGWGVYEAAKDPALVAWVKDQGACSRRVASVCTGAFLLAASGWLDGRRVATHWTRCEQLARQHPELQVEPNPIFIKDGSVWTSAGVTAGIDLALALVEEDLGRAMALEVARHLVVFLKRPGGQSQFSATLALQERGGRFDKLHAWIAENLTRDLGLSSLAAEAGMSERSFVRHYRAETGQTPARAVELIRVETARRLLCDSAVPIKRVALQCGFGSEETLRRSFLRGMGVTPQAYRERFALSPQANPAMPNANANANANA
D1-35_02179903ephAEpoxide hydrolase AATGACATCTGCGCCCAGGATCAATTTTGCGGTAACGCCGCTGCTGCGCATCGCCTATGAGGAGCACGGCCCCGCCAGCGGCGAGCCGATTATCCTGCTGCACGGATTTCCCTATGACCCGCGGGCCTTTGACGAGGTTGCCCCGCCCTTGGCCCAACGCGGTTATCGAGTCATCGTGCCGTACCTGCGCGGCTACGGCCCGACCCGTTTCAACAATCCCGCGATTGCCCTCTCCGGCCAGCAAGCGGCACTGGCCCAGGACCTGCTGGACCTGATGCACACACTCGGCATTCCCCAGGCTGCGCTGTGCGGCTATGACTGGGGTGGCCGCGCCGCATGCATTGTCGCCGCGTTGTGGCCCGAGCGCGTTCGCTGCCTGGTCACCGGCGATGGCTACAACCTGCAGAATATTCCTCGATCAACCCAGCCACTGGACCCGGAAACCGAATACCGCTTGTGGTATCAGTATTACTTCCACACCGACCGAGGCGTCGAAGGCCTGAAGCAGAACCGACGCGAGCTGTGCCAATTGCTCTGGCGCCTGTGGTCGCCGACCTGGGCGCGCGGTGCGGAGCTGTATCCGCTGAGCGCGCCTTCGTTTGATAATCCGGATTTTGTCGAGGTGGTGATTCATTCCTATCGCCATCGCTTCATGTACGCGCCGGGAGATCCGACGCTTGAATGGATGGAGGAACAGTTGGCGGCGCAACCGGCCATCAGCGTGCCGAGTATTTCCCTGTGCGGCGCAGATGACGGCGTGGGACCCGCGCCCGAGCACGACGAAGATGCCGCGTATTTCACCGGACGCTACGAGCGCCGCGTGCTGGCCGGCGTCGGCCATAACATTCCTCAGGAAGCACCTGAAGCCACGCTCAGGGCATTGCTGGATTTGCTTGAGGGCTGAMTSAPRINFAVTPLLRIAYEEHGPASGEPIILLHGFPYDPRAFDEVAPPLAQRGYRVIVPYLRGYGPTRFNNPAIALSGQQAALAQDLLDLMHTLGIPQAALCGYDWGGRAACIVAALWPERVRCLVTGDGYNLQNIPRSTQPLDPETEYRLWYQYYFHTDRGVEGLKQNRRELCQLLWRLWSPTWARGAELYPLSAPSFDNPDFVEVVIHSYRHRFMYAPGDPTLEWMEEQLAAQPAISVPSISLCGADDGVGPAPEHDEDAAYFTGRYERRVLAGVGHNIPQEAPEATLRALLDLLEGNANANANANA
D1-35_02180378hypothetical proteinATGACGCATATAAAACGCCCCATCACCACCGAACCCCGAACCGGGCTGAGCCGCGAAGAACTCTGGGACGGCCCGGACAAGGGCTTGATCAAATGCTGGGAAGTCGGCCGCGACCGGGCGCAGAGGTTCCCTGAACTGGCGCAACGTTGTCTCGCCGGAGAGCTGCCGGTGCTGGGCTGGAAAGGCGGGGTCAGCCGCAGCCTGAAGAAGACCGCCAAGTTCGGTTGCCTCAAGTACCTGGCCCAATGGCAGGGCCTGCGCGGCGAAGACCTGGACATCGACCTGGCCGAGGAACGTACCCTGACCTGCTCCAACACGAGCATGATCGTGACATTCACGCCAGACCGGGCCAAATATGTGAACCAGGAACCCGCCTGAMTHIKRPITTEPRTGLSREELWDGPDKGLIKCWEVGRDRAQRFPELAQRCLAGELPVLGWKGGVSRSLKKTAKFGCLKYLAQWQGLRGEDLDIDLAEERTLTCSNTSMIVTFTPDRAKYVNQEPANANANANANA
D1-35_02182297hypothetical proteinATGGTCAAGATCACCCCCAATCCCCCAGAAAAAGCCGAAAACCTGTCCGGCCATCCCAACCCTGACACCCAGGACGGCCAGATATTTTCCGCCGTCGCGGACATCAACACCGAATCCATACTGACCACCCTCAGCGAAACCCTGGCCTCGGCCAACGCCATGGCCAGCGACCTGGCGTTCGATCTGGAAGGCTCCCGACGGCATGTCGCGCTGGGGCTTCAGCAGTTGATCGAGTTGGGAACGCTGCTGGCCAACCGAGCGCTGGATAACATCGAACTGGCGGAGCCACCGCGCTAGMVKITPNPPEKAENLSGHPNPDTQDGQIFSAVADINTESILTTLSETLASANAMASDLAFDLEGSRRHVALGLQQLIELGTLLANRALDNIELAEPPRNANANANANA
D1-35_021831824COG3387TrehalaseATGGCTGATCGTGACGAACCGCAGAGCCCGATCGAGAACCACGGCATCATCGGTGACATGCGCACGGCGGCGCTGGTCAACGATCGGGGCAGCGTGGATTTTTTCTGCTGGCCGGAATTCGACAGCCCGTCGATCTTCTGTTCACTGCTCGACACCCCTGAGGCGGGCATCTTTCAGCTTGCTCCGGATTTGCCGGATGCCCGTCGCCAGCAAATCTACCTGCCCGACACCAATGTCTTGCAGACCCGCTGGCTGAGCGATGGCGTGGTGGTGGAAATCACCGATCTGCTGCCCATTGGCGACAGCGAGGATGATTTGCCGGTCTTGATGCGCCGAGTGCGCATGACAGTCGGCAGCGCGACGTTTCGCATGCGCTGCGCGGTGCGCCATGATTATTCACGCGCCGCGACTACCGCGCGCCAGGACGGCGACCACGTCATCTTCGAGGCCCCGCAGCAACCGAGCCTGCGCCTGTGCGCCGACCAGCCCATGACCCTGGATGGCCAGGCGGCGGTGGCCGGGTTCACCCTGGGCCAAGGCCAGACCGCCGAATTTCTCCTGGGGGGCATCGACGACCCGCGCCTGGTGGACGACACCAGTGCCCTGTGCCTGGAACGAACCCTGGCGTTCTGGCGCGGCTGGATCGGCCAATCCAACTACCGTGGCCGCTGGCGGGAAATGGTCAACCGCTCGGCGTTGGCGCTGAAGCTGCTGACCTCGCGCAAACAGGGCGCGATCCTCGCCGCCGCCACCTTCGGCCTGCCGGAAACACGCGGCGGCGAACGCAACTGGGATTACCGCTACACCTGGATCCGCGACGCCTCGTTCACCGTCTACGCGTTCATGCGCCTGGGCTTTGTCGACGAAGCCAACGCCTATATGCGCTGGCTGCGCGGCCGGGTCAGCGACTGCCGCGAACAACCGACCAAGCTCAACATCCTCTACGGCCTGGACGGCCGGCTCGAACTACCGGAAACCGAGCTGACGCACCTGAGCGGCTACGGCAACGCGCGTCCGGTGCGCATCGGCAACCTCGCCTACCAGCAGGTTCAGTTGGACATCTTCGGCGAGTTGATGGATGCGGTGTACCTGGTCAACAAATACGGCGAAGCCATCTCCCACCAAGGCTGGAAACACACGGTCGATGTGGTCGACCAAGTATGCGAAATCTGGCGGGACAAGGACGTGGGTATCTGGGAAATGCGCGGCGAGGAGCAGCATTTCCTGCATTCGCGGCTGATGTGCTGGGTGGCGGTGGACCGTGCCATCCGCCTGGCGAGCAAACGTTCCCTGCCCGCCCCGTTCGCGCGTTGGGACGAGACTCGACAGGCCATCTATGAAGACATCTGGACGAATTTCTGGAACGACGAACACCAGCACTTCGTCCAGCGCCTGGGCAGCACCGCCCTTGACGGCTCGATGCTGTTGATGCCGCTGGTTCGCTTCGTCAGTGCCCGCGACCCGCGCTGGCTGTCAACGCTGGACGCCATCGAGAAAGATTTGGTGCGCGACGGCATGGTCTATCGCTACCGCACCGACGACGGCTCGATCGACGGCCTCAGCGGCACCGAAGGTTCGTTCGTCGCCTGCTCGTTCTGGTACGTCGAGTGCCTGGCCCGCGCCGGCCGCGTGGAGAAAGCCCAACTGGAATTCGAACAATTGCTGCGCTACGCCAATCCGCTTGGGCTGTATGCCGAGGAATTCGACAGCCATGGTTATCACCTGGGCAACCTGCCCCAGGCGCTGAGCCATCTGGCGCTGATCAGCGCGGCGAGTTTCCTGGACCGCAGGTTGAGCGGGGAGAAAAATCATTGGCAGCCGTGAMADRDEPQSPIENHGIIGDMRTAALVNDRGSVDFFCWPEFDSPSIFCSLLDTPEAGIFQLAPDLPDARRQQIYLPDTNVLQTRWLSDGVVVEITDLLPIGDSEDDLPVLMRRVRMTVGSATFRMRCAVRHDYSRAATTARQDGDHVIFEAPQQPSLRLCADQPMTLDGQAAVAGFTLGQGQTAEFLLGGIDDPRLVDDTSALCLERTLAFWRGWIGQSNYRGRWREMVNRSALALKLLTSRKQGAILAAATFGLPETRGGERNWDYRYTWIRDASFTVYAFMRLGFVDEANAYMRWLRGRVSDCREQPTKLNILYGLDGRLELPETELTHLSGYGNARPVRIGNLAYQQVQLDIFGELMDAVYLVNKYGEAISHQGWKHTVDVVDQVCEIWRDKDVGIWEMRGEEQHFLHSRLMCWVAVDRAIRLASKRSLPAPFARWDETRQAIYEDIWTNFWNDEHQHFVQRLGSTALDGSMLLMPLVRFVSARDPRWLSTLDAIEKDLVRDGMVYRYRTDDGSIDGLSGTEGSFVACSFWYVECLARAGRVEKAQLEFEQLLRYANPLGLYAEEFDSHGYHLGNLPQALSHLALISAASFLDRRLSGEKNHWQPPGPT0014070_246DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-TREHALASE,PGPT0014070-EC_3_2_1_28|alpha_trehalase-K22934NANA
D1-35_02184801COG1028Glucose 1-dehydrogenaseATGCAGATTTCTCTTGCCCGACAAGTTGCTCTGGTTACCGGCGCCAGCTCCGGCATTGGCGCAGGTTCGGCCCGGGCACTGGCGGCGGCCGGTGCCGCCGTGGTGCTCAATTACCATTCCAGCGCCGGCCCCGCCGAAGACCTGGCCCGCGAAATCAACGACAGCGGCGGCAGAGCCATCGCCATTGGTGCCGATGTGTCGAAGGAACAGGACGTCGAGCGGCTATTTGCCCAGACCGTGGACGCGTTCGGCGCGCTGGACATCCTGGTCGCCAACTCCGGCCTGCAAAAAGATGCCGCCGCCGTCGACATGAGCCTGGACGACTGGAACGCCGTCATCGGCGTCAATCTCACCGGCCAGTTCCTTTGCGCCCGCGCGGCCTTGCGCATTTTCAACCGCCAGGGCATTCGCCAGGGTGTGTCCCGGGCCGCCGGCAAGATCATCCACATGAGTTCGGTGCACCAGCGCATCCCCTGGGCCGGCCACGTCAATTACGCGGCGTCCAAGGGCGGCATCGATCAGCTCATGCAGACCCTGGCCCAGGAAACCAGTCACCAGCGCATCCGCATCAACAGCATCGCCCCCGGCGCCATCCGCACAGCCATCAACCGTGAGGCCATGGAGGGCGACAAGGAACAGGAGCTGTTGCAGCTGATTCCCTACGGCCGGGTCGGCAATGTGGAGGATGTCGCCAACGCGGTGGTCTGGCTGGCGTCGGACCTGTCCGATTATGTGGTGGGCACCACGCTGTTCATCGATGGCGGGATGAGCCTCTATCCGGGGTTCCGCGGCAATGGCTGAMQISLARQVALVTGASSGIGAGSARALAAAGAAVVLNYHSSAGPAEDLAREINDSGGRAIAIGADVSKEQDVERLFAQTVDAFGALDILVANSGLQKDAAAVDMSLDDWNAVIGVNLTGQFLCARAALRIFNRQGIRQGVSRAAGKIIHMSSVHQRIPWAGHVNYAASKGGIDQLMQTLAQETSHQRIRINSIAPGAIRTAINREAMEGDKEQELLQLIPYGRVGNVEDVANAVVWLASDLSDYVVGTTLFIDGGMSLYPGFRGNGPGPT0014705_341DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0014705-gdh|ycdF-K00034NANA
D1-35_021851173hypothetical proteinATGGCAAATCCTTATCGTGAACTGTTCAGCGCACCTGGCAGCCGTGGCTTCGTGCTGGCGGGAATGATCGCGCGCATGCCGATATCGATGACCGGGATCGGCGTGATCACCATGCTTGCGCAGCTCAAGGGCGGCTACGGATTGGCCGGCGCGGTGGCGGCGACGTTTGCCCTGGCGACGGCGTTCTGCGCGCCGCAGGTGTCGCGGCTGGTCGACCGTTTTGGCCAGGGGCGGGTCTTGCCATTAGCGGCGCTGCTGGGTGGCGGGGCGTTGCTGATGCTGCTGTTGTGCACGCGCTTGCAGGCGCCCCAGTGGACGCTGTTCCTGTTCGCCGCCCTGGCCGGTTGCATGCCCAGCATGTCGGCCATGGTGCGGGCGCGCTGGACCGAGGTGTATCGCGGCCAGCCGCAGCTGCGCACTGCCTATGCGCTGGAGTCAGTGTTGGACGAGGTCTGCTTCATCGTCGGACCGCCGCTGTCGGTGGGGTTGTGCGTGGTCGCTTTCCCGGAGGCCGGGCCGCTGGCCTCGGTGTTGCTGCTGGCGATCGGCGTGACGGCGTTTGTCCTGCAGCGCGGCACCGAGCCGCCGGTGCACCCGCATCAGGCGCATCACCAAGGCTCGATCATCAGCTCAAGCGACGTGCTTTTGCTGCTGCTGTTGATGGTCGCCATGGGCGTCATCGTCGGGGTGGTGGACGTGGTCAGCGTGGCGTTCGCCCAGCATCAGGGGCAACCGGCGGCGGCGAGCATCGTGCTGTCGGTCTATGCCATCGGCTCGTGCCTGGCCGGCCTGGCGTTCGGCGCGCTGCGCTCGAAACTGCCGTTGCCGCGATTGTTTCTGTACGGCGGCGTGGCGACGGCGCTAACCACGCTGCCACTGTTGTTGGCGAGCAATATCCTCGGGCTGTCGCTGGCGGTATTTGTCGCGGGGTTGTTCTTCGCGCCGACGCTGATCGTCGCCATGGCCCTGGTGGAACGCATCGTGCCGCCGGCGCGGCTCACCGAAGGCCTGACCTGGCTGGTGACCGGCCTGAGTATCGGAGTCGCCATTGGCGCGGCGGGCTCGGGTTGGCTGGTGGATACGTATGGCGCGCGCAGTGGTTTCTGGCTGGCGATTGCAGCTGGGGCAGTGGTGCTGGGAGCGGCGGTGCAGAGTTATCGCCAGCAAAAATAAMANPYRELFSAPGSRGFVLAGMIARMPISMTGIGVITMLAQLKGGYGLAGAVAATFALATAFCAPQVSRLVDRFGQGRVLPLAALLGGGALLMLLLCTRLQAPQWTLFLFAALAGCMPSMSAMVRARWTEVYRGQPQLRTAYALESVLDEVCFIVGPPLSVGLCVVAFPEAGPLASVLLLAIGVTAFVLQRGTEPPVHPHQAHHQGSIISSSDVLLLLLLMVAMGVIVGVVDVVSVAFAQHQGQPAAASIVLSVYAIGSCLAGLAFGALRSKLPLPRLFLYGGVATALTTLPLLLASNILGLSLAVFVAGLFFAPTLIVAMALVERIVPPARLTEGLTWLVTGLSIGVAIGAAGSGWLVDTYGARSGFWLAIAAGAVVLGAAVQSYRQQKNANANANANA
D1-35_021861134hypothetical proteinGTGGACCTGCAAACCATCCTGGGTAAACTGTTCGCCAACGCCGGCGCCGTTGGTATCGACGGCGTTTTCCAATTCGTGTTCGGCCCGCATCAGGCGTACTGGTCCGAGGTCAAAGCCAGCAGCCACACCCAGGCTGGTCGGCACAGCAGCCCCGACGTGACCATCGAAATCGCGGAAAAGGACTTTCTCGGGATCATGGCCGGCCTGGCCAATGTCGAGGAACTGTTCGCCAGCGGCCGCCTGAAGATCGATGGCAACATGGGCTTGGCGACGTTGCTGCCGCAGATCATCGATCACGCCCGCAATGGCAGCCGCCCGGCGGAAAAGGTCGACATGAACAAACGCTACCCGACCCCGCCGCGCTTCAGCGAAACCCTCACCGCGAGCCTGCCGACCCAACGCAGCGTCGAGCGGCGGCCGCGCAGCGAACTGTCGGTGAGGGATTTCCAGGCACGCTACCTGCCCCATGGCATTCCGCTGGTGATCAGCGACGCGCTGCAGGACTGGCCCTTGTTCAAGCTCACTCGGGAAGAATCCCTGGTGCATTTTGCCCAGCTGCAAGGCATCACCCGCCACGGCGACTACGTGAAAAAAACCTTTTCCACGGAGCGGGATTTTCGCTCGACCTCCATGGCCGATTTCATCGCGTCCCTCGACAACCCGGCCGCCAAGGGTGCGGACGGCGAGCCGCCAGCCTACATGGGCAACAATATCTTGCCGGCGCAACTGATGGAGCTGATCAAGTACCCGCCCTACTTCGATCCATCGCTGTTCATTCCGCCGCGCATCTGGATCGGCCCCAAGGGCACCCTCACACCGCTGCACCGCGACGACACCGACAACCTGTTCGCCCAGGTCTGGGGCCAGAAAACCTTCACCCTCGCCGCCCCCCACCACCGCGAGGCCCTGGGCACCTGGTCGACCGCGCCCCAGGGCGGGCTGGACGGTTGCGACTTCAACCCGGACGCGCCGGACTACGAGCATTTCCCCCACGCCCGCAACGTGACATTCCTGCGGGTGACGCTGGAGGCTGGGGATTTGCTGTTTTTGCCGGAGGGCTGGTTTCATCAGGTGGAATCGGTGGCCACTTCGCTGTCAGTGAATTTCTGGGTGAATTCGGGGCGGGGTTGGTGAMDLQTILGKLFANAGAVGIDGVFQFVFGPHQAYWSEVKASSHTQAGRHSSPDVTIEIAEKDFLGIMAGLANVEELFASGRLKIDGNMGLATLLPQIIDHARNGSRPAEKVDMNKRYPTPPRFSETLTASLPTQRSVERRPRSELSVRDFQARYLPHGIPLVISDALQDWPLFKLTREESLVHFAQLQGITRHGDYVKKTFSTERDFRSTSMADFIASLDNPAAKGADGEPPAYMGNNILPAQLMELIKYPPYFDPSLFIPPRIWIGPKGTLTPLHRDDTDNLFAQVWGQKTFTLAAPHHREALGTWSTAPQGGLDGCDFNPDAPDYEHFPHARNVTFLRVTLEAGDLLFLPEGWFHQVESVATSLSVNFWVNSGRGWNANANANANA
D1-35_02187771tamCOG4106Trans-aconitate 2-methyltransferaseATGAGCTGGTCCGCCCAACAATATGTCGCGTTCGAACAGGAACGCACCCGCCCGTCCCGCGATCTGCTGGCGGCCATCCCGCCGGTACAGGCGCGTCAGGTCATCGACCTGGGCTGCGGCCCCGGCAACTCCACCGAACTGCTGGTCGATCACTTTCCCGACGCAACGGTGCGTGGCCTGGACAGTTCCGCCGACATGGTCGAAGCCGCCCGTAAGCGCTTGCCCGGCGTGACATTCGACACCGCCGATATCGGGCGCTGGAACGAAAGCGGCCCCTTCGACGTGATCTTCGCCAACGCCGTGCTGCAATGGCTTCCCGACCACGCCACCCTGCTGCCGTCGCTGGTGGACAAACTCGCCGCTGGCGGCAGCCTGGCCGTCCAGATGCCTGACACTCTGCACCAACCGTCCCATCGCTTGATGCGTGACATTGCTGCCAGCGGCCCCTGGGCCAGCCAACTGGCCGGCGCGGCGGATTCGCGGATCGAGGTGGAGGATGCCAGCACTTATTACTCGATCCTCAAACCCCACTGCACCCGCGTCGATGTGTGGCGCACCACCTACCATCACCCGCTGGCCGGTGGCGCCTCGGGGGTCGTGGAGTGGTTCAAGGGCAGCGGCCTGCGGCCATTCCTCGAGCCGCTGGACGAAGCGCAGCGCGAGGACTATCTGCAGCAATACCTAAAGGCCATCGAACAGGCCTATCCGGCCCTGGACGATGGGTCGGTCCTGCTGCCGTTCCCGAGGGTGTTCATCGTCGCGACACGCTAGMSWSAQQYVAFEQERTRPSRDLLAAIPPVQARQVIDLGCGPGNSTELLVDHFPDATVRGLDSSADMVEAARKRLPGVTFDTADIGRWNESGPFDVIFANAVLQWLPDHATLLPSLVDKLAAGGSLAVQMPDTLHQPSHRLMRDIAASGPWASQLAGAADSRIEVEDASTYYSILKPHCTRVDVWRTTYHHPLAGGASGVVEWFKGSGLRPFLEPLDEAQREDYLQQYLKAIEQAYPALDDGSVLLPFPRVFIVATRNANANANANA
D1-35_02188735lgrELinear gramicidin dehydrogenase LgrEGTGACCCAACTGACCCTGCTGTGTCTGCCGTATTCCGGCGCCAGCGCGATGGTTTACAGCCGCTGGCGGCGCAAGGTGCCGCAGTGGTTGACGGTGCAGCCGGTGGAGTTGCCGGGGCGTGGGGCGCGTTTCGCCGAGCCGCTGCACACCGACATGGGGCCCTTGGCCAAGCAATTGGCGCGGGAGCTGGCCCCGACCCTCCAGGCCCCTTACGCCCTGTTCGGCCACAGCCTGGGCGCGCTGCTGGCCTGTGAAATCGTCCACGCCTTGCGTGAGCTGGGCTGCCCGGAACCGGTGGCGCTGTTTGCCTCGGGCACCGCGGCGCCGACGATGCGCGCCGACTATGACCGGGGTTTCGCCGAGCCGAAAACCGATGCTGAACTGATCGACCAGTTGCGCACCCTCAACGGTACCAGCGAAGAGGTGCTGGCCAATGAAGAGCTGATGGCTTTGACCTTGCCGGTGCTGCGCGCGGACTTCCTGCTCTGTGGCCGCTACCAGTCAAGGCTTCGGTCACCGCTCAACTGCCCCGTGCACGTGCTCGGCGGCACCGCCGACAAGGCCACCACCGAACAGTTGATCGGCTGGAGCCGCGAAACCAGCGGCAGCTTCTCCGTGGATATGCTGGCGGGCGGGCACTTCTTCATTCATGAACACGAGGCCAGGGTGCTGCGGCTGATCAAGGATCAGCTGAGCGTGCATCACCGGCGACACGGGTTGGCGATCAGCGCCTGAMTQLTLLCLPYSGASAMVYSRWRRKVPQWLTVQPVELPGRGARFAEPLHTDMGPLAKQLARELAPTLQAPYALFGHSLGALLACEIVHALRELGCPEPVALFASGTAAPTMRADYDRGFAEPKTDAELIDQLRTLNGTSEEVLANEELMALTLPVLRADFLLCGRYQSRLRSPLNCPVHVLGGTADKATTEQLIGWSRETSGSFSVDMLAGGHFFIHEHEARVLRLIKDQLSVHHRRHGLAISAPGPT0004157_1DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_GOLD_RESISTANCEGOLD_RESISTANCE-DELFTIBACTIN_METABOLISM,PGPT0004157-delftibactin_thioesterase-NANANA
D1-35_0218912450dltA_1D-alanine--D-alanyl carrier protein ligaseATGAATGCTGAAGACGCCTTGAAACTTGCTCGCCGGTTTATCGGGTTGCCCCTGGACAAGCGCCAGATGTTCCTGGCAGCGCTGGACAAGGAGGGCGTGGATTTCAGCCGTTTCCCCATTCCCCAAGGCGTCGAAGCCGACGACCGCCAGGCCCTGTCCTATGCCCAGCGCCGCATGTGGTTTCTCTGGCAACTGGACCCCGACAGCGGTGCCTACAACTTGCCCGGCGCGGTGCGGCTCAAGGGCGCGCTGAGCCTGTCGGCGCTGGAGCAGGCCTTCGCCAGCCTGGTGGCCCGCCATGAAACCCTGCGCACAGTGTTCCAGCGCCAGGCCGACGACAGCCTGGTGCAAGTACCTACCGATGCGCCGCTGGTGATCGAGCAACAGGACCTCAGCGCATTGCCCGCAGGCGAACGCGAGCAGGCAGTACGTCAAGCCGCCGAAGCACAATCGATGCGCCCCTTCGACTTGTCGCGCGGCCCTTTGCTGCGGGTCGAACTGCTCAAGCTTGATCAGCAGGAGCACGTGTTGCTGCTGACCTTGCATCACATCGTCTCCGACGGCTGGTCGATGAACGTGCTGATCGACGAGTTCATCCGCTGCTACGACGCCCACGAGGCAGGCGTGGCCCCGCAATTGGCCGACCTGCCGATCCAGTACAGCGACTATGCCCTGTGGCAGCGTCGCTGGCTGGAGGCCGGCGAGCAGGCGCGGCAGCTGGCGTACTGGCAGGCACAACTGGGCGATGAACATCCGGTGCTGGAGTTGCCCACCGACCATTCGCGCCCGGCGATGCCCAGCTATCGCGGCAGCCGTTATGAATTCGCCATCGACGCCGCATTGGCGGAGCAACTGCGCAGCACAGCCCAGCAGCAGGGCGTCACGCTGTTCATGCTGCTGCTCGGCGCGTTCAATGTGCTGCTGCATCGCTACAGCGGCCAGTCCGATATCCGCGTCGGCGTGCCGATCGCCAACCGTAACCGGGATGAGGTCGAAGGGCTGATCGGCTTCTTCGTCAACACCCAGGTACTGCGTACCGAACTGGACGGCCAGCTCCGTGTCGACGAGTTGCTGCGGCGGGTCAAAGAAACCGCGCTCGGCGCCCAGGCCCATCAGGACCTGCCGTTCGAACGCCTGGTCGAAGCGCTCAAGCTGGAGCGCAGCCTCAGCCATACGCCGTTGTTCCAGGTGATGTACAACCATCAGCCGCACGTGGCGGACGTCACCACGATCCGCACGGCGTCCGGGCTGGAACTGGGCATGATCGAATGGCAGGCGCGCACCACTCAGTTCGACCTGACCCTGGACACTTATGAAAAGGCCGGCACGCTGCACGCGGCGCTGACCTACGCCAACGACCTGTTCGAGGCGCCGAGCATCGCGCGCATGGCCCGGCATTGGCTGCGACTGCTCACCGCGATGATCGCTGATCCGTCCCGGCGCATCGGCGAACTGCCGCTGCTCGACGCTGACGAACACGCCACCCTGGTCCACGGTTGGAACGCCACGGCGCAACGCTACCCGACCGCGCAGTGCATGCATCAACTGATTGAAGCCCAGGTGGCGCGCACCCCGGACGCACCGGCGCTGGTGTTTGCTGAGCAAACCCTGAGCTATGCCGAGCTCGATGCCCGCGCCAACCGACTGGCTCACCTGCTGCGGGAGCGCGGCGTGCGGCCGGACAGCCTGGTGGGGATCTGCGTCGAGCGCTCGCTGGAAATGGTGGTGGGCCTGCTGGCGATTCACAAGGCCGGCGGCGCCTATGTGCCGCTGGATCCTGAGTACCCGCAGGAGCGCCTGGCCTACATGATCGAGGACAGCGCCATCGGCTTGCTGCTGACCCAGCGCTCGCTGTCGGCGGCGCTGCCAACCGACGGCGTCGAGGTGATCGAACTCGACCAGGCGGCCGGCTGGCTCGACGGCTACAGCGACCATCGTCCCGACATCACGCTTGATCCGCTGAACCTGGCCTACGTGATCTACACCTCTGGCTCCACCGGCAAACCCAAGGGCGCTGGCAACAGTCATGCGGCGCTGGTCAATCGCTTGTGCTGGATGCAACAGGCCTATGCCTTGGATGGCAGCGACGCGGTGTTGCAGAAAACTCCGTTCAGCTTCGACGTGTCGGTGTGGGAATTCTTCTGGCCGCTGATGACCGGAGCCCGGCTGGTAGTCGCCGCGCCGGGCGTGCACCGCGATCCGCTGCAACTGATCGAGACCATCAAGCGCCATCGCATCAGCACGCTGCACTTCGTGCCGTCGATGCTGCAAGCGTTCATTCATGAGCCGGGCGTGGAAAGCTGCGAAGGTCTCAAGCGCATCGTGTGCAGCGGTGAAGCGCTGCCGTTGGACGCGCAACACCAGGTCTTCGCCAAGCTGCCGAACGCCGCGCTCTACAACCTCTACGGCCCGACCGAAGCGGCCATCGACGTGACCCACTGGACCTGTGTCGATGAAGGCGCCGATTGCGTGCCGATCGGTGTCCCCATCGCCAACCTGCGCACCCATGTGCTCGACGCCGATCTGTCGCCGGTGCCGTGGGGCGTGGCGGGCGAGTTGTACCTGGGCGGGACGGGGCTGGCGCGCAGTTATCACCAGCGTCCGGCGCTGACCGCCGAGCGTTTCGTGCCGTGCCCGTTCCATGCCGGCGCACGCCTGTACCGCACCGGTGACCGCGTGCGCCAGCGCGCCGACGGTGTGATCGAATACCTCGGCCGCCTCGATCACCAGGTCAAGCTACGCGGCCTGCGCATCGAGCTCGGCGAAATCGAAACCCGCCTCATGCAGCACCCGCTGGTGCGCGAGGCCGTGGTGCTGGTCCAGGACGGCAAGCACCTGGTGGGCTACCTGGTGCTGGAAAACAGCGAGCCGCACGAGCAGTGGCAGCAGGACCTCAGGGCTTGGCTGCTGGCGAGCCTGCCGGAATACATGGTGCCGACCTATCTGATGCCGCTGGCCAGATTGCCCGTCACCGCCAACGGCAAGCTCGACCGCAAGGCCCTGCCACAACCGGACGCCGCGCCCCGACAAACATTCGTCGCCCCGCAGGATGCGCTGCAAGTTGCCCTGGCCGAAATATGGCAGGACGTACTCGGCGTGGAGCGCGTCGGCCTCGAAGACAACTTCTTCGAGCTGGGCGGCGACTCGATCATTTCCATCCAGGTGGTGAGCCGCGCGCGGCAGGCCGGTATCCGCATTCATCCCCGCGATCTGTTCCAGTACCAGACCGTGCGCAGCCTGGCGCTGGTCGCCACTCGCGACAGCCACAGTGCTGTGGATCAGGCGACAGTTACCGGCGATGCTGTGCTCGGGCCGATCCAGCGGCAGTTCTTCTCCCAGGCGATGCAGGCCCGTGACCACTGGAACCAGTCGCTGTTGCTGACCGCCCGCGAGCCGCTGGATGCACAGCGGCTCGACGCGGCGCTGACCTGCGTCATCAACCACCACGACGCCTTGCGTCTGCGCTTTGTCGAAGACGCCGACGGTTGGCGGCAGGGCCACGGGCCGCTTGTGCAAAACGCCGATCTTTGGCAACGCGAAGCCCGATCCATCGAAGACCTCGCTGCACTGTGCGACGAGGCGCAGCGCAGCCTGAAGCTGCAGGACGGTCCGCTGCTGCGCGCCATGCTGGTGGACCTGGCCGACGGGAGCCAGCGGCTGGCGCTGATCATTCATCACCTGGTAGTGGACGGTGTGTCGTGGCGCGTGTTGCTGGAAGACTTGCAGCAAGCCTACGAACAACTGGCGGCGGGCGGCGCGGCCACGTTGCCGGCCAAGACCAGCGCGTTCCAGAGCTGGACCGCGCGGCTGAGTGCCGAAGCGTCGCGCTTCGACGATCAGTTGGCCTACTGGCAAGCCCAGCACCAGGGCGCGGCGGACATTCCTTGTGATCGTCCGCAGGGCAGCCTGCAAAATATCCACGGCGCGAAGATCGAATGGCGCCTGGACGCCGAGCTGACCCGGCAGTTGCTGCAACAGGCCCCAGCGGCCTATCGCACCCAGGTCAACGACCTGTTGCTGACCGCGCTGGCCCGCACCATCAGCCACTGGAGCGGGCAGCCGGGCACGCTGGTGGAACTGGAAGGCCATGGCCGCGAAGAGCTGTTCGACGACATCGACCTGACCCGCACGGTCGGTTGGCTGACCAGCCTGTTCCCGGTGAAGCTCACCGTTACCGACGACCTCGACGGTTCGATCAAGACCGTCAAGGAGCAACTGCGCGGCGTGCCGGACAAAGGCCTGGGGTATGGCGTGCTGCGGCATCTGGCGGCGCCTTCGGTACAAGCGACATTGGCCGGTCTGGCGCAACCGCGCATCACCTTCAATTACCTCGGCCAGTTCGACCGTCAGTTCGACGAAACGGCGCTGTTGCTGCCATCCGGCGAAGGCAGTGGGGTCGCCCAGGACCCGACCGCGCCGCTGGCCAACTGGCTGACCGTGGAAGGCCAGGTGCATGGCGGCGAGCTGGCGCTGAGCTGGGGGTTCAGCCGTGAAATGTTCGACAGCGCGACCGTGCAGCAACTGGCCGATCAATACGCCCTCGCGCTCAAGGCGCTGATTCGACATTGCGTCAGTCTGGCGACGCCGCAAGCGACGCCGTCGGACTTCCCGCTGGCGCAAATCAGCCAGGCGCAGCTCGACCATCTGCCGGTGGCGGCTGGCCAACTCGACGATATCTACCCGCTGTCACCGATGCAGCAGGGCCTGTTGTTCCACACGCTGTACGAGCAGGCGGCGGGCGAGTACGTCAACCAGCTGCGGGTGGACGTGCAAGGCCTGGATGCCGAGCGATTCCGTGCGGCGTGGCAGGCCACCGTCGCTGCGCAAGACATCCTGCGCAGCGGCTTCGTCTGGCAGGGCGAATTGCCGCAGCCGCTGCAGATTGTCCACAAGCAGGTGCAGTTGCCGTTCACGGTGCTCGACTGGCGCGAGCGTGCCGAGCAGAGCCAGGCTCAGGCCCGGGCCCTTGCCGCGCTGGCTGACGCAGAACGCGCGCAAGGTTTCGATCTGAGCCAGGCACCGCTGTTGCGCCTGGTGCTGGTGCAGACCGGCGCTGAACAATGGCATCTGATCTACACCCATCACCACATCCTGATGGACGGCTGGAGCAATTCGCAATTGCTCGGCGAGGTCATGCAACGCTACAACGGCCACGCGCCGGGCCGCATCGCCGGACGTTATCGCGATTACATCGCCTGGCTGCAACGCCAGGACGGCCAGCTCAGCCAGGACTTCTGGAGCGAGCAACTGGCCGCGCTGCAAGAACCGACCCGGCTCGCCCGCGCGGCTTTGGGTGATGCTGGCCAGAGCGGCCATGGCGATCACTTCCTGACGCTGGATGCGCCACGCACCAAGGCACTGGAGACCTTCGCCCGCCGGCAGAAAGTCACTGTCAACACGCTGGTACAAGCGGCGTGGCTGCTGTTGCTGCAACGCTATACCGGGCACCAGACCGTGGCATTTGGCGCGACCGTCGCCGGGCGGCCGGCGGATCTGCCCGGCATCGAACAGCAGGTCGGCCTGTTCATCAACACCTTGCCGGTGATCGGCACGCCGCGCCCCGACCAGACGGTCGGCCAGTGGCTGCAAGCGGTGCAGGCGCAGAACCTGAGCCTGCGGGATTTCGAGCACACGCCGTTAGCGGACATCCAGCGTTGGGCCGGGCAGGGCGGGGAGGCGCTGTTCGACAACCTCCTGGTGTTCGAGAACTACCCGATCGCCCAAGCCTTGCAGCAGGGAACCGACAGCGATGTCACCTTTGGCGACGTGGCCAATCTTGAGCAGACCCACTATGCCCTGAGCGTGGCGGTCACCCTCGGTGAACAACTGGCGTTGCATTACAGCTACGAGCGTCGACAGTTCGCCGACGAGGTCATCAACCAGATCAGCGCTCACCTGCTGCACCTGCTTGAGCAATTCAGCCAGGACGCCGAACGCAGCCTGGGCGAAATCGCCTTGGCCAGCGCCGCGGAACACGCGCGGCAACAGGCCGGCAACCACCCGCAGCCTTATCCGGTGGACATCGCCGTGCATCAGCGGATCGCCGCGTTGGCGAACGAGCGCCCGCAGCGCACGGCGGTGATCTTCGATGGCCGGCACTTCAGCTATGGCGAAATCGACCAGCGCGCGAACCAGTTGGCCCATGCCCTGATCGCCCGTGGTGTCGGCGCCGAAACCCGGGTTGGCGTGGCCCTGCCGCGCAGCGAAAGCGTGATCGTCGCGCTGCTGGCGGTGCTCAAGGCCGGAGGCGCCTACGTGCCGTTGGACATCAGTTATCCCCGGGAACGCCTGGCGTACCTGATGGAAGACGCCGGACTGGCCTTGTTGATCAGTGACACCTCGGTGGCGGCGCAATTGCCAGTGGCCGAATCGCTACCGCTGCTGGAGCTGGATCGGGTCGATCTGCGCGAACTGCCGGTCAGTGCGCCGCAGGTGCGACTCGATCCGCAGAACCTTGCCTACGTCATCTACACCTCCGGCTCCACCGGCAACCCCAAGGGCGTCAGCGTGGCGCACGGTCCGCTGGCGATGCACTGCCAGGCCATCGGCGAGCGTTATGAAATGCGCGACAGCGATTGCGAGTTCCATTTCATGTCGTTCGCTTTCGACGGTGCCCATGAGCGCTGGCTCACCAGCCTGACCCACGGCGCCTCGCTGCTGGTTCGCGATGACAGCCTGTGGACCCCGGAGCAAACCTACAACGCCATGCGCGAGCACGGCGTGACGGTGGTGGCGTTCCCGCCGGTGTACCTGCAACAACTGGCCGAGCACGCCGAGCGTGAAGGCAACCCGCCGAAAGTGCGCATCTACTGCTTCGGCGGCGACGCGGTGGCCAACGCCAGCTTCGAACGGGTCAAGCGCGCCTTGCAGCCTGAGTACATCATCAACGGCTACGGCCCGACCGAAACCGTGGTCACCCCGCTGATCTGGAAGGCCGGTCGCGAGGTGGCTTGTGGCGCGGCCTATGCGCCGATCGGCAGCCGCATCGGCGACCGCAGCGCCTACGTGCTCGATGCCGACCTGAACCTGCTGCCACAGGGCATGCCCGGTGAGCTGTACCTGGGCGGCAGCGGCCTGGCCCGCGGTTACCTGAACCGTCCGGGGCTGACCGCCGAGCGTTTTGTCGCCGACCCGTTCAGCGCCGGCGGCTTGCTCTACCGCACCGGCGACCTGGTGCGCCAGCGCGCCGACGGCACCTTCGATTACCTCGACCGTATCGACAACCAGGTGAAGATCCGTGGTTTCCGCATCGAGCTGGGGGAAATCGAAGCCAGCCTGCAAGCCCTCGACGGCGTGCGCGAAGCGGTGGTCGCGGCCCAGGAGGGTGCTGCCGGCAGCGGCAAGCGCCTGGTGGCCTACGTCGTGGCTGATCAATGGGTGCCGGATGACTTCGCAGAGAATCTGCGCGAACAACTCAAGGCGACCTTGCCGGCGCACATGGTCCCGGCCTATCTGCTGTTGCTCGAACGGCTGCCGCTGACCCCCAACGGCAAGCTCGATCGCAAGAACCTGCCCAAGCCCGACGCCAGCCAATTGCAGCAAAGCTACAGGGCACCGCGCAGCCCGTTGGAACAGCAACTCGCGGCGGTCTGGCAGGACGTGCTCAAGCTTGAGCGGGTGGGCCTGCGCGATAACTTCTTCGAACTGGGCGGCGATTCCATCGTCTCGATCCAGGTGGTCAGCCGCGCCCGTCAGGCCGGGATTCACTTGACGCCCAAGGACCTGTTCCAGCACCAGACGCTTGAGATGCTGGCGACCGTGGCCCGCCAGGGCGAAGCTGCGCAAGTCATCGATCAGGGCCCGGTGACGGGTGAGCTGGCGCTGCTGCCAGTGCAACGCTTGTTCTTCGAGCAAGCGATACCGCAACGTCATCACTGGAATCAGGCGGTGCTGCTCAAGCCGACCGAGCCTCTGGAGGCGTCGACTCTGTATCAGGCGCTGAGCGCGCTGGTGCTGCATCACGATGGCCTGCGCTTGAGCTTCACGGAGCAGGGCGAAGGCTGGAAGGCGGCCTACCGTCCTGCGGACGTTCACTGCGAAGACCTGCTCTGGACCGTGGACGCGCCTGACGCCTCGGCCTTGCACAGCATCGCCAACGAAGCCCAACGCAGCCTCGGTCTGCAAGACGGTCCGCTGCTGCGGGCGGTACTGGCGACCTTGGGCGATGGCAGCCAACGTCTGTTGTTGGCGGTGCATCACCTGGTGGTCGATGGCGTGTCGTGGCGCATCCTGTTCGAGGATCTGCAACGGGCCTACCGACAGCTGTCCAGCGGCGCAGCGTTGCAGCTACCGGACAAAACCACCTCAGCGCAGGTCTGGGCCGAGCGCTTGCAAGACCATGCCCACAGCCCGGCGCTGCAGCAACAATTGGCCTTCTGGCAGGCCCAGCTCGAAGACATCGATGCGCGCTTGCCGATGGATCATCCACAGGGCGGCCAGCAGAACCGCCTCGCGCTGACCGTGCGTACGCGACTGAACGCCGCACTGACCCGACAGCTGCTGCAAGACGCGCCCAAGGCCTATCGCACCCAGGTCAACGACTTGCTGCTGACGGCTTTGGCGCGGGTCATGGTGCGCTGGACCGGCGCCGACAGTGCGCTGATCCAGCTCGAAGGCCACGGCCGCGAAGCGCTGTTCGACGACGTCGACCTGACCCGCACCGTCGGCTGGTTTACCAGCCTGTACCCGGCCCGACTCACGCCGCAGGCCGATCTTGGGGATAGCCTCAAGCAGATCAAGGAACAACTGCGGGCGATCCCGGACAAAGGCCTCGGTTTTGGTGCCTTGGCGCATCTGGCGGATGACGCTACGCGGGCAAGTCTGGCGCGGCTGCCGACGCCAGGCCTGACCTTCAACTACCTGGGCCAGTTCGACGCCAGCTTCGACGCAGCCGACGGCGCCTTGTTCGTGCCGGCCAACGAAGCGGCCGGCGATGAGCTGGACGCTGAAGCACCGTTGTCGAATGTGCTGGCGTTGAACGGCCAGGTGTTCAATGGCGAACTGGACCTGGGCTGGACCTTCAGCCGCGAGCAGTTCAACGAGGCGACCATCCAGGCCTTGGCCGATGAGTATGCGCTTGAGTTACAGCAGCTCATCGAGCATTGCTGCCAGGGCGGACATCACGGTGTGACGCCATCGGACTTCCCGCTGGCGAGCCTGAGCCAGCAGCAACTGGACGGGCTGGCGCTGCCGATGGCGCAGATCGTCGACCTGTATCCGTTGTCGCCGATGCAGCAAGGCATGCTGTTCCACGGCGTGTATGGCGACGCCACCGGCGACTACATCAACCAATTGCGCCTGGACGTGGAAGGGCTGGACCCGCAGCGTTTCCGCCAGGCCTGGCAAGCGGCGGTGGACGCCCACGACATCCTGCGCACGCGGTTCGTCTGGCAAGGGGATTTGCCGGCGCCGGTGCAGGTGGTCAGCAAATACCTGGAGCTGCCTTACAGCGTGCAGGATCTGCGCAGCGATCCGTTGCCTGACCAGGCCTTGCAGGCCCTGGCCGATGCCGAACGCGAGCAACTGGACCTGAGCGCGTCGGCACTGATACGCCTGATGATCGTGCGCCTCGACGAACAGCGTTATCACCTGATCTACAGCCACCACCACATCCTCATGGACGGCTGGAGCAATTCGCAGCTGCTCGGCGAAGTGCTGCAACGCTACAGCGGTCAATCCGTTGCGGTGTCCGGCAGCCGCTACCGCGACTACATCGCCTGGCTGCAACGCCAGGACGCGGCGGCCAGCGAAGCGTTCTGGAAACCGGCGCTGCAACAGCTGGAGACGCCGACACGATTGGCCGATGCGGTGGCCAAACCGGCCGACATGGGCAGTGGTTACGGCGATCATGTCCACGTGCTGGACGAAGCGTCGACCCGTCGCCTGGAAGCTTTCGCCCGCGCCTCGAAAGTCACGGTGAACACCCTGGTGCAAGCGGCGTGGCTGCTGCTGTTGCAGCGCTACACCGGTCGAGAAACGGTGGCCTTCGGGGCGACCGTGGCCGGGCGTCCGGCGGACTTGCCCGGCATCGAGCAGCAGATCGGTCTGTTCATCAACACCTTGCCAGTGATCGCCAGCCCACGGGCCGGGCAGACCTTGGACAGCTGGCTGCAAGCGGTGCAGGCGCAGAACCTCGCCCTGCGCGATTTCGAGCACACCGCGTTGCTGGACATCCAGCGCTGGGCCGGGCAGGGCGGCGACGCGCTGTTCGACAGCCTGCTGGTGTTCGAGAACTACCCGATCGCCCAGGCGTTGGAACAGGGCGCGCCGGACGGTTTGCGTTTTGGTTCGCCGGTCACTCAGGAGCAGACCAATTATCCGTTGACGCTGCTGGTGGGGTTGGAGCGGCAGTTGTCGGTACACATGAGTTATCAGCGGGCGAGCTTTGCGCCGGATACGGTTGAACGGCTGGCGGCGCATCTGGCGCAGTTGCTCGGGCAGATGAGCGCCAATGGCGAGCGCTGCCTCGGTGAACTGTCGATGCTGGAATTCGATGAGCATCAACGTTTGACCCATGACTGGAACCCGGTCGATGCGCCGTTCGAACAGGACCTGTGCATTCATGAAGTCATTGCGCGCCAGGCCGACGCTTCGCCGGATGCCCTGGCAGTGACTTTTGCCAACACGCGCCTGAGCTACAGCGAACTGGACGGCCGCGCCAATCGCCTGGCCCACAAACTCATCGAACTGGGCGTCGGCCCGGAAGTGCGTGTCGGCGTGGCGATGCCGCGTTCCGAGCAGTTGCTGATCGCCTTGCTGGCGGTGCTCAAGGCCGGTGGCGCGTACGTGCCGCTGGACCCGGATTACCCGGCCGAGCGCGTGGCCTACATGCTTGAGGACAGCCGCGCGCGGGTGTTGCTGACCGAGCAGGCGGTGGCGCAGACGCTGACGGTTCCGGCCGAGACGCAAATGCTGATGCTCGATCAGCTCGACCTTTCACGTTATCAACTGAGCTCGCCCGTTACAGACGTCACCCCAGACAACCTCGCCTACGTCATCTACACCTCCGGTTCCACCGGCAAACCCAAGGGCGTGGCGATCGCCCACCGAAACGTCTTGGCGCTGATCGACTGGTCCAGAACCGTCTACAGCCGCGACGACATCCAGGGCGTCCTGGCATCGACCTCGGTGTGTTTCGACCTGTCGGTGTGGGAGCTGTTTGTCACCCTCGCCAACGGCGGTTCGCTGATCATCGCCCGCAACGCCCTGGAACTGCCGCACCTGCCGGCCCGCGATCAGGTGCGCCTGATCAACACCGTGCCTTCGGCGATCGCCGCGTTGCAGCGCAGCGGCGAGATCCCGGACAGCGTGCGCATCATCAATCTGGCCGGTGAGCCGCTGAAGCAGAGCCTGGTGGATGCCCTCTACCCATCACACATCACCTGTGGGAGCGAGCTTGCTCGCGATAGCGGTGGGTCAGTCGATGAGGGGCTAACTGCCAGGACGCCATCGCGAGCAAGCTCGCTCCCACAGGTGGTGGGTGAACAGGTCGGTGGGGTTGAGCATGTTTATGATCTGTATGGCCCCTCGGAAGACACCACCTATTCCACCTGGACCCGCCGCACCGCCGGCGGCACGGCAAACATCGGTCGCCCGCTCAAGCACACCGCCAGCTACCTGCTCGACGCCAACCTGCAACCGGTGCCGCAAGGCGTCTCGGCGGAGCTGTACCTGAGCGGCGCGGGCATCACCCGGGGTTACCTCGGGCGCGCGGCGATGACCGCCGAAAAGTACGTGCCGAACCCGTTCTCGACCACCGGCGAACGCCTGTATCGCACCGGCGACCTGTGCCGCTATCGCGCCGATGGCGTGCTCGAATACCAGGGCCGGCTCGACCATCAGGTGAAGATCCGCGGCTTTCGCATCGAGCTGGGCGAAATCGAGGCGCGGCTGTTGCAGCAAGCCGAGGTAAATGACGTCGCCGTGCTGGCCCAGGAAGGGCCGGGCGGGCAGCAGTTGGTGGCTTACGTGGTTGCTTCGACCGACGCGAATACTCTGCGCGATCAACTCAAGGCCAATCTCAAGGCGCACCTGCCCGACTACATGATCCCGGCGCACTGGCTGTTCCTCGACCACCTGCCACTGACCCCCAATGGCAAGCTCGACCGCAAGGCCTTGCCGAGCATCGAGGCCGGGCGCTCAGAAAACGCTTACGAAGCACCGGTCAGCGACCTTGAACAGCAAGTCGCAGCGATCTGGGCCCAGGTGCTCACCGTCGAGCGCGTGGGCCTGCACGATCACTTCTTCGAGCTGGGCGGCCACTCGTTGCTGGCGGTCACCGCCGTTTCGCGCATGGCTCTCGAACTGGGGTTGAGCCTGACCCCGCAGCTGTTATTCCAGCACCCCGTCCTGAAGGATTTTGTCGCCCGACTCGACAGCGGCGACGGGCCGATCAACGAACAGAAACTGAACAAGCTGGACGCCCTGCTTGATGAAATGGAGGAAGTCTGAMNAEDALKLARRFIGLPLDKRQMFLAALDKEGVDFSRFPIPQGVEADDRQALSYAQRRMWFLWQLDPDSGAYNLPGAVRLKGALSLSALEQAFASLVARHETLRTVFQRQADDSLVQVPTDAPLVIEQQDLSALPAGEREQAVRQAAEAQSMRPFDLSRGPLLRVELLKLDQQEHVLLLTLHHIVSDGWSMNVLIDEFIRCYDAHEAGVAPQLADLPIQYSDYALWQRRWLEAGEQARQLAYWQAQLGDEHPVLELPTDHSRPAMPSYRGSRYEFAIDAALAEQLRSTAQQQGVTLFMLLLGAFNVLLHRYSGQSDIRVGVPIANRNRDEVEGLIGFFVNTQVLRTELDGQLRVDELLRRVKETALGAQAHQDLPFERLVEALKLERSLSHTPLFQVMYNHQPHVADVTTIRTASGLELGMIEWQARTTQFDLTLDTYEKAGTLHAALTYANDLFEAPSIARMARHWLRLLTAMIADPSRRIGELPLLDADEHATLVHGWNATAQRYPTAQCMHQLIEAQVARTPDAPALVFAEQTLSYAELDARANRLAHLLRERGVRPDSLVGICVERSLEMVVGLLAIHKAGGAYVPLDPEYPQERLAYMIEDSAIGLLLTQRSLSAALPTDGVEVIELDQAAGWLDGYSDHRPDITLDPLNLAYVIYTSGSTGKPKGAGNSHAALVNRLCWMQQAYALDGSDAVLQKTPFSFDVSVWEFFWPLMTGARLVVAAPGVHRDPLQLIETIKRHRISTLHFVPSMLQAFIHEPGVESCEGLKRIVCSGEALPLDAQHQVFAKLPNAALYNLYGPTEAAIDVTHWTCVDEGADCVPIGVPIANLRTHVLDADLSPVPWGVAGELYLGGTGLARSYHQRPALTAERFVPCPFHAGARLYRTGDRVRQRADGVIEYLGRLDHQVKLRGLRIELGEIETRLMQHPLVREAVVLVQDGKHLVGYLVLENSEPHEQWQQDLRAWLLASLPEYMVPTYLMPLARLPVTANGKLDRKALPQPDAAPRQTFVAPQDALQVALAEIWQDVLGVERVGLEDNFFELGGDSIISIQVVSRARQAGIRIHPRDLFQYQTVRSLALVATRDSHSAVDQATVTGDAVLGPIQRQFFSQAMQARDHWNQSLLLTAREPLDAQRLDAALTCVINHHDALRLRFVEDADGWRQGHGPLVQNADLWQREARSIEDLAALCDEAQRSLKLQDGPLLRAMLVDLADGSQRLALIIHHLVVDGVSWRVLLEDLQQAYEQLAAGGAATLPAKTSAFQSWTARLSAEASRFDDQLAYWQAQHQGAADIPCDRPQGSLQNIHGAKIEWRLDAELTRQLLQQAPAAYRTQVNDLLLTALARTISHWSGQPGTLVELEGHGREELFDDIDLTRTVGWLTSLFPVKLTVTDDLDGSIKTVKEQLRGVPDKGLGYGVLRHLAAPSVQATLAGLAQPRITFNYLGQFDRQFDETALLLPSGEGSGVAQDPTAPLANWLTVEGQVHGGELALSWGFSREMFDSATVQQLADQYALALKALIRHCVSLATPQATPSDFPLAQISQAQLDHLPVAAGQLDDIYPLSPMQQGLLFHTLYEQAAGEYVNQLRVDVQGLDAERFRAAWQATVAAQDILRSGFVWQGELPQPLQIVHKQVQLPFTVLDWRERAEQSQAQARALAALADAERAQGFDLSQAPLLRLVLVQTGAEQWHLIYTHHHILMDGWSNSQLLGEVMQRYNGHAPGRIAGRYRDYIAWLQRQDGQLSQDFWSEQLAALQEPTRLARAALGDAGQSGHGDHFLTLDAPRTKALETFARRQKVTVNTLVQAAWLLLLQRYTGHQTVAFGATVAGRPADLPGIEQQVGLFINTLPVIGTPRPDQTVGQWLQAVQAQNLSLRDFEHTPLADIQRWAGQGGEALFDNLLVFENYPIAQALQQGTDSDVTFGDVANLEQTHYALSVAVTLGEQLALHYSYERRQFADEVINQISAHLLHLLEQFSQDAERSLGEIALASAAEHARQQAGNHPQPYPVDIAVHQRIAALANERPQRTAVIFDGRHFSYGEIDQRANQLAHALIARGVGAETRVGVALPRSESVIVALLAVLKAGGAYVPLDISYPRERLAYLMEDAGLALLISDTSVAAQLPVAESLPLLELDRVDLRELPVSAPQVRLDPQNLAYVIYTSGSTGNPKGVSVAHGPLAMHCQAIGERYEMRDSDCEFHFMSFAFDGAHERWLTSLTHGASLLVRDDSLWTPEQTYNAMREHGVTVVAFPPVYLQQLAEHAEREGNPPKVRIYCFGGDAVANASFERVKRALQPEYIINGYGPTETVVTPLIWKAGREVACGAAYAPIGSRIGDRSAYVLDADLNLLPQGMPGELYLGGSGLARGYLNRPGLTAERFVADPFSAGGLLYRTGDLVRQRADGTFDYLDRIDNQVKIRGFRIELGEIEASLQALDGVREAVVAAQEGAAGSGKRLVAYVVADQWVPDDFAENLREQLKATLPAHMVPAYLLLLERLPLTPNGKLDRKNLPKPDASQLQQSYRAPRSPLEQQLAAVWQDVLKLERVGLRDNFFELGGDSIVSIQVVSRARQAGIHLTPKDLFQHQTLEMLATVARQGEAAQVIDQGPVTGELALLPVQRLFFEQAIPQRHHWNQAVLLKPTEPLEASTLYQALSALVLHHDGLRLSFTEQGEGWKAAYRPADVHCEDLLWTVDAPDASALHSIANEAQRSLGLQDGPLLRAVLATLGDGSQRLLLAVHHLVVDGVSWRILFEDLQRAYRQLSSGAALQLPDKTTSAQVWAERLQDHAHSPALQQQLAFWQAQLEDIDARLPMDHPQGGQQNRLALTVRTRLNAALTRQLLQDAPKAYRTQVNDLLLTALARVMVRWTGADSALIQLEGHGREALFDDVDLTRTVGWFTSLYPARLTPQADLGDSLKQIKEQLRAIPDKGLGFGALAHLADDATRASLARLPTPGLTFNYLGQFDASFDAADGALFVPANEAAGDELDAEAPLSNVLALNGQVFNGELDLGWTFSREQFNEATIQALADEYALELQQLIEHCCQGGHHGVTPSDFPLASLSQQQLDGLALPMAQIVDLYPLSPMQQGMLFHGVYGDATGDYINQLRLDVEGLDPQRFRQAWQAAVDAHDILRTRFVWQGDLPAPVQVVSKYLELPYSVQDLRSDPLPDQALQALADAEREQLDLSASALIRLMIVRLDEQRYHLIYSHHHILMDGWSNSQLLGEVLQRYSGQSVAVSGSRYRDYIAWLQRQDAAASEAFWKPALQQLETPTRLADAVAKPADMGSGYGDHVHVLDEASTRRLEAFARASKVTVNTLVQAAWLLLLQRYTGRETVAFGATVAGRPADLPGIEQQIGLFINTLPVIASPRAGQTLDSWLQAVQAQNLALRDFEHTALLDIQRWAGQGGDALFDSLLVFENYPIAQALEQGAPDGLRFGSPVTQEQTNYPLTLLVGLERQLSVHMSYQRASFAPDTVERLAAHLAQLLGQMSANGERCLGELSMLEFDEHQRLTHDWNPVDAPFEQDLCIHEVIARQADASPDALAVTFANTRLSYSELDGRANRLAHKLIELGVGPEVRVGVAMPRSEQLLIALLAVLKAGGAYVPLDPDYPAERVAYMLEDSRARVLLTEQAVAQTLTVPAETQMLMLDQLDLSRYQLSSPVTDVTPDNLAYVIYTSGSTGKPKGVAIAHRNVLALIDWSRTVYSRDDIQGVLASTSVCFDLSVWELFVTLANGGSLIIARNALELPHLPARDQVRLINTVPSAIAALQRSGEIPDSVRIINLAGEPLKQSLVDALYPSHITCGSELARDSGGSVDEGLTARTPSRASSLPQVVGEQVGGVEHVYDLYGPSEDTTYSTWTRRTAGGTANIGRPLKHTASYLLDANLQPVPQGVSAELYLSGAGITRGYLGRAAMTAEKYVPNPFSTTGERLYRTGDLCRYRADGVLEYQGRLDHQVKIRGFRIELGEIEARLLQQAEVNDVAVLAQEGPGGQQLVAYVVASTDANTLRDQLKANLKAHLPDYMIPAHWLFLDHLPLTPNGKLDRKALPSIEAGRSENAYEAPVSDLEQQVAAIWAQVLTVERVGLHDHFFELGGHSLLAVTAVSRMALELGLSLTPQLLFQHPVLKDFVARLDSGDGPINEQKLNKLDALLDEMEEVNANANANANA
D1-35_0219013593lgrB_2Linear gramicidin synthase subunit BATGGACAAGAGTGTTGCTTTGAGGGTTGCCAAGCGCTTTATCACTCTGCCGCTGGACAAACGCCGGCTGTACCTGGAAAAGATGCTCGAAGAGGGCGTCTCGCCGGCCAACCTGCCGATCCCCAAGGTGCGTTCCGGGTTTGAACAGGTCCCGCTGTCCTACGCCCAGGAGCGCCAGTGGTTCCTCTGGCAGATGGACCGCCACAGCTCGGCTTACCACATCCCCAGCGCCTTGCGCCTCAAAGGGCAACTGGACGTGCCGGCGCTGGAGCGCAGCTTCAATGCCGTGGTCGAGCGCCACGAAAGCTTGCGCACCACGTTCGCCGAGCACGGCGAGCAAACCGAGCAGATCATTCATCAACATATGCCCTTGAGCATCGCGGTCGAGGCGCTGCCCGCCGGTTCTACGGTCAGCCAGGACGAACGTATCAAGGCCTTCGTCGAAGGTGAAACCGCGCGTCCGTTCGATCTGCGCCAAGGGCCGTTGCTGCGGGTTTCGCTGTTGAAAATTGCCGAAGACGACCATGTCCTGGTGCTCATCCAGCACCACATCATTGCCGATGGCTGGTCGATGCAGGTGCTGGTGGATGAACTGGTCCGGCACTACGCCGCCGACATTGGCGGCCAGCCGCTGGCCTTGCCGGACCTGCCGGTGCAATACGCTGATTATGCGATCTGGCAACGGCACTGGCTGGAGGCGGGGGAGCGTGAGCGGCAACTGGCCTATTGGGTCCAGACCCTCGGTGACGAGCAACCGGTGCTGGAACTGCCGTTCGATCATCCGCGCCCCCCGGTGCAGAGCTTTCGTGGCGCGCGCCTGGATTTGACCCTGAGCGCGGAACTGGCCACCGCGCTCAAGCAGCTGGCCCAGCGTGAAGGCGCCAGCCTGTTCATGGTCTTGCTGGCCTCGTTCCAGGCGCTCCTGCACCGCTACAGCGGGCAACCGCAGATCCGCGTGGGCGTGCCGACGGCCAACCGCAACCGGGTCGAGACCGAAGGGCTGATCGGTTTTTTCGTCAACACCCAGGTACTCAGTGCCGACGTTGATGGGCAACTGCCGTTTGATCAGTTGCTCGCCCAGGTCAAGCAATCGGCGATGGCGGCCCAGGCCCATCAGGACTTGCCATTCGAGCAATTGATCGAGGCCCTGCAACCGGAGCGCAGCCTGAGCCACAGCCCGATTTTCCAGGTCATGTTCAACCACCAGAACGCCGACGCCACTCGAAGCCGGCAGATGCACCTGCCGCAGCTGCGGGTCGAGGATCTGGTATGGGAAGGGCGTACTGCCCAGTTCGACTTGACCCTGGGCACCTATGAAACCGAGCAGGGCATCGCTGCGGAACTGACCTACGCCACCGACCTGTTCGATGCGCAGACCATCGAGCGCCTGGCCGGGCACTGGCAGAACCTGCTGCACGGCATCGTCGATGTGCCACGCCAGCGTATCGGCGAACTGCCGCTGCTCGACCCGGCGCAACAGCAACTCACGCAGCAGCAATGGCTGCGGGTGGCCGACCACACTGACGAAGCCGTTTGCGTGCACCAGCGCATCGCCCAACAGGTGCGCCGCAACCCCGAGGCGCTGGCGCTGACCATCGACGACCAGGCCCTGAGCTACGCACAACTGGACGCGCGCGCCAACCAACTGGCCCATCGCCTGATCGACCTGGGCGTGATGCCCGGCCAGTTGGTGGGCATCGCGGTCGAGCGCAGCGTCGAGATGATTGTCGGCCTGCTGGCGATCCTCAAGGCCGGCGCCGCCTATGTGCCGCTGGATCCGGCGTACCCCGAGGATCGCCTGGCCTACATGATCGAGGACAGCGGCATCGGACTGCTGCTGACCCAGGCCCGTTTGCAGGCGCGCTTGCCGATCCCGCCAAGTCTTCGGACTCTGTTGCTGGACCAGCCGGACGCCGCATTGCAAGCAGCCCCGCAAACCTGCCCGGTGGTGCCGCTGACTGGCGAACACCTGGCCTACGTCATCTACACCTCCGGTTCCACCGGCAAGCCCAAGGGCGTAATGGTGCGCCATGGCGCCCTGAGCAATTTCATCCACAGCATGATCGCCGAGCCGGGCCTCGCGCCCGGCGACCGCATGCTGTCATTGACGACGTTCTCTTTCGATATTTTCGGCCTGGAAATCTACGGACCTCTGTCAGCCGGGGCCAGCGTGGTGCTGACCGGCCAGAACGTGCACCAGGACCCGCAAGCGGTGCTGGCGCTGATCGAACAACACGCTGTCAGCGTGCTGCAAGCCACACCGTCGAGCTGGCGCATGTTGCTCGATCATGAGCAGGCTTCGCTGCTGGCCGGGCGGACCTTCCTCTGCGGCGGCGAAGCGTTGCCGCTGGAACTGGCGCAGCGCTTGCTGGCGCTCTCGCCGAACGTCTGGAACCTCTACGGCCCGACCGAAACCACCATCTGGTCGGCGCTGCATCCGTTGAGCCTGGAGCGCGACCGTCCGTTCCTCGGTAAACCGCTGGACAACACCGCGCTGTACATCGTTGGCGGCGACCTGACCCTCAACCCGCCCGGTGCGCCGGGAGAGCTGCTGATCGGGGGCGCCGGCCTGGCCCGTGGTTATTTCCAGCGCCCGGCGCTGACCGCCGAACGCTTCGTGCCGGACCCGTTTTCCGCCACGGGCGAGCGCCTGTACCGCACCGGCGACCTGTGCCGTTATCGCGCCGAAGGCGTGGTCGAGTACCTCGGCCGGATCGACCATCAGGTGAAGATCCGCGGCCTGCGTATCGAGCTGGGGGAAATCGAAGCCGCGCTGCTGGCCCAGGACCGCGTGCGCGAAACCGTGGTGGTGGCCCACCAAGGCCCGACCGGCGCGCAATTGGTTGCCTACGTGGTGCCCGCCAGCGGCGCAGTGCCGGAGCCGGACGCGCCGTTGCGCACCGCACTCAAGGCGGCCCTCAAGGCGCAGTTGCCGGAATACATGGTGCCGGCGCACCTGTTGTTCCTGGCGCAACTGCCGCTGACGCCCAACGGCAAGATCGATCGCAAGGCCTTGCCGGCGCCCGAGGCCAGCGATTTGCAGCAGGCCTACGTGGCGCCGCGCAGCGAGGTCGAGCAACAGGTCGCGGCAATCTGGCAGGACGTGCTCAAGCTTGAACGCGTGGGGCTGGAAGACAATTTCTTCGAACTGGGCGGGCATTCGCTGCTGGTGACCCAGGTGGTCTCGCGGGTCCGTCGGGTGCTTGGCATCGAAGTGCCGCTGCGCAGCCTGTTTGAACACAGCACGTTGCAGGCGTTCGTCGCCGCCTTCGATACCACGACAGGCGAACAGGCCCCGGCCATGACGCCGGTGCCTCGCGACGCGCCGCTGCCGTTGTCCTTTGCCCAGGAGCGCCAGTGGTTCCTCTGGAAAATGGACCCCGACGGCGCCGCCTACAACATACCGACCGCGTTGCGGATGCGCGGCGCATTGGACAAGGACGCGCTGCGCAAGAGCTTTGCCGCACTGGTCCAGCGCCACGAAAGCTTGCGCACCGCATTCGTGGAAGAGGATGGACGCACTGGCCAGGTGATTTGTGAGCAGGGCGAAGTCGACTATATCGAGGAGCGTCTGGAAGGGCGTGATATCCAGGCCTTCCTTGAACAGCAGACGCAACGCCCGTTCGATCTGCTGAATGACGCGCTGCTGCGCGTGGCGCTGTTGGAAGTGGCCGAGGAGGATCATCTGCTGGTGCTGACGCTGCATCACATCGTCTCCGACGGCTGGTCGTTACAGGTGATGGTCGATGACCTGATGAGCCTGTACTCGGCTTTCATCCAGGGTCAACCGGCACAACTGCCGCCATTGGCGGTGCAATACGCCGACTACGCGGTCTGGCAGCGGCAATGGATGGCGGCCGGCGAGCGCGACCGCCAACTCGCCTACTGGTCGGCGCAACTGGGCGGCGAACAGCCGCTGCTGGAACTGCCCACCGACCACCCGCGCCCAGCGCAACAAAGCCTGCGCGGGGCACGCCTGCCGATCGTGCTGGATCGCGCCTTGAGCGATGACCTCAAGGCCCTGGCCCGGCAAGAAAACGTCACGCTGTTCGTGCTGTTGCTCGGCTCGTTCCAGGCATTGCTGCATCGCTACAGCGGCCAGGCCGACATCCGCGTCGGCGTGCCGATCGCCAACCGCCAGCGGCTGGAAACCGAGCGCTTGATCGGGTTCTTCGTCAATACCCAGGTCCTGCGCAGCGAGTTCTCCGGCGACCTGACCGGCGCCGCGTTGCTGCAACAGCTCAAGCAGACGGCCATGGCCGCGCAGATGCACCAGGACCTGCCCTTCGAGCAACTGGTAGATGCCCTGCAGCCGCAGCGCAACCTGAGCCACAGCCCGCTGTTCCAGGCGATGTTCAACCACCGCAACGAAACCGCCTCGGTGTTTGCCAAGGCCTTGCCGGGGCTCGACGTCGAACCCGTAGGCTGGACGCAGCGCACCGCGCAATTCGACCTGAGCCTGGACACCGTCGAAAGTCCCCAGGGCCTGTACGCTGCCCTGACCTACGCCACCGACCTGTTCGAGCCGGCGACCATCGAACGCATGGCCGGGCATTGGCTCAACCTGTTGCGCAGCCTGGTGCAGGACCTGCACCGCCCGGTGGCGCAATGGTCGCTGCTGGACGAGGACGAGCGTCGACACATGCTCATCGACTGGAACGCGACGGCCCGGCAATACCCGCTCGACCGCAGCGTCCAGGCGCTGATCGAGGAACAGGTGCGCCGGACCCCGGATGCGCCTGCATTGGTCTTTGGCGGGCAGCGCCTGAGCTACCGCGAACTCAACGCCCGGGCCAACCGCCTGGCCCATCGCTTGATCGACCTGGGCGTCGGTCCCGATGTGCTGGTGGGCATCGCCGTCGAACGTTCGGTGGAGATGGTGCTCGGGCTGTTGGCGATCCTCAAGGCCGGCGGTGCCTACGTGCCGTTGGACCCTGAGTACCCGCAGGATCGCCTGGCCTATATGTTCGAAGACAGCGGCATCGGTTTGCTGCTGACCCAGCAACACCTGCTTGATGCTTTGCCGATTCCGCAAGGGCTGCGCAGTCTGGTACTGGACCTGCCCGCTGAGGGGTCGCATGCCAGTCGTGAGGAGAATCCCGACGTCAAGGTGCACGGCGAAAACCTGGCCTATGTCATTTATACCTCCGGTTCCACCGGCAAGCCCAAGGGTGCGGGCAATCGCCATTGCGCCCTGGTCAACCGGCTGTGCTGGATGCAGCAGGCCTATGGCCTCGATGCGACTGACAGTGTGTTGCAGAAAACGCCGTTCAGTTTCGACGTGTCGGTGTGGGAATTTTTCTGGCCGCTGCTGACCGGCTCGACGCTGGTGGTGGCCGCGCCGGGGGCCCATCGCGACCCGGCGCAACTGATCGAGCTGATCACCGCGCAGCGCATCACCACGCTGCACTTCGTACCGTCGATGCTCCAGGCGTTCGTGCAGGACCCGCGCGTGGCCGAATGTACCAGCCTCAAGCGGATCGTCTGCAGCGGTGAAGCGCTGCCGGTGGATGCCCAGCAGCAGGTGTTCGCCAAACTGCCGGATGCCAGCCTGTACAACCTCTACGGCCCGACCGAGGCGGCCATCGACGTGACCCACTGGACCTGCGTCGAGGAGGGCCGCGACAGCGTGCCGATCGGACAGCCGATCGCCAACCTCGGCACCTACATTCTCGACGATGAGCTGTCGCCGGTGCCGGTCGGGGTGATCGGCGAGCTGTACCTGGCGGGCGAAGGGCTGGCGCGCGGTTACCATCGGCGCGCGGCGTTGACCGCCGAACGGTTCGTCACCGCGCCGTTCGGCGCTGGCCAGCGCTTGTATCGCACCGGCGACCTGGCGCGTTATCGGGCTGATGGCGTGATCGAATACGCCGGCCGAATGGACCATCAAGTGAAAATCCGTGGCTTGCGCATCGAGTTGGGCGAAATCGAAGCGCGTCTGGCCGAACACGAGGCGGTACGCGAAACCGTGGTCCTGGCCCAGGACGGCACGTTGCTGGTGGCCTACGTGGTGCCGGCGCGCGCCGAGCTGATGGTCGCCGATGACGCCGTCCGCCAGGCGCTGCAAGTGCGCCTCAGGGAACATCTGAGCCAATCCCTGCCCGACTACATGGTGCCGCAACACTGGGTGTGGCTGGAGAAAATGCCGGTCAGCCCCAACGGCAAGCTTGAGCGCAAGGCTCTGCCGAAGGCCGATCCGAGCGCCAGCCACAAGGGCTACAGTGCCCCGGTCACCGCCGTGGAAAACACTTTGGCCGCGATCTGGCAAAGCGTGCTCGGGCGCGAACGCGTAGGGCGGACCGACAATTTCTTCGAGCTGGGTGGCGATTCGATCATTTCCATCCAGGTGGTGAGTCGCGCCCGTCAGGCCGGGATTCATTTCAGTCCCAAGGACCTGTTCCTGCACCAGACCATCCAGGGCCTCGCCGGGGTGGCAACGACCGGAGACAACGGGCCGGTCATCGATCAGGGCCCGGTGGTCGGGCAGACGGTATTGCTGCCGTTCCAGCAGTTGTTCTTCGAACAGGCCATGGCCGAGCCTCATCATTGGAACCAGTCGGTGTTGCTCAAGAGCTTGCGCGCCGTGGATGCCGCGCATCTGGAGCAGGCGTTGCAGGCTCTGGTCGAGCATCACGATGCGTTGCGCCTGGCCTTCGTCTGCGAGGCAGGCACCTGGACCGCTCGCCACAATACCTTGGCCGAACAGCGCACGCTCTGGCAGCGCTCGCCGCTGTTGTGGACCGCCGAGGTGGCCGATGCGCCGGCCCTTGAACGCCTGGCCGAACAAGCCCAACGCAGCCTCGACCTGCAAGATGGCGCGCTGCTGCGCGGAGTGCTGGCGAGCCTGGCCGACGGCAGCCAGCGGCTGTTGCTGGTGATCCATCACCTGGTGGTGGACGGCGTGTCCTGGCGTGTACTGCTGGAGGACCTGCAACAGGCGTACGAGCAGTTGCAGGCCGGCCAGACGCCAGCGTTGCCGGCCAAGACCACGGCTGCGCAGACCTGGGCGCAACGGTTGCAGGCGCATGCCGGCAGCGCGACGTTGCAGTCCCAGCTGAAGTATTGGCAAGAGCAACTGCAAGGCGCCGGTCATGACTTGCCTTGCGACCGCCCAGGGGGCGATTTGCGCAGGTGCTACGCGACCCAGGTTCAGACGCGGCTGGACAAGGACCAGACGCGACGCCTGCTGCAGCAAGCGCCGGCGGCTTATCGCACCCAGGTCAACGACCTGCTGCTGACCGCGCTGGCCCGGGTGATCGGCCGCTGGACTTCCCAGGCCTCGACCTTGATTCAGCTGGAGGGCCATGGCCGCGAGGCGCTGTTCGATGACCACATTGACCTGAGCCGCAGCGTCGGTTGGTTCACCAGCCTGTTCCCGGTGCGCTTGAGCCCGACGGCCACCACCGAAGGCTCGATCAAGGTCATCAAGGAGCAACTGCGGGCGATCCCAGACAAAGGGCTCGGCTTCGGCGTGTTGCGTTACCTGGGCGATGAACCGACGCGGCGCACCCTCGCGGCGCTGCCGGTGCCGCGCATCACATTCAACTACCTGGGCCAGTTCGACAGCGGCTTTGCCGACGACGCCGACGGCCTGTTTGTCCCGGCCAGCGAATCGGCGGGCGCGGCGCAGAGTCCGTTGGCGCCGCTGGACAACTGGCTGACGCTCAACGGCAGCGTCTATGCCGGCGAGTTGAGCATCGACTGGACGTTCAGCTCGCAAATGTTCGATGAAGCGACGATCCAGGCGCTGGCCGAGGATTACGCTGGGGAATTGCAGGCATTGATCGACCACTGTTGCGAGCCGCGGCACCACGGGTTCACGCCGTCGGACTTCCCCCTGGCCGAATTGCAACAGCAACAGTTGGACGCCTTGCCGCTGGTGGCGCGCGACGTGGAAGACATCTATCCGCTGTCGCCGATGCAGCAGGGCATGCTGTTCCACACGCTGTACGAGCAGCAGGCCGGCCACTACATCAACCAGATGCGCGTGGATGTCGAAGGGCTGGACGTCGAGCGCTTCCGCCAGGCCTGGCAAGCGGCGACCGACGCCCACGACGTGCTGCGCAGCGGTTTTGTCTGGGAGGGTGATTTCAAGCGTGCATTGCAGGTGGTGCACAAGCGCGTAGCGGTCGCGTTACAGCTGCATGACGCACGTACGCAGGCTGACCTGCCTGAGCACCTGAACACCCTCGCAACGGCCCAGCGCGAGCAAGGTTTTGCCCTCGATGCGGCGCCGTTGTTGCGGTTGGTGGTGGTGCGCGTGGCGCAGGAGCGTTATCACTTGATCTATACCAGCCATCACATCCTGATGGACGGCTGGAGCAATTCGCAGTTGCTCGGCGAAGTGCTGCAACGCTACAGCGGTCAACCCGTTGCCGTGTCCGGCAGCCGCTACCGCGACTACATCGCCTGGCTGCAACGCCAGGACGCGGCGGCCAGCGAAGCGTTCTGGAAACCGGCGCTGCAACAGCTGGAGGCGCCGACACGATTGGCCGATGCGGTGGCCAAACCGGCCGACATGGGCAGTGGTTACGGCGATCATATCCACGTGCTGGACGAAGCGTCGACCCGTCGCCTGGAAGCTTTCGCCCGCGCCTCGAAAGTCACCGTCAACACACTGGTGCAAGCCGCGTGGCTGCTGCTGTTGCAGCGCTACACCGGCAAAACCACCGTGGCTTTCGGCGCAACCGTGGCCGGGCGTCCGGCGGACTTGCCCGGCATCGAGCAGCAGATCGGTCTGTTCATCAACACCTTGCCAGTGATCGCCAGTCCTCGGGCCGAGCAGACGTTGGACAGCTGGCTGCAAGCGGTGCAGGCGCAGAACCTGGCCTTGCGCGAGTTCGAGCACACCGCGTTGCTCGACATCCAGCGCTGGGCCGGGCAGGGCGGCGACGCGCTGTTCGACAACCTGCTGGTGTTCGAGAACTACCCAATTGCCCAGGCGCTGGAGCAGGGCGCGCCGGACGGTTTGCGTTTTGGTTCGCCAGTGACTCAGGAGCAGACCAACTATCCGTTGACGCTGCTGGTGGGGTTGGAGCGGCAGTTGTCGGTGCACATGAGTTATCAACGGGCGAGCTTTGCGCCGGATACGGTTGAACGGCTGGCGGCGCATCTGGCGCAGTTGCTCGGGCAGATGAGCGCCAATGGCGAGCGCTGCCTCGGTGAACTGTCGATGCTGGAATTCGATGAGCATCAACGTTTGACCCATGACTGGAACCCGGTCGATGCGCCGTTCGAACAGGACCTGCGCATCCACCAACTGATCGCCCGCCAAGCGCAATCCACTCCTGACGCATTGGCGGTCACCTTCGCCAACACGCGCCTGAGCTACAGCGAACTCGACGGCCGCGCCAATCGCCTGGCCCACAAGCTCATCGAACTGGGCGTCGGCCCGGAAGTGCGGGTGGGCGTGGCGATGCCGCGCTCCGAGCAGTTGCTGATCGCCTTGCTGGCGGTGCTCAAGGCCGGTGGCGCGTACGTGCCGCTGGACCCGGATTACCCGGCCGAGCGCGTGGCCTACATGATTGAGGACAGCCGTGCGCGGGTGTTGTTGACCGAGCAGGCGGTGGCGCAGACGCTGACGGTTCCGGCTGGCACCGAAGTGCTGATGCTGGACCGGATTGAGTTGAGCTCATATCCCTTCAACGCACCGGGCACAACGGTCACCCCAGACAACCTCGCCTACGTCATCTACACCTCCGGTTCCACCGGCAAACCCAAGGGCGTGGCCATCGCCCACCGCAACGTCTTGGCGCTGATCGACTGGTCCAGAACCGTCTACAGCCGCGACGACATCCAGGGCGTGCTTGCTTCCACCTCGGTGTGCTTCGACCTGTCGGTGTGGGAGCTGTTTGTCACCCTCGCCAACGGCGGCTCGCTGATCATCGCCCGCAACGCCCTGGAACTGCCGCACCTGCCGGCCCGCGATCAGGTGCGCCTGATCAACAGCGTGCCTTCGGCGATCGCCGCGTTGCAGCGCAGCGGCGAGATCCCGGACAGCGTGCGCATCATTAATCTGGCCGGTGAGCCGCTGAAGCAGAGTCTGGTGGATGCCCTCTACCCGACACCCCAAACCTGTGGGAGCGAGCTTGCTCGCGATAGCGGTGGGTCAGTCGATGAGGGGCTAACTGCCAGGACGCCATCGCGAGCAAGCTCGCTCCCACAGGTGGTGGGTGAACAGGTCGGTGGGGTTGAGCATGTTTATGATCTGTATGGCCCCTCGGAAGACACCACCTATTCCACCTGGACCCGCCGCACCGCCGGCGGCACGGCGAACATTGGTCGCCCGCTCAAGCACACCGCCAGTTACCTGCTCGACGCCAACCTGCAACCGGTGCCGCAAGGCGTCTCGGCGGAGCTGTACCTGAGCGGCGCGGGCATCACCCGGGGTTATCTCGGGCGCGCGGCGATGACCGCCGAAAAGTACGTGCCGAACCCGTTCTCGACCACCGGCGAACGCCTGTATCGCACCGGTGACCTGTGCCGCTATCGCGCCGATGGCGTGCTCGAATACCAGGGCCGACTCGACCATCAGGTGAAGATCCGCGGCTTCCGCATCGAGCTGGGGGAAATCGAGGCGCGGCTGTTGCAGCAAGCCGAGGTAAGCGACGTCGCCGTGCTGGCCCAGGAAGGGCCGGGCGGGCAGCAGTTGGTGGCTTACGTGGTTGCTTCGACCGACGCGAATACTCTGCGCGATCAACTCAAGGCCAATCTCAAGGCACACCTGCCCGACCACATGATCCCGGCCCACTGGCTGTTCCTCGATCACCTGCCACTGACCCCCAACGGCAAGCTCGACCGCAAGGCCTTGCCGAGCATCGAAACCGGGTCTTCGCAGGGCGGTTACGAGGCGCCGGCCAGCGAGCTGGAGCACCGGATCGCCGGTATCTGGCAAGAAGTGCTGGAAGTGCAACAGGTCGGGCGCAACGACCATTTCTTCGAGCGCGGCGGTCACTCCTTGCTGGCGACGCAGGCCATCTCCCGGTTGCGCAAGCTCACGCGTCATCCGCTGAGCCTGCGCGACTTGTTCGACCATCCGCAACTCAAGGCACTGGCGGCGCTGATGAGCGAGACCGGCGACGGCGCGGCGCGGGCCGGCGATTCCAGCCAGGTCCGACTCAAGGCCCATGGGCCACGGCAATCGGCACCGCTGTCGCTGGTGCAGCGACGGTTGTGGATCGCCGAGCAGCTGGCCGGCGGCACCTCCGCCTATGGCATGCCCATGGCGCTGCGGTTGTGCGGCGAGTTGTCCGTCGAGCGGCTGATGAGCAGCTTTGCCGAAGTGACACGCCGTCACGCCGTGCTGCGCACCGCGTATGTCCAGGATGACGAAGGCGATCCGCTGGCGCTGATCGCCGATGAGGTCCGGCTGGATTTCCCGCTGGTCGATCTGTCCGACCTGTCCCCCGGCACCCGGCAAGAGCAAGTGGCCCAGGCGATCCTGGACAATGCCAGTACCCCGATTGACCTGGAACAGGCGCCATTGCTGCGCGGGCGGATCCTGCGCCTGGGGCCGACCGAGCACGTGTTGTTGTACGCCATGCACCACATCATTTCCGATGGCTGGTCGATGGGGCTGTTGATCAATGAACTGGTGCAGATCTACGAAGCGTCCCTGCGCGGCGAGCCCATGCCGCTGGCGCCGCTGGAGGTCCAGTACCACGACTTCGCCTTGTGGCAGCAGGCGCTGGAAGACCAAGGCGTGCTGGCGCGCCAGGGCGATTATTGGAAGCAGCGGCTCGACGGTTACCACGGGCGTCTTGATTTGCCTTTGGACAATCCACGCGGCCAGACGGCCTCTTATGAGGGCGATGCGCTGCAGTTCGAGCTGCCTGCCGGGCTGAGCGCGGCGTTGCGCCGGGTGTCGAGCGCGGCCGGCGTCACGCTGTACAGCACGTTGCTGGCGTCGTTCCAGGTGTTGTTGCATCGCCTCTGCGACGCCCAGGATCTTGTCGTCGGCGCTGACGTGGCCGGGCGCGAACAACCCGAGCTGGAGCGCTTGATCGGCTTCTTCGTCAACGTCCTGCCGTTGCGTTCGCACTTTGCCGCCGATGTCGGCTTCAACCGGTTCCTGGCGCAGACCCAGGACCATCTGCTCGGCGCGCTGGAACATCAGGACCTGCCGTTCGACCAGATCGTCGAGGCCGCGGGCGTGCCGCGGCACAAGGGCATGAACCCATTGCTGCAGGTGTTGTTCGTGATGAACAACGTGCCGGTGCGCACGCGTTCCATGGCCGGCTTGAGCGTGGAGTTCCTGCCGGCGCTGCAGAACCATTCTAAATTCGACATGGCATTGTTCGTTGACGAAGAAGAAGGGCAATTGCGCGGTAATTGGCAATTCGCCACAAGCTTGTTCGGACAAGAGCGCATCCAGTACCTGATCCGGGCCTGGACGGCCCTGTTGGAACAGATCGTCGCTGATCAGGACATTCAATTGGGAGCTATCAGCATGCCAGTCGACAACGTGGCGACAGCCGCCACGCCTGCCAACGTCCCGGGGCCCAAGGCCGACAAACTGGGCAAGTTTCTCAAGCGTTCGGCGACCCCGGCCGCGCGGCCTCGTCCGGCGTTGGTGCGCGAATCGCTGGTGGCGACGCCCCAGCGTTTCCCGCTGATGCTGGAGCCCGGCGAGCCGCACCTGGACGTCATCGAGTGGATCCGCCAGAACCGGCCATTGATCGAGCAGAAGCTGGCCGAACACGCCGGCATCCTCTTCCGTGGCTTCGAACTGGACGGTATCCAGGGCTTCGAAGCGTTCGCCGAAGCGATCCAGCCGGGGCTGTACGGCCAGTACGGCGACCTGCCGAAGAAGGAAGGCGGCAAGAACACCTACCGGTCCACGCCGTACCCGGAACGCAAGATGATCCTGTTTCACAACGAGAGCTCCCACCAGGACCGCTGGCCGCGCAAGCAGATGTTCTATTGCGAGCAGGCCGCACCCGTGGGCGGCGCGACCCCGGTGGTGGATTGCCGCCTGATGTACGAAAAGCTGCCGACGGACCTTCGCGAGAAGTTCGAAGACAAGGGTTTGCTGTACGTGCGCACCTTCACCGACAAACTCGACGTGTCGTGGCAGCACTTCTTCAAGACCGAGGATCGCCTTGAAGTGGAGGCCCGCTGCCGGGCTGGCGGCATCCAGTGGCGCTGGCTCGATAACGATGAACTGCAGACCCGCACGCCGGGGCCGGCGATCATCACGCACCCGATCACCGGGGAAAAATCCTTCTTCAACCAGGTGCAGCTGCATCACATCCATTGGCTGGAGCCGGACGTGCGCCAGGACCTGTTGTCGATGTACGGCCTGGAGCGCATGCCCCGGCATGTGTACTACGGCGACGGCACGCCGATCGAAGACGAGGTGATGGCGCGTATCGGTGAGTTGTACGAAGCCTGCGCGGTGCGTTTCGACTGGCAGAAAGGTGACGTGATCCTGTTGGACAACATGCTCGTGGCCCACGCCCGCGACCCGTACGAGGGACCGCGCAAGATCGTCGTCGCCATGGGCGATATGTACGACCACGCCAGCCTGGAGCGTCCATCGGGCGCCGGGCGATCGGTCCGTGGCGCATTCAATACCGAGGAAAGCGGAGCATGAMDKSVALRVAKRFITLPLDKRRLYLEKMLEEGVSPANLPIPKVRSGFEQVPLSYAQERQWFLWQMDRHSSAYHIPSALRLKGQLDVPALERSFNAVVERHESLRTTFAEHGEQTEQIIHQHMPLSIAVEALPAGSTVSQDERIKAFVEGETARPFDLRQGPLLRVSLLKIAEDDHVLVLIQHHIIADGWSMQVLVDELVRHYAADIGGQPLALPDLPVQYADYAIWQRHWLEAGERERQLAYWVQTLGDEQPVLELPFDHPRPPVQSFRGARLDLTLSAELATALKQLAQREGASLFMVLLASFQALLHRYSGQPQIRVGVPTANRNRVETEGLIGFFVNTQVLSADVDGQLPFDQLLAQVKQSAMAAQAHQDLPFEQLIEALQPERSLSHSPIFQVMFNHQNADATRSRQMHLPQLRVEDLVWEGRTAQFDLTLGTYETEQGIAAELTYATDLFDAQTIERLAGHWQNLLHGIVDVPRQRIGELPLLDPAQQQLTQQQWLRVADHTDEAVCVHQRIAQQVRRNPEALALTIDDQALSYAQLDARANQLAHRLIDLGVMPGQLVGIAVERSVEMIVGLLAILKAGAAYVPLDPAYPEDRLAYMIEDSGIGLLLTQARLQARLPIPPSLRTLLLDQPDAALQAAPQTCPVVPLTGEHLAYVIYTSGSTGKPKGVMVRHGALSNFIHSMIAEPGLAPGDRMLSLTTFSFDIFGLEIYGPLSAGASVVLTGQNVHQDPQAVLALIEQHAVSVLQATPSSWRMLLDHEQASLLAGRTFLCGGEALPLELAQRLLALSPNVWNLYGPTETTIWSALHPLSLERDRPFLGKPLDNTALYIVGGDLTLNPPGAPGELLIGGAGLARGYFQRPALTAERFVPDPFSATGERLYRTGDLCRYRAEGVVEYLGRIDHQVKIRGLRIELGEIEAALLAQDRVRETVVVAHQGPTGAQLVAYVVPASGAVPEPDAPLRTALKAALKAQLPEYMVPAHLLFLAQLPLTPNGKIDRKALPAPEASDLQQAYVAPRSEVEQQVAAIWQDVLKLERVGLEDNFFELGGHSLLVTQVVSRVRRVLGIEVPLRSLFEHSTLQAFVAAFDTTTGEQAPAMTPVPRDAPLPLSFAQERQWFLWKMDPDGAAYNIPTALRMRGALDKDALRKSFAALVQRHESLRTAFVEEDGRTGQVICEQGEVDYIEERLEGRDIQAFLEQQTQRPFDLLNDALLRVALLEVAEEDHLLVLTLHHIVSDGWSLQVMVDDLMSLYSAFIQGQPAQLPPLAVQYADYAVWQRQWMAAGERDRQLAYWSAQLGGEQPLLELPTDHPRPAQQSLRGARLPIVLDRALSDDLKALARQENVTLFVLLLGSFQALLHRYSGQADIRVGVPIANRQRLETERLIGFFVNTQVLRSEFSGDLTGAALLQQLKQTAMAAQMHQDLPFEQLVDALQPQRNLSHSPLFQAMFNHRNETASVFAKALPGLDVEPVGWTQRTAQFDLSLDTVESPQGLYAALTYATDLFEPATIERMAGHWLNLLRSLVQDLHRPVAQWSLLDEDERRHMLIDWNATARQYPLDRSVQALIEEQVRRTPDAPALVFGGQRLSYRELNARANRLAHRLIDLGVGPDVLVGIAVERSVEMVLGLLAILKAGGAYVPLDPEYPQDRLAYMFEDSGIGLLLTQQHLLDALPIPQGLRSLVLDLPAEGSHASREENPDVKVHGENLAYVIYTSGSTGKPKGAGNRHCALVNRLCWMQQAYGLDATDSVLQKTPFSFDVSVWEFFWPLLTGSTLVVAAPGAHRDPAQLIELITAQRITTLHFVPSMLQAFVQDPRVAECTSLKRIVCSGEALPVDAQQQVFAKLPDASLYNLYGPTEAAIDVTHWTCVEEGRDSVPIGQPIANLGTYILDDELSPVPVGVIGELYLAGEGLARGYHRRAALTAERFVTAPFGAGQRLYRTGDLARYRADGVIEYAGRMDHQVKIRGLRIELGEIEARLAEHEAVRETVVLAQDGTLLVAYVVPARAELMVADDAVRQALQVRLREHLSQSLPDYMVPQHWVWLEKMPVSPNGKLERKALPKADPSASHKGYSAPVTAVENTLAAIWQSVLGRERVGRTDNFFELGGDSIISIQVVSRARQAGIHFSPKDLFLHQTIQGLAGVATTGDNGPVIDQGPVVGQTVLLPFQQLFFEQAMAEPHHWNQSVLLKSLRAVDAAHLEQALQALVEHHDALRLAFVCEAGTWTARHNTLAEQRTLWQRSPLLWTAEVADAPALERLAEQAQRSLDLQDGALLRGVLASLADGSQRLLLVIHHLVVDGVSWRVLLEDLQQAYEQLQAGQTPALPAKTTAAQTWAQRLQAHAGSATLQSQLKYWQEQLQGAGHDLPCDRPGGDLRRCYATQVQTRLDKDQTRRLLQQAPAAYRTQVNDLLLTALARVIGRWTSQASTLIQLEGHGREALFDDHIDLSRSVGWFTSLFPVRLSPTATTEGSIKVIKEQLRAIPDKGLGFGVLRYLGDEPTRRTLAALPVPRITFNYLGQFDSGFADDADGLFVPASESAGAAQSPLAPLDNWLTLNGSVYAGELSIDWTFSSQMFDEATIQALAEDYAGELQALIDHCCEPRHHGFTPSDFPLAELQQQQLDALPLVARDVEDIYPLSPMQQGMLFHTLYEQQAGHYINQMRVDVEGLDVERFRQAWQAATDAHDVLRSGFVWEGDFKRALQVVHKRVAVALQLHDARTQADLPEHLNTLATAQREQGFALDAAPLLRLVVVRVAQERYHLIYTSHHILMDGWSNSQLLGEVLQRYSGQPVAVSGSRYRDYIAWLQRQDAAASEAFWKPALQQLEAPTRLADAVAKPADMGSGYGDHIHVLDEASTRRLEAFARASKVTVNTLVQAAWLLLLQRYTGKTTVAFGATVAGRPADLPGIEQQIGLFINTLPVIASPRAEQTLDSWLQAVQAQNLALREFEHTALLDIQRWAGQGGDALFDNLLVFENYPIAQALEQGAPDGLRFGSPVTQEQTNYPLTLLVGLERQLSVHMSYQRASFAPDTVERLAAHLAQLLGQMSANGERCLGELSMLEFDEHQRLTHDWNPVDAPFEQDLRIHQLIARQAQSTPDALAVTFANTRLSYSELDGRANRLAHKLIELGVGPEVRVGVAMPRSEQLLIALLAVLKAGGAYVPLDPDYPAERVAYMIEDSRARVLLTEQAVAQTLTVPAGTEVLMLDRIELSSYPFNAPGTTVTPDNLAYVIYTSGSTGKPKGVAIAHRNVLALIDWSRTVYSRDDIQGVLASTSVCFDLSVWELFVTLANGGSLIIARNALELPHLPARDQVRLINSVPSAIAALQRSGEIPDSVRIINLAGEPLKQSLVDALYPTPQTCGSELARDSGGSVDEGLTARTPSRASSLPQVVGEQVGGVEHVYDLYGPSEDTTYSTWTRRTAGGTANIGRPLKHTASYLLDANLQPVPQGVSAELYLSGAGITRGYLGRAAMTAEKYVPNPFSTTGERLYRTGDLCRYRADGVLEYQGRLDHQVKIRGFRIELGEIEARLLQQAEVSDVAVLAQEGPGGQQLVAYVVASTDANTLRDQLKANLKAHLPDHMIPAHWLFLDHLPLTPNGKLDRKALPSIETGSSQGGYEAPASELEHRIAGIWQEVLEVQQVGRNDHFFERGGHSLLATQAISRLRKLTRHPLSLRDLFDHPQLKALAALMSETGDGAARAGDSSQVRLKAHGPRQSAPLSLVQRRLWIAEQLAGGTSAYGMPMALRLCGELSVERLMSSFAEVTRRHAVLRTAYVQDDEGDPLALIADEVRLDFPLVDLSDLSPGTRQEQVAQAILDNASTPIDLEQAPLLRGRILRLGPTEHVLLYAMHHIISDGWSMGLLINELVQIYEASLRGEPMPLAPLEVQYHDFALWQQALEDQGVLARQGDYWKQRLDGYHGRLDLPLDNPRGQTASYEGDALQFELPAGLSAALRRVSSAAGVTLYSTLLASFQVLLHRLCDAQDLVVGADVAGREQPELERLIGFFVNVLPLRSHFAADVGFNRFLAQTQDHLLGALEHQDLPFDQIVEAAGVPRHKGMNPLLQVLFVMNNVPVRTRSMAGLSVEFLPALQNHSKFDMALFVDEEEGQLRGNWQFATSLFGQERIQYLIRAWTALLEQIVADQDIQLGAISMPVDNVATAATPANVPGPKADKLGKFLKRSATPAARPRPALVRESLVATPQRFPLMLEPGEPHLDVIEWIRQNRPLIEQKLAEHAGILFRGFELDGIQGFEAFAEAIQPGLYGQYGDLPKKEGGKNTYRSTPYPERKMILFHNESSHQDRWPRKQMFYCEQAAPVGGATPVVDCRLMYEKLPTDLREKFEDKGLLYVRTFTDKLDVSWQHFFKTEDRLEVEARCRAGGIQWRWLDNDELQTRTPGPAIITHPITGEKSFFNQVQLHHIHWLEPDVRQDLLSMYGLERMPRHVYYGDGTPIEDEVMARIGELYEACAVRFDWQKGDVILLDNMLVAHARDPYEGPRKIVVAMGDMYDHASLERPSGAGRSVRGAFNTEESGANANANANANA
D1-35_021913192lgrD_1Linear gramicidin synthase subunit DATGAACGAGGTGACGATGGACACGCAGGAAGCGGGTTTCGCCCTGACGCCCGAACAGCAACGGGCACTTGAGCAACTGTCGGGCACGGTGACCTGTGGCGAGGCCTTGCGTTGGCTGAACGTGGTCATCGACGGTGATCTCGACCCGCAGCGATTGCAGGTCGCCTTCGACACGCTGGTGGCGCAGCAGCCGATGTTGCTGGCGCGACTGACCAAGGTCGGCGGTTTCCACGGTTTGCGTCAGGTGGCCCATGCGGGACGCTTCCCACTGACGATACAAGCCAGCGAACAACCGGCCGAGGAAGTCCGGGCGCAGATCAGCGAGACGCTCGGCCGGGCTTTTGTGCTCGGCGAATCGGCCAGTGTCCAGGCGGTGCTTTATCGTCTGGCGTCTCGGCAATGGCAACTGCTGCTGGGCGTCGCCCGCCACAGCGCGGATGCGCCGTCGATGAACCTGCTGCTTGAACAGCTACGGCAGGCTTACGCCGGCGATGTGGCGGAGGAAGAGGCGCCCGGCGAGTTTGCCCAGTACCTGGAGTGGCGCAGCGAAGTGGTGCTGGATGAAGATGCCGGCACTGCAAGAAATTACTGGCAGCAGCATTTGCACGGCCTGCAGACGGCGATCGACACGCCGTGGCTGGCTGCGCGTCGCACTGGTGGTGGAACAGCCGATGCGCAGATTTCGCTGATCTTCGAGCCGGCCCGACGCGACGCCTTGCAACGGTTGGCCGAGCAGCTCGGCCAACCGCTGGCGACGTTGCTGCAAGGCGCATGGTGGGTGCTGCTGGGACGCCTGGGTGGCCTTGAGCAAGCGCTGGTCGGCGTGCGCCACGACAGCCGTGGCGACTATGACTACTTCGCCAATGCCTTCGGCGTGTTCGAAAAGAACCTGCCGCTTTGTGTTCCATTGCCCGCCGACGCGCCGTTCGGCGAGTGGCTGGCGGAGCTGGCGACGCGGCTCGAAACTCATCGCACCTGGCAGGAATACTGGACGCCGGAACTGGCGTCGGAGGCGGCGTATCCGGCCTATGGCTTCGCGATTGCCCCGGCGAATTCTGTTCGCAGCAGCGCTGGCCTGACGTGGGCGACTGAGCCCTTGCCTGGACGGGATGCGTCCGAACTGTTGCTGCAGATTCAACTGGACGACACCCAACAACTGGTTGCGGTCGACCTCTGCTATGCCCGCTCGGGTTATTCGCAAGCCGCGGTTCGCAGCGTGCTCGAACAATACGAGGTGCTGCTGGCCTCGATCCTCGCGGCTGCGCACACGCCACTGGCGCAGCTCAACTTGCTCGGCGACACCGAGGAGCAGCGTTTGCGGGCGATCAACCCGGCGATGCAGGCATTGGAGGATAACCGCTACCTGCCGCAGCGCATCGCCGAGCTGGCGCTGCAGACGCCGGACGCCATCGCCCTGAGCGAGGCTGGTCAATCGCTGAGCTACGGTCAACTGAAAGATCAGGTCGAGCGCGTCGCCCAGGGCCTCCTGGACCAAGGCCTGGGCGAAGGGTCGATTGTCGCCCTGGCCTTGCCGCGCTCGGCGGAACTGGTGACCGCGATGCTGGCGAGCTGGCGCATCGGCGCGGCTTATCTGCCGCTGGATATCCAGTGGCCCCAGGCCCGTCAGGCGTTGATGCTGGAGCAGGCCGGCGCCGCTGTGTTGCTCACCGATGCAACGCATTTTCCTGCCTGGCAGGCGCAGCCTTTCAAGGCGCTGGCAATCGCCGAGCTTGATCGTCCTTCAAGCACGCCGTTGCCGGCCCTCACGACCAAGGGCAATGACATTGCCTATGTGTTGTTCACCTCAGGCTCCACCGGCGTGCCCAAGGGCGTGGTGATCGAGCATCGGCAATTGCTCAACTACACCGCCCAGGCCAGCCAGGCGTTGGGGCTGAGCCAGTGCAAACACGTCGCTTTGAGCTCTACCGTGGCGGCGGACCTGGGCAATACGGCGCTGTTTGGCGCGTTGTTCAATGGCGCGACCTTGCATGTGGCCAGTGATGAACAGATGCAGGACGGCGCGCTCTTTGCCGGGCTCCTGCGAGAACAACAGATCGACTGCCTGAAAATCGTGCCGTCGCACCTCGCGGCGTTGCTCGACAGTGAGCAGGCGACGCTGCCGCATATCCTGGTACTTGGCGGCGAGCCGATTGCGCCAACGCTGGTCGAGCGTATCGCCCGGTTGCGCAGCGATTGCCGGGTGTTCAACCACTATGGGCCGACCGAAGCCACGGTCGGAGTGATGATCCATCGGTTGGCGCTGGACGGTGCTGCCGATGATTGTTCGGCGCTGACCCAGGTGCTGGGCAATAACCAGGTCTACGTGCTGGACGCTGACAGGCGCCTGGCGCCGGTGGGTGTGCTGGGCGAGGTGTACCTGGGTGGTGCGCAGTTGTGCCGGGGTTACGTGAATGCCAAGGCGGACGAGCAGACGTTCATCCCGAGCCCGTTCGACCCGGCGCAGCGCCTGTACCGCACTGGCGACCTGGCGCGTTATCGCCCGGACGGTGGGATCCAGTTGCACGGTCGCCGCGATCAACAGGTCAAGGTGCGCGGGTTCCGCATCGAACTGGCGGAAATCGAGGCCGAGCTACTACGTGTACCGCAGGTGGCCGAAGCGCTGGTATTGCCCGGCGAGCAGGGCTTGTTGGCATTTGTCGTGCCCCGGCAAGGCCTGTCTTCGGGCGTGCTCGACGCCGTGCGCGCCGAACTGAGCGCGCGCCTGCCCGGCGTGATGGTGCCGCAGCAGCTGCAACTGATCGAACGTTTCCCTCGGCTGGCCAACGGCAAGATCGATCGCAAGGCGCTGCAGCAGTTGGCGGTCGCGATCAGCGATGAGGAGGATGCCGCGCCCCGCGATGCGCTGGAGCAGCTGCTGGCCGCGCGCATGGCTCAATTGCTTGGGCTTGAACGATTGGGCATCGAGCGCGACTTCTTCGCCGCCGGCGGCCATTCGCTGCTGGTGATCAAGCTGGTGGCCGGCATTCGCAAGTTGTTGCAGTGCGACATCCATCCTGGGCTGGTCTTCGATCATCCGACCGTGGCGTCCCTGGCCATGGCCTTGCGAGCGGTGGAGGGCAGTCCGGGGCAACTGGAAAAAATCGCTCAGGTGCGTTTGCGCATGGAAGCGCTGAGTCCCGAGGAAAAGGCCCGGCTGACCGAGCAGGCTCGGCAACTGCAAGCGGCCAAGTGAMNEVTMDTQEAGFALTPEQQRALEQLSGTVTCGEALRWLNVVIDGDLDPQRLQVAFDTLVAQQPMLLARLTKVGGFHGLRQVAHAGRFPLTIQASEQPAEEVRAQISETLGRAFVLGESASVQAVLYRLASRQWQLLLGVARHSADAPSMNLLLEQLRQAYAGDVAEEEAPGEFAQYLEWRSEVVLDEDAGTARNYWQQHLHGLQTAIDTPWLAARRTGGGTADAQISLIFEPARRDALQRLAEQLGQPLATLLQGAWWVLLGRLGGLEQALVGVRHDSRGDYDYFANAFGVFEKNLPLCVPLPADAPFGEWLAELATRLETHRTWQEYWTPELASEAAYPAYGFAIAPANSVRSSAGLTWATEPLPGRDASELLLQIQLDDTQQLVAVDLCYARSGYSQAAVRSVLEQYEVLLASILAAAHTPLAQLNLLGDTEEQRLRAINPAMQALEDNRYLPQRIAELALQTPDAIALSEAGQSLSYGQLKDQVERVAQGLLDQGLGEGSIVALALPRSAELVTAMLASWRIGAAYLPLDIQWPQARQALMLEQAGAAVLLTDATHFPAWQAQPFKALAIAELDRPSSTPLPALTTKGNDIAYVLFTSGSTGVPKGVVIEHRQLLNYTAQASQALGLSQCKHVALSSTVAADLGNTALFGALFNGATLHVASDEQMQDGALFAGLLREQQIDCLKIVPSHLAALLDSEQATLPHILVLGGEPIAPTLVERIARLRSDCRVFNHYGPTEATVGVMIHRLALDGAADDCSALTQVLGNNQVYVLDADRRLAPVGVLGEVYLGGAQLCRGYVNAKADEQTFIPSPFDPAQRLYRTGDLARYRPDGGIQLHGRRDQQVKVRGFRIELAEIEAELLRVPQVAEALVLPGEQGLLAFVVPRQGLSSGVLDAVRAELSARLPGVMVPQQLQLIERFPRLANGKIDRKALQQLAVAISDEEDAAPRDALEQLLAARMAQLLGLERLGIERDFFAAGGHSLLVIKLVAGIRKLLQCDIHPGLVFDHPTVASLAMALRAVEGSPGQLEKIAQVRLRMEALSPEEKARLTEQARQLQAAKNANANANANA
D1-35_021922463fpvACOG4773Ferripyoverdine receptorATGTCGGCAATTCATGAGTTGAAACCGCTGTTCAAGGCATTGGTCATGTCCCGCGGCCTGCGTTCGCGCCGGGTGTTGACGGGCCTGGGTCTGGTCTGCGTGTTGCCATTGAGCACCCAGGTGATGGCTGAAAACGTCAGCATCAACATCCCTGCGCAACCGCTGCCGCAGGCATTAAAAGCGTTCGGCGAGCAGACCAACCAACAAGTGATCTATAACGCCGACGAACTGGCCGGCCTGAAAAGTAATCGCGTCAGCGGCAAGATGAGCCCGCAAGCGGCCATCGCCGAATTGCTCAAGGGCACCGGCGTGCGCCACAGCCTCGAGGGCAATACCCTGATGCTGGTAAAGGGCTCCGGCGCAGGCCTGGAATTGGGCGCGACCACCATCAACGCGAAGCAGCCGGAGGCCACCACCGAAGGCAGCAACTCGTACACCAGTAATGCGGTGACCATCGGCAAGGGCACTCATACCCTGAAGGAGATTCCGCAATCGATCACGGTGATGACGCGCAAGCAGATGGATGACCAGAACCTGGTCAGCCTCAAGGACGCCGTCAACCAGACCACCGGCGTCGTCGGCCTGCAGGGCGTTGGTCAGGGCATGATCCTCTCGTCGCGCGGTTTCCAGATTGACGACTGGCAGTACGACGGTGTGCCGATCCCGCGTAACACCTACTCGCTGGGCAACTGGGCGACCCAGGACCTGATCTTCTTCGACCGCCTGGAAATTCTCCGTGGCGCATCCGGCCTGCTGCAAGGCACCGGCAGCCCGGGTGGCGCCGTCAACCTGGTGCGCAAGCGTGGCCAGAGCGCCCCGACCGTGACCCTGACCGGCAAGGCCGGCTCCTGGGACCACTACGGCCTGCAACTGGACGCCGGCGGCCCGCTGAACGAGGCCGGCAACATCCGCGGCCGTATCGTCGCCGATGAAGACCAGAGCAATTCCTTCGTCGATCATGCCTGGAACAAGACCCACTCGCTCTACGGCTCGCTGGACATCGACCTGAGCGAAGACACCACCCTGGGCTTCGCGGCCAGCCAATCCAACGGCGAGTCGCGTGGCAACATCCGCGGCCTGCCACGCTACGCCGATGGCTCGATGCCGGACGTGTCGCGCTCGACCTACACCGGCGCGCGCTGGAACCGTTCCGATATCGACGTCACCACGCTGTACGCCGACCTGGAGCATCGCTTCAACGAGGATTGGGCGTTCAAGGTCGGTGCAGTGCAGATGACCGAAGACAACCAGGCAAAAAACCAGCGCACGCAAAGTCCTGGCGGCCTGCTACCGGATGGCAGCCGTGTGCAATATGCCGACTTCGTGACTGACTTCCAGTCCACCAAAGTGGGTCTGGACATGAACCTGGTCGGCAAGTTCGAAGCCCTGTCGATGGAGCAGGAGGTCATGCTCGGCGGCAACTACTCCCAGCTGGAGACGGACGACAAATACGCCCGGACCTTCAACAGCAGCACCGACGATATCTTCGACCTCGACAACAACCGTCCGGACATCAGCTATGAGGGTCTGATCAACAGCCCGGGTGGCATGGGCACACTGAGCAAATATGACATTCGCCAGAAAGGTATATACGGTACCTGGCGCGTCAAGCCGGTGGACGACCTGACGCTGATCCTCGGCTCCCGGGTCAGCTGGTATGACTTCAGCTACAAGTCGAAAACGGAACGGGCAACCGGTATTACCCGCAACGCGCCAAGTACCGCGACTGAAACCGGGGTGGTCACGCCCTACGCCGGTATCGTCTATGACCTGAGCCGTGAGTGGGCGGTGTACGCCAGCTACACCGACGTGTTCCAGCCGCAGACCAACGTTGATCCGAACGGTTCGGTACTCAAGCCCATCGTCGGTACCAACTACGAAATCGGCCTCAAGGGTGAGTTGATGGACGGGCGGGTCAACACCTCCCTGGCGGTCTTTCGCTACGACCATGAGAACCGTGCCGTCAACATCCCCAGCTGTACCGGGTTGAACTGCTCCGAAGCCGCGGGGAAAGTCCGCAGCCAGGGCATCGAGGCCGAGATCAGCGGTGAAGTGGTAGACAACTTGCAGCTGTTCGCGGGCTACACCTACAACACCACCAAGTACCTGGAAGACCCGACCAACGAAGGCAGTGTCTTCAGTACCTGGACGCCGAAACACATGCTGCGGGTGTGGGGCAACTATCAGTTCACCGGTGACTGGAACCGTGTCAATGCGGGCCTGGGCTTCACCACCCAAAGCCATACGCAGGTCTTCGACCTCAACTATGACGTTCCGGGTTATACCGTGTGGAATGCCCGTGTCGGCTATCAGTTGACGCCGGAGATCGGGTTGGCGGTCAATGCCAACAACCTGTTCGACAAGACGTATATAACGCCGGCTTACAACCAGATCAACGGTAACAACAACTTCGGCGATCCGAGGAATCTGATGTTTACCGTGAAGTACACGCCGCAGTTTTGAMSAIHELKPLFKALVMSRGLRSRRVLTGLGLVCVLPLSTQVMAENVSINIPAQPLPQALKAFGEQTNQQVIYNADELAGLKSNRVSGKMSPQAAIAELLKGTGVRHSLEGNTLMLVKGSGAGLELGATTINAKQPEATTEGSNSYTSNAVTIGKGTHTLKEIPQSITVMTRKQMDDQNLVSLKDAVNQTTGVVGLQGVGQGMILSSRGFQIDDWQYDGVPIPRNTYSLGNWATQDLIFFDRLEILRGASGLLQGTGSPGGAVNLVRKRGQSAPTVTLTGKAGSWDHYGLQLDAGGPLNEAGNIRGRIVADEDQSNSFVDHAWNKTHSLYGSLDIDLSEDTTLGFAASQSNGESRGNIRGLPRYADGSMPDVSRSTYTGARWNRSDIDVTTLYADLEHRFNEDWAFKVGAVQMTEDNQAKNQRTQSPGGLLPDGSRVQYADFVTDFQSTKVGLDMNLVGKFEALSMEQEVMLGGNYSQLETDDKYARTFNSSTDDIFDLDNNRPDISYEGLINSPGGMGTLSKYDIRQKGIYGTWRVKPVDDLTLILGSRVSWYDFSYKSKTERATGITRNAPSTATETGVVTPYAGIVYDLSREWAVYASYTDVFQPQTNVDPNGSVLKPIVGTNYEIGLKGELMDGRVNTSLAVFRYDHENRAVNIPSCTGLNCSEAAGKVRSQGIEAEISGEVVDNLQLFAGYTYNTTKYLEDPTNEGSVFSTWTPKHMLRVWGNYQFTGDWNRVNAGLGFTTQSHTQVFDLNYDVPGYTVWNARVGYQLTPEIGLAVNANNLFDKTYITPAYNQINGNNNFGDPRNLMFTVKYTPQFPGPT0003775_246DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-IRON_COMPLEX_RECEPTOR,PGPT0003775-fptA|fhuE|fpvA|C_FEV_OM1|fauA-K16088NANA
D1-35_021934122dhbFCOG1020Dimodular nonribosomal peptide synthaseATGAACGAATTGCTAGATGATGATCTGCTGGCGCTGCTGCTCGATGACGCCGCCGACGATCTGCACGCGCGGTCCAACCGCAGCCGGCTGGACCGCGCGCCCTTGTCTTTCGCCCAGCAACGCTTGTGGCTGGAACAACAGCGCGACCCGACCCGGTCGGCCTACAACCTGCCACGTGCCCTGCGCCTGACGGGCGAGCTGAATGCCGATGCCCTGGAGCAAGCGCTGAATCGGGTCATCGACCGGCACGATATCCTCCGCACCGCGTTCATCGAAATCGACGGCGCCGCGACCCAGGTGGTTGAGCGCAACGCCTGCCTGGTCCTGCATCGCGAAGACCTCGCCGGGCTCGACCAGCCGACGCTTTCGCAGCGCATCGAGCAACACGCCCGGCGACCGTTCGATCTCACCCAGGCGCCGCTGATGCGGGCCACCCTGCTCAGGCTGAGCCCTGCGGAACATGTGCTGTTGCTGAATATGCATCACATCGTGTCCGATGCCTGGTCCAACACGATCCTCATGCAGGACATGACCCAGGCCTATGCCCAGGGCTTGCTGGGCGATCCGTCACCGCTGCCGCCGTTGCCCCTGCAATACGCCGACTACGCGAAGTGGCAACGCGGCGAGTACTTGCAGAGCCTGGCCTGCCGGCGCGGCGGCGAATACTGGAGCGAGTACCTGGGCCACGACCTGCCCACACTGGAACTGCCACAGGATTTTGCGCGCACCGCGAGCCAGACACACATGGCCGGCCGTGTGCAGGTGGCGCTGGCCCCGGCGATGGTCCATGCGCTCGACACGTTCTGCCAACGCCAGGGGCTGACGCCGTTCGTGGTAGCACTGGGTGCCTGGCAATTGCTGCTGGCCCGCTACAGCCGCCAGACCGACTTCACCGTCGGCGTTCCCAACGCCAACCGCAACAACCATGAAAGCCAGGACCTGGTAGGTTTTTTTGTCAGCAGCCAGGTGTACCGGGCGCGGATCGACTCGACCCGCAGCGCGCTGGATTTTCTCCGCGATCTGCGCGTGCAGTCCCTCGCCGCGCTGGAGCATGCCGATTACCCGCTGGAATTGATCCTCGATCAATTGGGCGCCAACCCGCTGTTTCAGGTCCTGTTCAACTGGCGCACCGGATCACAGGCGGCGTCGCTGCCAAGTCCGCATCAATTCATGCTGGAGTTTCTCGACACCGGCGAAAACCAGGCCAAGTTCGACGTGTCGCTGGATGTCGACTATTCACAACAGCAGACCGTGGCGACCTTCGAATACAGCCGTGACCTGTACCGCACACAAACCATCGAGCGCATGGCCGAGCATTGGCAGAACCTGCTGCGCGGCCTGATCGAAACGCCCGGCTGCGCCCTCGGCGAGCTACCGTTGTTGAGCGCCGATGAACAGCGGCTGACCCTGAACGACTGGAACCGTCGGCCGACCCGGTTGCGCCAGGAAGAGTGCCTGCACCAGGTGATCGAAACCCACGCCGCCAACACCGCAGAGGCGATAGCGCTGACGTTCGAAGGGCAGCACATAAGCTATGCCGAGCTCAATCGACACGCCAACCAATTGGCCCATCGTTTGATCGAACAAGGCGTCGGGCCCGACGTACTGGTCGGCATCGCCGTCGAACGCACGCCACGGATGATCATCGGCCTGCTGGCGATTCTCAAGGCCGGCGGCGCCTACGTACCACTGGACCCGGCCTACCCGGCCGATCGCCTGGCCTACATGATCGAGGACAGCGGCGTCAGGCAGATCCTGACCGAGGCCCACCTGCTTGATTCGCTGGCGCTGCCCGCCGGCGTCGACTGCCTGTTGCTGGATCCGGTCGATGCCGTCAGCACCTATCCCGAACACAATCCGCACGTGCCGATGGATCCGGACAACCTGGCCTATGTGATCTACACCTCCGGTTCCACCGGCAAACCCAAAGGCGCACTGCTCGCGCACCACAACGTCAGCCGATTGTTCCAGGCCACCGACCATTGGTTCGGTTTCGGCCAGCAGGACGTGTGGTGCCTGTTTCACTCCTACGCCTTCGATTTTTCCGTGTGGGAGATCTTCGGTGCCCTGCTGCACGGCGGTCGACTGGTCATCGTGCCCCACGCCGTGAGCCGGGCGCCCGAGGATTTCTACGCCCTCGTCTGCCAGGAAAAGGTCACGGTGCTCAACCAGACCCCATCGGCATTCAAGTCATTGCTGCAGGTGGCCTGCGAGGCTCAACAGACGCTCGTCCACCGGTTGCGACAAGTGATTTTCGGCGGTGAAGCGATTGATGTGCAGAGCCTGCGCCCCTGGTTCGAACGTTTCGGCGACCAGACACCACAATTGATCAACATGTACGGCATCACCGAAACCACGGTGCATGTCACCTGGAGGCCGCTGTCGTTGCAGGATTTGCATGGCGAGGCCGCCAGCCCCATCGGCGAGCCCATTGTCGATCTGTCCTGGTATTTGCTCGATGCGCACCTGAACCCGGTGCCCAAGGGTTGCATCGGCGAGCTGTACGTCGGTCGCGCGGGCCTGGCCCGCGGTTACCATCAGCGCGCCGTCCTGACCGCCAGCCGTTTCATTCCGGACCCGTTCGACCCACTGCCGGGCGGACGCCTGTACCGCACCGGGGACCTGGCCCGCTACCTCAGCGACGGCAGCATCGAATACATCGGACGCCTCGATCATCAGGTCAAGATCCGCGGCTTCCGCATCGAGTTGGGCGAGATCCAGGCGCGCCTGCAAATGCTCTCGGCGGTCCGCGATTGCGTGGTGTTGGCCCATGTAGGCCCAGGCGGCCTGCAATTGATCGCGTACGTCATCCCGACGCAACCGGCCTCGGCCGAGTTGCGCGAAGGCCTGCTGACTGCGCTGAAAACGCAGATGCCGGACTACATGGTGCCCAGCCATCTGTTATTCCTCGATCACCTGCCGCTCAATGCCAACGGCAAGCTCGATCGCAAGGCCTTGCCGGAACCGGACGCCGCCCTCCGGCATTCGACCTACGTGGCGCCCCGCACGCAGTTGGAACAGGCCCTGGTGCAACTCTGGCAACAGTCGCTGAAGGTCGAGCGCGTGGGTATCAGCGACAGTTTTTTTGAGCTGGGTGGGCATTCGATCCTGGCGATCGAGCTCATCGCCAACCTCAAGGCACGCCTGAACCACACGGTGCGCCTGCAAGAACTGCTGGCCAACCCGAGCATCGCCGAACTGGCCCGGTTCATTTCGCAAAAACACCGCGAGCAGACGCAGTGCCTCGTCGCCCTGAACAACGCGCCCGCCAGCGCACCGCAGCTGTTCTGCCTGCACCCCAGCGGGGGCATCGTCTTCTGCTACCAGCCACTGGCGCGCAAACTGCAAAATCGCGCACTCACCTTCGGCGTCATGCACCGCGGCTTCAGCGAACCCCATGCGGGCGCCGAGGCCTGGCACCAGATGATTGCCGACTACAGCCAGGAAATCGTCTCGGCTCAGCCAGAGGGTCCGTATTACCTGATGGGATGGTCCCTGGGCGGGGCGATTGCCCTGGACATCGCGGCAACCCTGGAAAGCCAGGGTCATACGGTGGGTTTCCTGGGGCTGGTGGACAGCACGATTCCCGAGCACCTGTATCCCGCGACGTTGCCGCGTCATCGGGAACTGCTTGCGGAGGAAAAAACCGACCCGACCTCGCAGGATCTGCATGAGGCAATCGAGTATTTCGATCTGCTGTTCCCTGCTCTTACGGAACGCACCGCGGCCTTTCGACGGGAACACCCTGACAGCTCGGTCAAGGCCTTCCACGAGTGGGCCGCCGGCCAGATCGAGCCTGAGCGAGGCGACTTGCTGTCGGTCGTGCAGAGCGTCAAGGAAGAGGTCATGAATGCCCAGGCGTTCTCGGTGCATGACCGGTTGCTGGAGGCCTTTGAAGGGTTCACTTTCAAGCCGGTACGGGTACGTCCCAGCTGCTGGTGGACCGAGGCGGAGAAAACACCGCAAGAGCTGGCGTTTTGCGAGGCGTTGGTCAGGGAACATAGCTTGACTGGCGAGTTGCAGTGCTCGGTGCATTCTCCGTTGCGCCATCGGGGCATGATCTTTGATGAGGGGTTGCTTGATTCGTTGGTTGAGGTGTTTTTGGGGGGCTTGGCGGGGTAGMNELLDDDLLALLLDDAADDLHARSNRSRLDRAPLSFAQQRLWLEQQRDPTRSAYNLPRALRLTGELNADALEQALNRVIDRHDILRTAFIEIDGAATQVVERNACLVLHREDLAGLDQPTLSQRIEQHARRPFDLTQAPLMRATLLRLSPAEHVLLLNMHHIVSDAWSNTILMQDMTQAYAQGLLGDPSPLPPLPLQYADYAKWQRGEYLQSLACRRGGEYWSEYLGHDLPTLELPQDFARTASQTHMAGRVQVALAPAMVHALDTFCQRQGLTPFVVALGAWQLLLARYSRQTDFTVGVPNANRNNHESQDLVGFFVSSQVYRARIDSTRSALDFLRDLRVQSLAALEHADYPLELILDQLGANPLFQVLFNWRTGSQAASLPSPHQFMLEFLDTGENQAKFDVSLDVDYSQQQTVATFEYSRDLYRTQTIERMAEHWQNLLRGLIETPGCALGELPLLSADEQRLTLNDWNRRPTRLRQEECLHQVIETHAANTAEAIALTFEGQHISYAELNRHANQLAHRLIEQGVGPDVLVGIAVERTPRMIIGLLAILKAGGAYVPLDPAYPADRLAYMIEDSGVRQILTEAHLLDSLALPAGVDCLLLDPVDAVSTYPEHNPHVPMDPDNLAYVIYTSGSTGKPKGALLAHHNVSRLFQATDHWFGFGQQDVWCLFHSYAFDFSVWEIFGALLHGGRLVIVPHAVSRAPEDFYALVCQEKVTVLNQTPSAFKSLLQVACEAQQTLVHRLRQVIFGGEAIDVQSLRPWFERFGDQTPQLINMYGITETTVHVTWRPLSLQDLHGEAASPIGEPIVDLSWYLLDAHLNPVPKGCIGELYVGRAGLARGYHQRAVLTASRFIPDPFDPLPGGRLYRTGDLARYLSDGSIEYIGRLDHQVKIRGFRIELGEIQARLQMLSAVRDCVVLAHVGPGGLQLIAYVIPTQPASAELREGLLTALKTQMPDYMVPSHLLFLDHLPLNANGKLDRKALPEPDAALRHSTYVAPRTQLEQALVQLWQQSLKVERVGISDSFFELGGHSILAIELIANLKARLNHTVRLQELLANPSIAELARFISQKHREQTQCLVALNNAPASAPQLFCLHPSGGIVFCYQPLARKLQNRALTFGVMHRGFSEPHAGAEAWHQMIADYSQEIVSAQPEGPYYLMGWSLGGAIALDIAATLESQGHTVGFLGLVDSTIPEHLYPATLPRHRELLAEEKTDPTSQDLHEAIEYFDLLFPALTERTAAFRREHPDSSVKAFHEWAAGQIEPERGDLLSVVQSVKEEVMNAQAFSVHDRLLEAFEGFTFKPVRVRPSCWWTEAEKTPQELAFCEALVREHSLTGELQCSVHSPLRHRGMIFDEGLLDSLVEVFLGGLAGPGPT0003165_29DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-BACILLIBACTIN_METABOLISM,PGPT0003165-dhbF-K04780NANA
D1-35_021941659yojI_1COG4615ABC transporter ATP-binding/permease protein YojIATGAGCCAACCACAACGCGGGGTGATCAGTGAACTGTTCAGCCTGCTCAAACCCTTCCGGCTGATTGTCGTAGGCTCCATCCTCTTGGGCATGCTCGGTGGCCTGAGCATCACCGCCCTGCTGGCGACCATCAACGACGCGCTGAACGCCGATGCCGGGCCCTCGCCACACATGCTCGGCACCTTCGCCGGGCTTTGCGCGGCGGCGCTGCTGACCTCGATCCTGTCGGACATCGGCACCAACCATGTCGGCCAGAACATCATCGCCAGCCTGCGCAAATCCCTCGGCCAGAAAGTCCTGTTGGCACCGATCGAACAGATCGAGCGTTTTCGCAGTCATCGGCTCATCCCGATACTGACCCACGACGTCAACATGGTCAGCAACTTCGCTTTCTCCTTTGCGCCATTGGCCATTGCCTTCACCGTCACCCTCGGCTGCCTGGCCTACCTGGCCTACCTGTCATTGCCGATGTTTGCGCTGCTGCTGGTGGCATTGGTGATCGGCACGGTCATCCAGTACGTGGCGCGAGCCCGTGGCATTCGCGGTTTCGAAGCGGCCCGCGAGGCTGAAGACGCCCTGCAAAAGCACTACAGCGCGATCGCCGCCGGCGCCAAGGAACTGCGTATCCATCGGCCTCGTCGCCAACGCATGTTCAGCCAGCGCATCGAAGCCACCGCCGAGCAGATCTGCGATACCAACATCCGCTCGGTCAACACCTTCGTGGTCGCCAAGACCTTCGGCTCGATGCTGTTCTTTGTGGTCATCGGCCTGGTCCTGGCCCTGCAATCGCTGTGGCTGGGCATCGACAAGGCGGTGCTCAGCGGTTTTGTGCTGGTGCTGTTGTATATGAAAGGGCCGCTGGAATACCTGGTGATGACCTTGCCGGTGATCAGCCGCGCCAACATTGCATTCAAACGCATTGCGGAGTTGGCCGAGCAGTTCTCCTCGCCGGAGCCACACCTGCTGCTCAATGATAAGAGCGTGCCCAAGCCGACGATCCAACAGCTTGAATTGCGTGACGTGCACTACGCCTTCCCGGCGGTCGACGGCAGCCAGGCCTTCGCCCTCGGACCGGTCAACCTGTCCATCGCCCAAGGCGAGATCGTATTCATCGTCGGCGAGAACGGCGGGGGCAAGACCACGCTGATCAAATTGCTGCTGGGCCTCTATGCGCCCCAGGGCGGTGAAATTCTGCTCGATGGCAAGCCGGTGCTGGCTGCGCAGCGTGACGATTATCGCCAGTTGTTCACCACGATTTTTGCCGACTACTACCTGTTCGATGAACTGGTGCAAGGCGACCAGCAAGTGCCGGGGACCGCCAATCGCTACCTGGAGCGCCTGGAGATTGCCCACAAGGTCAGCATTCACGACGGTGTCTTCAGCACCACCGATCTCTCCACCGGCCAACGCAAGCGCCTGGCCCTGCTCAACGCCTGGCTGGAAGAACGCCCGGTGCTGGTCTTCGACGAATGGGCCGCCGACCAGGACCCGGTGTTCCGGCGGATCTTCTACACCGAGCTGCTGCCGGAGCTGAAGGCCCTGGGCAAGACCATCATCGTCATTTCCCACGACGACCGTTACTTCGACATCGCCGATCAGCTGGTGCGGATGCAGGCCGGTCAGGTCGTCACTGAAAAGGTCCCGGCAGCCTTCGCCTGAMSQPQRGVISELFSLLKPFRLIVVGSILLGMLGGLSITALLATINDALNADAGPSPHMLGTFAGLCAAALLTSILSDIGTNHVGQNIIASLRKSLGQKVLLAPIEQIERFRSHRLIPILTHDVNMVSNFAFSFAPLAIAFTVTLGCLAYLAYLSLPMFALLLVALVIGTVIQYVARARGIRGFEAAREAEDALQKHYSAIAAGAKELRIHRPRRQRMFSQRIEATAEQICDTNIRSVNTFVVAKTFGSMLFFVVIGLVLALQSLWLGIDKAVLSGFVLVLLYMKGPLEYLVMTLPVISRANIAFKRIAELAEQFSSPEPHLLLNDKSVPKPTIQQLELRDVHYAFPAVDGSQAFALGPVNLSIAQGEIVFIVGENGGGKTTLIKLLLGLYAPQGGEILLDGKPVLAAQRDDYRQLFTTIFADYYLFDELVQGDQQVPGTANRYLERLEIAHKVSIHDGVFSTTDLSTGQRKRLALLNAWLEERPVLVFDEWAADQDPVFRRIFYTELLPELKALGKTIIVISHDDRYFDIADQLVRMQAGQVVTEKVPAAFAPGPT0003400_236DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-PYOVERDIN_TRANSPORT,PGPT0003400-pvdE-K06160NANA
D1-35_02195876egtBHercynine oxygenaseATGAACCGATTTTTATTGAAGACGCTTCCGGCATTGGCCCTCACCGCCCTGCTGCCCTCCCATGCCCAGGCCTCGCAACCGGGCCAGGTATTTCGCGACTGCAAGGACTGCCCGGAAATGGTCGTGCTGCCCACCGGCACCTTCCAGATGGGCGCGCCGGACAACGAGGTCGGCCGCGAGCCCGACGAAGGCCCGATGCACCCGGTGACGTTCGACAAACCGGTGGCCATCAGCCGCTTCCAGGTGCTCAAAGGCGAGTGGTTCGCCTACCTGCGCGACAGCGGCTACGTGATGCCTGACGGCGACAAGCGCCCCGGCCGCGCGTGCCAGGCCGGCGTCCCGGATTACCAGGGTAGCGATCCGCGCAAGCAATACACCGACCGGCACCCGGCGGTGTGCATGGATTTCGCCGAGGCCAGCGCCTACGTGGCGTGGCTGTCGAAAAAAACCGGCAAGCCGTATCGGTTGGTCAGCGAGTCCCTGCGCGAATACGCAGCGCGCGGCGGCAGCGATGGCCCGTTTCCCTTCCCGTTCGATGAAGGCAAGGACTACAGCATCGCCCAGCACGCCAATACCTACGGCGCCGCCGACGGCTACAACTTCACCGCGCCGGCCGGCAGCTTCGCGCCCAATGCCTTCGGCGTGTACGACATGCACGGCAACGTCTACGAATGGACCGCCGATTGCTTCAACGAAAACTACCTCAATGCTCCAGGCGACGGCAGCGCCGCACTGACAGGCAACTGCAAAGTACGGCGCATCCGTGGCAACGACTGGGGCGAAGCACCGGTGTTCTCCCGTTCGGGCAACCGCAACGCGGTGTTTTCCGATGCCCGCGGTGATTGGCTGGGGTTCCGGGTCGCCCGGGATATGTAGMNRFLLKTLPALALTALLPSHAQASQPGQVFRDCKDCPEMVVLPTGTFQMGAPDNEVGREPDEGPMHPVTFDKPVAISRFQVLKGEWFAYLRDSGYVMPDGDKRPGRACQAGVPDYQGSDPRKQYTDRHPAVCMDFAEASAYVAWLSKKTGKPYRLVSESLREYAARGGSDGPFPFPFDEGKDYSIAQHANTYGAADGYNFTAPAGSFAPNAFGVYDMHGNVYEWTADCFNENYLNAPGDGSAALTGNCKVRRIRGNDWGEAPVFSRSGNRNAVFSDARGDWLGFRVARDMNANANANANA
D1-35_021961281cefD_2COG0520Isopenicillin N epimeraseATGAACGAGCGCCGTACCTTTCTCAAGCAAGCCGGGATCCTGACGGCCGGCCTGCCGTTTGCCGCCAGCCTGCCGTCCATCGCCGCTGCAGATCCATTGTCGCCGCTGCCCCGAGACAAATGGGCGCAACTGCGCTCGTTGTTCAACCAGGACCCGGACTACCTGCATTTCTCCAACTTCCTCATCACCACTCACCCGCGTCCGGTGCGCGAGGCCATCGAACGCCACCGCGCCGCCCTCGATAAAAACCCGGGATTGTTGATGGACTGGGACCTGGGCGTCATCGAAGAGCGCGAGGAAAACGTGCGGACCTGGGCCGGGCGCTACCTGCAAGCGACACCGAAACAGATCGCCCTGACCGGCAGCACCACCGAAGGCCTGGCGATGATTTATGGCGGCGTCCATGTACGGCCCGAACAGGAAATCCTCACCACCGCCCATGAACACTATGCCACCCACACCATCCTCGACTTGCGCAAGCAACGGGACGGCACCCGGGTGCGCAAGATCAAGCTGTTCGAAAACGCCCGCGACGCCAGCGAGGCGCAAATCCTCGCGGCCATCGACCGCAACATCCGCCCCGAGACCCGCGTACTGGGCATGACCTGGGTGCACTCGGGCAGCGGCGTGAAGCTGCCGATCGGCAAGATCGGCGCCCTGGTGGACAAGCACAACCAGGGCCGCGGCGATGAGCAGCGGATCGTGTATGTGGTGGACGGCGTGCACGGTTTCGGTGTCGAGGACCTGAATTTCCCGCAGATGAATTGCGACTTCTTCATCGCCGGCACCCACAAATGGATGTTCGGCCCCCGGGGCACCGGCGTGGTGTGCAGCCGCAGCGAAGAAGTCAGGTACGTCACGCCGATCATCCCGACCTTCTCCGAGGCGACGGCGTTTTCCACCACAATGACCCCGGGCGGCTACCACGCCTTTGAGCATCGCTGGGCGGCGGACGAGGCCTTCAAGCTGCATCTGCAATTGGGCAAGGCCGAGGTGCAGGCGCGCATTCACGCGCTGAACAGCTACCTGAAAAAACAATTGCTGGCGCTGCCGCAGATCGAGCTGGTCACGCCGCTGAGCCCGGAGCTGTCGGCCGGTTTCAGCTTCTTCCGGGTCAAGAATCGTAAAAGCGATGAGATCGCTGCCTACCTGATGCAAAACCGCGTCATCGCCGACGCCGTGCACCGCGATGCCGGGCCGGTGATCCGCACCGCGCCGGGGCTGCTCAACACCGAAGTCGAAATCGACCGCTTCATGGCGCTGTTGAGCAAAACACTCTGAMNERRTFLKQAGILTAGLPFAASLPSIAAADPLSPLPRDKWAQLRSLFNQDPDYLHFSNFLITTHPRPVREAIERHRAALDKNPGLLMDWDLGVIEEREENVRTWAGRYLQATPKQIALTGSTTEGLAMIYGGVHVRPEQEILTTAHEHYATHTILDLRKQRDGTRVRKIKLFENARDASEAQILAAIDRNIRPETRVLGMTWVHSGSGVKLPIGKIGALVDKHNQGRGDEQRIVYVVDGVHGFGVEDLNFPQMNCDFFIAGTHKWMFGPRGTGVVCSRSEEVRYVTPIIPTFSEATAFSTTMTPGGYHAFEHRWAADEAFKLHLQLGKAEVQARIHALNSYLKKQLLALPQIELVTPLSPELSAGFSFFRVKNRKSDEIAAYLMQNRVIADAVHRDAGPVIRTAPGLLNTEVEIDRFMALLSKTLPGPT0010995_52DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-PENICILLIN_METABOLISM,PGPT0010995-cefD-K04127NANA
D1-35_021971371hypothetical proteinATGACCACACCACGTTCGAAAAAGGCTCTTTTCACCGGCGTATCCCTGGCCCTGGCGCTGGTCGTCGGTGGTGGGCTCGCGGCCTGGGACCATTGGTGGCGGGACAATCCCGGCTACCCGGTGAAGGTGATGAAAGAAGCCCGGGAGTTGCACGAGCGCCTGTTGTCCTTCGACAGTCACATCACCGTGCCGCTGGATTTCGGCACCGCCGGCAATGAAGCGGACAAGGACGGCAACGGCCAGTTCGACCTGGTAAAAGCCAATCGCGGTCACCTCTCCGGCGCCGCGCTGACCATATTCGGCTGGCCCGAACTGTGGAACGGCCCCAACGCGCCGCACAAGCCCACCGCCGGCTTCGTCGAGGAAGCGCGCAACCAGCAGGAAGTGCGCTACAAGATCATCACCGGCATGGTCCGGGATTTCCCCAACCAGGTCGCCATCGCCTACACCCCCGACGACTTCCGTCGCCTGCACGGCGAAGGCAAGTTCGCGATTTTCATCAGCATGCTCAACGCCTATCCCCTCGGCCACGACCTGAGCCTGCTGGACCTGTGGACGGCGCGGGGCATGCGCATGTTCGGCTTCAGCTACATCGGCAACAACGACTGGGCCGATTCTTCGCGACCGCTGCCGTTTTTCAACGATTCGCCCGACGCCCTTGGCGGCCTCTCGGACATTGGCAAGCAAGCGGTGAAACGCCTGAACGACCTCGGCGTGATCATTGACGTATCGCAAATGTCGACCCTGGCCCTGGAGCAAGTCGCACAACTGAGCCGCACCCCATTGGTAGCTTCTCACTCGGCGCCACGGGCCATGGTGGACATCCCGCGCAACCTCAGCGACAAGGAAATGCAGTTGATCAAGGCCAGCGGCGGCGTGGTGCAGATTGTCGGTTTCTCCCAGTACCTGCGACCGCTGACGCAAAAGACCCAGGACAAACTCAACGACCTGCGCGAGCGCTTCGACCTGCCGCCGCTGCCCAACCTGGCGATGGCGCTGATGCCCGGCGATCCGATCATCGCCGCGTGGCCGGAACAGCGATTCGGCGAATACGCCGGCCAGCTCTACGCCATTCTCGAAGAGGAACCCAAGGCCAGCCTCAAGGACCTGGGCGATGCCATCGACTACGCCGTGCGCAAGATCGGTATCGACCATGTCGGCATCAGCTCGGACTTCAACGAAGGCGGCGGCGTTAAAGGCTGGGAAGACGTCGGCGACATCCGCAACGTGACCGCCGAACTGCTGACGCGCGGCTACTCCGAAGCCGACATCGCCAAGCTTTGGGGCGGCAACTTCCTGCGCGTCTGGGACCAGGTGCAGAAAGCCGCCCAGCCAGCGATTGCCGCGACGCAGAAGGCGGCCCAGCGATGAMTTPRSKKALFTGVSLALALVVGGGLAAWDHWWRDNPGYPVKVMKEARELHERLLSFDSHITVPLDFGTAGNEADKDGNGQFDLVKANRGHLSGAALTIFGWPELWNGPNAPHKPTAGFVEEARNQQEVRYKIITGMVRDFPNQVAIAYTPDDFRRLHGEGKFAIFISMLNAYPLGHDLSLLDLWTARGMRMFGFSYIGNNDWADSSRPLPFFNDSPDALGGLSDIGKQAVKRLNDLGVIIDVSQMSTLALEQVAQLSRTPLVASHSAPRAMVDIPRNLSDKEMQLIKASGGVVQIVGFSQYLRPLTQKTQDKLNDLRERFDLPPLPNLAMALMPGDPIIAAWPEQRFGEYAGQLYAILEEEPKASLKDLGDAIDYAVRKIGIDHVGISSDFNEGGGVKGWEDVGDIRNVTAELLTRGYSEADIAKLWGGNFLRVWDQVQKAAQPAIAATQKAAQRPGPT0020950_405DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020950-acdP-K01273NANA
D1-35_021981617hypothetical proteinATGACGATTTCTCGACGATGGTTCATGGCAGGCCTGGCGCTGACCGGTGCCGCCGTGCCTGCGGTGTATTACGGGCACCGTGAACTGACCCGGCCGGACCCCACCATCACTCCCGGCGAGGCGTCGTTCGATGTGGCGGATGTGGCGGGCCAGCGCCGGGCCAACACGCTGCGGGGTATCTGGACGATCCGTTTCACCGGTCGCGATGCCGGTCTCGACGGTATGCCCGGCGACGGCCTGCAAGTGTTTCTCGACATCGCCCACAAGGGCCGTGGCCTAGTGGGCTGCCTGGACACCGGCGAACGCCTGCGTGCCGGGGACGAACCGCGTTATCGGGTCTTGGGCGACCTGGCCGGCAGCGACCCGAAGCAGTTGAGTTGGCGACTGATCGGCAGCGAACATGCCGCGCCGGATTACGAGTTCATCATGACCGTTGACGAAGTCTGGGCCGGTTTCGGCAATGCCGGCACCGCCACCCTCAGTGGCCGGGTGTTGCGCCTGGACCGCCCGCTGGCACAGCCGGAACTCGACAACCAGTTCATCGCCGTCAAGCAGCGCTTTCCCGAAGCCAGGGAGCGCATACCGCTGAGCCCGAAGCTCCTGGCCTGGCTGGTCTCGCCCGAGCACCGTCTGTTTCACCAGCTCTGGCACGCCTCGCGGGACAAATGGCACACCCTCGACGAAGACAAACGCAACGCCCTGCGCGGCCTTGGCTGGCAGCCCGGGCCGCGAGACAACGAGCGTGACGCCCGTGGGCCGCGCAAGGATCGCAACGGCTCGGGGGTGGATTTCTTTTTCATGCATCGGCACATGCTCGGCACGGCGCGTTCGTTCCAGCCGTTACCGTCGTGGCCGCGTTTCCCCTTGCCGCAACCGGAGCTGGAACGCGATCGCCTAGGCTTTGCCCGGTATTTCGATAACCTCGACGGCACGGCACTGCCGCCGACATGGCTGGCCCGTGGCGACGAGCAGTACGCCCAATGGGTCAGCGACATCAAGACCGCCGAGACCTACCACAGCAATTTCCAGGTCTGGGAGTCGCGCTATCGCGATCCGCGCTACCTGTCGAAGCTGACCTTGGGCCAGTTCGGTTCCGAGGTGGAACTGGGCCTGCATGACTGGCTGCACATGCGCTGGGCCTCGGTGCCCAGGGACCCGTCCAACGGTCATCCGGTGCCGTTCGCCCGTGATCAGGCGGACTTCGCCCAGCGCTGGTTCGAACCGGAGAACGATTTTCTGGGCGATCCGTTTTCCTCTCACGTGAGCCCGGTATTCTGGGCCTTCCACGGCTGGATCGACGATCGCCTCGAAGACTGGTTCCGCGCCCACGAGCGTTTCCATCCGGGCGAAGTCAGCCGGCTGCAAGTCAACGGCGTGCCCTGGTTCGCCCCGGGCCGCTGGGTGGAAATCGCCGACCCCTGGCTGGGCCCGGACACCCATGGTTGCAGTACCACGCCGGGGCTGCAGGTCGGCCGCTCGGTGGAAATGGACCCGGAAACCATGAAACTGGCGCTGCGCATCACCTTTGGCAGTGATGACGACAAACTCTCCAGACTGTTGCGCCGCGTGCCGCAACGGCCGTGGTACGCGCGTAATCTGAAGTCCAAGCCGGTTTGAMTISRRWFMAGLALTGAAVPAVYYGHRELTRPDPTITPGEASFDVADVAGQRRANTLRGIWTIRFTGRDAGLDGMPGDGLQVFLDIAHKGRGLVGCLDTGERLRAGDEPRYRVLGDLAGSDPKQLSWRLIGSEHAAPDYEFIMTVDEVWAGFGNAGTATLSGRVLRLDRPLAQPELDNQFIAVKQRFPEARERIPLSPKLLAWLVSPEHRLFHQLWHASRDKWHTLDEDKRNALRGLGWQPGPRDNERDARGPRKDRNGSGVDFFFMHRHMLGTARSFQPLPSWPRFPLPQPELERDRLGFARYFDNLDGTALPPTWLARGDEQYAQWVSDIKTAETYHSNFQVWESRYRDPRYLSKLTLGQFGSEVELGLHDWLHMRWASVPRDPSNGHPVPFARDQADFAQRWFEPENDFLGDPFSSHVSPVFWAFHGWIDDRLEDWFRAHERFHPGEVSRLQVNGVPWFAPGRWVEIADPWLGPDTHGCSTTPGLQVGRSVEMDPETMKLALRITFGSDDDKLSRLLRRVPQRPWYARNLKSKPVNANANANANA
D1-35_02199249hypothetical proteinATGTTCAAGCACACCCCCAATCCCCCCGAAGAATCCCCCAGCCCGTTATTCACCGTCGCACCAGACGCCGACATCGAATGCCTGCTCGCCAACCTCAGCGAAACCCTCGCCTCGGCGAACGCGATGGCCAGCGACCTTGCCTTCGCCCTGGAAGGCTCGCGACGGCATTTGGCGTTGGGGATCCAGCAGATGATCGAGCTCGGTGAGCTCCTGGCAAACCGCGCCCTGGACATTGCCGCGCCGCGCTAGMFKHTPNPPEESPSPLFTVAPDADIECLLANLSETLASANAMASDLAFALEGSRRHLALGIQQMIELGELLANRALDIAAPRNANANANANA
D1-35_02201234hypothetical proteinATGGGGCTGCTTCGCAACCCAGCGGGGATAAATCCCCTCGCCACACAGGAATCTCTGTTCGCCAATAATAGTGTTCGGCTTTGGTTCTGTTTATCCGGCCATGTAAGCCGTCCGAGCGAGGCTACGTTGCCTTGCGTCATTGCCTACAACTACGCCAGAATCCGCCGACTTGTGCGCTTGGCTCGTGGCTTTTACTGTTTCCGGGTCGCTGATTGCAGTGATCGGGTTTGGTAGMGLLRNPAGINPLATQESLFANNSVRLWFCLSGHVSRPSEATLPCVIAYNYARIRRLVRLARGFYCFRVADCSDRVWNANANANANA
D1-35_022021395ttgF_1Toluene efflux pump outer membrane protein TtgFATGAAAGCGCACCTGACCCTCCTGGCCGCCAGCCTGCTGCTGGCGGCCTGCGGCACACCTTTGTCGACACCCGACAGCGGCATCGAGCCGCCGCAAGCCTGGCAAACTGTCGATACGCCCAATGCGCGTGTCGATAACCAACAATGGTGGAAGCAGTTCGGCAGCCGGCAACTCGATCGTTTGATCGAACAGGCGCGCCAAGGCAGCTTCGACCTCGCGGCCGCCATGGCCCGGGTTCGCCAGGCCCAGGCCAGCGCGGTGATCGCCGGCGCGCCGTTGCTGCCGGAAATCCGCGCCGGGCTCAACGGCAATCGCCAGGAGCTGCTGCGGGGCAAGGGCTATAGCCAGTTGGACGTGGATCGGAACAACCGCACCATCGACTACTACGATGCCCACCTCAGCGCCAGTTATGAAGTGGATTTCTGGGGCGGCAAGCGGGCTACCCGGGACAGTGCGCTGAGCGCGTTGTCGGCCAGCCGGTTTGACCGGGCGACCGTGGAATTGACCTTGCTCAGCGCTGTCGCCAACAGCTACACCCAGGCCTTGTCGCTGCGCGAACAACAGCGCATCGCCGAACTTAACCTGGCCAACGCGCAAAACGTGCTCGACCTGGTGCAGACCCGCTACGACGCCGGCAGCGCCACGGCGCTGGAACTGTCCCAGCAAAAAAGCCTGGTGGCGACGCAGCGGCGCCGATTGCCCCAGGTGCAACAACAGGCGCGCGAGGCGTTGATCACCCTGGCGGCGTTGCTGGGCCAGCCGGTGCAAGCGCTCAAGCTCGACGATGAAACCTTCGACGCCTTGCACTGGCCCGCCATCGACGCGGGCGTACCCAGTGACCTGCTGCGCCGTCGCCCCGACATCGCCGCCGCCGAAGCACGCCTCGCCGCCGCCCAGGCCGACATCAGCGTGGCCCGCGCCGCCCTGCTGCCCTCGGTCACCCTGGGCCTGAGCCTGGCCACCGGCGCCGACATTGCCGACCAGTTGCTGCGCAACAACGTCTACAACCTCAGCGCCGGCCTGGCCGCGCCAATCTTCAACAACGGACGCTTGCGGGCCGAACGGGACAGGGCCACCGCGCGCCAGGAAGAACTGCTGGAAACCTACCGCGCCGCGATCGTCAACGGTTTCGCCGACGTCGAGAAAGCCCTGAACGGCATCCAGGGTCTGGACCAGCAGCGACAATGGCAGAGCGAAGAGCTGCACCAGGCGCAAACCGCCTTCGACATCGCCCAAAGCCGCTACCAGGCCGGCGCAGAAGACTTGCTCACCGTACTCGAAACCCAACGCACGCTGTACGCCGCCCAGGACATGAACGTGCAATTGCGCCTGGCACGGGTGCAGGCGAGCGTGGCGTTGTACAAGGCGCTGGGTGGGGGTTGGCGGGTGATGTAGMKAHLTLLAASLLLAACGTPLSTPDSGIEPPQAWQTVDTPNARVDNQQWWKQFGSRQLDRLIEQARQGSFDLAAAMARVRQAQASAVIAGAPLLPEIRAGLNGNRQELLRGKGYSQLDVDRNNRTIDYYDAHLSASYEVDFWGGKRATRDSALSALSASRFDRATVELTLLSAVANSYTQALSLREQQRIAELNLANAQNVLDLVQTRYDAGSATALELSQQKSLVATQRRRLPQVQQQAREALITLAALLGQPVQALKLDDETFDALHWPAIDAGVPSDLLRRRPDIAAAEARLAAAQADISVARAALLPSVTLGLSLATGADIADQLLRNNVYNLSAGLAAPIFNNGRLRAERDRATARQEELLETYRAAIVNGFADVEKALNGIQGLDQQRQWQSEELHQAQTAFDIAQSRYQAGAEDLLTVLETQRTLYAAQDMNVQLRLARVQASVALYKALGGGWRVMPGPT0009810_2792DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexXY-OprM,PGPT0009810-toxI|oprM|oprM|emhC|ttgC|cusC|adeK|smeF|mtrE|cmeC|gesC-K18139NANA
D1-35_022031971macB_1COG0577Macrolide export ATP-binding/permease protein MacBATGAGTACGCCCCTGATCGAACTGCGGGACATTCGCAAGGCCTACGGCGGTGGCGACAGCCCACGGGTGGAAGTGCTGCGGGGTATCGACCTGTCGATTCACGCTGGGGAGTTTTTGGCGATCGTCGGGGCGTCCGGCTCCGGCAAATCGACGCTGATGAACATCCTCGGCTGCCTCGACCGTCCCACCAGCGGCGAGTACCGCTTTGCCGGTGAGAACGTCGCCCGACTGGGCAGCGACGAACTGGCCTGGCTACGCCGGGAGGCGTTCGGGTTCGTGTTCCAGGGCTACCACCTGATCCCGTCCGGCACGGCCCAGGAAAACGTCGAGATGCCGGCCATCTATGCCGGCACCTCGGCCGCCGAGCGTCATGCCCGGGCCAGCGCCCTGCTCGAACGCCTGGGCCTGGCGAGCCGCACCGGCAATCGTCCCCACCAGCTGTCCGGCGGGCAGCAACAGCGAGTGTCGATTGCCCGGGCCTTGATGAACGGCGGCCACATCATCCTCGCCGACGAACCCACCGGCGCCCTCGACAGTCAGAGCGGCATTGAAGTCATGGCGCTGCTCGACGAACTGGCGAGCCAGGGCCACGTAGTGATCCTGATCACCCACGACCGCGAAGTGGCGGCCCGGGCCAAACGCATCATCGAAATCCGCGATGGGCTGATCATCAGCGACAGCGCCACCACCACAGCCAGCGCACCACAAGCCAACCCCAAGGCGTTGCAGGCGGTGGATCTGCGCCAGCGCCTGAGCGCCGGCAGCGAGCACAACGGCGCCTGGAAAGGCGAACTGGTGGACGCCGTCCAGGCCGCTTGGCGAGTGATGTGGATCAACCGTTTTCGCACCGCCCTGACCTTGCTCGGCATCGTCATCGGCGTGGCCTCAGTGGTGGTAATGCTGGCGGTGGGCGAAGGCAGCAAGCGCCAGGTCATGGCCCAGATGGGCGCCTTCGGCTCTAACATCATCTACCTAAACGGCACCGCGCCCAACCCGCGCGCCGCCAAGGGCATCATCAGCGAACAGGACATCGCCGCCCTCGCCGCCCTGCCCGAAGTGCAGCGCTTCATGCCGGTCAACGGCAACAACGCCAACGTGCGTTTCGGCAACCTCGACCACACCAGCTACGTGGGCGGCAACGACACGAATTTCCCGACCATCTTCAACTGGCCGGTGGCCCAGGGCAGCTACTTCAGTGACACCGATGAGCGCAGCGCGGCGGCGGTGGCGGTGATCGGCCACAAGGTCCGGCAGAAGCTGCTCAAGGACGTCGCCGATCCCATCGGCCGCTACATCCTGATCGAAAACGTGCCATTCCAGGTGGTCGGCGTACTCGCCGAAAAAGGCGCCAGCTCGGGGGATTCGGACGCCGACAACCGCATCGCCGTGCCCTACTCCGCCGCCAGCGTGCGTCTGTTTGGCAGCCGTCATCCTGAATACGTGGTGATCGCCGCTCGCGACGCGGCCAAGGTCAAGGAGGCCGAGCAGGCCGTTTCCCGTACCTTGCTGCGACTGCACAACGGCAAGCAGGATTTCGAGCTGACCAACAACGCCGCGATGATCCAAGCCGAGGCCCGCACCCAGGGCACGCTGTCGTTGATGCTCGGGGCCATTGCGGCAATCTCGCTGCTGGTGGGCGGCATCGGCGTGATGAACATCATGCTCATGACAGTGCGCGAGCGGACCCGGGAAATCGGCATCCGCATGGCCACCGGTGCCCGCCAGCGCGACATCCTGCGCCAGTTCCTGACCGAAGCGGTGATGCTCTCGGTGGTCGGTGGATTGGCCGGCATCGGCCTGGCCCTGCTGGTGGGCGGCGCGTTGCTGCTGGGCAAAATCGCCGTGGCGTTCGAATGGCTGGCGGTGTTCGGCGCCTTCGGTTGTGCGCTGGTCACCGGCGTCGTCTTCGGTTTCATGCCGGCCCGCAAGGCCGCTCGCCTCGACCCGGTCGCGGCCCTTACCAGTGAATGAMSTPLIELRDIRKAYGGGDSPRVEVLRGIDLSIHAGEFLAIVGASGSGKSTLMNILGCLDRPTSGEYRFAGENVARLGSDELAWLRREAFGFVFQGYHLIPSGTAQENVEMPAIYAGTSAAERHARASALLERLGLASRTGNRPHQLSGGQQQRVSIARALMNGGHIILADEPTGALDSQSGIEVMALLDELASQGHVVILITHDREVAARAKRIIEIRDGLIISDSATTTASAPQANPKALQAVDLRQRLSAGSEHNGAWKGELVDAVQAAWRVMWINRFRTALTLLGIVIGVASVVVMLAVGEGSKRQVMAQMGAFGSNIIYLNGTAPNPRAAKGIISEQDIAALAALPEVQRFMPVNGNNANVRFGNLDHTSYVGGNDTNFPTIFNWPVAQGSYFSDTDERSAAAVAVIGHKVRQKLLKDVADPIGRYILIENVPFQVVGVLAEKGASSGDSDADNRIAVPYSAASVRLFGSRHPEYVVIAARDAAKVKEAEQAVSRTLLRLHNGKQDFELTNNAAMIQAEARTQGTLSLMLGAIAAISLLVGGIGVMNIMLMTVRERTREIGIRMATGARQRDILRQFLTEAVMLSVVGGLAGIGLALLVGGALLLGKIAVAFEWLAVFGAFGCALVTGVVFGFMPARKAARLDPVAALTSEPGPT0027920_359DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-MACROLIDE_RESISTANCE,PGPT0027920-macB|ybjZ|pvdT-K05685NANA
D1-35_022041149macACOG0845Macrolide export protein MacAATGAAACGTCCCCGCCTCACCCGCCCCGCCTGGCTCCTGACTTTCGCCCTGTTACCGGCCGTGGCCTTCGCCGCCTGGCAAGCGGTTACGCCGGACCACGGCCCCGTCGCCACCGCGGCCGTCACCCGCGGCGATATCGAAAACAGCGTCACCGCCCTCGGCACATTGCAACCGCGGCGTTATGTAGACGTCGGCGCCCAGGCCTCCGGGCAGATCCAGAGGATCCATGTCGAGGCCGGCGACGAGGTTCGCGAAGGTCAGTTGCTGGTGGAAATCGACCCGTCCACGCAGAAAGCCCGGCTCGACGCCGGACGTTTTTCCATCGAAAACCTCAAGGCCCAACTCCAGGAACAACGCGCCCAGCACGACCTGGCGCAACAGAAATTCCGCCGTCAACAACAGCTCAAGGCCGGCGGAGCTACTCGCGAAGAGGATGTGCAGACGGCGCAGGCCGAGGTGCGGGCGACCCAGGCGCGCATCGACATGTTCCAGGCGCAGATCCGCCAGGCCCAGGCCAATCTGCGCAGCGATGAGGCCGAATTGGGCTATACCCGGATCTACGCGCCGATGAACGGCACCGTGGTTGCCGTCGGAGCACGAGAAGGCCAGACCCTCAACGCCCAGCAGCAAACCCCGCTAATCCTGCGCATCGCCCGGCTGTCACCGATGACGGTCTGGGCCGAAGTCTCGGAAGCCGACATCGGCCACGTCAAGCCGGGCATGACCGCCTACTTCACCACCCTGGCCGGCGGCAACCGGCGCTGGAGCAGCACCGTGCGACAGATCCTGCCGGTGCCGCCGCGTCCGCTGGAAGCCAGCCAGGGCGGCAGCCCCTCCGGCGGCCGCAGCGGCAGCGAACGGGTGGTGCTCTACACCGTGCTGCTGGACGTGGACAACGCCGACCGCGCCCTGATGACCGACATGACCGCCCAGGTATTTTTCGTCGCTGCCCAGGCCAAGGACGTGTTGACCGTGCCCATCGCCGCGTTGCAGGACGCAAGCCAGGTGCGGGTGCTGGCCGACAATGGCGACATCCAGCCAAGGACCGTTCGCACCGGCGTCAGCGACCGCTTGCGCACGCAGATCCTCGACGGCCTGAGCGAAGGCGATCGCGTGCTGATCGGCCCGGCCAGCGGCAGCGGAGGCTGAMKRPRLTRPAWLLTFALLPAVAFAAWQAVTPDHGPVATAAVTRGDIENSVTALGTLQPRRYVDVGAQASGQIQRIHVEAGDEVREGQLLVEIDPSTQKARLDAGRFSIENLKAQLQEQRAQHDLAQQKFRRQQQLKAGGATREEDVQTAQAEVRATQARIDMFQAQIRQAQANLRSDEAELGYTRIYAPMNGTVVAVGAREGQTLNAQQQTPLILRIARLSPMTVWAEVSEADIGHVKPGMTAYFTTLAGGNRRWSSTVRQILPVPPRPLEASQGGSPSGGRSGSERVVLYTVLLDVDNADRALMTDMTAQVFFVAAQAKDVLTVPIAALQDASQVRVLADNGDIQPRTVRTGVSDRLRTQILDGLSEGDRVLIGPASGSGGPGPT0027919_912DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-MACROLIDE_RESISTANCE,PGPT0027919-macA|pvdR-K13888NANA
D1-35_02205480fecI_3COG1595putative RNA polymerase sigma factor FecITTGGAAAACTACTATCGCGAACTGGTGTGTTTCCTCAACGCCAGGCTAGGCAACCGCCAGGCGGCCGAAGATGTGGTGCATGACGCCTACGTGCGGGTGCTGGAGCGCGCCAGCGATACCCCCATCGAGCAGCCCCGGGCGTTCCTTTATCGCACCGCGCTGAACCTGGTGATCGACGGGCATCGGCGCAATACCCTGCGCCAGGTCGAATCCCTTGATGTGCTCGACAGCGAAGAACGGTTCTTCACCCCATCGCCCCATACCAGCCTGGACCACGGCCAGCGCCTGGACATGCTGCAACGGGCCCTGGCCGAGTTGCCGCCGCTGTGCCGCGAGAGTTTCCTGCTGCGCAAGCTCGAAGGCCTGTCTCACTCGCAGATCGCCGGGCGCCTGGGTATTTCCAGGGCGCTGGTGGAGAAACACATCGTCAATGCCATGAAGCATTGTCGTATTCGCGTACGGCAGTGGGACGCGTCCTGAMENYYRELVCFLNARLGNRQAAEDVVHDAYVRVLERASDTPIEQPRAFLYRTALNLVIDGHRRNTLRQVESLDVLDSEERFFTPSPHTSLDHGQRLDMLQRALAELPPLCRESFLLRKLEGLSHSQIAGRLGISRALVEKHIVNAMKHCRIRVRQWDASNANANANANA
D1-35_022061335pvdACOG3486L-ornithine N(5)-monooxygenaseATGACACAGGCAATTGCAGCGCCCACCGTTCACGATTTGATCGGCATCGGCTTCGGCCCTTCGAACCTGGCGCTGGCCATCGCGCTTCAGGAACGTGGCCCGGTCCAGGGCGAACTGGATGTGTTGTTCCTCGACAAACAGGCTGACTACCGCTGGCATGGCAATACCCTGGTGACCCAGAGCGAATTGCAGATTTCCTTCCTCAAGGATCTGGTGACCCTGCGCAACCCGACCAGCCCGTACTCGTTCGTCAATTACCTCAAGCACCATGGCCGCCTGGTGGATTTCATCAACCTCGGCACCTTCTACCCGTGTCGCATGGAGTACAACGACTACCTGCGCTGGGTGGCGGCGCAGTTCGCCGGCCAGAGCCGCTACGGCGAAGAGGTGCTGCGCATCGAGCCGGTGCTGCACAACCAGCAGGTTGAAGCACTGCGGGTGATTTCCCGCAACGGACGGGGCGAGGAGTGTGTGCGCACCACGCGTTCGGTGGTGGTCAGCGCTGGCGGCACGCCGCGCATTCCCGAGGCGTTCAAGGGGTTCAGGGAAGATGCGCGGGTGTTCCATCACTCGCAGTATCTGGAGCGCATGGCAACCCAACCGTGCGTGAGCGGCCAGCCAATGAAAATCGCGATCATCGGCGGCGGCCAGAGCGCAGCCGAAGCCTTCATCGACCTCAACGACAGCTTCCCATCGGCACAGGTCGACATGATCCTGCGCGGCTCGGCCCTCAAGCCGGCCGACGACAGCCCGTTCGTCAACGAAGTGTTTTCGCCGGAGTTCACCGACCTGGTGTTCCAGCAACCCCACAGCGAGCGCGAGCGGCTGGTCAATGAATACCACAACACCAATTATTCGGTGGTGGACATCGATCTCATCGAACGCATCTACGGGATTTTCTATCGCCAGAAAGTCTCGGGCATCGCCCGCCATGCGTTCCGTACCCTGACCACGATCGAAAAAGCCACGGCCACGGAGAATGGCGTGGAGTTGGCCATGCGCAACAACGCCACCGGCGAGCTGACAAACCGGCGCTATGACGCGGTGGTGCTCGCCACCGGCTACGAGCGCCAGATGCACCGCACCTTGCTCGAGCCGCTGGCGCAATACCTCGGCGATTTCGAGGTGGATCGCAACTACAAACTGATCACCGATGAGCGCTGCAAGGCCGCCATCTACATGCAGGGCTTTTGTCAGGCCAGCCATGGTTTGAGCGACACCTTGCTGTCGATCCTGCCGGTGCGCGCCGACGAAATCGCCGGCTCGCTCTATGAGCACGGCAAGGAACGCGGCCTGGGCCAATCGGTACGGGAACAGTTGCTGGCCACGGCATAAMTQAIAAPTVHDLIGIGFGPSNLALAIALQERGPVQGELDVLFLDKQADYRWHGNTLVTQSELQISFLKDLVTLRNPTSPYSFVNYLKHHGRLVDFINLGTFYPCRMEYNDYLRWVAAQFAGQSRYGEEVLRIEPVLHNQQVEALRVISRNGRGEECVRTTRSVVVSAGGTPRIPEAFKGFREDARVFHHSQYLERMATQPCVSGQPMKIAIIGGGQSAAEAFIDLNDSFPSAQVDMILRGSALKPADDSPFVNEVFSPEFTDLVFQQPHSERERLVNEYHNTNYSVVDIDLIERIYGIFYRQKVSGIARHAFRTLTTIEKATATENGVELAMRNNATGELTNRRYDAVVLATGYERQMHRTLLEPLAQYLGDFEVDRNYKLITDERCKAAIYMQGFCQASHGLSDTLLSILPVRADEIAGSLYEHGKERGLGQSVREQLLATAPGPT0003390_373DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-PYOVERDIN_BIOSYNTHESIS,PGPT0003390-pvdA-K10531NANA
D1-35_022073645bvgS_3Virulence sensor protein BvgSATGATTGTGTTTTCACGCATGAGCCTGGCGGCGTTGTCGCTGGGTTTATTGAGCATGGCACCGCAGGTCGTCGCTGCGCCCGAGTTACTGCAGGTGCTTGGGCGTTCCACCGTGAGCGGTTATTCGGTGTCGCTGGACGCAGCCGACCGGGCCTGGCTGCGCGACAAGGGCTCGTTGCTGCTGGGCGCCTCGGCGCCGGATTATGCGCCGTTCGGTATCACCGGCAATGGCCATGAATACGAAGGCCTGACCGCCGATTACGCCGGGTTGCTCGGTCAGTTGTTGCAGGTCGATGTGCAGGTGCGCCGGTACCCGTCGCGGGCCGAGGCGCTGCAGGCCCTGCGCGGCGGTGCAATCGACATGCTCGGCAGCGCCAATGGCTTCGAGGCGGGCGATCCGGAACTGGCGATGTCCCAGGCCTACGCCGATGACCAGCCGACCCTGGTGACCCGTGCCGGTGACAATCGCAAGCTCGCGCCGGACCTGGCGGGCAAGCGGGTGGCGATGCTTTATCACTATCTGCCCCCTGAAGCGGTCAAGGCTTTTTACCCCAAGGCTTCGCTGCAGCTGTACCCGTCGACGCTGAGCGCCATCGGTGCCGTGGCTTTCGGCCAGGCCGACGTCTATCTGGGGGACTCGATCAGCGCCCATTACCTGATCACCAAGAACTACCTGAACAACGTCCAGTTGGCCGATTTTTCACGCTTGGAAGTGCAGCCGTTCGCGTTTGCCCTGGCGCGTGACAACACGCGCCTGCTGCGGATCATCAACAGCGCCTTGCAAGCCATTCCCGGCACCGAGCGCATGGCGATCCTGCGCCGTTGGAGCGCCGGTGGCACAAGCATGCCCGGCCACCAACGGCTGCATTTCAGCGTCAGCGAACAACGCTGGCTGGACACGCATCCGCGAATCAGGGTGGTGATCAATGATCACTTCATGCCGCTCACGTTCATTGACCAACAGGGGCACTTTCGCGGCATCAGTGCCGATGTGCTGGCGAAAATCAGCCTGCGCACCGGGCTGAAATTCGATATCCAGCACGGTGAGTCGCTTGAGGATCTGATCGCGCAGGTCAAGGGCGGCGAGGCCGACGTCGTGGCGGCGTTCCCGCCGGGTTCCGACTACGCCGATGAACTGAGTTCCACCCGACCTTATTTGAGCAATCCCTACGTGCTCGTGGCCGCCCTGGATACCCAGGCCCCCGTCACGCCGGAGCAGATGGCCGGCAAGCGTCTGGCGCTGGTGCGCGGAAATGGGCTGCGCGATTACCTGCTGCAGCAATTTCCCGAGGTCCAACTGGTGCCGGCGCAAAACGCCGCCGATGCCCTGGCCATGGTGGCTTCCGGCGCGGTGGACGCGGCGATCAGCCCGCTGCTCAGTGCCAGCTACATGATCTCCCGTCAGTACCGCGACACGCTGCGGATCACCTGCACCGTCGGCACCGAGCCGGCGCTGATCGCCTTGGGCACCCGCCGGGACGCGCCGCAGTTGCATTCGATCCTGGACAAGGCGCTGCTCAGCGTTGCTCCTGAGGAAATGGACGAACTGACCAACCGCTGGCGTACGGAAATCGTTGTGGAAGACAGTTATTGGCTGCGCCACCGCGCCACCGTTCTCCAAGGCTTCGCCATCGCTGCACTGCTGTTGTTCCTGGCGCTGGGCTGGATCGGCTATCTGCGCCACCTGATACGCAAGCGTCGGCAGGCCGAAGTCGCCCTCAACGACCAGCTGGAATTCATGCGGGTATTGATCGATGGTACGCCGCATCCGATCTATGTCCGTGATCGCGAGGCGCGGTTGGTGTTGTGCAACAGCGGCTACCTTGAGGTATTCGGTGCCGAACGGCAGAGCGTTGTCGGCAAGACCCTGCTCGAAAGCGCGCCGGGGGATCCGGTCGAAGCGCGGCTCTACCACCATGACTATCTAAGGGTCATGGAGGAGGGCTTGCCACGGGTCCAGGACCGCGGCCTGACTGTGGCCAGCGGCGAGGTGCTGACTATTTATCAATGGATGCTGCCGTATCGCGGCAGCGACGGCGCGGTCAGCGGCATGATCGGCGGCTGGATCGACGTCAGCGAACGCCAGTACCTGCTCGAACAATTGCGCATTGCCAAGGACGGTTCGGATGACGCCAACCGGGCCAAGACCACGTTCCTGGCGACGATGAGCCACGAGATCCGCACGCCGATGAACGCGGTGATCGGCATGCTCGAACTGGCGCTGAAAAAGGCCGAAGAAGGCATTGTCGATCGGGCGGCCATCGAGGTCGCTTCGGGCGCCGCCCATGGCTTGCTGGCGCTGATCGGCGACATCCTCGATGTTGCCCGTATCGAGTCCGGGCGGATGTCGCTGGCGCCGGAGCGCGCCAACCTGCGGGAGCTGGTCGAGTCGGTGGCGCGGGTTTTCGAGGGCCTGGCCCGGCAGAAACACCTGGGCCTGCAGCTGGCCCTGGACGACGAGCTCGACCGCGACGTGCTGATCGATCCGTTGCACTTCAAGCAGGTGCTGTCGAACCTGCTCAGCAACGCGATCAAGTTCACCGATCAGGGCTTGGTGCGCTTGATCGCCGAGGTCGTCCCCGGCAGTGAAGACGAGCGACTCGCTGTTCGCTTGCGGGTGGAAGACACCGGCAGCGGGATTTCCCTTGAAGACCAGCAGCGGCTGTTCCAGCCGTTCACCCAGGTCGGCGACAACCGCGAGTCGACCCGCGGCGGCTCCGGGCTGGGGTTGGTCATCAGCCGGACCTTGTGCGAAATGATGGGCGGCACCCTGACGATGAGCAGCCTGCCGGGGGAGGGCACGCAGGTCGAGATCCGGCTGGATCTGCCGCTGCTCGACGCCTTGCTCCAGGCCCCACTTGCCGGGGGCAAGACGCCGTTGCCGATGCGGGTGCTGGCCATTCTGGTGGTCGATGACTATCCGGCCAATCGCCTGTTGCTGTGCCAGCAACTGAGTTACCTGGGCCACCGCGTGGAGGAGGCTGCGGAGGGTGTGCAAGGCCTGCATGCGTGGCGCGCCGGGCGCTTCGACATGATCATTACCGACTGCAACATGCCTTTGATGGATGGCTACGCATTGACCCGAGCCATTCGTGAAGAGGAGCACGCGCGAGGCCTGTCGCCGATATTGATACTCGGGTTCACCGCCAATGCCCAGCCAGAAGAAAAGCAGCGTTGCATCGACGCGGGAATGAACGACTGCCTGTTCAAGCCCATCGGGCTCGAAGTCCTCGGTGCCCGTCTGGCGCAGGTTTTTCCGGAACCGGCCGCAGGGTTTCCTGGAACGGAGGCCGAGGCGCCCGCGGATGATTTCGACCTGGACGGCCTGGCGCAGTTGACCGGCGGCGATACGGAGGCGCTGAACAGCCTGATCAGCGAACTGGTCACCTGCAATACCGAAGACACCGCGCAATTGCTGCACTTGTCCGCCCGGCATGATCTGCCCGGACTCGCCGACCTGGCGCATCGGATCAAGGGCGGGGCGCGGATGGTCAGGGCGCAAGGTCTGGTTAGCGCGTGCGATGCCCTGGAAGACGCTTGCCGGGAGCGGGATGCGTCGTCGTTGGCCGATGCGGTGGGTGACTTGCAGCAGGCGCTCGAACATTTGACCGGGCGGCTGCGTGCATCGTCGCTCTGGTCAGGTTGAMIVFSRMSLAALSLGLLSMAPQVVAAPELLQVLGRSTVSGYSVSLDAADRAWLRDKGSLLLGASAPDYAPFGITGNGHEYEGLTADYAGLLGQLLQVDVQVRRYPSRAEALQALRGGAIDMLGSANGFEAGDPELAMSQAYADDQPTLVTRAGDNRKLAPDLAGKRVAMLYHYLPPEAVKAFYPKASLQLYPSTLSAIGAVAFGQADVYLGDSISAHYLITKNYLNNVQLADFSRLEVQPFAFALARDNTRLLRIINSALQAIPGTERMAILRRWSAGGTSMPGHQRLHFSVSEQRWLDTHPRIRVVINDHFMPLTFIDQQGHFRGISADVLAKISLRTGLKFDIQHGESLEDLIAQVKGGEADVVAAFPPGSDYADELSSTRPYLSNPYVLVAALDTQAPVTPEQMAGKRLALVRGNGLRDYLLQQFPEVQLVPAQNAADALAMVASGAVDAAISPLLSASYMISRQYRDTLRITCTVGTEPALIALGTRRDAPQLHSILDKALLSVAPEEMDELTNRWRTEIVVEDSYWLRHRATVLQGFAIAALLLFLALGWIGYLRHLIRKRRQAEVALNDQLEFMRVLIDGTPHPIYVRDREARLVLCNSGYLEVFGAERQSVVGKTLLESAPGDPVEARLYHHDYLRVMEEGLPRVQDRGLTVASGEVLTIYQWMLPYRGSDGAVSGMIGGWIDVSERQYLLEQLRIAKDGSDDANRAKTTFLATMSHEIRTPMNAVIGMLELALKKAEEGIVDRAAIEVASGAAHGLLALIGDILDVARIESGRMSLAPERANLRELVESVARVFEGLARQKHLGLQLALDDELDRDVLIDPLHFKQVLSNLLSNAIKFTDQGLVRLIAEVVPGSEDERLAVRLRVEDTGSGISLEDQQRLFQPFTQVGDNRESTRGGSGLGLVISRTLCEMMGGTLTMSSLPGEGTQVEIRLDLPLLDALLQAPLAGGKTPLPMRVLAILVVDDYPANRLLLCQQLSYLGHRVEEAAEGVQGLHAWRAGRFDMIITDCNMPLMDGYALTRAIREEEHARGLSPILILGFTANAQPEEKQRCIDAGMNDCLFKPIGLEVLGARLAQVFPEPAAGFPGTEAEAPADDFDLDGLAQLTGGDTEALNSLISELVTCNTEDTAQLLHLSARHDLPGLADLAHRIKGGARMVRAQGLVSACDALEDACRERDASSLADAVGDLQQALEHLTGRLRASSLWSGPGPT0014485_167DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCE_EVG-EMR_SYSTEM,PGPT0014485-evgS|bvgS-K07679NANA
D1-35_02208405hypothetical proteinATGCCGAACAAAGCATTACGTATCATGATCGCCGATTCAGAGCATTTTCATCGAATGAAGCTTGAGCGCCTGTTCAACCAGCAAGGTTATTTCCGGATTGCGCCGGTGAACGACATGGAGGAATTGTTGCTGCTGGTGGAGTATGGCAGCGAGCCGTTCGACGTGATCGTCGCCAATGCCCGACTGGCAAGTGGCGGAGTGGAGTTAGCCGATTTCCTGGTCGACAACCCCCAGGTGCTTCACGGGTTGATCTACAACATGCCGCAGGCTGGCGTGTCGCCGCAGGTAGGCGGGCGCCGGTCTCACGTGCAACTGAGCCAGGCCGCGTTGCCCGAACCTGTTGCACTGGCCTGCCTGATGGCTCGTGCCGAGGGAGCGTGTATCAGCGAGCGGGCGCGCTCTTGAMPNKALRIMIADSEHFHRMKLERLFNQQGYFRIAPVNDMEELLLLVEYGSEPFDVIVANARLASGGVELADFLVDNPQVLHGLIYNMPQAGVSPQVGGRRSHVQLSQAALPEPVALACLMARAEGACISERARSNANANANANA
D1-35_02209615bvgA_3Virulence factors putative positive transcription regulator BvgAGTGAAAGACATGTTGATCGTGGACGACCACCCTGTCATTCGAGGAGCGTTGCGGCTCATTTGCCAGAATGAAGGGGCTGCGCAGGTCCGCGATGCCAGCAGCGTGGCGCAAGCCAGGGCCTTGATCAAGGAAGGCATACCCGACCTGGTGATCCTGGACCTGGTAATGAACGGTTTCGACGGCCTTGAACTGTTGAGCTGGATCATGGCCGAGTTCCCGTCATGCGGGGTGCTGGTGTTTACCTCCCAGGATGCCCAGCATTTCTGCAATCGCTGTATCTCGGCGGGGGCCCGAGGGTTTGTCACCAAGAAAAGCGACCTGAAGGAATTGACCAAGGCCATTCATGCATTGAAGTCCGGTTATTCCTATTTCCCACAGATGTCCGTCCGCCTGGATTTCCAGCAGCGCACCGAACAGCAGGCGCTGGAGAGTCTCTCGATCCGCGAGTTGTCAATCCTGCGGATGCTGGCCATGGGCATGCGCGGCAAGGACGTCGCCGAAGCTTTGTTCCTGAGCCCCAAGACGGTCAGCACCTACAAGACCCGCCTGCTGGAGAAGCTTGGCTTGAAAACCCTGGTGGGCCTGTCGGATTTCGCCAAGCGCAATCACTTGTAGMKDMLIVDDHPVIRGALRLICQNEGAAQVRDASSVAQARALIKEGIPDLVILDLVMNGFDGLELLSWIMAEFPSCGVLVFTSQDAQHFCNRCISAGARGFVTKKSDLKELTKAIHALKSGYSYFPQMSVRLDFQQRTEQQALESLSIRELSILRMLAMGMRGKDVAEALFLSPKTVSTYKTRLLEKLGLKTLVGLSDFAKRNHLPGPT0014490_394DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MdtEF-TolC,PGPT0014490-evgA|bvgA-K07690NANA
D1-35_02210825dmlR_9HTH-type transcriptional regulator DmlRATGCCCAAGTCCAAGCTCAGCCGGCGTATCGCCCAGCTGGAGGAGCGCCTGGGCGTCAGGCTGATCCATCGCACCAGCCGGCATTGTTCGTTGACGGAAATCGGCCAGGCCTATTACCAGCGCTGCCTGGCCATGCGGGTCGAGGCTGAAAGTGCCGCCGAAGTGATCGAACGCAACCGCTCAGAACCCCAGGGACTGGTGCGCATCAGTTGCCCGACGGCGCTGCTCAACAGCTGGGTCGGACCGATGCTGACCCGCTACATGGTCAAGTACCCGCGGGTGGAGCTGTTCATCGAGAGCACCAACCGCCGCGTCGACCTGCTCCACGAAGGGTTCGATATCGCGTTGCGGGTCCGTTTCCCCCCGTTGGAAAACACCGACATGGTCATGAAGGTGCTGAGCAACAGCACCCAGTGCCTGGTGGGAAGCCCGGTCTATCGTGAAGGCCTGTCGTCCCCCGCCTCGCCGGCGGACCTCAATGGCCTGCCCAGCCTCCACTGGGGTTCGGCGCAACGTGAATACCAATGGGAGCTGTTCGGCCCGGACGGCACCCGCGCGCTGATCCGCCACGCACCGCGCATGGTCACCGACGACCTGCTGGCCTTGCGTCATGCGGTGCTGGCAGGCATCGGCATCGCTCACCTGCCCACGGTCGTGGTACGCGAAGACCTGGCCGCCGGACGCCTGGTGGAACTGGTGCCGGGCTGGACACCGAAATGCGGGATCGTCCATGCGATATTCGCCTCACGCCGTGGCTTGCTGCCCTCGGTGCGAACCCTGATCGACTTCCTCGCCGAGGAGTTCAGCCAGAGCGACATGGCCTAGMPKSKLSRRIAQLEERLGVRLIHRTSRHCSLTEIGQAYYQRCLAMRVEAESAAEVIERNRSEPQGLVRISCPTALLNSWVGPMLTRYMVKYPRVELFIESTNRRVDLLHEGFDIALRVRFPPLENTDMVMKVLSNSTQCLVGSPVYREGLSSPASPADLNGLPSLHWGSAQREYQWELFGPDGTRALIRHAPRMVTDDLLALRHAVLAGIGIAHLPTVVVREDLAAGRLVELVPGWTPKCGIVHAIFASRRGLLPSVRTLIDFLAEEFSQSDMANANANANANA
D1-35_02211867hypothetical proteinATGAAAAACATCACCGGCGTCTATACCAGTCCGCGGCCTCATTGGGTCGGCGACGGCTTTCCGGTTCGCACGCTGTTTTCCTACGATAATCTGGGCAAACATGTCAGCCCGTTCCTGCTGCTCGATCATGCGGCCCCCAGCGAATTCGCACCGACCACCGAGCGACGCGGCGTAGGCCAGCACCCTCATCGTGGTTTCGAAACCGTGACCATCGTCTACCAGGGCGAACTGGAACATCGTGATTCGACTGGCAGCGGCGGCAAGATCGGCCCCGGTGACGTGCAATGGATGACCGCTGCGTCCGGCATCATTCACGAAGAGTTCCACTCCGAAGCCTTCGCCCGGCAGGGCGGGTTCATGGAAATGGTCCAGCTGTGGGTCAACTTGCCCGCCAAGGACAAGATGGCGCCGGCCGGCTACCAGACCATTCTCAAGGGCGACATCCCACAGATCGCTCTGAAGGACGGAGCCGGTAGCTTGCGCCTGATTGCCGGGTCCTTCGAAGGGCATCAAGGCCCGGCGAAAACCTTTACCCCGATCGACGTCTGGGACATCCGCCTGAACGCCGGGAAGCACCTGGCCGTGGCCGTGCATGACGGTTACAACACCGCACTGGTTGTGCTGCGCGGTACCGTCCAGGTCAACGGCCGTGAACGCGTCGAGCAAGGGCAACTGGCCCTGTTCGAACGGGCCGGCGACCAATTGAGCCTGCAAGCCGACCATGACGCGGTGGTCCTGTTGCTCAGTGGCGAGCCCATCGATGAACCCATCGTCGGCCATGGCCCGTTCGTGATGAACAGCCAGCAGGAAATCCTCCAGGCCTTCGAGGATTTCCATTCCGGGCGCTTCGGCCGGATGGACGGCTGAMKNITGVYTSPRPHWVGDGFPVRTLFSYDNLGKHVSPFLLLDHAAPSEFAPTTERRGVGQHPHRGFETVTIVYQGELEHRDSTGSGGKIGPGDVQWMTAASGIIHEEFHSEAFARQGGFMEMVQLWVNLPAKDKMAPAGYQTILKGDIPQIALKDGAGSLRLIAGSFEGHQGPAKTFTPIDVWDIRLNAGKHLAVAVHDGYNTALVVLRGTVQVNGRERVEQGQLALFERAGDQLSLQADHDAVVLLLSGEPIDEPIVGHGPFVMNSQQEILQAFEDFHSGRFGRMDGPGPT0019980_2805DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_FLAVONOID_UTILIZATIONPLANT_DERIVED_QUERCETIN_DEGRADATION,PGPT0019980-yhhW|pirA-K06911NANA
D1-35_022121443hypothetical proteinATGCTGTCTCTGTTCACCGACCACCCGCTGCTCTGTGCCCTGGCACTGCTTGTGCTCGATCTGGTGTTGTGGCGGCTTGTCAGCGCCGACCGGACCTACTGGAAAATCGGTGTACGGCTGCTGATCTTTTCGTTGTTCAGCGTGCTGCTGTTCAACGAAGGCCTCAATCCCATGGAAAAAGCCCAGTGGGTCGACGACGTGCCCCGGCACCTCGCGGCGACCGGCTTGCAGATTGGCTGGTGGTTGTTCGCCGCGCGCACTCTGACGGTGATGATCGGTGCGGTGATGATGCAACGGGTCGGCCATACCGGGCGGCTATTGCAGGACCTGCTCGGTGCGGTGATTTTCCTGGTCGCGGTGATCGCCGCGTTGGCTTACGTGCTCGACCTGCCTGTCAAAGGCGTGCTGGCGACGTCCGGCGCGATGGCAATCATCGTCGGCCTGGCGTTGCAGAGCACCCTCAGCGATGTTTTCTCCGGCATCGTGCTCAATACCACAAAGCCCTATCAGGTCGATGACTGGATTTCCATCGACGGCACCGAAGGCCGGGTCACCGACATCGATTGGCGGGCTACACGGCTGCAGACCTCCCAAGGGAGCATGGCGGTGATCCCCAACTCGCTGGCGGCAAAGGCCAAGATCATCAATTTCAGCCGACCCAGCGATGTCCATGGCTTGTCGATCAGCATCCAGGTGAGCCCTCACGCACGGCCGCAAACGGTAATCGACGCACTGGAGCGGGCGATGGTCGGCTGCCGTGCGTTGCTGTCGAGCCCGGAGCCCTGCGTGGCGCTGAAAAGCACCGGCAGTGGCGGGGCGGAATACGAGATCAGTGGGTTCGTTGCCTCGATGGGCCAGAAGCGCGGGGTGCGCAACCAGTTGTTCGACCTGGCGTTCCGGCATTTGCAGGCGTCCGGCGTGAGCCTGCTGTCCACTAGTGAAAGTGCGGCTCCCGCCGTGGTGTCGCGGCCCCGGGCATTGCTGGAGAGCTCGAACATTTTCTCGACCCTGCGCCAGGATGAAAAAGACACCTTCAGCCAGAACATGACCTTGCAAACCTTCCGCGCCGGCGACGTGATCCTGGCGGCCGGGGAGGTCAGCGATCATCTGTTCATCATCGAGTCCGGGGTGGTCAGCGTGACGCTCATGCGTAAAGGCCAGCCGCTGGAGGGCGGGCGCATGGGACCGGGGGAAGTTATCGGCGAAGCCGGAATCGTCGCCGAACAGGCCGCACTGGCGAACTTCTCTGCCAAGACCTTCTGCACGCTGTATCGCATCGAGAACAGCTACCTCAAGCCCTGCCTCGAAGCCCGTCGCGATATCAACGACGCGATGAAGAACCTGCTGGACGTGCGCATGCACCTGGCCCAGAACCTGACTCGCGACGTGCCCAAGCCGGTGGCCAAGAAGCGTTTTCTGCAGTGGTTGCGCAGCCGGGCCTGAMLSLFTDHPLLCALALLVLDLVLWRLVSADRTYWKIGVRLLIFSLFSVLLFNEGLNPMEKAQWVDDVPRHLAATGLQIGWWLFAARTLTVMIGAVMMQRVGHTGRLLQDLLGAVIFLVAVIAALAYVLDLPVKGVLATSGAMAIIVGLALQSTLSDVFSGIVLNTTKPYQVDDWISIDGTEGRVTDIDWRATRLQTSQGSMAVIPNSLAAKAKIINFSRPSDVHGLSISIQVSPHARPQTVIDALERAMVGCRALLSSPEPCVALKSTGSGGAEYEISGFVASMGQKRGVRNQLFDLAFRHLQASGVSLLSTSESAAPAVVSRPRALLESSNIFSTLRQDEKDTFSQNMTLQTFRAGDVILAAGEVSDHLFIIESGVVSVTLMRKGQPLEGGRMGPGEVIGEAGIVAEQAALANFSAKTFCTLYRIENSYLKPCLEARRDINDAMKNLLDVRMHLAQNLTRDVPKPVAKKRFLQWLRSRANANANANANA
D1-35_02213441hypothetical proteinATGCAACCGCGTATCGATTTCTACACCGCTTCCCCCGACGCCTACAAAGCCATGCTGACGCTGGAAAACACGGTGTCGAAACTGGGCCTGGAAAAGTCCCTGCTGGAGTTGGTCAAGCTGCGTTCCTCGCAGATCAACGGCTGCGCATTCTGCATCGACATGCACACCGCCGATGCGCGCAAGGACGGCGAGACCGAGCGGCGCCTGTACGCGGTGACCGCCTGGCGCGAAGCACCGTTCTTTACCGGCCGTGAACGCGCCGCGTTGGCCTGGACCGAAGCGCTGACACGCCTGAGCGAGACCCATGCGCCAGACGCGGACTACGCGCTGCTGAGCGAGCATTTCACGCCCAAGGAGATGGTCGATCTGACCGTGGCGATCAATGCCATCAACGGCTGGAATCGGCTGGCAGTGGGCTTTCGGAAAATGCCCGAGGTTTGAMQPRIDFYTASPDAYKAMLTLENTVSKLGLEKSLLELVKLRSSQINGCAFCIDMHTADARKDGETERRLYAVTAWREAPFFTGRERAALAWTEALTRLSETHAPDADYALLSEHFTPKEMVDLTVAINAINGWNRLAVGFRKMPEVNANANANANA
D1-35_02214765nimR_1HTH-type transcriptional regulator NimRATGGCTTGGCTCGACGCTCACGCCCGCTTCGACCCCGATCGCCATCACGCGCCGGTCGTTGGCATCGCCGCAACGCTGGGTCATCACGATTCTGGCTTGCACGCTCACCGGCGTGGGCAATTGCTGTTCACCTTTCACGGCTGCACGCGCATCACCTTGCAACGGCAACTTTGCCTGCTGCCCCCCTCACGAGCGGCCTGGATTCCACCGGGCACGCCGCATCGCGCAGTGATGCAACAGAGCGTGGAGTATCGATCAATCTACCTGACGCCGGCTTTGTGCGCCGATCTACCTTCGCAAGTGCGCATCATCGAGGTTTCGCCACTGCTGCGCGCCGTACTTGAACCGATCGCCCACGCTGCGTTTGACAGCGACTGGATGCAGGGCCGCAACGCGCATCTGCTGGGCCTGTGCGTGGAGGAAATCCGCCAGGCGGCACCACAGCCGATGCTGCTGCCGCTGCCTCAAGACAAGCGCCTGGCGCCGCTGCTCAAGACTCTGGAACAACTGCCACCGGCGCTGGCTGTGCTGGAGCAGCAGATCGGCGCGAGTGGCCGGACCATCGGGCGAATCCTGCAACGGGAAACCGGCATGAGCTATCAGCAGTGGCGTCAGCAATGGCGCTTGATGCGCGCCATTGAACTGCTCGCCACTGGCCGCAGCCTGAGCTATTGCGCTTTCGAACTGGGCTTTGCCAGCGACAGCGCCTTTATCGCTTTCTTCAAGCTCATGACCGGTCTCACGCCCAAGAACTACCTGAGGTAAMAWLDAHARFDPDRHHAPVVGIAATLGHHDSGLHAHRRGQLLFTFHGCTRITLQRQLCLLPPSRAAWIPPGTPHRAVMQQSVEYRSIYLTPALCADLPSQVRIIEVSPLLRAVLEPIAHAAFDSDWMQGRNAHLLGLCVEEIRQAAPQPMLLPLPQDKRLAPLLKTLEQLPPALAVLEQQIGASGRTIGRILQRETGMSYQQWRQQWRLMRAIELLATGRSLSYCAFELGFASDSAFIAFFKLMTGLTPKNYLRNANANANANA
D1-35_022151158ydhC_1Inner membrane transport protein YdhCATGACATCCCGTCCCCTGCTTCATCTGGCGATCGCCCTGGTCATGTTTCCCCAGATCGCCCAGACCCTTTACAGCCCTGCATTGGCAGACATCAGCCAGGCCTTTGCCGTCAGCGCCCAAATGGCGGCGCAGACGCTTTCGGTGTTTTTCCTGGGGTTCGCTCTCGGAGTGGTGGTATGGGGGCGCCTCTGCGATCGCGCGGGCCGTCGGCCCGTCATGCTGGCCGGCCTCGCGTTGTACGGGGCTGCGACCGTGCTCGGTTTGAACGCCTCAAGCTTTGACGCGTTGCTGGCCTTTCAGGCCTTGGCCGCGTTCGGCGCCGCAGTCGGTTCGGTAGTGACCCAAACGGTTTTGCGTGACCGCTTCCAAGGCGCCGAACTGGGCCAGGTCTTCTCGATCATCGGTATCGCATTGGCGGCCAGTCCGGCTATCGGTCTGTTCAGCGGCGCGGGCCTGGTGGAGCTCTTCGGGTATCAAGGCGTACTCGGCGCACTTTTGCTGCTGTCGTTGATCCTGCTGCTGTGGTGCGTGTGTGCCTTGCCCGAAACCTTGCCGGTCCGACTGCCTCCACCGCCGCTGTTGAAAATCCTCTGGCGCATGCTGGTGGACCCGGCCATCTGGCGTTCGGCATGGCTGGTGGCTGCGTTCAACGTGGCGCTGTTCAGCTACTACAACCTCGCACCGTTCCAGTTCGAACGGCTCGGCTTGAGTCCCGCCATGTTCGGTTACAGCGGAGTAGTTCTGGCGTTGGGTTCAGGCTTGGGCGCCTGGCTCAACAAACGCCTGCTGGCACGCGGATTCGACGGCAATCAATTGTCGGCCCTGGCGGCGATTGTCCTGCTGGTGGGCGGTTCGGGCGTGCAAGGCCTGCTCGACAGCGGCAGCTTTGTCGCACCGATGTTGCTGGTAGTGCTGGCGTTCGGCATGGCGATCCCCAACGTCCTGGGTGCGGCGCTCGTACATTACAAGGATTGCCTGGGCACGGCCGGCGCGCTGTTCGGCCTGTTCTACTACGTGCTGATCGGCGCTGCGCTGATGCTCGCCGCCTGGTTCCAGGCGCTGGGCTGGACCTTGATCCTTTGCGGCACGCTGGCGGTGGGCTTGACGGTGCGCCAGTTGCTGCGTGCCAAACGCCAGTCATCCCGTGCCGGGAACTAAMTSRPLLHLAIALVMFPQIAQTLYSPALADISQAFAVSAQMAAQTLSVFFLGFALGVVVWGRLCDRAGRRPVMLAGLALYGAATVLGLNASSFDALLAFQALAAFGAAVGSVVTQTVLRDRFQGAELGQVFSIIGIALAASPAIGLFSGAGLVELFGYQGVLGALLLLSLILLLWCVCALPETLPVRLPPPPLLKILWRMLVDPAIWRSAWLVAAFNVALFSYYNLAPFQFERLGLSPAMFGYSGVVLALGSGLGAWLNKRLLARGFDGNQLSALAAIVLLVGGSGVQGLLDSGSFVAPMLLVVLAFGMAIPNVLGAALVHYKDCLGTAGALFGLFYYVLIGAALMLAAWFQALGWTLILCGTLAVGLTVRQLLRAKRQSSRAGNNANANANANA
D1-35_02216423hypothetical proteinATGCAAGTTCAAGTCAACAGCAACCATATCGAAGGCAGTGTCCGATTGCAGGAGTGGGTCGGCAGTACGGTGGTGGACGCGCTACAGCGTTTCGAAGACCAGTTGGCCCGGGTTGAAATCCACGTCAGCGACGAGAACGCCCAGAAGGGCGGCGCCGCTGACAAACGCTGCCAGATCGAGGCGCGCCTGCAAGGCGTTGCGGCCATCTCCGTAAGCCACAAGGCCGAAAGCCTGGAGCTGGCGGTCGAGGGCGCCGCCGAGAAAATGCTGCATGCGCTCGATCATCAGGTTGGCAAGCTCAACCCCGCCGTCGAATCCATGGGGCGCGTGACCGCTCCGGTGGATGAAGCGCCACCGGAATTGGTGGACGCCATGCTGGAGGAAGACTTCCTCGCAAACCAAGAGGCTCGTGGCAAAGAATAAMQVQVNSNHIEGSVRLQEWVGSTVVDALQRFEDQLARVEIHVSDENAQKGGAADKRCQIEARLQGVAAISVSHKAESLELAVEGAAEKMLHALDHQVGKLNPAVESMGRVTAPVDEAPPELVDAMLEEDFLANQEARGKENANANANANA
D1-35_022171176hypothetical proteinATGACCGCTCATCAACCCTTCAGCCGGCAGGTATTGGCCGAGCTTCTGGCATTCGACGAACAGCCGAGCCTTTCGTTGTATATGCCTACCCACCGTACATTCCCCGAACGCAGCCAGGACCCGATCCGCTACAAGAACCTGGTGCGCGAACTGCAGACGCAACTGGAACAACAGCATCCGGGCGTCGATTGCGCGCCGTTGCTTGAGCCTTTTCATGCGCTGGTGGACGACCAGGATTTCTGGAACTCCAATCGGGACGGCATCGCCGTATTCGGCGCCCGTGACTACTTCAAGGTCATCGCGGTGAACCAGCGCCTGCCGCAATGCGCATTCGCCAACAGCCATCCTTATCTGAAGCCATTGTTGCGTCTGGTCCAGTCGACCGAACGTTATCAGGTGCTGTGCCTGACCCGTAACGAGGTGTGGTTGTACGAGGGCTCCTCCCAACAACTGGAAAAAGTCGAGCTGGCCGACGAGGTGCCGCGCAACCAGAACGAGGCGCTCGGCGATGAACTGACTTCAGGTGACCAGCAGGGTTTTCCCAACGGCTTCAGCCGCAGCAGTGAGCGCGGCGATCCGATGATGCATGAATCCGCCGGCGGCGGTAAGCAGGACGAAATCAACCTCGACCGCGAGCGTTTTTTTCGCGCCGTAGACAAAGCCATCCTGGAACATTACTCGCAGCCTTCGGGCTTGCCGATGATCCTCGTGGCCCTGCCGGAAAACCAGGCGGTGTTTCGCGCGGTCAGCCATAACTCGCAGTTGTTGGCCCAGGGCATCGATGGGGACCCTTCGAGGTTGAGCGTGGAGGAGTTGCGCGTCCAGTGCTCCAAGGTCATGGCCCACAGCCATTCGGATCGGGTCGTCGACAGCCTCAATCGTTATGGCGTCGCGGTCGGCCAGGGACGGGCGCTGGACAACCTCGCCGAGATCGCCAAGGCCGCTTGGGAAAGCCGCATTGCGCTGTTGCTGGTGGAGGCGGAGCGCCAGGTGCCCGGCCAGCTCGACGCAGACAAGGGCCGCTTGATCATTGACGAGACCGGCGATGAACAGGCGCCTGACGTGCTGGACGAATTGATCCTGGCCGTGACCCGGCAGGGCGGCGAGGTCATCGTCGTGCCGCCTGAGCATGTCATGCCGACCGATACGGGGGCGGCGGCGGTGTGCCGGTTCTAGMTAHQPFSRQVLAELLAFDEQPSLSLYMPTHRTFPERSQDPIRYKNLVRELQTQLEQQHPGVDCAPLLEPFHALVDDQDFWNSNRDGIAVFGARDYFKVIAVNQRLPQCAFANSHPYLKPLLRLVQSTERYQVLCLTRNEVWLYEGSSQQLEKVELADEVPRNQNEALGDELTSGDQQGFPNGFSRSSERGDPMMHESAGGGKQDEINLDRERFFRAVDKAILEHYSQPSGLPMILVALPENQAVFRAVSHNSQLLAQGIDGDPSRLSVEELRVQCSKVMAHSHSDRVVDSLNRYGVAVGQGRALDNLAEIAKAAWESRIALLLVEAERQVPGQLDADKGRLIIDETGDEQAPDVLDELILAVTRQGGEVIVVPPEHVMPTDTGAAAVCRFNANANANANA
D1-35_02218501fecI_4COG1595putative RNA polymerase sigma factor FecIATGATTCCCAAGCTGCCTCGCAGACCCGGCTTTTTCGAGTATTACGAAGAGTTGATCGGCACCTGGACCCGCCGCCTGCGCAACCGCGAGCAGGCCGAGGACCTGGCCCACGACGCCTTCGTGCGCGTGCTCGAGTCCGATTCGGCGCAGGTCGAGCAGCCACGTGCCTATCTGCACCAGACAGCGCGCAATATTGCAGTGGACGGCTATCGGCGTGAAGATCGACGGGGCGCCATGGAGGAAGCGGCGCTTGACCCTGGTTATTCGTTTGCGGGCGACCCGGAGCACTACATGCACGCGATCCAGCTGGCGGACTCCATCGAACGGGCGCTTGCCGAGCTGCCGGCCCATTGCCGCACGGTGTTTGTCTGGCAGAAGATCGAAGGCCTGACCCAGGCGGAAATCGCCGAGCGCCTGGGCCTGTCAAAAAACATGGTGGAAAAGTATATGATCCGCACCCTGCGCCATCTGCGTGATCGCCTCGACGGACCGGATCAATGAMIPKLPRRPGFFEYYEELIGTWTRRLRNREQAEDLAHDAFVRVLESDSAQVEQPRAYLHQTARNIAVDGYRREDRRGAMEEAALDPGYSFAGDPEHYMHAIQLADSIERALAELPAHCRTVFVWQKIEGLTQAEIAERLGLSKNMVEKYMIRTLRHLRDRLDGPDQNANANANANA
D1-35_02219972hypothetical proteinATGATGGATAGCCGTGACTGCCCGTGCGGGCAGAGCAGGGTTCGCGACGAGGCGGCGCAATGGTTCGTGCGTCTGCAGGACCCGGTCATGAGCCTCGACGAGCGTCAGCGTTTCGAGGCCTGGCTGGGCGAACACCCCAACCACCGCGATGAAATTCAATTGCTGCAAGGGATCTGGAGCGCAACGGACCTGCTGTCCATGGAGCGCTTGCAAGCGCTGTGCGAGCGGCCTGCCGAACGCCCGAGACGCAGGCCTTTGCTGCGCTATGCGGTGGCCGCCGGATTGGTGGCGGTGGCGGTCGGGCTGGGGCTGTTCAGTGGCCTGGGTGCGTCGAGCGATTACCGCAGCGAATTCGCCACTGCCCTCGGTGAGCGTCGACATGTCGCGCTGCCGGATGGCTCGCTGATCGACCTCAACAGCCGCAGCCATGTGCGTGTTGTCTTCGAACATCGCCAACGTCGGGTAGAGCTGGTCGAGGGGGAGGCGCTGTTCAGGGTCGAGCATGATGCCGCGCGCCCGTTCACCGTTGACGCGGGCAACGGCCAGGTGACGGTGACCGGGACGCGCTTCGACGTGCGCCGCGATGCCGGCAGCACCCGGGTGGCGGTGGAGGAGGGTAGCGTCAAGGTCCAAGGGCGTGATTTCCCCATCAATCTCACGGCCGGCCTGGGTACCCGGATCGATGCTCAAGGCAAGGTCGCGTCACCGTACCCGATCAACGCCGATGAACTCACCGCGTGGCGCAACGGCAAGCTGGTGTTCAACAACGCGCCGTTGAGTGAAGTCGCCGAGGAGGTCTCCCGTTATCGCGCCAGGCCCCTGCGGGTTGCCAGTGCCGCGGTGGGCAACCTGCGCCTGACCAGTGTGTTTCGTTCGGACAATCCCGAGGCGCTGCTCAAGGCCTTGCCGAACATCCTGCCGGTGGCCGTGCGCACACTTGACGACGGCAGCCAGGAAATAATTGCGAAATAGMMDSRDCPCGQSRVRDEAAQWFVRLQDPVMSLDERQRFEAWLGEHPNHRDEIQLLQGIWSATDLLSMERLQALCERPAERPRRRPLLRYAVAAGLVAVAVGLGLFSGLGASSDYRSEFATALGERRHVALPDGSLIDLNSRSHVRVVFEHRQRRVELVEGEALFRVEHDAARPFTVDAGNGQVTVTGTRFDVRRDAGSTRVAVEEGSVKVQGRDFPINLTAGLGTRIDAQGKVASPYPINADELTAWRNGKLVFNNAPLSEVAEEVSRYRARPLRVASAAVGNLRLTSVFRSDNPEALLKALPNILPVAVRTLDDGSQEIIAKPGPT0003910_4009DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003910-prhR|fecR-K07165NANA
D1-35_022202439fecA_2COG4772Fe(3+) dicitrate transport protein FecAGTGAAAACTTCCGCCAAGAACAACAAACGTACCGCCACCCGTTGGCTACCGCTGGCGCTGACCCTGGCGGTCAGCGCCGCGTTGCCCGAAGCTTTTGCCGACCAGACCGTCACGGCGATCCACATCCAGGCGCAACCCTTGGGCCAGGCGCTGAGCCAGCTTGGCCAGCAGACCTCGTTGCAGGTGTTTTTCAGCGCGGAGCTGGTGGCCGGCAAACAGGCCCCGGCGGTGCAGGGCAACCTGTCTCCCGAGGTGGCCCTGGGTCAATTGCTCAAGGGCAGCGGTTTGCAATACCAGATCGATGACGGCTCGGTGACTGTACTGCCGGCTCCTTCGACGTCTACCGATGGCCCACTGGAGTTGGGCGCCACCGAGATCCAAGTGGTCGGCGACTGGCTTGGCGACGCCAACGCCGAAGTGGTACAGAACCACGCCGGCGCGCGGACGGTGATCCGCCGCGAAGCGATGGTCGAGCAGGGCGCCATGAACGTCGGCGATGTCTTGCGGCGGGTCCCGGGCGTGCAGGTGCAAGACGCCAACGGCACCGGTGGCAGCGACATCGCCCTGAACGTCGGCGTGCGCGGCCTGACCTCGCGCCTGTCGCCGCGCTCCACGGTACTGATTGACGGCGTACCGGCGGCCTTCGCGCCGTACGGCCAGCCGCAACTGTCCATGGCACCGATCTCGTCGGGCAACCTGGACAGCATCGACGTGGTACGCGGTGCCGGCTCGGTGCGCTACGGACCGCAGAACGTCGGCGGCGTGATCAACTTCGTGACCCGTGCCATCCCGGAAAAAGCCACCGGGGAAATCGGCAGCACCCTGGAGACCTCCAAGCACGGCGGCTGGAAGCACATCGATACGGCGTTCCTGGGCGGTACCGCCGATAACGGGCTGGGCGTGGCGCTGCTGTATTCGGGCATCAACGGCAACGGATATCGCAAGAGCAACAACGATAACGACATCGACGACGTGATTCTCAAGACCCACTGGGCGCCGACCGACGTTGATGATTTCTCGCTGAACTTCCACTACTACGACGCCGAGGCCGACATGCCCGGCGGCCTGACCCAGGCACAATACGACGCCGACCCGTACCAGTCCGATCGCGACTGGGACAGTTTCAGCGGCCGCCGCAAGGACGTGTCGTTCAAGTGGATCCGCGAAATCGGCGAGCGCACCCAGGCCGAAGTGTTGACCTATTACTCCGACAGCTTCCGCGGCAGCACCATCGCCTCGCGGGACCAGCGCAACCTGGTGTCCTACCCGCGTAGCTATTACACCTTTGGCATCGAGCCGCGGGTGTCCCATGTGTTCGACCTCGGGCCGACCACCCAGGAGGCCAGCGTCGGTTATCGCTACCTCAAGGAAGGCATGCACGAGGAGGCCAGCCGCCTGGCGCTGCGCAACAACGAACCGGTGGTGCGTCCGGGCGCCGACGGTCACGTCTATCAGGACCGGACCGGTGGTACCGAAGCTCATGCGGTCTACATCGACGACAAGATCGACGTGGGCAAGTGGACCATCACTCCGGGCATCCGCTTCGAAAGCATCAGCACCGAATGGCACGACCGCCCGGTGCTCGACACCGCCGGCCGCCCGGTGCAGGAAAAGCGCCGCAGCATCGACAGCAACGAACCGTTGCCGGCCTTGAGCGTGATGTACCACCTGTCCGACGCCTGGAAATTGTTCGCCAACTACGAGACCTCGTTCGGCAGCCTGCAGTATTTTCAACTCGGCCAGGGCGGCGACGGCAACAACACCGCCAATGGCCTGAGCCCGGAAAAGGCCAAGACCTACGAGATCGGTACGCGCTACAACGATGACGTGTGGGGCGGGGAAGTGACACTGTTCTACATCGACTTCGACGACGAGTTGCAATACATCAGCAACGATGTGGGCTGGACCAACATGGGCGCCACCAAGCATCAGGGGCTGGAAGCGTCGGTGCACTACGACATGGCCGCGTTGGACCCGCGCCTCGACGGCCTGACCGCCAGCGCTGGTTTCACCTATACCCGGGCCACCTATGAAGGGGACATCCCGAGCTTCAAGGGCCGTGACCTGCCGTTCTATTCGCGCCAGATTGCCACCTTGGGCCTGCGCTACGAAGTCAATCGCTGGACTTACAACCTCGATGGCTTCGCCCAGTCCGGGCAACGTTCACCGGGCAACAGCGTGAACCCCGATGGCAGTTTCAGCGATAACTACATCACCGACGGCACCGCCGATGGGCAGTACGGCGACATGCCGGGCTATATGCTCTGGAACGTTCGGGGCGGCTATGATTTCGGCTCGCAGCTGTCGAACCTGAAACTCGGCGCGGGGGTGAAGAACCTGTTCGACCATCAGTACTACACGCGTTCCAGCGACAACAACTCGGGTATCTACGTCGGCGCGCCGCGTACGTTTTTCGTGCAGGCGAGTGTCGGATTTTGAMKTSAKNNKRTATRWLPLALTLAVSAALPEAFADQTVTAIHIQAQPLGQALSQLGQQTSLQVFFSAELVAGKQAPAVQGNLSPEVALGQLLKGSGLQYQIDDGSVTVLPAPSTSTDGPLELGATEIQVVGDWLGDANAEVVQNHAGARTVIRREAMVEQGAMNVGDVLRRVPGVQVQDANGTGGSDIALNVGVRGLTSRLSPRSTVLIDGVPAAFAPYGQPQLSMAPISSGNLDSIDVVRGAGSVRYGPQNVGGVINFVTRAIPEKATGEIGSTLETSKHGGWKHIDTAFLGGTADNGLGVALLYSGINGNGYRKSNNDNDIDDVILKTHWAPTDVDDFSLNFHYYDAEADMPGGLTQAQYDADPYQSDRDWDSFSGRRKDVSFKWIREIGERTQAEVLTYYSDSFRGSTIASRDQRNLVSYPRSYYTFGIEPRVSHVFDLGPTTQEASVGYRYLKEGMHEEASRLALRNNEPVVRPGADGHVYQDRTGGTEAHAVYIDDKIDVGKWTITPGIRFESISTEWHDRPVLDTAGRPVQEKRRSIDSNEPLPALSVMYHLSDAWKLFANYETSFGSLQYFQLGQGGDGNNTANGLSPEKAKTYEIGTRYNDDVWGGEVTLFYIDFDDELQYISNDVGWTNMGATKHQGLEASVHYDMAALDPRLDGLTASAGFTYTRATYEGDIPSFKGRDLPFYSRQIATLGLRYEVNRWTYNLDGFAQSGQRSPGNSVNPDGSFSDNYITDGTADGQYGDMPGYMLWNVRGGYDFGSQLSNLKLGAGVKNLFDHQYYTRSSDNNSGIYVGAPRTFFVQASVGFPGPT0003795_142DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_CITRATE_TRANSPORT,PGPT0003795-fecA-K16091NANA
D1-35_022211152ybjJInner membrane protein YbjJATGACTGCCATAACACCCCCGCCCACTTTTGTTCCCGGACGCCTGGAACAGATGTCCACCCGCATCGCCTATCTCATTGCCGGAATCGGTATTGCCGCCTGGGCGCCGCTGGTGCCTTATGCCAAGGCGCGGGCGAACCTGGATGAAGGGACCCTCGGCTTGCTGCTGTTATGCCTTGGGGTCGGGTCGATCCTGGCGATGCCGATCTCCGGTGCGCTGGCGACGCGGTTCGGCTGCCGTCGGGTACTCAGTGGCGGTACGATCCTGATCTGCCTGGCGTTGCCGCTGCTGGCGTCGATGAGTTCCTTGCCCTGGTTGGTGGCGGCATTGTTCGTGTTTGGCGCCGGGCTCGGCACCGTCGATTCGACCGTGAACCTGCAAGCGGTGATCGTCGAGCGCGCCAGCGGCAAGACCATGATGTCGGGTTTCCACGGCATGTTCAGCCTCGGCGGAATCATCGGCGCGGCCGGCGTGAGCGCCCTGCTCGGCCTCGGGCTTTCGCCGCTGGCGGCAACCCTGGTGGTCAACGCGGTCTTGCTGGTGGCGTTGTTCAAGGCCGCACCGCACCTGTTGCCCTACGGCAGTGAAAGCTCGGGACCGGCGTTTGCCATTCCGCATGGCGTGGTGCTGTTCATCGGCATCCTCTGCTTTATCGTGTTCCTGGCCGAAGGCGCGGTACTGGACTGGAGCGCGGTGTTCCTGACCACCGAGCGTGCGGTGGATACCGCCTACGCCGGGTTGGGTTATGCCGCGTTTGCGCTGACCATGACCGTCGGCCGGTTGACAGGCGATTCGGTGGTGCATCGCCTGGGTGCCAAGCGCGTGATCATCTACGGCGGCTCGATCGCCGCAGCAGGTTTCTTCCTGGCGACCCTCGCACCGATGTGGCAAGCGGCGCTGCTGGGGTATGCGCTGGTCGGCGCCGGGTGTTCGAACATCGTGCCAGTGCTGTACACCGCCGTCGGCAAACAGACCCTGATGCCCGAAGCCATCGCCGTGCCGGCCATCACCACGATCGGTTATGCCGGCATCCTCGCGGGGCCGGCACTGATCGGCTTTGTCGCCCATGGCAGCAGCCTGGCCATTGCGTTCGGATTGATTGCGCTGTCGCTGGTGGCGGTGGCGGTCAGCGGGAAGGTGTTGAAGGTCTAAMTAITPPPTFVPGRLEQMSTRIAYLIAGIGIAAWAPLVPYAKARANLDEGTLGLLLLCLGVGSILAMPISGALATRFGCRRVLSGGTILICLALPLLASMSSLPWLVAALFVFGAGLGTVDSTVNLQAVIVERASGKTMMSGFHGMFSLGGIIGAAGVSALLGLGLSPLAATLVVNAVLLVALFKAAPHLLPYGSESSGPAFAIPHGVVLFIGILCFIVFLAEGAVLDWSAVFLTTERAVDTAYAGLGYAAFALTMTVGRLTGDSVVHRLGAKRVIIYGGSIAAAGFFLATLAPMWQAALLGYALVGAGCSNIVPVLYTAVGKQTLMPEAIAVPAITTIGYAGILAGPALIGFVAHGSSLAIAFGLIALSLVAVAVSGKVLKVNANANANANA
D1-35_022221164Carnitine monooxygenase oxygenase subunitATGGATCATCAGACTCAACTCAGGCTGACCCGGGAACTTCTGCGCCTCATTGACTGCAATGAAACCAGCCAGGCCGAGTCGCTTTCTCTCAACCCGGTGACCCGCTACACGTGCGTGGCGCATCTGGCGCGCGAGCAGGCCGTGCTCTTTCGCGGTGTCCCGCTGATGGTCGGCCTGTCCTGTGAATTACCCGGCTCCGGTGATTACCTGACCGATGATCGGTGCGGCGTGCCCATCGCTGTCGTCCGGCTCCCGGATGGCGGGCTCAGTGCATTCGTCAACGTTTGCCGCCATCGCGGCGCGCGTGTTCTGGAAGATCGAGGAACGTTGACGGGCTCGATGGTTTGTCCCTATCACGGTTGGGTCTACGATCTGGCTGGCAACCTGAGGACGGTGGCGCCCGCTGAGAGTTTCCAAGGCTTGACGTGTGCCGAGCGGAGCCTGACGCGCCTGGCGGTGTACGAGCAGCACGGGCTTATCTGGGTCAGCTCGGTGCCTGGCCGCGTCATCGAGCCGCTGGCGCCGATGGGAGCGCTGACCCAGGAAATCGCCAATTATCACTTCGAGAAATTTGCTCTTTATCGACGCGTTCAGCTCGATAAAGCTTTCAACTGGAAAATGGTCATAGAGACCTTCCTGGAGAACTGGCATTTCCCATTCGTGCATCGCAGAACGGTACTGCCAATTTTCTTGCCCTCGGTCAGCCTGTTCGAGGCATTTGGTCGCCACGGGCGTTTGATCATGCCACGCCGCTCCATCCTGCAGATGCGCGACGAGCCCATTGAGCAATGGAGCCTGCTCAAACATTCGCTGATCATCTATTGGCTGTTTCCCAATACCCTTTTGCTCTGGCAGGGCGATCATCTGGAAACCTGGCAGGTCTTTCCCGATCAAGAACGTGTTAATCGATGCACGGCTCAGGTGTCGCTTTATACGCCGCAGGCCGCGACGTCGGTTCGCGAACGCGAATACTGGGATAAAAACATGGCGCTTTTGCTCGAAACGGTGGACGGCGAAGATTTCGAAATTAGCGAGCGTATCCAGGGCGGCTTGCGCTCCGGCGCCCAGGAACACCTCACATTTGGCCGTCATGAACCGGCGCTGCAGCATTTTCATCGGCAGATCTGGCTGGCTTTGGAAGAGGCCCCGGCGCCGGCCGACTGAMDHQTQLRLTRELLRLIDCNETSQAESLSLNPVTRYTCVAHLAREQAVLFRGVPLMVGLSCELPGSGDYLTDDRCGVPIAVVRLPDGGLSAFVNVCRHRGARVLEDRGTLTGSMVCPYHGWVYDLAGNLRTVAPAESFQGLTCAERSLTRLAVYEQHGLIWVSSVPGRVIEPLAPMGALTQEIANYHFEKFALYRRVQLDKAFNWKMVIETFLENWHFPFVHRRTVLPIFLPSVSLFEAFGRHGRLIMPRRSILQMRDEPIEQWSLLKHSLIIYWLFPNTLLLWQGDHLETWQVFPDQERVNRCTAQVSLYTPQAATSVREREYWDKNMALLLETVDGEDFEISERIQGGLRSGAQEHLTFGRHEPALQHFHRQIWLALEEAPAPADNANANANANA
D1-35_02223993dapF_2Diaminopimelate epimeraseATGACGCAGTTCTACAACGCACGCGGCAACCTCTACGGAGTCGTCTCACCGCAGCAGGTGCGTGCCCAGGGCATCGGCCTGCCGTCGTCCGCCGCCGAGGCGGCCTCGTTACGCCAATCCTGGGCCGGCGCCGCCGTGCAGGCCTTCTGCGCCTGGGCGCCGGGGGAGGCGCCGCCGGATGCCAAGGCTCATCGCAGTGATGGGCTGCTGGTCGGCCCGTTCCAGGACACGCCGCCCTTCGACCTGCTGATCGTCAATACCGACGGGACGCTGGCCGAGCGTAGCGGCAATGGCCTGACGATTTTTTCCCTGGTTCTGCAAGAGCGGGGGTTGCTGGTGGGCGATGACGATTGCGTACTGCAGGTTCACCACGACAAACCCGACGGTATCTCACCGCTGCGGACATCGGTTCGCGCCGCTGAACTGGGCGGGGTCCCAGGCTTCTGGCTGGACCTGGGGACACCGCTGTTCGGGCCCGCTGCCGTGGGCGCTCAAGGTGTAGCAGCGGTGACCTTCAAGCAATGCGCGGTAAGCCGGGTGCCTGCGCTGCATGGCTTGAACCCGGCGTGGGGCAACAGCCAATTCGTGCGCATCGGCAATCCTCATTGCGTAACGCTGGTGGATGACGTGGAGGCGTTGCCAGGTCTTGCGCAGATGCGCGCCGAGGCGCTGGCGCAAAGCCTGACCAACATTGCCTATGCAGCGCCTGGCGGGGCGGGGATTCCTTGTCCGGCGGGCGTCAACCTGCAATGGGCCTGGCGCGCCGCCGACGGACAAATCGCCGCCCGGGTGTTCGAGCGGGGCGAAGGCCCAACCGCGTCCTCCGGCACCAGCGCTTGCGCCGTCGCGTGTGCCGCGTGGTGGGTGGGCTGGGTGCAGGCCGGGACGGTGAGCGTCATGATGCCCGGCGGTACTGCGCCAATCCTGTTGCAAGAGCGGGAGGGTGAGTTGGTACGGGTCAGCCTGTTTGGCACGGCCAGCGCCATGCGTTAGMTQFYNARGNLYGVVSPQQVRAQGIGLPSSAAEAASLRQSWAGAAVQAFCAWAPGEAPPDAKAHRSDGLLVGPFQDTPPFDLLIVNTDGTLAERSGNGLTIFSLVLQERGLLVGDDDCVLQVHHDKPDGISPLRTSVRAAELGGVPGFWLDLGTPLFGPAAVGAQGVAAVTFKQCAVSRVPALHGLNPAWGNSQFVRIGNPHCVTLVDDVEALPGLAQMRAEALAQSLTNIAYAAPGGAGIPCPAGVNLQWAWRAADGQIAARVFERGEGPTASSGTSACAVACAAWWVGWVQAGTVSVMMPGGTAPILLQEREGELVRVSLFGTASAMRPGPT0007230_253DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007230-dapF-K01778NANA
D1-35_022241566amyPGlucan 1,4-alpha-maltotetraohydrolaseATGAAAAGGACGTCACTGCCGGGCTTGCTGCTGGGCATTGTTTTAGCTTTGCCAGCGATGGCTGCAACCGATGCCGTGCGTAATGGCAGCGCAGAGGAAATCCTGCTGCAAGGCTTTCACTGGAACTCCAGCCGCAACACGGAAAAGTGGTACCCGGTGCTCTCGCGCATGGCCAACACGATTGGCGCCGACGGCTTTACCGCCATCTGGATGCCACCGCCATGGGCGGATCAATCAAGTTGGAACAACGGGACCGTTTCGGGGGGCGGCGAAGGTTACTTCTGGCACAGCTTCGAGAAGGACGGCCGCTACGGTACCGACGCACAGCTGCGTCAGGCAGCGGCCGCGCTGAACAAGGCCGGGGTCAAGGTCATCTACGACGTGGTGCCCAATCACATGGCTGAACGAGACGGCCCTTCGATGTTTGTTCGAGGCAGCGGGGAGTGGCGGCAGGACTGCCGCCCTGCATGCGATGAAGGCGACGCATTCGACGAGGGCGACCCGGATCTGAATACCGGCAACCAGCGAGTAGCTGAAACCTTCAAGAATGAGTTCATCAACCTGCGCGACAACTACGGCGCGCAAGGCCTGCGCTTCGACTTCGTCCGGGGTTACGCTCCCGAAACGGTGGATAAGTGGATGGAGGCCTTCGGCAGCCAACAGTTCTGTGTCGGCGAAAACTGGAAAAGCCCTAACGAGTATCCACCGAGTGACTGGCGGCACGGCGCAAGTTGGCAGGAAGTATTAAAAGACTGGTCGGATCGCTCACACTGCCCGGTGTTCGACTTCGCGCTCAAGGAGCGCATGCAGAACGGTCCGATCGCCGAATGGCGCCATGGCCTGAACGGCAATCCAGACCCGGCCTGGCGCCGAATCGCAGTCACCTTCGTCGATAACCACGACACCGGCTACTCACCCGGCGCCTATGGCGGCCAACATCACTGGCCGGTCGCCGATGCGTTGATCAACCAGGCCTACGCTTACATTCTCAGCAGCCCCGGTACGCCGACCGTGTATTGGGCTCACATGTACGACTGGCAACGGGATGAGCTGATTCGTCGGCTGATCAAATTGCGCAAGGACGCGGGTATTCGCGCCGACTCGCCAATCCGCTTCCACCCCAATTACTCGGGATTGGTGGCGACTACCAGCGGCAGCCGAAAAGCCCTGGTAATCGCCCTGCAGTCGGATCTCCAGCAGTTGCCTCAAGGTATGCAGGCAGCGGCACTGGAGTGGGACAACGGCGCCATCCGCATCTGGAGCATCCCTGCCGAACCGCCGCAGGTTTCGGTCAGCTTTCATTGCGACAACCCAGGCGCTCAGCACGGCGAAAGCGTTTACGCCGTTGGGTCGTCCCTGGAATTGGGGGCGTGGGATCCTCGCCACGCCGTGCCGCTGGAGGGCTCCAATAATCGCCGGAGCAGCGTTATCCAACTGCCTGCGCAGCAACAAGTGGAATGGAAGTGCATGGTTCGCCGCCAGGACTCTGCGGAGATTCGTTGGCAGCCAGGGCCGAACGTTTCATTCACCAGTGACACGGCCTACGAGACGACCGGGCGACTTTAAMKRTSLPGLLLGIVLALPAMAATDAVRNGSAEEILLQGFHWNSSRNTEKWYPVLSRMANTIGADGFTAIWMPPPWADQSSWNNGTVSGGGEGYFWHSFEKDGRYGTDAQLRQAAAALNKAGVKVIYDVVPNHMAERDGPSMFVRGSGEWRQDCRPACDEGDAFDEGDPDLNTGNQRVAETFKNEFINLRDNYGAQGLRFDFVRGYAPETVDKWMEAFGSQQFCVGENWKSPNEYPPSDWRHGASWQEVLKDWSDRSHCPVFDFALKERMQNGPIAEWRHGLNGNPDPAWRRIAVTFVDNHDTGYSPGAYGGQHHWPVADALINQAYAYILSSPGTPTVYWAHMYDWQRDELIRRLIKLRKDAGIRADSPIRFHPNYSGLVATTSGSRKALVIALQSDLQQLPQGMQAAALEWDNGAIRIWSIPAEPPQVSVSFHCDNPGAQHGESVYAVGSSLELGAWDPRHAVPLEGSNNRRSSVIQLPAQQQVEWKCMVRRQDSAEIRWQPGPNVSFTSDTAYETTGRLPGPT0019210_14DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-HYDROLASE,PGPT0019210-mta-K22253NANA
D1-35_022251248codACOG0402Cytosine deaminaseATGCACATCATCAACGCCCGCCTGCGCAACCGCGAAGGCTTGCATGAACTGCACCTGGAAAACGGCCTGATCGCCAGCATCGCCCGCCAGACCGAGGCCCCCAGCCTGGGCCCCGAAGACCTCGACGCCGGCGGCAACCTGGTGGTGCCGCCCTTCGTCGAGCCGCACATTCACCTGGACGCCACCCTGACTGCCGGCGAACCGCGCTGGAACATGAGCGGTACGCTGTTCGAAGGTATCGAGTGCTGGGGCGAACGCAAGGCCACCATCACCCACGAAGACACCAAAACCCGCGCCAGGAAGACGCTCCAGGCCCTCGCCGCCCATGGTATCCAGCATGTGCGCACCCACGTCGACGTGACCGACCCGACGCTCACCGCGCTCAAGGCAATGCTGGAAGTGCGCGAGGAAAGCCGTCATCTGGTCGACATGCAGATCGTCGCGTTTCCCCAGGAGGGCATCGAGTCCTACCGCAGCGGTCGCGAACTGATGGAAGAAGCCATCCGCATGGGCGCCGACGTGGTGGGCGGCATTCCGCATTTCGAGTACACCCGCGATCAAGGCGTCAGCTCGGTGAAATTCCTCATGGACCTGGCCGAGCGCACCGGTTGCCTGGTGGATGTGCATTGCGACGAAACCGACGACCCGCACTCGCGCTTCCTCGAGGTACTCGCCGAAGAGGCCCGCAGCCGCGACATGGGCGCCCGGGTCACCGCCAGCCACACCACGGCCATGGGCTCCTACGACAACGCCTACTGCGCCAAGCTGTTCCGCCTGCTCGGGCACTCGGGCATCAGCTTTGTATCGTGCCCCACCGAAAGCATTCACCTGCAAGGACGCTTCGACAACTTCCCCAAACGCCGTGGCGTCACCCGGGTCAATGAACTGCTCGAAGCCGGGATGAACGTCTGCTTCGGCCAGGACTCGATCGTCGACCCGTGGTATCCGTTGGGCAATGGCAACATCCTGCGCGTGCTCGAAGCCGGGCTGCACATCTGCCATATGCTCGGCTACCGCAACCTGCAAAGCGCTTTGGACCTGGTCACTGACAACAGCGCCAAGGCCATGGCCCTGGGCGAACGTTACGGACTGGAACCCGGACGCCCGGCGAACCTGCTGATCCTCTCGGCCGACAGCGACTACGAAGTGATCCGCAGCCAGGGCCTGCCGCTTTACTCGATTCGCAATGGTGAAGTGTTGATGAAGCGGCAGATGCCGGTGGTGGAGTTTCCCCCCCGGGCAGGTTGAMHIINARLRNREGLHELHLENGLIASIARQTEAPSLGPEDLDAGGNLVVPPFVEPHIHLDATLTAGEPRWNMSGTLFEGIECWGERKATITHEDTKTRARKTLQALAAHGIQHVRTHVDVTDPTLTALKAMLEVREESRHLVDMQIVAFPQEGIESYRSGRELMEEAIRMGADVVGGIPHFEYTRDQGVSSVKFLMDLAERTGCLVDVHCDETDDPHSRFLEVLAEEARSRDMGARVTASHTTAMGSYDNAYCAKLFRLLGHSGISFVSCPTESIHLQGRFDNFPKRRGVTRVNELLEAGMNVCFGQDSIVDPWYPLGNGNILRVLEAGLHICHMLGYRNLQSALDLVTDNSAKAMALGERYGLEPGRPANLLILSADSDYEVIRSQGLPLYSIRNGEVLMKRQMPVVEFPPRAGPGPT0021315_1331DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021315-codA-K01485NANA
D1-35_022261272codB_1COG1457Cytosine permeaseATGACTCAGAACGATCCCGGTAACGACTACCCCTTGAGCGAAGTCCCGATGCACGCCCGCAAGGGCCTCGCCTCCACGGCCATGGTGCTGCTGGGTTTCACTTTTTTCACCGCGACCATGTTTGCCGGCGGCAAGTTGGGCGTGGCGTTCGGTTTCGCCGAGATGCTCGGCGTGATTGTCATCGGCAACCTGCTGCTGGGGCTGTACGCGGCCAGCCTGGGTTACATCGCCTTCAAGAGCGGGCTCAATTCAGTGTTGATGGGCCGCTTCTGTTTTGGCGAGGTGGGCAGCAAGCTCAGCGACTTGATCCTGGGCTTCACCCAGATCGGCTGGTACGCCTGGGGCACGGCCACTGCGGCGGTGGTGCTGGGCAAGTATTTCGAATTGAGCCAGGGCACCGTTCTGGGGTTGATGGTGCTGTTCGGGCTGGGCTTCTGCGCCACGGCCTACATCGGCTATCGCGGGCTGGAAATCCTCTCGTACGTCGCCGTCCCGGCGATGATGCTGTTGCTGATCCTCTCGATGTGGGTTGCCACGCAGCAGGTCGGTGGCCTCGATGGCCTGCTCGCGGTAGTGCCCACCGGCAGCCTCGACTGGTCGACCGCGATCACGCTGGTGTTCGGCACGTTCGTCAGCGGCGCCACCCAGGCGACCAACTGGACGCGCTTTTCCCGTTCGGCAAAGGTCGCGGTGCTGGCCAGCCTGATCGGTTTTTTTCTCGGCAATGGCCTGATGGTGCTGATCGGCGCCTACGGAGCCATCGTCTACCAGCAGCCCGATGTGGTCGAAGTCTTGCTGCTGCAAGGTTTCGCCATGGCGGCGATGGCGATGCTTCTGCTCAACATCTGGAGCACCCAGGACAACACGATCTACAACTTTGCCGTGGCCGGCTGCAACCTGCTGCGCACCCGCCGACGCAAGACCGTCACACTGGCCGGCGCGGTGATCGGCACGCTGCTGGCGCTGCTGGGCATGTACGATTTGCTGGTGCCGTACCTGATCCTGCTCGGCACCGTGATCCCACCGATTGGCGGGGTGATCATGGCCGACTTCTTCTTCCGCTGGCGTGGTCGCTATCCGCGCCTGGCCGCGGCGCAACTGCCGGCCTTCAACTGGCCCGGGCTGTGTGCTTACGGCGTCGGCACGGTGGCCGCCTTCAATTCACCCTGGGTCGCGCCGCTGGTAGGAATCGCCACCGGCGCGCTAACGTATGTGCTATTGATCGGCGTGATGGGTATTCGCACCGCTGACGCGCCTCTACAAGACCTATAAMTQNDPGNDYPLSEVPMHARKGLASTAMVLLGFTFFTATMFAGGKLGVAFGFAEMLGVIVIGNLLLGLYAASLGYIAFKSGLNSVLMGRFCFGEVGSKLSDLILGFTQIGWYAWGTATAAVVLGKYFELSQGTVLGLMVLFGLGFCATAYIGYRGLEILSYVAVPAMMLLLILSMWVATQQVGGLDGLLAVVPTGSLDWSTAITLVFGTFVSGATQATNWTRFSRSAKVAVLASLIGFFLGNGLMVLIGAYGAIVYQQPDVVEVLLLQGFAMAAMAMLLLNIWSTQDNTIYNFAVAGCNLLRTRRRKTVTLAGAVIGTLLALLGMYDLLVPYLILLGTVIPPIGGVIMADFFFRWRGRYPRLAAAQLPAFNWPGLCAYGVGTVAAFNSPWVAPLVGIATGALTYVLLIGVMGIRTADAPLQDLNANANANANA
D1-35_02227831dhaAHaloalkane dehalogenaseATGACCCACTGGCCGCTGGATCAGGAATACGACTTCAACGGGCACCCCATCCGCTACGCCATTCACGGCGACGGCGCGCCGTTGGTGTTTGTCCATGGCACGCCGTTCTCCTCTTATGTATGGCACCGGATCGCCCCGCTGTTTTTCGCCACGCACAAGGTTCATTACTTCGACCTGTTGGGTTATGGCCAATCCGCGCAACCCGATGCAGACGTGTCCCTCGGTGTTCAGAACCGGCTGCTTGCCCGACTGCTGGAGCATTGGAAGCTGGATTGCCCGGACGTCATCGCCCATGACTTTGGCGGCGCCACGGCCCTGCGCACCCATCTGCTCGATGGCAAGGATTACCGCAGCCTGACCCTGATCGACCCGGTAGCCTTGTCGCCTTGGGGCTCTGCGTTCGTGCAACACGTACGCCAGCACGAAGCGGCGTTCAGCGGCCTGCCCGACTACATCCAGCGGGCCATCGTGCCGACCTATATCCGTGGCGCGATCAAGCGCTGCATTACCGATGAAGAGCTCTCCCCGTACGTCCAGCCCTGGCTCGGCGAAACCGGCCAGGCCGCGCTCTACCGGCAGATTGCGCAGATGGACGAGCGTTACACCGACGAGGTCCAGGACCTTTATCCGAAGGTACGCTGCCCAACGCAGATCCTTTGGGGCGAGGATGACCAGTGGATCCCCATCGAACGCGGCCGGGCGTTGCACAAGATGATCCCGGGGGCGCTGTTCCATCCTGTACCGAATGCCGGGCATCTGGTCCAGGAGGACGCGCCGGAAGCGATCGTCGCGGCGGTGATGCGGTTCTTGCCGTCGCACTCGCCTGCCTGAMTHWPLDQEYDFNGHPIRYAIHGDGAPLVFVHGTPFSSYVWHRIAPLFFATHKVHYFDLLGYGQSAQPDADVSLGVQNRLLARLLEHWKLDCPDVIAHDFGGATALRTHLLDGKDYRSLTLIDPVALSPWGSAFVQHVRQHEAAFSGLPDYIQRAIVPTYIRGAIKRCITDEELSPYVQPWLGETGQAALYRQIAQMDERYTDEVQDLYPKVRCPTQILWGEDDQWIPIERGRALHKMIPGALFHPVPNAGHLVQEDAPEAIVAAVMRFLPSHSPANANANANANA
D1-35_02228357queDCOG07206-carboxy-5,6,7,8-tetrahydropterin synthaseGTGGAAATCTTCAAAGAGTTCACCTTCGAATCCGCCCACCGCCTGCCCCACGTACCGGAAGGCCACAAGTGCGGACGCCTGCATGGTCACTCGTTCAAGGTGGCGATCCACCTCAGCGGCGACATCGACCCGCACACCGGCTGGATTCGCGACTTCTCGGAAATCAAGGCGATTTTCAAGCCGCTCTACGAGCGCCTGGACCACAACTACCTCAACGACATCCCCGGTCTGGAAAACCCCACCAGCGAAGTCCTGGCCAAGTGGATCTGGAACGAGTTGAAGCCGCTGCTGCCGGAACTCAGCGCCATCCGCATCCACGAGACCTGCACCAGCGGCTGCATCTACCACGGCGAATGAMEIFKEFTFESAHRLPHVPEGHKCGRLHGHSFKVAIHLSGDIDPHTGWIRDFSEIKAIFKPLYERLDHNYLNDIPGLENPTSEVLAKWIWNELKPLLPELSAIRIHETCTSGCIYHGEPGPT0007880_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007880-folE2-K09007NANA
D1-35_02229288relE_1COG2026mRNA interferase toxin RelEATGGGCGTTGAATATGATGTCCAATGGGATCCGAAGGCCCTGAAAGAGCTGCGAAAACTGGACGGTGCGGTCCGTCTGCAGCTTTTGAAAAAACTCCAAGAGCGACAAGGGCACCCTCGCGTACCGGGTGATGCTCTTCACGGGATGAAGGATTGTTACAAGATCAAGTTACGCGGGGCTGGGTATCGACTCGTGTATCGCATAGAGGAGGAGCGGATCGTCATTCTGGTAATAGCGGTTGGCAAGCGAGAGCGCAGCGGCGTCTACGCTTCAGCCAGGACCCGGTAGMGVEYDVQWDPKALKELRKLDGAVRLQLLKKLQERQGHPRVPGDALHGMKDCYKIKLRGAGYRLVYRIEEERIVILVIAVGKRERSGVYASARTRPGPT0027425_915DIRECT 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
D1-35_02230288yafNCOG2161Antitoxin YafNATGCAAATCGTCTTGGCTGATGTGGCTGTCAGCGTATCGGAACTGAAGAAAAATCCGTCCGCGGTCCTGAGTGGCGCGAACGGCTCACCTGTGGCAGTGCTGAACCATAACCGCGTGATGGGCTACATGGTACCGGCGGAGGTCTACGAAGCGATGATAGAGCGCCTGGACGAGTTGGAGCTGGCCCAAGTAGTCAAAGCGCGGATCGAGGCCAACGAATCGCGGGTACGCATATCGCTCGATGACCTTATTGGCGAGGCTGAAGCTGATATCGCCAATGGGCGTTGAMQIVLADVAVSVSELKKNPSAVLSGANGSPVAVLNHNRVMGYMVPAEVYEAMIERLDELELAQVVKARIEANESRVRISLDDLIGEAEADIANGRPGPT0027440_73DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-RelE|StbE-RelB|StbD_TOXIN-ANTITOXIN_SYSTEM,PGPT0027440-antitoxin_stbD-K18923NANA
D1-35_022311080hypothetical proteinATGACCGCCATTCACATCAAGTTCCCCGCGCTGACTCTGAAGGCCGGCCCTCGCGCCTTCAAGCGCATCCGCCAGGCAGGCCTTCAGGCCGCCGATGTCGGCATCCTGCCGGGTGCCGCCGGAGGGCCGAAAGCCTTGGGTATCCAAGGGCTGGACCTGGCGCTGTTCGGCGAATGGCTGCCCGCCGCGCCGCGGGAGCGCTCGCTGATCGGTGCATCGGTCGGCTCCTGGCGCTTCGCCAGCGCCTGTCTGCCGGACGCCGCCGAGGGCATTCGCCGCCTGGGCATCCTGTACAACGAGCAGAGCTTCGCCAAAGGCGTGACCATGGCCGGGGTCAGCCAGAGCTCGCAGCGCATGCTCGACGACCTGCTTGAAGGACGCGACCTGACGATCCTCGACAATCCGCATTACCGGCTCAACATCATGGTAGTCCAGAGTCATGGCCTGTTGGCGCAGGACCATCGCGGCCGGCTGGGCCTGGGGCTGTCCTCGGTGATCGCCGACAACCTGCGCGGCCGGGCGCGGCTGTCGCGGCATTTCGAAAGGCTGATCATCCACGACCCGCGCCTGGCTCCCCCGCTCCATCCGTTGACGGACTTCCCCTCGCGCTTCGTGCCGCTGGAGGCCGGCAACCTGCGCCAGGCACTGCTGGCGTCGGGCTCGATCCCGATGATCATGGAAGGCGTGCGCGACCTGCCCGGCGCCGGCGCGGGCACCTACCGCGATGGCGGCCTGCTGGACTACCACCTTGACCTGCCCTATAGCGGCGAGGGCATCGTGCTCTATCCGCACTTCACCGATCGGGTCATTCCCGGCTGGTTCGACAAAGGCCTGCCATGGCGCCGAGGCGATACCTCGCGCTTGCAGGATGTGCTGCTGCTGGCGCCGTCCCGCGAATACCTGGCTCGCCTGCCCTACGGCAAACTGCCGGACCGCAACGACTTCAAGCGTTTCATGGGCGATGACCCGGCCCGCCGCAAATACTGGCGCACCGCAATGGACGAAAGCCGCCGGCTCGGCGACGAGTTCCTCGAACTGACCGCCAACGGTGGGCTGGGAGAGCGTTTGCTGACCCTTTAGMTAIHIKFPALTLKAGPRAFKRIRQAGLQAADVGILPGAAGGPKALGIQGLDLALFGEWLPAAPRERSLIGASVGSWRFASACLPDAAEGIRRLGILYNEQSFAKGVTMAGVSQSSQRMLDDLLEGRDLTILDNPHYRLNIMVVQSHGLLAQDHRGRLGLGLSSVIADNLRGRARLSRHFERLIIHDPRLAPPLHPLTDFPSRFVPLEAGNLRQALLASGSIPMIMEGVRDLPGAGAGTYRDGGLLDYHLDLPYSGEGIVLYPHFTDRVIPGWFDKGLPWRRGDTSRLQDVLLLAPSREYLARLPYGKLPDRNDFKRFMGDDPARRKYWRTAMDESRRLGDEFLELTANGGLGERLLTLNANANANANA
D1-35_02232309hypothetical proteinGTGAACCGCCTCACTGCCTTTTTCATCGCGGCGCTCATGGTCATCGGTACAGGTCCGGCTCAAGCCAGGGATCTCGATGCCACTGAAGCCCAAAAATTACTGGACGCTGGTACCATCCTGCCTTTTGATCAGCTCAACGCCGCTGCCCTGGCCAAACACACTGGCGCCACGGTGACCGATACCGAGCTGGAAGAGGAATACGGCAAGTACCGCTACAAAGTGGATCTGCGTGATGCCAAGGGCATCGAGTGGGATCTGGAACTCGACGCCGTCACTGGCGAGGTGCTCAAGAATCATCAGGATACGTAAMNRLTAFFIAALMVIGTGPAQARDLDATEAQKLLDAGTILPFDQLNAAALAKHTGATVTDTELEEEYGKYRYKVDLRDAKGIEWDLELDAVTGEVLKNHQDTNANANANANA
D1-35_02233312hypothetical proteinATGAAGCTTAATCTGCGCGCCCGCAATCGTTGGGCGCTGGCGCTGCTGGTGTGTTGTTCGGTGGCCGTGGCCCGCGACCTGGACCAGGACGAGGCCCTGCAACTGCGTCAGCAGGGCGTGATCCTGCCCTTGGAACACCTGCTGCAACAGGCCCTGGATCGCCATCCCGGCGCCAAGTTACTGGAAGCCGAGCTGGAAGAAAAGCACGGCGTCTACATCTACGAAGTCGAGCTGCTGGACACCGACGGCGTCGTGCGCGAACTGGACCTCGAGGCCGCGACCGGCCGTTTACTCAAAGATAAGGAAGACTGAMKLNLRARNRWALALLVCCSVAVARDLDQDEALQLRQQGVILPLEHLLQQALDRHPGAKLLEAELEEKHGVYIYEVELLDTDGVVRELDLEAATGRLLKDKEDNANANANANA
D1-35_02234669qseB_2Transcriptional regulatory protein QseBATGCGCCTGCTACTGGTGGAAGACCATGTTCCCCTGGCCGACGAACTGATGGCCGGGCTCGCCCGGCAGGGCTACGCGGTCGATTGGCTCGCCGACGGGCGCGACGCGGTGTATCAGGGCAGCAGCGAGCCCTACGACCTGATCATTCTCGACCTTGGGCTGCCAGGAGTGCCGGGGCTCGAGGTGCTGGCGCAATGGCGCGCTGGCGGCTTGACCACCCCGGTACTGATCCTCACCGCGCGTGGCTCCTGGGCCGAGCGCATCGAAGGACTCAAGGCCGGGGCCGATGATTACCTGACCAAACCCTTTCACCCTGAAGAACTGCACCTGCGCATCCAGGCGCTGTTGCGACGCTCCCACGGCCAGGTCAACCAGCCGACGCTGCAAGCGGCGGGGTTGCACCTGGACGAAGGCCGGCAATGCGTGATTCGCGACGGCGCCGAGATCCAGCTGACCGCCGCCGAATTCAGGCTGCTGCGCTATTTCATGCTCCACCCCGAGCAAATCCTTTCCAAAAGCCACCTCGCCGAGCACCTCTATGATGGTGAAACCGAGCGCGATTCGAATGTGCTGGAAGTCCACGTCAATCACCTGCGGCGCAAGCTCGGACGCAGCGTGATCGAAACCCGTCGCGGCCAGGGCTACCTGTTCGGCGGACAGGCGCAGTGAMRLLLVEDHVPLADELMAGLARQGYAVDWLADGRDAVYQGSSEPYDLIILDLGLPGVPGLEVLAQWRAGGLTTPVLILTARGSWAERIEGLKAGADDYLTKPFHPEELHLRIQALLRRSHGQVNQPTLQAAGLHLDEGRQCVIRDGAEIQLTAAEFRLLRYFMLHPEQILSKSHLAEHLYDGETERDSNVLEVHVNHLRRKLGRSVIETRRGQGYLFGGQAQPGPT0011060_302DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS|LIPID|IVA_REGULATION,PGPT0011060-phoP-K07660NANA
D1-35_022351314sasA_10Adaptive-response sensory-kinase SasAGTGAGATCCATCCAGCGGCGCCTGAGCCTGGGCCTGATCGGTGTGATGGTGGTGGTCGGCCTGGTCCTCGCGCAGACCAGCCTGTGGTTGTTCGAGTTGGGTTTGCAGCGCTACCTCGAAGCGGGGTTGCGCAATGACAGCGAGAACCTGCTGGTGGCCCTGGTCCGTGGCCCGCAAGGGTTGCAACTGGACGAGCGACGCTTGTCGCCGGCTTACCTGCGACCGTTCTCCGGGCATTATTTCCGCATCGATTTTGCCGACGAGCATTGGCGCTCCCGTTCCCTCTGGGACCAGGAACTGCCGCGGCTCGACCATCCGGGGCTGCACAGCAACCTGCAACTGGGCCCCGAAGGCCAGAAACTGCTGGTGCTGCGCACGGACTACCGGCGCCTGGGCCAGGCAATTTCCATCAGCGTGGCGCAGGACTACACGCCGGTGCGCGACAGTTTCCTGCGGATGCAGCAGGTCGGCCTTGGCCTCGGGTTGGCGGGGTTGCTGCTGATCCTGCTGTTGCAGCGGCTCACGGTGCAGCGCGCCTTGCGGCCGTTGGAGAAGGCCCGGGAGCAGATTGCCCAGCTGCAACGCGGCCAGCGTTCACAACTCGACGAACAAGTGCCCAGGGAACTGGAGCCGCTGGTAGCGCAGATCAACCATTTGCTGGCCCATACCGAAGACAGCCTCAAGCGTTCGCGCAACGCCCTGGGTAACCTTGGCCATGCCTTGAAGACGCCTCTGGCGGTGCTGCAAAGCCTGGCGTCGAACGAAAAGCTCGACCCTTATCCTGAGTTGCGCAAGTTGCTGCTGGATCAACTCGAGCAGGTTCGCCAGCGCCTGAACCGCGAACTCAACCGTGCGCGCCTGTCCGGCGATGCCTTGCCCGGCGCGCACCTGGATTGCGACGCCGAACTGCCGGGTTTGTTGGCGACGCTGAACATGATCCACGGCGAGCATCTGCACCTGGCTTATGTCGCGCCGCCCGGCTTGCACCTGCCCTGGGATCGCGAAGACTTGCTGGAACTGCTGGGCAACCTGCTGGACAACGCTTGCAAATGGGCCGACGCCGAAGTGCGCCTGACCGTGAGCGAGACGCTCGTGGGTTTCCACCTGGCAGTGGAAGACGATGGCCCCGGCATCCCGCCGGATCGCCGCGACCAGGTCTTCAGCCGCGGCACGCGCCTGGATGAGCAGACCGATGGCCATGGCCTGGGGCTGGGCATCGTGCGCGACATCGTCGACACCTGGGGCGGGACATTAGCGTTGGGCGACAGCGAGTGGGGCGGGTTGAAAGTAATGATTGAGCTGCCCAAGCGCTGAMRSIQRRLSLGLIGVMVVVGLVLAQTSLWLFELGLQRYLEAGLRNDSENLLVALVRGPQGLQLDERRLSPAYLRPFSGHYFRIDFADEHWRSRSLWDQELPRLDHPGLHSNLQLGPEGQKLLVLRTDYRRLGQAISISVAQDYTPVRDSFLRMQQVGLGLGLAGLLLILLLQRLTVQRALRPLEKAREQIAQLQRGQRSQLDEQVPRELEPLVAQINHLLAHTEDSLKRSRNALGNLGHALKTPLAVLQSLASNEKLDPYPELRKLLLDQLEQVRQRLNRELNRARLSGDALPGAHLDCDAELPGLLATLNMIHGEHLHLAYVAPPGLHLPWDREDLLELLGNLLDNACKWADAEVRLTVSETLVGFHLAVEDDGPGIPPDRRDQVFSRGTRLDEQTDGHGLGLGIVRDIVDTWGGTLALGDSEWGGLKVMIELPKRNANANANANA
D1-35_022361320hypothetical proteinATGATAAATGCAGTAATTGCCGCGGTTGGCGTCATGCTGGTACTCAGCCTGTCCCGCGTGCATGTGGTGATCGCGCTGATTATCGGCGCGCTGGTGGGTGGCTTGGTAGGTGGCCTGGGGATCGAGGCAACGCTCAAGGCCTTCAATGCGGGCCTTGGCGGCGGCGCGACGGTGGCGTTGTCCTACGCTCTGCTGGGCGCCTTTGCGGTCGCGATCGCCAAATCCGGCATGGCCCATGCCTTGGCCGACAAGGTCCTGGCCATGGTCGACCGCCAGGACACCGCCGGCGGCACGGGCGTCAAATGGCTGCTTATCGGCCTGCTGGGTACGGTCGCGGTGGCCTCGCAGAATATCCTGCCGATCCATATCGCCTTCATTCCGCTGCTGGTGCCGCCACTGCTTTATGTGCTGACCAAGCTGCAACTGGACCGTCGGCTGATCGCTTGCGTCATGACTTTCGGCCTGATCACCCCCTACATGTTCCTGCCGGTGGGCTTCGGCAATATCTTCCTCAACGAAATCCTGCTCGCCAACATCGCCCGCAGCGGTGTCGATGTCAGTGGCATCAACGTCACCCATGCGATGGGCATCCCGGCGCTGGGCATGGTGTTCGGGCTGGTGCTGTCGTTTATCAGCTATCGGAAGAAACGCGTCTACGATCTGAAAAAGATCGCCAGGGCCGAGCAGGTGGCCGTGCGCTACAACCCGCTCAGCCTGTTGGTCGCCGGGTTGGCAATCGCAGCGGCATTCGCCATCCAGCTCCTGCTCGATTCGATGATCATCGGCGCCCTGGCCGGTTTCCTGATTTTCTCGGTGTCGGGCGTGGTGCGCTGGCGCGAGACGGACGACCTGTTCACCGAAGGCATGAAGATGATGGCGATGATCGGCTTCATCATGATCGCCGCCTCGGGCTTCGCCGAAGTGATGAAGGCCACCGGTGAGGTGCAAAGCCTGGTGGAAACCTCGGCGGCCTGGATCGGCCACAACAAGGGCATCGGTGCGCTGTTGATGTTGCTGGTCGGGCTGCTGGTGACGATGGGGATCGGCTCGTCGTTTTCCACGGTGCCGATCCTGGCGACCATTTTTGTGCCGCTGTGCCTGCAACTGGGCTTCAGCCCGCTGGCGATCGTCTGCATCGTCGGCACCGCCGGCGCCCTGGGCGATGCCGGCTCGCCTGCCTCGGATTCGACACTCGGCCCGACCTCCGGCCTGAACATCGACGGCCAGCATCACCACATCTGGGACACCGTGGTCCCGACCTTCCTGCACTACAACCTGCCATTGCTGGCGTTTGGTTGGGTGGCGGCGATGGTGTTGTAGMINAVIAAVGVMLVLSLSRVHVVIALIIGALVGGLVGGLGIEATLKAFNAGLGGGATVALSYALLGAFAVAIAKSGMAHALADKVLAMVDRQDTAGGTGVKWLLIGLLGTVAVASQNILPIHIAFIPLLVPPLLYVLTKLQLDRRLIACVMTFGLITPYMFLPVGFGNIFLNEILLANIARSGVDVSGINVTHAMGIPALGMVFGLVLSFISYRKKRVYDLKKIARAEQVAVRYNPLSLLVAGLAIAAAFAIQLLLDSMIIGALAGFLIFSVSGVVRWRETDDLFTEGMKMMAMIGFIMIAASGFAEVMKATGEVQSLVETSAAWIGHNKGIGALLMLLVGLLVTMGIGSSFSTVPILATIFVPLCLQLGFSPLAIVCIVGTAGALGDAGSPASDSTLGPTSGLNIDGQHHHIWDTVVPTFLHYNLPLLAFGWVAAMVLPGPT0020805_629DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0020805-yuiF-K07084NANA
D1-35_022371680mcpP_1COG0840Methyl-accepting chemotaxis protein McpPATGCGCCTGAGCCTGAAGGCTAAAGTCCTGTCCCTGGCAATCCTGCCGGTATTGCTGTCCGCGGTGATCATCAGCCTGACCACGGCGTTCATCTTGAAGGAACAGGCCAGCAAGGAAGTCCAGCAAACCCGCGAACGTCTGCTCAGCGAGGCCAAGGCCACGCTGCAGAATTACGTCGCGGTCGGCCTTACCGCCATCAAGCCGCTCTACGATGCCGCCGCGCCTGGCGATAACGAGGCGCGCGCCCAGGCAATCAAGTTGCTGTCGAACATCAGCTACGGCAAGGACGGCTACTTCTTCGGCTACGACTCCGAGACCATTCGCCTGTTCAAGGCCAACAGCCCCGACGGCGTGGGCAAGAGTTTCAAGGACAACCGCGACCCGAACGGCGTCTACGTCAACCGTGACCTGGTGAAGGTCGCCAAGGACGGCACGCATTATCTGGAATACAGCTCGCCGCTGCCCGGCAGCAAGGACCTGGTGCCCAAGCTCGGCTACACCGAATACCTGGCCAAGTGGGACCTGGCGGTCGGCAGCTCGGTCAACCTCGACGGCATTGAAGGTCAGGTGGCGCTGGTGGAAGCCAAGGTCCACGATCGCCTGCAAGGCGTGATCCTGAGCATCGTCGGGATCGCCGCGGTGGTACTGCTGGTGATCGCGGTGGTGGGCCTGGTGCTCGCCAATACCATCCTGCGTCCGCTGCACCTGATGAAGGACAACCTCGATGACATCGCCGCGGGCGAGGGCGACCTGACCCGGCGCCTGGCGATTACCAGCCAGGACGAACTGGGCCAACTGGCCGGTTCCTTCAACCGCTTCGTCGACAAGATCCACGGCCTGGTAAGGCAGATCACCGACATGACGTCGCAACTGACCGGCCTGGTGACGCAGGTGTCCGAGCAGGCCCAGCGTTCCGAGCAGGCCATGGAGCGCCAGCGCCACGAGACCGACCAGGTCGCCACGGCGATCAACGAAATGTCCTCCGCCGCCCAGGAAGTCGCCCGCAGTGCCCAGGGCGCAGCCGTCGCGGCCCAGCAGACCGATGAAGAAGGCCAGTCCGCCAAGCGCGTGGTGGCCGGCAGCATCCAGCAGATTCATGCGCTGGTGAACGATATCCGCAGCAGCGGCGTGTCCCTGGACAGCCTGCAACAGGATGTGGCCTCGATTGTCAGCGTGCTCGGTGTGATCCGTTCGATTGCCGAGCAGACCAACCTGCTGGCCCTCAACGCGGCCATCGAGGCTGCGCGTGCCGGTGAGGCGGGCCGCGGGTTTGCGGTGGTTGCCGACGAAGTCCGCGCCCTCGCCAGCCGGACCCAGCAAAGCACCCAGGAAATCCAGGGCATGATCGATCGCCTGCAATCGGGTACCCATGCCGCGGTGGAAGCGATGCGCCGTTCCAGCGAGGCCGGCGACGGCACCTCGGAACGGGCCAACGAGGCGGGCGCCTCCCTGGACACCATGGCGCAACTGATCGGCACCATCAACTCGATGAACGCCCAGATCGCCAGCGCCGCCGAGGAGCAGACCGCGGTGGCTGAAGAAATCAACCGCAGCGTGCATCAGATTGCCGTGGCGGTGGACACTGTCGCCGACGAAACCCAGCTCAGCGCCCAGACTTCTCGCAGCCTGGCCGATCTGGGCCAGCGCCTGGGCAAACTGGTGGGGCAGTTCCGGATCTGAMRLSLKAKVLSLAILPVLLSAVIISLTTAFILKEQASKEVQQTRERLLSEAKATLQNYVAVGLTAIKPLYDAAAPGDNEARAQAIKLLSNISYGKDGYFFGYDSETIRLFKANSPDGVGKSFKDNRDPNGVYVNRDLVKVAKDGTHYLEYSSPLPGSKDLVPKLGYTEYLAKWDLAVGSSVNLDGIEGQVALVEAKVHDRLQGVILSIVGIAAVVLLVIAVVGLVLANTILRPLHLMKDNLDDIAAGEGDLTRRLAITSQDELGQLAGSFNRFVDKIHGLVRQITDMTSQLTGLVTQVSEQAQRSEQAMERQRHETDQVATAINEMSSAAQEVARSAQGAAVAAQQTDEEGQSAKRVVAGSIQQIHALVNDIRSSGVSLDSLQQDVASIVSVLGVIRSIAEQTNLLALNAAIEAARAGEAGRGFAVVADEVRALASRTQQSTQEIQGMIDRLQSGTHAAVEAMRRSSEAGDGTSERANEAGASLDTMAQLIGTINSMNAQIASAAEEQTAVAEEINRSVHQIAVAVDTVADETQLSAQTSRSLADLGQRLGKLVGQFRIPGPT0015710_17866DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_022381062ydiK_2COG0628Putative transport protein YdiKATGAACCGAAAGAACCTCCAAAACAAGTCGCAGATGCTGTTGCTGATCCTGGTCAGCATTGCCTTCGTCTGGATTCTGCTGCCGTTTTATGGGGCGGTATTCTGGGCCGTCATCCTGGGCATCGTCTTTGCGCCGCTGCAACGTCGCTTGCAGTTCAAGTTCGGCTGGCCGCGCAACGTCACGGCACTGTTCACCCTGAGCATCTGCGTGGTGATCGCCATTTTGCCGGTGATCGTCATCAGTACCTTGCTCGTCCAGGAAGGGGCGGCGCTGTACAAGAGCCTGGAAAGTGGCGAGCTGGACGTCGCCGACTACCTGGCGCGTTTCAAGGAGGCGTTGCCGCCGTTCTTCCAGCACCTGCTCGACCGCTTCGGCCTGGGCAACCTGAGTGGCCTGCGAGACAAGATCGTCAAGAGCGCCATGCAGGGCAGCGAATTTTTCGCCACCCAGGCGTTCAGTTTCGGCCAGGGTACGTTCCAGTTTCTGGTGAGCTTCTTCGTGATGCTCTACCTGTTGTTCTTTTTCCTGCGTGACGGCGCGGAGCTGGTGCGCAAGGTGCGCTCGGCCGTTCCGCTGGCCGAGCACCAGAAGCGCCGCCTGCAATTGAAGTTCAACCGGGTGGTGCGGGCGACGGTGAAGGGCAACCTGTTGGTGGCGATCACTCAGGGCGCCCTGGGCGGCCTGATTTTCTGGATCCTGGGTATCCCGACGGTGTTGCCGTGGGCGGTGCTGATGGCTTTCCTGTCGCTGCTGCCGGCGGTGGGGGCGGGCATTGTCTGGGTGCCAGTGGCGGTGTATTTCCTGCTGTCGGGGGCGATCTGGCAGGGCGTGGTGCTGGCGCTGTTCGGGGTCTTCGTGATCGGCCTGGTGGACAACTTCCTGCGCCCGATCCTCGTCGGCAAGGACACCAAGATGCCCGACTACATGGTCCTGATTTCGACGCTTGGCGGGTTGGCCGTATTCGGCCTCAATGGTTTTGTCATCGGGCCACTGATCGCCGCGCTGTTCATGTCCTGCTGGGCGCTGTTCGTCGAGGGCAAGCCGCGGGTGCAGTTGCCCTAGMNRKNLQNKSQMLLLILVSIAFVWILLPFYGAVFWAVILGIVFAPLQRRLQFKFGWPRNVTALFTLSICVVIAILPVIVISTLLVQEGAALYKSLESGELDVADYLARFKEALPPFFQHLLDRFGLGNLSGLRDKIVKSAMQGSEFFATQAFSFGQGTFQFLVSFFVMLYLLFFFLRDGAELVRKVRSAVPLAEHQKRRLQLKFNRVVRATVKGNLLVAITQGALGGLIFWILGIPTVLPWAVLMAFLSLLPAVGAGIVWVPVAVYFLLSGAIWQGVVLALFGVFVIGLVDNFLRPILVGKDTKMPDYMVLISTLGGLAVFGLNGFVIGPLIAALFMSCWALFVEGKPRVQLPNANANANANA
D1-35_02239183hypothetical proteinATGCCCAAGGTTCAAATCATGTCTGTCATTGGCAGCGCCGTCCCCGCCCCACTTCGGGAGCGCGGACTGTTGGCTTGCTGGTATCTGGTGCAGGATGGCGTCACCGTCAGCGGCCCGCTGACTTCCCTGCCCGCCGCCCAGGCCCTGTCGCAACGTATCGGTCCGTACCTGTTGAGCGCCTAGMPKVQIMSVIGSAVPAPLRERGLLACWYLVQDGVTVSGPLTSLPAAQALSQRIGPYLLSANANANANANA
D1-35_02240195hypothetical proteinATGCCCACACAAAATCCCCACCGCATCGTCGGCCTGTGCACTTCCAGCAAGGTCTACAACGTACTGACCGAGCTCAAGCACCTGGAAGGCCACCGCAGCGCCAAGTTCCTTTCCCTGCTCGCGGAAAACCTGGTTCGCAAGGGCCTGCTCAATGAACAGGAAGTGGTGCACATGCTCGATCTGGTGGTCGATTGAMPTQNPHRIVGLCTSSKVYNVLTELKHLEGHRSAKFLSLLAENLVRKGLLNEQEVVHMLDLVVDNANANANANA
D1-35_02242228hypothetical proteinGTGAGCACCGCCCAGATCAGTCTGCCCAAGGGCGTGGGGCCTCACGCTGAAAAGCTGTACGACGCCATCACCCAGGCCAGCACCCCGGAAGAACTGAACCGCGCCGGTGGCAAGGCCGAGGGTTTTGTCCTGGGGCTCGAAAGTACCAAGGCGATCAAGAGCCAGGTCGCCGAGTCGTTGTATGTCATCTACGACGATGCGGCGAGCCAGCGGGCGACGGAGCTGTAGMSTAQISLPKGVGPHAEKLYDAITQASTPEELNRAGGKAEGFVLGLESTKAIKSQVAESLYVIYDDAASQRATELNANANANANA
D1-35_022431197tyrBCOG1448Aromatic-amino-acid aminotransferaseATGAGCCTGTTTTCCGCTGTCGAATTGGCACCACGCGACCCCATCCTGGGCCTCAACGAAGCTTTCAACGCCGACCCCCGTACCAATAAGGTCAACCTGGGCGTGGGTGTTTACTGCAACGAGGAAGGGCGCATTCCGTTGCTGCGCGCCGTGGTCGAAGCCGAGACGATTCGCGTGGCTCAGCATGTTTCTCGCGGTTACCTGCCGATCGACGGCATTGCCGCCTATGACCAGGCAGTCCAGACCCTGCTGTTCGGCAAGGATTCCCCGCTGATCGCATCGGGCCGCGTCATCACCACCCAGGCCGTGGGCGGCACGGGCGCACTGAAAATCGGTGCCGACTTCCTTAAGCAATTGCTGCCGGACGCGGTCGTGGCCATCAGCGACCCAAGCTGGGAAAACCACCGCGCGCTGTTCGAAACCGCCGGTTTCCCGGTGCAGAACTATCGCTACTACGACGCCGCTACCCACGACGTGAACCGCAGCGGCCTGCTGGAAGACCTCAACGCCCTGCCCGACCGTTCGATCGTTGTGCTGCATGCCTGCTGCCACAACCCGACCGGCGTGGACCTGAGCCCGGAAGACTGGAAAAACGTCCTGGCCGTGGTCAAGGCCAAGAACCACGTGCCGTTCCTGGACATGGCCTACCAGGGCTTCGGCAAAGGCATCGACGAAGACGCGGCGGCCGTGCGCCTGTTCGCCGAATCGGGCCTGACCTTCTTCGCCTCCAGCTCGTTCTCCAAGTCGTTCTCCCTGTACGGCGAGCGTGTCGGCGCGCTGTCGATTGTCAGCGAGTCGAAGGAAGAAAGCACCCGCGTGCTGTCCCAGGTCAAGCGCGTGATCCGCACCAACTACTCCAACCCGCCGACCCACGGCGCCAGTATCGTCGCCGCCGTGCTCAACAGCCCTGAGCTGCGCGCACAGTGGGAAGAAGAGCTGGCCGAAATGCGCCTGCGCATTCGTGGCATGCGTGAGCAGATGGTCGACATGCTGGCCAAGGCCGCGCCGCATCACGACTTCAGCTTCGTCGCCCGCCAGAGCGGGATGTTCTCCTACTCCGGCTTGACCGTTGAACACGTGACACGCCTGCGCAACGAGTTCGGCATCTATGCCCTGGACACCGGCCGCATCTGCGTGGCCGCGCTGAACCAGAACAACATCGATGCGGTGACCAAGGCCATCGTCCAGGTGATCTGAMSLFSAVELAPRDPILGLNEAFNADPRTNKVNLGVGVYCNEEGRIPLLRAVVEAETIRVAQHVSRGYLPIDGIAAYDQAVQTLLFGKDSPLIASGRVITTQAVGGTGALKIGADFLKQLLPDAVVAISDPSWENHRALFETAGFPVQNYRYYDAATHDVNRSGLLEDLNALPDRSIVVLHACCHNPTGVDLSPEDWKNVLAVVKAKNHVPFLDMAYQGFGKGIDEDAAAVRLFAESGLTFFASSSFSKSFSLYGERVGALSIVSESKEESTRVLSQVKRVIRTNYSNPPTHGASIVAAVLNSPELRAQWEEELAEMRLRIRGMREQMVDMLAKAAPHHDFSFVARQSGMFSYSGLTVEHVTRLRNEFGIYALDTGRICVAALNQNNIDAVTKAIVQVIPGPT0020310_635DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020310-tyrB-K00832NANA
D1-35_022442016uvrBCOG0556UvrABC system protein BATGTCTGAATTCCAGCTAGTCACTCGCTTCCAGCCCGCCGGCGACCAGCCGGAAGCCATCCGCCTGATGGTGGAAGGCATCGAGGCCGGGCTGGCGCACCAGACCTTGCTCGGTGTGACCGGCTCGGGCAAGACGTTCAGTATCGCCAACGTGATCGCCCAGGTGCAGCGGCCGACCCTGGTGCTGGCGCCTAACAAGACCCTGGCGGCGCAGTTGTATGGCGAGTTCAAGGCGTTTTTCCCGAACAACGCGGTCGAGTATTTCGTCTCCTACTACGACTACTACCAGCCCGAGGCTTATGTGCCTTCGTCGGACACCTTCATCGAGAAGGACGCCTCGATCAACGACCACATCGAACAGATGCGGCTGTCGGCGACCAAGGCGTTGCTTGAGCGCAAGGACGCCATCATCGTCACCACGGTGTCGTGCATCTACGGTCTGGGCAGCCCGGAAACCTATCTGAAAATGGTCCTGCACGTGGATCGTGGCGACAAACTCGACCAGCGCGCCTTGCTCCGGCGCCTGGCGGACTTGCAATACACCCGCAACGACATGGACTTCGCCCGGGCCACGTTTCGGGTGCGCGGCGATGTGATCGACATCTATCCGGCCGAATCGGACCTGGAAGCGATTCGTATCGAGCTGTTCGATGACGAGGTGGAGAGCATCTCGGCGTTCGATCCGCTGACCGGCGAGGTGATCCGCAAACTGCCACGCTTCACGTTCTACCCCAAGAGCCACTACGTGACGCCGCGGGAAACCCTGTTGGGCGCCATCGAGGGCATCAAGGCCGAGTTGCAGGAACGCCTGGAATACCTGCGTTCGAACAACAAACTGGTGGAAGCCCAGCGTCTGGAGCAGCGGACCCGGTTCGACCTGGAAATGATCCTGGAGCTGGGCTACTGCAACGGCATCGAGAACTACTCGCGCTACCTGTCGGGTCGTCCGGCGGGTGCGCCGCCGCCCACGTTGTATGACTATTTGCCGGCCGATGCCCTGCTGGTGATCGACGAATCCCACGTCAGCGTGCCTCAGGTCGGCGCCATGTACAAAGGCGACCGTTCGCGCAAGGAAACCCTGGTGGAATATGGCTTCCGCCTGCCCTCGGCGCTGGATAATCGGCCGATGCGCTTCGACGAATGGGAAGGCGTGAGCCCGCAGACGATTTTCGTCTCGGCCACGCCCGGCAACTACGAAGCCGAGCACGCCGGACGGGTGGTCGAGCAAGTGGTGCGGCCGACCGGGCTGGTGGACCCGCAGGTCGAGGTGCGCCCGGCGCTGACTCAGGTCGATGACCTGCTCTCGGAGATCACCAAGCGCGTGGCGGTGGAAGAGCGGGTGCTGGTGACCACGCTGACCAAGCGCATGGCCGAAGACCTCACCGACTACCTCGCCGACCACGGCGTGCGGGTGCGTTACCTGCACTCGGATATCGACACGGTGGAGCGGGTCGAGATCATCCGCGACCTGCGCCTGGGCACCTTCGATGTGCTGGTGGGGATCAACCTGCTGCGCGAAGGCCTGGACATGCCCGAGGTGTCGCTGGTGGCGATTCTCGACGCGGACAAGGAAGGTTTCCTGCGTTCCGAGCGCTCGTTGATCCAGACCATCGGTCGCGCGGCGCGTAACCTCAACGGCCGGGCGATCCTTTATGCCGATCGCATCACCGGCTCGATGGAGCGCGCCATCGGCGAGACCGAACGCCGTCGCGACAAGCAGATCGCTTTCAACCTGGCCAATGGCATCACGCCCAAGGGCGTGTTCAAGGACGTCGCCGACATCATGGAAGGCGCCACCGTGCCCGGTTCGCGCAGCAAGAAGCGCAAGGGCATGGCCAAGGCCGCCGAAGAGAGCGCCCGCTACGAAGCCGAACTGCGCTCGCCGAGCGAAATCACCAAGCGTATCCGGCAGTTGGAAGAGAAGATGTACCAGCTCGCCCGGGACCTGGAATTCGAAGCAGCGGCGCAGTTGCGTGACGAGATTGGCAAGTTGCGTGAGCGGTTGCTGACTGTCTGAMSEFQLVTRFQPAGDQPEAIRLMVEGIEAGLAHQTLLGVTGSGKTFSIANVIAQVQRPTLVLAPNKTLAAQLYGEFKAFFPNNAVEYFVSYYDYYQPEAYVPSSDTFIEKDASINDHIEQMRLSATKALLERKDAIIVTTVSCIYGLGSPETYLKMVLHVDRGDKLDQRALLRRLADLQYTRNDMDFARATFRVRGDVIDIYPAESDLEAIRIELFDDEVESISAFDPLTGEVIRKLPRFTFYPKSHYVTPRETLLGAIEGIKAELQERLEYLRSNNKLVEAQRLEQRTRFDLEMILELGYCNGIENYSRYLSGRPAGAPPPTLYDYLPADALLVIDESHVSVPQVGAMYKGDRSRKETLVEYGFRLPSALDNRPMRFDEWEGVSPQTIFVSATPGNYEAEHAGRVVEQVVRPTGLVDPQVEVRPALTQVDDLLSEITKRVAVEERVLVTTLTKRMAEDLTDYLADHGVRVRYLHSDIDTVERVEIIRDLRLGTFDVLVGINLLREGLDMPEVSLVAILDADKEGFLRSERSLIQTIGRAARNLNGRAILYADRITGSMERAIGETERRRDKQIAFNLANGITPKGVFKDVADIMEGATVPGSRSKKRKGMAKAAEESARYEAELRSPSEITKRIRQLEEKMYQLARDLEFEAAAQLRDEIGKLRERLLTVPGPT0014920_2842DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014920-uvrB-K03702NANA
D1-35_022451482gltXCOG0008Glutamate--tRNA ligaseATGACCACCGTCCGTACCCGCATCGCGCCTTCGCCTACTGGCGATCCCCATGTCGGCACCGCTTACATCGCCTTGTTCAACTATTGCTTTGCCAAGCAGCACGGCGGTGAGTTCATCCTGCGGATCGAGGACACCGATCAGTTGCGTTCGACCCGCGAGTCGGAACAGCAGATATTCGACGCCCTGCGCTGGCTCGGCATCGACTGGAGCGAAGGTCCGGACGTCGGCGGGCCGCACGGTCCGTACCGCCAGAGCGAGCGTGGCGAGATCTACAAGCAGTACTGCCAGCAGCTGGTGGACATGGGCCACGCGTTTCCTTGCTTCTGCACCGCCGAGGAATTGGACCAGATGCGCGCCGAGCAAATCGCCCGGGGCGAGACCCCGCGCTACGACGGCCGTGCGCTGCTGCTGTCGAAGGAAGAAGTCAACCGTCGCCTGGCCGCGGGCGAACCTCATGTGATCCGCATGAAGGTGCCGAGCGAGGGCGTCTGCGTGGTGCCGGACATGTTGCGTGGCGATGTCGAGATCCCGTGGGACCGCATGGACATGCAAGTGCTGATGAAGACCGACGGCCTGCCGACGTACTTCCTGGCCAACGTGGTCGACGACCATCTGATGGGCATCACCCATGTGCTGCGCGGCGAAGAATGGCTGCCCTCGGCACCGAAACTGATCCTGCTCTATGAGTACTTCGGCTGGGAGCAACCGCAGTTGTGCTACATGCCGCTGCTGCGTAACCCGGACAAGAGCAAGCTGTCCAAGCGCAAGAATCCGACCTCGGTGACCTTCTACGAGCGCATGGGCTTCATGCCCGAGGCGATGCTCAACTACCTGGGCCGCATGGGCTGGTCGATGCCGGACGAGCGCGAGAAGTTCTCGCTGGAGGAGATGGTCGAGCACTTCGACCTGTCCCGCGTCTCCCTGGGCGGGCCGATCTTCGACGTCGAGAAGCTGTCCTGGCTCAACGGCCAGTGGCTGCGCGACCTGCCGGTGGAAGAGTTTGCCGCGCGTGTGCAGAAGTGGGCGTTCAACCCCGAGTACATGATGAAGATCGCCCCGCACGTGCAGGGCAGGGTAGAGACCTTCAGCCAGATCGCGCCATTGGCCGGGTTCTTTTTTGCCGGCGGCGTGACCCCGGATGTGAAGCTGTTCGAATCGAAGAAGCTCTCCGGCGATCAGGTGCGGCAGTTGATGCAGTTGATCCTGTGGAAGCTGGAAAGCCTGCGCCAGTGGGAAAAGGACAGCATCACCGCGACCATCCAGGCGGTGGTTGAACACCTGGAGCTGAAATTGCGCGATGCGATGCCGCTGATGTTTGCCGCGATCACCGGCCAGGCGAGCTCGGTGTCGGTGCTCGATGCGATGGAAATCCTCGGGCCGGACCTGACCCGTTTCCGTCTGCGCCAGGCCATTGATCTGCTCGGTGGCGTGTCGAAGAAGGAGAACAAGGAGTGGGAAAAACTGCTGGGCGCGATTGCCTGAMTTVRTRIAPSPTGDPHVGTAYIALFNYCFAKQHGGEFILRIEDTDQLRSTRESEQQIFDALRWLGIDWSEGPDVGGPHGPYRQSERGEIYKQYCQQLVDMGHAFPCFCTAEELDQMRAEQIARGETPRYDGRALLLSKEEVNRRLAAGEPHVIRMKVPSEGVCVVPDMLRGDVEIPWDRMDMQVLMKTDGLPTYFLANVVDDHLMGITHVLRGEEWLPSAPKLILLYEYFGWEQPQLCYMPLLRNPDKSKLSKRKNPTSVTFYERMGFMPEAMLNYLGRMGWSMPDEREKFSLEEMVEHFDLSRVSLGGPIFDVEKLSWLNGQWLRDLPVEEFAARVQKWAFNPEYMMKIAPHVQGRVETFSQIAPLAGFFFAGGVTPDVKLFESKKLSGDQVRQLMQLILWKLESLRQWEKDSITATIQAVVEHLELKLRDAMPLMFAAITGQASSVSVLDAMEILGPDLTRFRLRQAIDLLGGVSKKENKEWEKLLGAIAPGPT0008460_2321DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0008460-gltX-K01885NANA
D1-35_02250540hypothetical proteinATGAGCGATAAAAAAGCACAAACCCGTGAACGCATTCTCAAGGCCGCCAGCGATGCGCTGATCCAGCGCGGGCCGGCCGAGCCGAGCGTGGGCGAGGTGATGGGCGCGGCAGGGCTGACGGTGGGCGGTTTTTATGCCCACTTCGAAAGCAAGGACGCCTTGATGCTGGAGGCGTTCAAGCAACTGCTCAATCGCCGCCGTGGCCTGATCGCCGACATGGATGCCGAGCTGACAGGCGAAGAGCGGCGCGCGTTGGTCGCGGCGTTCTACCTGTCGCGCAAACATCGTGATTCCACCGAGCAGGCGTGCCCGATCCCGGCCTCGGTCGGCGAGCTCGGGCGACTGCCGGACGCGTTTCGTGAGGTTCTCAGTGAGCATATCGAGCTGATGGTCGCGCAGTTGGCCGCCAGCCCCGAGGATGCGGATAAAGCCCTGGCCGACATCGCCTTGATGGTCGGCGGCCTGGCCCTGGCCCGGGCGTTGGGCCCGGGCGAGTTATCGGATCGTTTGCTGCGCGCCGCCAAGTCGGCGGTGCGCTGAMSDKKAQTRERILKAASDALIQRGPAEPSVGEVMGAAGLTVGGFYAHFESKDALMLEAFKQLLNRRRGLIADMDAELTGEERRALVAAFYLSRKHRDSTEQACPIPASVGELGRLPDAFREVLSEHIELMVAQLAASPEDADKALADIALMVGGLALARALGPGELSDRLLRAAKSAVRNANANANANA
D1-35_02251834rutD_2Putative aminoacrylate hydrolase RutDATGGACAGGTTGAGCTGGATTCGTGGTGTCAATGGCACGCTTGGCCGGATAGCCCCGCGCCTGGTAGCGAAACAAATGCGCAGGGTGTTCATGAGTCCTCGGGCCCTGCCGCCGCGGGACTGGGAGCTGCCATTGCTGGCCTCGTCCGAGCGCATCACCTTGCGCTTCGGCCTGTCTGCGTTGCGCTGGGGCAAAGGCCCGGCGGTGCTGCTGATGCACGGCTGGGAAGGGCGCCCGACGCAGTTCGCGGCGTTGATCAATGCGCTGGTGGAGGCCGGTTATACGGTGGTGGCGCTGGATGGGCCGGCCCATGGTCGCTCGCCGGGTCGCGAGGCCAATGTGCTGCTGTTCGCCAGGGCGATGCTTGAAGCCGCAGCCGAGTTGCCGCCGTTGCAAGCAGTGATCGGCCACTCCATGGGCGGCGCTAGTGCCATGCTGGCGGTTCAGCTTGGGTTGCGGACCGAGACACTGGTCAGCATCGCTGCGCCGGCGCGTATCCTCGGCGTCCTGCGTGGCTTCGCGCGGATGATGGGTTTGCCACCCAGGGCGCGTTCGGCCTTTATTCGCCAGGTGGAGCAGGACGTCGGCATGCAGGCTTCGAAGATGGATGTCGCGCAATATCAGCTGGATATTCCGGGCTTGATTGTCCACGCCGAGGACGATACGTCGGTATCGGTCAAGGAATCACAACTGATCCACGAAGCCTGGTTCGACAGCCGCTTGCTGCGCCTGGGCCAGGGCGGGCATCAACGGGTACTGGCCGACCCCCGCGTCATTGATGGTGTGTTATCACTGCTGGCCGGACGCAGCCTGCAGGCGCGGCAATCGGCCTGAMDRLSWIRGVNGTLGRIAPRLVAKQMRRVFMSPRALPPRDWELPLLASSERITLRFGLSALRWGKGPAVLLMHGWEGRPTQFAALINALVEAGYTVVALDGPAHGRSPGREANVLLFARAMLEAAAELPPLQAVIGHSMGGASAMLAVQLGLRTETLVSIAAPARILGVLRGFARMMGLPPRARSAFIRQVEQDVGMQASKMDVAQYQLDIPGLIVHAEDDTSVSVKESQLIHEAWFDSRLLRLGQGGHQRVLADPRVIDGVLSLLAGRSLQARQSAPGPT0031980_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSFUNGICIDAL_COMPOUNDS|ANTIBIOTICSFUNGICIDAL-POLYENE_COLLIMOMYCINS_METABOLSIM,PGPT0031980-putative_hydrolase-NANANA
D1-35_02252486hypothetical proteinATGGGCTGGGATCGGGCAACGCCGTTCATCATTGATCTTCAAGTGAATGCCGAAGACATCGACGGGCTGGGTCACGCCAATAATGCGGTGTACGTTACCTGGCTGGAGCGCTGCGCGTGGCGCCATTCCCAGCGCCTGGGCCTGGACCTGGTGGAGTACCGCCGGCTTGACCGGGCCATGGCGGTGGTGCGGCATGAGATCGATTACCTGGCGGCGGCCTATGAAGGCGACGAATTGCAGTTGGCGACCTGGATCGTCGACTGGGATCAGCGGCTGAAAATGACCCGGCACTTTCAATTGGTTCGCCCCAGTGATAACGCCACATTGCTGCGCGCCCAGACCACATTTGTCTGCATCGAACTGTCCACCGGCAGGCCCAAGCGCATGCCGCCGGAGTTTATCGAGGGCTACGCAGTGGCGCTGAACCCCTGTGGGAGCGAGCCTGCTCGCGAAGGCGGCGAAACATCCAACAGCTTTGCAAGCTGAMGWDRATPFIIDLQVNAEDIDGLGHANNAVYVTWLERCAWRHSQRLGLDLVEYRRLDRAMAVVRHEIDYLAAAYEGDELQLATWIVDWDQRLKMTRHFQLVRPSDNATLLRAQTTFVCIELSTGRPKRMPPEFIEGYAVALNPCGSEPAREGGETSNSFASPGPT0001850_3076DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0001850-ybgC-K07107NANA
D1-35_02253960dusCCOG0042tRNA-dihydrouridine(16) synthaseATGCAAATTGCCCTGGCGCCCATGGAGGGGTTGGTCGACAACATCCTGCGGGACGTCCTGACCCGTGTTGGCGGTATCGACTGGTGTGTCACCGAGTTCATCCGCGTCAACGACCGTCTGCTCACGCCGGCCTACTTCCATAAGCTCGGCCCTGAACTGCTGACCGGTGCCAGGACGGCTGCCGGAGTGCCGTTGCGGGTGCAGTTGCTGGGTTCCGATCCGGTGTGCCTGGCGGAAAACGCCGCGTTGGCCTGTGAGCTGGGCTCGGAAGTCATCGACCTGAACTTCGGTTGCCCGGCCAAGACGGTGAACAAATCCCGGGGCGGGGCGGTGTTGCTCAAGGAACCGGAGCTGCTCAATCAGATCGTCGAGCATGTCCGCCGCGCGGTGCCGAAACACATCCCCGTCACCGCCAAAATGCGCCTGGGCTTCGACAGCCCGGACGGTGCGCTGGTCTGCGCCACGGCCCTGGCCGAGGGCGGCGCGGCGCACATCGTCGTGCATGCGCGGACCAAGGTTGATGGCTACAAGCCGCCGGCCCACTGGGAATGGATTCCGCGGGTCCAGGACGTGGTCAAGGTACCGGTGTTCGCCAACGGCGATATCTGGAGCGTGGAAGACTGGCGTCGTTGCCGGGAAATCAGCGGCGTTGAAGACATCATGCTCGGCCGCGGCCTGGTTTCCCGCCCTGACCTGGCTCGGCAGATCTCCGCCGCCCGGGCCGGCGAGGAGGTGGTCGAGATGTCCTGGGCTGAACTGCAGCCGATGCTCCAGGACTTCTGGACGCAAGTGGTCGAGCAACTGACGCCACGCCAGGCACCCGGTCGGTTGAAGCAGTGGCTGGCGATGTTGACCCGCAACTACCCCGAGGCGGTCGAGCTGTTCAGTGCCCTGCGCCGGGAAACCGACCTGGACGCAGTGGGTCGTTTGCTGGGTGTGCAGCGCACGGAAGCGGCCTGAMQIALAPMEGLVDNILRDVLTRVGGIDWCVTEFIRVNDRLLTPAYFHKLGPELLTGARTAAGVPLRVQLLGSDPVCLAENAALACELGSEVIDLNFGCPAKTVNKSRGGAVLLKEPELLNQIVEHVRRAVPKHIPVTAKMRLGFDSPDGALVCATALAEGGAAHIVVHARTKVDGYKPPAHWEWIPRVQDVVKVPVFANGDIWSVEDWRRCREISGVEDIMLGRGLVSRPDLARQISAARAGEEVVEMSWAELQPMLQDFWTQVVEQLTPRQAPGRLKQWLAMLTRNYPEAVELFSALRRETDLDAVGRLLGVQRTEAAPGPT0013740_4DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927NANA
D1-35_02255453ibpACOG0071Small heat shock protein IbpAATGAGTACTGCATTTTCGCTGGCCCCTCTGTTCCGTTCCTCGGTGGGCTTCGACCGTTTCAACGACCTGTTCGAAACCGCCCTGCGTAACGAACCGGGCAGCAGCTATCCACCCTACAACGTGGAAAAACATGGCGATGACGAATACCGCATCGTAGTCGCCGCCGCCGGTTTCCGCGAAGAGGACCTGGACCTGCAAGTGGAAAAAGGTGTGCTGACCATCAGCGGCGGCAAGCGCGAGGCCAGCAACGACAGCGTGACCTTCCTGCACCAGGGCATCGCCCAGCGTGCGTTCAAGCTGTCCTTCCGGTTGGCGGATCATATCGAGATCAAGTCCGCCGGCCTGAGCAACGGTCTGTTGAGCATTGACCTGTTGCGTGTGGTGCCGGAAGAGGCGAAAGCCAAGCGCATCCCGATCAACGGTGCGCAACAGCAAGCCGCACTGGAAAATTGAMSTAFSLAPLFRSSVGFDRFNDLFETALRNEPGSSYPPYNVEKHGDDEYRIVVAAAGFREEDLDLQVEKGVLTISGGKREASNDSVTFLHQGIAQRAFKLSFRLADHIEIKSAGLSNGLLSIDLLRVVPEEAKAKRIPINGAQQQAALENPGPT0014641_1039DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014641-ibpA-K04080NANA
D1-35_022563279hypothetical proteinATGCCCAAACCCGCCGACCATACTCCGCCCCTGCCGCGTATCCAGGCGCTCGACCCGAAACGGTCGGAGCAAAGCTGGGAAAGCGCGCCACAGTTGCTCGCCGCCCTGAACGGAGCGCGGCTGGGGGCCTGGTCGTGGGACATCGATACCGGCCAGATCAGCTGGTCCCGAGGCACCCAGGCGTTGTTCGGCTTCGACCCGCGCCAGCCATTGCCGGCGGACGTCGACTACCTCGACCTGCTGCTGCCCGAGGATCGGGCCAGGGCCGTGCGGGCCTTCCATGCAGCCGTGTCCGGCGTGCCGCTGGAACAGGCGATGCACCACCGCATCGTCTGGCCCGATGGCAGCCTGCACTGGCTGGAAATCAGTGGCAGCGTACTGCCTGACAAGCACGGTCGCCCGCGCATGATCGGGGTGATCCGCGAAATCACCCACCAGCGCGAACGGGAACAGGCGCTGCGCAGCTCGGAGAAACGCTTCGCGACACTGTTCCACCTGTGCCCGAACATGGTCCTGCTGACCCGCCAGGAAGATGGGCTGATCAGCGAAGCCAACCAGTATTTCGAAAGCCTGTTCGGCTGGCCGGTCCACAATGTGATCGGCCGCACCACCCTGGAACTGGGCCTGTGGGTCGACCCCACGCAGCGCGCCAAACTGGTAGAGGCCACCAAGGCCAAGGGCGAGCTGGTGAGCATGGAAGTGCAATTCCGCGCCAGTAACGGCCAGGTCCACAACGGTATCCTCAGCGCCCAGAAAGTCGAACTCGAAGGCCAGCCTTATTTACTGAGCACCTTCCTCGACACCACCGAACGCAAACTTGCCGAACAGGCCCTCAAGGACAGCCAGGAGCGCCTGGACCTGGCCCTCGACTCGGCGCAACTGGGTACCTGGGACTGGCACATCCCCAGCGGCATGCTCTACGGCTCGGCCCGGGCCGCGCAGCTCCATGGCCTGGAGCCCCAGGCGTTCCACGAATCGTTCGATGCGTTTTTCGAGGGCGTGCCTACCGAAGAACGCAACAACATGCGCAACGCCTACCGCAGCCTGCGTGAAGGCCCGGCGGGCAATTACCAGCTGACCTACCGCGTGCAACTGCCGGACGGCAGCTCGCGTTACCTGGAAAGTCGCGCCCGTCTCTACCGCAACGACGACGGCAGCCCGCTGCGCATGGCCGGCACCTTGCTCGACATCACCGACCAGGTGGAGCGCGAACAGAGCCTGGCGGCTTCGGAAGAAAAATTCGCCACGTTGTTCCAGGTCAGCCCCGATCCGATTTGCCTTACCCACCAGGACGACGGCACGTTCCTGGAAATAAACTCCAGTTTTACCCAGACATTCGGCTGGGCGGCCAATGATGTGCTGGGCCGCAGCGCCGACGAGATCGGCCTGTGGGAAGCTTCGGGCAGCAGCCTGCAGCGCATCGAACGGGTGATCCGCGAGCAGTCGCTGAGCAATGTCGCCATCGTCGTCCACCACAAGAACGGCCAGCCGCTGACCTGCGTGATCTCCAGCCGGCAGATCAGTGTCGGCAACCAGCCCTGCATCGTCACCACCCTGCGGGACATCACCCAGCAACAACGCTCCGAAGCGGCACTGAAAGCCAGCGAGGAAAAATTCGCCAAGGCATTCCACTCCAGCCCCGACGCGATCACCATTACCGAATGCGAAAGCGGCCGCTACCTTGAGGTCAACGATGGCTTCTGTCGCCTGACCGGTTATCGCGCCGACGAAGTCATCGGCCATACCGTCTACGAGGTCGGCATCTGGGCCGAAGAAAAGCAACGGACGGCGCTGCTCGCCGAATTGCAGCTCAAGGGCCGCGTTCTCCACCAGGAAATGCTCGGGCGCAACAAGCGCGGGGAAATCCTCACGGTGGAAGTATCGGTCGAGCCCATCACGCTCAACGAAACCGCATGCCTGCTGCTGACCGCCCGTGACGTGAGCCTGCTGCGCAACGCCGAGGCGCAGATCCGTCACCTCGCCTATCACGACCCGCTGACCAACCTGCCCAACCGCGCGCTGCTGCTGGACCGGCTCAGCCAGCAGATCGCCCTGCTCAAGCGCCATAACCTGCGCGGGGCGTTGCTGTTCCTCGACCTCGACCATTTCAAGCACATCAATGATTCGCTCGGCCATCCGGTTGGCGACACGGTGCTGAAGATCATCACCGCGCGCCTCGAAGCCAGCGTGCGCCTCGAAGACACCGTGGCGCGCCTGGGCGGCGATGAATTCGTCGTGCTGCTCAGCGGCCTGGAAGGCACGCGTGGCGTGGTCAGCCAGCAGGTGCAGACCCTGGCCGACACCCTTCGCGAACTGCTTTCCGAGCCGATGTTTCTCGATGGGCAACGACTGCAAGTCACCCCCAGCATCGGCATGGCGCTGATACCGGACCACGGCTCCACGCCCACTGACCTGCTCAAGCGCGCCGATATCGCCCTGTACCGCGCCAAGGATTCGGGACGCAATACCTCGCAGATGTTCCACGCCACCATGCAAAAAGCCGCCAGCGAACGGCTGCGCATGGAAACCGACCTGCGCCAGGCCCTGGCTCGCAACGAGTTCAGCGTGCATTTCCAGCCACAGGTCGATGCCCGGGACAACCGCATCGTTGGCGCCGAAGCGCTGGTGCGCTGGCATCATCCGGACCTGGGCGCGCAATCACCCAATGAGTTCATCAAGGTGCTGGAGGACAGCGGCCTGATCCTGGAAGTCGGCACCTGGATCCTCGACGAAGCCTGCGATGGCTTCAAACAACTGATCGCCAAGGGCAAGGTCGACCCCCGACGGTTCAAACTGTGCGTGAATATCAGCCCCCGGCAGTTCCGCCAGAGCGACTTCGTCGAGCGCATCGAAACCAGCCTCGCCAGCCATGGCCTGCCCTATTCCCTGCTGAAGCTGGAAATCACCGAAGGCATCGTGATCCACAACCTGGACGACACCATCGGCAAGATGCGCCGCCTGAAGAAATTGGGGGTGAGCTTTGCCATGGACGACTTCGGCACCGGTTATTCATCGCTGACTTACCTCAAGCGCCTGCCGGTGGACACGCTGAAAATCGACCAATCGTTCGTACGTGACGCCACCAGTGACCCCAACGACGCCGAGATCATCCGCGCCATCGTCGCCATGGCCCGCAGTCTGAACCTGGAAATGATTGCCGAAGGCGTCGAGACGCTGGAGCAACTGAAGTTTTTGCAGGGGCTCGATTGTCATTTGTACCAGGGTTACCTGCACAGCCGGCCATTGCCGCTGGAGGCGTTCGAGCGGTTGTTGCCTTAGMPKPADHTPPLPRIQALDPKRSEQSWESAPQLLAALNGARLGAWSWDIDTGQISWSRGTQALFGFDPRQPLPADVDYLDLLLPEDRARAVRAFHAAVSGVPLEQAMHHRIVWPDGSLHWLEISGSVLPDKHGRPRMIGVIREITHQREREQALRSSEKRFATLFHLCPNMVLLTRQEDGLISEANQYFESLFGWPVHNVIGRTTLELGLWVDPTQRAKLVEATKAKGELVSMEVQFRASNGQVHNGILSAQKVELEGQPYLLSTFLDTTERKLAEQALKDSQERLDLALDSAQLGTWDWHIPSGMLYGSARAAQLHGLEPQAFHESFDAFFEGVPTEERNNMRNAYRSLREGPAGNYQLTYRVQLPDGSSRYLESRARLYRNDDGSPLRMAGTLLDITDQVEREQSLAASEEKFATLFQVSPDPICLTHQDDGTFLEINSSFTQTFGWAANDVLGRSADEIGLWEASGSSLQRIERVIREQSLSNVAIVVHHKNGQPLTCVISSRQISVGNQPCIVTTLRDITQQQRSEAALKASEEKFAKAFHSSPDAITITECESGRYLEVNDGFCRLTGYRADEVIGHTVYEVGIWAEEKQRTALLAELQLKGRVLHQEMLGRNKRGEILTVEVSVEPITLNETACLLLTARDVSLLRNAEAQIRHLAYHDPLTNLPNRALLLDRLSQQIALLKRHNLRGALLFLDLDHFKHINDSLGHPVGDTVLKIITARLEASVRLEDTVARLGGDEFVVLLSGLEGTRGVVSQQVQTLADTLRELLSEPMFLDGQRLQVTPSIGMALIPDHGSTPTDLLKRADIALYRAKDSGRNTSQMFHATMQKAASERLRMETDLRQALARNEFSVHFQPQVDARDNRIVGAEALVRWHHPDLGAQSPNEFIKVLEDSGLILEVGTWILDEACDGFKQLIAKGKVDPRRFKLCVNISPRQFRQSDFVERIETSLASHGLPYSLLKLEITEGIVIHNLDDTIGKMRRLKKLGVSFAMDDFGTGYSSLTYLKRLPVDTLKIDQSFVRDATSDPNDAEIIRAIVAMARSLNLEMIAEGVETLEQLKFLQGLDCHLYQGYLHSRPLPLEAFERLLPPGPT0023624_512DIRECT 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
D1-35_02257930cmpR_2HTH-type transcriptional activator CmpRATGCTTTGCATAACCAACTGGAATCCGACCAGAAACGCCATGGACCTCGCCAACCTCAATGCCTTTATTGCCATTGCTGAAACCGGCAGTTTTTCCGGTGCCGGTGAACGCCTGCACCTGACGCAACCGGCCATCAGCAAGCGTATCGCCGGCCTCGAGCAGCAGCTCAACGTGCGCCTGTTCGACCGTCTGGGCCGGGAAGTCAGCCTGACCGAAGCCGGTCGGGCCCTGCTGCCACGGGCCTATCAGATTCTCAACGTGCTGGACGACACCCGCCGCGCCCTGACCAACCTGACCGGCGAAGTGACCGGGCGCCTGACCCTCGCCACCAGCCACCATATCGGCTTGCACCGGCTGCCACCGCTGTTGCGGGAGTTCACCCGACGCTACCCGCAGGTGGCACTGGATATTCAGTTCCTGGATTCGGAAGTGGCCTACGAGGAAATTCTCCATGGCCGGGCGGAACTGGCGGTCATCACCCTGGCCCCCGAGCCCCACACGCTGGTACGGGCCACGCCGGTGTGGGACGACCCGCTGGATTTCGTGGTGGCGCCGGAACACGCCCTGCTGGAAAACAGCGCCGTCAGCCTGGCGGACATTGCCCTTCATCCGGCGGTTTTCCCGGGAGGCAACACGTTTACCCACCACATCGTGCAGCGGCTGTTCGAAGCCCAGGGCCTGACGCCGAACATCGCAATGAGCACGAATTATCTGGAAACCATAAAGATGATGGTGTCCATCGGCCTGGCCTGGAGCGTTTTGCCGCGCACGATGCTTGATGATCAAGTGGCGCGTGTGCCTTTGCCGGGCATACAGCTCAGTCGCCAGCTAGGCTATATCCTGCACACCGAAAGGACGCTGTCGAACGCTGCACGGGCTTTCATGGCTCTATTGGACGCACAAATCGATCTGCCAGGGACAAGGGCATAAMLCITNWNPTRNAMDLANLNAFIAIAETGSFSGAGERLHLTQPAISKRIAGLEQQLNVRLFDRLGREVSLTEAGRALLPRAYQILNVLDDTRRALTNLTGEVTGRLTLATSHHIGLHRLPPLLREFTRRYPQVALDIQFLDSEVAYEEILHGRAELAVITLAPEPHTLVRATPVWDDPLDFVVAPEHALLENSAVSLADIALHPAVFPGGNTFTHHIVQRLFEAQGLTPNIAMSTNYLETIKMMVSIGLAWSVLPRTMLDDQVARVPLPGIQLSRQLGYILHTERTLSNAARAFMALLDAQIDLPGTRANANANANANA
D1-35_022581419leuC_1COG00653-isopropylmalate dehydratase large subunitATGGCCGGCAAAACGCTCTACGACAAGCTCTGGGATTCGCATTTGGTCAAGCAGCGCGACGATGGCTCGGCGCTGATCTACATCGACCGCCACATCATTCACGAAGTGACCTCGCCGCAAGCCTTCGAAGGTCTGCGTCTGGCCGGGCGCAAGCCTTGGCGCATCGATGCCAACATCGCGACCCCGGACCACAACGTGCCGACCACGCCGGAGCGCAAGGGTGGCATCGAAGCCATTGCCGACCAGGTTTCGCGCCTGCAAGTCCAGACCCTTGACGACAACTGTGATGAATACGGCATCGTCGAATTCAAGATGAATGACGTCCGCCAGGGCATCGTCCACGTGATCGGCCCGGAGCAGGGCGCGACCTTGCCGGGCATGACCGTGGTCTGTGGTGACTCGCATACCTCGACCCACGGCGCCTTTGGTGCGCTGGCCCACGGTATCGGCACCTCCGAGGTCGAGCACGTGCTCGCTACCCAGTGCCTGGTCGCCAAGAAAATGAAAAACATGCTGGTGCGCGTCGAGGGCAAGCTGCCTTTCGGCGTGACCGCCAAGGACATCGTCCTGGCCGTGATCGGCAAGATCGGCACCGCCGGCGGTAATGGCCACGCCATCGAATTCGCCGGTAGCGCGATCCGCGATTTGTCCGTCGAAGGCCGCATGACCATCTGCAACATGTCCATCGAAGCCGGCGCCCGCGTCGGCCTGGTGGCCGCCGATGAAAAAACCGTGGAATACGTCAAGGGCCGGCCGTTCTCCCCGAAAGGCGCCGAATGGGACATGGCGGTCGAAGCCTGGAAAGACCTGGTCTCCGACCCGGACGCCAGGTTCGACACCGTGGTCGAGCTCGACGCGACGCAGATCAAGCCGCAAGTCAGCTGGGGCACATCGCCGGAAATGGTCCTGGCCGTGGACCAGAACGTGCCGGACCCGGCCAAGGAAATGGACCTGGTCAAGCGTGACTCCATCGTCCGCGCCTTGAAATACATGGGCCTGAGCGCCAACCAGGCGATCACCGACATTCAGCTCGACCGTGTGTTCATCGGTTCCTGCACCAACTCGCGGATCGAAGACTTGCGCGCCGCCGCCGTGATCGCCAAGGGCCGCAAGGTTGCCTCGACGATCAAGCAGGCGATCGTGGTGCCGGGCTCGGGGCTGGTGAAAGCCCAGGCCGAAGCGGAAGGGCTGGACAAGATTTTCCTCGAGGCCGGTTTCGAATGGCGCGAGCCAGGCTGCTCGATGTGCCTGGCGATGAACCCGGATCGCCTGGAGTCGGGCGAGCACTGCGCCTCGACGTCCAACCGAAACTTCGAAGGCCGCCAGGGCGCCGGTGGGCGTACGCACCTGGTGAGCCCGGCGATGGCCGCCGCCGCTGCCGTCAACGGCCGTTTTGTCGATGTCCGCGAATTGATCTGAMAGKTLYDKLWDSHLVKQRDDGSALIYIDRHIIHEVTSPQAFEGLRLAGRKPWRIDANIATPDHNVPTTPERKGGIEAIADQVSRLQVQTLDDNCDEYGIVEFKMNDVRQGIVHVIGPEQGATLPGMTVVCGDSHTSTHGAFGALAHGIGTSEVEHVLATQCLVAKKMKNMLVRVEGKLPFGVTAKDIVLAVIGKIGTAGGNGHAIEFAGSAIRDLSVEGRMTICNMSIEAGARVGLVAADEKTVEYVKGRPFSPKGAEWDMAVEAWKDLVSDPDARFDTVVELDATQIKPQVSWGTSPEMVLAVDQNVPDPAKEMDLVKRDSIVRALKYMGLSANQAITDIQLDRVFIGSCTNSRIEDLRAAAVIAKGRKVASTIKQAIVVPGSGLVKAQAEAEGLDKIFLEAGFEWREPGCSMCLAMNPDRLESGEHCASTSNRNFEGRQGAGGRTHLVSPAMAAAAAVNGRFVDVRELIPGPT0001442_1709DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0001442-leuC-K01703NANA
D1-35_02259645leuD1COG00663-isopropylmalate dehydratase small subunit 1ATGAAAGCTTTCACCCAGCACACCGGTCTTGTCGCGCCTTTGGATCGTGCCAACGTCGACACCGACCAGATCATCCCCAAGCAATTCCTGAAGTCCATCAAACGCACCGGCTTCGGCCCGAACCTGTTTGACGAATGGCGTTACCTGGATGTGGGCCAGCCGTACCAGGACAACTCCAAGCGGCCGTTGAACAAGGACTTCGTGCTCAATGCCGAGCGTTACCAAGGCGCCAGCGTATTGCTGGCCCGCGAGAACTTCGGTTGCGGTTCGAGCCGCGAGCACGCGCCATGGGCCCTGGAAGAATACGGTTTTCGCAGCATCATCGCGCCGAGCTACGCCGACATCTTCTTCAACAACAGCTTCAAGAACGGCCTGCTGCCGATCATTCTCAGCGATGCCGAAGTGGACGAGCTGTTCCAGCAGGTCGAGGCCAACCCTGGCTATCAACTGCAGATCGACCTGGCGGCCCAGACCGTGACCCGTCCCGACGGCAAGGTGCTGGGTTTTGAAATCGACGCGTTCCGCAAGCACTGCCTGCTCAACGGCCTGGACGACATCGGCCTGACCCTGCAGGACGGCGAGGCGATTGCCGCGTTCGAAGCCAAGCACCGGGCGAGCCAGCCTTGGTTGTTTCGTGATGCTTGAMKAFTQHTGLVAPLDRANVDTDQIIPKQFLKSIKRTGFGPNLFDEWRYLDVGQPYQDNSKRPLNKDFVLNAERYQGASVLLARENFGCGSSREHAPWALEEYGFRSIIAPSYADIFFNNSFKNGLLPIILSDAEVDELFQQVEANPGYQLQIDLAAQTVTRPDGKVLGFEIDAFRKHCLLNGLDDIGLTLQDGEAIAAFEAKHRASQPWLFRDAPGPT0001443_742DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0001443-leuD-K01704NANA
D1-35_02260765ycgJputative methyltransferase YcgJATGACCAGCACCGCCCACAGCCAAGTCGTTCAAAAGCAATTCGGCGAACAGGCCTCGGCCTACCTGAGCAGCGCCGTGCACGCCCAGGGCGCCGAATTCGTGCTGCTGCAGGCCGAGCTGGCCGGTCACGCCAATGCCCGTGTGCTGGACCTGGGCTGTGGCGCCGGGCATGTGAGCTTCCATGTGGCGCCGCTGGCCGGCGAGGTGGTGGCCTACGACCTGTCCCAACAGATGCTCGACGTGGTTGCCGCGGCGGCGGCCGAGCGTGGCCTGGGCAATATCGGCACGGTACGTGGCGCCGCCGAGCGGCTGCCGTTCGCCGACGGCGAGTTCGACTTCGTGTTCAGCCGCTATTCGGCGCATCATTGGAGTGACCTGGGCCTGGCTTTGCGGGAAGTGCGCCGGGTGCTCAAGCCGGGCGGCGTAGCGGCGTTCATTGATATCCTGTCGCCGGGCATGCCGCTGCTTGATACCTACCTGCAAAGCGTCGAAGTGCTGCGCGACACCAGCCATGTGCGCGACTATTCGGCTGCCGAGTGGTTGCAGCAGGTCAGCGACGCGGGGCTGCACACCCGTAGCACCTCGCGCCAGCGTCTGCGCCTGGAATACCGTTCGTGGGTCGAGCGCATGCGTACTCCGGAGGTAATGCGGGCGGCGATTCTCGAGCTGCAGCGCTCGATGGGCGATGAAGTGCGTGAATATTTTCAGATTGAGGCCGATGGATCGTTCAGCACGGATGTACTGGTGCTGTGGGCCGAGCGATAGMTSTAHSQVVQKQFGEQASAYLSSAVHAQGAEFVLLQAELAGHANARVLDLGCGAGHVSFHVAPLAGEVVAYDLSQQMLDVVAAAAAERGLGNIGTVRGAAERLPFADGEFDFVFSRYSAHHWSDLGLALREVRRVLKPGGVAAFIDILSPGMPLLDTYLQSVEVLRDTSHVRDYSAAEWLQQVSDAGLHTRSTSRQRLRLEYRSWVERMRTPEVMRAAILELQRSMGDEVREYFQIEADGSFSTDVLVLWAERNANANANANA
D1-35_022611083leuB3-isopropylmalate dehydrogenaseATGAGCAAGCAGATTCTGATTCTCCCAGGTGATGGCATCGGCCCGGAAATCATGGCCGAGGCGGTCAAGGTCCTGGAGCTGGCGAACGCCAAGTACGGCCTGGGTTTCGAACTCAGCCACGACGTGATCGGTGGCGCCGCCATCGACAAGCACGGCGTGCCGCTGGCCGATGAAACCCTGGACCGTGCCCGTGCCGCCGATGCCGTGCTGCTGGGCGCCGTGGGCGGGCCGAAATGGGACAAGATCGAACGCGACATCCGCCCCGAACGCGGGCTGCTGAAGATTCGCGCGCAACTGGGCCTGTTCGGCAACCTGCGTCCGGCGATTCTTTATCCGCAACTGGCCGATGCATCGAGCCTGAAGCCGGAAATCGTCTCCGGCCTGGACATCCTCATCGTGCGTGAGCTGACCGGCGGTATCTACTTCGGTGCCCCGCGCGGTACCCGTGAGCTGGAAAACGGCGAGCGCCAGGCCTACGACACCCTGCCGTACAGCGAAAGCGAAATCCGCCGTATCGCCCGGGTCGGCTTCGACATGGCCCGCGTGCGTGGCAAGAAGCTGTGCTCGGTGGACAAGGCCAACGTGCTGGCGTCCAGCCAACTGTGGCGCGAAGTGGTCGAGCAGGTGGCCAAGGATTATCCGGACATCGAGCTGAGCCACATGTACGTCGACAACGCCGCGATGCAACTGGTGCGCGCGCCGAAGCAGTTCGATGTGATCGTCACCGACAACATGTTCGGCGACATCCTGTCCGACGAAGCGTCGATGCTCACCGGTTCCATCGGCATGCTGCCGTCGGCCTCCCTGGATGCCAACAACAAAGGCATGTACGAGCCGTGCCACGGCTCGGCGCCGGACATTGCCGGGCAGGGCATTGCCAACCCGTTGGCGACCATCCTGTCGGTGTCGATGATGCTGCGCTACAGCTTCAACTTGAACGATGCCGCCGACGCGATTGAAAAATCCGTCAGCGTGGTCCTGGACCAGGGCTTGCGCACCGGTGACATCTGGTCACAAGGTTGCACCAAGGTCGGTACGCAGCAAATGGGCGATGCAGTAGTCGCCGCGCTGCGGAATCTGTAAMSKQILILPGDGIGPEIMAEAVKVLELANAKYGLGFELSHDVIGGAAIDKHGVPLADETLDRARAADAVLLGAVGGPKWDKIERDIRPERGLLKIRAQLGLFGNLRPAILYPQLADASSLKPEIVSGLDILIVRELTGGIYFGAPRGTRELENGERQAYDTLPYSESEIRRIARVGFDMARVRGKKLCSVDKANVLASSQLWREVVEQVAKDYPDIELSHMYVDNAAMQLVRAPKQFDVIVTDNMFGDILSDEASMLTGSIGMLPSASLDANNKGMYEPCHGSAPDIAGQGIANPLATILSVSMMLRYSFNLNDAADAIEKSVSVVLDQGLRTGDIWSQGCTKVGTQQMGDAVVAALRNLPGPT0001441_2109DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0001441-leuB-K00052NANA
D1-35_022621113asdCOG0136Aspartate-semialdehyde dehydrogenaseATGAAACGTGTAGGTCTGATCGGTTGGCGCGGCATGGTCGGTTCCGTGCTCATGCAGCGAATGCTGGAAGAGCAGGATTTCGATCTCATTGAGCCGGTGTTTTTCACCACCTCCAACGTCGGTGGCCAGGGCCCGTCCGTGGGCAAGGACACCGGTGTGCTCAAGGATGCCTACAGCATCGAAGAGCTCAAGACCCTCGACGTGATCCTGACCTGCCAGGGCGGCGACTACACCAGCGAAGTGTTCCCCAAGCTGCGTGAAGCCGGCTGGCAGGGTTACTGGATCGACGCCGCTTCCAGCCTGCGCATGCAGGATGACGCGGTGATCATCCTCGACCCGGTCAACCGCAAGGTCATCGACCAGCAACTGGACGCGGGCACCAAGAACTACATCGGCGGCAACTGCACCGTCAGCCTGATGCTGATGGGCCTGGGCGGGCTGTTCGAGGCTGGCCTGGTCGAGTGGATGAGCGCCATGACCTATCAGGCGGCTTCCGGTGCCGGCGCGCAGAACATGCGTGAACTGATCAAGCAGATGGGCGCGACCCACGCCGCTGTCGCCGATGACCTGGCCAACCCGGCCAGCGCCATCCTCGACATCGACCGCAAGGTCGCCGAGGCGATGCGCAGCGATGCCTACCCGACCGAGAACTTCGGCGTGCCGCTGGCTGGCAGCCTGATCCCGTGGATCGACAAGGAACTGCCTAACGGCCAGAGCCGTGAAGAGTGGAAGGCCCAGGCCGAAACCAACAAGATCCTCGGTCGCTTCAAGAGCCCGATCCCGGTGGACGGCATCTGTGTGCGCATCGGCGCCATGCGCTGCCACAGCCAGGCGCTGACCATCAAGCTGAACAAGGACGTGCCGATCGCCGACATCGAAGGGTTGATCAGCCAGCACAACCCTTGGGTCAAGCTGGTGCCGAACAACCGCGAAACCAGCATTCAAGAGCTGAGCCCGACCAAGGTCACCGGCACCCTGAACGTGCCGGTGGGCCGCCTGCGCAAACTGAACATGGGCTCGCAGTTCGTCGGTGCATTCACCGTCGGCGACCAGTTGCTGTGGGGCGCGGCCGAGCCGCTGCGGCGCATGCTGCGGATCCTGCTCGAGCGTTGAMKRVGLIGWRGMVGSVLMQRMLEEQDFDLIEPVFFTTSNVGGQGPSVGKDTGVLKDAYSIEELKTLDVILTCQGGDYTSEVFPKLREAGWQGYWIDAASSLRMQDDAVIILDPVNRKVIDQQLDAGTKNYIGGNCTVSLMLMGLGGLFEAGLVEWMSAMTYQAASGAGAQNMRELIKQMGATHAAVADDLANPASAILDIDRKVAEAMRSDAYPTENFGVPLAGSLIPWIDKELPNGQSREEWKAQAETNKILGRFKSPIPVDGICVRIGAMRCHSQALTIKLNKDVPIADIEGLISQHNPWVKLVPNNRETSIQELSPTKVTGTLNVPVGRLRKLNMGSQFVGAFTVGDQLLWGAAEPLRRMLRILLERPGPT0014045_936DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014045-asd-K00133NANA
D1-35_022631011usgCOG0136USG-1 proteinATGAGCCAGTCCTTTGATATTGCCGTGATCGGCGCCACCGGTACTGTCGGCGAAACCCTGGTGCAGATCCTCGAAGAGCGGGATTTTCCGATCGGCACCCTGCACCTGCTGGCGAGCAGCGAATCGGCGGGAAGCTCGGTGCTGTTTCGCGGCAAGAACGTGCGGGTGCGCGAGGTCGATGAATTCGATTTCGGCAAGGTCCAACTGGTGTTCTTCGCCGCCGGTCCGGCGGTCACCCTGAGTTTTGCACCACGCGCCACGGCTGCCGGTTGTGCGCTGATCGACCTCTCCGGCGCGCTGCCGCCGGAGCAGGCGCCGCAGATCGTGCCAGAGGCCAACGCCGGGTTGCTGGCCGGCCTGAGCAAACCGTTCCAGGTCAGCAGCCCCAGCGCCTCGGCCACTGCGCTCGCCGTGGTGCTGGCGCCGCTGCGCGATTGCCTGGACCTGCAACGCATCAGCCTGACCGCCAGTCTCGCCGTCTCCGCCCAGGGGCGCGCAGCGGTGAGCGAGTTGGCGCGCCAGACCGCCGAGTTGCTCAATGCCCGTCCGCTGGAGCCGAAATTCTTCGATCGGCAGATGGCGTTCAACCTGCTGGCCCAGGTCGGTGTCCCGGATGAGCAGGGTCATACGCTGCTGGAGAAGCGCCTGGTCCACGAGCTGCGCCAAGTGCTTGCGCAACCTTTGTTAAAGATTTCCGTCACTTGCATTCAAGCGCCGGTGTTTTTCGGCGATAGCTTTAGCGTGACCGTACAGTCCGCGAGCGCCGTTGACCTGGCGAAGGTCAACGCAGCCCTGGAGGCGGCGCCCGGAATTGAGCTGGTGGAGGCGGGTGACTACCCGACGCCGGTGGGCGATGCGGTCGGCCAGGATGTGGTTTGTGTCGGGCGTGTGCGCGGTGGCGTGGACGATCCGGCGGAACTGAATCTGTGGCTGACGTCGGATAACGTGCGCAAGGGCGCGGCGCTCAATGCCGTGCAGGTGGCTGAGTTGTTGATAAAAGACTTGCTGTAAMSQSFDIAVIGATGTVGETLVQILEERDFPIGTLHLLASSESAGSSVLFRGKNVRVREVDEFDFGKVQLVFFAAGPAVTLSFAPRATAAGCALIDLSGALPPEQAPQIVPEANAGLLAGLSKPFQVSSPSASATALAVVLAPLRDCLDLQRISLTASLAVSAQGRAAVSELARQTAELLNARPLEPKFFDRQMAFNLLAQVGVPDEQGHTLLEKRLVHELRQVLAQPLLKISVTCIQAPVFFGDSFSVTVQSASAVDLAKVNAALEAAPGIELVEAGDYPTPVGDAVGQDVVCVGRVRGGVDDPAELNLWLTSDNVRKGAALNAVQVAELLIKDLLPGPT0014045_4966DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014045-asd-K00133NANA
D1-35_022642583hypothetical proteinATGGTTCAAGTTCGCAAACTGGTGTTAGCAATAGCGGCCGCCTCGGCGCTGTCCTCCGGTATGGCGCAAGCGCTCGGGCTCGGGGAGTTGACCCTGAAGTCGCCGCCGAACCAGCCTTTGGTCGCCGAGATCGAGCTGCTCGATGTCCAGCAACTGACCGCCGCCGAAGTCGTGCCGAGCCTGGCTCCCCCCGAAGAGTTCGCCAAGGCGGGCATTGACCGCCAAGCCTTCCTCAATGACCTGAGCTTCACCCCGGTGATCAACGCCAACGGCCGCAGTGTCCTGCGGGTGACGTCCAGCCGGCCACTGTCCGAGCCGATGGTCAAGTTCCTGGTGCAGGTGATGTGGCCCAACGGCCGCTTGCTGCGCGACTACAGCGTGCTGCTCGATCCGTCCAAATTCTCGCCGCAGGCCGCCGATGCTGCGCGGGCGAAGCCGTCCCAAGCGGTTTCCACACCGGTCACCGGGGCCACCAAGCCGTCCCAATACACCACCACGCCGCGCGACACCCTGTGGGAAATCGCCGCCAAGGTGCGCAACGGCGGTTCGGTGCAACAAACCATGCTGGCGATTCAGGCGCTGAACCCGAACGCCTTCATCAACGGCAATATCAACCTGCTCAAGACCGGCCAGGTGTTGCGCCTGCCGGATCCGGTGCAAAGCACGGCGCTGCCGCAACCCCAGGCCATCGCCGAAGTGGCCGCACAGAACGCTGCCTGGCGCCAGGGGCGTCGGGGTGTGGCAGGTAACGGCCGGCAACAGTTGGACGCGACCAAGCGGGGCGCTGCCGAGGGCGCGCCAGCCCAGGCCGCCGCGCGCGACAACCTGAGCCTGGTCTCCGCCGAGTCGGCAAAGGCCGGCGCCAAGGGCAAAGGGCCTGCCGGCGATGCCCAGGCACTGAGCAACCAGCTTGCAGTGACTCAGGAGAGCCTGGATGCGGCTCGTCGCGACAACGAAGAACTGAAAAGCCGTATGGCTGACCTGCAGAGCCAACTGGACAAGCTGCAGCGTCTGATCGAGCTGAAGAACAACCAACTGGCGAAGATGCAGGCTGATGGCGCTGCTGTACCGCCTGCGGGCGAGTCGACCCCGACGATGTCGGCCGAGCTGACCCCGACGCCGTCGGCGCAGCCACCGGCGCCAACACCAGCACCCGAGGCCGCCCCGGAAGCGACGCCGCCCGCCGCACCGGTCGAGCCGACAGCTGCCGCTTCCGATGAAAAGAAATACAACGACCTGCTGACCAATCCGATCCTCCTGGGGCTGATTGGCGGTGGCGCGTTGATCCTGTTGCTGCTTCTGTTGCTGCTTGCCCGTCGCCGCAAGGCCCAGCAGGAAGCCGAGAAACATCTGCGCATGGCCCGAGCCCTCGAGGAGGAGGCCGACTTCTCCCCGGAGCTCGATCTGCCCCCGAGCAGCTTCGAGGGCATTGAGGTTCCACCACCCAGCGTAAAACTCGAACCCAAGCCAGCCCCGGCGCCAGTGCCCAAGCCGGCTCCGGTGATTGCGCCAGTGATTGTCACGCCGCCCATTGCCGCACCATTGGTGGCCCCGGCCGCCGATCGTTCCGACGACGTGCTGCCTCAGGCCCAGTCGCACATCGATCGCGGTCGTTTGAACCAGGCGGCCGATCTGCTGGAGCAAGGCATCAAGGCTGAGCCTCAGCGCAGCGATCTGCGTCTGAAGTTGATGGAAGTCTACGGCCAACAGGGCGACCGAGACGCCTTTGTTGCCCAGGAACGCCAACTGGTCGCCAACGGTGAAAACTACGCCCAGGTCGAACAGCTCAAGAGCCGTTTCCCGGCCATGGCGGTCGCCGCTGGCGCAGGCCTGGCAGCCGCAGCCGTGGCTGCCGAACTGGATGCGCAGTACGTCAAGGAACTGCTGGAAGACAAGCCGGCGACCGATGAAGAACTCGACAACGCTTTTGACCTGAGCCTGGACGACTTTGATACGACGCCCGCAGCGCCGGCACCCGAGCCGCTCAACGAACTGGACGCGTTTCCGGAAGACGATGACCTGAGTTTCGAGTCGGTGCTCAAGCAGCAGACCGAGGCCAACGAAAGCCTCGACGACCTGTCGGAGTTCGACCTGGACCTGGGCGCCGACGCTCCGGCACCCGCCCTGGAGGATGACGACTTCCTGCTGGGCCTGGAGGATGACCTCAAGGGTCTTGACGTCCCGGCTGCCGAAACGCCGGCCCTGAACGACACCCCGGCCGACGATCTTGAGCTGCCGGCGGATTTCGACCTGTCCCTGGCGGACGAAATGGATGCCCATGACCAGCCCAAGGATGCCTTCGAATCCGAGCTGGATGATGTCAACGCCGAGCTGGATCGTTTGTCCGACAGCCTCGGTCAGCCGACCTTCACGGCCGATGATGCCTTGGCGACTGCTGACGACGAGCCGGATTTCGACTTCCTCAGCGGCACCAACGAAGTGGCGACCAAGCTCGATCTGGCCCAGGCCTACATCGACATGGGCGACGACGATGGCGCCCGGGATATCCTGGGCGAGGTCCTCAACGAAGGCGATGCCACGCAGAAGAGTGAAGCGCAGGAAATGTTGTCACGCCTGGCTTGAMVQVRKLVLAIAAASALSSGMAQALGLGELTLKSPPNQPLVAEIELLDVQQLTAAEVVPSLAPPEEFAKAGIDRQAFLNDLSFTPVINANGRSVLRVTSSRPLSEPMVKFLVQVMWPNGRLLRDYSVLLDPSKFSPQAADAARAKPSQAVSTPVTGATKPSQYTTTPRDTLWEIAAKVRNGGSVQQTMLAIQALNPNAFINGNINLLKTGQVLRLPDPVQSTALPQPQAIAEVAAQNAAWRQGRRGVAGNGRQQLDATKRGAAEGAPAQAAARDNLSLVSAESAKAGAKGKGPAGDAQALSNQLAVTQESLDAARRDNEELKSRMADLQSQLDKLQRLIELKNNQLAKMQADGAAVPPAGESTPTMSAELTPTPSAQPPAPTPAPEAAPEATPPAAPVEPTAAASDEKKYNDLLTNPILLGLIGGGALILLLLLLLLARRRKAQQEAEKHLRMARALEEEADFSPELDLPPSSFEGIEVPPPSVKLEPKPAPAPVPKPAPVIAPVIVTPPIAAPLVAPAADRSDDVLPQAQSHIDRGRLNQAADLLEQGIKAEPQRSDLRLKLMEVYGQQGDRDAFVAQERQLVANGENYAQVEQLKSRFPAMAVAAGAGLAAAAVAAELDAQYVKELLEDKPATDEELDNAFDLSLDDFDTTPAAPAPEPLNELDAFPEDDDLSFESVLKQQTEANESLDDLSEFDLDLGADAPAPALEDDDFLLGLEDDLKGLDVPAAETPALNDTPADDLELPADFDLSLADEMDAHDQPKDAFESELDDVNAELDRLSDSLGQPTFTADDALATADDEPDFDFLSGTNEVATKLDLAQAYIDMGDDDGARDILGEVLNEGDATQKSEAQEMLSRLAPGPT0016075_683DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-SURFACE_ATTACHMENTSURFACE_ADHESIONSURFACE_ADHESIVE_FIMBRIAE,PGPT0016075-fimV-K08086NANA
D1-35_02265855truACOG0101tRNA pseudouridine synthase ATTGGCAAACATAGACAACCCGGCCGCAGAAATGGCGGCTGACGGCTTTTTCCGGATCGCCCTGGGCGTTGAATACAAAGGCTCGCGCTATCGCGGCTGGCAGCGTCAGGCCTCCGGTGTCCTGACGGTGCAGGAAACCCTTGAAAATGCCCTGTCCAAAGTCGCCGACTCGCCCGTGTCGCTGCATTGCGCCGGGCGTACCGATGCCGGCGTGCATGCGTGCGGGCAGGTGGTGCATTTCGATACCCAGGTCGAGCGCTCGATGAAGGCCTGGGTCATGGGCGCCAATATCAACTTGCCGCACGATGTCAGCGTCAGTTGGGCCAAGGCCATGCCGGCGCATTTCCATGCCCGCTTCAAGGCTATCGCCCGGCGTTATCGCTATGTGATCTACAACGACCAGATCCGCCCGGCGCACCTGAACGAAGAAATCACCTGGAACCACCGCCCGCTGGACGTCGAACGCATGGCCGAGGCCGCGCAATATCTGGTCGGCGTCCACGACTTCAGCGCCTTCCGCGCCGGCCAATGCCAGGCCAAATCGCCGATCAAGGAGCTGCATCACTTGCGCGTGACCCGTCACGGCAAGATGATCGTGCTCGACATCCGTGCCAGCGCCTTCCTGCATCACATGGTGCGCAACATCGCCGGCGTGCTGATGACCATCGGCGCGGGCGAGCGACCGGTGGAGTGGATCAAGGAAGTGCTGGAAAGCCGCATCCGTCGTTCCGGAGGCGTCACGGCGCATCCGTTTGGCCTGTACCTGGTACAGGTGGAATATCACGATGAGTTCGAACTGCCGGAGCGTTACATCGGGCCACATTTCCTGACAGGCTTCTCGGAACTCGACGGCTGAMANIDNPAAEMAADGFFRIALGVEYKGSRYRGWQRQASGVLTVQETLENALSKVADSPVSLHCAGRTDAGVHACGQVVHFDTQVERSMKAWVMGANINLPHDVSVSWAKAMPAHFHARFKAIARRYRYVIYNDQIRPAHLNEEITWNHRPLDVERMAEAAQYLVGVHDFSAFRAGQCQAKSPIKELHHLRVTRHGKMIVLDIRASAFLHHMVRNIAGVLMTIGAGERPVEWIKEVLESRIRRSGGVTAHPFGLYLVQVEYHDEFELPERYIGPHFLTGFSELDGPGPT0014045_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014045-asd-K00133NANA
D1-35_02266651trpFCOG0135N-(5'-phosphoribosyl)anthranilate isomeraseATGGAATTGCCTGAGGTTTTCCCCATCATGCCGGTCGTTCGCAGCAAGATATGCGGGATCACTCGCGTCGAGGACGCGCTGGCGGCGGTCGAGGCCGGGGCGGACGCCATCGGGCTGGTGTTTTACGCCAAGAGTCCGCGGGCGGTGACGGTGCAGCAGGCGAGGGCGATCATCCAGGCCTTGCCGCCATTCGTGACGCCGGTCGGTCTGTTCGTCAACGCCAGCCGTTGCGAGCTGGGCGAGATACTCGATGCGGTGCCGTTGGCGCTGTTGCAGTTCCATGGCGACGAGACGCCAGCCGATTGTGAAGGCTGGCATCGCCCTTATATCAAGGCCCTGCGGGTCAAGGCCGGCGACGACATCGCCGCGGCTTGCGAGGCCTTTGCCGGTGCCAGCGGGATCTTGCTGGACACCTACGTCGAGGGCGTTCCCGGCGGGACCGGCGAAGCGTTCGACTGGTCGCTGGTCCCGCAAGATCTTGCCAAGCCGATCATCCTCGCCGGTGGCCTGACGGCGGACAACGTGGCGGCAGCCATTGCCCAGGTCCGCCCCTATGCGGTGGACGTCAGTGGTGGCGTGGAGCAGGCCAAGGGCCTCAAGGATCCGGCAAAGATTCGCGCGTTCATGGCCGCTGTGCGCAGCAGCCAGTAGMELPEVFPIMPVVRSKICGITRVEDALAAVEAGADAIGLVFYAKSPRAVTVQQARAIIQALPPFVTPVGLFVNASRCELGEILDAVPLALLQFHGDETPADCEGWHRPYIKALRVKAGDDIAAACEAFAGASGILLDTYVEGVPGGTGEAFDWSLVPQDLAKPIILAGGLTADNVAAAIAQVRPYAVDVSGGVEQAKGLKDPAKIRAFMAAVRSSQPGPT0007115_2302DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007115-trpF-K01817NANA
D1-35_02267921accDCOG0777Acetyl-coenzyme A carboxylase carboxyl transferase subunit betaATGAGCAACTGGTTGGTAGACAAACTGATCCCTTCGATCATGCGTTCCGAGGTGAAGAAAAGCTCGGTGCCTGAAGGTCTGTGGCACAAATGTCCATCCTGCGAAGCGGTGCTTTACCGCCCCGAGCTGGAAAAGACCCTGGACGTTTGCCCCAAGTGCAACCACCACATGCGCATCGGCGCGCGTGCCCGTATCGATATTTTCCTCGACGCCGAAGGCCGCGTTGAACTGGGCGCCGAACTGGAGCCCGTGGACCGCCTGAAATTCCGCGACGGCAAGAAATACAAGGACCGCCTGACCGCCGCCCAGAAACAGACCGGCGAAAAAGATGCGCTGGTGTCCATGAGCGGTACCCTGCTGGGCATGCCGGTGGTGGTGTCGGCGTTCGAGTTCTCCTTCATGGGCGGTTCCATGGGCGCGATCGTCGGCGAGCGCTTCGTTCGCGCGGCCAACCATGCCCTGGAAAACCGTTGCCCGATGATCTGCTTCGCCGCCTCCGGCGGTGCGCGGATGCAGGAAGCGCTGATCTCGCTGATGCAAATGGCCAAGACCTCCGCGGTGCTGGCGCGTCTGCGTGAAGAAGGCATTCCGTTCATTTCGGTACTGACCGACCCGGTCTACGGCGGCGTCTCCGCCAGCCTGGCGATGCTCGGTGACGTGATCGTCGGCGAGCCGAAAGCGCTGATCGGCTTTGCCGGCCCTCGCGTGATCGAACAGACCGTGCGGGAAAAACTGCCGGAAGGTTTCCAGCGCAGTGAATTCCTGCTTGAGCACGGTGCCATCGACATGATCATTCACCGTCAGGAACTGCGCCCGCGCCTGGGCAACCTGCTGGCGCAATTGATGGGCCTGCCGACGCCGAAGTTCGTCGCCACGCCGATCGAGCCGATCGTGGTTCCGCCGGTGCCTGCAGGCCTATGAMSNWLVDKLIPSIMRSEVKKSSVPEGLWHKCPSCEAVLYRPELEKTLDVCPKCNHHMRIGARARIDIFLDAEGRVELGAELEPVDRLKFRDGKKYKDRLTAAQKQTGEKDALVSMSGTLLGMPVVVSAFEFSFMGGSMGAIVGERFVRAANHALENRCPMICFAASGGARMQEALISLMQMAKTSAVLARLREEGIPFISVLTDPVYGGVSASLAMLGDVIVGEPKALIGFAGPRVIEQTVREKLPEGFQRSEFLLEHGAIDMIIHRQELRPRLGNLLAQLMGLPTPKFVATPIEPIVVPPVPAGLPGPT0001710_741DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_FATTY_ACID_METABOLISM,PGPT0001710-accD-K01963NANA
D1-35_022681308folCCOG0285Dihydrofolate synthase/folylpolyglutamate synthaseATGACCCAACGTACCCTGGGCGACTGGCTTGCCTACCTTGAGCAGTTGCATCCATCCGCCATCGACATGGGGTTGGAGCGCTCGCAAGCGGTAGCGTCCCGCATGGGACTGGCCAGGCCGGCGCCCCGGGTCATCACGGTTACCGGCACCAATGGCAAGGGTTCGACCTGCGCCTTCCTGGCTTCGCTGTTGCGGGGCCAGGGCCTGAGTGTCGGTGTCTACAGTTCGCCGCACCTGCTGCGCTACAACGAGCGGGTGCAGGTCAATGGCATCGAAGCCTCTGATGCCGAGCTGTGCGAAGCCTTCGCGGCGGTGGAAGCCGGGCGGGGCGAGACTTCCCTGACGTATTTCGAAATGGGCACGCTGGCGGCGTTCTGGTTGTTCGCCCGTGCCGGTCTGGACGCCGTCGTGCTGGAAGTCGGCCTGGGCGGGCGGTTGGACGCGGTCAACCTGGTGGATGCGGACATCGCGCTGGTCACCAGTATCGGCGTGGACCATGCCGACTACCTGGGCGATACCCGCGAATCCGTGGCCTTCGAGAAGGCCGGCATCTTCCGCCCGGGCGCGCCTGCGCTGTGTGGCGACCTTGACCCACCGCAGCCCTTGCTCGACAAGGTTCGCGAGCTTGATTGCCGATTTTTTCTGCGTGGGCGGGATTTCGACCTGGCCATGACCGAGCAGCACTGGCAATGGCGCGGCAGTGACGCCAAGGGCAATCCGGTGGAACTGCACGACCTGCCGCTCCTGGACCTGCCGATGGAAAACGCTGCGCTGGCGCTTCAGGCCTATTTGCTCGCGGATCTGCCGTGGGACGCGGGACGGATTGTCCAGGCGTTGCAGGCGACTCGCGTCGTCGGTCGTCTTGATCGTCGTTCGTTCGATTGGCAGGGCAAGCGTCTCAACCTGCTGCTCGATGTCGGCCACAACCCTCATGCCGCCCAGTACCTGGCGGAGCGCCTGGCGCGGCGGCCGGTGGCGGGCAAGCGCCTGGCGGTGTTCGGGCTGCTGTCCGACAAGGACCTCGATGGCGTGGTCGATGCCTTGGATGCTACTGTCCAGCACTGGGCCGTCGCTCCGCTGGATTCGCCGCGTTCCCGTCCGGCCAGCGAGTTGCAGGCAGCCTTGCAGGGTCGTGGCGCTTCGGTTGATGCTTACGCCAGTGTGGCCGACGCGCTGGAAGGGCAGTGCGCCCTGGCGACGGCCGACGACGAGATTCTGTTGTTCGGATCATTTTTTTGCGTAGCCGAGGCCCTTCAATGGTTGGCCCGGCGCTCCTCGGAGGAAGCTGCAGATGGCATTGCTGGATAAMTQRTLGDWLAYLEQLHPSAIDMGLERSQAVASRMGLARPAPRVITVTGTNGKGSTCAFLASLLRGQGLSVGVYSSPHLLRYNERVQVNGIEASDAELCEAFAAVEAGRGETSLTYFEMGTLAAFWLFARAGLDAVVLEVGLGGRLDAVNLVDADIALVTSIGVDHADYLGDTRESVAFEKAGIFRPGAPALCGDLDPPQPLLDKVRELDCRFFLRGRDFDLAMTEQHWQWRGSDAKGNPVELHDLPLLDLPMENAALALQAYLLADLPWDAGRIVQALQATRVVGRLDRRSFDWQGKRLNLLLDVGHNPHAAQYLAERLARRPVAGKRLAVFGLLSDKDLDGVVDALDATVQHWAVAPLDSPRSRPASELQAALQGRGASVDAYASVADALEGQCALATADDEILLFGSFFCVAEALQWLARRSSEEAADGIAGPGPT0007975_2150DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007975-folC-K11754NANA
D1-35_02269669ftsN_1Cell division protein FtsNATGGCATTGCTGGATAAGGCTTATAAGCAGCGCATGGTCGGGGCCCTGGTGTTGGTGGCCCTGGCGGTGATCTTCCTGCCGATGCTGTTTTCCCGTCAGGACGAGCAGCGCCAGGTCACGGTTGATGCACCCGCTGCGCCCCAGGCGCCCGCCGTGCCGCCGGTGCAGGTCGAACCGGTGGCGGTGCCCGAGCCGCAAGCATTGCCTCAGGAACCTGTTCCGAGTGACGAGGAACTGGCCCAGGAACCTGCCGCGCCGTCTGCGCCCATTGCGCCCGCGCCGACCGCACCGGCTCCGGCCACGCCGAGCAAACCGGCTGCCGCGCCGACGCCTGTTCCAGCAGCGCCGGCAGTCAAGCCAGCCCCGACCCAGCCGATCACGGCGGCACCGAAACCGGATACCACGCAAAGCCGCGTCGATGCCAATGGCCTGTCGGTCAGTTGGTCGGTGCAACTGGCCAGCCTGACCAGCCGCGAAAGCGCGGAAAAACTGCAGAAGAACCTGCGCAGCCAGGGTTACAACGCCTATATCCGTTCCGCCGATGGCAAGAATCGGGTGTTTGTCGGTCCGCTGATCGAGCGTGCCGAGGCTGACCGCCTGCGCGACTTGCTCAATCGCCAGCAAAACCTCAAGGGTTTTGTGGTGCGCTTCCAGCCTGAGCGTGGTTGAMALLDKAYKQRMVGALVLVALAVIFLPMLFSRQDEQRQVTVDAPAAPQAPAVPPVQVEPVAVPEPQALPQEPVPSDEELAQEPAAPSAPIAPAPTAPAPATPSKPAAAPTPVPAAPAVKPAPTQPITAAPKPDTTQSRVDANGLSVSWSVQLASLTSRESAEKLQKNLRSQGYNAYIRSADGKNRVFVGPLIERAEADRLRDLLNRQQNLKGFVVRFQPERGNANANANANA
D1-35_02270561hypothetical proteinGTGCCATTTACCTGGGTTGATTGGGCGATCGTTGCAATCGTCGCCATCTCTGCATTGATCAGTCTGAGTCGCGGCTTCGTCAAGGAAGCGCTCTCGCTGCTGACCTGGATCATTGCGGGAGTCGTGGCCTGGATGTTTGGTGGCTCGCTGTCCCAGTACCTCGCCGGATACATCGAAACACCGTCGGCCCGCGTCATCGCGGGCTGTGCCATCTTGTTTATCGCCACCTTGCTGGTTGGCGCAATGATCAATTATCTGATCGGCGAACTGATTCGCGTCACCGGGCTTTCCGGGACGGACCGGTTCCTGGGCATGGCCTTCGGCGCGGCGCGTGGCGCATTGCTGGTGGTCGTGGCCGTCGGGCTGTTGAGCCTGGGGCCGGTACAGCAGGATACGTGGTGGCAGGAGTCCCGGCTCGTGCCACAATTTCTTTTGGTCGCAGACTGGTCCAAGAACCTGATCCTGGGTTGGAGCAGTCAGTGGCTTGCCAGCGGTATCAGCGTACCCGCTGAAATACCGTTCAAGGAACAGCTCTTGCCGATGGCCAAAACGCCGCAGTGAMPFTWVDWAIVAIVAISALISLSRGFVKEALSLLTWIIAGVVAWMFGGSLSQYLAGYIETPSARVIAGCAILFIATLLVGAMINYLIGELIRVTGLSGTDRFLGMAFGAARGALLVVVAVGLLSLGPVQQDTWWQESRLVPQFLLVADWSKNLILGWSSQWLASGISVPAEIPFKEQLLPMAKTPQPGPT0011655_827DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|COLICINS,PGPT0011655-cvpA-K03558NANA
D1-35_022711506purFCOG0034AmidophosphoribosyltransferaseATGTGTGGCATCGTCGGTATCGTCGGTAAGTCGAACGTCAATCAGGCGCTGTATGACGCGCTAACCGTGCTCCAGCACCGCGGCCAGGACGCTGCCGGTATCGTGACCAGCCATGACGGCCGGTTGTTCCTGCGCAAGGACAATGGACTGGTGCGTGACGTGTTTCATCAGCGTCACATGCAGCGCCTGGTCGGCCACATGGGTATCGGCCATGTGCGCTACCCGACAGCGGGCAGCTCGACCTCGGCCGAGGCCCAGCCGTTCTACGTCAACTCGCCGTACGGCATCACCCTGGCGCACAACGGCAACCTGACCAACGTCGAGCAGTTGGCCAAGGAAATCTACGAATCCGATCTGCGCCACGTCAACACCAGTTCCGACTCGGAAGTGATGCTCAACGTGTTCGCCCACGAGCTGGCCCAGCGCGGCAAGCTGCAGCCAACCGAAGAAGACGTGTTCGCCGCCGTAACCGACGTGCATAACCGCTGTGTCGGTGGCTACTCGGTAGTGGCGATGATCACCGGCTACGGCATCGTCGGTTTCCGCGACCCCCATGGCATCCGTCCGATCGTGTTCGGCCAGCGCCACACCGACGAAGGCGTCGAGTACATGATCGCCTCCGAGAGCGTGTCCCTGGACGTGCTGGGCTTCACTCTGATTCGCGACCTGGCACCGGGCGAAGCGGTCTACATCACTGAAGACGGCAAGCTTTTCACCCGCCAGTGCGCGACCAACCCGAGCCTGACCCCGTGCATCTTCGAACACGTCTACCTGGCGCGTCCGGACTCGATCATCGACGGTATCTCGGTCTACAAGGCGCGCCTGCGCATGGGCGAGAAACTGGCCGACAAGATCCTGCGCGAGCGTCCGGACCACGACATCGACGTGGTCATCCCGATCCCGGACACCAGCCGCACCGCGGCCCTGGAGCTGGCGAACCACCTGGGCGTGAAGTTCCGCGAAGGCTTCGTGAAGAACCGCTACATCGGCCGCACCTTCATCATGCCGGGCCAGGCCGCGCGGAAAAAATCCGTACGCCAGAAGCTCAACGCCATCGAGCTGGAATTTCGCGGCAAGAACGTGATGCTGGTGGACGACTCCATCGTGCGCGGCACCACTTGCAAGCAGATCATCCAGATGGCCCGCGAAGCCGGCGCCAAGAACGTATATTTCTGCTCCGCGGCCCCGGCCGTGCGTTACCCGAACGTCTACGGCATCGACATGCCGAGTGCCCACGAGCTGATCGCTCATAACCGCACGACCCAGGAAGTGGCCGACCTGATCGGCGCCGACTGGTTGATCTACCAGGACCTGCCGGACCTGATCGAAGCGGTCGGTGGCGGCAAGATCAAGATCGAGCAGTTCGATTGCGCGGTATTCGACGGCAAGTACGTTACCGGCGATATCGACGAGGTCTATCTGAACCGGATCGAGAACGCCCGTAACGATGCGTCCAAAGCCAAGACCCAGGCGGTCAGCGCGATCATCGATCTGTACAACAACTGAMCGIVGIVGKSNVNQALYDALTVLQHRGQDAAGIVTSHDGRLFLRKDNGLVRDVFHQRHMQRLVGHMGIGHVRYPTAGSSTSAEAQPFYVNSPYGITLAHNGNLTNVEQLAKEIYESDLRHVNTSSDSEVMLNVFAHELAQRGKLQPTEEDVFAAVTDVHNRCVGGYSVVAMITGYGIVGFRDPHGIRPIVFGQRHTDEGVEYMIASESVSLDVLGFTLIRDLAPGEAVYITEDGKLFTRQCATNPSLTPCIFEHVYLARPDSIIDGISVYKARLRMGEKLADKILRERPDHDIDVVIPIPDTSRTAALELANHLGVKFREGFVKNRYIGRTFIMPGQAARKKSVRQKLNAIELEFRGKNVMLVDDSIVRGTTCKQIIQMAREAGAKNVYFCSAAPAVRYPNVYGIDMPSAHELIAHNRTTQEVADLIGADWLIYQDLPDLIEAVGGGKIKIEQFDCAVFDGKYVTGDIDEVYLNRIENARNDASKAKTQAVSAIIDLYNNPGPT0020225_2650DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0020225-purF-K00764NANA
D1-35_022721212metZCOG0626O-succinylhomoserine sulfhydrylaseATGAGTCAGGATTGGGATGCCGGTCGGCTGGACAGCGACCTTGAAGGTGTAGCGTTCGATACCTTGGCGGTTCGCGCGGGCCAGCACCGTACACCGGAAGCCGAGCATGGCGATCCGATGTTCTTCACCTCCAGCTACGTCTTCCGCACCGCTGCCGATGCCGCGGCGCGATTTGCCGGTGAAGTGCCGGGCAACGTCTATTCGCGTTACACCAATCCCACCGTGCGGGCTTTCGAGGAGCGCATCGCCGCCCTGGAAGGCGCCGAGCAAGCGGTTGCCACCGCCACCGGCATGGCTGCGATCATGGCCGTGGTCATGAGCCTGTGCAGCGCTGGTGATCATGTACTGGTGTCGCGCAGCGTCTTCGGCTCGACCATCAGCCTGTTCGAAAAGTACTTCAAGCGCTTCGGTGTCGAAGTCGACTACGTACCGCTGGCGGATTTGTCGGGTTGGGATGCGGCAATCAAGGCCAACACCAAACTGTTGTTCGTCGAATCGCCGTCCAACCCGCTCGCCGAGCTGGTGGATATCGCCGCGTTGGCGGAAATAGCCCACGCCAAAGGCGCCATGCTGGTGGTCGACAACTGCTTCTGCACGCCGGCGCTGCAACAGCCGCTCAAGCTGGGCGCGGATGTGGTGGTGCACTCAGCCACCAAGTTCATCGACGGCCAGGGTCGTTGCATGGGCGGCGTTGTCGCCGGTCGTGGCGAGCAGATGAAAGAAGTGGTGGGTTTCCTGCGCACCGCCGGGCCGACCCTCAGCCCGTTCAACGCCTGGATCTTCCTCAAGGGCCTGGAAACCCTCGGTCTGCGGATGAAAGCGCATTGTGCCAACGCTCAGGTCCTGGCCGAGTGGCTGGCACAGCAGGACGGCATCGAGAAAGTCCATTACGCCGGCCTCAAGAGTCATCCGCAACATGAGCTGGCGGCGCGTCAGCAGCGTGGTTTTGGCGCGGTGGTGAGTTTCGAAGTCAAGGGCGGCAAGGAGGGCGCCTGGCGCTTCATCGATGCCACCCGGTTGATTTCCATCACCGCGAACCTGGGTGACAGCAAGACCACTATCACGCACCCAAGCACCACCTCTCACGGACGTCTCTCGCCACAAGAGCGTGAAGCAGCGGGCATCCATGACAGCCTGATCCGCGTCGCGGTCGGCCTGGAAGACGTAGCGGACCTGCAAGCCGACCTGGCCCGCGGGTTGGCGGCCTTGTGAMSQDWDAGRLDSDLEGVAFDTLAVRAGQHRTPEAEHGDPMFFTSSYVFRTAADAAARFAGEVPGNVYSRYTNPTVRAFEERIAALEGAEQAVATATGMAAIMAVVMSLCSAGDHVLVSRSVFGSTISLFEKYFKRFGVEVDYVPLADLSGWDAAIKANTKLLFVESPSNPLAELVDIAALAEIAHAKGAMLVVDNCFCTPALQQPLKLGADVVVHSATKFIDGQGRCMGGVVAGRGEQMKEVVGFLRTAGPTLSPFNAWIFLKGLETLGLRMKAHCANAQVLAEWLAQQDGIEKVHYAGLKSHPQHELAARQQRGFGAVVSFEVKGGKEGAWRFIDATRLISITANLGDSKTTITHPSTTSHGRLSPQEREAAGIHDSLIRVAVGLEDVADLQADLARGLAALPGPT0020020_1038DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020020-mdeA-K01761NANA
D1-35_02273774gdhICOG1028Glucose 1-dehydrogenase 1GTGATCGAGCTGGCAACGCCGCCGAGCGGTACTCATGGCCGGGTTGCCCTGGTAACGGGCGCGGCACGGGGGATCGGCCTGGGCATTGCCGCCTGGCTGATCTGCGAAGGTTGGCAGGTCGTCTTGACCGACCTGGACCGCCAGCGCGGCTCCAGGGTGGCGAAGGCCCTGGGCGACAATGCCTGGTTCATCGGCATGGACGTGGCGGATGAAGGGCAGGTCGCCACCGGCATCGCCGAAGTGCTCGGGCAGTTCGGCCGGCTCGACGCGCTGGTATGCAACGCGGCCATTGCCGACCCGCACAACATCACCCTGGAAAGCCTCGACCTGGCTCACTGGAACCGGGTCCTGGCGGTGAACCTGGGCGGGCCGATGCTGCTGGCCAAGCATTGCGCGCCTTACCTGCGTGCCCATAACGGCGCCATCGTCAACCTGGCCTCGACCCGCGCCGCGCAATCGGAGCCCGACACCGAGGCGTATGCGGCGAGCAAGGGTGGCCTGCTGGCGCTGACCCATGCCCTGGCGATCAGCCTTGGGCCGGAGATCCGCGTCAACGCCGTCAGCCCCGGCTGGATCGATGCGCGAGACCCCTCGCAACGTCGTGCGCAGCCATTGACCGACGCCGATCATGCCCAGCATCCGGCGGGCAGGGTAGGCACGGTGGAGGACGTGGCGGCGATGGTGGCGTGGCTGTTGTCGCGCAACGCCGGTTTTGTTACCGGGCAGGAGTTTGTCGTGGACGGTGGCATGACCAAGAAAATGATCTACGAGTGAMIELATPPSGTHGRVALVTGAARGIGLGIAAWLICEGWQVVLTDLDRQRGSRVAKALGDNAWFIGMDVADEGQVATGIAEVLGQFGRLDALVCNAAIADPHNITLESLDLAHWNRVLAVNLGGPMLLAKHCAPYLRAHNGAIVNLASTRAAQSEPDTEAYAASKGGLLALTHALAISLGPEIRVNAVSPGWIDARDPSQRRAQPLTDADHAQHPAGRVGTVEDVAAMVAWLLSRNAGFVTGQEFVVDGGMTKKMIYEPGPT0008190_904DIRECT 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
D1-35_022771284puuB_1Gamma-glutamylputrescine oxidoreductaseATGGCGAACACATCCTACCCAGCGTCCTATTACGCCGCATCGGCGAATCCGGCGCCGTCGCGCCCTGCCCTGCAGGATGACGTCGAAACCGATGTTTGCGTCATCGGTGCGGGTTATACGGGGTTGTCTTCTGCATTGTTTCTGCTGGAGCATGGCTTCAAGGTCACGGTTGTCGAGGCGGCCAGGGTCGGCTTTGGCGCCTCGGGTCGTAACGGCGGGCAGATCGTCAACAGCTATAGCCGCGACATTGATGTGATCGAACGCAGTGTCGGCCCTCAGCAGGCGCAGTTGCTGGGCAACATGGCGTTCGAGGGTGGCCGGATCATTCGTGAGCGGGTGGCGAAGTACCAGATTCAGTGTGATCTGAAGGACGGCGGTGTGTTCGCCGCTCTCACCGCCAAGCAGATGGGCCATCTGGAGTCGCAGAAGCGTTTATGGGAGCGTTTCGGGCACACCCGGCTGGAACTGCTCGATCAGCGGCGTATCCGCGAGGTGGTGGCTTGCGACGAGTATGTCGGCGGGATGCTGGACATGAGCGGCGGGCATATTCATCCGCTCAACCTGGCCTTGGGCGAAGCGGCGGCGGTCGAGTCGCTGGGCGGGGTGATTTATGAACAGTCGCCGGCGGTGCGCATCGAGCGCGGCGCCAGTCCGGTTGTGCATACCCCGCAGGGCAAGGTCAGGGCCAAGTTCATTATCGTGGCGGGTAATGCTTACCTGGGCAATCTGGTGCCTGAGCTGGCGGCCAAGTCCATGCCTTGCGGTACGCAGGTGGTTGCCACCGAGCCGTTGGGCGATGAGCTGGCTCAACGTCTGCTGCCCCAGGATTATTGCGTCGAAGACTGCAACTACTTGCTCGATTACTACCGGCTGACAGGCGACAAGCGTCTGATCTTCGGTGGCGGCGTGGTGTACGGCGCGCGGGATCCGGCGAATATCGAAGCGATCATCCGGCCGAAGATGATCAAGGCGTTTCCGCAGCTCAAGGATGTGAAGATCGATTACGCCTGGACCGGAAATTTCCTGCTGACACTGTCGCGTCTTCCGCAGGTCGGACGGTTGGGGGACAACATTTATTATTCCCAGGGCTGCAGTGGCCATGGCGTGACGTATACGCATCTGGCGGGCAAGGTCCTGGCCGAGGCACTGCGAGGTCAGGCGGAGCGTTTTGATGCGTTTGCGGACCTGCCTCACTACCCGTTCCCGGGCGGGCAGTTGTTGCGTACGCCGTTTGCGGCGATGGGGGCCTGGTATTACGGGTTGCGGGATCGGTTGGGGTTCTGAMANTSYPASYYAASANPAPSRPALQDDVETDVCVIGAGYTGLSSALFLLEHGFKVTVVEAARVGFGASGRNGGQIVNSYSRDIDVIERSVGPQQAQLLGNMAFEGGRIIRERVAKYQIQCDLKDGGVFAALTAKQMGHLESQKRLWERFGHTRLELLDQRRIREVVACDEYVGGMLDMSGGHIHPLNLALGEAAAVESLGGVIYEQSPAVRIERGASPVVHTPQGKVRAKFIIVAGNAYLGNLVPELAAKSMPCGTQVVATEPLGDELAQRLLPQDYCVEDCNYLLDYYRLTGDKRLIFGGGVVYGARDPANIEAIIRPKMIKAFPQLKDVKIDYAWTGNFLLTLSRLPQVGRLGDNIYYSQGCSGHGVTYTHLAGKVLAEALRGQAERFDAFADLPHYPFPGGQLLRTPFAAMGAWYYGLRDRLGFPGPT0007637_1575DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINE_USAGEPLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007637-puuB|ordL-K09471NANA
D1-35_022791251hypothetical proteinATGCCATCGATTGGTAAAAACCAGTTTGTGACCTACTCGGTTCCTCGAGGGCAAATTCGGTCGGAGCGCTCGGACTCCTCTTCGAACGCCGGACACATGATATCACTTTCGCCCGCAAATTTAAGTGATGAGGCGATAAATGCACTGAAGGCTGCGGTGGAAAGCTCTGATAAGTCGCAAGCGTCCTTGGCATTGCTCGCCTCGCATGTGATAGGCGATGGCCAGCTCACGCTTCATTCAGGTCAGCAGGAGGAAGCCGTCTATAAAAAACTAATGGATCGCACTGCACAAGGGCCGCAAGAGCTTACGGTGCGTGTACGAATGAATGATTTTCAGATGTACGACATTCTGGAAATTACCCAGTCCCGTGATAAAGCCGCTCCCACTGCAATTAGCTTGAAGGGCCCGTCAGAGCGTGGAGCTGAAACGCCGCGACATCCGGAAGCATCGACATCCCGTCTCCGAAATTGGACGTCGGCGGCTACGCAAAAGGCGCAGCAGACGTTAGGTTTGACTTCGCCGGGGCGCTCACTACCGCGGCTGACTAAAGAGGCAAAAAGGATGATCGCTGAAGCGGATATTGCGCATGCATTAACGAAAACAGATCAGCTGGATGTCCGTCATAGATATCAGCAGCAGATGGAGCAGAATCAAAGACTTCAGCCCATTCAGCGAGTAAGCGATCAAGAATTATGGAGTCAAGCGATCGACGACGCAGAGCGAATACCAGTGTCCCGTCTTTCCGCTAGAGAGAAACTCCAGTTACAAAAAGAAGGAATGACGCTTCACAAAGCGAAAATTTTCGCGCTGTTTAACTCGTTTTTATACCCCATTGGTCGCTATCGGGATAGGCACATGTCTGACGAGACCCGTGCCAGGCTCAACGCTGAAACACAAAAAATTCGACAGATGCCCATTGGCAACGGTTACCCCTCCAGTCTGGGCCCCTTGAGTTTCGCCCGCTCTACCTCCGACTTGGATACCGAATCGGATGACCAACTGCCTGAGCTGCGAAAGTCTATTGAGGACCCGTCTTCCCTTGAAGTTGATAGTCAGGCCTATCATTCATTAGGTCTTGAAGAACGCGAAGCGCTGGACGCGCTAGCCGACCTTATTGATGCGCATGGGCTGGATTCTGCTATGCACAAAATGTCACCCAAAATACGGGATTCGTTTGATGGGTATCAGCTGAGGCGTAATCGTTTATCCCAACACCAAACGCCGCAGGTTGAGCAAGGAGAGGCGATGTAGMPSIGKNQFVTYSVPRGQIRSERSDSSSNAGHMISLSPANLSDEAINALKAAVESSDKSQASLALLASHVIGDGQLTLHSGQQEEAVYKKLMDRTAQGPQELTVRVRMNDFQMYDILEITQSRDKAAPTAISLKGPSERGAETPRHPEASTSRLRNWTSAATQKAQQTLGLTSPGRSLPRLTKEAKRMIAEADIAHALTKTDQLDVRHRYQQQMEQNQRLQPIQRVSDQELWSQAIDDAERIPVSRLSAREKLQLQKEGMTLHKAKIFALFNSFLYPIGRYRDRHMSDETRARLNAETQKIRQMPIGNGYPSSLGPLSFARSTSDLDTESDDQLPELRKSIEDPSSLEVDSQAYHSLGLEEREALDALADLIDAHGLDSAMHKMSPKIRDSFDGYQLRRNRLSQHQTPQVEQGEAMNANANANANA
D1-35_02280525hypothetical proteinATGACACCACTTGGCTCCAACGAGGTTTTCATCATCCGGCCGAAGATCGGCATCGGTCGTTTATTTTTTGTCCCACTGCTTCGCCAGACACCTTGGGCGATCACGGCGATCTTTTGTATCAGCTTATCGACCGGCCTGTCGTTACCGGGGAGGGAATGGCCGGGCATCATCCTCGCAAGCCTGGTTGTGATGTGGTGGGTATATCAACTGGGCAGAGATATCAGCGAGCGCGCTTCACTGGCCGTGCAGGCGTCTGGTGTGGCTTTTCTCGGACGGTACCAACTAACGAAACGCACACCGCTGCGAATAGTGTTCAAACCCGACGGCCACCTGGCTGTTTTTAGCAAGTCTTACAGTATTTATGTCGAGTATGAAAACGGGCGTTTATTAATCGCTCGCCGTGTCGTCGGAAAAAAAGTCAACCAACAGAAACAGCTCGCCAGCGAGCTCGCCGCGTTTCTGGGCTTATTTGCATACGTGGATGATGGCTCTGGAAGACTGAAGAAATTAGCCGGCCAACGGTGAMTPLGSNEVFIIRPKIGIGRLFFVPLLRQTPWAITAIFCISLSTGLSLPGREWPGIILASLVVMWWVYQLGRDISERASLAVQASGVAFLGRYQLTKRTPLRIVFKPDGHLAVFSKSYSIYVEYENGRLLIARRVVGKKVNQQKQLASELAAFLGLFAYVDDGSGRLKKLAGQRNANANANANA
D1-35_02281618hypothetical proteinATGGAAAGCTGTTTGAGGACGCTTGGAGTTAGCCTCGCTAACAAGATAGTGATCCCCGCCGCTTGGTTATCGGGGCTTGTAACGATAGGACTTGTGTGGGGCATGATACGGTTTTCGCCCGATAAGCTTACAGTCGAAGGACGTCAGCTCTTCGTGGCTTCTTTTTCTATCTTTTGTCTCGCCATAGGGTACTTGATATGGCGTAAGCGACGAGCAGAAGCACTTGTGACATCCATCAACCTGAAAGAAGGTCTGAGCCTGGACGGTGCTCGGATGCTCGGCTATCCAAACTCCCTGTTTTTTGTCTTTGACCTGTCCAACAAGAAACTCGCTCAATGCCAAAGTGTCACCGGCGACTATCAAATTCGAGACTTCACGTGGGTAACAGGCTGGCAGTTCGAGTGGCAACAGATTGACAGCAGGGTATCGGGCGGCGTTCTTCAAATAGTCGATGGGGCAGGCATGAGCGTTCCAGCCGACGAAATTCGGCGTAGGTTCATAAAATTCACACTGGTTTTGACGGTTGCCGATACAAATCATCCTCTCTTCCGTTTCCCGATGAGCCGGAGCGCAGCTGAAGGCTGGTGTAGCCGGTGCAGTGTTCTTTTCAAGTGCTAAMESCLRTLGVSLANKIVIPAAWLSGLVTIGLVWGMIRFSPDKLTVEGRQLFVASFSIFCLAIGYLIWRKRRAEALVTSINLKEGLSLDGARMLGYPNSLFFVFDLSNKKLAQCQSVTGDYQIRDFTWVTGWQFEWQQIDSRVSGGVLQIVDGAGMSVPADEIRRRFIKFTLVLTVADTNHPLFRFPMSRSAAEGWCSRCSVLFKCNANANANANA
D1-35_02282579hypothetical proteinGTGACTTCAGTTTATAAGCGCGTGGTGACTTATCGCTGCCTTGGAACTATTTACCATCAAGGCTTGGCATTTGGTGAAGCAGGGCGAAAGCTAATTGACTCGAAGCAGAGTAATCTGTTCGTGCCAGGAATGATCAACATCTGTCTTGCCACGGAAATATTTTTAAAGTCAATCAACGCAACGATGACTTATGTTCTCGATGAAGAGGACGAACTGCCTGGCGGAATTGCGATATCCCAAGGACGTGATGAGTCTCTCAAAATCGCACCTGGCGGACAAGGACATCATCTCAGCAAACTGTACGAAAATCTGCCAGACGAAGCTAAAGAGTCAATCAAGGCTTTCGCCATCAATGAAGGATACAGCGGTGATATCGCCTATGGACTGCAGCAATATGACAAGGTTTTCGTAGAGTGGCGCTATATCTATGAGAAAAATGACCCTGGCGCCTTAGGCACGCATCCCCTCTTCCCGATTTGCAATGCCATTGACGCCTACTGTCGCGGAAATCTGGAGAAGACGTTTGGGGCAGTTGACGAAAAGCTCGAAGAGTCCCATCCGGATTTCGAGGCCAGGTAAMTSVYKRVVTYRCLGTIYHQGLAFGEAGRKLIDSKQSNLFVPGMINICLATEIFLKSINATMTYVLDEEDELPGGIAISQGRDESLKIAPGGQGHHLSKLYENLPDEAKESIKAFAINEGYSGDIAYGLQQYDKVFVEWRYIYEKNDPGALGTHPLFPICNAIDAYCRGNLEKTFGAVDEKLEESHPDFEARNANANANANA
D1-35_02283252hypothetical proteinATGAAAGTATTTCTCTACGCTTCTTTCAACGACGAAGGGAATAGAACTCACTTGGTTCGCACGACCGAAACACCACTCGAGAGCCTCCCTGGCAATATTCAGGACATCTACAAAAAGATTGAGGTTAAAGAATATGACGTCAATCCAGATGATCTATCAAGTCACTGGTGGTTATGCAAGGAGCTCGTTGACAACCTTTGCACGAAAGGCTGGGACGCGTGCGTTTGGGCGCGAGTTAACAGCTACGCCTGAMKVFLYASFNDEGNRTHLVRTTETPLESLPGNIQDIYKKIEVKEYDVNPDDLSSHWWLCKELVDNLCTKGWDACVWARVNSYANANANANANA
D1-35_02284213hypothetical proteinATGACGTCGTTCGAAGAATTCAGGGCCACATCCCATGAGCTTCTCAAAGAGCTGGATGCCGCGACGATAAAAATGATGATGCTGGTTTCTGCGAAAGAGGTATCCGGTCCTTTTTGGGAGGACGCTGCCCAGCGGCATCACGACGCTGTAGATGCCTGGCATTCCTTTCTCAATATTCCGACGGGTTTCGTGTCGGATCCGCCTCTACCCTAAMTSFEEFRATSHELLKELDAATIKMMMLVSAKEVSGPFWEDAAQRHHDAVDAWHSFLNIPTGFVSDPPLPNANANANANA
D1-35_02285549hypothetical proteinATGCGAGAATTTGAGCTCATTAAGTCCGTGCCAGTCCCCTCAAGGTCCGGCATTACCCATCTTTACAACCCGATGAACCTGGTCGACGCTTTTGCGATTCGGCTCCCTGCGGGCACATCCAGCGATCCGGATTTGCTAGCTCGATTCATTCTTTCACACCAGCCCTCCTGGATCGGATGGCTCCTGGCAGTCCGGGACACTATCGTTGCCTGTTTTGGACTCAAGACAGCCAGACATCTGGCATCGCTTGCCAATCGGGTTGGCGTCTTCAAGGTCTACAGTACAAACCAGACTGAAATCGTGTTGGGAGAGGACGACAAGCACCTCGACTTTCGGATATCGATCCTGTGTTCTGAAGAGGCGGAGCCAGAAGGCAATCGCCAATTGGTGTTTTCAACCGTGGTTCAGTGCCACAACCGTCTTGGCCGGGCCTATATCTTCGTTATCGCCCCGTTTCATCGCTTGGTGGTCAAGGCCAGCTTGCTCCGTGCAGCGCGCGTCGGTTGGCCTCTGGCTACCTGCGCCTCAGAGCGCAGTGTCCCCGTGTAGMREFELIKSVPVPSRSGITHLYNPMNLVDAFAIRLPAGTSSDPDLLARFILSHQPSWIGWLLAVRDTIVACFGLKTARHLASLANRVGVFKVYSTNQTEIVLGEDDKHLDFRISILCSEEAEPEGNRQLVFSTVVQCHNRLGRAYIFVIAPFHRLVVKASLLRAARVGWPLATCASERSVPVNANANANANA
D1-35_02286777hypothetical proteinGTGCAGAGAATGGGCAAACTGGAACCGTTAATGCCGTACAACTACATGAACGGCCGCTACCTGGTCTTCAAAGGCAACGGCATCGATGGGGCGCCTTTGGGCAGGATTCACCAGGACGGAACCGTTCGAAACCTGCAGGGTGAGCCGCTCTACTACATAAACATGGACGAACATGCGTTCTGTTCGATGGACTTTACCTTTCAGGGCAATATACAAAAAATTCGCGGCACGTTTTACGTGCTCGGTGACAGAACGCTGTTCACATTTTCCGAGATGAAGGTTAAGCCACTTGGAAACGAGACCGAGGAGCAGGCGCTTCACCGGGAGTTCAAAAACACCGCGATAAACCTGGCAAGGCAAATCGCCCAGGCGAAGAACGAGATGGCGCAGGAACGGATAGAGATGGCCATGTCCGATTCAAACCCTTTCCGGCGTTTCCGTGCCTTCTTCACGAGCCGAGCCCGCAGGGAGCGAGCATCACCAGGTTGGCGTCGCAGTGAGTTAGAAAACGATCATGAGTTCAAATCGAGGTCTGTCGCTGTCTCCTCATCATCACTTGCGCCAATGAGCTTATGGGCAACAGATGCAAGGACCAGGCAAACGCGGCCATACAACAATTACGCGACGGTCCGGTTACAGGTGAACTCCTATTACGGTCTGTCCCTGGCTTTCCGCTTTCCGCCGATCAAGGTGGGTTGTACTGCGTCACTCGCACAAGCTCCTCGTCGTAACCCACGTTGGGAAAACATCCCCTCCGTCTATACCCCGCGTTTCTAGMQRMGKLEPLMPYNYMNGRYLVFKGNGIDGAPLGRIHQDGTVRNLQGEPLYYINMDEHAFCSMDFTFQGNIQKIRGTFYVLGDRTLFTFSEMKVKPLGNETEEQALHREFKNTAINLARQIAQAKNEMAQERIEMAMSDSNPFRRFRAFFTSRARRERASPGWRRSELENDHEFKSRSVAVSSSSLAPMSLWATDARTRQTRPYNNYATVRLQVNSYYGLSLAFRFPPIKVGCTASLAQAPRRNPRWENIPSVYTPRFNANANANANA
D1-35_02287249hypothetical proteinATGAAAACGCTAGTCTTGGCACTCTCGCTGGTCGCACTGGCAGCCTGCATGCCTTATAGGACGGTCACCTCGCCAGATCCAGACTGGATGCGTCTGGGTGGATATGAGCCTGAGGGTTATCCAAGGACGTTTGTCGAGACTTGGGAGGGCAAATGCTATGCGGTTACCGAGGCATGGTTCAAGAGCGCAATCAACGGTCGTACCTTGTGGACCAAGCGGCAGTCTCACGAGGCTGTTACCTGTCCATAGMKTLVLALSLVALAACMPYRTVTSPDPDWMRLGGYEPEGYPRTFVETWEGKCYAVTEAWFKSAINGRTLWTKRQSHEAVTCPNANANANANA
D1-35_02288231hypothetical proteinATGAAATGTTATCTATGCGGGCTGGAAGCACAACAGTCCGAAGAGAACCAAGGTGGTGAGCTCGTCAACTGCGCTGACTGCGGCACCTACAAGATTTCAGGCCTTGTTCTGAAAGAACTGGGGGCCAGGAAATTCAATTACCCAAAAATGCGCGATGATTTGCACCGCCAGCGGCAGTTCAACGCTACGTCTGTCGCCGAGATCAATACCGAGACGGTCATCTGGGCTTGAMKCYLCGLEAQQSEENQGGELVNCADCGTYKISGLVLKELGARKFNYPKMRDDLHRQRQFNATSVAEINTETVIWANANANANANA
D1-35_02289981pip_1Proline iminopeptidaseATGGATGTCCCCCGTCAGATCACGTACAGTCAATTTCCCCCTATCGAGCAGCCTCGGCGCAGCGGCATGCTGCCCGTCGACGATCTGCATACGCTTTATTGGGAAGAAAGCGGCAACCCCGACGGTGTACCGGTGATTTACCTCCACGGCGGACCCGGCGAAGGCGCTCCGCCGACCAAACGACAGTTCTGGGATCCCGATCATTACCGCATCGTACTGTTCGATCAGCGCGGCGCCCTTCGCTCGACACCCTTGGCGGAACTGCGCGACAACACTACCCAAGCGCTGGTCAACGACATCGAGGCGTTAAGGGAGCATCTGGAAATCGATCGTTGGCTGATCACCGGTGGCTCGTGGGGCACCACCTTGGCCTTGGCCTACGGCGAGACGCATCCGCAACGCTGCCTTGGCTTCATCCTGCGAGGGGTATTCCTGGGCACAGCCGACGAGATCGACTGGTTCATCCACGGCATGCGGCGCTTCTTTCCCCGCGCTCATGAAGACTTCGTGAATTTCATTCCCGAAGCCGAACGCCACGACCTCTTGAAAGCCTATCTGGACCGCATGACCGGTGACGACGAGCACCTACGCGTGGAAGCCATCCGCTGCTGGGTGCGCTACTCCGCCAGTTGTTCGCTGTTGCGGCATGACCCTGACGGCGTCGAAGAACAAGCGTCAGACGATCAGACCAGCACTGGCATGGGATGCCTGGATGCCTGGTACTTCAAGAACCAGCTATTCTTGGAGGAAGATCAGCTCATCCGAGACATCGCGGCGATTACCCATCTGCCGTGCAGGATCATCCAGGGCGGGCACGACATGATTGCTACGCCAAACTCGGCCTTTCGCCTGCATAAAGCGTGGCCAGGCTCGGTGCTGACCGTGATCAATGATGCCGGGCATTCACCTTCGGAAACCGGGATTGTCAGTGCTTTGATCGAGGCGACGGAGCAGTTCAAGGTGGGTGGGAAATTCGGTTAGMDVPRQITYSQFPPIEQPRRSGMLPVDDLHTLYWEESGNPDGVPVIYLHGGPGEGAPPTKRQFWDPDHYRIVLFDQRGALRSTPLAELRDNTTQALVNDIEALREHLEIDRWLITGGSWGTTLALAYGETHPQRCLGFILRGVFLGTADEIDWFIHGMRRFFPRAHEDFVNFIPEAERHDLLKAYLDRMTGDDEHLRVEAIRCWVRYSASCSLLRHDPDGVEEQASDDQTSTGMGCLDAWYFKNQLFLEEDQLIRDIAAITHLPCRIIQGGHDMIATPNSAFRLHKAWPGSVLTVINDAGHSPSETGIVSALIEATEQFKVGGKFGNANANANANA
D1-35_022901002trxBCOG0492Thioredoxin reductaseATGCCCCTGGATTGCGATGAATATGAAGAGCTGTTCGCTCGGCCAGAATCAGCTTCCACTGAAGGTGGGGACGTTGATCTTGATTGTCTGATCGTCGGCGCCGGCCCCGCTGGATTGACCGCTGCTGTTTACCTGAGTCGATTCCACCGGCAGGTCCTGGTCGCCGACGGTGGGCGCAGCCGTGCGAGTCTCATTCCACGTTCCCATAACTATCCGGGTTTTCCACCGGGCATCTCCGGCACGGACCTGCTCGCCCGGCTGCGAGAGCAGGCGTTGCGTTACGGCGCGATCATCGAGTCAGGAAGGGTCAAGCGCCTGCTCAAGCACCGTGCAGGTTTTGTTGCGCAACTCAACGGCCGTGAACTGGTTGCGCGTCGCGTGGTGCTGGCGACCGGAATCGTCGACACGCTGCCACACATGGAGCGGCCTTACGATGCGGTTGCGCAATCGGTGATCCGACTTTGCGCGATCTGTGATGGTTACGAAGTCAACGGCGACAACGTCGCGGTTTATGGCGAGGCGAGCTGTGCGATCAATCATGGATTGTTTTTGCGAAACTTCACTGACCGGGTAACGGTATTGATTCATGGAGATAGCCAGGCTTGCGAAGAAGCCGTTGCGGTAGCGAGGCATGCCGGTATTCGCGTGGTCGACGATCGTGTCGAGCATATAGAGGCTGGCAGCGATCAAGTCCAGGTTGAAACGTGCAAGGGCGAAAGCCTCTGCTTCGACATTGTGTATCCGTGTCTGGGTTCGCAAATATGCTCCGAACTCGCGGTGCAACTCGGTGCCGAAACCGAGCAAGGTGCGCTGGTCGTCGACCCGCACCAGCGCACCTGCGTAGAAGGTCTGTATGCGGTTGGAGACGTGGTCAATTCGCTCAAGCAGATCAGTGTCGCTACCGGCCAGGCGGCAATATGTGCGACGGCGGTGCATAACAGCCTGGAGGTGCGTTTATGGGATCGAGCGCGTGACAAGAAGATGCCTTTCGATTCGGCTTGAMPLDCDEYEELFARPESASTEGGDVDLDCLIVGAGPAGLTAAVYLSRFHRQVLVADGGRSRASLIPRSHNYPGFPPGISGTDLLARLREQALRYGAIIESGRVKRLLKHRAGFVAQLNGRELVARRVVLATGIVDTLPHMERPYDAVAQSVIRLCAICDGYEVNGDNVAVYGEASCAINHGLFLRNFTDRVTVLIHGDSQACEEAVAVARHAGIRVVDDRVEHIEAGSDQVQVETCKGESLCFDIVYPCLGSQICSELAVQLGAETEQGALVVDPHQRTCVEGLYAVGDVVNSLKQISVATGQAAICATAVHNSLEVRLWDRARDKKMPFDSAPGPT0013060_8637DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013060-trxB-K00384NANA
D1-35_02291210hypothetical proteinGTGGATGTGTACAGGATCGAATTCGAAAATGACCGTTGGACACTTTATAAATCCCATGGCTACAAACCGATCCTGCAGGCTGACAGTCAAGGTGAGTTGATCGACCATGTGCTTGCCTTGACGCGGGGGGAGGGTGTCGTGATTCGATTCATGGGCAACAGCGGCCTGCGAGAATTGAGGCTGGGGAACGTGCGGGACGACGTACCTTAGMDVYRIEFENDRWTLYKSHGYKPILQADSQGELIDHVLALTRGEGVVIRFMGNSGLRELRLGNVRDDVPNANANANANA
D1-35_02292120hypothetical proteinATGACCGACGAGAAGAAAAACGAACAACCCAAGGACGACACGCCCGCCCACTCCACCGAGCAGGAGCGTGAGCGTTTGAAGGACTTCAACAAAGAGGGTATTCCACCGGGCTCTTCGTGAMTDEKKNEQPKDDTPAHSTEQERERLKDFNKEGIPPGSSNANANANANA
D1-35_02293135hypothetical proteinATGACTATCGAAGCAGAGACACTCGTACAACTGACCGAAGCACTTCAGAAGCGTGGGATCGTGCTGGTATCCGACGTGGCGTTTATCCGAGCGCCTTACAGGGAGGATCATCATTGGATTTGCATGGTGGAATAAMTIEAETLVQLTEALQKRGIVLVSDVAFIRAPYREDHHWICMVENANANANANA
D1-35_02294177hypothetical proteinATGGCTGACGACTTGAGCAATCGCGGGCCCCAGGACCGGAACCGCATCAACACTTCCGAAGACTGGGAATTGAGATACTGGGCGAAAGAATTCGGCGTGACCGAAGAGCAGCTCAAGGCAGCGGTCAAGGCTGTTGGGCCGGTGGCCGATGATGTTCGCGAGCATCTGAAGAAGTGAMADDLSNRGPQDRNRINTSEDWELRYWAKEFGVTEEQLKAAVKAVGPVADDVREHLKKNANANANANA
D1-35_02295429hypothetical proteinATGAGCACGACTGAACAAATACAAAGCAGCGGAAAATACAGCGCCAAATGGCAGGAACGTTTCGACTTCTTCGATACCTATGGCGCGCCAAACGACCCGCGCTACAAGGAAGCCGTCAAGACTCTGCCGGACTTCAAAAAGAAAATCCTGATCAACGCCAACGTGATCGCGTTTTTCTTCGGTCCTATCTACCTGTTTGTCTTGGGCCTGTGGAAGAAGAACCTGGCGCTGCTCGGAATCTTCCTGGCGATCAACATCGTATTGAGCGTGGTTTTCGCCATCATCGGCATGGAATTTCCGCGGCCGTTGAGCATGGGTCTGAACATCGCCATGTCGATGATGTATGCGCTCATGACCAACTATGCGTACTACCTGAAGGAAATCAAAGGCGAGCAAGGCTGGAATCCGCTCAAAGGCATGCGTCTCTGAMSTTEQIQSSGKYSAKWQERFDFFDTYGAPNDPRYKEAVKTLPDFKKKILINANVIAFFFGPIYLFVLGLWKKNLALLGIFLAINIVLSVVFAIIGMEFPRPLSMGLNIAMSMMYALMTNYAYYLKEIKGEQGWNPLKGMRLNANANANANA
D1-35_02296534hypothetical proteinATGTTCAAATCGCGCTCGTTGATTGCTGCAGTGACCTGTTTTGCCTTGGCGGCGGGCCCTGGCCTTGCTGTCGCGGACCCGGGCAATGGCAAGGGAAACGCTCAAGTCGATCAAGGTCAGGGACAAGGAGGCAAGGGCGGGCAGGGCAACAAGGGCGGCCAGGGTAATGCTGGCAATAAGGGTAACCAAGGCAATGCTGGCAATAAAGGCAACCAGGGCGGCAAAGGCAACCAGGGCGGTGGCGGCAGCGATTGGCATAACGGGCCGAGCATCGACCGTGGCGGTGTTCTGGGGGTGATTGGCGGTTATCGCGATTACTGGAGCCCTGGCCCGGCACTGCCGCCGGGTATCCAGAAGAACCTCGCCCGGGGCAAGCCGCTGCCCCCCGGTATCGCCAAGAAGCTCGACGGACGTTTGCTGGGACATCTGCCGCGCTATGACGGTTACGAATGGCAGCAGGTCGGTACCGACCTGATTCTGGTGGCGATCGCCAGTGGCATCATTTACGAAGTGCTCAACGGTGCCTTCGACTGAMFKSRSLIAAVTCFALAAGPGLAVADPGNGKGNAQVDQGQGQGGKGGQGNKGGQGNAGNKGNQGNAGNKGNQGGKGNQGGGGSDWHNGPSIDRGGVLGVIGGYRDYWSPGPALPPGIQKNLARGKPLPPGIAKKLDGRLLGHLPRYDGYEWQQVGTDLILVAIASGIIYEVLNGAFDNANANANANA
D1-35_022971851acoR_2COG3284Acetoin catabolism regulatory proteinATGGCCGCACCAGCTCCTGCCTTGTCCCACGAGGCCATCATTCAGGCTTCCTGGTCCCGTTGCCGCGCCTTTGGCCTCAATCACCAGAGCGTACCGGCATTCGACCCATTGCCGGCCGAGGGTATCGCCCAGTTACTGGAAAGCCAGCATTCACTGGTGCAGACCACCCACCAGGAAGTCCTGCCGTACTACGAGAACATCCTGAGCAATTCCAATTGCCTGATCATGCTGGCCGACAACCAGGGCCAGGTGCTGACCTCCTGGGGCACCCAGCGGTTCATCGAACCGAAACTGGCCCACGGTTTCAGCGCCGGAGCGACCTGGATGGAGCGCTGCACCGGCACCAACGCCATCGGCACCGCGCTGGCCTGTGAACAGGCGGTGCACATCGAACACGATGAACATTTCCTCAAGGCCAACCGTTTCATGACCGGCTCCGCCGCGCCGATCTTCGATGCCGAGCGCAAGGTCATCGCGGTGCTGGACGTCTCCAGCGACAGCTACCTGCCGCCGTCCCATACGCTGGGCATGGTCAAGATGATGAGCCAGACGGTGGAGAACCGGCTGATCCTCAACCTGTTTCGCGGTGAACACTTCCAGCTCACCTTCAACACCGGACTGAACAACCTCGACAGCCAATGGGCCGGGCTGTTGATTTTCGATGAGAGCGGCCAGGTGCTCTCGGCCAACCGCCGCGCCGACAACCTGTTGGGCCTCAGCCTGTCGCGGGTAAGCATCGAAAGCCTGTTCAAGGTCTCGCTGATGGAATTGCTCAACCAGCCCGACGGCCTGCCGTTCGCCTTGCAGGCGTCCGGGCGCAATCGGTTCCAGTGCCTGCTCAAGCGGCCGAAGCAGGTGTCGGTCAAGCCGCGCATCTTTGCCGAAACGACCCCCTCGCCAGCGCTCGCCCCTGCCAATACCACCATCAGCCTCAACACCCTGCACTTCGGTGACAGCAGGGTGGAAAAAGCTGTGCGCCAGGCCGAGCGCCTGTTGGAGAAAGACATTCCGCTGCTGATCCACGGCGAGACCGGCGTCGGCAAGGAAGTCTTCGTCAAGGCTTTGCACCAGGCCAGTTCGCGTTGCAAGCAGGCGTTTATCGCAGTCAACTGCGCGGCGATTCCCGCCGAGTTGGTCGAGTCGGAATTGTTCGGTTATGAAAAAGGTGCCTTCACCGGCGCCAACCAGAAGGGCAGCATCGGCCTGATCCGCAAGGCCGATCGCGGCACGTTGTTCCTTGATGAGATCGGCGACATGCCGCTACCGACCCAGGCCCGCTTGCTGCGGGTCTTGCAGGAACGCTGCGTGCAACCGGTGGGCAGCGCCGAGCTGTTCCCGGTGGACATCCGCATCATCTCCGCCACCAACCGCTCGCTGCGCGAACAGGTGCAACTGGGGCGATTTCGTGAAGACCTCTACTACCGCATCGGCGGTCTGACCCTGGAATTGCCGCCCCTGCGCGAACGCAGCGACAAGCAGGCGCTGTTCAAGCGCCTCTGGGAACACCACCGCGAGCCGACCCAATGGGCCGGCCTGAGCCGCGAAGTCCTGGAGCTGTTCGAACGCCACCCGTGGCCGGGCAACCTGCGGCAAGTCAGCAGCGTGCTGCAAGTGGCCCTGGCAATGGCCGAAGAACAACCGATCCGCCCGGAACATCTGCCCGATGACTTTTTTGTCGACCTGGAAATGGAGCCGGTGGAAACACCGGAACCGCTGGCAGTAGACCTGAACGACGCCGAAGACCTGAACCGCCAGTTGCAGGCCGTCGGCGGCAATATTTCCCACCTGGCACGACGCCTCGGCGTGAGCCGCAATACCTTGTACAAACGCCTGCGGCAGTTGGAAAGCTGAMAAPAPALSHEAIIQASWSRCRAFGLNHQSVPAFDPLPAEGIAQLLESQHSLVQTTHQEVLPYYENILSNSNCLIMLADNQGQVLTSWGTQRFIEPKLAHGFSAGATWMERCTGTNAIGTALACEQAVHIEHDEHFLKANRFMTGSAAPIFDAERKVIAVLDVSSDSYLPPSHTLGMVKMMSQTVENRLILNLFRGEHFQLTFNTGLNNLDSQWAGLLIFDESGQVLSANRRADNLLGLSLSRVSIESLFKVSLMELLNQPDGLPFALQASGRNRFQCLLKRPKQVSVKPRIFAETTPSPALAPANTTISLNTLHFGDSRVEKAVRQAERLLEKDIPLLIHGETGVGKEVFVKALHQASSRCKQAFIAVNCAAIPAELVESELFGYEKGAFTGANQKGSIGLIRKADRGTLFLDEIGDMPLPTQARLLRVLQERCVQPVGSAELFPVDIRIISATNRSLREQVQLGRFREDLYYRIGGLTLELPPLRERSDKQALFKRLWEHHREPTQWAGLSREVLELFERHPWPGNLRQVSSVLQVALAMAEEQPIRPEHLPDDFFVDLEMEPVETPEPLAVDLNDAEDLNRQLQAVGGNISHLARRLGVSRNTLYKRLRQLESPGPT0001030_1639DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0001030-acoR-K21405NANA
D1-35_022981095ugpC_2COG3839sn-glycerol-3-phosphate import ATP-binding protein UgpCATGTCATTACAGCTTGAGCACATCTGTCGCACCGTCGAAGGCCAGACCTGGATCGACGATGCCAATCTGAGTTTCGAACCCGGATCCTTCAACGTTCTGCTGGGCCGCACGCTGTCCGGCAAGACCAGCCTGATGCGCCTGATGGCCGGTCTGGACAAGCCCGACAGCGGCCGCATCCTGATGAACGGCGTCGATGTCACCAAACGGCCGGTGCGGCTGCGCAATGTGTCGATGGTGTACCAGCAGTTCATCAACTACCCGACCATGACCGTATTCGAAAATATCGCCTCGCCGCTGCGCCAGGCCGGTATCTCCGAAGAAATTATCCAGGGCAAGGTCCTGGAAACCGCGAAGATGCTCCGGATCGAAAAATTCCTCAAGCGTCATCCGCTGGAGCTGTCCGGCGGCCAGCAGCAACGGACCGCCATGGCCCGTGCGCTGGTCAAGGACGCCGAACTGATCCTGTTCGACGAGCCGCTGGTGAACCTCGACTACAAGCTGCGTGAAGAACTGCGCCAGGAAATGCGCGAGCTGTTCCAGGCTCGTCACACCATCGCCGTCTACGCCACCACCGAGCCGAACGAAGCGCTGGCCCTGGGTGGCACCACGACGATCCTGCATGAGGGCCGGGTGATCCAGAGCGGCAAGTCGTCTTCCGTTTATCACCAACCGCAAACCGTGCTGGCCGCCGAGCTGTTTTCCGAACCACCGATCAATCTCATGCCGGGACGCATTGCCGGCAATGAAGTCAGCTTCGCCAACTTCGTGCACTTCCCGCTGAACGTCGACCTGCGTCCGGTGGGCGAGGGCGAGTTCCGTTTCGGCGTGCGTCCCAGCCATATCTCACTGGTGCCGAGCAACGACGACGACCTGGAACTGGCGGTGACCGTCGAGGTGGCCGAGATCAGCGGTTCCGAGACCTTCCTGCACGTGCGCAACGAACACTTCCTCCTGGTCCTGCATTTGCCCGGTGTGCACGAATACGACGTCGACGCGCCGATCCGCATCTACATCCCGACCCATAAATTGTTTGTCTTCGATGCCCAGGGCAAGCTGGTCCAAGCCCCAGGGCAACGTATCGCGAGGGTTGCCTGAMSLQLEHICRTVEGQTWIDDANLSFEPGSFNVLLGRTLSGKTSLMRLMAGLDKPDSGRILMNGVDVTKRPVRLRNVSMVYQQFINYPTMTVFENIASPLRQAGISEEIIQGKVLETAKMLRIEKFLKRHPLELSGGQQQRTAMARALVKDAELILFDEPLVNLDYKLREELRQEMRELFQARHTIAVYATTEPNEALALGGTTTILHEGRVIQSGKSSSVYHQPQTVLAAELFSEPPINLMPGRIAGNEVSFANFVHFPLNVDLRPVGEGEFRFGVRPSHISLVPSNDDDLELAVTVEVAEISGSETFLHVRNEHFLLVLHLPGVHEYDVDAPIRIYIPTHKLFVFDAQGKLVQAPGQRIARVAPGPT0016815_131DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULATION_GLYCEROL_TRANSPORT,PGPT0016815-glpS-K17324NANA
D1-35_022991110sugCCOG3839Trehalose import ATP-binding protein SugCATGGCCGAAATTCGTTTGCAGAACCTCGCCCACAGCTACACCAGCACCCCGGCGGGCCCCGAGGACTACGCGATCCGCGAGATGAACCACATCTGGGAGCAGGGCGGCGCCTATGCGCTGCTCGGACCTTCGGGTTGCGGCAAGTCGACCTTGCTCAACATCATTTCCGGCTTGCTCAGCCCTTCCGAAGGGCAGGTGATGTTCGACAGCAAAGTCGTCAACGAACTGTCCCCGGAGCGGCGCAACATCGCCCAGGTGTTCCAGTTTCCGGTGGTCTACGACACCATGACGGTGTTCGACAACCTGGCGTTCCCGCTGCGCAACCAGGGCATGGCCGAGGCGCGGATCCACACCAAGGTGCAGGAAATCGCCGAGGTTCTCGACCTGCAGAGCCTTTTGGACAAGAAGGCCCGCAACCTCACCGCCGATGAAAAACAGAAAGTCTCCATGGGCCGTGGGCTGGTGCGCGACGATGTCTCGGCGATCCTGTTCGACGAGCCGCTGACGGTGATCGATCCGCACCTGAAATGGAAACTGCGGCGCAAGCTCAAGCAGATCCACGAGCAGTTCAACATCACCATGGTCTACGTCACCCACGACCAGTTGGAGGCCTCCACCTTCGCCGACAAGATCGCGGTGATGTACGGCGGCCAGATCGTGCAGTTCGGCACACCGCGTGAACTGTTCGAGCGCCCGAGCCACACCTTCGTCGGCTACTTCATCGGCAGCCCCGGCATGAACCTGATCGAGGTCCAGGCGCAGCCCGGTGGCGTCGGCTTCGCCTCGACCCACTTGCCGCTGTCCGAAACCCTGCAGCGGCGTGTCGCCGACGCGCAAGGCAAGAGCCTGAAGGTCGGCATCCGCCCGGAATTCGTGCATGTCTGGGACGGCCCTTACGACGACGCGATGCGGGCTGACGTGGTGCACGTCGAAGACCTCGGCACCTACAAGATCCTGACCCTCAACCTTGATGGCGCACCGCTGAAGGTCCGCCTCGCCGAAGACAAGCCTGTGCCGGAAGGCACCGCGTACATCAGTTTTCCGGGTCAATGGCTGATGGTCTATGCCGATGAATATCTGCTTGAATCCGCAGGCGAGGTGCAGCCATGAMAEIRLQNLAHSYTSTPAGPEDYAIREMNHIWEQGGAYALLGPSGCGKSTLLNIISGLLSPSEGQVMFDSKVVNELSPERRNIAQVFQFPVVYDTMTVFDNLAFPLRNQGMAEARIHTKVQEIAEVLDLQSLLDKKARNLTADEKQKVSMGRGLVRDDVSAILFDEPLTVIDPHLKWKLRRKLKQIHEQFNITMVYVTHDQLEASTFADKIAVMYGGQIVQFGTPRELFERPSHTFVGYFIGSPGMNLIEVQAQPGGVGFASTHLPLSETLQRRVADAQGKSLKVGIRPEFVHVWDGPYDDAMRADVVHVEDLGTYKILTLNLDGAPLKVRLAEDKPVPEGTAYISFPGQWLMVYADEYLLESAGEVQPPGPT0016820_63DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULATION_GLYCEROL_TRANSPORT,PGPT0016820-glpT-K17325NANA
D1-35_02300867melD_2COG1175Melibiose/raffinose/stachyose import permease protein MelDATGAACAAGGTGCAGAACAACAAGGCCTGGTGGCTGGTGTTGCCGGTGTTCCTGCTGGTGGCCTTCAGTGCCGTGATCCCGATGATGACCGTGGTCAACTATTCGGTGCAGGACATCTTCGACCAGTCCAGCCGCTACTTCGTCGGCGCCGACTGGTACAGGCAGGTGCTGCTCGACCCACGGCTGCACGATTCGCTGTTGCGCCAGTTCATCTACTCGGCGTGTGTCCTGCTGATTGAAATTCCGCTGGGCATCGCCATCGCCCTGACCATGCCGACCAAGGGCAAGTGGTCGTCCCTGGTGCTGATCATCCTGGCGATTCCGTTGCTGATTCCGTGGAACGTGGTGGGTACCATCTGGCAGATTTTCGGGCGCGCCGACATTGGCCTGCTGGGCTCGACGCTCAACGCCATGGGCATCAACTACAACTACGCGGCCAACACCATGGACGCTTGGGTCACGGTGCTGGTGATGGACGTCTGGCACTGGACTTCGCTGGTGGCACTGCTGTGCTATTCGGGGCTGCGGGCCATTCCGGACGTTTATTATCAAGCGGCGCGAATCGACCGGGCGTCGAACTGGGCGGTGTTCCGGCACATCCAGTTGCCGAAGATGAAGAGCGTGCTGCTGATCGCGGTGATGCTGCGCTTCATGGACAGCTTCATGATCTACACCGAGCCGTTCGTCCTCACCGGCGGCGGGCCGGGCAACGCCACCACGTTCCTCAGCCAGACCCTGACGCAGATGGCTATCGGTCAATTCGACCTGGGCCCGGCGGCGGCGTTTTCCCTGGTGTACTTCCTGATCATTCTGTTGGTGTCCTGGCTGTTCTATACCGCCATGACGCACTCCGACGCCAACCGTTGAMNKVQNNKAWWLVLPVFLLVAFSAVIPMMTVVNYSVQDIFDQSSRYFVGADWYRQVLLDPRLHDSLLRQFIYSACVLLIEIPLGIAIALTMPTKGKWSSLVLIILAIPLLIPWNVVGTIWQIFGRADIGLLGSTLNAMGINYNYAANTMDAWVTVLVMDVWHWTSLVALLCYSGLRAIPDVYYQAARIDRASNWAVFRHIQLPKMKSVLLIAVMLRFMDSFMIYTEPFVLTGGGPGNATTFLSQTLTQMAIGQFDLGPAAAFSLVYFLIILLVSWLFYTAMTHSDANRPGPT0016585_410DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULATION_GLYCEROL_TRANSPORT,PGPT0016585-glpP-K17322NANA
D1-35_02301801dasCCOG0395Diacetylchitobiose uptake system permease protein DasCATGAGCAAGAGAAAGCTGATTCCGCTTTTGATCTACATCCTGTTCCTGCTGGTGCCCATCTACTGGCTGCTGAACATGTCGTTCAAGAGCAACACCGAAATCCTCGGTGGCCTGACGCTGTGGCCACAGGATTTCACCTTCCAGAACTACAAAGTGATCTTCACCGATCCGAGCTGGTACACCGGTTACCTCAACTCGCTGTACTACGTGAGCCTGAACACGGTGATTTCCCTGGCGGTCGCGCTGCCGGCGGCCTATGCGTTCTCGCGCTACCGCTTTCTTGGCGACAAGCATCTGTTCTTCTGGCTGCTGACCAACCGCATGGCGCCACCGGCGGTTTTCCTGTTGCCGTTCTTCCAGCTGTACTCGTCCATCGGCCTGTTCGACACCCATATCGCCGTAGCTTTGGCCCACTGTCTGTTCAACGTGCCGTTGGCGGTGTGGATTCTTGAAGGCTTCATGTCCGGCGTGCCGAAAGAAATTGACGAGACCGCCTACATTGACGGCTACAGTTTCCCCAAGTTCTTCGCCAAGATCTTTATCCCGTTGATCGGTTCCGGCATCGGCGTCACGGCGTTTTTTTGCTTCATGTTCTCCTGGGTCGAGCTGTTGCTGGCCCGGACACTGACCTCGGTGAATGCCAAGCCGATCGCGGCGGTCATGACCCGCACGGTGTCGGCGTCCGGTATTGACTGGGGCGTGCTGGCGGCGGCAGGGGTGTTGACCATCCTGCCGGGCATGCTGGTGATCTGGTTCGTTCGCAACCACGTGGCCAAGGGCTTTGCCCTGGGCCGGGTCTGAMSKRKLIPLLIYILFLLVPIYWLLNMSFKSNTEILGGLTLWPQDFTFQNYKVIFTDPSWYTGYLNSLYYVSLNTVISLAVALPAAYAFSRYRFLGDKHLFFWLLTNRMAPPAVFLLPFFQLYSSIGLFDTHIAVALAHCLFNVPLAVWILEGFMSGVPKEIDETAYIDGYSFPKFFAKIFIPLIGSGIGVTAFFCFMFSWVELLLARTLTSVNAKPIAAVMTRTVSASGIDWGVLAAAGVLTILPGMLVIWFVRNHVAKGFALGRVPGPT0016810_381DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULATION_GLYCEROL_TRANSPORT,PGPT0016810-glpQ-K17323NANA
D1-35_02302273hypothetical proteinATGGAATGGATGAACTGGACCGCCCCGACGGCGACGTTTTTTGGGGTCATTGCCTTGCTGCTGGCGGGCATGACGACATGGGAATTGCGTTCGCCGAGTATCCCTCGGCGTGGTTTCCTGCCGATTGCCACGACCCGTGGCGATCGGTTGTTTATCGGTCTTCTCGGTAGCGCCTACCTGCACCTGCTGGTGATCGGCGTTACCGACTGGAGCATCTGGATAGCGTTCGCGTTGTCTCTGGTGTGGCTGTTGGCAGTGATGCGGTGGGGCTAGMEWMNWTAPTATFFGVIALLLAGMTTWELRSPSIPRRGFLPIATTRGDRLFIGLLGSAYLHLLVIGVTDWSIWIAFALSLVWLLAVMRWGNANANANANA
D1-35_023031743hypothetical proteinATGTTCGATAAAAACAATAAGCTGCGACATAGCGTTTCATTGGCAGCCATGCTGGCACTCAGCGGGCTGAGCGCTACGGCCTGGGCCGACGCCTATGAAGACGCCGCGAAAAAATGGATCGGCAGCGAATTCAAGCCGTCGACCCTGACAGCCGAGCAGCAGCTCGAAGAACTGAAGTGGTTCATCAAGGCTGCCGAGCCATTTCGCGGGATGAAAATCAACGTGGTCTCGGAGACCATCGCTACCCACGAATATGAATCCAAGGTACTGGCCAAGGCTTTTAACGAAATCACCGGGATCCAGCTGACCCACGACCTGCTCCAGGAAGGCGACGTGGTGGAGAAGCTGCAGACCCAGATGCAGTCCGACAAGAACATCTACGACGGCTGGGTCAATGACTCGGACCTGATCGGCACGCATTTTCGCTACGGCAAGACCGAGTCGATCACCGACCTGATGGCCAACGAAGGCAAGAATTTCACCTCGCCGACCCTCGACCTCAAGGACTTCATCGGCATCTCCTTCACCACCGCGCCGGACGGCAAGGTCTATCAACTGCCCGACCAGCAGTTCGCCAACCTTTACTGGTTCCGCGCCGACTGGTTCGAGCGTGCGGACCTGAAGGCCAAGTTCAAGGAAAAATACGGCTACGAGCTGGGCGTACCGGTGAACTGGTCGGCCTATGAAGACATCGCGAAGTTCTTCTCCGAAGACGTCAAGGAGATCGACGGCAAGCGCGTCTACGGCCACATGGACTACGGCAAGAAAGACCCGTCCCTGGGCTGGCGCTTCACCGATGCCTGGTTCTCCATGGCCGGCGGCGGTGACAAGGGCCTGCCTAACGGCTTGCCAGTGGACGAGTGGGGCATTCGCGTCGAAGACTGCCATCCGGTCGGCTCCAGCGTCACCCGCGGCGGCGACACCAACGGCCCGGCCGCCGTGTTCGCCACCACCAAGTACGTCGACTGGATGAAGAAATACGCGCCACCGGAAGCGGCGGGCATGACCTTCTCCGAGTCCGGTCCGGTGCCGTCCCAAGGCAACATCGCCCAGCAGATTTTCTGGTACACCGCTTTCACCGCCGACATGACCAAGCCGGGCCTGCCAGTGATGAACGCCGACGGCACGCCGAAATGGCGCATGGCGCCGTCGCCACGCGGTCCGTATTGGGAAGAGGGCATGAAGCTGGGCTATCAGGACGTGGGTTCCTGGACCTTCATGAAGTCGACGCCTGAGAAACAGCGCCTCGCGGCCTGGCTCTACGCGCAGTTCGTGACATCCAAGACCGTGTCGCTGAAGAAGACCATCGTTGGCCTGACGCCGATTCGCGAATCGGACATCAACTCCCAGGCGATGACCGACCTGGCGCCGAAACTTGGTGGCCTGGTGGAGTTCTATCGCAGCCCGGCCCGTGTGCAATGGTCGCCAACCGGGACCAACGTGCCGGACTATCCACGCCTGGCGCAACTGTGGTGGAGCCACATCGCCGAAGCGGCCAGTGGCGAGAAAACCCCGCAACAGGCTCTCGACGGGCTGGCCAAGGATCAGGACGCGATCATGACGCGTCTGGAACGCTCCAAGGCCCAGGCCACCTGCGCACCTAAGATGAACCCTGAGCGCGACGCGCAATACTGGTTCGATCAACCGGGCGCACCGAAGCCGAAACTGGCGAACGAGAAGCCTAAAGGCGAGACGGTCAACTATGCCGAATTGCTGAAATCGTGGGAGGCGGCGCGTAAGTAAMFDKNNKLRHSVSLAAMLALSGLSATAWADAYEDAAKKWIGSEFKPSTLTAEQQLEELKWFIKAAEPFRGMKINVVSETIATHEYESKVLAKAFNEITGIQLTHDLLQEGDVVEKLQTQMQSDKNIYDGWVNDSDLIGTHFRYGKTESITDLMANEGKNFTSPTLDLKDFIGISFTTAPDGKVYQLPDQQFANLYWFRADWFERADLKAKFKEKYGYELGVPVNWSAYEDIAKFFSEDVKEIDGKRVYGHMDYGKKDPSLGWRFTDAWFSMAGGGDKGLPNGLPVDEWGIRVEDCHPVGSSVTRGGDTNGPAAVFATTKYVDWMKKYAPPEAAGMTFSESGPVPSQGNIAQQIFWYTAFTADMTKPGLPVMNADGTPKWRMAPSPRGPYWEEGMKLGYQDVGSWTFMKSTPEKQRLAAWLYAQFVTSKTVSLKKTIVGLTPIRESDINSQAMTDLAPKLGGLVEFYRSPARVQWSPTGTNVPDYPRLAQLWWSHIAEAASGEKTPQQALDGLAKDQDAIMTRLERSKAQATCAPKMNPERDAQYWFDQPGAPKPKLANEKPKGETVNYAELLKSWEAARKPGPT0016805_136DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULATION_GLYCEROL_TRANSPORT,PGPT0016805-glpV-K17321NANA
D1-35_02304942hypothetical proteinATGCCTTCATCCTTACTTTCTCGCCTCAGGCAACGCTGGCTGGCCTGGTTGTTCATGGCCGCGATGGTGGTCGGCCTGCCGGTGGGCTGCGCGGTGTTGCAGCACAAGGAACGCGAGCTGGTGTTTCGCATCGAGCCGGGGACGGCGAGCTGGTTCAGTGGCCTTCCCAGCGGCGTGCAGGAGTTCGACCTCAAGCCCAAGAGCTTCAAGGCCGGGGAAAATATCCACGGCTGGTGGTGGCCGGCCGAACGCAAGAACGCGCCCGCCATCCTGTACCTGCACGGCGTGCGCTGGAACCTGACCGGCCAGCTGTTTCGCATCCAGCAATTGCGGGCGCTGGGCTATTCGGTCATGGCGATCGATTACCGTGGCTTTGGCAAAAGCCAAGGGGGGTTGCCCTCTGAAGCCAGCGTGTACGAGGATGCAAGAATCGCCTGGGAACGTCTTGCGGTGCTGCAACCAGACCCGGCCCTGCGCCTGATCTACGGCCATTCCCTGGGCGGTGCCGTCGCGGTGGATCTTGCGGCGGAGCTGGGTCAGGAGGCGGCAAAAAATGGCACCACCGTGCCCGCCCGAGGCCTGGTCATCGAATCGACCTTCACGTCCTTGGGCGATGTCGCCACCGCCATGGCCAACACTTCCCTGCCGGTACGCTGGCTGCTGTCGCAGAAGTTCGATTCCATCGACAAGATCGGCGAGATCAACATGCCGCTGCTGATCGTGCACGGCGCCGCCGACCGCTACGTACCACCACGCTTCAGCGAGCAGCTGTTCAATGCCGCCCGGGAACCCAAGCGTTTGTTGTTGGTGCCGGGCGCCACGCATAACAACAGCATGAGCCTGGCGGGCCGCACGTATCGGCAGGCGTTGGATGCGTTGATGCATGCCCGCCCATCCCCGGTGGCCGGAAACGCCCAGGCAAGCCCGGTCAAGGCGGGCTAAMPSSLLSRLRQRWLAWLFMAAMVVGLPVGCAVLQHKERELVFRIEPGTASWFSGLPSGVQEFDLKPKSFKAGENIHGWWWPAERKNAPAILYLHGVRWNLTGQLFRIQQLRALGYSVMAIDYRGFGKSQGGLPSEASVYEDARIAWERLAVLQPDPALRLIYGHSLGGAVAVDLAAELGQEAAKNGTTVPARGLVIESTFTSLGDVATAMANTSLPVRWLLSQKFDSIDKIGEINMPLLIVHGAADRYVPPRFSEQLFNAAREPKRLLLVPGATHNNSMSLAGRTYRQALDALMHARPSPVAGNAQASPVKAGNANANANANA
D1-35_02305228hypothetical proteinATGACGAGCGAACATTCGAAAACAGCCAGCCAAGTCGGCAACAATGCGCCAGCCAAGGATGCTGCCGGCGACCCGGTGGACGTCGTGGAGCGCGATGTGCGCCACCCGGATCCAGCCACTGACAAAGTCGACAAGACGATCACGCCCAAGTCGATCAAGAGCCATGAGCAGGACGCTGAGAAATTGCGCGACAAGGTCGGGCAGGTGGAGAAAAAGCTCGGCCGCTGAMTSEHSKTASQVGNNAPAKDAAGDPVDVVERDVRHPDPATDKVDKTITPKSIKSHEQDAEKLRDKVGQVEKKLGRNANANANANA
D1-35_02306543hypothetical proteinATGCGACGTAGAAGCGCAGCGTATTGGCTGTGGGTGAACCGTCGGCTGGCGGGGCGCAACCACGAAGAGATCCTGGAGGACGGCACGCAGGTCGAGGTCCAGGCGCGGATCAACCAGCAGAGCGTGACGCAACTTTTCATCTGTGTTTATCGGCCGAACGGATCCGTCTGGGTCGAGGAGTTCCATGATCGCGCGTTGCGCGAACCGTTGTGCCAAGCGCTCGAATGGGGCTTGGCCCGGGCCAGGGACATCGTCGCCGGTAGCGGATGTTTCAAGGCGCCCCACAAGATTCAGATGACCCTTGGGCCATTGATCCGCGACGAATGCACCCTGGCCCTGAGGCGCATGGACATGAGCGATGAAGAGCGCCGCAACCTCAAGATCCGGGATGCCTGGGCAGAGTACGTCCACGCCAAGGAAGCGATGCTGGCGCTGATGCGTTCGGCCCGGGTCGAGGCCGACGTATGGGAGACGCAGAAGCGTCGGCTGTGCGAAGCCATTGATCGGCGGGCCTCCCTGGCCCGAGCGTGCCTGGGCAGTTGAMRRRSAAYWLWVNRRLAGRNHEEILEDGTQVEVQARINQQSVTQLFICVYRPNGSVWVEEFHDRALREPLCQALEWGLARARDIVAGSGCFKAPHKIQMTLGPLIRDECTLALRRMDMSDEERRNLKIRDAWAEYVHAKEAMLALMRSARVEADVWETQKRRLCEAIDRRASLARACLGSNANANANANA
D1-35_02307795chbGChitooligosaccharide deacetylaseATGCCTCGCCAAGTGATCGTCAACGCTGATGACTTCGGGCTCAGCCTCGATGAAAACGACTTGATTCTACGAGCCTTCGAGGCAGGCGTGATCAGCTCCGCCACGGCCATGGCCAACATGCCGGGGTTCGACCAGGCGTGTGAACTGGCCCGACACCCACTGCTTGAAGGGCGCATCGGCCTGCATTTCAATCTCAGTTACGGACCGCCGCTGAGTCAGGCAATCAGGACACGGCAGACATTCTGCAATGCAACCGGCGAATTCGACCTTAATCTGTCGCGCTACAGCCTGCGGCTGGGGACGGATGATCTGGCGGCCGTGGAAGAAGAACTCCAGGCGCAGTGGCAATACTGCCTGGACCGTGGCCTGCGTCCGAGCCATCTGGACTCTCATCAGCATGTACATAACATCTGGCCCGTTGGCGAACTGGTGGCTCGCTTCGCCGCCCGGCAAGGCGTGCCCATGCGCCTGGCACGTAACCTGGGACCGAACCTGAGCGTCGCCAAACGCATCTTCAAAACCCTGCTCAACCGCCGCCTGCGCAGGCTCTGCGGCGCAACGGCGGATTATGTCTGCACGCCAGCGGACCTTCATCACGCGGCGCCACCGAAGCACGGTTCGCTGGAAGTGATCGTTCATCCGCTGCAACTGGACGGGGATTTTGGCGACGCCAGCCTGGCCCTCGACAACTCGCTGACCCAAGTGCTGCACAAGCGCCTGGCGGGGGTGCCGAAGGTCGGGTATGGCGAGAGTGGGCGGGACTTTGAGCGAGTTGAGTTTGGGGATCTGTACTGAMPRQVIVNADDFGLSLDENDLILRAFEAGVISSATAMANMPGFDQACELARHPLLEGRIGLHFNLSYGPPLSQAIRTRQTFCNATGEFDLNLSRYSLRLGTDDLAAVEEELQAQWQYCLDRGLRPSHLDSHQHVHNIWPVGELVARFAARQGVPMRLARNLGPNLSVAKRIFKTLLNRRLRRLCGATADYVCTPADLHHAAPPKHGSLEVIVHPLQLDGDFGDASLALDNSLTQVLHKRLAGVPKVGYGESGRDFERVEFGDLYPGPT0012160_695DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSFUNGICIDAL_COMPOUNDS|ANTIBIOTICSFUNGICIDAL-CHITINOLYTIC_ACTIVITIES,PGPT0012160-chbG-K03478NANA
D1-35_023081173hypothetical proteinATGGCGATCCGGTTCCAGTGGTGTCGCTCCATGAGCGCGGCGGAGTTTCCTGCAACGGCTTATGAAGAGCTGCGGACCCAGGTGGTCGACGCTACGCCGTTCAATACGCTGGCCTGGTTGCAAGCGGCGGAATTTGCCCTCGCGCCCGACCAGCAACTCCATGTGCTGCTGGGCTGGCAGGACCAGACACTGTGCCTGTGCCTGCCTCTGGTCGCGGGGCGCGAGCGCATCGGCGGGCTGCGCTTTCGGGTGTTGCATCACTTGGGGTTTCCACTGGCTGACCGTATCGCCCTGTTGGTGCGCCTGGACGCCGACGCCATGGGCCAGGCGCTGATGCAGATCCGCCAGCAGGTGCCCCACGCGTTGCTGCAATTGAATGAAGTGATCGAGCCGGTCGGCGAACAAAGCGTGCTCAGTGCCTGGATGGCGCAGAGTTCCACCGGCGAACGGCGGCTCAGTTGCCGGGTCCCGGTGCACCTGATCAGCGACAGTGACCATCAGGAAATCACCGGCGATCCGCGTTACAAGTTGCGCCGCGCGCGCAAGCGGATCGCCGCTTGCGGTGCCGAAATACGTCGGGTGACGCCGGATGCCATCGGCATGGGGCAACTGCTGCGGGCTCTCGCTGAAGTCGAGGCGGCCAGTTGGAAAGGCGAGGAAGGTGTCGGCATCTTCGCCGACCCCGGGCGCCGGCAATGGATGAACCTTGCCTTCACCGCCCTCGCCGCCCAAGGCCTGGTGCGGGTGGTGATGCTGGAGCTGAACGGCGAGTGCATCAGCTATCGCCTCGGCCTGCTCGACCAGGGACGGCTGTATGACTACAACCTGGCGTTCCTGCCGCGGCACGCCGACCTGGGCAGCGGCCGGTTCTTGCTCGAAGAGTGGATCCGCTGGGGGCTGGACGAGAACTGGCGGTGGATCGATGCATCGCGCGTCAGCCTTGAGAATTCCAGCCATCAACTGCACGAACGCATGACCGGCCAACTTGAGCACTGGCGCTGGAGTTTCTATTCCTGGCGGCCCGATGGCCTGCTCCTGGGGTTCGCCCTGCGGCTATGGAAAAGCCTGAAGCCCTGGCTCGGCAAGCGCCGCGCCAAACCGCCCGCGACAATGTCGCCCACTGCCAAAAAGCCGGAGGACACGCATGCCTCGCCAAGTGATCGTCAACGCTGAMAIRFQWCRSMSAAEFPATAYEELRTQVVDATPFNTLAWLQAAEFALAPDQQLHVLLGWQDQTLCLCLPLVAGRERIGGLRFRVLHHLGFPLADRIALLVRLDADAMGQALMQIRQQVPHALLQLNEVIEPVGEQSVLSAWMAQSSTGERRLSCRVPVHLISDSDHQEITGDPRYKLRRARKRIAACGAEIRRVTPDAIGMGQLLRALAEVEAASWKGEEGVGIFADPGRRQWMNLAFTALAAQGLVRVVMLELNGECISYRLGLLDQGRLYDYNLAFLPRHADLGSGRFLLEEWIRWGLDENWRWIDASRVSLENSSHQLHERMTGQLEHWRWSFYSWRPDGLLLGFALRLWKSLKPWLGKRRAKPPATMSPTAKKPEDTHASPSDRQRNANANANANA
D1-35_02309690hypothetical proteinATGAACGCTCTGCAAAAATTGCGTGATCGCATTCAGAAAAAAGGCCTGCGTTCCGTTTTCAAACTGCTGGTACGCCGCTTCGTGTTTTTCCATTCGCAACTGGTATGGCTGGAACACGATGTGAGAATCCCGCTGCGGCCGCATACCCTCAGGCCCTACCCACCGGTACGTCGAGAGTTCATCACCGTCGAAAACGCCGACGCTTTCGCCAGGCATTTCGGCGACCGCGTCGAAACCATGCGCGAGCTGGCCGCCGAAGGCTATACCGGCCTGATGTACCTGGACGACAAGGGCGACACCGTGGGCTTCGTCTGGGCCAGTACACGAGACTATTTTGACCGCCATTTCTATGGCTGCTGGTTCCCGGTCAAGCCTGGCGAATACTTCCAGTTCGGCGGAGAAATGATCCGTGCGTACTGGGGCTCCCAGCTGTCGGCGGACGTACAGACCGACATGTGGAAAGTCATGGCGGACAAGGGCTGCGAAAAAATGGTCGATGTTTGCGACTTGCAGAACACCCCAGCGATCAAGATGCACATCCGCATGGACTTCCAGGAGCGCGGCCAGATCACCCATGTGTATTGCCTGTTCGGGCGCTTCCGGTTCTTCCGCGACACGTTCTACAGCGGCTCGGTACTCGACGCCTTCCGTAAACCGGCCCGGCCGGTTGCATCAGCTGCGGCGGCCTGAMNALQKLRDRIQKKGLRSVFKLLVRRFVFFHSQLVWLEHDVRIPLRPHTLRPYPPVRREFITVENADAFARHFGDRVETMRELAAEGYTGLMYLDDKGDTVGFVWASTRDYFDRHFYGCWFPVKPGEYFQFGGEMIRAYWGSQLSADVQTDMWKVMADKGCEKMVDVCDLQNTPAIKMHIRMDFQERGQITHVYCLFGRFRFFRDTFYSGSVLDAFRKPARPVASAAAANANANANANA
D1-35_023101977hypothetical proteinATGGGGCCAGTGGGGTGCATGGGAAAAATCGGCGCCGGTCTGTGCCTTCTGGCCCTCGCAGCCTCGGCCCATGGTGCGTCCATGCAATGGACCGGCATCCGCGACGGCAGCCTGTACCTGCAGACCGACCAGCCAAGCACTGTGACCGTGCGCTGGGTGCCCGCCTGGCAGGCCGATGCCAATACCGAACACCTTTACCTGCTCGACGGCCAGGGGCGGCTGGCCGGTGAGCGCCTGGTCGAGGCGGCACAGACCCGTGGCGAGCAGCAGTGGCCGCTGCGGCCTGGTGCCGCCAGTTATCGCCTGGAAATTCCCGGCTACAGTTTCCGCCGCTATACGGTAGAGCACGACGCGCGCACCCGTGCCCTGTTCGCTCCGGCCAAAGTGCATTTCAGCGCCGAAGCCCACGATGGCGACGAGTTGTACTTCAAGGTGGCGGCCGGCGAACGCGCAGTGCTGGCGGGTAAATTCCATGGCGGTGTGCACGCGCTGCAAGCCCGGCGCGTCGGCGACGGCAAACAGCTCCAGCTGAATCTCAAACCGTATCGCGCCTATTGGCAGTTCGACCAGATCGCCCTGCCGGTGGCGGATGTCGAGCAAACCTGGCGTCTGCACTTGCAAGGCAACGGCAAGGTAGCGTTCTGGCTCGACGGTAGCGCCAACCTGTTCGCCCAGGACCCGGCGCAGTTGCAGCCGGTGCGCCAGGATCCGGGCCAAACCCACCTGACCCTTCATGACGATGTGCTCGGCCCCACCCCCAGCCTGGGCATGTCCCTGCCCTATGTGTTGCCGCCACCGTCCGCCTACGCGGTGATCGATACCCTCAAGCCCCGAGCGGCCACCTACTACAGTTTCGTCGATGTCACGGCGGCCAAGGCCGACCACGAAGATGCGTTCCGGCGCCTGTACCAGGATCGCTTCGGCATCACCCGGGACATTACCCTCTTGGCCGGCAGCCAACGCAAGGCCGATCTGCGCGCCGACCGGACCAGCAGCAGCGGCTTGCAAGCCTGGCTCGACACGACCCGCGCCCTGGGCGGCAAGGGCCTCCATTACCTGAGTTTCGCCGACGAGCCGAACCTCAACTATCCGGACTTCGCCAGCTTCCAGCAGATGTTCGAAAGCCTGGCCGCCCAGGTCCGCGCCAACGACGCCAATGCCCGCGCCGGAGTGCGCATCGCCATGCCGGCCAGCTCCCGATTCACCAATGGCCCGCTGGCCGAAAACGCGGCGGATCGGCGCGGCATCGATTGGGCACGGCGCCTGCTGGAAACCTCCGGCGACCGGATCGACGCCCTGGCCTGGCATGAATGGATGGTCCGCGACTTGCTGGCGACCCGGGTCTATCGCAACAGCGTCCGCCAGGCCGCCGACCTGGTGGGCCTGGACAGCCAGGGCCGGCCGCGCAAGGCCTTGCTGCTGGATCAGACCAACATTTCCAGCGGCTCGAGCCTCAGCCCCTACGATCAGGAAACGCACTACGCCGCGCTGTGGTGGGCGTCGGTGGCGATCAACGCCTCCGCCGACGGCTGGCTGGACATGCTCAACTGGTTTCAGTCCGCCGACGAGCCGCAATACCCCAAAGGCATGGTGCGAGTGCTGGAGAACCAGCGCTTCGAACTCAAGCCGGTGGGCCTGGCCCAGCAATTCATTCAGCAGCACTGGCTCGACCAGGTGCTGCGCCTGGACAACGACGCGTTTGAAGTCGACGCGCTGGCCATGGCCACCGGGCAGCAGCGCAGCCTGCTGGGCGTGAACAAAAGCACTCGCGCCCATCAAGTCAGCCTGCAGGGCGCGGGCTGCCCGCAGCCCGGCGCCAGCCTGGTGTATTTCGGCCCGGACAACATCAGCCGCAATGCCCCGTTCAACTGCAAGGCCGGCCAGGTCGGATTTCTCTTGCCAGGAGAAACCGTATTCGCCCTGCGCTGGACTGCCACCCTTCCCCCCCAACCCGCTATCCGTCAGGAGGCTCCATGAMGPVGCMGKIGAGLCLLALAASAHGASMQWTGIRDGSLYLQTDQPSTVTVRWVPAWQADANTEHLYLLDGQGRLAGERLVEAAQTRGEQQWPLRPGAASYRLEIPGYSFRRYTVEHDARTRALFAPAKVHFSAEAHDGDELYFKVAAGERAVLAGKFHGGVHALQARRVGDGKQLQLNLKPYRAYWQFDQIALPVADVEQTWRLHLQGNGKVAFWLDGSANLFAQDPAQLQPVRQDPGQTHLTLHDDVLGPTPSLGMSLPYVLPPPSAYAVIDTLKPRAATYYSFVDVTAAKADHEDAFRRLYQDRFGITRDITLLAGSQRKADLRADRTSSSGLQAWLDTTRALGGKGLHYLSFADEPNLNYPDFASFQQMFESLAAQVRANDANARAGVRIAMPASSRFTNGPLAENAADRRGIDWARRLLETSGDRIDALAWHEWMVRDLLATRVYRNSVRQAADLVGLDSQGRPRKALLLDQTNISSGSSLSPYDQETHYAALWWASVAINASADGWLDMLNWFQSADEPQYPKGMVRVLENQRFELKPVGLAQQFIQQHWLDQVLRLDNDAFEVDALAMATGQQRSLLGVNKSTRAHQVSLQGAGCPQPGASLVYFGPDNISRNAPFNCKAGQVGFLLPGETVFALRWTATLPPQPAIRQEAPNANANANANA
D1-35_023111305hypothetical proteinATGAGCCGAGCCCATTACCTCAAGCATCTGGCACTGAGCATGGGCACGCGCCTGGCGATGATCGCTCTGCGCCTGCTGCGCAACGTGTTGCTGGCAAGGATCCTCGGGCCCAGCGAGCGTGGACTGTTTGCATTGCTCAGTACCCTGCCCGACCTGATCAGCGCCGCCACCAGCGGTGGCCTGAATTCCGCCGTCGGTTACCAGGCGGCGCAGCAGCGCTCGATGGGCTTGTTGCTCAGCCAGGTGCTGATGTTCGGTTGTTTGTTGGCCGGGTTGTTGACCTTGTTGGTGGTGGCGCTGGTGCGGGAATTTGGCGGTGAGCTGGACATCACCACGCAATTGGGATTGCTGGCCTGGCTGCTGTTGCTGGCCGTACCGCTGACCGTGCTCAAGAGTGGCCTGCTGACGCTGCACAATGCCTCGGGCGGCGTGGGCGCGTTCAACGCGTTGCGGCTGATGGAATCGCTGGCACCGCTGGTATTGTTCGTGGCGCTGTTCTGGATGTGGCAAGACAAAGCGCTGGAGGCGGCGTTGATCAGTTGGCTGGCGGGCTTGAGCCTGGTGGTGCTGGCCGGCTGGATGTGGTTGCGCCGCGATCACACAGTCGAGCTGCAGTGGGACCGCACCGGCCAGAACGAGCTGTTGCGCTACGGTGCCCGCAGCCATCCGGAGCTGCTGTTCCAGCAAGTGGTGCTGCGTTCGGATTTTCTGTTCATCGGCGCCCTGCTGGGCAGCACGGCGCTGGGGCATTACGCCATGGCCAGCGCCGCGGCCGAACTGCTGCTGATCGTGCCGGAAGCGGTCACCACGCCGCTGATGAAACGCCTGCTGCAGCAAGACCGCGACATGCAGCGCCTGACCCCGCTGGCCTTGCGCCTGACCGCCACAGTGATGCTCGGTGCCTGCCTGGGCATGGCGCTGATTGGCGAATGGTTGATCGTCACGCTGTTCGGCGCCGCCTATCAACCGGCCTACCCGGCCCTGCTGGCGCTGCTGCCGGGGCTGTTCGGGCTCTGCTATGCGAGCATCCTGCGCCTGGATCTGCTGGGCAAGGACCGACCCGGCACGGTGTCGCTGCTGATGGGCGTCGGCGCGCTGCTGAACCTGGCGCTCAACCTGGTCCTGATACCGCGCTACGGCATCGTCGGCGCGGCCGCCGCGTCGTCGATCGCCTATCTGGGGGTAACGCTGGCGCTGCTGGGCATGTACTGCCGCCTCAGCGGCGTGGCGCTGTGGCAGACACTGATCATCCTGCCCAGCGATTTGCTGCCGATGCGCCAGATGCTGCTGGGGAAATCCGCGTGAMSRAHYLKHLALSMGTRLAMIALRLLRNVLLARILGPSERGLFALLSTLPDLISAATSGGLNSAVGYQAAQQRSMGLLLSQVLMFGCLLAGLLTLLVVALVREFGGELDITTQLGLLAWLLLLAVPLTVLKSGLLTLHNASGGVGAFNALRLMESLAPLVLFVALFWMWQDKALEAALISWLAGLSLVVLAGWMWLRRDHTVELQWDRTGQNELLRYGARSHPELLFQQVVLRSDFLFIGALLGSTALGHYAMASAAAELLLIVPEAVTTPLMKRLLQQDRDMQRLTPLALRLTATVMLGACLGMALIGEWLIVTLFGAAYQPAYPALLALLPGLFGLCYASILRLDLLGKDRPGTVSLLMGVGALLNLALNLVLIPRYGIVGAAAASSIAYLGVTLALLGMYCRLSGVALWQTLIILPSDLLPMRQMLLGKSANANANANANA
D1-35_023121005hypothetical proteinATGTCGATCAAACACGTCTTCAAGCGCACCGGCGGCTGGCTGTACCTGAACACGTCGATGGGGCGCCATCCCTTGCGTGGCGCCGGCGTGATCCTGATGTTGCACCGGGTGTTGAACAACGACCGCGCCGCCGAACTGCCGCATCGCAACGAGCTGTGCGTGGGGCCTGACGCGTTCGAACACCTGTTGATCTGGCTGCAACGGCATTTTGAATGCGTGCCGTTGATGAGCTTGCTGCTGGCCGACCCGAAAAGCGTTCCGAACCGTCCGCGGGTGGCCCTGACGTTCGACGATGGCTGGCGCGACAACGCCATGAATGCCTTTCCCCTGCTGCGCCAGTACCAGGTGCCTGCGAGCATTTTCCTGTCCACCGATTTTGTTGGCAGCCGCCAGCATTTCTGGTGGGAAAGCATCGGCGAAACCCTCTGGGGCAGCCATGGGCAGCTGGCGCGGCATTCGCTCATCGAACATTTGCAGCAGGTCGGCCGGCCATTGCCGGTGCTGCTCGATGACATCGACGACGAGCGCCGCAGCCTGGCGCTGCTGCATTTCCTGCAAAGCCTGAAAACCCTCGATGCGCGAACCCTGAGCGATCTCACCGAGGCCTGTCCGCAGGGCTCGCAACCCCAGGCATTGGACTGGACCCAGGTGCGCATGCTCGAAGATTCCGGCCTGATCCGCTTCGGCCCCCACGGTGCCAGCCATGCGATCCTGACCGGGCTGGACGACCAGCGTTTGCACGAGGAACTGACCCGCAGCTGGATAGCTTTGGAAAATGGCTGCGCGCAACCCTTGCCGGTGTATTGCTACCCCAACGGTGATCATGATGCACGGGTACGCGAGCAAGTGGCGGCCCACGGTTTTCCGTTTGCCCTGGGCACCGAGGCCGGGCTGTATCGCCACGATGGCGACCCCTTGAACCTGCCACGCTTCGGCGTCAGCCAGCGCAATGCCTGCCACCCCGAGTTGCTGGCCTGGCGCATCCGTCGAGGAGCCCGCTCATGAMSIKHVFKRTGGWLYLNTSMGRHPLRGAGVILMLHRVLNNDRAAELPHRNELCVGPDAFEHLLIWLQRHFECVPLMSLLLADPKSVPNRPRVALTFDDGWRDNAMNAFPLLRQYQVPASIFLSTDFVGSRQHFWWESIGETLWGSHGQLARHSLIEHLQQVGRPLPVLLDDIDDERRSLALLHFLQSLKTLDARTLSDLTEACPQGSQPQALDWTQVRMLEDSGLIRFGPHGASHAILTGLDDQRLHEELTRSWIALENGCAQPLPVYCYPNGDHDARVREQVAAHGFPFALGTEAGLYRHDGDPLNLPRFGVSQRNACHPELLAWRIRRGARSNANANANANA
D1-35_023131137hypothetical proteinGTGGCTGAGTTTTTCTATTGGTCTTGCCTGTTGCTGCCGGTGTACGCGTACCTCGGCTACCCGCTGTTGCTGACCTTGCTGGCGCCGCTGTTTCCGCTACGGCGCTACACCATTGCAGTGCCGATGGACGTGAGCATTGTGATTGCCGCCCACAACGAGGCGCGGCACATCGAAGAAAAATTGCGCACGCTGCTGGCTCAGGATTATCGCGCGCGCTCGCTGCAAATCATCCTCGCCAGCGACGGTTCCACCGATGACACGGTGGCCTGCGCACGCAAGGTCAGCGATCCGCGGATCAGCGTGCTCGACCTGCCGCGCCAAGGCAAGGCTGCCGCCCTCAACACGGGCGTGGCCCATAGCAGCGGCGAAATCCTGGTGTTCACCGACGCCGACAATCAATGGGCCCACGATACCCTCGGCCACCTGTTGGCGCCGCTGGCCGACCCGGAAGTCGGCGCCTGCGCCGGGCACATGGTAATCCCCGTGCCCGGCAAGGGCCTGAGCCTGGGCGACAGCCTGTATCGGCACTACGAAGGCTGGCTGCGTCGGGTCGAGAGCCGCACCGGCTGCATGGTCTCCGCCGACGGTGCTCTGCTGGCCCTGCGCAGGGAGTTGTTCCAGGCGATACCGGCGCAAGTCAACGATGACTTTTTTCTCAGCACCTGTGCGCCGGTGGCCGGCAAGGCGATCGTCTACGCCCCGCTCGCCCGAGTGACCGACCAGGGCGTGGACGAAGCCGACAAACAGTTCCGCCGGCGCCAGCGGGTCACCGTCGGAGGGCTGCAGAGCCTGGCCCAGCGCCGGGAACTGCTCAATCCCTTGCGCCATGGGCTCTACGCCATTGGCTTGATCAGCCACAAGCTGATCCGCCGCCTGGCCCCGGTGTTGCTGGTGCCGCTGTTGCTGAGCAACGCCTGGCTGTGGAACGAGCATGGGTTCTATCGCCTGAGCCTGGTGGCGCAGTTGCTCGGTTACGCCATCGCCTTGATCGGGTTGCTGGACGTCGGCCACCGTCTGCCCAGGCCTTTCCGCCTGGCCGCGTTCGTGCTGGTGACGTTGGCGGGCATGAGCATCGGGTTGTGGCAGTTTCTGCGCGGCCACCGCTATAGCCAATGGAATCCCGAGCAGAACCGCTAAMAEFFYWSCLLLPVYAYLGYPLLLTLLAPLFPLRRYTIAVPMDVSIVIAAHNEARHIEEKLRTLLAQDYRARSLQIILASDGSTDDTVACARKVSDPRISVLDLPRQGKAAALNTGVAHSSGEILVFTDADNQWAHDTLGHLLAPLADPEVGACAGHMVIPVPGKGLSLGDSLYRHYEGWLRRVESRTGCMVSADGALLALRRELFQAIPAQVNDDFFLSTCAPVAGKAIVYAPLARVTDQGVDEADKQFRRRQRVTVGGLQSLAQRRELLNPLRHGLYAIGLISHKLIRRLAPVLLVPLLLSNAWLWNEHGFYRLSLVAQLLGYAIALIGLLDVGHRLPRPFRLAAFVLVTLAGMSIGLWQFLRGHRYSQWNPEQNRNANANANANA
D1-35_02314960mftFCOG0463Putative mycofactocin biosynthesis glycosyltransferase MftFATGAAACGCGTGAGCATTGTGATCCCGATGTACAACGAGGCCCGGCACATCGGCCGCACGTTGCTGGCGGCGCAGGAAGCTGCGCGCCAGGCGCAGCTGGAGTGCGAGCTGATCGTGGTCGACAACGGCTCGGACGACCATGGCCCGCGCATCGCCAACGAATTGGGCGCCCGGGTGCTGATCGTGCCCGGCGTGCACATCGGCGCCCTGCGCAATCGTGGCGCGGCGGCCGCCAGCGGCGACTGGCTGGCATTCATCGATGCCGACATCGAAATGCCCGCCGACTGGCTCAGGTTGTTGATCGAAATCGAAGGTCGCCAGGGCGATGTGCTCGGTCTCGACCTGGATACTCCCGAGCAGGCGCCGTGGTTCGCCCGGGCCTGGCAACGGCGCGGCCAACGCCCGGGGTCGCGTCCGCTGCACCGGGTGCAGTGGCTGCCCAGTGCCAACCTGCTGATGCGCCGCGCCTGGTTCGATCGCGTCGGTGGCTTCGATGAAACCCTGCGCACCGGTGAGGACAAGGATTTTTCCCTGCGCCTGCGCCAGGCCGGAGCGCAGTTGTTGCTGGTGAGCGAAAGCCTTGCCCTGCACTGGGGTTACGAAGGCAGCTGGCGCGAGTGGATGAGCAAGGAACTGTGGCGTCAGGGCAGTCACTGGCAGCTGCTGCGCAGCCACGGGCCGAGCCTGCGGCTGTTGCGCTTCCCCGCCTTGTCCATCGGTGCCTGGGGCCTGGATTTCGTGGCGCTGGTCACGCTGTTCCAGGGCCAGGCGCGCCTGGGGCTGATGCTGCTGTTGATCAGCACATTGCCGGCCCTGGCTCTGAGCCTGCGCCAGAGCCAGCGCGACCCGCGCCTGACCTTGCAACTGTGGGCCCTGCATGGGGTGCGCCTGCACCTGACCGGCGCGGCGCTGCTGCTCAATCTTTTTCAATGGAACGTCAGGAGACCTGCCCGTGGCTGAMKRVSIVIPMYNEARHIGRTLLAAQEAARQAQLECELIVVDNGSDDHGPRIANELGARVLIVPGVHIGALRNRGAAAASGDWLAFIDADIEMPADWLRLLIEIEGRQGDVLGLDLDTPEQAPWFARAWQRRGQRPGSRPLHRVQWLPSANLLMRRAWFDRVGGFDETLRTGEDKDFSLRLRQAGAQLLLVSESLALHWGYEGSWREWMSKELWRQGSHWQLLRSHGPSLRLLRFPALSIGAWGLDFVALVTLFQGQARLGLMLLLISTLPALALSLRQSQRDPRLTLQLWALHGVRLHLTGAALLLNLFQWNVRRPARGNANANANANA
D1-35_023151368hypothetical proteinATGATTGTCCCGCTCTCGATCGTCAGCCTCCTGGGCCTGGTTTGCCTGATGTTGCTGGCCAGCCCTTATCCGTACCTGGCTCCCGGCGCGGTGCTCGGCCTGGTCGGTGTCGCCGTGCTCTATCGCAAGCCCGGCTGGGGCTTGCTGGGGATTGCCGCGCTGGTGCCGTTCGAAGGCCTGTTCAAGGAAAACGCCTTTTCCGGCAGCAAGTTTCTCGGGCTGGCGCTGATCCTGATCCTGGCGTTGCAACTGGCCCTGCATCAGATTCCCGCCACTCGCCTGCGCAGCAACATCTGGAAGCCGCTGATCGGCTTCATGCTGTTCTATGGCCTGAGCTTGCTGCTATCGGAAAACCCGGGCCTCTCCACCACCCACTTCCGGGAACTGGCGGTGGGCCTGGTGCTGTTCGCGATCACCCTGCTGATCGGCCGCGAGCTGAACCTGGACCTGTTCTGCCGGTTGGTCACCCTGAGCGTCACGACGACCTGCGTGCTGGCGATGTTCTCCGCCCGGTACCAGGATCAGGGCCGCGCTTCCGGCCTGTTGGAAGATCCGAACACCTTCGCCCTGCTGATCGCCTTCACCGTGCCGCTGGCGTTGTTGCTGGTGGTGCGCAGTCCGAACCTGCTGCACCGGTTGTTCTGGGGTGGCTGCTTCATCCTGCTGCTGGGCGGCATGACCAAGACCGAATCGCGTTCGGGACTGGTGGTGCTGCTGCTCAGCCTGATGATCGGCTTGTATCACTACCGCGCGCAGCTGCCGCGCATCCGCCCACGGCACCTGGGCTTCGCGATGCTCGGGCTGGCGCTGCTGATTCCCCTGGCAATCGCGGTGATGCCGGCCGGCTACGTGGCGCGCATCCAGTCACTGAGCATCCTCAGCGCTGGCGCCAGCGCGCACAAGGACGAATCCCTGGGCCGCCGCGCCTCGTACATCGTCGTCGGCAGCCAGATGCTTCGCGAAAATCCGCTGCTCGGCTCAGGTCCCGGAACGTTTCCCCTGCACTACGCCCCCACCGGTTACGCCAAGGCTTTCTCGGCCAACCGCAAGCTGGGGGACCTGTATCGCCGGGCGCATAACACCTACCTGGAAATCTTCAGCGAGATCGGCATTCCCGGCGGGTTGATGTTCGTCGGCATGATCGGCCTGGGTCTCTACAACCTGTTGCGCGCACGCCAGCTCTGGCTCCAGCGGCGGGACTGGGCGCAGGCGGACCTGCTGACGCACCTGGGCATGAGTTTCCTGTCGCTGGCGTTGTTCCTGATGTTCCTCAGTGCACCGAACCACAAGTTGCTGTGGATCATGCTGGGCTTGACCAGCGTATTGCGCTACGACGCCGAACGGTCCGCGCCGCAGGAGACCCGTTGAMIVPLSIVSLLGLVCLMLLASPYPYLAPGAVLGLVGVAVLYRKPGWGLLGIAALVPFEGLFKENAFSGSKFLGLALILILALQLALHQIPATRLRSNIWKPLIGFMLFYGLSLLLSENPGLSTTHFRELAVGLVLFAITLLIGRELNLDLFCRLVTLSVTTTCVLAMFSARYQDQGRASGLLEDPNTFALLIAFTVPLALLLVVRSPNLLHRLFWGGCFILLLGGMTKTESRSGLVVLLLSLMIGLYHYRAQLPRIRPRHLGFAMLGLALLIPLAIAVMPAGYVARIQSLSILSAGASAHKDESLGRRASYIVVGSQMLRENPLLGSGPGTFPLHYAPTGYAKAFSANRKLGDLYRRAHNTYLEIFSEIGIPGGLMFVGMIGLGLYNLLRARQLWLQRRDWAQADLLTHLGMSFLSLALFLMFLSAPNHKLLWIMLGLTSVLRYDAERSAPQETRPGPT0023135_109DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0023135-waaL|rfaL-K02847NANA
D1-35_023161104mshA_2D-inositol-3-phosphate glycosyltransferaseTTGAACGCGCCGTTCGGCCCGTCCCACCGCAGCAGCCCCCTGTCGATCATTCATCTGCTCGACAGCGGCGGCTTCTACGGGGCCGAGCGGATGCTGCTCGATCATTGCCTGGCCACGCCCGGCCAGCACCAGGTGGTGTTTTTGGCGGCGCCGCCGACCTTGATCACGCGCTTTCGCCAGGCCGGGGTCGATTGCCGTCACTGCGCCAACTGGGCCGAGCTGCTGCAGCATTTGCGGCAACGGCGCGCCGAACGACCGCTGATCAACACGCACAACTTCAAAGGCCTGTTGTTCGGCTGGGCCGCGGCCACGCTGCTGCGCCTGCCCCTGGTGATTACCCAGCACGGCTTTACGCCGCGCAGCACCAAGCAGCGTTTTTATACCTGGCTGAGCCTGCAACTGTGCCGCACCGCCTCGGTCAAGCGAGTGGTATGCGTGGCCGAAAGCATCGCGGCGTTGCACCGCCAGGCCAGCGTGCAGGCGGACAAACTCGACGTGATTCCCAACGGTCTGCCGGCGGTCGCCACACCCCTGCCGCATCGCGATGACCGGCAGCGCTGGCGGGTCGGCTACGTCGGCCGCTTGAGCAGCGAAAAAGGCCCGGACCTGTTTCTCGACGCCATGATCCCGCTGTGCCAGCGCCATGCTTCGCTGCACGCGGTGATGCTCGGCGACGGCCCGGAACGCCAGCTCCTGCTCAAGCGCATCACCGATGCCGGGCTGCCCACGCGCATCGAATTGCCTGGCTACCAGACCGACATGAATGCCTGGTGGAGCCGCCTCGATGTACTGGTGATCAGCTCACGCACCGAGGGCACGCCGATGATTCTGCTCGAAGCCATGCAAGCCGGAGTGCCGGTGGTGGCGTTCGGCGTCGGCGGCATTCCCGACGTCGTGCAGGACCGCCATAACGGCCTGCTCGCCACGCCCGCCGACAGCGACGAGTTGGCCCGGCAGATCGAGACACTGTTCAGCGAACCACCGCTGGCGCAGATCCTCGCCGACAACGCACGGCGCACCCAACGCGACCGCTACGACCTGCGCACGCTGGCCGAACGCTGGTCGCAACTGTATATCCGCACCGCACGGGAGGCCCGGCCATGAMNAPFGPSHRSSPLSIIHLLDSGGFYGAERMLLDHCLATPGQHQVVFLAAPPTLITRFRQAGVDCRHCANWAELLQHLRQRRAERPLINTHNFKGLLFGWAAATLLRLPLVITQHGFTPRSTKQRFYTWLSLQLCRTASVKRVVCVAESIAALHRQASVQADKLDVIPNGLPAVATPLPHRDDRQRWRVGYVGRLSSEKGPDLFLDAMIPLCQRHASLHAVMLGDGPERQLLLKRITDAGLPTRIELPGYQTDMNAWWSRLDVLVISSRTEGTPMILLEAMQAGVPVVAFGVGGIPDVVQDRHNGLLATPADSDELARQIETLFSEPPLAQILADNARRTQRDRYDLRTLAERWSQLYIRTAREARPNANANANANA
D1-35_023171593hypothetical proteinATGAACCCCAAGGAAAATTATCTGCACGAGTTTTTCAGGATCTTCTTTGCCAACAAGCAGTGGGTGAAGCGCATCTTCCTGATTTTCGCCGTGATCGCCCTGGTGCTGCCATTGATGCTCAAGCAGAGCTTCGATATCACCGCCCAGGTGATCGTCCAGTCGAAAAAACTCTCCCAGGGCGACGCCACCACGTCGCTGAACCAGGAAAACGCCACGTTCATCCCGCCGTCCCTGGCGGACATGGAAACCGAGAGCAATATCCTCCGCTCGCCGGCGTTGATTCGCCAGACCATCCAGACCCTGCGCGACCAGGGCGAGTACACGCCAAGCCCGGGCATCCTCAACAAATGGGTCAGCGAGCCGCTCAAGCGCTACATCACCCAGCCGCTGCGTGAGTATGTGGTCAACCCGTTGCGCGACGGCCTGGGGCTTGAGGTCGATCCGGTGCGCGACACAATGCTCGATACGCTGACCGATCAGGCCATCGAAAACCTGAAGATCGAAACCCTCCCCGGCTCCAATGTCATTTCCATCGTCTACAGCTTCGGTGACCCGGCCCAGGGCACGCGGTTCGTCGCGCAACTGCTGAAGAACTACCTCACCGGCCGCCAGGAACTGCAATCGATCGAACTGCCGCAGACCTTCTACGAGCAGAAAAAAGCCCAATACCAGACGCGTCTCGACGGCCTCGAAGACAAACGACTCGGGCTGCTCGAGGGCATCGGTTCGTCCGATCCGAAGGAAGAAGTCACTTTCCGCCTGAACGCCATCAATACCGAAGAGCAGGCGCTGAACCTCTATCAGGATCGCCTGCTGCAAAGCCAACGCTGGCTCGACTACCTCAAGAGCAGCCTGGCGGCGACGACCAGCTCGCGGTTCAACGACTACACCTTCCCGTTCACCTTCACCACCACGGTGGACAACATCGCCTTCGAAGACCGGGAAATCCGCCAGTTGGGTGAGCAATTGACCGGCCAGGTCAGCCGCTACATGAATGACCTGGCGATTTTCCAGCCCGGCAGCGAACCGATGCTGCTGGCCCGGGAGCAGATCGTGCGGACCCGCCAGCAGTTTCTAAAAGTGGTGAACAACCGCATCCAGGAACGCACCACCGATCTTGCGGTGGTCAGCTCGGTGATCGAGCAGAAAAAAGCGCGCATCGGGGCGTTCAAGGAGCGCATCCACCAGTTGCAGGAAACCCAGAGCAAGCTGCGGCAGATGGACACCGAGATCAACGCTCTGCACGCGGCGTTCTCCACCTACGCCCAGCGATTCGCCGAAGCCAGCACCGCCCGCTCGCTGGACAACGACCTGTCCAACGCCCGGGTCCTGAGCCCGCCTTTCGAACCGACCGCCGCGGCATTTCCCAAGCCGATGCTGATCATTGTGTTCGGCCTGTTCAGCGGCCTGCTGCTGGCCATCGCCCTGGTCTATGTGCGTGAGTTCTTCGACCATCGCTTCAAGCATCCGGCGCAGATCACCCAGCAACTGGATCTGCCGGTGTTGCTGGTGATCAACGAGCAGTCACCCGAGCAGGTCAATCCGCATCGCAACTGGAGCTTGCCCAGCCTTGTCCATTGGGTGAGAAATTGAMNPKENYLHEFFRIFFANKQWVKRIFLIFAVIALVLPLMLKQSFDITAQVIVQSKKLSQGDATTSLNQENATFIPPSLADMETESNILRSPALIRQTIQTLRDQGEYTPSPGILNKWVSEPLKRYITQPLREYVVNPLRDGLGLEVDPVRDTMLDTLTDQAIENLKIETLPGSNVISIVYSFGDPAQGTRFVAQLLKNYLTGRQELQSIELPQTFYEQKKAQYQTRLDGLEDKRLGLLEGIGSSDPKEEVTFRLNAINTEEQALNLYQDRLLQSQRWLDYLKSSLAATTSSRFNDYTFPFTFTTTVDNIAFEDREIRQLGEQLTGQVSRYMNDLAIFQPGSEPMLLAREQIVRTRQQFLKVVNNRIQERTTDLAVVSSVIEQKKARIGAFKERIHQLQETQSKLRQMDTEINALHAAFSTYAQRFAEASTARSLDNDLSNARVLSPPFEPTAAAFPKPMLIIVFGLFSGLLLAIALVYVREFFDHRFKHPAQITQQLDLPVLLVINEQSPEQVNPHRNWSLPSLVHWVRNPGPT0026030_71DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-PSL_POLYSACCHARIDE_METABOLISMCE-EPS-PSL_POLYSACCHARIDES_BIOSYNTHESIS,PGPT0026030-pslE-K20998NANA
D1-35_023181023hypothetical proteinATGAACGCCAGAATGCTTGTCCTGCTGTTGCTGCCGCTTGCCGGTTGCTCCAGCACCACCGATACCCGCTCGATGCCGGTGCAGATCCTCACGGCCGCGCCGGCCAACGCCCAGGCCACCGACATGCCCAAGGTCGAACAGACCCTGCGGCCCCAGGACGTGCTGGATGTGATTTTTCATATCAGCACCACCGCTTCCCAGGCTTATCGTGTACAGCCGGGCGACCAGGTAGCGCTGAACTTTACCGCCGCCAGCCAGCTCAACGGCACGCAACAGGTGATGCCCGACGGCAGCATCGAACTGCCGGGCGCCAACACCTCGGTGAAACTCGCCGGCCTGACCACCGACGAGGCCCGCCTGGCGGTACAGCGAGCCTATGACCAGAAGATGCTGTTCCAGCCCAATCGCAACCAGTTGACGGTGCTGGTGACCAGTCCGCTGGCCGGCGAGACGACCCTGCGCAATACCCTGACCCACCCTGGCACCGGCATGAGCCGGGAAATCACCGTGGGCCGGGACGGTTACGCCAGCTTTCCGGAAATCGGCGCCGTACCGCTGCAGGGCATGACCGTCACCCAGCTGGAAACCTTCCTCAACGAGCGTTACGCCAATCTGCCCGGACGCATGACCGTCGATGTGCTGCTCAAGTCCACCGCCGGCAATGAAATCTATGTCCTCGGTGAAGTGGCCCAGCCCGGTTCCTATCCGATCCGCCGGCCCATCTCGGTACTGGAAGCCCTGACCCTGGCCCGTGGCGCAAACGTCAAGGCCCGGCTCGACTCGGTGGTGATCATGCGCCGCAACGGCAATCAGGTCGAAGCCCGCCACTACGACGTCGAAAAAGCCTTGAGCGGCGACGCCTCGCAAATCGCCTACCTGCAGCCCGAAGACATGCTCTTCGTGCCCAAGACCGGGCTGGCCAAAGCCGGCGAAACGGCCCGCCAATTGGCCGACGTGGTGCTGTTCCAGGGCGTGGGGTTCGGCTTCGGCTACCGCGTCGACAACAAAGGCAGCGACAACTGAMNARMLVLLLLPLAGCSSTTDTRSMPVQILTAAPANAQATDMPKVEQTLRPQDVLDVIFHISTTASQAYRVQPGDQVALNFTAASQLNGTQQVMPDGSIELPGANTSVKLAGLTTDEARLAVQRAYDQKMLFQPNRNQLTVLVTSPLAGETTLRNTLTHPGTGMSREITVGRDGYASFPEIGAVPLQGMTVTQLETFLNERYANLPGRMTVDVLLKSTAGNEIYVLGEVAQPGSYPIRRPISVLEALTLARGANVKARLDSVVIMRRNGNQVEARHYDVEKALSGDASQIAYLQPEDMLFVPKTGLAKAGETARQLADVVLFQGVGFGFGYRVDNKGSDNPGPT0025530_2300DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-EXOPOLYSACCHARIDE_TRANSPORTCE-EPS-EXOPOLYSACCHARIDE_TRANSPORT-1,PGPT0025530-wza|gfcE|epsA-K01991NANA
D1-35_02319645yveLCOG0489Putative tyrosine-protein kinase YveLATGGACGGTTCAACGAATATCCTGACCATAGCAAGCCCGAGCGAGACCAACCTGACCTCGACCGTGCTCGACCCTTCCTTGCGGATCCTGCTCCTGACGGCAGCGAATATCGGCACTGGCACGAGCACCAGCGCCATGGCGCTGGCCGCCCAGTTGGCGCAGATGAGCAGCGGCCGTGTGCTGCTGGTGGACGCCAGCCGGTCGCCGCGCAACCTCAGCCAGCAGCTGTCGCTGCAAAAAGAGCGCGGCTTCAGCGACCTGCTGTTCAACAGCCTTTCTCCGCCGCTGTTGCAGGACTGCGTGGTGCAGGTTTCCAGCCTGCCCTTCGACGTGCTGCCCAACGGTCGCCTGGGCCATAACGCCGAGCGCCTGAGCCCCGAGCGACTGCGCCCGCTGTTCAGGCAACTGGCCGCGCAGTACCGCTTCGTGGTGATCGACGCCGACGCGGTGTATTCGGCCACCGACACCCTGGTCATGGGCACTCAGGTGGACGGCGTGGTGCTGGTGGTGCGCGGCGAGGACACCCGCTGGGAAGTCGCCCAGGCCGCCCGACAACGCTTGGCCCAGGCCGGCGCGAAGGTGGTCGGCAGCGTGTTCAATCGCCGCAAGTACTACATGCCCAAGTGGCTCTACAACAACCTGTAAMDGSTNILTIASPSETNLTSTVLDPSLRILLLTAANIGTGTSTSAMALAAQLAQMSSGRVLLVDASRSPRNLSQQLSLQKERGFSDLLFNSLSPPLLQDCVVQVSSLPFDVLPNGRLGHNAERLSPERLRPLFRQLAAQYRFVVIDADAVYSATDTLVMGTQVDGVVLVVRGEDTRWEVAQAARQRLAQAGAKVVGSVFNRRKYYMPKWLYNNLNANANANANA
D1-35_02320747hypothetical proteinATGACCCGACATGAGCAAGACATCCCGACCCGGACCCTCGGCCGTGACAAACGAGTCGACCCCGAGCACCGCAGGCGCCTGGACGCGGCTATTCACCGCCAGGGTCGTGGCTGGATGACCGGCCGCGACGGCGGCCGGCCCTGGACCGTCTCGCGCACCAACCGGGTGGTGGCCTGCCTCGGCGCATTGGCCCTGTTGCTGATGCTCAGTCCGCTGCTGCTGGGCCTGGCACTGCTGGTGAGGTTCTCCAGCCCTGGCCCGGTGCTGTTCGTGCAGAAACGCACCGGCTATCGCGGCCGCGTTTTCGGCATGTACAAGTTCCGCACCATGGTCGCCGACGCCGAGGCCTTGAAAGAATCGCTGCGCCACCTCAACAAGCACGGCGCCGACGCCATTGACTTCAAGATCGACAACGATCCGCGCATCACCCCCATCGGCCGGTTCCTGCGCCGCAGCAGCCTCGATGAACTGCCGAACCTGATCAACGTCGTGACCGGCGACATGCGCCTGGTGGGCCCGCGGCCGACCTCGTTCAACGCCTACCGCTACAAGGACAACCATTTGGTGCGCCTGAGCATCTACCCCGGCCTCACCGGCCTCTGGCAGATCTCCGGACGCAGCAATATCGACTTCGACCAGCGCGTGGAACTGGACCTCAGCTATATCGCCGAGCAGAGCCTTTTGCTGGATTTGAAGATCCTGATCATCACCCCCTTCAAAGTCTTCAGCGGCCACGGAGCGAGTTAAMTRHEQDIPTRTLGRDKRVDPEHRRRLDAAIHRQGRGWMTGRDGGRPWTVSRTNRVVACLGALALLLMLSPLLLGLALLVRFSSPGPVLFVQKRTGYRGRVFGMYKFRTMVADAEALKESLRHLNKHGADAIDFKIDNDPRITPIGRFLRRSSLDELPNLINVVTGDMRLVGPRPTSFNAYRYKDNHLVRLSIYPGLTGLWQISGRSNIDFDQRVELDLSYIAEQSLLLDLKILIITPFKVFSGHGASPGPT0026575_226DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-SUCCINOGLYCAN_METABOLIC_PATHWAY,PGPT0026575-exoY-K16566NANA
D1-35_023211083galE1COG1088UDP-glucose 4-epimeraseATGAACATCCTGGTGACCGGCGCGGCCGGTTTCATCGGCGCCCATTGCGTGCTGCGGCTGCTGCGCGACGGCCATGACGTGTGCGGACTGGACAACTTCAACGACTACTACGACCCGCAACTCAAGCACGACCGCGTGGCGTGGGTCAAAGGCCAGGCCGGCGACTTCCACCTGGCGCGAATCGACCTGACCGACGCACCGGCCCTCGACCAACTGTTCCAGTCCCATCGCCCCGACGTGGTGATCCATCTGGCAGCCCAGGCCGGCGTGCGTTATTCGCTGGAAAATCCGCGGGCTTATGTCGACAGTAATCTCAGCGGGTTCCTGAACATTCTGGAGAGCTGCCGCCGCCATCCGGTCAGGCACCTGATCTACGCCTCTTCCAGTTCGGTGTACGGCGCCAACCAGCGCACGCCGTATTCGGTACAGGACGGCGTCGACCATCCGTTGTCGTTGTACGCGGCCACCAAAAAGGCCAATGAACTGATGGCCCACAGCTACAGCCATCTGTTCGGCATCCCCTGCACCGGCCTGCGTTTCTTTACCGTCTATGGCCCCTGGGGCCGGCCAGACATGTCGCCGATCCAGTTCGCCCGGGCCATTACCGAAGGCCAGGTGCTGAAGCTGTTCAACCATGGCGAGCACGAGCGCGACTTCACCTGCATCGACGACATCATCGAGAGCATCGCCCGGCTGATCGAGCGCCCACCTCATGCAAACCCGGACTGGAATCGCCACCAGCCGGACCCGGCCACCAGCCTGGCACCGTGGCGCGTCTTCAACATTGGCGGACAGCATCCGGTGACGCTGCGGGCCTACGTGGCGCTGGTGGAAAAACACCTGGGCCGGAGCGCGCGAGTCGAGCTGCTGCCCCTGCAACCGGGCGATGTGCTGAACACCTGCGCCGATGCCAGCGACCTGGCCCGGGCCACCGGTTTCCAGCCTTGTATCGAACTGGATGAAGGCCTCGGCCGTTTCATCGACTGGTTCCTCGATTACTACGCACCGCCCATCGCCCACGCACCGCTTGCGACAGAACGCTTGCGGCCCAACCTCAACGGAGGAGTCTATGACCCGACATGAMNILVTGAAGFIGAHCVLRLLRDGHDVCGLDNFNDYYDPQLKHDRVAWVKGQAGDFHLARIDLTDAPALDQLFQSHRPDVVIHLAAQAGVRYSLENPRAYVDSNLSGFLNILESCRRHPVRHLIYASSSSVYGANQRTPYSVQDGVDHPLSLYAATKKANELMAHSYSHLFGIPCTGLRFFTVYGPWGRPDMSPIQFARAITEGQVLKLFNHGEHERDFTCIDDIIESIARLIERPPHANPDWNRHQPDPATSLAPWRVFNIGGQHPVTLRAYVALVEKHLGRSARVELLPLQPGDVLNTCADASDLARATGFQPCIELDEGLGRFIDWFLDYYAPPIAHAPLATERLRPNLNGGVYDPTPGPT0019020_818DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-UDP-GALACTOSE-GLUCURONATE_POOL_MODIFICATION,PGPT0019020-cap1J|wbgU-K08679NANA
D1-35_023221356rkpK_2COG1004UDP-glucose 6-dehydrogenaseATGGACGTGAGCGTATTTGGAACGGGGTACGTTGGGCTGATTCAAGCGGCGGCGCTGGCAGACGTCGGACATCGCGTCCTGTGTGTCGATATCGATCCGAACAAGATCCGGCAACTGCAACAGGCGGTGCCGCCCATCAGCGAGCCGGGACTGTCCGGGTTGCTCGAAGACAACATCAAGGCCGGGCGCCTGTCGTTCAGTTGCCAGGCCAGTGATGCGGTCAACCATGGCGAGCTGATCTTCATCGCCGTGGGCACGCCCGCCGATGAAGATGGCTCGGCGGACCTCAGCCATGTCCTGGCCGTGACCCGGCAGATCGCCGACTTCATGGACAGCGACCGCACCCTGATCATCAAGTCGACCGTGCCGGTCGGCACGGCTGACAAGGTCGCCGAATGCGCCCGCCAGGCGTTGGCCCGTCGCGGCCTGCAACAACTGAATGTGCGCGTGGTGTCCAACCCGGAGTTCCTCAAGGAAGGCAGCGCACTGGCCGATTGCATGCGCCCGGACCGGATCATCGTCGGCACCGTCGACGCCCTGGCCCGCGACCAGATGAGCGAGCTCTACGCGCCCTTCTGCCGTAACCACGAAAAGCTGATGTTCATGGACAACCGCAGCGCGGAACTGACCAAGTACGCCGCCAACGCCATGCTCGCCACGCGCATCAGTTTCATGAACGAACTGGCCAACCTCACCGAACACCTGGGTGCCGACATCGAGGCCGTGCGCAAGGGCATCGGCTCGGACCCGCGCATCGGCTACCACTTCATCTATCCCGGCTGCGGCTTTGGCGGCTCGTGCTTTCCCAAGGACCTGCGCGCCCTGCTGCACACCGCCGAACAAAGCGGCATGCCACTGCGCCTGCTGCGCAGCGTCACCGATGTGAACGACAGCCAGCGGCACATCCTTTTCGAAAAACTCACGCTGCAATTCCCCGACGGCCTGGCCGGCAAGTCGATTGCCATCTGGGGCCTGGCATTCAAACCGAACACCGACGACATGCGCGAAGCGCCCAGCCGCTACCTGATGGAGGCACTCTGGCGCGAAGGCGCCCGCGTTCAGGCCTACGACCCGGAAGCCATGTCCGAATGCCGGCGCCTCTATGGCTATCGCAAGGACCTGAACCTTTGCGCTACCCGCGACGACACGCTGGAAGATGCCGACGCCCTGGTGATCTGCACCGAGTGGAAGAATTTTCGCGTGGTCGATTTCGACCTGCTTGCCAGCAAGCTGCGCGCGCGGGTCATCATCGATGGTCGCAACCTGTACAACCCGGAACACCTGGCCGCCGCCGGGCTGCTGTATCGCGGCATCGGGCTGCGCCACACCGTGCCCGTTCAGGGGCCACAAGCATGAMDVSVFGTGYVGLIQAAALADVGHRVLCVDIDPNKIRQLQQAVPPISEPGLSGLLEDNIKAGRLSFSCQASDAVNHGELIFIAVGTPADEDGSADLSHVLAVTRQIADFMDSDRTLIIKSTVPVGTADKVAECARQALARRGLQQLNVRVVSNPEFLKEGSALADCMRPDRIIVGTVDALARDQMSELYAPFCRNHEKLMFMDNRSAELTKYAANAMLATRISFMNELANLTEHLGADIEAVRKGIGSDPRIGYHFIYPGCGFGGSCFPKDLRALLHTAEQSGMPLRLLRSVTDVNDSQRHILFEKLTLQFPDGLAGKSIAIWGLAFKPNTDDMREAPSRYLMEALWREGARVQAYDPEAMSECRRLYGYRKDLNLCATRDDTLEDADALVICTEWKNFRVVDFDLLASKLRARVIIDGRNLYNPEHLAAAGLLYRGIGLRHTVPVQGPQAPGPT0017855_1823DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-GLUCURONATE_MODIFICATION,PGPT0017855-ugd|tuaD-K00012NANA
D1-35_023231698hypothetical proteinATGGCGCGATACCTCAAGGAACTGCTACTGCTTCTATACCTGCTCAGGGCACATGACTATTACCTCGACCGTCTTGCGGCGCTGGGTTTTGGCTTTGCAACGCTGCTGTTCGGCGCGATGTTCGTTGCGCTGGTGCTGGCTCTGTGGATGACCGCGTACATTCGCCAGGCATTGGTGCGGCATCTGTTTGCCCTGGCGATGTTTGCCTCGGCGGTGTTCTTCGAGGTCTACACGCGCGTAACCGACAGCTACCTGACCTACAGCCAGTTCGTGTCGATGGTCTATTCCGGCGGGTTCATCCAGGAGGCGGCTTATCAGTACCGCGAGGTGATCATCAGTGCGGTTGCGGGGGGCTTGTTGCTGCTGCTGGGGATCGGCCTGAAGCCCCGGCGGCGTCTGCCGTTGCCCGGTTACGTCGCGATCACTGCGCCATTGCTCGGCGTGCTGCTGCTCAGTGGCGTACTGTTCGTACGGGCAGGCGAGGGCGCGCGCGGTTTGCCGATCATGTACACGCCGCTGGCCTATCTGAACCTGTTCATCTATGAAGCCGTGCACAACACCGTGGGCCCACGGGCGCCAGTCAGCCTCGTGCGGCAAACAGCGGCAATCGGGCACGATATCGTGCTGATCATCGACGAAAGCATTGGCGGGAACTATCTTGATATCAACACGCCGTCCGGCGTCGCTACCGGCCTCAAGACGCCCCCTCCCGGCGTGGAAATCCTCAATTACGGCTACGCCGCCTCGATCGCCAATTGCAGCGCGGATACCAACGTTACCTTGCGCTATGGCGGCACCCGTGGCGACTACATGCGCATCAACAGCACCCAGCCGTCGATCTGGCAGTACGCCCGCAACGCCGGGTTGCGCACCGTCTATATCGATGGCCAGAACACCGGCGGCAAGCGGCAGAACCTGATGACCGAGCTGGAACAACAGGACATCGACGAATTTGTACAGTTCGACCAGGTCCGTGTGCGCGACCGTGACATGGCGGCTGTGGCGAAACTGATCGAGCTGATGGACAACGACCGGGCCGAACTCGTGGTGGTCAATAAAGTCGGCGCGCATTTCCCGGTCCACGACAAATACCCCGATGTTTTCATGACCTACCGTCCGGCCTTACCGCGAGGGCAGTTCGAGGAGGTGGCCGACACCGGCCGGCGCGACGGCTTCAGTGGCGAAGCGAATGATTGGGTGCTGTATCGCAATGCTTACCAGAACACCTTGCTGTGGAACGTCGGCGAATTTTTCCAACGCCTATTCCGACAGGGCAATCTCGACAATGCGGTGTTGATCTATACCTCCGATCATGGCCAGGATCTGCACGAGCGCGGCAACCCCGGCCTCAACACCCATTGCGGCGGAGATCCGGTGGAAGAAGAAGGGCTGGTACCGTTGCTGGTGATCCAGGGAAGCCGGTTGCAAACCCTCGATTGGCGCAGCGCCTGGGCGCAGAACAAGGACCGCTCCAGCCACTACAACATCTTCCCGACGCTGCTGCGGTTGATGGGCTACGAGTCGGCCGGCGTCACGGCGCTGTATGGAAAATCCCTCGACCAGCCGACCGAAGACGACTTCACCTTCAACTACCGTTTTAATGCGCGGCTGGGGGCCAAGCCGGCGTGGAAGCACATTGACCTGGACAACATCGTTACGCCGAAACCGGTTCAGGGTGAGATGGCGGTGGGGCATTGAMARYLKELLLLLYLLRAHDYYLDRLAALGFGFATLLFGAMFVALVLALWMTAYIRQALVRHLFALAMFASAVFFEVYTRVTDSYLTYSQFVSMVYSGGFIQEAAYQYREVIISAVAGGLLLLLGIGLKPRRRLPLPGYVAITAPLLGVLLLSGVLFVRAGEGARGLPIMYTPLAYLNLFIYEAVHNTVGPRAPVSLVRQTAAIGHDIVLIIDESIGGNYLDINTPSGVATGLKTPPPGVEILNYGYAASIANCSADTNVTLRYGGTRGDYMRINSTQPSIWQYARNAGLRTVYIDGQNTGGKRQNLMTELEQQDIDEFVQFDQVRVRDRDMAAVAKLIELMDNDRAELVVVNKVGAHFPVHDKYPDVFMTYRPALPRGQFEEVADTGRRDGFSGEANDWVLYRNAYQNTLLWNVGEFFQRLFRQGNLDNAVLIYTSDHGQDLHERGNPGLNTHCGGDPVEEEGLVPLLVIQGSRLQTLDWRSAWAQNKDRSSHYNIFPTLLRLMGYESAGVTALYGKSLDQPTEDDFTFNYRFNARLGAKPAWKHIDLDNIVTPKPVQGEMAVGHNANANANANA
D1-35_02324669COG1136putative ABC transporter ATP-binding proteinATGCTTGAGGTCCGAAACGTCTTCAAAAGCTACACCACGCCCCAAGGCCCCCTGGCGGTGCTGCAAGGTATCGACCTGACGCTGCCTCCCGGCAGCAGCCTGGCGCTGATGGGGGAATCCGGCAGCGGCAAGAGCACCTTGCTGCATCTGGTCGCTGGCCTCGACAAGGTCGATCGGGGCAGCATCCACAGCGCGGGGCACCGGCTCGAAGACATGAGCGAAAGCCAGTTGGCGAACTGGCGGCGCACCGAGATCGGCCTGGTGTTCCAGCAGTTCAACCTCATCAGCAGCCTTGCGGTGGAAGACAATCTCGCATTCCAGGCGCGCCTGTGCGGTCGGTTCGACGCTACGTGGCAAGCGCATCTGGTGCAGCGGCTCGGGTTGTCGGAGCTGTTGCGGCGTTATCCCGAGCAGCTTTCCGGTGGTCAGCAACAACGGGTAGCCCTCGGCAGGGCGCTGGCTTCACGGCCGCCGTTGTTGCTGGCCGATGAACCCACCGGCAGCCTCGACGAAGCCACCAGCGACGAGGTGCTGCAACTGCTGCTGGAGTTGCTCGATGGCAGCCCCACCAGTCTGTTGATGGTTACCCACAGCCAGCGGGTGGCGGCGCGCCTGGCACATCGCGTGGTATTGCAAGGCGGGCGCCTGGCGCAAGCGGGCCCGGCGTGAMLEVRNVFKSYTTPQGPLAVLQGIDLTLPPGSSLALMGESGSGKSTLLHLVAGLDKVDRGSIHSAGHRLEDMSESQLANWRRTEIGLVFQQFNLISSLAVEDNLAFQARLCGRFDATWQAHLVQRLGLSELLRRYPEQLSGGQQQRVALGRALASRPPLLLADEPTGSLDEATSDEVLQLLLELLDGSPTSLLMVTHSQRVAARLAHRVVLQGGRLAQAGPAPGPT0013345_15507DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003NANA
D1-35_023252469hypothetical proteinATGATCTTTCGCCAGACCCTCAAGGCCCTGCTCAGTCACTGGCGTCGACACCCAGTGCAATTTTTCAGTGTGTTGACCGGGCTTTGGCTGGCCACCAGCCTGCTCACTGGCGTGCAGGCCTTGAACAGCCAGGCCCGGGACAGCTACGCCCGGGCCAGCCAGCTGATCGGCGGCGAACCCCAGGCCAGCCTCAGTGCTCCCGGCGGGGGCTCGTTCCCACAGCAATGGTTTGTCGACCTGCGGCGTCAGGGTTGGCCCGTATCGCCGGTGTTGCAGGGTCGGCTGACGCTTGCGGGGCATGAAGACCAGCGCCTGCAATTGATGGGCATCGACCCGGTGTCGCTGCCGCCGGGTTCGGCCGTCGCGGGGCAAGCGCGGGAGATCGCCGAGGTGGTGGACTTCTTCACCGGCCCCGGTCGTACCTGGATCGCCCCGCAGACGTTGCAGGCCCTCGGGCTGAAAGTGGGCGACCGGCCCCGCAGCGCCGACGGCCAGGCCTTGCCGCCGCTGCACGTACAGCCGGACATGGCGCCAGGCATGCTGTTGATGGACATCGGTTTCGCCCAGCAGCTCCTTGGATTGCCGGAGCAGGTCTCGCGAATGTTGTTGCCGGCCACGTTCACCGCGCCCTTGCCCGAGGCATTCAACGGCCTGTTGCAATTCAAGCGCGCGGACGAGGAGAACAACTTGACGCGCCTGACCGAGAGCTTTCATTTGAACCTCGACGCACTCGGGTTCCTGTCATTCGTGGTGGGACTGTTTATCGTCCATGCCGCCATCGGCCTGGCCCTGGAACAACGGCGCAGCCTGCTGCGAACCTTGCGCGCCTGTGGCGTCAGTGCGCGGGTACTGGTCGCCAGCCTGGCGCTGGAGTTGGGCGCGTTGGCCTTGCTCGGCGGGGTGGCCGGGGTGCTCAGCGGTTACTGGCTGGCGAGCCTGCTATTGCCTGATGTCGCGGCGAGCCTGCGCGGTCTGTACGGCGCCGAAGTGCCGGGGCAATTGCACCTCAGCCTTTGGTGGTGGCTCGGCGGCGTGGGCCTGGGCCTGCTCGGTGCGTTGCTGGCCGGGGGCCAAAGCCTGTTGCGGGCGGCGCGCCTGCCCTTGCTGGCGCTGGCCAATCCCCAGGCCTGGCACCAGGCCCACGCGCGGTGGTTGCGGCGCCAGGGCGGGGTGGCACTGATGGCCGCGCTGATCGCGGTGGCGGCGCTGGTCTGGGGCGACAGCCTGGCGAGCGGTTTTGTCCTGATGACTGCGTTGTTGCTGGGCGCGGCGCTGGCGCTACCGGTGCTGCTCAACGCTGTGTTGAACCGGTTGTTGCGCGGCAACCGTTCCGTGCTCGGCCAATGGTTCCTCGCCGATTGCCGCCAGCAGTTGCCGACGTTGAGCCTGGCGCTGATGGCGTTGTTGCTGGCGCTGGCGGCGAATATCGGCGCCGGCAGCATGACCGCCGGTTTCCGCCAGACCTTCAGCGACTGGCTCGAACAGCGGCTCACCGCCGAGCTGTACATCAACCCACAGACCCCGGCCCAGGCAGGTAAGTTGTACGAATGGCTCAAGCAACAACCGAGTATCAGCGCCGTGCTCCCGAACTGGCAGGTATCGGTCCCTCTGCAAGGCTGGCCGTCGGATATCTACGGCATCGTCGATCACCCTTCCTATCGCCTGCACTGGCCCTTGCTGGAGTCGGCCGGTGACCAGGCCTGGGACCAACTGGCCGGCGCCGACACGCTGATGCTCAGCGAACAACTGGCCCGGCGCCTGAAAGTGGAGGTCGGCGACCGGTTGACCCTGCCGACCCCACAAGGGCCGTGGACGCCGCGGGTTGTCGGGATTTATGCCGATTACGGTAATCCCAAGGGGCATGTGCTGATAAACGCCGATCACCTGCTGGCGCACTGGCCGCAATTGACGCCAAATCGCTTCAACCTGCGCATCGGGCCGTCCGCCATCGGGCCATTGCTGGCGGCGTTGCAAGGCCGGTTCAGCCTGGACGACAGTCACATCGTCGACCAGGCTCGCCTCAAGGGCTGGTCGACCCAGGTATTCGAGCGCACCTTTGCCGCCACCGCGGCGCTGAACAGCCTGACCCTGGCGGTCGCCGGAGTGGCGTTGTTCATCAGCCTGTTGACCCAGAGCCAGAGCCGTCTCGGTCAGTTGGCGCCGTTGTGGGCCGTGGGGGTAACGCGTCGGCAACTGATGCTGCTCAACCTCGGCCAGACCTGGTTGCTGGCGCTGCTGACCTTACTGCTGGCCGTGCCGCTGGGCATCGCCCTGGCCTGGTGCCTGGATGCCGTGATCAACGTCCAGGCCTTTGGCTGGCGCTTGCCGTTGCGGGTGTTCCCGCTGCAATTGGCGCAGCTGCTGGGCTTGGCAATGTTCGCCACGCTGCTGGCGTCGGCGTGGCCGCTGTACGCGCTGTACCGCACGCAACCGGCGGATCTGCTCAGGACCTTCGCCCATGAAAATTAGMIFRQTLKALLSHWRRHPVQFFSVLTGLWLATSLLTGVQALNSQARDSYARASQLIGGEPQASLSAPGGGSFPQQWFVDLRRQGWPVSPVLQGRLTLAGHEDQRLQLMGIDPVSLPPGSAVAGQAREIAEVVDFFTGPGRTWIAPQTLQALGLKVGDRPRSADGQALPPLHVQPDMAPGMLLMDIGFAQQLLGLPEQVSRMLLPATFTAPLPEAFNGLLQFKRADEENNLTRLTESFHLNLDALGFLSFVVGLFIVHAAIGLALEQRRSLLRTLRACGVSARVLVASLALELGALALLGGVAGVLSGYWLASLLLPDVAASLRGLYGAEVPGQLHLSLWWWLGGVGLGLLGALLAGGQSLLRAARLPLLALANPQAWHQAHARWLRRQGGVALMAALIAVAALVWGDSLASGFVLMTALLLGAALALPVLLNAVLNRLLRGNRSVLGQWFLADCRQQLPTLSLALMALLLALAANIGAGSMTAGFRQTFSDWLEQRLTAELYINPQTPAQAGKLYEWLKQQPSISAVLPNWQVSVPLQGWPSDIYGIVDHPSYRLHWPLLESAGDQAWDQLAGADTLMLSEQLARRLKVEVGDRLTLPTPQGPWTPRVVGIYADYGNPKGHVLINADHLLAHWPQLTPNRFNLRIGPSAIGPLLAALQGRFSLDDSHIVDQARLKGWSTQVFERTFAATAALNSLTLAVAGVALFISLLTQSQSRLGQLAPLWAVGVTRRQLMLLNLGQTWLLALLTLLLAVPLGIALAWCLDAVINVQAFGWRLPLRVFPLQLAQLLGLAMFATLLASAWPLYALYRTQPADLLRTFAHENPGPT0013350_5302DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004NANA
D1-35_023261071hypothetical proteinATGAAAATTAGAATCGGCCTGATGCTGCTGGCCTTGCTCGGCGGCTGCGACGACTCGTCGGCGCCGGAAAAGGGTTTCGCCGGCCTCGGCAACCAGGCCGTTGCATTTACGCCTGTGGTGCCGGGGCGCGTGTTCAGTTTTCCGGCCGATCATGGTGCCCATGACGGGTTTCGGATCGAGTGGTGGTACGTCACCGCCAATCTCAAGGATGCCGAGGGGCGGGATTTCGGCGTGCAGTGGACGTTGTTCCGCAGCAGCCAGGATGCCGCTCCCCAGGCCAGTGGCTGGCGTAACCAGTCCATCTGGCTCGGTCACGCCGCGGTCACTTCCGCGACTGTCCATCACGCCGCCGAACGTTACGCCCGTGGCGGTGTGGGGCAGGCGGGAGTGCGCACCAGTCCGTTCGACGCCTGGATCGACGATTGGCAATTGACCACCCGAGCCGCGGGCGCCGACCCCCTGGCGGCGATGCAGCTCAAGGCGCGGGATGCGCGTTTCAGCTATGAGCTGCAGCTCACCTCGACACGCCCCTTGGTCCTGCAAGGCGACCAGGGCTTCAGCCAGAAATCCGCGCAGGGCCAGGCGTCGTATTACTACAGCCAACCCTTCTTCCAGGCCAACGGTCAGCTGGAAATCGATGGCCAGCGCTATCAGGTCAGCGGTCCGGCCTGGCTCGACCGTGAATGGAGCAGCCAGCCCCTGACCGAAAACCAGACCGGATGGGACTGGTTTTCCCTGCATCTGGATAATGGCGAACACGTCATGCTCTACCGCATGCGGCACAAGAAAGGCGCGCCTTACCTCACCGGCACCTGGATCGACGCCCAGGGCCAGGCAACGACTCTGAGCGCCAGCGAAATCAGCCTCGAACCGCTGGACACCGCCGAGGTCGCGGGACGCTCGATGCCGGTGCGCTGGTCGATCAGGATTCCCGCCAGGCAGCTAGAAATCATCACTCAGGCGCTGAATCCCGATGCCTGGATGAACCTGCGTATTCCTTATTGGGAAGGGCCGGTGCAACTGAGCGGCAATCGTGGCGGCATCGGTTACCTGGAAATGACCGGCTACTGAMKIRIGLMLLALLGGCDDSSAPEKGFAGLGNQAVAFTPVVPGRVFSFPADHGAHDGFRIEWWYVTANLKDAEGRDFGVQWTLFRSSQDAAPQASGWRNQSIWLGHAAVTSATVHHAAERYARGGVGQAGVRTSPFDAWIDDWQLTTRAAGADPLAAMQLKARDARFSYELQLTSTRPLVLQGDQGFSQKSAQGQASYYYSQPFFQANGQLEIDGQRYQVSGPAWLDREWSSQPLTENQTGWDWFSLHLDNGEHVMLYRMRHKKGAPYLTGTWIDAQGQATTLSASEISLEPLDTAEVAGRSMPVRWSIRIPARQLEIITQALNPDAWMNLRIPYWEGPVQLSGNRGGIGYLEMTGYPGPT0013350_319DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004NANA
D1-35_02327243hypothetical proteinATGAGCGATGACCTCAAACCTCCGTCGCTGGCCGACTGGCAGCGGCTGTTCGACGACAAGGCCTACTTCCAGCAGTCGCCCGACGTTCATTTCACCGAGCTGACGCGGCTGGCGGACGACCTGTTCGGCCAGGGAGCCATTGACCTGGACCGCTGGCAGGAGCTGAAGACCAAAGCGGAGGAACTGCACCAGCGCTCGCCGGATGCGAATGTGGCGGAGGAAGTGGCCGATCCTGATGCCTGAMSDDLKPPSLADWQRLFDDKAYFQQSPDVHFTELTRLADDLFGQGAIDLDRWQELKTKAEELHQRSPDANVAEEVADPDANANANANANA
D1-35_02328171hypothetical proteinATGAAGCCCGGTCCCGATCAGACCCAACACAACCCCGACGAGCCGGCGTTGCCCGGCGAAGTGGAGCGAGACAACGACGCGCTACGACCGAACGACCCGGCCAAGCGAGAGCAGCAAGGCAATGCCGAGGCGCAGGAAACCGATGCGCAAAAAACCGCACGGGGCGATTGAMKPGPDQTQHNPDEPALPGEVERDNDALRPNDPAKREQQGNAEAQETDAQKTARGDNANANANANA
D1-35_02329519hcpACOG3157Major exported proteinTTGGCTACCCCCGCTTACATGTCCATCGAAGGCGCCAGACAAGGCCTGATCACCGCCGGCGCGTTCACCGCCGACTCGGTAGGCAACATCTATCAGGAAGGTCATGAAGACCAGGTCATGGTGCAGGGCTTCGAGCATCAGGTGAACATCCCCCGCGACCCTCAATCGGGCCAGCCAACCGGCCAGCGCGTGCACAAGCCCCTGGTCATCACCAAAGTCTTCGACAAGGCTTCGCCCCTGTTGCTGGCAGCCCTGACCAGCGGCGAGCGCCTGACGAAGGTGGAGATCCAGTGGTACCGCACATCGGCCGCAGGCACCCAGGAGCACTACTACACCACCACCTTGGAGGAGGCGATCATCGTCGACATGAAAGACTACATGCTCAACTGCCAGGACCCGGGCAACAGCCACTTCACCCATCTGGAGGACGTTCATTTCAGCTACCGCAAGATCACTTGGACTCACGTGGCCTGTGGCACCTCGGGCTCGGATGACTGGCGCAACCCGGTAATCATCTGAMATPAYMSIEGARQGLITAGAFTADSVGNIYQEGHEDQVMVQGFEHQVNIPRDPQSGQPTGQRVHKPLVITKVFDKASPLLLAALTSGERLTKVEIQWYRTSAAGTQEHYYTTTLEEAIIVDMKDYMLNCQDPGNSHFTHLEDVHFSYRKITWTHVACGTSGSDDWRNPVIIPGPT0025980_249DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_PROTEINS,PGPT0025980-hcp-K11903NANA
D1-35_023301377COG5383putative proteinATGAGCTTCGTCAGCCCCGACCTGATCCGCCAACGCTTCTCCAGGGCGATGTCCGACATGTACCGCGACGAAGTACCGCTGTACGGCGCATTGATGAACCTGGTGGAGCAAACCAACGCCCGGGTGTTGGGCAACGATCCGCAACTGGCCGAACACCTGCGCAACACCGGCGAACTGCAGCGCCTGGACCTGGAACGGCATGGCGCGATCCGCGTCGGCACCGCCGCCGAGCTGGCGATGCTGGGTCGGCTGTTCGCGGTCATGGGCATGCAGCCGGTGGGCTATTACGATCTGACGCCGGCCGGGGTGCCGGTGCATTCCACGGCCTTCCGCGCCGTGCATGAAACCGCACTGCAAGTCAGCCCCTTTCGCGTGTTCACTTCGCTGTTGCGCCTGGAGCTGATTGAAAACGCCGAGCTTCGGGCCTTTGCCGAATCGGTGCTGGGCAAACGGCAGATCTTCACTTCCGGCGCCCTTGAACTCATCGAGTTGGCCGAACGTCAGGGCGGCCTGACCGAGCCCCAGGCCGAGGAATTTGTGCTGCAAGCGCTGGAAACCTTTCGCTGGCACCACAGCGCCACCGTCACCGCCGAACAATACCGTCAACTGAGCGCCCAGCATCGGCTGATCGCCGACGTGGTGGCGTTCAAGGGCCCGCATATCAATCACCTGACGCCGCGCACCCTGGACATCGACATTGTCCAGACCCAGATGCCGGTGCATGGCATCACGCCCAAGGCCGTGATCGAAGGCCCGCCCCGTCGCCAGTGCCCCATCCTGCTGCGCCAGACCAGTTTCAAGGCGCTCGATGAACCCGTCGCGTTCACCGACCAACCAGAATCCCAAGGCAGCCACAGCGCCCGGTTTGGTGAAATCGAGCAACGCGGCGCGGCCCTCACGCCCAAGGGCCGGGCGCTCTACGATCAACTGCTGAACGCGGCGCGGGACGCCCTGGGCGCGTTTCCCAACGAAGCCAATGCCGAACGCTACAACGCGCTGATGGCTGAACACTTCGCCGACTTCCCTGACACCCTCGACGAACTGCGCCGACAAGCACTCGCGTACTTTCGCTATTTCGTGACGCCAGCGGGGCTGGCCGCCAAGGGCGCGATTGAACGGTCGAGCTCGCTGGAGCACTTGCTCGAACAGCAATACCTGCGCGCCGAACCCTTGGTGTACGAAGATTTCCTTCCGGTCAGCGCCGCCGGCATCTTCCAGTCGAACCTGGGCGATGCCGCGCAGAATCACTACGCCGGACAGTCCAATCGGCACGCCTTCGAAACGGCGCTGGGGCGGCCGACCATCGATGAACTGGGGCTGTATGCCGAGACGCAGCAGCGCTCCGTCGATGAATGTCTGCATACGCTGGGGCTCTGAMSFVSPDLIRQRFSRAMSDMYRDEVPLYGALMNLVEQTNARVLGNDPQLAEHLRNTGELQRLDLERHGAIRVGTAAELAMLGRLFAVMGMQPVGYYDLTPAGVPVHSTAFRAVHETALQVSPFRVFTSLLRLELIENAELRAFAESVLGKRQIFTSGALELIELAERQGGLTEPQAEEFVLQALETFRWHHSATVTAEQYRQLSAQHRLIADVVAFKGPHINHLTPRTLDIDIVQTQMPVHGITPKAVIEGPPRRQCPILLRQTSFKALDEPVAFTDQPESQGSHSARFGEIEQRGAALTPKGRALYDQLLNAARDALGAFPNEANAERYNALMAEHFADFPDTLDELRRQALAYFRYFVTPAGLAAKGAIERSSSLEHLLEQQYLRAEPLVYEDFLPVSAAGIFQSNLGDAAQNHYAGQSNRHAFETALGRPTIDELGLYAETQQRSVDECLHTLGLNANANANANA
D1-35_023311221lutA_2Lactate utilization protein AATGCAGACCCGGTTCAGTGAAAAAAGCCAACGCCTGCCTCGCGCCGAAGAGGCCGAACGGATCCTGCGCAGTTGCGTGCATTGCGGCTTCTGCAACGCCACCTGCCCCACTTACCAGTTGCTCGGCGATGAACTGGACGGCCCGCGCGGACGCATCTACCTGATCAAGCAGGTGCTCGAAGGCCAGCCGCCAACCGCCAGCACCCAACTGCACCTGGATCGTTGCCTGTCGTGCCGCAACTGCGAAACCACTTGCCCGTCCGGCGTCGATTATCACAACCTGCTGGACATCGGCCGGGCCGTGGTCGACGCGGCCGTACCCCGCCCCGCCAGCCAACGGGCCCTGCGTCTCGGCTTGCGCGGCCTGGCCACGAGTCCCGAACGATTCAAGAGTCTGCTGCGCCTGGGAGCAGTGTTCCGCCCGCTGCTGCCGGCGAACCTGGAGGCCAAGTTGCCACGGTCGGCGGCGTCCGCCGGCACGCGCCCGGCCGTGCGGCACTCGCGCCGCGTGCTGATGCTCGAAGGCTGCGTGCAGCCGGGCCTGTCGCCGAACACCAACGCGGCCGCCGCCCGGGTGCTGGACCGGCTCGGCATCAGCGTCGTTGCCAGCCCTGAAGCCCGCTGTTGCGGCGCGCTGGATTATCATCTCGACGCTCAACCCACCGGGCTGGACCACGCCCGGCGCAACATCGATGCCTGGTGGCCGCACTTGCAGGACGGCGCCGAGGCGATCGTCCAGACCGCCAGCGGCTGCGGCGCGTTTATCAAGGACTACGGGCATCTGTTGGAACACGATCCCGCCTATGCCGCCAAGGCGAAACACGTCAGCGAACGCGCGCTGGACCTGGTGCAGGTACTCGGCAACGAACCGCTGGAAGCAATCTGCGCTGCCAGGGATCAACGCATCGCCGTCCATTGCCCCTGCACCTTGCAGCACGCGCAGAAACTCGGTGGCGCCGTCGAAGCCCTGCTCACAAGGCTGGGCTTCAACCTCACCGAGGTGCCCGACGGCCACCTGTGCTGCGGCTCGGCAGGGACCTATTCGCTGACCCAGCCGGCGCTGGCGCGACAATTGCGGGACAACCGTCTCAACGCGCTAGAAAGCGGCCGGCCGGAGCTGATCGTCACCGCCAATGTCGGCTGCCAGAGCCACCTCGACGGTGCTGGTCGCACGCCCGTGCGGCACTGGATCGAGCTGGTGGATCAGTCCCTGGCAGAATGAMQTRFSEKSQRLPRAEEAERILRSCVHCGFCNATCPTYQLLGDELDGPRGRIYLIKQVLEGQPPTASTQLHLDRCLSCRNCETTCPSGVDYHNLLDIGRAVVDAAVPRPASQRALRLGLRGLATSPERFKSLLRLGAVFRPLLPANLEAKLPRSAASAGTRPAVRHSRRVLMLEGCVQPGLSPNTNAAAARVLDRLGISVVASPEARCCGALDYHLDAQPTGLDHARRNIDAWWPHLQDGAEAIVQTASGCGAFIKDYGHLLEHDPAYAAKAKHVSERALDLVQVLGNEPLEAICAARDQRIAVHCPCTLQHAQKLGGAVEALLTRLGFNLTEVPDGHLCCGSAGTYSLTQPALARQLRDNRLNALESGRPELIVTANVGCQSHLDGAGRTPVRHWIELVDQSLAENANANANANA
D1-35_023321059hypothetical proteinATGACCGCGCAAGTCGACCGCGACGCCAGCGAGCTGCTGCTGGAGCAGGTCAACCGCGCTCGCGCGAGCGATACGCCGCTGCGCATCCAGGGCTCCAACAGCAAGGCTTTCCTGGGACGCCAGGTGGCCGGCGAGGTGCTGGACACCCGTGCGCATCGCGGGATCGTTGACTACGACCCCACGGAGCTGGTCATCACCGCCCGCGCCGGCACCCCGCTGCGGGAACTGTTGGCCGCGCTGGACGCCGCCGGGCAGCGGCTGCCCTGCGAGCCGCCGGCGTTCGGCGCGGACGCCACGGTGGGCGGCATGGTCGCCGCCGGATTGTCGGGGCCGCGCCGTCCGTGGGCCGGCTCGGTGCGCGACTATGTGCTCGGCACGCGGATGATCAGCGGCCACGGCCACCTGTTGCGCTTTGGCGGCGAGGTGATGAAAAACGTCGCCGGCTACGACCTGTCGCGCCTGCTGGCCGGTAGTTTCGGTTGCCTGGGGGTGATCACCGAAGTGTCCTTGAAAGTGCTGCCCAAGCCCCGCCACGGCTTGAGCATCCGCCTGGAAATAGACAGCCGCGAAGCCCTGGAAAAACTCGCCGAATGGGGCCGACAACCCTTGCCCATCAGCGCCGCCAGCCACGACGGCGATTGTCTGCGCCTGCGCCTGGAAGGCGGCGAGGGTTCGGTCAGCGCGGCCCATCAGCGCCTGGGCGGCGAAGCCATCGACGATCAATACTGGACCGAGCTGAATGAACATCGCCTGCCATTCTTCGCTGAAGACCTGCCCCTGTGGCGCCTGTCGCTGCCCAACGCTACCGGCCCGCTCGACTTGCCCGGTGCGCAACTGATCGATTGGGCGGGCGCGCAGCGCTGGCTGAAAACCGACGCCGATACGGTCCAGGCACTGGCCCGGGAATGGGGCGGCCATGCCGTCTGCTATCGTCCTGGCGCAACCGCAACGCCGTTCCAACCGTTGGAACCGGCGCTGCTGCGCTACCACCGTCAACTCAAGGCGAAGCTTGATCCCCAGGGCCTGTTCAATCCTGGCCGAATGTACGCGGAGTTCTAGMTAQVDRDASELLLEQVNRARASDTPLRIQGSNSKAFLGRQVAGEVLDTRAHRGIVDYDPTELVITARAGTPLRELLAALDAAGQRLPCEPPAFGADATVGGMVAAGLSGPRRPWAGSVRDYVLGTRMISGHGHLLRFGGEVMKNVAGYDLSRLLAGSFGCLGVITEVSLKVLPKPRHGLSIRLEIDSREALEKLAEWGRQPLPISAASHDGDCLRLRLEGGEGSVSAAHQRLGGEAIDDQYWTELNEHRLPFFAEDLPLWRLSLPNATGPLDLPGAQLIDWAGAQRWLKTDADTVQALAREWGGHAVCYRPGATATPFQPLEPALLRYHRQLKAKLDPQGLFNPGRMYAEFNANANANANA
D1-35_023331500COG0277putative FAD-linked oxidoreductaseATGAACATCCTCTACGACGAGCAGCTCGACGGCCCGCTGCCGAAAGTGCACAAGCAGGCCCTGCTCGACGCCATGCAGGCACGTATTCCGGACTTGGATATCCTGCACCGCGACGAAGACCTCAGGCCCTACGAATGCGATGGGCTGTCTGCCTACCGGACCACGCCCCTGCTGGTCGTGCTGCCGCGGCGGGTCGAGCAGGTGCAGGCCTTGCTCAAGCTGTGCCATGAACAGAATGTGCCGGTGGTGGCCAGGGGCGCCGGGACCGGCCTGTCCGGTGGCGCCCTGCCCCTGCAAAGCGGCGTGTTGCTGGTCATGGCGCGCTTCAACCAGATCCTGCACATCGACCCCGACGCCCGCACCGCGCGCCTGCAGCCAGGGGTGCGCAACCTGGCGATTTCCCAGGCGGCGGCGCCGTTCGGGTTGTACTACGCGCCGGACCCTTCCTCGCAGATCGCCTGCTCCATCGGCGGCAACGTCGCAGAGAACGCCGGCGGCGTGCATTGCCTGAAATACGGCCTGACGGTGCACAACCTGCTGAAGCTGGAAATCCTCACCATCGAAGGCGAACGCCTGGTGCTGGGCAGCGAGGCCCTGGACTCGCCAGGCCTGGACCTGCTGGCGTTGTTCACCGGCTCCGAAGGCCTGCTGGGGATCATCACCGAAGTCACCGTCAAGCTGTTGCCTCGCCCCCAGGTCGCCAAGGTCTTGCTGGCCAGCTTTGACTCGGTGGACAAGGCCGGACGGGCGGTGGCCGAGATCATCGCAGCCGGGATCATCCCCGGCGGCCTGGAAATGATGGACAATCTGGCGATCCGCGCCGCCGAGGATTTCATCCACGCCGGCTACCCGGTCGACGCCGAAGCGATCCTGCTGTGCGAGCTCGATGGCGTCGAGGCCGATGTCCACGATGACTGCGAACGGGTCCGCCAGGTGCTGCAACGGGCCGGCGCCACCGAGGTGCGCCTGGCCCGGGACGAGGCCGAACGCCTGCGGTTCTGGGCCGGACGCAAGAATGCGTTTCCGGCGGTAGGCCGCCTGGCGCCGGACTATTACTGCATGGACGGGACCATCCCCCGGCGGGCATTGCCCGAGGTCTTGCAGCGCATCGCCAGCCTGGGCAGCGAACACGGCCTGCGGGTCGCCAACGTGTTCCATGCCGGCGACGGCAACATGCACCCGCTGATCCTGTTCGACGCCAACCAGCCGGGCGAGCTGGAGCGCGCCGAAACCCTGGGTGGGAAGATCCTCGAACTGTGCGTCCAGGTGGGCGGCAGCATCACCGGTGAACACGGCGTCGGCCGGGAGAAAATCAACCAGATGTGCACGCAGTTCAACAGCGACGAGCTGTTGCTGTTCCACGCGGTGAAAGCCGCGTTCGATCCGCTTGGCCTGCTCAACCCCGGCAAGAACATACCGACCCTGAACCGCTGCGCTGAATTCGGCGCGATGCATATCCATGGCGGGCAATTGCCGTTTCCTGAACTGGAGCGATTCTGAMNILYDEQLDGPLPKVHKQALLDAMQARIPDLDILHRDEDLRPYECDGLSAYRTTPLLVVLPRRVEQVQALLKLCHEQNVPVVARGAGTGLSGGALPLQSGVLLVMARFNQILHIDPDARTARLQPGVRNLAISQAAAPFGLYYAPDPSSQIACSIGGNVAENAGGVHCLKYGLTVHNLLKLEILTIEGERLVLGSEALDSPGLDLLALFTGSEGLLGIITEVTVKLLPRPQVAKVLLASFDSVDKAGRAVAEIIAAGIIPGGLEMMDNLAIRAAEDFIHAGYPVDAEAILLCELDGVEADVHDDCERVRQVLQRAGATEVRLARDEAERLRFWAGRKNAFPAVGRLAPDYYCMDGTIPRRALPEVLQRIASLGSEHGLRVANVFHAGDGNMHPLILFDANQPGELERAETLGGKILELCVQVGGSITGEHGVGREKINQMCTQFNSDELLLFHAVKAAFDPLGLLNPGKNIPTLNRCAEFGAMHIHGGQLPFPELERFPGPT0001890_13DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001890-dld-K00102NANA
D1-35_02334930lip1Lipase 1ATGCTGGTGTTGTGGGTGGTCCTTGCGGTGTTCATCGCCTGGAGCTGGTTGACGTATCCGGGCATCGGCCATGTGCTGTATGACCTGGGCATGGCGCTGGAGGCGCGTCTCTACCGGCTGCACAAAATTACCGTGCCGATCAGCGAAATGACGGTGTCGACCTGGCAGGGCGGGCCCTATGAAGCGTCCGGCAGCGTGCTGATGCTGCATGGCTACAGCGCCGACAAGAACCTCTGGTTGCGCTTCGCCCGGTATTTCGTCGGCGATTACCGGGTGGTGATTCCCGACCTGGCCGGCCATGGCGAAACCGGCTTCAAGGCCGGCGGCGGTTATGACATCCCGACCCAGGCGCGGCGAGTGATCGAATTGCTCGATGCCTGTGGCCTGGACAAGGTCCATGTGATCGGCAACTCCATGGGTGGTTACCTCGCAGCCTGGCTGGCGGCGACGTCGCCTGAGCGGGTGTTGACCCTGGCGCTGATCGATCCGGCCGGTGTCACCGCCCCCGAACCCAGCGACATGGAACGCCACTTGGCCGCCGGTCACAACCCGTTCCTGGTTGATTCTCGAGACGATTTCGCGCCGTTCTACGCCATGACCATGGCCTCGCCGCCCTGGCTGCCCAGTGTAGTGCTGGCGGCGCTGGCCGAGCGTTATGAACAGCGCCGGGAGGAATTGGCGGAGATCTTCGTCGATTTACGCGCCAGCCCACCAATGGAACCGCGCCTGGCCGACATCCGCGCGCCTTCGTTGCTACTCTGGGGGCGCAAGGACCGGTTGATCGACGTCAGCAGCGTACCGGTATGGAGCAAGGGCATCACCGACCTCAGGGTGGAAATCTGGGACGGGGTCGGGCATATGCCGATGGTTGAAAAACCGGGCAAGACTGCGGCGTTGTACCGGGATTTTCTGAAGGGGTTGGGGCAGTGAMLVLWVVLAVFIAWSWLTYPGIGHVLYDLGMALEARLYRLHKITVPISEMTVSTWQGGPYEASGSVLMLHGYSADKNLWLRFARYFVGDYRVVIPDLAGHGETGFKAGGGYDIPTQARRVIELLDACGLDKVHVIGNSMGGYLAAWLAATSPERVLTLALIDPAGVTAPEPSDMERHLAAGHNPFLVDSRDDFAPFYAMTMASPPWLPSVVLAALAERYEQRREELAEIFVDLRASPPMEPRLADIRAPSLLLWGRKDRLIDVSSVPVWSKGITDLRVEIWDGVGHMPMVEKPGKTAALYRDFLKGLGQNANANANANA
D1-35_023351080dgcCputative diguanylate cyclase DgcCATGCATAAAACGGGAAAAAAGGGATTGTCGCTGGCCAGGAGGCTCTACACATCCCGAATCCTCGGCCTTGCGCTGGGGTTGCTGGTGGTGAGCGCCGCGCTCTATCCCCTCGATCCGGCGCCCTGGGTCTGGGGCTTCATGCTGTTCAACGGGTTGCTCTGGCCGCACGTGTCCTACCAATGGGCCCGTCGTTCGACGGTGCCGTACCATGCCGAGCACCGCAACCTGGTGATCGACGCCTTCCTCGGTGGCTTCTGGGTCGCCGCGATGCAATTCAACCCGCTGCCCACCGCCGTGACGCTGGCGATGATGGCAATGAACAACGTGGCCATCGGCGGCCTGCGTTTCCTGTTGGTCGGGGCTGTGGCCCAGGTTGCCGGTATCACCGTCGGGATATTCATGTTCCCCTTTGCCAGCGTGCCCATGACCAGCCCGGCGCAGCTATACGCCTGCTTGCCGTTGCTGTGCCTGTACCCGCTGGCGCTGGGCTGGATCTGCTTTCGCCAGGCGCACACCCTGGGCCGACAGAAACGCGAATTGCTGGCCCTGAGCCGTACCGACAGCCTGACCGGCCTGCTCAACCATGGCGCCTGGAAGGACCGGCTCAACGAGGCATTCCAGCACTGCCGACGGCAGTCACCGGACGGGGCAGGGCATGGCGTGATCGCGCTGATCGATATCGACCACTTCAAAGCCATCAATGACACCTACGGCCATGGCGCCGGTGATGTCGTGCTGCGTCAGCTCGGCAAGCTGCTGGGGCAGAACCTGCGGGCCACGGACATCGTCGGGCGCTATGGCGGCGACGAGTTCGGGGTGATCCTGCCGGACCTGACGCTGCTCAGCGCGGTGCAGGCGATGGAGGGGCTACGCGAACGCTTCACCGCGCAGGACTATGAACGTGACCCGGCGCTGAAAGTGAGCCTGAGCATCGGCCTGGCGGCCTTCACGTCGGATTATGCCGATGCGACCGCCTGGCTCGACGACGCCGACCAGGTGCTCTATGAAGCCAAGACCAGCGGACGCAACCGGGTTGTCTGTCAGCGACACCGGCCGGTGCTGGAGGCGTCTGCGGTCTAGMHKTGKKGLSLARRLYTSRILGLALGLLVVSAALYPLDPAPWVWGFMLFNGLLWPHVSYQWARRSTVPYHAEHRNLVIDAFLGGFWVAAMQFNPLPTAVTLAMMAMNNVAIGGLRFLLVGAVAQVAGITVGIFMFPFASVPMTSPAQLYACLPLLCLYPLALGWICFRQAHTLGRQKRELLALSRTDSLTGLLNHGAWKDRLNEAFQHCRRQSPDGAGHGVIALIDIDHFKAINDTYGHGAGDVVLRQLGKLLGQNLRATDIVGRYGGDEFGVILPDLTLLSAVQAMEGLRERFTAQDYERDPALKVSLSIGLAAFTSDYADATAWLDDADQVLYEAKTSGRNRVVCQRHRPVLEASAVPGPT0026210_180DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-CELLULOSE_METABOLISMCE-EPS-CELLULOSE_BIOSYNTHESIS,PGPT0026210-adrA-K18968NANA
D1-35_023361239cpg2_1Carboxypeptidase G2ATGACCGTTATCGTTCGTCGCTCCCGTCTCGCCGTCAGCCTCGGCCTGAGCCTGGCCCTCGGCGCCTTTGCCCCTGCCGCTCTGGCGCAACCTCATCAACAGGTGCTGGCCGATGCCGAGCAGTACAAGGGCGAGGCGCTGAAATTGCTTGAACGCCTGGTGAACATCGACTCCGGTTCCGGCTATGTGCCGGGGCTGACCCAGGTCGGCGATATCGCGATCGACGAGTTGCAGAAGCTCGGCGCCAGCATTGAAAAAGTGCCCAATTCGGACGGCACCCACCATGTCCTGGCGACGTTCAAGGGCACCGGCAAGGCGAAAATCCTGCTGATGGCCCATATGGACACGGTGTTCAAGGAAGGCTCGGCGGCCGAACGTCCCTTCCGTATCAAGGATGGCCGCGCCTACGGGCCGGGGGTGATGGATGACAAGGGCGGCATCGTCGCGGGCATCTATGCGCTGAAGGTGCTGAAGAACCTGGATTTCAAGAATTACGCGCAGATCACGTTCCTGCTCGATGCCAGCGAAGAGACTGGTTCGGACGTCGCCACCGACCTGATCAAGAAAACCGCCAAGGCCCATGACGTGACCCTCAACCTTGAACCGGGGCGCCCGGCCGACGGCCTGGTGGTGTGGCGCAAGGGCAGCGCAACCGCGCTGGTGGAGGTCAGGGGCAAGGCGGCCCACGCCGGCGTCGCACCGGAACTGGGGCGTAACGCGGCAATGGAAGCGGCGCATCAGATACTGCAACTGGGCAAGCTGGGCGACGCGGAAAAGAAGACCACCATCAACTTCACCGTGCTCAAGGCCGGTGACCGGACCAACGTGATCCCCGACCAGGCCACGGCCAAGGCCGACGTGCGCGCAGCGGTGCCGGAAGAATTCGACCGCATCGAAAAAGACCTGGCCCGGGTCTCGAAAGACAAGCTGATCGCCGACACCGAAGTCACCACCAGCCTGCAGCGCGGCTTGCCGCCCATGCCACAGACCGCCGAGTCGGACCGGCTGATGGCCATGGCCCAGGGTATCTATGGCGAGCTGGGCCGCAAACTGACCGAGGAAGGCAGCGGCGGGGCGGCGGACGCGAGCCTGTCCGCCGGCGTTGGTACACCGACGCTGGACGGCTTCGGCATCGTCGGCGGCAATATCCATACGCCCGAGGAATATGCCGAGGTCGAAAGCGTGGTGCCGAGGATTTATCTGCTGACGCGAATGATCATGGAGTTGGCGGCACGGTAGMTVIVRRSRLAVSLGLSLALGAFAPAALAQPHQQVLADAEQYKGEALKLLERLVNIDSGSGYVPGLTQVGDIAIDELQKLGASIEKVPNSDGTHHVLATFKGTGKAKILLMAHMDTVFKEGSAAERPFRIKDGRAYGPGVMDDKGGIVAGIYALKVLKNLDFKNYAQITFLLDASEETGSDVATDLIKKTAKAHDVTLNLEPGRPADGLVVWRKGSATALVEVRGKAAHAGVAPELGRNAAMEAAHQILQLGKLGDAEKKTTINFTVLKAGDRTNVIPDQATAKADVRAAVPEEFDRIEKDLARVSKDKLIADTEVTTSLQRGLPPMPQTAESDRLMAMAQGIYGELGRKLTEEGSGGAADASLSAGVGTPTLDGFGIVGGNIHTPEEYAEVESVVPRIYLLTRMIMELAARNANANANANA
D1-35_02337279hypothetical proteinATGTTCAAACCAACACCCAACCCACCGGACACCGATCCAGCCACCGCCGCTCCAAGAGAAACCGATCCCGGCCAACTCTTCACCGTCATCAACGGCATCGACACCGAATCCCTGCTCGCCAACCTCAGCGAAACCCTCGCCTCGGCCAACGCCATGGTCGGTTACCTGGCCTTCGACCTGGAAGACTCACGACGCCATATTGCCTTGGGCATCCAGCAACTGATCGAACTGGGCGCACTCCTGGCAAACCGCGCGCTGGACAACGTCGACCCGCGTTAGMFKPTPNPPDTDPATAAPRETDPGQLFTVINGIDTESLLANLSETLASANAMVGYLAFDLEDSRRHIALGIQQLIELGALLANRALDNVDPRNANANANANA
D1-35_02339279hypothetical proteinATGTTCAAACCAACACCCAACCCACCGGACACCGATCCAGCCACCGCCGCTCCAAGAGAAACCGATCCCGGCCAACTCTTCACCGTCATCAACGGCATCGACACCGAATCCCTGCTCGCCAACCTCAGCGAAACCCTCGCCTCGGCCAACGCCATGGTCGGTTACCTGGCCTTCGACCTGGAAGACTCACGACGCCATATTGCCTTGGGCATCCAGCAACTGATCGAACTGGGCGCACTCCTGGCAAACCGCGCGCTGGACAACGTCGACCCGCGTTAGMFKPTPNPPDTDPATAAPRETDPGQLFTVINGIDTESLLANLSETLASANAMVGYLAFDLEDSRRHIALGIQQLIELGALLANRALDNVDPRNANANANANA
D1-35_023411335hypothetical proteinATGCGGCTGTGCGTTGTGTTTTTCATGAGCTTCTGGCTGCCGCTCATGGCATGGGCCGGCGCCTTGCCCGTTCCCGAACACGGCCCGGCCCTGCGCATCCAGGGCTCCAACACCATCGGCGCGGCACTGGGGCCGGCCCTGGTCAAGGGCCTGATGCAAGGCCAGGGGCTGCTCAGGGTCAGCAGCGAAATAACCGGCCGGGACAATGAGCAACGGATCGTTGGCTGGACCGCCGAAGGCAAGCGCGTCCAGATCGACATCGCGGCCCACGGTTCCAGCACCGGATTCGCCGCTCTCAAGCAAGCCAGCGCTGACCTGGCAGCCTCGTCCCGTCCGATCAAGGACGGTGAACTGAAGGACCTGTCGGCCCTCGGCGACTTGAAAAGCCCGATGGCCGAGCAGGTCATCGCCATCGACGGCCTGGCGATTATTCTGCATCCGCAAAACCCGTTGCGTCAGCTCGACACCTCGCAACTGGCGCGCATTTTCAGCGGTGAGGCAAAGACCTGGGAAGCGGTGGGCAGCGTCGGCGGGGCCATCCATTTATACGCGCGGGACGAACAGTCCGGCACCTACGATACCTTCAAGGAACTGGTACTCAACCGACAAGGAAAAAAGCTCGATCCTGCGGCCCAGCGCTTCGAATCCAGTGAGCAATTGTCCGATGCGGTCAGCCAGGATCCGCAAGGCATCGGCTTCATCGGCTTGCCCTACGTACGTCAGGCCAAACCCCTGGCGATCGTCGACGGCGCCTCGCAGCCCATGTTGCCGCTGAACAACCTGATCGCCACCGAGGATTATCCCCTGTCCCGACGCTTGTTCTTCTACTTGCCGCCAGCGCAAACCAACCCGTGGGCCGAAGCCCTGGTCGACTTCAGCCAAAGTGAACAAGGCCAGGCCATCGTCGCGGCCAACGGATTCATCGCCCAGACCATCCAGGCCATGTCCGTCACCCCCAACGCGCTGATGCCGGAGGGTTACCAGGCCTTGAGCCGCCATGCCCAGCGCCTGACCGTGAATTTCCGCTTCGAGGAAGGCAGCGCCAGCCTGGACAACAAGGCCCACCAAGACCTCGGCCGGGTACTCGACTATATAAGGCAACACGGAAAACTCGACCGGCGCGTGACCCTGGTGGGTTTTGGCGACCTCAAGGACGACCCGGCGCGAGCCGACCTGCTGTCCAAACTGCGCGCCATGGCGGTGCGGCGGGAATTGGTCAAATACGGCGTGACGTTGCGCGAGGTCCGCGGGTTCGGCGCGCTGATGCCGGTGGCGGCCAACAATGAAGACGAAGGCCGGGTGCGCAATCGGCGGGTGGAGGTTTGGGTTTACTGAMRLCVVFFMSFWLPLMAWAGALPVPEHGPALRIQGSNTIGAALGPALVKGLMQGQGLLRVSSEITGRDNEQRIVGWTAEGKRVQIDIAAHGSSTGFAALKQASADLAASSRPIKDGELKDLSALGDLKSPMAEQVIAIDGLAIILHPQNPLRQLDTSQLARIFSGEAKTWEAVGSVGGAIHLYARDEQSGTYDTFKELVLNRQGKKLDPAAQRFESSEQLSDAVSQDPQGIGFIGLPYVRQAKPLAIVDGASQPMLPLNNLIATEDYPLSRRLFFYLPPAQTNPWAEALVDFSQSEQGQAIVAANGFIAQTIQAMSVTPNALMPEGYQALSRHAQRLTVNFRFEEGSASLDNKAHQDLGRVLDYIRQHGKLDRRVTLVGFGDLKDDPARADLLSKLRAMAVRRELVKYGVTLREVRGFGALMPVAANNEDEGRVRNRRVEVWVYPGPT0002625_445DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002625-pstS|phoS-K02040NANA
D1-35_02342813xthA_2COG0708Exodeoxyribonuclease IIIATGAAGATCGTCTCCTTCAACATCAACGGGCTGCGCGCCCGTCCCCATCAGTTGGCGGCACTGATCGACAAGCACCAGCCTGACGTCATCGGGTTGCAGGAAACCAAGGTTCACGACGAACAATTTCCCCTGGCCGAGGTGCAAGCCTTGGGTTATCACGTGCATTACCACGGGCAGAAAGGCCATTACGGCGTCGCCCTGCTCTCGCGCCAGGCGCCGCTGACCCTGCACAAAGGTTTCGAGACTGACGACGAAGACGCCCAGCGGCGTTTCATCTGGGGCACCTTCGCCGATGCCAATGGCGTGCCGGTGACCATCATGAACGGTTATTTCCCCCAAGGTGAAAGTCGCGACCATCCGACCAAGTTCCCGGCCAAGCAGCGCTTCTACAGCGATTTGCAGCAACTGCTGGAAACCCGCTTCAGCAACGACCAGCCGGTGGTGGTGATGGGCGATGTGAACATTTCCCCGGAAGACTGCGACATCGGTATCGGCCCGGACAACATGAAGCGCTGGCTGAAGACCGGCAAATGCAGCTTCCTGCCGGAAGAACGCGAATGGATGGCGCGCCTGAAGAATTGGGGTCTGGTGGACAGCTTCCGTCACCTGAACCCGGACGTCAGTGACCGCTTCAGCTGGTTCGACTACCGCAGCCGCGGTTTCGAGGACGAGCCCAAGCGCGGCCTGCGCATCGATTTGATCCTCGCGTCCCAAGGCCTGCTGCCACGGGTCAAGGACGCCGGCGTGGATTATGAATTGCGCGGCATGGAAAAACCCTCGGACCACGCGCCGATCTGGCTGGAACTGAGCTGAMKIVSFNINGLRARPHQLAALIDKHQPDVIGLQETKVHDEQFPLAEVQALGYHVHYHGQKGHYGVALLSRQAPLTLHKGFETDDEDAQRRFIWGTFADANGVPVTIMNGYFPQGESRDHPTKFPAKQRFYSDLQQLLETRFSNDQPVVVMGDVNISPEDCDIGIGPDNMKRWLKTGKCSFLPEEREWMARLKNWGLVDSFRHLNPDVSDRFSWFDYRSRGFEDEPKRGLRIDLILASQGLLPRVKDAGVDYELRGMEKPSDHAPIWLELSNANANANANA
D1-35_02343645hypothetical proteinATGCCTGACGCCATTACCGCTGATATCCACATGCTCGACAGCGGCTATTCCCGCGAAGCGCGTTCATTGCTGTACCAGGCCTACCGCCATGAGCCGACCTTCAGCTACCTGTTCGAATCCGAGCGTCCCGGTTACGAACAGCGGGTGCGGGCGACGGTGCGTGAACTGGTCAAGCAGCATTTCTTCCAGGACCTGCCAGCGATCGGCCTGTTGGTCAACGACCGCCTGATCGGCATCGCCCTGATTGCCCCGCCGCAGCGGCGCCTGGGCATTACCGAAAGCTGGGCCTGGCGCCTGCGCATGGTCTTGAGCACGGGGTTTCGCTGCACCCGGCGTTATCTGGAATATCACGCCGCGGTGCTGGCCTGCCTGCCATCGGACGCGGTCCATGTGCTGCCACTGCTGGGGGTTCATCCGCAGTTCCAGGGCCAGCATTACGGCGAGCAGTTGCTTGAGGCAGTCCATAACTGGTGTGCGGTGGACGAGCATTCCCAAGGCGTCGTGCTCGATACCGGCAACCCGCGCTACCTGGAATTTTATAAACGCCAGGGCTATGAGGAAATCGGCGAAATCGCGGTAGGACCGGTCCGCGAGCATGTGTTCTTTCACGCCAACCCGCAGGTTTTACACAGCGCGACGGCATAAMPDAITADIHMLDSGYSREARSLLYQAYRHEPTFSYLFESERPGYEQRVRATVRELVKQHFFQDLPAIGLLVNDRLIGIALIAPPQRRLGITESWAWRLRMVLSTGFRCTRRYLEYHAAVLACLPSDAVHVLPLLGVHPQFQGQHYGEQLLEAVHNWCAVDEHSQGVVLDTGNPRYLEFYKRQGYEEIGEIAVGPVREHVFFHANPQVLHSATANANANANANA
D1-35_023441728tamACOG0729Translocation and assembly module subunit TamAATGAATTTCCCAGGACGAATGACCAGTGGCGCGCTCTTGCTGTCCCTCAGCTGCGCCGCGCTGGCACAAAGTGTATTGGATGTACGGGTCAAACCGTCCAATGACGAGCTCAAGGCCAATGTAGAGGGCTATATCGGTGGCCTCGGTGAGCGTGACGAAGAGGCACTGCTGCGTTTCAGTCGCGGCGCCGAGGAGCAGGCGCGCAAGGCGGCCCAGGCGCTCGGCTATTACCAGCCGCAGATCGACAGCGAGGTCAAGGCTGGCAAGGACCCGCGCCTGACCCTGACCATCGACCCCGGCGAGCCGGTGCACCTGCGCAATGTCACGATCCGCATCGACGGCCCGGCGGCCTCGCTGAAGAGTTTCCGGGTGCCGGACAACGCCGGTCTCAAACCGGGTGCGGTGCTCAATCACGGACGCTATGAAGATGCCAAGCGGACGATCCAGAACCAGGCCTCGCGTTATGGTTTTTTCAGCGGAAAGTTTCTCAGCCAGACGTTGCGCGTTGATCCCAAGGCTGGCGTTGCCGATGTCGAGCTGATCTACGACAGCGGCCCGCGTTACGCCCTGGGCCCGGTCAGTTTCGAGGGCGATACGCCGTTCGACGAGGACCTGCTGCAGCGCATGGTGCCGTTCAAGGCGGGCGCGCCCTACGATTCCGAATTGATTGCCGAACTCAACCAGGCCTTGCAGTCGAGCGGTTATTTCGAAGGCGTGCGCGTTGATGCGGCGCCCACCGCGGCCACCGAGAATGTGATCCCGGTGGCGGTCAAGCTCGACACCCGCAAGCCGCGCACCATGGGCCTGGGCCTGGGGTTTTCCACTGACGTCGGCCCGCGCGCCAAGGCCAACTGGACGCGTCACTGGGTCAATCCCCAAGGCCACAGCTATGGCTGGGAAGCGGAAATATCGGCGCCCCGGCAAAACGTCGGCCTCTGGTACGACGTGCCGCTCGACCCCCCGCTGACCGACAAGCTGCGCTACGCCGGCGGCTATCAATATGAAGAACTGTCCGGCACCGACACCCTCAGCAAACTGCTGACCGTGGGCCCCGAGTGGCACAGCAAGCTGCCCAGCGGCTGGCAGCGGGTGGTGTCGCTCAAATGGCAGCGCGAAGAATACCGCCTCGGCGACGATTCGGGCCTGAGCACCTTGCTGATGCCCGGCGTCAGCTATTCGTACCTGCGCAGCGACAACCGCATCGACCCGCACAACGGCTATCGCCTGCAATTCGACACCAAGGTCGCCAAGGAAGGACTCGGCTCGGACAACAACCTCTTGTATGGCACGGCCATGGTCAAGGGCCTGACCACGGTATTCGACAAGCATCGCCTGTTGGCCCGGGCCCAGGTGGGCGGCAGCGCCACCAACGGCTACAAGTCGATTCCGCCGTCCCTGCGCTTTTTCGCCGGTGGCGACCAGAGCGTGCGTGGCTACGACTACCAGAGCCTGTCGCCGGAGAACTCCGAGGGCGATCGCATCGGCGGCCGCTACATGGTGGCCGCCAGCGTCGAGTATCAATATTCGGTCGCGGAGAAATGGCGCGTGGCGACCTTCGTCGACCAGGGCAACTCCTTCAACAGCCTTGAACTGCCAAGCCTCAAGACCGGGGTCGGCGTCGGCGTGCGCTGGGTCTCGCCGGTCGGCCCGATCCGTCTCGACCTGGCTCATGCGATGGACGATGACGGCGGCATTCGACTGCACTTTTCCATGGGGCCCGAGTTGTGAMNFPGRMTSGALLLSLSCAALAQSVLDVRVKPSNDELKANVEGYIGGLGERDEEALLRFSRGAEEQARKAAQALGYYQPQIDSEVKAGKDPRLTLTIDPGEPVHLRNVTIRIDGPAASLKSFRVPDNAGLKPGAVLNHGRYEDAKRTIQNQASRYGFFSGKFLSQTLRVDPKAGVADVELIYDSGPRYALGPVSFEGDTPFDEDLLQRMVPFKAGAPYDSELIAELNQALQSSGYFEGVRVDAAPTAATENVIPVAVKLDTRKPRTMGLGLGFSTDVGPRAKANWTRHWVNPQGHSYGWEAEISAPRQNVGLWYDVPLDPPLTDKLRYAGGYQYEELSGTDTLSKLLTVGPEWHSKLPSGWQRVVSLKWQREEYRLGDDSGLSTLLMPGVSYSYLRSDNRIDPHNGYRLQFDTKVAKEGLGSDNNLLYGTAMVKGLTTVFDKHRLLARAQVGGSATNGYKSIPPSLRFFAGGDQSVRGYDYQSLSPENSEGDRIGGRYMVAASVEYQYSVAEKWRVATFVDQGNSFNSLELPSLKTGVGVGVRWVSPVGPIRLDLAHAMDDDGGIRLHFSMGPELNANANANANA
D1-35_023453675tamBCOG2911Translocation and assembly module subunit TamBGTGAATCGCGGTTTGAAATTAGTGCTCCTGGCGCTCGCCGGGTTACTGCTGACGGTCGTCCTGGCCTTGAGCATTGTGTTGGGCACCGCCTTTGGCAGCCGTTGGGCTCTCGGCCTGGTACCGGGCCTGAGCGTGGAGAATTTCCAGGGGCGGCTGGGCGGGCGGTGGAGCGCCGATCGGGTGCTGTGGCAGCAAGATACCCGCCGGGTGGCGCTGGAGCGGCCGAACTTCGCCTGGTCGCCGTCGTGCCTGCTGCGCATGACCCTGTGCATCGAACAGCTCAAGGCCGACGCCATCGCCGTGCAGTTGCCAGCCACCGCCGATGAACCGAGCAGCGGCCCGATCAGCCTGCCGGACCTGGACTTGCCGTTGGCGATCGAACTGGGCGATGTCCAGGTGGGCAGCCTGTTGTTCAACGGCAGTGAGCAGCTCAAGGGGCTGCAACTGGTGGCGCACTGGACCGCCGAGGGTTTGCAGATCGACTCGGTGCAGTTGCAACGCGACGAACTGAGCCTGAAGTTATCCGGCCTGCTGCAACCGCACGGCGACTGGCCGCTGGACGCGACGGGCCAGTTGACCCTCCCAGCGCCGGGCGCGACGCCTTGGGCACTGGAGCTGAAAGTCGCTGGCGACCTGCTCAAGACCCTCAACCTCACGGCCGACAGCAGTGGTTATCTGCAAGGCCGCCTGACGGGCGAACTGCAACCGCTGGTGGATAACCTGCCGGCCAAGGTGCGCATCACCGCCGACGGTTTCAAGGCCAGCGCCGATCTGCCGGACACGCTGCTGCTCAACCAACTGGAGCTGACCGGCGAAGGCGACCTGAAGAACGGTTATCAACTGCTCGGCAAGGCGACACTGCCCGCCGAAAAGGGGCCGGTGGCGTTGCTGCTGCAAGGCCATGTGGACGCCAATGGCGCGCAAGTCGCCGGGCTGGATCTCGACGCCGGCAACCAGCAGACCCTCAAGCTCACCGGGCAGTTGGATTGGCGCGAAGGGCTGAACGCCGAAGCAAAAGTCGCCTGGCTGGATTTCCCCTGGCATCGCCTTTATCCGCTGATCGACGAGCCGCAAGTCACGCTGCGCAGTTTTAATGGCGAAGTCTCGTACACCGACGGCCAGTACCTGGGCAATTTCCAGGCGGCGCTGGACGGTCCCGCCGGGGCGTTCAGCCTGGGCAGTCCGTTCAGCGGCAACCTGACGCAAATCCACTTGCCGGAACTCAAGCTTGCCGCCGGACAGGGCAAGGCCGAAGGGCACCTGGACCTGCAATTTGCCGACGGCATCGCCTGGGACACCGCGCTGCAACTGTCGTCGGTCAATCCGGCGTACTGGCTCGCCGAACTGCCCGGCACGCTGGCCGGGCCGTTGCGCAGTAAAGGCTCGATGAAAAACCAGCGCATGGAACTCGACGCGGACGTGGACCTCAAGGGCAAGCTGCGCGGCCAGCCGGCACTGTTCCAGGCCAAGGCTAGCGGCGCTGGCGAACAATGGAACCTCGGCGCTCTGGATATCCGCCTCGGCGATAATCGCATCAACGGTACGGGCAGCCTGCAACAGCAGCTGACCGGCCAGATCGACATCAAGCTCGCGCGCCTGGCCCAGCTCTGGCCGCAGTTGCGTGGTCAGGTCAGCGGGCGTGTCGACGTGGCCGGCACGCTCAAGGCCCCCCAGGGCAAGCTCGACTTGCAAGGGACGCAACTGGCGTTTCAGGACAATCATCTGCAAAGCCTGAACCTGGACGCGACGCTCGACGGCGCGCAACGGGGCAAAGTCGATCTCAAGGCCAGCGGTATCCGCAGCGGCGAAACTTCCCTTGGCGTCCTGACGTTGAGCGGGCAGGGCGATATCAAGCAACAGCAACTGAAGGTCGACCTGCAAGGGCCCCAGTTGAAAACCAGCCTGGCCCTTGATGGCACGCTGGATCAGGGCAGCTGGCGTGGACGCCTGGCCAGTGGCGACCTGCGGGTCGGCGGTCAGGACTGGCGCCTGCAAGCGCCGGCGAAGCTGGAACGGCTGGCCAACGGTACGCTGAACTTCGGTGCCCACTGCTGGCGCTCCGGCCAGGCCAGCCTGTGCGGCGAAGACCAACGGCTGATGCCGGAGCCGAAGCTGCGCTATCACCTCAAGCAATTCCCCATCGAAAGCCTGGCCCAGTGGATGCCCAGGGATTTTGCCTGGCAAGGCCGGCTCAACGCCGACCTGCAACTGGACCTGCCGGCCAGCGGCCCGAATGGCCGGGTGCTGGTGGATGCCAGCGGCGGCACGTTGCGGATTCGGGATAAAGAACAGTGGCTGGACTTCCCCTACCAGACCCTGACGCTCGACAGCCGCCTGACACCCACGCGCATCGATACCGATCTGAATTTCGTCGGCGCCAGGCTCGGCGAACTGAGGGTCCAGGCGCGGATCAATCCGTTGCCAGCGAGCAAGCCGCTGAGCGGTTCGTTCCGCCTGAACGGCCTGGACCTGTCCGTCGCCCGTCCGTTCGTGCCGATGGTGGAAACCCTCACGGGTCACTTGAACGGCAGTGGCACGCTGTCCGGCGGGCTGCTCGCGCCCCAGGTCAACGGCAACCTGGTGCTCAGCGATGGCGAAGTGTCCGGCCCGGAACTGCCGGTCAGCCTCGAAGCCTTCCAACTGCGGGCGATGATCGCCGGTGAAACGGTGCGTCTGGATGGCGATTGGAAGAGTGGCAAGAGCGGGCAGGGCCGCCTGACCGGGAACATCGGCTGGGGCGAGGCGCTGACCATGGACCTGGCACTCAAGGGCTCGCAACTGCCGGTGACCGTCGAGCCCTACGCGGTGCTGGACGTGGCGCCGGACTTGAAAATCACGCTGCAGGGCGAGCGGCTGGCGATTGCCGGCAAGGTCCTGGTGCCGAAGGGCGAGATCACCATTCGCGAATTGCCGCCGTCAACCGTCAAGGTTTCGGACGACACGGTGATCGTCGGCCACCAGACCGAAGAGGGCAAGGCACCGATGGCCATGGCAATGGACATCGACGTGCTCGTCGGCCAGGAGAAGCTTGCCTTTTCGGGATTCGGGCTCACCGCCAACGTCCAGGGGCAGGTGCACATTGGCGATAACATGGACACTCGCGGCGAACTCTGGCTCAACGACGGCCGCTATCGGGCCTATGGGCAGCGGTTGACGGTGCGCCGGGCGCGCTTGTTGTTCGCCGGGCCTATCGATCAGCCGTACCTGGACATCGAAGCGATCCGCCAGACCGACGATGTGATTGCCGGCATCCGCTTGAGCGGCAGCGCCGAGCAACCCACCACGCAAATCTTCTCGGAGCCGGCCATGAGCCAGGAGCAGGCATTGTCCTACCTGGTGCTGGGCCGGCCGCTGAGTACCACCGGCGAAGACAACAACATGCTCGCCCAGGCTGCACTGGGCCTGGGCTTGATGGGCAGTTCCGGCGTGACCACCAGCCTGGCCAACAATCTGGGAATCGAGGATTTCCAACTCGACACCCAGGGCAGCGGCAACGAAACCAGCGTGGTCGCCAGCGGCAACCTGTCGGAAAAACTCAGCCTGCGCTACGGCGTCGGAGTGTTCGAACCGGCCAATACCATTGCCCTGCGCTACAAGCTGAGCAAGAAGGTCTACCTCGAAGCCGCCAGCGGCGTCGCCAGCTCGCTGGATATCTTCTACAAGCGCGATTTCTGAMNRGLKLVLLALAGLLLTVVLALSIVLGTAFGSRWALGLVPGLSVENFQGRLGGRWSADRVLWQQDTRRVALERPNFAWSPSCLLRMTLCIEQLKADAIAVQLPATADEPSSGPISLPDLDLPLAIELGDVQVGSLLFNGSEQLKGLQLVAHWTAEGLQIDSVQLQRDELSLKLSGLLQPHGDWPLDATGQLTLPAPGATPWALELKVAGDLLKTLNLTADSSGYLQGRLTGELQPLVDNLPAKVRITADGFKASADLPDTLLLNQLELTGEGDLKNGYQLLGKATLPAEKGPVALLLQGHVDANGAQVAGLDLDAGNQQTLKLTGQLDWREGLNAEAKVAWLDFPWHRLYPLIDEPQVTLRSFNGEVSYTDGQYLGNFQAALDGPAGAFSLGSPFSGNLTQIHLPELKLAAGQGKAEGHLDLQFADGIAWDTALQLSSVNPAYWLAELPGTLAGPLRSKGSMKNQRMELDADVDLKGKLRGQPALFQAKASGAGEQWNLGALDIRLGDNRINGTGSLQQQLTGQIDIKLARLAQLWPQLRGQVSGRVDVAGTLKAPQGKLDLQGTQLAFQDNHLQSLNLDATLDGAQRGKVDLKASGIRSGETSLGVLTLSGQGDIKQQQLKVDLQGPQLKTSLALDGTLDQGSWRGRLASGDLRVGGQDWRLQAPAKLERLANGTLNFGAHCWRSGQASLCGEDQRLMPEPKLRYHLKQFPIESLAQWMPRDFAWQGRLNADLQLDLPASGPNGRVLVDASGGTLRIRDKEQWLDFPYQTLTLDSRLTPTRIDTDLNFVGARLGELRVQARINPLPASKPLSGSFRLNGLDLSVARPFVPMVETLTGHLNGSGTLSGGLLAPQVNGNLVLSDGEVSGPELPVSLEAFQLRAMIAGETVRLDGDWKSGKSGQGRLTGNIGWGEALTMDLALKGSQLPVTVEPYAVLDVAPDLKITLQGERLAIAGKVLVPKGEITIRELPPSTVKVSDDTVIVGHQTEEGKAPMAMAMDIDVLVGQEKLAFSGFGLTANVQGQVHIGDNMDTRGELWLNDGRYRAYGQRLTVRRARLLFAGPIDQPYLDIEAIRQTDDVIAGIRLSGSAEQPTTQIFSEPAMSQEQALSYLVLGRPLSTTGEDNNMLAQAALGLGLMGSSGVTTSLANNLGIEDFQLDTQGSGNETSVVASGNLSEKLSLRYGVGVFEPANTIALRYKLSKKVYLEAASGVASSLDIFYKRDFNANANANANA
D1-35_02346474marRCOG1846Multiple antibiotic resistance protein MarRATGAAGCATTTCACCCCGGACGAATTCCACAATTGCCATCTCGGCATGCTCCTTGGCCGCGCCGCGGCGCTCAAGGACCGGATCATCGACACCCACATGGAGCCTGTCGGCATCACCGCCGCGCAGTTCAAGGTGTTGATCATCATGGCCCAGCACGGCATCGATACGCCGGTCGAGCTGTGCCGGTACCTGTCGCTGGACAGCGGCTCGATGACCCGCATGCTCGACCGCCTGGAGCAGAAGGGCTTTCTGGTTCGCCAGCGCTCGGCACAGGATCGGCGCCAGGTTCGTCTGGTGCTGACCGACGCCGGCCAGGCCCTCGCCGATCGCCTGCCATTCATCGGTGCCGACGCCATGAATCAACTGGCCGGCGCCATCAGCCGCGAGGAGCTGCAAACCCTCGAAGACATCCTCAAGAAAATACTGCTCGCCGCCGGTGACCCCATCACCGTCCTGCGATTGGGGGCCAAATGAMKHFTPDEFHNCHLGMLLGRAAALKDRIIDTHMEPVGITAAQFKVLIIMAQHGIDTPVELCRYLSLDSGSMTRMLDRLEQKGFLVRQRSAQDRRQVRLVLTDAGQALADRLPFIGADAMNQLAGAISREELQTLEDILKKILLAAGDPITVLRLGAKPGPT0029244_29DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIPLE_ANTIBIOTIC_RESISTANCE,PGPT0029244-marR-K03712NANA
D1-35_023471470ttgF_2Toluene efflux pump outer membrane protein TtgFATGAAACATCAAACCTTGCGTACCCGCCTGAGCCTTGTGCTGTTGGCCATGAGCCTCGCCGGTTGTGCCAGCTACAGCGGCCTGAAGACCGAGGGCGTCAGCCTGGAGGCCAAGAGCCTGCAGGCTGGGCAATCGCTGACCGGGGTCAAACTGTCGCCCGCCGCGTGGCCGAAAAGCGACTGGTGGAAAAGCCTTGGCGACCCGCAACTCGACGGCCTGATCCGTGAAGCGCTGCGCGACAGCCCGGACATGCAGATCGCCAGCGCCCGGGTGCACCAGGCCAGCGCCGCTGCCTATGCCGCGAATGCCGCGCGCCTGCCGACCCTCGACGCCAGCGGCAGTGTCAGCCGTTCGCGCCTGGCCCGTGACCAGGACCCGCAAGGGCAGGGCGGCGCCTATAGCACCCTGCGTTCGCTGAGCGTCGATTTCAATTACAACTTCGACCTCTGGGGCGGCCAACGTGCCGCCTGGGAAGCGGCCCTGGGCCAGGCCCGCTCCGCCGAGATCGATCGCCAGGCCGCGCAACTGACCCTCGCCGCCGACGTGGCCCGGGCCTACAGCGACCTGGGCCAGGCCCACATCATTTATGACCTGGCCAATGAAGACCTCAAGCGCACGCGGCAGATGCTCGACCTGGGCAAACGCCGTCTCGGTGCCGGGATCGACAGCGAATATCAGTTCCAGCAGACCGAAAGCCTCGAAGCCAGCGCCGATGCGACGCTGATCGACGCGGAAAAACGCCTGCAAAGTGCAAAGATCGCCTTGGCGGTGCTGCTGGGCAAAGGTCCCGACCGGGGCAACGACATCGCCCGGCCCAACGTGCTGCAGGCCAGCGCGGTTGCGCTGCCGTCGAATCTGCCGGCCGAGTTGCTCGGTCGCCGTCCCGACCTGGTCGCGGCGCGGTGGCGGGTCGAGGCCGCGAGCAAGAACATCGAGGCCGGCAAGACCAACTTCTACCCCAACCTCAACCTGAGCGCGGCGGCGGGGGTGCAATCGCTGCTGGGTGACGCGATGTTCGGCGCGCCCAGTCGTTTCTTCAACGTGGCGCCGACCGTGTCGTTGCCGATCTTCGATGGCGGCCGCCTGCGGGCGGACCTGGACGCCCGGGACGCCGATTACGACCTGGCGGTGGCGCAATACAACAAGAGCCTGGTCGCGGCCCTTGGCGATGTCAGCGACACCATCAACCAGCTGCGCGACATCGGTCGGCAGCTGGGCGCCCAGCAACACGCGGTGGATATCGCCCGGAACTCCTACGACACCGTGGTCCAGCGCTACGGTTCCGGCATCGGCAATTACCTGGACGTGTTGAGCATCGAGCAGCAACTGCTCCAGGCCCAGCGCCAACTGGCGACCCTCAATGCCGAGCAGATCGATCTGTCGATCCAACTGATGCAGGCCCTGGGCGGTGGTTTCGATACCCAAACCATCGCTTCGGCCACTCCGGCCGCCACCGCGCCGACTCACTGAMKHQTLRTRLSLVLLAMSLAGCASYSGLKTEGVSLEAKSLQAGQSLTGVKLSPAAWPKSDWWKSLGDPQLDGLIREALRDSPDMQIASARVHQASAAAYAANAARLPTLDASGSVSRSRLARDQDPQGQGGAYSTLRSLSVDFNYNFDLWGGQRAAWEAALGQARSAEIDRQAAQLTLAADVARAYSDLGQAHIIYDLANEDLKRTRQMLDLGKRRLGAGIDSEYQFQQTESLEASADATLIDAEKRLQSAKIALAVLLGKGPDRGNDIARPNVLQASAVALPSNLPAELLGRRPDLVAARWRVEAASKNIEAGKTNFYPNLNLSAAAGVQSLLGDAMFGAPSRFFNVAPTVSLPIFDGGRLRADLDARDADYDLAVAQYNKSLVAALGDVSDTINQLRDIGRQLGAQQHAVDIARNSYDTVVQRYGSGIGNYLDVLSIEQQLLQAQRQLATLNAEQIDLSIQLMQALGGGFDTQTIASATPAATAPTHNANANANANA
D1-35_023481197emrA_1COG1566Multidrug export protein EmrAATGGCAACTGCCGAAACTACCCAGGAAACCCAACAGGACAGCGGCAACCCGCGCAAGCGCAAGGTGTTGCTGCTGGCCCTGGCCCTGATCGTCATTCTCGCCGGCGTCGGTGTCTGGGCCTGGCATGAACTTTATGGACGCTGGAGCGAAAGCACCGACGATGCCTACGTGAACGGCAACGTGGTGGAAATCACCCCGCAAGTCAGCGGCACCGTGGTGAGCATTGGTGCCGATGACGGTGACCTGGTGCGCGAAGGCCAGGTGCTGGTGCAGTTCGACCCGAACGACGCCGAAGTTGCCTTGCAAAGTGCCCAGGCCAACCTGGCCCATACCGTGCGCCAGGTGCGTGGTTTGTACAGCAATGTCGACGGCATGAAAGCGCAGGTGCATGCGCAGGAAGCGGAAGTGCAGAAGGCTCGGGAAAACTACAACCGACGCAAGAACCTGGCGGCCGGCGGGGCGATTTCCCAGGAAGAACTGTCCCACGCCCGGGACGATCTGACCTCGGCGCAGAACGCCCTGGCTAACGCCCGGCAACAACTCATGACGACCAGCGCGCTGGTGGATGACACCGTGGTGTCGAACCATCCCGACGTACAGGCGGCGGCCGCGCAATTGCGCCAGGCTTACCTGAGCAATGCTCGCAGCACCTTGATTGCGCCGGTGACCGGTTACGTCGCCAAGCGCACCGTTCAGCTCGGGCAGCGCGTGCAGCCGGGCACGGCGCTGATGGCGGTGATCCCGCTGGACCAGTTGTGGATCGACGCCAACTTCAAGGAAACCCAGCTACGTGACATGCGCATCGGCCAGCCGGTGGACATCGAGACCGACCTTTATGGCAGCGACGTGAAGTACAGCGGCACGGTGGACAGCCTGGGCGCCGGTACCGGCAGTGCGTTTGCCTTGCTGCCAGCGCAGAACGCCACCGGTAACTGGATCAAGATCGTCCAGCGGGTGCCGGTGCGCATTCATATCAATGCCGAGGAGCTGGCCAGGCATCCACTACGGGTCGGCCTGTCGACCCAGGTCAACGTCAATCTCCACGACCAGAGCGGCCCGGTACTGGCCCAGCAGCCACCGCAAAAAGCCTCGTTCAGCACTCAGGTCTACGCCCGCCAGCTGGCCGATGCCGACGCGATGATCACTCGGCTGATTCATGAGAACAGCGCGGCGGCGAGCAAGACCGCGCAGCGTTGAMATAETTQETQQDSGNPRKRKVLLLALALIVILAGVGVWAWHELYGRWSESTDDAYVNGNVVEITPQVSGTVVSIGADDGDLVREGQVLVQFDPNDAEVALQSAQANLAHTVRQVRGLYSNVDGMKAQVHAQEAEVQKARENYNRRKNLAAGGAISQEELSHARDDLTSAQNALANARQQLMTTSALVDDTVVSNHPDVQAAAAQLRQAYLSNARSTLIAPVTGYVAKRTVQLGQRVQPGTALMAVIPLDQLWIDANFKETQLRDMRIGQPVDIETDLYGSDVKYSGTVDSLGAGTGSAFALLPAQNATGNWIKIVQRVPVRIHINAEELARHPLRVGLSTQVNVNLHDQSGPVLAQQPPQKASFSTQVYARQLADADAMITRLIHENSAAASKTAQRPGPT0013750_863DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0013750-emrB-K03543NANA
D1-35_023491530emrBMultidrug export protein EmrBATGAGCAATAACGCGTCCTTCACGCCGCCCAGCCTGTTGCTCAGCACCATCGGGTTGTCGCTGGCGACGTTCATGCAGGTGCTCGATACGACCATCGCCAACGTCGCCTTGCCGACCATTTCCGGCAACCTGGGCGTCAGTTCCGAGCAGGGCACCTGGGTCATTACCTCGTTTGCGGTGAGCAATGCGATCGCGCTGCCGCTGACCGGTTGGCTGAGCCGCCGGTTTGGCGAGGTGAAACTGTTTTTGTGGGCAACGATGCTGTTCGTCCTGGCCTCGTTCCTCTGCGGGATTTCCACGTCGATGCCCGAGCTGATCGGTTTTCGTGTGGTTCAGGGCCTGGTGGCCGGGCCTCTGTATCCGATGACCCAGACCTTGCTGATTGCCGTGTACCCGCCGGCGAGGCGCGGGATGGCCTTGGCCTTGCTGGCGATGGTCACCGTGGTGGCGCCGATCGCCGGGCCGATCCTGGGCGGCTGGATCACCGACAGCTACAGTTGGCCGTGGATTTTCTTCATCAACGTGCCGATCGGGATTTTCGCGGTGCTGGTGGTGCGTCAGCAGCTCAAGGCGCGGCCGGTGGTCACCAGTCGCCAGCCGATGGATTACGTCGGGTTGATCACCCTGATCATCGGTGTCGGGGCGTTGCAGGTGATCCTCGACAAGGGCAACGACCTGGATTGGTTCGAGTCGAACTTCATCATCGTCGGCGCGCTGATTTCGGCCGTTGCGCTGGCGGTGTTCGTGATCTGGGAAATGACCGATCGCCATCCGGTGGTCAACCTGCGGCTGTTTGCCTATCGCAACTTTCGCATCGGGACGATTGTGCTGGTAGGCGGTTATGCCGGATTCTTCGGCATCAACCTGATCCTGCCGCAGTGGTTGCAGACCCAGATGGGTTATACCGCCACCTGGGCCGGCCTGGCGGTTGCGCCCATCGGGATCCTGCCGGTGCTGATGTCACCTTTCGTTGGCAAATACGCCCACAAGTTCGACCTGCGCCTGCTGGCCGGGCTGGCGTTCCTGGCGATCGGTTTGAGTTGCTTCATGCGCGCCGGGTTTACCAACGAGGTGGATTTCCAGCACATCGCCCTGGTGCAGCTGTTCATGGGCATCGGCGTGGCGCTGTTCTTCATGCCGACCCTGAGCATCCTGATGTCGGACCTGCCGCCCCAGCAGATCGCCGACGGCGCGGGGCTGGCGACGTTCCTGCGGACCCTGGGCGGCAGTTTTGCCGCGTCGCTGACCACTTGGATCTGGATCCGCCGCGCCGACCAGCACCATGCCTACCTGAGCGAAAGCATCAGCACTTTCGAACCGGCCACGCGCGAGACGATCAACCAGCTCGGCGGGGCGAGCACGCCGGTGTACGCCCAGCTCGACCAGATCCTCACCAGCCAGGCGTACATGCTCTCCACCGTGGATTACTTCACGCTGCTGGGCTGGGCGTTCATGGGGTTGATCCTGCTGGTGTGGCTGGCGAAACCGCCGTTTGCGGCGAAGGCCGGGCCTGCCGCCAGCGGTCATTAAMSNNASFTPPSLLLSTIGLSLATFMQVLDTTIANVALPTISGNLGVSSEQGTWVITSFAVSNAIALPLTGWLSRRFGEVKLFLWATMLFVLASFLCGISTSMPELIGFRVVQGLVAGPLYPMTQTLLIAVYPPARRGMALALLAMVTVVAPIAGPILGGWITDSYSWPWIFFINVPIGIFAVLVVRQQLKARPVVTSRQPMDYVGLITLIIGVGALQVILDKGNDLDWFESNFIIVGALISAVALAVFVIWEMTDRHPVVNLRLFAYRNFRIGTIVLVGGYAGFFGINLILPQWLQTQMGYTATWAGLAVAPIGILPVLMSPFVGKYAHKFDLRLLAGLAFLAIGLSCFMRAGFTNEVDFQHIALVQLFMGIGVALFFMPTLSILMSDLPPQQIADGAGLATFLRTLGGSFAASLTTWIWIRRADQHHAYLSESISTFEPATRETINQLGGASTPVYAQLDQILTSQAYMLSTVDYFTLLGWAFMGLILLVWLAKPPFAAKAGPAASGHPGPT0029220_3500DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029220-emrB-K03446NANA
D1-35_02350762lpxH_2COG2908UDP-2,3-diacylglucosamine hydrolaseTTGCTGATTTCAGATCTGCATCTGGAAGAGGAGCGCCCGGACATCACCCGGGCGTTTCTGGATTTACTCGCCACACGCGCCCGCTCGGCGCAAGCGTTATACATTCTGGGCGACTTCTTCGAAGCCTGGATCGGCGACGATGCCATGACGCCGTTCCAGCGCTCCATCTGCCAGGCCCTGCGCGAATTGAGCGACAGCGGCACGGCAATTTTCCTGATGCACGGCAACCGCGACTTCATGCTCGGGCAGGCCTTTTGCAAAGCGGCCGGCTGCACCCTGCTCAAGGACCCGACCGTCGTGCAATTCAGCGACGAGCCGGTGCTGCTGATGCACGGCGACAGCCTGTGCACGAGGGATGTCGGCTACATGAAACTGCGGCGCTGGCTGCGCAACCCGGTCACGCTGTTCATCCTGCGCCACCTGCCCTTGGGCAGCCGCCAGAAACTGGCGCGCAAGCTGCGCAGTGAAAGCCGCACGCAGGTGAGGATGAAAGCCAACGACATCGTTGACGTCACGCCAGAAGAGGTCCCACGCGTCATGCAGCACTATGGCGTGAAAACCTTGGTCCACGGCCACACCCACCGCCCCGCCATCCACAAGCTGCAACTGGGCGAACACGCCGCCCGGCGCATCGTGCTGGGAGATTGGGACAAGCAGGGCTGGGCGTTGCAGGTGGATGAGCAGGGCTTTTCGCTGGCGCCGTTCGAGTTGGCCCCGCCGCCACAACTGCCGGCACCCGACACAATCCCCGACTACATATAGMLISDLHLEEERPDITRAFLDLLATRARSAQALYILGDFFEAWIGDDAMTPFQRSICQALRELSDSGTAIFLMHGNRDFMLGQAFCKAAGCTLLKDPTVVQFSDEPVLLMHGDSLCTRDVGYMKLRRWLRNPVTLFILRHLPLGSRQKLARKLRSESRTQVRMKANDIVDVTPEEVPRVMQHYGVKTLVHGHTHRPAIHKLQLGEHAARRIVLGDWDKQGWALQVDEQGFSLAPFELAPPPQLPAPDTIPDYIPGPT0022370_824DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LIPID_A_METABOLISM,PGPT0022370-lpxH-K03269NANA
D1-35_02351507Peptidyl-prolyl cis-trans isomerase cyp18ATGACCCAAGTCAAACTGACCACCAACCATGGCGAGATCGTCCTGGAGCTGAACGCCGAGAAGGCACCGATTACCGTTGCCAACTTCGTTGAATACGTCAAGGCCGGCCACTACGAAAACACCGTTTTCCACCGTGTCATCGGCAACTTCATGATCCAGGGCGGCGGTTTCGAACCGGGCATGAAAGAAAAGAAAGACAAGCGCCCGAGCATCCAGAACGAAGCCGACAACGGCCTTTCCAACGACAAATACACCGTTGCCATGGCCCGCACCATGGAGCCGCATTCGGCCTCCGCGCAGTTCTTCATCAACGTCGCCGACAACAGCTTCCTGAACCACAGCGGCAAGAACGTCCAGGGCTGGGGCTACGCCGTATTCGGCAAGGTCACTGCCGGTACCGATGTGGTCGACAAGATCAAAGGCGTCTCCACCACTTCCAAGGCTGGCCACCAGGACGTCCCGGCAGAAGACGTGATCATCGAGAAAGCCGAGATCATCGAGGCGTGAMTQVKLTTNHGEIVLELNAEKAPITVANFVEYVKAGHYENTVFHRVIGNFMIQGGGFEPGMKEKKDKRPSIQNEADNGLSNDKYTVAMARTMEPHSASAQFFINVADNSFLNHSGKNVQGWGYAVFGKVTAGTDVVDKIKGVSTTSKAGHQDVPAEDVIIEKAEIIEAPGPT0015111_3274DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015111-ppiB-K03768NANA
D1-35_023521698glnSCOG0008Glutamine--tRNA ligaseATGAGCAAGCCCACTGTCGACCCTACCTCGAATTCCAAGACCGGCCCGGCCGTGCCGGTCAATTTCCTGCGCCCGATCATCCAGGCGGACCTGGATTCGGGTAAGCACACGCAGATCGTCACCCGTTTTCCGCCGGAGCCCAACGGCTACCTGCACATCGGTCACGCCAAATCCATTTGCGTGAACTTCGGCCTGGCCGAGGAGTTCGGTGGCGTCACGCACCTGCGTTTCGATGACACCAACCCGGCCAAGGAAGACCAGGAATACATCGACGCGATCAAGAGCGACGTCAAGTGGCTGGGCTTCGAATGGGCCGGCGAAGTGCGCTACGCCTCGCAGTATTTCGACCAGTTGCACGACTGGGCGGTGGAACTGATCAAGTCCGGCAACGCCTACGTGTGTGACCTGACGCCGGAGCAGGCCAAGGAATATCGCGGCAGCCTGACCGAGCCGGGCAGGAACAGCCCGTTCCGTGACCGCGGCGTGGAAGAGAACCTCGACCTGTTTGCCCGCATGCGCGCCGGTGAGTTCCCGGACGGCGCCCGTGTGCTGCGCGCGAAGATCGACATGGCCTCGCCGAACATGAACCTGCGCGACCCGATCATGTACCGCATCCGTCACGCTCATCACCACCAGACCGGCGACAAATGGTGCATCTACCCGAACTATGACTTCACCCATGGCCAGTCGGACGCCATCGAAGGCATCACGCATTCGATCTGCACCCTGGAATTCGAAAGCCATCGTCCGCTGTACGAGTGGTTCCTCGAGCATCTGCCGGTGCCGGCCAACCCGCGCCAGTATGAATTCAGCCGCCTGAACCTGAACTACACGATCACCAGCAAGCGCAAGCTCAAGCAACTGGTGGACGAGAAGCACGTCAGCGGCTGGGATGACCCGCGCATGTCGACGCTGTCGGGTTTCCGCCGTCGTGGCTACACGCCAAAGTCGATCCGCAACTTCTGCGAGATGGTCGGCACCAACCGTTCCGACGGCGTGGTCGATTTCGGCATGCTGGAATTCAGCATTCGCGAGGACTTGGACCACAGCGCGCCGCGCGCCATGTGCGTGTTGCGTCCGCTCAAAGTCGTCATCACCAATTACCCGGAAGGCCAGGTCGAAAACCTCGAACTGCCGTGCCACCCGAAAGAAGACATGGGCGTGCGCGTCCTGCCGTTCGCCCGGGAAATCTATATCGACCGTGACGACTTCATGGAAGAGCCACCCAAAGGCTACAAGCGCCTGGAGCCGGCCGGCGAAGTGCGCTTGCGCGGCAGCTACGTGATCCGCGCCGACGAGGCGATCAAGGACGCCGACGGCAACATCGTCGAGCTGCGTTGCTCGTACGATCCCGACACCCTGGGCAAGAACCCGGAAGGCCGCAAGGTCAAGGGCGTGATCCACTGGGTGCCGGCCGCCGCCAGCGTCGAGTGCGAAGTGCGCCTGTACGATCGCCTGTTCCGTTCGCCGAACCCGGAGAAGGCCGAGGACAGCGCCAGTTTCCTGGACAACATCAACCCTGACTCCCTGCAAGTACTCACCGGTTGTCGTGCCGAGCCTTCGCTGGGCAACGCACAGCCGGAAGACCGTTTCCAGTTCGAGCGCGAAGGCTACTTCTGCGCGGATATCAAGGACTCGAAACCCGGTGCTCCGGTGTTCAACCGTACCGTGACCTTGCGCGACTCCTGGGGTCAGTGAMSKPTVDPTSNSKTGPAVPVNFLRPIIQADLDSGKHTQIVTRFPPEPNGYLHIGHAKSICVNFGLAEEFGGVTHLRFDDTNPAKEDQEYIDAIKSDVKWLGFEWAGEVRYASQYFDQLHDWAVELIKSGNAYVCDLTPEQAKEYRGSLTEPGRNSPFRDRGVEENLDLFARMRAGEFPDGARVLRAKIDMASPNMNLRDPIMYRIRHAHHHQTGDKWCIYPNYDFTHGQSDAIEGITHSICTLEFESHRPLYEWFLEHLPVPANPRQYEFSRLNLNYTITSKRKLKQLVDEKHVSGWDDPRMSTLSGFRRRGYTPKSIRNFCEMVGTNRSDGVVDFGMLEFSIREDLDHSAPRAMCVLRPLKVVITNYPEGQVENLELPCHPKEDMGVRVLPFAREIYIDRDDFMEEPPKGYKRLEPAGEVRLRGSYVIRADEAIKDADGNIVELRCSYDPDTLGKNPEGRKVKGVIHWVPAAASVECEVRLYDRLFRSPNPEKAEDSASFLDNINPDSLQVLTGCRAEPSLGNAQPEDRFQFEREGYFCADIKDSKPGAPVFNRTVTLRDSWGQNANANANANA
D1-35_023531383cysSCOG0215Cysteine--tRNA ligaseGTGCTTACGATCTACAACACGCTCACCAAGAGCAAAGAAGTCTTCAAGCCGCTGGATGGCAACAAGGTCCGCATGTACGTCTGCGGCATGACCGTGTACGACTATTGCCACCTCGGCCATGGCCGCAGCATGGTCGCCTTCGACCTGGTGACCCGTTGGTTGCGCTTCAGCGGTTATGACCTGACCTATGTGCGCAACATCACCGACATCGACGACAAGATCATCAATCGGGCCAACGAGAACGGTGAAGCGTTCGATGCGCTGACCGAGCGCATGATCAAGGCCATGCACGAGGACGAGGCGCGCCTCAACATCCAGAAGCCGGACCTGGAGCCGCGGGCCACCGACCACATCCCGGGCATGCTGGCGATGATCCAGACCTTGATCGACAAGGGCTATGCCTACGCACCGGGCAACGGCGATGTGTACTACCGCGTCGCCAAGTTCATGGGCTACGGCAAGCTGTCGCGCAAGAAGATCGAAGATTTGCGCATCGGCGCACGCATCGAGGTCGACGAGTCGAAAGAAGATCCGCTGGACTTCGTGCTGTGGAAAGGCTCCAAGCCGGGCGAGCCGAGCTGGGATTCACCGTGGGGCGCCGGGCGTCCGGGCTGGCACATCGAATGCTCGGTGATGTCGACCTGCTGCCTGGGCGAGACCTTCGACATTCATGGTGGTGGCAGCGACCTGGAATTCCCGCACCACGAAAACGAAATCGCCCAGAGCGAAGCGGCCACCGGCAAGACCTACGCCAATGCCTGGATGCATTGCGGCATGATCCGCATCAATGGCGAGAAGATGTCCAAGTCCTTGAACAACTTCTTCACCATCCGCGACGTGCTCGACAAGTATCACCCGGAAGTTGTGCGTTACCTGCTGGTGTCCAGCCACTACCGCAGCGCCATCAACTATTCGGAAGACAACCTCAAGGATGCCAAGGGCGCCCTGGAGCGTTTCTACCACGCACTCAAGGGCCTGCCGAACGTGGCGCCCGCCGGTGGCGAAGCGTTCGTGGCGCGGTTCACCGAAGTGATGAACGACGACTTCGGCACGCCGGAAGCCTGCGCGGTGCTGTTCGAGATGGTGCGTGAGATCAACCGCCTGCGCGAGAGCGATCTCGATGCGGCGGCGGGCCTGGCAGCGCGGCTGAAGGAACTGGCCAGCGTGTTGGGCGTGTTGCAGCTTGAAGCCGACGACTTCCTGCAAGCCGGCGCCGAGGGCCGCGTGGACGCCGCCGAGGTCGAGGCCTTGATCCAGGCGCGCCTGACCGCGCGGGCCAACAAGGACTGGGCCGAATCCGACCGCATCCGCGACCAGCTCACCGCCATGGGCGTGGTGCTCGAAGACGGCAAGGGCGGGACGACCTGGCGGTTGGCGGACTGAMLTIYNTLTKSKEVFKPLDGNKVRMYVCGMTVYDYCHLGHGRSMVAFDLVTRWLRFSGYDLTYVRNITDIDDKIINRANENGEAFDALTERMIKAMHEDEARLNIQKPDLEPRATDHIPGMLAMIQTLIDKGYAYAPGNGDVYYRVAKFMGYGKLSRKKIEDLRIGARIEVDESKEDPLDFVLWKGSKPGEPSWDSPWGAGRPGWHIECSVMSTCCLGETFDIHGGGSDLEFPHHENEIAQSEAATGKTYANAWMHCGMIRINGEKMSKSLNNFFTIRDVLDKYHPEVVRYLLVSSHYRSAINYSEDNLKDAKGALERFYHALKGLPNVAPAGGEAFVARFTEVMNDDFGTPEACAVLFEMVREINRLRESDLDAAAGLAARLKELASVLGVLQLEADDFLQAGAEGRVDAAEVEALIQARLTARANKDWAESDRIRDQLTAMGVVLEDGKGGTTWRLADPGPT0002985_5234DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002985-cysS-K01883NANA
D1-35_02354195csrA1Translational regulator CsrA1ATGCTGATACTCACCCGCAAAGTCGGTGAAAGCATAAACATTGGTGACGACATCACGATCACCATTCTGGGCGTAAGCGGCCAACAAGTCCGGATCGGCATCAACGCCCCGAAAAACGTTGCGGTGCATCGAGAAGAAATCTATCAGCGTATCCAGGCCGGCCTGACTGCTCCTGACAAGCCACAAACGCCCTGAMLILTRKVGESINIGDDITITILGVSGQQVRIGINAPKNVAVHREEIYQRIQAGLTAPDKPQTPPGPT0015065_1421DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ENVELOPE_STRESS_SIGNALLING,PGPT0015065-csrA|zfiA-K03563NANA
D1-35_02355366hypothetical proteinGTGCGTAAATTGGCTTGGGTATTGGTGGTATTGGCGCTGGCGGGATGCGGTGAAGGGCGTGACGTCTCGGCACCCAAGCCCAAGCCCGTGGCGAGCTTCACGCCGGCCGCCGCTGCCGCACCGCAGTGGGCCGTCGAGGTTCGAGGCCAGACGCCCCAGGCCGTCAGCGATCTGACCGGATGGCTGATCGAGCACAGCTTCATGTCCACTGTCGTCAGGGAAAACGGCAAGGACCGCGTCCTGGTAGGGCCGTTAAGCTCCAAGGCTGAAGCCGAAGCGAAGCAGGAGCAGATCACCGCTGCCCTGGTCCGTGCGAAGAAACGCAACATCGAGGCCTTGGTGGTGGACTTCCCGCCGGCTCAATAAMRKLAWVLVVLALAGCGEGRDVSAPKPKPVASFTPAAAAAPQWAVEVRGQTPQAVSDLTGWLIEHSFMSTVVRENGKDRVLVGPLSSKAEAEAKQEQITAALVRAKKRNIEALVVDFPPAQNANANANANA
D1-35_02356690dnsCOG2356Extracellular deoxyribonucleaseATGATTGTTCGCTGTTTAGCTTTATTGCTCGTCTTCGTTGCCACGGGTGCACAGGCTGGTGCGCCGCGCACCTTCAACGAAGCCAAGAAAGTCGCCTGGAAACTCTATGCGCCACAATCCACCGAGTTCTACTGCGGGTGCAAATACACCGGCAACCGGGTGAACCTCGCGGCATGCGGTTATGTACCGCGCAAGAACGCCAATCGCGCCGCCCGCATCGAGTGGGAGCATATTGTCCCGGCCTGGCAGATCGGTCATCAGCGCCAATGCTGGCAACAGGGCGGGCGCAAACAATGCACCCGCTACGACCCGGTCTATCAAAGGGCCGAGGCGGATCTGCATAACCTGGTGCCGAGCATTGGCGAGGTGAACGGTGATCGCAGCAACTTCAGCTTCGGCTGGTTGCCGGTGCAGAAAGGCCAGTACGGCTCATGCCTGACTCAGGTGGACTTCAAGGCCAAGAAGGTCATGCCGCGCCCGTCCATTCGGGGAATGATCGCCAGGACGTATTTCTACATGAGCAAACAATACGGTTTGCGCCTCTCCAAACAGGACCGGCGCCTGTATGAGGCCTGGGACAAGACCTACCCGGTGCAGGCCTGGGAACGCCAGCGCAACCAGAGCGTGGCGTGCGTCATGGGTCGCGGGAACGAATTCGTCGGCCCGGTGGACCTGAAGGCCTGCGGCTGAMIVRCLALLLVFVATGAQAGAPRTFNEAKKVAWKLYAPQSTEFYCGCKYTGNRVNLAACGYVPRKNANRAARIEWEHIVPAWQIGHQRQCWQQGGRKQCTRYDPVYQRAEADLHNLVPSIGEVNGDRSNFSFGWLPVQKGQYGSCLTQVDFKAKKVMPRPSIRGMIARTYFYMSKQYGLRLSKQDRRLYEAWDKTYPVQAWERQRNQSVACVMGRGNEFVGPVDLKACGNANANANANA
D1-35_02357249hypothetical proteinGTGGCAACGCCTCTCGCTGCAACTACCCCCTTAGATTCCTACACACGACTCGGCCTGCGCGTCTCGAAAATCATCAATTCGCCCACCGCGCAAAAGGCCAAGGCCGCGCTGATCTTCCGCCTGCCCGACGAGCCGATCGACGAGTGGGAACGCCTGCTCGAAGAAATCGACGAGAACGACAACGTCACCCTCGCTTATCGCGACGATGGCGGTGTGCAGGTTTTCTGGGTTGTGCCGAAGGAAGATTGAMATPLAATTPLDSYTRLGLRVSKIINSPTAQKAKAALIFRLPDEPIDEWERLLEEIDENDNVTLAYRDDGGVQVFWVVPKEDNANANANANA
D1-35_023581089ansB_2Glutaminase-asparaginaseATGACATCTGCTTTCAAGACTCTTGTTCCGGGCGCCTTGGCCCTTCTGCTCCTGCTGCCCGGCGCGCTCCAGGCAAAAGAAACCCAAACCGAGCAAAAGCTCGCCAACGTCGTCATCCTCGCCACCGGCGGCACCATCGCCGGCGCGGGCGCCAGCTCGGCCAACAGCGCCACTTACCAGGCGGCGAAGGTGGGCATCGAACAACTGATCGCCGGCGTGCCCGAGCTCAGCCGACTGGCCAATGTGCGTGGCGAACAGGTCATGCAAATCGCCTCGGAAAGCATCACCAACGACAATCTGCTGCAGCTGGGCCGGCGCGTCGCCGAGCTCGCCGACAGCAATGACGTCGATGGCATTGTCATCACCCATGGCACCGACACGCTGGAAGAAACCGCGTACTTCCTCAACCTGGTGGAAAAGACCGAAAAACCGATCATCGTCGTCGGCTCGATGCGTCCCGGCACCGCGATGTCGGCCGATGGCATGCTCAATCTCTACAATGCCGTGGCCGTGGCCAGCAGCAAGGAAGCACGGGGCAAGGGCGTGCTGGTGACCATGAACGATGAAATCCAGTCCGGTCGCGATGTCAGCAAGATGATCAACATCAAGACTGAAGCCTTCAAGAGCCCATGGGGCCCGCTGGGCATGGTAGTGGAAGGCAAATCCTACTGGTTCCGCCTGCCGGCCAAGCGTCACACCCTGGACTCGGAATTCGACATCAAGACCATCAAGAGCCTGCCGGACGTGGAAATCGCCTACTCCTACGGCAACGTCAGCGACACGGCTTACAAGGCCCTCGCCCAGTCCGGCGCCAAGGCGATCATTCATGCCGGCACTGGCAACGGTTCGGTGTCGTCGCGGGTTGTGCCTTCGTTGCAGGCCTTGCGCAAGGAAGGCGTGCAGATCATTCGTTCGTCCCACGCCAACGCCGGCGGTTTCGTGCTGCGCAACGCCGAACAGCCTGACGATAAATACGACTGGGTCGTGGCCCACGACTTGAATCCGCAGAAGGCGCGCATCCTGGCCATGGTCGCCCTGACCAAGACTCAGGACAGCAAGGAATTGCAGCGGATATTCTGGGAATACTGAMTSAFKTLVPGALALLLLLPGALQAKETQTEQKLANVVILATGGTIAGAGASSANSATYQAAKVGIEQLIAGVPELSRLANVRGEQVMQIASESITNDNLLQLGRRVAELADSNDVDGIVITHGTDTLEETAYFLNLVEKTEKPIIVVGSMRPGTAMSADGMLNLYNAVAVASSKEARGKGVLVTMNDEIQSGRDVSKMINIKTEAFKSPWGPLGMVVEGKSYWFRLPAKRHTLDSEFDIKTIKSLPDVEIAYSYGNVSDTAYKALAQSGAKAIIHAGTGNGSVSSRVVPSLQALRKEGVQIIRSSHANAGGFVLRNAEQPDDKYDWVVAHDLNPQKARILAMVALTKTQDSKELQRIFWEYPGPT0000700_66DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0000700-aspQ|asnA|asnB-K05597NANA
D1-35_02359447hypothetical proteinATGTCCTTTTCCATCGGCTTTCCCAATGCCGCGACCATCACCATCGGTGGTAGATCCATCTCCACACTGAATGCCCTGAGGGAGGCGAGCGCCGACGCGGCTGATGAGGCGCTTGGCGAAACGCAGGAAACCGGCACGGTCCGTGCGAACCTGGCGACCGAAGCCGAGGGCAAGACCGAGAAAAGCAGCAGTACGCAAAGTATCGCTATGCAAGTGCTGCTCAAGCGAATGCAGGAACTCCAGCAGCAATTGCGGGAGCAGCAGCAACAACTTGCCGCTGCACAGACGCGTGCCTATCCAACGCCCGAAGCCAAGACGACCGCTATCATGGCTATCCAAGGGCAAATCGCCGATACCACCGGCGCGCTGCAACAGGTCACCGGCAACCTGATCAAGGAACTGGCCAAGGATTCGGGTTCGGGGGCGCTGGTGAATACCACCGCTTGAMSFSIGFPNAATITIGGRSISTLNALREASADAADEALGETQETGTVRANLATEAEGKTEKSSSTQSIAMQVLLKRMQELQQQLREQQQQLAAAQTRAYPTPEAKTTAIMAIQGQIADTTGALQQVTGNLIKELAKDSGSGALVNTTANANANANANA
D1-35_02360960rbsBCOG1879Ribose import binding protein RbsBATGAAGCTGCCATTCGCTGGACGCCTTCTCGCCGTCGCCATGCTCGCGGCCGCATCCGCAGCGCTGCCATTCTCCTCGGCGCTCGCCCAGACCACCGAAAAACCCAAGGTCGCCCTGGTCATGAAATCCCTGGCCAACGAATTCTTCCTGACCATGGAAGATGGCGCCAAGGCTTATCAGAAGGAACACTCCGCCGAGTTCGACCTGATCTCCAACGGGATCAAGGATGAAACCGACACCGCCAACCAGATTCGCATCGTCGAGCAGATGATCGTGTCCAAGGTCGATGCGCTGATCATCGCGCCGGCCGACTCCAAGGCTATGGTGCCGGTGATCAAGAAAGCCGTGGATGCCGGCATCACGGTGATCAACATCGATAACCAGCTCGATCCGGCCGTGGTCAAGAGCAAGAACATCAACGTGCCGTTCGTAGGTCCGGACAACCGCAAGGGCGCCCGCCTGGTAGGTGAATACCTGGCCAAGCAGCTCAAGGCCGGTGACGAGGTCGGCATCATCGAAGGCGTGTCGACCACCACCAACGCCCAGGCGCGCACCGCAGGCTTCAAGGATGCGATGGAGGCGGCGCAGATCAAAGTCGTCTCCCTGCAATCCGGTGACTGGGAAATCAACAAGGGCAACCAGGTTGCCGCGTCGATGCTCAGCGAATATCCGAACATCAAGGCATTGCTGGCCGGCAACGACAGCATGGCGGTCGGTGCGGTCTCGGCCGTGCGCGCCGCTGGCAAGGCGGGCAAGGTGCAAGTGGTCGGCTACGACAACATCAACGCCATCAAGCCGATGCTCAAGGACGGTCGCGTCCTGGCGACAGCCGACCAGTTCGCTGCCAGGCAGGCAGTGTTCGGCATCGAAACCGCGCTGAAGATGCTCAAGGGCGAAAAAGTCGACAGCGGCACCAACGGCGTCATCGAAACTCCGGTCGAGCTGGTGACCAAGCCGTAAMKLPFAGRLLAVAMLAAASAALPFSSALAQTTEKPKVALVMKSLANEFFLTMEDGAKAYQKEHSAEFDLISNGIKDETDTANQIRIVEQMIVSKVDALIIAPADSKAMVPVIKKAVDAGITVINIDNQLDPAVVKSKNINVPFVGPDNRKGARLVGEYLAKQLKAGDEVGIIEGVSTTTNAQARTAGFKDAMEAAQIKVVSLQSGDWEINKGNQVAASMLSEYPNIKALLAGNDSMAVGAVSAVRAAGKAGKVQVVGYDNINAIKPMLKDGRVLATADQFAARQAVFGIETALKMLKGEKVDSGTNGVIETPVELVTKPPGPT0015740_4107DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0015740-rbsB-K10439NANA
D1-35_023611554araG_2COG1129Arabinose import ATP-binding protein AraGATGTCCGTTCGTGATCCGAACGCTGTCCTTTGCGTCAGCGGTATCGGCAAGACCTATGCGCAGCCGGTACTGAGCGATATCACCCTGACGTTGATGCGCGGTGAAGTGCTGGCGCTGACCGGCGAAAATGGCGCCGGCAAAAGTACCTTGTCCAAGATCATCGGCGGGCTGGTCACGCCGACAACCGGGCAGATGCAATTCCAGGGGCAGGATTACCGTCCCGGCAGCCGGACCCAGGCTGAATCGTTGGGCGTGCGCATGGTGATGCAGGAGCTCAACCTGCTGCCGACCCTTTCCGTGGCTGAAAACCTGTTCCTCGACAACCTGCCCAGCCACGCTGGCTGGATCAGCCGCAAGCAATTGCGCAAGGCGGCAGTCGAGGCCATGGCCCAGGTGGGGCTGGATGCCATCGATCCTGACACGCTGGTCGGTGAGCTGGGGATCGGTCACCAACAGATGGTCGAGATCGCCCGCAACCTGATCGGCGATTGCCATGTGCTGATCCTCGACGAACCGACCGCCATGCTGACGGCCCGTGAAGTCGAGATGCTTTTCGAACAGATTACCCGTCTGCAAGCCCGCGGCGTGTCGATCATCTACATTTCCCATCGCCTCGAAGAACTGGCGCGGGTGGCCCAGCGCATTGCGGTGTTGCGCGACGGCAACCTGGTCTGCGTCGAGCCGATGGCCAACTACAACAGCGAGCAACTGGTGACGCTGATGGTCGGTCGCGAGCTGGGCGAGCACATCGACCTGGGCCCGCGCCAGATCGGCGCACCGGCACTGACGGTCAAGGGCCTGAGCCGTTCCGACAAGGTTCGCGATGTGTCCTTTGAAGTGCGCAGTGGCGAAATCTTCGGTATTTCCGGCCTGATCGGGGCGGGGCGCACCGAGCTGCTGCGGCTGATCTTCGGCGCCGATGCGGCCGACAGCGGCACGGTGGCGCTGGGTTCACCGGCGCAGGTGGTGAGCATTCGCTCGCCGTCCGACGCGGTAGCTCATGGCATCGCCTTGATTACCGAGGATCGCAAGGGCGAAGGCTTGCTGCTGACCCAATCCATCGCGGCCAATATTGCCTTGGGCAACATGCCGGAGATTTCCAGTGGCGGTTTCGTCAACGGCAGCGAGGAACTCTCGCTGGCGCAGCGGCAGATCGATGCCATGCGCATCCGCAGCTCCAGCCCGACGCAGTTGGTGTCGGAGCTGTCCGGCGGTAACCAGCAGAAGGTCGTGATCGGCCGCTGGCTCGAACGCGATTGCTCGGTATTGCTGTTCGACGAGCCGACCCGGGGCATCGACGTCGGCGCCAAATTCGACATTTATGCGCTGCTCGGTGAGTTGACTCGCCAGGGCAAGGCGCTGGTCGTGGTGTCCAGTGACCTGCGGGAACTGATGCTGATCTGCGACCGGATCGGCGTGCTGTCCGCCGGGCGCCTGATCGACACCTTCGAGCGCGACAGCTGGACCCAGGATGACTTGCTTGCCGCCGCGTTCGCCGGCTACCAGAAACGTGATGCGTTGCTCAACGAAGCAGCGCCTAGGGAACTCTCATGAMSVRDPNAVLCVSGIGKTYAQPVLSDITLTLMRGEVLALTGENGAGKSTLSKIIGGLVTPTTGQMQFQGQDYRPGSRTQAESLGVRMVMQELNLLPTLSVAENLFLDNLPSHAGWISRKQLRKAAVEAMAQVGLDAIDPDTLVGELGIGHQQMVEIARNLIGDCHVLILDEPTAMLTAREVEMLFEQITRLQARGVSIIYISHRLEELARVAQRIAVLRDGNLVCVEPMANYNSEQLVTLMVGRELGEHIDLGPRQIGAPALTVKGLSRSDKVRDVSFEVRSGEIFGISGLIGAGRTELLRLIFGADAADSGTVALGSPAQVVSIRSPSDAVAHGIALITEDRKGEGLLLTQSIAANIALGNMPEISSGGFVNGSEELSLAQRQIDAMRIRSSSPTQLVSELSGGNQQKVVIGRWLERDCSVLLFDEPTRGIDVGAKFDIYALLGELTRQGKALVVVSSDLRELMLICDRIGVLSAGRLIDTFERDSWTQDDLLAAAFAGYQKRDALLNEAAPRELSPGPT0016600_1053DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0016600-rbsA-K10441NANA
D1-35_02362978rbsC_1COG1172Ribose import permease protein RbsCATGAAAACCGCTCCTGCCGTCGGCAAATCGAATGGCAACTTTTATGGCCTTGGCACCTACCTGGGCCTGGCCGGCGCCTTGCTGGCCATGGTCGCGCTGTTCTCGGTCCTGAGCAGCCACTTTCTTTCCTATGACACCTTCAGCACCCTTGCCAACCAGATTCCGGATTTGATGGTACTGGCGGTCGGCATGACGTTCATCCTGATCATCGGCGGCATCGACCTGTCGGTGGGCTCGGTGCTGGCGCTGGCTGCCTCGACGGTCAGCGTGGCGGTGCTCGGCTGGGGCTGGAGCGTCTGGCCGTCGGCCTTGCTCGGCATGGCCGTGGCGGCGCTGGCCGGGACGGTGACCGGTTCGATTACCGTAGCGTGGCGCATCCCGTCGTTCATCGTCTCGCTGGGCGTGCTGGAAATGGCCCGTGGCCTGGCGTACCAGATGACCGGCTCGCGGACCGCCTATATCGGCGACTCCTTCGCCTGGCTGTCCAACCCGATCGCCTTCGGTATTTCCCCTTCGTTCATCATTGCCTTGCTGGTGATTTTCATTGCCCAGGCCGTGCTGACCCGTACCGTGTTCGGTCGCTACCTGATCGGCATCGGCACCAACGAAGAGGCTGTGCGCCTGGCCGGCATCAATCCCAAACCCTACAAGATCCTGGTGTTCAGCCTCATGGGGCTGCTGGCCGGTGTCGCCGCGCTGTTCCAGATTTCGCGCCTGGAGGCGGCAGATCCCAACGCCGGTTCAGGGCTTGAGCTGCAAGTCATCGCCGCGGTGGTCATCGGCGGTACGAGCCTGATGGGCGGGCGCGGCTCGGTCATCAGTACCTTCTTCGGCGTGCTGATCATTTCGGTGCTGGCGGCGGGCCTGGCCCAGATCGGCGCGACCGAGCCGACCAAAAGGATCATTACCGGTGCGGTGATCGTGGTGGCGGTGGTGCTCGATACGTACCGCAGCCAGCGCGCCAGTCGGCGGGCTTGAMKTAPAVGKSNGNFYGLGTYLGLAGALLAMVALFSVLSSHFLSYDTFSTLANQIPDLMVLAVGMTFILIIGGIDLSVGSVLALAASTVSVAVLGWGWSVWPSALLGMAVAALAGTVTGSITVAWRIPSFIVSLGVLEMARGLAYQMTGSRTAYIGDSFAWLSNPIAFGISPSFIIALLVIFIAQAVLTRTVFGRYLIGIGTNEEAVRLAGINPKPYKILVFSLMGLLAGVAALFQISRLEAADPNAGSGLELQVIAAVVIGGTSLMGGRGSVISTFFGVLIISVLAAGLAQIGATEPTKRIITGAVIVVAVVLDTYRSQRASRRAPGPT0016590_4241DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0016590-rbsC-K10440NANA
D1-35_023631020purRCOG1609HTH-type transcriptional repressor PurRATGGCAACGATCAAGGATGTGGCGGCGCTCGCGGGGATCTCCTACACGACGGTGTCCCACGTGGTGAACAAGACGCGACCGGTCAGTGACGAGGTGCGACGCAAAGTCGAGGCGGCCATCGAGCGATTGGACTACGTGCCCAGCGCGGTGGCGCGTTCACTCAAGGCCAAGACCACAGCGACTATCGGCCTGCTGGTGCCCAACAGCCTCAACCCGTACTTCGCCGAACTGGCCCGTGGGATCGAGGATTACTGCGAGCGCAATGGCTATTGCGTGATCCTGTGCAATTCCGACGACAACCCGGACAAGCAGCGCAGTTACCTGCGGGTGCTGTTGGAAAAACGCATCGACGGCTTGATCGTGGCGTCGGCCGGCGGCGATGTCGGCCTGGCCGAGGGCTTGGCCAACGTGCGCACGCCCATGGTGATCGTCGACCGCGGGCTCGATGGGGTGGACGCCGACCTGGTGCGTATCGACCACGAATATGGCGCGTACCTGGCGACCCGGCACCTGCTGGAGCTGGGGCACCGCGACATTGCCTTTATCGGTGGGCCGGCGGACACCAGCGTGGCGCAGATGCGCCTGGCGGGTTACTGCCGTGCGCTGAAAGAGGCGGGGATCGAATTGCCCGTAGAGCGCATGCTCGAAAGCGATTTCACCAGTACCGGTGGCTATCGCGCGGCGGCGCAACTGCTTGAGCAGCAGCCGCCCAGCGCGATCTTCGCCGCCAACGATATGATCGGCATCGGGGCGCTGCGCGCCGCCGCCGAACGCAACGTGCGGGTGCCCGGCGAGCTGTCGATCATCGGCTTCGACGACATCCAGATGAGCCGTTACGTCTACCCGGCGCTGACCACGGTGGGGCAGTCGATCCTGCAGCTCGGCGAGATGGCGGCCGAAGTGCTGCTACGCCGGATCGCCACGCCGACGCTTGCCACCGACCAGCGGATCGTGACGCCCAGCATTGTCTTGCGAGAATCGACTGCACCGCTGTCCGGTACATTCGCCCAATACCGCTGAMATIKDVAALAGISYTTVSHVVNKTRPVSDEVRRKVEAAIERLDYVPSAVARSLKAKTTATIGLLVPNSLNPYFAELARGIEDYCERNGYCVILCNSDDNPDKQRSYLRVLLEKRIDGLIVASAGGDVGLAEGLANVRTPMVIVDRGLDGVDADLVRIDHEYGAYLATRHLLELGHRDIAFIGGPADTSVAQMRLAGYCRALKEAGIELPVERMLESDFTSTGGYRAAAQLLEQQPPSAIFAANDMIGIGALRAAAERNVRVPGELSIIGFDDIQMSRYVYPALTTVGQSILQLGEMAAEVLLRRIATPTLATDQRIVTPSIVLRESTAPLSGTFAQYRPGPT0017992_9192DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-35_02364915rbsKCOG0524RibokinaseATGCCAGCAAAAGTAGTGGTAATAGGCAGCCTGAACATGGACCTGGTGACGCGTGCGCCACGTCTGCCCCGTGGCGGTGAAACGCTGATCGGGGAATCGTTTTCGACCATCCCCGGCGGCAAGGGCGCCAACCAGGCGGTGGCTGCCGCGCGCCTCGGGGCGCAAGTGTCCATGGTCGGTTGCGTCGGCGGTGACGCCTACGGTCAGCAATTGCGCGGTGCGCTGGTGGCCGAAGGCATTGATTGCCAGGCCGTCAGCGTTGTCGAGGGTTCCAGCGGCGTGGCGCTGATCGTGGTCGATGACAACAGCCAGAATGCGATCGTGATCGTCGCCGGCGCCAACGGTGAGCTGACGCCGGCTGTGCTCGACAGTTTCGACGCGGTGCTGCAAAGCGCCGAGGTCATCATCTGCCAGCTTGAAGTGCCGGATGCCACCGTCGGCCATGCACTCAAGCGTGGTCGTGAACTCGGCAAGACCGTCATCCTCAATCCGGCGCCCGCTTCTCGGGCATTGCCCGCCGACTGGTACGCCTGCGTCGATTACCTGATTCCCAACGAAAGTGAAGCGGCGATCCTCAGCGGCCTGGCGGTGGAGTCCCTGGAAAACGCCGAAGCCGCCGCGACCCAGTTGATCGCCGCCGGTGCCGGCAAGGTGATCGTGACCCTGGGGGCCCAAGGGCTGATGTTCGCCAACGGTTCGAGCTTCGAACATTTCCCGGCGCCGCGGGTCAAGGCAGTGGACACCACGGCAGCGGGCGACACGTTTGTCGGCGGGTTTGCCGCGGCCCTGGCCAGCGGCAAGAATGAGGTCGAGGCTATTCGTTTCGGCCAGGTCGCCGCTGCACTGTCGGTCACCCGCGCGGGCGCTCAGCCTTCCATTCCAACCCTGCAGGAAGTACAGGCGTTCGAAGCATGAMPAKVVVIGSLNMDLVTRAPRLPRGGETLIGESFSTIPGGKGANQAVAAARLGAQVSMVGCVGGDAYGQQLRGALVAEGIDCQAVSVVEGSSGVALIVVDDNSQNAIVIVAGANGELTPAVLDSFDAVLQSAEVIICQLEVPDATVGHALKRGRELGKTVILNPAPASRALPADWYACVDYLIPNESEAAILSGLAVESLENAEAAATQLIAAGAGKVIVTLGAQGLMFANGSSFEHFPAPRVKAVDTTAAGDTFVGGFAAALASGKNEVEAIRFGQVAAALSVTRAGAQPSIPTLQEVQAFEAPGPT0017405_3123DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017405-rbsK-K00852NANA
D1-35_02365405rbsDCOG1869D-ribose pyranaseATGAAAAAAACTCCTCTGTTGAACATCGCCCTGTCGCGATTGATCGCCTCCCTCGGTCATGGCGACAAAGTGGTCATCGGTGACGCCGGCCTGCCGGTGCCGCCCCACGTCGAGTTGATCGACCTGGCGCTGACCCATGGGGTTCCGGATTTCGTCAGTACCTTGAAAGTGGTGCTCAGCGAGATGCAGGTCGAGCGCCATGTGTTGGCTCAGGAAATCCTCGATAAACAACCGTCGGCCCTGGCCACGTTGCAGGCGCTGCATGCCGAAGGCGCGCTGGGTACGCGGGAGCTGGTCAGCCACGAGCAATTCAAGACGCTCAGCCGAGAGGCGAGGGCAATCATTCGCACAGGAGAATGTTCTCCATACTGCAACGTGGTGCTGATCGCCGGCGTCACGTTCTAGMKKTPLLNIALSRLIASLGHGDKVVIGDAGLPVPPHVELIDLALTHGVPDFVSTLKVVLSEMQVERHVLAQEILDKQPSALATLQALHAEGALGTRELVSHEQFKTLSREARAIIRTGECSPYCNVVLIAGVTFPGPT0016595_512DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0016595-rbsD-K06726NANA
D1-35_023661029rihACOG1957Pyrimidine-specific ribonucleoside hydrolase RihAATGCACCGCTATGCTCAGAAAATGCATCAACTGTTGCGGAGTCTGCTGCTTTTGTCATTGCTCACGGCTACAAACGCCCAGGCGGCGGAAAAAATCGACCTGATCATCGACACCGATCCAGGCGCCGATGACGTGGTTGCGTTGTTGTTCGCGCTGGCATCCCCCGAAGAGCTGCATATTCGGGCGTTGACCACCGTCGCCGGCAACGTGCGCCTGGACAAGACATCCCGCAACGCGCGCCTGGCTCGCGAGTGGGCCGGGCGTGAAGAGGTTCCGGTGTACGCCGGTGCCCCGAAGCCGTTGATGCGCACGCCGATCTACGCCGAAAACATCCATGGCAAGGAAGGTTTGTCCGGTGTCGAGGTGCATGAGCCGAAGAAAGGATTGGCCGAGGGCAATGCCGTCAGCTACCTGATCGACACGCTCAAGGCCGCCAAGCCACACAGCATCACCATTGCGATGCTGGGCCCGCAGACCAACCTGGCCCTGGCGCTGGTCCAGGAGCCCGACATCGTCCAGGGCATCAAGGAAGTGGTGATCATGGGGGGCGCGCATTTCAACGGCGGCAATATCACGCCGGTGGCGGAGTTCAACCTGTACGCCGATCCCCAGGCGGCAGAGATAGTCGCCAAAAGCGGGCTGAAGCTGACGTATCTGCCACTGGACGTGACCCACAAGATCCTCACCAGCGAGGCACGCCTCAAGCAGATCGCCGCGCTGAACAACAACGCCAGCAAGCTGGTCGGCAATATTCTCAATGAGTACGTCAAGGGCGATATGGAGCACTACGGCATGACCGGCGGCCCGGTGCATGATGCGACCGTGGTCGCCTATCTGCTCAAGCCGCAGTTGTTTACCGGGCGTTCGGTCAATCTGGTGGTGGACAGTCGTGAAGGCCCGACGTTCGGGCAGACGGTCGTCGATTGGTACGACGGCCTCAAGGCGCCCAAGAATGCCTTCTGGGTGAAGGACGGCGATGCGCAGGGGTTCTTCGATCTGTTGACCGAGCGGCTGGCCCGCCTCAAGTAGMHRYAQKMHQLLRSLLLLSLLTATNAQAAEKIDLIIDTDPGADDVVALLFALASPEELHIRALTTVAGNVRLDKTSRNARLAREWAGREEVPVYAGAPKPLMRTPIYAENIHGKEGLSGVEVHEPKKGLAEGNAVSYLIDTLKAAKPHSITIAMLGPQTNLALALVQEPDIVQGIKEVVIMGGAHFNGGNITPVAEFNLYADPQAAEIVAKSGLKLTYLPLDVTHKILTSEARLKQIAALNNNASKLVGNILNEYVKGDMEHYGMTGGPVHDATVVAYLLKPQLFTGRSVNLVVDSREGPTFGQTVVDWYDGLKAPKNAFWVKDGDAQGFFDLLTERLARLKPGPT0013465_402DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013465-iunH-K01239NANA
D1-35_02367198hypothetical proteinATGAGCACCGTCAGCATCGAAGCCACCATCAATGCCAAATGGGCCCAGGGCCACAGCTCATACAGCCCGGGCAGCCCTGAGGAACTGGCAATCATCGGCATCGAGTTGTTGGTGAAAGAGCTCGGGACGCAAGGCGCTCAGAACTTCATCCAGCAGGCGTTCGAACGCTACCCGAGCATTATCGAGACGGTTGACTAGMSTVSIEATINAKWAQGHSSYSPGSPEELAIIGIELLVKELGTQGAQNFIQQAFERYPSIIETVDNANANANANA
D1-35_02368306hypothetical proteinATGCAGATCGACCTGAACAAACCAGATGGACTTACCCTCGACTCGGTTCGCCAATTGCTGGCTTCTGCCAGTGATGACGAGCATACCCAACTGCGAGTGACCAAGGACGGCATTGCCTATCTGTCTTCGGGCATCGTGGGTGGTGCTGAAATCGATGGCCTGCGGTTCCGGCTCGAGACATGGGCGAAAGGGTCAGGCTACGTTGGCCGGGTCGCGGCAAGTGACGAGGTCTGGGTCATGCAGATCTATAACGCGCTGAAGGACAACTGGCCGAACCCACCCTTCGATTACATCGATATCTATTGAMQIDLNKPDGLTLDSVRQLLASASDDEHTQLRVTKDGIAYLSSGIVGGAEIDGLRFRLETWAKGSGYVGRVAASDEVWVMQIYNALKDNWPNPPFDYIDIYNANANANANA
D1-35_02369315hypothetical proteinATGCCTTGGAAGCTCGTGTCATTGAATATTCTGTTGGCCGCCACGTTCTTGAGCGGATGCAGTAGCACGTCGGAGTCGACGCCTGATCCCGTGGCAGCCGAGGCCGGTCATACCCGCTGCGATGCCAAGGCCGCCGAGTTTGCCGTCGGCAAGCAGGCTTCGCCGCAGTTGCTTGAGCAAGCGCGCGCTCGATCCGGCGCGCAGAATGCCCGGATTCTCAAACCCAACGACATGATCACGCTTGAGTACCGCTCCGATCGCCTCAACCTCAACACCGATGCCAAGCTGGTGGTCAATCGGGTGAGCTGCGGCTGAMPWKLVSLNILLAATFLSGCSSTSESTPDPVAAEAGHTRCDAKAAEFAVGKQASPQLLEQARARSGAQNARILKPNDMITLEYRSDRLNLNTDAKLVVNRVSCGNANANANANA
D1-35_02370213capB_2Cold shock protein CapBATGTCTAATCGCCAAACCGGCACCGTTAAATGGTTCAACGATGAAAAAGGCTTCGGCTTCATCACTCCTCAAGGTGGCGGTGACGACCTGTTCGTACACTTCAAAGCTATCGAAAGCGACGGTTTCAAAAGCCTGAAAGAAGGCCAGACCGTTTCCTTCGTAGCTGAGAAAGGCCAAAAGGGTATGCAAGCTGCACAAGTTCGCCCAGAGTAAMSNRQTGTVKWFNDEKGFGFITPQGGGDDLFVHFKAIESDGFKSLKEGQTVSFVAEKGQKGMQAAQVRPEPGPT0014675_1803DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
D1-35_02371303hypothetical proteinATGCGTCTGAACACCCTATTGGCAGTAGTCGCCCCCCTCGCCCTGCTGCTTCCGCTGAGTGCCCACGCCGAATGGCCCAAGGGCGAGCGTGAGAAATACATGGCGCAGTGCACTCAAGCGGCGACCCCGCAGATTGGCGCAGCGGCGGCCAAGACCCACTGCGCTTGTGGCGCGGACGCGATCAAATCCTACCCGGCGAGCGATATCCAGGCGCTGATGGACAATAAGGCCACCCCTGAACTGCAGCAGAAAGCGCTCGGTCAGATCGCCAAATGCAAGGCCAATCCACCCGCAAAAAAATGAMRLNTLLAVVAPLALLLPLSAHAEWPKGEREKYMAQCTQAATPQIGAAAAKTHCACGADAIKSYPASDIQALMDNKATPELQQKALGQIAKCKANPPAKKNANANANANA
D1-35_023721923thrSCOG0441Threonine--tRNA ligaseATGCCAACTATTACTCTTCCCGACGGCAGTCAACGTTCATTCGACCACCCGGTTTCCGTAGCCGAGGTCGCCGCATCCATCGGCGCGGGCCTGGCCAAGGCCACCCTGGCCGGCAAGGTCGACGGCAAGCTGGTCGACGCCAGCGATGTCATCGACAGCGATGCCACGCTGCAAATCATCACGCCCAAGGACGAAGAGGGGCTGGAGATCATTCGCCACTCTTGCGCGCACCTGGTTGGCCATGCGGTCAAGCAGCTGTATCCGAGCGCGAAAATGGTCATCGGTCCGGTCATCGACGAAGGCTTTTATTACGACATCGCCTTCGAGCGTCCTTTTACCCCGGACGACATGGCCGCCATCGAACAGCGCATGCAGCAGCTGATCGAGAAAGACTACGACGTCATCAAGAAGGTCACCCCGCGCGCCGAAGTCATCGAAGTCTTCAAGGCCCGTGGCGAGGACTACAAGCTGCGTCTGGTGGAAGACATGCCGGACGAGCAGGCCATGGGCCTGTACTACCACGAAGAATACGTCGACATGTGCCGCGGCCCGCACGTGCCGAACACCCGTTTCCTGAAGTCCTTCAAGCTGACCAAGCTGTCCGGCGCCTACTGGCGTGGCGATGCGAAGAACGAACAGTTGCAGCGCGTCTACGGCACCGCCTGGGCCGACAAGAAGCAGCTGGCGGCCTACATCCAGCGCATCGAGGAAGCGGAAAAACGCGACCACCGCAAGATCGGCAAGCGCCTCGGCCTGTTCCACACCCAGGAAGAATCCCCGGGCATGGTGTTCTGGCATCCGAATGGCTGGACGCTGTATCAGGTGCTTGAGCAATACATGCGCCAGGTCCAGCGCGAAAACGGCTACCTGGAGATCAAGACGCCGCAAGTGGTTGACCGCAGCCTGTGGGAGAAATCCGGGCACTGGGCCAACTACGCCGACAACATGTTCACCACCCAGTCGGAAAACCGCGACTACGCCATCAAGCCGATGAACTGCCCGTGCCACGTGCAGGTGTTCAACCAGGGTCTGAAAAGCTACCGTGAGTTGCCGATGCGCCTGGCCGAGTTCGGTGCCTGCCACCGCAACGAGCCATCGGGTGCGCTGCACGGCATCATGCGCGTGCGGGCCTTTACCCAGGACGACGCCCACATCTTCTGCACCGAAGAGCAGATGCAGGCCGAATCCGCCGCGTTCATCAAGCTGACCATGGACGTCTACCGGGACTTCGGCTTCACCGAAGTCGAGATGAAGCTGTCCACTCGTCCGGAAAAACGCGTCGGCTCCGACGAACTGTGGGATCGCGCCGAAGCAGCCCTGGCCGCTGCGCTCGACAGCGCGGGCCTTGCGTACGATCTGCAGCCGGGCGAGGGCGCTTTCTACGGTCCGAAGATCGAATTCTCGCTGAAAGATTGCCTTGGTCGCGTCTGGCAGTGTGGTACCCTGCAGCTCGATTTTAACCTGCCGATCCGTCTGGGCGCTGAATATGTGTCCGAAGACAACAGCCGCAAGCACCCGGTCATGCTTCACCGCGCGATCCTCGGTTCCTTCGAGCGTTTCGTCGGTATCCTGATCGAACACTACGAGGGTGCGTTCCCCGCGTGGCTGGCGCCGACCCAGGCAGTGATCATGAATATCACTGATAAACAGGCAGATTTTGCCGCTGAAGTCGAAAAAACTCTCAACCAAAGCGGATTTCGTGCCAAGTCCGACTTGAGAAATGAAAAGATCGGCTTTAAAATCCGCGAGCATACTTTGCTCAAGGTTCCCTTTCTCTTGGTTGTTGGAGATCGGGAGGTCGAGATGCAGACTGTCGCTGTGCGTACTCGTGAAGGTGCTGACCTGGGCTCGATGCCCGTCGCCGAATTCGCTGAGTTTCTCGCGCAAGCGGTTTCCCGGCGTGGTCGCCCAGATTCGGAGTAAMPTITLPDGSQRSFDHPVSVAEVAASIGAGLAKATLAGKVDGKLVDASDVIDSDATLQIITPKDEEGLEIIRHSCAHLVGHAVKQLYPSAKMVIGPVIDEGFYYDIAFERPFTPDDMAAIEQRMQQLIEKDYDVIKKVTPRAEVIEVFKARGEDYKLRLVEDMPDEQAMGLYYHEEYVDMCRGPHVPNTRFLKSFKLTKLSGAYWRGDAKNEQLQRVYGTAWADKKQLAAYIQRIEEAEKRDHRKIGKRLGLFHTQEESPGMVFWHPNGWTLYQVLEQYMRQVQRENGYLEIKTPQVVDRSLWEKSGHWANYADNMFTTQSENRDYAIKPMNCPCHVQVFNQGLKSYRELPMRLAEFGACHRNEPSGALHGIMRVRAFTQDDAHIFCTEEQMQAESAAFIKLTMDVYRDFGFTEVEMKLSTRPEKRVGSDELWDRAEAALAAALDSAGLAYDLQPGEGAFYGPKIEFSLKDCLGRVWQCGTLQLDFNLPIRLGAEYVSEDNSRKHPVMLHRAILGSFERFVGILIEHYEGAFPAWLAPTQAVIMNITDKQADFAAEVEKTLNQSGFRAKSDLRNEKIGFKIREHTLLKVPFLLVVGDREVEMQTVAVRTREGADLGSMPVAEFAEFLAQAVSRRGRPDSENANANANANA
D1-35_02373534infCCOG0290Translation initiation factor IF-3ATGAGACAAGATAAACGAGCTGCACCGAAAGCCCCGATCAACGAGAATATCTCGGCACGCGAGGTTCGGTTAATTGGCGCTGATGGCGAGCAGATTGGCATCGTCTCGATTGATGAAGCGCTTCGTATTGCTGAAGAAGCCAAGCTTGATCTGGTGGAAATTTCCGCGGACGCAGTCCCACCCGTTTGCCGGGTGATGGACTACGGCAAGTCGATCTTCGAAAAGAAGAAGCAGATTGCCGCGGCGAAGAAAAACCAGAAGCAGATTCAGGTAAAAGAAATCAAGTTTCGTCCAGGGACGGAGGAAGGGGATTACCAGGTAAAACTGCGCAACCTGGTACGTTTCCTGAGTGACGGGGACAGGGCCAAGGTATCCTTGCGATTCCGCGGCCGTGAGATGGCCCACCAGGAGCTGGGGATGGAACTCCTCAAGCGGGTTGAACAAGACCTGCTCGAGTACGGTTCGGTCGAACAGCATCCTAAGATGGAAGGACGCCAGCTGATCATGGTCATCGCCCCGAAAAAGAAGAAGTAAMRQDKRAAPKAPINENISAREVRLIGADGEQIGIVSIDEALRIAEEAKLDLVEISADAVPPVCRVMDYGKSIFEKKKQIAAAKKNQKQIQVKEIKFRPGTEEGDYQVKLRNLVRFLSDGDRAKVSLRFRGREMAHQELGMELLKRVEQDLLEYGSVEQHPKMEGRQLIMVIAPKKKKNANANANANA
D1-35_02374195rpmI50S ribosomal protein L35ATGCCAAAGATGAAGACTAAAAGTGGTGCTGCTAAGCGGTTTCTGAAAACTGCTAACGGTATCAAGCACAAGCACGCTTTCAAGAGCCACATCCTGACCAAAATGTCGACCAAGCGTAAGCGTCAACTGCGCGGTAGCAGCTTGCTGCATCCGTCTGACGTGGCAAAAGTCGAGCGCATGCTGCGCCTTCGTTAAMPKMKTKSGAAKRFLKTANGIKHKHAFKSHILTKMSTKRKRQLRGSSLLHPSDVAKVERMLRLRNANANANANA
D1-35_02375357rplTCOG029250S ribosomal protein L20ATGGCTCGTGTAAAGCGTGGCGTCATTGCCCGTAAGCGTCACAAAAAAATTCTGAAACTTGCTAAAGGCTACTACGGCGCGCGTTCCCGCGTATTCCGTGTTGCCAAGCAAGCGGTAATCAAGGCAGGCCAATACGCCTACCGTGACCGTCGTCAGAAAAAACGTCAGTTCCGCGCTCTGTGGATCGCTCGTATCAATGCTGGTGCTCGTGTTAACGGTCTGTCTTACAGCCGTTTCATCGCTGGCCTGAAAAAAGCGTCCATCGAGATCGACCGTAAGGTTCTGGCTGATCTGGCAGTGAACGAAAAAGCGGCGTTTGCTGCGATTGTCGAGAAAGCTAAAGCCACCTTGGCTTAAMARVKRGVIARKRHKKILKLAKGYYGARSRVFRVAKQAVIKAGQYAYRDRRQKKRQFRALWIARINAGARVNGLSYSRFIAGLKKASIEIDRKVLADLAVNEKAAFAAIVEKAKATLANANANANANA
D1-35_023761017pheSCOG0016Phenylalanine--tRNA ligase alpha subunitATGGAAAACCTGGACGCGCTGGTCGCTCAAGCACTAGAGGCTGTGCAAAGCGCTGAAGATATCAATGCCCTGGAGCAAATCCGGGTTCACTACCTTGGCAAGAAAGGCGAGTTGACTCAGGTGATGAAGACCCTGGGGAACCTGCCGGCTGAAGAGCGTCCGCAGGTCGGTGCGCTGATCAACGTCGCCAAGGAGCGTGTCACAGAGGTCCTCAATGCGCGCAAGGCGTTGTTCGAGGAGGCGGATCTGGCTGCCAAGCTCGCCGCCGAGTCCATCGACGTGACCCTGCCTGGCCGTGGCCAGACTTCCGGTGGCCTGCATCCGGTGACCCGTACCCTGGAGCGCATCGAGCAGTTCTTCACCCATATCGGCTATGGCATCGCCGAAGGCCCTGAGGTCGAAGACGACTACCATAATTTCGAAGCGCTCAACATCCCAGGCCATCACCCGGCCCGGTCGATGCATGACACCTTCTATTTCAATGCGAACATGCTGTTGCGCACCCATACCTCGCCCGTACAGGTCCGCACCATGGAATCGCAACAACCGCCGATCCGCATCGTCTGCCCGGGCCGTGTGTACCGCAGCGACTCCGATATCACCCACTCGCCGATGTTCCATCAGGTTGAAGGCCTGCTGGTGGATCGCGACATCAATTTCGCCGACCTGAAAGGCACTATCGAAGAGTTCCTGCGGGTGTTCTTCGAAAAAGAACTGGCCGTGCGTTTCCGCCCTTCGTACTTCCCGTTCACCGAGCCATCGGCTGAAGTCGACATGGAATGCGTGATGTGCAGCGGCAAAGGCTGCCGCGTCTGCAAACAGACCGGCTGGCTGGAAGTCATGGGCTGCGGCATGGTTCATCCGAACGTGCTGCGCATGTCCGGGATCGATCCGGAAGAGTTCTCCGGCTTTGCCTTCGGCATGGGCGTCGAGCGCCTGGCCATGCTGCGTTACGGTGTGAATGACTTGCGCCTGTTCTTCGACAACGACTTGCGATTCCTTGCGCAATTTCGCTAGMENLDALVAQALEAVQSAEDINALEQIRVHYLGKKGELTQVMKTLGNLPAEERPQVGALINVAKERVTEVLNARKALFEEADLAAKLAAESIDVTLPGRGQTSGGLHPVTRTLERIEQFFTHIGYGIAEGPEVEDDYHNFEALNIPGHHPARSMHDTFYFNANMLLRTHTSPVQVRTMESQQPPIRIVCPGRVYRSDSDITHSPMFHQVEGLLVDRDINFADLKGTIEEFLRVFFEKELAVRFRPSYFPFTEPSAEVDMECVMCSGKGCRVCKQTGWLEVMGCGMVHPNVLRMSGIDPEEFSGFAFGMGVERLAMLRYGVNDLRLFFDNDLRFLAQFRNANANANANA
D1-35_023772379pheTCOG0072Phenylalanine--tRNA ligase beta subunitATGAAATTCAGTGAACAATGGCTGCGCGGCTGGGTAAGCCCGCAGGTAAGCCAGGACGAGCTGGTTGCTCGCCTGTCGATGGCCGGCCTTGAGGTCGATAGCGTGACGCCGGCCGCCGGTGAGTTCAGCGGTGTGGTCGTGGGCGAGGTGCTGAGCACCGAGCAGCACCCGGACGCCGATAAACTGCGGGTTTGCCAGGTCAACAATGGCACGGAGACCTTCCAGGTCGTCTGCGGCGCGCCCAACGTGCGCCCGGGCCTGAAGATTCCGTTCGCCATGATCGGCGCCGAGCTGCCGGGCGACTTCAAGATCAAGAAAGCCAAGCTGCGCGGCGTCGAATCCAACGGCATGTTGTGCTCCCAGGCCGAACTGCAGATCGGCGAAGGTAATGACGGCCTGATGGAACTGCCAGCCGACGCACCGGTTGGCCAGGACATTCGTGAATACCTGGGCCTGGACGATGCCAGCATCGAAGTCGACCTGACGCCGAACCGTGGCGACTGCCTGTCCCTCGCCGGTCTGGCGCGCGAAGTGGGCGCCTTGTATGACGCTCCGGTCACCCGCCCTGCGGTCGCGGTCGTTCCGGCGGTGCATGATGAAGTGCGGCCGGTTGAAGTTCTCGCGCCGGCCGCATGCCCGCGTTACCTGGGTCGTGTGATCCGCAACGTCGACCTATCGAAGCCGACCCCGCTGTGGATGGTCGAGCGCCTGCGGCGCGCCGACGTGCGCAGCATCGACGCGGCCGTCGACATCACCAACTATGTGATGCTCGAACTGGGCCAGCCGCTGCACGCGTTCGACCTGGCTGAAATCAACGGCGGCATCCGCGTGCGCATGGCCGACGAAGGCGAGAAGCTGGTACTGCTCGACGGCCAGGAAGTGACCCTTCGCAGCGACACACTTGTGATCGCCGACCACACCCGCGCCCTGGCGATTGCCGGCGTGATGGGCGGCGAGCACAGTGGCGTCTCGAAGACGACCCGTGATGTGTTCCTCGAAAGCGCGTTCTTCGACCAGATCGCTGTCGCTGGCAAGGCCCGTTCCTACGGCCTGCACACCGACGCCTCGCACCGCTACGAGCGTGGCGTGGATTGGCAGCTGGCCCGTGAAGCCATGGAGCGCGCCACTGGCCTGCTGCTGGAAATCACCGGTGGCGAAGCCGGCCCGATCATCGAGACGGTCAACGAGCAGCATTTGCCGAAGATCGCGCCGGTGACCCTGCGTGCCCAACGCATCACCCAGATGCTGGGCATGGAAATGGACTCGGCCGAAGTCGAGCGCCTGCTTAGCGCCCTGGGCCTGGGCATCCGCGCCGATGGGGAAGGACAGTGGCAGGTTGAAGTGCCGAGCCACCGCTTCGATATCAGCCTGGAAGTCGACCTGATCGAAGAACTGGCCCGCCTGTACGGCTACAACCGTCTGCCGGTTCGCTACCCGCAAGCCCGTCTGGCTCCACAGGCCAAGGCTGAGGCGCGCAGCGAGCTGCCGGAACTGCGCCGCCTGCTGGTGGCCCGTGGTTATCAGGAAGCGATCACCTACAGCTTCATCGATCCGCGCCAGTTCGAGCTGTTCAGCCCGGGTGTCGAGCCGCTGCTGCTGGCCAACCCGATCTCCAACGACATGGCGGCCATGCGTTCGTCCTTGTGGCCGGGCCTGGTCAAGTCGTTGCAGCACAACCTGAACCGCCAGCAGGACCGCGTGCGTCTGTTCGAAAGTGGCCTGCGCTTCGTTGGGCAACTGGACGGCTTGAAGCAAGAGCCGATGCTGGCCGGTGTCGTCTGTGGCAGCCGCCTGCCGGAAGGCTGGGCGCAAGGTCGCGATGTTGTTGATTTCTTCGACGTAAAAGCTGACGTGGAAGCGGTGCTGGGCTTCGCCGGCGCGCTAGACGCGTTCACCTTTGTGCCGGGCAAGCATCCGGCGCTGCACCCGGGCCAAACCGCACGCATCGAGCGAGACGGGCGCGAAGTCGGTTATGTCGGGGCGATTCACCCTGAATTGTCGAAGACCCTGGGCCTCGATCGTCCGGTCTTCGTTTTCGAGCTGGTGCTGGCCGAAGTCGCCCAAGGAAAAATGCCGAAATTCCAGGAGTTGTCGCGCTTTCCTGAAGTGCGTCGTGACCTTGCCCTGGTGGCCGATGTCAGCGTCGCATCCAGCGACGTACTGGCAGTAATCCGTGAAAATGCAGGCGAATGGCTGACGGACCTCAGGCTATTTGACGTGTATCAGGGTAAAGGCATTGATCCGCATAGAAAAAGCCTTGCAGTCGGCTTGACCTGGCAGCATCCATCGCGCACTCTTAACGACGATGAGGTGAATACCGCAACGCAGAATATCCTCACCTCGCTCGAACACAGGTTGAACGCCACGTTAAGGAAGTGAMKFSEQWLRGWVSPQVSQDELVARLSMAGLEVDSVTPAAGEFSGVVVGEVLSTEQHPDADKLRVCQVNNGTETFQVVCGAPNVRPGLKIPFAMIGAELPGDFKIKKAKLRGVESNGMLCSQAELQIGEGNDGLMELPADAPVGQDIREYLGLDDASIEVDLTPNRGDCLSLAGLAREVGALYDAPVTRPAVAVVPAVHDEVRPVEVLAPAACPRYLGRVIRNVDLSKPTPLWMVERLRRADVRSIDAAVDITNYVMLELGQPLHAFDLAEINGGIRVRMADEGEKLVLLDGQEVTLRSDTLVIADHTRALAIAGVMGGEHSGVSKTTRDVFLESAFFDQIAVAGKARSYGLHTDASHRYERGVDWQLAREAMERATGLLLEITGGEAGPIIETVNEQHLPKIAPVTLRAQRITQMLGMEMDSAEVERLLSALGLGIRADGEGQWQVEVPSHRFDISLEVDLIEELARLYGYNRLPVRYPQARLAPQAKAEARSELPELRRLLVARGYQEAITYSFIDPRQFELFSPGVEPLLLANPISNDMAAMRSSLWPGLVKSLQHNLNRQQDRVRLFESGLRFVGQLDGLKQEPMLAGVVCGSRLPEGWAQGRDVVDFFDVKADVEAVLGFAGALDAFTFVPGKHPALHPGQTARIERDGREVGYVGAIHPELSKTLGLDRPVFVFELVLAEVAQGKMPKFQELSRFPEVRRDLALVADVSVASSDVLAVIRENAGEWLTDLRLFDVYQGKGIDPHRKSLAVGLTWQHPSRTLNDDEVNTATQNILTSLEHRLNATLRKNANANANANA
D1-35_02378303ihfACOG0776Integration host factor subunit alphaATGGGGGCTCTGACGAAAGCTGAGATGGCGGAACGTCTGTATGAGGAGTTGGGCCTGAATAAACGGGAGGCCAAAGAATTGGTCGAACTGTTTTTCGAAGAAATCAGGCACGCTCTCGAAGACAACGAACAAGTCAAATTGTCCGGTTTCGGCAATTTCGACCTTCGGGACAAACGCCAGCGGCCTGGCCGCAATCCGAAAACGGGAGAAGAAATCCCGATCACGGCTCGCCGTGTGGTCACCTTTCGTCCAGGGCAGAAGTTGAAGGCCCGAGTTGAGGCTTATGCTGGAACCAAGTCATAAMGALTKAEMAERLYEELGLNKREAKELVELFFEEIRHALEDNEQVKLSGFGNFDLRDKRQRPGRNPKTGEEIPITARRVVTFRPGQKLKARVEAYAGTKSNANANANANA
D1-35_02379357hypothetical proteinATGCTGGAACCAAGTCATAACGACGAGCTACCCGTCATCCCAGGCAAACGCTACTTCACCATCGGTGAAGTCAGCGAGCTGTGTGCGGTAAAACCGCACGTGCTGCGTTATTGGGAGCAGGAGTTTCCTCAACTCAACCCGGTCAAGCGCCGCGGAAACCGCCGGTATTATCAGCGCCAGGATGTGCTGATGATCCGCCAGATCCGCGCGCTGCTGTACGACCAGGGGTTCACCATCGGCGGCGCGCGCCTGCGCCTTTCCGGTGATGAGGCCAAAGACGACACAACCCAGTACAAACAGATGATCCGCCAGATGATCGCCGAGCTTGAAGATGTACTGGTGGTGCTCAAGAAATAAMLEPSHNDELPVIPGKRYFTIGEVSELCAVKPHVLRYWEQEFPQLNPVKRRGNRRYYQRQDVLMIRQIRALLYDQGFTIGGARLRLSGDEAKDDTTQYKQMIRQMIAELEDVLVVLKKNANANANANA
D1-35_02381762ygfF_2putative oxidoreductase YgfFATGGTCAACGACTCGCAGGCACCGCTGATCCTGATAACCGGCGGAAGTCGCGGAGTGGGCGCCGCCACCGCGCGGCTGGCCGCCGCACAAGGCTACGACGTCGCGATCAGCTACGTTGCCAACGAGCCCGCGGCGCTGGCCGTGGTCGCGGATGTGGAGGCACTCGGACGTCGCGCGCTGGCCATGCGCGCCGACAGTGCCGACCCCGAACAGGTCGCCGATCTGTTCGCGGCCATCGACCGCTCGTTCGGGCGCATCGACGTCCTGGTCAATAACGCGGGGATACTGTCGGCTCAGTCACGCCTGGAAGACCTTGGCTTCGAGCGCATGCAGCGCATCTTCGCGGTCAACTCCATCGGCCCGATTCTCTGCGCCCAGCAGGCAGTGAAGCGCATGGCGTACCGGCATAACGGCCCGGGCGGCGCGATCATCAACGTCTCTTCGGCATCGGCACGCCTGGGCAGTCCCAACGAATATGTCGATTACGCGGCGTCAAAAGGCGCCTTGGAGACCTTCACCATCGGCCTCGCCAAAGAAGTGGCCCGGGAAGGCATACGCGTCAACTGCATTCGCCCCGGACACATCTACACCGAAATGCACGCCAGCGGCGGCGAGCCGGGGCGGGTTGATCGGGTGAAGGACTCGATCCCCATGGGTCGAGGAGGCCAACCGGAGGAAGTGGCACGGGCGATTCTGTGGCTGGCGGGTGGAGAGGCGTCGTTTGTGACGGGGACGTTTCTTGATGTGACTGGAGGGAAGTGAMVNDSQAPLILITGGSRGVGAATARLAAAQGYDVAISYVANEPAALAVVADVEALGRRALAMRADSADPEQVADLFAAIDRSFGRIDVLVNNAGILSAQSRLEDLGFERMQRIFAVNSIGPILCAQQAVKRMAYRHNGPGGAIINVSSASARLGSPNEYVDYAASKGALETFTIGLAKEVAREGIRVNCIRPGHIYTEMHASGGEPGRVDRVKDSIPMGRGGQPEEVARAILWLAGGEASFVTGTFLDVTGGKPGPT0003180_16170DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-35_02382828hypothetical proteinATGCCTATCCATATCATTTCACTGGTTCTTTTCGCCGCGCTCCTGCATGCCAGCTGGAACGCCTTGCTGCGCGGCGGTGCCGATCGGCTGTGGTCAATGACGATCATGTGCATCGCCATCGCCGTGACCTGCGTCGTCGCCGCAGCATTCATGGTCCCACCGGCTGCCGCCAGTTGGGGTTATGCGGTGCTTTCAGCCGTACTGCACGTCGGCTACAACCTGTTCCTGGTGCGCAGCTACCGGGTCGGCGACCTGGGACAGGTCTATCCGATTTCCCGTGGCTCATCACCGGCACTGATCGCCCTGGGCGCCGCCGTCTTCGCCGGAGAAAGCATCGCCCCCGGCGTCCTGCTGGGGATTGCGCTGGTGTCCGGCGGGATCATTTCCCTGGCCTTCAGGGGCCGCCAACTGTCGGTGCCCAGCCTGCCCTACGCGCTGGGCACCGGCTGTTTCATCGCCGCCTATAGCGTCGTCGACGGCATCGGTGCCAGGCTCTCCGGCGCGCCGCTCGCCTATACCGTCTGGATGTGCGCCTTGTGGGGCGTGATGATGCCGATGGTCTACATCGGCCTGCGCGACGCACGCAGCCTGTTCTCCGTCCGCCCCGGAATATTCAGCGCCGCGGCCGGCGGGCTGGTCTCCTTGCTGGCCTATGGAATAGTCATCTACGCCATGAACGAAGCGCCCCTGGGGGCGGTATCGGCATTGCGCGAAACCAGCGTGCTGTTTGCGGCGCTGATCGGCGCCATCTTCCTCGGCGAGACACTCACCGCCCGCCGGATCCTGGCGTGCGCAGTGATCGTCAGCGGCACCATCATCATCGGCTGAMPIHIISLVLFAALLHASWNALLRGGADRLWSMTIMCIAIAVTCVVAAAFMVPPAAASWGYAVLSAVLHVGYNLFLVRSYRVGDLGQVYPISRGSSPALIALGAAVFAGESIAPGVLLGIALVSGGIISLAFRGRQLSVPSLPYALGTGCFIAAYSVVDGIGARLSGAPLAYTVWMCALWGVMMPMVYIGLRDARSLFSVRPGIFSAAAGGLVSLLAYGIVIYAMNEAPLGAVSALRETSVLFAALIGAIFLGETLTARRILACAVIVSGTIIIGNANANANANA
D1-35_02383948gcvA_2Glycine cleavage system transcriptional activatorATGACGCGCATCCTCAAATCGCCGGATATCCTTCACATGAGAGACCTGCCGCCGACCGCTACATTACGAGCCTTTGAAGTCGCCACCCGCCACGCGACCTTTACCGCAGCCGCGCAAGAGCTGCACGTCACCCAAAGCGCGGTCAGTCACCAGCTCAAGCACCTGGAGTCCCTTTGGGGATTGCAACTGTTCGAGCGTGGCAAGTCACTGCGCCTCACCGCCGCGGGGGCCACGCTGGCGCCCATCGTGCGCGAGTTCTTCATGAGCCTTGAAGCGACCCTGGGCGATCTACGCGAACAGAAAGGCAGGGTTCGACTCGAAGTCAGCACCACTTATTCCTTCGCGCTGAAGTGGCTGCTGCCCCGCTTGCCGAATCTCTCCCGCCTGCACCCGGAGTTATTGGTCTCGCTGGACACCACCGACAAGATCATCCACTTCTCCAGTGCCCAGGCCGACGTGGCAATCCGGCTCGGCAAGGGCAACTACCCCGGCCTGTATTCGGAATTTCTCTTCGGCGAGCAGGTTTTTCCGGTGGCCAGTCCTGACTTGCTGCAGCGCTTCGGGACGCCACGCAGCCCCGCCGAACTGTTGCACTACCCGTTGCTGACCCGGGATGGCGCCGAGCTGGTGCCGAAATGGGAGATGTGGTTCGAGAAGGTCGGCCTGGAATTCTTGCCACTCAAGGAAAGCGTCAGGTTCGGCGACACCAACATGACGGTCGAGGCAGCCCTGCTCGGCCAGGGCGTTGCCTTGGTGCGCAGCGGGCACGTTGAAAGCGAAATCAGCGATGGCCGCCTGGTGCGGCTGTTCGACGTGCCATTCCCGTCACCACTGGCCTACTATTTTGTCTGTCCCAAGGGCATCGAATCGCAGCCGCATATCGTCAGCTTCCGCCAATGGTTGATCGGCGAGGCGTCGACCGTCCAACGCGCTTATGAAAATGCATGAMTRILKSPDILHMRDLPPTATLRAFEVATRHATFTAAAQELHVTQSAVSHQLKHLESLWGLQLFERGKSLRLTAAGATLAPIVREFFMSLEATLGDLREQKGRVRLEVSTTYSFALKWLLPRLPNLSRLHPELLVSLDTTDKIIHFSSAQADVAIRLGKGNYPGLYSEFLFGEQVFPVASPDLLQRFGTPRSPAELLHYPLLTRDGAELVPKWEMWFEKVGLEFLPLKESVRFGDTNMTVEAALLGQGVALVRSGHVESEISDGRLVRLFDVPFPSPLAYYFVCPKGIESQPHIVSFRQWLIGEASTVQRAYENAPGPT0026360_4098DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566NANA
D1-35_023842019hypothetical proteinATGACAGACGTAGAGACGGCTATTGCTGAGTGGGAGCCGCTTGATCTCGAATGGCATCAGGGTTTCGCCTTCCTGGAAGGCGTGCTGCTGGGCGACGGGCAAGTGCCGGACGTGTACATCCTGCTCAACCCTGAAGGCGCACACCCCGACGCGATAGCGAAAGCTGCCAGTGACGGGCGTTATCCGCCTTCGCCTCTGGTTGCCGGCCAGCCGGTCTGGCGGCATCGACGCAACCCCTGGGTTTTGCGTGACGCCTTGCGCGACTATTACCTGCTTCCCGCCTACCCACAGCGCTACGGTTATCACGGGCTCCAGAGCCTGGCGTTTCGGTTCGACAAAGCCCTGGAAAACCTTGGCCACCAATATTGGCGCGATGCGTCCGGCGCCTATTGGTTCGGCGAATACGCAATCACCGAAATCCTTCAGGCAAAGCCCGACAGCCTGGCCCTGGTGGCATTGTCGCCAGCCTCGGTGACTGCAGCCTCTGCCCTGTTCAGCGACGGGGTGAGTATCTTTCTTCAAGGCAAATTCATCGCCAGCGCGACGGCGCGGGTGCGTTATTGCAATCACCCTTCCTATCGAGTGATTGACGGCCAGGTCTACAAGGGCTTCAACCCCCTGCATCAGAAGGACGGCACCCCATTGCCGATCAGCAATCCGGACGACTTCCGGATGCTCGCCGAACGCTGGGGAACCGATGGGCAGTCGATCATCGTGCAGGCGCAGCAAGGTTCGAGCATTGCCTATGAGTATTTCTATCGCATCGACAATGCCGACCTGGCGACCTTCACCGTGCTTAACGAACGTTACGCCAAGGACCAGCAACGCGCCTATTACCTGACCGGCAAGACCCTGCGCTACGTTGGCGATTTTCGGCTGCTGAAGAACTGCCACCCGGCGTTCGACGAGTGCGGCCGCGTGATTGGCAGCAGCGAAAGCGAGGATGAGTATTTCGCCGTGGACGACCTGTACGTCTACGCCGCCGGGACGCGCCTGCGTGACGCCCACGGCCCGAGTTTCCGCCACTTGGGGTTCGATTACTACCGTGATCAACATCACGTCTACAAACGTCAGAAACGCCTGGATGTCGACGTGGAAAGCTTCGTCGTGACCCAGCTCTGTGGCGATGACCTGGACTACTCGCCTGTGCTCGCAGGCGACAGGAATGGTCCGCTGGGTTCTGGCGGAATCATCGATGCGGCAATGCAACAGGCATGGGCGCCCTACTTCGAGGCTCATCCGCAATTGCAGGGTTACTGGTGGCATCGTTTGCAAGCGCCGCCTGAAGTTGCAGAAGCGCAAGCAGAAACGCCGCCGTTACAAGCCATCGGCCTCGGTTTCGAAGTCGGCCGCCAAGTGTATTTTCATGGCCGCGTTATCAATGGGCTGGACGCTGCAAGTTTCCAATTGCTCGACACACACCTGTGCGGCGATGCCCGGGGGCTTTATCTGATCCCGTTTCATAACGCCGAGACACAAGTGCCCGAACGGTTTTCCCAGGAGCCGGTTGAGCACTTCCGCTCACTCGGCGGGCCCTATCTCACCGACGGCAAAACCGTGTTCTGCCACCGGGTCTTCTACCATCCCCCTGAACCGATTCGTAAGGCTCAGGTAGGCAGTTTCGAGTCTTGCGGGCATGGTTGGGCCAAGGATCGGGACGCGGTTTATTACTACGGCGAGGCGAAAAAAAAGCTGCATCCTTGCGACACTCGCATTCTCGGTACCTATGCCGTTAGCCCCACGCTGATCTTCTCGGAAGGCAAGTGGCTGGATGTAGCTTTCGAGCCTGACGAAGTCCGCGTGCCGCATCCCGATTTCCTGCAATTGGGTACACGCAAACTGTTCTGCCATCGGCGGCCGCTGAGTGCCAAGCGTATCGACCTGGGCACCTTGGAATTCCTGACGGAGCGTCATGCCCGAGACAAGCACCGAATCTACCACTACGACGGCTATGCGAGCCTGACCGAGGTCGATGAAGCGCATTATCAGCAATCCCTTCGTGAGCCGTCCCATTCATAGMTDVETAIAEWEPLDLEWHQGFAFLEGVLLGDGQVPDVYILLNPEGAHPDAIAKAASDGRYPPSPLVAGQPVWRHRRNPWVLRDALRDYYLLPAYPQRYGYHGLQSLAFRFDKALENLGHQYWRDASGAYWFGEYAITEILQAKPDSLALVALSPASVTAASALFSDGVSIFLQGKFIASATARVRYCNHPSYRVIDGQVYKGFNPLHQKDGTPLPISNPDDFRMLAERWGTDGQSIIVQAQQGSSIAYEYFYRIDNADLATFTVLNERYAKDQQRAYYLTGKTLRYVGDFRLLKNCHPAFDECGRVIGSSESEDEYFAVDDLYVYAAGTRLRDAHGPSFRHLGFDYYRDQHHVYKRQKRLDVDVESFVVTQLCGDDLDYSPVLAGDRNGPLGSGGIIDAAMQQAWAPYFEAHPQLQGYWWHRLQAPPEVAEAQAETPPLQAIGLGFEVGRQVYFHGRVINGLDAASFQLLDTHLCGDARGLYLIPFHNAETQVPERFSQEPVEHFRSLGGPYLTDGKTVFCHRVFYHPPEPIRKAQVGSFESCGHGWAKDRDAVYYYGEAKKKLHPCDTRILGTYAVSPTLIFSEGKWLDVAFEPDEVRVPHPDFLQLGTRKLFCHRRPLSAKRIDLGTLEFLTERHARDKHRIYHYDGYASLTEVDEAHYQQSLREPSHSNANANANANA
D1-35_02385609rhtB_4COG1280Homoserine/homoserine lactone efflux proteinATGCCGTTTGATACCTGGTTGCTCTATCTGGTTACTTGCTGCGGCATAGCGGTAGTGCCAGGTCCCAATGCCTTGTTGGCGCTGACCCACGGCGCCATTCACGGCAGCCGGAAAACGCTGTTCACCATCACCGGCGGCGTCCTCGGCTTTGCCGTCGTGCTGACGCTTTGCGCCCTGGGCCTGGGTGCGCTGATCCAGGCTTCAGTTACCTGGTTCACGGCGTTGAAAATCATCGGCGGGCTCTATCTGATCTGGCTGGGCTTCAATCTATGGCGATCGCCTCCCGTCAGTCTTGAGGCGCCCGCTACAGACAGCTTCCGTGGTTCGTCGCTGTTCCGCCAAGGGCTGGTATCGGCCATTTCCAATCCCAAGGCGCTGCTGCTGTTTACCGCATTCATTCCGCCGTTTCTGGATCCCCACCGGAACATCATCGCGCAGACGTTGGCCATCGCGCTGACTTACGCGGTTGTCGAGTTTATCGTCGAGTTCGGTGTAGCCAGCGCAGCGCACCGGGTCAGGCCCTGGCTGGCCCGAACCGGGCGCCGGTTCAATAAAGTCTGCGGCGGTTTTTTCGTACTTTTCGGGGTGAGCCTGCCGATTCATAACTGAMPFDTWLLYLVTCCGIAVVPGPNALLALTHGAIHGSRKTLFTITGGVLGFAVVLTLCALGLGALIQASVTWFTALKIIGGLYLIWLGFNLWRSPPVSLEAPATDSFRGSSLFRQGLVSAISNPKALLLFTAFIPPFLDPHRNIIAQTLAIALTYAVVEFIVEFGVASAAHRVRPWLARTGRRFNKVCGGFFVLFGVSLPIHNPGPT0021036_1207DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QUORUM_SENSING_RELATED_GENESCE-QSR-PUTATIVE_TRANSPORTER,PGPT0021036-rhtB-K05834NANA
D1-35_02386783hypothetical proteinATGACCACTCGCAAAACCGTCCTCATCACTGGCGCCTCCACCGGCATCGGCGCGGTCTATGCCAAGCGCTTCGCTCAACGCGGCCATGATCTGGTGCTGGTAGCCCGCGACAACGCGCGGCTGGAAGCGCTGGCAAGCGAACTGCGCAATGAACACAACGTCAGTGTCGATGTGCTCCAGGCCGACCTCACCCAAACCGGCGATCTGCACAAGGTCGAGGCCCGCCTGCGCGATGACGACAGCATCGGCATCCTGATCAACAACGCCGGCGCCGCCCAGTCCGGCAGTTTCATCGAACAGACCACCGACAGCGTCGCGCACCTCGTTGCGCTCAACACCACCGCGCTGGTTCGACTCGCCAGCGCCATCGCCCCGCGCCTGGCAAACGCTGGCGAAGGCGCAATCATCAACATCGGCTCCGTGGTCGGCCTGGCACCGGAATTTGGCATGTCGGTCTACGGCGCAACCAAGGCCTTTGTGCTGTTCCTCTCCCAAGGGCTCAGCCTCGAGCTTTCGCCCAAAGGCGTCTACGTCCAAGCCGTGCTGCCGGCAGCCACCCGTACCGAAATCTGGGAGCGCGCCGGCATCGACATCAATACGCTGAGTGAAATCATGGAAGTGAGCGACCTGGTGGATGCCGCGCTGGTCGGCTTCGATCGCCGCGAAGGCGTGACCATCCCGCCCTTGCAGGACGGCGCGCGCTGGGATGCGTTGCAGGCGGCGCGGCAGGGACTGCTGTCGCAGATCAAGCAATCGACGGTTGCCGAGCGCTACAAAGCCTGAMTTRKTVLITGASTGIGAVYAKRFAQRGHDLVLVARDNARLEALASELRNEHNVSVDVLQADLTQTGDLHKVEARLRDDDSIGILINNAGAAQSGSFIEQTTDSVAHLVALNTTALVRLASAIAPRLANAGEGAIINIGSVVGLAPEFGMSVYGATKAFVLFLSQGLSLELSPKGVYVQAVLPAATRTEIWERAGIDINTLSEIMEVSDLVDAALVGFDRREGVTIPPLQDGARWDALQAARQGLLSQIKQSTVAERYKAPGPT0030485_2515PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-OXIDOREDUCTASE_ACTIVITYPUTATIVE-OXIDOREDUCTASE_ACTIVITY-1,PGPT0030485-yqjQ-K07124
D1-35_02387582hypothetical proteinATGAGAGTGACCAAGGCCCAGGCACAGGCAAACCGCGAGCACATCGTCGAGACGGCGTCCGTGTTGTTCCGCGAGCGCGGCTTTGACGGAATAGGCGTGGCGGACCTGATGGCTGCTGCGGGTTTTACCCATGGCGGCTTCTACAAACATTTCGGTTCGAAGGCCGACCTGATGGCTGAGGCTTCCGCGAACAGCCTGTCGCAGTCGCTGGCCAGCACCGGCGAGCTTGATGTAGCCGGATTTTTTGCAATGTATCTATCCAGGGAACACCGCGACGCGCGGGGGCACGGTTGCACGATGGCGGCGTTGTGCGGGGATGCGGCGCGTCAGTCAGACGAGTTGAAGGCGACTTTCGCCAGCGGCGTCGAAAGCACCCTGGCTTCGCTTGAAAAAAAGCTTGGGACACAGGAGGAGGGGGCCCGGGCGAAGATGCTTGGCCTGCTCGCCCAGGCTATCGGCGCGATCATGCTTTCGCGCGCGTGCCCGGACGATGCCCCGCTGGCTGGGGAAATACTCGAGGTCTGCCGAGCACAGATCCTCGCGTCCCTGCCAGCATCCGGAGCCATGAAAAACCAGCGGTAGMRVTKAQAQANREHIVETASVLFRERGFDGIGVADLMAAAGFTHGGFYKHFGSKADLMAEASANSLSQSLASTGELDVAGFFAMYLSREHRDARGHGCTMAALCGDAARQSDELKATFASGVESTLASLEKKLGTQEEGARAKMLGLLAQAIGAIMLSRACPDDAPLAGEILEVCRAQILASLPASGAMKNQRNANANANANA
D1-35_02388264hypothetical proteinATGACAGACATATATCTGCTGATAGCGAGCGGCACGGACCAGAGCGATGCGTACGTGCTGGGTTGGTTCGATGACAGGAACAAAGCCAGGGAAGTGGCCGAGCAGAAAGAATGGGAGGCTTATCGCGCCAGCCTGAAGGCGGAAAACCGTTGGTCAAGCCATAAACCGCTGGCGCCGGACAAGACCGAGTATCGGCGGTACTGGATCAAGACCGTGTCGAAGTTCGAATACGTTTCCGTCCCGAGGTCCCTGGCGGTTCACTGAMTDIYLLIASGTDQSDAYVLGWFDDRNKAREVAEQKEWEAYRASLKAENRWSSHKPLAPDKTEYRRYWIKTVSKFEYVSVPRSLAVHNANANANANA
D1-35_02389915gcvA_3Glycine cleavage system transcriptional activatorATGAAACTGCAACCGTTGCCGCCGCTCAACAGCCTGGTGGCGTTCGAGGCCGCTGCTCGCCACCTGAGTTTCACCGTGGCGGCTCGTGAACTGAACGTCACCCAGGGCGCCATCAGCCGCCAGATACGCCTGCTCGAAGATTATCTGGGCACGGCACTGTTCATCCGCACGACCCGTGAAATCAACCTCACTTCTACAGGCAGCCAGTACCACGAAAGCATTCGCGACACTCTGCAGCAGATCGCCCGCGCCACGGCTGGCGTTCGGCATTGGCAAGGCGCCCAGCAAGTCACCGTGGTCACCAGTACGGCGATGGCATCCCTGTGGCTGCTCCCGCTTGTTTCGGAGTTTCAGCGCCAGCACGAAGAAATCGACCTGCGCATCATCGCCACCGACCAGGTCGAGGACTTTTCCCGACTCGATTGCGATCTGGCGCTGTATTACTGCAGCAAGCCGCCCAACAACATGAAAGTCTCCGCGCTGTTCAGCGAAGAGATTTTCCCGGTATGCAGCCCCACGTACCTGGCGCAGCACCCCGAGGCCGGCAGGCTCGACCAGCTCGGCGCCTGCACCTGGTTATGGCTGGAGGATCAGCATCGGGACTGGATCGGCTGGAAGGAATGGTTCCGACGCCTGGGCCACCAGGCGCCAGAGCCTCGTCGGCGGATCAACATCAACAGCTACTCGATGCTGATCCAGTCGGCGCTGGCAGGGCAAGGTGTGGCCCTGGCCTGGTCGAGGTTGCTCGGCGACCACTTGCAGACCGGCAACCTTGTCCGCCCGACCGCTAGCCTCTTGCGCACCGATGCGCAGTTTTGCCTGCTGGAACCCTTGGGGCGCGTGCCGAACCGGCAAAGTGTCAATCGCTTCCGCGAATGGCTGATGGCCTACCTTGCGCAGACGGAGGATGCCTGAMKLQPLPPLNSLVAFEAAARHLSFTVAARELNVTQGAISRQIRLLEDYLGTALFIRTTREINLTSTGSQYHESIRDTLQQIARATAGVRHWQGAQQVTVVTSTAMASLWLLPLVSEFQRQHEEIDLRIIATDQVEDFSRLDCDLALYYCSKPPNNMKVSALFSEEIFPVCSPTYLAQHPEAGRLDQLGACTWLWLEDQHRDWIGWKEWFRRLGHQAPEPRRRININSYSMLIQSALAGQGVALAWSRLLGDHLQTGNLVRPTASLLRTDAQFCLLEPLGRVPNRQSVNRFREWLMAYLAQTEDAPGPT0026360_2904DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566NANA
D1-35_023901119COG1018NADPH oxidoreductaseATGACGACCTACGAAAAGCTGACGCGGCCCCAACGTTTTACCGACCCGACGACCTGGACCGCTTATGGCTCGCAATGGCACAGCGGCGAGCAGAAAACCTTGTCATGTTGCGCCGTGCACCAGGAAACCCATGACGTAAAGACGTTCGTGTTCCAATGCGCGGACTTCAGTGCCTTGAGCTTCGAACCGGGGCAATTCATCACGCTGTCGCCGGTCATCGGTGGGCAAACCATCGCGCGCTGCTACACGCTGTCGTCCTCCCCCACGCGCCCGTTCACCTTTTCGATTACGGTCAAGCGCGTGCCGGGTGGCGTGGTCTCGAACTGGCTGCATGACCATCTCGAACCGGGAGACAACCTCAGGGCGTCCGGCCCGGCGGGCAGTTTCACACCGGTGGGTCATTCGGCGACAAAACTGCTGTATCTGTCGGCCGGTTCCGGCGTGACGCCCTTGATGTCGATGACTCGCGCCGCCTGCGACATGGCGGCCAATCTCGACATCGTGTTCCTGCACAGCGCCCGCACGCCGGCGGATATCATTTTCCATGACGAACTGACGCGAATGCAGGCCGATATGCCCGGCCTGCGGGTCATCGGCATTTGCGAAGGGCTCGGCGTTGCCAGCCAATGGCAGCAACCGATCGGTCGGCTCGACCTGCCTCTGTTGAGCCAGCAAGTACCGGACTACCACCAGCGGGAAATCTTCACCTGTGGCCCCCAGGGCTACATGGAAGCAGTCAAGGCGCTGCTCAGGGAAGCGGCGTTCGATTTTCGCCACTATCATCAGGAAAGCTTCGATATCGCGGTGCTGAATGAGGAACCGCTGATCGAGCAGGCCCCCTCACTCGACCAGCAACAGATGTTCACCGTCACCCTGTCGCGCTCTGGCAAGACCTTCAGCATGCCCGGCAACCAGACCGTGCTGAGCGCGGCAAAAAAAGCCGGGGCGATCGTGCCCTCCTCGTGCAGCCAGGGCATCTGTGGCACCTGCAAGACCGCCCTGCTGGAAGGCACGGTGGACATGAACCACAACGGCGGCATCCGGCAACGGGAGATCGACAAAGGCCTGCGCTTGCTCTGCTGCAGCAAGCCGACCTCCAATCTGATCATCGATCTCTAGMTTYEKLTRPQRFTDPTTWTAYGSQWHSGEQKTLSCCAVHQETHDVKTFVFQCADFSALSFEPGQFITLSPVIGGQTIARCYTLSSSPTRPFTFSITVKRVPGGVVSNWLHDHLEPGDNLRASGPAGSFTPVGHSATKLLYLSAGSGVTPLMSMTRAACDMAANLDIVFLHSARTPADIIFHDELTRMQADMPGLRVIGICEGLGVASQWQQPIGRLDLPLLSQQVPDYHQREIFTCGPQGYMEAVKALLREAAFDFRHYHQESFDIAVLNEEPLIEQAPSLDQQQMFTVTLSRSGKTFSMPGNQTVLSAAKKAGAIVPSSCSQGICGTCKTALLEGTVDMNHNGGIRQREIDKGLRLLCCSKPTSNLIIDLPGPT0013685_227DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013685-gbcB-K21832NANA
D1-35_023911254Carnitine monooxygenase oxygenase subunitATGAACCCAACCCTGAAAACCCATCGTGAACTGCTGGCCGACCGCACCCCGGGCCATGGCATGCCCGGCGGTCTGTTCGGCCGCGAGGATATTTTTGCAACCGACGTCGATGTGTTTTTTACCAAACACTGGATTCTGGTGGGGGTCACCAGCGACGTTGCCGAACCCGGCGATGTTTCGACGATCGATATCGGCAAATCCTCGATCATCCTGGTCCGCGATGATGACGAGCATGTGCAGGCGTTCCGCAATGTCTGCCGGCACCGTGGGGCGCGCTTGAAACAGGCCGGCAAATCGACGGTGGGCATGCTGGTCTGCCCCTATCACCAATGGACGTACGACCTGGATGGCAGCCTGAAACATGCCGCGCACATGGGCAAGGATTTCGACCCGGGGTGCAAGAGCCTGATCCCGGTCCACACCCGCGTGGTGGGTGCCCATGTATTCGTCTGCCTGAGTGACGAGCCGCCGGAAGACATCCTGTACCTCGACCAGGTCATGACCCCGCGTTTCGCTCAGTACGATCTCAGCCATTCGAAGATCGCCTACGAGTCGGAAATCATCGAAAACGGCAATTGGAAACTGGTGATCGAGAACAATCGCGAGTGTTATCACTGCGCCGCCACTCACCCCGAATTGACCGCGTCGTTCCTGCCGGAAGACTTCGGCTTCTGCACCGATGGCCTGGGCGAGGACTCGCTCCTGGCACTCAAGGAATACCACCAGCGCAACGCCGATACCAGGCAAGACTGGGAAAACCAAGGCTACCTCTGCGAGGCCGTCGAGCACCTGGGCGAGGACGCGGTGACTCAGTTCCGCACCCAGCGCCTGGCCATCGCCGGCAACGGCGAATCCCAGACCCTCGATACCCGCGTCGCCTGCACGCGCTTGTTTGGCGACCTCACCCGGCGCGATCTGGGCGACATGCACCTGTGGACCCACAACTCATGGACCCACATCATGAGCGACCATGCGGTGGTCTCCTACATCATCCCGCTGGCGCCCGACAAAACCCTGGTGCGGACCAAATGGCTGGTGCACGCCGATGCCATCGAGGGCGTGGACTACCAGGTGGATAAACTGATCGAGGTCTGGGCGGCGACCAATCTTCAAGACGCCAACCTGGTCGGCATCACCCACAGCGGCACCCAGGACCCGGCCTATTCACCCGGACCGTTCTCGGCGTTTACCGAAACCTATGTCGACCAGTTTTCTCGCTGGTACGCGGCGCGTCTGGCCGCCCATGGCGTGTGAMNPTLKTHRELLADRTPGHGMPGGLFGREDIFATDVDVFFTKHWILVGVTSDVAEPGDVSTIDIGKSSIILVRDDDEHVQAFRNVCRHRGARLKQAGKSTVGMLVCPYHQWTYDLDGSLKHAAHMGKDFDPGCKSLIPVHTRVVGAHVFVCLSDEPPEDILYLDQVMTPRFAQYDLSHSKIAYESEIIENGNWKLVIENNRECYHCAATHPELTASFLPEDFGFCTDGLGEDSLLALKEYHQRNADTRQDWENQGYLCEAVEHLGEDAVTQFRTQRLAIAGNGESQTLDTRVACTRLFGDLTRRDLGDMHLWTHNSWTHIMSDHAVVSYIIPLAPDKTLVRTKWLVHADAIEGVDYQVDKLIEVWAATNLQDANLVGITHSGTQDPAYSPGPFSAFTETYVDQFSRWYAARLAAHGVPGPT0013680_347DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013680-gbcA-K00479NANA
D1-35_023921224opuAA_1COG4175Glycine betaine transport ATP-binding protein OpuAAATGAGCACCATTCGTTTTGAAGACGTCGACGTCATCTTCGCCAGCCGCCCGAAGCCGGCGCTGGAGCTGCTCGACCAGGGTTTTTCGCGCCCGGAGATTCTGCAGCAAACCGGCCTGATCGTCGGCGTGGAGAAGGCCAATCTCGACATCAACAAAGGTGAAATCTGCGTGCTGATGGGCCTGTCCGGCTCCGGCAAATCGAGCCTGTTGCGCTGCATCAATGGCTTGAACACGGTGAGTCGCGGCAAGTTGTTCGTCGAGCACGAGGGCCGACAGATCGACATCGCCGCCTGCACCCCGGCCGAGCTGAAAATGATGCGCACCCGACGCATCGCCATGGTCTTCCAGAAATTCGCCCTGATGCCCTGGCTGACCGTGCGCGAGAACATCGGTTTCGGCCTCGAAATGCAAGGCCGCCCCGAGAAGGAGCGGCGCAAGCTGGTCGACGAAAAGCTTGAACTGGTGGGCTTGACCCAATGGCGCAACAAGAAGCCCGACGAGTTGTCCGGCGGCATGCAGCAGCGCGTCGGCCTGGCCCGCGCCCTGGCGATGGACGCCGATATCCTGCTGATGGACGAACCCTTCTCGGCCCTCGATCCGCTGATTCGCCAAGGCCTGCAGGACGAACTGCTCGACCTGCAGCGCAAGTTGCACAAGACCATCGTCTTCGTCAGCCATGACCTGGACGAAGCCCTCAAGCTGGGAACCCGGATCGCCATCATGAAAGACGGCAAGATCATCCAGTACAGCAAACCCGAGGAGATCGTGCTGAAGCCGGCCGACGACTACGTGCGCAATTTCGTCGCCCACACCAACCCACTGAATGTGCTCTGTGCGGGAAGCCTGATGACCCCGTTGGACCAGTGCATATCCGCACAGGGCGAATATTGCCTGGATACGGTGCAGAACCTCTGGGTTGCGCTGAACGCATCGAGAGGATTGGCCAGCGTGCGCCGCGGCGCTGCGGCCCAACCGCCGCAACACTGGAACCGCAACGAGGCCACCGCGCCCTTGCGCCGCCTGGTCACCTCGGTGCCGGCGGATACCGGCATGCGCGAGGCGCTGCGTATCCGCTACGAAACAGGACACCCATTGATCGTGCTCGATAAAGACCAGACCGTCGTCGGTGTACTGGGCGATACGGAACTGTACCGCGCGCTGCTCGGGCATGACCTGTCGCGCCCGGTTTTATCCGAGCCATTGTCAGAGCCTGCGGTGGCCTGAMSTIRFEDVDVIFASRPKPALELLDQGFSRPEILQQTGLIVGVEKANLDINKGEICVLMGLSGSGKSSLLRCINGLNTVSRGKLFVEHEGRQIDIAACTPAELKMMRTRRIAMVFQKFALMPWLTVRENIGFGLEMQGRPEKERRKLVDEKLELVGLTQWRNKKPDELSGGMQQRVGLARALAMDADILLMDEPFSALDPLIRQGLQDELLDLQRKLHKTIVFVSHDLDEALKLGTRIAIMKDGKIIQYSKPEEIVLKPADDYVRNFVAHTNPLNVLCAGSLMTPLDQCISAQGEYCLDTVQNLWVALNASRGLASVRRGAAAQPPQHWNRNEATAPLRRLVTSVPADTGMREALRIRYETGHPLIVLDKDQTVVGVLGDTELYRALLGHDLSRPVLSEPLSEPAVAPGPT0013630_562DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013630-gbuA|proV-K02000NANA
D1-35_02393849opuAB_1COG4176Glycine betaine transport system permease protein OpuABATGTGGACTGCACAAGAAAAACTCCCACTGGGTGAGTACATCGCCCGATACGTCGAATGGCTGACCCAAAATGGCGCCGATGTCTTCGACGCCATTTCGCTGTCGCTCTCCGAGGTCATTTCGGTCTTTACCAGCGCCCTCCTCTGGTTCAACCCGCTGGCCTTGATCGGGCTGCTGGCCCTCTTCGCTTATTACATTCAACGCAAGGTGAGCCTGACGCTCTTCGTCGCCCTGTCGTTCCTGTTGATCTTCAACCTGGGCTACTGGCAGGAAACCATGGAAACCCTGGCCCAGGTGACATTCGCCACGCTGGTGTGCGTCATCATCGGCGTGCCGCTGGGCATCGTCGCGGCGCATCGTCCCTGGTTCTACGCAACCCTGCGACCGGTGCTCGACCTGATGCAGACCGTCCCCACTTTCGTCTACCTGATCCCGACCTTGACGCTGTTCGGCCTCGGCGTGGTTCCGGGATTGATTTCCACGGTGGTCTTCGCCATTGCCGCGCCAATCCGCCTGACCTACCTGGGCGTGCGCGATGTGCCTCAAGAACTGATGGACGCCGGCAAAGCCTTCGGCTGCTCACGTCGCCAGCTGCTGGCACGCATCGAGCTGCCCCATGCCATGCCGAGCATCGCCGCCGGGATTACCCAATGCATCATGTTGTCGCTGTCGATGGTGGTCATCGCGGCGCTGGTCGGTGCGGATGGCCTGGGCAAACCCGTGGTCAACGCGCTGAATACCGCCGATATCGCCATGGGTTTCGAAGCAGGCCTGGCGATCGTGTTGTTGGCGATCATCCTCGACCGCATCTGCAAGCAGCGCGAAACCGTGAAAAGAGGTGACGCATGAMWTAQEKLPLGEYIARYVEWLTQNGADVFDAISLSLSEVISVFTSALLWFNPLALIGLLALFAYYIQRKVSLTLFVALSFLLIFNLGYWQETMETLAQVTFATLVCVIIGVPLGIVAAHRPWFYATLRPVLDLMQTVPTFVYLIPTLTLFGLGVVPGLISTVVFAIAAPIRLTYLGVRDVPQELMDAGKAFGCSRRQLLARIELPHAMPSIAAGITQCIMLSLSMVVIAALVGADGLGKPVVNALNTADIAMGFEAGLAIVLLAIILDRICKQRETVKRGDAPGPT0013635_2038DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013635-gbuB|proW-K02001NANA
D1-35_02394702hypothetical proteinATGCCCCAGGTAGGAAAGGCGCGCGGCAAGGCCCAGGACGCCGGCTGGCGAGGGTCGCCCGAAGGCTGGCTGGAAGCGGCCTACGAGGCCTTGAAGGAGTCCGGCATCGATGCGGTCAGGGTCATGCCGCTGGCCAAGCGTTTGGGATTGTCACGCACCAGCTTCTATTGGTTCTTCGAGGATCGTGAGCAGTTGCTCGCCGCCTTGCTGTCGCGCTGGCGCGAGACCAACACCGGTGGCTTGATCCGGCAAAGCGAGAGCTACGCCGAGAGCATTTCCGAGGCGATCCTGAATGTCTTCGAATGCTGGCTCAATCCTCAATTGTTCGATTCGCAATTCGAATTCGCCGTGCGCAGCTGGGCGCTCCAGTCCGCTGAAGTGGCGCAGGAAGTCGCCATCGTCGACGAGCAGCGAATGGGCGCCCTGGCGAGCATGTTCAAGCGCTTTGGTTATGACAGCCAGGGTGCCGACGCACGGGCCCGGACGATTTACCTGACCCAGATTGGCTACATCACCATGAACACCAGCGAGCTGATCACCGTGCGTTTCCAGCGCATCCCGCATTATGTGAGCATTTTCACCGGCAAAGTACCCAAGCAGCGCGAGCTGGATCGTTTCTACGGTAAATTCGGTTATGCCGAAAAAGAGCCAGGGATCTTTGTGCCGTTGACGGAAACCTTTGAAGAGACGGCCGGTAAATGAMPQVGKARGKAQDAGWRGSPEGWLEAAYEALKESGIDAVRVMPLAKRLGLSRTSFYWFFEDREQLLAALLSRWRETNTGGLIRQSESYAESISEAILNVFECWLNPQLFDSQFEFAVRSWALQSAEVAQEVAIVDEQRMGALASMFKRFGYDSQGADARARTIYLTQIGYITMNTSELITVRFQRIPHYVSIFTGKVPKQRELDRFYGKFGYAEKEPGIFVPLTETFEETAGKNANANANANA
D1-35_02395786proC_1Pyrroline-5-carboxylate reductaseATGAACGCGCCGACGCTGGGCATCATTGGCGGAACGGGCTGGCTGGGCGGGGCGATTGCCAAGGCTGTGTTGGCGCAGGCGCTGTTGCCGGCGGGTAACCTGGTTATTTCCAATCGCTCGGGTGTCCATCCTTTGGCGCAACAAGGCGTTTGTCTGGTCACGGACAACCAGGCGCTGGTGGACCGCAGCGACGTGATCATCATCGCGGTGCGCCCTGAGCAGTTCGCCGGCCTGAGCCTCAACGCTTCTGGCAAGACAGTCATTTCATTGATGGCCGGGATCACCGCGCAGGCCATTGCCGCCCGGACCTCGGCTTCGAGAGTGCTGCGGGCGATGCCCAATGCGGCGGTGGAGATCGGGCAGTCGTTTACACCTTGGTATTGCTTCGGCGTGGTGGATGCGGCGACGAAGAGCTTCGTCCAGCGCTTGTTCGGATGCGTCGGTACTGCCGCCGAGGTTGAGCAGGAAGACTTCATTGATTACCTTTCCGCGCTTTCCGGCACCGGCCCGGCCTTTCCCGCCTTGCTCATGACAGCCCTGGCCAATCAGGCGATGGAGGCCGGCATCCCCGCCGAGATTGCACAGCTTGCGGCGAAGAATGTCGTGGTCCACAGCAGCCAGTTACTGGCCAGCCATGACGCCGGGCAGATGATCGACGCCCTGGTCGCCTACCGCGGCGTGACCGCCGCCGCCCTCCAGGCGATGACCGAGGGACATTTCGAGGAGCAGGTGGGGAAGGCATTGCAAGCCGGCGCCACGGTCGCCCGCCAGGGCCTGCAAGCCTGAMNAPTLGIIGGTGWLGGAIAKAVLAQALLPAGNLVISNRSGVHPLAQQGVCLVTDNQALVDRSDVIIIAVRPEQFAGLSLNASGKTVISLMAGITAQAIAARTSASRVLRAMPNAAVEIGQSFTPWYCFGVVDAATKSFVQRLFGCVGTAAEVEQEDFIDYLSALSGTGPAFPALLMTALANQAMEAGIPAEIAQLAAKNVVVHSSQLLASHDAGQMIDALVAYRGVTAAALQAMTEGHFEEQVGKALQAGATVARQGLQAPGPT0014225_5653DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_PROLINE_DEGRADATION,PGPT0014225-proC-K00286NANA
D1-35_023962037stcD_1putative N-methylproline demethylaseATGTCCAGCGATCCTCTGCTGCAGCCCTACAAGATCAAGCATCTGACCCTCAAGAATCGGATCATGACCACCTCCCACGAACCCGCGTATCCCGTGGATGGCATGCCGAAGGATTTGTACCGCGCCTATCACGTCGAACGGGCGAAGGCCGGCGTTGCGTTGACCATGACCGCAGGCTCCGCTGCGGTTTCACGGGACAGCCCGCCGGTGTTCAACAACGTGCTGGCGTACAAGGACGAGGTGGTCAAATGGATGAAGGACCTGACCGACGAATGCCACGAACACGGCGCCGCGGTGATGATTCAACTGACCCACCTGGGGCGGCGCACGCGCTGGGACAAGGCTGACTGGCTACCGGTCGTCTCGCCGTCCCATCGCCGCGAAGCGTCCCACCGGGCGTTCCCGAAAAAGATGGAAGACTGGGACATCGACCGGATCGTCAAGGACTACGTGGACGCCGCCGAACGCATGAAGGCCGCCGGTCTCGACGGTTTGGAACTGCAGGCCTACGGGCACCTCATGGATCAATTCTGGTCGCCACTGACCAACGATCTCGACGGCCCCTACGGTGGTTCGCTGGAAAACCGCATGCGCTTCACCTTCGATGTGTTGCGCGGCATCCGCCAGCGCTGCGGTGAGGACTTCCTGCTGGGGGTGCGCTACACCGGCGATGAAGACCTGCCCGGCGGCTTTGGCGCCAGCGATGGCCTGCAGATTTCCCACATGCTCAAGGACAGCGGGCTGGTAGATTTCCTCAACGTCGTGCGCGGGCACATCGATACCGATGCCGGCCTCACCGACGTGATCCCGATCCAAGGCATGCGCAACTCGCCGCATCTGGATTTTGCTGGCGAGATCCGCTCCGCCACCGGTTTCCCGACCTTTCATGCAGCGAAGATCCCGGACGTCGCCACGGCGCGACACGCCATCGCCTCGGGCAAGGTGGACATGATCGGCATGACCCGCGCGCACATGACCGACCCGCATATCGTGCGCAAGATCATCGAAAAACGTGAAGAAGAGATCCGCCCTTGCGTTGGCGCCAACTATTGCCTGGACCGCATCTATCAGGGCGGCGCCGCGTATTGCATCCACAACGCCGCCACCGGGCGCGAAACCACCATGCCCCACGAAATCCCCAAGGCGCCGCTCAAGCGCAAGGTGGTGGTAATCGGCACCGGCCCGGCGGGCCTGGAGGCGGCACGGGTGGCCGGCGAGCGCGGCCATGCAGTCACCGTGTTCGAAGTGGCCGACCAGCCAGGCGGGCAGATCCGCTTGACCGCGCAGAGCGAGCGCCGCCGCGAGATGATCAGCATCATCGACTGGCGCATGGCGCAATGTGAACGCCTTGGCGTGAAGTTCCAGTTCAACACCTGGGCCGAAGCCGAGACGGTGATGGCCGAAGAACCGGACGTGGTAATCGTCGCCACGGGCGGCCTGCCCCACACCGAGGTGCTCAAGCAAGGCAACGAACTGGTGGTGTCGACCTGGGACATCGTTTCCGGCGATATCAAGCCCGGCCAGAACGTGCTGATCTTCGACGACGCCGGCGACCACGCGGCGCTACAGGCGGCCGAGATCATCGCCAGCAGCGGCGCGAAACTGGAAATCGTCACGCCCGACCGGTCGTTCGCACCGGAGGTGATGGCGATGAACCTGGTGCCTTACATGCGCAGCCTGCAAGACCTGAACGTCACCTTCACCGTCACCTATCGGGTCGATTCCGTGGAAAAACGCGACGGTCAACTGGTTGCGCACTTCGGCAGCGACTACGGCCAGGTGCACAAGCAGCGTGTGGTCGATCAGGTGGTGGTCAACCACGGCACCCTGCCCCTGGACGATTTGTACTTTGAGTTGCGGCCGTATTCGAGCAACAACGGCGCGGTCGAGCAGCACAACCTGATCGCCGGGAAAACCCAGAATATCGTGACCAACCCCGGAGGCCGCTTCCAGCTGTTCCGGATCGGCGACGCGGTGTCGGCGCGCAATACCCATGCGGCCATCTACGATGCGCTGCGGTTGGTCAAGGACATCTGAMSSDPLLQPYKIKHLTLKNRIMTTSHEPAYPVDGMPKDLYRAYHVERAKAGVALTMTAGSAAVSRDSPPVFNNVLAYKDEVVKWMKDLTDECHEHGAAVMIQLTHLGRRTRWDKADWLPVVSPSHRREASHRAFPKKMEDWDIDRIVKDYVDAAERMKAAGLDGLELQAYGHLMDQFWSPLTNDLDGPYGGSLENRMRFTFDVLRGIRQRCGEDFLLGVRYTGDEDLPGGFGASDGLQISHMLKDSGLVDFLNVVRGHIDTDAGLTDVIPIQGMRNSPHLDFAGEIRSATGFPTFHAAKIPDVATARHAIASGKVDMIGMTRAHMTDPHIVRKIIEKREEEIRPCVGANYCLDRIYQGGAAYCIHNAATGRETTMPHEIPKAPLKRKVVVIGTGPAGLEAARVAGERGHAVTVFEVADQPGGQIRLTAQSERRREMISIIDWRMAQCERLGVKFQFNTWAEAETVMAEEPDVVIVATGGLPHTEVLKQGNELVVSTWDIVSGDIKPGQNVLIFDDAGDHAALQAAEIIASSGAKLEIVTPDRSFAPEVMAMNLVPYMRSLQDLNVTFTVTYRVDSVEKRDGQLVAHFGSDYGQVHKQRVVDQVVVNHGTLPLDDLYFELRPYSSNNGAVEQHNLIAGKTQNIVTNPGGRFQLFRIGDAVSARNTHAAIYDALRLVKDIPGPT0021970_166DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_STACHYDRINE_USAGEPLANT_DERIVED_STACHYDRINE_DEGRADATION,PGPT0021970-hpbA-K22551NANA
D1-35_02397102hypothetical proteinATGACCGGCGCGCATACGCCGGATCACCCCTGTTTCGACTGGATGGTAATCCTGGTTATTCCCCCGCGCAAGAAAAATGTACACCTGTGTCTCAATCGTTGAMTGAHTPDHPCFDWMVILVIPPRKKNVHLCLNRNANANANANA
D1-35_02398750etfB_2Electron transfer flavoprotein subunit betaATGAAAGTGCTCGTTGCGATAAAGCGCGCCATCGACCCGAATGTGAAAGTCCGGGTGAAGGCTGACGGTTCAGACGTTGAGCTCAACGGCGTGAAAATGGCCTTGAATCCGTTCTGCGAGATCGCGGTTGAAGAGGCGATTCGCCTCAAGGAAAAAGGGCTGGCAACCGAAGTGGTGGTGGTCTCGGTGGGCACATCGGCCGCCCAGGAACAACTGCGCACGGCGTTGGCACTCGGTGCGGACCGCGCACTTCTGGTCGAGACCAGCGCGATTCTCGAGCCGCTCAACGTCGCCAAGTACCTGAGCAAAGTGATTGATCAGGAACAACCGCAACTGATCCTGTTCGGCAAGCAGGCGATCGACCAGGAAAACAATCAGGTCGGGCAAATGGTCGCGCAATTGATCGGCAGCGGTCAGGCCACTTACGCCTCGGCAGTCAATCATGTCGACGGGCAATGGCTCGTCGAGCGTGAGGTCGATGGGGGCAGCCAGGTGGTCGCGCTGTCGACGCCGGCCGTGGTGACTTGCGATCTGCGCCTGAATCAACCGCGCTACGCCTCGTTGCCGAACATCATGAAAGCCAAGAAAAAGCCCTTGGAAACCATCGCCGCCGACAGCTTGGGCGCGAGCGTGAAGCAACACGCTCGATTGCTCGGTGTTGTCCCTCCACCGGTACGCAAAGCAGGCATCACGGTCGCTTCGGTGACCGAGTTGGTGGATAAACTGAAAACCGTTGCGGGGGTGATTTGAMKVLVAIKRAIDPNVKVRVKADGSDVELNGVKMALNPFCEIAVEEAIRLKEKGLATEVVVVSVGTSAAQEQLRTALALGADRALLVETSAILEPLNVAKYLSKVIDQEQPQLILFGKQAIDQENNQVGQMVAQLIGSGQATYASAVNHVDGQWLVEREVDGGSQVVALSTPAVVTCDLRLNQPRYASLPNIMKAKKKPLETIAADSLGASVKQHARLLGVVPPPVRKAGITVASVTELVDKLKTVAGVIPGPT0001035_4233DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0001035-fixA|etfB-K03521NANA
D1-35_02399936etfA_2COG2025Electron transfer flavoprotein subunit alphaATGCGCACATTGGTGATCGCCGAGCACAGTGTCGGTCAACTGACGGCAGGCACCTGGAGCGCCGTGGGCGCTGCCGTGGCGTTGGGTGCTGAAACGGATTTGCTGGTGATGGGCGGGACGGACGCCTCGGCCGTGGCGCAACAGGCAGCGCTGGCCCAAGGCCTGGACCGGGTGCTGCTCGCACAGGCGGAGGTATTCGAAAATGCCCTGGCTGAAAACGTCCAGCCGCTGATCACGTCGCTGGTGGCCGAGGGGTATACACACGTCGTTGCCGATGCCAGCAGCATGGGCCGCAATCTGCTGCCACGGGTCGCGGCGAGCCTGGATGTGGGCATGCTTTCGGACGTTACCCACATCGTCTCGGCGGACACTTTCCAGCGGCCTGTTTATGCCGGCAATGCCATCGCCACGCTGCAGTCACTGGATCCGATCAAGTTGCTCACGGTGCGCGCTTCGGCATTCGCCCCAGCGTTATCCCATGACAAACCCTGCGAAGTGGTTGCAGTGGACGGCGGACAAAGCGCCAGCAACGTGCGTTTGGTGAGCGAACAACTGACGGCCAGCGAACGGCCCGATCTGTCGAGCGCCCGCGTCGTCGTTTCCGGTGGCCGCGGGATGCAGAGCAAAGAGAACTTCGCCCTGATCGAGCGAGTGGCCGACAAGCTCGGCGGTGCCGTGGGGGCCTCCCGCGCTGCTGTTGATTCGGGATTCGCGCCCAACGATTTGCAGGTCGGGCAGACGGGCAAGATCGTCGCGCCGGAGCTTTATATTGCCGCAGGCATCAGTGGCGCCATTCAACATCTGGCGGGCATGAGCGGTTCAAAGGTCATCGTCGCGATCAACCAGGACGCCGAGGCACCGATTGCCCAGGTGGCGGATTACCTGTTGGTGGCGGATTTGTTCGAGGCGTTGCCGGCACTCGAAAGGGCATTGTGAMRTLVIAEHSVGQLTAGTWSAVGAAVALGAETDLLVMGGTDASAVAQQAALAQGLDRVLLAQAEVFENALAENVQPLITSLVAEGYTHVVADASSMGRNLLPRVAASLDVGMLSDVTHIVSADTFQRPVYAGNAIATLQSLDPIKLLTVRASAFAPALSHDKPCEVVAVDGGQSASNVRLVSEQLTASERPDLSSARVVVSGGRGMQSKENFALIERVADKLGGAVGASRAAVDSGFAPNDLQVGQTGKIVAPELYIAAGISGAIQHLAGMSGSKVIVAINQDAEAPIAQVADYLLVADLFEALPALERALPGPT0001040_4066DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0001040-fixB|etfA-K03522NANA
D1-35_02400900hypothetical proteinATGATGACCTTACCCCGTAAAACTTTTATCGGCTGGTTTGCCGGCCTTGCATTGGCCTGCGGCAGCCTGATCGCTCAAGCCGAGGAACCCGCGCCCATTCGTATCGGCTGGGTGAACTGGTCGGATACGGAAATCGCCGTGAAGCTGGCGAATACCGCGTTGCAGGATCATCTCAAGCAACCGGTCAAGCTGGTACTGGCCGACATCGGCATCCAGTTCCAGGCACTGGCCAACGGCAATATCGATTTGATTCCGATGGTCTGGCTGCCGAGCACCCACAAGTCCTTCTATGACAAGTACAAGGACAAGCTCGAAGACCTCGGCGTCCTGTATGAAGGCCGGATCGGCATGGCGGTGCCCACCTCGATTCCTACCAGTGAGATTGCCAGTGTCGAAGACCTCAACAAACCCGAAGTGCGGGAGAAGCTCGGCGGCAAGATTCTCACCTCGGAAGTGGGCAATGGTCAGTACAAGCTGACGGAAAAAGCCATCAAGGAATACAAGCTCGACGGCTACAAGATGGTTGCGTCTTCAGAGTCCGGCATGCTGAGTGAACTGGATCGCAACATCAAACGGGACAAGTGGTCGTTGGTCAACGCCTGGAGCCCCCACTGGATGTTCGCCAAATGGCCGCTGCGTTACCTGGATGATCCAAAGCAGATATTCGGTGGCGCCGAGCAGATCCACGCGATTGCCCGCAAAGGTTTCAGCGCCGAACATCCGGACGTGGCGCGCTTCTTCGCCAACTTCAAGATCCCGAAAGCGGACCTTGAGAAGTTGATGGCGGATGCCCGCGAAAGCACTGCGGACAAGGTGGTTGCCGAGTACTACGCGGCGAACAAACCGCGCTTCGAAGCGATGTTCGGCAGCCAGACTGCTTCCGCTACGCCAGCCCCGTAAMMTLPRKTFIGWFAGLALACGSLIAQAEEPAPIRIGWVNWSDTEIAVKLANTALQDHLKQPVKLVLADIGIQFQALANGNIDLIPMVWLPSTHKSFYDKYKDKLEDLGVLYEGRIGMAVPTSIPTSEIASVEDLNKPEVREKLGGKILTSEVGNGQYKLTEKAIKEYKLDGYKMVASSESGMLSELDRNIKRDKWSLVNAWSPHWMFAKWPLRYLDDPKQIFGGAEQIHAIARKGFSAEHPDVARFFANFKIPKADLEKLMADARESTADKVVAEYYAANKPRFEAMFGSQTASATPAPPGPT0013640_3222DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013640-gbuC|proX-K02002NANA
D1-35_02401954cdhR_5COG4977HTH-type transcriptional regulator CdhRATGAACGCGATGATCGAGTCCCAGAAAACATCGAGCGTGGGCTTCCTGTTGCTCGATAATTTCTCCCTGACCTGTTTCACCCAATGCCTGGACGTGCTCGTCACCGCCAATTTGATTCAGCCAGGGTCGATAAAAATCCATACTTTCAGTCGCAACGACTCTGAAGTGATCAGCGACCTGGCAATCCCCATCAGGCCAGACACACCGTTGACCGATATCAGGATCGCGGCGCTGGACTTGATGATTGTCTGCGGCGGCCTGCGCACGCCGAGGGTACTCCCCCACGGGTTGGTAACGCTGCTGACCAAACTGGCGAACCTGCCCATTGCGCTCGGCGGCTTATGGAACGGCGCCTGGTACCTGGGCAAGGCTGGACTGCTGGATGGTTACCGATGTGCTATTCATGCCGAACAACGAATGGCCTTGTCGGAGTGTTCACCGAAAACCACGGTGACGCTGGATACAGTGGTGTTCGACAGGGACCGATTCACCGCGTCAAACCCTGCCGGCGCGTTTCAGATCATGATGAAATGGCTGTACGCGGCCCTCGACCCGAAAGTTGCGGACGCGGTGTTTGACCTGTTGGACCATGAGTCTCGGTTTCGTACCTCGGCCAAGGTCCTGGACCGCAAAGTCAGTGCGTGCCTGCGGGAAGTCATTGCATTGATGGAATGCAACCTTGAAGAACCTTTGAGCCTGGACTTGCTCGCTCAATGCGTTCAGCTTTCCAAGCGCCAGATCCAGCGCCTGTTTCGCAGGCAGATCAATATGTCTCCGCAACGCTACTATCTGGAACTACGGCTGACCGAGGCACGGCGCCTGCTACAGAACTCCAGGCTGAGCGTCACGGATGTCGCCATTGCCTGCGGGTTTGTCTCTACCCCTCACTTCAGCAAGTGCTATAGCACGCTCTTTGGCTGTCCTCCTTCGAAGGAAAGTCGCTACGAGATATAGMNAMIESQKTSSVGFLLLDNFSLTCFTQCLDVLVTANLIQPGSIKIHTFSRNDSEVISDLAIPIRPDTPLTDIRIAALDLMIVCGGLRTPRVLPHGLVTLLTKLANLPIALGGLWNGAWYLGKAGLLDGYRCAIHAEQRMALSECSPKTTVTLDTVVFDRDRFTASNPAGAFQIMMKWLYAALDPKVADAVFDLLDHESRFRTSAKVLDRKVSACLREVIALMECNLEEPLSLDLLAQCVQLSKRQIQRLFRRQINMSPQRYYLELRLTEARRLLQNSRLSVTDVAIACGFVSTPHFSKCYSTLFGCPPSKESRYEINANANANANA
D1-35_024021362dddPCOG0006Dimethlysulfonioproprionate lyase DddPATGCCCCCTTCACCTTTTTCGATTCCAGCCAATGCCCGGCGCATCGACCCGGCGAGGCAGCGTGCAGTTGCACTGAAAAAAGACGGCTCCGTCGACGACAACAACCGCGTCGAGATAGGCCCTACGCCGCTGGCGTTTGCGGAGTGGGAGCGGCTGGGCCTGGAGCCGCCCCATTTGCCCACCCTGCGCAAGTACCGATTGCAACGGATAGTCGATCAACTGGTCGTCCGTGACCTGGGTGGCATCCTGTTATTCGATCCGCTGAATATCCGCTACGCGACCGATACCACCAACATGCAACTGTGGACGACTCATAACCCCGCACGGGCATGCTTCGTCGCCGCCAGCGGGCATGTGGTTTTGTGGGATTTTCATGGCTGTGATCACTTGTCCGCCCACTTGCCGCTGGTGACGGAGCTACGCAGCGGGGCATCGTTTTTCTTTTTCGAGACCGGTGAACACACGGATCGACACGCCAGGCATTTCGCCGCGCAACTCGACGATTTGCTGCGCCAACACGCCGGAGTCAACCGACGGCTTGCGGTCGATCGAATAGAAGTCGCCGGCGTGCGCGCCCTGGATGCCTTGGCGATCGAAATTTGCAGCGGCCAGGAAGTGACCGAATTCGCGCGCATGATCAAGGGCCCGGATGAAATCAAGGCGATGCGCTGTGCGGTGGCTTCATGCGAAGCGTCAGTGGCCGAAATGCACCAGGCAATGCGCGCCGGCGCGACCGAAAACGATGTCTGGGCCGCGCTGCATTCCGGCAATATCCGCCGCGGTGGCGAATGGATCGAGACGCGCATCCTCAGTTCCGGTCCTCGCACCAACCCCTGGTTCCAGGAGTCCGGCCCACGCGTGTTGAACGACGGCGACCTGCTGTCATTCGACACGGATCTGATCGGCACCTACGGCATGTGCGTGGACATGTCCCGCAGCTGGATCTGCGGGGGTCTGGAGCCCATGCCCGAACAGAAGCGCCTGTACCGGATCGCCCATGACCATATCGTCCATAACACCGAGTTGATCAAGCCAGGCGTACGCTTCACCGAGCTGACCGCCAAGGCGCACCGGTTGCCCGAACCGTGCCGGGCTCAACGGTATGGCGTGCTTTATCACGGCGTCGGGCTGTGTGACGAGTACCCGAGCATTCGTTATCCGGAGGACCTGGAGTCCTACGGATACGAGGGCGAACTGCAGCCGGGCATGGCCCTGTGCGTCGAGGCGTATGTCGGTGAGGTGGGCGGACAGGATGGCATCAAGCTGGAGAACCAATTGCTGGTGACCGAGGCCGGTTATGAGTTACTCACCCACTACCCTTTCGATGACAGTTTCCTGCGGGATACGAAGCGCAACTCATGAMPPSPFSIPANARRIDPARQRAVALKKDGSVDDNNRVEIGPTPLAFAEWERLGLEPPHLPTLRKYRLQRIVDQLVVRDLGGILLFDPLNIRYATDTTNMQLWTTHNPARACFVAASGHVVLWDFHGCDHLSAHLPLVTELRSGASFFFFETGEHTDRHARHFAAQLDDLLRQHAGVNRRLAVDRIEVAGVRALDALAIEICSGQEVTEFARMIKGPDEIKAMRCAVASCEASVAEMHQAMRAGATENDVWAALHSGNIRRGGEWIETRILSSGPRTNPWFQESGPRVLNDGDLLSFDTDLIGTYGMCVDMSRSWICGGLEPMPEQKRLYRIAHDHIVHNTELIKPGVRFTELTAKAHRLPEPCRAQRYGVLYHGVGLCDEYPSIRYPEDLESYGYEGELQPGMALCVEAYVGEVGGQDGIKLENQLLVTEAGYELLTHYPFDDSFLRDTKRNSPGPT0002906_15DIRECT EFFECTBIO-FERTILIZATIONSULFUR_ASSIMILATION|MINERALIZATIONS-ASSSIMILATION-SULFUR_METABOLISMS-METABOLISM-DMSP_DEGRADATION,PGPT0002906-dppP|dddP-NANANA
D1-35_024031491puuC_1COG1012NADP/NAD-dependent aldehyde dehydrogenase PuuCATGGCTGATTTACTGACCAAGGAACAGTACGCGGCCATCGCCGCCAAGTTGCAGTTTCCTACCCAGGCCTTCATCAACGGCGAGTTCCGCGATGCGCTCTGTGGAAAGACCTTCATCACGACGAACCCTGCCACGGGTGAACAGCTTGCAGAGGTAGCGGCTTGCGATACCCGTGACGTCGACGTTGCCGTGGCTGCCGCCAAGCAGGCGTTCGAGGATGGCCGCTGGCACAAACTGTCGCCCGGCGCACGCAAGCAGGTGCTCCTGCGTTTCGCCCAGTTGCTGGAAGACAATGCCCATGAGCTCGCGGTGCTGGAAAGCCTGGACAGTGGCAAGCCGGTCAGCGAATGCCAGAACGTCGATGTGCCCGACACCATCCATACCTTGCGCTGGCATGCCGAGTTGATCGACAAGGTGTACGACAGTACCGCGCCGACCGGCCACGGTGCCGTAACGATGGTGGTGCGCGAAGCGATCGGCGTGGTCGGCCTGGTCCTGCCTTGGAACTTCCCGCTGTTGATGCTGGCCTGGAAGATTGGTCCTTCCCTGGCCGCCGGCTGTTCCATCGTGGTCAAGCCCGCCAAGGAAACCACCCTGACCGCGCTGCGTGTCGCCGAGCTGGCCCATGAGGCTGGTATTCCGGCCGGTGTATTCAACATTACCCCTGGCGGTGGTCGCGAGGCTGGCGAGGCAATCGGCCGACACATGGATGTGGCGATGGTCAGCTTCACCGGTTCTACCGACACAGGCCGGTTGTTCCTCAAGTACGCGTCCGAGTCGAACCTCAAGCGCGTGGTGCTGGAACTGGGGGGCAAGAACCCCGCCGTGGTGATGAATGACTGCGAAGACCTCGATCAGGTTGCCCAGTATGTGACCGCCGGCGCTTTCTGGAACATGGGCGAGAACTGCTCGGCGTCGTCGCGGCTGATCGTCCATGAAGAGGTCAAGGAAGAGTTGCTGCAACTGATCGGCAAGCACCTGCGCGATTGGAAAATGGGCGACCCGCTGGATCCGCAAAATCGCCTCGGGGCCATGATCAGCAAAACCCATTTCGAGAAGGTGCGTTCGTATCTGGAGTATGCGGCCGAGCAGAAACTCAATGTGCTGCAAGGTGGCGAGACCGAGTCCGGTGTGTACGTGCAGCCGACGATCATCGACGGTGTTGAACGTGACAGTCGCCTGTTCATCGAGGAGATCTTCGGCCCGGTCCTGAGCGTCACCCGCTTCAGCACGATCGACGAAGCCATTGCGCTGGCCAACGACACGGTCTACGGCCTGGCGGCATCTGCCTATACCGGTAGCCTGCGTAACGCTTTGCGGCTGTCGCGGGAAATTCGGGCGGGCGTGGTCACGGTCAACTGTTTCGGTGAAGGCGACGCCTCCACGCCGTTCGGCGGCTACAAGGAGTCCGGTTTTGGGGGGCGTGACAAATCCGTCTGGGCACACGATCAGTACACCGAGCTGAAAACCATCTGGATCGATGCTTCGTAAMADLLTKEQYAAIAAKLQFPTQAFINGEFRDALCGKTFITTNPATGEQLAEVAACDTRDVDVAVAAAKQAFEDGRWHKLSPGARKQVLLRFAQLLEDNAHELAVLESLDSGKPVSECQNVDVPDTIHTLRWHAELIDKVYDSTAPTGHGAVTMVVREAIGVVGLVLPWNFPLLMLAWKIGPSLAAGCSIVVKPAKETTLTALRVAELAHEAGIPAGVFNITPGGGREAGEAIGRHMDVAMVSFTGSTDTGRLFLKYASESNLKRVVLELGGKNPAVVMNDCEDLDQVAQYVTAGAFWNMGENCSASSRLIVHEEVKEELLQLIGKHLRDWKMGDPLDPQNRLGAMISKTHFEKVRSYLEYAAEQKLNVLQGGETESGVYVQPTIIDGVERDSRLFIEEIFGPVLSVTRFSTIDEAIALANDTVYGLAASAYTGSLRNALRLSREIRAGVVTVNCFGEGDASTPFGGYKESGFGGRDKSVWAHDQYTELKTIWIDASPGPT0007638_420DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINE_USAGEPLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007638-puuC|ordL-K09472NANA
D1-35_02404903dapA_2COG03294-hydroxy-tetrahydrodipicolinate synthaseATGAAGTTTGAAGGCATTTACACACCGGCCGTTACGCCCCTGACCTCAGACGGCAGTATCGATAAGACAGCCTTCGCCGACGTCCTGGAGTATCTGGTCGACGCCAAGGTACACGGCATCATTATCGGCGGCTCGACCGGCGAATATTATGCCCACACCGCCCAGGAGCGTTTCGACCTGGCTGCCCAGGCCAAGGACGTGCTGCGCGGTCGCCTGCCGCTGATCGTGGGGACCGGCGCCATCCGCACCGAAGACTCCGTCGCCTACGCCGAAGCGGCGAAGGCGATCAAGGCCGATGCGCTGCTGGTGGGTTCACCGCCCTATGCACTGCCAACGCAAAAGGAAATCGCGCTGCACGTCAAGGCAGTGGACCGCGCCGCCAATCTCCCCATCATGCTTTACAACTATCCAGGCCGCATGAGCGTGAGCATGGGCACGGAGTTCTTTGATGAGGTCCGTGATGTGAAGAACATCGTCGCCATCAAGGAAAGCTCCGGCGACATGGCGCAGATGCACCGCCTGGCCTGCAAGTATCCGCACATCGCTCTGTCTTGCGGCTGGGACGACCAGGCCCTGGAGTTTTTCGCCTGGGGCGCCCGCAGTTGGGTGTGTGCCGGTTCCAACTTCATTCCCCGTGAACACGTCGCGCTGTACGAGGCCTGCGTGGTCGAGAAGAACTTCGACAAAGGTCGCCGAATCATGGCGGCGATGATGCCGCTGATGGATTTCCTGGAAGGTGGAAAATTTGTCCAGTCCATCAAGTACGGCTGTGAACTGAACGGCTTGAGCACCGGTGGCCTGCGTGCCCCCCTGCACGGCCTGGACCTTGATGAGAAACAGGCGCTGCAAAGTGTCGTCACCGAGCTCAAGCGCAACATCGCGCAAATCACTGGAGGTGCATGAMKFEGIYTPAVTPLTSDGSIDKTAFADVLEYLVDAKVHGIIIGGSTGEYYAHTAQERFDLAAQAKDVLRGRLPLIVGTGAIRTEDSVAYAEAAKAIKADALLVGSPPYALPTQKEIALHVKAVDRAANLPIMLYNYPGRMSVSMGTEFFDEVRDVKNIVAIKESSGDMAQMHRLACKYPHIALSCGWDDQALEFFAWGARSWVCAGSNFIPREHVALYEACVVEKNFDKGRRIMAAMMPLMDFLEGGKFVQSIKYGCELNGLSTGGLRAPLHGLDLDEKQALQSVVTELKRNIAQITGGAPGPT0002080_3656DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISMCE-BACTERIAL_FITNESS-RHIZOPINE_BIOSYNTHESIS,PGPT0002080-dapA|mosA-K01714NANA
D1-35_024051320puuB_2Gamma-glutamylputrescine oxidoreductaseATGTTGAAAGTCTCTTCGTTACCTGCCGATGATCAGTCTTGCGGGTGGTATCACTTGAGCAGGGGGCGCCAGGTCAAGCCCGCCCATCAAGGTCACGACAGCGCACGTTGGGTGATTGTCGGTGCCGGTTTTACCGGGCTCGCCGCCGCCCGGCAGCTCGCGACTCATTTCCCCGACGACCACATTGTGTTGATCGACGCTCAGGAAATCGGCTTTGGCACTTCCGGTCGCAATGCCGGATTCGCTATCGACTTGCCGCATGACATCGCCGCAGAAGATTACATCGGTGATATCGCCACTGCCAAAACAACCCTTAAACTCAATTTGAGCGGCCTGAGCTATCTAAAAGAATTGGTTGAACGCCACAACATCAATTGCCAGATGAAGCATTGCGGCAAATATCAGGCGGCCGTTGAACCACGGGGCATCGCTGTCCTGGAAGCCTACCGTCGCGGACTCGATAAGCTCGATCAACCCTACCAGATGATCGAGGCTGGCGAACTACCCGAACATATCGGCACGCATTTCTACCGCAAGGCCTTATTTACGCCAGGGACTTCCTTGCTTCAGCCGTCGGCGCTGGTCAAAGGTCTGGCCGACAGCCTTCCCGGCAACGTGACACTCTACGAAAACACCGCGATCACGCATGTCGAGTACGGCACCAGGACGGTGCTCAAGCACGCCGGGGGCTCAATCACCGCCGACAAACTGATCCTGACCAATAATGCCTTTGGCATGAGTTTCGGCTTCCTGAAGGGGCGAATGCTACCAGTGTTCACCTATGCCAGCCTGACCCGTCCCATGACCGAGCAAGAGCAAGCTCGCCTGGGCGGCCGGCCTTATTGGGGGGTGATTCCCGCGGACCCATTCGGCACCACGGTACGTCGCACTCCGGACAACCGCCTGTTGATCCGTAACAGTTTCAGCTTCAACCCCGACGGCCGCAGCGATACAAAATATCTGAAACGCTTTGTCGCCAGGCATCAAGCCTCTTTCGAGCAACGCTTTCCCATGTTGCCCGCGATGAACTTCGAATATACCTGGGGCGGTGCACTGGCTCTTTCGCGTAACCATATGGGTTATTTCGGCGAACTTTCACCCCATGTCTATGGGGCTCTTTGCTGCAATGGCCTGGGTGTTACCCGCGGGACGGCGACCGGAAAACTCCTGGCGGATTGGCTGGCCGGCGAACACTCCGAACTTATTGATTTTGTCTTGAAATCACCCGGCCCCAGCCCTAATCCACCCGGCCCGCTGGTTTCAGCGGGCGTCAATATAAGTTTGCGCTGGGGGCAATACCGCGCCGGTAAAGAAAGTTGAMLKVSSLPADDQSCGWYHLSRGRQVKPAHQGHDSARWVIVGAGFTGLAAARQLATHFPDDHIVLIDAQEIGFGTSGRNAGFAIDLPHDIAAEDYIGDIATAKTTLKLNLSGLSYLKELVERHNINCQMKHCGKYQAAVEPRGIAVLEAYRRGLDKLDQPYQMIEAGELPEHIGTHFYRKALFTPGTSLLQPSALVKGLADSLPGNVTLYENTAITHVEYGTRTVLKHAGGSITADKLILTNNAFGMSFGFLKGRMLPVFTYASLTRPMTEQEQARLGGRPYWGVIPADPFGTTVRRTPDNRLLIRNSFSFNPDGRSDTKYLKRFVARHQASFEQRFPMLPAMNFEYTWGGALALSRNHMGYFGELSPHVYGALCCNGLGVTRGTATGKLLADWLAGEHSELIDFVLKSPGPSPNPPGPLVSAGVNISLRWGQYRAGKESNANANANANA
D1-35_024061029ousXCOG2113Glycine betaine-binding periplasmic protein OusXATGTCTGAATTCAAGCTCTCCCGCAGCATTCTCAATTGCGCTACAGCCCTCGCCATTGCGGCCATGTCCCTGTGCGCAAACGCCTCGGCGAACCAACCGGGCGACGGTGTGAAGGTCACCCCCATCTTCCCGTCCATCGCTGAAGAGCGTTTCCGTGGCGAAGTGGCCATGGAAGGGCTGCGAGGGCTGGGTTACAAGGTGCAGGAGCCCAAGGAGACCGAATACGGCGTCATGATGATGGCCTTGGGTAGCGGTGATGCGGACTTTACCGTGCATTTGTGGGACAAGTTGCACGATAAATTCTTCCAGCAGGCCGGGGGTGATAAAGCCATGGTCAAGGCGGGCGACATCATGCCCGGTGTACTTCAAGGTTATCTGATCGACAAAAAGACCGCTGAAGCGCACAACATCAAGTACATCACCGACTTGAAGAAACCGGAAATCGCCAAGCTGTTCGACACCAACGGCGACGGCAAGGCAGACATGACGGGCTGTAATCCTGGCTGGGGCTGCGAGCTGATCATTGCCCATCACATGAAGGCCTATGACCTGGAAAAAACGGTCACGGTCAACCAGGGTTCCTATTTCGCGCTGATGGCTGACACCATTACCCGTTATAAGGAAGGACAGCCGATTCTCTACTTCACCTGGGTCCCACAGTGGATTGCCACCGTTCTGGTCGAAGACAGGGATGTGGTCTGGCTGGAAGTACCGAAAACCGACCTGCCTGATGGCAACAATAACGTTGACACGATGTACAAGGGCAAGAATCTCGGCTTTGCAGTGGATAAGGTCGAGGCCGTGTTGAATAAAGAGTTCGCCGACAAAAATCCGGCAGCCTTGAAGTTCCTTTCGGTGATGCAGATTACTACCGCTGACGAAAGTGCCCAGAACCTGAAGATGCAACAGGGCGAGAAAAAGCCTGCGGATATTCGCCGCCACGCCAAGGAGTGGGTAGCCGCCCATCGGCAGCAGTTTGATGCCTGGTTACAAACTGCTCGCGCGGCAGCGACACAAGCCAGCAATTGAMSEFKLSRSILNCATALAIAAMSLCANASANQPGDGVKVTPIFPSIAEERFRGEVAMEGLRGLGYKVQEPKETEYGVMMMALGSGDADFTVHLWDKLHDKFFQQAGGDKAMVKAGDIMPGVLQGYLIDKKTAEAHNIKYITDLKKPEIAKLFDTNGDGKADMTGCNPGWGCELIIAHHMKAYDLEKTVTVNQGSYFALMADTITRYKEGQPILYFTWVPQWIATVLVEDRDVVWLEVPKTDLPDGNNNVDTMYKGKNLGFAVDKVEAVLNKEFADKNPAALKFLSVMQITTADESAQNLKMQQGEKKPADIRRHAKEWVAAHRQQFDAWLQTARAAATQASNPGPT0013640_557DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013640-gbuC|proX-K02002NANA
D1-35_02407954ousWCOG4176Glycine betaine/choline transport system permease protein OusWATGTCCGAGTTCAGTTTTCTCGACCCGTTCCAAGTCGCCACCATTCCACTCGGCGATTGGGTGGAAAGCACCCTGAATTTTCTGGTGCACAACTTTCGCGATGTATTTCGCGCCATCCGCTGGCCGATTGACCAGGTACTTAACGGCGTTGAGTTCATTCTGCAGAGCATTCCGCCGAGCATCGGCATCCTCCTGTCTTCATTGCTCGGATGGCAACTCGCTGGTAAACGCATGGCGTTGCTGTGCTTTGTGACGCTCACACTGCTGGGTTTGATCGGTGTCTGGTCCGAGTCGATGACGACCCTGGCGCTGGTACTGACCTCGGTGTTCTTTTGCGCGCTGCTGGGTATTCCACTGGGTATTCTCTGTGCCCGCAGCGACAACCTGGAAAAGGTCCTGCGGCCCATCCTCGATGCCATGCAGACACTGCCGGCGTTCGTTTATCTGGTGCCGGTCGTCATGCTGTTCGGCATCGGCAACGTGCCGGGCATCCTTGTGACGATTGTCTTCGCCCTCCCCCCTCTGGTGCGCCTGACGAACCTGGGCATCCGCCAGGTGCCGGAGGACAAGATAGAAGCGGCCCGCGCGTTTGGTTGCACACCGCGGCAGATGCTCACCCGTGTCCAGCTGCCACTGGCGACGCCAACCATCATGGCGGGACTCAACCAGACCCTGATGCTCTCGCTGTCGATGGTGGTCATCGCCTCGATGATCTCGGTGGGCGGCCTGGGACAGATGGTCCTGCGCGGCATCGGTCGCCTGGACATGGGCCTGGCCACGGTCGGCGGGACGGGCCTGGTACTGCTCGCCATCTTCCTTGACCGCCTGACCCAAGCCATGGGCGCGCGCACCGGCGCCGACCCGAGCCTGCGCTGGTATCACACCGGTCCCGTAGGTCTGCTGCTACGCCTGTTCGGCGCAAGACAGCCTGCGGGGCGGAGCAAGACCGCCTGAMSEFSFLDPFQVATIPLGDWVESTLNFLVHNFRDVFRAIRWPIDQVLNGVEFILQSIPPSIGILLSSLLGWQLAGKRMALLCFVTLTLLGLIGVWSESMTTLALVLTSVFFCALLGIPLGILCARSDNLEKVLRPILDAMQTLPAFVYLVPVVMLFGIGNVPGILVTIVFALPPLVRLTNLGIRQVPEDKIEAARAFGCTPRQMLTRVQLPLATPTIMAGLNQTLMLSLSMVVIASMISVGGLGQMVLRGIGRLDMGLATVGGTGLVLLAIFLDRLTQAMGARTGADPSLRWYHTGPVGLLLRLFGARQPAGRSKTAPGPT0013635_1112DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013635-gbuB|proW-K02001NANA
D1-35_024081161proVCOG4175Glycine betaine/proline betaine transport system ATP-binding protein ProVATGACTAGTTCAGACGAAATCATTTCTGTTAAGAACGTTTTCAAGATATTCGGCGCACAACCCGACGCGGCGATGAAGATGCTTGCCGCTGGCGCCTGCAAAAAAGATGTGTTTGAGAAAACAGGTCAGGTTATTGGTGTTTTCGACGCCAGCTTCGCCGTCAAGCGTGGCGAAATCTTTGTGATCATGGGGCTCTCGGGTTCTGGCAAGTCGACGATGGTGCGTTTGTTCAACCGGCTTATCGAGCCCACCTCCGGCAGCATTTATCTGAACGGTCGGGAAATTACCGGGCTGGCTGATAAAGCCCTGCTTGATGTTCGCCGTAAAGAGATGGGCATGGTGTTCCAATCCTTCGCCCTGATGCCTCACATGAGTGTCCTGGAGAACACCGCCTTCGGCCTGGAAATTTCCGGCATCGCCGAAAAGGAACGGCATAGCCGCGCCAGGGAAGCCCTCAGCCAGGTCGGTCTTGCTGGCCAGGAGCACAGTTATCCGCATCAACTTTCCGGCGGCATGCAGCAACGCGTAGGCCTGGCCCGTGCGCTGGCCAACGACCCGACCATCCTGCTGATGGACGAAGCCTTTTCCGCGCTGGACCCGCTTATCCGCAGCGAGATGCAGGGGGAGCTCATTCGCCTGCAAGCCGAACAGAAGCGGACCATCATTTTCATCTCCCACGACATCGAGGAAGCCGTTCGCATCGGCCACCGCATCGCGATCATGGAGGGCGGCCAGGTGGTGCAGATCGGCACGCCTCAAGAGCTGATCAGCCAACCCGCCAATGACTATGTGCGCACCTTTTTCAAAGGGTTCGACAGTTCACGGATTCTCAAGGCGGGCGACGTGGCCAGGCTTGATCCGGAATGGGTTCGTAAAGCGAATGGCCAGGCGCCCCACTTCAAGGCCGGCCTTCCGTTCGGTTACCTGGTCGATGAACGAGGGCAACTGCTCGGGGTCGTCGACATCGATACCAGTGGCGCGGGTGGCGGCACACATCACACCCAGCACCAACACCAGCCGGTATTTACCGATACGCCCCTGCACGAAGTATTGGAAATTGCGGCCAACCTGCCGTATCCGGTCCCTGTACTGGACCGCTCGGGCGCGCTCACCGGGACCCTGTCAAAGAGCGAGTTGCTGCAAACGCTGAGCCGCCATTGAMTSSDEIISVKNVFKIFGAQPDAAMKMLAAGACKKDVFEKTGQVIGVFDASFAVKRGEIFVIMGLSGSGKSTMVRLFNRLIEPTSGSIYLNGREITGLADKALLDVRRKEMGMVFQSFALMPHMSVLENTAFGLEISGIAEKERHSRAREALSQVGLAGQEHSYPHQLSGGMQQRVGLARALANDPTILLMDEAFSALDPLIRSEMQGELIRLQAEQKRTIIFISHDIEEAVRIGHRIAIMEGGQVVQIGTPQELISQPANDYVRTFFKGFDSSRILKAGDVARLDPEWVRKANGQAPHFKAGLPFGYLVDERGQLLGVVDIDTSGAGGGTHHTQHQHQPVFTDTPLHEVLEIAANLPYPVPVLDRSGALTGTLSKSELLQTLSRHPGPT0013630_1584DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013630-gbuA|proV-K02000NANA
D1-35_02409969gcvA_4Glycine cleavage system transcriptional activatorATGCTCAGCAGACACGTTGACCCCGATACATTACTGCTTAGAATGCCTTCCCTCAGGGCTGTCAGAGCGTTTGTCGCCGCCGCCAAATATGAAAGCTTCACTCGGGCGGCAGAGGCACTTTGTGTATCGCAAGCGGCGATCAGTCGGCAGATCCGGGAGCTTGAGGACTCCTTGGGCGCTCAATTGTTCATGCGTGCCGGGCGGACGGTAGAGCTGACCGCCGAGGGGAAGATTTTTTTTGAGGCGGCGCAACTGTCCTTCGTTAATATCGCACAGGCGGCTGAAAGGATTCGTACCACGCCGACGCAGAAGCACATTCTGACTGTTTGTTGCTCACCCGCATTCTCCGCATTATGGCTGTCGGAACATCTTCCAGAGTTTCGTGCAACGAACCCGGATATCGAGTTCAATCTGATCACTACCCAGAACTTTGTGAATATGGAGCCTGGCGTAGAGCCGGACATCATCATCTCGAAGATCCGCAAGGTCGGGGACGGGTACAAGAGTTATCAGTTGTGCCACGACATTATTTATCCTGTTTGCTCTCCCGTGTTCCTGGAGGCGCACCCCGAACTGACTTCGCTTGAAGGCGTGCGCGATTCTTCGCTACTCAATCTGAGTCCCTATGGCCGGTCGGGGGTGGCTGAGCATGTTGACTGGGGGGTATGGCTGGCGTTTCTGAACGTTGATATTGATGAGCGTCCTGGTGACTGCCCGCCTATTTTTCATGCCAATGACTACAACCTGATCATGAATATGGTCTTGACCCATCAGGGCGTAGCACTGGGCTGGAACCAGCTGGTCGGGGCCATGGTCGAGAGGGGGCAGCTTGTTCGTCCCGTCGAGCAGCAGGTGACGCTTCGAAACAGTCTTCATTATGTTGCCTGTAATGAAAGGACTGAATATGAAGATGCCTGTCGGAGAGTGCGAGACTGGATCCTCTCGAAGTTTTCCAGATTGGCTGTATAAMLSRHVDPDTLLLRMPSLRAVRAFVAAAKYESFTRAAEALCVSQAAISRQIRELEDSLGAQLFMRAGRTVELTAEGKIFFEAAQLSFVNIAQAAERIRTTPTQKHILTVCCSPAFSALWLSEHLPEFRATNPDIEFNLITTQNFVNMEPGVEPDIIISKIRKVGDGYKSYQLCHDIIYPVCSPVFLEAHPELTSLEGVRDSSLLNLSPYGRSGVAEHVDWGVWLAFLNVDIDERPGDCPPIFHANDYNLIMNMVLTHQGVALGWNQLVGAMVERGQLVRPVEQQVTLRNSLHYVACNERTEYEDACRRVRDWILSKFSRLAVPGPT0026360_545DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566NANA
D1-35_024101236Carnitine monooxygenase oxygenase subunitATGAATATCAGAACATCCGTGATCGACCTGATTCAAAAGCGCAAGGCGCGCCACGCGCTTCCTCGCGAACTGTACATTGAACCTGAGGTTTTTCGGCAGGATCTTGAGCAGATCTGGCACAAGGACTGGATCTTTGCCGGGCATACCTTTGAGCTTGAAAAACCCGGGCAATACCTGACATTGCAGATCGGCGACTATCCCGTCCTGGTCGTCAGGGATAAAAGTGGTCAGGTCCGGGCTTTTCACAACGCCTGTCGTCACCGTGGCTCCAAAGTTTGCGAGCACGCCCAGGGCAAAGTCGCAAAACTGGTCTGTCCTTATCATAAGTGGACTTTCGAACTGGACGGCAGTCTTTTGTTTGCCGGTAACATGGGCGCCGACTTCGACAGGTCGCAGTACAATTTGAAGCCTGTCCATTGTGAAGTTGTTCACACCTACATTTATGTCTGTGTCGCTGACAAGGCGCCGGAATTCGACAGTTTCAGAAATGCTGTAAGTCCGTTTATAGCCCCGCATTTCCTGGATAACTGCAAGATCGCTTTCGAGTCCAACCTCATTGAAAAGGGTAACTGGAAACTTGTCTTTGAAAATAATCGCGAGTGCTTCCACTGCGACGGTACCCATCCGGAATTGATGAACTCCTTTGTCGAGAACCTTTCGGTGGCCGGGGTGGGCGGCGAAGATGATCCCGAACTGAGCGCACACTGGAATCGCTGCGAGACCGCGGGTATGCCGAGCAAGCTGGTCATGGATCCCAATGGCCGGTTTCGTATGACACGCATCCCACTTTCGGCAGGCGCCGTGAGTTACACAATGGACGGTAAACCTGCTGTGGCGGGACGCCTGGATAAAAGCGGCGAGCCGGATATTGGCGCCTTGCTGTATTTCAACTACCCATCTACCTGGAACCACTTCCTTGGTGATCATGCGTTGAGCTTCCGCGTCCTCCCGATCGGACCGGACGAAACGCTTGTCACGACCAAATGGCTGGTGCCCAATACCGCCGTTGAAGGTGTTGACTACGAGATTGATCGGTTGACCAAGGTCTGGCTTGCCACCAACGATCAGGACCGTCGTTTGGTGGAAGGTACGCAGGCCGGTATTACCTCACCGAGTTACGAGCCGGGACCCTTTTCGGACATCGCGGAAAACGGTGTATGCCAGTTTGACGATTGGTACTGCGAAATCATGCTTAAGCGGCTCCAGGCCCATATTCCGCTCAAGTCGGTGGGCTGAMNIRTSVIDLIQKRKARHALPRELYIEPEVFRQDLEQIWHKDWIFAGHTFELEKPGQYLTLQIGDYPVLVVRDKSGQVRAFHNACRHRGSKVCEHAQGKVAKLVCPYHKWTFELDGSLLFAGNMGADFDRSQYNLKPVHCEVVHTYIYVCVADKAPEFDSFRNAVSPFIAPHFLDNCKIAFESNLIEKGNWKLVFENNRECFHCDGTHPELMNSFVENLSVAGVGGEDDPELSAHWNRCETAGMPSKLVMDPNGRFRMTRIPLSAGAVSYTMDGKPAVAGRLDKSGEPDIGALLYFNYPSTWNHFLGDHALSFRVLPIGPDETLVTTKWLVPNTAVEGVDYEIDRLTKVWLATNDQDRRLVEGTQAGITSPSYEPGPFSDIAENGVCQFDDWYCEIMLKRLQAHIPLKSVGPGPT0013680_537DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013680-gbcA-K00479NANA
D1-35_02411894dapA_3COG03294-hydroxy-tetrahydrodipicolinate synthaseATGTCCGCATTCGCTTTTTCCGGCCTCAACCTGGCCGTGACCACGCCTTTCGATGCCCAAGGCAAGATCGACTATCCGCGCTTCGAAACGTTGCTTGAGCACTATCTCGTGGCCGGCGTGGAGGGCTTTGTCCTGAGTTCGGGGACCGGCATGCATGTCTACCTTAGCCAGGAAGAGTCCAGGCAATTGGTTGCCTTCGGCACCAGCGTCATCAAGGGTCGTGCTCGCGTCATTGTGCAAACCTCTGCCTTGCTGGTGGACGAAGTAGTGCAGCGCACCCGCCACGCCGCCGGGTGTGGCGCCGATGGCGTCATGGTGCTGCCGCCGTTTTTCGAAGGCCCAACCGACGACCAGTGCATCGTTGACTTCTACTCCACAGTGTCCGAAGCCGGGTTGCCGATCATTGGCTACAACGTGCCTCAGGCGGTGGGTGTGGAAGTCACTCCGTCGCTGTTTCGCCAGTTGAGTGAGATTCCGAACTTCGTGTCGGTCAAGGACAGCAGTGGTGACCTTGCCGCCCAAGCCGCGCTGATCCGCACGGGCCTGCCGACGATGAATGGCGCCGATGCACTGGTGCCCTACGCGCTCTTCGCCGGGGCCGCAGGCCTGATCTGGGGCGGCGCGAACATGGCCCCGCGCGCTTGCGTTGCCGTGGTAGAGGCCGCCATGAGGCACGACTGGATCAGTGCCCGGGAGATCTGGCGGTCGATAGAGCCGGTGATGTCGTTGATCTGGCAGGGTGACTATGTGCAGTCGGTCTACGCCGCTGCCGAGATCACCGGCTACGGAGCGGGAAACCCGCGTCGGCCGTTGGCGCGTTTGGCTGCTGGTAAACTCGACGCGCTCAAGGTTGCCCTTGAACCGTTGATCGCGCTTGAATCTGACCTCGCCTGAMSAFAFSGLNLAVTTPFDAQGKIDYPRFETLLEHYLVAGVEGFVLSSGTGMHVYLSQEESRQLVAFGTSVIKGRARVIVQTSALLVDEVVQRTRHAAGCGADGVMVLPPFFEGPTDDQCIVDFYSTVSEAGLPIIGYNVPQAVGVEVTPSLFRQLSEIPNFVSVKDSSGDLAAQAALIRTGLPTMNGADALVPYALFAGAAGLIWGGANMAPRACVAVVEAAMRHDWISAREIWRSIEPVMSLIWQGDYVQSVYAAAEITGYGAGNPRRPLARLAAGKLDALKVALEPLIALESDLAPGPT0002080_4739DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISMCE-BACTERIAL_FITNESS-RHIZOPINE_BIOSYNTHESIS,PGPT0002080-dapA|mosA-K01714NANA
D1-35_02412888hypothetical proteinATGAGCAACCAGTCGGACAGCGCGGCACCTGCTTACGATGTGCCCAGGCCTCAGCTCGGTATCATCCTGTGCCTTCTCTCGATGCTGGTGTTCGCCAGCCAGGACGGGATTACCAAGGTCCTGGTCAAGGATCTCCCGATTGCGCAGCTGGTGATGGTGCGCTACTGGGCCTTCCTGGTTTTCGCTGTCGGCTATGGCGTCTTCCAGGGAAGCCTGCGCACCGCCTGTCGAAGCCGCCACCCCTGCCTGCAGATCATTCGCGCCTTGATCGGCGTGGGTGAAATCGCCTTGTTCGGACTGGGGCTGCGCTACCTTGGGCTGGCGGAAATGCACGCGCTGTATGCAGTCTTCCCGCTGATGACGCTGGCCTTGGCTGGAGCGTTCCTGGGCGAGTTCATCGGGGTTCGTCGATGGATAGCCGCCGCCATCGGTTTTACGGGGACACTGGTTATCCTTCGCCCCGGCACCGGTGTCTTCGAGCTGGCGGCGCTGGTCCCGTTGTTGTCTGCCCTGGGTTTTGCGATTTTCAGCGTGTTGACCCGGCGCATCAGCCAGCATGATTCGTTCGCTACGAACCTGCTTTACATGGGGTTTTTCGGCGCGATAGCCATCACCTTGTGGGGGCTTCCAGGTTGGGTTTCGCCAAGCCCGATGCAATGGGCCCTGATCGCGGTGCTTTCCACTACCGGGGTTGTGGCCCAGCTGTTGTTGCTCCAGGCGCTGAAGTACGCAACGGCAGCCACGCTCCAACCGTTCAACTACACCTTGCTGGTGTTCGCCACGCTGATTGGCCTGCTGGTATTCGGTGAGCTGCCCGACACCTGGACCGTGGTGGGTGCATGTCTGGTGATTGCGGGTGGGATGTATGCGATCAAGGCGAAAGGGTAGMSNQSDSAAPAYDVPRPQLGIILCLLSMLVFASQDGITKVLVKDLPIAQLVMVRYWAFLVFAVGYGVFQGSLRTACRSRHPCLQIIRALIGVGEIALFGLGLRYLGLAEMHALYAVFPLMTLALAGAFLGEFIGVRRWIAAAIGFTGTLVILRPGTGVFELAALVPLLSALGFAIFSVLTRRISQHDSFATNLLYMGFFGAIAITLWGLPGWVSPSPMQWALIAVLSTTGVVAQLLLLQALKYATAATLQPFNYTLLVFATLIGLLVFGELPDTWTVVGACLVIAGGMYAIKAKGNANANANANA
D1-35_024131944pctACOG0840Methyl-accepting chemotaxis protein PctAATGAATATCAAACAGAAGCTGACATGGGCGTTCGCGACCATTGCCTGCCTCCCGGTTATCCTGGTGGCGGTGCTCGTTGTATTGAACCTGCGCGATGCGGCACAAGCCAACTTCCTGGACAGCAGCGGCCGCGAGATCCGCCAGATCGACAACGGCATGAAGCAGTTCTTCGACGGCATCATGCAGAACGTCGAGTTCTTCGCCAAGGACCCGCGGATCGTCGCGGCCAAGGACCTGAAGAACTACTCGGGTGCTGAGGCCGCGCAGATCCCGCTGACCGAGAACAACAAACAGCTGCTGGCGATTTTCGACCAGTTCGCCAAGAGCCATCCAACCACCGCCTACCTGTCCCTGGGCCTGGCGGACGGTGGCTATGCCAGCTGGCCGGATGATCCGAAGATTTCCAACTACGACCCGCGCGTACGCCCCTGGTACAAGGCGGCTATTGCAGCGCCTGGCACCACCGTGAAAACCGATGCCTATTACTGGGCGCCGGACGACGTGTCGTTGATCGGCATCGTGCACACGGTCGCCGATGCCAGCGGCAAGGTGGTCGGCGTGGTCGGCCTCGATGTGTCGCTCAAACAGCTGACCGAACTGGTCAAGAACATCAAGCTGGGCGACAGCGGCTACCTGATGCTGGTGGAGGCCAGCGGCAACGTGCTGGTCGACCCGGCCGAGGCCAAGCACAACTTCAAGCCGCTGGCCGACCTCGGCCCCAATTACGCCGCGCTGGCCAAGAGCAGCGATGGCGCCACCCAGATCGAGATCGATGGCGTGCCCTACATGGCCAACATCGTCACCTCCAAAAGCCTGGGCTGGCGCTTCATCGGCCTGATCAAGCGCGACGAAGTGATGGCCGAGGCTTCGAGCCTGACCTGGTTGATCGCCGCCATCGCCGCCGCGCTGGCCGTGGTCTTCGCCATTGTCGGCGCCAGCTTCGCCAGCGTGATCGTGCGGCCGATTCGTGGTGTTGCCAATGGCCTGCAGGAAATCGCCGAAGGTGAAGGCGACCTCACCCGCAAACTGTCGGTGCAGGGCAAGGACGAAACGGCCACCCTGGCGGGTTGGTTCAACCAGTTCCTGGCCATGATCGCGCAACTGATGCAGCGCATCGGCAGCGCTTCTTCCGACCTGCAAACTGCCGCGGCCGATACCAGCAACGTGGCCCAGAACATGAACGATGCCGCCGGGCGCCAGCGCCAGGCCGTGGAGCTGGTGAGCACCGCGTTCAACGAAATGGTCGCCACCGCGAACGAGGTGGCCCGCTCCTGCAGCCAGGCCGCCGTCAGCGCGGACACCGGCTATCGCGATGTACACGACGGCCAACATCATATCGGCGAAGCCACCGGCAGTGTGCTGAAGCTGAGTGAGGAATTGCAGCAGTCGACCCAGACCATGCAAGCGCTGGAGCAGGACAGCAAGAACATCAACACCATCCTCGACACCATCCGTTCGATCGCTGAACAGACCAACCTGCTGGCGCTCAATGCGGCCATCGAAGCGGCGCGCGCGGGCGATCAGGGCCGCGGCTTTGCCGTGGTGGCCGACGAGGTGCGCGCCCTGGCGCGGCGTACCGCCGATTCCACCGGCGAGATCGACAGTCTGCTCGGCAACCTCGCGCGGCGCACCCAGGAAGTGACGCAACAGATGCAGAACAGCCTGCAGGTGTCGCACACCAGCGTCGAACGCATCCAGCAGGCTCGCGACAGCTTCGACAAGATCCGCACCTCGGTGGACTCGATCCGCGACCAGAACACCCAGATCGCCACCGCCGCGGAGCAACAGCACCAAGTGGCGGAAGACATCAACCGGCACATCGCGCAGATCCATTCCGATGCGCAACTGGTCGAGGAATTCGCCCATACGGCGCAGACCGGTTCGGGGCGGCTGACCGATATTTCCGGCCAGCTCAAGGGGCTGGTGGGACGCTTCAGGTTCTAAMNIKQKLTWAFATIACLPVILVAVLVVLNLRDAAQANFLDSSGREIRQIDNGMKQFFDGIMQNVEFFAKDPRIVAAKDLKNYSGAEAAQIPLTENNKQLLAIFDQFAKSHPTTAYLSLGLADGGYASWPDDPKISNYDPRVRPWYKAAIAAPGTTVKTDAYYWAPDDVSLIGIVHTVADASGKVVGVVGLDVSLKQLTELVKNIKLGDSGYLMLVEASGNVLVDPAEAKHNFKPLADLGPNYAALAKSSDGATQIEIDGVPYMANIVTSKSLGWRFIGLIKRDEVMAEASSLTWLIAAIAAALAVVFAIVGASFASVIVRPIRGVANGLQEIAEGEGDLTRKLSVQGKDETATLAGWFNQFLAMIAQLMQRIGSASSDLQTAAADTSNVAQNMNDAAGRQRQAVELVSTAFNEMVATANEVARSCSQAAVSADTGYRDVHDGQHHIGEATGSVLKLSEELQQSTQTMQALEQDSKNINTILDTIRSIAEQTNLLALNAAIEAARAGDQGRGFAVVADEVRALARRTADSTGEIDSLLGNLARRTQEVTQQMQNSLQVSHTSVERIQQARDSFDKIRTSVDSIRDQNTQIATAAEQQHQVAEDINRHIAQIHSDAQLVEEFAHTAQTGSGRLTDISGQLKGLVGRFRFPGPT0015710_9353DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_024141032cdhR_6COG4977HTH-type transcriptional regulator CdhRATGCCCAGCGCATTCGAAAGCGTACTCAAGAACAAGAACATGGCCTATCGCCCCCAAGGGGCTGCGCCTGAGGGACAAGCGCCGGTGCGCGTCGCGTTTGTGCTGATGGACAACTTTTCCATGATGTCCTTTACCGGCGCGGTGGACGCGCTGGTCACCGCCAACCTGATGAGCGACATGCCGCTTTATGAAGTGCTGACGGTGGGCGCTTCGGGCGGGCAGGTGACGAGTGACCTGGGCATCGTGATTTCCACCGATATCGAGCTGGCGCAATTGCCCGATAACCTCGACGTGCTGATTGTCGCCGGAGGCTTTCGTGTGAAGTTGCAAGGCACGCCGTTATTGCGGCGCAAGCTGCGCGCCCATGCGACGTCCGGGGCGATAGTGGGGGGGTTGTGGAACGGCGTTTTTTTTGTGGCAGAGGCGAACCTGCTCGATGGTTTCGAATGCGCGGTCCATCCGGAAAGTCGGGCGACGATGGCCGAAATGTTCCCCCATGTGAAAGTCACCAGCCGCGCCTATGTCGTGGACCGCGAGCGAGTCAGCTGCGCGGGCGCCAACAGCTCGCTGCGCATGATGCTCCAGCTGATCCGCCGCACCGGCGGCGAGGCGCTGGTGGGGGCAATCGAAGAGATCCTTCGCTGCGATGAATCAGGGGATGACGCCACGGACCTGCCGCCGATCTTCGTCGAGACCGATCCGACGCTGCCGGAAAGCCTCAAGCTGGCGTTGGAACTGATGTGGCAGAACGTCGAGGAGCCCTTGACGATCGATGAGCTGGCGGCCTGCGTCAAGGTCTCCAAGCGCCAGCTGGAACGGCGGTTCTGCCGGTTCCTCGGTGCGACCCCGACGCGTTATTACCTGGAACTGCGCCTGACACGCGCACGCCAGCTCATCCAGCAGACCAACCGCTCGGTGACCGAAATCGCCGTGGCCACCGGCTTCGTCAGCTCCCCGCATTTCCAGCGACGTTTCCGCGATTTTTTTGGTGTGCCGCCGGGTAGCTATCGTTCGACGTTTGGGCGCAAGTAAMPSAFESVLKNKNMAYRPQGAAPEGQAPVRVAFVLMDNFSMMSFTGAVDALVTANLMSDMPLYEVLTVGASGGQVTSDLGIVISTDIELAQLPDNLDVLIVAGGFRVKLQGTPLLRRKLRAHATSGAIVGGLWNGVFFVAEANLLDGFECAVHPESRATMAEMFPHVKVTSRAYVVDRERVSCAGANSSLRMMLQLIRRTGGEALVGAIEEILRCDESGDDATDLPPIFVETDPTLPESLKLALELMWQNVEEPLTIDELAACVKVSKRQLERRFCRFLGATPTRYYLELRLTRARQLIQQTNRSVTEIAVATGFVSSPHFQRRFRDFFGVPPGSYRSTFGRKNANANANANA
D1-35_024151212hypothetical proteinATGCACACCCAATCCACGGCGCTGGACTCATCCCCGACGGGCATCTGGCTGCCGATATTCGCCGGCCTCTGCGCCAGCCTCGTCAGCATCGGCCTCGCACGCTTCGCCTACACGCCGTTGATTCCGTCGCTGATCGAAGCGCATTGGTTCAGCGCCAACGACGTGGTTTACCTGGGAGCGGCGAACCTGGTGGGCTACCTGATCGGCGCCCTGCTCGGCCGGCCCATGGCTCGGCGCCTGGGCAACAAGCAGGCGCTGCGCCTGATGATGCTGGCCGTGACGGCGGCATTTTTTGCCTGCGCCTTCCCGGTGTCGGTGATCTGGTATTTCGCTTGGCGGCTGCTGTCGGGCATCGCTGGCGGCGCGATCATGGTGCTGGTGGCGGCGACCGTACTGCCGCATGTGCCCGCCGCGCGCAGAGGCTTGGCCAGTGGTGCGATTTTCCTTGGCATCGGGCTGGGTATCGCCGGCTCCGGAACGATTGTGCCGCCGCTGTTGAGCCACGGTCTGCAGGCGACCTGGCTGGGGCTCGGCGTGTTGTCACTGGTGCTGACCGGGCTGAGCTGGTTCGGTTGGCCGCAAGATTCTGCCCAGGCGACAAGCGTCGCGAAACACGCCACACCGGCCGAACCCACGCCCCGCGCCGTGTATCAGCTGTTTGCCCAATACGCCTTCATGGCGGCAGGGTTGGTCCCGGCAATGGTGTTCCTGGTGGACTACGTAGCGCGGGGCCTCAAGGCCGGCGCCCATGTCGGTGCGCTGGTCTGGGTGATGTACGGCCTCGGCGCGATTATCGGCCCGGTGACCTACGGCCTTCTCGCCGACCATCTGGGCGCGCGCAAAAGCATACGACTGGTGCTGGCCGTCCAGGCCGTTGCCCTTGGCCTGCTGGCGATTACCCAGAGCTTCCTGGCGCTGGCGGTACTGGCCGTGCTGATCGGCTCGTTCCCGCCGGGCATCGTGCCGTTGGCCCTGGCCCGGGTGCACGAACTGGTGCCGGACCATCATCGCCAGCAAGTCGCCTGGAGCCGCGCCACCGTTTCATTCGCAACCTTTCAGGCGCTCGCCGGGTTCGGCTATTCGGCGCTGTTCAATGCCAGTGGCGGACAGCATGCGGTGCTGTTCCTGGTTTCTGCGGGGGCGATCGTGGTGGCGCTGCTGCTCGATTTCACGCCCAAGCTGTTCGCAAGGACCGCAACCGCGGACGACTAAMHTQSTALDSSPTGIWLPIFAGLCASLVSIGLARFAYTPLIPSLIEAHWFSANDVVYLGAANLVGYLIGALLGRPMARRLGNKQALRLMMLAVTAAFFACAFPVSVIWYFAWRLLSGIAGGAIMVLVAATVLPHVPAARRGLASGAIFLGIGLGIAGSGTIVPPLLSHGLQATWLGLGVLSLVLTGLSWFGWPQDSAQATSVAKHATPAEPTPRAVYQLFAQYAFMAAGLVPAMVFLVDYVARGLKAGAHVGALVWVMYGLGAIIGPVTYGLLADHLGARKSIRLVLAVQAVALGLLAITQSFLALAVLAVLIGSFPPGIVPLALARVHELVPDHHRQQVAWSRATVSFATFQALAGFGYSALFNASGGQHAVLFLVSAGAIVVALLLDFTPKLFARTATADDNANANANANA
D1-35_02416876hypothetical proteinATGAATTGGGATGACGCGCGGGTGTTTCTCGCGGTATGTCGGGAGTCGACACTGCGTGGAGCGGCCCGGATACTGGGCGTGGATCAGGCGACCGTGGGGCGACGGATCGTCGCGTTGGAAAAATCCTTGAGCGCCGCGTTGTTCCTGCGCACCTCCGACGGTTATGCGCTGACGGCGGTGGGCGAAGCGGCGCTCAAGGCCGTGGAGAAAATGGAGCAGTCGGCCCTGGAGCTTGAGCGTCGCATCCAGGGCCTGGACGATCGGCTGATCGGCAACGTACGCGTCGCCACCACCGATTCGTTGGCGATCGATTTCCTCATCCCGGCCATCGCCCGCCTGCATGCGCGGCATCCCGACGTCCGCGTGCAACTGGACGCCTCCACGCAGATCATCAGCCTGGTCAAGCGTGAAGCGGACATTGCCGTGCGCAATACCCGGCCCGACAATCCTGATCTCATCGCCCGGCGGATTGCGCGCTGGCCGGTGGGGCTGTTCGCCTCCCAGGATTACGTCGACGCTCATGGGGAGCCTGCGCCGGGCAGTGCTTTCGAAGGGCATGACCTGGTGGTCTATCAACCGTACTGGCAGGGCCAAAAGGATTTCACCCTGGTGGCCGAACCGGTCGGCCGAGGACGGATTGTCGCCAGCCTGAGCTCAAGCCTGCTGGTACGCAGGTCGATCGGGGCGGGGATCGGGGTGGGAGAAATTCCGGTGTACATGGGGGAGCGCGACGGGCTGGTGCGGCTCTGGCCGCAGCGCACGCGACCGCTGCCATATGAGGTGTGGCTGGTAACTCACGCGGATCTGCGCCACACGGCGCGGGTGCGGGCGGTGATCGATGAGATCGTCGCGGCGTTTTCCAAGGAGAACGAGTAGMNWDDARVFLAVCRESTLRGAARILGVDQATVGRRIVALEKSLSAALFLRTSDGYALTAVGEAALKAVEKMEQSALELERRIQGLDDRLIGNVRVATTDSLAIDFLIPAIARLHARHPDVRVQLDASTQIISLVKREADIAVRNTRPDNPDLIARRIARWPVGLFASQDYVDAHGEPAPGSAFEGHDLVVYQPYWQGQKDFTLVAEPVGRGRIVASLSSSLLVRRSIGAGIGVGEIPVYMGERDGLVRLWPQRTRPLPYEVWLVTHADLRHTARVRAVIDEIVAAFSKENENANANANANA
D1-35_02417723yhhW_1COG1741Quercetin 2,3-dioxygenaseATGCTGACCCTTCGCAAAGCTTCTGATCGCGGCATCGCCCGTCACGGCTGGCTGACGTCGTTCCATACCTTTTCCTTCGCCAACTACCGCGACCTCAACCAACAGGGTTTTTCCGACCTGCTGGTGATCAACGACGATCGGGTTGCCGCCGCCAAAGGTTTCGGCCAGCACCCACACCGGGACATGGAAATTTTCTCCTACGTGCTCGAAGGCGCGCTGGAGCACAAGGACACCCTGGGCACGGGCTCGGTGATTCGTCCGGGTGATGTGCAGTTGATGAGCGCCGGCAGCGGCGTGGCCCACAGCGAGTTCAATCACAGCGCGGACGAGCCGGTGCACTTCCTGCAGATCTGGATCGTGCCCAATGTCGTGGGCGCTACGCCGCGCTACCAGCAGGAGCACTTCAGCACCGAACAGAAACGCGGTCGCCTGCAACTGATCATCTCCCCGGACGGCGCCGAGGGGTCGTTGCACGTACGCCAGGACGCACGGGTGTATGCCGGGCTGTTCGATGGTCAGGAAAGCGCCACGCTGACCTTGGCCGCTGATCGTTATGCCTATGTGCATGTGGCCCGGGGCAGCGTCGAGCTCAACGGCGTGGCGTTGCAGGAAGGCGACGGTGTGCGGGTACGCAACGAACAGGCACTGACGCTGGGCAACGGCCAGGATGCCGAGGTGCTGGTGTTTGACCTGCGGCCGCAGGAACTGCCGCAAATGCCATAAMLTLRKASDRGIARHGWLTSFHTFSFANYRDLNQQGFSDLLVINDDRVAAAKGFGQHPHRDMEIFSYVLEGALEHKDTLGTGSVIRPGDVQLMSAGSGVAHSEFNHSADEPVHFLQIWIVPNVVGATPRYQQEHFSTEQKRGRLQLIISPDGAEGSLHVRQDARVYAGLFDGQESATLTLAADRYAYVHVARGSVELNGVALQEGDGVRVRNEQALTLGNGQDAEVLVFDLRPQELPQMPPGPT0019980_4508DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_FLAVONOID_UTILIZATIONPLANT_DERIVED_QUERCETIN_DEGRADATION,PGPT0019980-yhhW|pirA-K06911NANA
D1-35_02418951cdhR_7COG4977HTH-type transcriptional regulator CdhRATGAAAACCGTTGCAATGGTGCTGTTCCCCGATTTCCTGCTGCTCGACATGGCCGGGCCGCTCGAAGTGTTTTCCATCGCCAATCGTTTTCTCGCGCCGGAGCAGCACTATCAGTTGCTGACCCTGGGCACCGAGCGCGGGGCGTTGCGAGCCTCCAACGGGGTGACTGTCCAGGCCGACATCCATATCGACCAGGCTTGGGCGGCCTACGACGTACTGCTGGTACCGGGCGGGCCTGGTGCCTATAACGACAGGCATCCGGGCTTGCACACCTGGTTGCGGGCGTCGGCGCAGCGGGCCACGCGCTACGGGTCGATCTGCACGGGAGCCTTCATCCTGGGAGAGGCGGGCTTGCTCGACGGCTATCGGGTCACCACCCATTGGCATTACACCGAACGCCTGATCCAGCGGTTCCCCAAGGCTTTGGTCGAGACCGACAAGATCATCTTGCATGACCGACGGTTGATCACCTCCGGCGGGGTCACGGCCGGTATCGACATGGCCCTGTCCATCGTCGCCCAGGACCATGGCCGCAAAGTCGCGCTGGATGTGGCCAAGGTCTTGCTGGTGGTCATGCAGCGCCAGGGTGGGCAAGCGCAGTTCAGCCCGCTGGTAGCGGCGGTGGCGGCACAGGAATCGGCGGTTACCCGGGTGCAGCATTACGTGATGGAACATCTGGAGGAGCCGTTTTCCATCGAGCGCATGGCTGATCTGGCCGCCATGAGCTCAAGGCATTTCGCCCGGGTTTTCCTGCGCGAAGTCAAGATGACACCGATGGAGTTCCTGCAAGGTGCGCGCATCGATCGGGCGCGGCAGTTGCTGGAGTCCACCGACTTGCCCCTCAAGACCGTGGCCTTTCGCAGTGGCTTTGGCAGCGTCCGGCACATGCGCCAGTTGTTCAGCGAAAAACTCGGCCTGACACCGGTCCAGTACCGGCAGCAGTTCAGTTGAMKTVAMVLFPDFLLLDMAGPLEVFSIANRFLAPEQHYQLLTLGTERGALRASNGVTVQADIHIDQAWAAYDVLLVPGGPGAYNDRHPGLHTWLRASAQRATRYGSICTGAFILGEAGLLDGYRVTTHWHYTERLIQRFPKALVETDKIILHDRRLITSGGVTAGIDMALSIVAQDHGRKVALDVAKVLLVVMQRQGGQAQFSPLVAAVAAQESAVTRVQHYVMEHLEEPFSIERMADLAAMSSRHFARVFLREVKMTPMEFLQGARIDRARQLLESTDLPLKTVAFRSGFGSVRHMRQLFSEKLGLTPVQYRQQFSNANANANANA
D1-35_024191509hypothetical proteinATGAACAGCTTCACCAAACCTTGCGCCGCAACAGCGGCGAGCCCCGAAACCACGGTGCGCTTCGGTCCGTTTGTCTTTCACCGCCAGCAGCGGCTGGTTACCTGCGATGGCGAGCCCCTGGCCTTGGGCGGTCGCGCCCTGGACATCCTGCACTTGTTGGTTGCCCATGCGGGCGCCTTCGTCAGCAAGCAAACCCTGATCGCCCAGGTCTGGCCCGACAGCGTGGTGGAAGACATCAACCTGCGGGTGCACATCGCCGCCTTACGGCGGGCGTTCGGTGCTGGACAGGATGGCAATCGCTACATCCTCAATCATCCGCGCCAGGGCTACTGCTTCGCCGTGCCCCTGACCCCGCAGCCGAGTGCTGAATCATCCGGCGCCAGGCGCTCCGAGCGGCACAATCTGCCCGCGCGCCTGAGCCCGGTGATCGGTCGCGACAAGCTGCTGGGACGGCTGTTGGTCGAGGTTCCGCGCCAGCCCCTGACCACCGTCGTCGGCCCGGGCGGTATCGGCAAGACCACGGTGGTGTCGCGGGCGGCGGAACTGTTGCTCGAGCATTTTGCCGACGGCGCCTGGTTTATTGACCTGGCGGCGATCAGCGACCCGGCCGAGGTCTGCCCGCGGATCATGCAAACCCTTGGCCTGACGGGCGGCTCGCTGGGACAGTGCCTGCAATCGTGCCGGATGTTGCTGGTGCTCGATGGCGCCGAACACCTGCTCGATGCCTGCCGGGAGCTGGCCTTGACGCTGCGCTCAGCGGCCCCTGGCGTATCGCTGTTGTTGAGCAGTCGCGAAGCCTTGGAGCTTGCAGATGAACATGTCGTGCAATTGGCCGGTCTGGCCGTGGCGACGGCCAGCGAGCCCGGCCACTTGATATTGGCGAGTCCGGCAGTGCGCTTGCTGGTTGATCGGGTCGGTGCCCGACAGCAGGGCTTCAAGCCGGGTGAACGCGACCTCGCGCCTCTCGCACAGATCTGCCAGCGCCTGGACGGGTTGCCGTTGGCGCTGGAACTGGCGGCGGCCCAGGTTGATGTGCTGGGCGTGGCGGGGGTCCTGGAACAGTTGGACTACGGTCTGTCACTGTTGAGCCACGGCCGCCGTACAGCCGTGGCGCGCCACCGCAGCCTTGACGCGGCGCTGGATTGGAGTTTCGAGCGCTTGGGCAGCGACGAACGAACGGTGTTCCAGCGGCTGGCGGTGTTCGAGGAACCGTTCACGTTGAAGGCTGCGCTGGCTGTGGTCAGTTGCACTGACGTCGGGGTGGGGCGATTGCCCTGGCTGCTGTCACGGCTGGTCAAGCAGTCGCTGGTGATGGTCGAACAAGGTGCCGAAGGCAATCGCTACCACCTGCTCAATACCACGCGTGCCTATGCCTTGGAAAAGTTGCGTCGCGCAGGCCAGTGGCAGTCGCTCCATCGGCGCTACGTGTTGCAGGAGGCTTGGCTGGCGCGGCGTTCAAGACCCGAGCTGGCGAGTCAGCGTCTGGAGCAGCGCGCCGGCTTCCTTTAGMNSFTKPCAATAASPETTVRFGPFVFHRQQRLVTCDGEPLALGGRALDILHLLVAHAGAFVSKQTLIAQVWPDSVVEDINLRVHIAALRRAFGAGQDGNRYILNHPRQGYCFAVPLTPQPSAESSGARRSERHNLPARLSPVIGRDKLLGRLLVEVPRQPLTTVVGPGGIGKTTVVSRAAELLLEHFADGAWFIDLAAISDPAEVCPRIMQTLGLTGGSLGQCLQSCRMLLVLDGAEHLLDACRELALTLRSAAPGVSLLLSSREALELADEHVVQLAGLAVATASEPGHLILASPAVRLLVDRVGARQQGFKPGERDLAPLAQICQRLDGLPLALELAAAQVDVLGVAGVLEQLDYGLSLLSHGRRTAVARHRSLDAALDWSFERLGSDERTVFQRLAVFEEPFTLKAALAVVSCTDVGVGRLPWLLSRLVKQSLVMVEQGAEGNRYHLLNTTRAYALEKLRRAGQWQSLHRRYVLQEAWLARRSRPELASQRLEQRAGFLNANANANANA
D1-35_024202811hypothetical proteinATGAGCCAATACCTCAACCTGCCCGTCGAACAGACGGTGCATTTCGGCCCTTACCGGGTCCATCCGCGCCAGCGCCTGGTGCTGGAGGGCGGGCAACCGTTGCGCCTGGGGCGGCGAGCGGTGGAGATCCTGCTGGTGCTGCTCGAACACGCCGGCCAAGTGGTGAGCAAGCAGCAACTGATCGCCCGGGTCTGGCCGAAAAGCGTGGTGGAGGACACCAACCTGCGGGTTCACGTGGCGGCGTTGCGCAAGGCCCTGGGCGACGGCCAGGCCGGTCAGCGTTATATCGTCACGGTGGCGCAGCGCGGCTACAGTTTTGTCGCACCGGTGACATTCGAAGCGCCCGAGGAACTGGCGCGCATCCCCCACCCCTCCCTGGCGCGCAACCTGCCGCCGCGCCGTACCCGCATGATCGGCCGCCAGGGCCTGGTGGAGAGCCTGGTGGCGCAACTTCCGCGCAAACGCTTCATCAGCCTGGTCGGCAGCGGCGGCATCGGCAAGACCACCGTCGCCTTGCGGGTTGCCGAACGGCTGCTTGGCCAGTACCGCGACGGCACCTGCCTGCTGGACCTGGCCTCGCTCAACGACGCGACCATGATCGCCCCCAACCTCTGCGCGTTGCTGGAGCTGACGCTGCATGACGGCGAACCGCTCGACGCGATCGTCCGGCAACTCAAGGACCGCCATCTGCTGCTGGTCATCGACACCTGTGAACACCTGATCGATGCCGTCGCGCTGCTCTGCGAAACCCTGCTGCGCGGCGCGCCTCACCTGCACATCCTGGCCACCAGCCGCGAAGGCCTGCGCGCCGAAGGCGAACACGTGCAGCGCCTCGATTCGCTGGCGTTTCCGCCAAGGGGCATGGTCATCGAAGGTTATCCGGCCCTGGAATTCCCGGCGCTGCAACTGTTCGCCGAACGGGCGATAGCCAGCCAGGACGACTTTGAGCTGACGGACCACGAGGTTCCGCTGATCGTCGATATCTGCCAGCGGCTCGACGGAATCCCCCTGGCGATCGAACTGGCCGCCGCCCAGGTCGGGCGCTTTGGGCTGGAGGCGCTATGCCGGCAACTGCAGGACAGCGTCGCCCTGCTCGACCATGACAGGCACGCCAGCGCACCGCGCCAGCAAACCCTGCGCGCCACGGTGGACTGGAGTTTCGCGCTGCTCACGCCGTGCGAACAGACCTGCCTGCGGCGCCTGGCGGTGTTCATGGGCAGTTTCAACCTGGCGTCGGCCGCGGCAGTCATCGTCGGCCAGCATGTCGCGCCGGAACAGGTGCTGGTCTCGATCAGCCAGTTGGTGGCGAAATCGTTGCTCAATGTCGAGATCGGCGACGATGAGGTCCGTTATCGGTTGCTGGACACCACGCGCAGCTACGCCCTGGAAAAACTGCTGGATGCCGGGGAACTGGCCGCCACCCGGGAGCGCCACGCCGAGCGCTGCCTGACGCTCATGGAACAGGCTGAAAAGGATTGGGAAAACACTTCTACGCGCGTGTGGATCGCACGCTACGCGGCCTATCGGGACGACATCCGCGCGGCGCTCGACCGCGGGCTGGGCCCGCAGGGTTCGCACGCCGTGGCGATCCGCCTGGCCGCGCGCACCCTGCCGCTCTGGCAAGAGCTGTCGCTGCTCAAGGAGCACGGGCTGTATGTCAGCAAGGCGCGGGCGCTGCTACAGGCCAGCCCCTCGCCGTGCCAGAGATTGACCCTCGCCCTGGAACTGGCCCACGGCAGTTTCAACTACCACACCGAGGGCGGTACGCCGGCCACTGTCGAGGCCTTCGTCACGGCCCGCCACCTGGCCCGGCAGTGCCAGGACCGGGCGGGAGAATTGCGCGCATTGTCGGGCCTCATGACGGTCAATCTCAGCGCCGGCCGCTATCAGCAGGCGCTGGAGCAAAGCCTGGATTTCGATCGCCTGGGCCTGCCGGGCGACCCGGTCCTGTCCTTGAGTACCCAGCGCCTGCGGGTGCTGGCGCTGCATTTCACCGGCGACCAGGACGGCGCGCGACGTGACGCCGAGCAGGTCATCCAGCGCCTGGCCCAGAATGGTCACCTGAGCCGCTTCAGCCACGGTTTCGGCGTGCAATACGAGCAGAGCGTGGCCGCGCTGACGATCCTGTCGCGCATCCTCTGGCTGCAAGGGTTCGCCGAAAAAGCCCGGCGCACGGCCAACCTTGCGCTACAGATTGCCCTGCAGATCAACCACGGCCTTTCGATCTGCTACACCCTGGCGATCGCCGGTTGCGTGATCGCCCATTACACCGGCGATCAGCCGACCGCCCAGGAACGGCTGGACATGTTGAAGCAGCAGGCCAAACGCCATTCGGTCATGCTCTTCCATGATTGGGCTGGCCATTACGAGCGCGCCTTCGACGGCGCCAGTCCGCAGTCGCACTGGAGCGCTTGCGGCCTGATCCAGGATACCGTCGTCACTCTGCGCGGCGATGCCGTCAGCCCGCAGCAGATCGAGCGCGCCCATAGCGGCGCGGCAGGCTGGTGCTCGGCGGAAATCCTGCGCATCGCTGCCGAAGCGTTGCTGGCCGAGGGAAAAGCGGGCGCAGAAAGCCGTGCCGAAGAGTACTTACACGCCGCGCTGACGGTAGCCCGGAGCCAAGGCGCGCTGGCCTGGCAATTACGCAGTGCCATGTCGCTGGCCCGGCTGTGGCAACGGCGCGGCCAGGATGCGGCGGCGCAGGATGTGCTCGCTTCGGTCTATCGGCGCTTCAGCGAAGGGTTCGACACACCCGACCTAAAGGAAGCCGGCGCGCTGCTCCAGACGCTGACTCGCCAGCTCGGGTCTTGAMSQYLNLPVEQTVHFGPYRVHPRQRLVLEGGQPLRLGRRAVEILLVLLEHAGQVVSKQQLIARVWPKSVVEDTNLRVHVAALRKALGDGQAGQRYIVTVAQRGYSFVAPVTFEAPEELARIPHPSLARNLPPRRTRMIGRQGLVESLVAQLPRKRFISLVGSGGIGKTTVALRVAERLLGQYRDGTCLLDLASLNDATMIAPNLCALLELTLHDGEPLDAIVRQLKDRHLLLVIDTCEHLIDAVALLCETLLRGAPHLHILATSREGLRAEGEHVQRLDSLAFPPRGMVIEGYPALEFPALQLFAERAIASQDDFELTDHEVPLIVDICQRLDGIPLAIELAAAQVGRFGLEALCRQLQDSVALLDHDRHASAPRQQTLRATVDWSFALLTPCEQTCLRRLAVFMGSFNLASAAAVIVGQHVAPEQVLVSISQLVAKSLLNVEIGDDEVRYRLLDTTRSYALEKLLDAGELAATRERHAERCLTLMEQAEKDWENTSTRVWIARYAAYRDDIRAALDRGLGPQGSHAVAIRLAARTLPLWQELSLLKEHGLYVSKARALLQASPSPCQRLTLALELAHGSFNYHTEGGTPATVEAFVTARHLARQCQDRAGELRALSGLMTVNLSAGRYQQALEQSLDFDRLGLPGDPVLSLSTQRLRVLALHFTGDQDGARRDAEQVIQRLAQNGHLSRFSHGFGVQYEQSVAALTILSRILWLQGFAEKARRTANLALQIALQINHGLSICYTLAIAGCVIAHYTGDQPTAQERLDMLKQQAKRHSVMLFHDWAGHYERAFDGASPQSHWSACGLIQDTVVTLRGDAVSPQQIERAHSGAAGWCSAEILRIAAEALLAEGKAGAESRAEEYLHAALTVARSQGALAWQLRSAMSLARLWQRRGQDAAAQDVLASVYRRFSEGFDTPDLKEAGALLQTLTRQLGSNANANANANA
D1-35_02421273hypothetical proteinGTGCGTGAGTTAAACGTTGTTAATTTTTTCGCGACGGCGGTGCTAAAACCTCAGGGGGAACTGCTTTTGTGGCGAGGGGATTTATCCCCGCTGGGCCGCGAAGCGGCCCCCCAAAGCGCAATCCCCAAATATGTCTGGCACCCCGAGATAACAGTCTTGGGACTGCTTCGCAGTCCAGCGGGGATAAATCCCCTCACCACACATAAATCCCCTCACCACAGGGGTTTGTGTCTGTCGATCGCTCTGCGCAGCGCCTCCCACCGTTGCGCTTGAMRELNVVNFFATAVLKPQGELLLWRGDLSPLGREAAPQSAIPKYVWHPEITVLGLLRSPAGINPLTTHKSPHHRGLCLSIALRSASHRCANANANANANA
D1-35_02422822cpo_1Non-heme chloroperoxidaseATGAGCACTTTCATCACCCGCGACGGCACCGAGATCTACTACAAGGATTGGGGCAGTGGCCAACCGGTGGTCTTCAGCCACGGCTGGCCGTTGAATTCGGACAGTTGGGAGGCGCAGATGATGTTCCTGGCGTCCAACGGCTATCGGGTGATTGCCCACGACCGTCGTGGTCACGGGCGTTCCAGCCAGCCCTGGGACGGCAATGACATGGACACCTACGCCGATGACCTGGCCGAGCTGATCGAGCGCCTGGACCTCAAGGACGCGGTGTTGCTCGGTTTCTCCACCGGCGGTGGCGAAGTGGCGCGCTACATCGGTCGGCATGGCGCCGCCCGCGTCGCCAAGCTCGGCCTGATCTCGGCGGTCACGCCGCTGATGCTCAGGACCGCGGCCAACCCCGGCGGCCTGCCCGTTGAGGTATTCGACGGCTTCCGCCAGGCCTCTCTGGCCGATCGTTCTCAGCTATACAAGGATGTGGCCAGCGCGTTTTTCGGCGCCAACCGTCCGGGTGCCAAGGTGTCCCAGGGCATGATCGACTGGTTCTGGATGCAGGGCATGCTCGCCGGCCACAAGAACGCCTACGACTGCATCAAGGCCTTCTCGGAAACCGATCTTTCCGAAGACCTGCGCAACATCGACGTGCCGACCCTGGTGGTGCATGGCGATGACGACCAGGTAGTGCCGATCGAAACCGCCGGCATCGCGGCCGCCAAGCTGCTCAAGAACTCGCAGCTGCTGGTCTATCCGGGCGCGCCCCATGGTCTGACCGACACCCACAAGGACCGGCTGAACGCCGACCTGCTGGCGTTCATCCAGGGTTGAMSTFITRDGTEIYYKDWGSGQPVVFSHGWPLNSDSWEAQMMFLASNGYRVIAHDRRGHGRSSQPWDGNDMDTYADDLAELIERLDLKDAVLLGFSTGGGEVARYIGRHGAARVAKLGLISAVTPLMLRTAANPGGLPVEVFDGFRQASLADRSQLYKDVASAFFGANRPGAKVSQGMIDWFWMQGMLAGHKNAYDCIKAFSETDLSEDLRNIDVPTLVVHGDDDQVVPIETAGIAAAKLLKNSQLLVYPGAPHGLTDTHKDRLNADLLAFIQGPGPT0013125_2341DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013125-cpo-K00433NANA
D1-35_02423948nodD2_2Nodulation protein D 2ATGAACCGCAACGATCTACGCCGCCTCGACATGAACCTGCTGGTGATCTTCGAGGCGCTGATGTTCGAGAAGAACCTGACCCGTGTCGCCGAAAAGCTCTTCATGGGCCAGCCGGCGGTGAGCGCGGCGCTCGGGCGGCTGCGGGATCTGTTCGATGATCCGCTGCTGATCCGTCACGGGAGGGGCATGGAACCGACGCCTCGGGCCCTGGCGATCCTGCAAGAATTGCAGCCGGCCATGGACACCATTTCCGGCGCGGTCAGCCGGGCCAAGGCGTTCGACCCGTCCACCAGTTGCGACGTGTTCCGCATCGGTCTGTCCGATGATGCCGAATTCGGCCTGTTTCCACCGCTGCTCAGTCAATTGCGCGAAGAAGCGCCGGGCATCATCGTGGTGGTGCGCCGGGCCAATTTCCTGCTGATGTCGTCGTTGCTCGCCAGCGGCGAAATCAGCGTCGGCGTCAGCTACACCACCGACCTGCCGGCCAATGCCAAGCGCAAGAAACTGCGGGACATTCCCTGCAAGGTCCTGCGTGGCGACAAGCGCCCGGGGCCGCTGACCCTGGACGACTACTGCTCGCGACCCCACGCCATGGTGTCGTTCTCGGGCGACCTGAGCGGCAACATCGACCTGGACCTGGCGCGCATCGGCCGGGCCCGCAAAGTGGTCTTGGCAGTGCCGCAATTCAGCGGCCTGCGCGCCTTGCTGGCGGGCACCGAGCTGATCGCCACGGTACCGGACTACGCCGCCTGCGCGCTGGTGGAGGGCTGCGCCTTGCGCGCCGAAGACCCGCCGTTCGAGATCAATGCCGCCGAGTTGTCGATGGTCTGGAGCGGCGTCCACGACAATGACCCCGCCGAGCGCTGGCTGCGCTCGCGCATCGCCACCCACATGTCCCAACCGTTGCCGGCAGCCGCCTCGACGGACCCGGCCGGAGCTCACCGATGAMNRNDLRRLDMNLLVIFEALMFEKNLTRVAEKLFMGQPAVSAALGRLRDLFDDPLLIRHGRGMEPTPRALAILQELQPAMDTISGAVSRAKAFDPSTSCDVFRIGLSDDAEFGLFPPLLSQLREEAPGIIVVVRRANFLLMSSLLASGEISVGVSYTTDLPANAKRKKLRDIPCKVLRGDKRPGPLTLDDYCSRPHAMVSFSGDLSGNIDLDLARIGRARKVVLAVPQFSGLRALLAGTELIATVPDYAACALVEGCALRAEDPPFEINAAELSMVWSGVHDNDPAERWLRSRIATHMSQPLPAAASTDPAGAHRPGPT0028130_108DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexEF-OprN,PGPT0028130-mexT-K18297NANA
D1-35_02424414hypothetical proteinATGAACGCCACTGACGAACGCCGCATGCAGGACCTCGGCCTGCTGTTCCTGCGCCTGAGCGGCGCGCTGTTTCTGCTGTGGGTCCATGGCTTGCCGAAGCTGCTGAACTACAGCGCCGAGCTGACCCGCATCGAAGACCCGTTCCACCTCGGCGCGGCGCCCACGCTGATCCTGGCAATTTTCGCCGAGGTGCTTTGCCCGCTGCTGATCATGGCTGGCGTGCTGGTGCGCCTGGCGTGCTTGCCCATCCTCTTCCTGCTGGCCGTTGCGCTGCTCGTGGTGCACCCGCAATGGAGCCTGGAAGAAGGCCAGTTCGGCTGGTTGCTGCTGATCATATTTACCAGCGTGTTCATTGCTGGCCCGGGAGGCCTGGCGATCAACGCGCGTTTTGCTGGAGTGCTGCGTCATGCCTGAMNATDERRMQDLGLLFLRLSGALFLLWVHGLPKLLNYSAELTRIEDPFHLGAAPTLILAIFAEVLCPLLIMAGVLVRLACLPILFLLAVALLVVHPQWSLEEGQFGWLLLIIFTSVFIAGPGGLAINARFAGVLRHAPGPT0028505_5037DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROQUINONE-DERIVATE_RESISTANCE,PGPT0028505-catD-K15977NANA
D1-35_02425639hypothetical proteinATGCCTGAATCCCAAACCCTTGAATCAACCGCGATCCCGGCGATCCCCGGCTTCGATGAAATCGTCACCCTGGTAGTCAAGCACCGGGTCAAGGCCGGGCAGGACGGCGCCTATGAAGCCTGGTTGCGGCGCATCGTCAGCGTGGCCGGCCAATGGCCGGGGCATCTGGGCGTGGACGTAGTCCGGGGCAAGCAGGGCGGGTTGTCGCTGTTCACCTGCGTGCTGCGGTTCTGCTCCACCGAGGCCATGCAGCGCTGGCTGGACTCGCCCGAGCGCCGCGAACTGGTGGAAGAGGCCGCGCCGCTGCTGGCGGACGGCGACCAGACAGAAGTCGCTCCGCACAAGGAATTCTGGTTCGCCCCGCTGGCCGATGCCGCCACGCCGCCACCGCGCTGGAAGCAATCGGTGGTGACCTTGCTGGTCATCCTGCCGCACACCTTGCTGGTGCCGTTGCTCTGGGGCCCGCTGTTGCAACTCAACGCGTTTCTGTCCAACTACGTGGTCGCCACGTTCCTGATCACCGTGACCATCGTGCTCTCGGTGGTGTACGTGTGCATGCCGCTGGCGACGCGTCTGTTCGCGCCGTGGCTGGAAGCGTCCAAGGCCCACCAACACCTGGAGCCCGGCGATGGCCAATAAMPESQTLESTAIPAIPGFDEIVTLVVKHRVKAGQDGAYEAWLRRIVSVAGQWPGHLGVDVVRGKQGGLSLFTCVLRFCSTEAMQRWLDSPERRELVEEAAPLLADGDQTEVAPHKEFWFAPLADAATPPPRWKQSVVTLLVILPHTLLVPLLWGPLLQLNAFLSNYVVATFLITVTIVLSVVYVCMPLATRLFAPWLEASKAHQHLEPGDGQNANANANANA
D1-35_024261968nfdA_1N-substituted formamide deformylaseATGGCCAATAAAGACGACCCGACCGATCCGCTGCGCCGCCAGTTGCTGGCCGCCGGATCCCTGCTCAGCGCGGCGGCGGCTTTCTGGCCACGCCTGTCTCTTTCCTCTTCCCATCCAGAAGGACATCCAATGAACGCCGATCTGATTCTGTTCAATGGCCAGTTCCATACCGTCGACCGTGAAAAACCTCGCGCCAGCGCGGTTGCCATCAGCCAGGGCCGTTTCGTCGCCGTGGGCACCGATGCCGAGGCCATGGCCTTGCGTGGCAGCGGCACCCAGGTCATCGACCTCAAGGGCCGCACCGTCATTCCCGGCCTCAACGACTCGCACCTGCACCTGATCCGCGGTGGCCTGAACTACAACCTGGAGCTGCGTTGGGAAGGTGTGCCGTCCCTGGCCGACGCCTTGCGCATGCTCAAGGACCAGGCCGATCGCACCCCGACCCCGCAATGGGTACGGGTGGTGGGGGGCTGGAACGAATTCCAGTTCGCCGAAAAGCGCCTGCCGACCCTGGAAGAACTGAACCAGGCCGCGCCCGACACCCCGGTGTTCGTATTGCACCTGTACGACCGCGCCTTGCTCAACCGCGCCGCGCTGCGGGTGGCCGGCTACACCCGCGACACGCCGAACCCGCCGGGCGGCGAGATCGTTCGCGATGCCAACGGGAATCCGACCGGCATGCTGGTGGCGCGGCCCAACGCGATGATCCTTTACTCGACGCTGGCGAAAGGGCCGAAGCTGCCGCTGGAATACCAGGTCAACTCCACCCGCCAGTTCATGCGCGAGCTCAATCGCCTGGGCCTGACCAGCGCGATCGACGCCGGCGGCGGCTATCAGAACTACCCGGACGACTACGAAGTCATCGAGCAGTTGGCTCGCGAGCAGCAGTTGACGGTGCGCATCGCCTACAACCTGTTCACCCAGAAGCCCAAGGAAGAACTCACCGACTTCAAGAACTGGACCGGCAGCGTCAAGCTGCACCAGGGCGACGATTTCCTGCGGCACAACGGTGCCGGGGAAATGCTGGTGTTCTCGGCGGCGGACTTCGAAGACTTCCTCGAACCGCGTCCGGACCTGCCGCCGGGCATGGAGCAGGACCTGGAGCCGGTGGTGCGTCATCTGGTCGAGCAGCGCTGGCCGTTCCGCCTGCACGCCACCTATGACGAATCCATCAGCCGCATGCTCGACGTGTTCGAGAAGGTCAACCGCGACATTCCGTTCAACGGCCTGCCGTGGTTCTTCGACCACGCCGAGACCATCACGCCGAAAAACATCGAGCGGGTCCGCGCGCTGGGCGGTGGCATCGCCATTCAGGACCGCATGGCCTTCCAGGGTGAATATTTCGTCGACCGCTACGGCGCCAAGGCCGCCGAAGCCACGCCGCCGATCAAGCGCATGCTGGCCGAAGGCGTACCGGTGGGCGCCGGCACCGACGCCACCCGGGTCTCCAGCTACAACCCGTGGACCTCGCTGTACTGGATGGTCAGCGGCCGCACCGTCGGCGGCCTCTCGCTGCACGAAGAAGGCCTGCCGCGGCTGACCGCGTTGGAGCTGTTCACCCATGGCAGCGCCTGGTTCTCCTCGGAGCAGGGCAAGAAGGGCCAGATCAAGGTTGGTCAACTGGCGGACCTGGCAGCCCTGAGCGCGGATTTCTTCAGCGTCGAGGAAGAAGCCATCAAGTGGATCGAATCGGTGCTGACCGTCGTGGACGGCAAGGTCGTCTACGCCGCTGGCGACTTCGAAAAACTCGGCCCGGCCAGCGTCCCGGTACTGCCGGACTGGTCGCCGGTGGTCAAGGTTCCCGGCCACTGGCGTCCGGCTTCGCCATTGCAGGCGCAAGTCCACCAGTGCAGCGGGCCGTGCAAGGTGCATTCCCACAGCCATGAACGGGCGCGTCTGTCGAACGTGCCGGTCAGCGACTTCCAGGGGTTCTGGGGCGCGTTTGGCTGTTCGTGTTTTGCCTTTTAAMANKDDPTDPLRRQLLAAGSLLSAAAAFWPRLSLSSSHPEGHPMNADLILFNGQFHTVDREKPRASAVAISQGRFVAVGTDAEAMALRGSGTQVIDLKGRTVIPGLNDSHLHLIRGGLNYNLELRWEGVPSLADALRMLKDQADRTPTPQWVRVVGGWNEFQFAEKRLPTLEELNQAAPDTPVFVLHLYDRALLNRAALRVAGYTRDTPNPPGGEIVRDANGNPTGMLVARPNAMILYSTLAKGPKLPLEYQVNSTRQFMRELNRLGLTSAIDAGGGYQNYPDDYEVIEQLAREQQLTVRIAYNLFTQKPKEELTDFKNWTGSVKLHQGDDFLRHNGAGEMLVFSAADFEDFLEPRPDLPPGMEQDLEPVVRHLVEQRWPFRLHATYDESISRMLDVFEKVNRDIPFNGLPWFFDHAETITPKNIERVRALGGGIAIQDRMAFQGEYFVDRYGAKAAEATPPIKRMLAEGVPVGAGTDATRVSSYNPWTSLYWMVSGRTVGGLSLHEEGLPRLTALELFTHGSAWFSSEQGKKGQIKVGQLADLAALSADFFSVEEEAIKWIESVLTVVDGKVVYAAGDFEKLGPASVPVLPDWSPVVKVPGHWRPASPLQAQVHQCSGPCKVHSHSHERARLSNVPVSDFQGFWGAFGCSCFAFNANANANANA
D1-35_02427630ycaC_1COG1335putative hydrolase YcaCATGAGCAACGTTCCCGCCTACAACCGCCTGAACAAAGACGACGCGGTGGTCCTGCTGGTCGATCACCAGACTGGCCTGATTTCCCTGGTCCAGGATTTCTCGCCCAACGAGTTCAAGAACAACGTGCTGGCCCTGGCTGACCTGGCCAAGTTCTTTGGCCTGCCGACCATCCTGACCACCAGTTTCGAACAGGGCCCCAATGGCCCGATCGTGCCGGAGCTCAAGGAAATGTTCCCGGACGCGCCGTATATTCCGCGCCCTGGCCAGATCAATGCCTGGGACAACGAAGACTTCGTCAAGGCGATCAAGGCCACCGGCCGCAAGCAATTGATCATCGCCGGCGTAGTGACCGATGTCTGCGTGGCGTTCCCGACCCTGTCGGCCCTGGCTGAAGGTTTCGACGTGTTTGTCGTGACCGACGCCTCGGGTACGTTCAACGAAACCGTGCAACAAGCCGCCTGGGTGCGCATGACCGCCGCCGGCGCGCAGATGATGAACTGGTTCTCGGTGGCCTGTGAGCTGCACCGCGACTGGCGCAACGACATCGAAGGCCTGGGTAACCTGCTGTCCCAGCGCATCCCCAACTACCGCAACCTGATGAACAGCTACTCGGCGCTGACGGCCAAATAAMSNVPAYNRLNKDDAVVLLVDHQTGLISLVQDFSPNEFKNNVLALADLAKFFGLPTILTTSFEQGPNGPIVPELKEMFPDAPYIPRPGQINAWDNEDFVKAIKATGRKQLIIAGVVTDVCVAFPTLSALAEGFDVFVVTDASGTFNETVQQAAWVRMTAAGAQMMNWFSVACELHRDWRNDIEGLGNLLSQRIPNYRNLMNSYSALTAKNANANANANA
D1-35_02428879dmlR_10HTH-type transcriptional regulator DmlRATGAACCCCTTCGAAGAAATGCGCATCTTTGCCCAGGTCATGGAGTCGGGCAGTTTCACCGCCGCGGCGGACAAACTCGGGCTGTCCAAGCAGTTCGTCAGTCGCAAGTTGATGGAGCTGGAGCAGCGGCTGGGGGTTCGGTTGCTCAATCGCTCGACGCGCCGCCTGGACGTCACTCCGTTGGGCCAGCGCTATCATGAGGCGGCGTTGCGCCTGCTCAGCGAAGTCGAGCAGGTGGAGCAGGGCATCAGTGGCCAGACCAGCGAGCCGCGCGGAACCATCCGCCTCAGCGCTCCGTTGTCCTTCGCCGTGGCGCACCTGGGCAGCCTGCTGCCGCTGTTCTTGCAGCGCTACCCGGATGTCACCGTGGAGGTCGACCTGAGTGATCGTTCGGTGGACCTGCTGGGGGAGGGGTACGACCTCGCACTGAGGATCGGCGTGCTGGAAGATTCGACCCTGATCGCCCGGCGCATTGCGAGTATCGAGCGAGTGTATTGCGCGAGCGCCGCCTACCTGGCGCAGCGAGGCACGCCGACGCGACCGGAAGACCTGCGCACCCACGACTGTTTGCCGTACGGGCACAGCCGTCAGGTGCAGTGGCGATTCGCCGGAAAGGGCAAGCCGTTGGCGCTGGAAGTGGTGGGACGCATGCGTGCCAATAACGGCGACTTGCTCAGGGATGCGGCGATTGCCGGCATGGGGATTACTTATCTGCCGACCTTCATCCTCGGTGAGGCGTTGAGGGATGGGCGGCTGATCCAGGTATTGGAGGGATTCGAGACCGAGCCCCTGACGCTGTCGGCGGTCTATCCGCAGCACCGACAAAGCTCGCGACCGGTGCAGGCGTTGGTGGAATTCTTGCGTGAACACATGCAGTAGMNPFEEMRIFAQVMESGSFTAAADKLGLSKQFVSRKLMELEQRLGVRLLNRSTRRLDVTPLGQRYHEAALRLLSEVEQVEQGISGQTSEPRGTIRLSAPLSFAVAHLGSLLPLFLQRYPDVTVEVDLSDRSVDLLGEGYDLALRIGVLEDSTLIARRIASIERVYCASAAYLAQRGTPTRPEDLRTHDCLPYGHSRQVQWRFAGKGKPLALEVVGRMRANNGDLLRDAAIAGMGITYLPTFILGEALRDGRLIQVLEGFETEPLTLSAVYPQHRQSSRPVQALVEFLREHMQNANANANANA
D1-35_02429474COG5592DNA nickaseATGAACGCCATCGACCTGTTGAAAGCGGACCATGAACGCGTGAAGGGCATCCTGTCCCAGTTGAGCGAATCAACCGACCGCGCCATCAAGAAACGCACCGAACTGTTGGCCAAGCTGGAAATGGAAGTGTCTATCCATACCCGCCTGGAAGAAGAAATCCTTTATCCGGCCTTCAAACAGGAAGGCGGCAAGGACGAAGCCGAGATGTACTACGAAGCCAAGGAAGAGCACCGCACCGTCGATTCCCTGGTGCTACCCGACCTGAAAAACACCGACCCTTCCCAGCCTGAGTTCGCCGGTCGCGTGAAAGTGGTCAAGGAGCTGCTCGAGCATCACATCGAAGAAGAAGAGGAAGAAATGTTCCCTAAAGCCGAAGAAATCCTCGGCAAGGCCAAGCTCGAAGAACTGGGCAACCAGATGGAAGCCGTGAAGGCCCAGTACAAAAAAGAGTTCACCGCCAACCTGGCTGCCTGAMNAIDLLKADHERVKGILSQLSESTDRAIKKRTELLAKLEMEVSIHTRLEEEILYPAFKQEGGKDEAEMYYEAKEEHRTVDSLVLPDLKNTDPSQPEFAGRVKVVKELLEHHIEEEEEEMFPKAEEILGKAKLEELGNQMEAVKAQYKKEFTANLAANANANANANA
D1-35_02430276hypothetical proteinATGGAGTTGAAGTGGACCAGCAAGGCGCTTTCCGACATCGCCCGACTTTATGAATTTCTGGCGCTGGTGAATCAACCCGCCGCCGCGCGAACGGTACAACAGCTCACGGCGGCGCCGACCGCTCTGCTGACCAACCCACGCATGGGTGAACGCCTGGAAGAGTTCGACCCTCGGAACGTGCGCAGAATCCAGGTCGGCCCCTACGAAATGCGCTATGAAATAATCGGCTCCACCCTTTACCTGCTACGCCTGTGGCACACACGCGAAGATCGATGAMELKWTSKALSDIARLYEFLALVNQPAAARTVQQLTAAPTALLTNPRMGERLEEFDPRNVRRIQVGPYEMRYEIIGSTLYLLRLWHTREDRPGPT0027550_2778DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-ParE-ParD|paaAR_TOXIN-ANTITOXIN_SYSTEM,PGPT0027550-toxin_parE1_3_4-K19092NANA
D1-35_02431273hypothetical proteinATGACAACCACCACGAAAACCCGGTCGGTCACCGCTCATGTCCCGGTGGACCTGGCTGAAAAAGTCGACCTGATGGCCGAGCGCCTGGAGCGCTCCAGGAACTGGATCGTCAAACAAGCGCTATCTGCCTGGATCGAACAGGAGGAGGAACGCAGCCGTCTGACTCATGAGGCATTGGCCGATGTTGACGCTGGCCGCGTGGTTGATCACCAGGCTGTCCAGGCTTGGGCCGACAGTCTCAGCACCGACACCCCGTTACCGGTACCGCGCTGAMTTTTKTRSVTAHVPVDLAEKVDLMAERLERSRNWIVKQALSAWIEQEEERSRLTHEALADVDAGRVVDHQAVQAWADSLSTDTPLPVPRNANANANANA
D1-35_024321464nuoNCOG1007NADH-quinone oxidoreductase subunit NATGGAATTCACGATTCAACACTTTATCGCGCTTGCGCCGCTGTTGATCACCAGCGCCACGATCATCGTGGTGATGCTGGCGATCGCCTGGCGGCGCAATCACTCGCAGACCTTCCTGCTGTCGGTGGCGGGGCTGAACCTGGCCTTGCTGTCGATCCTGCCGGCCCTGAAAGTCGCGCCATTGGCGGTCACGCCACTGATCCAGATCGACAGCTTCGCCTGCCTGTACATGGCGCTGATCCTGGTCGCCACCCTCGCCTGCGTCACCCTCGCCCACGCCTACCTGGGTGACGGCGGTTCGGGTTACCCGGGCAACCGCGAAGAACTGTACCTGCTGATCCTGATGGCCGCCGCCGGTGGCCTGGTCCTGGTCAGCGCGCAGCACCTGGCCAGCCTGTTCATTGGCCTGGAGCTGCTGTCGGTACCGGTCTACGGCCTGGTGGCCTATGCCTTCTTCAACAAGCGCTCCCTGGAAGCCGGCATCAAGTACATGGTGCTGTCGGCGGCCGGTTCCGCGTTCCTGTTGTTCGGCATGGCCCTGCTCTACGCCGAAGCCGGCACCCTGAGCTTCGTCGGCATCGGCCAGGCCCTGGCGGCCACCGGCCTGCCTAGCCCGATCGCGCAACTGGGCCTGGGCATGATGCTGATCGGCCTGGCGTTCAAGTTGTCGCTGGTGCCCTTCCACCTCTGGACCCCGGACGTCTACGAAGGCGCCCCGGCGCCGGTGGCGGCGTTCCTGGCTACCGCTTCGAAAGTGGCGGTGTTCGCGGTGATGGTGCGACTGTTCCAGATCTCGCCAGTGGCCAGCAGCGGTGTCCTGAGCAATGTGCTGACGATCATCGCCATCGCGTCGATCCTGTTTGGCAACCTGCTGGCGCTGACCCAGAGCAACCTCAAGCGTCTGCTCGGTTACTCGTCCATCGCCCACTTCGGCTACCTGCTGATCGCCCTGATCGCCAGCAAAGGCCTGGCCGTGGAAGCCATCGGCGTGTATCTGGTGACCTACGTGATCACCAGCCTCGGCGCCTTCGGCGTGATCACCCTGATGTCCTCGCCGTACAACGGCCGCGACGCCGACGCCCTGTACGAGTACCGCGGCCTGTTCTGGCGCCGTCCGTACCTGACCGCCGTGCTGACCGTGATGATGCTGTCCCTGGCCGGCATCCCGCTGACCGCCGGCTTCATCGGCAAGTTCTACATCATCGCCACCGGCGTCGAGGCCCACCAATGGTGGCTGGTCGGCTCCCTGGTGCTGGGCAGTGCCATCGGCGTGTTCTACTACCTGCGCGTGATGGTCACCCTGTACCTGATGGAACCCAACCTGCGTCGTCACGATGCCGAGCTGCACTGGGAACAGAAGGCAGGCGGCGTGATGCTGCTGGCCATCGCGGTGTTGGCGTTCTTCCTCGGTGTGTACCCGCAGCCGTTGCTGACGCTGGTCCAGCAGGCGGGCCTGACCGGCTGAMEFTIQHFIALAPLLITSATIIVVMLAIAWRRNHSQTFLLSVAGLNLALLSILPALKVAPLAVTPLIQIDSFACLYMALILVATLACVTLAHAYLGDGGSGYPGNREELYLLILMAAAGGLVLVSAQHLASLFIGLELLSVPVYGLVAYAFFNKRSLEAGIKYMVLSAAGSAFLLFGMALLYAEAGTLSFVGIGQALAATGLPSPIAQLGLGMMLIGLAFKLSLVPFHLWTPDVYEGAPAPVAAFLATASKVAVFAVMVRLFQISPVASSGVLSNVLTIIAIASILFGNLLALTQSNLKRLLGYSSIAHFGYLLIALIASKGLAVEAIGVYLVTYVITSLGAFGVITLMSSPYNGRDADALYEYRGLFWRRPYLTAVLTVMMLSLAGIPLTAGFIGKFYIIATGVEAHQWWLVGSLVLGSAIGVFYYLRVMVTLYLMEPNLRRHDAELHWEQKAGGVMLLAIAVLAFFLGVYPQPLLTLVQQAGLTGPGPT0026860_1743DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026860-nuoN-K00343NANA
D1-35_024331533nuoMCOG1008NADH-quinone oxidoreductase subunit MATGATTCTGCCCTGGCTAATCCTGATCCCCTTCATCGGCGGCCTGCTGTGCTGGATGGCGGAGCGTTCCAGCTCTACCCTCCCGCGCTGGATTGCGCTGCTGACCATGTCCCTGGAACTCGCGCTCGGCCTCTGGCTGTGGGCGACCGGCGACTATTCATTTGCACCGGCGCCTGGCGCCGATCCGACCTGGGCGCTTGAGTTCAAGCACACCTGGATCGAGCGCTTCGGCATCAGCGTGCACCTGGCCCTCGACGGCCTGTCGCTGCTGATGATCCTGCTGACCGGCCTGCTGGGTATTCTCTCGGTACTCTGCTCCTGGAAAGAGATCCAGCGTCACGTCGGTTTCTTCCACCTGAACCTGATGTGGATCCTGGGCGGTGTCGTCGGCGTGTTCCTGGCGCTGGACCTGTTCATGTTCTTCTTCTTCTGGGAAATGATGCTGGTGCCGATGTACTTCCTCATCGCGCTCTGGGGTCACAGTTCTTCGGACGGCAAGAAAACCAGGATCTACGCGGCGACCAAGTTCTTCATCTTCACCCAGGCTTCCGGCCTGATCATGCTGGTGGCGATCCTTGGCCTGGTGCTGGTGAACTTCAACAATACTGGCGTGATTACCTTCAATTACGCCGACCTGTTGAAAGTGCAGATGTCGCGCACCACCGAATACGTGCTGATGCTGGGCTTCTTCATCGCCTTCGCGGTGAAGCTGCCGGTGGTGCCGTTCCACTCCTGGCTGCCGGACGCCCACGCCCAGGCACCGACCGCCGGTTCCGTGGACCTGGCCGGTATCCTGTTGAAAACGGCGGCCTACGGCCTCCTGCGTTTCGCCCTGCCGCTGTTCCCGAATGCCTCGGCGGAGTTCGCGCCGATTGCCATGACCCTGGGCCTGATCGGGATTTTCTACGGTGCGTTCCTGGCATTTGCCCAGAGCGATATCAAGCGCCTGATCGCCTTCTCCAGCGTCTCGCACATGGGCTTCGTGCTGATCGGGATCTACTCCGGCAGCCAGCTGGCCCTGCAAGGCGCGGTGATCCAGATGCTCGCCCACGGCCTGTCGGCCGCGGCGCTGTTTATCCTCAGCGGTCAGTTGTACGAGCGCCTGCACACCCGGGACATGCGTGAAATGGGCGGCATCTGGTCGCGCATCGCCTACCTGCCGGCCATCAGCCTGTTCTTCGCGGCCGCTTCCCTGGGTCTGCCAGGCACCGGCAACTTCGTCGGCGAGTTCCTGATCCTGATCGGCTCGTTCGTCAGCGCACCGTGGATCACCGCGATCGCGACGTCCGGCCTGGTGTTCGGTTCGGTCTACTCGCTGATCATGATCCACCGCGCCTACTTCGGTCCGGCCAAGTCGGACGAAGTGTTGCGGGGCATGGACGGTCGCGAACTGATCATGGTGCTCGGCCTTGCGGTGCTGCTGGTTTACCTCGGCGTCTACCCGCAACCGTTCCTCGACACCTCTGCCGCCACGATGCATGGCGTGCAGCAGTGGCTCGGCACCGCCTTCTCTCAACTCGCTTCGGCCCGGTAAMILPWLILIPFIGGLLCWMAERSSSTLPRWIALLTMSLELALGLWLWATGDYSFAPAPGADPTWALEFKHTWIERFGISVHLALDGLSLLMILLTGLLGILSVLCSWKEIQRHVGFFHLNLMWILGGVVGVFLALDLFMFFFFWEMMLVPMYFLIALWGHSSSDGKKTRIYAATKFFIFTQASGLIMLVAILGLVLVNFNNTGVITFNYADLLKVQMSRTTEYVLMLGFFIAFAVKLPVVPFHSWLPDAHAQAPTAGSVDLAGILLKTAAYGLLRFALPLFPNASAEFAPIAMTLGLIGIFYGAFLAFAQSDIKRLIAFSSVSHMGFVLIGIYSGSQLALQGAVIQMLAHGLSAAALFILSGQLYERLHTRDMREMGGIWSRIAYLPAISLFFAAASLGLPGTGNFVGEFLILIGSFVSAPWITAIATSGLVFGSVYSLIMIHRAYFGPAKSDEVLRGMDGRELIMVLGLAVLLVYLGVYPQPFLDTSAATMHGVQQWLGTAFSQLASARPGPT0026850_1635DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026850-nuoM-K00342NANA
D1-35_024341854nuoLCOG1009NADH-quinone oxidoreductase subunit LATGAACCTTCTCTTCCTGACTTTCGTATTTCCCCTCATCGGTTTCCTGCTGCTGTCTTTCTCCCGTGGACGCTGGTCGGAAAACCTTTCGGCGCTGGTCGGCGTGGGCTCGATCGGCCTGTCCGCCCTCATCACCGCCTACGTGATCTGGCAATTCAACGTCGCCCCACCGGAAGGTGGCCGGTACGTGCAGGTGCTGTGGCAGTGGATGGCGGTGGAAGGCTTCACGCCGAACTTCGCCCTCTACCTGGACGGCCTGTCAGTGACCATGCTTGGCGTGGTGGTCGGCGTGGGTTTCCTGATCCACCTGTTCGCCTCCTGGTACATGCGCGGTGAAGCCGGTTACTCGCGCTTCTTCGCCTACACCAACCTGTTCATCGCCAGCATGCTGTTCCTGGTACTCGGCGATAACCTGTTGTTCCTGTACTTCGGCTGGGAAGGCGTGGGCCTGTGCTCGTACCTGTTGATCGGTTTCTACTACAGCAACCGCAACAACGGTAACGCCGCGCTCAAGGCATTCATCGTGACCCGCATCGGCGACGTGTTCATGGCCATCGGCCTGTTCATCCTGTTCCAGCAACTGGGCACGCTGAACATCCAGGAGCTGCTGGTTCGTGCTCCGGAGCACTTCAAGGCCGGCGACTTCTGGATCGTCCTGGCGACCCTGATGCTGCTGGGCGGTGCTGTCGGTAAATCCGCGCAACTGCCGCTGCAGACCTGGCTGGCGGACGCGATGGCCGGCCCGACCCCGGTTTCGGCACTGATCCACGCCGCGACCATGGTCACCGCAGGCGTCTACCTGATCGCCCGTACCCATGGCCTGTTCGCCCTGGCGCCGGACATCCTGCACCTGGTCGGCCTTGTTGGCGGCGTGACCCTGGTGCTGGCCGGTTTTGCCGCGCTGGTGCAGACCGACATCAAGCGTATCCTCGCCTACTCGACCATGAGCCAGATCGGCTACATGTTCCTGGCCCTGGGTGTCGGCGCCTGGGAAGGCGCGATCTTCCACCTGATGACCCACGCGTTCTTCAAGGCCCTGCTGTTCCTTGCCTCCGGTGCGGTGATCGTTGCCTGCCACCACGAGCAGAACATCTTCAAGATGGGCGGCCTGTGGAAAAAACTGCCGTTGGCCTACGCCAGCTTCATCGTTGGCGGCGCGGCCCTGGCGGCCCTGCCACTGGTCACCGCCGGTTTCTACTCCAAGGACGAAATCCTCTGGGAAGCGTTCGCCAGCGGTAACCAGGGTCTGCTCTATGCCGGCCTGGTGGGTGCGTTCATGACTTCGCTGTACACCTTCCGCCTGATCTTCATCGCGTTCCACGGTGAAGCCAAGACCGAAGCCCACGCCGGCCACGGCATCGCCCATTGGCTGCCGCTGTCGGTGCTGATCGTGCTGTCGACCTTTGTCGGCGCAATGATCACCCCACCGCTGGCCGATGTGCTGCCGCAAAGCGTCGGCCATGCCGGCGGCGAAGCCAAGCACAGCCTGGAAATCGCCTCGGGTGCCATCGCCCTGGCGGGGATCCTGCTGGCCGCCCTGCTGTTCCTTGGCAAGCGCCGCTTCGTCACGGCCATCGCCAACAGCGGCATCGGGCGTTTCCTCTCGGCCTGGTGGTTCGCCGCCTGGGGCTTCGACTGGATCTACGACAAACTGTTCGTCAAGCCATACCTTGCGATCAGCCACATTCTGCGCAAAGACCCGCTCGACCAGACCATTGGCCTGATCCCGCGCATGGCCAAGGGCGGCCACACCGCCCTGAGCCGTACCGAGACCGGTCAACTGCGTTGGTATGCGGCTTCCATGGCGGCTGGCGCCGTGCTGGTTATCGGCGCCATCGTGCTGGTAGCGGTCTGAMNLLFLTFVFPLIGFLLLSFSRGRWSENLSALVGVGSIGLSALITAYVIWQFNVAPPEGGRYVQVLWQWMAVEGFTPNFALYLDGLSVTMLGVVVGVGFLIHLFASWYMRGEAGYSRFFAYTNLFIASMLFLVLGDNLLFLYFGWEGVGLCSYLLIGFYYSNRNNGNAALKAFIVTRIGDVFMAIGLFILFQQLGTLNIQELLVRAPEHFKAGDFWIVLATLMLLGGAVGKSAQLPLQTWLADAMAGPTPVSALIHAATMVTAGVYLIARTHGLFALAPDILHLVGLVGGVTLVLAGFAALVQTDIKRILAYSTMSQIGYMFLALGVGAWEGAIFHLMTHAFFKALLFLASGAVIVACHHEQNIFKMGGLWKKLPLAYASFIVGGAALAALPLVTAGFYSKDEILWEAFASGNQGLLYAGLVGAFMTSLYTFRLIFIAFHGEAKTEAHAGHGIAHWLPLSVLIVLSTFVGAMITPPLADVLPQSVGHAGGEAKHSLEIASGAIALAGILLAALLFLGKRRFVTAIANSGIGRFLSAWWFAAWGFDWIYDKLFVKPYLAISHILRKDPLDQTIGLIPRMAKGGHTALSRTETGQLRWYAASMAAGAVLVIGAIVLVAVPGPT0026845_3029DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026845-nuoL-K00341NANA
D1-35_02435309nuoKCOG0713NADH-quinone oxidoreductase subunit KATGCCTGCTATCCCTCTCGAGCATGGTCTGGCGGTTGCCGGCATCCTGTTCTGTCTCGGTCTGGTCGGCCTGATGGTCCGCCGCAACATTCTGTTCGTGCTGATGAGCCTGGAGGTCATGATGAATGCCTCCGCCCTGGCCTTCATCGTCGCGGGCGCGCGCTGGGCGCAACCGGATGGACAGATCATGTTCATCCTGGTGATCAGCCTGGCAGCCGCCGAGGCCAGTATCGGCCTGGCGATCCTGTTGCAGCTGTACCGCCGCTTCCACACTCTCGATATTGACGCTGCCAGCGAGATGCGCGGATGAMPAIPLEHGLAVAGILFCLGLVGLMVRRNILFVLMSLEVMMNASALAFIVAGARWAQPDGQIMFILVISLAAAEASIGLAILLQLYRRFHTLDIDAASEMRGPGPT0026840_890DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026840-nuoK-K00340NANA
D1-35_02436501nuoJCOG0839NADH-quinone oxidoreductase subunit JATGGAATTCGCTTTCTATTTCGCATCGGGTATCGCGGTGGTGTCCACGCTTCGTGTGGTCACCAACACCAATCCTGTGCACGCCCTGCTCTACCTGATCATTTCGCTGATCGCCGTGGCCATGACCTTTTTCGCTCTCGGAGCACCGTTCGCCGGTGCCCTGGAAGTGATCGCCTACGCCGGCGCCATCATGGTGCTGTTCGTATTCGTGGTGATGATGCTCAACCTGGGTCCGGCGGCCGTCCAGCAGGAACGCTCCTGGCTCAAGCCGGGCATCTGGGCCGGACCGGTGATTCTCTCCGCGCTGCTGCTGGGTGAACTGCTGTATGTGCTGTTCGCCCACCAGAGCGGCCAGGCCATCGGCCACACCACCGTAGGCGCCAAGGCCGTGGGCATCAGCCTGTTCGGTCCGTACCTGCTGGTGGTCGAACTCGCCTCGATGCTGCTGCTTGCCGCAGTCGTCACGGCGTTCCATTTGGGCCGTAACGAGGCGAAGGAGTAAMEFAFYFASGIAVVSTLRVVTNTNPVHALLYLIISLIAVAMTFFALGAPFAGALEVIAYAGAIMVLFVFVVMMLNLGPAAVQQERSWLKPGIWAGPVILSALLLGELLYVLFAHQSGQAIGHTTVGAKAVGISLFGPYLLVVELASMLLLAAVVTAFHLGRNEAKEPGPT0026835_2983DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026835-nuoJ-K00339NANA
D1-35_02437549nuoICOG1143NADH-quinone oxidoreductase subunit IATGTTCAAATATATTGGCGACATCGTTAAGGGTACCGGTACCCAACTGCGAAGCCTGGTCATGATCTTCGGCCATGGCTTTCGCAAGCGCGACACCCTGCAATACCCGGAAGAAGCGGTCTACCTGGCGCCGCGTTATCGCGGCCGTATCGTCCTGACCCGCGACCCCGACGGTGAGGAACGCTGCGTGGCCTGCAACCTGTGCGCCGTGGCGTGCCCGGTAGGTTGCATCTCGCTGCAGAAAGCCGAGACCGAAGACGGTCGCTGGTACCCGGACTTCTTCCGTATCAACTTCTCGCGCTGCATTTTCTGCGGGTTGTGCGAGGAAGCGTGCCCGACCACCGCGATCCAGCTCACGCCGGATTTCGAAATGGCCGACTTCAAGCGTCAGGACCTGGTGTACGAGAAAGAAGACTTGCTGATTTCCGGTCCCGGTAAAAACCCTGATTACAACTTCTATCGTGTTGCAGGTATGGCCATTGCCGGTAAGCCGAAAGGCGCCGCGCAGAACGAAGCCGAACCGATCAACGTGAAGAGCTTGCTGCCTTAAMFKYIGDIVKGTGTQLRSLVMIFGHGFRKRDTLQYPEEAVYLAPRYRGRIVLTRDPDGEERCVACNLCAVACPVGCISLQKAETEDGRWYPDFFRINFSRCIFCGLCEEACPTTAIQLTPDFEMADFKRQDLVYEKEDLLISGPGKNPDYNFYRVAGMAIAGKPKGAAQNEAEPINVKSLLPPGPT0026830_1008DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026830-nuoI-K00338NANA
D1-35_024381008nuoHCOG1005NADH-quinone oxidoreductase subunit HATGAGCTGGTTCACCCCTGAAGTGATCGCGGTGATCCTGACGGTCCTCAAGGCCATCGTGATCCTGCTGGCCGTGGTGGTCTGCGGCGCGTTGCTGAGCTTCGTCGAACGTCGCCTGCTCGGCTGGTGGCAGGACCGCTACGGTCCGAACCGCGTCGGCCCGTTCGGCATGTTCCAGATCGCCGCCGACATGATCAAGATGTTCTTCAAGGAAGACTGGACGCCACCGTTTGCCGACAAGGTGATTTTCACCCTGGCACCGGTCGTGGCCATGAGCGCCTTGCTGATCGCCTTCGCGGTCATCCCGATCACCCCGACCTGGGGCGTGGCGGACCTGAACATCGGCCTGCTGTTCTTCTTCGCCATGGCCGGTCTGTCGGTGTACGCGGTGCTGTTCGCCGGTTGGTCGAGCAACAACAAGTTCGCCCTGCTCGGCAGCCTGCGGGCCTCGGCCCAGACCGTGTCCTATGAAGTGTTCATGGGCCTGTCGCTGATGGGCATCGTGATCCAGGCCGGCTCGTTCAACATGCGCGACATCGTCGAGTACCAGGCCCAGAACCTGTGGTTCATCATTCCGCAGTTCTTCGGTTTCTGTACCTTCTTCATCGCCGGCGTGGCCGTGACTCACCGTCACCCGTTCGACCAGCCGGAAGCGGAACAGGAACTGGCCGACGGTTACCACATTGAATATGCCGGCATGAAATGGGGCATGTTCTTCGTTGGCGAGTACATCGGCATCATCCTGATCTCGGCGCTGCTGGTAACGCTGTTCTTCGGTGGCTGGCACGGTCCGTTCGGCATCCTGCCGCAACTGTCCTTCGTCTGGTTCGCCCTGAAGACCGCGTTCTTCATCATGCTGTTCGTTCTGCTGCGCGCCTCGATCCCGCGCCCACGCTACGACCAGGTGATGGACTTCAGCTGGAAATTCTGCCTGCCGCTGACCCTGATCAACATGCTGGTGACCGCTGCGATCGTTTTGATGAACGCGCCTGCGGCCGCGGTTCAGTGAMSWFTPEVIAVILTVLKAIVILLAVVVCGALLSFVERRLLGWWQDRYGPNRVGPFGMFQIAADMIKMFFKEDWTPPFADKVIFTLAPVVAMSALLIAFAVIPITPTWGVADLNIGLLFFFAMAGLSVYAVLFAGWSSNNKFALLGSLRASAQTVSYEVFMGLSLMGIVIQAGSFNMRDIVEYQAQNLWFIIPQFFGFCTFFIAGVAVTHRHPFDQPEAEQELADGYHIEYAGMKWGMFFVGEYIGIILISALLVTLFFGGWHGPFGILPQLSFVWFALKTAFFIMLFVLLRASIPRPRYDQVMDFSWKFCLPLTLINMLVTAAIVLMNAPAAAVQPGPT0026825_2464DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026825-nuoH-K00337NANA
D1-35_024392715nuoGCOG1034NADH-quinone oxidoreductase subunit GATGGCCACTATCCACGTAGACGGCAAAGAGCTCGAAGTCGATGGCGCAGACAACCTGTTACAGGCATGTCTGTCGCTGGGCCTCGACATTCCTTATTTCTGCTGGCACCCCGCCCTTGGCAGCGTTGGCGCCTGTCGCCAGTGCGCGGTCAAGCAGTACACCGACGAAAACGACAAGCGTGGTCGGATCGTCATGTCCTGCATGACCCCCGCCACCGACGGCAGCTGGATCTCCATCGACGACGAAGAAGCGAAAGTGTTTCGCGCCAGCGTCGTCGAATGGCTGATGACCAACCACCCTCACGACTGCCCGGTCTGTGAGGAAGGCGGCCATTGCCACCTGCAAGACATGACCGTGATGACCGGCCACAACGAGCGCCGTTATCGCTTCACCAAGCGCACCCACCAGAACCAGGACCTCGGCCCGTTCATTTCCCACGAGATGAACCGCTGCATCGCCTGCTACCGTTGCGTGCGTTTCTACAAGGACTACGCCGGCGGCACCGACCTCGGTGTGTTCGGCGCCCACGACAACGTGTACTTCGGTCGCGTTGAAGACGGCACCCTGGAAAGCGAGTTCTCCGGCAACCTCACCGAGGTCTGCCCGACCGGTGTGTTCACCGACAAGACTCACTCCGAGCGCTACAACCGCAAGTGGGACATGCAGTTCTCGCCAAGCATCTGCCACGGCTGCTCCAGCGGCTGCAACATCAGCCCGGGCGAACGCTACGGCGAACTACGTCGCATCGAGAACCGCTACAACGGTTCGGTGAACCAGTATTTCCTCTGCGACCGTGGCCGTTTCGGCTATGGCTACGTCAATCGCAAGGACCGCCCGCGCCAGCCGCTGCTCGCCAATGGCGCCAAGCTGAGCCTGGACGAAGCCCTGGACAAGGCCGCCGAACTGCTGCGCGGTCGCAACATTGTCGGCATCGGTTCGCCACGGGCCAGCCTGGAAAGCAACTACGCCCTGCGTGAGCTGGTCGGTGCCGAGCACTTCTACAGCGGCATCGAAGCCGGCGAGCTGGAACGTATTCGCCTGGTGCTGCAAGTGCTCAAGGACAGCCCGCTGCCCGTGCCGACGATGCGCGACATCGAAGATCACGATGCGGTGTTCGTCCTCGGCGAAGACCTGACCCAGACCGCCGCCCGCATGGCCCTGGCCCTGCGCCAGTCGGTAAAAGGCAAGGCCGAGGACATGGCCGACGCCATGCGCGTCCAGCCATGGCTCGACGCTGCGGTGAAGAACATCGGCCAGGACGCGCTGAACCCGCTGTTCATCGCCAGCCTCGCTGAAACCAAGCTCGACGACGTCGCCGAAGAATGCGTCCACGCCGCTCCGGACGACCTCGCGCGCATCGGTTTTGCCGTCGCCCACGCCCTGGACGCCAGCGCCCCGGCCGTCGACGGCCTGGACAGCGAAGCCGCCGGCCTGGCCCAGCGCATCGCCGACGCCCTGCTGGCGGCCAAGCGTCCATTGATCATCGCCGGCACCTCGCTGGGTTCCAAGGCGCTGATCGAAGCCGCCGCCAACATCGCCAAGGCCCTGAAGCTGCGCGAGAAGAACGGTTCCATCAGCCTGGTCGTGCCGGAAGCCAACAGCCTCGGCCTGGCCATGCTCGGTGGCGAATCGGTCGATGCCGCCCTGCAAGCAGTGATCGACGGCAGCGCCGATGCCATCGTGGTGCTGGAGAACGACCTGTTCACCCGCACCGACAATGCCAAGGTCGATGCTGCGCTGAACGCTGCCAAGGTAGTGATCGTCGCCGACCATCAGAAAACCGCCACCACCGACCGCGCCGACCTGGTGCTGCCGGCGGCGAGCTTCGCCGAAGGCGACGGTACGCTGGTCAGCCAGGAAGGTCGCGCCCAGCGCTTCTTCCAGGTCTTTGACCCGCAATACCTGGACGCCAGCATCCTGGTCCACGAAGGCTGGCGCTGGCTGCATGCCTTGCGCGCGACCCTGCTGAACCAGCCGATCGACTGGACCCAGCTGGACCACGTCACCGCGGCCGTCGCTTCGAGCAGCCCGCAGTTGAGCCGCATCGTCGACGCCGCGCCGTCCGCCGCGTTCCGCATCAAGGGCCTGAAGCTGGCGCGCGAACCGCTGCGCTACTCCGGTCGCACCGCGATGCGCGCGAACATTAGCGTGCACGAACCGCGTATGCCGCAGGACCAGGACACCGCGTTCGCCTTCTCCATGGAAGGTTACTCGGGCTCCGCCGAACCGCGCTCCCAGGTGCCGTTCGCCTGGTCGCCGGGCTGGAACTCGCCGCAAGCCTGGAACAAGTTCCAGGACGAAGTCGGCGGTCACCTGCGCGCCGGTGATCCGGGCACCCGCCTGATCGAAAGCCAGGGCGATGGCCTCGGCTGGTTCGCCAGCGTGCCACGCGCCTTCAATCCGGCACCGGGCACCTGGCAGGTCGTGCCGTTCCATCACCTGTTCGGCAGTGAAGAGAACTCTTCCAAGGCCGAGCCGGTGCAGGAGCGCATCCCGGCGGCCTACGTGTCGCTGGCCAAGTCCGAAGCCGATCGCCTGGGCGTCAACGATGGCGCCTTGCTGAGCCTGAACGTTGCGGGCCGGACCTTGCGTCTGCCACTGCGCATCAATGAAGAACTGGGCGCCGGCCTGGTGGCCCTGCCGGCTGGCCTGGCGGGCATTCCACCGGCGATTTTCGGCAAGACTGTCGACGGTCTGCAGGAGGCAGCGCAATGAMATIHVDGKELEVDGADNLLQACLSLGLDIPYFCWHPALGSVGACRQCAVKQYTDENDKRGRIVMSCMTPATDGSWISIDDEEAKVFRASVVEWLMTNHPHDCPVCEEGGHCHLQDMTVMTGHNERRYRFTKRTHQNQDLGPFISHEMNRCIACYRCVRFYKDYAGGTDLGVFGAHDNVYFGRVEDGTLESEFSGNLTEVCPTGVFTDKTHSERYNRKWDMQFSPSICHGCSSGCNISPGERYGELRRIENRYNGSVNQYFLCDRGRFGYGYVNRKDRPRQPLLANGAKLSLDEALDKAAELLRGRNIVGIGSPRASLESNYALRELVGAEHFYSGIEAGELERIRLVLQVLKDSPLPVPTMRDIEDHDAVFVLGEDLTQTAARMALALRQSVKGKAEDMADAMRVQPWLDAAVKNIGQDALNPLFIASLAETKLDDVAEECVHAAPDDLARIGFAVAHALDASAPAVDGLDSEAAGLAQRIADALLAAKRPLIIAGTSLGSKALIEAAANIAKALKLREKNGSISLVVPEANSLGLAMLGGESVDAALQAVIDGSADAIVVLENDLFTRTDNAKVDAALNAAKVVIVADHQKTATTDRADLVLPAASFAEGDGTLVSQEGRAQRFFQVFDPQYLDASILVHEGWRWLHALRATLLNQPIDWTQLDHVTAAVASSSPQLSRIVDAAPSAAFRIKGLKLAREPLRYSGRTAMRANISVHEPRMPQDQDTAFAFSMEGYSGSAEPRSQVPFAWSPGWNSPQAWNKFQDEVGGHLRAGDPGTRLIESQGDGLGWFASVPRAFNPAPGTWQVVPFHHLFGSEENSSKAEPVQERIPAAYVSLAKSEADRLGVNDGALLSLNVAGRTLRLPLRINEELGAGLVALPAGLAGIPPAIFGKTVDGLQEAAQPGPT0026820_482DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026820-nuoG-K00336NANA
D1-35_024401359nuoFCOG1894NADH-quinone oxidoreductase subunit FATGACCCTGACTTCCTTCGGGCCCGCCAACCGCATCCAGCGTTCGGCCGAAACCCATCCCCTGACCTGGCGCCTGCGTGACGATGGCGAGGCGGTGTGGCTGGACGAATACCAGGCGAAGAACGGCTATGCCGCCGCGCGCAAGGCGTTCGCCGACATGGCCGCCGACGACATCGTCCAGACCGTGAAAGACGCCGGCCTCAAGGGCCGTGGCGGCGCGGGCTTCCCCACGGGTGTGAAGTGGGGCCTGATGCCCAAGGACGAGTCCATCAACATCCGCTACCTGCTGTGCAACGCGGACGAGATGGAACCCAACACCTGGAAAGACCGCATGCTGATGGAGCAACTGCCCCATCTGCTGATCGAAGGCATGCTGATCAGTGCCCGCGCGCTGAAAACCTACCGTGGCTACATCTTCCTGCGCGGCGAATACACCACCGCCGCCAGGCACCTGAACCGTGCCGTCGAAGAAGCCAAGGCCGCAGGCCTGCTGGGCAAGAACATCCTGGGCTCGGGTTTTGATTTCGAGCTGTTCGTCCACACCGGCGCCGGGCGCTACATCTGCGGTGAAGAAACCGCCCTGATCAACTCCCTCGAAGGCCGCCGCGCCAACCCGCGCTCCAAGCCGCCCTTCCCCGCCGCTGTTGGCGTGTGGGGCAAGCCGACCTGCGTGAACAACGTCGAGACCTTGTGCAACGTGCCGGCGATCATCGCCGACGGCGTGGACTGGTACAAATCCCTGGCCCGTGACGGCAGCGAAGACATGGGCACCAAGCTCATGGGCTTCTCCGGCAAGGTCAAGAACCCTGGCCTGTGGGAACTGCCGTTCGGCGTCACCGCGCGCGAGCTGTTCGAGGACTACGCCGGCGGCATGCGCGACGGCTACAAGCTCAAGTGCTGGCAGCCCGGCGGCGCCGGTACCGGTTTCCTGTTGCCGGAACACCTTGACGCACAAATGTACGCCGGCGGCATCGCCAAGGTCGGCACCCGGATGGGTACCGGCCTGGCGATGGCGGTGGACGACAGCGTCAACATGGTCTCCCTGCTGCGCAACATGGAGCAGTTTTTCGCCCGCGAGTCCTGCGGTTTCTGCACCCCTTGCCGCGACGGCCTGCCATGGAGCGTCAAGCTGCTGATGGCCCTCGAGAACGGCCAGGGCCAGGCCGGCGACATCGAGACCCTGCTGGGGCTGGTCGGTTTCCTCGGCCCAGGCAAGACCTTCTGTGCTCACGCACCGGGTGCCGTGGAGCCGTTGGGCAGCGCAATCAAATACTTCCGCCCTGAGTTCGAGGCCGGCATCGCGCCAACCCGCGCGGGCGATCTCAATCAGGTGGTCACGCCGACCATGGTCGGCGCGTAAMTLTSFGPANRIQRSAETHPLTWRLRDDGEAVWLDEYQAKNGYAAARKAFADMAADDIVQTVKDAGLKGRGGAGFPTGVKWGLMPKDESINIRYLLCNADEMEPNTWKDRMLMEQLPHLLIEGMLISARALKTYRGYIFLRGEYTTAARHLNRAVEEAKAAGLLGKNILGSGFDFELFVHTGAGRYICGEETALINSLEGRRANPRSKPPFPAAVGVWGKPTCVNNVETLCNVPAIIADGVDWYKSLARDGSEDMGTKLMGFSGKVKNPGLWELPFGVTARELFEDYAGGMRDGYKLKCWQPGGAGTGFLLPEHLDAQMYAGGIAKVGTRMGTGLAMAVDDSVNMVSLLRNMEQFFARESCGFCTPCRDGLPWSVKLLMALENGQGQAGDIETLLGLVGFLGPGKTFCAHAPGAVEPLGSAIKYFRPEFEAGIAPTRAGDLNQVVTPTMVGAPGPT0026815_879DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026815-nuoF-K00335NANA
D1-35_02441498nuoE_1COG1905NADH-quinone oxidoreductase subunit EATGAACAGCACGCTTATCCAGACAGACCGTTTCGCCCTGAGCGAAACCGAGCGCTCGGCCATCGAGCACGAGCTGCATCACTACGAAGACCCGCGCGCGGCGTCGATCGAAGCCCTGAAGATTGTCCAGAAGGAACGTGGCTGGGTGCCCGATGGCGCGCTCTACGCCATCGGCGAAATCCTCGGCATTCCGGCCAGCGACGTCGAAGGTGTCGCCACGTTTTACAGCCAGATTTTCCGTCAGCCGGTCGGCCGCCACATCATTCGCGTCTGCGACAGCATGGTCTGCTACATCGGCGGCCACGAGTCGGTGGTCAGCGAAATCCAGGGCAAGCTGGGCATTGGCCTGGGCCAGACCACCGCCGACGGCCGCTTCACGCTGCTGCCGGTGTGCTGCCTGGGCAACTGCGACAAGGCACCGGCGCTGATGATCGACGACGACACCTTCGGTGACGTCAAGCCGGATGGCGTCGCCAAACTGCTGGAGGGCTACGTATGAMNSTLIQTDRFALSETERSAIEHELHHYEDPRAASIEALKIVQKERGWVPDGALYAIGEILGIPASDVEGVATFYSQIFRQPVGRHIIRVCDSMVCYIGGHESVVSEIQGKLGIGLGQTTADGRFTLLPVCCLGNCDKAPALMIDDDTFGDVKPDGVAKLLEGYVPGPT0026810_2082DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026810-nuoE-K00334NANA
D1-35_024421782nuoCCOG0649NADH-quinone oxidoreductase subunit C/DATGACTACAGGCAGTGCTCTGTACATCCCGCCTTACAAGGCAGACGACCAGGATGTGGTCGTCGAACTGAACAACCGCTTTGGCGCCGAGGCGTTCACCGCCCAGGCCACCCGCACCGGCATGCCGGTGCTTTGGGTTGCCCGCGCCAGGCTCATCGAAGTCCTGACTTTCCTGCGCAACCTGCCCAAGCCGTACGTCATGCTCTATGACCTGCACGGCGTGGACGAGCGCCTGCGCACCAAGCGCCAGGGTCTGCCGGGCGCCGACTTCACCGTGTTCTACCACCTGCTGTCGATCGAGCGTAATAGTGACGTAATGATCAAGGTCGCCTTGTCCGAGAGCGACCTCAGCGTGCCGACCGTGACCGGCATCTGGCCGAACGCCAACTGGTACGAGCGTGAAGTCTGGGACATGTTCGGCATCGACTTCCCCGGCCACCCGCACCTGACCCGCATCATGATGCCGCCGACCTGGGAAGGTCACCCGTTGCGCAAGGACTTCCCGGCCCGCGCCACCGAGTTCGACCCGTACAGCCTGACCCTGGCCAAGCAGCAGCTCGAGGAAGAATCCGCGCGTTTCAAGCCGGAAGACTGGGGAATGAAGCGTTCCGGCGCCAACGAGGACTACATGTTCCTCAACCTGGGCCCGAACCACCCTTCGGCCCACGGTGCGTTCCGTATCATCCTGCAACTGGACGGTGAAGAGATCGTCGATTGCGTCCCGGACATCGGCTACCACCACCGTGGCGCCGAGAAGATGGGTGAGCGTCAGTCCTGGCACAGCTATATTCCATACACCGACCGCATCGATTACCTCGGCGGCGTGATGAACAACCTGCCGTACGTCCTGTCGGTGGAAAAACTGGCGGGCATCACGGTGCCGGACCGGGTCAACGTGATCCGCATCATGATGGCCGAGTTCTTCCGGATCACCAGCCACCTGTTGTTCCTGGGTACCTATATCCAGGACGTGGGCGCCATGACGCCGGTGTTCTTCACTTTCACCGACCGCCAGAAAGCCTACACCGTGATCGAAGCCATCACCGGTTTCCGCCTGCACCCGGCCTGGTACCGCATCGGTGGCGTTGCCCACGACCTGCCGCGCGGCTGGGAAAAGCTGGTCAAGGATTTCGTCGAGTGGATGCCCAAGCGCCTGGACGAATACACCAAGGCAGCGTTGCAGAACAGCATCCTCAAGGGTCGTACCGTCGGCGTCGCCGCGTACAACACCAAGGAAGCGCTGGAATGGGGCGTCACCGGCCCGAACCTGCGCGCCACCGGCCTCGATTTCGACCTGCGCAAGGCGCGCCCGTACTCCGGCTACGAGAACTTCGAGTTCGAAGTCCCGCTGGCGTCCAGCGGCGATGCCTATGACCGCTGCCTGGTTCGCGTCGAGGAAATGCGCCAGAGCGTCAAGATCATCGAGCAATGCATGCGCAACATGCCGGAAGGCCCGTACAAGGCGGACCACCCGCTGACCACGCCGCCGCCAAAAGAGCGCACGCTGCAACACATCGAGACCCTGATCACGCACTTCCTGCAGGTTTCGTGGGGCCCGGTCATGCCGGCCAACGAATCCTTCCAGATGATCGAAGCGACCAAGGGCATCAACAGTTATTACCTGACGAGCGATGGCGGCACCATGAGCTACCGCACCCGGATTCGCACCCCAAGCTACCCGCACCTGCAGCAGATCCCTTCGGTGATCAAAGGCAGCATGGTCGCGGACTTGATCGCGTACCTGGGTAGTATCGATTTCGTTATGGCCGACGTGGACCGCTAAMTTGSALYIPPYKADDQDVVVELNNRFGAEAFTAQATRTGMPVLWVARARLIEVLTFLRNLPKPYVMLYDLHGVDERLRTKRQGLPGADFTVFYHLLSIERNSDVMIKVALSESDLSVPTVTGIWPNANWYEREVWDMFGIDFPGHPHLTRIMMPPTWEGHPLRKDFPARATEFDPYSLTLAKQQLEEESARFKPEDWGMKRSGANEDYMFLNLGPNHPSAHGAFRIILQLDGEEIVDCVPDIGYHHRGAEKMGERQSWHSYIPYTDRIDYLGGVMNNLPYVLSVEKLAGITVPDRVNVIRIMMAEFFRITSHLLFLGTYIQDVGAMTPVFFTFTDRQKAYTVIEAITGFRLHPAWYRIGGVAHDLPRGWEKLVKDFVEWMPKRLDEYTKAALQNSILKGRTVGVAAYNTKEALEWGVTGPNLRATGLDFDLRKARPYSGYENFEFEVPLASSGDAYDRCLVRVEEMRQSVKIIEQCMRNMPEGPYKADHPLTTPPPKERTLQHIETLITHFLQVSWGPVMPANESFQMIEATKGINSYYLTSDGGTMSYRTRIRTPSYPHLQQIPSVIKGSMVADLIAYLGSIDFVMADVDRPGPT0026795_361DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026795-nuoCD-K13378NANA
D1-35_02443675nuoBCOG0377NADH-quinone oxidoreductase subunit BATGCAATACAATCTCACCAGGATCGACCCCGATGCTCCTAACGAGCAGTATCCGATCGGCAAGCGGGAAACCGTTTCCGATCCGTTAGAGGATCAAGTTCACAAGAACATCTTCATGGGCAAGCTCGAAGACGTGCTGAACAGCACGGTCAACTGGGGTCGCAAGAACTCCCTGTGGCCGTACAACTTCGGCCTTTCGTGCTGCTACGTGGAAATGACCACCGCCTTCACGGCGCCCCACGACATCGCGCGCTTTGGCGCCGAGGTGATCCGGGCATCGCCGCGCCAGGCGGATTTCATGGTTATCGCCGGTACGCCGTTCCTGAAAATGGCTCCCATCATCCAGCGCCTGTACGAACAGATGCTGGAACCCAAGTGGGTCATTTCCATGGGCGCGTGTGCCAACTCCGGCGGCATGTACGACATTTATTCCGTGGTCCAGGGAGTCGACAAGTTCCTGCCGGTGGATGTCTACGTGCCCGGCTGCCCGCCCCGCCCCGAAGCGTTCCTGCAAGGCCTGATGCTGCTGCAGGAATCCATCGGCCAGGAGCGTCGCCCACTGTCCTGGGTCGTCGGTGATCAAGGCGTCTATCGCGCCGACATGCCGTCGCAAAAGGAACAGCGCCGCGAACAGCGAATCGCAGTCACCAACCTGCGCAGCCCCGACGAAGTCTGAMQYNLTRIDPDAPNEQYPIGKRETVSDPLEDQVHKNIFMGKLEDVLNSTVNWGRKNSLWPYNFGLSCCYVEMTTAFTAPHDIARFGAEVIRASPRQADFMVIAGTPFLKMAPIIQRLYEQMLEPKWVISMGACANSGGMYDIYSVVQGVDKFLPVDVYVPGCPPRPEAFLQGLMLLQESIGQERRPLSWVVGDQGVYRADMPSQKEQRREQRIAVTNLRSPDEVPGPT0026785_287DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026785-nuoB-K00331NANA
D1-35_02444414ndhCNAD(P)H-quinone oxidoreductase subunit 3, chloroplasticATGCCCGAAGCGACAGGACTCATGGCCCACAACTGGGGCTTTGCCATTTTCCTTCTGGGTGTTGTCGGCCTGTGTGCCTTCATGCTCGGCGTGTCGAGCCTGCTCGGGTCAAAAGCCTGGGGCCGCAGCAAGAATGAACCGTTCGAATCCGGCATGCTGCCTACCGGTGGCGCCCGCTTGCGGCTCTCAGCCAAATTCTATCTGGTCGCGATGCTCTTCGTGATCTTCGATATCGAAGCCCTTTTTCTCTTTGCATGGTCTGTGTCCGTCCGCGAAAGCGGCTGGACCGGATTCGTCGAAGCTCTCGTTTTCATAGCAATTCTGTTGGCAGGTCTTGTCTACCTTTACCGGGTGGGGGCTCTTGATTGGGCTCCGGAAGCTCGGCGCAAGCGGCAGGCGAAGCTGAAACAATGAMPEATGLMAHNWGFAIFLLGVVGLCAFMLGVSSLLGSKAWGRSKNEPFESGMLPTGGARLRLSAKFYLVAMLFVIFDIEALFLFAWSVSVRESGWTGFVEALVFIAILLAGLVYLYRVGALDWAPEARRKRQAKLKQPGPT0026780_553DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026780-nuoA-K00330NANA
D1-35_024451326aceACOG2224Isocitrate lyaseATGGCACTGACACGCGAACAGCAAATTGCAGCCCTTGAAAAAGACTGGGCTGAAAACCCGCGCTGGAAAGGCGTGAAGCGCAATTATTCGGCTGCTGACGTCGTCCGTCTGCGTGGCTCGGTGCAACCTGAGCACACCTTCGCGAAAATGGGCGCCGAGAAGCTGTGGAACCTGGTCACCCAGGGCGCCAAGCCAGCCTTCCGTCCCGAGAAAGACTTCGTCAACTGCATGGGCGCCCTGACTGGCGGCCAGGCTGTGCAGCAGGTCAAGGCCGGTATCCAGGCCATCTACCTGTCGGGCTGGCAAGTGGCCGCGGACAACAACTCCGCCGAGTCCATGTACCCCGACCAGTCGCTGTACCCGGTGGACTCGGTTCCAACCGTGGTCAAGCGCATCAACAACTCGTTCCGTCGTGCCGACCAGATCCAGTGGAAAGCCGGCAAGAACCCGGGCGACGAAGGCTACATCGACTACTTCGCGCCAATCGTGGCTGACGCCGAAGCCGGTTTCGGCGGCGTACTGAACGCCTACGAACTGATGAAGAGCATGATCGAGGCAGGCGCCGCCGGCGTGCACTTCGAAGATCAGCTGGCCTCGGTGAAAAAATGCGGCCACATGGGCGGCAAGGTACTGGTTCCCACCCAGGAAGCCGTACAGAAGCTGACCGCCGCGCGCCTGGCCGCCGACGTTGCCGGCGTACCGACCATCATTCTGGCCCGTACCGACGCCAACGCCGCTGACCTGCTGACTTCCGACTGCGATCCGTACGACCAGCCGTTCGTCACCGGCACCCGTACCCAGGAAGGCTTCTACAAGGTGCGCGCCGGTCTCGACCAGGCCATCGCCCGTGGCCTGGCCTACGCCCCGTACGCCGACCTGATCTGGTGCGAAACCGCCAAGCCGGACCTGGACGAAGCTCGTCGCTTCGCCGAAGCGATCAAGAAGGAATACCCGGACCAACTGCTGTCGTACAACTGCTCGCCTTCCTTCAACTGGAAGAAGAACCTGGACGACGCGACCATCGCCAAGTTCCAGCGCGAACTGTCCGCCATGGGCTACAAGCACCAGTTCATCACCCTGGCCGGCATCCACAACATGTGGCACAGCATGTTCAACCTGGCGCACGACTACGCCCGCAACGACATGACCGCCTACGTGAAGCTGCAAGAGCAGGAGTTCGCTGACGCCGCCAAAGGCTACACCTTCGTGGCCCACCAGCAGGAAGTCGGCACCGGCTACTTCGACGACATGACCACGGTGATCCAGGGCGGTACCTCGTCGGTGACCGCACTGACCGGCTCGACCGAAGAAGAACAGTTCCACTGAMALTREQQIAALEKDWAENPRWKGVKRNYSAADVVRLRGSVQPEHTFAKMGAEKLWNLVTQGAKPAFRPEKDFVNCMGALTGGQAVQQVKAGIQAIYLSGWQVAADNNSAESMYPDQSLYPVDSVPTVVKRINNSFRRADQIQWKAGKNPGDEGYIDYFAPIVADAEAGFGGVLNAYELMKSMIEAGAAGVHFEDQLASVKKCGHMGGKVLVPTQEAVQKLTAARLAADVAGVPTIILARTDANAADLLTSDCDPYDQPFVTGTRTQEGFYKVRAGLDQAIARGLAYAPYADLIWCETAKPDLDEARRFAEAIKKEYPDQLLSYNCSPSFNWKKNLDDATIAKFQRELSAMGYKHQFITLAGIHNMWHSMFNLAHDYARNDMTAYVKLQEQEFADAAKGYTFVAHQQEVGTGYFDDMTTVIQGGTSSVTALTGSTEEEQFHPGPT0001550_1159DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-GLYOXYLIC_ACID_BIOSYNTHESIS,PGPT0001550-aceA-K01637NANA
D1-35_02447762hypothetical proteinATGTCCCTACGTACCCTGCTGACCACCCTGCTGCTCGGTTGCAGCCTGTCAGTCATGGCGGCTACCGAAATCGTGCCGCTGAACTACCGCACCAGCGCGGACTTGCTGCCGGTGGCGCAGAACTTCATCGGCAAGGATGGCCAGGTCAGCGCTTACGGCAACCAACTGATCGTCAACGCCGAACCCGGCAAGATCGAAGAACTTCGACAATTCCTGGCGCAGCTCGACGTGGCTCCCAAGCGCTTGCTGATCACGGTCGACACCAATGAAAACAACCTGCAAGGCGATCAGGGTTACTCGATCAACGGAGCCGCCCCCAGCCAGACCCGCATCATCAACCGCAGCACCGCCAGCCGTGACGGCGGCGTGCAGCAGATCCAGGCCAGCGAGGGCCAGCCGGCGCTGATCCAGGTGGGCCAGAGCGTGCCCTTCACCAGCAACCAGACCGATGGCTATGGGCGCATGCAAAGCCAGACCGAATACCGCAACGTCACCCAAGGTTTTTACGTAACGGCCAGCGTCACGGGCGAGACCGTTCATCTGAGCATCAGCACCAACCGTGACCGCATGAGCCAGGAACGTCCCGATGTAGTGAACGTGCAAAGCACCGACACAACCGTCAGCGGGCGCCTGGGCGAGTGGATCACCCTGGCCGGGGTGAATCGGCAGAATCAGGCCGATAAACAAGGCCTGACCCGCAGCTACTCGACCCAAGGCCGGGATGACATGATTTTGCGGGTCAAGGTCGATACGCTGAACTGAMSLRTLLTTLLLGCSLSVMAATEIVPLNYRTSADLLPVAQNFIGKDGQVSAYGNQLIVNAEPGKIEELRQFLAQLDVAPKRLLITVDTNENNLQGDQGYSINGAAPSQTRIINRSTASRDGGVQQIQASEGQPALIQVGQSVPFTSNQTDGYGRMQSQTEYRNVTQGFYVTASVTGETVHLSISTNRDRMSQERPDVVNVQSTDTTVSGRLGEWITLAGVNRQNQADKQGLTRSYSTQGRDDMILRVKVDTLNNANANANANA
D1-35_02448426AcetyltransferaseATGAATAAAATTCACGTTCGTGTCGCAGACTGGCAAAAGGATAACGCCGAGATCCGGCGCATTCGTGAAGCGGTATTCATTGCCGAGCAATCCGTGCCGCCGGAGTTGGAGTGGGATTCGGATGACCAGGACGCCGTGCATTTCCTGGCCTTCGAAGGCGACTTCCCCATCGGCACCGCGCGCCTGCTGACCGATGGCCATATCGGCCGCGTCTCGGTCCTGAAGGATTGGCGCGGCCTGAAAGTCGGCGATGCGCTGATGCACGCAGCAATCGCCGAGGCCGAGAAGCGCGGGCTCAAGCAGCAGATGCTCAGCGCCCAGGTGCACGCCACGCCGTTTTACGAGCGACTGGGGTTTGCGGTGGTCAGCGAGGAGTTCCTCGAAGCCGGGATTCCTCACGTGGACATGGTGCGGCGCTCGATCTGAMNKIHVRVADWQKDNAEIRRIREAVFIAEQSVPPELEWDSDDQDAVHFLAFEGDFPIGTARLLTDGHIGRVSVLKDWRGLKVGDALMHAAIAEAEKRGLKQQMLSAQVHATPFYERLGFAVVSEEFLEAGIPHVDMVRRSINANANANANA
D1-35_024491167roxACOG285050S ribosomal protein L16 3-hydroxylaseATGAATTCTGACATTCCACTGCAACTCCTGGGCGGTATCACGGCACGGGAGTTCCTGCGCGACTACTGGCAGAAGAAACCCCTGCTGATCCGCCAGGCCATTCCTGACTTCGAAAGCCCGATCGACGCCGACGAACTGGCCGGCCTTGCGCTTGAGGAAGAGATCGAGTCACGCCTGGTGATCGAACACGGCGAGCGCCCCTGGGAATTGCGTCGCGGCCCGTTCGCCGAAGACGAGTTCAGCAAACTGCCGGAGCGCGAGTGGACCCTGCTGGTGCAGGCGGTCGACCAGTTCGTACCGGAAGTCAGCGAGCTGCTGGAGCATTTCCGCTTTTTGCCGAGCTGGCGCATCGACGATGTGATGATCAGCTTCGCTGCCCCAGGTGGCGGCGTCGGCCCGCATTTCGACAACTACGATGTGTTCCTGCTGCAGGGCCACGGCAAGCGCAACTGGAAAATCGGCCAGATGTGCAACTCCGAAAGCCCGCTGCTGCCCCATGCAGACTTGCGCATCCTCGCCGATTTCGAGGCGACCGAGGAATGGGTCCTGGAACCTGGCGACATGCTCTACCTGCCGCCGCGCCTGGCCCACTGCGGCGTCGCCGTGGATGACTGCATGACCTATTCGGTGGGTTTCCGCGCACCGAGCGCCGCCGAGGTGCTGACCCATTTCACCGACTTCCTCAGCCAGTTCCTGCCGGATGAAGAGCGCTACACCGACGCCGATGCGCGGCCTGTCGCCGATCCGCATCAGATCCAGCAAGACGCCCTGGACCGACTCAAGGGCCTGCTGGCCGAGCACATGAGCGACGAGCGCCTGCTGCTGACCTGGTTCGGCCAGTTCATGACCGAGCCGCGCTATCCGGAACTGGTCGTCGGCCCGGAGCTGGAAGAGGACGATCTGCTGGCCGGACTGGAACAGGGCGCGGTGATCATTCGCAACCCGAGCGCTCGCCTGGCCTGGTCGGAAGTCGATGAAGACCTGTTGCTGTTCGCCAGCGGCCAGAGCCGTTATTTGCCGGGCAAATTGCGCGACCTGTTGAAGATGATCTGTGCCGCCGACGCGCTGCACATCGAGAACCTCGGCCCATGGCTGGCCGACGAGGACGGTCGCGGCCTCATTCATGAATTGGTCAAGCAAGGTAGCCTGGGGTTCGCCGATGAATAAMNSDIPLQLLGGITAREFLRDYWQKKPLLIRQAIPDFESPIDADELAGLALEEEIESRLVIEHGERPWELRRGPFAEDEFSKLPEREWTLLVQAVDQFVPEVSELLEHFRFLPSWRIDDVMISFAAPGGGVGPHFDNYDVFLLQGHGKRNWKIGQMCNSESPLLPHADLRILADFEATEEWVLEPGDMLYLPPRLAHCGVAVDDCMTYSVGFRAPSAAEVLTHFTDFLSQFLPDEERYTDADARPVADPHQIQQDALDRLKGLLAEHMSDERLLLTWFGQFMTEPRYPELVVGPELEEDDLLAGLEQGAVIIRNPSARLAWSEVDEDLLLFASGQSRYLPGKLRDLLKMICAADALHIENLGPWLADEDGRGLIHELVKQGSLGFADENANANANANA
D1-35_024501371purBCOG0015Adenylosuccinate lyaseATGCAGCTCTCTTCGCTCACTGCGGTTTCCCCTGTAGACGGCCGCTACGCCGGCAAAACCCAGGCCCTGCGCCCTATTTTCAGCGAGTACGGCCTGATCCGTGCCCGCGTTCTGGTTGAAGTGCGCTGGCTCCAGCGCCTGGCCGCTCACCCTGGCATTGGCGAAGTACCGGCCTTTTCCGCCGAAGCCAACGCGGTACTGAACGCCCTGGCCGACGATTTCGCGCTGGAGCACGCCGAGCGCGTCAAAGAGATCGAGCGCACCACCAACCACGACGTCAAGGCCATCGAATACCTGCTCAAGGAGCAGGCGGCCAAGCTGCCGGAACTGGCCAACGTCAGCGAGTTCATCCACTTTGCCTGCACCAGCGAGGACATCAACAACCTGTCCCACGCCCTGATGCTGCGCGAAGGCCGTGACGAGGTGATGCTGCCCCTGATGCGCCAGACCGCCCAGGCCATCCGCGAACTGGCGATCCGCTTCGCCGACGTGCCGATGCTGTCGCGCACCCACGGTCAACCGGCTTCGCCGACCACCCTGGGCAAGGAACTGGCGAACGTGGTGTATCGCCTGGAGCGCCAGATCGCCCAAGTAGCCGCCGTGCCACTGCTGGGCAAGATCAACGGCGCCGTGGGCAACTACAACGCCCACCTGTCGGCCTACCCGGACATCGACTGGGAAGCCAACGCCCGCGCCTTCATCGAAGACGAGCTGGGCCTGAGCTTCAACCCGTACACCACCCAGATCGAACCGCATGACTACATCGCCGAGCTGTTCGACGCGATCGCGCGCTTCAACACCATCCTGATCGACTTCGACCGTGACATCTGGGGCTACATCTCCCTGGGTTACTTCAAGCAGCGCACCATCGCCGGCGAAATCGGTTCCTCGACCATGCCGCACAAGGTCAATCCGATCGACTTCGAAAACTCCGAAGGCAACCTGGGCATCGCCAACGCGCTGTTCCAGCACCTGGCGAGCAAGCTGCCGATTTCCCGCTGGCAGCGCGACCTGACCGACTCCACCGTGCTGCGCAACCTGGGCGTAGGTTTTGCCCACAGCGTCATCGCCTACGAGGCCAGCCTCAAGGGCATCAGCAAGCTGGAACTGAACGAGCAGAAAATCGCCGCCGACCTGGATGCCTGCTGGGAAGTCCTGGCCGAGCCGATCCAGACCGTGATGCGTCGCTATAACATCGAAAACCCCTATGAAAAGCTGAAAGAACTGACCCGTGGCAAGGGCATCAGCCCGGACGCGTTGCAGACTTTCATCGATGGCCTGGACATGCCTGCCGAGGCCAAGGCAGAGCTGAAGAAACTGACCCCGGCCAGCTACATCGGCAACGCGGCGGCACAAGCCAAGCGCATCTGAMQLSSLTAVSPVDGRYAGKTQALRPIFSEYGLIRARVLVEVRWLQRLAAHPGIGEVPAFSAEANAVLNALADDFALEHAERVKEIERTTNHDVKAIEYLLKEQAAKLPELANVSEFIHFACTSEDINNLSHALMLREGRDEVMLPLMRQTAQAIRELAIRFADVPMLSRTHGQPASPTTLGKELANVVYRLERQIAQVAAVPLLGKINGAVGNYNAHLSAYPDIDWEANARAFIEDELGLSFNPYTTQIEPHDYIAELFDAIARFNTILIDFDRDIWGYISLGYFKQRTIAGEIGSSTMPHKVNPIDFENSEGNLGIANALFQHLASKLPISRWQRDLTDSTVLRNLGVGFAHSVIAYEASLKGISKLELNEQKIAADLDACWEVLAEPIQTVMRRYNIENPYEKLKELTRGKGISPDALQTFIDGLDMPAEAKAELKKLTPASYIGNAAAQAKRIPGPT0021555_2726DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021555-purB-K01756NANA
D1-35_02451624hflDCOG2915High frequency lysogenization protein HflDATGACGCCGATCCAGGAACAACTGACGGCACTCGGCGGGGTGTTTCTCGCCGCGGTGCTGGTGGACCGGATCGCCAAGACCGGCCAGGCCACCGAAGCCGGCCTGGGCTGCATGCTCGGCAGCCTGCTGGTGCGCGATCCCAAGGACACCCTGGAAGTCTATGGTGGCGATGACCTGAACCTGCGCGAAGGCTACCGTGCGCTGATCGGCGCCCTGGAGCGCGACCCCAGTGCCCTGCAACGCGAGCCGCTGCGCTACGCTCTGTCGATGCTGGGCCTGGAGCGTCAGCTGGCCAAGCGCGACGACCTGCTGGAAACCATCGGCAAACGCCTGCCGCAAATCCAGTCCCAGGTCGAACACTTCGGCCCGTCCCACGAGAACGTGATCGCCGCTTGCGGCGCGCTGTACCAGGACACCTTGAGTACCCTGCGCCAGCGCATCCAGGTGCATGGCGACATGCGCAACCTGCAGCAGCCTAGTAACGCTTCGAAGATCCGCGCCCTGTTGCTGGCCGGGATTCGCTCGGCGCGGCTGTGGCGACAACTGGGTGGGCATCGCTGGCAGCTGGTGATCAGCCGGCGCAAATTGCTGAAAGAGCTTTACCCGTTGATGCGCAACGAATAAMTPIQEQLTALGGVFLAAVLVDRIAKTGQATEAGLGCMLGSLLVRDPKDTLEVYGGDDLNLREGYRALIGALERDPSALQREPLRYALSMLGLERQLAKRDDLLETIGKRLPQIQSQVEHFGPSHENVIAACGALYQDTLSTLRQRIQVHGDMRNLQQPSNASKIRALLLAGIRSARLWRQLGGHRWQLVISRRKLLKELYPLMRNENANANANANA
D1-35_024521125mnmACOG0482tRNA-specific 2-thiouridylase MnmAATGCGTGATCCAGCCTCTTCGAACACCCCCAAGCAACGCGTCATAGTCGGCATGTCCGGCGGCGTGGACTCTTCCGTTTCCGCCCTTCTGCTGATCGAGCAGGGTTATGAGGTGGAAGGCCTGTTCATGAAGAACTGGGAAGAAGACGACGGAACCGAATACTGCACCGCCATGGACGACCTGGCGGACGCCCAGGCCGTCTGCGACCGGATCGGCATCAAGCTGCACACCGCCAACTTCGCCGCGGAGTACTGGGACAACGTGTTCGAGCACTTCCTCGCCGAATACAAGGCCGGTCGCACGCCGAACCCGGACATCCTCTGCAACCGCGAAATCAAGTTCAAGGCGTTCCTCGACTACGCCATGATGCTCGGCGCCGACCTGATCGCCACCGGTCACTACGTGCGCCGCCGCGACATCGACGGTCGTACCGAGCTGCTCAAGGGGCTGGACCCGAACAAGGACCAGAGTTATTTCCTGCACGCCGTCGGCGCAGAACAGATCGCCAAGACCCTGTTCCCGGTGGGCGAACTGGAAAAACCCGAAGTGCGCGCGATTGCCGAGAAACATGACCTGGCCACCGCCAAGAAGAAGGATTCCACCGGGATCTGCTTCATCGGCGAACGGCGCTTCAGCGATTTCCTCAAGCAATACCTGCCGGCCCAGCCGGGCGAGATCAAGACCACCGAAGGCGAAGTCATCGGCCGCCACCATGGTCTGATGTACCACACCATCGGCCAGCGCCAGGGCCTGGGCATCGGCGGCTTGAAAGACGCCGGTGAAGAGCCTTGGTACGTGCTGGTCAAGGACCTGGAGCACAACGAGCTGATCGTTGGCCAGGGCAATGACCATCCATGGCTGTTTTCCCGTGCCCTGCTGGCCTCCGATATCTATTGGGTCAACCCGATCGACCTCAGCGAACCGCGCCGCCTGACGGCCAAGGTTCGCTATCGCCAGAGCGACCAACCCTGCACCCTGGAAAAAACCGCCAGCGGCTATCGCGCCACGTTCGATGATCCGCAGCGCGCGGTCACCCCCGGCCAGTCCGTGGTGTTCTACGACGGTGAAGTCTGCCTCGGCGGCGGCGTGATAGAAGTCGCCGAGCCATGGAGCAGCCAGGCATGAMRDPASSNTPKQRVIVGMSGGVDSSVSALLLIEQGYEVEGLFMKNWEEDDGTEYCTAMDDLADAQAVCDRIGIKLHTANFAAEYWDNVFEHFLAEYKAGRTPNPDILCNREIKFKAFLDYAMMLGADLIATGHYVRRRDIDGRTELLKGLDPNKDQSYFLHAVGAEQIAKTLFPVGELEKPEVRAIAEKHDLATAKKKDSTGICFIGERRFSDFLKQYLPAQPGEIKTTEGEVIGRHHGLMYHTIGQRQGLGIGGLKDAGEEPWYVLVKDLEHNELIVGQGNDHPWLFSRALLASDIYWVNPIDLSEPRRLTAKVRYRQSDQPCTLEKTASGYRATFDDPQRAVTPGQSVVFYDGEVCLGGGVIEVAEPWSSQANANANANANA
D1-35_02453447nudJCOG0494Phosphatase NudJATGAACTGGCAACCCCACATCACCGTCGCCACCATCGTCGAAGACCACGGCCGCTTCCTGATGGTCGAAGAATCCAAGGGCGGACGAGCAGTGCTCAACCAGCCCGCCGGCCACCTGGACCCGAACGAAACACTGATCCAAGCCGCCATACGTGAAACCCTCGAAGAAACCGGCTGGGACGTCGAACCCACCAGCGTCACCGGCCTCTACCTCTACACCGCCCCGAGCAACGGTGTGACCTACCAACGGGTCTGCTTCGCCGCCAAAGCCCTGAAACACCACCCGGATTATCAACTGGACGACGGCATCCTCGGCGCCAAGTGGCTGACCCGCGACGAATTGCTGAAACAGCGCGACCGCTGGCGCAGCGAGCTGGTCATCCGCTGCATCGACGATTACCTGGCCGGCCATCGCCACAGCCTGGAGCTTATCCGCCCTTCTCTTTAGMNWQPHITVATIVEDHGRFLMVEESKGGRAVLNQPAGHLDPNETLIQAAIRETLEETGWDVEPTSVTGLYLYTAPSNGVTYQRVCFAAKALKHHPDYQLDDGILGAKWLTRDELLKQRDRWRSELVIRCIDDYLAGHRHSLELIRPSLPGPT0028060_19DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BACIMETHRIN|CF3-HMP_DETOXIFICATION,PGPT0028060-nudJ|ymfB-K12152NANA
D1-35_024552226icd_1COG2838Isocitrate dehydrogenase [NADP]ATGCCCACCCGCTCGAAGATCATCTATACCTTCACCGACGAAGCGCCTGCCCTCGCCACCTATTCGCTGCTGCCGATCGTCGAAGCCTTCACCGCTTCGGCCGATATCGCCGTGGAGACCCGCGATATCTCCCTCGCAGGGCGCATCCTGGCCAGCTTCCCCGAGCAACTGGGTGACAAAGCCGTAGCCGACCACCTCGCCGAACTGGGCGACCTGGCCGTCACGCCTGAAGCCAACATCATCAAGCTGCCGAACATCAGCGCCTCGGTGCCGCAACTGCAGGCCGCGATCAAGGAATTGCAGGCCCAGGGCTACGCACTGCCGGACTACCCGGAAACCGTGACCACCGACGCCGAGAAAGAAGTCCGCGCCCGTTACGACAAGGTCAAGGGCAGCGCCGTGAACCCGGTCCTGCGCGAAGGCAACTCCGACCGCCGCGCGCCGCTGTCGGTGAAGAACTACGCTCGCAAGCACCCGCACAAGATGGGCGCCTGGGCTGCCGATTCCAAATCCCACGTGGCCCACATGAGTACCGGCGATTTCTACGGCAGCGAAAAAGCCGCCCTGATCGACGCCGCGGGCAGCGTGAAGATCGAGCTGATCGCCAAGGACGGTACTGCCACTGTCCTGAAGGAAAAAACCACCGTCCAAGCCGGTGAGATCCTCGATTGCGCGGTCATGAGCAAAAATGCCCTGCGCAATTTCATCGCCGCCGAAATCGAAGACGCCAAGCAGAAAGGCGTGCTGCTGTCGGTTCACCTCAAAGCGACCATGATGAAGGTCTCCGACCCGATCATGTTCGGCCAGATCGTGGCTGAGTACTATAAGGACGCGCTGGCCAAGCACGCCCAGGTACTGGAGCAGATCGGCTTCAACCTGAACAACGGCATCGGCGACCTGTACGCCCGCATCAAGGCCCTGCCGGCCGAGCAGCAGGCGCAGATCGAAGCCGACATCCAGGCGGTCTATGCCGTTCGTCCGGCACTGGCGATGGTCAACTCCGACAAAGGCATCACCAACCTGCACGTGCCGAGCGACGTCATCGTCGACGCCTCGATGCCAGCCATGATCCGTGACTCCGGCAAGATGTGGGGCACCGACGGCCAGCTGCACGACACCAAGGCCGTGATCCCGGATCGCTGCTACGCGACCATCTACCAGGCCGTGATCGAAGACTGCAAGCAACACGGCGCCTTCGACCCGACCACCATGGGCAGCGTGCCGAACGTCGGCCTGATGGCCAAGAAAGCCGAAGAGTACGGCTCCCACGACAAGACCTTCCAGATCAAGACTGACGGTGTGGTCCGCGTCTCGGACAGCAACGGTCGCACCCTGCTGGAGCAGAACGTCGAGGCTGGCGATATCTTCCGCATGTGCCAGACCAAGGACGCGCCGATCCAGGACTGGGTCAAGCTCGCCGTCAACCGCGCCCGCGCCAGCAGCACCCCGGCAATCTTCTGGCTCGACCCGATGCGCGCCCACGATGGCGTGATGATCGAGAAGGTCCAGGCTTACCTGAAGGATCACGACACCAGCGGCCTGGAGATCCGCATCATGTCGCCTGTCGACGCGATGAAGTTCACCCTGGCGCGTACCCGCGAAGGCAAGGACACCATCTCGGTGACCGGCAACGTACTGCGTGACTACCTGACCGACCTGTTCCCGATCATGGAACTGGGCACCAGCGCCAAGATGCTCTCGATCGTGCCACTGATGAACGGTGGCGGCCTGTTCGAAACCGGCGCCGGCGGCTCGGCACCCAAGCACGTGCAGCAATTGCTGGAAGAGAACTTCCTGCGTTGGGATTCCCTGGGCGAGTTCCTGGCCCTGGCCGCATCCCTGGAACACCTGGGCGTGACCTACAACAACCCGAAAGCACTGGTGCTGGCCAAGACTCTCGACCAGGCGACTGGCGAATTCCTGGACCGCAACAAGTCGCCTTCGCGCAAGGTCGGCGGCATCGACAACCGCGGCAGCCACTTCTACCTGACCCTGTTCTGGGCCCAGGCACTGGCCGCCCAGGATGACGACGCAGCCCTGAAGGCGCAGTTCACCACCCTGGCCAAGACCCTGACCGACAACGAAGAAAAAATCGTTGCCGAGCTCAACGCCGTCCAAGGCAAGCCAGTGGACATCGGCGGCTACTACTCCGCCAACCCTGAGCTGACCAGCAAGGCCATGCGCCCGAGCAACACCTTCAACGCGGCGATTGCTGCGCTGGTATAAMPTRSKIIYTFTDEAPALATYSLLPIVEAFTASADIAVETRDISLAGRILASFPEQLGDKAVADHLAELGDLAVTPEANIIKLPNISASVPQLQAAIKELQAQGYALPDYPETVTTDAEKEVRARYDKVKGSAVNPVLREGNSDRRAPLSVKNYARKHPHKMGAWAADSKSHVAHMSTGDFYGSEKAALIDAAGSVKIELIAKDGTATVLKEKTTVQAGEILDCAVMSKNALRNFIAAEIEDAKQKGVLLSVHLKATMMKVSDPIMFGQIVAEYYKDALAKHAQVLEQIGFNLNNGIGDLYARIKALPAEQQAQIEADIQAVYAVRPALAMVNSDKGITNLHVPSDVIVDASMPAMIRDSGKMWGTDGQLHDTKAVIPDRCYATIYQAVIEDCKQHGAFDPTTMGSVPNVGLMAKKAEEYGSHDKTFQIKTDGVVRVSDSNGRTLLEQNVEAGDIFRMCQTKDAPIQDWVKLAVNRARASSTPAIFWLDPMRAHDGVMIEKVQAYLKDHDTSGLEIRIMSPVDAMKFTLARTREGKDTISVTGNVLRDYLTDLFPIMELGTSAKMLSIVPLMNGGGLFETGAGGSAPKHVQQLLEENFLRWDSLGEFLALAASLEHLGVTYNNPKALVLAKTLDQATGEFLDRNKSPSRKVGGIDNRGSHFYLTLFWAQALAAQDDDAALKAQFTTLAKTLTDNEEKIVAELNAVQGKPVDIGGYYSANPELTSKAMRPSNTFNAAIAALVPGPT0001170_900DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001170-icd-K00031NANA
D1-35_024561257icd_2Isocitrate dehydrogenase [NADP]ATGGGGTATCAAAAGATTCAGGTTCCAGCCGTCGGTGACAAAATCACCGTCAATGCAGACCATTCTCTTAATGTTCCCGACAATCCGATCATTCCTTTCATTGAAGGTGACGGCATTGGCGTTGATATCAGTCCGGTCATGATCAAGGTCGTCGACGCCGCGGTCGAGAAGGCTTATGGCGGCAAGCGCAAGATTTCCTGGATGGAAGTCTATGCCGGTGAAAAAGCCACCCAGGTCTACGACCAGGACACCTGGCTTCCCCAGGAAACCCTGGACGCGGTCAAGGACTACGTGGTTTCCATCAAGGGCCCTCTGACCACGCCGGTCGGTGGCGGTATCCGTTCGTTGAACGTCGCGCTGCGCCAGCAGCTGGACCTGTATGTCTGCCTGCGCCCGGTGCGCTGGTTCGAGGGTGTGCCAAGCCCGGTGAAGAAGCCTGGCGATGTCGACATGACAATCTTCCGCGAGAACTCCGAAGACATCTATGCAGGCATCGAGTGGAAGGCCGGTTCGGCCGAGGCCACCAAGGTCATCAAGTTCCTCAAGGAGGAAATGGGTGTTACCAAGATCCGCTTCGACGAAGATTGCGGTATCGGCGTCAAGCCGGTTTCCAAGCAGGGCACCAAACGTCTGGCGCGCAAAGCCTTGCAATATGTTGTCGACAATGACCGCGATTCGCTGACCATCGTGCACAAAGGCAACATCATGAAGTTCACCGAAGGTGCCTTCAAGGAATGGGCCTACGAAGTGGCGGCCGAAGAGTTCGGCGCGACCCTGCTCGACGGCGGGCCCTGGATGCAGTTCAAGAATCCGCGGACCGGCAAGAATGTCGTGGTCAAGGATGCCATCGCCGACGCCATGCTCCAGCAGATCCTGCTGCGCCCGGCCGAGTACGACGTGATCGCAACCCTGAACCTCAACGGCGACTATCTCTCCGACGCCCTGGCGGCCGAAGTGGGCGGTATCGGTATCGCGCCGGGCGCCAACCTGTCGGACACCGTGGCGATGTTCGAGGCCACCCATGGCACCGCGCCCAAATATGCCGGCAAGGACCAGGTCAACCCGGGTTCGCTGATCCTGTCGGCGGAAATGATGCTGCGTCACATGGGTTGGACCGAAGCGGCCGACCTGATCATCAAGGGCACCAACGGCGCGATCTCGGCCAAAACCGTGACCTATGACTTCGAACGCCTGATGGACGGAGCCAAGCTGGTATCGTCTTCCGGCTTTGGTGATGCACTGATCTCGCACATGTAGMGYQKIQVPAVGDKITVNADHSLNVPDNPIIPFIEGDGIGVDISPVMIKVVDAAVEKAYGGKRKISWMEVYAGEKATQVYDQDTWLPQETLDAVKDYVVSIKGPLTTPVGGGIRSLNVALRQQLDLYVCLRPVRWFEGVPSPVKKPGDVDMTIFRENSEDIYAGIEWKAGSAEATKVIKFLKEEMGVTKIRFDEDCGIGVKPVSKQGTKRLARKALQYVVDNDRDSLTIVHKGNIMKFTEGAFKEWAYEVAAEEFGATLLDGGPWMQFKNPRTGKNVVVKDAIADAMLQQILLRPAEYDVIATLNLNGDYLSDALAAEVGGIGIAPGANLSDTVAMFEATHGTAPKYAGKDQVNPGSLILSAEMMLRHMGWTEAADLIIKGTNGAISAKTVTYDFERLMDGAKLVSSSGFGDALISHMPGPT0001170_3492DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001170-icd-K00031NANA
D1-35_02457300hypothetical proteinATGCCGGGTACCGGGATGACATTCAAGGGCAAGGTCAAATGGTTCAACAACTCCAAGGGCTTCGGGTTTATCAATCGCGATGGCGATCCGAATAAGGAAGACCTGTTCGCTCACTACTCGGCGATCCTGATGGACGGCTACAAGACCTTGAAGGCCGGGCAAACCGTGTCGTTCAGCATGATCCAGGGTCCCAAGGGCGTACACGCAGTCGCCATCACGCCCGTCGCGCAGGACAACGCCGACGCCACGCCCGAATCCGTCAACGCCCTGGAGCACGTCAGCGCCTCCGAAAAAGGCTGAMPGTGMTFKGKVKWFNNSKGFGFINRDGDPNKEDLFAHYSAILMDGYKTLKAGQTVSFSMIQGPKGVHAVAITPVAQDNADATPESVNALEHVSASEKGPGPT0014675_1798DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCECOLD_SHOCK_PROTEINS,PGPT0014675-cspA-K03704NANA
D1-35_02458246clpSCOG2127ATP-dependent Clp protease adapter protein ClpSATGTACAAGGTGGTTTTGTTCAACGATGACTACACACCGATGGATTTCGTCGTCGAAGTGCTCGAGGTGTTTTTTAACCTGAATCGCGAGCTGGCGACCAAGGTCATGCTGGCCGTCCATACAGAGGGACGGGCAGTATGTGGAGTGTTTACCCGCGACATCGCCGAGACAAAGGCCATGCAGGTCAACCAGTACGCCCGGGAAAGCCAGCATCCGCTACTCTGTGAAATCGAGAAGGACGGTTAAMYKVVLFNDDYTPMDFVVEVLEVFFNLNRELATKVMLAVHTEGRAVCGVFTRDIAETKAMQVNQYARESQHPLLCEIEKDGPGPT0014575_3DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014575-clpA-K03694NANA
D1-35_024592271clpACOG0542ATP-dependent Clp protease ATP-binding subunit ClpAATGTTAAACCGCGAGCTCGAAGTCACCCTCAATCTTGCCTTCAAGGAGGCTCGTTCGAAGCGTCATGAATTCATGACCGTCGAACACCTGCTGCTGGCCCTATTGGATAATGAGGCTGCCGCCACCGTTTTGCGTGCCTGCGGCGCAAACCTCGATAAACTCAAGCATGATCTGCAGGAGTTCATCGACTCCACCACGCCATTGATCCCCGTTCATGACGAGGATCGCGAAACCCAGCCAACCCTGGGCTTCCAGCGTGTATTGCAGCGTGCTGTCTTTCACGTACAGAGCTCGGGCAAGCGCGAAGTCACCGGCGCCAATGTCCTGGTCGCGATCTTCAGCGAGCAGGAAAGCCAGGCGGTCTTCCTGCTCAAGCAGCAGAGCGTGGCGCGTATCGATGTCGTCAACTACATCGCCCATGGCATCTCCAAGGTGCCCGGGCATGGCGATCATTCCGAGGGTGAGCAGGACATGCAGGACGACGAGGGCGGTGAGTCTTCTTCTTCAGGCAATCCCCTGGATGCCTATGCCAGCAACCTGAACGAACTGGCGCGCCAGGGCCGTATCGACCCGCTGGTCGGGCGCGAGGCGGAAGTCGAGCGCGTGGCGCAGATCCTGGCCCGGCGTCGCAAGAACAATCCGCTGCTGGTAGGCGAGGCGGGCGTGGGCAAGACCGCGATCGCCGAAGGCCTGGCCAAGCGCATCGTCGATAACCAGGTGCCGGACCTGCTGGCCAACAGTGTCGTCTATTCCCTCGACCTGGGTGCCTTGCTGGCCGGTACCAAATACCGCGGCGACTTCGAGAAACGCTTCAAGGCGCTGCTCGGCGAGCTGAAGAAACGTCCGCAGGCGATCCTGTTCATCGACGAGATCCACACCATCATCGGTGCCGGTGCTGCGTCGGGTGGCGTCATGGATGCCTCGAACCTGCTCAAGCCGTTGCTTTCCTCGGGTGATATCCGTTGCATCGGCTCGACCACGTTCCAGGAATTCCGTGGCATTTTCGAGAAAGACCGTGCTTTGGCCCGGCGTTTCCAGAAAGTCGACGTCTCGGAGCCGTCGGTGGAAGACACCATCGGCATCCTGCGCGGCCTGAAAGGGCGTTTCGAGCTGCACCACAGCATCGAATACAGCGATGAGGCGTTGCGCGCCGCCGCCGAGCTGGCCTCGCGCTACATTAATGATCGGCACATGCCGGACAAAGCCATCGATGTTATCGACGAGGCGGGTGCCTATCAGCGCCTGCAACCGGTGGAGAATCGCGTCAAGCGCATCGACGTGCCGCAGGTCGAGGACATCGTCGCGAAGATCGCGCGGATTCCGCCAAAACACGTCACCAGTTCCGACAAGGAGCTGCTGCGTAACCTGGAGCGCGACCTGAAGCTCACGGTGTTCGGCCAGGATGCGGCCATCGACTCGCTGTCGACCGCTATCAAGCTGTCGCGCGCCGGTCTCAAGTCGCCGGACAAACCGGTCGGTTCGTTCCTGTTCGCCGGGCCTACCGGTGTCGGCAAGACCGAGGCGGCACGGCAGTTGGCCAAGGCGCTGGGGATCGAGCTGGTGCGCTTCGACATGTCCGAGTACATGGAGCGTCACACCGTATCGCGGCTGATCGGTGCGCCTCCAGGTTATGTCGGCTTCGACCAGGGCGGCCTGTTGACCGAGGCGATCACCAAGCAGCCGCACTGCGTGCTGTTGCTCGATGAGATCGAGAAGGCGCATCCGGAAGTCTTCAACCTGCTGCTGCAGGTCATGGACCACGGTACGCTGACCGACAACAACGGACGCAAGGCGGATTTCCGCAACGTGATCATCATCATGACCACCAACGCCGGCGCTGAAACCGCTGCGCGCGCTTCGATCGGTTTCACCCATCAGGATCACTCGTCCGATGCGATGGAAGTGATCAAGAAGAGCTTCACGCCTGAGTTCCGTAACCGCCTGGACACTATCATCCAGTTTGGTCGCCTCAGCCATGAAGTCATCAAGAGCGTGGTGGACAAGTTCCTTACCGAACTTCAGGCGCAGCTCGAAGACAAGCGGGTGTTGCTGGAGGTTACCGATGCGGCACGCAGCTGGCTCGCCGAAGGTGGCTACGATGTGACGATGGGGGCACGGCCGATGGCTCGCCTGATCCAGGACAAGATCAAGCGTCCACTGGCGGAGGAAATCCTCTTTGGCGAACTGGCCGAGCATGGCGGTGTGGTCCACATCGACATCAAGGATGGCGAGCTTACGTTCGACTTCGAAACCACGGCAGAAATGGCCTGAMLNRELEVTLNLAFKEARSKRHEFMTVEHLLLALLDNEAAATVLRACGANLDKLKHDLQEFIDSTTPLIPVHDEDRETQPTLGFQRVLQRAVFHVQSSGKREVTGANVLVAIFSEQESQAVFLLKQQSVARIDVVNYIAHGISKVPGHGDHSEGEQDMQDDEGGESSSSGNPLDAYASNLNELARQGRIDPLVGREAEVERVAQILARRRKNNPLLVGEAGVGKTAIAEGLAKRIVDNQVPDLLANSVVYSLDLGALLAGTKYRGDFEKRFKALLGELKKRPQAILFIDEIHTIIGAGAASGGVMDASNLLKPLLSSGDIRCIGSTTFQEFRGIFEKDRALARRFQKVDVSEPSVEDTIGILRGLKGRFELHHSIEYSDEALRAAAELASRYINDRHMPDKAIDVIDEAGAYQRLQPVENRVKRIDVPQVEDIVAKIARIPPKHVTSSDKELLRNLERDLKLTVFGQDAAIDSLSTAIKLSRAGLKSPDKPVGSFLFAGPTGVGKTEAARQLAKALGIELVRFDMSEYMERHTVSRLIGAPPGYVGFDQGGLLTEAITKQPHCVLLLDEIEKAHPEVFNLLLQVMDHGTLTDNNGRKADFRNVIIIMTTNAGAETAARASIGFTHQDHSSDAMEVIKKSFTPEFRNRLDTIIQFGRLSHEVIKSVVDKFLTELQAQLEDKRVLLEVTDAARSWLAEGGYDVTMGARPMARLIQDKIKRPLAEEILFGELAEHGGVVHIDIKDGELTFDFETTAEMAPGPT0014575_1539DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014575-clpA-K03694NANA
D1-35_02460219infACOG0361Translation initiation factor IF-1ATGTCGAAAGAAGACAGCTTCGAAATGGAAGGCACTGTCGTCGACACCCTGCCCAACACCATGTTTCGTGTGGAGTTGGAAAATGGGCACGTCGTAACCGCGCATATCTCCGGCAAGATGCGCAAGAACTACATTCGTATTCTTACCGGTGACAAAGTGCGCGTCGAGCTGACGCCCTATGACTTGAGCAAAGGGCGCATCACTTACCGCGCTCGCTAAMSKEDSFEMEGTVVDTLPNTMFRVELENGHVVTAHISGKMRKNYIRILTGDKVRVELTPYDLSKGRITYRARNANANANANA
D1-35_02461708bptCOG2935Aspartate/glutamate leucyltransferaseATGACCGAGTTGGCGCGCTTGAAGTTCTATGCCACTCAACCTCACTCTTGCAGTTATCTGCCGGAGGAGCAGGCCACGACCCTGTTCCTCGACCCGAGCCAGCCCATGGATGTGCATGTCTACGCAGACCTGTCGGAAATGGGCTTTCGGCGCAGTGGCGATCATCTTTACCGGCCCCATTGCCAACACTGCAATGCGTGCGTTCCGGCGCGCATTCCCGTGGCGCGATTCACACCCAATCGCCAGCAAAAGCGTATTTTCAAGCGCAACGCCGACTTGCAGGTGCGCCCGGCCAAGCCGCAATTTACCGAAGAATATTTTGACCTGTACCAGCGCTATATCGAGCAACGCCACGCCGATGGTGACATGTACCCGCCTAGCCGGGATCAATTCTCGACGTTCCTGGTGCGCGACCTGCCGTTCTCGCGCTTCTACGAGTTCCGCCTCGATGACCGACTGGTCGCCATCGCCGTCACCGACCTGCTGCCCAATGGGCTTTCGGCGGTGTACACCTTCTATGAGCCCGACGAAGAAAAACGCAGCCTGGGGCGTTTTGCGATTCTCTGGCAGATCAACGAGTGCCGGCGCCTGGGCCTGGATGCGGTGTACTTGGGCTATTGGATCAAGAACTGCAAAAAAATGAACTACAAGACCCAATATCGGCCCATTGAATTGCTGATCAATCAGCGGTGGGTTGTCCTGAACTAAMTELARLKFYATQPHSCSYLPEEQATTLFLDPSQPMDVHVYADLSEMGFRRSGDHLYRPHCQHCNACVPARIPVARFTPNRQQKRIFKRNADLQVRPAKPQFTEEYFDLYQRYIEQRHADGDMYPPSRDQFSTFLVRDLPFSRFYEFRLDDRLVAIAVTDLLPNGLSAVYTFYEPDEEKRSLGRFAILWQINECRRLGLDAVYLGYWIKNCKKMNYKTQYRPIELLINQRWVVLNNANANANANA
D1-35_02462681aatCOG2360Leucyl/phenylalanyl-tRNA--protein transferaseATGCTGACCTGGTTACAACGCAACACGTTCGATTTCCCACCGCTGGAAAAAGCCATGCGCGACCCCAATGGCTTGCTGGCCGCCGGCGGGGATCTTTGCGCCGATCGGTTGATCCAGGCCTATCGCCACGGCTGCTTTCCATGGTTCTCGGAGGGACAGCCGATTCTGTGGTGGTCACCGGACCCGCGCACCGTGCTGTTTCCCGACGAACTGCATGTTTCCCGCAGCCTGAACAAGCTGTTGCGCAAGCAGCGCTATCAAGTGACGTTCGACCGGGACTTCGCGGCGGTCATCAAGGCCTGCGCCGCACCCCGCGATTATGCCGACGGCACCTGGATCACCGACGCCATGCAGACCGCTTATCTGGAACTGCACCGGCGTGGCTTCGCCCATTCGGTGGAGGTCTGGGACCAGGACCAACTGGTGGGCGGCTTGTATGGCCTGGCGATGGGGCAGCTGTTTTTCGGCGAGTCGATGTTCAGCCGGGCCGACAATGCGTCGAAATTCGGCTTCGCAACCCTGGTCCAACATCTCAAGGAAGCGGGTTTCGTGCTCATTGACTGCCAGATGCCCACCGAGCACCTGCACAGCCTGGGCGCCCGGTCGATTCCCCGCGCAGCGTTTGCCGATTACCTGAAGGCGCACCTGGACCAGCCCAACCAGGCCACCTGGCTTTGCTGAMLTWLQRNTFDFPPLEKAMRDPNGLLAAGGDLCADRLIQAYRHGCFPWFSEGQPILWWSPDPRTVLFPDELHVSRSLNKLLRKQRYQVTFDRDFAAVIKACAAPRDYADGTWITDAMQTAYLELHRRGFAHSVEVWDQDQLVGGLYGLAMGQLFFGESMFSRADNASKFGFATLVQHLKEAGFVLIDCQMPTEHLHSLGARSIPRAAFADYLKAHLDQPNQATWLCNANANANANA
D1-35_02463960COG0492Glucosaminate ammonia-lyaseATGAGCGAAGCGAAGCATTCACGCCTGATCATTCTCGGTTCCGGCCCTGCAGGGTACAGCGCGGCTGTCTATGCAGCCCGCGCCAACCTCAAACCCGTTGTCATTACCGGCATACAGGCCGGTGGCCAGCTCACCACCACGGTCGAAGTCGATAACTGGCCCGGCGATGTCGAAGGCCTGACCGGTCCCGTACTCATGGAACGCATGCAGCGGCACGCCGAGCGCTTCGACACGCAGATCGTCTACGACCATATCCATACCGCCAAGTTGCAACAGCGACCGTTCGAACTGGTCGGCGACAGCGGCACCTATACCTGCGATGCATTGATCATCGCCACTGGCGCCTCGGCTCAATACCTGGGCCTGCCTTCAGAGGAAACCTTCGCCGGCAAAGGCGTGTCCGCCTGCGCGACCTGTGATGGCTTCTTTTATCGAAACCAGGTGGTGGCCGTTATCGGTGGCGGTAACACGGCGGTTGAAGAAGCCTTGTACCTGTCGAACATCGCCAGGGAAGTTCACCTGATTCACCGCCGCGACAAGCTGCGCGCGGAAAAGATATTGCAGGACAAGCTCTTCGAAAAGGCAGCCAACGGCAATATCCGCCTGCACTGGAACCAGAACCTGGATGAAGTGCTGGGTGACGCCAGCGGCGTGACCGGCGCGCGCCTGCGGCACAGCGAGACGGGCGATACCAGCACGTTATCCCTGGCCGGGGTGTTCATCGCCATCGGGCATAAACCCAACACCGATCTGTTCCAGGGCCAGTTGCAGATGCGCGATGGCTACCTGATTGTGCGTGGCGGCAGCGAAGGCAATGCCACCGCCACTGACATCGAAGGTGTTTTTGCCGCCGGCGACGTGGCTGACCACGTCTATCGCCAGGCCATTACGTCCGCCGGCGCCGGTTGCATGGCCGCGCTGGATGCAGAAAAGTATCTCGATGACATCCCGGCCGTTTGAMSEAKHSRLIILGSGPAGYSAAVYAARANLKPVVITGIQAGGQLTTTVEVDNWPGDVEGLTGPVLMERMQRHAERFDTQIVYDHIHTAKLQQRPFELVGDSGTYTCDALIIATGASAQYLGLPSEETFAGKGVSACATCDGFFYRNQVVAVIGGGNTAVEEALYLSNIAREVHLIHRRDKLRAEKILQDKLFEKAANGNIRLHWNQNLDEVLGDASGVTGARLRHSETGDTSTLSLAGVFIAIGHKPNTDLFQGQLQMRDGYLIVRGGSEGNATATDIEGVFAAGDVADHVYRQAITSAGAGCMAALDAEKYLDDIPAVPGPT0018945_75DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_GLUCOSAMINE|GLUCOSAMINATE_DEGRADATION,PGPT0018945-trxB-K22345NANA
D1-35_024642406ftsKCOG1674DNA translocase FtsKTTGAAGAAATCCACCGCAGCACCCAAGACAGTCGTTCCGCTCTGGCGCCAACAATTGCACTACCGGCTCAAGGAAGGTGCGTTGATCGCCATTGGGGCCTTGTGCCTGTTCCTGATGATGGCCTTGCTGACCTACGGCAAGGACGATCCGGGCTGGAGCCACAACAGCAAGATCGAAGACGTGCAGAATTTCGGCGGGCCGGCCGGTTCCTACAGCGCTGACATCCTGTTCATGGTGCTGGGCTATTTCGCCTATATTTTCCCGCTGCTGCTGGCGATCAAGACCTATCAGATTTTCCGCCAGCGCCATGAGCCCTGGCAGTGGAGCGGCTGGCTGTTCTCCTGGCGCCTGATTGGCCTGGTGTTCCTGGTGTTGTCAGGCGCCGCGCTGGCACATATCCATTTCCACGCACCCACCGGCCTGCCGGCCGGGGCGGGTGGTGCGCTGGGCGAGAGCCTTGGTGATCTGGCGCGCAATGCCCTGAATATCCAGGGCAGCACGCTGCTGTTCATCGCACTGTTCCTCTTCGGCCTGACGGTGTTCACCGACCTGTCCTGGTTCAAGGTCATGGACGTCACCGGCAAGATCACGCTCGACCTCATCGAATTGATCCAGGGTGCGCTGAACCGCTGGTGGGCGGCGCGCAACGAACGCAAGCAACTGGTGGCGCAACTGCGTGAAGTGGACGATCGGGTCCATGACGTCGTGGCGCCCACCGTTCCGGACAAACGCGAGCAGGCCAAGGTCAAGGAACGCCTGATCGAGCGCGAGCAGGCCCTGAGCAAGCACATGTCCGAGCGCGAAAAGCAGGTGCCGCCGGTTATCACCATGGCCCCGGCCAAGCCGCCGGAGCAGAGCAAGCGCGTGCAGAAGGAAAAACAGGCGCCGCTGTTCGTCGACAGCGCGGTGGAAGGGACCTTGCCACCGATTTCGATCCTCGATCCTGCCGAAAAGAAACAACTCAATTATTCCCCCGAATCCCTGGCGGCCGTCGGTCACCTGCTGGAGATCAAGCTCAAGGAGTTCGGTGTCGAGGTGTCGGTGGATTCGATCCATCCGGGTCCGGTCATCACCCGTTACGAAATCCAGCCGGCCGCCGGCGTCAAGGTCAGCCGTATCGCCAACCTCGCGAAGGACCTGGCGCGCTCCCTGGCGGTCACCAGCGTGCGGGTGGTGGAAGTGATCCCGGGCAAGACCACCGTGGGCATCGAGATCCCCAACGAGGATCGCCAGATCGTGCGCTTCTCCGAGGTGCTCTCGACCCCCGAGTACGACAATCACAAGTCACCGGTCACCCTGGCCCTGGGCCACGACATCGGCGGCAAGCCGGTCATCACCGACCTGGCGAAGATGCCTCACCTGCTGGTGGCCGGTACCACCGGTTCGGGTAAGTCGGTGGGGGTGAACGCGATGATCCTGTCGATCCTGTTCAAGTCCGGCCCGGAAGACGCCAAGCTGATCATGATCGACCCGAAGATGCTCGAATTGTCGATCTACGAAGGCATCCCGCACCTGCTGTGCCCGGTGGTCACCGACATGAAGGACGCGGCCAACGCCCTGCGCTGGAGCGTTGCCGAGATGGAGCGCCGCTACAAGCTGATGGCGAAGATGGGCGTGCGCAACCTGTCGGGCTTCAACGCCAAGGTCAAGGAGGCCGAGGAAGCCGGCACGCCGTTGAGCGACCCGCTGTACCACCGCGAAAGCATCCACGACGAAGCGCCGCTGTTGCACAAGCTGCCGACCATCGTGGTGGTGGTGGACGAATTTGCCGACATGATGATGATCGTCGGCAAGAAGGTCGAAGAACTGATCGCCCGTATCGCCCAGAAAGCCCGTGCGGCCGGTATTCACCTGATCCTCGCCACACAACGGCCGTCGGTAGACGTGATCACCGGCCTGATCAAAGCCAACATCCCGACCCGCATGGCGTTCCAGGTGTCGAGCAAGATCGACTCGCGGACCATCATCGACCAGGGCGGCGCCGAGCAATTGCTCGGCCACGGTGACATGCTCTACATGCCGCCCGGCACCAGCCTGCCGATCCGTGTCCACGGTGCGTTCGTCTCCGATGACGAAGTGCACCGCGTGGTCGAAGCCTGGAAGTTGCGTGGCGCGCCTGAATACAACGACGACATCCTCAACGGTGTCGAAGAGGCCGGCAGCGGTTTCGAGGGCAGCAGTGGCGGCGGTGACGACGATGCCGAGACCGATGCGCTCTATGACGAAGCGGTGCAGTTCGTCCTGGAGAGTCGCCGTGCCTCGATTTCCGCCGTACAGCGCAAGCTGAAGATCGGCTACAACCGCGCCGCACGCATGATCGAGGCCATGGAAATGGCCGGGGTCGTGACGGCCATGAACACCAACGGCTCGCGCGAAGTGCTGGCGCCGGGCCCGATGCGCGACTGAMKKSTAAPKTVVPLWRQQLHYRLKEGALIAIGALCLFLMMALLTYGKDDPGWSHNSKIEDVQNFGGPAGSYSADILFMVLGYFAYIFPLLLAIKTYQIFRQRHEPWQWSGWLFSWRLIGLVFLVLSGAALAHIHFHAPTGLPAGAGGALGESLGDLARNALNIQGSTLLFIALFLFGLTVFTDLSWFKVMDVTGKITLDLIELIQGALNRWWAARNERKQLVAQLREVDDRVHDVVAPTVPDKREQAKVKERLIEREQALSKHMSEREKQVPPVITMAPAKPPEQSKRVQKEKQAPLFVDSAVEGTLPPISILDPAEKKQLNYSPESLAAVGHLLEIKLKEFGVEVSVDSIHPGPVITRYEIQPAAGVKVSRIANLAKDLARSLAVTSVRVVEVIPGKTTVGIEIPNEDRQIVRFSEVLSTPEYDNHKSPVTLALGHDIGGKPVITDLAKMPHLLVAGTTGSGKSVGVNAMILSILFKSGPEDAKLIMIDPKMLELSIYEGIPHLLCPVVTDMKDAANALRWSVAEMERRYKLMAKMGVRNLSGFNAKVKEAEEAGTPLSDPLYHRESIHDEAPLLHKLPTIVVVVDEFADMMMIVGKKVEELIARIAQKARAAGIHLILATQRPSVDVITGLIKANIPTRMAFQVSSKIDSRTIIDQGGAEQLLGHGDMLYMPPGTSLPIRVHGAFVSDDEVHRVVEAWKLRGAPEYNDDILNGVEEAGSGFEGSSGGGDDDAETDALYDEAVQFVLESRRASISAVQRKLKIGYNRAARMIEAMEMAGVVTAMNTNGSREVLAPGPMRDPGPT0030468_5367DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION-ESS_SYSTEM,PGPT0030468-essC|eccC|ftsK|spoIIIE-K03466NANA
D1-35_02465624lolACOG2834Outer-membrane lipoprotein carrier proteinATGCGCCTGATTCGCATGCTGTTGTTGCCCGTATTGGCTTTGTCTACCTTGTCGGTCCATGCCGGCGAGAAAGATGTGGCCCGCCTGACCCAGTTGCTGGGCGGCTCCCAGACCCTGACTGCGCGTTTCTCCCAGCTGACCCTCGACGGCAGCGGCACCCAGTTGCAGGAAACCGCTGGCGACATGGCCCTGCAGCGCCCTGGCCTGTTCTACTGGCACACCGATGCACCCGCCGAACAGCTGATGGTGTCCGATGGCAAGAAAGTCTCCCTGTGGGACCCGGACCTCGAACAAGTGACCATCAAGACCCTCGACCAGCGCCTGACCCAGACGCCGGCGCTGCTGCTCTCCGGCGATATCTCGGAGATCAGCCAGAGCTTCGACATCACCTCCAAGGAGGCCGGTGGCGTGATTGACTTCACTCTCAAGCCGAAGACCAAGGACAGCCTGTTCGACAGCCTGCGCCTGTCGTTCCGCAACGGCCTGGTCAACGACATGCAACTGATCGACAGTGTCGGCCAGCGCACCAATATCCTGTTCACCGGGGTCAAGGCCAACGAGCCGATCGCCGCGTCCAAGTTCAAGTTCGACATCCCCAAGGGTGCGGATGTGATCCAGGAATAAMRLIRMLLLPVLALSTLSVHAGEKDVARLTQLLGGSQTLTARFSQLTLDGSGTQLQETAGDMALQRPGLFYWHTDAPAEQLMVSDGKKVSLWDPDLEQVTIKTLDQRLTQTPALLLSGDISEISQSFDITSKEAGGVIDFTLKPKTKDSLFDSLRLSFRNGLVNDMQLIDSVGQRTNILFTGVKANEPIAASKFKFDIPKGADVIQEPGPT0024475_918DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINSCE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024475-lolA-K03634NANA
D1-35_024661326rarACOG2256Replication-associated recombination protein AATGGACCTGTTTCGAAGCGCCCCGATTGCCCAGCCATTGGCCGCCCGCCTGCGGGCCACCAACCTGGATGAGTACGTCGGCCAGGAACATGTGCTCGCCCGGGGCAAGCCCCTGCGCGAAGCCCTGGAGCAGGGCGCCCTGCATTCGATGATCTTCTGGGGCCCGCCGGGGGTCGGCAAGACCACCCTGGCGCGGTTGCTGGCGGAAGTCTCGGACGCGCATTTCGAAACGGTGTCGGCCGTGCTGGCCGGGGTCAAGGAGATTCGCCAGGCGGTGGAAATCGCCAAGCAGCAGGCCGGCCAGTACGGCAAGCGCACCATCCTGTTCGTCGATGAAGTGCATCGCTTCAACAAGTCGCAGCAGGACGCCTTCTTGCCCTATGTCGAAGACGGCACGCTGATTTTCATCGGTGCCACCACCGAGAACCCTTCGTTCGAACTCAACAACGCCTTGCTGTCCCGCGCGCGGGTCTACGTGCTCAAGAGCCTCGACGAGGCGGCGATGCGCAAGCTGGTGCATCGCGCGCTCACCGAAGAGCGCGGCCTGGGCAAGCGCCACCTGAGCCTCAGCGACGAAGGTTTCCAGATATTGTTCAGCGCTGCCGACGGCGATGGCCGACGCCTGCTCAACCTGCTGGAAAACGCCTCGGACCTGGCCGAAGACGACAGCGAGATCGGTGTCGAACTGCTGCAAAGCCTGCTGGGCGATACCCGGCGCCGCTTCGACAAGGGCGGCGAGGCGTTCTACGACCAGATTTCGGCGCTGCACAAGTCGGTGCGCGGCTCCAACCCGGACGGCGCGTTGTACTGGTTTGCGCGGATGATCGATGGCGGTTGTGATCCGCTGTACCTCGCGCGCCGCGTGGTGCGCATGGCCAGCGAAGACATCGGCAACGCCGATCCGCGCGCGCTGAGCCTGTGCCTGACGGCCTGGGACGTGCAGGAACGCCTCGGCAGCCCGGAAGGCGAGCTCGCCGTGGCCCAGGCCATTACCTACCTGGCCTGCGCGCCGAAAAGCAACGCCGTCTACATGGGCTTCAAGGCGGCGATGCGCAGCGCCGCCGAGCACGGCTCTCTGGAAGTGCCGTTGCACCTGCGCAACGCGCCGACCAAGCTCATGAAACAGTTGGGCTACGGCGAGGAATACCGTTACGCCCATGACGAGCCTGACGCTTACGCCGCTGGCGAAGACTATTTTCCCGAGGAACTCGAACCCCAGCGGTTCTATCAGCCGGTGCCCCGTGGCCTGGAGCTGAAGATCGGCGAGAAGCTCAACCACTTGGCGCAATTGGACCGATTGAGTCCACGGCAGCGGAGAAAACCGTGAMDLFRSAPIAQPLAARLRATNLDEYVGQEHVLARGKPLREALEQGALHSMIFWGPPGVGKTTLARLLAEVSDAHFETVSAVLAGVKEIRQAVEIAKQQAGQYGKRTILFVDEVHRFNKSQQDAFLPYVEDGTLIFIGATTENPSFELNNALLSRARVYVLKSLDEAAMRKLVHRALTEERGLGKRHLSLSDEGFQILFSAADGDGRRLLNLLENASDLAEDDSEIGVELLQSLLGDTRRRFDKGGEAFYDQISALHKSVRGSNPDGALYWFARMIDGGCDPLYLARRVVRMASEDIGNADPRALSLCLTAWDVQERLGSPEGELAVAQAITYLACAPKSNAVYMGFKAAMRSAAEHGSLEVPLHLRNAPTKLMKQLGYGEEYRYAHDEPDAYAAGEDYFPEELEPQRFYQPVPRGLELKIGEKLNHLAQLDRLSPRQRRKPNANANANANA
D1-35_02467375crcBPutative fluoride ion transporter CrcBGTGATCCCCTTGATTCTCGCAGTCTCCGCCGGCGGCGTTGCCGGTACATTGTTGCGTTTCGCCACGGGCAACTGGATCAGCGCAAATTGGCCGCGGCACTTCTATACCGCGACGCTGGCCGTTAATATCGTGGGCTGTCTGCTGATCGGCGTCCTATACGGCCTGTTTCTGATTCGCCCCGAAGTGCCCATCGAGGTGCGCGCGGGGTTGATGGTCGGTTTTCTTGGCGGCCTGACGACTTTTTCATCCTTTTCACTGGATACGGTGCGCCTGCTGGAAAGCGGGCAGGTGCCGCTGGCCCTGGGCTATGCGGCCATCAGCGTGTTCGGCGGGCTGCTCGCCACCTGGGCCGGCCTGTCCCTGACCAAACTTTGAMIPLILAVSAGGVAGTLLRFATGNWISANWPRHFYTATLAVNIVGCLLIGVLYGLFLIRPEVPIEVRAGLMVGFLGGLTTFSSFSLDTVRLLESGQVPLALGYAAISVFGGLLATWAGLSLTKLPGPT0004985_3903DIRECT EFFECTBIO-REMEDIATIONFLUORIDE_DETOXIFICATIONFLUORIDE_RESISTANCEFLUORIDE_RESISTANCE-FLUORIDE_TRANSPORT,PGPT0004985-crcB-K06199NANA
D1-35_024681281serSCOG0172Serine--tRNA ligaseATGCTCGATTCCAAACTGTTACGTAGCAACCTTCAGGACGTAGCGGACCGCCTGGCATCCCGTGGCTTTGCCCTGGATGTCGCGCGCATCGAAGCGCTGGAAGAACAGCGCAAGACCGTCCAGACCCGCACCGAAGCCCTGCAGGCTGAACGTAACGCGCGCTCCAAGTCCATCGGTCAGGCCAAGCAGCGCGGCGAAGACATCGCGCCGCTGATGGCCGATGTCGAGCGCATGGCGGGCGAGTTGAGTGCCGGCAAGACCGAACTGGACGCGATCCAGAGCGAGCTTGATTCGATCCTGCTGGGCATCCCGAACCTGCCTCACGAATCGGTGCCGGTGGGTGAAGACGAAGACGGCAACGTCGAAGTACGTCGCTGGGGCACGCCGAAAGTCTTCGATTTCCCGGTACAGGACCACGTCGCCCTGGGCGAGAAATTCGGTTGGCTGGACTTCGAAACCGCCGCCAAGCTGTCGGGCGCGCGTTTCGCCCTGCTGCGCGGGCCGATCGCCCGTCTGCATCGCGCACTGGCGCAGTTCATGATCAACCTGCACGTCACCGAGCACGGCTACGAAGAGGCCTACACGCCTTACCTGGTCCAGGCGCCGGCGCTGCAAGGCACCGGTCAGTTGCCGAAGTTCGAGGAAGACCTGTTCAAGATCGCTCGCGACGGCGAAGCCGACCTGTACCTGATCCCGACCGCCGAAGTCTCGCTGACCAACATCGTTGCCGGCGAAATCGTCGACGCCAAGCAACTGCCGATCAAGTTTGTCGCCCACACCCCGTGCTTTCGCAGTGAAGCCGGCGCGTCGGGTCGTGACACTCGCGGCATGATCCGCCAGCACCAGTTCGACAAGGTCGAGATGGTGCAGATCGTCGAGCCGTCGAAATCCATGGAAGCCCTGGAAAGCCTGACCGCCAACGCCGAGAAGGTCCTGCAACTGCTCGAGCTGCCGTATCGCACCCTGGCGCTGTGCACCGGCGACATGGGCTTCAGCGCGGTCAAGACTTACGATCTGGAAGTCTGGATCCCGAGCCAGGACAAGTACCGCGAGATTTCGTCGTGCTCCAACTGCGGTGATTTCCAGGCCCGCCGCATGCAGGCGCGTTTCCGCAACCTGGAAACCGGCAAGCCGGAACTGGTCCATACCCTCAATGGCTCCGGCCTGGCGGTGGGTCGTACGCTGGTCGCCGTGTTGGAAAACTATCAGCAGGCCGACGGTTCGATCCGGGTGCCTGAAGTGCTGAAGCCGTACATGGGCGGCATCGAGGTCATCGGCTAAMLDSKLLRSNLQDVADRLASRGFALDVARIEALEEQRKTVQTRTEALQAERNARSKSIGQAKQRGEDIAPLMADVERMAGELSAGKTELDAIQSELDSILLGIPNLPHESVPVGEDEDGNVEVRRWGTPKVFDFPVQDHVALGEKFGWLDFETAAKLSGARFALLRGPIARLHRALAQFMINLHVTEHGYEEAYTPYLVQAPALQGTGQLPKFEEDLFKIARDGEADLYLIPTAEVSLTNIVAGEIVDAKQLPIKFVAHTPCFRSEAGASGRDTRGMIRQHQFDKVEMVQIVEPSKSMEALESLTANAEKVLQLLELPYRTLALCTGDMGFSAVKTYDLEVWIPSQDKYREISSCSNCGDFQARRMQARFRNLETGKPELVHTLNGSGLAVGRTLVAVLENYQQADGSIRVPEVLKPYMGGIEVIGNANANANANA
D1-35_024691395cysG_1COG0007Siroheme synthaseATGGACTATCTGCCACTGTTCCACAACCTGCGCGGCAGCCGCGTGCTGGTGGTCGGCGGCGGCGAGATTGCCTTGCGCAAGTCTCGCCTGCTGGCGGATGCCGGTGCCCTGCTGCGGGTGGTCGCACCCGACATCGAACCGCAGTTGCGGGAACTGGTCAGTGGCAGCGACGGCGAATGCGTGCTGCGTGGCTACGTTGAAGCGGATATGGACGGCTGCGGCCTGGTCATCGCCGCCACCGACGACGAGCCGCTCAATGCCCAGGTTTCGGCCGACGCCCACAAGCGCTGCGTGCCGGTCAACGTGGTGGACGCGCCTGCGCTGTGCAGCGTGATCTTCCCGGCGATCGTCGACCGCTCGCCGCTGGTTATTGCGGTGTCCAGCGGCGGCGACGCGCCGGTGCTGGCACGGCTGATCCGCGCCAAGCTGGAAACCTGGATTCCATCGACCTACGGGCAACTGGCCGGCCTGGCGGCGCGCTTTCGCAATCAGGTCAAGCAACTGTTTCCCGATGTGCAGCAACGGCGGGCATTCTGGGAAGAGGTTTTCCAGGGCCCGATCGCCGATCGCCAACTGGCCGGGCAGGGCGCCGAGGCCGAGCGGTTGCTGCGCGAGAAGATCGACGGCCAGGCGCCGAACGCGCCGGGGGAAGTCTATCTGGTAGGCGCCGGGCCGGGTGACCCGGACCTGCTGACCTTCCGCGCGCTGCGCCTGATGCAGCAGGCGGACGTGGTGCTTTACGACCGTCTGGTGGCCCCGGCGATTATCGAGCTGTGCCGGCGCGACGCCGAGCGGGTTTACGTCGGCAAGCGCCGGTCCGAGCATGCGGTACCCCAGGACCAGATCAACCAGCAATTGGTCGACCTGGCCCGGCAGGGCAAGCGTGTGGTGCGGTTGAAGGGCGGCGATCCGTTCATCTTCGGTCGTGGCGGCGAAGAAATCGAAGAACTGGCGGCCCATGGCATCCCGTTCCAGGTGGTCCCGGGCATCACCGCCGCCAGTGGTTGCGCGGCTTACGCCGGGATCCCGCTGACCCATCGCGACTACGCCCAGTCGGTGCGTTTCATCACCGGGCATCTCAAGGACGGCAGCAGCGATCTGCCCTGGGCGGACCTGGTATCGCCAGCGCAGACCCTGGTGTTCTACATGGGCCTGGTGGGGCTGCCGGTGATTTGCAACGAATTGATCAAGCACGGTCGAGCGGCGGACACGCCGGCGGCGCTCATCCAGCAAGGCACGACTTCAAACCAGCGGGTGTTTACCGGTACCTTGGCGGACCTGCCGCGGCTGGTGGCCGAGCATGAGGTGCATGCGCCGACACTGGTGATCGTCGGGGAAGTGGTGCAGTTGCGCGAGAAGCTGGCTTGGTTTGAAGGGGCTCAGGGGCAGGTCTGAMDYLPLFHNLRGSRVLVVGGGEIALRKSRLLADAGALLRVVAPDIEPQLRELVSGSDGECVLRGYVEADMDGCGLVIAATDDEPLNAQVSADAHKRCVPVNVVDAPALCSVIFPAIVDRSPLVIAVSSGGDAPVLARLIRAKLETWIPSTYGQLAGLAARFRNQVKQLFPDVQQRRAFWEEVFQGPIADRQLAGQGAEAERLLREKIDGQAPNAPGEVYLVGAGPGDPDLLTFRALRLMQQADVVLYDRLVAPAIIELCRRDAERVYVGKRRSEHAVPQDQINQQLVDLARQGKRVVRLKGGDPFIFGRGGEEIEELAAHGIPFQVVPGITAASGCAAYAGIPLTHRDYAQSVRFITGHLKDGSSDLPWADLVSPAQTLVFYMGLVGLPVICNELIKHGRAADTPAALIQQGTTSNQRVFTGTLADLPRLVAEHEVHAPTLVIVGEVVQLREKLAWFEGAQGQVPGPT0003690_964DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003690-cysG-K02302NANA
D1-35_024701005yqjGCOG0435Glutathionyl-hydroquinone reductase YqjGATGGGTTTGTTGGTCGAGGGCCGCTGGCAGGACCAGTGGTATGAGAGCAAGGACGGTAGTTTCCAGCGTGAACAGGCGCAACGCCGCCACTGGATAACCGCCGACGGCAGCGCCGGCCCTTCCGGCGAGAGCGGTTTCGCCGCCGAAGCCGGTCGTTATCATCTTTATGTATCCCTGGCCTGCCCCTGGGCCCATCGCACGCTGATCTTGCGCAAGCTCAAGGGCCTGGAAGACCTGATCGATGTTTCAGTGGTCAGCTACCTGATGCTGGAAAACGGCTGGACCTTCGATCAGGCTCACGGCTCGACGGGCGACAAGCTCGACCACTTCGACTTCCTGCACCAGCGCTACACCGCCGATACACCGAACTACACCGGTCGTGTCACTGTGCCCGCGCTGTGGGATAAACAGCAGCAGCGCATCGTCAACAATGAGTCAGCGGAAATCATCCGCATGTTCAACAGCGCCTTCGATGGTTTGACCGGCAACGACCTGGATCTCTATCCAGAGCACCTGCGCGGCGAAATCGATGGGTTGAACGAGCGCATCTATCCGGCGGTGAACAACGGCGTCTACCGGGCCGGCTTCGCCACCACCCAGGCGGCTTACGAAGAAGCCTTTGATCAGCTGTTTGCCGAGCTGGACCGTCTGGAGGCTCTGCTCGACACCCGCCGCTACCTGGCTGGCGAGTACCTGACCGAGGCCGACATCCGCTTGTTCACGACGATGATCCGTTTCGACGCGGTGTACTTCGGTCACTTCAAATGCAACCTGCGACGCATCGCCGATTATCCGAACCTGTCGAACTGGCTGCGGGAGATGTATCAGTGGCCAGGCATTGCCGAGACAGTGGATTTCACGCATATCCAGGAGCATTACTACGGCAGCCACAAGACCATCAACCCCAATGGGATCGTGCCCAAGGGGCCGAAGCAGGACTTCATGGTGGCGCATGATCGAGGGAGGTTGGGTGGGAAAGGGATCTGGCGCGGGGCCCGGGATTGAMGLLVEGRWQDQWYESKDGSFQREQAQRRHWITADGSAGPSGESGFAAEAGRYHLYVSLACPWAHRTLILRKLKGLEDLIDVSVVSYLMLENGWTFDQAHGSTGDKLDHFDFLHQRYTADTPNYTGRVTVPALWDKQQQRIVNNESAEIIRMFNSAFDGLTGNDLDLYPEHLRGEIDGLNERIYPAVNNGVYRAGFATTQAAYEEAFDQLFAELDRLEALLDTRRYLAGEYLTEADIRLFTTMIRFDAVYFGHFKCNLRRIADYPNLSNWLREMYQWPGIAETVDFTHIQEHYYGSHKTINPNGIVPKGPKQDFMVAHDRGRLGGKGIWRGARDPGPT0013050_953DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-GLUTATHION_METABOLISM,PGPT0013050-yqjG-K07393NANA
D1-35_024711002trpD_1Anthranilate phosphoribosyltransferaseATGACCGACTTTCCTTCGCTGACCCTCGAGACCCCGGCCGAACATCCGTTCGCCCAATTCGTGCGCATCCTTGGCAAAGGCAAGCGCGGCGCCCGCAACCTCACCCGGGAAGAAGCCCGCGAGGCCATGGGCATGGTGCTCGATGAGGAGGTCGAAGAGACCCAGCTCGGCGCCTTCCTGATGCTGTTGCGGCACAAGGAAGAAAGCGCCGAGGAAATGGCCGGCTTCACCGACGCCCTGCGTCAACGCCTGGTGGTTCCACAACTGGCGGTAGACCTCGACTGGCCGACCTACGCCGGGAAGAAGCGCCACCTGCCGTGGTATCTGCTGGCGGCCAAATGCCTGGGACAGAACGGCGTGCGGATCTTCATGCACGGCGGCGGCGCCCACACGGCGGGTCGGCTCTACACCGAACAGTTGCTTGGTTTGCTGGATATTCCCTTGTGCCGCGACTGGCAACAGGTCGGCACGGCGCTGGACACCGGCGGCCTGGCCTTCATGCCGCTGGTGGACTGGGCACCGCAGATGCAACGGATGATCGACCTGCGCAACACTCTCGGCCTGCGCTCGCCGATCCATTCCCTGGCGCGGATCCTCAACCCACTGGGCGCGCGTTGCGGTCTGCAAAGCATCTTCCATCCTGGCTACCAGGCCGTGCATCGCGAGGCCAGCGGGTTGCTGGGCGACACCGCCATCGTGATCAAGGGCGACGGCGGCGAGATCGAAATCAATCCGGACGCCGACAGCCATCTGTACGGCACCACCGGTGGCGCCAGTTGGGACGAAGAATGGCCACGCCTGTCGGAGCAGCGCCACGTCAAGCCGGAGCGCCTCGACCCTGAGCATTTGAAAGCCGTCTGGCGCGGCGACGTCGAGGACAGCTACCCGCAACTGGCGTTGATCGCCACGATGGCTTTGGCCTTGCGCGGCCTGGGTTTGTCTCGCGAAGAAGCGTTCGACAAAGCCCGGCAGTATTGGGACGCGCGGAACAGATCGATTTAGMTDFPSLTLETPAEHPFAQFVRILGKGKRGARNLTREEAREAMGMVLDEEVEETQLGAFLMLLRHKEESAEEMAGFTDALRQRLVVPQLAVDLDWPTYAGKKRHLPWYLLAAKCLGQNGVRIFMHGGGAHTAGRLYTEQLLGLLDIPLCRDWQQVGTALDTGGLAFMPLVDWAPQMQRMIDLRNTLGLRSPIHSLARILNPLGARCGLQSIFHPGYQAVHREASGLLGDTAIVIKGDGGEIEINPDADSHLYGTTGGASWDEEWPRLSEQRHVKPERLDPEHLKAVWRGDVEDSYPQLALIATMALALRGLGLSREEAFDKARQYWDARNRSIPGPT0003690_2DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003690-cysG-K02302NANA
D1-35_02472336tusECOG2920Sulfurtransferase TusEATGAACGTGCTGACCGTGGGCGCGCGCAGCATCGCGCTGGACAAGGACGGCTACCTGGCCGATCTCAATGACTGGTCAACGGAAGTGGCCACAGCCCTGGCCGCCGCCGAAGACATCGAGCTGAGCCCCGAGCACTGGGAAATCCTCGAACTGCTCCGGGCCTTCCACGATGAATTCCAGCTGTCCCCCGCCACTCGGCCGCTGATCAAGTACACCGCGCTGAAACTCGGCGCGGACAAGGGCAACAGCCTGCACCTGAACCGATTGTTCAAAGGCACTCCCGCCAAACTCGCCGCCAAGCTGGCGGGCCTGCCCAAACCGACGAATTGCTTATGAMNVLTVGARSIALDKDGYLADLNDWSTEVATALAAAEDIELSPEHWEILELLRAFHDEFQLSPATRPLIKYTALKLGADKGNSLHLNRLFKGTPAKLAAKLAGLPKPTNCLNANANANANA
D1-35_02473294tusBProtein TusBATGTCGACTTTGCATGTGTTGTCCCATTCACCGTTCGGTGATAACCGCCTCGCCAGTTGCCTGCGGATACTGGGGAGCCAGGATGCGCTGCTGCTGTGCGGCGACGCGACTTACGCGCTGCAACCTGGCACCGAACCGTTCGCTGCACTCCAGGCCTCCGGGCGCAAGGTGCTCGTCCTTGCCGAAGACGCCCAGGGCCGTGCCCTGCACATTCCCGACTGGGCCGAAGCCATTGATTATCCGGCCTTCGTCGAGCTCTCAATCGAGCATGACAAGGTCAACTCCTGGCTATGAMSTLHVLSHSPFGDNRLASCLRILGSQDALLLCGDATYALQPGTEPFAALQASGRKVLVLAEDAQGRALHIPDWAEAIDYPAFVELSIEHDKVNSWLNANANANANA
D1-35_02474363dsrFCOG2923Intracellular sulfur oxidation protein DsrFATGGCCAAGTCGTTATTGCTCATTAGCCGTCAGTCTCCGTGGTCTGGCCCTGGAGCCCGGGAAGCGTTGGACATCGTGCTGGCCGGCGGTGCGTTCGACCTGCCCATTGGCCTGCTGTTTCTCGATGACGGCGTGTTCCAGCTCAGCGCCGGGCAAAACGCCAAGGCCCTCCAGCAAAAAGACCTGAGCGCCAATTTGCAGGCATTGCCGATGTTCGGCGTCGAAGACCTGTTTGTCTGCGCCGACAGCGCCGCCGAGCGTGGCATCGCCACCGATACCCTGGCACTGGACGCTTTTAAAGTGCTGGGCGCAGCGGACATCGCCGCGCTCATTGACCGTTACGACCAGGTGATCACCCTCTGAMAKSLLLISRQSPWSGPGAREALDIVLAGGAFDLPIGLLFLDDGVFQLSAGQNAKALQQKDLSANLQALPMFGVEDLFVCADSAAERGIATDTLALDAFKVLGAADIAALIDRYDQVITLNANANANANA
D1-35_02475393dsrECOG1553Putative sulfurtransferase DsrEATGAAGTTCGCCATCGCGCTGTTTTCCGCCGCCCATGCGCCCTCCTCGCGCCGCGCCTTGCTGTTTGCGCAAGCCGCGCTGGCCGGTGGGCATGAGATCGTGCGGCTGTTTTTCTACCAGGACGGCGTCTACAACGCCGATAACAGCATCGTCACGCCTCAGGATGAGCAGGATCTGCCCCGGCAATGGCGAACCTTCGTCAGCGACCATCAGCTCGACGGCGTCGTCTGCATCGCGGCGGCGTTGCGCCGTGGTGTGCTCAACGCTGAAGAGGCCCAGCGCTATCAGCGTTCGGCAATCAGCGTCGAAGCGCCTTGGGCCCTCTCCGGACTGGGTCAGCTGCACGATGCGATCCAGGACGCCGACCGCTTGATCTGTTTTGGAGGCGCATGAMKFAIALFSAAHAPSSRRALLFAQAALAGGHEIVRLFFYQDGVYNADNSIVTPQDEQDLPRQWRTFVSDHQLDGVVCIAAALRRGVLNAEEAQRYQRSAISVEAPWALSGLGQLHDAIQDADRLICFGGANANANANANA
D1-35_02476330hypothetical proteinATGGCGGCAACCGGACAGCAGCACGAACGAGCCCTGGAGATCTTTCTCGACGAACGCCCGCAGTTGCGTGTCGAGCTGGACAACCTCAACCCCCTGCTGGCCCAGGCCAAGGGCGAAACCGCTGCGCAGTATCGCGCCGAGCGCTTGCATGAGGCGTTCGAAGCCGAGGCCGAGCGCCTGGGTCTGTTTGCCTGGGAGCTGACGCTGTCGCTGACGGCGGACTCCGCCGAGGACTACCAGGCCCAGCGCATGGAAGTGCACAGGGAAGTCGCGGAGATGGCGGGAATGGAGTGGGCTGAGTATTGCCAGTTAAATGGTCTCATGGACTGAMAATGQQHERALEIFLDERPQLRVELDNLNPLLAQAKGETAAQYRAERLHEAFEAEAERLGLFAWELTLSLTADSAEDYQAQRMEVHREVAEMAGMEWAEYCQLNGLMDNANANANANA
D1-35_02477351hypothetical proteinATGCGAATGCTGATGGTGGCCGTGGCCGCAACCCTGCTGGCCGGCTGCGCGGGTTCGGCGATGGAACAGGCCCGGACCCAAGCCCCCTACAAGACCCTGGCCTCGGACAAGCCGGAGCAGAATGTCGCCCAATGCGTGAAGTTCGCCTGGGAAGACGAAGCGGTGTTCGGCGTCGATGCCGGTGCCTACCTGCAACCCGGCAAGCAGGGTGGCTCGACGGTGTACACCCGCTCGGCCGAATCGTTTGTCGATATACAAGCCAGTGCCACCGGCACGGCGTTGAAGTACTACGCCAAACAGGATGATTTTGTCGCCAAGCGCCGGTTGGCGGCGTTGGCGACTTGCCTCTGAMRMLMVAVAATLLAGCAGSAMEQARTQAPYKTLASDKPEQNVAQCVKFAWEDEAVFGVDAGAYLQPGKQGGSTVYTRSAESFVDIQASATGTALKYYAKQDDFVAKRRLAALATCLNANANANANA
D1-35_02478354hypothetical proteinATGAAAAAGCCATATGATTTGCATGACATCTGGGCGTTACTTTTTGTCTTCAGCATTGAAAACACCCATGACGTGGCGCGCGAGGAAATAATAACTTCAAAAAACGTTAATAATGATGAAGAGCTTGGGCAGCTATTCGATTTGCTGGTTCGCCCGGAGTTCCTATTTTACAGTCCGAAGGAACGTATTTTGTTGATTGACACTCTCAGCTATTTCCTCGAGAACAATGATAGCTTTGATAGAGTTTTCTTAAAATTGGATACGTATTTTGATGAGGACGTTCGGGATCAACGTAGATTTATGCAAATACTATTAAACTCTTTAATCAGGTATAGATCCGAGATTGAGAATTAGMKKPYDLHDIWALLFVFSIENTHDVAREEIITSKNVNNDEELGQLFDLLVRPEFLFYSPKERILLIDTLSYFLENNDSFDRVFLKLDTYFDEDVRDQRRFMQILLNSLIRYRSEIENNANANANANA
D1-35_024791737hypothetical proteinATGGACCAGATTTCGAGCCCGCATGTCCTCCCCGTCGAACGCGAATTCAGTCCGCGCGCGGTCATCACGGGGATCGTGCTTGGCATCCTCCTGACGCCCTCCAATGTCTATGCCGGATTAAAAATCGGCTGGTCGTTCAACATGTCGATCATTGCCTTGCTGGTCGGCTACGGCATCTGGCAAGGCCTGGCCAAACGCTCGGCCGCGGGGCTGCCGTGGACGTTGCACGAAAGCAACATCAACCAGACCGTTGCGTCGGCAGCGGCGTCGATCATCTCCGGCGGGCTGGTCGCGCCCATTCCGGCGTACACCTTGCTGACCGGCCAGCAACTGGACCCGGTGCCGATGATTGCCTGGGTATTTTCGGTGAGCTTCCTGGGCATCTGGATTGCCTGGTACCTGCGGCCGTCATTGCTCAATGACAAGGCGCTGAGGTTCCCCGAAGGCATGGCGACCCTGGAAACCCTCCTGCACATCTACAACCATGGCCAGGAAGCCGCGACGCGGCTCAAGGTGCTGCTCGGCGCGGCGCTGCTGTCCGGGCTCGCCAAGTGGGTGGATACGTTTTGGTGGACCATCCCGCGTTGGTCGCCGAGCGCCCAACTGGAGCGCCTGACCTTTACCGCAGACCCTTCGCTGTTGCTGGTGGGGTTCGGCGGCATCATCGGCATCCGCGTCGGCTTGACCCTGCTGCTCGGCGCGCTGCTGGCGTGGGGCGGGTTGGCGCCGTGGCTGCTGGAAAATGGCCTGGTGCAGTTACCGCCCGGCAGCAGTGGACCGCAATTTGCGGTGCTGGTGGAGTGGCTGCTGTGGCCGGGGGTGAGCCTGATGGTCTGCTCGACGCTGGCTTCCCTGGCGATTCGCCTGTGGGCCTTGCACGGTTCCACCAAGGCCAGCGGCGCGGCGACCTGGGTGGTTCCCAAGGCCGGCCCCGCCCTCGGTTTCCTGTTGGCGATCTTTCTGGTGGTAAGCCTGCAAGCGCTGTTGTTCGGCATCAATCCGTGGATGGCGCTGCTGACCATCCCCTTGGCCATCTGCCTGGCGGCGGTGGCGGCCCGTGTGGTTGGCGCCACGGGTATTCCGCCTATCGGTGCCATCGGGCAACTGTCCCAGTTGAGTTTCGGCATCGTCGCCCCGGGCCAGGTGCCGATCAATCTGATGAGTGCCAATACCGCCGGCGGTTCGGCCGGGCAATGCACAGATTTGATGAACGATTTCAAGGTGGGCCGAGCGATCGGCGCCACGCCGCGCAAACAACTGCAGGCGCAGACCCTGGGAATCTTCATCGGCAGCATCGTCGGCGTGCTGGCCTATCTGGCGCTGATCCCGGACCCCCAGACCATGCTGCTCACCGAAGAGTGGCCGGCCCCGGCGGTCGCCACCTGGAAGGCCGTGGCACAGACCCTCACCCATGGCCTGGACTCACTGTCAGCCAGCATCCGCTGGGCGATTTTCATCGGCGCCATCGCCGGCTTGCTGCTGGGCATCCTCGACAGCCTGCTGCCGGCCCATCGGGCCCGCTACCTGCCAAGCACGGCGGCCTTGGGCCTGGCCTTTGTCCTGCCGGCCTCGGTATCGCTGATGATGGCCCTCGGCGCCGTACTCACCTGGCTGGTGAGCTGCCGCTGGCCAAGCCTCACGGAACGCTTCGCTATTACGGCGGCGGCGGGGTTGATTGCGGGGGAGAGCATTACCGGGGTAGGGGCGTCGTTGTGGGAGATGGTTGGGAATATGTGAMDQISSPHVLPVEREFSPRAVITGIVLGILLTPSNVYAGLKIGWSFNMSIIALLVGYGIWQGLAKRSAAGLPWTLHESNINQTVASAAASIISGGLVAPIPAYTLLTGQQLDPVPMIAWVFSVSFLGIWIAWYLRPSLLNDKALRFPEGMATLETLLHIYNHGQEAATRLKVLLGAALLSGLAKWVDTFWWTIPRWSPSAQLERLTFTADPSLLLVGFGGIIGIRVGLTLLLGALLAWGGLAPWLLENGLVQLPPGSSGPQFAVLVEWLLWPGVSLMVCSTLASLAIRLWALHGSTKASGAATWVVPKAGPALGFLLAIFLVVSLQALLFGINPWMALLTIPLAICLAAVAARVVGATGIPPIGAIGQLSQLSFGIVAPGQVPINLMSANTAGGSAGQCTDLMNDFKVGRAIGATPRKQLQAQTLGIFIGSIVGVLAYLALIPDPQTMLLTEEWPAPAVATWKAVAQTLTHGLDSLSASIRWAIFIGAIAGLLLGILDSLLPAHRARYLPSTAALGLAFVLPASVSLMMALGAVLTWLVSCRWPSLTERFAITAAAGLIAGESITGVGASLWEMVGNMNANANANANA
D1-35_02480771hypothetical proteinATGGCTTTGCAGCTTAACCGCTTACTGATGTCTGGCGTCCTGATGCTCCTGCTTGCAGGTGGGTCGGCGTTGGCCATCGCGGCTGAGCCGCCGCTGCGCATCGTCACGGAGGAGTTGCCGCCCTACAACATGACGCAGAACGGACGCGTGACCGGCATGAGCACCGAGGTCGTCGAGGCCGTGCTCAAGGAAATCGGCGTCCAGGCGTCGATCCAGCCCATGCCCTGGGCCCGCGCGTACGAGTTGGCGCTCAATGAAAGCAATGTCCTGATCTATTCGATCGTCCGCACGCCCGCACGCGAAGCGCTTTTCCAGTGGATCGGCGCCATCGCCCCGACCCAGTGGTACATCTACTCCCTGGCTGAGCGGCCAGTGAAGCTCAACTCCCTGGCCGACGCCCATGGGCACCAGATCGCGACCGTCAATCAGGATGTCGGCGAGCAATACCTGGTCTCGAAGGGATTCCGCATCGGCAAAGATCTGCAATCGAGCACCCGATACGAACACAACTACCGCAAGCTCAAGGTCGACCATGTGGAGTTGTGGATTTCCAACGAACTCAACGCGCTGTACCTGACTCGGCAGAATGGCGAAGACCCGGAAAAAGTCCTCATCCGGTCATTGCCGCTGCCCGAACTGAGCAGCGCCGACGGCTTGAACATGGCATTCAGCCGCAACACGCCGGCGCAAACCGTCGAGAAATTCCGCGCCGGCCTGGAGGCCATTCGTCGCAACGGCGTCTACGATGCCATCGCGCGCAAGTGGTTATGAMALQLNRLLMSGVLMLLLAGGSALAIAAEPPLRIVTEELPPYNMTQNGRVTGMSTEVVEAVLKEIGVQASIQPMPWARAYELALNESNVLIYSIVRTPAREALFQWIGAIAPTQWYIYSLAERPVKLNSLADAHGHQIATVNQDVGEQYLVSKGFRIGKDLQSSTRYEHNYRKLKVDHVELWISNELNALYLTRQNGEDPEKVLIRSLPLPELSSADGLNMAFSRNTPAQTVEKFRAGLEAIRRNGVYDAIARKWLPGPT0020800_13972DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-35_024811344hypothetical proteinATGGACGGCAACTTCGCCCCGGCGCCCTTTCAACGACCACAGGCCAAGGCCCTCAGCTCCCTGGGGCGTCGACTGGTGCTCGCGACGCTGCTGTTCTGTCTGATTTTCACCGTGGCGATGGTGACATGGCGCACCTGGCTGGCCTGGGAAAGCAACCTGGCGGAGATGAATTCCGAGCTGGGGCTGATCGACCAAGTGTTCCAGGACACCCTGGCCCATGCCATCTGGGAAATGGATCGCGAGTCCCTGGACAAGCAGCTCAACAGTGTCGCCAGTGCCGCGCCGGTCGGACGCGTGGTCCTGAATGTCCTGCGGCCCGGCCGCTCACCGGAAATCATCGAACTCAACCGCTACACCAGCGGTAACGCCGGCTCGGCACCGGTGTTGCAGCGCCAGCTCATCGCGCAACCCTATCTCGGCGCCCATGAAAAAGTCGGCGAGCTGATCATCGAGGGCGATAACCAACTGCTCTGGAAGCGCCTGTGGGGCGAAGCGCGCACCATCGTCATTACGCAAATCATCCAATCGATGCTCCTGGCCGGGCTGGTCATGACCATGTTCAACCGCCTGGTGACCATCCATGTGGTGCATATTGCCCGGCATTTGGGTGAGCTCGCTCCGCAAACTCTCAAGCGTCACCTCAAATTGCAGCGCTCGGTCAACCGCCAGGACGAACTGAGCCTGCTCGAAACCCAGGTCAACGAACTGCAGGACAATCTCCACGCGCACCTGGAACGCCAGCGTTCGGACGAACTGGCGATCGCCGCCAGCCGCGATCAACTGGTCGAACTGGTCGAGGCGCGCACGGCGGAACTCAAGGCCGCCAACCAGGCCCTCGAAGCCTTGTCCCGCCACGACGCCTTGACCGGCCTGGCCAACCGTCGCCACTTCGACGAACTGAAGGAAGTCGAATTCCGCCGCGCCATGCGTCATAGGACGCCGCTGGCGGTGCTCATGTGCGACGTGGATTTTTTCAAGATCTACAACGACACCTACGGCCACATGAACGGCGACCTGTGCCTGCAACAGATAGCCGAAACCCTGCGTGACGTGTTCGGGCGCTCCGGCGAGCTGACCGCACGGGTGGGTGGCGAAGAGTTCGTCGTCGTGCTGCCCAACATCGACGCGCAGCAGGCCTGCGAGGCGGCCGAGAGGCTGCGCGCCGCCCTGGCCGAACGCAAGCTGCCTCACAGCGGCTCATCGGTCTCGCCCTTCGTCACACTGAGCATCGGCGTCGCCGAGCTGGACCCCGAGATCATGGATCATTTCGATCCACTGATGCAACGCGCCGACCAGGCGCTGTACCGGGCCAAGCACCAGGGACGCAACCGCGTCTCCCTCTGAMDGNFAPAPFQRPQAKALSSLGRRLVLATLLFCLIFTVAMVTWRTWLAWESNLAEMNSELGLIDQVFQDTLAHAIWEMDRESLDKQLNSVASAAPVGRVVLNVLRPGRSPEIIELNRYTSGNAGSAPVLQRQLIAQPYLGAHEKVGELIIEGDNQLLWKRLWGEARTIVITQIIQSMLLAGLVMTMFNRLVTIHVVHIARHLGELAPQTLKRHLKLQRSVNRQDELSLLETQVNELQDNLHAHLERQRSDELAIAASRDQLVELVEARTAELKAANQALEALSRHDALTGLANRRHFDELKEVEFRRAMRHRTPLAVLMCDVDFFKIYNDTYGHMNGDLCLQQIAETLRDVFGRSGELTARVGGEEFVVVLPNIDAQQACEAAERLRAALAERKLPHSGSSVSPFVTLSIGVAELDPEIMDHFDPLMQRADQALYRAKHQGRNRVSLNANANANANA
D1-35_02482735hypothetical proteinATGCGCCACTCTCTGCTGCTCTGCTCCTGCGTACTCCTGGCCTTGATCAGCCTCACAAGCCAGGCCGAAATGATCGAGGTCGTGACCGAGGACTCGCTTTACGCGTATCTGCGCGATGACAAACTCGTCGGCCCCGGTATCCATATTGCGTCCGACACGCTGCAACAGGCCAACCTCAGCGATTTCCGCATGGCGCTGTATCCCTGGGCGCGGGCTTATGAGATGGCCTTGCGCGAACCCAACGTGCTGATTTTCCCACTGGATCGCACCCCGGCCCGGGAGCAGCTGTTCAAGTGGGTCGGTGAAATCCATCGTTCCACCAGCCGGCTCTACAAGCTGCGCGACGCCGACCCCATCACTGTCCGCAACCTTGAAGAGGCCAAGCAGTACAGCATCGGCGTGATACGCAATGACGCCAAGCAGATCTATCTGCAAGAACGTGGCTTCAGTCGTCTGGTCGTGTCGGCGAACAACCACGACAACTTCCAGAAACTGTTGAACCGTCAGGTCCAACTGGTGCCGATGCCGGAGAACACGGCACGCCTGATGAGCCAGGATGCCCAGATGGATTTCAATCAGCTGGAGGAAGTCTATGCCCTCGACGAGCAGCCCCACCGGGTCTACCTGGCTTTCAGCCTGAGCACACCGGACGAAACGGTCGCCCGTGCCCAGCGCGCGTTTGAAGCGCTCAAGGCATCGGGCGAAGTCGAGCGGATCATGAAGGAGAAGCGTTGAMRHSLLLCSCVLLALISLTSQAEMIEVVTEDSLYAYLRDDKLVGPGIHIASDTLQQANLSDFRMALYPWARAYEMALREPNVLIFPLDRTPAREQLFKWVGEIHRSTSRLYKLRDADPITVRNLEEAKQYSIGVIRNDAKQIYLQERGFSRLVVSANNHDNFQKLLNRQVQLVPMPENTARLMSQDAQMDFNQLEEVYALDEQPHRVYLAFSLSTPDETVARAQRAFEALKASGEVERIMKEKRPGPT0020800_15770DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-35_02483531hypothetical proteinATGAGCACACTGAACTCGGCATCGGAGTCCATTCAGACCCTGATGCTGGAACGCAACGATTGGGTACCCAACCACCCGCGCCTGCCGGTGATCATCTACCGTGACGCGATGACTGCCCAGGCAGGTGACCTGGCCGCCCAGCTGGAAGAGATGTTTCGCAGCAACGGCTGGCCGCCGCAATGGCGCTACGGGATCTACGATTTCCACCATTACCACACGGAGGGCCACGAAGTCCTGGGCGTCGCCAGCGGTCAGGCGCGCTTGATGATCGGCGGCCCCGATGGCCAAGTGATCGGCGTCCAGGCAGGCGACGTGTTGCTGCTGCCTGCTGGCACCGGGCATTGCAACCTGGGTTCCAGCGAAGATTTCCTGGTCGTCGGAGCGTATCCACCGGGCCAGCAGGCCGACATCTGCCGGGAAGCGCCGAGCGCGGCGCAACTGGCAAACATCGACGCGCTACCGTTTCCTGATCGGGACCCCGTGCAGGGATCACCGGGGGCCGTCGGCCGATATTGGACCAAGCCCCGTTGAMSTLNSASESIQTLMLERNDWVPNHPRLPVIIYRDAMTAQAGDLAAQLEEMFRSNGWPPQWRYGIYDFHHYHTEGHEVLGVASGQARLMIGGPDGQVIGVQAGDVLLLPAGTGHCNLGSSEDFLVVGAYPPGQQADICREAPSAAQLANIDALPFPDRDPVQGSPGAVGRYWTKPRNANANANANA
D1-35_024842067hypothetical proteinATGACGATGGCTGAGAAAAATCATGTCGACTGGCTGGTCGAACAATCGATGCTCCACGCGGCGCGGCAGCGGGCCAAGCTCTATTCGGGGCAAGGACGCTTGTGGCAGCAGCCCTATGCGCACACCCGGCCCCGTGATGCTTCAGCGCTTTCCTCTGTGTGGTTTACCGCATACCCAGCCTCCATCGTCACCCGGGAAAATGGCACGGTGCTCGAGGCATTGGGCGACGAAACCTTGTGGCACGCCTTGTCGAAAATCGGCATCCAGGGCATCCACAATGGTCCGCTGAAAAGATCCGGCGGCCTGCGCGGCACTGACTACACGCCAACCATCGATGGCAATTTCGACCGTATCAGCTTCGACATCGACCCTGAGCTGGGCACCGACGCTCAACTCCAGGCACTGACCCGCATGGCCGCTGCACACAACGCGGTGGTCATCGACGACGTCATCCCGTCCCACACCGGCAAGGGCGCCGATTTTCGCCTGGCGGAGATGGCTTACGAAGACTATCCGGGCCTCTACCACATGGTGGAAATTCGCGAGGAAGACTGGCCGCTGCTGCCCGAGGTCGGGGAGGGGCGTGATGCCCAGAACCTCACCGCGCAGCAGGTGGATGCCCTGCGGGACAAGCACTACATCGTCGGCCAGTTGCAGCGAGTGATTTTCTTCGAGCCTGGCGTCAAGGAAACCGACTGGAGCGCGACGCCGATCATCCTGGGCGTCGACGGCAAGCCACGGCGTTGGGTTTACCTGCACTATTTCAAGGAAGGGCAGCCGTCGCTGAACTGGCTGGACCCGACCTTTGCCGCGCAGCAGATGATCATTGGCGATGCGCTGCACGCCATCGATGTCATGGGGGCGAAAATCCTCCGGCTGGACGCCAACGGATTCCTCGGCGTGGAGCGCAAGCTCGATGGCACCGCCTGGTCCGAAAGCCATCCGCTGTCGATCACCGGCAACCAGTTGCTCGGCGGGGCGATTCGCAAGGCCGGCGGTTTCAGCTTCCAGGAATTGAACCTGACCCTCGACGACATTGCCGCCATGTCCCACGGCGGGGCGGACCTGTCTTACGACTTCATCACCCGACCGGCCTACCAGCACGCCCTGCTGATGGGCGACACCGAATTCCTGCGCTTGATGCTGCGCCAGATGCACAGCTTCGGCATCGACCCGGGCTCGCTGATCCACGCCTTGCAGAATCACGATGAACTGACCCTGGAGCTGGTGCACTTCTGGACGCTGCATGCCCACGACACCTACCTGTATCAAGGCCAGACGTTTCCCGGCAGCATCCTGCGCGAGCACATCCGCGAGCAGATGTATGAACGCTTGTCCGGCGAGCATGCGCCTTACAACCTGAAATTCGTCACCAACGGCGTGTCTTGCACCACGGCGAGCATCATCACCGCCGCCCTGGGCATTCGCGACCTCGACGCGATCACAGCGGCCGATATCCAGCAGATTCGCCAGGTGCATCTGCTGCTGGTGATGTTCAACGCCATGCAACCGGGCGTGTTCGCCTTGTCTGGCTGGGATCTGGTGGGAGCGTTGCCGTTGCCGGCGGAACAGGTCGAGCACCTGATGCGCGACGGCGACACGCGCTGGATTCATCGCGGTGCCTACGACCTGGTCGACCTCAACCCGGAAGCGCCGCTGTCAGCCGGGCAGATGCCACGTCCAAAGACCTTGTACGGCAGCCTGCCGAGCCAGTTGAAGGATCCGGATTCGTTCGCCTCGCAATTGCGCAGGATCCTGGCCGCGCGCCGCGCCTACGACATCGCGGCGAGCCGCCAGATCCTCATCCCGGACGTCGAGCATCCGGGGCTGCTGATCATGGTTCACGAACTGCCAGCCGGCAAAGGCACGCAGATCACCGCGCTGAACTTCGGTTCGACGCCGATCACCGAAACCCTGCACCTGCCAGGTATCGCACCGGGGCCGGTGGTGGACATCATCAATGAGCGGGTCGAAGGGGATCTCACGCCCGAGGGTGAGTTCACCATTACTCTGGATGCGTTCGAGGGGTTGGCGCTGCGGGTGGTGAGCAGTTCGCCGATGATCTAGMTMAEKNHVDWLVEQSMLHAARQRAKLYSGQGRLWQQPYAHTRPRDASALSSVWFTAYPASIVTRENGTVLEALGDETLWHALSKIGIQGIHNGPLKRSGGLRGTDYTPTIDGNFDRISFDIDPELGTDAQLQALTRMAAAHNAVVIDDVIPSHTGKGADFRLAEMAYEDYPGLYHMVEIREEDWPLLPEVGEGRDAQNLTAQQVDALRDKHYIVGQLQRVIFFEPGVKETDWSATPIILGVDGKPRRWVYLHYFKEGQPSLNWLDPTFAAQQMIIGDALHAIDVMGAKILRLDANGFLGVERKLDGTAWSESHPLSITGNQLLGGAIRKAGGFSFQELNLTLDDIAAMSHGGADLSYDFITRPAYQHALLMGDTEFLRLMLRQMHSFGIDPGSLIHALQNHDELTLELVHFWTLHAHDTYLYQGQTFPGSILREHIREQMYERLSGEHAPYNLKFVTNGVSCTTASIITAALGIRDLDAITAADIQQIRQVHLLLVMFNAMQPGVFALSGWDLVGALPLPAEQVEHLMRDGDTRWIHRGAYDLVDLNPEAPLSAGQMPRPKTLYGSLPSQLKDPDSFASQLRRILAARRAYDIAASRQILIPDVEHPGLLIMVHELPAGKGTQITALNFGSTPITETLHLPGIAPGPVVDIINERVEGDLTPEGEFTITLDAFEGLALRVVSSSPMINANANANANA
D1-35_024851263hypothetical proteinATGAGTATCCGCCAAGCCTTCAGAGGAATTTGCGTGGGGGCGGTCATTGTCGTGGCAGCCAACGCGATGGCGGCCGGCACGCTTCCCGTCGGTCCCGCTGCCGGAGACATGCAGCTGTCGCCGTTTTATCGATGGTCTGACGCGATGCCTGCGCAGCCTGGCGTGCTGCTGCGCAGCGAGGCCATGGCGGTTCAGGCTCAAATGCCTGCCGCCGCGCGGGCCTTGCGTCTGCTCTACAGCTCCATCGATCAGCGCTGGCAGTCCGGTCTCGTTCCGGTCAGCGGAGCTTTGTATCTGCCGGCAGGAAATCCTCCGGCCGGAGGCTGGCCGCTGCTGGCCTGGGCTCACGGCACGCTGGGCATCGCCGATGCCTGTGCGCCTTCCTGGGCGGGATTGCGTGAGCGTGACGCGGCGTACATCAATCGCTGGCTCGCGCGCGGCTTCGCCGTGGTGGCCAGCGATTATCAAGGCTTGGGAGGACCGGGACCGCATCCCTATACGTTCTGGCAGGCCGAGGGACGCTCGGTCCTGGACTCGATTCGCGCTGCCCAAGCCTTCAAGCCAGGCCTGATCGCCAATCGCGTTGTCCTGGCCGGACAATCCCAGGGCGGCGGGGCGGCACTGGGCGCGGCGATCCTTGCTGGCACCTACGCACCGGAACTGCCCATTCTGGGCGCGGTGCTCACGGCGCCGAACAGCACATTCCCCGAAGGCCCCATCAAGCTGCCGCCGCGCCAGTCCAATACGGTGTTCCTGGCAATGGCGTCAGGCGCGTTGCGTGAGGATGGGCCACCGATCGAAGGCATCCTGACGGCCAAGGGGCTCGAACTGTTGAGCGTCGCCCGGCAAGGCTGTACCGGTGATATTGGGCAAAAGTCCAAGGCGTTGCAGATTGGTTCGTTTGCCGAGCTGTTCACGATTACCCCAGAGGCATTGAACGCTGCGCGCATGCCGACGACTGACATGCCCCAGGCGTCGATTGCTTTTCCGGTGTTCATCGCCACGGGCAAGGCGGATCAGACCATTACGCCAGAGCGGCAATACGCGGTCGCGGCGGCGTTGTGTGCCGCTGGCAATCCGGTGACGTGGCGGACGTATGAAGGCCTGGGGCATGACGGGGTACTACATGGTTCCCTGGACGACGTGTTTGCCTTTGTCGAGGCCCGGTTCGATGGACAGGAGCATGGTTCCAATTGCTCCATCCTGCAGAACCCCGGGGCGCCAGGCGAAAGAGACGTGGCAGCACCGTTCAACGACGACTGAMSIRQAFRGICVGAVIVVAANAMAAGTLPVGPAAGDMQLSPFYRWSDAMPAQPGVLLRSEAMAVQAQMPAAARALRLLYSSIDQRWQSGLVPVSGALYLPAGNPPAGGWPLLAWAHGTLGIADACAPSWAGLRERDAAYINRWLARGFAVVASDYQGLGGPGPHPYTFWQAEGRSVLDSIRAAQAFKPGLIANRVVLAGQSQGGGAALGAAILAGTYAPELPILGAVLTAPNSTFPEGPIKLPPRQSNTVFLAMASGALREDGPPIEGILTAKGLELLSVARQGCTGDIGQKSKALQIGSFAELFTITPEALNAARMPTTDMPQASIAFPVFIATGKADQTITPERQYAVAAALCAAGNPVTWRTYEGLGHDGVLHGSLDDVFAFVEARFDGQEHGSNCSILQNPGAPGERDVAAPFNDDNANANANANA
D1-35_02486966aes_1COG0657Acetyl esteraseATGAGTCGCGACGAAAATCCGCCGGTGCATCCCGACCTGACGGCCGTGGTCGGCGCGCTCCGGGAGCAGGGATTGCTGCCCGTCGTTCATGGGGACGTGCACAGCGTCCGGGCGCATCTGGAACGGATCAATGCCTGGGCGGCGCAACGCAGCGTGCCGCTGTCCTACGAGCGGACCCTGGGCTTTGCCGTTGATGGGCGAACGGTGCCCTGCAAACTCTATTGGCCGGAGGGCGATGAGACGCCTTGCCTGATGTTCTACTGCCATGGCGGCGGATTCCGCCACGGTTCGCTCGCCGGCTGGGACGCACCTTTGCGCCAGTTGGTGCGCGACAGTGGCCTGGCGGTGCTCTCCATCGACTATGCGCTGGCGCCGGAACATCGCTTTCCGGTGGCGTTCAACGAGGTGGCGGCGATCGTCAGCCGGGTCATCAAGCTCGGCGCTATCACCGACTGCCCGGTACGCGGCTATGCCCTGGGCGGCGATTCGGCAGGCGCCAATCTCGCCTTGGGCGTCGCCATTGCACTACGCGACGCGGGAATCGATGCGTTGCGGCAGCTATTGCTGTTCTACGGCAGCTACTCGCGGGACCTGACCTCCGATTCCTGGCAGCGACTTGGCGGCTACGGCGGCCAGAATCTGTCGGTCGAGACCATGCACGCTTACTGGGCCAGCTACCTGGCCAATGACGAGGCCGACTGGAGGGTGCAGCCGATCATTGGTGAATTGGCGGGCCTGCCGCCGGTGCGATTGGTGGTCGGTGAACTGGATCCGCTGGTGGACGAAAACCGTGAGCTGGCGAGTCGATTGCAAAGCGCGGGCGTGACAATAGATCTGCAAGTACTCGCGAACATGCCTCACGGGTTCATTCGCTTCAATGAGGTGGCTCCTGTCGCACGCAACGTCATCGCTGCGCAGGGCAACGCCTTGCGCAAGGCATTTTCCGGACGGGGAAACTTTCCATGAMSRDENPPVHPDLTAVVGALREQGLLPVVHGDVHSVRAHLERINAWAAQRSVPLSYERTLGFAVDGRTVPCKLYWPEGDETPCLMFYCHGGGFRHGSLAGWDAPLRQLVRDSGLAVLSIDYALAPEHRFPVAFNEVAAIVSRVIKLGAITDCPVRGYALGGDSAGANLALGVAIALRDAGIDALRQLLLFYGSYSRDLTSDSWQRLGGYGGQNLSVETMHAYWASYLANDEADWRVQPIIGELAGLPPVRLVVGELDPLVDENRELASRLQSAGVTIDLQVLANMPHGFIRFNEVAPVARNVIAAQGNALRKAFSGRGNFPNANANANANA
D1-35_024871029ghrB_2Glyoxylate/hydroxypyruvate reductase BATGTTTGACCATCGCCATAAAATAGTGGTTACACAGCGGTTTTTCGACGCCATGGCCAGCGACTTTCTGGAGAGCCATGGCTGTGAGGTGGTCGTCGCGGAGCTGGCGCCCGGCCAAGCCGATGGTGACCTGAATGAACGGCAGCTGATCGACCTGCTGGCAGACGCCGACGGTTGGATCGTCGGGCACGCGAATGTCACGTCCAGCCTGCTGGGTGCACTGCCGCGCCTGCAAGTCATCGCCCGTCGCGGCGTCGGTTATGAGCGGGTCGATACGGCAGCGGTGGCAGCGGCAGGGAAGGTGGCGACCATTGCTACTGGCGGCAACGATGCCAGCGTCGCCGACCACGCCGTTGCGCTGATGCTCGCCGTTTGCCGTCAACTCAAGCGCTGCCAAATGGGCTTGTCGGCCAATGACTGGTCGATCCCCCTGGGCGGTGATCTGTACCGCAAGACGGTTGGCATCGTCGGGTTGGGCCGGATTGGCCGGGGTGTCCTGCAGCGCTTGTCCGGGTTTGAAGTCAGGCCGCTGATCTATACGCCTCATCCAGGCGGCGCCGAGGCCGACGGTAATTTTGTTGACCTGGATACGCTGCTCAGGCAAAGCGACTTCATTACCCTTCACGCGCCGCTCAATGCGCAAACCCAAGGACTGATCGATGAGCGCGCGCTTAACCTGATGAAGCGTTCCGCGGTGCTTATCAACACCGCGCGGGGCGGGTTGGTGCGCGATGCCGATCTGCTGCGGGCCCTGCGCGAAAAGCGAATCGCAGGGGCAGGGCTCGACGTCTTCGAAAGCGAGTCGGACCCCTCGCTCTTGCCGGTGACCGAACAACTGATTCAGCTACCGAACGTGATCGTGACGCCCCATGTCGGCGCGTCCACGGTGGAAGGGCTCAATCGCACCAATCTGATCGCCGCCCAATGCGCGGTGGCCGTCCTGGAAGGACGCAGCCCGCCCAGCCATTGCGTCATCGCGGACGGACGTCGAACTGTCGGCTGCGAGAGCCGCGTGGATAACCGGCCATGAMFDHRHKIVVTQRFFDAMASDFLESHGCEVVVAELAPGQADGDLNERQLIDLLADADGWIVGHANVTSSLLGALPRLQVIARRGVGYERVDTAAVAAAGKVATIATGGNDASVADHAVALMLAVCRQLKRCQMGLSANDWSIPLGGDLYRKTVGIVGLGRIGRGVLQRLSGFEVRPLIYTPHPGGAEADGNFVDLDTLLRQSDFITLHAPLNAQTQGLIDERALNLMKRSAVLINTARGGLVRDADLLRALREKRIAGAGLDVFESESDPSLLPVTEQLIQLPNVIVTPHVGASTVEGLNRTNLIAAQCAVAVLEGRSPPSHCVIADGRRTVGCESRVDNRPPGPT0009155_5226DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009155-serA-K00058NANA
D1-35_024881398hypothetical proteinATGAAATCGATTAACGCCGTCGCTATGACGTTGCTGTCGACAATGTTTGTGTCTGAAGTGGCTCTTTCAGCAACGATCAGTTATCCGGACCGGTTCCAGCATGAAGGAAAGTTGAATGCTTATCTGCGCTCGGTTTATATCAATACTCGAATATCTAACGATTTGATCGAAGACCGTTTTGGCGGTTTTCCGGACGGCAACAAACTGGGCGGTACCGGAATCGGCGCAATTCTGGATTACAACTCAAGTTATTGGGCCGGCGTCGTAGGGTTTGACGCCTCGCTGTATGGCGTGGCAATGATCGATTCCAAAGATAACGGCCGGGACTTGTTCGATGACAGCGATGGCACGAATGGCGGTTTCGCAAAAGTCGGGCAGAGTTATTTCAAATTGCGTTATGAGGGGAATGGCTGGAACGTCGACTCCCAGATAGGGCGGGGCCGGTTCGATGCGGGAACGCTGGTCACGCTCGACACGCGGATTGTCCCTGGGTCCTACCAGGGAGGTCGGGCTCATCTGAATTTCACCGAGATGGGCATTGGTCCGCTTCCCGGCACGCTGGGGTTCGAAACGGCCTATATCAACCGTACGTCGCCTCGGGACAGAGAAGAGTTCGAGCATTTGTTGAGTCAGTCGGGCGAGGAAATAAAAGACCTGTACACCTACGGCGTCAAATACGACCTGAAGGCCATCGAACTTGGCTACGACCATGGCGTATCGCGGGACTTCAATGAAAACACTCGATACGGACTCACGTTGAAAGCGCCTCTCGGCGATAAAGCCGGGATCGTACTGGACACTCAATATTATGAGTTCGAAAAGGCCGGACGTATCTGGGAGCGTGATTGGCAGGCCGGCCAGGCCGCTTATGACGATGATGCGAGCTGGTTGAATATCAACGTTGGTTTGTTGCTCGACAAACTTCGCCTGGGTGTTTCGTTTTCCGAGACCAAAGCCGAGTTGAGCAATGGGCAACTCGGTTATGCCTACTTTGATCATGCGGACAATGTCGACGGCAGGATGGATGCCTGGACACGCTCCGGCAACGACTTCAATAACGATGGCGAGCGAACCTGGCAAATCGGCGCCGAATATGACTTGAGCGGACATTCTTTATTGGGGGCTTCGCTGGACGGTTTCAAAGTCATGACTATTTATAAGCAAGGTCAGTTTGACGCCACCGATCCATTCAGCGGCCGCCGCACCGATGTGACCGAGCGACAGAATGAATACCGTCTCTATTATCGCTTCGATGAAAAGGAATACGCCGGGCTCTCGGTCGGCTTGATTTATATCGATTACCGGATTGACCAGGACTTTGTCGCATTGATATCCGCACAACCCGACAACGTGGTCAGCGGCTCGGAGGCCAGGGTGTATCTGGATTACGCGTTTTGAMKSINAVAMTLLSTMFVSEVALSATISYPDRFQHEGKLNAYLRSVYINTRISNDLIEDRFGGFPDGNKLGGTGIGAILDYNSSYWAGVVGFDASLYGVAMIDSKDNGRDLFDDSDGTNGGFAKVGQSYFKLRYEGNGWNVDSQIGRGRFDAGTLVTLDTRIVPGSYQGGRAHLNFTEMGIGPLPGTLGFETAYINRTSPRDREEFEHLLSQSGEEIKDLYTYGVKYDLKAIELGYDHGVSRDFNENTRYGLTLKAPLGDKAGIVLDTQYYEFEKAGRIWERDWQAGQAAYDDDASWLNINVGLLLDKLRLGVSFSETKAELSNGQLGYAYFDHADNVDGRMDAWTRSGNDFNNDGERTWQIGAEYDLSGHSLLGASLDGFKVMTIYKQGQFDATDPFSGRRTDVTERQNEYRLYYRFDEKEYAGLSVGLIYIDYRIDQDFVALISAQPDNVVSGSEARVYLDYAFNANANANANA
D1-35_024891269citN_1COG2851Citrate transporterATGGTCGTCACGTTTATGGCATTGATCATAAGCAAGCGACTTTCCGCTGTGACGGCACTCATTCTTGTCCCGGTCGCGTTTGGCCTGGCCAGTGGAGCAGGACCGGAACTGGGCGCGATGGTGATGAACGGCGTCAAGCAAGTAGCGCCCACCGCTCTGATGTTGATGTTTGCAATCCTCTATTTCGCAATCATGTTTGACGCCGGGCTCTTTGAACCCGCTGTACGAAAGATTCTGCGTTACGTGGGCAACGATCCTCTGCGCGTGGTGCTGGGCACTGCACTGCTGGCCACGGTCATTTCTTTTGATGGTGATGGCGCAACGACGGTCTTGATTGTAACGACTGCATTCCTGCCGCTTTATTTGCGCCTGGGCATGAACCCGCTGATTCTGGCGTTGATGCTGTTGTTGACCAATACCGTGGTCAACCTGATTCCCTGGGGAGGGCCGGTGGCCCGCGCCGCCAGTGCGCTTCACCTGGATGTGGCCGAGTTGTTCCTGGGGTTGGTGCCGGCCATGTTCGCGGGCCTTGCCTATGCGTTTGTCGTGGCGTTCTGGATCGGCCGCAGAGAGCGCCGTCGCTTGGGCTGGACGGCCGCTGCCAAGGACGCCGCGCCGGAAAATGTCGTCTTGCCCACCACGCATTCCGAGACGCATCGGCCGAAGCTTTTCTGGGTCAACCTCGCGCTCACCGCTGGGCTTATGTATGCGATGGCGACAGGGCTGGCACCTTTGCCGATGTTGATGATGGTGGGGCTTTCCCTGGCGCTGCTGATCAACTATCCACGCTTGGCGGAACAGAAGGCCAGAGTCGCGGCGCACTCTGAAAGTGTCCTGATGGTCATCGCCCTGATATTTGCATCAGGTGCGTTTACCGGGATCTTGTCAGGTACCGGCATGGTTGATGGGATGTCCGAAAAGATTGTGCAATTGATTCCCGACGACCATGGCCAATATTTCAGCATCATTACCGCGCTCGTCGCCTTGCCACTCAACTTCCTGTTATCCAATGACGCGTTTTTCTTTGGCATCTTGCCGGTACTGGGCGCGGCGGGCGTCGAATACGGTATTGACCCGATGCACATAGCGCGGGCCTCGGTGCTGGGCCAACCGGTTCACGCATTAAGCCCTTTGGTGGCGGCGGTTTATCTGATCAGCGGAATCATCAAGCGTGACATGGGCGACATGCAACGCTATTGCCTGCTCTGGGCGATCGGCAGCAGCCTTGTCTTGATTGTAACCGCGGTCATTACCCGGGCGATTATCTGAMVVTFMALIISKRLSAVTALILVPVAFGLASGAGPELGAMVMNGVKQVAPTALMLMFAILYFAIMFDAGLFEPAVRKILRYVGNDPLRVVLGTALLATVISFDGDGATTVLIVTTAFLPLYLRLGMNPLILALMLLLTNTVVNLIPWGGPVARAASALHLDVAELFLGLVPAMFAGLAYAFVVAFWIGRRERRRLGWTAAAKDAAPENVVLPTTHSETHRPKLFWVNLALTAGLMYAMATGLAPLPMLMMVGLSLALLINYPRLAEQKARVAAHSESVLMVIALIFASGAFTGILSGTGMVDGMSEKIVQLIPDDHGQYFSIITALVALPLNFLLSNDAFFFGILPVLGAAGVEYGIDPMHIARASVLGQPVHALSPLVAAVYLISGIIKRDMGDMQRYCLLWAIGSSLVLIVTAVITRAIIPGPT0001500_359DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_CITRATE_TRANSPORT,PGPT0001500-TC_CITMHS|CitMHS_family|citN-K03300NANA
D1-35_024901206hypothetical proteinATGCCAGAACAAGAAGGCCTTTACCTCTCGGCAGAAGAGGCGGCAGCCATACTCCGGGTCAGCCTGCCGACGCTGTACGCCTATGTCAGCCGTAAAAACATCCGCTCCATCAAGATTGCCGGCTCGCCCAAGCGGCGCTACTGGGCAGAGGACATTCAACGACTGGTGAAAGTACCGGCGCAAGACAAGCCCGTTGCCAAGCGTACGACGCCGGCGGACAGCGCGATTACGCTGATAACGGACGATGGCCTGTTTTATCGCGGCCACAATGTCGTCGAGCTGGCTGATCGTTCAACCGTCGAAGAAGTCGCCGAGTTGATCTGGCAGGTGCCTTCGGCGTTCGGCACATCGCTGCCTCGGACACCGAAGGACGCTGCCAGGCTGTTGAAGATCTATGAACACACGTCCGCCCAGGAAAAAGCCATCGCGCTGTTTCCTCTGGTGCAGCGCGAAAATCCCAAGGCCTTCGACCTTTCCCCTGACAGTTACGCCCGCACCGGCGCCGATGTCGTGCGCTGGTTTGCCGCGTTGGTCGTGGGGGCGACCGAACCGAGCAACCAGCCCTTGCATGAGTTCATCACCCAGGCCTGCGGCGCCCCGCCAGCGCATGCCGATCTGATCCGGCGACTGCTGATTCTCAGCATTGATCATGAACTGGACCACACCACTCACAGCGTCCGCGTTGCCGCCACCACCGGCGCAACCCCCTATTATGCGGTCATCGCCGCGCTCGCCGCCGCGCGAGGCCACAAGATCGCCTACGGACGAAATGAAGCCGCCAGCCGGATGATCGAGGAAATCTGTACGGCCGCGGACCCTACTCGACCGATCCTGCAGCGCTACAGCCAGGACGGACACATCGTCGGGTTCGGCCCCAATGTGCATTCGATCAACGACCCGCGAGCCAGCAACCTCATGGCCGCGTTGACCGCGGTATTTGATGGCGACAGTGAATTCATCAGGTTGCAGAAAGCCTTTTCGGTGGCCTCGGAACTCGTTGCATACCCGCCTGAATTCATTCTCCTGGTGAGTTTCATCGGCAGGAAAATGGGACTGCGCGGACAGGAAATTTCATTGGCCGGCGTCGGTCGCTCGATCGGCTGGATCGCCCATGCCAGCGAGCAATACAACCAGCACCACGAGGGCCGGCCTCGCGCTCGTTATACCGGGACGTTGCCAACGGCGACCGACATGGGGCGCCGTTGAMPEQEGLYLSAEEAAAILRVSLPTLYAYVSRKNIRSIKIAGSPKRRYWAEDIQRLVKVPAQDKPVAKRTTPADSAITLITDDGLFYRGHNVVELADRSTVEEVAELIWQVPSAFGTSLPRTPKDAARLLKIYEHTSAQEKAIALFPLVQRENPKAFDLSPDSYARTGADVVRWFAALVVGATEPSNQPLHEFITQACGAPPAHADLIRRLLILSIDHELDHTTHSVRVAATTGATPYYAVIAALAAARGHKIAYGRNEAASRMIEEICTAADPTRPILQRYSQDGHIVGFGPNVHSINDPRASNLMAALTAVFDGDSEFIRLQKAFSVASELVAYPPEFILLVSFIGRKMGLRGQEISLAGVGRSIGWIAHASEQYNQHHEGRPRARYTGTLPTATDMGRRPGPT0001455_4724DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001455-CS|gltA-K01647NANA
D1-35_02491630hypothetical proteinGTGCATGGATGTTCTGGATGGCGAGACCTACGGTGGTGGGGCTTGCTCGCGAAGAGGCCAGTCCATCCAACATCCCCATCGCCTGAAACGCCGCCATCGCGAGCAAGCTCGCTCCCACACAGGTCATGTGCCGTGCATGGATGTTCTGGATGGCGCAGACCTACGGTGGGAGCGAGCCTGCTCGCGAAGAGGCCAGTCCATCCAACATCCCCATCGCCTGAAACGCCGCCATCGCGAGCAAGCTCGCTCCCACACAGGTCATGTGTCGTGCATGGATGTTCTGGATGGCGCAGACCTACGGTGGGAGCGAGCCTGCTCGCGAAGAGGCCAGTCCATCCAACATCCCCATCGCCTGAAACGCGCCATCGCGAGCAGGTCATGTGCCGTGCTTGGATGCTCTGGATGGCGCAGGTCTACTGTGGGAGCGAGCCTGCTCGCGAAGAGGCCTCACAGGCAGGGAATATCTTTCGTCCGCAGGCGCGCCCGGAGCGGACTTCAACGGCGCCCCATGTCGGTCGCCGTTGGCAACGTCCCGGTATAACGAGCGCGAGGCCGGCCCTCGTGGTGCTGGTTGTATTGCTCGCTGGCATGGGCGATCCAGCCGATCGAGCGACCGACGCCGGCCAATGAMHGCSGWRDLRWWGLLAKRPVHPTSPSPETPPSRASSLPHRSCAVHGCSGWRRPTVGASLLAKRPVHPTSPSPETPPSRASSLPHRSCVVHGCSGWRRPTVGASLLAKRPVHPTSPSPETRHREQVMCRAWMLWMAQVYCGSEPAREEASQAGNIFRPQARPERTSTAPHVGRRWQRPGITSARPALVVLVVLLAGMGDPADRATDAGQNANANANANA
D1-35_0249214102-methylcitrate dehydrataseATGACGGATTCAACCGTTGCGATGCGGCTGGCACGCTATGCCCACGCATTCAGGAAACAGCGCCTGCCCGACGAAATCATCCACCTGGTGCGCCAGCGCTTCATCGACAGCCTGGCCTGCGTGCTGGGCGCCTACGGGGCGGCCCCGGTAAAGGCTGCGCTGGGTTATGCGGCTGCCAACCCCGCGACAACCGCCGGCATATTCGGCTCGAACCTGCAAACGACAGCGGAAATTGCTGCCTTCGCCAACGGCCTGATGGTTCGTTTCCTCGACTACAACGATGGCTACATGGGCTTGGAGCCGGGCCATCCGAGTGACAACATCCCGGCCTGCCTCGCCGTGGCGCAAGCCGAGAGCGCTACCGGCGCCGAACTGATTTCGGCCATCGTCCTGGCCTATGAGATCCAGATGCGCTTGCAGGATGCGGCAAGCTTGAACAGGCGTGGCTGGGACCACGTCAATTACATCAACGTCGCGATGGCAGCGGCGGCTTCCAACCTGATGAAGCTGGACGTTGCGCAGACCGAGCAAGCCATCAACATCGCCTTGAGCGGGCACTTGGCAATGCGCCAGGTGCGCAGTGGAACCTTGTCCGACTGGAAGGGTTGTTCGGCCGCCAATGCAGCGCGCAACGCGGTTTTTGCGGCCCAGCTGGCGCGCCATGGCATGACCGGGCCGTCGCCGGTCTTCGAGGGCGAGATGGGGTTCTTCAAGCTGGTTTCAGGGCCGTTCGAGCTGGACACTGATCGTTTTGCTACGCCCGACAATGGCGACTATGCGATACGACGCTCGCTGACCAAGACATTCCCCACCAACGGCGAGCTGCACACCGCCGTCTGGGCCGCGCTGGATATCCGCAAGCGCATCGACAACGTGAATGACATCGCTGCCATTACCATCGAAACGTCCGAATTCAACCGTCGTGTCCTCGCGGACACCGCGGAGAAATGGTTGCCGAAAACCCGCGAGACGGCGGACCACAGCCTGCCCTATAACGTGGCTCGGGCATTGCTCGACGGGGATATCACCATCGCTTCGTATTCCGCGGAAAAAATCGCCGACCCTGCGGCGATTGCCTTGATGGACAAGGTCAGCGTCACGGAGGATCCGGCGTTGACGGCGCTGTTTCCAAGGCACCTTGCCAATCGTGTCAGTGTGACGCTGGTCTGCGGCGAGCAGGTGGTGAGCGAAATGATCACCGGCCCCGGGTCAGTCGAAACGCCGATGACCGATGGGGATTTCGAGCGGAAATTCCGGCGCATGGCGATGCCGCATATCGACGCGTCGGCACAAGACCTGGTGCTTGGGTTCGTCGCCGGGCTTGAGCGGCAGACGCAGTTCAATTCGTTGTTTGCGGCGATGGCTGTCGCCCCCATTGCGGACCAGAAACCGGCTGCACTGCGCCTTTGAMTDSTVAMRLARYAHAFRKQRLPDEIIHLVRQRFIDSLACVLGAYGAAPVKAALGYAAANPATTAGIFGSNLQTTAEIAAFANGLMVRFLDYNDGYMGLEPGHPSDNIPACLAVAQAESATGAELISAIVLAYEIQMRLQDAASLNRRGWDHVNYINVAMAAAASNLMKLDVAQTEQAINIALSGHLAMRQVRSGTLSDWKGCSAANAARNAVFAAQLARHGMTGPSPVFEGEMGFFKLVSGPFELDTDRFATPDNGDYAIRRSLTKTFPTNGELHTAVWAALDIRKRIDNVNDIAAITIETSEFNRRVLADTAEKWLPKTRETADHSLPYNVARALLDGDITIASYSAEKIADPAAIALMDKVSVTEDPALTALFPRHLANRVSVTLVCGEQVVSEMITGPGSVETPMTDGDFERKFRRMAMPHIDASAQDLVLGFVAGLERQTQFNSLFAAMAVAPIADQKPAALRLNANANANANA
D1-35_02493309hypothetical proteinATGACCAAGTTGCGTGATGTATGTCGGCATGTCCGGTCCAAGCAAGCGGGGCCGTTCTGGATTACCTTCGATATCTTTTTCAACGGGCGGGAGAATTTCGAGCGTTATTCCGATTGCGCGGCACTTTCCCCGGCGCAATTCGCGAAGCTCTACGGCACTGATCCCGAGCGGGTCAAGCACATCCCGGTGGCGAACCTGGAAATGGTCAAGATTTCCTTTCCCCGCCCAACATCCCAGGGCGGAATGGTCGAGCGCGACATGCATGCCGGCCAGCAATACGTCCGGCTGCTTGATGTGACCATCGACTGAMTKLRDVCRHVRSKQAGPFWITFDIFFNGRENFERYSDCAALSPAQFAKLYGTDPERVKHIPVANLEMVKISFPRPTSQGGMVERDMHAGQQYVRLLDVTIDNANANANANA
D1-35_024941416hypothetical proteinATGCGAACGGTATTTCAAGATTGTATAAAAGTCATTGTTCCCTGCGGTTCTTTGGGCGCGGGCGTTCGGGAACAGGAAATAGCCTATGGATTGGCCGCCGGTGCACAAGTTATCGCTACCGATGCCGGTTCAACCGACAGTGGCGCGGCTTATCTTGCACTGGGTAAATCGAAGAACAACCGAGGCGCGGTCAAGCGTGACTTGATGATATTAATGAAAGCCCAGGCGCAATCCGGAGTGCCGATCATTGTCGGTACCGCCGGTCAGGCCGGAGGCGATCTTAATTTGAACTGGACGCGTGATATCGCCTTGGAAATAGCCGAAGAGTTGGGCGTGGCGCCAAAGATTGCGCTCATTTATTGCGAGCAGGACAAGGACACGATAAAGAACTTGAACGCCGAGGGGCGTATAAAACCCTTGTCGCCACATACTGCGTTGGACGACGCAACGGTGGACGCTTGCGAACATATTGTCGCCGCGCTGGGGGTGGAGCCCTTTCTCGCTGCGCTGGAGGCCGGTGCCGATATCATATTGGCCGGCCGCTCCACCGATACCGCGGTCATTGCCTGTTATCCAATCTGGAAAGGCGCGCCTTGGGGGCCTTCGTGGCACGCTGGCAAGACCGGCGAATGCGGCGTGCAGTGTGCCGTCAATCCCACGCTAGGCTCGGGAATCCTGCTGAGTATCGATGCGAACGGCTTCGAAGTCGAGCCGTTGAGCCAGGACAACCGGTGCACGCCCCATAGCGTTTCGGCCCACATGCTCTACGAAAACAGCGACCCGTTCCGGTTGGTCGAGCCCGGTGGCATCTTGAATGTAGCCGAGGCACGTTACACCGATCTCAATGGCCGTGCTGTCCGGGTCGAAGGTTCGCGCTGGGAGGAAATGCCGTACACCATGAAGTTGGAAGGCGCCGCGGCCGGTTTATATCAAACGATCATGCTGGTGGGCATTCAAGACCCCGATGTACTCAAGGATATCGACGGTTTCCATGATCGGTTACTTGAAGCGCTTTATACAAGAACCCGCCAATCCATCCCCGCCGAGGAACTGGGCGAGTTTCATATTTCCCTGCGCATGTATGGGTGGAACGGCGTCACCGGTGTAACGCCGCCTGCGGGAACACTACCGCCGCCGGAACTAGGTATGTTGTTTGTGGCAACTGCCGCAACCCAGGAAATGGCCAATACCATTGCCCACGCGTGTAATCCCTATTTCTTCCATTACCCGAGTGTCATGGGCAAGGAACTGCCGTCGTATGGATTTGCCTTTACCCCGGCTGATATACCGCGTGGGCAGATTTTCGAGTTTAAGTTGAATCACGTGGTGGAACTTGACGATCCCATGGAGTTGGTTCGTCTGGAGTGGATTGATTTATCGGCTACCTCGGTGGCCAGGAAGGAGCTTGCACAATGAMRTVFQDCIKVIVPCGSLGAGVREQEIAYGLAAGAQVIATDAGSTDSGAAYLALGKSKNNRGAVKRDLMILMKAQAQSGVPIIVGTAGQAGGDLNLNWTRDIALEIAEELGVAPKIALIYCEQDKDTIKNLNAEGRIKPLSPHTALDDATVDACEHIVAALGVEPFLAALEAGADIILAGRSTDTAVIACYPIWKGAPWGPSWHAGKTGECGVQCAVNPTLGSGILLSIDANGFEVEPLSQDNRCTPHSVSAHMLYENSDPFRLVEPGGILNVAEARYTDLNGRAVRVEGSRWEEMPYTMKLEGAAAGLYQTIMLVGIQDPDVLKDIDGFHDRLLEALYTRTRQSIPAEELGEFHISLRMYGWNGVTGVTPPAGTLPPPELGMLFVATAATQEMANTIAHACNPYFFHYPSVMGKELPSYGFAFTPADIPRGQIFEFKLNHVVELDDPMELVRLEWIDLSATSVARKELAQNANANANANA
D1-35_02495933rhaR_1HTH-type transcriptional activator RhaRATGCGCCAGACCGGACCGGATGAACCGCCGCAGAACGCTCCCCAGCGCATCAGCGCCGAGTCGATGGCGCGTTTCATGCCGGGCACGCCGCAAGTCGTGCCGACGCGTGCGCAGGTCCAGGAAATGGTGGTGCAGCTGTTCAGCCACCCTACGGTAGTCGAGCCGATCCTGGTGCCCGCGGTGGTCGAGCCTCTGCTCGTCCTGGTGCTGACCGGGGGCGCCCGGATCGAGGAACGTTCGCTGGGCGGCGAATGGGAAGCCGTCGATGTTCAGGCCGGTGATTTCTACCTCACCAGCACGAACGAGCCTTACGAGATGCGCTGGCAAACGCAAGGTTGCGACACCTTTGAAGTCATGCACCTGTATCTCGGTTTGCCGTTGATCGAGCGCGCCGCGCGCGACGTGCTCGGGGAACGGGCCGGTCCTGTCACCTTTCGCGATATCTCCGGAGCCCGGGATCTGCGGGTGAGCTTCATGCTGGATCAGTTGCGCAACGAGCTGGTCGACGAACGCCAGCCCAGCCCACTGTTTGCACAGAGCCTGGCCCAGGCACTGGCGGTGCACCTGGTGCGTACCTACCTCGCGCCCCACAGCGGAGCCTCGCGCAGCAACGCGCTGCAGGCGTACAAATTGCGTCGGGTCCTCGAGACGATGAACCAGCGCCTCGCCGATGATTTCAGCCTTGCCCACCTGGCCCAGGTCGCGGAGCTGAGCGAGTATCACTTCAGCCGAATGTTCAAGCGCGCCACGGGCCTGTCGCCTTCACAGTATTTCATTCGCCTGCGCATGAGCCGGGCCCGGCAGCTGCTGCTTGAAACGGACCGCAGCGTCATCGACATCGGATTGGAGGTGGGTTACTCAAGCCCGAGCCATTTCTCCCAGGTCTTTCGCCGGGAGACAGGCGTGACGCCCAGCGATTATCGCCAGGCGTGAMRQTGPDEPPQNAPQRISAESMARFMPGTPQVVPTRAQVQEMVVQLFSHPTVVEPILVPAVVEPLLVLVLTGGARIEERSLGGEWEAVDVQAGDFYLTSTNEPYEMRWQTQGCDTFEVMHLYLGLPLIERAARDVLGERAGPVTFRDISGARDLRVSFMLDQLRNELVDERQPSPLFAQSLAQALAVHLVRTYLAPHSGASRSNALQAYKLRRVLETMNQRLADDFSLAHLAQVAELSEYHFSRMFKRATGLSPSQYFIRLRMSRARQLLLETDRSVIDIGLEVGYSSPSHFSQVFRRETGVTPSDYRQANANANANANA
D1-35_02496969dmlR_11HTH-type transcriptional regulator DmlRATGAGCGCTTTTCCCATTACGCTGAAAAGCTCCTGTCCAGGTAAAGAATCGCGCAGCGTGAAGAAGATAGTTCGAGTCGATGATCTACAGGTGTTCGTGACGACCACTGACGCCGGGAGTTTTTCCGCGGCGGCGCGCTTGCTGGATATTTCTCCGGCGCTGGCCAGCGTCGCGGTACAGCGACTTGAGGCAAGCCTGGGGGTGAGGCTGTTCGTGCGCTCTACGCGGCGGCTGCGTTTGTCGGATGATGGCGAGCGCTACCTGGCCCATGCCCAGCGGGCATTGGAGGTGCTGGAGGATGGCGAGCTCGCCCTGGCCGAGGGGCGTGACGAAGTGGCCGGGACGTTGCGCTTGTCGGTGCCCTCGGACATCGGGCGAAACCTGCTGCTGCCGTGGCTGGACGAGTTCCAGCAGATGCATCCCAAGGTACTGTTGCAGCTGCGGGTCAGCGACCAGGTCGCCGACCTGTTCGGGGAGCATCTCGATGCGAGCATTCGTTATGGTCAGTTGGCCGATTCGAGCCTCGTCTCCTTGATGCTGGCCCCATCCAACCGAAGGACCGTGTGTGCCTCACCCGACTACATCGCGCGGCACGGCCTGCCAAAGACGCCGGGTGAGCTGAGCGGGCACAATTGCCTGCGTTACGTGATGGGTGAGCAAACCTACGAGCGTTGGATTTTCCAGACAGCGAATGGGCTGGAAACGGTTCAGGTCGCTGGCGATCGCATCAGCGATGACGCTGATATTGCCAGGCGTTGGGCCGTGGCGGGCCAGGGGATCGTCTACAAATCGAAGCTCGATGTAATGGACGATCTTCGCAGCGGTCGCCTGGTGGAGATTTTTCCAGCGGAGTATGGCCAGCCAGCGCCGCTGCAACTGGTGTGCGCCCATCGAACCTCGCTGACGCCGTCGGTCCAGGTGCTCAGGGCCTTCCTGTCTGCGCGCTGTGAACGTTACATCAACGAGTGAMSAFPITLKSSCPGKESRSVKKIVRVDDLQVFVTTTDAGSFSAAARLLDISPALASVAVQRLEASLGVRLFVRSTRRLRLSDDGERYLAHAQRALEVLEDGELALAEGRDEVAGTLRLSVPSDIGRNLLLPWLDEFQQMHPKVLLQLRVSDQVADLFGEHLDASIRYGQLADSSLVSLMLAPSNRRTVCASPDYIARHGLPKTPGELSGHNCLRYVMGEQTYERWIFQTANGLETVQVAGDRISDDADIARRWAVAGQGIVYKSKLDVMDDLRSGRLVEIFPAEYGQPAPLQLVCAHRTSLTPSVQVLRAFLSARCERYINEPGPT0012355_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSINSECTICIDAL_COMPOUNDSINSECTICIDAL-FIT-SYSTEM,PGPT0012355-fitG-K19618NANA
D1-35_02497885rcnACOG2215Nickel/cobalt efflux system RcnAATGCCGAATTTTGCTGAACTGCTGCAACAGGGGGGCGCTCACGCCTGGCTGTATTTCCCCAGTGCGATCTTGCTGGGCGCCTTGCACGGGCTGGAACCTGGTCATTCGAAAACCATGATGGCGGCGTTCATCGTGGCCACTCGCGGCTCGGTCAAGCAGGCGGTGTTGCTGGGGTTGGCCGCGACGCTTTCGCACACCGCCGTGGTGTGGCTGGTGGCGATTGGCGGGATGTACCTGGGCCAGGGGCTGGACGCCGAGACTACGGAACCGTACTTCCAACTCGCCTCTGCGGTGCTGATCATTGCGATCGCGTTGTGGATGCTCTGGCGTACCTGGCGTGGCGAACAGATGTTCAAGCTTGAGAGCGGTGACGGGCATCGCCATGCTCATCACGATCACGATCACGATCACGATCACGATCACGATCACGATCACGATCACGATCACGATCACGATCACGATCACGATCATGCGCATCCGGAACTGGCGCTGTCATCGGAGGGTTACCAGGACGCTCATGAACGGGCGCATGCCAACGACATCCGCAAGCGTTTCAGCAATCGAGACGTCACCACGGGCCAGATCATTGTGTTTGGCCTGACGGGTGGGCTGATCCCGTGTCCTGCGGCGATAACCGTCCTGCTGCTCTGCCTGCAGGTCAAGGAAGTTGCGCTCGGCGGCATGCTTGTCTTGTGCTTCAGCATCGGCCTGGCAATTACCCTGGTTACGGTGGGAGCGGCCGCGGCCCTTGGCGCTCGGCAGGCCTCCAATCGCTGGCCGTGGCTGGGCACTGTTGCCCGGCGCGCGCCTTATCTGTCGAGCGTGTTGATAATTGCAGTCGGCCTGTATGTGGGTATCCACGGCTGGATCGGTTTGAGCGCATGAMPNFAELLQQGGAHAWLYFPSAILLGALHGLEPGHSKTMMAAFIVATRGSVKQAVLLGLAATLSHTAVVWLVAIGGMYLGQGLDAETTEPYFQLASAVLIIAIALWMLWRTWRGEQMFKLESGDGHRHAHHDHDHDHDHDHDHDHDHDHDHDHDHDHAHPELALSSEGYQDAHERAHANDIRKRFSNRDVTTGQIIVFGLTGGLIPCPAAITVLLLCLQVKEVALGGMLVLCFSIGLAITLVTVGAAAALGARQASNRWPWLGTVARRAPYLSSVLIIAVGLYVGIHGWIGLSAPGPT0004550_1151DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COBALT_RESISTANCECOBALT_RESISTANCE-COBALT_TRANSPORT,PGPT0004550-rcnA-K08970NANA
D1-35_02498294csoRCOG1937Copper-sensing transcriptional repressor CsoRATGAGTGAACTCAACCACGATCATCCCCATGTCCACCAAAGCCATGAAGCGATCATCAAGCGCCTCAAGCGCGCGGACGGTCACCTGCGCAGCATCATCCTCATGATCGAGGAAGGTCGTGATTGCGTGGACATCGCCCAGCAGTTGCATGCGGTTGAGAAAGCCGTGTGCCAGGCCAAGCGCACACTGATCCAGGATCACATCGATCATTGCCTCGAAGACACCGTTTCGGCACTGGACAGGGGCGAGCGCGCGCCGCTGGAAGCCTTCAAACAAATCACCAAGTACCTCTAGMSELNHDHPHVHQSHEAIIKRLKRADGHLRSIILMIEEGRDCVDIAQQLHAVEKAVCQAKRTLIQDHIDHCLEDTVSALDRGERAPLEAFKQITKYLNANANANANA
D1-35_024991557hypothetical proteinATGGAATGGATCGTTGACCCCACGGCATGGCTCGGCCTGCTGACCCTGATCGTGCTGGAGCTGGTGCTCGGCATCGATAACCTCGTATTCATCGCCATCCTGGCGGACAAGCTCCCCCCCGCGCAGCGCGACCGTGCCCGAGTTATCGGCCTGTCCCTGGCGCTGCTGATGCGCCTGGGCCTGCTGGCGAGCATCTCCTGGATGGTGACCCTGACCAACCCGCTTTTCGAAGTGTTCGGCAAGACGTTCTCGGGCCGCGACTTGATCATGCTGTTTGGCGGCGTGTTCCTGTTGTTCAAGGCAACCATGGAGTTGCATGAGCGACTCGAGGGCCACGTGGCGCAACGTTCCGGCAACGCCGCCTATGCGCTGTTCTGGCCGATCGTTGCGCAGATCGTGGTGCTGGATGCGGTCTTTTCCCTGGATGCGGTGATCACCGCCGTGGGCATGGTTGAACATCTGTCAGTGATGATGATCGCGGTGATCTTCTCCATCGGCCTGATGATGATCGCGAGCAAGCCGTTGACGAAATTCGTCAATGGCCACCCTACCGTCATCATGCTGTGCCTGGGCTTTTTGATGATGATCGGCTTCAGCCTCACCGCCGAGGGCCTGGGTTTCCACATTCCTAAAGGTTACCTGTACGCCGCGATTGGCTTCTCGATCCTGATCGAGCTGTTCAACCAGTTGGCGCGCTCGCGGCGCAAGAAAAACCTGCAAGGTCTTCGGCCGATGCGCGAGCGTACCGCCCATGCGGTGCTGCGCCTGCTGGGCGGTCAAAAGCTGGGGGCCGATGAGGTCGGTGAAGAAATCGCCGACCTGCTGGAAGGCGAAAAAACCGAACAGGTTTTCCATCGACGCGAACGGGTGATGATCAGCGGCGTGCTGCAATTGGCGGAGCGCCCGATACGCAGTGTGATGACCCCTCGCGCGCAAATCGACCACCTCGACCTGGCGAACACGCCGGAAGACATCCGTACGACGCTGATGCACTCGTCGTATTCGCGCTTGCCGTTGATTCGCGACGGACGCGTGGATGAGCCGTTGGGTTTCGTCCACAAGAAGGAGCTGCTCAAGGAAATACTGGCGGGCAATCAACCGAATCTGGAAGCCATGGCGCGCAAAGCCATCAACCTGCTCGACAGTTTCACGATCCTCAACGCGCTGGAGCAAATGCGCAAGGAGTCGACCCACATCGCCTTCGTGGTCAACGAATTCGGTGACTTCGTCGGCCTGCTCACGATGACCGACATCCTTGAGTCCATTGCGGGCGAATTGCCCGACGCCAGTGAAATCGACGGGCCGAATATTGTTGCGCGAGAGGACGGTTTCCTCGTCAGCGGGGCCCTGAACCTCAGCCAGGTTCGCGAACACATCGGTTTCCAGGCGTACGCGACGGAGGATTACCAGACACTTGCCGGGCTGGTGATGAGCTTGCTGGATCGCTTGCCGATGATTGGCGATACCCTGAATTGGCAGGGATGGAGCATGACCGTCATGGAGGTTGAAGAGCGTCGGGTAACCAGGGTCTTGCTGCGTATCGAGGAACAGGCGTGAMEWIVDPTAWLGLLTLIVLELVLGIDNLVFIAILADKLPPAQRDRARVIGLSLALLMRLGLLASISWMVTLTNPLFEVFGKTFSGRDLIMLFGGVFLLFKATMELHERLEGHVAQRSGNAAYALFWPIVAQIVVLDAVFSLDAVITAVGMVEHLSVMMIAVIFSIGLMMIASKPLTKFVNGHPTVIMLCLGFLMMIGFSLTAEGLGFHIPKGYLYAAIGFSILIELFNQLARSRRKKNLQGLRPMRERTAHAVLRLLGGQKLGADEVGEEIADLLEGEKTEQVFHRRERVMISGVLQLAERPIRSVMTPRAQIDHLDLANTPEDIRTTLMHSSYSRLPLIRDGRVDEPLGFVHKKELLKEILAGNQPNLEAMARKAINLLDSFTILNALEQMRKESTHIAFVVNEFGDFVGLLTMTDILESIAGELPDASEIDGPNIVAREDGFLVSGALNLSQVREHIGFQAYATEDYQTLAGLVMSLLDRLPMIGDTLNWQGWSMTVMEVEERRVTRVLLRIEEQANANANANANA
D1-35_02500213hypothetical proteinATGGGCATTGTCAACATCGACGACGAACTTCACGACCAGCTACGCAAGGCCACCAAGGTCTCCTGCCGTTCGATCAACGCGCAGGCGGCCTTCTGGATCAAGGTCGGCATGCTGTGCGAGACCAACCCTACCCTCAGTTTCAACGAGATCATCCAGCGCGAACTCAGCGACGCCGGCGTTACGGCGCAACCGTTGGAGGCGAACTGGCAATGAMGIVNIDDELHDQLRKATKVSCRSINAQAAFWIKVGMLCETNPTLSFNEIIQRELSDAGVTAQPLEANWQNANANANANA
D1-35_02501780map_2COG0024Methionine aminopeptidaseATGATCAAGCGACCCGAAGAACTGGCCCTGATGGCCGAGTCCGGCCGACTGCTCGCCTTGGTGTTCAAACGGCTGGATCAAACCAATTTGATGGGGCTGTCAACGCTGCAGATCGATGCAATGGTCGAGGATTTCATCGTCCGCGATCTCCATGCGCGCCCCGCCAGCAAGGGACAGTACGGGTACGGTTTTGTACTCAACTGCTCGATCAACGAAGTGGTTTGCCATGGTGTGCCCTCGCGCTCGCGAGTGCTTCAAGACGGCGACATCGTCAATCTGGACATCACCCTGGAAAAGAACGGCTATATCGCGGATTCGAGCAAGACGTACCTGATCGGCAACGTCGACCCAGCCGCCAGGAAGCTGGTCCAGGTCACTTATGAAGCCATGTGGAAGGGCATCCGCGCCGTCCGCCCGGGCGCTCGCCTGGGCGACATCGGCTCGGCCATCCAAGGCCATGCGACACGCAACGGTTATTCGGTGGTCCGTGAATATTGCGGCCACGGCATCGGCCGGCAAATGCACGAGGAACCCCAGGTGTTGCACTTCGGCAAAGCGGGAACGGGCCTGGTCCTGCGCGAGGGCATGGTCTTCACCATCGAACCGATGCTCAACCAGGGCACATCGGACGTCAGGACCGAAGCCGACGGCTGGACCGTGGTAACCCGGGACGGCGCGCTCTCCGCGCAGTTCGAGCATACCGTGGCCGTCACGGCGTCCGGTTTTTCGGTGCTGACGTTGCGGCCTGATGAATCGGACAAGATCACGGGCACGCTTTGAMIKRPEELALMAESGRLLALVFKRLDQTNLMGLSTLQIDAMVEDFIVRDLHARPASKGQYGYGFVLNCSINEVVCHGVPSRSRVLQDGDIVNLDITLEKNGYIADSSKTYLIGNVDPAARKLVQVTYEAMWKGIRAVRPGARLGDIGSAIQGHATRNGYSVVREYCGHGIGRQMHEEPQVLHFGKAGTGLVLREGMVFTIEPMLNQGTSDVRTEADGWTVVTRDGALSAQFEHTVAVTASGFSVLTLRPDESDKITGTLPGPT0020010_6155DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020010-map-K01265NANA
D1-35_025021320hypothetical proteinATGAGTACCCCTTCCTATTTGCATCGGCTGAGCCTGGCCCTCAACGCCCGTGACGATGAACTGCGTCCGGCAATGTGCGGGTTCCTGTTGTTCCTCTGCCTGTTCACCGGCTACTTCATGTTGCGTCCGATCCGTGAGTCGATGGGGATCGCCGCGGGTGTGGAGAATCTGCAATGGCTGTTTACCGCGACCTTTCTCGTCATGCTGGTGGCCGTGCCGTTGTTCGCCTGGCTCAGCGCGCGAGTGCCGCGCCTGCGCCTCGTCGATTGGGTGTATGGCTTCTTCGTCTTGAACTTGCTGATGTTCGTCGAGCTGTTCCAGTTCGATTCGGACAACGTCTGGCTGGCGCGTACTTTTTACGTATGGATTTCGGTCTATAACCTGTTCGTCGTCTCCGTGGCCTGGAGCCTGATGGCCGATGTATTCGACAGCGAGCAGGCCAAGCGTCTGTTCGCCTTCATCGCGGCCGGCGCCAGCACTGGCGGCCTGCTCGGGCCGGCCTTGAGTGCACTGCTGGTCGACAGCCTCGGTGCCTCGGGGTTGATGTTCGTGGCTGCCGTGTTGCTGGGGGCCACGCTGGGATTGAAACGAACCTTGATGCGTTGGCGTGAAACCGGTGGGGCCGGGCGTCCCGGCGCGGCACCCACGCAAAGCCCGCAGCGGCCCCTGACTGGCAATCCGTTCAGCGGCATGACGGCGGTGTTCCGTTCGCCGTATCTGCTGGGGATCGCCGGTTTCGTCGTGCTGCTGGCAACGGTCAGCACCTTTCTCTACTTCGAGCAGGCACGTCTGGTGGCCGAGCTGTTTCCGGACCGCCAGGCCCAGGTACGGGTCTTCGGCACTATCGATTTTATTGTGCAGGCGGGCGCGCTACTGTCCCAGCTGTTCATCACCGGGCGCATCGCCCCGAAGCTCGGCATCGGTGCGTTATTGGCGATCGTCCCGCTGATCATGTGCATCGGCTTCGTCGGTCTGGCACTGGCGCCAGGCTTTGCGATCCTCGCGACATTGATGATTGTGCGAAGGATCGGCGAGTACGCGTTCGTGAGGCCGGGCCGGGAAATGCTGTTCACGCCGTTGGACGCGGAACATAAATACAAAGCCAAGAACTTTATCGACACGGTGGTCTATCGCGGCGGTGATGCGGTCAGCGGTTGGATCAAGACGGCACTCGATATGCTGGGGCAGGGCGCCGGCCTGGTCGCGTTGATCGGCGCAGGGTGTGCGTTGCTGTGGGCCGGCCTTGGATGGCGGCTGGGACGGCAAGCTGACCATCGCCGTGATGAACTGGAGCTGGAAGCTGGCGTTGCCGAAACCTAGMSTPSYLHRLSLALNARDDELRPAMCGFLLFLCLFTGYFMLRPIRESMGIAAGVENLQWLFTATFLVMLVAVPLFAWLSARVPRLRLVDWVYGFFVLNLLMFVELFQFDSDNVWLARTFYVWISVYNLFVVSVAWSLMADVFDSEQAKRLFAFIAAGASTGGLLGPALSALLVDSLGASGLMFVAAVLLGATLGLKRTLMRWRETGGAGRPGAAPTQSPQRPLTGNPFSGMTAVFRSPYLLGIAGFVVLLATVSTFLYFEQARLVAELFPDRQAQVRVFGTIDFIVQAGALLSQLFITGRIAPKLGIGALLAIVPLIMCIGFVGLALAPGFAILATLMIVRRIGEYAFVRPGREMLFTPLDAEHKYKAKNFIDTVVYRGGDAVSGWIKTALDMLGQGAGLVALIGAGCALLWAGLGWRLGRQADHRRDELELEAGVAETNANANANANA
D1-35_025031056hypothetical proteinATGTGGAATAGAACAACAATCCCCGCAATCGGACTTTCGCCCAACCTGGGTCGGATCATCACGCTGGCCCGGACGCTCGCTGCGGGCGTAGCGCTGTTCAGCGCCATCAGCGTCGAAGCATCGGCTCGCGTTGCACCCAAACCCGACTGGTCCACCAGCGACATACCGTCGCAGAAAGGCCGGATTGTCCTGATCACCGGCGGCACCAGCGGCATGGGTTATGAAGATGCGCTGGCATTGGCGCGTGCCGGGGCCGACGTCATTATCGCCGCCCGCAACCCGGAGCGCGGCGCTGAGGCCATCGCCCGTATCCGCGAGTCCGTGCCCGATGCCAAGGTACAATTCGAGGCTGTGGACCTGGCCAATCTCTCATCGGTAAGTGCCCTGGCCCAGCGTCTCCAGAGCAAGCTGCCGCGCCTCGACGTGTTGATCAACAATGCCGCCATCATGGCGCCGCCAGAGCGCGGTACGTCTGCCGACGGTTTCGAACTGCAACTAGCGACCAATTACCTGGGGCACTTCGCGCTGACCGGCCTGCTGGTGCCGCTCTTGCGCCAGAGCCAGGACGCCCGAGTTGTGAGCGTTTCAAGTATTGCGGCGACGCGCGGCACGATGAATTTCGATGACCTGCAGTTCGAGCGCAAATACGACCCATACGCGGCCTACGCGCAATCGAAACTGGCGGTCCTGCACTGGGCGTTTGCCTTGCAGCGGCGCAGTGACGCCGAAAACTGGGGTATTCGCAGCATGGCGGCGCACCCCGGGGTAGCGGTCACCGAGTTGGTCGCGCGCGGGCCCGGCCTCGAAAGCGAGTTCGGCCAGCGCTGGGCAAAGGATCGCGACGCGTACCACTCGGCGGCGCAAGGCGCGTTGCCCACGTTGTATGCCGCTACCGCTGTGCGAGCCGTGGGCGGTGCTTACTACGGCCCGACTGGGGACGATGAAAGGCGCGGTCCGTTGGGTGTCGCCAAGACGCCGCCTGCCGCGAACTCGCAGGCGGATGCCGAACGGCTCTGGGCCATCTCCGAGCAATTGACCGGCGTGACCTATCGCTGAMWNRTTIPAIGLSPNLGRIITLARTLAAGVALFSAISVEASARVAPKPDWSTSDIPSQKGRIVLITGGTSGMGYEDALALARAGADVIIAARNPERGAEAIARIRESVPDAKVQFEAVDLANLSSVSALAQRLQSKLPRLDVLINNAAIMAPPERGTSADGFELQLATNYLGHFALTGLLVPLLRQSQDARVVSVSSIAATRGTMNFDDLQFERKYDPYAAYAQSKLAVLHWAFALQRRSDAENWGIRSMAAHPGVAVTELVARGPGLESEFGQRWAKDRDAYHSAAQGALPTLYAATAVRAVGGAYYGPTGDDERRGPLGVAKTPPAANSQADAERLWAISEQLTGVTYRNANANANANA
D1-35_02504261hypothetical proteinATGAACATTCAGAACCTATCGATCGCCAGTCTGTTGGCCGTCATCGCATTAGGCGGTGCGCCGCTCTATGCGAAAGAGCAAACCAATCCCCCGGCTTACGAATACGGCATGCCGCTGGACGTGGCCCAGGCCATTCGCATCGAGGCACCGAGCCCGTCGGTGTGCGAGGTGGTGCGGGCCAAGATGACCTATGTCGATACCCAGGGTGAACTCCGGCACGTCAGCTTCCTGCAGCTGGCCGATGCGTGCTCCATCCAGTGAMNIQNLSIASLLAVIALGGAPLYAKEQTNPPAYEYGMPLDVAQAIRIEAPSPSVCEVVRAKMTYVDTQGELRHVSFLQLADACSIQNANANANANA
D1-35_025051374sasA_11Adaptive-response sensory-kinase SasAATGAAGGGATCCATAGCCAAGCGACTGGCGTTGATGTTCGCGCTTGCAGTCACGCTGATCACCGCGGTCAGTGCGACGCTGTTGCGCTGTTCGTTGAAGCAGTCGCTCGACGAGCAGATGCAGAACGAGCTGATCCTGCGCCATTCGGTGCTCGATCCGGTGCTCGCCAAATACGATTCGCCGGCGTTCTGGGTCGGCTTGCGACAAAAGCTCGATGGCCTGACGCCCGCGGATGAGCGCGTGCGTTATTGGGTGGTGGTCGACGACCCGGCCTACAGTTATGGCGGGCCGATGCCGGACGGCCTGGACTGGTCGAAGCGCCCGGATGGTTTCGCCACCCTCGATCTGCCCGACCGAGACCGCCCCATGGTGCTGATGGTCGAGACCATTGCGGCCATGGGCAGCCGTCCGGAATTGCGTTTTATCGTGGGATTGGATTCGACGCCGTTCATGAAGACTCTGGATGACTTCACCCGGATATTGATCCTGACTTCTGCGCTGGGGGTCGTGCTGGTGGCGCTGCTCGGCTATTGGATCGCGCGTTTTGGCCTGGGCCCGGTCCGGCGCTTGAGCCGGCAGGCCAACAGTCTGCCGCCGGGGGATTCGAAGCAGCGACTCGACACGCAGGCGCTGCCTGGCGAATTGCAGGAGCTGGCGGTGTCATTCAATGGCGCCCTGGCGCGCCAGGAAGCCGCCTGGTGCCAGCTCGAAGGGTTCAATGCCAATGTGGCCCATGAGCTGCGAACGCCGCTGACCAACCTGATCGGGCAGACCCAGGTCGCGTTGGCCCACGGGCGGGACGTGAATGAGCTCCAGGATCTGTTGCAGTCCAATCTCGAAGAACTGGAACGGATGGGCACCATCGTCAACGACATGCTGTTCCTGGCGGGCGCCGAAAGCGGCCAGCGGGCAACCGAGCTGAGCGATGTCTCGCTTTACGAGGAAGCGTCGAAGACCGTGGAATACCTCGAGCCGGTCCTGCACGACAAACAGTTGAGCGTGGTCATCCAGGGCGACATGCGCGTGTGCATCGATCGGCGTCTGTTCCACCGTTCCCTGGCCAATCTGCTGCAAAACGCGGCGCGCTACGCGGTGCCGGCGAGCACCATCACGGTGAGCTTGGAAGACCATGGGATGCAGGCCAGGGTGAGCGTTTCCAACGCCGGCGAACCGATCGAAAGCGTGCACCTGGAGCATTTGTTCGAACGCTTCTATCGAGCCGACGTCGCCAGGGCCCGAAGCGACGCGCACCATGGCCTGGGGCTCTCCATCGTGCGGGCGGTGGCGTCGATGCACGGTGGGCGGGTGTTCGCCCACAGCCAGGACGGACTCAACACCTTCGGCTTTTCCCTGACGAGCCAGGCGGCGCGCTAGMKGSIAKRLALMFALAVTLITAVSATLLRCSLKQSLDEQMQNELILRHSVLDPVLAKYDSPAFWVGLRQKLDGLTPADERVRYWVVVDDPAYSYGGPMPDGLDWSKRPDGFATLDLPDRDRPMVLMVETIAAMGSRPELRFIVGLDSTPFMKTLDDFTRILILTSALGVVLVALLGYWIARFGLGPVRRLSRQANSLPPGDSKQRLDTQALPGELQELAVSFNGALARQEAAWCQLEGFNANVAHELRTPLTNLIGQTQVALAHGRDVNELQDLLQSNLEELERMGTIVNDMLFLAGAESGQRATELSDVSLYEEASKTVEYLEPVLHDKQLSVVIQGDMRVCIDRRLFHRSLANLLQNAARYAVPASTITVSLEDHGMQARVSVSNAGEPIESVHLEHLFERFYRADVARARSDAHHGLGLSIVRAVASMHGGRVFAHSQDGLNTFGFSLTSQAARPGPT0004980_1271DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0004980-cusS|copS|silS-K07644NANA
D1-35_02506705czcR_3Transcriptional activator protein CzcRATGCGGTTGCTCATCGTCGAGGACGAAGAAAAAACGTCTTCCTATGTCCATCGTGGCTTGAGCGAGCTTGGCTACATTGTCGATGTCGCGACCAATGGTATCGATGGCCTGCATTACGCGTTGGAAATGGATTACGACGTGGTGATCCTGGATGTGATGCTGCCGGGCAAGGACGGCTACGGCGTGTTGCAGGGCTTGCGCCTGCACAAGAAGACGCCGGTGATCATGTTGTCGGCCAGGGGCACGGTGGATGATCGGGTCCGGGGGCTGCGCGAGGGTGCTGACGACTACCTGGGCAAACCGTTTTCCTTCGCCGAGCTTGTTGCGCGGGTCCAGGCATTGATCCGACGGCGTGCCGATGACGCCGCCGACCCGACGCATTTGCGCATCGATGACCTGGAGGTCGATCTGCAGGCGCGCAAGGTAACCCGGGCCGGGCTGCGCCTGGACCTGACCGCCAAGGAGTTCTGCCTGTTGAGCCTGCTGGCGCGACACCAGGGTGAGATTCTCTCCAAGTTGATGATTGCCGAGCAGGTCTGGGACATGAATTTCGATAGCGACGCCAATGTGGTCGAAGTCGCGATCAAGCGGGTGCGGGCCAAGGTGGATGCGCCGTATCCGCGCAAGTTGCTGCATACCGTGCGCGGCATGGGTTATGTGCTGGAGAGCCGTGAACTCAGTGACAGGCAAGCGGGTACAGCGTGAMRLLIVEDEEKTSSYVHRGLSELGYIVDVATNGIDGLHYALEMDYDVVILDVMLPGKDGYGVLQGLRLHKKTPVIMLSARGTVDDRVRGLREGADDYLGKPFSFAELVARVQALIRRRADDAADPTHLRIDDLEVDLQARKVTRAGLRLDLTAKEFCLLSLLARHQGEILSKLMIAEQVWDMNFDSDANVVEVAIKRVRAKVDAPYPRKLLHTVRGMGYVLESRELSDRQAGTAPGPT0004105_123DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0004105-cusR|copR|silR-K07665NANA
D1-35_02507408hypothetical proteinATGAAAATCATTCCCTACCTGACCTTCAACGGCCGCTGCAAGGAAGCCTTCGCGTTGTACCAGGAGGTGCTGGGCGGCGAGCTTTTTTCCATGTCCTTTGCCGAGGCGCCCGAGGACGTCGGCATGCCCAAGGACCCCAATCTGATCATGCACACCTGCCTGACCGTGGGCGGCTTCAGCCTGATGGCTTCCGACTGCGCGCCCGGCCAACCGTTCAGCAAGCCGCAAGGCGTGTCGGTGTCTCTCAATGTCGACAGCGCGGAGGAGGCCGAGCGGCTGTTCAATGGCCTGAGTGCCGGCGGCAGCGTGCAGATGCCCTTGGGCAAGACTTTCTGGGCGGAGCGCTTTGCGATGTTCGAAGACCGTTTCGGGGTCGCCTGGATGGTCAATTTCGAGGGGCGGCCATAAMKIIPYLTFNGRCKEAFALYQEVLGGELFSMSFAEAPEDVGMPKDPNLIMHTCLTVGGFSLMASDCAPGQPFSKPQGVSVSLNVDSAEEAERLFNGLSAGGSVQMPLGKTFWAERFAMFEDRFGVAWMVNFEGRPPGPT0030505_3038PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISMPUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM-1,PGPT0030505-phnB|yjdN-K04750
D1-35_02508426hypothetical proteinATGCGATTTATGGTGATCATCAAAGCCAGTCCCGAATCCGAAGCCGGAGAAATGCCCAGCGCGCAGCTGCTGACCGCCATGGGCGCCTACAATGAAGAACTGGTCAAGGCCGGGGTGATGCTCGCCGGTGAAGGCCTGCATCCCAGTGCCAAGGGTGTTCGCGTACAGTTTTCCGGAAACAACCGGACCGTCGTCCAGGGCCCGTTTGCCCAAACAGGAGAATTGATCGCCGGCTTCTGGATCTTCCAGGTCCAGTCGTTGCAGGAAGCTGTCGACTGGGTCAAGCGCTGCCCCAACCCTATGGTCAGCGACAGTGAGATTGAAATTCGCCAGATCTTCGAGGCTGAGGATTTCGGCGAGTCTTTTACCACCGAGTTGCGCGAGCAGGAAGAACGTTTGCGAGCGCAGATTTCCGATCAATCGTGAMRFMVIIKASPESEAGEMPSAQLLTAMGAYNEELVKAGVMLAGEGLHPSAKGVRVQFSGNNRTVVQGPFAQTGELIAGFWIFQVQSLQEAVDWVKRCPNPMVSDSEIEIRQIFEAEDFGESFTTELREQEERLRAQISDQSPGPT0014960_2DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
D1-35_02509897COG0596Fluoroacetate dehalogenaseATGTTTGCCTCATTTGAATCGGGTCGATGCCACGTCAACGATATCACCGTCAACTACCGCAAAGGCGGCAGTGGCCAAGGTTTGCTACTGCTTCACGGGCACCCTCAGACTCACGTGATGTGGCACAAGATCGCCGAGCCGCTGGCGCAACATTTCACCGTGGTGGCGGCGGATCTTCGGGGCTACGGTGACAGCGAAAAACCGCCGAGCGACGCGCAGCACCTGGCCTACTCCAAACGGCAGATGGCGCTGGACGGGGTGGAGCTGATGCGCGAACTGGGATTCATAAAGTTCGACGTGTTGGCTCACGACAGGGGCGCACGAGTGGCCTGTCGGATGGCGTTGGATCACCCGGACGCAGTAAAACGCTTGATCGTTCTGGATATCGCTCCGACGCTGGCGATGTACGAGCAGACCAATGAAGCTTTCGCCCGCGCCTACTGGCACTGGTTCTTTCTGATTCGCCCAGCCCCTTTTCCCGAGACGCTCATTGAAGCGGATCCGCAGCTGTATCTGCGCAGCGTCATGGGTGCTCGCAGCGCGGGCATGGCGCCCTTCACCGAAGCGGCATTGGCCGAGTATCTGCGTTGCCTGAGACTACCGGGGGCAGCCCATGGTCTGTGTGAAGACTACCGAGCCAGTGCCAGTATCGATCTGGAGCACGACAAGAGCGACCTGCAAGCCGGCAGGAAACTCTCACTGCCGTTACTCGCCCTATGGGGAGCTGACGGCGTTGTGGGCCGCTGCTTCGATCCGCTTGGCGAATGGCAAAAGGTCGCCAGTGACGTCCGGGGAAAAGCCCTGCCGTCGGGGCATTACATCGCAGAGGAAGCGCCAGGGCTTCTGATTGACGAAGTGCTCGGGTTCCTGCTCCCACCGGTCCCCAGCGCCAGGTGAMFASFESGRCHVNDITVNYRKGGSGQGLLLLHGHPQTHVMWHKIAEPLAQHFTVVAADLRGYGDSEKPPSDAQHLAYSKRQMALDGVELMRELGFIKFDVLAHDRGARVACRMALDHPDAVKRLIVLDIAPTLAMYEQTNEAFARAYWHWFFLIRPAPFPETLIEADPQLYLRSVMGARSAGMAPFTEAALAEYLRCLRLPGAAHGLCEDYRASASIDLEHDKSDLQAGRKLSLPLLALWGADGVVGRCFDPLGEWQKVASDVRGKALPSGHYIAEEAPGLLIDEVLGFLLPPVPSARPGPT0006880_562DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_DICHLOROETHANE_DEGRADATION,PGPT0006880-dehH-K01561NANA
D1-35_025101944acoR_3COG3284Acetoin catabolism regulatory proteinATGACCCTGCATGACTCGCAGACGATCCCCGGCGAACTCGCGGCGTTCGTCAACGACCACTTTTCCGGGCGCGGCCTCAGGCCGGACGGGGTCATTGCGCAATCCTGGTACCGCAGCGTCGTGGAGCACCGGCTCGATCCTGGCGCGCCGAGCCGCAAGAATATCCTCAGCGCCGACGCCATACGGCGTCATCAGGAACAGCACCAGCAATATCTTTCCATCGCCAGCCAGGGCGTCAGCGGCCTGGCCCAGCGCGTGGTGCCAGCCGGTTTTGCCGTACTGCTGAGCGACGAGCATGGCATCACCCTGGATTCCCGGCTCCCCAGCCAGCACGACATCTACACCCGATCGGGGCTGGTAGTGGGCGCGCAGTGGGACGAGTCGGTGGTGGGCACCAACGGCATCGGTACCACCCTGGCGGCGGCGCAGCCGTTGATCATTCATCGTGAGGAGCACTTCCTGGCATCGAATTTCAGCCTGAGCTGCTCGGTGGCGCCGATCTTCGACGCCCAAGGCTTGTTACGCGGCTGCCTGAATGCGACCTGCATGAACAACGAGGGCCCTCGTGAAAGCCAGTACCTCACGCTGCAACTGGTGATCATGTACGCGCGGCTGATCGAGAACGCAGACTTTCGCCAGCGCTATCGCGACCGCTTGACCCTGTCCCTCAAACCCATCGATGAAATTGCCGACCTGGCCAACGAACAACTGCTCGCGCTCGATGAAAGTGGTCGCGTCATCGGCGCCAACCGTGCCGCGTTTGTCGCCCTGGAGCTGGCAGATCAGCCGGCACTGCTCGGCACGCTCATCGACAGCCTGCTCCCGACTACGGTGGACGAACTGCTCCGGCTCACCAATGGCGGCGCCCAGGGTGTGCGCTTGCGCCGTTGTCAGGATGAAGCATTGCTGGACGTCGGCCTGCGTATCCCTTCCGAACGGCACCGCCCGCTGCCCGTCGCCCGCCCGGCCCCTGAGGCTCACCCGGATCTGCAGCAACTCGCCGGTCTCGACGCCCGGCTGCAACAAAACGTGCGACGCGTACGCAAGGTGATCGACAAGGGCATCCCGATCCTGATTACCGGCGAGACCGGCACCGGCAAGGAGGCCTTTGCTCGTGCCATCCACCAGGCCAGCCAACGTCGCGCCGGGCCTTTCGTGGCATTGAACTGCGCGGCGATTCCGGAAACGTTGATCGAGAGCGAGCTGTTCGGCTATCGCGCCGGCAGTTTCACCGGCGCCAACCGCAAAGGCATGAAAGGCAAACTGGAGCTGGCGAACGGCGGAACCCTGTTCCTTGATGAAATCGGCGACATGCCCGCCCATTTGCAGACGCGTTTGCTGCGGGTGCTGGCGGAGCGTGAAATCTCGCCTCTGGGGGCCGAGGTGCCGGTGACCCTGGATGTCCAGGTGATTTCGGCCACACACCAGGACCTGCAGGCGATGATCGGCGACAAGCGCTTTCGTGAAGACCTGTTCTATCGCCTCGCCGGCATGAACCTGGCGCTGCCGGCCTTGCGCGAACGCAGCGATCGGGCCGAGCTGATCGACAAGTTGCTCGCCGCCCAACCTGGCGCCCGCGGGTTATGGCTGAACGCCGATGCGCGCCAATGCCTGATCGACTACCCGTGGCCCGGCAACATTCGCCAGTTGCTCAATAGCCTGCGCTACGCGGTGGCCCTGGCGGAAGACGGCGTGATCGACCTGGATTGCCTGCCCGGCGAATTACTCTCACCGCAGGCGCTGCGGTTGCCTGGCAGCGCCCAACCGTCGACCAGCAACCTGGGTGAACAACTCGGGAGCGAAGAGGCCCGTCAACTGCTCGGCACCTTGCGTCGGCTGCGCTGGAACATCAGCGCCGCCGCCACCGAACTCGGCGTTTCGCGCTCGACGCTGTACCGCAAGATGAAAAAGCACGGCGTCGTCGCGCCCAACGATCAGCCCTGAMTLHDSQTIPGELAAFVNDHFSGRGLRPDGVIAQSWYRSVVEHRLDPGAPSRKNILSADAIRRHQEQHQQYLSIASQGVSGLAQRVVPAGFAVLLSDEHGITLDSRLPSQHDIYTRSGLVVGAQWDESVVGTNGIGTTLAAAQPLIIHREEHFLASNFSLSCSVAPIFDAQGLLRGCLNATCMNNEGPRESQYLTLQLVIMYARLIENADFRQRYRDRLTLSLKPIDEIADLANEQLLALDESGRVIGANRAAFVALELADQPALLGTLIDSLLPTTVDELLRLTNGGAQGVRLRRCQDEALLDVGLRIPSERHRPLPVARPAPEAHPDLQQLAGLDARLQQNVRRVRKVIDKGIPILITGETGTGKEAFARAIHQASQRRAGPFVALNCAAIPETLIESELFGYRAGSFTGANRKGMKGKLELANGGTLFLDEIGDMPAHLQTRLLRVLAEREISPLGAEVPVTLDVQVISATHQDLQAMIGDKRFREDLFYRLAGMNLALPALRERSDRAELIDKLLAAQPGARGLWLNADARQCLIDYPWPGNIRQLLNSLRYAVALAEDGVIDLDCLPGELLSPQALRLPGSAQPSTSNLGEQLGSEEARQLLGTLRRLRWNISAAATELGVSRSTLYRKMKKHGVVAPNDQPPGPT0001030_945DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0001030-acoR-K21405NANA
D1-35_025111437aldACOG1012Lactaldehyde dehydrogenaseATGACCGAGATCATCGATTACCAGAACTTCATCGCCAACGCCTTTGTCCCCAGCGAACCGAGCATCGAAGTGCACAACCCGGCCAACGGACGCTTGCTGGCGCGGGTGCCGCAAGCCAGCGGCGAACAGGTTGAAGCGGCCGTTGCCGCGGCGCGCAAGGCGCAGAAAGGCTGGGCGGCCCGCCCGGCCATCGAACGCGCTGGTTACCTGCGCAAGATCGCCAGCAAAGTGCGCGACAACGCCGAGCGCCTCGCCCATGTCATCACCGCCGAACAGGGCAAGGTGCTGGGGCTGGCGCGGGTGGAGGTCAACTTCACCGCCGACTATCTGGATTACATGGCGGAATGGGCGCGGCGCCTTGAAGGCGAGGTGCTGACCAGCGATCGCGCCGGCGAAAGCATCTTCCTGTTGCGCAAACCCCTGGGTGTGGTGGCCGGCATCCTGCCGTGGAACTTCCCGTTCTTCCTGATCGCACGCAAGATGGCGCCTGCGCTGGTGACCGGCAACACCATCGTGATCAAGCCCAGCGAAGAAACCCCGATCAACTGCTTCGAGTTCGCCCGCCTGGTCGCCGAAACCGACTTGCCGGCAGGCGTGTTCAACGTGGTCAGCGGCACCGGCGCAACGGTGGGGCATGACCTGACCCGCCATGCCGGCATCGACCTGATCAGCTTCACCGGCAGCGTCGGCACCGGCTCGCGAATCATGGCCGCAGCGGCGCCGAACATCACCAAGCTCAACCTGGAACTGGGCGGCAAGGCCCCGGCGATCGTGCTGGCGGACGCCGACCTGGCGCTGGCGGTCAAGGCGGTCACCGCGTCGCGGGTGATCAACAGCGGGCAAGTCTGCAATTGCGCCGAGCGGGTGTACGTCGAACGCAAGGTTGCGGATCAATTCATCGAGCAGATCGCCGCGTCGATGGCCGCGACCCGCTACGGCGACCCGCTGGCCGAAGACAATCTGGACATGGGCCCGCTGATCAACCAGGCGGCGCTGGACAAGGTCGCACAAATGGTCCGGACCGCCACGGGGCAGGGGGCCGAAGTGGTCACCGGCGGCGCGGTGGCCGACAAGGGCCAGGGCTTTCATTACCAGCCGACGGTGCTGGCCGGGTGTGGCAGCGACATGGCGATCATGCGCCAGGAGATTTTCGGCCCGGTGTTGCCGATCCAGATTGTCGATGACCTGGACGAAGCCATCGCCCTGGCCAACGACAGCGAGTACGGCCTGACCTCATCGATCTATACCCGCAGCCTGAGCGCGGCCATGCGCGCCAGCCATGAACTGGATTTCGGCGAAACCTACATCAACCGGGAGAATTTCGAAGCGATGCAGGGTTTTCATGCGGGGGCGCGCAAATCCGGTATCGGCGGCGCGGATGGCAAGCACGGTTTGTATGAGTACACCCATACTCATGTGGTTTACATCCAAATCTGAMTEIIDYQNFIANAFVPSEPSIEVHNPANGRLLARVPQASGEQVEAAVAAARKAQKGWAARPAIERAGYLRKIASKVRDNAERLAHVITAEQGKVLGLARVEVNFTADYLDYMAEWARRLEGEVLTSDRAGESIFLLRKPLGVVAGILPWNFPFFLIARKMAPALVTGNTIVIKPSEETPINCFEFARLVAETDLPAGVFNVVSGTGATVGHDLTRHAGIDLISFTGSVGTGSRIMAAAAPNITKLNLELGGKAPAIVLADADLALAVKAVTASRVINSGQVCNCAERVYVERKVADQFIEQIAASMAATRYGDPLAEDNLDMGPLINQAALDKVAQMVRTATGQGAEVVTGGAVADKGQGFHYQPTVLAGCGSDMAIMRQEIFGPVLPIQIVDDLDEAIALANDSEYGLTSSIYTRSLSAAMRASHELDFGETYINRENFEAMQGFHAGARKSGIGGADGKHGLYEYTHTHVVYIQIPGPT0001725_428DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-METHYLGLYOXAL_DETOXIFICATION,PGPT0001725-aldA-K07248NANA
D1-35_025122178qgdAQuinohemoprotein alcohol dehydrogenase ADH-IIGATGACACAGATTGGCCTCGCCGTGCCTACTGCTTCTGCGAAAGCGTGCCCGCGCGTTCCCCTCAAGACGTTATTTATCGTGCTGGCGCTTGCCCTCAATGCCGCCCCAGGCTGGGCGCAGGACATGCCGGCGAATGTCGATGGCAAGCGCATCATTGCCGCCGACCGGGAGCCGGGGAACTGGATGAGTACCGGCCGTACCTACGACGAGCAGCGCTACAGCCCCCTGAACAAAATCAGCGACCAGAACGTTGGCCAGCTGGGCCTCGCGTGGAGCTACAAGCTCGACCTGGATCGTGGTGTCGAGGCCACGCCGATCGTGGTCGATGGCGTGATGTACACCACCGGTCCGTTCTCCGTGGTCTACGCCCTGGATGCGCGCGACGGCAAGCTGATCTGGAAGTACGACCCCAAGTCTGACCGCAACCGCGCCGGCGAGGCCTGTTGCGATGCGGTCAACCGGGGTGTGGCGGTGTGGAAGGGCAAGGTCTACGTGGGTGTGCTCGACGGGCGCCTGGAGGCGATCGATGCCAAGACCGGCCAGCGCGCCTGGTCGGTGGACACCCGCGCCGATCACTCGCGCAGCTACACCATCACCGGGGCCCCGCGGGTGGTCAACGGCAAAGTGGTGATCGGCAACGGCGGCGCCGAGTTCGGCGTACGCGGTTACGTCACCGCCTACGACGCTGAAACCGGCAAGCAGGCCTGGCGTTTCTTCACGGTACCGGGTGACCCCAAGCTGCCGCCCGAAGACAAGGCCATGGCGATCGCCGCCAAGACCTGGCACGGCGATGCCTATGTGGCCCAGGGCGGGGGCGGTACGGCCTGGGACTCTTTCGCTTTCGACCCGGACTTGAACCTGCTGTACATCGGGGTGGGCAATGGCTCGCTGTGGGACCCGAAATGGCGTAGCCAGGCCAAGGGTGACAACCTGTTCCTGTCATCCATCGTCGCGGTCAATGCCGACACCGGCGAGTACGCCTGGCACTACCAGACCACGCCAGGAGACGCCTGGGACTACACCGCCACCCAGCACATGATCCTGGCTGAACTGCCGATCGATGGAAAGCCGCGCAAGGTCTTGATGCAGGCGCCGAAGAACGGTTTTTTCTACGTGATCGACCGCGCCACGGGTGAGCTGCTGTCGGCCAAGGGGATCGTGCCGCAAAGCTGGACCAAGGGCATGGACATGAAGACCGGCCGGCCGATCGTCGACGACGAGAATGCCGCGTACTGGAAGGATGGCAAGCGCAAACTGGTCACGCCGGCGTTCTGGGGCGCCCACGACTGGCAGCCGATGTCCTACAACCCGAACACGGGCCTGGTGTATATCCCGGCGCACATCATGTCGGCCTACTACGAGCACATCCCCGAGGCGCCGAAGCGCAACCCGTTCAAGAGCATGTACCAGTTGGGCCTGCGCACCGGGATGATGCCGGAGGATGCCGACGGGCTGCTGGAAATGGCCAAGGGCTGGTCGGGCAAACTGATTGCCTGGGATCCGGTCAAGCAGCAACCGGCCTGGGAAGTGCCCTATGTGACGATCTTCAACGGCGGCACCTTGAGCACCGCCGGCAACCTGGTGTTCGAGGGCAGCGCCGATGGCCGGGTGATCGCCTACGCCGCCGACACCGGCAAGAAACTCTGGGAGCAGCCGGCGGCCAGTGGCGTCATGGCCGCGCCGATTACCTACAGCGTGGACGGTGAGCAATACGTCACCTTCATGGCCGGCTGGGGCGGAGCCTTCTCGACGTTTGCCGGGGCTTTGTCCCTGCGCGCCGGGGTGCGGCCGTTCTCCCAGGTGCTGACCTACAAACTGGGCGGCACCGCGAAACTCAACGAGCCGGCGCCGCTTGCCGACACGCCGAAACCGCCGCCACTGACCGCTGACATGGCGGCGGTGGACGCCGGCGGCAAGCTCTATGACGGCTACTGCTCGCAGTGCCACGGCATCCATGCCGTCAGCGGTGGCGTGCTGCCGGACCTGCGCAAGCTGACCAGCGAAAAACACCAGATGTTCCTCGGCATTCTTTATGGCGGCCGAGTACCTGACGGCATGCCGTCCTTTGCCGATGCCTTCACGCCGGAACAGGTCGAGCAGATTCATCAATACCTGATCAAGCGCGCCCACGACCTGCAGCAGGAAGGCGGCGTCTGGAAAACCTTCAGCGCCAAATGAMTQIGLAVPTASAKACPRVPLKTLFIVLALALNAAPGWAQDMPANVDGKRIIAADREPGNWMSTGRTYDEQRYSPLNKISDQNVGQLGLAWSYKLDLDRGVEATPIVVDGVMYTTGPFSVVYALDARDGKLIWKYDPKSDRNRAGEACCDAVNRGVAVWKGKVYVGVLDGRLEAIDAKTGQRAWSVDTRADHSRSYTITGAPRVVNGKVVIGNGGAEFGVRGYVTAYDAETGKQAWRFFTVPGDPKLPPEDKAMAIAAKTWHGDAYVAQGGGGTAWDSFAFDPDLNLLYIGVGNGSLWDPKWRSQAKGDNLFLSSIVAVNADTGEYAWHYQTTPGDAWDYTATQHMILAELPIDGKPRKVLMQAPKNGFFYVIDRATGELLSAKGIVPQSWTKGMDMKTGRPIVDDENAAYWKDGKRKLVTPAFWGAHDWQPMSYNPNTGLVYIPAHIMSAYYEHIPEAPKRNPFKSMYQLGLRTGMMPEDADGLLEMAKGWSGKLIAWDPVKQQPAWEVPYVTIFNGGTLSTAGNLVFEGSADGRVIAYAADTGKKLWEQPAASGVMAAPITYSVDGEQYVTFMAGWGGAFSTFAGALSLRAGVRPFSQVLTYKLGGTAKLNEPAPLADTPKPPPLTADMAAVDAGGKLYDGYCSQCHGIHAVSGGVLPDLRKLTSEKHQMFLGILYGGRVPDGMPSFADAFTPEQVEQIHQYLIKRAHDLQQEGGVWKTFSAKPGPT0006870_7DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUBSTRATE_UTILIZATION-OTHERSPLANT_DERIVED_ALCOHOL_DEHYDROGENASE-CYTOCHROME_C,PGPT0006870-exaA-K00114NANA
D1-35_025132154hypothetical proteinATGCTTAAGCCCGACAGCACCTTGCTCGACCGGAACGCCGCCTTGGCTCAGCGAGATGCGGCCGTCAATGAGCGCGATACCGCGCTGGCGAAAGTCGACTTCCTGCAAAACACCCGTTCGTGGCGTTTCACCCGGCCACTGCGTACGCTGTTCCGGGTGCTGCGTTATGGATTTTCCGCCTACCGGGAGTTTCCCGAAACGGCTCCGGCAATCGTCTACCCGGCAGCGCCGGAACCGTTGCCGAACGTTGAGGTACAAGCGGATTTCGCCACCAGAGGGCAGCTGGATATTCTCTGCTTCGCCAATATCGACTGGGCCGCGCGCTTCCAGCGACCGCAGCAGTTGATGAGCCAGTTCGCGAGCAATGGTTATCGGGTGTTTTATATCGTTCCATCCAGTGTGCCGGAGCAGGGACAGCTTTATCGAGTGACGTCAGTGGCGTCCAACCTTTTCGAGGTGGCGCTGCATCGCGATGTGCAAATGGCCTATTACGAAAAGATAGTGACGCCTGAGAACCATCAGGCGTTGCTGCGTGCGATTGCTGCATTGGTCACTGACATGCAGATCAGAACCGCCCTCTCGGTGGTGCATATTGCCTACTGGAGCCCCGTGGTACTCAGCCTGCGCACGCTGCATGGCTGGCGCATTCACTATGACTGCATGGACGATTGGGATGGTTTTCCGAACATCGGCGAACAGCTGCTGAGCGAGGAAAAGACCCTGGTCGCCCAGGCCGATCTGGTGACTGTTTCCGCGGCGGTGCTTTACCAGAAATGGTGCGCTCATAACCCTCGCTGCGTGCTGGTGCGAAACGCTGTGGATTTTGCTTTTTTCCACCAGCACTGTTTTACCAACGATCTGCTGAGCGGGCTGGTCGGCCCGGTGATTGGCTATTACGGCGCCTTGGCTGAATGGCTCGATTATCCACTGCTGGCGGCGTTGGCGGACCTGCGACCGACGTGGAATTTCATCCTGGTGGGGGATATTTTCGTAGAGGACCTGGCGGGGCTCGAGCACAAGCCCAATGTGCGGTTGTTGGGCCGCAAGCCGTACACCGACATGCCGCTGTACCTGGATCATTTCGATGCGTGCCTGATTCCCTTCAGGCTCTACAACGTGACCCATGCGGTCGATCCGGTGAAGTTCTACGAGTACCTCAGCGCCGGCAAACCGGTGATCTCCACGCCACTGGCGGAGATCGCCATCTACAAGGACCTGCTGTACTTCGCAACCGGAGTCGATGAGTTCATCGAGCAGATCGAGCGTGCCCTGGCCGAGCGCGATCTGGCCCTTTACAAGCGGCGTGTGGAGCTCGCTCGGGCCAACGATTGGAAGGATCGATTTAATAGCATGCAACTTGCCATCGTCGGGCTGTACGAGAAAGTCTCCATCGTCATCGTGACGTACGACAACCTCAATCTGACGATTCAATGTGTCAACAGCATTCTGCGTAATACCACCTGGCCCAATTACCAACTGATTGTCGTCGACAACGGCTCGGACGATGGTACGCAAGATTATCTTGAACGCCTGGGCCGTGAGGTACCGTTCACGAAGATCATCCTCAACCCGGACAACCGGGGCTTCGCTGCGGCGAACAACCAGGGTTTGCGAGAAGCCGACGGTGACGTCCTGCTACTGCTCAATAACGACACGGTGGTACCGGGCGGTTGGCTCGATCCGCTGGTCAGGCTTTTGCGTGACCCGAGTATCGGCCTGGTCGGGCCGGTCACGAATGCGGTAGGAAACGAAGCGAAGATCGAGATTTCCTATACTGACATCCAACAGATGCAGGCGTTTGCAGACCACTACACCGTAGCCCGTAAGGGGCAGTCGTTCGATATATCCATGCTCGCAATGTTTTGTGTCGCCTTTCGCCGAACCACCTTCGATGAGGTGGGGTATCTGGATGAAACGTTCGGTATCGGGTTGTTCGAAGATGACGACTACAGCCGTCGTGTTCAGGCTGCCGGCTACCGCACGGTCTGCGCTGAAGATGCGTTTATCCATCACTACGGGCAGGCCTCGTTCAGCAAGCTGATCGCCAGCGGCGAATACCAGGCGCTCTGGGACAAAAACCAGGCGTATTTCGAAAGCAAATGGGGGGCGTGGCAAGCCCACGTACATCGCGACGAGCCCGGTGCGGAGGGGTAGMLKPDSTLLDRNAALAQRDAAVNERDTALAKVDFLQNTRSWRFTRPLRTLFRVLRYGFSAYREFPETAPAIVYPAAPEPLPNVEVQADFATRGQLDILCFANIDWAARFQRPQQLMSQFASNGYRVFYIVPSSVPEQGQLYRVTSVASNLFEVALHRDVQMAYYEKIVTPENHQALLRAIAALVTDMQIRTALSVVHIAYWSPVVLSLRTLHGWRIHYDCMDDWDGFPNIGEQLLSEEKTLVAQADLVTVSAAVLYQKWCAHNPRCVLVRNAVDFAFFHQHCFTNDLLSGLVGPVIGYYGALAEWLDYPLLAALADLRPTWNFILVGDIFVEDLAGLEHKPNVRLLGRKPYTDMPLYLDHFDACLIPFRLYNVTHAVDPVKFYEYLSAGKPVISTPLAEIAIYKDLLYFATGVDEFIEQIERALAERDLALYKRRVELARANDWKDRFNSMQLAIVGLYEKVSIVIVTYDNLNLTIQCVNSILRNTTWPNYQLIVVDNGSDDGTQDYLERLGREVPFTKIILNPDNRGFAAANNQGLREADGDVLLLLNNDTVVPGGWLDPLVRLLRDPSIGLVGPVTNAVGNEAKIEISYTDIQQMQAFADHYTVARKGQSFDISMLAMFCVAFRRTTFDEVGYLDETFGIGLFEDDDYSRRVQAAGYRTVCAEDAFIHHYGQASFSKLIASGEYQALWDKNQAYFESKWGAWQAHVHRDEPGAEGNANANANANA
D1-35_02514687hypothetical proteinATGCTAGATCTCTCTCGTCTCACGCCAGCGGCGCTAAAGGATCAGCCGTTCTCATGGGCTGAAATCGGCAACCTGTACTCGGCCGAGGATGCCGCCGCGTTGGCAGCGTCTTTTCCTCATGATCACTTCAAGACCGTGAGTGGTTATGGCGGTGAAAAAAACTATGACTACGAGGCACGAGCCTTGTTGGGCATGGGCGACGATACCATCGCTCATGCGCAGGAATTGAGCGAGGCATGGTTGCGGCTGGCTCGGGATCTTGGCTCGGCTGGTTATCGCGAAGCCATGTCGCAAATGACTGGAATCGATCTGCGCAGCGTGCCGATGGAGGTCAATGTCTTTCATTACGGTCCGGGTGCGAGCCTGGGCGCCCATCCGGACCTGCCCGATAAACTGGTCACCCATATCCTCTATTTCAATGAGTCCTGGGACCGCAACGACGGCGGTTGCCTGAACATCCTGCACCGCAACGATCCCAGCGCAGTGGCGGCCGAGATCGAGCCCCTGGTGGGTAATTCGGCGATCCTGGTGCGCTCGGATAATTCCTGGCATGCCGTCACGCCCGTAGTCAATGGCTGCCATTCTTCCCGTCGTAGCCTGACCGCAACGTTCTACCGGCCGGGCTCGCGCAGTTCCATGTGGCCGCCGGATGACAGCACGCCGCTGCATCGGTACCCGCATGCTTAAMLDLSRLTPAALKDQPFSWAEIGNLYSAEDAAALAASFPHDHFKTVSGYGGEKNYDYEARALLGMGDDTIAHAQELSEAWLRLARDLGSAGYREAMSQMTGIDLRSVPMEVNVFHYGPGASLGAHPDLPDKLVTHILYFNESWDRNDGGCLNILHRNDPSAVAAEIEPLVGNSAILVRSDNSWHAVTPVVNGCHSSRRSLTATFYRPGSRSSMWPPDDSTPLHRYPHANANANANANA
D1-35_025152763btuD_5Vitamin B12 import ATP-binding protein BtuDGTGCCGCTAACGGAAGTGACTCATGGAAGGGCTTTGCCGATGTCGTTTGAAGTGGCCATCAGCGCCGAGAACCTGAGCAAGTGTTATCAGATCTACGATGCGCCCAAGGACCGCCTGTTGCAGATGCTGGTGCGCGGCAGGAAGCGTTTCTACCGCGAGTTCTGGGCCCTGGACGATGTTTCCCTGACCATCGCAAGGGGGGAGACCGTCGGCATAATCGGCCGTAACGGCAGTGGCAAATCCACCTTGTTGCAACTGATCTGCGGAACGTTGATGCCGACCCGGGGCAGTGTTCGCGGGCATGGCCGGATTGCGGCGTTGCTTGAGCTCGGGTCGGGTTTCAATCCGGAGTTCAGCGGCCGCGAGAACGTCTATGTGAACGCGGCGGTGCTGGGCTTGAGTCGCGCGGAAATCGATGCTCGTTTTGATGACATCATTGCCTTCGCCAACATCGGCGACTTCATCGACCAGCCCACCAAAATCTATTCCAGCGGGATGCTGGTCCGGCTGGCCTTCGCCGTTTCGGTCTGTGTGGAACCGGAGATCCTGATCGTCGACGAGGCCCTCTCCGTCGGCGATGCATCTTTTCAATTCAAATGCCTGAACCGCCTGGAAGAACTGGCTGCCAAAGGCACCACGCTGCTGTTCGTCTCCCACGACATGAGCATGGTCAAACGGTTTTGCCACCGGGTCATCTATCTGCGCGCAGGCCGCGTCGTTGCCAGCGGCTCACCCGATGAAATGGCCGAGTTGCACTTGCTCGACATGCGTGACGAGCAACGTCGCTGGGCCAGTGGCGGGGCCATACCGGTTACACAAAAATCCTTTATTGGCGGTCAGCAGGGGATGGCCTTTGGAACCGGGGAGGGACACATCAGCGCCGCCTGCTTCACCAACACTCGGCAGCTTTCTTCGAGTTACCTGTATGGCGACGACGTCGAGATTCGCGTTGAAGCGTTACTGCATGAGTCGATCACTCAGCCCAACATCAGCTTCACTATCCAGGAAGCGAGGCTGCTGGTGATCGGCGGGGGCAACTTCGCCCTGCAGCCGGGCCCGGTCGAAAACGGCTTGCGGCATACGGCCATTACGGTGCGCTTCCCGGCCAACCTCGCCGAGGGGCGTTACCACGTCACGCTCAAGCTGTTGCATGGCGCGACGGAAGACACCTCGCAACTGATCGAGAAGCAAGTCGCGCCCTTGGCGTTCGACATGTTGCCCAGCCACAAGCATTTCCTGGGTATGGTTGACTTGGGATTGCAGAGCGTCGACCCGCGAGCGGCCGAGTCGCCTCCCAAGACCTGCGGGATTCAAGCAGAGGAGGACCTGGCGGAACACTTGGATGAGCGCACGTGGCAGGTGGCTATCTTCGGCACCTTCGACGTAGAAAACTATGGTGACCTGCTGTTCCCCATCATCGCCGAGGCAGAGCTGGCCCGGCGCTTGGGTTCGGTCAATCTGCAGCGGTTTTCCTATCATGGGAAAACCCCATCCGAATGGCCCTATGCGGTGACGTCGTTGACAGAGCTGCCCGCTGTAGCGGCAGGCCTGGATGGCGTGTTGATCGGCGGTGGTTTCCTGATCCGATTCGATAAAGTCGTTGCCCATGGCTATGGTCCGACCACTGCCGACATCCATCACCCTACCGGTTATTGGCTGACCCCCGCGCTCATCGCGCTGCAGCATGCCGTTCCGGTCATGTGGAATGCACCGGGGATGCATTGCAACAGTATTCCCGATTGGGCCAGGCCGTTATTGACGATGGCCCTTGAGCAGAGCCGGTACGTGCGCGTCCGTGATGCCCTGTCGCGCGATACCCTCGGCGCGCTCAGCCAGCAAATCGAGATCGAAGTGCTGCCCGACACCGCGTTCGGCTTGCCGCGCCTGATCGGTGAGCAACGGCCCTCGGCCGAGTTTGTTCGGCTGCGCGAGCATGCCGGGCTGACCGGGCCCTACATCGTGATCCACGCCATTCATGTGGTGGAGTCCTTTGTAAAATTGTTCGAAGACCACCCTGAGGCGTTCCTGGGCTACCAGTTCCTGGTGGTGCCGATTGGACCGGTCCTGGGCGACGATCCGTCAGTGATTGCCGGGCGGCTGCCCGGATCCATCACCTTGCCGTTCTGGCCGAAGCCGTTGCTCATGGCCGAAATTCTCAGCCAGGCCCAAGCGGTGATCGGCCATAGCTATCACCTGGCGATCACCGCCCTGGCGTTTGGCGTGCCGGTGTTTTGCTCGGCGGACCTGACCACGGGCAAGTACACGGCGCTGGCGGGGTTCGACACGCTACATGCGTTGCCGAACGTCGCGACGATCGATCCGCAATGGTTCCTCGCCCGCGTGGGCAAGACTCAGCCATCGCCCTTGGCGCGTGCGGCGGCGGATCAGTTGGTGGAGCATTGGGACCGGGTCGCTGAGATCATTCGCCAAGGTAAAACGGCGTCACAGCCGGTGCTGGGGGCTTTTCTGCAGCACCTGCCGAATCTGCTCGAAGCCGCGGCCGAGACGTGCTACCCAGTGCCAGCTGAATCGCCGGTGAGTCCGGTCATCCCTGTGCCGCAGATCAACGAACCCGCGCAGGACCTGGCAGCACGAGAGCTTGCCCAACAGCAACGGATCATCCAGCTCCGTGAGCAACTGGCTCGCAGCGATGCCAGGATGCGTGAGCTGCAGAACTCCAATTCATTCCGAATGACCGCGCCACTGCGTTCCATCGCCCGTGGTATCAGAAACCTGACAGCGAACAAAGACCGACAATGCTAGMPLTEVTHGRALPMSFEVAISAENLSKCYQIYDAPKDRLLQMLVRGRKRFYREFWALDDVSLTIARGETVGIIGRNGSGKSTLLQLICGTLMPTRGSVRGHGRIAALLELGSGFNPEFSGRENVYVNAAVLGLSRAEIDARFDDIIAFANIGDFIDQPTKIYSSGMLVRLAFAVSVCVEPEILIVDEALSVGDASFQFKCLNRLEELAAKGTTLLFVSHDMSMVKRFCHRVIYLRAGRVVASGSPDEMAELHLLDMRDEQRRWASGGAIPVTQKSFIGGQQGMAFGTGEGHISAACFTNTRQLSSSYLYGDDVEIRVEALLHESITQPNISFTIQEARLLVIGGGNFALQPGPVENGLRHTAITVRFPANLAEGRYHVTLKLLHGATEDTSQLIEKQVAPLAFDMLPSHKHFLGMVDLGLQSVDPRAAESPPKTCGIQAEEDLAEHLDERTWQVAIFGTFDVENYGDLLFPIIAEAELARRLGSVNLQRFSYHGKTPSEWPYAVTSLTELPAVAAGLDGVLIGGGFLIRFDKVVAHGYGPTTADIHHPTGYWLTPALIALQHAVPVMWNAPGMHCNSIPDWARPLLTMALEQSRYVRVRDALSRDTLGALSQQIEIEVLPDTAFGLPRLIGEQRPSAEFVRLREHAGLTGPYIVIHAIHVVESFVKLFEDHPEAFLGYQFLVVPIGPVLGDDPSVIAGRLPGSITLPFWPKPLLMAEILSQAQAVIGHSYHLAITALAFGVPVFCSADLTTGKYTALAGFDTLHALPNVATIDPQWFLARVGKTQPSPLARAAADQLVEHWDRVAEIIRQGKTASQPVLGAFLQHLPNLLEAAAETCYPVPAESPVSPVIPVPQINEPAQDLAARELAQQQRIIQLREQLARSDARMRELQNSNSFRMTAPLRSIARGIRNLTANKDRQCPGPT0023305_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_TRANSPORT,PGPT0023305-ABC_2_LPSE_A|wzt|rfbB|tagH-K09691NANA
D1-35_02516516hypothetical proteinGTGCTGGCCAATACCAACTACGTCAAAAAGATCGTCTTCCCGCTGGAAACCCTGCCGATGGTGTCGCTCGGCGCTGCGCTGTTCCACATGGCGATCAGCATCCTGGCCTGGCTGCTCTTCTATATCGTGCTGTTCGGAACCCCTCCGGCAACTGCCCTTCTGCTGCCGTTGGTGCTGTTTCCGTTGGTGTTGTTGACGCTGGGTATTTCCTGGTTCCTCGCCTCGATAAGCGTATACCTGCGCGATATCGGCCAATTCATCGGCATCGTCATAACGGCGATGCTCTTTCTCTCGCCGATTTTCTACCCCCTTACGATACTTCCACAAAGCTATCAGGCCGCCTTGCAGGCGAACCCCCTGACGCTGCCGGTGGAAATGGTTCGTGACGTACTGTTCTGGGGCAGGACACCGCAATGGGCGCAGCTGGCGGCTTATTCGGCAATTTCCTTGCTGATTGCCTGTGCCGGATTCGCCTGGTTCCAGAGGACACGCAAAGGCTTTGCCGATGTCATATGAMLANTNYVKKIVFPLETLPMVSLGAALFHMAISILAWLLFYIVLFGTPPATALLLPLVLFPLVLLTLGISWFLASISVYLRDIGQFIGIVITAMLFLSPIFYPLTILPQSYQAALQANPLTLPVEMVRDVLFWGRTPQWAQLAAYSAISLLIACAGFAWFQRTRKGFADVIPGPT0023304_1150DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_TRANSPORT,PGPT0023304-ABC_2_LPSE_P|wzm|rfbA|tagG-K09690NANA
D1-35_025172475hypothetical proteinATGTCCAAGGGACTGGAAGAACGCATGGATCAGATCAACCGTCTTGTCGATCACATTGACAAACTGACTCGCTCAACACAGTCCAGATCCATTGAAGCCTTGCAGTTGGTCAAGGAAATCGAGAATCGGGACCGGCTGATCAAGCAACTGAACCTGGGCTCACAAGCGCTTCGCACTCGCCTGTCGCTTCAGGAAGGCAAGGCCGGGCGACTGCGCGAGCAATTGCAAGTGACCGAACGGCGCCTCAAAGACACCCAGGCATCACTTCGCGCAAAAGAACGGCAAGCGGTGGAGCTGTCTGATTGGGCGGTGGATCTGCGCGCACAACTGGCGGCGAAGCAGACTGAGCTGCTCAAGCTTTCTGACTGGGGCAACGCCATCGAACGCGCACCGCTGCGTTATTCGATACGCAAGCAGCTGTATAAATTATCGCGCCGGATCTACGCCTGGTTGCCGCTCACCGCACAGCAGAAAAGCAGGCTGGCCCAGCGGCTTCGAAGCTGGCTGAAACGCACCACGGCGACAGCCGGCGAATCATCGGCGTCCCCAAGCCTCGCGCCGCTGCAACCCCTGCTACCACCGATTGACCTTGCCGTGCCATCCAGTCACGGGCAGCCGACGATCCTGATGTTCGGCGTGATCGATTGGCACTTCCGCATCCAGCGCCCACAAAACCTGGCCAAGGAGTTGGCGCGGGCGGGACAAACGACGTTTTATATTTCCAACCACTTTATCGACGATGATGCTCCCGGCTTCGAGGCGGAGCGCCTGGAAGGCTCCGAGCGGCTGTTCCAGATCCGTTTCAAGGTGCGCGGGGCTCCGGCCATTTATCATGCCCCGCCTTCAGCGGCCGCGATCAGCCAGTTGCGCCAAGGCCTGGCCATGCTGCTGGACGCGGCGAACGTCGCCGCCGTGGATTGCATCGTCCAGCACGCCTACTGGTTCCCGCTGGCAAGACGTGTCCCCAACGCCACGCTGGTCTATGACTGCATGGATCATCACGAAGGTTTCGGCAATGTTGCCCAGGAACTGCTCGACCTGGAAATCGCCTTGATGCGCCGGGCCGATCTGCTGGTGGCGACTTCCGACTGGATCGAACAACACGGCAAGCGGGAAAACCGCAACGTAGAGGTGATCCGCAACGCCTGCGAATACGGTTTTTTCAGCCAACGTCCCGACAAGATCTACCGGGACCCGGCCAACAGAAAGATCATCGGCTACTACGGCGTCATCGCCGAATGGTTCGACCTGGAACTGGTCAAACGCGTCGCCCAGTCCTTCCCACAGCAGCTGATCCTGTTGATCGGCAGCGATATCGTCCAGGCGAAAAAATATTTCAAGGCCTGCCCGAATGTGGTCCTGGAAGGCGAAGTCCCGTATGCCTCCCTGCCCTATTACCTCTACGCCATGGATGTTTGCCTGCTTCCGTTCAAGGTCATGCCCCTGACGCTCGCCACCAATCCGGTCAAAGTCTATGAATACCTGAGCGCAGGAAAACCGGTAGTGTCGGTGAAACTGCCAGAGTTGAGCCAGTTCGGCAAACTGGCCTGGGCTGTTGAACAGCCCTCTGAATTCATCTCTGCCATACGCGGTGTACTCGATGCTCTGCCAGAGGTCGGCGCAACGCCAAAGGCGCGTCAATCGTTCGCCCAGGGCCAGACCTGGCAGCATCGGGCCGCCAGCCTGCGCAAGGCCATCGCGTCATTGCCCCTGCCCAAGGTCAGCGTCGTGGTGTTGACCTACAACAACCTCGAACTGACCAAGGCTTGCCTCGACAGTCTGTTGACCCAGAGCCAGTACCCGAACCTCGAAATCATCGTGGTCGACAACTGCTCCAGCGACCAGACCCCGGCCTATCTCACTGCCTGGGCCAAGGGACATCCCGAACGGATCGTCATCCTCAATCCGGACAACAAGGGATTCGCCGCAGGGAACAACCAAGGGCTCGCGGCAGCCAGTGGCGAGTACCTGGTCATCCTCAACAACGACACGGTCGTCACCGCCGGCTGGATCAGGGGGTTGATCCGTCATCTGAAGGACCACGAGGAAATCGGCATCATCGGTCCGGTCACCAACAACATCGGCAACGAAGCCAAAGTCAGCACCCGTTATGGCCGGATGGAGGACATGCCCGCCGAAGCCGCGCAAATGACCCGTGCCCGAATGGGCGAGTGGTTCGAAATCAACACCCTGGCGTTTTTCTGCGTGATGTTCCCGCGCTCGACCTACGAGCAGATCGGCGGTCTGTGCGAGGAGTACGGCCTGGGGTTCTTCGAGGATGACGATTACTGCCGCCGCGTGCAGCGTCGCGGCCTGCGCGCGGCTTGCGCCGAAGACGTCTTCGTCCATCACCACCTGTCCGCCTCGTTCAACACCTTGGGTGCCAGGAAAAAACAGGCACTTTTCGAGAAGAACCGGGCGATCTACGAGAACAAATGGGGATCCTGGGTTCCGCACACGTACCGAGATGTATAGMSKGLEERMDQINRLVDHIDKLTRSTQSRSIEALQLVKEIENRDRLIKQLNLGSQALRTRLSLQEGKAGRLREQLQVTERRLKDTQASLRAKERQAVELSDWAVDLRAQLAAKQTELLKLSDWGNAIERAPLRYSIRKQLYKLSRRIYAWLPLTAQQKSRLAQRLRSWLKRTTATAGESSASPSLAPLQPLLPPIDLAVPSSHGQPTILMFGVIDWHFRIQRPQNLAKELARAGQTTFYISNHFIDDDAPGFEAERLEGSERLFQIRFKVRGAPAIYHAPPSAAAISQLRQGLAMLLDAANVAAVDCIVQHAYWFPLARRVPNATLVYDCMDHHEGFGNVAQELLDLEIALMRRADLLVATSDWIEQHGKRENRNVEVIRNACEYGFFSQRPDKIYRDPANRKIIGYYGVIAEWFDLELVKRVAQSFPQQLILLIGSDIVQAKKYFKACPNVVLEGEVPYASLPYYLYAMDVCLLPFKVMPLTLATNPVKVYEYLSAGKPVVSVKLPELSQFGKLAWAVEQPSEFISAIRGVLDALPEVGATPKARQSFAQGQTWQHRAASLRKAIASLPLPKVSVVVLTYNNLELTKACLDSLLTQSQYPNLEIIVVDNCSSDQTPAYLTAWAKGHPERIVILNPDNKGFAAGNNQGLAAASGEYLVILNNDTVVTAGWIRGLIRHLKDHEEIGIIGPVTNNIGNEAKVSTRYGRMEDMPAEAAQMTRARMGEWFEINTLAFFCVMFPRSTYEQIGGLCEEYGLGFFEDDDYCRRVQRRGLRAACAEDVFVHHHLSASFNTLGARKKQALFEKNRAIYENKWGSWVPHTYRDVNANANANANA
D1-35_025182409hypothetical proteinTTGCCTGGATCAAGCCTGAAATACGCAGTGGTGCTGTTGGTTTTACTGGCGAGTACGGCGGTCGGCGTGTACGGTTTTTCGACGCTTGAACTGGCGTCCATGAACAGCAGCAGCCGCACGATACTGCTGTCAGTGGCAGTCCTGGCGGCCCTTACCGCTTTCACTCGCAAGCCGCCGATCATTCTTTGCCTTGGCCTGCTGGCGTGCCTGACCATTGCCTGCGCGCAGATCTGGCCGATGATTGTCGTCGCGGTCTTCGCGCTGTCTGCCACCGTGCTCGGCAGGTGGCTGCTCAGGCAAGAAAATCCGGCCGACTGGAGCATCCATCTGCTGATGGGCATCGGCACGTTCGGTACGCTGACAGGCCTGGCTGCGTATATGCCGATCAACTATCCCTGGCTGTATGGCGCGATGCTGGCAGTGCCGCTTGTACTGGGGCGCAAACAGGTCCTGTCGATAGGTCGCGAACTGCTGACACAAATCCAGGCCACCCGCTCGGCACAAACGCCCCTGCAAACCGGGCTCGATGTATTGATTGGCGGCTTCGCCTGCCTCTACGTGCTGGTAGCCTTCATGCCGGAGGTCGGCCACGACGCCTTGGCCATGCACCTCTTCGTCCCTTCACACCTGGCCCAGCGGCACCAATGGTCGTTCGATGCAAACACCTATGTGTGGGCCGTCATGCCCATGCTGGCCGACTGGATCTATAGCATCGTCTATATGCTGGCGGGCGAAACGGCGTCACGCCTGAGCAATAGCGCGTTCGCCTTGCTGGTGGCGTGGCAGATTCGCAACATGACCCTTTGGGCCGGGGGCTCCGCCACGAGCGCTCGCGGGGCAAGCCTGATCTTTCTGTCGACGCCCCTCGCCTTCGCTGAAAGCAGCAGCCTGCATATAGAGTCGGCGTGGACCGCCTTCATGCTGGCCGGGACCCTGGCAATCCTGAAGGTCTCAGGCTTCACTGCGGATCCTCGGGAACGCCTGTCGCAACTGGCCCTGGCCGGTGTCCTGCTGGGCTTCGCCATGGCGACCAAGGCGGTGACGCTGAGTGTCCTGCCGGTCCTGCTGTTGGTCCTCTTGCTGCAGTACAAGGCCTGGGCCATGCGAGGAATCGTCAAGACCCTCATGCTCGGCAGCGCCGGCCTGCTGCTGGCGGGCGCTACCCCTTACGTCTGCGCCGGGTACTTGACCGGTAATCCGGTGTTCCCGTTTTTCAACGGGGTTTTCCATTCGCCGCTCTGGCCGGACATGAACTTCGAACCGCCCGCCACTTTCGGTACCGGGATGACCTGGGACACCCTCTATCGAATGGTCTTCCAGTCGCCGCAGTTCATCGAGGGGCGGGTCGGCGCGGCGGGTTTCCAGTGGCTGCTGCTACCCACAGCGGCCGTCGCCGTGCTGTTGAGCGGCAACAAAAAAGCCCTGTGCATCCTCCTGGTCGGCGCCGGCGCGATGTTCATGACGTTCCAGTCAACGGCCTACCTGCGTTATGTGTTTCCCTCCTTTGCGCTGTTCTCGGTGATCCTCGCCCTGCCCTTTTCCGACGCCAGGGCCTTCCCCCGCAGCCTCGCCATCGCGGCCGGTGCCGTGTTGGTCCTGGCCAATACCCGCTTCATCCAGGCCGCGACTTACTATGGCGAAATCAAACCCTCGGCACTCTTGAGCCAGGCCGGTCGGGAGGCCTTTTTGCTGGAGCGCCTGCCGATCCGGAAAATGGTCGACACCGTCAACGCCTTGAACAGCGGTTATCAACCCGTGGCGGTTTTTGCGTCGCCCTTGATGGCGGGTTTGCGTGGCGATGCCCTTTACGCATCGTGGTACAACCTGAAGTGGAAGGGCGAATTCGACGCAGCGACCTCGCCGGCGGAGCTTACCCGGCGCTTGCGCCAGCGCCAGGTGAACTGGCTGGTGATCGATCTCAAGTCTCTTCCCCAGGCGCAACTCGACCGCCTGCTCGCCGTGTCCACGTCATATTCCAGGCTGGGTAACCTGGACCTGCGCAAACTCAACGCCACCCACTACGAGCTCCTGCTCAATCCGGACCTGTCCAGCCTCGACGGCTGGAACCTGCTGTCGCCCTCGACCTATGACACCTCGCGCAAAATCCTGACCGTCAACGTCAACACACCCGCCACCCAGCGCGTCGACGTCACGCCGGGGCTGACCTACATCAACAGTGTGTCCGCACGCTGCGCGGAGGCAGCCACTACCGGAAGAATCCAGGCCAACTGGATTGACGACCAAGGCGACTTCATCAGCGCCAGCATCGCAACGTTTGATTGCACCACGCATTGGGAGACCCATGAGATGAGTGTCATCGCCCCGGCTAATGCCACGTCCGCGGTCATTTATGCGTCCGGGCATACCGACACTCCCCTGGAGTTCAAATCACTTTCATTCAGGCAATAGMPGSSLKYAVVLLVLLASTAVGVYGFSTLELASMNSSSRTILLSVAVLAALTAFTRKPPIILCLGLLACLTIACAQIWPMIVVAVFALSATVLGRWLLRQENPADWSIHLLMGIGTFGTLTGLAAYMPINYPWLYGAMLAVPLVLGRKQVLSIGRELLTQIQATRSAQTPLQTGLDVLIGGFACLYVLVAFMPEVGHDALAMHLFVPSHLAQRHQWSFDANTYVWAVMPMLADWIYSIVYMLAGETASRLSNSAFALLVAWQIRNMTLWAGGSATSARGASLIFLSTPLAFAESSSLHIESAWTAFMLAGTLAILKVSGFTADPRERLSQLALAGVLLGFAMATKAVTLSVLPVLLLVLLLQYKAWAMRGIVKTLMLGSAGLLLAGATPYVCAGYLTGNPVFPFFNGVFHSPLWPDMNFEPPATFGTGMTWDTLYRMVFQSPQFIEGRVGAAGFQWLLLPTAAVAVLLSGNKKALCILLVGAGAMFMTFQSTAYLRYVFPSFALFSVILALPFSDARAFPRSLAIAAGAVLVLANTRFIQAATYYGEIKPSALLSQAGREAFLLERLPIRKMVDTVNALNSGYQPVAVFASPLMAGLRGDALYASWYNLKWKGEFDAATSPAELTRRLRQRQVNWLVIDLKSLPQAQLDRLLAVSTSYSRLGNLDLRKLNATHYELLLNPDLSSLDGWNLLSPSTYDTSRKILTVNVNTPATQRVDVTPGLTYINSVSARCAEAATTGRIQANWIDDQGDFISASIATFDCTTHWETHEMSVIAPANATSAVIYASGHTDTPLEFKSLSFRQNANANANANA
D1-35_025191020hypothetical proteinATGAACACAACAACAGCGATTTTCACGGATGAACTACGCGTTGCCGTCGTCATCCCCAGCTATCGGGTCACCGCACACATCGTCGGCGTCATCGACGCCATCGGGCCGGAAGTCTGGCGCATCTATGTCATTGACGATGCCTGCCCGGACGGTTCGGGCGGGCATGTCCTGGCCTCCTGTGACGACCCTCGGGTCAAGGTGCTGCCCCATGACATCAACAAAGGTGTGGGGGGTGCGGTCATGACCGGCTATCGAGCAGCCCTCGCTGACGGCGCGAGTATCATCGTCAAGGTCGACGGCGACGGTCAGATGGACCCTACCCTGATTCCGCTGTTCATCGAACCGATCCTGGCGGGTGAAGCCGACTACACCAAGGGCAATCGGTTTTTCGACCTGGAGGAAGTCCAGTCGATGCCGCGAATTCGACTGTTCGGCAATGCCGTGTTGTCGTTGATGGCCAAACTGTCGACGGGTTACTGGGATCTGTTCGACCCGACCAACGGCTATACCGCGATTCACCGTGACGTCGCCAGGCTGCTGCCCCTGGACAAGGTCAGCCAACGCTATTTTTTCGAGACCGACATTCTGTTCCGCCTGAACACCGTGCGCGCCGTGGTGGTGGACATACCGATGGAAGCACGCTACGGCGATGAGGTCAGTCACCTGAAGATCTCGAAAATCGTCGGCGAATTTCTCTTCAAGCATCTGCGCAACTTCACCAAGCGCGTGCTCTATAACTACTACTTGCGCGACATGTCCCTGGCTTCGATCGAGCTGCCGATCGGGATCCTGATGTTCGTGTTCGGCATCCTGTTCGGCAGTTATCACTGGTTCGAGTCGGCGCAGCATGGCGTCGCGACGCCAGCCGGCACCGTGATGCTCAGCGCATTGCCCATGCTCATGGGGCTGCAATTGATCATGGCGTTTCTCGGTTATGACATCGCCTCGGTCCCCAACAGGCCTCGGCATTCCAGGCGCAGGGCCACTTCATTGCGGGAAGAAAAGTCATTAAAGCGCTAAMNTTTAIFTDELRVAVVIPSYRVTAHIVGVIDAIGPEVWRIYVIDDACPDGSGGHVLASCDDPRVKVLPHDINKGVGGAVMTGYRAALADGASIIVKVDGDGQMDPTLIPLFIEPILAGEADYTKGNRFFDLEEVQSMPRIRLFGNAVLSLMAKLSTGYWDLFDPTNGYTAIHRDVARLLPLDKVSQRYFFETDILFRLNTVRAVVVDIPMEARYGDEVSHLKISKIVGEFLFKHLRNFTKRVLYNYYLRDMSLASIELPIGILMFVFGILFGSYHWFESAQHGVATPAGTVMLSALPMLMGLQLIMAFLGYDIASVPNRPRHSRRRATSLREEKSLKRPGPT0017834_680DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GLYCAN_BIOSYNTHESIS,PGPT0017834-DPM1_like|arnC|ppm1|wcaA-K00721NANA
D1-35_02520687hypothetical proteinATGCTCAGGGAAGTCTTCGTGGAATTCCACCACGCGTTCCGTCGACTGGCAGACCGCTATTTCCAGGTCGGGGGTCTTGAGGTGGAGTTGGGAGCGGGCATCGCGCCCATGCGCGATTCGTACCCGCAGGTATTGGCCACGGACGTTGTCGCCAGCGAGAAACTCGACATGGCGCTCGATGCCCAGGCAATGAGCCTGGACGATGATTCGGTGAGAGCCTTTTATGGCCAGAATTGTTTTCATCATTTTCCTCACCCCGAGTGCTTTTTCACGGAGCTGGAAAGGACGCTCAGGATCGGCGGCGGGGCCATTTTGATCGAGCCCTTTCACGGCCCCTTTGCCGCGTTCCTCTATAGGCGCCTGTTCAAGTCCGAAGGCTTCGACATGCACTTCCCTTCTTGGCATACACCGTCAACCGGCCCCATGAACGGTGCCAACCAGGCCCTCAGCTACATCGTTTTCGTTCGCGACCGGCAGGCGTTCGAGCACAAGTACCCGGGCCTGGAGATCGTCCACCAGGAGATCTGTGGCAGCTACCTGCGTTACCTGATTTCCGGCGGCCTGAACTTTCGCCAGCTGTTGCCTGACGTATTCATCCCTGTGCTCAAGGTCATTGAAAAACTGCTGTATCCGTTGCACCGGATATTGGCCTTGCACCACATCGTGGTGATCCGGAGGACGTCTTGAMLREVFVEFHHAFRRLADRYFQVGGLEVELGAGIAPMRDSYPQVLATDVVASEKLDMALDAQAMSLDDDSVRAFYGQNCFHHFPHPECFFTELERTLRIGGGAILIEPFHGPFAAFLYRRLFKSEGFDMHFPSWHTPSTGPMNGANQALSYIVFVRDRQAFEHKYPGLEIVHQEICGSYLRYLISGGLNFRQLLPDVFIPVLKVIEKLLYPLHRILALHHIVVIRRTSNANANANANA
D1-35_02521414hypothetical proteinTTGACCTTTATCCGATACGGCGCCATCCAACTCGTGGCCTATGGGTTGGACATGGGGACGTTTTTGCTGCTGCTCGCGCTATTCGATAATCAACCCGTGCTGGCCAACGTCGCTGGCAAAGTCGCGGCCGGGACGTTCGCGTTCTTTTCGCATCGGCATTTCACATTCCAGTCGACACGCGTCGGCAGCAAGGCTCAAGCGCTGCGCTATTTTTCATTGCTCGCCATCAATATTCCGCTCGCTTCGGTGCTGCTCAGCGCGGGGCTGTACCTCATCGACAACCCTGTCCCGGTGAAATTTGTCAGCGACGTGATCTGCGTAGCGCTGACCTACTGGATCAGCAAGCGGTTCGTGTTTCGTACCGATACGCACCCGCCGGCTCCCGCTGACCGAGCCGAAGGCGCACGACCATGAMTFIRYGAIQLVAYGLDMGTFLLLLALFDNQPVLANVAGKVAAGTFAFFSHRHFTFQSTRVGSKAQALRYFSLLAINIPLASVLLSAGLYLIDNPVPVKFVSDVICVALTYWISKRFVFRTDTHPPAPADRAEGARPNANANANANA
D1-35_025221284hypothetical proteinATGACGCTACTGATTACCGGCGCGACCGGCTACATTGGACGACGCTTGAGTGCCCTCGCGGCGGCAAGCGGTCACGAAGTCATTTGCGCTACCCGCAAGCCGTGCCCTGCCCCCTATGCCTGGCTTCCTTATGATCTGCGGGGCCCGGCGCCCGAGTGCCCGGCCGGCACTCAGGCGCTGATCCATCTGGCGGCCGACACGTCACCCGATACTGACACTAACGCGGACGCTGAAATAAACGCGGCCCTGGCGCTGATCGATTGCGCCCGACAAGGCTCGGCCAGGTTCATCTTCATTTCCAGCCAAACCGCCGGGGCCACGGCCCCGAGCGTTTATGGCCGGACCAAGTGGCGTATCGAGCAGCATGTGCTCGCCGCCGGGGGTACCGTGATCCGCCCCGGACAAGTGTACGGAGGCCCCGAATGCGGGCTCTTTGGCCTGTTGACCGGGCTGGTTCGCCGGAGCCCAGTCATTCCGATCCTCTTGCCGGCGCCCTGCGTGCAGCCCATCCATGTCGACGACCTCGCGGCCGCGATACTGGCCATCGCCGAGCGGGACGACATTCATGGCGAGGTCCTCAAGCTGGGTGCCGTAAAACCGATTGCCTTTGGGCGCTTCCTGAGCGCCATTGCGACGCACCGGGTCCGCGCCGTGCGCATGCCAATCCCTCTGCCGGTGGCATTGCTCAGGCTGTTGCGGCTGATACTCGGACGATCCTTGAACAGAAAACTGGGCCTGGAGCGGATCTTTTCCCTTATTCATCTGCCGCCCATGGACAGCGAGCGTTCCCTGGAAAAACTCGGCATCGCGTTGCGCCCTCTTGCCCACGGCATGCATCGCTCCGGCCATGGGCAACGTCGAGGCCTGCTTCAGGAAGCGGCGGTGCTCTTGGGCTACCTGCTCAAACGCCCGCCGCAAAAAAGCCTGGTAAGGCGCTATGCAAGGGCACTGGAGCGTGCGGGCAAAACCCGTCCTGTCATTCACTCACGCCTGCTGATGGGCCGGCCGATACTCTTGACGCTGCTGGACAACCCCGGCGTCCTGCGCACGCCCGAGGGCCAGGAACTGGCCTGGCGCCTGCAGGTTGCACTCGGTATCGCCGAAGCCAGCCCCCAAGGCGCGCAGGTATTTCTCGGCACCCGATGGCCGCGCAGCCTTGTCGCCACGCTGGCTGCGTTGGGACTCACCTCGGTCAAAGCGTTGGTGTGGAAGATAGCGGCGTTGTCGTGCCGTGCTTTTGCCCGCCCGCTGCTGCTTGGAAGTGAATCCCACCGTGAAGCCTGAMTLLITGATGYIGRRLSALAAASGHEVICATRKPCPAPYAWLPYDLRGPAPECPAGTQALIHLAADTSPDTDTNADAEINAALALIDCARQGSARFIFISSQTAGATAPSVYGRTKWRIEQHVLAAGGTVIRPGQVYGGPECGLFGLLTGLVRRSPVIPILLPAPCVQPIHVDDLAAAILAIAERDDIHGEVLKLGAVKPIAFGRFLSAIATHRVRAVRMPIPLPVALLRLLRLILGRSLNRKLGLERIFSLIHLPPMDSERSLEKLGIALRPLAHGMHRSGHGQRRGLLQEAAVLLGYLLKRPPQKSLVRRYARALERAGKTRPVIHSRLLMGRPILLTLLDNPGVLRTPEGQELAWRLQVALGIAEASPQGAQVFLGTRWPRSLVATLAALGLTSVKALVWKIAALSCRAFARPLLLGSESHREANANANANANA
D1-35_025231629hypothetical proteinGTGCTTTTGCCCGCCCGCTGCTGCTTGGAAGTGAATCCCACCGTGAAGCCTGAGTTCGATGTGATCATTGTCGGCAGCGGCCCAGCCGGGACTTCAGCGGCCTTTCCGCTGGTCAAGGCGGGCCTGCGAGTGGTCATGGTTGATGCCCAGGCCAACAGCGACTCACCGGTGCCGCCGACCCGCCCATTCCTCAGTGCCAGGGCCGACGACGCGCATCAGTGGAAATGGATGATCGGCGAAAACTTCCACGCCCTGGACCAACTGGACGCCGTATCGCCCAAGCTGAAGACGCCGACCCACGCCCATGTCTTCGAAGGGTTCAGCGCCGGCAATCGCATCGAGACCAACAACTTTATCGGCATCGGATCACTGGCCACCGGAGGCCTGTCCAATGCCTGGGGTTGCGGCGTGGCAACGCTGGGCGCCGGTGACTTTGCCGGGCTGCCCATCGATTATTCCGAGATGCAGGCGTCCTACGAAACGGTCGCGCGCCGGATCGGTATCAGTGGCCGGTTCAACGACGATCTCTCCAGCTACTTCGGTCTGGATGAGTGGTCGCAACCGCCCCTGCCGCTGGACAGCCTGCATCAGCGCCTGCTCGACCGCTACACCCGGCGCCGAGCGGTGTTTCCCGACCTGGGGTTTCGTCTTGGCCGTTCAAGGGTCGCCGCCTTGAGCCAGCCCCTCGACGAGCGCAAGGCCTGCGATCTTTCTGGAAACTGCTTGTGGGGCTGTCACCACCAAGCCTTGTACAGCGCCTCGCAAGAGCTGCGAAAACTCAAGCAATACCCTGGGTTCCAGCACGTCCAGAATTTCCTGGTGGAGGATCTGCTGAAACAGGACGACTCCTGGACCATCACCGATCATCGCTCCGCCCGGCGCTTGCGCGGTGCGCGCCTGTTGCTGGCGGCGGGCACACTGGCCTCGACCCGGCTCGTCCTCAAGTGCCTGAACCATTCGGCACCGGTACCGCTGCTGTCATCGCCGACGGCGGCCTTCCTGCTATGGCTGCCAAGAATGCTCGGCACCCCGAGAGTGCCGGCATTTGGCCTGGGCCAGCTCTCGTTCACCCTGGAGTTGAAGTCCGGCGCCACAGCTTTCGGTTCGACGTTCAGCACCACGGGCTTACTCATGACCGAGTTCGTCAGCCGGATTCCCATGAGCAAACGCTACAGCATCGAATTGCTGAGGAACCTGCTCAGCGCGTGCGTCGTCGGCAACATCTTTCTTCCCGGGCAGCTGTCCAGCAACACGGCGGTGCTGCGCCTCGACGGTTCGTTGAGCATCACCGGCCAAGTGCATCCCGAACTCCCCGGGATCATGAAAGCCGCCGAGACCAGGCTGCGCCGGATCTATTGGAAGATGGGCGCGCTGTTGATGCCCATGAGCTTCACCGTCGGCAGACCGGGAGCAGATATCCACTATGCGGGAACCCTGCCCATGCACTCGACGCCGAAGATTGGCCAGACCGATCGCCTTGGCCAGGTCGCAGGCCTCGACGGCGTGCATGTCGTTGACGGCGCCTGTCTGCCCAGCCTTGCCGAGAAATCGCACACGTTGACCCTGATGGCCAACGCGGACCGGATAGCACGCTCTCTGACAACAATGATAGGAAATCAGCAGTCATGAMLLPARCCLEVNPTVKPEFDVIIVGSGPAGTSAAFPLVKAGLRVVMVDAQANSDSPVPPTRPFLSARADDAHQWKWMIGENFHALDQLDAVSPKLKTPTHAHVFEGFSAGNRIETNNFIGIGSLATGGLSNAWGCGVATLGAGDFAGLPIDYSEMQASYETVARRIGISGRFNDDLSSYFGLDEWSQPPLPLDSLHQRLLDRYTRRRAVFPDLGFRLGRSRVAALSQPLDERKACDLSGNCLWGCHHQALYSASQELRKLKQYPGFQHVQNFLVEDLLKQDDSWTITDHRSARRLRGARLLLAAGTLASTRLVLKCLNHSAPVPLLSSPTAAFLLWLPRMLGTPRVPAFGLGQLSFTLELKSGATAFGSTFSTTGLLMTEFVSRIPMSKRYSIELLRNLLSACVVGNIFLPGQLSSNTAVLRLDGSLSITGQVHPELPGIMKAAETRLRRIYWKMGALLMPMSFTVGRPGADIHYAGTLPMHSTPKIGQTDRLGQVAGLDGVHVVDGACLPSLAEKSHTLTLMANADRIARSLTTMIGNQQSNANANANANA
D1-35_025241104wecBCOG0381UDP-N-acetylglucosamine 2-epimeraseATGACCCGCAAAGTACTCTGCATCGTCGGTACACGCCCGGAAGCCATCAAGATGGCTCCGGTGATCAACGCCCTCAAGGCCGAAAAAAACATCCAGTGCCGGGTGCTCGCCACCGCCCAGCACCGCGGCCTGCTCGACCAGATACTGAAGGGCTTTGCGATTAACGCCGACCTCGACCTGGACATCATGCGTCCCAACCAGTCTCTGGCAGCGCTGACCTCACGCCTGCTGCGTGAACTCGACGGCGTTCTGCAAGCCGAGAAACCCGATGTCGTACTGGCTCAAGGTGACACGACCACCGTCATGAGCGCCGCACTGGCGTGTTTCTACCTGCGAATTCCCTTCGGCCATGTCGAAGCGGGCCTGCGTACCGGGGACCTGTACAATCCGTTCCCCGAAGAGGCCAACCGGGTCATCGCCGGCAAGCTGGCCCGCTGGCATTTCGCGCCGACCCAGGGCGCCGTGGCCAACCTGCTGGGCGAAGGTGTTGCCGCCAGTGATATCACCCTGACCGGCAATACCGTCATCGATGCCTTGCTGATGACCGCGGCACAGGACTCAGCCTTGACCGTCCCACTCGATGCGCACAAACGCATGGTGCTGGTGACCTGCCATCGTCGGGAAAACTTCGGCGAACCGTTCCAGGATATCTGCCAGGCACTCAAGCGCCTGGCAGAACGGAACCCGGACATCCAGATTCTCTATCCCGTCCACCCCAACCCGAACGTCAAGGACGTCGCGCATCAGTTGCTCGGCCGAACCCCGAACATCATCCTTTGCACACCGCTGGACTACGCTCCGTTTGTCGCGGCGATCAAGCGCTCATACCTGATCATCAGCGATTCCGGGGGCGTGCAGGAAGAAGCCCCTGCCCTGGGTAAACCGGTGCTGGTACTCAGGACAGAAACCGAACGCCCCGAAGCGGTCGACCTCGGCGTAGTCAAGTTGGTGGGCGCCAATCGGGACACCATCGTTGAACAGGCACAGCATCTCCTGGATGACCCTGAGGCCTATCAGGGCATGGCGCGGGGCGTTTCCCCCTATGGCGACGGCAGGGCCGCAACGCGTATTGCCGACGTCCTGCGCCAGCACTTTCAGCCATGAMTRKVLCIVGTRPEAIKMAPVINALKAEKNIQCRVLATAQHRGLLDQILKGFAINADLDLDIMRPNQSLAALTSRLLRELDGVLQAEKPDVVLAQGDTTTVMSAALACFYLRIPFGHVEAGLRTGDLYNPFPEEANRVIAGKLARWHFAPTQGAVANLLGEGVAASDITLTGNTVIDALLMTAAQDSALTVPLDAHKRMVLVTCHRRENFGEPFQDICQALKRLAERNPDIQILYPVHPNPNVKDVAHQLLGRTPNIILCTPLDYAPFVAAIKRSYLIISDSGGVQEEAPALGKPVLVLRTETERPEAVDLGVVKLVGANRDTIVEQAQHLLDDPEAYQGMARGVSPYGDGRAATRIADVLRQHFQPPGPT0018905_2415DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0018905-wecB-K01791NANA
D1-35_025251128hypothetical proteinATGAGAATGATCTACCTGTCCCCGGTGCCATGGGCCAGTTTCAGCCAGCGCCCTCATCATTTCGTCAACTGGTATCACCACCAGACTGGCGCACAGGTGCTCTGGATCGACCCCTACCCGACGCGCTTGCCCATGCTGAACGATCTCAGACGAAAGGCGACTGCTATCGATCAGCAAAGCGTCACCGTTCCGCCCTGGTTGAAGGTTTGCAGCCCGTTGAGTCTGCCCATCGAGCCCCTTCCAGGCTCGGCAATGCTCCTCAAGAGACTGTGGCGCAACGTGTTCAGGTTGGCCGCGGCATTTTCCGCGCAAGGGCCTTGTATGATCTGCGTGGGGAAACCTTCCGAACTGGCCTTGCAACTGCTGGCGCTCAACCCTGCAAGCCATGCCGTATACGATGCCATGGATGATTTCCCGGCCTTTTATCAGGGACTGTCACGCAGATCCATGGAGCGTCGCCAGGCGCAGCTCATTCAACGGGTAAACAAAGTGCTGGCCTCCTCCAGCCATTTGCGCGACAAACTCCTCGGCCTGACCGATCAGGTAGAACTTGCCCTCAATGCCTGTGACATGCACGGACTTGCGCCGGTCGAAAGCCTGGACCTGGCCGCCAAACAACAAGTACTTGGTTATGTCGGCACGCTCGGTCGTTGGTTCGACTGGGACATGGTCACCGCGCTGGCGCAGGCCAATCCTGGAAACCGCATCCGGCTGATTGGTCCCGTCTTCGCACCAGCGCCCTGCGTATTGCCTGCCAACATCGAGCTGCTACCCAGGTGTTCCCATGCCAGCGCAATCGCGGCCATGGCAACGTTTTCGGTAGGCCTGATTCCGTTCAAGCTCAACCGCCTGACCGCCTCGGTCGACCCGGTCAAATACTACGAGTACCGCGCCCTCGGCCTGCCTGTCATCTCGACCCGCTTCGGTGAAATGGCCCTGCGCGACCGGGAGCCGGGCATCTGGATCGTGGATCAAGGCACTGACCTGCGCAACACCGTCGTTGCAGCGCTCGCCAGTCAAAGCGACCATGCCACCGTTCAGCAATTTCGTCAGGCGCATCTCTGGGCCAAGCGTTTTTCGGCGGTCGACCTCATGCCTGCCTCATTGGAGAAACCAGAAGTCTGGTAAMRMIYLSPVPWASFSQRPHHFVNWYHHQTGAQVLWIDPYPTRLPMLNDLRRKATAIDQQSVTVPPWLKVCSPLSLPIEPLPGSAMLLKRLWRNVFRLAAAFSAQGPCMICVGKPSELALQLLALNPASHAVYDAMDDFPAFYQGLSRRSMERRQAQLIQRVNKVLASSSHLRDKLLGLTDQVELALNACDMHGLAPVESLDLAAKQQVLGYVGTLGRWFDWDMVTALAQANPGNRIRLIGPVFAPAPCVLPANIELLPRCSHASAIAAMATFSVGLIPFKLNRLTASVDPVKYYEYRALGLPVISTRFGEMALRDREPGIWIVDQGTDLRNTVVAALASQSDHATVQQFRQAHLWAKRFSAVDLMPASLEKPEVWNANANANANA
D1-35_02526918perR_1HTH-type transcriptional regulator PerRATGCGTACCGATGCCGATGCCCCTTTGATTCTTCCACCGCTGAAAGCAATTCAGGCTTTTGAGCAAACGGCCCGGTTCAGCAATGTCGCCAGGGCGGCGGAAGTGCTGGACCTGACACCGTCCGCGGTCAGTCATCAATTGGCGAAACTTGAAGCGATGATTGGCCGGCAACTGTTTGTGCGTGCCGCGCGGGGCGTCACGCTCACGCCTGTGGGGGAGCAATACCTCAAGGAGGTGTCCGGGTTGCTCCATAGCCTGGCCGTCGCCACTGAACGCGCGGCCAGCGACGTGAGCCTGGACTGCTTGCGCCTGCATTCGGCGCCCAGCTTCGGGTTGTTGTGGTTGATGCCGAGGCTGGAAGCTTTTCGGGCGTCCAACCCTGATATCCAGATCAATCTTTCCTGCTCTTACGAATCGCTGCATTTCAGTCGGGACAAGATTGACGTGGACATCCGCCACGGCACTGCAAACTGGCCCAGTTATGAAGTCCGTACCGTCCAGAACGAGACCTTCGCGGTGCTCGCTTCGCCAAAACTGCTCGCGCAATGCCCGATCCGCAACGCGTCCGATTTGTTGAATTGCGACCTGGTGCTTTCGGAAGCCACGTTGCTCAAATGGCCGCAATGGTTTGCGCAACATGGCCTGGCGCGCCCGGAGAAGCCTTATGCCTTGAGCTTCGACCGGTCGTACATGTCGCTGGAGGCCGCCAGTCATGGCTTGGGGTTTGCCTTGGAAAGCACATTGCTGGCCAAGAAGTATCTTGCCACCGGCAGCCTGGTCGAGGTGGCACCCGAGGCGCTCAGCGCACCGGTGGCTGCCCATCACCTGGTGTTTCCGAAGGCCCACTCGAGCTTCCCCCGCGTCCGGCGTTTTCTGGAGTGGATGGAAAGTGAGCTGGGGCAGGGCTTCGCCTATTGAMRTDADAPLILPPLKAIQAFEQTARFSNVARAAEVLDLTPSAVSHQLAKLEAMIGRQLFVRAARGVTLTPVGEQYLKEVSGLLHSLAVATERAASDVSLDCLRLHSAPSFGLLWLMPRLEAFRASNPDIQINLSCSYESLHFSRDKIDVDIRHGTANWPSYEVRTVQNETFAVLASPKLLAQCPIRNASDLLNCDLVLSEATLLKWPQWFAQHGLARPEKPYALSFDRSYMSLEAASHGLGFALESTLLAKKYLATGSLVEVAPEALSAPVAAHHLVFPKAHSSFPRVRRFLEWMESELGQGFAYPGPT0026360_3181DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566NANA
D1-35_02527750fabG_43-oxoacyl-[acyl-carrier-protein] reductase FabGATGCTTCTTCAAGGCAAAGTCGCAATCATTACCGGCGCCGCATCTGCCCGTGGCATTGGCCGCGCCACCGCTACGACGTTCGCCCGGCACGGCGCCCGCGTCGTGATTCTCGACCTGGATGAATCTGCCGCACGCGATGCCGCCAGCGCCCTGGGCGACAGTCATCTCGGCCTTGCCGCCAACGTCGCCAATGAAGCGCAGGTCCAACGGGCCGTCGCCCGCGCCATCGAACATTTCGGCCGAATCGACGTTCTCATCAACAACGCGGGCATCACCCAACCCCTCAAGACCCTCGATATCCGTGCGTCGGACTACGACAAGGTATTGGACGTCAGCCTGCGCGGCACCCTGCTCATGTCACAAGCCGTGATCCCGCTGATGCGCGAGCAGCAAGGCGGCAGCATCGTCTGCATGTCTTCGGTGTCTGCCCAGCGCGGTGGCGGCATATTCGGTGGGCCACACTACAGCGCCGCCAAGGCCGGTGTACTGGGCCTGGCCAAGGCAATGGCGCGCGAACTGGGCCCGGACAAGGTGCGGGTCAACTCCATCGCCCCAGGTCTGATCCACACCGACATCACCGGCGGCCTCATGCAGGACGAGCGTCGTCACGCAATCATCGAAGGTATTCCGTTGGGTCGCCTGGGTGCGGCCCAGGACGTCGCTAACGCCGCCCTCTTCCTCGCCAGCGACTTATCTTCGTACCTGACGGGCACCACGTTGGATGTAAACGGTGGAATGCTGATTCATTGAMLLQGKVAIITGAASARGIGRATATTFARHGARVVILDLDESAARDAASALGDSHLGLAANVANEAQVQRAVARAIEHFGRIDVLINNAGITQPLKTLDIRASDYDKVLDVSLRGTLLMSQAVIPLMREQQGGSIVCMSSVSAQRGGGIFGGPHYSAAKAGVLGLAKAMARELGPDKVRVNSIAPGLIHTDITGGLMQDERRHAIIEGIPLGRLGAAQDVANAALFLASDLSSYLTGTTLDVNGGMLIHPGPT0005315_475DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_CYCLOHEXANECARBOXYLIC_ACID_DEGRADATION,PGPT0005315-badH-K07535NANA
D1-35_025281320nicT_1Putative metabolite transport protein NicTATGACTACTCTGTCGCTCGAAGCGGTTTCGACCGTGCGCTCCAATGCCTACCGGAAAACGGCCTGGCGGCTGATGCCATTCCTGATGCTGTGCTATTTGTGCGCCTATCTGGACCGGGTCAACGTCGGCTTCGCCAAGCTGCAAATGATGAACGACCTGGCGCTCAGCGAAACCGTCTACGGGCTGGGTGCGGGGATGTTCTTCATTGGCTACTTCCTCTGCGAAGTCCCCAGCAACGTCATCCTGCACAAGGTCGGCGCTCGCGTGTGGATCGCGCGGATCATGATTACCTGGGGCATCATTTCGGCGCTGTTCGCCTTCGTCGAAACGGCCTGGCAGTTCTATGCCCTGCGGTTTCTGCTCGGGGTCGCCGAAGCAGGGCTGGCGCCGGGATTGCTGCTCTATCTCACCTACTGGTTCCCATCCTATCGCCGTGCGCGCATGACTGTGCTCTGGTTCATCGCCATCCCTTTGTCAGGCATGGTGGGCGGTCCGCTCTCGGGCTGGATCATGAACCATTTCGCCGGCGTGCACGGCTGGGCCGGATGGCAGTGGATGTTCGTGCTTGAAGCCATTCCCACCGTCATTGTCGGTTTGCTGGTGCTGAGTTACCTCAAGGACGGCGTCCATCAGGCCCACTGGCTGGACGACGAAGAAAAGGCGTTGGTCAGCGGTGAACTGGCCGAGGACAACCAGCAAAAGGTCACCCATGCCTCGGTGGGCGAGTTCGTCCGCGACCGCCGCCTGTGGTTGTTGGCAGGTATCTATTTCTGCGTCGTCATGGGCCAGTACGCCATCACCTTCTGGCTGCCGACGCTGGTGCGCAACGCCGGGGTTTCCGATCCGCTGCACATCGGTTTCCTGACCAGCCTGCCCTACCTCTGCGCGATCGCGGCCATGTTGCTGATCGGCCGCAGCGGCGACAGGCATCGCGAGCGGCGCTGGCACCTGATCATACCGATGATCGCCGGTGCCATCGGGCTGACGCTCGCCGCGCTGCTGGGTGGCAACATCCTGCTGTCCATCCTGAGCCTGTGCCTGGCGGCATCCGGCATCCTGTCCGCGTCCTCGATGTTCTGGATGCTGCCCACGACCCTCCTCGGCGGGGTGTCCGCCGCCGCAGGCATCGCGGCGGTGAACAGCTTCGCCAACCTCGCCGGCTTCTGCTCTCCCTATCTGATTGGCTGGATCACCACGCAAACCGGCTCCAGCGCCATCGGCATGTACCTGATCACCGCGTACTGCTGGGCGGCGCCTCGCTGGTGCTGCGCATCCCCGCCGCCCTGGTCAATCGTTAAGTTCACCGGAGTTTCACCATGAMTTLSLEAVSTVRSNAYRKTAWRLMPFLMLCYLCAYLDRVNVGFAKLQMMNDLALSETVYGLGAGMFFIGYFLCEVPSNVILHKVGARVWIARIMITWGIISALFAFVETAWQFYALRFLLGVAEAGLAPGLLLYLTYWFPSYRRARMTVLWFIAIPLSGMVGGPLSGWIMNHFAGVHGWAGWQWMFVLEAIPTVIVGLLVLSYLKDGVHQAHWLDDEEKALVSGELAEDNQQKVTHASVGEFVRDRRLWLLAGIYFCVVMGQYAITFWLPTLVRNAGVSDPLHIGFLTSLPYLCAIAAMLLIGRSGDRHRERRWHLIIPMIAGAIGLTLAALLGGNILLSILSLCLAASGILSASSMFWMLPTTLLGGVSAAAGIAAVNSFANLAGFCSPYLIGWITTQTGSSAIGMYLITAYCWAAPRWCCASPPPWSIVKFTGVSPPGPT0002325_8DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-ORGANIC_ACID_METABOLISMP-SOLUBILISATION-TARTARIC_ACID_TRANSPORT,PGPT0002325-ttuB-K13021NANA
D1-35_02529849aptACOG3959Apulose-4-phosphate transketolase subunit AATGACTCGCTCGCTTTCCTCTGCTTCAACCATGTCCCTGACCGAACGCGCCCACAACATCCGTCATCACGCGCTGCGCATGGGTCAGGTCCAGGGCCAAGGCTACGTTGGCCAGGCCCTGGGCGCCGCCGACCTGCTGGCGGTCGCGTACTTCCACGCCATGAACTATCGGCCCGAAGACCCTGAATGGGAACAACGTGATCGCTTCTATCTCTCCATCGGCCACTATGCGATTGCGTTGTACGCGGCATTGATCGAGGCCGAAATCGTTCCGCTCGATGAACTGGAAACCTACGGAGCGGACGACAGCCGCCTCCCCATGTCGGGAATGGCGGCGTACACGCCAGGCATGGAAATCACCGGCGGCTCCCTCGGCCAAGGCCTGGGCATCGCGGTAGGCGCCTGCCTGGGGCTGAAGCGCAAAGGCTCGCCCGCCTTCGTCTACAACCTGCTCTCGGACGGTGAATTGAACGAAGGTTCAACCTGGGAAGCGGTGATGTCGGCGTCGCACTGGAAACTCGACAACCTGATCGCCATCGTCGACGTCAATAACCAGCAGGCCGATGGATACTCCAGCGAAATCCTCTCGTTCGAGCCGATCGTCGATCGCTGGCAAGCCTTTGGCTGGTTTACCCAGCGCGTCGACGGCAACGATCTGGATGCGCTGGTCGCGGCATTCGATGCCGCGCGCAACCATCCCGCCGGACAGCCCCGGGTGATTATCTGCGATACCCGCATGGGCAAGGGTGTGCCATTCCTGGAAAACCGCGAAAAGACCCATTTCATCCGCGTTGAAGAACACGAGTGGGACCTGGCGCTGAACAACCTTGAAGAAGGAAAAAAGTCATGAMTRSLSSASTMSLTERAHNIRHHALRMGQVQGQGYVGQALGAADLLAVAYFHAMNYRPEDPEWEQRDRFYLSIGHYAIALYAALIEAEIVPLDELETYGADDSRLPMSGMAAYTPGMEITGGSLGQGLGIAVGACLGLKRKGSPAFVYNLLSDGELNEGSTWEAVMSASHWKLDNLIAIVDVNNQQADGYSSEILSFEPIVDRWQAFGWFTQRVDGNDLDALVAAFDAARNHPAGQPRVIICDTRMGKGVPFLENREKTHFIRVEEHEWDLALNNLEEGKKSPGPT0011200_9587DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_PENTOSE_METABOLISM,PGPT0011200-tktA|tktB-K00615NANA
D1-35_025301023aptBCOG3958Apulose-4-phosphate transketolase subunit BATGAACAACGCCGCCAACACACCGAACGCGATGGGTGAACCGGGCAAAAAACGCCTCACCACCTCGGCGATGATCGCCTCGATTGCAGCCGAGGGCCAAGCCACGAAACCTGCACCATTCGGACATGCACTGGCTGCATTGGCCGACCAGCGCCCGGACATCGTCGGGCTGTCCGCCGATCTGTCCAAATACACCGACCTGCACATCTTCGCCAAGGCCCATCCGGATCGCTTCTATCAGATGGGCATGGCCGAGCAGTTGCTGATGAGCGCAGCAGCTGGCATGGCCCGGGAAGGTTTCGTGCCGTTTGCCACGACCTACGCGGTGTTCGCTTCCCGTCGTGCCTACGACTTCATCTGCATGGCGATCGCCGAGGAAAACCTCAACGTCAAGATCGTCTGCGGCTTGCCGGGCCTTACCACTGGTTACGGCCCCAGCCACCAGGCCACGGACGACCTGGCGATCTTCCGCGCCATGCCCAACCTGATGATCGTCGACCCCTGCGACGCGCTGGAAATCGAACAGGCCGTGCCCGCCATCGCCGCGCACCAAGGCCCGGTCTACATGCGTTTGCTGCGCGGTAACGTGCCCCTGGTGCTGGACGAGTACGGCTACACGTTCGAAATCGGCAAAGCCAAGACCCTGCGCACCGGCAACGATGTGCTGATCGTTTCCACCGGGTTGATGACGATGCGTGCTCTGGAAGCCGCAAAGCAATTGCAGGCAGACGGCGTCGACGTCGCGGTACTGCACATGCCGACCATCAAGCCGCTGGATGAACACACCCTCCTTGCCGAGGCCAGAAAGCCGGGACGACTGGTGGTGACCGCGGAAAACAGCTCTATCATCGGCGGGCTCGGCGAAGCGGTTGCCGGGGTCCTGCTGCGCAACGGCGTGACGCCGACGTTCAGGCAAATAGCCTTGCCAGACGCCTTCCTCGACGCGGGCGCGCTGCCGACACTGCATGATCGCTACGGCATTTCCACCCAGGCCGTTTGCGCGCAAATCAAAGCCTGGCTTTAAMNNAANTPNAMGEPGKKRLTTSAMIASIAAEGQATKPAPFGHALAALADQRPDIVGLSADLSKYTDLHIFAKAHPDRFYQMGMAEQLLMSAAAGMAREGFVPFATTYAVFASRRAYDFICMAIAEENLNVKIVCGLPGLTTGYGPSHQATDDLAIFRAMPNLMIVDPCDALEIEQAVPAIAAHQGPVYMRLLRGNVPLVLDEYGYTFEIGKAKTLRTGNDVLIVSTGLMTMRALEAAKQLQADGVDVAVLHMPTIKPLDEHTLLAEARKPGRLVVTAENSSIIGGLGEAVAGVLLRNGVTPTFRQIALPDAFLDAGALPTLHDRYGISTQAVCAQIKAWLPGPT0011200_6721DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_PENTOSE_METABOLISM,PGPT0011200-tktA|tktB-K00615NANA
D1-35_02531987aes_2Acetyl esteraseATGCCTGATCAATGGCTCGATCCCGCATTTCGCGGCCTTGTCGCCTCGGGTGCTGAACAATGGTCGCTGAACACGCTGCCGGCCATCCGCACCCGAGTCCATTCGGGCTTCAAACCCGAGCATCGCGCACGATGCGAAGTGCGCTGGATCTCCGGCCCCGATACCGCACGCTTGCGTCTGTGCCTCTATCGGCCGAAAGGCCTCGGGCCAGACGCAAGCCTTCCGGCGATCCTGTCCATCCATGGCGGTGGCTTCGTACTCGGAAGACCCGAGATGGCCGATGACTTCCTGGCCGACCTGGCCGACGAACTGAGTGCGTTCATCGTTGCAGTGGATTATCGACTGGCGCCAGAACATTCCTTTCCAGCGCCCCTTGACGACTGCTACAGCGCCCTCGCCTGGCTGTTCGAAAACAGTCAGGACCTGAGCCTGGATCCCCGGCGCATTGCCGTGATGGGCCATAGCGCCGGCGGCGCCCTCGCCGCCGCATTGGCCATCATGACCCGCGACAGAGCCCGGTTTCCGCTCGCCGGCCAGGTCCTCATCTATCCCATGCTCGATCACCGCACAGGCTCAGCGCAATCACCCTATCCCAGCGGGCAGACCGGGACGTTCAGTTGGTTGCCGGAGCCCAATCAGTTCTGCTGGAGATGCCTGCGCGGTGGCTACGCCCTGGACGATGAACGTGTCGGTCTGTTTTCCCCGGCCCTGCAACCCGACCTGCGCAACCTGCCGCCGACGTTCATTGCCGTCGGCTCTCAAGACCTGTTCCTTGAGGAGGACGTCGATTTTGCAATGCGGCTGTCTCGCGCCGGAGTTGCCATGGAACTCCACGTCTATCCTGGCGCCCCGCATATGTTCGACCAAGTGCCAGGGCGCATCGCGGATCAATTGACCCTTGATATCGTCCGGGCGTTGAAAGGACTTTTGAGCAGCAGTCATGCTTGCCCTCCCTGTCCATCAGCCAGCGCCGCGCCGTTGAGGTAAMPDQWLDPAFRGLVASGAEQWSLNTLPAIRTRVHSGFKPEHRARCEVRWISGPDTARLRLCLYRPKGLGPDASLPAILSIHGGGFVLGRPEMADDFLADLADELSAFIVAVDYRLAPEHSFPAPLDDCYSALAWLFENSQDLSLDPRRIAVMGHSAGGALAAALAIMTRDRARFPLAGQVLIYPMLDHRTGSAQSPYPSGQTGTFSWLPEPNQFCWRCLRGGYALDDERVGLFSPALQPDLRNLPPTFIAVGSQDLFLEEDVDFAMRLSRAGVAMELHVYPGAPHMFDQVPGRIADQLTLDIVRALKGLLSSSHACPPCPSASAAPLRNANANANANA
D1-35_02532387hypothetical proteinATGTCCCATTCACACTCCCAGGGTCGCAACGACCTCGCCCATGCCCGCCACGTCGAGGCGGCTCTGCTTGACTACCTGCGCGGGCAGAGCGCGCGACATGAAGCCCTGGTGGTCGCCGCGGTCGGTGACCTGCGTATCCGTATCGACGCTGCCGATGCGTTGCTCGAACGCGCCAACGCTTCCCAATCGTCCGCCATTGCCTTTCGTCTGGCTGCTGCCGAGGCGGCGCGTGTCGGCGCCCATCTATTCTTCGAGCTGGCCGGGCGCAGCTTGCCGCGGCCGTTGCCGGATGCAGCCGAGCCGGCGTTGCTGACCCAGCGTCGGCTGCTGGGCGACCATTACCTCAACGGCGCGGCGCTGGCTGATGGACAGGGAGGGCAAGCATGAMSHSHSQGRNDLAHARHVEAALLDYLRGQSARHEALVVAAVGDLRIRIDAADALLERANASQSSAIAFRLAAAEAARVGAHLFFELAGRSLPRPLPDAAEPALLTQRRLLGDHYLNGAALADGQGGQANANANANANA
D1-35_025331233soxC_1Dibenzothiophene desulfurization enzyme CATGAGCCATTCAGCGACTATTGATCCGTCCGAGCAGGTTCGTCCGGTGCCTCGGCGCCCGGCCCATCTCATTCGCAGCGACGCCGAGGCGATCGCGGTGGCGCACCGTGTGGCCGGGGATTTTGCTCGCGAGGCGGCAACCCGCGACCAAGAACGACGACTGCCCTGGGAAGAACTCGAACGCTTTTCCGAAAGCGGGTTGTGGGCGATCAGCGTGCCGAAGGCCTACGGTGGCGCCGGGGTGTCCTATGTCACGCTGAGCGAAGTGATCGCCATCATCTCCGCAGCCGATTCCTCCCTCGGCCAGTTGCCGCAAAACCATTTTGGTGTACTCAGCAATCTTGGCTTGACCGGCAGCGAAGAGCAGAAGCGGCGCTACTACGCCAGGGTGCTCGAGGGGTATCGCTTTGGTAACGCTTTTTCCGAAGCGCGAAGCCAATACGTCACCACGTTCCAGACGCAGATTCGCTTCGAGGGGGACACGGCGGTACTTGATGGAGAAAAGGCCTACTGCACCGGTGCATTGTTCGCTCATATCGTGCCGGTAGCCGCGGTGGACGAGGCGGGGCATGTGCATATCGCGCTGGTTCCGCGCGATGCCGCCGGACTGACGGTGATCGACAGTTGGGACGGTTTCGGCCAACGCATCACCGCCAGCGGCCAGGTGCGCATCGAAGGCGTACGCGTGCCTGCCCGCGACGTGGTACCTGCCTGGAAAGCCTATGACCAGCCCACTGCCGATGGTCCGATTTCGCAGATCATCCAGGCCGCGGTGGACACCGGCATTGCCCGGGGTGCCTTCGCCGAGACCCTGCGTGTCGCCCGCCAGGCGCGTCCTTGGGTCGACAGCGGCCTGCAACACGGTTGGCAGGATCCGCTAGGCCAAGCGCTGATCGGCGAGCTGGCCTGGCGGCTGCAAGCGGCCGAGGCGATTTTGCAGCGCGCGGCCCAAGCGGTCGATCTTGCGGTCGCCGAGCCCAGTGAGGAACGGGTCGCCGAAGCCTCTGTGGTCGTAGGCCAGGCCAAGGTGCTGTCCACCGAGATTGCCCTTGAGGCTTCCAGCCGCCTGCTGGAGCTGGGCGGCACGCGCAGCGTCTCGGCCAGCCAGGGCCTGGACCGGTTCTGGCGCAATGCGCGGACTCACACCCTGCATGACCCGGTGCGCTGGAAATATCACTTGGTCGGCAACCAGCTTCTCAATGACATCAAGCCGCAACGTCACTCCTGGAACTGAMSHSATIDPSEQVRPVPRRPAHLIRSDAEAIAVAHRVAGDFAREAATRDQERRLPWEELERFSESGLWAISVPKAYGGAGVSYVTLSEVIAIISAADSSLGQLPQNHFGVLSNLGLTGSEEQKRRYYARVLEGYRFGNAFSEARSQYVTTFQTQIRFEGDTAVLDGEKAYCTGALFAHIVPVAAVDEAGHVHIALVPRDAAGLTVIDSWDGFGQRITASGQVRIEGVRVPARDVVPAWKAYDQPTADGPISQIIQAAVDTGIARGAFAETLRVARQARPWVDSGLQHGWQDPLGQALIGELAWRLQAAEAILQRAAQAVDLAVAEPSEERVAEASVVVGQAKVLSTEIALEASSRLLELGGTRSVSASQGLDRFWRNARTHTLHDPVRWKYHLVGNQLLNDIKPQRHSWNNANANANANA
D1-35_02534777livF_2COG0410High-affinity branched-chain amino acid transport ATP-binding protein LivFATGACCATTGCGGCCCTTGCGGGCACCGCAAGCAGCGAGTTGCTGGCGGTACACGACATCGAAGTCATCTACGACGGCGCGATCCTCGCCGTGGCCGGGGTTTCCCTGCGGGTCGGGCAGGGCGACATCGTTGCGCTGCTGGGCGCCAACGGGGCTGGCAAGAGCACCACGCTCAAGGCCGTTTCCGGGTTGGTCCAGGCTGACCGTGCGCAAGTCAGCCGCGGCCGGATCACTTTCCAGGGGCAGGATACCGCCGGCGTCGCAGCCAACCTGCTGGCCCGCCAGGGCATTGTCCATGTGCTGGAGGGGCGCCACGTGTTCGCCCACCTGACCGTCGAGGACAACCTGCGCACCGGCGGTTTCCTGCGTAACCCGACGCGCCGGGAACTGGAACAGGATCTGGAGCGCATCTACGCCTGGTTCCCACGTCTCAAGACCAAGCGCAAGACCCAGGCCGGGCTGACCTCCGGTGGCGAGCAGCAGATGCTTGCCATCGGTCGGGCGCTGATGACCCGACCTCGGCTGGTATTGCTGGATGAACCTTCGATGGGGCTGGCGCCGATCCTCGTCGAGGAGATTTTTGCCATCGTCGCCCAGCTCAATGCCCAGGAAGGCATGAGCTTCCTGGTGGCCGAACAGAACATCAACGTTGCGCTGCGCCATGCCACCTACGCCTACGTCCTGGAAAACGGTCGGGTCGTGGGTGAGGGCAGCGGTGCGGAGTTGGCGGCGCGGGAAGACATTCAGCAGTTCTATCTGGGCGGCAAGACCGGTTGAMTIAALAGTASSELLAVHDIEVIYDGAILAVAGVSLRVGQGDIVALLGANGAGKSTTLKAVSGLVQADRAQVSRGRITFQGQDTAGVAANLLARQGIVHVLEGRHVFAHLTVEDNLRTGGFLRNPTRRELEQDLERIYAWFPRLKTKRKTQAGLTSGGEQQMLAIGRALMTRPRLVLLDEPSMGLAPILVEEIFAIVAQLNAQEGMSFLVAEQNINVALRHATYAYVLENGRVVGEGSGAELAAREDIQQFYLGGKTGPGPT0020785_1349DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020785-livF-K01996NANA
D1-35_025351335hypothetical proteinATGCATGCAACTTTAAAACGCAGCCTCGCTGCCATCGGCCTGGCACTGGGTGCCTGCGCAACGCTGGTACCGGTTGCCCAGGCGGCCAACGAACAGTTCTTCCCCCTGGCCACCTACCGGGTCGGCGCCTATGCCTCCAGCGGCATTCCGGTGTGGGCCGGAATGATCGACTATCTGCGCTACATCAACGAGGTGGAAGGTGGGATCAACGGTGTCAAGCTGGTCTGGCAGGAGTGCGAGACCGAATGGACGGCGGAAAAAGGCATCGAGTGCTACGAGCGCTTCAAGAACGGCCTCAACGGCGCGCCGGTGGCGGTCTACCAGCCCAACGGTGCACCGGCGGCCTATGCCCTCGCGGACAAGGCCGAAGCCGACCGGATTCCGCTGATCACCCTCGGCTATGGCCGTACCGAGGCCACCGATGGCAGGGTGTTCCCCTACAATTTCCCGGCCATGCTGACGTTCTACAGCGAGGCCTCGGCATTCATCAATTATGTGGCTGAGCGTGAGGGCGGGCTGGACAAGCTCAAGGGCAAGAAGATCGCCACCGTCTACCATGACTCGGCCTATGGTCGGGAAACCCAGGGGCCGCTGGCGCTGCTGGCGCAGAAGTATGGCTTCGAGAACATCCAGATCGCGGTGGCGGATCCGGGCAACGAACAGGCCGGGCAGTGGCGCCATGTGCGGCAGCTCAAGCCGGACTGGGTGTTCCTGCGTACCTGGGGTGTATCCACGCCGGTGGCGATCAAGACCGCGGCGCGTTTTGGCTACCCGGTGGAGCGCATCGTCGGTGACATCTGGGCCAGTTCCAACGAGGACGTGTTGCCGGCCGGCGAGGCCGGCAAGGGCTACCTGGCGTTGACACCCTATCCAGGCGGTGCCGATTTCGACATCCACCAACGCATTCGCCAGTACATCCTCGATACCGGCAAGAGCGATCTCAAGGATCCGAAGAGTTTCGGCAGCGTCTATTACAACTCCGGCCTGGTGAATGCCGCCATTGCCGTCGAGGCGATCCGCACCGGGCAGAAGAAGTTCGGCAATCGTCCGCTCAACGGTGAGGAAGGTCGCTGGGGCCTGGAGCATCTCGACCTCGATGACGCCCGTCTCGAGGAGATCGGTTTCCTTGGACTGATGCAGCCGCTGAAGCTGTCTTGCAGCGACCATGAAGGTGGCGGGGCAGCCAAGGTACAACAATGGGACGGCGAGCAATGGAAACTGATCACCGACTGGGTCCAGGCCGACCGCGCGACGTTGCGCCCATTGATCGACGCCAAGGCCGCCGAGTATGCGAAAGAAAAGGGCGTAACGGCCCGCGATTGCGCGGCGCAGTAGMHATLKRSLAAIGLALGACATLVPVAQAANEQFFPLATYRVGAYASSGIPVWAGMIDYLRYINEVEGGINGVKLVWQECETEWTAEKGIECYERFKNGLNGAPVAVYQPNGAPAAYALADKAEADRIPLITLGYGRTEATDGRVFPYNFPAMLTFYSEASAFINYVAEREGGLDKLKGKKIATVYHDSAYGRETQGPLALLAQKYGFENIQIAVADPGNEQAGQWRHVRQLKPDWVFLRTWGVSTPVAIKTAARFGYPVERIVGDIWASSNEDVLPAGEAGKGYLALTPYPGGADFDIHQRIRQYILDTGKSDLKDPKSFGSVYYNSGLVNAAIAVEAIRTGQKKFGNRPLNGEEGRWGLEHLDLDDARLEEIGFLGLMQPLKLSCSDHEGGGAAKVQQWDGEQWKLITDWVQADRATLRPLIDAKAAEYAKEKGVTARDCAAQPGPT0020765_808DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020765-livK-K01999NANA
D1-35_025361065hypothetical proteinATGACCGCTACTGTTGCGCGCCTCACTGCCAGCTTCGACGACTCACCCCTGACCCTGGTGCGCCGGCGTTGGCGGCCGGGCCTCTTGTTGCTGCTACTGGTGGCTTTTATCGGGTTGCCGTGGCTCGGTAATGACTATTGGCTCAACGCGATCCTGATTCCCTTCCTGGTGCTGTCGCTGGCAGGCGTGGGGCTGAACCTGTTGACCGGCTACACCGGCCAGACCTCGGTCGGCGCCGCCGGCTTCATGGCCGTGGGCGCGTTCGCCACATACGGCCTGCTGCTGCGCGTGCCCGTGCTGCCGTTGCCACTGGCGCTGCTTGGCGGTGGAGTGATTGCCGGGTTGGTCGGGCTGCTGTTCGGCATCCCCAGCTCCCGGATCAAGAGCTTTTACCTGATGGTCACCACGCTGGCCTCGCAGTTTTTCCTGGAGTGGGTGTTCGCCAAGTTTCCCTGGTTCTACAACTACGCCTCGTCCGGCACCATCAGCGCGCCACGCCTGGAGCTGTTCGGCCATAACCTCGGCACCCCGGTCGGTCGCTACCTGTTGACCCTCAGTTGCGTGGTGCTGTTGACCTGGGTGGCGGTCAACCTGGTGCGCAGCCAGATTGGCCGCAACTGGATGGCCATCCGGGACATGGACACCGCTGCCGCTGTCATCGGGATCGCCGTGGAGCGCGACAAGCGCATGGCCTTCGCCGTCAGTTCGTTCTACCTCGCAATCGCCGGGGCGCTCTGGGCGTTCGCGTACCTGGGGACGGCCAGTGCAGGCAGCTTCGACATCAATCGTTCGTTCCAGATTCTGTTCATCATCATTATCGGTGGCATGGGCAGCATTGCCGGCAGCTTCATCGGCGCGGCCTTCATCAGCCTCGTGCCGATCCTGCTCAGCCATGCCGGCCTATGGCTGTTCAACGGCAACGTCGATGCCGGGCAACTGCAGAACCTGCAGAAGGTGCTCTTCGGTGGCCTGATCATCTGGTTCCTGATCAAGGAGCCGGAAGGGCTGGCACGCCTGCTCGGCGACCTGCGTGAACGCATCAAGGTCTGGCCGCTGCGGTTCTGAMTATVARLTASFDDSPLTLVRRRWRPGLLLLLLVAFIGLPWLGNDYWLNAILIPFLVLSLAGVGLNLLTGYTGQTSVGAAGFMAVGAFATYGLLLRVPVLPLPLALLGGGVIAGLVGLLFGIPSSRIKSFYLMVTTLASQFFLEWVFAKFPWFYNYASSGTISAPRLELFGHNLGTPVGRYLLTLSCVVLLTWVAVNLVRSQIGRNWMAIRDMDTAAAVIGIAVERDKRMAFAVSSFYLAIAGALWAFAYLGTASAGSFDINRSFQILFIIIIGGMGSIAGSFIGAAFISLVPILLSHAGLWLFNGNVDAGQLQNLQKVLFGGLIIWFLIKEPEGLARLLGDLRERIKVWPLRFPGPT0020775_4789DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020775-livM-K01998NANA
D1-35_02537882livH_2COG0559High-affinity branched-chain amino acid transport system permease protein LivHATGAATTTCTTTCTGGAAACCCTGGTTGGCGGGCTGCTGGCCGGCACTCTGTATTCACTGGTGGCCATCGGTTTCGTGCTGATCTACAAGGCCAGCGGCGTGTTCAATTTTGCTCAGGGCGCAATGCTGCTGTTCGCCGCGCTGACCTTCGTCAGCTTGCGTGAGCAGGGCCTGTCTTTTGCCCTCGCGTTGGTCCTGACGGTGCTGGTGATGATCGTCGGCGCGTTGTTGATCGAGCGCCTGGTGCTGCGGCCGTTGGTCAACCGATCGCAGATCACCCTGTTCATGGCCACCCTCGGCCTGTCGTTCATCATTGAGGGCCTGGCCCAAGGACTGATGGGCGCCCAGGTGCGTGCGCTGGACCTGGGCATCGAGGACGTCCCGCTGTACGTGGGGGAGATCATGGTCAGCCAGTTCGACTTGATCGCTGCTGGAGTGTCGGGGCTGACGGTGGCGGTGCTGGCCTTGCTGTTCAACAAGACCCGCATCGGGATCGCCCTGCGCGCCGTGGCCGATGATACCCGTGCGGCGTTGTCGCTGGGCATCAACCTCAATCGCATCTGGCAGATTGTCTGGGCCGTGGCCGGAGTGGTCGGCCTGGTCGCCGGGTTGCTCTGGGGCGCGCGGCAGGGCGTGCAGTTCTCGCTTTCGCTGGTGGTGCTCAAGGCACTGCCGGTGCTGATCATCGGCGGCTTCACCTCGATCGGCGGGGCCATCGTCGGCGGGCTGATCGTCGGTGCGGCGGAGAATCTTGCCGAGGCTTACATCGGTCCGCTGATCGGCGGAGGCATCACGCCCTGGTTCGCCTATTTCCTCGCCTTGATCTTCCTCTACATCCGTCCGTCCGGCCTGTTCGGCGACCGGATCATTGAACGGGTATGAMNFFLETLVGGLLAGTLYSLVAIGFVLIYKASGVFNFAQGAMLLFAALTFVSLREQGLSFALALVLTVLVMIVGALLIERLVLRPLVNRSQITLFMATLGLSFIIEGLAQGLMGAQVRALDLGIEDVPLYVGEIMVSQFDLIAAGVSGLTVAVLALLFNKTRIGIALRAVADDTRAALSLGINLNRIWQIVWAVAGVVGLVAGLLWGARQGVQFSLSLVVLKALPVLIIGGFTSIGGAIVGGLIVGAAENLAEAYIGPLIGGGITPWFAYFLALIFLYIRPSGLFGDRIIERVPGPT0020770_6600DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020770-livH-K01997NANA
D1-35_02538771lptB_3COG1137Lipopolysaccharide export system ATP-binding protein LptBATGAATGCGCTGTTGGAGGTGCGTAATGTGTCGCTGTCGTTCAGGGGCGTGAAAGCGATTTACGACCTCTCGTTCAGCGTCAGGCTTGGCGAGATCTGCGCGTTGATCGGGCCGAACGGTGCGGGCAAGAGTTCGTTGCTGAACATCCTCAACGGGGTCTACCGGGCCGATGCCGGCCAGGTGTTCTTCGCTGCCGAACCGTTGCGCCGTCCGCATCCACTGAAAGCGGCGCGGCTTGGTATCGGCCGGACGTTCCAGAACAACGCGCTGTTCAAGAAAATGAGCGTGGTGGACAACCTGCTTACTGGCCTGTCGCGCTTGCAGCGTACGTTTTTTCTCGAGCAGGCCTTGGGCTTGCCGCGCGCCCGGCGCGAGGCGCGGGCGTTCGCCGAGCGGGCCGAGCAGGTGCTGGAGTTCCTCGAACTGCAGGCCTGGCGTGACGTAGCGGTGGGCAGCCTTGCCTACGGTTTGCAGAAACGCGTGGAGCTGGGCCGGGCACTGATCGCGCAGCCGACCCTGCTGTTGCTCGACGAACCGATGGCCGGCATGAACGCTGAAGAAAAACAGGAGATGAGCCGCTTTATCGTCGATATCAATCGCGACCTTGGCACCACGGTGATTCTCATCGAGCACGACATTCCAGTGGTCATGGGGCTGTCCAGCCATGTGGTGGTGCTGGACTACGGACGCAAGGTCGGTGACGGCACGCCCGCGCAGGTGCAGGCCAACCCCGATGTGATCGCCGCTTACCTGGGGGCCTCGCACTCATGAMNALLEVRNVSLSFRGVKAIYDLSFSVRLGEICALIGPNGAGKSSLLNILNGVYRADAGQVFFAAEPLRRPHPLKAARLGIGRTFQNNALFKKMSVVDNLLTGLSRLQRTFFLEQALGLPRARREARAFAERAEQVLEFLELQAWRDVAVGSLAYGLQKRVELGRALIAQPTLLLLDEPMAGMNAEEKQEMSRFIVDINRDLGTTVILIEHDIPVVMGLSSHVVVLDYGRKVGDGTPAQVQANPDVIAAYLGASHSPGPT0020780_5741DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020780-livG-K01995NANA
D1-35_02539972hypothetical proteinATGAGTGTTTTCGAACTCAATGCTCCATTGCCCGAAAGCGTGACGGACAGCGCCCTCGTGGCGTTGCAGCGCTGGGCCAGGGAGCGTCCGACGCAGATCGCCATGCGTCATCGACGCCTCGGCGTCTGGAAGGCCTGGCGGTGGATCGATGTGCAACGCGAGGTCGAGCGGGTTTGCGATGGCCTGCGCCAGCAAGGCTTCGTCCCTGGCGCACGGTTGGCATTGAGCGGTGCCTTCGAGCCGAGCCTGCTGATTCTGACATTGGCGGCGCGCCAGCTGGGTGGACACAGCGTGGTCGTCGACCGCGACAGTCAGGGCGAGGATCTGCAACGCCAGTTACGTCTGATCCGCCCTGCGTTCGCCTTTGTCCAGCGCCGCGAAAGTGTCTCGCACTGGCTGCAATGCGGCCTGGATGAAGAGTGGCCGCTGCGGCTGTATTCGGCCCAGGCCAGTGCGGCGCGTCGTGGCCTGTGGCAGGTGCAGTCACTGTCGGTGCTGTTCGTCACCGAGGCGCCGGCAGCGCAGCGCCAGGGCTGGGCCCAGGTCGCCAAGGACGCGGTGGTTTGGATCGATGAGGGCACTGAATGGCCTGATGGGCTGACTCATCTGTTCCGTCGCTGGCTGGAGGGCGGCGAAGGCCTGGCCTTTCCGGAAGCGCGCGAGTCAGCCAGCCGCGATCGCCGCGAGATTGCCCCGACGGCCTTGCTGTTGTCCGCTGCGCGAGTCGAATCGCTGGCGGCGGAAATCGAAGCCCGGCTGCCGATTGCAGGCAGTTGGCGGCGACGCCTCTGCGAATGGACCCTGGATGATCCGCGACGTGGTCTGCGCCGCTGGCTCAAGGCGCGGGTGCGGCGTCTGCTCGGGTTCCAGCGGCTGCGCCGGATCGAGGTGCCAAGCGCGCCCGCAAGCGCCTTGTTGCAAGGCTCGGCGCGCCAGGCCTGGTTGCAGGAATATCTGGAGCGAGCAGCATGAMSVFELNAPLPESVTDSALVALQRWARERPTQIAMRHRRLGVWKAWRWIDVQREVERVCDGLRQQGFVPGARLALSGAFEPSLLILTLAARQLGGHSVVVDRDSQGEDLQRQLRLIRPAFAFVQRRESVSHWLQCGLDEEWPLRLYSAQASAARRGLWQVQSLSVLFVTEAPAAQRQGWAQVAKDAVVWIDEGTEWPDGLTHLFRRWLEGGEGLAFPEARESASRDRREIAPTALLLSAARVESLAAEIEARLPIAGSWRRRLCEWTLDDPRRGLRRWLKARVRRLLGFQRLRRIEVPSAPASALLQGSARQAWLQEYLERAANANANANANA
D1-35_025401416dmoA_1Dimethyl-sulfide monooxygenaseATGCCACGTGAAATTCGTTTCAATGCCTTCGAGATGAACTGCGTCGGCCACCAGTCTCCAGGGCTCTGGCGACATCCCCTGGATCGTGCCTGGCAGTATAAAGACCTGGATTACTGGACCGACCTGGCCAAACTGCTGGAGCGCGGCAAGTTCGACGGCATCTTCATTGCCGATGTGATCGGTATCTACGATGTGCTCGGCGGCAATGGTGACGCCGCGATCCGCCAGGCGACCCAAGTCCCGGTCAATGATCCACTGGCGCTGATCACGCCGATGGCACTGGTGACCGAGCACCTGGGTTTCGGCCTGACCGCCTCGTTGACCTTCGAGCATCCCTATCCCTTTGCCCGCCGCCTGTCGACATTGGATCACCTGACCAAGGGGCGCATCGGTTGGAACATTGTCACGTCTTACCTCGACAGCGGCGCGCGTAACCTCGGCCAGAAGGCGCTCAGTGATCACGATGCACGCTACGACTACGCCGACGAATACCTCGAGGTGCTCTACAAACTGTTCGAAGGCAGTTGGGAGGAGGGCGCGGTGGTGCGCGACCGTGAGCGCGGCATCTTCAGCGACCCGGGCAAAGTCCATGAGATCCGTCACCAGGGCAAGCACTTCCAGGTGCCGGGTATCCACCTTTGCGAGCCGTCGCCGCAGCGCACGCCGGTGCTCTACCAGGCAGGGGCATCGAGCCGTGGCAAGGATTTCGCCGCCGGCCATGCGGAATGTGTATTCGTCGCGGCGCCGTCGAAGGTCATCCTGAAAAAGACCGTGGCCGATATCCGCCGACGTGCCGCCGAGGCCGGGCGTGATCCGCGCAAGGTGCTGATCTTCAACCTGCAAACGGTGATCGTCGACGAGACCGATGCCAAGGCACAGGCCAAGTGGCGGGAGCTGAAATCCTACAGCAGCTATGAGGGCGCGCTGGCGTTGGTTTCCGGCTGGACTGGCATCGATTTCAGCCAGTACCGACCCGACCAGGTGCTCAAGCACATCCATACCAACGCCATTCAATCGGCCGTGGAAACCTTCTCCACCGCCGACCCCGACAAACAATGGACAGTCCAGGAACTGGCCGATTGGGTCGGCATCGGCGGCTTTGGTCCGTTGATCGTCGGCGGCGCGCAAACCGTCGCCGACGAGTTGCAGGCCTGGGTCGAGGAAACCGATGTGGACGGCTTCAACCTGGCCTACGCCCTGGCCCATGAGACCTTTCGCGACGTGGTCGAGCTGCTGGTGCCCGAACTCCAACAACGCGGCGTGTACAAGACCGACTATCGCCCTGGCACCCTGCGCGAGAAGCTGTTCGGCGACGGCCCGCGCCTTCCCGCCAGCCACCCGGGCGCTGGTTATCGGGACTTGAATCGCCTGGCCCCGCGCGCTCGTGTCGCTGAGCCGGCCCTGGTTGAGGAGTAAMPREIRFNAFEMNCVGHQSPGLWRHPLDRAWQYKDLDYWTDLAKLLERGKFDGIFIADVIGIYDVLGGNGDAAIRQATQVPVNDPLALITPMALVTEHLGFGLTASLTFEHPYPFARRLSTLDHLTKGRIGWNIVTSYLDSGARNLGQKALSDHDARYDYADEYLEVLYKLFEGSWEEGAVVRDRERGIFSDPGKVHEIRHQGKHFQVPGIHLCEPSPQRTPVLYQAGASSRGKDFAAGHAECVFVAAPSKVILKKTVADIRRRAAEAGRDPRKVLIFNLQTVIVDETDAKAQAKWRELKSYSSYEGALALVSGWTGIDFSQYRPDQVLKHIHTNAIQSAVETFSTADPDKQWTVQELADWVGIGGFGPLIVGGAQTVADELQAWVEETDVDGFNLAYALAHETFRDVVELLVPELQQRGVYKTDYRPGTLREKLFGDGPRLPASHPGAGYRDLNRLAPRARVAEPALVEEPGPT0003040_10DIRECT EFFECTBIO-FERTILIZATIONSULFUR_ASSIMILATION|MINERALIZATIONS-ASSSIMILATION-SULFUR_METABOLISMS-METABOLISM-ALKANESULFONATE_DEGRADATION,PGPT0003040-ssuD-K04091NANA
D1-35_02541948hypothetical proteinATGAAGCCCGGCCAATTCTTCCAACGTCTACTGCTCGGCACATTGTTTGCCGCACCGTTGGCCCAGTCCGCCGAGCCATTGGTACTGCATGTCGGCGACCAGAACTATTACAACGTCCGGGCTTCGGTGGAGGCTTCGGGTGTGCTTGAGGGCGCCCCCTATCGCGTCGACTGGAAGCACTTCCAAGCGGCCGCGCCACTGGCCGAGGCGCTGAGTACCGGTGACCTGGACCTGGGTTTCCTCGGCGATTCGGGCTTTTTGTTCCTGGCAGCCAAACAGGCACCAGTGAAGTTGATCGGCGTCTCGCGGCAGAACCCTAACACCATCGCGCTGCTCGTGCCCAAGGACTCGCCGGTCAAGACCATCGCCGACCTCAAGGGCAAGAAGGTCGCCTATTGGCCCGGGGCGTGGAGCCAGCAACTGACACTGCGCGCCCTGGAACGGGCCGGCTTGCCGGAAGACCACGTCGACTTCATCAAGCTGATGCCCATTGATGCAGCCGCTGCCTTGCCCCAGGGCAGCATCGATGCCTTTCCGGTGTGGGAGCCCTACATCTCGCAACAGATCCTCTTCTCCGGCGCCCGGCCGATCCTGACGGCGAAGGACCTCATGCCCGGCCTCAGCGCCATAGCCGCCTCGACGCCGGCCATCGACAGCAAGCGTGAAGCCATCGCCGACTTCCTCGGCCGCGTGAAACAAGCCCGCGCCTGGGTCGACAACCACACCGACCAATACGCGGACCTCTGGGCAAAGAAGGCCAATCTTGACCAGGACGTCTCGCGCCATTGGTTGCGCCAGGCCCACATGAGCGTTGGTCCGGTGGACCAGCAGTCCGCCGCCGACCTGCAGAGCACGGCGGACTTCCTGTTCAAGGTCAAGGCGCTACCGGCTCCGCTGGCCACTGCTGGCGTTATCGACACGTCCTTCAACCAAGCCTTCAGCCATTGAMKPGQFFQRLLLGTLFAAPLAQSAEPLVLHVGDQNYYNVRASVEASGVLEGAPYRVDWKHFQAAAPLAEALSTGDLDLGFLGDSGFLFLAAKQAPVKLIGVSRQNPNTIALLVPKDSPVKTIADLKGKKVAYWPGAWSQQLTLRALERAGLPEDHVDFIKLMPIDAAAALPQGSIDAFPVWEPYISQQILFSGARPILTAKDLMPGLSAIAASTPAIDSKREAIADFLGRVKQARAWVDNHTDQYADLWAKKANLDQDVSRHWLRQAHMSVGPVDQQSAADLQSTADFLFKVKALPAPLATAGVIDTSFNQAFSHPGPT0003025_3052DIRECT EFFECTBIO-FERTILIZATIONSULFUR_ASSIMILATION|MINERALIZATIONS-ASSSIMILATION-SULFUR_METABOLISMS-METABOLISM-ALKANESULFONATE_TRANSPORT,PGPT0003025-ssuA-K15553NANA
D1-35_025421272nepI_2COG2814Purine ribonucleoside efflux pump NepIATGACTGACTGTGTGTGTAATGCCGGACCCGGCAGCCATTCCGGCGTCGGGCCGGATGTGGAGCCGACAACCCCCGCGTGGATGGCCGTTTTCTCGCTGGCAATGGGCGTGTTCGGATTGCTGACCGCCGAGTACCTTCCGGCCAGCCTGTTGACGCCGATGGCGACCGACCTGGGAGTGTCCGAAGCGTTGGCTGGCCAGGCGGTAACGGTGACCGCAGTGGTTGCGTTGTTCGCTGGGCTGTTGGTGCCAGGCCTGACCCGCGGCATCGACCGCCGCTGGGTGCTGCTGGGTTTCTCCACGTTGATGATCGCATCCAATCTACTGGTCGCCGTTTCTTCCAGCCTCGCGGTGCTGTTGCTGATGCGTATCTTGCTGGGCATTGCCCTTGGCGGGTTCTGGAGCATGGCGGCAGCGGTGGCGATGCGCCTGGTACCGGCGGCTTTGTTGCCCCGAGCGCTCTCGATCATTTTCAGCGGCATCGCCATCGGGACGGTGGTTGCGGTCCCGTTGGGTAGCTACCTGGGCGGGCTGTATGGCTGGCGCAGCGCGTTCTTTGCAGCGGCGGCGGTAGGTGTGGTGACCCTGGCTTTCCAGTCGTTCACGCTGCCGCGCCTTGCGCCACGCAGGCCGGCACGCCTGCGCACCGTACTTGAAGTGTTGCGGCGCCCGGGCATCGCCATGGGCATGTTCGCTTGCGTGCTGGTGCACAGCGGCCATTTCGCGATGTTCACTTATGTCCGGCCATTTCTCGAAGGGACTACCGGCATCGACGCGCAAGGGCTGTCGCTGATGCTGCTGGGTTTCGGTGTGGCGAACTTCGCCGGCACGCTCCTGGCCGGGTGGGTGCTTGAGCGTCATCCGCTGGCCACCCTGGTATTGATGCCGGCGCTGGTAGGCGTTGCCGCACTGGCGTTGGTGCTGTTGCCGGCCTCGGTGCCGGGCCAGGCGGTGCTGCTGGCAATCTGGGGCCTGGCCTTTGGCGGTGTGCCGGTGGCGTGGTCGAACTGGGTCGCCAGCGCGGTGCCTGATCAGGCGGAAAGCGCCGGGGGCATGGTGGTGGCGTCCGTGCAGTCGGCCATCGCAACGGGCGCTGCCGCTGGCGGTGCAATGTTCAGCCTCGGTGGCAGCGCCGGCGTATTCGTCGCGGCGGCTGTGCTGATGCTGCTGGCTGCGTTGCTGATTGCGTTGCGGGTGCGGGTTCGTTCTGTCCATGGCAATGCCCAGGCCACGACGGCGTCGCTCATTGCCAATCCGTCGCAACGGCAGTGAMTDCVCNAGPGSHSGVGPDVEPTTPAWMAVFSLAMGVFGLLTAEYLPASLLTPMATDLGVSEALAGQAVTVTAVVALFAGLLVPGLTRGIDRRWVLLGFSTLMIASNLLVAVSSSLAVLLLMRILLGIALGGFWSMAAAVAMRLVPAALLPRALSIIFSGIAIGTVVAVPLGSYLGGLYGWRSAFFAAAAVGVVTLAFQSFTLPRLAPRRPARLRTVLEVLRRPGIAMGMFACVLVHSGHFAMFTYVRPFLEGTTGIDAQGLSLMLLGFGVANFAGTLLAGWVLERHPLATLVLMPALVGVAALALVLLPASVPGQAVLLAIWGLAFGGVPVAWSNWVASAVPDQAESAGGMVVASVQSAIATGAAAGGAMFSLGGSAGVFVAAAVLMLLAALLIALRVRVRSVHGNAQATTASLIANPSQRQPGPT0021090_15DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021090-nepI-K03445NANA
D1-35_02543966rclR_1COG2207RCS-specific HTH-type transcriptional activator RclRATGCCCACCGATCAGTTTGCCCTCTCCTCGGATCTCATCAACGAGTTGTTGCGCGGCATGCGCCTACGCGGCGTCGAGTACCGGCGTATCCAGGCCGGTCCAGCCTTCGGCCTGGGCTTCGCTGACAAACCCGGACACGCCTGGTTCCACTTCCTGGCGGTCGGCAATGCACTGCTGCGGATGGAAGACGGAACCACCTATGCGCTGTCGGCCGGCAATGCCGTGTTCATGTCCCATGGGGCGGTCCACCAACTGCTGTCCCATGTGGACGCGCCGGTTCAAGACATCGATCGCCTGGACGGCGCTCCCCTCGGCGATGCCGTCAGCGCGGTGGATACCGGAAACGATGCCAGCCCCACGCCGACGACCATTCTGTTCAGCGGCTGCATGGAGTTCGAACTGGGCAGCATCCATGGCCTGGGCAGGCTGATGCCGGGCCTGATGCTGATTGATGCCGGCGGCCAGCGTTACCCTGGACTGATGCCAATCCTGACCACCATGGAACGCGAAGCCAGCGCCGCACGTGTCGGCTTCGCCGGCATTCTCGCGCGGCTGGCCGACGTGGTGGCCGCCATGGTCGTTCGCGGTTGGGTGGAGTGCGCCTGCGGCAATGCCTCTGGCCTGGTCGCCGCATTGCGCGATCAGCGCCTGGCCAATGCACTTCTCGCGCTCCATCAACAACCGGGCCGAGACTGGACCGTCGCGCAGTTGGCGGAGCAATGCAATACCTCGCGCTCGGTCTTCGCCGACCGTTTCCAGGCGACTATCGGCATGGCCCCGTTGCGCTACGTCACCGAACTGCGGATGCGGCTCGCGAGCCAGTGGCTGACGCTCGAAAGGTTGCCAATCGAAGAAGTGGCGCAGCGCCTGGGCTACACCTCCCAGGCCGCTTTCAGCCGCGCATTCAAGCGCGTTACGGGCAAGACGCCTGGGTTGAGTCGTCAGTCGAGGCAGTCGGCTCTCTAGMPTDQFALSSDLINELLRGMRLRGVEYRRIQAGPAFGLGFADKPGHAWFHFLAVGNALLRMEDGTTYALSAGNAVFMSHGAVHQLLSHVDAPVQDIDRLDGAPLGDAVSAVDTGNDASPTPTTILFSGCMEFELGSIHGLGRLMPGLMLIDAGGQRYPGLMPILTTMEREASAARVGFAGILARLADVVAAMVVRGWVECACGNASGLVAALRDQRLANALLALHQQPGRDWTVAQLAEQCNTSRSVFADRFQATIGMAPLRYVTELRMRLASQWLTLERLPIEEVAQRLGYTSQAAFSRAFKRVTGKTPGLSRQSRQSALNANANANANA
D1-35_02544903hypothetical proteinTTGAAAGCTGCCATCGTCAAAAATTACCGTCTCATCGTCAAGACCATGGGCTACGTGGGCTGGGCTTTGTTCTGGTTGTTGCTCTGGGACATCGCCGTCACGGTGGACTTCATGCTGTTTCTCAACGCCAAATTGAACCTGCCGCTGATGCCGCTGACCTTGCTCGGCTCGGCGTTGGTGGTGTTGATCAGCTTCCGCAACAGCAGTGCTTACAACCGCTGGTGGGAAGCACGGACGCTGTGGGGAACGATGATCAACAGTTCACGCAGCTTCGCTCGTCAGGTGCTGACGCTGCTGGACGACCCCGGCAGCGAGGTGAATCCGGTCAAGTCGACCTTGTTGCGTCGCCACGTCGCTTATGTGAATTGCCTCGCCGCGCATCTGCAAGGCCAGCCTTGTCCCGAGGAGGTGCGGGCGTTTATTCCGGACGAAGAGTTTGCCCGCAGTGGCACGACCAATAACTTTGCCAACGATATCCTCACCGGCTCGGCGACGTTGCTGGCACGCGAATACAAGGCCGGACACTTGGACAGTATTCGCCTGGCGCGTCTTGAGTCGACGCTGGTGGACCTGTCCAACAGTCAGGGCGGCATGGAGCGGATCGCGAATACGCCGCTGCCCTACCCTTATGTGTATTTTCCACGGCTGTTTATTTCGCTGTTCTGCCTGATTGTGCCGGTTGGACTGGTGGAATCCCTGGGCTGGTTCACGCCGCTGGCTTCGAGCGTGGTTGGGTTCATGCTGCTGGCCATCGAGCGCATCGGCACCGATCTGCAAAGCCCGTTTCGCCACAGCGAACATCAGATCCAGATGGAAGCGCTGTGCGAAACCATCGAAAAGAACCTGCAGTCGATGCAGCGCGATTCCTTGGGTGATGTGCGCAGGATTGAAGAGAACGCTTGAMKAAIVKNYRLIVKTMGYVGWALFWLLLWDIAVTVDFMLFLNAKLNLPLMPLTLLGSALVVLISFRNSSAYNRWWEARTLWGTMINSSRSFARQVLTLLDDPGSEVNPVKSTLLRRHVAYVNCLAAHLQGQPCPEEVRAFIPDEEFARSGTTNNFANDILTGSATLLAREYKAGHLDSIRLARLESTLVDLSNSQGGMERIANTPLPYPYVYFPRLFISLFCLIVPVGLVESLGWFTPLASSVVGFMLLAIERIGTDLQSPFRHSEHQIQMEALCETIEKNLQSMQRDSLGDVRRIEENANANANANANA
D1-35_02545666hypothetical proteinATGATCGATCTAAGCACTTGGAACCTGACCATCCCGGTCGGCACGCCTGCCCGAGTCATCGAGACGCCACGCCTGGTGGACGGTTACTCGGATGCGTATTTCCGCTCCGGCAATACGTTGTTTTTCTGGGCGCCGGTGACGGGCGGGACTACGTCCAGATCCGAGTTTCCACGTAGCGAACTTCGCGAGACGTACAAGAACGGTGAGCTGCGCAATTGGACGTACCCCGAAGCGGATCACCGGATGACGGCCAGCCTGTCCGTCAACCTGGTGCCGTCGGAAGGCAGGGTGGTGATCGGGCAGATTCATACCTACCAGGGCAAGGGCCCGCTGTTGAAGGTCGAATATGTCTACGATAAGGCCAGGAAGACCGGTAGCGTGATTGCCAACTATCGCCTCAAGCCGGGCAGTACGGACACCAAGGTGGTGATTGTCGAGGATGTCGAGTTGAACAAGCGGTTCACTTACGAGGTTCGTTTGAGCTCGGCGGGCTACCTGCATGTGATTTCGCAAGGAAATCGGTGGGGCAGGCAGCTCAGCAAAAGCTGGCAGGGCAAACAGCTGTATTTCAAGGCTGGCGCATACACCTTGGATAATACCGGCTACAAGAGCGAAGGCGGGCAGGTGACGTTCAACAAGCTGGAGGCCAGGCACAGCAAGGGTTGAMIDLSTWNLTIPVGTPARVIETPRLVDGYSDAYFRSGNTLFFWAPVTGGTTSRSEFPRSELRETYKNGELRNWTYPEADHRMTASLSVNLVPSEGRVVIGQIHTYQGKGPLLKVEYVYDKARKTGSVIANYRLKPGSTDTKVVIVEDVELNKRFTYEVRLSSAGYLHVISQGNRWGRQLSKSWQGKQLYFKAGAYTLDNTGYKSEGGQVTFNKLEARHSKGPGPT0019417_605DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERSPLANT_DERIVED_ALGINATE_DEGRADATION,PGPT0019417-putative_alginate_lyase_2-NANANA
D1-35_025461986hypothetical proteinATGAGTCAGAGCATTTCGCCCGCCGCTTCAGCTGCGCGGAACACCGGCATGGTAATCACGACTTTATGGGGCTCGGACACCGTCGCAGGTATTACGGTCGATCCGGACGGTGCCATCTGGCTTGGCGCTTATAGTCGCCTGGGATTAGGAGGCGAAGAAGATTCAGGCTTCACCGCAAGCCTGGTTCGGTTCAATGCCGACGGTAGCCTGGATCGCAACTTCAGTGGAGACGGTAAGTCCCTCCTCCCCGTGTCGCTCGATATCGAGGACGGTGGCAACGCTGCGGTGCAGCCGGGAGGGGGCTACCTGGCGGCGCTCTACGTAAAAGTGGGCGATGCCTGGGTTTCAGGTGTAAGCCGTACCTTGGCTGACGGCAGCCTCGATACCAGTTTCGGGAATGGCGGCACCGCGACGGTGCCTTTCTACTGGAATGAAGATCTGGGCCAGCAAGCGTCGTTCTCCGTACAACGCGACGGCAGCTTTTTCGCAAGCGCCGGGTATCCCTCTGGGGAGATCCATATCGCCCGCTTCGACGCGACGGGGATTTTGGTCTCGTCTTTCGGCGAGGCTGGGGTCCTGCACCTGCCAGCGTCCGTGGGCGTTCAACCCGGCAGCGCGATCGACGTTTCGCTGCAGGGAGACGGGCAAGTATTGGTCACCGGGCGAGATACCCTGACCCGCCTCAACCCGGACGGTACTCTGGATAGCAATTTTGCAAACGGGGGCAGCCTCGCTCTGGATGTTCACCCAGACGCCCTCGTCATTCAGGATGACGGCAAAATCCTGCTGGCGGGCGCCTCGGGCGGCGTGGCGAGCGTCATCCGCCTCAATGCCGACGGCTCGCTCGACACCGGTTTCGGTGATCAGGGTAAGGTGAGTTGGGGCTCGCAAAGCGCTCCTTTCGCAGTCGCCGACATGATCCTGCTGGCCAACGGCAAGCTATTGATTGGCGGAAGCCAAGGAACGAGCGCGGACGGCTATCTGGCCGCCTTGGTCCAGTTGAACCCCAACGGTAGCCTGGACCTCGGCTTTGGCAATCCCGACGATGGCTATCACCACCTTGACGGTGGCCGCGAGGATGACTTCCTGCTCGGTACCGCCTCGTTCGACGATGCGATCTCTGGCGGGGCCGGTGACGATCTGCTCGATGGCCAGCAAGGTCGTGACCTGCTGACGGGCGGCGCCGGGGCCGATACGTTCCGTTACCAGTCAGCCGCAGACAGCTACCGAACCGCAACCACGGCCCATAGCGACCGAATCACCGACTTCGACCCCAGCACCGATACGATCGACCTCTCCTCCCTCGGCTTCCTCGGGCTGGGCAATGGACATGACGGAACGCTGGCGATACGCGTCAATGAAAGCGGGACCCGGACCTACCTCAAGAGTTTCGAGGCCAACGCGGATGGGGAACGCTTCGAAGTGATCTTCGACGGTAACCTGGGCCAAGCGCTGAATGAAACCAACGTCCTGTTTCAACAAGCCAGACTGGTGGGCACCGAAGGGGCTGATCCTTTACAAGGCAACGCTCGAGGCGAAATCATCGAAGGATTCGCAGGCGATGATCGCCTTAATGGCGCACTCGGGAATGATGTATTGGCCGGCGGAAATGGTCGGGACCTATTGGCGGGTGGCGGCAACAACGATGTGTTCCGGTTCGACGCATTGAGCGACAGCTACCGTACCGCCACCGAAAACCACACTGATCGCCTGATTGACTATACCGCGGGTGAAGACACGATCGACTTGTCCGCCTTGGGCTTTACCCGATTGGGAAATGGTTACAACGGCACGTTGGACGTGGTTTTTAATGAGGCCAGGAACCTGACTTACTTGAAGAGCTACGAAGCCGATGCATCCGGGGCTCGATTCGAGTTGAGCCTGGCAGGGGATCACTCCGGTTACCGTGACTTGAACATCATCTTCGCCGAGCCCTTGGAGGAGGATCTCTTTCAGTTGATCGGAGTGGCTGACTCCCTAGTGTGAMSQSISPAASAARNTGMVITTLWGSDTVAGITVDPDGAIWLGAYSRLGLGGEEDSGFTASLVRFNADGSLDRNFSGDGKSLLPVSLDIEDGGNAAVQPGGGYLAALYVKVGDAWVSGVSRTLADGSLDTSFGNGGTATVPFYWNEDLGQQASFSVQRDGSFFASAGYPSGEIHIARFDATGILVSSFGEAGVLHLPASVGVQPGSAIDVSLQGDGQVLVTGRDTLTRLNPDGTLDSNFANGGSLALDVHPDALVIQDDGKILLAGASGGVASVIRLNADGSLDTGFGDQGKVSWGSQSAPFAVADMILLANGKLLIGGSQGTSADGYLAALVQLNPNGSLDLGFGNPDDGYHHLDGGREDDFLLGTASFDDAISGGAGDDLLDGQQGRDLLTGGAGADTFRYQSAADSYRTATTAHSDRITDFDPSTDTIDLSSLGFLGLGNGHDGTLAIRVNESGTRTYLKSFEANADGERFEVIFDGNLGQALNETNVLFQQARLVGTEGADPLQGNARGEIIEGFAGDDRLNGALGNDVLAGGNGRDLLAGGGNNDVFRFDALSDSYRTATENHTDRLIDYTAGEDTIDLSALGFTRLGNGYNGTLDVVFNEARNLTYLKSYEADASGARFELSLAGDHSGYRDLNIIFAEPLEEDLFQLIGVADSLVPGPT0027825_379DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0027825-prtC-K01406NANA
D1-35_025471245yfeW_2Putative D-alanyl-D-alanine carboxypeptidaseATGCACTCATCCGCTATTTTTGGTGTGGCTGCGGCTGGTCGCTCGCTGCTTCTCTCGCTCGGTCTGCTCGCTGCGGGTATCACCGCAGGCGCATGGGCTGAGGATTATCCCCACGCCCAGGAACCGATTGGCACCGTGGAGCAGATCTATGACGGCGCCATGCTCCCCGATCTGGCGGTCAGTACCTACCGCAACATCGACCGGCTGTTCCCTACCCACAGGATCAAAGCCAGCGATCACCCGTATGCGCTGCCGAAATCAGACAAACAGTTGCCCAACGTTCGCTTCACTGTCGGGGACAAAAAGTACGACCTGTATGACTTCGTCGCACTGGACAGCATTACGGCGATGCTTGTGCTCAAGGACGGCAAGATTGTGTTCGAGACCTACCAGCGTGGCAACACCGAGAAAACCCGATGGATGTCGATGTCGATAGCCAAGTCCATTACGTCGACGCTGGCGGCTGCAGCGATCAAAGACGGCCTTATCAAGGGCCTTGATGCGCAAGTGGTAGATTACGTTCCCGAGCTCAAGGGCAGCGCCTACGAAGGCGTGACCGTGCGCAACGTGCTGATGATGTCTTCGGGCGTGAAGTGGAACGAGACCTACACCGATCCGGCGTCCGATCGTCGCGCGCTACTCAAAGCGCAGATATCGCAGAAACCGCGTTCGGCCATGGCCTTGATGGCAAGTTTGCCGCGAGCAGCCGAGCCTGGCACGGCCAACACTTACAGCACTGGCGAAACGCAGGTACTCGGCGAGATCGTCCGTGGCGCTGTGAAGATGCCGCTGGCCGATTATCTATCGCAGAAGATCTGGCAGCCGTTCGGTATGGAGAGTGATGCCCGGTGGTGGCTCGATTCGCCTGACGGCGTGGAAATCGGTGGCAGTGGTATCAGTGCCACGCTGCGCGATTATGGACGCTTCGGGCTGTTTTTCATGAACGGCGGCAAGATCAATGGCACCTCGATTCTGCCCGAAGGCTGGGTCACGGAGGCGACGCTGCCGACCACCCTCAAAGGCGGCAAGTCCCTGGACTACGGTTACATGTGGTGGACGGCGTGGACCGAGCCGTCGGTAAAAGACGGCGCCTATTCGGCGGTCGGTATCCAGGGCCAGAACATCTACGTCAACCCTGCCAATAACGTCGTGATTGTCACCTTCGGTGCCCAGCCCAAGCCGGTTGACAAAGAGCCGATCGACCCGATGGTATTCTTCGATGCCGTGGTGGCTGCGTTGAAGTAAMHSSAIFGVAAAGRSLLLSLGLLAAGITAGAWAEDYPHAQEPIGTVEQIYDGAMLPDLAVSTYRNIDRLFPTHRIKASDHPYALPKSDKQLPNVRFTVGDKKYDLYDFVALDSITAMLVLKDGKIVFETYQRGNTEKTRWMSMSIAKSITSTLAAAAIKDGLIKGLDAQVVDYVPELKGSAYEGVTVRNVLMMSSGVKWNETYTDPASDRRALLKAQISQKPRSAMALMASLPRAAEPGTANTYSTGETQVLGEIVRGAVKMPLADYLSQKIWQPFGMESDARWWLDSPDGVEIGGSGISATLRDYGRFGLFFMNGGKINGTSILPEGWVTEATLPTTLKGGKSLDYGYMWWTAWTEPSVKDGAYSAVGIQGQNIYVNPANNVVIVTFGAQPKPVDKEPIDPMVFFDAVVAALKNANANANANA
D1-35_025481320dctA2_2COG1301C4-dicarboxylate transport protein 2ATGTCCGCTGAAACTCAAAACCGCAAACCGTTCTACAAGATTCTTTATCTCCAGGTCTTGTTCGCGATCGCAATCGGCATCCTGATTGGCCACTTTTATCCGGAAGCCGGTACCACGTTAAAACCGCTCGGCGATGGTTTTATCAAGCTGATCAAAATGGTCATCGCCCCCATCATCTTCTGTACTGTGGTCACCGGCATCGCAGGCATGCAAAACATGAAAGCGGTCGGAAAGACCGGTGGCTATGCGCTTCTGTATTTCGAGATTGTTTCGACAATTGCCCTGTTGATCGGGCTGGCTGTGGTCAACTTCGTGCAGCCGGGCGCTGGAATGCATATCGATCCGTCCACGCTCGATGCGTCGGGTATTGCTGTGTACGCTGCCGCAGGCAAAGAGCAGAGCACCATTCAGTTCCTCCTGCATATTATCCCCAACACGATTGTTGGCGCGTTTGCTGAGGGTGAGATTCTGCAGGTGCTGTTCTTCTCTGTACTGTTTGGCTACGCGCTGCATCGCATCGGTGATTATGGGCGTCGGGTGTTCGAGTTCATCGAGAGCATCTCCCAGGTGTTGTTCAGCATCATGGGTGTGGTCATGAAAGTCGCGCCCATCGGTGCGCTGGGTGCGATGGCCTTCACTATCGGTAAGTACGGTGTCGGTTCTTTAGTCCAGTTGGGCTATCTGATGCTGTGTTTTTACTTCACCTGCGTGGTCTTCGTACTGGGGATATTGGGATCGATAGCGCGCCTGCATGGGTTCAGCATTTTCAGGTTCATCAAGTACATCCGCGAAGAGCTCCTGATCGTCCTGGGCACTTCGTCGTCCGAGACCGCGTTACCACTCATGATCGTCAAGATGCAGAAGCTCGGCGCGCATAAGTCCGTCGTGGGCCTGGTCGTCCCGACCGGTTATTCCTTCAACCTTGATGGCACTTCCATCTACCTCACCATGGCGGCGATTTTCCTCGCCCAAGCCACCGATACGCCCATGGACATTACGCACCAGATTACGTTGTTGCTGGTCTTGCTAGTCACATCAAAGGGGGCGGCGGGTGTAACGGGCAGTGGCTTCATCGTCTTGGCGGCGACGCTGTCGTCAGTAGGGCATGTGCCCGTTGCTGCGCTGGCCTTGATTCTGGGGATAGACCGTTTCATGTCTGAAGCGCGGGCATTGACCAATCTGATCGGTAATGGGGTGGCGACAATCGTGGTTGCCAAGTGGTGTGGGCAGTTGGACGAGAAGGTGCTTCAAAAGAGGCTGGAAGAGGGCCCTGGGGCGGCGGCTGTCGGTTCGTCGGCATCCCATAACGTCAGAATTTGAMSAETQNRKPFYKILYLQVLFAIAIGILIGHFYPEAGTTLKPLGDGFIKLIKMVIAPIIFCTVVTGIAGMQNMKAVGKTGGYALLYFEIVSTIALLIGLAVVNFVQPGAGMHIDPSTLDASGIAVYAAAGKEQSTIQFLLHIIPNTIVGAFAEGEILQVLFFSVLFGYALHRIGDYGRRVFEFIESISQVLFSIMGVVMKVAPIGALGAMAFTIGKYGVGSLVQLGYLMLCFYFTCVVFVLGILGSIARLHGFSIFRFIKYIREELLIVLGTSSSETALPLMIVKMQKLGAHKSVVGLVVPTGYSFNLDGTSIYLTMAAIFLAQATDTPMDITHQITLLLVLLVTSKGAAGVTGSGFIVLAATLSSVGHVPVAALALILGIDRFMSEARALTNLIGNGVATIVVAKWCGQLDEKVLQKRLEEGPGAAAVGSSASHNVRIPGPT0001450_1745DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ASPARTATE_TRANSPORT,PGPT0001450-dctA-K11103NANA
D1-35_02549663hadL(S)-2-haloacid dehalogenaseATGAATTCGATTGAAAACAAGCTTCAGCAAACACCTGTGAAGCTCGTCCTGTTTGATTTGCTCACCGCTCTGCTGGACTCATGGACGCTATGGAATTGCGTGGCAGGCTCCGATGAAATGGGCCGCACCTGGCGTATGGCTTATTTGAAGGCGACTTACGGCTGTGGTGCTTACCGGCCTTATGAAACGTTAGTCGAAGAGGCTGCGATCAGTGTCGGACTAGGCAAGGAGGCCGCGCAGAATCTGGAGGCACGCTGGATGCAGTTGCAACCTTGGCCTGAGGCCAAACGCGTGCTCACCGAGTTGGCGCCGCACTACAAGCTCGGTGTGGTGACCAACTGTTCGGAGCGGTTGGGGCGTATCGCAGCGGATCTTCTGGGAGTGCCGTTTGACGTAATTGTCACTTCTGAACAGGCCGGCTTCTACAAACCCGATGCGGAACCTTACAGGCTCGCCCTGCAAATAGCGGGGGTGGAGTCCGCTCACGCCCTATTCGTGGCGGGCTCTGCTTACGATCTGTTTGGCACGCAGAAAGTTGGCTTGCCAACCTTTTGGCACAACAGAATAGGGCTCGATGCGCCCGCAGGTGCGCCTGATCCATTAATCATGCGTCCGACACTGGATAGCCTGGTTGAGGATATTAAAAATCTGAGCGGCAAATAAMNSIENKLQQTPVKLVLFDLLTALLDSWTLWNCVAGSDEMGRTWRMAYLKATYGCGAYRPYETLVEEAAISVGLGKEAAQNLEARWMQLQPWPEAKRVLTELAPHYKLGVVTNCSERLGRIAADLLGVPFDVIVTSEQAGFYKPDAEPYRLALQIAGVESAHALFVAGSAYDLFGTQKVGLPTFWHNRIGLDAPAGAPDPLIMRPTLDSLVEDIKNLSGKPGPT0006885_1831DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_DICHLOROETHANE_DEGRADATION,PGPT0006885-dehI-K01560NANA
D1-35_025501131dthadhD-threo-3-hydroxyaspartate dehydrataseATGACAGCATTCACTCATATCGAAACCCCCGCCTTATTGCTGGATCGCGATCAACTCGATGCGAACATCCAACGGATGCGCAATAAGCTGGCAGCATTCAACGTGGTATTGCGGCCACACGTGAAGACCAATAAGTCGTTAGAAGTTACCGAGCGATTGTTTGCAGGCGGGCGCGGCCCGATCACCGTTTCAACCCTGCGGGAGGCCGATTTCTTTTTCGAGGCCGGGTTCACCGACATCTTGTATGGCGTCGGCATTGCGCCCAACAAATTCGCTCATGCCGGTGCATTGATCGGTAAAGGCGCACAGCTAAAGTTGGTACTCGACAATCTGGATACCGCCAGGTTACTGGCCGAATTCGCCGAAACGTCGGGTCATGTTTTTGATGTTCTGCTGGAAATCGATTGCGACGGTCACCGTTCCGGTCTTGGCCCGCAGTCACCGCTGCTGGTGGAAATCGCGCGGCTGCTGAGCGCCAATGGCGTCAGGGTCAGCGGCCTGATGACACATGCCGGCAAGTCTTACGACAGTCAGTCAATCGCTGAAATCGAAGCCAGCGCCCGGCATGAACGCGCGGCGATTATCGATGCCAGCCAAATGCTGACGAATGCAGGCTTCGACCTGTCGATCATCAGTGTCGGCTCGACACCCACGGCACTTTTTACCGAGGATCTATCCGGGGTGACTGAAGTACGCGCGGGTGTATTCGCCTTTTTCGATCTGGTCATGGCGGGCTTGGGCGTTTGTCAGGTGCAAGATATCGCCGTCTCGGTTCTGACGACTGTCATCGGTCATCAGATTGAAAAAGGCTGGATCATTACAGATGCGGGATGGATGGCACTTTCCCGTGATCGTGGTACCGCCAGACAGGCGGTCGATCAGGGCTATGGCATCGTCTGTGACGCCAGCGGCCAGCCCATCGGCGACCTGATCGTCAGCGCCACCAATCAGGAGCACGGGATCATTTCATCGCGGGCCGGGAAGCTTGAAGCCTCAAGCTTACTGCCCTTGGGCACGCTGCTGCGGATCCTGCCGAACCACGCCTGCGCCACCTCGGCGCAGCACGCGGGTTATCACGTTATCAGCGAGGGGCACAGTGTGGGCTACTGGCCACGCATCGCGGGTTGGTAAMTAFTHIETPALLLDRDQLDANIQRMRNKLAAFNVVLRPHVKTNKSLEVTERLFAGGRGPITVSTLREADFFFEAGFTDILYGVGIAPNKFAHAGALIGKGAQLKLVLDNLDTARLLAEFAETSGHVFDVLLEIDCDGHRSGLGPQSPLLVEIARLLSANGVRVSGLMTHAGKSYDSQSIAEIEASARHERAAIIDASQMLTNAGFDLSIISVGSTPTALFTEDLSGVTEVRAGVFAFFDLVMAGLGVCQVQDIAVSVLTTVIGHQIEKGWIITDAGWMALSRDRGTARQAVDQGYGIVCDASGQPIGDLIVSATNQEHGIISSRAGKLEASSLLPLGTLLRILPNHACATSAQHAGYHVISEGHSVGYWPRIAGWPGPT0020170_3DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0020170-dthadh-K20757NANA
D1-35_02551906dmlR_12HTH-type transcriptional regulator DmlRATGAACGAGACAGTTGATCTCCGCTTTCTCTTGGTCATCCGGGAAAGCGAGAGTTTGTTGGCCGCGTCACGTAAGCTGGGTCTGACGCCTTCAGCGGTGACCCAGCGACTTCAGCAAATGGAGAAAAAACTGTCGATTCGATTGCTGGATCGGTCAGCCCGGCAGCTGCGCTTTACCGACGAGGGCGAGTTCTTGTGCCAGCGTGGGGCCGAGCTGGTCGAGCAGTTCGATTCCCTATTGGCGGATTTGCAAGAGCGGCGCAGTGGCTTCGTCGGCAAGTTGAAAATCAACGCACCGTTCGGATTTGGGCGACTGCACGTGGCACCCGTCGTGGCAGCTTTCCAGCGCCTGCATCCAGATGTAGAGATAGCATTGAGTCTGTCGGAACAGCCTATGGTCGAAGCGACTGACCGATTTGATGTGGTTATCCATATTGGGGAACTGCGCACCTCCAACCTGGTGGGCCATCCCATTGCCCCCAACCGTCGCTACGTATGCGCCTCACCGGACTTTATTGAACAGCACGGGCTGCCGGAACATCCCGACCAGCTCGCTACCTTGCCCTGCATCGCGCTGCGGGAAAACAACGAAGACGTCACGCTCTGGCATTTCACGCGCGCGGGTAAAACACACAACGTGCGAATCCGCCCAGCGTTGAGCTGCAACGATGGAAGTGTTATTCGGCAATGGGCTTGCGAAGGGAACGGCATCATCATGCGTTCTGAATGGGACGTTGCCGATGCTCTGGCGGAGGGGACGTTGATACGACTATTGCCGGGTTGGAAACTGCCAGAGGCCAATATTGTTGCGCTGACGCATCAACGCGAAGGGCTGCCCGCAAGAACGCTCAAATTTCTGCGCTTCCTCCAGGATCACTTCCGGCCGCAACCACTCTGGCGACAATAGMNETVDLRFLLVIRESESLLAASRKLGLTPSAVTQRLQQMEKKLSIRLLDRSARQLRFTDEGEFLCQRGAELVEQFDSLLADLQERRSGFVGKLKINAPFGFGRLHVAPVVAAFQRLHPDVEIALSLSEQPMVEATDRFDVVIHIGELRTSNLVGHPIAPNRRYVCASPDFIEQHGLPEHPDQLATLPCIALRENNEDVTLWHFTRAGKTHNVRIRPALSCNDGSVIRQWACEGNGIIMRSEWDVADALAEGTLIRLLPGWKLPEANIVALTHQREGLPARTLKFLRFLQDHFRPQPLWRQNANANANANA
D1-35_025523723rcsC_10Sensor histidine kinase RcsCATGGTGACATTCAAGCCCGTCACCGACAGGCCCATTGCCGTCAGGATCGGGCTGGCGGTCGCCGCGCTGGTGTTCCTGATGCTGGCGGTGTCGCTGGTGAACCTCTACGGTTTGCGAGGCATGGTCCGCGCGGTGGATTCCGCCAGCCATTCGGCGGAGATCCTGGCCTCGGTCAACGGCGCCACCGGGCGTGTGGAAAACTTCATCGCCACCCGCGATTCTGAGAGTCTGTCCCAGGCCGAAGGCATGGTGGCGACGGCGATCGCCGGCCTCAGCGCCATTCCGGCGGCCGAGGCGCAATCGCTCAAAGGCAGCCTGGAGCGGCTCGCCGCAGCGATCACTGCCTTGCGCGCGGCGACCCTGACCATGGATGGCGAAACGGAGAACATGACCGCCCACTACGGGCGGATGCGAGAGGCGACGATCCTCGTCGAACAGGGCATCGCCGATGGCCTGAAGGGGCTCGATGCCCGCACCGCCGGGCACGAGGCGCGGGTGAGCGACATCGAAAGCGCCCACCGCATCCTGGATGTCCTGCGCAACGGCGAACGGATCATCACCGCCCATGTGGCCAAGATGTTGGTGACCGAGGATGCGGCGGCTGCCATGGCGGCGCGCAACGCCTGCGCGGCGCTCCTGCCGGTGATCGAGCAACTGCGCGAGGTGATGGGGGCGCCGCAGGCAACGGAGATCCTTGATCAGTTGGCGGCGGCGGTCGCTGCTGCCAGCGTCGCGGTAGAGCACCTTGGCGAGGCCCCCAGACGCCAGGGAGACGAAGCTTTGCGGCAGCTCGCCGCCGTCGGGGATGCGGCCGCGCGCCTCGAGGCGATGCTAGCTGACGCGGATGGGCTCGTCGGCCACGACGCAAGCGACATTCAGGCAGCGACCGGCTTGCTGCACAACGCCGCCGCGTTATCCAAGCGTTTCGCCGAGCGTGTCGCCACGCTGGAAGCGCAGACCTTGTCGTTTCGCCTGTCACCGTCGGCCGAAACCGCCCGCTCTGTCGGCCTGATTCTCGACGAGCTCTCCCGTCTCGCTCGGGTTCTGCCGTCGTCCGTAGGACTGCAAGCCAAGGCGACGCCCCTGACGGTCAGTGATCAGATTGCCGGCTACCGGGCGGCCTTTGCCAGGTTCCATCAGGCGAGCAATGCCTTGAGCGCGGCGCGCGACGAGGTTCGCAACGAGGCACGGAGCGCCGGCCTGTTGGTTGCGCGCTTTGCGGGTGAAGCGCGCTCCGACGCCTTGGTCCACAACGATCGCGGCATGCTTGCGACGATAGTTGCGGGCACCGTCGCCGTCCTGCTGGCCGGTGCCATCGCCTGGAGCACGTCACGATTTGTCGCGCAGCCCATCGTGGCCCTGGCCTCGGTCATGCGCCGGCTTGCGGCCGGCGACCTGAACGCCGAGATGGCCAGCGCCGCACGCGGTGACGAGATTGGAATCATGACCCGCGCCGTACGGGTGTTCCAGGAGAATGCCCTGCGCATCCGGGTGCTGGAGGCCGAGGCCGAGGCCGAGCGACAGCAGGTCCAGGCCTCTTTGGAGCGAATGGTCGCCGAACGGACCGACACGTTGCACCAACAGACCGACATACTGGAGGCGCAGGCCGTCGAACTCATTCAGGCGCGCAACCAGGCCGAGACGGCCAACCAGGCAAAGAGCGATTTTGTCGCCACGGTCAGCCACGAACTGCGCACCCCCCTGACCCTCATCCTCGCTCCCCTGGAACAGCTCTCGGCGGCGAACACTCCGCCAGCGGACTGGCGTGTGCAGGTCGAACGTGCCCAACGCAACGCATTGCGCTTGATGAACCGGGTGAACGACATCCTCGACTTTTCCAAGGCCGAAGCTGGCAAGTTCGAGCTGTGTCCCTCGCCGGTTGATTTGAACAAGGCGGTGGGGGTGCTGGCCGAGGACGCCGCCATGGTTGCCGAGGGCAAAGGCTGCACCTTGACTTGCAGCATCGATCCCGCGCTCGGCACGGTGTTTCTGGACCCCCGGCACTTCGAGAAAATCCTCCTCAACCTGGTGAGCAATGCCATCAAGTTCACGCCCGGCGGCGGCACCGTACACCTGGCAGTGACGCCGATCGAAGGCGAGCGATTTGAGTTAGCGGTGCAAGACTCGGGAATCGGCATAGAGCCGGACAAACTGCCGCTGTTGTTTCAGCGTTTTTCCCAGATCGACAATTCCGCCACGCGCCATTACAGCGGCACCGGCATCGGTCTCGCCCTGGTCAAGGACCTGGCTGAACTGATGGGCGGCGAAGTTGGCGTCGACAGCGAGCCTGGACGGGGTTCGCGCTTCTTTGTCCGGCTTCCGCTGGGGGCTGAGCAGAACACCCTGCCGACCGAAGCCAGCCATATGCTTGAGCGATCATCGGCGGGCACGACCAGTACGATGGAGCAGCGCCACCTGCGTTTTGACGATGGCCGCCAGGGCAGTCGCAACGACCTCGCTTCGACGCAAGGCGCAGACGACGAGCCGCATCCGGAACATGCCCTGCGATCCAGAGTGCTGGTGGTGGACGACAGCCCGGAAATGCTCAGTTATCTCAGCGAGCTTCTGCAAAACGACTACATCGTCGCCACCGCAACGGATGGAGAGCAGGCCTGGGCACTGCTGCAGCTTCGACCCATCGACGTGATCGTCTCGGATGTGATGATGCCCAAGCTCGACGGTTTCGGCCTGACCGCCAGGATCAAGGCCAGCGCCGGTTTTGCCCATTTACCGGTAATCCTGGTGACCGCCCGCGGCGGTAGCGAGGCCTGCATCTCCGGGCTGGAAAGTGGCGCCGACGACTATATCGCCAAACCCTTCTCGCCGCTGGAGCTCAAGGCTCGCGTACGCGCGGCGCTGCGCATGAGCCAGGTGCAAAGCGAACTGCAGGCAAAATCCCGCCAGGCGGGCATGGCCGAAATCGCCACGACTGTGCTGCACAACGTCGGTAACGTCCTCAACAGCGTGAACGTATCGGCAGAACTGGTCAGCAGCCAGATGCGCACCTCCAAGGCCCAGGGGCTGGGCAAAGTGGCGCGACTGATGAACGAACACGTCCACGACCTGAGCGATTTTCTGACCACGGACAACAAGGGAAGGATGCTGCCCGATTACCTGCTCAAGCTGGCGCAAGTGGTGACGGAAGAGCAGCAGGGCATCATCGAAGAGCTCGGGCAACTCATCAAAGGCATCGACCACATCAAAACCATCGTCGCTGCCCAGCAGTCCTATGCCGTTGCTGTCAGCGTCGTCGAGACAGTACCGGTCTCGGAGCTGATCGATGATGCCTTGCGCATGAGTGCCGGATCACTGGCACGCAAGGAGGTGACGGTGGTCAAGGACATCGCCGACTTGCCCCTGCTGTCGCTGGACCGGCACCGGGTGCTGCTGATTCTGGTGAACCTGATCCGCAACGCCAGGCAGGCGCTGGATGGCGTGAACGATCGCAGCTCCTGTATCACGTTCTGCGCGTCCCTTGTCGACGGATCAGCATTGCGTATCACGGTGGCCGACAACGGCAACGGGGTCGCGCCAGAGCACTTGGCGCGGATCTTTACCCATGGCTTCACTACTCGCAAGGATGGTCACGGTTTCGGCCTGCACAGCTGCGCGCTCGCCGCGCAGGAAATGGGCGGCAGCTTGACCGTGCACAGCGACGGGGCCGGGCAGGGCGCGACTTTTATCCTTGATATTCCCGTTGAGGCTGCGCTGAGCAAACGCTAGMVTFKPVTDRPIAVRIGLAVAALVFLMLAVSLVNLYGLRGMVRAVDSASHSAEILASVNGATGRVENFIATRDSESLSQAEGMVATAIAGLSAIPAAEAQSLKGSLERLAAAITALRAATLTMDGETENMTAHYGRMREATILVEQGIADGLKGLDARTAGHEARVSDIESAHRILDVLRNGERIITAHVAKMLVTEDAAAAMAARNACAALLPVIEQLREVMGAPQATEILDQLAAAVAAASVAVEHLGEAPRRQGDEALRQLAAVGDAAARLEAMLADADGLVGHDASDIQAATGLLHNAAALSKRFAERVATLEAQTLSFRLSPSAETARSVGLILDELSRLARVLPSSVGLQAKATPLTVSDQIAGYRAAFARFHQASNALSAARDEVRNEARSAGLLVARFAGEARSDALVHNDRGMLATIVAGTVAVLLAGAIAWSTSRFVAQPIVALASVMRRLAAGDLNAEMASAARGDEIGIMTRAVRVFQENALRIRVLEAEAEAERQQVQASLERMVAERTDTLHQQTDILEAQAVELIQARNQAETANQAKSDFVATVSHELRTPLTLILAPLEQLSAANTPPADWRVQVERAQRNALRLMNRVNDILDFSKAEAGKFELCPSPVDLNKAVGVLAEDAAMVAEGKGCTLTCSIDPALGTVFLDPRHFEKILLNLVSNAIKFTPGGGTVHLAVTPIEGERFELAVQDSGIGIEPDKLPLLFQRFSQIDNSATRHYSGTGIGLALVKDLAELMGGEVGVDSEPGRGSRFFVRLPLGAEQNTLPTEASHMLERSSAGTTSTMEQRHLRFDDGRQGSRNDLASTQGADDEPHPEHALRSRVLVVDDSPEMLSYLSELLQNDYIVATATDGEQAWALLQLRPIDVIVSDVMMPKLDGFGLTARIKASAGFAHLPVILVTARGGSEACISGLESGADDYIAKPFSPLELKARVRAALRMSQVQSELQAKSRQAGMAEIATTVLHNVGNVLNSVNVSAELVSSQMRTSKAQGLGKVARLMNEHVHDLSDFLTTDNKGRMLPDYLLKLAQVVTEEQQGIIEELGQLIKGIDHIKTIVAAQQSYAVAVSVVETVPVSELIDDALRMSAGSLARKEVTVVKDIADLPLLSLDRHRVLLILVNLIRNARQALDGVNDRSSCITFCASLVDGSALRITVADNGNGVAPEHLARIFTHGFTTRKDGHGFGLHSCALAAQEMGGSLTVHSDGAGQGATFILDIPVEAALSKRNANANANANA
D1-35_025531197hypothetical proteinATGCTCATTGCCACTACCGTCGTTGCACGGGTTTCAGTCGCCGCCAAGGAAAGGAGTCTGTACGTGTCTGATACTTCATGCCCGGTTCCATTATTGAAATGGCCTTTGATCCACAGCGTCCTTTGGCGCCTCGCCGGTTGCGTGACCGGGCTGGCGATGCTTGCCGCCCATCCAGCCCAAGCGGCCGACGGCGGTGTCGCCGGCGGCTCTACCGCAAGCTATAGCATTGCCTTCAGCAATTCATACGCAGGCAGCGATTTTCGCAAGGTGATGGTGCGCAACTGGCAGGAGATCGCGCTCCAGGCGCAAAAGGATGGGTTGATCCGCGAGGCTCCGGTGGTCAGCGCCAACAATTCGGCGTCGGAACAAGCGGCCCATATCCAGGACATGATCGTCAAAGGCGTCAATGCCATCGTCGTCCTGGCCGCGTCCGACACGGCACTGAACGGGGTGATCCGCGATGCCTGCAATGCCGGCATCGTGGTGGTGGTCATGGCCAGCCTGGTCAGCGAAAGTTGCGTTTATACCGTGGACTACAACTGGTCCGCCATGGGCCGCGTGGAGATGGATTACATCGCCGAGCGTCTCAAGGGCAACGGAACGCTGCTGGAGATCCGCGGCATTGCCGGCGATGCCACCGATAAAAACATCAGCGACGGCATTCGCAAGGCCGCCAGCGACTATCCGGGCCTGAAGTTCGCCAAGACCGTGTATGGGAACTGGACGGCTTCCGTCGCCCGCAAGGAGGTGGCGCTGGCACTGCCGTCGCTGCCGAGCATTGATGCCGTGGCGACTCAAGGGGGCGACGGTTATGGCGCGGCCATGGCGTTCAAGGCGGCGGGGCGGCCTTTGCCGATCATCGTGATGGGCAATCGTCAGGACGAACTCGCCCTGTGGAAACAGGAGCGCGATGCCAACGGCTACGAGACCGTCTCTGTTTCTGCCTCCCCCAGCGTTTCCCAGGTAGGTTTCTGGGTAGCCCAGCAGATTCTGGCGGGCAAGCAGGTGCCGAAGTTCGTCGAAGTGCCACTGGTGCGTATCGATGCGAAAGACCTGGACGCCTGGCTCGCGACCATGCCGGTGGGTGGCGCCGCCAATCCTTTTTACAGCCAGGCTTCCGTGGCCGCGATGATCGACGCGGCCAACAACAATACGGCGCCGCCGGCGACGCCTTTGCCGGAGGTTACGAAGCAGTAGMLIATTVVARVSVAAKERSLYVSDTSCPVPLLKWPLIHSVLWRLAGCVTGLAMLAAHPAQAADGGVAGGSTASYSIAFSNSYAGSDFRKVMVRNWQEIALQAQKDGLIREAPVVSANNSASEQAAHIQDMIVKGVNAIVVLAASDTALNGVIRDACNAGIVVVVMASLVSESCVYTVDYNWSAMGRVEMDYIAERLKGNGTLLEIRGIAGDATDKNISDGIRKAASDYPGLKFAKTVYGNWTASVARKEVALALPSLPSIDAVATQGGDGYGAAMAFKAAGRPLPIIVMGNRQDELALWKQERDANGYETVSVSASPSVSQVGFWVAQQILAGKQVPKFVEVPLVRIDAKDLDAWLATMPVGGAANPFYSQASVAAMIDAANNNTAPPATPLPEVTKQPGPT0015740_952DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_RIBOSE|AUTOINDUCER|XYLOSE_TRANSPORT,PGPT0015740-rbsB-K10439NANA
D1-35_025541167ydhP_2COG2814Inner membrane transport protein YdhPATGCGTATCAATCCACCGCTTGTCGCACTCGCCATTGGTGCCTTTGGCATCGGCGTTACCGAGTTTGCCCCCATGGGCATGTTGCCGGGCATCGCCGCGGATCTCGGCGTTTCCATTCCCGCCGCGGGTCTGTTGGTCAGTGCCTACGCCCTGGGCGTGCTGCTCGGCGCGCCGCTGATGACCTTGACCACCGGCAGAATTCCCCGACGCTATCTGCTGATCGGACTCATGGCGATTTTCACCCTGGGTAACCTGATGTCAGCGCTGGCGACCGATTACTACAGCCTGATGGTCGCCAGGGTGGTGACCTCACTGAACCACGGTGCGTTTTTTGGCGTCGGCTCCATCGTCGCCGCCAGCGTGGTCGCCCCGGAAAAACGTGCCGGGGCGGTCGCGGCCATGTTCATGGGCCTGACCCTGGCGACCATCGGCGGTGTGCCGTTGGCGGCCTGGTTTGGCGATTTGTTTGGCTGGCGCACCGCGTTCTGGGGAATTACCGGATTGGGCGTAATGGCAATGGCTGCGTTGTGGTTCGCGCTGCCCAACCTGCCGGCGCCGCAAAGCAGCGGGGTGCTGGCGGAAATTCGGGTGCTGGGCCGTGGCCCGGTGCTCGGGGCGTTGGCCCTGACGGTAGTCGGCTCGGGCGCAATGTTCACCGTCTTCACCTACATCGCTCCGATCCTGACCAGCGAGACCCATGCCTCCAGTGCCTTTGTCACGGCCATGTTGGTGCTGTTCGGCGTGGGGCTGACGCTGGGCAATATGTGGGGCGGCAAGGCCGCGGATCGTTCGATAGACCGCACCCTGATCGTTTCCCTTAGCGTGCTGATTCTCGTCCTGCTGGCGTTCACGGTACTGATGCGCTGGCCGCTGCCGGCCGCGGTTGCCATCCTCATCTGGGGTGTCGCCAGTTTTGCCTTGGTACCGCCATTGCAGATGCGCGTGATGGAAGCCGCCAAGGACGCGCCCAACCTGGCCTCGGCAGTGAATATCGGCGCCTTCAACTTCGGCAACGCGATTGGTGCGGCGCTGGGCGGCGCGGTGATCAACGCGGGGTTGGGTTACCCGGCGATTTCCCTGGCCGGCGCGGCAATGGCGGGTCTGGGGCTGCTGATGGTGCTGGCTTTTGCCTGGCGTGCCCGAGGGGTTGCGGCTGCGGCGTTGTGAMRINPPLVALAIGAFGIGVTEFAPMGMLPGIAADLGVSIPAAGLLVSAYALGVLLGAPLMTLTTGRIPRRYLLIGLMAIFTLGNLMSALATDYYSLMVARVVTSLNHGAFFGVGSIVAASVVAPEKRAGAVAAMFMGLTLATIGGVPLAAWFGDLFGWRTAFWGITGLGVMAMAALWFALPNLPAPQSSGVLAEIRVLGRGPVLGALALTVVGSGAMFTVFTYIAPILTSETHASSAFVTAMLVLFGVGLTLGNMWGGKAADRSIDRTLIVSLSVLILVLLAFTVLMRWPLPAAVAILIWGVASFALVPPLQMRVMEAAKDAPNLASAVNIGAFNFGNAIGAALGGAVINAGLGYPAISLAGAAMAGLGLLMVLAFAWRARGVAAAALPGPT0028991_3703DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0028991-ydhP-K19577NANA
D1-35_02555894dmlR_13HTH-type transcriptional regulator DmlRATGGACTTCAACGGCAGATCAGGTGAAATGGCCATGTTCGCCACGGTGGCGCAGGAAGGCAGCCTGTCGGCCGCAGCGCGTGTATTGGGGCTGACCCCTTCGGCGGTCAGTCGGATCATCGCGCGAACCGAACAACGGCTCGGCACCCGCCTGCTGTTGCGCACCACCCGCTCGATCACCTTCACCGCCGAAGGCGAGGCTTACCTGCGCGCAGCCCGGCGTATCCTCGCCGACATGGCTGAGGTCGAAGAGGCCATCGCTGACCAGGGCGTGCCCAAGGGCCGTTTGCGGGTCAGTGCCGCCCTCGGCCATGGGCGGCAGACCATCGTTCCTCTGGTGGCCGCATTCAGCGCCCGCTACCCGAACATCGTCGTCGACCTCACCCTTGGCGACGAAGTGGTCGATATTCTCGGCGGCCAGGCCGATGTGGCGGTGCGGTTTGGCCACCTGCCCGACAGCCCGCTGACGGCCCGCAGGATCGGCGACACCGGCCAGGTGGTGGTGGCTTCTCCCGAGTATCTGCAACGACACGGCACCCCTCAGGAACCGGAAGACCTGCTGCGGCACAACTGTCTGCGCTTCAACTTCCGTCGCGCCGAACCCAACTGGCCGTTCACCCGCGACGGCAAAGAGTTTTCCCTGAAGGTCAGCGGCAACATCGAATGCAGCAGTGGCGAGGCGCTGGCACAGTTCGCACGGTTGGGGGCTGGCATCGCCCGTATCGGCGAGTTCAGCGTGGCCGAGGACCTGCAACGCGGCGATCTGGTATCGCTGCTGGATACCTGGAACCCCGGAGACCGGGAGCCGATCCATGCCGTCTTCGTGGGGGGTGCGGCGATGCCGGCGCGGGTACGGGTGTTTGTGGACTTTCTGCTGGAGCAGCATCGGATGTGAMDFNGRSGEMAMFATVAQEGSLSAAARVLGLTPSAVSRIIARTEQRLGTRLLLRTTRSITFTAEGEAYLRAARRILADMAEVEEAIADQGVPKGRLRVSAALGHGRQTIVPLVAAFSARYPNIVVDLTLGDEVVDILGGQADVAVRFGHLPDSPLTARRIGDTGQVVVASPEYLQRHGTPQEPEDLLRHNCLRFNFRRAEPNWPFTRDGKEFSLKVSGNIECSSGEALAQFARLGAGIARIGEFSVAEDLQRGDLVSLLDTWNPGDREPIHAVFVGGAAMPARVRVFVDFLLEQHRMPGPT0028940_840DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-CHLORAMPHENICOL|TRIMETHOPRIN_EFFLUX_PUMP_BpeEF-OprC,PGPT0028940-bpeT-K18900NANA
D1-35_02556528hypothetical proteinATGAGCACGGTACAGCCTCCGACCACGTCAAAGTCCGCGAAATGGCGCTTCAAGGCAGGCATCGCCATTCTTTGCCTGATGCTCACGTTATGGTTGCTGGTGCCGCTGGCAGCGGCTGCGGATGTACCCCGCTCCACCATCGCGGCGATCACCGGCGCGCTGTTCATCATCAACAAGGTGCTGTTGCTGCTGGTCATCGCGGTGATGGGCAAGGCAGGTTTTCAAGAGCTCAAGCAGAAGGTGTTCGGTTATGTGTCGGGCCTTGTACCCAGTGCCGAGCAGGAGGTCAGCGTCACCCGCCACCGTATTGGCCTGGTGATGTTCTGCCTGCCGTTGCTGTGCTCTTTTCTTGAACCTTATATCGATGCCTTCGCGCCCGGCTTTCGCCCCAACAGCTGGGCGTTGCAACTGCTTGGCGATGTCCTGTTGATCGGCAGCTTCTTCGTCCTGGGTGGCAACTTCTGGGAGAAATTGCGCGCGTTGTTTATCCGCACCGCACGGGTCAATACCGCTGCCGACGCGGTCTGAMSTVQPPTTSKSAKWRFKAGIAILCLMLTLWLLVPLAAAADVPRSTIAAITGALFIINKVLLLLVIAVMGKAGFQELKQKVFGYVSGLVPSAEQEVSVTRHRIGLVMFCLPLLCSFLEPYIDAFAPGFRPNSWALQLLGDVLLIGSFFVLGGNFWEKLRALFIRTARVNTAADAVNANANANANA
D1-35_025571122aaeA_3p-hydroxybenzoic acid efflux pump subunit AaeAATGCCCGATTCGCCCAGTTCCGTCGAGCCTGAGTTACAAACCGAACCGCTTCCTGAAAAGCCTGCGCCAGCCAATCCGCTAAGGCGCATTGCCCTGGGCGTTGCAGTGTTGATCGCCGTGCTGTTCACCCTCTCGATTTTCATGGAGCGCCGCACGCCCTCGACGTCACAAGCCGTGGTGCAAGCCTATGTGGTGGAAATGGCTGCCGAGGTGGGTGGCCGTGTGACAGAAATTACGGTGCTCGACAATGCCCGGGTGAAGACCGGCCAGGTGCTGTTTCGTATCGACCCGCAGCCTTACAGACTTGTCGTCAGCGAGGCAGAGGCACGGCTGGAGGAAGCCGGCCAGGCAGTGGGCGCCAGCACCGCCTCGGTGGATGCCGCCCAGGCGCAGCTGGTATCGGCGCGAGCGCAGCGCGACAACATTCGCGAGCAAGCCCGACGGGTGAATCAACTGGTTGAGCGTGGCGTGTTTGCCGCCGCCCGCCAGGATGAAGCGAAAGCCTCGCTGGGCTCCGCCGAGGCGGCCGTCAGCAAGGCCCAGGCCGACCTGGAACGGGCGCGCCAGCAACTGGGGCCCAAAGGCAACGACAACCCGCAGTTCAAGCAAGCCCTGGCCGCGCTGGAAAAAGCCCGGCTCGATCTGGTGCGCACCGAAGTCATCGCACCCGCCGACGGCGTGATCACCCATCTCCAGCTCGCGGTCGGTCAGGTCGTCAGCGCCGGCCAACCGGCACTGACCTTCATCGACAGGGGCACGGTATGGGTGTCTGCCGCGTTCAAGGAAAACAGCCTGGAACATGTGCAGGCCGACGATCCGGCGGAACTGGTGTTCGATGTATTGCCGGGCCGTGTGTTCAAAGGCCGTGTTGAAAGCGTCGGCTGGGGTGTCGCGCAACAGGGCAGCAGCAACTCGGCCCTGCCCTCGGTGCGCAACCAGAGTGGTTGGGTGCGCGACCCGCAGCGCTTTCCGGTACGCCTGATAGTGGAGGAACCGCACCCCATCGGCCCGCGTTACGGCTCGCAGGTGAGCGTGGTGATCTATACCGATGACAACCCCATGACTAACGCACTGGGGGCATTCATGACACGCCTGGGCGCCTGGCTGAACTATGTCAATTGAMPDSPSSVEPELQTEPLPEKPAPANPLRRIALGVAVLIAVLFTLSIFMERRTPSTSQAVVQAYVVEMAAEVGGRVTEITVLDNARVKTGQVLFRIDPQPYRLVVSEAEARLEEAGQAVGASTASVDAAQAQLVSARAQRDNIREQARRVNQLVERGVFAAARQDEAKASLGSAEAAVSKAQADLERARQQLGPKGNDNPQFKQALAALEKARLDLVRTEVIAPADGVITHLQLAVGQVVSAGQPALTFIDRGTVWVSAAFKENSLEHVQADDPAELVFDVLPGRVFKGRVESVGWGVAQQGSSNSALPSVRNQSGWVRDPQRFPVRLIVEEPHPIGPRYGSQVSVVIYTDDNPMTNALGAFMTRLGAWLNYVNNANANANANA
D1-35_025581047hypothetical proteinATGTCAATTGACGGGCAGGCCGAACTTGAGCTGCTGCGGATCAAACGCCAGGGACTGCGTGTCGCCCTGGCAGTGACCGTGGGCTTGTGCGCGGGTCTGGTCCTGGGCGACGTCCTGCCGTTTCTCGCGCCCTTGTTCGCCATCCAGTTCCTCTTGGCCAGCCGCCGCGCGCCAGCGCTGTCTCAAGGGTTGATTACGTTGCTGGTGAGTATGCTCACCGGCGCGCTGCTGGTGGGTGTGACGGGTATGTTCGGTGAACGACCATGGATATTGCTGCCGCTGCTTTGGCTGTTTTATCTCGCCTGTTTTACCGCGCAAGGCCGGCAACCTGGCGGCGCGGGACCAGCGCTGATGCTGGTGATCGCCATTGTGGTGCCGATGCTCGATATCGCGCAGAGCGATCTGGGCGAGTCCATTGTGCTGGTACTGGTCAAGGCGGTCGGCCTGGGTTTGCTGCTGGCCTGGGGCGCCCATGCGCTGCTGCCCGACCCTGCTGGTGAACATGCCAGGCAGGCCTCCGCCCAGCCGCACGAGCAGACGCTGGTGATTCGCCAGGCCATGGCCAGCGCGACAATTCTGCTGACCATGGTTGCCCTGTGCCTGAGCGACCCACGGCTGGCCACGGCGATCGTCGTCCCGATCACGGTGGCCTCGTTGCTTAGCCAGTTTTCCCTGGGCATGAGCAGCCGCACCGCCCTTGGCCTGGTGCTGGTCAACCTGCTAGGCGGGATGGCGGCGTCTGTGGCCTTCACGCTGTTTGAACTGCGCCCGACCCTGTGGCTGGTGGCGCTGATCCTGTTGCTGGTAAGCCTGCTGTTTGCCGGCAAAGCCGCCATCGGCAACGCCACTGGGAAGATATTCGGCGGCGGGCTTATCACCTTCGTTATTCTGTTCGGGCTCGGTGTATCGCCACTGCCAACAGAGACGCCACAGCTGTTTTCCAGCCGAATCGCCTACGTGCTGTTTGCAGTGGTCTATGCCATTGGCCTGGCCGCGCTGCTGTGGCCAAGAGCGCGCGTATCGGAGCCTCGTCCGCAATCGGTGTAGMSIDGQAELELLRIKRQGLRVALAVTVGLCAGLVLGDVLPFLAPLFAIQFLLASRRAPALSQGLITLLVSMLTGALLVGVTGMFGERPWILLPLLWLFYLACFTAQGRQPGGAGPALMLVIAIVVPMLDIAQSDLGESIVLVLVKAVGLGLLLAWGAHALLPDPAGEHARQASAQPHEQTLVIRQAMASATILLTMVALCLSDPRLATAIVVPITVASLLSQFSLGMSSRTALGLVLVNLLGGMAASVAFTLFELRPTLWLVALILLLVSLLFAGKAAIGNATGKIFGGGLITFVILFGLGVSPLPTETPQLFSSRIAYVLFAVVYAIGLAALLWPRARVSEPRPQSVNANANANANA
D1-35_025591323yhdG_2COG0531putative amino acid permease YhdGATGACAGTGAACCGGTCACAACCCAAGCCCTCTTTGCGCCGCGCCATCACGGGGCCGATGCTGTTTCTGTTCATCCTGGGCGATGTACTGGGCGCTGGCGTTTATGCCCTTGCGGGTACCATCGCCGGAGAGGTAGGCGGGGCGATTTGGGTGCCGTTGTTGATCGCGTTGTTCTTCGCCATGTTGACGGCAGGTTCGTACGCCGAACTTGTCTCGAAATATCCTCACGCGGGCGCGGCGTCGGTGTTTGCCGAAAAGGCTTTCAAGTCACCGCTGATATCGTTCCTGGTTGGTTTTTGCATGCTCGCCGCGGCGGTGACCAGCGCGGCCGGTCTCTCGCTGGCCTTCGCGGGGGACTATCTTGGCGCATTCATCCAGGTATCACCCCACGTTGCTGCGCTGATTTTCCTGCTGGTCATTGCCCTCTTGAATGCGCGAGGAATCAAGGAATCTCTGGGGGCGAATCTGCTGATGACCGTGATCGAGCTGTCAGGGCTGATGTTGGTCATCGTGGCTGCGGGTTACTTTTTCAGTTCTGGCGAAGCTGAACTGGCAAGGGCGCTGGAGTTCAAGCCTGGGGTCAGTCCGATGCTGGCGGTATTGGGCGCGGCGTTGCTCGCGTTCTATTCGTTTGTCGGTTTTGAGACGTCCGCCAATCTCGCGGAAGAGATCAAGGATGTTCGCAAGGTATACCCACGGGCCTTGTTTGCGGCGCTGATTACCGCAGGGGTGGTTTACATGGCTGTTGGGGTCGCCGCGTCTTCAGTTTTGCCAACGGAAAAACTGCTTGCCACATCGGCCCCATTACTCGAAGTGGTTCGGGCTTCCGGGCTCGACATTTCGCCGCGCCTGTTTGCCTTTATCGCGCTCATCGCGGTGGCCAACGGAGCGCTGCTGACCATGATCATGGCCAGTCGACTCACTTATGGGATGGCCAATCTGGGGCTGTTGCCAGATGTCCTGGGAAGGGTTCTGCCGCATAGGCGCACACCCTGGGCGGCGATTATTGCAACGACGCTCGTAGCCATCGCACTGACGCTGACAGGAACGTTGGCGACCTTGGCGCAAACCGTGGTGCTGCTTTTACTGTTCGTGTTCCTCAGCACCAACATGGCCGTGCTGGTGTTACGCAAGGACAAGGTTGCGGAAGAACATTTTCAGGTTCCCACCTGGGTACCCTGGCTGGCGATCCTGTCTTGCCTCTTATTGCTGAGTCAGCAAGACTTGGGTACGTGGCTGCGAGGCGGGGCACTTATCCTGGTGGGGATGCTGCTGTATGTCTTTGCCCGAATGGCTGTGCCGGCTGTTGTAAAACCAGACTAGMTVNRSQPKPSLRRAITGPMLFLFILGDVLGAGVYALAGTIAGEVGGAIWVPLLIALFFAMLTAGSYAELVSKYPHAGAASVFAEKAFKSPLISFLVGFCMLAAAVTSAAGLSLAFAGDYLGAFIQVSPHVAALIFLLVIALLNARGIKESLGANLLMTVIELSGLMLVIVAAGYFFSSGEAELARALEFKPGVSPMLAVLGAALLAFYSFVGFETSANLAEEIKDVRKVYPRALFAALITAGVVYMAVGVAASSVLPTEKLLATSAPLLEVVRASGLDISPRLFAFIALIAVANGALLTMIMASRLTYGMANLGLLPDVLGRVLPHRRTPWAAIIATTLVAIALTLTGTLATLAQTVVLLLLFVFLSTNMAVLVLRKDKVAEEHFQVPTWVPWLAILSCLLLLSQQDLGTWLRGGALILVGMLLYVFARMAVPAVVKPDPGPT0020810_5910DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GENERAL_AMINO_ACID_TRANSPORT,PGPT0020810-TC_APA|yhdG-K03294NANA
D1-35_02560978hypothetical proteinATGAGCCGTCATGATCATGGTCACGCCTGCCTCCTTGAGGCCTTCAGCGCAATGACACTGGAGCTCCAGCGCCTGGCGCAGGACAAGAACATCGAGCATTTCCACGAAGCGGCGCTGAGCTGCATCAGCCAGCTGTTGCCCTTCGAGAGCGCCTGGTGGGGCCGCGGCGCGTTGGTTGACGGACTGCCTGAAGAACACAGCTCCTATCTACATGAACTGCCCCGCAGCTACCTGTCGGACTGGCAGTCGATTCGCCATATCGATGTGACTGTCGCCAGGGCCCACGATGTTCCGGGGCGAGCGGTCATCGTCGACATGCGCAACCCTGCCAGCGGCTCCGGGCTTAACTGGCTCGGCCAGACGTACGCCATCGGCGAGTTGCTGTGCGTGGTGTACATCGACCCGCAAACCCACCTCAGCGACCACCTCGCACTCTATCGCGCCCCAGACGCGGCACGCTTCACCGAGCAAGACTGCCTGTTGCTGAACAATCTCATGTTGCACCTGGTGGCGGCGGTATCCGCCAATCAGATTCGCACCCTGGTGGCGATGCGCGAGGCCCTCACGCATCCGCGCAACCTCGCGCTCGCCGTGTGCGACCAACGCGGCACCCTGCACTGCGCGGAACGTGGCTTCGTCGACTTATTGTTGAGCGAGTGGCCGGACTGGACCGGCCCTTGCCTGCCGGTGGCGATGAACGCTGACGGCTATGAAGGCAAGCACTTGCAGATCGAGGCATCGACGGTCGGCGACCTGCTCCTGCTGGCCGCTCGCAGCCGCACGGTGCTGATGCAACTGAGCCCACGGGAAAACGCCGTGGCCCAGGGTTTCGGCGAAGGCAAGACCTACAAGGAAGTCGCCCGCGACCTGGGCATGTCTCCCAACACCGTGCGCCATCACATCCGGGCGATCTACAGCAAGCTCGGAGTCAAGGACAAGGCCCGTATCGCCCATCTACTGCATGCCCCATCCGACTAAMSRHDHGHACLLEAFSAMTLELQRLAQDKNIEHFHEAALSCISQLLPFESAWWGRGALVDGLPEEHSSYLHELPRSYLSDWQSIRHIDVTVARAHDVPGRAVIVDMRNPASGSGLNWLGQTYAIGELLCVVYIDPQTHLSDHLALYRAPDAARFTEQDCLLLNNLMLHLVAAVSANQIRTLVAMREALTHPRNLALAVCDQRGTLHCAERGFVDLLLSEWPDWTGPCLPVAMNADGYEGKHLQIEASTVGDLLLLAARSRTVLMQLSPRENAVAQGFGEGKTYKEVARDLGMSPNTVRHHIRAIYSKLGVKDKARIAHLLHAPSDNANANANANA
D1-35_02561882hypothetical proteinATGCCAATGACCAAGACTTTCACGCGCAATGCCGCACTGGCCCTGATCGGTGGCTTGTCGAGCCTGCACGCCAGTGCCGCCGACCTCAATGCCCGGGATTTTTTCGGCGCGCCTTCAGGCACCAACCTGGGCGTGGTGTATTTGCCGGCGAGCCGCGCTGACGACTTTCACGGCCCGGCCGACAGCACCGGCAAGGCCGACCTCAAGGTCAACGCCATGGCTTACCGTCAGGTATTTTTCACCGACGTCTGCGGCACCCTGTGCACTCCGCAGTTCATCGTGCCCTTTGCCGACATCAACGCACGCCTGCCAGGTGCCAGCCAACACACCGGGGAAAGCGGCTTTGGCGACCCTCAGGTCGGCGGCACGCTGTTCATCATCAATGACCCCGCCTCACGCACCTATAGCGGCTTGCTGACCCTGATCACCCTGCCAATTGGCGAATACCACGGCAAAAATCCAGACGTATCGCCCGGCGCCAATCGTTGGGGCGCGACCTTCGTTTACAACTACACCCAGGGCATCGGCGAAAAATGGGTATTGGAGGCGAACCTCGAAGCCCAGCTCTACGGCAAGAACGACGATTACTTTGGCAGCGAGCTGAAACAGGACCCGCTGTATCGCCTGCAGGCCTTCGCGTCCTACGACTTTACGCAAAGCACCTACGGGGCTTTGCGGCTGATCCACGCAGATGGCGGCGAACTGCGGATCAACGACCAGCGCATCGATGACACCCACAAGCGCTACACCCAGGTGGGCTTCGAAGTCGGCCACTGGCTGGATAAACAGAACCAGGTGATGTTCGGCCTTTCGCAAAACGTTGCCACCGATAACGGCTACCACGGCACTGACGCACTGCTGCGTCTGGTCCACGTGTTCTGAMPMTKTFTRNAALALIGGLSSLHASAADLNARDFFGAPSGTNLGVVYLPASRADDFHGPADSTGKADLKVNAMAYRQVFFTDVCGTLCTPQFIVPFADINARLPGASQHTGESGFGDPQVGGTLFIINDPASRTYSGLLTLITLPIGEYHGKNPDVSPGANRWGATFVYNYTQGIGEKWVLEANLEAQLYGKNDDYFGSELKQDPLYRLQAFASYDFTQSTYGALRLIHADGGELRINDQRIDDTHKRYTQVGFEVGHWLDKQNQVMFGLSQNVATDNGYHGTDALLRLVHVFNANANANANA
D1-35_025621164hypothetical proteinATGAACACCCAGACCCAACCGCTTGTGGATGAGCGTTTGCGCGCATCATCTGAACGGGCGTTGCTGGCAGCCATCGTGCTGTTCGCCGCCATCACCCCGACCATTCTCATGACCGCACCGGCCATTGCGGCGCAACTGGCGACTCAATGGCAGTTGAGCCCGTCACAGATCGGCGACCTTTTCTCCACCGAACTTGGCGCCATGAGCCTGGCCACCCTGCCCGCCCTGTGGTGGCTGAAACGTATCGACTGGCGCCGCGCCGCATTGCTGGCGGGTGTCGTGTTCATTGCAGCAAACCTTTTATCAGTGCTTGCTGCCGACTACTCGATACTCCTGGCGTTACGCTTTTGCAGTGCCCTGGCGGGCGGTTCGTTGATGATCATCTGCCTGTCCAGCGCCGCGTCAACAGCCAATCCCGGTCGCGTCTATGGGTTATGGGTGCTGGGGCAACTGGTCGTCGGGGCGATCGGTTTGAGCATCCTGCCTCGGCTCTTCGAACACTTCGGGCTATCGGCGTGCTACGTGATCCTCGCAGGGTTGATGACGGTCTTTTTGCCACTGGCCCGCTATTTTCCGCAAGGCAGCCCATCGGCTGAAACAACCGCCGAACATGTCGTCATCGCCTCGCTGTGGAAAGCCGCGCTGGGCATTCTGGGGGTCTTGAGTTTCTACATTTGCCTGGGCGGTGTGTGGACCTTTATCGGCTCCATCGCCACCCAGGCAGGTATCTCCGCCGAGTCCAGTGGCAAGGTTCTGGCGCTCGCCACGGTGATGGGCATTGTCGGAGCGGGCTGTGCCTCACTGATCGGCGACCGACTGCCACGCTTGCTGCTGTTGCTGCTGGGCTACGCACTGATGGCCGGCTCAGTGCTGCTGCTGCGAGGTCAACCCGAAATAATGCAATTTGCCGTGGCGGCCCTGCTGTTCAAGTTCACCTGGACCTTCATCCTGCCGCTGATTCTGGCCTGTCTGGCCGACCTCGACCGCTCCGGGAAACTGATGAACGCCTCCAACCTTGTGATCGGCGGTGGCCTGGCTATCGGCCCGACAGTGGCGGGCCGGCTGATCGAAGCCAGCGGCGGCTTCCAGTCGCTGCTGATCGGCGGGACGTGCATCACCCTGCTCTCCCTGGCGTTGATGCTCGGCAGCCGCCCAAACGCATGAMNTQTQPLVDERLRASSERALLAAIVLFAAITPTILMTAPAIAAQLATQWQLSPSQIGDLFSTELGAMSLATLPALWWLKRIDWRRAALLAGVVFIAANLLSVLAADYSILLALRFCSALAGGSLMIICLSSAASTANPGRVYGLWVLGQLVVGAIGLSILPRLFEHFGLSACYVILAGLMTVFLPLARYFPQGSPSAETTAEHVVIASLWKAALGILGVLSFYICLGGVWTFIGSIATQAGISAESSGKVLALATVMGIVGAGCASLIGDRLPRLLLLLLGYALMAGSVLLLRGQPEIMQFAVAALLFKFTWTFILPLILACLADLDRSGKLMNASNLVIGGGLAIGPTVAGRLIEASGGFQSLLIGGTCITLLSLALMLGSRPNAPGPT0028991_3861DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0028991-ydhP-K19577NANA
D1-35_025631113COG0123Histone deacetylase-like amidohydrolaseATGAGCCGAAAAAGTGCATTTTTCTTCGACGAACTCAGCCTCTGGCACAGCGCCGGGTTGCATGCCTTGACCTTGCCGGTGGGAGGATGGGTACAACCACCTGCCGCTGCGGGCCACGCTGAATCGCCGGAAACCAAACGCCGTCTGAAGAGCCTGCTGGACGTTTCCGGCCTGACCCGTCATTTGCAGGTACGCAGCGCCAACGCGGCGACCGATGAAGATCTGCTGCGGGTTCATACATCCGGTTACCTGCAACGCTTCAAGACGATGAGCGATGCCGGGGGCGGTGAGTTGGGGCCGCACGCCCCCATCGGGCCTGGTAGTTATGAAATAGCCAAGCTCTCTGCCGGGTTGGCCATCGCCGCGGTCGATGCCGTGCTCGTCGGGGAAGCCGACAACGCATACGCCCTGTCGCGCCCGCCAGGCCATCACTGCCTCGCCGACAGCGCCATGGGCTTTTGCTTCCTGGCCAACATTGCCATCGCCATTGAAGCCGCAAAAGCCCGCCGTGGCCTGGGCAACGTCGCGGTGATCGACTGGGACGTACACCATGGCAACGGCACACAATCCATCTTCGAAGAGCGTGGTGACGTGCTGACCATCTCACTGCACCAGGACGGTTGTTTCCCGGCGGGTTACAGCGGTGAAGCTGATCGCGGCCGTGGCGCGGGGTTGGGTGCGAACATCAATATTCCACTGCCGCCCGGCAGCGGCCATGAGGCTTACCTGTACGCGATGGAACGCATCGTGATCCCGGCACTGGAGCGCTTCGAGCCCGAATTGATCATTGTCGCCTGCGGCTACGACGCCAACGCCGTCGACCCGCTGGCCCGCATGCTGTTGCACAGCGACTCGTTCCGGCAGATGACCTGCCTCGTGCGTAAAGCCGCCGAGCGCTTGTGCCAGGGCCGTCTCGTGCTGGTGCACGAAGGTGGATACTCAGAAGCGTATGTACCGTTTTGCGGGCTGGCGACCCTTGAGGAACTGGCGGGCGTGAGGACTGTTGTCACCGATCCCATGCTGGAATTTGTCCAACTGCAGCAACCGAAGGAGGCGCTTGCGGCGTTTCAGCGGCACTTGATCGATGAGTTGGCCCACACACGCTTGGCCTAGMSRKSAFFFDELSLWHSAGLHALTLPVGGWVQPPAAAGHAESPETKRRLKSLLDVSGLTRHLQVRSANAATDEDLLRVHTSGYLQRFKTMSDAGGGELGPHAPIGPGSYEIAKLSAGLAIAAVDAVLVGEADNAYALSRPPGHHCLADSAMGFCFLANIAIAIEAAKARRGLGNVAVIDWDVHHGNGTQSIFEERGDVLTISLHQDGCFPAGYSGEADRGRGAGLGANINIPLPPGSGHEAYLYAMERIVIPALERFEPELIIVACGYDANAVDPLARMLLHSDSFRQMTCLVRKAAERLCQGRLVLVHEGGYSEAYVPFCGLATLEELAGVRTVVTDPMLEFVQLQQPKEALAAFQRHLIDELAHTRLANANANANANA
D1-35_025641392qseC_2Sensor protein QseCATGACCTCCGTGCGGGCGCGCATCCTCATTCCTGTATTGGCCCTGATCCTGTTGGGAGACGCCCTGATCAGCTGGCTGGTGCTGCGCGATAGCCACCAGGAAATAGAAGAAGTCTACGACGCCCAACTGGCCCAAAGCGCGCGGCTGCTGCAAGGCGTGCTGCGCCAACGCGACCCCGGCGAAGCTGACTGGGACCGCCTGTACCAGGCCTTCGACCAGGCCATGAGTCGTGTCGGTGAAAACGGCGTTGCCCATCCTTATGAAACGCGCTTGACCTTCCAGGTGTGGCGCAGGGATGGTCAGCTACTGGTGCGCTCCGCCGGCGCACCGGTTCTCGATGCGTCGCTGGCCACCCTGGGTTCCCACGACATCGTCGATAACGGCAACGACTGGTGCGCCTTTCTCCTTGCCGACCCTGAACAGGACCTGCTGATCTGGGTGGGCGAGCGCGACGACATTCGCCAGGACCTGATCCAGCGCATCGTGCGTCATACCCTCTGGCCCAGCCTGATCGGAGTGCCGCTGCTGGCGCTGTTGATCTGGCTGGTCATCGGTTGGGGCCTCAGCCCCTTGCGGGCCATGGCCCTTTCTATCCGTGGGCGCACCACCGAGACTCTGCAGCCGTTGCATCTCAAGCCTCTGCCCAGCGACCTGGAGCCAATGCAAACCGCGCTGAATCGCCTGCTGGACCAGGTCGATGGTCTATTGGAGCGCGAGCGCCGCTTCATCGCCGACGCCGCTCACGAGCTGCGTACACCCTTGGCGATCCTGCGCATCCATGCCCAGAACGCGCAAACCGCGGTGACTGAAGAACAGCGGCGCGAGGCGCTGCATTTCCTGGTCAACGGGGTCGATCGCGCCACCCGCATCGCCAGCCAGCTCTTGACCATGGCCCGCATCGAACCGCAACTGAACAACCCCGTGTATCAACGCGTGCAACTCGCCGAACTGGTCCGCGAAGAGTTGGCTGAACTCACGCCACTGGCCATGGAGAAAAGCGTGGAGTTGGTACTGGAGTGTGATGAAGAGTGTTGGCTGCAAACCGAGCCGGTAGCACTGGCCATTGTCCTGCAGAACCTGGTGACCAATGCCCTCAACTTTTCTCCACCAGGGAGCGAGGTGGCTGTGGTGGTGCGCAAGGACGAGGCGGGCAGGGTCTGCTTGAGGGTTGAAGACGCCGGCCCGGGGATCGATGAAGGGGAAATCGCAAGGCTGTTCGAGCGCTTTTACAGTCGCGGCAATGCCAATGGCGCGGGCCTGGGATTGGCCATCGTGCAGATGGTGACAAACAAGATTGGCTGCACGTTACGCCTTTACAACCTGGCGGGCGGTGGCGTTTGTGCGGAACTTTGTCTGAACAGTGACCTTGCAAGCCCGACCTCCAACGCTTGAMTSVRARILIPVLALILLGDALISWLVLRDSHQEIEEVYDAQLAQSARLLQGVLRQRDPGEADWDRLYQAFDQAMSRVGENGVAHPYETRLTFQVWRRDGQLLVRSAGAPVLDASLATLGSHDIVDNGNDWCAFLLADPEQDLLIWVGERDDIRQDLIQRIVRHTLWPSLIGVPLLALLIWLVIGWGLSPLRAMALSIRGRTTETLQPLHLKPLPSDLEPMQTALNRLLDQVDGLLERERRFIADAAHELRTPLAILRIHAQNAQTAVTEEQRREALHFLVNGVDRATRIASQLLTMARIEPQLNNPVYQRVQLAELVREELAELTPLAMEKSVELVLECDEECWLQTEPVALAIVLQNLVTNALNFSPPGSEVAVVVRKDEAGRVCLRVEDAGPGIDEGEIARLFERFYSRGNANGAGLGLAIVQMVTNKIGCTLRLYNLAGGGVCAELCLNSDLASPTSNAPGPT0003920_789DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-POLYMYXIN_RESISTANCE,PGPT0003920-pmrB-K07645NANA
D1-35_02565663basRTranscriptional regulatory protein BasRATGCGCCTGCTCCTTGTCGAAGATGACCGTGCCCTCGGCCAGGGAATTCGCGTAGCCCTGGGTGCCGAAGGCTACACGCTGGACTGGCTGCAGGATGGCGTCGCGGCCCTGCACGCCGTGCGCAGCGAAAGCTTTGACCTGTTGCTGCTCGACTTCGGCCTGCCACGCCTCGACGGCCTCGACCTGTTGCAACAACTGCGCGCCGAGCAGCACGATTTACCGGTGCTGGTCCTCACCGCCCGCGACGGTACCGCCGAACGCATCGCGGGACTCGACGCTGGTGCCGACGACTATCTGGTGAAACCCTTCGACGTCGAAGAACTCAAGGCCCGCGTGCGCGCCTTGCTGCGCCGCAGCCAGGGCCGCGCGCAACCGATGCTTGAACACGCCGGCGTCAGCCTCGACCCGGCCACTCAGCAGGTGCGCTATCAGGATGCGGATATCATCGTCACCCCCATGGAATACCAACTGCTTCACCAACTGATGGTGCGCCCCGGCAAAGTGGTAACCCGCGAGCGCTTGTCCCGCGCGCTGTACGGCTGGCAGGACCGCGTCGAGAGCAACACATTGGAAGTGTTGATCCACAACCTGCGAAAAAAGTTATCCAGCGAGCTGATCCGCACCGTGCGCGGCGTTGGCTACGTATTGGCGCTCAAACCATGAMRLLLVEDDRALGQGIRVALGAEGYTLDWLQDGVAALHAVRSESFDLLLLDFGLPRLDGLDLLQQLRAEQHDLPVLVLTARDGTAERIAGLDAGADDYLVKPFDVEELKARVRALLRRSQGRAQPMLEHAGVSLDPATQQVRYQDADIIVTPMEYQLLHQLMVRPGKVVTRERLSRALYGWQDRVESNTLEVLIHNLRKKLSSELIRTVRGVGYVLALKPPGPT0003915_1173DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-POLYMYXIN_RESISTANCE,PGPT0003915-pmrA-K07666NANA
D1-35_02566267hypothetical proteinATGCGCAAAATTCTCCTGTTGTCCCTGATTATCGCCAGCCCCCTGGCTGTCGCCGGTCCGCAATGCACCACCGCGGAGCGTTCGCAATGGCAAGACGAAAAAGCCTTCCAGGACAAGCTCAAGGCCGAAGGCTACGAGATCAGCAAGTTCAAGGTGACCGATGGCAACTGCTACGAGATCTACGGCTTCGACAAGGACAAGCGCAAGGTCGAAATCTACCATGACCCGGTCACCGGCAAAGCCGTGAAGACCGAGATCAAAGGCTGAMRKILLLSLIIASPLAVAGPQCTTAERSQWQDEKAFQDKLKAEGYEISKFKVTDGNCYEIYGFDKDKRKVEIYHDPVTGKAVKTEIKGNANANANANA
D1-35_02567546hypothetical proteinATGCCAGGCGAATCCTTACGCCTGTGGGACCCGTTGGTGAGACTGTTTCATCTGTCTATCGCCGGGGTCTTTGTCGCCAACTACTTCTTCAACGAAGCAGGCGACGACTGGCACGTCTGGCTGGGCTATTACGCCATGGCCTGGCTGCTGGTACGAACGGTTTGGGGATTCGTCGGACCACGTAGCGCACGGTGGGCGGACTTCTGGCCCACGCCAGAACGTCTGGGTGCTCACGTGCGCTCGTTGCTCAACGGTCGGCCACAACACCGCCTGGGCCATTCGCCGCTTGGCGCGCTGGTGATGTTGTCGATGTTGCTGGCATTGCTGACTATCGGCATCAGCGGCTTCCTGATGCAGGAAGTCGATGCCCTCTGGGGCGCCGATTGGCCGCTGCAACTGCACGAAACCGCCGCCAACACGCTGCTCGGTCTGGTGTGTGTGCATGTGCTGGCAGCCGTTATTGAAAGTATCCAGGTCCGCGACAACTTGCCGTTATCCATGCTCACCGGTCGCAGGAAGCGCCTGCCCGACGAACGTGCGCAGTAAMPGESLRLWDPLVRLFHLSIAGVFVANYFFNEAGDDWHVWLGYYAMAWLLVRTVWGFVGPRSARWADFWPTPERLGAHVRSLLNGRPQHRLGHSPLGALVMLSMLLALLTIGISGFLMQEVDALWGADWPLQLHETAANTLLGLVCVHVLAAVIESIQVRDNLPLSMLTGRRKRLPDERAQNANANANANA
D1-35_02568300hypothetical proteinATGGATAAGACAATCACCGTGGATCAGCTGGCTACCACCGACCTTGGACCATTCAACGAGATATGGCTCGGTGGAACTCATACCCAGCTATGCCTATGGCGTGGTGCCCAGGTGTTCACCCACGAAATGCTCAGCGAGGGCACCCATGATCAGAATGTCCAGCGCCTGTGCTTGCAGTTGGTCGACCCTGACGATCAGGCCGCGGTGGCCAGCGTTGAGCTGATCGCGCGCGAACGGCTGAACAAGATGGGGAAGGAGGGCGAGTTTTATCCGGCCGAGGAAGCGGACACCCATCAATAGMDKTITVDQLATTDLGPFNEIWLGGTHTQLCLWRGAQVFTHEMLSEGTHDQNVQRLCLQLVDPDDQAAVASVELIARERLNKMGKEGEFYPAEEADTHQNANANANANA
D1-35_02569420glbNCOG2346Group 1 truncated hemoglobin GlbNATGCGCATTGTCCTGCTGGTGCTGATCGGGCTGTTGAGCGCCTGCGCACAATCCTTGCCCAGGGACGACTCGCTCTATCAAGACCTCGGCGCACAGGCCGGGATCACCCGGATCGTCGAGGGCATGCTGCTGAACATCGCGCGTGATGAACGTATCGTAGAGCGCTTTCGCAAGATTGATATCGAGCGGCTGCGCGACAAATTGATCGAGCAATTTTGCCTGGAAACCGGCGGCCCCTGCACCTACACCGGTGACAGCATGGCCGAGAGTCACAAGGGGCAGAACATCAGCCGCAGTGACTTTAATGCCTTGGTTGAAGACCTGATCGCTGCAATGGATGAACAGCGTGTTCCGGTGCCGGTGCAAAATCGGTTGATCGCACGGCTGGCACCGATGCGCGGCGAGATCATCGAGAAGTAAMRIVLLVLIGLLSACAQSLPRDDSLYQDLGAQAGITRIVEGMLLNIARDERIVERFRKIDIERLRDKLIEQFCLETGGPCTYTGDSMAESHKGQNISRSDFNALVEDLIAAMDEQRVPVPVQNRLIARLAPMRGEIIEKNANANANANA
D1-35_02570864hypothetical proteinATGAGTTCACGTTTGTGGCTATCGATCGCCTGTTGCACAGGACTCGCCCTTCAGGTTGTTTCTGCCGACGGCGGGCGTTTGATCGCGACCGGTGGCGCCAGCAGCCTGGAGGGTGCCGCCGGCGGCGGGATCACGCCGTGGGCAGTGCTGGCCGGTTACGGCGAAAAAAACGAATGGGGGGCGACTGCGTTCGCGACCTCGGTCAATCTGCCGGATTATCGGCTGGATGTCGCCGGGCTGGCCGTGGCCTACGACAACCGGGTCGAGCTGTCTTTTGCCCGGCAGCGTTTCGACCTGGGTTCGCTGGTGAACAAGCTGAACCTGCCCGACGATAACCTCGGCCAGGACATCTTTGCCATGAAGGTGCGTTTGTTCGGTGACGTGATCTACGACGATTTGCCGCAGGTTTCCCTTGGTCTGGAGTACAAACACCAGAACAACTTCCTGATCCCGAGCCTGGTCGGCGCCAGGCGGGACAGCGACACCGAAGGCTATCTGGCTGCCAGTCGGTTATTCATGGGCGGGGCGTTTGGCTACAACCTGCTGCTCAATGGCAGCCTGCGCTACAGCCGTGCCAATGAGCTGGGGTTGCTCGGGTTCGGCGGTGACCGTCGCGATACTCGTAGCGTGCTGAAGGAGGGCTCCCTGGCGGTGCTGCTCAATCCGCGCTGGGCACTGGGCGTCGAGTATCGGCAGAAACCGGACAATCTGTCCTTTGCCGGGGAAAGTGACTGGGCTGATCTGTTCGTCGGTTACTTTCCCAATAAACATCTGTCGGTGGTGCTGGCCTACGCGCGGCTGGGCGAAATCGCGACGCTCGACCGCCAGAACGGCACATATCTTTCGGTGCAGGGGAGTTTTTGAMSSRLWLSIACCTGLALQVVSADGGRLIATGGASSLEGAAGGGITPWAVLAGYGEKNEWGATAFATSVNLPDYRLDVAGLAVAYDNRVELSFARQRFDLGSLVNKLNLPDDNLGQDIFAMKVRLFGDVIYDDLPQVSLGLEYKHQNNFLIPSLVGARRDSDTEGYLAASRLFMGGAFGYNLLLNGSLRYSRANELGLLGFGGDRRDTRSVLKEGSLAVLLNPRWALGVEYRQKPDNLSFAGESDWADLFVGYFPNKHLSVVLAYARLGEIATLDRQNGTYLSVQGSFNANANANANA
D1-35_025712358hypothetical proteinGTGAAACTGCGCAATAGTTTCCAGGCGCAAGTCGCAGCGGTGATGATCCTGTTGTCGCTGGGGGTGATCGGCGTGTTGTATTTCAGCGTCAATGCAGCGACCCGTTCTGCGGTGCGTAGCCAGTCCGAGGCGCAGTTGGACGTCGGTACGCGCGTCTTCGAGCGGCTGCTGGAAGTGCAGGGCCGACGCTTGGCCGATGGCGTGCAGTTATTGGCGGCCGACTTCGGCTTTCGCGAAGCGGTGGCCAGCCGGGATGCTGCAACCATCCGTTCAGTGCTGGTCAACCATGGCAAGCGCATCAATGCCAGCGACATGATTCTGCTGAGCATGGACGGCGAGGTGCTCGCCAGTACCCTCGACAACATGCCGGAAGGTTCATTGTTCCAGTACGATGGCGCGCTGCGCCTGGCACAACGTGCGCGCCAGGCCATGGTAATCGTACCGTTGCAGGGTAAACCGCATCTGTTGGTGGAAACGCCCGTACTCGCACCTCTGCCTGTTGCCAGGGTGGTGATGGGTTTCAGCATGGACAAGGCCTTTGCCAGTGAGTTGCGCTCACTCACCAACCTTGAGGTTTCGTTTCTTGCCGTTGATCACCAACGGCCTGGTGAGCTTGTCAGCACGCAACCAGACGTTCTGCGCGGGCCTGTCTCCAGCTTGATGCTCAACTCGTCCAACCGCAACAGCGCGGTACTGACGGAGCACCTGGATCGCAATTTCCTCAGTCAGTTTCTGCTGCTGGCTGACGGTTCGAACGAATACGATGGGCAAGTAATAGCACTCTTGCAGAGTCCGCTGGACGTGGCCATGCAAGCGTTTGCTCCGCTGGACGAAAAAATCCTGGCGATTACCCTGGTCGCACTGATCGCCTCGTTGGTCGGCGCTTTGCTATTGGCACGAGGTGTGTCGCGTCCGGTCAAGTCACTGGCCCTGGCGGCGGAGCGCATCGGTCAAGGCGATTACCAGACCCCCGTGGTATTGGAGCGGGAGGATGAACTCGGGGTGTTGGCCAAAGCCGTCAATTCGATGCAAAGCGGCATCGCCGAGCGGGAGCAGCAGCTGGCCCACAACGCCCTCCATGACCCCGTCACTGGCTTGCCCAACCGCGCATTGGCCATGGAGCGCCTGGGCAGTGCAATTGCCGCCAACCGGCCGATTGCCCTGATCTGCATGGGCATCCATAACCTGCGGGCCATCAACGAAACGGTCGACCCCGAAACGGTCGACCGGCTGCTCCGTCAGACCGGCCAGCAAACCCAAGCCCTGTTGCACCCTGGCGACACCGTGGCGCATCTGATCGCCGAGGAGTTCCTGGTTCTGCTCGATGGGATGGACAGCGATGCGGCGGTCGCCTTGGCGGACCGGTTGCAGCAAGTATTGCTCAAGCCCCAGCACATCAACGGCCACGACCTGGCCCTGGACTGCAGGCTTGGAATAGCGGCCTACCCGGCGGATGGGCAAAGCGCGCAGACCCTGCTGGAACGCGCCTCCATCGCCATGAAAGACGCGGCGCAGATGCCAGGTCATCTACAGATTTATCAGCACGGGCGTGATTTGGCCCACCGCCGCCAGATCGCCCTGATTCGAGACTTGCGCCACGCGGCGAACAACGGTGAGCTGCTCCTGCATTACCAGCCCAAGATGGACATTCTGAAGAGTCATGTCCGCCAGGCTGAAGGCCTGTTGCGCTGGCAGCATCCGCAACTGGGCCCGATCTCTCCAGCCGAATTCATTCCCTTGGCAGAACGGACCGGAAGCATTCAGGCGCTGACCCACTGGGTGATCAACGAGGGCATGCGCCAGCTCTCGGAGTGGAATGGGCGAGGGTTACGCTTGCAACTGTCATTGAATATATCCGCCGAAGACCTGATCAGCGACGATCTGCCTGGTCGGGTCGTGGTGTTGCTGCGCACGCATCGGCTGCCAGCCGAGCAGCTGGTGTTTGAAGTCACCGAGAGCGCTGTCATGCGCGAGCCCGAGCGGGCCTTGAAGAACCTCCATTTGTTGCGCGATTGCGGCATCAGTCTGTCGGTGGATGACTTCGGTACCGGCTATTCGTCCTTGGCGCACCTCAAGCGACTGCCGGTGCAAGAGTTGAAAATCGACCAGTCGTTCGTCCGAGACCTGCATGACACCAGCGAAGATGCGGTAATTGTCCGCTCGACCATCGAAATGAGTCATAACCTGGGGCTCAAGGTAGTTGCCGAAGGCGTTGAATATGAACACAGCCTGAGATTACTCGAGCGTTGGCATTGCGATACCGCGCAGGGCTACCTGATCAGCCGACCGCTGACCGCCGCGGCGTTCGAGGCCTGGGTGGCGTTGCCTTTGAATCTTCATTCTTCGCTGGTTCATTGAMKLRNSFQAQVAAVMILLSLGVIGVLYFSVNAATRSAVRSQSEAQLDVGTRVFERLLEVQGRRLADGVQLLAADFGFREAVASRDAATIRSVLVNHGKRINASDMILLSMDGEVLASTLDNMPEGSLFQYDGALRLAQRARQAMVIVPLQGKPHLLVETPVLAPLPVARVVMGFSMDKAFASELRSLTNLEVSFLAVDHQRPGELVSTQPDVLRGPVSSLMLNSSNRNSAVLTEHLDRNFLSQFLLLADGSNEYDGQVIALLQSPLDVAMQAFAPLDEKILAITLVALIASLVGALLLARGVSRPVKSLALAAERIGQGDYQTPVVLEREDELGVLAKAVNSMQSGIAEREQQLAHNALHDPVTGLPNRALAMERLGSAIAANRPIALICMGIHNLRAINETVDPETVDRLLRQTGQQTQALLHPGDTVAHLIAEEFLVLLDGMDSDAAVALADRLQQVLLKPQHINGHDLALDCRLGIAAYPADGQSAQTLLERASIAMKDAAQMPGHLQIYQHGRDLAHRRQIALIRDLRHAANNGELLLHYQPKMDILKSHVRQAEGLLRWQHPQLGPISPAEFIPLAERTGSIQALTHWVINEGMRQLSEWNGRGLRLQLSLNISAEDLISDDLPGRVVVLLRTHRLPAEQLVFEVTESAVMREPERALKNLHLLRDCGISLSVDDFGTGYSSLAHLKRLPVQELKIDQSFVRDLHDTSEDAVIVRSTIEMSHNLGLKVVAEGVEYEHSLRLLERWHCDTAQGYLISRPLTAAAFEAWVALPLNLHSSLVHPGPT0026010_460DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0026010-mucR-K21023NANA
D1-35_02572684hypothetical proteinATGTCCAGGAATAACCCGCTTTTTGCACTGCTGTTACTGTTCGCGTGCCCCGTCGGGTGGGCGGGGGTGGCCAAGCTTGATGTGGCGATGCACGAAGGCACGGGCCAGCGGCTGCCCGACGCGGTGGTCACGCTGCAAGGCCCGATCGGTGCGCCGTTGGCGCCTCCCGCCGCCAATATGGATCAGCGCAACCAGCAATTTGCGCCTCATGTGCTGGCGGTGCACACCGGCACCCCGATCAAATTCCCCAACAGCGACAACATCCGCCATCAGGTCTACTCGTTTTCGCCGGCGAAGCGCTTTGAGTTGCGCTTGTACGAGGGCACCCCCTCCGAGCCGGTGCTGTTCGATAAGCCCGGCGTGGTGGTATTGGGCTGCAACATCCATGACCGGATGCTCGGCTACGTCTTTGTCACCGACGATCCGCGTTTTGCCGTCAGCGATGCCCAAGGCAATGTGGTGCTGAACGATTTGCCAGTCGGCGAGTACCGCGTGACGCTTTGGCATCCCCGGCTCAAGGGGATGCAACCGATCGATGCCGGTTCTGTGAAACTTCCTGCGACCGGCCTCAAGCAGAACTACACCCTGACGCTGGAGCCTTTACCTGAGCAGCCCGCAACCGCTCCGGCTTCGAGTGCCTTCGGCGATACATTCAAGCGAGCGGCTCGTGAAACTGCGCAATAGMSRNNPLFALLLLFACPVGWAGVAKLDVAMHEGTGQRLPDAVVTLQGPIGAPLAPPAANMDQRNQQFAPHVLAVHTGTPIKFPNSDNIRHQVYSFSPAKRFELRLYEGTPSEPVLFDKPGVVVLGCNIHDRMLGYVFVTDDPRFAVSDAQGNVVLNDLPVGEYRVTLWHPRLKGMQPIDAGSVKLPATGLKQNYTLTLEPLPEQPATAPASSAFGDTFKRAARETAQNANANANANA
D1-35_02573543hypothetical proteinATGAACGCTAAACGATTGTTCTGCATTATCGGTACTGCATTGACTGCCAGTTGCCTGTTCGTCGCGATGCCTGCTGCTTACGCGCAAGCAGGCTTGCCTGAAAGCATCAAGGTCCCGGCCGGGCATAAGGTCGCGCTCGAAACTGCAGGAGTCGGAGAAATCACTTATGAATGCCGTGACAAGGCCAATGCCGCAGGGCAGACAGAATGGTTTTTCATCGGCCCGAAAGCGCTGCTGAACGATCGAAGCGGCAAGGCTATCGGCACTTATTTCGGCCCACCTGCAACATGGCAAGCCAACGACGGTTCCAAAATCACCGGAACCCAATTGGCGGTCGCATCGGTCAGCCCCAAAGACCTCCCCTTGCAGCTGGTCAAGGCCAACCCCGCCGAAGGGAAAGGCGCAATGAGCGGGGTCAGTTACATCCAGCGGCTGGCCGTGAAGGGTGGCGTAGCGCCGATGGCCGAATGCTCCAGCGCCAACAAAGGCAAGCGTGAGGTAGTGAAGTATCAAGCCGACTATATATTCTGGGCTGCCCAATAGMNAKRLFCIIGTALTASCLFVAMPAAYAQAGLPESIKVPAGHKVALETAGVGEITYECRDKANAAGQTEWFFIGPKALLNDRSGKAIGTYFGPPATWQANDGSKITGTQLAVASVSPKDLPLQLVKANPAEGKGAMSGVSYIQRLAVKGGVAPMAECSSANKGKREVVKYQADYIFWAAQNANANANANA
D1-35_02574585sigKCOG1595ECF RNA polymerase sigma factor SigKATGTTGCTGCCAATGGCTGGAAACCTGTCCTTGCCCGAACCTTACTTCGACTATGAAGCCCACCTTGCGGCATGCGCCCAAGGCGACCAACAGGCGTTGCGCGCCTTATACGATCAGGAAAGCGCACGCGTGATGGGCGTTGCTCAGCGAATCGTGCGCCATAAGGCGTTGGCGGAAGACATCCTCCATGACGTCTTCATCAAGATATGGACTCGCGCCGCCAGTTTCGACCCGACCAGAGGCTCGGCCCGTGGCTGGATATTCAGCATAACCCGACACCTGGCCCTCAATGTAGTGCGCGACAACGCCAGGCAAATTCAGCTCGACGAGCACAGTGAAATGGCCTCGGACGCTTTGGCGTCCGTTGACGCGCCGAACAGCGACACGTTTGAGTACCTGACTCGTTCAGGTCGTATCTATACCTGCCTTGAACGATTGGAGCCGGCCCGGCGCAACTGCATACTTCATGCGTACGTGGACGGTTATTCACATTCCGAAATATCGAAAAAAGTGGGCGCACCGCTGGGAACCGTAAAGGCGTGGATCAAACGTAGTCTGGTGGCGTTGCGGGAGTGCATGGGATGAMLLPMAGNLSLPEPYFDYEAHLAACAQGDQQALRALYDQESARVMGVAQRIVRHKALAEDILHDVFIKIWTRAASFDPTRGSARGWIFSITRHLALNVVRDNARQIQLDEHSEMASDALASVDAPNSDTFEYLTRSGRIYTCLERLEPARRNCILHAYVDGYSHSEISKKVGAPLGTVKAWIKRSLVALRECMGPGPT0014960_5215DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
D1-35_02575723hypothetical proteinATGACGACGAGCGCAGAGGATGATCTTCCCGAAAGCATCGAAGAACTGGCGAGCGAATATGTGTTGGGGATATTGCCGGCCGATCAGCGCAAGCAGGTTCGACAGCGTCTCGCGCACGAACCCGCCTTGCGCGACGCGGTCGATGCCTGGGAGCAGCGCCTGGCTGCCTTGACTGAGCAGGCAGAACCGCAAACACCTGGGCCCCTTGTCTGGAGGCGTATCCAGAACAGCCTGGACAGTCATGGCCAGCGAGCGCCGAATGCCCCACGGTCGAGATCATTGTGGGATTTTCTTCCGTTATGGCGCGGGCTCGCCGGGGCAGGCATCATTGCAACCCTGCTGCTCGGAACGTTGCTCCTGACGCGCACGACCGCGGTCAGCCCAACCACTTACCTGGTGGTGCTGGTAGCGCCGCAAAACCAGGCACCTGGATGGGTCATTCAAGCGACCGACTCCAAGCAAATTCAACTTATACCGCTGGCGGTGGCACAGGTCCCCAGCGATAAAGCATTGCAATTCTGGACCAAGGCGGATGACTGGAAAGCGCCGGTATCCCTGGGTTTGGTCCGGCCTGGACAAACGCTGTCGGTCCCGCTCGATAAGTTACCGCCGTTGGAGCCCCATCAACTTTTTGAACTGACTCTTGAAAGTGTCAATGGCTCGCCGACCGGAAAACCCACAGGGCCGGTGCAGTTCATCGGCCGGGCCGTGAAAGTCCTCTAGMTTSAEDDLPESIEELASEYVLGILPADQRKQVRQRLAHEPALRDAVDAWEQRLAALTEQAEPQTPGPLVWRRIQNSLDSHGQRAPNAPRSRSLWDFLPLWRGLAGAGIIATLLLGTLLLTRTTAVSPTTYLVVLVAPQNQAPGWVIQATDSKQIQLIPLAVAQVPSDKALQFWTKADDWKAPVSLGLVRPGQTLSVPLDKLPPLEPHQLFELTLESVNGSPTGKPTGPVQFIGRAVKVLNANANANANA
D1-35_02576363walR_1COG0745Transcriptional regulatory protein WalRATGACCACCATCCTGGTCGTCGACGACGAGTATCTGATCGCTGACATCCTCAGCTTCGCGCTGGAGGATGAAGGCTTCATGGTCGTAAAAGCCAGCAATGGTCGAAAGGGACTCGAAGTTCTCGAAAGGGAGCGTCCAGCGTTGATTGTTACCGACTTCATGATGCCCGTCATGGACGGCTTGGAGTTCGCCACGGCTGTGCGAGCACTTCCGTCCATCAATCGTTTGCCAATCATCCTCATGAGCGGTGCTCAGGCGCACATAGGTATGCAGAGATCGGATCTGTTTGATGCAGTCCTGCCAAAGCCATTCGAGATAGGCGCCATCATCGCAGAAGTGAAAAAGCTCTTGTCTGCGCAGTAGMTTILVVDDEYLIADILSFALEDEGFMVVKASNGRKGLEVLERERPALIVTDFMMPVMDGLEFATAVRALPSINRLPIILMSGAQAHIGMQRSDLFDAVLPKPFEIGAIIAEVKKLLSAQPGPT0013765_1037DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHIGH_TEMPERATUR_REGULATION,PGPT0013765-vicR|walR|yycF|micA-K07668NANA
D1-35_025771440kaiC_1Circadian clock protein kinase KaiCGTGGAAAAGCTAAAACGCCTTCAAAGCGGAATCGAAGGGCTCGACGCTCTGCTTAACGGAGGGCTGGTCGCGGGTGCTTCATACATAATTCAAGGTCGTCCAGGTTCCGGCAAGACGATCCTCGCCAATCAGCTTGGATTCCATCACGTGCGTAATGGAGGCCGTGTTTTAGTCGCCACACTGCTGGCCGAGTCGCATGACCGTCTCTTTCAGTTTCTCTCTACCCTGAGCTTTTTCGACTCATCCAAAGTGGGCGCTGAAATCCAGTTCGTCAGCGCATTCGATACGTTGGAAAATGAAGGTCTCGATGAAGTAGTAAAACTGCTTCGGCGTGAGATCAGTCGGCAGAAGGCTACGGTCATGGTCGTCGACGGTTTGCTCAATGCGCGCTCCAAAGCCGATTCGCCTATCGACACCAAGAAATTCATCCTGGAGTTGCAAGGCCACGCAGCGTTTGCCGGATGTACCGTACTGTTCCTCACCAGTTCACGGCTTGACGACGGTAGCCCAGAGCACACGATGGTTGATGGTGTGATCGAAATGGGAGAGGAGCTGTTCGGCACTCGTTCCGTACGACGTATACAACTACGCAAGACGCGAGGCAGCAGCGCACTGACCGGTCTTCACGAATGTGAAATCACTGATGACGGCCTGGTTGTCTATCCGCGTCTCGAGAGCCTGTACAGCCGTCCTTCCTCGTCCGACAGTGCGGACATGACGCGTATCGCCAGTGGGATTGATTCACTCGACGATATATTGGGCGGAGGGCTACACAGCTCCAGTGTGTCTCTGGTCATGGGGCCCTCCGGGATCGGCAAGACCACGCTGGGTCTCAAATTCCTGGCCAAGTCCACACCTGATGCCCCAGGCTTGCATTTTGGGTTCTATGAAAGTCCACAGCGGCTGCGCCTGAAAGGATCCTCACTGGGCATCGATATCGAAGCCATGGAGGAAAGCGGGGCGTTGAGCATTGTCTGGCAGCCAACCACCGAAGGGCTGCTGGATGGACTCGGCTCAAGACTGCTGAGCATCGTCAAGGAAAAGGGTATCAAACGCCTGTTCATCGACAGTCTGAGCGGGATGACACGCGTTTCGACAAATCCGGGACGGATTACCGATTTCTACAGTGCGCTCATGAATGAGCTGCGCTCCAGAGGCGTTACGGTATTTGCATCCTGGGAAATGCGCGACCTGTTCGGTTCCGAGGTCAGCTCACCGAACTCCGACCTGTCGAGCATCGTCGACAACCTGATGCTGATGCGTTTCTTTGAGAGTCGCGCTGAACTAAGCAGGACGCTTTCCATTCTTAAGGTACGAGATAGCTCCTATGACCCCTCGCGATTCGAGGTGGTGATTCGTGATCAAGATGTTTTCCTGAAAAAGGCTTTGAGGAATGAACCTTCAGTTGCCACTGAGTCCTTGCCTGGTTCGATTTCATAAMEKLKRLQSGIEGLDALLNGGLVAGASYIIQGRPGSGKTILANQLGFHHVRNGGRVLVATLLAESHDRLFQFLSTLSFFDSSKVGAEIQFVSAFDTLENEGLDEVVKLLRREISRQKATVMVVDGLLNARSKADSPIDTKKFILELQGHAAFAGCTVLFLTSSRLDDGSPEHTMVDGVIEMGEELFGTRSVRRIQLRKTRGSSALTGLHECEITDDGLVVYPRLESLYSRPSSSDSADMTRIASGIDSLDDILGGGLHSSSVSLVMGPSGIGKTTLGLKFLAKSTPDAPGLHFGFYESPQRLRLKGSSLGIDIEAMEESGALSIVWQPTTEGLLDGLGSRLLSIVKEKGIKRLFIDSLSGMTRVSTNPGRITDFYSALMNELRSRGVTVFASWEMRDLFGSEVSSPNSDLSSIVDNLMLMRFFESRAELSRTLSILKVRDSSYDPSRFEVVIRDQDVFLKKALRNEPSVATESLPGSISPGPT0030523_914PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-ENVIRONMENTAL_RYTHMICS_SIGNALLINGPUTATIVE-CLOCK-ASSOCIATED_HISTIDINE_KINASE,PGPT0030523-kaiC-K08482
D1-35_02578846hypothetical proteinATGTCATGCTTGTATGCCGGTATGGCGGATGCCGCCGGTAACAAGACGATCGCGGGCTTCAAGCCTGGTTATAAGCCTATTGATCAAGATACCGAATGGCTGGATGACTTCGAGACTTTAAAGGATCTCGATGCCACTGCCCTGGTCAAGATGGTCTCCGCGCGGCTGGGTGAAGGCGCGGCGACGGCGCTGAATGCGGTCATCAGCGGCGATGCCTTGAAGGAGATAGTAGACCCGGTCAGTGTCGTAGGAAATGGTCTGCTGATTGGCGGTTTTTCTGCAATGGGCGCGGCTACAACCGCCACAGCCAACCTGGCGAAGTCCACGGAGCTGGGAAAAATGGCGGCTACCGCAGCCTCGGAGGGTGTAAAAAACGTATTGGGTACCCTGGCTTTCGGGCTCTGGGCAGCTGGCGCCTCGCTAGGTGGATCAGTGCCGAAAAAAGCCACCGCTGTGGTCGATGCCCATGTACCAAAAGCGGTAGAAGGGGGCGCAGATGCAGCGGGCAGGGTGGCGGTCAAGGGCGGTGAGCTTGCGCTCAAGACATCGCTCACCGGCGCCAGATTTGCCAAAGAGACAGCTGTGTCAGCGACCAACCACACAAAAAATGCAGCTCAAGCGGTAGGGGATGGAGTCACTAGCGTTGCCAGCGCCATTGGCACCACCTCCCAGTCAGCCTGGAATAAAAGCGTTGGGGCCCTGAGGCAACGCTCCGCGGTCACCCCTCAAAGCCAGGCCGCTCAGGGTCAGAGCATACCGATGCAGCCGCTCGCGGGTACGCAGGTCCAGGCATCTTCCTCAGCACCTGCGCGTCCGACTGCCCAGGATGACGGAGATATCGTTTAGMSCLYAGMADAAGNKTIAGFKPGYKPIDQDTEWLDDFETLKDLDATALVKMVSARLGEGAATALNAVISGDALKEIVDPVSVVGNGLLIGGFSAMGAATTATANLAKSTELGKMAATAASEGVKNVLGTLAFGLWAAGASLGGSVPKKATAVVDAHVPKAVEGGADAAGRVAVKGGELALKTSLTGARFAKETAVSATNHTKNAAQAVGDGVTSVASAIGTTSQSAWNKSVGALRQRSAVTPQSQAAQGQSIPMQPLAGTQVQASSSAPARPTAQDDGDIVNANANANANA
D1-35_02579369hypothetical proteinATGGATACGATTAATGTAGGTGCAAGCCGCGAGCTGAACCGTCCACCTGATGAGATACAGCAGGAAACAACACTGCGGGCCTCTCACTCTCCGGTCCTCGGCGATATCGGGGTAGCAATGCGCACGCGGCTTCATAACCATTTCGAGGCTCACGTTGAAACACAAGCTGACTCCGATCAACCCGCTGCCCCTGCTTCAAGCGCCCGCAACGCGGAGCTGAACGCCATTCGCGATGACCGTGCCCAACGGCTGGAGGCCGGGGGTTATACCGTCCATGACATGGAGAAGGCGGAAAAAAACGCAGCCAGGGCCGACAGAGTGTTTGCGTCCATAAAGTCAGGGATGGGGGGACGCCCTTTGCGGCGCTGAMDTINVGASRELNRPPDEIQQETTLRASHSPVLGDIGVAMRTRLHNHFEAHVETQADSDQPAAPASSARNAELNAIRDDRAQRLEAGGYTVHDMEKAEKNAARADRVFASIKSGMGGRPLRRNANANANANA
D1-35_02580528hypothetical proteinATGAAAGATATGAAACTCGAAAACATAGTTGGGGCGCTGTCGCTGGCGATTTCTGACTCTATCCACCAAGGCACTCAAGACCAAGCTCCGGAAGTTGGTCCGGCAGCTGCGGCTATTGCCTTGCTCGGTCACGAGCCAGGCATGTCCATAGAGCGCTTGAGGCGAGCCTTGGGGTTGTCTCATCCTGGAGCTGTGCGCCTGGTTGATAGGCTTGTCACCCAGGGTGTAGTGGAACGTAGACAAGCAGACGCTGATCGGCGTGCCGTTGCGCTCCACCTTACTACCGCAGGAAATGCGAACTGTGCTGCCGTGCTAGCGGTCCGCCAGGAACGTATAGCTCGTGTATTGGAAGTGCTTGATCCGGATGAGCGCGAACTTCTCGGACGGATAACCGAAAAGCTACTCAACGGCCTGGTGAATGATCTCGATCAAGGCTATTCAGTGTGTAGACTGTGCGACCCTGCGTCTTGCACGAATTGTCCAGTCGCAGATGCGTTGAATGAAAATCCCTGCACTGGCCATCTCTGAMKDMKLENIVGALSLAISDSIHQGTQDQAPEVGPAAAAIALLGHEPGMSIERLRRALGLSHPGAVRLVDRLVTQGVVERRQADADRRAVALHLTTAGNANCAAVLAVRQERIARVLEVLDPDERELLGRITEKLLNGLVNDLDQGYSVCRLCDPASCTNCPVADALNENPCTGHLPGPT0029235_347DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029235-emrR|mprA-K15974NANA
D1-35_02581138hypothetical proteinATGAAATACAAGCGACTTGGCCGTACGGGCCTGTATGTATCCGAGCTGTGCCTGGGCACGATGACGCTCGGTGGTAATGCCAACCGGGTATGTGGTCTGCAATCGGCGCGGTTGAACAGGGCGAAGCCAACAGTTTGAMKYKRLGRTGLYVSELCLGTMTLGGNANRVCGLQSARLNRAKPTVNANANANANA
D1-35_02582597fldPFlavodoxin FldPATGAACTCAACTTCCACGCCAATCCGAACGGTCATCATTTATCACTCAGGCTATGGCCACACCGTACGAATGGCAGCTGCCGTCGCTGAAGGCGCTGGCACCGACTCTGTATTGGTTGCAATCGACCCCGAGGGCAATATTCCCGAGGATGCCTGGCAAACACTCGCAGACGCAGACGCAATTGTCTTCGGTTCGCCTACCTACATGGGCGGCCCTAGCTGGCAGTTCAAGAAATTCGCGGACGCCTCTTCCAAGCCCTGGTTCGAAGGCGCATGGCAAAACAAGATCTTTGGCGGCTTCACCAATAGCGCGAGCATCAACGGCGACAAGCTCAATACTCTTGAGTATTTCTTCCTGCTCTCTGGGCAGCACGCCGGGATCTGGGTTGGTCTGGACATCAAACCAGCGAACGTCAAGGCGTCGAAACGCGACGATTTGAACCGCATGGGTTCTTATATCGCGCCTATGGCGCAGACGCCGGCGGATGCCTCTCCTGACGAGATGTCATCGGGAGATCTGGAGACCGCGCGTCTGTATGGCGCGCGCGTCGCATTGATTGCCGGACAGTTCCGAGCCGGTAAATCTCAGTCTGTCTGAMNSTSTPIRTVIIYHSGYGHTVRMAAAVAEGAGTDSVLVAIDPEGNIPEDAWQTLADADAIVFGSPTYMGGPSWQFKKFADASSKPWFEGAWQNKIFGGFTNSASINGDKLNTLEYFFLLSGQHAGIWVGLDIKPANVKASKRDDLNRMGSYIAPMAQTPADASPDEMSSGDLETARLYGARVALIAGQFRAGKSQSVPGPT0009460_2471DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009460-wrbA-K03809NANA
D1-35_02583906pgrR_2HTH-type transcriptional regulator PgrRATGCCCAATCTTCAGGCACTTTTGATTTTTGCCCGCGTTGCGGAAATGATGAGTTTCACGCGTGCCGCTGAAAGCTTGGGAATCCAGAAGGGACGGGTGTCGACGGTGATTCGTGAGCTGGAACGGGACATGGGCGCGACCCTCCTGCACAGAACAACACGCAGCGTGCAATTGACCGAAGACGGTCGTAGTTTTTATGCACGTGCGCGTGACCTGCTGGCCGAAGCTCAGGACGTGCAGTCCATGTTCGCGAACAGCGGCGCCCCCCTGAGGGGGAGATTGCGCGTAGATATGCCGACTGAGTTGGCAAAGACCGTCGTGATTCCCGCTCTACCGCAACTACTCAAGGCCAATCCTGAGTTGGAGCTGGAACTATCCAGCACGGATCGCCGTGTCGATCTGGTTCAAGAAGGGTTTGATTGCGTGATTCGTCTCGGGCCGATCATGGACGACAGACTGATCGCCCGCTCGCTCGGCAAACTGCGCATGATGAACGTGGCGAGTCCAGGCTATCTGGCAAAGTACGGCATACCGCAAACACTCGACGACCTCCTCATCCAGGGTCACCAGATGGTTCACTACACGCCGACACTCGGCGCCCGACTCGCTGGTTGGGAATATCCGGAGGGAGACAGCTACGCATCACTTGCATTGCCAGGGGCGATGCAAGTGAATAACGTGCAGACCTATCATGCTGCGGGCCTGGCGGGGATTGGACTGATTCAGGCCGGCTATTTGGCCCTTGCGCACCACATCAAAAGCGGCGATCTGGTGGAAATTCTGCCGGATCTACGACCAGAGCCGCTGTCGGCGTCGCTCGTAGTCGCGCATCGGCGCAACCTTTCCCAACGCGTCCGGGCCTTCATGACTTGGATTGAGAGTGTTTTGGAACCCTATTTTGATTAGMPNLQALLIFARVAEMMSFTRAAESLGIQKGRVSTVIRELERDMGATLLHRTTRSVQLTEDGRSFYARARDLLAEAQDVQSMFANSGAPLRGRLRVDMPTELAKTVVIPALPQLLKANPELELELSSTDRRVDLVQEGFDCVIRLGPIMDDRLIARSLGKLRMMNVASPGYLAKYGIPQTLDDLLIQGHQMVHYTPTLGARLAGWEYPEGDSYASLALPGAMQVNNVQTYHAAGLAGIGLIQAGYLALAHHIKSGDLVEILPDLRPEPLSASLVVAHRRNLSQRVRAFMTWIESVLEPYFDPGPT0028940_765DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-CHLORAMPHENICOL|TRIMETHOPRIN_EFFLUX_PUMP_BpeEF-OprC,PGPT0028940-bpeT-K18900NANA
D1-35_02584546rclCCOG3059Inner membrane protein RclCATGCAGCACATCACGAGCGTCACCAGCAGCCAGGCTGCTCTCACTTCCAGTATTTCGAGACTCGAGAACGTAAATCGGGCAATTGTCTTGTCCGGCGTTGTTCTTCCCCTGCTAATGATTGGTCTACTCAAGTTCACGCAGATCGAGGTGCAGGTACTCATACCCCTGATCAGTGGCACCCCGTGGCTGGCCTGGCTTTATCCAGTTCTTGGCGAAGCCGGTACCTCGTACTTATTGGGTGTAGTCGAGATACTGACTGCACTGCTGCTCATCGCTTCACCCTGGTCTGCTCGAGCAGCTATCGCAGGTGGGTTGTTAGCATCGCTGACCTTCTTTACGACCATTTCCATGATGTTGGTATTGCCGATATGGGAGGCCGGATCGGGAGGTTTTCCATGGCTGAACTTCCTGGGCACGTTCCTGATAAAAGACGTTGCGTTGTTAGGGGTGAGCCTGGTGATCCTCACCGAGGGGCTGCAGCGTATGTTGCCCACTCTAGCGGCTAATCAAAATAGGGTTCCAAAACACTCTCAATCCAAGTCATGAMQHITSVTSSQAALTSSISRLENVNRAIVLSGVVLPLLMIGLLKFTQIEVQVLIPLISGTPWLAWLYPVLGEAGTSYLLGVVEILTALLLIASPWSARAAIAGGLLASLTFFTTISMMLVLPIWEAGSGGFPWLNFLGTFLIKDVALLGVSLVILTEGLQRMLPTLAANQNRVPKHSQSKSNANANANANA
D1-35_02585996hypothetical proteinATGCATAACCACGCGCGGTTCCATCTTGCGGCCCTACTGACAGCCGCCCTAGTCACGGGTGCAACCTACTCACCGTCGCCCACCGCCGCGCAAGCGTCACAGACGTCGACCGCAACGACGGCACCGCCCCATAAACCCGCACTCGCAGGCACCTACGCCTTCACTCTGGGCAAGTTCCGCATCACCGCACTGAGCGACGGGACGCTGCCCCTCGATCTACATCCGCTGCTTAGAGGCATCAGCCCAAAGCAGATCGACGCAATGCTGCAACGCGGATTTGCTCGCAACCCGCTGGAGACGTCTATCAATGCCTACCTCGTCGATACTGGCTCACATGTAGTACTGATCGATACCGGTGCCGGTGAATTGTTCGGTAACGTTGGCGGCAAGCTACCCAAAAGCCTGGCGGCTGCGGGCTACCAGCCGGCACAGATCACCGATGTGCTGATTACCCACATCCATACCGATCATTCCGGCGGCCTGACACGCGGCGGCCAGATGATGTTTCCCAATGCGACCATCCACGTCGGCCAGGCCGACGTCGACTTCTTCCTGGACCGCGCCAACCTGGACAAGGGGTTAACGCCGGCTTATCTGGAGCAAGCGCTAAAGACGGTTGGCCCGTACCAGCGAGAAGGCAAGCTGAAGCCATTCGCAGCCGAATCCGAAATCCTCCCGGGTATCACCGCCATTCCCACGCCGGGACATACGCCGGGCCACAGCTTTTTTCGGGTCACAAGCGAAGGCGAGAGCATCGATTTCTGGGGCGATATCATGCATGTCGGCCTCATCCAGTTCTCGCGGCCTGAGGTGACAATAACCTTCGACGTCAATCAGAACGCCGCTCGCGCCCAGCGATTACGACAATTCGAGGCTGCCGCGAGTGAGCAACGGTTGTCAGCAGTCGCTCACTTGCCATTTCCGGGCATAGGCCACATCAGGCGCGAAGCCGGCAGGTATGAGTGGGTACCCGTCCAATACCGCAATCGCGACTGAMHNHARFHLAALLTAALVTGATYSPSPTAAQASQTSTATTAPPHKPALAGTYAFTLGKFRITALSDGTLPLDLHPLLRGISPKQIDAMLQRGFARNPLETSINAYLVDTGSHVVLIDTGAGELFGNVGGKLPKSLAAAGYQPAQITDVLITHIHTDHSGGLTRGGQMMFPNATIHVGQADVDFFLDRANLDKGLTPAYLEQALKTVGPYQREGKLKPFAAESEILPGITAIPTPGHTPGHSFFRVTSEGESIDFWGDIMHVGLIQFSRPEVTITFDVNQNAARAQRLRQFEAAASEQRLSAVAHLPFPGIGHIRREAGRYEWVPVQYRNRDPGPT0006762_2DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_DEGRADATION_OF_ORGANO-PHOSPHORUS_INSECTICIDESXENOBIOTIC_ORGANOPHOSPHATE_DEGRADTION,PGPT0006762-mpd-NANANA
D1-35_025862391fhuA_1COG1629Ferrichrome outer membrane transporter/phage receptorATGAGTTCGTCCCCTGTTTCACAGCGCCATCCATTAAATCGTGCCTTGCACGCTGCGATTTTGGGTTTGATCGTAAGCAGCTATGCATTGCCATCGCTGGCGCAAACATCGAGCGCTGACCATAGCAACCCAGTCAAGCAGTGGAACATCGCTGCCGGCCCACTGGCGCCGGCGCTTGACCGCTTTGCGCGCGAGGCTGGCATCAGTCTTTCCTTCGACGCGTCGAGTGTCGCGAACCGCACCACTGCTGGCGTGGATGGCACGCTCGATACGTCGGCAGCGCTGTCATCGTTGCTGCAGGGGAGTGAATTGCAAATCGAACAGCAGGGCCCGAATGCCTATCTACTGCTCCCTCAACCAAAGCCCGCCGGCCCGCTGGAGCTCGACGCAACGGACGTCGAGGAATACCGCCTTGCACCCCTCATCATCAATGCCAAGGTCAGGGTCAGTGCCGACGACGACGCCAACTCGGTAGTTGCCAAGGAGCTCTGGGTTGGCGGCAAGGTGGCAACCAGCATTCTCAATACACCGGCATCGGTGTCGGTTGTTACCAACAAGGAAATGGAGCAACGCAGCGTCAGCACCACGGAAGAGGCGCTGCAATACACGCCGGGCGTGATCAGTGATTTCTATGGTACGGATGACCGCAACGACTATTTCCAGATCCGGGGCTTCCAGGCCACCACCTACCGTGACGGCTTGACCCTGAGTTCGATGCGCGGCGTACGCGAAGATCCGTTCGCTTATGAACGCATAGAGATTCTGCGTGGCGCCAACTCCACGCTGTTTGGCCCAGCGGACCCGGGCGGTTCGGTGAATTTCGTGACCAAACAGCCGCGCTTCGAACAGTTTGGCCAAGGCTATGTGACCTACGGTTCGTTTGACCATGTGGAGACAGGCATCGATGTGGGGGATGCGCTGAACGACGAGAAAACCGTGGCTGGCCGCTTTACTGCCAAAGGCCAGAACAGCGACCGCGAGTACGACCACTCACAGGACGACAACCGGTTGGTGATGGGTGGCCTCACCTGGGCACCCACGGATTACACGTCAGCCACCGTGATTCTGGACTATCTGAAAACTGAAAGTTCGCCCAACAGTGGCGGCTATCCGCTGGACAAAGAGTACGACCGCAGCAAGTTTTATGGAGAGCCCAGCTACAACTTCCACGATGTCGAGCGCACCAGCCTCAGCGGTAACGTCACCCATGACTTCGACAACGGCTTTGTACTGCGCAGCAATCTGCGTTACAGCAAATTGACCGATGATTTCGGCTACGTTTACCTCAGCGACAGCGCCGGACGTGTCGGTACTACCGTTGACCGGTATCTGTTTGGAACGGACACTGAGGCCGACCAGTTCAACGGCAATCTGATGCTGCAATACGATGCCCGCTTCGAGGACATCGACAGCAGCAGCCTGGTGGGCGTGGAGTACCTCGATTCGACCACCAAGGAAAGCTCGGTCTACGCCCTGACGACCCCGATTGACATCGCGAATCCCGTGTTTACTGGCGTTTCACGCTCAATCACGCCGTATGCCGTCAACAAGCGAGACGCGACCACCAAGGCCGTGTTCCTTCAGCAGAACCTGTCGTTCTACGAGCGTTTCATTGTCACCGCGGGTATGCGCAACGACTCGATGGACCTTACCAGCAAAGGCTTACAATCCACTGAGAAGGACAACTTCTCCGAAACCTCCTACCGAGGTGCGTTGACTTATATCGTCAACGACGAGGTGTCCACCTATGTGAGCATGGTGGAATCCGTCTCGCCGCCTCAGGTTGGCGTAACACCGCAGACGGGCAGGCAGTACGAAGTGGGCGTGAAGTATGCGCCGATGGGGATGGACGCACTGTTCTCCGCGGCCGTTTATGACTTGACCCAGGAAAACGTCACCATCGCCGTGGTGCTGCCGAGCGGCATCATCGAGCAACAGACGGTGGGCGAATCGCGGGCGCGTGGCCTCGACCTGGAGGCCAAGGCGCAGGTGACGCAGAACATCAGCCTGATAGGCGGCTATTCCTATATGGAGTCCGAGGTACTGCGCGGTTCGTTGTACGACGGCAGCTCCCTGAAAGGTAATGAGTTCTCCACGGCGCCCAAGCATTCCGCTTCGCTCTGGAGTTATTACGACGTGCCCGGTACTGATGTCAGCGTTGGCTTGGGTGCGCGCTACGTCGGCTCTTATTACTTCGATGCAGCCAACTCCGGCAAAAGCGATGGCACCACACTGTTCGACGCCGCCTTCAACTACGAGATCGCCAAGGGCACCGACCTTGCGGTGAACGTCAGCAACCTGCTGGATGAGCAGCACGTGGTCGGTTCCGGCACAGCGAACTTCTACAACCCGGGTCGCGAGATTACCGCCAAAGTGAGTTACAACTGGTAAMSSSPVSQRHPLNRALHAAILGLIVSSYALPSLAQTSSADHSNPVKQWNIAAGPLAPALDRFAREAGISLSFDASSVANRTTAGVDGTLDTSAALSSLLQGSELQIEQQGPNAYLLLPQPKPAGPLELDATDVEEYRLAPLIINAKVRVSADDDANSVVAKELWVGGKVATSILNTPASVSVVTNKEMEQRSVSTTEEALQYTPGVISDFYGTDDRNDYFQIRGFQATTYRDGLTLSSMRGVREDPFAYERIEILRGANSTLFGPADPGGSVNFVTKQPRFEQFGQGYVTYGSFDHVETGIDVGDALNDEKTVAGRFTAKGQNSDREYDHSQDDNRLVMGGLTWAPTDYTSATVILDYLKTESSPNSGGYPLDKEYDRSKFYGEPSYNFHDVERTSLSGNVTHDFDNGFVLRSNLRYSKLTDDFGYVYLSDSAGRVGTTVDRYLFGTDTEADQFNGNLMLQYDARFEDIDSSSLVGVEYLDSTTKESSVYALTTPIDIANPVFTGVSRSITPYAVNKRDATTKAVFLQQNLSFYERFIVTAGMRNDSMDLTSKGLQSTEKDNFSETSYRGALTYIVNDEVSTYVSMVESVSPPQVGVTPQTGRQYEVGVKYAPMGMDALFSAAVYDLTQENVTIAVVLPSGIIEQQTVGESRARGLDLEAKAQVTQNISLIGGYSYMESEVLRGSLYDGSSLKGNEFSTAPKHSASLWSYYDVPGTDVSVGLGARYVGSYYFDAANSGKSDGTTLFDAAFNYEIAKGTDLAVNVSNLLDEQHVVGSGTANFYNPGREITAKVSYNWPGPT0003790_11153DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014NANA
D1-35_02587981fecR_3COG3712Protein FecRATGTCGAGGCATGAGCCGCAGGCGCTCAATCCGGCCATTGTCGAGCAGGCGATCCAATGGCTGGTGCGCCTTCGCTTCAATCAAGCCGATGAACAAACACAGCGCACTTTCGAGCACTGGCTGCAGCAGTGCCCGGAGCATGTGTTGGCGTGGCAGCGTGTGGAAACGCTCGGGGATGAATTATCAGGCGTGCCAGCTCAATTGGCCCGACAAACCCTTGAGGGTACCCATCATGGAATGCGGCGGCGGGAAAGCCTGAAGCTACTGGGCCTATTGGCTACTGTTAGCACCGCAGCCTGGCTCGGCCGGGACTATACGCCCGTACCTGCCATGCTTGCGCAGCAGCGCAGCAGTACCGGCGAGCAACGACGCTTCCAACTCGATGATGGCAGCCTTATCCAGCTTAATAGCGATAGCGCCGTCGACAGCGATTTCGACGCCCAGCGCCGCCTGATAATCCTGCGGCGTGGTGAAATCATCGTGAATGTCGGCGCGGATCAACACTCGCCTCGAGCGCGACCGTTCTGGGTGCAATCACGTGACGGGATCATGCGCGCTCAGAGTTCCCGCTTTCTGGCACGGGAGCTGGATGATGGCACTCTGGTCGCGGCTCAGGAAGGGTCAGTCACGGTTTTCCCCGGCTCCAGTCAAACTCCTGCGAGCCGCAGCGTCCAGGCAGGAAGCCAGCTGCTGTTCTCATCAAGTGGCACCCGAATGTTCAGGGACAACGGCCTAGATCTATGGAGCTGGGGGGACGGGGTGATCAGCGCGCGCAATATGCGCCTCAATGATTTCATCGTGGAGTTGTCGCGTTATCGCCCCGGGGTGCTGCGCTGCGCCGAAGAGGTCGCTGATCGTCGCGTTTCCGGCACCTTCCAGCTCGCCGACAACGATCAGGTCCTGGCATTGGTCGCGCAGTCACTGCACTTGAACATTGATTATCGAACCCGTTATTGGGTCACCGTGACCGCTGCCACCTGAMSRHEPQALNPAIVEQAIQWLVRLRFNQADEQTQRTFEHWLQQCPEHVLAWQRVETLGDELSGVPAQLARQTLEGTHHGMRRRESLKLLGLLATVSTAAWLGRDYTPVPAMLAQQRSSTGEQRRFQLDDGSLIQLNSDSAVDSDFDAQRRLIILRRGEIIVNVGADQHSPRARPFWVQSRDGIMRAQSSRFLARELDDGTLVAAQEGSVTVFPGSSQTPASRSVQAGSQLLFSSSGTRMFRDNGLDLWSWGDGVISARNMRLNDFIVELSRYRPGVLRCAEEVADRRVSGTFQLADNDQVLALVAQSLHLNIDYRTRYWVTVTAATPGPT0003910_4157DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003910-prhR|fecR-K07165NANA
D1-35_02588516fecI_5COG1595putative RNA polymerase sigma factor FecIATGCGCAGCGATGAAACGCTAGGTAATGCAGATCTAGGGCTGCTCTATCGAACCCACCACTCGTGGTTACACGGCTGGCTTGTCCGACGCATCGGATGTCGCGATAACGCAGCAGATTTGGCGCAGGACACCTTCGTACGTCTGCTCAAATCCCGCCAGTCCAGCCCCTTGCGCGAACCACGCGCCTATTTGAGCAGTATCGCCCGCGGACTGATGATCGATCAGTATCGGCGTCGTGAACTCGAACGTGCCTACCTGGAAAGCGTCACGTTGCTGCCTCAGCACGAGGTCCCCTCGGAAGAAAGCCGGCTGTTGATTCTCGATGCGCTCGAGCGCATAGACCGCATGCTCGGTATGCTGAAACCCAGAGTTCGCCAGGCATTTTTATTTGCCCGACTCGACGGTCTGACCTGCGCGCAAATAGCCGAAAAGCTGGGTGTTTCCCGTGCGACGGTGGAACGCGACCTGGCCACGGCCCTGCAGCACTGCTATCGCTTGCGTTATGTCGAGGCATGAMRSDETLGNADLGLLYRTHHSWLHGWLVRRIGCRDNAADLAQDTFVRLLKSRQSSPLREPRAYLSSIARGLMIDQYRRRELERAYLESVTLLPQHEVPSEESRLLILDALERIDRMLGMLKPRVRQAFLFARLDGLTCAQIAEKLGVSRATVERDLATALQHCYRLRYVEAPGPT0003900_364DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003900-prhI|fecI-K23514NANA
D1-35_02589888D-alanyl-D-alanine carboxypeptidaseATGCTCAGTTCACTCGTTTCAAATGGTCAGGTACAAGCGGCTGATCGCTCAGAACTGATGGCCCCCTGGTGGAGTTTCACGAAAACAGTCTTGGCTGCTACGGCCCTATCGTTGGTGCGTGACGGGCTGGTCGGATTGGACCACCCTGTTCTTGGTCAGCCTTTTACGCTACGCCAGTTACTACGGCATGAGGCCGGTCTGCCTGATTACGGAGAACTTGCGGAGTATCACTCCGCCGTTAAAAATAGTGAGTCAGCCTGGCCGGCCGATGAAATGATGCAACGCCTTGACGGTGCTCGACTCCGATATAGTCCCGGAAACGGTTGGCGTTACTCGAATGTCGGCTACCTGCTTGTCGGCAGACTAATTGAACGGCTGACTGATCTGAAGCTTGATGAAGCGGTAATTCAACGGACACTTTCTCCTCTGGGCTTATTGGGCGTTCGCTTTGCAAAAACACGAGCAGACTTCCAAACGACCCACCTTGGAAGTTCCTCAAATTATGATCCTGCCTGGGTTTACCACGGCTTGTTGATCGGCCACATTTCGCACGCAGCGTTATTTCTGGATCGACTCTTTTGTGCAGACCTGCTCCCCACGGACTTGCTTCAGGAAATGCAAAAAGCACGAACATTGGGCGGCCCGATTCCCGGTCGCCCTTGGATCACGCCGGGCTATGGCCTTGGCGTGATGCAAGGGTCGATTGACGGCGGGTATTCGCTATGCGGGCACACCGGGTGCGGACCGAGCAGTGTCATTGCTGTCTACCGTCTCTGCGACGGCGACGCATCGGCTTGTTGTGCTGCTTTTGACGTGGGGTCCAGTGAAGGCTTCGTCGAAGCCATCGTCGTCGAGCAGCTCATGCAAGTTCTGCGTCAGAAGAGCTGAMLSSLVSNGQVQAADRSELMAPWWSFTKTVLAATALSLVRDGLVGLDHPVLGQPFTLRQLLRHEAGLPDYGELAEYHSAVKNSESAWPADEMMQRLDGARLRYSPGNGWRYSNVGYLLVGRLIERLTDLKLDEAVIQRTLSPLGLLGVRFAKTRADFQTTHLGSSSNYDPAWVYHGLLIGHISHAALFLDRLFCADLLPTDLLQEMQKARTLGGPIPGRPWITPGYGLGVMQGSIDGGYSLCGHTGCGPSSVIAVYRLCDGDASACCAAFDVGSSEGFVEAIVVEQLMQVLRQKSNANANANANA
D1-35_02590801hypothetical proteinATGGATGTTGAGCTTGCTCATAAGATTGAGGCCGCAGAAAGCGAGTATCTACGTTCGCGCGTTGAGAACCTGGCAGAAATAAGCGGAAATCCTTATGGCGCGCGTGTTTTTTTCAACGCGGACTTTCCGTGTTTTCAGGTGAACGCATCGCCAAGCCCAATGTTCAACCGCATTTATGGTGACATCACCAGCAATCCCTTGGCAGTGTTAAATCTGCTCAATGAGTCAGCGGAGCGATCGACTGTAATTCCTCTTATTGGGAAATCTTCGGCGTTGGAGCAATACGTTGTTGTGGGCGAAGCACGGCTTGAGCGTTTGAGGGGCTGGACTCATTTGCAATTAGCTTGTGCCATTGAAAAGGTGGTTTTGAGTCGTCACTCATTCGAAATTGAAGAGGTCACGTCGAAGACTCTGGATCTATTCGCAGAAGTGCATGCGGGTAGCTTTCATACCAAGCCGGAGCATCGGCTTCTGAATCAGGCTTCCTTTGTAGGGCCGGTGCCTGACGGACGTCTGAAAATCTACGTATTGAAAGCGGAAGGGATAGTGGTAGCAGGGGCTTCGATGTATCTGGCCAGCAATGGCGTTGCCTACCTCGGAACGGCGGCAACACGAAAGGATGCCCGGGGCCACGGCTACCACCGAGCGCTGATTTCTCAACGAATAGAGCAAGCAAAGAAGCATGGCTATCATTGGATCGCTGCGACCGCGCTGGCCAGCTCCCAGAGCCGCCGAAATCTCGAGCGTGCCGGGTTAACGGCATCCCATGCCCAAGCACTGTACCGCCTGACAGACAGCTGAMDVELAHKIEAAESEYLRSRVENLAEISGNPYGARVFFNADFPCFQVNASPSPMFNRIYGDITSNPLAVLNLLNESAERSTVIPLIGKSSALEQYVVVGEARLERLRGWTHLQLACAIEKVVLSRHSFEIEEVTSKTLDLFAEVHAGSFHTKPEHRLLNQASFVGPVPDGRLKIYVLKAEGIVVAGASMYLASNGVAYLGTAATRKDARGHGYHRALISQRIEQAKKHGYHWIAATALASSQSRRNLERAGLTASHAQALYRLTDSNANANANANA
D1-35_025911233NADH oxidaseATGAATGTGTTCGACACCCTGATGCTCCCCAACGGTTCGACCATCAAGAACCGAATCGCCAAAGCCGCCATGGAAGAAAACATGGCGGACGCCGACCAGGCGCCCTCCGAAGAACTGATGCGTCTTTACCAGGCGTGGGCCGACGGCGGTGCCGGCCTGCTCATCACCGGCAACGTAATGGTCGACGGCCGCGCCATGACCGGACCGGGTGGCGTGGTGTTGCAGGATGATCAGCCGCTGGACAAGTTCAAGCACTGGGCGCGTATTGGCCGATCCGGCGGTGCGCAGTTCTGGTTGCAGATCAACCACCCAGGTCGGCAGATGCAGGCCAACCTTGGGCAAAAAACCTGGGCGCCGTCAGCCGTGCCGTTGGCACTGGGCAACATGTCCAAGCGTTTCGCCACGCCTCACGCCATGCCCCCTGGTTTGATTGAAGAGGTCATCCAGCGCTTCGCGAACACTGCGCGCCTTGGCGAACAAGCCGGATTCACCGGCGTGGAAATCCACGCCGCCCATGGTTATTTGTTGAGTCAGTTCCTTTCGCCGCTGACCAATCAAAGGCCGGACGAGTGGGGCGGCTCTCTGGAAAACCGGGCGCGGTTGTTGCTCGAAGTCGTCAAGGCGGTCAGGGCTGTGGTTTCGGCGGGATTCGCAGTAGCAGTCAAACTCAATTCCGCCGATTTCCAGCGCGGAGGGTTCACGGCCGATGACGCCAAAAGAGTGGTCGGGCTGCTCAACGACCTGGGGGTGGACCTGGTGGAATTATCTGGCGGCAGTTACGAAGTCCCCGCCATGCAGGGTGAGGCGCGTGATGGGCGTACCTTGGCCCGCGAGGCTTATTTTCTCGAGTTTGCCCGTGAGATCCAGACCGTCGCCAAGATGCCGGTGATGGTTACCGGTGGCATACGTCGACGTCCGGTTGCCGAGAGCGTCGTGCAAAGCGGTGTGGACATGGTGGGCATCGGTACGGCGTTGGCCATCGATCCTCACCTGCCGCGTGACTGGCTGCAGGGCAAAGACAACGCCCCGCAATTGCCGCCGATCACTTGGAAAAATAAGACCCTTGCGGCCTTGGCGAACATGGCGGTGGTGAAGTTTCAATTGCACAAACTGAGTCGGGCCAAACAGCCCGATCCGAGCGTGTCGCCGTTGCGTGCGCTGATCCTGCAGCAGCTCGCCCTGGCATTTCGCACGCGTCAGTATCGGCGTTGGGTGGAGAGGCGTTCGATATGAMNVFDTLMLPNGSTIKNRIAKAAMEENMADADQAPSEELMRLYQAWADGGAGLLITGNVMVDGRAMTGPGGVVLQDDQPLDKFKHWARIGRSGGAQFWLQINHPGRQMQANLGQKTWAPSAVPLALGNMSKRFATPHAMPPGLIEEVIQRFANTARLGEQAGFTGVEIHAAHGYLLSQFLSPLTNQRPDEWGGSLENRARLLLEVVKAVRAVVSAGFAVAVKLNSADFQRGGFTADDAKRVVGLLNDLGVDLVELSGGSYEVPAMQGEARDGRTLAREAYFLEFAREIQTVAKMPVMVTGGIRRRPVAESVVQSGVDMVGIGTALAIDPHLPRDWLQGKDNAPQLPPITWKNKTLAALANMAVVKFQLHKLSRAKQPDPSVSPLRALILQQLALAFRTRQYRRWVERRSINANANANANA
D1-35_02592480hypothetical proteinATGAGAATAGGCGAACTGGCGAAAATCAGCGGGTTGGCGCCGTCACGCATCCGGTACTACGAAGCCAGCGGTCTGATCAAGTCCGTTGGACGCAAAGCCAATGGCTATCGGGATTACGCACCTGATACCGAGTGGGTTCTGGAACTCATTACCGGCGCACAGGCGGCCGGTTTCTCATTGGAGGAAATCCGCCAACTGATGCCGATGAATGCCGGCGGTTGGCAACACGATGAGTTGCTCAGTGGACTCAAGCAGAAGGTTGAGGAGATCGGCGTACTGCAGCAACGGCTGGCCCAGAACAAGGCGCAACTTTTGCTCGTCATCAAGGGCATCGAGGGTAAGCCCGAAGGCATGGCGTGTGCGGACAACGCGCAGTTGCTGATCAATCGACTGCGCGAAGAAGGCGTTGTCCATTCTGCAGGCAAGCGTGCGACAGCGTCCTCCAAGAGAAAAAAGGCCCGTCAGGCTTCCGGGGCCTGAMRIGELAKISGLAPSRIRYYEASGLIKSVGRKANGYRDYAPDTEWVLELITGAQAAGFSLEEIRQLMPMNAGGWQHDELLSGLKQKVEEIGVLQQRLAQNKAQLLLVIKGIEGKPEGMACADNAQLLINRLREEGVVHSAGKRATASSKRKKARQASGANANANANANA
D1-35_02593570hypothetical proteinATGCCACGAATCAAAGCACTCAATGAACCCTACCCAGCCGACGTCAGGGCGGATTTCGACAAGATAATGGGCGTAGGAGTACCGCCACTCGCTCTATTCTCCACCATCGCAAGCAGCGATCGCGCATGGCGGAAATTCAAGGCAGGTTCGCTGCTGGATGGCGCGTTGCTGACACTTCGCCAGAGAGAATTGGTCATCGATAGGGTGTGTGCTCGCACAGGGTGTGAGTACGAGTGGGGGGTGCATGTGATGGCCTTCGCGAAGGCCGCCGGGCTCTCCAAGGAAGAGATTGCCGGCACGTTGGAATATCCGCTTCGCCCCGGGCAGTGGAAGGAGGAAGAGACCGCGCTACTGACCGCGGTCGATGCGCTTCATGATCGAGCGACTTTAAGCGATGAAGCGTTCTTTAACCTCAGAAAACACTTCGACGACGATCAGATCCTGGAGGTTCTGATGCTCGCGGGCTTTTACCGTACGGTTTCCTACATTGCGAATGGCCTCGCATTGCCGCTGGAGCAACATGCAGCGAGCTTCAGCGAATATCGCAAAGGTGAGACAGCTGGGCGTTGAMPRIKALNEPYPADVRADFDKIMGVGVPPLALFSTIASSDRAWRKFKAGSLLDGALLTLRQRELVIDRVCARTGCEYEWGVHVMAFAKAAGLSKEEIAGTLEYPLRPGQWKEEETALLTAVDALHDRATLSDEAFFNLRKHFDDDQILEVLMLAGFYRTVSYIANGLALPLEQHAASFSEYRKGETAGRPGPT0005005_1234DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005005-pcaC-K01607NANA
D1-35_02594681hypothetical proteinATGTTCTGGCTGGGGCCATTCGAGTACAAATCAAAAAAAGAGCTTTTGGATCGGCTCAAGGACTATCTACAAAAAGCACCGGTCGGTGTGATCACCAACAAGCTTGCAGTCAAAAAACTACACCTGTTGCTTGCGATGCATCCGGACGCGGACAGAAAAATTGGCGACGGAATTGGCCACTTCAGGATCGAGAGAAATGCATTGCGGGCGGGGAAGGGGATCTGGCTCGTCCGCGTGGATGGCAGTGAAGATACCTTTTCCTACAAGCGGTGTATCACAGGCGTCGTTCAATCATCCCATGGCAAGGTATGCGAAGCACTGAGGTTTGCAGTGCGCCCGCAATTGGTCGCATTTCGGGATGCACTTGGTCTGCCTGTAATGTGTGCGGCGAGTGGAGTGATCATCACGCAGCGCAATGATTTGCACATCGATCACAGGGAGCCGTTTTGGATGCTGCTAGAGCGATTTTGCCAAGATCGTAAGGTCGATCTAACTAAGCTTGAGACGTCTGGAAACGGAGAAAAATTGGCACTGGTTGATCAAAATATCTCGTCTGCCTTTGCGCAGTACCATCGTCTTCATGCGGAATTTCAGCCTTTGCTGAAAGCTGCCAACGTCGCGAAAGGAGGGCGCCGTGTCGGTAGGATTTATGGCGAGGGAGAAGAAATCGATCCACGGTGAMFWLGPFEYKSKKELLDRLKDYLQKAPVGVITNKLAVKKLHLLLAMHPDADRKIGDGIGHFRIERNALRAGKGIWLVRVDGSEDTFSYKRCITGVVQSSHGKVCEALRFAVRPQLVAFRDALGLPVMCAASGVIITQRNDLHIDHREPFWMLLERFCQDRKVDLTKLETSGNGEKLALVDQNISSAFAQYHRLHAEFQPLLKAANVAKGGRRVGRIYGEGEEIDPRNANANANANA
D1-35_02595432COG1846putative HTH-type transcriptional regulatorATGGACATTTCACTATTCCGCGGACGCTTCACCCGCTTGAACAAGCGCCTGCGCCAGGAAGCACAGAATCATCCCGAGACATGGTCACAGATGCTGGTGTTGAGTGCCATTGATCAAATGGACGGCATGGCAACGCCCTCGAAAATTGCCGAAGCGGAAAATATCCGCTCGTCCAACCTCGCCGCCCTGTTGAAGGACTTGGAAGCCCGAGATCTTATTACCCGTACGCCAGATACCGAAGATCGCAGACGCACTTGGATCGGGCTGTCGGAACAAGGCCAATCAGTTTTACAGGCAAGCCGTAAGCGCCGCGATGAGTGGTTGGCTGAAGCCGTCGATGCCTGCCTGACCACCAACGAACGCAAGCAACTGGAAGCTGCCGGGCTGCTGATGGACAAACTCAGCAGCTACGGCCGCGGCGAGGAACGCTGAMDISLFRGRFTRLNKRLRQEAQNHPETWSQMLVLSAIDQMDGMATPSKIAEAENIRSSNLAALLKDLEARDLITRTPDTEDRRRTWIGLSEQGQSVLQASRKRRDEWLAEAVDACLTTNERKQLEAAGLLMDKLSSYGRGEERNANANANANA
D1-35_02596792surE_2COG04965'-nucleotidase SurEATGGCGAACGGTCATCATCGATTCCAGCGAATTCTTCTTACCAACGACGACGGCATCGAAGCTCCCGGGCTCAAGGTCCTGGAACGTATCGCGTGCCAACTGGCGAATGAGGTCTGGGTCGTCGCGCCCTTGCTTGACCAAAGCGGAACCTCTCATTCCTTGAGCCTGCACGCCCCCTTGCGATTGAGCTTCCACGGAACCCGCCGGTTTGCGGTGACCGGCACGCCAGGTGACTGCATTGCCGTGGCGCTCGGGCATCTGCTCAATCACGACAAGCCGGACCTGATTTTATCCGGTGTCAATCGTGGGGCGAACCTGGGTACCGAAACGGTGTTCTCAGGCACCGTTGGCGCGGCGATGACCGGGCTGCTGTTTGGTATCCCCTCCATCGCACTGAGCCAGGCGTTTACCGACCGCGCCGCCGTGCCTTGGGAAAACGCTCTCAACAACGGGGCGCACACGGTTGAGCAACTGATGGCGCTGGACTGGCCGCAGGACGTTTGCCTGAACGTCAACTTTCCGAGCTGCGCGCCAGATGCCGTACGGCCGCTGAAAATAACCCACCAGGGCAGGGGGCGGTTGGAAGGGGTGTCCGTACGCTCGGAAAATGACCCGCGCGGTCTGGAATATCATTGGCTTCAACTGCACAGGCACCAACGGCCTGATGAACGCGGGACGGAAACGGCGGGAATCCTAGCGGGTCACATCACCGCGACGCCATTGCAGTTCGAGCGTACTCACGCGACTGCCAGCCAGATGTCTGAACAAATGATTCAAGCCAGGCTCATTTAAMANGHHRFQRILLTNDDGIEAPGLKVLERIACQLANEVWVVAPLLDQSGTSHSLSLHAPLRLSFHGTRRFAVTGTPGDCIAVALGHLLNHDKPDLILSGVNRGANLGTETVFSGTVGAAMTGLLFGIPSIALSQAFTDRAAVPWENALNNGAHTVEQLMALDWPQDVCLNVNFPSCAPDAVRPLKITHQGRGRLEGVSVRSENDPRGLEYHWLQLHRHQRPDERGTETAGILAGHITATPLQFERTHATASQMSEQMIQARLIPGPT0013405_1088DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013405-surE-K03787NANA
D1-35_02597279sasA_12Adaptive-response sensory-kinase SasAATGCTTGAGAAGTCGCCCGTTAACGACAAACCCCTATGGCGCTGGGTAGGCAGGATCGTCATTGAGATCGGTGACCGGGGGCCGGGTATCGAAGCACAGCATCTTGACAGCGTATTTGATCGCTTCTGGCGTGCGGAGCGTTCCAGGGCTCGCTATTCGGGCGGCAGCGGATTAGGCCTGTCCATCGCCCGTGCGATCTGCCAGGCCCATGGCGGAGCCATTACCGCCAGCAACCGCGCCCAGGGCGGCACGCTAATCAGGGCGGAGTATCCGCTGTAGMLEKSPVNDKPLWRWVGRIVIEIGDRGPGIEAQHLDSVFDRFWRAERSRARYSGGSGLGLSIARAICQAHGGAITASNRAQGGTLIRAEYPLPGPT0028835_13DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_AdeABC,PGPT0028835-adeS-K18143NANA
D1-35_02598933hypothetical proteinATGCAGCTGTATGGTGTGCAGTCCACGGCACTGCGTTATTTTCTGGAAGTGGCGCGATGCGGATCGATCAGCGAAGCCTCGGTGCGCTTGAACGTCGCAGCCTCAGCGGTGAGCCGACAAATTGCCAAGCTCGAGTTGGCTCTGGACGCCAGCCTGTTCGAGCGCCGTGCCCGGGGCATGGTGCTCAGCGAGGCGGGGGCGCGACTGGCGGCCTATGCGCGCAAGTCGCAGCTTGAGGCGGAGCAGGTGGTGCTGGAGATTACCGAGCTGCACGGCTTGCAGCGGGGCCATGTGCACGTTGCCTGCTCGGAGGGGTTTGCACTGGAATACATGCCCAGGAGCATCAGCGCGTTCAGGCGTGAGTATCAGGGTATTCATTTCACATTGGAGGTCTGTGCGCCGGCCGAAGCGACCGAGAAGGTGCGTTCCGGCGAAGCCGATCTGGCGATGACCTTCAGCCTGACGCCGCAAAGTGAAATCAAGGTCGAACATGTCATGAGCGGGGCGATTTTTGCCGTGGTCGCCAATTCCCATCCCCTGGCCGGGCGCGAAGCGGTCAGGCTCGCTGAGCTGCAGCCCTGGCCCATTGCGTTACCCAAGGCTGACACCACGATACGGCAGCTGTTCGACATCTGTTGCGGTGTACAGGGGTTGTTGTTCGACCCGGTGTTGACCACCAATTATGTGGCCGCGCTCTATAGCTTCGTCCGCGAAGAAGGCGTTATCAGCCTGGCCAGCGAAATGACCTTGCAAAAACAGGTAGCGGACAAGGCCCTGCAATGCGTGCCGATCCTCGACGAAGGCATGCAGGCACGACGTATCGAACTGCAAAGCATGGCTGGCCGCAATTTACCGGCAGCGGTGTCTGCGTTCAGGGATTTTTTGATTGCTGATCTGGAAAGCGGAGCGTCGTTGAAAGGAGGCCGTCCGTGAMQLYGVQSTALRYFLEVARCGSISEASVRLNVAASAVSRQIAKLELALDASLFERRARGMVLSEAGARLAAYARKSQLEAEQVVLEITELHGLQRGHVHVACSEGFALEYMPRSISAFRREYQGIHFTLEVCAPAEATEKVRSGEADLAMTFSLTPQSEIKVEHVMSGAIFAVVANSHPLAGREAVRLAELQPWPIALPKADTTIRQLFDICCGVQGLLFDPVLTTNYVAALYSFVREEGVISLASEMTLQKQVADKALQCVPILDEGMQARRIELQSMAGRNLPAAVSAFRDFLIADLESGASLKGGRPNANANANANA
D1-35_025991521hbpACOG0747Heme-binding protein AATGGGCATCAAAGGTTTCGCCTGCAGCATTGCGCTGGCAGGCCTCATCAGCAGTTTTCCGGCGCATGCCGGTAAAGCCAACGACACCCTGGTTTACGCTTCCGACAGCGAGCCTGAAAACATCAGCCCCTATCACAACGATTTGCGCGAAGGGGTGATTCTCGGCCGGCTGATCTGGGACAACCTGATCTACCGCGATCCCAACAGCGGCGAATACAAACCCATGTTGGCTACCCGCTGGACACAGGTTGACGACACCACCCTCGACTTCGAGCTGCGCAAAGGCGTCAAATTTCACAACGGCGACGCCTTCACCGCCGACGACGTGGTGTTCACCCTCAACTACGTGGTATCGCCTGAAGCGAAAGTCGTTACCGTGCAAAACGTAGACTGGATCAAGAGCGCCGAAAAAACCGGTGACTACAGCGTCCGCCTGCATTTGAAGAAACCTTTCCCTCCGGCATTGGAATACCTGTCCAACGCCGTTCCGATGTTTCCCAAGCAGTACTTCGAGAAAGTCGGCCTGGCTGAGTTCAGCCGCAAGCCAGTGGGTACCGGGCCGTATAAAGCCGTGTCGGTGGTGGCTGGCGAAGGCGTGACCATGGAGATCAACAAGGACTACTTTCCGGACAGCCCACAAGGCAAGCCGCATATCGGCCACCTGAAGTTCCGGGTGATCCCGGATGCGGAAACCCGCCTGGCAGAGTTGATGACCGATGGTGTCGACTGGACGTGGCGTGTGACCCCGGATCAGGCAGTCGACCTCAAAGGTATGCCGAACCTGACCGTGACCAGCGGCGAAACCATGCGCATCGGTTTCCTGATTCTCGATGCTCGGGGCACCTCCACTGAAAACTCGCCGATGAAGCACCTCAAGGTACGCCAGGCCATCAACCATGCGATCAACCGCAATGCGCTGGCCACGCAATTGGTGGGTGGCGAAGCCAAGGCTTTGCAGGTGGCCTGTTATCCAGGCCAATTCGGTTGCGATACCACCGCGGCCACGGTCTACAACTACGACCCGGCCAAGGCCAAGGCGCTGCTCGCCGAGGCCGGCTACCCCAATGGCTTCGAGACAGAAATCTTCGCTTATCGCGACCGGGATTACGTCGAAGCCATCATTGGCAACCTGCGGGCCGTGGGCATCAACGCCAAACTGCGCTACTTGAAGTACGCCGCCCTGCGCGATCAGCAACGTGGCGGCAAGGTGCCCATGTCGTTTCAGGCCTGGGGCTCGTTCTCGATCCTCGACGCCTCGGCGTCGGCCGGCACCTGGTTCAAGGGCAACCCGGACGACAACATCAAGGACCCGCAAGTCCAGGGCTGGTTGCAGACCGCTGACAACGCCCTCGACCCGCAATTGCGCAAAGACAACTACCGCATGGCGTTGCAGCGCATCAGCGAACAGGCGTACTGGGCACCGCTGTTCAACTACTCGATGAACTACGCCTACACCGCCGATCTGGCGTTCACGCCGTATCCGGATGAGCTGCCGCGTTTCGTTCAGTCCAGCTGGAAGTAAMGIKGFACSIALAGLISSFPAHAGKANDTLVYASDSEPENISPYHNDLREGVILGRLIWDNLIYRDPNSGEYKPMLATRWTQVDDTTLDFELRKGVKFHNGDAFTADDVVFTLNYVVSPEAKVVTVQNVDWIKSAEKTGDYSVRLHLKKPFPPALEYLSNAVPMFPKQYFEKVGLAEFSRKPVGTGPYKAVSVVAGEGVTMEINKDYFPDSPQGKPHIGHLKFRVIPDAETRLAELMTDGVDWTWRVTPDQAVDLKGMPNLTVTSGETMRIGFLILDARGTSTENSPMKHLKVRQAINHAINRNALATQLVGGEAKALQVACYPGQFGCDTTAATVYNYDPAKAKALLAEAGYPNGFETEIFAYRDRDYVEAIIGNLRAVGINAKLRYLKYAALRDQQRGGKVPMSFQAWGSFSILDASASAGTWFKGNPDDNIKDPQVQGWLQTADNALDPQLRKDNYRMALQRISEQAYWAPLFNYSMNYAYTADLAFTPYPDELPRFVQSSWKPGPT0004430_16985DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004430-ddpA|ABC_PE_S-K02035NANA
D1-35_02600918gsiC_1COG0601Glutathione transport system permease protein GsiCATGCTTGGATTCCTTCTGCGCCGTCTGGGCATCGCCATTTGCGTTGCCATTACCGTGTCGGTGATCAGCTTTTCTCTGTTGCACTTGTCCGGCGACCTGGCCACGGCCATTGGCGGACCGGAAGCCACCAGCGAACAGATCGAACAGATCCGCGTGCAGTACGGTTTGAACAAACCGCTACCGACCCAGTACTTCAACTGGCTGGGCGATTTGTTGCGGCTGGACCTGGGCAACTCGTTTTTCTTTCAGGAATCGGTCTACAACCTCGTCGCCAGCCGCTTGCCGATCACCCTCGGGTTAGGCGCCATGGCGCTGGGCATCGCCTTGCTGGTGGCGATTCCACTGGGCGTGCTGGCCGCGGTCAAACGCGACACCTGGATTGACCGACTGGCCTTGAGCATCGCCGTACTGGGCCAGGCAATGCCGAGTTTCTGGTTTGCGCTGATGCTGATCGTGGTGTTCGCGGTGACGCTCAAGTGGCTACCGGTGTCCGGTAACTCGACGATGTTGCACTTCGTCATGCCGGCCATTGCCTTGGGCTACTACGCGACGCCGGCAATCATGCGCCTGACCCGTGCCGGCATGCTGGATGTGCTCGACTCCGATTACATCCGCACCGCCCGCGCGAAGGGCCTGCGCCCTGCCCGCGTGTTGTTCAAGCACGCACTGCGCAACGCCTTGATTCCAGTCGTCGCGCTGGCGGCGGTGGAGTTTGGCTTCATGCTCGGCGGTTCGGTGGTGATCGAAACCGTGTTCTCCCTGCAAGGCATCGGACAGCTCGCCTGGGACGCCATCGCCCGTGACGACTTTCCTGTCGTACAGGCCGTGGTCCTGCTCATCGCGGTGATCTACATCATCCTCACCTTGCTGGCCGATGTGCTCAACGCACTGCTCGACCCGCGCATTCGCGTGCGCTAGMLGFLLRRLGIAICVAITVSVISFSLLHLSGDLATAIGGPEATSEQIEQIRVQYGLNKPLPTQYFNWLGDLLRLDLGNSFFFQESVYNLVASRLPITLGLGAMALGIALLVAIPLGVLAAVKRDTWIDRLALSIAVLGQAMPSFWFALMLIVVFAVTLKWLPVSGNSTMLHFVMPAIALGYYATPAIMRLTRAGMLDVLDSDYIRTARAKGLRPARVLFKHALRNALIPVVALAAVEFGFMLGGSVVIETVFSLQGIGQLAWDAIARDDFPVVQAVVLLIAVIYIILTLLADVLNALLDPRIRVRPGPT0004445_14427DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004445-ddpB|appB-K02033NANA
D1-35_02601903gsiDCOG1173Glutathione transport system permease protein GsiDATGAGCACCCCCACTACCCTCGCGATCAATGACTACCTGCCACCCCCCAGCAGCCTGAGCCGCGTACTTGGCAAGAGCTTTCGCCATCGTGGCTTCGCCATCGGCACGGTGTTGTTGCTGATCATCTTCACGGGTGCACTGTTCGCGCCGTGGCTGGCACCTTATGACCCGTATGCGCAAGACGTGATGCTGCGTATGAAACCGCCGGTATGGATGGCCAACGGCACCTGGGAATACGTCCTGGGCACCGACAAGCTGGGCCGTGACTACCTGTCACGACTGCTCTACGGCGCACGTATCTCACTGTTCATCGGCATTGCCGCGGCGCTTATTTCCGGCTTTATCGGCACCGTCATGGGGCTATTGGCGGGTTACTACGGCGGCAAGGTCGATGCGTTTATCAGCTACCTGATCACCACCCGGCTGGCGATGCCGGTCGTGATGGTCGCGCTGGCCTCGGCCTCGCTGATGGGCGGCTCGCTGAAAGTGGTGATTGTGCTGCTCGGCTGCCTGCTCTGGGATCGCTTCGCGGTGGTGGTCAGGGCTTCGGTGCAACAGATTCGCGATGCTGAATATGTGGCTTCGGCCCAGGCGCTGGGCTGTTCGACCCTGCGCATTCTGGTCAGTGAAATCCTGCCCAATCTGGTCGGTGCATTGATCGTCGTCGCGACGCTGGAAATGGCCCACGCGATCCTGCTGGAGTCGGCACTGTCGTTCCTCGGGGTGGGTGTGCAGCCGCCAACGCCGTCCTGGGGCTTGATGATCGCCGAAGGCAAACCCTACATGTTCTTTTCCCCGTGGGTCATCGCCATTCCCGGCGTCGCCCTGATGATTCTGGTGCTGGGTATCAACCTGGTCGGCGATGGCCTGCGCGATCTGATCCTGCCCGATGGCCGTAACTGAMSTPTTLAINDYLPPPSSLSRVLGKSFRHRGFAIGTVLLLIIFTGALFAPWLAPYDPYAQDVMLRMKPPVWMANGTWEYVLGTDKLGRDYLSRLLYGARISLFIGIAAALISGFIGTVMGLLAGYYGGKVDAFISYLITTRLAMPVVMVALASASLMGGSLKVVIVLLGCLLWDRFAVVVRASVQQIRDAEYVASAQALGCSTLRILVSEILPNLVGALIVVATLEMAHAILLESALSFLGVGVQPPTPSWGLMIAEGKPYMFFSPWVIAIPGVALMILVLGINLVGDGLRDLILPDGRNPGPT0004450_7541DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004450-ddpC|appC-K02034NANA
D1-35_026021017oppD_1COG0444Oligopeptide transport ATP-binding protein OppDATGGCACTACTCCATGTAGAAAACCTGCGCGTGGATATCCCCATGGGCAACCGCCCGACGCCGGATGACATGCTCCATGCGGTGCGCGGTCTGACCTTTGAAGTCGAGCGCGGTGAAATGTTGTGCATCGTTGGCGAATCCGGCTGCGGTAAATCCTTGACGTCGCTGGCGCTGATGGACCTGTTGCCTCGCAAGGCCAAACGCACGGCGTCGCGGCTGATGCTGGACGGCATCGACATGATCGGCCAGAGCGAACGGCACATGTGCGACCTGCGTGGCAACCGTCTGGCAATGATCTTCCAGGAACCGATGACCTCGCTGAACCCGGCCTACAGCATTGGCGATCAACTCAGCGAAGTGCTGACCCGGCACCGCAAGGTGTCGCGCAAGGAGGCCCTGGTTCGCGCCGGGCAAATGCTGGAGAAAGTTGGTATCAGCAATGCCACCGAGCGCTTGCGCCAGTACCCGCATCAATTGTCCGGAGGTTTGCGCCAGCGGGTGATCATCGCCATGGCGTTGATGTGCGAACCGGACCTGATCATCGCCGATGAGCCCACCACCGCGTTGGACGTGACCATTCAAGCGCAGATCCTGCGCTTGATCCGCGACATCCAGAAAGAACTCGGCCTGGCGGTGATCTTCATCACCCACGACCTGGGGCTGGTGGCGCGGATCGCCGATCGGGTCGCCGTGATGTATGCCGGGGAAATCGTCGAAACCGCCCCTGCCCTGCAACTGTTCGAAAACCCGCAGCATCCGTACACCCGTGGTCTGCTGGCCAGTATCCCGATCCCGGGCCAGACCAAACCGGGTGCGGCGCTGGGTTCGATTCCAGGACTGGTGCCGAGCCTGGTAGGCGAACAGCAAGGCTGTGCGTTCCGCAATCGTTGTGGTCAGGCGATACCGGCCTGCGCGCAAGACATCCCCGAAGTCGAGCAGGACGGACACATGGCGCGCTGCCTGTTCGCCGCACCGGCCCCGGCACCGATTCGTCTTCAGGAGCGTGCACGGTCATGAMALLHVENLRVDIPMGNRPTPDDMLHAVRGLTFEVERGEMLCIVGESGCGKSLTSLALMDLLPRKAKRTASRLMLDGIDMIGQSERHMCDLRGNRLAMIFQEPMTSLNPAYSIGDQLSEVLTRHRKVSRKEALVRAGQMLEKVGISNATERLRQYPHQLSGGLRQRVIIAMALMCEPDLIIADEPTTALDVTIQAQILRLIRDIQKELGLAVIFITHDLGLVARIADRVAVMYAGEIVETAPALQLFENPQHPYTRGLLASIPIPGQTKPGAALGSIPGLVPSLVGEQQGCAFRNRCGQAIPACAQDIPEVEQDGHMARCLFAAPAPAPIRLQERARSPGPT0004435_8620DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031NANA
D1-35_02603990ddpF_2COG1124putative D,D-dipeptide transport ATP-binding protein DdpFATGAAAAAAGACATCGCTTTGGAGCTGTGTGACATCCGTCGCGAGTTTCGGATCAACCAGGGCTTTTTCAAACCCGCCGCCACCCTGAAGGCCGTGGATGGCGTTTCCCTGCGGCTGATGCGTGGCGAGACCCTCGGCCTGGTGGGTGAGTCCGGTTGTGGAAAAAGTACCCTGGCAAAGCTGCTGCTCGGCCTGTTGCCGCCTACCAGCGGCGATGTGCTGGTCAATGGTAAACATCTGGCGGCGACGGATCGCAAGACAATGTCCCGGCACATCCAGCCGATATTCCAGGACCCGTATTCTTCGCTGAACCCACGCAAGACGCTGCGCGAAATCATTACCCTGCCGCTGATCGTGCATGACATCGGCAGCCCCGCCGAGCGGCGCAAGAAGACCGAAGCGATGCTCGATGTGGTCGGTCTGCCCAAGCGGGTGATCGACAGCTACCCGAGCCAGTTGTCCGGCGGACAACGCCAGCGCGTCGCGATCGCACGCGCGCTGATCATGCGCCCCGATGTGTTGATCTGCGACGAGCCCACCTCGGCACTGGATGTGTCGGTGCAGGCGCAGATCCTCAACCTGCTGCAAGACCTCAAGCGCGAATTCGGCCTGACCTATCTGCTGATCAGCCACAACCTCGCGGTCATCGAACACCTCGCCGACCGGGTCGCGGTGATGTACCTCGGGCGCATCGTCGAAGAACGTACGCGCGAATCGTTGTTCGCCGAACCCGGCCACCCTTATACCCGCGCCTTGCTGGACTCGGTGCTCACCCCCGATCCGCGCCTGGGCATTCCCGATATCGGCCTGCACGGTACCTTTCCCAATCCGATGTCACCGCCGTCCGGTTGCGCGTTTCACCCGCGCTGCCCGAGCTGCTTCGCACCGTGCAAAACGGCCTACCCGGCCAATGATTCCATTATCGGCGGCAACGTGCGTTGCCACCTTCACGACAGTCCCGCCCAAACACTGGAGCTCGTCCACTCATGAMKKDIALELCDIRREFRINQGFFKPAATLKAVDGVSLRLMRGETLGLVGESGCGKSTLAKLLLGLLPPTSGDVLVNGKHLAATDRKTMSRHIQPIFQDPYSSLNPRKTLREIITLPLIVHDIGSPAERRKKTEAMLDVVGLPKRVIDSYPSQLSGGQRQRVAIARALIMRPDVLICDEPTSALDVSVQAQILNLLQDLKREFGLTYLLISHNLAVIEHLADRVAVMYLGRIVEERTRESLFAEPGHPYTRALLDSVLTPDPRLGIPDIGLHGTFPNPMSPPSGCAFHPRCPSCFAPCKTAYPANDSIIGGNVRCHLHDSPAQTLELVHSPGPT0004440_7530DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004440-ddpF-K02032NANA
D1-35_026041425dapE_2Succinyl-diaminopimelate desuccinylaseATGAGTCGTTCATTGGCCATCAGCAACACCACCGCGCAATTCGACAACGGCGCTTTTTTCAAGCTGCTCGAACGTAGCGTCGCCTTGCACACCGAAAGCCAGGCAACGGACAGCCAGCCCGAGCTGTATCGCTACCTCAATGACTTCATCACCCCGCATGTCGAGGCAATGGGCTTCAGCGTCAAGATCTATGACAACCCGGTGGCAGAGCGTGGCCCCTTCATGATCGCCACACGCATCGAACATCCAGAACTGCCGACTGTGCTCAGCTACGGCCACGGTGATGTGGTGCGCGGCTATGAAGCCCAATGGCGTGAAGGCCTGTCACCGTGGCAAGTCACTGTCGAAGGCGATCGCTGGTACGGCCGCGGCACGGCGGATAACAAAGGCCAGCACCTGATCAACCTGACCGCACTGGAGCAAACGCTCAAGGCGCGCGGCGGCAAGCTGGGCTTTAACGTCAAACTGTTGCTGGAAATGGGCGAAGAAGAAGGCTCGCCGGGCTTGAACGCGTTCTGTGCCGCCCACAGCGAAGAGCTCGCCGCGGATATTTTCATCGCCTCGGACGGCCCGCGCCTGGCGGCATCACGACCGACGATTTTTCTCGGTTCACGCGGGGCGTTCAACTTCGAGCTGGTCGTCAATTTGCGTGAAGGCGCCCATCACTCTGGCAACTGGGGCGGCTTGCTGGCCAACCCAGGCATCATTCTGGCCAATGCCATCGCCAGCATGGTCGATGAACAGGGCCGGGTGAAAGTGGCAGGCCTACAGCCCGAGTCACTGCCGGAACCGGTTCGCCGGGCACTGGCTGATATTGATGTGGGTGGCGGCCCGGGCGATCCGGAAATCGATGCCAACTGGGGCAACCCGCAGCTCTCGCTGAGCGAAAAGGTGTTCGGCTGGAACACCCTCGACGTCATTGCCTTCAAGACCGGCAACCCGGATGCCCCCGTGCATGCGATCCCCGGTAAAGCCAATGCCCATTGCCATATCCGCTTCGTGGTGAACAGCGACTACACGACCTTCATCCCGGCGGTTCGTGCCCACCTGGATGCCCATGGCTTCAACAATGTCGAGGTCAAGCAAAGTCGTATCGATGTGATGCATGCCACTCGGCTGGACCCGCAAAGCCCGTGGGTCAATTGGGCGCTCAGCTCGTTGACACAGACCACCGGTAAAAAACCTGCGCTGCTGCCAAACCTTGGGGGCTCGCTGCCCAACGACGTCTTCGCCGACGTGCTCGGCCTGCCGACCTTGTGGGTGCCGCACTCTTATCCGGCCTGTTCGCAACATGCGCCGAACGAGCACTTGCTGGCACCGGTGGTCAAGGAAAGCCTGCAAATCATGGCCGGTCTCTTCTGGGACCTGGGCAACGATGCGGCACGCCTGGCTCAGGAGCACCAGTTGCGGGAGCAGGCGCAATGAMSRSLAISNTTAQFDNGAFFKLLERSVALHTESQATDSQPELYRYLNDFITPHVEAMGFSVKIYDNPVAERGPFMIATRIEHPELPTVLSYGHGDVVRGYEAQWREGLSPWQVTVEGDRWYGRGTADNKGQHLINLTALEQTLKARGGKLGFNVKLLLEMGEEEGSPGLNAFCAAHSEELAADIFIASDGPRLAASRPTIFLGSRGAFNFELVVNLREGAHHSGNWGGLLANPGIILANAIASMVDEQGRVKVAGLQPESLPEPVRRALADIDVGGGPGDPEIDANWGNPQLSLSEKVFGWNTLDVIAFKTGNPDAPVHAIPGKANAHCHIRFVVNSDYTTFIPAVRAHLDAHGFNNVEVKQSRIDVMHATRLDPQSPWVNWALSSLTQTTGKKPALLPNLGGSLPNDVFADVLGLPTLWVPHSYPACSQHAPNEHLLAPVVKESLQIMAGLFWDLGNDAARLAQEHQLREQAQNANANANANA
D1-35_026051155cpg2_2Carboxypeptidase G2ATGAGCGCCACGCCACAACAGGCGCTGGACTGGCTTGCCGGCCAGCGCCACGCCATGGAGTCGCTGCTACAACGTATCGTTGACACCGACTCCAACAGCTATGACAAGGCGGGCGTCGACGCGGTGGGCGCGCTGCTCGCGGTGGAATTGGAAGCCGACGGCATCCTGCTCAAGCGCATGCCGGTCGATGATTTTGGCGACGTGCTACTCGCAGAAGTGCCAGGCGCATCTGGAAAGCCGGTGCTGTTGCTAGGCCATCGCGACACGGTGTTCCCCAAAGGCACCACCTCGACGCGTGGCTACAGCCGCGACGCCAACCTCGCCTATGGCCCCGGCGTCGCCGACATGAAAGGCGGCCTGGTGCTCAACTGCTTCGCGCTCAAGGCACTCAAGCGCGCCGGTCAGTTGCCCTATCCGGTGCAGGTCCTGTACACCGGCGACGAAGAAATCGGCTCCGGCAGCGCCAGGACCCATATCGAAAAAGCCGCCCGTGGCGCCCGTGCCGTGCTCAATACCGAACCCGGCCGGGCCAGCGGCAACGTGGTCAGCGCACGCAAAGGCGGCGCCACGCTGATCATCGAAGTCAGCGGCCGCGCGGCGCATGCCGGGGTCAACCATGCCGACGGCGCCAGTGCCATCGAAGCCCTGGCACGCAAGATCGTCAAGCTCCATGCCTTGACCGATTACACAGCAGGCATCACGACCAATGTCGGCCTGATAGCCGGTGGCACCTCCAGCAACACCGTCGCGCCCAGCGCCTCTGCCCGGCTGGATGTGCGCTTCATCGAACTCAAACACTGGGATCAACTCTTTACCAAAATTCAGGCCATCGTCGCCGAGGAAGAACTGGCAGGCACCCGCGCCATCCTCAAGGAAGCGACAACCTTTCTACCAATGGAAGCCTGTCACAGCGAACGGCTGCTGCAAATCTACCAACAAGAAGCGCTGGCGCTGGGTTTCAGCGTCGAAGGCGAGTTCACCGGCGGTTGTGCCGACTCCGGATTCACAGCAAGCCTGGGCATTGCGACCCTTTGTGGCCTCGGGCCAGTGGGCGGCAAAGTCCATACCGACCGTGAATATCTGGAACTGGACACGCTGGTGCCTCGCGCTCTGGCGTTGGTGGCGACCATTCTGGCGGTCGGTGATAACTGTTGAMSATPQQALDWLAGQRHAMESLLQRIVDTDSNSYDKAGVDAVGALLAVELEADGILLKRMPVDDFGDVLLAEVPGASGKPVLLLGHRDTVFPKGTTSTRGYSRDANLAYGPGVADMKGGLVLNCFALKALKRAGQLPYPVQVLYTGDEEIGSGSARTHIEKAARGARAVLNTEPGRASGNVVSARKGGATLIIEVSGRAAHAGVNHADGASAIEALARKIVKLHALTDYTAGITTNVGLIAGGTSSNTVAPSASARLDVRFIELKHWDQLFTKIQAIVAEEELAGTRAILKEATTFLPMEACHSERLLQIYQQEALALGFSVEGEFTGGCADSGFTASLGIATLCGLGPVGGKVHTDREYLELDTLVPRALALVATILAVGDNCNANANANANA
D1-35_026062712aceE_1COG2609Pyruvate dehydrogenase E1 componentATGAACGACCTGTCCGATATTCATGCCCAATGGCCGGGCCAGGCCAGCGAAGATGCTCAAGAAGTGGTTGAATGGCGGGACGCCTTGCTGTCGGTTATCGCCCATAGCGGCGCGGCTCAGGCCAAGCAGATCCTCGACATGCTGATGACTGTGGCAAGCGCCTCGGACATCGGTTGGCGGCCCAGCCATGGCACGCCCTACATCAATACCATCGGTGTCGAGCGCCAGCCGGTATTTCCAGGGGACCTGGCCATCGAAGAAAGGCTGGCCTCGATCATGCGCTGGAACGCGTTGGCGATGGTTGCCAGGGCCAACCACGCTTATGGCGAATTGGGCGGACATATCGCCAGTTATGCCAGCGCGGCGGACTTGTTCGAAGTGGGCTTCAATCATTTTTTCAAAGCGCGGACCGACAGCAGCGGTGGCGATCTGGTGTTCTATCAACCGCATTCGGCGCCAGGGGTCTATGCCCGGGCGTTCCTCGAGGGCCGCCTGGAAGAAAAGGACCTAATGCATTATCGGCAAGAGATCGGCGCACGCGCCAAGGGCGCCCGAGGGTTGTCGAGTTACCCGCATCCTTGGCTAATGCCGGATTTCTGGCAGTTTCCGACGGGCTCCATGGGCATTGGTCCAATCAGTTCGATCTACCAGGCGCGTTTCATGCGTTACCTGGAGCACCGGGGCCTGCAAGACACCACGGGTCGAACCGTCTGGGGCGTGTTTGGCGACGGCGAAATGGATGAGCCGGAAAGCATGTCGGCGCTGACGATGGCCACCCGGGAAGGGCTGGATAATCTGGTCTGGGTGGTCAATTGCAACCTGCAACGGCTGGACGGGCCGGTTCGTGGCAATGGACGCATCATCGACGAGTTGGAGGCGTTGTTTGGTGGGGCAGGCTGGAACGTCATCAAACTGGTTTGGGGTTCCGACTGGGACAGTTTGTTTGCGCGCGATACAGAGGGCGCGCTGGTCAAGGCGCTGTCCAGCACTGTCGATGGGCAGTTCCAGACGTTCGCGGCCAAAGACGGACGCTTTAACCGGGAACATTTCTTTGGCCAGAACGAGGCATTGGCCCATCTGGCACACGGCCTGACGGATGAGCAGATCGATCGTCTGAAACGGGGCGGTCACGACATGGTGAAGATCTTCGCCGCCTATCAAAGCGCACTGCGCGAAGGCAACAAGCCCACTGTGATTCTGGCGCAGACCAAGAAGGGCTTCGGCATGGGCGATGCCGGGCAGGGCAGGATGACCGTGCACCAGCAGAAGAAGCTCGATCGGGAGGCGCTGATCGCGTTTCGCAATCGTTTCAACCTGCCGCTGACCGATGAACAGGCCGCCTCGTTGAGCTTCTTCAAACCTGCTGAAGACAGCGCTGAAATGCGCTATCTGCATGAGCGTCGCCGTGCATTGGGCGGGTACATGCCATCGCGGCCTTCGATCGCCGAATCATTGGCGGTGCCTGACGTCAGCAGCTATGGCACGTTTGCCATTGCTGCGGATGGCAAGGAGATGTCTACCACCATGGCGTTCGTGCGAATGCTCAGTGGTTTGCTGCGGGACAAACAACTGGGCCCGCGCATCGTGCCGATCGTGGCGGATGAAGCGCGTACGTTCGGCATGGCCAGCCTGTTCAAGCAGATCGGCATTTACTCCAGCGTGGGGCAGCGATATGAGCCGGAAGACATCGCCTCGATCCTGAGCTATCGAGAAGCGCTGGACGGCCAGATTCTCGAAGAGGGCATCAGCGAGGCAGGGGCGATCAGTTCCTGGGTTGCAGCAGCGACCAGCTATTCGGTGCATGGCTTGCCGATGCTGCCGTTCTACATCTATTACTCGATGTTCGGCTTCCAGCGCATTGGTGACCTGATCTGGGCCGCAGCGGATCAACGGGCTCGCGGTTTTCTGCTCGGGGCCACCGCCGGCCGCACGACATTGGGCGGTGAAGGTCTGCAGCACCAGGACGGCAACAGTCATATGATGGCGGCGATGGTCCCCAATTGCCGGGCTTACGATCCGGCATTCGCCGGCGAGTTCGCGGTGATCCTGGATCACGGCATGCGCCAGATGCTGGAGCGTCAGGTGGACGAGTTTTATTACGTCACCCTGATGAACGAGAACTACCCGCAGCCCAGCCTTCCTGACGGCGTCGAACAGGCGATTATCAAGGGCATGTATCGGTTCGCCCGGCATGAAGTCGAGGGTGCGCGTGGACGTGTGCAGTTGCTGGGCTCCGGCGCCATCCTGCGCGAAGTGATTGCCGCCGCCGAGTTGCTGGCCAGCGATTGGGGTGTCGACAGCCAGGTCTGGAGCGTGACCAGCTTCACCGAGTTGGCCCGTGATGCGCGCGAAGTGGAGCGCTGGAATCGACTGCACCCTGGACAACCTTCGCGCCGCAGTCATGTCCAGGTGTCGCTCAATGACTCGGCGCCGATCATTGCCTGCACCGACTACGTTCGCGCCTTGCCGCAGTTGATCGCCAGTTATCTCGATGCCCGTTACACGGTACTCGGCACCGATGGCTTTGGCCGCAGCGATACCCGCAGTCAGCTGCGCAGGTTCTTCGAAGTGGACCGCCACCAGATTGTCCTGAGTGCACTGACTGCACTGACTGCACTGGTGCACACAGGGCGCCTCGATGCCAATGTGTGTGCCGAGGCCATTGAACGCTACGCGATTGACGTTGACGCGGTGGTCCCTTGGGACGCTTGAMNDLSDIHAQWPGQASEDAQEVVEWRDALLSVIAHSGAAQAKQILDMLMTVASASDIGWRPSHGTPYINTIGVERQPVFPGDLAIEERLASIMRWNALAMVARANHAYGELGGHIASYASAADLFEVGFNHFFKARTDSSGGDLVFYQPHSAPGVYARAFLEGRLEEKDLMHYRQEIGARAKGARGLSSYPHPWLMPDFWQFPTGSMGIGPISSIYQARFMRYLEHRGLQDTTGRTVWGVFGDGEMDEPESMSALTMATREGLDNLVWVVNCNLQRLDGPVRGNGRIIDELEALFGGAGWNVIKLVWGSDWDSLFARDTEGALVKALSSTVDGQFQTFAAKDGRFNREHFFGQNEALAHLAHGLTDEQIDRLKRGGHDMVKIFAAYQSALREGNKPTVILAQTKKGFGMGDAGQGRMTVHQQKKLDREALIAFRNRFNLPLTDEQAASLSFFKPAEDSAEMRYLHERRRALGGYMPSRPSIAESLAVPDVSSYGTFAIAADGKEMSTTMAFVRMLSGLLRDKQLGPRIVPIVADEARTFGMASLFKQIGIYSSVGQRYEPEDIASILSYREALDGQILEEGISEAGAISSWVAAATSYSVHGLPMLPFYIYYSMFGFQRIGDLIWAAADQRARGFLLGATAGRTTLGGEGLQHQDGNSHMMAAMVPNCRAYDPAFAGEFAVILDHGMRQMLERQVDEFYYVTLMNENYPQPSLPDGVEQAIIKGMYRFARHEVEGARGRVQLLGSGAILREVIAAAELLASDWGVDSQVWSVTSFTELARDAREVERWNRLHPGQPSRRSHVQVSLNDSAPIIACTDYVRALPQLIASYLDARYTVLGTDGFGRSDTRSQLRRFFEVDRHQIVLSALTALTALVHTGRLDANVCAEAIERYAIDVDAVVPWDAPGPT0001385_1015DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001385-aceE-K00163NANA
D1-35_02607420hypothetical proteinATGAGCCGATCTGCCGACTGTCGTTCTAAAACCCTGAAGTGGATGCGTGAGCCTTCGAGCTGTACGCGCATCGTGGTCATCGTGTCCGCAATGGACAGTGATCATATTGACCTGATGCACCATGGGTTCAGCTGTTTTGACAATATCGCGCTGGTACAGGTTGAGCCTTCGGGCAGTGGGGCGCAAAGGTGCGTTGAAGGACAAGTTGCGAAGTGTGATTACAGCTTTCTCGTTTGCGGTGAACTGGAAGAGTCTCTGTTAAATGATCTTTCCATTGGCAATCCGTGCATCTACCAGATAGGGCAAGGCAGCTGGGCCGAGCGCTCCGTGATTGAAGCGGTAGAGCAGGTCAAGAAACTCGCCCGATTGAGCTATTCACGCCTTGAAACGTTACCCGACATTTGCAGGATATGCCCATGAMSRSADCRSKTLKWMREPSSCTRIVVIVSAMDSDHIDLMHHGFSCFDNIALVQVEPSGSGAQRCVEGQVAKCDYSFLVCGELEESLLNDLSIGNPCIYQIGQGSWAERSVIEAVEQVKKLARLSYSRLETLPDICRICPNANANANANA
D1-35_02608462hypothetical proteinATGCTTGCGATATCGCAGTCTGCAATCTGGGTGAAAGAACCCCTGGCGGATACCGGCGTTGTCATCGTGACCAGCGCCGCGTTGCCCAAGTACATGATTGACTCGTTGCACATGGCGATCGACGACTGGGACCAGGTTGCCTATCTAGTGGTCCAGCAATCCAAGGCATTCATGCTCGACTGGCTGCAGTTTGGGGCTCACTCGATAGAGCCGGTGCCGGCTAGCACCTGTCGGGCCAGCCAACTGCTGCATGGTGTCTCCAAAGGTTGTTTTTTATTGGATATCGAAGACACCCCGATACCCCGTCTGACCTGGCTGGGATCAGTCTGTGGACACCCACTGCGTGTCCTCAAGCTGGGAGACGCAGCCTCCCAGGCAGCGATCGATAAACAGGTGGAAGAGATTTTATCGGTGACCCGGACACTGGTGAAAAGCGGGTTGCAGGAACGTTGTTTCAGCTAGMLAISQSAIWVKEPLADTGVVIVTSAALPKYMIDSLHMAIDDWDQVAYLVVQQSKAFMLDWLQFGAHSIEPVPASTCRASQLLHGVSKGCFLLDIEDTPIPRLTWLGSVCGHPLRVLKLGDAASQAAIDKQVEEILSVTRTLVKSGLQERCFSNANANANANA
D1-35_026091017acdS1-aminocyclopropane-1-carboxylate deaminaseATGAACCTGAATCGTTTTGAACGTTATCCATTGACCTTCGGTCCTTCGCCCATCACGCCCTTGAAGCGCCTGAGTAAACATCTGGGGGGCAAGGTCGAGCTGTATGCCAAACGTGAAGACTGCAACAGTGGCCTGGCCTTTGGTGGGAACAAGACTCGCAAGCTCGAATACCTCATTCCTGAAGCGCTCGAGCAGGGCTGCGATACGCTGGTCTCCATCGGTGGCATTCAGTCGAACCAGACCCGCCAGGTTGCCGCAGTCGCTGCCCACTTGGGCATGAAGTGCGTGTTGGTGCAGGAAAACTGGGTGAACTATTCCGATGCGGTGTATGACCGGGTAGGCAACATCGAGATGTCGCGAATCATGGGCGCTGACGTGCGGCTTGATGCAGCTGGCTTCGATATCGGCATTCGGCCAAGTTGGGAAAAGGCCATGAGCGATGTCGTGGAGCAGGGCGGCAAACCGTTTCCGATTCCGGCGGGTTGTTCCGAGCACCCTTATGGCGGCCTCGGTTTTGTCGGCTTTGCCGAAGAAGTGCGGCAGCAGGAAAAAGAACTGGGCTTCAAGTTTGACTACATCGTGGTCTGCTCGGTGACCGGCAGTACGCAGGCGGGCATGGTGGTCGGTTTCGCGGCTGACGGTCGTTCAAAAAATGTGATTGGCATTGATGCTTCGGCCAAGCCGGAACAGACCAAGGCACAGATCCTGCGCATCGCCCGCCACACCGCTGAGCTGGTGGATCTGGGACGCGAGATTACCGAGGAGGACGTGGTGCTCGATACGCGTTTCGCCTACCCCGAATACGGTTTGCCCAACGAAGGCACCTTGGAGGCCATCCGTCTGTGCGGCAGCCTTGAAGGCGTGCTGACCGATCCGGTGTACGAAGGCAAATCGATGCACGGCATGATTGAAATGGTGCGTCGTGGTGAATTCCCCGAAGGCTCGAAAGTGCTTTACGCGCACCTGGGCGGGGTGCCGGCGCTGAACGCCTACAGCTTCCTGTTTCGTAACGGCTAAMNLNRFERYPLTFGPSPITPLKRLSKHLGGKVELYAKREDCNSGLAFGGNKTRKLEYLIPEALEQGCDTLVSIGGIQSNQTRQVAAVAAHLGMKCVLVQENWVNYSDAVYDRVGNIEMSRIMGADVRLDAAGFDIGIRPSWEKAMSDVVEQGGKPFPIPAGCSEHPYGGLGFVGFAEEVRQQEKELGFKFDYIVVCSVTGSTQAGMVVGFAADGRSKNVIGIDASAKPEQTKAQILRIARHTAELVDLGREITEEDVVLDTRFAYPEYGLPNEGTLEAIRLCGSLEGVLTDPVYEGKSMHGMIEMVRRGEFPEGSKVLYAHLGGVPALNAYSFLFRNGPGPT0002000_61DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0002000-cuyA-K17950NANA
D1-35_02610465lrp_3COG1522Leucine-responsive regulatory proteinATGCCGCAGCCACTGGATCGAACCGACCGCGCCATTCTCAAGGCCCTGCAACGAGATGCCTCCATCTCCAATGTGACGCTTGCAGAGAAGGTGAAACTGAGCGCCCCTGCGTGCCTCAGGCGTGTCGAACGGCTCAAGCAGGCCGGCCTGATCAAGAACATCGTCGCACTGCTGGACAATGAAGCGTTGGATGCGGGGATGGTGGTACTGATCGGCGTAGTGCTGGACCGCTCCACACCGGAATCCTTCGCCGCATTCGAGGCAGCCGCCCAAAAAGTGTCCGGCTGCATGGAGTGCCATGTGGTGACGGGAGAGTTCGACTACTTCATGTTGCTGCGCACCAAGGACAGCAACAGTTTCAACCGGCTCCATGCGGAGCAATTGCTTTACTTGCCCGGGGTTCGCCAGATTCGCTCGTTCATGGGGTTACGCCAGGTCTTGTCGACAACGCACATCCCACTTTGAMPQPLDRTDRAILKALQRDASISNVTLAEKVKLSAPACLRRVERLKQAGLIKNIVALLDNEALDAGMVVLIGVVLDRSTPESFAAFEAAAQKVSGCMECHVVTGEFDYFMLLRTKDSNSFNRLHAEQLLYLPGVRQIRSFMGLRQVLSTTHIPLNANANANANA
D1-35_02611246intA_2COG0582Prophage integrase IntAATGGCACTCTCAGAAATGACAGTTCGGCATGCCCGAATAACCGGTAATGACTACACCCTCGGCGACAGTGATGGTCTCACGCTCAATGTGACGGCCAGAGGCGGAAAAGTCTGGCTCTTCCGCTACTACTGGGTAGGCAAGCAGAAGCGCATGTCCTTGGGTTGTTACCCACAAATCTCGTTCAAAGAAGCCCGTACACGACGTGACGATGCGCGCGCCTGGTTGCCCAGGGCATTAACCCCATGAMALSEMTVRHARITGNDYTLGDSDGLTLNVTARGGKVWLFRYYWVGKQKRMSLGCYPQISFKEARTRRDDARAWLPRALTPNANANANANA
D1-35_02613561pgsACOG0558CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferaseATGAATATCCCAAACCTGATTACCGTTCTACGCGTCCTGCTCATCCCGATCTTCATATTGCTGTTCTATTTGCCGTACCACTGGAGCTACGTGGCTTCCGCCTCGGTCTTCGCCTTCGCCGCCGCAACAGACTGGCTCGACGGCTACCTGGCCCGCCGCCTGGAGCAGAGCACGCCGTTCGGCGCGTTCCTCGACCCGGTGGCCGACAAGCTGATGGTCGCGGTGGCGCTGGTGCTGCTGGTGCAGGAGCACGGCAACCTCTGGCTGACCTTGCCGGCAGCGGTGATCATCGGACGCGAAATAGTCGTATCGGCCCTCCGCGAATGGATGGCCGAACTGGGCGCCCGTGCCCAGGTCGCGGTATCGAACCTGGGCAAATGGAAAACCGCCGCCCAAATGCTTGCCTTGGTTATTCTGCTGGCGAACCCCTCGGACTTCAGCTTCTGGGTGCTGTTGGGTTACGCATTGCTGCTGGTGTCCGCAGGCCTGACATTGTGGTCGATGGTCCAATACCTGCGCGCCGCCTGGCCGCACCTGCGGACTGACGTTGATCCGAAATAAMNIPNLITVLRVLLIPIFILLFYLPYHWSYVASASVFAFAAATDWLDGYLARRLEQSTPFGAFLDPVADKLMVAVALVLLVQEHGNLWLTLPAAVIIGREIVVSALREWMAELGARAQVAVSNLGKWKTAAQMLALVILLANPSDFSFWVLLGYALLLVSAGLTLWSMVQYLRAAWPHLRTDVDPKPGPT0007705_3899DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHATIDYLTRANSFERASE_ACTIVITY,PGPT0007705-pgsA|PGS1-K00995NANA
D1-35_026141824uvrCCOG0322UvrABC system protein CATGACCGAACAGTTTGATCCCAGCGCTTTTCTGTCCACCTGCAGCGGTCGCCCTGGCGTGTACCGCATGTTCGACAGCGACGCGCGCCTGCTTTATGTCGGCAAGGCCAAGAATCTCAAGAAGCGCCTGGCCAGTTATTTCCGCAAGACCGGCCTCGCGCCGAAGACTGCGGCCCTGGTGGGGCGCATCGCGCAGATCGAAACGACCATCACGGCCAACGAAACGGAAGCACTGCTGCTTGAGCAGACGCTGATCAAGGAATGGCGCCCGCCCTATAACATCCTGCTGCGCGACGACAAGTCCTACCCGTACGTGTTCCTGTCGGACGGAGCGTTTCCGCGCCTGAGCATTCATCGCGGGGCCAAGAAGGCCAAGGGGCGGTATTTCGGTCCTTACCCCAGCGCTGGGGCCATTCGTGAAAGCCTGAGCCTGCTACAGAAAACCTTCTTCGTTCGCCAGTGCGAGGACAGCTACTACAAGAACCGCACCCGGCCGTGCCTGCAATACCAGATCAAGCGCTGCAAGGCCCCGTGCGTCGGGCTTGTCGAGCCCGAGATCTACGCTGAAGACGTACGTCACTCGGTGATGTTCCTGGAGGGGCGCAGCAATGCGCTGACCGACGAGTTGTCAGCAGCGATGGAAGAGGCATCGATCAACCTCGAATTCGAACGCGCCGCGGAGCTGCGCGACCAGATCGGGCTGCTGCGCCGGGTGCAGGACCAGCAGAGCATGGAAGGCGGCAGCGGCGATGTCGATGTCGTTGCGGCGTTCATCAACCCCGGCGGCGCCTGCGTCCACCTGATCAGCGTGCGCGGCGGTCGCGTTTTGGGCAGCAAGAATTTCTTCCCCCAGGTGGGTATCGAGGAAGACGTGGCCGAAGTCATGGCGGCTTTTCTCGGCCAGTACTACGTCAGCAGCCCGGAGCGCGATTTGCCCAGCGAGTTGATTGTCAACGTGGTGCATGAAGACTTCCCGACCCTGATCGAGGCCATCGAAAAGCTCCGCGGTCGCGAACTGACCATCAGTCACCGTGTGCGCGGCACTCGGGCGCGCTGGCAGCAACTGGCCGTGACCAACGCCGAACAGGCGCTAGGCGCGCGCTTGGCCAACCGCCAGCATGTGGCGGCGCGGTTCGAAGCCCTTTCCGATGTCCTCAACCTGGATGAACCACCGCAGCGACTGGAATGCTACGACATCAGTCACTCCAGCGGCGAGGCGACGGTAGCCTCTTGCGTGGTGTTCGGTCCGGAAGGGCCAATCAAGTCCGATTACCGACGCTATAACATCGAGGGCGTTACCCCGGGCGATGATTATGCGGCGATGCACCAGGCGCTGATGCGGCGCTTCGGCAAGCTGAAGGACGGCGAGGGCAAGTTGCCGGACATCCTGCTGGTGGACGGTGGCAAGGGCCAGTTGTCCATGGCCCGCGACGTGCTCAATGAATTGTCGGTCCCGGATCTGATTCTGCTGGGGGTTGCCAAGGGCGCCACGCGCAAGGCCGGTTTCGAGACCCTTTACCTGAACGACGCGGCCCACGAATTCACCCTGAAGGGAGACTCGCCGGCGCTGCATCTGATCCAGCAGATCCGCGACGAAGCCCACCGTTTCGCGATCACCGGCCACCGCGCCCGGCGAGGCAAGACCCGCCGTACGTCTACGCTGGAAGGCGTGGCAGGGGTTGGTCCGACGCGCCGGCGCGACCTGTTGAAACATTTTGGTGGCTTGCAGGAGCTGTCTCGTGCCAGCATCGAAGAGATAGCCAAAGCACCCGGTATCAGTAAAAAGCTCGCAGAGTCGATTTATGCGAACCTGCATAGCGAGTAGMTEQFDPSAFLSTCSGRPGVYRMFDSDARLLYVGKAKNLKKRLASYFRKTGLAPKTAALVGRIAQIETTITANETEALLLEQTLIKEWRPPYNILLRDDKSYPYVFLSDGAFPRLSIHRGAKKAKGRYFGPYPSAGAIRESLSLLQKTFFVRQCEDSYYKNRTRPCLQYQIKRCKAPCVGLVEPEIYAEDVRHSVMFLEGRSNALTDELSAAMEEASINLEFERAAELRDQIGLLRRVQDQQSMEGGSGDVDVVAAFINPGGACVHLISVRGGRVLGSKNFFPQVGIEEDVAEVMAAFLGQYYVSSPERDLPSELIVNVVHEDFPTLIEAIEKLRGRELTISHRVRGTRARWQQLAVTNAEQALGARLANRQHVAARFEALSDVLNLDEPPQRLECYDISHSSGEATVASCVVFGPEGPIKSDYRRYNIEGVTPGDDYAAMHQALMRRFGKLKDGEGKLPDILLVDGGKGQLSMARDVLNELSVPDLILLGVAKGATRKAGFETLYLNDAAHEFTLKGDSPALHLIQQIRDEAHRFAITGHRARRGKTRRTSTLEGVAGVGPTRRRDLLKHFGGLQELSRASIEEIAKAPGISKKLAESIYANLHSEPGPT0014925_3197DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014925-uvrC-K03703NANA
D1-35_02615642gacAResponse regulator GacATTGATTAGGGTGTTAGTGGTCGACGACCATGATCTCGTCCGTACGGGCATTACACGGATGCTGGCTGACATCGATGGCCTGCAAGTGGTTGGCCAGGCCGAGTCCGGGGAAGAATCCCTGATCAAGGCGCGGGAGTTGAAACCCGATGTGGTGCTGATGGACGTCAAGATGCCGGGCATCGGCGGCCTCGAAGCCACGCGTAAACTGCTGCGCAGCCATCCGGACATCAAGGTTGTCGCGGTGACCGTCTGTGAAGAAGACCCGTTTCCGACGCGGCTGCTGCAAGCGGGCGCGGCGGGTTACCTGACCAAGGGCGCCGGCTTGAACGAGATGGTCCAGGCCATTCGCCTGGTGTTTGCCGGCCAGCGCTACATCAGCCCGCAGATCGCCCAGCAACTGGCGATCAAGTCTTTCCAGCCGACCAACGACTCGCCCTTCGATGCGTTGTCCGAGCGGGAAATCCAGATCGCGCTGATGATCGTCGGCTGCCAGAAGGTCCAGATCATCTCCGACAAGCTTTGCCTGTCACCCAAGACCGTCAATACCTACCGTTACCGTATCTTCGAAAAGCTTTCGATCAGCAGTGATGTCGAGTTGACGCTGCTGGCGGTGCGCCACGGCATGGTCGATGCCAGCGCCTGAMIRVLVVDDHDLVRTGITRMLADIDGLQVVGQAESGEESLIKARELKPDVVLMDVKMPGIGGLEATRKLLRSHPDIKVVAVTVCEEDPFPTRLLQAGAAGYLTKGAGLNEMVQAIRLVFAGQRYISPQIAQQLAIKSFQPTNDSPFDALSEREIQIALMIVGCQKVQIISDKLCLSPKTVNTYRYRIFEKLSISSDVELTLLAVRHGMVDASAPGPT0012935_980DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-VarA|VarS_SIGNALLING_SYSTEM,PGPT0012935-gacA|uvrY|varA-K07689NANA
D1-35_02616432hypothetical proteinATGTTCGAATGGCGCTCGGCTGAAGTCGATGATATCGAATTCGCCCGACAACTGACGTGCAGCAATATGCTTCCCTATTATCTGCGTCATGATTTGCTGTGGCAGGACGAAGCGTTTGACCTGGCCTGGGTGATTCGCCAGAACTGGATTATCCATCGAGGTGACCAGGCGCTGGGTTTCGTCAGCCTCAGCCGCGACGCCCGTGCGCTGTATATCCGGGAGTTGCAGATTGACAAGGCGTTTCATGGGCAGGGGGCCGGAACCTGGGCGATCGGACAGGTCTGGGGGATGGTGGCGGTGGAGCGTCGCCCCGCGTTGCGCCTGACCGTGTTCAAGGATAATCCGGCCAGGCAGCTCTACGAACGCATGGGGCTGCGGGTCGTCGGCGAGGATGAATGTTTCCTGAGAATGCAGCGGGACGTTGCCGCTTGAMFEWRSAEVDDIEFARQLTCSNMLPYYLRHDLLWQDEAFDLAWVIRQNWIIHRGDQALGFVSLSRDARALYIRELQIDKAFHGQGAGTWAIGQVWGMVAVERRPALRLTVFKDNPARQLYERMGLRVVGEDECFLRMQRDVAANANANANANA
D1-35_02617747nadE_1Glutamine-dependent NAD(+) synthetaseATGAGCCGAGCCTTTGCTGCCGCCCAATCGATTTCCATTCCGGGGGACATTGCCGGCAACCTTATCCATCATCAGCGCTTCATGGAGTCCGCCGCCGATCGGAATGTGGGGTTGCTGGTGTTTCCAGAACTGTCGCTCACCGGGTACGAGCGAGGGCTGGCCGCAGAACTGGCTATCTTGCCGGAGGATTTTGTGTTGCAGCCGCTGCGCGACCTGGCGCGGGAGCTCGGCCTGACTGCGGTGGTCGGCATGCCGATTCGCCTCGCGACCGACGCCCCGGTGCTGATCGGCGCATTGGTGCTCGGTGCGGATGGCTCCCTTGGGGTCTACAGCAAACAGCATCTGCACGCGGGAGAAGAAATCGCTTTCGCGCCCGGTCACGGCGGTTCGATCCTGGCGATGGGCGCGGATCGCGTGGCGTTGGCGGTGTGCGCCGATTTTTCCCAGGCCAGCCATGCGGCGGCAGCTGCGGAGCAGGGCGCGACGCTATATGCAGCCGGCGTGTTGATAACCGAGGGAGGCTATGTAGCGGACACGACGTTGCTGCAAGGTTACGCCCGACAGCACGCCATGACGGTCCTGATGGCCAATCACGGTGGCGCTACCGGAGGGTGGGAGTCGGCCGGTCGCAGCGCGATCTGGGCGGCCGATGGTTCGCTGATTGCCGCTGCGCCAGGCGTCGGCGAGCTTCTGGTCATGGCTCGTCCCCGGGGCAGCGGCTGGGTAGGGCAGGTGGTGCCGCTTTGAMSRAFAAAQSISIPGDIAGNLIHHQRFMESAADRNVGLLVFPELSLTGYERGLAAELAILPEDFVLQPLRDLARELGLTAVVGMPIRLATDAPVLIGALVLGADGSLGVYSKQHLHAGEEIAFAPGHGGSILAMGADRVALAVCADFSQASHAAAAAEQGATLYAAGVLITEGGYVADTTLLQGYARQHAMTVLMANHGGATGGWESAGRSAIWAADGSLIAAAPGVGELLVMARPRGSGWVGQVVPLNANANANANA
D1-35_02618129hypothetical proteinATGTTCAACGCCCTTGCACAGCTTCACACCGCCAGCGCCCTGCGCTCGGTTGCGGCTGCCCGGGTGAACAGCGTCCAGACTCCGGTCAGCTTTTATTTTGGGTATTGGTTTAGCCACTGGCGCGCCTGAMFNALAQLHTASALRSVAAARVNSVQTPVSFYFGYWFSHWRANANANANANA
D1-35_02620153hypothetical proteinATGAACTACGCCACTTATTACCGTTACGACAGTTTTGCCGCCTGGCGATTTACCAGCCACCGCTCGGGACAGCCTGCCGCCTCCGATCGGTCACCTACCGGTGGCATGCCTTCATTGCCGGCCATCACGGCCAATTGTCGAACACCCCAATAGMNYATYYRYDSFAAWRFTSHRSGQPAASDRSPTGGMPSLPAITANCRTPQNANANANANA
D1-35_026211071aroF_2COG0722Phospho-2-dehydro-3-deoxyheptonate aldolase, Tyr-sensitiveATGAATTCGTCCGTTTCTGCTTTGCCACTGTCCACCCTCACGCCTGCCAATGAAGCGCTGACCCTGCGTCTGCCAAGCGCTCTGCAGCTCAAACAGCAATTGCCGCTCGCCACTGCGCTGAGCCAACAGGTCGACACCCATCGCCAAGCGGTGCGTGCGATCCTCGACGGCGAGGACTCGCGCCTGCTGGTCATCGTTGGCCCCTGCTCGATCCACGATCCTGAGTCTGCGCTTGAATACGCCGCCAACCTGGCGCGCCTCGCCCGCGAAGTGAGCGACAGCATGCTGCTGGTCATGCGCGCCTATGTCGAAAAGCCGCGCACCACCGTCGGCTGGAAAGGCCTGGCCTACGACCCCGATCTGGACGGCAGTGACGACATGGCTGCCGGCTTGAACCTGTCCCGGGAACTGATGCGTGAGATGCTGCGACTCGGCCTGCCGATCGCCACTGAATTGCTGCAGCCCATGGCCGCTGGCTACTTCGACGACCTGCTCAGCTGGGTCGCCATCGGTGCCCGGACCACGGAATCGCAGATCCACCGGGAAATGGCCAGCGGCCTCGGCATGCCGGTCGGTTTCAAGAATGGCACGGACGGCGGGGTCGGCATCGCCTGCGACGCCATGCGCTCCGCCGCCCACCCTCACCGGCATTTCGGCGTCGACAGCCAGGGACACCCGGCGATCATCCAGACCCAGGGCAACCCCGACACTCACCTGGTGCTGCGCGGCGGCCATCGCGGGCCGAATTATGATCGCCAGAGCGTGGCGCAGATACACGACGACCTCACCCGCCTCAAAATCCCGGCCCGGATCATGGTCGATTGCAGCCATGCCAACAGCGGCAAGGACCCGTTGCGCCAGCCGCAGGTGTTCAATGACGTATTGGAACAGCGTCTGCTAGGAAACCGCGCCCTCATTGGCATGATGCTGGAAAGCCATCTGTTTGAGGGTTGCCAACCATTGGGGCCGACGATGCGCTACGGCGTGTCGGTGACCGATGGATGCCTTGGCTGGGAGGCCACCGAGCAACTGCTGCGCCAGGCCGATCTCTCGTTGCGATTGCAGGCCTGAMNSSVSALPLSTLTPANEALTLRLPSALQLKQQLPLATALSQQVDTHRQAVRAILDGEDSRLLVIVGPCSIHDPESALEYAANLARLAREVSDSMLLVMRAYVEKPRTTVGWKGLAYDPDLDGSDDMAAGLNLSRELMREMLRLGLPIATELLQPMAAGYFDDLLSWVAIGARTTESQIHREMASGLGMPVGFKNGTDGGVGIACDAMRSAAHPHRHFGVDSQGHPAIIQTQGNPDTHLVLRGGHRGPNYDRQSVAQIHDDLTRLKIPARIMVDCSHANSGKDPLRQPQVFNDVLEQRLLGNRALIGMMLESHLFEGCQPLGPTMRYGVSVTDGCLGWEATEQLLRQADLSLRLQAPGPT0012920_4617DIRECT 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
D1-35_026221062hypothetical proteinATGAAGACTTACCCATCGCCGCAGGACAGTAGCGACCCATGCCGCGCAAGACTGCCAGCGCCTTCCCTGGCGAAGGCCAAGGGAGGCGTGGTGGATCCGGCCTGGAACAAGGCCGTGATCACGATCAAGCCGTATCCGACGATGACGAGTGGTGATGAAGTGCGGCTGCGTTGGCATGGGCTCAATAACGAAGGCGACCCCTACCGGCATGAAACCAGCAGGTTTATCACCGAGCGGCAGGTCGGACGGGACGTGGTTTTTGTTGTTCGTGAACCGCATATCGCCGAGCTCGACGGTGGATCGCTGGAGATCTCCTACCAGGTAGCCGGAAAATGGATCCCCGGCGTGCTGGGGTCGCAAGCCCTGCAGCTTGAAGTCGGCGACAGGCCCGAGCTGCTGTTGCCGCCGATTGCCAATGATGCGGTGGGTGGCAGCCTCGATCCCGCCCGGGTGCCGGAAGGAACGCGGGTGACCATTCGGCCTTATTCGAGGATGGCGGTCGGTGATCGGCTGGCCTTGAGTGTCAGCCAGGATTCCAAGGCGCTTTGGCATGACGTGCTGCACATCGAGGAACATGTATTGGGGCGTGAAGTGTCATTCTGGGTCGATTATTCGCACATTGCCCCGTATATCGGCCACAGGTTGAACCTGGGCTATGTTGTCAGGCACGGCCGCTCGGCACGCCAGGCCGAGTCTTTGTCGGTGCATATCGGCCCCTTGGTGCGCCCTGCGCTGAAGGCGCCCCAGGTCGCGGCGCTGAACGAAGGAGGGCTCGATATCGAAACGCTGCAAGGCCCGGTGACGGTGGTCATCGATGGCACCGGACTGGCGGCGGGCGAATGGGTCGGCCTGCAATGCAACGGGACCTATACCCATGTGCAGGAGCGGGAAATCACCGAGGCGATGGTCGGCCAACCGCTGGTCTTCGAGGTGCCGGCCGCCTATTGGCAGGAGCAGCGAAACAGGTCGGTGCAACTGTTTTATCAGGTGGAACGACTGGACGATGTCAGCCAGCGGTCTGCGGAGATCACTATCGAGGTGCGTACCCGGGCGCCTGGTTGAMKTYPSPQDSSDPCRARLPAPSLAKAKGGVVDPAWNKAVITIKPYPTMTSGDEVRLRWHGLNNEGDPYRHETSRFITERQVGRDVVFVVREPHIAELDGGSLEISYQVAGKWIPGVLGSQALQLEVGDRPELLLPPIANDAVGGSLDPARVPEGTRVTIRPYSRMAVGDRLALSVSQDSKALWHDVLHIEEHVLGREVSFWVDYSHIAPYIGHRLNLGYVVRHGRSARQAESLSVHIGPLVRPALKAPQVAALNEGGLDIETLQGPVTVVIDGTGLAAGEWVGLQCNGTYTHVQEREITEAMVGQPLVFEVPAAYWQEQRNRSVQLFYQVERLDDVSQRSAEITIEVRTRAPGNANANANANA
D1-35_02623882lips_1Triacylglycerol lipaseATGCAACGGAATGCAAACACTCACTTTCCTATCCTGCTGGTCCATGGGTTGTTCGGGTTCGACAAGATCGGCGCCTTCGGGCTCTTTGAGAACGTCAAACAGGCTTTGCGCACCGCCGGCGCGCGGGTCTTCATCCCGTATCTGTCGGCTACCCATTGCAATGAAGCCCGTGGTGAACAACTGCTGACGCAGATCGACCGGGTCCTGGAAGGAACCGGCTCCACCCGGGTCAACCTGATCGGGCATGGCCAAGGTGCGCTGGCGGCACGTTATGCCGGGGCAACCGCCCCCGAACGAGTCGCCTCGGTCACCTCGGTCAGCGGCCCCAACCAGGGCTCGGAACTGGCCGACTTCCTGCGCAAGGCCCTGACCCCCGGGCGATTGCCGGAGCATGTGGCGAACCGGGTCGCAACACTCTTCGCCGACTTCATCTCGGCACTCAGCGGCCAGGCTCGGCTTCCACAGAACGCCATCGCGGCGCTGGCGGCACTGACGACTGAAGGCGTGGGCGCGTTCAACGACCGATACCCCCAGGGCCTGCCCCGAAACTGGGGCGGCAACGGGCCGCAGCTGGTCAACGGCGTTCGCTACTACTCCTGGAGCGGCACGCTGCAAGACGCCCCTGGCGAAGCCTGCGGTGCAGCAGGTCCGCTGCATGATTTCTGCCGGGCCTTTTCCGAATACTTCATTACCGAAGCCGGACAGAACGATGGCATCGTCGGGCGCTTCAGTTCCCACCTGGGCAAGGTCATTCGCTCCGATTACCCACTGGACCACTTGCACGCCATCAATCACGCGAACGCCGGCGGGCACCGCAAGGGAACCGACCCGCTAGCGCTCTATATAAGGCACGCCGAGCGTTTGCGAATCGTCGGACTCTGAMQRNANTHFPILLVHGLFGFDKIGAFGLFENVKQALRTAGARVFIPYLSATHCNEARGEQLLTQIDRVLEGTGSTRVNLIGHGQGALAARYAGATAPERVASVTSVSGPNQGSELADFLRKALTPGRLPEHVANRVATLFADFISALSGQARLPQNAIAALAALTTEGVGAFNDRYPQGLPRNWGGNGPQLVNGVRYYSWSGTLQDAPGEACGAAGPLHDFCRAFSEYFITEAGQNDGIVGRFSSHLGKVIRSDYPLDHLHAINHANAGGHRKGTDPLALYIRHAERLRIVGLPGPT0024445_1591DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_LIPASE_ACTIVITY,PGPT0024445-lip|lipC-K01046NANA
D1-35_02624282ppiC_1COG0760Peptidyl-prolyl cis-trans isomerase CATGGCCAAAGCCACTGCCCGCCACATCCTGGTATCCAGCGAAGACAAGTGCAACGAACTCAAGGCCCAGATCGAAGGCGGCGCTGATTTTGCCGAAGTCGCCAAGGCAAACTCCACTTGCCCGTCCAGCCGTCAGGGCGGTGACCTGGGCTCGTTCGGTCCAGGCCAGATGGTCAAGGAGTTCGACACCGTGGTGTTCAGCGCCCCGATCAATGTGGTCCAGGGCCCGGTCAAGACCCAGTTTGGCTATCACCTGCTGGAAGTCACCAGCCGCCAGGACTGAMAKATARHILVSSEDKCNELKAQIEGGADFAEVAKANSTCPSSRQGGDLGSFGPGQMVKEFDTVVFSAPINVVQGPVKTQFGYHLLEVTSRQDPGPT0000050_2494DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-ATMOSHPHERIC_NITROGEN_FIXATIONN-FIX-NITROGENASE_BIOSYNTHESIS,PGPT0000050-nifM-K03769NANA
D1-35_026251869appA_1Oligopeptide-binding protein AppAATGCGACTGGCGTTTCCCTCCTGGCTACTCACTGCCGTGGTCCTGCTGACAGGCGCCGCAGGTGTGAGCGCCGCCCCCCAACATGCCCTGACTGTTTATGGCGAGCCGGCCAAATACGCCGAAGGCTTCGGCCACTTTGCCTATGCCAATCCCCAGGCCCCCAAGGGCGGCACGATGCGCCGCTCGGCCATCGAGATCGGTCATTTCGACCATATCCTGCCCTATATCGACAAAGGCATCGGTGTCAGCCAGGTCGACGGCATGCTCTATTCGCCGCTGGCCCAGCGTTCGCTGGACGAGCCCTACACCGTCTACGGCCTGGTGGCCGAGAAAATGGAGCGTGCCGAGGATGGTCTGTCGCTGCGCTTCTACCTGAACGCCAAAGCCCGCTTCGCCGACGGCAAGCCCATTACCGCCGAGGACGTGCGCTACAGCTTCGAGCTGCTGATGACCCAGGGCAGCCTGCGCTACCGCACACAGTTCGCCGCAGTCAAAGGCGTCGTGGTGGAATCGCCTCGCAGCGTTCGTTTTGATTTCAAGAACAACGAAAACCGCACGCTACCATTGGATATTGCCACCCTGCCGGTGTTTCCCGAGCATTGGTGGAAAACCCGCGACTTCGCCAATGGCGGCGGCTACGAAGCCCCGCTGGGCAGTGGTCCGTACCGGGTGAGCAAAGTCGACTCGGGTCGCAGCATCACTTTCGAACGCAATGCAGACTGGTGGGGCAAGGATCTGCCGGTCAGTCGCGGCTTGTATAATTTCGACCATTTCAGCATTGAATATTTCGGCGATACCGATGTGGCCCGACAGGTCCTGCGTGGCGGCGCCTACGACTACAACCGCGAGTTTTCCGCGACCGGTTTTGCCATCGGCTACGACAGCCCGGCCCTGCGCGACGGTCGCCTGCAAAAGGCCCACCTCGCCACCGAAGCGCCGCAGCCGGCACAGGGCTTCGTGTTCAACCTGCAACGCCCGCAGTTCCAGGACCGCCGCGTACGCCAGGCGCTGGCCATGCTCTGGGATTTCGAATGGAGCAATCGCCAGATGATGCGCAATGCCTATGTGCGTCAGCAGAGTTTCTTTTCCAACACCGACCTCGCCGCCCGGCAACTCCCCGATGCGGCGGAACTGGCGATCCTCGAACCGTTGCGCGGCAAAGTCCCGGATGAGGTGTTCACGCAGGTATTCGAGGCGCCGAAAACCGACGGCAGCGGCGTGATCCGTGACAAACAGCTGCAAGCCCTGGCGCTGCTCGAACAGGCCGGCTGGAAGCCTCACGGCGACCGGCTGGTGAATGCCGAAGGCGAGCCCCTGAGCTTCACGTTCTTGAATACCCAGAACGGTATCGACCGTCTGTTGCTGCCCTACAAGCGGACCCTGGCGCAGATCGGTATCGACATGAGCATCCGGCGCATCGACTCATCCCAGTACGTCAATCGGCTGATGAGTCGCGACTACGACATGATCATCACCGGTTACCCCGTGAGCACCTCGCCCGGCATGGAACTCTACAATTATTTCGGCTCGGCGGCCGCCAATGATCCGGGCGCAAACAACTACATGGCCCTGCAGAACCCAGCCGTGGATGCCCTCATCGACGGCCTGGTCAAGGCCACCACCCAAAGCGACATGCTCCGCCATGCCCACGCCCTGGACCGGGTACTGCAATGGAATTACTACTGGATCCCCAACTATTACCCACCCGGCAGCTCGACCGTGTGGTGGAATCGCTTCGGCATGCCGAAGGTCCAGGCCAGCAATGACGAAGCCATCGAAAGCTGGTGGGAAGTCAGCACCACGCCGTTGACCAACGAACAGATGACCGCCGAACGCATCAAGCGCAGCGCACCCGGAGGACATCACTGAMRLAFPSWLLTAVVLLTGAAGVSAAPQHALTVYGEPAKYAEGFGHFAYANPQAPKGGTMRRSAIEIGHFDHILPYIDKGIGVSQVDGMLYSPLAQRSLDEPYTVYGLVAEKMERAEDGLSLRFYLNAKARFADGKPITAEDVRYSFELLMTQGSLRYRTQFAAVKGVVVESPRSVRFDFKNNENRTLPLDIATLPVFPEHWWKTRDFANGGGYEAPLGSGPYRVSKVDSGRSITFERNADWWGKDLPVSRGLYNFDHFSIEYFGDTDVARQVLRGGAYDYNREFSATGFAIGYDSPALRDGRLQKAHLATEAPQPAQGFVFNLQRPQFQDRRVRQALAMLWDFEWSNRQMMRNAYVRQQSFFSNTDLAARQLPDAAELAILEPLRGKVPDEVFTQVFEAPKTDGSGVIRDKQLQALALLEQAGWKPHGDRLVNAEGEPLSFTFLNTQNGIDRLLLPYKRTLAQIGIDMSIRRIDSSQYVNRLMSRDYDMIITGYPVSTSPGMELYNYFGSAAANDPGANNYMALQNPAVDALIDGLVKATTQSDMLRHAHALDRVLQWNYYWIPNYYPPGSSTVWWNRFGMPKVQASNDEAIESWWEVSTTPLTNEQMTAERIKRSAPGGHHPGPT0011625_527DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-SIDEROMYCINS|MICROCINS,PGPT0011625-yejA-K13893NANA
D1-35_026261059yejB_1COG4174Inner membrane ABC transporter permease protein YejBATGTGGGCTTATATTGCACGGCGCCTGCTGCTGATCATCCCGACGCTGGTGATCATTCTGCTGGTGAACTTCGTGATCGTGCAGGCGGCACCGGGCGGGCCGGTCGAACAGGCCATCGCCCACCTGCAGGGTATCGGCGGCGCCAGCGTCGGCAGTTCGGGCAATGCCATGGCCGGCAGCTCGCGCGCCAGCCGTGGCCTGGACCCGCAACTGATCAAGGACATCGAGAAACAGTACGGTTTCGACAAGCCCGCCCACGAACGCCTGTGGCTGATGCTCACCAGCTATGCCCGCCTGGATTTCGGCAAGAGCTTTTTCCGCGGCGCCACGGTCACCGACCTGATCCTGGAAAAGATGCCGGTGACCATTTCCCTCGGGCTCTGGGCGACGCTGATCACTTACCTGGTGTCGATTCCGCTGGGCATTCGCAAGGCCGTGCACCACGGTTCGGCATTCGACGTGTGGAGCAGCACCGCGATCATCATCGGCTATGCGATGCCGGCGTTCCTGTTCGCCATGTTCCTGATCGTCATGTTCGCCGGCGGCACCTCGCTCAACTGGTTCCCCGTGCGCGGACTGGTGTCGGACAACTTCGAATCACTATCGACGCTGGGCAAGATCGCCGATTACTTCTGGCATTTGGTGCTGCCCGTCACGTCGCTGGTCATCGGCGGCTTTGCCACCCTGACGATCCTGACCAAAAATTCGTTTCTCAACGAAATCACCCGTCAATACGTGGTGACGGCCCGGGCCAAAGGCATGAGCGAACGGCGCGTGTTGTACGGCCACGTGTTTCGCAACGCGATGCTGCTGGTGGTCTCGGGCATTCCCCAGGCATTCATCGGCGTGTTCTTCGCCGGCTCGTTGCTGATCGAGGTCATTTTCTCCCTCGATGGCCTGGGGCGCATGAGTTATGAAGCCGCCGTGTCCCGAGACTATCCGGTGGTGTTCGGCTCGCTGTTCATCTTCACCCTGTTCGGCCTGCTGATAAAGCTCATCGGTGACCTCTGCTACACCCTGGTGGACCCGCGTATCGACTTCGCCGCGAGGAACGCCTGAMWAYIARRLLLIIPTLVIILLVNFVIVQAAPGGPVEQAIAHLQGIGGASVGSSGNAMAGSSRASRGLDPQLIKDIEKQYGFDKPAHERLWLMLTSYARLDFGKSFFRGATVTDLILEKMPVTISLGLWATLITYLVSIPLGIRKAVHHGSAFDVWSSTAIIIGYAMPAFLFAMFLIVMFAGGTSLNWFPVRGLVSDNFESLSTLGKIADYFWHLVLPVTSLVIGGFATLTILTKNSFLNEITRQYVVTARAKGMSERRVLYGHVFRNAMLLVVSGIPQAFIGVFFAGSLLIEVIFSLDGLGRMSYEAAVSRDYPVVFGSLFIFTLFGLLIKLIGDLCYTLVDPRIDFAARNAPGPT0011630_938DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-SIDEROMYCINS|MICROCINS,PGPT0011630-yejB-K13894NANA
D1-35_026271023yejE_1COG4239Inner membrane ABC transporter permease protein YejEATGTTCAAGTTCTCGCCCTTGGGCCAGCGGCGTTTCGAGCGTTTCAAGAAAAACCGTCGTGGCTGGTGGTCGCTGTGGCTGTTCATCGGCCTGTTCGCCCTGACCCTGGGCGGTGAACTGATCGCCAACGACAAGCCATGGGTGGTGAGCTATCAGGGCTCGCTGTACTTCCCGGTTTTCAAGCGCTACACCGAGCAGGAATTTGGCGGTCAGTTGCCGTTCCAGGCCGACTATCGCAGCAACTATGTACAGAACCTGATTCACCAGGATGGCGGCTGGCTGCTCTTCCCGCCCATTCCTTTCAGCGACGACACGCCCAACTACGACCTCAACCAGCCGGCGCCAAGCCCGCCGTCGACGGTCAACTGGCTGGGCACCGATGATCAGGCCCGTGATGTGCTCGCGCGGGTGATCTTCGGCGCGCGGGTGTCGATCCTGTTCGCCCTGGCCTTGACCGCCATCAGTGCGCTGATCGGAATTACCGCCGGCGCCTTGCAGGGCTATTACGGCGGCTGGGTGGATCTGCTCGGGCAACGGTTGCTGGAAGTCTGGTCCGGGTTGCCGGTGCTCTATCTGCTGATCATCCTGTCCGGTTTCGTGGAACCGAATTTCTGGTGGCTGCTGGGGATCATGGCGCTGTTCTCCTGGCTGGCGCTGGTGGACGTGGTGCGCGCCGAGTTCTTGCGCGGGCGCAACCTGGAGTACGTGAAAGCGGCACGGGCCTTGGGCCTGACCGACCGCAAGGTGATCGTGCGACACATCCTGCCCAACGCCATGAACGCGACCTTGAGTTACCTGCCGTTCATCCTCACCGGCGCGATATCCACGCTGACGGCCCTGGACTTTCTCGGCTTCGGCATGCCGGCCGGCAGCGCGTCCCTGGGTGAGTTGATCGCCCAGGGCAAACAGAACCTGCAAGCGCCGTGGCTGGGATTGACGGCGTTCTTCACCCTGGCACTGATTCTGTCGCTGCTGGTGTTCATTGGCGAGGCGTTGCGCGACGCCTTTGATCCCCGGTCTTGAMFKFSPLGQRRFERFKKNRRGWWSLWLFIGLFALTLGGELIANDKPWVVSYQGSLYFPVFKRYTEQEFGGQLPFQADYRSNYVQNLIHQDGGWLLFPPIPFSDDTPNYDLNQPAPSPPSTVNWLGTDDQARDVLARVIFGARVSILFALALTAISALIGITAGALQGYYGGWVDLLGQRLLEVWSGLPVLYLLIILSGFVEPNFWWLLGIMALFSWLALVDVVRAEFLRGRNLEYVKAARALGLTDRKVIVRHILPNAMNATLSYLPFILTGAISTLTALDFLGFGMPAGSASLGELIAQGKQNLQAPWLGLTAFFTLALILSLLVFIGEALRDAFDPRSPGPT0011635_1061DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-SIDEROMYCINS|MICROCINS,PGPT0011635-yejE-K13895NANA
D1-35_026281575yejF_1COG4172putative ABC transporter ATP-binding protein YejFATGAGCGACAACCTGATCGAAATCCGCAACCTGAACGTCGCCTTCAACGACCAGCCGGTAGTGCGCGACCTGTGCCTGGATATCCGCCCTGGCGAATGCCTGGCCCTGGTGGGCGAATCCGGCTCAGGCAAGTCGGTGACGGCTCACTCGATTCTGCAATTGCTGACCGACAGCGGCGCACGCACCACCGGCAGCATTCGCTATCGAGACCAGGAACTGGTGGGCGCCGAGGCCAAGACCTTGCGTGAGTTGCGCGGCAATCGGATCGCAATGATTTTCCAGGAGCCGATGACGTCGCTGAATCCATTGCACAGCGTCGAAAAACAGATTGGCGAGACATTGATGCTGCACAGGGGACTGGGCGGCAAAGCGGCGCGCCAGCGGATCCTGGAACTGCTCGACCTGGTGGGTATCCAGAACCCGGCCGAACGGCTCAAGGCCTATCCCCACCAACTATCGGGCGGTCAGCGCCAGCGGGTCATGATCGCCATGGCCCTGGCCTGCGAACCGGAGTTGCTGATTGCCGACGAGCCAACCACCGCCCTGGACGTGACGGTGCAACGCAAGATCCTCCTGCTGCTCAAGTCATTGCAGCAGCGGCTCGGCATGTCCCTGCTGCTGATCAGCCATGACCTCAACCTGGTGCGCAGCATCGCCCAGCGGGTGTGCGTGATGAAGGCGGGAGAAATCGTCGAGCAGGCGCCTTGCGAAACGTTGTTCAGCGCACCGCAACACCCCTACAGCTGCGAACTGCTGCACGCCGAGCCGGAAGGCGAAGCCCTGCCCCGGGACGAGCGCGAAGACGTGTTGCAGGTTGAGGATTTGCGGGTCAGCTTCCCCAACGGTGGCGGGCTGTTGCGGCGCAAGCAATACCTGCGCGCCGTGGATGGCATCAGCCTGAGCATCCAGCGCGGCAAGACCCTGGGCATTGTTGGCGAATCCGGTTCCGGCAAGTCCACGCTCGGCCAGGCGATCCTGCGGTTGATCGAATCCGAAGGCAGCATCCGTTTTAGCGGCGCAGCCCTTGATCAGCTGTCGCAGAAAGAACTGCGGCCCTGGCGCAAGCAGATGCAGATCGTCTTCCAGGACCCGTTTGGCAGCCTCAGCCCGCGAATGTCGGTGCAGCAGATCATCAGCGAAGGCCTGGAGGTCCACAGCAGGTCCAGCGCCGAGCAATGCGAAGCCCAGGTGATCCAGGCGCTCAAGGAAGTCGGCCTCGACCCGCAGAGCCGGCATCGTTACCCGCACGAGTTTTCCGGCGGCCAGCGCCAGCGCATCGCCATCGCCCGGGCGCTGGTGCTCAAGCCCGCGCTGATCCTGCTGGACGAACCAACTTCGGCGCTGGATCGCACGGTGCAGAAACAAGTGGTCGCCCTGCTCCGCCAGCTCCAGGAAAAACACGGCCTGACCTACCTGTTCATCAGCCACGACCTGGCGGTCGTGCGAGCCCTGGCCCATGACATGATCGTGATCAAGGACGGCAAGGTCGTCGAGCAAGGCGCCAGCCACGACGTATTCGACTCGCCCCGACACCCTTATACCCGGGAGCTGCTGGCGGCGGCCCATCCGGGATAAMSDNLIEIRNLNVAFNDQPVVRDLCLDIRPGECLALVGESGSGKSVTAHSILQLLTDSGARTTGSIRYRDQELVGAEAKTLRELRGNRIAMIFQEPMTSLNPLHSVEKQIGETLMLHRGLGGKAARQRILELLDLVGIQNPAERLKAYPHQLSGGQRQRVMIAMALACEPELLIADEPTTALDVTVQRKILLLLKSLQQRLGMSLLLISHDLNLVRSIAQRVCVMKAGEIVEQAPCETLFSAPQHPYSCELLHAEPEGEALPRDEREDVLQVEDLRVSFPNGGGLLRRKQYLRAVDGISLSIQRGKTLGIVGESGSGKSTLGQAILRLIESEGSIRFSGAALDQLSQKELRPWRKQMQIVFQDPFGSLSPRMSVQQIISEGLEVHSRSSAEQCEAQVIQALKEVGLDPQSRHRYPHEFSGGQRQRIAIARALVLKPALILLDEPTSALDRTVQKQVVALLRQLQEKHGLTYLFISHDLAVVRALAHDMIVIKDGKVVEQGASHDVFDSPRHPYTRELLAAAHPGPGPT0011640_799DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-SIDEROMYCINS|MICROCINS,PGPT0011640-yejF-K13896NANA
D1-35_026291335bdlA_1COG0840Biofilm dispersion protein BdlAATGTTCATTCGCACTCGCAAACATCAGGACGTCTTGCACGAGACCCAGGGCGCACTGGCCTCTCTCGAAGCCGAGCGGGCGGCTTTTCACCAATCGATGGCGATCGTCGAGTTCGCGCCTTCAGGCGAAATACTTGGCGCCAACGCGCTGTTTCTGAACATGACCGGATACGTGCTGGATGACATCCTCGGCAAGCATCACCGGATGTTCTGCGCGCCTGAGTACGCCGGCAGCCGCGAATATGCGGTGTTATGGCAGCAACTGGCCCAGGGTGAGGGTAGCGAACAGCAGTACCTTCATCTGGCACGCGATGGCCTTGGGTCGTGGGTGCAGGCCAGCTACATTCCTGTGCGTGATCAGCGCGCCAGGGTCGAACGCATCATCCAGGTCAGCCGCGACATCAACGACCGCGTGCTACGGGCTCAGGCCGAGTCGAGTTTCATGCAGGCGATCGATCGCTCCATGGCGGTGATCGAGTTCGATCTGGGCGGTCATGTCATCAATGCCAACGTCAACTTCCAGAAGGTCATGGGTTATGGCCTGGAGGAGGTTCGCGGCCAGCACCATCGGATTTTCTGCGAGCCTGGCGAAGTTCAAGGCGAAGCCTATCGCGATTTCTGGGCTGGACTGAACCGTGGCGAATACAAGAGCGGGCTTTTCCAGCGCGTCGACAGGCACGGCAACACAGTCTGGCTGCAGGCCACCTATAACCCGCTCTACGATGCCCAGGGCCATTTGTACGGGGTGGTCAAGTTTGCCACCGACAGCACGCGTGAAGTCGAGCAACGCCAGACCGAATCAAAGGCGGCGCAGTTGGCCTTCGAGACGTCCCGGCAGACGGATGAGCACACCCAGTTGGGCACCGCCGTCGTGCAGCAGACCGTGACCGTAGTGCAAAGCATCGCCGATGAACTGCAACAGGTCGCTACCGGGATCAGCGCCCTCAGCGCGCAGTCCGAAGAGATCGGCAACATTGTCGATGCCATCCGGGGAATCGCCGAACAGACCAACCTGCTTGCGCTCAATGCGGCCATCGAGGCCGCTCGTGCCGGTGAGCAGGGTCGCGGCTTCGCGGTGGTTGCCGATGAAGTGCGCAATCTGGCCCGGCGTACCAGCCAGGCGACCGTTGCCATTACCGAAGTGGTCGGCAAGAACCGCGACCTGGCCAGGCAGGCGGTGGGCAGCATGCAATCGAGTACCGCCAAGGCCGAGCAAGGCGTGAAGCTGGCGAACCAGGCCGGCACCGTCATCCTCGACATCCACCGGGGCGCGAAGCAGGTTGTGGAAGTCATGGGCGAATTCGCCCAGACCCTGGACCAGCGCCGCGAAGCCTGAMFIRTRKHQDVLHETQGALASLEAERAAFHQSMAIVEFAPSGEILGANALFLNMTGYVLDDILGKHHRMFCAPEYAGSREYAVLWQQLAQGEGSEQQYLHLARDGLGSWVQASYIPVRDQRARVERIIQVSRDINDRVLRAQAESSFMQAIDRSMAVIEFDLGGHVINANVNFQKVMGYGLEEVRGQHHRIFCEPGEVQGEAYRDFWAGLNRGEYKSGLFQRVDRHGNTVWLQATYNPLYDAQGHLYGVVKFATDSTREVEQRQTESKAAQLAFETSRQTDEHTQLGTAVVQQTVTVVQSIADELQQVATGISALSAQSEEIGNIVDAIRGIAEQTNLLALNAAIEAARAGEQGRGFAVVADEVRNLARRTSQATVAITEVVGKNRDLARQAVGSMQSSTAKAEQGVKLANQAGTVILDIHRGAKQVVEVMGEFAQTLDQRREAPGPT0015710_26350DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_02630216hypothetical proteinATGAATAAATTCAACCCTCGCAAACTCAAGCTTTCCAAGTGGACCGCCTGCCAGCCCGTCAACCGGGAAAAGCATTTTCTCGTCACCCAATTGCTCTGCGACGAACAGGATTGCCCCGTTCAGGTCGAGTTGCAGGCGGTGTATAGCGGACGGGTGGCCGTGCTGGACTGGGGTGATCTGACCGACAGCGAACGGTGGAAAATCGGTTGGCATTGAMNKFNPRKLKLSKWTACQPVNREKHFLVTQLLCDEQDCPVQVELQAVYSGRVAVLDWGDLTDSERWKIGWHNANANANANA
D1-35_026311419norR_2Anaerobic nitric oxide reductase transcription regulator NorRATGAATCCCACCGAAAGTCTCAAGGACTACAAGCGCGTACGCACGCTGGCGATCCGCTCGCTGTTCGAGATCATCGAGCAGTCCAGCGAAGGCACGGTCATTGTCGATCGCGATGCGAATATCGTCTGGATGAACGAGCGCTACGCCCGTCGTTTCGGCCTCAATTCGGCGCAGGAAGCCATCGGCCGCGCCTGCGAAAGCGTCATCCCCGGCAGCTTGCTGCGTGAGGTGGTGCGCACCGGACGGCCGATCCTGCTGGACATGCAGGACACGCCCAAGGAACCGCTGGTGGTGATGCGCCTGCCGATCCACGACAACGCCGGCGCGGTGATCGGCGCCATCGGTTTTGCCCTGTTCGATGAGTTGCGCAGCCTGTCGCCGATGCTCAAGCGCTATCTGAGCATGCAGGAAGAACTGGCCTCCACCCGCTCGTTGCTGCGGGCGCGGCAGACCAAGTACAACTTTGCCCACTTCATCGGCACCAGCAGCGCCGGCCTGGAGGTCAAGCGCCGCGCCCGACGCAGCGCCAGCACCGATTCACCGGTGCTGCTGCTCGGCGAAACCGGTACCGGCAAGGAGTTGCTGGCCCAAGCGATCCATAGTGCTTCACCGCGGGCACACAAGGCCTTTGTCAGCATCAACAGCGCTGCCATCCCCGAATCGCTGCTCGAAGCCGAGTTCTTCGGCACCGCGCCAGGCGCTTTCACCGGCGCCGACCGCAAGGGCCGCGCCGGCAAACTGCAGATCGCCCAAGGCGGCACGCTGTTCCTCGACGAGATCGGCGACATGCCGCTACCGCTGCAAAGCAAACTGCTGCGGGTGCTTCAGGAGAAAGAATACGAACCGGTCGGCTCCAACGAGGTGTTGCAGAGCGATGTGCGGATCATTGCCGCGACCTCCACCGATCTTGAAGCGGCAATCAAGCGCGGCGAGTTCCGCGCCGACCTCTATTACCGTCTCAACGTGCTGCCGATCCAGGTCCCGCCGCTGCGTGAGCGCCTGGATGATCTGCCGGCACTGAGTGAGGCGATCCTCGAAGAACTGCGCAGCCAGCACGAACTGCACCGCGACGCCCTCGATCTGCTGGGCCAACATGCCTGGCCGGGCAACATTCGGGAGTTGCGCAACGTGCTGGAACGAGCCGCGTTGCTCAGCGACGACCTGATGCTCAGCGCTGCTGACATCCGCGCGGCCATCGGCACTTTCATCCCGGTTGAGCGCACGACAGGCCCGACCCTGGAGCCGTTATTGGCGCAGGAAACCTTCAGCCAGGCCCGGGCTCGATTTGACCGGCACTTGATCGAAACTACCCTCGCGAAATGCGATGGCAAGGTAGTCGAGGCGGCCGAGCGGTTGGGGCTGGGAAGATCGACGTTGTACAAGAAGATGGTGGCGCTGGGGATTGCGGAGTCTCAATAAMNPTESLKDYKRVRTLAIRSLFEIIEQSSEGTVIVDRDANIVWMNERYARRFGLNSAQEAIGRACESVIPGSLLREVVRTGRPILLDMQDTPKEPLVVMRLPIHDNAGAVIGAIGFALFDELRSLSPMLKRYLSMQEELASTRSLLRARQTKYNFAHFIGTSSAGLEVKRRARRSASTDSPVLLLGETGTGKELLAQAIHSASPRAHKAFVSINSAAIPESLLEAEFFGTAPGAFTGADRKGRAGKLQIAQGGTLFLDEIGDMPLPLQSKLLRVLQEKEYEPVGSNEVLQSDVRIIAATSTDLEAAIKRGEFRADLYYRLNVLPIQVPPLRERLDDLPALSEAILEELRSQHELHRDALDLLGQHAWPGNIRELRNVLERAALLSDDLMLSAADIRAAIGTFIPVERTTGPTLEPLLAQETFSQARARFDRHLIETTLAKCDGKVVEAAERLGLGRSTLYKKMVALGIAESQPGPT0019455_153DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERSPLANT_DERIVED_PROPIONATE|PROPANOATE_UTILIZATION,PGPT0019455-prpR-K02688NANA
D1-35_026321392hypothetical proteinATGAGTGTGATCATTGCCTTGGCAGCCCTCACGCTGTTGATGGTTGCCGCCTACCGTGGCTACAGCGTCATTCTCTTTGCCCCGATCGCCGCCCTCGGCGCGGTCCTGCTTACCGATCCATCCGCCGTCGCCCCTGCATTCACCGGGGTGTTCATGGACAAGATGGTCGGTTTCATCAAACTCTATTTCCCGGTGTTCCTGCTTGGCGCGGTGTTTGGCAAGCTGATCGAGTTGTCGGGTTTCTCCCGCTCCATCGTCGCCGCGGCGATTCGCCTGCTGGGCACACGCCAGGCCATGCTGGTGATCGTGCTGGTCTGCGCGTTGCTGACTTATGGCGGCGTGTCGCTGTTCGTCGTGGTGTTCGCGGTGTACCCGTTCGCCGCGGAGATGTTCCGCCAGAGCAATATCCCCAAACGGCTGATTCCAGCCACCATCGCCCTCGGCGCATTCTCGTTCACCATGGACGCCCTGCCCGGCACGCCGCAGATCCAGAACATCATCCCCAGCACCTTTTTCAACACCACCGCTTGGGCCGCGCCGTGGCTGGGCGTGATCGGTACGATCTTCGTCTTCTGCTTCGGCATGCTGTTTTTGCAGCGCCAGCGCAACAAGGCCCAACGCGCCGGTGAAGGTTATGGCACCGAACTGCGCAACGAGCCGGAAACCGCTGAGGACATCAAGCTGCCCAACCCGTGGATCGCCGTTTCGCCGCTGCTGGCGGTGGGGATCATGAACCTGCTGTTTACCCAGTGGATCCCGCAGTGGTACGGCAAGACGCATAGCCTGGCGCTGCCGGGCATGGCGACACCGGTGACCAGCGACATCGCCAAGCTCACCGCGATCTGGGCGGTACAGGCCGCTTTGCTGGTGGGTATTGTCATGGTGCTGCTGTTCGGCTTCCGCGCGATTCGCAGCAAACTGGCCGAAGGTAGCAAGAGCGCGGTGGGCGGTGCCTTGCTCGCGGCGATGAACACCGCTTCGGAATACGGTTTCGGTGCGGTGATCGCCTCCTTGCCGGGCTTCCTGGTGCTGGCCGACTGGCTCAAGAACATTCCCGATCCGCTGGTCAACGAAGCGGTCACCGTGACGCTGCTGGCCGGCATCACCGGTTCCGCGTCGGGGGGCATGAGCATCGCCCTGGCGGCGATGTCCGAAACCTTCATCAGCGCCGCCCACGCCGCCAACATTCCCCTGGAAGTGCTGCACCGGGTGGCCGCCATGGCCAGCGGCGGCATGGACACCCTGCCCCACAACGGCGCGGTGATCACCTTGCTGGCCGTCACCGGCCTGACCCACCGTGAAGCCTACAAAGACATTTTCTGCATTACGCTGATCAAGACCCTCGCGGTGTTCTTCGTGATCGGTGTGTTCTACGCCACTGGCATTGTGTGAMSVIIALAALTLLMVAAYRGYSVILFAPIAALGAVLLTDPSAVAPAFTGVFMDKMVGFIKLYFPVFLLGAVFGKLIELSGFSRSIVAAAIRLLGTRQAMLVIVLVCALLTYGGVSLFVVVFAVYPFAAEMFRQSNIPKRLIPATIALGAFSFTMDALPGTPQIQNIIPSTFFNTTAWAAPWLGVIGTIFVFCFGMLFLQRQRNKAQRAGEGYGTELRNEPETAEDIKLPNPWIAVSPLLAVGIMNLLFTQWIPQWYGKTHSLALPGMATPVTSDIAKLTAIWAVQAALLVGIVMVLLFGFRAIRSKLAEGSKSAVGGALLAAMNTASEYGFGAVIASLPGFLVLADWLKNIPDPLVNEAVTVTLLAGITGSASGGMSIALAAMSETFISAAHAANIPLEVLHRVAAMASGGMDTLPHNGAVITLLAVTGLTHREAYKDIFCITLIKTLAVFFVIGVFYATGIVNANANANANA
D1-35_02633777bdhAD-beta-hydroxybutyrate dehydrogenaseATGACGACATTTCTTTCGGGCAAGACTGCCCTGGTCACCGGTTCCACCAGCGGCATCGGCCTGGGCATCGCCTTGAGCCTGGCCAAGTCCGGCGCCAACCTGATCCTCAATGGCTTCGGCGATGCCTCGGCGGCGGTCGCCGAGGTCAAGCAGTTCGGTGGCAAGGTCGGCCATCATCCGGCCGATGTCAGCGACCCGGCACAGATTGCCGACATGCTCGCCTACGCCGAGCGCGATTTCGGCGGCGTGGATATTCTGGTGAACAATGCCGGGATCCAGCACGTGGCGGCCGTGGAGGATTTCCCGGTGGAGCGCTGGGATTCGATCATTGCCATCAACCTGTCTTCGGTGTTCCACGCCACTCGCCTAAGCCTGCCGGGCATGCGCGCCAAGGGCTGGGGACGGATCGTCAACGTCGCCTCGGTGCACGGTCAGGTCGGTTCGGTGGGCAAGGCCGCGTACGTCGCCGCGAAGCACGGGGTGATCGGGCTGACCAAGGTGGTTGGCCTGGAAACCGCTACCAGCAACGTGACGTGCAATGCAATCTGCCCAGGCTGGGTGCTGACGCCACTGGTGCAGAAACAGATCGACGACCGCATCGCCAGCGGCGTCGACCCGCAACAGGCCCAGCACGACCTGTTGGCCGAGAAGCAACCGTCCCTGGAATTCGTCACCCCGCCGCAGCTGGGTGAACTGGTTCTGTTCCTCTGCAGCGAAGCCGGCAGCCAGGTGCGGGGCGCGGCGTGGAATGTTGATGGAGGGTGGTTGGCGCAATAAMTTFLSGKTALVTGSTSGIGLGIALSLAKSGANLILNGFGDASAAVAEVKQFGGKVGHHPADVSDPAQIADMLAYAERDFGGVDILVNNAGIQHVAAVEDFPVERWDSIIAINLSSVFHATRLSLPGMRAKGWGRIVNVASVHGQVGSVGKAAYVAAKHGVIGLTKVVGLETATSNVTCNAICPGWVLTPLVQKQIDDRIASGVDPQQAQHDLLAEKQPSLEFVTPPQLGELVLFLCSEAGSQVRGAAWNVDGGWLAQPGPT0008310_1840DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008310-bdh-K00019NANA
D1-35_026341956acsA_1COG0365Acetyl-coenzyme A synthetaseATGTCCGACATCCTCTGGCAACCCAGCCCCGAACGCATCGCCCGGTCGCGCATGGACGCCTTGCGCCGGTTCGTCAACGAACGGCACTCGCTGCAGTTGAACGATTACCCGGCCCTGCACGCCTGGAGCATCGACCAGCGCGAGGCTTTCTGGCAGGCCATCGTGGACTTCTTCGACATCCGTTTTCACCAGCGCCCCACCGCAGTGCTGGTGGAGGGCCCGCACATGCCCAGCGCACGCTGGTTCCCGGGGGCCACGCTGAGTTTCGCCGAACATCTGCTGCGCCGTCGCGATAACACCGTGGCGGTGGTTGCCGTGGATGAAGACGGCATCGAGCAAACGCTGACCTGGGCCGAGCTCGCCGCCCATGTCGCCGGCCTGCAGAAAAGCCTGCAAGCCGCCGGCGTGACCCAGGGCGACCGGGTCGCCGCTTGCATGCCCAACACCTGGCAGACGCTGGTGGGCATGCTCGCCACGACGAGCCTGGGGGCGATCTGGTCGTGCTCATCGCCGGATTTCGGCACCCAGGGCGTCATCGACCGGTTCGGCCAGATCGAGCCCAAGGTTTTGATTACCTGTGCCGGTTATCGTTATGCCGGCAAGGTCATCGACCAGCGCCCGAAGGTGAACGAGATCCTTGCGCGGCTGCCGTCCCTGCAACAGTTGATCGTGCTGCCTTACGCCCGACCCGATGCTCGCGTCGAGGATTTCAACACCCAGGCCGGCGTCGCGCTGTGGGAAAACTTTTATCAAAGCGGTGGCGCGCCGGAGTTCGCCAGCGTGCCGTTCGATCATCCGTTGTATATCCTCTACTCCAGCGGCACCACCGGCGTGCCGAAGTGCATCGTCCACAGCACCGGCGGCGTGCTGCTCCAACATATGAAGGAACATGGCCTGCACGTTGATCTCGGCCCCGGGGATCGGCTGTTCTACTACACCACCTGCGGCTGGATGATGTGGAACTGGCTGGTCTCGGCCCTGGCGGTGGGCAGCTCGGTGGTGCTGTATGACGGCTCGCCGTTTCACCCTGGTCCCGAACGCCTGCTCGACCTGATCGACCAACAGCGCATCAGCGCGTTCGGCACCAGCCCGAAATACCTCGCCGCCCTGGAAAGCCAAGGCATCCAGCCACGCCAGAGCCATGACCTGGGCAGCCTCAAGACCCTCCTGTCCACAGGCTCGGCTCTCGCCCCCCACAGCTACGATTACGTTTACCGCGATTTCAAGGCCGACGTTTGCCTGGCCTCGATGTCCGGCGGTACCGATATCGTCTCCTGTTTCATCAACGGCAACCCGCTGTCCGCCGTGCGCCGGGGCGAGATGCAGGGCAAGAGCCTGGGCATGGCGGTGCAGGTCTGGAACGAGGCCGGCGAGGCGGTGGTCGGCGAGAAAGGCGAGCTGGTCTGCACCCGGCATTTTCCAGCGATGCCCATCGGGCTCTGGAACGACCCGCGCCAGGATAAACTTCGCGCCTCCTATTTCAGCCAGTTTCCCGGAGTGTGGGCCCAAGGGGACTACGCCGAAGAACTGGCCCACGGCGGCTTGCTGATCCACGGACGCTCCGACGCGGTGCTCAACCCCGGTGGCGTGCGCATTGGCACGGCGGAAATCTATCGGCAGGTGGAAAAAGTCGAAGAGGTCCTCGACAGCGTCGCCATTGGCCAGCAATGGCAGGGTGACGTACGAGTGGTGCTGTTCGTGCGCCTGCGTGATGGCGTCGTGCTGGACGATACCCTGGAGCAAAAGATTCGCCAGGTCATCCGCGCTAACACGACGCCGCGCCATGTACCGGCGAAAATCCTCGCGGTCAGCGACATTCCGCGCACGATCAGCGGAAAAGTGGTGGAACTGGCCGTGCGTAACGTGGTGCATGGCGAGGCGGTGAAGAACACCGATGCGCTGGCCAATCCCGAGGCGCTGGAGCAGTTTCGCGGGCGGCCGGAGCTAGCGTCCTAAMSDILWQPSPERIARSRMDALRRFVNERHSLQLNDYPALHAWSIDQREAFWQAIVDFFDIRFHQRPTAVLVEGPHMPSARWFPGATLSFAEHLLRRRDNTVAVVAVDEDGIEQTLTWAELAAHVAGLQKSLQAAGVTQGDRVAACMPNTWQTLVGMLATTSLGAIWSCSSPDFGTQGVIDRFGQIEPKVLITCAGYRYAGKVIDQRPKVNEILARLPSLQQLIVLPYARPDARVEDFNTQAGVALWENFYQSGGAPEFASVPFDHPLYILYSSGTTGVPKCIVHSTGGVLLQHMKEHGLHVDLGPGDRLFYYTTCGWMMWNWLVSALAVGSSVVLYDGSPFHPGPERLLDLIDQQRISAFGTSPKYLAALESQGIQPRQSHDLGSLKTLLSTGSALAPHSYDYVYRDFKADVCLASMSGGTDIVSCFINGNPLSAVRRGEMQGKSLGMAVQVWNEAGEAVVGEKGELVCTRHFPAMPIGLWNDPRQDKLRASYFSQFPGVWAQGDYAEELAHGGLLIHGRSDAVLNPGGVRIGTAEIYRQVEKVEEVLDSVAIGQQWQGDVRVVLFVRLRDGVVLDDTLEQKIRQVIRANTTPRHVPAKILAVSDIPRTISGKVVELAVRNVVHGEAVKNTDALANPEALEQFRGRPELASNANANANANA
D1-35_026351116pilT_1COG2805Twitching mobility proteinATGGAAATTGATCCCTTGTTACGCATCCTGGCAAGCCAGGATGGTTCCGACCTCTACATGTCCACCGGTGCACCGCCCTGCGCGCGTTTTGAAGGTGTGCTCAAGCCGCTGAGCAACCAGGCGTTCAAGGTCGGCGAGGTCGCCGGGCTCGCCGAGTCATTGATGGACGCCGAACAGCGCCTTGAGTTCGATCGGGAACTGGAAATGAACCTGGCGATTTCCCTGGCCGGTGTCGGGCGGTTCCGGGTCAACATCTTCAAACAGCGCAACGACGTGTCCATGGTGATACGCAACGTCAAGCTGGACATCCCGCGCTTCGAAGACCTGAAGCTGCCCAAGGTGCTGCTGGAAACCATCATGCAGAAGCAGGGGCTGATGTTGTTCGTCGGTGCGACGGGCTCGGGCAAGTCGACCTCCCTGGCGGCGCTGATCGATTACCGCAACCGCAACAGCAGCGGCCACATCATCACCATCGAGGACCCGGTGGAGTATATCCATCGGCATAAGAAATCGATCGTCAACCAGCGCGAAGTCGGGGTGGATACGCGCAGTTTTCATGCCGCGCTCAAGAATACCTTGCGCCAGGCGCCGGACGTGGTGCTGATCGGCGAAATCCGCGACCGGGAAACCATGGAGCATGCCCTGGCCTTCGCCGACACCGGCCATCTGGTGATTTCCACCCTGCATGCCCACAACGCCAACCAGGCCCTGGACCGGGTGATCAATTTTTTCCCGGAAGAACGCCGGGCGCAACTGCTGCACGACTTGGGCAACAACCTCAAGGCGTTTGTTTCCCAGCGCCTGGTGCGCACTCGCGGCGGTCAGCGGCGGGCGGCGGTGGAGGTGATGCTGGGCTCGCCGACGGTGGCCGACCTGATCCGGCGCAACGAGCTGGGCGAGCTCAAGGGCATCATGGAAAAGTCCGAGGAACTGGGCATGCAGACGTTCGACCAGGCATTGTTCAACCTGGTGGTCGAAGGCGCCATCGATGAGGAAGAAGCGCTGAAAAACGCCGATTCGGCGAACAACTTGCGTTTGCGCTTGAAGCTGCATGCGGAGACGGGGGCCGCGCCGCCGGCCGATCCGCCGGCGGGGGAGTGGGGACTGATGGATTGAMEIDPLLRILASQDGSDLYMSTGAPPCARFEGVLKPLSNQAFKVGEVAGLAESLMDAEQRLEFDRELEMNLAISLAGVGRFRVNIFKQRNDVSMVIRNVKLDIPRFEDLKLPKVLLETIMQKQGLMLFVGATGSGKSTSLAALIDYRNRNSSGHIITIEDPVEYIHRHKKSIVNQREVGVDTRSFHAALKNTLRQAPDVVLIGEIRDRETMEHALAFADTGHLVISTLHAHNANQALDRVINFFPEERRAQLLHDLGNNLKAFVSQRLVRTRGGQRRAAVEVMLGSPTVADLIRRNELGELKGIMEKSEELGMQTFDQALFNLVVEGAIDEEEALKNADSANNLRLRLKLHAETGAAPPADPPAGEWGLMDPGPT0015880_977DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015880-pilU-K02670NANA
D1-35_026362538rcsC_11Sensor histidine kinase RcsCATGAATGCAATACCCGCCGGCAGCGACACACAGCAATTGATCGCCCGTCAGGACTGGACCGCCAGCCCCTTGGGCGCCATCGATACCTGGCCACAGAGCCTGCGCACCGCCGTGGACATCATGCTCCACTCGCCCATGCCGATGGCCGTGCTGTGGGGGCCGCAGCTGACCCATCTGTACAACGACGCCTATGCCCGGCTGGTCGGCGACAAGCACCCCAGGGCCTTCGGCCAGCCCACCCACACGGCCTGGCCTGAACTTCGGGGCGAGACCGAGGGGATTTATCACAGCGTGTTGCAAGGGCGCATGTACGCCTGCCGCGACAAACGGTGGCGCATGCCCTTCAGTGGCCGCCTCTGTGACGTGTGGCTCGACCTGACCTACAGCCCGATACACGACGAAAGCGCCAGTGTTGCCGGCATCCTGGTCACGGCCATCGAGACCAGCGAAAGACGCCGGCTGGCCCAGGAATTCGAGCGGCGTTCCGAGGCCAGCCTCAAGGCTCAGCAGGAAAGCGAGGAGCGCTTGCAACTGGCGCTGGCGGCCACCGATGCGCTGGGGACCTGGGACTGGGACATCAGCGAAGACCGCTTCATCGCCGATGCGCATTTCGCCCTGCTGCATGGCGTCGATCCGAGCCTGTCGCGGCAACTGCCGATCAGCGCGTACCTGGAAGGCGTGCACCCCGAAGACCGGGCGATGGTCGCGCGCAGCATCAAGCATTGCATCACCCACGGCACCGAATATGCCGAGGAGTACCGGCTGCTGCAGCCCGACGGTGAACTGCGCTGGGTATTCGTGCGCGGGCGCTGCTACAAGGATCGCCACGGCCGGCCCAAGCGCTTCCTTGGCGCGGCGCTGGACCTGACCGAGCGCAAGCGCACCGAGCACGCCCTGCGCCAGAGCCAGACCGAGCTGCAACTGATCATCAACGCCATGCCGGTGCTGATCAGCTATGTCGATCGCGAAGAGCGTTTCCGCCTGAACAACAGCGCCTACCTGAACTGGTACGGGCTGACCCCGCAGGAGCTGTACGGCAAGACCATTCGCGAGGTCATCGGCGACGAAGCGTACGCGGCGCGCGCCGAACAGATCGCCGGCGCCCTGGCGGGCAAGCCGTGCAGTTTCACCGTGCAGTCAGCCCATCGCGATGGCCGGCCACGGCATGCATTGATCAACTACCTGCCACGCCATGGCAGTGACGGCGCGGTGAACGGCTTCTACATCTTCGTGATCGACGAAACCGAGCGCAAGAAAACCGAAGAAGCGCTGCGTAATCTCAACGAAACGCTGGAGGAACGGGTAATCGCCCGCACCCAGCAACTGGCCGAGGCCAACCATCGCCTGCAAAGCGAGATGTTCGAGCGCGAACGCGCCGAAGAAGCGCTGCGCCATGCGCAGAAAATGGAAGCGGTGGGCCAGCTCACCGGCGGCATTGCCCATGACTTCAATAACATGCTCACCGGCATTCTCGGCAGCCTGGACCTGATGCAGCGCTACATCGCCTCGGGCCGCGCCGCCGAGATAGGCCGGTTTACCGAAGCGGCCATCTCCTCGGCCAACCGTGCCGCGGCCCTGACCCATCGCCTGCTGGCCTTTTCCCGGCGCCAGTCGCTGGACCGCAAACCCTTGGACGCCAATGGCCTGGTGCGCTCTCTCGAAGACCTGTTGAGCCGTACCACCGGCGATCACATCGTGCTGCGGCTTGAACTGGCCGGTGAGCTGTGGCCGGTCAGTACCGATGCCAGCCAACTGGAAAACGCCCTGCTCAACCTGGTGATCAACGCCAGGGACGCGATGCCCGACGGCGGCGAGTTGACCATCGAAACCGCCAACGTCTACCTCGACGGCAGCGACATCAGCACGCTGGAACCGGTCAAGGCCGGGGATTACGTGATGATCGCCGTGCGCGACAACGGCAGCGGCATGACTCCCGCCGTGCTGGCCAAGGCCTTCGATCCGTTCTTCACCACCAAACCCATCGGCCAGGGCACCGGCCTCGGTCTTTCGATGATCTACGGCTTTGCCCAGCAGTCCGGCGGACACCTGAGCCTGGACAGCGTGCCAGGCCAGGGCACGCGAGTGCAGTTGTACTTGCCGCGGCTGCGCGTTGCCGCGACCGAACAACCCGCAGCGCCGGCGGCCACGGACGCGCCGCCGGCCATTGCCGGGGAAACCGTGTTGCTGGTCGAAGACGAACCGGCGGTGCGCATGCTCGTGCTCGACCTGCTGGCCACCTTGGGCTACACCGCCCTCGAAGCCGAGGACGGCCGGCAGGCTCTGCTGTTGCTGGAATCCGGGCAGCGCATCGACCTGCTGGTGACCGATGTCGGCCTGCCGGGCATGAACGGCCGGCAGCTGGCTGAAATCGCCCGTCAGCACCGGCCTGATTTGAAAGTCCTGTTCATGACCGGTTATGCGCAGAAAGCCACCGAGCGCCAGGGGTTCCTCGAGCAAGGCATGGACATGGTTGCCAAGCCGTTCACCCTCGATCTCCTGGCCAACAAGATCCGGACGATGATCAACCATGGCAGCTGAMNAIPAGSDTQQLIARQDWTASPLGAIDTWPQSLRTAVDIMLHSPMPMAVLWGPQLTHLYNDAYARLVGDKHPRAFGQPTHTAWPELRGETEGIYHSVLQGRMYACRDKRWRMPFSGRLCDVWLDLTYSPIHDESASVAGILVTAIETSERRRLAQEFERRSEASLKAQQESEERLQLALAATDALGTWDWDISEDRFIADAHFALLHGVDPSLSRQLPISAYLEGVHPEDRAMVARSIKHCITHGTEYAEEYRLLQPDGELRWVFVRGRCYKDRHGRPKRFLGAALDLTERKRTEHALRQSQTELQLIINAMPVLISYVDREERFRLNNSAYLNWYGLTPQELYGKTIREVIGDEAYAARAEQIAGALAGKPCSFTVQSAHRDGRPRHALINYLPRHGSDGAVNGFYIFVIDETERKKTEEALRNLNETLEERVIARTQQLAEANHRLQSEMFERERAEEALRHAQKMEAVGQLTGGIAHDFNNMLTGILGSLDLMQRYIASGRAAEIGRFTEAAISSANRAAALTHRLLAFSRRQSLDRKPLDANGLVRSLEDLLSRTTGDHIVLRLELAGELWPVSTDASQLENALLNLVINARDAMPDGGELTIETANVYLDGSDISTLEPVKAGDYVMIAVRDNGSGMTPAVLAKAFDPFFTTKPIGQGTGLGLSMIYGFAQQSGGHLSLDSVPGQGTRVQLYLPRLRVAATEQPAAPAATDAPPAIAGETVLLVEDEPAVRMLVLDLLATLGYTALEAEDGRQALLLLESGQRIDLLVTDVGLPGMNGRQLAEIARQHRPDLKVLFMTGYAQKATERQGFLEQGMDMVAKPFTLDLLANKIRTMINHGSNANANANANA
D1-35_02637276ppiC_2COG0760Peptidyl-prolyl cis-trans isomerase CATGAAAGCCCAAGCCCGCCATATCCTGGTGAAAACCGCCGAAGAAGCCGAACAGCTCAAGCAACGCATCGCCAAGGGCGAAGCGTTTGACGTGTTGGCAAAAAAGTACTCCACCTGCCCCTCCGGCAAGCGCGGCGGGGATCTGGGTGAGGTACGTCCTGGGCAGATGGTCGGCGCGATCGATGCGGTGATTTTCAAGAAACCGCTGCGGGTGGTGCACGGACCGATCAAGAGCAAGTTCGGCTATCACCTGGTGCAGGTGTTTTACCGCGACTGAMKAQARHILVKTAEEAEQLKQRIAKGEAFDVLAKKYSTCPSGKRGGDLGEVRPGQMVGAIDAVIFKKPLRVVHGPIKSKFGYHLVQVFYRDPGPT0000050_2874DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-ATMOSHPHERIC_NITROGEN_FIXATIONN-FIX-NITROGENASE_BIOSYNTHESIS,PGPT0000050-nifM-K03769NANA
D1-35_02638915kdgK_1COG05242-dehydro-3-deoxygluconokinaseATGAGCAACACCAGACCCCGCATCGCCCTCATCGGCGAATGCATGATCGAACTGCAACACCGCGCCGACGGCAGCCTGCAGCAAAGCTTCGGCGGCGATACGCTGAACGCCGCGGTCTACCTGGCCCGGGCGTTGGGCGACAACGGCGCTGTGGATTACGTCACCGCGCTGGGCGACGACAGTTTCAGCGATGCCATGTGCCAGGGCTGGGCCGCTGAAAACATTGGTTTGGGCATGGTCCAGCGCTTGCCCGGGCGCCTGCCGGGTCTGTATTGCATCCAGACCGACGCGACGGGCGAGCGCCGCTTCCTGTACTGGCGCAACGAGGCGGCGGTGCGTGATTGCTTCACCTCGCCAGCCGCCGCGCCGATTCTCGCAGCGTTGGCCGACTACGATGTGCTGTATTTCAGCGGCGTGACCCTGGCGGTGATTGGCGAGCAGGGCCGGCGCAAACTCATCGACGCGCTGGTCGAGGCGCGTCGGCGCGGGGCCCAGGTGGTGTTCGACAACAACTACCGGCCGAGGCTCTGGGCCTCGGTCGAGGCGGCCCGTGCGGCTTATCGCAGCGTGCTGCCCTACGTCGAGCTGGCGTTGTTGACCGTGGACGACGAACAGGCGCTGTTCGGCCATGCCGACAGCGAGGCGGTGTTCGCTGCCTATGCACAATTGGGAACGCCTGAAGTGGTGCTCAAGCGCGGCGCCGAGGCTTGTCTGATTCGTTGCGACGGCCGGTCATATGAGGTGCCTGCCCTGCGGGTCGAGCGGGTGGTGGACACGACGGCGGCGGGAGACTCGTTCAGCGCCGCCTACCTGGCGAGCCGCTTGCTCGGCGGCAGCCCGGCGGAAGCCGCCGAGGCCGGGCATTTGCTGGCAAGCCGGGTGATCCAGGTGCCGGGGGCGTTGATACCGAGATGAMSNTRPRIALIGECMIELQHRADGSLQQSFGGDTLNAAVYLARALGDNGAVDYVTALGDDSFSDAMCQGWAAENIGLGMVQRLPGRLPGLYCIQTDATGERRFLYWRNEAAVRDCFTSPAAAPILAALADYDVLYFSGVTLAVIGEQGRRKLIDALVEARRRGAQVVFDNNYRPRLWASVEAARAAYRSVLPYVELALLTVDDEQALFGHADSEAVFAAYAQLGTPEVVLKRGAEACLIRCDGRSYEVPALRVERVVDTTAAGDSFSAAYLASRLLGGSPAEAAEAGHLLASRVIQVPGALIPRPGPT0018060_3197DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018060-kdgK-K00874NANA
D1-35_026391218D-threonine aldolaseATGTCTTCTGCCATTGATAACGCCGGTGTCGAAAAGGGCGCCGCTTCCCTGGGCGCCCATCTGCTGCGCGATGTCAGCCTGCCGGCCCTGGTACTGCATCGCGAGGCGCTGGAGCACAACATCCGCTGGATGCAGAAGTTCGTCAGCGACAGCGGCGCCGAGCTGGCGCCCCACGGCAAGACCAGCATGACCCCGACGCTGTTTCGTCGCCAGCTTGAGGCCGGTGCCTGGGGCCTGACCCTGGCCACCGCAGTGCAGACCCGCGCCGCCTACGCCCATGGCGTGCGCCGGGTGCTGATGGCCAATCAATTGGTAGGCCGGCCGAACATGGCGCTGATCGCCGATCTGCTGGCCGACCCGGCGTTCGAATTCCATTGCCTGGTGGATCATCCGGACAACGTCGCCGAACTGGGGGCTTATTTCGCCACGCACGGCGCACGGTTGAACGTGATGATCGAGTACGGCGTGGTCGGCGGTCGTTGTGGTTGCAGGACCGAAGCCGAGGTACTTGCGCTGGCCGAGGCCATCGGTGCGCAACCGGCGTTGGCCTTGACCGGTATCGAAGGTTACGAAGGGGTGATCCACGGCGATCACGCCATCAGCGGCATCCGGGCGTTCGCCGGGTCCCTCGTTGGGCTGGCGATGCAGTTGCAGGACAGCGGCACGTTTGCCAACGACAAACCCATCATCACCGCCTCGGGTTCGGCCTGGTACGACCTGATCGCAGAATCCTTCGAGGCACGCAATGCCCACGGGCGCTTCCTCAGCGTGTTGCGACCCGGCAGTTATGTGGCCCACGACCATGGCATCTACAAGGAGGCGCAATGCTGTGTGCTGGAGCGCCGCAGTGACCTGCACGAAGGCTTGCGTCCAGCGCTGGAAGTCTGGGCTCACGTGCAATCGCTGCCGGAGCCGGGCTTTGCGGTAATTGCCCTGGGCAAGCGCGACGTGGCCTACGACGCCGGGTTGCCGGTGCCGCTCAAGCGCTACACGCCGGGTTCGGAATCGGCGACGGGGGACGACGTCAGCGGCTGCAAGGTGACCGCGGTGATGGACCAGCATGCGTTCATGAGCGTGGCGCCGGGCGTTGAACTGCGGGTGGGCGACATCATTGCGTTCGGCACGTCCCATCCGTGCCTGACGTTCGACAAGTGGCGGGTGGGGTGTCTGGTAGATGAGGGGTTGCGGGTGGTCGAGAGCATGGAGACTTGTTTTTAAMSSAIDNAGVEKGAASLGAHLLRDVSLPALVLHREALEHNIRWMQKFVSDSGAELAPHGKTSMTPTLFRRQLEAGAWGLTLATAVQTRAAYAHGVRRVLMANQLVGRPNMALIADLLADPAFEFHCLVDHPDNVAELGAYFATHGARLNVMIEYGVVGGRCGCRTEAEVLALAEAIGAQPALALTGIEGYEGVIHGDHAISGIRAFAGSLVGLAMQLQDSGTFANDKPIITASGSAWYDLIAESFEARNAHGRFLSVLRPGSYVAHDHGIYKEAQCCVLERRSDLHEGLRPALEVWAHVQSLPEPGFAVIALGKRDVAYDAGLPVPLKRYTPGSESATGDDVSGCKVTAVMDQHAFMSVAPGVELRVGDIIAFGTSHPCLTFDKWRVGCLVDEGLRVVESMETCFPGPT0001970_1152DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_SERINE_DEGRADATION,PGPT0001970-dsdA-K01753NANA
D1-35_02640765xynR_2COG1414HTH-type transcriptional regulator XynRATGACCGAAGACACCATCAAACGCCGGGCCCGGGGATTGGATCGGGCGTTCGATATCCTCGATTTCCTCAAGGAAATCGGCCAGCCGCTGCGCCCGAACGATATTGCCAGCGGCATCGGCAGCCCCAAGTCCACGGTCTACGAACTGGTGGCGTCGCTGCTCGAGCGGCGCATTCTCGAGCCGGTCGGCAAGGATGGTCACGTCTACCTGGGGCGGCAGTTGTATTTTCTCGGGCAGGCGCACCTGCGGCATTTCGACCTCAGCCGCGAGGCCGACCAGGCCTTGCAGGAGATCGTCCGCCAGACCCGCGAAACCGCGCAGATGTGCCTGCTCAACGGGCGCAAATACACCGTCGCGCTGATGAAGGAAGGCGAGCGGCATTTTCGTATTTCCTCGGACATCGGTGAGAACGCGCCGATCCCCTGGACCGCGTCCGGGCGCCTGCTGCTGGCGCATCTGAGCGACCAGCAGATCGTCGACCTGATCGACCCCGACGACTTCATCCTGCCGGGCGGCGAGCGTTTGCCCCTGGAGCAGTTTCTCAAGGAAATCCGCCAGGCCGGTGCCGATGGATTTTTCTCCTTCGACAGTGTGGCCGACACCTTCACGCATTGCTTCGCCGCGCCGGTCAAAGACCCCAGTGGCGTGGCCATCGCGACGCTGTGCATCGTCGCCCCGAGGGCTGACGCCAAGAACAATTATGCCGACTACCGCCGGGTGCTGATCGAGAGCGCCAACAACCTGGCCCGTCGCATCAACGAATAGMTEDTIKRRARGLDRAFDILDFLKEIGQPLRPNDIASGIGSPKSTVYELVASLLERRILEPVGKDGHVYLGRQLYFLGQAHLRHFDLSREADQALQEIVRQTRETAQMCLLNGRKYTVALMKEGERHFRISSDIGENAPIPWTASGRLLLAHLSDQQIVDLIDPDDFILPGGERLPLEQFLKEIRQAGADGFFSFDSVADTFTHCFAAPVKDPSGVAIATLCIVAPRADAKNNYADYRRVLIESANNLARRINENANANANANA
D1-35_02641387yabJ_1COG02512-iminobutanoate/2-iminopropanoate deaminaseATGAGCATTACGCGCTATGGCACCGGCAGCACCGCGGGCGGCGGACAGCCGCGGCCCTTCGCTCGCGCCGTGGAGGCCGATGGCTGGTTGCACGTGTCCGGCCAGGTGCCCGCGGTGAACGGCGAGATTGTCGCTGGCGGCATCGTCGAGCAGACGCACCAGACCATGAAGAACCTGATCGCCATTCTCGAAGAGGCCGGCTATGGCCTGGAAGATGTTGTGCGTTGCGGCGTCTGGCTGGATGACCCGCGGGATTTCTGGAGTTTCAACAAGGTCTTCGGCGAATACTTCAGCCCCGAACACGCCCCGGCCCGGGCCTGTGTGCAGGCGAGCATGATGGTTGACTGCAAGGTCGAGATCGATTGCATCGCCTACAAGAAAAAGTGAMSITRYGTGSTAGGGQPRPFARAVEADGWLHVSGQVPAVNGEIVAGGIVEQTHQTMKNLIAILEEAGYGLEDVVRCGVWLDDPRDFWSFNKVFGEYFSPEHAPARACVQASMMVDCKVEIDCIAYKKKPGPT0020030_4268DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020030-ridA|tdcF-K09022NANA
D1-35_02642789glnQ_4COG1126Glutamine transport ATP-binding protein GlnQATGACTGACGTTTCCCTTTCAAACGCGCAACCGCTGCTGGACATCCGCGGCCTGCGCAAACAATACGGCCCGCTGGAAGTGCTCAAGGGCGTGGACCTGAGCATGCAGCGTGGCAACGTGGTGACGCTGATCGGCTCCAGTGGCTCGGGCAAGACCACGCTGCTGCGTTGCGTCAACATGCTCGAAGAGTTCCAGGGCGGGCGGATCGTGCTCGACGGCGAGTCCATCGGCTATGACGAGGTGGACGGCAAGCGCGTGCGTCACGCCGAAAAAGTCATCGCCCGGCACCGGGCCATGACCGGGATGGCCTTCCAGCAATTCAACCTGTTCCCGCATCTGAGCGCTTTACAGAACGTCACCCTGGGCCTGCTCAAGGTGAAAAAACTGCCGAAGGACGAAGCGGTGGCCCTGGCCGAGAAATGGCTGCAGCGGGTCGGCCTGCTGGAACGGCGCGATCACTTTCCCGGTCAGTTGTCCGGCGGCCAGCAGCAGCGCGTGGCGATTGCCCGGGCGATCGCGATGAACCCCAGCCTGATGTTGTTCGACGAAGTGACCTCGGCCCTGGATCCGGAGCTGGTCGGCGAGGTGCTGAACGTGATCAAGGGCCTGGCCGAAGACGGCATGACCATGCTGCTGGTGACCCACGAGATGCGCTTTGCCTTCGAGGTTTCCGACAAGATCGTTTTCATGAACCAGGGCCGCATCGAAGAGCAGGGGCCGCCGAAGGAATTGTTCGAGCGCCCTCAATCGCCGCGCCTGGCGGAATTTCTCAAGAACACCCGTTTTTAAMTDVSLSNAQPLLDIRGLRKQYGPLEVLKGVDLSMQRGNVVTLIGSSGSGKTTLLRCVNMLEEFQGGRIVLDGESIGYDEVDGKRVRHAEKVIARHRAMTGMAFQQFNLFPHLSALQNVTLGLLKVKKLPKDEAVALAEKWLQRVGLLERRDHFPGQLSGGQQQRVAIARAIAMNPSLMLFDEVTSALDPELVGEVLNVIKGLAEDGMTMLLVTHEMRFAFEVSDKIVFMNQGRIEEQGPPKELFERPQSPRLAEFLKNTRFPGPT0020790_1287DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020790-ABC_PA_A-K02028NANA
D1-35_02643663tcyBCOG0765L-cystine transport system permease protein TcyBATGTACCAATCCCCTAGTTGGTTGCAGGAGTTGTGGGTCGCCCGGGAGACTTTGTGGGCCGGTTTCCTGACCAGCGCGCAATGTTCGGCCCTGGCGATTGTGTTGGGCACCTTGATCGGTGTCGTCGCCGGGTTGGCGCTGACTTATGGCCGGGTCTGGATGCGCGCGCCGTTTCGTTTCTACGTCGACCTGATTCGCGGCACGCCGGTGTTCGTGCTGGTACTGGCCTGCTTCTACATGGCCCCGGCCCTGGGTTGGCAGATCGGTGCGTTCGAGGCTGGCGTCCTCGGATTGACGCTGTTCTGCGGCTCCCACGTGGCCGAGATCGTGCGCGGTGCGTTGCAGGCTCTGCCCCGCGGGCAGATGGAAGCGAGCCAGGCCATCGGCCTGACATTCTTCCAGTCGCTCGCTTATGTGCTGCTGCCCCAGGCCTTGCGGCAGATCCTGCCGACCTGGGTGAATTCCTCCACCGAGATCGTCAAGGCCTCGACCCTGCTGTCGGTGATCGGTGTCGCCGAACTGCTGCTCAGCACCCAGCAGATCATCGCCCGGACCTTCATGACCCTGGAGTTCTACCTGTTCGCCGGTTTTCTCTTTTTCATCATCAACTACGCCATCGAATTGCTCGGGCGGCACATTGAAAAGCGGGTGGCCTTGCCATGAMYQSPSWLQELWVARETLWAGFLTSAQCSALAIVLGTLIGVVAGLALTYGRVWMRAPFRFYVDLIRGTPVFVLVLACFYMAPALGWQIGAFEAGVLGLTLFCGSHVAEIVRGALQALPRGQMEASQAIGLTFFQSLAYVLLPQALRQILPTWVNSSTEIVKASTLLSVIGVAELLLSTQQIIARTFMTLEFYLFAGFLFFIINYAIELLGRHIEKRVALPPGPT0020795_9020DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
D1-35_02644663glnP_2COG0765Glutamine transport system permease protein GlnPATGAATTATCAGTTGAACTTTGCCGCCGTCTGGCGCGATTTCGACACGCTGCTGGCGGGGCTTGGCCTGGGGCTTTCCCTCGCGCTGGTGTCGATCGCGATCGGTTGTGTGATCGGCCTGCTGCTGGCGTTCGCGCTGTTGAGCAAGCACCGCGCACTGCGGTTGTTGGCCTCGGTGTATGTCACGGTGATCCGCAATACACCGATCCTGGTGCTGATCCTGCTGATCTACTTCGCCTTGCCGAGCCTGGGTATTCGCCTGGACAAGCTGCCGTCGTTCGTCATCACGCTTTCGCTGTACGCCGGGGCCTACCTCACCGAAGTGTTCCGTGGCGGCCTGGTGAGTATTCACAAAGGGCAGCGGGAAGCAGGTCTGGCGATCGGCCTGGGCGAATGGCAGGTAAAGGCCTACGTCACCGTGCCGGTGATGCTGCGCAACGTGCTGCCGGCGTTGTCCAACAACTTCATTTCGCTGTTCAAGGACACCTCGCTGGCGGCGGCGATTGCCGTGCCGGAGCTGACCTACTATGCCCGCAAGATCAACGTGGAAAGCTACCGGGTAATTGAAACCTGGCTGGTCACCACGGCCCTGTATGTCGCGGCCTGTTACCTCATTGCCATGTTGCTGCGTTACTTCGAGCAGCGCCTGGCGATCCGCCGTTAGMNYQLNFAAVWRDFDTLLAGLGLGLSLALVSIAIGCVIGLLLAFALLSKHRALRLLASVYVTVIRNTPILVLILLIYFALPSLGIRLDKLPSFVITLSLYAGAYLTEVFRGGLVSIHKGQREAGLAIGLGEWQVKAYVTVPVMLRNVLPALSNNFISLFKDTSLAAAIAVPELTYYARKINVESYRVIETWLVTTALYVAACYLIAMLLRYFEQRLAIRRPGPT0000725_691DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMINE_TRANSPORT,PGPT0000725-glnP-K10037NANA
D1-35_02645849peb1ACOG0834Major cell-binding factorATGCAATGCCGACCTTCCTTGTTCAAAGCGTGTGTTTTTCTCTTCGCGGCCACGACGGCTGCCATGGGTGTCGCTCAGGCGGCCGACAGCAAGCTGGACAGCGTGCTGCAACGCGGGAAATTGATCGTGGGCACGGGCAGCACCAATGCGCCGTGGCACTTCCAGGGAGCGGATGGCAAGTTGCAGGGGTTCGATATCGATATCGCGCGGATCGTCGCCAAGGGTTTGTTCAATGACCCGGAAAAAGTCGAATTCGTGGTGCAGTCTTCCGATGCAAGGATTCCCAACCTGCTGACCGACAAGGTCGACATGAGCTGCCAGTTCATTACGGTCACCGCCAGCCGAGCCCAACAGGTGGCATTTACCTTGCCGTACTACCGCGAAGGGGTAGGCCTGCTACTGCCGGCCAACAGCAAGTTCAAGGAAATCGAAGACCTCAAGGCTGCCGGCGATGACGTCACCGTGGCGGTGCTGCAGAACGTCTACGCCGAAGAGCTGGTGCACCAGGCGCTGCCCCAGGCCAAGGTCGACCAGTACGACAGCGTCGACCTGATGTATCAGGCGGTGAACTCCGGCCGTGCCGCTGCCGCTGCCACCGACCAGTCCTCGGTCAAATACCTGATGGTGCAGAACCCCGGTCGCTACCGCAGCCCGGCCTACGCCTGGAGTCCGCAAACCTACGCTTGCGCGGTCAAGCGCGGCGACCAGGACTGGTTGAACTTCGTCAACACTGCGCTGCATGAAGCCATGACCGGTGTGGAATTCCCGACCTATGCCGCATCGTTCAAACAGTGGTTCGGCGTCGAGCTGCCATCGCCGGCCATCGGTTTCCCCGTTGAATACAAATGAMQCRPSLFKACVFLFAATTAAMGVAQAADSKLDSVLQRGKLIVGTGSTNAPWHFQGADGKLQGFDIDIARIVAKGLFNDPEKVEFVVQSSDARIPNLLTDKVDMSCQFITVTASRAQQVAFTLPYYREGVGLLLPANSKFKEIEDLKAAGDDVTVAVLQNVYAEELVHQALPQAKVDQYDSVDLMYQAVNSGRAAAAATDQSSVKYLMVQNPGRYRSPAYAWSPQTYACAVKRGDQDWLNFVNTALHEAMTGVEFPTYAASFKQWFGVELPSPAIGFPVEYKPGPT0020800_5433DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-35_02646282relE_2COG2026mRNA interferase toxin RelEATGACCTATGAGTTGGAATTTTCTGATAAGGCATTAAAAGAGTGGAAAAAACTGGGAGCAACGTTAAGAGCTCAGTTCAAGAAAAAGCTGGAGGAGCGGCTGGGCAATCCGCATGTCCAGGCGGACCGGCTCCATGGGCTGGAAGATGCCTATAAAATCAAGCTGCGCAGCGCGGGCTATCGATTGGTTTATCGCGTGATAGATGATCGGTTGGTCGTTACGGTGATTGCGGTGGGCAAGCGCGAGCGTGGCCAGGTTTATGACGAGGCTGCCAAGCGGTAAMTYELEFSDKALKEWKKLGATLRAQFKKKLEERLGNPHVQADRLHGLEDAYKIKLRSAGYRLVYRVIDDRLVVTVIAVGKRERGQVYDEAAKRPGPT0027425_876DIRECT 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
D1-35_02647249hypothetical proteinATGACCCATATCGTGCTTTCTCAAGTGGTAGCCAGCATCTCCGAACTCAAGAAAAACCCCATGGGCACCGTTGCTGCAGGCGGAGGATTATCTGTAGCGATCCTCAACCGTAACGAGCCGGCTTTTTACTGTGTCCCTGCCAAAGAGTATGAAGCCATGATGGAGCGGCTTGAGGACATCGAGCTGGTTGCCCTTTGCCGCGAGCGGGAGAATGACCCAACGATTAAGGTTTCTCTTGATGACCTATGAMTHIVLSQVVASISELKKNPMGTVAAGGGLSVAILNRNEPAFYCVPAKEYEAMMERLEDIELVALCRERENDPTIKVSLDDLPGPT0027440_326DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-RelE|StbE-RelB|StbD_TOXIN-ANTITOXIN_SYSTEM,PGPT0027440-antitoxin_stbD-K18923NANA
D1-35_026481647hypothetical proteinATGCGCGTACTGGTCACCAACGCGAAGGACGATTTCCGGGTCAAGGCCTATGCCGGCACCAACGGCGTGTTGCTCGCCATGGACCTGGCCGAGCCCCGGCGCAAGGGGCTGCTGGGTTTTGCCATCGAGAAGCAGCAGGGCGCCAAGCCCTGGCTGTTCCTGTTCAACAGCCTGACGTTCCCCGACAAGGCCCACATCTTTCCCCAGTTCCATGCCACGCCCAGCGACAAGGCGCCCTTGCAGAAATTTCGCTGGGCCGATTACGCCGTCAACCCTGGCGTGACGATTCATTATCGCGTGCACCTGGCCTACGGCAGCGCCGATGCGCCGCAACTGGGCGAATCCCTCGAAGTGAGCGTGACCAGCGATGACGGCCAGCCGGCCAACCAGCGGGTCATCTTCAATCGCGCGGTGGCCGCCAGCCAGGCGTTCCAGCGCAAGTTTCCCGAACTGGACGCACTCATTGACGCCAACAAGAACCTGTCCATCGACGACTGGCCCGACGCGCCGCGGCGCTGGCTGGAAAACGGCTTGCTGGGACGCCTCACCGGCTTCATCGATCGGGCGCTCGATGCCAGCTGGGCGCTGGACGTCGCCATTTATGAGTACGAATTACCGGTGATCGTCGATGCGGTGAACGCTGCCCATGCCCGTGGTGCACGGGTCAGGGTGCTGTACCACGCCGAACCGGGGGATGACGGTACGCTGCGCAACGAAGCCAGCCTGGAAAAACTGCCAGCGGCGAACAAGCGTGGGCGGGTCACCCACAATATCTTCCACGACAAGTTCATCGTGCTGAGCAAAGTCGAAGGGAACGCGTCGCTGAAACCCGAGGCGGTGCTGTGCGGCAGTACCAATTTCACCGCCAACGGCATCTACCGCCAGGCCAATGTCATTCATGTGCTGGACGACCCGCGCATCAGCGCCAGTTACCTTCAGGTGTTCGAGCAGATCTGGGCCACACCGGAGGATGTCGATGCCACGCGCCAATGGCTGACCCGCAACAACCCCATGGATGCAGACGAGAAACTGTTTGCCGGTTTCTCGCCGCGTACCGGGCACGGCGATCTGGATCGCTTCGTCGACATCATCGACGGTGCGCGCAAGGACCTGCTGTTCGTCACGGCGTTTGCCTTGCCCGACCGGATCCTCGATGCCTTGCTCGGCCAGCCCAATGACGACGTGCTGCGCTACGGCCTGCAAAATACCACCAGCCGCATCAGCGGTTTTCACGCCGACCGCACTGCCGAATTCGCCGCCACCGCGCTGCTCAATACTGGCCTGGAAGGTTGGCTCAGGGAAAACATGAAAGGTCAGAAAGGCAACCTGCTGGTGCATACCAAAGCGGTGGTCACCGATTTCACCAGCGATGCGCCGACCATCATCAGCGGCAGCCATAATCTCAGCATCGCGGCGAGCAACGGCAACGACGAGAACTATCTCATCATCCAGGGCGACACCGACCTGGCCGACCGCTACGGGCTCGAACTGCTGCGTTTCTACGAGCATTACCGCTTTCGTTACTTCGCGAAAAAACTCGCCCTCAAGCAGGTCAAGCCGCTGGCGGTGGATGACAGCTGGAGCGACGATTATTACCGCGAGGGGGATTTGCGAATGTTGTCCAGGGTGAGGTTTTGCGGGCGTTGAMRVLVTNAKDDFRVKAYAGTNGVLLAMDLAEPRRKGLLGFAIEKQQGAKPWLFLFNSLTFPDKAHIFPQFHATPSDKAPLQKFRWADYAVNPGVTIHYRVHLAYGSADAPQLGESLEVSVTSDDGQPANQRVIFNRAVAASQAFQRKFPELDALIDANKNLSIDDWPDAPRRWLENGLLGRLTGFIDRALDASWALDVAIYEYELPVIVDAVNAAHARGARVRVLYHAEPGDDGTLRNEASLEKLPAANKRGRVTHNIFHDKFIVLSKVEGNASLKPEAVLCGSTNFTANGIYRQANVIHVLDDPRISASYLQVFEQIWATPEDVDATRQWLTRNNPMDADEKLFAGFSPRTGHGDLDRFVDIIDGARKDLLFVTAFALPDRILDALLGQPNDDVLRYGLQNTTSRISGFHADRTAEFAATALLNTGLEGWLRENMKGQKGNLLVHTKAVVTDFTSDAPTIISGSHNLSIAASNGNDENYLIIQGDTDLADRYGLELLRFYEHYRFRYFAKKLALKQVKPLAVDDSWSDDYYREGDLRMLSRVRFCGRNANANANANA
D1-35_02649558hypothetical proteinGTGGATTGGCCGGGCACGTTGCTCAAGGGACGTCCACGCCTGCTGGCGGATTTGCGTTTCAAATGGCGGCAGCGTTCAGCCCATGAGCTGTGGCTGGTGATCGTCGATGCGTCGGCCTCGACCCGTCGCCATCGCGCCTTGAGTGACGGCAAGGGCCTGCTGGCCCAACTGTTCGATGACGCCTACCGACAACGTGCACGGTTGGCGCTGTTGACCGCCAGCGGCACCGCGCCGAGGTGGCAAGTGCAGGGGCTCAAGGCCTCCATTGGCCTGGACGCTTGGCTCGACGCGCTGGGCGCCGGCGGCGGCACGCCGTTGCTGGCGGCGCTGGACGAGGCGCAGCGCTGGCTCATGGTTCGGCGCAAACGCTATCCGGCGGAGCAGCAGCGGGTGTTGCTGATGACCGATGGACGAGTCAAGGACGGGCTGGGCGTGCCGCCTCTCGAATGCCCGTGCCTGTTGATAGACATCGAGCGCGGCCCGATTCGCCTGGGTAGGGCAAGGCAACTGGCGGAGCAGTTGGGCGCTGAGTATCGGCATATCGATGAAGCGCACTGAMDWPGTLLKGRPRLLADLRFKWRQRSAHELWLVIVDASASTRRHRALSDGKGLLAQLFDDAYRQRARLALLTASGTAPRWQVQGLKASIGLDAWLDALGAGGGTPLLAALDEAQRWLMVRRKRYPAEQQRVLLMTDGRVKDGLGVPPLECPCLLIDIERGPIRLGRARQLAEQLGAEYRHIDEAHNANANANANA
D1-35_026501008bchICOG1239Magnesium-chelatase 38 kDa subunitATGACCGACACCGCCCATTTTCCCCTCTCCGCCGTGGTCGGCGCCGATGCGCTGAAACTGGCCCTGTGCCTGGCGGCGATCGATCCGAAGATCGGCGGTGTGCTGATCGAAGGTCCACGGGGGATGGCCAAGTCCACGCTGGCCCGGGGCCTGGCGGATCTGCTGGCAAGCGGTCAGTTCGTGACCTTGCCACTGGGCGCCACCGAAGAGCGGCTGGTGGGCACTCTCGATCTGAATGCCGCACTTGGGGAAGGGCGCGCGCAATTTTCCCCCGGCGTGCTGGCCAAGGCCGACGGTGGCGTGCTGTATGTCGATGAGGTGAACCTGTTGCCGGATCACCTGGTGGACCTGCTGTTGGACGTCGCCGCCAGCGGCACCAACCTGATCGAGCGCGACGGCATTTCCCACCGGCATCCGGCGCGTTTCGTGCTGATCGGCACCATGAACCCGGAAGAGGGCGAACTGCGTCCGCAATTGCTCGATCGTTTCGGCCTGAACGTGGCGCTTGATGGCCACACGGCGCCTGCCGAGCGCGGGCAGATCATTCGGCGGCGGCTGGATTTCGACAGCGATCCGGCGGCGTTCTGCGCCGAGTGGGAAACCGCCCAACGACAGTTGCGTGAGCGCTGCCAACAGGCGCGCGTGCGGTTGGCCGGGATCCCATTGGATGACATGGCGCTGGAGCAGATTACCGAGCGTTGTTTCGCCGCTGGGGTCGATGGCTTGCGCGCCGACCTCGTCTGGTTGCGGGCCGCCCGTGCTCATGCCGCCTGGCGTGGCGCGGACGCCATCGCAGCCGAAGACATCGACGCCGTCGCCGAGTTTGCCTTGCGCCATCGGCGCCGCGACCCTGCGTCCCCGGCCCCCGCGCCGTCCCAGGCACCGTCGCCGAGCCGGAATGAAGCGAGCGAGTCCGGCGAAGGCCAGGGCCAATGGGGTGACCTGCCGGCCCGGGCGCTGCCGAGCGGTGCCCGGCGTGACGTGCCGAGCTGGCCAAAAAAGTCCTAGMTDTAHFPLSAVVGADALKLALCLAAIDPKIGGVLIEGPRGMAKSTLARGLADLLASGQFVTLPLGATEERLVGTLDLNAALGEGRAQFSPGVLAKADGGVLYVDEVNLLPDHLVDLLLDVAASGTNLIERDGISHRHPARFVLIGTMNPEEGELRPQLLDRFGLNVALDGHTAPAERGQIIRRRLDFDSDPAAFCAEWETAQRQLRERCQQARVRLAGIPLDDMALEQITERCFAAGVDGLRADLVWLRAARAHAAWRGADAIAAEDIDAVAEFALRHRRRDPASPAPAPSQAPSPSRNEASESGEGQGQWGDLPARALPSGARRDVPSWPKKSNANANANANA
D1-35_026513774cobNAerobic cobaltochelatase subunit CobNATGCACCTGCTCAGGACCCAGCCCGGCGGTTTTGTGTCGGATGACAACATCGCCGACCTCGGACAAACCCCCGCCGAGCTGGTAATCCTGTGCAGCGGCGATTCCAGCCTGGCGCTGCTGGCCGAAGCGGCGCGGCAATTACCGGACGACTACCCGCAGTTTCGCCTCGCCAACCCGATGCAGGTGCAGAACCACGCGTCGGTGGACCTGTATGTCGACGACGTACTGCGCCACGCCAAGGTCATCCTGTTGTCGCTGCACGGTGGCATCGGCTATTGGCGCTACGGCATCGAGCGCCTGATGGAACTGGCCGCGCGCGGCGTGAAGCTGATCCTGGTGCCGGGGAATGATCGCCCCGACCCGGAGCTCAGCGACCTGAGCAACGTAGCGTTGGAGGATCGCGACCGGCTCTGGCAGTTCTTGCGCCAAGGCGGATTGGCCAACGCCCTGAACCTGTTCCATCACCTGGGCAGCCAATGGTTTGCGCGCGATTATCCGTGGGCCGAACCGCAGCCCTTGCCGCGCACAGCGATCTACCACCCCGAACAAACCCACGCGACCCTCGATCATTGGCAAACCGACTGGCGCGCCGACGAACCGGTGGCGGCGGTGTTGTTCTATCGTTCACACCTGCAAGCGGCGAACACTGCTTTCATCGACGTATTCTGCCAGCGCCTGCAAGCGGCGGGGCTCAATCCGCTGCCGATTGCCGTGGCCAGCCTCAAGGAACCCGGTTGTCTGGCACAGGTGGAAGATTGGTTGGACGAGGCAGCGGCGGGGGTGATTCTAAACACCACCGGCTTCGCCCAATCCAGCCCTGAAGCACCGCATCTGCGGCCGTTTCGCCGCGACATCCCGGTGATCCAGGCGATCTGCGCGCAGGACAATGAGCCCGGCTGGCGCGCCAGCGAACAAGGCCTGGGGCCACGCGACCTGGCGATGCACATCGCCCTGCCGGAACTGGATGGACGGATCATCAGCCGGCCTATCAGTTTCAAGGACCTGGCCTGGCGCAGCGAGCGCAGCCAGAGCGATGTGGTCTGCTACCGGGCGGTGCCCGAGCGCATGGATTTCGTTGCCGAGCTAGCCCGGCGCTGGACGGCGCTGGCGCGTCTGCCCAGCCGCGAAAAGCGCGTGGCGCTGATCCTCGCCAACTACCCGACTCGTGATGGGCGCATCGGCAACGGTGTCGGCCTGGACACGCCGGCGGCGGCGCTGAATATCCTCCGCGCCCTGCAGGCCGAGGGCTATCCGCTGTCGGCCGAGCTGCCGGCCAGCGGCACCGCGTTGATCCAGCAATTGCTCGGCGGCGTCAGCAACGATCTCGACAGCCTGGATTTGCGCCCGTGTCATCAAAGCCTGGCCCTGGACGCCTATCAAGCCATGTTCGACGCGCTACCCGAGGCCAACCGCGACGCGGTATTGGCCCGTTGGGGCGCGCCCGAGCAGGACCCGATGTTCCGTCAAGGTCGGCTGATGGTCGCCGGGTTGCGCCTGGGCCTGACGTTTATCGGCATCCAGCCGGCGCGCGGGTATCAGCTTGACCCGAGCGCGGTCTACCACGACCCGGACCTGGTGCCGCCCCACGGTTATCTGGCGTTCTACTTCTGGTTGCGCCACACCTACGGCGCCCATGCTGTTATTCACGTCGGCAAGCACGGCAACCTCGAATGGCTGCCGGGCAAGGGCGTCGGGCTCTCGGAAAATTGCTGGCCGGATGCGCTGCTCGGACCGCTGCCGAACATCTACCCGTTCATCGTCAATGACCCGGGCGAGGGCGCCCAGGCCAAGCGACGCACACAGGCGGTAATCATCGATCACTTGATGCCGCCGCTGACCCGGGCCGAAACCTACGGGCCGCTGCGCAACCTCGAACTGCTCGCGGACGAATACTACGAGGCGCAACTGCTCGACCCGCGCCGCGCCCGGGAGCTGCAACGGGATATTCTCAACCTGGTGCGCGAGACCCACATCGACCGCGAACTGCAACTCGACGCCGCCCTCGACAGCGACGCCGACGCGGCGATCTGGCTGCCACGCCTGGACACCTACCTGTGCGACCTGAAGGAGTCGCAGATTCGCGACGGCCTGCATATCTTCGGCGAGTCGCCTGGCGGACGGTTGCGTATCGATACCTTGCTGGCGTTGCTGCGCATTCCCCGTGGCGACGGCAAGGGTGCGCAGTCGAGCCTGTTGCGGGCCCTGGCGAAGGCGTTCGGGTTGGGGTTCGATCCGCTCGATTGTGCCTTGGCCGAGCCATGGACCGGGCCGCGGCCCGAGGCCCTGGGCGAGGTCAGCGCCGAGCCTTGGCGCAGCGTCGGCGACACCCGCGAGCGCCTGGAGCTGTTCGCCGCGCGGTTGATCGAACGGGCCCTGGAAGGTCCGGTCAAGCAGCTCGACGCGCCGGGCTGGGACGCGGTGGGGTGCATCATCGAACACCTGCGCGGCGTCGTCGCGCCGCGCCTGGACGCCTGTGGTCCGGCGGAAATGCGCGGCTTGCTTGATGCCCTGGGTGGACGCTTCGTGCCGGCCGGCCCCAGCGGTGCGCCGAGTCGTGGACGCCTGGATGTGCTGCCGACCGGACGCAATTTTTTCTCCGTCGATGTGCGCAACCTGCCCACCACCACGGCGTGGCGCATCGGCTTCCAATCGGCCAACCTGATCCTCGAACGGCACTTGCAGGACCATGGCGATCATCTGCGCCAGCTCGGTCTGTCGGTGTGGGGCACCGCGACCATGCGCACCGGTGGTGATGACATTGCCCAGGCCATGGCGCTGATGGGCGTGCGCCCGGTGTGGGCCACGGGCAGCCAGCGCGTCGACGATTTCGAAATCCTGCCGTTGAGCCTGCTGGACCGGCCCCGGGTCGATGTGACGCTGCGGGTCTCGGGGTTCTTCCGGGACGCCTTCGCCAACCTGATCCGCCTGTTCGATGCGGCGGTGCAGGCCGTTGCGGCCCTTGATGAGCCGGACGACATGAACCCGCTGGCGGCGAAAGTCCGCAGCGAATGCGAAGCCTTGCGGCAAACCGGGCTGCCGTTGGAAGACGCGACGCGCCAGGCCGGCTGGCGGATCTTCGGCGCCAAGCCCGGCGCTTATGGCGCGGGCGTGCAGGGCGCTGTTGACGGACGTCTCTGGCAGAGCCGCGAGGACCTGGCCGAGGTGTACCTCAACTGGGGCGGCTACGCCTACGGCGCCAGTGATGAAGGCACCGCCGCGCGGGCTCAGTTCAGCCGGCGCCTGAGCCAGGTGCAAGCGGTGTTGCAGAACCAGGACAACCGCGAGCACGACCTGCTCGATTCCAACGATTACTACCAGTTCCAGGGCGGCATGCTCGCCGCCGTCGAAACCTTGAGTGGCGAAGCCGCTGCCAGCTACCACGGCGACCACAGCCAGCCGGACTTGCCGAAAATCCGCACCCTGAAGGAAGAGCTCAACCGGGTCATCCGATCCCGCGCGGCCAATCCGAAGTGGATCGACGGCGTCAAGCGCCATGGTTACAAGGGCGCGTTCGAACTGGCGGCGACGGTGGACAACCTGTTTGCCTTCGACGCTACCACGCAGCTGATCGATGATCACCAGTACGCCTTGCTGGCCGATGCCTACCTGCTCGATCCGGATACCCGGGACTTCGTCCGCCAGCACAACCCCGACGCCCTGCGGGACATGACCGAGCGAATGCTCGAAGCCCAGCAGCGGGGGATGTGGCAGGAACCGGGCGACTATCGCGAGGCGCTGGAGAATCTGTTGCTGGATGTCGAAGAAGATGGCTGAMHLLRTQPGGFVSDDNIADLGQTPAELVILCSGDSSLALLAEAARQLPDDYPQFRLANPMQVQNHASVDLYVDDVLRHAKVILLSLHGGIGYWRYGIERLMELAARGVKLILVPGNDRPDPELSDLSNVALEDRDRLWQFLRQGGLANALNLFHHLGSQWFARDYPWAEPQPLPRTAIYHPEQTHATLDHWQTDWRADEPVAAVLFYRSHLQAANTAFIDVFCQRLQAAGLNPLPIAVASLKEPGCLAQVEDWLDEAAAGVILNTTGFAQSSPEAPHLRPFRRDIPVIQAICAQDNEPGWRASEQGLGPRDLAMHIALPELDGRIISRPISFKDLAWRSERSQSDVVCYRAVPERMDFVAELARRWTALARLPSREKRVALILANYPTRDGRIGNGVGLDTPAAALNILRALQAEGYPLSAELPASGTALIQQLLGGVSNDLDSLDLRPCHQSLALDAYQAMFDALPEANRDAVLARWGAPEQDPMFRQGRLMVAGLRLGLTFIGIQPARGYQLDPSAVYHDPDLVPPHGYLAFYFWLRHTYGAHAVIHVGKHGNLEWLPGKGVGLSENCWPDALLGPLPNIYPFIVNDPGEGAQAKRRTQAVIIDHLMPPLTRAETYGPLRNLELLADEYYEAQLLDPRRARELQRDILNLVRETHIDRELQLDAALDSDADAAIWLPRLDTYLCDLKESQIRDGLHIFGESPGGRLRIDTLLALLRIPRGDGKGAQSSLLRALAKAFGLGFDPLDCALAEPWTGPRPEALGEVSAEPWRSVGDTRERLELFAARLIERALEGPVKQLDAPGWDAVGCIIEHLRGVVAPRLDACGPAEMRGLLDALGGRFVPAGPSGAPSRGRLDVLPTGRNFFSVDVRNLPTTTAWRIGFQSANLILERHLQDHGDHLRQLGLSVWGTATMRTGGDDIAQAMALMGVRPVWATGSQRVDDFEILPLSLLDRPRVDVTLRVSGFFRDAFANLIRLFDAAVQAVAALDEPDDMNPLAAKVRSECEALRQTGLPLEDATRQAGWRIFGAKPGAYGAGVQGAVDGRLWQSREDLAEVYLNWGGYAYGASDEGTAARAQFSRRLSQVQAVLQNQDNREHDLLDSNDYYQFQGGMLAAVETLSGEAAASYHGDHSQPDLPKIRTLKEELNRVIRSRAANPKWIDGVKRHGYKGAFELAATVDNLFAFDATTQLIDDHQYALLADAYLLDPDTRDFVRQHNPDALRDMTERMLEAQQRGMWQEPGDYREALENLLLDVEEDGPGPT0009280_874DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0009280-cobN-K02230NANA
D1-35_026521065hypothetical proteinATGAAAACACTGGCCAAACTCCCCGTCACCATCGTCACCGGTTTCCTCGGCTCGGGTAAGACCACCTTGCTGCGGCACATGCTCGACAACGCCCAGGGCCGGCGCATCGCGGTGATCGTCAACGAATTCGGCGAGCTCGGTATCGACGGTGAGATTCTCAAACAGTGCTCCATCGGTTGCACCGAAGAAGAAGCCAACGGCCGGGTCTACGAATTGGCCAACGGTTGCCTGTGCTGCACCGTGCAGGAAGAGTTTTTTCCGGTGATGCGCGAACTGGTGGCCCGTCGCGGCGACCTCGACCACATCCTCATCGAAACCTCTGGCCTGGCCCTGCCCAAGCCCTTGGTCCAGGCCTTCCAGTGGCCGGAAATCCGCAGCGCCTGCACGGTCGATGCGGTGATTACCGTGGTCGACAGCCCGGCCGTGGCCGCCGGTACTTTTGCCGCGTTCCCCGACCAGGTCGATGCCCAGCGCAAACTGGACCCGAACCTGGATCACGAATCGCCGCTGCACGAGCTGTTCGCCGATCAACTGGCGAGCGCCGACCTGGTGATCCTCAACAAGGCCGACCTGATCAGCCCTGAAGACCTGGCAAAAGTCCGCCTGGAAGTCGCCGAAGAATTGCCGCCAGCGGTCAAGGTCATCGAAGCCAGCAGCGGTCGCCTGCCGCTGGACGTGCTGATTGGTCTGGGCGCGGGCTCCGAAGAGCACATCGACAGCCGCCACAGCCACCACGACCATCACCATGACGGTGATGATGACGACCACGATCATGACGCCTTCGACTCGATCTCCCTCGAACTGCCCCAGGCCGATGAAAGCCTGCTGCTGGACGCGCTGACGCAACTGGTGATCCAGCATGACGTGCTGCGGGTCAAGGGTTTCGCGGCGATCCCGAACAAGCCGATGCGCTTGTTGATCCAGGGCGTCGGCACGCGCTTCGACAAACACTTCGACCGCCAGTGGGGCGCCGACGAAGCGCGGGTGACGCGGCTGGTGCTGATCGGCCAGGCGCTGGATGCCGGGCTGCTTGAAGCGCAGCTGCGCGCCGCCCTCAGCGTCTAAMKTLAKLPVTIVTGFLGSGKTTLLRHMLDNAQGRRIAVIVNEFGELGIDGEILKQCSIGCTEEEANGRVYELANGCLCCTVQEEFFPVMRELVARRGDLDHILIETSGLALPKPLVQAFQWPEIRSACTVDAVITVVDSPAVAAGTFAAFPDQVDAQRKLDPNLDHESPLHELFADQLASADLVILNKADLISPEDLAKVRLEVAEELPPAVKVIEASSGRLPLDVLIGLGAGSEEHIDSRHSHHDHHHDGDDDDHDHDAFDSISLELPQADESLLLDALTQLVIQHDVLRVKGFAAIPNKPMRLLIQGVGTRFDKHFDRQWGADEARVTRLVLIGQALDAGLLEAQLRAALSVNANANANANA
D1-35_026541137garKCOG1929Glycerate 2-kinaseATGAAAATAATCATCGCCCCCGACTCGTTCAAGGACAGTCTCAGCGCCCAGGGCGTGGCGGACGCGATTGCCCAGGGGTTGGCCGAGGTCTGGCCGGATGCGCAGTTGATCAAATGCCCGATGGCCGACGGCGGGGAAGGGACGGTGGAGTCGGTGCTGGCGGCGTGCAACGGCCAATGGCGTCGCGCCCTGGTTCGCGGGCCCTTGGGCGCCGCTGTCGAGGCCCGCTGGGGCTGGCTGCCCGACAGCGGCACCGCGATCATCGAGATGGCTGAGGCCAGCGGCCTGCAACTGGTGCCTCCGGGACAGCGCGACGCGTGCTGCAGCAGCACCTTCGGCACCGGCGAACTGATTCGCGCCGCCCTCGATGAGGGGGCCCAGCGCGTGATCCTGGCGATCGGCGGCAGTGCCACCAACGACGGCGGTGCCGGGGCGCTGCAGGCTCTGGGCGTGGCGCTGCTGGACGCAAAGGGCCAATCGCTGCCGCCCGGCGGCCTGGCCCTGGGCAAACTGGCGCGCATTGACCTGAGCGAGTTGGACCCGCGCCTGGCCGGGGTGCGTTTCGAAATCGCTGCCGACGTCGATAACCCCTTGTGCGGGCCCCATGGCGCTTCAGCGGTGTTCGGCCCGCAGAAGGGCGCTTCTGCCGAGCAGGTGCAGCAACTGGATCGCGCGCTGGGGCATTTCGCCGAGCACTGCGCCCAGGCGTTGCACCGGGACGTGCGCGATGAACCGGGCAGTGGCGCCGCCGGAGGCCTGGGATTCGCGGCCAAGGCCTTTCTCCAGGCCCGGTTTCGCACCGGCGTGGAAGTCGTTGCGCAATTGACCGGCCTGGCCGAGGCGATCAACGGGGCCGATCTGGTCATCACCGGCGAAGGCCGTTTCGATGCGCAGACCCTGCGCGGCAAGACGCCTTTTGGCGTGGCCCGCATTGCCCGACACCAAGGTGTACCGGTAGTGGTCATTGCCGGCACGCTGGGGGAGGGTTATCAGGCGCTGTATGAGCATGGCATCGATGCCGCCTTTGCCCTGGCGAACGGGCCGATGACACTTCAAGAGGCCTGCACCGATGCGCCACGCCTGTTGGCCGAGCGCGCGCGGGATATCGCCCGGCTCTGGCGCGTGGCGGCCCGCTAGMKIIIAPDSFKDSLSAQGVADAIAQGLAEVWPDAQLIKCPMADGGEGTVESVLAACNGQWRRALVRGPLGAAVEARWGWLPDSGTAIIEMAEASGLQLVPPGQRDACCSSTFGTGELIRAALDEGAQRVILAIGGSATNDGGAGALQALGVALLDAKGQSLPPGGLALGKLARIDLSELDPRLAGVRFEIAADVDNPLCGPHGASAVFGPQKGASAEQVQQLDRALGHFAEHCAQALHRDVRDEPGSGAAGGLGFAAKAFLQARFRTGVEVVAQLTGLAEAINGADLVITGEGRFDAQTLRGKTPFGVARIARHQGVPVVVIAGTLGEGYQALYEHGIDAAFALANGPMTLQEACTDAPRLLAERARDIARLWRVAARPGPT0018175_2141DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0018175-garK|glxK-K00865NANA
D1-35_026551125cdaRCOG3835Carbohydrate diacid regulatorATGTTCGAACTCGATCACGACCTGGCCCAGGACATCGTCGACCGGGCGATGGCGATTCTGCCCTATAACGTCAACGTCATGGACAACCAGGGCCTGATCCTCGCCAGCGGCGAGCGTGAGCGCATCAATACCCGTCACGAGGGTGCGCAGTTGGTCCTGGCGAATGGGCGGGTGGTGGAAATCGACGAGCACACCGCCGTGCACCTCAAGGGCGTGCAGCCAGGAATCAACCTGCCGTTGATGCTCGACCAGCGGCTGATCGGCGTGCTTGGCATCACCGGCGAACCCGCGCACTTGCGCACCTACGCCGAGCTGGTGCGCATGACCGCCGAAATGCTGCTCGCCCAGCGCAACCAGCAGGCCGAGCAGCAATGGCGGCGCCAGCGTTGCGATGATTTACTGGCGCTGCTGCTGGGTGATGCCGGGGATTCGCCACGGTTGCTCGACGAAGCCCTGCAGATGGGCCTCAAGCCGCAGCTGTCGCGGGTGCCATACCTGTTTGAATTGGGCCAGGAGCATGGGCCCGGGCAAACGGTCGAGGCGCTGAGCGCGTGGCTGATGTCGCGCTACCCGGACAGCTGGTGCCTGACCTCATCCAAATCTTCTTTGCTCTGGTGCCGGCCGGTTACGGCTTCGGTGGAGAACGAGCGCTTGCTCGGCAAGCTCGACGGGCTGGGCTGGAACATCCTCAGGGTGGCGGTGGGCGGTCAGGCCGAGGGTCTGACCGGCCTGCGCCGTTGCTACCGGCGTGTGGCGGACTTGCTCGCTTACGGCCGTGATGTCCTGCCGCAGTCGCGCCTGTTGATCCTCAATCGTTATCGCCTGCCGGTGCTGCTCTGGCGCCATCGCAGCGACGATGCGCTGGACGAGTTGCTGACACCGCTGCGCAAGGTGATCGCCAAGGACAACAACGGACAACTCCTGGCCACCCTGCGCAGCTGGTGCGAATACGACGGCCAGAGCCAGGCCTGCGCCGACGCCCTGGGCATCCACCGCAACAGCCTGCGCTATCGCATGGAACGCATCGCCGAGCTCAGCGGCGTGGACCCGCTGCGGCTGGATGGGATGCTGGCGTTGTACCTGGGGGTGCAACTGTTGCCGCACGATCAAAACCTCCCCTCATGAMFELDHDLAQDIVDRAMAILPYNVNVMDNQGLILASGERERINTRHEGAQLVLANGRVVEIDEHTAVHLKGVQPGINLPLMLDQRLIGVLGITGEPAHLRTYAELVRMTAEMLLAQRNQQAEQQWRRQRCDDLLALLLGDAGDSPRLLDEALQMGLKPQLSRVPYLFELGQEHGPGQTVEALSAWLMSRYPDSWCLTSSKSSLLWCRPVTASVENERLLGKLDGLGWNILRVAVGGQAEGLTGLRRCYRRVADLLAYGRDVLPQSRLLILNRYRLPVLLWRHRSDDALDELLTPLRKVIAKDNNGQLLATLRSWCEYDGQSQACADALGIHRNSLRYRMERIAELSGVDPLRLDGMLALYLGVQLLPHDQNLPSNANANANANA
D1-35_026561311nicT_2Putative metabolite transport protein NicTATGTCCCAGAGCGCAGCAGCCCTCCTGGCTACCCCCGACGAAAAAAATACCGTCTACAAGCGCATCACCCTGCGCTTGATCCCCTTCATCTTCATCTGCTACCTGTTCAACTACCTGGACCGGGTCAACGTTGGCTTCGCCAAGTTGCAGATGCTCGATGCGCTGAAATTCAGCGAAACCGTGTACGGCCTTGGTGCCGGGATCTTCTTCATCGGCTACGTGCTGTGTGGCGTGCCGAGCAACCTGGCACTGACAAAATTCGGCCCGCGGCGCTGGATCGCGCTGATGATGATCACCTGGGGCACGCTGTCGACCTGCCTGCTGTTCGTCACCACCCCGACCGGGTTCTATACCTTGCGGCTGTTCACCGGTGCAGCCGAGGCCGGGTTCTTCCCTGGCGTGGTGCTGTACCTCTCGCAGTGGTTCCCGACGTTCCGTCGCGGCCGGATCATGGCGCTGTTCATGTCGGCCATCCCGGTGTCGGGCCTGCTCGGCAGCCCGTTTTCCGGCTGGATCCTCAACCATTTCGCCGCTGGCCAGGGTGGCCTGGCGGGCTGGCAGTGGATGTTCCTGCTGCAAGGCGTGCCGACGGTGATCCTCGGGGCTCTGGCGTTCTTCCTGCTCAGCGACACCTTCGCCAATGCCAAATGGCTGACCGACCATGAGCGCGCCGTGCTCACCGCCGACCATGCCGAAGACCTGGCCAACAAGCCGAAGACCACCACCGATTCCCTGGCAGCCGTATTCAAGAACCCGGCGATCTGGGCCTTCGGCCTGGTGTACTTCTGCATCCAGAGCGGCGTGTACGCGATCAACTTCTGGCTGCCGTCGATCATCAAGAACCTGGGTTTCAGCGATAACCTGGTGATCGGCTGGCTGAGTGCGATCCCCTATCTGCTGGCGGCGGTGTTCATGCTGCTGGTGGGCCGCTCGGCAGACCTGCGCAAGGAGCGCCGCTGGCATCTGGTCGTGCCGATGCTGATGGGTGCGGTCGGGCTGCTGATCGCCGTCAATTTCGCCACTACGCCGGCCATCGCCATCCTCGGCCTGACCATCGCCACCATGGGCGCCCTCACCGGCCTGCCGATGTTCTGGCCGGTGCCCACCGCCCTGCTCAGCGCGGGGGCGGCGGCCGGCGGGCTGGCGCTGATCAATTCCATGGGCCAGATGGCCGGCTTCCTCAGTCCGTACCTGGTGGGCTGGGTCAAGGACGCCACCGGCTCGACCGATGCGGCGCTCTATGTGCTGGCGGCAGTGATTGTCTGCGGCAGCCTGCTGGCGTTGCGCATGACGCGCACCCTGCGGGGCTGAMSQSAAALLATPDEKNTVYKRITLRLIPFIFICYLFNYLDRVNVGFAKLQMLDALKFSETVYGLGAGIFFIGYVLCGVPSNLALTKFGPRRWIALMMITWGTLSTCLLFVTTPTGFYTLRLFTGAAEAGFFPGVVLYLSQWFPTFRRGRIMALFMSAIPVSGLLGSPFSGWILNHFAAGQGGLAGWQWMFLLQGVPTVILGALAFFLLSDTFANAKWLTDHERAVLTADHAEDLANKPKTTTDSLAAVFKNPAIWAFGLVYFCIQSGVYAINFWLPSIIKNLGFSDNLVIGWLSAIPYLLAAVFMLLVGRSADLRKERRWHLVVPMLMGAVGLLIAVNFATTPAIAILGLTIATMGALTGLPMFWPVPTALLSAGAAAGGLALINSMGQMAGFLSPYLVGWVKDATGSTDAALYVLAAVIVCGSLLALRMTRTLRGPGPT0002325_665DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-ORGANIC_ACID_METABOLISMP-SOLUBILISATION-TARTARIC_ACID_TRANSPORT,PGPT0002325-ttuB-K13021NANA
D1-35_026571014yajOCOG06671-deoxyxylulose-5-phosphate synthase YajOATGAGCTACCGCACGCTGGGCCATTCCGGGTTGCAAGTCTCGACGCTGACCCTGGGCACGATGATGTTCGGTGAACAGACCAGCACCGAGGATTCGCTGCGGATCATCGACAAGGCCTGGGACCAGGGCATCAATTTCATCGACACGGCCGACGTCTACACCAACGGCCGTTCCGAAGAAATCGTCGGCGAGGCGATTGCCAGCCGGCGCCACGAGTGGGTGCTCGCCACCAAGGTCGGCTTCGGCCCGCCGGACGGTGTGCCCAACCGCAGCGGCTTGAGCCGCAAGCATATCTTCAACGGCATCGAGGCCAGCCTGACGCGCCTGGGCACCGATTACCTGGACATCTACTACCTGCACCGCGAAGACCACAACACGCCATTGCAGGTCACGGTGTCGGCCATCGGCGACTTGATTCGCCAGGGCAAGATCCGCTACTGGGGCCTGTCGAATTACCGCGCCTGGCGCATCGCCGAAGTGATCCGCATCGCCGACAGCCTGGGCGTCGATCGGCCGGTGATCAGCCAGCCGCTGTACAACATCGTCAACCGCCAGGCGGAAACCGAACAGATCACCGCCGCGCAGAACTACGGCCTCGGCGTGGTGCCCTACAGCCCCCTCGCCCGAGGTGTGCTCAGCGGCAAGTACGCACCCGATGTGGCACCGGATGCCAACAGCCGCGCCGGACGCCAGGACAAGCGCATCCTGGAAACCGAATGGCGGGTCGAATCCTTGCGCATTGCCCAGCAGATCCAGCAATACACCCGGGATCGCGGCGTCGGCATTGTCGAGTTCGCCATTGCCTGGGTGCTGAACAACCGTGCCGTCACGTCGGCGATCGTCGGACCGCGCACCGAAGAACAATGGGACGCGTACACCAGGGCGCAAGCGGTGCGGATCACCGCGGATGACGAAGCGTTCATCGATTCGCTGGTGACACCGGGGCATGCTTCGACGCCGGGCTTCAACGACATCAGTCATTTCGTGTCGGGCCGCGTGCCGCATACGTCGTAAMSYRTLGHSGLQVSTLTLGTMMFGEQTSTEDSLRIIDKAWDQGINFIDTADVYTNGRSEEIVGEAIASRRHEWVLATKVGFGPPDGVPNRSGLSRKHIFNGIEASLTRLGTDYLDIYYLHREDHNTPLQVTVSAIGDLIRQGKIRYWGLSNYRAWRIAEVIRIADSLGVDRPVISQPLYNIVNRQAETEQITAAQNYGLGVVPYSPLARGVLSGKYAPDVAPDANSRAGRQDKRILETEWRVESLRIAQQIQQYTRDRGVGIVEFAIAWVLNNRAVTSAIVGPRTEEQWDAYTRAQAVRITADDEAFIDSLVTPGHASTPGFNDISHFVSGRVPHTSPGPT0017540_1333DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017540-yajO|iolS-K23107NANA
D1-35_02658885rarD_1COG2962Protein RarDGTGTCCAAAGGCATCGCTCTATCGGTATCGGCCTCCGCCCTGTTCGCGGTCATGTACTACTACACCTCGCTGCTCGCACCGCTGACCGGCCTGGAGATTTTTGGCTGGCGCATGCTGCTGACGATGCCTTGCATGACGGCGTTCATGCTGATTTCACGGGAGTGGAAGCTCGTCGCCGATCTCGTCGAGCGCCTGGTCGCCACACCGCTTCTGCTGCTCGGGGCGATGGCGTCTTCGGCGCTGATGGGCGCGCAGTTGTGGCTGTTCATGTGGGCGCCGCTCAACGGCTACAGCCTGGACGTGTCGCTGGGTTATTTTCTGCTGCCGCTGTCGATGGTCCTGACCGGGCGCATCGTCTATGGCGAGCGACTCTCGCGCTTTCAGAAAGCCGCCGTGTTGCTCGCTACGCTCGGCGTGTTCAACGAGCTATGGCAAGTCGGTGGTCTGTCCTGGGCGACCCTGTTGGTCGTGCTGGGCTATCCGCTGTATTTCATCCTGCGCAAACGCATCCGGACCGACAACCTGGGCGGTCTCTGGCTGGACATGGCCCTGATGCTGCCGTTGGCCCTCTGGTTCGTGCAGAGCGGAGCGCAAGGCTTTGGTGTCTTCAACCAGTACCCGTGGCTGTCGCTGCTCATTCCGGTACTTGGCGTCATCAGCGCCTCGGCGTTGGTGGCGTACATCGTTGCCAGCCGCTTGCTGCCGCTCGGCCTGTTCGGGCTGTTGAGTTATGTCGAGCCGGTGCTGCTGCTGGGCGTGGCGCTGCTGCTGGGGGAAAGCATCGAGGCTGAGGAATGGCTCACCTATATCCCCATCTGGCTGGCGGTGGCCGTGCTGGTGCTGGAAGGCTTCAGGCACCTGGTGCGGCAGCGGCGCCGGGCTTAAMSKGIALSVSASALFAVMYYYTSLLAPLTGLEIFGWRMLLTMPCMTAFMLISREWKLVADLVERLVATPLLLLGAMASSALMGAQLWLFMWAPLNGYSLDVSLGYFLLPLSMVLTGRIVYGERLSRFQKAAVLLATLGVFNELWQVGGLSWATLLVVLGYPLYFILRKRIRTDNLGGLWLDMALMLPLALWFVQSGAQGFGVFNQYPWLSLLIPVLGVISASALVAYIVASRLLPLGLFGLLSYVEPVLLLGVALLLGESIEAEEWLTYIPIWLAVAVLVLEGFRHLVRQRRRAPGPT0003906_2613DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTUDRUG_RELATED_REGULATION,PGPT0003906-rarD-K05786NANA
D1-35_026591077hpd4-hydroxyphenylpyruvate dioxygenaseATGGCAGATCTATACGAAAACCCGATGGGCCTGATGGGCTTCGAATTCATTGAATTCGCATCCCCGACCCCGAATACCCTGGAGCCGATCTTCGAGATCATGGGCTTCACCAAGGTGGCCACCCACCGTTCCAAAGACGTGCACCTGTACCGCCAGGGCGCGATCAACCTGATCCTCAACAACGAACCGCACAGCGTGGCGTCCTACTTCGCGGCCGAGCACGGCCCGTCGGTATGCGGCATGGCCTTCCGCGTCAAGGATTCGCAAAAAGCCTACAAGCGGGCCCTGGAACTCGGTGCCCAGCCGATCCACATCGAAACCGGCCCGATGGAGCTGAACCTCCCGGCGATCAAAGGCATTGGCGGCGCGCCGCTGTACCTGATCGACCGTTTTGGCGAAGGCAGCTCGATCTACGACATCGACTTCGTCTTCCTCGAGGGTGTCGATCGCAATCCGGTGGGCGCCGGTCTGAAGATCATCGACCACCTGACCCACAACGTTTATCGCGGGCGCATGGCCTACTGGGCCAACTTCTACGAGAAGCTGTTCAATTTCCGCGAGATTCGTTACTTCGACATCAAGGGCGAATACACCGGCCTGACTTCCAAGGCCATGACAGCCCCGGACGGCATGATCCGCATCCCGCTGAACGAAGAGTCATCCAAGGGCGCCGGGCAGATTGAAGAGTTCCTGATGCAGTTCAATGGCGAAGGCATCCAGCACGTGGCCTTCCTGACCGACGACTTGATCAAGACCTGGGACGCGCTCAAGAAGATCGGCATGCGCTTCATGACCGCGCCGCCGGACACCTATTACGAAATGCTCGAAGGCCGCCTGCCGAACCATGGCGAACCGGTGGCGGAGCTGCAATCGCGGGGCATCCTGCTGGACGGGGCCTCGGAGCAGGGCGACAAGCGCCTGTTGCTGCAGATCTTCTCGGAAACCCTGATGGGGCCGGTGTTCTTCGAGTTCATCCAGCGCAAGGGCGACGATGGCTTCGGCGAGGGCAACTTCAAGGCACTGTTCGAATCGATCGAGCGTGACCAGGTGCGGCGTGGTGTACTCACTACCGAGTAAMADLYENPMGLMGFEFIEFASPTPNTLEPIFEIMGFTKVATHRSKDVHLYRQGAINLILNNEPHSVASYFAAEHGPSVCGMAFRVKDSQKAYKRALELGAQPIHIETGPMELNLPAIKGIGGAPLYLIDRFGEGSSIYDIDFVFLEGVDRNPVGAGLKIIDHLTHNVYRGRMAYWANFYEKLFNFREIRYFDIKGEYTGLTSKAMTAPDGMIRIPLNEESSKGAGQIEEFLMQFNGEGIQHVAFLTDDLIKTWDALKKIGMRFMTAPPDTYYEMLEGRLPNHGEPVAELQSRGILLDGASEQGDKRLLLQIFSETLMGPVFFEFIQRKGDDGFGEGNFKALFESIERDQVRRGVLTTEPGPT0009480_1462DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0009480-hppD-K00457NANA
D1-35_02660945eamA_1COG0697putative amino-acid metabolite efflux pumpATGAAAGCCCTGGAACAAACTGCCTCGACACCCTCGGACCTGCCGGTCTACCTCAAGCTTGCGATGGTCACGATGATCTGGGGCGGCACCTTTGTTGCCGGCAGGATCCTTGCCGATGCGCTGACGCCGATGTTCGCCGCCAGCTTGCGTTTTCTCCTGGCGAGCATCGCGCTGTTGCTGTTTCTCGGCGTCGCCGGTATCCCCCTGGCCAGGCCCGGCTTGAAGCAGGGCCTGCAACTGGCCGCGCTGGGGTTCTTCGGGATTTTTCTCTACAACCTGTGTTTCTTCCATGGCTTGCAATACATCAACGCGTCGCGCGCCTCGTTGATCGTCGCGTTGAACCCGGCAGTGATCGGCTTGGCCTCCTGGTGCTTGTTCAAGGAACGGTTGGGCCGCTTTAAAGTCGCCGGTATCGTGCTGTGCATCGGCGGGGCGGGGTTGGTCATCATCAGTCGCGAACCGGCGCTGTTGCAGGCGACGGAACAGGCTTGGCGCGGGGATCTGCTGATTTTCGGCTGTGTGCTGGGGTGGGGCATCTATTCGCTGTTTTCCAAAGGCCTGAATGAGAGCCTGGGTCCTTTGCAGACCGTGACCTGGTCGATCCTGCTGGGCACGCTGATGTTGTGGCTGGCGTGCGCAGCCGGCGGTGAGATCCGCTTCGAGGCATTGCGTGGGCTGGACCTCAGGCAATGGTTGAGCCTGCTGTACCTCGGCGTGCTGGGTTCGGCCCTGGCCTATATCGCCTGGTATCAGGGCATCCGCCGGATCGGTGCGACGCGTTCCGGCGTCTTCATTGCGCTCAACCCGCTGACGGCGGTACTGCTGGGCGCGATGCTGCTCGACGAACGGCTCACTTTATTTATGTGCGTAGGCGGCGGGTTGATCCTGGCGGGGATCTTCCTGTGCAACAAACCGCTTGCACGCTCGGCAAAAAAGACGATTTGAMKALEQTASTPSDLPVYLKLAMVTMIWGGTFVAGRILADALTPMFAASLRFLLASIALLLFLGVAGIPLARPGLKQGLQLAALGFFGIFLYNLCFFHGLQYINASRASLIVALNPAVIGLASWCLFKERLGRFKVAGIVLCIGGAGLVIISREPALLQATEQAWRGDLLIFGCVLGWGIYSLFSKGLNESLGPLQTVTWSILLGTLMLWLACAAGGEIRFEALRGLDLRQWLSLLYLGVLGSALAYIAWYQGIRRIGATRSGVFIALNPLTAVLLGAMLLDERLTLFMCVGGGLILAGIFLCNKPLARSAKKTINANANANANA
D1-35_02661864gltC_2HTH-type transcriptional regulator GltCATGACTCTCACCCAACTCGAAATCTTTTCGCTGGTCGCCGAGCTGCAAGGTTTCACCGCGGCCGCGACACGCCTGGGCATCGGCCAGTCAGCGGTGTCCCACGCGATAAAATCCCTGGAACAGGAGTTGGGCGTCGAACTGTTCAGGCGTCATCAATCCCTCGTCGAGCTCAGCGACATCGGCCAGCAATTGTTGCTGCGTGCGCGGGCGATGCTCGGCCTCGCCAATACCCTGCAACAGGAGGCCGCGGATGCCCGCGGCATGCGCCGTGGAACCCTGCGCATCGGCTCGTTCGGGCCGACGTCGTCGATGAAACTGCTGCCCGCCATCCTGCAGCGCTACCGCACCCTGCATCCGGGAATCGAAGTGCACATCGATGAAGGGCCGGACCGGCAAGTGCTGCAATGGCTGGATGAACGACGGATCGACGTCGGTTTCGTGGTCCTGCCCGAGGAACGCTTCGATACGTTCGCCTTGATGGAAGACCAGATGGTCGCCCTGCTGCCCACCGATCATCCCCTCGCCGAGCGCGCCTGCGTGGAGCTCAAGGCGCTGTGCAACGACCCCTTCATACTCACCGAGGCCGGCTCCTCGGAAGTGGTCGGGCGGCTGTTCAGCGCCGCCCGGCTCACGCCGAATATCCGCTATCGCTGTTCGCAACTGCTCAGCACGCTGGATGTGGTCAGCCGGGGTGAAGCCGTGACCGTGGTTTCCGAGGGTTCGCTGCCGGCCGTGGAAAATCCCGGGTTTGTCGTACGTCCCTTGTCGCCGCGCGTTCCGCGCCAGATCGGCCTCGCGGTGCTGGACAGCCGCCAGGCCTCGCCCGCGACGCTGGCATTTATCGAAGTCGCCCGGCAACCATAAMTLTQLEIFSLVAELQGFTAAATRLGIGQSAVSHAIKSLEQELGVELFRRHQSLVELSDIGQQLLLRARAMLGLANTLQQEAADARGMRRGTLRIGSFGPTSSMKLLPAILQRYRTLHPGIEVHIDEGPDRQVLQWLDERRIDVGFVVLPEERFDTFALMEDQMVALLPTDHPLAERACVELKALCNDPFILTEAGSSEVVGRLFSAARLTPNIRYRCSQLLSTLDVVSRGEAVTVVSEGSLPAVENPGFVVRPLSPRVPRQIGLAVLDSRQASPATLAFIEVARQPNANANANANA
D1-35_026621563pdeGputative cyclic di-GMP phosphodiesterase PdeGATGCCATTGTCCGCCACACAGATACGCAAGCGGTCCCGTCGCAACCTGATCACCCTGCTCTGCGGGGTGCTGCCGGTGCTCTCGGGAGTGGGCATTCTCCATATCCAGGCCGAACGGACATTGCAACAGCAGGCCCGCCAGACCGCGGGAGAGCTGGTCCGGCAAGTCGAGCTGATGCTCGACAATACCGCGCTGGCGGCGCGCGCACTGCTGCCCCTGGCCGGTCAACCTTGCGAAGCGGTAAAACTGGCCCTGCGTGACCAGGTGACCCGCCGGCCCTTCGTCCGTTCGACCAACCTGATATGGGACGACACGCTGTACTGCAGCTCGCTGTTCGGCGAATTCGAGGAGCCGGTCAACCCGCACAATTACCACCAGGGCACTCTGTGGCTGATGGACGGCAACCCGGTCACGCCCGACACGGCATTGCTGATCTACCGGCTCAACGAGGGCCGGCAAGGGGCACTGGCGACACTGGACGGTTACCACCTGGCTAATGTCCTGCGCCTGATTGGCGGCGAGACGCGTTTGTTGCTGCAAGTAGGACCGAGCTGGCTGGCGGCGGACGGCAAGGTCCGGCAAACCCCGCCGCCTGCCCAGAAGGTAGCTCGCAACGAGTTGGCCTCGTCACGCTACGCCTTCAGCGTCGAAGCCGGCTTCGATGAAGGGGAAACCTGGCGCTACATGGCTCGGGAATATCCACCGCTATTCAGCCTGCTGATTGTCTTCGGCGCCATCGCGGCGCTGCTCGCCCATTGGACACAGAAACGCGCCTCCTCCCCCAGCCATGAACTGCTGCGCGCCCTCGAGGCCGGGGAGTTTGTGCCGTATCTGCAACCGGTGGTGCGCGGCGATGACAAGCGTTGGGCCGGGGTTGAGGTGCTGATGCGCTGGAACCACCCCAAGGAAGGCCTGGTGCGTCCAGACCTGTTTATCCCGCTCGCCGAACACAGCGGGCTGATCGTGCCGATGACCCAAGCACTGATGCAGCAGACCAGGCAATTGCTGGCGCCGCTCGCGCCCTTGCTGGAGGCGCCGTTTCATGTCGGTATCAATATCACCGCCCGCCACTGCAAGGACCTTGCGCTGCTGGAGGATTGCCGCGAGTTCCTGGCCGCGTTCCCACCGGGTGTCATCACGCTGGTGCTGGAGCTGACCGAGCGCGAGCTGATCGAACCGAGCCCGGTGACCCACCAATTGTTCGAGCTGCTGCGCGATCTGGGCGTCAAGATCGCCATCGACGATTTCGGCACCGGCCACTCCAGCCTGGGGTACTTGCAGCAGTTCAACGTCGATTTTCTGAAAATCGATCAAAGCTTTGTCGCGATGATCGGCGCCGATGCGCTGTCACGCCATATCCTGGACAGCATCATCGAGTTGTCGGGAAAACTGCAGTTGGAGATCGTCGCAGAGGGCGTCGAAACCGTTGAGCAAAGCGATTACCTGACGGCTCACAACGTCAACTTTCTACAAGGCTATCTGTTTGGCCGGCCTATTAGTGGCCAAGACTTCAATGCTGCGCTGACCGCCGCTAAAAGCCCGCCCACGACACCGTTCGATTGAMPLSATQIRKRSRRNLITLLCGVLPVLSGVGILHIQAERTLQQQARQTAGELVRQVELMLDNTALAARALLPLAGQPCEAVKLALRDQVTRRPFVRSTNLIWDDTLYCSSLFGEFEEPVNPHNYHQGTLWLMDGNPVTPDTALLIYRLNEGRQGALATLDGYHLANVLRLIGGETRLLLQVGPSWLAADGKVRQTPPPAQKVARNELASSRYAFSVEAGFDEGETWRYMAREYPPLFSLLIVFGAIAALLAHWTQKRASSPSHELLRALEAGEFVPYLQPVVRGDDKRWAGVEVLMRWNHPKEGLVRPDLFIPLAEHSGLIVPMTQALMQQTRQLLAPLAPLLEAPFHVGINITARHCKDLALLEDCREFLAAFPPGVITLVLELTERELIEPSPVTHQLFELLRDLGVKIAIDDFGTGHSSLGYLQQFNVDFLKIDQSFVAMIGADALSRHILDSIIELSGKLQLEIVAEGVETVEQSDYLTAHNVNFLQGYLFGRPISGQDFNAALTAAKSPPTTPFDPGPT0026215_325DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-CELLULOSE_METABOLISMCE-EPS-CELLULOSE_BIOSYNTHESIS,PGPT0026215-adrB-K21090NANA
D1-35_02663366hypothetical proteinTTGTCCAGACTCGCTGAATTCCGTGCAGCCGAAAGGGCCCTTCAGGAGCAGCTCAAACAGCTGGAATCTCTGAAGAATGACGCCGGGCTGAAAAAAGAGATCGAATTTGAAGAAAAGCTCCTGGGGCTGATGAAAACCTACGGCAAGAGCTTGCGCGACATCGTCGCCATTCTTGATCCGAAGCCGTCCAAGGCCGGCCCGCAGGCGGTCAAGCCAACCAAGACCCGCCGCGCCCGCGTGGTCAAGGTGTACCAGAACCCGCACTCCGGCGAGCTGATCGAAACCAAGGGCGGCAACCACCGCGGCCTGAAAGCGTGGAAGGAACAATACGGGGCTCAAACCGTTGATTCCTGGTTGCGCGGTTGAMSRLAEFRAAERALQEQLKQLESLKNDAGLKKEIEFEEKLLGLMKTYGKSLRDIVAILDPKPSKAGPQAVKPTKTRRARVVKVYQNPHSGELIETKGGNHRGLKAWKEQYGAQTVDSWLRGNANANANANA
D1-35_02664636hypothetical proteinATGATACGCAAGGCGCGCGCCATCGCCAAACCGCGTGTGGCTATTGCCTGGTGCTGCGGCGGGCTTCAGACTTTACGATTCGTCCTTGAGTGCAACGCAATGATTCGACCTTGTCTTACGCTGTTCATTCTCTTGTCAGCCGGCATTGCGAGTAGCGGTGCCCTTGCGCTCGAACCGCAGGTTGCGTGGCCATCGGGCTGGGTAGTCGAGTCGCTCCCCGCGCCAGCGTCCACACCGGCGAGTGCGCAGTCGATCAGTCGTGAACGCGCGACCAAGAACGATTCCGCGGGTAATGCGGTGATGGTGATGGAACTGACAACCACGCCGGTCGAACCCGATCATCAGGTCAACTTGCAAGGTGTGTTGCTGGAGATGCGAAAATCCGTTCAGAAGGATTTTTTCCAGGGCGGTTATCAAAGCGTCTGCAATAAGATTCATTCTTCCCTGTTGGGCGGGACTGCAGCGCTGGAAACCACTTGCACGATCACGCAGAACGGCAGACACGTGTTGTCTCAAACACTTGTTGCTGCGCTAAAAGAGGGCAGGGCGTATGTGCTGTCCTACGCCGGCCAGGCCCAGGTATTTGATGAAAGCCAGGAGGAAGTTCAGTCTGTAAGAAATAGCCTGAAACTCTAAMIRKARAIAKPRVAIAWCCGGLQTLRFVLECNAMIRPCLTLFILLSAGIASSGALALEPQVAWPSGWVVESLPAPASTPASAQSISRERATKNDSAGNAVMVMELTTTPVEPDHQVNLQGVLLEMRKSVQKDFFQGGYQSVCNKIHSSLLGGTAALETTCTITQNGRHVLSQTLVAALKEGRAYVLSYAGQAQVFDESQEEVQSVRNSLKLNANANANANA
D1-35_02665522gloALactoylglutathione lyaseATGAGCCTGCACGAACTCGACACTTTCCCAGGCGTTACTGCCCAGCCCGACGCCGCCACGGCCAGATTCGTCTTCAACCACACCATGCTGCGGGTCAAGGACATCACCAAGTCCCTCGACTTCTACACCCGTGTACTGGGTTTCTCGCTGGTGGAAAAACGCGATTTTCCCGAAGCCGAATTCAGCCTTTACTTCCTCGCACTGGTCGACAAGAGCCAGATCCCGGCAGACGCCGCGGCGCGTACCGAGTGGATGAAGTCGATCCCCGGCATCCTCGAACTGACGCATAACCATGGCACAGAAAACGATCCGGCGTTTGCCTACCACAACGGCAACAGCGACCCGCGCGGTTTCGGCCACATCTGCATCTCGGTGCCGGACGTCGTTGCCGCCTGCGAGCGCTTCGAAGCGCTGGGCTGCGACTTCCAGAAGCGCCTGAGCGATGGCCGCATGAAGAGCCTGGCGTTCATCAAGGACCCGGATGGCTACTGGGTCGAGATCATTCAGCCTGCGCCGCTGTAGMSLHELDTFPGVTAQPDAATARFVFNHTMLRVKDITKSLDFYTRVLGFSLVEKRDFPEAEFSLYFLALVDKSQIPADAAARTEWMKSIPGILELTHNHGTENDPAFAYHNGNSDPRGFGHICISVPDVVAACERFEALGCDFQKRLSDGRMKSLAFIKDPDGYWVEIIQPAPLPGPT0013300_1169DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BLEOMYCIN_RESISTANCE,PGPT0013300-gloA|ywbC-K01759NANA
D1-35_026661563ahpFCOG3634Alkyl hydroperoxide reductase subunit FATGTTGGACGCCAATCTTAAAGCTCAGTTGAAGTCATACCTGGAACGGGTCACCCAGCCGATCGAGATCGTTGCATCCCTCGACGACGGTGCGAAATCCCAGGAAATGCTTGCATTACTCAAAGACGTTGCCAGTCTTTCCAACCAGATTACCTTGCTCGACAACGGTACTGATGCGCGCAAGCCATCGTTCTCGTTGAATCGCCCGGGAGCCGATATCAGCCTGCGCTTCGCCGGCATTCCCATGGGGCACGAATTCACTTCGCTGGTGCTGGCCCTGCTGCAAGTCGGCGGCCACCCTTCGAAGGCCAGTGTCGAAGTGATCGAACAGATCCGCTCGCTCAAGGGCGAGTTCAACTTCGAGACGTATTTCTCGCTGTCATGCCAGAACTGCCCGGACGTGGTCCAGGCGTTGAACCTGATGGCGGTGCTGAACCCGAACATCCGTCACGTCGCCATCGACGGCGCGCTGTTCCAGGCCGAAGTCGACGAACGCCAGATCATGGCGGTGCCGAGCATCTACCTGAACGGCGTCAACTTCGGCCAGGGCCGCATGGGCCTGGAAGAAATCCTCGCCAAGATCGACACCAGCGGCATCGAGCGTCAGGCCGAGAAGATCAGCGCCAAGGATGCTTTTGATGTACTGGTGGTCGGCGGTGGCCCGGCCGGTGCTTCGGCAGCGATCTACGCCGCCCGTAAAGGCATCCGCACCGGTGTCGCGGCCGAGCGTTTCGGCGGCCAGGTGCTCGACACCATGGCGATCGAGAACTTCATCTCGGTCCAGGAAACCGAAGGCCCGAAACTGGCCGTCGCCCTGGAAGAGCACGTCAAGCAGTACGACGTCGACATCATGAACCTGCAACGTGCCGACGCTTTGGTCGCTGGCAAAGACGGCGGGCTGCATGAGATCAAGTTCGCCAGCGGTGCGAGCCTCAAGGCCAAGACCGTGATCCTGGCGACCGGTGCCCGCTGGCGTGAAATGAACGTGCCGGGTGAGCAGCAATACCGCAACAAGGGCGTGGCGTACTGCCCGCACTGTGACGGTCCGCTGTTCAAAGGCAAGCGCGTAGCGGTGATCGGCGGCGGCAACTCCGGCGTCGAAGCGGCTATCGACCTCGCGGGTATCGTGGCTCATGTCACCTTGCTGGAGTTCGACGTGCAATTGCGTGCCGACGCGGTGTTGCAGCGCAAACTGCACAGCCTGCCGAACGTGACGGTGATCACCAACGCCCAGACCACCGAAGTGACGGGCGACGGCCAGAAGGTCAACGGTTTGCGCTACAAGGACCGTCCAAGCGGTGAAGTGCGCGACGTGACGCTGGAAGGCATCTTCGTGCAGATCGGCCTGTTGCCAAACACCGATTGGCTCAAGGGCACCGTCGAGCTGTCGCCGCGTGGCGAGATCATCGTCGATGCGCGCGGTGAAACCTCGATTCCGGGTGTGTTCGCCGCCGGTGACGTGACCACCGTGCCGTACAAGCAGATCGTGATCGCCGTGGGCGAGGGTGCCAAGGCTTCGTTGAGCGCCTTCGATCACCTGATCCGTACGTCCGCCCCGGCCTGAMLDANLKAQLKSYLERVTQPIEIVASLDDGAKSQEMLALLKDVASLSNQITLLDNGTDARKPSFSLNRPGADISLRFAGIPMGHEFTSLVLALLQVGGHPSKASVEVIEQIRSLKGEFNFETYFSLSCQNCPDVVQALNLMAVLNPNIRHVAIDGALFQAEVDERQIMAVPSIYLNGVNFGQGRMGLEEILAKIDTSGIERQAEKISAKDAFDVLVVGGGPAGASAAIYAARKGIRTGVAAERFGGQVLDTMAIENFISVQETEGPKLAVALEEHVKQYDVDIMNLQRADALVAGKDGGLHEIKFASGASLKAKTVILATGARWREMNVPGEQQYRNKGVAYCPHCDGPLFKGKRVAVIGGGNSGVEAAIDLAGIVAHVTLLEFDVQLRADAVLQRKLHSLPNVTVITNAQTTEVTGDGQKVNGLRYKDRPSGEVRDVTLEGIFVQIGLLPNTDWLKGTVELSPRGEIIVDARGETSIPGVFAAGDVTTVPYKQIVIAVGEGAKASLSAFDHLIRTSAPAPGPT0013150_1006DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013150-ahpF-K03387NANA
D1-35_02667564ahpC_2COG0450Alkyl hydroperoxide reductase CATGCCTATCATCAACAGCCAAGTTAAACCGTTCAAAGCTACCGCTTTCAAAAACGGCGCATTCGTCGAAGTCTCGGACGCCGACCTGAAAGGCAAGTGGTCTGTCGTGTTCTTCTACCCGGCTGACTTCACCTTCGTTTGCCCAACCGAACTGGAAGACCTGGCCGACAACTACGCCGAGTTCCAGAAGCTGGGCGTCGAGATCTACAGCGTGTCGACCGACACTCACTTCGCCCACGCTGCCTGGCACAACACCTCGCCAGCCATCGGCAAGATCCAGTACACCATGATCGGCGACCCGACCCTGGCCATCTCGCGCAACTTCGACGTGCTGATCGAAGAAGCCGGTCTGGCGGATCGCGGTACTTTCGTGATCAACCCTGAAGGCCAGATCAAGATCGTTGAAATCAACGACGGCGGTGTAGGCCGTGACGCTTCCGAGCTGCTGCGCAAGATCAAGGCTGCTCAGTACGTTGCTGCCCACCCAGGCGAAGTCTGCCCAGCCAAGTGGAAAGAAGGCGAGGCCACTCTGGCTCCGTCCCTGGACCTGGTCGGCAAGATCTAAMPIINSQVKPFKATAFKNGAFVEVSDADLKGKWSVVFFYPADFTFVCPTELEDLADNYAEFQKLGVEIYSVSTDTHFAHAAWHNTSPAIGKIQYTMIGDPTLAISRNFDVLIEEAGLADRGTFVINPEGQIKIVEINDGGVGRDASELLRKIKAAQYVAAHPGEVCPAKWKEGEATLAPSLDLVGKIPGPT0003260_474DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0003260-ahpC-K24119NANA
D1-35_026681356garBGlutathione amide reductaseATGGCCTACGATTTTGACCTGTATGTGATTGGCGCCGGTTCCGGCGGTGTTCGAGCCGCACGGTTTGCCGCCGGTTTTGGAGCCAAGGTGGCCGTGGCGGAAAGCCGCTACCTGGGCGGCACCTGCGTGAACGTCGGCTGCGTGCCGAAAAAACTGCTGGTCTACGGCGCGCATTACGCCGAGGACTTCGAGCAAGCGTCGGCCTATGGCTGGACAGCGGGCGAGGCGAGTTTCGACTGGGCCACGCTGATCGCCAACAAGGATCGCGAGATCAATCGCCTCAACGGCATCTATCGCAACCTGCTGGTCAACAGCGGTGTCACTCTGCATGAAGGTCACGCGAAGATTACCGGCCCTCACGAAGTGGAAATCAACGGCCAGCGCCACACCGCACAGCACATCATGATCGCCACGGGCGGCTGGCCGGTGATCCCGGACATTCCGGGGCGCGAGCACGCCATCAGTTCCAACGAGGCGTTTTTTCTCAAATCGCTGCCCAAGCGCATGCTGGTGGTTGGTGGTGGCTATATCGCAGTGGAGTTCGCCGGGATTTTCCATGGCATGGGCGCGCGGACCTCCTTGCTGTATCGCGGCGACCTGTTCCTGCGCGGCTTCGACGGCGCGGTGCGCAAACACCTGGCCGAAGAGCTGCAACGCCGTGGCCTCGACCTGCAATTCAAGGCCGACATCCAGCGCATCGACAAGGAAGCCGACGGCAGCCTGAAGGTGACGCTCAAGGACGGTCGCACGCTGGTCACCGATTGCGTGTTCTACGCCACTGGCCGCCGCCCGATGCTGGACAACCTCGGCCTGGAGAACACCGGCGTCACGCTGGACGACAAGGGTTTTGTGCAGGTCAACGAAAAGTACGAGACCGCCGAGCCGTCGATCCTGGCGATTGGCGACGTGATCGGTCGCGTGCAGTTGACCCCCGTCGCACTGGCCGAAGGCATGGCAGTGGCGCGGCGCCTGTTCAAGCCCGAGCAATACCGTCTGGTGGATTACCGGATGATTCCCACGGCCGTGTTCAGCCTGCCAAACATCGGCACCGTTGGCCTGACTGAAGAGCAGGCCCGGGAGGAGGGCCATGAGGTGCAGATTTTCGAAAGCCGTTTCCGGCCGATGAAGCTGACTCTCACCGAGTGCCAGGAGCGCACGCTGATGAAGCTGGTGGTCGACGCCAGCTCCGACAAGGTGCTGGGTTGCCACATGGTCGGGCCGGACGCCGGGGAAATTGTCCAGGGCCTGGCGATCGCCCTCAAGGCCGGGGCCACCAAGCGCGACTTCGACGAGACCATTGGCGTGCACCCAACCGCCGCCGAAGAATTCGTCACCATGCGCACGCCAACCGCCTGAMAYDFDLYVIGAGSGGVRAARFAAGFGAKVAVAESRYLGGTCVNVGCVPKKLLVYGAHYAEDFEQASAYGWTAGEASFDWATLIANKDREINRLNGIYRNLLVNSGVTLHEGHAKITGPHEVEINGQRHTAQHIMIATGGWPVIPDIPGREHAISSNEAFFLKSLPKRMLVVGGGYIAVEFAGIFHGMGARTSLLYRGDLFLRGFDGAVRKHLAEELQRRGLDLQFKADIQRIDKEADGSLKVTLKDGRTLVTDCVFYATGRRPMLDNLGLENTGVTLDDKGFVQVNEKYETAEPSILAIGDVIGRVQLTPVALAEGMAVARRLFKPEQYRLVDYRMIPTAVFSLPNIGTVGLTEEQAREEGHEVQIFESRFRPMKLTLTECQERTLMKLVVDASSDKVLGCHMVGPDAGEIVQGLAIALKAGATKRDFDETIGVHPTAAEEFVTMRTPTAPGPT0013175_1850DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013175-gor-K00383NANA
D1-35_02669840gtaBCOG1210UTP--glucose-1-phosphate uridylyltransferaseATGATCAAGAAATGCTTGTTCCCAGCAGCCGGTTACGGTACTCGCTTCCTGCCAGCGACTAAAGCCATGCCCAAAGAAATGCTGCCGGTGGTGAACAAGCCACTGATCCAGTACGGTGTCGAAGAAGCCCTTGACGCAGGCCTGACGGAAATTTCCATCGTCACCGGCCGTGGCAAGCGCGCCCTGGAAGACCATTTCGACATCAGCTACGAGCTGGAAAACCAGATCAAGGGCACCGACAAGGAAAAATACCTGGTCGGCATCCGCAAGCTGCTGGACGAGTGCTCGTTCTCCTATACCCGCCAGACCGAAATGAAAGGCCTGGGCCACGCGATCCTGACCGGTCGCCCGCTGATCGGTGACGAACCGTTCGCCGTGGTGCTGGCGGATGACTTGTGCGTCAACCTCGAAGGCGACGGCGTACTGACCCAGATGGTCAAGCTGTACAAGCAGTTCCGCTGCTCCATCGTGGCGATCCAGGAAGTGGATCCGCAGGAAACCAACAAGTACGGTGTGATCGCCGGCGAGATGATCCGCGAAGACATCTACCGGGTTCACAGCATGGTCGAGAAGCCAAAGCCTGAAGACGCACCGTCGAACCTGGCGATCATCGGCCGCTACATCCTGACTCCGGACATCTTCGACCTGATCGAACAGACCGAGCCAGGCAAGGGCGGTGAAATCCAGATCACCGACGCGCTGATGAAACAAGCCCAGAACGGCTGCGTGATGGCCTACAAGTTCAAGGGCAAGCGTTTCGACTGCGGTGGCGCCGAAGGTTACATCGACGCGACCAACTTCTGCTTCGAGAACTTCTACAAGACCGGCAAGGCTTACTGAMIKKCLFPAAGYGTRFLPATKAMPKEMLPVVNKPLIQYGVEEALDAGLTEISIVTGRGKRALEDHFDISYELENQIKGTDKEKYLVGIRKLLDECSFSYTRQTEMKGLGHAILTGRPLIGDEPFAVVLADDLCVNLEGDGVLTQMVKLYKQFRCSIVAIQEVDPQETNKYGVIAGEMIREDIYRVHSMVEKPKPEDAPSNLAIIGRYILTPDIFDLIEQTEPGKGGEIQITDALMKQAQNGCVMAYKFKGKRFDCGGAEGYIDATNFCFENFYKTGKAYPGPT0014875_5421DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-TEICHOIC_ACID_METABOLISMCE-EPS-TEICHOIC_ACID_METABOLIC_PATHWAY,PGPT0014875-gtaB|UGP2|galU|galF-K00963NANA
D1-35_02670216hypothetical proteinATGTCGGCAACTCCAAACGCAAACGGTTACTCGGTCAGCCAGGACAAGGACGGCCAGTGGTGGATTACCAATTACCACGGTGAACAGGTCGCCGGCCCCTTGCCCAGCAAGGCCATGGCGGTGGAAGTGGCTGCGGTATTCCAGGATGAACGCTCTGCCCCGGCGCCCCGGGAGCGCGAAAAGGCTCCGGCACGCAATACTCGCCGCAAGAAATAGMSATPNANGYSVSQDKDGQWWITNYHGEQVAGPLPSKAMAVEVAAVFQDERSAPAPREREKAPARNTRRKKNANANANANA
D1-35_02671336hypothetical proteinATGGCCATTCGCTATAATCTCGCGCCATTCCTCCCCCCTCTCGATGACGATCCCATGAAAACACTTCTGGCGCTGTTTACAGTCCTGGCCCTGGCGGGCTGTGCCTCAGCGGAAAAAACCTACCTGGCCAACGGTGAACAAGGCCTGGCCATCGACTGCTCGGGCGAAGCCAATTCCTGGGCGACCTGCTACGAAAAAGCCGATGCGTCCTGCGCCGGCACGGGTTATCGCATCGTCGGCACCGACGGCACACCACAAGCCAAGGAAAGCGAAAAGACTCTGGGGGTCGACGTGGGCAACTTCAGCAGCCGCAGTGTCGTCGTGGTGTGCAAATAAMAIRYNLAPFLPPLDDDPMKTLLALFTVLALAGCASAEKTYLANGEQGLAIDCSGEANSWATCYEKADASCAGTGYRIVGTDGTPQAKESEKTLGVDVGNFSSRSVVVVCKNANANANANA
D1-35_02672231hypothetical proteinATGAAACGCGAACAGGTGCGCGAGCGCCATGCAGAAGGCCTGATCTGCGCCACCCATGTGATCCAGAACCCTGGGAGCCCGGGCGAGTGGATCGTGTTCTTCAAGAAAAGCGCCGGGCGCAGTTTTTTTCTGGTGGACGACCAGGACGAAGTTGAATCCTTCTCCCGGCTCGACGACCTGATCGAGACCTTGCGGGGCCTGGGGATCAAGTTCGCCGAGATTCACATCTAGMKREQVRERHAEGLICATHVIQNPGSPGEWIVFFKKSAGRSFFLVDDQDEVESFSRLDDLIETLRGLGIKFAEIHINANANANANA
D1-35_02673351hypothetical proteinATGAAGCGCAGCGTGTGGGTATTGGCCTTGGCCCTGAGTGGATGTGCGTCGGTATCGGACATCAACCAGACACCGCCCACCATGAGCGTCATCTCCGGAAAGAAGCCCCATGAATACGCCCGGTGTGTTGCCGACAAGCTGCTCGAGAGCCGTGGCCCGCTGCAAATGGAGCCGCATAAAAACGGCGTTCGGGTGATCGTTCCCGGCAAGCTGTCGGCGCTGCCGGCGGCGGTGTTCGACATCGACGAGCGCTCCAGCGGCAGCAGCATCAAGCTGCATGAAAGCATGTCCAACGTGCCCGTGCGCCCAGGGGATGTACAGGACGCGGCCAACGCCTGCATTTCCGGTTGAMKRSVWVLALALSGCASVSDINQTPPTMSVISGKKPHEYARCVADKLLESRGPLQMEPHKNGVRVIVPGKLSALPAAVFDIDERSSGSSIKLHESMSNVPVRPGDVQDAANACISGNANANANANA
D1-35_02674303hypothetical proteinTTGAAATTCATCCACCAGCGCGAGCACCTCAACGAGGACGATATCGTCGTTATCGAATGCTCCCAAATGTGCAACATCCGTTTGATGAACGACGCCAATTTCCGCAGCTTCAAGAACGGTGGCCGGCACACGTACCATGGCGGCTCGTTCGACACGTTCCCGGCCCGGATCACCGCACCGAGCACAGGCTTCTGGAACATCACCATCGACACCGTCAACCGTCGCGCCATCAGCGTTACCCGCAAGCCGACCCTGACCCACAAGATCAAGATCATCCGGCGCTCCAGCTCGAAACTGAGCTGAMKFIHQREHLNEDDIVVIECSQMCNIRLMNDANFRSFKNGGRHTYHGGSFDTFPARITAPSTGFWNITIDTVNRRAISVTRKPTLTHKIKIIRRSSSKLSNANANANANA
D1-35_02675171hypothetical proteinGTGGCCCAGACGACCAAATACGTCATCAAGTACAAGCTCAACGGCGAACGCCGCTTCGAGTTCGCGCAGTTGCAAAATGGCACCGAGGAAGAAGCCCTGGCAGAGCTGAAGAAGTTGCATGGCGAGAGCGATGATGTGATCAGCGACCTCAAGGTCAGCAAGGCCCTATAAMAQTTKYVIKYKLNGERRFEFAQLQNGTEEEALAELKKLHGESDDVISDLKVSKALNANANANANA
D1-35_02676720hypothetical proteinATGCCCCCTAAGTCCTCCCTGCCCCGCCCCATCGCCGACCTCGACTGGCCCGCCCTGGAACAAGACCTCGACCAGGACGGCTGCGCGATCATTCGCAACCTGCTGCCGGCAGCGTTGTGCCTGGAGCTGCGAGGCTTGTACAGCGACCCGGGGCTGTTTCGTTCCCGCGTGGTGATGGCCCGTCATGGATTCGGACGCGGCGAGTACCAGTACTTTGCTTATCCGCTGCCCAAGGTTGTCCAGCAACTACGTCAATCGCTGTATCCGCGGCTGGTGCCGCTGGCCAACCGCTGGAACGATTGCATGGGCCTGCCAGTGCGCTATCCCGAGCAGCACGCCGATTTCATCCGGCGCTGCCACGACGCCGGCCAACAACGCCCTACGCCGCTGCTGCTGCAATATGGCCCGCAGGACTACAATTGCCTGCATCAGGACCTGTACGGCGAGCACGTATTCCCGTTGCAGGTGGCGATCCTGCTGGCGGAACCGGGCGAGGACTTTGCCGGCGGCGAATTTGTCCTCACCGAACAGCGCCCGCGCATGCAGTCACGACCACAAGTCATCGATCTGAAACAGGGCGACGCCGTGGTGTTCGCCGTACACCAGCGACCCGTCAACGGCGTTCGCGGTTATTATCGAGTGAACCTGCGCCATGGCGTCAGCCGCTTGCACAGCGGCCGCCGGCATACACTTGGGATCATTTTTCATGATGCGCAATGAMPPKSSLPRPIADLDWPALEQDLDQDGCAIIRNLLPAALCLELRGLYSDPGLFRSRVVMARHGFGRGEYQYFAYPLPKVVQQLRQSLYPRLVPLANRWNDCMGLPVRYPEQHADFIRRCHDAGQQRPTPLLLQYGPQDYNCLHQDLYGEHVFPLQVAILLAEPGEDFAGGEFVLTEQRPRMQSRPQVIDLKQGDAVVFAVHQRPVNGVRGYYRVNLRHGVSRLHSGRRHTLGIIFHDAQNANANANANA
D1-35_02677681alkBCOG3145Alpha-ketoglutarate-dependent dioxygenase AlkBATGATGCGCAATGACCACACGCCCATCACCCTGGATCTGTTCGCCGACCAACCGCCCACCACGCCCGGCGAGGTCGAACAGATCGGCCAGCAATCCTTCGTATTACGCGGGTTTGCCCTGCCCTGGCTCGACCGCGTGCTGCCGGCGCTGGAAAGCGTCTTGCAGGCGGCGCCATTCCGGCAGATGGTCACGCCCGGCGGCTTTACCATGTCGGTGGCCTTGACCAGTTGCGGCGCGCTCGGCTGGACCACCGACCGCAGCGGCTATCGCTACACGGCCCACGATCCGCAGACCGGCCAGCCCTGGCCCGACATGCCACAGCTGTTTCGCGACCTGGCCCGTAACGCCGCCCGGCAGGCGGGGTTCGAACATTTCGAGCCCGATGCCTGCCTGATCAACCGCTACGTGCCCGGCGCCCGAATGTCGCTGCACCAGGACAAGAACGAACGCTCCCTGACGGCCCCCGTCGTCTCGCTCTCCCTGGGCCTGCCGGCGATGTTCCAGTTCGGCGGGTTCGAGCGCAGCGACAAAAGCCAGCGCATTGCGCTGTTCCACGGCGACATCGTGGTCTGGGGCGGTGTGGATCGCTTGCGTTACCACGGCGTGCTGCCACTCAAGCCGGGAGAGCATCCGACGCTGGGTGCCCAGCGGATCAATCTGACGTTCCGCATGGCCGGATAAMMRNDHTPITLDLFADQPPTTPGEVEQIGQQSFVLRGFALPWLDRVLPALESVLQAAPFRQMVTPGGFTMSVALTSCGALGWTTDRSGYRYTAHDPQTGQPWPDMPQLFRDLARNAARQAGFEHFEPDACLINRYVPGARMSLHQDKNERSLTAPVVSLSLGLPAMFQFGGFERSDKSQRIALFHGDIVVWGGVDRLRYHGVLPLKPGEHPTLGAQRINLTFRMAGNANANANANA
D1-35_026781074ada_1COG0350Bifunctional transcriptional activator/DNA repair enzyme AdaATGAACAGCACTTCAAACACTCTCGCCTCTGAACAGGATCCCCGCTGGGCCGCCGTGCTTGCCCGGGACCCGCGTGCCGACGGGCAATTTGTCTATGGCGTGAAAACCACCGGTATCTACTGCCACCCCAGCAGCCTGTCGCGCTTGCCCAACCCGCGTAACGTCGAATTCTTCGACACGCCGGAACAGGCCCAGGCGGCCGGCTATCGCCCCAGCAAACGCCTGGCCAGGGACCAGACCCAGATCGCCGCGCAACAGGCCGCCCGGGTCGCGGCGGCCTGCCGGCAGATCGAGGCCGCCGAGGAACTGCCAGGCCTGAATGAACTGGCGCTGAGCGCGGGTTTGAGCCCTTTTCATTTCCATCGCGTTTTCAAGTCTGTCACCGGCCTGACGCCCAGGGCCTACGCCGCCGCCCACCGCTCGCGCAAAGTGCGCGAACGCCTGGCCGAAGCCGGGACGGTGACCGAGGCGCTGTATGACGCCGGTTTCAATTCCAACAGCCGCTTCTATGAAGCCGCCGACAAAGTCCTCGGCATGAAACCGGCCGACTACCGCGCCGCCGGGCAGAACACCGACATTCGCTTCGCCGTCGGCCAGTGCTCCCTGGGGGCGATCCTGGTGGCGCAAAGCGACCGTGGCGTGTGCGCGATTCTGCTGGGGGACGATCCGGACGCACTGGTACGCGACCTGCAGGACAAATTCCGCCGCGCCAACCTCATCGGCGCCGACCGGGAATTCGAGCAGTTGATTGCCCAGGTCGTGGGATTCATCGAAGCACCGGCCCTGGGCCTCGACTTGCCGCTGGACCTGCGCGGCACGGCCTTTCAGGAACGGGTCTGGCAAGCCCTGCGGGAGATTCCGCCGGGCAGCACCGCCAGCTACGCTGAGATTGCCCAGCGCATCGGCCTGCCCAAGGCCGTTCGCGCCGTGGCCCAGGCCTGCGGTGCCAACAGCCTCGCCGTGGCGATCCCCTGCCACCGGGTGGTGCGCAGCGACGGCAACCTCTCGGGCTATCGCTGGGGCGTCGAGCGCAAGCGTCAGCTGCTGGCGCTGGAACGTTCGTCGGCAGACTGAMNSTSNTLASEQDPRWAAVLARDPRADGQFVYGVKTTGIYCHPSSLSRLPNPRNVEFFDTPEQAQAAGYRPSKRLARDQTQIAAQQAARVAAACRQIEAAEELPGLNELALSAGLSPFHFHRVFKSVTGLTPRAYAAAHRSRKVRERLAEAGTVTEALYDAGFNSNSRFYEAADKVLGMKPADYRAAGQNTDIRFAVGQCSLGAILVAQSDRGVCAILLGDDPDALVRDLQDKFRRANLIGADREFEQLIAQVVGFIEAPALGLDLPLDLRGTAFQERVWQALREIPPGSTASYAEIAQRIGLPKAVRAVAQACGANSLAVAIPCHRVVRSDGNLSGYRWGVERKRQLLALERSSADNANANANANA
D1-35_02679489hypothetical proteinATGGACGTGAAACTCAAGATCGTCGAACCCTTCACCGTCGCCGGTTTGCAGGTGCGCACCCGCAATGCCGACGAGCAGCAAGGCGACACGGCAAAGATCGGCCCGATGTGGCAGCAGTTCTTCACCGAAGGGCTGTTCGAAAACGTTCCGGCCCGGCAGTCCGAGTCGTTCGTCTATGGGGTGTATTCCGATTACGAGTCCGATGCCACCGGCTACTTCAACGTGACGGCCGGTGTGCAGGTCGATGCCACGAGCGCAGGTTACCCCGCCGTGGACGTCGAGGGCGGGGATTACCTGGTGTTTTCGGCCAAGGGGCCGATGCCCGATTGCGTGATCCAGGCCTGGGGCCTGATCTGGGCGTACTTCGCCGATAACCCGCGAACCGTGCGCCGGTTCACCACCGATTTCGAGGTCTACAACGCGCCCGACTCGGTGGCGATCTATATCGGCGTTCAGTCTGCCGACGAACGTTCCAGCGCCAGCAGCTGAMDVKLKIVEPFTVAGLQVRTRNADEQQGDTAKIGPMWQQFFTEGLFENVPARQSESFVYGVYSDYESDATGYFNVTAGVQVDATSAGYPAVDVEGGDYLVFSAKGPMPDCVIQAWGLIWAYFADNPRTVRRFTTDFEVYNAPDSVAIYIGVQSADERSSASSNANANANANA
D1-35_026801062pnoANitronate monooxygenaseATGAGTCAGTGGCCAGACACCCGCATTCTCGACCTGCTCGGCATCGAGCTGCCCATCATCCAGGGGCCTCTGGCCGGCGTAACCGGTCCGGCCATGGTAGTCGCCACCTGCAATGCCGGCGGGCTGGGCTCGATGCCGGCGGCGATGCTCGACGTGGAGCAACTGCGCCAGGCGCTGACGACCATCAGCGAACAGACCGACAAACCGTTCAACGTGAATTTTTTCTCGCACCAGCCACCGGCGTTCGATGAACAACGGGCCGAGGCCTGGAAACAGCGGCTCAAGCCTTATTACGAAGAACTGGGCGCCGACTTCGAAGCGCCGACGCCGGTGTCCAATCGCACCCCGTTCGATGATGCGGCCTGCCGCGTGCTCGAGGAACTGCGGCCCAAGGTGGTCAGCTTCCACTTCGGCCTGCCGGAAAAAACCTTGCTGGATCGGGTCAAGGCCACCGGCGCGAAGATCCTCTCCTCGGCCACCACCGTCGAAGAAGCCATCTGGCTCGAACAGCACGGCTGCGACGCGATCATCGCCATGGGCTATGAGGCCGGCGGTCATCGCGGGATGTTCCTGAGCGAGGACCTCAACACCCAGGTGGGTCTGTTCGCCCTGCTGCCGCAAGTGGTGGATGCGGTGAAGGTGCCGGTGATCGCCACCGGCGGGATCGGCGACGCGCGCGGGATTGTCGCGGCGTTTGCCCTGGGCGCGTCGGCGGTGCAGTTGGGCAGCGCTTATCTGTTCACGCCGGAAGCCAAGGTCACACCTTCCCACCACCGGGCGCTGCGCACGGCCAGGGAAAGCCAGACCGCCGTCACCAACCTGTTCACCGGCCGCCCGGCCCGGGGCATCGTCAACCGGGTGATGCGCGAGGTCGGCCCGATGAGCCCGCTCGCGCCGGCTTTCCCCCTGGCGGGCGGCGCCTTGATGCCGCTGCGGGCGAAAGACGAAGCAGATTTCGCCAACCTCTGGGCCGGCCAGGCGTTTCCCCTGGGGCGTGAGCTGCCGAGCGGCGAACTGACCCGGCGCTTGGCCGAAGAAGCGCTGGCGCGGTTCAAGGGCTGAMSQWPDTRILDLLGIELPIIQGPLAGVTGPAMVVATCNAGGLGSMPAAMLDVEQLRQALTTISEQTDKPFNVNFFSHQPPAFDEQRAEAWKQRLKPYYEELGADFEAPTPVSNRTPFDDAACRVLEELRPKVVSFHFGLPEKTLLDRVKATGAKILSSATTVEEAIWLEQHGCDAIIAMGYEAGGHRGMFLSEDLNTQVGLFALLPQVVDAVKVPVIATGGIGDARGIVAAFALGASAVQLGSAYLFTPEAKVTPSHHRALRTARESQTAVTNLFTGRPARGIVNRVMREVGPMSPLAPAFPLAGGALMPLRAKDEADFANLWAGQAFPLGRELPSGELTRRLAEEALARFKGPGPT0006800_1673DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-PROPIONATE-3-NITRATE-DERIVATE_RESISTANCE,PGPT0006800-ncd2|npd|pnoA-K00459NANA
D1-35_02681753modACOG0725Molybdate-binding protein ModAATGCGCTCGAACCCTTTCGCCCGGCTGCTGCTGGCTACCTGCTTTTGTGTCAGTGCCGCTCAAGCCGACGAGGTGCAGGTAGCCGTCGCTGCCAACTTCACTGCGCCGATACAGGCCATCGCCGCCGATTTCGAAAAAGACACCGGCCACAAGCTGATAGCCGCCTATGGCGCGACCGGGCAGTTTTATACGCAGATCCAGAATGGTGCGCCCTTCGAAGTCTTCCTCGCCGCCGACGACACCACCCCGGCCAGGCTCGAAAGCGAAGGCGCTACCGTCAAGGGCTCGCGCTTCACCTACGCCATCGGCACGTTGGCGCTGTGGTCGGCCACGGACAACTACGTCGACAACCAGGGCCAGGTCCTGCGCGACAATGCATTCACGCACCTGTCCATCGCCAATCCGAAAACCGCGCCGTATGGCCTGGCCGCGACCCAGGTCCTGGAAAAACTCGGGCTGTCCGCGCCGGTCAAGAACAAGCTCGTCGAAGGCCAGAACATCACCCAGGCCTATCAGTTCGTCTCCACCGGCAACGCCGAACTGGGCTTCGTCGCTCTGTCCCAGGTGTACAAGGACGGCAAGCTGGCAAGCGGTTCGGCATGGATCGTCCCGGCCGAGCTGCATGCTCCGATCAAACAGGACGCGGTGATTCTCGCTAAAGGCCGGGACAACCCTGCCGCCCTGGCCTTGATGGAATACCTCAAGGGCCCGCAAGCCGCCGCCATCATCCAGTCCTTCGGTTATCAACGCTGAMRSNPFARLLLATCFCVSAAQADEVQVAVAANFTAPIQAIAADFEKDTGHKLIAAYGATGQFYTQIQNGAPFEVFLAADDTTPARLESEGATVKGSRFTYAIGTLALWSATDNYVDNQGQVLRDNAFTHLSIANPKTAPYGLAATQVLEKLGLSAPVKNKLVEGQNITQAYQFVSTGNAELGFVALSQVYKDGKLASGSAWIVPAELHAPIKQDAVILAKGRDNPAALALMEYLKGPQAAAIIQSFGYQRPGPT0008435_3649DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_TRANSPORT,PGPT0008435-modA-K02020NANA
D1-35_02682681hypothetical proteinATGCCGCTGACCGGCGCCGATTACGCGGCCATCTGGTTGACGCTGAAACTGGCGTCGCTGACCACGGTGATCCTGCTGCTCATCGGCACGCCCATCGCCCTGTGGCTGTCGCGCACCCGATCCTGGCTGCGCGGGCCGGTGGGCGCGGTGGTGGCCCTGCCGCTGGTGTTGCCGCCCACCGTGATCGGCTTTTATCTGTTGCTGGCGCTGGGTCCGAACGGCTGGATCGGCCAGTTCACCCAGGCTCTCGGCCTGGGCACCCTCACCTTCAGCTTTACCGGGTTGGTGATCGGCTCGGTGATCTATTCCATGCCGTTTGTTGTCCAGCCCTTGCAGAACGCGTTTTCCGCCATCGGCAATCGTCCACTGGAAGTCGCCGCCACGCTGCGAGCGGGTCCATGGGATACTTTTTTCCACGTTATCCTGCCCTTGGCCCGACCCGGTTTCATCACCGCGGCGATTCTCGGTTTCGCCCACACGGTCGGTGAATTCGGCGTGGTGCTGATGATCGGCGGCAACATCCCGGAAAAGACCCGGGTGGTGTCGGTGCAGATCTACGACCATGTCGAAGCCCTCGAATATGCCCAGGCCCATTGGCTGGCGGCGGCGATGCTGGGGTTTTCCTTCCTGGTGCTGCTGGCGCTGTACTCCAGCCGCCGCACCCGTGCCGGCTGGAGCTGAMPLTGADYAAIWLTLKLASLTTVILLLIGTPIALWLSRTRSWLRGPVGAVVALPLVLPPTVIGFYLLLALGPNGWIGQFTQALGLGTLTFSFTGLVIGSVIYSMPFVVQPLQNAFSAIGNRPLEVAATLRAGPWDTFFHVILPLARPGFITAAILGFAHTVGEFGVVLMIGGNIPEKTRVVSVQIYDHVEALEYAQAHWLAAAMLGFSFLVLLALYSSRRTRAGWSPGPT0008440_2403DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_TRANSPORT,PGPT0008440-modB-K02018NANA
D1-35_026831080btuD_6Vitamin B12 import ATP-binding protein BtuDATGATCCAGGCAAGATTTCAACTCGACCACGGCGACTTTTTCCTCGACCTGGACGTGCAATTGCCTGGCCGTGGGGTGACGGCGCTGTACGGCGAATCCGGCTCTGGCAAGACCACTTGCCTGCGCTGCATCGCCGGCCTGGAGCGACCCTCCCAGGGCTTCATCGAGGTCAATGGCGAAGTCTGGCAAGACAGTGAGCGCGGCGTATTCGTACCACCTCATCAGCGCGCGCTGGGCTATGTTTTCCAGGAGGCGAGCCTGTTTGACCACCTGTCGGTGCGCGACAATCTGGCGTTCGGCCTCAAGCGCGTAGCACCGGCGCAACGGCGCGTGGACATGAACCACGCGACGGAACTGCTCGGCATCGGTCACCTCCTCGACAGGCAACCCCATAACCTCTCCGGCGGCGAACGCCAGCGCGTCGGCATTGCCCGCGCCTTGCTGACCAGCCCGCGACTGCTGCTGATGGACGAGCCACTGGCGGCCCTCGATACGCGGCGCAAAAACGAAATCCTGCCTTACCTGCAACGACTCCACGATGAACTGGACATCCCGGTGCTGTACGTCAGCCATTCCCAGGACGAAGTCGCGCGCCTGGCTGATCACATCGTGCTGCTCGATGCCGGGCGCGCCCTGGCCAGCGGGCCGATCGCCGAAACCCTGGCGCGGCTCGACCTGCCACTGGCCCAGGGCGATGACGCGGGCGTGGTGATCCAGGGCAACGTCAGCGCCCATGACCCGCAATACCAGCTACTTACCCTGACGTTGCCCGACAGCCAGCTCCAGGTGCGTGTCGCCCATCAGCCGATGGCTGTCGGCCGGCCGTTGCGCTTCAAGGTACAGGCGCGGGATGTCAGCCTGAGCCTGGCGAACGATGCACAGACCAGCATTCTCAATCGCCTGCCGGTGACGGTCGTCAGCGAACTGGCGGGCGACAACGCGGCTCATGTACTGATCCGGCTGGAGGCCGCTGGCACGCCGTTGCTGGCGCGGATTACCCGGTATTCCCGGGATCAGTTGAAGCTGCATCCGGGGCAGATGTTGTGGGCGCAGATCAAGGCGGTGGCGGTGTTGGCGTAGMIQARFQLDHGDFFLDLDVQLPGRGVTALYGESGSGKTTCLRCIAGLERPSQGFIEVNGEVWQDSERGVFVPPHQRALGYVFQEASLFDHLSVRDNLAFGLKRVAPAQRRVDMNHATELLGIGHLLDRQPHNLSGGERQRVGIARALLTSPRLLLMDEPLAALDTRRKNEILPYLQRLHDELDIPVLYVSHSQDEVARLADHIVLLDAGRALASGPIAETLARLDLPLAQGDDAGVVIQGNVSAHDPQYQLLTLTLPDSQLQVRVAHQPMAVGRPLRFKVQARDVSLSLANDAQTSILNRLPVTVVSELAGDNAAHVLIRLEAAGTPLLARITRYSRDQLKLHPGQMLWAQIKAVAVLAPGPT0008445_1267DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_TRANSPORT,PGPT0008445-modC-K02017NANA
D1-35_026841038hypothetical proteinATGCCCGACACCCTGCCGCCCGATGCACTCCCGGCTGATCTGCACTACGTCGACGACACCGCCCCGGGCATCACTCGCCGCAAACTGCGGGGCAAGTTCTGCTACTTCGACCCGTCGGGCCAGCGCATTACCGACCCCGCCGAAATCCAGCGGATCAACGCCCTGGCCGTTCCGCCGGCCTACACCGATGTGTGGATCTGCACTGACCCGCGCGGCCACCTCCAGGCCACCGGACGCGACGCCCGAGGGCGCAAGCAATACCGCTACCATGCGCGCTGGCGCGAAGTGCGCGATGCGGACAAGTATTCACGCATGCTCGAATTCGGCCGCACCCTGCCGCGACTGCGCAAACGCCTCGAGGAAATCCTCGCCACGCCCGGTTTCAGCCGCGATAAAGTCCTGGCAACGGTCATCACTTTGCTCGACGTCACGCTGATCCGCGTCGGCAATAGCCAATACGCCCGGGACAACCGTTCCTACGGCCTGACCACGCTGCGCAACAAGCATGTCGCGGTCAACGGCAGCGCCATCGCTTTCCAGTTCCGTGGCAAGAGCGGCGTTGAACACCAGATCACCGTGAAGGACCGACGCCTGGCGCGGATCATCAAGCGTTGCCAGGAAATTCCCGGGCAGAACCTGTTCCAGTACCTGGACGAACACGGCGAGCGCCACGCCGTCACGTCTTCGGACATCAACGCCTACCTCAAGACACTCACCGGCGCCGATTTCACGGCCAAGGACTACCGCACCTGGGCAGGCAGCGCGGCGGCGCTGGACGGACTGCGCACATTGCAGTGGGAAACCGAGACCGAAGCCAAGCGACACGTTGCCGAAATGGTCAGGCAGGTTGCCCGGCAGTTGGGCAATACGCCTGCCGTCTGTCGCAAATGCTACATCCACCCCGCCGTGCTGGAAGGCTTCATGGGCGGCATCCTGAGCGAACTGCCCAAGCCTCGCGTACGCAAAGGACTCAGTGCGCAAGAAGCCGCGCTGACGATGTTCCTGCAGCGCATGGCCCAAGCCGTCGAAGCCTGCTAAMPDTLPPDALPADLHYVDDTAPGITRRKLRGKFCYFDPSGQRITDPAEIQRINALAVPPAYTDVWICTDPRGHLQATGRDARGRKQYRYHARWREVRDADKYSRMLEFGRTLPRLRKRLEEILATPGFSRDKVLATVITLLDVTLIRVGNSQYARDNRSYGLTTLRNKHVAVNGSAIAFQFRGKSGVEHQITVKDRRLARIIKRCQEIPGQNLFQYLDEHGERHAVTSSDINAYLKTLTGADFTAKDYRTWAGSAAALDGLRTLQWETETEAKRHVAEMVRQVARQLGNTPAVCRKCYIHPAVLEGFMGGILSELPKPRVRKGLSAQEAALTMFLQRMAQAVEACNANANANANA
D1-35_02685564clpP_3ATP-dependent Clp protease proteolytic subunitATGTCCGAACACATCGTCCATTTCCATTGCCAGATCGACCAGGGAACCACCGAGCGCTTCCGGGACAATTGCCTGGAAGCCATTGAAAAAGGCGCCGACTCGCTGATGCTCAACCTCTCTACTGTCGGCGGCAGCACCAATTTCGGTTTCACCCTCTATACCTTTATCAAATCCCTTCCGGTGCCCGTGCGCGCGGTGAATGCCGGCAACATCGAGTCGATGGGCATCGTCATGTACCTGGCCGCCAGCGACCGCACCACCACCCCACATTCACGCTTCCTGATACACCCGATGAATTGGTATTTCGGCCAGAAATCGGTGGATCACTCGCGCTTGCGTGAATACCTCTCGAGTCTGGACAACGACGTGGCGCGGTACGTGGAGATCTACGTCAAGGAAACCGCCGGCGCCGCCACGCAACTGGATATCTTCAAATGCCTGTGCGCCGAGGAGCGAGTGATACCGGCGGAAAATTCGCTGGCTTTCGGCATCGCGCACCGGGTGGAACAAGTGGTGTTTGCGCCCGAGGCGAAACACTGGAAAGTCAGCGGCGGCGAGGACTGAMSEHIVHFHCQIDQGTTERFRDNCLEAIEKGADSLMLNLSTVGGSTNFGFTLYTFIKSLPVPVRAVNAGNIESMGIVMYLAASDRTTTPHSRFLIHPMNWYFGQKSVDHSRLREYLSSLDNDVARYVEIYVKETAGAATQLDIFKCLCAEERVIPAENSLAFGIAHRVEQVVFAPEAKHWKVSGGEDPGPT0014595_8549DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014595-clpP-K01358NANA
D1-35_02686180hypothetical proteinATGGCTAATAGCGGAAACAAAAACCCAGGTAACTTCGCAAACGACCGAGAGAAAGCATCCGAAGCCGGCAAGAAAGGCGGACATGCTTCCGGCGGAAACTTTGCCAACGACCGGGAAAAAGCCTCTGAAGCCGGTAAGAAAGGTGGCGAACGCAGCCATGGCGGCGGCAGAAAATCGTAAMANSGNKNPGNFANDREKASEAGKKGGHASGGNFANDREKASEAGKKGGERSHGGGRKSPGPT0002680_752DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_INDUCIBLE_PROTEINS,PGPT0002680-yciG|ymdF|gsiB-K06884NANA
D1-35_02687225hypothetical proteinATGAGCCAGGACCGATTCATTGTCAGTTTCATTGCCGACGGCCAGCCCGATAACCGGGTGCTGGCGGCTGACACCGAGACCCTGAGCACCGAAGAAGCCGAGGCACTCTTGAGAGTGACCTTCACCGAATTGAAAAGCGTCAGGATCAGTGACGTCCAAGTTCAGAAAAGAACCAAGCCAAACGAAACGGAACATAATGTTCCGGGGCACTTCAAACAGCCTTGAMSQDRFIVSFIADGQPDNRVLAADTETLSTEEAEALLRVTFTELKSVRISDVQVQKRTKPNETEHNVPGHFKQPNANANANANA
D1-35_02688753hypothetical proteinATGCTTGGAAAGATCACTCATGGAACCTGGGCCATGCTTTGCGTGGCAACGGTGGGGTTGGCAGGCTGCGCGGGCGGTAACAGCCATTCACCGGTGGACGCGCCAGGAGCCGCGAAGAGCCCGACCACCGCGACGCTGGAAGCCGGGGCGGGGCTCATGCAGAACAAACCCCCGTTGCAAGCGCTGGACACCTACCTGGATGGCTTCCATTTCTACAACGGGCGGATGTCCGGGCAAATGGAAGCGCATCACTACTGCACGGCACTGAACGAAGAAGTGTTCCAGTGCGCCATCTTTGATGCCAACACCGCGAACGCCAAGCTCATGGGCGTGGAGTACATCATCAGCAAGCGCTTGTTCGAGGGCTTGCCGGCCAGCGAAAAACAGTTGTGGCACAGCCATGTGCATGAGGTGAAGTCCGGGCAACTGATCGCGCCAGGGATTCCCGAGGTGGCGGAAACCCGTTTGATGAAAAACCTTGTCAGCACCTACGGCAAGACCTGGCACACCTGGCACACCGAACAGGGCAACGCGCTGCCTTACGGTGTTCCGCAACTGATGATGGGCTTTACCGCCGACGGCCAGATCGACCCTCAGTTGGTGCGTGAGCGCGACAGCCGGATGGGCATCTCCAGCGAAGAGAAAAAACGCGCCCGCGCGGCAATCGAAGCGCCGGCAATCGATCCCGGGGCGGATGCCTGGCAGAAGGGGCAGGTGTGGCAGATCAAGGACCCGACGGGGCATGCTCATTAAMLGKITHGTWAMLCVATVGLAGCAGGNSHSPVDAPGAAKSPTTATLEAGAGLMQNKPPLQALDTYLDGFHFYNGRMSGQMEAHHYCTALNEEVFQCAIFDANTANAKLMGVEYIISKRLFEGLPASEKQLWHSHVHEVKSGQLIAPGIPEVAETRLMKNLVSTYGKTWHTWHTEQGNALPYGVPQLMMGFTADGQIDPQLVRERDSRMGISSEEKKRARAAIEAPAIDPGADAWQKGQVWQIKDPTGHAHNANANANANA
D1-35_02689579hypothetical proteinATGCGCGAGTCTTTTCACGCCACACAAGGAAAATGCGACGCGATGTTCGAGATCAAACCGTGGGACGCCGTGACCTACCGGCAGCAGACCCGCCGCAGCACGCTCATCCTCGCCTTGGTATTCCTGGCCTTGGCGATGCTGCTATCGAGCCTGGCGGTGATGCTGTTCGGCACACCCGGGGGCGATAATTTTCGCTTCAACGTGGGCGGGGTTTTCGCCGCCGTGCTGCTGATGGCCGCGCTCATGCGCGGGTATTTCTGGCAACAGCCGTGGATGGCCGCGGCGGTGTACGGCTGGCAGCTCAAGCGCAGCCTGATGAGCGTTACCAACGTGATGCACCAGGTAAAGGCTGGGGTGCAGGCCCAGGATCCGGCGGCGATGAAGCTGCTGCGCTTCTATCATTTGGGCCTGGCCCAGATGCACCTGCTGGATGCCAACTCCAGCGACCAGGCCTCGTTGAATCGCGAGGCCGATGAACATCTGCAGAACATGCAGGCGCGCGGTCTGGACCCCGAGCAGTCGCGCCTTGACCCGGCCTGGATCGGTACCGTGAAACAGGCCTATAAGGCCCGCGATTAGMRESFHATQGKCDAMFEIKPWDAVTYRQQTRRSTLILALVFLALAMLLSSLAVMLFGTPGGDNFRFNVGGVFAAVLLMAALMRGYFWQQPWMAAAVYGWQLKRSLMSVTNVMHQVKAGVQAQDPAAMKLLRFYHLGLAQMHLLDANSSDQASLNREADEHLQNMQARGLDPEQSRLDPAWIGTVKQAYKARDNANANANANA
D1-35_026901374ppnNCOG1611Pyrimidine/purine nucleotide 5'-monophosphate nucleosidaseATGACTCAAAGACATGTAATCAACGCCTCGGTAAGCCCCAAGGGCAGCCTGGAGACCTTGTCCCAGCGCGAAGTCCAGCAACTGAGCGAAGCCGGTTCCGGCAGCATCTACGATCTTTTCCGCCAGTGCGCCCTGGCTATCCTCAACACCGGCGCCCATGTCGACAATGCCAAGACCATCCTCGAAGCCTACAAGGATTTCGAGATACGCATTCACCAGCAGGACCGGGGCGTGCGCCTGGAGCTGCTGAACGCGCCGGCCGATGCATTCGTCGACGGCGAGATGATCGCCAGCACCCGGGAAATGCTCTTCAGCGCCCTGCGCGACATCGTCTACACCGAGAACGAACTGGACAGCCAGCGCATCGACCTGAGCTCATCCCAGGGCATCAGCGACTACGTCTTCCACCTGCTGCGCAACGCCCGCACCCTGCGTCCCGGCGTGGAACCGAAAATCGTCGTGTGCTGGGGCGGTCATTCGATCAACACCGAAGAATACAAATACACCAAGAAAGTCGGCCATGAACTCGGCCTGCGCAGCCTGGACATCTGCACCGGCTGCGGCCCCGGCGTGATGAAAGGCCCGATGAAAGGCGCGACCATTGCCCACGCCAAGCAGCGTATCCATGGCGGGCGTTATCTGGGCCTGACGGAACCGGGCATCATCGCCGCCGAGGCGCCGAACCCGATCGTCAACGAGCTGGTAATCCTGCCGGACATCGAGAAGCGCCTGGAAGCCTTCGTGCGCGTCGGCCACGGCATCATCATCTTCCCGGGCGGCGCCGGTACGGCGGAAGAGTTCCTCTACCTGCTGGGCATCCTCATGCACCCGGCCAACCAGGACCTGCCCTTCCCGGTCGTGCTCACCGGGCCGAAAAGCGCCGCGCCGTACCTGGACCAGTTGCACGCCTTTGTCGGCGCGACCCTGGGCGAAGCCGCGCAGAAGCACTACCAGATCATCATCGACGATCCGGCTGAAGTGGCGCGGCAGATGACCCAAGGCCTGAAAGAAGTGAAGCAGTTCCGCCGCGAGCGCAACGACGCGTTCCACTTCAACTGGCTGCTGAAGATCGACGAAGGTTTCCAGCGCCCGTTCGACCCGACCCACGCCAACATGGCCAGCCTCGGCCTGAGCCGCGACCTGCCGCCCCACGAACTGGCCGCCAACCTGCGCCGGGCGTTTTCCGGGATCGTCGCCGGTAACGTCAAGGACAAGGGCATCCGCCTGATCGAAGAACACGGCCCGTACGAGATCCACGGCGATCCCGCCATCATGGAACCGCTTGACCGCCTGCTGCAGGCCTTCGTCGCCCAGCACCGGATGAAACTGCCGGGCGGCGCGGCGTATGTGCCGTGCTATCGCGTGGTGACCTGAMTQRHVINASVSPKGSLETLSQREVQQLSEAGSGSIYDLFRQCALAILNTGAHVDNAKTILEAYKDFEIRIHQQDRGVRLELLNAPADAFVDGEMIASTREMLFSALRDIVYTENELDSQRIDLSSSQGISDYVFHLLRNARTLRPGVEPKIVVCWGGHSINTEEYKYTKKVGHELGLRSLDICTGCGPGVMKGPMKGATIAHAKQRIHGGRYLGLTEPGIIAAEAPNPIVNELVILPDIEKRLEAFVRVGHGIIIFPGGAGTAEEFLYLLGILMHPANQDLPFPVVLTGPKSAAPYLDQLHAFVGATLGEAAQKHYQIIIDDPAEVARQMTQGLKEVKQFRRERNDAFHFNWLLKIDEGFQRPFDPTHANMASLGLSRDLPPHELAANLRRAFSGIVAGNVKDKGIRLIEEHGPYEIHGDPAIMEPLDRLLQAFVAQHRMKLPGGAAYVPCYRVVTPGPT0021310_263DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021310-ppnN|ygdH-K06966NANA
D1-35_02691666hxpACOG0637Hexitol phosphatase AATGCCTGTCAGTCTCCCCACCCCCATCGCCTACCGCGCCTTCCTCTTCGACATGGACGGCACGCTGCTCAACTCTGTCGCTGCCACCGAGCGGATCTGGACGCGCTGGGCCATGCGTCATGGCCTGGACGTGGCGACATTCCTGCCGACCATCCATGGCGTGCGCGCTGTCGACACCGTCGCCCGCCAGAACCTGCCGGGCGTGGATGCCCAGGCCGAGGCCGCGCAGCTCACCGTCGAAGAAATCGAGGACGTGGAGGGCGTGGTCGAGGTGCCCGGTGCGCTGGCGTTTCTCAAAAGCCTGCCGCCGACGCAATGGGCAATCGTCACCTCGGCGCCCATGGCCTTGGCTTTGCGCCGCATGGAAGCAGCCGGGATTGTGCGCCCGGCGGTGATGGTGACTGCCGAAGACGTGAGCGCCGGCAAGCCAAACCCCGATTGCTATCTACTCGCGGCGCAGCGCTTGCAAGTGAAACCGCAGGAATGCCTGGTGTTCGAGGATGCCGAAGCCGGTATCAAGGCCGGCGAGGCCGCGGGCGCGGACGTGGTGGTGGTGACGGCCACGCACACGCATCCGGTGGTGACGTTGCACTCGCAGATTGAGGATTACCGTGGGCTGAGCGCCACGGTGGAGGGCGGATTAATGCACCTTCCAAACCACCGCTAAMPVSLPTPIAYRAFLFDMDGTLLNSVAATERIWTRWAMRHGLDVATFLPTIHGVRAVDTVARQNLPGVDAQAEAAQLTVEEIEDVEGVVEVPGALAFLKSLPPTQWAIVTSAPMALALRRMEAAGIVRPAVMVTAEDVSAGKPNPDCYLLAAQRLQVKPQECLVFEDAEAGIKAGEAAGADVVVVTATHTHPVVTLHSQIEDYRGLSATVEGGLMHLPNHRPGPT0018405_65DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_SORBITOL_DEGRADATION,PGPT0018405-hxpB-K19270NANA
D1-35_026921347mepACOG0534Multidrug export protein MepAATGCCTGCCCAGCCACTCTGGAAAACCTACCTGCTGTTCCTGGCCCCCATGGTCCTGTCCAATTTCCTCCAGTCGATGTCCGGTACGCTCAACAGCATCTACATCGGCCAGATGCTCGGTACCCAGGCTTTGGCGGCGGTGTCGGGGATGTTTCCCATCGTGTTTTTCTTCATCGCCCTGGTGATTGGTCTGGGCGCGGGGGCGGGCGTGTTGATCGGGCAGGCCTATGGCGCCGGCGAGACCGGAACGGTGAAGGCGATCGCCGGCTCGACGTTGCTGTTGGGGGCGATCATCGGGTTGGTGGCCGCGGTGTTGGGCAGCGTCTTTGCTCGCGAGGCCCTGCAAGGGCTCGGCACGCCCGACGATGTGCTCGAAGATGCCATTTCTTACGCGCGGGTGATGATGTGGATCCTGCCGATGCTACTGGTGTTCGTGCTCTTCACCCAGCTGCTGCGCGGTGTGAGTGATACCGTCTCGCCGCTGCTGGCGTTGCTGGTATCCACCAGCGTCGGGATGCTGCTGACGCCGGTGCTGATCCGTGGCTGGCTGGGATTGCCACAGATGGGCATCCAGAGCGCGGCGTGGGCGGGCCTGGTGGGTACCGCATCGGCCATGGCCATGCTGGCGTGGCGCCTCAACCGGCGGGCGCATGCCTTGGCGCCGGACCGCGCGCTGTTCGCCGCGATGCGCCTGGACCGGGATATTCTCGCCAAGGTGCTGCGCATCGGCTTGCCGACAGGGTTGCAGATGGTGGTGATTTCGTTGTCGGAGCTGGTCGTCCTGGCGTTGGTCAATCACCACGGCTCCCAGGCCACGGCCGCCTACGGCGCGGTGACGCAGATCGTCAATTACGTGCAGTTTCCGGCGCTGTCGATCGCCATTACCGCCTCGATCCTCGGCGCCCAGGCCATTGGCGCCGGACACCTGGAACGCCTCGGGCCGATCCTGCGCACGGGGCTGTTGATCAACGTCTGGCTGACCGGTGGCCTGGTGCTGCTGGGGTATCTGTTGTCCCACTGGCTGCTGGGGCTGTTCATCACCGACCCGGCGGCGCGGGTCCAGGCCGAGCACCTGTTGCACATCATGCTCTGGAGCCTGCTGGTGTTCGGCTTCCAGGCCATCATCGGCGGCATCATGCGCGCCAGCGGCACGGTGCTGGTGCCGGTGGCGATCTCGATCTTCTGCATCATCGGCGTGCAAGTGCCGGCGGCCTACCTGCTGGACGCGCACTTCGGCCTGCAAGGGGTGTGGATGGCGTTTCCGGTGGCTTACCTGAGCATGCTGATTTTGCAGGCGGTGTACTACAAACGGGTCTGGCAGCATCAGCGGATCGAGCGGTTGGTGTAAMPAQPLWKTYLLFLAPMVLSNFLQSMSGTLNSIYIGQMLGTQALAAVSGMFPIVFFFIALVIGLGAGAGVLIGQAYGAGETGTVKAIAGSTLLLGAIIGLVAAVLGSVFAREALQGLGTPDDVLEDAISYARVMMWILPMLLVFVLFTQLLRGVSDTVSPLLALLVSTSVGMLLTPVLIRGWLGLPQMGIQSAAWAGLVGTASAMAMLAWRLNRRAHALAPDRALFAAMRLDRDILAKVLRIGLPTGLQMVVISLSELVVLALVNHHGSQATAAYGAVTQIVNYVQFPALSIAITASILGAQAIGAGHLERLGPILRTGLLINVWLTGGLVLLGYLLSHWLLGLFITDPAARVQAEHLLHIMLWSLLVFGFQAIIGGIMRASGTVLVPVAISIFCIIGVQVPAAYLLDAHFGLQGVWMAFPVAYLSMLILQAVYYKRVWQHQRIERLVNANANANANA
D1-35_026931218hypothetical proteinATGACGTCGTATTCCCACGACCACTCCCCCGCCAAAACCCAACCACGCATTCTCTGGCACGCCTTGATCGTGGCCATCGCCGCAAGCGTTGGCGTGCTGGCACTTAACGGTGCGAGCACACAGAGCATCGGTTTGAGCATCGTGCTGGTGGTTCTTGGCGTGGCCGTCGGCATCTGGGGCGCGCGTTCACAACGTCTTCAACTCGACGAGGCGACGGCCGCGGCCATCACCCGCCACGAGTTGCAAGCCGCCGGTCATGTTTCCCATAAAGCCAGCGCGCAGCTCAACGAAGTGATCCTCGGCGCGATGCCGATCTGGGCCAAGCAAGTCGAAAGCTCACGCCAGCAGACTGAAACCGCAATCGTCTCGCTGACCAGCCGCTTCACCGGTATCTCTTCGCGCCTCGAAGAGACCGTGCAAGCCTCGCAACAGGCCGCCGGCGAGTTGGCCGGCAGCGGCGGTGGCGGTGCCGTCCAGGTACTGGCGCAGAGCGAAGGCGAACTGGTCAAGGTCATCGACTCGCTGAAAACCACCCAGGCCAGCCGTGATGAAACCCTGACCCAAGTCCGCAACCTGACCGCCTACACCGGCGAACTGCGGACCATGGCCGCCGATGTCGCGGCGATTGCCGCCCAGACCAACCTGCTGGCCCTGAACGCCGCCATCGAGGCCGCCCGGGCGGGCGAAGCCGGGCGCGGTTTTGCGGTGGTGGCCGATGCGGTGCGCGCACTGTCGAGCAAATCCAGCGAGACCGGCCAACAGATGTCGGCCAAGGTCGACGTCATCAATACCGCCATCACCCAACTGGTCCAGGCCGCCTCCAGCGGCGCCGACCAGGACAGCCAGTCCGTGGCCGTGTCCGAAGGCAGCATTCAGCGCGTGCTGGAACGCTTCAAAAGCGTCACCGAGCGTCTCGCCGATTCGGCCGACATGCTGCAACGGGAAAGCTTCGGCATTCGCGACGAGCTCACCGAAGTGCTGGTCAATCTCCAATTCCAGGATCGGGTCAGCCAGATCCTCAGCCACGTGCGCGACAACATGGAGGACCTGCATGTGCACATACAGCAGGCCAACCAGTCGCCCGATCAGGCTATCTCCATCGACGCCCGCCAATGGCTGGCGCGCATGGAAACCACCTACGCCACCGACGAGCAACGCCGCAATCATCATGGCGACTCGGCCGCGCAAAAGACTTCACAGGAAATAACCTTCTTTTAGMTSYSHDHSPAKTQPRILWHALIVAIAASVGVLALNGASTQSIGLSIVLVVLGVAVGIWGARSQRLQLDEATAAAITRHELQAAGHVSHKASAQLNEVILGAMPIWAKQVESSRQQTETAIVSLTSRFTGISSRLEETVQASQQAAGELAGSGGGGAVQVLAQSEGELVKVIDSLKTTQASRDETLTQVRNLTAYTGELRTMAADVAAIAAQTNLLALNAAIEAARAGEAGRGFAVVADAVRALSSKSSETGQQMSAKVDVINTAITQLVQAASSGADQDSQSVAVSEGSIQRVLERFKSVTERLADSADMLQRESFGIRDELTEVLVNLQFQDRVSQILSHVRDNMEDLHVHIQQANQSPDQAISIDARQWLARMETTYATDEQRRNHHGDSAAQKTSQEITFFPGPT0015710_27871DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_02694369cheY_2COG0784Chemotaxis protein CheYATGGCTAAAAGTGTATTGGTTGTCGACGACTCCGCGAGCGTTCGGCAGGTAGTCGGCATCGCGTTGAAAAGTGCCGGCTACGACGTGATCGAAGCCAGCGATGGCAAGGACGCACTGGGCAAGCTCACCGGGCAGAAAGTGCACCTGATCATCAGCGACGTGAACATGCCGAACATGGACGGCATCACCTTCGTCAAGGAGGTCAAGAAGCTCGCCAGCTACAAGTTCACGCCGATCATCATGCTCACCACCGAATCCCAGGAATCGAAGAAGCAGGAAGGCCAGGCCGCAGGCGCCAAGGCCTGGGTGGTCAAGCCGTTCCAACCGGCGCAGATGCTGGCGGCGGTATCCAAGCTGATTCTTCCTTGAMAKSVLVVDDSASVRQVVGIALKSAGYDVIEASDGKDALGKLTGQKVHLIISDVNMPNMDGITFVKEVKKLASYKFTPIIMLTTESQESKKQEGQAAGAKAWVVKPFQPAQMLAAVSKLILPPGPT0015690_3216DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015690-cheY|yneI-K03413NANA
D1-35_02695285hypothetical proteinATGCCGCTGCTGTACGAAACAGAAGATGACACCGCGCAGGTGCAGATCGACGGCGAGCTGACGATCTACACCGCCGCCGACCTGGCCGCACAATTGCTGCCACGGCTGGGGGCCACGCCGAACATGGCACTGGACCTGTCGCAGATCACCGAGATGGACGGCGCCGGCCTGCAACTGCTGCTGATGATTCAGCGCGAGGCACCCAAGGCCGGGACCCAACTGACGGTGACCGGCCAGAGCAAAGCCGTTACGGAGACACTCGCCCTGTGCAACCTCGTTGCCTAGMPLLYETEDDTAQVQIDGELTIYTAADLAAQLLPRLGATPNMALDLSQITEMDGAGLQLLLMIQREAPKAGTQLTVTGQSKAVTETLALCNLVAPGPT0014350_3164DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-TRANSCRIPTIONAL_REGULATION,PGPT0014350-rsbV-K04749NANA
D1-35_026962106cheACOG0643Chemotaxis protein CheAGTGAGCATCAATCTCGATCAGGCACAACAAACGTTTATCGTCGAGGCACGAGAGCAGTTGCAGGCGATGGAAGAATCGCTGCTGCAACTGGAAAACGACCCCGCCGACGATGACGCCATCGGCGCAATTTTCCGCGCGGCCCACACCATCAAGGGTTCGGCCGGGCTGTTCGGCCTGGAGCCGATCGTCAGCTTCACCCACATCGTCGAAGACGTGCTCGACCGCTTGCGTGAAGGCAGCGTCGCGGTGGACCCGGGCCTGATCGCGGTGCTGCTCAAGTCCGGCGATCACATGCTGGAACTGATCGACGTGGTCGCCAACCAGGGCTCGACGTTGCAGCCCCCTGCCCTGGCTCGGGAAATGGAATTGTGCCAGATCCTCCAGGAATACCAGGCGCCCCCGACCGCGCCCGAAACCACTACTGCAGAGGCAACCGAAACGAGCGAGTCAACCGACGCGCGCCTCTGGCACATCACCCTGCGCTTTGGCCAGGAAGTGTTCCGCAATGGCATGGACCCGCTGTCGTTCCTGCGCTATCTGCAGACCCTCGGTGAGATCGTCGAGATCACCACGCTGACTGAGGCGATGCCGGCTATCGAAGCCTGGGATGCCGAATCCTGCTACTTGGGTTTTGATATCGGGTTTCGCTCCTCAGCCGGTCATGCCGCGATCAACGAAGTCTTCGATTTTGTTCGCGAAGATTGCCTCATCGACATCGTTGCCGTGCCAGAGGCGGAGGCAGAGCCCCAGGCGAGCACCGATTTGGTCACCACCGCCCAGACAGCCAGCGAAGAAAGCACCGCCATGGTCACCACCGGCGAGCTGCTGCCAGACCAGCGCAAGACCCCGCGCATGCCGGCCCAGGTCGCGCCCGACAAACAGGCCGTGACCAGCGACGGCAAGAGCAGGGACGGCACGTACGTCCGGGTCAATGCCGACAAACTCGACGAGCTGATCAACCTGGTCGGCGAACTGGTGATCGCCAGTGCCGGCGCCAGCCTGCTGGCCCGCACGTGCCAGAACGACCCGTTGCAGGAGGCCACCTCATCGGTGTCCGGGCTGGTGGAAGAGATTCTCGACGGCGCCCTGCGCCTGCGGATGATCCCGATCGGCGAAACCTTCAACCGTTTTCGCCGGGTGGTGCGCGACGTCAGCCAGGAACTGGGCAAGGACATCGACCTGATCATCAGCGGCGCGGAAACCGAGCTGGACAAGACCGTCGTGGAAAAGATCGGCGACCCGCTCATGCACCTGCTGCGCAACGCCATGGACCACGGCATCGAAACCGCCGAGGCGCGGATGGCCGCCGGCAAACCGGCCAAGGGTCACCTGCACCTCAACGCCTACCACGACTCGGGCAGCATCGTGCTGGAAATCGCCGATGACGGCGCTGGCCTGAACCGCGACCGCATCCTGGAAAAAGCCCACGAGCGCGGCCTGATCGCCGCCGGCGCGAACCTGAGCGACCAGGAAATCTACAACCTGATCTTCGAACCCGGCTTCTCCACCGCCCAGGCCGTCACCAACCTGTCCGGGCGCGGTGTGGGCATGGACGTGGTCAAGCGCAACATCACCCTGCTGCGCGGCACCGTCGACCTCGACAGCCAACCGGGCAAGGGCACCGTGGTGCGCATCCGCCTGCCGCTGACGCTGGCGATCATCAATGGCTTCCTCGTCGGCATCGGCCAGTCCACCTATGTGATTCCGCTGGACATGGTCCAGGAATGCATCGAACTGAGCGAAGACGATGGCGTCGCCAGTCGCGAACAAGGCTACCTCGACCTGCGCGGCGAAGTGCTGCCGCTGGTGTACCTGCGCGATCATTTCCATCACGAAGGCCCGGCCTCGCGCCGGCAGAACGTGGTGGTGGTGCGCTACGCCGAACTCAAGGCCGGGCTGGTGGTGGATGACCTGCTGGGTGAATTCCAGACCGTGATCAAACCCTTGGGCAAGCTGTTCGGCGCACTGCGCGGCATCAGCGGCTCGACCATTCTGGGCAGCGGTGCGGTGGCGTTGATTCTCGACGTACCTGCCCTGCTCACCCAGATCGCACAAACAGAAAACCGCTACAACCCGACCCCATTACAACAAGCCAACGCTCGCTGAMSINLDQAQQTFIVEAREQLQAMEESLLQLENDPADDDAIGAIFRAAHTIKGSAGLFGLEPIVSFTHIVEDVLDRLREGSVAVDPGLIAVLLKSGDHMLELIDVVANQGSTLQPPALAREMELCQILQEYQAPPTAPETTTAEATETSESTDARLWHITLRFGQEVFRNGMDPLSFLRYLQTLGEIVEITTLTEAMPAIEAWDAESCYLGFDIGFRSSAGHAAINEVFDFVREDCLIDIVAVPEAEAEPQASTDLVTTAQTASEESTAMVTTGELLPDQRKTPRMPAQVAPDKQAVTSDGKSRDGTYVRVNADKLDELINLVGELVIASAGASLLARTCQNDPLQEATSSVSGLVEEILDGALRLRMIPIGETFNRFRRVVRDVSQELGKDIDLIISGAETELDKTVVEKIGDPLMHLLRNAMDHGIETAEARMAAGKPAKGHLHLNAYHDSGSIVLEIADDGAGLNRDRILEKAHERGLIAAGANLSDQEIYNLIFEPGFSTAQAVTNLSGRGVGMDVVKRNITLLRGTVDLDSQPGKGTVVRIRLPLTLAIINGFLVGIGQSTYVIPLDMVQECIELSEDDGVASREQGYLDLRGEVLPLVYLRDHFHHEGPASRRQNVVVVRYAELKAGLVVDDLLGEFQTVIKPLGKLFGALRGISGSTILGSGAVALILDVPALLTQIAQTENRYNPTPLQQANARPGPT0015645_2691DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015645-cheA|wspE-K03407NANA
D1-35_026971659hypothetical proteinATGAAATGGTTCTACGACCTTAGAATCGCCACCAAACTGATCACCTCGTTCCTCGTGGTGTTGGCGCTGACCGCCGTCATGGGCGTGTTTTCGATCCACCAGCTGGGCCAGGTGAACGGCACCACCACCGAGATCCGCGAGAACTGGATGCCGTCCATGCGCGCCGCCTCGGGCATGCGCTTCTACGCAGCGAGCTTTCGCCTCAAGGAAAACCGTCATATTTCCGCCGACTCCGAGCAAGAACGCGTAACGCTGGAGCAGGAAGCCGACGAAGCGAAAAAGGCCTTCGAAACCCGTCTCGGCACCTATGAAAAACTGCTCTCCACCGCCGAAGACCGTCAACTGTTCGAAACCACCCGCAACGACTGGGCCGCTTACCTGGTGGTCAGCAAGGATCTGTTCGCGCTGTCCCGGCAGAACCAGACCGAGCAAGCCATGGCGCTGCTCAAGGGCGAGTCCAAACGCCAGTTCGACCTGGTGACAAGCGACCTGCAAAAACTCGTGGAACTGAACGACGTCGGTGCCGGCGCCGCCAGCGAACACGGCACCCAGCTGTATGAGAATGCACGCCTGTCGATCATCGCCGTGCTGGCTGCCGCCCTGCTGGTGGGCCTGGGTCTGGCGCTGTTCATTTCGCGAATTATTTCCCGTCCGCTGAAGCAGGCCGCCGCCGTCGCCGAACAACTGGCCGAAGGTAACCTGAACGCGAAAATCGAAGCCGGCTCCAAGGACGAAACCGGCATGGTGCTCAATGCCATGCAGAATATGGTTGGCAAGCTCTCGCACATCATCGGTGAAGTGCGCAACGCGGCGGACAATCTCGCCAGCGCTTCCGAAGAAGTCAGCGCCACCGCGCAATCGATGAGCCAGGCCACCAGCGAACAGGCGGCCAGCGTCGAGGAAACCAGCGCCTCCATCGAGCAGATGAGCGCCAGCATCAACCAGAACACCGAGAACGCCAAGGTTACCGACGGCATGGCCAGCAAGGCCGCCAAGGAAGCCACCGACGGCGGCGAATCGGTGCAGCAGACCGTGGTGGCGATGAAAAAAATCGCCCAGCGCATCAGCATCATCGACGACATCGCCTACCAGACCAACCTGCTGGCGCTTAACGCCGCCATCGAAGCGGCCCGCGCCGGCGAACACGGCAAAGGCTTCGCGGTGGTCGCCGCCGAAGTGCGCAAGCTGGCTGAGCGCAGCCAGGTTGCCGCCCAGGAAATCGGCGAGCTGTCGTCCAGCAGTGTCGACATGGCGGAGAAGGCCGGGAACCTGCTCAACGAAATGGTCCCGTCCATCAACAAGACTTCGGACCTGGTGCAGGAAATCAGCGCCGCGTCCGAAGAACAGGCCGCCGGCGTTGCGCAGATCAACACCGCCATGACCCAGCTCAATCAGGTGACCCAGCAGAACGCCTCCAGCAGCGAAGAACTGGCCGCCACCGCCGAAGAGATGAGCAGCCAGGCCGAACAGCTGCAACAGGCCATGAGCTTCTTCACCCTGGACACGCCCGCCAAGTCCGCCATGCAGAGCGCCAGGGTCGATAACACCCCAGGTCCGTCCAGCCGCAAACCGGCACGGACACCGGCACCGGTGATGCCCAAGGCGTTTGCCTACAACATGGCCAGCGCGCCGGACGAATCGGAATTCACCCGGTTCTGAMKWFYDLRIATKLITSFLVVLALTAVMGVFSIHQLGQVNGTTTEIRENWMPSMRAASGMRFYAASFRLKENRHISADSEQERVTLEQEADEAKKAFETRLGTYEKLLSTAEDRQLFETTRNDWAAYLVVSKDLFALSRQNQTEQAMALLKGESKRQFDLVTSDLQKLVELNDVGAGAASEHGTQLYENARLSIIAVLAAALLVGLGLALFISRIISRPLKQAAAVAEQLAEGNLNAKIEAGSKDETGMVLNAMQNMVGKLSHIIGEVRNAADNLASASEEVSATAQSMSQATSEQAASVEETSASIEQMSASINQNTENAKVTDGMASKAAKEATDGGESVQQTVVAMKKIAQRISIIDDIAYQTNLLALNAAIEAARAGEHGKGFAVVAAEVRKLAERSQVAAQEIGELSSSSVDMAEKAGNLLNEMVPSINKTSDLVQEISAASEEQAAGVAQINTAMTQLNQVTQQNASSSEELAATAEEMSSQAEQLQQAMSFFTLDTPAKSAMQSARVDNTPGPSSRKPARTPAPVMPKAFAYNMASAPDESEFTRFPGPT0015710_18934DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_02698537cheW_2COG0835Chemotaxis protein CheWATGGGCGCCATCGCGACCACACGTCAGACCGTCAGCGCGGTCGAGGAAGAAGCGCAATACCTGACGTTCATGCTCGGCACGGAGATGTTCGCCATCGGCATCCTGTGCATCAAGGAAATCATCGAGTACGGCAACCTCACCGTCGTGCCAATGATGCCGGCCTTCGTGCGCGGGGTGATCAACCTGCGTGGCGCGGTCGTGCCGGTGGTGGACTTGTCGGCTCGTTTCGGCCGACCGAATTCCGCCATCAGCCGGCGCAGTTGCGTGGTCATCATCGAGGCCGCCAGCGCCGACGGGCAGGCCCAGGATATTGGCCTGCTGGTGGACACGGTGTCGGCGGTGCTGGAGATCCCGGCCTCGCAGATCGAGCCGCCGCCGAGTTTCGGCGCGAAGATCCGCGCCGACTTCATCAGCGGCATGGCCAAGGTCGATGGCAAGTTTGTCATCGTGCTGGAGGTCGACCGGGTGCTGTCCATCGACGAGATGTCCGAACTCGCCCAGGCCAGCCCCGCTGCGTTGGAAGCGCCAGCCTCATGAMGAIATTRQTVSAVEEEAQYLTFMLGTEMFAIGILCIKEIIEYGNLTVVPMMPAFVRGVINLRGAVVPVVDLSARFGRPNSAISRRSCVVIIEAASADGQAQDIGLLVDTVSAVLEIPASQIEPPPSFGAKIRADFISGMAKVDGKFVIVLEVDRVLSIDEMSELAQASPAALEAPASPGPT0015680_1349DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015680-cheW-K03408NANA
D1-35_02699807cheR_1Chemotaxis protein methyltransferaseGTGAATTCAATGGCCCTCAGCGACCGGGAGTTCAGCCAGTTCCAAAACTGGCTGTACCAGGCCGCCGGCATCAACCTGTCGCCAGCCAAGAAAGCCCTGGTGGCCGGGCGGCTGTTCAAACGCCTCAAGCACTATGAGCTGGACAGTTATGGCGAATATTTCAAGCTGATCATGAGCGGCCAGCGCAGCGACGAATTGCAGGTGGCGCTGGACCTGCTCACGACCAACGAAACCTATTTTTTCCGCGAGCCCAAGCACTTCGACTTTCTTCGCGACCATGTGCTGCCCCACGCGACGCCGGGCAAGACCTTCCGCCTGTGGAGTGCGGCCAGTTCCTCCGGCGAGGAACCCTACAGCCTCGCCATGACCCTGGCCGAAAGCCTGGGCACCACGCCATGGGAAGTCATCGGTTCGGACATCAGCACCCAGGTGCTGGCCAAGGCCCGTTCCGGGCATTACCCGATGGAGCGCGCGCGCAACCTGCCCCATCCGTTGCTGGTGAAATATTGCCTCAAGGGCACCGGCAGCCAGCAAGGCACGATGCTCATCGATCGGGCACTGCGCAACCGCGTCAACTTCATCCAGGTCAACCTCAACGACACCCTGCCGGAGCTGGGGGAGTTCGACGTAATCTTTCTGCGCAACGTGATGATCTATTTCGACCAGCCCACCAAAAGCAAAGTGGTTGCGCGGCTGATCCCTCGGCTCAAATCCGGCGGGTATTTCATCGTCAGCCATTCGGAGAGCCTCAATGGCGTGTCCGATGCGCTGAAGTTGGTCGCCCCTTCGATTTATCGCAAGCCATGAMNSMALSDREFSQFQNWLYQAAGINLSPAKKALVAGRLFKRLKHYELDSYGEYFKLIMSGQRSDELQVALDLLTTNETYFFREPKHFDFLRDHVLPHATPGKTFRLWSAASSSGEEPYSLAMTLAESLGTTPWEVIGSDISTQVLAKARSGHYPMERARNLPHPLLVKYCLKGTGSQQGTMLIDRALRNRVNFIQVNLNDTLPELGEFDVIFLRNVMIYFDQPTKSKVVARLIPRLKSGGYFIVSHSESLNGVSDALKLVAPSIYRKPPGPT0015670_3868DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015670-cheR|pilK-K00575NANA
D1-35_02700486cheDCOG1871Chemoreceptor glutamine deamidase CheDATGAAGCAGGTAGCGGAGGTCTACCTCGGGCCGGGAGAGTTTCGCTTTGCGACCTGCCCGACCCGGCTGCGGACGATCCTCGGCTCGTGCGTGGCGATCACGCTCTGGCATCCGCAGCGCAAGATCGGCGGCATGTGCCATTTCATGTTGCCCAGCCGGGTGCGGTGCTCCACCGCGTTGAACGGGATGTACGCCGATGAAGCCATCGAACTGTTCGTCCGTCAGGCCCGGGCCCATCACACCGAGCCCGAGGAATACCAGCTCAAGCTGTTCGGCGGCGGCGAGATGTTTCCCGAACTGCAACGCCATGTGGCATTCGGCGATGTGGCGCGGTCGAACGTCAACGCGGCGCTGGAGATGGCCGCGCTCTATCGCCTGGACCTGATCGCCCAGGACATGGGCAGCACCGGCCACCGCAGCATCATTTTCGACCTTTGCACGGGCGACGTCTGGGTCAGGCACCAACCGATAAGGACCCTGCACTAAMKQVAEVYLGPGEFRFATCPTRLRTILGSCVAITLWHPQRKIGGMCHFMLPSRVRCSTALNGMYADEAIELFVRQARAHHTEPEEYQLKLFGGGEMFPELQRHVAFGDVARSNVNAALEMAALYRLDLIAQDMGSTGHRSIIFDLCTGDVWVRHQPIRTLHPGPT0015665_1198DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015665-cheD-K03411NANA
D1-35_027011080cheB_3COG2201Protein-glutamate methylesterase/protein-glutamine glutaminaseATGTCAGGCAAAAAAATAAACGTATTGCTGGTGGATGATTCCGCCGTGGTCCGCCAGGTATTGCTGGCGATCCTGAGTGACACGCCGGACATCAACGTCATCGGTGCGGCTTCCGACCCGATCTTTGCCATGGACAAACTGGCGAAGGAATGGCCCGACGTGATCGTGATGGACGTGGAAATGCCGCGCATGGACGGCATCACTTTTCTGAAAAAAATCATGAGCGAACGGCCTACCCCGGTGGTGATCTGCTCGTCGCTGACGCCCAAAGGCGCGGAAACCACCTTGCAAGCCATGTCCGCCGGTGCGGTGGAAATCATCACCAAGCCCACCAGCGGCTTGAAGAACTTCCTTTTGGAATCGGCCCCGGAACTGGTGTCCGCCATCCGCGCCGCCGCCCAGGTCAACGTCCGCAACCTGGGCAAGCGCCCGGCTCCGGCGGCGCCGCTGACGCCGGCGACCAAACTCACCGCCGACGCCATGCTGCCCGCCGCCAACGGCCATGCCATGGCCCAGACCACCGAACGCATCGTGGCCATGGGCACCTCCACCGGCGGCACCCAGGCGCTGGAAGCGGTGCTCACCGCCCTGCCGCGGGTATGTCCGGGCATCGTCATCGTCCAGCACATGCCGGAAAAATTCACTGCATCCTTCGCCGCGCGGCTCAACAGCCTCTGCCAGATCGAAGTGCGCGAAGCGAAAAACAACGACCGCATCCACCCGGGCCTGGCCCTCATCGCCCCCGGCGGCAAACACATGATGGTGACCCGCAGCGGCGCGTTCTATCACGTGCAGGTAGTGGACGGCCCGCTGGTCAATCGCCACCGCCCGTCGGTGGATGTGCTGTTCCGCTCGGTGGCGAAGTTCGCCGGCCGCAATGCCACGGGCATCATCATGACCGGCATGGGCGACGACGGCGCCCGCGGCCTCAAGGAAATGCTCGACGCCGGCAGCGCCACCGTGGCCCAGGACGAGGCCAGCTGCGTGGTGTTCGGCATGCCCAAGGAAGCCATCAAACTCAACGCCGCGCAGCGGGTGATGCCGTTGCAGGAGATTGCGCAGGTGATATTGCATCGCTGAMSGKKINVLLVDDSAVVRQVLLAILSDTPDINVIGAASDPIFAMDKLAKEWPDVIVMDVEMPRMDGITFLKKIMSERPTPVVICSSLTPKGAETTLQAMSAGAVEIITKPTSGLKNFLLESAPELVSAIRAAAQVNVRNLGKRPAPAAPLTPATKLTADAMLPAANGHAMAQTTERIVAMGTSTGGTQALEAVLTALPRVCPGIVIVQHMPEKFTASFAARLNSLCQIEVREAKNNDRIHPGLALIAPGGKHMMVTRSGAFYHVQVVDGPLVNRHRPSVDVLFRSVAKFAGRNATGIIMTGMGDDGARGLKEMLDAGSATVAQDEASCVVFGMPKEAIKLNAAQRVMPLQEIAQVILHRPGPT0015650_1839DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015650-cheB|chpB|wspF-K03412NANA
D1-35_02702609hypothetical proteinATGATCCCGGCTATCATGCCGCACGCCCATTCAACGGGCGTGCTGCAAGCCACCCTAAAGGATTCAGGTATGCCCCTTCTGCCGTCACGCGCTACCCTCCTCGTCTCAGGTCTTCTGATCAGCTCTCTGTGCCTGGCCGAGGGCGAGCCGGCGGAAAGCGTCATCAAGGACTCGACCAAATCCGCGGTCTCGTCGTTCATAACCGCAGGCAAGAACCTGTTGGGCGGTGTGAGCGAAGGCGTGCTCGACGGGCGCGAGTCGGTCCAGGGCACCGATGGCGCCGCGATCATCTCCTCCGGCGAGCAAATGAAAGACCGCATCACCATCGAAGTGCTGAAGCTTGAGCCCAGCGAAGAAAACGTCACCATCACCCTCGGCTTCAAGAACAGCACCGACACCCAACTGCGCCTGATCAACCTCGGACAAACCGGCACCCTGCTGGCCATCGACCAGGCCGGCTACGCCAACCGCCTCACCGGTCTGGACAACCCCGACGAAGTCACCGTCCCACCGAAGATCGCCGTACGACAGAAATTCGTTTTCGAAGGCATGAACGAGGCGATCAGTGCCGTACGGGTCTGGGGGGCGGATTATTCGGTCAAGAAGTAAMIPAIMPHAHSTGVLQATLKDSGMPLLPSRATLLVSGLLISSLCLAEGEPAESVIKDSTKSAVSSFITAGKNLLGGVSEGVLDGRESVQGTDGAAIISSGEQMKDRITIEVLKLEPSEENVTITLGFKNSTDTQLRLINLGQTGTLLAIDQAGYANRLTGLDNPDEVTVPPKIAVRQKFVFEGMNEAISAVRVWGADYSVKKPGPT0029340_220DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-CHAPERONE-USHER_SECRETIONCE-CHAPERONE-USHER-SECRETION-Mat|Ecp_FIMBRIAE_ASSEMBLY,PGPT0029340-ecpB|matC-K21965NANA
D1-35_02703672hypothetical proteinATGGACGCATGGACGTTGCACTGGCTAGAAGCCTCGGGGAGTCTGGCTGAGTTTCGCAAGGAGCTGGTTGGTGAGTTCGAAACCGCTTATGAGGCCTTGGCTTTTCGGATGGTCCCGCCCCGACTTGATGTCCTGGTCCAGCGGTTGCCGGGCGAAACCATTCCGGAATTGGGCCTGGTAGGGCGAGCGTATCGAAGCTCGATGTTCAGCATGACGCTTGATCCAGATAATCCCAACTTCATTCCCAGCCTGCGCGCTGGCGCGCTACATCGTCAGATTATCCATGAGGTCCATCATTGTCTGCGCATGGCAGGGCCGGGCTATGGCTGGACGTTGGGCGAGGCTTTGGTGAGCGAAGGACTTGCCGGACAGTTCGTCCGATATCTGCTCAACACCGATCCAGAGAGTTGGGAGCGGGAAGTTGGCTCAACTGAGCTGTTGAATTCGCCGGTTGGGCTGCAAGCACTTGAATCGAGTTATTACGATCACAGCGAATGGTTTTTTGGTAGTGGGGACAAGCCCAAATGGCTGGGGTACTCGCTGGGCTACGAGATGGTGGGGTGTTGGCTTGCGTCCAGGCAGGAGGTAGACATTTTTACTTGGGTCAACGTACCTGCAACCGACATCATCGCTGCAGCGCTTGAGCGAGGTCTGATAACGGCGACTTCTTGAMDAWTLHWLEASGSLAEFRKELVGEFETAYEALAFRMVPPRLDVLVQRLPGETIPELGLVGRAYRSSMFSMTLDPDNPNFIPSLRAGALHRQIIHEVHHCLRMAGPGYGWTLGEALVSEGLAGQFVRYLLNTDPESWEREVGSTELLNSPVGLQALESSYYDHSEWFFGSGDKPKWLGYSLGYEMVGCWLASRQEVDIFTWVNVPATDIIAAALERGLITATSNANANANANA
D1-35_02704624hypothetical proteinATGACCACGCCTGATCAAAACATCAAGAACGATACACACCCCCTCAGCCTGCTAAACGGCTCATGGCTGAACGAACCGAAAATCCACTCCGCGCCCACAACAGACTCCCTGCACCTGGAAACCGACAACGCTACCGACTTCTGGCGAGAAACCCACTACGGCTTCACCCACGACAGCGGCCATTTCCTCGGCGTCGAAGCCCCACCCAGCTTCACCTGCCAACTACGCATCCAAGGCACCTTCGAAGCCCTGTACGACCAGGCCGGCCTGATGGTCCGCATCAACGAACGCCAATGGGTCAAGGCCGGGATCGAACTGAGCGACGGCCAGGCCATGCTCGGCAGCGTACTCACCGACGGACAATCCGACTGGGCGACCAGCCCGTACACCGCCGATCCCAACGACTTCTGGATGCGCGCCACGGTCGCCAACGGCGTACTGCGCTTGCAGGTTTCCGCCGATGGACTTCGTTGGCCGCTGGTGCGCTTATGCCCGTTTCCCATCGCACCGACCTACCGCGTCGGCCCGATGGCGTGCAGCCCCAAGCGCGGCGGCTTGAAAGTCGCTTTTTCCGACTGGACGCTCGGGCCTGCGCTGGGCAAGGACTTGCATGATCTGACCTGAMTTPDQNIKNDTHPLSLLNGSWLNEPKIHSAPTTDSLHLETDNATDFWRETHYGFTHDSGHFLGVEAPPSFTCQLRIQGTFEALYDQAGLMVRINERQWVKAGIELSDGQAMLGSVLTDGQSDWATSPYTADPNDFWMRATVANGVLRLQVSADGLRWPLVRLCPFPIAPTYRVGPMACSPKRGGLKVAFSDWTLGPALGKDLHDLTNANANANANA
D1-35_02705465hypothetical proteinATGACCCGTACAAAAAACTCGAACACTGCTCGCCTCGCCCTTGCCGCACTTGCCCTGTCCGGCGGCTTGAGCCTCGCCCAGTCGGCTTTCGCGGTCGACGCCCTGCCCCAGGGTTATCAACTGGCCTCGGCGGAAAAAACCTCCGAAGGCAAGTGCGGCGAAGGCAAATGCGGCGCCGCCGAAGCGGGCAAAAAAGTCACCCAGGCCGAAGGCAAATGCGGTGAAGGCAAATGTGGCGACGCGTCCTTCGCCCGCACTGATACCGACAAAGATGATCGCGTGTCGCTGAAGGAATTCCTCAGCGTGGCGCCGACCGAACAAGCCGAGTTCGAAAAGATGGACAGCAACCACGACGGCTACCTGTCCGAAGCGGAAACCTACAAATATCGCACCGGCCAATACACCGCCAATGGCAAGAAAGTGCCCACCGAGCTGTTCACCCGCATGAGCCAAGCCAAGGAATAAMTRTKNSNTARLALAALALSGGLSLAQSAFAVDALPQGYQLASAEKTSEGKCGEGKCGAAEAGKKVTQAEGKCGEGKCGDASFARTDTDKDDRVSLKEFLSVAPTEQAEFEKMDSNHDGYLSEAETYKYRTGQYTANGKKVPTELFTRMSQAKENANANANANA
D1-35_02706852hypothetical proteinATGAGCACCTTCACTTCACCCAACGGCGCCGGGCTCGGCCTGCGTCGCGCCATGCTTGGCGACTTGCTGAAAATGGCCCCGAACGCGGTGGATTTCCTCGAATGCGCGCCGGACAACTGGATCGGCGTCGGCGGTGTCTACGCCGAACAACTCGATCAACTGGCCGCAAGACACCCCATCACCTGCCACGGCTTGTCCCTGTCCCTCGGCGGCCCACAACCTCTCGACCTCGACCTGCTGCGGGGCACACGCCGCTTTCTCGATCGCTACGGCGTGGCGATCTACAGCGAGCACCTGAGCTACTGCTCCGCCAGCGGCCACCTCTACGACCTCTTGCCGATCCCCTTCACCGAAGAAGCCGTGCACCACGTTGCCGCGCGCATACGCCAGACCCAGGACCTACTGGGCCAGCGCATCGCCGTGGAAAACATCTCCTACTACGCCGCGCCCTTCCAGGCCATGAGCGAAATCGACTTCATCACCGCAGTCCTCGAAGAAGCCGACTGCGACCTGCTGCTGGACGTCAACAACCTCTACGTCAACGCCATCAACCACCGCTACGACGCTCAGAAATTTCTCGCCGCCCTGCCCGCGCAACGCGTCAGCTACCTGCACGTGGCCGGCCATTACGACGAAGCCGACGACCTGAAAATCGACACCCACGGCGCGCCCGTCAAGCAAGACGTCTGGACGCTTCTGTACCAGACCTACCAACGATTCGGACCGGTGCCGACATTGCTGGAACGCGACTTCAACTTCCCGCCGTTGACAGAACTGCTCGCCGAGGTAGGGCAGATCAAACAGCTGCAACAACTCGCCTGCCCAGCAACCCCGGAGGCCCGCCATGCCTGAMSTFTSPNGAGLGLRRAMLGDLLKMAPNAVDFLECAPDNWIGVGGVYAEQLDQLAARHPITCHGLSLSLGGPQPLDLDLLRGTRRFLDRYGVAIYSEHLSYCSASGHLYDLLPIPFTEEAVHHVAARIRQTQDLLGQRIAVENISYYAAPFQAMSEIDFITAVLEEADCDLLLDVNNLYVNAINHRYDAQKFLAALPAQRVSYLHVAGHYDEADDLKIDTHGAPVKQDVWTLLYQTYQRFGPVPTLLERDFNFPPLTELLAEVGQIKQLQQLACPATPEARHANANANANANA
D1-35_02707741hypothetical proteinATGCCTGAACAACTGCTCGACCAACTCAACTGCATGGCCAACTACGTCCGCCACCCCCACCACCCGCCCCCACCCGGGCTGGAAGCACGACGCCTGGCCATCTACCGCCAACTGTTCATCGGCAACATCGAATCACTGCTCGCCGCCAGCTTCCCAGTCATCCACCAAACCCTGCCGCGCGCCGACTGGCAACGACTGGTCCACGACTTCTACGCCAACTACCGCTGCCAGACGCCACTGTTCACGCAGCTTGCCGGTGAGTTTGTCGCCTACCTGGAACAACACGAGGATCTGCACGACCTCCCACCATGGCTGCCCGAACTCGCCCAGCACGAATGGAGCGAAAGCGCCCTGCTGCTGAGCGATGCGGTGGAGCCGTCACACAATCCCCACGGCGATCTGATGGAAGGCACGCCCGTGGTTTCCGGACTCGCGCAGGCACATGCCTATGAATGGCCGGTGTGCGACATCGGGCCGGATCATCAACCCACCGAAAAGCCTGCGACCCCAACGTTGGTATTGTTGCAGCGGCGCGAAGGGCAAGTGACGTTTTCGCGGCTGGCGCCGATGGCTTACGCATTGTTGGCGTCGCTGATGGAACATCGGCGCAGTGGGCGGGAGCATCTGGTTGCGTTGGCTGAGATGGCAGGAGTGTCGGTGCGGGAGTTGATGCCCATGGGGGTGGCGGCGCTTGAAGGGTTCAAGGCGCGGGGGATTGTGTTGGGGACGCGTTGGGGGTGAMPEQLLDQLNCMANYVRHPHHPPPPGLEARRLAIYRQLFIGNIESLLAASFPVIHQTLPRADWQRLVHDFYANYRCQTPLFTQLAGEFVAYLEQHEDLHDLPPWLPELAQHEWSESALLLSDAVEPSHNPHGDLMEGTPVVSGLAQAHAYEWPVCDIGPDHQPTEKPATPTLVLLQRREGQVTFSRLAPMAYALLASLMEHRRSGREHLVALAEMAGVSVRELMPMGVAALEGFKARGIVLGTRWGNANANANANA
D1-35_02708273hypothetical proteinATGGAAAGATACGTCCCCATCACCGGCATCGACTGCACCCCGGCTTCGCTGCTGATTGATAGCCAGGCACCGCTTGATGTTCTGCATGCTACGGCTGATTACCGTATTCGGGTCGTGACACAGGTTTTGGAAAATATTGCGTTTCGTGCCGAGATTGGTAGCGATACGGTAGTGCTTTCGGATTTCGCGCAGTTGCTGGCGATTCCGCTAAGGGATGGGTGTGATTTGTTGGAGGTGATTGGGCGGCGGCTTCAGGAGGCGGTTGAGGGGTGAMERYVPITGIDCTPASLLIDSQAPLDVLHATADYRIRVVTQVLENIAFRAEIGSDTVVLSDFAQLLAIPLRDGCDLLEVIGRRLQEAVEGNANANANANA
D1-35_02709927dmlR_14HTH-type transcriptional regulator DmlRATGAAGAAAATGCCGGATCTCGAAGCCTGGGCTATATTCGCCAAAGTGGCGGAAGCAGGCTCCTTCGCCCGTGCGGCGGCCGATCTCGGCCTGTCGCAGGCGACCGTCTCCAAGGCCGTTACGCGCCTGGAAGCCCGCATGAAGACCATGCTGTTCCATCGCACGTCACGGCAGATGTCGTTGACCGAGAGCGGGAACGCTGCGCTGGAACGCGCGTCGCGCATTCTGGCCGAGGGTGAAGCCGTCGAGGCTGAGGTCATAGAGCAGTCCACTAGCCTGCGCGGCGTGATCCGCTTGAGTGCCCCGATGTCGTTTGGCGTCTCACGCCTGGCGCCATTGTTGCCAGACTTCATGGCACAACATCCCGATGTGGTGCTGGATATCAGCTTCAATGACGAAATAATTGATCTGGTCGCTCAAGGGTTCGACCTGGCCCTGCGGATCTCGACCCTGAGCGACTCCAGTTTGCTGGCTCGGCGCCTGTGCACCGTGCGCATCCTATTGGTCGGCACTCCTGCCTACTTTGAACGCCATGGACGTCCCGACCATCCGCGGGATCTGATCAAGCACCGTGCGTTGCAATACAGCAATTCGCTCGGCGGCACTGGCTGGCGCTTCAGGCACAAACGGCATGGAGAATTTACCCAGGCAATGCCCGCCCCTTTACAGGCCAACAATGCCGAGGCACTCGAACCAGCCTTGCGGGCGGGACTGGGCATTGCGCTGCAGCCGGAGTTTCTGGCCTGGAAGGATCTGGAATCGGGGCTGTTGGAAACGGTGATGGAAGACTGGCAAGTAGAGCCGATCGCGCTGCACATCGTCACCCCTCCGGGGCGCAGCCGCCCAGTTCGCGTGCAAGCACTCATTGACTACCTGGCCGATCACCTGCGCAGTGCTCCATGGGCGCAAACGGGCGAAAAGGTGTAGMKKMPDLEAWAIFAKVAEAGSFARAAADLGLSQATVSKAVTRLEARMKTMLFHRTSRQMSLTESGNAALERASRILAEGEAVEAEVIEQSTSLRGVIRLSAPMSFGVSRLAPLLPDFMAQHPDVVLDISFNDEIIDLVAQGFDLALRISTLSDSSLLARRLCTVRILLVGTPAYFERHGRPDHPRDLIKHRALQYSNSLGGTGWRFRHKRHGEFTQAMPAPLQANNAEALEPALRAGLGIALQPEFLAWKDLESGLLETVMEDWQVEPIALHIVTPPGRSRPVRVQALIDYLADHLRSAPWAQTGEKVNANANANANA
D1-35_02710705yhhW_2COG1741Quercetin 2,3-dioxygenaseATGATCGAACGCCGTTCCTTCGACAGCCTCGGTGGTGCTCACCACGGTTGGCTTGATGCCAGGCATCACTTTTCTTTCGCCGAATACCATGACCCAACGCGGTTTAATTGGGGCGCTTTACGGGTCTTGAACGACGACACGATCGCCCCGAACTCAGGCTTCCCGGCGCACCTGCATTCGGACATGGAGATCGTCACCTACGTCCGCGAGGGCGCCATCACTCATCAGGACAACCTTGGCAACAAGGGTCGCACCGTGGCGGGCGACGTGCAGGTGATGAGCGCAGGCAGCGGTATTCGCCACTCCGAATACAATCTGGAGGCGGGTATCACCAAAATCTTTCAGATATGGATCACCCCTGACACGAAAGGCGATCCACCCTCCTGGGGCTCCAAGCCGTTCCCGAAAGGCGACCGTTCCGGCCAGTTCGTAGCATTGGCGAGCGGCGCCGAAGGCGATGAAGATGCGCTGCCCATCCGTACGAACGCGCGGGTGCTGGGGGCAACGCTGAAAACCGGCGAAACGATCGAATACCACTTCGCCGACGACAAACATTTTGGCTACCTGGTCGCAGCCACGGGCAGCGTCAAAGTCAACAACCTTGTGCTCGAGGCGCGCGATGGCGCCGCCATCCACGATGAGCAGCGCATACGCATTACCGCCCGCGAGGATGCCGAAATACTGCTGGTAGACGCCGCCAGCTGAMIERRSFDSLGGAHHGWLDARHHFSFAEYHDPTRFNWGALRVLNDDTIAPNSGFPAHLHSDMEIVTYVREGAITHQDNLGNKGRTVAGDVQVMSAGSGIRHSEYNLEAGITKIFQIWITPDTKGDPPSWGSKPFPKGDRSGQFVALASGAEGDEDALPIRTNARVLGATLKTGETIEYHFADDKHFGYLVAATGSVKVNNLVLEARDGAAIHDEQRIRITAREDAEILLVDAASPGPT0019980_5215DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_FLAVONOID_UTILIZATIONPLANT_DERIVED_QUERCETIN_DEGRADATION,PGPT0019980-yhhW|pirA-K06911NANA
D1-35_02711693ycaC_2COG1335putative hydrolase YcaCGTGTCCAACACGTTGCTAGAAGTACTGACCCCACAAAACAGCCAACTCATCTTCATCGACCAGCAGCCGCAGATGGCTTTCGGCGTGCAGTCGATCGACCGGCAAGTGCTGAAAAACAATGTCGTGGGGCTGGCCAGGGCCGCCAAGGCGTTCGGTATCCCTACGACCATCACCACCGTGGAAACCGACGGATTCTCGGGCAATACCTACCCTGAGCTACTGGCGGTGTACCCTGAGAACGACATCCTCGAGCGCACCTCCATGAACTCCTGGGACGATCAGAACGTTCGCGACGCCTTGGCGAAGTCCGCCGCTGCCGGTCGCAAAAAGATCGTCGTTGCTGGCCTGTGGACCGAAGTCTGCAACACCACCTTCGCGCTGTCCTGCTTGCGCGACACTGACTATGAAATCTACATGGTGGCCGATGCCTCGGGTGGCACTTCGGTTGAAGCGCATAAATACGCCATGGATCGCATGGTTCAGGCCGGTGTGGTGCCGGTGACCTGGCAGCAAGTGCTGCTCGAATGGCAGCGGGATTGGGCACGCAAAGAGACTTATGAAGAAGTGATGGCGATCGTAAGGGATCACTCCGGCGCCTACGGCATGGGAGTGGACTATGCCTACACCATGGTGCACAAGGCTCCGGAACGGGTGAAGCACGGCGAGCGTATCGGCCCCAACCCAGCCGAGTAAMSNTLLEVLTPQNSQLIFIDQQPQMAFGVQSIDRQVLKNNVVGLARAAKAFGIPTTITTVETDGFSGNTYPELLAVYPENDILERTSMNSWDDQNVRDALAKSAAAGRKKIVVAGLWTEVCNTTFALSCLRDTDYEIYMVADASGGTSVEAHKYAMDRMVQAGVVPVTWQQVLLEWQRDWARKETYEEVMAIVRDHSGAYGMGVDYAYTMVHKAPERVKHGERIGPNPAENANANANANA
D1-35_02712273hypothetical proteinATGAAAATGTATGCATTGTCCCTGGCCGCTGGCCTGCTTGTGGGTGTGGTCTACAGTCTTCTGAGCGTGCGCTCGCCTGCGCCGCCGCTGGTGGCCCTGATAGGGCTGATGGGAATCCTGGTCGGCGAGCAAATCATCCCGATCGGCAAGCACTTGTGGTGTGGCACGACATTGAGCGCTGCCTGCGACAAGACAAGCGCCGTCAGCCATGTACTCGGTCAACTGCCTGGTCGACACACCAAGCAACAGACTGAGGAATCAAAGCCGACCTGAMKMYALSLAAGLLVGVVYSLLSVRSPAPPLVALIGLMGILVGEQIIPIGKHLWCGTTLSAACDKTSAVSHVLGQLPGRHTKQQTEESKPTNANANANANA
D1-35_027131896nfdA_2N-substituted formamide deformylaseGTGACCCATTCCATTCCCGATACCATTTTCCGTAATGGTGAGATCACCACACTCAATCGCGCCAACCCGGTCGCGAGCGCCGTCGCCATCAAAGACGGCAAGTTCCTCGCCGTCGGCTCTGACCAGGAAATCATGCTGCTGGCGGGCCCGGCTACCAAGGTTGTCGACCTCAAGCGCCGTAGCGTGCTGCCTGGCCTGGTTGATAACCACACCCACGTGATCCGCGGCGGCCTCAATTACAATCTGGAGTTACGCTGGGACGGTGTGCGTTCTTTAGCCGACGCCATGGAAATGCTCAAGCGTCAGGTGGCAATCACGCCAGCACCGCAATGGGTTCGCGTGATCGGCGGCTTCACCGAACACCAGTTCATCGAGAAGCGCCTGCCGACCATCGAGCAGATCAATGCGATTGCGCCCGACACGCCGGTGTTCCTGCTGCACCTGTACGACCGGGCCTTGCTCAATGGTGCGGCCTTGCGTGCGGCCGGCTATACCCGGGATACGCCCGAGCCACCGGGTGGAGAAATCACCCGGGATGGCAACGGCAACCCCACCGGGCTGCTACTGGCCAAGCCCAACGCGATGATTCTTTACGCGACGTTGGCCAAGGGCCCCAAGTTGCCCTTCGACTATCAGGTCAACTCCACCCGCCACTTCATGCGCGAGCTCAACCGCCTCGGTGTGACCGGCGTGATCGACGCGGGCGGCGGTTTCCAGAACTATCCCGATGACTATGCCGTGGTGCAGAAGCTGGATGATGACGGCCAGATGACGGTCAGGCTGGCTTACAACCTGTTTACGCAGAAACCTAAGGAGGAAAAAGACGACTTCCTCAAGTGGACCTCCAGCGTCAAGTACAAACAGGGCAACGACTACTTCCGCCATAACGGTGCCGGTGAGATGTTGGTGTTCTCGGCAGCGGACTTCGAAGACTTCCGCCAGCCTCGTCCGAACATGCCGCCGGAAATGGAAGGCGAACTTGAAGAGGTGGTGCGTATCCTGGCGCAGAACCGATGGCCGTGGCGGTTGCACGCCACCTACGATGAAACCATCACCCGTGCGCTGGACGTCTTCGAGAAGGTCAATCAGGACATACCACTGGCCGGGATCAACTGGTTCTTCGATCACGCCGAAACCATCTCGGATAAATCGATCGACCGTATAGCAGCGCTCGGGGGCGGCATTGCCGTGCAGCACCGCATGGCTTATCAGGGTGAATACTTTGTCGAGCGCTACGGCGCCCGCGCCGCTGAGGCCACGCCGCCGGTGAAGCGAATTCTCGAAAAAGGCGTGAAAGTGTCAGCGGGCACTGACGCTACTCGCGTCGCCTCCTACAACCCCTGGGTCTCACTGTCGTGGATGGTCACCGGCAGGACCGTCGGCGGCCTGAACCTCTATCCACAACGTAATCTGCTTGATCGCGAAACCGCGTTGCGGATGTGGACCGAGAATGTCGCCTGGTTCTCCAACGAGGAAGGCAAACGTGGACGCATTCAGGCTGGCCAGTTCGCTGACCTGATAGTGCCGAGCAAAGACTACTTTTCGGTCCCCGAAGACGAGATTTCATTTCTGACCTCCGATCTGACCGTGGTGGGTGGGCGCGTTGTCTATAGTGCCGGCCAGTTCACTGCGCTGGACGACAACCTGCTGCCGCCCGCGATGCCGGACTGGTCGCCGACCCGCACGTTCAAGGGTTATGGCGCTTGGGGAGAACCGGAAGGCGCCGGCAGGAACTCGCTGGCGCCGTTGCGCGCTCAAGCCGCTGCATCGTGCGGCTGCGCAAGCTCCTGCGGTGTGCATGGTCATGACCATGCCGGTGCGTGGGGTTCCAATGCACCGGTGTCGGATCCGAGGAGTTTTTTTGGCGCTTTAGGCTGCTCCTGCTGGGCCGTATAGMTHSIPDTIFRNGEITTLNRANPVASAVAIKDGKFLAVGSDQEIMLLAGPATKVVDLKRRSVLPGLVDNHTHVIRGGLNYNLELRWDGVRSLADAMEMLKRQVAITPAPQWVRVIGGFTEHQFIEKRLPTIEQINAIAPDTPVFLLHLYDRALLNGAALRAAGYTRDTPEPPGGEITRDGNGNPTGLLLAKPNAMILYATLAKGPKLPFDYQVNSTRHFMRELNRLGVTGVIDAGGGFQNYPDDYAVVQKLDDDGQMTVRLAYNLFTQKPKEEKDDFLKWTSSVKYKQGNDYFRHNGAGEMLVFSAADFEDFRQPRPNMPPEMEGELEEVVRILAQNRWPWRLHATYDETITRALDVFEKVNQDIPLAGINWFFDHAETISDKSIDRIAALGGGIAVQHRMAYQGEYFVERYGARAAEATPPVKRILEKGVKVSAGTDATRVASYNPWVSLSWMVTGRTVGGLNLYPQRNLLDRETALRMWTENVAWFSNEEGKRGRIQAGQFADLIVPSKDYFSVPEDEISFLTSDLTVVGGRVVYSAGQFTALDDNLLPPAMPDWSPTRTFKGYGAWGEPEGAGRNSLAPLRAQAAASCGCASSCGVHGHDHAGAWGSNAPVSDPRSFFGALGCSCWAVNANANANANA
D1-35_02714927dmlR_15HTH-type transcriptional regulator DmlRTTGAATAAATTATCTGAAATGCATGCTTTCGTGGCGGTGGTGGACACAGGCAGTATTTCAGAGGCTGCTCGCCGTTTGGGCACCGCCAAGTCCATGATTTCCAAGCGCATTCAACAGCTCGAAAAACGCCTGGGGAGCATTCTTCTGGAGCGTGGCCGGCAGACTCGCCTGACTGAGTCAGGCGAGGTTTTTTACCGTCATTGCAGGGGAATTCTGGCTGACATTGAAACTGCCGAAAACGCGGTGCTGACGTCTCAGTCGATTGTCCGTGGAAGTCTGCGTATTGCAGCTCCGATGGCTTTCGGCAGGCGATATCTGACGCCGATTTTGGCAGCTTTTGCCAGGCAATATCCTGAGTTGTATCTGGATATCGAGTTCGACGACCGCCGCGTCAACTTGCATGAAGAGGGTTTTGATGCGGCGGTTCGTATCGGCGAATTACCAGACTCTTCGCTGATGGCCAAAATAATTACACCCAACCGCCATATCATCTGTGCGAGCCCTGATTATTTGAATGCTCATGGGACGCCACAAATACCGCAAGACCTGGCTCAGCATTTCGCCGTGCTTTACGTCAATCGCGAACCACATGGTATGTGGACGCTACCGGTAAACGGCACATTAGAGTCCTTTCGTGTGCGCTGCCGAATGCGCACCAACTGTGGCGATCAACTGATGGAGGCGGCGAAGACGGGGCTCGGGCTTGCCATATTGCCCACTTTCCTGGCCGCTCAAGCCATTGTGGACGGTGAATTGATCGAAGTGCTGGCGCCTTATGCGCCACGTGGAGGCAATATTTCTGTTGTCTATCGTCAATCGCATAAAACATTGGCCAAGCTTCTCGCGCTGAGTAGCTTCCTTAGCGAACGGATCGGTAACCCGCCAATTTGGGACCGGCTGCTGGCATCCAGTTCGCAACCACAGTAGMNKLSEMHAFVAVVDTGSISEAARRLGTAKSMISKRIQQLEKRLGSILLERGRQTRLTESGEVFYRHCRGILADIETAENAVLTSQSIVRGSLRIAAPMAFGRRYLTPILAAFARQYPELYLDIEFDDRRVNLHEEGFDAAVRIGELPDSSLMAKIITPNRHIICASPDYLNAHGTPQIPQDLAQHFAVLYVNREPHGMWTLPVNGTLESFRVRCRMRTNCGDQLMEAAKTGLGLAILPTFLAAQAIVDGELIEVLAPYAPRGGNISVVYRQSHKTLAKLLALSSFLSERIGNPPIWDRLLASSSQPQNANANANANA
D1-35_02715579hypothetical proteinATGATCACTCCTAAAATCAAATCGCTCGCTGCAGCAATCACGCTCGCCACGTGCATCTTAACTGTCTCGCCAGTGTCGGCACAGTCGACTAGCGAAGCGCAGTCAGCTGCATCACTCTCGGTTGTCATGGAATTCCTGGCCAATACTTCGCCCGATAAAGTCGAAGCCGCTGCGCACAGGTTAGCGGCTCCAGACGCCACCTATGTTTCTCTAAACTTCGATAACCCAGAACTCAAAAAAATCATGCCTTGGACCGGCACAAACAAAGGCCCGAAAGCCTTCAGTTCGTTATTCATGCAGGTCTCGGATTACTGGAAGATCGAAGACTTCACCATCACTACCAAAATCGCCTCCGGCGAAGATGTTGCGATTTTCGGTAAGTTCACCTATCGCTCCGTGGCGGTCGACAAGGTGTTTACATCACCGTTTTCCGTTCACGCCAAGGTTCGTGACGGAAAGATGACTTATTTCCAGTTCATGGAAGATACCTACGCGTCCGCCAGTTCGTTCCGCCAGTCCGGTTCGTGGACCGTGAAGACATCAGCGCATGCAGCCCCCGTTACGGTCGGGACCAATTAAMITPKIKSLAAAITLATCILTVSPVSAQSTSEAQSAASLSVVMEFLANTSPDKVEAAAHRLAAPDATYVSLNFDNPELKKIMPWTGTNKGPKAFSSLFMQVSDYWKIEDFTITTKIASGEDVAIFGKFTYRSVAVDKVFTSPFSVHAKVRDGKMTYFQFMEDTYASASSFRQSGSWTVKTSAHAAPVTVGTNNANANANANA
D1-35_02716540hypothetical proteinATGCAACGGGTGATGATTGTTGGTCAACCTGGATCTGGGAAAAGCACTTTGGCGCGTAACCTGGGCCAACGCACGGGCTTACCGGTCGTTCATATCGACACTATTCACTGGCAGCCAGGGTGGGTCGAACGAAGCTGGGACGAGAAGACGCATCTCTGTCGCGAGGTCGAGTCCCTTGATCGCTGGATTTTCGAAGGTGGCCATTCAGCCACGTGGAACCATCGGATGGCTCGCGCTGATCTTTTGATATGGATCGATCGATCTGCGACGCTCCGATTTTGGCGTGTACTCCTCAGAACGCTGCTCCACCGAGGTCAGCGCCGGCCGGACTTGCCGGACAACTGCCCCGAATTGCTGGCGAATCTGCCAGAGTTTTTTAAGTTCATGTGGCGGACGAGAAAATCAGCCCGGGCGAAGATGAACCAACTCGTGGCGACTGCCCCCCCAACTTGCCGCGTGGTCTGTCTGCGGTCTAACCGGGATACAAGAATTTTTCTGGCGAGCGTTGGAAATTCGACTGGCCAGGCTCTGCGGGATTGAMQRVMIVGQPGSGKSTLARNLGQRTGLPVVHIDTIHWQPGWVERSWDEKTHLCREVESLDRWIFEGGHSATWNHRMARADLLIWIDRSATLRFWRVLLRTLLHRGQRRPDLPDNCPELLANLPEFFKFMWRTRKSARAKMNQLVATAPPTCRVVCLRSNRDTRIFLASVGNSTGQALRDNANANANANA
D1-35_02717972cdhR_8COG4977HTH-type transcriptional regulator CdhRATGCTCCCCATACGCGTTGCTGTTCTAGCTTTCGAAGGCGTCAGCCTTTTCCATCTTTCCGTGCCGGGAATGGTATTGGGAACCGCGCAACCTGCGCCCGATGGGCCTCGCTACGAAATCAATTACTGCGCAGAAGTGCCCGGAGTGATCAGCACCGACCAGGACATTGGCCTGTCGGTAAGCCTCGGCCTGGAGCTGATGGAAACTTCCGACGTCATCATCATCCCGGCGTGGGGCGATCAATCCCTTGTTGCATCGCCCCAACTCATAGAAGCGCTGCAGCTCGCCAATACGCAAGGCAAGCTCATCGTGGGATTGTGTTTGGGAGCGTTCGTCCTTGGCGATGCCGGGCTGCTCGATGGAAAGGAAGCAACCACCCACTGGGCCGTCCGTGACCAGTTTGCGCAACGTTTTCCCAAGGTCCGATTCAAGCCCGAAGTGCTCTACGTCAGCGCCGATAACATCGTAACGTCCGCCGGAACGGTCGCGGCAATCGATTGCTGCCTGCACCTGGTACGCGAGCGACTCGGTGCAGACGTGGCGAATCGCACCGCGAAAATGCTCGTGACGCCACCCCACAGGCCCGGAGGCCAGGCGCAGTATGTTGAACACCCGGTACCGCAATTAGCTGGCGAGACTCACCTGTCCGACGTCCTGACGTGGGCCCGAATGAACCTGTCCGGAGACCTCTCCCTCGACGTGCTGGCAGACATGGCGAAAATGAGCAGACGGACTTTTACCCGTCGGTTCAAGGAGGCGACTGGCACAACTGTGTCGAAATGGTTGACCGCTGAACGAGTGGCTAGGGCGCAGGCGTTGCTGGAAACGACTGAGTTGCCTATTGAATACATCGCGGGGGAGGTGGGGTTTGGGACGTCATTGTCGTTGAGGCAGCATTTTGGGGTGCATCTGGGGACGTCGCCTTCTGATTATCGGAAGATGTTTTGTCTTGGGGTGGGGCGGAAGATTTGAMLPIRVAVLAFEGVSLFHLSVPGMVLGTAQPAPDGPRYEINYCAEVPGVISTDQDIGLSVSLGLELMETSDVIIIPAWGDQSLVASPQLIEALQLANTQGKLIVGLCLGAFVLGDAGLLDGKEATTHWAVRDQFAQRFPKVRFKPEVLYVSADNIVTSAGTVAAIDCCLHLVRERLGADVANRTAKMLVTPPHRPGGQAQYVEHPVPQLAGETHLSDVLTWARMNLSGDLSLDVLADMAKMSRRTFTRRFKEATGTTVSKWLTAERVARAQALLETTELPIEYIAGEVGFGTSLSLRQHFGVHLGTSPSDYRKMFCLGVGRKINANANANANA
D1-35_02718891hypothetical proteinATGAAACTCAGAACTTTACCGCTTGCCGTCAGCATGGCTTGTGCCGTAGCCGCTGCCCCCGCGTTCGCCAGTTCGAATGCTCCCAAGGCACCTGACGCCTCTCACAAGTTGGATTTGCAGCAGGTTCGTAACGCCACGGTGAAAATCACCTACGGTGACACCACTTTCCTGATTGATCCGATGCTGGCAAAAAAAGGCGCTTATCCGGGTTTTGAAAACACCTATCGGAGCAACCTGCGCAACCCCTTGGTTGATCTGACGGAGTCGCCTGAGAAAGTTATCGCTGGAGTCGACGCCGTCATCGTCACCCATACGCACCTGGATCACTGGGACGATGCCGCGCAGAAAGCGCTGCCTAAAGACATTCCGTTGTTCGCCCAACATGAAGAAGATGCACAGCTGATTCGTTCCCAGGGTTTCAAGAACGTACGCGTACTGACGGATGAAGCCGAATTCGGCGGCGTGAAGATCACCAAGACCGGCGGCCAGCATGGCACTGACGAAATGTATGCCGTGCCAGCGCTCGCAAAACCGCTAGGCGAAGCCATGGGCGTGGTTTTCCAATCGCCGGGCTACAAGACGCTCTACCTAGCGGGTGACACGATCTGGCGTAAAGAGGTCGACCAGGCGATCAACCAGTACCGCCCGGAAGTTATCGTGCTCAACGCCGGGGAGGCAAAAATGGCCGGATTCGACGGCTCGATCATCATGGGCGAGGAAGATGTGCTTCGCGCCTCAAAAGCCGCGAAAAACGCACAGATTGTCGCGGTGCACATGGACGCGATCAACCATATGTCCCTGACCCGTGAAGAACTGCGCGCTTACGTCAAGAAGCAAGGGATTCAGGGGCGTGTGGACATTCCGGAAGATGGGGCTTCGCTGGAGTTCTAAMKLRTLPLAVSMACAVAAAPAFASSNAPKAPDASHKLDLQQVRNATVKITYGDTTFLIDPMLAKKGAYPGFENTYRSNLRNPLVDLTESPEKVIAGVDAVIVTHTHLDHWDDAAQKALPKDIPLFAQHEEDAQLIRSQGFKNVRVLTDEAEFGGVKITKTGGQHGTDEMYAVPALAKPLGEAMGVVFQSPGYKTLYLAGDTIWRKEVDQAINQYRPEVIVLNAGEAKMAGFDGSIIMGEEDVLRASKAAKNAQIVAVHMDAINHMSLTREELRAYVKKQGIQGRVDIPEDGASLEFNANANANANA
D1-35_02719729hypothetical proteinATGGTACTCACCGTCAGTTCCGCTTACATCCCGCCGGCCAATACCAACCTCACGCGCTCCGAACAGGCGCTCGTGACCAAGGCGCCGACAGACGCTGCGAAAGAACTCCTGGCAAACGCCAGCCCAGCGGCCATCTTCCATCCCAGCGAAGAAGCCCAGGCAACAATGCCGATGCCTGTGGCGATCGAGACCTGGATCGGTCGCTCTCAATCACCGGACTTTCCTCGATACGTAGAGACCCTCAAAGGGGCAACCAGTACGCTGAAGTCCTCGTTCGAGGATTTCCAATCCACGCTCTCGACGACCCACCCGGACTTGGCCGGGAAGAAATACGGCTTCACTGTCGAAGCCGACGGCAGCCTGAAGGTGCTCAACTCCGCCGGCAAGCTCAGCAGTTCCGATATCCAACGGCTGACCGATCTGCTCAACGACTCCAAGGACCTGAAAGCCGCCGCCATCGCAGTTCGCGACGCCTCCATCGACCTGGTCGACGCCGACTCGCCTTGGTCCGGCAGCTACCTGGGCCTCTACAGCCTGACCAAGGAAAACTTCGCCAACACGATCGATCTGGCCCCGTTGCTGAAAGACCGTGGGTCGGTGTCCATACAGGAATATTCCGACGGGTTGTTTTTCAATCAGTTGGCGTACAAGGGCGAGCGGGCGACGCGGGAGACGGAACAGGCGATGTTCGAGAGGCGGGCGGCGGAGCGGTTTTCGGTGCGGGTTTGAMVLTVSSAYIPPANTNLTRSEQALVTKAPTDAAKELLANASPAAIFHPSEEAQATMPMPVAIETWIGRSQSPDFPRYVETLKGATSTLKSSFEDFQSTLSTTHPDLAGKKYGFTVEADGSLKVLNSAGKLSSSDIQRLTDLLNDSKDLKAAAIAVRDASIDLVDADSPWSGSYLGLYSLTKENFANTIDLAPLLKDRGSVSIQEYSDGLFFNQLAYKGERATRETEQAMFERRAAERFSVRVNANANANANA
D1-35_027201566aer_2COG0840Aerotaxis receptorATGAGAAACAATCAGCCGGTCACGCAACGTGAGATTTCGCTCGCACCTCAGCAAAAGCTGATTTCCACCACGGATACGCGAGGCGTCATCACGTATTGCAATGACGCCTTCGTCGAGATCAGCGGATTCGACAAGGTGGACCTGATCGGCGCACCACAGAATATCGTTCGTCATCCGGATGTGCCGCCCGCCGTGTTTGCGCATATGTGGGCCGCGCTCAAGCAAGGCAAGCCGTGGATGGGGATCGTCAAGAACCGCTCGAAAAACGGCGACCATTATTGGGTCAATGCCTACGTCACGCCTGTTTACGAAGGGAGCCAGGTCGTCGGTTACGAATCGGTACGAGTCAAGCCGACGGCCAGCCAGATCCGCCGCGCCGAAGCGCTCTACAAACGCATCAGACTCGGCAAGGCAGCTGTCCCGGGTGTTGATCGGTGGTACCCCTTCCTGCTCAGTTGGGTACCGGTTCTGTTGATGGGTTTATTGGGCACAGTAGGCGGCGCCTTCCTCAATACCGCCATGGCAATGCTGCTTGCTGTCGGAATATCGATTCCGGTCGGGTTGATCATCTCGCGCCAGCAGAACAAAGGCGCGCTGCGTCTGTTGGAAATGGCCGAGGCATCAACCTCGGATGCGTTGCTGGCGAAAATGTACAGCGACGAGCGCGGCCTGCAGGCTCGCCTTGAAACAGCTTTCGAGAGCCAGGCATCCCGGCTCAAGACGTGCCTCACTCGCCTGCAGGACACCGCCGAGCAACTGACCGGTTTGGCTGGCAGGTCCGACGGCCTGGCCGCCGACAGTTCACGCGGGCTTGAACGCCAACGCGTCGAGACTGAGCAAGTGTCGGCCGCGGTGAATCAGATGTCGGCGACCACCCAAGAGGTCGCCAGTCATGTCCAGCGCACGGCTGACGCTACCCAGGAAGCCAACGTGCTGACCGGGCGCGGACGCGACGTGGCCCGTGACACCCGCCAGGCGATTCAGCGTCTCTCCGAGGTCGTGGGCGAAACCGGGCTGACGGTTGCGCAGCTGGCCAAGGACAGCAACGAAATCGGGACGGTGGTCGATGTCATCAAAGGCATTGCCGACCAGACCAACCTGCTGGCGTTGAACGCCGCCATCGAAGCCGCGCGCGCCGGAGACATGGGCAGGGGGTTCGCGGTGGTTGCCGATGAAGTGCGCCAGCTGGCACAGCGCACGACTGAGTCCACCACGCAGATTCATAGCCTGATTTCCAAGCTGCAGGTCTCCTCCAACAACGCCGTGAAAACCATGGAAAGCGGCCATCGACAAGCTGAGGAAGGCGTCGCCTGGGTGCTTGAGGCAGACAAAGCACTGATCGGCATCAGCGAAGCCGTGGCACACATCACCGACATGACCAGCCAGATTGCCGCGGCGACAGAAGAGCAAACCGCGGTGGCCGACGAAATCAGCCGCAATATCACCACTATCGCGAACCTGGCAGACCAGACTTCCGAACAGGCCAGGCACTCCGCGGAGTTGAGCAAGGAATTGACGCAAACAGCCATGACTCAGTACTCGTTGGTGGAGCGATTTAATCGCTAGMRNNQPVTQREISLAPQQKLISTTDTRGVITYCNDAFVEISGFDKVDLIGAPQNIVRHPDVPPAVFAHMWAALKQGKPWMGIVKNRSKNGDHYWVNAYVTPVYEGSQVVGYESVRVKPTASQIRRAEALYKRIRLGKAAVPGVDRWYPFLLSWVPVLLMGLLGTVGGAFLNTAMAMLLAVGISIPVGLIISRQQNKGALRLLEMAEASTSDALLAKMYSDERGLQARLETAFESQASRLKTCLTRLQDTAEQLTGLAGRSDGLAADSSRGLERQRVETEQVSAAVNQMSATTQEVASHVQRTADATQEANVLTGRGRDVARDTRQAIQRLSEVVGETGLTVAQLAKDSNEIGTVVDVIKGIADQTNLLALNAAIEAARAGDMGRGFAVVADEVRQLAQRTTESTTQIHSLISKLQVSSNNAVKTMESGHRQAEEGVAWVLEADKALIGISEAVAHITDMTSQIAAATEEQTAVADEISRNITTIANLADQTSEQARHSAELSKELTQTAMTQYSLVERFNRPGPT0015700_812DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSMETHYL-ACCEPTING_CHEMOTAXIS_PROTEINS,PGPT0015700-aer-K03776NANA
D1-35_02721255cimCloacin immunity proteinATGGGCTTAAAGTTAAGGATGGACTGGTATGACCCGAAAACGGAGTGGGGTGAAGGTAAGGAATATACGGTAGATTTACGGGAAGATAAGTCAGCTATCGCCGCACTGGGTCTAGAGAACGAGCCAAACATTTATGACGGTGGCTTTGATGTGCTGGAAGAATGGATTCCGATTCTTCAACCCCTCTTCAGCCACCTGATCGTTCCCGAACAGTTTGATTACCAGATCTCATTTCGTTACCGAGCCGCTTGGTAAMGLKLRMDWYDPKTEWGEGKEYTVDLREDKSAIAALGLENEPNIYDGGFDVLEEWIPILQPLFSHLIVPEQFDYQISFRYRAAWNANANANANA
D1-35_02722249hypothetical proteinGTGCCTTATTACTCGATAACTGGTTTTTACCCGGATGAAAAAAATGACGACTCACTACAATTTGAGATTGATATAAAAGACATCGAACAAAAAGAAGCCTTGGCTCAGATGGCCGAAGCAAAACCATTCAGCAAAATTGGTCCAGGGGAGCAGGAAATTACGGAAGAGCAGCTCAAGAGAGTTGAAGCGATCCTGGGCAGGAAGCTCCCCGTGGGACTGGAATATTTTATTGGGGCGACAGCCGACTAGMPYYSITGFYPDEKNDDSLQFEIDIKDIEQKEALAQMAEAKPFSKIGPGEQEITEEQLKRVEAILGRKLPVGLEYFIGATADNANANANANA
D1-35_02723255imm_1Colicin-E3 immunity proteinATGGGACTCAAACTGAGGCTCGAGTGGTATAGCAAACAAACCGAATCTTTCGAGGGGGAGGAGTACTCGGACGACTTCGGTGATGACGGTGCTGTCATCGACGCTTTGGGCATTCCTTTCGAGAATAATATAAATAACGGTGGATTTAATGTTCCCTTGGAATGGATAGAAATTCTTCGGCCCTATTTTCAACATCTTATTGATTGGGATCGTTATGACTATCAAGTAGCCTTCGATTATCGAGACAGCTGGTAAMGLKLRLEWYSKQTESFEGEEYSDDFGDDGAVIDALGIPFENNINNGGFNVPLEWIEILRPYFQHLIDWDRYDYQVAFDYRDSWNANANANANA
D1-35_02724231hypothetical proteinATGAGGCACGTCATTGAGGTTTTCGACGCGGGAACTGAGGAGTTGCTGCAGAGCGTGGAGATTCCAAAGTCGTACTCGACTCAATTGAGCGAACTAATGGGCTGGACGCAACCTGAAGACCCGTACGATGGCTATGACCTCTCGTCGGAACAGGTAGAGGTATTAGAGAGGTGGACCAGTACCGCATTAAATGGGGATAACGTCATTATCCAAATTGTCTGCCTTGAGTAAMRHVIEVFDAGTEELLQSVEIPKSYSTQLSELMGWTQPEDPYDGYDLSSEQVEVLERWTSTALNGDNVIIQIVCLENANANANANA
D1-35_027251113hypothetical proteinATGACCTCCAGCGAGGTGGCGGAGTACGAAGCACTCCAGCGTGGCCACAAAGCCATGCTTGCCCGACAGGCTGCTTACGAAAAACAACGTTGGGCCAAGGTTGAAAGAACGCCTCTCGTCATCACCGGGTCGGTGTTCGCCAAAAGCTGCGCGCTGCCCAACGGAATCATTGACTACAGCAACCCCAACGGCTTTGTTCCGCCGGACCTGATCAAGCAGTACGGCGATCTGATGTGGCTTGGCGCCAGGAGCCCCGACGCGTCGGGAACCCTTCCCCTGAAGCAGATTGGCTCAAGCGCGATACCCGCCGCAATGGGTAGGCTCGCACTGGGCGGTTCCGCAGTGTCAACCGCCGGAGCCATCGGCGGCACGGTCGGCGCCGCACTGTTGACCGGCATCGTCGCCTTGCTCTGGCCCTCCAGCCTCGGCGACAGCGCACTCTACAGCGAAGACCAGTTGCGCAATCTCAAACAGGCCCGCAGCCGCATGCGCCTGAGCATCGAGCAGCAGGCCGATGGCAGCCTCAAGGGCTATGGCTTCTACACCGGCCAGAACCGCGACTGGGAAATGGTCGACGTCATCCAGCTGACGCCGCGTGCCGACCAATACGTCGCCGACCTTGGCGACGGCATCGAACTGATCTGGACCCCAGCCATCGACCCCTCCGACACCCTCGGCATCCCGGCCTTGGAAGCCGCCCCTCAGACGCCACACATCTGGATTTATCCGCCGACGCCCGTGGCGGACAGCATCATCGTCAACCCGATCTATCCGCCGGAGTACAAAGATTTCATTCTGGTGTTTCCGGTGGATTCGGGGGTTCGGCCGGTTTATGTGGTTTTGAGTGTTCCGGGGGATCATAAGTATTACCCATCTCCACTGTCGCTTCCCGCCTTTGCAGACGCGAAGTCCGCCCCCTTGAAAACGTCTGTACGTGGCGGAGGTAAAAAACGTCGACGATGGAAGGATCGCGCGGGAAAAATCTATGAATGGGACTCTCAACATGGCGCGCTAGAAGTATATACAAAGCAAGGTAAGCACCTCGGCGAGTTCGATTTCGTAACGGGGGAGCAAACAAAACCTGCTGATCCATCTAGGAGGGTTGAAAAATGAMTSSEVAEYEALQRGHKAMLARQAAYEKQRWAKVERTPLVITGSVFAKSCALPNGIIDYSNPNGFVPPDLIKQYGDLMWLGARSPDASGTLPLKQIGSSAIPAAMGRLALGGSAVSTAGAIGGTVGAALLTGIVALLWPSSLGDSALYSEDQLRNLKQARSRMRLSIEQQADGSLKGYGFYTGQNRDWEMVDVIQLTPRADQYVADLGDGIELIWTPAIDPSDTLGIPALEAAPQTPHIWIYPPTPVADSIIVNPIYPPEYKDFILVFPVDSGVRPVYVVLSVPGDHKYYPSPLSLPAFADAKSAPLKTSVRGGGKKRRRWKDRAGKIYEWDSQHGALEVYTKQGKHLGEFDFVTGEQTKPADPSRRVEKNANANANANA
D1-35_02726387hypothetical proteinATGCATCTGCGTTCAAGCTTGTTGTGCCTGTGCCTTTACAGCAGCCTTGGCCAGGCCGCTGTCGACTGTTCTGCCCTGACGGAAAAGCTCTCGGGAACGGTCCCTGAATTTCATCCGTCAGTGCAAGGCAAGGTCATTGGCACCGGGCGCCTGCATTTCCACGAAGCGCCGGATGGGGCTTGCGCCAACAAGAAGATTTTCGTGATACCCGGCGACTCCCTCACCGTTTACGCCAGTCTTGAAGACGAGTCCTGGCTGGAAGTGAATTACATCGCCAAGGATGGCGAGGACTACACCGGTTGGGTGAAGGCAGACCGGGTACAGATTGGCGAACCTTACGGAGCTCAACCGGACACCGATGACGCGCCAGAGGCTGATGCCCAATAAMHLRSSLLCLCLYSSLGQAAVDCSALTEKLSGTVPEFHPSVQGKVIGTGRLHFHEAPDGACANKKIFVIPGDSLTVYASLEDESWLEVNYIAKDGEDYTGWVKADRVQIGEPYGAQPDTDDAPEADAQNANANANANA
D1-35_02727933hypothetical proteinTTGATTGGATATCGGTTCGAGCGCACCGCGCGGGGTGACTTGCACATCCACTCGCTCAACCGGGTGCAGAGCGTATTCGTGTTGTTTACCAGTGCGCTGGCCTTGATCTTTCCCGTGGGAGCCGTGCTGGCGATTGCCACTGCAGACTCGTCGCTGGTGGGCCTGGACCCACTGACCTTGCTGCTGATGGTGCTCGGGCTGCTGTTGGTTCCTGCCCTGGGCCTGGCGCTGCTGGTCTACACCGGTATCCGCGAAACCCTGCTGCTGTCGCGCGTCGACGCTGAAGGCAAGCGTCGCACCCGAAACTTTTTTGGACGCCGTGAGCGGGTGCGATCGGTGTTCAGGATCGACGCCGTCAAATACCTCGAACTTCGCCGCCACCCGGAGGCCGAGCCAGCCCGCACCCAGCTATGGCTGGTGCTGCGCGATGGCACCGAGCACCGCCTGACGAGCGACAATGTTCCGGTAGTGCCGGGAAGCAAACGCACTGACCTGTGGCTGCGTGAACTGGCCGACTACCTGCAAGTGCCAGTGCCCAGCGAGGTCATGATCGGTTCGACGGCCGTTGCGAAGGCAGCCTATCGGCCTGCTCCAACCCCGGCGAAGATCGCCAGGCAGCGCAAAGCAAAGGCGCCGACGCCTTCGGCTGAGACGACTGAGCAACTGGGCACCCCCGTCCGCGCCCTGCTCGCCCTGCTTGGCGCCTTCCTGGCTGTGTATGAGCTGACCCGCATCATCACGTTGGTGCCTTCGCTGTTTACCGGACGGCTGCGCATTGGCATCAGTCGCCCAACGACCTTCTACTGGGCCGAGGAGCCGATGACCTTTTCCTTTCACATGCTTATCGGCGTCGCCGAGCTGCTGGTCATCGGGGTCATCGCCTGGGGTTGTTTGCGCGTGGCGATCGAGGGGCGGATGAAGTCCGATCGTTGAMIGYRFERTARGDLHIHSLNRVQSVFVLFTSALALIFPVGAVLAIATADSSLVGLDPLTLLLMVLGLLLVPALGLALLVYTGIRETLLLSRVDAEGKRRTRNFFGRRERVRSVFRIDAVKYLELRRHPEAEPARTQLWLVLRDGTEHRLTSDNVPVVPGSKRTDLWLRELADYLQVPVPSEVMIGSTAVAKAAYRPAPTPAKIARQRKAKAPTPSAETTEQLGTPVRALLALLGAFLAVYELTRIITLVPSLFTGRLRIGISRPTTFYWAEEPMTFSFHMLIGVAELLVIGVIAWGCLRVAIEGRMKSDRNANANANANA
D1-35_02728501hypothetical proteinATGGAAATATCGCCTCGCTTTGTCGTTCATGAATCAGAGCATTGGCTCATCAATCACCGCGTGGACAGTGCACTGCCCGGCTACCTGATGCTCAGCGCAAAACAGAGGACGAATGCCTTGGCATCGCTGTCGGCTGAAGCGCTGGCGGAGTTGGGTGTATTGCAAGCGCGAATCCAGCACGCCATCGAAACCTGCCTGCAACCAAGACGACTGTACATCGGCCGTTTTGGTCATGACGCTGGTTACTCCATCCACTTCCATTTCATTCCGGTTTATCACTGGGTCGAAGCGCTGTTCTGGAACGACGACAGGTACCGGCTGCTGCAGACTTTCGGCTCGATCGACAGCAATTTGTCTCAGACCGATGGTGCGGAATTGACGCTCTTTGTCTGGCGGGAATTTTGCGAGCGTCCTGATCCTCCGCCGATACAGGGGCCGTCTGTCGAGCAGGTCGTGGCGGTGTTACGGCGGGAATTCGGTTTTCGGCTTGTTGATGAATAGMEISPRFVVHESEHWLINHRVDSALPGYLMLSAKQRTNALASLSAEALAELGVLQARIQHAIETCLQPRRLYIGRFGHDAGYSIHFHFIPVYHWVEALFWNDDRYRLLQTFGSIDSNLSQTDGAELTLFVWREFCERPDPPPIQGPSVEQVVAVLRREFGFRLVDENANANANANA
D1-35_027291056hypothetical proteinTTGAACAATGCTTTTGCGGCTCTGTTTCTGGCTTGCCTGGCCACCTCCGTATTCGCTGACGAAAACCCTGTCGGCTTTCGCTCTTCGACAGTGTCGAATCCACAGGATGACCGGCCGCTGGAAATGGTCGTCTGGTATCCCGGAGCAACTGCCGCAACCGCGCAACTGATCGCCGATAACGCGGTATTTGTCGGCGCATCTGCCGTTCGTGACGCGCCGCCGGCTGCCGGTGAGCATCCCCTGGTGGTGCTTTCTCATGGATACAGGGGCAACTGGAGCAATCAGGTCTGGCTTGCCAGTGCCTTGGCCCGTAAGGGCTACATCGTCGCGGCCGTCAATCATCCTGGCACCACGACCCATGACCGCAGTCCGCAAGCGGCGGCGCAGTTATGGCAGCGGTCCGTTGATCTGCGCCGAGCCATCGATGAGGTCACGACTCAACCGGAAGAATTCGGCCAGGTTGCCAATAATCGCGTCGCAGTCGTGGGCCATTCACTCGGTGGCTGGACCGCCCTGGAAATGGCCGGTGCCCGTTTTGATCCGGACCGCTTCGCCGACGATTGCAAAACCCATCCGCAGCTAGCCAGCTGCACCGTCTACGGGCAGATGAATCCGGCGAGTAGTCCGGACTCGAAAGCCGCGCTGGCCGCCGACTGGCGCGACAAACGCGTCACGGCCGTGATCACTCTCGATCTGGGCCTGTCGCGAGGCCTGACCGATGAAAGCCTCTCCGCGCTGCCGGTGCCCGCCCTGGTGATTGCTGCCGGCGTGCCCTCGCGCGAACTTCCCGCCGAGTTGGAGTCTGCCGACCTCGCCAGGCGCCTGCCGCCGGTGTCCAGCCGTTATGTGGAAATCAGCGACGCCAGCCATTTCAGTTTCATGTCGATTTGCAAACCTGGCGCGCAGGCAATGCTCGAAGAAGAAGTGCCAGGCGATGGCATCATTTGCCGGGACGGCGAAAACGGGCGTGATCGTGGGGTGATTCAACAGGGGGTCGTATCGTTGATAGCGGATTTCCTGGCGGGAACGCCTGCGTCCAGTGGAGGCGGGTTGTAAMNNAFAALFLACLATSVFADENPVGFRSSTVSNPQDDRPLEMVVWYPGATAATAQLIADNAVFVGASAVRDAPPAAGEHPLVVLSHGYRGNWSNQVWLASALARKGYIVAAVNHPGTTTHDRSPQAAAQLWQRSVDLRRAIDEVTTQPEEFGQVANNRVAVVGHSLGGWTALEMAGARFDPDRFADDCKTHPQLASCTVYGQMNPASSPDSKAALAADWRDKRVTAVITLDLGLSRGLTDESLSALPVPALVIAAGVPSRELPAELESADLARRLPPVSSRYVEISDASHFSFMSICKPGAQAMLEEEVPGDGIICRDGENGRDRGVIQQGVVSLIADFLAGTPASSGGGLNANANANANA
D1-35_02730555hypothetical proteinATGGAAAAACTGACTCGTCACCGTTGGATCGCGGCAGGCTTCGAGGCCCTCGACCAGGCAGGCCAGGCAGGCGTCTCGGCCGAAAGCCTGGCGCGTCGATTGAATGTGACCCGTGGCTCGTTCTATCACCATTTTCGCAATCGCGAAGACTTTGTCCGCGCTTTGCTGGCTGCCTGGGAAGAGGACTACACGGGGCGCATGCTTGCTTATGCGGGCCAGGGTCGGAGCGCGCGAGAGACGTTGCAGCGCTACCTGGATATCGCCGCGCAGAAACAACCTGGGCGGGAAGTGTCCATCCGTGCCTGGTCGCTGCATGATCCGTTGGTTGCCGAGTTCCAGCAGCGTGTCGACGCAAGACGATTGGCCTTTGCGATACAGGCGTGTCGTCGCTTGGCCCCGGCGCCCGGTCAGGCGGAGGTCATCGGGCAGATGGCCCATTTGTGCCTGATTGGCGGGCAGCAGGCCGGAATACGACGTGATGCGGCGCGCTTCAATGGTTTCGTGAGCCGGGCTTTTGCCTTGGTCGAGGGCGTTATTGCGCCATGGAGAGGCTGAMEKLTRHRWIAAGFEALDQAGQAGVSAESLARRLNVTRGSFYHHFRNREDFVRALLAAWEEDYTGRMLAYAGQGRSARETLQRYLDIAAQKQPGREVSIRAWSLHDPLVAEFQQRVDARRLAFAIQACRRLAPAPGQAEVIGQMAHLCLIGGQQAGIRRDAARFNGFVSRAFALVEGVIAPWRGNANANANANA
D1-35_02731630hypothetical proteinTTGAAGCAAATCGCCCTGATCGCTTTCGACCAGTTCACCGACATCGACCTGTTCCTGATGTGGGACATCTTAGGCCGCAATACGCAAGACTGGCACGTAAGAATTCTGGCCTCCAGCCCTGTCGTGACATCGGCGCACGGCTTGGCGGTTTCGGTGCACGGCCCGCTGTGCGAGGCCAATGGCGCGGACGCGGTGTTGTTCGTCAGTGGCAAACAAGGCATACCTGCCGCGCTTGCAGCTGCGGACTTCCTACCGTCGTTTGAACTCGATGCCCGACGCCAGCGAATCGGCTCGATCTGCGCCGGGGCCTTTATTCTTCAGCGGCTTGGGCTGCTACCCGACGGCCGGGCAACCACCCACCCGGAGGCTCGCTCAGGCCTGCTGGCCCTGGGAATCGAGCCCGTGGATCAGCCGCTGGTCTGCCACGGGAATGTCGCCACGGCAGGCGGATGCCTTGCCGCGCTTTACCTGGTGGGATGGCTGGTTGAATCCTGGTTCGATGTCGAGAAGCGCCGCGCAACCCTGCTCCCCGTCCTGCCGGCCGGGCAGCAAGCGCTCTACGATATCCTGATCGGGCTCAGCATCCGACAAGGCCAGATCCAGAGAATTGGGTCCAGGCCAGGCGCTTGAMKQIALIAFDQFTDIDLFLMWDILGRNTQDWHVRILASSPVVTSAHGLAVSVHGPLCEANGADAVLFVSGKQGIPAALAAADFLPSFELDARRQRIGSICAGAFILQRLGLLPDGRATTHPEARSGLLALGIEPVDQPLVCHGNVATAGGCLAALYLVGWLVESWFDVEKRRATLLPVLPAGQQALYDILIGLSIRQGQIQRIGSRPGANANANANANA
D1-35_02732426hypothetical proteinATGTCTGTAAATTCACCTACTGAACCGACCGCGAACGGATCGATGCTTGATCGCTGTATCCGCTTGTCACGCGCCTACACCTCAGCCGCGCGGCGGGTCGATGCCAAGCTTTCCGCCGTGCATGGCCTGAGCTTCAGCGACTTCATGATTCTTTACCACCTCAAGCATGCCCACAACTCCCGGCTTCGACGCGCTGATCTGGCCGATTGCATGGGCCTGACTGCGTCGGCGGTGACCAAGTCCCTGCTGTCGCTTGAAAAAATAGGCTTGGTTTCCCGACAAAGCGATCCGCGAGATGCGCGCGTGGGCTACGCCTGTCTGACCACGACTGGCGAACAGGTGTTTGCCGACGCGCAGGTTTCTGCGGAGTTCGCTTGCCAGGAGGTTTATGAGGCGATGGTGGGTGAGTGGAACAAGGCCGGTTGAMSVNSPTEPTANGSMLDRCIRLSRAYTSAARRVDAKLSAVHGLSFSDFMILYHLKHAHNSRLRRADLADCMGLTASAVTKSLLSLEKIGLVSRQSDPRDARVGYACLTTTGEQVFADAQVSAEFACQEVYEAMVGEWNKAGNANANANANA
D1-35_02733750puuD_1COG2071Gamma-glutamyl-gamma-aminobutyrate hydrolase PuuDATGTCTCGTCCACCCATGATCGGAATCATCGCCTGCTCAGGCAAAATCGGCCCACACACCGTCCAGCTCAGCAACGACAAATATGCCCAGGCCGTGGCCACCGCCGCCGACGCGTTGCCGGTCATCCTGCCGGTGTTTCCGGCGCTGCTCGATCCGGCCCGCATCATCGCCGGCCTGGACGGCCTGCTCTTCACCGGATCGCCGTCCAATATCGAACCCCACCACTACGACGGCCCGCCGAGCCCGCCGGGCACCGAGCACGACCCGGCCCGTGACAACCTCGCGCTGCCGCTCTGGCGCGCCGCCGTCGAAGCCGGCATGCCGGTGCTCGGCATCTGCCGCGGCTTCCAGGAAATGAACGTCGCCTTTGGCGGCTCGCTCCATCAACAACTCGATGGCCCAGGCGCCGAGCATGAACCGCCGAGCAATGAACCGGTCCAGGAACAGTACGCCCGCAACCACGCCTTGACGGTGCGGCCCGGTGGCGTGTTGGCGCGGCTGGGCCTCAAGGACGTGATCGAGGTCAACTCAGTCCACGGCCAGGGCGTCGCGCGGGTGGGGCAGGGCTTGCGCGTCGAGGCCGTGGCCGAGGATGGGTTGGTGGAGGGCCTTTCGGTGGAGGGCAGCCGGGCGTTTGCATTGGGGGTGCAATGGCATCCGGAGTGGGAGGTTATGGATAACGCGGATTATCGGACGATTTTTCGGGCGTTCGGAGAGGCATGTCGGGAGCGTGCGGAAAAAGACGCTTGAMSRPPMIGIIACSGKIGPHTVQLSNDKYAQAVATAADALPVILPVFPALLDPARIIAGLDGLLFTGSPSNIEPHHYDGPPSPPGTEHDPARDNLALPLWRAAVEAGMPVLGICRGFQEMNVAFGGSLHQQLDGPGAEHEPPSNEPVQEQYARNHALTVRPGGVLARLGLKDVIEVNSVHGQGVARVGQGLRVEAVAEDGLVEGLSVEGSRAFALGVQWHPEWEVMDNADYRTIFRAFGEACRERAEKDAPGPT0007640_56DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINE_USAGEPLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007640-puuD-K09473NANA
D1-35_027341767hypothetical proteinATGCCCATACGATCCGCCGCCCTCGTAACGCTGTTCGCCCTGTCTGCCAGCACCCTTGCAGTGGCGCAGGAACCGCTACGCCTGGAAGGCCTGAAACGCTGCGGCGACTTGCTGGAAAACCAGCGCCAGGAATGGTGCCTGACCGCGCGGGGGCTGGGTGACGCAACACCGCAACTGAAACTGGGCGAGAAACTGATTCCGGCCGGCAGCGTTCAGCGTGACGGGAACAACCTCCGCCTGCGCCTGGACCGCGCCGACTACCAGAGCGGCCCGCTCTGGCTGGAGGACGGCCCGCGGGCCAGCAACGCCGCCTGGCTGACGTTACGCACCAGCCACGTGGTGGCCGCCGGGCCGAACGAAGTGGCGAAGAACATGGACGGCCTGACCACGTATGTGGACCTGGTGAGCGTGCTCATCGAGGAAAGTCACGACGGTCGCCAGGAGGCCGAACGTCTCGCCGCCAAATACGGCGCGAAGGTGGTCGGCAGCATCGCCCCGCTGAACGTTTATCAGCTGCGCCTGCCGGCCAAGGACCTGGTCGAGCGCGATGCGCTAGTGCTGCGTCTGGGCGGCGAGACCAGTGTCGATGCGGTGGTGATAGAGGAGTCCGCCGCCGAAGAGACCGAGCAGGCGCCCGCCCAGCCAGAAGAGCCGAAGAAGCCGGCCAAGGACTCGGATGAATGGGCGGCGAATCGCTTCCTCGATGCGGTGCACTATTACCAGCGGCGCATCCCCGGGCAGCAGGCGCCGATCCGACCGCAGCCGGTGCGCATCGGCCTGATCGAGCGCGACGTGGATTTCGACACGGCGGATTTCGCCGATTACCTCGGCGCCTGCTCAATGCCGCGAACCTGCGTCTATGCCCGCGATGCGGACAAGCCGGACAACCACGGCACGACGGTCGCCGGCATCCTCGCCGCGCGCTGGAACGATGGCGGCAACAGCGGCTTCCTGCGGGGCCTGGACAAGGCCAGCGGCGGCTTCGAGGTGATTGTCGAGCGCAATTCCGACGCCGGGATCACCGCCAACATCGCCGCCTCGGTGAACCTCGTCGAGGACGGCGTGCGGGTGCTCAACTGGAGCTGGGGCATTCATCGAGTTGGCGCGAAAAACGTCAAGGGTGACGAGGTCGATTCGTTGCTGCGCTCGGGCATTGCCATGAGCGGCTACGAGGAGTTGCTGGAGGAGTTTTTCCTGTGGCTGCGCAAGGAACATCCCGACGTGGTGGTGGTGAATTCCGCCGGCAACGGCTCGTCATACTCGGGCACCGATGAATACCGCCTGCCCTCCTCGTTCATCACCGAACAATTACTGGTGGTCGGCGGGCATCAGCGCAGCGAACGCGCCGGGGTTGCGGTCGATGATCCGGCCTACGCAGTCAAGCGCGACTCCTCGAACGTCGACATGCGCGTCGACATCACCGCCGCCGCGTGCACCCACGCCTCGACGGTCAAGGCCGGCGAGGACGGCGCGGTGCATTGCGGCACGTCCTACGCCACGCCCATGGTTACCGGCCTGCTCGCGGCGATGCTGTCGATCAATCCGCAGCTTCATCCCGAGCAACTGCGCATGCTTCTGCGCCGCAGCGCCATGACCATCGGCGATAATCACGACTTCGAACAAATGGACGGCGAAGACCTCACCGCGCCCATCCTGCCGTCAGAGCGCAACTACCAGCTCAACGACAAGGATGTCGGTCGCTCGGCGCGGCTGGACATGCAAAAGGCCCTGGATCTGTCGGTACAGAGTCGCGATCGGGTGCGTTGAMPIRSAALVTLFALSASTLAVAQEPLRLEGLKRCGDLLENQRQEWCLTARGLGDATPQLKLGEKLIPAGSVQRDGNNLRLRLDRADYQSGPLWLEDGPRASNAAWLTLRTSHVVAAGPNEVAKNMDGLTTYVDLVSVLIEESHDGRQEAERLAAKYGAKVVGSIAPLNVYQLRLPAKDLVERDALVLRLGGETSVDAVVIEESAAEETEQAPAQPEEPKKPAKDSDEWAANRFLDAVHYYQRRIPGQQAPIRPQPVRIGLIERDVDFDTADFADYLGACSMPRTCVYARDADKPDNHGTTVAGILAARWNDGGNSGFLRGLDKASGGFEVIVERNSDAGITANIAASVNLVEDGVRVLNWSWGIHRVGAKNVKGDEVDSLLRSGIAMSGYEELLEEFFLWLRKEHPDVVVVNSAGNGSSYSGTDEYRLPSSFITEQLLVVGGHQRSERAGVAVDDPAYAVKRDSSNVDMRVDITAAACTHASTVKAGEDGAVHCGTSYATPMVTGLLAAMLSINPQLHPEQLRMLLRRSAMTIGDNHDFEQMDGEDLTAPILPSERNYQLNDKDVGRSARLDMQKALDLSVQSRDRVRNANANANANA
D1-35_02735927dmlR_16HTH-type transcriptional regulator DmlRATGAATCTTGATGTCTTGAATAACCAGCACAGCGACGAAATCGCCGCGTTCCTGGCCGTGGCCGCGCAGGGCTCATTCGTGGCGGCCGGCCGGCTGTTGCAACGGCACCCGACCATCATCTCGAAACGGCTCGCGGCGATGGAAAAGCGCCTGGGCGTGCGGCTGGTGGAGCGCTCCACCCGGCAGGTGCGGATTACCGAAGTCGGGGCCAAGCTGGAACAGCGCCTGCGCTCGGCCATCGAGCTGATGAATGAAGCTCAGGCGCAAGCGGCCGAGGGCGCCAGCGAGGTTCGCGGCACGTTGCGACTGGCATTGCCCGCCGCAATGGGCAGGCGTTGGCTCGGCCCGATGCTGCCGGGGTTTCTCGAGGCATATCCGCATGTTTCGATCATCGCGGACTACAGCGAACGCCTGGTCGACATCATCGATGAAGGTTTTGACGCGGCGATCCGGATTGGCGAACTGGATGACAACCGGCTGATCGCCAAGAAACTGAGCGATCACCGGCGCATCCTCTGCGCCTCACCGGCCTATCTCGAAAAACATGGCATGCCCCGGACGCCGCAGGACCTGGCCAGCCATAACTGCCTGCGCTTCAGCGGCCTGGCGTCTTTTCCTCAATGGCGGCTCCATCGTGGCAACGAACTGCAGACAGTCACGCCGAAAGGCAACCTCACCGCCAACGACAGTGAATCACTGCTGGCGGCGGCCTGCGCCGACGCCGGGATACTTGGCGCCGGCGATTGGTTGATGAGTCGTGAGATCGCCGCCGGCAGGCTCTTGCATGTACTCCCCGATTGGCACCTGGACACCGCCGGCGGGGTTTATCTGGTCAGGCCGTCGGCCAAGTTCCCCAGTGCCGTGGTGGTCGCTTTCAAGCAGTGGATCGAGGCGAGGTTCAGCCCGGCGCCGCCTTGGGGCCTGTGAMNLDVLNNQHSDEIAAFLAVAAQGSFVAAGRLLQRHPTIISKRLAAMEKRLGVRLVERSTRQVRITEVGAKLEQRLRSAIELMNEAQAQAAEGASEVRGTLRLALPAAMGRRWLGPMLPGFLEAYPHVSIIADYSERLVDIIDEGFDAAIRIGELDDNRLIAKKLSDHRRILCASPAYLEKHGMPRTPQDLASHNCLRFSGLASFPQWRLHRGNELQTVTPKGNLTANDSESLLAAACADAGILGAGDWLMSREIAAGRLLHVLPDWHLDTAGGVYLVRPSAKFPSAVVVAFKQWIEARFSPAPPWGLNANANANANA
D1-35_027369812-haloacrylate reductaseATGAACATGGCAACTGCGATCCGGTTCAACCAATTCGGCAGCCCCGATGTATTGACGCTGCAAGCAGCGCCCGAACAGTCGCCGGGGCCGGGCGAGGTCTGGCTCGAGCAAGAAGCGATCGGGGTGAATTTTCTCGACGTTACCCAGCGCAAGGGCGCCGTGCCGATTCCCTTGCCTTCCGGCCTCGGGCTTGAAGGTGCTGGGCGTGTGGCGGCCGTAGGTGCCGATGTCAGCAACGTAAAAGTCGGAGATCGCGTCGCCTACGCCACGGGCCCGATAGGCGCGTATGCGTCGGCCCGGCTTTATCCGGCGCAGCGGCTGGTCAGGATTCCCGATGCGCTGTCGTTCGATGATGCGGCGGCGCTGATGTTCAAGGGCATCACGGCGCAGTACCTGCTGAAAAGCACCTATCCCGTCGGGCCGGGCAGCACCCTTCTGCTTTACGGAGTGGCAGGCGGGCTGGGGGCGATCATGGTGCCGTGGGCCAAGCACTTGGGCGCGTTTGTGATCGGCGTGGTCTCCAGGCAAGCCAGCGTCGAAAAAGCCAAGGCATTGGGCTGCGATGAGGTCCTGGTGTTCGACGCCGACAGCCTGGCTTCGGATGTCGCACGTATCACCGGTGGGCAGAAAGTCGACGTCGTCTACGACCCGATCGGGCGGGTCTCTTTCCTGGCCTCCCTGGACAGCCTGCGACCCCGAGGCCTGCTAGTGTCGTTCGGCGCTTCATCGGGGGCGCCGGCAGCCGTGGAACTGGCGACACTCAATGCCAAGGGTTCGCTGTTCCTGACGCGTCCTTCATTGGCCGCGCATACCGCGACTGTCGATGAATACCAGGCGCGGGCCCAGGATGTCCTGGCCGCGATCGATTCGGCTGTCATCCAGCCACGAATCTGGGCAAGCTATGCGCTGGCTGACGCAGCATCGGCCCATGCCGATCTGGAGTCGGGGCGTTCATCGGGGGCGATCATCCTGAAACCATGAMNMATAIRFNQFGSPDVLTLQAAPEQSPGPGEVWLEQEAIGVNFLDVTQRKGAVPIPLPSGLGLEGAGRVAAVGADVSNVKVGDRVAYATGPIGAYASARLYPAQRLVRIPDALSFDDAAALMFKGITAQYLLKSTYPVGPGSTLLLYGVAGGLGAIMVPWAKHLGAFVIGVVSRQASVEKAKALGCDEVLVFDADSLASDVARITGGQKVDVVYDPIGRVSFLASLDSLRPRGLLVSFGASSGAPAAVELATLNAKGSLFLTRPSLAAHTATVDEYQARAQDVLAAIDSAVIQPRIWASYALADAASAHADLESGRSSGAIILKPPGPT0013255_7506DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
D1-35_02737867azoBNAD(P)H azoreductaseATGAGCATTCTCGTCATCGGCGCCACTGGCACCATCGGTTCACTCGTCACGCAAGGCCTAGCCGACGCGGGCGCCGAGGTCAAAGCCCTGGTGCGCCAACCCGGTAAACGGTCGTTCCCGGCCGGTGTCACGGAAGTTGTCGCGGACCTCACCGATGTCCCGTCGCTGCGCGCTGCGCTGTCGTCGGTACGTACGCTGTTCCTCCTCAACGCCGTGACGCCCGATGAGGTCACCCAAGCCCTGATCACCCTGAACCTCGCCCAAGAGGCAGGCATCGAGCGCGTCGTCTACCTCTCGGTGATCCATGCCGACCGGTTCACCAACGTCCCGCATTTCACCGGCAAGCACACGGTTGAACGCATGATCGAAAGCCACGGCATCGCCGCGACGATCCTGCGCCCGGCCTACTTCATGCAAAACGAACGCATGGTCCAGCAAACGATCCAGGACTACTCGGTGTACCCGATGCCGATCGGCTCGGCGGGCGTCTCGATGGTCGATGCGCGCGATATCGCCGATGTCGCTGTGGCCGAGTTGCTGCGCCGTGACAGGGCTTCGGCACCGCTGGAGCGGATCACCCTGGATCTGGTCGGCCCGCAAGCGCTGACCGGGGCGTCGGTGGCGAAGATCTGGAGCGCCGCGCTGGGGCGCGAGATTGCCTACGGCGGTGACGATGTGGCGGCCTTCGAAGCGCAGATGGCTTCGTTCGGTCCCGCCTGGTTGGCTTATGACATGCGCCTGATGATGGCCGGCATCCAGCAGTTCGGCATGACCAGCGAAGGCGCCATCGACCGGTTGCAGGCCATCCTCGGCCGTCCGCTGCGCAGCTATGAGGCGTTTGTCCGTGAGGCGGTTGCCGGAGAGTAGMSILVIGATGTIGSLVTQGLADAGAEVKALVRQPGKRSFPAGVTEVVADLTDVPSLRAALSSVRTLFLLNAVTPDEVTQALITLNLAQEAGIERVVYLSVIHADRFTNVPHFTGKHTVERMIESHGIAATILRPAYFMQNERMVQQTIQDYSVYPMPIGSAGVSMVDARDIADVAVAELLRRDRASAPLERITLDLVGPQALTGASVAKIWSAALGREIAYGGDDVAAFEAQMASFGPAWLAYDMRLMMAGIQQFGMTSEGAIDRLQAILGRPLRSYEAFVREAVAGENANANANANA
D1-35_02738876dmlR_17HTH-type transcriptional regulator DmlRATGAACCTGAATGCACTGATCGATTTCACACTCGTCGCCAGCAGCGAGGGATTGGGAAAGGCAAGCAGAGCAAGCGGCCGGTCCAAGGCGACCTTGTCGCGGCGCATCTCCGAGCTCGAAGAGCAATTGGGTGTGAGGCTGATCGAGCGCAGCGCGCGAGGCCTGAAGCTGACTGAAGCCGGCGAAACACTGCTGGCCCGGGCCGAGGGGCCGCTGGCCGAGGTGGCGGAGGCGTTGACGGCCGCGCGTGACGGAGGGTCGACGCCACGAGGACGCCTGCGTGTCGCCTCCCCGGTGCTGTTCTCGCAGTTGGCGATGGGTCGGATCGGTGCCGAGTTTTGTGCGGCCTACCCGCAAGTCACCCTCGAAGTGGTGGCGGAAGATCGGCTGGTGGACCTCGTCGAGGATCAATTCGACGTCGCCATCCGGATCAATCCGAGCCCGGACAACAGCCTGGTCGGGCGCTGCTTCGCCAAGGACCGGCTGGTGGTCGTGGCCGCTCCAGGCATACCCAGGCCAGAACCCGGCGCGATCCGCCCGGTTCCCGCCATCGTGATGCCGAGCTTCCAGCCCACCCACTGGACGCTCGATGGAGGGGAACTGGTGCTGGAGCCCATCCCCAATCTGCAGTTTTCCTCATTCCTGATGATCCGCGACGCCGCGATCGCCGGCGGTGGTGCTGCGCTCATTCCCCAATCGATCGCGTGGGACCAGCTGGCCCGCGGTGAGTTGGTCCAGTGGGGCACCGTGACCGGCGTCGAACCGCAACTCTGGGTCCTGCACACATCCAGGCGCCTGGCGGCGCCGAAGGTCCGCGCCTTCGTCGATTTCCTGTGCGCCAGATACCCGGACATGTCGTTGGTGCTCAAGGGATAGMNLNALIDFTLVASSEGLGKASRASGRSKATLSRRISELEEQLGVRLIERSARGLKLTEAGETLLARAEGPLAEVAEALTAARDGGSTPRGRLRVASPVLFSQLAMGRIGAEFCAAYPQVTLEVVAEDRLVDLVEDQFDVAIRINPSPDNSLVGRCFAKDRLVVVAAPGIPRPEPGAIRPVPAIVMPSFQPTHWTLDGGELVLEPIPNLQFSSFLMIRDAAIAGGGAALIPQSIAWDQLARGELVQWGTVTGVEPQLWVLHTSRRLAAPKVRAFVDFLCARYPDMSLVLKGNANANANANA
D1-35_02739162hypothetical proteinATGAATCGCCGTAAAAAGATCAACCAGCTACTCAAGGCCAATGCAAAAAAGGCCAGTGCAAAGCTGGCGCCGAAGAGCAAGGACCGATACATCAGCAAAGCCGACCGACTGAAGCTGGCGGCTGAGGCCGATCCAGAGACGACCGTTTCCGCTGAAAGCTGAMNRRKKINQLLKANAKKASAKLAPKSKDRYISKADRLKLAAEADPETTVSAESNANANANANA
D1-35_02740810hypothetical proteinATGATGACCAAGAACCCCATCGATCCACTGGCGCTTCAGCGCATCACCGCCGCCCACGGCACCCTTGAGGGTGCGTCGTACTTCGACGCGGAAGAAAGCCTCGTCCATGACGTGTTTCCTGATCGCATCGTTTTCCAGACCAACTACCTGGACCACAGCAGTTATGCAGTGGATGTCGTCGAAGGCGCGGTTCGGGTGCGCAAGACGCGGCTGGACAATTACCACCGGGGCCACAAGGCCCAAGTGATCGATGACGACATGGACGATGACGACTGGGCCGAACTTGGCAGTCTCTGGCAGCGTTTGAGCCTCGACCTCGACACCCAAGGCAACGGGCCGCCCGTGGATCTGGCCGATACGCTGGCCGACCTGTTCGATGGACTTTTCGACGAGGCGCAGGCGCAAGCGCTGATCGACAACATGCCGGCCCCTACCGGCGAGTGGGATTGGGCCTGGACGCAAGTGCAATCGGCGCTTTCCGAGGCCGGGCAGCTGGCTGAATTCGAATGGAAGGAGTGGTCGTCCTCAGGCGTCTACGCCATCAATGCCCTCGCCCCGCTAAAGCAACTGAGCATCGAAATCCCTGCTCCGGGCAGCAAGACCGTTGACGCCGTGAACCGCGCCGATGATTGGGAGCGCGCACTGCTGCAGTACTTCAACGCGCAGCTGGAACCCCACGATTTGAAACTGCTGGCCATCGGCACGCATTTCGATGAATACCAGGCATTTGCCTGCCTGCCCATGAACGGTCTGGGCCTGGTCAATGCGTTGGAAATCCTCGGCAGGCTGGGCATCGTCTATAAATACTAAMMTKNPIDPLALQRITAAHGTLEGASYFDAEESLVHDVFPDRIVFQTNYLDHSSYAVDVVEGAVRVRKTRLDNYHRGHKAQVIDDDMDDDDWAELGSLWQRLSLDLDTQGNGPPVDLADTLADLFDGLFDEAQAQALIDNMPAPTGEWDWAWTQVQSALSEAGQLAEFEWKEWSSSGVYAINALAPLKQLSIEIPAPGSKTVDAVNRADDWERALLQYFNAQLEPHDLKLLAIGTHFDEYQAFACLPMNGLGLVNALEILGRLGIVYKYNANANANANA
D1-35_02741237hypothetical proteinATGAAAAATTGTGTTTACTGCGGAGCCCTTATTCTCGCTGATAACGGTGAGTGCAAACGCTGCTCCGAGGCGATGAGGCAGACAGCCGCCGAAATGCTCCCGCCGAGTTCCGGGACGCCGAGGTGGGTGAAAGTCGTCAAGTGGCTGTTTATCGGGTTGCTGGCAGCGGTGCTGATTGCCGCAGCGGTGATCGCCTGGGTGATCAAATCGTTGGGGCCGATGCCTTCGTTTGGGTGAMKNCVYCGALILADNGECKRCSEAMRQTAAEMLPPSSGTPRWVKVVKWLFIGLLAAVLIAAAVIAWVIKSLGPMPSFGNANANANANA
D1-35_02742954cpo_2Non-heme chloroperoxidaseATGAACACCTTCAACCGCACCCTGGCTGTCGCAACCCTGGCCCTGGCCACCCTCGGCGCCGAGGCGGCGACGCCTGTGCAGGCCGGTGCCAGTGCTTCCGCAATCGGCAGCGTGATGCAGTCCGCCAGCTACATCACCACCAAGGATGGCGTCCAGCTCTATTACAAGGATTGGGGCCCGCGTAACGGCCAGGTCGTCACCTTCAGCCACGGCTGGCCGCTGGACTCCGACAGCTGGGAAGGCCAGATGATGTTCCTCGCCTCCAAGGGCTACCGCGTGATTGCCCACGACCGTCGCGGTCATGGTCGCTCCAGCCAGCCGTGGGAAGGCAACGACATGGACCATTACGCCGACGACCTGGCGGCGGTCATCGAAGCGCTGGACCTGAAGGACGTGACCTTGATCGGCTTCTCGACGGGCGGCGGCGAAGTGGCGCGTTACATCGGTCGCCACGGCACCGGTCGAGTCAAGAAAGCCGTGCTGGTGTCCTCGGTGCCGCCGCTGATGCTCAAGACCGACACCAACCCCGGCGGCTTGCCAATCGAAGTCTTCGACGGCCTGCGCAAAGCGTCCCTGGAGAACCGTTCGCAGCTGTACCTGGACATCGCTTCCGGCCCGTTCTATGGCTACAACCGCAAGGGTGCCAAGCCATCCCAAGGCTTGATCCAGTCGTTCTGGGCGCAGGGCATGCAAGGCGGCAGCAAGAACACCTATGACTCGATCGCGGCGTTCTCGGCGACCGACTTTCGCGGCGACTTGAAAAAATTCGACGTGCCGACGCTGGTGATCCACGGTGACGACGACCAGATCGTGCCCATCGATGCCTCAGGCCGGGCTTCGGCGGCGCTGATCAAGGATGCTCGATTGATCGTCTACCCAGGCGCGCCGCACGGCTTGACCGAGACGCACAAGGATCGCCTGAACCAGGACCTGCTGACTTTCCTCAAGGAATAAMNTFNRTLAVATLALATLGAEAATPVQAGASASAIGSVMQSASYITTKDGVQLYYKDWGPRNGQVVTFSHGWPLDSDSWEGQMMFLASKGYRVIAHDRRGHGRSSQPWEGNDMDHYADDLAAVIEALDLKDVTLIGFSTGGGEVARYIGRHGTGRVKKAVLVSSVPPLMLKTDTNPGGLPIEVFDGLRKASLENRSQLYLDIASGPFYGYNRKGAKPSQGLIQSFWAQGMQGGSKNTYDSIAAFSATDFRGDLKKFDVPTLVIHGDDDQIVPIDASGRASAALIKDARLIVYPGAPHGLTETHKDRLNQDLLTFLKEPGPT0013125_294DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013125-cpo-K00433NANA
D1-35_02743408hypothetical proteinATGGACCTGGCCGAGCAATACCGCAATTACATCGTCTGCCTGAATGCCCGTCGCTGGCAGGAGCTGGGCGACTTTGTCGACGATAGCGTGCAATACAACGGCGAACCGGTGGGTTTGGCGGGCTATCGGGCGATGCTGGAAAACGACGTGAGGACCATTGTGGACTTGCGTTTTACTATCGACCTGCTGGTGGTCGAACCGCCGAACGTGGCGGCCCGGCTGCTGTTCGATTGCTCGCCGCGCGGCCGGTTTCTCGGGCTTGAGACTGATGGCCGGCGGATTCGCTTTTCCGAGAATGTGTTCTACACCTTCGATGGCGGCAAAATCGTTCGCGTGTGGTCGGTCATCGACAAGGCGGCGGTGGAAGCGGCGCTCCAACGCGAAAGCCCTTCCGGAGAAGGGCTTTGAMDLAEQYRNYIVCLNARRWQELGDFVDDSVQYNGEPVGLAGYRAMLENDVRTIVDLRFTIDLLVVEPPNVAARLLFDCSPRGRFLGLETDGRRIRFSENVFYTFDGGKIVRVWSVIDKAAVEAALQRESPSGEGLNANANANANA
D1-35_02744393hypothetical proteinATGGACCGATTCACTGGCGGTTGCCTGTGCGGCAACGTGCGCATTGAAGCTTCAGGGCGCCCATACCGGGTTGGCCTGTGCCACTGCCTGGATTGCCGCAAGCACCATGGCGCGCTGTTTTTCGCCGCCGCCGTGTTCCCCCGGGACGCGGTGACCGTCAGCGGTGAAACCCGGGATTACGCCGGACGTTTTTTCTGCCCCCACTGCGGTTCGTCCGTCTTCGCCCGCAGCGGCGACGAGGTCGAAGTCAACCTGGGCACGCTGGATGCGCCCGACCAACTGATGCCCACCTACGAAAGCTGGACCGTGCGCCGCGAATCCTGGTTGCCGGCGTTTCCACTCTCACGGCGCTATGAACATGATCGCGAGGGCACGGGGCGGTTCGAGGGGTAGMDRFTGGCLCGNVRIEASGRPYRVGLCHCLDCRKHHGALFFAAAVFPRDAVTVSGETRDYAGRFFCPHCGSSVFARSGDEVEVNLGTLDAPDQLMPTYESWTVRRESWLPAFPLSRRYEHDREGTGRFEGNANANANANA
D1-35_02745927pgrR_3HTH-type transcriptional regulator PgrRATGGATCGTTTCGATGCGATGCAGGCGTTCGTACGTGTCGTGGAGGCGGGCAGCTTCACCAAGGCCGCCGAGACCCTGCACATGAGCAAGACCACCGTGACCCAACTGGTGCAGCAGCTGGAGGCGCGGCTGCGCGTCAGGCTGCTCAACCGCACCACCCGCAAGGTCAATGTCACCGCGGACGGCGCGGTTTTCTACGAGCGGGCGATTCGCCTGCTGGCCGACCTGGACGACGCCGAAACCAGCTTGTCCACTGCCCAGTCGCTGCCCCGTGGCCGGCTGCGGGTGGACGTGCCGAGTCCGCTGGCCGCGATGATCCTGGTGCCAGCATTGCCGGGTTTCTATCAGCGCTATCCGGACATCCAGATCGACTTGGGCGTCAGCGATCGCATCATCGACATGCTCGACGAAAATGTCGATTGCGTGGTGCGCGGCGGTGAACTGAAAGACCAGTCACTGATCGCCCGGCGCGTCGGCGACCTGGCCCTGGGCGTGTTTGCGGCGCCGAGTTACCTGGCGCGCGAGGGCATCCCCCGGCATCCCCGGGAGCTGGAAGATTCCGCGCACCGCATCGTCGGTTTCCTCTGGGCGCGCACCGGCAAGGCCTTGCCTTATGCCATGCACAAGGATGACGAACACCTTCATATCAAGGGCCGCCATGCGCTCGCCGTCGACGATGGCAACGCTTATCTCGCAGCCGGCCTGGCGGGGCTGGGCGTGTTATGGCTGCCCCAGTACATGTCCCGCCCACACGAAGCGCAAGGCGCGCTGGTGCCGCTGTTCGAAGGCTGGCGCCTGGAGTCGATGCCGCTTTACGTGGCTTACCCGCCGAACCGGCACATCAGCGCCAAGCTGCGGGTATTCATCGACTGGGTGGTGGAGCTGATGGCGCAACATGCGCCTATTATTGATCGGCCTGTGTCATGAMDRFDAMQAFVRVVEAGSFTKAAETLHMSKTTVTQLVQQLEARLRVRLLNRTTRKVNVTADGAVFYERAIRLLADLDDAETSLSTAQSLPRGRLRVDVPSPLAAMILVPALPGFYQRYPDIQIDLGVSDRIIDMLDENVDCVVRGGELKDQSLIARRVGDLALGVFAAPSYLAREGIPRHPRELEDSAHRIVGFLWARTGKALPYAMHKDDEHLHIKGRHALAVDDGNAYLAAGLAGLGVLWLPQYMSRPHEAQGALVPLFEGWRLESMPLYVAYPPNRHISAKLRVFIDWVVELMAQHAPIIDRPVSPGPT0028940_432DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-CHLORAMPHENICOL|TRIMETHOPRIN_EFFLUX_PUMP_BpeEF-OprC,PGPT0028940-bpeT-K18900NANA
D1-35_02746405yjgHCOG0251RutC family protein YjgHATGACACAGCGCGACGTTGTTTTCCCACCCGGCCGCCAAGCGCTCTACGAGCGCAACCGTTACTCGCCGGCGATTCGTTCCAATGGTTTCCTGTTCGTCTCCGGGCAGGTCGGCAGCACCGGGGACGGTTCACCGGAGCCGCACCTGGAGGATCAGGTCCGGCGTGCGTTCAACAATCTGAAGGCGATCCTGGCGGCTGCCGATTGCAGCTTTGACGATGTGGTTGACGTGACGGTCTTCATGGTCGATCCGCAGTCGATATTCGAGCGAGTCTGGAGCGTCGTGCCGGAATTCTGGGGCAACGCGCCGCACCCGACGCTGACGGCGGTGGGCGTGACGTGGTTGTATGGTTTCCAGTTCGAGATCAAGGTGATTGCCCGGTTGCCGGAAACCACCGGGAGCTGAMTQRDVVFPPGRQALYERNRYSPAIRSNGFLFVSGQVGSTGDGSPEPHLEDQVRRAFNNLKAILAAADCSFDDVVDVTVFMVDPQSIFERVWSVVPEFWGNAPHPTLTAVGVTWLYGFQFEIKVIARLPETTGSNANANANANA
D1-35_02747480hypothetical proteinATGAACAACAAGAACAGGATCTGTCTCTGGTATGACGGCACCGCTCAGGAAGCTGCGCAGTTCTATGCGGCTACCTTTCCCGACAGTGCGGTGAACGCCATCCACCACGCGCCCGGCGACTACCCGGCGGGCCAGCAAGGTGACGTGCTCACCGTGGATTTCACCGTGATCGGCATCCCCTGTATCGGCCTGAATGGCGGGGCGATGTTCAAGCACAACGAAGCGTTTTCTTTCCAGGTGGCCACCGATGACCAGGCCGAAACGGACCGCTTGTGGAATGCAATCATCGACAACGGCGGCCAGGCGAGCGCCTGCGGATGGTGCAAGGACAAGTGGGGCGTGTCGTGGCAGATCAGCCCGCGGGTGCTGATCGAAGCAGTCACCAGTTCCGACAAAGCCGCCGCCAGGCGCGCCTTCGAAGCCATGATGAACATGACCAGGATCGATATTGCGGCGATTGAGGCGGCGGTGAGGGGCTGAMNNKNRICLWYDGTAQEAAQFYAATFPDSAVNAIHHAPGDYPAGQQGDVLTVDFTVIGIPCIGLNGGAMFKHNEAFSFQVATDDQAETDRLWNAIIDNGGQASACGWCKDKWGVSWQISPRVLIEAVTSSDKAAARRAFEAMMNMTRIDIAAIEAAVRGNANANANANA
D1-35_027481302mntHDivalent metal cation transporter MntHATGTCGAGCATACCTTCCGTCGAAGGGCAGGCTGCAGCCCCCGCGCAAAGCCGCTTCGTACGCCTGTTGAAGCTTCTAGGCCCGGGCATCATCGCAGTACTTTCCTGGCTGGGCGCAGGCGACCTCATCACTTCTTCCGTGGCCGGCGCCAACTACGGCTACGCCATGATGTGGGTGCTGGCGGTGTCTCTGCTGCTGCGCTACCTGATCGTCAACATCATCGCGCGCTTCCAGCTTTGCAATAACCAGGGCATGACCATCCTGCAGGGCTACGCGCAACTCAATCCGTTTTTTGCCTGGTTCATGCTGGTGTATGCGCTGCTCATGGGGCACCTGATGAATGCCTACATGATCAAGGGTGCCGGTGAGGCCTTGGCGATGCTGCTCAAGACCGATTATCCGCTGCTCTGTTCGGTGGCGGTGGTGCTGGCGGTGTGGATGCTCGTCGGGCGCAATATCTATTCGATGATCGAAGGCGTGATGAAGGCGCTGCTGGCGATCATGACGCTGGCATTCCTGGCCCTGGCGGTGATGTCCGGCCCGGATGTCGCCGGTATCGTCAAAGGCACCATTGGCTTCAGCATTCCGCCGGATGAAGGTGTGCACGGTGCGCTGCTGGTGGCGGTCTCGGTGATCGGCGCGGTGGCCGGTTCCATCGCTAACTTCGTTCACCCCTACGTCATGCGCCAGAAAGGCTGGGTGGGTCCTGAGCACAAGCGCATCCAGCGCAACGACCTGCTGTTCGCGGTGTTCGTCGGGATCATCATCAACCTGGCGATCTGGATCGTCGGCGCGGAAATCCTGCGGCCCAACGGCATCGAAGTCAAAACCCTGGGCGACCTGGGCAAGGCCCTGGAAATCTTCTTCGGCCCGATTGGCTGGTATGTGTTCTTCATCGGTGTCTTTGCCACGCTGTTCGCCAGTATTTCCGGCAAGACCACGGCGTTCCCGATGCTCATCACCGACGCCTTCCAGCACGTGCGGCCCGAGCGTCGCGAGCGCTACGGCAAAGAGTTCCACCGTGACCCGATGCACAAGTGGTTCATGCTGTTCATCCTGGTGACGCCGCTGATCTGGTCCTTGCCCGGCATGCCGGACTTCGTGACCCTGACCATTGGTGTCAACGCCCTGAACATCATCGGCCTGCCGGTGATCTCCCTGGGCCTGTTGATCATGTCCAACCAGAAGTCGCTGCTGAGCAAGGAATACCGCAACAACCTGTTCGAGAATATCGCGCTGGTATTCGCCACTGGCCTGGCGTTGTGGGTCGCGTTCCAGCTGGGCGTCGATCTGTTTACCTGAMSSIPSVEGQAAAPAQSRFVRLLKLLGPGIIAVLSWLGAGDLITSSVAGANYGYAMMWVLAVSLLLRYLIVNIIARFQLCNNQGMTILQGYAQLNPFFAWFMLVYALLMGHLMNAYMIKGAGEALAMLLKTDYPLLCSVAVVLAVWMLVGRNIYSMIEGVMKALLAIMTLAFLALAVMSGPDVAGIVKGTIGFSIPPDEGVHGALLVAVSVIGAVAGSIANFVHPYVMRQKGWVGPEHKRIQRNDLLFAVFVGIIINLAIWIVGAEILRPNGIEVKTLGDLGKALEIFFGPIGWYVFFIGVFATLFASISGKTTAFPMLITDAFQHVRPERRERYGKEFHRDPMHKWFMLFILVTPLIWSLPGMPDFVTLTIGVNALNIIGLPVISLGLLIMSNQKSLLSKEYRNNLFENIALVFATGLALWVAFQLGVDLFTNANANANANA
D1-35_02749240hypothetical proteinATGAATAGCCAGGCGCTGGTCCTGCATCGTCGAGTGAAGACACTCGACCAGGGTGCGTTGCATTGCCGCGAAGTCGAGTTGCGGCTCGCCGAGGATGGCCGGCATGTGCTGCTCAGCCGCTACGTCGAATGGTACGACCCCGAGCAAGCCGGCTTGTGCGCCACCCAGCATTATCGCGTGCCGCTGGCGAGCATGATTCGGTGGATGATCAATAACGGCGAACGAGGGGAGGGCCACTGAMNSQALVLHRRVKTLDQGALHCREVELRLAEDGRHVLLSRYVEWYDPEQAGLCATQHYRVPLASMIRWMINNGERGEGHNANANANANA
D1-35_02750786mlaA_2COG2853Intermembrane phospholipid transport system lipoprotein MlaAATGCCGATCAGCAAACCCGCTCCGCTGTTTCTTCGATCCACCGTCGTCGTTGCGCTGGCGGCGTTTGCCAGCGGTTGCAGCAGCACGCCGCCCGCGACACCGGGCAGCTGCGAGAATATGCCCTATGCCGTGCATGATCCGGCGGAACCGGTGAACCGCGGCATCTTCGCCTTCAACCGTACCGTGGACGACTATGCCCTGGCCCCCATCGCCCGTGGTTATCGCAAATTGCCTGAGATGTTCCAGAGCGGCGTGCACAACTTCGTCACCAACTTCGGCGAGCCCAAGGTCTTCATCAACGATTTGCTGCAAGGCAACGGCGAGCGCTCGGTCACCACCCTGGGCCGTTTCGTCATCAACACCACGGTGGGCATCGTCGGGCTGATCGACGTGTCGGGCAAGATGGGCATTGCGCGTCACGAATCCGATTTCGGCCAGACATTCGGCGTCTGGAATATCGCTCCGGGGCCGATCGTCGAGCTGCCACTGTTCGGCACTGGCAACCTGAGGGACGCGACCGGCAAGGTGGTGAGCTTCGCGGTGGACCCGTTCGGCAGCAACAGCGATACCGTCGAAACCCTGGGCACGATCAAGACCGTGGGCGGTGTCGTCGATGGCCGCGCCGAGGCGCTGCCGCTCACCGACAAATTGCAGACCCAGGCCGATTACTACGTGGCGCTGCGAGACGCGGTCGCCCAGCGGCGCGCCGATTTTGTCGCCGACGGGAAACTGGGAGCCGTCCAGGACAACCCGCAATGCCAGGAACAGGGTGCCGGGGATGAATAGMPISKPAPLFLRSTVVVALAAFASGCSSTPPATPGSCENMPYAVHDPAEPVNRGIFAFNRTVDDYALAPIARGYRKLPEMFQSGVHNFVTNFGEPKVFINDLLQGNGERSVTTLGRFVINTTVGIVGLIDVSGKMGIARHESDFGQTFGVWNIAPGPIVELPLFGTGNLRDATGKVVSFAVDPFGSNSDTVETLGTIKTVGGVVDGRAEALPLTDKLQTQADYYVALRDAVAQRRADFVADGKLGAVQDNPQCQEQGAGDEPGPT0024485_1003DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINSCE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024485-mlaA|vacJ-K04754NANA
D1-35_02751720ompR_4Transcriptional regulatory protein OmpRGTGACCCCTGTGAGCCACCTACTCCTGGTGGACGACGACCTCGAAGTCCTCGCCCTCCTGCGCAAATTCCTCGAACAACATGGCTACAGCGTCGAAGTGGCCGCCGACGGCGCGGCGCTGTGGCAGGCGGTCGAGCGGCGGATGCCCGACCTGATCATCCTCGACGTCATGCTGCCGGGCGACAACGGACTGGTGCTCTGCCAGCGGCTGCGGGCCGAACACCGGGTCGGGATCATCATGCTCACCGCCATGGGCGAACTGAGCGACCGCGTCGTCGGCCTGGAAATGGGCGCCGACGATTACCTGACCAAACCCTTCGACGCCCGCGAGCTGCTGGCCCGGGTCCGCGCCGTCCTGCGGCGTACCGGCGAAGCCAGGGGCAGCCTGGGCGATATCTCCCGACCCGTGCTGGAATTCGAGGGCTGGCAACTGGACGTCACCCGTCGCGAGTTGCGCTCCCCCGACAAGGTCATGATTCCGCTGTCCACCGGCGAGTTCGAACTGCTGCTGGTCTTCGCCGAACATCCGCGCCGCGTCCTCACCCGCCAGCAACTGCTGGACCTGGCCCGGGGCGAAACCTTCGACGCGTTCGACCGCAGCATCGACGTGCAGGTCAGCCGCCTGCGGCGCAAATTGGAGACCGACGTCACGGGGCCGTCGATGATCCGTACCATCCGCAACAGCGGCTACCTGTTCAGCCCTCACGTGGTGAAGCGATGAMTPVSHLLLVDDDLEVLALLRKFLEQHGYSVEVAADGAALWQAVERRMPDLIILDVMLPGDNGLVLCQRLRAEHRVGIIMLTAMGELSDRVVGLEMGADDYLTKPFDARELLARVRAVLRRTGEARGSLGDISRPVLEFEGWQLDVTRRELRSPDKVMIPLSTGEFELLLVFAEHPRRVLTRQQLLDLARGETFDAFDRSIDVQVSRLRRKLETDVTGPSMIRTIRNSGYLFSPHVVKRPGPT0004100_30DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-CUS_TRANSPORT_SYSTEM,PGPT0004100-cusS|copS|silS-K02484NANA
D1-35_027521350sasA_13Adaptive-response sensory-kinase SasAATGACCGCCAACCCCTCGAAGATGCCTCGCCCCAGGGACACCGTGGCGCGCTGGATTGCCCTGACCACCATGGTCTCGATGCTGACGCTGCTGGCCCTCAACGAACTGTTCAGCCTGGTGGCCGGTGCGTGGGCGCGCCCTCCCCTGATGGAAACCGGCCTGATGGACAAGGCTGCGGCGATCACGCGCATCATCGACGCGGCCGATCCCGGCCAACGGCACGCCATTGCCCGTATCGCCAGCGACCCCGGGATCAACGTACAGTGGCTGCAGCGCTATGAGGAGGCGCATCTGCCGGTGATCGGGGATCCGGAGTTCAGTGAAGGCTCGGCGTTCCTGCACCAGCAATTGAACAGGCCCGACGCCCGGATCGAGGCCTACGAGCCCAACGACTGGCCGGCCGCTGATGACCCGGGCAGACGCTACGCGGTGATCATCGAGCTGTCTGACCACACCTGGGTCATCTTCTCCGTGGGCTCGCGCAGCTGGGGGCTGGGGGAATGGCAGCGCAACCTGATCATCATCGCGTTGATCCTGCTGTCGACCTTCATCGTCGCCCTGATTGCCACGCGGCACCTGGCAACCCCGCTGGAGCGTTTCGCCGAGGGTGCCCGGCGCTTCGGCGTGGACTTCCGGGCGCCGCCGATCCCGGTCGTCGGCCCCTTCGAGATCCGCCAGGCGATCCTGGCGTTCAATGCCATGCAGGCTCAGCTCAAGCATTTCGTCCAGGACCGCACGCAAATGCTCGCGGCCATCTCTCATGACCTGCGGGCGCCGTTGACCCGCATGCGCCTGCGCGGCGAATTCATCGAGGATGCCGAACAGCAATCGCGGTTGTTCCGGGACGTCGACGAGATGCAGGCGATGGTCAACGCCGCGCTGGAATTCTTCCGCGACGAAGCGCGCCTCGAACACGCCACCGCTTTCGACCTGGCGGAGCTGCTGCACACCATCGTCGATGATTTCAGGGACGGCGGCATCGAAGTGTCTTTCGAGGGCGCCCAGCGGCTGGTCTACGTGGGCCGCCCCATCGGGATCAAGCGCGCGCTGACCAACCTGATCGACAACGCGGTCAAATACGCCAGCGAACCGGGTGTTCAACTCAAGACCTTCATCGATCGCATCGAAATCCGCATCCAGGATCGCGGCCCGGGCATTGCGCCCGAATACCATGAGCAGGTCTTCGCACCGTTCTTTCGCATCGAGGGTTCACGCAACAAAAATACCGGCGGCGTCGGCCTGGGCCTGTCGGCGGCTCGGGCGACGGTGCTGGAGCACGGCGGCACACTGACGCTCAGGAACCGCCGGGGCGGCGGCCTGGAGGTCAGGGTCTCGCTCCCGCTCAATTGAMTANPSKMPRPRDTVARWIALTTMVSMLTLLALNELFSLVAGAWARPPLMETGLMDKAAAITRIIDAADPGQRHAIARIASDPGINVQWLQRYEEAHLPVIGDPEFSEGSAFLHQQLNRPDARIEAYEPNDWPAADDPGRRYAVIIELSDHTWVIFSVGSRSWGLGEWQRNLIIIALILLSTFIVALIATRHLATPLERFAEGARRFGVDFRAPPIPVVGPFEIRQAILAFNAMQAQLKHFVQDRTQMLAAISHDLRAPLTRMRLRGEFIEDAEQQSRLFRDVDEMQAMVNAALEFFRDEARLEHATAFDLAELLHTIVDDFRDGGIEVSFEGAQRLVYVGRPIGIKRALTNLIDNAVKYASEPGVQLKTFIDRIEIRIQDRGPGIAPEYHEQVFAPFFRIEGSRNKNTGGVGLGLSAARATVLEHGGTLTLRNRRGGGLEVRVSLPLNPGPT0012975_1042DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OSMOLARITY_SIGNALLING,PGPT0012975-envZ-K07638NANA
D1-35_02753522kefF_1COG2249Glutathione-regulated potassium-efflux system ancillary protein KefFATGATCCTGATCGTTTATGCCCATCCCTACCCCGACCAGTCGCGGGTCAACCAGCAGATGCTCAAGCGCGCCGGCGCCAATCCGGACGTGGTCATACGCTCGCTCTACGATCTCTACCCGGGTTTCGACATCGACGTCGAGGCGGAACAGCGCGCCGTCGAACAGGCACAGCTGGTCGTCCTGCAGCACCCGATGTACTGGTACAGCATGCCGCCTCTGCTCAAATTGTGGATCGACAAAGTCTTCACCCATGGCTGGGCGTACGGCAAAGGCGCCACGGCCCTGAACGGCAAAAGCCTGCTGTGGGCCGTCACCACGGGTGGCGAACACGATCATTTCCAGATGGGCGCCTACCCCGGCTTTGCCGTGCTGGCGCAGCCGCTCCAGGCCACGGCGCTCTACTGTCATATGCGCTGGCTGGAACCGCTGGTCGTGCATGGTGCGTTTGCCGGCGACGCCGAGGCCCAACGCGAGCAAATCGAACACTATGGCGAACGCCTGGCCGCCTGGAAGGAAGATTGAMILIVYAHPYPDQSRVNQQMLKRAGANPDVVIRSLYDLYPGFDIDVEAEQRAVEQAQLVVLQHPMYWYSMPPLLKLWIDKVFTHGWAYGKGATALNGKSLLWAVTTGGEHDHFQMGAYPGFAVLAQPLQATALYCHMRWLEPLVVHGAFAGDAEAQREQIEHYGERLAAWKEDPGPT0013805_372DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0013805-kefF-K11746NANA
D1-35_027541827kefC_2COG0475Glutathione-regulated potassium-efflux system protein KefCATGGAAACTCACAGCCTGATCGAAATGCTCATCTACCTGGCCTCGGCGACACTGATCGTACCGATTGCCGTCCGGTTGGGCCTGGGCCCGGTGCTCGGTTATCTGCTGGCCGGGTGCGTGATCGGCCCGTGGGGGCTGAAGCTTATAACCGACGTCAAGGCCATCCTGGAATTCGCCGAAATCGGCGTCGTGCTGATGCTGTTCATCATCGGCCTTGAGCTCGACCCCAAGCGCCTCTGGGCGCTGCGCCGGATGGTATTCGGTGGCGGCGCGCTGCAGATGCTCGCTTGCGGTGCCGCCATCGCAGCGTTTTGCGCGGCGCTCGGCCTGGGCTGGACGGCGGCGTTGCTGGTGGGCCTGACCCTGAGCCTTTCGTCCACGGCCATCGCCATGCAGGCCATGCGCGAACGCAACCTGAACGCTACCGCAGTGGGCCGCAGCAGTTTTGCCGTCCTGCTGTTCCAGGACATCGCGGCCATTCCTCTGGTGGCCATGATCCCGTTGCTCTCGGCCCATGGCGACACGCCGTCGGGCATGGCCCTGGCGTTATCGATCGTCAAGATCGTCGCCGCCATCAGCGTCGTCGTGCTGCTCGGGCGCTACGTGACACGGCCGCTGTTGCGCTTCGCCGCGCGCTCGGGCCTGCGTGAGATCTTCAGTGCCGTGGCGCTGTTCCTGGTATTCGGCTTCGGCTTTCTGCTGGAAGAAGCCGGCCTGTCGATGGCCATGGGCGCATTCCTCGCCGGCGTGTTGCTGGCGAGTTCCGAATACCGCCACGCCCTGGAAAGCGACATCGAACCGTTCAAGGGCTTGCTGCTGGGGCTGTTTTTCATCGGCGTCGGCATGTCGATCGACTTCGGCACGCTGATCGACGCACCGCTGAAAGTCATCACCCTGACCGTCGGGTTCATCCTGATCAAACTGCTGGTGATCAAGACCGTCAGCCGCTTCCTGAATGTCCCCGCCGGCCAGCGTTCCTGGCAGGCGGTATTGCTCGGCCAGGGCAGCGAGTTCGCCTTCGTGGTGTTCGGCGCCGCGACGTTGGCGGGCATCCTGACCGACCAGTGGGGCAAGAGCCTGACCCTGGCGGTGGCCCTGTCGATGTGCGTGACGCCGCTGCTCATTCTGCTGCTGGAGCGAATCGAGTCGGCCAGCAAGAAAGATCGCCAGGAATCCGACCTCGTCGACCAGCAGAACCCGCGGGTGATCATTGCCGGCTTCGGCCGTTTCGGACAGATCGCCGGACGTTTGCTGATGTCCTGCGGCGTCGAGGTAGTGGTTCTGGATCACGACCCCGACAACATCGAGACGCTGCGCAAATTCGGCGTGAAAGTGTTCTACGGCGACGCCACGCGCCTCGACCTGTTGCACGCGGCCGGCGCGGCACAGGCGGCGGTGCTGATCAATGCGATCGACGATCAGCAAGACAACCTGACGCTGACCCGGTTGGCCCAGGAGCACTTCCCCACGTTGAAACTGGTCGTCCGCGCGCGGGACATGGGCCACCTGATCAACCTGCGGCAGATGGGTGTCGAGGTTGCCGAGCGGGAAACCTTCGAAAGCGCGCTGGCGTTGGGTCGCCGGGCACTGGTGCAGATGGGTGTCGGCGCTTACGAGGCGCGCGAACGCGCCGATCAGTTCCGCCGCTTGAATCTGCAGATGCTCGAAGAAATCGTCGCCCAACCGGAAGATGACCTCACGTTCCGGCACGACGCCTACCGACGCGCCAACGCGTTGCTCACCGAGATGTTCAACGAAGACCGCGCCCGCCCCGTCGACAGCTGGCCGGAACACCATCGAAACGAGACGGATGAGGCGCGTGGCTAGMETHSLIEMLIYLASATLIVPIAVRLGLGPVLGYLLAGCVIGPWGLKLITDVKAILEFAEIGVVLMLFIIGLELDPKRLWALRRMVFGGGALQMLACGAAIAAFCAALGLGWTAALLVGLTLSLSSTAIAMQAMRERNLNATAVGRSSFAVLLFQDIAAIPLVAMIPLLSAHGDTPSGMALALSIVKIVAAISVVVLLGRYVTRPLLRFAARSGLREIFSAVALFLVFGFGFLLEEAGLSMAMGAFLAGVLLASSEYRHALESDIEPFKGLLLGLFFIGVGMSIDFGTLIDAPLKVITLTVGFILIKLLVIKTVSRFLNVPAGQRSWQAVLLGQGSEFAFVVFGAATLAGILTDQWGKSLTLAVALSMCVTPLLILLLERIESASKKDRQESDLVDQQNPRVIIAGFGRFGQIAGRLLMSCGVEVVVLDHDPDNIETLRKFGVKVFYGDATRLDLLHAAGAAQAAVLINAIDDQQDNLTLTRLAQEHFPTLKLVVRARDMGHLINLRQMGVEVAERETFESALALGRRALVQMGVGAYEARERADQFRRLNLQMLEEIVAQPEDDLTFRHDAYRRANALLTEMFNEDRARPVDSWPEHHRNETDEARGPGPT0013800_328DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0013800-kefC-K11745NANA
D1-35_027551242cypCFatty-acid peroxygenaseATGGCAGACCCTTCTATTCCCGGCCACCGCTGGGCTGATTCGACCTTGGCTTTCTTGCGCGAGGGCTACCCGTTCATACGCAAGCGTTGCGTCGCCTATGGCAGTCCGGTTTTCCAGGCCCGACTGCTGGGACGGCGCACGCTGTGCCTCAGTGGGCTGGAAGCGGCGGAGCTGTTCTACGATGCGCGGCGCTTCGTCCGGACCCCCACGTCGACACCGGCGCCGCTGCGCAACATCCTGTTGGGCGCGGGCGGCGTCCAGGGTCTCGATGGCGCACCTCATGCGCGACGCAAGCAGCTGTTTCTCGACGTGCTGGACAAGGAAAGCGTAAACCGCCTGGTCGGCCGCTACGAGGCTCACTTGAGCGAAGCGGCGGCGAAGCTTGCGGCGAACCAGCCGATCGAATTCCTGCCGTGGATCGAGGCGCTGCTGTGTCGATCGGTCTGCGAGTGGGCCGGCGTGCCAATGATGAGTGATCGGCAAATGCGGCGGTTGACCCGTCGGCTCGCCTCGCTGATCGATGGCAACGGCCGCGTCGACTGGCGGATGCCGGCCGCCTGGATGCGGCGCAAGGCTTGCGAGGCCCAGGCGGCACGCTGGATAAAAAACTGTCGGCAAGACCCGGCGCCAGCATCGCTGCAGACCCCGCTGCAACAACTCGCATGGCATCGCGATGAGCACGGCCAGTTGCTCCCACCGCGGATAGCGGCAGTGGAGCTGCTGAATATCTTGCGTCCAGTGGTGGCGGTGGGGCGCTTTCTGTTGTTCGGGCTGATCGAGCTGGAACGCCGGCCGCAATGGCGCGCCAGCATTGCTCGCGATGACGCTGCGGCTTGGGCTTTTGCCGAGGAAACGCGGCGCTTTTACGCGTTCTTTCCGATGGTGGCGGCGTTTGTGCGCGAGAGTTTCGAGTGGCGAGGCTACCGCTTCGAAAAAGGCACTCGGGTGCTGCTCGATCTGTTTGGCTCCAACCGTGATCCGGCGCACTGGAAAACCCCGGAAAGCTTTGCGCCCGAACGTTTCGGCCAGTGCCCCATGAGAACCTCTGTCATCAGCCAGGGCGGCGGGGATTACACCTATCACCGCTGCCCGGGCGAGCCGCTGACGCTGGCCCTGATGCAGAAAACCTTCGAACATCTGTGCCGCCACGTGCAATGGCGGCTGGTGGTGAAAGAAGTCGATTTTCAACGCCTGCCCATGTTGCCCAGGGAGCCGGTGCTGATGTCAGTGGTGACCGGCTAGMADPSIPGHRWADSTLAFLREGYPFIRKRCVAYGSPVFQARLLGRRTLCLSGLEAAELFYDARRFVRTPTSTPAPLRNILLGAGGVQGLDGAPHARRKQLFLDVLDKESVNRLVGRYEAHLSEAAAKLAANQPIEFLPWIEALLCRSVCEWAGVPMMSDRQMRRLTRRLASLIDGNGRVDWRMPAAWMRRKACEAQAARWIKNCRQDPAPASLQTPLQQLAWHRDEHGQLLPPRIAAVELLNILRPVVAVGRFLLFGLIELERRPQWRASIARDDAAAWAFAEETRRFYAFFPMVAAFVRESFEWRGYRFEKGTRVLLDLFGSNRDPAHWKTPESFAPERFGQCPMRTSVISQGGGDYTYHRCPGEPLTLALMQKTFEHLCRHVQWRLVVKEVDFQRLPMLPREPVLMSVVTGNANANANANA
D1-35_02756864pdxIPyridoxine 4-dehydrogenaseATGAGCAGGGCAGACAAGGCAGGGACTTTTTTACTGGGTGATCGTACGGTCAACCGCATGGGCTACGGCGCGATGCAACTGGCGGGGCCGCAGGTCTTCGGGCCGCCCAAGGATCCGGCGGCGGCCATCGCCGTGCTGCGCGAAGCCTTGGCGGCCGGAGTCAATCACATCGATACCGCCGATTTTTACGGGCCCCATGTCACCAACCAACTGATCCGCGAGGCGTTGCACCCTTACGCCGACGACCTGGTCATCGTGACCAAGGTCGGCGCGGTTCGTGGCGCCGATGCGTCATGGAACGCAGCCCAGAGCCCCGCCGAGCTGACCCGTGCGGTGCACGATAACCTGCGCAACCTCGACGTCGAGGTGTTGGACGTGGTCAATCTGCGGGTCATGGGCGATGTGCATGCGCCCGCTGAAGGATCGATTGAAGAGTCCTTCACAGCATTGGCCGAGCTGCAGCGCCAGGGCCTGATCCGCCATCTGGGCCTGAGCAACGTCACGGCGGCGCAAGTCAAGGAAGCCCAAGGCATCGCCAAGGTGGTCTGCGTGCAGAATCACTACAACCTGACCCACCGCGACGACGAACAACTCATCGCTGACCTGGGCCGCCAAGGTATCGCCTACGTGCCGTTTTTCCCGCTGGGTGGGTTTACGCCGCTGCAATCGGAAACGTTGTCGAACGTTGCCGCGCGCCTGGAGGCATCGCCGCTGTGTGTCGCGTTGGCGTGGCTGCTGCAACGTGCGCCCAACGTCCTGCTGATACCCGGCACCTCGTCGGTGGCGCACCTGCGGGAAAATATCTCGGCCAGTGAGCTGCAGATTCCGGCGCCTATGTTGGCTGAGCTTGACGCCATGGTTTAGMSRADKAGTFLLGDRTVNRMGYGAMQLAGPQVFGPPKDPAAAIAVLREALAAGVNHIDTADFYGPHVTNQLIREALHPYADDLVIVTKVGAVRGADASWNAAQSPAELTRAVHDNLRNLDVEVLDVVNLRVMGDVHAPAEGSIEESFTALAELQRQGLIRHLGLSNVTAAQVKEAQGIAKVVCVQNHYNLTHRDDEQLIADLGRQGIAYVPFFPLGGFTPLQSETLSNVAARLEASPLCVALAWLLQRAPNVLLIPGTSSVAHLRENISASELQIPAPMLAELDAMVPGPT0009140_1515DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009140-ydbC-K05275NANA
D1-35_02757915pgrR_4HTH-type transcriptional regulator PgrRATGGCGACGGACATTCAAGACTTGCTGGCCTTTGTGGCGGTGGTCAATGCGCGGGGATTTCGAGCAGGCGCCCGGCTCAGCGGCAAATCCGCCTCCAGCCTCAGTGACGCGGTACGCCGGATCGAAAGCCGACTCGGCGTGCGCCTGCTCAACCGCACCACCCGCAGCGTGGTGCCGACCGAGGCCGGCGCACGGTTGATGGAACGCATCGTGCCGGCCCTGGGCGAAGTCGAATCCGCGCTGGACGTGGTCAACGATTTTCGCGACCGCCCTTCCGGTACCCTCAGGTTGAACGTGCCGGTCAGCGCCGCCCGGCTGGTGCTACCGTCGATCATCGCGCCGTTCCTGAAAAGCCACCCCGACATCCGCCTCGAAGTGGTTACCGAAGAAAGCTTTGTCGACATGCTGGCGGCCGGGTGTGATGCGGGTATTCGCTACGACGAACGCCTCGAACAGGACATGATCGCGATCCCCATCGGCCCGCGCTTTCAACGCTTCGCGACCGCCGCCGCACCGGCGTACCTCGACGCCCGGGGCCGCCCCGAGCACCCACGGGACCTGCTGCAACACGCTTGCCTGGCCGGCAAGTTCCCCAGCGGCGCCTTGCCGCTGTGGGAGTATGAGCGTGACGGCGAAACCATCAGCGTCGAGCCGAACGGCCCGTTGCTGGTGCGCATTGGCGGCGCCATGGACCTGGCCGTCCAGGCCGCGGTGGATGGACTGGGGATCGTCCACCTGTTCGAGGACTGGCTGTGCCCCTACCTGGACAGCGGTGTCCTCGAACCGGTACTCGAACCCTGGTGGCAGCGCTTTACCGGACCGTTCCTCTACTACCCCGGCCGCCGCTACCTGCCCTCGCCGCTGCGGGCGTTTGTGGACTTCATCAATCAAAACCGCAGCAACCAAGACGCCTGAMATDIQDLLAFVAVVNARGFRAGARLSGKSASSLSDAVRRIESRLGVRLLNRTTRSVVPTEAGARLMERIVPALGEVESALDVVNDFRDRPSGTLRLNVPVSAARLVLPSIIAPFLKSHPDIRLEVVTEESFVDMLAAGCDAGIRYDERLEQDMIAIPIGPRFQRFATAAAPAYLDARGRPEHPRDLLQHACLAGKFPSGALPLWEYERDGETISVEPNGPLLVRIGGAMDLAVQAAVDGLGIVHLFEDWLCPYLDSGVLEPVLEPWWQRFTGPFLYYPGRRYLPSPLRAFVDFINQNRSNQDANANANANANA
D1-35_027581767COG1132Putative multidrug export ATP-binding/permease proteinGTGAACAGCCATCAGTCCCATGGCGCGCCGTTGCCGAATACCGCCATCGCGTTTTTGTGGCGATACGTCACCCTCAGGCCGTGGCATTTCGCGACGTTGTTTGTGCTGATTGTCGGTGCCGCCAGTTGCGCCGTGGCGGTGCAGTTCGGCATGAAGCTGCTGGTCGACGCGATGGCCCAGGGCAGGGAGGCGGCCGGGCATGTGTGGCTGCCGTTCACCGTATTCATCGCGCTGATTGTGGTGGAAAACCTGTTCTGGCGTTCGGGCGGCTACCTGGGCTGCCGGACGGTGGTCGCCAGTTGCGCGGACTTGCGGATTGACCTGTTCAATCACCTGACCGGACACCCGATGCGCTATTTCTCCGAGCATTTCGCCGGAGCCCTGGCCAACCGGATCTCCTCGGCGGGCGCGGCAGCGGGTTCCATCTATGGTGGCCTGGCCTGGAAGATTATTCCCCCTTGCGTGGATTTCATCGGTGCGGTGGTGGTGCTGTTTACCGTGCGGCTGTCCATGGGAATCGCTTTGATCGGCGCAGTGGTTGTGGTGGCCTCGCTGATCACCGTGATGGGGCTGCGCGGCCGCAGTCGGCATATCGATTTCGCTTCCCAGGCCGCACGCGTCGGTGGCGAGTTGGTGGACCAGGTCTCCAACGTCTGGACGATCAAGGCATTCTCCGCCCGACACCGCGAGCGGCGCCGGCTCGAACAGGCGATCGGCGTCGAGGCCAAGGCCCAGCGCCGCAGCTGGATCTACCTGGAAAAAGCCCGGGTCTTGCACGACATCTGCTTGTCGATCATGGCCGGCGGCATGCTCGGCTGGTCGATCCTGTTGTGGCAGGGCGGGCAGATCACCCCGGGCGATGTGGTGATGGTCAGCGCGTTGTCGTTTCGCATCCTGCACGGCTCGCGCGACCTGGCGCTGGCTTTGGTGGATACCTCGCAGCAGATGGGCGTGATTGCCGAGACGTTGCGCATCATCGTCCAGCCACACGCACTCAGCGACACCCCGGCGGAACTGGAACCTGGGCGCGGCAATATCCGTTTCCTCGACGTCAGCTACAGCTATGCCGACGGGCGCGGCGCGATCAGGCATCTGTCCCTGGACATTCCGGCCGGCCAGAAAGTCGGCATCGTCGGGCCGTCGGGCGCGGGCAAGTCGACATTGGTCAGTCTGGTCCAGCGCCTGGACGATGTGCGCAGCGGGGTGATCCTGATCGATGGCCGCGACGTGCGCTCGGTCAGTCAGGACAGCCTGCGCAGCCAGATCGCCGTGGTGCCTCAGGAGCCGGCGCTGTTCAATCGGACCATCTACGAAAACATCGCCTATGGCCAGCCCGATGCCACCGAGGCACAAGTCATCGACGCGGCCCGCCATGCCTATTGCGAAGAATTTATCCGCGACCTGCCGGAAGGCTTCAACACCTTGGTGGGCGAGCGCGGCGTGATGCTCTCGGGCGGCCAACGCCAGCGCCTCGGGCTGGCGCGGGCGTTCCTCAAGAACGCACCGATCCTGATCCTCGACGAAGCCACCTCGGCACTGGATTCGGAATCCGAAGCCAAGGTGCAAATGGCCCTGGACGACCTGATGCGCGGTCGCACCGTGCTGGCAGTGGCGCACCGGCTGTCGACGGTCGCGCGGTTCGACCGGATCTTGGTCTTGCAGGGCGGAAGAATCATCGAAGACGGCTCACCCGATGAACTGCGCCAGCGTGAAGGGCCGTTCCAGACCCTGTGGCAGGCGCAGGGATTGGAATTGGGCAAGCGTTAGMNSHQSHGAPLPNTAIAFLWRYVTLRPWHFATLFVLIVGAASCAVAVQFGMKLLVDAMAQGREAAGHVWLPFTVFIALIVVENLFWRSGGYLGCRTVVASCADLRIDLFNHLTGHPMRYFSEHFAGALANRISSAGAAAGSIYGGLAWKIIPPCVDFIGAVVVLFTVRLSMGIALIGAVVVVASLITVMGLRGRSRHIDFASQAARVGGELVDQVSNVWTIKAFSARHRERRRLEQAIGVEAKAQRRSWIYLEKARVLHDICLSIMAGGMLGWSILLWQGGQITPGDVVMVSALSFRILHGSRDLALALVDTSQQMGVIAETLRIIVQPHALSDTPAELEPGRGNIRFLDVSYSYADGRGAIRHLSLDIPAGQKVGIVGPSGAGKSTLVSLVQRLDDVRSGVILIDGRDVRSVSQDSLRSQIAVVPQEPALFNRTIYENIAYGQPDATEAQVIDAARHAYCEEFIRDLPEGFNTLVGERGVMLSGGQRQRLGLARAFLKNAPILILDEATSALDSESEAKVQMALDDLMRGRTVLAVAHRLSTVARFDRILVLQGGRIIEDGSPDELRQREGPFQTLWQAQGLELGKRNANANANANA
D1-35_027591137hypothetical proteinGTGCAGGAGAGGATCTTCAACAGTTTCGTGATGGCCGGCTACGAGTGTTCCACCCATCGCCGTGCCGATGGACGTCGGCTGGATATGCTCGCCGCGACTCGCCATGACCGCTGGGCCGAGCAGGATTACAGCCGGCTCGCCGAGCTGGGCATTCGCTGCGCCAGGGATGGCTTGCGTTGGCATCTGATCGAACAGCAGCCGGGTCGTTATGACTGGAGCAGTTTCCTGCCGATGCTGCGCGCCGCCCAGCGCGGCGATGTGCAAGTGGTGTGGGACCTGTGCCATTACGGCTACCCTGACGATCTGGACATCTGGCGGCCGGCCTTCGTCGAACGGTTTGCTCGCTTCGCCGGCGCCGTCGCGCGGTTGATGCGCGAGGAGGGGATCGAGACGGCGTTCTACTCGCCGATCAACGAGATATCTTTCTGGAGCTGGGCCGGCGGCGACGTCGGCTACTTCAACCCCACCGCCCGACAACGGGGCATGGAGCTCAAGCACCAGTTGGTGCGCGCGAGTATCGCGGCGATCGAGGCGATTCGCGAGGTGACTCCCGCCGCGCGATTCGTCCAGTGCGACCCGCTGATCAACGTGCGGTCCTTATCGCGGCGGGCCGAAGATATCGAGGCCGCCGAGGCGTATCGGTTATCCCAGTTCGAGGCGTGGGACCTGCTCACCGGCAGAAGCTGGCCGGGGTTGGGCGGGCGCGAGGAGTACCTGGATATTGTCGGCGTCAATTTCTATCCGCATAACCAGTGGTTCCTGCACGGCAATCGGATCGAGCCGGGCAGCGCGGATTATCGCCCGTTGGTGGGCATGCTCAGCGAAGTCCACCAGCGTTATCGAAGGCCGCTTCTGCTCTCTGAAACGGGCGCCGAAGACACCGCTCGGGTGCCCTGGCTGCACTACATCGGCGAGCAGTTGGCACTGGCGATGGAGCGCGGCATTCCGATAGCAGGCATGTGCTGGTACCCGTTTCTTGACTACCCGGGTTGGGACGATGATCGCTATTGTCCCACTGGCGTGTTTGGCTATGCCGACAGCGAAGGCAGCCGCGCGTCTTTCCATCCACTGACGCTGGCAATGAAGGCCCTGCAGGCGCGGTTTGCCTCGTCCGTGGCCACGGTGCAGATGCCGTGAMQERIFNSFVMAGYECSTHRRADGRRLDMLAATRHDRWAEQDYSRLAELGIRCARDGLRWHLIEQQPGRYDWSSFLPMLRAAQRGDVQVVWDLCHYGYPDDLDIWRPAFVERFARFAGAVARLMREEGIETAFYSPINEISFWSWAGGDVGYFNPTARQRGMELKHQLVRASIAAIEAIREVTPAARFVQCDPLINVRSLSRRAEDIEAAEAYRLSQFEAWDLLTGRSWPGLGGREEYLDIVGVNFYPHNQWFLHGNRIEPGSADYRPLVGMLSEVHQRYRRPLLLSETGAEDTARVPWLHYIGEQLALAMERGIPIAGMCWYPFLDYPGWDDDRYCPTGVFGYADSEGSRASFHPLTLAMKALQARFASSVATVQMPPGPT0026085_5DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-PEL_POLYSACCHARIDE_METABOLISMCE-EPS-PEL_POLYSACCHARIDES_BIOSYNTHESIS,PGPT0026085-pelF-K21011NANA
D1-35_027601182rfbD_2UDP-galactopyranose mutaseATGCCAACGATAACCCTCGATTCCCTTGATAACTCCCAGGGCGGCGCGCCGTACGACTACCTGATCGTCGGCGCCGGTTTCGCCGGCAGCGTGCTGGCCGAGCGGCTGGCCGAAGGGTTGGGCAAGCGCGTGCTGCTGGTCGATCGTCGCGATCACATCGGCGGCAATGCATACGACCACTTGGACGAGGCGGGCGTGCTGGTCCATCGCTACGGGCCGCACATCTTCCACACCAATGCCCAGCGCATTGTCGATTACCTGTCGCGGTTCACCGAATGGCGCCCGTACGAGCATCGAGTGCTGGCCCAGGTCGATGAGCACCGGGTGCCGATTCCCATCAACCTGACGACGCTCAATACGCTGTTCGGCTTGTCCATGGATGAAGCGCAGGCCGAGGCCTTCCTGGCGCAGCGGGCGGAGCCGGTCGAGTCGATCCGGACTTCGGAGGACGTGGTCATCAACCAGATCGGCCGCGAGCTGTATGAGAAATTCTTTCGTGGCTACACCCGCAAGCAGTGGGGGCTGGACCCTTCCCAGCTGGACAAGTCGGTGACCTCGCGGGTGCCGACACGGACCAACACCGATGATCGGTATTTCACTGACCAGTTCCAGATGATGCCGCTGCACGGCTACACACGGATGTTCGAGCGCATGCTCGCCCATCCGAACATCGATATCTTGCTGGCGACCGATTTCAAAGAGGTTCGCCAGCGCATCCCCTATCGGGAACTGGTCTATTGCGGGCCGATCGATGAGTACTTCGATTACTGCTTCGGCCATCTGCCGTATCGCTCGTTGCGCTTTCAGCATGAAACGCTGGATGCGCCGCAGTTCCAGCCGGTGGCAGTGGTCAACTATCCGGACGAGCGCGTGCCCTATACACGAATCACCGAGTACAAGCACCTCACCGGGCAGGAGCATCCGCGCACCAGCATCAGCTACGAGTTTCCCTGCGCCGATGGCGACCCTTACTACCCGGTTCCGCGCCCGGAAAACGCCGAGCTGTACAAACGCTACAAGGCCCTGGCCGACGAAACACCCGGGGTGACTTTTCTCGGTCGGCTCGGCACCTACAAGTACTACAACATGGATCAGGTGGTCGGTCAGGCGCTGGCGCTGTATCAGCGCATCGCCGAGGGCGAAGGGGTCGTGACGAGGGCTCACGAGGTCGAGCCGGGTTGAMPTITLDSLDNSQGGAPYDYLIVGAGFAGSVLAERLAEGLGKRVLLVDRRDHIGGNAYDHLDEAGVLVHRYGPHIFHTNAQRIVDYLSRFTEWRPYEHRVLAQVDEHRVPIPINLTTLNTLFGLSMDEAQAEAFLAQRAEPVESIRTSEDVVINQIGRELYEKFFRGYTRKQWGLDPSQLDKSVTSRVPTRTNTDDRYFTDQFQMMPLHGYTRMFERMLAHPNIDILLATDFKEVRQRIPYRELVYCGPIDEYFDYCFGHLPYRSLRFQHETLDAPQFQPVAVVNYPDERVPYTRITEYKHLTGQEHPRTSISYEFPCADGDPYYPVPRPENAELYKRYKALADETPGVTFLGRLGTYKYYNMDQVVGQALALYQRIAEGEGVVTRAHEVEPGPGPT0022675_400DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GLYCAN_BIOSYNTHESIS,PGPT0022675-glf-K01854NANA
D1-35_027611155hypothetical proteinATGAATCAACAAGAACATCTTCATCCCGATCACAGCGCCGCGCCCGCCGCGAGCTTGCGACCTACGCTGTTGTGCCTGTCGCACCTGCGCTGGGGCTTTGTCTATCAGCGGCCGCAACACGTGATGTCGCGATTGGCCAGGGACTACGACGTACTGTTTTTCGAAGAACCGATATTCGAAGGGCGGCAGTCCGCGCACCTGGAAAGCTATGCGGTGGCGGAGGGCGTGACGGTGCTGGTGCCCAGGCTCCCCGAGGGGCTGGATGAAGCCCAGGTGATCGCCACCCAGCGTGAATTGCTCGATGCCTGGCTGGCAGAGCACTGGCCGAGTGAGTTGATGCTCTGGTACCTCACGCCCATGAGCCAGGCCTTCACCGATCACCTGGAGGCCAATGTGGTGATTTTCGATTGCATGGACGAGCTCTCGGCCTTCAAGTTTGCGCCGCCCGCGTTGGTGGAGATGGAGCGGCGGCTGATGGCCAAGGCCGATGTGGTGTTCACCGGCGGATACAGCCTCTGGGAGGCCAAGCGCGAGCATCACGACAACGTCCACGCCATGCCCAGCAGCGTTGATATCACGCACTTTGCCGCGGCCAGGCAGCCGATTCCCGACCCGGCGGACCAGGCCGATATCGGTCATCCGCGCCTGGGTTTCTTTGGCGTCATCGATGAGCGTTTTGATATTGAGCTGGTACGTGAATTGGCGACGCAGCGGCCGGACTGGCACATCGTGTTGATCGGGCCGGTGGTGAAGATCGATCCGCAGACGTTGCCGCGCCTGGCGAATATTCACTACCTGGGCGCCAAGCAATATGAAGAGCTGCCGGCGTACCTGGCGGGTTGGGACGTGGCGTTGATGCCATTCGCGTTGAACGAATCCACTCGCTTCATCAGCCCCACCAAAACGCCCGAATACCTGGCGGGCGGATGCCCGGTGGTGTCCACGCCGATCCGCGATGTGGTCAATGGCTACGGTGAGAGTGGTGTGGTCGCGATTGCCGATTCGCCCCAGGGATTCATCGACGCGATCCAGGCCGCGCTCGACCTGCGGACCCAGCCAGGAGTGGTTGCGCAGTACGCCGACAAAGCGCTGGACGGCATGTCCTGGGACAAGACCTGCGCGCAGATGAAGGAGCAGATCGAATGCCAACGATAAMNQQEHLHPDHSAAPAASLRPTLLCLSHLRWGFVYQRPQHVMSRLARDYDVLFFEEPIFEGRQSAHLESYAVAEGVTVLVPRLPEGLDEAQVIATQRELLDAWLAEHWPSELMLWYLTPMSQAFTDHLEANVVIFDCMDELSAFKFAPPALVEMERRLMAKADVVFTGGYSLWEAKREHHDNVHAMPSSVDITHFAAARQPIPDPADQADIGHPRLGFFGVIDERFDIELVRELATQRPDWHIVLIGPVVKIDPQTLPRLANIHYLGAKQYEELPAYLAGWDVALMPFALNESTRFISPTKTPEYLAGGCPVVSTPIRDVVNGYGESGVVAIADSPQGFIDAIQAALDLRTQPGVVAQYADKALDGMSWDKTCAQMKEQIECQRPGPT0022675_30DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GLYCAN_BIOSYNTHESIS,PGPT0022675-glf-K01854NANA
D1-35_027621050galECOG1087UDP-glucose 4-epimeraseATGATGATTCTGGTGACAGGTGGTGCGGGTTATATCGGCGCCCATGTGGCGGTCGAATTGATGAACCAGGGCGACGAGGTGGTGATCCTCGACAACCTGTGCAACAGCTCCCGGGCAACCGTGCAGCGCATATCGGACGTGACGGGGCGGGAGCCGGTTTTTGTCCATGCCGACGTGAGAAGCCGTCGCGCACTGGACAAGGTCTTCAGGGAGTACCCCATCGAGGCCGTCGTCCACTGCGCCGGGCTCAAGGCTGTGGGTGAAAGCGTGCGTGAGCCGCTGAGGTATTTCGATACGAACGTCAGCGGCAGCGTGACGCTGTGCCAGGCGATGGCGCAAGCCGGCGTGTTCAACCTGGTGTTCAGTTCATCGGCGACGGTCTATGGCGATTGCGCCCAGATGCCCATCGCCGAAACCTGCCCGACCGGGCAGCCAACCAACCCGTACGGCCAGTCGAAACTGATGGCCGAACACGTCATGCGCAGCACCGCCGCCTCCGACGCCCGCTGGTCGATCGGCTTGCTGCGCTACTTCAACCCCATCGGCGCCCATTGTTCAGGCCTGCTGGGAGAGACGCCGACGCAGACCCCCAACAACCTTTTGCCGTACCTGTTGCAGGTGGCCAACGGCGAGCGCGAGGTGCTGCGGATTTTCGGCTCCGACTACCCGACGCCGGATGGCACCGGGATCAGGGATTATGTGCATGTGGTGGATCTGGCCGAGGGGCACTTGCAGGCTCTGGCATTCCTGCGCGAACAGACGGGTGTGCATGTCTGGAACCTGGGCACCGGGCGTGGTTATTCGGTGCTGGAGGTGGTCAGTGCTTTCGAGCGGGCGACCGGGGCAAAGGTGCCGCTGGCTTTTGAAGCGCGTCGTCCGGGGGACATTGCACGGTGCTGGGCGGATCCGGGCAAGGCAGCCGAGCAGTTGGGCTGGACTGCACATCATGGGCTTGAGCGCATGTTGGAGGATGCCTGGCGCTGGCAGCGCCTGAATTTTCCTCGGGTCGAGCCGCGGGAGGTGGTGTTGCGGAGTATTGAGCAAGGGTGAMMILVTGGAGYIGAHVAVELMNQGDEVVILDNLCNSSRATVQRISDVTGREPVFVHADVRSRRALDKVFREYPIEAVVHCAGLKAVGESVREPLRYFDTNVSGSVTLCQAMAQAGVFNLVFSSSATVYGDCAQMPIAETCPTGQPTNPYGQSKLMAEHVMRSTAASDARWSIGLLRYFNPIGAHCSGLLGETPTQTPNNLLPYLLQVANGEREVLRIFGSDYPTPDGTGIRDYVHVVDLAEGHLQALAFLREQTGVHVWNLGTGRGYSVLEVVSAFERATGAKVPLAFEARRPGDIARCWADPGKAAEQLGWTAHHGLERMLEDAWRWQRLNFPRVEPREVVLRSIEQGPGPT0017825_35DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GALACOTOSE_METABOLISM|DEGRADATION,PGPT0017825-galK-K01785NANA
D1-35_02763309hypothetical proteinGTGGGTTTGGATTGGGGGCATATCCGTTTTTTTGGTGATGGCTGCTTATGGTTTCGCCCTTACGGCGAGTCACTTTCAAAAAGCGTGAAAGTAACCAAAGCGCTTCTGCCCCACCACTTGGCACCTCGCCTAGGCTCGGTGTGCCCTCACTCCGGCATTGCTCCGTGGGCCCGCCGCGAAGGGCCGTCCCTGGCCCAGCGCGGCTATCCCGGCATCCATGCCGGGATGCCCACTGCGCAATACCTGCGTTCGGCCGTCGTGGTTAACGGGGCCTCCGAGATCAACGTTTGCGGCGAGGCGGCCTTATAGMGLDWGHIRFFGDGCLWFRPYGESLSKSVKVTKALLPHHLAPRLGSVCPHSGIAPWARREGPSLAQRGYPGIHAGMPTAQYLRSAVVVNGASEINVCGEAALNANANANANA
D1-35_02766267hypothetical proteinGTGAGTGAAACCGACCTTGAGATGGAATTGAAAGCCTGGCGGCTGTTGCTGGAAGACGATGCATATCGCCTGGACTTTCCCGAAGATTATTACGACACGTTGATCCGGCGCGCGGATGAATTGGTGTTGCATGAATTGATCAGTCTGGAGGATTGGCAATTGCTCAAGGACGCGGCGGACCAGGCTTACCAACTGACGGTTGAAATGCTGGCGCGTAATCAGCGCGATTGTCTGAGTGTGCAGGGGATGCGCTTGCCTCGAGCTTGAMSETDLEMELKAWRLLLEDDAYRLDFPEDYYDTLIRRADELVLHELISLEDWQLLKDAADQAYQLTVEMLARNQRDCLSVQGMRLPRANANANANANA
D1-35_02767726hypothetical proteinATGAGCGAACGCCAAGTCACCATCGGCATGAATCGTACCGGCGTCCAGATGTCTCCCGAAGACACCGCTCGCCAACTGGAAGCCACCCGCCTGTTTCCGGCGGATGTGCCGGGCGACGTGAGCGCCTACACGGCAGAACGCGAGCGCGCCATTCGCGAGGCCGACCTGATCGGCTCGGTACCGGCACCGGGTTCGGTCAAAGGCGTGGTCAAGACCGCACTGGACAAAACCATCGGCAAGGCGCCCGAAGTGCTGCTGGACAAGCTCGGCGAACGCCTGGCCTTCGAGCGCACCGGCGTGCGCCTGTATGAGGCGATGGTCGCCAAGGCCACAGCCGCGCCCGGGGCTGATCCGGCGTTGGTAGAGACCTTGCGGCAGATCCAGGCCGAGGAGCTCGAACACATGAACATCGTGCGCGAAGCCATCGAAACCCTTGGCGGCGACCCAACCGCGATGACGCCATGCGCGGACGTGGCGGGAGTCAAGGCGATGGGCGTGCTGCAGGTACTGACGGACCCACGCACCACCGTTTCCCAGTCGATGAGCGCGATCCTGACCATCGAGCTGGAAGACAACGCTGCCTGGGAGTTGCTGATCGAGCTGGCGAAGAAGGGCGGTCACCCGCTGATCGCCAAGCGCTTCGGCCATGCCCTGGAGCAGGAGGAAACGCACCTGGCCACGGTTCGCGACTTCATCAGGCAAGACCTGCTCGCGCAAGTGAGTTGAMSERQVTIGMNRTGVQMSPEDTARQLEATRLFPADVPGDVSAYTAERERAIREADLIGSVPAPGSVKGVVKTALDKTIGKAPEVLLDKLGERLAFERTGVRLYEAMVAKATAAPGADPALVETLRQIQAEELEHMNIVREAIETLGGDPTAMTPCADVAGVKAMGVLQVLTDPRTTVSQSMSAILTIELEDNAAWELLIELAKKGGHPLIAKRFGHALEQEETHLATVRDFIRQDLLAQVSNANANANANA
D1-35_027681176hypothetical proteinATGACCAAAATCGACAACCTGCTGGATAACAAAGGGACGCCGCTGGACAAGCAGACGTTTACCTGGCGTGACCTGGCCGGCAAACCCATCAGCAAACTGGATGACGATGCGTTCACGCGAGTGCGGGTGATCCTGATGAACGGCGTCGAATCCGACGCGCTGCGCCTCAAGCATTTCGGCGCGCGTTTCCACAAGGAATTGCAACTGCCCCTGGCCCAGGTAAGGCGCGCCGAGCAGCATCAGATGACCGCGATAAACTGGCTACTGTCGGCTGATCATTCGCCGCTTGAAACCACCGTGGCCTACGAACAGGTCGCCATCGAAGTGACTGCCGCCGTCGCCCAGAACGAGCCCGACCCTTATCAGGCGCAGACCTATCGTTTCGGCCTGCTGGAAGATTTCGACCACCTCTATCGTTACTCGGCCATGCTTGATCGATTGGAAGGCAAAGACGCCAACAACATCTTGCAAGGCTACACGGACATCGTGCCCGGCCGGCCCACTAGCGAGCACCACCGTGCCCCCGGCGATGACCTGCGCGACAACTACAAGAAGGAGAACGCCGCGCTGATCACCAAGATCCATGCGGCGCTGATCACGGGTGCGGAATACCAGACCCACGATTACTACATGAACATCGGTCCGCTGTTTGCCGACCCGGTGGCGCGCGCGTTGTATGCCGAAATCGCCTCGGTGGAAGAGCAGCATGTCACCCAATATGGCTCGTTGCAGGACCCCAGCGAAACCTTCATGGAGAAGTGGCTGGTGCATGAAGCGATGGAGGTCTACACCTACGCCAGTTGCGCCGAGCAGGAAGAAAACCCACGGATCAAGGCGATGTGGGAACGCTTCGTCGACTACGAGCTGGGGCACTTGAACCTGGCTTGCGAATTGTTCAAGAAGTACGAGCGACGCGACCCCGCCGAGGTGCTCAGCGGCCAGTTGCCGCGCATGATCGAGTTCAAGAGCCAGCGTGATTTCGTCCGTGAGACGCTGTCCCGGGAAGTGGATTTGCGAGCCCACGGCATCGACTACGTGCCCAAGGAACGCGAAGGCCACGCTTCCCTCGACTACCGCGCCCAGCTCAACAGCGAAGGCGTGCCTGCCAACATCGTCTCCGCCGGCTACACCTTCAAGCCCGGCACCGAACTCAACCCAGTGGGAGAACAGCAATGAMTKIDNLLDNKGTPLDKQTFTWRDLAGKPISKLDDDAFTRVRVILMNGVESDALRLKHFGARFHKELQLPLAQVRRAEQHQMTAINWLLSADHSPLETTVAYEQVAIEVTAAVAQNEPDPYQAQTYRFGLLEDFDHLYRYSAMLDRLEGKDANNILQGYTDIVPGRPTSEHHRAPGDDLRDNYKKENAALITKIHAALITGAEYQTHDYYMNIGPLFADPVARALYAEIASVEEQHVTQYGSLQDPSETFMEKWLVHEAMEVYTYASCAEQEENPRIKAMWERFVDYELGHLNLACELFKKYERRDPAEVLSGQLPRMIEFKSQRDFVRETLSREVDLRAHGIDYVPKEREGHASLDYRAQLNSEGVPANIVSAGYTFKPGTELNPVGEQQNANANANANA
D1-35_02769684yedK_2COG2135SOS response-associated protein YedKATGTGTGAATGTTTCGTTCAGCCCGTTTCTTCCAAGGATTCCCTTGCGTTTTTTGCCCAGCGCGACCCCTTCGGTGCCAACCCATCAAGCTTGTCCGCCGACAGCCTTCACGCTGCGGCGGAGCCCGCGCTGCATGAGCGACAAAGCGTGATCAAGCCGAACATGCAGGTCAGCGCCATACGCAACCGTGGCGGGCGCCTGGAGTGCATCAAGGTGCGCTGGGGTTGGTCGCCCGTGTGGTCGATGGGCACGATGCCGCCGCTGACCCACCTGCCCTTGCACCTGGTGATGCGCTCCAAGGTGTTCGACCGGATCAAGCGCGACGGTCGCGTCCTGGTGGCGGTGGATGGCTGGTACGAAGCCGCCGCGGAGACTGGCGCGCACGCCCAGTCCAAGCGCCTGAGCTATACGACGTCGCGGCAATCCTCACCGATCTTCCTCGCCGCCCTGGCCCAGGCCAGTGAAACGCCCAACGGCTGTGACGGGCTGGCCCTGGTGACCTACGGCGACATGGTCAATCAACAGCAGCGACTGCTGGCCTTCACCGGCGAGAACGCCCTCGAATGGTTGCGCCCGGAGCTGGATTGGGAACAGGCCCGCGACATGGCCGCCCACGTAGCGGTCGCCGAACCGCAACTGGAGCACGTGCTGACCGCCAAGCGAATGGTCCAGGGCCGACGGTGAMCECFVQPVSSKDSLAFFAQRDPFGANPSSLSADSLHAAAEPALHERQSVIKPNMQVSAIRNRGGRLECIKVRWGWSPVWSMGTMPPLTHLPLHLVMRSKVFDRIKRDGRVLVAVDGWYEAAAETGAHAQSKRLSYTTSRQSSPIFLAALAQASETPNGCDGLALVTYGDMVNQQQRLLAFTGENALEWLRPELDWEQARDMAAHVAVAEPQLEHVLTAKRMVQGRRNANANANANA
D1-35_02770381rutC_1Putative aminoacrylate peracid reductase RutCATGGCGAACCAAGACATCACGTTCACCCCCGACCCGGACGCAGACTCCATCTCCTCCGACGTCGCCGGTTTCGGCGGCTTGCTGGTTTCCACCCAGATCCCGACCCGCGCCGACGGCAGCCTGGAGCTGGGCGACATCACGGCGCAGAGCGAATGCACGTTGCAGGCGCTCAAGAGCGCCCTCGAACGCGCCGGCAGCTCCATGGACCGCGTGTTGCACTTGACCATCTACCTGACCGACATAGCCGATCGCGCGGCTTTCAATGAAGTCTACAAACGCTTCTTCGCCAAGCCCTGGCCGGTGCGCGCCGCGGTGGGCGTGGCGGCGCTGGCGGTGGAAGGCATGAAAGTGGAAGTGACGGCGATGGCGGCGAAGGGCTGAMANQDITFTPDPDADSISSDVAGFGGLLVSTQIPTRADGSLELGDITAQSECTLQALKSALERAGSSMDRVLHLTIYLTDIADRAAFNEVYKRFFAKPWPVRAAVGVAALAVEGMKVEVTAMAAKGPGPT0020030_2325DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020030-ridA|tdcF-K09022NANA
D1-35_02772249hypothetical proteinATGTTCAAAGCAACCCCAAACCCGCCAAACACCGAACCCACCCAACTCTTCACCGTCATCAACGGCATCGACACCGAAGCCCTGCTCGCCAACCTCAGCGAAACCCTCGCCTCGGCCAATGCCATGGTCACCGACCTGGCCTTCGACCTGGACGGCTCGCGACGCCACATTGCCCTGGGCATCCAGCAACTGATCGAGCTGAGCGGGCTGCTGGCGAACCGCGCGCTGGATAACGTCGAAGCCCGCTAGMFKATPNPPNTEPTQLFTVINGIDTEALLANLSETLASANAMVTDLAFDLDGSRRHIALGIQQLIELSGLLANRALDNVEARNANANANANA
D1-35_027731764glcA_2COG1620Glycolate permease GlcAATGGTCTGGCAACAAGTCTACGATCCCTTCGGTAATGCGGTGCTGTCGACGCTCCTGGCGGCGGTTCCGGTGGTGGTGATGCTGGCGGCCCTGGCGTTCTTTCATGTCAAGGCGCACCTGGCGGCGTTGTACGCCCTGGCCTCGGCGTTGCTCATCGCGATTTTCGCCTTCGGCATGCCCGCCGACATGGCCGGTTCGGCGGCCCTTTATGGTGCGGCCAACGGCCTGCTGCCGATCGGCTGGATCGTGCTCAACATCATCTTCCTGCACCGGCTGACCACCGAGAACGGTTCGTTCAAGGTCCTGCAGGATTCCCTGGCGCGCATCACCGACGATCGGCGGCTGCAATTGCTGCTGATCGCCTTCTGTTTCGGTGCCTTCTTCGAGGGCGCGGCGGGCTTCGGCACGCCAGTGGCGGTGACCGGAGCGATCCTCATCGGGCTGGGCTTTTCGCCGCTCGCCGCCTCGGGCCTGGCGCTGATCGCCAACACTGCGCCAGTGGCGTTCGGCGCGCTGGGTACGCCGATCATCACGCTTGCCAAGGTCACCGGGCTGGATGAAATGGAGCTGTCGATGATGGTCGGCCGGCAGTTGCCGTTTTTCTCGGTGATCGTACCGTTCTGGCTGATCTGGGCGTTCGCCGGTTGGCGCAAGATGCTCGAAGTCTGGCCGGCGATCCTGGTGGCCGGCGTCAGCTTCGCCATCCCGCAGTTCTTGGTATCGAACTACCACGGCCCGATGCTGGTGGACGTGATTGCCGCGCTGATTTCCATGGCCTGCCTGACCGGTTTCCTCAAGGTCTGGAAACCGGCCACGGTGCATACCTCGGCGGCGTTGTCAGGCCGGCACGATGATTCGAAGATCGACCCCAGCGAGCAACAGACACCGGTGGCCAGCGGCGCCTTCGCCAGCGACAACCGCCCCGCCGTGCTGCGGGCGTGGATGCCGTGGATCATCCTCACGGTCTTCGTGTTTGCCTGGGGCACCCAGGGCTTCAAGAATCTGTTCGACACCCGCCCGGCCCTCGACCCGCAGACCCAATCGGCCAGGCTCGATCCCCAGGGCAAGCCAATGCGCGAGGCGAATCCGATCTTCTCGCCGCTGTTGACCTTCGGCACCATCCACCAGCAAATCGAAAAGGTCCCGCCGGTGGTGCCCCAGCCGAAAACCGAGGAAGCGGTCTACAAGTTCAACTGGTTTACCGCCACCGGCAGCGGCATCTTCCTGGCGGCCATTCTCGGCGGCTTGCTGATGGGCTATTCGATCCCGCAACTGGCGCGTCAATACCTGCGAACGCTGTGGGTGGTGCGCTATTCGCTGATCACCATTGTCGCCATGTTGGCGTTGGGCTTTCTTACGCGCTATTCGGGCCTGGACGCGACCATGGGCCTGGCGTTTGCCGCGACGGGCATCTTCTACCCGATGTTCGGCACGCTGCTGGGCTGGCTCGGCGTGGCGCTGACCGGTTCGGACACGGCGTCAAACGTGCTGTTCGGCGGTTTGCAACGGGTCACGGCAGAGCAGTTGGGAATCAGCCCGGTGTTGATGGCCGCCGCCAATAGTTCCGGCGGGGTGATGGGCAAGATGGTCGACGCCCAGTCGATCGTGGTCGCCTCCACCGCGACCCGCTGGTACGGCCACGAAGGGGAAATCCTCCGCTACGTGTTTTTCCACTCGGTGGTGCTGGCGATTCTGGTGGGCGGGCTGGTGACGTTGCAGGCGTATGTCGAGCCGTTCAGTCACATGGTGGTGGGAGGAAAGTAAMVWQQVYDPFGNAVLSTLLAAVPVVVMLAALAFFHVKAHLAALYALASALLIAIFAFGMPADMAGSAALYGAANGLLPIGWIVLNIIFLHRLTTENGSFKVLQDSLARITDDRRLQLLLIAFCFGAFFEGAAGFGTPVAVTGAILIGLGFSPLAASGLALIANTAPVAFGALGTPIITLAKVTGLDEMELSMMVGRQLPFFSVIVPFWLIWAFAGWRKMLEVWPAILVAGVSFAIPQFLVSNYHGPMLVDVIAALISMACLTGFLKVWKPATVHTSAALSGRHDDSKIDPSEQQTPVASGAFASDNRPAVLRAWMPWIILTVFVFAWGTQGFKNLFDTRPALDPQTQSARLDPQGKPMREANPIFSPLLTFGTIHQQIEKVPPVVPQPKTEEAVYKFNWFTATGSGIFLAAILGGLLMGYSIPQLARQYLRTLWVVRYSLITIVAMLALGFLTRYSGLDATMGLAFAATGIFYPMFGTLLGWLGVALTGSDTASNVLFGGLQRVTAEQLGISPVLMAAANSSGGVMGKMVDAQSIVVASTATRWYGHEGEILRYVFFHSVVLAILVGGLVTLQAYVEPFSHMVVGGKPGPT0001800_173DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_LACTATE_TRANSPORT,PGPT0001800-lctP-K03303NANA
D1-35_02774336hypothetical proteinATGAAACAATTCAGCAAAGTTGTCGCCTGCGCACTGTTCGGCCTGGTCCTGGCGGGTTGCACCGGCACCCCGATGAAAACCCAGCAATACGACAGCAGCCAATACACCGTGGTTGGCCACAGTGAAGCCAAGGCCACCGGCCTGTTGCTGTTCGGCGTGATCCCGATCCGCCAGAACAACCGTTTCGTGCGCGCCCAGACCGCCGCGATCAAGGCAAAGGGCGGCGACGCCATGATCAACACTCAAGTCCAGGAAAACTGGTTCTGGGCCTGGGTCCTGACCGGCTACACCACTTCGGTGTCCGGTGATGTGGTCAAGCTGAAGAACGTTCAGTAAMKQFSKVVACALFGLVLAGCTGTPMKTQQYDSSQYTVVGHSEAKATGLLLFGVIPIRQNNRFVRAQTAAIKAKGGDAMINTQVQENWFWAWVLTGYTTSVSGDVVKLKNVQNANANANANA
D1-35_02775657hypothetical proteinATGATTGACGTGACTGTCTGGAGCGTTACCCTGCCGGTGCAAACGCCCGCGCAGGTCGTGGCGACCAAAGCCATGCCGAGTCTGAACAACAAGTATTTCGACAATAACGGCCAGAGGATCATCTTCTGGGCGCCTGTCACCGGCTCCCATACCGGTAACAGCGATTACCCGCGTTCCGAATTGCGGGAAACCAGCAAAGACGGGAAACATCGCAACTGGCGCTACAACAGCGGCACCAACACTCTCAAGGGTGAATTGTCGGTGAACCAGGTGCCTTCGGAAGGCCGTGTGGTAGTGGCGCAGATTCACGCCAAGGAGGCGCCGACGCCGTTGTTGAAACTGGTTTACCGCTACGAAAAAGGCGTCGGCAATATCGACGTGGAATACCGCTTCAAGCCCAAGGACAAAAAAAGCCCGGTGATCATGACCGTGCCCAAGGTGCCGTTGAACAAATCGTTCTCGTACACGCTGCAAATGGACAAGCAAGGCCAACTGTCGGTGCTGATCGGCAGCAGTGGCAAACAGGTGAAACTGGACAAGTCCTGGCAAGGCTACGATTTCTACTTCAAGGCCGGCGTCTACACCTTGGATAACAAGGGCAGCACCAGTGAAGGCGGAAAAGTGACCTACACCAAACTGAGCGCCAGCCACAAGTGAMIDVTVWSVTLPVQTPAQVVATKAMPSLNNKYFDNNGQRIIFWAPVTGSHTGNSDYPRSELRETSKDGKHRNWRYNSGTNTLKGELSVNQVPSEGRVVVAQIHAKEAPTPLLKLVYRYEKGVGNIDVEYRFKPKDKKSPVIMTVPKVPLNKSFSYTLQMDKQGQLSVLIGSSGKQVKLDKSWQGYDFYFKAGVYTLDNKGSTSEGGKVTYTKLSASHKPGPT0019417_620DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERSPLANT_DERIVED_ALGINATE_DEGRADATION,PGPT0019417-putative_alginate_lyase_2-NANANA
D1-35_027761233yegTPutative nucleoside transporter YegTATGACCACGATGAATGCACGCCTGAGCGTGATGATGTTCCTGCAGTTCTTTATCTGGGGCGGCTGGTTCGTCACCCTTGGCACGTTCCTGTCCACTACGCTGAGTGCCAGCGGCGGGCAGATCGGCATGGCCTTCGCCACCCAATCCTGGGGCGCGATCATCGCGCCGTTCGTCATCGGCCTGATTGCCGACCGCTACTTCAACGCCGAGCGCATCCTGGCGGTGCTGCACCTGGTGGGCGCGGTGTTGTTGTATCAGCTGTACTCGGCGGCGGATTTCAACGCGTTCTATCCGTACGTGCTGGCCTACATGGTGATCTACATGCCGACCCTGGCCCTGGTCAATTCCGTGGCATTCCGGCAGATGCGTGATCCGGCGCTGGAGTTCTCGCGTATCCGCGTCTGGGGCACGGTCGGCTGGATCGTCGCCGGCGTGGTGATCAGTTTTGTCTTCGCCTGGGACTCACGCGAGGCGATCTCGGCCGGCGGCCTGCGCAATACGTTCCTCATGGCGGCCATTGCCTCGCTGCTCCTTGGGCTCTACAGCTTCACGCTGCCAGGCACCGCGCCGCTCAAGGCGCAGGCGAGCGCTGGCGCCGTCAAGCAGTCGCTGGGGCTCGACGCGTTAGGCCTGTTAAAGGACCGCAGCTACCTGGTGTTCTTCATCGCCTCGATCCTGATCTGCATCCCGTTGGCGTTCTACTACCAGAACGCCAACCCGTTCCTGGCGGAAACCGGCATGACCAACCCGACGGCGAAAATGGCCATCGGGCAGGTGTCCGAAGTGCTGTTCATGCTGCTGTTGCCGCTGTTCATCCAGCGCTTCGGTATCAAGCTGGCGCTGTTGGTGGGCATGCTGGCGTGGGCGTTGCGCTACGTGCTGTTCGCCTACGGCGACAACGGCGGGCTGGCGTTCATGCTGTTCACCGGCATTGCGCTGCACGGCATCTGCTACGACTTCTTTTTTGTCTCGGGGCAGATCTACACGGACGCCAAGGCGCCCGCGCACCTGCGCAGCTCGGCCCAGGGGCTGATCACCCTGGCGACGTACGGAGTGGGCATGTTGATCGGGTTCTGGGTGGCGGGGCAGGTGACCGATCACTTTGTGGTGGAAGGCGGCCACGACTGGAAAAGCATCTGGCTGTTCCCGGCCGGTTTTGCCCTGGTGGTATTCGTCTGCTTCCTGCTGACCTTCAGCGGCCGACAAGCGGTCGTGGCGCCGTCCAAGGCTTGAMTTMNARLSVMMFLQFFIWGGWFVTLGTFLSTTLSASGGQIGMAFATQSWGAIIAPFVIGLIADRYFNAERILAVLHLVGAVLLYQLYSAADFNAFYPYVLAYMVIYMPTLALVNSVAFRQMRDPALEFSRIRVWGTVGWIVAGVVISFVFAWDSREAISAGGLRNTFLMAAIASLLLGLYSFTLPGTAPLKAQASAGAVKQSLGLDALGLLKDRSYLVFFIASILICIPLAFYYQNANPFLAETGMTNPTAKMAIGQVSEVLFMLLLPLFIQRFGIKLALLVGMLAWALRYVLFAYGDNGGLAFMLFTGIALHGICYDFFFVSGQIYTDAKAPAHLRSSAQGLITLATYGVGMLIGFWVAGQVTDHFVVEGGHDWKSIWLFPAGFALVVFVCFLLTFSGRQAVVAPSKANANANANANA
D1-35_027771125iolE_1Inosose dehydrataseATGGACCACGCTGAAAACCGGAGAATCGCAGTTGTGAGCACCCCCGACGAAACACCGAGCGGCCTGCGCGGGCCAGCGATTTTCCTGGCGCAGTTCATGTCCGATGAATCGCCGTTCGACACCCTGGCCGACATTGCTCGATGGGCCGCGTCGCAGGGCTACAAGGCGATTCAACTGCCGACCCTCGGCACGCGCTACATCGACCTGGCCCGGGCCGCCGAGAGCCAGGATTATTGCGATGAGCTCAAGGCCGTCTGCGCATCGGCCGGCGTCGAGATCAGCGAGTTGTCGACGCACCTGCAAGGGCAGTTGGTGGCGGTGCACCCGGCATTCGACGCGCTGTTCGACGACTTCGCCCCGGCCCACCTGCGCGGCCAGCCCGAGGCGCGCACCGAGTGGGCCATCGAGCAACTGAAACTCGCCGCCCGTGCCAGCCAACGCCTGGGCCTCAAGGCCCACGCGACGTTTTCCGGTGCGTTGCTGTGGCCTTATATGTACCCGTGGCCGCAACGTCCGTCCGGCCTGGTCGAGCAAGGGTTCGCCGAACTGGCCCGGCGCTGGTTGCCGATCCTCGACTGTTTCGACGCGGCCGGCGTCGACCTGTGCTACGAGATCCACCCCGGCGAAGACCTGCACGACGGCGCCTCGTTCGAGCGTTTCCTCGAAGCCGTCGATCACCATCCACGGGCGGCGATCCTCTACGACCCCAGCCACCTGTTGCTGCAACAGATGGACTACCTGGGCTTCATCGATCGCTACCACGACCGCATCCGCATGTTCCACGTCAAGGACGCCGAATTCCGCCCCGATGCCCGTTCCGGTGTCTACGGCGGCTACCAGGTTTGGGTTGATCGCCCCGGCCGGTTCCGTTCCCTGGGCGATGGGCAGATCGATTTCAAGGCGATCTTCAGCAAGCTGACCCAGTACGGCTTCGACGGCTGGGCGGTGCTGGAATGGGAATGCTGCCTGAAAGATTCGCAGCAGGGCGCGGCCGAAGGCGCGGCGTTCATCCAGCGGCACATGATCAGCAAGACCGCCAAGGCGTTCGATGATTTCGCCGGTGTCACGGCGGACGAAGCGTCCAATCGGCGGTTGCTGGGGTTGCCCCCGGTGCCAATGACATAAMDHAENRRIAVVSTPDETPSGLRGPAIFLAQFMSDESPFDTLADIARWAASQGYKAIQLPTLGTRYIDLARAAESQDYCDELKAVCASAGVEISELSTHLQGQLVAVHPAFDALFDDFAPAHLRGQPEARTEWAIEQLKLAARASQRLGLKAHATFSGALLWPYMYPWPQRPSGLVEQGFAELARRWLPILDCFDAAGVDLCYEIHPGEDLHDGASFERFLEAVDHHPRAAILYDPSHLLLQQMDYLGFIDRYHDRIRMFHVKDAEFRPDARSGVYGGYQVWVDRPGRFRSLGDGQIDFKAIFSKLTQYGFDGWAVLEWECCLKDSQQGAAEGAAFIQRHMISKTAKAFDDFAGVTADEASNRRLLGLPPVPMTPGPT0016785_21DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISMCE-BACTERIAL_FITNESS-RHIZOPINE_CATABOLISM,PGPT0016785-mocC-K03335NANA
D1-35_027781176hypothetical proteinATGAAACCTGTAGCACCAAAAATAAGAATGGGCTTCGTCGGCGGTGGGGAGGGCGCGTTCATCGGCCAGGCCCATCGTCAGGCCGCGGGCCTGGACGGTGGTTTCGAGCTGGTGTGCGGCGCGTTCAGCCGTGACCCGCAGAATAACCGGCAGACCGGAGAAGCCCTGGGGCTGGCCGCGTCCCGCTGTTATCACGACTGGCAGCAGATGCTCGACGCCGAGGCGCTGCTGCCTCTGGACCAGCGCATGGAACTGCTGGTGATCGTCACCCCCAACCATCTCCACGCGCCCATTGCCCGCCAGGCGCTGGCGGCGGGTTTCCATGTGTTCAGCGAAAAGCCCGCGGCACTGAACCTCAAGGAGTTGCTCGCGCTCAGGGACGTGCTGCAGGGCAGCCGTTGTCTCTACGGCCTGGCTCACACCTACCTGGGCTACCCGATGGTCTGGCAGGCCCGGGAGATGGTGCGTTCGGGCGTGATCGGCCAGGTGCGCAAAGTGCTCGTCGAATACCCTCAGGGCTGGCTCAGCCAGGACGTCGCCGCGCAAGGCAACAAACAGGCCGAATGGCGCGACGATCCGGCACAGTCCGGGCTGGGCGGCTGCATTGGTGACATTGGCACCCATGCTTTTTCCTTGGCGGAGTTCGTCGCCGACCAACCGATCCAACAGCTTTGCGCCACGCTGGGCACGCATGTCGCCGGTCGGCAACTGGACGACGACGTGGCGATGTTATTCCAGATGCAACGCGGCGCCAGCGGCGTGTTGCTGGCCAGCCAGGTCTGCACCGGCGAAGAGAACCCGCTGAAGATCCGCGTCTACGGCGACAAAGGCGCCCTGGAGTGGCGCCAGGAACAGCCGTCGAGCCTGATCCATCGCGCCCTCGATCAACCCCTGAGCATCCTGCGTAGCGGGGTTGGCCAGCCGTGGTTGTGCGAGGCCGCAACGCGCCGCATGCGTCTGCCCGCCGGGCATCCCGAGGGTTATCTGGAAGCGATGGCCAACCTCTACGGCGATTTCGCCCGGGCCATTCGCGAACGCGTCGAAGGCCCCGATGTGCCTGGCGTACCCGGCATCGAAATCGGCTTGCGCGGTATGGCGTTCATTGAGGCCGCCATCCTCAATCACCGTGGCGAGGCGAAATGGACCACGCTGAAAACCGGAGAATCGCAGTTGTGAMKPVAPKIRMGFVGGGEGAFIGQAHRQAAGLDGGFELVCGAFSRDPQNNRQTGEALGLAASRCYHDWQQMLDAEALLPLDQRMELLVIVTPNHLHAPIARQALAAGFHVFSEKPAALNLKELLALRDVLQGSRCLYGLAHTYLGYPMVWQAREMVRSGVIGQVRKVLVEYPQGWLSQDVAAQGNKQAEWRDDPAQSGLGGCIGDIGTHAFSLAEFVADQPIQQLCATLGTHVAGRQLDDDVAMLFQMQRGASGVLLASQVCTGEENPLKIRVYGDKGALEWRQEQPSSLIHRALDQPLSILRSGVGQPWLCEAATRRMRLPAGHPEGYLEAMANLYGDFARAIRERVEGPDVPGVPGIEIGLRGMAFIEAAILNHRGEAKWTTLKTGESQLNANANANANA
D1-35_027791011cytRCOG1609HTH-type transcriptional repressor CytRTTGTCGAATATCCGTGAAGTGGCCCGGCTGGCCGGTGTTTCCGTGGCCACGGTGTCGAGGACGCTGAAGTCGCCTGAACGCGTGCTGCCGGAAACCCGCGACAAGGTCAACGCCGCGGTGGCACAGGCCGGTTATCGACCGAACCTGATGGCGGTGCAGTTCCGTTCCCGCCGTACCGGCAACCTGGTGATCCTGGTGCCGGCGATCGCCAACACCTTTTTCGCCCGGGTCATCAGCGGCGCCCAACAGGCGGCGCAAGCGGCCGGCTATCGACTGCTGCTGTGCGATACCCAGGGCCGCGAAGCCATCGAGCAGGAATTCGCCGCGCTGGTCTACGCCCACCAGGCCGACGGGGTGATTCAACTGCGCGCCAGCGACCCCTTTGTTTCATTGCCGCCCGGCGCCGACGCGTTGCCGCTGGTCAATGCGTGCGAAGTGGTCAAGGACGCGCCCTACCCGACCATCAGCCTGGACAACCGCAGCGCCGCCCGCGCCATGACCGAGCACCTTATCGGCCTCGGCCACCGACGCATCGGCATCATCAAGGGCCCTCGCAGCAGCCCGTTGACCCTCGATCGCGTCGCCGGCTATCAGGACGCCTTGCAAGACGCCGGCATCGCCATCGTCCCCGAGCTGATCTGCCACGGCGACTTCACCCTCAAGGCCGGCTTCGACGGCGCCAGCGCCATGCTCGCCCTGGCCGAGCGTCCCAGCGCGCTGTTCTGCGAGAACGATGAGATGGCCATCGGCGCGCTCAAGCGCATCAAGCAGACGGGCCTGCGGGTGCCCGAGGACATCTCCCTGGTGGGTTTTGACGACATCCCGTTCGCCGCCTATTGCGATCCGCCGCTGACCACCATTTCCCAGCCAGCTGAAACCTTTGGTCACAAAGCCGTAGAAATGCTCATCGCCCTGATCGAGAAAAGATCCATCGCCCAGCGGCACGTGCTCCTGCCGTTCGAGCTGACCGTACGCGGCAGCAGCGCAGCGCCAGGCTCCAGCATGGCCTGAMSNIREVARLAGVSVATVSRTLKSPERVLPETRDKVNAAVAQAGYRPNLMAVQFRSRRTGNLVILVPAIANTFFARVISGAQQAAQAAGYRLLLCDTQGREAIEQEFAALVYAHQADGVIQLRASDPFVSLPPGADALPLVNACEVVKDAPYPTISLDNRSAARAMTEHLIGLGHRRIGIIKGPRSSPLTLDRVAGYQDALQDAGIAIVPELICHGDFTLKAGFDGASAMLALAERPSALFCENDEMAIGALKRIKQTGLRVPEDISLVGFDDIPFAAYCDPPLTTISQPAETFGHKAVEMLIALIEKRSIAQRHVLLPFELTVRGSSAAPGSSMAPGPT0021075_1329DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_NUCLEOSIDE_TRANSPORT,PGPT0021075-cytR-K05499NANA
D1-35_02780951hypothetical proteinATGCCAATCAGCAAACGCTTCATTTCCCTGGCCGCCACCGCAGCCGTGATGGTCACGACCACGGCCTATGCTGCGCCAGCGTACATCAACATTCTGACCGGAGGCACCAGCGGGGTGTATTACCCGATTGGCGTCGGGCTCTCGCAGATCTATAGCAGTGGCATCAAGGATTCCAAGACGTCGGTCCAGGCCACCAAGGCTTCGGTGGAAAACCTGAACCTGCTGCAAGCCGGACGCGGGGAGTTGGCGTTCGCCTTGGGCGACTCGGTGGCGGACGCCAAGAATGGGGTGGAAGACGCCGGCTTCAAGGCGCCCTTGACCAAGCTGCGGGCCATCGCTGGCGCCTACCCCAACTACATACAAATCGTCGCCAGCCAGGAATCAGGCATCAAGACCCTGGCCGATCTCAAGGGCAAGACCGTTTCGGTCGGCGCAGCGAAATCCGGCACCGAGCTCAACGCCCGGGCAATCTTCAAGGCCGCGGGCCTGACCTACAGCGATATGAAGGTGCAATACCTGCCATTCGCCGAGTCGGTGGATCTGATCAAGAACCGCCAGTTGGATGCCACGCTGCAATCTTCCGGCCTGGGCATGGCAGCGATTCGTGACCTGGCGTCGACCATGCCATTGAACTACGTATCGATTCCCACCGATGTCGTGGCAAAAATCGGTAACCCGGCCTATTTGAGCGCACAAATCCCGCCCAACACGTACGACGGACAAACTGACGCCGTGCCCACCGTCGCCATCACCAATATCCTGGTGACCCGCGAGGATGTGCCGGACGAAGTGGCCTATCAGATGACCAAGCTGCTCTTCGACAACCTCAATCGCCTGGGCACGTCCCATTCGGCGGCGAAAGACATTTCCCTGAAAAACGCCGCGAAGAACCTGCCGATAGCCCTGCACCCTGGCGCCGAACGCTACTACAAGGAAGTGGGCGCGCTGTAGMPISKRFISLAATAAVMVTTTAYAAPAYINILTGGTSGVYYPIGVGLSQIYSSGIKDSKTSVQATKASVENLNLLQAGRGELAFALGDSVADAKNGVEDAGFKAPLTKLRAIAGAYPNYIQIVASQESGIKTLADLKGKTVSVGAAKSGTELNARAIFKAAGLTYSDMKVQYLPFAESVDLIKNRQLDATLQSSGLGMAAIRDLASTMPLNYVSIPTDVVAKIGNPAYLSAQIPPNTYDGQTDAVPTVAITNILVTREDVPDEVAYQMTKLLFDNLNRLGTSHSAAKDISLKNAAKNLPIALHPGAERYYKEVGALNANANANANA
D1-35_027812028hypothetical proteinATGAGTGAAGACCAGCACGGCATCGCCACGGACCCACGGGACTGGCCGAAGACGCTGTTCTATGTAGCGTTGCTGTTTTCCATATTCCAGATCGTCACCGCAGCCTTCTCCCCGGTATCGAGCATCGTGCTGCGGGCGGTGCATGTGGGCTTTTTGCTGTGGGTGGTGTTCTTGAGCTACCCGGCCCATGGCAAGCAACGGCCCTGGCAACCCCTGGCCTGGGCGTTGGGGCTGGCGGGGATGGCGACCGCGCTCTATCAGTGGGTGTTCGAGGCCGACCTGATCCAGCGCTCCGGCGACCTGACGAGCGCCGACATGGTCATCGGCATCGTCCTGATCGTGCTGGTATTCGAGGCGGCGCGGCGGGTGATGGGCATCGCCTTGCCGATCATCTGCGGCCTGTTCCTAGCCTATGGCCTGTTCGGCGAACACCTGCCGGGCGACCTGGCGCATCGCGGCTACGGCGTGGACCAGATCATCAACCAATTGGCGTTTGGCACCGAAGGGTTGTACGGCACGCCGACCTACGTATCGGCCACTTATATCTTCCTCTTCATCCTGTTCGGCGCTTTCCTGGAAAAGGCCGGCATGATCAAGCTGTTCACCGATTTTTCCATGGGCCTGTTCGGCCACAAACTCGGCGGCCCGGCGAAGGTGTCGGTGGTGTCATCGGCGCTGATGGGCACCATCACCGGCTCGGGCATCGCCAATGTGGTGACGACCGGCCAGTTCACTATTCCGCTGATGAAACGCTTTGGCTACAAGGCCGCGTTCGCCGGCGGCGTGGAAGCGACATCGAGCATGGGCAGCCAGATCATGCCGCCGGTCATGGGTGCGGTGGCGTTCATCATGGCCGAGACCATCAACGTGCCGTTCGTGGAAATCGCCAAGGCGGCCTTGATACCCGCCTGCCTGTATTTCGGCTCGGTGTTCTGGATGGTGCACCTGGAGGCCAAGCGTTCGAACCTCAGAGGTCTACCCAAGGATCAGTGCCCGAGTGCCTGGGGCGCGGTCAAGGAAAACTGGTATCTGCTGATTCCACTGGCAGTGCTGGTCTATCTGTTGTTTTCCGGGCGCACTCCGCTGTTCTCCGGCATGGTCGGGCTGGCATTGACCGCTATCGTGATTCTCGGGTCGGCGATCATCCTCAAAGTATCGAACTATGCCTTGCGCTGCGCATTCTGGATAGCACTGGGGATTCTCTGCGTCGGCTTCTTCCGGTTGGGTATCGGAATCGTGTTCGCGGTGATCGGCGTGCTGGTGGTGGCTTGCTGGTTCATGCAAGGCACACGGGAAACCCTGGTCATCTGCCTGCATGCATTGGTGGATGGTGCCCGGCACGCCGTTCCGGTGGGGATCGCCTGCGCCTTGGTCGGCACCATCATCGCCGTGGTTTCGCTGACGGGCGTGGCGTCCACTTTCGCCGGTTACATCCTGGCCATCGGCAAGGACAACCTGCTGCTGTCGCTGATCCTGACCATGCTTACCTGCCTGGTATTGGGCATGGGCATCCCGACCATCCCGAACTACATCATCACCAGCTCGATCGCCGCGCCAGCCCTGTTGGAACTGGGCGTGCCGCTGATCGTATCGCACATGTTCGTGTTCTATTTCGGCATCCTCGCCGACCTGACCCCTCCGGTGGCCCTGGCCTGTTTCGCCGCCGCGCCCATCGCCAGGGAGAGTGGCCTGAAGATCAGCTTCTGGGCCGTGCGCATCGCCCTCGCCGGCTTCGTCATTCCGTTCATGACGGTCTACAACCCGGCGCTGATGCTCCAGGGCGACAATCTCTGGATGACGGCGTACATGCTGATCAAGACCTTGCTCGCGGTCGGCCTGTGGGGCATGGCGTCTACCGGTTTCCTGCAACAGAAGATGCCGGTCTGGGAACGGCTGATGTGTTTTGCCGCCGGGGCATTGTTGGTGGTGGCGCTGCCGTTGACCGATGAAATCGGCTTTGTCCTGGGGGCGCTGTTGATCGGGCAGCATCTGTGGCGCGCACGTCGCGGCGGACAGGCCTTGGCGTGAMSEDQHGIATDPRDWPKTLFYVALLFSIFQIVTAAFSPVSSIVLRAVHVGFLLWVVFLSYPAHGKQRPWQPLAWALGLAGMATALYQWVFEADLIQRSGDLTSADMVIGIVLIVLVFEAARRVMGIALPIICGLFLAYGLFGEHLPGDLAHRGYGVDQIINQLAFGTEGLYGTPTYVSATYIFLFILFGAFLEKAGMIKLFTDFSMGLFGHKLGGPAKVSVVSSALMGTITGSGIANVVTTGQFTIPLMKRFGYKAAFAGGVEATSSMGSQIMPPVMGAVAFIMAETINVPFVEIAKAALIPACLYFGSVFWMVHLEAKRSNLRGLPKDQCPSAWGAVKENWYLLIPLAVLVYLLFSGRTPLFSGMVGLALTAIVILGSAIILKVSNYALRCAFWIALGILCVGFFRLGIGIVFAVIGVLVVACWFMQGTRETLVICLHALVDGARHAVPVGIACALVGTIIAVVSLTGVASTFAGYILAIGKDNLLLSLILTMLTCLVLGMGIPTIPNYIITSSIAAPALLELGVPLIVSHMFVFYFGILADLTPPVALACFAAAPIARESGLKISFWAVRIALAGFVIPFMTVYNPALMLQGDNLWMTAYMLIKTLLAVGLWGMASTGFLQQKMPVWERLMCFAAGALLVVALPLTDEIGFVLGALLIGQHLWRARRGGQALANANANANANA
D1-35_02782402hypothetical proteinGTGATCGGCTTGTGCCTGGGCCTGTCCGGAGTGATCTGGGCGCAGCTTGAACTCAGCGAGTTCACCTTGGCGTGGGATCACACCATCGAGAAGATCCGTTGGGAGGAAGACTACCGTGTCACCGAAACGGGCCTGGTCCTGGGCGAAGCCAGGATCAAGGGCAACGGTGCCGGCATGGAGATTCCGGAAAACGCCCGGCTGGAACACGGCAGTTGGCACTACTATCGCCAACTGCCGCCGCTGCAACCCTTGAAGCTGGGCCGCACGCCCCAGGCCGGCGATTACCAACTGTGTCATGCCGGCCATTGCCAGCCGATGGCGCATTGGCTCGGCCCGCCCACCGTGGAACACCCCTCGGTAGAACTGTGGAGCTGCGAACGGCGCTCGATCATTCAGCGCTGAMIGLCLGLSGVIWAQLELSEFTLAWDHTIEKIRWEEDYRVTETGLVLGEARIKGNGAGMEIPENARLEHGSWHYYRQLPPLQPLKLGRTPQAGDYQLCHAGHCQPMAHWLGPPTVEHPSVELWSCERRSIIQRNANANANANA
D1-35_02783618hypothetical proteinATGCAAACAACGGAATTACTCGAACGTGCCTTCCCCGGCAGAAGGGCCGAGCTCAAGCGCGATATCTTCAGCAAGGCCCTGGCGCTGTTCAACGAACAGGGCATCGAGGCGACCACCATTGAAATGATCCGCACCGAATGCCAGACCAGTGTCGGCGCGATCTACCACCACTTCGGCAACAAGGAAGGCCTGGTGGCGGCGCTGTTCTTCACCGCGCTGGACGACCAGGCGCACTTGCGCGAGCAATACCTGGCCGAGGCGACGACGGCCGAACAGGGCGTGCAAGCGTTGATCTTCAGCTATGTCGATTGGGTCGACAGCCAGCCGGAATGGGCGCGTTTCCAGTATCACGCGCGTTTTGCCGTGACCAAGGGACCGTTCAAGGACGAACTCGCCAGCCGCAACAGCACGCGCAACGGCCAGCTCTGGCAGTGGCTGAGCGCGGCGGAGCAGGGCGAGGCGCTCAAGCGTTATCCAGCCGAGTTGATGTTCTCGCTGATCATCGGCGCGTCGGAAAGTTATTGCCGTGCCTGGCTGGCGGGGCGCGTGCCGACCAGCCCGAAGGCCCATCGGGAATTACTGGCGCAGGCGGCGTGGCGGTCGATCAGCGCTGAATGAMQTTELLERAFPGRRAELKRDIFSKALALFNEQGIEATTIEMIRTECQTSVGAIYHHFGNKEGLVAALFFTALDDQAHLREQYLAEATTAEQGVQALIFSYVDWVDSQPEWARFQYHARFAVTKGPFKDELASRNSTRNGQLWQWLSAAEQGEALKRYPAELMFSLIIGASESYCRAWLAGRVPTSPKAHRELLAQAAWRSISAENANANANANA
D1-35_02784441hypothetical proteinATGAATCAGGTTCTCGGTATGTTCAACAGCGCAGGTCCCGATGCGTTCAGCAAAATGGCCTGTCAGATGGCACCTTACTTCTCCACTATCAATCCGCTGGTCACGGAGCTGCGCCAGGGCGCGGCGACTGTGCAGGTACCGTTTCGCAAGGAAATCACCAATCACCTGGGCACCGTGCATGCCATTGCCATGTGCAACGCCGCCGAGCTGGCCGCCGGGATGATGACCAACGTCTCGATTCCCGACGGCGCCCGGTGGATCCCCAAAGGCATGACCGTGGAATACCTGGCCAAGGCCAAGAGCGACGTGACGGCGGTGGCGAACGGCGATGAGGTGGACTGGCAGACCGAGGGCGACAAGATCGTGCCGGTGGATATTCATGACGTGGATGGCAAGAAGGTGTTCACGGCGCGGATCACCATGAATGTGAAGTTGGCTTGAMNQVLGMFNSAGPDAFSKMACQMAPYFSTINPLVTELRQGAATVQVPFRKEITNHLGTVHAIAMCNAAELAAGMMTNVSIPDGARWIPKGMTVEYLAKAKSDVTAVANGDEVDWQTEGDKIVPVDIHDVDGKKVFTARITMNVKLANANANANANA
D1-35_027851089gnlGluconolactonaseATGGATGCTTCGCAACCTTCAGCCGCCGATCAGGCGCGCCGGACCTTCCTCAAGAAATCCCTGGTGGTCTCGGCCGCCGCCGTGACCCTTGGCAACCTGCCCGGCCTGACCCAGGCCGAACCGCTGAGCCAGCGTTATCCGGACCCTCTGGTCAATATCCTCGACCCCAGCTTCATGGACCTGCGCATCTTCAACGCCAGCGTGGAAAAACTCGCCAGCGGCCTGCGCTGGGCCGAAGGGCCGGTGTGGATCGGCGACGGTCGGTATCTGCTGGTCAGTGACATCCCCAACAACCGCATCGTGCGCTGGGACGAAGTCACCGGTGGGCTGTCGGTGTATCGGGAGAATTCGAACTTCTCCAACGGCATGTGCCGTGATCGCCAGGGACGGTTGCTGGTCTGTGAAGGCTCGACCACGTCGACCGAAGGGCGGCGTATCACCCGCACCGAACACAACGGCACGATCACCGTGCTGGCCGATCGTTTCGACGGCAAACCGTTGAACTCGCCCAACGACATCGTTTGCAAACGGGATGGCTCGATCTGGTTCACCGACCCGCCGTTCCAGACCGGCAACAACTACGAGGGGCACAAAGTCACCCCCGAGCAGCCGCACGCGGTGTACCGTATCGACGGTGAAACCGGGAAGCTCAGCCGGGTCATCGACGACCTGGCGGGGCCGAACGGCCTGTGCTTTTCCCCGGATGAAAAAACTCTCTACGTGGTCGAAGGCCGGGCCAAGCCCAACCGCCTGGTCTGGGCAATCACGGTCAAGGATGACGGCACCTTGGGCGAGCGCCGCAAGCATATCGAAGGCCTGGATTACGCCGCCATCGACGGCATCAAGTGCGATGAGAGCGGCAACCTCTGGTGCGGCTGGGGCGGCAACGGCGACCCCAAGGCCGACCTGGAAAAACTCGACGGTGTGCGGGTGTTCAACCCCGAGGGCAAGGCCATCGGGCATATCTCCCTGCCGGAACGCTGCCCCAACATCTGTTTCGGCGGCAGGGAGGGCAACCGGTTGTTCATGGCCGGCAGCCACTCGTTGTACTCATTGTTCGTGAACACCCGCGGGGCGACGTTTGCTTGAMDASQPSAADQARRTFLKKSLVVSAAAVTLGNLPGLTQAEPLSQRYPDPLVNILDPSFMDLRIFNASVEKLASGLRWAEGPVWIGDGRYLLVSDIPNNRIVRWDEVTGGLSVYRENSNFSNGMCRDRQGRLLVCEGSTTSTEGRRITRTEHNGTITVLADRFDGKPLNSPNDIVCKRDGSIWFTDPPFQTGNNYEGHKVTPEQPHAVYRIDGETGKLSRVIDDLAGPNGLCFSPDEKTLYVVEGRAKPNRLVWAITVKDDGTLGERRKHIEGLDYAAIDGIKCDESGNLWCGWGGNGDPKADLEKLDGVRVFNPEGKAIGHISLPERCPNICFGGREGNRLFMAGSHSLYSLFVNTRGATFAPGPT0001285_343DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION_D_GLUCONATE_BIOSYNTHESIS,PGPT0001285-gnl-K01053NANA
D1-35_027861131rcsC_12Sensor histidine kinase RcsCATGCGCCTGGCTGATTTCATTGTCGACAACATCGAACCGATCCTCCAGGCGTGGGAAGACTTCGCCAGGACCATCACCCCGGCTTCCATCGGCATGGATGCGGTAGCGCTGCGCGACCATGCCGAGCAGATGCTGCGCACCATCGCCATTGATCTGCGCACCTCTCAGACCCCGGAGGAGCAGATCGCCAAGTCCCAGGGCGAAGCCCCGGCGGCGGAGGCCGAGACCGCGGCGGAAACCCACGCTGTCATTCGCCAGTCATCCGGTTTTACCGTGGAACAGATGGTCTCGGAGTACCGTGCGTTGCGCACCAGCGTGCTGGTGTTGTGGATGCCCCATGCCCAGCTGGACCAGGCGCAGGCGATGTCGGATGTGATCCGCTTCAATGAAGCCGTCGACCAGGCCCTGGCGGAATCGGTGGTCAGTTATTCCGGCGCGGTCGATGCGGCGCGCAATATCTTCCTCGGGATCCTGGGACATGATCTGCGCAGCCCGCTGGGGGCAATCCTGCTGAGTTCCGAAGTGCTCCTGCGCGCCGGCGATCTGCCGGCCAAGGCCACCAAGATTTCCTCGCGCATCTATACCAGCGTCAAACGGGCGAACAAGATTGTTGGCGACCTGCTGGACTTCACCCGTACCCAGCTGGGCGCAGGCATACCGGTACAGCGTTTCAACGGCGACCTGGTCGCGGCGTGCGAAGGCATGGTGGAAGAGGCGCGGGCCTATCATCCGGAAAGCAGCATCCTCTTCGAGCCCCACGGTCCGCTTGAAGGACTGTTCGATCCGGCGCGGATGGAACAGGTGTTTTCCAACCTGATCGGCAATGCCGTGCAACATGGCGCGGAGGGCGCGCCGATCACGGTATCGTTGAGCCGCGAAGGGGATGAAGCCGTCATCGCGATCAACAACCAGGGCAAGCCTATCGAGAAGGACGCCATCGCCAGCATCTTCAATCCCTTGATCCGGCAACTGCGCAGCGGCGACCTGCAATATGGCCCCACGGCCGGCCTGGGACTGGGCCTCTACATTGCCTCGGCGATCGTCGCGGCTCACCAGGGGACCATCGAAGTCCACTCGAAGGCGCGCGGAGGCACCACGTTCACCGTTCGGATCCCACTCCATCCCGAGTGAMRLADFIVDNIEPILQAWEDFARTITPASIGMDAVALRDHAEQMLRTIAIDLRTSQTPEEQIAKSQGEAPAAEAETAAETHAVIRQSSGFTVEQMVSEYRALRTSVLVLWMPHAQLDQAQAMSDVIRFNEAVDQALAESVVSYSGAVDAARNIFLGILGHDLRSPLGAILLSSEVLLRAGDLPAKATKISSRIYTSVKRANKIVGDLLDFTRTQLGAGIPVQRFNGDLVAACEGMVEEARAYHPESSILFEPHGPLEGLFDPARMEQVFSNLIGNAVQHGAEGAPITVSLSREGDEAVIAINNQGKPIEKDAIASIFNPLIRQLRSGDLQYGPTAGLGLGLYIASAIVAAHQGTIEVHSKARGGTTFTVRIPLHPENANANANANA
D1-35_02787963hypothetical proteinATGACCCGCCCCACCGTTGCCGCCGATGTTCCTATTCCTTTTTCCCGCCCTGTCGCTGTGCTCATCCTGCTTTGCATGGGCTGCGCTTTTGCCGGTAACCACGTCGCCGCGCGGGCGGCGTTCGATGACGGTGCCGGCGTGCTGCTGGCGATCCTGCTGCGCTCGGGCGGGACGTTGCTGGTGCTGGCGGCGATGGTCTTGTGGCAACGCCAGAGCCTGCGCCTGCCCGCCGGGGCCTGGCGCTGGCAGTTGGTGTTGGGCCTGTTGATCGGCGCCCAGAGCCTGTGCCTGTATTCGGCCGTGGCGCGGGTGCCGGTGGCGCTGGCGCTGTTGGTGGGTAACGTGTTCCCGATCCTGCTGGCGCTGCTGACCTGGGCCCTCGGCGGGCCGCGCCCCACTGCGCGTACGGCGATGTTGATGGGGATGATCCTGGTGGGCCTGGTGTTCGTACTGGAAGTGCCGGCGCGGTTATCGTCGCAGGCGGACGTCGGCCCGCAATGGCTGTTGGGGGTTGGCCTGGCATTCTGCGCCGCGTGCGTGTTCGCTTGCGCGTTGTGGATCACCGATCACAAGCTGTCCCAGGTGCGCGGCTCGGTGCGCAGCCTGCTGACGATTTTCATTGTGTTCAGCAGCGTCAACCTCGCGGGCCTGACCGGCGCCCTGCCCGGCGGCCTCGACCTGCCCGCCAGCAACACCGGCTGGCTCGCGCTCGCCACCCTGGTGGTGCTTTACGGCACCGGGTTCATCGTGTTGTTCATGTGCGTGCCACGCCTGGACATGCCACGCAACGCCCCGGTGATGAACATCGAACCGCTGGCGACCCTGCTGATCGGCTGGCTGGTGCTGGGCCAGATGCTCAACCCGGGCCAGGTGCTCGGCGGCGCGATCGTGGTGACGGGCATTGTGTTGCTGACCTGGCGCAAGGCTGAGCGGGTCAAGGCGCCGGTGGCTGCACGCAATTGAMTRPTVAADVPIPFSRPVAVLILLCMGCAFAGNHVAARAAFDDGAGVLLAILLRSGGTLLVLAAMVLWQRQSLRLPAGAWRWQLVLGLLIGAQSLCLYSAVARVPVALALLVGNVFPILLALLTWALGGPRPTARTAMLMGMILVGLVFVLEVPARLSSQADVGPQWLLGVGLAFCAACVFACALWITDHKLSQVRGSVRSLLTIFIVFSSVNLAGLTGALPGGLDLPASNTGWLALATLVVLYGTGFIVLFMCVPRLDMPRNAPVMNIEPLATLLIGWLVLGQMLNPGQVLGGAIVVTGIVLLTWRKAERVKAPVAARNNANANANANA
D1-35_02788870hypothetical proteinATGCGCCACCTCGTTCGCTCTCGCCGTTTCGCTGCGCTGTGCCTCACGATCCTGTTTCCGTTGTTCCCCAGCCCGGCTCACGCCCGAGGCGAAGGACAACTGGTGAGTGCCATCAACGACTACCGCAGCCAGCCCCACCGCTGTGAATGGCAAACAATGCGTGCTGCCCAACCTTTGGTGTTGCGCTCCAGCCTGGCATTGCCCATCGGCTTCAGCGGTGGCTTGCGCGAAACCCTGAGCAGATCCGGCTATCAGGCCCGGTCAGTGCGCAGCATTCGCCTGACCGATGCGCGGGACGCCGAAGAAGCGTTCGAGAGACTGGCGGACGAGCATTGCGCAGCGCTGCTGGACGGCCAGTACGCCGACATTGGCGTCAATCGGGTCGGGGATGAATGGCGCGTGGTGCTCGCACAACCCATGGGCGGAACGCGGATCAGCGACACGCGCGACATCGGCGCGCCGGACAAAACGCTGCTGGCCCAGGTCAATGCCGCCAGGGCCAAGCCCCGCATGTGCGGGCGCCAGCGCTTTGCGGCGGCTCGGCCGCTGAGCTGGAACGCCGCGCTGGGAAGCGCTGCCCAGGGCCACAGTCGGTCGATGGCCCGCGGCAACTATTTTGCCCATCGCGACCCGGACGGTCGCTCCACATCCGAGCGGGCCAGGAGCGCCGGTTTTCGCGGACGCAAACTCGGCGAGAACATTGCCGCCGGACAACGTTCGCCAAGCCAGGCCATGCACGACTGGCTCGCCAGCCCCGGGCATTGCGCCAACCTGATGAACCCGATGTTCACCCAGGTCGGTGCGGCGTCGGCCAGTGACTCGCGCAGCGATGCCGGAGTGTATTGGACAATGGTGCTTGGCGCCCCGTGAMRHLVRSRRFAALCLTILFPLFPSPAHARGEGQLVSAINDYRSQPHRCEWQTMRAAQPLVLRSSLALPIGFSGGLRETLSRSGYQARSVRSIRLTDARDAEEAFERLADEHCAALLDGQYADIGVNRVGDEWRVVLAQPMGGTRISDTRDIGAPDKTLLAQVNAARAKPRMCGRQRFAAARPLSWNAALGSAAQGHSRSMARGNYFAHRDPDGRSTSERARSAGFRGRKLGENIAAGQRSPSQAMHDWLASPGHCANLMNPMFTQVGAASASDSRSDAGVYWTMVLGAPNANANANANA
D1-35_02789633hypothetical proteinATGAAACGTTCAGAAGCACAGATCCTGCGTGAGTACGGCCCTTTTCCGGGCGTCGAGTGTGTCCACGGGGTAAGCCATGACGGTGAGCGCGTCTGGTTCGCCTCAGGCGAAAAGCTCCACGCACTTGATCCCGCCAGTGGCCAGACCGTGCATTCGCTCGACGTGCCGGCGAACGCTGGCACGGCGTTCGACGGTGAGCACCTGTTCCAGATTGCTGGCGACAGCATCCGCAAGATCGATCCACGCACCGGCGAGGTACTGGCGACAATTCCGGCGCCCAACAGCGGTGATGATTCAGGGTTGGCGTGGGCCGAAGGATCGCTCTGGGTCGGCCAGTACAAGGCGCGCAAAATTCTCCAGATCGACCCGGCCGACGGAAAAGTCCTGCGCACCATTAAATCCAATCGCTTCGTCACGGGCGTGACCTGGGTCGACGGAGAGCTTTGGCACGGGACGTGGGAAAACGATGAGAGTGACCTGCGGCGTATTGATCCGCAGACGGCACAAGTGCTGGAAAGCGTGACGATGCCGCCCGGGACCGGTGTGTCGGGGCTGGAATCCGACGGGGGCGAACGGTTTTTCTGTGGCGGCGGTGGCAGCGGGAAGGTGAGGGCGGTGCGTCGGCCGGCGTGAMKRSEAQILREYGPFPGVECVHGVSHDGERVWFASGEKLHALDPASGQTVHSLDVPANAGTAFDGEHLFQIAGDSIRKIDPRTGEVLATIPAPNSGDDSGLAWAEGSLWVGQYKARKILQIDPADGKVLRTIKSNRFVTGVTWVDGELWHGTWENDESDLRRIDPQTAQVLESVTMPPGTGVSGLESDGGERFFCGGGGSGKVRAVRRPANANANANANA
D1-35_027901221hypothetical proteinATGGATTACGCGATCAGCATAGCAGCGCGAGCATTGGCGGCGGGCGATCCAGTGGCGGCGCTCAATCGCATCGCCTTGCGCACCGATGCCCCGGCCCTCGCGCTGCGCGGCATCGCCATGGCGCAGCTGGGGGACCTGGACAAAGCCAGGAGCCTGATGCGCCGGGCAAGTACCGCGTTCGGGCCCAAGGCGGCCGTGGCGCGGGCACGGTGTATCGTGGCGGAGGGCGAAATCGCCTTGGCTTCCCGTGACCTGGCGTGGCCCATGAAGCGCCTCGACGCCGCGCGGACGGTGCTCGAAGCCTGCGGCGACCGGGCGAACGTCGGGCATGCTCATGCGATTGAAATCCGCCGCCTGCTGTTGCTCGGTCGCCTTGGCGAGGCCGAGGGCAAGCTTGCTGATCTGAATCTTTGCAGCTTGCCTGTGGCGTCTCGAGCCGCTTGTGAACTGGTGGCGGCGGGGATCGCCATGCGGCGCCTGCAAGCGCAAACCGCCCACGCCGCTCTGGAAAGGGCCGGGCAGGCCGCACGGCAAACGGGCATCAGCGCGCTGAACGCCGAAATCGAAAGCGCCTGGCGCATGCTGAGCTCACCGGCGGCGCGTCTGATCGGCCGGAACGAAGAGCGCTTGCTGATTCTTGAAGAGGTACAGGTGCTGCTGGCCGGTGCGGCGCTGGTAGTAGATGCATGCCGGTATGGCGTCAGTAGCGCTGGCAGCCAGGTTTCCCTCGCCCGGCGCCCGGTGTTGTTCGCCCTGGCCCGCGGGCTGGCCCAAGCCTGGCCGGGCGATGCATCGAGGGAAGCGCTCATGGCCGAGGCCTTCGGCTTGAAACTGACGGATGAGTCCCACCGCGCCCGGCTGCGCGTCGAGATGGGGCGGTTGCGGGCGGAGCTGCGGTCATTGGCCGAGGTGAAGGCGACCCGGCGCGGTTTTATCCTTATTCCCAACCAGGCCGACGAGGTCGTGGTGCTGGCGCGCGTCATCGAAGAACCTCACGGCGCGGTGCTGGCGCTGCTTGCCGATGGCGAAACCTGGTCCAGTTCGGCCCTGGCGCTTGCCTTGGGCAACAGCCAGCGCAGCGTGCAGCGGGCCTTGGAAACCCTCGCCGCCTGCGGCAAGGCGCAAGCGTTCGGTCGTGCCAGGGCCCGGCGCTGGATGGCGCCAACGATGCCTGGATTCGCGACGGCATTGTTACTCACTGCGTTGCCAGTGGCTGGTTAGMDYAISIAARALAAGDPVAALNRIALRTDAPALALRGIAMAQLGDLDKARSLMRRASTAFGPKAAVARARCIVAEGEIALASRDLAWPMKRLDAARTVLEACGDRANVGHAHAIEIRRLLLLGRLGEAEGKLADLNLCSLPVASRAACELVAAGIAMRRLQAQTAHAALERAGQAARQTGISALNAEIESAWRMLSSPAARLIGRNEERLLILEEVQVLLAGAALVVDACRYGVSSAGSQVSLARRPVLFALARGLAQAWPGDASREALMAEAFGLKLTDESHRARLRVEMGRLRAELRSLAEVKATRRGFILIPNQADEVVVLARVIEEPHGAVLALLADGETWSSSALALALGNSQRSVQRALETLAACGKAQAFGRARARRWMAPTMPGFATALLLTALPVAGNANANANANA
D1-35_02791534rutBPeroxyureidoacrylate/ureidoacrylate amidohydrolase RutBATGAGCAGCGCATTGCTGATTATCGACGTCCAGGCCGGGCTGTGCACGGGCGAAGAGGAATGCTTCGACAGCCCACGCCTGCTCGGCACCATCAATGACCTCAGTGCCAGGGCTCGGGCTGTCGGCTTGCCGGTGATCCTGGTCCAGCACGAAGAACTTGAGGGTTCGTTGGCTTATGGCAGTGCCGCCTGGCAATTGGCCGACGGCCTGCTCACCGCCGCGGATGACTTGCGCGTGCGCAAGACCACCGCGGACGCGTTCTACCAGACCGACCTGCTGGCGCTGTTGCAGGCCAGAAGCATCGATCGCGTGGTGATCTGCGGGCTGCAGACCGATCACTGCATCAATGCCACCGTGCGCCAGGCCCATGCCCTGGGGTACGAAGTGGTGTTGGCCGCCGATGCGCATTCGACGGTGGACAATGGCAGCCTGTCGGCCGAGCAGATCATTGCCGATCACAATCAGCGACTGGGGCGGCTGAGCAGCGCGGTGTCGCGCATTGATGTGGTACGGGCCGCCGGGATTCGCCTGTAGMSSALLIIDVQAGLCTGEEECFDSPRLLGTINDLSARARAVGLPVILVQHEELEGSLAYGSAAWQLADGLLTAADDLRVRKTTADAFYQTDLLALLQARSIDRVVICGLQTDHCINATVRQAHALGYEVVLAADAHSTVDNGSLSAEQIIADHNQRLGRLSSAVSRIDVVRAAGIRLNANANANANA
D1-35_027921728ggt_1Glutathione hydrolase proenzymeATGAAGTTCGAATCCCTGGCCCGGACCCTCATCGCCACTTCGCTCTCCCTTTGCTGCCTGACTGCCCACGCTGCGTCCCAGGCCCCGGTTGCCGCCGAGAACGGCATGGTCGTCACCGCCCAGCACCTGGCGACCCACGTCGGCGTCGATGTGCTCAAGAACGGGGGCAACGCGGTGGATGCGGCAGTCGCGGTGGGCTACGCCCTGGCGGTGGTCTACCCGGCGGCGGGCAACCTTGGCGGTGGCGGTTTCATGACGCTGCAGATGGCGGATGGCCGCAAGACATTCCTGGATTTCCGCGAAAAAGCGCCATTGGCCGCCACCGCCGACATGTACCTGGACAAGGACGGCAACGTCATTCCCGAGCTCAGCACCCGCGGCCACCTGGCGGTAGGCGTGCCCGGCACGGTGTCCGGCATGGAGCTAGCGCTGAAGAAATACGGCAGCAAGCCCCGGGAGGAACTGATCGCCCCGGCGATCAGGTTCGCCGAGGAGGGTTTTGTCCTCGAACAAGGTGATGTCGACCTGCTGGAGACCGCCACGGACGTGTTCAAAAAGGACATGCGCGATTCCGGCGCGATCTTCCTGCACAACGGCGAGCCGATGCAGGCCGGCCAGAAACTGGTGCAGAAAGACCTCGCCAGGACCCTGCGGGAAATTTCCGCCAAAGGCGCCGACGGCTTCTACAAAGGCTGGGTGGCCGACGCCCTGGTGACTTCCAGCCAGGCCAACAAGGGCATCATCACCCAGGCCGACCTGAACAAATACAAGACCCGCGAGCTGGCCCCGGTGGAATGCGACTACCGCGGTTATCACATCATTTCCGCACCACCGCCCAGTTCCGGTGGTGTGGTGCTGTGCCAGATCATGAATATCCTCGACGGGTATCCGATGAAAGACCTGGGCTTCCATTCGGCCCAGGGCATGCACTACCAGATCGAAGCCATGCGTCACGCCTACGTCGATCGCAACAGCTACCTGGGCGACCCGGACTTTGTGCAGAACCCCATCGACCATCTGCTGGACAAGAACTATGCGGCGAAACTGCGCGCCGCGATCGAGCCGCAAAAGGCCGGCGACTCGCACAAGATCAAACCCGGCGTGGCGCCTCACGAGGGCAGCAACACCACCCACTATTCGATCGTCGACCAATGGGGCAACGCCGTCTCTGTCACCTACACCCTCAACGACTGGTTCGGCGCCGGCGTGATGGCGAGCAAGACCGGGGTGATCCTCAACGATGAAATGGACGATTTCACCGCCAAGGTCGGCGTGCCCAACATGTACGGCCTGGTACAGGGCGAGGCCAACGCCATCGCACCGGGCAAGGCGCCGCTGTCGTCCATGAGCCCGACCATCGTCACCAAGGACGGCAAGACCGTGATGGTCGTCGGCACGCCGGGCGGCAGCCGCATCATTACCGCGACCCTGCTGACCATCCTCAACGTGATCGACTACGGCATGAACCTGCAGGAAGCGGTGGACGCACCGCGCTTCCACCAGCAGTGGATGCCGGAGGAGACCAACCTGGAAACCTTCGCCGCCAGCCCCGATACGCTCAAGCTGCTGGAAAGCTGGGGCCACAAGTTCGCCGGCCCGCAGGACCCCAACCACATCGCCGCGATCCTGGTGGGCGCGCCATCATTGGGTGGCAAGCCCGTGGGCAAGAATCGTTTCTACGGTGCCAACGATCCGCGTCGCAACACCGGGTTATCGTTGGGCTACTGAMKFESLARTLIATSLSLCCLTAHAASQAPVAAENGMVVTAQHLATHVGVDVLKNGGNAVDAAVAVGYALAVVYPAAGNLGGGGFMTLQMADGRKTFLDFREKAPLAATADMYLDKDGNVIPELSTRGHLAVGVPGTVSGMELALKKYGSKPREELIAPAIRFAEEGFVLEQGDVDLLETATDVFKKDMRDSGAIFLHNGEPMQAGQKLVQKDLARTLREISAKGADGFYKGWVADALVTSSQANKGIITQADLNKYKTRELAPVECDYRGYHIISAPPPSSGGVVLCQIMNILDGYPMKDLGFHSAQGMHYQIEAMRHAYVDRNSYLGDPDFVQNPIDHLLDKNYAAKLRAAIEPQKAGDSHKIKPGVAPHEGSNTTHYSIVDQWGNAVSVTYTLNDWFGAGVMASKTGVILNDEMDDFTAKVGVPNMYGLVQGEANAIAPGKAPLSSMSPTIVTKDGKTVMVVGTPGGSRIITATLLTILNVIDYGMNLQEAVDAPRFHQQWMPEETNLETFAASPDTLKLLESWGHKFAGPQDPNHIAAILVGAPSLGGKPVGKNRFYGANDPRRNTGLSLGYPGPT0002935_3194DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_TAURINE_UTILIZATION,PGPT0002935-ggt-K00681NANA
D1-35_02793432AcetyltransferaseATGACGTTAAGAATCGAGCGCACGGACGCTCCCACCGATGAACAACGCCAGGCCATCCTCGCGCCACTACGCGCCTATAACACGGCTCAGACCGGTGGAAGCGCGCCGGAACTGGTCGCCTGGCTGGTGCGCGACGAGCACGGCGAAATCGTCGGCGGACTCTACGGCCGAATATTTTTTCGTTGGCTCTATATCGAACTGCTGGTAGTGCCTGAACAGGCCCGGGGCCAAGGCACGGGTTCGCAGCTGATGCAGATGGCCGAACAGTTGGCCAGGGAAAAAGACTGCGTAGGTATCTGGCTCGACACCTTCGACTTCCAGGCGCCGGACTTCTATCGTCGGCATGGTTTCACCGAGTGCGGGCAGATCGACGACTACCCGCCGGGGCATCAGCGTTTCTTTTTCCAGAAACGCCTGCCGAACGCTGACTGAMTLRIERTDAPTDEQRQAILAPLRAYNTAQTGGSAPELVAWLVRDEHGEIVGGLYGRIFFRWLYIELLVVPEQARGQGTGSQLMQMAEQLAREKDCVGIWLDTFDFQAPDFYRRHGFTECGQIDDYPPGHQRFFFQKRLPNADNANANANANA
D1-35_027941368glmU_2Bifunctional protein GlmUATGTCTCTCGAAATCGTTATTCTCGCGGCCGGTCAAGGCACCCGCATGCGCTCGGCGCTGCCCAAGGTGCTGCACCCGGTAGCCGGCAACTCCATGCTCGGCCATGTTATCCACAGCGCGCGGCAACTTGATCCACAGCGTATCCATGTGGTGATCGGTCACGGAGCCGATGCGGTACGTGAGCGCCTGGCGGCGGATGATCTGAATTTCGTGCTGCAGGACAAACAACTCGGTACAGGTCACGCCGTGGCCCAGGCCGTGCCATTCATCACCGCCGATACGGTGTTGATTCTCTACGGTGATGTGCCGCTGATCGAAGTCGATACGCTGCAACGCCTGCTCAAGCACGTCGCGCCGCGTCAATTGGGCCTGCTCACCGTCGAGCTGGATGATCCGACCGGCTACGGCCGCATCGTACGCAACGCCGACGGCCAGGTGACTGCCATCGTCGAGCAGAAAGACGCCAATGACGCCCAGCGCGCCATCACCGAAGGCAACACCGGGATTCTTGCCGTTCCCGCCGAGCGCCTGGGGGACTGGATGAGCCGCTTGTCCAACAACAACGCCCAAGGCGAGTACTACCTCACCGACGTGATCGCCATGGCCGTTGCCGATGGACTGGCGGTCGCCACCGAACAGCCCTTGGACGCGATGGAAGTGCAGGGCGCCAACGATCGCCGGCAACTGGCCGAACTCGAGCGCCATTACCAGCTGCGCACCGCCCGCCGCTTGATGGCCCAAGGCGTGACCCTGCGCGACCCGGCCCGTTTTGATGTCCGTGGTGAAGTCAGCGTCGGCCGCGACGTGGTCATCGACATCAACGTCATCCTCGAAGGCAAAGTCGTCATCGAAGACGACGTGGTCATTGGCCCGAACTGCGTCATCAAGGACAGTACCCTGCGCAAAGGCGTGGTAATCAAGGCCAACAGTCATCTCGAAGGCGCGGTGATGGGCGAGGGTAGCGACGCCGGCCCGTTTGCTCGCCTGCGCCCGGGCACGGTGCTGGAAGCCCGCGCTCATGTGGGTAACTTCGTGGAACTTAAAAACGCTCATATGGGCGAAGGTGCCAAGGCCGGGCACCTGACCTATTTGGGCGACGCCGAAATCGGCGCACGTACCAACATCGGTGCGGGGACCATCACCTGCAACTACGATGGCGCCAACAAGTGGAAAACCGTGTTGGGCGAGGATGTGTTCATCGGTTCGAACAACTCCCTGGTAGCACCTGTGGATATCTCCAACGGTGCGACCACGGCGGCCGGCTCGACTCTGACCCAGAATGTGGATAACGGCCAGCTGGCGGTGGGGCGTGCACGTCAGCGCAACATTGATGGCTGGAAGCGTCCTGAAAAGATTAAGAAGCCTTAAMSLEIVILAAGQGTRMRSALPKVLHPVAGNSMLGHVIHSARQLDPQRIHVVIGHGADAVRERLAADDLNFVLQDKQLGTGHAVAQAVPFITADTVLILYGDVPLIEVDTLQRLLKHVAPRQLGLLTVELDDPTGYGRIVRNADGQVTAIVEQKDANDAQRAITEGNTGILAVPAERLGDWMSRLSNNNAQGEYYLTDVIAMAVADGLAVATEQPLDAMEVQGANDRRQLAELERHYQLRTARRLMAQGVTLRDPARFDVRGEVSVGRDVVIDINVILEGKVVIEDDVVIGPNCVIKDSTLRKGVVIKANSHLEGAVMGEGSDAGPFARLRPGTVLEARAHVGNFVELKNAHMGEGAKAGHLTYLGDAEIGARTNIGAGTITCNYDGANKWKTVLGEDVFIGSNNSLVAPVDISNGATTAAGSTLTQNVDNGQLAVGRARQRNIDGWKRPEKIKKPPGPT0018955_2446DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-GLUCOSAMINE_MODIFICATION,PGPT0018955-glmU-K04042NANA
D1-35_02795426atpCCOG0355ATP synthase epsilon chainATGGCTATGACAGTCCATTGCGATATCGTCAGTGCGGAAGGGGAAATCTTCTCCGGTCTGGTCGAGTTTGTGGTTGCGCACGGTGATCTGGGTGATCTTGGTATCACCATGGGCCACGCACCGCTGATCACCAGCTTGAAGCCAGGTCCGATTACTCTGACCAAGCAGGGCGGGGACAAGGAGGTGTTTTACATCTCCGGTGGTTTCCTCGAGGTTCAGCCGAACATGGTCAAGGTCCTTGCCGATACCGTGCAACGTGCTGCCGACCTGGACGAAGCCTCCGCTCAGGAAGCCGTCAAGGCTGCCGAGAAGGCCCTGAACGAAAAAGGCGCAGACTTCGATTACGGTTCTGCTGCTGCACGTCTGGCCGAGGCCGCAGCTCAGCTGCGCACCGTCCAGCAGATCCGCAAGAAGTTCGGCGGCTAAMAMTVHCDIVSAEGEIFSGLVEFVVAHGDLGDLGITMGHAPLITSLKPGPITLTKQGGDKEVFYISGGFLEVQPNMVKVLADTVQRAADLDEASAQEAVKAAEKALNEKGADFDYGSAAARLAEAAAQLRTVQQIRKKFGGPGPT0014295_639DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014295-atpC-K02114NANA
D1-35_027961377atpDCOG0055ATP synthase subunit betaATGAGTAGCGGACGTATCGTTCAAATCATCGGCGCCGTTATCGACGTGGAATTCCCACGCGACAGCGTACCGAGCATCTACAACGCGCTGAAAGTACAAGGCGCGGAAACCACCCTGGAAGTTCAGCAGCAGCTGGGCGACGGCGTGGTTCGTACCATTGCGATGGGCTCCACCGAAGGCTTGAAGCGCGGTCTGGACGTTATCGACTCTGGCGCTGCCATCTCCGTACCGGTCGGTAAAGCGACCCTGGGCCGGATCATGGACGTACTGGGCAATCCGATCGACGAAGCTGGCCCGATCGATACCGACGAGCGCTGGGGCATTCACCGTCCTGCGCCATCCTTCGCTGAACAGGCAGGCGGCAACGACCTGCTGGAAACCGGCATCAAGGTTATTGACCTGGTTTGCCCGTTCGCCAAGGGCGGTAAAGTCGGTCTGTTCGGTGGTGCCGGTGTAGGCAAGACCGTAAACATGATGGAACTGATCCGTAACATCGCCATCGAGCACAGCGGTTATTCCGTGTTCGCCGGTGTGGGTGAGCGTACTCGTGAGGGTAACGACTTCTACCACGAGATGAAGGATTCCAACGTTCTGGACAAAGTAGCACTGGTCTACGGTCAGATGAACGAGCCGCCGGGAAACCGTCTGCGCGTAGCCTTGACCGGCCTGACCATGGCCGAGAAGTTCCGTGACGAAGGTAACGACGTTCTGCTGTTCGTCGACAACATCTACCGTTACACCCTGGCCGGTACTGAAGTATCCGCACTGCTGGGCCGTATGCCTTCGGCAGTAGGTTACCAGCCGACCCTGGCTGAAGAGATGGGCGTTCTGCAAGAACGTATCACTTCGACCAAGGAAGGTTCGATCACTTCGATCCAAGCGGTATACGTACCTGCGGATGACTTGACCGACCCGTCGCCAGCGACCACCTTCGCCCACTTGGACGCCACCGTCGTACTGTCCCGTGACATCGCTTCCCTGGGTATCTACCCAGCGGTCGATCCACTCGACTCGACTTCGCGCCAGCTGGACCCGAACGTGATCGGCCAGGAGCACTACGACACCGCTCGCGGCGTCCAGTACGTGCTGCAGCGCTACAAAGAGCTGAAGGACATCATTGCGATCCTGGGTATGGACGAGCTGTCGGAAACCGACAAGCAGTTGGTATCTCGCGCTCGTAAGATCCAGCGCTTCTTGTCGCAGCCGTTCTTCGTGGCTGAAGTCTTCACCGGTGCCTCGGGTAAATACGTTTCCCTGAAGGACACCATTGCTGGCTTCAAAGGCATCCTCAACGGTGACTACGACCACCTGCCAGAACAAGCGTTCTACATGGTCGGCGGCATCGAAGAAGCGATCGAGAAAGCCAAGAAACTGTAAMSSGRIVQIIGAVIDVEFPRDSVPSIYNALKVQGAETTLEVQQQLGDGVVRTIAMGSTEGLKRGLDVIDSGAAISVPVGKATLGRIMDVLGNPIDEAGPIDTDERWGIHRPAPSFAEQAGGNDLLETGIKVIDLVCPFAKGGKVGLFGGAGVGKTVNMMELIRNIAIEHSGYSVFAGVGERTREGNDFYHEMKDSNVLDKVALVYGQMNEPPGNRLRVALTGLTMAEKFRDEGNDVLLFVDNIYRYTLAGTEVSALLGRMPSAVGYQPTLAEEMGVLQERITSTKEGSITSIQAVYVPADDLTDPSPATTFAHLDATVVLSRDIASLGIYPAVDPLDSTSRQLDPNVIGQEHYDTARGVQYVLQRYKELKDIIAILGMDELSETDKQLVSRARKIQRFLSQPFFVAEVFTGASGKYVSLKDTIAGFKGILNGDYDHLPEQAFYMVGGIEEAIEKAKKLPGPT0014296_4543DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014296-atpD-K02112NANA
D1-35_02797861atpGCOG0224ATP synthase gamma chainATGGCAGGCGCAAAAGAGATTCGCAGTAAGATTGCGAGCATCAAAAGCACGCAAAAGATTACCAGCGCCATGGAAAAAGTGGCGGTCAGTAAAATGCGCAAGGCACAAATGCGCATGGCTGCTAGCCGTCCTTACGCGGAGCGCATCCGCCAGGTGATTGGTCATCTGGCCAACGCCAACCCGGAATATCGCCACCCGTTCATGATCGACCGCGCCGTCAAGCGCGTCGGTTACGTTGTGGTGAGCAGTGACCGTGGTCTGTGCGGTGGCTTGAACACCAACCTGTTCAAGGCCCTGGTCAAGGACATGGCGGTAAACCGCGAACAAGGCGTCGAGATCGATCTGTGCGTGATTGGTAGCAAGGGTGCGGCATTCTTCCGCAACTTCGGCGGTAACGTCGTCGCCGCTATCAGCCACCTGGGTGAAGAGCCGTCGATCAATGACCTGATCGGCAGCGTCAAGGTGATGCTGGATGCTTACCTGGAAGGCCGGATTGACCGCCTGTCCGTGGTATCCAACAAGTTCATCAATACCATGACGCAACAGCCAACCGTGGAGCAATTGATCCCACTGGTGGCGACCCCGGAACAGGAACTCAAGCACCACTGGGACTACCTCTACGAACCCGATGCCAAGGAGCTGCTTGACGGCTTGATGGTCCGCTACGTGGAGTCGCAGGTGTACCAGGCGGTGGTCGAGAACAACGCAGCTGAACAAGCGGCGCGGATGATCGCGATGAAAAACGCTACCGACAACGCCGGTGATTTGATCAGCGATTTGCAGCTGATCTACAACAAGGCGCGTCAGGCTGCGATCACCCAAGAGATCTCGGAAATCGTCGGCGGCGCTGCCGCGGTTTAAMAGAKEIRSKIASIKSTQKITSAMEKVAVSKMRKAQMRMAASRPYAERIRQVIGHLANANPEYRHPFMIDRAVKRVGYVVVSSDRGLCGGLNTNLFKALVKDMAVNREQGVEIDLCVIGSKGAAFFRNFGGNVVAAISHLGEEPSINDLIGSVKVMLDAYLEGRIDRLSVVSNKFINTMTQQPTVEQLIPLVATPEQELKHHWDYLYEPDAKELLDGLMVRYVESQVYQAVVENNAAEQAARMIAMKNATDNAGDLISDLQLIYNKARQAAITQEISEIVGGAAAVPGPT0014297_4304DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014297-atpG-K02115NANA
D1-35_027981545atpAATP synthase subunit alphaATGCAGCAACTCAATCCTTCCGAAATAAGTGAAATTATCAAGGGCCGCATCGACAAGCTCGATGTGACCTCCCAAGCCCGTAACGAAGGCACTGTCGTCAGCGTATCTGACGGCATCGTGCGGATTCACGGTCTGGCCGACGTCATGTACGGCGAGATGATCGAGTTTCCGGGCGGCGTCTACGGTATGGCCCTCAACCTGGAGCAAGACTCTGTAGGTGCCGTGGTATTGGGCGCTTACACGACGCTGGCTGAAGGCATGAGCGCCAAGTGCACCGGCCGCATCCTCGAGGTTCCAGTCGGTAAGGAACTGCTGGGTCGCGTAGTCGACGCACTGGGTAATCCTGTTGACGGCAAAGGTCCGCTGAACAACACCGAGACCGATGCGGTCGAGAAAGTTGCTCCAGGCGTGATCTGGCGTAAGTCGGTAGACCAGCCTGTACAGACTGGCTACAAGGCTGTCGATGCCATGATCCCTGTCGGCCGTGGCCAGCGTGAGCTGATCATCGGTGACCGTCAGATCGGTAAAACCGCTCTGGCGATCGACGCGATCATCAACCAGAAGAACAGCGGCATTTTCTGCGTCTACGTCGCCATCGGTCAGAAGCAATCGACCATCGCCAACGTGGTTCGCAAGCTGGAAGAAAACGGCGCCCTGGCCAACACGATCATCGTGGCGGCCAGTGCTTCGGAATCTCCTGCGCTGCAGTTCCTGGCTCCGTACTCCGGTTGCACCATGGGCGAGTACTTCCGCGACCGCGGTGAAGACGCGCTGATCGTTTATGACGATCTGTCCAAGCAAGCAGTGGCTTACCGCCAGATTTCCCTGCTGCTGCGCCGTCCACCAGGCCGTGAAGCCTACCCAGGCGACGTGTTCTATCTCCACTCCCGTCTGTTGGAGCGCGCATCCCGCGTCTCGGAAGACTACGTAGAGAAGTTCACCAACGGCGCAGTGACTGGCAAGACCGGTTCCCTGACCGCACTGCCGATCATCGAAACCCAGGCTGGCGACGTTTCCGCGTTCGTTCCGACCAACGTGATCTCCATCACCGACGGTCAGATCTTCCTGGAATCGGCCATGTTCAACTCGGGCATCCGTCCTGCTGTGAACGCCGGTGTTTCGGTATCCCGTGTGGGTGGTGCCGCTCAGACCAAGATTATCAAGAAGCTCTCCGGTGGTATCCGTACCGCTCTGGCTCAGTACCGTGAACTGGCAGCATTCGCCCAGTTCGCTTCTGACCTGGACGAAGCGACCCGTAAGCAACTTGAGCATGGTCAGCGCGTTACCGAGCTGATGAAGCAGAAGCAATACGCTCCTATGTCGATCGCTGACATGGCGTTGTCGCTGTATGCCGCTGAACGTGGGTTCCTGACTGACGTCGAAATCGCCAAGGTCGGCAGCTTTGAACAAGCGCTGATTGCTTACTTCAACCGAGATCACGCCGATTTGATGGCGAAGATCAACGTGAAGGGTGACTTCAATGACGAAATCGACGCTGGCATGAAAGCCGGCATCGAGAAGTTCAAGGCCACCCAAACCTGGTAAMQQLNPSEISEIIKGRIDKLDVTSQARNEGTVVSVSDGIVRIHGLADVMYGEMIEFPGGVYGMALNLEQDSVGAVVLGAYTTLAEGMSAKCTGRILEVPVGKELLGRVVDALGNPVDGKGPLNNTETDAVEKVAPGVIWRKSVDQPVQTGYKAVDAMIPVGRGQRELIIGDRQIGKTALAIDAIINQKNSGIFCVYVAIGQKQSTIANVVRKLEENGALANTIIVAASASESPALQFLAPYSGCTMGEYFRDRGEDALIVYDDLSKQAVAYRQISLLLRRPPGREAYPGDVFYLHSRLLERASRVSEDYVEKFTNGAVTGKTGSLTALPIIETQAGDVSAFVPTNVISITDGQIFLESAMFNSGIRPAVNAGVSVSRVGGAAQTKIIKKLSGGIRTALAQYRELAAFAQFASDLDEATRKQLEHGQRVTELMKQKQYAPMSIADMALSLYAAERGFLTDVEIAKVGSFEQALIAYFNRDHADLMAKINVKGDFNDEIDAGMKAGIEKFKATQTWPGPT0014298_1932DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014298-atpA-K02111NANA
D1-35_02799537atpH_1COG0712ATP synthase subunit deltaATGGCAGAACTGACCACGTTGGCCCGACCTTACGCTAAGGCGGCCTTCGAGCACGCTCAGGCCCACCAGCAACTGGCCAATTGGTCAGCCATGCTCGGCCTGGCAGCAGCGGTGTCGCAAGACGACACCATGCAGCGCGTGCTCAAGGCCCCGCGACTGACGAGCGCAGAAAAGGCCGCCACGTTCATTGACGTGTGCGGCGACAAGTTCGATGCCAAGGCACAGAATTTCATTCACGTTGTAGCCGAAAACGACCGTCTCCCGCTTCTGCCGGAGATCGCCGCTCTTTTCGACCTGTACAAGGCCGAGCAAGAGAAATCGGTAGACGTGGAAGTGACCAGTGCTTTTGCATTGAACCAAGAACAGCAAGACAAACTCGCCAAGGTTCTCAGTGCACGACTCAACCGGGAAGTGCGCCTGCAAGTCGAGGAAGACAAATCCCTGATAGGGGGCGTTGTCATCCGCGCCGGCGACCTGGTTATCGATGGCTCGATTCGCGGCAAAATCGCGAAACTTGCCGAAGCATTGAAATCTTGAMAELTTLARPYAKAAFEHAQAHQQLANWSAMLGLAAAVSQDDTMQRVLKAPRLTSAEKAATFIDVCGDKFDAKAQNFIHVVAENDRLPLLPEIAALFDLYKAEQEKSVDVEVTSAFALNQEQQDKLAKVLSARLNREVRLQVEEDKSLIGGVVIRAGDLVIDGSIRGKIAKLAEALKSPGPT0014299_3500DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014299-atpH-K02113NANA
D1-35_02800471atpFCOG0711ATP synthase subunit bGTGAACATTAATGCGACCCTGATTGGCCAGTCCGTTGCGTTCCTGATTTTTGTACTGTTCTGCATGAAGTTCGTATGGCCTCCGGTCATTGCGGCATTGCACGAACGTCAAAAGAAGATCGCTGATGGTCTGGACGCTGCCAGCCGAGCAGCTCGCGACCTGGAGTTGGCCCATGAGAAAGTGGGTCAGCAACTGCGCGAAGCGAAAGCTCAGGCAGCTGAAATCATCGAGCAAGCCAAGAAACGCGGTACGCAGATTGTCGACGAAGCCCGTGAACAGGCTCGCGTCGAAGCTGACCGTGTGAAGGCTCAGGCTCAAGCCGAGATCGAACAGGAACTCAACAGTGTCAAAGACGCGCTGCGTGCCCAAGTGGGTGCCCTGGCCGTTGGCGGTGCTTCGAAGATCCTGGGTGCCACAATCGATCAAAACGCGCACGCAGAGCTGGTAAACAAACTGGCTGCTGAAATCTAAMNINATLIGQSVAFLIFVLFCMKFVWPPVIAALHERQKKIADGLDAASRAARDLELAHEKVGQQLREAKAQAAEIIEQAKKRGTQIVDEAREQARVEADRVKAQAQAEIEQELNSVKDALRAQVGALAVGGASKILGATIDQNAHAELVNKLAAEIPGPT0014301_5220DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014301-atpF-K02109NANA
D1-35_02801258atpH_2ATP synthase subunit cATGGAAACTGTAGTTGGTCTAACCGCTATCGCTGTTGCACTGTTGATCGGCCTGGGCGCACTGGGTACCGCAATTGGTTTCGGCCTGCTGGGCGGCAAATTCCTGGAAGGCGCTGCGCGTCAACCGGAAATGGTTCCAATGCTGCAAGTGAAGATGTTCATCGTTGCCGGTCTGCTCGACGCCGTAACCATGATCGGTGTTGGTATCGCTCTGTTCTTCACCTTTGCGAACCCGTTCGTTGGTCAGATCGCTGGCTGAMETVVGLTAIAVALLIGLGALGTAIGFGLLGGKFLEGAARQPEMVPMLQVKMFIVAGLLDAVTMIGVGIALFFTFANPFVGQIAGPGPT0014302_988DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014302-atpE-K02110NANA
D1-35_02802870atpBCOG0356ATP synthase subunit aATGGCAGAGACAACCGCTTCGGGCTATATCCAGCACCACTTGCAGAACCTGACCTTCGGTCAGCTACCCAATGGCAGCTGGGGCTTTGCTCACACTGCAGCAGAAGCTAAAGAAATGGGCTTCTGGGCCTTCCACGTCGATACCCTCGGCTGGTCGGTCGCGTTGGGTCTGATCTTCGTTCTTCTTTTCCGCATGGCGGCAAAGAAAGCGACTTCCGGTCAGCCTGGTGCACTGCAGAACTTCGTTGAAGTACTGGTAGAATTCGTCGATGGCAGCGTGAAAGACAGCTTCCATGGCCGTAGCCCGGTGATCGCACCGCTGGCACTGACCATCTTCGTCTGGGTGTTCCTGATGAACGCCATCGACCTGGTACCGGTCGACTGGATTCCTCAACTGGCCATCCTGATCTCTGGCGATGCCCATATCCCGTTCCGCGCCGTGTCGACCACCGACCCGAACGCGACCCTGGGCATGGCGTTCTCGGTGTTCGCACTGATCATTTTCTACAGCATCAAGGTCAAGGGCATCGGCGGTTTCATCGGCGAACTGACCCTGCACCCGTTCGGCAGCAAGAACATCCTTGTTCAGGCACTGCTGATCCCGGTGAACTTCCTTCTGGAATTCGTGACCCTGATCGCCAAGCCAATCTCTCTGGCCCTGCGTCTGTTCGGCAACATGTATGCCGGCGAGCTGGTGTTCATCCTGATCGCTGTGATGTTCGGCAGCGGCCTGCTCTGGCTCAGCGGCCTGGGCGTGGTGCTGCAATGGGCGTGGGCAGTGTTCCACATCCTGATCATCACCTTGCAGGCGTTCATCTTCATGATGCTGACCATCGTCTACCTGTCGATGGCGCACGAAGAAAACCATTAAMAETTASGYIQHHLQNLTFGQLPNGSWGFAHTAAEAKEMGFWAFHVDTLGWSVALGLIFVLLFRMAAKKATSGQPGALQNFVEVLVEFVDGSVKDSFHGRSPVIAPLALTIFVWVFLMNAIDLVPVDWIPQLAILISGDAHIPFRAVSTTDPNATLGMAFSVFALIIFYSIKVKGIGGFIGELTLHPFGSKNILVQALLIPVNFLLEFVTLIAKPISLALRLFGNMYAGELVFILIAVMFGSGLLWLSGLGVVLQWAWAVFHILIITLQAFIFMMLTIVYLSMAHEENHPGPT0014303_769DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014303-atpB-K02108NANA
D1-35_02803408hypothetical proteinATGGAAACACGCACGCCAAACCGCTTGCCGTTCCATCGTCTGGCTGTTTTCCCGGTGTTATTGACCCAGTTCGTCGTTGTACTGATCGCCGCGTTGGCGCTCTGGCAATGGAAAGGAGTCGTCGCCGGATACTCGGGTCTTTGCGGAGGCCTGATAGCCTTGCTTCCCAATATTTACTTCGCTCACAGGGCATTTCGGTTTTCCGGCGCCCGAGCAGCCCAAGCCATCGTCCGGTCTTTTTATGCCGGCGAGGCGGGGAAACTGATTTTGACGGCAGTGCTGTTTGCACTGACGTTCGCAGGTGTGAAGCCATTGGCGCCGCTGGCTGTATTCGGCGTGTTCCTGCTGACCCAGATGGTCAGCTGGTTCGCTCCCCTGCTAATGAGAACAAGACTTTCGAGACCTTAGMETRTPNRLPFHRLAVFPVLLTQFVVVLIAALALWQWKGVVAGYSGLCGGLIALLPNIYFAHRAFRFSGARAAQAIVRSFYAGEAGKLILTAVLFALTFAGVKPLAPLAVFGVFLLTQMVSWFAPLLMRTRLSRPPGPT0030480_748PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-ENERGY_METABOLISMPUTATIVE-ATP_SYNTHASE_ACITIVTY,PGPT0030480-atpI-K02116
D1-35_02804873parBCOG1475putative chromosome-partitioning protein ParBATGGCCGTCAAGAAACGAGGTCTCGGACGTGGACTGGATGCGCTGCTCAGCGGTCCGACTGTCAGTTCGCTTGAAGAACAGGCAGTCCAGGTCGATCAGCGCGAATTGCAGCATTTGCCGCTGGACCTGATCCAGCGTGGCAAATACCAGCCGCGTCGGGACATGGACCCGCAAGCGCTGGAAGAACTGGCCCAGTCGATCAAGACCCAAGGCGTGATGCAGCCGATAGTGGTCCGGCCGATTGCCAATGGGCGGTTCGAGATCATCGCCGGCGAACGCCGCTGGCGCGCGAGCCAGCAAGCCGGCCAGGAAACCATCCCGGCGATGGTCCGCGACGTACCGGATGAAACCGCGATCGCCATGGCGCTGATCGAGAACATCCAGCGCGAGGACCTCAATCCGATCGAAGAAGCGGTGGCCTTGCAGCGCTTGCAGCAGGAGTTCCAGCTGACTCAGCAACAGGTCGCCGAAGCGGTGGGCAAGTCCCGGGTGACCGTGGCCAACCTGCTGCGTTTGATCGCCTTGCCGGAAGTCATCAAGACCATGCTGTCCCACGGCGACCTGGAGATGGGCCATGCCCGGGCTTTGCTCGGTTTGCCGGAAAATCAACAAGTTGAAGGGGCGCGACATGTTGTCGCACGCGGCCTGACCGTGCGCCAAACCGAGGCACTGGTTCGTCAATGGCTGAGCGGCAAACCCGCCCCTGTCGAAGCACCAAAACCCGATCCGGACATCGCTCGCCTGGAGCAGCGCCTGGCCGAGCGCCTGGGCTCTGCGGTGCAGATTCGCCACGGAAAGAAGGGCAAAGGGCAACTGGTGATCGGTTATAACTCCCTCGATGAGCTGCAAGGTGTTCTTGCGCACATCCGCTGAMAVKKRGLGRGLDALLSGPTVSSLEEQAVQVDQRELQHLPLDLIQRGKYQPRRDMDPQALEELAQSIKTQGVMQPIVVRPIANGRFEIIAGERRWRASQQAGQETIPAMVRDVPDETAIAMALIENIQREDLNPIEEAVALQRLQQEFQLTQQQVAEAVGKSRVTVANLLRLIALPEVIKTMLSHGDLEMGHARALLGLPENQQVEGARHVVARGLTVRQTEALVRQWLSGKPAPVEAPKPDPDIARLEQRLAERLGSAVQIRHGKKGKGQLVIGYNSLDELQGVLAHIRPGPT0014815_6843DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CELL_GROWTH_SIGNALLING,PGPT0014815-parB|spo0J|yyaA-K03497NANA
D1-35_02805798parAChromosome partitioning protein ParAATGGCTAAGGTATTCGCGATAGCGAACCAGAAAGGTGGTGTGGGCAAGACCACCACCTGCATCAACCTCGCAGCATCCCTGGTCGCGACCAAGCGCCGGGTGCTGTTGATCGATCTCGATCCACAGGGCAACGCCACCATGGGCAGCGGTGTGGATAAACATGGCCTGGAAAACTCCATCTACGATGTACTCATCGGTGAGTGCGACCTGGGCCAGGCCATGCATTTCTCCGAGCATGGTGGTTATCAACTGCTGCCGGCCAACCGTGACCTGACGGCGGCAGAAGTGGTGCTGCTGGAAATGCAGATGAAGGAGAGCCGCCTGCGCAGCGCGTTGGCGCCGGTTCGTGAAAATTACGACTACATCCTGATCGACTGCCCACCGTCACTGTCGATGCTGACCCTCAATGCGTTGGTTGCCGCCGATGGGGTGATTATCCCCATGCAGTGTGAATACTTCGCCCTCGAGGGGTTGAGCGACCTTGTGGATAACATCAAGCGTATCGCTGAGCTGTTGAATCCAGAGCTGAAAGTCGAAGGCCTGTTGCGCACGATGTACGACCCGCGCCTGAGCCTGATGAACGACGTGTCGGCCCAGCTCAAGGAGCATTTCGGCGAGCAGCTCTACGACACGGTGATTCCGCGGAACATCCGCCTGGCCGAAGCGCCGAGCTATGGCATGCCGGCCCTGGCCTATGACAAACAATCGCGTGGCGCGCTGGCCTACCTGGCCCTGGCGGGCGAGATGGTTCGCCGTCAACGCCGCCAGCCACGCATCGCTGCAGCCCAGCCAACTTAAMAKVFAIANQKGGVGKTTTCINLAASLVATKRRVLLIDLDPQGNATMGSGVDKHGLENSIYDVLIGECDLGQAMHFSEHGGYQLLPANRDLTAAEVVLLEMQMKESRLRSALAPVRENYDYILIDCPPSLSMLTLNALVAADGVIIPMQCEYFALEGLSDLVDNIKRIAELLNPELKVEGLLRTMYDPRLSLMNDVSAQLKEHFGEQLYDTVIPRNIRLAEAPSYGMPALAYDKQSRGALAYLALAGEMVRRQRRQPRIAAAQPTNANANANANA
D1-35_02806645rsmGCOG0357Ribosomal RNA small subunit methyltransferase GTTGAGTTCGATGGTCACCTCGCAACACGCTGAAGAATTATCCACAGGTGCCCGTCAGCTCGGCGTCAGCCTCACCGAAGCCCAGCACGCGCAGTTGCTGGGTTACCTGGCGTTGTTGATCAAATGGAACAAGGCCTACAACCTGACCGCCGTGCGCGATCCGGATGAAATGGTCTCGCGACACTTGCTCGACAGTCTCAGCGTGATGTCTTTCATCGAAGACGGTCGCTGGCTCGACGTCGGTAGCGGCGGTGGTATGCCTGGTATTCCGCTGGCGATCCTGTTTCCGGGTTCGCAAGTGACCTGTCTGGACAGCAACGGCAAGAAAACCCGCTTCCTGACCCAGGTCAAACTCGAACTGAAACTGGATAACCTGCAAGTTATCCACAGCCGCGTCGAAGCGTTCCAGCCTGCAGAGCCTTTCAACGGAATCATCTCCCGGGCCTTCAGCAGTATGGAGAACTTCAGCAACTGGACGCGCCACCTGGGCGACGGCGATACACGCTGGCTGGCAATGAAGGGCGTTCATCCGGCCGATGAGCTGGTAGCATTGCCGGCAGACTTCCACCTCGATAGCGAACACGCCTTGGCCGTACCCGGTTGCCAAGGTCAACGCCATCTGCTGATACTGCGCCGCACGGCATGAMSSMVTSQHAEELSTGARQLGVSLTEAQHAQLLGYLALLIKWNKAYNLTAVRDPDEMVSRHLLDSLSVMSFIEDGRWLDVGSGGGMPGIPLAILFPGSQVTCLDSNGKKTRFLTQVKLELKLDNLQVIHSRVEAFQPAEPFNGIISRAFSSMENFSNWTRHLGDGDTRWLAMKGVHPADELVALPADFHLDSEHALAVPGCQGQRHLLILRRTANANANANANA
D1-35_028071899mnmGCOG0445tRNA uridine 5-carboxymethylaminomethyl modification enzyme MnmGGTGGATTTCCCTTCCCGTTTTGAAGTGATCGTCATCGGCGGCGGTCATGCCGGTACCGAGGCAGCACTTGCATCAGCACGCATGGGGGCAAAAACCCTGTTGCTGACGCATAACGTGGAGACCCTCGGCGCCATGAGCTGCAACCCGGCCATTGGTGGCATCGGCAAAAGCCACCTGGTCAAGGAAATCGATGCCCTCGGCGGCGCGATGGCCATGGCCACTGACAAAGGTGGTATCCAGTTTCGCGTGTTGAACAGCCGCAAAGGTCCAGCGGTGCGTGCCACTCGCGCCCAGGCAGACCGAATCCTGTACAAGGCTGCTGTCCGCGAAATTCTGGAAAACCAGCCGAACCTGTGGATATTTCAGCAAGCAGCTGACGATCTGATTGTCGAGCAGGACCAGGTACGCGGTGTCATCACGCAAATGGGCCTGCGGTTCTTCGCCGATTCCGTGGTACTGACCACCGGTACCTTCCTCGGCGGACTTATCCACATCGGTTTGCAGAACTTTTCCGGCGGTCGCGCTGGTGACCCGCCCTCAATCGCCCTGGCTCAACGCCTGCGTGAATTGCCGCTGCGCGTTGGTCGGCTGAAAACCGGTACGCCACCGCGTATCGACGGCAAGTCCGTGGACTTCTCGGTCATGACCGAGCAGCCTGGCGATACGCCGATCCCGGTGATGTCGTTCATGGGCAACAAGGAACAGCATCCACGGCAAGTCAGTTGCTGGATCACCCACACCAATGCCCGCACCCACGAAATCATTGCAGCGAACCTCGATCGTTCGCCGATGTATTCCGCTGCCGGTGAAATCGAAGGTGTCGGCCCGCGCTATTGCCCGTCGATCGAAGACAAGATCCATCGCTTTGCCGACAAGGAAAGCCATCAGGTCTTCATCGAGCCCGAAGGCCTGACGACCCATGAGCTGTATCCGAACGGGATCTCCACCTCGCTGCCGTTCGATGTGCAGTTGCAGATCGTCCAATCGATCCGTGGCATGGAGAACGCTCACATCGTGCGTCCGGGTTATGCGATCGAGTACGACTACTTCGATCCGCGCGATCTGAAGTACAGCCTGGAAACCAAGGTTATCGGCGGTCTGTTCTTCGCCGGGCAGATCAACGGCACCACCGGTTACGAAGAGGCGGGTGCCCAAGGATTGTTGGCCGGAGCCAACGCGGCATTGCGCGCCCAGGGCAAAGACAGCTGGTGCCCGCGTCGCGATGAGGCGTATATCGGTGTGCTGGTGGACGACCTGATTACGCTGGGTACCCAGGAACCGTATCGGATGTTCACGTCCCGCGCCGAATATCGCCTGATCCTGCGTGAGGACAACGCCGACCTGCGCCTGACCGAGAAAGGTCGCGAGCTGGGGCTGGTGGATGACGTGCGTTGGGCTGCGTTCTGCAAGAAACGCGAGAGTATCGAGCTGGAAGAGCAGCGCCTGAAGAGCACCTGGGTTCGTCCCGGTACGGAGCAGGGCGATGCCATCGCGGCGAAATTCGGCACTCCGCTGACGCACGAATACAATCTGCTCAACCTGTTGAGCCGGCCGGAAATCGATTACGTCGGGCTGGTGGAGGTCACTGGCCAGGGCGCGGAAGATCCGCAGGTAGCCGAACAGGTCGAGATCAAGACCAAATACGCCGGTTACATCGATCGTCAACAGGACGAAATTGCCCGTCTGCGCGCCAGTGAAGACACCAGGCTGCCTGTGGATATCGACTACACGAACATTTCGGGTCTCTCGAAAGAAATCCAGAGCAAGCTCGGTGCAACGCGTCCCGAGACCCTCGGCCAGGCGTCGCGCATCCCCGGCGTGACCCCGGCGGCGATTTCGCTGTTGATGATTCATTTGAAAAAACGCGGCGCGGGCCGCCAGTTGGAGCAAAGCGCTTGAMDFPSRFEVIVIGGGHAGTEAALASARMGAKTLLLTHNVETLGAMSCNPAIGGIGKSHLVKEIDALGGAMAMATDKGGIQFRVLNSRKGPAVRATRAQADRILYKAAVREILENQPNLWIFQQAADDLIVEQDQVRGVITQMGLRFFADSVVLTTGTFLGGLIHIGLQNFSGGRAGDPPSIALAQRLRELPLRVGRLKTGTPPRIDGKSVDFSVMTEQPGDTPIPVMSFMGNKEQHPRQVSCWITHTNARTHEIIAANLDRSPMYSAAGEIEGVGPRYCPSIEDKIHRFADKESHQVFIEPEGLTTHELYPNGISTSLPFDVQLQIVQSIRGMENAHIVRPGYAIEYDYFDPRDLKYSLETKVIGGLFFAGQINGTTGYEEAGAQGLLAGANAALRAQGKDSWCPRRDEAYIGVLVDDLITLGTQEPYRMFTSRAEYRLILREDNADLRLTEKGRELGLVDDVRWAAFCKKRESIELEEQRLKSTWVRPGTEQGDAIAAKFGTPLTHEYNLLNLLSRPEIDYVGLVEVTGQGAEDPQVAEQVEIKTKYAGYIDRQQDEIARLRASEDTRLPVDIDYTNISGLSKEIQSKLGATRPETLGQASRIPGVTPAAISLLMIHLKKRGAGRQLEQSANANANANANA
D1-35_028081371mnmECOG0486tRNA modification GTPase MnmEATGAGCGCACCGCGTGAAACCATCGCCGCCGTCGCCACCGCCCAAGGTCGCGGCGGGGTCGGCATCGTCCGTATTTCGGGGCCTTTGGCTGGCGTTGCGGCCAAGGCTATCAGCGGCCGCGACCTGAAACCGCGCTTCGCTCACTACGGACCTTTTCTAGACGCTGACAAACATGTCCTCGATGAAGGCCTGGCCTTGTATTTCCCTGAGCCGAACTCATTCACCGGCGAGGATGTGCTGGAGCTGCAGGGGCATGGCGGCCCCATCGTCCTGGACATGCTGCTCCAGCGTTGCCTCGAGTTGGGTTGCCGCCTGGCCCGGCCGGGTGAGTTCAGCGAGCGGGCCTTTCTTAATGACAAACTCGACCTGGCCCAGGCCGAGGCGATCGCCGATCTGATCGAAGCCAGTTCTGCGCAGGCTGCACGCAATGCGTTACGGTCATTACAGGGCGCGTTTTCACAGCGTGTGCATAACCTTACCGAGCAACTGATCGGTCTGCGGATCTACGTAGAGGCGGCCATCGATTTCCCCGAGGAGGAAATCGATTTTCTCGCCGACGGCCACGTGTTGAGCATGCTCGACAAGGTGCGCGATGAATTATCCACAGTCTTGAGAGAGGCTGGGCAGGGGGCTTTGTTGCGCGACGGTATGACTGTGGTCATTGCCGGCCGCCCCAACGCTGGTAAGTCCAGCCTCTTGAACGCCCTGGCCGGGCGCGAGGCTGCCATCGTCACCGAGATTGCCGGCACCACCCGGGACATCCTGCGTGAACATATCCACATCGACGGCATGCCGCTGCACGTCGTGGACACCGCTGGCTTGCGCGATACCAATGACCAGGTCGAGAAAATCGGCGTGGAGCGGGCCCTCAAGGCTATTGGCGAGGCTGATCGCATATTGTTGGTGGTGGATGCCACTGCGCCGGAAGCAGGCGATCCTTTCGCTCTGTGGCCTGAATTCCTGGAGGTTCGTCCGGATCCGGCAAAAGTCACCTTGATTCGCAACAAGGCAGACCTGACGGGCGAAGCGATAGCCCTCGAAGTGAGCGACGATGGCCACGTCACTATCAGCCTGAGCGCGAAGGCGGCCGGTGAAGGCCTGGAATTACTGCGCGATCATCTCAAGGCCTGCATGGGCTACGAGCAGACATCGGAAAGCAGCTTCAGCGCTCGCCGCCGGCATCTTGAAGCGTTGCGTCACGCCAGCGCTGCCCTGGAGCACGGTCGTGCGCAGCTGACCCTGGCAGGCGCCGGTGAGTTGCTGGCCGAAGACCTGCGCCAAGCGCAGCATTCCCTGGGTGAAATCACCGGAGCCTTCAGTTCCGATGACTTGCTGGGGCGGATCTTCTCCAGCTTCTGCATCGGCAAATAAMSAPRETIAAVATAQGRGGVGIVRISGPLAGVAAKAISGRDLKPRFAHYGPFLDADKHVLDEGLALYFPEPNSFTGEDVLELQGHGGPIVLDMLLQRCLELGCRLARPGEFSERAFLNDKLDLAQAEAIADLIEASSAQAARNALRSLQGAFSQRVHNLTEQLIGLRIYVEAAIDFPEEEIDFLADGHVLSMLDKVRDELSTVLREAGQGALLRDGMTVVIAGRPNAGKSSLLNALAGREAAIVTEIAGTTRDILREHIHIDGMPLHVVDTAGLRDTNDQVEKIGVERALKAIGEADRILLVVDATAPEAGDPFALWPEFLEVRPDPAKVTLIRNKADLTGEAIALEVSDDGHVTISLSAKAAGEGLELLRDHLKACMGYEQTSESSFSARRRHLEALRHASAALEHGRAQLTLAGAGELLAEDLRQAQHSLGEITGAFSSDDLLGRIFSSFCIGKNANANANANA
D1-35_028091683yidCMembrane protein insertase YidCATGGATATCAAACGCACGATCCTGATCGTCGCCCTGGCAATCGTGTCCTATGTCATGGTCCTTAAATGGAACCAGGACTATGGCCAGGCTGCCCTGCCGACTCAGAATGTTGCAGCCAGCAATACCGCACCGAGTCTGCCGGATACAACAACTGGCAATAACACCGCCAGCAATGACGATGTCCCGCGCGCGGCAAGCGACACCAGCGCCCCAGCCGAAGCCCCTGTGGCGGCCAGCAAGGACCTGATTCAGATCAAGACGGATGTGCTCGAGCTGGCAATCGATCCACAAGGTGGTGATGTCGCTCAATTGAAGCTGCCGCTGTATCCGCGTCGCCAGGATCACCCGGAAATCCCGTTCCAGTTGTTCGACAACGGTAACGAGCGGACCTATCTGGCTCAAAGTGGCCTGATTGGTGCCAATGGCCCGGATGCCAATCCGGCCGGTCGTCCGGTTTATTCCGCCGAGAAGAAGGTCTATCAGCTGGCTGACGGCCAGGACCAACTGGTCGTCGACCTGAAGTTCAGCAAGGACGGCGTCAATTACATCAAGCGTTTCACCCTGAAACGCGGCCTGTATGACGTGACTGTTTCCTATCTGGTAGACAACCAGAGCGCTCAGCCCTGGTCGGGTGCGATGTTCGCGCAGTTGAAGCGCGACGCCAGTGATGATCCTTCGTCCAGCACCGCCACCGGTACCGCGACTTACCTGGGCGCTGCCCTGTGGACAAGTTCGGAGCCGTACAAAAAAGTGTCCATGAAGGACATGGACAAGGCTCAGCTGAAAGAAACCGTTCAGGGTGGCTGGGTTGCCTGGTTGCAACACTACTTCGTAACGGCATGGATTCCGCAGAAGGGCGAAAACAATGTCGTCCAGACGCGCAAGGACAGTAAAGGCAACTACATCGTCGGCTATACCGGCCCTGCATTGACTGCAGCGCCAGGTGCAAAAGTCGAGACCAGCGCCATTCTGTATGCCGGTCCGAAAAGCCAAGCCGTGCTGAAGCAGTTGTCCCCTGGCCTGGAATTGACCGTCGACTACGGTTTCCTGTGGTTCATTGCCCAGCCAATCTTCTGGTTGCTGCAACATATCCACAGCATCGTCGGCAACTGGGGCTGGTCGATCATCTTCCTCACCATGCTGATCAAGGGTATTTTCTTCCCATTGTCGGCGGCCAGCTACAAATCCATGGCGCGCATGCGTGCAGTGGCACCGAAACTGGCTGCCCTGAAAGAACAGCATGGCGATGACCGGCAGAAAATGTCCCAGGCCATGATGGAGCTGTACAAGAAAGAGAAGATCAACCCGCTGGGTGGTTGCTTGCCGATTCTTGTACAGATGCCGGTGTTCCTCGCGCTTTACTGGGTTCTGCTGGAAAGCGTGGAGATGCGCCAGGCACCGTTCATGCTGTGGATCACCGACCTGTCGATCAAGGATCCGTTCTTCATCCTGCCGATCATCATGGGCGCCACCATGTTCATCCAGCAGCAGCTGAACCCGACACCTCCGGACCCGATGCAGGCGAAGGTCATGAAAATGATGCCGATCATCTTCACCTTCTTCTTCCTGTGGTTCCCGGCCGGTCTTGTGCTGTACTGGGTTGTGAACAACGTGTTGTCCATCACTCAGCAGTGGTACATCACGCGTAAGATCGAAGCGGCCACGAAAAAAGCCGAGGCGTAAMDIKRTILIVALAIVSYVMVLKWNQDYGQAALPTQNVAASNTAPSLPDTTTGNNTASNDDVPRAASDTSAPAEAPVAASKDLIQIKTDVLELAIDPQGGDVAQLKLPLYPRRQDHPEIPFQLFDNGNERTYLAQSGLIGANGPDANPAGRPVYSAEKKVYQLADGQDQLVVDLKFSKDGVNYIKRFTLKRGLYDVTVSYLVDNQSAQPWSGAMFAQLKRDASDDPSSSTATGTATYLGAALWTSSEPYKKVSMKDMDKAQLKETVQGGWVAWLQHYFVTAWIPQKGENNVVQTRKDSKGNYIVGYTGPALTAAPGAKVETSAILYAGPKSQAVLKQLSPGLELTVDYGFLWFIAQPIFWLLQHIHSIVGNWGWSIIFLTMLIKGIFFPLSAASYKSMARMRAVAPKLAALKEQHGDDRQKMSQAMMELYKKEKINPLGGCLPILVQMPVFLALYWVLLESVEMRQAPFMLWITDLSIKDPFFILPIIMGATMFIQQQLNPTPPDPMQAKVMKMMPIIFTFFFLWFPAGLVLYWVVNNVLSITQQWYITRKIEAATKKAEAPGPT0024530_1728DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0024530-yidC|spoIIIJ|oxaA|ccfA-K03217NANA
D1-35_02810471rnpARibonuclease P protein componentGTGCCGTCCTGTCGCGTCGTCGCGCCAAAGGTCGTGCGCGTCTGGCAGTTTGATAATCCGGCACTGGAGGTGAGTCAGGACTTCAGTCGGGAAAAGCGTCTGCTTACACCCCGGCATTTCAAGGCAGTCTTTGACTCCCCTACCGGCAAGGTTCCGGGGAAAAATCTCCTGCTCCTTGCGCGCAGCAACGATCTCGATCACCCCCGCCTTGGGCTGGTTATCGGGAAAAAGAGCGTCAAGCTCTCTGTTCAGCGCAATCGCCTCAAACGTCTGATGCGCGAATCGTTTCGCCTGAACCAGGATTCACTGGTCGGCTGGGACATTGTTATCGTCGCGCGCAAAGGTTTGGGTGACGTAGAAAACCCCGAATTGATTCAGCATTTCGGCAAGCTCTGGAAACGCCTGGCTCGTAACAAGCCAGCACCGGTAGCCAACACCGAGACTGTAGGGGTAGACAGCACCGATGCGTAAMPSCRVVAPKVVRVWQFDNPALEVSQDFSREKRLLTPRHFKAVFDSPTGKVPGKNLLLLARSNDLDHPRLGLVIGKKSVKLSVQRNRLKRLMRESFRLNQDSLVGWDIVIVARKGLGDVENPELIQHFGKLWKRLARNKPAPVANTETVGVDSTDANANANANANA
D1-35_028111527dnaACOG0593Chromosomal replication initiator protein DnaAGTGTCAGTGGAACTTTGGCAGCAGTGCGTTGAGCTTTTGCGCGATGAGTTGCCTGCCCAACAATTCAACACTTGGATCCGTCCACTACAGGTCGAAGCCGAAGGCGACGAGTTGCGCGTCTATGCGCCGAACCGTTTCGTTCTCGACTGGGTCAACGAAAAGTACCTTGGCCGGGTCATGGAACTGCTCGATGAGCATGGCAATGGCATGGCGCCTGCGCTGTCCCTGTTAATAGGCAGCAAGCGCAGCTCGGCACCGCGCGCGGCACCCAATGCGCCGCTGGCCGCTGCTGCGTCACAGGCGCAACAGGCCACTACGCCACCGACCAACAACCATGCCGCACCGACGCCCGCGCCTGCCCCGGGCAAACGCAACGCTCAGAAGGTCGCCGAAGTCAGCGAGGAGCCCTCCCGGGACAGCTTCGACCCAATGGCCGGTGCGAGCTCCCAGCAGGCACCGGTGCGCGCTGAACAACGGACGGTCCAGGTCGAAGGTGCGCTCAAGCACACCAGCTACCTGAACCGGACCTTTACCTTCGAGAACTTCGTCGAAGGCAAGTCCAACCAACTGGCCCGGGCTGCAGCTTGGCAGGTGGCGGACAATCCCAAGCACGGCTACAACCCGCTCTTCCTTTATGGCGGCGTCGGCCTGGGTAAGACCCACCTGATGCACGCGGTGGGCAACCATCTATTAAAGAAGAATCCGAATGCCAAGGTCGTCTACCTGCATTCCGAGCGTTTCGTGGCTGACATGGTCAAGGCGTTGCAACTGAACGCCATCAACGAGTTCAAGCGTTTCTACCGTTCGGTGGACGCCTTGCTGATCGACGACATCCAATTTTTCGCTCGCAAGGAACGGTCTCAGGAAGAGTTTTTCCACACCTTCAACGCATTGCTTGAAGGTGGGCAGCAGGTCATTCTTACCAGCGACCGCTACCCGAAAGAGATCGAAGGCCTCGAAGAACGCCTCAAGTCACGTTTCGGTTGGGGCCTGACGGTGGCCGTAGAGCCGCCGGAACTGGAAACCCGCGTCGCGATCCTGATGAAGAAGGCCGACCAGGCCAAGGTCGAGCTGCCTCACGATGCAGCGTTCTTCATTGCCCAGCGTATTCGCTCGAACGTGCGTGAGCTGGAAGGTGCACTGAAGCGGGTGATTGCCCACTCTCACTTCATGGGTCGCGATATCACCATCGAGCTGATCCGCGAATCCTTGAAGGACTTGCTGGCGCTGCAGGACAAGCTTGTCTCTGTGGATAACATTCAGCGCACCGTTGCTGAATACTACAAAATCAAGATTTCCGATCTGCTTTCCAAACGCCGTTCGCGTTCGGTGGCACGACCGCGCCAGGTGGCCATGGCCTTGTCCAAGGAGCTGACCAACCACAGCCTGCCGGAAATCGGCGATGTGTTTGGCGGACGCGACCATACCACCGTGTTGCACGCCTGCCGCAAGATCAACGAACTTAAGGAATCCGACGCGGACATCCGCGAGGACTACAAGAACCTGCTGCGTACACTGACCACTTGAMSVELWQQCVELLRDELPAQQFNTWIRPLQVEAEGDELRVYAPNRFVLDWVNEKYLGRVMELLDEHGNGMAPALSLLIGSKRSSAPRAAPNAPLAAAASQAQQATTPPTNNHAAPTPAPAPGKRNAQKVAEVSEEPSRDSFDPMAGASSQQAPVRAEQRTVQVEGALKHTSYLNRTFTFENFVEGKSNQLARAAAWQVADNPKHGYNPLFLYGGVGLGKTHLMHAVGNHLLKKNPNAKVVYLHSERFVADMVKALQLNAINEFKRFYRSVDALLIDDIQFFARKERSQEEFFHTFNALLEGGQQVILTSDRYPKEIEGLEERLKSRFGWGLTVAVEPPELETRVAILMKKADQAKVELPHDAAFFIAQRIRSNVRELEGALKRVIAHSHFMGRDITIELIRESLKDLLALQDKLVSVDNIQRTVAEYYKIKISDLLSKRRSRSVARPRQVAMALSKELTNHSLPEIGDVFGGRDHTTVLHACRKINELKESDADIREDYKNLLRTLTTPGPT0014800_839DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-PILUS|FIMBRIAE_SYSTEMMOTILITY-PILUS_SYSTEM,PGPT0014800-dnaA-K02313NANA
D1-35_028121104dnaNCOG0592Beta sliding clampATGCATTTCACCATTCAACGCGAAGCCCTGTTGAAACCCCTGCAACTGGTCGCGGGCGTCGTCGAACGCCGCCAGACCTTGCCGGTACTTTCCAACGTGCTGCTGGTTGTCGAAGGCCAGCAATTGTCGCTGACCGGTACCGACCTGGAAGTCGAGCTGGTCGGTCGTGTCCAACTTGAAGAGCCGGCCGATCCGGGTTCCATCACCGTGCCGGCGCGCAAGCTGATGGACATCTGCAAGAGCCTGCCAAACGACGCGCTGATCGACATCAAGGTCGATGAGCAGAAGCTCGTGGTCAAGGCCGGTCGTAGCCGCTTCACCTTGTCGACCCTGCCAGCCAACGATTTCCCGACGGTGGAAGAAGGCCCGGGCTCGCTGACCTGCAGCCTGGAACAAAGCAAGCTGCGTCGCCTGATCGAGCGGACCAGTTTCGCCATGGCCCAGCAGGACGTGCGTTATTACCTCAACGGCATGCTGCTGGAGGTCTCGGCCGGCATCATCCGCGCCGTGGCCACTGATGGTCACCGCCTGGCGATGTGCTCCATGCAAGCCGATATCGGCCAGCCGGATCGTCACCAGGTCATCGTGCCGCGCAAAGGCATCCTGGAACTGGCGCGCCTGCTGACCGAGCCGGATGGCAACGTCAGCATCGTCCTGGGCCAGCATCACATTCGCGCGACCACCGGCGAGTTCACCTTCACTTCGAAACTGGTGGACGGCAAATTCCCTGACTACGAGCGCGTCCTGCCCAAAGGTGGCGACAAGCTGGTACTTGGCGATCGTCAGGCGCTGCGCGAAGCCTTCAGCCGCACCGCGATCCTGTCCAACGAGAAGTATCGCGGCATTCGTCTGCAACTGGCCAACGGTCAGCTGAAGATCCAGGCGAACAACCCGGAGCAGGAAGAAGCGGAAGAAGAAGTAGGCGTGGAGTACAACGGTAGCTCCCTGGAAATCGGCTTCAACGTCAGCTATCTGCTGGACGTATTGGGTGTGATGACCACCGAGCAGGTACGTCTGATCCTGTCCGACTCCAACAGCAGTGCACTGGTGCAGGAATCCGACAACGACGATTCGGCTTACGTTGTCATGCCGATGCGTCTGTAAMHFTIQREALLKPLQLVAGVVERRQTLPVLSNVLLVVEGQQLSLTGTDLEVELVGRVQLEEPADPGSITVPARKLMDICKSLPNDALIDIKVDEQKLVVKAGRSRFTLSTLPANDFPTVEEGPGSLTCSLEQSKLRRLIERTSFAMAQQDVRYYLNGMLLEVSAGIIRAVATDGHRLAMCSMQADIGQPDRHQVIVPRKGILELARLLTEPDGNVSIVLGQHHIRATTGEFTFTSKLVDGKFPDYERVLPKGGDKLVLGDRQALREAFSRTAILSNEKYRGIRLQLANGQLKIQANNPEQEEAEEEVGVEYNGSSLEIGFNVSYLLDVLGVMTTEQVRLILSDSNSSALVQESDNDDSAYVVMPMRLNANANANANA
D1-35_028131104recFCOG1195DNA replication and repair protein RecFATGTCCTTAAGTCGCGTCTCGGTCACCGCGGTGCGCAATCTGCACCCGGTGACCTTCTCCCCCTCCCCCCGCATCAATATCCTTTACGGCGCCAACGGCAGCGGCAAGACCAGCGTCCTCGAAGCCGTGCATCTGCTTGGGCTTGCCCGTTCGTTTCGCAGCACCCGCCTATTGCCGGTCATTCAGTACGACCAACTGGCATGCACGGTGTTTGGCCAGGTTGAACTGGCTGAAGGTGGTCACAGCGCATTGGGGATTTCACGGGACCGGCAGGGCGAGTTCCAGATTCGCATCGACGGGCAAAACGCCCGTAGCGCAGCACAACTGGCGGAAATCCTCCCGTTGCAGCTGATCAATCCGGACAGCTTTCGGTTGTTGGAAGGGGCGCCGAAGATTCGCCGGCAGTTTCTCGACTGGGGTGTGTTCCACGTGGAACCACGTTTCATGGCCACGTGGCAGCGCTTGCAGAAGGCGCTGCGCCAGCGAAACTCTTGGCTGCGACATGGTACACTTGACGCCGTTTCGCAGGCGGTTTGGGACAGAGAGCTGTGCCAAGCCAGCGCCGAAATCGATGAATACCGCCGCGCTTATATAAAAGCCTTGAAACCGGTCTTCGAACAGACCTTGAGCGAACTGGTTGAGCTTGAGGGACTGACGCTCAGCTATTACCGAGGCTGGGACAAGGACCGGGAGTTGAGCGCCGTGCTGGCTGGGTCACTGCAGCGTGATCAGCAGATGGGACATACCCAGGCCGGACCACAACGTGCTGACTTGCGTCTCAGACTGGGCGCGCACAATGCAGCGGACATATTGTCCCGCGGTCAGCAGAAGTTGGTGGTGTGCGCCTTGCGTATCGCCCAAGGTCATTTGGTCAGCCAGGCCCGTCGCGGTCAGTGTATTTATCTGGTGGATGACTTGCCGTCCGAACTGGACGAGACCCACCGCCGTGCGCTTTGCCGCTTGCTGGAAGACTTACGCTGCCAGGTGTTCATCACCTGTGTAGACCACGAATTATTGAGGGAAGGCTGGCAGACGGAAACGCCAGTCGCTCTGTTCCACGTGGAACAGGGCCGTATCACCCAGACCCACGACCATCGGGAGTGAMSLSRVSVTAVRNLHPVTFSPSPRINILYGANGSGKTSVLEAVHLLGLARSFRSTRLLPVIQYDQLACTVFGQVELAEGGHSALGISRDRQGEFQIRIDGQNARSAAQLAEILPLQLINPDSFRLLEGAPKIRRQFLDWGVFHVEPRFMATWQRLQKALRQRNSWLRHGTLDAVSQAVWDRELCQASAEIDEYRRAYIKALKPVFEQTLSELVELEGLTLSYYRGWDKDRELSAVLAGSLQRDQQMGHTQAGPQRADLRLRLGAHNAADILSRGQQKLVVCALRIAQGHLVSQARRGQCIYLVDDLPSELDETHRRALCRLLEDLRCQVFITCVDHELLREGWQTETPVALFHVEQGRITQTHDHRENANANANANA
D1-35_028142418gyrBCOG0187DNA gyrase subunit BTTGAGCGAAGAAAACACGTACGACTCAACGAGCATTAAAGTGCTTAAAGGCCTGGATGCCGTACGCAAACGTCCCGGTATGTACATTGGTGACACCGACGATGGCAGCGGTCTGCACCACATGGTGTTCGAGGTGGTCGACAACTCCATCGACGAAGCCCTTGCCGGTCATTGCGACGACATCAGCATCATTATCCACCCGGATGAGTCCATCACCGTTCGCGACAACGGCCGTGGCATCCCGGTAGACGTACACAAAGAAGAAGGCGTTTCCGCGGCTGAGGTCATCATGACCGTATTGCACGCCGGCGGTAAGTTCGACGACAACTCCTACAAAGTATCCGGCGGTCTGCACGGTGTAGGTGTGTCGGTTGTGAACGCGCTGTCCGAGAAGCTTGTTCTCACTGTTCGCCGCAGCGGCAAGATCTGGGAACAGACCTACGTCCACGGCGTGCCTCAAGCGCCGATGGCAATCGTTGGCGACAGTGAGTCCACGGGGACCCAGATTCACTTCAAGGCCTCCAGCGAAACCTTCAAGAACATCCACTTCAGCTGGGATATCCTGGCCAAGCGGATTCGTGAGCTGTCCTTCCTGAACTCCGGTGTCGGCATCGTCCTCAAGGACGAGCGCAGCGGCAAGGAAGAGCTGTTCAAGTACGAAGGCGGCCTGCGGGCATTCGTCGAGTACCTGAACACCAACAAGACCCCGGTCAACCAGGTGTTCCACTTCAACGTCCAGCGTGAAGACGGCATCGGCGTGGAAATCGCCCTGCAGTGGAACGACAGCTTCAACGAGAACCTGTTGTGCTTTACCAACAACATTCCGCAGCGCGATGGTGGTACTCACCTGGTGGGCTTCCGTTCAGCGCTGACGCGTAACCTGAACAACTACATCGAACAGGAAGGCCTGGCGAAGAAGCACAAGGTCGCCACCACCGGTGACGACGCCCGCGAAGGTCTGACCGCGATCATCTCGGTGAAGGTGCCGGATCCGAAGTTCAGTTCCCAGACCAAGGACAAGCTGGTGTCTTCCGAAGTGAAGACCGCCGTCGAACAGGAGATGGGCAAGTACTTCTCCGACTTCCTGCTCGAGAACCCGAACGAAGCCAAGCTGGTGGTCGGCAAGATGATCGACGCCGCCCGTGCCCGTGAAGCGGCGCGCAAGGCCCGCGAGATGACTCGCCGCAAAGGCGCGCTGGACATCGCCGGCCTGCCAGGAAAACTGGCCGACTGCCAGGAGAAGGACCCTGCCCTGTCCGAGCTGTACCTGGTGGAAGGTGACTCTGCTGGCGGTTCCGCCAAGCAGGGCCGCAACCGTCGTACCCAGGCGATCCTGCCGCTCAAAGGCAAGATCCTCAACGTCGAAAAGGCGCGCTTCGACAAGATGATCTCTTCCCAGGAGGTCGGTACGCTGATCACCGCGCTGGGCTGTGGCATCGGCCGCGAAGAGTACAACATCGACAAGCTGCGCTATCACAACATCATCATCATGACCGACGCCGACGTCGACGGTTCGCACATCCGCACCTTGCTGCTGACGTTCTTCTTCCGTCAGTTGCCGGAGCTGATCGAGCGCGGCTACATCTATATCGCCCAGCCGCCTTTGTACAAGGTCAAGAAAGGCAAGCAAGAGCAATACATCAAAGACGACGACGCCATGGAAGAGTACATGACGCAGTCGGCCCTGGAAGACGCGAGCCTGCACCTGAACGAAGATGCCCCAGGCATTTCCGGTGAAGCCCTTGAGCGCCTGGTGAATGACTTCCGCCTGGTGATGAAGACCCTCAAGCGCCTGTCGCGCCTGTACCCACAGGAACTGACCGAGCACTTCATCTACCTGCCGGCCGTCAGCCTCGAGCAGCTGTCCGACCACGCAGCGATGCAGGATTGGCTGGCCCAGTACGAAGTACGCCTGCGTACCGTGGAAAAATCCGGCCTGGTCTACAAAGCCAGCCTGCGTGAAGACCGTGAGCGTAACGTCTGGCTGCCGGAGGTTGAACTGATCTCCCACGGTCTGTCGAACTACGTCACCTTCAACCGCGACTTCTTCGGCAGCAACGACTACAAGACCGTCGTATCCCTCGGCGCGCAACTGAGCACGCTGTTGGACGAAGGTGCGTACATCCAGCGTGGTGAGCGCAAGAAAGCCGTGACCGAGTTCAAGGAAGCCCTTGAATGGCTGATGGCCGAAAGCACCAAGCGCCACACCATCCAGCGATACAAAGGGCTGGGTGAGATGAACCCGGATCAGCTGTGGGAAACCACCATGGATCCGGGCTCGCGCCGCATGCTGAAAGTCACCATCGAAGACGCCATTGGCGCGGACCAGATCTTCAACACCCTGATGGGTGATGCGGTCGAGCCCCGTCGTGACTTCATCGAGAGCAACGCGTTGGCGGTGTCCAACCTGGATTTCTGAMSEENTYDSTSIKVLKGLDAVRKRPGMYIGDTDDGSGLHHMVFEVVDNSIDEALAGHCDDISIIIHPDESITVRDNGRGIPVDVHKEEGVSAAEVIMTVLHAGGKFDDNSYKVSGGLHGVGVSVVNALSEKLVLTVRRSGKIWEQTYVHGVPQAPMAIVGDSESTGTQIHFKASSETFKNIHFSWDILAKRIRELSFLNSGVGIVLKDERSGKEELFKYEGGLRAFVEYLNTNKTPVNQVFHFNVQREDGIGVEIALQWNDSFNENLLCFTNNIPQRDGGTHLVGFRSALTRNLNNYIEQEGLAKKHKVATTGDDAREGLTAIISVKVPDPKFSSQTKDKLVSSEVKTAVEQEMGKYFSDFLLENPNEAKLVVGKMIDAARAREAARKAREMTRRKGALDIAGLPGKLADCQEKDPALSELYLVEGDSAGGSAKQGRNRRTQAILPLKGKILNVEKARFDKMISSQEVGTLITALGCGIGREEYNIDKLRYHNIIIMTDADVDGSHIRTLLLTFFFRQLPELIERGYIYIAQPPLYKVKKGKQEQYIKDDDAMEEYMTQSALEDASLHLNEDAPGISGEALERLVNDFRLVMKTLKRLSRLYPQELTEHFIYLPAVSLEQLSDHAAMQDWLAQYEVRLRTVEKSGLVYKASLREDRERNVWLPEVELISHGLSNYVTFNRDFFGSNDYKTVVSLGAQLSTLLDEGAYIQRGERKKAVTEFKEALEWLMAESTKRHTIQRYKGLGEMNPDQLWETTMDPGSRRMLKVTIEDAIGADQIFNTLMGDAVEPRRDFIESNALAVSNLDFPGPT0027710_1276DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027710-parE-K02622NANA
D1-35_02815735hypothetical proteinATGCGTGTCGCCATACTGGACGATGAACCGGCGGAGTTGCGCCGGGTGGAACAGACACTGCAGCAAATTCCCGGCAGGGGAGAGCCCGCCTGGACACTGCACAGTTTCGAACGGGGTGAAGACCTGCTGCGACAACTGCGCAGGGAAACGTTTGACCTGTTGATCCTGGACTGGCAATTACCTGACATCAGTGGCTTGTCCTTGCTGCGCTGGACACGCGAGCACATGGATTCGCCACCCGCAGCCATCATGCTCACCAGCCGCGACGGCGAGCATGACATCGTCCAAGCGCTCAACGCCGGTGCCGATGACTATGTCAGCAAACCTTTCCGTCCCAACGAGCTCAAGGCCCGGGTCACCGCGGTGCTAAGGCGTCACAACCTGCAACGCACCCCGACCACTGAAGTGCTGGTGTTCAATGACCTCGAATTCGACGATGCCGAATTGACCGTCACCCGCGCCGGTATCCCCATCAGCCTGACTGAAAGGGAGTACCGCCTGGCCCGCTGCCTGTTCGCCAACCTGGGCCGGCCGCTGTCACGGGAATATTTTTATGAGCGCTTCTGGACCCATGAAGAAATGACGTCGTCGCGCCCGCTCGACACCCATATCTATCGCCTGCGCAACAAGCTCGGGCTAACCGCTGATCGCGGCTGGCAGTTGTTGACGATCTACGGTTATGGATATCGGTTGGAGAGTGTAGCGGCAGGCAGTGAGGCTTCGGTAGCCAGTTAGMRVAILDDEPAELRRVEQTLQQIPGRGEPAWTLHSFERGEDLLRQLRRETFDLLILDWQLPDISGLSLLRWTREHMDSPPAAIMLTSRDGEHDIVQALNAGADDYVSKPFRPNELKARVTAVLRRHNLQRTPTTEVLVFNDLEFDDAELTVTRAGIPISLTEREYRLARCLFANLGRPLSREYFYERFWTHEEMTSSRPLDTHIYRLRNKLGLTADRGWQLLTIYGYGYRLESVAAGSEASVASNANANANANA
D1-35_028161518walKSensor histidine kinase WalKATGAGCCATCCGCGTCGCCGTGAAAGCCGTGAACCGACCCAGGTGCAGCGATTGTTTCGACAATTGATGCGCGAAGGGTTGTGGATAAGCCTGGTGCTGCTCCCGCTGACCGCGCTGGTCTCGTTCAGCCTGCAATCGGCGCGCAACGGCCCAGCGGCTGCATTGTTGTCGGTGTGCCTGGTTGGCTGTGTAATGGGTTTGTTGCTGTTGCGTCCGCACTTCGCATTGGGAGCGACGTTGGGCGGGATGGGTCTGGCCCTGCTACTCAGCGCACTGCTGGGCGCGCAGTGTTGGGGGTGGTCGCCGGTGGCCAGCCTGTTGGGCATGCTGCTGGGTTATCTGATCTGGAACTGGCGGCGCCTGAGCGTGGTGCTGGCTTATTTCGGTTGGGAGCTGGCGCGCCTGGATGCTGAGCCCAAGGTCTTCCCGGAGCGCCGTCGAGCCTCCTACACCGGCAGTGATCGCTTGCAAGGCCAGATTATGGCCTTGGAACAAGCCATGAGCCGAACCCGGGACACGCGCCGATTTATTGCCGACGGCCTGGAGTACCTGCCGGTAGCAACGATGATCAGTGATCCACAGGGCAACCTGTTGCTGGGTAATCGCAAGGCTCGCGAGTTGTTCGGTCACGCTTTGGCGGGCAGTGATGTGCTGGAGGAATTGGCGCGGTTGGGTTATCCGGCATTGGTCCACTCCCCTGCACATCGCTTGTCCACGTTACCACTGGTTGAATTTCGCGATACCCGCGAGCGCAGCTTGCGACTGGAACGTGCCGCGCTGTTGCCGGTGGACGGTGATGTGCCCATTGGCTGGCTGCTCAGCCTGACTGATCTGAGCGCTGAACGGGAAGCCGAAGAGCAGCGCAGCGTCATGCTTCGTTTTCTCTCCCACGATCTGCGCGCGCCCCATTCGGCGATCCTGGCTCTGCTCGATGTGCAGCGGCATCAGGCCGGTGCCGACAAGCCGCTATTCGACCAGATCGAGCGCCAGGTGCGCCGCGCCCTGGAACTGACCGATGGGTTTGTGCAGTTGGCCAAGGCCGAGTCCGAGGCCTACCAGTTCCAACCGAGCCTGTTCGCCATGCTGGTGCTGGACGTGATCGACCAGGCATTGCCTGTTGCCCAGGCCAGGAGTATTCGGTTGGAACACCAACTCGACGATGAGGAAGCGCTGATCAGCGCTGATCAGCCCCTGCTGACCCGCGCCCTGTTCAACTTGTTGGAGAACGCCATCAAGTACAGTGCGCCCGACACGTGTATAGCGTTGCAGGTCCGTTGTGCCCAGGGCTGGTTGACGTGTGACGTCGTTGATCAGGGCAAAGGCATCGGCGCGCAGGAACTGCCGGATCTGTTCGTCCAGTACCGACGGTTTTCGTCGGCCCATGGCGTGGATGGCATCGGTTTGGGGCTGTCGATGGTCAAGGCGGTCGTGGACCGTCATGGTGGGCAAATCGATTGCCGTAGCGTGGTAGGCGAAGGCACTACGTTCAGCCTGCGCTTTCCGTTGTTGGAGGAATAAMSHPRRRESREPTQVQRLFRQLMREGLWISLVLLPLTALVSFSLQSARNGPAAALLSVCLVGCVMGLLLLRPHFALGATLGGMGLALLLSALLGAQCWGWSPVASLLGMLLGYLIWNWRRLSVVLAYFGWELARLDAEPKVFPERRRASYTGSDRLQGQIMALEQAMSRTRDTRRFIADGLEYLPVATMISDPQGNLLLGNRKARELFGHALAGSDVLEELARLGYPALVHSPAHRLSTLPLVEFRDTRERSLRLERAALLPVDGDVPIGWLLSLTDLSAEREAEEQRSVMLRFLSHDLRAPHSAILALLDVQRHQAGADKPLFDQIERQVRRALELTDGFVQLAKAESEAYQFQPSLFAMLVLDVIDQALPVAQARSIRLEHQLDDEEALISADQPLLTRALFNLLENAIKYSAPDTCIALQVRCAQGWLTCDVVDQGKGIGAQELPDLFVQYRRFSSAHGVDGIGLGLSMVKAVVDRHGGQIDCRSVVGEGTTFSLRFPLLEEPGPT0002705_1423DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002705-phoR-K07636NANA
D1-35_02817780hypothetical proteinATGTCGATATTGCAGGCCATCAGAAGCTTCCTCTTTTACCTGCTGCTGGGCACCAGTTCCTTGTTGTGGTGCACGTTGAGTTTTTTTGTCGCGCCGTTCATGTCGTTCAGGACGCGCTACCGCTTCATCAATGTTTACTGGTGCCGTTGCGCACTCTGGCTGAGCAAGGTGTTTCTGGGCATCCGCTACGAAGTGAAAGGTGCCGAGAATGTGCCTGAGCGCCCTTGTGTCATCCAGTCCAACCACCAGAGCACCTGGGAGACCTTCTTTCTCTCGGCTTATTTCGAACCGTTGAGCCAAGTGCTCAAGCGCGAGCTGCTGTTTGTACCGTTCTTCGGCTGGGCCATGGCGATGCTGCGCCCGATTGCCATCGACCGTGACAACCCGAAGGTTGCCCTCAAGCAGGTAGCGCAAAAAGGCGATGTGCTGCTCAAGGACAACGTTTGGGTACTAATCTTTCCCGAGGGCACCCGCGTACCTTACGGGACCATCGGCAAGTTTTCCCGCAGTGGCTCCGCATTGGCGGTAAACGCCGGCCTGCCAGTACTACCGATTGCACACAATGCGGGCAAATTCTGGCCCAAGGCCGGCTGGGTCAGAACGCCAGGCGTTATCACCGTGGTCATCGGCGCCCCCATGTATGCAGAGGGCAGTGGGCCGCGCGCGATTGCCGAGCTGAACGACCGTGTACAGGCTTGGAATGAACAGACGCAACGGGAATTGGGCTCGCTTCCTCCGGCCCCTGCTGCGCCGGCTGCGACGGACAAGTTGGCTGTATGAMSILQAIRSFLFYLLLGTSSLLWCTLSFFVAPFMSFRTRYRFINVYWCRCALWLSKVFLGIRYEVKGAENVPERPCVIQSNHQSTWETFFLSAYFEPLSQVLKRELLFVPFFGWAMAMLRPIAIDRDNPKVALKQVAQKGDVLLKDNVWVLIFPEGTRVPYGTIGKFSRSGSALAVNAGLPVLPIAHNAGKFWPKAGWVRTPGVITVVIGAPMYAEGSGPRAIAELNDRVQAWNEQTQRELGSLPPAPAAPAATDKLAVPGPT0024380_1389DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_ACYLTRANSFERASE_ACTIVITY,PGPT0024380-plsC-K00655NANA
D1-35_02818534gmhBCOG0241D-glycero-beta-D-manno-heptose-1,7-bisphosphate 7-phosphataseTTGAAACTGCTGATTCTCGATCGGGACGGAGTGATCAATCACGACTCCGACGCCTACATCAAGTCGGTGGAGGAGTGGTTGCCGATTCCCGGTTCCATCGAGGCCGTCGCACAATTGAGCAAGGCCGGCTGGACGGTGGCGGTCGCCACCAACCAGTCGGGCATTGCCCGCGGTTACTACGAACTCGCCGTCCTCGACGCCATGCATGAACGCTTGCGTCAGCTGGTGGCCGGGCAGGGCGGTGACATCGGGCTGATCGTTTATTGCCCACATGGGCCGGACGAAGGCTGCGATTGCCGCAAGCCCAAGCCCGGCATGCTGAAAACCATCGCCGCTCACTATGACGTTGCGCTGTCGGGCGTGTGGTTTGTCGGCGACAGCCTCGGTGACCTGGAGGCGGCGAAGGCCGTCGATTGTCAGCCAGTTTTGGTCAAGACCGGAAAAGGCGAAAAGACCCTGGGCAAGACCCTACCGGTGGGCACCTTGATTTTTGACGACCTGGCGGCGGTTGCCGCTGAACTTATCCACAATTAGMKLLILDRDGVINHDSDAYIKSVEEWLPIPGSIEAVAQLSKAGWTVAVATNQSGIARGYYELAVLDAMHERLRQLVAGQGGDIGLIVYCPHGPDEGCDCRKPKPGMLKTIAAHYDVALSGVWFVGDSLGDLEAAKAVDCQPVLVKTGKGEKTLGKTLPVGTLIFDDLAAVAAELIHNPGPT0023035_1791DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-MANNO-HEPTOSE|-PHOSPHATE_MODIFICATION,PGPT0023035-gmhB|yaeD-K03273NANA
D1-35_028192055glySCOG0751Glycine--tRNA ligase beta subunitATGAGTGCTCAAGATTTTCTGGTTGAACTGGGCACCGAAGAACTGCCACCCAAAGCCCTGAACACCCTGGCCGATGCATTCCTGGCCGGCATCGAGAAAGGCCTGCAAGCCGCTGGCCTGAACTTCGAAACCAAGCATGTCTACGCCGCGCCGCGCCGCCTGGCCGTGCTGATCACCGCCCTGGCAACGCAACAGCCGGACCGCAGCATCAACCTCGACGGCCCGCCCGTGCAAGCCGCGTTCGATGCCGACGGCAACCCGACCCAGGCCGCCCTGGGCTTCGCCAAGAAGTGCGGCGTCGATCTGAGCGAAATCGACCAGAGCGGCCCGAAGCTGCGCTATAGCCAGAGCATCAAGGGCAAGCCGACCGCCAGCCTGTTGCCGACCATCGTCGAAGACTCCCTCAATGACTTGCCGATTCCCAAGCGCATGCGCTGGGCTGCGCGCAAGGAAGAGTTCGTGCGTCCGACCCAATGGCTGGTGATGCTGCTCGGTGACCAGGTCATCGATTGCACGATCCTCGCCCAAAAGGCCGGTCGTGATTCTCGCGGTCACCGTTTCCATCATCCGCAGAGCGTGCGTATCACGTCGCCGGCCAATTACCTGGCCGACCTTCGCGCTGCCTATGTATTGGCCGATTCCAACGAGCGCCGCGAGCTGATCAGCAAACGCACCGAAGAACTGGCGACCGCCCAGGAAGGTACGGCTATCGTGCCGGCCAACCTGCTGGACGAAGTGACCGCGCTGGTGGAATGGCCGGTGCCACTGGTGTGCTCGTTCGAGGAACGCTTCCTTGAAGTGCCCCAGGAAGCGCTGATCACCACCATGCAGGACAACCAGAAATATTTCTGCCTGCTGGACGCCGAAGGCAAGTTGCTGCCGCGCTTCATCACGGTGGCCAACATCGAAAGCAAGGACCCGCAGCAGATCATCGCCGGTAACGAAAAAGTCGTACGCCCGCGTCTGACCGATGCCGAGTTCTTCTTCAAGCAAGACAAGAAGCAGCCCCTGGAAAGCTTCAACGAGCGCCTGCGCAACGTGGTGTTCCAGGAAAAACTCGGCAGTGTCTACGACAAGGCCGAGCGCGTATCGAAACTGGCAGCATTCATCGCTCCACGCATCGGCGGCGATGCCCAGCGCGCTGCACGTGCCGGCATCCTGTCCAAGTGCGACCTGTCCACCGAGATGGTCGGTGAGTTCCCGGAGATGCAAGGTATCGCCGGTTACTACTACGCCCTCAACGACGGCGAGCCGCAGGATGTTGCCCTGGCGCTGAACGAACAGTACATGCCGCGTGGCGCCGGCGCTGAATTGCCGACCACCCTGACCGGTGCGGCCGTGGCGATCGCGGACAAGCTCGACACCCTGGTCGGCATCTTCGGTATCGGCATGCTGCCCACCGGCAGCAAGGACCCGTACGCACTGCGTCGCGCAGCGCTGGGCGTGCTGCGCATTCTCATCGACAAGCAGCTGGACCTGGACCTGAACGACGCCGTGGCCTTCGCCGTGAATGCGTTCGGCAGCAAGGTCAAGGCTGCCGGCCTGGCCGACGCGGTGCTGGAATTCATTTTCGACCGCCTGCGTGCGCGTTATGAAGACGAAGGTGTCGACGTCGCGACCTACCTGTCGGTGCGAGCCCTGAAACCGGGCTCTGCCCTGGACTTCGACCAACGCGTACAGGCAGTGCAGGCGTTCCGCAAACTGCCGGAAGCGGCAGCGCTGGCGGCGGTGAACAAGCGCGTGTCGAACCTGCTGAGCAAGGCCGAAGGCAACATTGCGGCCGTCGTTGAAGCCAAGTACTTCGACAACGCCAATGAGTTCTCCCTGTACTCGGCGATCCAGCAGGCGGACCAGGCAGTCCAGCCGATGGCAGCGGCGCGTCAGTACAGCGAAACCCTGGCGCGCCTGGCAGCATTGCGTGAACCGGTGGATGCGTTTTTCGAAGCGGTGATGGTCAATGCCGAAGACGCCAATGTGCGAGCCAACCGCTATGCGCTGCTGGCGCGTCTGCGTGGGTTGTTCCTCGGTGTTGCCGATATTTCGCTGCTGGGGTAAMSAQDFLVELGTEELPPKALNTLADAFLAGIEKGLQAAGLNFETKHVYAAPRRLAVLITALATQQPDRSINLDGPPVQAAFDADGNPTQAALGFAKKCGVDLSEIDQSGPKLRYSQSIKGKPTASLLPTIVEDSLNDLPIPKRMRWAARKEEFVRPTQWLVMLLGDQVIDCTILAQKAGRDSRGHRFHHPQSVRITSPANYLADLRAAYVLADSNERRELISKRTEELATAQEGTAIVPANLLDEVTALVEWPVPLVCSFEERFLEVPQEALITTMQDNQKYFCLLDAEGKLLPRFITVANIESKDPQQIIAGNEKVVRPRLTDAEFFFKQDKKQPLESFNERLRNVVFQEKLGSVYDKAERVSKLAAFIAPRIGGDAQRAARAGILSKCDLSTEMVGEFPEMQGIAGYYYALNDGEPQDVALALNEQYMPRGAGAELPTTLTGAAVAIADKLDTLVGIFGIGMLPTGSKDPYALRRAALGVLRILIDKQLDLDLNDAVAFAVNAFGSKVKAAGLADAVLEFIFDRLRARYEDEGVDVATYLSVRALKPGSALDFDQRVQAVQAFRKLPEAAALAAVNKRVSNLLSKAEGNIAAVVEAKYFDNANEFSLYSAIQQADQAVQPMAAARQYSETLARLAALREPVDAFFEAVMVNAEDANVRANRYALLARLRGLFLGVADISLLGNANANANANA
D1-35_028201020glyQCOG0752Glycine--tRNA ligase alpha subunitGTGCGCACGAACGAATCGGGTATACTCCCGCTCTTTAAATCGCAGCCCAAGAAACAGGTGAATTTCGTGAGCCAGCCTACGCCAGCCGTGCGTACCTTCCAAGACTTGATCCTCGCCCTCCAGCAATACTGGGCCGAGCAAGGTTGCGTGGTACTTCAGCCCTACGATATGGAAGTAGGCGCCGGCACTTTCCACACTGCCACGTTTCTGCGTGCCATCGGCCCGGAAACCTGGAACGCCGCTTATGTGCAACCAAGCCGCCGCCCGACTGACGGCCGCTACGGCGAAAACCCGAACCGCCTGCAGCATTACTATCAATTTCAGGTCGTGCTGAAGCCGAACCCGGAAAACTTCCAGGAGCTGTACCTGGGCTCCCTCAAACACGTGGGCCTCGACCCGCTGGTGCACGACATTCGTTTCGTCGAAGACAACTGGGAATCACCGACCCTGGGCGCCTGGGGCCTGGGCTGGGAAGTCTGGCTCAACGGCATGGAAGTGACCCAATTCACCTACTTCCAGCAAGCGGGCGGCATCGAATGCTACCCGGTGACTGGTGAGATCACCTACGGCCTGGAACGCCTGGCCATGTACCTGCAAGGCGTGGATTCGGTCTACGACCTGGTATGGGCCGACGGTCCGTTCGGCAAAGTGACGTATGGCGACGTGTTCCATCAGAACGAAGTGGAGCAATCGACCTACAACTTCGAACACGCCAACGTCGACAAGCTGTTCGAGTTGTTCGATTTCTATGAAAGCGAAGCCAAGCGCCTGATCGAACTGGACCAGCCGCTGCCGCTGCCGAGTTATGAAATGGTCTTGAAGGCATCTCATACCTTCAATCTGCTGGATGCACGCCGGGCGATTTCCGTGACCGCGCGCCAGCAATACATCCTGCGTGTGCGCACCCTGGCGCGTTCCGTCGCGCAAGCCTACCTGCTGGCCCGTGCCAAGCTGGGCTTCCCGATGGCGACCCCGGACCTGCGTGATGAAGTGTTGGCTAAGCTGGAGGCTGCACAATGAMRTNESGILPLFKSQPKKQVNFVSQPTPAVRTFQDLILALQQYWAEQGCVVLQPYDMEVGAGTFHTATFLRAIGPETWNAAYVQPSRRPTDGRYGENPNRLQHYYQFQVVLKPNPENFQELYLGSLKHVGLDPLVHDIRFVEDNWESPTLGAWGLGWEVWLNGMEVTQFTYFQQAGGIECYPVTGEITYGLERLAMYLQGVDSVYDLVWADGPFGKVTYGDVFHQNEVEQSTYNFEHANVDKLFELFDFYESEAKRLIELDQPLPLPSYEMVLKASHTFNLLDARRAISVTARQQYILRVRTLARSVAQAYLLARAKLGFPMATPDLRDEVLAKLEAAQNANANANANA
D1-35_02821558tagCOG2818DNA-3-methyladenine glycosylase 1ATGCCACGCTGCTTTTGGTGTTCCGAAGATCCGTTGTACATGGCTTATCACGATCAGGAGTGGGGGACGCCGCTGCGCGATGCGCAGGGTTTGTTCGAGTTGCTTCTGCTCGAAGGGTTCCAGGCCGGTCTGTCCTGGATCACCGTTTTGCGCAAACGCGAACGTTACCGGGAAGTGCTCTACGGCTTCGATGTGCAGCGGGTGGCGCAGATGAGCGACGCTGAAATCGATGAACTGATGCTCGACCCCGGCATTATCCGCAACCGCCTCAAGCTCAAGGCGGCGCGGCGCAATGCCCAGGCCTGGCTGGCGCTGGAAGACCCGGTGGCATTTCTCTGGTCGTTCGTAGGCAACCAACCGATCATCAACCATTTCAAGGACCGCACCGAAGTGCCGGCCATCACCCCCGAGGCGCTGGCAATGAGCAAAGGCCTGAAAAAAGCCGGGTTCACCTTCGTCGGCCCAACCATCTGCTACGCCTTGATGCAGGCCTCGGGCATGGTCATGGACCACACCCAGGACTGCGACCGCTACGCCGAGTTGGTAAACGGTGGTTAGMPRCFWCSEDPLYMAYHDQEWGTPLRDAQGLFELLLLEGFQAGLSWITVLRKRERYREVLYGFDVQRVAQMSDAEIDELMLDPGIIRNRLKLKAARRNAQAWLALEDPVAFLWSFVGNQPIINHFKDRTEVPAITPEALAMSKGLKKAGFTFVGPTICYALMQASGMVMDHTQDCDRYAELVNGGNANANANANA
D1-35_02822888lpxPCOG1560Lipid A biosynthesis palmitoleoyltransferaseGTGGATAAGTTGAAAGGCGCCTTGCTGGTCGGCGCTCTGCGGTTGTTTGCGCTGCTCCCTTGGCGAGCGGTGCAGGCGGTGGGCTCGGCCATTGGCTGGCTCATGTGGAAATTACCCAACCGTTCCCGCGACGTGGTGCGGATCAACCTCGCCAAGTGTTTCCCCGAGATGGACCCGGCCGAGCGCGAGCGCCTGGTAGGCCAGAGCCTCAAGGACATTGGCAAATCCCTGACCGAAAGCGCCTGTGCCTGGATCTGGCCGGCCCAGCGCTCCATCGAACTGGTGCGCGAAGTCGAAGGCCTGGAGGTGTTGAAAGAAGCGCTGGCCTCGGGCAAAGGCGTGGTCGGCATCACCAGCCACCTGGGCAATTGGGAAGTGCTCAATCACTTCTATTGCAGCCAGTGCAAACCGATCATCTTCTACCGCCCGCCCAAGCTCAAGGCGGTGGATGAGTTGCTGCAGAAGCAACGCGTGCAACTGGGCAACAAGGTCGCGGCGTCTACCAAGGAAGGCATCCTCAGCGTCATCAAGGAAGTGCGCAAGGGCGGCCAGGTGGGGATCCCCGCCGATCCGGAGCCGTCCGAATCCGCCGGCATCTTCGTGCCCTTCTTCGCCACCCAGGCCCTGACCAGCAAGTTCGTGCCGAACATGCTCGCCGGCGGCAAGGCGGTCGGCGTCTTCCTCCACGCCCTGCGCCTGCCGGACGGCTCCGGCTACAAAGTCATCCTCGAAGCCGCCCCGGACGAGATGTACAGCACCGACACCGAAACCGCCTGCGCCGCCATGAGCAAAGTGGTCGAGCGTTATGTACGGGCCTATCCGAGCCAGTACATGTGGAGCATGAAACGCTTCAAGAAACGCCCGCCGGGCGAGGCGCGGTGGTACTGAMDKLKGALLVGALRLFALLPWRAVQAVGSAIGWLMWKLPNRSRDVVRINLAKCFPEMDPAERERLVGQSLKDIGKSLTESACAWIWPAQRSIELVREVEGLEVLKEALASGKGVVGITSHLGNWEVLNHFYCSQCKPIIFYRPPKLKAVDELLQKQRVQLGNKVAASTKEGILSVIKEVRKGGQVGIPADPEPSESAGIFVPFFATQALTSKFVPNMLAGGKAVGVFLHALRLPDGSGYKVILEAAPDEMYSTDTETACAAMSKVVERYVRAYPSQYMWSMKRFKKRPPGEARWYPGPT0013315_2586DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LIPID_A_METABOLISM,PGPT0013315-lpxL|htrB-K02517NANA
D1-35_02823789fabG_53-oxoacyl-[acyl-carrier-protein] reductase FabGATGAACATCGACTTCACCGGACGTAACGTATTGGTCACCGGTTCCACCAGCGGCATCGGTTTTGCGACCGCCAAAGGTTTTCTGGAAGCCGGTGCCCAGGTCGTCATCAACGGGCGCAGCGAAAGCAGCGTGGAGGACGCGTTGCAGCGCCTGGGCAATCTGGCTTCCAGGGCGACAGGCTTTGTTGGCGATCTCAGCAACGAACCTGGCTGCCAGGCGTTGATCGCCAGGCATCCAAGCTTCGATATTGTCATCAACAACCTGGGCATTTTCAAACAGGAAGACTTCTTCGAGACGCCGGACAGCGAATGGCAGCGTTTCTTCGAAACCAATGTGATGTCGGGTGTGCGTGTTTCCAGGGCCTACGCGCAGGGCATGGTCGAGCGTGGTTGGGGGCGGATCGTGTTTGTCTCGTCGGAGTCGGGCGTGAACATTCCGGCCGACATGATCCACTACGGCTTCACCAAGACCGCCCAGCTTTCAATCGCTCGCGGCCTGGCCAAACGCCTCGCGGGAACGGGCGTGACGGTGAACTCGGTATTGCCCGGGCCGACACTGTCCGAAGGCGTTGCCAAGATGCTCCAGGCGGACGTCGAGCGCAGCGGGGAAAGCCTGGAGAAGGTCGCGGCAGATTTCGTCAACGAGCACCGCAGCACCTCGATCATCCAGCGCGCGGCACGGGTAGAGGAAGTCGCCAACATGATTATCTACGCCAGCTCGGAACAGGCCTCGGCCACCACCGGAGCGGCGCTGCGAGTTGACGGCGGTGTGGTGGACAGCATCGTTTAGMNIDFTGRNVLVTGSTSGIGFATAKGFLEAGAQVVINGRSESSVEDALQRLGNLASRATGFVGDLSNEPGCQALIARHPSFDIVINNLGIFKQEDFFETPDSEWQRFFETNVMSGVRVSRAYAQGMVERGWGRIVFVSSESGVNIPADMIHYGFTKTAQLSIARGLAKRLAGTGVTVNSVLPGPTLSEGVAKMLQADVERSGESLEKVAADFVNEHRSTSIIQRAARVEEVANMIIYASSEQASATTGAALRVDGGVVDSIVPGPT0003180_3276DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-35_02824285hypothetical proteinATGAACACTTTCAGCAAAACACTCGTTGGCTCGCTTCTGGCACTGTCGCTCGGCAATGCGTTCGCGACTTCTTTTGTTCAACCTACATTCGCTGAGGGCGGTTCGGATCGCCTGATCGAAAAACGAATAGCCGAAGGTGGCTCCGATCGTCTTATCGAGAAACGCATAGCCGAAGGCGGCTCCGATCGTCTGATCGAGAAACGCGTAGCCGAAGGTGGCTCCGATCGTCTGATCGAGTTACGGGTAGCCGAAGTTGGCTCGGATCGCCTAGGCGAGAACGGCTAGMNTFSKTLVGSLLALSLGNAFATSFVQPTFAEGGSDRLIEKRIAEGGSDRLIEKRIAEGGSDRLIEKRVAEGGSDRLIELRVAEVGSDRLGENGNANANANANA
D1-35_02825420ohrB_2COG1764Organic hydroperoxide resistance protein OhrBATGAACGTTCTCTACACCGCAGTCGCAACCTCCACCGGTGGCCGTGATGGCCGTGCTGTTTCCAGCGACAAGATCCTCGACGTGAAACTGGCCACGCCAAAAGCCCTGGGCGGTGCCGGTGGTGAAGCCACCAATCCTGAGCAGTTGTTCGCAGCCGGCTACTCGGCCTGCTTCATCGGCGCGTTGAAATTTGTCGCCAGCCAAAGCAAACGCAGCATTCCGGCTGACGCCTCGATCACGGCACACGTCGGCATCGGCCAGATCCCTGGCGGTTTCGGTCTGGACATCGACCTGCACATCAGCCTGCCAGGTCTGGATCAAGCCGATGCTCAAGCGCTGGTCGACGCGGCTCACCAGGTTTGCCCGTACTCCAACGCGACCCGCGGCAACGTCGACGTCCGTTTGCACGTCGCCGTCTAAMNVLYTAVATSTGGRDGRAVSSDKILDVKLATPKALGGAGGEATNPEQLFAAGYSACFIGALKFVASQSKRSIPADASITAHVGIGQIPGGFGLDIDLHISLPGLDQADAQALVDAAHQVCPYSNATRGNVDVRLHVAVPGPT0013160_3583DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013160-ohrB|osmC|ohr|ykzA-K04063NANA
D1-35_028261128hypothetical proteinATGGATGGCCCGAGATCTCGCAATGGCATGGACTTTTGCATAGCCGGACAAGTGCGCACTGACCGACTGCAGCAACTGTTTCGCCAATCCGTTTCCGCGGTGTTTGGTAGTTACCTCGCGGCCATCATGTTGTGTTGGCTGTGTTGGGATCGCTTTGAGCACAGCACGGTTGTGTGGTGGCTGGCCATATTAAGCGGATCGACGCTGCTGCGGATCGCGATGTTCGTTGCCTATTTTCGCAGCGACGAGGTTCAGCGCACGCCTCAACGCTGGGAGCGCAGATACTGGGTCTCGCTGGTGTTGTCCGCGAGCATCTGGGGCGGCGGCGCGCTTGTTTTGATGCCGCAAGATGATCTCCTCTCGCAAGCTCTCGTCATGCTTTTTACCGTGGGGATGACTGTCAGCGCGGTCTCCTGTTACTCCGCCTACCGGGACATGACACTGGTCTCCATTGGCCTTGTGCTGTTTCCGTGCACGGTCTGGCTGCTGTTCCAACCGTCGCCGATTCAAGTCGGCATGGCGCTTTCGATCCTGGTGTTCGCGGCATTTGCTGCCCGCGCCACCCACAAAATGTCCCAGGCACTGGAAACCGCTTTTCGACTCACCCGCGAGATGGAACAGGCGAACAGCATTTCAACCCGCGCCGCACAAACCGATGAACTGACCGGCCTGAAAAGTCGACGGGCTTTTTTCGAGCATGCCCAGCAGCTTTACGACGAATGCAGAACCAACCGGTTGGGGTTGTGCGCCGTCATGTTGGACATGGATCACTTCAAGCACATCAACGACACCTACGGCCATCAGGTCGGGGACCAGGTCCTACGCCAGATGGGCGTGGTCATCAGCTCGTCGTTTCGGGCCACGGATATACACGGTCGGCTCGGTGGGGAAGAGTTCGCCATTCTGCTTCCGGATACGTCCATTGACGTCGCTATAGAAATTGCAGAAGGACTTATCCAGAGTATCGCTGGCTTGATGATCGAGCCTGTCCATCGCATCACCGCCAGCCTTGGCGTGGCGTCGACGGAGGCGAATCACAAGGATCTGCATGGCTTGATGAATAACGCTGATAAGGCGCTGTATCGGGCGAAAGCGCTGGGGCGTAACCAGGTTGCCGTCGCTCACTAGMDGPRSRNGMDFCIAGQVRTDRLQQLFRQSVSAVFGSYLAAIMLCWLCWDRFEHSTVVWWLAILSGSTLLRIAMFVAYFRSDEVQRTPQRWERRYWVSLVLSASIWGGGALVLMPQDDLLSQALVMLFTVGMTVSAVSCYSAYRDMTLVSIGLVLFPCTVWLLFQPSPIQVGMALSILVFAAFAARATHKMSQALETAFRLTREMEQANSISTRAAQTDELTGLKSRRAFFEHAQQLYDECRTNRLGLCAVMLDMDHFKHINDTYGHQVGDQVLRQMGVVISSSFRATDIHGRLGGEEFAILLPDTSIDVAIEIAEGLIQSIAGLMIEPVHRITASLGVASTEANHKDLHGLMNNADKALYRAKALGRNQVAVAHPGPT0026005_108DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-c-di-GMP_SIGNALLING_PATHWAY,PGPT0026005-roeA-K21022NANA
D1-35_02828288hypothetical proteinATGTCGAAATCTACAACGAATCCGCCTGAGGCGGACCGCACCTCCTCGCCACCAGAACCGAAAGATGCTCTCCAATCCGCTCAACTCTTCACCGTCGTACAAGACACCGACAACGAATGCCTGCTCGCCAACCTCAGCGAAACCCTGGCTTCAGCCGACGCCATGGTCAGCAACCTCGCGTTCGATCTGGAAGGCTCACACCGCCACATCGCCCTCGGCGTCCAGCAACTGATCGAGCTGAGCTCATTACTGGCGAACCGAGTTCTGGACAACGTTGATCCAAGATAAMSKSTTNPPEADRTSSPPEPKDALQSAQLFTVVQDTDNECLLANLSETLASADAMVSNLAFDLEGSHRHIALGVQQLIELSSLLANRVLDNVDPRNANANANANA
D1-35_02829375hypothetical proteinGTGATCAAGTCTTTGTTGGTTGGGGCATTGCTGGCAATGGCATCAGCATCGGCGTCTGCGATGAGTTGCGATAACCCTAGAAACGCCTATGACAGAACCTATTGCGCGTCGCTGAAAATGGTTCAGTCGGACCAGGAAATCAACGAGCAATACAAGAAGACGATGAGTGCCCTGAACCCGGATCAAAAGAAGAAGGTGAAAGCCGCTCAGATCCAGTGGATCAAGATTCGTGACAACGCCTGTTCCAACGACGGCCTGCTCTACCTGGACTGTGCCAATGAGAAGACCGAGGCGCGTATCGTCATACTCAAGGCTGTCGAGCGCGAGTGCCGCGCTGCCGGTTGCGACGACGCCAAACTGTCGCAAGTCGAGTAAMIKSLLVGALLAMASASASAMSCDNPRNAYDRTYCASLKMVQSDQEINEQYKKTMSALNPDQKKKVKAAQIQWIKIRDNACSNDGLLYLDCANEKTEARIVILKAVERECRAAGCDDAKLSQVENANANANANA
D1-35_02830768yfcA_1COG0730putative membrane transporter protein YfcAATGCAAATTGAATACGCCATGGGCGCGTTGGGATTTTTTGCTTTTTGCGGGGGGATGATCGATGCTGCTGTAGGGGGCGGAGGTTTGGTTCAGGTACCCGCTCTACTTCATGCATTACCTCAGCACTCGCTGAGCACAGTTTTTGGAACTAATAAGCTCGCTGTACTTGCAGGAAATGTTTCTTCTATATTTAGTTACGTTAAAAGAATAAAGATCGTCTGGAAGCTGATGCTTCCAACCATGCTCTCGGCTTTTTTATTTTCGTTTTTGGGTGCTTTTTCCGTCTCGCTCGTTCCGAAGGCGATCATGGAATATTTTGTGTTTTTTGTATTGGTGGTAATGGCTGTTTATACATTTGCAAAAAAGGATCTGGGGCTTGTTCACTCGGACGCTCAATGCGGATCCAAAGAAGTGCTCCTTGGGGTTTTTTTTGGCGGCATAATTGGATTTTATGACGGAGTTTTTGGACCCGGCAGTGGTAGTTTTTTGTTATTTGTTTTCGTTAAATATTTTGGCTACGATTTTCTGAATGCATCCGCTTCAGCAAAACTGGTTAATCTGGGAACGTTTAGCGCGGCGCTGCTATTTTTCATTCCTTCAGGTCATGTGCTGTGGGTAATTGGTGGACTGGTCGCGGTGTGTAATATGGCGGGTGCGCTGACAGGCACTTTTTTGGCTTTGCGCTATGGGAGTGGATTAATTCGTATCTTGTTTCTCTTTTTATTGGTTTTCCTTATTGGCCGAATGGGATTGTCCATATGGCTGTGAMQIEYAMGALGFFAFCGGMIDAAVGGGGLVQVPALLHALPQHSLSTVFGTNKLAVLAGNVSSIFSYVKRIKIVWKLMLPTMLSAFLFSFLGAFSVSLVPKAIMEYFVFFVLVVMAVYTFAKKDLGLVHSDAQCGSKEVLLGVFFGGIIGFYDGVFGPGSGSFLLFVFVKYFGYDFLNASASAKLVNLGTFSAALLFFIPSGHVLWVIGGLVAVCNMAGALTGTFLALRYGSGLIRILFLFLLVFLIGRMGLSIWLNANANANANA
D1-35_02831771metQ_1COG1464putative D-methionine-binding lipoprotein MetQATGAAAAAACTACTGGTCGCCTTCGCTGCCGCCGCAGCGTTCTCCGCACACGCCGACACCCTGACCGTCGCGGCCACGCCGGTTCCTCACGCGGAAATCCTCGAGTTCGTCAAACCGGCATTGGCGAAGGAAGGCGTGGACCTCAAGGTCAAGGTCTTCACCGACTACGTCCAGCCCAACGTACAAGTCGCCGAAAAGCGCCTGGACGCCAACTTCTTCCAGCACCAGCCGTACCTGGATGAGTTCAACAAGGCCAAGGGCACGAATCTGGTGAGCGTAACCGGTGTGCACCTGGAACCCCTGGGCGCGTACTCCAGCAAGTACAAGGCACTTACAGAACTGCCAGGCGGCGCCAATGTCGTGATCCCGAACGATGCTACCAATGGCGGCCGTGCGCTGTTATTGCTGGCCAAAGCAGGGCTGATCAAGCTCAAGGACTCGAACAACATCCTGTCGACTACCAAAGACATCACCGAGAATTCGAAGGATCTGAAGTTCCGTGAGCTGGAAGCGGCAACCATTCCGCGCGTGCTGACTCAAGTGGATCTGGCATTGATCAATACCAACTATGCGTTGGAGGCCAAGCTTGACCCTTCCAAGGATGCGCTGGTGATCGAAGGCAACGACTCGCCTTATGTGAATATTCTGGTAGCCCGTCCGGACGACAAGGACAGCGAGGCCATGAAGAAGCTGGTTGCAGCGCTGCATACGCCGGAAGTTAAGGCGTTTATTCTGGAGAAATACAAAGGCGCGGTTTTACCGGCGTTTTGAMKKLLVAFAAAAAFSAHADTLTVAATPVPHAEILEFVKPALAKEGVDLKVKVFTDYVQPNVQVAEKRLDANFFQHQPYLDEFNKAKGTNLVSVTGVHLEPLGAYSSKYKALTELPGGANVVIPNDATNGGRALLLLAKAGLIKLKDSNNILSTTKDITENSKDLKFRELEAATIPRVLTQVDLALINTNYALEAKLDPSKDALVIEGNDSPYVNILVARPDDKDSEAMKKLVAALHTPEVKAFILEKYKGAVLPAFPGPT0020510_5710DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020510-metQ-K02073NANA
D1-35_02832663metPCOG2011Methionine import system permease protein MetPATGGAATTTTTTGCAAACATCGACTGGCTGGAAATCTGGCTGGCAACCGGCGACACCTTCCTGATGCTGTTCGGTTCGCTGCTGTTCACCGTACTGCTCGGCCTGCCGCTGGGCGTGTTGCTGTTTCTCTGCAGCCCGCGCCAATTGCTTGAAGCCCGGGGCCTCTACGCGCTGCTGTCGCTGATGGTGAACATCCTGCGTTCGCTGCCATTCATCATCCTGTTGATCGTGATGATCCCGTTCACGGTGTTGATCACCGGCACGTCGTTGGGCGTGGCCGGCGCGATCCCGCCACTGGTGGTCGGTGCGACGCCGTTCTTCGCCCGCTTGGTGGAAACCGCCCTGCGCGAAGTCGATCGCGGCATCATCGAAGCGACCCAGGCCATGGGCGCTACCACGCGACAGATCATCGTCAACGCATTGCTGCCGGAAGCCCGTCCGGGCATTTTCGCAGCGATTACGGTGACAGCGATTACTTTGGTGTCCTACACGGCCATGGCCGGTGTGGTCGGCGCTGGTGGCCTGGGCGACCTGGCGATCCGCTTCGGCTACCAGCGTTTCCAGACCGACGTGATGGTGGTCACGGTGGTGTTGCTGCTGGTGCTGGTCCAGGTCCTGCAAACCGTGGGCGACAAACTGGTTGTGCATTTCTCTAGAAAATAAMEFFANIDWLEIWLATGDTFLMLFGSLLFTVLLGLPLGVLLFLCSPRQLLEARGLYALLSLMVNILRSLPFIILLIVMIPFTVLITGTSLGVAGAIPPLVVGATPFFARLVETALREVDRGIIEATQAMGATTRQIIVNALLPEARPGIFAAITVTAITLVSYTAMAGVVGAGGLGDLAIRFGYQRFQTDVMVVTVVLLLVLVQVLQTVGDKLVVHFSRKPGPT0020515_1205DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020515-metI-K02072NANA
D1-35_028331008metN_1COG1135Methionine import ATP-binding protein MetNGTGATCGAGTTTCAAAACGTCCATAAAACCTACCGGGTTGCCGGTAGGGATATCCCCGCGCTGCACCCGACCAGTCTGACCATCCAGAACGGTCAGGTCTTCGGCCTGATCGGTCATTCCGGTGCGGGAAAAAGTACCCTGCTGCGCCTGATCAATCGCCTGGAAGATTCCAGCGGCGGCAAGATCATCGTCGACGGCGAAGAAGTCACCGCCCTGGACGCCAACGGCCTGCGCCGTTTTCGCCAGCAGGTCGGGATGATTTTCCAGCACTTCAATCTGCTCGCGTCCAAGACCGTGGCCGACAACGTGGCCATGCCACTGACGCTGGCGGGCGAACTGTCCCGCAGCGATATCGACCGCCGCGTCGCCGAATTGCTGGCGCGGGTAGGGCTGTCCGACCACGCCCGCAAATACCCGGCGCAGTTGTCCGGCGGCCAGAAGCAGCGCGTCGGCATCGCCCGCGCCCTGGCAACCAAGCCGAAGATCCTGTTGTGCGACGAAGCCACCAGCGCGCTCGACCCACAGACCACCGCCTCGGTGCTGCAACTGCTGGCGGAGATCAACCGTGAGCTGAAGCTGACCATCGTGCTGATCACCCATGAAATGGATGTGATCCGGCGTGTCTGCGATGAGGTCGCGGTGATGGACGCCGGGGTGATCGTCGAGCAAGGCCCGGTGGCCGAGGTGTTCCTGCACCCCAAGCATCCGACCACCAAGCGTTTCGTCCAGGAAGACGAGCAGATCGACGAAAGCGAACAGCGCGACGACTTCGCTCACGTCCCAGGGCGCATCGTGCGTCTGACATTCCAGGGCGAAGCGACCTACGCGCCGTTACTTGGAACCGTCGCCCGCGAAACCGGTGTGGACTACAGCATCCTGGCCGGTCGTATCGACCGCATCAAAGACACCCCCTACGGGCAACTGACCCTCGCCATCACCGGCGGTGACATGGAAGCGGCCTTCGCCCGCTTCACCGCGGCCGATGTCCACATGGAGGTGCTGCGCTGAMIEFQNVHKTYRVAGRDIPALHPTSLTIQNGQVFGLIGHSGAGKSTLLRLINRLEDSSGGKIIVDGEEVTALDANGLRRFRQQVGMIFQHFNLLASKTVADNVAMPLTLAGELSRSDIDRRVAELLARVGLSDHARKYPAQLSGGQKQRVGIARALATKPKILLCDEATSALDPQTTASVLQLLAEINRELKLTIVLITHEMDVIRRVCDEVAVMDAGVIVEQGPVAEVFLHPKHPTTKRFVQEDEQIDESEQRDDFAHVPGRIVRLTFQGEATYAPLLGTVARETGVDYSILAGRIDRIKDTPYGQLTLAITGGDMEAAFARFTAADVHMEVLRPGPT0020520_3428DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020520-metN-K02071NANA
D1-35_028342136katECOG0753Catalase HPIIATGAGCACTAAAAAACCTGCCGCCCCCAGCCAGATGGCCGGGACCGACACGCTGGATCGCAGCAATACCAACGCCAAGCTGGAGAGCCTCGAGCAGTTTCGCTCCGATGCCACCGAACAGGCCTTGCGCACCAACCAGGGCGTGAAGATCGCCGATAACCAGAACACCCTCCGCGTCGGGCCGCGTGGGCCGTCGTTGCTGGAAGACTTCATCATGCGTGAGAAAATCACGCATTTTGACCATGAACGTATTCCCGAGCGCATCGTTCACGCCCGAGGGACCGGTGCCCATGGCTATTTTCAGGCCTACGAATCGCATGCGGCCTTGACCAAGGCCGGTTTCCTGCAGGACCCAGGTAAAAAGACGCCAGTGTTTGTACGTTTTTCCACCGTGCAGGGCCCACGGGGTTCCGGTGACACGGTGCGGGACGTGCGCGGCTTTGCAGTGAAATTCTTCACCGACGAAGGCAACTTCGATCTGGTGGGCAACAACATGCCGGTGTTCTTCATCCAGGATGCGGTGAAGTTTCCGGATTTCGTCCATGCGGTGAAACCCGAGCCCCATAACGAAATCCCCACCGGCGGATCGGCCCACGACACCTTCTGGGACTTTGTCTCGCTGGTACCGGAGTCGGCTCATATGGTGATCTGGGCGATGTCCGACCGGGCAATTCCGAAAAGCCTGCGCTCCATGCAGGGTTTCGGCGTGCACAGCTTCCGCATGATCAACGCCGAAGGCCGCAGCAGCTTCGTCAAGTTCCACTGGCGGCCCAAGGCCGGGACGTGTTCCCTGGTATGGGACGAAGCCCAGAAGCTCGCGGGCAAGGACACTGATTACCACCGTCGCGATCTCTGGGAGTCGATCGAGATGGGCGACTACCCCGAATGGGAATTTGGCGTACAGATCGTCGCCGAGGAGGACGAGCACAAGTTCGACTTCGACCTGCTCGACCCGACCAAGATCATCCCCGAAGAGCTGGTGCCCATCACGCCGCTGGGCAAGATGGTGTTGAACCGCAACCCGGACAACTTCTTCGCCGAAGTCGAGCAGGTTGCCTTCTGCCCCGGACATATCGTGCCGGGCATTGATTTCAGTAACGACCCGTTGCTGCAAGGCCGGCTGTTTTCCTACACCGATACGCAGATCAGCCGACTTGGTGGGCCGAACTTTCACGAGTTGCCGATCAACCGCGCCATCACCCCGGTGCACAACGGCCAGCGTGATGCCATGCACCGCACCACTATCGACAAGGGGCGCGCGTCCTACGAGCCGAACTCCATCGATGGCGGCTGGCCGAAGGAAACCCCGCCCGGTCCGCAGGATGGTGGTTTCGAAAGTTATCCGGAGCGCATCGACGCCCACAAGATCCGCCAGCGCAGCGATTCGTTCGGCGATCATTTCTCCCAGGCGCGGTTGTTCTACAAGAGCATGAGCCCCCACGAGCAAGAGCACATCATCGCGGCGTACAGCTTCGAACTGGGCAAAGTGGAACGCGAGTTCATCAGGGCGCGGCAGGTGAACGAGATTCTCGCCAACATCGATCTGGAACTGGCCGGGCGAGTTGCGAAGAACCTCGGCTTGCCGGCTCCCACTGCCGGTACGGTCGATGTTCCGACGCCTTCCCTGGAGCAGTCCCCGGCGTTGAGCCAGGCCAATCTGCTGTCCGGCGACATCAAGACCCGCAAGGTCGCGGTGTTGGTGGCCAATGGCGTCGAGGGGACAATCATTGATGCGCTCAAGCAGGCACTGGAAGCCGAAGGGGCCCACGCGAAAATCCTCGGCCCAACCTCCGCGCCGGTGACCACCGCTGCTGGGCAAACGCTGCCGGTGGATGCGTCCATGGAAGGCTTGCCGTCGATTGCCTTTGACGCGGTGTTCGTGCCGGGCGGGGTGGAGTCGATCAAGGCGCTGAGCGCCGATGGCGTGGCGTTGCATTACCTGTTGGAGGCCTACAAGCACCTGAAGGCCATCGCGCTGCATGGCGAAGCGCGACAGTTGCTGGTGTTGTTGAAGCTGGAGGCGGATGCGGGGCTGATTCCGGACGCTGATGCGGGCAAGTTCCAGGCGTTTTTTGACGCGATTGCCCAGCATCGGGTTTGGGCGCGGGAGCCTAAGGCCAAGGCTATTCCAGCCTGAMSTKKPAAPSQMAGTDTLDRSNTNAKLESLEQFRSDATEQALRTNQGVKIADNQNTLRVGPRGPSLLEDFIMREKITHFDHERIPERIVHARGTGAHGYFQAYESHAALTKAGFLQDPGKKTPVFVRFSTVQGPRGSGDTVRDVRGFAVKFFTDEGNFDLVGNNMPVFFIQDAVKFPDFVHAVKPEPHNEIPTGGSAHDTFWDFVSLVPESAHMVIWAMSDRAIPKSLRSMQGFGVHSFRMINAEGRSSFVKFHWRPKAGTCSLVWDEAQKLAGKDTDYHRRDLWESIEMGDYPEWEFGVQIVAEEDEHKFDFDLLDPTKIIPEELVPITPLGKMVLNRNPDNFFAEVEQVAFCPGHIVPGIDFSNDPLLQGRLFSYTDTQISRLGGPNFHELPINRAITPVHNGQRDAMHRTTIDKGRASYEPNSIDGGWPKETPPGPQDGGFESYPERIDAHKIRQRSDSFGDHFSQARLFYKSMSPHEQEHIIAAYSFELGKVEREFIRARQVNEILANIDLELAGRVAKNLGLPAPTAGTVDVPTPSLEQSPALSQANLLSGDIKTRKVAVLVANGVEGTIIDALKQALEAEGAHAKILGPTSAPVTTAAGQTLPVDASMEGLPSIAFDAVFVPGGVESIKALSADGVALHYLLEAYKHLKAIALHGEARQLLVLLKLEADAGLIPDADAGKFQAFFDAIAQHRVWAREPKAKAIPAPGPT0014380_852DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0014380-katE|CAT|catB|srpA-K03781NANA
D1-35_02835714hypothetical proteinATGAAGCCGTTCGCCTCCCGTTATCTGCTCCTTGTCGCGTTTTCCCTGCTGCTGGGCGCCTGCCAGAGCACGCCGCCGACCGTCGAAACCCCGGACACCCGGGGCCCGGCCATCGCGCAGCTCGAACAGAGCCTGGCCAGCAATGAACTGGCCACCGCAGAAGGTCAGCTGGCCGCGTTGCAAGCCCAGACGCCTGAAGATCCGTCGCTGGAGCCTTACCAGCGGCAACTGGCCGAGGCGTACTTGCGCCGCAGCCAGATCGACCTGCAAAAGGGCGATGTAAACGCGGCCGCCACCGCCCTGAGCCGGGCTCGCGCGCTGATGCCAAAAGCGCCGGCACTTACCGGCGAAGTGAACAGTGCGATCGCCCAGGCCCGCAAGGCCGAGCTGGAAAAAGCCGAAGCCGCCCTCCAGGCCGCCGAAGCCAAGCCAGTTGCAAAGGTGATCGACCCGAGTGCGCAGAGCACCACGGTTGCGCTGAATATCGGCGATATCCAGAAAATGCGTCATCAATTGGACGCTATCGCCGCCGATGTGGTGAATTACCAGTGCGACGTCAGCATCCAGGCCCCGCGCACCGATGATTACCCTTGGTTGGCGACATTGCTGACCAAGCGGGTCAAGAAACTCGATCCCGGGTTTGATCTGAAACTGCAGAAGCAGATCTTGCGTAGCGTGCCGGCGCAAGTGGTTCTGACTCCGCGTAAGCTCTGAMKPFASRYLLLVAFSLLLGACQSTPPTVETPDTRGPAIAQLEQSLASNELATAEGQLAALQAQTPEDPSLEPYQRQLAEAYLRRSQIDLQKGDVNAAATALSRARALMPKAPALTGEVNSAIAQARKAELEKAEAALQAAEAKPVAKVIDPSAQSTTVALNIGDIQKMRHQLDAIAADVVNYQCDVSIQAPRTDDYPWLATLLTKRVKKLDPGFDLKLQKQILRSVPAQVVLTPRKLNANANANANA
D1-35_02836789znuB_2COG1108High-affinity zinc uptake system membrane protein ZnuBATGGCTGATTTTCTGTTGTACGCCCTGCTTGCAGGTTTGGCGCTGGCGCTGGTGGCCGGCCCCTTGGGCTCGTTCGTGGTCTGGCGGCGCATGGCCTATTTCGGCGACACCTTGTCCCACGCGGCGCTGCTCGGCGTGGCCATGGGGTTTCTGCTGGACGTCAGCCCCGCCATCGCGGTGACCGTGGGTTGCCTGCTGCTCGCAGTGGTGCTGGTGACCTTGCAACAGCGCCAGCCGCTGGCGTCCGACACCCTGCTGGGCATCCTGGCTCCCAGCACGCTGTCCCTCGGGCTGGTGGTGCTCAGCTTCATGCGCGACGTGCGGATCGATCTGATGGCCTATCTGTTCGGCGATCTGCTGGCGATCAGTCCGATGGACCTGGCCTGGATCCTCGGCGGTAGCGCGGCGGTATTGCTGTTGCTCGTGGCGCTGTGGCGTCCGTTGCTGGCGGTTACCGTCCATGAGGAACTGGCACGGGTCGAGGGCCTGCCCGTGGTGGGCCTGCGATTGGCGCTGATGCTGTTGATCGCAGTGGTGATTGCCGTGGCGATGAAGATCGTCGGTGTATTGCTGATTACTTCATTGCTGATCATTCCGGCGGCTGCGGCACAGCGTCACGCCCGCTCACCGGAGCAGATGGCCTTGGGCGCAAGCCTGCTGGGCATGCTCGCGGTGTGTGGCGGGCTGGCGTTGTCGTGGTTCAAGGACACTCCGGCCGGACCGTCGATCGTGGTCAGCGCGGCGGCGTTGTTTCTGCTGAGTTTTGTCCTGCCCCGTCGAGGGGTGTAGMADFLLYALLAGLALALVAGPLGSFVVWRRMAYFGDTLSHAALLGVAMGFLLDVSPAIAVTVGCLLLAVVLVTLQQRQPLASDTLLGILAPSTLSLGLVVLSFMRDVRIDLMAYLFGDLLAISPMDLAWILGGSAAVLLLLVALWRPLLAVTVHEELARVEGLPVVGLRLALMLLIAVVIAVAMKIVGVLLITSLLIIPAAAAQRHARSPEQMALGASLLGMLAVCGGLALSWFKDTPAGPSIVVSAAALFLLSFVLPRRGVPGPT0004225_2332DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ZINK_RESISTANCEZINK_RESISTANCE-ZNU_TRANSPORT_SYSTEM,PGPT0004225-znuB-K09816NANA
D1-35_02837783znuCCOG1121Zinc import ATP-binding protein ZnuCATGAGCAACGCGTTGATCCGCCTCGAACAGGTGGCCGTGACGTTCGCCGGGCAGAGCGTGCTGGACAACATTCACCTGAGCGTCGAACCGGGGCAGATCGTCACCCTGATCGGCCCCAACGGCGCCGGCAAGACCACCCTCGTGCGCGCCGTGCTGGGCCTGCTCAAGCCGGACAGCGGCAGCGTCTGGCGCAAGCCCCGGCTGCGTGTCGGCTACATGCCGCAGAAACTCCACGTCGACCCGACCTTGCCGCTGTCCGTGCTGCGCTTTCTGCGCCTGGTGCCGGGCGTCGACCGCGAGCGAGCCTTGGCGGCGCTGAAGGAAGTCGGCGCCGAGCAAGTGATCGACAGCCCGGTGCAGAGTGTGTCCGGCGGCGAGATGCAGCGTGTATTGCTCGCTCGCGCCCTCTTGCGCGAGCCCGAGCTGCTGGTGCTCGACGAGCCCGTGCAAGGCGTCGATGTGGCGGGACAGGCCGAGCTTTACAGCTTGATCACCCGCCTGCGCGACCGCCACGGCTGCGGGGTATTGATGGTGTCGCACGACCTTCACCTGGTGATGAGCACCACCGACCAGGTGGTCTGTCTCAACCGTCACGTCTGCTGCTCCGGGCATCCCGAGCAAGTCAGTGGCGATCCGGCCTTTGTCGAATTGTTCGGAAAAAACGCACAAAGCCTGGCGATTTATCACCACCATCATGACCATTCCCATGACCTGCACGGTTCGGTGGTCAACGCTCCTTCTGCTTCCAATCATGTTCATGGAGACGGCTGCAAGCATGGCTGAMSNALIRLEQVAVTFAGQSVLDNIHLSVEPGQIVTLIGPNGAGKTTLVRAVLGLLKPDSGSVWRKPRLRVGYMPQKLHVDPTLPLSVLRFLRLVPGVDRERALAALKEVGAEQVIDSPVQSVSGGEMQRVLLARALLREPELLVLDEPVQGVDVAGQAELYSLITRLRDRHGCGVLMVSHDLHLVMSTTDQVVCLNRHVCCSGHPEQVSGDPAFVELFGKNAQSLAIYHHHHDHSHDLHGSVVNAPSASNHVHGDGCKHGPGPT0004230_795DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ZINK_RESISTANCEZINK_RESISTANCE-ZNU_TRANSPORT_SYSTEM,PGPT0004230-znuC-K09817NANA
D1-35_02838483zurCOG0735Zinc uptake regulation proteinATGCCCATTACCCCCCTTGCCAGTCGTCCCCATGATCACTCCCATTGCGTGCACAGCGCGCTGTCCGAGGCCGACGCCATTTGCGCGCGCCAGGGCCTGCGGCTGACCGCCTTGCGTCGGCGAGTGCTGGAGCTGGTCTGGCAAAGCCACAAGCCGCTGGGTGCCTACGACATCCTCGCGGTACTCAGCGAGCAGGACGGCCGCCGTGCCGCGCCGCCGACAGTCTACCGGGCGCTGGATTTCCTGCTGGAAAACGGCCTGGTACATCGCATTTCTTCGCTGAACGCCTTCGTTGGCTGCAACCATCCGGAGCACGCCCACCAAGGCCAGTTCCTGATCTGCCGCGAATGTCATGCGGCCATCGAGCTGGAACAGAAGTCCATCAGCGACGCGATCGTCGCCAGCGCCAAGGACGTCGGCTTCGTTGTCGACACCCAGACCGTCGAAGTGGTCGGCCTGTGCTCCGGTTGCCAGGGGGCCTGAMPITPLASRPHDHSHCVHSALSEADAICARQGLRLTALRRRVLELVWQSHKPLGAYDILAVLSEQDGRRAAPPTVYRALDFLLENGLVHRISSLNAFVGCNHPEHAHQGQFLICRECHAAIELEQKSISDAIVASAKDVGFVVDTQTVEVVGLCSGCQGAPGPT0003905_802DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTUDRUG_RELATED_REGULATION,PGPT0003905-zur-K09823NANA
D1-35_02839933znuACOG4531High-affinity zinc uptake system protein ZnuAGTGTCCCGAATTTTTTCGCTCTTTGTCGCTTTTGTCGCAACATTTCTGCTGATTGGCCCGGCCCGGGCCGACGTCAAGGTGCTAACCAGCATCAAGCCGCTGCAACTGATTGCCGCCGCGGTGCAGGACGGCGTGGCCGTTCCGGAAGTGCTGTTGCCCCCTGGTGCCTCGCCTCACCACTATGCGCTGCGTCCATCCGACGTACGGAAGGTGCAATCGGTGGACCTGCTTTACTGGATCGGCCCAGACATGGAAGGTTTCCTGCCGCGTGTGTTGAATGGTCGTACGCAGCCTTCCGTCGCCGTGCAGGATCTGCCGGGGCTCAAGTTGCGTCATTTCGCCCAGGACAGCGCGTCCCACGAGGACGAGGACGAGAAGCATGCCGACGAACATGACCACGACCATCGTCCCGGCACCGTGGATGCCCACTTGTGGCTGTCGCCGCTGAACGCCCGGGTGATCGCCGCCAGAATGGCTGCCGACCTGAGCGCGGCGGATCCGGCGAACGCGGCCCGCTATGACAGCAACCTCAAGGCTTTCAACCAGCGCCTCGATGCATTGGACGTACGCCTCAAGGCGCGTCTGGCCGGGGTCGCAGGCAAGCCGTATTTTGTGTTCCACGAAGCGTTCGACTATTTCGAGGACAACTACGGCCTCAAGCATGCCGGGGTTTTCGCCGTGGCCGCCGAGGTCCAGCCCGGTGCCCAGCACGTGGCGGCGATGCGCACGCGCTTGCAGGCGGTGGGCAAGACCTGCGTTTTCAGCGAACCGCCGCTGCGTCCGCGCCTGGCCGAGACGCTGGTGGCCGGGCTGCCGGTGAAGCTGGCCGAACTGGATGCGCTGGGCGGCTACACCCCGGCAACGGCACAAGGGTATGAGCAATTGCTGGAAAAGTTGGGGAATGATCTGGCGGGGTGCCTGGAGTCGTTGTAAMSRIFSLFVAFVATFLLIGPARADVKVLTSIKPLQLIAAAVQDGVAVPEVLLPPGASPHHYALRPSDVRKVQSVDLLYWIGPDMEGFLPRVLNGRTQPSVAVQDLPGLKLRHFAQDSASHEDEDEKHADEHDHDHRPGTVDAHLWLSPLNARVIAARMAADLSAADPANAARYDSNLKAFNQRLDALDVRLKARLAGVAGKPYFVFHEAFDYFEDNYGLKHAGVFAVAAEVQPGAQHVAAMRTRLQAVGKTCVFSEPPLRPRLAETLVAGLPVKLAELDALGGYTPATAQGYEQLLEKLGNDLAGCLESLPGPT0004220_2127DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINROOT_COLONIZATION-ZINK_TRANSPORT_LIPOPROTEIN,PGPT0004220-znuA-K09815NANA
D1-35_02840951thrBCOG2334Homoserine kinaseATGTCTGTGTTCACGCCCCTGGCTCGGCCCGAGCTGGAAACCTTTCTTGCCCCTTACGGGCTCGGCCGCCTGCTTGATTTCCAGGGGATCGCCGCCGGCAGCGAAAACACCAATTTTTTCATCAGCCTGGAACAGGGCGAGTTCGTCCTGACGCTGGTCGAGCGCGGCCCGGTGCAGGAGATGCCGTTCTTCATCGAACTGCTGGACGTGCTGCACGGCGCCAATTTGCCGGTGCCTTACGCCTTGCGCACCACCGAGGGGGTCGCACTGAGGGAACTGGCCGGCAAACCGGCGCTGCTGCAACCGCGCCTGGCCGGCAAGCACGTCAAGCAGGCCAACGCCCAGCATTGCGCCCAGGTTGGTGAATTACTTGCGCACCTGCACCTGGCGACCCGCGACAACATGATCAAGCGCAAGACCGACCGTGGCCTGGACTGGATGCAGGAGGAGGGCGCCACGCTGTTGTCACACCTCGACGCCGATGCCCGTCAGTTGCTGGAGGCGGCACTGGACGAAATCACCGTGCAGAAAATCGGCATCCTCGCGCTGCCCCGCGCCAACATCCATGCCGACCTGTTCCGCGACAACGCGATGTTCGAAGGCACCCACCTGACCGGGTTGATCGACTTCTACAACGCCTGTTCCGGGCCGATGCTGTATGACGTCGCCATTGCACTGAATGACTGGTGTTCGGATGACGAAGGCATGCTCGATGGCCCGCGGGCGCGAGCGTTGCTTGGCGCTTATGCGGCGCTGCGGCCGTTCACATCCGCCGAGGCGCAACTATGGCCGACCATGCTGCGCGTGGCGTGCGTGCGGTTCTGGCTGTCGCGGCTGATTGCCGCCGAATCGTTCGCCGGGCAGGATGTGTTGATTCATGATCCGAAGGAATTTCAGCGGCGGCTGGCGCAGCGGCAGAAGGTCAGCACGCTGTTGCCGTTCGCCCTGTAAMSVFTPLARPELETFLAPYGLGRLLDFQGIAAGSENTNFFISLEQGEFVLTLVERGPVQEMPFFIELLDVLHGANLPVPYALRTTEGVALRELAGKPALLQPRLAGKHVKQANAQHCAQVGELLAHLHLATRDNMIKRKTDRGLDWMQEEGATLLSHLDADARQLLEAALDEITVQKIGILALPRANIHADLFRDNAMFEGTHLTGLIDFYNACSGPMLYDVAIALNDWCSDDEGMLDGPRARALLGAYAALRPFTSAEAQLWPTMLRVACVRFWLSRLIAAESFAGQDVLIHDPKEFQRRLAQRQKVSTLLPFALPGPT0020285_1075DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_SERINE_DEGRADATION,PGPT0020285-thrB2-K02204NANA
D1-35_02841288hypothetical proteinATGCGTACACTAAATCGCCTGTTACTGGCTGGCTTGTTTGCATTCACACCGTTGGCCGTCATGGCGGCGGATGACGCTCCTTCGGCGGACCCGGATGTCACCATCCGCACCGAAGGCGACAGAACCATTCAGGAATATCGGCAAAACGGCTTTTTGTATGCGATCAAGGTCACGCCCAAGAACGGCAAGCCTTATTTCCTGGTACGCGCCGACGGCACTGATGCAAATTTCATTCGTTCGGACCAGCCGGATATGCTGATCCCTTCGTGGAAAATTTTTGAGTGGTGAMRTLNRLLLAGLFAFTPLAVMAADDAPSADPDVTIRTEGDRTIQEYRQNGFLYAIKVTPKNGKPYFLVRADGTDANFIRSDQPDMLIPSWKIFEWNANANANANA
D1-35_028422769polACOG0258DNA polymerase IATGAGCCAAGCCCCCCTCGTCCTGGTGGACGGTTCTTCTTATCTGTACCGCGCCTTTCACGCGCTGCCACCGCTGACCACGTCCAAAGGCCTGCCGACCGGTGCGGTAAAGGGCGTGCTGAACATGCTCAAGAGCCTGCGCAAGCAGTATCCGGACAGCCCGTTCGCGGTGGTCTTCGACGCGAAGGGTGGGACGTTTCGCGATGCGTTGTACGCCGAATACAAGGCCAATCGCCCGAGCATGCCCGACGACATGCGCGTGCAGATCGAGCCGCTGCACGCCAGCGTAAAGGCCCTGGGCTTCCCCTTGTTGTGCGTGGACAACGTCGAAGCCGACGACGTGATCGGCACCCTGGCCCGCAGCAGCGCCGCGGCCGACCGCCCGGTGGTGATTTCCACCGGCGACAAGGACATGGCGCAGCTGGTCGATGGGCACATTACCTTGGTCAACACGATGACCGGTAGCTCACTGGACGTGGCTGGCGTGAAGGAGAAGTTTGGCGTCGCTCCGGAGCAGATCATCGATTATCTGGCATTGATGGGCGATTCGTCCGACAACATCCCGGGCGTTCCGGGCATCGGGCCGAAGACCGCATCCGGCCTGCTGGTGGGCGTCAACGGTGGCCTGACCGAGCTGTATGCGCAACTGGACATCGTTGCCACGCTGCCGATTCGCGGTGCCAAGACCTTGGCCGCCAAGCTGGAAGAGCACAAGGAAATGGCGTTTCTTTCCTACGAGCTGGCGACAATCAAGACCGACGTCCCCCTGGATATCGGCCTCGACGACTTGCAGATGGGCACGCCGGATCACGAAAAGCTCGCCGAGCTGTACACCCTGCTGGAATTCAAGAGCTGGTTCGAAGAAAACCAGCGCGACGCCAAGCGTGCCGGGCAGGAAATCGTTGAAATCGCTGATGAGCCGGCGGCGGGCGTCGAGAAGCGGTATGACCTTATCCTCGACCAGGCGAGCTTCGACGCCTGGCTGGCCAAGCTTGAAAAGGCGCCGCTGTTTTCCCTGGTCACGCAAACCAACGGTGGCGACGCCCAGCACTCGCAACTGGTGGGGTTGTCATTCGCGGTTGCGCCGTTTGAAGCGGCTTACGTGCCGCTGACGCATTCCTACATGGGCGTGCCGGAGCAACTGGACCGCGACACCGTGCTCAAGGCGCTCAAGCCATTGCTGGAAAACCCGGACAAGCTCAAGGTCGGCCAGCATGCCAAATTTGAAATCAACATCCTGGCCAATTGCGCTATCGGTGGTGATCAGAACAACGGCATCCTGGTGCAGGGCATCGCTTTCGACACCATGCTTGAATCCTATGTGCTCGATTCCACGGCAACTCGTCACGACATGGACAGCCTGGCGCTGAAATACCTTGGGCAAAGCAAGACCGATATCCAGGATATTGCCGGCAAAGGCGTCAAGCAGCTGAGTTTCGATCAGATCTCCCTCGAACTTGCCGGCCCATACGCCGCTGAGGATGCTGACGTGACCTTCCGCCTGCACCAGGCCTTGCAGGAAAAACTCGCCGTCACGCCAAGCCTGGGCAAGGTGCTCAACGAGATCGAAATGCCGTTGATGCCGGTCCTGGCGCGTATCGAGCGCCAAGGGGCGTTGGTCGATGCCAACCTGCTGGGCGTCCAGAGTGTCGAGCTGGGCGAGAAGCTGGTTGCACTGGAGCGTGAGGCATTTGCCATCGCCGGTGAGGAATTCAACCTCGGCTCACCGAAGCAACTGGGCGTGATCCTTTACGAAAAACTCGGTTTGCCGGTGCTCAGCAAAACCGCCAAGGGCCAGGCATCGACTGCCGAAGCGGTGCTCGCCGAACTGGCCGAGCAGGATTATCCGCTGCCCAAGGTGCTGATGCAGTACCGCTCGCTGAGCAAGCTCAAGAGCACTTACACCGATCGCCTGCCGGAGCAGATCAACAGCCGCACCGGGCGCATTCATACGTCTTATCAACAGGCTGTGGCCGCCACCGGACGTCTTTCATCCATTGACCCGAACCTGCAGAACATCCCGATCCGCACCGCCGAAGGGCGGCGGATTCGCCAGGCATTCGTCGCGCCGAAAGGCTACAAGCTGCTGGCGGCGGACTACTCGCAGATCGAATTGCGGATCATGGCCCACCTGGCCAAGGACGCAGGGCTGCTCCATGCGTTTCGCAACGACCTGGACGTGCACCGCGCCACCGCTGCCGAGGTATTCGGGGTCGAGCTGGACGCCGTCAGCCATGACCAGCGCCGTAGCGCCAAGGCGATCAACTTCGGCTTGATCTATGGCATGAGCGCGTTCGGCCTCGCCAAGCAGATCGGCGTCGATCGCAAGCAGTCCCAGGCTTACATCGACCGCTACTTCGCGCGCTACCCGGGGGTACTGGAATACATGGAGCGCACCCGCGCCCAGGCCGCCGAGCAAGGCTTCGTCGAGACCATCTTCGGGCGCCGGTTGTATCTGCCGGACATCAATGCGAAAAACCCTGCCCTGCGCAAAGGCGCCGAGCGCACCGCGATCAACGCGCCGATGCAGGGTACGGCCGCCGACATCATCAAGAAAGCCATGGTGGCCGTCGATGGCTGGCTGGCGACGTCAGGGCTCGATGCGAAAGTCATCCTGCAGGTGCACGACGAATTGGTGCTGGAGGTTCGTGAGGACCTGGTCGACCAGGTGAGCGCGGAAATCCGCCAGCACATGAGCGCCGCCGCCACGTTGGACGTGCCGCTGCTGGTGGAGGTTGGCGTGGGCAATAACTGGGACGAGGCGCACTGAMSQAPLVLVDGSSYLYRAFHALPPLTTSKGLPTGAVKGVLNMLKSLRKQYPDSPFAVVFDAKGGTFRDALYAEYKANRPSMPDDMRVQIEPLHASVKALGFPLLCVDNVEADDVIGTLARSSAAADRPVVISTGDKDMAQLVDGHITLVNTMTGSSLDVAGVKEKFGVAPEQIIDYLALMGDSSDNIPGVPGIGPKTASGLLVGVNGGLTELYAQLDIVATLPIRGAKTLAAKLEEHKEMAFLSYELATIKTDVPLDIGLDDLQMGTPDHEKLAELYTLLEFKSWFEENQRDAKRAGQEIVEIADEPAAGVEKRYDLILDQASFDAWLAKLEKAPLFSLVTQTNGGDAQHSQLVGLSFAVAPFEAAYVPLTHSYMGVPEQLDRDTVLKALKPLLENPDKLKVGQHAKFEINILANCAIGGDQNNGILVQGIAFDTMLESYVLDSTATRHDMDSLALKYLGQSKTDIQDIAGKGVKQLSFDQISLELAGPYAAEDADVTFRLHQALQEKLAVTPSLGKVLNEIEMPLMPVLARIERQGALVDANLLGVQSVELGEKLVALEREAFAIAGEEFNLGSPKQLGVILYEKLGLPVLSKTAKGQASTAEAVLAELAEQDYPLPKVLMQYRSLSKLKSTYTDRLPEQINSRTGRIHTSYQQAVAATGRLSSIDPNLQNIPIRTAEGRRIRQAFVAPKGYKLLAADYSQIELRIMAHLAKDAGLLHAFRNDLDVHRATAAEVFGVELDAVSHDQRRSAKAINFGLIYGMSAFGLAKQIGVDRKQSQAYIDRYFARYPGVLEYMERTRAQAAEQGFVETIFGRRLYLPDINAKNPALRKGAERTAINAPMQGTAADIIKKAMVAVDGWLATSGLDAKVILQVHDELVLEVREDLVDQVSAEIRQHMSAAATLDVPLLVEVGVGNNWDEAHNANANANANA
D1-35_02844642engBCOG0218putative GTP-binding protein EngBATGCAACTGAAAAACCCCATCCTCGGCCTGTGCCAACAGTCCACCTTCATGCTCAGCGCCGCCAAAGTCGATCAATGCCCTGACGACGAAGGCTTCGAAGTGGCCTTTGCCGGGCGTTCCAATGCCGGTAAATCCAGCGCGCTGAACACCCTGACCCATGCGAGCCTGGCACGCACCTCGAAAACCCCGGGCCGCACGCAACTCTTGAACTTCTTCAAGCTAGACGATGAACGCCGTTTGGTCGACCTGCCCGGTTATGGCTACGCCAAAGTGCCGATCCCGCTCAAGCAACATTGGCAGCGTCACCTGGAAGCCTACCTGGGCAGCCGCGAGAGTTTGAAAGGTCTGATCCTGATGATGGACATCCGCCATCCAATGACCGACTTCGACCTGCTGATGCTCGATTGGGCCGTTGCCAGCGGCATGCCGATGCACATCCTGTTGACCAAGGCCGACAAGCTCACCTACGGCGCAGCGAAAAACACCCTGCTCAAAGTGCAGTCGGAAATTCGCAAGGGCTGGGGCGACACGATCACCATCCAGCTGTTCTCCGCGCCCAAGCGCATGGGCCTTGAAGAGGCCTACACGGTGTTGGCGGACTGGATGGAATTAGCGGACAAGGGCAGCGAAGCGGCCGAGTAAMQLKNPILGLCQQSTFMLSAAKVDQCPDDEGFEVAFAGRSNAGKSSALNTLTHASLARTSKTPGRTQLLNFFKLDDERRLVDLPGYGYAKVPIPLKQHWQRHLEAYLGSRESLKGLILMMDIRHPMTDFDLLMLDWAVASGMPMHILLTKADKLTYGAAKNTLLKVQSEIRKGWGDTITIQLFSAPKRMGLEEAYTVLADWMELADKGSEAAEPGPT0003655_8DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003655-hemB-K01698NANA
D1-35_02845291hypothetical proteinATGACGAAATGGCTGCTAGCTGCCGGTGTCTTGATGCCGCTTTACAGCGCTCAGGCTACACAGGATCCGGAAGCTGTGTACAACCGTGTTTGTGGTGCCTGTCATTCCGGCCAACTACCCACGGCGCCCCGCAAGGGTGACCGCGAAGCCTGGACGCCGAGGTTGGCGAAAGGCATGGGGACGCTGGTGCAACACGTGACCCAGGGTTTCAAGGCGATGCCGCCGCGTGGTTTGTGCATGGACTGCAGTGCCGAGGATTACCAAGCCATCATCCAGTGGATGAGCGAGTAAMTKWLLAAGVLMPLYSAQATQDPEAVYNRVCGACHSGQLPTAPRKGDREAWTPRLAKGMGTLVQHVTQGFKAMPPRGLCMDCSAEDYQAIIQWMSENANANANANA
D1-35_02846612cc4COG2863Cytochrome c4ATGAACAAACTGATCGTGAGTCTGCTGTTGACCTTGGGGATATCCGGTGTAGCCCACGCCGCAGGCGATGCTGCCGCAGGCCAGGCGAAAGCCGCCGTGTGCGGAGCCTGCCACGGTCCGGATGGCAACAGCATGGCGCCCAACTTTCCGAAACTGGCCGGCCAGGGTGAGCGTTACCTGGTCAAGCAGTTGAAGGAAATCAAGGACGGCAAGCGTGTCGTGCTGGAAATGACCGGCCTGCTGAACAACCTGAGCGATCAAGACCTGGCGGACATCGCGGCCTACTTCGCCAGCCAGAAAGGCAGCGTCGGCGCCGCTGATCCAAAACTCGTGGCACGGGGTGAGGCGCTGTTCCGTGGCGGCAACCTGGCCAAGGGCCTGCCAGCCTGCACGGGCTGCCATTCGCCTGACGGCAAGGGCAACGCCGCCGCCGGCTTCCCGCATCTGGGTGGCCAGCACGCCCAGTACATCACCAAGCAGTTGACCGATTTCCGCAAGGAAGAAGGCGGTCGTGCCAACGACGGCGACGCGATGACCATGCGCACCATCGCCCGCAAGCTGAGCGACGAAGATATCGCGGCAGTCTCGAGCTACATCCAGGGCCTGCATTGAMNKLIVSLLLTLGISGVAHAAGDAAAGQAKAAVCGACHGPDGNSMAPNFPKLAGQGERYLVKQLKEIKDGKRVVLEMTGLLNNLSDQDLADIAAYFASQKGSVGAADPKLVARGEALFRGGNLAKGLPACTGCHSPDGKGNAAAGFPHLGGQHAQYITKQLTDFRKEEGGRANDGDAMTMRTIARKLSDEDIAAVSSYIQGLHNANANANANA
D1-35_02847642dsbACOG0526Thiol:disulfide interchange protein DsbAATGCGTAATCTGATCATCAGCGCCGCGCTCGTCGCCGCCAGCCTGTTCGGCGTGACTGCCCAAGCGGCTGAAAAGCCCGCTGCCCCTTATGTCGAATTGACCAACCCCGTTCCGGTGGCGGTGCCTGGCAAGATCGAGGTCGTGGAGCTGTTCTGGTACGGTTGCCCGCATTGCTATGCCTTTGAGCCGGTCATCAACCCATGGGTTGATAAGCTGCCTTCGGACGTGAATTTCGTGCGCATCCCAGCCATGTTCGGTGGCCCATGGGACGCCCACGGCCAGATGTTCCTGACTCTTGAAGCCATGGGCGTCGAGCATCAGGTTCACGCGGCGGTATTCAACGCGATTCAGAAAGAACACAAAAAACTGACCGACAAGAACGACATGGCCGACTTCCTCGCCACCCAAGGCGTCGACAAGGACAAGTTCCTGGCGACTTTCGACTCCTTCGCTATCAAAGGCCAGATCACCAAGGCCCGCGAATTGGCAAAGAAATACGAGATCACCGGCGTACCGACCATGGTCGTCAACGGCAAATACCGCTTTGACATCGGCTCCGCTGGCGGCGCGAACGAAGCGCTGCAACTGGCCGACCAGCTGATCGCCAAAGAGCGGGCGGCCACCAAGGCTGCTGCCAACTAAMRNLIISAALVAASLFGVTAQAAEKPAAPYVELTNPVPVAVPGKIEVVELFWYGCPHCYAFEPVINPWVDKLPSDVNFVRIPAMFGGPWDAHGQMFLTLEAMGVEHQVHAAVFNAIQKEHKKLTDKNDMADFLATQGVDKDKFLATFDSFAIKGQITKARELAKKYEITGVPTMVVNGKYRFDIGSAGGANEALQLADQLIAKERAATKAAANPGPT0015115_715DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015115-dsbA-K03673NANA
D1-35_02848879hypothetical proteinATGGCCCGCTGGAGTACCGAACGCATCGTTGGCCTGCATGAACCGCGGGTCAACGAGCATCACGTCACGTCCACGGGCCTGCCCGCCGACAATCGCCTGCGGTTGCTCAGCTTCAACATCCAAGTGGGCATCAGCACCGAGCGCTACCGGCACTATCTGACCCGGGGCTGGCAACACCTGCTGCCCCACACCGGGCGAGCCGGCAACCTGCAGAAGATCGGCGACCTGCTGAAGGATTTCGACCTGGTCGCATTGCAGGAAGCCGACGGCGGCAGCCTGCGCTCCGGCTACGTCAATCAGGTCGAACACCTCGCCCAACTGGGCGCGTTTCCTTATTGGTACCAGCAACTCAATCGCAACCTCGGTCGTCTCGGCCAGCACAGCAATGGCGTGCTGAGTCGTCTGCGGCCCTGGGCGATCGAGGATCACCCGTTGCCGGGCCCCAAGGGGCGCGGAGCGATCCTGGCGCGTTTCGGCGAAGGTCCGGAGGCGCTGATAGTGGTGATGATGCACCTGGCTCTCGGGGCTCGGACCCGAACCATGCAACTGGCCTACATTCGTGAGTTGATTGGCGGCTACAAGCATCAAATCCTGATGGGCGACATGAATACCCATGCCAATGACCTGTTGCAGACCTCACCGCTGCGCGACCTTGGCCTGCTCGCCCCACAATTGGAAGCCACGTTTCCCAGCTGGCGCCCCCAGCGCTGCCTGGACCATATCCTGCTGAGCCCTACCTTGGCCCTCGAACGGTTCGAAGTGTTGGCCCAGCCCATTTCCGATCACCTGCCGGTAGCGGTCGAAATACGTTTGCCGGGTTCGCTCACGGCCGATGCATTTCCCGCGCTGAGTCCTACCCCTCGCGGATCCGATGAATGAMARWSTERIVGLHEPRVNEHHVTSTGLPADNRLRLLSFNIQVGISTERYRHYLTRGWQHLLPHTGRAGNLQKIGDLLKDFDLVALQEADGGSLRSGYVNQVEHLAQLGAFPYWYQQLNRNLGRLGQHSNGVLSRLRPWAIEDHPLPGPKGRGAILARFGEGPEALIVVMMHLALGARTRTMQLAYIRELIGGYKHQILMGDMNTHANDLLQTSPLRDLGLLAPQLEATFPSWRPQRCLDHILLSPTLALERFEVLAQPISDHLPVAVEIRLPGSLTADAFPALSPTPRGSDENANANANANA
D1-35_028492049hypothetical proteinATGAGCGACGACGCCGAACGCTGGAGAGAGAAATACCTCAAGAGCATCGAGCAACAGGAAAAGCTCGAGCGTCGCTGGGACGCCCGGCTCGACCTGCTGCGTCGTGGCCTGGTGCGCAGCACCCTGGCCGCCGAAGGCACTGATCGCGCGGTAGACCAGTGCATGAAAGAGATGCGCGAAGTGGTGCGCACCGATGACATGGACGCCGCCCTCGCCGCCCTGCTGCCGCGCCTGGAAAAAGCCGTACTCGATTCCGAGCAGCGCCGCGAGACCCGGGTAGAACAGATGAGCGCCGCGCTGACCGCCCTGGTCGTCCAGTTGCAAAAGCTGCCGCTGCCGAAGGACGTCAGCCGGCCCTTGAAGAAATTTTCCAAGCAACTGGAGACCCGGGTTGGCCAGGCCCGGGAAATCCCGTTGCTGCTCAGCGAGCTGAGCAGCCTGCAGGGCAAGGCGCTGGGTGCGCTGGACGCGCCCGACGAGCCGAGCCGTCCGGGCCTGCTGCAACGATTGTTCGGCGGCCATGGCCATGAAGAGCCGCTACCGTCGCCCGAGCCTGCCCAACCCGGCGCTACGCCTGAGCCGAAGGCGGTTATTTCGGCTCCTACCGAGCCGACCGCCGAAGCGCCCTCCGCCGCACCTGAACCTGCGCCTGCACCTGAACTTCAACCTGAACCTGAACCTGAACCGCTGGTGGAGCACGCCCTCACACCGGATGCGTCGCCAGCGCCGGTTGAGTCCCATGCTCCGGTCGACGAGCCTGCCCCGGCGTCCGTGCCAGCATCGGTTGCCTCTGTTGCCCAGCCGACCGCCGAGCCGGCACCGATCGACCCTGAGCCCGCAGAACCGGTACCGGCGCTGGACAATCCCGACGAACTGACGCCGGGTGAACCGCCGCTCGACGAGGCACCGATCGCCCCTGCGGAACCCGCCGAACCTGTGGCGCCTGAGGCATCCGCTGACCCCGATGAGACCCACTACGCCCTGCCCGACTCCCCGGAACCGTCCTACAGTTCGGTCGCCAGGCATATCGAAGACACCTTGCTCGGCCTGCTGGGCGACCTGACGCTGCCCGAGCGCCACCGCCCGCAAGCCGAGGCCATGCGCGAGCGCCTGCGAAATGGCTTGAATTGGTACGAGTTACTGCCGATCCTCGACGATCTGGCGGTCCTCATGCTGGCGATCACTGACAGTGGCCAGCATGAATTCGAAGCGTATCTGCAGCGACTCAACGATCGACTGGAATCTTTCCAGAGCACGTTGCAGGCCGCCAGCGAGGACCACGCCGATAACCTGTCCGCCTCCAGGGAAATGAACAACCAGATTCGCGAGCAGGTGGACGGCTTGCAGAGCAGCGTGCAGCAAGCCGACGACCTGGAAGGCCTCAAGCAGGTATTGGAGAATCATCTCGAAGGCCTGATCGGCACGATGGATCAGCATCAGAAGCAGCGTGACCAGCGTGAGAAGGAAGTTTCAGCCCGTCTGAAGAGCCTCGCCGAGCGCGTTGCACTGATGGAACAGGACGCCCTGATTGTCCGGGAGAATCTGGAAGAGCAACGGCAAAAAGCGCTCATCGATCCGCTCACCGGGCTGCCCAACCGCGCGGCCTGGACCGAGCGTCTCGAACATGAGGTCGAGCAGTGGCAGCGGCACGGCAACAGTCTTTTGATCGCCATGCTCGACCTCGATCATTTCAAGCGGATCAACGACAACTACGGTCATCTGGCCGGTGACCGAGTGCTCAAGCTGATTGCCTCGGTACTCCGCAAGCGCGTGCGCGGCAGTGATTTCATCGCCCGTTTTGGTGGTGAGGAGTTTGTCCTGCTGGTGCCCGACACGTCGCTGGCCGCAGGCGCCAAGCTGGCCGAGGCCTTGCGCGCCGCCATCGAAGCCTGTCCGTTCCACTTCAAGGGCGAGCCGGTCACGGTCACGGTATCCATGGGCATGACGGCGTTCAAGCCGGGCGAGCACAGCGATCTGGTGTTGAAAAGAGCCGATCAGGCGCTATATCGGGCTAAAAGCGCGGGACGCAACCGCGTGGAGTTGGGCTAAMSDDAERWREKYLKSIEQQEKLERRWDARLDLLRRGLVRSTLAAEGTDRAVDQCMKEMREVVRTDDMDAALAALLPRLEKAVLDSEQRRETRVEQMSAALTALVVQLQKLPLPKDVSRPLKKFSKQLETRVGQAREIPLLLSELSSLQGKALGALDAPDEPSRPGLLQRLFGGHGHEEPLPSPEPAQPGATPEPKAVISAPTEPTAEAPSAAPEPAPAPELQPEPEPEPLVEHALTPDASPAPVESHAPVDEPAPASVPASVASVAQPTAEPAPIDPEPAEPVPALDNPDELTPGEPPLDEAPIAPAEPAEPVAPEASADPDETHYALPDSPEPSYSSVARHIEDTLLGLLGDLTLPERHRPQAEAMRERLRNGLNWYELLPILDDLAVLMLAITDSGQHEFEAYLQRLNDRLESFQSTLQAASEDHADNLSASREMNNQIREQVDGLQSSVQQADDLEGLKQVLENHLEGLIGTMDQHQKQRDQREKEVSARLKSLAERVALMEQDALIVRENLEEQRQKALIDPLTGLPNRAAWTERLEHEVEQWQRHGNSLLIAMLDLDHFKRINDNYGHLAGDRVLKLIASVLRKRVRGSDFIARFGGEEFVLLVPDTSLAAGAKLAEALRAAIEACPFHFKGEPVTVTVSMGMTAFKPGEHSDLVLKRADQALYRAKSAGRNRVELGNANANANANA
D1-35_02850831amiDCOG3023N-acetylmuramoyl-L-alanine amidase AmiDTTGGGCGATACGTTACACTGTTGCATTATTTTCTTCGGGCATGTCCTCGCCATGAAATTTTTCCCGATCATTCTTTCGTTGATTGCCCTGGCCGGATGCGCCAGCGGCCCTCGGCTCGATACCAGCCATCCTTCCGTCAACCACGACAGCCGCATCCAGTTTGTCGTGGTTCATTACACCTCCGCCTCCCTGGAGCGCTCCCTGGCCCTGCTGACCCATGGCGAAGTCAGCGCCCATTACCTGATCGGCGACGATAAGGACGCCACCATCTACCAACTGGTGGATGAAAGCCGGCGCGCCTGGCATGCCGGGGAAAGCGAATGGCAGGGCCGAACCTGGCTCAACTCCAGCTCCATCGGCATCGAAATCGTCAATCAGGGCTATGTCGACACGCCTGAAGGACGGCGCTGGTACCCCTACAGCGAAGCCCAGGTGCAATCGTTGATTGTTCTGCTCAAGGACATCACCCGCCGTAACGGGATCAACCCGGTCAATATCATTGGCCACAGCGACATTGCCCCCATGCGTAAGCTGGATCCCGGGCCGCTGTTTCCCTGGAAACGCCTGGCGCAAGCGGGCCTGGGTGTCTGGCCGGACGAAGGGGCTGTCGCGCGTCAGCAGACGGCTTATGCGGGACAACTGCCCAGCGCCAGCTGGTTCCAGGCGGAACTGGCCCGCCTTGGCTACCCGACGCCACGGACCGGTGAGTGGGACGTCGCCACCCATCAGGTATTGGCCGCCTTCCAGATGCGCTACCGGCCAAGCCGTTTCGACGGCGCGCCGGACGCCCAAAGTGCGGCAATTTTGCAGGTGCTTAACCAGACAAAATAAMGDTLHCCIIFFGHVLAMKFFPIILSLIALAGCASGPRLDTSHPSVNHDSRIQFVVVHYTSASLERSLALLTHGEVSAHYLIGDDKDATIYQLVDESRRAWHAGESEWQGRTWLNSSSIGIEIVNQGYVDTPEGRRWYPYSEAQVQSLIVLLKDITRRNGINPVNIIGHSDIAPMRKLDPGPLFPWKRLAQAGLGVWPDEGAVARQQTAYAGQLPSASWFQAELARLGYPTPRTGEWDVATHQVLAAFQMRYRPSRFDGAPDAQSAAILQVLNQTKPGPT0024155_631DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_AMIDASE_ACTIVITY,PGPT0024155-amiD-K11066NANA
D1-35_028511617pdeBCOG4943putative cyclic di-GMP phosphodiesterase PdeBATGATGACGGCTGCACGCGAAACCCTGCAGAGTTGGCTCCATCGCCCTATTCTTCTGGCGATGATGGCGGCTGCCCTGAGTACGGTGCTGCTGTTGGCCGGGAGCCTGTTTGTAGTGATGCAGCAGATCCAGCAGCGTGAAAGCGAGCAGATGAATGCCCAGGGCGAGCGTTTCCTGCAGCGGCTGGAACAGCTTTTCGGGCAGTTGCGCGAGAGTCTCGACGATTTGCAGGCGCAACCGCTGCGCGGCTGCAACGACGACATGATCGCCACGTTGCAGCAGGTGAGCTTCAGCTACCGCTTTGTCTATGAGGCGGCTTATCTCGATGCCAACGGTGTCTGCTCGAATCGACCGCGTCAGAGCGGTATGTCGTTGGTTCGTCCGCCCGATCTGCGCGGCCCGGCCTACAGCTACTGGCTCAACACCACCACCGAGCCCGACGAAAATCGCGCGGCGTTGATGTTGGGGCGCGGCAATTTTCGCGTCGCTACGTCCCGCGGGCACCTGACCGATGTGGTCGACTTGCCGCCCGGCAGCAGCCTGCTGGTGGTCCTGGACCATGGCGAGCGGGCGATTCCGGTGCTGGGCAGCGCGCAGCGTTGGCCTCCGACAGAGCCTTGGCCACTGAAAAGCCAACAGTCTCTGCAAGTGACCCAGACCCGGCTGATCTATCGGATGCCGACCGACAATCCGGAGTACCAATTGGTGCTCATTGCACCGCGCAACGGTCTGCGCATTCCGGCCAATGCCTGGTGGATGTTGCCCATCAGCCTGATGCTAGGGCTGGGGATCGGCTTCCAGGTCTTCCTGCTGGTGCGCCAGCGCCAGTCCATGGATGCCGAGTTGCACGGGGCTATCCGGCGGGGTGAGTTGCAGGTCTTGTACCAGCCGATCTTCGATCTGCACAGCCGCAACTGCGTCGGTGCCGAAGCGCTGCTGCGCTGGCGGCGGCCGGACGGCACGCTGACCAGTCCGGACCTGTTCATCCCGATGGCGGAAAATACCGGGCAGATACGCCAGATCACCGATTTCGTCCTGCAGCGGCTGTTCGACCAGTTGGGCCAGCTGTTACGGGCCAACCCGCACCTGTATATCTCGGTGAACCTGGCGGCGTGTGACGTGATGGTGCCTCGCATCGGCGAGGTGATTGCCCGCTTGTTGGCGCTGCATCGGGTGTCGGCGCGCCAGATAGCCTTTGAAGTGACCGAGCGCGGGCTGGTTGATGTGCTGGTTGCGAGGGATAATTTGCAATCGCTGCGCGATGTCGGGCATCAGGTGCTGATCGATGACTTCGGCACCGGCTATTGCAGCCTCGCCTATCTGCAAACGCTGCCGGTTGATTGCCTGAAAATCGACAAGGCCTTTATCGATGCGCTGGGTCATGACGCCGCCAGCAGTGGCGTGGCCCCGCACATCATCCGCATGGCCCACGCCCTGGAACTCAAGGTGATCGCCGAAGGCATCGAGCATGAGGCCCAGGCGTCCTACCTGAGCAGTGAAGGCGTGAAGTTCGGCCAGGGCTGGTTGTTCGCCCATGCGCTCAGCGCGGTGCAGCTTATCGAATTGATTACACGCGGGCGGCGCCTGCTTGGACGGCGCCTGGACGACGAAGCCTGAMMTAARETLQSWLHRPILLAMMAAALSTVLLLAGSLFVVMQQIQQRESEQMNAQGERFLQRLEQLFGQLRESLDDLQAQPLRGCNDDMIATLQQVSFSYRFVYEAAYLDANGVCSNRPRQSGMSLVRPPDLRGPAYSYWLNTTTEPDENRAALMLGRGNFRVATSRGHLTDVVDLPPGSSLLVVLDHGERAIPVLGSAQRWPPTEPWPLKSQQSLQVTQTRLIYRMPTDNPEYQLVLIAPRNGLRIPANAWWMLPISLMLGLGIGFQVFLLVRQRQSMDAELHGAIRRGELQVLYQPIFDLHSRNCVGAEALLRWRRPDGTLTSPDLFIPMAENTGQIRQITDFVLQRLFDQLGQLLRANPHLYISVNLAACDVMVPRIGEVIARLLALHRVSARQIAFEVTERGLVDVLVARDNLQSLRDVGHQVLIDDFGTGYCSLAYLQTLPVDCLKIDKAFIDALGHDAASSGVAPHIIRMAHALELKVIAEGIEHEAQASYLSSEGVKFGQGWLFAHALSAVQLIELITRGRRLLGRRLDDEANANANANANA
D1-35_028521791kinBCOG5000Alginate biosynthesis sensor protein KinBATGAAACTGGCGATGAAGCTGCGCACACGGCTGTTTCTCAGTATCTCGGCACTGATTACCGTGGCGTTGCTGGGGCTGCTGCTCGGCCTGGTCAGCGTCATGCAGATGGCCAATACCCAGGAACAATCGGTGCGTGACAACTTCTTCCTGCTGGACCTGGGCCTCAAGCTGCGCCAGACACTCGGTGATCAATTAATGATCATGCTGGAGGAAAAGCCCGACCTGACAGTGCTGGAACAATCCAAACGGCAGTATTTCGAGTTGTTGGATGAAGGCATTGCCCATGAGGAGCAACTGGCTGAATCGACCACCAGCTTCAGTCGCGCGAAAGCCGACTACCTCAGTTTCCTCGAGGCCTTCGAGGCCTCTCGTCGGCAACCGACACAACTGACTGGCATCCAGGACCTGACGCAAAAATTCAACGTGCTGCGCGGAGGGTTGATCGAAGGCTACCGTCATGCCCTGAACAAGATCAGCGAAACGCAGGACCGCGCTCGCGCCCGGGCGTTGCTGATTTCCGGCCTGCTGGGGTTGGTGGGATTGGCTGTGCTGATCATCGGTTTCATTACCGCCCACGGCATCGCCCGACGTTTCGGTGCGCCGATCGAAGCCCTGGCCGCGGCGGCGGATGATATCGGCCAAGGCAATTTCGAAGTGACCTTGCCGGTTTCCTCGGCGGCTGAACTGAACCTGCTGACGCGTCGCTTCGGCATCATGGCCCAGGCATTACGGGAACATCAGGCCACCAATGTGGACGAATTGCTTGCCGGCCAGCAGCGCCTGCAAGCGGTCCTCGACAGCATCGACGACGGCTTGCTGATGATCGACCGCCAGGGCCGCCTGGAACACCTCAACCCGGTGGCCCAGCGTCAACTGGGCTGGGACGAGGAGCGCCTGGGCCAGGGTTTGGGCGAGGCCCTTGGACGCGTCGAGCTGGATGAAGAGCTGCAACTGGTACTGCGCGGTGGCACCCAGGAGCGCGCACCGGACGACTTGAGCATCGAAGTGGATGGAGAGTCCCGGGTGCTGACTTACAGCCTCACGCCCGTCATCCATACCCAGGGCCAGATTCTCGGCGCGGTGATGATCCTGCACGATGTCACTGAACAACGCGCCTTCGAACGGGTACGCAGCGAGTTTGTCTTGCGTGCGTCCCACGAGTTGCGCACACCGGTGACAGGCATGCACATGGCGTTCGGGCTACTGCAGGAACGCATGCACTTTCCCGAAGATTCACGCGAGGCGGACCTGCTCAACACCGTCAACGAAGAAATGCAGCGGCTGATGCAGCTGATCAACGACCTGCTGAATTTTTCTCGCTACCAGAATGGCCTGCAAAAGCTCACCCTGGCGCCTTGCTCCATCGAAGACCTGCTGGAAACGGCCAGGATGCGCTTTGCCAAGCAGGCGCAAGAGAAGGGCATCGAGCTGCTCGTGGAGATCCAGGGCCCCTTGCCGCGCCTGCACGCCGATGCCGCGCAACTGGACCGGGTCCTGGACAATCTGATCGACAACGCGATGCGCCACACCAACGGCGACGGCCAGATCCGCCTGCAGGCCCGGCGCCACGGCGAGCGGGTGATCATCAGCGTTGAAGATAATGGCGAGGGCATTGCCTACGGCCAGCAAGGACGGATCTTCGAACCCTTCGTCCAGGTCGGGCGCAAAAAGGGCGGCGCCGGCCTCGGTCTGGCGCTGTGCAAGGAAATCGTCCAGCTCCATGGCGGACGCATGGGCGTTTATTCCAGGCCAGGGCAGGGCACTCAGTTCTACATGGCCCTGACCGTCTGAMKLAMKLRTRLFLSISALITVALLGLLLGLVSVMQMANTQEQSVRDNFFLLDLGLKLRQTLGDQLMIMLEEKPDLTVLEQSKRQYFELLDEGIAHEEQLAESTTSFSRAKADYLSFLEAFEASRRQPTQLTGIQDLTQKFNVLRGGLIEGYRHALNKISETQDRARARALLISGLLGLVGLAVLIIGFITAHGIARRFGAPIEALAAAADDIGQGNFEVTLPVSSAAELNLLTRRFGIMAQALREHQATNVDELLAGQQRLQAVLDSIDDGLLMIDRQGRLEHLNPVAQRQLGWDEERLGQGLGEALGRVELDEELQLVLRGGTQERAPDDLSIEVDGESRVLTYSLTPVIHTQGQILGAVMILHDVTEQRAFERVRSEFVLRASHELRTPVTGMHMAFGLLQERMHFPEDSREADLLNTVNEEMQRLMQLINDLLNFSRYQNGLQKLTLAPCSIEDLLETARMRFAKQAQEKGIELLVEIQGPLPRLHADAAQLDRVLDNLIDNAMRHTNGDGQIRLQARRHGERVIISVEDNGEGIAYGQQGRIFEPFVQVGRKKGGAGLGLALCKEIVQLHGGRMGVYSRPGQGTQFYMALTVPGPT0026150_100DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-ALGINATE_METABOLISMCE-EPS-ALGINATE_EXTERNAL_SIGNAL_SENSING,PGPT0026150-kinB-K11383NANA
D1-35_028531347algBCOG2204Alginate biosynthesis transcriptional regulatory protein AlgBATGGAATCCGCCACTGAGCATCAAGGCCGCATTCTGCTGGTAGACGATGAGTCCGCCATCCTGCGTACCTTCCGTTATTGCCTGGAAGACGAAGGCTATACCGTCGCTACCGCCAACAGCGCAGCCCAGGCCGATGCCCTGCTGCAGCGCCAGGTGTTCGACCTGTGTTTTCTGGATCTGCGCCTGGGTGAGGACAATGGCCTCGATGTGTTGGCGCAGATGCGCATCCAGGCGCCATGGATGCGCGTCGTCATCGTTACCGCGCATTCCGCGGTGGACACCGCCGTCGACGCGATTCAGGCCGGTGCCGCCGATTATCTGGTCAAGCCGTGCAGCCCTGACCAACTGCGCCTGGCAACGGCCAAGCAGTTGGAAGTGCGCCAGCTGTCCGCCCGGCTCGAAGCCCTCGAAGGCGAGGTGCGCAAGCCCAAGGACGGACTCGACTCCCACAGCCCGGCAATGAAAGTGGTGCTGGAAACCGCCCGCCAGGTCGCCAGCACTGATGCCAACATCCTTATTCTTGGCGAGTCCGGCACTGGTAAAGGCGAGTTGGCGCGGGCCATTCATGGCTGGAGCAAACGCGCGAAAAAATCCTGCGTCACCATCAACTGCCCATCGCTGACCACCGAGCTGATGGAGAGCGAACTGTTCGGCCACAGCCGTGGCGCATTTACCGGCGCCAGCGAAAGTACCCTGGGGCGCGTCAACCAGGCCGATGGCGGGACGCTGTTTCTCGACGAGATCGGCGACTTTCCCCTCGCACTGCAGCCCAAGTTGCTGCGCTTCATTCAGGACAAGGAATACGAGCGAGTGGGTGACCCGGTCACTCGCCGTGCCGATGTGCGGATTCTCGCGGCGACCAACCTCAACCTCGAGGACATGGTCCGCGACGGGCGTTTTCGCGAGGACCTGCTGTATCGCCTGAACGTGATTACCCTGCACCTGCCGCCATTGCGCGAGCGGGCCGAAGATATCCTGACCCTTGCCGATCGCTTCCTGGCGCGCTTCGTCAAGGAATACGCACGCCCGGCCCGGGGTTTCAGCGATGAGGCCCGCGAAGCGCTGCTGGGCTATCGCTGGCCCGGTAACATCCGGGAACTGCGCAACGTGGTCGAGCGCGCCAGCATCATCTGCCCACAGGAAAAAGTCGAGATCAGCCATTTGGGCATGGCTGAACAACCGGTCAACAACGCCCCGCGGATCGGCGCGGCGCTGAGCCTCGACGAGTTGGAGAAAGCCCACATCGGCGCAGTGCTGGCCACCGCCGACACGCTGGACCAGGCGGCAAAGACCCTGGGTATCGACGCCTCCACGTTGTATCGCAAACGCAAGCAATACAACTTATGAMESATEHQGRILLVDDESAILRTFRYCLEDEGYTVATANSAAQADALLQRQVFDLCFLDLRLGEDNGLDVLAQMRIQAPWMRVVIVTAHSAVDTAVDAIQAGAADYLVKPCSPDQLRLATAKQLEVRQLSARLEALEGEVRKPKDGLDSHSPAMKVVLETARQVASTDANILILGESGTGKGELARAIHGWSKRAKKSCVTINCPSLTTELMESELFGHSRGAFTGASESTLGRVNQADGGTLFLDEIGDFPLALQPKLLRFIQDKEYERVGDPVTRRADVRILAATNLNLEDMVRDGRFREDLLYRLNVITLHLPPLRERAEDILTLADRFLARFVKEYARPARGFSDEAREALLGYRWPGNIRELRNVVERASIICPQEKVEISHLGMAEQPVNNAPRIGAALSLDELEKAHIGAVLATADTLDQAAKTLGIDASTLYRKRKQYNLPGPT0026155_100DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-ALGINATE_METABOLISMCE-EPS-ALGINATE_EXTERNAL_SIGNAL_SENSING,PGPT0026155-algB-K11384NANA
D1-35_02854288hypothetical proteinATGAATCGTCAACGTGCCGCCCAATTTCGCATCAGCCCCCTGCATATCCAGCAGGGCCTGTGGGCTGTCGTCGCCCTGTTGATTACTCTCGTGGCGGGTCAGCAATTAATGCTCTGGCACGAAAGCCAACAGCCGGAAGCGCCGCTGGTATCGGTTCAACGAGCTCCCCAGACCCATTTCACTTCCGTCAGCAACCTCGCCGATGCAGCCGCTTCGATGCGCATGATGGAAGTTGACCAGGCGCAGACCGCCAACGACATGCCCCGTGAAGAACGCTGGGTCTTCTGAMNRQRAAQFRISPLHIQQGLWAVVALLITLVAGQQLMLWHESQQPEAPLVSVQRAPQTHFTSVSNLADAAASMRMMEVDQAQTANDMPREERWVFNANANANANA
D1-35_02855165hypothetical proteinATGTTGAGCTGGGCAATTACCTTCCTGATCATTGCCATCATTGCTGCCGTACTGGGCTTCGGTGGCATCGCGGGCACCGCCACGGGCATCGCCAAGATTCTCTTTGTCGTGTTCCTGGTCATGTTCATCGCTTCGTTCTTCTTTGGCCGTCGCGGCCGAGGCTGAMLSWAITFLIIAIIAAVLGFGGIAGTATGIAKILFVVFLVMFIASFFFGRRGRGNANANANANA
D1-35_02856465ivyInhibitor of vertebrate lysozymeATGAATCGGTCATTAAAAGGACTGGCCGCCGCCCTGCTTCTGGGCGGCAGCGCCATGGCAATGGCTGCCAATGATGGACAGATGCGGGTCAACCAAGTGCTTCAGGCGGATCCGCAGTACCGTGAGACCTGGCAGCAAGTGGTCAAAAAGGAGGAGCGTCTGCCGGAGTGGGTCATGAACCTGACCGGTGTTTCCGAGCAGATGAACGCGGTCGAGGAGGACGGCGATAAATATCTGGTCGGACCCTTGTGCGAAACCCAGGATACCTGCCGCAGCAAGCGCCTGTTCGTTGCCTTCAGCTTCGACAAGGACGAGGCCTACGCATTGTTGGTAGAGGTCCCCGCCGGACTGCCGGCCGACAAGTCGCCAACCCGCCATGCGGACTACCGCTTTCTCGGCAACCCCGACGAAGGTATGCAGGAAATGTTGATGGAACAGCTCAAGAAAGATCCGAATTGGTACTGAMNRSLKGLAAALLLGGSAMAMAANDGQMRVNQVLQADPQYRETWQQVVKKEERLPEWVMNLTGVSEQMNAVEEDGDKYLVGPLCETQDTCRSKRLFVAFSFDKDEAYALLVEVPAGLPADKSPTRHADYRFLGNPDEGMQEMLMEQLKKDPNWYNANANANANA
D1-35_028581332gltPCOG1301Proton/glutamate-aspartate symporterATGAAGAAGGCACGACTAAGCCTCGCCTGGCAGATCCTCATCGGTCTGGTGCTCGGGATTGCAATCGGTGCGCTGCTCAACCACTTCAGTGCCGAGAAGGCCTGGTGGATCAGCAACGTGCTGCAACCGGCGGGCGATATCTTTATCCGTCTGATCAAGATGATCGTGATACCGATCGTGATCTCTTCGCTGATCGTCGGTATTGCTGGCGTGGGTGACGCCAAGAAACTGGGGCGCATCGGCTTCAAGACGATCATCTACTTCGAAATCGTCACCACCATCGCCATCGTCGTCGGCCTGTTGCTGGCCAACTTCTTCCAGCCGGGCAGTGGCATCGACATGAGCACCCTGGGCACGGTGGATATTTCCAAGTACCAGGCCACCGCCGCCGAAGTCCAGCATGAACATGCGTTCATCGAGACCATCCTCAACCTGATTCCGTCAAACATCTTCGCGGCGGTTGCCCGCGGCGAGATGCTGCCGATCATTTTCTTCTCCGTCCTGTTCGGCCTCGGTTTGTCGAGCTTGCAAGCGGATCTGCGCGACCCGCTGGTGAAGATGTTCCAGGGCGTGTCGGAGAGCATGTTCAAGGTCACTCACATGATCATGAATTACGCCCCGATAGGCGTGTTCGCGCTGATCGCGGTGACTGTCGCCAACTTCGGTTTCGCCTCTCTGCTGCCATTGGCGAAACTGGTGATCCTGGTTTATGTCGCCATCGCCTTCTTCGCTTTTGTGGTGCTGGGCCTGATCGCGCGCTTGTTCGGCTTTTCGGTGATCAAGCTGATGCGCATCTTCAAGGATGAGCTGGTGCTGGCTTATTCCACCGCCAGTTCCGAAACCGTGCTGCCGCGCGTGATCGAGAAGATGGAAGCGTACGGCGCGCCGAAAGCCATCTGCAGCTTCGTGGTTCCTACCGGTTACTCGTTCAACCTCGATGGCTCGACGTTGTACCAGAGCATCGCGGCGATTTTCATCGCGCAGTTGTATGGCATCGACCTGTCGATCAGCCAGCAGTTGCTGCTGGTGCTGACCCTGATGGTCACCTCCAAAGGCATCGCCGGCGTGCCGGGCGTCTCCTTCGTGGTTCTGCTGGCGACACTTGGCAGCGTGGGTATTCCGCTGGAAGGCCTGGCGTTCATTGCCGGTGTCGACCGCATCATGGACATGGCCCGTACCGCGCTGAACGTCATCGGCAACGCCTTGGCCGTGCTGGTCATCTCCCGCTGGGAGGGCATGTACGACGATGCCAAGGGCCAGCGCTACTGGAATTCCCTGCCGCACTGGCGCAGCAAGGAGCCGCTGCCGGCGGGGGAAACTTCCAGCCGTTGAMKKARLSLAWQILIGLVLGIAIGALLNHFSAEKAWWISNVLQPAGDIFIRLIKMIVIPIVISSLIVGIAGVGDAKKLGRIGFKTIIYFEIVTTIAIVVGLLLANFFQPGSGIDMSTLGTVDISKYQATAAEVQHEHAFIETILNLIPSNIFAAVARGEMLPIIFFSVLFGLGLSSLQADLRDPLVKMFQGVSESMFKVTHMIMNYAPIGVFALIAVTVANFGFASLLPLAKLVILVYVAIAFFAFVVLGLIARLFGFSVIKLMRIFKDELVLAYSTASSETVLPRVIEKMEAYGAPKAICSFVVPTGYSFNLDGSTLYQSIAAIFIAQLYGIDLSISQQLLLVLTLMVTSKGIAGVPGVSFVVLLATLGSVGIPLEGLAFIAGVDRIMDMARTALNVIGNALAVLVISRWEGMYDDAKGQRYWNSLPHWRSKEPLPAGETSSRPGPT0000805_194DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-AMMONIUM_ASSIMILATION|USAGEN-AQUISITION-GLUTAMATE_TRANSPORT,PGPT0000805-gltP|gltT-K11102NANA
D1-35_028591230hypothetical proteinATGCTCAATGGCCTGTGGCTTGGCTTCTTTATCGTGGCAGCCGTGTCGGCGCTGGTGCAGTGGCTGGTCGGCGGCAACGCCGGCATTTTCGCGGCGATGGTGGAAAGCATTTTTGCCATGGCCAAGCTGTCGGTGGAGGTGATGGTCCTGCTGTTCGGCACCTTGACGCTGTGGCTGGGCTTCCTGCGCATCGCGGAAAAAGCCGGCATTGTCGATTGGCTGGCCAAAGCCCTCGGCCCGCTGTTCCTGCGCCTGATGCCGGAAGTCCCGGCTGGCCATCCGGCCATCGGCCTGATCACCCTCAACTTCGCGGCCAACGGCCTGGGGCTGGACAACGCGGCCACCCCGATCGGCTTGAAGGCCATGCGCGCCCTGCAAGACCTCAACCCCAGCCCGACCATCGCCAGCAACGCGCAGATCCTGTTCCTGGTGCTCAACGCATCGTCACTGACACTGCTGCCGGTAACGATTTTCATGTACCGCGCCCAGCAAGGCGCGCCGGACCCGACCCTGGTGTTCCTGCCGATCCTGCTCGCCACCAGCGCCTCGACCCTGGTGGGGCTGTTGTCCGTGGCGTTCATGCAACGGCTGCGCTTGTGGGATCCGGTGGTACTGGCCTATCTGATCCCGGGCGCGCTGGTGTTGGGTGGTTTCATGGCGTTGCTGGCGACGCTCTCGGCCACGGCGCTGGCGGGGCTCTCATCGATTCTCGGCAACTTGACGCTGTTTAGCCTGATCATCCTGTTCCTGGTGGTGGGTGCGCTGCGCAAGGTCAAAGTGTATGAAGCCTTTGTCGAAGGCGCCAAAGAGGGATTCGACGTCGCCAAGACGCTGCTGCCGTATCTGGTGGCGATGCTCTGCGCTGTCGGTGTGCTGCGGGCATCGGGGGCGCTGGATTTCGGCCTGGACGGTATCCGCCATCTGGTGCAGTGGGCCGGCCTGGACACGCGTTTTGTCGATGCCTTGCCCACCGCCATGGTCAAGCCGTTCTCCGGCAGCGCCGCCCGGGCGATGCTGATTGAAACCATGAAGACCTCCGGGGTGGACAGCTTCCCGGCCCTGGTGGCGGCAACTATTCAGGGCAGCACCGAAACCACGTTCTACGTGCTGGCGGTGTATTTCGGCGCCGTGGGCATCCAGCGAGCCCGCCACGCGGTGGGTTGCGCCCTGCTGGCCGAGCTGGCCGGGGTGATAGCGGCCATCGGAGTCTGCTACTGGTTCTTTGGCTGAMLNGLWLGFFIVAAVSALVQWLVGGNAGIFAAMVESIFAMAKLSVEVMVLLFGTLTLWLGFLRIAEKAGIVDWLAKALGPLFLRLMPEVPAGHPAIGLITLNFAANGLGLDNAATPIGLKAMRALQDLNPSPTIASNAQILFLVLNASSLTLLPVTIFMYRAQQGAPDPTLVFLPILLATSASTLVGLLSVAFMQRLRLWDPVVLAYLIPGALVLGGFMALLATLSATALAGLSSILGNLTLFSLIILFLVVGALRKVKVYEAFVEGAKEGFDVAKTLLPYLVAMLCAVGVLRASGALDFGLDGIRHLVQWAGLDTRFVDALPTAMVKPFSGSAARAMLIETMKTSGVDSFPALVAATIQGSTETTFYVLAVYFGAVGIQRARHAVGCALLAELAGVIAAIGVCYWFFGNANANANANA
D1-35_028601008hypothetical proteinATGCCGAACCTGACTCATTTAATCCAGCGCATCCTCGAACTGATGAAGCGCTATCCGGGGGTCATCGCGCTCGGCGGTTTCATTTCCGGGGTCGGCAGTTTCATGCTGGTGGATCGCCAGCAGGGTCTGGCGACCTGGATCGCGATCATGATGCTGGTGAGCTGGCTCTGGCTGATGTTGGAGAACAGCCTGACGCGGCTGTTCACGCGGATTTTCAAACGGGAAATACCCCAGCCGCTGCTGCGTTACGCCACGCAGATGATCCACCAGGAAAGCCTGTTCTTCGTCTTGCCGTTTTTTTTCATCACGACAACCTGGAACAGCAGCCAGCTGCTCTTTACCGGCTTGCTGGCGGCGTCGGCGCTGGTCTCGATCATCGATCCGCTGTACTACAAATGGCTGGCGCCCCGGCGTTGGGCGTTCCTGGCGTTGCACACGCTGACGCTGTTCGCCGCCCTGCTCACCGCGCTGCCGGTGATCCTGCACCTGACCACTGACCAGAGCTTCAAGCTGGCACTGGGCACCGCCATGCTGTTGTCGTTCCCGAGCCTGGCCTCGATCTTCCCGATCCGCACCGTGCGCAACGCCCTGGCGATTCTGTGCATCACCCTGGGCATCGGCGCCGCCGGCTGGGTGCTGCGCTCCTGGGTGCCACCCGCCACGCTCTGGATGACCGAAGTGGCAATCAGTACCCAGCTGGAAGACCGCACGCCTGGCGCCAGTCTCAAGGAAGTCAGCGCGGCCCAGATCCGTGGTAACGGCCTGTACGCCTACACCGCCATCAACGCACCGCGCGGGCTCGATGAGCGGATCTACCACGTCTGGCAGTTCAACGGCAAAGAGGTGGATCGCATCGCTCTGGACATCCATGGCGGACGCAAGGAAGGCTATCGCGCCTGGACCCACAAGCAGAACTTCCCGGACAACCCGACGGGAAAATGGCAAGTGCGGATACTCACCGAAAATGGCCAGATGATTGGTGTGTTGAGGTTCGAGGTGAAGGACTGAMPNLTHLIQRILELMKRYPGVIALGGFISGVGSFMLVDRQQGLATWIAIMMLVSWLWLMLENSLTRLFTRIFKREIPQPLLRYATQMIHQESLFFVLPFFFITTTWNSSQLLFTGLLAASALVSIIDPLYYKWLAPRRWAFLALHTLTLFAALLTALPVILHLTTDQSFKLALGTAMLLSFPSLASIFPIRTVRNALAILCITLGIGAAGWVLRSWVPPATLWMTEVAISTQLEDRTPGASLKEVSAAQIRGNGLYAYTAINAPRGLDERIYHVWQFNGKEVDRIALDIHGGRKEGYRAWTHKQNFPDNPTGKWQVRILTENGQMIGVLRFEVKDNANANANANA
D1-35_028611389hypothetical proteinATGCGTTGTCTGCTGCTCGCCTTGCTTTTGTTCGGCTCACTCCCCGCCATTGCCCAGGATCGCTTTCAGGTCGAAGGCTATACGTTGCCTAACGGCCTGCAATTGTTGCTCAAACCCGGCACCGAACGCGGGCACGTGGCGATTCGGCTGGTGGTCGGCGTGGGGCTCGACGATTTCAGCTGCGCCGACAAGGAGCTGCCGCATCTGCTCGAACATCTTCTGTTCAGTGGGGTCGACGACAGCGGCGAAGGTGGCCTGGAGGAACGCATGCAGGCCCTGGGCGGCGAGTGGAACGCCTTTACCAGCAATGCCGATACAACGTTTGTCATCGAGGCACCGGCGCGCAATCAGCGCAAGGTCCTCGACCTGTTGCTGGCGCTGCTGACCCGCACCCGCATCGACGAAAAAGCCCTGGAGGCGGCCAAACGGGTGGTCGAGCGCGAGGACGGCGGTCACTACACCCATCTGCAACGCTGGCTCGACCGACAGGACCTGGGCCATAAAGCCAGCAATCAATTGGCCGTGGAACTGGGCTTGCGGTGCGCGGAACGGGCCGAGGTTGGTCACCTTACCCTGGCCCGGGTCGAGCAGGTGCGCAAGGCCTGGTATGCCTCCAACAATATGACGCTGATCGTCGTCGGCGATCTCGACCGGTTATTGCCGGCCTACCTGGAACGCAGTTTCGGCGAGCTCGAACCGGTCGAGCCCAGCGTCCACGAGCCGCTGCCGCAGATCCGCTACAGCGCGGTCACCAAACGCAACCTGACTCGCGGCCTGGCCGGCGATGGCGCCAAGCTTCATTGGCTGTTCCCGGAACCGGTGCTGGAACAGCAGCACGACGAAACCTTCGACCTGCTCAAGGATTATCTGGACTGGGCGCTTTATCGCCAGTTGCGCCTGGCCAACGGCCTGTCCTACGGCCCCTGGGTGGAGCGGGAAGTCTTTGGCGGTGTCGGTTTTCTCAGCCTGAACGCAGACCTGGCGCGCGAAGACCTGCCGAAAGCCGAGCAGGTGCTGGAACAATTGCGCGGCACGCTGCTCAAGGACGGCCTGGACCCCGAGAGCTTCGTGCGGATCAAACGCGCCGCTATCGCCCATCAGTCCTGGGCGGTGCAAGGCAACAGCGCGCTGGCCGACTATTACTGGGGCGCCTTGGGCGACTATGAGGATGGCCGCTTCGCCAATCCGGCCGCCCGCTTGCAGGCCGTCAGCCTGGAGCAGGCCAACCAGGCCCTGCGCGAACTTCTCAAGGATCCGGGTTACCTGCGGATCGAGAAGCCGTTGCTTGGTGATGACGAACTCGTTTGGGTGTTGGCTGGGTTGGTGGTGTTGCTGCTGGTGGGAATTGGCTGGCGATGGAAGCGCAGGGCGCGACCGCAGCCAGACTGAMRCLLLALLLFGSLPAIAQDRFQVEGYTLPNGLQLLLKPGTERGHVAIRLVVGVGLDDFSCADKELPHLLEHLLFSGVDDSGEGGLEERMQALGGEWNAFTSNADTTFVIEAPARNQRKVLDLLLALLTRTRIDEKALEAAKRVVEREDGGHYTHLQRWLDRQDLGHKASNQLAVELGLRCAERAEVGHLTLARVEQVRKAWYASNNMTLIVVGDLDRLLPAYLERSFGELEPVEPSVHEPLPQIRYSAVTKRNLTRGLAGDGAKLHWLFPEPVLEQQHDETFDLLKDYLDWALYRQLRLANGLSYGPWVEREVFGGVGFLSLNADLAREDLPKAEQVLEQLRGTLLKDGLDPESFVRIKRAAIAHQSWAVQGNSALADYYWGALGDYEDGRFANPAARLQAVSLEQANQALRELLKDPGYLRIEKPLLGDDELVWVLAGLVVLLLVGIGWRWKRRARPQPDNANANANANA
D1-35_028621659hypothetical proteinATGCTGACCCTGCTGAATCTGCTCTCCGCCGTGGCCTTGCTGATCTGGGGCACGCACATCGTCCGTACCGGCATTCTGCGGGTCTATGGCTCGAACCTGCGTCACGTCATCAGCCAGAACATGTCCCGGCGCTGGTTGGCTTTCATCGCCGGGATCATGGTCACCGCCATGGTCCAGAGCAGCAACGCCACGGCCATGCTCGTCACCTCTTTTGTCGGCCAGGGCCTGATGTCGCTGACGCCCGCCCTGGCGACCATGCTTGGCGCCGACGTCGGCACCGCGCTGATGGCACGGGTGCTGACCCTCGACCTGTCGTGGCTGTCACCGTTGCTGATTTTCCTCGGGGTGATTTTTTTCCTGTCGCGCAAACAGACGCGCGTCGGGCAGATGGGCCGGGTCGCCATCGGCCTGGGCCTGATCATCCTGGCCCTGCAACTGATCGTCGAAGCCGCTGCGCCCATCACCCAGGCCCAGGGCGTGAAGGTGATTTTCGCCTCACTGACCGGCGATATCCTGCTCGATGCGCTGGTCGGCGCGCTGTTCGCCATGATTTCCTATTCCAGCCTCGCCGCCGTGCTGCTGACCGCGACACTGGCCGGCGCGGCGGTGATCAGTTTGCCAGTGGCTATCGGCCTGGTGATCGGCGCCAATATCGGCAGCGGCATCCTGGCGTTTCTCAGCACCAGCATGCAGAACGCCGCCGGACGCCAGGTGGCACTCGGCAGCCTGCTGTACAAGCTGATTGGCCTGTTGCTGATCATTCCGGTACTCGATCCGCTGGTGGGCTGGCTGGACAGCCTGGATTTCAGCCACCAGGAAACCGTCATCGGTTTTCATCTGCTCTACAACACCGTGCGTTGCCTGGTATTGCTGCCTAGCGTCGGGCCGATGGGCCGGCTCTGCGCGTGGCTGCTGCCGGAGCGCCCGGACACCAACGGCACGGCCAAGCCCCGGCACCTCGACCCCACCGCCCTGGCGACCCCGAGCCTGGCCCTGGCGAACGCGGCCCGGGAAACCTTGCGCATCGGCGACCTGATCGAAAACATGCTCGAAGCCATGCTCGGCGTACTGCGCGGCGAGCAGACGGCGATTACTCAGCAAGTGCGCGCCATGAGCGACGATGTCGAAGCACTGTGCAGCGCCATCAAGCTGTATATGGCGCAAATGCCCCGCGAGGACCTCAGCGAACAGGACAGCCGCCGCTGGGCGGAAATCATCGAGCTGGCGATCAATCTCAAGCTGGCCAGCGACCTCATCGAACGTATGCTGCGCAAGGTCCAGCAGCAGAAGACCTCGCAACGCCGGTCGTTTTCCGATGTGGGCCTGGAAGAACTGGCGGGGCTGCACAGTCATCTGCTGGCCAACCTGCGGCTGGGGTTGACGGTGTTCCTGAGTGCCGATCGGGAAAGCGCACGGCAGTTGCTGCGTGAGAAACGTCGCTTTCGCGCGCAGGAACGGCGGATGGCCCATGCCCATGTCAGCCGTCTGCAACGCAAGGTCGTGCAGAGCCTGGAGACCAGTTCCCTGCATCTTGAGCTGATCGCTGACATGCGGCGCCTGAATTCGCTGTTCTGCGGCAGCGCCTATGTGGTGCTGGAAACCTCGGAGATCGGCGCCCTTTCCGTCGATGAAATTTCCGACATCACCCATTCGCCGTGAMLTLLNLLSAVALLIWGTHIVRTGILRVYGSNLRHVISQNMSRRWLAFIAGIMVTAMVQSSNATAMLVTSFVGQGLMSLTPALATMLGADVGTALMARVLTLDLSWLSPLLIFLGVIFFLSRKQTRVGQMGRVAIGLGLIILALQLIVEAAAPITQAQGVKVIFASLTGDILLDALVGALFAMISYSSLAAVLLTATLAGAAVISLPVAIGLVIGANIGSGILAFLSTSMQNAAGRQVALGSLLYKLIGLLLIIPVLDPLVGWLDSLDFSHQETVIGFHLLYNTVRCLVLLPSVGPMGRLCAWLLPERPDTNGTAKPRHLDPTALATPSLALANAARETLRIGDLIENMLEAMLGVLRGEQTAITQQVRAMSDDVEALCSAIKLYMAQMPREDLSEQDSRRWAEIIELAINLKLASDLIERMLRKVQQQKTSQRRSFSDVGLEELAGLHSHLLANLRLGLTVFLSADRESARQLLREKRRFRAQERRMAHAHVSRLQRKVVQSLETSSLHLELIADMRRLNSLFCGSAYVVLETSEIGALSVDEISDITHSPPGPT0002650_1092DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SODIUM_TRANSPORT,PGPT0002650-yjbB-K03324NANA
D1-35_02863768hypothetical proteinATGGAATGGCTGACCAACCCGGAAATATGGGTTGCCTTCTTTACCCTGACCGCCCTGGAAATCGTCCTGGGTATCGATAACATCATCATGATCTCGATCCTGGTCAGCCGCATGCCCAAGCACATGCAGGCACGCACCCGGATCTTCGGCCTGGCGCTGGCGATGATCACGCGGATCCTGTTGTTGCTGTCCATCACCTGGGTGATGCGCCTGACCGCCGATCTGTTCGAAGTATTCGGCCAAGGCATCTCCGGCCGCGACCTGATCCTGTTCTTTGGTGGCCTGTTCCTGCTGTGGAAAAGCTCTCAGGAGATGTACCACGCGCTGGAAGGCGAAGAGGAAAACAGCGACGAGCCTTCGGTCAAGGGCGGCAACTTCATCTACACCATCATCCAGATCGCGATCATCGACATCGTGTTCTCCCTGGACTCGGTCATCACCGCGGTCGGCATGGTCTCCCATGTACCGGTCATGGTTGCCGCGATCATCGTCGCCGTACTGGTGATGATGCTGGCTTCGGGCACCATCAGCACGTTCATCGACAAGCACCCGTCGCTGAAGATGCTGGCGCTGTCGTTCCTGCTGGTGGTCGGTACCGTACTGATCGCCGAATCGTTCGATGTGCATGTGCCTAAAGGCTACGTCTATTTCGCCATGGCGTTCTCGCTGGCGGTGGAAGCGATCAATATCAAGATGCGTACCGCGATGGCACGCAAGCGCAAGCAGCAGGATCCGGTGAAACTGCGCAAGGATGTTCCGGGTCAGTAAMEWLTNPEIWVAFFTLTALEIVLGIDNIIMISILVSRMPKHMQARTRIFGLALAMITRILLLLSITWVMRLTADLFEVFGQGISGRDLILFFGGLFLLWKSSQEMYHALEGEEENSDEPSVKGGNFIYTIIQIAIIDIVFSLDSVITAVGMVSHVPVMVAAIIVAVLVMMLASGTISTFIDKHPSLKMLALSFLLVVGTVLIAESFDVHVPKGYVYFAMAFSLAVEAINIKMRTAMARKRKQQDPVKLRKDVPGQNANANANANA
D1-35_028641308citN_2COG2851Citrate transporterATGCTGACTTTCCTTGGCTTCGCCATGGTCATCACGTTCATGTTCCTGATCATGACCAAGCGCCTGTCTGCGCTGATCGCCCTGATCATTATTCCGATCCTGTTCGCGCTGTTCGGTGGCTTTGCGCCGAAGATCGGCCCGATGATGCTCGAAGGCATCACCAAGCTTGCCCCGACCGGGGTGATGCTGATGTTTGCGATTCTCTATTTCGCCCTGATGATCGACTCCGGCCTGTTCGACCCGGCCGTGCGCAAGATCCTCAAGATGGTCAAGGGCGACCCCCTGAAAGTTTCGGTCGGCACCGCCGTTCTGGCGCTCGTCGTTTCCCTCGATGGTGACGGCGCGACCACTTATATGATCTGCGTAGCCGCCATGCTGCCGCTCTACAGCCGTATCGGCATGAGCCCGCAGATCATGGCGGGCCTGATCATCCTCGCCGGCGGCGTGATGAACATGACCCCTTGGGGCGGGCCAACCGCTCGGGCGGCCAGTGCGCTGCATGTGGATCCGTCGGACATCTTCGTCCCGATGATCCCGGCGATGCTGGCCGGCGTCGTGGCGATCCTGGCGATTGCCTACATGTACGGCAAACGCGAGCGTGCGCGCCTGGGTGAGCTGCACCTGGCCGGTGACGACATGGACCACAGCGAAATCAGCGTCTCGCAGTTCCCGGACGCCCGCCGTCCGAAGCTGATCTGGTTCAACGGCGCGCTGACCCTGGCCCTGATGTGCACGCTGATTGCCGGCCTGTTGCCGTTGCCGGTGCTGTTCATGGTGGCCTTCAGTATCGCGATGATCGTCAACTATCCATGCCTGCAACAACAGAAAGACCGCGTCGCGGCTCACGCCGGCAGCGTGTTGGCGGTGGTCGGGCTGATCTTCGCGGCGGGTATCTTCACTGGCATTCTGTCGGGCACAGGTATGGTCGATGCCATGTCCAAGAGCCTGCTGGCAGTGATCCCGGACTTCCTCGGTCCTTACCTCGCGGTCATCACTGCGCTGGTGAGCATGCCGTTCACTTTCTTCATGTCGAACGATGCATTTTATTACGGGGTGTTACCAGTTTTGGCCGAAGCAGCCAGCCATTACGGCATCACTGGCGTCGAAATGGCCCGTGCCTCGATCGTCGGCCAGCCCGTTCACCTGCTGAGCCCGCTGGTTCCGTCGACTTATCTGCTGGTGGCCCTGGCCGGGATCGAATTCGGCGATCACCAACGCTTCACCTTGAAGTGGGCAGTACTGGTTTGCCTGTGCATAATGTTCGCCGCCTTGCTGATGGGGATTTTTCCGCTATTCAGCACTCTATAAMLTFLGFAMVITFMFLIMTKRLSALIALIIIPILFALFGGFAPKIGPMMLEGITKLAPTGVMLMFAILYFALMIDSGLFDPAVRKILKMVKGDPLKVSVGTAVLALVVSLDGDGATTYMICVAAMLPLYSRIGMSPQIMAGLIILAGGVMNMTPWGGPTARAASALHVDPSDIFVPMIPAMLAGVVAILAIAYMYGKRERARLGELHLAGDDMDHSEISVSQFPDARRPKLIWFNGALTLALMCTLIAGLLPLPVLFMVAFSIAMIVNYPCLQQQKDRVAAHAGSVLAVVGLIFAAGIFTGILSGTGMVDAMSKSLLAVIPDFLGPYLAVITALVSMPFTFFMSNDAFYYGVLPVLAEAASHYGITGVEMARASIVGQPVHLLSPLVPSTYLLVALAGIEFGDHQRFTLKWAVLVCLCIMFAALLMGIFPLFSTLPGPT0001500_725DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_CITRATE_TRANSPORT,PGPT0001500-TC_CITMHS|CitMHS_family|citN-K03300NANA
D1-35_02865339hypothetical proteinATGCAACGGATCAAGGGCTATCACGCCCATGTTTATTTCGACGCCGGCACCATCGATCAGGCGCGGGCCTTGTGTGAGCAAGCGGCGCAGCTGTTCCCGCTGAAGATGGGCCGGGTTCACCAACGGCCGGTCGGCCCGCACCCGGACTGGAGCTGCCAGCTGGCATTCGATCCGCAGTACATCGGCGTGGTCCTGCCGTGGTTGGCGCTCAATCGCAACGGGCTGGTGATATTCCTGCACCCGGACACTGGTGATGATCTGGCCGATCACACCGATCATGCGATCTGGATGGGCGCGGTACGACCGTTGAATCTTTCGGCGTTCGAATCAACAAGCTGAMQRIKGYHAHVYFDAGTIDQARALCEQAAQLFPLKMGRVHQRPVGPHPDWSCQLAFDPQYIGVVLPWLALNRNGLVIFLHPDTGDDLADHTDHAIWMGAVRPLNLSAFESTSNANANANANA
D1-35_02866660hypothetical proteinATGAGAAACGCCGAAACCCCGGTCATCAAAGTGGTGCTCTATGGTGCCATGAGCAGCCTCGGAAGTGCGTTGATGGCTGAGCTGTTGCGACGCCAGCACGAAGTCATCGCCATCCTCGATGATCTTACGGCCTTGGCGCCACGCCCGGGCCTGCGGACCAAGACCGGCGACCTGTTCGACCCCGAACGGGTCAAGCAGAGCGTTGCCGGCGCCACTGCCGTGGTGTGCCTGTTGAACGCACCGGGGCTGCCAATGAACAGCGAGCAAGTAGAGCGCACGCTCATTCCCGGCCCGGTGGAGCAGGTCCTGGCCGTGGATGCGCTGATTGCAGGCATGCAGGCGGTCAATATCCCCCGGCTGTTCCTGGTGGGCGATTTCGCTGCCCTCGATGAGCAGGAAGCCGAAGATGACTTGCAGCGCCATGCCGCCGAGGAAATCCTCGACGCCCTGAAAAACAGCGCCTTGCAGTGGACCCTGGTCAACGCGCCCTACGCCGCGCCGGGCTTGAGCATCGAGCATTTCAGCCAGGTCAGCACCAGCCTGGAGTCCGGAATGGCCGAGTCCCTGGAGCGCCTCAATCGGGTGGCCGTGGGCATTGTCGATGAACTGCGCTCGAACCTGCATGTGGGCGAGCATGTGAGTTTTGTGCCCGCCCTCTAAMRNAETPVIKVVLYGAMSSLGSALMAELLRRQHEVIAILDDLTALAPRPGLRTKTGDLFDPERVKQSVAGATAVVCLLNAPGLPMNSEQVERTLIPGPVEQVLAVDALIAGMQAVNIPRLFLVGDFAALDEQEAEDDLQRHAAEEILDALKNSALQWTLVNAPYAAPGLSIEHFSQVSTSLESGMAESLERLNRVAVGIVDELRSNLHVGEHVSFVPALPGPT0020900_113DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0020900-putative_saccharopine_dehydrogenase-K07118NANA
D1-35_02867951gcvA_5Glycine cleavage system transcriptional activatorATGTATGACGCCTTGGGTGACCTGTCCCTGGATCTCTTCCGCGCCTTCGAATCAGCGGCTCGCCAGCAAAGTTTTACTGCGGCAGCGATTGAACTGGGCACGACCCAACCCGCCATCAGCCAACAGATCAAACGGCTGGAAGAGCAGCTCGGTACGCGCCTGTTTGATCGCATCTATCGCGGCATCGAATTGACCGAGGCCGGCGCGATCCTGTTCGAGCAGGTCCAGGCCGGCTTGCAGAGCATCGATGCGGGGCTGAACGCGATCACGGCCCAGCACCAGCATGAAGTGCTACAAGTCGCGACGGATTTCGCTTTCGCCGCCTATTGGCTGATGCCGCGACTGCATCGGTTCCACGCGGCAAATCCGCAGGTGGATGTGAGCCTGGTGACCAGCGAGCGCAACCACAACATGCTGCGCACCGATATCGATGTTGCGGTGCTATTTGGCGACGGTCGCTTCAAACAGGGCGAAAGTCGTTGGCTTTTCAGCGAAGAAGTCTTTCCTGTATGCAGCCCACTGCTGCTCAAGGACCGCCCCCAACCCCTGCCCGCCCACGCCCTCGCGGAATTCCCGCTGCTGCATTTGCGCGGCGGCAACAGCAGCGCCTGGTTCGACTGGAGCGGCGTTTTTCGTGAACTGGGCATCACCTCGCCACCGGCGCCGGGCCAACTGCGCTTCGACAACTACACCCTGCTCATCCAGGCGGCGATTGGCGGCCAAGGCGTCGCTATCGGTTGGCGGCACCTTGTGGATAACTTGCTGGCGCAAGGGTTGCTGTGCCGACCGATCGCCGAAACGGTGCTTTCCCGGTTGGGGTATTACGTGGTCTTGCCCCAACGCAAGCGCCGGGGTGTGCTGATCAAGCTGTTCGTGGATTGGCTGATGGAAGAACAGGCCAATAGTGCGGAGTCGCTTACAGGGTTGCCGCTGCCTTCGATTGCGGTTTGAMYDALGDLSLDLFRAFESAARQQSFTAAAIELGTTQPAISQQIKRLEEQLGTRLFDRIYRGIELTEAGAILFEQVQAGLQSIDAGLNAITAQHQHEVLQVATDFAFAAYWLMPRLHRFHAANPQVDVSLVTSERNHNMLRTDIDVAVLFGDGRFKQGESRWLFSEEVFPVCSPLLLKDRPQPLPAHALAEFPLLHLRGGNSSAWFDWSGVFRELGITSPPAPGQLRFDNYTLLIQAAIGGQGVAIGWRHLVDNLLAQGLLCRPIAETVLSRLGYYVVLPQRKRRGVLIKLFVDWLMEEQANSAESLTGLPLPSIAVPGPT0026360_3451DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566NANA
D1-35_028681527betCCOG3119Choline-sulfataseATGGAATGCCGCGAATACATGAAGCGCAAGAACATTCTTTTCATCATGGCCGATCAGATGGCCGCGCCAATGTTGCCGATCTACGGTCCGTCGCCCATCAAGCTGCCCAACCTGTCACGCCTGGCCGACCACGGCGTGGTATTCGATGCCGCGTACTGCAACAGCCCGCTCTGTGCGCCGTCACGCTTTACGCTGGTGAGCGGTCAGTTGCCGAGCAAGATCGGCGCCTATGACAACGCGGCGGATTTTCCGGCGGACGTTCCAACTTATGCCCATTACCTGCGCCGTCTCGGCTATCGCACGGCGCTGTCCGGCAAGATGCATTTTTGCGGGCCGGACCAATTGCACGGTTACGAAGAGCGCCTGACCAGCGACATTTATCCAGCGGACTACGGCTGGGCCGTGAACTGGGACGAGCCGGATGTGCGGCCAAGCTGGTATCACAACATGTCGTCGGTGCTGCAGGCCGGACCGTGCGTGCGCACCAATCAGCTGGATTTTGATGAAGAGGTGGTGTTCAAGGCCCAGCAGTACCTGTTCGACCACATCCGCGAGGACGGCGACCAGCCGTTTTGCCTCACCGTATCCATGACACACCCACACGATCCGTACACGATTCCCAAGACATTCTGGGATCTGTATGACGACAAGGACATCCCGCTGCCCTACACCCCGGATCAGACAGAGCTTGATCCACATTCCCAACGCCTGTTGAAAGTCTATGATCTGTGGGGCAAGCCGCTGCCTGTGGATAAGATCCGTGATGCTCGCCGCGCCTACTTCGGCGCGTGCAGCTACATCGACAGCAATGTCGGCAAGTTGCTGCAGACCTTGGAAGACACCGGGTTGCTCGACGACACCATCATCGTGTTCTCTGGCGATCATGGAGACATGCTCGGCGAAAAAGGCCTCTGGTACAAAATGCACTGGTTTGAAATGGCCGCTCGCGTGCCGCTGCTGATCAGCGCCCCAGGCCAGTTTGCCAGCGGCCGCGTCGGCGCGGCGGTGTCCACCGCCGACCTGCTGCCGACCCTGGTCGAACTGGCCGGCGGCACCCTGGAACCAGGCTTGCCGCTGGATGGGCGTTCGCTGGTTCCGCATCTGCAAGGGCAGGGCGGGCACGATGAAGTCTTCGGTGAATACATGGCCGAAGGCACCGTCAGCCCGTTGATGATGATCCGTCGCGGCCCGTGGAAATTCATCTACAGCGAAGATGACCCGTGCCTGTTGTTCGACCTGCGTAATGATCCTCAGGAGGTGGCGGATCTCAGTCAGTCGCCTGAGCATCAGGCGCTGTTCAACGATTTTCTCGCCGAAGCGCGGGCCAAATGGGATATTCCAGCCATTCACCAACAGGTGCTCGCCAGCCAGCGACGCCGTCGTTTCGTTGCCCAGGCGTTGACCCTGGGCAAACTCAAGAGCTGGGATCACCAGCCGCTGGTCGATGCCAGCCAGCAATACATGCGCAACCACATCGACCTCGACGATCTGGAGCGCAAGGCCCGTTATCCACAACCCTGCCAATAGMECREYMKRKNILFIMADQMAAPMLPIYGPSPIKLPNLSRLADHGVVFDAAYCNSPLCAPSRFTLVSGQLPSKIGAYDNAADFPADVPTYAHYLRRLGYRTALSGKMHFCGPDQLHGYEERLTSDIYPADYGWAVNWDEPDVRPSWYHNMSSVLQAGPCVRTNQLDFDEEVVFKAQQYLFDHIREDGDQPFCLTVSMTHPHDPYTIPKTFWDLYDDKDIPLPYTPDQTELDPHSQRLLKVYDLWGKPLPVDKIRDARRAYFGACSYIDSNVGKLLQTLEDTGLLDDTIIVFSGDHGDMLGEKGLWYKMHWFEMAARVPLLISAPGQFASGRVGAAVSTADLLPTLVELAGGTLEPGLPLDGRSLVPHLQGQGGHDEVFGEYMAEGTVSPLMMIRRGPWKFIYSEDDPCLLFDLRNDPQEVADLSQSPEHQALFNDFLAEARAKWDIPAIHQQVLASQRRRRFVAQALTLGKLKSWDHQPLVDASQQYMRNHIDLDDLERKARYPQPCQPGPT0013620_255DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_CHOLINE-O-SULFATE|PHOSPHORYLCHOLINE_UTILIZATION,PGPT0013620-betC-K01133NANA
D1-35_02869921hypothetical proteinATGCAAAAGTTATCCACAGTACTGACCGCCGGGCTGTTGGCGTTGAGCAGTGTTTCGGCGTGGGCCGAGCAGAGTTGCGAGACCGTGAAGATGGCCGATCCGGGCTGGAGCGATATCGCCGCGACCAACGCCGTCGCCGGTTTCCTGCTTGAGGGCATGGGTTACAAGGCCAAGGTCGACACCTTGGCGGTACCGATCACGTTCGGTGGCCTGAAGGATGGCCAGGTTGATGTTTTCCTGGGTAACTGGATGCCGGCGCAGCAAGGGTTCTATGACAAGTTCGTCGCCAATGGCGATGTCACGCAGTTGGCGAAGAACCTGGACGGCACCGAATTCACCCTGGCGGTGCCGGACTACGTCTGGGATGCCGGTGTGCATAACTTCGCCGACCTGAACAAGTTCGCCGACAAGTTCGACAAGAAGATCTACGGCATCGGTTCCGGCGCCCCGGCCAACCTTTCGCTGAAAGAAATCATCAAGACCAACGATTTCGGCATGGGCGAATGGAAACTGGTGGAGTCCAGCGAGCAGGCAATGCTGGCGGAAGTCTCCCGGGCCGTGAAGAAGCAGAAATTCGTGACGTTCCTCGGCTGGACCCCACACCCGATGAACGTGCAACTGAAAATGCATTACCTCAAGGGCGGCGAGAAGTACTTTGGCGATACTGGCAGCGTTTATACGCTGACGCGCAAGGGTTATGCACAGGCCTGCCCGAACGTCGGGAAGCTGCTGACCAACCTGAGCTTCACCCAGGAAATGGAAAACAGCATCATGGCCGAAGTGGTGAACAAGAAGGTCAGCAACGCCGAAGCGGCCAAGGCCTGGATCAAGGCCAACCCGGCGGTGCTGGACAAATGGCTGGACGGCGTGAAGACCATGGATGGCAAGGACGCGTTGGCGGCGGTCAAGGCCAAACTCTAGMQKLSTVLTAGLLALSSVSAWAEQSCETVKMADPGWSDIAATNAVAGFLLEGMGYKAKVDTLAVPITFGGLKDGQVDVFLGNWMPAQQGFYDKFVANGDVTQLAKNLDGTEFTLAVPDYVWDAGVHNFADLNKFADKFDKKIYGIGSGAPANLSLKEIIKTNDFGMGEWKLVESSEQAMLAEVSRAVKKQKFVTFLGWTPHPMNVQLKMHYLKGGEKYFGDTGSVYTLTRKGYAQACPNVGKLLTNLSFTQEMENSIMAEVVNKKVSNAEAAKAWIKANPAVLDKWLDGVKTMDGKDALAAVKAKLPGPT0013640_2947DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013640-gbuC|proX-K02002NANA
D1-35_028701569dauA_1COG0659C4-dicarboxylic acid transporter DauAATGGCAATCCCCACGCGCCATTCGCTGTTTCCGTTCCTCAGTTGGCTGCCCCGGCAGACCCGCGCCAGCGTCGGCCGTGACCTGATCGTCGGCCTCAGCGGCGCGATTCTCGCGTTACCGCAGTCCATTGCCTACGCACTGATTGCCGGCCTGCCGCCGGAATACGGCTTGTACGCGGCAATCGTGCCGGTGCTGATCGCCTGCCTATGGGGGTCGTCCTGGCATTTGATCTGTGGTCCTACGGCGGCAATCTCCATTGTCCTCTACGCCACTGTCAGCCCATTGGCGGTGCCTGCCACCCAGGACTACATCACGCTCATCCTCTTGCTGACGGTGCTGGCAGGTATTTTCCAGTGGCTGCTCGGGCTGTTGCGTTTCGGTGCGCTGGTCAATTTCGTCTCCCACTCGGTGGTGCTGGGTTTCACCTTGGGCGCAGCGGTGGTTATTGCCCTCGGGCAATTGCCGAACCTGCTGGGCCTGGACCTGCCGAACGAAGCCACGGCATTGAAGAGTTTGCTTATGCTTGCCAGCCATATCGGGGCTGTGGATAAACCTTCGCTGCTGCTGGGTTTGGGGACGCTGGCGGTGGGGATCGTCCTCAAACGATTGCTGCCGCGCTGGCCAACCTTATTGATTACGCTGGCCCTTGGCAGCCTGTTGGTCTGGGCGTGGCCCGCGATGTTCGGGCATGTGGCGTTGGTCAGCGCCTTTGTCGGACGCCTGCCGCCGTTCACGCCGCTGTCGCTGGACCTTGAGTTGATCCTAAGGCTGCTGCCCGGTGCCGTTGCGGTGGGCATGCTCGGGCTGGTGACCAGCCTGTCCATCGCCCGCTCGTTGTCGGTCCGTTCCGGGCAACTGCTCGATGCGAATCAGGAAGTCAGGGCGCAGGGGCTTTCCAATATCGTCGGAGGATTTTTCGCCGGATCGCTGTCAGCCGGCTCCTTTACCCGTTCCGGTCTCAGCTATGAAGCGGGTGCCTGTTCGCCCCTGGCCGGAGTGTTTTCGGCGTTGTGGGTGGCGCTGTTCGCGGTTGCCGGCGCGACACTGATCGCGCACATTCCCATTCCCGCCATGGCCGGCAGTATTCTGCTGATCGCCTGGGGCCTGGTGGACCATCGGGGTATCCGGGCGCTGTACCGTGTGAGTCGTTCCGAATTCCTGGTGATGGGGCTCACCTGCCTGGCCACGCTGCTGCTTGAACTGCAAGCGGCTATCTACGCTGGCGTGTTGGCTTCGCTGTTTTTCTATCTCAAGCGCACTTCGCAACCGCGGGTGCAGCATTTCCGGGAAGGTGAGGCGGACGTCTTGCGGGTGGGCGGCTCGATCTTTTTCGGCGCCAGCCATTATTTGCAAGTGCGCCTGCAACGCATGCCCGCCCAGCAGGTGATCATCGACGCCCAGCAGATCAACTTCATCGATTACTCCGGCGTCGAAATGCTCCACCAGGAAGCCCGGCGCCTGCGCAGCCAGGGGCGCAGCCTGACTTTGCGTGGGGCAAGGCCGCCGGTGGTGGAGGAGTTGTTGAAGCTGGAAGGACCGGAGAAATGCCCGATCCTCTTCAGGGATTGAMAIPTRHSLFPFLSWLPRQTRASVGRDLIVGLSGAILALPQSIAYALIAGLPPEYGLYAAIVPVLIACLWGSSWHLICGPTAAISIVLYATVSPLAVPATQDYITLILLLTVLAGIFQWLLGLLRFGALVNFVSHSVVLGFTLGAAVVIALGQLPNLLGLDLPNEATALKSLLMLASHIGAVDKPSLLLGLGTLAVGIVLKRLLPRWPTLLITLALGSLLVWAWPAMFGHVALVSAFVGRLPPFTPLSLDLELILRLLPGAVAVGMLGLVTSLSIARSLSVRSGQLLDANQEVRAQGLSNIVGGFFAGSLSAGSFTRSGLSYEAGACSPLAGVFSALWVALFAVAGATLIAHIPIPAMAGSILLIAWGLVDHRGIRALYRVSRSEFLVMGLTCLATLLLELQAAIYAGVLASLFFYLKRTSQPRVQHFREGEADVLRVGGSIFFGASHYLQVRLQRMPAQQVIIDAQQINFIDYSGVEMLHQEARRLRSQGRSLTLRGARPPVVEELLKLEGPEKCPILFRDPGPT0003020_3868DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SULFATE|THIOSULFATE_TRANSPORT,PGPT0003020-TC_SULP-K03321NANA
D1-35_02871831aroE_1COG0169Shikimate dehydrogenase (NADP(+))ATGGATCACTACGTTGTAATGGGTAACCCGATCGGCCACAGCAAGTCGCCGTTGATCCATCGCCTGTTCGCTGAGCAGACCGGGCAAGCGTTGGACTACACCACGCTGCTGGCGCCACTGGAGGACTTCGCCGCTTGCGCCCGGGAATTTTTCCGTGAGGGGCGTGGGGCAAATGTCACCGTGCCGTTCAAGGAGGACGCCTTTCGCCTGGCTGACAGCCTGACCGAACGGGCGCAACGGGCCGGGGCGGTCAACACCTTGAGCAAACAGGCCGACGGCCGCCTGCTGGGCGACAACACCGACGGCGCCGGGCTCGTTCGGGACCTGACCGTCAACGCCGGTTTCAGCCTCAAGGGCAAGCGCATCCTGCTGCTGGGCGCCGGCGGCGCGGTACGGGGCGCCTTGGAGCCGTTGCTGGCGGAAGCGCCGTCGTCGGTGATCATTGCCAATCGCACGGTGGAAAAAGCTGAATTGCTGGCTGAGCTGTTCGCCGACCTGGGTCCGGTCTCGGCCAGCGGTTTCGACTGGTTGCGCGAGCCGGTGGACCTGATCATCAATGCCACATCCGCCAGCCTGTCAGGCGAAGTACCGCCGATTGCCGGAAGTCTGATCGAGCCAGGCAAGACATTCTGCTACGACATGATGTATGGCAAGGAGCCGACGTCGTTCTGCCGCTGGGCCGAAGAACACGGCGCGGCGGTGGTGATGGATGGCCTGGGCATGCTCGCCGAACAGGCGGGCGAAGCGTTTTTCCTGTGGCGTGGCGTACGTCCGGACACCGCCCCGGTGCTGGCGGAGTTGCGCCGTCAACTCGCTGCGGTCAATCCCTGAMDHYVVMGNPIGHSKSPLIHRLFAEQTGQALDYTTLLAPLEDFAACAREFFREGRGANVTVPFKEDAFRLADSLTERAQRAGAVNTLSKQADGRLLGDNTDGAGLVRDLTVNAGFSLKGKRILLLGAGGAVRGALEPLLAEAPSSVIIANRTVEKAELLAELFADLGPVSASGFDWLREPVDLIINATSASLSGEVPPIAGSLIEPGKTFCYDMMYGKEPTSFCRWAEEHGAAVVMDGLGMLAEQAGEAFFLWRGVRPDTAPVLAELRRQLAAVNPPGPT0012890_4117DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATESBIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012890-aroE-K00014NANA
D1-35_02872915hemFCOG0408Oxygen-dependent coproporphyrinogen-III oxidaseATGACTACTCGCACCGAGGCCGTGAAAGCCTATCTGCTCGACCTGCAAGACCGCATCTGCGCCGCCCTGGAAACCGAGGACGGTGGCACTCGCTTCGTCGAGGACGCCTGGACCCGACCTGCCGGCGGTGGCGGGCGCACCCGAGTGATTGAAAACGGTACGGTCATCGAGAAGGGCGGCGTCAACTTTTCCCACGTCTTTGGCAGCGGTCTCCCACCCTCGGCCAGCGCCCACCGGCCGGAGCTGGCCGGGCGCGGCTTCGAGGCCCTGGGTGTGTCGCTGGTGATCCACCCGCACAATCCCCACGTGCCTACGTCCCACGCCAACGTACGCTTTTTCATCGCCGAAAAAGAAGGCGAAGAGCCGGTCTGGTGGTTTGGCGGCGGTTTCGACCTGACCCCTTACTACGGCGTGGAAGAAGATTGCGTGCATTGGCACCGCGTCGCCCAGCAAGCCTGCGAGCCCTTCGGCCCGGAGGTCTATTCGCGCTACAAGGCCTGGTGCGACAGCTATTTCCACATCAAGCATCGCAACGAACCGCGCGGCATCGGCGGTCTGTTTTTTGATGACCTGAACGAATGGGACTTCGATACCAGCTTCGCCTTCATGCGCGCCATCGGCGATGCCTACATCGATGCCTACCTGCCTATCGTGCGACGCCGCAAGCACGACCCGTTTACCGCCGCGCAACGACAATTCCAGGAGTTCCGCCGTGGGCGCTACGTGGAATTCAACCTGGTCTATGACCGTGGCACCCTGTTCGGCCTGCAATCGGGCGGGCGTACCGAGTCGATCCTGATGTCGCTGCCACCGCAGGTCCGCTGGAGCTACGACTGGAAAGCCGAGCCGGGCAGCGAAGAGGCGCGGCTGACCGATTATTTCCTGCAGGATCGCGATTGGCTGGCTACGGCCTGAMTTRTEAVKAYLLDLQDRICAALETEDGGTRFVEDAWTRPAGGGGRTRVIENGTVIEKGGVNFSHVFGSGLPPSASAHRPELAGRGFEALGVSLVIHPHNPHVPTSHANVRFFIAEKEGEEPVWWFGGGFDLTPYYGVEEDCVHWHRVAQQACEPFGPEVYSRYKAWCDSYFHIKHRNEPRGIGGLFFDDLNEWDFDTSFAFMRAIGDAYIDAYLPIVRRRKHDPFTAAQRQFQEFRRGRYVEFNLVYDRGTLFGLQSGGRTESILMSLPPQVRWSYDWKAEPGSEEARLTDYFLQDRDWLATAPGPT0003205_1676DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003205-hemF-K00228NANA
D1-35_02873978qorA_1COG0604Quinone oxidoreductase 1ATGGCCAAACGTATCCAGTTCAGCGCCCACGGCGGCCCGGACGTGCTTGAGTACGTCGAATACCAGCCGGCCGAGCCCGGTCCGCAGCAGGTTCGCGTCAGCAACAAGGCGATCGGCCTGAACTTCATCGACACCTATTATCGCAGCGGGCTTTACCCGCCACCGGCGCTGCCATCGGGACTCGGTGCTGAGGGTGCCGGCGTGGTCGAGGCCGTCGGCGCGGACGTCACGCGCTTCAAGGTCGGTGACCGCGTGGCCTATGGCAGCGGTCCGCTGGGGGCCTACAGCGATGTGCATGTGTTGCCCGAGGCCAATCTGGTCCACTTGCCCGAATCCATCAGTTTCGAACAGGCCGCCGGGGTGATGCTCAAGGGCCTGACCGTGCAATACCTGCTGCGCCAGTCCTACGAGCTCAAGGGCGGCGAAACCATCCTGTTCCATGCCGCCGCCGGTGGCGTGGGCTCGCTGGCCTGCCAATGGGCCAAGGCCCTGGGCGTGAAGCTGATCGGCACCGTCAGCTCAGCGGAAAAAGCCGCTATCGCAAAAGCCCACGGCGCCTGGGAAGTGATCGACTACAGCAAGGAAAACGTCGTACAGCGTGTACTGGAATTGACTGACGGCAAGAAGGTCCCGGTGGTGTACGACGGCGTCGGCAAGGACACCTGGCTGACCTCCCTGGATTGCACGGCTCCCCGTGGCCTGGTGGTGAGCTTCGGCAATGCCTCCGGCGCGGTGGAGGGCGTGAACCTGGGGATTCTCTCGGCCAAGGGCTCGCTGTACGTCACCCGCCCGACTCTGGCGACCTACGCCAACAACGCCGAAAACCTCCAACACATGGCCGATGAGCTATTCGCCATGATCGCCAGCGGCAAGCTTACCGTGGATATCAACCAGCGTTATCCGCTGGCGGAAGCGGCCAAGGCCCATACCGAGTTGTCGGCGCGGCGCACGACGGGGTCGACCATTCTGCTGCCCTGAMAKRIQFSAHGGPDVLEYVEYQPAEPGPQQVRVSNKAIGLNFIDTYYRSGLYPPPALPSGLGAEGAGVVEAVGADVTRFKVGDRVAYGSGPLGAYSDVHVLPEANLVHLPESISFEQAAGVMLKGLTVQYLLRQSYELKGGETILFHAAAGGVGSLACQWAKALGVKLIGTVSSAEKAAIAKAHGAWEVIDYSKENVVQRVLELTDGKKVPVVYDGVGKDTWLTSLDCTAPRGLVVSFGNASGAVEGVNLGILSAKGSLYVTRPTLATYANNAENLQHMADELFAMIASGKLTVDINQRYPLAEAAKAHTELSARRTTGSTILLPPGPT0013255_6221DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
D1-35_02874558tsaCCOG0009Threonylcarbamoyl-AMP synthaseATGGTCAACAGTTGGCGTGTGCAACAAGCCGCGCGAGAAATTCGCGCCGGGGCGGTGATTGCCTATCCAACCGAAGCGGTCTGGGGCCTGGGTTGCGACCCGTGGAACGAAGATGCGGTGGAGCGTCTGTTGGCGATCAAGTCCCGACTGCCCGACAAGGGCCTGATACTGGTGGCCGACAACATCCACCAGTTCGATTTCCTGTTCGAGGATTTCCCCGAGACCTGGATGGATCGCATGGCCAGCACTTGGCCTGGGCCGAACACCTGGCTGGTCCCGCACCAGAACCTGTTGCCGGAATGGATTACCGGCGTGCACGACACCGTCGCGCTACGGGTCAGCGATCATCCGATCGTGCGCGACCTGTGTTCGCTGGTCGGCCCGCTTGTCTCCACCTCGGCCAACCCCCAGGGGCGCCCGGCGGCACGCACGCGGATCCGCGTGGAGCAGTATTTCCGCGGGCAGATCGACCTGGTGCTCGGCGGCAACCTGGGCGGGCGTCGGAACCCGAGCGTGATCCGTGACCTGGCGACCGGCAAGGTGGTGCGGCCGGACTGAMVNSWRVQQAAREIRAGAVIAYPTEAVWGLGCDPWNEDAVERLLAIKSRLPDKGLILVADNIHQFDFLFEDFPETWMDRMASTWPGPNTWLVPHQNLLPEWITGVHDTVALRVSDHPIVRDLCSLVGPLVSTSANPQGRPAARTRIRVEQYFRGQIDLVLGGNLGGRRNPSVIRDLATGKVVRPDNANANANANA
D1-35_028751095hypothetical proteinATGCCATTGCCTGAATCCGCTTCGGTTCCGCCCGCGGAACTAGAGGCCCGTCTGCGCTTGCATCGCTTGCCGGAACTGGGACCCAAACGTTTCATGACCCTCATGGAAGCCTTCGGCTCGGCCTCCAAAGCCATCAGCGCCCCGCCCAGCGCATGGCGAGCGCTGGGGTTGCCGGCGCAGTGCGCCGAGGCCCGACGCGCGCCGGAAATACGTGATGGCGCGGCCCGTGCATTAGCCTGGCTAGAGGGTCCGGCCCACTGTCTATTGATGTGGGACCAGCCCGACTACCCGGCGTTGCTGGCGCAGATCTGCGACGCGCCGCCGCTTCTGTTCGTTGCCGGCGACACCTCGATTCTGGAGAAACCGCAATTGGCGATGGTCGGCAGTCGTCGCGCCTCGCGTCCCGGCATGGACACCGCGGCGGCATTTTCCCGGAGCCTGGCCGGAGCTGGATTTGTCATCACCAGCGGTCTGGCCTTGGGTATCGATGCGGCCGCGCATCAAGCTGCGCTGGATGTCGGCGGGCAGACAATCGGTGTGCTGGGCACGGGCCTGGAAAATTTTTATCCACAGCGCAATCGGCGGCTGGCGGAAGCGATGATCGCCCAGGGCAGCGCGGTGCTGTCGGAGTTCCCCCTGGACGCGCCACCCCACGCCAGCAACTTCCCGCGCCGCAATCGGATTATCAGCGGTTTGTCCCTTGGCGTGCTGGTGGTCGAGGCCAGCGTCGCCAGTGGCTCGCTGATCACCGCGCGCCTGGCGGCGGAACAGGGTCGTGAGGTGTATGCCATTCCGGGGTCGATTCACCATCCCGGCGCCCGGGGCTGCCATCAACTGATCCGTGACGGCGCGGCGCTGGTGGAAACCGTGGAGCACATCCTCGAAGCGCTACGCGGTTGGCAACGCTTACCCTTCGCCGCCGAACCTGTCCCCGTGACGCATCCGCTGTTGCGCCTGCTGCACGCCGCGCCGCAGACCAGCGAAGCACTGGCCGACGCCAGCGGCTGGGGCTTGTCCAAGGTCCTGGCGGCACTGACCGACCTGGAAATGGACGGAAGGGCTGCGTGCGAGTATGGACGCTGGTTTGCTCGCTAGMPLPESASVPPAELEARLRLHRLPELGPKRFMTLMEAFGSASKAISAPPSAWRALGLPAQCAEARRAPEIRDGAARALAWLEGPAHCLLMWDQPDYPALLAQICDAPPLLFVAGDTSILEKPQLAMVGSRRASRPGMDTAAAFSRSLAGAGFVITSGLALGIDAAAHQAALDVGGQTIGVLGTGLENFYPQRNRRLAEAMIAQGSAVLSEFPLDAPPHASNFPRRNRIISGLSLGVLVVEASVASGSLITARLAAEQGREVYAIPGSIHHPGARGCHQLIRDGAALVETVEHILEALRGWQRLPFAAEPVPVTHPLLRLLHAAPQTSEALADASGWGLSKVLAALTDLEMDGRAACEYGRWFARNANANANANA
D1-35_028761026hypothetical proteinATGAGGAAATCACTACTCGCCCTGCTGCTCCTGGCCTCGGCCGGTATCGCGCACGGGCAAGTGCAACTTCGGGAAGGTTTTCCGCAGCAATACACAGTGGTTCCAGGGGATACGCTGTGGGACATTTCCGGTAAATACCTGCGCGAACCCTGGAAATGGCCCGAGCTGTGGCAGGCCAACCCGCAGATCGAAAACCCGCACCTGATCTACCCCGGCGACACCCTGTCGCTGATCTACGTCAACGGCCAGCCGCGGCTGACCCTCAATCGCGGGGCCTCGCGCGGCACCATCAAGCTGTCGCCGCGAATCCGCAGCTCGCCGGTGGCAGACGCCATTCCGAGCATCCCGCTCCAGGCCATCAACAGCTTCCTGCTGAGCAACCGCATCGTCGACACGGCGGAGGATTTCAACAAGGCGCCCTACGTCGTCGCAGGCGATGCCGAACGAGTGCTCAGCGGCACCGGCGACCGGATCTTCGCCCGCGGCACCTTCGATGCGAGCCAGTCGGCCTACGGCATCTTCCGCCAGGGCAAGGTCTACACCGACCCCGAGACCAAGGAATTTCTCGGGATCAACGCCGACGACATCGGCAGCGGCGAGATCGTCGCCACCGAAGGCGACGTCACCACCCTGGCCCTGCAGCGCACCACGCAGGAGGTGCGCCTCGGCGATCGGCTGTTCAGCGGTGAAGAACGCTCGATCAATTCGACCTTCATGCCCAGCGCGCCAAAATCGGACATCAACGGGTTGATCCTCGATGTGCCCCGGGGCGTGACCCAGATCGGCGCGATGGACGTGGTCACCCTGAACAAGGGGCGCCGTGACGGATTGGCCGAAGGCAACGTTCTGGCGGTCATGAAGACCGGTGAAACAGTGCGCGACCGCATCACCGGCGCCCCGGTGAAGATTCCCGACGAACGCGCCGGCCTGCTGATGGTGTTCCGCACCTACGACAAGCTCAGTTATGGCCTGGTGCTGTACGCCTCGCGCTCGCTGGCAATCCTCGACAAGGTGCGCAATCCGTAAMRKSLLALLLLASAGIAHGQVQLREGFPQQYTVVPGDTLWDISGKYLREPWKWPELWQANPQIENPHLIYPGDTLSLIYVNGQPRLTLNRGASRGTIKLSPRIRSSPVADAIPSIPLQAINSFLLSNRIVDTAEDFNKAPYVVAGDAERVLSGTGDRIFARGTFDASQSAYGIFRQGKVYTDPETKEFLGINADDIGSGEIVATEGDVTTLALQRTTQEVRLGDRLFSGEERSINSTFMPSAPKSDINGLILDVPRGVTQIGAMDVVTLNKGRRDGLAEGNVLAVMKTGETVRDRITGAPVKIPDERAGLLMVFRTYDKLSYGLVLYASRSLAILDKVRNPNANANANANA
D1-35_02877507def_2COG0242Peptide deformylaseATGGCCATTTTGAACATTCTCGAATTTCCGGACCCGCGCCTGCGCACCATCGCCAAACCGGTGGCCGTAGTGGACGACGAAGTGCGCCAGTTGGTCGATGACATGTTTGAAACAATGTATGAGGCGCCCGGCATCGGCCTCGCCGCGACCCAGGTCAACGTGCACAAGCGCATCGTTGTAATGGACCTCTCCGAAGACCGCAGCGAGCCGCGGGTGTTCATCAACCCCGAGTTCGAAACCCTGACCGACGAGATGGAGCAGTACCAGGAAGGCTGCCTTTCGGTGCCGGGCTTCTACGAAAACGTCGACCGTCCGCAGAAGGTCAGGATCAAGGCCCTGGACCGCGACGGCAAGCCTTACGAGCTGATCGCCGAAGGCCTGCTGGCGGTGTGTATCCAGCACGAATGCGACCACCTCAACGGCAAGCTGTTCGTCGATTACCTGTCTAATCTCAAGCGTGACCGGATCAAGAAAAAACTGGAAAAGATTCATCGCCAGAACGCTTGAMAILNILEFPDPRLRTIAKPVAVVDDEVRQLVDDMFETMYEAPGIGLAATQVNVHKRIVVMDLSEDRSEPRVFINPEFETLTDEMEQYQEGCLSVPGFYENVDRPQKVRIKALDRDGKPYELIAEGLLAVCIQHECDHLNGKLFVDYLSNLKRDRIKKKLEKIHRQNAPGPT0008125_24DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008125-fmt-K00604NANA
D1-35_02878960fmtCOG0223Methionyl-tRNA formyltransferaseATGACTGAGCCACTGCGCATCGTCTTTGCCGGCACCCCCGAATTTGCCGCTGAACACCTCAAGGCCCTGCTGGCCAGCCCTCATGAAATCGTCGCGGTCTATACCCAGCCGGATCGCCCTGCCGGTCGTGGACAGAAACTGATGCCCAGCCCGGTCAAGCAACTGGCTCTAGAGAATGGCCTGCAAGTGTTGCAGCCGCCGACTCTGCGCGATGCGCAAGCCCAGGCCGAACTGGCCGCGCTGAAGCCAGACTTGATGGTAGTGGTCGCCTACGGCTTGATCCTGCCGCAAGTGGTGCTGGATATCCCGCGTCTGGGCTGCATCAACAGCCACGCGTCGCTGTTGCCGCGCTGGCGCGGTGCGGCGCCGATCCAGCGCGCCGTGCAGGCCGGCGATGCCGAGAGCGGCGTGACCGTGATGCGCATGGAGGCCGGCCTGGACACGGGGCCGATGCTGCTCAAGGTGAGCACGCCTATCGGCGCTGAAGACACGGGTGGCAGCCTGCATGATCGCCTCGCGCTGATCGGCCCGCCGGCCGTGGTCGAGGCCATCGCGGGCCTGGCCGCCGGCACGCTGCAAGGCGAAGTGCAGGACGACAGCCTCGCCACCTACGCGCACAAATTGAACAAAGACGAAGCCCGCATCGACTGGAGCCGCCCGGCCGTGGAACTGGAACGCCTGGTGCGCGCCTTCAACCCTTGGCCGGTCTGCCACAGCACGTTGAACGGCGAAGCCGTGAAAGTCCTGGCCGCCAGCTGCGCCGAGGGGAAGGGCGCGCCGGGAGAAATCCTCGGCGCCAGCAAGGACGGCCTCATCGTCGCCTGTGGCGATCAGGCGCTGTGCCTGACCCGACTGCAATTGCCCGGCGGCAAGGCACTGGGCTTCAGCGATCTGTTCAATAGCCGCCGTGAGAAATTCGCCGTCGGCACTGTCCTCGGCCAAGCGGCGGACGCTTCATGAMTEPLRIVFAGTPEFAAEHLKALLASPHEIVAVYTQPDRPAGRGQKLMPSPVKQLALENGLQVLQPPTLRDAQAQAELAALKPDLMVVVAYGLILPQVVLDIPRLGCINSHASLLPRWRGAAPIQRAVQAGDAESGVTVMRMEAGLDTGPMLLKVSTPIGAEDTGGSLHDRLALIGPPAVVEAIAGLAAGTLQGEVQDDSLATYAHKLNKDEARIDWSRPAVELERLVRAFNPWPVCHSTLNGEAVKVLAASCAEGKGAPGEILGASKDGLIVACGDQALCLTRLQLPGGKALGFSDLFNSRREKFAVGTVLGQAADASPGPT0008125_1550DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008125-fmt-K00604NANA
D1-35_028791311rsmBCOG0144Ribosomal RNA small subunit methyltransferase BATGAATCCGCGTCTGGCCGCCGCCAAGGCACTGGCCGCCGTCCTCGGCGGCAAGGCTTCGCTCAACAGTTCCCTGCCGACTCAACTGGACAAGGTCGAAGACCGTGATCGCGGTTTCACCCAGGACCTGGCGTTCGGCACCGCCCGCTGGCAACCACGGTTGTCGACCCTGGCGGCCAAGCTGCTGCAGAAGCCGTTCAAGGCGGCCGATGCCGACGTCGAGGCGTTGCTGCTGGTGGGGCTCTACCAATTGCTCTACACCCGCGTTCCGGCCCACGCCGCCATCGGCGAAACCGTGGGTTGCGCCGACAAACTGAAAAAACCGTGGGCCAAGGCGCTGCTCAATGCCGTGCTGCGCCGCGCGCAACGGGAAAGCGAAACCCTGCTGGCGGAACTGGAGCATGACCCGGTGGTGCGCACTGCTCATCCGCGCTGGCTGCAGAAATCCCTGAAAGCCTTCTGGCCTGATCAGTGGGAAGCCATCTGCGCGGCCAACAATGCCCATCCGCCGATGATCCTGCGGGTCAATCGCCGTCATCACAGCCGTGATGCGTATCTGGCCTTGCTGGGTGAAGCCGGCATCCCGGCCGTCCCGTGCCAATACAGCCGCGACGGCATCATCCTGGAAACCCCGGGCGACGTCCGTGCCCTGCCAGGTTTCGCTGACGGCTGGATCAGCGTCCAGGACGAAGCGGCGCAGTTGGCCGCCGACCTGCTGGAACTGGCGCCGGGCCAACGGGTGCTGGACGCCTGCTGCGCGCCGGGCGGCAAGACCTGCCACATCCTTGAGGCCGAGCCGAAACTGGCCGGTGTGGTGGCGGTGGACCTGGAAGCCAAGCGCCTGGTGCGGGTGAAGGAAAACCTCGCGCGCCTGGGCCTGGATGCCGAGCTGTTCGCCGCCGATGGCCGCGACACCGCCGCCTGGTGGGACGGCAAGCCATTCCAGCGCATCCTGCTGGACGCGCCTTGCTCGGCCACTGGCGTCATCCGCCGTCATCCGGACATCAAGCTCACCCGTCAGGCGGACGACATCGCCCCATTGGCGCAACTGCAAGGGGAACTGCTCGACGCCCTGTGGCTGACCCTCGAAGTCGGCGGCATGCTGCTGTACGCCACATGCTCGACCTTGCCGACCGAGAACACCGAAGTGATCGAAGCATTCCTCGCCCGCACGCCGGGTGCACGGGAGTTGGACATCGCCACCCAGGCCGGTATCAAGCAGCCCCATGGCCGCCAGTTGCTGGCCCAGGAGGGCGGGCATGACGGGTTCTATTACGCCAAGTTGATCAAGATCGCCGCCGCACGCGGTTAAMNPRLAAAKALAAVLGGKASLNSSLPTQLDKVEDRDRGFTQDLAFGTARWQPRLSTLAAKLLQKPFKAADADVEALLLVGLYQLLYTRVPAHAAIGETVGCADKLKKPWAKALLNAVLRRAQRESETLLAELEHDPVVRTAHPRWLQKSLKAFWPDQWEAICAANNAHPPMILRVNRRHHSRDAYLALLGEAGIPAVPCQYSRDGIILETPGDVRALPGFADGWISVQDEAAQLAADLLELAPGQRVLDACCAPGGKTCHILEAEPKLAGVVAVDLEAKRLVRVKENLARLGLDAELFAADGRDTAAWWDGKPFQRILLDAPCSATGVIRRHPDIKLTRQADDIAPLAQLQGELLDALWLTLEVGGMLLYATCSTLPTENTEVIEAFLARTPGARELDIATQAGIKQPHGRQLLAQEGGHDGFYYAKLIKIAAARGNANANANANA
D1-35_028801374trkACOG0569Trk system potassium uptake protein TrkAATGAAGATCATCATCCTCGGTGCAGGGCAAGTCGGCGGTTCGCTGGCGGAACATCTGGCCAGCGAGGCCAACGACATCACCGTGGTCGACACCGACGGCGAGCGCCTGCGCGACCTCGGCGACCGTCTCGACATCCGCACCGTGCAAGGGCGTGGCTCCTTGCCGACGGTGCTGCGCCAGGCCGGTGCCGACGACGCCGACATGCTGGTGGCCGTGACCAACAGCGACGAAACCAACATGGTCGCCTGCCAGGTCGCCCACACGCTGTTCCACACCCCGACCAAAATCGCCCGGGTGCGTGAAGCAGCCTACCTGACCCGCGCCGACCTGTTCGACAACGAAGCGATTCCGGTGGACGTGCTGATCAGCCCCGAGCAGGTGGTGACCAACTACATCAAGCGCCTGATCGAGCATCCCGGCGCGTTGCAGGTAATCGACTTCGCCGAGGGCAAGGCGCAACTGGTGGCGGTCAAGGCCTACTACGGCGGGCCGCTGGTGGGCCAGCAACTGCGTCAGTTGCGCGAACACATGCCGAATGTGGAGACCCGGGTCGCGGCGATTTTCCGCCGTGACCGACCGATCCTGCCCCAGGGCGACACGGTGATCGAAGCGGACGACGAGGTATTTTTCATCGCCGCCAAGGCGAATATTCGCGCAGTCATGAGCGAAATGCGCCGTCTCGACGAGAACTACAAACGCATCGTCATCGCCGGCGGCGGGCAGATCGGCGAACGTCTGGCCGAAGCCATCGAAAGCCGTTACCAAGTCAAGATCATCGAGATGAACCCGGCGCGCTGCCGCTACCTCTCGGACACCCTCGACAGCACCGTGGTGCTGCAAGGCAGTGCCTCGGACCGCGACCTGCTGCTGGAAGAAAACATCGCCGATGCCGACATCTTCCTCGCCCTGACCAACGACGACGAAGCCAACATCATGTCCTCGTTGCTGGCCAAACGCCTGGGTGCGAAGAAGGTCATGACCATCATCAACAACCCGGCCTACGTCGACCTGATCCAGGGCGGCGACATCGACATCGCCATCAGCCCGCAACTGGCAACCATCGGCACCTTGCTCGCCCACGTGCGCCGCGGCGACATCGTCAGCGTGCACTCCCTGCGCCGCGGCGCGGCAGAGGCCATCGAGGCGATCGCCCATGGCGATGCCAAGTCGAGCAAAGTGATCGGCAAAGCCATCCGCGACATCGGCCTGCCGCCCGGCACCACCATCGGCGCAATCATCCGCGACGAACAGGTGCTGATCGCCCACGACGTCACCACCATCCAGACCGGCGACCATGTAATCCTGTTCCTCGTGGACAAGAAGCACATCCGTGATGTCGAGAAGCTGTTCCATGTGGGGTTGAGTTTCTTCTGAMKIIILGAGQVGGSLAEHLASEANDITVVDTDGERLRDLGDRLDIRTVQGRGSLPTVLRQAGADDADMLVAVTNSDETNMVACQVAHTLFHTPTKIARVREAAYLTRADLFDNEAIPVDVLISPEQVVTNYIKRLIEHPGALQVIDFAEGKAQLVAVKAYYGGPLVGQQLRQLREHMPNVETRVAAIFRRDRPILPQGDTVIEADDEVFFIAAKANIRAVMSEMRRLDENYKRIVIAGGGQIGERLAEAIESRYQVKIIEMNPARCRYLSDTLDSTVVLQGSASDRDLLLEENIADADIFLALTNDDEANIMSSLLAKRLGAKKVMTIINNPAYVDLIQGGDIDIAISPQLATIGTLLAHVRRGDIVSVHSLRRGAAEAIEAIAHGDAKSSKVIGKAIRDIGLPPGTTIGAIIRDEQVLIAHDVTTIQTGDHVILFLVDKKHIRDVEKLFHVGLSFFPGPT0002710_1088DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002710-trkA|ktrA-K03499NANA
D1-35_02881312hypothetical proteinATGCTCGACTCCCTCGAAAAAATGCTCGCCAAGGGCGTGGACAACTCCCTACTCCGCTTCGGCCTCGGCAAAGGCTACCTCGACCTAGGCGAATTCCCCCGCGCCGCCGAACACCTCCAACGCTGCGTCGAATTCGACCCCAAGTATTCGGCGGCCTGGAAACTGCTGGGCAAGGCCCCCCAAGGCCAAGGCGATGCTGCTGCGGCCCGTCGGGCCTGGGAGCAAGGCCTGGAAGCCGCCCGGGCTCATGGTGACAAGCAGGCGGAGAAGGAAATGACCGTGTTCCTCAAGAAACTGAATCGCCATTCCTGAMLDSLEKMLAKGVDNSLLRFGLGKGYLDLGEFPRAAEHLQRCVEFDPKYSAAWKLLGKAPQGQGDAAAARRAWEQGLEAARAHGDKQAEKEMTVFLKKLNRHSNANANANANA
D1-35_028821083hypothetical proteinATGGACTTTGTAGAACGCTTGAGCGCAATGTCAGCGAAGGTTAATCAGCTAGCGTCGACGATACAAACCGAGGAAGCAACGAAGACTGCTTTTGTCATGCCGTTCATTCATACCGTGCTGGGCTACGATGTGTTCGACCCCTCTGAAGTCGTTCCTGAATATGTGTGCGATGTCGGCACTAAGAAAGGGGAAAAGATTGATTACGCGATCTTGAAGGGCGGCCAAATCCAGATATTGATCGAAACAAAAAAAATCGGCGAGCCGCTGAATATCAACCATGCGAGTCAGCTCTTTAGATATTTCCACGTCACTACTGCACGAATCTCCATCCTTACAAATGGCAGGTTCTATCGGTTTTACACTGATCTTGATGCCCCCAACAAAATGGATGAGAAGCCATTTTTAGAGATCGATCTGCTTAATATTGATGAACACGTCATTCCTGAGCTTCAAAAGCTTACGAAATCCGCTTTCGATGTTGATTCAATCATCAATGCCGCAGGCGAACTGAAGTACGTGGGAAACATAAAAAAGGAAATAGCTAAGCAGCTCACTCAGCCTGACGATGATTTCGTTCGTTTCTTCGCATCGCGAGTCTACGAAGGGGTTATCACCCAAAAAATTCGAGATCAGTTCACTCAGCTCACAAGGAAGGCCGCTTCCCAGTACCTCAGTGACCAAATAAACGACAGGTTGAAGTCAGCGATGAGCAAAGCCACGTTTCCTACGCTCGCTGAATCGGTCGTTGCTGAAAATCAGGCTGAAACCCAAGAAGAGCCTGAAGACCGCATTCTTACTACGATGGAGGAGCTGGAAGGTTTTCATATTATCAAGGCGATTGTCCGGACAGTCGTAGACGCAAAGCGCATAGCTAGCAGAGACACGCAGAGCTACTTCGGCATCCTCCTAGACGACAACAACCGAAAACCTATCGCAAGGCTTCACTTCAATCGTAGTCAAAAATATCTTGGGATTTTCGACAAGGATAAAGTCGAAACGCGCCATCCTATCAACTCGCTGGATGAGATCTATGAGTTTTCAGCCCCGCTGAAAGAGACGATCTCTTTTTACCAAGAAGCCTAGMDFVERLSAMSAKVNQLASTIQTEEATKTAFVMPFIHTVLGYDVFDPSEVVPEYVCDVGTKKGEKIDYAILKGGQIQILIETKKIGEPLNINHASQLFRYFHVTTARISILTNGRFYRFYTDLDAPNKMDEKPFLEIDLLNIDEHVIPELQKLTKSAFDVDSIINAAGELKYVGNIKKEIAKQLTQPDDDFVRFFASRVYEGVITQKIRDQFTQLTRKAASQYLSDQINDRLKSAMSKATFPTLAESVVAENQAETQEEPEDRILTTMEELEGFHIIKAIVRTVVDAKRIASRDTQSYFGILLDDNNRKPIARLHFNRSQKYLGIFDKDKVETRHPINSLDEIYEFSAPLKETISFYQEANANANANANA
D1-35_02883339hypothetical proteinATGTTCAAAGAAACTCCGAACCAGCCAGAGGCTGGTTCCACCTCTACCTCCGCAAAATCCAAAGCCAAGCAACAAGACGAAACCACCGAACCGAAACCGGAAGAATCTCAAGACGACCTCAAACCGGGGCAGCTATACACCGTCGTGGAAGGCCTCGATAACGAATGCCTGCTTGCCAACCTCAGCGAGACGTTGGCTTCGGCTGATGCGATGGTGAGTGATCTGGCGTTTGATCTGGATGGGACACGGCGTCATGTGGCGCTGGGGATTCAGCAGTTGATTGAGTTGAGTTCGTTGCTGGCGGATAGGGTTTTGGATAACGTGGAGCCGCGGCGGTAGMFKETPNQPEAGSTSTSAKSKAKQQDETTEPKPEESQDDLKPGQLYTVVEGLDNECLLANLSETLASADAMVSDLAFDLDGTRRHVALGIQQLIELSSLLADRVLDNVEPRRNANANANANA
D1-35_02885660hypothetical proteinATGCGCACAGCCACCATCGAGTGCAGGCAATGCCCGACTGATGAGACTCATGCGACCGTATCCTTAACCGGGCTACTAAACCCGACCACTGATGGGCAGTGGCAGGACGACAATAGAACCCAGGAACAAGGCGCACAAGCCGGCGGATTCTGGCGTAGTTGTAGGCAAAGGCGCAAGGATGCGTGGCTTGATGGACGTTGTAGGCGGGGGCTGTATCGCGGGATCGTCTTCAACGTCTCGCAGATCACCCTCACCGACAGCGAACGTGGACGCTTGCGCGAGCTGCATTTTGGCGAGGCAAAACACGCTCACTATGTAGTCAACAGCAAGGTCGTCGAGGTATACGACAAGATGCAGGCCAGGGGCCTGCCTTGCGTGATGATGATCGGCATCTCCAGGCCGCTGACCCGACAACAGGGCGATGCCCTCAACGTCCAGCGCACCACGATCGCCACCCTTGCAGCCGCAGCCTTCGCTTCCGCCGCCAAGGCTGTGGCCCCTCCTTACGTGGCGGCATCCGTAGGGGCCGGTGTGCGCATGTATGCCAATGAAATCCTGCCCATCTACCATGCGGGCGACGTACTGGTCAGCATCGAGGCGCAGGTCAACGGCGGCATCGGCCCGCAACGCACCCTCTCGACATTGATCATCAAGGCCTGAMRTATIECRQCPTDETHATVSLTGLLNPTTDGQWQDDNRTQEQGAQAGGFWRSCRQRRKDAWLDGRCRRGLYRGIVFNVSQITLTDSERGRLRELHFGEAKHAHYVVNSKVVEVYDKMQARGLPCVMMIGISRPLTRQQGDALNVQRTTIATLAAAAFASAAKAVAPPYVAASVGAGVRMYANEILPIYHAGDVLVSIEAQVNGGIGPQRTLSTLIIKANANANANANA
D1-35_02886264hypothetical proteinATGTCCGAAATTACTCAATTGGTCATTGCCTTGGTGGTGTCCTTTCTTCTTGATCGATTCCTCAAGCCCTATCTGCTACGTAAGTGGCTAGGCGTGGTGTTGATGGCGGCGGGTGTGGTTGGCTGCTTTGTGGCAGGTCAGAACCGCTTGTTGGGGTTTGATCTGGGGTTGCTGTCGGTTTTTGCCGTGGTGATAGGGATGGGGTTGTTCATGAAGCGGCGGCGGTTTGAGGAGGTTGGTGTAGGGAAGAAAGGGGCTGATTGAMSEITQLVIALVVSFLLDRFLKPYLLRKWLGVVLMAAGVVGCFVAGQNRLLGFDLGLLSVFAVVIGMGLFMKRRRFEEVGVGKKGADNANANANANA
D1-35_02887921syrM1HTH-type transcriptional regulator SyrM 1ATGGATACCAGACGCCTTGATCTCAATCTGCTGGTGACATTGGAGGCCCTTCTCATCGAGCAGAACGTGACTAGGGCAGCCGCCCGTCTGCATTTGAGCCAGCCAGCGGTCAGTGCACAATTGGGCCGCCTGCGCGATGTCTTCAACGACCCTCTTCTAATCCCCGCGCAGCGTGGAATGACCCCCACTGTCAAAGCTTTGGAGCTGCTGGTCCCGCTTCGCCAGGCACTTGACCAGGTAAGAGCCACCGTCACTACTCACCTGAACTTCGAGCCCGCGACGGCGAGCTTAACGGTATCCATCGCCTGCACGGATTACGTGCAAGCGGCCTTGATCAAACATCTCGTTGTCGCCATGCGACGCAAAGCGCCGGGTGTCCGTATCGCACTGCGCATCCTGGACGTACCACAACTGGAGCAGCAGATGACCCGCGGCGATGTGGACCTGGCCGTGATAAACATGAACGGCGCGCCGCCCACACTGCTCTCCCAACACCTCTATGACGAGAGTTACGTGCTGATCGGGCGCCGTGGGCATCCAAGCCTGCACGCCGACCTGACTGTGGATGAGTTCGCGCAACTGGAACATGTCGTGGTGTCACTACGCGGCGGAGGATTCTCTACCTCGGTGGATAACGCCTTGGTAGCGCGGGGGCAGCGGCGTAACGTAGTTTTGTCAGCATCGTCTTTCCTTCCAGTACCGGAGTTGGTCGCGGAGTCGGATTGTGTGGCCCTGGTTCCACGTCGTCTCGTAGAAGGTCGTGGCGAGCAACTGCTGTGCGTAGCCCCCCCATTGCCGGTGGAAGGTTTTGCGATTGGCATGTTCTGGCATGAGCGGTCTGACGGGCACGCCGGCTTCAGATGGGTGCGGGAGTTCATCGCTCTCGTAGCCGATTCTCGGGCATCTACGCTGACAGGGTAGMDTRRLDLNLLVTLEALLIEQNVTRAAARLHLSQPAVSAQLGRLRDVFNDPLLIPAQRGMTPTVKALELLVPLRQALDQVRATVTTHLNFEPATASLTVSIACTDYVQAALIKHLVVAMRRKAPGVRIALRILDVPQLEQQMTRGDVDLAVINMNGAPPTLLSQHLYDESYVLIGRRGHPSLHADLTVDEFAQLEHVVVSLRGGGFSTSVDNALVARGQRRNVVLSASSFLPVPELVAESDCVALVPRRLVEGRGEQLLCVAPPLPVEGFAIGMFWHERSDGHAGFRWVREFIALVADSRASTLTGNANANANANA
D1-35_02888819kefF_2Glutathione-regulated potassium-efflux system ancillary protein KefFATGTCAAAAAAAATACTGATCATCTATGCCCATCCCGAGCCTTCGTCGCTGACGCGGCAGCTGGTGGATGTGTCTGTTGAATGCTTGACTGCGCAAGGGCACGAGGTCCTGCAATCCGATCTATACGCCATGGGCTGGAAAGCAACGTTCGACGAGCACGACTTTCCTGATCGGGCCAACCTTCAGCGGCTGTCGTTCGGCGCAGAGTCCGCTCACGCCTATCGTAATCGCAGCCAAAGCCCTGACGTGGCGGCTGAGCAAGACAAGGTTTTGGCGGCAGATACTGTCATCTTCCAGTTCCCACTTTGGTGGTACGGCATGCCCGCCATCATGAAGGGATGGATAGATCGCGTATGGGCAGCCGGACTCGCCCACGGCTACAAGGACGCTGGCAATGCCTACCGCTATGGTGACGGGGCCTTCAAGGGAAAGCGGGCCATGTTGTCAGTCGCTGTCGGCGGACCCGCAGAAGACTACTCGCCGCGCGGTATCAACGGACCACTTGAGCAATTGCTGTTCCCGATCACGCACGGCTCGCTCTACTTTCCCGGGTTCGATGTGCTGCCTACGTTCGCCATATACGGCACTGGCAACTTGACCGCCGCGGATGCAACCGCAGCCAAAGAGGTTTGGCGCACCCGTCTTGAGGGTTTGTTCACAGACGCGCCAATACCTTTCCGGCCTCAAAACGGTGGGGACTACACACCCCAACACGAGCTTAAACGGCATGTGGCCGTCGGCCAGACCGGCATAATGGCGCACATTGCTTGTAGCGAAACAGCACAGCCGCAGCCGCTTGAAACGCAGGGGGTGTTATGAMSKKILIIYAHPEPSSLTRQLVDVSVECLTAQGHEVLQSDLYAMGWKATFDEHDFPDRANLQRLSFGAESAHAYRNRSQSPDVAAEQDKVLAADTVIFQFPLWWYGMPAIMKGWIDRVWAAGLAHGYKDAGNAYRYGDGAFKGKRAMLSVAVGGPAEDYSPRGINGPLEQLLFPITHGSLYFPGFDVLPTFAIYGTGNLTAADATAAKEVWRTRLEGLFTDAPIPFRPQNGGDYTPQHELKRHVAVGQTGIMAHIACSETAQPQPLETQGVLPGPT0009455_195DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009455-kefF|nqo|ywrO-K00355NANA
D1-35_02889321hypothetical proteinATGAAAACTTTGGTGATTCTGACTCGCCGCGCTGATGGCAAGGCAGAGGACTTCAAGCGACTAGCGAAACCGGAGGTATTACACGTTTGGCAGGGCTTCGCACAGGGTGTTGTCCGCGCAGTACATGGACTGGCCGCCGGTCCCGGAGCAGCGTTTGAGCTGGAGTCCGCCACCTTTGAAGAGGCGCGTGAATACATTGAAGCGCTGCCTTACGTCAAAGAGGATCTGCTACACGTGCAGTACTGTGCGCTCAAGCCATTCTCTGACTACGAGAGACTCGGCGGTGAGCTTGACCAACTGCCCACCCAGCACATCCCATAAMKTLVILTRRADGKAEDFKRLAKPEVLHVWQGFAQGVVRAVHGLAAGPGAAFELESATFEEAREYIEALPYVKEDLLHVQYCALKPFSDYERLGGELDQLPTQHIPNANANANANA
D1-35_02890741ompR_5Transcriptional regulatory protein OmpRATGGAACATGTCGATCACGTATTGATCGTGGATGATGATCGGGAAATCAGGGAGCTGGTCGGCAACTACCTGGTGAAGAATGGCCTGCGCACCACCGTGGTCGCGGATGGTCGCCAGATGCGGGCCTTTCTCGAAGCCAACCAGGTCGACCTGATCGTGCTCGACATCATGATGCCGGGGGACGACGGGCTGCTGCTGTGCCGCGAATTGCGCGCCGGCAAGCATAAGGCGACACCGGTGCTGATGCTGACGGCGCGCAGCGACGAGACCGATCGCATCATTGGCCTGGAAATGGGCGCCGACGACTATCTGGCCAAACCCTTCGCGGCCCGGGAACTGCTTGCGCGCATCAACGCGGTGCTGCGGCGCACTCGCATGCTGCCGCCGAACTTTGTCGTGACCGAAAGCGGCCGGATGCTCAAGTTCGGCCGCTGGCGCCTCGACACCACTGCCCGCCATCTGCTCGATGAAGACGACACGCTGGTCTCGCTGAGCGGCGCCGAGTACCGGCTGCTGCGGGTTTTTCTCGATCATCCGCAGCGGGTGTTGAGCCGCGACCAGTTGCTCAACCTGACGCAGGGCCGTGACGCGGACATCTTCGACCGTTCCATTGACCTGCTGGTCAGCCGCGTGCGCCAGCGCTTGTTGGATGACGCTCGCGAGCCGCTCTACTTGAAGACGGTGCGCAACGAAGGGTACGTCTTTACCTTTGCGGTGGAAATGCTTGAGGAGCAGGCATGAMEHVDHVLIVDDDREIRELVGNYLVKNGLRTTVVADGRQMRAFLEANQVDLIVLDIMMPGDDGLLLCRELRAGKHKATPVLMLTARSDETDRIIGLEMGADDYLAKPFAARELLARINAVLRRTRMLPPNFVVTESGRMLKFGRWRLDTTARHLLDEDDTLVSLSGAEYRLLRVFLDHPQRVLSRDQLLNLTQGRDADIFDRSIDLLVSRVRQRLLDDAREPLYLKTVRNEGYVFTFAVEMLEEQAPGPT0004100_30DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-CUS_TRANSPORT_SYSTEM,PGPT0004100-cusS|copS|silS-K02484NANA
D1-35_028911314sasA_14Adaptive-response sensory-kinase SasAATGAAACTCGCGTTGCAATGGCCCCGCACGCTGGCCTCGCGGCTGTGGCTGGTGTTCCTTGTCGGCTTGATACTGGCCCAGGCCCTGACATTCGCAGCCCAGTACTACGAACGTTACGAAAGCACCAAGACGGCGATGTTGGGCAATTTCGAGCACGACACGGCGACCTCCATCGCCATCCTCGAGCGTCTGCCGGCCGCCGAACGCCTGGAATGGACCAAACGTCTGCAGCGTCGCAACTATGACTATTTGCTGCGCGAACATGATCCCGGCATTCCGCTCACTTCGAACGATCTCGCGGCGACGGCGGCGCAATCCCTTCAAGTCTCGCTGGGCCGCAACTATGACCTGACCATTGTCGAGATCCCTGGTCCACGCCAGCATTTCCAAGCCCAGGTGCGATTGGCTGACGGCAGCCCGGTGACCATCGATGTGCGTCCCTCGGTCAGGCCGTTGTCGCCCTGGTTGCCCTTTGCCCTGGTCGGTCAGTTGCTGTTGATGATCGGCTGCACCTGGCTTGCCGTGCGGATCGCGATACGCCCGCTCAGTCGACTGGCCGAGGCGGTCGAGAACCTCGACCCGAATGCCCATCCCGTGCCGTTGGACGAAACCGGTCCACGGGAAGTGGCCTACGCCGCCCGGGCCTTCAACAGCATGCAGGCGCGCATTGCCGCTTACCTGAAAGAGCGCATGCATTTGCTTGCGGCGATTTCCCACGACTTGCAGACGCCCATCACGCGCATGAAGCTGCGCGCGGAGTTCATGGACGACTCGGTGGAGAAAGACAAACTGGGCAACGACCTGAACGAAATCGAGCACCTGGTGCGCGAGGGTGTCGCTTATGCGCGCAGTGTCCATGGTGCGACTGAGACCAGTTGCCGCATCAGCCTGGATTCTTTTCTCGACAGCCTGGTGTGCGACTACCAGGACACCGGCCGCGAGGTCAGCCTGCGCGGCCAGAACGGCGCGATCATCGAGACAAGGCCCCATGCGTTGCGGCGTATTCTGGTGAACCTGGTGGATAACGCGCTGAAGTACGCCGGCACCGCCGAGGTGGAAATCGGCGGCAATGCGAGCACCGGCGTTTCCATCAGTGTGCTTGACCGAGGGCCGGGCATTCCCGAGGAAATCCTGGCAGAGGTGGTGAAGCCGTTCTATCGGGTGGAAAGCTCTCGCAACCGCAGCTCTGGCGGCACCGGCCTGGGGCTTGCCATCGCTCAACAGTTGACCGTCGCGATTGGTGGCTCACTGAGCCTGCGCAACCGCGACGGCGGCGGTCTTTGCGTGACCCTCGACTTCGGCGTCGATCAGTAGMKLALQWPRTLASRLWLVFLVGLILAQALTFAAQYYERYESTKTAMLGNFEHDTATSIAILERLPAAERLEWTKRLQRRNYDYLLREHDPGIPLTSNDLAATAAQSLQVSLGRNYDLTIVEIPGPRQHFQAQVRLADGSPVTIDVRPSVRPLSPWLPFALVGQLLLMIGCTWLAVRIAIRPLSRLAEAVENLDPNAHPVPLDETGPREVAYAARAFNSMQARIAAYLKERMHLLAAISHDLQTPITRMKLRAEFMDDSVEKDKLGNDLNEIEHLVREGVAYARSVHGATETSCRISLDSFLDSLVCDYQDTGREVSLRGQNGAIIETRPHALRRILVNLVDNALKYAGTAEVEIGGNASTGVSISVLDRGPGIPEEILAEVVKPFYRVESSRNRSSGGTGLGLAIAQQLTVAIGGSLSLRNRDGGGLCVTLDFGVDQNANANANANA
D1-35_02892879cpo_3Non-heme chloroperoxidaseATGAATACCCAGTCCCAACGCGCTCAAGCAGCCAACCCAGCCCAGGCCGGCAGCTATATCACCACCCAGGACGGCGTACAGCTGTATTACAAGGACTGGGGTCCGAAAGATGGGCCAGTCGTCACCTTCAGCCATGGCTGGCCGCTGAATTCGGATAGCTGGGAATCGCAGATGCTGTTCCTGGCGGACCAAGGCTATCGGGTAATCGCCCACGACCGCCGCGGCCATGGCCGTTCCAGCCAGTCGTGGGAAGGCAACGACATGGATCACTATGCCGATGACCTGGCCGCTGTGATCAACGCCCTGGACCTTAACGACGTGACCCTGGTGGGTTTCTCGACCGGTGGTGGCGAAATCACCCGCTACATCGGCCGCCACGGCACCGACCGGGTGAAGAAGGCCGCCCTGATCAGCGCCGTTCCGCCGATGATGCTCCAGACCGAAGACTACCCAGGCGGCTTGCCGATCGAGGTGTTCGACGGCCTGCGCAGGGCCTCGCTGGACAACCGCTCACAGCTGTATCGCGACATTGCGTCTGGGCCGTTCTTCGGCTTCAACCGCGACGGGGCGAAAGTCTCCCAAGGGCTGATCGATTCGTTCTGGGTGCAGGGCATGCAAGCGGGCCACAAAAACACCTATGACTGCATCGCAGCGTTCTCGGCGACAGACTTCCGCGCCGACCTGGCCAGGTTCGACGTGCCGACACTGATCGTGCATGGCGACGATGACCAGATCGTCCCGATTGACGCCTCCGCCCATGCCGCCGCCGAGCTGGTGCAGAACGCCGAGTTGATCGTCTATCCGGGTGCGCCGCACGGCCTGACCGACACCCACAAGGACCGCCTAAACCAGGATCTGTTGGACTTCCTGGCCAAGTGAMNTQSQRAQAANPAQAGSYITTQDGVQLYYKDWGPKDGPVVTFSHGWPLNSDSWESQMLFLADQGYRVIAHDRRGHGRSSQSWEGNDMDHYADDLAAVINALDLNDVTLVGFSTGGGEITRYIGRHGTDRVKKAALISAVPPMMLQTEDYPGGLPIEVFDGLRRASLDNRSQLYRDIASGPFFGFNRDGAKVSQGLIDSFWVQGMQAGHKNTYDCIAAFSATDFRADLARFDVPTLIVHGDDDQIVPIDASAHAAAELVQNAELIVYPGAPHGLTDTHKDRLNQDLLDFLAKPGPT0013125_318DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013125-cpo-K00433NANA
D1-35_02893807menH_22-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseATGCTCACTATCAAATCGCTGTTGGCCGTCACCATCACCGCTGCGCTGGCACTCACATCCGTCCAAAGCGCAACCGCCGCGCAATCCGACGCCGCCAAGCCCACCATCGTGCTGGTGCATGGCGCATTCGCCGAATCGTCCAGCTGGAATGGCGTTGCCGCCCAGTTGCTGACCCAGGGTTTTTCGGTCGTTGCAGCGGCCAACCCGCTGCGCGGCTTGAAGCAGGACGCCGATTACGTCGCCGATATCGTCGAGCAAACCGCCGGCCCGGTGATCCTGGTGGGTCACTCCTACGGCGGCGCCGTGATCACTAACGCCGTGCACAACAACCCCAAGGTCAAGGCCCTTGTCTACGTCGCGGCCTTCGCGCCGGACAAAGGCGAAACCGCCATCGAACTGTCCGGTCGCTACCCTGGCGGCACCCTCGGCCCGACCTTGGCTGCTCCGGTGCAGTTGGACGACGGCAATAAGGATCTCTACATCCAGCAGGACAAATTCGGCCAGCAGTTTGCCGCCGACGTCGCAGCGGCTGATTCCGCCCTGATGGCCGCGACACAACGCCCAATCAGCGAGGCTGCATTGAAGGAAGCGTCTGGCGACCCGGCCTGGAAAAAACTGCCGTCCTGGTTCATCTACGGCTCGGCGGACAAGAACATCCCCGAGGCCGCCCTGAAGTTCATGGCCGAACGCGCGGGCTCGAAAAAGACCGTCACCGTTCAAGGGGCGTCCCATGTGGTGATGACGTCCAATCCGGAGAAAGTTGCGGAGCTGATCGTTGAGGCGGCGCAGGCCAGTTCCAGAGGGTGAMLTIKSLLAVTITAALALTSVQSATAAQSDAAKPTIVLVHGAFAESSSWNGVAAQLLTQGFSVVAAANPLRGLKQDADYVADIVEQTAGPVILVGHSYGGAVITNAVHNNPKVKALVYVAAFAPDKGETAIELSGRYPGGTLGPTLAAPVQLDDGNKDLYIQQDKFGQQFAADVAAADSALMAATQRPISEAALKEASGDPAWKKLPSWFIYGSADKNIPEAALKFMAERAGSKKTVTVQGASHVVMTSNPEKVAELIVEAAQASSRGNANANANANA
D1-35_028942193fcuA_1Ferrichrome receptor FcuAATGCTGTTCCCATCTCGCCTTACATTGCTCGCCGCGTGCTGCTCAGTCAGTTTTCTTGTCCAGGCCGCAGAACCTATTGAATTGGGAGTGACCGATGTTACTGCCGATGGGATCAAAGCCAATTCCAACACGCTGCCAGCGCCCTTTGCGGGCGGTCAGGTGGCGAGGGGAGGCCAGATGGGGGTGTTGGGAAATCAGGACAATATGGATGTCCCGTTCGTGATGACGAGTTACACCTCGCAGCTGATTGAAGATCAACAAGCCGAAGACGTCGGTGATGTGCTGCTCAATGATCCGTCGGTGCGTCAGTCCTATGGGTTTGGTAACCAGTCCCAAGTGTTTGTGATTCGAGGCTTGCCGCTTAGCGGCGACGACATTTCCTACAACGGGCTGTATGGCGTTTTACCGCGCCAGATTCTGTCGACGGATGCGATCGAGCGTGTCGAGGTGTTCAAGGGCCCCAACGCGTTTATCAACGGTGTCAGTCCGACGGGCTCGGGACTTGGCGGCGGCGTCAACTTGCAGCCCAAACGTGCGGAGGATGTCCCGACTCGTCGTTATACGCAGGACATCAGCACCGATGGCCGCGTTGGCGAGCATTTGGATATCGGGCAGCGATTCGGCGAGGATAACCGCTTTGGCGCCAGGTTGAACCTGAGCCAGCGCGAAGGTGAAACAGCGATCGACGACCAGGATCAGCGCACCAAGTTGTTCGTTGCGGGCTTGGACTATCGGGGTGATGACTTCCGCGTTTCCACCGACTTCGGCTATCAGAAACAGCGTATCAATGGACTGCGCAATTCGGTGAACATCGGCAACGCCACCCACATTCCCACGGCTCCGCACGCTAGCCACAATTATGGGCAGGACTGGACTTACTCCGAAACCGAAGACACCTTCGGCATGGTCCGTGGCGATTGGGATCTGAACGAAAACTGGACCGCCTACCTGGCTGGCGGTGTAAAACACACCCGAGAAACCGGGGTCTACGCCACACCGACATTGGTCGGCAATAACGGCGTAGCGACGATCGGTGGCTCGGAAATTCCGCACAACGAAGACAATACCTCGTTCAGTGGCGGGTTGAACGGGCGCTTTGACACGGGCCCTGTTTCCCATCAGGTGGCGATCGGCGGCTCGACGATCTGGACCGAGCAGGAAAACGCCTACACGTTCTATCGTCCTGTTACCGGCAACAGCAATCTCTACGACACCCCGAAGCTTCCCAAACCGACGGCGGTGTCCAGCACCGGCGGTGAAATGGGTGATCCCGGGGTGACTGGCAAAACCCGCAACCGTAGCCTGGCGATTTCCGACACGTTGGGCTTGTTCGATGACAAATTGCTGGTCACTTATGGTGTCCGTCGTCAGCAGTTGCGTGTCGAAAACTACAAGTACGATGGCACCACCTCAAACGGTGCCGCCAACGCAGCAAACGATGGCAGCCGTAGCTCGCTCTACGATGAAGCCGTTACCACGCCTGTCTACGGCATCGTCTACAAGCCTGTGGAAAGCGTGTCGCTCTACGCCAACCGAATCGAAGGCCTTGCAAAAGGGCCGGTGGCGTCCGGTACAGGCATCACCAACCTGGGCCAAGCCTTCCCTCCTGGCCGCACCAAACAGTTGGAAGCGGGCATCAAGCTGGACATGCAAACCTTCGGTGCCAACGTGGGGGTTTTCCGCATCGAGAAACCTTCCGATGGTTACGTCGACAACGCGCAGAACCTCTATGTGCGTGATGGTGAGCAGGTCAACAAGGGGCTGGAAATCAGCGTTTTCGGCGAGCCTATCGAAGGCCTCCGCTTGATGGCCGGCGGCACCCGCATGACGTCCGAACTCAAGAAAACCGCGGGTGGTCGCAACGATGGCAATCACCCCATTGGCGTGCCTACGTTCCAGCTCAATGCCAGCGTGGATTGGGATGTCCCGGGTATCGAAGGCGCCGCGCTCAGCGCCAGGATGCTGCGCACTGGCGGGCAATACGCGGATCAGGCCAACAACCTGAGCTTGCCCACCTGGAACCGTTTCGACGCTGGCGCACGTTATAAAATGAAGGTCGCGGAGAAAGACCTGACGTTGCGCGTCAATGTGGAAAACATTACCGACAAGAACTACTGGGCTTCGGCAAACGGCGGCTACCTCTCGCAGGGTGATCCGCGGTTGGTGAAGTTCTCGGGAACTATCGATTTCTAGMLFPSRLTLLAACCSVSFLVQAAEPIELGVTDVTADGIKANSNTLPAPFAGGQVARGGQMGVLGNQDNMDVPFVMTSYTSQLIEDQQAEDVGDVLLNDPSVRQSYGFGNQSQVFVIRGLPLSGDDISYNGLYGVLPRQILSTDAIERVEVFKGPNAFINGVSPTGSGLGGGVNLQPKRAEDVPTRRYTQDISTDGRVGEHLDIGQRFGEDNRFGARLNLSQREGETAIDDQDQRTKLFVAGLDYRGDDFRVSTDFGYQKQRINGLRNSVNIGNATHIPTAPHASHNYGQDWTYSETEDTFGMVRGDWDLNENWTAYLAGGVKHTRETGVYATPTLVGNNGVATIGGSEIPHNEDNTSFSGGLNGRFDTGPVSHQVAIGGSTIWTEQENAYTFYRPVTGNSNLYDTPKLPKPTAVSSTGGEMGDPGVTGKTRNRSLAISDTLGLFDDKLLVTYGVRRQQLRVENYKYDGTTSNGAANAANDGSRSSLYDEAVTTPVYGIVYKPVESVSLYANRIEGLAKGPVASGTGITNLGQAFPPGRTKQLEAGIKLDMQTFGANVGVFRIEKPSDGYVDNAQNLYVRDGEQVNKGLEISVFGEPIEGLRLMAGGTRMTSELKKTAGGRNDGNHPIGVPTFQLNASVDWDVPGIEGAALSARMLRTGGQYADQANNLSLPTWNRFDAGARYKMKVAEKDLTLRVNVENITDKNYWASANGGYLSQGDPRLVKFSGTIDFPGPT0003790_18213DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014NANA
D1-35_02895885oleB_2COG0596Cis-3-alkyl-4-alkyloxetan-2-one decarboxylaseATGAATGCATACGCCAGCGGCTTTCTTGCCGCGCCGCATCAATTCATCAGTATCGAAGGGCTGCGTTTTGGTTATCGCGACTATGGAACAGGTCCGGTACTGCTGATGCTGCACGGCTGGCCACTTAATGGCGATACCTTTGCGCCGTTGGTCGATGCGCTTGCCTCAGGCTTTCGTTGCATTGTGCCGGATCTCCCTGGCGCAGGCATGACAGCCTGGTCAACAGAACATGATCTGAGCCCCGCCGGCCAGGCGCGTTTGCTCCAGGGTTTACTTGCGGCCTTGGGCATTGCGCAGGGCTATAGCCTGTTGGGTAATGACAGCGGCGGTATCGCCGCCCGCTACCTTGCACTTTGGGACGCCGGCCGCGTGGCCAAGTTGATTCTGCTCAATAGCGAAATACCTGGGCATCGCGCACCCAACCAGCGTCTGTACAAACAACTGGCGCGTTGGTTACCGGGATACGGCGCGCTTGCTCGCATCCAGCTAAGAAGTGCTGCCTATCTGTGTTCGAAGCGGGGGTTTGGCGGAACGCTCTACGATCACCAGCACTTGCTCGGCAGCTTTCATCGGCGCTTTATCGCGCCGCTGATCCAGTCCGCGCAGAGCATGGAGCAAGCCCGGTGCGCCTTTATCGCAGTGCTTGATTGGCCGCAGCTCGATGCCTTGAGCCGCCTTCATGGCCAGATCGAGGCACAGACCTTGCTGATCTGGGGGCGGCAGGACGATACCTTCCCTGAGCCGTATGCCATTGAGATGAGCCGGAGCTTTGCCAACCTTACCGGCTTTATCAGCATCGACAAGGCCAAGTTGTATGTTCATGAAGACCAACCAGAGCAGGTGATTCAACACCTCAAGGTCTTTCTGCTGGCAAAGCAGGAGTAGMNAYASGFLAAPHQFISIEGLRFGYRDYGTGPVLLMLHGWPLNGDTFAPLVDALASGFRCIVPDLPGAGMTAWSTEHDLSPAGQARLLQGLLAALGIAQGYSLLGNDSGGIAARYLALWDAGRVAKLILLNSEIPGHRAPNQRLYKQLARWLPGYGALARIQLRSAAYLCSKRGFGGTLYDHQHLLGSFHRRFIAPLIQSAQSMEQARCAFIAVLDWPQLDALSRLHGQIEAQTLLIWGRQDDTFPEPYAIEMSRSFANLTGFISIDKAKLYVHEDQPEQVIQHLKVFLLAKQENANANANANA
D1-35_02896774hypothetical proteinGTGCAGAGTTTTTTGATCCTGGGCAATCAGCTCACCCTGTATGTCGGGCCGCTACCCGACATCAGCCTCCATCGACATAGCGCCAGCGCTCTATGCCTCGGGTTACAGGCGCCGATTCAGGCACGGGGCACCGACGCAAGCCCATGGCAGCGTTACGATCAGTTATTCGTGCCAGCAGGTGTCGCGCATGCTTTGGCGTTTGCCGGGCAACCTGTGGCGGTGTTGTTCTTTGAGAAACAGAGCCGCCTCTACCAGCAGTTGCTGCTGCGTTACAACCTATCTACCGAGCACTTGAGCGATCCCGGGCCGAGCGCTGGCAACTGGCTGACGGAACTCAAAGGGTTGACGGGCCGCGATGTGCAGGAAGGCGAAGCCCTTCTCGGGCAAATCGCCATGCGCTTGCTGCCCGATACGGGCGAGTCGAACCACGCAGACCCACGGGTACTCAAGGTGCTGGATGCGATGCAGGCGCAGCCCCAGCGCAATTTCACCACCCAGGAACTGTCGGCCCTCGTTTGTCTGTCGCCAAGCCGCCTTTCTGCACTGTTCAACCAGGCCATGGGGCTGCCGCTGAGGCGCTACCGGGTGTGGCTGCGTCTGCGCGCGCTGGTCAGTTTTGTCAGCCAGGGGCTATCGCTCACCGAAGCCGCGCAGATGGCGGGGTTCAGCGACTCAGCCCACTTCAGCAACAGTTGCCGCAAGCTACTGGGGGTCAAGCCGACCGACGTGCTTGCTGGCGATGATCTACGCATCCTCTTTTCCAATCGCCTGTGAMQSFLILGNQLTLYVGPLPDISLHRHSASALCLGLQAPIQARGTDASPWQRYDQLFVPAGVAHALAFAGQPVAVLFFEKQSRLYQQLLLRYNLSTEHLSDPGPSAGNWLTELKGLTGRDVQEGEALLGQIAMRLLPDTGESNHADPRVLKVLDAMQAQPQRNFTTQELSALVCLSPSRLSALFNQAMGLPLRRYRVWLRLRALVSFVSQGLSLTEAAQMAGFSDSAHFSNSCRKLLGVKPTDVLAGDDLRILFSNRLNANANANANA
D1-35_02897636hypothetical proteinATGACCCGAACCCAGAAAACCGTCTTCATCCTCGTGGCCGTGATCGCACTGATTCTCGGCCTGACCATCAATAAAGTGCTGTCCGGCAAAGGCCAGGGCGACCCGACCGCACTGATTGACGCTGGCATCATCCTGCTGCCGCAAAGCCGCAACCTGCCGGACGTGAAAATGACCGACCAGGACGGCCAACCATTGACGATGAACGAGCTGAAAGACAAATGGAGCCTGCTGTTCTTCGGCTACACCTTCTGCCCGGACATCTGCCCGACCACCCTCGCCCAGCTGCGCCAGATCAAGAGCGAGCTGCCGCCCGAGGCGGTGGCCAAGTTGCAGATCGTGCTGGTGAGCGTCGACCCGAACCGCGACACGCCCAAGCAACTCAAGCAATACCTGGGTTACTTCGACCCGCAGTTCATCGGCCTGACCGCCGCCTCGGTACAAGACCTGCAAAAACTCGCCAACGCGGTAAGCATCCCGTTCATCCCGGCGGACACCAGCAAGCCCAACTACACCGTCGACCACAGCGGCAATCTCGCCGTCATCGGCCCGGACGGCACCCAACGCGGGTTTATTCGTGCGCCGTTGAATAATCAGAAGTTGGTGGCGCAGTTGCCGGAGATGCTGAAACACAAATAAMTRTQKTVFILVAVIALILGLTINKVLSGKGQGDPTALIDAGIILLPQSRNLPDVKMTDQDGQPLTMNELKDKWSLLFFGYTFCPDICPTTLAQLRQIKSELPPEAVAKLQIVLVSVDPNRDTPKQLKQYLGYFDPQFIGLTAASVQDLQKLANAVSIPFIPADTSKPNYTVDHSGNLAVIGPDGTQRGFIRAPLNNQKLVAQLPEMLKHKNANANANANA
D1-35_02898900ctaBCOG0109Protoheme IX farnesyltransferaseATGGCAACCCTGACCGGTACACGCCACAGCCAGGCGATCTGGCGCGATTACCTGGAGCTGACCAAACCCAAGGTGGTGGTATTGATGCTGATCACCTCGCTGGTCGGCATGTTCCTCGCGACCCGTGCCGGAGTGCCCTGGACGGTGCTGGTGTTCGGCAATCTGGGGATTGCGCTGTGCGCCGGTGGCGCGGCGGCGGTCAACCACGTGGTGGATCGGCGTATCGACGCAGTGATGGCGCGCACTCACAAGCGGCCATTGGCCGAGGGCCGGGTCTCGCCGGCCGCCGCGCTGACGTTCGCCCTGGCACTGGCGCTGGCCGGTCAGGCACTGCTGCTGGTGTTCACCAATCCGCTGACCGCCTGGCTGACCCTGGCCTCGCTGCTCGGCTACGCGGTGATCTACACCGGGTTTCTCAAGCGCGCCACACCTCAGAATATCGTCATTGGCGGCCTCGCCGGCGCGGCGCCACCGTTGCTGGGCTGGGTCGCGGCCACCGGTCACGTCAGCGCCGAACCGTTGCTGCTGGTGTTGATCATCTTCGCCTGGACCCCACCGCATTTCTGGGCCCTGGCGATCCATCGCAAGGAGGAATACGCCAAGGCTGATATCCCGATGCTGCCGGTGACCCACGGCGAGCACTACACCAAGATCCATATCCTGCTGTACACCCTGGTGCTGCTGGCGGTCAGCCTGATGCCGTTCGTGATCCAGATGAGCGGATTGCTGTACCTGGCGTGCGCGCTTGTACTGGGCGCCAGGTTCCTGCAATGGGCCGTGGTGCTGTACCGTGGCAGTCGGCCGCACGCGGCGATCAACACGTTCAAGTACTCTATCTGGTACTTGTTCCTGCTGTTCATCGCCCTGCTTGTAGATCACTACTTACTGTTGAGCCTATGAMATLTGTRHSQAIWRDYLELTKPKVVVLMLITSLVGMFLATRAGVPWTVLVFGNLGIALCAGGAAAVNHVVDRRIDAVMARTHKRPLAEGRVSPAAALTFALALALAGQALLLVFTNPLTAWLTLASLLGYAVIYTGFLKRATPQNIVIGGLAGAAPPLLGWVAATGHVSAEPLLLVLIIFAWTPPHFWALAIHRKEEYAKADIPMLPVTHGEHYTKIHILLYTLVLLAVSLMPFVIQMSGLLYLACALVLGARFLQWAVVLYRGSRPHAAINTFKYSIWYLFLLFIALLVDHYLLLSLPGPT0008520_3023DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008520-ctaB|cyoE-K02257NANA
D1-35_028991080ctaAHeme A synthaseATGGCCAAGCCTGGATTTCGCCTCGCGCTGTTTGCCACGTTGCTGGCATTGATTGTCGTACTGTTGGGCGCCTACACCCGCCTGACTCACGCCGGCCTCGGTTGCCCCGATTGGCCCGGTTGCTACGGTTTCATCAGCGTGCCCAAGGGCGAAGCCCAACTGGCCCATGCCGAGTTGCATTTTCCCGACACCCCGGTGGAAGCCCATAAAGGCTGGAACGAAATGGTCCATCGCTATTTCGCCGGTGCGTTGGCACTGATGATTGCCGCGCTGGCCGCCCGCGCCTGGACGAACCGCCGCCACCCCGGCCTGCCATTAAAACTGCCGCTGTTCCTGCTGGCGGTGGTGTTCGCCCAAGCGGCGTTCGGCATGTGGACCGTCACGCTCAAGCTCTGGCCGCAGGTGGTCACCGGGCATTTGCTGGGCGGGTTCGCGACGTTGAGCCTGCTGTTTTTGCTCACGTTGAGATTGTCCGGCGTGTTGCCGGCGCTGACCGTGCCCAAGCGCCTGCAACACTGGGCCACGGCTGGGCTGTTGCTGGTGATCGGCCAGATCGCCCTGGGCGGTTGGGTCAGCTCCAATTACGCCGCGGTGGCCTGTATCGACTTTCCTACCTGCCACGGCCAATGGATGCCGCCCGCCGATTTCGCCAATGGCTTCCACCTGACCCAGCACATCGGCCCGAATTACCTCGGTGGGCAACTGGACAGCGACGCCCGCACCGCCATCCATGTAACCCACCGCATCGGCGCCTTGCTGGTGACGGTGGTGCTGCTGGGGCTGGCCTGGCAGCTCAAGACTGTGGGCATGACCCGACTGGCGGGACTGGTCCTCGCCGCACTCGCAGCGCAAATTACCCTGGGTATAAGCAACGTCGTGTTTCATCTGCCGCTGCCGGTGGCGGTGGCCCATAACGCTGGGGGCGCCGCGCTGTTGCTGAGCCTGGTGCTGGTCAACTACCACGCCCGGACCAGCCTGGTCCGGGTACGGCATCAGGTCCCGCTGCGCTGGCGCTTCAATCCGCCTGAACACGGCGTCGGCCCCATCACGATCAAAGGAGAGATGCCATGGCAACCCTGAMAKPGFRLALFATLLALIVVLLGAYTRLTHAGLGCPDWPGCYGFISVPKGEAQLAHAELHFPDTPVEAHKGWNEMVHRYFAGALALMIAALAARAWTNRRHPGLPLKLPLFLLAVVFAQAAFGMWTVTLKLWPQVVTGHLLGGFATLSLLFLLTLRLSGVLPALTVPKRLQHWATAGLLLVIGQIALGGWVSSNYAAVACIDFPTCHGQWMPPADFANGFHLTQHIGPNYLGGQLDSDARTAIHVTHRIGALLVTVVLLGLAWQLKTVGMTRLAGLVLAALAAQITLGISNVVFHLPLPVAVAHNAGGAALLLSLVLVNYHARTSLVRVRHQVPLRWRFNPPEHGVGPITIKGEMPWQPPGPT0008525_1335DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008525-ctaA-K02259NANA
D1-35_02900594hypothetical proteinATGGGAAGCACCATGAATCCAACCAACATGTCTGACGCGCCCGACGCACGCAGCCGGCGCAAGGGACGCGTGCAATTGCTGTTGATTGTGCTGGGCGTGGTCGGCCCGATGATCCTCGCCACCGGCATGTACAAGTTCCAGTTCTGGGTTCCGGACAGTCGCAGCTATCACGGCGAGTTGATCGGCAACGGCCAGTCCCGCGCGGACATCGGCGTGCAGGCCGATGAGCAGCGCTGGCAGATCCTGGTAACGGCGCCGCAGGAGTGTTCGGTGGATTGCCGGCAATTGGTGTACCTGGCCCGGCAGGTGCAGATCGGCCTGGGCCGCGAGGCCGGCCGCGCCAGCCATGCCCTGGCGATAGCGCAACCGCTGGAGGCGGAATACGACGCCCAACTGCAGCGCGAATATCCGCAACTACAACGTTATCCGCTGGACCTGCCGGCCTATCAGAAAGGCGCCCAGGGCTCCGGCGGCGCCCAGTTGTGGATCATCGACCCCCACAGCAACCTGGTGCTGCGCTACGACGCCCGGGTCAAGGGCAAAGACCTGCTCAACGACCTGCGCCACCTGCTGAAATTGTCCAACATCGGATAAMGSTMNPTNMSDAPDARSRRKGRVQLLLIVLGVVGPMILATGMYKFQFWVPDSRSYHGELIGNGQSRADIGVQADEQRWQILVTAPQECSVDCRQLVYLARQVQIGLGREAGRASHALAIAQPLEAEYDAQLQREYPQLQRYPLDLPAYQKGAQGSGGAQLWIIDPHSNLVLRYDARVKGKDLLNDLRHLLKLSNIGNANANANANA
D1-35_02901738hypothetical proteinATGAAAGGCTTCCGGCCGGGCCTCGTGCCGTCGCTGGTGGTGGCCGTGCTGGTGCCGGTGATGGTGTGCCTGGGGTTCTGGCAATTGAGCCGGGGCGAGCAGAAAAGCCTGCTCATGGACACCTACGCCGAGCGTCGCGTGGCCAAGCCGATGGACAGCGTGGAGCTTTCGCAAACAGCGGATCCGGCCTTTCGTCTCGTCAGCCTGCACGGCCAGTTCGACGCCGAACACAGCCTGCTGCTGGATAACCGCCAGCACGACGGCAAGGTCGGCGTCGAACTGCTGCAACCGTTCCTCGACCACGCCAGCGGGCTGTGGCTGCTGGTCAATCGCGGCTGGCTGCCCTGGCCTGATCGCCGTACTTCGCCAGTCTTCAGCACGCCGGAGCAACCCATCGACCTGCAAGCCTGGGTCTACGTCGCGCCCGGCGCCACGTTCCAACTGCACGCCGACCCGGCCAGCGCCCCGTGGCCGCGGCTGGTCACCGCTATCGAACCGCAGAAGCTCTGGGCCGAACTGGGCCGCGGCGGCTTCGCCTACGAATTGAGACAACAAAGCGGCCCTGGCGCCTACCGGACCGATTGGCCGGTGGTTGCCATGGGCCCGGAAAAACACCTTGGTTATGCCGTGCAGTGGTTCGCCATGGCGGCGGCGCTGTTCGGCCTTTTCCTTTATCTCGGATGGCACAACGCAGGGAGACACCATGGGAAGCACCATGAATCCAACCAACATGTCTGAMKGFRPGLVPSLVVAVLVPVMVCLGFWQLSRGEQKSLLMDTYAERRVAKPMDSVELSQTADPAFRLVSLHGQFDAEHSLLLDNRQHDGKVGVELLQPFLDHASGLWLLVNRGWLPWPDRRTSPVFSTPEQPIDLQAWVYVAPGATFQLHADPASAPWPRLVTAIEPQKLWAELGRGGFAYELRQQSGPGAYRTDWPVVAMGPEKHLGYAVQWFAMAAALFGLFLYLGWHNAGRHHGKHHESNQHVNANANANANA
D1-35_02902204hypothetical proteinATGCTAAAAGCAGCCATCGTCCTGATGCTGATCGCCACGATTGCCAGCCTGTTCAGCGGCTTGTTTTTTCTGGTCAAGGACGACAGCAATTCCAATCGCCTGGTCATCGCCCTGGCGATTCGCGTCAGCCTGGCCGTCGTCACCGTCGGCTTGATCGCCTGGGGTTTCTTCAGCGGCCAGTTGGTGTCCCATGCTCCTTGGTAAMLKAAIVLMLIATIASLFSGLFFLVKDDSNSNRLVIALAIRVSLAVVTVGLIAWGFFSGQLVSHAPWNANANANANA
D1-35_02903888ctaECOG1845Cytochrome c oxidase subunit 3ATGGCAACTCATGAGCACTATTACGTTCCGGCCCAGAGCAAATGGCCGATCATCGCCACGGTCGGGATGTTCGTCACGGTGTATGGCCTGGCGACCTGGTTCAACGACCTGAAAGCGGCGCGTCCGGATTCCCACGGCCCGCTGATCTTTTTCGTCGGTGGCCTGCTGCTGGCCTACATGCTGTTCGGCTGGTTTGGCGCGGTCATCAAGGAAAGCCGCGCCGGGCTATACAGTGCGCAGCTCGATCGCTCATTCCGCTGGGGCATGAGCTGGTTCATTTTTTCCGAGGTGATGTTCTTCGTCGCCTTCTTCGGCGCGCTGTTCTATGTGCGCGTGGTGTCGGCGCCCGGCTTGGCCGGCGAAGGCAGCAAGGGCCTGTCGGAAATGCTCTGGCCAAATTTCGAATACGTCTGGCCATTGCTGAACAACCCCGATCCGAAACTCTTTCCGGCGCCCAAGGACGTCATCAGCCCGTGGGGCTTGCCGCTGCTCAACACGATCCTGCTGGTCAGCTCCAGCGTCACCGTCACCATCGCCCACCATGCCCTGAAGAAAGGTCATCGCGGCGCGCTGAAAATCTGGCTGGCGATCACCGTGCTGCTGGGTTGCGCCTTCCTGGGTTTCCAGGCCGAGGAATACATCCACGCCTACAAGGAACTGGGCCTGACCCTGGGCTCGGGGATCTATGGCGCGACGTTCTTCATGCTCACCGGCTTCCACGGCGCCCACGTCACCATCGGCACGATCATTCTGTTCGTGATGCTGATGCGCATCATGCGCGGGCATTTCGACAACGAGCATCAGTTCGGCTTCGAGGCCGCGAGCTGGTATTGGCACTTCGTCGATGTGGTGTGGATCGGCTTGTTCTTCTTCGTCTACATACTTTGAMATHEHYYVPAQSKWPIIATVGMFVTVYGLATWFNDLKAARPDSHGPLIFFVGGLLLAYMLFGWFGAVIKESRAGLYSAQLDRSFRWGMSWFIFSEVMFFVAFFGALFYVRVVSAPGLAGEGSKGLSEMLWPNFEYVWPLLNNPDPKLFPAPKDVISPWGLPLLNTILLVSSSVTVTIAHHALKKGHRGALKIWLAITVLLGCAFLGFQAEEYIHAYKELGLTLGSGIYGATFFMLTGFHGAHVTIGTIILFVMLMRIMRGHFDNEHQFGFEAASWYWHFVDVVWIGLFFFVYILPGPT0004035_312DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004035-coxC|ctaE-K02276NANA
D1-35_02904552ctaGCOG3175Cytochrome c oxidase assembly protein CtaGATGGCTGACTCGATCTCGCTGAAAAAACTGGTCACCCGCCTGTTGCTGGTGGTGGTGGCCATGTTTGCCTTCGGGTTTGCCCTGGTGCCGATCTACGACGTGATGTGCAAGGCGTTCGGCATCAACGGCAAAACCGGCGGGCAGTACACGGGCGAGCAAACCGTTGATGAGTCGCGGCAGGTCCGGGTGCAGTTCTTGTCGACCAACTCGGTGGACATGGTCTGGGACTTCTACCCCAAGGGCGATCAATTGGTGGTCAAGCCAGGAGCGGTCAACGAGATGGTGTTCATTGCCCATAACCCCACCGATCGGCCGATGAGCGCCCAGGCGGTGCCGAGCATTTCGCCGAGCAACGCCGCGGCGTATTTCCACAAGACCGAATGTTTCTGTTTTACCCAGCAAGTGCTGCAACCCGGCGAACGCATCGAAATGCCCATGCGCTTCATCGTCGACCGGGACATGCCCAAGGAAGTGAAGCACCTGACGCTGTCCTACACGCTGTTCGATATCACCGCTCGTCATCCACCGGTGGCTGTAAACACTGACCGATAGMADSISLKKLVTRLLLVVVAMFAFGFALVPIYDVMCKAFGINGKTGGQYTGEQTVDESRQVRVQFLSTNSVDMVWDFYPKGDQLVVKPGAVNEMVFIAHNPTDRPMSAQAVPSISPSNAAAYFHKTECFCFTQQVLQPGERIEMPMRFIVDRDMPKEVKHLTLSYTLFDITARHPPVAVNTDRNANANANANA
D1-35_029051593ctaDCOG0843Cytochrome c oxidase subunit 1ATGAGTGCTGTGATCGATGACCACGGTCATGCCGGCGCCGACCACGCCCACGGCCCCGCCAAGGGCCTGATGCGCTGGGTACTGACCACCAACCACAAGGACATCGGCACGCTGTACCTGTGGTTCGCGTTCTCCATGTTCCTGCTGGGCGGCTCGTTCGCCATGGTGATCCGCGCCGAGCTGTTCCAGCCCGGCCTGCAGATCGTGCAGCCGGAATTTTTCAACCAGATGACCACCATGCATGGCCTGGTGATGGTCTTCGGCGCGGTGATGCCGGCCTTCGTCGGCCTCGCCAACTGGATGGTCCCGCTGATGATCGGCGCGCCGGACATGGCCCTGCCGCGGATGAACAACTTCAGTTTCTGGCTGTTGCCGGCGGCGTTCCTGATGCTGGTCTCCACCCTGTTCACACCGGGCGGCGGGCCGAACTTCGGCTGGACCTTCTACGCGCCGCTGTCCACCACCTATGCGCCGGAAAGCGTGACGTTCTTCATCTTTGCCATCCACCTGATGGGCATCAGCTCGATCATGGGCGCGATCAACGTGGTCGCCACCATCCTCAACCTGCGCGCCCCCGGCATGACGCTGATGAAGATGCCGCTGTTCGTCTGGACCTGGCTGATCACCGCTTTCCTGCTGATTGCGGTGATGCCGGTGCTGGCCGGCTGCGTGACGATGATGCTGATGGACATCCACTTCGGCACCAGCTTCTTCAACGCCGCCGGTGGCGGTGACCCGGTGCTGTTCCAGCATGTGTTCTGGTTCTTCGGCCACCCTGAGGTGTACATCATGATCCTGCCGGCCTTCGGTGCCGTCAGCTCGATCATCCCGGCATTCTCGCGCAAGCCGCTGTTCGGCTACACCTCGATGGTCTACGCCACGGCGGCCATTGCCTTCCTCTCGTTCATCGTCTGGGCGCACCACATGTTCGTGGTCGGCATCCCGCTGGTGGGCGAACTGTTCTTCATGTACGCCACCCTGCTGATCGCCGTGCCCACCGGGGTGAAGGTGTTCAACTGGGCGAGCACCATGTGGCAAGGCTCGCTGACCTTCGAGACACCGATGCTGTTTGCCGTGGCGTTCGTGATCCTGTTTTCCATCGGCGGTTTCTCCGGGCTGATGCTGGCTATCGCGCCGGCGGACTTCCAGTACCAGGACACCTACTTCGTGGTCGCGCATTTCCACTACGTGCTGGTGCCGGGTGCGATCTTCGGGATTTTCGCCTCGGCCTACTACTGGCTGCCGAAATGGACCGGCCACATGTACGACGAAACCCTCGGCAAGCTGCACTTCTGGCTCTCGTTCATCGGCATGAACATGGCGTTCTTCCCGATGCACTTCGTCGGCCTGGCGGGCATGCCCCGGCGGATTCCCGACTACAACCTGCAGTTCGCCGATTTCAACATGGTCTCGTCCATCGGCGCGTTCATGTTCGGCACCACGCAGATTTTCTTCCTGTTCATCGTGATCAAGACCATCCGTGGCGGTGAGCCGGCACCGGCCAAGCCGTGGGATGGCGCCGAAGGGCTGGAATGGAGCGTGCCGTCGCCGGCGCCATATCACACCTTCACCACGCCGCCGGAAGTGAAATAGMSAVIDDHGHAGADHAHGPAKGLMRWVLTTNHKDIGTLYLWFAFSMFLLGGSFAMVIRAELFQPGLQIVQPEFFNQMTTMHGLVMVFGAVMPAFVGLANWMVPLMIGAPDMALPRMNNFSFWLLPAAFLMLVSTLFTPGGGPNFGWTFYAPLSTTYAPESVTFFIFAIHLMGISSIMGAINVVATILNLRAPGMTLMKMPLFVWTWLITAFLLIAVMPVLAGCVTMMLMDIHFGTSFFNAAGGGDPVLFQHVFWFFGHPEVYIMILPAFGAVSSIIPAFSRKPLFGYTSMVYATAAIAFLSFIVWAHHMFVVGIPLVGELFFMYATLLIAVPTGVKVFNWASTMWQGSLTFETPMLFAVAFVILFSIGGFSGLMLAIAPADFQYQDTYFVVAHFHYVLVPGAIFGIFASAYYWLPKWTGHMYDETLGKLHFWLSFIGMNMAFFPMHFVGLAGMPRRIPDYNLQFADFNMVSSIGAFMFGTTQIFFLFIVIKTIRGGEPAPAKPWDGAEGLEWSVPSPAPYHTFTTPPEVKPGPT0004025_3852DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004025-foxA|coxA|ctaD-K02274NANA
D1-35_029061128hypothetical proteinATGACGCGACATCCACACGTATGGATGGGCCTCCTGTTGTGGTCGATTTTCAGCCAGGCGCAAGCGGCCTGGACTGTGAATATGGCGCCTGGAGCGACACAGATCAGCAACGCAGTGTTCGACCTGCACATGACCATCTTCTGGATCTGTGTGGTCATTGGCATCATCGTCTTCGGCGCCATGTTCTGGTCGATGATGATGCACCGCCGCTCAACCGGGCAGAACGCCGCCCACTTCCACGAAAACACCCGCGTGGAAATCCTCTGGACCATCGTGCCCTTCCTGATACTGGTGGCCATGGCGGTTCCTGCCACCGCCACGCTGATCAAGATGTACGATTCCAGCGAGTCGGAGATCGACGTCCAGGTCACCGGCTACCAATGGAAGTGGCACTACAAATACCTGGGCCAGGACGTCGAGTTCTTCAGCAACCTGGCCACGCCTGCCGAACAGATCCACAACCAGAGCACCAAGGGCGAACACTACCTGCTTGAAGTCGACAAGCCGCTGGTGCTGCCGGTCGACGCCAAGGTGCGCTTCCTGGTGACCTCCGCCGACGTGATCCACTCGTGGTGGGTGCCGGCCTTCGCCGTCAAACGCGACGCCATTCCGGGGTTCGTCAACGAAGCCTGGACCCGCGTCGACAAGCCCGGCATTTATCGCGGCCAGTGCGCCGAGCTGTGCGGCAAGGACCATGGTTTCATGCCGATCGTGGTCGAGGTCAAGAGCAAGCCCGACTACGAAAAATGGCTGGGCGAACGCAAGGCCGAAGCCGCCCAGCTCAAAGAGCTGACCAGCAAGGAATGGACCCTGGAAGAACTGAAGGAACGCGGCGACAAGGTCTACCACACCACTTGCGTGGCCTGTCACCAGGCCGAAGGCCAGGGCCTGCCGCCGATGTTCCCGGCGCTCAAGGGTTCGAAAATCGCCACCGGGCCAATCAAGGATCACTTGAACATTGTCTTCCACGGCAAGCCCGGCACCTCCATGGCCGCGTTCGGCAAACAGCTATCGGAAGTCGATATCGCCGCGGTCGTGACCTATGAGCGTAACGCCTGGGGCAACAACAAGGGCGACATGGTTACGCCTAAAGAAGTGCTGGAACTCAAACAGGCAGAAAGCCAATGAMTRHPHVWMGLLLWSIFSQAQAAWTVNMAPGATQISNAVFDLHMTIFWICVVIGIIVFGAMFWSMMMHRRSTGQNAAHFHENTRVEILWTIVPFLILVAMAVPATATLIKMYDSSESEIDVQVTGYQWKWHYKYLGQDVEFFSNLATPAEQIHNQSTKGEHYLLEVDKPLVLPVDAKVRFLVTSADVIHSWWVPAFAVKRDAIPGFVNEAWTRVDKPGIYRGQCAELCGKDHGFMPIVVEVKSKPDYEKWLGERKAEAAQLKELTSKEWTLEELKERGDKVYHTTCVACHQAEGQGLPPMFPALKGSKIATGPIKDHLNIVFHGKPGTSMAAFGKQLSEVDIAAVVTYERNAWGNNKGDMVTPKEVLELKQAESQPGPT0004030_785DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004030-foxB|coxB|ctaC-K02275NANA
D1-35_02907651hypothetical proteinATGAACACCGCCGCATTGCGCGAGCAGATCCAAAAAGCCCAACAGCACGAGGCCGAGACCGGCCTGCTGAGTCGTCAGCTGACGGCCCAGTTACCGACGCTGCACCCCGCCATTCAGCTCCCGGACGCGAACGCCAACGACGTTCTGGCGCGGTTTGTCGCAGCCTATATCAACGAAGTGCCTGACCTGCTGGATGCAGCCAATGACGTCGCCAGGGAGGCGGGTATCGAGTCGCAGATCAAGCCCGTACTGAAAATTGCCGAGCAGTATTTCCTCCAGCCTCCGACGATCATGGCCGGGCATGTCGGGCTCAACAGCCTGCTCGACGAAGCCTATCTGGCGCACCGGTTTGTCGAGGAGGTCAACGACCTGTACATCAAGCATTTCGGCCAGCCGCTGATCCCCTTGGACATGACGGTTGCCAATCTGATTGCCCATCAGTTGATCGGTGAGGAATTTGCCAACCAACTCGATGAGGTGGTGCATCACGCGTTCGACGAGATGCTCAACGACGAGACGTTTGCACTGGAGTCGGTGGAAACCTACCGCGAGAAGCTCAGCAGCCCGGAAACCGGCGCGGCCTGGAAGCGCTGGCCCTGCATGTCCCGCCGCTTGGGCGTGGGCCTGGAGCTGGATCAGCCGGCTGCTTGAMNTAALREQIQKAQQHEAETGLLSRQLTAQLPTLHPAIQLPDANANDVLARFVAAYINEVPDLLDAANDVAREAGIESQIKPVLKIAEQYFLQPPTIMAGHVGLNSLLDEAYLAHRFVEEVNDLYIKHFGQPLIPLDMTVANLIAHQLIGEEFANQLDEVVHHAFDEMLNDETFALESVETYREKLSSPETGAAWKRWPCMSRRLGVGLELDQPAANANANANANA
D1-35_029081530hypothetical proteinATGCGTGCTGCTCAATTAAAAGCTGTTCTGCCACGGGAGCTCCTGGCTTCGGTGGTTGTATTCCTGGTGGCGCTGCCCTTGTGCATGGGCATTGCCATTGCATCGGGCCTGCCACCGGCGAAGGGGCTGATCACTGGTATCGTCGGTGGTCTGATCGTGGGCTTCCTGGCTGGCTCCAAGCTGCAAGTCAGCGGCCCGGCGGCCGGTTTGGCGGTGCTGGTCTTCGAACTGGTGCGCCAGCATGGCGTGGCAATGCTCGGGCCGATCCTTTTGTTGGCCGGGCTGCTGCAACTGCTGGCCGGGCGTTTTCGCCTCGGTTGCTGGTTCAGGGTCACCGCGCCTGCCGTGGTGTACGGCATGCTGGCCGGTATCGGTGTGCTGATCATCTTGTCCCAGGTCCATGTGATGCTTGACGCGGCGCCCAAGCCTTCCGGGCTGGATAACCTGGCGGCGTTCCCGGCGGCAGTGGCCCAGGCTTTACCTTCGTTCGGCTGGCAGGCCGGTTTGCTCGGCCTGTCGACGATCGCAGTGATGTGGCTGTGGGAAAAGTTTCGCCCCCATAGCCTGCGCTTCGTTCCTGGCGCCCTGCTCGGCGTGGGCCTGGCAACGGTTGCCAGCCTGCTGCTGGCGTTGCAGGTCAAGCGCGTGGAGGTCCCGGAAAACATGGCCGAAGCCATCGACTGGCTGCGCCCGGCGGATTTGCTGAACCTGGCCGACCCCTCCGTGTTGATCGCCGCGTTCGCGGTCGCTTTCATCGCCAGTGCGGAAACCTTGCTCTCGGCGGCTGCCGTCGATCGCATGCACAGCGGCGAGCGGGCGGATTTCGATCGGGAACTGTCCGCCCAAGGTGTCGGTAACATGCTTTGTGGCCTGCTCGGCGCCTTGCCAATGACCGGCGTGATCGTACGCAGTTCGGCCAACGTCCAGGCCGGCGCGACCACACGAATGTCAACGATCTTCCACGGCCTGTGGTTGTTGCTCTTCGTGCTGCTGCTGTCCAGCGTGCTGCAAAGCATCCCGGTGGCGAGCCTGGCGGGTGTGCTGGTCTACACCGGTTTCAAACTGGTGGATATCAAGGCGTTCCGTGGCCTGGGCCGTTATGGCCGGATGCCGATGTTCACCTACGCCGCGACGGCGCTGGCGATCATCTTCACCGACCTGCTGACCGGCGTGCTGATCGGTTTTGGCCTGACCCTGGTGAAACTGGCGTGGAAAGCCTCGCGCCTGAAGATCAGCCTGATCGACTTGCCCCAGGACGGCGAGATGGAACTGCGCTTGGTGGGTGCGGCGACCTTCCTCAAGGTTCCAGCCCTGACCCAGGTGCTGAACACCATTCCCGAAGGCGCAACGGTGCATGTGCCGCTCAACAACCTGAGCTATATCGACCATTCCTGCCTGGAATTGCTCGAAGAATGGAGCCGGGCGAATGCCAGCAAGGGTTCGAAGTTGTTGATCGAATCGCGCGGGCTCAAGCGCCGGTTGGAAGGACGCTTGCGCACGACCGTGGGGGTTGGCGCAACAGCTGGCTGAMRAAQLKAVLPRELLASVVVFLVALPLCMGIAIASGLPPAKGLITGIVGGLIVGFLAGSKLQVSGPAAGLAVLVFELVRQHGVAMLGPILLLAGLLQLLAGRFRLGCWFRVTAPAVVYGMLAGIGVLIILSQVHVMLDAAPKPSGLDNLAAFPAAVAQALPSFGWQAGLLGLSTIAVMWLWEKFRPHSLRFVPGALLGVGLATVASLLLALQVKRVEVPENMAEAIDWLRPADLLNLADPSVLIAAFAVAFIASAETLLSAAAVDRMHSGERADFDRELSAQGVGNMLCGLLGALPMTGVIVRSSANVQAGATTRMSTIFHGLWLLLFVLLLSSVLQSIPVASLAGVLVYTGFKLVDIKAFRGLGRYGRMPMFTYAATALAIIFTDLLTGVLIGFGLTLVKLAWKASRLKISLIDLPQDGEMELRLVGAATFLKVPALTQVLNTIPEGATVHVPLNNLSYIDHSCLELLEEWSRANASKGSKLLIESRGLKRRLEGRLRTTVGVGATAGPGPT0002415_395DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONK-SOLUBILISATION-OTHER_ACID_METABOLISMSK-SOLUBILISATION-CARBONIC_ACID_BIOSYNTHESIS,PGPT0002415-cynT|can-K01673NANA
D1-35_02909732cynTCOG0288Carbonic anhydrase 1ATGAGTGACAAGGATAAACAGCCGTTGGCTGCGTCGGCTTCAGCCCAACCCGAGGCGGAAACCGCCGATGCAGCGCTGCAGCACATTGTTGACGGCTTTTTGCATTTCCATCACGAGATCTTTCCCCAACAGGAAGAACTCTTCAAGAAACTCGCCACCGCCCAGAAACCCCGGGCGATGTTCATCACCTGCGCCGATTCGCGCATCGTGCCTGAGCTGATCACCCATAGCTCCCCAGGCGACCTGTTCGTGACCCGTAACGTCGGCAACGTCGTTCCACCGTACGGACAAATGAACGGCGGCGTTTCCACCGCCATTGAATACGCCGTGCTGGCCCTGGGTGTGCAACATATTATCGTTTGCGGCCATTCCGATTGCGGCGCCATGCGTGCGGTGCTCAACCCCGACACCCTGGAAAAAATGCCGACAGTCAAGGCCTGGCTGCGCCACGCCGAAGTCGCCAAGACCATGGTCCACGACAACTGCCCGTGCGGTGACGAAAAGCAGACCATGCCCGTCCTCACCGAAGAGAACGTGATCGCCCAGTTGCAGCATTTGCGAACGCACCCTTCGGTGGCCTCTCGCATGGCCAGCGGCCAGTTGTTCATCCATGGCTGGGTGTACAACATCGAGACCAGCGAGATCAAAGCCTTTGATGCGGACCAGGGTTGTTTCCTGCCGCTCGATGGCAGCCATCCGATACCGGTGGCGACGCCCAAAGCGCGCTTCTAAMSDKDKQPLAASASAQPEAETADAALQHIVDGFLHFHHEIFPQQEELFKKLATAQKPRAMFITCADSRIVPELITHSSPGDLFVTRNVGNVVPPYGQMNGGVSTAIEYAVLALGVQHIIVCGHSDCGAMRAVLNPDTLEKMPTVKAWLRHAEVAKTMVHDNCPCGDEKQTMPVLTEENVIAQLQHLRTHPSVASRMASGQLFIHGWVYNIETSEIKAFDADQGCFLPLDGSHPIPVATPKARFPGPT0002415_1757DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONK-SOLUBILISATION-OTHER_ACID_METABOLISMSK-SOLUBILISATION-CARBONIC_ACID_BIOSYNTHESIS,PGPT0002415-cynT|can-K01673NANA
D1-35_029101059hypothetical proteinATGTCCGTCTCACTTCCGCCCCGTGGCCGCGGCACCGCCACCAACCCGCACAACCGCTTCGCGCCGAGCCGTTCGGTGGCCGAGGACGATGGCTGGTATCAGGAAGTGCCGCCGACCCAGGGCACCGAGGTGCGCATCGAAACGGCCAAGACCATCATCACTCGAAACACCTCCACGGATATCCCTTTCGATCGTTCGATCAATCCTTATCGAGGCTGCGAACACGGCTGCATCTACTGCTATGCGCGCCCCAGCCATGCCTACTGGGACATGTCGCCCGGGCTGGATTTCGAAACCAGGCTGATCGCCAAGACCAACGCCGCCGATGTGCTGGAGGAGCAGTTGTCGCGGCGCGGCTATCAATGCGCGCCGATTGCCCTGGGTTCCAATACCGATCCCTACCAGCCGATCGAACGCGAACAGCGCATCACCCGGCGGATTCTCGAAGTGCTGCTGCGCTATCGGCACCCGGTGACGATTGTTACCAAGGGCTCGCTGATCCTGCGCGACCTCGACCTGCTGACCGAACTGGCAGAGCAACGCCTGGTACATGTGATGATCAGCCTCACCACGCTGGACGACGAACTCAAGCGCATCCTCGAACCCCGCGCGGCGGCGCCGAAGGCCCGGTTGCGGGCGATAAAGGTCATGCGCGAGGCGGGCATCAACGTCGGCGTGCTGTGCGCGCCGATGATCCCGATGATCAATGACAGCGAGATTGAAAGCCTGCTGGCCGAAGCCCACGCTGCCGGTGCACAGAATGCCGCCTACGTCATGTTGCGCCTGCCGCTGGAAGTGGCGCCGCTGTTCGAGGAGTGGTTGCAGGCGCACTACCCGCAGCGCGCCGCCCATGTGCTGAGCCTGGTGCGCCAGAGCCGCGGCGGCGAACTGTATGACAGCCGGTTTGGCGTGCGGATGCGCGGCGAAGGTCCGTTCGCCGACCTGCTGGCTCAGCGCTTCGCCAAGACGCTCAAGCGTTTGGGCCTGAACCGACGAGATGGTTACAATCTTGACTGCGATGCCTTCTGTCCGCCCGGCCGACAGATGTCGTTGATTTGAMSVSLPPRGRGTATNPHNRFAPSRSVAEDDGWYQEVPPTQGTEVRIETAKTIITRNTSTDIPFDRSINPYRGCEHGCIYCYARPSHAYWDMSPGLDFETRLIAKTNAADVLEEQLSRRGYQCAPIALGSNTDPYQPIEREQRITRRILEVLLRYRHPVTIVTKGSLILRDLDLLTELAEQRLVHVMISLTTLDDELKRILEPRAAAPKARLRAIKVMREAGINVGVLCAPMIPMINDSEIESLLAEAHAAGAQNAAYVMLRLPLEVAPLFEEWLQAHYPQRAAHVLSLVRQSRGGELYDSRFGVRMRGEGPFADLLAQRFAKTLKRLGLNRRDGYNLDCDAFCPPGRQMSLINANANANANA
D1-35_02911681hypothetical proteinATGCTCAAGCTCTGTTTGCGTTCCCTGCTTTGCCTGGCGTTGCTCGTCGCGCTGGTCGACTCCGCCGCCCAGGCCGCCACCGGCGCCGAGGCCAGGCCCGGCGAATGGGCCCAGCCCGTGGAAAAACGCTACGACCTCTACCAGATGTCGCCTACGCTCTATCGCAGTTCCTTGCCGGACGGCGGTGCCTTGCCCCTGTTGGCGAAACTCGATATCGGCACAGTCATCAATTTTCTGCCTGATTCGGACGCGAACTGGTTGTCCGCGCCTGACATCAAGCAAGTGCAGTTGCCCTATCGCACCAATCACGTCGACGACAGCGACGTTCTCAAGGCCCTGCGCGCCATCCAGGACGGGCAAGCCAGGGGGCCGGTGCTCATGCATTGCAAGCACGGCTCGGACCGTACCGGCTTGATGGCCGCCATGTACCGGGTGGTTGTGCAGGGCTGGAGCAAGGAAGACGCGTTGGAGGAAATGACCGAAGGCGGTTTCGGCGACAGCCATCACTTCAAGGACGGGGTTCGCTACATGATGCAAGCCGATGTCGAGAAGCTCCGTATTGCCTTGAGAGACGGCGATTGCAGTACCAGCGTCTTTGCGCTGTGCTCGTTGAAAGGCTGGGTCAATTCAACGACCACGGCGCGTCACCTCGATCCTCAGTCATTGGCTCCTTCACGCTGAMLKLCLRSLLCLALLVALVDSAAQAATGAEARPGEWAQPVEKRYDLYQMSPTLYRSSLPDGGALPLLAKLDIGTVINFLPDSDANWLSAPDIKQVQLPYRTNHVDDSDVLKALRAIQDGQARGPVLMHCKHGSDRTGLMAAMYRVVVQGWSKEDALEEMTEGGFGDSHHFKDGVRYMMQADVEKLRIALRDGDCSTSVFALCSLKGWVNSTTTARHLDPQSLAPSRNANANANANA
D1-35_029122013prlC_1COG0339Oligopeptidase AATGCCAAACGCTGATAACCCGCTACTGCAGGACTACGACCTGCCGCCCTTTTCGCGCGTCCAGGCCGAACACTTTTCCCCGGCCCTCGACCAGATAATCGCCGAAAGCCGCATCAAAGTTGCCGCGATCATTGCCAGCCAGACACCCTTCCCAACCTGGGACGACCTCGTCTTGGCAATGGATGAAATCCACACGCGGCTTGAGGGTTTCGGCTACTTGCTAAACCGCCTGACCTCGACCCGGACAGGTGACGCCTGGAAGCAGTCCTCGCTCGATTGCGATGCACGGCTGCACGAATTTAAGGTCGGACTGGAACAAAACACCGAACTTTTTCAGCTCTACGAGCGCCTGGCGAACAGCGAAATAGCCGGAAATTTCGAACCGGCACGCAAGAGGGTCCTGGAAAAAAACCTGCGACAGTTTCGTGAAAACATGCCGATGACCACGGCGAGCGACCTGAGCCTGGTGCAAGTCCGTATTCGAAACGCCGAAGGTCTGTTTCTGGACCAGCTGGAGTCGGCCAACAAAGCCTGGGACATCCTCATTGACGATGAGGCCCTGCTCAGCGGCTTGCCGGTGGCGTTCAAACAGCACATGGCCCACCTGGCCCGCAAGGTCGACCGCACGGGATGGCTGCTGACCCTTGATGAAGAGTCGCATCGCATCGTCACCCACTATGCCGACAATCGCTCGTTACGCCAGCAGATCCACGTTGCGTATAACACCCGTGCGTCCGATCAAGGCCCGCAAGCCGGGCAATTCGACAATGGCAACGTCCTCAAGCAACTGCTGGACGACCGGCACGAGTATGCCAAGTTACTGGGCTACACGGATTACGCTCAATACGCGATCGCGTCGGAGCAGGCCGAGTCCACCGCAGAGGTCCTGGCTTTTCTGGACAATCAACTCCAGTCGCAGCAAAGCACCTTCCGCCTGGAGACCGATGAGCTCAAGGCCTTCGCCAGTGAACGAGGTCTCAGCGAGCCCGAACCTTGGGATTACTGGTACCTGGCGGAAAAAATTCGCCAGCGGGAGGCGGGCATCTCACAGCAGGCATTGAGTGCCTGGTTTCCATTGGAAGCGGTTTTTTCCAAGCTGCTGGTGATCGCGTCGAATCTATTCACCGTGAACTTCATCGAACGCAAGGATGTGGCCAGCTGGGATCCTGACGTACGTCTTTTTGAGGTCACGGAGAGCGGAACGAGCATTGGTTATATCTATTTCGATCCGTTCAAATCTGATGATCGAGAAGGTTTCTCCTACACCACGACCATTCGCGACCGTCAGATTACCGCCGAAGGCGTGCTCCGACGCCCGATCGCCGCACTGCATGGCTGGCTGCCACGGGGCACAGCGGCGAACCCGACCTTGCTCGACCATCTGCAGCTACGCATCCTTGTCCATGAATTCGGCCATTGCCTGCATCAGGTCTTGAGCCAGGCAGCCTATCGCGACCTATCGGCGATCAATAAGTCATCCCGCGATACGGTCGAATTCGCCGGATGTCTGCTGGAAAAATGGTGCTTCGCCAAGGATTTTCTGATCCGCGTATCGGCGCATCATCAAACCGGAGCAGCCTTGCCTGACGAGATGGCCGATCAGTTCATGAGGCTCATCAGCACTCAGGCCAGTTGGGAAACCGCCAACGAGTTGCGCAAGGCGCTGCTGGATTTCGAGTTGCATCGCACCCACGCCGATGGACGCAGCGTCCAGCAAGTCTTCCAGCAGGTCAGCGAAAAGACCCGCCACTTGCCGGTAATTGCCAATGCACGCCTGGCCAACGGGCTGGACCATATGGTGACGGGCTACGGCGCAAGAGTGTACGCCTACTCGTGGTCCAAGGCCCTGGCCGAGTCGGTTTTCCAGAGGTTCCAGCGCGACGGAATCTTTAAAGCGACGACCGGCAGGGCGCTTCGCGAACACATATTCGGGCCGGGCGACTCGCGGCCGTTATCCGAATCCATAAGCGCCTTCCTCAGCGCGACCAATCAGCGTGAAGGAGCCAATGACTGAMPNADNPLLQDYDLPPFSRVQAEHFSPALDQIIAESRIKVAAIIASQTPFPTWDDLVLAMDEIHTRLEGFGYLLNRLTSTRTGDAWKQSSLDCDARLHEFKVGLEQNTELFQLYERLANSEIAGNFEPARKRVLEKNLRQFRENMPMTTASDLSLVQVRIRNAEGLFLDQLESANKAWDILIDDEALLSGLPVAFKQHMAHLARKVDRTGWLLTLDEESHRIVTHYADNRSLRQQIHVAYNTRASDQGPQAGQFDNGNVLKQLLDDRHEYAKLLGYTDYAQYAIASEQAESTAEVLAFLDNQLQSQQSTFRLETDELKAFASERGLSEPEPWDYWYLAEKIRQREAGISQQALSAWFPLEAVFSKLLVIASNLFTVNFIERKDVASWDPDVRLFEVTESGTSIGYIYFDPFKSDDREGFSYTTTIRDRQITAEGVLRRPIAALHGWLPRGTAANPTLLDHLQLRILVHEFGHCLHQVLSQAAYRDLSAINKSSRDTVEFAGCLLEKWCFAKDFLIRVSAHHQTGAALPDEMADQFMRLISTQASWETANELRKALLDFELHRTHADGRSVQQVFQQVSEKTRHLPVIANARLANGLDHMVTGYGARVYAYSWSKALAESVFQRFQRDGIFKATTGRALREHIFGPGDSRPLSESISAFLSATNQREGANDPGPT0020985_1534DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020985-prlC-K01414NANA
D1-35_02913279hypothetical proteinATGAGTGAGGGGCCTGTGATTACCAAACGACGCTTCATCGCCGGGGCAGTCTGCCCGGCGTGCAGTGAACCGGACAAGTTGATGATGTGGAACGAAGACGGCGTGCCCCATCGCGAGTGCGTGGCTTGTGGTTATTCCGACACGCTCAACGAACAAGGCCTGTCGGTGCCCAAGGAATTGGGCACCCGGGTCAATACGTCCGCCTTGAAAGCACCGGACGCCAAGGTCCAGGCGGTGCAGTTCTTCCCCAACCCCAAGTTGAAGAAAAAAACCGACTGAMSEGPVITKRRFIAGAVCPACSEPDKLMMWNEDGVPHRECVACGYSDTLNEQGLSVPKELGTRVNTSALKAPDAKVQAVQFFPNPKLKKKTDNANANANANA
D1-35_029142052prlC_2COG0339Oligopeptidase AGTGAGCGTGAACAACCCTCTTTTGCAGCCCTACGACCTGCCGCCATTCTCGGCGATCCGTGCCGAGCACGTGCAACCGGCCATCGAGCAGATCCTGGCTGACAACCGCGCCGCCATCGCCGAGATCCTCAAGACGCAAGTCGAACAGCCCACCTGGGCCGGCCTGGTATTGGCAATGGATGAGCTCAATGATCGCCTGGGCGCGGCCTGGAGCCCGGTGAGCCATTTGAACGCGGTGCGCAACAGCCCCGAGTTGCGCGAAGCCTACGAGGCTTGCCTGCCGGCGCTGAGTGCCTATTCCACCGAGCTGGGCCAGAACCGCGAACTGTTCCAGGCGTTCGAAGCCCTGGCGAACAGCCCCGAGGCCGCCGGTTTCGACGTGGCCCAGAAAACCATCCTGGAACATTCGCTGCGCGACTTCCGCCTGTCGGGCATCGATCTGCCGCCCGAGCAGCAAAAGCGCTACGCCGAAGTGCAAAGCAAGCTGTCCGAACTCGGCAGCCGCTTTTCCAACCAGTTGCTCGACGCGACCCAGGCCTGGACCAAGCATGTCACCTCTGAGGCCGCCCTCGCCGGCCTGACCGACTCGGCCAAGGCGCAGATGGCCGCCGCGGCCCAGGCCAAAGGCTTCGACGGTTGGCTGATCAACCTGGAGTTTCCCAGCTACTACGCGGTGATGACCTACGCCGAAGACCGCACCTTGCGCGAAGAAGTCTACGCCGCCTACTGCACCCGTGCCTCGGACCAGGGCCCGAACGCCGGTCAGAACGATAACGGCCCGGTGATGGAGCAGATCCTCGACCTGCGCCAGGAACTGGCCCAGTTGCTGGGTTTCGCCAACTTCGCCGAATTGAGCCTGGCAACCAAGATGGCTGAATCCAGCGATCAGGTGCTCAGCTTCCTGCGCGACCTGGCCAAGCGCAGCAAACCGTTCGCCGCCCAGGATCTGGAACAATTGAAAGCCTTCGCCGCCGAACAGGGCTGCCCCGACCTGCAAAGCTGGGACAGCGGCTTTTATGGCGAAAAACTCCGCCAGCAACGTTACAGCGTCGCCCAGGAAGCCCTGCGCGCCTACTTCCCGATCGACAAGGTACTGAGCGGCCTGTTCGCCATCGTGCAACGCCTCTATGGCATCGAGATCGCGGAGCTGAAGGGTTTCGACGCCTGGCATCCGGACGTGCGCCTGTTCGAGATCAAGGAACACGGCCAGCACGTCGGGCGCTTCTTCTTCGATCTGTACGCCCGCCCCAACAAGCGTGGCGGCGCCTGGATGGATGGCGCCCGTGATCGTCGCCGCACCCTTGATGGCGCGCTGCAAAGCCCGGTCGCCAACCTGGTGTGCAACTTCACCCCGGCCGACAGTGGCAAGCCAGCGCTGCTGACCCACGATGAAGTGACCACGCTGTTCCACGAGTTCGGCCACGGCCTGCATCACCTGCTGACCCGCGTCGACCATGCCGGCGTGTCGGGCATCAACGGCGTGGCCTGGGACGCCGTGGAGCTGCCGAGCCAGTTCATGGAAAACTGGTGCTGGGAGCCTGAAGGCCTGGCGCTGATTTCCGGTCACTACGAAACCGGTGAGCCATTGCCCCAGGACCTGCTGGAAAAAATGCTCGCGGCGAAGAACTTCCAGTCCGGCCTGATGATGGTCCGCCAGTTGGAATTCTCGCTGTTCGACTTCGAACTGCACGCCACCCATGGCGATGGTCGTAGCGTACTGCAAGTGCTCGAAGGCGTACGCGACGAGGTGTCGGTGATGCGTCCGCCTGCCTATAACCGCTTCCCCAACAGCTTTGCGCATATTTTTGCCGGCGGTTACGCGGCGGGTTACTACAGCTACAAATGGGCGGAAGTGCTGTCGGCCGATGCGTTCTCCAGATTCGAAGAAGATGGCGTGCTCAACGCCGACACCGGTCGCGCCTTCCGCGAGGCGATCCTGGCGCGTGGCGGCTCCCAGGAGCCAATGGTGCTGTTCGTCGACTTCCGTGGCCGTGAGCCATCGATTGACGCACTCTTGCGCCATAGCGGCCTGAGCGAGGACGCGGCAGCATGAMSVNNPLLQPYDLPPFSAIRAEHVQPAIEQILADNRAAIAEILKTQVEQPTWAGLVLAMDELNDRLGAAWSPVSHLNAVRNSPELREAYEACLPALSAYSTELGQNRELFQAFEALANSPEAAGFDVAQKTILEHSLRDFRLSGIDLPPEQQKRYAEVQSKLSELGSRFSNQLLDATQAWTKHVTSEAALAGLTDSAKAQMAAAAQAKGFDGWLINLEFPSYYAVMTYAEDRTLREEVYAAYCTRASDQGPNAGQNDNGPVMEQILDLRQELAQLLGFANFAELSLATKMAESSDQVLSFLRDLAKRSKPFAAQDLEQLKAFAAEQGCPDLQSWDSGFYGEKLRQQRYSVAQEALRAYFPIDKVLSGLFAIVQRLYGIEIAELKGFDAWHPDVRLFEIKEHGQHVGRFFFDLYARPNKRGGAWMDGARDRRRTLDGALQSPVANLVCNFTPADSGKPALLTHDEVTTLFHEFGHGLHHLLTRVDHAGVSGINGVAWDAVELPSQFMENWCWEPEGLALISGHYETGEPLPQDLLEKMLAAKNFQSGLMMVRQLEFSLFDFELHATHGDGRSVLQVLEGVRDEVSVMRPPAYNRFPNSFAHIFAGGYAAGYYSYKWAEVLSADAFSRFEEDGVLNADTGRAFREAILARGGSQEPMVLFVDFRGREPSIDALLRHSGLSEDAAAPGPT0020985_921DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020985-prlC-K01414NANA
D1-35_02915546yrdA_2COG0663Protein YrdAGTGACCCTTCGAACGTACCAGAACCACAGCCCGCGGCTTGCCCGGGGCGCTTTTGTCGACAGCACCGCGGTGGTGATCGGCGACGTCGAGATCGGCGAAGACAGCTCCGTCTGGCCGCTGACAGTCATTCGCGGCGACATGCACCGCATCCGCATCGGCGCCCGTACCAGCGTCCAGGACGGCTGCGTGCTGCACATCACCCACGCCGGGCCGTTCAACCCCGATGGCTTCCCGTTGCTGATCGGCGACGACGTGACCATCGCCCATAAAGTCATGCTCCATGGCTGCTCGGTGGGCAGTCGGATCCTGATCGGCATGGGCAGCATTGTCATGGATGGCGCGGTGGTCGAAGACGACGTGATCATCGGCGCCGGTAGCCTCGTACCGCCGGGCAAGCGCCTGGAGAGCGGCTTTTTGTATGTGGGCAGCCCGGTGAAGCAGGTCCGGCCGCTGACGGACAAAGAGCGGGCCTTTTTCACCTACAGCGCGGCGAACTACGTGAAGCTCAAGGATTTGCATCTGGCTGAAGGCTACGACCAGCCTTGAMTLRTYQNHSPRLARGAFVDSTAVVIGDVEIGEDSSVWPLTVIRGDMHRIRIGARTSVQDGCVLHITHAGPFNPDGFPLLIGDDVTIAHKVMLHGCSVGSRILIGMGSIVMDGAVVEDDVIIGAGSLVPPGKRLESGFLYVGSPVKQVRPLTDKERAFFTYSAANYVKLKDLHLAEGYDQPPGPT0002425_585DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILISATION-OTHER_ACID_METABOLISMSK-SOLUBILISATION-CARBONIC_ACID_BIOSYNTHESIS,PGPT0002425-GAMMACA_like-K01726NANA
D1-35_02916651COG05465'-nucleotidaseATGCACTACCAGACCATACTCTTCGACCTCGACGGCACGCTTACCGACCCGCGCGAGGGCATCACCCGTTCGATCCAGTTCGCCCTGGGCAAACTGGGCATCGACGAGCCCGACCTGACCCGTCTCGAACACTTCATCGGCCCACCGCTGTTGCAGGCCTTCATGCAGTTCTATGCCTTCGATGAAGCGAAAGCCTGGGACGCGGTGAATTTCTACCGCGAGCGCTTCAAGGTCACCGGCCTCTACGAAAACCGTGTCTTCGACGGTGTCGTGCCGCTGCTGGAAACGCTCGGTGGCCAAGGCCGACAGCTTTATATCGCCACGTCCAAGCCCTGGCTTTTCGCCCGGGAAATCGCCCGTCATTTCGATTTCGCCCGGCACTTCAAGGTGATCTACGGCAGCGAACTGGACGGTACCCGTACCAACAAGGTCGAGCTCATCGCCCACCTGATGGCCGAAGAAAGCCTCGACCCGGCCAGCACTCTGATGATCGGCGACCGCGAACATGACTTGATCGGCGCGCGCAGCAATGGTCTGGACGCGGCGGCGGTGGGGTACGGATTCGGCAGTTTCGAGGAGTTGAGTGCGCAGAACCCGGTACATCATTTCCAGACGCTGGAGGAGCTGCACCAGGCATTTTTGCGGGGCTGAMHYQTILFDLDGTLTDPREGITRSIQFALGKLGIDEPDLTRLEHFIGPPLLQAFMQFYAFDEAKAWDAVNFYRERFKVTGLYENRVFDGVVPLLETLGGQGRQLYIATSKPWLFAREIARHFDFARHFKVIYGSELDGTRTNKVELIAHLMAEESLDPASTLMIGDREHDLIGARSNGLDAAAVGYGFGSFEELSAQNPVHHFQTLEELHQAFLRGPGPT0001730_6065DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0001730-gph-K01091NANA
D1-35_02917210hypothetical proteinATGATTCAGCTGTCGCAAACGGAGCAGGTGATTTGGGATATGTATTTTGTCAGCGCCTTGCCGCAGGTGATGCAGCAGTTACCGGGCCGCCGTCCCGAGTTGATTGCGGAGAGCGCGGCCGAAGTCGCCGATGAAATGCTGGTGGAGCGCCGCGAGCGTCGCCCGGTGGCACAAAGGACTCTGCCGGTCAGGGACGCAACGATAAAATGAMIQLSQTEQVIWDMYFVSALPQVMQQLPGRRPELIAESAAEVADEMLVERRERRPVAQRTLPVRDATIKNANANANANA
D1-35_02918435hypothetical proteinATGACTTACCGTTTGAATGAATTTCAGCTCCAGCTGCCGCCCAGCGAGTTGCTCGACGCCTCGATCAACATCCTCAAGTTCCCCGGACTAGGCACGTCCCTGATCGTCAGCCGCAGCCTGCTCGCCGAAGGAGAAACCCTGCAAAGCAACCTCGACGACCAGCTCAAGCGCCTGGAAAAGCAGGTCCAGGACCTGCGCTGCCAACCCGGCGCCACGTTGCGCGTGGGGGCTCGGCAGGAAGTCGAAGCCATCGAGCTACGCAGCCAGTTCAACAAGGGCAACGAAAAGGTCTTTCAGTATCAGCTCGCCCTGGTACTGCCGGGCACGCGCAAAATGCTCGCCCTGAGCTACGTCAAGGCCGAGAAGCTGGGCGACGCCGAAGCGGCGCATTGGGCGACGATCAAGGGGTCGCTGGTGTTTGACGCGCCGGAGTGAMTYRLNEFQLQLPPSELLDASINILKFPGLGTSLIVSRSLLAEGETLQSNLDDQLKRLEKQVQDLRCQPGATLRVGARQEVEAIELRSQFNKGNEKVFQYQLALVLPGTRKMLALSYVKAEKLGDAEAAHWATIKGSLVFDAPENANANANANA
D1-35_029191932vgrG1_2COG3501Actin cross-linking toxin VgrG1ATGCTATTCAACCAAGCCTCCCGCCTGGCGAAAATCACCAGCCCCTTGGGACCCGAGGTGCTGCTGCTCAAGGACATGGGCGGCGGCGAAGAGTTGGGGCGGCTGTTCAACTATGAGTTGCAGCTGCACTCGCTGGACAACGCCATCGACCTCAATCAGGTGCTTGGCAAACCCATGTGCGTGAGCGTTCAGCTGGATGGCGGTGGCGAGCGGCACTTCCACGGCATCGTCGCGCGCTTCAGCCAGAACATCGACCAGGGCCAGTTTGCCAGTTACCAGGCCACGCTAAGGCCCTGGCTGTGGCTGCTGACGCGCACCTCCGACTGCCGGATTTTCCAGAACCTGACGGTTCCGCAGATCATCAAGCAGGTGTTCCGCGACCTGGGTTTCTCCGACTTCGAAGACGCCCTCAGCCGCCCGTATCGCGAGTGGGAGTACTGCGTCCAGTACCGTGAGACCAGCTTCGATTTCGTCAGCCGGCTGATGGAGCAGGAAGGCATCTACTACTTCTTCCGTCATGAACAGGGTCGCCATGTGCTGGTGCTGGCCGACGCCTACGGCGCCCATACCCAAGCGCCCGGCTACGCCTCGGTGCCGTATTACCCGAAGAACGAGCAGCAGCGTGAACGCGATCATATCCACGATTGGCACCTGGCCCAGGAAGTCCAACCGGGGTCGCTGGAGCTCAACGACTACGACTTCCAGCGCCCCAGCGCGCGCATCGACGTGCGTTCGGCCATGCCGCGCCCGCACACCGCAGGCGACTATCCGCTCTATGACTATCCCGGCACCTACGTGCAAAGCGAGGACGGCGAGCACTACGCCCGCACCCGCATCGAAGCCTTGCAGACCCTGCACGAGCAGGTCGAGCTGGCCGGCAATGCCCGAGGCTTGGGCTCGGGGCATTTGTTCAGCCTGACCGGTTTCAGCCGCCAGGACCAGAACCGCGAATACCTGATCGTCGGCGCGCGTTATTACCTTTCCCAGGAAAGTGGCGAGAGCGGCGTCGGCGCGCCCTCGGCGCAGTTCGAAAGCAGCCTGACCTGCATCGACGCCCAGCAAAGCTTCCGCCCGATGGCAATCACCCACCGCCCCATCGTCAAGGGGCCGCAGACCGCATTGGTGGTCGGGCCCAAGGGCGAGGAAATCTGGACCGACCAGTTCGGCCGGGTGAAGGTGCACTTCTATTGGGATCGCCACGATCAATCCAACGAAAACAGTTCGTGCTGGATTCGGGTGTCGCAAAGCTGGGCCGGAAAGAATTGGGGCTCGATGCAGATTCCGCGTATCGGCCAGGAAGTCATCGTCAGCTTCCTCGAAGGCGACCCGGATCGACCGATCATCACCGGCCGTGTCTACAACGCCGAGCAGACCGTGCCTTACGACCTGCCTGAGAAAGCCACCCAGAGCGGCATGAAAAGCCGTTCGAGCAAGGGTGGCACGCCGGCAAATTTCAATGAAATCCGCATGGAAGACAAGAAAGGCGCCGAGCAGCTTTACATCCATGCCGAGCGCAACCAGGACATCGTGGTCGAGGTGGATGAGAGCCATTCGGTCGGCCACGACCGCACCAAGAGCATCGGCCACGACGAAACGGTGATCATCGGCAACAACCGCCTGCGCATCGTCAAGCAGGAGGACATCCTGTCGGTGGGCCAGCGCAAGACCGACAGCATCAGCCAGAGCTACGTCATTGAAGTGGGCGAGAACCTGCGCCTGGTATGCGGCGAGAGCATCCTGGAGCTCAACGCCAGCGGCCAGATCAACCTGACCGGCGTGCAGATCAGCTTCTACGCCAGCGGCGATGCCGAGTTCAACACCGGCGGTGTGCTGCACCTGAACAACGGCGGCGGCCCCGGTGCCACGCCGGACGGCCAGGGCGTCAAGGCCAGCATCGATGCCAACGTCGCTGCCGCCTTTCCCAAAGGCTAAMLFNQASRLAKITSPLGPEVLLLKDMGGGEELGRLFNYELQLHSLDNAIDLNQVLGKPMCVSVQLDGGGERHFHGIVARFSQNIDQGQFASYQATLRPWLWLLTRTSDCRIFQNLTVPQIIKQVFRDLGFSDFEDALSRPYREWEYCVQYRETSFDFVSRLMEQEGIYYFFRHEQGRHVLVLADAYGAHTQAPGYASVPYYPKNEQQRERDHIHDWHLAQEVQPGSLELNDYDFQRPSARIDVRSAMPRPHTAGDYPLYDYPGTYVQSEDGEHYARTRIEALQTLHEQVELAGNARGLGSGHLFSLTGFSRQDQNREYLIVGARYYLSQESGESGVGAPSAQFESSLTCIDAQQSFRPMAITHRPIVKGPQTALVVGPKGEEIWTDQFGRVKVHFYWDRHDQSNENSSCWIRVSQSWAGKNWGSMQIPRIGQEVIVSFLEGDPDRPIITGRVYNAEQTVPYDLPEKATQSGMKSRSSKGGTPANFNEIRMEDKKGAEQLYIHAERNQDIVVEVDESHSVGHDRTKSIGHDETVIIGNNRLRIVKQEDILSVGQRKTDSISQSYVIEVGENLRLVCGESILELNASGQINLTGVQISFYASGDAEFNTGGVLHLNNGGGPGATPDGQGVKASIDANVAAAFPKGPGPT0030410_3839DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_PROTEINS,PGPT0030410-vgrG-K11904NANA
D1-35_02920435hypothetical proteinGTGACCTCATACCGCATTCAAGAAGCCGATCTCGAAATCCCCGATACCTGGCAGGACCAGAGCATCAACATTTTCAAGCTGCCGGCAGTGGGACCCGCCAAAGAGGCCAGTTTCGTCATCAGCCGCGATGCCACCCAGGGTGACGTTCCCTTTGCCGAGTACGTGGACCGCCAACTCAAAAGCGCGGAGCAGCAATTGCCGGGCTTCAAGCTGGTTCAGCGCTGGGACACGGTGCTGCATGGACACACCACCACCTTGCTGGATTACACCTGGCAGCGCGAAGGACGCGACCTGATGCTGCGCCAGGTGTTCATCGAGCGTAAGCCGTCCGTGCTGATCACCACCTTGACCACCACACCCAACGACTTCGCCTATCACGAGCCGGCCTGGAAGCTGGCGATGCATTCGCTCAAGCCACAGCCTCCGATTGCCTGAMTSYRIQEADLEIPDTWQDQSINIFKLPAVGPAKEASFVISRDATQGDVPFAEYVDRQLKSAEQQLPGFKLVQRWDTVLHGHTTTLLDYTWQREGRDLMLRQVFIERKPSVLITTLTTTPNDFAYHEPAWKLAMHSLKPQPPIANANANANANA
D1-35_029211212hypothetical proteinATGGATGCACAGGCAGCAGCACGTCTGGGTGATGAAATAGCCCACGGGTTCGGGTTGGCCGCTATGGTCGCCGGAGCCGTGGCCGGCGCCTTGATCGGCGCTGCGGTCGTTGCCGCGACGGTGGCCACGGGCGGTGTGGCGCTGGCGATCATGGCCGGCTCGATTGCCGCCGGCGGCTTGTCGATGTTCCAGATCGTCAAGGGCCTGTCCACCATATTCAACCTGCCCGAGCCGACCACGGGGGCGTTGATAATGGGCAGCTTCAACGTCTATATCAACGATCGAAATGCCATGCGGGCGGGCGAAGACATCGCCTCCTCCTGCACCGGCCTGCCGATGAACCATCCGATCTGGCCCTTTCCGGTGCTGATCGCCGAAGGCAGCGCCACGGTGTTCATCAACGGCAAACCAGCGGCGCGCCTGCACAGCAAAATGGTCTGCGGCGCCCACATCAAGACGGGCAGCCCGAACACTTTCATCGGCGGACCGACGGTGTCGGTGGCGTTTGTGCTCGACCTCGAAGGCTGGATGCACTCCGGGCTGGAAGTGTTGGGGTTGCTGGCTGCGGGCGGAGCCTTGTTACTTGCGGCTTTTGCCGGAGCTGCTGCTTTTTTCGGCGCCCTGGCCATCGGTGGTGCGTTGTATGCCGGTATGGAGCTGCTGGGAGATTTGGGTGATCGCCTCGGCCCCGGATATAGGGACCTGTTTCAAGGCGTGGCAGGAATGGCTCTGCTAGGTGCCGGGCCGAAGTTGGCACGTAAGCCCATGACTGCGGCCGAGCGGACGATCCTGGCGCGTCAGCGGCAAGAACAGATGCTCAAGGACAATCGGGGGTTCAACATTAGCCCGACGGCGTGGGACGCCTATCCGACGATTGGGCGGGCCGGTACTTTTGTTTCTGATAAGAAAGGCATCACCGACGTTATCGGGAACATCTCGGGGCGTTCCAAGATGACCATCAGTGGTAAAAAAGCAGCGGAGCTGGAACGCGCCTTTGGTTTGGAAAAAGATGCGCTTAAAGGCGGATTCAAAATCAGGCAGGTCGAGGATGTCGCAGGGCGCATGCCCAGAAGTCCGATGGAGGGGAACCAATATTTCCTGGGGCCAGGCAAACACTTGCCGGGTGGAGCTCCAGAAATGGTTGTCGAGTCGATTCCTACCAAGGATGCGGACGGTATTACCACTTTAACCGAGGTATTTGTCAGTGATTAAMDAQAAARLGDEIAHGFGLAAMVAGAVAGALIGAAVVAATVATGGVALAIMAGSIAAGGLSMFQIVKGLSTIFNLPEPTTGALIMGSFNVYINDRNAMRAGEDIASSCTGLPMNHPIWPFPVLIAEGSATVFINGKPAARLHSKMVCGAHIKTGSPNTFIGGPTVSVAFVLDLEGWMHSGLEVLGLLAAGGALLLAAFAGAAAFFGALAIGGALYAGMELLGDLGDRLGPGYRDLFQGVAGMALLGAGPKLARKPMTAAERTILARQRQEQMLKDNRGFNISPTAWDAYPTIGRAGTFVSDKKGITDVIGNISGRSKMTISGKKAAELERAFGLEKDALKGGFKIRQVEDVAGRMPRSPMEGNQYFLGPGKHLPGGAPEMVVESIPTKDADGITTLTEVFVSDNANANANANA
D1-35_02922333hypothetical proteinGTGATTAATGATGGGCTGAAGGCGTACGTGGAAAAAGCGGACGGCGATGTGATTCGTGTCCAGGTGATGGATAACACGTTGGATTCGTCCCTGCGTGCTATCGGATTTTCTAACGCGGCAGAGAAAGATATCTACGTTTTGCAGGTCGCGGACAACACCCAGAAGGCCAAGGTATTCGATGAGCTCCGTTCGTTGGGGGTGGCCTTTTCGGCGGGCAAGGAATGGTGTCCCTCCGAAGTGTTCGAGTATCTTCGTGACGAGCAATTGCTGAGCGGCAAGTACTTGCGAGTCGCGTGGACGCAGCCTGGGCAATATCTGCTTACGGACGCATGAMINDGLKAYVEKADGDVIRVQVMDNTLDSSLRAIGFSNAAEKDIYVLQVADNTQKAKVFDELRSLGVAFSAGKEWCPSEVFEYLRDEQLLSGKYLRVAWTQPGQYLLTDANANANANANA
D1-35_02923264hypothetical proteinATGAAGTTTCAAGATGCCCTGGTCTACCGTGAGCATGGATTCTGTGTGGGGACGGAACAGTGCTCGGGTCGATTCTATGTCTCCATACCGGTCAGCAATGGCATGGCTGACTACGAGGAGTACTACGAAATTAATCAGGCGACCTTTGAGCTATTCGAGCGTGACCCGGAAGCTGCGCTTCCTTTTGTGTCGCGTTGTAGAAAACGAGAGTTGGACGAGCTATTGATCATTCAACCGGGAACGAAGCGCGGCACAGCCATCTGAMKFQDALVYREHGFCVGTEQCSGRFYVSIPVSNGMADYEEYYEINQATFELFERDPEAALPFVSRCRKRELDELLIIQPGTKRGTAINANANANANA
D1-35_029241941vgrG1_3COG3501Actin cross-linking toxin VgrG1ATGCTATTCAACCAAGCCTCCCGCCTGGCGAAAATCACCAGCCCCCTCGGGCCCGAGGTGCTGCTGCTCAAGGACATGGGCGGCGGCGAAGAGTTGGGGCGGCTGTTCAACTATGAGTTGCAGCTGCACTCGCTGGACAACGCCATCGACCTCAATCAGGTGCTTGGCAAACCCATGTGCGTGAGCGTTCAGCTGGATGGCGGTGGCGAGCGGCACTTCCACGGCATCGTCGCGCGCTTCAGCCAGAACATCGACCAGGGCCAGTTTGCCAGTTACCAGGCCACGCTAAGGCCCTGGCTGTGGCTGCTGACGCGCACCTCCGACTGCCGGATTTTCCAGAACCTGACGGTTCCGCAGATCATCAAGCAGGTGTTCCGCGACCTGGGTTTCTCCGACTTCGAAGACGCCCTCAGCCGCCCGTATCGCGAGTGGGAGTACTGCGTCCAGTACCGTGAGACCAGCTTCGATTTCGTCAGCCGGCTGATGGAGCAGGAAGGCATCTACTACTTCTTCCGTCATGAACAGGGTCGCCATGTGCTGGTGCTGGCCGACGCCTACGGCGCCCATACCCAAGCGCCCGGCTACGCCTCGGTGCCGTACTACCCGAAGAACGAGCAGCAGCGTGAACGCGATCATATTCATGATTGGCACCTGGCCCAGGAAGTCCAGCCGGGGTCGCTTGAGCTCAACGACTACGACTTCCAGCGTCCCAGCGCGCGCATCGATGTACGTTCGGCCATGCCGCGCCCGCACGCCGCTGGCGACTATCCGCTGTATGACTATCCCGGTACCTACGTGCAGAGCGAGGACGGCGAGCACTACGCCCGCACCCGCATCGAAGCCTTGCAGACGCTGCACGAGCAGGTCGAGCTGGCCGGCAATGCCCGAGGCTTGGGCTCGGGGCATTTGTTCAGCCTGACCGGCTTCAGCCGCCAGGACCAGAACCGCGAATACCTGATCGTCGGCGCGCGTTATTACCTCTCTCAGGAAAGCGGCGAGAGCGGCGTCGGTGCGCCTTCGGCGCAGTTCGAAAGCAGTCTGACCTGCATCGACGCCCAGCAAAGCTTCCGCCCGATGGCAATCACCCACCGCCCCATCGTCAAGGGGCCGCAGACAGCTTTGGTGGTCGGACCCAAGGGCGAGGAAATCTGGACCGACCAGTTCGGCCGGGTGAAGGTGCATTTTTATTGGGACCGTCACGATCAATCCAACGAAAACAGCTCGTGCTGGATTCGCGTGTCGCAGGCTTGGGCCGGAAAGAATTGGGGCTCGGTGCAGATCCCGCGCATCGGCCAGGAAGTCATCGTCAGTTTCCTTGAAGGGGATCCTGACAGGCCCATCGTCACCGGTCGTGTGTATAACGCCGAACAGACCGTCCCCTATGCGTTGCCCGCCAATGCCACCCAGAGCGGTACCAAGAGTCGTTCGAGCAAGGGCGGCACGCCGACGAATTTCAACGAAATCCGCATGGAAGATAAAAAGGGCGCCGAGCAACTTTACATCCACGCCGAGCGCAACCAGGACATCGCCGTGGAAGTGGATGAAAGCCACTGGGTGGGTCGCGATCGTCGCAAGAATATCGACCGCAACGAAACCGTACGCATTGGCGAAGACCGGCTGCGGGCCGTACAGCGCAACGACACGTTGCTCGTCGGCGGGGCCAAGAGCGACAGTATCGCGACCCAATACCTCATCGAGGCGGGTTCGCAGATTCGGCTGGTGTGTGGCAAAAGCGTGCTGGAGTTCAACGCCAGTGGCGAGATCAATATCTCCGGCACCGCGTTCAACCTCTACGCCAGTGGCAATGGCAACATCGACACCGGCGGCCGCCTTGACCTCAACTCCGGTGGCGCCAGCGCCGTGGACCCCAAGGGCAAGGGCATCAAGGGCGTGATCGAGGCGGCGGTGAAAGCGTTATTCCCGGCAAAGGCCAAGCAGTGAMLFNQASRLAKITSPLGPEVLLLKDMGGGEELGRLFNYELQLHSLDNAIDLNQVLGKPMCVSVQLDGGGERHFHGIVARFSQNIDQGQFASYQATLRPWLWLLTRTSDCRIFQNLTVPQIIKQVFRDLGFSDFEDALSRPYREWEYCVQYRETSFDFVSRLMEQEGIYYFFRHEQGRHVLVLADAYGAHTQAPGYASVPYYPKNEQQRERDHIHDWHLAQEVQPGSLELNDYDFQRPSARIDVRSAMPRPHAAGDYPLYDYPGTYVQSEDGEHYARTRIEALQTLHEQVELAGNARGLGSGHLFSLTGFSRQDQNREYLIVGARYYLSQESGESGVGAPSAQFESSLTCIDAQQSFRPMAITHRPIVKGPQTALVVGPKGEEIWTDQFGRVKVHFYWDRHDQSNENSSCWIRVSQAWAGKNWGSVQIPRIGQEVIVSFLEGDPDRPIVTGRVYNAEQTVPYALPANATQSGTKSRSSKGGTPTNFNEIRMEDKKGAEQLYIHAERNQDIAVEVDESHWVGRDRRKNIDRNETVRIGEDRLRAVQRNDTLLVGGAKSDSIATQYLIEAGSQIRLVCGKSVLEFNASGEINISGTAFNLYASGNGNIDTGGRLDLNSGGASAVDPKGKGIKGVIEAAVKALFPAKAKQPGPT0030410_3786DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_PROTEINS,PGPT0030410-vgrG-K11904NANA
D1-35_029252691clpV1_1COG0542Protein ClpV1ATGGGTGAAATCAGTCGCGCCGCGTTGTTCGGCAAACTCAACAGCGTGGCCTACAAAGCCATCGAAGCCGCCACCGTGTTCTGCAAGTTGCGCGGTAACCCTTATGTGGAACTGGCCCACTGGTTTCATCAATTGCTGCAACTGCAGGACTCGGACCTGCACCGCATCATCCGCCAGTTCAACATCGAGCCGGCACGCCTGGCCCGCGACCTGACCGAGGCGCTGGATCGCCTGCCACGGGGGTCGACCTCCATCACCGACCTGTCTTCCCACGTGGAAGAAGCCGTGGAACGCGGCTGGGTCTACGGCAGCCTGATGTTCGGCGAAAGCCAGGTGCGCACCGGTTACCTGGTGCTGGGCATCCTCAAGACGCCGAGCCTGCGTCATGCGCTGCTGGGCCTGTCGTCGGAGTTCGACAAGGTCAAGGTCGAAGCCCTGAGCGAACGGTTTGACGAATACGTCGGCGACTCGCCGGAAAACGCCCTGACCGCCAGCGACGGCTTCAACGCCGGCGCCGTGCCCGGCGAAGCCAGCGGCGCGATGGCCCCCAGCGCCATGGGCAAGCAGGAAGCGCTCAAGCGCTTCACCGTCGACCTCACCGAGCAGGCCCGCAGCGGCAAGCTCGACCCGATCGTCGGCCGTGACGAAGAGATCCGCCAACTGGTGGATATTCTCATGCGTCGTCGGCAGAACAACCCGATCCTCACCGGTGAAGCCGGCGTCGGCAAGACCGCCGTGGTCGAAGGTTTTGCCCTGCGCATCGTCGCCGGTGACGTGCCGCCTTCGCTCAAGGACGTGGAGCTGCGCAGCCTCGACGTTGGCCTGTTGCAGGCCGGCGCGAGCATGAAAGGTGAATTCGAGCAGCGCCTGCGTCAGGTCATCGAAGACGTCCAGGCCTCGCCGAAACCGATCATCCTGTTCATCGACGAAGCCCACACCCTGGTGGGTGCCGGTGGCGCCGCCGGTACCGGCGACGCGGCCAACCTGCTGAAGCCGGCCCTGGCGCGTGGCACCTTGCGCACCGTCGCCGCCACGACCTGGGCCGAGTACAAGAAGCACATCGAAAAGGACCCGGCCCTGACCCGGCGCTTCCAAGTGGTGCAAGTCGCCGAGCCGTCGGAAGACAAGGCCCTGCTGATGATGCGCGGCGTGGCCTCGACCATGGAAAAACACCATCAGGTGCAAATCCTCGACGAGGCCCTGGAGGCCTCGGTCAAGCTGTCTCACCGCTACATTCCCGCGCGCCAGTTGCCGGACAAGTCCGTGAGCCTGCTGGACACCGCCTGCGCCCGCGTTGCCATCAGCCTGCACGCCGTGCCGGCCGAAGTGGACGACAGCCGCCGGCGCATCGAAGCACTGGAAACCGAACTGCAGATCATCGCCCGTGAACATGCGATCGGCATCGCCATCGGCACCCGCCAGACCCAGACCGAAAGCCTGCTCGCCGCCGAGCGCGAACGCCTGGCCGAATTGGAAAGCCGTTGGGCCGAAGAGAAAACCCTGGTCGACGAATTGCTGGAAACTCGCGCTACCCTGCGCGAGCGCGTCGGCCTGGTGGACAGCGAGAACGGCAGCGAAGCTTCCGACAACGACAGCCATGCCCTGCGCGAGAAACTGGTGGACCTGCAACAGCGCCTGACCGCCCTGCAAGGCGAGACCCCGCTGATCCTGCCGACCGTGGATTACCAGGCCGTGGCCTCGGTGGTCGCCGACTGGACCGGAATCCCGGTGGGCCGCATGGCCCGCAACGAACTGGAGACCGTGCTCAACCTCGACCAGCACCTGAAAAAACGCATCATCGGCCAGGACCATGCCCTGCAGATGATCGCCAAGCGCATCCAGACCTCGCGCGCCGGCCTCGACAATCCGAGCAAGCCGATCGGCGTGTTCATGCTCGCCGGTACCTCCGGCGTGGGCAAGACCGAAACCGCCCTGGCCCTGGCCGAAGCCATGTACGGCGGTGAACAGAACGTCATCACCATCAACATGAGCGAGTTCCAGGAAGCCCACACCGTGTCCACCCTCAAGGGTGCGCCACCGGGTTATATCGGTTATGGCGAAGGCGGCGTGCTGACCGAAGCCGTGCGGCGCAAACCGTACAGCGTGGTGTTGCTGGACGAGGTGGAAAAAGCCCACCCGGACGTGCACGAGATCTTCTTCCAAGTGTTCGACAAAGGCGTGATGGAGGACGGCGAAGGCCGGGTGATCGACTTCAAGAACACCTTGATCCTGCTAACCACCAACGCCGGCACCGAGCTGATCGCCCAGGTCTGCAAGGACCCGCAGAACGTGCCCGAGCCGGAAGAAATCGCCAAGGCCCTGCGGCAGCCGCTGCTGGAAATATTCCCGCCGGCGCTGCTCGGCCGCCTGGTGACGATCCCCTACTATCCGCTCAGCGACGAGATGCTCAAGGCCATCACCCGCCTGCAACTCAACCGCATCAAGAAGCGCGTGGAGAGCACTCACAAAGTGGCCTTCGACTACGATGACGCGGTGATCGACCTGATCGTCTCGCGCTGCACCGAAACCGAAAGCGGCGGGCGCATGATCGACACCATCCTGACCAACAGCCTGCTGCCGGACATGAGCCGCGAGTTCCTGACTCGCATGCTCGAAGGCAAGGCCATGGCCGGCGTGCGAATCAGCGCCGTGGATAACGAACTGAAGTACGATTTCAGCGACGCGGCCTGAMGEISRAALFGKLNSVAYKAIEAATVFCKLRGNPYVELAHWFHQLLQLQDSDLHRIIRQFNIEPARLARDLTEALDRLPRGSTSITDLSSHVEEAVERGWVYGSLMFGESQVRTGYLVLGILKTPSLRHALLGLSSEFDKVKVEALSERFDEYVGDSPENALTASDGFNAGAVPGEASGAMAPSAMGKQEALKRFTVDLTEQARSGKLDPIVGRDEEIRQLVDILMRRRQNNPILTGEAGVGKTAVVEGFALRIVAGDVPPSLKDVELRSLDVGLLQAGASMKGEFEQRLRQVIEDVQASPKPIILFIDEAHTLVGAGGAAGTGDAANLLKPALARGTLRTVAATTWAEYKKHIEKDPALTRRFQVVQVAEPSEDKALLMMRGVASTMEKHHQVQILDEALEASVKLSHRYIPARQLPDKSVSLLDTACARVAISLHAVPAEVDDSRRRIEALETELQIIAREHAIGIAIGTRQTQTESLLAAERERLAELESRWAEEKTLVDELLETRATLRERVGLVDSENGSEASDNDSHALREKLVDLQQRLTALQGETPLILPTVDYQAVASVVADWTGIPVGRMARNELETVLNLDQHLKKRIIGQDHALQMIAKRIQTSRAGLDNPSKPIGVFMLAGTSGVGKTETALALAEAMYGGEQNVITINMSEFQEAHTVSTLKGAPPGYIGYGEGGVLTEAVRRKPYSVVLLDEVEKAHPDVHEIFFQVFDKGVMEDGEGRVIDFKNTLILLTTNAGTELIAQVCKDPQNVPEPEEIAKALRQPLLEIFPPALLGRLVTIPYYPLSDEMLKAITRLQLNRIKKRVESTHKVAFDYDDAVIDLIVSRCTETESGGRMIDTILTNSLLPDMSREFLTRMLEGKAMAGVRISAVDNELKYDFSDAAPGPT0025985_485DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025985-vasG|clpV-K11907NANA
D1-35_029261053hypothetical proteinATGGAAAGCCAAGCCCGGACGTCGTCCGACCCTGTGAGTACCCTGGAAGCGATGCACCAGGAACCCTGGGAATACGACTTCTTCCAGGCGTTGCGGCGCATCGAATGCGAATCCCCCGAACTGCCGCGCCTGGGCCATTCCCTGCGCCTGGCCGATGATCCGCTGCGTCTCGGGCAACAGGCCGAGTGCACCTTCGCCCCGGCGACCCTGGCCTCGGTGCAACCGGGCGTCGACGGTGCGCCGGCGCGCCTGGAGCAGTTCTTCTTCGGCCTCGGCGGCCCCAACGGCCCAATGCCGTTGCACATCACCGAATACGTGCGCGAACGCCAACGCAACAATGGCGACAGCACCAGCAAACGCTTTCTCGACGTCTTCCATCATCGCCTGCTCAGCCTGTTCTACCGGGCCTGGGCCGAAGCACGGCCGACGGTCAGCCACGATCGCCCGGACGATGATTACTGGTCGGCGCGCCTGGCGGCACTCAGCGGCCGGGGCATGCCGAGCCTGCTCAACCAGGGGCTGATTCCCGATACGGCGAAGCTGCACTACAGCGGTCACCTGTCGGCGCAAACCCGCTACCCGGACGGTTTGAAAGCGATCCTCAGCGAGTACTTCGGCCTGCCGGTGGAAATCGAAGAATACGTCGGCCAATGGCTGGAACTGCCGGAGCGCAGCCGCGTTGGTGTCAGCGCCCATCAACTGGGCGTGGACTTCTGCCTGGGCCGCTACGTTTGGGATCGCCAGCACAAATTCCGCATTCGCCTGGGGCCGCTCAAGCTCGTCGACTACATGGGCATGCTGCCCGGCAGCCAACCGTTCAATGAGCTGGTGGCCTGGGTCGCCGAGTACCTGGGGCACGAACTGGACTGGGACCTGAACCTGGTCCTGGAGCAGCCCGAAGTGCCCGCACTACAACTCAATGGTCGTTTCCGCCTGGGTTTCAACACCTGGCTGGGACGCCCTGAAAAAGATGCCAACGATCTAATACTGGCCCGGCATTACGCCGAACAGGCCAACACCTCACAGACCTCAAGGAGCCATGAGCATGGGTGAMESQARTSSDPVSTLEAMHQEPWEYDFFQALRRIECESPELPRLGHSLRLADDPLRLGQQAECTFAPATLASVQPGVDGAPARLEQFFFGLGGPNGPMPLHITEYVRERQRNNGDSTSKRFLDVFHHRLLSLFYRAWAEARPTVSHDRPDDDYWSARLAALSGRGMPSLLNQGLIPDTAKLHYSGHLSAQTRYPDGLKAILSEYFGLPVEIEEYVGQWLELPERSRVGVSAHQLGVDFCLGRYVWDRQHKFRIRLGPLKLVDYMGMLPGSQPFNELVAWVAEYLGHELDWDLNLVLEQPEVPALQLNGRFRLGFNTWLGRPEKDANDLILARHYAEQANTSQTSRSHEHGPGPT0025940_741DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025940-impH|vasB-K11895NANA
D1-35_029271860hypothetical proteinATGAATCCGCGCCTGCTGGAGCTGTACAACCAGGAGCTGCACCACGTGCGCGAAAGCGCGGCGGAGTTCGCCCAGGAATACCCGAAGATTGCCAGCCGGTTGTCGCTGGCCGGCATGGACTGCGCCGACCCTTACGTCGAGCGCCTGCTGGAAGGCTTCGCTTATTTGACGGCACGGGTGCAGCTCAAGCTCGACGCCGAATACCCGACGTTCACCCACAACCTGTTGGAAATCGCCTATCCGCATTACCTGGCACCGACGCCGTCGATGACCGTGGTGCAGATGCAGGCCGACCCGGACGAAGGTTCGCTGAGCAGCGGTTTCCCGCTGCCCCGTGACACCGTCCTGCGCGCTGCCCTGGGTCGCGAATCCCAGACCTGCTGCGAGTACCGCACCGCCCACGCGGTGACGTTGTGGCCGTTGCAGGTCAGCCAGGCCGAGTACTTCGGCAACCCGTCCGCGGTACTCGGGCGCCTGGCCGCCAGCGAACCGAAAGCCAAGGCCGGCCTGCGCCTGACCCTGCGCACCGGCGCCGAACTGCCATTCAACAGCCTGGCCCTGGACAATCTGCCGCTGTACTTGAGCGGCGCCGATGAACAGCCCTTCCGCCTCTACGAACAACTGCTGGGTAATGCCTGCGCGGTGTTCGCCCGCCAGCCCGGCGGCAACTGGGTCGAACGGTTGCCGCAGGATGCGTTGCGCGCGCAAGGCTTCGATGACGCCGAGGCCGCGCTGCCGGTGGTGTCGCGGGCGTTCCAGGGTTATCGCCTGTTGCAGGAATATTTCGCCCTGCCGCACCGCTTCCTGTTCGTCGATTTCACCCAGCTCGGCCGCGCGGTCAAGCGTTGCGACGGCCAGGAGCTTGAGCTGATCGTGCTGTTCGACCGCCACGATCCGAGCCTGGAAGGCAGCGTCGGCGCTGCGCAGTTCCTGCCGTTCTGCACACCGGCGATCAATCTGTTTCCCAAACGCCTGGACCGCATTCACTTGTCGGACCGGGTCAACGAACATCATGTGATTGCCGACCGCACCCGGCCGATGGATTTCGAAGTGCATTCGCTGACCGGGCTGGCCGGCCACGGCACCGGCCCGGAGCAGCCGTTCCTGCCCTTCTACGCCGTGCGCGATCCGTCCCGCTATGGCCGCGACAAGGCCTATTACACGGTGCGCCGCGAACCGCGCGTGCTGTCCAGCGATCAACGCCGCAACGGCCCGCGCTCGACCTATATCGGCAGCGAGACCTTCGTCAGCCTGGTGGACAGCCAGCAAACGCCTTATCGCCACGACCTGCGTCAATTGGGCGTAACCGCGCTGTGCACCAACCGTGACCTGCCGCTGTTCATGAGCGTGGGCAACGGCAAGACCGACTTCACCCTGGCCGACAGTGCGCCGGTTGGCGCGGTGCGCTGCGTCGCCGGGCCGAGTCGCCCACGGGCGAGCCATGCCCACGACGCCAAGGCCTGGCGGCTGATCAGCCAGCTGTCGCTGAACTACCTGTCCTTGAGCGAACAAGGCCAGGGCGCGGCCGCCCTGCGCGAACTGCTGCGCCTGTATGGCGACAGCAACGATGCGGCGCTGCAATTGCAGATCGAAGGCCTGCGCGAAGTCAGCAGCAAGGCCTGCACCCGGCGCCTGCCGATGCCCGGCCCGATCGTGTTTGGTCGCGGCCTGGAGATCACCCTGGAATTCGATGAAAACGCGTTTCGCGGCACCGGGGTGTTCCTGCTCGGCGCGGTGTTCGAACGCTTCCTGGCACGCTACGTGTCGATCAACAGTTTTACCGAGACGGTGATCCGTACCACCGAACGCGGCGAGATCATGCGATGGAAAGCCAAGCCCGGACGTCGTCCGACCCTGTGAMNPRLLELYNQELHHVRESAAEFAQEYPKIASRLSLAGMDCADPYVERLLEGFAYLTARVQLKLDAEYPTFTHNLLEIAYPHYLAPTPSMTVVQMQADPDEGSLSSGFPLPRDTVLRAALGRESQTCCEYRTAHAVTLWPLQVSQAEYFGNPSAVLGRLAASEPKAKAGLRLTLRTGAELPFNSLALDNLPLYLSGADEQPFRLYEQLLGNACAVFARQPGGNWVERLPQDALRAQGFDDAEAALPVVSRAFQGYRLLQEYFALPHRFLFVDFTQLGRAVKRCDGQELELIVLFDRHDPSLEGSVGAAQFLPFCTPAINLFPKRLDRIHLSDRVNEHHVIADRTRPMDFEVHSLTGLAGHGTGPEQPFLPFYAVRDPSRYGRDKAYYTVRREPRVLSSDQRRNGPRSTYIGSETFVSLVDSQQTPYRHDLRQLGVTALCTNRDLPLFMSVGNGKTDFTLADSAPVGAVRCVAGPSRPRASHAHDAKAWRLISQLSLNYLSLSEQGQGAAALRELLRLYGDSNDAALQLQIEGLREVSSKACTRRLPMPGPIVFGRGLEITLEFDENAFRGTGVFLLGAVFERFLARYVSINSFTETVIRTTERGEIMRWKAKPGRRPTLPGPT0025935_554DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025935-impG|vasA-K11896NANA
D1-35_02928513hypothetical proteinTTGGTAACCGAAATCGCCACCCGCGATCGCCTGCAACCGTCCCTGCTGGACCGGCTGACCGACGACGATCCGAGCAACCCGAAGGAAAGCGCCGACAAGCGCGTGCTGTCCCTTACCCAATTAAAAGCCTCGGTGCTGCGTGACCTGGCGTGGCTGCTCAACACCACGTCATTGCTCGACGCCGATGCCACGGTGCACACCCCGGCGGGCACCTCGGTGGTGAATTTCGGGCTGCCGGCGCTAGCCGGCAACAGTGCCTCGAACATCGATGTGCCCGCGCTGGAAACCTTGATCCACCAGGCCATCGCCACCTTCGAGCCGCGTATCTTGCGCCACACCCTGCGCGTGCGCGCCCGAGCAACCGCCGAGATGAACCATAACGCCCTGAGCTTCGAGATCGAAGGCGATCTCTGGGCCCAGCCGGTGCCGCTGCGCCTGATGCTGCAGACCGACCTGGATCTGGAGACCGGCCACGTGCGCGTAGTCAACGCCGACCAGCGGAGACGCCCATGAMVTEIATRDRLQPSLLDRLTDDDPSNPKESADKRVLSLTQLKASVLRDLAWLLNTTSLLDADATVHTPAGTSVVNFGLPALAGNSASNIDVPALETLIHQAIATFEPRILRHTLRVRARATAEMNHNALSFEIEGDLWAQPVPLRLMLQTDLDLETGHVRVVNADQRRRPPGPT0025930_295DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025930-impF-K11897NANA
D1-35_02929450hypothetical proteinATGATCAAGGCCCATTGCGCGATATGGGTCGGCTGTCTGTTGACCAGCCTGACCGCCTGTGCCCAGCAGCAGTCGCCATCGGCGACTTCCTCCGCCCCGGTGGAGCATGTCGTCTCGATGGGTGGGCAAACGCTGACGCTGGAGAACGACCAGGCGCGCTGCGTGCTCCGCAAGCCCGACCAGACCCTGATGCCACTCGACTTGGCCTGGCCCTGCCAGTTCACGGTCGATCGACAAGGCAAACCCCATGTCGAAACCTTCAATAACGTGCCCATTGTCATCGTTGTCCATGTAGCGGCTGGTCCTCATAACAATCAGGAGTGTCGCTCCGAGTATCGCGCCATACGCCAGTTCAAAGGCCAACTCGAACCCTCGATCATCGCTCGCAACGCCAGTTGCATGCGCGGCACAGGTGACCAGAAGAATTACACGGGCCATTTCACTTGGTAAMIKAHCAIWVGCLLTSLTACAQQQSPSATSSAPVEHVVSMGGQTLTLENDQARCVLRKPDQTLMPLDLAWPCQFTVDRQGKPHVETFNNVPIVIVVHVAAGPHNNQECRSEYRAIRQFKGQLEPSIIARNASCMRGTGDQKNYTGHFTWNANANANANA
D1-35_02930456hypothetical proteinATGGCCAAGCCTGCGTTTATCAATTTGTGGAAAGCCTATTCCGATTTGCTGGCCACCCATCCCGACGCGAAACCTTGCGACGGCCCTTGGGCAAATCAGTGCGCGATTCGCATGAGCATCACGCTCAATACCGAACTGACCATCAAGGTCAACAAGTCCACCTACACCGAACCCAAATGTGCCCATGGGCATGCGCGTGGGGCCGAGTCATTGGCAAATTGGTTGTGGAAACATCATCTGGGCCGCCCGACGATTCTCGGCGGAACCGCCGCGGACCGACGCAAACTGCAAGACAAGACGGGCCTGATTTTCTTCAAGGATTGTTTCCAGCAAGTGGGGGAAGCCTCGGAGGGTCGTACCGGCGATCATATCGACCTCTGGAACCGTGGCCTGACCCTCGGTTATGACGATCCGGCCTATCGATCCCGAGCGATCTGGTTCTGGGAGCTCGTATGAMAKPAFINLWKAYSDLLATHPDAKPCDGPWANQCAIRMSITLNTELTIKVNKSTYTEPKCAHGHARGAESLANWLWKHHLGRPTILGGTAADRRKLQDKTGLIFFKDCFQQVGEASEGRTGDHIDLWNRGLTLGYDDPAYRSRAIWFWELVNANANANANA
D1-35_02931489hcp1_1COG3157Protein hcp1ATGGCTGTTGATATTTTCATCAAGATCGGCGACATCAAGGGCGAGTCCATGGACAAGGTCCACAAGGACGAGATCGACGTCCTGAACTGGAGCTGGGGCATGTCCCAGACCGGTAACATGCACGTCGGCAGTGGCGGTGGCGCGGGCAAGGTGAGCATCCAGGACCTGTCGCTGACCAAGTACGTCGACAAGGCTTCGCCGAACCTGATGATGCACTGCGCCAGCGGCAAGCACGTCGACAAGGTCAAGCTGACCGTGCGCAAGGCCGGCGGCGAAAGCCAGGTCGAGTACATGATCATCAACCTGGAAGAAGTACTGATCACTTCCCTGAGCACCGGCGGCTCGGGCGGCGATGATCGTCTGACCGAAAACGTCACCCTGAACTTCGCCAAGGTGCTGGTGGACTACCAGCCACAGAAAGCCGACGGCACCAAGGAAGGCGGTCCGGTCAAGTTCGGCTGGAACATCCGTCAGAACGTCAAGGTGTAAMAVDIFIKIGDIKGESMDKVHKDEIDVLNWSWGMSQTGNMHVGSGGGAGKVSIQDLSLTKYVDKASPNLMMHCASGKHVDKVKLTVRKAGGESQVEYMIINLEEVLITSLSTGGSGGDDRLTENVTLNFAKVLVDYQPQKADGTKEGGPVKFGWNIRQNVKVPGPT0025980_990DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_PROTEINS,PGPT0025980-hcp-K11903NANA
D1-35_029321497hypothetical proteinATGAACGATTTGGTACGCGACAATCAGCCCCAGAACCTGGGCGCCACCGAAGAAACCAGCGAGTTCGCCTCGCTGCTGCTGCAAGAGTTCAAGCCCAAGACCGAACGCGCCCGCGAAGCCGTCGAGACCGCCGTGCGCACGCTGGCCGAACAGGCCCTGGCGCAGACCGACCTGGTGTCCAACGACGCCATCAAGTCGATCGAGTCGATCATCGCCGCGATCGACGCCAAGCTCACCGCCCAGGTCAATCAGGTCATCCACCACCCGGACTTCCAGCAACTGGAAAGCGCCTGGCGTGGCCTGCATTACCTGGTCAACAACACCGAGACCGATGAGCAGCTCAAGATCCGCGTGCTCAACATCTCCAAGACCGACCTGCACAAGACCCTGAAGAAATTCAAGGGCACCGCGTGGGACCAGAGCCCGCTCTTCAAGAAGATGTATGAAGAAGAATACGGCCAGTTCGGCGGCGAGCCTTACGGCTGCCTGGTCGGCGACTACTACTTCGACCAGTCGCCACCGGACGTGGAACTGCTGGGCGAGCTGTCGAAAGTCTGCGCCGCCATGCACGCGCCATTCATTGCCGCCGCCTCGCCGACGGTAATGGGCATGGGCTCGTGGCAGGAACTGTCGAACCCGCGCGACCTGACCAAGATCTTCACCACTCCGGAATACGCCGGCTGGCGTTCGCTGCGTGAATCGGAAGACTCGCGCTACATCGGCCTGACCATGCCGCGCTTCCTGGCGCGCCTGCCGTATGGCGCCAAGACCGATCCGGTGGAAGCCTTCGCCTTCGAAGAAAGCACCGACGGCGCCGACAGCTCCAAGTACACCTGGGCCAACGCCGCCTATGCGATGGCCGTGAACATCAACCGCTCGTTCAAACACTTCGGCTGGTGCTCGCGCATCCGCGGCGTGGAATCGGGCGGTGAAGTGGAAAACCTGCCGGCTCATACGTTCCCTACCGATGACGGTGGCGTGGACATGAAGTGCCCGACCGAAATCGCCATTTCGGACCGCCGTGAAGCGGAACTGGCGAAGAACGGTTTCATGCCGCTGCTGCACAAGAAGAACACCGACTTTGCCGCCTTCATCGGCGCCCAGTCGTTGCAGAAACCGGCCGAATACGACGACCCGGACGCCACCGCCAACGCCAACCTGGCCGCGCGCCTGCCGTACCTGTTCGCCACCTGCCGTTTCGCCCATTACCTGAAGTGCATCGTGCGCGACAAGATCGGCTCCTTCAAAGAGAAGGACGAGATGCAGCGCTGGTTGCAGGACTGGATCCTCAACTACGTCGACGGTGATCCGGCGCACTCCACCGAGACCACCAAGGCCCAGCATCCACTGGCTGCCGCCGAAGTGATCGTCGAAGAAGTCGAAGGCAACCCGGGGTACTACAACTCCAAGTTCTACCTGCGCCCGCACTATCAGCTCGAAGGGCTGACCGTGTCGTTGCGCCTGGTATCGAAACTGCCGTCGGCCAAGGGCGCGTAAMNDLVRDNQPQNLGATEETSEFASLLLQEFKPKTERAREAVETAVRTLAEQALAQTDLVSNDAIKSIESIIAAIDAKLTAQVNQVIHHPDFQQLESAWRGLHYLVNNTETDEQLKIRVLNISKTDLHKTLKKFKGTAWDQSPLFKKMYEEEYGQFGGEPYGCLVGDYYFDQSPPDVELLGELSKVCAAMHAPFIAAASPTVMGMGSWQELSNPRDLTKIFTTPEYAGWRSLRESEDSRYIGLTMPRFLARLPYGAKTDPVEAFAFEESTDGADSSKYTWANAAYAMAVNINRSFKHFGWCSRIRGVESGGEVENLPAHTFPTDDGGVDMKCPTEIAISDRREAELAKNGFMPLLHKKNTDFAAFIGAQSLQKPAEYDDPDATANANLAARLPYLFATCRFAHYLKCIVRDKIGSFKEKDEMQRWLQDWILNYVDGDPAHSTETTKAQHPLAAAEVIVEEVEGNPGYYNSKFYLRPHYQLEGLTVSLRLVSKLPSAKGAPGPT0025920_690DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025920-impC-K11900NANA
D1-35_02933516hypothetical proteinGTGGCGAAGCAAAGTTCTCAGAAATTCATCGCGCGCAACCGCGCGCCTCGAGTGCAGATCGAGTACGACGTCGAGCTCTACGGCGCCGAGAAAAAGGTCCAGTTGCCCTTCGTCATGGGGGTAATGGCGGACCTGGCCGGCAAGCCCGCGGAGCCTCTGGCGCCGGTGGCCGATCGCAAGTTCCTCGAGATCGACGTCGACAACTTCGACTCGCGTCTCAAGGCCATGCAGCCTCGCGTGGCGTTCCATGTGCCTAACGAACTGACCGGCGAAGGCAACCTGAGCCTGGACCTGACGTTCGAAAGCATGGACGACTTCAGCCCTGCGGCCGTGGCCCGCAAGATCGATTCGCTGAACAAGCTGCTCGAAGCGCGCACTCAACTGGCCAACCTGCTGACCTACATGGACGGCAAGACCGGCGCCGAGGAAATCATCATGAAGGCGATCAAGGACCCAGCGCTGCTGCAGGCCCTTGCCAGCGCGCCAAAGCCCGCCGATGCAGAGCCCAAGGCTTAAMAKQSSQKFIARNRAPRVQIEYDVELYGAEKKVQLPFVMGVMADLAGKPAEPLAPVADRKFLEIDVDNFDSRLKAMQPRVAFHVPNELTGEGNLSLDLTFESMDDFSPAAVARKIDSLNKLLEARTQLANLLTYMDGKTGAEEIIMKAIKDPALLQALASAPKPADAEPKAPGPT0025915_592DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025915-impB-K11901NANA
D1-35_029341026hypothetical proteinGTGGATGTGCCTTTGCTGCTCGCCGCCGTTTCCGCGAATTCGCCTTGCGGTGAAGACCTGGAATATGACGCGGATTTCTTGCGCCTGGAACGCGACTCCCGAGGCCAGCCCGAGCGCAGCATGGGCGACTCGATTCTGCCTGCAGAACCCCCTGAATGGCGCAGCATCCAGCAGCAAAGCCTGGACCTGCTCGCGCGCAGCAAAGACCTGCGCATCACCCATTTCCTGCTGCAAAGCTCCCTGGCCCTGGAAGGCATTCCCGGCCTGGCCCGTGTATTGACGCTGATCAACGAGCTGCTCAAGCAATACTGGGCCGACCTGCACCCGCGCCTGGATGCCGATGATGACAACGACCCCACCGTGCGCATCAATGCCCTTGCCGGCCTGACGTCGGACGTCACCATCCGCCTGCTGCGCGAAAGCATCCTGGCTCGCTCGCGCACGTTCGGCAACGTCAGCCTGCGCGCCGCCGCCAACGCCAGCGGCTTGCAGAGTTTCCCCGATGAAAGCCTCGGCGCCGAACAACTCGCCGGCGCCCTGCTCGACAGCGATCCCGAGCAGCTGGAAGTCATTCGTGCCGCCCTGCTGGAAGCCCGTAGCGCCGCCGAATCCATCGAACAGCAAGTCAGCGACCAGGTCGGTTCCGCCCAGGGCGTGGACCTCGGCCCGCTGAAACAACCGCTGAAGATGGCCCTGCAGATTCTCGGTCAGTTCGCCCCGCAGAGCGGCGACAGTGCCCTTGTCGATCCCGTCGAAACCGACAACGCCGCGCCGGTTGAATACGCCAGCGCCCCCAGCACGCCGCGCAGTACCGTCGCCGGAGAAATCAACAACCGCGACGATGTCCTGCGCAGCCTGGACCGGATCCTGGCGTACTACACCCGTCATGAGCCCTCCAGCCCGCTGCCGGTGCTGTTGAACCGGGCGAAGAATCTGGTGCACGCCGATTTCGCGGCGATCGTACGCAACCTGATTCCCGACGGCATGAGTCAATTTGAAAACCTGCGCGGCCCGGAAAGCGAATAAMDVPLLLAAVSANSPCGEDLEYDADFLRLERDSRGQPERSMGDSILPAEPPEWRSIQQQSLDLLARSKDLRITHFLLQSSLALEGIPGLARVLTLINELLKQYWADLHPRLDADDDNDPTVRINALAGLTSDVTIRLLRESILARSRTFGNVSLRAAANASGLQSFPDESLGAEQLAGALLDSDPEQLEVIRAALLEARSAAESIEQQVSDQVGSAQGVDLGPLKQPLKMALQILGQFAPQSGDSALVDPVETDNAAPVEYASAPSTPRSTVAGEINNRDDVLRSLDRILAYYTRHEPSSPLPVLLNRAKNLVHADFAAIVRNLIPDGMSQFENLRGPESEPGPT0025910_734DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025910-impA-K11902NANA
D1-35_029351443hypothetical proteinATGCCGCTGTGTTTGACTATCACTAGTTATCACAAGATTACCCCTGGACAGTGTTCTGAAAAGACCCTGAACCAAGGGGTGATGGCAATTGGCCGTAATTCCGATAATGACTGGGTATTGCCCGACCCGGAGCGCCTGGTTTCTGGGCAACATTGCGTTATCCAATACAAGGACGGGCGCTATTATCTGACCGATAACAGCACCAATGGCGTGGAGTTGGTCAAGGCCGGCATTCGCCTGCGCAAAGGCAACAGCGAGCCGCTGCAGGATGGCGAAGTCATTCGCATCGGTGATTACGAGATCCAGGCGCGCGTGGATTTCAGCCTGCCGGTCACCGACAGCAATCCGTTCGCCGAAGCGCCCAGCAGCTTCGAAGCCTTGATGGGGCGCCAGGGTGCCGCCGTGAATACGCCGGCGCCGATACCCGTGGCCACGCCTGCGCATTTCCAGGGTGTGTCGTCCATGGACACGCTGCCGGACCTGTTCGACTTCCTTGCTCCGAGCAGCGTCCCCCCAGCCACCCAGCCCGATCACGTTCCGGCCGAGCAACATGATTTCCGCCCGCCCACGCCGATTCCGCGCCCGAGTCCGCCGCCAGTGGTCCAACCGCTGCCAATGACGCCTGCTCCGGTTATCCCGGATGATTGGGACCTGTTCAGCGACACGCCTGCGCCGGTTGCGCCGATTCCCGTCGCGCCGCTGCCGGAGCCGGTTTCCGTGCCGCCATTGCCGGTGATCGAGCCCGTTCCCGCGCCGCCGATCCCGCAAGTCGTTGCGCCGATCGAGCCCGCGCCACCGCGCGAAGCGCCGGTCAGCCGCGTCGAGCCGACGGCTACCCCAACCGACACCTCTGGCCCCGACCTGCTGCAAGCGTTCCTGCGCGGCGCCGGGCTGGATCAGTTGCGCCTGGACAAAGTCCAGGCTGAGGCGCAGATGGAAAGCATCGGGCGCAGCTATCGATTGATGGTCGAGGGCCTGATCGATGTGCTGCGCGCCCGCAGCAGCCTCAAGGGTGAGTTCCGCATCCAGCAGACAATGATCCAACCGGTGGAAAACAACCCGCTCAAATTTGCCCCGAACGTCGACGAAGCCCTGCTGTTGCTGTTGCGCCACGGCAACCAGGCCTTCATGGCGCCGGACGTGGCGGTGCGCGACAGCTTTGACGATTTACGCGCGCATCAACTGGCGGTGATGGCCGGTGTGGAAGCGGCCATCAAGCATCTGCTGGCGCGTTTCGAGCCGGCCCAGCTGGAAGAGCGCATGGGCAAGCCCGGCGGGTTGTCGGGGATTTTCAGCGGGTCGCGCCAGGCCCAGTACTGGCAGCAATTCACCGAGCTCTACAGCAACATTTCCCGGGAGGCCCAGGAAGACTTCCAGGACCTGTTCGGTCGGGAGTTCAGCCGCGCCTACGAAGAACACAGCACGCGACAGCGACGTCGTTGAMPLCLTITSYHKITPGQCSEKTLNQGVMAIGRNSDNDWVLPDPERLVSGQHCVIQYKDGRYYLTDNSTNGVELVKAGIRLRKGNSEPLQDGEVIRIGDYEIQARVDFSLPVTDSNPFAEAPSSFEALMGRQGAAVNTPAPIPVATPAHFQGVSSMDTLPDLFDFLAPSSVPPATQPDHVPAEQHDFRPPTPIPRPSPPPVVQPLPMTPAPVIPDDWDLFSDTPAPVAPIPVAPLPEPVSVPPLPVIEPVPAPPIPQVVAPIEPAPPREAPVSRVEPTATPTDTSGPDLLQAFLRGAGLDQLRLDKVQAEAQMESIGRSYRLMVEGLIDVLRARSSLKGEFRIQQTMIQPVENNPLKFAPNVDEALLLLLRHGNQAFMAPDVAVRDSFDDLRAHQLAVMAGVEAAIKHLLARFEPAQLEERMGKPGGLSGIFSGSRQAQYWQQFTELYSNISREAQEDFQDLFGREFSRAYEEHSTRQRRRPGPT0030440_73DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0030440-fha1-K11913NANA
D1-35_02936507hypothetical proteinATGATTCCCAGGTTTTTACTCGCAGTCGCCACAGCACTTCTGCTGACGGCGTGCGCCAAGGATGCGGCCGCTCCCCAGCCCGAAGAGGCTGAAGCCGACACCGCCGCCGTCGAGTTGCACTTCCACGCCATCGCCGGGCTCAACCCCGGCGCCAGCGGCCAGCCGGCGCCGGTACGGGTGCGCATTTTCGAGTTGAAGAACGCCGCCACCTTCGCCCGCGCCGACTACTTCGCCCTGGCCGAACGGGCGCAGGCGACATTGGGGGCTGACCTGATCGACCAGGACGAAGTGCTGATCCAGCCGGACCAGCAACTGAGCCTGCAACGCGATCTCGACCCGGCCACCCGGCATATCGGAATCCTGGTGGGCTATCGCGAGCTGGACCAGTCGCTGTGGCGCACGGTGATGAATGTCCCGGCGCGCCAATACACCGAATACCAGATCAGCCTCGATGTGCGTGCCGTGCGCAGCGCCGTCGTCGTCCCCCCATCCAGCCCTGCCCAATAAMIPRFLLAVATALLLTACAKDAAAPQPEEAEADTAAVELHFHAIAGLNPGASGQPAPVRVRIFELKNAATFARADYFALAERAQATLGADLIDQDEVLIQPDQQLSLQRDLDPATRHIGILVGYRELDQSLWRTVMNVPARQYTEYQISLDVRAVRSAVVVPPSSPAQPGPT0030425_794DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0030425-vasD|lip-K11906NANA
D1-35_029371335hypothetical proteinATGTCCTGGAACAATCGCGTGGTCTGGTCGGAAGGCATGTTCATTGGAACGCAGCACTTCCAGCAGCATGACCGTTACCTGGAAAACCTCATCGATTCCCGCAGCCGTCCACTGTCGGCAGGCGCCTGGGGTTTTTCCGAATTGCTGACCGATCAGGGCCTGCTGGCCCAGGGCAAGCTGGCGATCATCTCGGCCAAGGGCCTGCTGCCCGACGGCACGCCGTTCAATATTCCCCAGGACGACGTTGCGCCGACGCCGCTGAACATTGACGACAACCTGCGTGACGGCCTGGTGTACCTGGCCCTGCCGCTCAAGCGCGCCGGCGCCCGCGACACCGTGGACGAAGGTGAGCCCTTGGGCGCTGCGCGCTACGTGAGCCAGGTCTGCGAAGTGCGTGATGACAATGCGCCGTTCGAAAACCGCGCACCGGTGGCCGTGGGTTCCCGGGCGCTGCGTTTGCTGACCGCCCAGGATGGCATCGGCGATTACGCCGCGATTGGCGTGGTGCGCATCAAGGAAAAACGCGCCGATCGCGCCCTGGTGCTGGATGAAAATTACATCCCGCCGCTGCTGGACGTAGCGGCTTCGAAGTCACTGGCAGCGTTCCGCAGTGAGCTGCTGGGCCTGCTGCACCAGCGCGGCGAAGCCCTGGCCGGGCGGGTCGTGGCCTCCGGCGCGGGTGGGGCCTCGGAGATTGCCGATTTCATGCTGCTGCAACTGGTCAACCGCGCGCAGCCGTTGATCCAGCACCTGAGTCAGCTGAGTCCGCTGCATCCCGAGCGTTTCTACAGCGAGCTGGTGAGCCTGGCCGGGGAGTTCTCGACCTTTACCGCATCCGGCCGCCGCCCGCAGGAATATCCGCAGTACCAGCACGATGACCTGGTGCTGAGTTTCACGCCGGTGATGCAAGCCTTGCGCGAGGCCCTGTCGATGCTCATCGACAGCAAGGCCACGCCGATTCCGATTGTCGAGAAAGCCTACGGCATCCATGTGGCGATGCTGGCCGACAAGACCCTGCTCGACAGCGCCAGTTTCATTCTCGTGGTGCGCGCCGACGTTCCCGCCGAAACCCTGCGCGGCCGCTTCGGCCAGCAGAGCAAAGTCGGCTCGGTGGAGCACATTCGCGACCTGGTCAACCTGCAACTGCCGGGCATTGGCCTGCTGCCGTTGCCGGTGGCGCCACGCCAACTTCCGTACCACGCCGGATCCACCTATTACGAGCTGGACCGGGGCAGCGATCACTGGCAACAGTTGAGCAACTCCGGCGGCTTTGCGTTCCACATCGCCGGCCAGTTCCCGGGGCTGAACCTGGCTTTCTGGGCGATCCGAGGATAAMSWNNRVVWSEGMFIGTQHFQQHDRYLENLIDSRSRPLSAGAWGFSELLTDQGLLAQGKLAIISAKGLLPDGTPFNIPQDDVAPTPLNIDDNLRDGLVYLALPLKRAGARDTVDEGEPLGAARYVSQVCEVRDDNAPFENRAPVAVGSRALRLLTAQDGIGDYAAIGVVRIKEKRADRALVLDENYIPPLLDVAASKSLAAFRSELLGLLHQRGEALAGRVVASGAGGASEIADFMLLQLVNRAQPLIQHLSQLSPLHPERFYSELVSLAGEFSTFTASGRRPQEYPQYQHDDLVLSFTPVMQALREALSMLIDSKATPIPIVEKAYGIHVAMLADKTLLDSASFILVVRADVPAETLRGRFGQQSKVGSVEHIRDLVNLQLPGIGLLPLPVAPRQLPYHAGSTYYELDRGSDHWQQLSNSGGFAFHIAGQFPGLNLAFWAIRGPGPT0025950_1237DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025950-impJ|vasE-K11893NANA
D1-35_029381311hypothetical proteinATGAGCAACGACGATCGTACCCAGTTCATGCCGACCCCCGGTGGCCGTGGCGCGGACCCTTTCCGCCCGGACCCGGGGCGTCCGCAACCGGCACCCGCGACGGCGCCGCTGTCGATGCCGGCCGCGCCGCTGTTGACCGGCAAAGCCCAGGGCCTCAACCCGCTGGAGAGCGCCGCCGGCCCGCTGCTGGCCCTGCTGACGCGCTTGCGCAGCACCATCGCCCACCCGGCTCCGGCCAGCTTGCGCGCCCAATTGCTGGCCTACCTGCGCCAGTTCGAAGAGCGCGCCGAAGCCGCCGGCGTGGTGCGCAACGACGTCTTGCTGGCCCGCTACGCCTTGTGCACCGCGCTGGATGAGGCGGTGCTGAGCACGCCTTGGGGCGGCACCAGCGACTGGGGCAAGCAGAGCCTGTTGATCACTGTGCACAACGAAGCCTGGGGCGGCGAGAAAGTCTTCCAGCTGCTGGAGCACTGCCTGCAAAGCCCGCGCGAGCGTCTGTACCTGCTGGAGCTTTTGTACCTGTGCATGTGCCTGGGTTTCGAAGGGCGCTACCGGGTCATGAACGACGGCCGCAGCCAACTGGAAGCGCTGCGCGAACGCACCGCAGCGGTCATCCGCAGCGCCCGTGGCGACTACGAACGCGAGCTGTCGCCGCACTGGCGTGGGGTCACCGTGGCCCGCGATCGCCTGGCGCAGTTCATGCCGCCATGGATCGCCGTGGCCATTGGCATTGCCCTGTTGCTGGCGTTGCTGTTCGGCCTGCGCATGAAGCTGGCCGCCGATGCCGAGCCAGTGTTCAAGAACATTCATTTCCTCGGCGAAATTCCGGTGCAGACCATCGACCGTCCGGTGGTCCAGCCGAAAGTGATCGAACGTCCGCGCCTGGCCGGGTTCCTCGCCGATGAAATCAGGGCCGGCCGGATTGCTGTGGAAGATGCCGTCGACCGCTCGGTAGTGACCATCCGTGGCGATGAACTGTTCGCCTCCGGCAGCGCCAGCATCAAGGATGATTTCCAGCCGCTGATGCTGCGCATCGCCGATGCCGTGCGCAAGGTCAAGGGCCAGGTGCTGGTGACCGGCCACAGCGACAATCGCCCGATCGCGACCTTGCGGTTTCCGTCCAACTGGGCCTTGTCCGAAGCCCGGGCCAGGTCGGTGCTGGACATTCTTTCGGCCAAGACCGGCCAGCCCGAGCGCTTCAGCGCCGAAGGCCGCAGCGACACCGAGCCGTTGGCGTCCAACGCCACGACCGAGGGGCGGGCGCGCAATCGTCGGGTTGAAATCACAGTATTGGCGGAGGGGGTCGAGTGAMSNDDRTQFMPTPGGRGADPFRPDPGRPQPAPATAPLSMPAAPLLTGKAQGLNPLESAAGPLLALLTRLRSTIAHPAPASLRAQLLAYLRQFEERAEAAGVVRNDVLLARYALCTALDEAVLSTPWGGTSDWGKQSLLITVHNEAWGGEKVFQLLEHCLQSPRERLYLLELLYLCMCLGFEGRYRVMNDGRSQLEALRERTAAVIRSARGDYERELSPHWRGVTVARDRLAQFMPPWIAVAIGIALLLALLFGLRMKLAADAEPVFKNIHFLGEIPVQTIDRPVVQPKVIERPRLAGFLADEIRAGRIAVEDAVDRSVVTIRGDELFASGSASIKDDFQPLMLRIADAVRKVKGQVLVTGHSDNRPIATLRFPSNWALSEARARSVLDILSAKTGQPERFSAEGRSDTEPLASNATTEGRARNRRVEITVLAEGVEPGPT0025955_339DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025955-impK|ompA|vasF|dotU-K11892NANA
D1-35_029393501hypothetical proteinGTGAAGGCGTTTTTCAGTTTCATGACCCGTTGGGTCATCCCGTTGCTGGGGCTGATCGCCCTGAGCCTGATCATCTGGTTCGTCGGCCCGCTGCTCGATTGGCTGGTGCCTGAAGGGCGCCGTTGGGCGCTGATCATCCTGGTGTTTGCGGTATGGATCGCCTATCGCCTGTTCCGCATCATCCAGGCCCGCCGGCAGGCCGCCGAGGTCATGCGCAGCCTGGCCGCGCAGACTCCGCCGGACCCGACCAGCATCGCCACCGCCGAAGAGCTCGAAACCTTGCGCCAGCGCATGGACGAGGCCCTGGCCCTGCTCAAGAAAGCCAAGCTGGGCGGTGACGAGCGCCGTAACCTCTACGAGTTGCCGTGGTACGTGATCATCGGCCCACCGGGCTCGGGCAAGACCACCGCACTGGTCAACTCAGGGCTGCATTTCCCGCTGGCGGCGCAATTGGGCGCCGGCGCGGTGCGCGGTGTCGGTGGCACGCGCAACTGCGACTGGTGGTTTACCGACGAGGCGGTGTTGCTCGACACCGCCGGTCGCTACACCACCCAGGACAGCGATGCGACCGTCGATAAGGCCGCGTGGCTGGGCTTCCTCGGCCTGCTGAAAAAACAGCGGGCGCGACGCCCGATCGATGGCGCGTTTATCGCCATCAGCCTTTCGGACCTGCTGTTGGGCAGCGACGCCGAACGTGCCGCCCACGCGGCGGCAATCCGCCTGCGGATCCAGGAGTTGTACACGCAGCTGGGCGTGCGTTTCCCGGTGTACCTGATGCTCACCAAGCTCGACCTGGTGCCGGGGTTCATGGAGTACTTCGACAACCTGAGCAAGGAAGAGCGCGCCCAGGTCTGGGGCATGACTTTCACCCTGGACGATGGCAAGAGCAACGACAGCCCGCTGGCGCACCTGCAGAGTGAATTCGCCCTGCTCGAGCAGCGCCTCAACGACCGCCTCGTCGAGCGCCTGCAACAGGAGCGCGACCCGGCGCGACGCGACCTGATCTACGGCTTCCCGCAGCAGTTCGGTGCACTGAAGGATTGCCTGCAAAGTTTCCTCGACGGCGTGTTCAAACCCAATGCGTTCGAAGAGCGTGTGTTGCTGCGTGGCGTGTATTTCACCAGCGGCACCCAGGAAGGCAGCCCGATCGATCGCCTGATCGGCTCCATGGCCCAAAGCATGAACCTGGACCGCCAGCACCTGGCGCGCCAGACCGGTACCGGGCGCAGTTACTTCATCGAAAAACTCTTCAGCGCCGTGGCCTTCGCCGAGCGCGGGCTGGTGGGGGTGGACCCGAAAGTCGAGCGCCGGCGCAAGTGGATCGCTCGTGGCGTGCTGGCGTCTACCGTGCTGGTGGTGCTGGTGGTCGGCACGTTGTGGTGGGTCAGCTACCGCGCCAACCAGGCCTACATCGCCCAGGTCGACCAGAAGGTCGCGCCGCTGGGCCAGACCGTGCAGAACCTCAGCCCGGCCCAGCGCGACGTACTCGCGGTATTGCCGCTGCTCAACGCCGTGAAGCATCTGGCCGACGATGCTCCGGACTGGGCCGAAGGCCTGGGCCTGTATCAGGGCGACATGCTCGAAGCCGAGTCCGGTAGCGTCTATCGCAAACTGCTGATCGCGGTGTTTGCGCCGCGCCTGCTGACGCGCATCGAAGAGCAACTGCACGGCGGCGGCAACTCGGACTTCCTTTACGAGGGGCTGAAGGCCTACCTGATGCTCGCCGACAACGAGCATTACGACGCCGATTTCATCAAGGCCTGGATTGCGCTCGATTGGGACCGCAGCCTGCCGCGCGACCTGCCGGCCGAACAGCGTCAGGCTTTGACCGGGCACTTGCAGGCGCTGCTCGAGCGGCGTCCGCCGACCGCGCGCCTGGACCCACGCCTGATCGAGGACCTGCGCCGCCAGCTGCAACAACTGCCGGTGGCCCAGCGCGTCTACGACCGCATCAAACGGCAGAAGCTGCCCGACGGCATCCCCGACTTCCGCATCAACGAAGCCGCCGGGCGTGACGCCGCGCTGGTGTTCAGCCGCAAGAGCGGCAAGCCGTTGGGCGAGCCGCTGAGCGGCTTCTTCACGGTCAAGGGTTACCGTCAGGGCTTCTTGCTCTCCAGCCTGAGCCAGACCGGCACCCTGGCTGAAGAGCAATGGGTGCTGGGCTTTGAGCAGGCCGATCAGCAGAACGTCGCCAGCCTCGCCGCCGATGTGCGGCGCCTGTACTTCCAGGATTACCAGCGCCAGTGGGACGCATTGCTGGCCGACATCGACTTCGTGCCGATCACCAGCGTGGCCCAGGCCGCCGATGTGCTGCGGGTGCTTTCCGGCCCGACTTCGCCGCTGAAAAAGCTGCTGGTGGCGGTGGCAAAGGAAACCGACCTGCAACAGGACGAACGCCTGCTCGCCGCCCAAGGCGTACCGGCGGGCGACGGCGTGGACAAGCTCAAGGAGCGCCTCGGCAGCCTGCTCGGCCAGGAGCAGGCAACGCCAAACGCGCCGCAAACCAGCGATGACCCGATCACCGCGCACTTCGCCGAGCTCAACAGCATCGTCAGCAAGAGCGAAGGCGAACCGGCGGCCATCGACGGCCTGCTGTCCGACATGAACGCCCTGTATGTGCAGGTCAGCGCCATGGTCGGCGCCAGTGGCGACGCCTTGCTCGGCGAAGCGAAGAACCAGGCGTCGGCCGCCGCCACCCGCGTCAGCCTCAACGCCGAACGCCAGCCGCCGCTGGTGCAGGGTCTGGTCAAGTCGGTGGTCAACTCCACCACCAACACCATGATGGGCGGCGTGCGCAATCAGTTGAATGCTGCCTGGACCAGCGAAGTGGTGAATATCTATCGCCAATCCCTGGCCGGGCGTTATCCGATGTCCCCGGGCAGCGCGCGGGACGCGACCCTCGATGACTTCGGCCAGTTCTTCGGCGTCGGCGGGGTGATGGACAACTACTTCCGCAAGTACCTGCAACCCTACGTCGATACCTCGGCCCCGACCTGGCGTTGGCAGCCGGGCGCAGCGCAGAAGCTCGGCATCGCTCCGGGTGTGCTGCAAACCTTCCAGCGCGCGGCGACCATTCGCGATGCGTTCTTCCGTTCCGGCGGCACGCAGCCGATGGTGCGCTTCGAACTCAAGCCGGTGGCGATGGATTCGACCATCACCCAATTCCTGCTCGACCTCGACGGCCAGCAGTTGAGCTACGACCACGGCCCGAGCCGGCCGACCGCCATGCAATGGCCGAACCCGGGCAGCATCGGTGTGGTGCGCATCTCGATCATGCCGCCGTCGTCCAGCGGTCGTTCCGGCATCACCTTGGATGGGCCATGGGCCTGGTTCCGCTTGCTGGAGCAGTCGGACCTGACCGCCGGCAACTCGCCGGATCGCTTCAACCTGCGGCTGCGGGTCGATGGCGCCAGCGCCTCCTACGAGTTGCGGGCCAACAGCGCCTTCAACCCGTTCAAGAGCCGGGTACTCAGTGGCTTCAGCCTGCCGGAGCGGTTATGAMKAFFSFMTRWVIPLLGLIALSLIIWFVGPLLDWLVPEGRRWALIILVFAVWIAYRLFRIIQARRQAAEVMRSLAAQTPPDPTSIATAEELETLRQRMDEALALLKKAKLGGDERRNLYELPWYVIIGPPGSGKTTALVNSGLHFPLAAQLGAGAVRGVGGTRNCDWWFTDEAVLLDTAGRYTTQDSDATVDKAAWLGFLGLLKKQRARRPIDGAFIAISLSDLLLGSDAERAAHAAAIRLRIQELYTQLGVRFPVYLMLTKLDLVPGFMEYFDNLSKEERAQVWGMTFTLDDGKSNDSPLAHLQSEFALLEQRLNDRLVERLQQERDPARRDLIYGFPQQFGALKDCLQSFLDGVFKPNAFEERVLLRGVYFTSGTQEGSPIDRLIGSMAQSMNLDRQHLARQTGTGRSYFIEKLFSAVAFAERGLVGVDPKVERRRKWIARGVLASTVLVVLVVGTLWWVSYRANQAYIAQVDQKVAPLGQTVQNLSPAQRDVLAVLPLLNAVKHLADDAPDWAEGLGLYQGDMLEAESGSVYRKLLIAVFAPRLLTRIEEQLHGGGNSDFLYEGLKAYLMLADNEHYDADFIKAWIALDWDRSLPRDLPAEQRQALTGHLQALLERRPPTARLDPRLIEDLRRQLQQLPVAQRVYDRIKRQKLPDGIPDFRINEAAGRDAALVFSRKSGKPLGEPLSGFFTVKGYRQGFLLSSLSQTGTLAEEQWVLGFEQADQQNVASLAADVRRLYFQDYQRQWDALLADIDFVPITSVAQAADVLRVLSGPTSPLKKLLVAVAKETDLQQDERLLAAQGVPAGDGVDKLKERLGSLLGQEQATPNAPQTSDDPITAHFAELNSIVSKSEGEPAAIDGLLSDMNALYVQVSAMVGASGDALLGEAKNQASAAATRVSLNAERQPPLVQGLVKSVVNSTTNTMMGGVRNQLNAAWTSEVVNIYRQSLAGRYPMSPGSARDATLDDFGQFFGVGGVMDNYFRKYLQPYVDTSAPTWRWQPGAAQKLGIAPGVLQTFQRAATIRDAFFRSGGTQPMVRFELKPVAMDSTITQFLLDLDGQQLSYDHGPSRPTAMQWPNPGSIGVVRISIMPPSSSGRSGITLDGPWAWFRLLEQSDLTAGNSPDRFNLRLRVDGASASYELRANSAFNPFKSRVLSGFSLPERLPGPT0025960_1205DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025960-impL|vasK|icmF-K11891NANA
D1-35_02940654hypothetical proteinATGAGTACAGCGGGGTTCTATGGAAAGTTGGCCAGCCGTGGGGACTTCGTCAGCCGTGGCTTGCCGCAGAGTTTTATCGGCCCGTGGGACTCGTGGCTGGCGGCGGGTTTGCTCGCCAGCCAGGCCAGCCTCGGCGAGCGTTGGCTGGATGCCTATCTGGTCAGCCCGCTGTGGCGCTTCATGGTCGCGCCCGGCGTGTGCGGGCCGGACGCTGCGGTTGGCGTGGTGATGCCAAGCATTGACCGGGTCGGGCGGTATTTCCCGCTGACCGTTGCAGCGTTGCTCGACCCGGATGCCGACCCTGCCTCGGTGGTCGGCGGCGCGGACGACTGGTTCGAGCGGGTCGAGAACCTGCTGTTGAGCACACTGAACGTGGAGGCCAGTTTCGAAGCTTTCAACGCGGAGCTGGAAACCCTGGCTGGCCCGATGTACCTGCCGCGCACCCCGAGCAGTCGCTTCGCCAGCCTGCATCGCTTCGATGCCACCGATTCGCAGCGGCGAATGAGCGCCCTCGCCGAGTCGGCTTGCGAAGGCGTCAGCCTGTGGTGGGGCCAGGGTTCGGAGCGCATCGCGCCCGGTTTGATGCGGTGCCAGGGACTGCCGGCCGCCGCTGATTTTGCGCAATTTTTGCTCGGCCAAGAAGGTGTTGTGTAGMSTAGFYGKLASRGDFVSRGLPQSFIGPWDSWLAAGLLASQASLGERWLDAYLVSPLWRFMVAPGVCGPDAAVGVVMPSIDRVGRYFPLTVAALLDPDADPASVVGGADDWFERVENLLLSTLNVEASFEAFNAELETLAGPMYLPRTPSSRFASLHRFDATDSQRRMSALAESACEGVSLWWGQGSERIAPGLMRCQGLPAAADFAQFLLGQEGVVPGPT0025965_585DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025965-impM-K11890NANA
D1-35_02941732prpC_2COG0631Protein phosphatase PrpCATGCGTCCAAGTGCTGGAAAAGCCTTCAAGTCTGCAAGCAAAAGCCATGTCGGCATGGTCCGCCAGGTCAACGAGGACGCCTGCCTGGACCTGCCGGAAAACGGTTTGTGGGTAGTCGCCGACGGCATGGGCGGGCACGCGGCGGGCGACTACGTCAGCAGCCTGATTGTCGACAGCCTGCGTAGCATTGCGGTGGGCCGCTCGCTGGACGAATACATCGCGGCGCTGCAAAGCGACCTGCTGCGGGTCAACGCCGCCGTGCGCGAAGAAACCGCCAACCGTGGCGTGACCATGATGGGCAGCACCGTGGTGGTGCTGGCCACGCGCGACCTGCGCGGCATGTGCCTGTGGGCCGGTGACAGCCGCTTGTACCGCTTGCGCGACGGCGTGCTGGAAGGCATCTCGCGCGACCACAGCTATGTCCAGGATCTGCAGGACAGCGGCTTGCTCAGCGAGGCCGAAGCCCGCGTGCATCCGCGGGCCAACATCGTCACCCGCGCCATCGGCGTCGAGGCGCAATTGAACCTGGCGATGACCGAGCTGCTGCTGGTGCCCGGCGACAGCTACCTGCTGTGCAGCGACGGCCTGACCAAGACCGTCGAGGACGAAGAAATCCGAGAAGTATTGAGCCACGACGAGCCCGGCGAAATCGCCAGCAGCCTGGTGTCCCTGGGTCTGATGCGCGGCGCGCCGGACAACATCACCGTGGTCGTTGTGAAGGTGCCGTCATGAMRPSAGKAFKSASKSHVGMVRQVNEDACLDLPENGLWVVADGMGGHAAGDYVSSLIVDSLRSIAVGRSLDEYIAALQSDLLRVNAAVREETANRGVTMMGSTVVVLATRDLRGMCLWAGDSRLYRLRDGVLEGISRDHSYVQDLQDSGLLSEAEARVHPRANIVTRAIGVEAQLNLAMTELLLVPGDSYLLCSDGLTKTVEDEEIREVLSHDEPGEIASSLVSLGLMRGAPDNITVVVVKVPSPGPT0002605_43DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_REGULATION,PGPT0002605-stp1|pppA-K11915NANA
D1-35_029423087pknD_2Serine/threonine-protein kinase PknDATGAGCTTGCCCCTGAATATTGTCATCCCCGGCTACGACATCGATGGCGAGATCGGCGAAGGCGCGATGGCCAGCGTGTACCTGGCGACCCAGCGTTCGCTTGAGCGCAAGGTCGCGTTGAAAGTCATGGCCGCGGCGCTGGCGGCCGACCCGACTTTCTGCGAGCGTTTCTTGCGCGAGGGCAAGACCCTGGCGCGCCTGTCGCACCCGCACACCGTCACCATCCATGACATCGGCAATGTCGGTGAGCTGTACTACATGGCGATGGAATACCTGCCCAACGGCACGCTCAAGGAACGCATCGCCGCGGGCCTGACGCCGGAGCAGGGCCTGACCTACATCCGCCAGATCGCTTCGGCCCTGGGGTACGCCCACGGCCTGGGCCTGGTGCACCGTGACGTCAAGCCGGCCAACATCCTGTTTCGCGCCGATGGCACGGCGGTGCTGTCGGACTTCGGTATCGCCAAGTCCCTGGACGACCGCACCCAATTCACCCAAGCCGGTTTCGCGGTTGGCACACCGAGCTACATGAGCCCTGAGCAAGCCCGTGGGCAAGACATCGACGGCCGCGCCGACCTGTACGCCCTGGGCGTGGTGCTCTACGAGATCCTCGTCGGCAAGCTGCCGTATATCGGCAACGACGCGCTGTCCACGGCCCTGGCCCACCTGACCGAACCGCTGCCGGAGTTGCCGGTGCACCACGGTCGTTACCAGGAAGTGCTGCGCAAACTGCTGGCAAAGGATCCGGCGGAGCGTTTCCCGGATGCGACTGCGTTGCTGCGCGCGTTGGATAACTTGCCAGAGGAATCGTCGGAAGCGACGCTGATCCGGCCGTTGTCGTTTGAACTGCCTGCCGCGCCGCCTCCGGTGGATGACTTGGCCGGCCTGACGCCCGTGTCCATCGACATTCCCAGTGGCCCGGCTTACGCACAACCGCAGCCCAGGCCGATCCCGCCGCCGGTAAAACCGACGCCTCAGTCGACGGTGTCGGAGCAGCGCAAGCGGCCGGTGTTCGCCCTGGCCGCCGTTGCGGTCGCCGTGGCGCTGGCCTTGGGCGGCGCAGGTTATTGGTGGTTGGCCGGTGACAATGGCAAAAAAGTGAAGACGCCAGTGACTACGACCACCTCGGTCAAGCCACCGGAAGTGAAGCCACCGAAGGCCCCGGAAGTGCCAGCGGTCAAGCCCCCCATCGCCCCTCCGACTCAGCCCCCCGTGGCGACCGAGGCCGATGGCGGCCAGCGACCATTGCTGATGGCCGGCAAGAAAACCCTATTTCAGCGTGTGCTCAGCAAGCCGGGGGCGAAACTCGCCGACGCGCCGGGCGCCGCACCGGGCAAGTCGCTGCCGGCGTTCTCGGTGTTGTATGTGTATCAGCGCAAAGACGTGGAGGGCAGCGCCTGGGTGCGGGTCGGCGCGGCCACCGACGGGCGCAGCGACGGCTGGTTGCCCGCCGCCCAGGTCAGCGACTGGAAACAGAGCCTGGTGCTCAAGTTCACCGAACGCTCCGGCCGTGCGCCGGTAATGTTCCTGCGCCAGCCCGGCGAAGTGGAAAAGCTCCTGGCGAACCCTTCGGCCGCGAAAAATGCGTTGCTCAAGGCCCAGCAAAGCCCTCAGGACAACCAGCAAGTGCTGGCCCTGGAACCGGCCGCCAGCGCCGTACCGCAAAACCAGTTCTACCTGTTGCCGATCTTCGATTCGCGTGAAAGCTTCGACGACAACGGCCAGCCGGTGCAGTTGCTGAACGTTGCCTCCATTGACCCCGGCAACGCGCAAAAGGTCGCGACCAACACGCCGATCACCTCCGCCAATGCCGACGCGTTCCGTACCGCCGTGGTGCTGGTGGTGGACACCACCGTGTCCATGCAGCCCTATATCGATCAGGTCCGCGACGTGGTGCATCAGTTGCAGACCCGCATCGGCGAACGTGGCGAGTTGGACAGCGTCAGCTTCGGCATGGTCGGTTTCCGCAGCAGCATCAAGAAGACCCCGGGCCTGGAGTACACCGCCAAGACTCTGATCACGCTGGAGCAGGGCCGCGACCCGCAACGCTTCCTGGAGATGGCGCGGCAGGTCAAGGCGTCTACCGTGTCGAGCCATTCGTTCAACGAGGATGCGTTTGCCGGGGTCATGGAAGCCGTGGAAGGCGTGGACTGGTCCGGTTACGGCGGGCGCCTGATCCTGCTGGTGACCGATGCCGGTGCCCTGCGCAAGAACGACCCGTTTGCCGCGACGCAGATGAACGAGGCCGAAGTGCGCCAGGCCGCGTTGGGCAAGCAGATCAAGATCTACGCCTTGCACCTGCTCAGCGACGCCGGCAAGAAAACCCACGCCGGCGCCCAGACCCAGTACCGCACCCTGACGGCCGACGCCAATCCACAGATCGGCGACCTGTACATCCCGGTGCCGGGCGCCGACGTGCGCAAGTTCGGCGAGCGGGTCGACGAGATCGGTTCGGTGTTCGCCGATCTCGTGCACCAGGTGCGCAGCAACAAGCCGCAAAGCGTGCCGCTGCTCAGCGCCGCGCCAAGCCTGGCGGACAAATCGGCGGCGGTCGGTTACGCCATGCACATGGATTTCCTCGGCCGCAAAACCGCTAGCCAGGCGCCGCAACTGGTCAGCGCCTGGACCGCCGACCGCGACCTGACCAACCCGGCGCTGCCGGCGTTCCAGGTCTGCGTGATGCTGACCAAGCTGCAGCTCAACGACCTGCAGCAATCGCTGAAGCTGATCGTCGATGCGGCTCGCAAGACCCAAAGTTCGCCCAAGGATTTCTTCCAGGAAATCGCCAGTGCCAGCGCCTACATGAGCCGCGACCCGTCGGCCCTGCGCAAGGGCGGCAATCTCGCCACCGGCGGCATCCTCGGCGAGTACCTGGAAGGGCTGCCGTACCGCAGCAAATCGTTGAACATGACCCAGGACCTGTGGCTGTCCTTGAGCGTGGCCGAGCAGGAAGATTTCATCGACGAGCTGGAGTCGAAGATCCGTCTCTACGAAACCTTCCACAACGATCTCGCCAACTGGGTGCGTTTCGGCGATGCCGAGCCGGGCGATGCCTTGTACCGCGTTCCGTTGTCGACGCTGCCGTGAMSLPLNIVIPGYDIDGEIGEGAMASVYLATQRSLERKVALKVMAAALAADPTFCERFLREGKTLARLSHPHTVTIHDIGNVGELYYMAMEYLPNGTLKERIAAGLTPEQGLTYIRQIASALGYAHGLGLVHRDVKPANILFRADGTAVLSDFGIAKSLDDRTQFTQAGFAVGTPSYMSPEQARGQDIDGRADLYALGVVLYEILVGKLPYIGNDALSTALAHLTEPLPELPVHHGRYQEVLRKLLAKDPAERFPDATALLRALDNLPEESSEATLIRPLSFELPAAPPPVDDLAGLTPVSIDIPSGPAYAQPQPRPIPPPVKPTPQSTVSEQRKRPVFALAAVAVAVALALGGAGYWWLAGDNGKKVKTPVTTTTSVKPPEVKPPKAPEVPAVKPPIAPPTQPPVATEADGGQRPLLMAGKKTLFQRVLSKPGAKLADAPGAAPGKSLPAFSVLYVYQRKDVEGSAWVRVGAATDGRSDGWLPAAQVSDWKQSLVLKFTERSGRAPVMFLRQPGEVEKLLANPSAAKNALLKAQQSPQDNQQVLALEPAASAVPQNQFYLLPIFDSRESFDDNGQPVQLLNVASIDPGNAQKVATNTPITSANADAFRTAVVLVVDTTVSMQPYIDQVRDVVHQLQTRIGERGELDSVSFGMVGFRSSIKKTPGLEYTAKTLITLEQGRDPQRFLEMARQVKASTVSSHSFNEDAFAGVMEAVEGVDWSGYGGRLILLVTDAGALRKNDPFAATQMNEAEVRQAALGKQIKIYALHLLSDAGKKTHAGAQTQYRTLTADANPQIGDLYIPVPGADVRKFGERVDEIGSVFADLVHQVRSNKPQSVPLLSAAPSLADKSAAVGYAMHMDFLGRKTASQAPQLVSAWTADRDLTNPALPAFQVCVMLTKLQLNDLQQSLKLIVDAARKTQSSPKDFFQEIASASAYMSRDPSALRKGGNLATGGILGEYLEGLPYRSKSLNMTQDLWLSLSVAEQEDFIDELESKIRLYETFHNDLANWVRFGDAEPGDALYRVPLSTLPPGPT0025905_14DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_REGULATION,PGPT0025905-ppkA-K11912NANA
D1-35_02943717lolD_3COG1136Lipoprotein-releasing system ATP-binding protein LolDATGCTGAACCTGAACGCCGTGCACAAAAGCCGGGGCTCCGGCAGCCAGCGCTACAGCCTGGTGATTCCACGGCTGCAACTGCGTGGCGGTGAACAGCTGGCGGTGGTCGGCCCCAGCGGCTGCGGCAAGAGCACCCTGCTGGACTTGCTCGCTCTGGTGCTGGCGCCGGATCAGGCCGGGCAATTCGATTTCACGCCCGCCAATACACCGCTGGACATCGCCAAACTGTGGCGTGCGTCGCAACAGGACACCTTGGCCGAGCTGCGCAGCCGTCACCTGGGCTATGTTCTGCAAACCGGAGGCCTGCTGGGCTTCCTGGACGTGCGCGGCAACATCGCGTTGTCGCGCAAATTGCTGGGCTTGAAGGATGACGGCAGCGTGACGCGCCTGGCTGGACAACTGGACATCGCCGATCAACTGGACAAGAAACCGACGGACCTGTCCGTGGGTCAGCGCCAGCGGGTCAGTTGCGCCCGCGCTTTGGCCCATGGCCCGCGCCTGCTATTGGCCGATGAGCCGACCGCCGCGCTGGACCCGTTGAACGCCGAGCGCGTCATGCAGTTGCTGGTGACCCAGGCCCGGGAGCAGGGGGTGTGCTGCGTCGTTGCCACCCATGACGAGGCGCTGGCCCGCGCCAGCGGCTTGCAGGTGCGGCGCATCAGCTGCCGTCGCGACACGGACGGCGGCGTCACCGCCACCCTTGGGGAGGCTTGCTGAMLNLNAVHKSRGSGSQRYSLVIPRLQLRGGEQLAVVGPSGCGKSTLLDLLALVLAPDQAGQFDFTPANTPLDIAKLWRASQQDTLAELRSRHLGYVLQTGGLLGFLDVRGNIALSRKLLGLKDDGSVTRLAGQLDIADQLDKKPTDLSVGQRQRVSCARALAHGPRLLLADEPTAALDPLNAERVMQLLVTQAREQGVCCVVATHDEALARASGLQVRRISCRRDTDGGVTATLGEACPGPT0013345_7047DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003NANA
D1-35_029441197hypothetical proteinATGCGCGGCGCGCTGGTGGCTTCCCTGGCCTGGCAGGATTATCGCAACGACGCCTGGCTGTCGGCCTGTTCGGTGCTGGCGCTGGTCGCCGTGGTGGCGCCGTTGCTGGTGTTGTTCGGCCTGAAGTTCGGTCTGGTCAGCAGTCTGACCGAGCGCCTGGAACGTGACCCCGCGACCCGGGAAATCATCCCCCTCGGCGGTGGCCGTTTCAGCGCCGGATTCGTTGAACAACTGGGGCAGCGCAGCGACGTCGCCTTCGCCTTGCCGCGCACTCGGCAGATCGCAGCCACGGCGGACCTGAGCAATGAGGCTTCGGCGGTCACGGTCGAAATGATTCCCACGGCGCTGGGCGATCCGCTGTTCGACCAACTGCCGGTGCCGCAAGGCCTGGAGCAAGTGGTGCTCAGCCAGACCGCCGCGGAAAAACTCGGCGCCAGGTCTGGCGATTGGTTGCAGGCCAGTTTCGGCCGGCAGGTGGCTGGTCGCAGCGAGGCGCAGCGCACACGGGTGCAGGTGTTGCAGGTGCTGCCGTTGGAAGCCTTCGCCCGGGACGGTCTGTTCGCGCCACTGGCATTGCTCGAGGCGGCCGAGGATTACCGTGACGGCCGCGCCGTGCCCGCGTTCGGCTGGCCTGGCGATGCGCTGGGCGACGCTGGGCAGCGGGTTTATCCGGCGTTTCGTTTGTATGCCCGCAGCCTCGGCGATGTCGAGCCGCTGCGTCAGTACTTCGCCGGACAGAACCTGCTGGTGTCGACCCAGGCCCAGACCATCGCACAAGTGCAATCGTTGAGCCGCAACCTGTCGATCGTGTTCTGGATCATCGCCGGATTGGCGCTGGCCGGTGCATTCGCGGCGATTTTTGCCGGTGCCCTGGCGGCCGTCGAGCGCAAGCGCCGGGAGCTGTCGGTGTTGCGCCTGCTGGGTGTGTCCACGGCGGCGCTGTTGTTGTTCGTGGTCTTGCAGGCGCTCTACAGTGCCATGTTTGCGGCCCTGCTGAGTGTTGGCCTGTATGGCCTGGCGCAGTCGGGCCTGAATCATTTATTTGCGCAGATGCCCGGCGAATACGCCAGCCATCTGCTGGTGCGCCATTACACCTTGGCCCTGGTGGCCGTGCTCGGCGTCAGTGCCGTCGCGGCGGCCTGTGGCGGTTGGCGGGTGGCGCGCATCCAGGCGTGTGAAGGAATTCGCGATGTATAAMRGALVASLAWQDYRNDAWLSACSVLALVAVVAPLLVLFGLKFGLVSSLTERLERDPATREIIPLGGGRFSAGFVEQLGQRSDVAFALPRTRQIAATADLSNEASAVTVEMIPTALGDPLFDQLPVPQGLEQVVLSQTAAEKLGARSGDWLQASFGRQVAGRSEAQRTRVQVLQVLPLEAFARDGLFAPLALLEAAEDYRDGRAVPAFGWPGDALGDAGQRVYPAFRLYARSLGDVEPLRQYFAGQNLLVSTQAQTIAQVQSLSRNLSIVFWIIAGLALAGAFAAIFAGALAAVERKRRELSVLRLLGVSTAALLLFVVLQALYSAMFAALLSVGLYGLAQSGLNHLFAQMPGEYASHLLVRHYTLALVAVLGVSAVAAACGGWRVARIQACEGIRDVPGPT0013350_18897DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004NANA
D1-35_029451728hypothetical proteinATGTATAAATTATTGGGCGCCGCCGTGGCGCTGAGCCTGGCCGGTCTGGTCTGGGCTGATGAAGGCACGGATAAACTGGACAACCCCAAGCCATTGCCCGACGACGTCAGCCTGCCGCTGCCGTGCGAGGGGCAGATGGTGTTCCGCTACGTCTACATCCTCGCCCAGGGCACCCTGGACGACCGCGAGATCAGCCTCGGCTACCCGTTCAGCGAAGGCGAGGCGGGCTATCAACAGTCGTTCATTTCCGGCTACCGGCGCGACTTCATCAACGGCCAGTTCACCCTGAAGGATTTGCCCAAGGACTGGAACAAGACCATCACGCCGTTGATGCCCAAGACTGACGCCAAGACGCCGCTCAAGCCGATGCTGTACTTCATCGGCAAATACGAAGTGACCGCCCGCCAGTACGCCCAGGTCATGGCGCAGGCGCAATCGCTGGCCAGCGGCGAGCCGGCACCGGCCTGCGAGGCGCTGCTGGCCGAGTTGCCCCAGGGCATGGCCGGGCGCTTACCCAAGGTGAAGCTGTCGAAGTTCGAGGCCGAGCGCTTCTCGGCGGTGTACAGCGCCTGGCTGATGAAATACCACAAGGACCTGTTGCCGGTGAGCGGCCGCGGTACCTCCGCTGAAGACGGTGGGCTGGGCTTCGTGCGCCTGCCCACCGAGGTCGAATGGGAATTCGCCGCCCGTGGTGGACATGCCGTGAGCCGCCAGGACCTGGAAGGACGATTGTTTCCCCGACGCCTGGAAGGCAGCGAAAGCGACGGGCCGTTGGCCGATTGGGCGGTGTTCAACCAGGTCGCCGGCGGCACCGGCCAGGCGGCGCGACTGATGCCCATCGGCACCAAGCTGGCGAACCCGATCGGGTTGTTCGACGTGATGGGCAACGCCGCCGAGATGGTCCAGGAATCCTTCCAGCTTGTGCATGCCGGCCGCCGTCAGGGCGCCTATGGCGGTTTTGTGGTCAAGGGTGGCAACTACCTGGAAGGCGAGGGCACGTTGTTTACCGGCATGCGCCGCGAATACCCGTTGTTCGCCGCCGACGGCACCGAACAGAGCAACGAAACCACCGGCTTTCGCGTGGCGGTCGGGGCGCTGTCGGCGCCGCGCTCGCGCTACAAGGAATTGTTCGCCCAATGGCAGAAGGAAGGCCGGCTCGCGTCCCTCACCGATGCCATCGACGATGCCGAAGACCCGACCAAGCGCCTGGACAGCATTATCGCCGCCAGCGCCGACCCGCGACTGCAAGCCGAGCTGGGACTGGTCAATGAAGAGCTCAAGCGCAACGTCTCGCTCATCGCCCAGCAGCGCGAGGAAGCGGCGGGCAACCTGATCCAGTCTTCGGCCCTGGTGGCGGAGACCATCAACAACTACAACATTCGCCTGACCAACCTGCAAAACAGCCGGCAGGCGGCCCTGGACGCCAAGGACGAGGCCAGTGCCACGCTGTTCGCCACGGCCATCGACAACGGCCGCAGCGCGCTGGATGGCGCGGTGGCGATCTACATCGACAACCTGGCAACCGGCACGCGCTACACCGATGCCGTGATCCAGGCGCAGTTCCAGCGCATCAAGGAAGAGCTGGAGCGCAAACCGGTACTGGGCAAGAGCCTGGTGGCGCGTGCAACGTTATTCGTTCGTCATGTCGGGGATTATCGTCAGCAGAAACGAGCCGACCCGGCGGCGATATTGAAGGAATTGCTCGCATCGAGCGCTCAGCGGTCTTGAMYKLLGAAVALSLAGLVWADEGTDKLDNPKPLPDDVSLPLPCEGQMVFRYVYILAQGTLDDREISLGYPFSEGEAGYQQSFISGYRRDFINGQFTLKDLPKDWNKTITPLMPKTDAKTPLKPMLYFIGKYEVTARQYAQVMAQAQSLASGEPAPACEALLAELPQGMAGRLPKVKLSKFEAERFSAVYSAWLMKYHKDLLPVSGRGTSAEDGGLGFVRLPTEVEWEFAARGGHAVSRQDLEGRLFPRRLEGSESDGPLADWAVFNQVAGGTGQAARLMPIGTKLANPIGLFDVMGNAAEMVQESFQLVHAGRRQGAYGGFVVKGGNYLEGEGTLFTGMRREYPLFAADGTEQSNETTGFRVAVGALSAPRSRYKELFAQWQKEGRLASLTDAIDDAEDPTKRLDSIIAASADPRLQAELGLVNEELKRNVSLIAQQREEAAGNLIQSSALVAETINNYNIRLTNLQNSRQAALDAKDEASATLFATAIDNGRSALDGAVAIYIDNLATGTRYTDAVIQAQFQRIKEELERKPVLGKSLVARATLFVRHVGDYRQQKRADPAAILKELLASSAQRSNANANANANA
D1-35_02946942hypothetical proteinATGCTTTTCTCCCGTAAACCTTTTGCTTCGGTTTCCAAGCGTCATTTGCTGATGGTCGCTGTTGGCTTCAGCACCGTACTGACCGGCTGCGCCACGTCGCCGACGTCCAAGGTCGCTTCGAGCACCAAGGTCGAGTACTACCCGAACTGCTACGAGCCGGTGCAGCACCTGCGCTCTACTGAAGGCAACATGACCAAGTCCGTGGTCACCGGCGCAGCCGTCGGCGCCGTCGGCGGTGCCTTGCTGGGCGCGCTGACCGCTGACAAGGAAGACCGTGGCCGCAACGCCGCCATCGGTGCCGCGGGCGGCGCCCTGGCCGGTGGCGCAGCCGGTTACTACACCGAGCGCCAGAAGCAGATCGCCGATGACAACATGCGCATCGCCTCCTACGCCGCCGATGTCAGCAAAAGTGCTTCGGACATCGACCGCAGCACCGCGTACGCCAAGGCTTCGCAACAGTGCTACCAGAACGCGTTCAGCAAACTGGTCGCCGACCGCAAGGCCAAGACCGTCAACGACACCGAAGGCCGCAAGCGCCTGGCGGAAATCGTTGCCGGCCTGAAAGAGTCCAACGACCTGATCGTCACCGTGAACGGCAAAGCCGCCGAAGACCTGAACAACTACACCCAGGCCTATGAAAAAGACCTGCAGCAAGTGGGTGTGCAGCGTACTGACGTGGTGACCGTGGCCACTGCTGATACCACGCAAGTTGTGGCGGCACAGACCAGCACCAAGAATAAAAAGAAAGTGACGCCGGCGAAGAAGAAAGAGCTGCCAACCGTGCCGAAAGAAGCGGTCGCCACCGAGAAGACCCTGCAGACCGCCAAGGCCAAGCAGGATGAAGGCAAGCAGGTCGCCAGCGCCGGCACCACCCAGGTCAACAGCATGTGCAAAAACCCGGACCTGGGCGATTGGGCACCGGTGCCTTGCCCGAATGTCTGAMLFSRKPFASVSKRHLLMVAVGFSTVLTGCATSPTSKVASSTKVEYYPNCYEPVQHLRSTEGNMTKSVVTGAAVGAVGGALLGALTADKEDRGRNAAIGAAGGALAGGAAGYYTERQKQIADDNMRIASYAADVSKSASDIDRSTAYAKASQQCYQNAFSKLVADRKAKTVNDTEGRKRLAEIVAGLKESNDLIVTVNGKAAEDLNNYTQAYEKDLQQVGVQRTDVVTVATADTTQVVAAQTSTKNKKKVTPAKKKELPTVPKEAVATEKTLQTAKAKQDEGKQVASAGTTQVNSMCKNPDLGDWAPVPCPNVNANANANANA
D1-35_02947381hypothetical proteinATGAAATTTCGTTTGCTGCTGTGGATGCTCGGGTTGTTGATGGGCAAGGCCAGTCGTAACAATCCGGCGTTCCAGCAACAGTTGGCCGACCGGGAGTTGGTGTTCCAGTTGCAAACCCTGGACGGCAAGGTCGCCAGGCATTACACCGTGAAGAACCAGCGCATCACCAGCCACTCCGGTGCGTACCCGACACCGGCCTTCGCCATCGCCTTCAAGGATGCAGCCTATGGCTTCGCCACGATGCAGGCGAAGAACAAGCAGTTGGCATTCATGACCGGGATCCAGGACAAGTCGATCCAGATCAAAGGCAACCCGGCGCTGGTGATCTGGTTTCAGGGGCTGATGAAGTATTTGAAGCCGAGGAAACCGAAGAAGGTTTAGMKFRLLLWMLGLLMGKASRNNPAFQQQLADRELVFQLQTLDGKVARHYTVKNQRITSHSGAYPTPAFAIAFKDAAYGFATMQAKNKQLAFMTGIQDKSIQIKGNPALVIWFQGLMKYLKPRKPKKVNANANANANA
D1-35_029481398hypothetical proteinATGACCGAAGCTGCCCTCGTCCCCGAAACCCCGCACGCTCCGTCTGTTATTCGGCAGTTGCTCGAGAAATTGGGCATCGCCTTTGACGAAGTCATCGAGCGACCGGGCTTGAACCCCGCTCGTAAAGTGCAGGCCGTGCTGTTGCACGACGCTGTCGGCGCGCTCATGGTCCTGTTTCCGCAAAACCAGTTGCTGGACCTCAACCGGCTGGCCGAGCTCACCGGTCGTAAACTCACGGCTGTGCCGACCGAGCGCCTGGAACGCATGCTCGGCAAGCACAACCTGAGCCTGCTGCCCGGCCTGCCAGCGCTGACCAGCTCGCCGTGCCTGTATGAAGAAGGCCTGCTGCGCGAGCCGAAACTGTTGATCAATTCCGGCGAGCCGGGGCTGCTGCTGGAAGTCACCAGCGAAGCCTTCAAGACCATGCTCACCAAGGCCAGCGCCGCGACGTTCGGCGAGCCTTTGAGCAATATCACGCCAAACCTGGACCGCCCGGACGACGACCGCAAGGAAATCACCATGGCCGTGCAGGCCTTCACCGCGCGGCGTATCCAGCAACGCCTGGAAGAAACCATCGAGATTCCGCCGCTGGCCGAAACCGCGCAGAAGATCATCAAGTTGCGGGTCGATCCCGACGCGACCATCGATGACATCACCGGCGTGGTGGAAACCGACCCGGCCCTGGCCGCGCAAGTGGTGAGCTGGGCCGCGTCGCCGTACTACGCCTCGCCGGGCAAGATTCGTTCGGTGGAAGACGCGATTGTCCGGGTGCTGGGCTTCGACCTGGTGATCAACCTGGCGCTGGGCCTGGCCCTGGGCAAGACCCTGAGCCTGCCCAAGGACCACCCGCAACACACCACGCCTTATTGGCAGCAGTCGATCTACACCGCCGCCGTCATCGAAGGCCTGACCCGCGCCATGCCGCGCGCCCAGCGCCCCGAAGGCGGCCTGACCTACCTGTCGGGGCTGCTGCACAACTTCGGCTATCTGCTGCTTGCCCACGTGTTCCCGCCGCATTTCTCGCTGATCTGCCGGCATCTGGAGGTCAACCCGCACCTGTGCCACAGCTACGTGGAACAGCACTTGCTGGGCATCAGTCGCGAGCAGATTGGCGCCTGGCTGATGCGCTACTGGGACATGCCCGACGAACTGGCCACCGCCCTGCGCTTCCAGCACGACCCTCACTACGACGGTGAATACGCCGCCTACCCGAACCTGGTGTGCCTGGCCGTTCGCCTGCTGCGCTCGCGCAGCATCGGCTCGGGCCCGGACGAGGACATCCCGGACTCGCTGCTCGAACGCGTGGGGCTGACCCGGGAAAAGGCCAACGACGTGGTCAGCAAAGTGCTCGAAGCCGAAGTGTTGCTGCGGGAGCTGGCTTCGCAGTTCAGCCATTGAMTEAALVPETPHAPSVIRQLLEKLGIAFDEVIERPGLNPARKVQAVLLHDAVGALMVLFPQNQLLDLNRLAELTGRKLTAVPTERLERMLGKHNLSLLPGLPALTSSPCLYEEGLLREPKLLINSGEPGLLLEVTSEAFKTMLTKASAATFGEPLSNITPNLDRPDDDRKEITMAVQAFTARRIQQRLEETIEIPPLAETAQKIIKLRVDPDATIDDITGVVETDPALAAQVVSWAASPYYASPGKIRSVEDAIVRVLGFDLVINLALGLALGKTLSLPKDHPQHTTPYWQQSIYTAAVIEGLTRAMPRAQRPEGGLTYLSGLLHNFGYLLLAHVFPPHFSLICRHLEVNPHLCHSYVEQHLLGISREQIGAWLMRYWDMPDELATALRFQHDPHYDGEYAAYPNLVCLAVRLLRSRSIGSGPDEDIPDSLLERVGLTREKANDVVSKVLEAEVLLRELASQFSHNANANANANA
D1-35_029492076recGCOG1200ATP-dependent DNA helicase RecGATGACTGAGCTGTCGAAAGTGCCGGTCACGGCACTCAAGGGTGTCGGTGAAGCCATGGCCGAGAAACTCGCCAAGGTCGGCCTGGAAACCCTCCAGGACGTGCTGTTCCACCTGCCGCTGCGTTACCAGGATCGCACCCGCGTGGTGCCCATCGGCCATTTGCGACCCGGGCAGGATGCGGTGGTCGAAGGCACCGTCAGCGGCGCCGACGTGGTCATGGGCCGGCGGCGCAGCCTGGTGGTGCGCCTGCAGGACGGCACCGGTGGGCTCAGCCTGCGCTTCTACCATTTCAGCAACGCGCAAAAGGAAGGCCTCAAGCGGGGCACCCGCGTGCGCTGCTACGGCGAGGCGCGGCCCGGCGCGTCCGGGCTGGAAATCTACCACCCGGAATACCGCGCCATCACCGGCGATGAACCGCCGCCAGTGGCTGAAACCCTGACGCCGGTCTACCCCCTCACCGAAGGCCTGACCCAGCAGCGCTTGCGCCAGCTCTGCCAGCAGACCCTGACGATGCTCGGCCCCACCAGCCTGCCGGACTGGCTGCCCAAGGAACTGGCGCGGGACTATCAATTGGCGCCGTTGGCCGACGCGATTCGTTATCTGCACCACCCGCCCGCCGATGCCGACGTCGAAGAGCTCGCCCTTGGACATCACTGGGCCCAGCATCGCCTGGCGTTCGAAGAGCTCCTGACCCATCAACTGTCCCAGCAACGCCTGCGCGAAAGCCTGCGCTCGCTGCGCGCCCCGGCCATGCCCAAGGCGACAAAACTGCCAGCCCGCTACCTGGCCAATCTCGGTTTCACCCCCACCGGCGCCCAGCAACGGGTCGGCAATGAAATTGCCTACGACCTGAGCCAGCCCGAGCCGATGCTGCGGTTGATCCAGGGCGACGTCGGCGCCGGCAAGACCGTGGTCGCCGCTCTCGCCGCGCTGCAAGCGCTGGAGGCGGGTTATCAGGTGGCGTTGATGGCGCCGACCGAGATTCTCGCCGAACAGCACTTCATCACTTTCCAGCGCTGGCTCGAACCGCTGGGCATCGAAGTCGCCTGGCTGGCCGGCAAGCTCAAGGGCAAGAACCGCGTCGCCGCCCTGGCGCAGATCGCCGAGGGCGCGCCGATGGTGGTCGGCACGCACGCGCTGTTCCAGAACGAAGTGCAGTTCAAGAACCTGGCCTTGGTCATCATCGACGAACAACACCGCTTCGGCGTCCAGCAGCGCCTGGCCCTGCGGCAGAAAGGTGTCGGTGGCCGAATGTGCCCGCACCAGTTGATCATGACCGCCACACCAATTCCGCGGACCCTGGCGATGAGCGCCTACGCCGACCTCGACACCTCGATCCTCGACGAACTGCCGCCCGGCCGCACGCCGGTCAACACCGTGCTGGTCACCGACACCCGGCGGGTCGAAGTGATCGAGCGCGTGCGCAGCGCCTGCGCCGAAGGCCGGCAAGCCTATTGGGTGTGCACCTTGATCGAGGAATCGGAAGAGCTGACCTGCCAGGCGGCTGAAACCACCTTCGAGGACCTCACCGCCGCCCTTGGCGAACTGAAGGTCGGGCTGATCCACGGTCGCATGAAGCCTGCCGAGAAAGCCGCGGTCATGGCCGAATTCAAGGCCGGCGCCTTGCAATTGCTGGTTGCCACCACGGTGATCGAGGTCGGCGTCGACGTGCCCAACGCCAGCCTGATGATCATCGAGAACCCCGAGCGCCTGGGCCTGGCGCAGTTGCACCAGTTGCGTGGCCGGGTCGGCCGGGGCAGCGCGGCCAGCCATTGCGTGTTGCTGTACCACCCGCCGCTGTCACAGATCGGCCGCCAGCGGCTGGGCATCATGCGTGAAACCAATGACGGTTTCGTCATCGCCGAAAAAGACCTCGAACTGCGCGGCCCGGGTGAAATGCTCGGCACGCGCCAGACCGGTCTGCTTCAATTCAAGGTAGCCGACCTGATGCGCGACGCCGACCTGCTCCCTGCGGTCCGCGACGCCGCCCAGGCGTTGCTGGAGCGCTGGCCGGACCACGTCAGCCCGCTGTTGGATCGCTGGTTGCGCCACGGGCAGCAATACGGCCAAGTGTGAMTELSKVPVTALKGVGEAMAEKLAKVGLETLQDVLFHLPLRYQDRTRVVPIGHLRPGQDAVVEGTVSGADVVMGRRRSLVVRLQDGTGGLSLRFYHFSNAQKEGLKRGTRVRCYGEARPGASGLEIYHPEYRAITGDEPPPVAETLTPVYPLTEGLTQQRLRQLCQQTLTMLGPTSLPDWLPKELARDYQLAPLADAIRYLHHPPADADVEELALGHHWAQHRLAFEELLTHQLSQQRLRESLRSLRAPAMPKATKLPARYLANLGFTPTGAQQRVGNEIAYDLSQPEPMLRLIQGDVGAGKTVVAALAALQALEAGYQVALMAPTEILAEQHFITFQRWLEPLGIEVAWLAGKLKGKNRVAALAQIAEGAPMVVGTHALFQNEVQFKNLALVIIDEQHRFGVQQRLALRQKGVGGRMCPHQLIMTATPIPRTLAMSAYADLDTSILDELPPGRTPVNTVLVTDTRRVEVIERVRSACAEGRQAYWVCTLIEESEELTCQAAETTFEDLTAALGELKVGLIHGRMKPAEKAAVMAEFKAGALQLLVATTVIEVGVDVPNASLMIIENPERLGLAQLHQLRGRVGRGSAASHCVLLYHPPLSQIGRQRLGIMRETNDGFVIAEKDLELRGPGEMLGTRQTGLLQFKVADLMRDADLLPAVRDAAQALLERWPDHVSPLLDRWLRHGQQYGQVNANANANANA
D1-35_02950921oxyRHydrogen peroxide-inducible genes activatorATGACCCTCACAGAATTACGCTACATCGTGACCCTCGCCCAAGAGCAGCACTTCGGCCATGCGGCCGAGCGTTGCCATGTCAGCCAGCCGACGCTGTCGGTGGGCGTGAAAAAGCTTGAAGACGAACTCGGTGTGCTTATTTTCGAGCGCAGCAAAAGCGCGGTGCGCCTGACGCCGGTCGGTGAAGGCATCGTCGCCCAGGCGCAAAAAGTCCTGGAACAGGCCCAGGGCATCCGCGAGCTGGCCCAGGCCGGCAAGAACCAGCTGACCGCCCCGCTGAAAGTCGGCGCGATCTACACCGTCGGCCCGTACCTGTTCCCGCACCTGATCCCGCAACTGCACCGGGTCGCCCCGCAGATGCCGTTGTACATCGAAGAAAACTTCACCCATGTGCTGCGCGACAAGCTGCGCAACGGTGAGCTGGACGCGATCATCATCGCCCTGCCGTTCAACGAAGCCGATGTCCTGACCCTGCCGCTCTACGACGAGCCGTTCTACGTCCTGATGCCGGCCCAACACCCGTGGACCCAGAAGAAAACCATCGACGCCGCCCTGCTCAATGACAAGAGCCTGCTGTTGCTCGGCGAAGGCCACTGCTTCCGCGACCAGGTGCTCGAAGCCTGCCCGACCCTGACCAAGGGCAGCGAAGGCGCCAAGCACACCACGGTGGAATCCAGCTCCCTGGAAACCATTCGCCACATGGTCGCCTCCGGCCTGGGCATTTCGATCCTGCCGCTGTCGGCGGTGGACAGCCATCATTATTCACCCGGCGTGATCGAAGTCCGTCCATTGACCGCGCCGGTGCCGTTCCGCACCGTTGCCATCGCCTGGCGCGCCAGCTTCCCGCGACCCAAGGCCATCGAGATCCTCGCCGATTCGATCCGCCTGTGTTCCGTGGCCAAGCCGCCCGCCGCCAAGTAAMTLTELRYIVTLAQEQHFGHAAERCHVSQPTLSVGVKKLEDELGVLIFERSKSAVRLTPVGEGIVAQAQKVLEQAQGIRELAQAGKNQLTAPLKVGAIYTVGPYLFPHLIPQLHRVAPQMPLYIEENFTHVLRDKLRNGELDAIIIALPFNEADVLTLPLYDEPFYVLMPAQHPWTQKKTIDAALLNDKSLLLLGEGHCFRDQVLEACPTLTKGSEGAKHTTVESSSLETIRHMVASGLGISILPLSAVDSHHYSPGVIEVRPLTAPVPFRTVAIAWRASFPRPKAIEILADSIRLCSVAKPPAAKPGPT0012965_1704DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0012965-oxyR-K04761NANA
D1-35_02951756hypothetical proteinATGATCACGACGCGCCAAAAGCTGACGCGTTACAGCGGTAGCCTGGCCGTGGTGCTGGGCGTGCATGCGCTTGCCATCGCACTGGCGCTGAACTGGACGACGCGTGCCCCCATCGAATTGCCACCCCAGGCGATGATGGTCGAACTGGCGCCGGTTCCAGCACCGCCACCGCCTGCACCGCCAAAAGTGGTCACGCCGCCGCAACCGCCCGAGCCGGTCGAAGAGCTGCCGCTGCCCAAACTGGCCGAAGCGCCTAAGGCGGAAATCGCCGTGCCCAAACCGGTCAAGCCCAAGCCAAAACCACAGCCGCCCAAGCCAAAGCCGGTGGAGAAAAAGCCGGAGCCGCCAAAGGAAACGCCGTCGGAGCAAAAGCCCGCCGACACTCAGCCGACCCAGGCACCGACCGAGAAGTCCGCGCAACCGGCCCCTGGTCCGTCGCCCGCACAGATGGCCGCCAAGGCCAGTTGGCAAGGTACGTTGCTGGCGCACCTGGGCAAATACAAGAAGTACCCGGCCAGCGCCCAGGCACGTGGCAAGGAAGGCATGAACCGCTTGCGGTTCGTGGTGGATGCCGAAGGCAACGTGGTGTCGTTCGAACTGGTGGGCAAGTCAGGCAACGCCGATCTGGACCGGGCCACCCTGGAAATGATCCGCCGCGCCCAACCGCTGCCCAAGCCACCGGCCGACCTGCTGAGCAACGGCACGGTCGAACTGACGGCACCGTTCCTGTACTCCATCGACAAGCGCCGGCGCTGAMITTRQKLTRYSGSLAVVLGVHALAIALALNWTTRAPIELPPQAMMVELAPVPAPPPPAPPKVVTPPQPPEPVEELPLPKLAEAPKAEIAVPKPVKPKPKPQPPKPKPVEKKPEPPKETPSEQKPADTQPTQAPTEKSAQPAPGPSPAQMAAKASWQGTLLAHLGKYKKYPASAQARGKEGMNRLRFVVDAEGNVVSFELVGKSGNADLDRATLEMIRRAQPLPKPPADLLSNGTVELTAPFLYSIDKRRRPGPT0003745_3634DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003745-tonB-K03832NANA
D1-35_02952429exbD_2COG0848Biopolymer transport protein ExbDATGGGCCTGCATTTGAAAGAAGGCGCAGACGACGATCTGGCCGAGAACCACGAAATCAACGTCACGCCATTCATTGACGTGATGCTGGTGCTGTTGATCATCTTCATGGTGGCCGCCCCGCTCGCCACCGTGGACATCAAGGTTGACCTCCCCGCGTCGACGGCCAAGCCGTCGCCACGCCCGGAGAAACCGGTGTTCCTGAGCGTCAAGGCCGACCAGCGCCTGTTCCTCGGTGAAGAGGAAATCAAGGTCGACAGCCTCGGCGCGACCCTGGACGCCAGGACCCAGGGCAAGAAAGACACGACGATCTTCTTCCAGGCCGACAAAGGCGTGGACTACGGCGACCTGATGAGCGTGATGGACGCCCTTCGTGGCGCCGGCTACCTGAAGGTCGGTCTGGTCGGACTCGAGACGGCGCCGAAGAAATGAMGLHLKEGADDDLAENHEINVTPFIDVMLVLLIIFMVAAPLATVDIKVDLPASTAKPSPRPEKPVFLSVKADQRLFLGEEEIKVDSLGATLDARTQGKKDTTIFFQADKGVDYGDLMSVMDALRGAGYLKVGLVGLETAPKKPGPT0003755_1487DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003755-exbD-K03559NANA
D1-35_02953981tolQ_3Tol-Pal system protein TolQATGACACGCTCTCTCTCCTCCGCTTCGCCAACCAATCGACCTCGCGCCTGGAGCGCTGTGGCAGCGTTGCTGTTCAGCCTGCTGCTGGCGCCTGCCGCCGCATTCGCCGATGCCCAGACGCCGGCCAGCACGTCCACCACGGCACCCGCTGCCACCCAGGCGCCGGCCGACACGACAGCACCTGTAGCCGCTCCCGCAGCCAGCGACCCGGCCCAGGCCGTCGAAGCCAGCGCAGCCGACGCGCCTCAAGTGCTTGAAGCCGACAACACCCTGGGCATGGCCCACGACCTGTCGCCCTGGGGCATGTACAAGAACGCCGACGTGGTCGTCAAAGCCGTGATGATCGGCCTGGCCATCGCCTCGATCATCACCTGGACCATCTGGATCGCCAAAGGCTTCGAGCTGCTGGGTGCCAAGCGCCGCTTGCGTGGCGAGATCGCCGCCCTGAAAAAAGCCGCCACCCTCAAGGAAGCCAGCACCACCGCCGGCAAGGAAGGCACCCTCGCCAACCTGCTGGTGCACGATGCGCTCGAAGAGATGCGCCTGTCGGCTAACAGCCGCGAGAAGGAAGGCATCAAGGAACGCGTGAGCTTCCGTCTCGAGCGCCTGGTCGCGGCCTGCGGTCGCAACATGAGCAGCGGCACCGGCGTACTCGCCACCATCGGTTCCACCGCGCCCTTCGTCGGCCTGTTCGGCACCGTGTGGGGGATCATGAACAGCTTCATCGGCATCGCCAAGACCCAGACCACCAACCTCGCCGTCGTTGCTCCCGGCATCGCCGAAGCCTTGCTGGCGACGGCTTTGGGCCTGGTCGCAGCGATCCCCGCCGTGGTCATCTATAACGTCTTCGCCCGCTCCATCGCCGGCTACAAGGCCCAGGTCTCCGACGCTTCGGCCGAAGTCCTGCTGCTGGTCAGTCGCGACCTCGACCACCTGCCGCCCGAGCGCAGCTCGCAACCGCACATGGTGAAAGTGGGGTAAMTRSLSSASPTNRPRAWSAVAALLFSLLLAPAAAFADAQTPASTSTTAPAATQAPADTTAPVAAPAASDPAQAVEASAADAPQVLEADNTLGMAHDLSPWGMYKNADVVVKAVMIGLAIASIITWTIWIAKGFELLGAKRRLRGEIAALKKAATLKEASTTAGKEGTLANLLVHDALEEMRLSANSREKEGIKERVSFRLERLVAACGRNMSSGTGVLATIGSTAPFVGLFGTVWGIMNSFIGIAKTQTTNLAVVAPGIAEALLATALGLVAAIPAVVIYNVFARSIAGYKAQVSDASAEVLLLVSRDLDHLPPERSSQPHMVKVGPGPT0003750_1040DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003750-exbB-K03561NANA
D1-35_02954858hypothetical proteinATGTCCGCGCCTTCTGTTCTAATTGCCGGCTGTGGTGATATCGGCGGCCGTTTGGCCAGCCAACTGGTGACCGAACATTGGCGGGTGCACGGCTTGCGGCGCACGGTTTCGAACCTGCCGGCCGGGGTCATCGGTGTCGGGGGCGACTTGTTCAACGAGCGATGCCCCACCGATTGGCCCAGCGGGCCATTGGACTACCTGGTCTACAGTGCTGCCGCCACCGACCATGACGAAGCGGGCTACCGCATGGCATACGTCGAAGGGTTGCAACATGTGTTGGGCTGGTTGAAGCAACATGGCCAGCAACCCAAGCGCTTGCTTTTTGTGTCCAGCAGCAGCGTCTATGGACAACAGAACGGCGAGTGGGTTGATGAAAGCTCACCTACCGAGGCGGGTGGTTATTCCGGGCGGGTCATGCTCGAAGCCGAGCAAGTGGCGCTGGGCAGTGGCATCCCGGCCAGTCGTGTACGCCTGACCGGCATCTACGGGCCGGGCCGGGAGTGGCTGCTCAGCCAGGTGCGCCAGGGTTATCGAGTGGTGACCGATCCGCCGCTGTACGGCAATCGCATCCACGCGGACGATGCCGCCGGCCTGCTGGCGTTCCTGCTCAAGGCCGACAATCAAGGCCAGGCGTTGAAGGACTGCTACATCGGCGTTGACGACGCTCCCGCGCCGTTGGCGGAAGTGGTGGGCTGGTTGCGCGAGTACATGGGCATCACCGAGTGGGCCGAGGCCGCCAGCGTGCGCCGCGCCGGCAGCAAGCGCTGCAGCAATGCCCGGGCGAAGGCCCTGGGCTGGACACCGCGTTATCCGAGTTTTCGCGAGGGGTATGCGGCGATCCTGGAAGGGCGTTGCTGAMSAPSVLIAGCGDIGGRLASQLVTEHWRVHGLRRTVSNLPAGVIGVGGDLFNERCPTDWPSGPLDYLVYSAAATDHDEAGYRMAYVEGLQHVLGWLKQHGQQPKRLLFVSSSSVYGQQNGEWVDESSPTEAGGYSGRVMLEAEQVALGSGIPASRVRLTGIYGPGREWLLSQVRQGYRVVTDPPLYGNRIHADDAAGLLAFLLKADNQGQALKDCYIGVDDAPAPLAEVVGWLREYMGITEWAEAASVRRAGSKRCSNARAKALGWTPRYPSFREGYAAILEGRCNANANANANA
D1-35_02955741hypothetical proteinATGCGCAACGCGCTTGCTTTCTCGCTGCTCGCCCTGATTCTCGGCGGTTGCGCCAGCGACCCTGCCGACCGTGACATCAGCGGCACCTGGATCAACCAGGCCGCCATCGACGCTGCCGCCAAGGGCGGCCCGCTGCGCGAAGCGCTGCAAGGCTACGGCCCGAACCTGGAATGGGACGTCAACACCCGGGCCGGTCAGGCGCGCTACACCAACGGTTTTGAAAACGTCGAAGGCAAGCTGCTCGGCGAAGAAGACGGTGCCTGGAAAGTCGATTTTTATGGCAGCTCGGCCAGCGAACTGAAGCGCGACGGCGACCAACTGAGCCAGGCTTCCACCGAAAACGAACCGCAGCAGGTATTCGAGCGCGCCAAGGTGCAGGTCCCGGACGGCGCGCCCATCGGCGCCAGCTTCGAGCGGGCGCTGTATGGCGCCTACCTGGGCGGCACCTGGAACATCGCCGAAGGCCCCGGCCAAGGCGCCACGGTGCAATTCCAGCCCGATGGCCAGGTCAGCGGCCTGCCAGGGGCTGATCGCTACGCCTTGTGTCTCGCCGGCGACTGCGCCTCGATGAGCGGCGGCAACGACAACATCTGGCTGCAGCAGAACGGCCAGGGCAACACCTGGATTTTCGCGCGTAATGGCAAGAAGCTGGAGATCTTCCAGACCGTGAATGCGGCGCTGGCCGATGAGATGCCTTCGTTCACGCCAGGTGACCGGCGCTGGGTACTGGAGAAACAGTAAMRNALAFSLLALILGGCASDPADRDISGTWINQAAIDAAAKGGPLREALQGYGPNLEWDVNTRAGQARYTNGFENVEGKLLGEEDGAWKVDFYGSSASELKRDGDQLSQASTENEPQQVFERAKVQVPDGAPIGASFERALYGAYLGGTWNIAEGPGQGATVQFQPDGQVSGLPGADRYALCLAGDCASMSGGNDNIWLQQNGQGNTWIFARNGKKLEIFQTVNAALADEMPSFTPGDRRWVLEKQNANANANANA
D1-35_02956381yabJ_2COG02512-iminobutanoate/2-iminopropanoate deaminaseATGACCAAGACCGTTATTTCCAGCGACAAGGCCCCGGCCGCCATCGGTACTTATTCCCAGGCGATCAAGGCGGGCAACACGGTGTACATGTCGGGCCAGATCCCGCTGGACCCGAAAACCATGGAGCTGGTCGAGGGCTTCGAAGCCCAGACCGTGCAGGTCTTCGAGAACCTGAAGGCCGTGGCCGAAGCTGCCGGCGGTTCGTTCAAGGACATCGTCAAGCTCAACATCTTCCTCACCGACCTGAGCCACTTCGCCAAGGTCAACGAGATCATGGGCAAGTATTTCGACCAGCCTTACCCTGCCCGCGCCGCCATTGGCGTGGCCGCCCTGCCGAAGGGTGCCCAGGTCGAGATGGACGCCATCCTGGTCATCGAGTAAMTKTVISSDKAPAAIGTYSQAIKAGNTVYMSGQIPLDPKTMELVEGFEAQTVQVFENLKAVAEAAGGSFKDIVKLNIFLTDLSHFAKVNEIMGKYFDQPYPARAAIGVAALPKGAQVEMDAILVIEPGPT0020030_3176DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020030-ridA|tdcF-K09022NANA
D1-35_029572106spoTCOG0317Bifunctional (p)ppGpp synthase/hydrolase SpoTATGCCGAGCATAGACGCCCTCGCCGATCGCTTATCGGCCTACCTCGGCACGGACCAGGTCAACCTGGTCCGCCGAGCCTATTTCTACGCCGAACAAGCCCACGACGGCCAGCGCCGCCGCAGCGGCGAGGCGTACGTCACGCACCCGCTTGCGGTGGCGAATATTCTTGCCGACATGCACATGGACCATCAGAGCCTGATGGCGGCGATGCTGCATGACGTGATCGAAGACACCGGCATTGCCAAGGAAGCGCTGCAAGCGCAGTTCGGCGAAACCGTGGCCGAGCTGGTCGACGGGGTCAGCAAGCTGACCCAGATGAACTTCGAAACCAAGGCCGAGGCCCAGGCCGAGAACTTCCAGAAAATGGCCATGGCCATGGCGCGCGACATCCGGGTGATCCTGGTCAAGCTCGCCGACCGCTTGCACAACATGCGCACCCTGGAAGTGCTGTCCGGCGAAAAACGCCGGCGCATCGCCAAGGAAACCCTGGAAATCTATGCTCCCATCGCCAACCGACTGGGGATGCACGCGATCCGCATCGAGTTCGAGGACCTGGGTTTCAAGGCCATGCACCCGATGCGTTCGGCGCGGATCAACCAGGCCGTCAAGCGCGCCAGGGGCAATCGCAAGGAAATCGTCAACAAGATCGAAGAGTCGCTGAGCCACTGCCTGGCGATCGACGGCATCGAAGGCGAAGTCAGCGGGCGGCAGAAACACCTCTACGGCATCTACAAGAAAATGCGCGGCAAGCGCCGAGCCTTCAACGAGATCATGGACGTCTATGCGTTCCGGATCATCGTCGACAAGGTCGATACCTGCTACCGCGTGCTCGGTGCTGTGCATAATCTGTACAAACCATTGCCGGGGCGCTTCAAGGACTACATCGCGATCCCCAAGGCCAACGGCTACCAGTCGCTGCATACCACGCTGTTCGGCATGCATGGCGTACCGATCGAAATCCAGATCCGCACCCGTGAAATGGAAGAGATGGCCAACAACGGCATCGCCGCCCACTGGCTGTACAAATCCAGCGGCGATGAACAGCCCAAGAGCACTCACGCCCGCGCCCGTCAGTGGGTCAAGGGCGTGCTGGAAATGCAGCAGCGCGCCGGCAATTCCCTGGAATTCATCGAGAGCGTCAAGATCGACCTGTTCCCGGACGAGGTCTACGTCTTCACGCCGAAGGGCCGGATCATGGAGCTGCCCAAAGGCTCCACCGCGGTGGATTTCGCCTACGCCGTGCACACCGACGTCGGCAACAGCTGCATCGCCTGTCGCATCAATCGCCGCCTGGCCCCGTTGTCCGAACCGCTGCAAAGCGGCTCCACCGTGGAGATCGTCAGCGCCCCCGGCGCGCGGCCGAACCCGGCTTGGCTCAATTTCGTGGTCACCGGCAAGGCCCGCACGCACATCCGTCACGCGCTGAAGCTGCAACGTCGCTCCGAATCCATCAGCCTTGGCGAGCGCCTGCTGAACAAAGTGCTGAACGGTTTCGACAGCTCGCTGGACAAGATCCCGGCCGAGCGCGTGCAGGTCATGCTCAACGAGTACCGCCTCGAATTGATCGAAGACCTGCTCGAAGACATCGGCCTGGGCAATCGCATGGCCTATGTCGTCGCCCGCCGCCTGCTCGGCGAAGGCGAACAGTTGCCAAGCCCAGAGGGCCCGCTGGCGATTCGCGGTACCGAGGGCCTGGTGCTCAGCTACGCCAAGTGCTGCACGCCGATACCGGGCGACCCGATTGTCGGCCACCTGTCCGCCGGCAAGGGGATGGTGGTGCACCTGGACAACTGCCGCAACATCAGCGAAATCCGCCACAACCCGGAAAAATGCATCCAGCTTTCGTGGGCCAAGGATGTCACCGGCGAATTCAACGTCGAGCTGCGCGTCGAACTCGAACACCAGCGCGGCCTGATCGCCTTGCTGGCGAGCAGCGTCAACGCCGCCGACGGCAACATCGAGAAAATCAGCATGGACGAACGCGACGGCCGCATCAGCGTCGTCCAACTGGTGGTCAGCGTGCACGACCGTGTGCACCTGGCCCGCGTGATCAAGAAACTGCGCGCCCTGACCGGGGTCATTCGCATCACCCGCATGCGCGCATAGMPSIDALADRLSAYLGTDQVNLVRRAYFYAEQAHDGQRRRSGEAYVTHPLAVANILADMHMDHQSLMAAMLHDVIEDTGIAKEALQAQFGETVAELVDGVSKLTQMNFETKAEAQAENFQKMAMAMARDIRVILVKLADRLHNMRTLEVLSGEKRRRIAKETLEIYAPIANRLGMHAIRIEFEDLGFKAMHPMRSARINQAVKRARGNRKEIVNKIEESLSHCLAIDGIEGEVSGRQKHLYGIYKKMRGKRRAFNEIMDVYAFRIIVDKVDTCYRVLGAVHNLYKPLPGRFKDYIAIPKANGYQSLHTTLFGMHGVPIEIQIRTREMEEMANNGIAAHWLYKSSGDEQPKSTHARARQWVKGVLEMQQRAGNSLEFIESVKIDLFPDEVYVFTPKGRIMELPKGSTAVDFAYAVHTDVGNSCIACRINRRLAPLSEPLQSGSTVEIVSAPGARPNPAWLNFVVTGKARTHIRHALKLQRRSESISLGERLLNKVLNGFDSSLDKIPAERVQVMLNEYRLELIEDLLEDIGLGNRMAYVVARRLLGEGEQLPSPEGPLAIRGTEGLVLSYAKCCTPIPGDPIVGHLSAGKGMVVHLDNCRNISEIRHNPEKCIQLSWAKDVTGEFNVELRVELEHQRGLIALLASSVNAADGNIEKISMDERDGRISVVQLVVSVHDRVHLARVIKKLRALTGVIRITRMRAPGPT0014310_4366DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014310-spoT-K01139NANA
D1-35_02958264rpoZDNA-directed RNA polymerase subunit omegaATGGCCCGCGTAACCGTTGAAGACTGCCTAGAACACGTGGAAAACCGCTTTGAGCTGGTCATGCTCTCTACCAAGCGTGCCCGTCAACTGGCCACCGGTGGCAAAGAGCCGTTGGTCCAGTGGGAAAACGACAAGCCTACCGTGGTAGCGCTGCGTGAAATCGCCGAAGGCCTGATGAGCTACGAGTTCATCGCCAACGCTGAAATCGTTGAAGACGAACCGCTGTTCGCAGCGTTCGAGGACGAGTCCAACGAGGCGGTCTAAMARVTVEDCLEHVENRFELVMLSTKRARQLATGGKEPLVQWENDKPTVVALREIAEGLMSYEFIANAEIVEDEPLFAAFEDESNEAVNANANANANA
D1-35_02959621gmkCOG0194Guanylate kinaseATGACCCACAGCACTGGCACCCTCTACATCATTTCCGCGCCCTCCGGCGCCGGCAAGACCAGCCTGGTCAAGGCGTTGATCGACGCCGAGCCGCAAATTCGCGTCTCGGTCTCTCACACCACCCGCGCCATGCGTCCTGGTGAAGTGAACGGCGTGAACTATCACTTCGTCGACCGCGAAGAGTTCGTGCGGATGGCCGAGCACGGCGACTTCCTGGAGCGCGCCGAAGTCTTTGGCAATCTCTACGGCACCTCGCAAAGCGTCCTTCAGCAGACCTTGGACGAAGGCCACGACCTGATCTTGGAAATCGACTGGCAAGGCGCCGAGCAGGTGCGCAAATTGATGCCCCAGGCCCGCTCGATCTTCATCCTGCCGCCGAGCCAGCAGGCCTTGCGCCAGCGCCTGACCAACCGTGGCCAGGACAGCGACGAGATCATCGAAGGGCGGATGCGTGAAGCGGTCAGCGAAATGAGTCACTACGTTGACTACGATTACCTGATCATCAACGACGATTTCTCCCACGCGCTGGACGATCTGAAGGCAATTTTCCGCGCCAGCCAGCTCCAGCAGAAACGCCAGCAGCAACGTTTCGGTAAATTACTGGCCGAACTGCTGGGCTGAMTHSTGTLYIISAPSGAGKTSLVKALIDAEPQIRVSVSHTTRAMRPGEVNGVNYHFVDREEFVRMAEHGDFLERAEVFGNLYGTSQSVLQQTLDEGHDLILEIDWQGAEQVRKLMPQARSIFILPPSQQALRQRLTNRGQDSDEIIEGRMREAVSEMSHYVDYDYLIINDDFSHALDDLKAIFRASQLQQKRQQQRFGKLLAELLGPGPT0021475_2762DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021475-gmk-K00942NANA
D1-35_02960864hypothetical proteinATGGTGCACAGCATGACCGCCTTCGCCCGCGTCGAAAAGGCCGGCGCCCAAGGCACGCTGAGCTGGGAGCTGCGCTCGGTCAACAGCCGTTACCTGGAGCCGCACCTGCGCTTGCCCGAGTCCTTCCGCGACCTCGAAGGCGGCGTGCGTGAAGCGCTGCGCCAGGGCCTGTCCCGGGGCAAACTGGAATGCACCCTGCGGTTTACCGAAGAGAGCAGCGGCAAAACCTTGCAAGTGGACCGCGAGCGCGCCGCGCAATTGGTCGCCGCCGCCGAAACCGTCGCCAGCCTGATCAACAATCCCGCCGCCCTGAACCCGCTGGAAGTCCTGGCCTGGCCGGGCGTGCTGGTGGGTGACGCGAGCGACCCGCAGGCGCTGAACACCGAGGCCCTGGCATTGTTCAATCAAGGGCTGAACGAGCTCAAGGCCGGCCGCGAGCGCGAAGGCGCGGAACTGGCCCGACTGATCAACGAGCGCCTGACCTCCATCGAAGAGGACGTCGCCACCCTGCGCGAACTCGTTCCGCAGATGCTCGCCACGCAGCGCCAGAAAGTCCTCGACCGCTTCGCCGACATGAAGGCGGAGCTGGACCCGCAGCGCCTGGAACAGGAAATGGTCATGCTCGCCCAGAAGAGCGACGTGGCCGAAGAACTGGATCGCCTGAGCACCCACATCATTGAAGTCCGCCGGGTGCTCAAGTCCGGTGGCGCGGCCGGCCGCCGCCTCGACTTCCTGATGCAGGAGCTCAACCGCGAAGCCAATACACTGGGCTCCAAAGCCTTCGACCCGCGCAGCACCCAGGCGGCGGTCAACCTCAAGGTGTTGATCGAACAAATGCGCGAACAAGTGCAGAACATTGAGTAAMVHSMTAFARVEKAGAQGTLSWELRSVNSRYLEPHLRLPESFRDLEGGVREALRQGLSRGKLECTLRFTEESSGKTLQVDRERAAQLVAAAETVASLINNPAALNPLEVLAWPGVLVGDASDPQALNTEALALFNQGLNELKAGREREGAELARLINERLTSIEEDVATLRELVPQMLATQRQKVLDRFADMKAELDPQRLEQEMVMLAQKSDVAEELDRLSTHIIEVRRVLKSGGAAGRRLDFLMQELNREANTLGSKAFDPRSTQAAVNLKVLIEQMREQVQNIENANANANANA
D1-35_02961723rphCOG0689Ribonuclease PHATGAAACGTCCAAGTGGTCGCGCTGCCGATCAGCTTCGCTCGATCCGCATTACCCGCAACTACACCAAACACGCCGAGGGATCTGTACTGGTGGAGTTCGGTGATACCAAGGTCATCTGCACCGTCAGCGTCGAAAACGGCGTGCCTCGTTTCCTCAAGGGCCAGGGCCAGGGTTGGTTGACTGCCGAATACGGCATGCTGCCGCGGGCTACCGGCGAGCGGAACCAGCGCGAGGCCAGTCGTGGCAAGCAGGGCGGACGGACCCTGGAAATCCAGCGCCTGATCGGTCGTTCGCTGCGCGCCGCGCTGGACATGTCCAAGCTCGGCGATGTGACGCTGTATGTTGATTGCGACGTGATCCAGGCTGACGGCGGCACCCGCACCGCCTCCATCACCGGTGCCATGGTTGCGCTGGCCGATGCCTTGAAAGTGATCAAGAAGCGTGGCGGCCTCAAGGGCGGCGATCCGCTCAAGCAAATGATCGCCGCGGTGTCGGTGGGCATGTACCAGGGCGAGCCGGTGCTGGACCTGGATTACCTGGAGGACTCCGCTGCCGAGACCGACCTGAACGTGGTCATGACCAGTGCCGGCGGCTTCATCGAAGTCCAGGGCACCGCCGAGGGCGCGCCGTTCCAGCCGGAAGAATTGACCGCTATGCTGGAGCTGGCGAAGAAAGGCATGGGCGAAATCTTCGAATTGCAAAAGGCCGCGTTGGCCGACTGAMKRPSGRAADQLRSIRITRNYTKHAEGSVLVEFGDTKVICTVSVENGVPRFLKGQGQGWLTAEYGMLPRATGERNQREASRGKQGGRTLEIQRLIGRSLRAALDMSKLGDVTLYVDCDVIQADGGTRTASITGAMVALADALKVIKKRGGLKGGDPLKQMIAAVSVGMYQGEPVLDLDYLEDSAAETDLNVVMTSAGGFIEVQGTAEGAPFQPEELTAMLELAKKGMGEIFELQKAALADPGPT0021590_9DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021590-rdgB-K02428NANA
D1-35_02962369hypothetical proteinATGAGTGATGAGCAAGTCCTGTTGCCCCAGCCGAGCAGAGAAGCGCGGCAGTGGGCAATGTTTTGTCACCTGTCTGCACTATTGGGCATTTTCATTCCGTTCGGTTCGCTGATCGGGCCGCTGGTCATCTGGCAGCTCAAGCGTGAATCCGACCCGTTCATCGATGCCCAGGGCAAGGAAGCGCTGAACTTCCAGATCACTGTGGCGATCGCCGCGGCGATCAGCTTGTTGCTGATGATCGTGGTGATTGGTTTCTTCCTGTTTGGCCTGGTGGCGATCGGTGCGCTGGTGCTGACCATCATTGCTGGCGTGAAGGCCAATGAAGGGCAGCCGTATCGGTATCCATTTACCTGGCGGCTGGTCAAATAAMSDEQVLLPQPSREARQWAMFCHLSALLGIFIPFGSLIGPLVIWQLKRESDPFIDAQGKEALNFQITVAIAAAISLLLMIVVIGFFLFGLVAIGALVLTIIAGVKANEGQPYRYPFTWRLVKNANANANANA
D1-35_02963780exoACOG0708ExodeoxyribonucleaseATGCGGATCATCAGTGTGAACGTCAATGGTATTCAGGCTGCAGTGGAGCGTGGTTTGCTCAGTTGGCTGCAAGCACAGAATGCCGACGTCATCTGCCTGCAGGACACCCGCGCCTCCGCCTTTGAACTGGACGATGCAGCCTTCCAACTGGACGGTTACTTCCTTTACGCCTGCGATGCCGAAGTCCCCGCCCAGGGTGGCGTGGCTTTGTACTCGCGGCTGCAACCGAAGGCTGTCATCAACGGTCTCGGTTTCGAGACGGCGGACCGCTACGGGCGCTACCTGCAAGCCGATTTCGACAAGGTCAGCATCGCGACCTTGCTGCTCCCTTCGGGGCAGAACGGCGATGAAGATTTGAATCAGAAATTCAAGTTGATGGACGACTTCGCCCGTTACCTTGATAAACAGCGGCGCAAACGTCGCGAGTACATTTATTGTGGCTCGCTGTACGTGGCGCAACAGAAGCTGGATATCAAGAACTGGCGCGACAGCCAGCAGTCGCCTGGCTTCCTGGCGCCGGAACGGGCCTGGATGGACGAGATCATCGGCAACATGGGTTATGTCGATGCCCTGCGCGAAGTCAGCCGCGAAGGCGACCAGTACAGCTGGTGGCCGGATAACGAGCAGGCCGAGATGCTCAACCTCGGCTGGCGCTTCGACTACCAGCTGCTGACGCCCGGGCTGCGCCGCTTCGTCCGCAGCGCCCGCCTGCCACGCCAGCCGCGGTTCTCGCAGCATGCGCCGCTGATCGTGGACTACGACTGGACGCTGACCATCTAGMRIISVNVNGIQAAVERGLLSWLQAQNADVICLQDTRASAFELDDAAFQLDGYFLYACDAEVPAQGGVALYSRLQPKAVINGLGFETADRYGRYLQADFDKVSIATLLLPSGQNGDEDLNQKFKLMDDFARYLDKQRRKRREYIYCGSLYVAQQKLDIKNWRDSQQSPGFLAPERAWMDEIIGNMGYVDALREVSREGDQYSWWPDNEQAEMLNLGWRFDYQLLTPGLRRFVRSARLPRQPRFSQHAPLIVDYDWTLTINANANANANA
D1-35_02964645pyrECOG0461Orotate phosphoribosyltransferaseATGCAGGCGTATCAGCGCGATTTCATTCGCTTTGCCATCGATCGCGGCGTTTTGCGCTTCGGTGAATTCACCCTCAAGTCCGGGCGCACCAGCCCGTACTTCTTCAACGCCGGCCTGTTCAACAGTGGAACCGCCCTGGCGCAGTTGGGCCGGTTCTATGCCGCCGCCATCGTTGAAAGCGGCATTCCGTTCGACGTGCTGTTCGGCCCGGCCTACAAGGGCATCCCATTGGCCGCCACTACCGCCGTCGCCCTGGCCGAGCACCATGGCCGTGACCTGCCCTGGTGCTTCAACCGCAAGGAAGCCAAGGCTCACGGTGAAGGCGGAAGCCTGGTCGGCGCGCCGTTGACCGGCGAAGTGCTGATCATCGATGACGTTATAACCGCCGGTACCGCCATTCGCGAGGTGATGCAGATCATCGCTTCCCAGGAAGGCGCCAAGGCTGCCGGCGTGCTGATCGCCCTGAACCGTCAGGAGCGCGGCAATGGTGAGCTGTCGGCGATCCAGGAAGTGGAGCGCGACTTCGGTATCCCGGTGATCAGCATTGTGTCGCTGAACCAGGTGCTGGAGTTCTTGGCCGATGATCCGCAGCTCAAGCAGCATTTGCCGGCAGTGGAAGCCTATCGGGCGCAGTTCGGCGTCTAAMQAYQRDFIRFAIDRGVLRFGEFTLKSGRTSPYFFNAGLFNSGTALAQLGRFYAAAIVESGIPFDVLFGPAYKGIPLAATTAVALAEHHGRDLPWCFNRKEAKAHGEGGSLVGAPLTGEVLIIDDVITAGTAIREVMQIIASQEGAKAAGVLIALNRQERGNGELSAIQEVERDFGIPVISIVSLNQVLEFLADDPQLKQHLPAVEAYRAQFGVPGPT0021200_1516DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021200-pyrE-K00762NANA
D1-35_02965906argBCOG0548Acetylglutamate kinaseATGACCCTCGAACGCGAAGCCGCCGCCAACACCGCCAAGGTCCTGTCCGAAGCGTTGCCTTACATCCGACGCTACGTCGGCAAGACCCTGGTGATCAAGTACGGCGGCAACGCAATGGAAAGCGAGGAGCTCAAGACCGGCTTCGCCCGCGACATCGTGCTGATGAAGGCGGTGGGCATCAACCCGGTGGTGGTTCACGGCGGTGGTCCGCAAATCGGCGACCTGCTCAAGCGCCTGTCGATCGAAAGCCACTTCATCGACGGCATGCGCGTGACCGATGCGCAGACCATGGATGTGGTGGAGATGGTCCTCGGCGGCCAGGTGAACAAGGACATCGTCAATCTGATCAACCGCCACGGCGGCAGCGCCATCGGCCTGACCGGCAAGGACGCCGAACTGATCCGGGCGAAGAAACTCACCGTAACCCGCCAGACGCCGGAGATGACTCAGCCGGAAATCATCGACATCGGCCAGGTCGGCGAAGTGGTCGGCATCAACACCGATCTGCTAAACCTGCTGGTCAAGGGCGACTTCATTCCGGTCATCGCGCCGATCGGCGTGGGCGCCAATGGCGAGTCGTACAACATCAACGCCGACCTGGTGGCCGGCAAGGTTGCCGAAGCGCTGAAAGCCGAGAAGCTGATGCTGCTGACCAACATCGCCGGCCTGATGGACAAGACCGGCAAGGTCCTGACCGGGTTGTCGACCCAGCAAGTCGATGACTTGATCGCCGATGGCACCATCTACGGCGGCATGCTGCCGAAGATCCGTTGCGCGCTGGAAGCGGTCCAGGGCGGCGTTGGCAGCTCGCTGATCATCGACGGCCGCGTGCCGAATGCGATCCTCCTGGAGATCTTCACCGATACCGGCGTGGGTACGCTGATCAGCAATCGCAAGCGTCATTAAMTLEREAAANTAKVLSEALPYIRRYVGKTLVIKYGGNAMESEELKTGFARDIVLMKAVGINPVVVHGGGPQIGDLLKRLSIESHFIDGMRVTDAQTMDVVEMVLGGQVNKDIVNLINRHGGSAIGLTGKDAELIRAKKLTVTRQTPEMTQPEIIDIGQVGEVVGINTDLLNLLVKGDFIPVIAPIGVGANGESYNINADLVAGKVAEALKAEKLMLLTNIAGLMDKTGKVLTGLSTQQVDDLIADGTIYGGMLPKIRCALEAVQGGVGSSLIIDGRVPNAILLEIFTDTGVGTLISNRKRHPGPT0014249_1163DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014249-argB-K00930NANA
D1-35_029661398algCCOG1109Phosphomannomutase/phosphoglucomutaseATGAACACCCCAGCCGCAATCGCCCCGATCTTCCCTGACAGCATCTTCCGCGCCTACGACATCCGTGGCGTCGTGCCGGAAACCCTGACGGCTGAAACCGCCTACTGGATCGGCCGCGCCATCGGCTCCCAGAGCCTGGCCCAGGGCGAACCGAACGTGAATGTCGGCCGCGACGGTCGCTTGTCCGGCCCGGAGCTGGTCGAGCAGTTGATCAAAGGCGTTGCCGACAGCGGTTGCCACGTCAGCGACGTCGGCCTGGTGCCGACCCCGGCGCTTTATTACGCCGCCAATGTCCTGGCCGGCAAATCCGGCGTGATGCTCACCGGCAGCCACAACCCGTCGAACTACAACGGCTTCAAGATCGTCATCGCTGGCGACACCCTCGCCAACGAGCAGATCCAGGCCCTGCACACCCGCCTCAAGACCAATGACCTGAGCAGTGGCCAGGGCAGCGTGACCAAGGTCGACATCCTCCCGCGCTACAACGACGAAATCGTCAAGGACGTGAAACTGGCCCGCCGCCTGAAAGTAGTGGTCGATTGCGGCAACGGCGCGGCCGGGGTCATCGCCCCGCAACTGATCGAAGCGCTGAATTGCGAAGTCATCCCGCTGTTCTGTGACGTCGACGGCAACTTCCCCAACCATCACCCGGATCCGGGCAAGCTGGAAAATCTTCAGGATCTGATCGCCAAGGTCAAGGAAACCAACGCCGACCTGGGCCTGGCCTTCGACGGCGACGGCGACCGCGTGGGTGTGGTGACCAATACCGGCAGCGTGGTGTTTCCTGACCGTCTGCTGATGCTGTTCGCCAAGGACGTGGTGGCACGCAACCCCGACGCCGAGATCATCTTCGACGTGAAGTGCACCCGTCGCCTGGTGCCGCTGATCAAGGAATATGGCGGTCGTCCGCTCATGTGGAAAACCGGCCATTCGCTGATCAAGAAAAAAATGAAACAGAGCGGCGCCCTGCTGGCCGGCGAAATGAGCGGCCACATCTTCTTCAAGGAGCGCTGGTTCGGTTTCGATGACGGCATCTACAGCGCGGCACGCCTGCTGGAAATCCTCAGCAAGGAGAAATCCACCGCCGAAGAGCTGTTCGCGACCTTCCCGAACGATATTTCTACGCCGGAAATCAATATCCATGTGACCGAAGAGAGCAAATTCAGCATCATTGATGCACTGCACGACGCCCAGTGGGGCGAAGGCGCCGAACTGACCACCATCGACGGTGTGCGGGTCGACTACCCACAAGGCTGGGGCCTGGTTCGCGCCTCCAACACCACACCGGTGCTGGTGCTGCGTTTCGAGGCCGACAACGAGGCTGAACTGCAGCGCATCAAGGATGTGTTCCACAGCCAACTCAAGCGTGTTGCACCTGATCTCCAACTACCGTTCTGAMNTPAAIAPIFPDSIFRAYDIRGVVPETLTAETAYWIGRAIGSQSLAQGEPNVNVGRDGRLSGPELVEQLIKGVADSGCHVSDVGLVPTPALYYAANVLAGKSGVMLTGSHNPSNYNGFKIVIAGDTLANEQIQALHTRLKTNDLSSGQGSVTKVDILPRYNDEIVKDVKLARRLKVVVDCGNGAAGVIAPQLIEALNCEVIPLFCDVDGNFPNHHPDPGKLENLQDLIAKVKETNADLGLAFDGDGDRVGVVTNTGSVVFPDRLLMLFAKDVVARNPDAEIIFDVKCTRRLVPLIKEYGGRPLMWKTGHSLIKKKMKQSGALLAGEMSGHIFFKERWFGFDDGIYSAARLLEILSKEKSTAEELFATFPNDISTPEINIHVTEESKFSIIDALHDAQWGEGAELTTIDGVRVDYPQGWGLVRASNTTPVLVLRFEADNEAELQRIKDVFHSQLKRVAPDLQLPFPGPT0017725_648DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-ALGINATE_METABOLISMCE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0017725-pmm_pgm-K15778NANA
D1-35_02967456dutCOG0756Deoxyuridine 5'-triphosphate nucleotidohydrolaseATGCACGCTCTACAAGCCAAGATCCTCGACCCTCGCATCGGCAACGAATTCCCACTGCCGCAGTACGCCACGCCGGGCTCAGCCGGCCTCGATCTGCGGGCGATGCTCAAGCAGGACACGATCCTGGAACCGGGCCAGACCCTGCTGATTCCCACCGGCCTGTCGGTCTACATCGGCGATCCGGGCCTCGCCGCGCTGATTCTGCCGCGCTCGGGCCTGGGCCATAAGCACGGCATCGTGCTGGGCAACCTGGTGGGCCTGATCGACTCCGATTACCAGGGCGAACTGATGGTGTCCTGCTGGAATCGCGGCCAGACCGCTTTCAACATCGCCGTGGGCGAACGCATTGCCCAACTGGTGCTGGTGCCGGTGGTCCAGGCCCATTTCGAATTGGTCGAGGAATTCGACGAGAGCCAGCGCGGCGCCGGCGGTTTCGGTCACTCCGGTAGCCACTGAMHALQAKILDPRIGNEFPLPQYATPGSAGLDLRAMLKQDTILEPGQTLLIPTGLSVYIGDPGLAALILPRSGLGHKHGIVLGNLVGLIDSDYQGELMVSCWNRGQTAFNIAVGERIAQLVLVPVVQAHFELVEEFDESQRGAGGFGHSGSHPGPT0021355_2681DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021355-dut-K01520NANA
D1-35_029681209coaBCCOG0452Coenzyme A biosynthesis bifunctional protein CoaBCATGCAGCGGCTGTATCGGAAACGCATCGTTCTGGGCGTCGGCGGCGGCATTGCCGCCTACAAGAGCGCCGAGCTGGTTCGCAGGCTTATCGACCAGGGCGCCGAAGTACGGGTCGTCATGACCCGCGGCGGCAGTGAGTTCATCACCCCGCTGACCATGCAAGCCTTGTCCGGGCACCCGGTCCACCTGGATCTGCTCGACCCGGCGGCCGAGGCCGCCATGGGTCATATCGAGCTGGCCAAATGGGCTGACCTGGTGCTGATCGCCCCGGCCACGGCCGACCTGATCGCCCGCCTGGCCCAAGGCATCGCCGACGACCTGCTGACCACCCTTGTACTCGCTACCGACGCCGTGGTCGCCGTGGCGCCGGCCATGAACCAGGCCATGTGGCGCGACCCCGCCACCCAGGCCAACCTGCAACTGCTCGAAAGCCGCGATCTGAAAGTTTTTGGCCCAGCCTCTGGCAGCCAGGCCTGCGGCGATGTCGGCATGGGCCGCATGCTCGAAGCCAACGACCTGGTTCAGTGCGCCGCCGACTGCTTCCAGCGCCAGGCGCTGACCGGCAAGCATGTGCTGATTACCGCCGGCCCGACCCAGGAAAACATCGACCCGGTGCGCTACATCACCAACCACAGCTCGGGGAAAATGGGCTTCGCCCTGGCCGAAGCCGCCGTCGAAGCGGGCGCGCGGGTGACGCTGATCACCGGGCCGGTGCACCTGCCGACCCCGGATCGAGTGACCCGCATCGACGTCGTCAGCGCCCGGGACATGCTTGCGGCCTGTGAGGCCTCGATCCCGTGCGACCTGTTCATCGCCTCGGCGGCGGTGGCGGACTACCGCCCCGAAGTCGTTGCCCCGCAAAAATTGAAGAAAGACCCTACAAGCGGCGACGGCCTGCTCCTGCAAATGGTACGCAACCCGGACATCCTGGCCACCATCGCCACCCGTCCCGACCGTCCATTCAGCGTCGGTTTTGCCGCCGAAACCGAACACCTCCTCGATTACGCCGCGCGCAAGCTCAAGGACAAGAATCTGGACCTGATCGTCGCCAACGACGTCGCCAACCCGAGCATCGGCTTCAACAGCGAAGAGAACGCCTGCAGCGTGATCGACCGCCAGTTGCACGCCACGCTTTTCGCCCAGACCAGCAAGGGCAAGATTGCCCGCCAACTGATCACTTTCATCGCCGAACGGCTGAACCAGGTTTAAMQRLYRKRIVLGVGGGIAAYKSAELVRRLIDQGAEVRVVMTRGGSEFITPLTMQALSGHPVHLDLLDPAAEAAMGHIELAKWADLVLIAPATADLIARLAQGIADDLLTTLVLATDAVVAVAPAMNQAMWRDPATQANLQLLESRDLKVFGPASGSQACGDVGMGRMLEANDLVQCAADCFQRQALTGKHVLITAGPTQENIDPVRYITNHSSGKMGFALAEAAVEAGARVTLITGPVHLPTPDRVTRIDVVSARDMLAACEASIPCDLFIASAAVADYRPEVVAPQKLKKDPTSGDGLLLQMVRNPDILATIATRPDRPFSVGFAAETEHLLDYAARKLKDKNLDLIVANDVANPSIGFNSEENACSVIDRQLHATLFAQTSKGKIARQLITFIAERLNQVPGPT0008815_2873DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008815-coaBC|dfp-K13038NANA
D1-35_02969675hypothetical proteinATGAGTATTCGGGACTGGCCGGTGGCCGAGCGGCCACGGGAGAGATTGTTGGTGTCGGGGGCGGAGAGTCTTTCAGACGCCGAGCTGCTGGCGATATTTTTACGCACGGGTGTGTCGGGTAAAAGCGCGGTGGATCTGGCTCGACATCTGCTGTCCCAATTTGGCTGCCTGCGGGCGTTGCTTGAGGCTGATCAGCTCACGTTCAGCAGTCATATGGGGCTGGGTCCGGCGAAATTCGCTCAATTGCGCGCGGTGCTCGAAATGGGCCGGCGACACTTGGCGGCGCGGACTCGGCAGAATTCAATGCTGGAAGACCCGCAGGCCGTTCGTGACTATCTCAAGTCAATGCTGCGCCACGAACCTCACGAGGTTTTTGGTTGCCTGTTTCTCAACTCGCGGCATCAGGTGCTGGCGTTCGAAGCGCTTTTTCGTGGCTCCATCGCCTGCACCAGTGTCCACCCCCGGCAAGTGGTCAAGCGCGCCCTGGCCCACAACGCCGCTGCCGTGATCCTCTGCCACAACCACCCCTCCGGCAGCACCGAGCCCAGCCAGGCCGACCGAATGCTCACCGAGCGGCTCCAGGACGCGCTGGAGCTGATCGATGTGCGGGTGCTCGACCATTTTATCGTCGGCGATGGGGAGCCGTTGTCGATGGCGGAGTGTGGGTGGATGTAGMSIRDWPVAERPRERLLVSGAESLSDAELLAIFLRTGVSGKSAVDLARHLLSQFGCLRALLEADQLTFSSHMGLGPAKFAQLRAVLEMGRRHLAARTRQNSMLEDPQAVRDYLKSMLRHEPHEVFGCLFLNSRHQVLAFEALFRGSIACTSVHPRQVVKRALAHNAAAVILCHNHPSGSTEPSQADRMLTERLQDALELIDVRVLDHFIVGDGEPLSMAECGWMNANANANANA
D1-35_029701587dppA_5COG0747Periplasmic dipeptide transport proteinATGCGCCTCGCTGCCCTACCGCTGTTGCTCGCCCCTCTGCTACTCACTCCGCTGGCCCAGGCCGCCGCCCTGAGCGTGTGTACCGAGGCCAGCCCGGAAGGGTTCGATGTCGTCCAGTACAACTCCCTGACCACTACCAACGCTTCGGCCGACGTGCTGATGAACCGCCTGGTAGATTTCGACACCGCCAGCGGCAAGGTGGTGGCCAGCCTGGCCGAGAGCTGGGAAGTTTCGCCCGATGGCCTGAGTTATGTCTTCAAGTTGCGCCCCAAGGTCAGGTTTCACCACACCGACTACTTCACACCGCGTCGCGACCTGACGGCCGAAGACGTCAAGTTCAGCTTCGAGCGCATGCTGGACCCGGCCAACCCTTGGCACAAGGTCGCCCAGAGCGGCTTCCCCCACGCCCAATCCATGCAACTGCCGGCGCTGATTACAAAAATCGATGCCCTGGACCCGTTGACAGTGCGCTTCACCCTCGACCATGCCGATTCGACCTTCCTGGCGACGTTGAGCATGGGTTTCGCATCGATCTATTCGGCTGAATATGCCGACCAGTTGATGAAGGCCGGCAAGCCGGAGCAACTCAACAGCCAGCCCATCGGCACCGGCCCGTTCATTTTCAACCGGTTCCAGAAAGATGCCTCGATTCGCTACAAGGCCAACGGGGATTATTTCGGCGGCAAGCCCCAGGTGGACCCGCTGATCTTTGCCATCACGCCAGACGCCAACGTGCGCCTGCAGAAGTTGCGCCGAAATGAATGCCAGATCGCCCTGTCGCCCAAGCCGCTGGACGTGCAGGCCGCCCGGCAGGAGCCGACATTGAAGGTGGCGCAGACTGACGCGTTCATGACCGCTTTCCTGGCGATCAACAGCCAGCATCCGCCGCTGGACAAGCCGGAAGTCCGTCAGGCCATCAACCTGGCTTTTGACAAGCCCAGCTACCTCAAGACCGTTTTCGAAGGCACGGCCGAAGCGGCCAACGGCCCTTATCCGCCAAACACCTGGAGCTACGCGAAAAACCTGCCCGGCTATGCCCATGACCCGGCCAAGGCTCGGGAATTGCTGGCCAAGGCCGGTTTGAAGGAAGGCTTCAAGACTACTATCTGGACTCGCCCCTCCGGCAGCCTGCTCAATCCCAATCCGAGCCTCGGCGCGCAGCTGTTGCAATCGGACCTGGCGGGAATCGGCATCCAGGCGGAAATCCGCGTGATCGAATGGGGCGAGCTGATCCGCCGCGCCAAGGCCGGCGAGCACGACCTGCTGTTCATGGGCTGGGCCGGCGACAACGGTGACCCGGACAACTTCCTCACGCCGCAGTTTTCCTGCGCGGCGGTCAAGTCCGGGACCAATTTCGCTCGTTACTGCAACCCGGATCTGGACAAACTGATCAGTGCCGGCAAGACCACCAGCGAACAGGGCGTGCGCACCAAACTCTACGAACAGGCCCAGGCGCAGATCCAGCAGCAGGCCCTCTGGCTGCCCCTGGCGCACCCGACGGCATTCGCGCTGACCCGCAAGGATGTGCAGGGTTATACGGTCAGCCCGTTTGGGCGGCAGGATTATTCCAAGGTCAACCTCAAGTAAMRLAALPLLLAPLLLTPLAQAAALSVCTEASPEGFDVVQYNSLTTTNASADVLMNRLVDFDTASGKVVASLAESWEVSPDGLSYVFKLRPKVRFHHTDYFTPRRDLTAEDVKFSFERMLDPANPWHKVAQSGFPHAQSMQLPALITKIDALDPLTVRFTLDHADSTFLATLSMGFASIYSAEYADQLMKAGKPEQLNSQPIGTGPFIFNRFQKDASIRYKANGDYFGGKPQVDPLIFAITPDANVRLQKLRRNECQIALSPKPLDVQAARQEPTLKVAQTDAFMTAFLAINSQHPPLDKPEVRQAINLAFDKPSYLKTVFEGTAEAANGPYPPNTWSYAKNLPGYAHDPAKARELLAKAGLKEGFKTTIWTRPSGSLLNPNPSLGAQLLQSDLAGIGIQAEIRVIEWGELIRRAKAGEHDLLFMGWAGDNGDPDNFLTPQFSCAAVKSGTNFARYCNPDLDKLISAGKTTSEQGVRTKLYEQAQAQIQQQALWLPLAHPTAFALTRKDVQGYTVSPFGRQDYSKVNLKPGPT0004500_1554DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0004500-dppA-K12368NANA
D1-35_02971234rpmBCOG022750S ribosomal protein L28ATGTCGAGAGTCTGTCAAGTTACCGGTAAGGGTCCGGTGACTGGGAATAACATTTCCCACGCAAACAACAAAACCCGTCGTCGTTTCCTGCCGAACCTGCAGCATCACCGCTTCTGGGTTGAAGAAGAGAAACGTTTTGTGCGTCTGCGCGTATCTGCCAAAGGCATGCGCATCATCGACAAGCGTGGCATCAGTGTCGTGCTGGCCGAACTTCGTCGCGATGGCAAGGTTTAAMSRVCQVTGKGPVTGNNISHANNKTRRRFLPNLQHHRFWVEEEKRFVRLRVSAKGMRIIDKRGISVVLAELRRDGKVNANANANANA
D1-35_02972156rpmGCOG026750S ribosomal protein L33ATGCGTGAATTGATTCGTTTGATCTCGAGCGCCGGTACTGGTCACTTCTACACTACCGACAAGAACAAGCGTACTACCCCGGACAAAATCGAGATCAAGAAATATGATCCGGTTGTTCGCAAGCACGTGATCTACAAGGAAGGCAAAATCAAGTAAMRELIRLISSAGTGHFYTTDKNKRTTPDKIEIKKYDPVVRKHVIYKEGKIKNANANANANA
D1-35_02973312hypothetical proteinATGGCCAAAAAAAAAGCTACTACACCGCGGATCGCAGCACTGGCTGCCCTGCTGACACTAAACATTGGAGCGCTTGAAGCAATTGCCAACGAGATCCACCCTTCAGGCGTATGCACGGCTAATTTTGCTTTCAACTCCCTGCTGCCGATGAAGGTAGACGCGCAATTTCTGCACGACATGCAAGCCTATTCGGGAGCCAAGATCGTACGCCATATACGCGCAGGCGAAGCCTACACCATGGACTATCGAGATGATCGGCTCTACGTCTTCAGCGACAAGGAAAACTTTTATACCGGTCACAAGTGTGGCTGAMAKKKATTPRIAALAALLTLNIGALEAIANEIHPSGVCTANFAFNSLLPMKVDAQFLHDMQAYSGAKIVRHIRAGEAYTMDYRDDRLYVFSDKENFYTGHKCGNANANANANA
D1-35_02974363hypothetical proteinATGAGCATCCAGGACATCGTCGATTTCAGCCAGGCCAATACCACCGCCGACCGCTATCGACCGGACCCGGTCAAGGTACTTAAAGGTGATCCCGAGCAAGCGGTGTTCAATCATTACAGCAGTCCTTGCGGACAGATGAATGCGGGGGTGTGGGAAGGCGCGGTGGGCCAGTGGACGGTCAACTATACGGAGCACGAATACTGCGAAATCGTCCAAGGTGTTTCGGTGCTGCGGGACAATGAAGGGAATGCCAAGACACTTCGAGCGGGCGATCGTTTTGTAATTCCGGCCGGATTCCAAGGAACTTGGGAAGTGCTGGAAGCGTGCCGCAAGATTTATGTAGTGTTTGAGAAACAGGAATGAMSIQDIVDFSQANTTADRYRPDPVKVLKGDPEQAVFNHYSSPCGQMNAGVWEGAVGQWTVNYTEHEYCEIVQGVSVLRDNEGNAKTLRAGDRFVIPAGFQGTWEVLEACRKIYVVFEKQENANANANANA
D1-35_029751494puuC_2COG1012NADP/NAD-dependent aldehyde dehydrogenase PuuCATGACCACCCTGACTCGTGCCGACTGGGAACAGCGCGCCCGCGACCTGAAGATCGAAGGCCGCGCCTTCATCAATGGCGAATACACCGATGCAGTGTCCGGCGAGACCTTCGATTGCCTCAGCCCGGTCGACGGCCGCCTGTTGGGCAAGATCGCCAGTTGCGACGTGGCCGACGCCCAGCGCGCCGTCGAAAACGCCCGCGCGACATTCAGCTCTGGCGCCTGGTCGCGCCTGGCGCCGAGCAAGCGCAAAGCCACCATGATTCGTTTTGCCGGCCTGCTCAAGCAGCACGCCGAAGAGCTGGCCTTGCTGGAAACCCTGGACATGGGCAAGCCGATCAGCGACTCCCTGAATATTGACGTTCCAGGCGCGGCGCAGGCGCTGAGCTGGAGCGGTGAAGCCATCGACAAGCTCTACGATGAAGTGGCCGCCACCCCGCATGACCAATTGGGCCTGGTCACCCGGGAACCGGTCGGCGTGGTCGGTGCCATCGTTCCGTGGAACTTCCCGTTGATGATGGCCTGCTGGAAGCTCGGCCCGGCGTTGTCCACCGGCAACTCGGTAGTGCTCAAGCCGTCGGAAAAATCCCCGCTGACCGCCATTCGTATCGCCGCGCTGGCCATCGAGGCCGGCATCCCCAAAGGCGTGCTGAACGTGCTGCCAGGCTATGGCCACACGGTCGGCAAGGCCCTGGCCTTGCACATGGATGTCGATACGCTGGTGTTCACCGGTTCCACCAAGATCGCCAAGCAACTGATGATCTATTCCGGCGAGTCGAACATGAAGCGCGTCTGGCTGGAGGCGGGTGGCAAGAGCCCGAACATCGTATTTGCCGATGCTCCGGACCTGCAGGCCGCCGCCGAAGCCGCCGCCAGTGCCATCGCCTTCAACCAGGGCGAAGTCTGCACGGCGGGCTCGCGCCTGCTGGTGGAGCGTTCGATCAAGGACACGTTCCTGCCGCTGGTGATCGAGGCTCTCAAGGGCTGGAAACCTGGCAATCCACTGGATCCAGCGACCAATGTCGGTGCCCTGGTCGATACCCAGCAGATGAATACCGTGCTGTCTTACATCGAAGCCGGTCACAGCGACGGCGCCAAGCTGGTCGCGGGTGGCAAGCGGATTCTCCAGGAAACCGGCGGCACCTACGTCGAGCCGACGATTTTCGATGGCGTGAGCAACGCGATGAAAATCGCCCAGGAAGAAATCTTCGGGCCGGTGTTGTCGGTCATCGCCTTCGACAGTGCCGAAGAGGCCGTCCAGATCGCCAACGACACCCCGTACGGCTTGGCTGCGGCAGTGTGGACCAAGGACATCTCCAAGGCTCACCTGACCGCCAAGGCCTTGCGCGCCGGCAGCGTATGGGTCAACCAATATGACGGTGGCGACATGACCGCACCGTTCGGTGGCTTCAAGCAGTCGGGCAACGGCCGTGACAAGTCGCTGCATGCGTTCGACAAGTACACCGAACTGAAGGCGACCTGGATCAAGCTCTGAMTTLTRADWEQRARDLKIEGRAFINGEYTDAVSGETFDCLSPVDGRLLGKIASCDVADAQRAVENARATFSSGAWSRLAPSKRKATMIRFAGLLKQHAEELALLETLDMGKPISDSLNIDVPGAAQALSWSGEAIDKLYDEVAATPHDQLGLVTREPVGVVGAIVPWNFPLMMACWKLGPALSTGNSVVLKPSEKSPLTAIRIAALAIEAGIPKGVLNVLPGYGHTVGKALALHMDVDTLVFTGSTKIAKQLMIYSGESNMKRVWLEAGGKSPNIVFADAPDLQAAAEAAASAIAFNQGEVCTAGSRLLVERSIKDTFLPLVIEALKGWKPGNPLDPATNVGALVDTQQMNTVLSYIEAGHSDGAKLVAGGKRILQETGGTYVEPTIFDGVSNAMKIAQEEIFGPVLSVIAFDSAEEAVQIANDTPYGLAAAVWTKDISKAHLTAKALRAGSVWVNQYDGGDMTAPFGGFKQSGNGRDKSLHAFDKYTELKATWIKLPGPT0007645_214DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINE_USAGEPLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007645-puuC|kauB-K12254NANA
D1-35_029761143ycaD_2putative MFS-type transporter YcaDATGCGTTGGGCGACCTATTTCGCCGTGTTGGCCTCTGTCCTGAGCGTCGGCCTTGCCCTCGGCGTAAGCATGCCCCTGGTGTCGCTGCGCCTGGAGGGCTGGGGTTATGGCTCGTTCGCCATTGGCGTCATGGCGGCGATGCCAGCCGTTGGCGTACTGGTCGGGGCCAAGGTTTCGAGCCGGCTGGCGGCGCATTTCGGTACGGCGGCGCTGATGCGCCTGTGCCTGTGGGGCGGGGCGGTGTCCATCGGGTTGTTGGCGCTGTTGCCCAGCTATCCGGTCTGGCTGCTCTTGCGGCTGTTGATCGGAGTCGTCCTGACATTGGTGTTCATTCTCGGCGAGAGCTGGATCAACCAGCTGGTCATCGAGCAATGGCGCGGGCGGTTGGTGGCGCTGTACGGGGCCAGCTATGCCTTGAGCCAATTGTCCGGCCCGCTGCTGCTCGGTGCGCTGGGGACCGATCATGACTACGGGTTCTGGGTGGGTGTCGGGCTGCTATTGATCGCCCCGTTGTTGTTGCTTGGCCGCAGCGGTGCGCCTGCCAGTGAGGCGGGCAGCGTTACCTTCGGCGATTTGTGGGAATTTTGCCGGGGCCTGCCGGCAATCGGTTGGGCGGTGTCGTTGTTCGCCGCATTCGAGGCGATGATCCTGACGCTGCTGCCGGTCTATTGCCTGCGCCAGGGCTTCAGTGCCGATATTGCGCTGGCGATGGTCAGCACGGTGGTGGTCGGCGACGCCCTGTTGCAGCTGCCCATTGGCGCCCTGGCCGATCGCCTGTCGCGCCGGTCGCTATTCACCGGCTGCGCGGTGGCACTGATGTTGTCCAGCCTCGCGGTGCCGCTGCTGATCGATACCTTGTTGATCTGGCCGCTGTGGGTGCTGTTTGGCGCCAGCGCGGGTGGGCTGTTTACCTTGTCGCTGATCCTGATCGGCGAGCGCTACCGCGATGATGCGCTGGTACGGGCCAACGCCCATGTTGCGCAGCTGTGGGGGATCGGTTGCCTGGTCGGGCCGCTGGTGGCGGGGGCGGGCAGCCAGTGGGTCAGCGGCCATGCGCTGCCGTTGTTCATGGCGGCGGGGGCGTTCGGCCTGGTCATTCTGTTGTTGCGCCAAGGGGCGTTCGGCGCGACACAAACCGCTTGAMRWATYFAVLASVLSVGLALGVSMPLVSLRLEGWGYGSFAIGVMAAMPAVGVLVGAKVSSRLAAHFGTAALMRLCLWGGAVSIGLLALLPSYPVWLLLRLLIGVVLTLVFILGESWINQLVIEQWRGRLVALYGASYALSQLSGPLLLGALGTDHDYGFWVGVGLLLIAPLLLLGRSGAPASEAGSVTFGDLWEFCRGLPAIGWAVSLFAAFEAMILTLLPVYCLRQGFSADIALAMVSTVVVGDALLQLPIGALADRLSRRSLFTGCAVALMLSSLAVPLLIDTLLIWPLWVLFGASAGGLFTLSLILIGERYRDDALVRANAHVAQLWGIGCLVGPLVAGAGSQWVSGHALPLFMAAGAFGLVILLLRQGAFGATQTANANANANANA
D1-35_029771536clsCCOG1502Cardiolipin synthase CATGCTAGTCGCCTCGCTGTTGAGCGGCTGCGCCAGTCTTGATGTCACCCGCGAACCCTCCCAGGCGTTGCCGGCCTCCGACTCAGCGTTCGGCCGCTCGGTGGCGCAACAGGCCGCCCCGCACGAGGGCCGCTCAGGCTTTCGCCTGCTGTCCGACAGTACCGAAGCCTTCACCGCCCGGGCCGAGCTGATTCGCAACGCTCAAAGCAGCCTGGATTTGCAGTACTACATCGTTCATGACGGCATCAGCACGCGCATGCTGGTCGACGAACTGCTGAAGGCAGCGGACCGTGGGGTGCGCGTGCGGATCCTGCTTGACGACACCACCAGCGACGGCCAGGAGCAAGTCATCGCGACCCTGGCCGCGCACCCGAACATCCAGATTCGCCTGTTCAACCCGTTGCATCTTGGCCGCGCCACCGGCGTGACCCGCAGCCTGGGGCGCTTGTTCAATCTGTCGCTGCAACATCGTCGGATGCACAACAAGCTCTGGCTGGCGGACAACAGCATGGCCATCGTCGGCGGCCGCAATCTCGGCGACGAATATTTCGATGCCGAACCCAACCTTAACTTCACCGACATCGACCTGCTCAGCGTCGGCCCGGTGGCCGAGCAATTGGGGCACAGCTTCGACCAATACTGGAACAGCGCGCTGAGCAAACCGATCGAACAATTCCTTTCCCATCGACCAACTCCCAAGGACCTGGAGAACAGCCGCTTGCGCCTGCAAGCTTCGCTTGAGCAGACGCACAAGGAAAACCAGACGCTCTACCAGCAACTGACCGCCTACAAGACCCAGCCGCGCCTGGACATCTGGCGCGGACAGTTGATCTGGGCCTGGAACCAGGCGCTGTGGGATGCGCCTAGCAAGGTACTGGCCAAGGATGAGCCAGACCCTCGATTGCTGCTGACGACACAACTGGGGCCGGAGCTGACCGGCGTCAGCAAGGAACTGATCATGATCTCCGCCTACTTCGTGCCCGGACAGCCAGGGCTGGTGTACCTGACCAGCCGTGCCGATGCCGGTGTCTCCGTGAGCCTCTTGACCAATTCGCTGGAAGCCACCGATGTGCCGGCGGTGCACGGCGGCTACGCGCCGTATCGCAAGGCCTTGCTGCAGCATGGCGTACGGCTGTTCGAGTTGCGCCGCCAACCCGGCGACAGCGGCGGCAGCCCGCATCTGTTCTACAGCAAGTCTTATGGCGAATCGGACTCCAGCCTGCACAGCAAGGCGATCATCTTCGATCAACAGAAGTCGTTCATTGGCTCGTTCAATTTCGATCCTCGTTCAGTGCTTTGGAACACCGAGGTCGGCGTACTGGTAGACAGCCCGAAACTCGCCGGCCAGGTTCGGGAGCTGGCTTTGCAGGGCATGGCCCCGACCCTGAGTTATCAGGCCCGCCTGGAAGATGAAAGACTGGTCTGGACCACCGAGGACAACGGCAAGCTGCACGACCTGGATCGCGAACCGGGCAGCTGGTGGCGCCGCTTCAATGCCTGGTTCGCCACGACGATCGGGTTGGAGCGGATGCTTTAGMLVASLLSGCASLDVTREPSQALPASDSAFGRSVAQQAAPHEGRSGFRLLSDSTEAFTARAELIRNAQSSLDLQYYIVHDGISTRMLVDELLKAADRGVRVRILLDDTTSDGQEQVIATLAAHPNIQIRLFNPLHLGRATGVTRSLGRLFNLSLQHRRMHNKLWLADNSMAIVGGRNLGDEYFDAEPNLNFTDIDLLSVGPVAEQLGHSFDQYWNSALSKPIEQFLSHRPTPKDLENSRLRLQASLEQTHKENQTLYQQLTAYKTQPRLDIWRGQLIWAWNQALWDAPSKVLAKDEPDPRLLLTTQLGPELTGVSKELIMISAYFVPGQPGLVYLTSRADAGVSVSLLTNSLEATDVPAVHGGYAPYRKALLQHGVRLFELRRQPGDSGGSPHLFYSKSYGESDSSLHSKAIIFDQQKSFIGSFNFDPRSVLWNTEVGVLVDSPKLAGQVRELALQGMAPTLSYQARLEDERLVWTTEDNGKLHDLDREPGSWWRRFNAWFATTIGLERMLPGPT0007730_493DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_GLYCEROPHOSPHOLIPID-CARDIOLIPIN_SYNTHASE_ACTIVITY,PGPT0007730-clsC|ymdC-K06132NANA
D1-35_029781434norG_4COG1167HTH-type transcriptional regulator NorGATGACTCTTTACGTGAACCTCGCCGAATTGCTCGGCACTCGCATCGAACAGGGCTTCTACCGCCCCGGCGACCGGCTGCCGTCGGTGCGTGCCTTGAGCACCGAACACGGGGTCAGCCTGAGTACCGTGCAGCAGGCCTATCGCGTCCTGGAAGACAGCGGACTGGCGATGCCGAAACCCAAGTCCGGCTATTTCGTCCCGGTCAGCCGCGAGCTGCCGGACCTGCCAGCGGTTGGCCGCCCGGCCCAGCGCCCGGTGGACATCTCCCAATGGGACCAGGTGCTGGAGCTGATACGCGCGGTGCCGCGCAAGGATGTCGTACAGTTGGGCCGCGGCATGCCGGATATCCATTCACCGACCATGAAACCGTTGCTGCGCAGCCTGGCGCAGATCAGCCGGCGCCAAGACATGCCCGGCCTGTACTACGACAATATCTACGGCAACCTCGAACTGCGTGAGCAGATCGCCCGGCTGTCCCTGGACTCGGGCTGCCAACTCGGCGCCAGCGACCTGATCGTCACCACCGGTTGCCACGAGGCGCTGTCGGTCAGCATCCGCGCCACCTGCGAGCAGGGCGACATCGTTGCGGTGGACTCCCCCAGCTTCCACGGTGCCATGCAGACGCTGAAGGGCCTGGGCATGAAGGCTTTGGAAATACCCACCGATCCGCTCACCGGCATCAGCCTGGAAGCGCTGGAACTGGCACTTGAGCAATGGCCGATCAAGGCCATACAGTTGACCCCCAGCTGCAACAACCCGCTGGGCTACATCATGCCGGAGGCCAACAAGCGCGCTTTGCTGACCCTGGCGCAGCGCTTCGATGTGGCGATTATCGAAGACGATGTGTATGGGGAACTGGCCTACACCTATCCGCGTCCTCGCACCATCAAGTCCTTCGACGACGATGGTCGCGTCCTGCTCTGCAGTTCTTTTTCCAAGACCCTTGCCCCTGGCCTTCGGGTCGGCTGGGTAGCGCCGGGGCGCTATCTGGAACGGGTGCTGCACATGAAATACATCAGCACCGGCTCGACCGCGCCGCAACCCCAGATAGCCATCGCGGAGTTTCTCAAAGGCGGGCACTTCGAACCACATTTGCGGCGGATGCGCAGCCAATACCAGCGCAATCGTGACGTGATGATTGATTGGGTCAGCCGTTATTTCCCGGTAGGTACCCGCGCCAGCCGTCCCCGCGGCAGCTTCATGCTGTGGGTCGAATTGCCCGAGGGCTTTGACACATTGAAGCTCAACCGGATGCTGCACGACCAAGGCGTGCAGATCGCCGTCGGCAGTATCTTTTCGGCCTCGGGCAAATATCGCAATTGCCTGCGCATGAACTACGCTGCCAAGCCAACGGCACAGATCGAGGATGCGGTGCGCAAGGTTGGTGCCGTGGCTATAGCGTTGTTGAACGAAACCCAGCGAGACACCGTCTGAMTLYVNLAELLGTRIEQGFYRPGDRLPSVRALSTEHGVSLSTVQQAYRVLEDSGLAMPKPKSGYFVPVSRELPDLPAVGRPAQRPVDISQWDQVLELIRAVPRKDVVQLGRGMPDIHSPTMKPLLRSLAQISRRQDMPGLYYDNIYGNLELREQIARLSLDSGCQLGASDLIVTTGCHEALSVSIRATCEQGDIVAVDSPSFHGAMQTLKGLGMKALEIPTDPLTGISLEALELALEQWPIKAIQLTPSCNNPLGYIMPEANKRALLTLAQRFDVAIIEDDVYGELAYTYPRPRTIKSFDDDGRVLLCSSFSKTLAPGLRVGWVAPGRYLERVLHMKYISTGSTAPQPQIAIAEFLKGGHFEPHLRRMRSQYQRNRDVMIDWVSRYFPVGTRASRPRGSFMLWVELPEGFDTLKLNRMLHDQGVQIAVGSIFSASGKYRNCLRMNYAAKPTAQIEDAVRKVGAVAIALLNETQRDTVNANANANANA
D1-35_02979246hypothetical proteinATGAACGGCTTGAGCGATGTACGGCTGACGTTACACAGTCAGGAACTGGCGGCGGGGCAGGAAAAGGGGCTGCGTGATGCCATGCTGCGCAATGCCCCGTCCGGCTTGAGCCGCTGGGGCCTGTTCTGGCATCGTCTGCATACACGCAAGGCCTTGTTGGAGCTGACAACCGAACAGTTGCGCGATATCGGCCTGAGCCGGGAGCAGGCCCGGGCGGAAGGGTTGAAGCCGTTCTGGCGGCTTTGAMNGLSDVRLTLHSQELAAGQEKGLRDAMLRNAPSGLSRWGLFWHRLHTRKALLELTTEQLRDIGLSREQARAEGLKPFWRLNANANANANA
D1-35_029801314puuB_3Gamma-glutamylputrescine oxidoreductaseATGAACGCCCGTGTTCAGCAACCTGTCCCGAGCCACGCGCACGCCGCCTCCTACTACGCCGCCAGCAGCCTGCCGCAGCCGGACCATCCGGTGCTGCAAGGCGAGTTGGTGGCGGATGTCTGCGTGGTGGGCGGCGGGTTCTCCGGGCTGAACACAGCCATCGAGCTGGCCGAGCGCGGCCTGAGTGTGGTGCTGCTTGAGGCTCATAAGATCGGTTGGGGCGCCAGCGGGCGGAACGGCGGCCAACTGATTCGCGGCGTGGGCCATGGTCTCGATCAGTTTGCGCCAATCGTGGGCACCGACGGCGTGCGTCAGATGAAATTGATGGGGCTCGAAGCGGTGGAAATCGTCCGCCAGCGGGTCGATCGTTTTCAGATTCCTTGCGACCTCACCTGGGGCTACTGCGACCTCGCCAACAAACCCGCCGATCTTCAGGGTTTCGCCGAGGATGCCGAAGAACTCCGCAGCCTGGGCTATCGCTACGAGACGCGACTGCTGCAAGCCGATGAAATGCACAGCGTGGTGGGCTCGGATCGCTATGTTGGTGGCCTGGTCGACATGGGCTCGGGCCACCTGCATCCGCTCAACCTGGCGTTGGGAGAGGCGGCCGCAGCGCAGCAACTGGGGGTCCGGCTGTTCGAACGATCGGCGGTGATACGCATCGACTACGGGCCACAGGTAAAAGTACACACCCAACAAGGCTCGGTCCGCGCCACGACACTGGTGCTGGGCTGCAATGCCTACCTCAACGGCCTGAACCAGGAGCTGAGCGGCAAAGTGCTGCCCGCTGGCAGCTATATCATTGCCACCGAACCGCTGAGCGAAGCGCAGGCAAACGCGCTGTTGCCACAGAACATGGCGGTCTGTGACCAGCGGGTGGCGCTGGATTACTACCGGCTTTCGGCGGATCGACGCTTGTTGTTTGGCGGGGCTTGTCACTATTCCGGCCGAGACCCGCAAGACATCGGCGCGTACATGCGGCCGAAAATGCTCAAGGTCTTCCCGCAACTGGCAGACGTGAAGATCGATTATCAATGGGGCGGGATGATCGGCATCGGCGCCAACCGCCTGCCGCAGCTCGGCCGGCTCAAGGATCAGCCCAACGTGTATTACGCCCAGGCCTATTCCGGTCATGGGGTGAATGCCACGCACCTGGCCGGCAAGTTGTTGGCCGAGGCTATCAGCGGCCAGCAGGGCGGTGGGTTCGACCTGTTTGCCAAGGTACCGCACATGACATTCCCGGGCGGCAAGCATTTGCGCTCGCCGCTGTTGGCGCTGGGGATGTTGTGGCACCGGTTGAAAGAATTGATCTGAMNARVQQPVPSHAHAASYYAASSLPQPDHPVLQGELVADVCVVGGGFSGLNTAIELAERGLSVVLLEAHKIGWGASGRNGGQLIRGVGHGLDQFAPIVGTDGVRQMKLMGLEAVEIVRQRVDRFQIPCDLTWGYCDLANKPADLQGFAEDAEELRSLGYRYETRLLQADEMHSVVGSDRYVGGLVDMGSGHLHPLNLALGEAAAAQQLGVRLFERSAVIRIDYGPQVKVHTQQGSVRATTLVLGCNAYLNGLNQELSGKVLPAGSYIIATEPLSEAQANALLPQNMAVCDQRVALDYYRLSADRRLLFGGACHYSGRDPQDIGAYMRPKMLKVFPQLADVKIDYQWGGMIGIGANRLPQLGRLKDQPNVYYAQAYSGHGVNATHLAGKLLAEAISGQQGGGFDLFAKVPHMTFPGGKHLRSPLLALGMLWHRLKELIPGPT0007637_416DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINE_USAGEPLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007637-puuB|ordL-K09471NANA
D1-35_02981363hypothetical proteinATGGCCTCGATGAGCTGCAACAGTCAAAAAATCCGCACGCTACGTCAGCAGATTCCTACGTTCGAGTGCGTACCGGGCTGTCATGACTGCTGTGGTCCGGTGACCACCTCGCCCGAAGAAATGGCTCGTTTGCCACGCAAGAGCCGCGCCGAACAGGACGCGGCCCTGGAGGCGCTCGATTGCGTGCACCTGGGGCCGAACGGTTGCACGGTCTACGATGAAAGGCCGCTGATCTGCCGGTTATTCGGCACCACCGCGACCTTGCCATGCCCTAATGGGCGGCGGCCGGTTGAGCTGATTCATCCGCGGGTCGAGAAGCAGATTCATGCATACATGGCCAGCACTCGGCAGGTGTTGGTCTAGMASMSCNSQKIRTLRQQIPTFECVPGCHDCCGPVTTSPEEMARLPRKSRAEQDAALEALDCVHLGPNGCTVYDERPLICRLFGTTATLPCPNGRRPVELIHPRVEKQIHAYMASTRQVLVNANANANANA
D1-35_02982489lrp_4COG1522Leucine-responsive regulatory proteinGTGCGTACCAATACCCAGACCAAACGCGAGCTGGACAAGATCGACCGCAACATCCTGCGCATCCTCCAGGCCGACGGGCGAATTTCTTTCACCGAGCTGGGGGAAAAGGTCGGGCTTTCCACCACGCCTTGCACCGAGCGGGTGCGACGGCTGGAGCGCGAGGGGATCATCATGGGCTACAACGCCCGGCTCAATCCGCAGCACTTGAAGGGCAGCCTGCTGGTGTTCGTCGAAATCAGCCTCGACTATAAATCCGGCGACACGTTCGAAGAGTTCCGACGTGCCGTGCTGAAGTTGCCTCACGTACTGGAATGCCACCTGGTGTCGGGGGATTTCGACTATCTGGTGAAGGCGCGAATTTCCGAGATGGCCTCGTACCGCAAGCTGCTGGGCGACATCCTGCTCAAGCTGCCCCACGTTCGTGAGTCCAAGAGCTACATCGTGATGGAGGAAGTGAAGGAGAGCCTGAACCTGCCGATTCCGGATTGAMRTNTQTKRELDKIDRNILRILQADGRISFTELGEKVGLSTTPCTERVRRLEREGIIMGYNARLNPQHLKGSLLVFVEISLDYKSGDTFEEFRRAVLKLPHVLECHLVSGDFDYLVKARISEMASYRKLLGDILLKLPHVRESKSYIVMEEVKESLNLPIPDPGPT0014049_198DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014049-doeX-K15782NANA
D1-35_029831305dadA1_1COG0665D-amino acid dehydrogenase 1ATGCGCGTCTTGGTCTTGGGTAGCGGCGTCATCGGTACCGTCAGTGCTTACTATCTGGCACGTGCCGGGTTTGAAGTGGTGGTGGTCGACCGTCAGCCGGCGCCAGCCATGGAAACCAGCTTCGCCAACGCTGGCCAGGTATCGCCGGGCTACGCCTCGCCGTGGGCTGCGCCGGGTGTGCCACTCAAGGCCATCAAGTGGCTGCTGCAGCGTCACGCGCCGCTGGCAATCAAGGCCACCGCCGACATCGACCAGTACCTGTGGATGGCGCAGATGCTGCGCAACTGCACCGCCAGCCGCTACGCGATCAACAAGGAGCGCATGGTCCGCCTGTCCGAGTACAGCCGTGACTGCCTCGACGAATTGCGCGCCGAAACCGGCATTGCCTACGAAGGTCGCAGCCTGGGGACTACCCAATTGTTCCGCACCCAGGCCCAGCTCGATGGCGCGGCCAAGGACATCGCCGTGCTCAAGGAGTCGGGCGTGCCGTTTGAAGTGCTCGATCGCGAAGGCATCGCCCGGGTCGAACCGGCCCTGGCCAATGTCACCGACATCCTGGCCGGTGCGCTGCGCCTGCCCAATGACCAGACCGGCGATTGCCAGATGTTTACCACGCGCCTCGCGGAAATGGCCGTGAAGCTCGGCGTACAATTTCGCTTCGACCAGAACATCGAGCGCCTGGATTTTGCCGGGGATCGCATCAATGGTGTCTGGATCGACGGCAAGCTGGAAACCGCCGACCGTTATGTCCTGGCCCTGGGCAGCTATTCGCCGCAATTACTCAAGCCGCTGGGTATCCGCGCGCCGGTGTATCCACTCAAGGGCTATTCCCTGACCGTGCCGATCACCAATGCGGCGATGGCGCCGACCTCGACCATCCTCGACGAAACCTACAAGGTTGCGATCACCCGGTTCGACAACCGGATTCGCGTCGGCGGCATGGCGGAAATCGCCGGTTTTGACCTCTCGCTCAACCCGCGTCGGCGTGAAACCCTGGAGATGATCGTCAACGACCTTTATCCTCAGGGCGGCGACCTGGCCCAGGCCAGTTTCTGGACCGGCCTGCGCCCGACCACCCCGGACGGCACGCCGATAGTCGGCGCCACGCCGTTCAAGAATCTGTTCCTCAATACCGGCCACGGCACCCTCGGGTGGACCATGGCCTGTGGTTCCGGTCGCCTTCTGGCGGACCTGATGGCGAAGAAAAAGCCGCAGATCAGCGCCGAAGGCCTCGATATTTCCCGTTATGGCAGCAAACCTCAGGAGTCCGCTAAACATGGCAATCCAGCGCCAGCTCACCAATGAMRVLVLGSGVIGTVSAYYLARAGFEVVVVDRQPAPAMETSFANAGQVSPGYASPWAAPGVPLKAIKWLLQRHAPLAIKATADIDQYLWMAQMLRNCTASRYAINKERMVRLSEYSRDCLDELRAETGIAYEGRSLGTTQLFRTQAQLDGAAKDIAVLKESGVPFEVLDREGIARVEPALANVTDILAGALRLPNDQTGDCQMFTTRLAEMAVKLGVQFRFDQNIERLDFAGDRINGVWIDGKLETADRYVLALGSYSPQLLKPLGIRAPVYPLKGYSLTVPITNAAMAPTSTILDETYKVAITRFDNRIRVGGMAEIAGFDLSLNPRRRETLEMIVNDLYPQGGDLAQASFWTGLRPTTPDGTPIVGATPFKNLFLNTGHGTLGWTMACGSGRLLADLMAKKKPQISAEGLDISRYGSKPQESAKHGNPAPAHQPGPT0020315_363DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_D-AMINO_ACID_DEGRADATION,PGPT0020315-dadA-K00285NANA
D1-35_02984354hypothetical proteinATGGCAATCCAGCGCCAGCTCACCAATGACCGCATGAGTCAGGTCGTTGTGCACAACGGCACCGTTTACCTGGCCGGGCAGGTCGGCGACGACATGAGCGCCGGCATCGAGCAGCAGACCCGCGAGACCTTGGCAAATATCGAGCGTCTGCTGGACCTGGCCGGGACCGACAAGAGCCGCCTGCTGTCGGTGACGATCTACCTGAAGGACATCGACGCCCATTTTCAAGGCATGAATGCGGTGTGGGACAAATGGCTGCCCAAGGGCGTCGCCCCGGCCCGCGCCACTGTCGAGGCCAAGTTGTGCGAACCGCAGATCCTGGTCGAGCTGTCCGTGGTGGCCGCGCTGCCCTGAMAIQRQLTNDRMSQVVVHNGTVYLAGQVGDDMSAGIEQQTRETLANIERLLDLAGTDKSRLLSVTIYLKDIDAHFQGMNAVWDKWLPKGVAPARATVEAKLCEPQILVELSVVAALPPGPT0020030_24DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020030-ridA|tdcF-K09022NANA
D1-35_029851074alrAlanine racemaseATGCGTCCTGCCCGTGCCCTGATCGATCTCCAAGCCCTGCGTCATAACTACCAACTGGCCCGTGAAGTTACTGGGACCAAGGCCCTTGCAGTGATCAAGGCCGACGCCTACGGGCATGGCGCGGTGCGCTGCGCCGAGGCTTTGCAGGAGACGGCGGATGGGTTCGCCGTGGCCTGCATTGAAGAGGCCCTGGAACTGCGGGCCGGTGGTATACGTGGGCCGATCCTGTTGCTGGAAGGGTTCTTCGAGGCCGATGAGCTGGCATTGATCGTCGAGCACGACTTCTGGTGTGTCGTGCATGCGTTGTGGCAGCTAGAAGCGATAGAGCGCGCGACGCTGGGCAAGCCGATCACGGTCTGGCTCAAGCTCGACTCGGGCATGCATCGGGTCGGTTTGCATCCGGCCGATTATCAATCGGCCTATCGTCGCCTGCTGGCGAGTGGCAACGTGGCGAAAATCGTCCTGATGAGCCACTTCGCCCGCGCCGACGAGCTGCACGACCCGAGCAGCCTCCAACAATTGGCGGTATTCGAGCAGGCCCGCCAGGGCCTGGTGGCTGAGGTCAGCCTGCGCAACTCGCCCGCGGTGCTGGGTTGGCCGCAGATACCGAGCGACTGGGTGCGGCCGGGCATCATGCTGTACGGCGCGACACCCTTCGACGAAGCCAATGCCATGGCTTCGCGCCTGCAACCGGTGATGACCCTGGAGTCGAAGATCATCAGCGTGCGCGAGCTTCCCGCCGGCGAGCCGGTGGGCTACGGTGCCCGTTTCGTCACCGCCCAGCCGACCCGGGTCGGCGTGGTTGCCATGGGGTATGCCGACGGTTACCCGCGCCAGGCGCCCAACGGTACGCCAGTGCTGGTGGATGGCCAGCGCAGCCAACTGGTCGGGCGGGTCTCGATGGACATGCTGTGTGTCGACCTGAGCCATATTCCCCAGGCCGGGCTCGGCTCGACCGTCGAACTCTGGGGCAAGAGCATTCTCGCCAGCGATGTGGCGCAGGCCGCCGACACGATTCCTTACCAGATATTCTGCAACCTGCGACGTGTCCCACGGCTCTATTCCGGGACCTGAMRPARALIDLQALRHNYQLAREVTGTKALAVIKADAYGHGAVRCAEALQETADGFAVACIEEALELRAGGIRGPILLLEGFFEADELALIVEHDFWCVVHALWQLEAIERATLGKPITVWLKLDSGMHRVGLHPADYQSAYRRLLASGNVAKIVLMSHFARADELHDPSSLQQLAVFEQARQGLVAEVSLRNSPAVLGWPQIPSDWVRPGIMLYGATPFDEANAMASRLQPVMTLESKIISVRELPAGEPVGYGARFVTAQPTRVGVVAMGYADGYPRQAPNGTPVLVDGQRSQLVGRVSMDMLCVDLSHIPQAGLGSTVELWGKSILASDVAQAADTIPYQIFCNLRRVPRLYSGTPGPT0020040_4758DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_RELATED_RACEMASES,PGPT0020040-alr-K01775NANA
D1-35_02986549puuRHTH-type transcriptional regulator PuuRTTGGACGTCGGTGAACGACTGCAATCCATTCGTAAACTCAAAGGCCTTTCCCAGCGTGAACTCGCCAAGCGCGCGGGCGTCACCAACAGCACTATTTCGATGATCGAGAAAAACAGCGTGAGCCCCTCGATCAGCTCGCTGCGCAAGGTCCTTGGCGGGATTCCCATGTCCATGGTCGAGTTTTTCTCCGAAGAGATCCTCCAGGAGAAACCGACCCAGATCGTCTATAAAGCCAACGAACTGATCGACATCTCCGACGGCGCCGTGACCATGAAACTGGTGGGCCGGGCGCATCCGAGCCGGGCGATTGCCTTCCTGAACGAAATCTATCCGCCTGGCGCCGACACCGGTGACGAAATGCTCACCCACGAGGGCGAGGAAACCGGGATCCTGGTGGAAGGGCGACTGGAACTGGTGGTGGGCGCAGAAACCTTCGTGCTCGAGGCCGGCGACAGCTACTATTTTGAAAGTACCAAGCCACATCGTTTCCGCAATCCGTTCGACGTGCCGGCGCGACTGATCAGCGCAGCCACTCCGGCGAATTTCTAGMDVGERLQSIRKLKGLSQRELAKRAGVTNSTISMIEKNSVSPSISSLRKVLGGIPMSMVEFFSEEILQEKPTQIVYKANELIDISDGAVTMKLVGRAHPSRAIAFLNEIYPPGADTGDEMLTHEGEETGILVEGRLELVVGAETFVLEAGDSYYFESTKPHRFRNPFDVPARLISAATPANFPGPT0019781_117DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINE_USAGEPLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0019781-puuR-K14056NANA
D1-35_02987279COG3245Cytochrome c5ATGGAAGTGGCCACTGCAGCCGGCGGCGCAGGCGGTGCCAAGGCACCCAAAGACGTCATTGCCAAGCATTGCAACGCCTGCCACGGCACTGGCCTGCTGGGCGCTCCGAAAATCGGTGACAAGGCGGCCTGGAAAGAGCGCGCCGATCACCAGGGCGGCCTCGACGGCATCCTGGCCAAGGCTATTACTGGCGTAAACGCCATGCCGCCCAAAGGCACTTGCGCCGACTGCTCCGATGATGAGCTCAAGGGCGCCATCAAAGAGATGTCCGGCCTGTAAMEVATAAGGAGGAKAPKDVIAKHCNACHGTGLLGAPKIGDKAAWKERADHQGGLDGILAKAITGVNAMPPKGTCADCSDDELKGAIKEMSGLPGPT0004040_3DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FoxABCD,PGPT0004040-coxD|ctaF-K02277NANA
D1-35_029881935butyrate:acetyl-CoA coenzyme A-transferaseATGGTGCAGTTGTGTTCAATCGAACAGGCAGTGGATGACGTGCTCGAGCGCTTGCCCGCGCATATCCACCTGGGCATGCCATTGGGGCTGGGCAAGCCCAACCTGTTCGCCAACGCGCTGTACCGGCGCATCGCCCAACTGCCCGAGCGGCAGCTGACTATCTACACGGCGTTGAGCCTGGGTCGACCGAGCCTGGGCGACGGTTTGCAGAAGCGTTTCCTCGAGCCCTTCGTCGAACGGGTCTTCGGCGACTATCCCGAACTCGATTACCTTGCCGATCTGCAGCGCGACAGCCTGCCGGCAAACATCCGCGTGCAGCAATTCTTCATGCAGCCCGGCAGCCTGCTGCACAGTGCAGCGGCGCAGCAGGACTACGTCAGCAGCAACTACAGCCACGCGGCGCGGGACATCAACGCGGCCGGCCTGAACCTGATTGCGCAATTGGTGGCGAGCGACCCGGAACATCCGGATCGCCTGAGCCTGAGCTGCAACCCGGACATCACCCTGGACCTGTTGCCGATGATTGCCAGGCGACGCGAGGCGGGCGAGACCATCCTCATGGTCGGGCAGGTCCACAGCGAATTGCCCTACATGCCCGGTGATGCGGAAATCGGCATTGACGCTTTCGACCTGCTGATCGACGAGAAGGACAGCCACACGCTGTTCTCCACGCCGAACATGCCGGTGGGGTTCCAGGACCATTTGATCGGCCTGCATGCCAGCACCCTGGTGCGTGACGGCGGTACGTTGCAGATCGGCATCGGCTCCATGGGCGATGCGTTGACGGCGGCGCTGTTGGCGCGCCAGGCCGATAACGCTGGTTACCAGGCGTTGTTGGCGGACCTGAATCTCAGCCAGTGGGCGCAGTTGATCGAGCGTGAAGGCGGGACCGAGCCGTTTGCCAAAGGGCTTTACGGTTGCAGCGAAATGTTCGTCAACGGTTTGCTGGTGCTTGCGGAGGCCGGGATTATCCGGCGCAAGGTCTATCCCGATGAGCCGACCCAGGAGCAGGCGAACGCCGGAACGCTCGACGAGGCGGCGCAACCCGACGGCATTTGCATCCATGGCGGGTTCTTCCTCGGCCCGGGCAGCTTCTACGAGCGTTTGCGCGAGTTGCCGCAGAGCCGGCGCTTCGAATTCAACATGACGCGCATCAGCTACATCAACGAGTTGTACGGCCAGGAACAACTCAAGCGCCTGCAGCGGCTTGATGCGCGTTTCATCAACACGGTGTTCACCATGACGTTGCTCGGTGCCGGGGTGGCTGACCAATTGGAAGACGGGCGGGTGCTCAGCGGTGTGGGTGGGCAATACAACTTTGTTGCCCAAGGGCATGCGCTGGAAGGGGCGCGCTCGATCCTGCTGCTGCGCAGTTGGCGCGAGTCAGGCGGCGTGGTCAGCTCCAATATCGTCTGGGAATACGGGCATTGCACGATTCCCCGGCACCTGCGGGACATCGTCGTGACCGAGTACGGCATTGCCGACCTGCGCGGCAAGACCGACGCGGCGGTGATCGAGGCATTGCTCAACATCAGCGATTCACGCTTTCAGCCGGGGCTGATCGAGCAGGCCCAGAGCTCCGGCAAATTGCCGAAGGATTTCCGTCTCGACCCACGTTTCGCCGACAACACGTCGGAGCGTTTGCAGGCGATCCAGGCGCGGCATCCCAATCTGTTCCCGGAATATCCGTTGGGCTGCGATTTCGATGGGCTGGAGCGGGATCTGCTGCGGGCGCTGAACTGGCTCAAGAGCAAGTTCAAGCTCACCGAGATCCTGGAGTTGGGCAAGGCCGCGCTGGATGCACCGGAGCCCTGGGAGTTTGCCGGGCATCTGGAACGGATGCAGCTGACGAGCCCGGAGGGGCTGAAGGAAGAGTTGGCCCAGCGGTTGCTGCTGGCGGGGCTGAAGGCGACCGTGCAACAAACAGCAACCTGAMVQLCSIEQAVDDVLERLPAHIHLGMPLGLGKPNLFANALYRRIAQLPERQLTIYTALSLGRPSLGDGLQKRFLEPFVERVFGDYPELDYLADLQRDSLPANIRVQQFFMQPGSLLHSAAAQQDYVSSNYSHAARDINAAGLNLIAQLVASDPEHPDRLSLSCNPDITLDLLPMIARRREAGETILMVGQVHSELPYMPGDAEIGIDAFDLLIDEKDSHTLFSTPNMPVGFQDHLIGLHASTLVRDGGTLQIGIGSMGDALTAALLARQADNAGYQALLADLNLSQWAQLIEREGGTEPFAKGLYGCSEMFVNGLLVLAEAGIIRRKVYPDEPTQEQANAGTLDEAAQPDGICIHGGFFLGPGSFYERLRELPQSRRFEFNMTRISYINELYGQEQLKRLQRLDARFINTVFTMTLLGAGVADQLEDGRVLSGVGGQYNFVAQGHALEGARSILLLRSWRESGGVVSSNIVWEYGHCTIPRHLRDIVVTEYGIADLRGKTDAAVIEALLNISDSRFQPGLIEQAQSSGKLPKDFRLDPRFADNTSERLQAIQARHPNLFPEYPLGCDFDGLERDLLRALNWLKSKFKLTEILELGKAALDAPEPWEFAGHLERMQLTSPEGLKEELAQRLLLAGLKATVQQTATNANANANANA
D1-35_02989573xptCOG0503Xanthine phosphoribosyltransferaseATGGAAGCCCTGCACCAGAAAATTCGTGAACAAGGCATCGTGCTTTCCGATCAGGTCCTGAAGGTTGATGCGTTCCTCAACCACCAGATCGACCCGCAGTTGATGAAGCTGATCGGCGACGAATTCGCCGCGCTGTTCAAGGATTCGGGCATCACCAAGATCGTCACCATCGAGGCCTCGGGCATCGCCCCGGCGATCATGACCGGGCTGAACCTTGGCGTGCCGGTGATCTTCGCGCGCAAACAGCAGTCGCTGACCCTGACGGAGAACCTGTTGTCCGCCACCGTGTATTCGTTCACCAAGAAGACCGAAAGCACCGTCGCCGTCAGCCCGCGCCACCTGACCAGCAGCGACCGAGTGCTGATCATCGATGACTTCCTGGCCAACGGCAAAGCCTCCCAGGCGCTGATTTCCATCATCAAGCAGGCCGGCGCTACCGTGGCCGGGCTGGGCATCGTGATCGAGAAATCCTTCCAGGGTGGCCGCGCTGAGCTGGATGCCCAGGGCTACCGCGTCGAGTCGTTGGCGCGGGTGAAATCGCTGGCGGGTGGGGTAGTGACGTTCATCGACTGAMEALHQKIREQGIVLSDQVLKVDAFLNHQIDPQLMKLIGDEFAALFKDSGITKIVTIEASGIAPAIMTGLNLGVPVIFARKQQSLTLTENLLSATVYSFTKKTESTVAVSPRHLTSSDRVLIIDDFLANGKASQALISIIKQAGATVAGLGIVIEKSFQGGRAELDAQGYRVESLARVKSLAGGVVTFIDPGPT0007305_856DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0007305-xpt-K03816NANA
D1-35_029902049rep_1COG0210ATP-dependent DNA helicase RepATGCCGGCCCATTTCGCAAACGACTCCCTGAACCCTGTCATGTCCCGACTCAATCCCCGGCAGCAAGAAGCCGTGAACTATGTCGGCGGCCCTCTTTTGGTGCTCGCCGGTGCAGGCTCCGGCAAGACCAGCGTGATCACCCGCAAGATCGCGCACCTGATCCAGAATTGCGGCATCCGCGCCCAGTACATCGTCGCGATGACTTTCACCAACAAGGCCGCGCGGGAAATGAAGGAACGGGTCGGCGGTCTGTTGCGCGCCGGCGAAGGCCGTGGCCTGACGGTCTGTACGTTCCACAACCTGGGCCTGAACATCATTCGCAAGGAACACGCGCGACTTGGCTACAAGCCGGGCTTCTCGATTTTCGACGAGACCGACGTCAAGGCCTTGATGACCGACATCATGCAGAAGGAATACTCGGGCGACGACGGCGTCGACGAGATCAAGAACATGATCGGCGCCTGGAAAAACGACCTGATCCTGCCGCCCGAAGCCCTGGAGAACGCCCGCAACCCCAAGGAACAGACCGCCGCCATCGTCTACGCCCACTACCAGCGCACCCTCAAGGCCTTCAACGCGGTGGACTTCGACGACCTGATCCTGCTGCCGGTCAAGCTGTTCCAGGACCACGCCGACATCCTTGAGAAATGGCAGAACAAAGTCCGTTACCTATTGGTGGACGAATATCAGGACACCAACGCCAGCCAGTATCTGCTGGTGAAACTGCTGATCGGCAAACGCAACCAGTTCACCGTGGTCGGCGACGATGACCAGTCGATCTACGCCTGGCGCGGCGCGCGGCCGGAAAACCTGATGTTGCTCAAGGAAGACTACCCATCGCTCAAGGTGGTGATGCTGGAGCAGAACTATCGCTCCACCAGCCGCATCCTGCGCTGCGCCAACGTGCTGATCTCCAACAACCCCCACGAATTCGAAAAGCAGCTGTGGAGCGAAATGGGTCACGGTGACGAGATCCGTGTGATCCGTTGCCGCAACGAAGACGCCGAAGCCGAGCGCGTGGCCATGGAAATCCTCAGCCTGCACCTGCGCACCGACCGGCCCTACAGCGATTTTGCGATCCTCTATCGCGGCAACTACCAGGCCAAGCTGATCGAGCTGAAGTTGCAGCATCACCAGATCCCCTATCGTCTGTCGGGGGGCAACAGCTTCTTCGGACGCCAGGAAGTGAAGGACCTGATGGCCTACTTCCGCCTGATCGTGAACCCGGACGACGATAACGCCTTCTTGCGGGTGATCAACGTGCCACGCCGGGAAATCGGTTCGACCACCCTGGAAAAACTCGGCAACTACGCCACCGAGCGCAAGATCTCGATGTACGCCGCCACCGATGAAATCGGCTTGGGCGAACATCTGGACAGCCGCTTCACCGACCGCCTGGCGCGCTTCAAACGCTTCATGGACAAGGTCCGCGAGCAGTGTGCCGGCGAAGACCCGATCGCGGCGCTGCGCAGCATGGTCATGGACATCGACTATGAAAACTGGCTGCGCACCAACAGTTCCAGCGACAAGGCCGCCGACTACCGCATGGGCAACGTCTGGTTCCTGATCGAAGCGCTGAAAAACACTTTGGAAAAGGATGAAGACGGCGACATGACCGTCGAGGACGCCATCGGCAAGCTCGTTTTGCGGGATATGCTCGAGCGGCAGCAGGAAGAGGAAGAAGGCGCCGAAGGCGTCCAGATGATGACGCTGCACGCCTCCAAGGGCCTGGAATTTCCCTACGTGTTCATCATGGGCATGGAAGAGGAAATCCTCCCGCACCGCTCCAGCATCGAAGCCGACACCATTGAAGAAGAACGGCGCCTGGCCTACGTCGGGATTACCCGGGCGCGCCAGACGCTGGCCTTCACCTTCGCCGCCAAGCGCAAGCAGTACGGCGAAGTGATCGACTGCGCCCCGAGCCGTTTTCTCGATGAACTGCCGCCGGACGACTTGGCCTGGGAGGGCAATGACGACACGCCGACGGAAGTCAAAGCCGTTCGCGGCAACAGCGCCCTGGCGGATATACGCGCGATGTTGAAGCGCTAGMPAHFANDSLNPVMSRLNPRQQEAVNYVGGPLLVLAGAGSGKTSVITRKIAHLIQNCGIRAQYIVAMTFTNKAAREMKERVGGLLRAGEGRGLTVCTFHNLGLNIIRKEHARLGYKPGFSIFDETDVKALMTDIMQKEYSGDDGVDEIKNMIGAWKNDLILPPEALENARNPKEQTAAIVYAHYQRTLKAFNAVDFDDLILLPVKLFQDHADILEKWQNKVRYLLVDEYQDTNASQYLLVKLLIGKRNQFTVVGDDDQSIYAWRGARPENLMLLKEDYPSLKVVMLEQNYRSTSRILRCANVLISNNPHEFEKQLWSEMGHGDEIRVIRCRNEDAEAERVAMEILSLHLRTDRPYSDFAILYRGNYQAKLIELKLQHHQIPYRLSGGNSFFGRQEVKDLMAYFRLIVNPDDDNAFLRVINVPRREIGSTTLEKLGNYATERKISMYAATDEIGLGEHLDSRFTDRLARFKRFMDKVREQCAGEDPIAALRSMVMDIDYENWLRTNSSSDKAADYRMGNVWFLIEALKNTLEKDEDGDMTVEDAIGKLVLRDMLERQQEEEEGAEGVQMMTLHASKGLEFPYVFIMGMEEEILPHRSSIEADTIEEERRLAYVGITRARQTLAFTFAAKRKQYGEVIDCAPSRFLDELPPDDLAWEGNDDTPTEVKAVRGNSALADIRAMLKRNANANANANA
D1-35_029911671hypothetical proteinTTGTCTACGCCTGTCGAACCCTTGCGTTTGCTCTTATTGGCCGAAACGCCTGAGTGGTCAGCGATATTGCGCGAGTGCCTGGCGCCCATGGGCCCCTCGGTCGTGTTGATCAGCGCCCCGAGCTGGGAGTCGGTCAGCAGCCTGTTCGAAGACAACCGCAATGCGGTCCTGTTGACTGTCGCTGCTTTGCAACCAGCGCCCGGTCGTTGCCGCCTGCCAACGGTGCTGTTGCTTGAGCACGAGCCGGCGACTCCCCCGGACGGCGTCAGCGACTGGCTGGTGCGTGACGTACTCGATGAGGCGACGCTGCGTCGTTGCCTTCGTCATGTGCGCGAGCGCGGGGTGCTGGAAAACACTCTGCAACGGCTCGCCGAGCAGGACCCGTTGACCGGCATCGCCAACCGCCAAGGCTTCCAGACCCTGCTGGCGGCACGCCTGGCTGAAAACGAAGGCCGTGGCCTGGCGCTCGGCCATCTGGATCTGGATAACTTTCGTCACGCCAACGACGCGCTCGGTCATCAGGCCGGCGACCGTCTGATCCTGCAGGTGGTCTCGCGGCTCAAGGGCGCGCTGGAAGTCGGTGATCAACTGGCGCGGCTGGGCAGCGACGAATTCGCCCTGCTGATCGATACCCGCCGCGCGCCCCAGCGGGCCGAGTGGATGGCTGAGCGCATCACCGAAGCCATGGCCGAACCCTACTGGGTCGATGGCGAAAGCCTGCTGATCGGCTGCAGCCTGGGGATCGCCCATGCTCGCGCCCAGGCCGGTGCCGACCCGCTGATGTGGCACGCGCATATCGCCATGCAGCAGGCCAAGAGCACGCAAGGCTGCACTTTTCATATCTTCAATGAGCGCATCAATCGCAACGCCCGCAGTCTCGCCGACCTGGAAAGCGAACTGCGCCGGGCGCTGCGTCGCGACGAACTGGAATTGCATTACCAGCCGCGGCTGAACCTTGCCGATGGCACCATCGTCGGCCTCGAAGCCCTGGTGCGCTGGCGTCACGGCGAGCGCGGGCTGTTGCCGCCGAGCGAATTCGTGCCACTGGCCGAGCAGAGCGGCCTGATCGTACCGTTGGGCTACTGGGTAATTTCCCGGGCGTTACGGGACATGCAGGCCTTGCGCGAGCGCGGGCTCGCGCCGCTGCATATGGCGATCAACCTGTCGTTCCGGCAATTCCAGGACAGTCAGCTGCTGCCGACCTTGAGTCGGTTGATCAGCGAACGGGGTGTCGAGGCCCAGTGGCTGGAGTTCGAACTCACCGAAACCGCCGTCATGCGTCGCAGCGAAATGGTCAAGCAGACCATGGATGCCTTGGGCCGCCTGGGCGTGCGGTTCTCCCTGGACGATTTCGGTACCGGATTTTCCTCCTTCGTGCACCTCAACAGCCTGCCCATCGCCCTGCTCAAGATCGACAAGAGTTTCGTTGGCGGCATGGAGCAGCGTGAAGAGAACCGCAAGCTGGTGCACGCGATGATCAACCTGGCCCATAACCTCAATCTTGAAGTCGTGGCCGAAGGCGTCGAGACCCGTGAACAGATGGATCTGCTGCGGGGTTTCGGTTGCGATCAGGTGCAGGGCTTCCTGATCAGCAAGCCGCTGCCGTTGGTGGAGTTGGTTGAATACCTGGCGTTTGAGGGTGGCCAGGCGACGCAGGAAATCGTGAGCTGAMSTPVEPLRLLLLAETPEWSAILRECLAPMGPSVVLISAPSWESVSSLFEDNRNAVLLTVAALQPAPGRCRLPTVLLLEHEPATPPDGVSDWLVRDVLDEATLRRCLRHVRERGVLENTLQRLAEQDPLTGIANRQGFQTLLAARLAENEGRGLALGHLDLDNFRHANDALGHQAGDRLILQVVSRLKGALEVGDQLARLGSDEFALLIDTRRAPQRAEWMAERITEAMAEPYWVDGESLLIGCSLGIAHARAQAGADPLMWHAHIAMQQAKSTQGCTFHIFNERINRNARSLADLESELRRALRRDELELHYQPRLNLADGTIVGLEALVRWRHGERGLLPPSEFVPLAEQSGLIVPLGYWVISRALRDMQALRERGLAPLHMAINLSFRQFQDSQLLPTLSRLISERGVEAQWLEFELTETAVMRRSEMVKQTMDALGRLGVRFSLDDFGTGFSSFVHLNSLPIALLKIDKSFVGGMEQREENRKLVHAMINLAHNLNLEVVAEGVETREQMDLLRGFGCDQVQGFLISKPLPLVELVEYLAFEGGQATQEIVSPGPT0026010_2783DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0026010-mucR-K21023NANA
D1-35_029921395mdtKCOG0534Multidrug resistance protein MdtKATGCGGCATCCGGTGCGTATCGAACTCTGGGCCATCCTGCGGCTGGCGGGGCCGTTGATTGCTTCGCAGTTGGCGCACATGCTGATGGTGCTGACCGACACCTTGATGATGGCGCGCCTGAGTCCCGAAGCCCTGGCCGGTGGTGGTCTGGGGGCGGCGAGTTACTCGTTCGTGTCGATTTTCTGCATCGGCGTGATCGCTGCCGTCGGTACGCTGGTTGCGATCCGCCAGGGCGCTGGCGATATTGAAGGCGCCACCCGGCTGACCCAGGCCGGGTTATGGCTGGCCTGGTTGATGGCGCTGGTGGCCGGGTTGCTGTTGTGGAACCTCAAGCCGGTGCTGCTGTTGTTCGGCCAGACTGAAACCAACGTCCTCGCCGCCGGCCAGTTCCTGCTGGTGCTGCCGTTCGCCCTGCCCGGCTACCTGAGTTTCATGGCCCTGCGTGGATTTACCAGCGCGATCGGCCGGGCCACTCCGGTCATGGTGATCAGCCTCGGCGGCACGGTGGCCAACTTCCTGCTCAACTACGCGCTCATCACCGGCATGTTCGGCTTGCCGAAGCTCGGCCTGATGGGGATCGGCCTGGTGACGGCGATTGTTGCCAACTGCATGGCCCTGGTGCTTGCCTGGCACATCCACCGGCACCCGGCCTACCGCGCCTATCCATTGCTTGAAGGCCTGTCGCGGCCCAATCGTCAATACCTCAAGGAACTGTGGCGCCTTGGCCTGCCGATTGGTGGTACCTACGCCGTGGAAGTCGGGCTGTTCGCGTTCGCCGCGCTGTGCATGGGCACCATGGGCAGCACGCCGTTGGCTGCGCACCAGATCGCTCTGCAAATCGTCTCGGTGGCATTCATGGTTCCAGCGGGCATGTCGTACGCGATCACCATGCGCATCGGCCAGCATTACGGCGCCGGGCAACTGCTCATGGCACGCCTGGCCGGACGGGTCGGGATCGGCTTTGGGGCAGCGGCGATGCTGGCCTTCGCCATGGTGTTCTGGCTGCTGCCCAATCAACTGATCGGTTTGTTCCTGGATCACAATGACCCGGCGTTCCGCCCGGTGATCGACCTGGCTGTGAGCCTGCTGGCCGTGGCGGCGTGGTTCGAGCTGTTCGACGGTACGCAAACCATTGCCATGGGCTGTATCCGAGGCCTGAAGGACGCCAAGACCACCTTCCTGGTAGGCCTGGGTTGCTACTGGCTGATTGGCGCGCCCGCTGCCTGGTGGATGGCCTTTCATTTGAACTGGGGGCCGACTGGTGTCTGGTGGGGCCTGGCCCTGGGGCTGGCGTGCGCGGCGGTGAGCCTGACGTGGGCATTCGAGTGGAAGATGAAGCGGATGATTCGCAGCGAGCCGGAGCAGCGGAATTTCGAAGCGATCCAGGCGAAGTGAMRHPVRIELWAILRLAGPLIASQLAHMLMVLTDTLMMARLSPEALAGGGLGAASYSFVSIFCIGVIAAVGTLVAIRQGAGDIEGATRLTQAGLWLAWLMALVAGLLLWNLKPVLLLFGQTETNVLAAGQFLLVLPFALPGYLSFMALRGFTSAIGRATPVMVISLGGTVANFLLNYALITGMFGLPKLGLMGIGLVTAIVANCMALVLAWHIHRHPAYRAYPLLEGLSRPNRQYLKELWRLGLPIGGTYAVEVGLFAFAALCMGTMGSTPLAAHQIALQIVSVAFMVPAGMSYAITMRIGQHYGAGQLLMARLAGRVGIGFGAAAMLAFAMVFWLLPNQLIGLFLDHNDPAFRPVIDLAVSLLAVAAWFELFDGTQTIAMGCIRGLKDAKTTFLVGLGCYWLIGAPAAWWMAFHLNWGPTGVWWGLALGLACAAVSLTWAFEWKMKRMIRSEPEQRNFEAIQAKPGPT0029115_6077DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029115-TC_MATE|norM|mdtK|dinF-K03327NANA
D1-35_02993921gcvA_6Glycine cleavage system transcriptional activatorATGTCTCGTCGCCTCCCTCCTCTTTATGCGTTGCGGGCATTCGAAGCGGCGGCGCGATACAGCTCGTTTACCCGGGCCGCTGAAGAACTGTCGATTACCCAGAGCGCGGTCAGCCGGCACATTCGCACGCTTGAGGAACACTTCGCCTGTCGGCTGTTTCAGCGCAGCGGCCGCAACCTGCAACTGACCGAGGCGGCACGCCTGCTGCTGCCGGGCGTGCGGGAGGGTTTCATGGCGCTGGAGCGTGCTTGCCATACCTTGCACGGCGAGGACGGAATTTTGCGCATGAAGGCTCCGTCGACCCTGACCATGCGTTGGTTGCTGGCGCGCCTGAGCCGCTTTCGGCATCTGCAACCCGGCAACGAAGTGCAATTGACCAGCGCCTGGATGGACGTCGACTCGGTGGACTTCAACACCGAGCCGTTCGACTGCGCGGTTCTGCTGGGCAACGGGCACTTTCCGGCGGACTGGGAGGCCAGTCTGCTGTTTCCCGAGGAGCTGATTCCGGTCGGCGCACCGACTCTGCTCAACGACCAACCCTGGGACGTGGCGCGGCTGGCCAGCGCGGAGCTGCTGCACCCCACGCCGGATCGCCGGGACTGGCGCAACTGGTTGCAGCGCATGGGGCTGGCGGACAAGGTCTCGCTCAAGGGCGGCCAGGTATTCGATACGCTGGAACTGGGCATGATCGCTGCGGCGCGGGGCTATGGTGTGTCCATGGGCGATTTGTTGATGGTCGCCGAGGACGTTGCCCAGGGACGCTTGAGTCTGCCGTGGCCTACGGCTGTTGCCAGCGGCGAGCACTATTACCTCGTCTGGCCGAAGACCCGGCCTGGAGGTGAACGTTTGCGCAGGCTCAGCGATTTTCTCCAGGGCGAGGTAAGCGCCATGCAACTGCCCGACGTGAAACGCCTGGCCTGAMSRRLPPLYALRAFEAAARYSSFTRAAEELSITQSAVSRHIRTLEEHFACRLFQRSGRNLQLTEAARLLLPGVREGFMALERACHTLHGEDGILRMKAPSTLTMRWLLARLSRFRHLQPGNEVQLTSAWMDVDSVDFNTEPFDCAVLLGNGHFPADWEASLLFPEELIPVGAPTLLNDQPWDVARLASAELLHPTPDRRDWRNWLQRMGLADKVSLKGGQVFDTLELGMIAAARGYGVSMGDLLMVAEDVAQGRLSLPWPTAVASGEHYYLVWPKTRPGGERLRRLSDFLQGEVSAMQLPDVKRLAPGPT0026360_2681DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566NANA
D1-35_029941977hypothetical proteinATGTCTCAACCCCGCGCCCGGATCGCCTCACAGCTAGGCCTTGCCCTTGCCGTGATACTGGCGGTCGTGATTTCCGGCAGTACCGTCTTCGCCTTGCGTTCACTGGACGCCGCCAACCTTTCCACTCGTGAGGAGCACCTGGCCAGCGAAGCGCGCCTGATGGCCGACCAGCTCAATACCTTCCACAGCACCTTGCGCGAGAGCACCCAGCGCTTGGCTGGCCTGTTCGAAAAGCGCTTCAGCGCGGGCCTGAGCGTGCATCCGGACCAGCCGGTGACAGTGGCGGGCGTGCAGACGCCAGGCTTGAGCCTGGGCAGCGAAGTGTTGAACAACAACTTCAAGGAAGTGGACGAGTTCAAGGCGATGACCGCCGGCGTAGCGACTATATTCGTGCGTAGCGGCGACGACTTCATCCGTGTCAGTACTTCGGTGAGCAAGCAGGACGGTACGCGGGCCATCGGCACCGTACTCGACCGCGCCGGCCCGGCGTACGGCCCGGTGATCAGCGGGCAGAGCTACATCGGCCGGGCCTTGCTCTTCGGTCGTTTCTACATGTCGCAATACACGCCCGTTCGCGACGGCAGCGGCAAGATCATTGCCGTGTTGTACGTAGGATTCGATTACACCGATGCGCAGAATGCGCAATTCGACAACCTCAAGCGCTTCCGCATCGGCCAGACCGGTTCCCTGGCGCTGTTGGACGAACAGAACAAATGGTTGGTACCGCCAGCGGGTGTGCAGGCGCTGGACAACGCCACCGCGGCTATCACCGGTCTGATCAAGAAGCCGGGCAAAGGTGCGTTCTGGGAAGACACCGCAGAAGAATTCTACAGCGTCGCCGTGCCGTTCGAGGGCGGGCCGTGGGCGGTGGTGGCGAGCATGCCGAAAACCGAAATCAACGCAGTAACCTGGAACGTCGGTACGCAACTGGCCATTGGCAGCCTGCTGGCAATGTTGCTGGCGGTCGGTGCTGCAGTGTGGCTGTTGCGTAGCAAACTGGCGCCCTTGGGCGACCTCGTACGTCAGGCCGAAGCGCTGGGCGCCGGCGACCTGAGCGTGCGTCTGAACGTATCCAGCCACGATGAAATTGGCCAACTGGCCCGTGCCTTCAACCAGATGAGCCAAGCCTTGTCGACCATGGTCGAGCATATCCGCAAGGCCTCGCAGGAGGTCAACAGTCGTGCCCAGGCGTTGTCCGGATTGTCCAGCGGTGCGTATGAAGGGATGGAGCAGCAGTCCGGCGAAATCACCAGCATGGCGGGCGCAGTGGAAGAGTTCAGCGCCACCTCGTTGAACATCGCCGATAACATGGGCAATACCGAGCGTCTGGCCCAGGACAACGCCCAGCAGACCCGCATCGGCCGTACCTCGATGGACGAAGCTTCGTCATCGCTGGAACAGATTGCTGGCGCGTTGAACAGCACGGCCACGGTCATCAACACCTTGGGTCAGCGCTCCCAGGAAATTGGCGGCATCGTCGGCGTGATCACCTCGATTGCCGAGCAAACCAACCTGCTGGCCTTGAACGCTGCCATCGAAGCCGCGCGCGCGGGTGAACAGGGCCGTGGTTTTGCCGTGGTGGCCGACGAGGTCCGTAGCCTGGCGTCGCGTACCCGCCAGGCCACTGACGAAATCTCTGGCATGATCAACAGCATCCAGCAGGAAACCGGCAATGCCATCAGTACGATGGAGAAGGGCAACCTGCTCATGCAGGAAGGCTTGTCGCGCAACGCCAATGTCGCCTCGGCCCTGGCGCGCATCGACGAGCAAAGCCGCTCGGCCGGCCAGCAGTTTGCAGCGATCACCACGGCCACCCAGGAGCAGAGCAGCACCGCGACCTTGCTCAGCAGCAACCTGCAAAGCATCGCGATGGCCAACAGCGAACAACGCGAAGTAGTTTCGAACCTGGCGATCACCGCCAAAGAACTGGAAAAACTGGCGCAGGACCTGCGCAAAGAGGTTGATCGGTTCCGCTGAMSQPRARIASQLGLALAVILAVVISGSTVFALRSLDAANLSTREEHLASEARLMADQLNTFHSTLRESTQRLAGLFEKRFSAGLSVHPDQPVTVAGVQTPGLSLGSEVLNNNFKEVDEFKAMTAGVATIFVRSGDDFIRVSTSVSKQDGTRAIGTVLDRAGPAYGPVISGQSYIGRALLFGRFYMSQYTPVRDGSGKIIAVLYVGFDYTDAQNAQFDNLKRFRIGQTGSLALLDEQNKWLVPPAGVQALDNATAAITGLIKKPGKGAFWEDTAEEFYSVAVPFEGGPWAVVASMPKTEINAVTWNVGTQLAIGSLLAMLLAVGAAVWLLRSKLAPLGDLVRQAEALGAGDLSVRLNVSSHDEIGQLARAFNQMSQALSTMVEHIRKASQEVNSRAQALSGLSSGAYEGMEQQSGEITSMAGAVEEFSATSLNIADNMGNTERLAQDNAQQTRIGRTSMDEASSSLEQIAGALNSTATVINTLGQRSQEIGGIVGVITSIAEQTNLLALNAAIEAARAGEQGRGFAVVADEVRSLASRTRQATDEISGMINSIQQETGNAISTMEKGNLLMQEGLSRNANVASALARIDEQSRSAGQQFAAITTATQEQSSTATLLSSNLQSIAMANSEQREVVSNLAITAKELEKLAQDLRKEVDRFRPGPT0015710_8044DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_029951215hypothetical proteinATGACTCCGCTCAAACTCCTCGTTGCCCTCAGCGCCCTCGGTGCTGCCTCCCACGCCATGGCCTGGGATTATGTCCTGCTCGATACCGACAAGGCCGCACAGCCCTGGCAAATCACCAGTCAGCAGCTCGGTGTGAAGACCGACAAACCGTTTTCCGTGACGATGCGCACCCTGCACGGCGGTCGCCAGGAAGGCGTCAGCATCGTCGATATCGACAACGGCACGATGAAACTCTCGGTCGTCCCGACCCGCGGCATGAATGTGCTGCAGGCCTCGGTCGGCGATGTCCGTATGGGGTGGGATTCGCCGGTCAAGGAAGTGGTCAATCCGGCATTCATCGAGCTCAATGGCCGGGGCGGCTTGGGCTGGCTGGAAGGGTTCAACGAGCTGGTCACCCGCTGCGGCTACGAGTGGGTCGGTCATCCGGGCATGGACAATGGCGAGCTGCTGACTTTGCACGGCCGCGCGGCCAATATCCCGGCGAACAAAGTCACCCTGCACATCGATGAAAAACCGCCCTACGCGATTACCCTGCGAGGCGAGTTGAAGGAGCAGGCGTTCAAGAAAGTCGACTTTTCGGTGCAGACCGAACTGGTCACCGAACCCGGCAGCGTGACCTTCGCGCTCAGCGACACGCTGACCAACAATGGCGACTATCCGAAGGAATACCAGGCGCTCTATCACAGCAACTTCAGTACGCCGTTCCTGGAGCAGGATGCGCGCTTCGCAGCACCGGTCAAACAGGTGTCGCCGTTCAACGACAAGGCCAAGGGCGACCTGAAAGGCTGGCAAACCTATCGCGCCCCAACCAGGGACTACGACGAAACCGTCTACAACGTCGTGCCGTATGCCGACGCCAAGGGCGATACGCTGACCGTGTTGCACAACAAGGCCGGTAGCCTCGGCGTGTCGGTGGGCTTCAACACCGGGACGCTGCCGGTATTTTCCCTGTGGAAAAACACCGATACCCAAGGCCAGGGCTACGTGACCGGCCTGGAGCCGGGCACCAGTTTCTCCTACAACCGTCGATATCAGCGACCACTGGGCCTGGTGCCGACCATCGCGCCGAAAGAGCGTAAGCAGTTCCAGATCCATTACAGCCTGTTGGCGGACAAGGCTGCCGTAGACAAGGCGCTCAAGCGCATTGATGACATCCAGGGTGATCGGAAAACCGAGGTGCGCGATGCCCCGCTGGTGGACCTGAGCAAGCCGTAAMTPLKLLVALSALGAASHAMAWDYVLLDTDKAAQPWQITSQQLGVKTDKPFSVTMRTLHGGRQEGVSIVDIDNGTMKLSVVPTRGMNVLQASVGDVRMGWDSPVKEVVNPAFIELNGRGGLGWLEGFNELVTRCGYEWVGHPGMDNGELLTLHGRAANIPANKVTLHIDEKPPYAITLRGELKEQAFKKVDFSVQTELVTEPGSVTFALSDTLTNNGDYPKEYQALYHSNFSTPFLEQDARFAAPVKQVSPFNDKAKGDLKGWQTYRAPTRDYDETVYNVVPYADAKGDTLTVLHNKAGSLGVSVGFNTGTLPVFSLWKNTDTQGQGYVTGLEPGTSFSYNRRYQRPLGLVPTIAPKERKQFQIHYSLLADKAAVDKALKRIDDIQGDRKTEVRDAPLVDLSKPNANANANANA
D1-35_029961494comMCOG0606Competence protein ComMATGTCACTCGCCATCGTTCACAGCCGCGCCCAGGTCGGCGTCGAAGCACCCGCTGTCACCGTCGAAGTCCATCTGGCCAATGGCTTGCCGTCGCTGACCATGGTCGGCCTGCCGGAGGCGGCGGTGAAGGAAAGCAAGGATCGGGTGCGCAGTGCGATCATCAACTCGGGGCTCAGCTTTCCGGCACGGCGCATCACCCTGAACCTGGCGCCGGCGGACCTGCCCAAGGACGGCGGGCGGTTCGACCTGGCGATTGCCCTTGGCATCCTGTCGGCCAGCGTGCAGGTGCCGACGCTGATGCTGGACGACGTCGAATGCCTCGGCGAGCTGGCGTTGTCCGGGGCGGTACGACCGGTACGCGGGGTGTTGCCCGCGGCGCTGGCGGCACGCAAGGCTGGACGCATGCTCGTGGTGCCTTGGGCGAATGCCGAGGAGGCCTGCCTGGCGTCGGGACTGAAAGTGATCGCGGTGAATCACCTGCTCGAAGCGGTGGCGCATTTTAATGGCCATACCCCGGTCGAACCTTTTGTTTCCAACGGGCTGCTCTCGGCCAGCAAGCCCTACCCCGACCTCAGTGAAGTCCAGGGCCAGGCCGGGGCCAAGCGCGCGTTGCTGATCGCGGCAGCGGGAGCCCATAACCTGTTGTTCAGCGGCCCGCCTGGCACCGGCAAGACGTTGCTGGCGAGCCGCTTGCCGGGGTTACTGCCGCCCTTGGCCGAAAGCGAGGCCCTGGAAGTCGCGGCGATCCAGTCGGTCGCCAGTTGCGTGCCGTTGAGCCATTGGCCGCAGCGTCCGTTCCGTCAGCCGCATCATTCGGCGTCCGGCCCGGCGCTGGTGGGCGGTGGGTCCAAGCCGCAACCGGGAGAAATCACCCTTGCTCATCATGGCGTGCTGTTTCTGGATGAGTTGCCGGAATTCGACCGCAAGGTGTTGGAAGTGCTGAGAGAACCGTTGGAGTCGGGGCACATCGTGATATCCCGCGCCCGGGACCGGGTGCGCTTTCCGGCGCGCTTCCAGCTGGTGGCGGCGATGAATCCCTGCCCGTGTGGCTATCTCGGCGAGCCCAGCGGTCGTTGCTCCTGCACACCGGACATGGTGCAGCGTTACCGCAACAAACTGTCCGGCCCGCTGCTCGACCGGATCGACTTGCACCTGACCGTGGCCCGGGAAGCCACCGCACTGAACCCCAAGAGCGAACCGGGGGACGACACCGCCACCGCCGCCGAACGGGTGGCCGATGCCCGTGAACGCCAGCAAGCACGCCAAGGCTGTGCCAATGCGTTCCTGGATCTGCCGGGCCTGCGCCGGCACTGCAAACTGTCCACGACCGACGAAGCCTGGCTGGAAACCGCTTGCGAACGGCTGACCCTGTCGCTGCGAGCCGCCCATCGCCTGCTCAAGGTCGCCCGGACGTTGGCCGACCTTGAGCAAGCGGAGCGAATCAGCCGCGAACATCTGGCCGAAGCCCTGCAGTATCGCCCCGCCTCGGTTTGAMSLAIVHSRAQVGVEAPAVTVEVHLANGLPSLTMVGLPEAAVKESKDRVRSAIINSGLSFPARRITLNLAPADLPKDGGRFDLAIALGILSASVQVPTLMLDDVECLGELALSGAVRPVRGVLPAALAARKAGRMLVVPWANAEEACLASGLKVIAVNHLLEAVAHFNGHTPVEPFVSNGLLSASKPYPDLSEVQGQAGAKRALLIAAAGAHNLLFSGPPGTGKTLLASRLPGLLPPLAESEALEVAAIQSVASCVPLSHWPQRPFRQPHHSASGPALVGGGSKPQPGEITLAHHGVLFLDELPEFDRKVLEVLREPLESGHIVISRARDRVRFPARFQLVAAMNPCPCGYLGEPSGRCSCTPDMVQRYRNKLSGPLLDRIDLHLTVAREATALNPKSEPGDDTATAAERVADARERQQARQGCANAFLDLPGLRRHCKLSTTDEAWLETACERLTLSLRAAHRLLKVARTLADLEQAERISREHLAEALQYRPASVNANANANANA
D1-35_029971260aaeA_4p-hydroxybenzoic acid efflux pump subunit AaeAATGACTAACCCCATCACACTCAAGCCTGCATTGCTCTTTTTCGGATTGGGCGCGTTGATCATTATCGCGTTGCGCTGGCCGCCGGCGCCCGCAGGCACCCGCGCAACGACAAGCACAGCGCCTGACTGGGTGCATATCGAACCGCGATTGCTGGAAACCCGGCTGGGGCTGATCGGACGTATCCAGGCCGTCAACCAGGTTACCTTGACCGCCCCGTTTGATGGCTTGCTTGCCGAGGTGCGGGTACACGAAGGACAACGGGTCGAGAAAGGCCAGGTGCTGCTGACGCTGGACCCCGCGCAGTTGCAGATCCAGCTGCGCCAGGCCCAGGCGCAACTGCTCAAGGCACAGCGCGAGGCCCGCCGCTTGCAGCATTGGAGCAAAGGCTCCGAGGTCAGCAATGCCAGACGGGCTCTGAACAATGCCAGGCAGAGCCTGGCCGCCAGCGAAAGTAACCGGCGTGACACGCAAGCGTTGTTCGAACGTGGCATCGTCGCGAGGATGGAACTCGAAACGCTGGAGCAGCAGGTGCGCAGCGACCAGCAACAGCTCAGCGCGGCAATCGAGGAACTGGCCACGACACTGGCGTACGGCCAGGGCGAGGAACGCCATATCGCCGAGATGGAGCTGGCTAACGCGCAGGCGCATCACCAGGCTTTCGAAACGCTGCATGCCCGCCGAGAAGTGACGGCGCCAGTGAGCGGTTACGTCGTGCGACCTGTCATGCCGGGTGACGGCCAACCGGTAGCGGTGCAACCTGGCGTGGCCGTGAGCCGGGGCACGCCGTTGCTTGGCGTCATTGGCCTGGACCGTTTCCAAGCCCTTGCTCGCGTGGATGAAACCGACCTGTACCTGTTACGTGAAGGCATGCCAGTGCAAATCACGGGTGATGGATTCGCCGGTGAACTGAGCGGCCGCATACTGGCCATCGGAATCCAGAACGAGGCGGCTGACCAGCAGGACACAGGCGCGCGCTATAAGGTCCAGGTGTCAATTGATACGGCCGTCGCCGATTTCGACCCCCCGCTGCGGACCGGTATGAGCGCGCGTCTGGCAGTGATTCTGTACCGCGACGAACAGGGTATCGCCGTACCACCGCACGCCCTTCGCCGCGATGAGTCCGGTGCCACCTACGTGCTGTACCGGGCGACAGCACAAGCACGCCCCGAGCGCGTAATGGTCAGCCCACGCACAACCGTCGCGCAAGGAGTGGTCGTGCAGGGGCTTACGCCCGGGTTTGTCGAGGTGCCGGGTTCATGAMTNPITLKPALLFFGLGALIIIALRWPPAPAGTRATTSTAPDWVHIEPRLLETRLGLIGRIQAVNQVTLTAPFDGLLAEVRVHEGQRVEKGQVLLTLDPAQLQIQLRQAQAQLLKAQREARRLQHWSKGSEVSNARRALNNARQSLAASESNRRDTQALFERGIVARMELETLEQQVRSDQQQLSAAIEELATTLAYGQGEERHIAEMELANAQAHHQAFETLHARREVTAPVSGYVVRPVMPGDGQPVAVQPGVAVSRGTPLLGVIGLDRFQALARVDETDLYLLREGMPVQITGDGFAGELSGRILAIGIQNEAADQQDTGARYKVQVSIDTAVADFDPPLRTGMSARLAVILYRDEQGIAVPPHALRRDESGATYVLYRATAQARPERVMVSPRTTVAQGVVVQGLTPGFVEVPGSNANANANANA
D1-35_029981479hypothetical proteinATGATTAAAGCCTGGGCGGTCGCCTTGCTGCTGACGCCGCCCAGTGGGGCGGTGCTGGCAGATACAGCGCTGTCACCGTCACAGGCGACTCGGCCGGGCACTCCCTCCGCGGCTGTCGCCAGCGCCTCGCTCAATGCCTACGGCATCGAGCTGACCCTCAGCGATGCGATCTACCTGGGACTGCGCGACAACCGCGCCATTCGCAGCGCTTACCTGGAACGGATCGGCCAGAAATTCGCTTTGCGCGTGGCCGAGGACCGCTTCAGCCCCAAGCTGTTCGTGCGCGGCAGTTACCTGTCCAGCCATAACCAGCTCGATCGCTATCGGCAAGGTGAAATCGCACCGGTTTCAACCCTGCTCACCCCTTACGGCACGCGCGTCGGCCTGGGCTGGACCTGGCGCCAGACCGATGCCGACAGGGCGGGACTGACACGCAATGACGGCGCCAATATCACGATCATCCAGCCGCTGCTGCGCGGCGCCGGCCGCGATGTCGCCACCGCCCCAGTACAACTGGCGCGCCTGAGCGAGCAGGTCAACCGCCTGGCGCTGAAAGACCGGGTGGCGCAGACGATCACCCGGATCATTACCGCCTACCGCACGCTCCTGCAGGCTCAGGAACAGCTGAACATCTCCAGCAACGCCTTGGCGCGGGCGCACCAACTGCTCGGCGTCAACCGGGCGATGATCGACGCCGGGCGCATGGCCGCGTTCGAGATCGTCCAGACCGAGGCCGAAGTCGCCAACCAGGAGCTGAGCCACGAAGACGCCCGCAACCAACTGGAAAACACTCGCCTGGCATTGTTGCAACTGCTTGCGCTGGACCTCGACACTCCAATCATTGCCAGCGAGGCCATGCAAGCCGCGCCCCTCGACATCGACACTGCGCAGGCCGTGCGCCAGGCCGAAGCATTGCAACCGACCTACCTCATCCAACTGATCGCCGGCCAGCAGGCCCGGATAAACAGGGTCGTGGCACGCAACGAGCGCCTATGGGACGTATCGCTGGTCGGCGGCGGCGGTCAGGTCCGTGATCGCAACAATCTCCACGGCAGCACCCGAAGCTGGGAGAACTACGTGGGCGTGCAGGTGGAGATTCCGATCGGCGACCTGAGCGCCCGCCAGGCTGAAGTCCAGGCCCGGGTCGACGTGGAGAACCAGCAGGTCCGCACGCAAGAGGCTCATCAGGAACTGCAGCGTGGCGTGACCAACGCAGTACGCGACATCGGCGCGCGCTGGCGACAGTATCAAATCGCCCGGCGCGCCGAGGAGCTGTCCCAGCGAAAGCTGGACATCGAGCAAGAAAAACTCACCGTGGGGCGTTCGAGCAACTTTCAGGTTCTCAGCTTCGAAAATGACCTGCGCATGGCGCAGAGTGCCCGATTGGCCGCACTCATCAGTTACCTCAACGCCCAGGCGGAACTGGATCAGACCTTGGGCACCACCCTGCAAAGCTGGGACATCGCGTTGAATGACTAAMIKAWAVALLLTPPSGAVLADTALSPSQATRPGTPSAAVASASLNAYGIELTLSDAIYLGLRDNRAIRSAYLERIGQKFALRVAEDRFSPKLFVRGSYLSSHNQLDRYRQGEIAPVSTLLTPYGTRVGLGWTWRQTDADRAGLTRNDGANITIIQPLLRGAGRDVATAPVQLARLSEQVNRLALKDRVAQTITRIITAYRTLLQAQEQLNISSNALARAHQLLGVNRAMIDAGRMAAFEIVQTEAEVANQELSHEDARNQLENTRLALLQLLALDLDTPIIASEAMQAAPLDIDTAQAVRQAEALQPTYLIQLIAGQQARINRVVARNERLWDVSLVGGGGQVRDRNNLHGSTRSWENYVGVQVEIPIGDLSARQAEVQARVDVENQQVRTQEAHQELQRGVTNAVRDIGARWRQYQIARRAEELSQRKLDIEQEKLTVGRSSNFQVLSFENDLRMAQSARLAALISYLNAQAELDQTLGTTLQSWDIALNDPGPT0003600_1251DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_I_SECRETION_SYSTEMSCE-TSS1-AlgE-TYPE_MANNURONAN_C-5-EPIMERASE_TRANSPORT,PGPT0003600-tolC-K12340NANA
D1-35_029991203macB_2Macrolide export ATP-binding/permease protein MacBATGACTGAGTCGACTCGCTACGGACCGTTGCCCTGGCAACTGCTGACCGAGGCCCTCGACAGCCTGCGCCGCCTGGGACGACGAGCCTTGCTGGCATTGCTGGGTATCGCGGTTGGCTGCGCGGCGGTAGTTGCGCTGCTGAACATTGGCCATAACGCCCAAGCCCGGAGCATGGAGGTATTCCAGGCGATGGGCAGCGACCTGCTGATCGCGGACGTGAAGCCGGCCTCGAACAAGGGAGTGCCGGGGCATGCCCCGACCAATCTCGATAACCAGGCCCTTCGCGAGGCGTTACCTGAGGTGCTGGCGGTCAGCGCCCTGAACTTGGCCTCAGTGCCGGCAAGCATGCATGGGCGACCGCTCAGCACCCTGCTGGCCGGGGTCGACCCGGAAATAGCCTCGGTGCTTGGCCTGCAGCCGGAGCAAGGACGATTCCTCAGCCGCTACGATGCCCAGAGCACCCATGCAGTGCTCGGCGCGACGTTGGCCGCTCAGCATGCCCCCGTCGCGCCGGGTGATACGTTGCAACTGGCCGGCTATCTGTTCCAGGTGGTCGGCGTACTCCACAGCCATGGTCAAAACCCCCTGCTGCCGCTGCCCATCGATGACAGCATCCTGGTGCCGATCGAGGGCATGCGCCGCCTCGTTTCCGCACCGCAAATCGGCACTGTGCTGGTGCGCAGCAACGAAGGCGCGGGCTCACAAACCCTAGCCCCGAAACTGCATGACTACCTGCTGACATCCTTGCCCGGTCGGGAGATCGACGTGCAGGTCCCGCAGCGGTTACTCGACGGTCTCGCCCAGCAATCGCAGTTGTTCTCCTGGTTGCTGGCAGGGTTGGGGGGAATTTCGCTCTTGGTCGGTGGCGTCGGCGTGATGAACATCATGTTGATGAACGTCGCCGAACGCCGCGGCGAAATCGGTGTGCGCATGGCACTGGGTGCTCGCCCGCGGGACATCGCCTGGCTGTTTCTGCTGGAGGCCATGGTGCTGACAGTCGCCGGAGCGTCCACCGGTGCTCTGCTCGGAGTGGCAACCGGCTGGTTGTTCGTCGTGCTGTCAGGCTGGATGGATTTCACGCTCTCGCCCCTTTCATTGCCGCTGGGCATGGGCGGTGCGCTGCTCACGGGGTTGCTCTTTGGCCTGAGCCCGGCGCTGTCCGCCGCGCGCCTGCAGCCCGTGCAGGCGCTGCGTGATGATTAAMTESTRYGPLPWQLLTEALDSLRRLGRRALLALLGIAVGCAAVVALLNIGHNAQARSMEVFQAMGSDLLIADVKPASNKGVPGHAPTNLDNQALREALPEVLAVSALNLASVPASMHGRPLSTLLAGVDPEIASVLGLQPEQGRFLSRYDAQSTHAVLGATLAAQHAPVAPGDTLQLAGYLFQVVGVLHSHGQNPLLPLPIDDSILVPIEGMRRLVSAPQIGTVLVRSNEGAGSQTLAPKLHDYLLTSLPGREIDVQVPQRLLDGLAQQSQLFSWLLAGLGGISLLVGGVGVMNIMLMNVAERRGEIGVRMALGARPRDIAWLFLLEAMVLTVAGASTGALLGVATGWLFVVLSGWMDFTLSPLSLPLGMGGALLTGLLFGLSPALSAARLQPVQALRDDPGPT0013350_16823DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004NANA
D1-35_03000702yknYCOG1136putative ABC transporter ATP-binding protein YknYATGCCTGAAAATCCCGCTCCCGAGCTGATCCGCGTACAAGGCATGAGCCATATCCATGGCATCGACGCGACCGCACGCGCCACCCTGCGCGATGTGTCGCTGACCATCAATGCAGGACAGAGCTGCGCCATTATCGGCGCCTCGGGATCCGGCAAAAGTACCCTGCTCGGCTTGATCGGCCTGCTTGACCAACCTTCGACCGGGCAGGTCTACCTGGCTGGCCGCGACATGACCCAGGCAAGCGCTGATGCTCGCGCGATGATGCGCAACCGACACATCGGCTTCGTCTTTCAGAGCTTCAACCTGCTGCCACGCCTGGACGCCCTGGACAATGTCGCGCTGGCGCTGCTCTACCGCGGCATATCTCGCCAGGCTGCCCAGGCAGCCGCGCGGCGCCAGCTATTGCAGCTCGGTCTGGGCGAACGCCTGCATCATCGCCCGGCACAGTTGTCCGGAGGCCAACGCCAGCGCGTGGCCATCGCGCGAGCGCTGGTGGGAGAGCCGGCCTTGCTGCTGGCCGACGAGCCCACCGGCAACCTCGACAGCCAGACCGCCAGCGAGGTCATCGAACTGCTGCTGGCGCTCAATCGGGAGCGGGGCGTCACCTTGATAGTCGTCACCCACGACCCGGACATCGCCAAGCGCATGCAGCGCTGCCTGCGGATCAGCGAGGGCCGCCTGTGGGAAATGCCTCATGACTGAMPENPAPELIRVQGMSHIHGIDATARATLRDVSLTINAGQSCAIIGASGSGKSTLLGLIGLLDQPSTGQVYLAGRDMTQASADARAMMRNRHIGFVFQSFNLLPRLDALDNVALALLYRGISRQAAQAAARRQLLQLGLGERLHHRPAQLSGGQRQRVAIARALVGEPALLLADEPTGNLDSQTASEVIELLLALNRERGVTLIVVTHDPDIAKRMQRCLRISEGRLWEMPHDPGPT0013345_10034DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003NANA
D1-35_03001780hypothetical proteinATGGATGGTATCAACGGCGCACGCCTGCACTACGCAACGAACCTGAAAGCCACCGCAAGCCCGCTAGAGCCGACCGACAAGGTCGGCGCCAGCCCGAGGAGCGAGGTGCAACCCGGCGCCTTGAGCGGCAATACCACCACCCGACTCTCGCCGATGGCACAGCTGCTCAGCGACGCAGCAGCACGCGCTGCGGAGCGGGACGCCAGCAATGATCGTGCAGGCTTGGCGGACATTGCCCGGCGAGCCACGCAAGATTTCTTCATCCCCTATGTCGCGAAAAACAAGGAAATCCGCGACGCCGAAGTGCCGCCCTCGGACGATCCGCAGCGCCTGGATCAGGCACAGCAGGCAACGAACTTCCTCAACAAGAAAGGCGGCAACCCGTTCGCGAACCTTTCCATCGAGCAACTGACGCTGATCATCTATGACGACAGCGGTGACTTTACTCACAATGAACGCAGAGTGGCATGGGAAACCTATAGCGACGCGCACGGCGCCTGGACCTTCACAGTCACCAATAAGCTGATGGACGAGGATAAAACCCCGGAAACCATCAGGGATGTTCTCAATTACTACAAAAGCCTGCCCCCCATTCAGGAGTCTCTGATGCTCGGCGATTACGAAGCCGACTTTACTCAACAGATCAAGAGCGCCGAATTGGCCAAAGCGCGGAGGTTAAGTGGCAGCGACGACGGAATGCCCCCATGGCAATCGTTGCTTGAGCTGATGCTGGCGCAGCAGCAGAAAGACAAACCCGAAACGCCCGCGACAGACGCCTGAMDGINGARLHYATNLKATASPLEPTDKVGASPRSEVQPGALSGNTTTRLSPMAQLLSDAAARAAERDASNDRAGLADIARRATQDFFIPYVAKNKEIRDAEVPPSDDPQRLDQAQQATNFLNKKGGNPFANLSIEQLTLIIYDDSGDFTHNERRVAWETYSDAHGAWTFTVTNKLMDEDKTPETIRDVLNYYKSLPPIQESLMLGDYEADFTQQIKSAELAKARRLSGSDDGMPPWQSLLELMLAQQQKDKPETPATDANANANANANA
D1-35_03002432hypothetical proteinATGCAATTGAAAAAACGCAGCGTCGCGGCTTTGGCCGTCTGCTCCCTGCTCGTCGCTGGTGCGGCGCAAGCAGGTCCAACGATACGGGTTACCGTCAAGAACCTTGGCAGCGCGACGGTCAAGTATTCGTTCCAGGGCAACAACGAAGCCCTCACCCACGCGAATGCGACACCCAAGCCTGCGGATACGATCAATCCGCAGCAAGCCATCACTTTCGAAGTGCGAGACCAGCGCAACCCTGCGATTGCCACTGCGGTCGTCCGCTATGGCGCCGACGGCAAAACTTGCGTGTTCAGCACCTTCTACATCAACCCCAAGCTGCCTAAATGGACCAAGGACGCGCAGGCTACCGGCCGAGTCCGCTGCAATGCGACGATTACCGCAATAAACGCGTCCGATCACTCGTGGAACATTGAGTTCACGATCCAGTAAMQLKKRSVAALAVCSLLVAGAAQAGPTIRVTVKNLGSATVKYSFQGNNEALTHANATPKPADTINPQQAITFEVRDQRNPAIATAVVRYGADGKTCVFSTFYINPKLPKWTKDAQATGRVRCNATITAINASDHSWNIEFTIQNANANANANA
D1-35_03003261ubiKUbiquinone biosynthesis accessory factor UbiKATGCTTGCCCCCAAAGATCTCCTCGACGCCCTGAGCGGCCACGCCTCCCGCCTCTTGAGTGGCGACACCCCCCTGCCCAAAAGCGAAATCGAAAGCCAGTTCAAGGCTTTATTGCAAAGCGGGTTCAGCAAGCTGGACCTGGTCAGCCGGGAAGAATTCGACAGCCAGATGGTGGTGCTGGCCCGAACTCGGGCGCGGTTGGAGAGCCTGGAGGCGAAGGTGGCGGAGTTGGAGGCGAGGCTGAATCCACCTGCGGAATAAMLAPKDLLDALSGHASRLLSGDTPLPKSEIESQFKALLQSGFSKLDLVSREEFDSQMVVLARTRARLESLEAKVAELEARLNPPAENANANANANA
D1-35_03004339glnKCOG0347Nitrogen regulatory protein P-II 2ATGAAGCTAGTCACTGCCATCATCAAGCCGTTCAAGTTGGACGACGTGCGCGAGTCGCTGTCCGAAATCGGCGTGCAGGGCATTACCGTCACTGAAGTCAAAGGCTTCGGTCGGCAGAAAGGTCACACCGAGCTGTACCGCGGCGCGGAATACGTGGTCGATTTCCTGCCCAAGGTGAAGATCGACGTTGCCATCGACGACAAGGATCTTGATCGGGTCATCGAGGCGATTACCAAGGCCGCCAACACCGGCAAGATTGGTGACGGAAAGATCTTTGTGGTCAATCTGGAACAGGCTATCCGCATCCGTACCGGCGAAACCGATACCGACGCTATCTAAMKLVTAIIKPFKLDDVRESLSEIGVQGITVTEVKGFGRQKGHTELYRGAEYVVDFLPKVKIDVAIDDKDLDRVIEAITKAANTGKIGDGKIFVVNLEQAIRIRTGETDTDAIPGPT0000675_31DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-GLUTAMATE|GLUTAMINE_SYNTHASE|GLTS_PATHWAY,PGPT0000675-glnK|glnZ-K04752NANA
D1-35_030051335amtB_2Ammonia channelATGACTCTGCGTAAATTCGCAGGGCTAGGAGCCCTGTTGTCCTTCGTAATGCCTGGCCTGGCCATGGCAGAAGAAGCGGCAGCCCCAGTCCTCAATTCCGGCGACACCGCCTGGATGCTGACGGCCACGATTCTTGTTCTGTTCATGACCATTCCCGGCCTTGCGTTGTTCTACGGCGGCATGGTTCGGTCGAAAAACATTCTTTCCGTGATGATGCAGTGCTTCGCCATTACCGGTCTGATCAGCGTGTTGTGGGTCATCTATGGCTACAGCATCGCGTTCGACACTACCGGCATGGAGCAGGGCGTCGTCAACTTCAACTCCTTCGTCGGCGGCCTGGGCAAAGCGTTCCTGGCGGGCGTCACCCCGGCCAGCATCACCGGCCCGACGGCGTTGTTCCCTGAAGCAGTCTTCATTACCTTCCAGATGACCTTCGCGATCATCACCCCGGCCCTGATCGTCGGCGCGTTCGCCGAGCGGATGAAGTTCTCCGCCATGCTGATCTTCATGGGCGTGTGGTTCACCTTGGTGTATGCGCCGATTGCGCACATGGTCTGGTCCGGCAACGGCGGCCTGATGTGGGACTGGGGTGTACTGGACTTCGCCGGTGGCACCGTGGTGCACATCAACGCCGGTATCGCAGGCCTGGTGGCGTGCCTGGTGCTGGGCAAGCGCAAAGGCTTCCCGACCACGCCGATGGCACCGCACAACCTGGGTTACACCCTGATGGGCGCGGCCATGTTGTGGGTGGGCTGGTTCGGTTTCAACGCCGGTTCCGCCGTCGCGGCCAACGGCACCGCCGGCATGGCGATGCTGGTCACCCAGATCGCCACCGCAGCCGCCGCGCTGGGCTGGATGTTCGCCGAGTGGATCACCCACGGTAAGCCAAGCGCACTGGGCATCGCCTCGGGCGTCGTGGCCGGCCTGGTTGCAATCACCCCGGCGGCCGGCACCGTGGGCCCGATGGGCGCCCTGGTCATTGGTCTGGCGGCGGGCGTGGTGTGCTTCTTCTGCGCCACCACCCTCAAGCGCAAACTCGGCTATGACGACTCCCTGGACGCCTTTGGCGTGCATGGCATCGGCGGTATCCTCGGCGCCATCCTGACCGGTGTGTTCGCAGCACCAGCCCTGGGCGGCTTCGGCACCGTGACCGATATCGGTGCGCAAGTGTGGATTCAGTTCAAAGGCGTAGGCTTTACCGTGATCTACACGGCGGTTGTCACCTTCATCATCCTCAAGGTCCTCGACGCCGTCATGGGTCTGCGGGTTTCCGAGGAAGAAGAGGCCGTGGGCCTGGACCTGGCCCAGCACAACGAACGTGGTTACAACCTATAAMTLRKFAGLGALLSFVMPGLAMAEEAAAPVLNSGDTAWMLTATILVLFMTIPGLALFYGGMVRSKNILSVMMQCFAITGLISVLWVIYGYSIAFDTTGMEQGVVNFNSFVGGLGKAFLAGVTPASITGPTALFPEAVFITFQMTFAIITPALIVGAFAERMKFSAMLIFMGVWFTLVYAPIAHMVWSGNGGLMWDWGVLDFAGGTVVHINAGIAGLVACLVLGKRKGFPTTPMAPHNLGYTLMGAAMLWVGWFGFNAGSAVAANGTAGMAMLVTQIATAAAALGWMFAEWITHGKPSALGIASGVVAGLVAITPAAGTVGPMGALVIGLAAGVVCFFCATTLKRKLGYDDSLDAFGVHGIGGILGAILTGVFAAPALGGFGTVTDIGAQVWIQFKGVGFTVIYTAVVTFIILKVLDAVMGLRVSEEEEAVGLDLAQHNERGYNLPGPT0000840_4013DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-AMMONIUM_ASSIMILATION|USAGEN-AQUISITION-AMMONIUM_TRANSPORT,PGPT0000840-amtB|ybaG|amt-K03320NANA
D1-35_03006426hypothetical proteinATGTGGCAACAGACGCTGATAACCCTGCGGGCAAGGCCCAGGGGCTTTCATCTGGTAACGGACGAGTTGCTCGCCGGCCTGCCTGAACTCAAGGCATGTCGTGTCGGTCTGTTGCATCTGTGGCTGCAGCACACCTCGGCCTCGCTGACCATCAACGAGAACGCCGATCCGGCGGTACGTCGAGACTTCGAACGATTTTTCAATCGGCTGATCCCACAAGGAACCGCCGACTATGAGCACAACGACGAAGGCCTGGACGACCTCCCGGCGCACTTCAAGGCCAGCGTGCTGGGATGTCAGCTCAGTCTTCCGGTGACGGCGGGACGGTTGGCGTTGGGCACCTGGCAAGGTGTTTATCTGGGCGAGCACCGTGATCATGGCGGTACTCGTAAAGTCCTCGCCACCTTGTACGGTGAAGGGGCATGAMWQQTLITLRARPRGFHLVTDELLAGLPELKACRVGLLHLWLQHTSASLTINENADPAVRRDFERFFNRLIPQGTADYEHNDEGLDDLPAHFKASVLGCQLSLPVTAGRLALGTWQGVYLGEHRDHGGTRKVLATLYGEGANANANANANA
D1-35_03007324sutATranscriptional regulator SutAATGAGCGACGATGATCTGGAAAACGACGACCTCGAAGTAGGTGATGAAGACGAGGCCGAAGAAGGCCTGGAAGCGGCGGCTGAAGACGTCGCTGACGATGACGGTGCCGATGTTCCGGTCCCGACCGCCAAAGGCAAGGCCAAGGCGGCGGTATCGGTCGACGAGTTGCCGAGCGTAGAGGCCAAGAACAAGGAGCGTGATGCGCTCGCCAAGGCCATGGAGGAATTCCTGGCCCGAGGTGGCAAGGTGCAGGAAGTGGAGGCCAATGTGGTCGCCGATCCGCCCAAGAAGCCTGACAACAAGTACGGCAGCCGCCCGATCTGAMSDDDLENDDLEVGDEDEAEEGLEAAAEDVADDDGADVPVPTAKGKAKAAVSVDELPSVEAKNKERDALAKAMEEFLARGGKVQEVEANVVADPPKKPDNKYGSRPINANANANANA
D1-35_03008705yigBCOG10115-amino-6-(5-phospho-D-ribitylamino)uracil phosphatase YigBATGACCATCGAACTCATCACTTTCGACCTGGACGACACCCTGTGGGACACCGCCCCGGTGATCGCCAGCGCCGAAGCCGTATTACGTCAGTGGCTGACCGATAACGCACCGGACCTGGGCGATTTTCCGGTGGAGCGCTTGTGGGCAATCCGCACACAAGTGCTCAGCGAAGAGCCGGACCTCAAGCACCGCATCAGTGCCTTGCGCCGACGCGTGCTGTTCCGGGCACTGCAAGACGCCGGCTACGATCAATGGCGGGCTTCGGAGCTGGCAGACCAGGGATTCGAGGCCTTCCTGCATGCCCGACATCAACTGGAGGTCTTTCCCGAGGTGCAGCCGACCCTGGAATTGCTCGCCAATGATTACGCCCTTGGCGTCGTCACCAATGGCAACGCCGACGTGCGGCGCCTGGGGCTGGCGGATTACTTCAAGTTCGCCCTGTGCGCCGAGGACATCGGCATCGCCAAGCCCGACGCCCGGCTGTTCCACGAAGCCCTGCAACGCGGTGGCGCGACCGCGCAGACTGCCGTGCACATCGGCGATCACCCGGGCGACGACATCGCCGGCGCCCAACAGGCCGGCCTGCGCGCAGTGTGGTTCAACCCGACGGGCAAGGCGTGGGACGCCGACCATGCGCCGGATGCGGAAATCCGCAGCCTGACCGAACTGCCGGGGTTATTGGCAGGATGGCATAACCCGCGCTAAMTIELITFDLDDTLWDTAPVIASAEAVLRQWLTDNAPDLGDFPVERLWAIRTQVLSEEPDLKHRISALRRRVLFRALQDAGYDQWRASELADQGFEAFLHARHQLEVFPEVQPTLELLANDYALGVVTNGNADVRRLGLADYFKFALCAEDIGIAKPDARLFHEALQRGGATAQTAVHIGDHPGDDIAGAQQAGLRAVWFNPTGKAWDADHAPDAEIRSLTELPGLLAGWHNPRPGPT0008585_777DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008585-yigB-K20862NANA
D1-35_03009900xerC_1COG4973Tyrosine recombinase XerCATGGAACGGCAACTGGACGCCTACTGCGAGCACCTGCGCAGTGAGCGCCAGGTGTCGCCCCACACCTTGTCGGCGTATCGCCGCGACCTCGAAAAGGTGCTGGGCTGGTGCCAGAAACAGAATATCGGCAGCTGGTCGGCGCTGGATATCCAGCGCCTGCGCAGCCTGATTGCCCGCCTGCATCAACAAGGGCAATCCTCCCGCAGCCTGGCGCGACTGTTGTCGGCGGTGCGCGGCTTGTACCAGTACCTCAATCGTGAAGGCCTTTGCGACCACGACCCGGCCACCGGCCTGGCACCGCCCAAGGGCGAGCGTCGGCTGCCCAAGACCCTCGACACCGACCGCGCCTTGCAATTGCTGGAGGGCGCCGTCGAGGATGACTTTCTCGCGCGGCGAGACCAGGCAATCCTCGAGCTGTTCTATTCCTCGGGCCTGCGGCTTTCAGAACTGACCGGGCTGAACCTGGAACAACTGGACCTCGCCGACGGCATGGTTCAGGTGCACGGCAAGGGCAGCAAGACCCGCCTGCTGCCTATCGGCCGCAAGGCCCGGGAAGCCTTGGACCTGTGGCTGCCGCTCCGGGCAATGGCCAACCCGGCCGATGAAGCAGTCTTCGTCAGCCAGCAAGGCCGGCGCCTCGGGCCGCGAGCGATACAATTGCGGGTCAAGGCTGCCGGTGAGCGCGAACTTGGGCAGAACCTGCATCCACACATGCTGCGACATTCGTTCGCCAGTCACCTGCTCGAATCGTCCCAGGACCTGCGCGCCGTCCAGGAGTTGCTCGGCCATTCGGACATCAAGACCACCCAGATCTATACCCATCTGGATTTCCAACACCTGGCGACGGTCTATGACAGTGCCCACCCCAGGGCCAAACGCATCAAGGGCGACGAATCATGAMERQLDAYCEHLRSERQVSPHTLSAYRRDLEKVLGWCQKQNIGSWSALDIQRLRSLIARLHQQGQSSRSLARLLSAVRGLYQYLNREGLCDHDPATGLAPPKGERRLPKTLDTDRALQLLEGAVEDDFLARRDQAILELFYSSGLRLSELTGLNLEQLDLADGMVQVHGKGSKTRLLPIGRKAREALDLWLPLRAMANPADEAVFVSQQGRRLGPRAIQLRVKAAGERELGQNLHPHMLRHSFASHLLESSQDLRAVQELLGHSDIKTTQIYTHLDFQHLATVYDSAHPRAKRIKGDESPGPT0021995_3490DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-INTEGRASES|RECOMBINASES,PGPT0021995-xerC-K03733NANA
D1-35_03010726hypothetical proteinATGACCGATAAGCCTCAGGTTCCAGCCCCGCAGCCCGACGAATCCCCGAGCCAGAACCCGGAAGCCGCAGCCGTGGCCGCTTACCTGGAGGCCCATCCGGACTTTTTCGTCGCGCATGAAGACCTGCTTTCGACGATGCGCATTCCCCACCGGCGCGGCGATACCGTGTCGCTGGTGGAGCACCAGATGAAGATCCTGCGCGAACGCAACATCGAAATGCGCCACCGTCTTTCGCACCTGATGGACGTGGCGCGCGACAACGACCGGCTCTTCGACAAGACCCGTCGCCTGATCCTCGCGTTGATGGACGCCAGCACCCTGGAAGACCTGGTGATGAGCGTCGAAGACAGCCTGCGCCAGGATTTCCAGGTGCCTTTTGTCAGCCTCATTCTGTTTGGCGACAACGCCATGCCGGTGGGGCGCTGGGTGACTCACGCCGAAGCGCAGACCGCCATCGGCGGCCTGCTCACGGAAAACAAAAGCGTCAGCGGTAGCCTGCGCGAACATGAGCTGGATTTCCTGTTCGGCGAAGAACAACGCAAGCAGATCGGCTCTACGGCCGTCGTCGCCATTGCCCACCAGGGCGTGCACGGCGTGCTGGCCATCGCCAGCCGCGATCCGCAGCACTACAAGAGCTCGGTCGGCACGTTGTTCCTGAGTTATATCGCCGAAGTCACCGGCCGCGTGCTGCCACGGGTTGCCGGTTCGCTGCGCTCGGTACGCTGAMTDKPQVPAPQPDESPSQNPEAAAVAAYLEAHPDFFVAHEDLLSTMRIPHRRGDTVSLVEHQMKILRERNIEMRHRLSHLMDVARDNDRLFDKTRRLILALMDASTLEDLVMSVEDSLRQDFQVPFVSLILFGDNAMPVGRWVTHAEAQTAIGGLLTENKSVSGSLREHELDFLFGEEQRKQIGSTAVVAIAHQGVHGVLAIASRDPQHYKSSVGTLFLSYIAEVTGRVLPRVAGSLRSVRNANANANANA
D1-35_03011831dapF_3COG0253Diaminopimelate epimeraseATGCTGCTGCGTTTTACCAAGATGCACGGCCTGGGCAATGACTTCATGGTCCTCGACCTGGTCAGCCAGCACGCGCACATCCTGCCCAAGCATGCCAAGCAATGGGGCGACCGCCACACCGGCATCGGCTTCGACCAGTTGCTGATCGTCGAGGCGCCGAACAACCCGGACGTGGATTTCCGCTACCGGATCTTCAATGCCGACGGTTCCGAAGTGGAGCAATGCGGCAACGGTGCGCGCTGCTTCGCCCGCTTCGTGCTGGACAAGCGCCTGACTGCCAAACGGCAGATTCGCGTCGAGACCAAAAGCGGCATCATCGAACTGGATGTCCGCAGCGACGGCCAGATCGGCGTCAACATGGGCGCCCCACGCCTGGTTCCGGCGGACATTCCGTTCCAGGCACCGGCCCAGGCCCTGAGCTATACCGTCGACGTCGACGGTACGCCGGTGGAACTGGCGGCGGTGTCCATGGGCAACCCCCATGCCGTGCTGCGGGTGGATGATATAAACAGTGCGCCCGTGCACGAACTGGGGCCGAAGATCGAGCATCATTCGCGCTTCCCGGCCCGGGTGAACGTCGGCTTCCTGCAGGTCATAGACCGGCATCGTGCGCAACTGCGCGTCTGGGAACGCGGCGCCGGGGAAACCCAGGCGTGCGGCACCGGCGCCTGCGCCGCGGCCGTCGCCGCGATCAGCCAGGGGTGGATGGATTCGCCATTGCTGATCGACCTGCCTGGCGGGCGCCTGTCCATCGAATGGGCAGGCCCTGGCCAACCGGTGATGATGACCGGCCCGGCCGTACGCGTATACGAAGGACAAGTTCGTCTTTGAMLLRFTKMHGLGNDFMVLDLVSQHAHILPKHAKQWGDRHTGIGFDQLLIVEAPNNPDVDFRYRIFNADGSEVEQCGNGARCFARFVLDKRLTAKRQIRVETKSGIIELDVRSDGQIGVNMGAPRLVPADIPFQAPAQALSYTVDVDGTPVELAAVSMGNPHAVLRVDDINSAPVHELGPKIEHHSRFPARVNVGFLQVIDRHRAQLRVWERGAGETQACGTGACAAAVAAISQGWMDSPLLIDLPGGRLSIEWAGPGQPVMMTGPAVRVYEGQVRLPGPT0007230_3010DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007230-dapF-K01778NANA
D1-35_030121248lysACOG0019Diaminopimelate decarboxylaseATGGACGCTTTTAACTACCGTGGCGGGGAGCTGTTCGCGGAAGGGGTTGCCCTGTCCGCGATAGCCGAACGTTTCGGCACGCCGACCTACGTCTATTCCCGTGCCCATATCGAAGCCCAGTACCGCACCTTCGCCGATGCCCTCGAAGGCATGCCGCACCTGGTGTGCTTCGCGGTAAAAGCCAACTCGAACCTGGGCGTGCTCAACGTCCTGGCGCGCCTTGGCGCCGGCTTCGACATCGTCTCCGGAGGCGAGCTGGAGCGTGTGCTGGCCGCGGGTGGCAGCGCCGACAAGATCGTTTTCTCCGGTGTCGGCAAGACCCGCGAAGACATGCGCCGCGCGCTGCAAGTCGGTGTGCATTGCTTCAACATCGAATCCACCGACGAGCTGGAGCGGTTGCAGGTCGTCGCCGCCGAGCTGGGCGTGCGCGCACCGGTTTCCTTGCGCGTGAACCCGGACGTCGACGCCGGCACCCACCCGTACATTTCCACTGGCCTCAAGGAAAACAAGTTCGGCATCGCCATTGCCGACGCCGAGGACGTGTACGTGCGCGCAGCCCAGCTGCCAAACCTGGAAGTGCTCGGCGTCGATTGCCACATCGGCTCGCAACTGACCACCCTCGAACCGTTCATCGACGCCCTCGACCGCCTGCTGGCGCTGGTCGATCGCCTCGGCGACTGCGGCATCTACCTGCGTCACATCGACCTGGGCGGCGGTGTCGGCGTGCGTTATCGCGACGAAGAACCGCCATTGGTGGCCGACTACATCAAGACCGTGCGCGAGCGCCTCGAAGGCCGCGACCTGGCATTGATGTTCGAGCCCGGTCGCTACATCGTCGCCAATGCCGGCGTGCTGCTGACCCAGATCGAGTACCTCAAGCACACCGAGCACAAGGATTTCGCCATCGTCGACGCGGCCATGAATGACCTGATCCGTCCGGCGCTGTACCAGGCCTGGATGGATGTCACCGCGGTGCGCCCACGCGATACCGCGGCCCGCGCCTACGACATCGTCGGGCCGATCTGCGAAACCGGCGACTTCCTGGCCAAGGGTCGGGAGCTGGCGCTGGAAGAAGGCGATCTGCTGGCCGTGCATTCGGCGGGTGCCTACGGGTTTGTCATGAGTTCCAACTACAACACCCGCGGCCGTTGCGCCGAGGTGCTGGTGGACGGTGATCAGGCATTCGAAGTGCGCCGCCGCGAGACGGTAGCCGAGCTGTTTGCCGGCGAAAGCCTGTTGCCGGAGTAAMDAFNYRGGELFAEGVALSAIAERFGTPTYVYSRAHIEAQYRTFADALEGMPHLVCFAVKANSNLGVLNVLARLGAGFDIVSGGELERVLAAGGSADKIVFSGVGKTREDMRRALQVGVHCFNIESTDELERLQVVAAELGVRAPVSLRVNPDVDAGTHPYISTGLKENKFGIAIADAEDVYVRAAQLPNLEVLGVDCHIGSQLTTLEPFIDALDRLLALVDRLGDCGIYLRHIDLGGGVGVRYRDEEPPLVADYIKTVRERLEGRDLALMFEPGRYIVANAGVLLTQIEYLKHTEHKDFAIVDAAMNDLIRPALYQAWMDVTAVRPRDTAARAYDIVGPICETGDFLAKGRELALEEGDLLAVHSAGAYGFVMSSNYNTRGRCAEVLVDGDQAFEVRRRETVAELFAGESLLPEPGPT0023875_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023875-mrcA-K05366NANA
D1-35_03013171hypothetical proteinATGAAGCGCCTGATCTCTTCCCTTGCTGCGCTCGTCGCGGTTGCCTGCCTTGTGACAGCCTGTGGTCAAAAAGGTCCGCTGTACCTGCCTGATGACAGCAAGTCCCCTGAAGAACAGGCCAAGTCGTCGCAATCCAAGTCACACGCGCACGACACCCACACCACTTACTAAMKRLISSLAALVAVACLVTACGQKGPLYLPDDSKSPEEQAKSSQSKSHAHDTHTTYNANANANANA
D1-35_03014333cyaYCOG1965Iron-sulfur cluster assembly protein CyaYATGAGTTTGACTGAAGCCCGTTTCCACGACCTGGTCGATGCGACCCAGCAAACGCTGGAAGATATCTTCGACGAGAGCGACATGGATATCGACCTGGAAAGCTCCGCTGGTGTACTGACCGTCAAGTTCGAGAACGGTAGCCAGCTGATCTTCAGCCGCCAGGAACCGTTGCGGCAGTTGTGGCTGGCGGCGGTGTCCGGTGGTTTTCACTTCGACTATGACGAGGAAAGCGAGCGCTGGATGTGCGACAAGAGTGAAGAGCAGTTGGGCGAGATGCTCGAACGCATCGTCAAGCAGCAGGCGGACGCTGAGCTCGATTTCGAAGGACTGTGAMSLTEARFHDLVDATQQTLEDIFDESDMDIDLESSAGVLTVKFENGSQLIFSRQEPLRQLWLAAVSGGFHFDYDEESERWMCDKSEEQLGEMLERIVKQQADAELDFEGLPGPT0004050_174DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDATIVE_STRESS_RELATED_PROTEIN,PGPT0004050-cyaY-K06202NANA
D1-35_03015219hypothetical proteinGTGAGCCAGCCAGCCCCGGCGCGGCCACCCAAGCCGCTCTACAGCAACGTCAGCCCCGCCGTTCCGTCGCCTTGCACCAGCGTGTGCAAGCTGGATGAGCAGAAGGTCTGCCTCGGCTGTTTCCGGCACGTGGAAGATATCCGCGAATGGCGCTCGGCGGATGATGAGCGCCGGCGGGTGATCTGTGCCGAGGCCGCCAAACGCAAGTCTTTGTCATGAMSQPAPARPPKPLYSNVSPAVPSPCTSVCKLDEQKVCLGCFRHVEDIREWRSADDERRRVICAEAAKRKSLSPGPT0013210_1247DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013210-ydhL-K06938NANA
D1-35_03017411rnkCOG0782Regulator of nucleoside diphosphate kinaseATGACCGCACCTTCCATCACCCTGACTCGCTTGGACGTACAACGTCTGGAGCGCTTGATCGACAGCCTGGATGACACGCTTCCCGGTGTGATCGCGTTGCAAACCGAACTGGATCGCGCCGAGACACTGGTCGGCCACGATGAAGTGCCCGCCGATGTCGTGACCATGAATTCACGCGTGCACTGCCGCGAGGAAAGCAGCGGCAAGGATTACCATCTGACGCTGGTCTACCCGAAGGACGCCAACGCCGACCAGGGCCGGATTTCGATCCTGGCGCCGGTGGGCAGTGCCTTGCTGGGCTTGAAGGTGGGGCAGCACATCGACTGGCCGGCGCCGGGTGGCAAGACCTTGAAGCTGACGTTGCTGGAAGTCGAGTCCCAGCCGGCCAATGGCGGTGATTTCCCGTCCTGAMTAPSITLTRLDVQRLERLIDSLDDTLPGVIALQTELDRAETLVGHDEVPADVVTMNSRVHCREESSGKDYHLTLVYPKDANADQGRISILAPVGSALLGLKVGQHIDWPAPGGKTLKLTLLEVESQPANGGDFPSNANANANANA
D1-35_030182844cyaACOG3072Adenylate cyclaseATGACCCGCAATCACGAAATACGCCCCGATCTGGACCAGGGAATCGACCGCAAGGTCCTGAGCCAGTTGCGCGCGCGTTTCCTCAAGCTCAATTCCGGCCGCATGGAGCGCGCCCTGGAAGGGTTGTCGACCCGCCAGCAGGGCGTATTGACGCTGCTTCCGCTGTTCTTTCACGTCAACCATCCACTGCTGCCCGGCTACGTCTCCGGCAGCACGCCCGCCGGGTTGTCGAATTACGAGCCCGACGCCAATGTCCTCGCCGAGGCCCAGCGGCTGACCCGCTCGTTTTCGTATAAGCCGCGCCATGGCAGCAACCCTCCGCGGCCAATCCTCGGCCTGTTCCTGATGGGCAGCCTCGGCACACTCGCCCAGGCCGACCAGAGCGACATGGATGTGTGGGTGTGCCACGGCCCGGACTTGAGCGACGATGAACTCGCCGAGCTACGCAAGAAATGCCAGCTGCTGGAAATCTGGGCCGCCACCCAAGGCGCCGAGGCTCACTTTTTCCTCATCGACCCGGCGCGATTCGTCCGCGGCGAACGGGATAACCAGCTCAGCTCCGATGACTGCGGCACCACCCAGCATTATCTGTTGCTGGACGAGTTCTACCGCACCGCCATCTGGCTGGCCGGGCGCACGCCGATCTGGTGGCTGGTGCCGGTCTATGAAGAAGAGAATTATCAGCAATACACCCACACGCTGATCTCCAAGCGCTTCATCCGTGCCGACGAAACCCTCGACCTGGGGCATCTGGCTTACATCCCGCCGGGCGAATTCATCGGCGCCGGGCTCTGGCAGTTGTTCAAGGGCATCGAGTCACCCTACAAATCCGTGCTCAAGCTTTTGCTGACCGAGGTCTACGCCAGCGAACACCCGGACGTGCGCTGCCTGAGCCTGCGCTTCAAGCAGGCGGTGTTCGCCAATCGCCTGGACCTGGACGAGCTGGACCCGTACATGGTGGTTTACCGCCGTCTCGAGGAATACCTCAACGCCCGTGGCGAACCGGAACGCCTGGAGCTGATTCGCCGCGCGCTGTACCTGAAGGTCAATCGCAAGCTCACCGGCCATGCCCGCAGCAGCGGTTGGCAACGCAATCTGCTTGAGCGCCTGGCGCGGGATTGGGGCTGGGATCAACGCCAACTCGCGTTGCTCGACAGCCGCAGTCAATGGAAGGTCCGCCAGGTCAGCAATGAGCGGCGCGCACTGGTCAACGAGCTGACCTACAGCTATCGCTTCCTGACCCAGTTCGCCCGCACCGAAAAGACCGTCAGCCTGATCAACAAGCGCGACCTCAATGTCCTTGGCCGACGTCTGTATGCGGCCTTCGAGCGCAAGGCCGACAAGGTCGAGTTCATCAATCCCGGAATTGCCCCGGACCTGGCCGAAGACACCCTGACCCTGGTCCAGTCGCCGAACAAGAAAGAGCCGGGGCAGAACCAGTGGGGCTTGTACAACGGCAGCCTGAATGCCTTGGAATGGGAGAATTTCGCGCCGATCAAGCGCAGCCGCGAATTGCTCGAATTGCTCACCTGGAGCCACCGCAACGGGGTGATCGACAGCAGCACGCGCCTGGCGCTGCACCCCGGCGACAGCGACCTGAGCGAGTTCGAGCTGTTCAACCTGCTGGGCAGCCTGCAACAGTCCATCGCCCTGCCCCTGGCCACGGTTGATGAAGAACAGCTGCTGCATGCCAGCGTACCCAGCGAAGTGTTGATACTGGTGAACGTCGGCGTCGACCCGCTCAAGCATCACCGCGACTTGAACATCCTGATGACCACCGAGCGCACCGACTCCTTGAGCTACGCCGGTGTCCGCGAAAACCTGGTCTTGACCCTCGACCAGGTCACCCTCAACAGCTGGAATGAAGTGCTGGTCAACCGGTTCGACGGCGAGCACGCCTTGCTCGATTGCCTGCGCGACTACCTCAACGACTTGCCCCTTACGCAGCGTCAGCCACGCTTACAGGTGCGCTGTTTCTGCCACAACCGTGCGCAGTTCATCGCGCGACGGGTTGAAGAAGTCATCGAGACCGCCCAGACCTTGCTCCTGAGCAAACTCAACTACCGCTACCTGCTTCAGGTCCAGCAGCATTATCACGTGCTAGAGCTGGTGCCCGGCCAGGTCAACCATGTGGCGTTGAGCAGCCTGCCGGCGTTGATGGACTACCTGGGCGAAGAGTTGACGGCGTACAGCCCGCTGCATCTGGACGCGATGGCCATGGAAGAACACGACGCGGCCCTGATCCTGCCCATGGGCCAGCCCGAGTGCATCCAGGTGTTCTACCGGGTCTACGAGGACGAAGCGGAGCTGTATGTGCTCGATGAATTCAACGCGTTGTGGCAGCAGCGCCTGCCCTATCACGATGACCAAAGCCTGCTGGTGCCGCTGCAGCGCTTCCTGCAGTCGGTGCTGTATCGCCGCGACGCCTTGCTGCCGATGGACGCCACCCAGCCGCTGACCCTGGAAATCCTTTATTACCAGCTCCTGCCTTCGGGTAACGGGCGGGCCCGGCGGGTCGAATCACGGCAGGCGCCGCAGACGCCGGTCAACAAGCCCTTCTACGACGTGCAGGCGATCATCGGCAAAGCGGCGCACGGGCAAGTGCACGTCACCCTCTATTGCGATCAGCGGGAATTTTCGGAGCTGGAGCACGGCGACCAACTGTTTCATGTGGTCGCCAGGGAAATCGTCGGGCAGCGCCGCGACGCCGAACGCTATCGCTGCTATATCACCGACCTGGACCTCTCCGGCCTGGTCGGTGACGGTGCCTGCCCAAGCATTTTGTTCCTGCGCTACAAGGCCGACCTGGAGCGCGCACTGAACGAAGCATTGAATCAGGTCTGAMTRNHEIRPDLDQGIDRKVLSQLRARFLKLNSGRMERALEGLSTRQQGVLTLLPLFFHVNHPLLPGYVSGSTPAGLSNYEPDANVLAEAQRLTRSFSYKPRHGSNPPRPILGLFLMGSLGTLAQADQSDMDVWVCHGPDLSDDELAELRKKCQLLEIWAATQGAEAHFFLIDPARFVRGERDNQLSSDDCGTTQHYLLLDEFYRTAIWLAGRTPIWWLVPVYEEENYQQYTHTLISKRFIRADETLDLGHLAYIPPGEFIGAGLWQLFKGIESPYKSVLKLLLTEVYASEHPDVRCLSLRFKQAVFANRLDLDELDPYMVVYRRLEEYLNARGEPERLELIRRALYLKVNRKLTGHARSSGWQRNLLERLARDWGWDQRQLALLDSRSQWKVRQVSNERRALVNELTYSYRFLTQFARTEKTVSLINKRDLNVLGRRLYAAFERKADKVEFINPGIAPDLAEDTLTLVQSPNKKEPGQNQWGLYNGSLNALEWENFAPIKRSRELLELLTWSHRNGVIDSSTRLALHPGDSDLSEFELFNLLGSLQQSIALPLATVDEEQLLHASVPSEVLILVNVGVDPLKHHRDLNILMTTERTDSLSYAGVRENLVLTLDQVTLNSWNEVLVNRFDGEHALLDCLRDYLNDLPLTQRQPRLQVRCFCHNRAQFIARRVEEVIETAQTLLLSKLNYRYLLQVQQHYHVLELVPGQVNHVALSSLPALMDYLGEELTAYSPLHLDAMAMEEHDAALILPMGQPECIQVFYRVYEDEAELYVLDEFNALWQQRLPYHDDQSLLVPLQRFLQSVLYRRDALLPMDATQPLTLEILYYQLLPSGNGRARRVESRQAPQTPVNKPFYDVQAIIGKAAHGQVHVTLYCDQREFSELEHGDQLFHVVAREIVGQRRDAERYRCYITDLDLSGLVGDGACPSILFLRYKADLERALNEALNQVPGPT0015070_112DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-OTHER_BACTERIAL_DEFENSE_SYSTEMSCE-BACTERIAL_FITNESS-BACTERIAL_TOXINS,PGPT0015070-cyaA-K05851NANA
D1-35_03019246hypothetical proteinATGTCGCTTACCCCTGAGCTGGTTGCCGAACTGGAAATCCTTGCACTCTTCAACCTGGACAGTTCCCAGGAAGGCCTGAAAATTCATCAGACCGCTGCCCCGAAAGCCATCGCCGCTGCCAAGCGCCTGTTTGAAAAAGACCTGATAGACCAACCCGATGGCGGTTATCTGACCAGCCTGGGGCGTGATGCCGCGCAAAATGTGCAAACTGTCCTGACGATACTCCGCGCCGAAGAAACCGCCTGAMSLTPELVAELEILALFNLDSSQEGLKIHQTAAPKAIAAAKRLFEKDLIDQPDGGYLTSLGRDAAQNVQTVLTILRAEETANANANANANA
D1-35_03020285hypothetical proteinATGAGCGAGCCAAGCGATATCGAACAGGACGAAGAAGAGTTCGTCGAATCCACGCTGATCCAGGCCATCGAGAACCAGATCGAAAGCGACAACCCGCCAGCGGCCAAGGCCACCTTCAACAAGTTGACCCTGGTCGGTTATGAGCGTGACGAAATCCTCAACCTGATGGCCCACGTGCTGGCGGTTGAAATCGACGCGATCCTGGAAGAAGACCGTCCGTTCAATACCGAGTGGTACGAAGCCGCCCTGCGCGCCTTGCCTGAGCTGCCGCCGGAAAAGAAATGAMSEPSDIEQDEEEFVESTLIQAIENQIESDNPPAAKATFNKLTLVGYERDEILNLMAHVLAVEIDAILEEDRPFNTEWYEAALRALPELPPEKKNANANANANA
D1-35_03021660Glutathione S-transferaseATGCTCAAGCTTTATGGTTTTTCTGTCAGCAATTATTACAACATGGTCAAGCTGGCGCTGCTGGAGAAGGGGCTGCCCTTCGAAGAGGTCCAGTTCTTTGGCGCCCAAACCCCGGAAGCCCTGGCTATCAGCCCGCGCGGCAAGGTGCCGGTATTGAAGACCGAGCAGGGCTTTATCAACGAGACCAGCGTCATTCTGGAATATATCGAGCAAACCCAGCCGGGCAAGGCCCTGCTGCCCAACGACCCGTTCGAGCGCGCCCAGGTGCTGGCCTTGTGCCGGGAAATCGAGTTGTACATCGAGCTGCCGGGACGTGCCTGCTATCCCGAAGCGTTTTTTGGCATGGCGGTGCCCGAGGCGATCAAGGACAAGGCCAAGGGCGAGTTATTGCTCGGGTTTGCCTCGCTTGGCCGGCACGGAAAATTCTCGCCTTATGTGGCGGGTGACAGCCTGAGCATTGCCGACCTGTATTTCTACTACAGCCTTTCGCTGGCCTTGCCGGTGGGCAAGAAGGTTTTCGATATCGACTTGCTGGCAGAGATGCCGAAGGCCAGGGCCTTGATGGAGCTGCTCGGGCAGAATCCGCACGTACAGCGGATTGCGGCGGATCGAGAGGCGGAAATGCCGGCGTTCCTGGCGAAGATTGCTGCCAGGAAGTGAMLKLYGFSVSNYYNMVKLALLEKGLPFEEVQFFGAQTPEALAISPRGKVPVLKTEQGFINETSVILEYIEQTQPGKALLPNDPFERAQVLALCREIELYIELPGRACYPEAFFGMAVPEAIKDKAKGELLLGFASLGRHGKFSPYVAGDSLSIADLYFYYSLSLALPVGKKVFDIDLLAEMPKARALMELLGQNPHVQRIAADREAEMPAFLAKIAARKPGPT0013170_10929DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013170-gst-K00799NANA
D1-35_030221395argH_1COG0165Argininosuccinate lyaseATGAGCACTGACAAGACCAATCAGTCCTGGGGCGGCCGCTTCAGTGAACCCGTCGACGCCTTCGTCGCCCGCTTCACCGCCTCCGTCAACTTTGACCAGCGCCTGTATCGCCACGACATCATGGGCTCGATCGCCCACGCCACCATGCTGGCCAAGGTCGGCGTGCTGACCGATGCCGAGCGCGACAGCATCATCGATGGCCTGAAGACCATCCAGGGCGAGATCGAGGCCGGCCAGTTCGACTGGCGCGTGGACCTTGAAGACGTGCACATGAACATCGAAGCGCGCCTGACCGACCGCATCGGCGTGACCGGCAAGAAGCTGCACACCGGTCGCAGCCGTAACGACCAGGTCGCCACTGACATCCGCTTATGGCTGCGCGATGAAATCGACCTGATCCTGGCTGAAATCACCCGCCTGCAAAAAGGCCTGCTGGAACAGGCCGAGCGCGAGGCGGAGAGCATCATGCCGGGCTTCACGCACTTGCAAACCGCGCAACCTGTAACGTTTGGGCATCACATGCTCGCCTGGTTCGAGATGCTCAGCCGCGACTACGAGCGCCTGGTCGACTGCCGCAAACGCACCAATCGCATGCCCCTGGGCAGCGCCGCGCTGGCCGGCACGACCTATCCGATCGACCGTGAATATACCGCGCAACTGCTGGGCTTCGATGTGGTGGGCGGCAACTCGCTGGATAACGTTTCGGACCGCGACTTCGCCATCGAATTCTGCTCCGCCGCGAGCATCGCGATGATGCACCTGTCGCGCTTCTCCGAAGAGCTGGTGCTGTGGACCAGCGCGCAATTCCAGTTCATCGATCTGCCCGACCGCTTCTGCACCGGCAGCTCGATCATGCCGCAAAAGAAAAACCCCGACGTGCCGGAGCTGGTACGGGGCAAGAGCGGCCGGGTATTCGGCGCGCTGATGGGCCTGCTGACCCTGATGAAAGGCCAGCCACTGGCCTACAACAAGGACAACCAGGAAGACAAGGAGCCGCTGTTCGACGCCGCCGATACCTTGCGCGATTCGCTGCGAGCGTTCGCCGACATGATCCCAGCCATCAAGCCCAAGCATGCGGTCATGCGCGAAGCGGCCCTGCGCGGCTTCTCCACCGCTACCGACCTGGCCGATTACCTGGTCCGCCGTGGCCTGCCGTTCCGTGATTGCCATGAGATTGTCGGCCATGCCGTGAAGTACGGCGTCGACAACGGCAAGGACCTGGCGGAAATGAGCCTGGACGAACTGCGCCAGTTCAGCGACCAGATCGAGCAGGACGTGTTCGCGGTGTTGACACTGGAAGGCTCGGTCAATGCCCGTGATCATGTTGGCGGTACGGCGCCGGCGCAGGTAAAAGCAGCGGTCGTTCGTGGCCAGGCGCTTCTCGCCAGCCGCTAAMSTDKTNQSWGGRFSEPVDAFVARFTASVNFDQRLYRHDIMGSIAHATMLAKVGVLTDAERDSIIDGLKTIQGEIEAGQFDWRVDLEDVHMNIEARLTDRIGVTGKKLHTGRSRNDQVATDIRLWLRDEIDLILAEITRLQKGLLEQAEREAESIMPGFTHLQTAQPVTFGHHMLAWFEMLSRDYERLVDCRKRTNRMPLGSAALAGTTYPIDREYTAQLLGFDVVGGNSLDNVSDRDFAIEFCSAASIAMMHLSRFSEELVLWTSAQFQFIDLPDRFCTGSSIMPQKKNPDVPELVRGKSGRVFGALMGLLTLMKGQPLAYNKDNQEDKEPLFDAADTLRDSLRAFADMIPAIKPKHAVMREAALRGFSTATDLADYLVRRGLPFRDCHEIVGHAVKYGVDNGKDLAEMSLDELRQFSDQIEQDVFAVLTLEGSVNARDHVGGTAPAQVKAAVVRGQALLASRPGPT0014242_85DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014242-argHA-K14681NANA
D1-35_03023747lytRCOG3279Sensory transduction protein LytRATGAATGTCCTGATCGTTGACGACGAACCACTGGTCCGCGAGCGCCTGAGCCGAATGCTTGGCGAACTCGAGGGTTACAGTGTCCTGGAGCCGAGCGCCACCAATGGCGAAGAGGCGTTGGCCCTTATCGACAGCCACAAGCCGGATATCGTGCTGCTCGACATCCGCATGCCTGGCCTGGACGGGCTGCAGGTCGCGGCCAAGCTGTGCGAGCGCGAGTCGCCTCCCGCGGTGGTGTTCTGTACCACCCGGGACGATTTTCCTCCGGAGGTGTTGCAGGCCGGTGCCGTGGGCTATCTGATCAAACCGGTTTCCGTCGAGGCGCTGGAAGAAGCGTTGCGCAAGGCTGAGCGACCGAACCGCGTGCAACTGGCGGCGCTTACCCGCCCGGCCGCCGAGAGCGGCAGCGGCCCGCGCAGCCACATCAGCGCACGGACCCGAAAAGGTATCGAGCTGATTCCGTTGAACCAGGTGGTCTACTTCATTGCCGACCACAAATACGTGACCTTGCGCCACGAAAGCGGAGAAGTGCTACTGGACGAGCCGCTCAAGGCGCTGGAGGACGAGTTCGGCGAACGGTTCGTACGCATCCACCGCAACGCCTTGGTGGCTCGCGAGCGTATCGAGCGTTTGCAACGCACCCCCCTCGGGCACTTCCAGCTTTACCTCAAGGGGCTCAATGGCGACGCGCTGATCGTCAGCCGGCGGCATGTGGCGGGCGTGCGCAAGATGATGCAACAGCTTTAGMNVLIVDDEPLVRERLSRMLGELEGYSVLEPSATNGEEALALIDSHKPDIVLLDIRMPGLDGLQVAAKLCERESPPAVVFCTTRDDFPPEVLQAGAVGYLIKPVSVEALEEALRKAERPNRVQLAALTRPAAESGSGPRSHISARTRKGIELIPLNQVVYFIADHKYVTLRHESGEVLLDEPLKALEDEFGERFVRIHRNALVARERIERLQRTPLGHFQLYLKGLNGDALIVSRRHVAGVRKMMQQLPGPT0026145_228DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-ALGINATE_METABOLISMCE-EPS-ALGINATE_EXTERNAL_SIGNAL_SENSING,PGPT0026145-algR-K08083NANA
D1-35_03024942hemCCOG0181Porphobilinogen deaminaseATGTCCCCTCGCGAGATCCGCATCGCCACCCGTAAAAGCGCCTTGGCTCTCTGGCAGGCCAAGTACGTCAAAACCCGCCTGGAAGCGGCCCACCCTGGCCTGATCGTATCGCTGGTGCCGATGGTCAGTCGCGGTGACAAACTGCTCGATTCGCCACTGTCGAAGATTGGTGGCAAGGGCCTGTTCGTCAAGGAGCTGGAAACCGCCCTGCTGGACAACGAAGCCGACATCGCCGTGCATTCGATGAAAGATGTGCCCATGGACTTCCCGGAAGGCCTGGGCCTTTTTTGCATCTGCGAGCGGGAAGACCCGCGTGATGCGTTTGTCTCCAACAGCTTTTCCAGTCTTGAAGCATTGCCCCCGGGAAGTGTGGTCGGCACTTCCAGCCTGCGTCGCCAGGCGCAGTTGCTGGCGCGGCGTCCGGACCTGCAGATCCGCTTCCTGCGCGGCAACGTCAACACGCGCCTGGCCAAGCTCGATGCTGGCGAATACGACGCGATCATCCTCGCCGCCGCCGGCCTGATCCGGCTCGGGTTTGAAGATCGCATCACCTCGGCCATCAGCGTCGATGACAGCCTGCCGGCCGGTGGGCAGGGCGCGGTGGGCATCGAATGCCGTAGCGCCGACAGCGAAATCCATGCGCTGCTGGCGCCGCTGCACCACGACGACACCGCCACGCGGGTCTTCGCCGAGCGCGCCCTGAACAAGCATCTGAACGGCGGATGCCAAGTGCCGATTGCCTGCTACGCCGTGCTCGAAGGCGAGCAGGTCTGGCTGCGTGGCCTGGTGGGCGATCCCAGCGGCGGCCAACTGCTCAGCGCCCAGGCCCGAGCACCGCGCCGCGATGCCGAGGCGCTGGGCGTGCGGGTGGCCGAAGACCTGCTGAGCCAGGGCGCCGATGACATCCTCAAGAAAGTCTACGGCGAGGCTGGCCACGCGTGAMSPREIRIATRKSALALWQAKYVKTRLEAAHPGLIVSLVPMVSRGDKLLDSPLSKIGGKGLFVKELETALLDNEADIAVHSMKDVPMDFPEGLGLFCICEREDPRDAFVSNSFSSLEALPPGSVVGTSSLRRQAQLLARRPDLQIRFLRGNVNTRLAKLDAGEYDAIILAAAGLIRLGFEDRITSAISVDDSLPAGGQGAVGIECRSADSEIHALLAPLHHDDTATRVFAERALNKHLNGGCQVPIACYAVLEGEQVWLRGLVGDPSGGQLLSAQARAPRRDAEALGVRVAEDLLSQGADDILKKVYGEAGHAPGPT0003660_2431DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003660-hemC-K01749NANA
D1-35_030251914hypothetical proteinGTGACGGGCTGGCGGCTGCTGCTGACCCGGCCGACGGACGAATCGGCGGCCCTGGCGGCTGTGCTGGCGGATGCGGGGATCTACAGCAGCAGCCTGCCGCTGCTGGATATCGAGCCGGTCCCGGTGACCGAGTCCGGGCAGGCGATCCTCCGTGAATTGAATCAGTATTGCGCCGTGATCGTGGTCAGCAAGCCCGCCGCGCGCTTGTGCGTGGAGCTGCTGCGTCAGTATTGGCCGCAACCTCCGGTCTTGCCATGGTTCAGCGTGGGCGCCGCAACCGGACAGATTCTTGCCGATGCCGGCCTCAGCGTGTTTTATCCCGATAACGGCGACGACAGCGAAGCCTTGCTTGAGCTCGGGGCGTTGCGCCAGGTGCTCGACCGGCCCGATCCCCGTGTCTTGATCGTCCGTGGTGAGGGTGGGCGCGGATTGCTGGCAGAGCGTTTGCGCGAGCAAGGTGCTAGTGTCGACTATCTTGAGCTGTACCGGCGCGGCCTGCCGCAATACGCCGAGGGCGAACTGCCGGCCAGGGTCGAAGCGGAACGCTTGAACGCGCTGGTGGTCAGCAGTGGGCAGAGCTTCGAGCATCTGCGCCGGCTCGCCGGTGAAGCGTGGCCCGCCCTGGCGCGGCTGCCGTTGTTCGTTCCAAGCCCCAGGGTCGCCGACATGGCGCGTGCCGCCGGGGCCCGGACAGTTATTGATTGCCGTGGCGCCAGCGCCGCGGCTTTGCTGGCGGCATTACGGGAACAATCCGTGCCGTTTTCCAATGCAAAGGATGGATACGTGAGCGAAACAGCCTTGCCAAAAGATCAGGACCAGCCAGCGCTCGATGCGCCGCTTGAAACGGCGCCGCCGATAGCACCGCGTCGCGGCAACGGGCTGGCGATTGTCGCGTTGTTGTTGGGGGCTGCCGGCGTCGCCGTGGGTGGCTGGGGTGTATGGCAAGTGCGTCATCTGCAAGCCAGCACCCAGCAGCAATCCGCCCAGGTCCAGTCGCTCAATGACCAGGCCCAGGGCCTCAAGCTCAATGAGCAACGCCTGAGCGCGCGCCTGGAGCAATTGCCTCCGGCCGAAGAACTGGAGGAGCGCCGCCGCCAGGTTGCCCAGTTGCAAGGCGACCAGCAGCGTCTCAACCAGCGCCTGGAAACCGTGCTGGGTGCCAGCCGCAAGGACTGGCGCCTGGCCGAAGCCGAGCATTTGTTGCGCCTGGCCAGCCTGCGTCTTTCCGCCCTGCAGGACATCAGCAGTGCCCAGGCACTGGTACAGGGCGCCGATGAAATCCTGCGCGAGCAGAACGACCCGGGCTCATTCGCTGCCCGCGAACAATTGGCCAAGACCCTCGCTGCGCTGCGCAGCACCGAGCAGCCGGATCGCACCGGGCTGTTCCTGCAACTGGGTGCCTTGCGTGACCAGGTGCTGCAGTTGACCGAGCTCGCGCCCGAATACAAGGACCGTGGCGAGTCGCTGCTGGGGCTGACGAGCGACGGCGATGGTGCCAGTCGCTGGGCGCAGTGGTGGGACCGGATCTCGCGTTATATCCGCATCGATTTCAATGCCGATGAAAACGTCCGTCCACTCCTGGCCGGACAGAGCCTGGTCCAGGTGCGCCTGGCCTTGAGCCTGGCACTGGAGCAGGCGCAATGGGCCGCGCTCAATGGTCAGGCGGCGGTGTACACCCAGGCGCTGGCCGAGGCGCGTGACGTGCTCAGGAACAACTTCAACCAGGACAACCCGCAAAGCAAGATCATGCTCGAGCGGGTTGGCGAGTTGAGCAAGTTGCCCGTGACAGTGGTCACGCCGGACCTGACCGGCACCCTGAGCGCCGTCCAGGCCTACCTCGAGCGCCGCAACCTGAATGCTGAAGACTCGGTCAAACCGCTGCCCAAGGCGGGCGGGCAGGAGACCGCGCCATGAMTGWRLLLTRPTDESAALAAVLADAGIYSSSLPLLDIEPVPVTESGQAILRELNQYCAVIVVSKPAARLCVELLRQYWPQPPVLPWFSVGAATGQILADAGLSVFYPDNGDDSEALLELGALRQVLDRPDPRVLIVRGEGGRGLLAERLREQGASVDYLELYRRGLPQYAEGELPARVEAERLNALVVSSGQSFEHLRRLAGEAWPALARLPLFVPSPRVADMARAAGARTVIDCRGASAAALLAALREQSVPFSNAKDGYVSETALPKDQDQPALDAPLETAPPIAPRRGNGLAIVALLLGAAGVAVGGWGVWQVRHLQASTQQQSAQVQSLNDQAQGLKLNEQRLSARLEQLPPAEELEERRRQVAQLQGDQQRLNQRLETVLGASRKDWRLAEAEHLLRLASLRLSALQDISSAQALVQGADEILREQNDPGSFAAREQLAKTLAALRSTEQPDRTGLFLQLGALRDQVLQLTELAPEYKDRGESLLGLTSDGDGASRWAQWWDRISRYIRIDFNADENVRPLLAGQSLVQVRLALSLALEQAQWAALNGQAAVYTQALAEARDVLRNNFNQDNPQSKIMLERVGELSKLPVTVVTPDLTGTLSAVQAYLERRNLNAEDSVKPLPKAGGQETAPPGPT0003675_114DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003675-hemDX-K13543NANA
D1-35_030261236hemYCOG3071Protein HemYATGAAGCGTCTCTACGTGATTCTGTTCGTGGTCATCGCGGCCGCAGCCTTGCTGGGCGTGGCGATTTCCGAGCATTCGGGTTACGTGCTGGTGGCGTACAAGAGCTTCCGCTACGAAGCCGGCCTGTGGGTCACCCTCGCACTGATCGCGGTGATCTGGCTGTTGTGGCGCGCAGTGTTTGCTCTGGTCGGGCTGGTAACCACGTCCACTGGCGTGGTCAACCCGTGGTCGCGACGCAACCGGAGTCGTCGCGTACAAGTTGCAATCGAACATGGCCAGTTGGACCTGGCCGAAGGCCGTTGGGCCAGCGCCCAGCGGCATCTTCACCGCGCCGCCGAAGCCGAGCGCCAGCCCTTGTTGTATTACCTCGGCGCCGCCCGCGCGGCCAATGAACAAGGCCTCTATGAGCAAAGCGACAGTCTGCTTGAGCGCGCTCTGGAGCGGCAGCCCCAGGCCGAGCTGGCCATCGCGCTGACTCACGCCCAGTTGCAGACGGACCGGGGTGACACCGACGGTGCGTTGAGCACGCTGCAAGCCATGCATGAACGCCATCCTCACAATGCCCAGACCCTGCGTCAGTTGCAGCGCTTGCACCAGCAGCGCGGTGATTGGTCGGCGGTGATCCGGCTGTTGCCGGAGCTGCGCAAGGACAAGGTCCTGCCGCCCGCCGAACTGGCTGAGCTGGAACGGCGGGCCTGGGGTGAAAACCTCACCTTGGCTGCCCATCGCGAAGCTGACGGAAGCGTCGGCTTGCAATCGCTCGATCGGGCCTGGCAACAGCTCACCTCAGCCCAACGCCAGGAACCGGCAATGGTGCTCGCCTATGCCGAGCAACTTCGTCAGCTGGGCGCCCAGGCGCAGGCTGAGGAGGTATTGCGGGTTGCGCTCAAGCGTCACTACGACAGCCACCTGGCGCGTTTGTACGGACTGGTTCGCGGCGCTGACCCGAGCCGCCAGTTGCAAGCGGCCGAGGGCTGGCTCAAGGAGCATCCGAATGACCCGAGCCTGCTCCTGACGCTGGGGCGTCTGTGCTTGCAAAACAGCTTGTGGGGCAAGGCGCGGGATTATCTCGAAAGCAGCCTGCGCATCCAGCGCAACCCTGAGGCTTGTGCCGAACTGGCCCGCTTGCTGGCGCAACTGGGCGATGCGGAGCGCAGCAACCAGTTATTTCAAGAGGGGCTGGGGCTGCTGGACGAGCGCTTGCTGGCGGCACCCTTGCCGGTTCCGAGCACTTGAMKRLYVILFVVIAAAALLGVAISEHSGYVLVAYKSFRYEAGLWVTLALIAVIWLLWRAVFALVGLVTTSTGVVNPWSRRNRSRRVQVAIEHGQLDLAEGRWASAQRHLHRAAEAERQPLLYYLGAARAANEQGLYEQSDSLLERALERQPQAELAIALTHAQLQTDRGDTDGALSTLQAMHERHPHNAQTLRQLQRLHQQRGDWSAVIRLLPELRKDKVLPPAELAELERRAWGENLTLAAHREADGSVGLQSLDRAWQQLTSAQRQEPAMVLAYAEQLRQLGAQAQAEEVLRVALKRHYDSHLARLYGLVRGADPSRQLQAAEGWLKEHPNDPSLLLTLGRLCLQNSLWGKARDYLESSLRIQRNPEACAELARLLAQLGDAERSNQLFQEGLGLLDERLLAAPLPVPSTNANANANANA
D1-35_03027555dsbB_2Disulfide bond formation protein BATGTCTTTGGCCAGCTCTCGCTCTCTGTTTCTCCTGGCTTCCATCGCCGCGGCTCTGGTTTTGGGGATCACGTTTTACCTGGAATATGCGGTCGGTCTGACCCCGTGCAGCCTGTGCATTTTGCAGCGGTTATGCCTGACGCTGTTCCTGATGACCTGTCTTGCCGCTTGCGTGCATGGCCCGGCTCTGAGAGGTAGCGTTGTGTATGCGGCGGTGGGCGTGGTCTTCGTCTCGGGAGGGCTGGCGCTGGCGTGGTATCACGTCCTTGCGCAGAGCGATTCGATCGAGCTGTTGCCCGACTGCCTCGCCAAGCTCAGGGGCGCCGATTTGTGGTGGCACGCCATGCATCGCGCGCTTGACGGAGCGATCGATTGCACGAGCGTCTCCTGGACGCTGTTTCGTCTGAGCATCCCTGAATGGAGCCTGCTGTTTTTTATCGCGCTCTTCATCTCGATGACTTATCTGCTGCTGCGCCTGGCCTGGAATGCCCTGGTGCCACCGCTCGGCGACGAGACGTCGCAGTTGGTCCGAAGGCTGGATCAAACACTTGTATGAMSLASSRSLFLLASIAAALVLGITFYLEYAVGLTPCSLCILQRLCLTLFLMTCLAACVHGPALRGSVVYAAVGVVFVSGGLALAWYHVLAQSDSIELLPDCLAKLRGADLWWHAMHRALDGAIDCTSVSWTLFRLSIPEWSLLFFIALFISMTYLLLRLAWNALVPPLGDETSQLVRRLDQTLVNANANANANA
D1-35_03028459rsdCOG3160Regulator of sigma DATGCTCGAAAGTTGTCAGAATGCTCAGGAACGCTGGGGTGGGGTGCATCTGCTGATCGACCGCTGGTTGCAGGAGCGTCATGAACTGGTTCGAGCCTATGATGCTCTTGGCGACAAGCCTGAAGCACTGAGTGAAAGTCGCAAGCCTTTGCAGGAATTTTGCGGTGTGCTGGTGGACTATGTGTCGGCCGGTCATTTCGAGATCTACGAGCAACTGACGGGCGAGGCCAAGGCCTTCAATGACAAACGCGGCCTGGAACTGGCCGATACGATTTATCCGCGCATCGACGTCATCACCGAGAAGCTGTTGGCCTTCAATGACCTCTGTGATGAAGGTAAATGCGTAGCGGAAAAATTCAAGGAACTGGGCGGTTTGTTGCATGAGCGTTTCGAGCTGGAGGATTGCCTGATCGAGGTGCTGCACAACGCCCACAAGGAAGAGGCTACCGCCCAGGCTTGAMLESCQNAQERWGGVHLLIDRWLQERHELVRAYDALGDKPEALSESRKPLQEFCGVLVDYVSAGHFEIYEQLTGEAKAFNDKRGLELADTIYPRIDVITEKLLAFNDLCDEGKCVAEKFKELGGLLHERFELEDCLIEVLHNAHKEEATAQANANANANANA
D1-35_03029666mipCOG0545Outer membrane protein MIPATGTCGCGTCACCTTTTTTTATTTCTTTGCATGGTTTTCTCCCTGGCTCAGGCCGCTGAAAAATCCGACGCCAACGACGGTCGCGACCTGGCCTACAGCCTCGGCGCCAGCCTGGGCGAGCGCCTGCGTCAGGACGTGCCGGACCTGCAGATCCAGGCGCTGGTCGAAGGCTTGCAGCAGGCCTATCTGGGTAAACCGTTGGCCCTGGCAGATGAACGCATCGAACGGATCCTGGCCGAACATCAGGCGCAACTCCTGGCGCAGTCGTCCACGCCGCAAACGCAAATGGCGCTGAAGAGCGAGCGGAAATTTCTCGATGAGGAAAAAGGCCGGCCGGGCGTCCAGCAATTATCGGACGGCATCCTGCTGACCGAACTCAAGCCGGGCAGCGGCGCGAAGGCCGGCCCCCACGGCAAGGTCCAGGTGCGGTATGTCGGTCAATTGCCGGACGGCACCGTGTTCGATTCCAACCATCAGGCGCAGTGGTTCAATCTTGACAGCGTGATTGATGGGTGGCGCAGCGCACTGCCGCAGATGCCGGTGGGCGCGAAGTGGCGATTGGTGATTCCTTCGGCCCTGGCCTATGGCGCCGAAGGTGCCGGGGACCTGATTCCACCCTTCACGCCGCTGGTGTTCGAAATTGAATTGCTGGGCGCAACGACCTGAMSRHLFLFLCMVFSLAQAAEKSDANDGRDLAYSLGASLGERLRQDVPDLQIQALVEGLQQAYLGKPLALADERIERILAEHQAQLLAQSSTPQTQMALKSERKFLDEEKGRPGVQQLSDGILLTELKPGSGAKAGPHGKVQVRYVGQLPDGTVFDSNHQAQWFNLDSVIDGWRSALPQMPVGAKWRLVIPSALAYGAEGAGDLIPPFTPLVFEIELLGATTNANANANANA
D1-35_030301131hypothetical proteinATGTCGGCCACCAAGAAGCCTGTAAACACTCCGTTGCACTTGCTCCAACAATTGTCGGGCAGCTTGCTCGAGCATCTGGAAAATGCCTGCTCCCAAGCTCTGGCTGATGCTGAAAAACTGCTCGCCAAGCTGGAAAAACAACGCGGCAAGGCGCAGGAAAAACTGCACAAGTCGCGAACCAAGCTGCAAGACGCGGCAACCGCCGGCAAGGCCAAGGCACAAACCAAGGCCAAGGATGCCGTGAAGGAACTCGAAGACCTGCTCGATGCCTTGAAGGATCGTCAATCCGAAACCCGCGCCTACATCCTGCAACTCAAGCGTGATGCCCAGGAAAGCCTGAAGCTGGCCCAAGGTGTCGGTCGCGTTCAAGAAGCCGCCGGCAAGGCGCTGAGCCTTCGCGCGGCCAAGCCTGCCGCTGTATCGGCCAAGAAGCCAGCGGCTAAACCTGTCGCGGCAAAAACTGCGGCCAAGGCGCCCGTCAAGCCAGTCGCCAAAGTTGCCAGCAAGCCTGCTGCCAAACCTGCCGTGAAACCAGGCGCTGCCAGCGCTGCGAAACCTGTGGCGAAAAAACCGGCCGTGAAAGCAGCTGCCAAGCCTGCCGTCAAAGCTGCTGCTGCCAAGCCTGTTGCCGCCAAACCAGCCGCAAAAGTTGCCGCCAAGCCTGCCGCTAAAACCGCTGCTGCCAAACCCGCTGCGACGAAGACCGCCGCTGCCAAGCCTGCTGCGAAAGCGGCGGCCAAACCTGCTGCCGCGAAGCCGGCCGCCAAGGCTGCCGCTGCCAAACCCGCTGCCGCCAAGCCTGCTGTCAAATCGGCGGCCAAGCCGGTTGCTGCTGCCAAGGCTCCCGTCAAAGCACCTGTAAAGGCCGTGGCAAAACCCGCAGCAGCCAAACCAGCCGCCAAGCCGGCAACGGCCAAGCCGGCCGCTGCAAAACCTGCAGCCAAACCCGCTGCGAAGCCTGCCGTGAAAAAGCCTGCTGCTGCAAAACCGGTGACGGCTCCGGTTGCCAAGCCTGCCGCGCCAGCACCAGCGGCCGCAGTGACGCCTGCGCCAACGACCAGCACGCCGGCGCCAGCGGTGAACCCAAGCGTAACCACCGCGCCGAGTACTACTCCGCCCCGCGCTTCCTAAMSATKKPVNTPLHLLQQLSGSLLEHLENACSQALADAEKLLAKLEKQRGKAQEKLHKSRTKLQDAATAGKAKAQTKAKDAVKELEDLLDALKDRQSETRAYILQLKRDAQESLKLAQGVGRVQEAAGKALSLRAAKPAAVSAKKPAAKPVAAKTAAKAPVKPVAKVASKPAAKPAVKPGAASAAKPVAKKPAVKAAAKPAVKAAAAKPVAAKPAAKVAAKPAAKTAAAKPAATKTAAAKPAAKAAAKPAAAKPAAKAAAAKPAAAKPAVKSAAKPVAAAKAPVKAPVKAVAKPAAAKPAAKPATAKPAAAKPAAKPAAKPAVKKPAAAKPVTAPVAKPAAPAPAAAVTPAPTTSTPAPAVNPSVTTAPSTTPPRASNANANANANA
D1-35_03031465hypothetical proteinATGTCCTCTGATCTGTGGAGCTTTTCGATCAACCTTTATGCCAGGCCTGGCGTGGAAGCGGCGTGCCTGGCGTTGCAGGCAGAAGGCGCGAACGTCTGTCTGGTGCTTTGCGGGCTGTGGCTGGAACAACGCGGGGTAACCTGTGATGAGCAGAGGTTGCAGCAACTTAGGCACGTGGCCGGCCCCTGGGACGCAGCCGTCGTCCAGCCATTGCGGACGTTGCGCACACAATGGAAAGACCTCGCCCGCCAGGACGCCGGGCTGGGTAGCCTGCGCGAACAGATCAAGAAACTGGAGCTGGAGGCCGAACGACAATTGCTGGAGCGGCTGGAAGCCGCGGCAGGGGACTGGCCCAAGGGCCAGGATGAAGCGACAGCGCAGTGGCTGCAGAGGCTGGTGGCGAATGCCGGCCAAACCAACCGCGACGCGCTGCATCGGCTGCGCGTCGCGGCAGTCACCCCTTAGMSSDLWSFSINLYARPGVEAACLALQAEGANVCLVLCGLWLEQRGVTCDEQRLQQLRHVAGPWDAAVVQPLRTLRTQWKDLARQDAGLGSLREQIKKLELEAERQLLERLEAAAGDWPKGQDEATAQWLQRLVANAGQTNRDALHRLRVAAVTPNANANANANA
D1-35_030321911yheSCOG0488putative ABC transporter ATP-binding protein YheSATGATTCGACTTCAGAACCTGACTTTACAGCGTGGCCCGCAACGTCTGCTAGAAGACGCCGAGCTGACCCTGCACGCCGGCCACAAAGCTGGCCTCATCGGTGCCAACGGCGCCGGCAAATCGAGCCTGTTCGCTTTGCTGCGCGGCGAGTTGCACCCGGACTCCGGCGATTGCTTCCTGCCGGCGGATTGGCGCATCGCCCACATGCGTCAGGAGGTCGATACACTCGAGCGCCTGGCCGTGGATTATGTGCTCGATGGCGACCTGCGTCTGCGTGAGGTGCAGCGCGATCTCGCCGCGGCCGAAGCCGCCCATGACGGTGCCGCCCAGGCGCGCCTGCACTCGGAACTCGACAGTGCCGACGGCTACACTGCGGACGCCCGGGCACGTAAATTGTTGGCCGGCCTGGGCTTTACCAACGAACAGATGGATCGCCAGGTCGGCGACTTCTCAGGTGGCTGGCGGATGCGCCTGAACCTGGCGCAGGCCCTGATGTGCCCGTCGGACCTGTTGCTGCTCGACGAGCCGACCAACCACCTGGATCTGGACGCGATCATCTGGCTCGAAGAGTGGCTCAAGAGTTACCCCGGTACACTGCTGCTGATTTCCCACGACCGCGACTTCCTCGACGCCGTGGTGGATCACGTAGCCCATGTCGACCAGCGCAAGCTCACCTTGTACCGCGGCGGCTACAGTGCCTTCGAGCGTGCCCGTGCCGAACGTCTGGCCCAGCAACAGCAGGCCTACGAGAAGCAACAGGCGCAACGTGCGCACATGGAAAGCTACATTGCCCGCTTCAAGGCCCAGGCTACCAAGGCCCGCCAGGCCCAGAGCCGGATCAAGGCGCTGGAGCGGATGGAAGAACTGTCGGCGGCCCACGTCGACTCACCATTCGATTTTGTCTTCCGCGAATCGAGCAAGATCTCCAGTCCGCTGATCGACCTGTCCGACGCGCGCCTGGGCTACGGCGACAAGACCGTGCTGGAGAAGGTCAAGCTGCAACTGACCCCAGGCGCGCGGATCGGTCTGCTGGGGCCCAACGGTGCCGGTAAGTCGACCCTGATCAAGAACCTCTCTGGCGAGCTCCAGCCCTTGGCCGGACGCCTGACGCGCGGCGAAAACACGGTGGTCGGCTACTTCGCCCAGCATCAGTTGGACTCGCTCGATGCCAAGGCCAGCCCACTGTTGCATCTGCAACGCCTGGCGCCGACCGAACGTGAACAGACTCTGCGCGATTTTCTCGGTGGTTTCGACTTTCGCGGCGCGCGTATCGACGAGCCGGTGCTGAATTTCTCCGGTGGCGAGAAGGCGCGCCTGGCGCTGGCGTTGATCGCCTGGGACCGGCCGAACCTGTTGCTGCTCGACGAGCCGACCAACCACCTGGACCTGGAGATGCGCCTGGCCCTGACCATGGCCTTGCAAGAGTTCAGCGGCGCGGTGCTGGTGGTCTCCCACGACCGGCATTTGCTCAAGAGCACCACGGACAACTTCTTCCTGGTGGCCGACGGCAAGGTCGAGGAGTTCGATGGCGATCTCGAAGACTATGCGCGCTGGCTGGTGGAATATCGCCAGCGCAACGCACCGGTCAGCAGCACCCCGGTGAACCCGGACAAAACCGACAAGAAGGCCCAGCGCCAGGCCGCGGCAGCGTTGCGTCAGCAGTTGGCGCCGCACAAGCGCGAGGCCGACAAGCTCGAAGCCGAGTTGGGCAAACTGCATGAAAAGCTGCAGAAAATCGAAACCAGCCTTGGCGACAGCGGTCTCTACGAGGCAGCGCGCAAGGACGAGCTGCGTGATCTGCTGGCTGAACAGGCCAGGCTGAAAGTTCGAGAAGCGGAACTTGAGGAGGCGTGGATGCAAGCCCTGGAGTTGCTGGAAAACCTGCAAGCGGAGCTGGAGGCGTTGTCCTGAMIRLQNLTLQRGPQRLLEDAELTLHAGHKAGLIGANGAGKSSLFALLRGELHPDSGDCFLPADWRIAHMRQEVDTLERLAVDYVLDGDLRLREVQRDLAAAEAAHDGAAQARLHSELDSADGYTADARARKLLAGLGFTNEQMDRQVGDFSGGWRMRLNLAQALMCPSDLLLLDEPTNHLDLDAIIWLEEWLKSYPGTLLLISHDRDFLDAVVDHVAHVDQRKLTLYRGGYSAFERARAERLAQQQQAYEKQQAQRAHMESYIARFKAQATKARQAQSRIKALERMEELSAAHVDSPFDFVFRESSKISSPLIDLSDARLGYGDKTVLEKVKLQLTPGARIGLLGPNGAGKSTLIKNLSGELQPLAGRLTRGENTVVGYFAQHQLDSLDAKASPLLHLQRLAPTEREQTLRDFLGGFDFRGARIDEPVLNFSGGEKARLALALIAWDRPNLLLLDEPTNHLDLEMRLALTMALQEFSGAVLVVSHDRHLLKSTTDNFFLVADGKVEEFDGDLEDYARWLVEYRQRNAPVSSTPVNPDKTDKKAQRQAAAALRQQLAPHKREADKLEAELGKLHEKLQKIETSLGDSGLYEAARKDELRDLLAEQARLKVREAELEEAWMQALELLENLQAELEALSNANANANANA
D1-35_03033582hypothetical proteinATGGAAGCGTTGTCCCTGCCTATACCCGTCATGTGGATCGAGCCGATCTGGCTCGGTGTGCAAATCCTGCTGATTCTGTTGGTCGGTTATGTTGCCCAGCGTGTCGTCGCGCGCTTCCTCACCGGGCTCGGTGAACGTTACCCACTGCCGCCCCAATTGGTGATCATCCTGCGCGGTGTGCTGCGCTGGCTGATCATGGGCAGCGCGGTACTGGTGGCGCTCGAACGCCTCGGCGTCTCGGCTACGGTGCTGTGGACCGCGCTGTCTGGGTTCGTTGCCGTTGCGGCGGTGGCGTTCTTCGCCATCTGGAGCGTGCTGTCGAACCTGCTCTGCGCCATTCTGATCTACACCGTCGGCCCGTTCCGACTGGGTGACGTGGTCGAGCTGGTCGAGGCCACCGACAAGCCTGGCATCAAGGGGCGGGTGGTGGCGATCAACCTGCTCTACACCACCTTGATCGAACCCGAGGAACTCGGTACCGGCAGCTCCATGGTGCAGGTGCCCAACAGTCTGTTCTTCCAGCGTTCGGTCCGGCGCTGGCGCGGCAGCGAAGCGTTTCCGGTCGGCGGTTTCGTCGAGTAGMEALSLPIPVMWIEPIWLGVQILLILLVGYVAQRVVARFLTGLGERYPLPPQLVIILRGVLRWLIMGSAVLVALERLGVSATVLWTALSGFVAVAAVAFFAIWSVLSNLLCAILIYTVGPFRLGDVVELVEATDKPGIKGRVVAINLLYTTLIEPEELGTGSSMVQVPNSLFFQRSVRRWRGSEAFPVGGFVENANANANANA
D1-35_03034633rhtB_5COG1280Homoserine/homoserine lactone efflux proteinATGTTGCTGGAAACGTGGCTGGCGTTCTTCGCCGCCTGCTGGGTCATCAGCCTTTCGCCGGGCGCCGGTGCCATTGCATCGATGTCCAGCGGTCTGCAATACGGTTTCTGGCGTGGCTACTGGAACGCCCTGGGCCTGCAATTGGGCCTGGCGTTGCAGATCGTGATTGTCGCCGCCGGTGTTGGCGCGATTCTCACCGCGTCAGCTACCGCCTTCTACGCAATCAAGTGGTTCGGCGTGGCGTACCTGGTCTATCTGGGCGTCAAGCAATGGCGGGCCATTCCCGCAGACCTTAGCGACGACGCGGCGGTGCGCCCCATCGGCAAACCCCTGGCCTTGGTGTTTCGCGGTTTCCTGGTGAACATCAGCAACCCCAAGGCGCTGGTATTCATGCTCGCGGTGCTGCCGCAGTTCATCGATCCTCATGCCCCGTTGGTCAAGCAATACCTGATCCTGGGCGTGACCATGATCTGCGTCGACCTCATTGTCATGGCCGGGTACACCGGGCTGGCATCCAAGGTCTTGCGCCTGTTGCGTACCCCGAAACAGCAACGGCGGATGAACCGGACCTTCGCCGGGCTGTTCATCGGCGCGGCAGGTCTGCTGGCGACGATTCGCAGGGCTGCGGTGTAAMLLETWLAFFAACWVISLSPGAGAIASMSSGLQYGFWRGYWNALGLQLGLALQIVIVAAGVGAILTASATAFYAIKWFGVAYLVYLGVKQWRAIPADLSDDAAVRPIGKPLALVFRGFLVNISNPKALVFMLAVLPQFIDPHAPLVKQYLILGVTMICVDLIVMAGYTGLASKVLRLLRTPKQQRRMNRTFAGLFIGAAGLLATIRRAAVPGPT0021036_300DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QUORUM_SENSING_RELATED_GENESCE-QSR-PUTATIVE_TRANSPORTER,PGPT0021036-rhtB-K05834NANA
D1-35_03035744hypothetical proteinATGCGTACATGGATCGGCATCATGGCCCTGGCCTGCGCATTCAGTGCGCAGGCGGCCCCAAGAGTTGCAGTGACTGACCTGGCGTACCAGCAACGCGTGGAAGAATACATCCACACCGTTTCGGCCCAGAGCAACTTCCAGGCGAACCCGTACAGCGCCAGCGCGTCGTCGAGCTACGAAGAGATGGAAGCGACCAGCAGCTACATCGAGCAAGGCGAACTGCGCAAGTTCACTGGCGACATCAAGGGCGAGATCCTGCGCAGCGGTATGTTCCAGCTGGTGCAGGGCACGCCGCACACCGCATCGTCCACGGGCGATGTCTATGACGTGATCAAGCGAATCAAGGCCGGGCATTTCAAGGGCGCCGACTATGTGCTGTTCGGCACCGTGTCGGACATCGATTTCACTCGGGACATCAACGAGCTGGGCACTGCCGACAGCTACTCGGCGGTGCTTGCACTGTCGCTGGTGGCGGATTTCAGCCTGATCAACACCAAGACCTATGAAATCACCTCGGCCTTCACCGCCATGGGCGAGGGCCAGGACACCAAGCTGTTGAACCACCGGGACGTGCGTATCAGCCTCAATCGCCCACGGGTCGTGCGCGAAGTGTCCAAGGCGTTGGGTGAAGACGTGGCGCGGCAGTTGAGCGAGCAGCTCGGTGGCCCGAGCCATGAACAGCCTGGCGAGCCGGTGCAGCGCAATAACCTGCCGAGGGATACCGCGCCGGTAATCCTGCGCTGAMRTWIGIMALACAFSAQAAPRVAVTDLAYQQRVEEYIHTVSAQSNFQANPYSASASSSYEEMEATSSYIEQGELRKFTGDIKGEILRSGMFQLVQGTPHTASSTGDVYDVIKRIKAGHFKGADYVLFGTVSDIDFTRDINELGTADSYSAVLALSLVADFSLINTKTYEITSAFTAMGEGQDTKLLNHRDVRISLNRPRVVREVSKALGEDVARQLSEQLGGPSHEQPGEPVQRNNLPRDTAPVILRNANANANANA
D1-35_03036588hypothetical proteinATGTTCCTACGCATCTCCTCCCTCGCCCTCGCCGCCCTGCTGGTCAGCGGCTGCGCCAACAACTCGCCGGTCCTGGGCAACAAGAACATCAGCTATGGCGACACCAAGGCCGTGGAAACCGTCACCAACGAGTTCGGCTCCACCGACTTGCAGATGATCGCCGAGTCGATGACCCGCTCCCTCGCCCAGTCCGGCATCCTGCAGGGCCGTCCGGTGGTGCAGGTCTACGACGTGAAGAACAAGACCAGCGAGTACATCGATACTCGCGAGATCACTACCAGCATCAAGACCCAACTGATGAAAACCGGCGCGGCACGCTTTGCCAGTGACAACAATGCCATGGACAGCCAGGTCGACCAGCTCAAGCTGCAGAACCAGAGCGGCCTGTACAAAAAAAGCACAGTGGCCAAGACCGGCAACATGATCGCCGCCAAGTACCGCATCGAGGGTTCCATCAGCTCGATCGTCAAGCGCAGCGAAGACTACAAGGACGTCTTCTACAAATTCAGCCTGCAACTGATCGATGTCGAAAGCGGTCTGGCCGAATGGATGGACGAGAAAGAAATCCGCAAGACCACGGAGCGTTAAMFLRISSLALAALLVSGCANNSPVLGNKNISYGDTKAVETVTNEFGSTDLQMIAESMTRSLAQSGILQGRPVVQVYDVKNKTSEYIDTREITTSIKTQLMKTGAARFASDNNAMDSQVDQLKLQNQSGLYKKSTVAKTGNMIAAKYRIEGSISSIVKRSEDYKDVFYKFSLQLIDVESGLAEWMDEKEIRKTTERPGPT0023869_598DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023869-lpoB|ycfM-K07337NANA
D1-35_03037372hypothetical proteinATGCGTTTAAAACTGATCGCCGTCGGCGCCCTGGCCTTGCTGGCCGGTTGCGCCACCCCACCACCACCGGAGCAGGGCACTGCCGCCAGCAAGGTCGTGGCGATGGGCAAGACAAAAAACATCGTGGTCGGCGCCATGCGCGTCGCCCGCGAAAACGGCTACATGACCGTCAACGTGCAGTTGAGCAACACCAGTTTCAATAACAAGACGATGTATTACCGCTTCGCCTGGCTGGGACCGGAAGGCTTCCCGATCGCCGAAGAGGAAAGCTGGAAAACCCTGACGCTGTATGGCGAACAGACCCGCTTCCTGCCGGCCATCGCACCGACGCCCAAGGCCGTGGACTTCCGTTTGGAAATCAATACCCCTTGAMRLKLIAVGALALLAGCATPPPPEQGTAASKVVAMGKTKNIVVGAMRVARENGYMTVNVQLSNTSFNNKTMYYRFAWLGPEGFPIAEEESWKTLTLYGEQTRFLPAIAPTPKAVDFRLEINTPNANANANANA
D1-35_030381395hypothetical proteinATGGCATCCCGTGCTCTTTTCTCGGTCGCCCTCGGCGCGATCACCTTGCTGTCCGGCTGCTCGGCGTTTCGCAACTACGACAGCGAACTGGCCCAGACCAATCAGCAACTGGCCTCGGGCAACGTCGACGCGGCATTGACCCTGCTGGAAAAAAACAACACCAGCAAAGACAAAGACCTGCTTTATTTCTTTGAAAAGGGTGAGCTGCTGCGTGCCAAGGGCGACCTGTCCGGCAGCCAGACCGCCTGGACCAGCGCCGACCAGCAAGTCGGGCAGTGGGAAGACGCCGTCAAGCTCGATACCGCCAAGTACGTTGCGCAGTTCGGCAGTTTCCTGGTCAACGACAAAGTCCGGCGCTATGAGGGTTATGACTATGAAAAGGTGATGCTCACCACTCAGATGGCGTTGAACCTGCTGGCGGTGAATGACTTCGACGGCGCACGGATGCAGATCAAGAAGACCCACGAGCGCGAAGCCGTGATCGCCGACCTGCGCGACAAGGAATACCTCAAGCGCGAGGAAGACGCCGAGAAACAGGGGGTCAAGACCGAATACAAGGACCTCAAGGGTTATCCGGTCGCCAGCCTTGACGCCCCTGAAGTGGTCAGCCTGAAAAACAGTTACCAGAGCGCGTTCAGCCATTACCTGGCAGGTTTCGTCTACGAAGCCCTGGGCGAGAAAGATCTGGCCGCGCCGGGTTATCGCAAGGCCGCCGAACTGCGTCCCAACACCCCGCTGCTGGAACAGGCGCTGCTCAACCTCGACAAGCCTGCCGCAAAGGACGACGACAGTGACGTCCTGATTGTGGTGCAGAGCGGCCTGGCGCCATCCCGTGACTCGATGCGAATCCCGCTGCCCTTGCCGATCAGCGGCAATGTGGTCATCACGCCACTGTCCTTCCCGCTGATCAAGCCGGACACCTCCACCGCGACCTTCGCCCAGATCGGCGTCGACGGCCGCCAGTTGGACCTGACCCAGCTCAACAGCACCACCGCCATGTCGCGCCGGGCCCTGCGCGACGACATGCCGGGGATCATCCTGCGCACGACCGTGCGGGCCATCACCCGTGGCGTCGCACAGAAACAGATCAACGAAACCAACCCGCTGGCCGGCCTGGCCGTGGGCATCACCTCGGCCGTGCTCGAAGGCGCCGACACCCGGACCTGGCGCACCTTGCCGGACTACACCCAAGTGGTGCGCCTGCGCCTGAAGAAGGGCGAACACCAGGTCACCCTGCCAAGCGCGGTAGGCGGCTCGGTGGTCAAGGTCAAGGTTGATCAGCGTTACCAGGTCATCAGCCTGCGGGCGGTGGGCAGCCAGGTCTTCGCCGGCGGCCTCGCGGCCCAGGTGATCCCGAGCGCCAACCCGACCGCCATCGCCCTCAAGCAACCTTAAMASRALFSVALGAITLLSGCSAFRNYDSELAQTNQQLASGNVDAALTLLEKNNTSKDKDLLYFFEKGELLRAKGDLSGSQTAWTSADQQVGQWEDAVKLDTAKYVAQFGSFLVNDKVRRYEGYDYEKVMLTTQMALNLLAVNDFDGARMQIKKTHEREAVIADLRDKEYLKREEDAEKQGVKTEYKDLKGYPVASLDAPEVVSLKNSYQSAFSHYLAGFVYEALGEKDLAAPGYRKAAELRPNTPLLEQALLNLDKPAAKDDDSDVLIVVQSGLAPSRDSMRIPLPLPISGNVVITPLSFPLIKPDTSTATFAQIGVDGRQLDLTQLNSTTAMSRRALRDDMPGIILRTTVRAITRGVAQKQINETNPLAGLAVGITSAVLEGADTRTWRTLPDYTQVVRLRLKKGEHQVTLPSAVGGSVVKVKVDQRYQVISLRAVGSQVFAGGLAAQVIPSANPTAIALKQPNANANANANA
D1-35_030391899hypothetical proteinATGACTGCCCCGTTTCGTTTTCTGGCCTGGATTGCGCTGCCGATGCTTGCGCTTTGCAGTGCCGATCTGCTGGCTGACACTGTTGAAGGCGCGCCACAGGCGCTGCACTTGCTGGATTACATCGGGGCGGATTACCCGGCGACCGTCGACGCGGGGAAGGTCATCGACGATGCCGAATATCGCGAGCAACTGGAATTCACTCAAGTGCTGGAAGGGCTGGTCGCCGCGCTGCCAGGCAAGCCGGAGAAAGCTGAGCTGACGCAAGGCATCGGTACGTTGCGCAGTGCGATCAGCCAGCGCCAGGACGGCGCTGACGTGGCCCGTCTGGCGCGGCAGCTGGGGGCCAGGCTGGCTGTAGCCTATGAGGTCAGCCAGGCGCCGGTGATCACCCCGGACCCGACGCGCGGGGCGCCGTTGTATGCCCAGAACTGCTCGGTGTGCCATGGTGACAGCGGTGCCGGCGACGGTCCGGCGGGTGTCGGCCTGGAGCCGCCGCCCTCGAACCTGCGCGACGGGCAGCGCCTGGATCGGCTGAGCCTCTACGCGATCTACAACACCCTGGGCATGGGCGTCGAAGGCACCGATATGCCGGCCTTCGCCGATCAGCTCGACGACCGTCAACGCTGGGACCTGGCGACCTACATCGCCAGCTTCAGCGCCGACCCGGCTGCGGCCAAGGGCCAGCAGGCCTTCAACCTTGCCGACCTGGCCCGCCAGACCCCGGCCGAAGTCCTCGCCGCCCAGGGGCCCACGGCAGCGGCGACGTTCCGCGCCCAGCGCGCCCAGCCACCGCAGGTGCAGCGCGGCCCGGCGCAGTTGCTTGACTACACCGCCGCTACCCTGGACAAGAGCATCGCGGCGTATCGCACAGGTGACCACGACCAGGCCTACGACTTGTCGGTGGCAGCGTACCTGGAAGGCTTCGAGCTGGTGGAAAGCTCACTGGACAATGTCGACGCCAACGTCCGTAAAGATACCGAGAAGGCCTTGATGGCCTACCGTCAGTCCTTGCAGGACGGTTTGCCGGTCGAGCAGGCCGAGCAACGCCTGGACGCGGCCAAGGCCAAGTTGAAAGAGTCCGCCGGCCTGCTCGGTGGCGATGGCTTGAGCTGGTCGCTGAGCTACATTTCGGGCTTGCTGATCCTGCTGCGCGAAGGCCTGGAGGCGATCCTGGTCCTGGCGGCGATCCTGGCGTTCTTGCGCAACACTGGCCAGCAGTCGGCGGTGCGCAGCGTCAACGTTGGCTGGGGCCTGGCGCTGCTGGCCGGCCTGGCGACCTGGGCGCTCGCCGCATACGTAATCGATGTCAGTGGCGCGCAGCGCGAATTGCTCGAAGGCGCGACGGCGTTGTTCGCCAGCGTGATGGTGCTGTGGTTGGGCGTGTGGATGCACGATCGGCGTCACGCGGCGGCCTGGCAGGATTACATCAAGAGCAGCCTGGTCGGCGGCGGAGGCCGTTTCGGTTTCGCGATCCTGGCATTTTTCTCGGTCTATCGAGAGCTGTTCGAGGTGATCCTGTTCTACGAAACCCTGTGGCTGCAGGCCGGCCCGGCCGGGCATGACGCGGTGTTGGCCGGTGGCGCGACGGCGCTGGTGCTGCTGGTGGGACTGGCCTGGGTGATCTTGCGCGGCTCGGCGAAATTGCCGCTGGCGCTGTTCTTCAGCATCAACGCCGGTTTGCTGTGTGCGTTGTCGGTGGTATTTGCCGGTCATGGCGTGAAGGCCTTGCAGGAAGCCGGAATCTTCGGCACGCGGCCGGTGGCGTTCTTCGAGTTCGACTGGCTGGGCATCCATGCCGATGCTTATTCCCTGGCGGCCCAGGCGGTAGCGATCATCGCGATCGTTGTGCTGTACGGGCGCAGTTGGGTGGCGGAGAAACGTCGGGTGCAGGTTTCCTGAMTAPFRFLAWIALPMLALCSADLLADTVEGAPQALHLLDYIGADYPATVDAGKVIDDAEYREQLEFTQVLEGLVAALPGKPEKAELTQGIGTLRSAISQRQDGADVARLARQLGARLAVAYEVSQAPVITPDPTRGAPLYAQNCSVCHGDSGAGDGPAGVGLEPPPSNLRDGQRLDRLSLYAIYNTLGMGVEGTDMPAFADQLDDRQRWDLATYIASFSADPAAAKGQQAFNLADLARQTPAEVLAAQGPTAAATFRAQRAQPPQVQRGPAQLLDYTAATLDKSIAAYRTGDHDQAYDLSVAAYLEGFELVESSLDNVDANVRKDTEKALMAYRQSLQDGLPVEQAEQRLDAAKAKLKESAGLLGGDGLSWSLSYISGLLILLREGLEAILVLAAILAFLRNTGQQSAVRSVNVGWGLALLAGLATWALAAYVIDVSGAQRELLEGATALFASVMVLWLGVWMHDRRHAAAWQDYIKSSLVGGGGRFGFAILAFFSVYRELFEVILFYETLWLQAGPAGHDAVLAGGATALVLLVGLAWVILRGSAKLPLALFFSINAGLLCALSVVFAGHGVKALQEAGIFGTRPVAFFEFDWLGIHADAYSLAAQAVAIIAIVVLYGRSWVAEKRRVQVSPGPT0003710_437DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_TRANSPORT-IRON_II_TRANSPORT_SYSTEM,PGPT0003710-efeU|FTR|FTH1-K07243NANA
D1-35_03040456hypothetical proteinATGCGTGTATGGATCGACGCCGACGCCTGCCCCAAGGCCGCTAAGGAACTGGTGGTCAAGTTCGCCTTGAAGCGCCAGTTTGAAGTAGTACTGGTGGCCGGGCAGCCGCAGATCAAGCCGGGCCTGGCTCTGGTGAAGCTGATCGTGGTGCCCAGCGGGCCTGATGCGGCGGACGATTATCTGGTGGAGCATGCCGTCCCGGGTGAACTGGTGATCTGCAGCGACGTGCCGCTGGCCGACCGCCTGGTAAAGAAAGGCGTCGCAGCCCTTGACCCGAGGGGCAAGGAGTTCGACGCGCAGAACATGGGCGATCGACTGGCGGTGCGCAACCTGTTCACCGACTTGCGGGAACAGGGCCACATGGGCGGTGGCCCGGCGGCGTACAGCGAGCGGGACAAGCAGGGATTTGCCAATGCGCTGGATCGGATATTGACGCGGTTGTCTCGAATCTCCTGAMRVWIDADACPKAAKELVVKFALKRQFEVVLVAGQPQIKPGLALVKLIVVPSGPDAADDYLVEHAVPGELVICSDVPLADRLVKKGVAALDPRGKEFDAQNMGDRLAVRNLFTDLREQGHMGGGPAAYSERDKQGFANALDRILTRLSRISNANANANANA
D1-35_03041669elbBCOG3155Glyoxalase ElbBATGAGCAAAAAAGTTGCAGTGATCCTTTCCGGCTGTGGCGTGTACGACGGCGCAGAGATCCACGAAAGCGTGATCACTTTGCTGCGTCTCGACCAGCGCGGCGCGCAGGTCCAGTGTTTCGCCCCCAACATCGCCCAATTGCATGTCATCAATCACCTGACCGGTGAGGAAATGCCCGAGAGCCGCAACGTGTTGGTGGAATCGGCGCGCATCGCCCGGGGAAATGTGAAAGACCTGCGCGAAGCCAGGGCCGAGGACTTTGATGCGCTGATCGTGCCCGGCGGCTTCGGCTCGGCGAAAAACCTCTCCAACTTTGCCGTCGAAGGCGCCGGTTGCAGCGTCCAGCCGCAAGTCCTGGCGTTGACCGAAGCCTTCGCCGAGGCCGGCAAGCCGGTTGGGCTGATCTGCATCTCACCGGCCCTGGCGGCGAAAATCTACGGCCCTGGGGTGACCTGCACCATCGGCACGGACGCCGACACCGCCGCTGCCGTGACCAAGATGGGCGGGACTCATGAAGAGTGCCTGGTCACCGATATCGTCGAAGACACCGCGCGCAAGCTGGTCAGCACCCCCGCCTACATGCTGGCGCAGAACATCAGCGAAGCGGCTTCGGGGATCAACAAGCTGGTGGACCGGGTGCTGGAGCTGACGCACGAGAATGATGAGTGAMSKKVAVILSGCGVYDGAEIHESVITLLRLDQRGAQVQCFAPNIAQLHVINHLTGEEMPESRNVLVESARIARGNVKDLREARAEDFDALIVPGGFGSAKNLSNFAVEGAGCSVQPQVLALTEAFAEAGKPVGLICISPALAAKIYGPGVTCTIGTDADTAAAVTKMGGTHEECLVTDIVEDTARKLVSTPAYMLAQNISEAASGINKLVDRVLELTHENDENANANANANA
D1-35_030421236hypothetical proteinATGAATTTCATCCTGTATGCCGTGCCGTTTTTCTTCGTGTTGATTGCCGTCGAGTTGCTGGCCGATCGCTGGCGTGGCGTGAGCCACTATCGCCTGGCGGACGCGATCAACAGCCTGAGCACCGGTGTGCTGTCGACCACGACGGGGTTGTTGACCAAGGGCGTGGGCCTGGTGACCTATGCCTTTGCCCTGGAGCATCTGGCGGTCTTTCAATGGCCGACCGACCAGGCCTGGACCTGGGCATTCGCCTTTGTGTTCTATGACTTCTGCTACTACTGGCTGCACCGCTTGGGCCACGAGCGCAACATCCTCTGGGCCGCCCATTCGGTGCACCACCAGAGCGAGGACTACAACCTCTCCACGGCGTTGCGCCAGACCAGCAGCGGTTTCCTGCTGAGCTGGATCTTCTACCTGCCGCTGGCGGTGCTGGGCGTGCCGCTGCTGGTGTTCGTCGGTGTCGCGGCGTTGAACCTGCTGTATCAGTTCTGGGTGCATACCCAGCACATCCCCAAGCTCGGCTGGCTGGAGTGGTGCTTCGTCACGCCATCCAATCATCGTGCCCACCATGCACAGAACCCTCTCTACATGGATCGCAACTACGGCGGCGTGTTCATTATTTGGGACCGTCTGTTTGGCACCTTCCAGGAAGAGGACGACAACGAGCCGGTCATTTTCGGCGTGACCACGCCACTGGCGAGCTGGAATCCGTTGTGGGCCAATCTGCAGTTCTATGCGCAACTGTGGGCCGATGCCCGGCGCGCCGAGCGCTGGTGGGACAAGCTGCGGATCTGGTTCATGCCCACCGGTTGGCGGCCAGCCGATGTGGCCGCCAGGTACCCGCTGAACAAGCCGGACCTGAGCCGGTTCCGCAAATTCGAAGTGCCCCTGGCCGGACGCCAGCAAGGGTACGTGGCGCTGCAGTTTTGCTTCTACATCGCCCTGGGCAGTTATTTGATGAACCTGGAAAACAGCCTGCCGGCCACTGCCCTGGTGTTGGGGTGGGGAGCGGTAGCGTTGGGTCTGTTCGTGTTGGGCGCGGCTCTGGAGAATCGCCCGTGGGCGCTGAGGCTTGAGGTTTTGCGCCTGGCTGCGAACCTGCCGCTGGTGTGGCTGGCGCCGCTGTCCGGGTTATGGCCGGCCAGCCCGGTGGCCTGGGTTGGCTTGCTCAGCTACAGCCTGATCAGTGGCATCGGCTTGTACTATTGCCGCAACCGTCTCACTCGCCTGGCGTCGTAGMNFILYAVPFFFVLIAVELLADRWRGVSHYRLADAINSLSTGVLSTTTGLLTKGVGLVTYAFALEHLAVFQWPTDQAWTWAFAFVFYDFCYYWLHRLGHERNILWAAHSVHHQSEDYNLSTALRQTSSGFLLSWIFYLPLAVLGVPLLVFVGVAALNLLYQFWVHTQHIPKLGWLEWCFVTPSNHRAHHAQNPLYMDRNYGGVFIIWDRLFGTFQEEDDNEPVIFGVTTPLASWNPLWANLQFYAQLWADARRAERWWDKLRIWFMPTGWRPADVAARYPLNKPDLSRFRKFEVPLAGRQQGYVALQFCFYIALGSYLMNLENSLPATALVLGWGAVALGLFVLGAALENRPWALRLEVLRLAANLPLVWLAPLSGLWPASPVAWVGLLSYSLISGIGLYYCRNRLTRLASNANANANANA
D1-35_03043624hypothetical proteinATGCTCCAACAATTTCTGCATGACTTCGGCTACTTGGCCCTGTTTATCGGCACGTTCTTCGAAGGCGAAACCATCCTCGTGCTCGCAGGCTTCCTGGCGTTCCGTGGCTACATGGACATCAACCTGGTGGTGGTCGTGGCATTTTGCGGCAGCTACGCGGGCGATCAGCTGTGGTACTTCCTGGGCCGCAAACATGGCCGCAAGCTCCTGGCGCGCAAGCCGCGCTGGCAGTTGATGGGGGATCGCGCGCTGGAGCACATCCGCCGCCATCCGGACATCTGGGTACTGAGCTTTCGCTTCGTCTACGGTTTGCGCACGGTGATGCCGGTGGCGATCGGCCTCTCTGGCTATCCACCGGGTCGCTACCTGCTGCTCAACGGTATCGGCGCGGCGATCTGGGCCACGGCCCTGGCGGCTGCCGCGTACCACTTTGGCGCGGTGCTCGAAGGCATGCTGGGCAGCATCAAGAAATACGAACTGTGGGTACTTGGCGCCCTGCTGGTTCTGGGCTTGGGCCTATGGCTGCGTCGACGCATCAAGAACGCACGGCTGGCCAGACAAGTCCTTGCGGCAGAACGTCTCGAACAAGCCAAGTCCGCCGAAACTACGACGCCAGGCGAGTGAMLQQFLHDFGYLALFIGTFFEGETILVLAGFLAFRGYMDINLVVVVAFCGSYAGDQLWYFLGRKHGRKLLARKPRWQLMGDRALEHIRRHPDIWVLSFRFVYGLRTVMPVAIGLSGYPPGRYLLLNGIGAAIWATALAAAAYHFGAVLEGMLGSIKKYELWVLGALLVLGLGLWLRRRIKNARLARQVLAAERLEQAKSAETTTPGENANANANANA
D1-35_030441014hemB_2COG0113Delta-aminolevulinic acid dehydrataseGTGAGCTTTACCCCCGCCAATCGTCTGTTCCCCGCCACCCGTCTGCGCCGCAACCGCCGTGATGAGTTCTCCCGTCGGCTGGTGCGTGAAAATGTGCTGACCACCAATGACCTGATCCTGCCGGTGTTCGTGCTGGACGGGGAGAACCGTCGTGAAGCGGTGGCGTCGATGCCGGGCGTGGAGCGCCTGACCATCGACTTGCTGCTCGAAGCGGCGGCCGAGTGGGTGGAACTGGGTATCCCGGCGCTGGCGCTGTTCCCGGTCACCCCGCCAGCGCTCAAATCGCTGGACGCCGCCGAAGCCTGGAACCCCGAGGGTATTGCCCAGCGCGCGACCCGTGCCCTGCGCGCGCGCTTCCCGGAGCTCGGTGTGATTACCGACGTGGCGCTGGATCCGTTCACCACCCACGGTCAGGACGGCATTCTCGACGAAGAAGGCTACGTGCAGAACGACATCACCGTCGATGCACTGGTCAGGCAAGCGTTGTCCCACGCCGAAGCGGGGGCCCAGGTCGTGGCGCCATCCGACATGATGGACGGTCGCATCCAGGCGATCCGCGAAGCCCTGGAAGTGGCCGGCCATGTCAACGTGCGCATCATGGCCTATTCGGCCAAGTACGCCAGCGCCTACTACGGTCCGTTCCGCGACGCGGTCGGCTCGGCCCTGAACCTGGGCAAGGCCAACAAGGCCTCCTATCAGATGGACCCGGCCAACACCCATGAAGCCTTGCACGAAGTGGCTGCCGACTTGTCAGAAGGCGCAGACATGGTCATGGTCAAGCCGGGGATGCCTTATCTCGACATTCTTTGCCGGGTAAAGGAAGAATTCAAAGTACCGACCTTTGTTTATCAGGTCAGCGGCGAGTATGCGATGCACATGGCCGCGATCCAGAACGGCTGGTTGAGCGAAGGGGTGATTCTCGAGTCCCTGACCGCTTTCAAACGTGCGGGTGCTGATGGCATCCTGACCTACTTTGCCGTGCGCGCCGCCCAATTGTTACGAGAGCAGAAATAGMSFTPANRLFPATRLRRNRRDEFSRRLVRENVLTTNDLILPVFVLDGENRREAVASMPGVERLTIDLLLEAAAEWVELGIPALALFPVTPPALKSLDAAEAWNPEGIAQRATRALRARFPELGVITDVALDPFTTHGQDGILDEEGYVQNDITVDALVRQALSHAEAGAQVVAPSDMMDGRIQAIREALEVAGHVNVRIMAYSAKYASAYYGPFRDAVGSALNLGKANKASYQMDPANTHEALHEVAADLSEGADMVMVKPGMPYLDILCRVKEEFKVPTFVYQVSGEYAMHMAAIQNGWLSEGVILESLTAFKRAGADGILTYFAVRAAQLLREQKPGPT0003655_1249DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003655-hemB-K01698NANA
D1-35_030452217ppkPolyphosphate kinaseATGAATACCGAAGGACTCACAGAAGTTGCCGTAAAAGACGCTCAGCCCGTGGTCGAGCAAGCCGCCGAAACGCCGCCGGAGCTGGAGTCGGCTCCAGCGGCCGTGCCCGAGCCGGCCCCTGCTCCGGCGATCGCGATCACCAACCTGGATGACAGCAGCCTGTACATCCACCGCGAGCTGTCGCAACTGCAATTCAACATCCGCGTGCTGGAGCAGGCACTGGATGAGTCCTATCCACTGCTGGAGCGGCTGAAGTTTTTGCTGATCTTTTCCAGCAACCTGGACGAGTTCTTCGAGATTCGCGTCGCCGGCCTGAAAAAACAGATCACCTTCGCCCGCGAGCAGGCCGGTGCCGATGGCTTGCAACCGCACCAGGCCCTGGCGCGCATCAGCGAGCTGGTACACGGCCACGTTGACCGCCAGTACGCGATCCTCAACGACATTCTGCTGCCGGAGCTGGAAAAACATCAGGTCCGCTTCATCCGTCGCCGCTACTGGACGACCAAGCTCAAGACTTGGGTACGCCGTTACTTCCGCGACGAGATCGCCCCGATCATTACCCCGATCGGCCTCGACCCGACGCACCCGTTTCCATTGCTGGTAAACAAGAGCCTGAACTTCATCGTCGAGCTGGAAGGCATCGATGCCTTTGGTCGCGATTCCGGCCTGGCGATCATTCCGGCGCCGCGCCTGCTGCCGCGCATCATCCGCGTGCCGGAAGATGTCGGCGGGCCAGGCGACAACTATGTGTTCCTGTCGTCAATGATCCACGCCCATGCCGATGACCTGTTCCAGGGCATGAAGGTCAAGGGCTGCTACCAGTTCCGCCTGACCCGTAACGCCGACCTGTCGGTGGACACCGAGGACGTCGAAGACCTGGCCCGCGCCCTGCGCGGCGAGCTGTTCTCCCGCCGTTACGGCGATGCGGTGCGCCTGGAAGTGGCTGACACCTGCCCGAAACATCTGTCCGACTACCTGCTCAAGCAGTTCAACCTGCACGAGACCGAGCTGTATCAGGTCAATGGTCCGGTGAACCTGACGCGGCTGTTCAGCATCACCGGCCTGGACAGCCATCCGGAGCTGCAATACTCGCCGTTTACGCCGCAGATTCCGAAACTGCTGCAAAACAGCGAGAACATTTTCAGTGTGGTCAGCAAGCAGGACATCCTCCTGCTGCACCCCTTCGAGTCGTTCACGCCGGTGGTCGACTTGCTGCGCCAGGCCGCCAAGGATCCCCACGTATTGGCGGTGCGCCAGACGTTGTATCGCAGCGGCGCCAACTCGGAGATCGTCGACGCCCTGGTGGACGCGGCGCGAAACGGCAAGGAAGTCACCGCGGTGATCGAATTGCGCGCGCGTTTCGACGAAGAATCCAACCTGCAACTGGCCAGCCGCCTGCAAGCGGCCGGCGCGGTGGTGATCTACGGCGTGGTTGGCTACAAGACCCACGCCAAGATGATGCTCATCCTGCGGCGCGAGGCCGGCGAGATTGTGCGCTACGCGCACTTGGGCACCGGCAACTATCACGCCGCCAACGCTCGGCTGTATACCGACTACAGCCTGCTGACCTCGGATGATGCGCTGTGCGAGGACGTCGGCAAGCTGTTCAGCCAACTGATCGGCATGGGCAAGACGCTGCGCATGAAAAAATTGCTGCATGCGCCGTTCACCCTGAAAAAGGGCATGCTCGACATGATCGCCCGGGAAACCCAGTTCGCCCTGGACGGCAAGCCCGCGCACATCATTGCCAAATTCAACTCGCTGACTGATCCGAAGATCATTCGCGCGCTATATAAGGCCAGCCAGTCGGGCGTGCGCATCGACCTGGTGGTACGCGGCATGTGCTGCCTGCGGCCGGGCATTCCGGGGGTGTCCCACAACATCCATGTGCGCTCGATCATCGGGCGCTTCCTGGAGCACACCCGGGTGTTCTATTTCCTCAATGGCGGCGAGGAGCAAATGTTCCTCTCCAGTGCCGACTGGATGGAGCGCAACCTCGACAAGCGTGTCGAGACCTGCTTCCCGGTGGAGGGCAAGAAGCTGATCCTGCGGGTCAAGAAGGAGCTGGAAAGCTACCTCACCGACAACACCCACAGTTGGAGTCTGCAGTCGGACGGTCGTTACATCCGCAACACACCGACCGGCAACCAGAACCCGCGCAGTGCCCAGGCGACCTTGCTGGATCGGCTTAGCAGCCCGGTGTTGGCGGTTCGTTAGMNTEGLTEVAVKDAQPVVEQAAETPPELESAPAAVPEPAPAPAIAITNLDDSSLYIHRELSQLQFNIRVLEQALDESYPLLERLKFLLIFSSNLDEFFEIRVAGLKKQITFAREQAGADGLQPHQALARISELVHGHVDRQYAILNDILLPELEKHQVRFIRRRYWTTKLKTWVRRYFRDEIAPIITPIGLDPTHPFPLLVNKSLNFIVELEGIDAFGRDSGLAIIPAPRLLPRIIRVPEDVGGPGDNYVFLSSMIHAHADDLFQGMKVKGCYQFRLTRNADLSVDTEDVEDLARALRGELFSRRYGDAVRLEVADTCPKHLSDYLLKQFNLHETELYQVNGPVNLTRLFSITGLDSHPELQYSPFTPQIPKLLQNSENIFSVVSKQDILLLHPFESFTPVVDLLRQAAKDPHVLAVRQTLYRSGANSEIVDALVDAARNGKEVTAVIELRARFDEESNLQLASRLQAAGAVVIYGVVGYKTHAKMMLILRREAGEIVRYAHLGTGNYHAANARLYTDYSLLTSDDALCEDVGKLFSQLIGMGKTLRMKKLLHAPFTLKKGMLDMIARETQFALDGKPAHIIAKFNSLTDPKIIRALYKASQSGVRIDLVVRGMCCLRPGIPGVSHNIHVRSIIGRFLEHTRVFYFLNGGEEQMFLSSADWMERNLDKRVETCFPVEGKKLILRVKKELESYLTDNTHSWSLQSDGRYIRNTPTGNQNPRSAQATLLDRLSSPVLAVRPGPT0002685_692DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002685-ppk-K00937NANA
D1-35_030461503ppxCOG0248ExopolyphosphataseATGCCGCTATCCCAAGCCAAGAATCTGTCCCTGATCGCTGCCATAGACCTGGGCTCCAACAGCTTTCACATGGTCGTCGCCAAGGCCCAGAACGGGGAAATCCGCATTCTTGAGCGACTCGGCGAGAAGGTCCAGCTGGCCGCCGGTATCGACGAAGAACGTCAACTGAGCGAAGAATCCATCCAGCGCGGCCTCGACTGCCTCAAACGGTTTGCCCAACTGATCAACGGCATGCCCCTGGGCGCGGTGCGCATCGTCGGCACCAATGCCCTGCGCGAGGCGCGCAACCGCGGCGAATTCATCCGGCGCGCCGAAGAGATCCTCGGCCATCCGGTGGAAGTCATCTCCGGCCGTGAAGAGGCCCGCCTGATCTACCTGGGTGTTTCCCACACCCTGGCGGACACCCCGGGCAAGCGCCTGGTGGCGGACATCGGCGGCGGTAGTACCGAATTCATCATCGGCCAGCGCTTCGAACCACTGTTGCGCGAAAGCCTGCAGATGGGTTGCGTCAGCTTCACTCAGCGCTACTTCCGCGACGGCAAGATCACCCCGGCCCGCTACGCCCAGGCCTACACGGCGGCGCGCCTGGAAATCATGAGCATCGAGCACGCGCTGCACCGCCTGACCTGGGATGAAGCCATCGGCTCCTCGGGCACCATCCGCGCCATCGGCCTGGCGCTCAAGGCTGGCGGCCATGGCAGTGGCGAGGTCAACGCCGAAGGCCTGGCCTGGCTCAAGCGCAAAGTGTTCAAGCTGGGCGAATCGGACAAGATCGATTTCGAAGGCATCAAGCCTGATCGCCGGGCGATTTTCCCGGCGGGCCTGGCGATTCTCGAGGCGATTTTTGACGCCCTCGAACTGCAACGCATGGATCACTGCGAAGGTGCCCTGCGTGAGGGCGTGCTCTACGACCTCCTGGGGCGCCATCATCACGAAGACGTCCGCGAGCGCACCCTCGGCTCGCTCATGGAGCGTTACCACGTCGATCAGGAACAGGCGGCGCGGGTCGAGCGCAAGGCCCTCCACGCGTTCGACCAGGTGGCCGACGACTGGGACCTGAACGACGGTGTCTGGCGCGAACTGCTGGGCTGGGCCGCCAAAGTGCACGAAGTCGGCCTGGACATCGCCCACTACCATTACCACAAGCACGGCGCCTACCTGATCGAGCACTCGGACCTGGCGGGTTTCTCGCGCGAGGACCAGCAGATGCTTGCGCTACTGGTGCGTGGTCACCGGCGCAATATTCCCAAGGATAAATTCGCCGAGTTCGGCGATGACGGCATCAAGCTGATCCGCTTATGCGTGCTGTTGCGCTTCGCAATCCTCTTCCACCACATCCGCGGCACCCAGGAAATGCCCCAGGTAACCCTGCATGCCAATGGTGATCAACTGGATGTGATATTCCCGGACGGCTGGCTGGAAGAAAACCAATTGACCCAGGCCGACTTCGCCCAGGAAGCGGAATGGCTGACCCGGGTTGGGATTGTGTTGAATATTCACTGAMPLSQAKNLSLIAAIDLGSNSFHMVVAKAQNGEIRILERLGEKVQLAAGIDEERQLSEESIQRGLDCLKRFAQLINGMPLGAVRIVGTNALREARNRGEFIRRAEEILGHPVEVISGREEARLIYLGVSHTLADTPGKRLVADIGGGSTEFIIGQRFEPLLRESLQMGCVSFTQRYFRDGKITPARYAQAYTAARLEIMSIEHALHRLTWDEAIGSSGTIRAIGLALKAGGHGSGEVNAEGLAWLKRKVFKLGESDKIDFEGIKPDRRAIFPAGLAILEAIFDALELQRMDHCEGALREGVLYDLLGRHHHEDVRERTLGSLMERYHVDQEQAARVERKALHAFDQVADDWDLNDGVWRELLGWAAKVHEVGLDIAHYHYHKHGAYLIEHSDLAGFSREDQQMLALLVRGHRRNIPKDKFAEFGDDGIKLIRLCVLLRFAILFHHIRGTQEMPQVTLHANGDQLDVIFPDGWLEENQLTQADFAQEAEWLTRVGIVLNIHPGPT0002595_2161DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0002595-ppx|ppx_gppA-K01524NANA
D1-35_03047735glnQ_5Glutamine transport ATP-binding protein GlnQATGCCTCTGCTTAGAATTTCCGCCCTGCATAAGTACTACGGCGATCACCACGTGCTCAAAGGCATCGACCTGAGTGTCGAGGAAGGCCAGGTGGTAGCGATCATCGGCCGCAGCGGTTCGGGAAAATCCACCTTGCTGCGCACCCTGAACGGTCTCGAATCGATTAACGACGGCGTGATCGAAGTCGATGGCGAGTACCTCGACGCGGCACGCGCCGACTTGCGCAGCCTGCGCCAGAAAGTCGGGATGGTGTTCCAGCAATTCAATCTGTTCCCGCACCTGACGGTCGGCGAGAACGTGATGCTCGCGCCACAAGTCGTGCAAAAAGTGCCCAAGGCCAAGGCGGCCGAGCTGGCGCGGCAGATGCTGGAGCGGGTCGGGCTCGGCGAGAAATTCGATGCCTTCCCGGACCGTTTGTCCGGCGGCCAACAGCAACGGGTAGCGATTGCCCGAGCCCTGGCGATGTCGCCGAAGGTGCTGCTGTGCGATGAAATCACCTCGGCCCTGGACCCGGAGCTGGTCAATGAAGTGCTCAGCGTGGTGAGGCAATTGGCCAAGGAAGGCATGACGCTGATCATGGTCACCCATGAAATGCGCTTTGCCCGGGAGGTAGGGGACAAGCTGGTGTTCATGCACCAGGGCAAGGTGCATGAAGTGGGGGACCCGAAGGTACTGTTCGCCGATCCGCAGACGGCCGAGCTGGCAAACTTCATCGGGACGGTGGAGCCTGCCTGAMPLLRISALHKYYGDHHVLKGIDLSVEEGQVVAIIGRSGSGKSTLLRTLNGLESINDGVIEVDGEYLDAARADLRSLRQKVGMVFQQFNLFPHLTVGENVMLAPQVVQKVPKAKAAELARQMLERVGLGEKFDAFPDRLSGGQQQRVAIARALAMSPKVLLCDEITSALDPELVNEVLSVVRQLAKEGMTLIMVTHEMRFAREVGDKLVFMHQGKVHEVGDPKVLFADPQTAELANFIGTVEPAPGPT0020790_4523DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020790-ABC_PA_A-K02028NANA
D1-35_03048651yecS_2COG0765L-cystine transport system permease protein YecSATGAGCGATTTCACTTTCTGGGACGTGGTGCGCAACCTGCTCACCGGCCTGCAATGGACCCTGGCGCTGTCGCTGGTGGCGTTTATCGGCGGCGGTGTGATCGGCTTGCTGGTGATGGTGCTGCGCATCTCCAAACGCGCCCTGCCGCGTAATGTCGCCCGGACCTATATCGAGCTGTTCCAAGGCACGCCACTGTTGATGCAGTTGTTCCTGGTGTTCTTTGGCGTGGCCCTGGCCGGGGTGGAGATTTCCCCCTGGATGGCGGCGGCGATCGCCCTGACGCTGTTTACCAGCGCCTACCTGGCGGAGATCTGGCGCGGTTGCGTCGAGTCGATTTCCAACGGCCAATGGGAAGCGTCCGCGAGCCTGGCGCTCAACCCGCTGGAACAGTTGCGCTACGTGATCCTGCCCCAGGCGCTGCGGATTGCCGTGGCGCCGACCGTGGGCTTCTCCGTGCAGGTGGTCAAGGGCACGGCCGTGACGTCGATCATCGGCTTTACCGAACTGACCAAGACCGGCGGCATGCTCGCCAATGCCACGTTCGAGCCGTTCATGGTCTACGGCCTGGTGGCCCTCGGTTATTTCCTCCTTTGTTACCCCTTGTCCCTCAGCGCGCGCTACCTGGAAAGGAGACTGCATGCCTCTGCTTAGMSDFTFWDVVRNLLTGLQWTLALSLVAFIGGGVIGLLVMVLRISKRALPRNVARTYIELFQGTPLLMQLFLVFFGVALAGVEISPWMAAAIALTLFTSAYLAEIWRGCVESISNGQWEASASLALNPLEQLRYVILPQALRIAVAPTVGFSVQVVKGTAVTSIIGFTELTKTGGMLANATFEPFMVYGLVALGYFLLCYPLSLSARYLERRLHASAPGPT0020795_10707DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
D1-35_03049669yecS_3COG0765L-cystine transport system permease protein YecSATGGCTTATCAGTTCGATTTCCTGCCGGTGGTGCAAAACACCGAGCTGCTGTTGCGCGGCGCGCTGTTCACCCTTGAACTGACGGCCATCGGCGCTTTGCTCGGGGTCGGCCTGGGCATCGTCGGGGCGGTGGTTCGGGCGTGGAATATCCGTCCGTTCGCGGCGATCTTCGGCGTGTACGTGGAACTGATCCGCAACACGCCGTTCCTGGTCCAGTTGTTTTTCATCTTCTTCGGCTTGCCGTCCCTGGGCCTGCAGATTTCCGAGTGGCAGGCGGCGGTGCTGGCGATGGTGATCAACCTCGGCGCGTATTCCACCGAGATCATCCGGGCCGGCATCCAGGCTATCCCACGGGGGCAACTGGAAGCCGCCGCGGCACTCGCGATGAGCCGCTTCGAAGCGTTCCGCCACGTAGTCTTGCTGCCGGCACTGGGCAAGGTCTGGCCGGCGCTGAGCAGCCAGATCATCATCGTGATGCTCGGCTCCGCCGTCTGTTCGCAGATCGCCACCGAAGAGCTGAGCTTCGCCGCCAATTTCATTCAGTCGCGCAATTTCCGCGCGTTCGAAACCTACGCGCTGACGACGCTGATCTACCTGTGCATGGCGCTGTTGATCCGCCAGTTTCTCAACTGGGTCGGGCGTCGCTACATTGCCAGGAGCAGCCAATGAMAYQFDFLPVVQNTELLLRGALFTLELTAIGALLGVGLGIVGAVVRAWNIRPFAAIFGVYVELIRNTPFLVQLFFIFFGLPSLGLQISEWQAAVLAMVINLGAYSTEIIRAGIQAIPRGQLEAAAALAMSRFEAFRHVVLLPALGKVWPALSSQIIIVMLGSAVCSQIATEELSFAANFIQSRNFRAFETYALTTLIYLCMALLIRQFLNWVGRRYIARSSQPGPT0020795_8055DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
D1-35_03050786artJCOG0834ABC transporter arginine-binding protein 1ATGATCCAGCGTTGCAGCGTCCTGCTCACTGCCCTGTTTGCCAGCCTGATGCTTTGCCAATTGCCCGCCCACGCCGATGGCCTGGAAGACGTGGTCAAGCGCGGTACGCTCAAGGTTGCGGTGCCTCAGGATTTTCCACCGTTCGGCTCCGTGGGTCCGGACATGAAGCCACGCGGCCTGGACATCGATACGGCGAAACTGCTGGCCGACCAGCTCAAGGTCAAGCTTGAACTGACGCCCGTCAACAGCACCAACCGCATTCCATTCCTGACCACTGGCAAGGTCGACCTGGTGATTTCCAGCCTGGGCAAGAACCCTGAGCGTGAAAAAGTCATCGACTTCTCCAGCGCCTACGCGCCGTTCTACCTGGCCGTATTCGGCCCGCCTGATGCCGCCATCAACGGCCTGGACGACCTCAAGGGCAAGACCATCAGCGTCACCCGTGGCGCCATCGAAGACATCGAGCTGAGCAAGGTCGCCCCCGAAGGCACCACCATCAAGCGCTTCGAAGACAACAACTCGACCATCGCCGCCTACCTGGCCGGCCAGGTGGACCTGATCGCCAGTGGCAACGTGGTGATGGTGGCCATCAGCGAGCGCAACCCCAAGCGCGTTCCGGCGTTGAAAGTGAAACTCAAGGACTCGCCGGTGTACGTGGGCGTGAACAAGAACGAGCCGGCGCTGCTGGACAAGGTCAACCAGATCCTCGCTACGGCCAAGACCGACGGCAGCCTGGAGAAAAACGCCCAGACCTGGCTCAAGCAGCCGCTGCCGGCCGACCTCTGAMIQRCSVLLTALFASLMLCQLPAHADGLEDVVKRGTLKVAVPQDFPPFGSVGPDMKPRGLDIDTAKLLADQLKVKLELTPVNSTNRIPFLTTGKVDLVISSLGKNPEREKVIDFSSAYAPFYLAVFGPPDAAINGLDDLKGKTISVTRGAIEDIELSKVAPEGTTIKRFEDNNSTIAAYLAGQVDLIASGNVVMVAISERNPKRVPALKVKLKDSPVYVGVNKNEPALLDKVNQILATAKTDGSLEKNAQTWLKQPLPADLPGPT0020800_11692DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-35_03051708nanR_1HTH-type transcriptional repressor NanRATGAATTCCATTTCTCGTGCCGTTCCGGAAGTCGCCCTGCAAGGCATCCGCAAGCTGATCGCCGATCAAGGTTTCGGCCCGGGGGATGCGCTGCCGTCACAACGGGACCTGGCCTTGCAGCTGGGGGTGAGCCGGGCCTCACTGCGCGAGGCGCTTTCATCGCTCAGTGCCTTGGGCATGATTAGCGTGCAGCCAGGGAGGGGGGTATTCGTGCAATCGCCGGCGCAAGCCCCACGCAGCGAACCAACGCCGGGTTGGCCCTTCGCCGCGCAGGCCTCGCCGGTGGATATCTTTCAGTTGCGTTATGCCCTTGAGGGGTTCGCGGCCGGGTTGGCGGCCGTCACGTTGAGCGCCGATGAGCTCGATGCCCTGGATGACAACGTCGAGGCCATGCGCCGAGAGTTGAAAGCGGGGGATTTCGACGCGGCGGCGCGGCTCGATTTCGAGTTCCACCGGCGGATCCTGCTGGCCAGCGGCAACCAGGCGATGCTGGGCATTCTCACCGCCAGCGCCGATATCTTCCTGGAAAGCCAGAAACTACCGTTCATCAGGGCGGAGCGGGCGATGGAGACGTGGCAGGAACATCGCAAGATCCTTCGCGCCCTGGCCCGCCGGGCATCGGTTTCGGCGCAAAAAACCATGCAGGAACATGTACGTAATGCGGCGTTGCGTACCGGTATCTCGTTCATCGCACCGGCCGCTTCATGAMNSISRAVPEVALQGIRKLIADQGFGPGDALPSQRDLALQLGVSRASLREALSSLSALGMISVQPGRGVFVQSPAQAPRSEPTPGWPFAAQASPVDIFQLRYALEGFAAGLAAVTLSADELDALDDNVEAMRRELKAGDFDAAARLDFEFHRRILLASGNQAMLGILTASADIFLESQKLPFIRAERAMETWQEHRKILRALARRASVSAQKTMQEHVRNAALRTGISFIAPAASNANANANANA
D1-35_03052372trxACOG0526Thioredoxin 1ATGATGGGCCACGTTTTTTTGCTGATTACCCCGGAGATTTCCATGAGCAGCGATCTGATCAAACACGTTAGCGACGCTAGCTTCGAAGCTGACGTACTCAAGGCCGAAGGCGCAGTGCTGGTCGACTATTGGGCTGAGTGGTGCGGTCCTTGCAAAATGATCGCTCCGGTCCTGGACGAAATTGCCGAGACCTACAAGGGCAAACTGACCGTCGCCAAGCTGAACATCGACGAAAACCAGGAAACCCCGGCCAAGCACGGCGTGCGTGGTATCCCGACCCTGATGCTGTTCAAGAACGGCAACGTCGAGGCCACCAAGGTCGGCGCGCTGTCGAAGTCGCAACTGGCAGCTTTCCTCGACGCCAACATCTAAMMGHVFLLITPEISMSSDLIKHVSDASFEADVLKAEGAVLVDYWAEWCGPCKMIAPVLDEIAETYKGKLTVAKLNIDENQETPAKHGVRGIPTLMLFKNGNVEATKVGALSKSQLAAFLDANIPGPT0013055_3845DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013055-trxA-K03671NANA
D1-35_030541260rhoCOG1158Transcription termination factor RhoATGAATCTGACTGAACTCAAGCAAAAGCCGATTACCGAACTGCTCGAATTGGCCGAACAGATGGGCATAGAAAATATGGCCCGTTCGCGCAAGCAGGACGTGATTTTCTCCCTGCTCAAGAAGCACGCAAAAAGCGGCGAGGAAATCTCCGGTGATGGCGTGCTGGAGATTCTCCAGGACGGCTTCGGCTTCCTCCGCTCCGCGGACGCTTCCTACCTCGCCGGCCCGGACGATATCTACGTCTCGCCGAGCCAGATCCGTCGCTTCAACTTGCGCACCGGTGACACCATCGTTGGCAAGATCCGCCCTCCAAAGGAAGGCGAGCGTTACTTCGCGCTGCTCAAGGTCGATACGATCAACTTCGACCGTCCGGAAAACGCGAAGAACAAGATTCTCTTCGAGAACCTGACCCCGCTGTTCCCGACCGTGCGCATGAAGATGGAAGCCGGCAACGGTTCCACCGAAGACCTCACTGGTCGTGTCATCGACCTGTGCGCACCTATCGGCAAAGGCCAGCGCGGTCTGATCGTGGCGCCGCCGAAAGCGGGCAAGACGATCATGCTGCAGAACATCGCGGCCAACATCGCCCGTAACAATCCTGAAGTTCATCTGATCGTGCTGCTGATCGACGAGCGTCCGGAAGAAGTGACCGAGATGCAGCGCACCGTGCGCGGCGAAGTGGTCGCCTCGACGTTCGACGAGCCGCCGACCCGCCACGTGCAGGTTGCCGAAATGGTGATCGAGAAGGCCAAGCGCCTGGTCGAGCACAAGAAGGACGTGGTGATCCTGCTCGACTCCATCACCCGTCTGGCCCGTGCCTACAACACCGTGATCCCGAGCTCCGGCAAGGTATTGACCGGTGGTGTCGATGCCCACGCCCTGGAGAAGCCGAAGCGTTTCTTCGGTGCCGCACGGAACATCGAAGAAGGCGGCTCGCTGACCATCATCGCCACCGCGCTGGTTGAAACCGGCTCGAAGATGGACGAAGTGATCTACGAGGAGTTCAAGGGTACCGGCAACATGGAACTGCCCCTGGACCGTCGCATCGCCGAGAAACGTGTGTTCCCGGCCATCAACATCAACCGTTCCGGTACCCGTCGCGAAGAATTGCTGACGGCCGATGACGAGTTGCAGCGCATGTGGATCCTGCGCAAGCTGCTGCATCCGATGGATGAAGTGGCGGCCATCGAGTTCCTGGTCGACAAGCTGAAAACGACCAAGACCAACGATGAGTTCTTCCTGTCGATGAAGCGCAAGTAAMNLTELKQKPITELLELAEQMGIENMARSRKQDVIFSLLKKHAKSGEEISGDGVLEILQDGFGFLRSADASYLAGPDDIYVSPSQIRRFNLRTGDTIVGKIRPPKEGERYFALLKVDTINFDRPENAKNKILFENLTPLFPTVRMKMEAGNGSTEDLTGRVIDLCAPIGKGQRGLIVAPPKAGKTIMLQNIAANIARNNPEVHLIVLLIDERPEEVTEMQRTVRGEVVASTFDEPPTRHVQVAEMVIEKAKRLVEHKKDVVILLDSITRLARAYNTVIPSSGKVLTGGVDAHALEKPKRFFGAARNIEEGGSLTIIATALVETGSKMDEVIYEEFKGTGNMELPLDRRIAEKRVFPAININRSGTRREELLTADDELQRMWILRKLLHPMDEVAAIEFLVDKLKTTKTNDEFFLSMKRKNANANANANA
D1-35_030551467ubiDCOG00433-octaprenyl-4-hydroxybenzoate carboxy-lyaseATGCAGTATCGCGACTTGCGCGACTTTATCAGCGGTCTGGAACAGCGCGGCGAACTCAAGCGCATCCAGGTGCCGGTGTCCCCAGTGCTGGAGATGACCGAGGTCTGCGACCGCACCCTGCGGGCAAAGGGCCCGGCACTGCTGTTCGAAAATCCGACCGGCTATGACATCCCGGTGCTGGGCAATCTGTTCGGCACACCGGAGCGTGTAGCCCTGGGCATGGGGGCCGAAGCTGTCAGCGAACTGCGCGAGATCGGCAAGCTGCTCGCGTTCCTCAAGGAGCCGGAGCCGCCGAAGGGCCTGAAGGACGCCTGGTCGAAGCTGCCGATTTTCCGCAAGATCATTTCCATGGCGCCGAAAGTCGTCAAGGACGCGATCTGCCAGGAAGTGGTGATCGAGGGCGACGCTGTCGACCTCGCCATGCTGCCGGTGCAGACCTGTTGGCCGGGCGACGTGGGGCCGCTGATCACCTGGGGCCTGACCGTCACCAAAGGGCCGAACAAGGATCGCCAGAACCTCGGTATCTACCGCCAGCAGGTGATTGGCCGCAACAAGGTCATCATGCGCTGGCTGAGCCATCGGGGTGGCGCGCTGGATTATCGTGAGTGGTGCGAAAAACACCCTGGCCAGCCGTTCCCGGTTTCGGTGGCCCTGGGCGCGGATCCGGCGACTATCCTTGGCGCCGTCACGCCCGTGCCGGACAGCCTTTCCGAATATGCCTTTGCCGGCCTGCTGCGGGGCAACCGCACCGAGCTGGTGAAATGCCGTGGCAACGACCTGCAAGTGCCGGCCACCGCCGAGATCATTCTCGAAGGCGTGATCCACCCCGGCGAAATGGCCGATGAAGGTCCTTACGGCGACCACACCGGTTATTACAACGAGGTGGACAGCTTCCCGGTGTTCACCGTCGAGCGCATCACCCATCGGATCAAGCCGATCTACCACAGCACCTACACCGGACGTCCGCCCGATGAGCCGGCTATCCTCGGCGTGGCGCTGAACGAAGTGTTCGTGCCGATCCTGCAGAAGCAGTTCCCGGAGATCACTGACTTCTACCTGCCACCGGAAGGCTGCTCGTACCGCATGGCCGTGGTGACCATGAAGAAGTCATATCCGGGGCATGCCAAGCGGGTGATGTTGGGCGTCTGGTCGTTTTTACGACAATTCATGTACACCAAGTTCGTTATTGTCACTGATGACGATATCAACGCACGGGACTGGAACGACGTGATCTGGGCCATCACTACGCGCATGGACCCGAAGCGCGACACGGTGATGATCGAGAATACGCCGATCGACTACCTCGACTTCGCCTCGCCGGTGTCCGGCCTGGGGTCGAAGATGGGGCTCGATGCCACGCATAAATGGCCCGGTGAAACCACCCGTGAATGGGGCCGGGTTATCGTCAAGGATGAAGCCGTTACCCAACGGATCGATGCCATCTGGAATCAGTTAGGAATAGATTGAMQYRDLRDFISGLEQRGELKRIQVPVSPVLEMTEVCDRTLRAKGPALLFENPTGYDIPVLGNLFGTPERVALGMGAEAVSELREIGKLLAFLKEPEPPKGLKDAWSKLPIFRKIISMAPKVVKDAICQEVVIEGDAVDLAMLPVQTCWPGDVGPLITWGLTVTKGPNKDRQNLGIYRQQVIGRNKVIMRWLSHRGGALDYREWCEKHPGQPFPVSVALGADPATILGAVTPVPDSLSEYAFAGLLRGNRTELVKCRGNDLQVPATAEIILEGVIHPGEMADEGPYGDHTGYYNEVDSFPVFTVERITHRIKPIYHSTYTGRPPDEPAILGVALNEVFVPILQKQFPEITDFYLPPEGCSYRMAVVTMKKSYPGHAKRVMLGVWSFLRQFMYTKFVIVTDDDINARDWNDVIWAITTRMDPKRDTVMIENTPIDYLDFASPVSGLGSKMGLDATHKWPGETTREWGRVIVKDEAVTQRIDAIWNQLGIDPGPT0009530_1764DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009530-ubiD-K03182NANA
D1-35_03056969ascDCDP-6-deoxy-L-threo-D-glycero-4-hexulose-3-dehydrase reductaseATGCGTGTAACCTTGCAGCCGTCCGGCGCGGTGCTGGAGATACAGCCGGCGGAGCGGATTCTCGATGGCGCCCGGCGCCTGGGCTACGAATGTCCGCAGAGCTGCCGCAATGGCAATTGCCACGTCTGTGGCGCGCTGCTGGTGGAAGGTCGCGTGACGCAGGCCGGTGAGGTGCGTGATCACGGCGAGATCTTCACCTGCATTGCCGAGCCGCTGGAGGATTGCGTGGTGCTCTGGGATGGCGTGCTGGCGCCGGGTGAACTGCCGGTGCGCAACCTGGCGTGCCAGGTTACCGAATGCAGTGATGTCGGCGGCGATGTCTGGCGGGTGCGCCTGCGGGCGCCGGCGGGCAAGCCGCCGCGCTATCACGCTGGGCAATACTTGATGATCGAGCGCGAGAACGGCGAAAAATCGGCGTTCTCCCTGGCCTCGGCGCCGCATTCGGGGCGGGACCTGCAGCTACATGTACTGGCGCGCGAAAGCAGTGCGCTGGCGCTGCTGGAGCAACTGCGGCGCAATCCTACCGTGCGCATCGAAATGCCGTTCGGTGATACCCACTTGTCCGAGTTGCCGGATGGCCCGTTGGTGCTGATCGCCGCTGGAACCGGCATGGCGCAGATGCACAGCCTGATCGAGCACTGCCGGGCCGCCGGTTTCAAATACCCGGTGCATTTGTATTGGGGCGTGCGGCGGCCGGAGGATTTCTACGAAATCGAGCATTGGGATGAATGGAAAAAACTGCCGAACTTGTTCCTGCACAAAGTCGTCAGCGACTTGTGCGGCTGGGAAGGGCGCTGCGGGATGCTCCATGAAGCCGTGTGCGAAGACATCAGCGATCTTTCCAGCGTCCACGTCTACGCCAGCGGCTCACCAGCGATGATCTACGCCACGCTTGATGCGCTGGTGGAAGCCGGGATGGACGCTCATCAGATGCGTGCGGATGTGTTTGCGTACGCGCCGCGGGCTTGAMRVTLQPSGAVLEIQPAERILDGARRLGYECPQSCRNGNCHVCGALLVEGRVTQAGEVRDHGEIFTCIAEPLEDCVVLWDGVLAPGELPVRNLACQVTECSDVGGDVWRVRLRAPAGKPPRYHAGQYLMIERENGEKSAFSLASAPHSGRDLQLHVLARESSALALLEQLRRNPTVRIEMPFGDTHLSELPDGPLVLIAAGTGMAQMHSLIEHCRAAGFKYPVHLYWGVRRPEDFYEIEHWDEWKKLPNLFLHKVVSDLCGWEGRCGMLHEAVCEDISDLSSVHVYASGSPAMIYATLDALVEAGMDAHQMRADVFAYAPRAPGPT0022595_828DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PARATOSE|TRYLOSE|ABEQUOSE|ASCARYLOSE_MODIFICATION,PGPT0022595-ascD|ddhD|rfbI-K00523NANA
D1-35_03057669chaCCOG3703Glutathione-specific gamma-glutamylcyclotransferaseATGACCGCTATCGAATCCGCCATCACCTGCGCGCTGTATCCGCCACGACTCGAGTTGGGGCCACAGCTGACCCGGGAACAACTGCTTGCGTCGATGCACTCGACCATGAGCCTGCACCAGGGCGGCCCAGTCTGGCTGTTCGCCTACGGCTCGTTGATCTGGCGGCCCGAATGCACGGCGGTGGAGCGTATGCGCGGGCGAGTGCACGGTTATCATCGCGGGTTGTATCTGTGGTCCCATGAACACCGTGGCACCCCGGAATTGCCAGGGCTGGTATTCGGGCTGGATCGCGGCGGCTCGTGCAGCGGTTTCGCCTACCGGTTGCCGGAAGAAAACCTGCAGGATTCGCTGTTGGCCCTGTGGCAACGCGAGATGCCCGTGCCGTCCTATCGGCCGCACTGGCTCAGCTGTCGGCTGGAAGATGGCAATCGGGTTCAGGCCTTGGGTTTTGTCCTGGAGCGACACCTGCCCAGCTATGCCGGCAATCTGCCGGATCATGTGCTGAGCCAGGTGTTCGAAAGCGCCTGCGGGCGGTATGGCACGACTCGCGATTATGTCGAGCAGACCATCCACGCCCTGCGCAGCCACGCCATGCCAGACCGTAATCTGGAGGCGCGGCTCAAGCGCTGCAAATCAGCGCTGGATCAGGCGATCGCGTCGCGGCTCTGAMTAIESAITCALYPPRLELGPQLTREQLLASMHSTMSLHQGGPVWLFAYGSLIWRPECTAVERMRGRVHGYHRGLYLWSHEHRGTPELPGLVFGLDRGGSCSGFAYRLPEENLQDSLLALWQREMPVPSYRPHWLSCRLEDGNRVQALGFVLERHLPSYAGNLPDHVLSQVFESACGRYGTTRDYVEQTIHALRSHAMPDRNLEARLKRCKSALDQAIASRLNANANANANA
D1-35_030581350glpTCOG2271Glycerol-3-phosphate transporterATGTTTGCTTTCTTTCGTCCCGCCGCACATCAGGCTCCATTGCCTGAAGAAAAAATAGACAGCACCTATCGGCGCCTTCGCTGGCAGATCTTCGCCGGCATTTTTATTGGTTATGCCGGTTACTACCTGCTGCGCAAAAATTTTACCCTGGCGTTTCCGGATCTGATCGCCCAAGGCTATACAAAGGGCCAGCTGGGGGTGGCGATATCGGCAATCGCGATCGCCTACGGTCTTTCCAAGTTCCTGATGGGCATCGTGTCCGACCGCTCCAACCCGCGTTATTTCCTGCCTTTTGGCCTGATAGTGTCAGCCGGAGTGATGTTCATTTTCGGTTTCGCACCGTGGGCAACCTCAAGCGTGACCATGATGTTCATCCTGTTGTTCATCAACGGCTGGGCGCAAGGCATGGGCTGGCCACCAAGCGGACGCACCATGGTGCACTGGTGGTCGCAGAAAGAACGCGGCGGTGTGGTTTCGGTATGGAACACCGCCCATAACGTCGGCGGCGGCTTGATCGGCCCGCTGGCAATACTTGGCATGGGCTGGTTCAACGACTGGCACAGCAAGTTCTACGTACCGGCAGCGGTGGCTTTGCTGGTCGCTGTATTTGCCTTCATCGTCATGCGCGATACGCCGCAATCGACAGGCTTGCCGCCCATCGAGAAATACAAAAACGATTACCCGGAAGGCTACGATGCCAGCCATGAAGAAGAATTCAGCGCCAGGGACATCTTCGTCAAATACGTGCTGCGCAACAAGATGCTCTGGTTCATCGCGCTGGCCAACGTTTTCGTCTACCTGTTGCGCTATGGCATTCTGGACTGGGCACCGACCTATCTCAAAGAGGTCAAGCACTTCGATTTCGACAAGACGTCCTGGGCTTACTTCCTGTACGAGTGGGCCGGCATTCCCGGCACGCTGCTATGCGGGTGGATGTCGGACAAGGTCTTCCGGGGCAACCGCGGCCTGACGGGCATGGTGTTCATGGCATTGGTGACCGTCGCAACAATCATCTACTGGCTGAATCCGCCGGGTAACCCGATGGTCGACATGATCTCGCTGTTCGCGATTGGCTTCCTGATCTATGGCCCGGTCATGCTGGTAGGTCTGCAGGCCCTGGAACTGGTGCCCAAGAAAGCAGCAGGTACAGCTGCCGGCTTCACCGGTCTGTTTGGTTATCTGGGTGGCTCAGTCGCAGCCAGCGCAATGATGGGCTACACGGTGGACTATTTCGGCTGGGATGGCGGCTTCATCCTGCTGGTCGGTGCCTGCCTGCTGGCCATGGCATTCCTCGCGCCAACCCTGCGGCACAAGCAGATCGCCAGTCAGAGCCGCGACGCGATCGCCTGAMFAFFRPAAHQAPLPEEKIDSTYRRLRWQIFAGIFIGYAGYYLLRKNFTLAFPDLIAQGYTKGQLGVAISAIAIAYGLSKFLMGIVSDRSNPRYFLPFGLIVSAGVMFIFGFAPWATSSVTMMFILLFINGWAQGMGWPPSGRTMVHWWSQKERGGVVSVWNTAHNVGGGLIGPLAILGMGWFNDWHSKFYVPAAVALLVAVFAFIVMRDTPQSTGLPPIEKYKNDYPEGYDASHEEEFSARDIFVKYVLRNKMLWFIALANVFVYLLRYGILDWAPTYLKEVKHFDFDKTSWAYFLYEWAGIPGTLLCGWMSDKVFRGNRGLTGMVFMALVTVATIIYWLNPPGNPMVDMISLFAIGFLIYGPVMLVGLQALELVPKKAAGTAAGFTGLFGYLGGSVAASAMMGYTVDYFGWDGGFILLVGACLLAMAFLAPTLRHKQIASQSRDAIAPGPT0016821_511DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULATION_GLYCEROL_TRANSPORT,PGPT0016821-glpT-K02445NANA
D1-35_03059603hypothetical proteinATGAGGTGGTTTGCTGCGATGTTGTTATTGTGTCTGTCTGGGTCGAGCTGGGCGGAGGGAATGGTATTGGTGCCAGAGAACAACCCCAAGCCAGGATATCCGACAGCTCTGAGCCGGGCAGGGGTCATGGGAGCGGTCAGGGCCGGCTTCACGGTACACGCCGATGGTCGTGTCAATGAGGTCGCGATTCTGCACAGCGACCATCCGGAGTTTGCCGAGGCCGTTCGAGAAACGCTGATTGATTGGCGGTTCAAGCCCTGGACGGTTGATGACAAGCATCCCGCCCAAGTCAATGTCGTGGCACCGTTCGAATTTCGTCTGGACGACGCACCGATTGATACCAATAAATGGATCAAGACCTGGCGATGCTCGGTCATCACCTCCTATGCCAGCGATCTGCATGTGCAGGACCTGCTTCCCTTCCATTACACGCGCAGCTACCTGTCCAACGTATTTTTTGTCAAACAACTGCCCGAAGCCGAGCGCCTGGCAATGATCGCTCGATTCAACCGGCTGCTGCCCTCGATCCTGCAGCGCTGCGGAACGTTTCCTGCATCGCGATATGTGAAAATGTTGCCGGAGGAGATTCGTGCGTTGCTTTAGMRWFAAMLLLCLSGSSWAEGMVLVPENNPKPGYPTALSRAGVMGAVRAGFTVHADGRVNEVAILHSDHPEFAEAVRETLIDWRFKPWTVDDKHPAQVNVVAPFEFRLDDAPIDTNKWIKTWRCSVITSYASDLHVQDLLPFHYTRSYLSNVFFVKQLPEAERLAMIARFNRLLPSILQRCGTFPASRYVKMLPEEIRALLPGPT0003745_5967DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003745-tonB-K03832NANA
D1-35_03060276imm_2Colicin-E7 immunity proteinATGATACTCAAAGAAAGAATCGAGGATTATACAGAAGCAGAGTTTCTATCATTCCTTCACGAATTTTTTGACGACAACAGCGAGCTTACCGGCGACCAGCTGGGTGAATATATCAGCAGACTTTCAAAGCATTTTGAGCAAATTACTGAGCACCCAGAAAAATCGGCACTTATTTTCTATCCTCAACAAGGTAGGGAAGATAGCCCGGAAGGAATCTTAAGTGAAGTTAAGAGATGGCGAAAACAAAACGGTAAACCCGGCTTCAAGCCCGAATGAMILKERIEDYTEAEFLSFLHEFFDDNSELTGDQLGEYISRLSKHFEQITEHPEKSALIFYPQQGREDSPEGILSEVKRWRKQNGKPGFKPENANANANANA
D1-35_030612550hypothetical proteinATGGATAACGCGGATACATATTTGGGACCGCATATACAGCTAGGCCCAGGCTCATACGAAATACCGCCCATCCCGATAACAGGGCGAAGGTTACCGGACTTCAATACTGGAGGTTTTATAGCGTGGGGGCTGAACGATGGGCCTCATAGAGGGACCGGTAGAAGCTCAAAAAGACACAACGCGTCTATTCCCTACGCATGGGATGACATGTTGAGAGAACGGATAGCCAATAGTGAATCCATCGATGCAGAATATAGCAACACTTTTATAAAACTGACCGAAACCACCACACAAGAACTCGATCAGATAAAAAGATCCGCATTAGGTGATCGCCAGCTTTCGCCGTTTGAAAAAGTAATTACAGAACAGCAGGCGACGGCAAGAGCCCTTCAAGCCAAAGAGTCGGACTATCAAGCACGCACCACAAGCGCCTACTCGCTCTACGGCCAGAATCCATTTTTTCTAATGAAGGAATTGTCCTTCAAGAAAATAATGGACAGCCTACAGACCTCCCCACCGAATATTGCAGTCGCTTACGCCGCCATAGATGATGCGTACCGATCGGCGTTAGAGTTAAAGCGACTTTCCCTGCAAAAAGACATTCTCGCTGGACAATTGGAGCAGTCATCCCAGACAGCCGAGCAGTTCCTCACTGGCACCCAAGCTGAAAAAAACAACTCAACAACCACCCTTGATGCCAAGCTCAGGTTTATCAACCAAGAAAAAAACATCCATCTCCAACTTCTGCCTGAATTTCTGCTGAAGAAAGTTTCATCGCTGCTGGGGGTAACAACCGGCTTGCCCCTTTCTCAACTGTTAAGAAATCACAAGACAATCGTAACCCAAATCATCACAACCGAGCGGGCAGCTATCGCTGCCTATGCAAAAGCCAATCCGAACATCAAGCCGCCACTCAGCAAGCCCGAACTCGAAGCACTTAATAACTTGGTTGTTCTACAAGAAAAGACAAAGCTGGGAAAACGATGGCAGGACTACCATGCATCCCTTCTGCATTCAGAATCTGTTCGACATCTAACAAGAACAGTAAACACATTTGCCAGCCTGATAGACCGCGCTCAATCGGCCGAACGCGTGAAAGAACAGCTTCGTGTTGCAGCCGCGCAGAAAGAACAGGCACAAAAGCAAGCGCAAGCCCGAGCGATGGCGCAACAAGCTGAACAGGAACGGAAACAGAAAATTGCGTCCGCATTGGCGGGGCATTTCAACGAATTGCTCCGTCAGTTCAACCACGCCCAGCCCCAAGACGTCGACCAACAATTGACTTGGATGCGACAAAAACACCGGGAACTGGCCGCCGCGCATCAAGACGCAACCAAGGCTGCGCTTTCGGCGGGGGACCTTTCCGATTCATCAAGGAGTAGCTCTCGCGAGGCCTCGCTGCGTAAGGCACAAGCAGATATCGATGCAGTCTTTCGGTCGAAATACCGTATCGAAAATATTTCGCTACCCACCTTCAACGGTGCGATGACTTCGGCGCGACCGCTGATCACTGCTCCTGACGGTCTGATTGCCGGATATGAAGGCTCCCCTTTCTCCTTACAAGGCGCGATTGATCTACTTCAAAAAGCGAGAGTCGCCGTATCGGGAGGACCTCTGGCGGCACTCGGAGTAGCAGTGTCCTGCTCCACGCCAATTGCCAACGGTGAACTGCAGCGCAATCCGGTGGTGATCAGCATTCCTTTATCTCAAGTGGCGGAGGAACTCCAATTAATTTCAGGTGCTAGCGTGGCGCATCTACCGTTTCGGGTCGTGTCATCGATTAGAGGAGAACACAGCCAATTTTACCTTTCACCCACCGACAAAAACCTATCCGATAAAATCAGGATTAGAAACGTATCACTTGATCCGCAAACAAATCTCTACACATTCATAACAGAAGGAGCTCTTCCCCGAACGCTGACCTGGACGCCGAATGTCCCGCCAGGAAACAATCATCTGGGCTCAACCGAATCGCCTGCAACGCAGCCGGAGATCAGGATTCTTCCCGGGGCCAGGATTACTCAGATAGAAGGGAGAGCAGACGATCACCCAGCTTGTGATGACGCCGACATTGATGATTATGTGCTGGTTTTCCCGATGGAATCGGGGATCAAGCCAGTCTACGTCATGGCGAGTCGGACCGGGCCGCGATATGAACCGGGTACGGTGACTGGATCAGGTCAGGAGGTAGGAAGGAACTGGCTAGGGAGTACTGAGCAAGGCCTTGGTGCTCCCATACCTGGTGAGATAGCTAGTCTCCTTCGGGGCCAGGACTTCAGAGACTTTGGCAGCTTTCGAGAAGAATTTTGGAGGTCAGTAGCAAATGATGAAAAATTGGCAGTGCAGTTCAGTCGATCTAATTTAAGATTAATGCGTAACGGCGCTGCACCTTTTACTCGCCCTGACGACCACGTAGGAGAACGGAACAAATTCGAAATTCATCACATACAATCAATTTCCCAGGGTGGCGCAGTATACGACCTTGACAATCTAAGCATCACGACACCCAAAGAGCACATTGAGATCCACAAAAAAGGAACCAACCTATGAMDNADTYLGPHIQLGPGSYEIPPIPITGRRLPDFNTGGFIAWGLNDGPHRGTGRSSKRHNASIPYAWDDMLRERIANSESIDAEYSNTFIKLTETTTQELDQIKRSALGDRQLSPFEKVITEQQATARALQAKESDYQARTTSAYSLYGQNPFFLMKELSFKKIMDSLQTSPPNIAVAYAAIDDAYRSALELKRLSLQKDILAGQLEQSSQTAEQFLTGTQAEKNNSTTTLDAKLRFINQEKNIHLQLLPEFLLKKVSSLLGVTTGLPLSQLLRNHKTIVTQIITTERAAIAAYAKANPNIKPPLSKPELEALNNLVVLQEKTKLGKRWQDYHASLLHSESVRHLTRTVNTFASLIDRAQSAERVKEQLRVAAAQKEQAQKQAQARAMAQQAEQERKQKIASALAGHFNELLRQFNHAQPQDVDQQLTWMRQKHRELAAAHQDATKAALSAGDLSDSSRSSSREASLRKAQADIDAVFRSKYRIENISLPTFNGAMTSARPLITAPDGLIAGYEGSPFSLQGAIDLLQKARVAVSGGPLAALGVAVSCSTPIANGELQRNPVVISIPLSQVAEELQLISGASVAHLPFRVVSSIRGEHSQFYLSPTDKNLSDKIRIRNVSLDPQTNLYTFITEGALPRTLTWTPNVPPGNNHLGSTESPATQPEIRILPGARITQIEGRADDHPACDDADIDDYVLVFPMESGIKPVYVMASRTGPRYEPGTVTGSGQEVGRNWLGSTEQGLGAPIPGEIASLLRGQDFRDFGSFREEFWRSVANDEKLAVQFSRSNLRLMRNGAAPFTRPDDHVGERNKFEIHHIQSISQGGAVYDLDNLSITTPKEHIEIHKKGTNLNANANANANA
D1-35_03062978qorA_2COG0604Quinone oxidoreductase 1ATGAAAGCCGTGCTGTGCAAAGAATTCGGCCCCGCCGAATCGCTGGTGCTGGAAGACGTCGCCAGCCCCGTCGTGAAGAAGAACGAAGTGCTGCTGGACGTGCACGCCGCCGGGGTGAATTTTCCTGATACGTTGATCATCGAAGGCAAATATCAATTCAAGCCGCCCTTCCCGTTTTCCCCCGGCGGCGAAGCAGCGGGCGTCGTCCGCGAGGTGGGAGAAAAGATCAGTCACCTGAAAGTCGGTGACCGGGTCATGGCGCTGACCGGCTGGGGCAGTTTCGCCGAACAGGTGGCAGTCCCGGGCTACAACGTGCTGCCCATTCCCGCCGCCATGGAATTCAACACCGCCGCCGCTTTCAGCATGACCTACGGCACCTCGATGCATGCCCTCAAGCAACGTGCCAACCTGCAACCGGGTGAAACCCTGCTGGTGCTCGGTGCCTCCGGCGGCGTCGGCCTGGCGGCGGTGGAAATCGGCAAGGCCATGGGCGCCCGGGTGATCGCCGCCGCCAGCAGCCCGGAAAAACTCGCGGTAGCCAAGGCCGCCGGCGCCGACGAACTGATCAACTACACCGAAACCAGCCTCAAGGATGAAATCAAGCGCCTCACCGACGGCCAGGGCGCCGACGTGATCTACGACCCGGTGGGCGGCGACCTGTTCGACCAGGCGGTCCGCGCCATCGCCTGGAACGGCCGGCTGCTGGTGGTCGGCTTCGCCAGCGGGCGCATTCCCGAGCTGCCGGTGAACCTGGCCTTGCTCAAGGGCGCTGCCGTGGTAGGCGTCTTCTGGGGCTCGTTCGCCCAACGCCAGCCGCAGGACAACGCCGCCAACTTCCAACAACTGTTTGGCTGGTTCGCCGAAGGCAAGTTGAAACCGTTGGTGTCGCAGGTCTATCCGTTGAGCAACGCCGCCCAGGCGATCAATGACCTGGGGCAGCGCAAGGCGGTGGGCAAGGTGGTTGTGCAGGTTCGCTGAMKAVLCKEFGPAESLVLEDVASPVVKKNEVLLDVHAAGVNFPDTLIIEGKYQFKPPFPFSPGGEAAGVVREVGEKISHLKVGDRVMALTGWGSFAEQVAVPGYNVLPIPAAMEFNTAAAFSMTYGTSMHALKQRANLQPGETLLVLGASGGVGLAAVEIGKAMGARVIAAASSPEKLAVAKAAGADELINYTETSLKDEIKRLTDGQGADVIYDPVGGDLFDQAVRAIAWNGRLLVVGFASGRIPELPVNLALLKGAAVVGVFWGSFAQRQPQDNAANFQQLFGWFAEGKLKPLVSQVYPLSNAAQAINDLGQRKAVGKVVVQVRPGPT0013255_6116DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013255-qor-K00344NANA
D1-35_03063450hypothetical proteinATGCTGGGCCGCAAATCGGATGAGGAGTCGAATGTGAAAGCGTGGATCATGTTGATGCTGGCCCTGTCGTTGCCTGTGGCGGCGATGGCCGAAGAAGCCAAGGAAGCCAAAGAAGGCGAGGCGCCGAAGGTCAGTTACATCACGCTCAGCCCGCCATTCGTGGGCAACTATGGCCTGGACGGAACGACCAAGCTGAAGGTCTACAAGGCCGACGTTGCCCTGCGCGTGACCGGTGACGCCGCCGCTGCGGCGGTGAAGGCTAACGAGCCGTTGATTCGCAATCAGTTGGTGGCGCTGTTCGCCCAGCAGACGACCGAAACCATGAACAACCTTGAAGCCAAGGAAAAGCTGCGGCAGGAAGCGTTGAAGCAGACCCAGCAGGTGATGAACGACGAGACGGGCAAGCCGATGGTGGATGATCTGTTGTTCAACAACCTGATCATTCAGTAGMLGRKSDEESNVKAWIMLMLALSLPVAAMAEEAKEAKEGEAPKVSYITLSPPFVGNYGLDGTTKLKVYKADVALRVTGDAAAAAVKANEPLIRNQLVALFAQQTTETMNNLEAKEKLRQEALKQTQQVMNDETGKPMVDDLLFNNLIIQPGPT0015525_2657DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_ROD|HOOK|FILAMENT,PGPT0015525-fliL-K02415NANA
D1-35_03064453hypothetical proteinATGGCCTACTGGCTGATGAAATCCGAGCCCGACGAATTGTCCATCCAGGGCCTGGAAAAGCTCGGCCAAGCGCGCTGGGATGGGGTTCGCAACTACCAGGCGCGCAATTTCCTGCGAGCCATGGCGGTAGGCGACTCATTTTTCTTCTATCACTCCAGCTGCCCGGAGCCAGGCATTGCCGGAATTGGCAAAATCATCAAGGCCGCCTATCCCGACCCAACGGCCCTGGAACCTGACAGTCATTACTTCGACGCCAAGGCCAGCCCGGAGAAAAACCCCTGGACCGCCCTCGACGTCGCCCATGTCGAGACATTCCCACGGGTGCTGAAGCTCGACTACCTCAAGCAGCAGGCCGCCCTGGCCGAAATGCCGCTGGTGCAAAAAGGCTCGCGACTGTCGGTGATGCCGGTGACAGCTGAGCAGTGGGCGGCGGTCATTGCCTTGAAATCCTGAMAYWLMKSEPDELSIQGLEKLGQARWDGVRNYQARNFLRAMAVGDSFFFYHSSCPEPGIAGIGKIIKAAYPDPTALEPDSHYFDAKASPEKNPWTALDVAHVETFPRVLKLDYLKQQAALAEMPLVQKGSRLSVMPVTAEQWAAVIALKSNANANANANA
D1-35_03065147hypothetical proteinATGAAACGCAAACCGGATTTGTTGTGGGTCCTGGTCATTCTGTTCGGCCTGGGTGTCGTCACCACGGGTTATGCCCAGAGCTTATGGGCCAACAAAAATGATGCACCGATGGAAATCACCCAGCCCGCGCCCGCACTCAAGCGCTGAMKRKPDLLWVLVILFGLGVVTTGYAQSLWANKNDAPMEITQPAPALKRNANANANANA
D1-35_03066606COG02125-formyltetrahydrofolate cyclo-ligaseATGACCGAACCTGCGTTGCCGACCCGCCCACAACTTCGCCGCCTGCTACGCCAGGCCCGTCGTGCCCTGACCCCGGCCCAGCAACGGCAAGCCGCCCACGGGCTATATCGGCAACTGGCACAGCATCCGCTGTTTCGCCGCGCAAGACACATCGCCCTCTACCTGCCCAACGACGGTGAAATCGACCCACGCCTGCTGCTGCGCGCCGCCCAACGTCGGGGCAAGGCGACTTATCTGCCAGTACTCAGTCCCTGGCCGCAGACCAGGATGGTGTTCCAGCGGATCCATCCCGGCGAAAAAATGCGCCCCAATCGTTTCCGCATCCCGGAACCAGGCAAGAATATCGCCCGGCAGCGCAAAGTCTGGACATTGGACCTGGTATTGCTGCCGTTGGTGGGGTTTGACGATGCCGGCGGACGCCTGGGCATGGGCGGCGGCTTCTATGACCGCAGCCTGGCGTATCTGTCGCGACGCAAACAATGGCGCAAGCCGACGTTGCTGGGCCTGGCCCATGAGTGTCAGAAGGTCGAACGATTGGCGCAGGCAAGCTGGGATGTACCGTTACAGGGAACGGTCAGTGACAGGCGATGGTATCTGGCGAGCTAGMTEPALPTRPQLRRLLRQARRALTPAQQRQAAHGLYRQLAQHPLFRRARHIALYLPNDGEIDPRLLLRAAQRRGKATYLPVLSPWPQTRMVFQRIHPGEKMRPNRFRIPEPGKNIARQRKVWTLDLVLLPLVGFDDAGGRLGMGGGFYDRSLAYLSRRKQWRKPTLLGLAHECQKVERLAQASWDVPLQGTVSDRRWYLASPGPT0008170_2161DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008170-ygfA|fthC|yqgN|folN-K01934NANA
D1-35_03068318zapACOG3027Cell division protein ZapAATGAGTTCAAGCAATAGCGTTACCGTGCAGATCCTCGATAAAGAGTATTCGATCATCTGCCCCCAGGAAGAGCGCAGCAACCTGGTGAGCGCCGCCCGTTACCTGGATGGCAAGATGCGCGAGATCCGCAGCAGCGGCAAAGTCATCGGCGCCGATCGCATCGCCGTGATGGCCGCCTTGAACATTACCCACGACCTGCTCCACCGCCAGGATACGCCGGACGTACAGGTCAGCGGCTCGACCCGCGAACAGGTCCGCGACCTGCTCGATCGGGTGGATCTGGTACTGGCTACTGATCCGGACGTCAGCAAGGGCTGAMSSSNSVTVQILDKEYSIICPQEERSNLVSAARYLDGKMREIRSSGKVIGADRIAVMAALNITHDLLHRQDTPDVQVSGSTREQVRDLLDRVDLVLATDPDVSKGNANANANANA
D1-35_03069210hypothetical proteinATGGAAGACACCGACCTGCAAGCGCTGATGGCCAGACTCGAGCTGCTAATTGACCGGGTCGAGCAACTTAAGAGCCAAAACGGACTCCTATTAGCTCAGGAAAAAACCTGGCGCGAGGAACGCGCGCACCTCATTGAAAAAAACGAAATCGCCCGGCGTAAGGTCGAATCGATGATTTCGCGCCTCAAGGCCCTGGAGCAAGACTCATGAMEDTDLQALMARLELLIDRVEQLKSQNGLLLAQEKTWREERAHLIEKNEIARRKVESMISRLKALEQDSNANANANANA
D1-35_03070555hypothetical proteinATGCCCATTCAGAATTCTCCGTACCAAGCCTTTGCCACCCTGCTGAGCACCAGCGGCCACCCTGTCTCGCCCGCCGAACTGCATGGCCTGCTGCTCGGCCGCAGCTGTGCCGGCGCCGGTTTTGATGCTGACGGCTGGTTGGCCGACGCCGCCGAACTGCTTGAAGGCGAGCCGGCGGACAACGTGCGCAACGCGCTCATCGGCCTGCAGGAAATGGTCAAGGGTGAATTGACCAGTGACGACATGACCGTCGTCCTGCTGTTGCCCACCGATGACGCGCCGCTGGCTGAACGCGCCGCTGCGCTGGGTCAGTGGTGCCAGGGTTTCCTGGCAGGCTTCGGCCTGACCCGCCGCGAATATGCCTTGAGCGATGAAGCCAAGGAAGTGTTGCAAGACCTGGCGGCCATCTCCCAGGTGCAGGACGCCCTGGAAGAATCCGACGACGGCGAGAGCGACTACATGGAAGTGATGGAGTACCTGCGGGTCGCGCCGTTGCTGCTGTTTACCGAGACCAAAAAAACCGCTGAACCGGCTGCCAAGCCGTCCCTGCACTGAMPIQNSPYQAFATLLSTSGHPVSPAELHGLLLGRSCAGAGFDADGWLADAAELLEGEPADNVRNALIGLQEMVKGELTSDDMTVVLLLPTDDAPLAERAAALGQWCQGFLAGFGLTRREYALSDEAKEVLQDLAAISQVQDALEESDDGESDYMEVMEYLRVAPLLLFTETKKTAEPAAKPSLHNANANANANA
D1-35_030711335pepPCOG0006Xaa-Pro aminopeptidaseATGATTCATATCCCGAAGTCGGAATACAGTCGTCGCCGCAAGGCCTTGATGGCGCAGATGGAACCCAACAGCATCGCAATCCTGCCCGCCGCCGCCGTTGCGATCCGCAACCGCGACGTCGAGCACGTCTATCGCCAGGACAGCGACTTCCAGTACCTCAGCGGCTTCCCCGAGCCGCAAGCGGTGCTGGTGCTGGTGCCCGGTCGCGCTCACGGCGAGTACATCCTGTTTTGCCGCGAGCGCAACGCCGAGCGTGAACTGTGGGATGGCTTGCGTGCTGGCCAGGAAGGGGCGATCCGGGACTACGGCGCCGACGACGCGTTTCCCATCACCGACATCGACGACATCCTGCCGGGCCTGATCGAAGGTCGCGATCGGGTCTATTCGGCCATGGGCAGCAACCCCGAATTCGACCGGCACCTGATGGAGTGGATCAACGTGATTCGCTCCAAGGCCCACCTTGGTGCCCAGCCGCCGAACGAATTTGTTGCCCTGGATCATCTGCTGCACGATATGCGCCTGTATAAATCGGCGGCGGAAGTGAAAGTGATGCGCGAAGCGGCGCGGATTTCCGCCCAGGCGCACATCCGCGCCATGCAAGCGGCACGCCCCGGGCTGTACGAATACAGCCTGGAGGCCGAGCTCGACTACGAATTTCGCAAGGGCGGCGCAAAGATGCCGGCCTACGGCTCCATCGTCGCGGCGGGGCGTAACAGTTGCATCCTGCATTACCAGCAGAACGACGCGCCGCTCAAGGATGGCGACCTGGTGCTGATCGACGCCGGTTGCGAAATCGACTGCTATGCCAGCGATATCACCCGTACCTGGCCGGTCAGCGGCAAGTTTTCGCCCGAGCAGAAGGCGATCTATGAGGTCGTGCTGGCGGCCCAGGAAGCGGCGTTCGCTGAGATTGGCCCGAACAAGCATTGGAACCAGGCCCATGAAGCTACGGTCCGGGTCATTACTGAGGGGCTGGTGCGTCTCGGGCTGCTGGACGGCGAGGTGGACCAGTTGATCGCCAGCGAAGCCTACCGGGCGTTCTACATGCACCGTGCCGGTCACTGGCTGGGCATGGACGTGCACGACGTCGGTGAATACCGGGTCGGTGGCGAATGGCGCGTGCTGGAGGTTGGCATGGCCTTGACCGTGGAGCCGGGCATCTATATTGCTCCGGACAATCGCAGCGTAGCGAAGAGATGGCGCGGCATTGGCGTGCGCATCGAGGATGACGTGGTAGTGACCAAGACCGGTTGTGAAATCCTGACCCGCGGCGTGCCGAAAACGGTCGCCGAGATCGAGGCCCTCATGGCCGCCGCACGGACTCAAGCGGCATGAMIHIPKSEYSRRRKALMAQMEPNSIAILPAAAVAIRNRDVEHVYRQDSDFQYLSGFPEPQAVLVLVPGRAHGEYILFCRERNAERELWDGLRAGQEGAIRDYGADDAFPITDIDDILPGLIEGRDRVYSAMGSNPEFDRHLMEWINVIRSKAHLGAQPPNEFVALDHLLHDMRLYKSAAEVKVMREAARISAQAHIRAMQAARPGLYEYSLEAELDYEFRKGGAKMPAYGSIVAAGRNSCILHYQQNDAPLKDGDLVLIDAGCEIDCYASDITRTWPVSGKFSPEQKAIYEVVLAAQEAAFAEIGPNKHWNQAHEATVRVITEGLVRLGLLDGEVDQLIASEAYRAFYMHRAGHWLGMDVHDVGEYRVGGEWRVLEVGMALTVEPGIYIAPDNRSVAKRWRGIGVRIEDDVVVTKTGCEILTRGVPKTVAEIEALMAAARTQAAPGPT0006770_4144DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0006770-pepP-K01262NANA
D1-35_030721188ubiHCOG06542-octaprenyl-6-methoxyphenol hydroxylaseATGAGCCGGGTCAACGTGGCGATCATAGGTGGCGGCCTGGTCGGCGCGAGCCTGGCGCTCGCCTTGCAGGCAGGCGCCAAGGCCAGGGGGTGGAAGATCATGCTGATCGAGCCGTTCGCCCCCGGCGACACTTGGCAGCCGAGCTATGACGCGCGCTCATCGGCGCTCTCCTTCGGTGCTCGACAAATTTATCAGCGCCTGGGCCTCTGGCAGGAAATTTCCCGCCGCGCAGAACCGATCAAACAGATTCATGTTTCCGACCGCGGACGGTTTTCCACCGCACGGTTGTCCGCCATGGAGGAGGGCGTGCCGGCCCTCGGCTACGTGGTGGAAAATGCCTGGCTCGGCCAATGCCTGTGGCAAGGGCTGGACAAGGACGTGGTCAGCTGGCGCTGCCCGGCGCAAGTCACCCGGATGGAGCCGCTAGTTGGTGGTTATCGTTTGACGCTGGATGACGAAACCACGCTGGAATGCGACCTCGCCGTACTGGCCGACGGTGGACGCTCCGGATTGCGTGAGCAGTTGGGCGTCGGTGTGCGCAATCGCCCTTACGACCAGAGCGCGTTGATTGCCAACCTCACCCCCAGCGAAGCCCACAACGGCGTGGCTTTCGAACGCTTTACCGATGACGGCCCGATGGCCTTGTTGCCGCTGCCGGAAAATCGTTGTGCGTTGGTCTGGACTCGCCAGGGCATGGATGCGCAACGGCTGGCAGCCCTCGACGAGCGTAGTTTTCTCAGTGAGCTGCAGAGTGTGTTCGGCTATCGCCTGGGCACGTTGAAACAGGTGGGTGCGCGACACCTTTATCCGCTGGCGCTGGTGGAAGCCGAAGAGCAGGTACGTCCGCACCTGGCGATCCTCGGCAATGCTGCCCATAGCCTGCATCCGATAGCGGGCCAGGGCTTCAACCTGTCCTTGCGTGATGCGCAGGCACTGGCCGATGCATTGCTCGGGAGCGACGGCACGCCCGGCGACTTCTCTGTATTGCAAGCCTATCGCGAGCGCCAGCGGATGGACCAGGCCCTGACCGTCGGCTTCTCCGACCAGGTCACGCGGCTGTTCAGCAGCGATCTGCCGCTGGTATCCGTGGGCCGCAATCTCGGCCTGCTGGGCCTTGACCTGCTGCCCCCGGCCAAGCGCTGGTTCGCTCGCCAGGCCATGGGATTGGGGACTCGCCCCGATGCTTGAMSRVNVAIIGGGLVGASLALALQAGAKARGWKIMLIEPFAPGDTWQPSYDARSSALSFGARQIYQRLGLWQEISRRAEPIKQIHVSDRGRFSTARLSAMEEGVPALGYVVENAWLGQCLWQGLDKDVVSWRCPAQVTRMEPLVGGYRLTLDDETTLECDLAVLADGGRSGLREQLGVGVRNRPYDQSALIANLTPSEAHNGVAFERFTDDGPMALLPLPENRCALVWTRQGMDAQRLAALDERSFLSELQSVFGYRLGTLKQVGARHLYPLALVEAEEQVRPHLAILGNAAHSLHPIAGQGFNLSLRDAQALADALLGSDGTPGDFSVLQAYRERQRMDQALTVGFSDQVTRLFSSDLPLVSVGRNLGLLGLDLLPPAKRWFARQAMGLGTRPDAPGPT0009550_1686DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009550-ubiH-K03185NANA
D1-35_030731224ubiICOG06542-octaprenylphenol hydroxylaseATGGAATTGCGCGCAGATCTGTTGATTGTCGGTGCCGGCATGGTCGGCAGCGCCCTGGCGCTTGCGTTGCAGGGCAGCGGCTTGCAGGTATTGTTGCTCGACGGCAGCCCGCTGAGCGTCAAGCCCTTTGATTCCCTGGCAGCGTTCGAACCCCGGGTCAGCGCCCTGTCGGCGGCCAGCCAGCGGATTCTCGATCGTCTGGGCGTCTGGGACGGTATCGTCGCCCGACGCACCAGTCCCTACACCGACATGCACGTCTGGGACGGTAGCGGCACGGGGCAGATTCATTTTTCCGCCGCCAGCCTGCATGCCGAAGTGCTTGGCCACATCGTCGAGAACCGCGTCGTTCAGGATGCCCTGCTGGACCGGTTGCATGACTGCGACCTGGGCCTGCTGGCCAATGCACGCCTGGAGCAGATGCGCCGCTCCGGCGACGACTGGCTGTTGACCCTGGCTGACGGGCGCACCTTGCGCGCGCCACTGGTGATTGCCGCCGACGGGGCGAACTCCGCCGTGCGCCGCCTGACGGGGGTCGCCACTCGCGAGTGGGACTACCTGCATCACGCGATCGTCACCAGCGTGCGCTGCGCCGGACCTCATCGCCAGACCGCATGGCAACGCTTCACCGACAATGGTCCGCTGGCCTTCCTGCCTCTGGCGCGCGACGGCCGGCAGGACTGGTGCTCGATCGTCTGGTCGACCACGCCTGGCGAAGCGCAGCGCTTGATGACACTGGATGACGGCGCTTTCTGCGCCGAACTGGAGCGGGCTTTCGAGGGCCGGCTAGGCGCGGTGCTCGGCGCCGATCCTCGCGTCTGCGTACCGCTGCGCCAACGCCACGCCAAGCGTTACGTGGCCGAAGGGCTGGCGCTGATCGGCGATGCGGCGCACACCATCCATCCCCTGGCCGGGCAGGGCGTCAACCTGGGTTTCCTGGATGCCGCGGTGTTGGCCGAGGTGCTGTTGCAGTCCTCAGGGCGTGGCGAGCGGTTGGCCGATCTCAAGGTGTTGAGCCGCTATGAGCGGCGGCGCATGCCCCATAACCTGGCGCTGATGGCGGCGATGGAAGGCTTCGAGCGGCTGTTCCAGGCCGATCCATTGCCGGTGCGCTGGTTGCGTAATACCGGTCTGAAGCTGGTAGACCGCATGCCGGAAGCCAAGGCGCTGTTCGTACGCGAGGCGTTGGGGCTGACCGGGGACTTGCCGGATCTGGCCAAGGTCTGAMELRADLLIVGAGMVGSALALALQGSGLQVLLLDGSPLSVKPFDSLAAFEPRVSALSAASQRILDRLGVWDGIVARRTSPYTDMHVWDGSGTGQIHFSAASLHAEVLGHIVENRVVQDALLDRLHDCDLGLLANARLEQMRRSGDDWLLTLADGRTLRAPLVIAADGANSAVRRLTGVATREWDYLHHAIVTSVRCAGPHRQTAWQRFTDNGPLAFLPLARDGRQDWCSIVWSTTPGEAQRLMTLDDGAFCAELERAFEGRLGAVLGADPRVCVPLRQRHAKRYVAEGLALIGDAAHTIHPLAGQGVNLGFLDAAVLAEVLLQSSGRGERLADLKVLSRYERRRMPHNLALMAAMEGFERLFQADPLPVRWLRNTGLKLVDRMPEAKALFVREALGLTGDLPDLAKVPGPT0009555_302DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009555-ubiI-K18800NANA
D1-35_030741005COG1840putative binding protein component of ABC iron transporterATGTCGGCCACCAAACGCCTGCTGTCCGCCCTCGCACTGACCCTGATCGGCACTTCCGTCGCCCAGGCTGCCGATGAGGTGGTGGTCTATTCGTCGCGCATCGATGAGCTGATCAAACCGGTTTTCGATGCCTACACCAAGAAGACCGGCGTCGCGGTGAAGTTCATCACCGACAAGGAAGCGCCCCTGATGCAGCGGATCAAGGCCGAAGACAAAAATGCTACCGCCGACCTGCTGCTGACCGTCGACGCCGGCAACCTCTGGCAAGCCGAGCAGATGGGCATTCTGCAGCCGTTCACCTCGCCGGTAATCGATGCCAACATTCCCCCTCAATATCGTGCGTCGTCCCACGCCTGGACCGGCCTGAGCCTGCGTGCGCGGACCATTGCCTACTCGACTGACCGGGTCAAACCGGGTGAGCTGACTACTTACGAAGCGCTGGCCGGCAAGGAATGGGAAGGCCGCTTGTGCCTGCGGACCTCGAAAAAGGTCTACAACCAGTCGCTGACCGCGACCCTGATCGAAACCCATGGTGCTGAAAAAACCGAGGAGATCCTCAAAGGCTGGGTCAGGAACCTGTCCACCGACGTATTCTCCGACGACACCGCGCTGCTTGAGGCGATCAATGCCGGCCAGTGCGACGTCGGCATCGTCAACACCTATTACTACGGCCGCCTGCACCAGCAGAAGCCAGACTTGAAGGTCAAGCTGTTCTGGCCAAACAAGGCGGACCGTGGCGTGCACATCAACCTCTCGGGTATCGGCCTGACCAAGCACGCGCCGCACCCGGACGCCGCGAAAAAACTGGTGGAATGGATGACCACGCCTGAAGCGCAAAGCATCTTCGCCGACGTGAACCAGGAATTCCCGGCCAACCCGAAAGTCCAGCCGTCCAAGGAAGTCGCCGCCTGGGGCCAGTTCAAGGCCGATACGCTGCCGGTGGAAGTCGCGGGTAAACGCCAGGCCGAAGCCATTCGCCTGATGGATCGTGCCGGCTGGAACTGAMSATKRLLSALALTLIGTSVAQAADEVVVYSSRIDELIKPVFDAYTKKTGVAVKFITDKEAPLMQRIKAEDKNATADLLLTVDAGNLWQAEQMGILQPFTSPVIDANIPPQYRASSHAWTGLSLRARTIAYSTDRVKPGELTTYEALAGKEWEGRLCLRTSKKVYNQSLTATLIETHGAEKTEEILKGWVRNLSTDVFSDDTALLEAINAGQCDVGIVNTYYYGRLHQQKPDLKVKLFWPNKADRGVHINLSGIGLTKHAPHPDAAKKLVEWMTTPEAQSIFADVNQEFPANPKVQPSKEVAAWGQFKADTLPVEVAGKRQAEAIRLMDRAGWNPGPT0003725_4320DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003725-afuA|fbpA-K02012NANA
D1-35_030751623hypothetical proteinTTGACCCACCCCGCCCAACGCCGCTGGTATCCCCTGGTCTTCGCCGTCGCTGCGCTGGTCCTGTTGCCGTTGAGCGTGCTGTTGCTGTCCTGGCAGAGCATCGACGCGCAGATCTGGTCCCACTTGTGGGAGACCCAGATGCCGCGCCTGCTGGGTAATACCCTGACGCTGATCCTGGGTGTGGGCGTCGGCGTGACGTTGTTCGGGGTCAGTCTGGCGTGGCTTACCAGCCTTTGCGAATTCCCCGGTCGGCGCTGGCTCGATTGGGCGTTGATGTTGCCGTTCGCGATTCCCGCCTATGTGCTGGCGTTTGTTTTCGTCGGCCTGCTGGATTTTGCCGGCCCGGTGCAGACCCTGATGCGCGAATGGCTCGGCAGCGGCTTGCGCCTGCCCCGGGTGCGGTCGACCGGTGGGGTTATCCTGGTGTTGGTGCTGGTGTTCTATCCGTATGTCTATCTGCTCGCGCGTAGCGCCTTCCTGGCCCAAGGCAAGGGATTGATGGAAGCGGCCCGGGTACTCGGCCATTCGCCCTGGCAGGCGTTCTGGCGGGTGGCACTGCCGATGGCCCGACCGGCCATTGGCGCGGGCGTGGCGCTGGCGCTGATGGAAACCCTGGCGGATTTCGGCGCGGTGTCGGTGTTCAACTTCGACACCTTTACCACCGCCATCTATAAAACCTGGTACGGCTTCTTCAGTCTTTCCAGCGCCGCCCAACTGGCCAGTCTCTTGCTGCTGGCGGTGATGGTGGTGCTCTACGGTGAACGCCGTGCCCGAGGAGCACAGCGGGCCAGCAACGAACGGCCCCGGGTCAAGGCGCTTTACCATTTGCGCGGTTTCAAGGCGGCGGCGGCCAGCAGCTGGTGCCTGTTGGTTTTCGCGTGCGCGTTCGTCATTCCGGTGCTGCAACTGGTGGTGTGGTTCTGGCAGCGCGGTCGGTTCGACCTGGACGAGCGTTATGCCGGGTTGATCATCCATACCCTCTATCTGGGCGGCCTGGCGGCCCTGGTCACCGTCTGCGTGGCTTTGCTGCTGGCGTTCGCCCGTCGCTTGGCGCCGACCCGCCCGATCCGCGCCGGTGTCGGCCTGGCGAACCTGGGTTATGCCTTGCCGGGTTCAGTGCTGGCGGTGTCGATCATGCTTGCGTTCAGCTATCTGGACCGTGAGTTGGTCATTCCGCTATCGACCCTGCTCGGCGGGGCGGGCAAACCGTTACTGTTGGGCAGTTTGTCGGCGTTGCTGCTGGCCTACCTGATACGTTTCCTGGCCGTGGCCTACGGTCCGCTGGAAAACAGCCTGGCGCGGATTCGTCCGTCATTGCCCGAGGCCGCACGAAGCCTTGGCGTCAGTGGGCCACGACTGTTTTTCAAAGTGTATCTGCCGTTGCTACTCCCTGGCACGTTGAGCGCGGCGTTGCTGGTGTTTGTCGATGTGCTCAAGGAAATGCCCGCCACCCTGCTGATGCGCCCGTTCGGCTGGGACACGCTGGCAGTGCGGGTCTTTGAGATGACCAGCGAGGGGGAGTGGGCACGGGCTGCATTGCCGGCGCTGACCCTGGTGCTGGTCGGGCTGTTGCCGGTCATCGGATTGATACGGCGCTCGGCTCATCGACGCGTTCTGAATTAAMTHPAQRRWYPLVFAVAALVLLPLSVLLLSWQSIDAQIWSHLWETQMPRLLGNTLTLILGVGVGVTLFGVSLAWLTSLCEFPGRRWLDWALMLPFAIPAYVLAFVFVGLLDFAGPVQTLMREWLGSGLRLPRVRSTGGVILVLVLVFYPYVYLLARSAFLAQGKGLMEAARVLGHSPWQAFWRVALPMARPAIGAGVALALMETLADFGAVSVFNFDTFTTAIYKTWYGFFSLSSAAQLASLLLLAVMVVLYGERRARGAQRASNERPRVKALYHLRGFKAAAASSWCLLVFACAFVIPVLQLVVWFWQRGRFDLDERYAGLIIHTLYLGGLAALVTVCVALLLAFARRLAPTRPIRAGVGLANLGYALPGSVLAVSIMLAFSYLDRELVIPLSTLLGGAGKPLLLGSLSALLLAYLIRFLAVAYGPLENSLARIRPSLPEAARSLGVSGPRLFFKVYLPLLLPGTLSAALLVFVDVLKEMPATLLMRPFGWDTLAVRVFEMTSEGEWARAALPALTLVLVGLLPVIGLIRRSAHRRVLNPGPT0003730_3715DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003730-afuB|fbpB-K02011NANA
D1-35_030761083gcvT_2COG0404AminomethyltransferaseATGGGACAGCGTACGCCTCTGTATGACCTGCATCTCGCCCTTGGCGCGAAGATGGTCGATTTTGGCGGTTGGGATATGCCTTTGCACTACGGCTCGCAGGTCGAGGAACACCACCAGGTGCGCCGCGATTGCGGTGTGTTCGATGTGTCCCACATGACCGTGATCGACGTTGCCGGCCCCCAGGCCAAGGCCTGGCTGCAGCGCTTGCTGGCCAATGACGTCGATCGCCTCCAGGACACCGGCCGTGCGCTGTACAGCACGATGCTCAATGAGCGCGGTGGCATCGTCGATGACATGATCATCTACCGGGTCGAGTACGGTTACCGGCTGGTGTTCAATGCCTCGACCCGCGACCAGGACCTGGCCTGGATGCAGGCACAGCTCGGTGAATATGATGTGCAACTGCACGAGCGTCCCGAACTGGCGATGCTGGCCATCCAGGGGCCGCAGGCCCGGCACAAGATTGCCGAACTGGTCACGCAATCACGCGGCCAATTGATCCAGCAACTCAAGCCCTTCGAAGGTCGTGCCGACGGTGACTGGTTCATTGCCCGTACCGGCTACACCGGTGAAGATGGATTGGAAATCGTCCTGCCGGCCCATGAAGCCCCGAGCTTTTTCAACGATCTGGTGGGCGCTGGCATTCCTCCCATCGGCCTTGGAGCTCGCGATACCTTGCGCCTGGAGGCGGGCATGAATCTCTATGGCCAGGATATCCACCAGGATGTTTCGCCGCTGGCCTCCAACATGGCCTGGAGCATCGCCTGGGAACCTGCGAGTCGCCAGTTCATCGGCCGCTCGGCGCTGGAAGCCGAACTGGCGGCTGGCGTGCAGCACAAACTGGTCGGGCTGGTACTTGAGGAGCGCGGTGTTCTACGCGCTCATCAGGTGGTCCGCATCGCCAATGTTGGCGAAGGAGAGATCACCAGTGGTAGTTTTTCTCCTACGCTTAGCAAGTCGATCGCCCTGGCGCGTGTTCCGATGGCTACCGCCGACCGTGCCGAGGTGGAAATTCGTGGCAAGTGGTACCCGGTACGGGTGGTCAAGCCGACCTTCGTCCGCCATGGCAAAACCCTGATCTAAMGQRTPLYDLHLALGAKMVDFGGWDMPLHYGSQVEEHHQVRRDCGVFDVSHMTVIDVAGPQAKAWLQRLLANDVDRLQDTGRALYSTMLNERGGIVDDMIIYRVEYGYRLVFNASTRDQDLAWMQAQLGEYDVQLHERPELAMLAIQGPQARHKIAELVTQSRGQLIQQLKPFEGRADGDWFIARTGYTGEDGLEIVLPAHEAPSFFNDLVGAGIPPIGLGARDTLRLEAGMNLYGQDIHQDVSPLASNMAWSIAWEPASRQFIGRSALEAELAAGVQHKLVGLVLEERGVLRAHQVVRIANVGEGEITSGSFSPTLSKSIALARVPMATADRAEVEIRGKWYPVRVVKPTFVRHGKTLIPGPT0008130_4326DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008130-gcvT-K00605NANA
D1-35_03077384gcvH_2COG0509Glycine cleavage system H proteinATGAGTGATATCCCCGCCGAACTGCGTTTTGCCGAAAGCCACGAGTGGGCGCGCCTGGAAGCCGACGGTACCGTCACCGTGGGCATCAGCGACCATGCGCAGGAAGCTTTGGGCGATGTGGTGTTTGTCGAGCTGACCGAGGTCGGTAAGGTTTTTGCTGCTGGTGATCAGGCTGGCGTGGTGGAGTCGGTCAAGGCCGCTTCCGACATCTACGCCCCCATTGCCGGCGAAGTGATTGCGATCAATGAAGAGTTGGGCGGCTCGCCGGAGTTGCTGAACTCCGATCCGTACGGCGCCTGGATCTTCAAGCTCAAGCCAAGCGACAAGGCCGAGTTGGACAAGTTGCTCGATGCTGCCGGCTATAAGGCTGCTATCGGCGAGTAAMSDIPAELRFAESHEWARLEADGTVTVGISDHAQEALGDVVFVELTEVGKVFAAGDQAGVVESVKAASDIYAPIAGEVIAINEELGGSPELLNSDPYGAWIFKLKPSDKAELDKLLDAAGYKAAIGENANANANANA
D1-35_03078318hypothetical proteinATGCGTCTCAAACTTGCTGTCGCGACCCTGGCCTTGCTTTCTCTTCCTGTTGGCTCGGCAATGGCCGACACGTTTTGGCGTAACGTCATCTCATCCGGTGCGACCACCGGTTCTACCTACCTGACCTTCAAGGACAACAAGCTGATCGTCGCCGCCCAGGACGACGCCGGCAGCTTCGTCGCCAGTGACGGCGGCATCCGTGGCCCCTACCTGGAAGCCGCGATGCAGAAAGTCCGTGCCGACAACCCAGGCCTGCAAGCCACCGACATGGAACTGGCCAACGCGATCCTGGCGAAAAACGCCGTCGCCCAGGAGTGAMRLKLAVATLALLSLPVGSAMADTFWRNVISSGATTGSTYLTFKDNKLIVAAQDDAGSFVASDGGIRGPYLEAAMQKVRADNPGLQATDMELANAILAKNAVAQENANANANANA
D1-35_030791785hypothetical proteinATGTCCACCAAACACGCCACTCAGGACCGCTGGCTGGACCTTAACGATCTGCTCCGCCAACTGGTCGCCCAGGGCCTCATCAGCCAGGATTCAGCCGAAACCGCGCTCAACGCCCGGCGCCGGCATAACGCCAACAGCCAGTTGCACCCGCTGGAGTTCATCGCCAACCAACACCTGGACGACCTCAGCCGACCCGGCAAGCGCCTGGACCTTGAGAACCTGACGCTGTGGCTGGCCCAGCAGGCCGACCAGCCCTACATGCGCATCGACCCGTTGAAGATCAACGTGGCGGCCGTTACGCCGCTGATGTCCTATGCCTTTGCGCAACGTCACAAGATTCTCGCAGTGGCGGTTGACCGTGACGCCGTCACCGTCGCCAGTGCCCAGCCTTACGTCAGCAGTTGGGAAGCCGACCTGACCCACGTGCTCAAGCTGCCGGTCAGGCGGGTGGTTGCCAACCCGGTGGATATCCAGCGCCTGAGCGTGGAATTCTATCGCCTGGCCAAATCCGTCAGCGGCGCTACCACCGTCGATCAGCAACCGAGCAACCTGACCAACTTCGAACAACTGCTCAACCTCGGCGCCAGCGACCAGGAGCCGGACGCCAACGACGCCCATATCGTCAACATCGTCGATTGGCTGTTCCAGTACGCCTTCCAGCAGCGGGCCAGCGATATCCACATCGAACCGCGCCGGGAGCAGGGCACCGTACGCTTTCGCATCGACGGGGTGCTGCACACCGTCTATCAGTTCCCGCCGCAGGTGACGATGGCGATCATCAGTCGCCTGAAAAGCCTGGGGCGCATGAACGTCGCGGAAAAGCGCAAGCCCCAGGATGGTCGCGTCAAGACCAAGACTCCCGACGGCAACGAAGTGGAGTTGCGCTTGTCGACCTTGCCGACCGCGTTCGGCGAAAAAATGGTGATGCGGATCTTCGATCCGGAAGTATTGCTCAAGGATTTCGACCAGCTGGGCTTCTCCGCCGACGACCTGCGTCGCTGGCAGGACATGACCCGCCAGCCCAACGGCATCATTCTGGTCACGGGCCCCACCGGGTCCGGCAAGACCACGACGCTCTACACGACGTTGAAAAAACTGGCGACGCCGGAAGTGAACCTCTGCACCATCGAGGATCCGATCGAGATGGTCGAGGCCTCGTTCAACCAGATGCAGGTCCAGCACAACATCGAGCTGTCTTTCGCGGCGGGCGTACGTGCGTTGATGCGGCAGGACCCGGACATCATCATGATCGGCGAGATCCGTGACCTGGAAACCGCCGAAATGGCAATCCAGGCAGCACTCACCGGACACCTCGTCCTCTCGACCCTGCACACCAACGACGCGCCGAGCGCCATCAGCCGCCTGCTGGAGCTCGGCGTGCCGCATTACCTGATCAAGGCCACAGTGCTCGGAGTCATGGCCCAGCGCCTGGTGCGTACGTTGTGTCCACATTGCAAGGCGCCCATCACCCTGGATGAAGACGACTGGCAAACCCTGACGAGGCCCTGGCAGGCCCCGCTGCCGACCAACGCCCAGCAGGCTGTCGGCTGCTCGGAATGCCGCGATACCGGCTATCGGGGGCGGGCCGGGGTGTACGAGATCATGCAGTTAAGCGACAGCGTCAAAGGCCTGATCCACCCAGACACGGACCTGCTCGCCGTGCGCCGCCAGGCCTTCAAGGAAGGCATGCGCAGCCTGCGGCTCTCGGGCGCGCAAAAGGTAGCGGCGGGCCTGACCACGGTCGAAGAAGTGCTGCGGGTGACGCCACAGAGTGAACAGAAGTAGMSTKHATQDRWLDLNDLLRQLVAQGLISQDSAETALNARRRHNANSQLHPLEFIANQHLDDLSRPGKRLDLENLTLWLAQQADQPYMRIDPLKINVAAVTPLMSYAFAQRHKILAVAVDRDAVTVASAQPYVSSWEADLTHVLKLPVRRVVANPVDIQRLSVEFYRLAKSVSGATTVDQQPSNLTNFEQLLNLGASDQEPDANDAHIVNIVDWLFQYAFQQRASDIHIEPRREQGTVRFRIDGVLHTVYQFPPQVTMAIISRLKSLGRMNVAEKRKPQDGRVKTKTPDGNEVELRLSTLPTAFGEKMVMRIFDPEVLLKDFDQLGFSADDLRRWQDMTRQPNGIILVTGPTGSGKTTTLYTTLKKLATPEVNLCTIEDPIEMVEASFNQMQVQHNIELSFAAGVRALMRQDPDIIMIGEIRDLETAEMAIQAALTGHLVLSTLHTNDAPSAISRLLELGVPHYLIKATVLGVMAQRLVRTLCPHCKAPITLDEDDWQTLTRPWQAPLPTNAQQAVGCSECRDTGYRGRAGVYEIMQLSDSVKGLIHPDTDLLAVRRQAFKEGMRSLRLSGAQKVAAGLTTVEEVLRVTPQSEQKPGPT0026430_334DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026430-gspE|epsE-K02454NANA
D1-35_03080339hypothetical proteinATGCATTCACTCGCAACCGTATCCACCGCCCCGACCCGCGCCGACGCCTGGCACGCCGCCAACGCCCATTGCCGCGTGCATTATCAGATGCAGGCCGAAGCCGAACCGGACGTGCTGTGTCGAGCGTTGAATCTGTTCGCCTTGCAGGGCCTGACGCCACAGCAGGTCCACGTCGAGCGTCAAGACGATCTGCTGATGCTGGACATTGTCCTGGATGGGCTGAGCTGGCACCGTGCCCAGGTCATTGCTGAAAAATTACGTAACCTGATCAGCATGTGCTCGGTGGACCTGCAGGACGCCGATATCACGCGGGCCGGACGGGTCCTGGCGGCCGGTTGAMHSLATVSTAPTRADAWHAANAHCRVHYQMQAEAEPDVLCRALNLFALQGLTPQQVHVERQDDLLMLDIVLDGLSWHRAQVIAEKLRNLISMCSVDLQDADITRAGRVLAAGNANANANANA
D1-35_03081471decR_2COG1522DNA-binding transcriptional activator DecRATGCAAAGTGAGCTGGATAGCTACGACCGCAGAATACTGGCGTTGCTGCAAGAGGATGCTTCGCTGTCCAGCGCGCAGATCGCCGAGCAGGTTGGCTTGTCCCAGTCGCCCTGTTGGCGTCGGATTCAGCGGATGAAGGAAGAGGGAATCATTCGGGGACAGGTGACGCTGCTGGACCGCAAGAAAATCGGCCTGAACACGCAGATCTTCGCCGAAATCAAGCTAAACGCCCACGGTCGCTCGAATTTCACCGAGTTCACCGAGGCGATCCGCGGATTTCCCGAAGTGCTGGAATGTTACGTGCTGATGGGGTCGGTGGATTTTCTGCTGCGCATCGTCACGGCGGACATCGAGGCGTATGAGCGATTCTTTTTCGAAAAGCTGTCGATGGTGCCGGGGATTCAGGAGGTGAACTCGATCGTGGCGTTGTCGGAGATCAAGTCGACGACGAGTTTGCCGGTGGTGCGCTAGMQSELDSYDRRILALLQEDASLSSAQIAEQVGLSQSPCWRRIQRMKEEGIIRGQVTLLDRKKIGLNTQIFAEIKLNAHGRSNFTEFTEAIRGFPEVLECYVLMGSVDFLLRIVTADIEAYERFFFEKLSMVPGIQEVNSIVALSEIKSTTSLPVVRNANANANANA
D1-35_030821368ygiFCOG3025Inorganic triphosphataseATGCAGAAAGAAACCGAAATCAAACTCCGCGTCAGCCGCGAGACCCTGGCAGCCTTGCGCGAGCATCCGCTGTTGAAAAAACGCAACAAGAGTGGCTGGGAACGCCACGAATTGATGAACCAGTACTTCGACACGCCGGAACGTGACCTCGCCCGGGCCAAGGTTGCCCTGCGCCTGCGCCGCGACGGCGAAGAAGTCATCCAGACCCTCAAGACCCGTGGCCAGAGCGTTGCCGGCCTGTCCGAGCGCAACGAATACGACTGGCACCTGCCCAAAGCCAAGCTCGACCTGAAGAAGCTCGACGGCGAATGCTGGCCCGAGGCACTGGCGGACCTGGACAAAAAAACCCTCAAGGCGATTTTCTCCACCGATTTCGTTCGCGAGCGCGCCGAAATTGCCTGGGGCCGCGGCAAAGCCAAGGTGGTCATCGAGGCCGCCCTGGACCTGGGCCACGTGGTGGTCGGCAAGCAGAAGGAAGAAATCTGCGAGCTGGAACTGGAACTGCGCGAAGGCGAACCCGCCGCCCTTCTGGAACTGGCCGCCGAACTGGCCGCGACCCTGCCCTTGATGCCTTGCGACATCAGCAAGGCTGAACGTGGCTATCGCCTGCATGATGCGAGCAGTTACGCCCTGAGCCTGCCGGCTCCGCAACTGACGGCCGAAACGCCGCTGGACGATGCTTTTGGCGCATTGAGCTGGCATTTGCTGGGCAGCAGCCAACGCCTGGCTGAACAATATCGTTTCAACGGCCACTGGCGCCTGTTGCAGGATTGGGTGGAAAACCTCGCCGAACTGCGCGCGTTGCTCAGCAGCCTCGGCCAGGCAGCGCCGCGCCAATCGACCCATGATCTGCGCGTCGCCCTGGATGCGCTGCTGGAGGACTGGCGTCCGCTGGTCCAGGCCGGCCTCGACGACGAAGACGTGCGCAAGGCGGCGCCGGAGCAATTCCTCGAAGAGCTGCAGGACCCGCGCTGGGGCCTCTTCTCTCTTGAAGCTTCGCGTTGGTTGCTCGCCCGCAGCTGGACCGCCGACCGCAACACCCGCGGCAATCGCCAAGGCGCGGCGCAACTGGGCAGCTGGCTGCCGCGCCTGCTCAGCGAAGAAGCTTCGTCGCTGCAACTGCAACGCTACCAGCAACAACCGGAAGACCTGGCCGAGCAACTGCCGCGCATCGAACGTATCCAGGCCTGGCTGCATCATGCCCGCCAGGTGCTGGAAATTCCTGAGATGGACCGGCTCTACGGCGAATTGAACAAGCTGGCGCAATTGGCCAACGAACCGATCACCGACGAGCTCTTGGATGCGCGCAAGCAGCAGGCGATTGCGGTTTACCAGAATCGGGCCTGGAAGACTTTGCTGCGCCTGTGAMQKETEIKLRVSRETLAALREHPLLKKRNKSGWERHELMNQYFDTPERDLARAKVALRLRRDGEEVIQTLKTRGQSVAGLSERNEYDWHLPKAKLDLKKLDGECWPEALADLDKKTLKAIFSTDFVRERAEIAWGRGKAKVVIEAALDLGHVVVGKQKEEICELELELREGEPAALLELAAELAATLPLMPCDISKAERGYRLHDASSYALSLPAPQLTAETPLDDAFGALSWHLLGSSQRLAEQYRFNGHWRLLQDWVENLAELRALLSSLGQAAPRQSTHDLRVALDALLEDWRPLVQAGLDDEDVRKAAPEQFLEELQDPRWGLFSLEASRWLLARSWTADRNTRGNRQGAAQLGSWLPRLLSEEASSLQLQRYQQQPEDLAEQLPRIERIQAWLHHARQVLEIPEMDRLYGELNKLAQLANEPITDELLDARKQQAIAVYQNRAWKTLLRLNANANANANA
D1-35_030831158argE_1Acetylornithine deacetylaseATGCCTTTGCCGTCCATGAAAGATCAGTTCGCTGCCCTGATCGCCGCGCCTTCGGTCAGTTGTACCCAGCCCAAGCTGGACCAGTCCAACAGCGCCGTGATCGAGCTGCTGGCAGGCTGGCTGTCGGAACTGGGATTCTCCTGTGATATCCAGCAGGTCAGCCCCGGCAAGTTCAACCTCCTCGCCAGCTTCGGCACGGGGCCCGGCGGGCTGGTGCTGGCCGGGCACAGCGACACGGTGCCGTTCGATGGCGCGTTGTGGCAGACCGACCCGCTCAAGCTCACCGAGGTCGGCGGGCGCTGGGTGGGCCTGGGCAGTTGTGACATGAAAGGTTTTTTCGCCCTGGCCATCGAAGCGGTGCGGCCGTTGCTGGACCAGCCGTTCAAGCAGCCGTTGCTGATCCTCGCCACCTGCGATGAAGAAAGCTCCATGGCGGGCGCCCGTGCCCTGGCCGAGGCCGGGCGGCCGCTCGGACGCGCGGCGGTGATAGGCGAACCGACGGGGCTGAAGCCGATCCGCATGCACAAGGGCGTGATGATGGAGCGTATCGACATCCTCGGGCGCAGCGGCCATTCCTCCGACCCGAGCCTGGGCCGCAGCGCGCTCGAAGCGATGCACGACGCCATGGGCGAGCTGCGTGGCCTGCGCCTGCAATGGCAGCGTGAGTTCCGCAATCCACAGTTCACCGTGCCGCAGCCGACCCTGAATTTCGGTTGTATTCATGGCGGCGACAATCCCAACCGGATCTGCGGCCAATGCTCCATGGAGTTCGACCTGCGCCCACTGCCAGGCATGGATCCAGAGGTGCTGCGGGCGGCGATCCGGCAGAAGCTCGACCCCATCGCCGAACGCCATCAGGTGAAGATCGACTACGCACCGCTATTCCCCGAAGCGCCCCCGTTCGAGCAGGCCGAGGACGCCGAGCTGGTGCGGGTGGCCGAACGGCTCACCGGGCATCGTGCCGAAGCAGTGGCGTTCGGCACCGAAGCGCCTTATCTTCAGCGCCTCGGTTGCGAAACCGTGGTATTGGGGCCTGGCGATATCGCCTGCGCCCACCAGCCTGGCGAATACCTTGAAATGTCACGTTTGCAGCCTACCGTGCAGCTGTTGCGACAGTTGATCGGCCATTACTGCCTGACACCGGCCAGCGCCGGTTAAMPLPSMKDQFAALIAAPSVSCTQPKLDQSNSAVIELLAGWLSELGFSCDIQQVSPGKFNLLASFGTGPGGLVLAGHSDTVPFDGALWQTDPLKLTEVGGRWVGLGSCDMKGFFALAIEAVRPLLDQPFKQPLLILATCDEESSMAGARALAEAGRPLGRAAVIGEPTGLKPIRMHKGVMMERIDILGRSGHSSDPSLGRSALEAMHDAMGELRGLRLQWQREFRNPQFTVPQPTLNFGCIHGGDNPNRICGQCSMEFDLRPLPGMDPEVLRAAIRQKLDPIAERHQVKIDYAPLFPEAPPFEQAEDAELVRVAERLTGHRAEAVAFGTEAPYLQRLGCETVVLGPGDIACAHQPGEYLEMSRLQPTVQLLRQLIGHYCLTPASAGPGPT0014254_1868DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014254-argE-K01438NANA
D1-35_030841299argACOG0548Amino-acid acetyltransferaseATGCCCGAATACGTCAATTGGCTTCGTCACGCTTCGCCCTATATCAACGCCCACCGCGATTGCACCTTCATCGTCATGCTGCCTGGCGACGGGGTGGAGCACCCCAACTTCGGCAACATCGTCCATGACCTGGTGTTGCTGCACAGCCTCGGCGTGCGGCTGGTGCTGGTGCATGGTTCGCGTCCGCAAATCGAGACCCGCCTCGCTGCCCGCGGCCTGACGCCGCACTATCACCATGGCATGCGCATCACCGATGCCGCGACCCTGGAGTGCGTAATCGACGCGGTCGGTCAGTTGCGCATTGCCATCGAGGCGCGCCTGTCGATGGACATGGCCTCCTCGCCGATGCAAGGCTCGCGGTTGCGCGTGGCCAGCGGCAACCTGGTCACCGCGCGGCCGATCGGCGTTCTCGAAGGCGTGGACTATCACCACACCGGGGAAGTGCGTCGGGTCGACCGCAAGGGCATCAACCGCCTGTTGGATGAGCGCTCGATCGTCCTGCTGTCGCCGTTGGGCTATTCACCGACCGGGGAAATTTTCAACCTGGCGTGTGAAGACGTTGCGACCCGGGCGGCCATCGATCTGGCCGCCGACAAACTCCTGTTGTTCGGCGCCGAGCAGGGCCTGATCGGCGAGGATGGGCGGCTGGTTCGCGAGCTGCGTCCGCAACAGGTCCCGGCTCATATGCAACGTCTGGGCAGCGATTATCAGGCCGAGCTGCTCGATGCGGCGGCGCAGGCCTGCCGGGGCGGCGTGGCGCGTAGCCACATCGTCAGCTATGCCGAGGACGGTGCGCTGCTGGCCGAACTGTTCACCCGCGATGGCAGCGGCACGCTCGTGGCCCAGGAACAATTCGAGGTGGTGCGCGAAGCCGCCATCGAGGATGTCGGCGGCTTGCTGGACCTGATCAGTCCTTTGGAGGAACAGGGCATTCTGGTACGGCGTTCCCGCGAGGTGCTGGAGCGCGAGATCGAGCAGTTCAGCGTGGTCGAGCGCGAAGGCATGATCATCGCGTGCGCGGCGCTGTACCAGATCGCCGATTCGGATGCCGGGGAACTCGCCTGCCTGGCGGTGAACCCGGAGTACCGCCACGGTGGCCGGGGCGATGAGCTGCTGGAGCGGATCGAAACCCGGGCCCGCGCCCAGGGCCTCAAGACTCTGTTCGTGCTGACGACCCGGACCGCCCACTGGTTCCGCGAGCGCGGCTTCGAGCCCAGCAGTGTCGATCGCCTGCCGGCGGCGCGGGCTTCGTTGTACAACTATCAGCGTAATTCGAAAATCTTCGAAAAATCGCTGTAAMPEYVNWLRHASPYINAHRDCTFIVMLPGDGVEHPNFGNIVHDLVLLHSLGVRLVLVHGSRPQIETRLAARGLTPHYHHGMRITDAATLECVIDAVGQLRIAIEARLSMDMASSPMQGSRLRVASGNLVTARPIGVLEGVDYHHTGEVRRVDRKGINRLLDERSIVLLSPLGYSPTGEIFNLACEDVATRAAIDLAADKLLLFGAEQGLIGEDGRLVRELRPQQVPAHMQRLGSDYQAELLDAAAQACRGGVARSHIVSYAEDGALLAELFTRDGSGTLVAQEQFEVVREAAIEDVGGLLDLISPLEEQGILVRRSREVLEREIEQFSVVEREGMIIACAALYQIADSDAGELACLAVNPEYRHGGRGDELLERIETRARAQGLKTLFVLTTRTAHWFRERGFEPSSVDRLPAARASLYNYQRNSKIFEKSLPGPT0014243_1249DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014243-argAB-K14682NANA
D1-35_030851329oprD_3Porin DATGAAGAAGTCCACCTTGGCCCTGGCTGTGGCCGTTGGGGTAATGGCGCAGCAGGCAGGCGCCGCCGGTTTCATCGAGGACAGCAAGGCGTCCGTCAGTTCTCGCACCATGTACTTTGACAACGACAACCGTGAAGGCGCTGAAGACCAGCGTGAAGCGGCGACCGGCCTGAAGTTCGACTACAAGTCCGGCTTCACTCAAGGTGTCGTTGGTTTTGGTATCGACGCCCAGGCGATGGTTGGTCTTCACCTTGATGGTGGTAAAGGTCAGCGTCCAGACGCCAATAACTCCTTCTCGCCAAGTGACTCCGACGGGTCCGCGGAGCACAGCTGGAGCCGTGGGTCGGCCAACGTGAAGGCGCTTTTCTCCAAGACCGAGGCCCACCTGGGTGGTGCTCTGCAGCCTAACCTGCCGATCCTGGTCGCCAACGATGGCCGTCTGCTGCCGCAAACCTTCGAAGGTGGCACTATCACCTCCAAGGACCTGGACAACGTGACGTTCAACGCCGGTCAACTGGAGCGCGCCGTAGGCCGTGCCGGTACCAACAGTACTGGCTTGGCAGTGGCAGGTGGTACCGAAGACAGCAACCAGTTCCGTTACGCCGGTGCTGACTGGAAGGTCACCAAGGACCTGACCCTGCAGTACTACTACGCCAACCTGCAGGATTACTACAAGCAGCACTTCCTGGGTGCGGTACACGTTTTCCCGATCACCGAAGGCCAGTCGTTCAAGACTGACCTGCGTTACTTCGACAGCAGCTCGGATGGCCGTAACGGCGACCCAGGCTATCGCTTCAACAACAACGGCGGTTATGCCAAGAACCCGGGCGAGGTCGATAACAAGACCTGGAGCGCCATGTTCACCTACACCCTGGGTGGCAGCGCGTTCCTGTTGGGTCACCAGCAAGTTGGCGACGATGGTGGCTTCGTCTACATGAACCAGGGCAACCTGCTCAATGACAGCGGCCGCAACGAAGGCGCCGGTGGCTCGAGCTTCTACCTGTTCACCGACAGCATGATCCATCAGTTCGTTCGTGCGGGTGAGAACACCACCTTCGGTCAATACTCGTACGACTTCACCGGCCTGGGCGTTCCTGGCTTGAAGGCAGCGATTGCCTACCTGCACGGTGACGACATCAAGTCTGCTACCGGCGGAAGCGAAACTTCCGAGTGGGAACGCGACATGCGCCTGGACTACGTCGTCCAGCAAGGCCCGCTCAAGGGCTTCGGCACTACCCTGCGTCATGGCTCCTACCGTGGCAGCAGCACCGGTATCGCCGACCAGGATCAGACCCGCCTGATCTTCAACTACACTTACAACTTCATGTAAMKKSTLALAVAVGVMAQQAGAAGFIEDSKASVSSRTMYFDNDNREGAEDQREAATGLKFDYKSGFTQGVVGFGIDAQAMVGLHLDGGKGQRPDANNSFSPSDSDGSAEHSWSRGSANVKALFSKTEAHLGGALQPNLPILVANDGRLLPQTFEGGTITSKDLDNVTFNAGQLERAVGRAGTNSTGLAVAGGTEDSNQFRYAGADWKVTKDLTLQYYYANLQDYYKQHFLGAVHVFPITEGQSFKTDLRYFDSSSDGRNGDPGYRFNNNGGYAKNPGEVDNKTWSAMFTYTLGGSAFLLGHQQVGDDGGFVYMNQGNLLNDSGRNEGAGGSSFYLFTDSMIHQFVRAGENTTFGQYSYDFTGLGVPGLKAAIAYLHGDDIKSATGGSETSEWERDMRLDYVVQQGPLKGFGTTLRHGSYRGSSTGIADQDQTRLIFNYTYNFMNANANANANA
D1-35_03086429hypothetical proteinATGGCCGATGATGTTTTGATCAACAAGGCAGCAAGTATCGAGCGTTGCGTCGCCAGGGTGCGGGAAGAATACGAGAAAGATCCCGCTACGTTTGCCACCGATTTCACTCGCCAGGACTCGGCAGTCCTGAACATTCAACGGGCGTGTGAAGCGGCACTGGACATGGGACAGCACTTGATTCGACGTGAGCGGCTGGGTGTTCCGCAAAGTGCTCGCGATACATTCGAGCTGCTTTTGCAAGGTGGCTGGCTGGAGGAAGGCCTGGTGAAAAACCTGAAGAATATGGTGGGCTTCAGGAACATCGCCGTGCATGACTATCAAGCTCTGCAACTGCCGATCATGATCGCAATCATTACCGGGCACTTGGACGATTTCCTCGGGTTCAGCGCGTACATCTTGCGCAAGGACGCGGCGCAGTCCAAGGGATAAMADDVLINKAASIERCVARVREEYEKDPATFATDFTRQDSAVLNIQRACEAALDMGQHLIRRERLGVPQSARDTFELLLQGGWLEEGLVKNLKNMVGFRNIAVHDYQALQLPIMIAIITGHLDDFLGFSAYILRKDAAQSKGNANANANANA
D1-35_03087396hypothetical proteinATGAACACTCAAGCCTTGTTGTCTTATCTGCATCACCATCTCCCTGGGCTGCTGGCGGTTTACCTGTTCGGTAGTCATGCACAGGGCACCGCGGGACCTGATAGCGACGTCGATCTGGCGGTGCTCGTGTCCGGCGAGGTCGACCCTGTTTCGCTGTGGCAGCTCTCAGGAGATTTGGCCGATATCGCTGGCAGTCCCGTCGATCTGATCGATCTACGCGCGGCAACGACCGTCATGCAATACCAGATCGTGACCCGAGGTCAGCGGCTCTGGGCCAGAGACGTACAGGCGGGTTTGTATGAATGTTTCATTCTCAGCGAAAAAACCGCTCTGGATGAGGCTCGGGCAGGTTTGCTCAAGGATATTCAGGAAGAAGGCAGCGTGTATGGCCGATGAMNTQALLSYLHHHLPGLLAVYLFGSHAQGTAGPDSDVDLAVLVSGEVDPVSLWQLSGDLADIAGSPVDLIDLRAATTVMQYQIVTRGQRLWARDVQAGLYECFILSEKTALDEARAGLLKDIQEEGSVYGRNANANANANA
D1-35_030882190hypothetical proteinTTGACCATTCGACAGCGTGACGACCAGCGGAGCACCGGTGACTGGAGCGTTCACCGAAGCGGTGTAAACCACAACGCCGCCTTCGCCAACCGTCGAAGTCGCGGTGAGCGAAACGGTGCTGGTGTCGAGGGTGTCGGTCACGTCCGTCACGACTGGTGCAGTGTTAGGCACCAGGTTTTCAAAGTTACCGCCAACGGCCGTGTCGATGCTGACTTCAACCTTGCCGGCATCCTTGTAGACATCGTCTTTCGGCGCGTCGACAGTTACGGTCCCAGTGGTAGCACCAGCCGCGATATTGATCACCGCGCCGTTGCTCAGGGTAATGGTGACAGGCGAGCCCGCTGCGTTGGTCAGGGTCGCGGTGTAAACAATCGAGCCGCCTTCGGCAACGGTGTCAGTCGCGGAAAGGGTCAGGCCGGTAGCATCAGCCGAATCAGTGATCGTAGTAACCGCAGGCGTAGTGCTCGGAACCAGATTCTCGAAGTTGCCGCCGGTTGCGCCGGTAATCGTAGTGCTGACAGTGCTGCCATTGTTGTAGACGTCGTTGGCCGGGGTATCGACAGCCACGGTACCGGTGGTCTGGCCGGCGGCGATAGTGATCACCGAGCCATTGCTCAACGTCACGGTCACCGGCGTCTGAGCAGGATTGGTCAGCGTCGCGGTGTAAATGATCTGACCGCCTTCGGTGATGGTTTCGCTGGCGCTGAGCGTCAGGCCAGTCGTATCAGCCGAATCAGTGATCGTAGTAACCGCAGGCGTCGTGCTCGGCACCAGGTTTTCGAAGTTGCCGCCGGTTGCTCCGGTGATCGTGGTGCTGACGGTACTGCCGTTGTTGTAGACGTCGTTGGCCGGGGTATCCACGGCAACGGTGCCGGTGGTCTGGCCAGCGGCAATGGTAATGACCGAGCCATTGCTCAACGTCACGGTCACCGGCGTCTGGGCCGGATTGGTCAACGTGGCGGTGTAGGTGATCTGGCCGCCTTCGGTGATGGTTTCGCTGGCGCTGAGCGTCAGGCCAGTCGTATCAGCCGAGTCAGAGATCGTGGTGACCGCAGGCGTAGTGCTGGGCACCAGATTCTCGAAGTTACCGCCGGTTGCGCCGGTAATCGTAGTGCTGACAGTGCTGCCATTGTTGTAGACGTCGTTAGCCTGGGTATCGACAGCCACGGTACCGGTGGTCTGGCCGGCGGCGATAGTGATCACCGAGCCATTGCTCAGCGTCACGGTCACCGGCGTCTGGGCCGGATTGGTCAACGTGGCGGTGTAGGTGATCTGGCCGCCTTCGGTGATGGTTTCGCTGGCGCTAAGCGTCAGGCCAGTGGCGTCAGCCGAATCAGTGATCGTAGTAACCGCAGGCGTGGTGCTCGGCACCAGATTTTCGAAGTTACCGCCAGTAGCGCCGGTAATCGTAGTGCTGACGGTGCTGCCGTTGTTATAGGCGTCGTTAGCCGGAGTATCGACAGCCACGGTACCGGTGGTCTGGCCAGCGGCAATCGTGATGACCGAGCCATTGCTCAATGTCACGGTCACCGGCGTCTGGGCCGGGTTGGTCAGCGTCGCGGTGTAGGTGATCTGGCCGCCTTCGGTGACAGTATTGCCGGCGCTCAGGGTGACGGTGGTGGTGTCGACGGTGTCGGTGATCTGCGTCACGGCTGGCGTGGTCGGCAGGGTCACGGCGATGCCGGTGCCGCCAGTGGTACCGGTGACGGTCACGCTGACTTGGCTGGGGTCGTTGTAGACCGTGTCGTTCGGTGCCAGGGGCACGTTGACGCTACCGGTCAGTTGCCCGGCCGGGATCACGATCACCGCGCCGTTGGACAGGGTTACGGTCAGGTTGGTTTGCGGCGCCTGGGTCACGGTCGCAGTGTAGACCAGCACGCCCCCGGCCTCGGTCAGGGTCGGGGTGGCGCTCAAGGTCATCGTCGCATTGAGCACGGCGTTGGCGGTGGTATCGGCGTTGTCGTCACCACCCAGGATGTTGTCATCGGTTGCTGCGGCCGCAGCGAGGCCTTCGGTCGGGAAGCCGATGGTGGGGTCGACGCTGCCGGCCGTGGCATCCAGCACGACGAAGCTATGACCGCCGCCCACGGCTCCGCCTGTACCGGCAGCGGTGGCGCCGGCCGCGGTGGCTTCCAGGGCGGTGGTCGGGTCGACACCGGCGGCGATGGCTTGCTGCAGCTCTTCTACTGAMTIRQRDDQRSTGDWSVHRSGVNHNAAFANRRSRGERNGAGVEGVGHVRHDWCSVRHQVFKVTANGRVDADFNLAGILVDIVFRRVDSYGPSGSTSRDIDHRAVAQGNGDRRARCVGQGRGVNNRAAFGNGVSRGKGQAGSISRISDRSNRRRSARNQILEVAAGCAGNRSADSAAIVVDVVGRGIDSHGTGGLAGGDSDHRAIAQRHGHRRLSRIGQRRGVNDLTAFGDGFAGAERQASRISRISDRSNRRRRARHQVFEVAAGCSGDRGADGTAVVVDVVGRGIHGNGAGGLASGNGNDRAIAQRHGHRRLGRIGQRGGVGDLAAFGDGFAGAERQASRISRVRDRGDRRRSAGHQILEVTAGCAGNRSADSAAIVVDVVSLGIDSHGTGGLAGGDSDHRAIAQRHGHRRLGRIGQRGGVGDLAAFGDGFAGAKRQASGVSRISDRSNRRRGARHQIFEVTASSAGNRSADGAAVVIGVVSRSIDSHGTGGLASGNRDDRAIAQCHGHRRLGRVGQRRGVGDLAAFGDSIAGAQGDGGGVDGVGDLRHGWRGRQGHGDAGAASGTGDGHADLAGVVVDRVVRCQGHVDATGQLPGRDHDHRAVGQGYGQVGLRRLGHGRSVDQHAPGLGQGRGGAQGHRRIEHGVGGGIGVVVTTQDVVIGCCGRSEAFGREADGGVDAAGRGIQHDEAMTAAHGSACTGSGGAGRGGFQGGGRVDTGGDGLLQLFYNANANANANA
D1-35_03089249hypothetical proteinTTGGGCAGTGGCCTGTTCGAGGTCGGTGGAAGAGTCCGGCGCGCTGGCGCTCCACTGGGTATCGCGGCCCAGGTCGAGCGTGCGGCCGTCAGCCAGTTCCAACGTGACGGCGCCGGCAGGGCCGGTGTCCAACTGGTCGCCTACGTTAAGGCGATCGCCTTCAATGAGTACGCGCCGAATGCCCTCGGGGGAAACGACGAAAACCTGACCAACAATGCTTTTGACAACGGCAATAACACTGCTCATTGAMGSGLFEVGGRVRRAGAPLGIAAQVERAAVSQFQRDGAGRAGVQLVAYVKAIAFNEYAPNALGGNDENLTNNAFDNGNNTAHNANANANANA
D1-35_030901350bepC_2Outer membrane efflux protein BepCATGCGTTCGCACCTGTTCAAGGCTTTACCCTTCGCCCTGGCCGCCAGTTTCGTACAAGCACAAACCTTGCCGCAGGCCATGCAACAAGCATTGGATGTTCATCCGGAAATTCAGGCAGGCGTGAACAGCCGCCTGGCGGCGGACTATCAGTTGAAGGCGGCCAAGGGCGGCTACCTGCCTAGAGTGGACCTCGCAGCCGGTTACGGCCGTGAAGGCACCGACAGCGTGACGACCCGTTCGGGCAGTAATAATCATTGGGAAACCCTGAACCGCAGCGAATCGAGCCTGCGTCTGTCGCAAATGGTTTTTGACGGTTTTGCGACGTCCAGCGAAGTCGGGCGTCAACAAGCCAACGTCAGTGCTCGCGCCTATTCCTTGCTTGATGCCTCCGAGCGCACCGGGCTGACCGTCGCCCAGGTGTACCTGGACGTACTGACCCGCCGTGAGTTCGTGCGCCTGGCCGAGGAAAACCTCAAGAGTCACGAGCGCATCTTCGATCAAATCAAGTTGCGCACGTCCCGGGGGGTAGGCAGCGGCGCCGACCTGGACCAGGCCGAGGCGCGCATGGCCCAGGCCCGCAACAACCTGATCACCGAGCAGACCAACCTGGCCGATGCCGAGACCAACTACCTCAGCGCCGTCGGACAATTGCCTGACCAACTGGAGCGCCCCGCCGACTTTCTGGCGTTGCTACCGGCCAACCTGACCGAAGCCCGTGCCCAGATGCTGGAAAACAGCCCGGTGCTGCGTTCGGCCGAAGCCGACATCGCCGCCGCCGAGAAGCAATACGAGGCCGCCAAGTCGAGCTTCTACCCTCGCTTCGACGCGGAACTGGGCCGCACCGCCGACAACGACCTGGACGGCCAGAACGGCCACAACAACGAATGGCAGGCCATGTTGCGCATGCGCTTCAACCTGTACGCCGGTGGTAGCAACAAGGCCGACCTGGAATCCAAGTCCTACCTGTCCAACCAGGCGCTGGATATCCGCAACAACGCGCTGCGCCAGTTGAATGAAGAGCTGGGCCTGGCCTGGAACGCCCTGAACAACGCCAACGCCCAGGTGCCGATCGCCCAGCAATACGTGGATCGCAGTGCCAACGTGCGCACCGCCTACCAGAAGCAATTCAGTCTCGGCGAGCGGACCCTGCTCGACTTGCTCGACAGCGAAAACGAGCTGTTCAGCGCCTCCCGCCGTCTGGCGGAAATCAAGAACGTGCAGCTGTTCAGCCAGTACCGGATCAAGGCGACCATGGGCCAGTTGCTGAAAAGCCAAGGCGTGGTCGCGCCGTTGGCATCCGTTGTGCAGAACGACGTGAAACCCAAGGTCCAGTTGCCTGGGATGAATTAAMRSHLFKALPFALAASFVQAQTLPQAMQQALDVHPEIQAGVNSRLAADYQLKAAKGGYLPRVDLAAGYGREGTDSVTTRSGSNNHWETLNRSESSLRLSQMVFDGFATSSEVGRQQANVSARAYSLLDASERTGLTVAQVYLDVLTRREFVRLAEENLKSHERIFDQIKLRTSRGVGSGADLDQAEARMAQARNNLITEQTNLADAETNYLSAVGQLPDQLERPADFLALLPANLTEARAQMLENSPVLRSAEADIAAAEKQYEAAKSSFYPRFDAELGRTADNDLDGQNGHNNEWQAMLRMRFNLYAGGSNKADLESKSYLSNQALDIRNNALRQLNEELGLAWNALNNANAQVPIAQQYVDRSANVRTAYQKQFSLGERTLLDLLDSENELFSASRRLAEIKNVQLFSQYRIKATMGQLLKSQGVVAPLASVVQNDVKPKVQLPGMNPGPT0022235_899DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_I_SECRETION_SYSTEMSCE-TSS1-ADHESIN_TRANSPORT,PGPT0022235-lapE-K12543NANA
D1-35_030912157ltxBCOG2274Leukotoxin export ATP-binding protein LtxBGTGGAATCAGAAGTCAGTCCAGTCGAACTAGTTCACGACCCGCGCACGCTGCACGATGACCCGCTGCTGGATGGTTTGCTGGCGCTCTGCATGCTGCACCAGAAACCTGCCAGCGCGGCGATGCTGACCACCGGCCTGCCGCTGCCCAAGCAACGCTTGAGCGTCGACTTATTGTCGCGCGCGGCGGCCCGTGCCGGTCTGCAAGGCCGGGTGCTGCAACGCAAGCTCGAACAGATCCCGGCCATCGCCATGCCGGCTCTGCTGCTGCTCAAAGAAGGCCGCAGCGCCGTGCTGCTGGGCTGGGCCGGTGACGACCAGGCGCGCTTGCTGCTTAGCGAAAGCGATGGCGGAGAGGTCACCGTCAGCCGCGAGCTGCTGGCCGATGACTACAGTGGCAAGGTTTTCTTCGCCCAGCCGCAGCATAAATTTGACGTCAACCACGGCACGCTGATCCCACGGGCGCGTTCCTGGTTTCGCGACACTCTCAAACGCTCCCGCTGGTTGTACGCCGATGCCATCGCGGCCAGCCTGCTGATCAATATCATCGCCATGGCCGCGCCGCTGTTCGTGATGAACGTCTACGACCGCGTGGTGCCGAACCAGGCCGAATCAACCCTGTGGGTACTGGCGGTCGGCATTACCGGCGCCTACATTTTCGACTTGATCCTGAAGATGCTGCGCAGCCTGTGCCTGGATCTGGCAGGCAAGAAAACCGACCTGATCATTTCTGCGACGCTGTTCGAGCGCATCGTCGGCATGGCGATGAAATATCGTCCGGCGCGGGTCGGCAGCTTTGCCCAGAACATCCACGAGTTCCAGAGCCTGCGGGACTTCCTCGCCTCGCTGACCCTGACCAGCCTGATCGACTTGCCGTTCACGCTGCTGATCTTCATGGTCATCGCGATCCTGGGCGGGCATCTGGTGTGGATTCCGGTGCTGGCGTTCCCGATCGCCTTGCTGATTGGCTATGCCTTGCAGAAGCCGTTGGTAGCGACCATGGAACGAACCATGGCCCTGGGCGCCGAGCGCCAGTCCAGCCTGATCGAAACCCTGGCCGGCCTGGATGCGGTGAAGGTCAACAACGCCGAAAGTGAACGGCAGTACCAATGGGAACAGACCATCGGCACCCTTAGCCGCCTCGAGCTGCGCGTGAAGATGCTGTCCGGCCTGGCGATGAACATCACCTTGCTGATCCAGCAACTGGCCGGGGTGATCATGATCGTCTTCGGCGTCTACCAGATCATCGCCGGCAACCTGAGCATGGGTGGGCTGATCGCCTGCTACATGCTCAGCGGCCGCGCACTGAGCCCATTGGCCTCGTTGTCGGGCCTGCTGACCCGCTACCAGCAAGCGCGGGTCACCATGACTTCCGTCGACCAGATGATGGAACTGCCCCAGGAACGCAATTTCGACGAGCGCCCGCTCAGCCGCAAGGTGTTGCAGGGCGCCATTGAATGTCGGCAATTGAATTTTACCTATCCGAACCAGCAGAACGCCGCGCTGAAGAACATCAACCTGGTGATCAAGCCGGGCGAAAAAATTGGCATCATCGGCCGCAGCGGCTCGGGCAAAAGCTCTCTGGCAAAACTCCTGGTGGGGCTTTACCAGCCGGATGACGGCGCGTTGCTGGTGGATGGCGTGGACATTCGCCAGATCGACGTCAGCGAGCTGCGCTACAACATCGGCTACGTGCCCCAGGACATCCAGCTGCTGTCCGGAACCCTGCGCGACAATCTCACTTCAGGTGCCCGCTACGTCGAGGATGAATTGGTGCTTCAGGCCGCGGAGCTGGCAGGCGTACACGAATTCGCCCGCCTGCATCCGCAAGGCTATGAGCTGCAAGTCGGTGAGCGCGGGCAGAACCTGTCCGGCGGCCAGCGCCAGAACGTCGCCCTGGCTCGCGCGTTGCTGCTCAATCCGCCGATCCTGCTCCTGGACGAACCTACCAGCGCGATGGACAACACCGGTGAAGAGCGCTTGAAACAGCGCCTGGCCGCCGTGGTGGAAAACAAGACCGTGCTGCTGGTGACGCACCGGGCATCCTTGCTGTCGCTGGTGGACCGCCTGCTGGTGATCGACCGCGGGCAGATTCTCGCCGACGGCCCGAAAGCCGCCGTCATGGAAGCGTTGAAGAAGGGGCAGATCAGTGTTGCTTAAMESEVSPVELVHDPRTLHDDPLLDGLLALCMLHQKPASAAMLTTGLPLPKQRLSVDLLSRAAARAGLQGRVLQRKLEQIPAIAMPALLLLKEGRSAVLLGWAGDDQARLLLSESDGGEVTVSRELLADDYSGKVFFAQPQHKFDVNHGTLIPRARSWFRDTLKRSRWLYADAIAASLLINIIAMAAPLFVMNVYDRVVPNQAESTLWVLAVGITGAYIFDLILKMLRSLCLDLAGKKTDLIISATLFERIVGMAMKYRPARVGSFAQNIHEFQSLRDFLASLTLTSLIDLPFTLLIFMVIAILGGHLVWIPVLAFPIALLIGYALQKPLVATMERTMALGAERQSSLIETLAGLDAVKVNNAESERQYQWEQTIGTLSRLELRVKMLSGLAMNITLLIQQLAGVIMIVFGVYQIIAGNLSMGGLIACYMLSGRALSPLASLSGLLTRYQQARVTMTSVDQMMELPQERNFDERPLSRKVLQGAIECRQLNFTYPNQQNAALKNINLVIKPGEKIGIIGRSGSGKSSLAKLLVGLYQPDDGALLVDGVDIRQIDVSELRYNIGYVPQDIQLLSGTLRDNLTSGARYVEDELVLQAAELAGVHEFARLHPQGYELQVGERGQNLSGGQRQNVALARALLLNPPILLLDEPTSAMDNTGEERLKQRLAAVVENKTVLLVTHRASLLSLVDRLLVIDRGQILADGPKAAVMEALKKGQISVAPGPT0022225_884DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_I_SECRETION_SYSTEMSCE-TSS1-ADHESIN_TRANSPORT,PGPT0022225-lapB-K12541NANA
D1-35_030921368prsE_3Type I secretion system membrane fusion protein PrsEGTGTTGCTTAAATCCGGTTTCAAGGGCGCTGTGGGCCGTTACTTCAAAGGTTCCGACTCGCTGCATGGCCAACCGCTGCCCGAAGTCAACAAGGCGCTGATCGAGGACGCCCCCCGCGTGGTGCGCCTGACGATCTGGGGCATCATCGGTTTTTTCGTGTTCCTGGGGCTGTGGGCCAACTTCGCCGAGATCGACGAAGTGACCAAGGGCGACGGCAAGGCGATTCCTTCGTCCAAGATTCAGAAAATCCAGAACCTGGAAGGCGGTATCGTCGCCGAGCTGTTCGTAAAGGAAGGGCAGATTGTCGACGCCGGTGCGTCGTTGATTCGCCTGGACGACACGCGGTTTGTCTCCAACGTCGGCGAAACCGAGGCGGATCGCCTGTCCATGCTGTTGCGGGTCGAGCGCCTGAGTGCCGAGGTCGATGACCGACCGCTGAATTTCCCGGCTGATGTACTCAAGGCCGTACCGGGTCAGGCTGCCAGCGAAGAATCGCTGTACATCAGCCGCCGCCAGCAGTTGCACGATGAAATCGGCGGCTTGCAGGAGCAGTTGATCCAGCGGCAGCAGGAATTGCGCGAGTTCGTCTCCAAGCAGTCGCAATACCGCTCCGGCCTGGCGCTGCAACGCCAGGAAATCAACATGTCCGAGCCGCTGGTGGCCCAGGGCGCGGTATCGCCGGTGGAAGTGCTGCGGCTCAAGCGCGCCGAGGTCGAGACCCGTGGGCAACTGGACGCGACGACGCTGGCGATTCCTCGCGCCGAGTCGGCGATCAAGGAAGTGCAGCGCAAGATCGACGAGACTCGTGGCAAGTTCCGCAGCGAGGCACTGACCCAGCTCAATGAGGCGCGCACCGACCTGAACAAGGCTCAAGCCACCGGCAAGGCCCTGGAGGACCGGGTGAGCCGTACCCTGGTGACATCGCCGGTGCGCGGCATCGTCAACAAACTGCTGGTCAACACCATCGGCGGGGTAATCCAGCCCGGTAGCGACCTGGTGGAAATCGTGCCGCTGGACGACACCATTCTGGTGGAGGCGAAGATCCGTCCCCAGGACATCGCCTTCCTGCACCCCGGCCAGGACGCCACGGTGAAATTCACCGCCTACGACTACACCATCTACGGCGGGATGAAAGCCAAGCTGGAACAGATCGGCGCCGACACCATCACTGATGAAGACAAGAAAACCACCTACTACATCATCAAGTTGCGCACCGAACGCAGCCACCTGGGCACGCCTGAAAAGCCCTTGCTGATCATCCCCGGGATGGTGGCGTCGGTGGATATCATCACCGGCAAGAAGACCGTGCTGAGCTACCTGCTCAAGCCCATCATCAAGGCCCGGGCCGAGGCGTTGCATGAGCGGTAGMLLKSGFKGAVGRYFKGSDSLHGQPLPEVNKALIEDAPRVVRLTIWGIIGFFVFLGLWANFAEIDEVTKGDGKAIPSSKIQKIQNLEGGIVAELFVKEGQIVDAGASLIRLDDTRFVSNVGETEADRLSMLLRVERLSAEVDDRPLNFPADVLKAVPGQAASEESLYISRRQQLHDEIGGLQEQLIQRQQELREFVSKQSQYRSGLALQRQEINMSEPLVAQGAVSPVEVLRLKRAEVETRGQLDATTLAIPRAESAIKEVQRKIDETRGKFRSEALTQLNEARTDLNKAQATGKALEDRVSRTLVTSPVRGIVNKLLVNTIGGVIQPGSDLVEIVPLDDTILVEAKIRPQDIAFLHPGQDATVKFTAYDYTIYGGMKAKLEQIGADTITDEDKKTTYYIIKLRTERSHLGTPEKPLLIIPGMVASVDIITGKKTVLSYLLKPIIKARAEALHERPGPT0022230_396DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_I_SECRETION_SYSTEMSCE-TSS1-ADHESIN_TRANSPORT,PGPT0022230-lapC-K12542NANA
D1-35_03093903tauD_1COG2175Alpha-ketoglutarate-dependent taurine dioxygenaseATGCCAGCCGTCTCTTTTTCTCCAGACTCAAATGCCGCGAACATCGCGCCGCAATCATTCGAAGTACGCCCATTCAGCGGTGCCGTAGGTGCCGAGATCGTCGGGCTGGACCTGTCGCGGCCGATCAACCATCAGGATTTCGCGCGCATCCACCGCGCTCACCTGGACTATCACGTCGTGGTGTTCCGCGATCAGCGCATCACTCCCGAGCAGCACATCGCTTTCAGCCGCCGTTTTGGCGTGCTGCAAATCCATGTGCTCAAGCAATTCCTGCTGGCCGGGCATCCGGAAATTCTCATCGTCTCCAACATCATCGAGAACGGCCAGTCCATCGGTCTGGGAGACGCCGGCAAGTTCTGGCATTCGGACCTTTCCTATAAGGAACTGCCGAGCCTCGGCTCGATGCTCCACGCCCAGGAGCTGCCGAGCGAGGGCGGCGACACGCTGTTCGCCGACATGCACAAGGCCTGGGACGGTTTGCCCGAAACACTGCGTAAAGCGATCGAGGGCCGTTCGGCGGCGCATTCTTACACCGCGCGTTACAGCGAGACCAAATTCGAAGGCAACTGGCGCCCGACGCTGACGCCTGAACAGTTGGCCCAGGTCGCCGAAGTCGTGCATCCGATCGTCCGCACCCACCCGGAAACCGGGCGCCAGGCGCTGTTCGTCAGCGAAGGCTTCACCACCCGCATCGTCGGCCTGCCGGAGGATGAAAGCAAAGCCATCCTGGCCGAGCTGTATGCCTACAGCGTGCTGCCCCAGAACATCTATCGCCATCAATGGCAGCCCCACGACCTGGTGTTCTGGGACAACCGCTCGCTGATCCACCTCGCCGCCGGATGCCCGAGCCATCTGCGCCGCAAGCTGTATCGCACCACTATCCAGGGCGACGCCCCTTTCTGAMPAVSFSPDSNAANIAPQSFEVRPFSGAVGAEIVGLDLSRPINHQDFARIHRAHLDYHVVVFRDQRITPEQHIAFSRRFGVLQIHVLKQFLLAGHPEILIVSNIIENGQSIGLGDAGKFWHSDLSYKELPSLGSMLHAQELPSEGGDTLFADMHKAWDGLPETLRKAIEGRSAAHSYTARYSETKFEGNWRPTLTPEQLAQVAEVVHPIVRTHPETGRQALFVSEGFTTRIVGLPEDESKAILAELYAYSVLPQNIYRHQWQPHDLVFWDNRSLIHLAAGCPSHLRRKLYRTTIQGDAPFPGPT0002940_405DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_TAURINE_UTILIZATION,PGPT0002940-tauD-K03119NANA
D1-35_030941026hypothetical proteinATGTCCAAACGCATCGCTTTTGCACCGCTGGCTGCGGCTATCGGCCTGGGGTTCAGCTTGCTCGCTGGCAGCCTGGTCGCGCCGGCCAGCGCCCAGGCCGAGGGCGAGATTCGCATCGCCGAGCAGTTCGGCATCGTCTACCTGCTGCTGAACGTGGTCCGCGACCAGCAATTGATCGAGAAACACGGCAAGGAGGAGGGCATCGACATCAAGGTCGACTGGACCCAGCTGTCCGGCGGTGCGGCGGTCAACGATGCGTTGCTGTCAGGCTCCATCGACATTGCCGGGGCCGGCGTCGGCCCGTTACTGACGGTCTGGGATCGCACCCGTGGCAAGCAGAACGTCAAGGCCGTGGCCTCCCTGGGCAACTTTCCCTATTACCTGTTAAGCAACAACCCGAACGTCAAGACCATCGCCGACTTCACCGAGAAGGACCGCATCGCGGTGCCGGCGGTGGGCGTGTCGGTGCAGTCACGTTTCCTGCAGTACGCCGCCGCGAAGCAGTGGGGCGACAAGGAGTTCAATCGCCTCGACAAGTACACCCTGGCCGTCCCGCACCCGGACGCCACGGCCGCGTTGATTGCCGGCGGCACCGAGTTGACCGGGCACTTTTCCAACCCGCCGTTCCAGGACCAGGCCCTGCAAAACCCCAACGTTCATGTGGTGCTCAACTCCTATGACGTGCTCGGGCCGAATTCGCCCACGGTGCTGTTCGCCACCGAGAAATTCCGCGATGAAAACCCAAAAACCTACAAGGCCTTCGTCGAAGCGCTGACCGAAGCGGCCGAGTTCGCCCAGAAAGACAAAGGCGCGGCGGCGGACACCTACCTGCGCGTGAGCAAGGCCAAGATCGACCGGGCGACTCTGCTGAAGATCATCAAAAACCCGCAGATCGAATTTACCGTCACGCCAAAAAACACCTACCCGCTCGCCGAATTCCTCTACCGCGTCGGCGCCATCAAGAACAAGCCGGCCTCCTGGGAAGACTACTTCTTCCAGGACGCCAAACCGCTGCAGGGGAGCTGAMSKRIAFAPLAAAIGLGFSLLAGSLVAPASAQAEGEIRIAEQFGIVYLLLNVVRDQQLIEKHGKEEGIDIKVDWTQLSGGAAVNDALLSGSIDIAGAGVGPLLTVWDRTRGKQNVKAVASLGNFPYYLLSNNPNVKTIADFTEKDRIAVPAVGVSVQSRFLQYAAAKQWGDKEFNRLDKYTLAVPHPDATAALIAGGTELTGHFSNPPFQDQALQNPNVHVVLNSYDVLGPNSPTVLFATEKFRDENPKTYKAFVEALTEAAEFAQKDKGAAADTYLRVSKAKIDRATLLKIIKNPQIEFTVTPKNTYPLAEFLYRVGAIKNKPASWEDYFFQDAKPLQGSPGPT0001135_3781DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001135-ABC_SN_S-K02051NANA
D1-35_03095861cmpD_2Bicarbonate transport ATP-binding protein CmpDATGAACGCGCCATTGCCAGGCCACGCGGCCAGCAACGCCACCCGCACCGACACCGCGCTGTTGTCGGTGGATAACGTCAGCCTGGAATACCGCACCCCGCAGCGTGTAGTCCGCGCCACCCATCAAGTGAGTTTCGAGGTCGATCCGGCGGACCGCTTTGTACTGCTCGGCCCGTCCGGGTGCGGCAAGTCCACGTTGCTCAAGGCCATTGGTGGTTTCATCACTCCGTGTGAAGGCGAGATCCGCCTGCAAGGCCAAATCGTCAGCGCGCCAGGGCCGGACCGGATTGTGGTGTTCCAGGAGTTCGATCAGCTGCCGCCGTGGAAAACCGTTAAGCAGAACGTGATGTTCGCGCTGCTGGCGTCGGGCACGCTCAAACGTCGCGAGGCCGAGGAGCGGGCGCTGCACTACCTCGATAAAGTCGGGCTGGCAGCGTTTGCCGATGCTTATCCGCATACCTTGTCTGGTGGGATGAAGGCACGCGTCGCGATTGCCCGGGCGCTGGCGATGCAACCGAAGATCCTGCTGATGGACGAGCCGTTTGCGGCGCTGGATGCGCTGACCCGCCGCAAGATGCAGGAGGAATTGCTGCTGCTCTGGGAGGAGGTGCGCTTCACGCTGTTGTTCGTTACCCATTCCATCGAAGAAGCGCTGGTCGTGGGCAATCGCATCCTGCTGCTGTCACCGCATCCGGGGCGGGTCCGGGCGGAAATCCACAGCCATCAATATGATCTGCACAGCCTTGGCGGCGTCGGGTTCCAGCACACGGCGCGGCGGATTCATTCGCTGCTGTTCGAACAAGGCCAGTCGCCGGACGCTGAACGCGAGCTGGGTTTTGCCGACATTCGTATCGCGTACTGAMNAPLPGHAASNATRTDTALLSVDNVSLEYRTPQRVVRATHQVSFEVDPADRFVLLGPSGCGKSTLLKAIGGFITPCEGEIRLQGQIVSAPGPDRIVVFQEFDQLPPWKTVKQNVMFALLASGTLKRREAEERALHYLDKVGLAAFADAYPHTLSGGMKARVAIARALAMQPKILLMDEPFAALDALTRRKMQEELLLLWEEVRFTLLFVTHSIEEALVVGNRILLLSPHPGRVRAEIHSHQYDLHSLGGVGFQHTARRIHSLLFEQGQSPDAERELGFADIRIAYPGPT0001140_1244DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001140-ABC_SN_A|ytlC-K02049NANA
D1-35_03096867hypothetical proteinATGAGCCAGTTATCGCCTGCGCGCGAAGAATACGAAGTCGATCTGCAACCGCTGACCCACGTGCCACTGGAGCGGGAATTGCCCCTGGGCCAGCGCCTTTGGCAGCAGGGGTGGTTGCGTAAATGTTTGATCCTGTTGGTGCTGGCGCTGGTATGGGAGGGCGTGGCGCGTTACCAGAACAACGACCTGTTGCTGCCGAGCTTTTTGCAGACTGCCAGCGCGCTGTATGACGGTTTGCTCAGTGGCGAGTTGCTGGGCAAGGTGTGGATTTCCCTGATGGTGCTGCTCAAGGGTTATTTGCTCGGCATCGTCCTGGCGTTTGGCTTGACCACCCTGGCGGTGTCGACGCAGTTGGGGCGTGACCTGCTCAGCACCCTGACGTCGATGTTCAACCCGTTGCCGGCCATCGCGCTGTTGCCGTTGGCGCTGCTGTGGTTCGGCCTGGGGCAGAACAGCCTGATTTTTGTATTGGTGCATTCGGTGCTGTGGGCGCTGGCATTGAACATGTATGCGGGGTTTCTCGGCGTGTCGGAAACGCTGCGCATGGCCGGGCGCAACTACGGGCTCAAGGGCCTGCGCTTTGTGCTGTTCATCCTGATTCCGGCGGCGCTGCCGTCGATCCTCGCCGGGCTGAAAATCGGCTGGGCCTTCGCCTGGCGCACGCTGATCGCCGCCGAACTGGTATTCGGCGCCACCAGCGGCAAGGGCGGCCTGGGCTGGTACATCTTCCAGAACCGCAACGAGCTGTACACCGACAAGGTCTTTGCCGGGCTGGCGGTGGTAATCCTCATCGGGCTGCTGGTAGAGAACCTGGTATTCGACAGCCTGGAACGGGTGACGGTGAAGCGTTGGGGGATGCAGCGTTGAMSQLSPAREEYEVDLQPLTHVPLERELPLGQRLWQQGWLRKCLILLVLALVWEGVARYQNNDLLLPSFLQTASALYDGLLSGELLGKVWISLMVLLKGYLLGIVLAFGLTTLAVSTQLGRDLLSTLTSMFNPLPAIALLPLALLWFGLGQNSLIFVLVHSVLWALALNMYAGFLGVSETLRMAGRNYGLKGLRFVLFILIPAALPSILAGLKIGWAFAWRTLIAAELVFGATSGKGGLGWYIFQNRNELYTDKVFAGLAVVILIGLLVENLVFDSLERVTVKRWGMQRPGPT0001145_2736DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001145-ABC_SN_P-K02050NANA
D1-35_03097489hypothetical proteinATGCCAGTCCCTCCCAGCCCCCTTCGCAAAGCCCTGGTCGTTTGGCTGTACGCTGCGGCCCTGATGCATCTGCTCGCCGGTCTTACGCTGACCTGGGCCGGTCACTCCGGCTTGCTCGATGATTACCTGAACACCATCGAGCAGGCGTTCTGGGGGGCGGACATCGTGCCGGTTACCGTCCGCACGCAACAAGTCTGGTGGCTGGCGCTGTTCGGCGCCACGTTGCAAAGCTATGCGTTGTACATGCTCGCCCTGGTCCATCTCGGCGATCGCCTGAAAACTGCCATGCCCTGGGGCTGGCTGATCGTCGGCATTCTGCTCTGGGCGCCTCAGGACATGCTGGTTTCCGCCCAGGCGCGGGTCTGGTCGCACCTGTGGTTCGACAGCTTTGCATTACTTGTTTTACTGCCGCCGCTGTTCTGGCTTTATCGCCATGACCGCCGCCCCGCCCTGACCGACAACACATCGAGTGAGTCGAACCATGCCTGAMPVPPSPLRKALVVWLYAAALMHLLAGLTLTWAGHSGLLDDYLNTIEQAFWGADIVPVTVRTQQVWWLALFGATLQSYALYMLALVHLGDRLKTAMPWGWLIVGILLWAPQDMLVSAQARVWSHLWFDSFALLVLLPPLFWLYRHDRRPALTDNTSSESNHAPGPT0014730_187DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCELOW_TEMPERATURE-RELATED_ENZYMES,PGPT0014730-yfhF-K07071NANA
D1-35_030981443hypothetical proteinATGCCTGATTTTTCGTCGCTGGACTGGGCCATTGCCCTGCTGATTGCCCAGGCCATCCTCGGTGCGCTGGATACCCTGTATCACCATGAACTCACCGTTGCCTTGCCCTATCGCCACAGTGCGCGGCTGGAACTCTCCATCCACTCCCTGCGCTCGTGTTTCTACGGGATCCTGTTCCTGGGTATCGCGCATCTGGCCTTCGAAGGGACATGGGCGATCGTCATCGCGCTGCTGTTCGCCCTGGAGATCGGCCTGACGCTGTGGGATTTCGTGGTCGAGGACCGTAGCCGCAAACTGCCGCCCATCGAGCGCATCATGCACACCGTGCTGGCGGTCAACGGTGGGGCCTTCTTCGCGCTGTATGGCGTGCAACTGGCGCAGTGGGCGAGCCTGCCGACCGGCCTGAGCACGATCGACCTGGGCTGGCGCGGCTGGCTGCTGACGTTGTTTGCCATCGGCGTCACCGCCTCGGGCATTCGCGACGGCTTGGCCGCCTTGCGCATGCAGCGCCAGGGCAAGCCGGGCAACCCGTTTGCCGGTGGTGCCTACAAGCGCGTGCTGGTCACGGGAGGCACCGGGTTTATCGGCGAGACCCTGGTCAATCAGTTGCTCGATGCCGGGCACACGGTCACCGTGTTGGCCCGCGATCCATTGAGGGCGGCCTATCTGTTTGACGGCCGCGCCCGCTGCGTGCGTTCGCTGGGCAAGCTGGGCCATGACGAAACCTTCGATGTACTGATCAACCTGGCGGGCGCGCCGGTGGCCGGGCCGCGCTGGAGCCCGAGGCGCCAGGCGCAACTCATCGCCAGCCGGGTCGATACCACCGAAGCCTTGATGACATGGTTGAAGAACGCCCGGCACAAACCGGCGTTGTGGATTCAAGCGTCGGCCATCGGTTTTTATGGCGTGCGCGACGCCAGCGAAAGCCTCGATGAAAGCGCCAGCCAGGGCGATGGTTTCATGGCCGAACTCTGTTCGCGTTGGGAAGCCTCTGCGCGGCCCGCAACCGAGTTGGGCGTGCGACAGGTGGTGATGCGCCTGGGCGTGGTGTTCGGTCCGGGCGGTGCGTTGCTGCCGTTGCTGATTCCGTTTCGCTTGGGGTTCGGTGGGCGGATGGGCGATGGTCGGCAAATCATGAGTTGGGTGCACCGCGACGATGTGATCCAGGTGATCGCCCGTGCCTTCGAGGACGAAAGCCTGAGCGGCACCTACAACCTGGTAGCGCCGGAAACGGTCAGTCAGGCGCTGTTCGCCGAACGTGTCGGCAAGGCGCTCAAACGCCCTGTGTGGTTCCACATCCCGGCCGCGCCGGTGCGCGCCCTGGCTGGCGAGATGGCCCAGCTGTTTTTTGACGGCCAGCGCGTGGTGCCCGATCGTCTCGTTCAGGCCGGTTATACGTTCCGTTACCCCACACTTGACGCTGCCCTGCGCGACCTGGCCTGAMPDFSSLDWAIALLIAQAILGALDTLYHHELTVALPYRHSARLELSIHSLRSCFYGILFLGIAHLAFEGTWAIVIALLFALEIGLTLWDFVVEDRSRKLPPIERIMHTVLAVNGGAFFALYGVQLAQWASLPTGLSTIDLGWRGWLLTLFAIGVTASGIRDGLAALRMQRQGKPGNPFAGGAYKRVLVTGGTGFIGETLVNQLLDAGHTVTVLARDPLRAAYLFDGRARCVRSLGKLGHDETFDVLINLAGAPVAGPRWSPRRQAQLIASRVDTTEALMTWLKNARHKPALWIQASAIGFYGVRDASESLDESASQGDGFMAELCSRWEASARPATELGVRQVVMRLGVVFGPGGALLPLLIPFRLGFGGRMGDGRQIMSWVHRDDVIQVIARAFEDESLSGTYNLVAPETVSQALFAERVGKALKRPVWFHIPAAPVRALAGEMAQLFFDGQRVVPDRLVQAGYTFRYPTLDAALRDLAPGPT0014730_109DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCELOW_TEMPERATURE-RELATED_ENZYMES,PGPT0014730-yfhF-K07071NANA
D1-35_030992436hypothetical proteinATGAGCAAGCCGAGGATGTACCTGCTGGCCGGCAACGGTAGCGCTGCCGATTGGTGGGACGACGCGTTGCCGCACTTCAAACGCTACGACGTGGTGCCGCTGGAGCTGCCCGGTTTCGGCGACAACCCTCAGGCTCCTTGTGAAGACCTGGCGGCCTACGCACAGGCGTTGCTCGCGGCAACGGTAAAGGGCAGCGCGATCATGGCGGTCGGGGTGAACGCCTTGCTGGTGCTGCACGCCTTGCAACGCCGGCCCGGACACTTTTGCCGCAGCGTTTTGCTGGCGCCGGTGGGTGCGTTCTTGTGGCAGCGACGATTGCCGGCGCTGATGTCGCCGCTGCCGATTCGCAAGACCATCCACTGGCTGCTGGCGAACAAGCCAAGGCTGTTCGCCCACAAGTTCTCCCGCCAGCAATGGACGCCCGCGCAGTACCAGCGCATGGGCGCCGGCTATGCCCGCTGCCGGGCCTTTGTGCCGCATTGGGATCTGGTGCGCGCCGACACCGCGTTGCCGTTGCTGGAGTGGATCAGCGACCCGGTCGAACTGGTATGGGGCGATCAGGACAAGATGCTCGGCATCGCCCAGGCAGCGGCATGGTCAGCCATTCTCGCCCGCGCCGACTTGACCATCAGCTTGAAGCCCGGTTGGGGCCACTACCCGTGGATCGACTCACCAGCTGAATTCGCCGCCTGGCTGGAGTCCGGCGAGCGCGGGTTCGTCGCGCACACCAAAGGCGGCCGCTTGCGCCTGGCGGAGCTGGCCGGGCAGCCGGTGCCAGCGGCACTGTCACTCAACGATTGTCATGATCCACGCTTGCCAGGATTTTTGAGCAGCCAGCCGGATGCTGCCTGGGCCGTGCGTTCCTCCAGTTACGGGGAGGATCAGGCCGATGCGGCCAATGCGGGCTTGAGCACCACCTACTTGCGCGAGCCGACACACAATGTGCCGACACGCATTGCCGAGCTGAGCGCGGCGGGTGTCGAGGAAGTGGTGGTGCAGCGTTTCATCACGCCACGACTGTCCGGGATCGCCTTTGTGCGTCACCTTTCGGTTGAGCTGGAATGGGTCGAAGGCCATCTGGAGCCGTTGGCCGATGGCAAGGTGAGCCCTGAGCGAGCGATCATTTCCCGTCTCGGCGAGTCTTGGAACAGCGGCACATTCACGCCGGCCCATGGCCTGACCGCCGAAGCGCTGTGGCAGTTTCTCCAAGGCGTGCTGCGGGTCTTCCACTACGTGCCCGGCGATGTTGAATGGGCCTGGGACGGCACGCAACTCTGGTTGCTGCAATACCGGCCGATCAGCGACTACGGCTGGCGCCGTCACCTGACCGCCGCCAACATCGCCGAGATCCTGCCGCCACAACCCAGCGTTCTGGTGGAGTACGCCCAGCGTCGCGCGGCGGCAAGCATTCCGGCGATCATGGCGCGTTGGGATTCACGGATTTTGCAGGACAACGAGCCTTTCACCGCGGTGTTTGGCGGCGCCTCGTATATCAACAACGACCTGTTTCTCGCCCGGCTGGCCGACTGGGGCGTCAGCGCCAGCAGCTATGCCGGCGAGGTCGGTGGGGCAACGCCGCACTTGCCTTGGCGGCCGCTGCGCCTGCTGCGGTCGCTGCCGTTGTTTTTGCGCATGCAGCGTATCGCTCGCGGGCATCTGCTTACCTTGGAAAACGGTTTGCGCCGTTTCGACCGAGAGCTGCACGAACTGACCGGACAAGGCGCTGGCGGCCAGCAACTGGCCGACTGGTTTACTCGCTTCTACGTGTTCGTGGTGCAGGGCAACCTGTGCATCGCCAGCGCCTTGGCCAGCAGTGGCGGCGACTGGCTGGGACGACCGCCGACCGCCTATGACAATCTCGAACACAGCCCTCATCGCTTGCCTTGGGAAACCGATCCGGCAACGCCACGTCCGGCGCCAACGGAGCTGGCATTGCAACCCTTCCCGCAATGGCCGTTGGCGATTCGCCTGGCCCATGGCGCCGGCCTGCCAGGGCTGCGCGGTTACTATCTGCAGGTGCGCGAATGGTATCGCGACAACCTGATGCGGATCTTTTTCCGCCTGCACCACGCCATGCCGAGCGCCGACCGCGAGCATTGGTTCGCGCCGCACCGGGACATCCGCAGCCGCGACGGCAGCTTCTGGCAGGACGGCCGCGAAGGCACAGAGCAGGCGAGCGGATTCCTGATCTACCCGGGCCAGGCCCAGGGCATCCTCGGCGAGGACATCCTGCTGGAAGACACCCTGGACCCAGGCCGCCATGCTCACTATCAAGGCGCCCGCGCCGTGATCGCACGCATGGGCGGCCGCCTGTCCCATGGCTCGACGTTGTTGCGTGAACTGCGCAAACCTTCGGCGGTACTGCCTCAAGTAGACGTGGGATGGTTGGGGCGTGAGGTGGTGTATTGCGATGGGGAGTTGAGGCTGGTGGAGTAGMSKPRMYLLAGNGSAADWWDDALPHFKRYDVVPLELPGFGDNPQAPCEDLAAYAQALLAATVKGSAIMAVGVNALLVLHALQRRPGHFCRSVLLAPVGAFLWQRRLPALMSPLPIRKTIHWLLANKPRLFAHKFSRQQWTPAQYQRMGAGYARCRAFVPHWDLVRADTALPLLEWISDPVELVWGDQDKMLGIAQAAAWSAILARADLTISLKPGWGHYPWIDSPAEFAAWLESGERGFVAHTKGGRLRLAELAGQPVPAALSLNDCHDPRLPGFLSSQPDAAWAVRSSSYGEDQADAANAGLSTTYLREPTHNVPTRIAELSAAGVEEVVVQRFITPRLSGIAFVRHLSVELEWVEGHLEPLADGKVSPERAIISRLGESWNSGTFTPAHGLTAEALWQFLQGVLRVFHYVPGDVEWAWDGTQLWLLQYRPISDYGWRRHLTAANIAEILPPQPSVLVEYAQRRAAASIPAIMARWDSRILQDNEPFTAVFGGASYINNDLFLARLADWGVSASSYAGEVGGATPHLPWRPLRLLRSLPLFLRMQRIARGHLLTLENGLRRFDRELHELTGQGAGGQQLADWFTRFYVFVVQGNLCIASALASSGGDWLGRPPTAYDNLEHSPHRLPWETDPATPRPAPTELALQPFPQWPLAIRLAHGAGLPGLRGYYLQVREWYRDNLMRIFFRLHHAMPSADREHWFAPHRDIRSRDGSFWQDGREGTEQASGFLIYPGQAQGILGEDILLEDTLDPGRHAHYQGARAVIARMGGRLSHGSTLLRELRKPSAVLPQVDVGWLGREVVYCDGELRLVENANANANANA
D1-35_03100246hypothetical proteinATGGAATCCCCAGTCCATACGCTGCCCGCGTTATTCAAACAACTCGGTCTGCCCGACGACGCCGTCAGCATCGATCAGTTCATCGCCAGCCACTCGCCGCTCAAGCCCGAGCTGCACCTGTCCGATGCGTTCTTCTGGAGCGAGGGCCAGCGACAGTTGCTGCGCGTCGAAATCCTTGAAGATGCCGACTGGGCGTTGGTGGTAGATCAACTCGACGTGCTGTTGCGCAAGGGACGGAGCGAGTGAMESPVHTLPALFKQLGLPDDAVSIDQFIASHSPLKPELHLSDAFFWSEGQRQLLRVEILEDADWALVVDQLDVLLRKGRSENANANANANA
D1-35_03101582hypothetical proteinATGCGCAACGAATCGATTCGCTACCTGATTGTGCCGGGCTGGCAAGGATCGCCGGAAAATCATTGGCAAACCCACTGGCAGAACAGTCTGCCCAACAGTGCCCGGGTCGAGCAGGCTGACTGGCTGACGCCACGGCGTGAAGATTGGGTCGCCGCGCTGGCCGAAGCCATCGCCAGCGACAGCACGCCAGTGATCCTGATCGCCCATAGCCTGGGTTGCATCACCGTGGCCCATTGGGCCGCCACCGCGCCGGTGCCATTCCTGCGGCAGGTGCGTGGCGCGTTGCTGGTGGCGCCGGCGGATGTCGAGCGGCCCGCTTGTGCCCCGGCGCTACGCAACTTCGCGCCGATTCCCACGGACCTGTTGCCGTTTCCCAGCCAAGTGGTCAGTTCCGACAACGACGCGGCGGTCAGTGCCGCGCGCGCCATGGAGCTGGCGCGGAGTTGGGGGGCCGAGGCCGGGATCCTGGCCGGGGCGGGGCACATCAATGTGAAGTCCGGCCACCAGCGCTGGGAGCAGGGTTTCGCTTATCTCTATCGTTTGCAAAACCGCATGGAGCATCACGCCCTGCGTCGCGCCTGAMRNESIRYLIVPGWQGSPENHWQTHWQNSLPNSARVEQADWLTPRREDWVAALAEAIASDSTPVILIAHSLGCITVAHWAATAPVPFLRQVRGALLVAPADVERPACAPALRNFAPIPTDLLPFPSQVVSSDNDAAVSAARAMELARSWGAEAGILAGAGHINVKSGHQRWEQGFAYLYRLQNRMEHHALRRANANANANANA
D1-35_03102936sfnR_1COG1221Sigma54-dependent transcriptional activator SfnRATGAGCCTGCATGAAACCTTCGGTCAGCCCTTGCTGACCTTTCCCGACTCGGAAAAAAGCCCCCTGAGCATCCGTGCCAAGGCACTGGTGTTCGTCGACCCGCGTTCGCGGCAGTTGCGCCAGGAATTGGAACAACTGGCGCCACGGGCGATTTCGGTGCTGATTCGCGGCGAAACCGGCACCGGCAAGGAGCTGCTGGCCCGGCATATCCATCGCGAGAGCAATCGCGGTGGGCTGTTTGTTTCGGTCAATTGCGGCGCTATCAGCCCGACCTACGCCGACGCCGAATTGTTCGGTTATTCCGCCGGCAGTTATAGCGGTTCGGCCAGCAGTCGGGCCGGGTGGTTCGGCTCGGCCAACGGCGGCACGCTCTACCTGGATGAGATCGGAGACCTGCCGCTGCCGATCCAGATCAAGTTGCTGGCGGCGCTGGAAAACCATGAGGTCACGCGTGTCGGCGCCCAACAACCGAGCCCGGTGGACGTGCGCCTGGTGGCGGCCACCAGCATTGATCTGGCGCAAGCGGTGGACGCCGGAAAATTTCATGACCGGCTTTATCACTATCTGAGCGAGGGGCAGCTCGAGTTACCCGCCTTGCGCGAAAGGGTGGGCGATATCCTTTCCCTGGCCGAATACTTCCTGGGCATCTACAGCCAGCGCCTTGGCCTGGCCGTGCCGCTGATCAGTGCAGCGGCGCAACGGGAGCTTGAACGCCACAGCTGGCCGGGCAACACCCGCGAGTTGGAGAACGTTATTCATTTTGCATTGCTGGTGAGTGCCGGCGATGAGATTTTGCCGGAGCATTTGAATTTGCCGTCCCAGCTTTCAGCCCTGGAACTGGTCGAACGGCAGGTGGAGCAGGTTATTGCACAGGGCTCGCAAGCTGAGCGCACCGCCCTCAAGGCGCTGCTCGATCGACTGGTCCAAACGCTATAGMSLHETFGQPLLTFPDSEKSPLSIRAKALVFVDPRSRQLRQELEQLAPRAISVLIRGETGTGKELLARHIHRESNRGGLFVSVNCGAISPTYADAELFGYSAGSYSGSASSRAGWFGSANGGTLYLDEIGDLPLPIQIKLLAALENHEVTRVGAQQPSPVDVRLVAATSIDLAQAVDAGKFHDRLYHYLSEGQLELPALRERVGDILSLAEYFLGIYSQRLGLAVPLISAAAQRELERHSWPGNTRELENVIHFALLVSAGDEILPEHLNLPSQLSALELVERQVEQVIAQGSQAERTALKALLDRLVQTLPGPT0030455_23DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_REGULATION,PGPT0030455-sfa3-K11917NANA
D1-35_03103783metQ_2COG1464Methionine-binding lipoprotein MetQATGAAAAAGGTTCTGTTGTTCACCGCATTGGCGGCAGCCCTGACCTCGGGCCTGGCCCAGGCGGCGGAAAAGCTGGTCGTGGCTGCCACACCGGTACCCCACGCTGAAATCCTCGAGCTGATCAAGCCGGCCCTGGCCCAAGAAGGCGTGGACCTGGAAATCAAGGTGTTCACCGACTACGTCCAACCCAACGTACAGGTTGACCAGAAGCGCCTTGACGCCAACTACTTCCAGACCCTGCCTTACCTCAAGAGCTTCAACGAAGGCAAAGGCACAAACCTGGTGACGGTGATCGGCGTCCACGTCGAACCGTTTGGCGGCTACTCGAAAAAAGTAAAAAGCCTGGCTGAGCTGAAAGACGGCGCGACCATCGCCATCCCTAACGAAGGCAGTAACAGCGGTCGTGCCCTGATCCTGTTGCAGAAAGCTGGCCTGATCAAACTCAAGGACCCGAAAAACGCCTTGGCAACGCCGAAAGACATCGCCGAGAACCCGAAGAACTTCAAGTTCAAGGAACTGGAATCGGCCATGCTGCCGCGTGTGCTGGATCAGGTCGACCTGGACATGATCAACACCAACTACGCCCTGGAAGCAGGTCTAAACCCGGCCAAGGATGCCTTGGTGATCGAGGGTTCGGATTCGCCTTACGTAAACTTCCTCGTGGCCCGTCCGGACAACAAGGACAGCCCGGCCATCCAGAAACTGGCCAAGGCGCTGACCAGCCCGGAAGTGAAGGCGTTCATCGAGAAGAAATACAGCGGCGCGGTGCTGCCGGCGTTCTGAMKKVLLFTALAAALTSGLAQAAEKLVVAATPVPHAEILELIKPALAQEGVDLEIKVFTDYVQPNVQVDQKRLDANYFQTLPYLKSFNEGKGTNLVTVIGVHVEPFGGYSKKVKSLAELKDGATIAIPNEGSNSGRALILLQKAGLIKLKDPKNALATPKDIAENPKNFKFKELESAMLPRVLDQVDLDMINTNYALEAGLNPAKDALVIEGSDSPYVNFLVARPDNKDSPAIQKLAKALTSPEVKAFIEKKYSGAVLPAFPGPT0020510_5340DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020510-metQ-K02073NANA
D1-35_03104666glnP_3COG0765putative glutamine ABC transporter permease protein GlnPATGAACTTCGATTACGCTTTTATCCTCAGCACCCTCCCGGCGTTTCTCAAGGCCGTGGGCGTGACGCTGCAGGTGGGCCTTGTCGCCATCGTTACCTCGCTGCTGGTGGCGCTGTTGAACGCGACGATTCTGGTGTCGCGCACGCCTTACCTGCAACGCCTGGTCGGCCTGTATGTGGAGTTGGCGCGCAATACGCCGCTGCTGATCCAGTTGTTCTTCGTCTATTTCGCGTTGCCGGCGCTGGGTATCAAGATTTCGGGGTTTGCCGCAGCGATCATCACCATGACGTTCCTGGGCGGTGCCTACCTCACGGAAGTGCTGCGTGCGGGCGTGGACGCGGTGCCGCAGGCGCAATTGGAATCCGGTCGTTCCATTGGTCTGTCCCACGGGCAATTGCTGCGCTACGTGATTCTGCCGCAGGCCGGGATTCTCAGCCTGCCGTCGCTGTTCGCCAACTTCATTTTCCTGCTGAAGGAGACCACCGTGGTCTCGGCCGTGGCGGTGCCGGAGATTCTCTACACCACCAAAAGCTACATCGCGCTCTACTACAAGACTTACGAAATGCTCGCCGTGCTGACGTTGATCTGCGTGCTGTTGTTCTTGCCGCTGTCGCTGTTGCTCAGCCGTCTGGAAAGGAGGCTCCAGCATGGCCAGTTCGGGTCTTGAMNFDYAFILSTLPAFLKAVGVTLQVGLVAIVTSLLVALLNATILVSRTPYLQRLVGLYVELARNTPLLIQLFFVYFALPALGIKISGFAAAIITMTFLGGAYLTEVLRAGVDAVPQAQLESGRSIGLSHGQLLRYVILPQAGILSLPSLFANFIFLLKETTVVSAVAVPEILYTTKSYIALYYKTYEMLAVLTLICVLLFLPLSLLLSRLERRLQHGQFGSPGPT0020795_8373DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
D1-35_03105660glnP_4COG0765Glutamine transport system permease protein GlnPATGGCCAGTTCGGGTCTTGAGTTGTTGTGGGTGTCGTTGCCGCAACTGGGCAAAGGCGCCGTGCAGACCTTGTCGATTTCTTTCCTGGGCATCGCCTTCAGCACCGTCGGCGGCTTGCTTTACGGCGTGTTGCGTACGCTGGGCGTGAAGTGGCTGGACGCTGTTCTGCGGATCTACCTGGAGCTGTTCCGGGCGATCCCGGTGCTGGTCTGGTTGTACCTGCTGTTTTTCGGGCTGCCGATTTTTTTCGGCCTGAGTATTCCGAGCTTCTGGTGCGCGGTCCTGGTGTTGTCGCTGTGGGGTTCAAGCGAGGTCGGCGAGGTGGTGCGCGGCGCGCTGCATTCATTGCCGCGCGGCCAGCGTGAGGCGGGATTGTCGATTGGCCTGAACGGCGCGCAACTCTACGGTTACGTGCTGTTGCCGCAAGCCCTGAGGCGCATGACGCCGCCGACCATCAACGTCTACACGCGCATCATCAAGACCAGTTCCCTGGCGGTGCTGATCGGCGTGGTGGACGTGATCAAGGTCGGCCAGCAGATCATCGAGCGGACCTACGAATCGGTGCTGATCTACGGCGCATTGTTCCTGTTTTTCTTTTTCATCTGCTACCCGCTCTCGGCCGCCTCCCGCGTGCTGGAGCGGCGCTGGACGCAAGCATGAMASSGLELLWVSLPQLGKGAVQTLSISFLGIAFSTVGGLLYGVLRTLGVKWLDAVLRIYLELFRAIPVLVWLYLLFFGLPIFFGLSIPSFWCAVLVLSLWGSSEVGEVVRGALHSLPRGQREAGLSIGLNGAQLYGYVLLPQALRRMTPPTINVYTRIIKTSSLAVLIGVVDVIKVGQQIIERTYESVLIYGALFLFFFFICYPLSAASRVLERRWTQAPGPT0020795_9320DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
D1-35_03106783glnQ_6COG1126Glutamine transport ATP-binding protein GlnQATGAGCGCATTGATCGAGTTCAAGGGTTTCAACAAGTTTTTCGGCGAACAGCAAGTACTGGACGGCATCGACCTGCAAGTGCAGGCCGGGGAAGTGATCGTCATTCTCGGCCCCAGCGGTTGCGGCAAAAGTACCCTGTTGCGGTGTCTCAACGGGCTGGAAGTGGCCCACAGCGGCAGCCTTGAATTGTCTGGTCGTGAGTTGCTGGACAAGGGCACCGATTGGCGCGAGATACGGCAACGGATCGGCATGGTGTTCCAGAGCTACCATCTGTTCCCGCACATGAGCGTGCTCGATAACCTGCTGCTCGGCCCTGTCAAAGTGCAAAAGCGTGACCGCGGTGAAGCGCGCGCCCAGGCCGAAGCCTTGTTGGCCCGTGTGGGCCTGTTGGACAAACGCGATGCTTTCCCACGCCAGCTCTCCGGCGGTCAGCAACAACGCATCGCCATCGTTCGCTCGCTGTGCATGAACCCTGAGGTCATGCTGTTCGATGAAGTTACCGCCGCCCTCGACCCGGAAATGGTCAAGGAAGTGCTGGAAGTCATCCAGGGCCTGGCCCGCGAAGGCATGACGCTATTGATCGTCACCCACGAAATGGCCTTCGCCCGCGCCGTGGCTGACCGCATCGTGTTCATGGATGCCGGGCGGATCCTTGAACAGAACCCTCCCGAGATTTTCTTTACGAACCCGCAAACCGCACGAGCGCAGCAGTTCCTGGAGAAGTTCTCCTACGTCGCCGCACTACCCCAATCGACTCTAACAAAGGAACTGCAACTGTCATGAMSALIEFKGFNKFFGEQQVLDGIDLQVQAGEVIVILGPSGCGKSTLLRCLNGLEVAHSGSLELSGRELLDKGTDWREIRQRIGMVFQSYHLFPHMSVLDNLLLGPVKVQKRDRGEARAQAEALLARVGLLDKRDAFPRQLSGGQQQRIAIVRSLCMNPEVMLFDEVTAALDPEMVKEVLEVIQGLAREGMTLLIVTHEMAFARAVADRIVFMDAGRILEQNPPEIFFTNPQTARAQQFLEKFSYVAALPQSTLTKELQLSPGPT0020790_1621DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020790-ABC_PA_A-K02028NANA
D1-35_03107882glnHCOG0834ABC transporter glutamine-binding protein GlnHATGAAAACTGCCAAGTCGTCTCTGCTGCTATTGCCGCTGCTCGCTGGCCTCTTGCTCGCCGGCTGCAACAAAACCGAAGAGCCACCCAAGCCCAATGCCGCCAGCCAAGGCACCGCACCGGCCAGCTATCTGGAAAAGATCAAGGCGCGGGACAAGCTGATCGTCGGGGTCTTCACCGATAAGCCGCCGTTTGGCTTCGTCGATGAGGCGGGGCGTTATGTCGGCTTCGATACGGACATCGGCCGTCGATTTGCCAAGGACTTGCTCGGCGATGAGAACAAGGTCGAATTCGTTGCAGTCGAGCCGGCGAGCCGTATTCCGTTCCTGCAGAGTGACAAAGTCGACCTGATCCTGGCCAACATGACCGTGACCCCGGAGCGCAAGGAAGCGGTGGATTTCACCAATCCGAACCTGAAAGTGGCGGTGCAGGCGCTGGTGCCGCAAGCCAGCGAAGTGAAAACTCTAGATGACCTGGCGACCCGCACCACCATCGTCACCACCGGCACCACGGCGGATATCTGGCTGACCAGTAATCACCCGGACTGGAAGCTGCTCAAGTTCGAGAAAAACTCCGAATCCTTGCAGGCACTTGCCAACGGTCGAGGCGATGCGTATGCCCAGGACAATCTGGTGCTGTTCAGCTGGGCCAAGCAAAACCCCGGCTATCGCGTGCTGGAGCAGAAACTGGGTGCCGAAGCACCGATTGCCCCTGCGGTGAAGAAGGGCAATATCGAGCTGCGCGACTGGGTCAATGCGGAACTGGCGAAGCTGGGTGAAGAGAAATATTTGCTCAAGCTGTACGACCAGTACGTGCGCAAGGAACTGAGCGATGACACCAAACCTGAAAGCGTGATTGTCGAGGGTGGCAAGTGGCAGGGGTGAMKTAKSSLLLLPLLAGLLLAGCNKTEEPPKPNAASQGTAPASYLEKIKARDKLIVGVFTDKPPFGFVDEAGRYVGFDTDIGRRFAKDLLGDENKVEFVAVEPASRIPFLQSDKVDLILANMTVTPERKEAVDFTNPNLKVAVQALVPQASEVKTLDDLATRTTIVTTGTTADIWLTSNHPDWKLLKFEKNSESLQALANGRGDAYAQDNLVLFSWAKQNPGYRVLEQKLGAEAPIAPAVKKGNIELRDWVNAELAKLGEEKYLLKLYDQYVRKELSDDTKPESVIVEGGKWQGPGPT0020800_3680DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-35_031081161hypothetical proteinATGCTCACGACCCTGGCGGTGGCCAACTACCGGTCCATCAACAAACTGGTCATCCCGCTGGGCAGGCTGAACCTGATCACCGGGCCCAACGGCAGTGGCAAATCGAATCTGTATCGCGCCCTGCGCCTGCTGGCGGAGACGGCGCAGGGTGGCGTGGTCAATGCTCTGGCCCGTGAAGGTGGGCTGGGCTCGACCTTCTGGGCCGGCCCGGAAGAAATAAGCCGTCGCATGCGTAACGGCGAGGTACCTGTGCAGGGCATCGTGCGTCAGGGCAGCATGCGCCTGCGCCTCGGATTTGCCGGGGAAAATTTCAGCTATTCGATCGCCCTGGGCCTGCCGGAACCCAGTCGTTCGGCGTTTTCATTGGACCCTGAAATCAAGCGCGAATGCATCTGGGCCGGACCGGTGTACAGGCCTGCCAGCTTGCTGGTGGACCGCAACGGGCCAATGATCCGCGCCCGTGAAAGCCGTTCGTGGGACGTATTGGCCCAACACACCCCGACCTTCGATAGCCTGTTCGATCAGGTCGGCAGCCTGCGCGCTTCGCCGGAGGTCTTGCAGATGCGCGAGTTCATCCGTCGCTGGCGCTTCTACGACCACTTTCGCAGCGATGCCGACGCCCCGGTGCGCCAGCCGCAACTGGGCACTCGCACCCCGGTGTTGCACCACGACGGACGCGACCTGGCTGCAGCGCTGCAAACGATTCTGGAGATAGGCGACTTCGAAGCCCTGCACGCCGCCATTGGCGATGCGTTTCCTGGCGCTCAACTGCACATCGACAAACTGCAGGGCGGGCGTTTCGCCATCGCCTTCCAGCAACACGGCCTGCTGCGACCGTTGTCGGCCGCCGAGCTGTCCGATGGAACCCTGCGCTACCTGCTGCTGGTAGCCGCCCTGCTCACGCCGCGCCCGCCCTCGCTGATGGTGCTCAACGAACCGGAAACCAGCCTGCACCCGGATCTGTTGCCGGCCTTGGCACGCTTGATCATCCGCGCTTCGGCCAACTGCCAGGTCTGGGTCGTGTCCCATGCCACACGCCTGATCGCCGCGCTGGAGCAGGATGAAAACTGCAATTGCATCGTGCTGGAAAAAGACTTGGGACAGACCGCAATCGTCGGACAGCGGATGCTGGATGAGCCGGCGTGGCATTGGCCTGAATAAMLTTLAVANYRSINKLVIPLGRLNLITGPNGSGKSNLYRALRLLAETAQGGVVNALAREGGLGSTFWAGPEEISRRMRNGEVPVQGIVRQGSMRLRLGFAGENFSYSIALGLPEPSRSAFSLDPEIKRECIWAGPVYRPASLLVDRNGPMIRARESRSWDVLAQHTPTFDSLFDQVGSLRASPEVLQMREFIRRWRFYDHFRSDADAPVRQPQLGTRTPVLHHDGRDLAAALQTILEIGDFEALHAAIGDAFPGAQLHIDKLQGGRFAIAFQQHGLLRPLSAAELSDGTLRYLLLVAALLTPRPPSLMVLNEPETSLHPDLLPALARLIIRASANCQVWVVSHATRLIAALEQDENCNCIVLEKDLGQTAIVGQRMLDEPAWHWPENANANANANA
D1-35_031091104mdtEMultidrug resistance protein MdtEATGGCTGGTCCTGGAATCAAATTGATTGTTGGCTTGGGCGTGTGTGCGGTGTTGGCGGGGTGCGGTGACAAGAAGCCCGAGGAAAAAGCCTTGCCACGGGTTTTCGTGCAGCAGGCCATACCTTCCGAATACGCCGCCTCGGTGACGCTTACCGGCGATGTCCAGGCTCGCGTGCAGGCTGACCTGTCGTTTCGTGTCGGCGGCAAGATCATCGAGCGCAAAGTCGACGTCGGCGACCGAGTCTCGGCCCGGCAAGTGCTGGCCCGGCTCGATCCGCGGGACCTGCAGACCAACGTCGACTCCGCCGAGGCCCAGGTGGCCGCCGAACAGGCGCGGGTCAAGCAGAGTGCGGCGGCATTTGTGCGCCAGCAGAAGCTCTTGCCCAAGGGCTATACCAGCCAGAGCGAATACGACGCGGCCCAGGCGCAACTGCGCAGCAGCCAGAGCGCGCTGACGGCGGCCCAGGCACAACTGGCCAATGCCCGCGAACAGCTGAGCTACACCGCACTGATCGCCGAGGCGCCGGGCATCATCACGGCGCGCCAGGCCGAAGTGGGCCAAGTGGTCCAGGCCACGGAGCCGATCTTCAGCCTGGCCCGGGACGGTGAGCGCGACGCGGTGTTCAACATCTACGAGTCGCTGCTGAGCGAACCGCCATCGGCGCCGGACATTGTCATCAGCCTGCTCGACAACCCTGCCATCAAAACCACCGGTACGGTGCGCGAGATCACCCCGGCGGTGTCCGCCGAGACCGGCACCGTGCAGGTCAAGGTCACGCTCAACGACTTGCCCGAAGGCATGCGCCTGGGTTCGGTGGTCAGCGCCACCGCCAAATCCGCAGGAAAAACCGCCGTGGAACTGCCCTGGTCGGCACTGACCAAGAATCTCAGTGATCCGGCCGTGTGGCTGGTGGACGGCGAGGGCAAGGCGCAATTGCACAATGTCACCGTCAGCCGCTACCTGACCGGCAAGGTCATCGTCAGCGACGGGCTCAAGGGCGGCGAAAAAGTCATCATTGCCGGCGGGCAGTTGCTTCATCCGGGCATGCGCGTCGAGATCGCCGAAAACAACTATGAGAAAAACCCGCCAGGAGCCCAGCCATGAMAGPGIKLIVGLGVCAVLAGCGDKKPEEKALPRVFVQQAIPSEYAASVTLTGDVQARVQADLSFRVGGKIIERKVDVGDRVSARQVLARLDPRDLQTNVDSAEAQVAAEQARVKQSAAAFVRQQKLLPKGYTSQSEYDAAQAQLRSSQSALTAAQAQLANAREQLSYTALIAEAPGIITARQAEVGQVVQATEPIFSLARDGERDAVFNIYESLLSEPPSAPDIVISLLDNPAIKTTGTVREITPAVSAETGTVQVKVTLNDLPEGMRLGSVVSATAKSAGKTAVELPWSALTKNLSDPAVWLVDGEGKAQLHNVTVSRYLTGKVIVSDGLKGGEKVIIAGGQLLHPGMRVEIAENNYEKNPPGAQPPGPT0029130_140DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029130-triA-K21136NANA
D1-35_031101065mdtA_3Multidrug resistance protein MdtAATGAAGCGCCTGTGGATGGTCGCGGCCGGCCTGCTGCTGGCCGCCTGCTCGAAAGAAGAAGCACCGCCGGAGCCGGTGCGGCCGGTGTTGTCCATTGAGGTCCGGGCCTTGGACCAGCAGGCCCTGGGACGCTTCGCCGGGAATATCCAGGCGCGCTACGAAACCAACGTGGGTTTTCGTGTGCCCGGGCGCATCGCCAGTCGCAACGTCGATGTCGGCGCGGAAGTGAAGAAGGGCGACCTGCTCGCAACCCTCGACCCCACCGACCAGCAGAACCAGTTGCGCGCCGCTCAGGGCGACCTGGCGCGGATCGAGGCGCAGTACATCAATGCCCAGGCCAATGCCCGTCGCCAGCAGCAATTATTCGACCGTGGCGTCGGCGCCCAGGCGCAACTGGACATCGCCCAGACCGACCTGAAGACCACCGCTGCCTCCCTGGAACAGGCCAAGGCCACGGTGGAACAGGCCCGCGACCAGCTCAACTACAGCGAACTGCGTACCGACCATGACGCGGTCGTCACCGCCTGGACGGCCGAGGCGGGGCAGGTGGTGACCGCCGGCCAGCAAGTAGTGACGCTGGCCCGCCCGGACGTCAAGGAAGCGGTGATCGACTTGCCCGCCGGGCTGGCCGAGCGCCTGCCCGAGGATGTGGTGTTCGAGGTCGCCGCGCAGCTCGACCCGGCGACCCACACCACGGCCATCGTGCGCGAGATCGAGCCTCAGGCGCAAAGCGCCACCCGTACCCGCCGCGCGCGCCTGACCCTGACCGATACACCGCCGGGCTTTCGCCTGGGCACCGCCATCAGCGTGACCCTGAGCTCGGCCATCGAACCGCGCATCGAGCTGCCGCTCAGCGCGTTGCAGGAAGTCGACGGCAAGGCGCGAATCTGGCTGATCGACCCGCAGAGCCAGACAGTCTCGCCACGAGAAGTACAGATTATCGAGCGATCGGCCGGATCGGTCCTGGTCGCCAACGGCATCAAGCCTGGCGACCGCGTGGTCAGCGCCGGGGTGAACAGTCTCCAGCCGGGGCAAAAAGTGAAACTCGACGAGGACGCACGATGAMKRLWMVAAGLLLAACSKEEAPPEPVRPVLSIEVRALDQQALGRFAGNIQARYETNVGFRVPGRIASRNVDVGAEVKKGDLLATLDPTDQQNQLRAAQGDLARIEAQYINAQANARRQQQLFDRGVGAQAQLDIAQTDLKTTAASLEQAKATVEQARDQLNYSELRTDHDAVVTAWTAEAGQVVTAGQQVVTLARPDVKEAVIDLPAGLAERLPEDVVFEVAAQLDPATHTTAIVREIEPQAQSATRTRRARLTLTDTPPGFRLGTAISVTLSSAIEPRIELPLSALQEVDGKARIWLIDPQSQTVSPREVQIIERSAGSVLVANGIKPGDRVVSAGVNSLQPGQKVKLDEDARPGPT0029135_471DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029135-triB-K21137NANA
D1-35_031113048czcA_2Cobalt-zinc-cadmium resistance protein CzcAATGAAAGGGCCTTTCAACTTATCCGAATGGGCCCTGCGGCATCAGTCTTTCGTGTGGTACCTGATGTTCGTCGCATTGCTGATGGGCGTGTTCTCGTACATGAACCTGGGCCGCGAAGAAGACCCGTCGTTCACCATCAAGACCATGGTCATCCAGACCCGCTGGCCCGGCGCGACCCAGGAAGAAACCCTCGACCAGGTCACCGACCGCATCGAGAAAAAACTCGAAGAGCTCGATTCCCTCGATTATGTGAAGAGTTACACCCGGCCGGGGGAGTCGACGGTGTTCGTGTATCTGCGCGATACCACCGGCGCCGAGGAAATCCCGCAGATCTGGTACCAGGTGCGCAAGAAGATCGACGACATTCGTGGCGATTTCCCTGAAGGCTTGCAAGGCCCAGGGTTCAACGATGAGTTCGGCGACGTGTACGGTTCGGTGTATGCCTTTACCGGCGACGGCCTGTCGATGCGTCAGTTGCGCGATTATGTCGAACAGGTGCGCGCCGAGATCCGCGACGTGCCCGGCCTGGGCAAGGTGGAAATGGTCGGCGAGCAGGACGAAGTGTTGTACCTGAATTTTTCCACGCGCAAACTCGCCGCACTGGGCATCGACCAGCGCCAGGTGGTGCAGAGCCTGCAGTCGCAGAACGCCGTGACCCCGGCAGGGGTGATCGACGCCGGGCCGGAGCGAATCTCCGTGCGCACGTCCGGCCAGTTCCAATCGGAAAAGGACCTGGCCAACGTCAACCTGCGACTCAACGATCGTTTCTATCGCCTCGCCGATATCGCCGACATTCGCCGTGGTTATGTCGACCCCGCCACGCCGATGTTCCGCTTCAACGGCACGCCGGCGATCGGTCTTGCCATTGCCATGAAGAAGGGCGGCAACATCCAGGAGTTCGGCAAGGCGCTGCATGCGCGCATGGACGAACTGACCGCGGACCTGCCGGTGGGGGTCGGCGTGCATACGGTGTCGGACCAGGCCGAAGTGGTGGAGGAAGCCGTTGGCGGCTTCACCAGCGCCTTGTTCGAGGCGGTGATCATCGTTCTGGTGGTCAGTTTCATCAGCCTCGGCATTCGCGCCGGGCTGGTGGTGGCCTGCTCGATCCCGCTGGTGCTGGCGATGGTGTTCGTGTTCATGGAATACAGCGGCATCACCATGCAGCGGATTTCCCTCGGTGCATTGATCATCGCCCTTGGTCTACTGGTGGACGATGCCATGATCACCGTGGAGATGATGGTCACGCGCCTGGAAAAAGGCGATTCCAAGGATCAGGCCGCGACGTTTGCCTATACCTCGACCGCCTTTCCGATGCTCACCGGGACCCTGGTGACCGTGGCCGGCTTCGTGCCCATCGGCCTGAACGCCAGTTCGGCTGGCGAATACACCTTCACGCTGTTCGCGGTGATTGCCGTGGCGATGCTGGTGTCCTGGATCGTCGCGGTGCTGTTCGCCCCGGTGATCGGCGTGCACATTCTCAGTCCCAACGTAAAGCCCCACAGCAACGAGCCGGGACGGGTCGGACGGGCCTTCAACGGTGGCCTGCTGTGGGCGATGCGCAATCGCTGGTGGGCAATCGGGATCACCGTGCTGCTGTTCGCGCTGGCGGTATTCTGCATGCGCTTCGTACAGAACCAGTTCTTCCCGTCCTCGGACCGCCCGGAGATCCTGGTGGACCTCAACCTGCCGCAGAACGCCTCGATGGACGAGACGCGCAAGGCGGTCGATCGCCTGGAGGCCACCCTCAAGGGCGACCCGGACATCGCGCGCTGGAGCACTTACATCGGCGAAGGCGCCATTCGCTTCTACCTGCCGCTGGACCAGCAACTGCAGAACCCGTACTACGCGCAACTGGTGATCGTCAGCAAGGATCTGGAGTCGCGTGCGGCCCTCAGCGAACGCCTGCAAAAGCGCCTGCGTGAAGATTTCGTCGGCATCGGCAGCTACGTGCAGGCGCTGGAAATGGGCCCGCCGGTCGGCCGGCCGATCCAGTACCGGGTCAGCGGCAAGGACATCGACCAGGTGCGCAAGCATGCCATCGAGCTTGCCACCGAACTGGACAAGAACTCGCACATTGGCGAGATCATCTACGACTGGAACGAGCCGGGCAAAGTACTGCGCATCGACATCGCCCAGGACAAGGCGCGGCAACTGGGATTGTCTTCGGATGACGTGGCCCGGCTGATGAACAGCATTGTCAGCGGCTCGCCGGTGACCCAGGTCAACGACGATATCTACCTGATCGACGTGGTGGGTCGCGCCGAAGACGCCGAGCGCGGTTCGCCGGAAACCTTGCAGAACCTGCAGATCGTCACACCGGGCGGGACCTCGATTCCGCTGCTGGCCTTTGCCACGGTGCGCTACGAACTGGAACAACCGCTGGTATGGCGTCGCGACCGCAAGCCGACCATCACCATCAAGGCTGCCGTGCGCGATGAAATCCAGCCGACGGACCTGGTGCGGCAACTGCAACCGGACATCGACAGGTTCGCCGCCAGATTGCCGGTAGGCTACAAGGTCGCCACCGGCGGCACGGTGGAGGAAAGCAGCAAGGCCCAGGGGCCGATCGCCAGCGTGGTGCCGCTGATGCTGTTCCTGATGGCGACGTTCCTGATGATCCAGTTGCACAGCGTGCAGAAGTTGTTCCTGGTGGCCAGTGTCGCGCCCCTGGGCTTGATCGGCGTGGTCCTGGCGCTGGTGCCGACGGGCACGCCCATGGGCTTTGTGGCGATCCTCGGGATCCTTGCGCTGATCGGCATCATCATCCGCAACTCGGTGATCCTGGTGACCCAGATCGACGAATACGAACGTGACGGCTATGAACCCTGGGATGCGGTGGTGGAAGCGACCGAGCACCGGCGCCGGCCGATCCTATTGACGGCGGCGGCGGCGAGCCTGGGGATGATCCCGATCGCCCGGGAAGTGTTCTGGGGCCCGATGGCCTACGCGATGATCGGCGGGATCATCGTCGCCACGCTGCTGACGCTGCTGTTCCTGCCAGCGCTGTATGTGGCCTGGTACAAGATCCGCGAGCCCAAGCGCGAGTGAMKGPFNLSEWALRHQSFVWYLMFVALLMGVFSYMNLGREEDPSFTIKTMVIQTRWPGATQEETLDQVTDRIEKKLEELDSLDYVKSYTRPGESTVFVYLRDTTGAEEIPQIWYQVRKKIDDIRGDFPEGLQGPGFNDEFGDVYGSVYAFTGDGLSMRQLRDYVEQVRAEIRDVPGLGKVEMVGEQDEVLYLNFSTRKLAALGIDQRQVVQSLQSQNAVTPAGVIDAGPERISVRTSGQFQSEKDLANVNLRLNDRFYRLADIADIRRGYVDPATPMFRFNGTPAIGLAIAMKKGGNIQEFGKALHARMDELTADLPVGVGVHTVSDQAEVVEEAVGGFTSALFEAVIIVLVVSFISLGIRAGLVVACSIPLVLAMVFVFMEYSGITMQRISLGALIIALGLLVDDAMITVEMMVTRLEKGDSKDQAATFAYTSTAFPMLTGTLVTVAGFVPIGLNASSAGEYTFTLFAVIAVAMLVSWIVAVLFAPVIGVHILSPNVKPHSNEPGRVGRAFNGGLLWAMRNRWWAIGITVLLFALAVFCMRFVQNQFFPSSDRPEILVDLNLPQNASMDETRKAVDRLEATLKGDPDIARWSTYIGEGAIRFYLPLDQQLQNPYYAQLVIVSKDLESRAALSERLQKRLREDFVGIGSYVQALEMGPPVGRPIQYRVSGKDIDQVRKHAIELATELDKNSHIGEIIYDWNEPGKVLRIDIAQDKARQLGLSSDDVARLMNSIVSGSPVTQVNDDIYLIDVVGRAEDAERGSPETLQNLQIVTPGGTSIPLLAFATVRYELEQPLVWRRDRKPTITIKAAVRDEIQPTDLVRQLQPDIDRFAARLPVGYKVATGGTVEESSKAQGPIASVVPLMLFLMATFLMIQLHSVQKLFLVASVAPLGLIGVVLALVPTGTPMGFVAILGILALIGIIIRNSVILVTQIDEYERDGYEPWDAVVEATEHRRRPILLTAAAASLGMIPIAREVFWGPMAYAMIGGIIVATLLTLLFLPALYVAWYKIREPKREPGPT0029140_388DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029140-triC-K21134NANA
D1-35_031122220cadA_1Cadmium-transporting ATPaseATGAACGATTCCATCCATACACCCCGACCCGCCCATGGCCATGAGCACGGGCACTCCTGCTGCTCATCCAAGGCAGCGCCGGCGGTAGTCACGCTCGACAAAACGCCGACGGACGGTGCGCGGCTGAGCAGTTTTCGCATCGAAGCCATGGACTGCCCCACCGAACAGACACTGATCCAGAACAAGCTCGGCAAACTTGAAGGCGTGCAGCGACTGGAATTCAACCTGATCAACCGTGTGCTGGGCGTAACCCATGACCTGCCCAGCGACACGCCGATCATCAAAGCCATCGAGTCCTTGGGAATGCAGGCGGAACCGTTGACGGCTGGCCAGGACAAACCGACTCACACCCCGCCCGCCCCAGCCAAACCATGGTGGCCGCTGGCGTTGTCCGGCGTCACGGCATTGGGCGCCGAGGTGATTCACTTCACCAACGCCGCGCCGAACTGGGTCGTCGCGTTGGTGGCGCTGGTGTCGATCCTCAGCGGTGGCCTCGCCACCTACAAGAAGGGCTGGATTGCCCTGAAGAACCTGAACCTGAACATCAACGCCCTGATGAGCATCGCCGTGACCGGCGCGGTGTTGATTGGCCAATGGCCGGAAGCGGCGATGGTGATGTTCCTGTTCACGGTGGCCGAACTGATCGAGGCCAAGTCCCTCGACCGCGCGCGCAACGCCATCAGCGGCCTGATGCAGATGGCGCCGGAACAGGCCACCGTGCAGCAGGCCGATGGCAGTTGGCAGGTCCAGGAAGTGAAGAGCGTCGCTCTTGGCGCGCGGGTGCGGGTTCGCCCCGGTGAACGCGTCGGGCTGGATGGCGATGTGGTCGCAGGCCGTTCGACCATCGACCAGGCGCCGATCACCGGGGAAAGCCTGCCGGTGGACAAGACCGTGGGCGACAAAGTGTTTGCCGGCACCATCAATCAGGCCGGCGAACTGGAATACGCCGTGACCGCCGCGGCCGATCAATCCACCCTGGCGCGGATTATCCATGCCGTGGAGCAGGCCCAGGGGGCCCGGGCACCGACTCAGCGCTTCGTTGACCGGTTCTCGACAATCTACACACCGGCGGTGTTTGCCCTGGCCTTGGCTGTGGCCGTCATCCCGCCGCTGTTCATGGGCGCAGTCTGGTTCGACTGGATCTATCGGGCGCTGGTCCTGCTGGTGGTCGCCTGCCCATGTGCACTGGTGATTTCCACCCCCGTGACCATCGTCAGCGGCCTGGCGGCAGCGGCGCGCAAAGGCATCCTGGTCAAGGGCGGCGTGTACCTGGAGGGCGGCCACAAGCTCGATTACCTGGCCTTGGACAAGACCGGCACGATCACCCACGGCAAACCGGTGCAGACCGATTACCTGGCACTCGACCCGAGCGTGGAAACCACCGCACCGGCCCTGGCCGCCAGCCTCGCGGCGCGGTCGGACCATCCGGTGTCCCGAGCGATTGCCCATGCGGCTGTGGATAAACAATCGGCGCAGCAGGTTGTGGATAACTTCGCGGCGCTTGCCGGGCGCGGCGTTCGCGGCGACATCGGCGACCAGACCTATCACTTGGGCAACCATCGCCTCGTGGAAGACCTGGGCCTGTGCTCTCCCGAGCTGGAAGCGAAACTCTTCGCCTTGGAAAAACAAGGCAAGTCCGTCGTGCTGCTGCTCGACAGCGCCAGGCCTCTGGCGCTGTTTGCCGTAGCCGATACCGTCAAGGACTCCAGCCGCGAAGCGATCCGGCAGTTGCATGACCTGGGCATCAAGACACTGATGCTGACCGGCGACAACGCCCACACCGCCGAGGCGATAGCCGCACAGGTGGGCATGGACCGAGCCCATGGCGACCTGTTGCCGGAAGACAAGCTGCAAATCATCGAGAAGCTCTACGCCGGCGGTCACCGGGTCGGCATGGTGGGCGACGGCATCAACGACGCCCCGGCCCTGGCCCGCTCGGAAATCGGCTTCGCCATGGCGGCGGCCGGCACCGACACCGCCATCGAGACCGCTGACGTAGCGCTGATGGACGACGACCTGCGCAAGATTCCCACCTTCATCCGGCTGTCGCGGCAGACGTCGAGCATCCTCAAGCAAAACATTGCCCTGGCGTTGGTGATCAAGGCGATTTTCCTTGCGGTGACCTTTGCCGGGTTCGCCACCATGTGGATGGCAGTATTTGCCGACATGGGGGTGAGCTTGCTGGTGGTGTTCAATGGGTTGCGGTTGTTGCGCAAGTAAMNDSIHTPRPAHGHEHGHSCCSSKAAPAVVTLDKTPTDGARLSSFRIEAMDCPTEQTLIQNKLGKLEGVQRLEFNLINRVLGVTHDLPSDTPIIKAIESLGMQAEPLTAGQDKPTHTPPAPAKPWWPLALSGVTALGAEVIHFTNAAPNWVVALVALVSILSGGLATYKKGWIALKNLNLNINALMSIAVTGAVLIGQWPEAAMVMFLFTVAELIEAKSLDRARNAISGLMQMAPEQATVQQADGSWQVQEVKSVALGARVRVRPGERVGLDGDVVAGRSTIDQAPITGESLPVDKTVGDKVFAGTINQAGELEYAVTAAADQSTLARIIHAVEQAQGARAPTQRFVDRFSTIYTPAVFALALAVAVIPPLFMGAVWFDWIYRALVLLVVACPCALVISTPVTIVSGLAAAARKGILVKGGVYLEGGHKLDYLALDKTGTITHGKPVQTDYLALDPSVETTAPALAASLAARSDHPVSRAIAHAAVDKQSAQQVVDNFAALAGRGVRGDIGDQTYHLGNHRLVEDLGLCSPELEAKLFALEKQGKSVVLLLDSARPLALFAVADTVKDSSREAIRQLHDLGIKTLMLTGDNAHTAEAIAAQVGMDRAHGDLLPEDKLQIIEKLYAGGHRVGMVGDGINDAPALARSEIGFAMAAAGTDTAIETADVALMDDDLRKIPTFIRLSRQTSSILKQNIALALVIKAIFLAVTFAGFATMWMAVFADMGVSLLVVFNGLRLLRKPGPT0004200_1721DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_LEAD_RESISTANCELEAD_RESISTANCE-PBR_TRANSPORT_SYSTEM,PGPT0004200-zntA|cadA-K01534NANA
D1-35_03113447merR1Mercuric resistance operon regulatory proteinATGAAGATTGGCGAACTGGCGAAAATCACCGACTGCCAGGTCGAGACCATCCGCTATTACGAACGGGAGGGTTTGCTGCCGGAACCGGCCCGCAGTGACGGCAATTATCGCGTCTACACCCAGGCCCATGCCGAGCGGCTGACATTCATCCGCAACTGCCGGACCCTGGACATGACCCTGGAGGAAATCCGCAGCCTGCTCGCCTTGCGCGACAGCCCCCAGGACCAATGCGAGAGCGTCAACGCACTGATCGACGAACACATCCACCACGTCAAGGCGCGCATCGACGGCCTGCAGGCCTTGCAGGCGCAACTGATCGACCTGCGCCATCGCTGTGGCGAAGGGCCGGATCTTGAGCAGTGCGGGATCTTGCAACGGTTGGAGGTGAGCGGGGCGGTGGCGCCGGAGGTGGAGCATTCACATGTGGGCAGGAGTCATGGGCATTGAMKIGELAKITDCQVETIRYYEREGLLPEPARSDGNYRVYTQAHAERLTFIRNCRTLDMTLEEIRSLLALRDSPQDQCESVNALIDEHIHHVKARIDGLQALQAQLIDLRHRCGEGPDLEQCGILQRLEVSGAVAPEVEHSHVGRSHGHPGPT0004288_5DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_LEAD_RESISTANCELEAD_RESISTANCE-LEAD_HOMEOSTASIS,PGPT0004288-pbrR-NANANA
D1-35_03114972thyACOG0207Thymidylate synthaseATGAAGCAATATCTCGACCTGGTGGCTCACGTCATCAAGAACGGCACCAAGCAAGCCAACCGCACCGGCGTGAACACCATCAGTTTCCCTGGCGCGATGCTGCGCTATGACCTGAAGGAAGGCTTTCCCGCCATCACTACGCGCAAGATGGCCTTCAAGTCGGCGATCGGCGAGATGTGCGGTTTCTTGCGTGGCGTGAACAATGCCGCCGAGTTCCGGGCCCTGGGCTGCAAGGTCTGGGACCAGAACGCCAACGAAAATGCGCAATGGCTGGCCAACCCGTTCCGCCAGGGCGAAGACGACCTGGGCGAGATCTACGGCGTGCAATGGCGCAAGTGGCCGGCCTACAAGCAGATCCCGCTGAGCAACGCGGCCGCCATCGAGCAGACGCTGGCCCAGGGTTATCGGCAGATCGCCGAAGGCAAAGAAAACGGCCAGGCCTACGTGGTGCTGTACAAGGCCATCGATCAGGTTCGCCAGTGCGTCGACACCATCATCAAGGACCCGGGCAGCCGGCGCATCCTGTTCCACGGCTGGAACTGCGCCCAGCTCGATGAAATGGCCCTGCCACCGTGTCACCTGCTGTATCAGTTCCATCCGAATGTCGAGACCCGGGAAATCTCCCTGACCCTCTACATCCGCTCCAACGACCTGGGCCTGGGCACGCCGTTCAACCTCACCGAAGGCGCCGCGCTGCTAAGCCTGATTGGCCGCCTGACCGGTTATACGCCGCGCTGGTTCACCTATTTCATCGGCGATGCCCACGTCTACGAAAACCACTTGGACATGCTCAATGAACAGCTCACGCGCGAGCCGTTCCCGATGCCCCGACTGGTGATTTCCGAGCGCGTGCCGGAGTTCGCCAAGACCGGCGTATACCAGCCCGAGTGGCTGGAGCAGGTCGAACCGAGCGACTTCTCCCTCGAAGGCTACCAGCACCATGCGCCGATGACCGCGCCGATGGCGGTCTAAMKQYLDLVAHVIKNGTKQANRTGVNTISFPGAMLRYDLKEGFPAITTRKMAFKSAIGEMCGFLRGVNNAAEFRALGCKVWDQNANENAQWLANPFRQGEDDLGEIYGVQWRKWPAYKQIPLSNAAAIEQTLAQGYRQIAEGKENGQAYVVLYKAIDQVRQCVDTIIKDPGSRRILFHGWNCAQLDEMALPPCHLLYQFHPNVETREISLTLYIRSNDLGLGTPFNLTEGAALLSLIGRLTGYTPRWFTYFIGDAHVYENHLDMLNEQLTREPFPMPRLVISERVPEFAKTGVYQPEWLEQVEPSDFSLEGYQHHAPMTAPMAVPGPT0008145_512DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0008145-thyA-K00560NANA
D1-35_03115810lgtCOG0682Phosphatidylglycerol--prolipoprotein diacylglyceryl transferaseATGCTGCCTTACCCGCAGATCGATCCGGTTGCCCTGGCCATCGGCCCGCTGAAAATCCACTGGTACGGTCTCATGTACCTGATCGGTATCGGTGGTGCCTGGTGGCTGGCCTCGCGCCGGCTCAACCGGTTTGACCCGACCTGGAACAAAGAGAAGCTCTCGGACCTGGTGTTCTGGCTGTCCATGGGCGTGATCGTTGGCGGGCGCCTGGGTTATGTACTGTTCTACGACCTGAGCGCCTACCTGGCCAACCCGACGCTGATCTTTGAAGTCTGGAAGGGCGGCATGTCGTTTCACGGGGGCTTCATCGGCGTGATGCTGGCGGCGCTGTGGTTCGGCAAGCGCAACAACAAGTCGTTCTTCGAACTGATGGACTTCGTCGCGCCGATGGTGCCGATCGGCCTGGGCGCCGGGCGCATCGGCAATTTCATCAACGCCGAGCTGTGGGGCAAGCCGACGGACGTGCCGTGGGCGATGGTCTTCCCGCCGTTCAGCGACCCGGCCCAATTGCCGCGCCACCCGTCGCAGCTGTACCAGTTCGCCCTGGAAGGCGTGGCACTGTTCCTGATTCTCTGGTTGTTCTCGCGCAAGCCGCGGCCGACCATGGCGGTATCGGGCATGTTTGCGCTGTTCTACGGGATCTTCCGTTTCATCGTCGAGTTCGTCCGCGTACCGGACGCCCAGCTCGGCTATCTGGCGTGGAACTGGCTGACCATGGGCCAGGTGCTGTGCCTGCCGATGATCATCGGTGGCCTGGCGCTGATCTGGCTCGCTTATAACCGTGCACCGGCTGCGGCGGCCAAGGTTTAAMLPYPQIDPVALAIGPLKIHWYGLMYLIGIGGAWWLASRRLNRFDPTWNKEKLSDLVFWLSMGVIVGGRLGYVLFYDLSAYLANPTLIFEVWKGGMSFHGGFIGVMLAALWFGKRNNKSFFELMDFVAPMVPIGLGAGRIGNFINAELWGKPTDVPWAMVFPPFSDPAQLPRHPSQLYQFALEGVALFLILWLFSRKPRPTMAVSGMFALFYGIFRFIVEFVRVPDAQLGYLAWNWLTMGQVLCLPMIIGGLALIWLAYNRAPAAAAKVNANANANANA
D1-35_03116819hypothetical proteinATGCCGCTCTTGTTTGCGATGGTCGAGGCGACGCTGGTGGAATTTCTGCTTTATCTGCTGCTCGGCGCCTGTGCCGGTGTACTCGCCGGGCTATTCGGCGTCGGCGGCGGGATGATCATCGTCCCGGTGCTGGTGTTCAGTTTCACCTTGCAGGGTTTCGACCCGCAGGTGTTGACGCACCTGGCTGTCGGTACGTCCCTGGCATCGATCATCTTTACCTCGGTGAATGCCGTACGCGAGCATCACCGCAAAGGCGCGGTGCGCTGGCAGATCTTTACCTGGATGACCGTCGGGATCCTGATCGGTGCCGGTTTCGGCGCCATTACCGCCGAAGCGATCTCCGGCCCGCATCTGCAAAAAATCATCGGCGTATTCGCCATGCTCGTTGCCCTGCAACTGGCGCTGGATTTCAAGCCGAAGGCCAGCCGTACCGTGCCGGGCAAGGTCGGATTGGGCCTGGCCGGCACGGTTGTCGGCTGGGCCTCGGCGATTTTCGGTATCGGCGGCGGTTCGCTGACCGTGCCGTTCCTGACCTGGCGCAGCGTGCCGATGCAACAAGCGGTGGCGACTTCGTCGGCCTGCGGGCTGCCCATCGCCCTGGTCAGTGCGTTAAGTTTCATGATTCTGGGGTGGCAGGATCCATTGTTGCCGCCCCATAGTCTCGGTTTTGTATATTTGCCGGCACTGCTGGGCATCGCCCTGACGAGCATGATCTTCGCCCGTTTCGGCGCGCGACTGGCCCATCGCCTGTCGCCGCGCTTGCTCAAGCGGCTGTTCGCCGCTTTGTTGTTCAGTGTGGGCTTGAGTTTCCTGCTCTGAMPLLFAMVEATLVEFLLYLLLGACAGVLAGLFGVGGGMIIVPVLVFSFTLQGFDPQVLTHLAVGTSLASIIFTSVNAVREHHRKGAVRWQIFTWMTVGILIGAGFGAITAEAISGPHLQKIIGVFAMLVALQLALDFKPKASRTVPGKVGLGLAGTVVGWASAIFGIGGGSLTVPFLTWRSVPMQQAVATSSACGLPIALVSALSFMILGWQDPLLPPHSLGFVYLPALLGIALTSMIFARFGARLAHRLSPRLLKRLFAALLFSVGLSFLLNANANANANA
D1-35_03117747hypothetical proteinATGTGCCTGATCGTATTTGCCTGGCGGCCCGGCCACGCCCAGCCGCTGATCGTGGCGGCTAACCGCGACGAGTTCTACGCGCGCCCGACGCTGCCACTGGCGCAGTGGCCTGACGCACCGCACGTGCATGCCGGTCGCGACCTGGAAGCGGGCGGCACCTGGCTCGGGGTCGGCACCGGGGGCCGCTTTGCCGCGCTGACCAACATCCGCGATCCTGGCCAGCTCCCGGCGTTCAAGTCTCGCGGCGAGCTGGTGGCGCGGTTCCTGACCGGGAATCTGTCGATCGTCGATTATCTGAGCGAAGTCGTGCCGCGCGCCGGCGAGTACGGTGGCTTCAACCTGCTGCTGGGCGATGGCGCCGAACTGTGGCACTACAACGCACGCGATACACGCCCGCAGTTGTTGGCCGAAGGGATCTACGGATTGTCCAACGCCGGGTTGAACACGCCCTGGCCGAAATTGCTCAAGGCCCGGACGGCGTTGAGTGAGGTGCTGCATGACCCGCAGCCCCAAGCGCTGCTGACGCTATTGAACGATCCGCAACCGGCCCCGGTGGCGGAGCTGCCGGACACCGGCGTGGGACTGTCCACGGAAATGCTGCTGTCGAGCGTGTTCATCGCCAGCCCGGCCTACGGGACGCGGGCGAGCACGGCGCTGATCGTTAATGCTGACGGGACGCGGCAGATGGTCGAGCGCAGTTTCGGGCCGCATGGGGGGCATTTGGGGGAGGTGGAGCTGCTCGTTTAAMCLIVFAWRPGHAQPLIVAANRDEFYARPTLPLAQWPDAPHVHAGRDLEAGGTWLGVGTGGRFAALTNIRDPGQLPAFKSRGELVARFLTGNLSIVDYLSEVVPRAGEYGGFNLLLGDGAELWHYNARDTRPQLLAEGIYGLSNAGLNTPWPKLLKARTALSEVLHDPQPQALLTLLNDPQPAPVAELPDTGVGLSTEMLLSSVFIASPAYGTRASTALIVNADGTRQMVERSFGPHGGHLGEVELLVNANANANANA
D1-35_031182280ptsPCOG3605Phosphoenolpyruvate-dependent phosphotransferase systemATGCTCAATACGCTGCGCAAGATCGTCCAGGAAGTTAACTCCGCCAAGGATCTCAAGGCGGCGTTGGGGATTATTGTATTGCGCGTCAAAGAGGCCATGGGCAGCCAGGTCTGCTCGGTCTACCTGCTGGACCCCGAGACCAACCGTTTTGTGCTGATGGCGACCGAGGGTCTGAACAAGCGCTCCATCGGCAAGGTCAGCATGGCGCCCAACGAAGGCCTGGTCGGCCTGGTCGGTACCCGGGAAGAACCCCTGAACCTGGAAAACGCCGCCGATCACCCGCGGTATCGCTACTTTGCCGAGACCGGCGAAGAGCGCTACGCATCGTTCCTCGGCGCGCCGATCATTCACCACCGCCGCGTCGTCGGCGTGTTGGTCATCCAGCAAAAAGAGCGCCGCCAGTTCGACGAGGGCGAAGAAGCCTTCCTCGTGACCATGAGCGCGCAACTGGCCGGGGTTATCGCCCACGCCGAAGCGACCGGCTCGATCAGCGGCCTGGGCCGCCAGGGCAAGGGCATCCAGGAAGCCAAGTTCGTCGGCGTGCCGGGCTCACCGGGCGCGGCGGTGGGCACCGCGGTGGTCATGCTGCCACCCGCCGACCTCGACGTGGTGCCGGACAAGACTATCGCCGACATCAATGCCGAGCTGGGCTTGTTCAAGACCGCCATCGAAGGCGTGCGAGCCGACATGCGCGCCCTGTCCGCCAAGCTGGCGACGCAATTGCGGCCTGAAGAGCGCGCGCTGTTCGATGTCTACCTGATGATGCTTGACGATGCCTCCCTGGGCAGCGAAGTGACCACGGTCATCAAGACCGGCCAATGGGCCCAGGGCGCGTTGCGCCAGGTGGTGACCGACCACGTCAACCGTTTCGAACTGATGGACGACGCCTACCTGCGCGAGCGCGCCTCCGACGTCAAGGACCTCGGTCGCCGCCTGCTCGCCTACCTGCAGCAAGAGCGTCAGCAGACCCTGGTCTACCCCGACAACACCATCCTGGTGAGCGAAGAGCTGACCCCGGCGATGCTCGGCGAAGTGCCGGAAGGCAAGCTGGCGGGCCTGGTCTCGGTACTGGGCTCGGGCAACTCCCACGTGGCGATCCTGGCCCGGGCCATGGGCATTCCCACGGTCATGGGCCTGGTGGACCTGCCGTATTCCAAGGTCGACGGCATCCAGATGATCGTCGACGGCTACCACGGCGAGGTCTACACCAACCCCAGCGACGTGTTGCGCAAGCAGTTCGCCGATGTGGTGGAGGAAGAGAAGCAACTCTCCCTGGGCCTGGATGCCCTGCGCGACCTGCCGTGCATAACCCTCGATGGCCATCGCATGCCGCTGTGGGTCAACACCGGCCTGCTGGCCGATGTGGCCCGGGCGCAGAAGCGTGGCGCCGAGGGCGTGGGCCTGTACCGCACCGAAGTGCCGTTCATGATCAACCAGCGTTTCCCCAGCGAAAAGGAACAGCTGGCGATCTACCGCGAGCAATTGTCCGCGTTTCATCCGCAACCGGTGACCATGCGTAGCCTGGACATCGGCGGCGACAAATCGCTGTCCTACTTCCCGATCAAGGAAGACAACCCGTTCCTCGGCTGGCGCGGGATCCGCGTGACGCTCGACCATCCGGAAATCTTCCTGGTCCAGGCCCGCGCCATGCTCAAGGCCAGCGAAGGCCTGAACAATCTGCGCATCCTGTTGCCGATGATCTCTGGCACCCATGAGCTGGAAGAAGCCCTGCACCTGATCCACCGGGCCTGGGGCGAGGTGCGCGACGAAGGCACCGACGTACCCATGCCGCCGGTGGGCGTGATGATCGAGATTCCGGCAGCGGTGTACCAGACCAAGGAACTGGCGCGGCAGGTGGACTTCCTGTCGGTAGGCTCCAACGACCTGACCCAGTACCTGCTGGCCGTGGATCGCAACAACCCACGAGTGGCCGACCTCTACGACTACCTGCACCCGGCCGTGCTGCAAGCCTTGCAGAACGTCGTTCGCGACGCCCATGCCGAGGGCAAGCCGGTGAGCATCTGCGGCGAAATGGCTGGCGACCCGGCGGCGGCGGTGCTGCTGATGGCGATGGGCTTCGACAGCCTGTCGATGAACGCCACCAACCTGCCGAAAGTGAAATGGATGCTGCGCCAGATCAACCTCAGCAAGGCCCAGGAGCTGCTGGCGGAGCTGATGACCATCGACAATCCGCAGGTGATCCATAGCTCCTTGCAGTTGGCGCTGAAAAACCTCGGGCTGGCGCGGATGATCAACCCGGCTTCGAACAAGACCCTCTAGMLNTLRKIVQEVNSAKDLKAALGIIVLRVKEAMGSQVCSVYLLDPETNRFVLMATEGLNKRSIGKVSMAPNEGLVGLVGTREEPLNLENAADHPRYRYFAETGEERYASFLGAPIIHHRRVVGVLVIQQKERRQFDEGEEAFLVTMSAQLAGVIAHAEATGSISGLGRQGKGIQEAKFVGVPGSPGAAVGTAVVMLPPADLDVVPDKTIADINAELGLFKTAIEGVRADMRALSAKLATQLRPEERALFDVYLMMLDDASLGSEVTTVIKTGQWAQGALRQVVTDHVNRFELMDDAYLRERASDVKDLGRRLLAYLQQERQQTLVYPDNTILVSEELTPAMLGEVPEGKLAGLVSVLGSGNSHVAILARAMGIPTVMGLVDLPYSKVDGIQMIVDGYHGEVYTNPSDVLRKQFADVVEEEKQLSLGLDALRDLPCITLDGHRMPLWVNTGLLADVARAQKRGAEGVGLYRTEVPFMINQRFPSEKEQLAIYREQLSAFHPQPVTMRSLDIGGDKSLSYFPIKEDNPFLGWRGIRVTLDHPEIFLVQARAMLKASEGLNNLRILLPMISGTHELEEALHLIHRAWGEVRDEGTDVPMPPVGVMIEIPAAVYQTKELARQVDFLSVGSNDLTQYLLAVDRNNPRVADLYDYLHPAVLQALQNVVRDAHAEGKPVSICGEMAGDPAAAVLLMAMGFDSLSMNATNLPKVKWMLRQINLSKAQELLAELMTIDNPQVIHSSLQLALKNLGLARMINPASNKTLPGPT0002030_269DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0002030-ptsP-K08484NANA
D1-35_03119480rppH_1COG0494RNA pyrophosphohydrolaseGTGATCGATCCCGATGGTTTCCGTCCCAATGTGGGGATCATTCTTACGAATGATGCCGGACAGGTGCTATGGGCTCGCCGTATCAATCAAGACGCCTGGCAGTTTCCACAGGGAGGGATCAACCCCCAGGAGACGCCGGAAGAGGCTTTGTACCGCGAGTTGAACGAAGAAGTGGGGCTGGAGCGAGAGGATGTCGAAATACTCGCCTGCACCCGAGGCTGGTTGCGTTATCGTTTGCCGCAACGCCTGGTCCGCACGCACAGCCAACCGCTGTGTATCGGCCAGAAGCAGAAATGGTTTCTCCTGCGCCTGATCTCCAACGAGCAGCGGGTGCGGATGGATTTGACCGGTAAACCGGAATTCGATGGCTGGCGCTGGGTCAGTTATTGGTATCCGTTGGGCCAGGTGGTGACATTCAAGCGCGAGGTGTATCGACGCGCTCTCAAAGAGCTTGCCCCGCGCCTGCTGACGCGCGACTGAMIDPDGFRPNVGIILTNDAGQVLWARRINQDAWQFPQGGINPQETPEEALYRELNEEVGLEREDVEILACTRGWLRYRLPQRLVRTHSQPLCIGQKQKWFLLRLISNEQRVRMDLTGKPEFDGWRWVSYWYPLGQVVTFKREVYRRALKELAPRLLTRDNANANANANA
D1-35_03120657COG0560putative phosphataseATGCGGCTGGCTTTATTCGACTTGGACAACACGCTGCTGGGCGGCGACAGCGATCACGCCTGGGGCGATTACCTCTGCGAGCGCGGGTTTCTGGATGCCGTCACCTACAAGGCGCGCAACGATGAGTTTTACCAGGACTACCTGGCCGGCAAGCTGGACAACGCCGCGTACCTGAATTTCTGCCTGGAAATCCTCGGCCGTACCGAGATGGAGGTGCTGGCGCAGTGGCATCTCGAATACATGCGCGACTGCATCGAGCCGATCGTGCTGCCCCAAGCCATCGAGCTGCTGAAAAAACACCGTGATGCCGGCGACAAGCTGGTGATCATCACCGCCACCAACCGCTTCGTCACCGCGCCGATTGCCGAGCGTCTGGGCGTCGAAACCCTGATCGCCACCGAGTGCGAAATGATTGACGGTCGCTACAGTGGGCGCAGCACCGACATCCCCTGTTTCCGCGAGGGCAAGGTGACCCGGCTGAATCGCTGGCTGGAAGAAACCGGGTATTCGCTGGACGACAGCTACTTCTATAGCGACTCGATGAACGACTTGCCGCTGTTGGAAGCAGTGACGCACCCGGTGGCGGTGGATCCGGATTCGAACCTGCGGGCCGAGGCCGAGAAACGCGGCTGGCCGGTGATCAGCCTGCGCGATTGAMRLALFDLDNTLLGGDSDHAWGDYLCERGFLDAVTYKARNDEFYQDYLAGKLDNAAYLNFCLEILGRTEMEVLAQWHLEYMRDCIEPIVLPQAIELLKKHRDAGDKLVIITATNRFVTAPIAERLGVETLIATECEMIDGRYSGRSTDIPCFREGKVTRLNRWLEETGYSLDDSYFYSDSMNDLPLLEAVTHPVAVDPDSNLRAEAEKRGWPVISLRDPGPT0015285_14DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-INHIBITION_OF_SALICYLIC_ACID|JASMONIC_ACIDADAPTION_TO_PIS_REGULATION_BY_Nod_FACTORS,PGPT0015285-nodU-K00612NANA
D1-35_03121468hypothetical proteinATGAGCATTTACGTGCTGCTGAAAACCCTGCACATCCTGTCCTCGACCATCCTCTTCGGCTTGGGCGCGGGGTCCGCCTACTACGCGCTGCGGGCCTGGCGCAGCGGCAAGCTTGAAGTCATTGCCGTCACCTTCAAGCATCTGGTCTTCGCCGATTGGGCGTTCACGGCCACCACCGCCGTGTTCCAGCCGCTGAGCGGCCTGGCCCTGATGCATGTGGCCGGCTGGCCACTGCAACAGAGCTGGTTGATGTGGAGCATCGGCCTTTATTGCCTGGCGGGCGCTTGCTGGCTGCCGGTGGTCTGGTTGCAGATCCGCGTGCACAAAATGGCCGAGCAAGCCTTGCAGGACGGCACGCCCATGCCGCTCAAGGCCAGCACCTACATGCGCTGGTGGTTTGCGCTGGGCTGGCCGGCGTTCCTCGCGTTCATGGTGATCTTCTACCTGATGGTGGCCAAGCCTGCGTGAMSIYVLLKTLHILSSTILFGLGAGSAYYALRAWRSGKLEVIAVTFKHLVFADWAFTATTAVFQPLSGLALMHVAGWPLQQSWLMWSIGLYCLAGACWLPVVWLQIRVHKMAEQALQDGTPMPLKASTYMRWWFALGWPAFLAFMVIFYLMVAKPANANANANANA
D1-35_031221257hypothetical proteinATGAAGATCCTACTGGTGGGAGGCGGCGGTTTTATCGGGCGCCATCTGCTGCGAGCGTTGCACAGCGCTGGCCACTCGATCATCGCAACCAGCCGTGAACCTCAGGCGCCAGGTTGGCCTGGGGTTGAATGGCGGCAGCTGGATCTCGGTGTACTGGCAGGCGACCCTGAACACTTTGCCTTGCCCCTGGACGTCGAATTGCTGATCAACGCGGCCGGCCTGCTCAGCGTCGACACCGAGGCGCTGAGCCTGGTCCAGGATCGGGGCGCGCGAGCGTTGTTCGACCAGGCCGCGCGCCGCGGCGTCCGGATCCTGCAGATTTCCGCGCTGGGCGCGAGTGCCCAATCCGACGTGCCGTTCCTGGCGAGCAAAGGCTTGGCCGACGAATATCTTTGCACGCTGGACAGCGTATCGGTGGTGCTGCGGCCCTCGTTGGTGGTGGGACCAGGCGGCGCGAGCAGCTGCTGGATGGAAGGCCTTTCGCCGTGGCCGTTGATTCCCTTGCTGAATCTTCAAGCGCGCATCCAGCCCGTACATGTCGATGACCTGGTGGGCGCGGTGCTCGCCCTGCTGCGGCAATGGCCGAACGAGTCGGTGGTGTTGCCGCTGGTAGGACCGGAGCCGATGACGCTGGCCCGACTCATCGATCATCTGCGCGCCGCCCAAGGTTGGGCGCCGGCCCGCTACATCAAGGCCCCTGCGCTGTTGACTGAACCGGGTAGCCGGCTTGGGGATCGGTTCGGCTGGCGGGCATTGAACAGGCAAAGCCTGGCCTTGGCACAACGGGACAATCTGGCCGACCCCGCGGCACTCGCGTCAATCTGCGGGTATTACGCCGCCCCCGTACAAACCCGCTTGCAGGATTGGCCCAGCCCAGCCCAGAGCAGCCTCAGAGCGATCCGCCCGCTGATGCTCGCGGTACTGGCGATCATCTGGCTGGGTACCGCCATCGTCTGCCTCGGCCCCGGCTACGATTGGGGCTTGCGTATCATGGCCGAAGCCGGTGTCCACGGCGCCTGGGCGAAGCTTGCGGTAATCGCCGGCGCGCTGTGTGACGGCGCGCTGGGCGTGGGCATGCTATTCAAGCGCTGGCGCCGCCAGGCATTGCGGTTGCAGTTGGGATTGATGCTCGGCTACACGCTGTGCATCAGTTTTATCCTACCGCACTATTGGTTTGACCCTTATGCGGCTGTCGCCAAGAACCTGGTGCTGATAGTCGCGACTTTATGGCTGCTTTGGACTGAACCGCGCCGATGAMKILLVGGGGFIGRHLLRALHSAGHSIIATSREPQAPGWPGVEWRQLDLGVLAGDPEHFALPLDVELLINAAGLLSVDTEALSLVQDRGARALFDQAARRGVRILQISALGASAQSDVPFLASKGLADEYLCTLDSVSVVLRPSLVVGPGGASSCWMEGLSPWPLIPLLNLQARIQPVHVDDLVGAVLALLRQWPNESVVLPLVGPEPMTLARLIDHLRAAQGWAPARYIKAPALLTEPGSRLGDRFGWRALNRQSLALAQRDNLADPAALASICGYYAAPVQTRLQDWPSPAQSSLRAIRPLMLAVLAIIWLGTAIVCLGPGYDWGLRIMAEAGVHGAWAKLAVIAGALCDGALGVGMLFKRWRRQALRLQLGLMLGYTLCISFILPHYWFDPYAAVAKNLVLIVATLWLLWTEPRRNANANANANA
D1-35_03123414hypothetical proteinATGGAAACTCTGCTGACCTTGAAAGTCCTGCACGTCGCGGCCACGGTCCTGCTGCTGGCATGCGGTGTAGTCCTTGCCGTCCTGGCCTGGCGTAAACGCAGCGAGGGACCGGCCAGCACGCTGCGGCGTCCCTGGCTGTTGGCCTGGTGCGTGATGCTGGTCTGCATGCTGAGCATGCCGTTCACCGGCTGGTGGCTGGTTCACCTGGTGGGCTGGCCGTTGGGGCAAAGCTGGCTGTTGGGCTCCAGCGTGATCTACACGGTGGCGACGCTCTGCGTTTTCTGGCTGCTGGCAAGGCTCAATCGTCTGCGCTTGGGCAGCGGCGGCAGCAGCAGGTTTACCCTGGCATTGGCGATCATCGGTGGCGTCGGCTTCCTGTCCATCGCCGCGCTGATGGGTGCCAAGCCGATTTAAMETLLTLKVLHVAATVLLLACGVVLAVLAWRKRSEGPASTLRRPWLLAWCVMLVCMLSMPFTGWWLVHLVGWPLGQSWLLGSSVIYTVATLCVFWLLARLNRLRLGSGGSSRFTLALAIIGGVGFLSIAALMGAKPINANANANANA
D1-35_031241515ilvA_1COG1171L-threonine dehydratase biosynthetic IlvAATGCTCGAACAGTACGTCAAGAAGATCCTCACCTCGCGCGTTTATGACGTTGCCGTTGAAACCCCGCTGCAGACCGCCCGCCAGCTCTCCGAGCGGCTGGGCAATGACGTCTGGCTCAAGCGTGAAGACCTGCAGCCGGTGTTCTCGTTCAAGATTCGCGGGGCCTACAACAAGCTGACCCAACTCAGCGACGAAGAGCGCGCCCGTGGCGTAGTCACGGCCTCGGCCGGCAACCACGCCCAGGGCCTGGCGCTGGCAGCCAAGGTGCTGGGCGTCAAAGCCACCATCGTCATGCCCAAGACCACCCCGGAAATCAAGGTCGAAGGCGTACGCTCCCGCGGCGGCAAAGTGGTGTTGCATGGCGACTCGTTCCCCGAGGCGCTGGCGTATTCGCTGAAGCTGGTCGACGAAAAGGGCTACGTCTATATCCATCCCTATGACGACCCTCATACCATCGCCGGGCAGGGCACCGTGGCGATGGAGATCCTCCGCCAGCACCCCGGGCGCCTCGATGCGATATTCGTCCCGGTGGGCGGTGGCGGGCTGATTGCCGGCATCGCGGCCTACGTGAAATACCTGCGCCCCGAGATCCGGATCATTGGCGTCGAGCCGGATGACTCCAATTGCCTGCAAGCGGCCCTGGCCGCCGGTGAGCGCGTGGTATTGCCGACCGTCGGCCTGTTCGCCGACGGCGTGGCCGTGGCGCAGATCGGCCAGCACACCTTTGATATCTGCAAGCACTACGTGGATGAAGTGATCACCGTCAGCACCGACGAGATCTGCGCAGCTATAAAGGATATCTACGACGATACCCGCTCGATCACCGAGCCGGCCGGCGCCTTGGGCGTGGCCGGGATCAAGAAGTACGTCGAATCGCGGGGCATCAGCGGTCAGACCCTGGTGGCCATCGATTCCGGCGCCAACGTCAACTTCGATCGCCTGCGCCATGTGGCCGAACGCGCCGAGCTGGGCGAAGGGCGCGAGGCGATCATCGCCGTGACCATTCCCGAGCAGCCGGGCAGCTTCAAGGCCTTCTGCGAAGCCATCGGCAAACGCCAGATCACCGAATTCAACTACCGCTACAACACCGGCAGCGAAGCGCACATTTTCGTCGGCGTACAGACGCATCCGGAAAACGATCCGCGCAGCAAGTTGATCGCCAGCCTGACCGAGCAAGGCTTTCCGGTGCTGGACTTGACCGACAACGAGCTGGCCAAGCTGCACATCCGCCACATGGTCGGCGGACACGCCGCCCACGTCATCGACGAAGTGGTGCTGCGTTTCGAGTTCCCGGAGCGTCCGGGCGCGTTGTTCAACTTCCTCAACAAGCTGGGCGGGCGTTGGAATATCTCGATGTTCCACTACCGCAACCATGGCGCGGCGGATGGTCGCGTGGTCGCCGGGCTGCAAGTGCCTCACGATGAACGCCACCTGGTACCGGCCGCCCTGGAAGAAATCGGCTATCCGTATTGGGATGAAAGCGATAACCCGGCCTATCAGCTGTTTCTTGGTTGAMLEQYVKKILTSRVYDVAVETPLQTARQLSERLGNDVWLKREDLQPVFSFKIRGAYNKLTQLSDEERARGVVTASAGNHAQGLALAAKVLGVKATIVMPKTTPEIKVEGVRSRGGKVVLHGDSFPEALAYSLKLVDEKGYVYIHPYDDPHTIAGQGTVAMEILRQHPGRLDAIFVPVGGGGLIAGIAAYVKYLRPEIRIIGVEPDDSNCLQAALAAGERVVLPTVGLFADGVAVAQIGQHTFDICKHYVDEVITVSTDEICAAIKDIYDDTRSITEPAGALGVAGIKKYVESRGISGQTLVAIDSGANVNFDRLRHVAERAELGEGREAIIAVTIPEQPGSFKAFCEAIGKRQITEFNYRYNTGSEAHIFVGVQTHPENDPRSKLIASLTEQGFPVLDLTDNELAKLHIRHMVGGHAAHVIDEVVLRFEFPERPGALFNFLNKLGGRWNISMFHYRNHGAADGRVVAGLQVPHDERHLVPAALEEIGYPYWDESDNPAYQLFLGPGPT0001960_1819DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_THREONINE_DEGRADATION,PGPT0001960-ilvA|tdcB-K01754NANA
D1-35_03125675rpiACOG0120Ribose-5-phosphate isomerase AATGACCCAGGATCAACTCAAACAGGCCGTGGCCCAGGCCGCCGTCGACCTCATCCTCCCGAAGCTGGATGACAAGAGCATCGTCGGGGTCGGCACCGGCTCGACCGCCAATTGCTTTATCGACGCGCTGGCGCAGCACAAGGGTGCGTTCGATGGCGCGGTCGCCAGCTCCGAAGCCACCGCCGCGCGCCTCAAGGGCCACGGGATCCCGGTGTACGAGCTCAACACCGTGAGCGACCTGGAGTTCTACATCGACGGCGCCGATGAAAGCGATGCGCACCTGAACCTGATCAAGGGCGGTGGCGCTGCATTGACCCGCGAGAAGATTGTCGCGGCAGTCGCCAAGACCTTCATCTGCATCGCCGACGCCAGCAAGCTGGTGCCGGTACTCGGCGCCTTCCCGCTGCCGGTGGAAGTTATCCCCATGGCCCGCAGCCACGTCGCCCGTCAGTTGGTGAAACTGGGCGGCGATCCGGTGTATCGCGAAGGTGTGCTGACCGACAACGGCAACATCATCCTGGATGTCCACAACCTGCAGATCACCAACCCGGTTGAGCTGGAAAGCCAGATCAACGCCATTGTCGGCGTGGTCACCAACGGCTTGTTCGCCGCGCGTCCGGCGGATGTGCTGTTGCTGGGGACTGCTGAAGGGGTGAAGACGCTGCGGGCTGAATAAMTQDQLKQAVAQAAVDLILPKLDDKSIVGVGTGSTANCFIDALAQHKGAFDGAVASSEATAARLKGHGIPVYELNTVSDLEFYIDGADESDAHLNLIKGGGAALTREKIVAAVAKTFICIADASKLVPVLGAFPLPVEVIPMARSHVARQLVKLGGDPVYREGVLTDNGNIILDVHNLQITNPVELESQINAIVGVVTNGLFAARPADVLLLGTAEGVKTLRAEPGPT0017390_2647DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_RIBOSE_METABOLISM|DEGRADATION,PGPT0017390-rpiA-K01807NANA
D1-35_03126915yjiKCOG3204putative protein YjiKATGCGTCGACTTGTCCGTCCCAAGCCACTGTTCCTGCTGTTGCTGGCCATCGTGCTGATCGCCCTGATCGCGGCGGGCCAGTACCTGCGCCTGTTCGAACGAGCCTGGTTCAACATGAGCAGCCTGTGGCACCCCGTCAACGAGCAGGCAATCGCACTGGATCAGTACCAGGTCGCGCTTGAGGCGCAGGTGATCGAAGGGTTGGACGATGACGTTTCGGCGCTGACCTTCGATCCGATCCGCAAGACCCTGTTCACCGTGACCAACAAGAATCCCGAGCTGATCGAGCTGTCGCTGGACGGCAAGATCTTGCGGCGCATAGCCCTGGTCGGGTTTGGTGATTCGGAAGCGGTGGAATTCATCAGCGAGAATATCTATGTCATCACCGATGAGCGCCAACAACGGCTGATCAAGATCCATCTGGACGACGACACCCGGTTCCTGGACGCGGCCGAAGCCGAGCAGATCTCGCTCGGCGTGCACATGAGCAGCAACAAGGGTTTCGAAGGGCTGGCCTACGACTCCCTGGGCAAGCGGCTATTCGTGGCGAAGGAGCGCGACCCGATGCTGATCTACGAGGTCCACGGGTTTCCCCACCACAACCCGGAAAAATCCTATGCGGTGCACGTCGTCAACAATCCCAAGCGTGACGCCGGGCTCTTTGTGCGCGACCTTTCAAGCCTGCAATACGATGAGCGCAGCGGTCACCTGATGGCGCTGTCCGACGAGTCGCGGTTGATCATCGAGCTGGATATCAACGGCCGTCCGTTGAGCACGCTGTCGTTGAGCAAGGGCCGCAACGGCCTGCAGAAAACCGTCCCCCAGGCTGAAGGCCTGGCCATGGATGACGATGGCAACCTGTATGTGGTGAGTGAGCCGAATCTGTTTTACGTGTTCAAGAAGCAGCAGCCTTGAMRRLVRPKPLFLLLLAIVLIALIAAGQYLRLFERAWFNMSSLWHPVNEQAIALDQYQVALEAQVIEGLDDDVSALTFDPIRKTLFTVTNKNPELIELSLDGKILRRIALVGFGDSEAVEFISENIYVITDERQQRLIKIHLDDDTRFLDAAEAEQISLGVHMSSNKGFEGLAYDSLGKRLFVAKERDPMLIYEVHGFPHHNPEKSYAVHVVNNPKRDAGLFVRDLSSLQYDERSGHLMALSDESRLIIELDINGRPLSTLSLSKGRNGLQKTVPQAEGLAMDDDGNLYVVSEPNLFYVFKKQQPNANANANANA
D1-35_03127933hypothetical proteinATGGCCAAGACCCAAGCACTGCCCACCCCCAAAGCATCCCGTCGCTCTCGCTTCGCCCTGCCCTGGTATGTCTGGCTGCTGATCGCGGGCGCCAGCGCTTATGGCCTGGCATTCGCCATGCATTGGGACGACCGGGGCCTGCTTTGGGTGTCGGAGCGCTTCCAGAGCCAGGCCGAGCGTCGGGAAAGCATCTGGCTGCCTGATTACCACGCTGTCATTGACGCCAAGGCGCTCCCGGGAATGGAAGACGACGAAGCGTCCGACCTGACCTATAGCCCACAGACCAAGACCCTGTTCGCGGTGATGGGCAAAAATCCGTTCCTGGTGGAGCTGAACCTGCAGGGTGACGTATTGCGCAAGATGCCGCTGGTGGGCTGGGGCAACCCTGAAGGCGTGGCTTTCATGGAAAACGGCCTGCTGGCCATCACCGATGAACGCAAGCACACGCTATCGATCGTCCAGGTCGACGCCAATACCCGCGAGCTGAACATCAAGGACTTCCCCCAATATGACCTGGGCACGTCGAAGAACCAGAACAAGGGCTTCGAAGCCATCGTCTGGGACCCGAAGAATCAGCAACTGATCCTTGGCGAAGAGCGCCCACCGGCATTGTTCACCTGGAAAAGCGACGGGAGCCAGTTGCTCAAGGGCGACAAGCAGATCCATGTCAGCAACGAACTCGACCTGCGCAACCTGTCCGCCCTGGCCGTAGACCCGCGCACCGGCCACACGCTGGTGCTATCGGCCGACTCCCATTTATTGCTGGAACTGGACGAAGCAGGCGATCAGGTCAGCTTCATGACCCTGCTCGGCGGCTTCAACGGCCTGAAGGACACGATCCCTCGCGCCGAAGGCGTCACTGTCGATGAAGCCGGCACTCTCTACATCGTCAGTGAACCGAACCTGTTCTACCGTTTCGAAAAACAGCACTGAMAKTQALPTPKASRRSRFALPWYVWLLIAGASAYGLAFAMHWDDRGLLWVSERFQSQAERRESIWLPDYHAVIDAKALPGMEDDEASDLTYSPQTKTLFAVMGKNPFLVELNLQGDVLRKMPLVGWGNPEGVAFMENGLLAITDERKHTLSIVQVDANTRELNIKDFPQYDLGTSKNQNKGFEAIVWDPKNQQLILGEERPPALFTWKSDGSQLLKGDKQIHVSNELDLRNLSALAVDPRTGHTLVLSADSHLLLELDEAGDQVSFMTLLGGFNGLKDTIPRAEGVTVDEAGTLYIVSEPNLFYRFEKQHNANANANANA
D1-35_03128666ycgMCOG0179putative protein YcgMATGAGCTATCAGCACCAGTATGTCGACGGTACGCGTATTCATTTCCCGATCGGGAAAGTGGTGTGCATTGGCCGCAACTATGCCGAGCATGCAAAGGAACTGGATAATCCGGTGCCCACCGAGCCGTTGCTGTTCATCAAGCCAGGCAGCTGCGTGGTGCCGCTGGAAGGCGGTTTCAGCATTCCCACCGACCGCGGGTCGGTGCATTACGAGGCGGAAATCGCCGTGCTGATCGGCAAGCCGCTGTCCACCCGGCCCAGCGCTGAGGAAGTGCTGGACGCGATCTCCGGCTTCGCTCCGGCCCTGGACCTGACCCTGCGGGACAAGCAGGCCGAGCTCAAGGGCAAGGGGCTGCCCTGGGAAGTCGCCAAGTCTTTCGACGGCGCGGCGGTGATCGCCCCGTTCGTCTCGAAGGACACCTTCGCCGACCTGACCGACATCCCCGTTCGCCTGGTCATCAATGGCGAAGTGCGCCAGGACGGCAACAGCAGCCTGATGCTCAACCCCATCGTGCCGATGATCCAGTACATGGCCGGCTGTTTCTCGCTGCAAGCCGGCGACGTGATCCTGACCGGCACGCCGGCCGGCGTCGGGCCGTTGAACGTCGGTGACGAGCTGGTGCTGGAACTGCCGGGCGCGAGCCGCTTCGAGAGCAGTGTTCGTTAAMSYQHQYVDGTRIHFPIGKVVCIGRNYAEHAKELDNPVPTEPLLFIKPGSCVVPLEGGFSIPTDRGSVHYEAEIAVLIGKPLSTRPSAEEVLDAISGFAPALDLTLRDKQAELKGKGLPWEVAKSFDGAAVIAPFVSKDTFADLTDIPVRLVINGEVRQDGNSSLMLNPIVPMIQYMAGCFSLQAGDVILTGTPAGVGPLNVGDELVLELPGASRFESSVRPGPT0001625_435DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001625-ycgM-K01557NANA
D1-35_031291419COG0277putative FAD-linked oxidoreductaseATGAATTGTTCGAGAGTTCTGTCGATGACCAATCCTGCCGTGATAGATGAGCTGAAGACCCTGGTTGAGCCTGGCAAGGTCCTGACCGATGCCGACTCCCTGAATGCTTACGGCAAGGATTGGACCAAGCATTTCGCTCCGGCGCCGGTGGCCATCGTCTTTCCCAAGACCATCGAACAGGTCCAGGCCATCGTGCGCTGGGCCAATGCGCACAAGGTCGCGCTGGTCCCCTCGGGCGGACGTACCGGGCTGTCCGCCGCGGCCGTGGCGGCCAATGGCGAAGTCGTGGTGTCCTTCGACTACATGAACCAGATTCTCGACGTGAACCTGACCGACCGCACCGCCGTGTGCCAGCCGGGCGTGGTCACCGAACAACTGCAGAACAAGGCCGAGGAACATGGCCTGTACTACCCGGTGGATTTTGCTTCGGCCGGTTCCAGCCAGATTGGCGGCAATATCGGCACCAATGCCGGCGGGATCAAAGTCATTCGCTACGGCATGACGCGCAATTGGGTGGCGGGCATGAAAGTCGTCACCGGCAAGGGCGACGTGCTGGAGCTGAACAAGGACCTGATCAAGAACGCCACCGGCTACGATTTGCGCCAGCTGTTCATCGGCGCGGAGGGCACGCTTGGCTTCGTGGTCGAGGCCACCATGCGCCTGGATCGGGCACCGAAAAACCTCACCGCGATGGTGCTCGGCACGCCGGATTTCGATTCGATCATGCCGGTGCTGCATGCCTTCCAGGGCAAACTTGACCTGACCGCATTCGAATTTTTCTCAGACAAGGCCCTGGCCAAGGTCCTCGGTCGCGGCGACGTGCCGGCGCCGTTCGAGACCGACTGCCCGTTCTACGCCGTGCTGGAATTCGAGGCCACCACCGAAGAAGTCGCCAACCACGCGCTGGAAACCTTTGAGCACTGCGTCGAACAAGGCTGGGTGCTGGACGGCGTGATGAGCCAGAGCGAAACCCAGTTGCAGAACCTGTGGAAATTGCGCGAGTACATCTCCGAAACCATCTCGCACTGGACGCCGTACAAGAACGACATCTCGGTAACCGTCTCGAAGGTTCCGGCATTCTTGCGGGAAATCGATGCAATTGTCGGCGAACACTACCCGGACTTCGAAATCGTCTGGTTCGGCCACATCGGCGACGGCAACCTGCACCTGAACATCCTCAAGCCGGAAAACCTGAGCAAGGATGAGTTCTTCGCCAAGTGCGCGACGGTGAACAAATGGGTGTTCGAGACCGTCGAGAAGTACAACGGCTCGATTTCCGCCGAGCACGGCGTGGGCATGACCAAACGCGACTATCTGACCTACAGTCGCTCGCCGGTGGAGATCGAGTACATGAAAGCGGTAAAGGCAGTCTTCGACCCCAACGGCGTCATGAATCCGGGCAAGATCTTCGCGGTTTGAMNCSRVLSMTNPAVIDELKTLVEPGKVLTDADSLNAYGKDWTKHFAPAPVAIVFPKTIEQVQAIVRWANAHKVALVPSGGRTGLSAAAVAANGEVVVSFDYMNQILDVNLTDRTAVCQPGVVTEQLQNKAEEHGLYYPVDFASAGSSQIGGNIGTNAGGIKVIRYGMTRNWVAGMKVVTGKGDVLELNKDLIKNATGYDLRQLFIGAEGTLGFVVEATMRLDRAPKNLTAMVLGTPDFDSIMPVLHAFQGKLDLTAFEFFSDKALAKVLGRGDVPAPFETDCPFYAVLEFEATTEEVANHALETFEHCVEQGWVLDGVMSQSETQLQNLWKLREYISETISHWTPYKNDISVTVSKVPAFLREIDAIVGEHYPDFEIVWFGHIGDGNLHLNILKPENLSKDEFFAKCATVNKWVFETVEKYNGSISAEHGVGMTKRDYLTYSRSPVEIEYMKAVKAVFDPNGVMNPGKIFAVNANANANANA
D1-35_031301230serACOG0111D-3-phosphoglycerate dehydrogenaseATGAGCAAGACTTCTCTCGATAAGAGCAAGATCAAGTTCCTTCTTCTCGAAGGCGTCCACCAATCGGCTGTCGACGTCCTCAAGTCGGCGGGCTACACCAGCATCGAGTACATCACCAGCTCTCTGCCGGAAGCCCAGCTCAAGGAAAAGATCGCCGATGCTCACTTCATCGGTATTCGCTCCCGTACTCAACTGACCGAAGAGATCTTCGACCACGCCAAGAAGCTGGTCGCGGTCGGCTGCTTCTGCATCGGCACCAATCAGGTTGACCTCAACGCGGCCCGTGAGCGCGGTATCGCGGTGTTCAACGCGCCGTACTCCAACACCCGTTCCGTTGCCGAGCTGGTGCTGGCCGAGGCGATCCTGCTGCTGCGCGGCATCCCCGAGAAAAACGCTTCCTGCCACCGTGGCGGCTGGATCAAGAGCGCGGCCAACTCCTTCGAAATCCGGGGCAAGAAGCTGGGTATCGTCGGCTACGGCTCGATCGGCACCCAGTTGTCGGTACTCGCCGAGGGCCTTGGCATGCAGGTGTTCTTCTATGACACCGTGACCAAGCTGCCACTGGGCAACGCCACCCAGGTCAACGACCTGCACGAATTGTTGGGCATGTCCGACATCGTCACCCTGCACGTACCGGAAACCCCGGCCACCCAGTGGATGATCGGCGAGAAGGAAATCCGTGCCATCAAGAAAGGCGGGATCCTGATCAACGCCGCGCGTGGCACCGTGGTCAAGCTCGACGCCCTGGCCGAAGCGATCAAGGACAAGCACCTGATCGGCGCTGCCATCGACGTGTTCCCGGTAGAGCCGCGCTCCAACGACGACATCTTCGAGAGCCCGCTGCGTGGCCTGGACAACGTGATCCTGACACCGCACATCGGCGGGTCCACCGCTGAAGCCCAGGCCAACATCGGTCTGGAAGTGGCGGAGAAACTGGTCAAGTACAGCGACAACGGTACTTCGGTATCGTCGGTGAACTTCCCAGAAGTGGCCTTGCCCGCTCACCCTGGCAAGCACCGCCTGCTGCACATCCACGAGAACATCCCGGGTGTGATGAGCGAGATCAACAAGGTCTTCGCGGAAAACGGCATCAACATTTCCGGCCAGTTCCTGCAGACCAACGAGAAGGTCGGCTACGTCGTGATCGACGTCGATGCCGAATACTCGGACCTGGCGCAGGAGAAGCTGCAGCACATCAACGGCACCATTCGTTGCCGCGTGTTGTTCTAAMSKTSLDKSKIKFLLLEGVHQSAVDVLKSAGYTSIEYITSSLPEAQLKEKIADAHFIGIRSRTQLTEEIFDHAKKLVAVGCFCIGTNQVDLNAARERGIAVFNAPYSNTRSVAELVLAEAILLLRGIPEKNASCHRGGWIKSAANSFEIRGKKLGIVGYGSIGTQLSVLAEGLGMQVFFYDTVTKLPLGNATQVNDLHELLGMSDIVTLHVPETPATQWMIGEKEIRAIKKGGILINAARGTVVKLDALAEAIKDKHLIGAAIDVFPVEPRSNDDIFESPLRGLDNVILTPHIGGSTAEAQANIGLEVAEKLVKYSDNGTSVSSVNFPEVALPAHPGKHRLLHIHENIPGVMSEINKVFAENGINISGQFLQTNEKVGYVVIDVDAEYSDLAQEKLQHINGTIRCRVLFPGPT0009155_3878DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009155-serA-K00058NANA
D1-35_03131426hypothetical proteinATGAAAAGCTTTATGTCTCGTGCCGCGTTGGCTGGCCTGTTGTTGGGCACCTCGATGCTGGCAACAGCGGCGACCCCGGCCCCCAAGGGTGCAGAAGTGTTCATCGTTTCCCCGGAAGATGGCGCCACCGTCAGCCAGGAATTCAAGGTCAAGTTCGGCGTCAAGGATATCGCCCTGGCTCCGGCGGGCGATGTGACCAAGAACACTGGCCATCACCATTTGCTGATCGATGTGGACGACGTGCCGAAGGAAGGCGCGCCGATTCCGACCGACGCCCACCACATGCACTTCGGCAAGGCACAAACCGAGGCCACCATCAAACTGGCCCCGGGCAAGCACACCTTGCAATTGATCCTGGGCGACAGCGGCCATATGCCGTTCGACCCGTCTATCGTGTCCGAGAAAATCACAGTGAATGTGAAGTAAMKSFMSRAALAGLLLGTSMLATAATPAPKGAEVFIVSPEDGATVSQEFKVKFGVKDIALAPAGDVTKNTGHHHLLIDVDDVPKEGAPIPTDAHHMHFGKAQTEATIKLAPGKHTLQLILGDSGHMPFDPSIVSEKITVNVKNANANANANA
D1-35_03132567mltF_3Membrane-bound lytic murein transglycosylase FATGCGTTTCCTGCCTGGCCTGATCTGCCTGCTACCCCTTTTGAGCCCTTTGGCCCATGCCGAATTGATCGACGATATCAACGACCGGGGCGAGTTGCGCATCGCTCTTGAGGCCAACGCGGCGCCCTTCAACTTCAAGGAAGACGGCAAACTCACCGGCTTCGAAGTGGAGCTGGGCGAAATGCTCGCGAGCGAGCTCGATGTACGGGCCGATTTCGTTGTCACCGATGCCGAGGATTTGTTGGCCGGTGTGGAAACCGGCAAATACGACGTCGCCATCAATCACATAGCACTGACCCCGGAACTGGCGGATCGTTTCGATACCAGTACCCCCTACAGCCAACCCGATGCGCAGTTGCTGGCGAGCAAGGACGAGTCGCAACGTCCGCTGGTCATGGCGCAGTCGTTCCAGGCGCAGGAAAAGAAAGGCCCGCCGCCCAGCCTGGTGATTCCGTTCCAGAAGGACAACCCGGCGTTCAAGGCCAGCCTGGACAATGCCCTGGCGCGGATCAAGGAGGATGGGCGGCTGGAGCAGTTGTCGCAGAAGTGGTTGAAACAGCCGGAGTGAMRFLPGLICLLPLLSPLAHAELIDDINDRGELRIALEANAAPFNFKEDGKLTGFEVELGEMLASELDVRADFVVTDAEDLLAGVETGKYDVAINHIALTPELADRFDTSTPYSQPDAQLLASKDESQRPLVMAQSFQAQEKKGPPPSLVIPFQKDNPAFKASLDNALARIKEDGRLEQLSQKWLKQPEPGPT0015635_1748DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_CYSTEINE_TRANSPORT,PGPT0015635-fliY|tcyA|yckK-K02424NANA
D1-35_03133630hypothetical proteinATGAAACACACTGCCGAAGACCTGCACGTCATCACCGCCACGACCCTGGGTCATTACAACGCCGTGGCCGAGAATTTTCGCGAAGGCACCCGCGATCATGATGTCAGCCAGAACATCGATGCGTTGCTGCGCCACATCCGGGGCCAGGCGCCGTTTCATATTCTCGACTTCGGCTGCGGTCCGGGGCGGGATTTGCGTACGTTTACCGGCATGGGCCATGTCGCGGTCGGCCTGGACGGTTCCGAAGAATTCGCCCGGATGGCCCGCCAGGACAGCGGGTGCGAGGTGTGGCAACAGGACTTCCTGAAACTCGACCTGCCGGATGGACGCTTTGATGGGATTTTTGCCAACGCGGTGCTGTTTCATATTCCAGTCCAGGAACTGCCCCGCGTGCTCAGGCAACTGCACGCCACGCTAAAGGCTGGAGGCGTCCTGTTCAGTTCCAATCCACGGGGCGAAAACCAGGAAGGCTGGAACGGCCAGCGCTTCGGCGCCTACCACGACCTCGACGCCTGGCGCAGGCTGCTGGGCGCGGCAGGTTTTGTGGAGCTGGAGCATTATTACCGGCCAGCGGGGCTGCCACGGGAACAGCAGCCTTGGTTGGCGAGCGTGTGGCGTAAACCTGCTTAGMKHTAEDLHVITATTLGHYNAVAENFREGTRDHDVSQNIDALLRHIRGQAPFHILDFGCGPGRDLRTFTGMGHVAVGLDGSEEFARMARQDSGCEVWQQDFLKLDLPDGRFDGIFANAVLFHIPVQELPRVLRQLHATLKAGGVLFSSNPRGENQEGWNGQRFGAYHDLDAWRRLLGAAGFVELEHYYRPAGLPREQQPWLASVWRKPANANANANANA
D1-35_03134645metICOG2011D-methionine transport system permease protein MetIATGTGGCTTGATCGCTTATTGCAGGGCTTCATCGACACGTTCCTGATGGTCGGTGTGTCGTCATTGATCGCGTTGCTGGCGGGCATTCCGCTGGCGGTTATCCTGGTCACCAGCGGCAAGGGCGGCATTTACGAGGCGCCGGCGCTGAACCGTGCCTTGGGCGCGTTCGTGAACCTGTTTCGCTCGATCCCGTTCCTGATCCTGATGGTGGCGCTGATTCCGTTCACCCGGCTGATTGTCGGCACGACCTACGGCGTGTGGGCTGCGGTGGTGCCGCTGACCATCGCCGCGACGCCGTTTTTTGCCCGCATCGCCGAAGTCAGCCTGCGGGAAGTCGACCACGGCCTGATCGAAGCGGCCCAGGCCATGGGTTGCCGGCGCTGGCATATCGTCTGGCACGTATTGCTGCCCGAGGCGCTGCCAGGCATCGTCGGCGGCTTTACCATCACTTTGGTGACCATGATCAATTCCTCGGCCATGGCCGGGGCGATCGGCGCCGGTGGCCTGGGTGACATCGCCTACCGTTACGGCTACCAGCGGTTCGACAGCCAGATCATGCTCACGGTGATCGTGCTGCTGGTGGCGCTGGTCGCGGTGATCCAGTTGGGGGGCGATCGTCTGGCGCGCGGCCTGAACAAACGCTGAMWLDRLLQGFIDTFLMVGVSSLIALLAGIPLAVILVTSGKGGIYEAPALNRALGAFVNLFRSIPFLILMVALIPFTRLIVGTTYGVWAAVVPLTIAATPFFARIAEVSLREVDHGLIEAAQAMGCRRWHIVWHVLLPEALPGIVGGFTITLVTMINSSAMAGAIGAGGLGDIAYRYGYQRFDSQIMLTVIVLLVALVAVIQLGGDRLARGLNKRPGPT0020515_3795DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020515-metI-K02072NANA
D1-35_031351125metN_2COG1135Methionine import ATP-binding protein MetNATGAATGCCGTCAACGCTTTGCTTGAACAGCAAACGCCCACGCGCCGAAGCGCCGAAAGCACCGAGCTGCACCCACAGCTCAACCGGGCCCACGTGCGTTTTGTCGGCCTGGGCAAAACCTACCTGGGCGCCCAAGGGCCGGTGAACGCGCTGCACGGCATCGACCTGGCGATCCAGCGCGGCGAGGTGTTCGGCATCATCGGCCGCAGCGGCGCCGGCAAGTCATCACTGATTCGCACCATCAACCGCCTCGAGCAACCCACCAGCGGTCGGGTGCTGATCGATCAGGTGGACATCGGCGAGTTCGATGAGGATCGCCTGGTCGAGCTGCGCCGGCGCATCGGCATGATCTTCCAGCATTTCAACCTGATGTCGGCCAAGACCGTCTGGCAGAACGTCGAGCTGCCGTTGAAAGTCGCCGGGGTGCCCAAGGAGCAACGCCAGCGCAAGGTCCGCGAGCTGCTCGAACTGGTGGGTCTGGATGGCAAGCACAAAGCCTATCCGGCACAACTCTCAGGCGGGCAGAAGCAGCGGGTCGGCATCGCCCGGGCGCTGGTCCACGACCCGCAGATCCTGCTGTGTGACGAGGCCACTTCGGCGCTGGATCCGGAGACCACTCAGTCGATCCTCCGCCTGCTGCGGGAGATCAACCAGCGGCTGGGCCTGACGATCGTGCTGATTACCCACGAGATGGCGGTGATCCGCGAAGTCTGCGACCGGGTAGTGGTGCTGGAACAAGGGCGGATCGTTGAGCAGGGGCCGGTCTGGGAAGTCTTCGGCAACCCGCAACATGAGGTCAGCCGGACGCTGCTGGCGCCGTTGCAGCACGCGCTGCCTGAAGAACTGCAGAACCGTTTGCAGCCGCAACCGGCCTCGGCGGACGCCGCCACGGTGCTGCGCCTGCAATTCACCGGTACCGCCCGCGACGAACCGGACCTCGCGGCCCTGTTCGGCGCCCTCGGTGGCCGGGTGCGACTGTTGCACGGCGGCATCGAACGGATCCAGGGACATGGGCTGGGACAATTACTGCTGGCCGTGAGCGGCTCCTCACTGGGCGCCGAGGAGTTGCGTCAGCGGGCAGGTGCATGGGCGCAACAGGTGGAGGTGCTGGGTTATGTGGCTTGAMNAVNALLEQQTPTRRSAESTELHPQLNRAHVRFVGLGKTYLGAQGPVNALHGIDLAIQRGEVFGIIGRSGAGKSSLIRTINRLEQPTSGRVLIDQVDIGEFDEDRLVELRRRIGMIFQHFNLMSAKTVWQNVELPLKVAGVPKEQRQRKVRELLELVGLDGKHKAYPAQLSGGQKQRVGIARALVHDPQILLCDEATSALDPETTQSILRLLREINQRLGLTIVLITHEMAVIREVCDRVVVLEQGRIVEQGPVWEVFGNPQHEVSRTLLAPLQHALPEELQNRLQPQPASADAATVLRLQFTGTARDEPDLAALFGALGGRVRLLHGGIERIQGHGLGQLLLAVSGSSLGAEELRQRAGAWAQQVEVLGYVAPGPT0020520_249DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020520-metN-K02071NANA
D1-35_03136810metQ_3COG1464D-methionine-binding lipoprotein MetQATGACCAAGCAACTCCTGACCCTGCCAGTCAAAGCACTGGCCCTGGCCCTCGGCCTGTTCAGCTCAGCGCTGTTCGCCGCCGACGCCCCTTTGAAAATCGGCACCACCGCCGCCTTCGCCATTCCTCTGGAGGTCGCTGTCGAAGAGGCCGGCAAACAAGGCTTGAAGGTCGAGCTGGTGGAATTCAGTGACTGGATCGCGCCTAACGTCAGCCTCGCTTCGGGTGACATTGACGTGAATTATTTCCAGCACATTCCCTTCCTGGAAAACGCCAAGGCCGCCGCTGGGTTCGACCTGGTGCCGTTCGCGCCGGGCATCATCAACAACGTTGGCCTCTACTCGAAAAAATACAAAAGCTTCGACGAGCTGCCCGAAGGCGCGAGCGTCGCCATTGCCAACGACCCGATCAACAGCGGTCGCGGCTTGCAACTGCTGGCCAAGGCCGGGCTGATCCAGCTCAAGCCGGGCGTCGGCTACAAGGCCACCGAAGACGACATTGTCGCCAACCCGAAGAAGATCAAGATCCTGCAGGTCGAAGCCGTGCAACTGGTGCGCGCCTATGAAGACGCCGATCTGGTGCAGGGCTACCCGGCCTATATCCGCCTGGCGAATACCTTCGACGCGACGTCCGCGTTGCTGTTCGACGGCCTCGATCACAAGGAATACGTCATCCAGTTCGTGATCCAGCCCAAGAGCAAAAGCGACCCGCGGCTGATCAAGTTCGTCGATATCTATCAGCACTCCCCGGCCGTGCGCGCAGCCTTGGACAAGGCCCATGGCAAGCTCTATCAAGCCGGCTGGGAAAGCTGAMTKQLLTLPVKALALALGLFSSALFAADAPLKIGTTAAFAIPLEVAVEEAGKQGLKVELVEFSDWIAPNVSLASGDIDVNYFQHIPFLENAKAAAGFDLVPFAPGIINNVGLYSKKYKSFDELPEGASVAIANDPINSGRGLQLLAKAGLIQLKPGVGYKATEDDIVANPKKIKILQVEAVQLVRAYEDADLVQGYPAYIRLANTFDATSALLFDGLDHKEYVIQFVIQPKSKSDPRLIKFVDIYQHSPAVRAALDKAHGKLYQAGWESPGPT0020510_4237DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020510-metQ-K02073NANA
D1-35_031371359dmoA_2Dimethyl-sulfide monooxygenaseATGGCCCTCGGCAAGAAAAAAATCCTCCTCAACGCGTTCAACATGAACTGCATCGGCCATATCAACCACGGCTTGTGGACGCACCCGCAGGACATCTCGACCCAGTACAACACGCTCGAATACTGGACCGGTCTGGCCCAGCTGCTGGAGCGCGGTCTGTTCGACGGGTTGTTCATTGCCGATATCGTCGGGGTATATGACGTTTACCAGCAATCGGTGGAGGTCACGCTGAAAGAGTCGATCCAGCTGCCGGTCAACGACCCATTGCTGCTGGTCTCGGCAATGGCTGCCGTCACCCGCAACCTCGGCTTCGGCCTCACCGCCAACCTCACCTATGAGCCGCCGTACCTGTTCGCCCGACGCATGAGCACGCTGGATCACCTGAGCCGTGGCCGGGTTGGCTGGAACATTGTCACCGGTTACCTGGACAGCGCCGCGAAAGCCATGGGCCTTGGCGCGCAGGTCGAGCACGACCGCCGTTATGACCAGGCCGACGAGTACCTGGAGGTGCTCTATAAACTCTGGGAGGGCAGCTGGGAAGACGACGCGGTGCTCAACGATCGCCAGCAACGGATCTACGCCCAGCCAGAAAAAGTGCACAAGGTCAGGCACCAGGGCGAGTTTTATCAGGTCGAGGGTTATCACCTCTGCGAGCCATCGCCCCAACGCACACCGGTGCTGTTCCAGGCCGGCAGCTCCGAGCGCGGCCTGCTGTTCGCCGGGCGCCATGCCGAGTGCGTGTTCATCAGCGGCCAGAACAAGCCGGCGACCAGGGCCCAGGTGGACAAGGTCCGCGCCAGCGCCGTCGCGGCCGGACGCAATGCCGAGGACATCAAGGTGTTCATGGGCCTGAACGTGATTGTCGGCGAGACCGAAGCAGCGGCCTGGGCCAAGCATGCCGAGTACCTGGGGTATGCCAGCGCCGAGGCCGGCGTGGCGCATTTCTCCGCGTCGACGGGCATCGATTTTTCCGAGTACGAACTGGACGAACCGATCCAGTACGTGAAGAGCAACGCCATCCAGTCCGCGACCAAGACCTTGCAGAACAACGACTGGACCCGACGCAAGCTTCTGGAGCAACACGCCTTGGGCGGTCGCTACATCACCGTTGTCGGCTCGCCCGAACAGGTCGCCGACGAGCTGGAATCGTGGATCGCCGAGACCGGCCTCGACGGCTTCAACCTGACCCGCATCGTCACGCCACAAAGCTACGTGGATTTCATCGACCTGGTGATTCCCGAGCTGCAGCGCCGCGGGTCGTACAAGACCGAATACGGCGGGGGGACGTTGCGGGAGAAGCTGTTTCACGCGCAAGCGAGACTACCCGGCCAACACACTGGCTCGAACTACCGGCGATGAMALGKKKILLNAFNMNCIGHINHGLWTHPQDISTQYNTLEYWTGLAQLLERGLFDGLFIADIVGVYDVYQQSVEVTLKESIQLPVNDPLLLVSAMAAVTRNLGFGLTANLTYEPPYLFARRMSTLDHLSRGRVGWNIVTGYLDSAAKAMGLGAQVEHDRRYDQADEYLEVLYKLWEGSWEDDAVLNDRQQRIYAQPEKVHKVRHQGEFYQVEGYHLCEPSPQRTPVLFQAGSSERGLLFAGRHAECVFISGQNKPATRAQVDKVRASAVAAGRNAEDIKVFMGLNVIVGETEAAAWAKHAEYLGYASAEAGVAHFSASTGIDFSEYELDEPIQYVKSNAIQSATKTLQNNDWTRRKLLEQHALGGRYITVVGSPEQVADELESWIAETGLDGFNLTRIVTPQSYVDFIDLVIPELQRRGSYKTEYGGGTLREKLFHAQARLPGQHTGSNYRRPGPT0003040_11DIRECT EFFECTBIO-FERTILIZATIONSULFUR_ASSIMILATION|MINERALIZATIONS-ASSSIMILATION-SULFUR_METABOLISMS-METABOLISM-ALKANESULFONATE_DEGRADATION,PGPT0003040-ssuD-K04091NANA
D1-35_031381194sfnCputative FMNH2-dependent monooxygenase SfnCATGACGCTTTCCCAACACGTCGCGGTGATCACCAGCGATGAACAAGCCCTCATCGTCGCCAGCGACCTGGCCGATGACTTCAAGCGCGACAGCGCCCTGCGCGATCGCGAACGGCGCCTGCCGCACCCGGAGCTGGAAGCCTTCACCCGCTCCGGCCTGTGGGGCATCAGCGTGCCCAAGGCCTACGGCGGCGCCGGCGTTTCCAACGTCACGCTGGCGAAGGTCGTGGCGCTGATCGCCCAGGCCGATGGCTCGCTCGGGCAAATCCCCCAGAACCATTACTACGCCCTGGAAGTGCTGCGGGTAAACGGTAGCGAAGCCCAGAAGCAACGGCTGTATGCCGAAGTGCTGGGCGGTCAGCGGTTCGGCAACGCCCTGGCGGAGCTGGGAACCAGGACTGCTCACGAGCGCACCACCCAACTGCTTCGCGATGGCGACGGGTACCGCATCAACGGCCGCAAGTTTTACGCCACCGGGGCGATCTATGCCCAGCGCATCCCTACTTCGGTGGTGGACGAGAACGGCGTGCAGCAGTTGGCGTTCGTTCCGCGCAGCAGCCAGGGCCTGACGGTTATCGACGACTGGAGCGGTTTCGGCCAGCGCACCACGGGCAGCGGCTCGGTAGTGTTCGAAGCCGTGCATGTCGCCGCCGAAGACGTCGTGCCGTTCCAGAGCGCCTTCGAACGCCCTACTCCGGTGGGCCCGTTGGCGCAGATTCTCCATGCCGCCATCGACACTGGCATTGCCCGCGCCGCCTATGAAGATGCGTTGCATTTTGTCCGCAGCAAAACCCGGCCGTGGATCGACGCCATCAGCGATGTCGCCACCCAGGATCCGCATACGCTCAAGAGCTTCGGTCACCTGGGCGTACGCCTGCACGCCGCCGAAGCCTTGCTGGAGCGCGCCGGCGAATTCCTCGACCGCGCCCAGGCCGACAGCAACGCCGAAACGGTGGCGGCGGCCTCGATTGCCGTGGCCGAAGCCCGGGCCATCAGCACCGAAATCTCCCTGGCCGCCGGCAGCACGCTGTTCGAACTGGCCGGCAGCCAGGCGACCCTGGCCGAACATGGCCTGGATCGTCACTGGCGCAACGCCCGGGTGCATACGCTGCATGACCCGGTGCGCTGGAAATATCACGCGGTCGGCAATTTCTACCTCAACGACGAAAAACCACCGTTGCGAGGGACCATCTGAMTLSQHVAVITSDEQALIVASDLADDFKRDSALRDRERRLPHPELEAFTRSGLWGISVPKAYGGAGVSNVTLAKVVALIAQADGSLGQIPQNHYYALEVLRVNGSEAQKQRLYAEVLGGQRFGNALAELGTRTAHERTTQLLRDGDGYRINGRKFYATGAIYAQRIPTSVVDENGVQQLAFVPRSSQGLTVIDDWSGFGQRTTGSGSVVFEAVHVAAEDVVPFQSAFERPTPVGPLAQILHAAIDTGIARAAYEDALHFVRSKTRPWIDAISDVATQDPHTLKSFGHLGVRLHAAEALLERAGEFLDRAQADSNAETVAAASIAVAEARAISTEISLAAGSTLFELAGSQATLAEHGLDRHWRNARVHTLHDPVRWKYHAVGNFYLNDEKPPLRGTINANANANANA
D1-35_031391242soxC_2Dibenzothiophene desulfurization enzyme CATGTCCGATCTGGCGCAAGCAAAGGTCCATAGCGACCTGGATGTCGCTCCATTGTTATTGCCGGCACAGGTGCTGCGCACCGATGCCGAGGCAATCAAGGCCGCGCATGAACTCGCACAGGCTGCTCGCCAGCAGGCCGCACGCCGCGATCAGCAGCGCAAGCTGCCCTGGGCTGAAATCGAGCAATTCACCCGCAGCGGGCTTGGCAGCATTGCCGTTCCTCGTGGGTACGGCGGGCCGCAAGTCTCTTCAGTTACCATCGCCGAAGTGTTCGCGATCATTTCCGCAGCCGATCCGGCCCTCGGGCAGATTCCGCAGAACCAGTTCGGCGTGCTCCAGCTGATTCTCGCCACGGGCACCGAACGGCAAAAGAAAATTCTCCTCCAGAGCGTGCTCGAAGGCTGGCGCATCGGCAACGCCGGGCCGGAGCGCGGCACCCGCAACACCCTGGCCCTCAAGACGCGGATCACCGCCGATGGCGATGGCTTCGTCATCAATGGACAGAAGTTCTACTCCACCGGCGCCCTGTTCGCCCACTGGGTCGCCGTGAAGGCATTGAATGACGAAGGTCGCCAGGTGCTGGCGTTCGTCCGGCGCGGCACCCCGGGCCTGCGCATCGTCGACGACTGGTCGGGCTTCGGCCAGCGCACCACGGCCAGCGGCACCGTGCTGCTGAACAATGTGCGGGTCGACGCCGAACTGGTCCTGGACAACTGGCGCATCAACGAAGCGCCAAACGTGCAAGGCGCCTTCTCGCAGCTGATCCAGGCGGCGATTGACCTGGGCATCGCCCGCGGCGCTATCGATGACGCTATCGCCTTCGTTCGCGAACGCGCCCGGCCATGGATCGATGCCAAGGTCGAGCGGGCCAGCGACGATCTGTACGTGATCGCCGACGTCGGCAAGCTGAAAATCGAACTGCATGCCGCCGAGGCTCTGTTGCGCAAGGCGGGGCATGTACTGGACCAGGTCAACGCCGCGCCGATCACGGCACAGTCCGCCGCCCGCGCTTCGATAGCCGTCGCCGAAGCCAAGGTGCTGACCACCGAAATCGCCCTGCAAGCCAGCGAAAAACTCTTCGAGCTGGCCGGCAGCCGCGCCACCCTTGCCGAGTTCAACCTCGACCGCCACTGGCGCAACGCGCGGGTCCACACCCTGCACGACCCGGTGCGCTGGAAATACCACGCAATCGGCGACTACCACCTGAACGGGACCTTGCCCGCCCGACATTCCTGGATCTGAMSDLAQAKVHSDLDVAPLLLPAQVLRTDAEAIKAAHELAQAARQQAARRDQQRKLPWAEIEQFTRSGLGSIAVPRGYGGPQVSSVTIAEVFAIISAADPALGQIPQNQFGVLQLILATGTERQKKILLQSVLEGWRIGNAGPERGTRNTLALKTRITADGDGFVINGQKFYSTGALFAHWVAVKALNDEGRQVLAFVRRGTPGLRIVDDWSGFGQRTTASGTVLLNNVRVDAELVLDNWRINEAPNVQGAFSQLIQAAIDLGIARGAIDDAIAFVRERARPWIDAKVERASDDLYVIADVGKLKIELHAAEALLRKAGHVLDQVNAAPITAQSAARASIAVAEAKVLTTEIALQASEKLFELAGSRATLAEFNLDRHWRNARVHTLHDPVRWKYHAIGDYHLNGTLPARHSWINANANANANA
D1-35_03140750hypothetical proteinATGACATGTACGTCACCGATCCTCGAACTGGCCGCGCCCGCGCTGGCCAATACCCTGCCTACCGGTATCAACATCACCAGTGCCGCTCGGCTGGAAGTGCTCATCACACCTTATTCCGGCATGGACGCGGGCGATCTGGTCGAACTGTTCTGGGATAACTGCTACGTCGGCTCCCGCCAGGTATCCGAGGCGGATACCCATGGCGGCATCACGTTGCGGATACCGGAAAGCTTCGTCGTCAACGGGACGTCATGCATCCATTATCGCGTCATGCGGGTCGGGCGTGGGCCGGCGCTGTCAGCCCCGCAACGGGTGCAAGTCAAACTCGACTGCCCCGGAGGTCGGCCCTCGACCTTGATCGGCGATGAAAACCAGAGCCTGGCACCGGTGCGTATCCCCCAGGCCATCCGTCGCCAAGGCGTCAATCCGAATCAGATCAAGCGTGGCGTACCGCTGACCATCGAGCCCTACCTGAACATGGCCGCCGACGATGCGATCACCGTGCGCTGGGGCGACGTACGCATGGACCTGCCTCGGATCAAACCTTGCGAGGTGGGCCAGCCGATCCATGTCTGGGTGCCACCGGAAATAATCACCGAAGCCGGCGAAGACCTGCGCCTGGAAGTGACCTATTGCATCCTTGATCGTGTAGGCAACACCTCCCATTGGGCACCGCCACGGACATTGAAGATCGGTTGCGCGAATGCGAATCTGAAGAGGCCCGTCCAAAACCTCGTTTATGGCCGTTGAMTCTSPILELAAPALANTLPTGINITSAARLEVLITPYSGMDAGDLVELFWDNCYVGSRQVSEADTHGGITLRIPESFVVNGTSCIHYRVMRVGRGPALSAPQRVQVKLDCPGGRPSTLIGDENQSLAPVRIPQAIRRQGVNPNQIKRGVPLTIEPYLNMAADDAITVRWGDVRMDLPRIKPCEVGQPIHVWVPPEIITEAGEDLRLEVTYCILDRVGNTSHWAPPRTLKIGCANANLKRPVQNLVYGRNANANANANA
D1-35_03141759tcyCCOG1126L-cystine import ATP-binding protein TcyCATGATTGTCGTGGAAAAACTGACAAAGCAGTTCAAGGGTCAGGTAGTGCTCAACGGCATCGACCTGAAGATCGAGGAAGGCGAAGTGGTAGCGATCATCGGCCCCAGCGGCTCGGGCAAGACCACCTTCCTGCGCTGCCTGAACTTCCTCGAAGAACCCAGCAGTGGCCGGATCAAGGTCGGCGACATCGAGATCGATGGCAGCCGCCCGCTGAACCAGCAACAGGGCCTGGTCAGGCGTTTGCGTCAGCAGGTAGGGTTCGTATTCCAGAATTTCAACCTGTTTCCCCATCGCACCGCATTGGAAAATGTCACCGAAGGTCCCCAGGTGGTGAAAAAAATTCCCCGTGCCGAAGCCGAAGCCCTGGGCCGCAAGCTCCTGGCCAAGGTCGGGCTGGCCGGCAAGGAGGACGCCTACCCACGGCGCCTGTCCGGCGGCCAGCAGCAGCGCGTGGCAATTGCCCGGGCGCTCGCGATGGAGCCGGCGGTGATCCTGTTCGACGAGCCGACCTCGGCACTCGACCCCGAGCTGGTGGGCGAAGTACTGGCGACCATTCGCGGCCTGGCCGAAGAAAAACGCACCATGGTGATCGTCACCCATGAAATGGGCTTCGCCCGGGACGTGGCCAATCGCGTGGTGTTCTTCGATAAAGGTGTGATCGTCGAGCAAGGGGAAGCCAAGGCTTTGTTCGCGGCCCCTAAAGAAGAGCGTACTCGACAATTCCTCAGCAAGTTCCTCTCCGCACACGCCGCGCAATAAMIVVEKLTKQFKGQVVLNGIDLKIEEGEVVAIIGPSGSGKTTFLRCLNFLEEPSSGRIKVGDIEIDGSRPLNQQQGLVRRLRQQVGFVFQNFNLFPHRTALENVTEGPQVVKKIPRAEAEALGRKLLAKVGLAGKEDAYPRRLSGGQQQRVAIARALAMEPAVILFDEPTSALDPELVGEVLATIRGLAEEKRTMVIVTHEMGFARDVANRVVFFDKGVIVEQGEAKALFAAPKEERTRQFLSKFLSAHAAQPGPT0020720_317DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_CYSTEINE_TRANSPORT,PGPT0020720-tcyC|yecC-K10010NANA
D1-35_03142666yecS_4COG0765L-cystine transport system permease protein YecSATGGAAGCAGCTCTTCAACTCGCGCTGGACTCCACGCCCTTTTTGCTCAAGGGCGCGTATTACACGGTCATCCTCAGCCTGGGCGGCATGTTCTTCGGCTTGCTGCTCGGGTTTGGCCTGGCGCTGATGCGTTTGTCGCGCTTCAAACCGGTGAACTGGATCGCCCGCATCTACGTGTCGTTCTTTCGCGGCACGCCGTTGCTGGTGCAGTTGTTCGTGATCTATTACGGCTTGCCGCAACTGGGCATCGAGCTGGACCCACTGCCGGCGGCACTGATCGGTTTTTCGCTGAACATGGCGGCCTACGCCTGCGAAATCCTGCGGGCCGCGATCAGCTCCATCGAACGCGGCCAGTGGGAAGCGGCGGCCAGTATCGGCATGACCCGCGCGCAGACCCTGCGTCGGGCCATCCTGCCGCAAGCCGCACGCACAGCCCTGCCACCGTTGGGCAACAGCTTCATCTCCCTGGTCAAGGACACTGCATTGGCGGCGACCATCCAGGTACCGGAGCTGTTCCGCCAAGCGCAGCTGATCACCGCCAGAACCTTCGAAATCTTCACCATGTACCTTGCCGCCGCGCTGATCTATTGGGTTCTTGCCACCGTGCTTTCGCACTTGCAGAACGTCTTGGAAGCCCGGGTCAATCGGCATGACCAGGAGTCCTGAMEAALQLALDSTPFLLKGAYYTVILSLGGMFFGLLLGFGLALMRLSRFKPVNWIARIYVSFFRGTPLLVQLFVIYYGLPQLGIELDPLPAALIGFSLNMAAYACEILRAAISSIERGQWEAAASIGMTRAQTLRRAILPQAARTALPPLGNSFISLVKDTALAATIQVPELFRQAQLITARTFEIFTMYLAAALIYWVLATVLSHLQNVLEARVNRHDQESPGPT0020715_1113DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_CYSTEINE_TRANSPORT,PGPT0020715-tcyB|yecS-K10009NANA
D1-35_03143801fliY_1COG0834L-cystine-binding protein FliYATGAATTTTTCCGCATTACGTCGCAACCTGCTGGTGGGTTCGCTGGGCCTGGCATTGAGCGCCGGGCTGATGGGGCAAGCGGTTGCCGGTGAGCAGCTGCAAAAAATCAAGGACGCTGGTGAGATCAAGATCGGCCTGGAAGGCACTTATCCACCGTTCAGTTTTGTTGATGACAGCGGCAAACTGACTGGCTTCGAAGTGGAATTTTCCGAAGCCCTGGCCAAGGAACTGGGGGTCAAGGTCAAGCTGCAGACGACCCCATGGGCCGGTATCCTCGCCGCCCTGGAATCCAAGCGTCTTGACGCCGTGGTGAACCAGGTGACCATCTCCGAAGAGCGCAAGAAAAAGTACGACTTCTCCGAGCCGTACACTGTTTCCGGGATCCAGGCGCTGGTACTGAGCAAAAAAGCCGACGAACTGAACATCAAGAAGGCCGCTGACCTGGACGGCAAAAAAGTCGGCGTGGGCCTGGGCACCAACTATGAGCAGTGGGTCAAGGCAGAAGTACCGGGCGCCCAGGTCAAGACCTACGACGATGATCCAACCAAGTTCCAGGACCTGCGTGTCGGCCGCATCGATACCATTCTGATTGACCGCCTGGCCGCGCTGGAATACGCCAAGAAAGCCAAGGACACCACCGTCACCAGCGAAGCCTTTTCTCGCCAGGAGTCTGGCATTGCCCTGCGCAAAGGCGAGCCCGAGCTGCTGGCAGCCGTGAACAAAGCCATCGAAAAACTGCGCGCCGACGGCACGCTGAAAAAGCTCTCGGAAAAATACTTCAGCGCTGACGTCACTCAATAAMNFSALRRNLLVGSLGLALSAGLMGQAVAGEQLQKIKDAGEIKIGLEGTYPPFSFVDDSGKLTGFEVEFSEALAKELGVKVKLQTTPWAGILAALESKRLDAVVNQVTISEERKKKYDFSEPYTVSGIQALVLSKKADELNIKKAADLDGKKVGVGLGTNYEQWVKAEVPGAQVKTYDDDPTKFQDLRVGRIDTILIDRLAALEYAKKAKDTTVTSEAFSRQESGIALRKGEPELLAAVNKAIEKLRADGTLKKLSEKYFSADVTQPGPT0015635_855DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_CYSTEINE_TRANSPORT,PGPT0015635-fliY|tcyA|yckK-K02424NANA
D1-35_031441068dcyDCOG2515D-cysteine desulfhydraseATGCCGGTTGCCCGTGAATACTCAGCTGCCTATAGTCCGGATATCGCTTACAGCCAGTACGGACTCATGATCAAAGAACAGTTGTCTCGCTTCCATCGTCTCGACCTGCTCAGCCATCCGACGCCTCTGGAAAAACTCGACCGTCTCTCCGCCTGGCTCGGTCGCGACATCTACGTCAAGCGCGACGACCTGACGCCTCTGGCACTGGGCGGCAACAAGTTGCGCAAGCTTGAATACCTTGCCGCCGACGCCCTGGCCCAAGGCGCCGACACGCTCGTCACAGCCGGCGCGATCCAGTCCAACCATGTCCGTCAGACCGCTGCCCTGGCCGCGAAGCTGGGCCTGGGTTGTGTGGCGTTGCTGGAAAACCCCATCGGCACCGAGGAAAGCAATTACCTGGGCAACGGTAATCGGCTGTTGCTGGAGCTGTTCGACGCCAAGGTCGAACTTGTCGAAAACCTGGACAACGCAGACGAACAGTTGCAGGCCCTTGCCGGCCGCCTGCGTAGCAACGGGAAAAAACCTTACCTGGTGCCGATTGGCGGGTCGAATGCCCTGGGCGCCTTGGGCTATGTGCGCGCGGGCCTGGAGTTGGCCGAACAGATCAAGGACACCGGGCTTGAATTCGCCGCCGTGGTGCTGGCCTCGGGCAGTGCCGGCACGCATGGCGGCCTGGCGCTGGCACTGAGCGAAACCCTGCCGGACCTTCCCGTGATTGGCGTGACGGTTTCACGCAGCGAGGAAGACCAGTTTCCGAAAGTCCAGGGGCTCGCCGAACGTACGGCGCAGTTGCTGGACATGGCCCTGCCGCCGGCCTTCAAGGTGAACCTGTGGGACGAGTACTTCGCCCCCCGCTACGGCGAGCCCAACGCCGGTACGCTGGCGGCGGTCAAGTTGCTGGCGAGCCAGGAAGGCCTGCTGCTCGATCCGGTCTATACCGGCAAGGCCATGGCCGGGCTGCTCGACGGCATCGGTCGCGACCGCTTTGAAAACGGCCCGATCATTTTCCTGCATACCGGCGGTGCACCGGCGCTGTTTGCCTATGACTCGGTGTTCCAGGCTCGGTAAMPVAREYSAAYSPDIAYSQYGLMIKEQLSRFHRLDLLSHPTPLEKLDRLSAWLGRDIYVKRDDLTPLALGGNKLRKLEYLAADALAQGADTLVTAGAIQSNHVRQTAALAAKLGLGCVALLENPIGTEESNYLGNGNRLLLELFDAKVELVENLDNADEQLQALAGRLRSNGKKPYLVPIGGSNALGALGYVRAGLELAEQIKDTGLEFAAVVLASGSAGTHGGLALALSETLPDLPVIGVTVSRSEEDQFPKVQGLAERTAQLLDMALPPAFKVNLWDEYFAPRYGEPNAGTLAAVKLLASQEGLLLDPVYTGKAMAGLLDGIGRDRFENGPIIFLHTGGAPALFAYDSVFQARPGPT0002000_236DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0002000-cuyA-K17950NANA
D1-35_031452001betT2COG1292Osmo-dependent choline transporter BetT2ATGAGTACTTCGTCCCTCCCATCCAGCGGCCTGGTCCGCATGAATCCGCCGGTGTTTTATTTCGCCGCGACCTTCATCCTGCTGTTCGGCCTGGTCGTCATTGCCGTGCCGGAGCAGGCCGGCGCCTGGTTGCTGGCCGCGCAGAACTGGGCGGCCAATACGGTCGGCTGGTATTACATGCTGGCGATGACCCTGTATCTGGTCTTCGTGGTGGTCACCGCCTTGTCCGGCTACGGCAAGATCAAGCTCGGTGCCGACCACGACGAGCCCGAGTTCAGCTACCTGTCCTGGGCCGGCATGTTGTTTGCCGCCGGGATCAGCATCACCCTGTTTTTCTTCTGCGTTTCCGAGCCCCTGACCCATCTGGTCCAGCCGCCCCAAGGCGAAGCCGGCACCGCCGATGCGGCGCGCCAGGCGATGCAGATCCTATTCCTGCACTGGGGTTTGCACGGCTGGGGTGTGTTCGCTTTCGTTGGCATGGCCCTGGCGTACTTCGCCTACCGGCATAACCTGCCGCTGGCCTTGCGGTCGGCGTTGTACCCGCTGGTCGGCAAGCGCATCAATGGCCCGATCGGTTATGCGGTGGACGGTTTCGGCATCATCGCGACCGTGTTCGGCCTTGGCGCGGATATGGGCTTTGGCGTGCTGCACCTCAATTCCGGTCTGGATTACCTCTTCGGCATCGCTCACACCCAGTGGATCCAGGTCGGGCTGATCGTGCTGATGATGGGCGCGGCAATCATTGTTGCCGTGGCTGGCGTCGACAAGGGCGTGCGCGTCATGTCCGATATCAACATGCTGCTGGCCTGCGCGCTGTTGCTGTTTGTGCTGTTCGCCGGACCGACCCAGCATCTGCTCAATACGCTTATCCAGAATCTCGGCGATTACCTCGGCGCCCTGCCGATGAAGAGTTTCGACCTGTATGCCTACAACGAGCCCAGCGACTGGCTGGGCGGTTGGACAGTGTTCTATTGGGCATGGTGGATCGCGTGGTCACCGTTCGTGGGGCTGTTTATCGCACGGATATCCCGTGGCCGGACGATCCGTGAATTCGTGTTCGGCGTGCTGCTGATCCCCTTGGGTTTCACCCTGGCGTGGATGTCGATTTTCGGTAACAGCGCCATCGATCAGGTCCTGAACCATGGCATGAGCGCCCTGGGCATGTCGGCCCTGGACAACCCGTCGATGAGCCTTTACCTGCTGCTGGAAACCTACCCGTGGAGCAAGACGGTAATTGCGGTCACGGTGTTCATCAGCTTCGTGTTTTTTGTCACGTCCGCCGACTCCGGCACCGTGGTGCTGTCGACATTATCGGCCAAGGGCGGCAGCCCCGATGAGGACGGGCCGAAATGGCTGCGGGTGTTCTGGGGCGCGATGACTGCCCTGGTGACCAGTGCCTTGCTGTTCTCCGGCAGCATCGATGCCTTGAAGTCGGCGGTGGTGCTGACGTCCTTGCCGTTCTCGCTGATTCTGCTGCTGATGATGTGGGGCCTGCACAAGGCGTTCTACCTTGAGTCGCAGAAGCAGATCGCGCAGTTGCATTCCCTCGCGCCGGTGTCGGGCTCCCGGCGGGGCACTGGCGGTTGGCGTCAGCGCTTGAGCCAGGCGGTGCATTTTCCTTCCCGCGACGAGGTGTATCGCTTCCTCGATACCACGGTGCGCCCGGCCATCGAGGAGGTGAAGGCGGTATTCGCCGAAAAGGGCCTGACGGTGGTGACCCAGCCAGACCCGGCCAACGACAGCGTCAGCCTGGAAATCGGCCACGGCGAACAGCATCCGTTCATCTACCAGGTGCAGATGCGGGGTTACTTCACGCCGTCCTTCGCCCGGGGTGGCATGGGCTCCAAACAGATCAACAATCGTCGCTACTACCGCGCCGAAGTACACCTGAGCGAGGGCAGCCAGGACTACGACCTGGTGGGGTATTCCAAGGAGCAGGTCATCAACGACATCCTCGACCAGTACGAGCGGCACATGCAGTTTCTGCATCTGGTGCGCTGAMSTSSLPSSGLVRMNPPVFYFAATFILLFGLVVIAVPEQAGAWLLAAQNWAANTVGWYYMLAMTLYLVFVVVTALSGYGKIKLGADHDEPEFSYLSWAGMLFAAGISITLFFFCVSEPLTHLVQPPQGEAGTADAARQAMQILFLHWGLHGWGVFAFVGMALAYFAYRHNLPLALRSALYPLVGKRINGPIGYAVDGFGIIATVFGLGADMGFGVLHLNSGLDYLFGIAHTQWIQVGLIVLMMGAAIIVAVAGVDKGVRVMSDINMLLACALLLFVLFAGPTQHLLNTLIQNLGDYLGALPMKSFDLYAYNEPSDWLGGWTVFYWAWWIAWSPFVGLFIARISRGRTIREFVFGVLLIPLGFTLAWMSIFGNSAIDQVLNHGMSALGMSALDNPSMSLYLLLETYPWSKTVIAVTVFISFVFFVTSADSGTVVLSTLSAKGGSPDEDGPKWLRVFWGAMTALVTSALLFSGSIDALKSAVVLTSLPFSLILLLMMWGLHKAFYLESQKQIAQLHSLAPVSGSRRGTGGWRQRLSQAVHFPSRDEVYRFLDTTVRPAIEEVKAVFAEKGLTVVTQPDPANDSVSLEIGHGEQHPFIYQVQMRGYFTPSFARGGMGSKQINNRRYYRAEVHLSEGSQDYDLVGYSKEQVINDILDQYERHMQFLHLVRPGPT0013600_893DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013600-opuD|ytfQ-K05020NANA
D1-35_03146741fabG_63-oxoacyl-[acyl-carrier-protein] reductase FabGATGACTGCTCAAAACGCCAAAGTCGCCATCGTCACCGGTGCCTCCCGTGGGATCGGCGCGCAGATAGCCAGGCAATTGGCGAGCGACGGGTTTGCCGTCGCCATCAACTTCGCCAGCAGCGCCACCGAGGCCTCGCAGTTGGCGGTACAGTTGCGTCAGGCCGGGCACCCGGCCATAGCGGTGAAGGCCGACGTGTCGGTTGCCGCCGACGTCAGCCGGATGTTCGATGAAGTCGAAGCGCAACTGGGTAGGGTCGATGTGTTGATCAACAACGCCGGCATCCTCCAGGTGATGCCGTTGGCGCAGCACAGCGACGAGCTGTTCGATCGCACGTTCGCCATCAACACCCGTGGCACCTTCAACACCTTGCGCGAGGCCGCGACCCGGCTGAACGATGGCGGCCGCATCGTGAATTTTTCCAGCAGTACCGTGGGCATGAACCTGCCGGGCTACTCGGTGTACATCGCCAGCAAGGCCGCGGTGGAATCCCTGACCCAAGTATTTGCCAAGGAACTGCGCGGTCGCCAGATCACCGTCAACGCCGTGGCCCCGGGGCCGGTCGCCACCGAGCTGTTCATGCAGGGCAAAAGCGAAGAGCAGGTTCAGCACTATGCCAGGATGCCGCCCTTGGAACGCCTCGGCCAGCCGGAAGACATCGCCAGCATCGTGTCATTCCTGGTAAGCCCGGCCGCTGGTTGGGTGAACGGCCAGATCCTGCGGGCTAACGGAGGGCTGGTCTGAMTAQNAKVAIVTGASRGIGAQIARQLASDGFAVAINFASSATEASQLAVQLRQAGHPAIAVKADVSVAADVSRMFDEVEAQLGRVDVLINNAGILQVMPLAQHSDELFDRTFAINTRGTFNTLREAATRLNDGGRIVNFSSSTVGMNLPGYSVYIASKAAVESLTQVFAKELRGRQITVNAVAPGPVATELFMQGKSEEQVQHYARMPPLERLGQPEDIASIVSFLVSPAAGWVNGQILRANGGLVPGPT0003180_16718DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-35_03147891pgrR_5HTH-type transcriptional regulator PgrRATGGATCAGGTCAAGGCGATGAAGGTGTTTGTCCGTATCTACGAGCGCAGCAGCTTCACCCTGGCTGCCGAAGACCTGAACATGCCCCGGGCCACGCTGACCCACACGCTCAATCAATTCGAAGCCTGGCTGGGTGTCCGTCTGCTGGAGCGCAGCACACGCAGGGTGCGTCCGACCCTCGATGGCGAGGCCTACTACCCACGTTGCGTGCAATTGCTGGCGGAACTTGAAGAAGCCGAGCTGGCGTTTCGCGGCGTGGCGCCCAAAGGCAAGTTGAGGGTAGACCTGCATGGAACCCAGGCGCGGTATTTCGTGATCCCCGCGTTGCCGCAATTCATGGCCCGCTACCCGGATATCGAATTGTTCATCAGTGAAGCGGACCGCTTCGTCGACTTGATCGCCGAGGGCGTCGATTGCGTCGTGCGCTCCGGTACGTTGGCGGATTCGTCGTTGATTGGCCGGCGTGTCGCCAATCTTCGCCAGATCACCTGTGCCAGCCCGGCTTACCTGCGCCAGTACGGTGAACCGAAAAGCCTGGAGGATCTCAAGCAGCACAAGGCGGTGAACTACGTCTCGCGCACCACCGCCAAGCTTTATCCATTCGAATTCATGGTCGACGGCGAACTCAAGGAGGTTTCGATCGGGGGCACGTTGTCGGTGTCCGGGGCAGAAATCTATGCGGCGTCGGCGATCGCCGGCATGGGCCTGATCCAATGCCCGTATTACCGAATGGAGGAGCCGATCCGCCAAGGCCTGATCCGCGAAGTGCTCGTCGCGACACCTCCGCCGTCCATGCCGGTGTCGGTGGTTTATCCACACAACCGACACATGTCACCACGAGTACGGGTGTTTGTGGATTGGGTGGCGGAGGTGTTTGCGCAGGCGCGCTAGMDQVKAMKVFVRIYERSSFTLAAEDLNMPRATLTHTLNQFEAWLGVRLLERSTRRVRPTLDGEAYYPRCVQLLAELEEAELAFRGVAPKGKLRVDLHGTQARYFVIPALPQFMARYPDIELFISEADRFVDLIAEGVDCVVRSGTLADSSLIGRRVANLRQITCASPAYLRQYGEPKSLEDLKQHKAVNYVSRTTAKLYPFEFMVDGELKEVSIGGTLSVSGAEIYAASAIAGMGLIQCPYYRMEEPIRQGLIREVLVATPPPSMPVSVVYPHNRHMSPRVRVFVDWVAEVFAQARPGPT0028940_942DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-CHLORAMPHENICOL|TRIMETHOPRIN_EFFLUX_PUMP_BpeEF-OprC,PGPT0028940-bpeT-K18900NANA
D1-35_031481038gprCOG0667L-glyceraldehyde 3-phosphate reductaseATGACCTACACCGCTGCGCAAAACCGCTACGAATCCATCCCTTACCGCCGCGTTGGGCGCAGCGGGCTGGTACTGCCGGCCCTGTCACTCGGCTTGTGGCACAACTTCGGCGACAGCACGCCGATCGACACTCAGCGGGCCTTGTTGCGCACGGCATTCGACCTGGGTATCAACCACTTCGACCTGGCCAACAACTACGGCCCGCCCTACGGCAGTGCCGAAATCAATTTCGGCCGGTTGCTGCGGGAAGATTTCCAGCAATACCGTGATGAACTGATCATCTCCAGCAAGGCCGGCTGGGACATGTGGCCAGGCCCTTATGGCCAGGGCGGCGGTTCGCGCAAATACGTGCTGGCCAGCCTTGACCAGAGCCTTCAGCGCCTCGGTCTGGATTACGTGGACATCTTCTACTCCCACCGTTTCGATCCCGACACGCCACTGGAAGAAACCGCCAGCGCCCTGGCCACCGCCGTGCAGCAGGGCAAGGCCCTGTACATTGGCATTTCTTCCTATTCGGGCGTGAAGACCCGGGAAATGGCGGCGCTGCTTCAGGAATGGAAAGTGCCGCTGTTGATCCATCAGCCGGCCTACAACCTGCTCAACCGTTGGGTCGAGAAGGACTTGCTGGACGCCACCGAGGAACTGGGCACCGGCGTGATCGCCTTCACGCCGCTGGCGCAGGGCCTGCTGACCGACAAATACCTCAAGGGCATTCCCGCCGATGCGCGGGTCAATCGCCCGGGCGGCGGTTCGTTGCAGGCCTCGCATCTGTCAGATGAAAACATCGCCCACGTACGCGCCCTCAACGAGATCGCCCAGCGTCGCGGCCAGAGCCTGGCGCAAATGGCCCTGGCCTGGACATTGCGCGATCCGCGGGTCACCTCGGCCCTGATCGGCGCCAGCCGACCGGAGCAGATCGTCGAGAACATCGGGGCGCTGCAAAATCTCGAGTTCAGCGCCGAAGAACTGGCCGAGATCGACCGGTTTGCCCAAGAGGGCGGGATCAACCTGTGGGAGAAGCCTTCGACGGCTGAGTAAMTYTAAQNRYESIPYRRVGRSGLVLPALSLGLWHNFGDSTPIDTQRALLRTAFDLGINHFDLANNYGPPYGSAEINFGRLLREDFQQYRDELIISSKAGWDMWPGPYGQGGGSRKYVLASLDQSLQRLGLDYVDIFYSHRFDPDTPLEETASALATAVQQGKALYIGISSYSGVKTREMAALLQEWKVPLLIHQPAYNLLNRWVEKDLLDATEELGTGVIAFTPLAQGLLTDKYLKGIPADARVNRPGGGSLQASHLSDENIAHVRALNEIAQRRGQSLAQMALAWTLRDPRVTSALIGASRPEQIVENIGALQNLEFSAEELAEIDRFAQEGGINLWEKPSTAEPGPT0008285_529DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-HYDROXYACETONE_VOLATILE_BIOSYNTHESIS,PGPT0008285-yghZ-K19265NANA
D1-35_03149843tauD_2COG2175Alpha-ketoglutarate-dependent taurine dioxygenaseATGAGCCGTCCGACCGTTACCCCTCTGAGCGTTGCCCTCGGCGCGCAGATCAGCGGGATCGATATCAGCCAGCCACTGGCCCCGGAAGACCGTGACACCATCGAGCAGGCACTGCTCGAATATCAGGTGCTGTTCTTCCGCGACCAGCCGATCGAACCCGCACAACAGGCCCGTTTCGCCGCGTACTTTGGCGACCTGCACATTCACCCGATCTACCCCAACGTGCCGGAGCAGCCCGAAGTGCTGGTGCTCGACACCGCCGTCACCGATGTGCGCGACAACGCGGTGTGGCACACCGACGTGACCTTCCTGCCGACCCCGGCCATGGGCGCGGTACTCAGCGCCAAGCTGCTGCCGGCATTCGGCGGCGATACGTTGTGGGCCAGCGGCATCGCGGCCTACGAAGCCTTGTCGGCACCGTTGAAAAGCCTGTTGGAGGGCCTGACGGCGACCCACGACTTTACCCGTTCGTTCCCGCTGGAACGTTTTGGCAACACGGCGGAAGATCGGCTACGTTGGGAAGAAGCACGGCGCAAGAATCCACCGCTGTCGCATCCGGTGATTCGCACTCATCCGGTGAGCGGCCGCCGCGCACTGTTCGTCAACGAAGGCTTCACTACGCGCATCAACGAGCTGTCGGAAACCGAAAGCGAGGCGATCCTGAAACTGCTGTTTGCCCACGCGACGCGTCCGGAGTTCACCGTGCGCTGGCGCTGGCAGGCCAACGACGTGGCATTCTGGGATAACCGCGTGACCCAGCATTTCGCCGTGGACGACTACCGCCCCAACCGGCGGGTGATGCACCGGGCGACGGTGTTGGGGGATGTGCCGTTCTTCAGGTGAMSRPTVTPLSVALGAQISGIDISQPLAPEDRDTIEQALLEYQVLFFRDQPIEPAQQARFAAYFGDLHIHPIYPNVPEQPEVLVLDTAVTDVRDNAVWHTDVTFLPTPAMGAVLSAKLLPAFGGDTLWASGIAAYEALSAPLKSLLEGLTATHDFTRSFPLERFGNTAEDRLRWEEARRKNPPLSHPVIRTHPVSGRRALFVNEGFTTRINELSETESEAILKLLFAHATRPEFTVRWRWQANDVAFWDNRVTQHFAVDDYRPNRRVMHRATVLGDVPFFRPGPT0002940_1272DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_TAURINE_UTILIZATION,PGPT0002940-tauD-K03119NANA
D1-35_03150840ssuC_2COG0600Putative aliphatic sulfonates transport permease protein SsuCATGAGCAGCTATGAAATTCCAGCCGTGGCCAACGACGCCGTGGCCGCCCGCCCGCCAGTCCTCGCGCGCCGTACCCTGAGCACGCGATGGATCAGCGGCCTGACGCTGGTGGCGCTGCTGTTGCTCTGGTGGGCCGTTACCGCCAGCGGCCTGATCGAACCGCTCTTCCTGCCGCCGCCCTCCGCCGTGCTGCAAAAAGGCTGGCTGCTGGCTACCAGCGGCTACATGGATTCCACGCTCTGGCAGCACCTCGGCGCAAGCCTCGGGCGGATTGGCCTGGGCCTGCTGTTCGCGGTGTTGACGGCGGTGCCGGTGGGTATCGCCATCGGTGCCAACCGTATTGCCCGCGGCGTACTCGATCCGCTGATCGAGTTCTACCGACCGATTCCACCCCTGGCTTACCTGCCGCTGATCGTGATCTGGTGCGGCATCGGTGAGCTGTCGAAAGTCCTGCTGATCTACCTGGCGATTTTCGCCCCGATCGCCATCTCCACTGCAACCGGGGTGCGCACCGTCGACCCGGCGAAACTGCGCGCTGCCCAATCGCTTGGGGCCACGCGGGCGCAACTGATTCGCCATGTGATCGTACCCAGCGCCCTGCCCGACATCCTCACCGGTATCCGCATCGGCCTGGGCGTGGGCTGGTCGACGCTGGTCGCCGCCGAACTGATCGCGGCCACCAGCGGCCTGGGGTTCATGGTGCAGTCGGCAGCGCAGTTCCTGGTCACCGATGTCGTGGTGCTGGGAATCCTGGTGATTGCGCTGATCGCCTTCGCCATGGAAATGGGCCTGCGCGCCCTGCAACGCAAACTGGTGCCGTGGCACGGCCAGGCCCACTGAMSSYEIPAVANDAVAARPPVLARRTLSTRWISGLTLVALLLLWWAVTASGLIEPLFLPPPSAVLQKGWLLATSGYMDSTLWQHLGASLGRIGLGLLFAVLTAVPVGIAIGANRIARGVLDPLIEFYRPIPPLAYLPLIVIWCGIGELSKVLLIYLAIFAPIAISTATGVRTVDPAKLRAAQSLGATRAQLIRHVIVPSALPDILTGIRIGLGVGWSTLVAAELIAATSGLGFMVQSAAQFLVTDVVVLGILVIALIAFAMEMGLRALQRKLVPWHGQAHPGPT0002950_413DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_TAURINE_TRANSPORT,PGPT0002950-tauB-K15552NANA
D1-35_03151795tauBCOG4525Taurine import ATP-binding protein TauBATGGCCTTGCTACAGCTGGAGCGCATCAGCGCACAGTACCCCGGCGCAACGAAACCGGTACTGGCGGATATTTCGTTGACCTTGGGCCCGCAGCAGTTGCTGGTTGCCCTCGGCCCCTCCGGCAGCGGCAAGACTTCGCTGCTCAACCTGATTGCCGGGTTTGTGGAACCCAGCGCCGGACAGATCACCCTGGACGGCATTCCCGTCAAGGGCCCGGGTGCCGAGCGCGGCGTAGTGTTCCAGGACGATGCGCTGTTGCCCTGGCAAGACGTGTTGGCAAACGTCGGGTTCGGCCTGGAACTGGCGGGAGTTGCCAGGGAGAAGCGCGAGGCTCGCGCTCGGGAAATGCTCGCCCTGGTGGACCTGGCCGGTTTCGAAAAGCGCCGTGTCTGGCAGCTGTCGGGCGGTCAGAAGCAACGCGTCGGGCTGGCCCGCGCGCTGGCGGCCGATCCACGGGTATTGCTGATGGACGAACCTTTCGGCGCCCTGGACGCGTTCACCCGTGAACAGATGCAGGAACTGCTGCTGCAAGTCTGGCAACGTACCGCCAAACCGGTGTTCCTGATTACCCATGACATTGAAGAGGCGGTATTCCTTGCCACCGACCTGATCCTGCTGGCCCCCGATCCGGGCCAGATCGTCGAGCGCCTGAGCCTGGATTTCGGGCGTCGCTACGGCGCGGGGGAAGCGGCGCGGTCGATCAAGTCCGACCCGCGCTTCATCGAAACCCGCGAGCATGTGCTGGCGAAAGTGTTCTCCCAACGCAGCGCCACTCGGCAACAGGAGCGCGCATGAMALLQLERISAQYPGATKPVLADISLTLGPQQLLVALGPSGSGKTSLLNLIAGFVEPSAGQITLDGIPVKGPGAERGVVFQDDALLPWQDVLANVGFGLELAGVAREKREARAREMLALVDLAGFEKRRVWQLSGGQKQRVGLARALAADPRVLLMDEPFGALDAFTREQMQELLLQVWQRTAKPVFLITHDIEEAVFLATDLILLAPDPGQIVERLSLDFGRRYGAGEAARSIKSDPRFIETREHVLAKVFSQRSATRQQERAPGPT0002955_295DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_TAURINE_TRANSPORT,PGPT0002955-tauC-K10831NANA
D1-35_03152978tauACOG4521Taurine-binding periplasmic proteinATGTCTTTGCGTTTCCCCCTTCGCCTTCTCGCGGCCGCCTCCCTGGCCGCGGCGAGCCTTTTCGCCCAGGCGGCCGACCTGACCGTGGCCTATCAGACCACCGTCGACCCGGCCAAAGTCGCCCAGGCCGACGGAGCTTATGAGAAAGCCACCCAGGCCAAGATCAACTGGCGAAAATTCGACAACGGTGCCGATATCATCGCCGCCATCGCTTCGGGCGATGTGCAGATCGGCTACCTGGGTTCCAGCCCGCTGACCGCCGCCATCACCCGCAAGGTTCCGGTGGAAACCTTCCTCATCGCCACCCAGATCGGCGCCGCCGAAGCCTTGGTCGCCCGTGATGGCTCCGGCATCAAGACCCCGCAGGACCTGATCGGCAAGAAAATCGCCGTGCCGTTTGTTTCCACCGGTCATTACAGCCTGCTCGCCGCGCTGAAACACTGGAACATCGACCCGTCGAAAGTCACCGTGCTCAACCTCGCGCCACCGGCCATCATCGCCGCCTGGAAGCGCGGCGACATCGACGCCACCTACGTCTGGGACCCGGCCCTGGGCGTTGCCAAGGAAAACGGCAAGGTGCTGATCACCTCCGCCGAACTGGCCCAGTTCGGCGCGCCAACCTTCGACGCCTGGATCGTGCGCAAGGATTTTGCCCAGAAGCATCCCGAGATCGTCACGGCTTTCGCCAAGGTCACCCTGGACGCCTACGCCCAGTACCGCAAGGACCCGCAAGCCTGGCTGGCCGACGCATCGAACATCGACAAGCTGGTGAAACTCTCCGGCGCCAAGGCCAGCGACATTCCATTGCTGTTGCAAGGCAACGTATTCCCGTTGGTCGCCGACCAGGTGGTCAGCCTCGGTGCCCCAACCACCCAGGCCATCACCAACACCGCCGCGTTCCTCAAGGAGCAAGGCAAGGTTGAAGCCGTGCTGCCGGACTACGCGCCATACGTCAGCGCCAAATACATCACCCGCTGAMSLRFPLRLLAAASLAAASLFAQAADLTVAYQTTVDPAKVAQADGAYEKATQAKINWRKFDNGADIIAAIASGDVQIGYLGSSPLTAAITRKVPVETFLIATQIGAAEALVARDGSGIKTPQDLIGKKIAVPFVSTGHYSLLAALKHWNIDPSKVTVLNLAPPAIIAAWKRGDIDATYVWDPALGVAKENGKVLITSAELAQFGAPTFDAWIVRKDFAQKHPEIVTAFAKVTLDAYAQYRKDPQAWLADASNIDKLVKLSGAKASDIPLLLQGNVFPLVADQVVSLGAPTTQAITNTAAFLKEQGKVEAVLPDYAPYVSAKYITRPGPT0002945_707DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_TAURINE_TRANSPORT,PGPT0002945-tauA-K15551NANA
D1-35_031531584gshACOG2918Glutamate--cysteine ligaseTTGAGCGACCTTTTAAACCGCCGCCTGGCCCTGCTCGGCGAGCGCGCCAACCTCTCCCTGCTCGAGCAGTGCCTGCACGGTATCGAACGTGAATGCCTGCGCGTCACGGGCGACGGGCGCCTGGCGCAGACCCCGCATCCCGAATCCCTGGGCTCGGCGCTGACCAACGAACAGATCACTACTGACTATTCCGAGTCGCTGCTTGAGTTCATCACCCCGGCCCTGGCCAACCCGGCCGACACCCTGCACAGCCTCGACAGGATCCACCGGTTTGTCTACAGCAAGCTCGGCGACGAGTACCTGTGGAGCCCTTCGATGCCGTGTCCGCTGCCGGCCGAGGAAGACATACCGATCGCCTACTACGGCACCTCGAATATCGGTCGACTCAAGTATGTCTACCGCAAGGGCCTGGCCCTGCGCTACGGCAAGACCATGCAATGCATCGCCGGGATCCACTACAACTTTTCCCTCCCGGAAAAGCTCTGGCCCCTGCTGCGCCAGGACGAAGCCAGCGACGTGAGCGACCGCGACTTCCAGTCCTCGGCCTACATCGCGCTGATCCGTAATTTCCGCCGCTACAGCTGGTTGCTGATGTACCTGTTCGGCGCCTCGCCGGCCCTGGATGTCGGTTTCCTGCGCGGCCGTCCGCACCAGTTGGAACAACTGGACCCGGACACCTTGTACCTGCCCTACGCCACCAGCCTGCGCATGAGCGACCTGGGTTACCAGAGCAACGCCCAAGCCGGCCTGACACCTTGCTATAACGACCTGGCGAGCTACACCGACAGCCTGCGCAAAGCCGTCGCAACGCCCTATGCGCCTTATGTCGAAGTCGGTACTCACCAGAACGGCGAATGGGTGCAGCTCAATACCAACATTCTGCAGATCGAAAACGAGTACTACTCCAACATCCGCCCCAAGCGCGTGACCTACACCGGCGAGCGGCCGATCCAGGCGCTGATGGCCCGAGGGATCCAGTACGTCGAAGTGCGCTGCCTGGACATCAACCCGTTCCTGCCGATGGGCATCGACCTGACCGAGTCGCGCTTCCTCGATGCGTTCCTGCTGTACTGCGGCCTCAACGACAGCCCGCAACTGGAAAACAACGAGTGCAGCAACGCCACGAGCAACTTCCTGACCGTGGTCAAGGAAGGCCGCAAGCCTGGCCTGCAATTGCAGCGCCAGGGTCAATCGGTGGACATGCAAACCTGGGCCATGGAATTGCTGGAAAAGATTGCTCCGCTGGCCGCCCTGCTTGACCAGAGCCAAGGCGGTGATGCCCATCGCCAGGCTCTCGACGCGCAACAGGCAAAAGTCCGCGACCCGTCGCTGACGCCGTCCGCCAAGGTCTTGGCCGCCATGGCCGAGCACCAGGAAAGCTTCGCCCAGTTCTCCCTGCGCCAGAGCAAGGCCCACGCCAAGTTCTTCCGCGCCGAACCGTTGTCGACCGAAGAGCAAGTCGCGTTCGAAGAAACCGCTCGCCAGTCCTTGGTCCAGCAAACCGAGCTGGAGCGGAACGAGGTGGGGGATTTCGACGTGTTCGTGGGTTCGTATCAGGCGAGCATTCTGGCGATCAGTAACTGAMSDLLNRRLALLGERANLSLLEQCLHGIERECLRVTGDGRLAQTPHPESLGSALTNEQITTDYSESLLEFITPALANPADTLHSLDRIHRFVYSKLGDEYLWSPSMPCPLPAEEDIPIAYYGTSNIGRLKYVYRKGLALRYGKTMQCIAGIHYNFSLPEKLWPLLRQDEASDVSDRDFQSSAYIALIRNFRRYSWLLMYLFGASPALDVGFLRGRPHQLEQLDPDTLYLPYATSLRMSDLGYQSNAQAGLTPCYNDLASYTDSLRKAVATPYAPYVEVGTHQNGEWVQLNTNILQIENEYYSNIRPKRVTYTGERPIQALMARGIQYVEVRCLDINPFLPMGIDLTESRFLDAFLLYCGLNDSPQLENNECSNATSNFLTVVKEGRKPGLQLQRQGQSVDMQTWAMELLEKIAPLAALLDQSQGGDAHRQALDAQQAKVRDPSLTPSAKVLAAMAEHQESFAQFSLRQSKAHAKFFRAEPLSTEEQVAFEETARQSLVQQTELERNEVGDFDVFVGSYQASILAISNPGPT0013035_755DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-GLUTATHION_METABOLISM,PGPT0013035-gshA|ybdK-K01919NANA
D1-35_03154384menI1,4-dihydroxy-2-naphthoyl-CoA hydrolaseATGGAGGCGCCGGCCGGGTTGGTGGAGAGCGCGTTTTTCAAGCTGCTCGGCTGCCGTCTGCAGAGCCTCGGGGACGGGGTGGCGCAAGTCGCCCTGGGTCTGGAGCCGGCGTTGCGCAACCGCGGTGGCAAGCTGCACGGCGGGGCGCTGTTCAGCCTGGTGGACATTGCCATGGGGCTGGCCTGCTCCAGCGTCCATGGCTTCGACCAGCAGAGCGCAACCATCGAGTGCAAGATCAACTACATTCGCGCCGTGTCCGACGGCGAAGTGCTGTGCACCGCCCGGGTCATCCACCCGGGCCGGCGCACGCTGGTGGTCGAGGCCGAGGTGATGCAGGGCGACAAGCTGGTCGCAAAAGCGCAAGGCACGTTCGCTGTCCTATAGMEAPAGLVESAFFKLLGCRLQSLGDGVAQVALGLEPALRNRGGKLHGGALFSLVDIAMGLACSSVHGFDQQSATIECKINYIRAVSDGEVLCTARVIHPGRRTLVVEAEVMQGDKLVAKAQGTFAVLPGPT0006080_1078DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STYRENE|DERIVATE_DEGRADATIONXENOBIOTIC_PHENYLACETATE_DEGRADATION,PGPT0006080-paaI-K02614NANA
D1-35_031552325yhgFCOG2183Protein YhgFATGGACAGCATCAACAGCCGCATCGCCGAGGAACTCGGCGTACGCCCGCAACAGGTCGAAGCGGCCGTCGCGCTACTCGATGAAGGCTCCACGGTGCCTTTCATCGCCCGTTACCGGAAGGAAGTGACCGGCAGCCTCGATGACACCCAGCTGCGTCATCTGGAAGAGCGCCTGCGCTACCTGCGAGAACTCGACGAGCGGCGCATCAGCATCCTGGCGAGCATCCAGGAGCAGGGCAAGCTGACCCCGCAACTGGAACGCGACATCAAGCTGGCCGATACCAAGACCCGCCTGGAAGACTTGTACCTGCCCTACAAGCAGAAACGCCGCACCAAGGGCCAGATTGCCCTGGAAGCCGGCCTCGGCGAACTGGCCGACGGCTTGTTCAACGACCCCACGTTGGCGCCGGAAGCCGAAGCCGCGCGTTTCGTCGATGCCGAAAAAGGCGTGGCGGACAGCAAGGCTGCGCTGGAAGGCGCCAAGTACATCCTCATGGAGCGCTTCGCCGAAGACGCGAACCTGCTGGAAAAACTGCGCAACTACCTCAAGCAGGAGGCGATCCTGAGTGCTCGCGTCATCGCCGGCAAAGAAGAGGAAGGCGCCAAGTTCCGCGATTACTTCGAACACGACGAGCCCCTCAAGAGCGTACCGTCGCACCGGGCGCTGGCGATTTTCCGCGGTCGCAACGAAGGCATCCTCAGCTCATCGCTGAAAGTCGGCGAAGAATTGCCCGGCACCATGCACCCGTGCGAAGGCATGATCGGCCAGCAGTTCGGCATCCAGAACCAGAACCGCGCCGCCGACAAGTGGCTGGCCGAAGTGGTGCGCTGGACCTGGAAGGTCAAGCTCTACACCCACCTGGAAACCGACCTGCTGGGCGAACTGCGCGACAACGCCGAGACCGAGGCGATCAACGTGTTCGCCCACAACCTGCACGACCTGCTGCTGGCCGCACCGGCCGGGCCGCGTGCCACGCTGGGCCTGGACCCGGGCCTGCGCACTGGCTGCAAGGTGGCCGTGGTCGATTCCACCGGCAAGCTGCTGGACCACGCCACGGTCTACCCGCATGTGCCGCATAACAAGTGGGACCAGACCATCGCTATCCTTGCCGCCCTGTGCGCCAAGCACTCGGTCGACCTGATCGCCATCGGCAACGGCACCGCCAGCCGTGAGACCGACAAGTTGGCCGCCGAGCTGATCAAGAAATACCCGGCCATGAAAATGACCAAGGTCATGGTCTCCGAGGCCGGCGCTTCGGTTTATTCGGCGTCGGAACTGGCCTCGAAGGAATTCCCGGACCTGGACGTGTCGATCCGTGGCGCGGTGTCCATCGCCCGTCGCCTGCAGGACCCACTGGCGGAACTGGTGAAGATCGACCCGAAATCCATCGGTGTCGGCCAGTACCAGCATGACGTGTCGCAATTGAAGCTGGCCCGTGGCCTGGACGCCGTGGTGGAGGATTGCGTGAACGCCGTGGGCGTGGACGTAAACACCGCTTCGGTAGCATTGCTGGCGCGCATCTCCGGCCTGAACGCCACGCTGGCGCAGAACATCGTCACCCACCGCGACGAACACGGCGCGTTCAAGACCCGCGCCGCGTTGAAAAAAGTCCCGCGCCTGGGTGAAAAAACCTTCGAACAGGCCGCCGGCTTCCTGCGCGTCATGAATGGTGACAACCCGCTCGACTCCTCGGCAGTTCACCCGGAAGCCTATCCACTGGTGCAACGCATCGCCGCCCAGACCGACCGCGACATTCGCTCGCTGATCGGCGACGCGGCGTTTCTCAAGCGCCTGGACCCGAAGAAATTCACTGACGAAACCTTCGGCCTGCCCACCGTGACTGACATCCTCCAAGAGCTGGAGAAACCGGGCCGCGACCCACGTCCGGAATTCAAGACCGCTGAATTCCAGGAAGGCGTCGAAGACCTCAAGGACCTGCAACCGGGCATGATCCTCGAAGGCGTGGTGACCAACGTCACCAACTTCGGCGCGTTCGTCGACATCGGCGTGCACCAGGACGGCCTGGTGCATATTTCGGCCTTGTCGGAGAAATTCATCAAGGACCCGCGCGAAGCCGTGAAGGCCGGTGATGTGGTGAAAGTAAAGGTCATGGAAGTCGACATCCCGCGTAAACGCGTGGGCCTGTCGATGCGCATGAGCGACACGCCGGGCGAGAAAATCGACGGCGCCCGCGGTGCCCGTCCAGGCGCCGCGCCACGCCAGTCGCAGAACACCGCGCCGCGCAAGGAAACTGCCACCGCGGCCCCGGCGAATAACGCCATGGCCTCGCTGTTCGCCAACGCCAAGCAGCTGAAGAAACGCTGAMDSINSRIAEELGVRPQQVEAAVALLDEGSTVPFIARYRKEVTGSLDDTQLRHLEERLRYLRELDERRISILASIQEQGKLTPQLERDIKLADTKTRLEDLYLPYKQKRRTKGQIALEAGLGELADGLFNDPTLAPEAEAARFVDAEKGVADSKAALEGAKYILMERFAEDANLLEKLRNYLKQEAILSARVIAGKEEEGAKFRDYFEHDEPLKSVPSHRALAIFRGRNEGILSSSLKVGEELPGTMHPCEGMIGQQFGIQNQNRAADKWLAEVVRWTWKVKLYTHLETDLLGELRDNAETEAINVFAHNLHDLLLAAPAGPRATLGLDPGLRTGCKVAVVDSTGKLLDHATVYPHVPHNKWDQTIAILAALCAKHSVDLIAIGNGTASRETDKLAAELIKKYPAMKMTKVMVSEAGASVYSASELASKEFPDLDVSIRGAVSIARRLQDPLAELVKIDPKSIGVGQYQHDVSQLKLARGLDAVVEDCVNAVGVDVNTASVALLARISGLNATLAQNIVTHRDEHGAFKTRAALKKVPRLGEKTFEQAAGFLRVMNGDNPLDSSAVHPEAYPLVQRIAAQTDRDIRSLIGDAAFLKRLDPKKFTDETFGLPTVTDILQELEKPGRDPRPEFKTAEFQEGVEDLKDLQPGMILEGVVTNVTNFGAFVDIGVHQDGLVHISALSEKFIKDPREAVKAGDVVKVKVMEVDIPRKRVGLSMRMSDTPGEKIDGARGARPGAAPRQSQNTAPRKETATAAPANNAMASLFANAKQLKKRNANANANANA
D1-35_03156741ompR_6Transcriptional regulatory protein OmpRATGAGCAGCACCGCACAAACTGCTGAAGGCGAAAAAATTCTGATTGTTGACGACGATCCGGGGCTGAGCAGCCTGCTGGAGCGCTTTTTCGTCAGCAAGGGCTATCGCGCCCGCACCGTACCGAACACCGAGCAAATGGACCGGCTGCTGGCCCGTGAGGTTTTCAACCTCGTGGTCCTCGACCTGATGCTGCCTGGCGAGGACGGCTTGACGGCCTGTCGCCGCCTGCGGGGCGCCAACAACCAGATCCCGATCATCATGCTCACCGCCAAGGGCGACGAACTGAGCCGTATCAAAGGCCTGGAGTTGGGCGCCGACGATTACCTGGCGAAGCCGTTCAACCCGGATGAGCTGATGGCCCGGGTCAAGGCTGTCCTGCGTCGCCAGTCGGCGCCGGTGCCGGGCGCACCGGGCAGCGAAGACGAGAGCGTGACCTTCGGCGACTATGAACTGTCGCTGGCCACCCGCGAGCTCAAGCGCGGCGATGAGATCCATATGCTCACCACTGGCGAGTTCGCCGTGCTCAAGGCCCTGGTGATGAACGCCCGCCAGCCGCTGACCCGGGACAAGCTGATGAACCTGGCCCGTGGCCGCGAATGGGATGCGCTGGAGCGCTCCATCGACGTGCAGATTTCCCGTTTGCGCCGGATGATCGAACCCGATCCTTCCAAGCCGCGTTATATCCAGACGGTCTGGGGCGTTGGCTACGTGTTCGTGCCGGATGGCGCTGCCGGCAAGTGAMSSTAQTAEGEKILIVDDDPGLSSLLERFFVSKGYRARTVPNTEQMDRLLAREVFNLVVLDLMLPGEDGLTACRRLRGANNQIPIIMLTAKGDELSRIKGLELGADDYLAKPFNPDELMARVKAVLRRQSAPVPGAPGSEDESVTFGDYELSLATRELKRGDEIHMLTTGEFAVLKALVMNARQPLTRDKLMNLARGREWDALERSIDVQISRLRRMIEPDPSKPRYIQTVWGVGYVFVPDGAAGKPGPT0012985_279DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OSMOLARITY_SIGNALLING,PGPT0012985-ompR-K07659NANA
D1-35_031571314envZOsmolarity sensor protein EnvZATGAAGACCCCCGTCTGGTTCCCCCAGAGCTTTTTCTCCCGCACCCTCTGGCTGGTGCTGATCGTCGTGCTGTTTTCCAAGGCGCTGACGCTGGTTTACCTGCTGATGAACGAAGACGTGCTGGTGGACCGCCAATACAGTCACGGCGTTGCCTTGACTCTGCGCGCCTATTGGGCAGCGGACGAAACCAATCGAGTCAAAATCGCCGAGGCGGCAACTTTGATCCGGGTGGTCGGCGCCGGTGTGCCTGAAGGTGAGCAGCATTGGCCATACAGCGAGATCTACCAGCGGCAGATGCAGGCCGAACTGGGCGCCGATACCGAAGTGCGGCTGCGCATGCATTCGCCGCCGGCCTTGTGGGTGCGTGCCCCGAGCCTTGGCGATGGGTGGCTGAAGGTTCCGCTGTACCCCCATCCGCTGCGCGGCCAGAAAATCTGGAACGTGCTGGGCTGGTTCCTGGCGATCGGCCTGTTGTCGACGGCTTCGGCGTGGATTTTCGTCAGCCAGCTCAACCAGCCGCTCAAGCGCCTGGTCTATGCAGCCCGGCAACTGGGCCAGGGCCGCAGCGTGCGGTTGCCCGTCAGCGATACGCCCAGCGAGATGACCGAGGTGTACCGCGCCTTCAACCAGATGGCCGAAGATGTCGAGCAGGCCGGACGCGAACGTGAGCTGATGCTCGCCGGCGTCTCCCATGACCTGCGCACGCCGCTGACGCGATTGCGGCTGTCGCTGGAACTGATGGGCGAGCACACCGACCTGACCGACGAAATGGTCCGCGATATCGAAGACATGGACGCGATTCTCGATCAGTTCCTGGCGTTCATTCGCGACGGCCGTGACGAATCGGTAGAGGAGGTGGACCTCAGCGAGCTGGTACGGGAGGTGGCTGCGCCCTACAACCAGAACGAAGAGAAGGTCCACTTGCGCCTGGAGCCCATCCAGCCGTTTCCGCTACGTCGCGTGTCGATGAAGCGCCTGTTGAACAACCTGATCGGTAACGCCCTCAACCATGCCGGCACGGGCGTTGAAGTCGCCGCCTATGTTTCCGGCGACACCAGTGCGCCTTATGTCGTCCTGAGCGTCATGGACCGCGGCGCCGGCATTGACCCAGCGGAGCTGGAAGCCATTTTCAACCCGTTCACCCGCGGTGATCGGGCTCGGGGAGGGAAGGGCACCGGGCTGGGCCTGGCCATCGTCAAGCGCATCGCCTCGATGCATGGCGGCAACGTCGAACTGCGCAATCGAGCTGGCGGCGGGCTGGAGGCTCGGGTGCGGTTGCCGTTGGGCTTGATGCTGCCGCGGGATGCTGTGTAGMKTPVWFPQSFFSRTLWLVLIVVLFSKALTLVYLLMNEDVLVDRQYSHGVALTLRAYWAADETNRVKIAEAATLIRVVGAGVPEGEQHWPYSEIYQRQMQAELGADTEVRLRMHSPPALWVRAPSLGDGWLKVPLYPHPLRGQKIWNVLGWFLAIGLLSTASAWIFVSQLNQPLKRLVYAARQLGQGRSVRLPVSDTPSEMTEVYRAFNQMAEDVEQAGRERELMLAGVSHDLRTPLTRLRLSLELMGEHTDLTDEMVRDIEDMDAILDQFLAFIRDGRDESVEEVDLSELVREVAAPYNQNEEKVHLRLEPIQPFPLRRVSMKRLLNNLIGNALNHAGTGVEVAAYVSGDTSAPYVVLSVMDRGAGIDPAELEAIFNPFTRGDRARGGKGTGLGLAIVKRIASMHGGNVELRNRAGGGLEARVRLPLGLMLPRDAVPGPT0012975_1346DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OSMOLARITY_SIGNALLING,PGPT0012975-envZ-K07638NANA
D1-35_03158906rimKCOG0189Ribosomal protein S6--L-glutamate ligaseATGAAGATCGCTGTGCTGTCGCGCAATCCGCGCCTGTATTCCACTCGTCGCCTGGTTGAAGCAGGGACGGAACGTGGCCATGAAATGGTGGTGATCGATACCCTGCGCGCCTACATGAACATCGCCAGCCACAAGCCGCAGATCCACTACCGCGGCAAACCGCTGGAAGGGTTTGATGCGGTGATCCCGCGTATCGGCGCATCGGTGACTTTTTATGGCTGCGCAGTGCTGCGCCAGTTCGAAATGATGGGAGTGTTCCCGCTCAATGAGTCTGTCGCTATCGCTCGCTCCCGGGACAAGCTGCGCTCATTGCAATTGCTCTCCCGACGCGGCATCGGCTTGCCGGTAACCGGGTTCGCCCACTCTCCCGATGACATTCCCGACCTGATCGCGATGGTCAACGGCGCGCCGCTGGTGATCAAGGTGCTTGAGGGCACCCAGGGGATCGGTGTCGTGCTGTGCGAGACCGCAACCGCGGCGGAATCGGTGATCGAGGCGTTCATGGGCCTCAAGCAGAACATCATGGTCCAGGAATACATCAAGGAAGCCGGTGGCGCGGACATTCGTTGCTTCGTGGTCGGCGATAAAGTGATCGCCTCGATGAAACGCCAGGCCAAACCCGGTGAGTTTCGCTCCAACCTGCATCGCGGCGGCAGCGCGAGCCTGATCAAAATCACCCCGGAAGAACGCATGACAGCCCTGCGCGCGGCCAAGGTCATGGGATTGGCGGTGGCCGGCGTGGATATCCTGCGCTCCAATCACGGACCGCTGGTGATGGAGGTCAATTCTTCGCCAGGCCTGGAAGGAATCGAGACCACCACCAGCAAGAACGTGGCGGGGATCATCATCGAACACCTGGAAAAAAATGGCGGGCCGAACATGACCCGGACCAAGGGCAAGGGTTGAMKIAVLSRNPRLYSTRRLVEAGTERGHEMVVIDTLRAYMNIASHKPQIHYRGKPLEGFDAVIPRIGASVTFYGCAVLRQFEMMGVFPLNESVAIARSRDKLRSLQLLSRRGIGLPVTGFAHSPDDIPDLIAMVNGAPLVIKVLEGTQGIGVVLCETATAAESVIEAFMGLKQNIMVQEYIKEAGGADIRCFVVGDKVIASMKRQAKPGEFRSNLHRGGSASLIKITPEERMTALRAAKVMGLAVAGVDILRSNHGPLVMEVNSSPGLEGIETTTSKNVAGIIIEHLEKNGGPNMTRTKGKGNANANANANA
D1-35_03159483hypothetical proteinTTGAAGACTTTTGACCATCTGACCGTCGTCGGTCTGCGCGAATGGGTGGCGCTCCCGGATCTGGGAGTCGCAGGCCTGCGGGCAAAAATCGACACCGGCGCCAGCACCTCCAGCCTGCACGCCACCGATATCGAGCCATTCGAGCGCGACGGCGAGAAGTGGGTGCGTTTCACCGCACACCTGGGGACGGTGGTGCAACTGCGCCACCGCCGCTGCGAAGCCCCGCTGGTGGCGCGCAAGACCATCAAGAGCTCCAACGGCCACGCCCAGGTCCGCTACGTGATCAGCACCACGCTGGCGCTGGGTGATCGGTTCTGGCGGGTGGAGTTCACCCTGGCCTGTCGTAAATCCATGCGGTATCGCCTGTTGTTGGGTTCCAAAGCCTTGATCGACGGCCAGCTGGTCGTCAATCCAGGCATCAAATACGTTCAAGACAAACCGGTATTTCCGGTGTCCACTACCTCTGCCACAGGTGTTGCATGAMKTFDHLTVVGLREWVALPDLGVAGLRAKIDTGASTSSLHATDIEPFERDGEKWVRFTAHLGTVVQLRHRRCEAPLVARKTIKSSNGHAQVRYVISTTLALGDRFWRVEFTLACRKSMRYRLLLGSKALIDGQLVVNPGIKYVQDKPVFPVSTTSATGVANANANANANA
D1-35_03160405hslRCOG1188Heat shock protein 15GTGGCACAAAAAAGCGAAGAGGACGACAAGGTCCGTCTCGATAAATGGTTGTGGGCAGCGCGATTCTATAAGACCCGTGCCCTGGCCAAGGCCGCCATCGAAAGCGGCAAGGTTCACCATCGCGGTGAACGTTGCAAGCCTGGCAAAGAGCCACGTATCGGCGACGAATACGTCATTCGCGCCGGGTTCGATGAAAAAACCGTGGTGGTCGAAGCCCTGTCGATTGTGCGGCGCGGCGCGCCAGAAGCACAGACACTCTATCGCGAGACCGACGCCAGCATCGCCAAGCGCGAAGCTGCGGCCGCACAACGCAAGGCCGGGGCCCTGGGCGTCAGCACCGATGGCAAGCCGAGCAAGAAGCAGCGTCGCGACCTGTTCAAGTTTCATGGCAGCAATAGTGAATAAMAQKSEEDDKVRLDKWLWAARFYKTRALAKAAIESGKVHHRGERCKPGKEPRIGDEYVIRAGFDEKTVVVEALSIVRRGAPEAQTLYRETDASIAKREAAAAQRKAGALGVSTDGKPSKKQRRDLFKFHGSNSEPGPT0014620_879DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014620-hslR|yrfH-K04762NANA
D1-35_03161903hslOCOG128133 kDa chaperoninATGACTGATTTACCGGATACCGACTACACCCAGCGTTTCATCTTCGATGACAGCGACGCCCGTGGCGAGATGGTGGCGTTGGAGCGTAGCTATGCCGAAGTCCTTGCCAAGCACCCCTATCCGGAGCCGGTCGCGCAACTGCTAGGCGAACTGATGGCGGCGGCGGCATTGCTGGTGGGCACCCTGAAGTTCGATGGCTTGCTGATTCTCCAGGCGCGCTCCGACGGTCCGGTCCCCTTGCTGATGATCGAATGCTCCAGCGAGCGCGAGATTCGTGGCCTGGCCCGGTACCACGCCGAGCAGATCGGCGCCGACGCGACGCTGGCCGACATGATGCCCAACGGCGTGCTGGCCCTGACGGTCGATCCTAGTCATGGCCAGCGTTATCAGGGCATTGTCGATCTTGACGGCGCGACGCTGGCCGAATGCTTCACCAATTACTTCGTCATGTCCCAGCAGACCAACACCCGCTTCTGGCTGTACGCCGACGGGCGGCGCGCCCGTGGCCTGCTGTTGCAACAATTGCCCGCCGATCGCATTCGCGATTCGGAAGAGCGTGACGCCAGCTGGCAGCACGTCACCGCTCTGGCCAGCACCTTGAGCGCCGACGAGTTGCTGGGCCTGGACAACGAAACCATTCTGCATCGTCTCTACCACGAAGAGCAGGTGCGCCTGTTCGAGGGTCAGCCGTTGCGCTTCCAATGCAGTTGCTCCCGTGAACGATCCGGCAATGCGCTGGTCAGTCTGGGTCTGGAAGATGCGCAGCAACTGGTGATCGAGCATGGCGGCGCCATCGAGGTCGATTGCCAGTTTTGCAATGAGCGCTACCTGTTCGACGCGGCGGACATCGCACAATTGTTCGCCGGTGCGGGTGTCGACACACCGTCAGATACTCGTCACTAAMTDLPDTDYTQRFIFDDSDARGEMVALERSYAEVLAKHPYPEPVAQLLGELMAAAALLVGTLKFDGLLILQARSDGPVPLLMIECSSEREIRGLARYHAEQIGADATLADMMPNGVLALTVDPSHGQRYQGIVDLDGATLAECFTNYFVMSQQTNTRFWLYADGRRARGLLLQQLPADRIRDSEERDASWQHVTALASTLSADELLGLDNETILHRLYHEEQVRLFEGQPLRFQCSCSRERSGNALVSLGLEDAQQLVIEHGGAIEVDCQFCNERYLFDAADIAQLFAGAGVDTPSDTRHPGPT0014645_1090DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014645-hsp33|hslO-K04083NANA
D1-35_031621545pckACOG1866Phosphoenolpyruvate carboxykinase (ATP)ATGACGCAAGCCAATAACGCCGTGTATACCGATCTGAGTGTCGATGATCTGGTCAAAGAAGCCCTGAATCGCGGTGAAGGCGAGCTTGCCGATACTGGCGCGCTGGTTGTTCGTACCGGTCATCGTACCGGTCGCTCGCCAGTCGACCGTTTCATCGTGGAAGAGCCGACCACCCAGGACGCCATCGCCTGGGGCCCGATCAACCGCAAGTTCCCGGCCGACAAGTTCGATGCCCTGTGGAGCCGCGTCGAGGCCTATCTGGGTGAGCGCGAGCGTTTTGTTTCCCACGTGCATGTAGGTTCCGATCCTGCGCACTACCTGCCGGTCAAGATGACCACCGAGACGGCCTGGCACAACCTGTTCGGTCGTTGCCTGTTCATCAATCCCGAGCAGTACAACGCCGGCGGCAAGGACGAGTGGCAGATCCTCAACGCGCCGAACTTCGTCTGCGAGCCTGAGCGCGACGGCACCAATTCCGACGGCACCGTAATCATCAACTTTGCTGCCAAGAAAGTGCTGATCGCTGGCATGCGCTACGCCGGCGAAATGAAAAAAGCCCTGTTCTCCGTGCAGAACTTCTTGCTCCCAGCGGTCGACGTGCTGCCGATGCACTGCGCCGCCAACATGGGCGAAGAAGGCGACGTGACCTTGTTCTTCGGTCTGTCGGGCACTGGCAAGACCACCCTGTCCGCCGACGAAAGCCGTTACCTGATCGGTGACGACGAGCACGGCTGGGGCGTGGGTGTGGTCTTCAACATCGAAGGCGGCTGCTACGCCAAGTGCATCGACCTGTCCGAGAAGAACGAGCCGGTCATCTGGAAAGCCATCCAGCACGGCGCCGTCCTGGAAAACGTGGTCCTGGACCCGGTCACCAAGAAAGCCGACTACGCCGACGACAGCCTGACCCAGAACAGCCGCGCCGCCTATCCGCGCGAGCTGATCGAAAAACGCGCGCCGAAAAACCTCGGTGGCGAGCCAAACGCCGTGATCTTCCTGACCTGCGACCTGACCGGCGTGCTGCCACCGGTGTCGATCCTCAGCGAAGAACAAGCCGCCTACCACTTCCTGTCCGGCTACACCGCACTGGTGGGTTCGACCGAAATGGGCTCGGGCAGCGGCATCAAGTCGACCTTCTCCACCTGCTTCGGCGCGCCGTTCTTCCCACGTCCGGCCGGTGAATATGCAGAGCTGCTGATCAAGCGTATCCGTGGTTTCGGCTCCAAGGTCTACCTGGTCAACACCGGCTGGACCGGCGGCGGCTACGGCGTCGGCAAGCGCTTCAACATCCCGACCACCCGTGCGGTGATCGCGGCGATCCAGAGCGGCGCGCTGATCGATGCTGAAACCGAACACCTGGATATCATCAACCTGGACGTGCCGCTGGCTGTCCCAGGCGTCGAAACCGGCCTGCTGAACCCGCGCAATACCTGGGCCGACAAGGCTGCCTACGACGAAGCCGCCAAGGCACTGGCCGGTCTGTTCATCGAGAACTTCAAGAAGTTCGACGTGAGCGATGCAATCAAGGCGGCGGGTCCGCAACTGTAAMTQANNAVYTDLSVDDLVKEALNRGEGELADTGALVVRTGHRTGRSPVDRFIVEEPTTQDAIAWGPINRKFPADKFDALWSRVEAYLGERERFVSHVHVGSDPAHYLPVKMTTETAWHNLFGRCLFINPEQYNAGGKDEWQILNAPNFVCEPERDGTNSDGTVIINFAAKKVLIAGMRYAGEMKKALFSVQNFLLPAVDVLPMHCAANMGEEGDVTLFFGLSGTGKTTLSADESRYLIGDDEHGWGVGVVFNIEGGCYAKCIDLSEKNEPVIWKAIQHGAVLENVVLDPVTKKADYADDSLTQNSRAAYPRELIEKRAPKNLGGEPNAVIFLTCDLTGVLPPVSILSEEQAAYHFLSGYTALVGSTEMGSGSGIKSTFSTCFGAPFFPRPAGEYAELLIKRIRGFGSKVYLVNTGWTGGGYGVGKRFNIPTTRAVIAAIQSGALIDAETEHLDIINLDVPLAVPGVETGLLNPRNTWADKAAYDEAAKALAGLFIENFKKFDVSDAIKAAGPQLPGPT0001405_2646DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001405-pckA-K01610NANA
D1-35_03163354hypothetical proteinATGCATTTCGCCCCAGACTTTCCCGACGATCTCGCCATGCGTCAGCTCATGGAATTACTCCACGAAGAACTCGGCCTGCCGGAACGCAAGACCATTCGCCTGGACACTGCGATCAATTTCGATCTGGGCTGCGATGGCGCGGATGCCCGGCACCTGATGGAAGCGCTGGAGGAGCGGTTCGTCATCGACCTTGTCGACTACGACGCCTATCGTTACTTCCAACCGGAAGGCTTTGATGTGTTTCAAAAGCGCAGGGCCAAGGGCCGGGGAGACAAGCTGCCGCTGACCATCGGCATGCTTTACAAAGCGATCAAGGCGCAACGATGGGATACGCAAGAAGTGGAGAAAAAATAGMHFAPDFPDDLAMRQLMELLHEELGLPERKTIRLDTAINFDLGCDGADARHLMEALEERFVIDLVDYDAYRYFQPEGFDVFQKRRAKGRGDKLPLTIGMLYKAIKAQRWDTQEVEKKNANANANANA
D1-35_031641227fadJ_3COG1024Fatty acid oxidation complex subunit alphaATGAGCCAGACATCCTTTGATATCCAGCGCGCCGCGGTGGTCGGGGCGGGCACCATGGGGCGAGGCATCGTGATGTGCCTGGCCAATGCCGGCGTTACGGTGCAGTGGGTCGACAATAATCCGCAAATGCTTGAGCAGGCGCTGGCGGCGGTGGTCGACACCTATGCCCACAACGTGCGCCAGGGACGCATTGACCAAGGTGAAGCCGATGCGCGCATCGCCCGAATAGCTCGGGCGGACGACTACGCGGCAATCCGTAACGTGGATCTGGTCATCGAAGCGGTCTACGAGAACCTTGAACTCAAGCAGAAGATCTTTCGCGAGCTGGACGGCATGCTCAAGCCCGAGGCAATCCTGGCAAGCAACACCTCGGCGCTGGACATCGATGCGATTGCCGCCGCCACGCGCAGGCCGACCCAGGTGCTGGGCCTGCATTTCTTCAGCCCGGCGCACATCATGAAATTGCTCGAAATCGTTCGTGGCGCGCAAACCTCCAGACCGGCGCTGGATGCCGCCCTGGCGCTGGGCAAACGCATGGGCAAGGTGAGCGTGGTTTCGGGCAATTGCCACGGGTTTATCGGCAACCGGATGCTTCATCCCTATGTGCTGGAGGCGCGCAAGATGCTGCTGGAGGGAGCGTTTCCCCATCAGGTCGATGCCGCGCTGCAAGGTTTCGGCTTCGCCATGGGGCCGTTCCGCATGTATGACGTGGTTGGGATCGACCTGGAGTGGCGCGCGCGCGAGTTGGCGGGTAAAGGTCAGGATGCGCCCGAAGTGCAAGTGGACAACCGCCTGTGCGAGATGGGGCGGTTCGGCCAGAAGAGTGGTAACGGGTACTACCACTATGAGCCGGGCAGCCGCCAGGCTGAGCAGGATGTGGAGGTCGATGCGCTGGTGCTGCGGGTCAGTGAGGAGCTGGGGTTTCAGCGCCGCGAAATAGCTGCCGAGGAGATTCTGGAGCGCTGCTTGCTGGCATTGGTCAATGAAGGTGCGAAGATCCTCCAGGAGGGCATTGCCGAGTCTTCCCGCGACATCGACCTGGTTTATCTCAATGGCTATGGCTTCCCGGCGGACAAGGGCGGTCCGATGGCCTGGGCGGATCAGCAGGGCCTCGAAGACATCCACGCACGGTTGCTGGAGCTCGAGACGAAGCAGGGGGACCAATGGAAGCCTGCCCGTCTGATTGGCGAGCTGGCTGCGCAAGGCAAGAGCTTCTCGCAGCGATAGMSQTSFDIQRAAVVGAGTMGRGIVMCLANAGVTVQWVDNNPQMLEQALAAVVDTYAHNVRQGRIDQGEADARIARIARADDYAAIRNVDLVIEAVYENLELKQKIFRELDGMLKPEAILASNTSALDIDAIAAATRRPTQVLGLHFFSPAHIMKLLEIVRGAQTSRPALDAALALGKRMGKVSVVSGNCHGFIGNRMLHPYVLEARKMLLEGAFPHQVDAALQGFGFAMGPFRMYDVVGIDLEWRARELAGKGQDAPEVQVDNRLCEMGRFGQKSGNGYYHYEPGSRQAEQDVEVDALVLRVSEELGFQRREIAAEEILERCLLALVNEGAKILQEGIAESSRDIDLVYLNGYGFPADKGGPMAWADQQGLEDIHARLLELETKQGDQWKPARLIGELAAQGKSFSQRPGPT0008395_2374DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008395-fadN-K07516NANA
D1-35_03165420hypothetical proteinATGCCCCAACGCGCCGAGTATCTGCATTTCCAGCCAGTGACTACACGCTGGCATGACAACGATGTGTACGGTCACGTCAATAACGTCACCTACTACAGCTTTTTCGATACAGCGGTAAATACCTATCTGATCGAGACCGGCGGCCTGGATATCCATGACGGGGAGGTGGTGGGCTTCGTCGTGAGTTCAGCCTGCGATTATTTTGCCTCGATCGCTTTCCCGGACCGGATCGAAATCGGCCTGCGAGTCGGGAAGCTGGGCAATAGTTCGGTGCAATATGAGCTGGCGGTGTTCAAGGCGGGCGAGGACGAGGCCTGCGCGGCGGGGCGTTTCGTGCATGTATTCGTGGACCGGGCGTCGAATCGGCCAGTGGCGATTCCGGATCAGCTACGCGGGGCGTTGGAGCGGTTGGTGGCCTGAMPQRAEYLHFQPVTTRWHDNDVYGHVNNVTYYSFFDTAVNTYLIETGGLDIHDGEVVGFVVSSACDYFASIAFPDRIEIGLRVGKLGNSSVQYELAVFKAGEDEACAAGRFVHVFVDRASNRPVAIPDQLRGALERLVAPGPT0001850_6134DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0001850-ybgC-K07107NANA
D1-35_03166483hypothetical proteinATGAAGTTCTCCTCCATTCTCTTGTTGTCCCTTGGCCTGATCAGTGGCGTCGCATCTGCCGGCGGTACCGCCGAAGCAGGTGTAGGCGGCGCATTGGGCGGGGTTTTGGGTTCGGTCGTCGGCCAGTCCCTGGGCGGCAACACCGGTTCCACTATCGGCGCGGCCCTGGGCGGCGCAGGTGGCAGTGCGGTCGGTGCCGATAAACGCAGCCGCGGCGAAGCGGCCATCGGCGGCGCGCTGGGCGCAGCCGGCGGCAACGTGGTTGGCCGCAGCGTGGGCGGCAGCACGGGTAGCCTGATCGGTGCCGCAGCGGGCGGTGGCGCCGGTGGCGCATTGGGTAACTACATGGGCAAGGACGACGATGACGACCGTTATGAAGGTCGCCGTGGTGATCGCCGCTACTACCGTGACGGCCACCCGGGTCGCGGCCATGCCTACGGCCATCGCAAGCATAAGCACAAACATCGCTATCACGACGATTGAMKFSSILLLSLGLISGVASAGGTAEAGVGGALGGVLGSVVGQSLGGNTGSTIGAALGGAGGSAVGADKRSRGEAAIGGALGAAGGNVVGRSVGGSTGSLIGAAAGGGAGGALGNYMGKDDDDDRYEGRRGDRRYYRDGHPGRGHAYGHRKHKHKHRYHDDNANANANANA
D1-35_031682349ydePCOG0243Protein YdePGTGAGCAATCATCAACAAGCCAACCAGAAACCCGCACCGCGCTACAAGCCTTACAAGGGCCCGGCCGGCGGTTGGGGCGCGCTGATCAGCGTCGCCCAGGCCTGGCTGACCAGCGATAACGCGCTGAAAAACATTCGCATGATGCTCAAGACCAACCAGAACGGCGGTTTCGACTGCCCTGGCTGCGCCTGGGGTGACTCGCCGGAAAGCGGCATGGTCAAGTTCTGCGAGAACGGCGCCAAGGCGGTGAACTGGGAAGCGACCAAGCGTCGTGTCGACGCGGCTTTTTTCGCCAAGCACAGCGTGACGTCGTTGCTGGAGCAGAGCGACTACTGGCTCGAATACCAGGGCCGCCTGACGGAGCCTATGAGCTACGACGCGCAAACCGACCGCTACAAGCCCATCAGTTGGGAAGCCGCGTTCGCTATGATCGGCAAACACTTGCAAGGGCTTTCCAGCCCGAGCCAGGCCGAATTCTATACCTCGGGTCGCGCGAGCAACGAAGCGGCATATCTATACCAGCTATTCGTGCGCGCCTATGGCACCAACAATTTCCCCGACTGCTCGAACATGTGCCATGAGGCCAGCGGCGTGGCCCTGTCCCAAAGTGTCGGGGTGGGCAAGGGCACGGTAACCTTTGACGACTTCGAGCATGCCGACGCGATTTTCGTCTGGGGCCAGAACCCCGGCACCAACCACCCGCGGATGCTCGAACCGCTGCGCGAAGCAGTGAAGCGCGGCGCCCAAGTGGTGTGTATCAACCCGCTGAAAGAGCGTGGCCTGGAGCGCTTCCAACATCCGCAACACCCGCTGGAAATGCTCACCAACGGCGACAAACCCACCAACACCGCGTATTTCCGCCCAGCTCTGGGCGGCGACATGGCCGTGCTGCGGGGCATGGCGAAGTTCCTGCTGCAATGGGAACGTGACGCGCAGAACAGCGGCGCCCCTGCGGTATTCGATCATGCGTTCCTCAACGAGCACAGCGCCAACGTCCTGGATTACCTGGCGGTGGTCGACGACACCCCTTGGGAGCAGATCGCCGAGCAATCCGGGTTGACGCTCGCCGAAATCGAACAAGCGGCGCGCATGTACGCCAAGGCCAAGAACGTGATCATGTGCTGGGCGATGGGTATCACCCAGCACCGCCATTCAGTGGCGACGATCCAGGAAATCGCCAACCTGATGATGCTGCGCGGCAACATTGGCAAGCCAGGCGCCGGCCTGTGCCCGGTGCGTGGCCACAGTAACGTGCAGGGCGACCGGACCATGGGAATCAACGAGCGCCCGCCCGTTGCATTCCTCGACGCTCTGGAACGGCGCTTCCAGTTCAAGGTACCGCGTGAAAACGGCCACAACGTGGTCGAGGCGATCCACGCCATGGCCGAGGGTCGGGCCAAGGTGTTCATCGCCCTGGGCGGCAACTTCGCCCAGGCTACGCCAGACAGCCACCGGACCTTCCAGGCGCTGGGCAATTGCGACCTGACGGTACAGATCAGCACCAAGCTCAACCGCAGCCACCTGGCCCATGGCAAGGAAGCGTTGATCCTGCCATGCCTGGGCCGGACTGACATCGACCTGCAAGCCGATGGCCCGCAGGCGGTGACGGTGGAGGACTCCTTCAGCATGGTCCACGCTTCGAACGGCCAACTGCAGCCACTGTCGGACCAGATGCGCTCCGAGCCGTGGATCATTGCCGGCATCGCCGCCGCCACCCTGGGCAGCCGCCCGGTGGATTGGAACTGGCTGGTGGCCGATTACAGCCGCATCCGCGACCTGATCGCCGAGACCATCCCTGGCTTCAAGGACTTCAACGAAAAACTCAAGAACCCCGGCGGCTTCTACCTGGGTAACAGCGCGGGGGCACGTCGCTGGAACACGCCTTCGGGCCGCGCCAACTTCAAGCCCAACCTGTTGCCGACCGACCTGATCCACGAACGCACCCGGGCTACAGGCCAATTGCCGGACCTGATCCTGCAATCCATGCGCTCGCATGACCAGTACAACACCACGATCTATGGCCTCGATGATCGCTATCGTGGCGTGAAGGGCCAACGTGACGTGTTGTTCGTCAACGAAGCGGACATCATCCGCCTGGGCTTCAAGCCAGGGCAGAAGGCAGACATCGTCTCGCTCTGGGATGACGGCCGCGAGCGCCGGGTCAAGGGCTTTACCCTGTTGGCCTTTGATATCCCGGCCGGACAGGCTGCCGCCTATTACCCTGAAGTGAACCCGCTGGTGCCGCTGGAAAGCACCGGCGACGGCAGCCACACCCCGACCTCGAAGTTCGTGGCTATCCGCCTGGAAGCCGCAAGCGAGAACGGGTTGATCATGGCCAAGTCGGCCTGAMSNHQQANQKPAPRYKPYKGPAGGWGALISVAQAWLTSDNALKNIRMMLKTNQNGGFDCPGCAWGDSPESGMVKFCENGAKAVNWEATKRRVDAAFFAKHSVTSLLEQSDYWLEYQGRLTEPMSYDAQTDRYKPISWEAAFAMIGKHLQGLSSPSQAEFYTSGRASNEAAYLYQLFVRAYGTNNFPDCSNMCHEASGVALSQSVGVGKGTVTFDDFEHADAIFVWGQNPGTNHPRMLEPLREAVKRGAQVVCINPLKERGLERFQHPQHPLEMLTNGDKPTNTAYFRPALGGDMAVLRGMAKFLLQWERDAQNSGAPAVFDHAFLNEHSANVLDYLAVVDDTPWEQIAEQSGLTLAEIEQAARMYAKAKNVIMCWAMGITQHRHSVATIQEIANLMMLRGNIGKPGAGLCPVRGHSNVQGDRTMGINERPPVAFLDALERRFQFKVPRENGHNVVEAIHAMAEGRAKVFIALGGNFAQATPDSHRTFQALGNCDLTVQISTKLNRSHLAHGKEALILPCLGRTDIDLQADGPQAVTVEDSFSMVHASNGQLQPLSDQMRSEPWIIAGIAAATLGSRPVDWNWLVADYSRIRDLIAETIPGFKDFNEKLKNPGGFYLGNSAGARRWNTPSGRANFKPNLLPTDLIHERTRATGQLPDLILQSMRSHDQYNTTIYGLDDRYRGVKGQRDVLFVNEADIIRLGFKPGQKADIVSLWDDGRERRVKGFTLLAFDIPAGQAAAYYPEVNPLVPLESTGDGSHTPTSKFVAIRLEAASENGLIMAKSAPGPT0019635_3094DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_FORMATE_UTILIZATION,PGPT0019635-fdoG|fdhF|fdwA-K00123NANA
D1-35_03169840fdhDCOG1526Sulfur carrier protein FdhDATGAACGACAAGCCTCCGGTCTGTCCTGCGCCTGCCTTGGAAGCCTCCAAGCCAGCCGCCAGCCAGAGCTATCGCTACTGCAACCTGGACCACTCGCAATCGGACAGCGCCGCGCTGGCCGAGGAAGTGGCGTTGGCGATTGCCTATAACGGCATCAGCCAAGCGGTAATGCTGGTCACGCCCACTGACCTGGAAGATTTTATCGTCGGCTTCAGCCTCGGCAGCGGCATCATCGAAGACCCGGCGGATATCTACGACCTGCAACTGAGCGGAGCCGGTTCCGCGCAATATGCCCAGGTCACCATTGCCAACCGCGCCTTCTGGAACCTCAAGCAACAACGCCGGCAACTGGCCGGCACCAGCGGTTGCGGGCTGTGCGGGGTCGAGGCGGTGGAACAGGCGCTGCCCAACCTCAAGACGCTGCCGGGCGCACCGCTGCCACCGGCGCAATGGCTTGACGGCCTGCGCCAGCGCATCGGCCAGTTCCAACCCCTGGGCCAGCACTGCGGTGCGGTACACGCGGCGCTGTTCATGAATGACCAGGGTGAACTGCTGCTGGGCCGCGAAGACATCGGTCGCCACAACGCCCTCGACAAATTGATCGGTGCGCTGATCCGGCAGCAGATCCCGATAGCCGGGGGCCTGGCGATCGTCACCAGCCGCTGCAGCCTCGAATTGATTCAAAAAGTATTGCGTGCGGGCATCCAGACGCTGGTCAGCCTGTCGTCGCCCACGGGCCTCGCCGTGCAGTGGGCTCGCCAACACAACCTCAACCTCATCCACCTGCCGCAAAAAAGTGCGCCGCGGGTCTACAGCCCTGCGATGGAGAATCAAGCGTGAMNDKPPVCPAPALEASKPAASQSYRYCNLDHSQSDSAALAEEVALAIAYNGISQAVMLVTPTDLEDFIVGFSLGSGIIEDPADIYDLQLSGAGSAQYAQVTIANRAFWNLKQQRRQLAGTSGCGLCGVEAVEQALPNLKTLPGAPLPPAQWLDGLRQRIGQFQPLGQHCGAVHAALFMNDQGELLLGREDIGRHNALDKLIGALIRQQIPIAGGLAIVTSRCSLELIQKVLRAGIQTLVSLSSPTGLAVQWARQHNLNLIHLPQKSAPRVYSPAMENQAPGPT0019920_1DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_PHENYLACETATE_DEGRADATION,PGPT0019920-padA-K18360NANA
D1-35_03170885cynR_2HTH-type transcriptional regulator CynRATGGACATCAAGCAGCTGAAATTTCTTATCGCGCTCGAAGAAACCCGCCACTTCGGCCAGGCTGCCGCCCGCTGTCACATCACCCAGCCCACCTTGTCGATGCGCCTGCGCAGCCTGGAGGAAGAGCTGGGTTTGCCACTGGTCAATCGCGGCCAGCGCTTCGAGGGTTTTACCGCACCGGGCGAGCGGGTGCTGGCCTGGGCGCGCACGGTGTTGGCGGCCTATGACGGACTACAAGCTGAAGCGGCGGCCTGTCGCGGCAACCTGGTGGGCACGCTGCGCCTGGGCGTGGTTCCGCTGTCGGATTTCGACCCGCTGGCGATGATGCAGCGCCTGCACACCGACCATCCCAGCCTGCGGTTCGAATTGTCGTCCCTGAGCTCCGAACGCATTCTCGAACAATTGGCGAACAACCGGATCGACCTGGGCATCTCTTACCTGGAACGTCTGGACAACGAGCGTTTCGAAGCCCTGCCCTTCGCCCATACCCGCATGGGCCTGCTATACGACCAACGGTTTTTCTTTTTTGGCGAAGAACCGCTGAGCTGGGAAGCGCTGGTGGAGCTGCCCCTGGGCATGCTCACCAGCGGCATGCATTTTCGCCAATCCATCGACCATCACTTCCACAGCCGGGGGCTGACACCCCAACCGCTGCTGCAAACCGACGCGGTGCACCAATTGTTACAAGCTGTGCACGGCGGACTGTGTTGCGCCGTAGTACCGCTGGAAAGCGGGCTGAAGCTCACCGAAGACCTGCGAATCCAGCCCATCAACAGCGCCCAGACGCTGGTCCCGCTGGGGCTGATCATGCGGCGCGGTGCCCCACGCTCGGCATTGGCGGAGGCTTGTTTCGCCCTTTATCAGCAATCAGTAACCATTCCTTGAMDIKQLKFLIALEETRHFGQAAARCHITQPTLSMRLRSLEEELGLPLVNRGQRFEGFTAPGERVLAWARTVLAAYDGLQAEAAACRGNLVGTLRLGVVPLSDFDPLAMMQRLHTDHPSLRFELSSLSSERILEQLANNRIDLGISYLERLDNERFEALPFAHTRMGLLYDQRFFFFGEEPLSWEALVELPLGMLTSGMHFRQSIDHHFHSRGLTPQPLLQTDAVHQLLQAVHGGLCCAVVPLESGLKLTEDLRIQPINSAQTLVPLGLIMRRGAPRSALAEACFALYQQSVTIPNANANANANA
D1-35_03171450kbpCOG1652Potassium binding protein KbpATGAGCCTTTTCAGTTTCTTGAAAGATGCCGGTGAAAAAATCCTCGATGCGCTGACGCCCGACAAGGCAGAAGCCAACAGCGAAGCGTTGACCAAGCATGTACAGGAGGCCCTGACAGGGATCGATACTTCAAAGATTCAGGTCAAGGTCGAAGGTGAGAAAGTCATCGCCACGGGTGAAGCCGCAACTCAGGAAGAGAAGGAAAAGATTCTCCTGGCGCTGGGCAACGTGGCCGGTATCAGCGGTGTCGATGACCAGATCACCGTGACCGGCCCGGTCGCGACGCAGGCCAAATTCGTCACCGTGGAGAAAGGCGACACCTTGAGCGCCATTTCCAAGCGGGTTTACGGCGACCCGAACAAGTACAACAAGATTTTCGAAGCCAACAAGCCGATGCTCAAGCACCCGGACAAGATCTACCCAGGGCAGTCACTGCGTATCCCTGAATAGMSLFSFLKDAGEKILDALTPDKAEANSEALTKHVQEALTGIDTSKIQVKVEGEKVIATGEAATQEEKEKILLALGNVAGISGVDDQITVTGPVATQAKFVTVEKGDTLSAISKRVYGDPNKYNKIFEANKPMLKHPDKIYPGQSLRIPENANANANANA
D1-35_03172663yrfGCOG1011GMP/IMP nucleotidase YrfGATGGCGTTGTTGCCCTGGCACGAGATCGATACGGTTCTGCTGGACATGGACGGCACCCTGCTGGACCTGCATTACGACAATCACTTCTGGCTGGAGCACCTGCCCCAGCGCTATGCCGAACTGCATGGCGTCAGCCGGGCCATGGCGGAGATGGAACTACAGCCGCTGTTCGAGCGCAACGCCGGCCAGTTGCAGTGGTACTGCCTGGATTTCTGGAGTGCCGAGCTGAAGCTGCCGGTGCGCGAACTGAAGCTGGAAACCGCCCACCTGATCGCCCTGCGCCCGGACGCGGATACGTTTCTGGCAGCCATCCAGCAGGCCGGCAAACGGGTCGTGATGATCACCAATGCCCACCGCGACTCGTTGTCCCTGAAGCTGGAACGCATCGAACTGGCTCCGTATTTCGAGCGTCTGATCAGCTCCCACGACTACGGTTTTCCCAAGGAAAGCCCGCAATTCTGGGACGCACTGCAAGCCGACCTGGACTTCGACCCGGCCCGCAGCCTGTTCATCGACGATACCCTGCCGGTATTGCGCAGCGCCCGGGATTTTGGCATCGCACATTTGCTGGCGGTCAGCGAGCCGGACAGTCGCAAGGGGCCGAAGGATACGGGGGAGTTCGATGCCGTCAGAGATTATCGGGATTTGATTGCCGGGCTTTGAMALLPWHEIDTVLLDMDGTLLDLHYDNHFWLEHLPQRYAELHGVSRAMAEMELQPLFERNAGQLQWYCLDFWSAELKLPVRELKLETAHLIALRPDADTFLAAIQQAGKRVVMITNAHRDSLSLKLERIELAPYFERLISSHDYGFPKESPQFWDALQADLDFDPARSLFIDDTLPVLRSARDFGIAHLLAVSEPDSRKGPKDTGEFDAVRDYRDLIAGLPGPT0013415_525DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013415-yrfG-K20881NANA
D1-35_03173567nudECOG0494ADP compounds hydrolase NudEATGCGCCAGACACCCACCATACTCGACCGACGGATCGTCGCCACCAGCCGCCTGTTTTGCGTGGAAGAACTGAAACTGCGTTTTTCCAACGGTGTGGAACGCACCTACGAACGCCTGGCGGGCAAGGGCGCAGGTTACGGTGCGGTGATGATCGTGGCGATGCTCGACGCCGACCATGCGGTGCTGGTGGAAGAGTATTGCGGCGGTACCGAGGCCTACGAATGGTCCCTGCCCAAGGGCCTGATCGAGCCGGGTGAAGATGTGCTGGCGGCGGCCGAGCGCGAACTCAAGGAGGAAGCCGGTTTTGGCGCCCGTCAACTGGAACACCTGACTGAGTTGTCACTGTCTCCCGGCTACATGAGCCAGAAGATCCAGGTGGTGCTGGCGACCGATCTGTACGAAGAGCGTCTGGAAGGCGACGAACCCGAGCCAATGCGTGTGGACAAGGTCAACCTGGGCGAGCTGTCGGCCCTGGCGCAGAACCCTCAATTCACCGAGGGCCGGGCGTTGGCGGCGTTGTACCTGGCCCGCGATCTGCTGACTCAGCGCGGAGCCTACCTGCCATGAMRQTPTILDRRIVATSRLFCVEELKLRFSNGVERTYERLAGKGAGYGAVMIVAMLDADHAVLVEEYCGGTEAYEWSLPKGLIEPGEDVLAAAERELKEEAGFGARQLEHLTELSLSPGYMSQKIQVVLATDLYEERLEGDEPEPMRVDKVNLGELSALAQNPQFTEGRALAALYLARDLLTQRGAYLPPGPT0021615_140DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021615-nudE-K08312NANA
D1-35_03174828cysQCOG12183'(2'),5'-bisphosphate nucleotidase CysQATGAATTTTCCGCATCCCCTGATGGCCCCGGTTATCGAGCTGGCGCTCACGGCTGGCGACGCGATCCTGCCCTTCTGGCGGGCCGATGTGGAGGTCGTGCGCAAGGCCGACGAATCGCCGGTGACCGCCGCGGACATGGCAGCTCACCATGTGATCGTGGCCGGGCTCAAAGCCCTGGCGCCGGATATCCCGATCCTTTCCGAAGAGGATGCCGATATTGCGCAAAGCGTCCGCGCCGGCTGGCAACGCTGGTGGCTGGTGGATCCGCTGGACGGCACCAAGGAATTCATTTCCGGCAGCGAGGAATTTACCGTCAATATCGCCCTGATCGAGGACGGACGAGTGGTGTTCGGTGTGGTGTCGATGCCCACCAACGGTCGTTATTATGCCGGCGGTGCGGGCCTGGGTGCCTGGCGCGGCGACAGGGATGCCGAGCCTGGGGCCATTGCGGTGCGTAACGTCCTGGCGCCCGGTGAAGCCTTTACGGTGGTCGCGAGCCGCCGTCATACCAGCCCGGAGCAGGAACGCCTGTTGGCCGGTTTGAGCGAAAGCCTCGGGGCGCTGCAATTGACCAATATCGGCAGTTCACTGAAGTTCTGCCTGTTGGCTGAAGGTGCGGCGGATTGCTACCCACGTCTGGCGCCGACGTCGCAATGGGACACCGCCGCCGCTCAGGGCGTGCTGGAGGGCGCGGGTGGCGAGGTACTCGACCTGCAGGGCCAGCCGTTCTGCTATCCGGCACGCGAGTCGTTATTGAATACGTCTTTCCTGGCGCTTCCGGCGAAAGCGCCGTGGCGTGGGAAGTTGCTGGAGCTGGCTCGTTCTTGAMNFPHPLMAPVIELALTAGDAILPFWRADVEVVRKADESPVTAADMAAHHVIVAGLKALAPDIPILSEEDADIAQSVRAGWQRWWLVDPLDGTKEFISGSEEFTVNIALIEDGRVVFGVVSMPTNGRYYAGGAGLGAWRGDRDAEPGAIAVRNVLAPGEAFTVVASRRHTSPEQERLLAGLSESLGALQLTNIGSSLKFCLLAEGAADCYPRLAPTSQWDTAAAQGVLEGAGGEVLDLQGQPFCYPARESLLNTSFLALPAKAPWRGKLLELARSPGPT0002975_1476DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002975-cysQ-K01082NANA
D1-35_03175456hypothetical proteinATGAACCGCGACAGCCACTACCTGGAAACGATCCTGCACCGGGACATCCCGCTGACGCAGGACATGGGCCTGAAGGTGCTCGGCTGGCAAGCTCGGCAGCTACGCTTGTTCCTGCCGATCGCAGCCAACGTCAACCACAAGAGCACCATGTTCGGCGGCAGCCTGTATTGCGGCGCCGTGCTCGGTGGCTGGGGCTGGCTGCACCTGGCGCTGCGCGAGGAAGGCATCGAAGACGGGCACATCGTGATCCAGGAAGGGCAGATCAGTTATCCGCTACCGGTTACCCGCGACGCGACCGTCATCTGTGAGGCGCCTGATAAAAAGACCTGGACGCGTTTCCTGGCCACTTATCGTCGCTACGGACGGGCAAGGCTGGCCTTGCAGACGCAGGTGGTGAATGTGGATAGCGAGGACGTGGCGGTGCGGTTTGAAGGGCAGTACGTTTTGCACCGTTGAMNRDSHYLETILHRDIPLTQDMGLKVLGWQARQLRLFLPIAANVNHKSTMFGGSLYCGAVLGGWGWLHLALREEGIEDGHIVIQEGQISYPLPVTRDATVICEAPDKKTWTRFLATYRRYGRARLALQTQVVNVDSEDVAVRFEGQYVLHRNANANANANA
D1-35_031761389dctD_3C4-dicarboxylate transport transcriptional regulatory protein DctDATGACCATCGATAACCAGATTGAGGTGGTGCTGATCGACGACGATCCCCACCTGCGTCAGGCCTTGAGCCAGACCCTCGACCTGGCCGGCCTGAAGATCCTGCCCCTGGGCGAGGCCAATGGCCTGGCCGGGCAATTGCCGCGAGACTGGCCCGGCGTGGTTGTCAGCGACATTCGCATGCCCGGCATGGACGGCCTTGAACTACTGAACCAGCTGCACGCCCAGGATCCGGACCTACCGGTCCTGTTGATCACCGGCCACGGCGATGTACCGCTGGCGGTCCAGGCAATGCGCGCCGGGGCCTATGACTTCCTGGAGAAGCCCTTCGCCAGCGATCATCTGCTCGACAGCGTTCGCCGAGCCCTGGCCTTGCGTCGCCTGGTCCTGGACAACCGCAGCCTGCGCCTGGCCCTTAGTGACCGGCATGAACTCAGCGCCCGCCTGGTTGGCCAATCGGCGCCCATGCTGCGCCTGCGCGAGCAGATCGGCGCCTTGGCGGCGACCCGCGCCGACGTGTTGATCCTCGGTGAAACCGGGGCCGGCAAGGAAGTGGTCGCCCGCGCACTGCACGACCTCTCAAGCCGGCGCAACGGGCCCTTCGTGGCGATCAACGCCGGCGCCCTGGCTGAGTCAGTGGTGGAAAGCGAACTGTTCGGCCACGAGCCCGGCGCCTTCACCGGCGCGCAAAAACGCCGTATCGGCAAGTTCGAATTCGCCAATGGCGGCACATTGTTCCTCGATGAAATCGAAAGCATGAGCCTGGACGTACAGGTCAAACTGCTGCGCCTGCTGCAAGAACGCGTAGTGGAACGGCTGGGGGGCAACCAGCAGATCCCGCTGGATATCCGCGTCATCGCCGCCACCAAGGAAGACCTGCGCCAGGCCGCCGACCAGGGCCGTTTTCGCGCCGACCTGTATTACCGCCTGAACGTCGCGCCGCTGCGCATTCCACCGTTGCGCGAACGCGGCGAAGATGTGCTGATGCTGTTCCAGCACTTTGCCAACGAAGCCAGCACCCGCCATGGCCTGCCGCCGCACGAACTGCAGCCGCCCCACCGGGCGCTGCTGTTACGCCACAGTTGGCCGGGTAACGTGCGCGAATTGCAGAACGCCGCCGAACGTTTTGCCCTGGGCCTGGAACTGGCACTGGACAACAGCGCGCCGGACAGCGGCCCCGCTGCGGTGGATGTGATCAGCGGCGGCCTGAGCGAGCAGGTGGAGAACTTTGAAAAAACCCTGATCGCCGCCGAACTGGCCCGTTCCCACAGCTCCGTACGCAGTCTCGCCGAAGCCCTGGGCATTCCGCGCAAGACGCTGCACGACAAGTTGCGCAAACACGGGCTGAACTTCGGCGACAGCAGCCATGGCCCGACCGAAGAGTCGGATTGAMTIDNQIEVVLIDDDPHLRQALSQTLDLAGLKILPLGEANGLAGQLPRDWPGVVVSDIRMPGMDGLELLNQLHAQDPDLPVLLITGHGDVPLAVQAMRAGAYDFLEKPFASDHLLDSVRRALALRRLVLDNRSLRLALSDRHELSARLVGQSAPMLRLREQIGALAATRADVLILGETGAGKEVVARALHDLSSRRNGPFVAINAGALAESVVESELFGHEPGAFTGAQKRRIGKFEFANGGTLFLDEIESMSLDVQVKLLRLLQERVVERLGGNQQIPLDIRVIAATKEDLRQAADQGRFRADLYYRLNVAPLRIPPLRERGEDVLMLFQHFANEASTRHGLPPHELQPPHRALLLRHSWPGNVRELQNAAERFALGLELALDNSAPDSGPAAVDVISGGLSEQVENFEKTLIAAELARSHSSVRSLAEALGIPRKTLHDKLRKHGLNFGDSSHGPTEESDPGPT0017310_78DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017310-dctD-K10126NANA
D1-35_031771815dctB_3C4-dicarboxylate transport sensor protein DctBATGCTCATGAATTCCACTCTCCCCCGCAGACCCCGTTGGCGCAGCCTGGCACTGCTGGCCCTGTGCCTGGCGCCGTTGCTGTGGCCGCTGGAGCACCTGGCGGAGCGTTACTACCGCAGCGAGCTGGCCGGGCAGAATCGCCAGACGCTTGATCTCTACGTCGCCAACCTGTTGGGCACCCTGCACCGCTATGAAGTGCTGCCGCAGATTCTTGGCGAGCTGCCGCCCCTGCGCGCAGTCCTGTCTGCGCCGGATGATGGCGTTACCCAGGGCAATGCCAATCGATTACTGAAGAACATCAGCGCCCAGACTGGCGCTGAAGTCATGTACTTGATGGACGCCACTGGCAAGACCCTGGCGGCATCGAACTGGGACAAGCACGACAGTTTCGTCGGGCGCAATTTTGCTTTCCGCCCTTACTACATCGAAGCCATGGCCGGGCGTCTTGGACGCTTCTTCGGCCTGGGCACCACGTCGGGCAAACGCGGTTACTTCTTTGCCGCCGCCGTACGTGATCGCGAAAAAGTCATTGGCGTACTGGTGGTCAAGGTCGACCTGGACCACACCGAAAGCCTGTGGGGCAAGCCCCCTGAGCAATTGCTGGTGACCGACCATAATGGCGTGGTCATTCTGACTTCACGCCAGGAATGGCGGTTTCGCGCAACCCGCCCTTTGAGCACCGAAGAGAGCAAGGCAATCAGCGCGGTCCAACCCTACCCGACCCGCGATCCGAAGCCGCTTCATCTGGACGCCAATGCCTGGCTGACCCAGACCCAGGTCATCGAAGAGACTGGCTGGAACGTGAGCATCCTGGCCCCGCGAACGCTGATCGATCGTCCGGTGCGCACGGTGGTGGTCATTGGTGGCTCGGCGTTGCTGGTCTTGATGTTGCTGCTCGGGTTGATGATGCAGCGCCGGCGCCATTACCTGGAACGGATCGCCTTCGAAGCCAAGGCCCGGCATGAGCTGGAAGGTCGGGTGGCGGAACGCACCAGTGACCTGGAAGGCCTCAACCGGCGCCTGCGCCAGGAAGTGCTGGAGCGCGAGCAGGCCCAGCAGGAGCTGGTCCGCGCCCAGGACGACCTGGTGCAGGCCGGCAAACTGTCGGCCCTGGGCACCATGTCGGCGAGCATCAGCCATGAACTCAACCAGCCGCTGGCGGCCATTCGAAGCTACGCGGAAAACGCCGAGATCCTGCTCGATCACCAACGCACCGACGACGCCCGGGGCAACCTCAAGCTGATCAGCGAACTGACCGGGCGCATGGCCTCGATCATCGCCCATTTGCGCGCTTTTGCCCGCCGCGACCGCCACGCGCCGGAAAGCGTCGCCCTGCAACCGGCGTTGGACGATGCCTTGGCGCTGCTCGCCAAACGTCGGCGCAGCATGGAAGTGGAACTGATCCGTGACCTGCCGGCCGCCACCTTGTGGGTCGAGGCCGGCGAAACACGCTTGCGCCAGGTGCTGGGCAACCTGCTGGCAAACGCCCTTGATGCCCTGACCGAAAAGGGCCCGCCGCGCAGACTCTGGCTCAGTGCCCAGGCAACGGAAACCGGCGTCAACCTGTACATACGCGATAACGGCCCGGGGTTCTGCATGGAAGCCCTGGGCCGGGCCGGCGAGCCTTTTTATACCACCAAGACCCGCACCCAAGGCCTTGGCTTGGGGCTGGCGATCTGCGACACCCTGATGCGCGCCTTCGGCGGCGAGCTGTTGTTCGCCAATCACAAGGAAGGCGGCGCCCTGATTACCCTGAAGCTGCGCGCGGGCGCGCCCGGGGTGAGCCTGCAACCGTCCGAGGACCGTAGTGTATGAMLMNSTLPRRPRWRSLALLALCLAPLLWPLEHLAERYYRSELAGQNRQTLDLYVANLLGTLHRYEVLPQILGELPPLRAVLSAPDDGVTQGNANRLLKNISAQTGAEVMYLMDATGKTLAASNWDKHDSFVGRNFAFRPYYIEAMAGRLGRFFGLGTTSGKRGYFFAAAVRDREKVIGVLVVKVDLDHTESLWGKPPEQLLVTDHNGVVILTSRQEWRFRATRPLSTEESKAISAVQPYPTRDPKPLHLDANAWLTQTQVIEETGWNVSILAPRTLIDRPVRTVVVIGGSALLVLMLLLGLMMQRRRHYLERIAFEAKARHELEGRVAERTSDLEGLNRRLRQEVLEREQAQQELVRAQDDLVQAGKLSALGTMSASISHELNQPLAAIRSYAENAEILLDHQRTDDARGNLKLISELTGRMASIIAHLRAFARRDRHAPESVALQPALDDALALLAKRRRSMEVELIRDLPAATLWVEAGETRLRQVLGNLLANALDALTEKGPPRRLWLSAQATETGVNLYIRDNGPGFCMEALGRAGEPFYTTKTRTQGLGLGLAICDTLMRAFGGELLFANHKEGGALITLKLRAGAPGVSLQPSEDRSVPGPT0017305_754DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017305-dctB-K10125NANA
D1-35_03178549rfbC_2COG1898dTDP-4-dehydrorhamnose 3,5-epimeraseATGAATGTAATCGCCACCGACCTGCCCGGTGTCCTGATCATCGAACCCAAGGTATTTGGTGACGAGCGCGGTTTTTTTTATGAAAGCTTCAACGCGAAGGCATTCAAGGACGCGACCGGCATCGACACTCAATTCGTGCAGGACAATCATTCCCGCTCGCAGAAAGGCGTGTTGCGTGGCCTGCATTATCAATTGCAGAACACCCAGGGCAAACTCGTGCGCGTCACCGCCGGTGAAGTGCTCGACGTGGCCGTGGACATCCGCCGCAGTTCGCCGAATTTCGGCAAATGGGTTGCGGTACGCCTCAGCGCCGACAATCATCGTCAACTCTGGGTGCCACCAGGGTTCGCCCACGGCTTTGTGGTCCTGAGTGAATTCGCGGAATTCCTCTACAAGACCACAAACTACTACGACCCGACATCCGAACGCAGCCTGCTGTGGAACGACCCTGCGCTAGACATCGACTGGCAGTTGGGGGATATCCAGCCGCAACTGTCCGGCAAGGACCTGGCGGCTTCGACCCTGGAGCATGCGGACGTCTTCGCCTGAMNVIATDLPGVLIIEPKVFGDERGFFYESFNAKAFKDATGIDTQFVQDNHSRSQKGVLRGLHYQLQNTQGKLVRVTAGEVLDVAVDIRRSSPNFGKWVAVRLSADNHRQLWVPPGFAHGFVVLSEFAEFLYKTTNYYDPTSERSLLWNDPALDIDWQLGDIQPQLSGKDLAASTLEHADVFAPGPT0014300_3411DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PUTATIVE_TRYLOSE_DERIVATES_MODIFICATION,PGPT0014300-rfbC|rmlC-K01790NANA
D1-35_031792913argD_2Acetylornithine/succinyldiaminopimelate aminotransferaseATGCCACTCGCCACGTTGGTTCACCGTGCCAGTTTGCCAAGCCCACAGATCAGCGCCGAACAGGCACTGGTACTGCTGCGCTCGAATTACGGACTCAGCGGTGACCTGCGACCCCTTGGCAGTCATCAGGACCTCAACTACCGCGTCGACAGCGAGCGCGGGCGGTTCGTGCTGAAAATCTGCCATGGCGACTACGCCGTCCAGGAGCTCCAGGCCCAACATGCCGCGCTCAAGCAGTTGGCCGGGCACGGCGCGGTGAAGGTGCCGCGGGTGATCGAGGCCGCCAATGGCCAGGACCTGCTGACGCTAGATGTCCACGGGCAAGCGATACACATGCGCCTGCTCGAATACATCGACGGCCAGTCCCTCACCCAACTCAAACACCTCACGCCTGATCTGGTGACTGGGCTGGGCCGCCTGTGCGCCGACATGGACCTGGCCCTGGCCACGTTCGACCACCCGGGCCTGGAGCGAACCCTGCAATGGGACGCGCGCCACGCGCCAGCCTTGATCGAACACCTGTTGCCTGTCATCGACGATGACCAACGGCGTCAGTTGATCGCCGACGTCGCACAGCAGGCCGAACGGCGCTTGCAGCCGCTCAAGGCCAGCCTGCCTATGCAGGCGATCCACATGGACATCACCGATGACAACGTGGTCTGGCAACGCGATGCGCAGCGCCAATGGCAACTGCAGGGCGTCATCGATTTCGGCGACCTGATCCGCACCTGGCGTGTCAGCGATCTGTCGGTCACCTGCGCGGCGCTGTTGCATCATGCCGATGCAGATCCGTTTTTCGTCCTTCCGGCGATCAAGGCCTATCACGCGGTCAATCCGTTGCAGCGTGAAGAGCTCCAGGCGCTTTGGCCGTTGATCGTGGCCCGCGCCGCTGTGCTGGTACTTAGCGGAGAGCAACAGGTCGCTGTCGACCCGGATAACCAATATGCTCGCGACAACCTCAGGCATGAATGGGAGATCTTCAACGTCGCCCATTCCGTGCCGCTTGAGTTGATGGAAGCGGCGATCCTTGCCGCCGTGGGCCATAGCCTGCCGCCCTTTGCCAACGAGGGTTTCGCACCGCTGTTGCCGACTTTGGTGGGACGTGATTTCGCCCTGATCGACCTGGGTGTGCTCAGCCCGCATTTCGAGGCGGGCAATTGGGAGCAGCCGGGGATCGATCAGCGCCTGCTGAGCGAAGCCGCCGCCGTGCATGGATTGGCGGCCAGCCGTTACGGGCAGTATCGGTTGTCCCGCACCCGGCCGGACAGTGCCGAAGAGCCCGATACTTATCCGCTCCATGTGGAACTGCACATTCCTCACGGTACGCCGCTGGAGTCGCCCTTCGCCGGGGTGTTGCACAGGGATGCTGACGGCTTGCTGCGGCTCGATGGCCCGCAATTGAGCGTGCGTTTGTGGGGCGTTTCCTCGTCGCTGCAGCCCGGGGCCGCGCTGGCAAAGGGTCAGGTAGTGGGCGACGTGGCTGGGCCATTGCTGGTCCAGCTGTGCCGGGGCGCGCATCTGGCCCCGCCATTGTTCTGCACACCGTCCCGGGCGCAGGCCTGGCAAGCGCTCTGCCCATCACCCGCGGTGCTGTTGGGGCTGGCTTGCGATGCCGAGCCGGAAATCGATCCGCAGGCGCTGCTGGCCCGTCGCGATGCCAGTTTTGCCCGTTCGCAGAAGCACTACTACGTCGACCCGCCGCGCATCGAGCGTGGCTGGCGCAACCATCTGATCGACATGCAGGGCCGCTCGTACCTCGACATGCTCAACAATGTCGCGGTGCTGGGCCATGGCCATCCGCGCATGGCGGCGGTCGCGGCCAGACAGTGGTCGCTGCTTAATACCAACTCGCGTTTTCACTACGCGGCGATCGCCGAGTTTTCCGAACGCCTGCTGGCACTGGCGCCGTCGAACATGGACCGGGTGTTCCTGGTCAACAGCGGCACCGAAGCCAACGACCTGGCGATCCGCCTGGCCTGGGCCTACAGCGGCGGGCGCGACATGCTCAGCGTGCTGGAGGCCTATCACGGCTGGTCGGTGGCGGCCGATGCGGTCTCGACGTCCATTGCCGACAATCCCCAGGCCCTTAGCAGCCGTCCGGACTGGGTGCACCCGGTGACGGCGCCGAACACCTATCGTGGTGAATTCCGCGGTGTCGACAGTGCGCCGGACTACGTGCGCAGCGTCGAGCACAACCTGGCAAAAATCGCTGAACAGAAACGTCAGCTCGCCGGCTTCATCTGCGAGCCGGTATATGGCAATGCCGGCGGCATCGCGCTGCCACCGGGGTACCTGAAACAGGTCTACGCCTTGGTGCGCGAGCGCGGTGGTGTCTGTATCGCCGACGAGGTGCAAGTCGGCTACGGGCGCATGGGCGAGTTTTTCTGGGGCTTCGAGGAGCAAGGCGTGGTGCCGGACATCATCACCATGGCCAAGGGCATGGGCAACGGTCAGCCGTTGGGGGCCGTCATCACCCGCCGGGAAATCGCCGAGGCGCTGGAAGCCGAGGGATATTTTTTCTCTTCCGCCGGCGGCAGCCCGGTCAGTTGCCAGATCGGCATGGCCGTGCTGGACGTCATGGAGGAAGAAAACCTGTGGGAAAACGCCCGGGTCGTTGGCGGACATTTCAAGGCCCGCCTGGAAGCGCTGATCGACCAGTATCCATTGGTCGGAGCGGTGCATGGCTCCGGGTTCTACCTGGGCGTGGAGCTGATCCGCAATCGCGACACCCTCGAACCGGCCACCGAGGAAACCACCGCGCTGTGCAATCGCCTGCGGGAGTTGGGCATCTTCATGCAGCCGACTGGTGATTACCTGAACATCCTCAAGATCAAGCCACCGATGGTCACCAGTCGCCAGAGCGTGGACTTCTTCGTCGACATGCTGGCAAAAGCCCTGGAGGAGGGGGTGTAGMPLATLVHRASLPSPQISAEQALVLLRSNYGLSGDLRPLGSHQDLNYRVDSERGRFVLKICHGDYAVQELQAQHAALKQLAGHGAVKVPRVIEAANGQDLLTLDVHGQAIHMRLLEYIDGQSLTQLKHLTPDLVTGLGRLCADMDLALATFDHPGLERTLQWDARHAPALIEHLLPVIDDDQRRQLIADVAQQAERRLQPLKASLPMQAIHMDITDDNVVWQRDAQRQWQLQGVIDFGDLIRTWRVSDLSVTCAALLHHADADPFFVLPAIKAYHAVNPLQREELQALWPLIVARAAVLVLSGEQQVAVDPDNQYARDNLRHEWEIFNVAHSVPLELMEAAILAAVGHSLPPFANEGFAPLLPTLVGRDFALIDLGVLSPHFEAGNWEQPGIDQRLLSEAAAVHGLAASRYGQYRLSRTRPDSAEEPDTYPLHVELHIPHGTPLESPFAGVLHRDADGLLRLDGPQLSVRLWGVSSSLQPGAALAKGQVVGDVAGPLLVQLCRGAHLAPPLFCTPSRAQAWQALCPSPAVLLGLACDAEPEIDPQALLARRDASFARSQKHYYVDPPRIERGWRNHLIDMQGRSYLDMLNNVAVLGHGHPRMAAVAARQWSLLNTNSRFHYAAIAEFSERLLALAPSNMDRVFLVNSGTEANDLAIRLAWAYSGGRDMLSVLEAYHGWSVAADAVSTSIADNPQALSSRPDWVHPVTAPNTYRGEFRGVDSAPDYVRSVEHNLAKIAEQKRQLAGFICEPVYGNAGGIALPPGYLKQVYALVRERGGVCIADEVQVGYGRMGEFFWGFEEQGVVPDIITMAKGMGNGQPLGAVITRREIAEALEAEGYFFSSAGGSPVSCQIGMAVLDVMEEENLWENARVVGGHFKARLEALIDQYPLVGAVHGSGFYLGVELIRNRDTLEPATEETTALCNRLRELGIFMQPTGDYLNILKIKPPMVTSRQSVDFFVDMLAKALEEGVNANANANANA
D1-35_03180879N-carbamoyl-D-amino acid hydrolaseATGAGTCGTATCGTTACCGTAGCCGCCACGCAAATGGCCTGTTCCTGGGATCTCGAAGCCAACATCGAGACCGCTGAAAAGCTGGTCCGCCAGGCCGCTGCCCAAGGCGCGCAGGTCATCCTTATCCAGGAATTGTTCGAGACGCCGTACTTCTGCCAGAAGCCGAACCCGGATTATTTGCAGTTGGCGACTCCGGTCGACGAGAACGTCGCCATCAAGCACTTCCAGAAAATCGCCGAAGAACTGCAGGTCGTGCTGCCGATCAGTTTTTTTGAACGGGCCGGGCGTGCGCGTTTCAATAGCATTGCGATCATCGACGCCGACGGTCGCAACCTGGGCATCTACCGCAAGAGCCACATCCCGGACGGTCCTGGCTACCATGAGAAGTATTATTTCAACCCTGGCGATACCGGCTTCAAGGTGTGGAATACCCGCTATGCGAAAATCGGCGTAGGCATCTGCTGGGACCAATGGTTTCCGGAGTGCGCCCGCAGCATGGCGTTGCAAGGTGCGGAAATTCTGTTTTACCCGACCGCCATCGGCAGCGAACCGCACGACAAGACTATTTCATCGCGCGATCATTGGCAGCGTGTACAACAGGGCCATGCCGGCGCCAACCTGATGCCGCTGGTCGCCAGCAATCGCATCGGCAACGAAGAGCAGGATGGCTATGACATCACGTTCTACGGCTCCTCGTTCATCGCCAATCAGTTCGGTGAAAAAGTCCAGGAATTGAACGAGACCGAAGAAGGCGTGCTGGTACACAGCTTCGACCTCGACGAACTGGAACACATTCGCAGTGCCTGGGGCACTTTCCGTGATCGGCGCCCGAACCTGTACGGCGTGATCAAAACTCTCGACGGCTCACTGGAGTCCTGAMSRIVTVAATQMACSWDLEANIETAEKLVRQAAAQGAQVILIQELFETPYFCQKPNPDYLQLATPVDENVAIKHFQKIAEELQVVLPISFFERAGRARFNSIAIIDADGRNLGIYRKSHIPDGPGYHEKYYFNPGDTGFKVWNTRYAKIGVGICWDQWFPECARSMALQGAEILFYPTAIGSEPHDKTISSRDHWQRVQQGHAGANLMPLVASNRIGNEEQDGYDITFYGSSFIANQFGEKVQELNETEEGVLVHSFDLDELEHIRSAWGTFRDRRPNLYGVIKTLDGSLESPGPT0008885_627DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_DEGRADATION,PGPT0008885-UPB1_like|pydC-K01431NANA
D1-35_031811107aguACOG2957Agmatine deiminaseATGACAACTTTGCACAGCACTCCGCGCGCGGACGGTTTTTACATGCCTGCCGAGTGGGCGCCCCAGACTCAGGTCTGGATGATCTGGCCCGAGCGCCCGGATAACTGGCGCCTGGGCGGCAAGCCCGCGCAGGCCGCTCATGTGGCGGTTGCCAAGGCCATCGCCCGTTTCGAGCCGGTTACCGTGGCGGTATCCACCGCCCAATACGAAAACGCTCGGGCGCGGCTCGATGTGCCGAATATCCGCCTGGTGGAAATGTCCAGCGACGACGCCTGGGTCCGGGACACAGGCCCGACGTTCGTGATCAACAACAACGGCGAAGTGCGCGGTGTCGATTGGGACTTCAATTCCTGGGGCGGCTTCGAGGGTGGCTTGTATTCCCCATGGAACCGGGACTCGCTGGTGGCCGGCAAGATTCTCGAAATCGAGCGCAGCCCGCGCTACCGCACCGAGGGCTTCGTCCTCGAAGGTGGTTCGATCCATGTCGATGGCGAAGGCACGTTGATCACCACCGAGGAATGCCTGCTCAACCACAATCGCAACCCGCACCTGAACCGCCAGGAAATCGAGGCGGTGCTCAGTGCCCAATTGGCGGTGGACAAGATCATCTGGCTGCCCGATGGCCTGTTCAATGACGAAACCGACGGCCACGTGGATAACTTCTGCTGCTACGTGCGCCCTGGTGAAGTGCTGCTGGCCTGGACCGACGACCCGCAGGACCCGAACTACGCCCGCTGCCACGCGGCGATGGATGTGCTGCAAAACAGCACCGACGCCAAGGGCCGCTCGTTCACGGTGCATAAAATGCCGATTCCCGGGCCGCTGTATGCCACCGAAGAAGAATGCGCCGGGGTGGACGTGGTACACGGCTCACAGGAGCGCAAACCTGGCGAGCGTCTGGCCGGCTCTTATGTGAACTTCCTGATCGTCAATGGCGGCATCATCGCCCCGAGTTTCGACGATCCACTGGACAGCACGGCCAGGCAAATCCTGCAGGACCTGTTTCCCCAGCACGAAGTCATCATGGTGCCTGGGCGAGAGCTGTTACTGGGGGGCGGAAATATCCATTGTCTTACCCAACAGCAACCTGCCGCGCACACAAAATGAMTTLHSTPRADGFYMPAEWAPQTQVWMIWPERPDNWRLGGKPAQAAHVAVAKAIARFEPVTVAVSTAQYENARARLDVPNIRLVEMSSDDAWVRDTGPTFVINNNGEVRGVDWDFNSWGGFEGGLYSPWNRDSLVAGKILEIERSPRYRTEGFVLEGGSIHVDGEGTLITTEECLLNHNRNPHLNRQEIEAVLSAQLAVDKIIWLPDGLFNDETDGHVDNFCCYVRPGEVLLAWTDDPQDPNYARCHAAMDVLQNSTDAKGRSFTVHKMPIPGPLYATEEECAGVDVVHGSQERKPGERLAGSYVNFLIVNGGIIAPSFDDPLDSTARQILQDLFPQHEVIMVPGRELLLGGGNIHCLTQQQPAAHTKNANANANANA
D1-35_03182201hypothetical proteinATGAATATGATAAGCGAGCGCACATGCCATCCCTTGGCCGTAAATGGTGAGTCGCTTCAAGCGTTGGCGCAGTGGTTGAAGTCCAATGGCACGCGTCAGATCAGAGAACCTGATCCGCGCCGGATGATCATCGAGCGCTACCCCGTTGGCCTGTTCAGCGAGGCGGAGCTGGAAGCGTTGTGGGATGTCATGCAGGGATAGMNMISERTCHPLAVNGESLQALAQWLKSNGTRQIREPDPRRMIIERYPVGLFSEAELEALWDVMQGNANANANANA
D1-35_031831287oprD_4Porin DATGTTGAACAAACGCTTTACGTTGCTAGCACTGGGGATTTTGAGCACAACACACGCCATGGCCAGCGATCAGTCCGAGTCCAATGGGTTCGTCGAAGACAGCAGCCTGAAAGTCCTGTTGCGCAACGCCTACATCAACCGCGACTACAAGGACGGCAACAAGGACAAGGCCGAATGGGGCCAGGCCGCCATCGGTACGTTCTCGTCCGGCTTCACCCAAGGCACCGTGGGCGTAGGCGTGGATGCGTTCGGCTTGTATGCACTGCGTCTGGACGGCGGCAAGGGGCGCACCGGTGCACAAGGCATCGATTTCTTCAAGAAAGGCGACAGCGGCAACGCGGCCGATGATCTCTCCAAATTCGGCGCCGCGGTGAAATTCCGTGTCTCCAACACAGTGCTGGCCTACGGCGACCAGATGCCGGCCCTGCCAGTTTTGAACTACGATAATTCGCGCCTGCTGCCAGAAAGCTACACCGGCACGCTGATCACCTCCAAGGAGATCAAAGGGCTCGAATTGAACGCCGGCCGCTTCACCGCCGAGTCCCGTAAAAGCGCTGAAGGCCGTGACAGCGGTGGCTTGAAATCGATCAACGTACTCGGCGGCAGCTACCAGTTCACCGAGCAATTCAAGGCTTCGCTCTACGCATCGGATGTCGAGGACGTATTGAAGAAGCAATACGTGAACGCCAATTACGTGTTCCCGTTGGCCAAGGACCAATCCCTCACCTTGGACTTCAACGGCTATCGCACCAAGCTGGACGACAGCTATGTTCGCGAAAACGGCGTCACTGGTGACGACAACAAAATCTGGAGCCTGGCGGCAACTTTCGCCACCGGCCCGCACAGCTTCACGCTCGCCCACCAGCGCAGCACCGGCGACAGCAACCTGGGCTACGCCTACGGCGGCTATCAACGTGATCAGAATCGTGTCGGCGACGGTGGTAACACCATCTATCTGGCTAACTCCTACTGGTCCGACTTCAACGCCGAAGACGAACGCAGTTGGCAGCTGGGCTACGGCCTGGACTTCACCACGTTCGGTGTACCGGGCCTGACCTACAACGTGGCCTATGTGCGGGGCGACAACATCACCACCTCCACCAGTGAAGGCGGCACCGAGCGCGAGATCTTCAACCAGTTCAAATACGTGGTCCAGAGCGGCCCGGCCAAGGACCTGAGCGTACGCTTGCGCAGCTCGGTCCTGCGCGTGTCGCAGAAATCCAGTGAGTACAACGTCAGCGGTAATGAGCTGCGGGTGTTTGTGGATTATCCGATTAACGTTTTTTGAMLNKRFTLLALGILSTTHAMASDQSESNGFVEDSSLKVLLRNAYINRDYKDGNKDKAEWGQAAIGTFSSGFTQGTVGVGVDAFGLYALRLDGGKGRTGAQGIDFFKKGDSGNAADDLSKFGAAVKFRVSNTVLAYGDQMPALPVLNYDNSRLLPESYTGTLITSKEIKGLELNAGRFTAESRKSAEGRDSGGLKSINVLGGSYQFTEQFKASLYASDVEDVLKKQYVNANYVFPLAKDQSLTLDFNGYRTKLDDSYVRENGVTGDDNKIWSLAATFATGPHSFTLAHQRSTGDSNLGYAYGGYQRDQNRVGDGGNTIYLANSYWSDFNAEDERSWQLGYGLDFTTFGVPGLTYNVAYVRGDNITTSTSEGGTEREIFNQFKYVVQSGPAKDLSVRLRSSVLRVSQKSSEYNVSGNELRVFVDYPINVFPGPT0028135_220DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028135-oprD-K18093NANA
D1-35_03184747hypothetical proteinATGGCGCCATCGGCGTTCACGCCCCTCGACCCCAGGACATGGCTGGCGCAACAGCCGTTGCAGGAAAACGAACACCTGTACCTGATCATCAGCGCGGCGAGCGAAGCCGATGCGCTGCAAGCCCTTCGCACTTCAGTTCTCGCTCATCCATTGCTGCCCATCTGGAGCGACACCCCCTACGCCGCCTGGCAAGCGGTGATGCCCTATGTCACCCAGCTCGAACCCGACTCGGCGTTCCTGCCATGGATCGCTGAAAACGAGACCCTCGATTGGGGCTGGCTGGCCGTATCCCGCTGCGAACCCGGCGAGGTACTGGCGCATCTGCGCAGCTTGACGCAAGTGCGGATGCCGGACGGGAACCCGGTGTTTTTCCGGTTCTGGGATGGGCGGTTCATTTATCCGCTGCTTGAAAAGCTCGGCGCGGCGGCCGGGCAGGTGTTGCCGACGTTCGATCGATACCTGATAAACGGCAAGGCCTTGGAGATCGGTTCAAGAAAAGTTCCGGCTGTCAGGGACTGGCCATGGTGGGACATTCCACAGGAGGTGCTCGACATGTTGCCGGACGAGAACGGGTCCATGCACGTCGGCCTTCTGCTGCAATGGCTGGAAGAAGAGCATCCAGGTGTTCACGCCGCTTGGTCAGAAAACAATCTGAAGCAGAAAATTTCCCGTTTCGTCAGCCGGGTGGATGCTTCGCAAAACCTGCGCGATGCGCTGCTCGAGGACCTTATCCTGGAACAAGGCTGAMAPSAFTPLDPRTWLAQQPLQENEHLYLIISAASEADALQALRTSVLAHPLLPIWSDTPYAAWQAVMPYVTQLEPDSAFLPWIAENETLDWGWLAVSRCEPGEVLAHLRSLTQVRMPDGNPVFFRFWDGRFIYPLLEKLGAAAGQVLPTFDRYLINGKALEIGSRKVPAVRDWPWWDIPQEVLDMLPDENGSMHVGLLLQWLEEEHPGVHAAWSENNLKQKISRFVSRVDASQNLRDALLEDLILEQGNANANANANA
D1-35_03185747hypothetical proteinATGATCGTTCTGAACAGGGAAGTGGGCGAAGCGCTAAGGCGTGACAAATACGTCAACGTCCGCGGTGGTGACTTCAATCTCTACGGTCATTTCGGCGACTTTGTCCGGCTGACCAAAAGCTGGGAAAACATGGAGCCCGACAGCTATTACGGTCAGGCCGAGTCCGGCATGCGTTTCCGTCGCTATAGCGATTTCGAATACAGCCCAGCAACCCGTGAGCTCAAGCAACTCGAGCACCGGGCCTATGTCCAGTCCAAGGCCAACAACAGCTATGTCGGCGGGCTGGAGCGGCACTTCCAGGATTTCTCCAACGAAGTGATCAATTCGCCGGTCATGCGCAGCCTGATCGACACGGACTTCGAGGTGTACAAGAACGTCCTCCCGCAGGAATTGCACGATGAGATCTGGCAGTGCCAGATCCACCAGATCCGTATCGAGATCAAGCCGGGCAAGCAATTGGAAATCACCCCCGAGGGCATCCATTGCGATGGGTATCCGTTCAGCGGCGTGCACTTCTGGGGCCGCAACAATGTGGCGGGCGCTGAAAGCCGTCTCTACAGTCCCCAGGAAGAGCAACTGGCGGCGACCACCTACGAGGACATCCTCGACACGACGTTCTTCCTTGATCGCGACATGCGCCATTACGTGACCCCTGCCCGCAACACCCATAGCCATGAAATGGCTTTCAGGCAGATTCTGGCGATTTCCTTTTCGCGGCCCGGGACCGCTTTCGACATTGTTCGCTGAMIVLNREVGEALRRDKYVNVRGGDFNLYGHFGDFVRLTKSWENMEPDSYYGQAESGMRFRRYSDFEYSPATRELKQLEHRAYVQSKANNSYVGGLERHFQDFSNEVINSPVMRSLIDTDFEVYKNVLPQELHDEIWQCQIHQIRIEIKPGKQLEITPEGIHCDGYPFSGVHFWGRNNVAGAESRLYSPQEEQLAATTYEDILDTTFFLDRDMRHYVTPARNTHSHEMAFRQILAISFSRPGTAFDIVRNANANANANA
D1-35_03186438hypothetical proteinATGGATGAGTCGGCGCAGCAGGTCCTGCTGCGCCGGGCCATGGTCAGGGACGCCGAACGACTGGAGCAGTTTTTTCGCGGTTTTGCCGAAGTGTCATTCTGCGAATGGCAGGATGCCCGGTTCCTGCGTGGGGTGTTGCTGCAGGAAACCACCACAGCCTACCTGGCCTTCGATGCGACGGGTGACGTCGTCGGCGCGGTCATCGGCGGTATGCTTGGCACTCGCGGCACCATCAATCACCTGGCCGTCAGCCCAAGGCATCGCACTCAAGGCCTGGGCCAGCGGCTGGTAGAGGCGGCATCGGCCGACATGAAGCGGGTTGGCGTGCTGCGCATGTTTCTGTTCGTCGACGAAGCCAATCTGGCCGGCAAGCGTTTCTGGGCGGCCCAAGGGTTCTGCGAACCCCGGGGTGAAATCACTTTCGAGAGGGATTTATGAMDESAQQVLLRRAMVRDAERLEQFFRGFAEVSFCEWQDARFLRGVLLQETTTAYLAFDATGDVVGAVIGGMLGTRGTINHLAVSPRHRTQGLGQRLVEAASADMKRVGVLRMFLFVDEANLAGKRFWAAQGFCEPRGEITFERDLNANANANANA
D1-35_03187714ygaZCOG1296Inner membrane protein YgaZATGAACAAGACTTCCAGCCAGCCGCTGGCGGTCGAACCACAAGCCTCGCGAACCTTTGCTGAAGCCAGTCCGGTGGTAGCGGGTTATTTCACGGTTTCGTTTGTGTTCGGTCTGATGGCGGTCAACGCCGGCTTGCCTTTGTGGCTGCCAGTTGCGATGTGCCTGTTCGTGTACGCGGGAGCTTCACAATTCGCCGCGCTGGCATTGATTTCCAGCGGGGCCTCCTTGACCACCATCGTGCTGACGACATTCCTGATCAATGCCCGTCACATGCTGATGTCTGTCTATATGGCCAAGGCTTTGCGAGCACTGGGGCTTAGCCGCTTCGAGCGCTGGTGCTACGCGTCGGGGCTCACCGATGAGTCGTTCGCTTTCCACAGCGTCAAGCTCGGCAGCGGGGCGCCGGTAAGCGTGCGCTACCTGATCGGTTTCAACCTCTTCTGCCACACGTCTTGGGTGCTGGGCGGTTTGCTGGGGGCTGTCTGTGCCCAATACGCCGCGCACCTGATCAAGTATCAGCTCGATTACGCCCTGACCGCGATGATGCTCTATGTGCTGGTTTCGCTGTGCAACACCCGTAACAAACTGATCGCGGCGCTGGCGGCCGTGGCCTGCATGGGCGCGCTGAGCCTGCTGGGCAGTTCGCCGTTCAACGTATTCATTGCCACGTTTTTTGGCTGCGGGGTGGGCGTATGCCTGACCAAACGTTCCTGAMNKTSSQPLAVEPQASRTFAEASPVVAGYFTVSFVFGLMAVNAGLPLWLPVAMCLFVYAGASQFAALALISSGASLTTIVLTTFLINARHMLMSVYMAKALRALGLSRFERWCYASGLTDESFAFHSVKLGSGAPVSVRYLIGFNLFCHTSWVLGGLLGAVCAQYAAHLIKYQLDYALTAMMLYVLVSLCNTRNKLIAALAAVACMGALSLLGSSPFNVFIATFFGCGVGVCLTKRSNANANANANA
D1-35_03188318hypothetical proteinATGCCTGACCAAACGTTCCTGATCCTGGTTGTGGTCCTGATGATGGCCGTGACCTTCCTGCCCCGGGCCTTGCCGCTGCAGGTCAACACCGAAAACTGGCCACCCTTCGTTGCCCGTGCACTGGAATACCTGCCGGTGGCGATCGTCGCTGCGATCACCCTGACGCCGTTGTTGATCAAGGACCAGCAGATACAGCTCGACCGTCCAGAGTTCTACGCCGCGATTCCGACCCTGCTATGTGCGTATTTCAGCCGCAACCTGTTTCTCAGTGTGGCGGTGGGCACGGCGGCGTATATCGCGCTCGGTTCGTTCCTGTAGMPDQTFLILVVVLMMAVTFLPRALPLQVNTENWPPFVARALEYLPVAIVAAITLTPLLIKDQQIQLDRPEFYAAIPTLLCAYFSRNLFLSVAVGTAAYIALGSFLNANANANANA
D1-35_03189924hdfR_5HTH-type transcriptional regulator HdfRATGGATAGCAGAACCTTACGCAACCTCATGCGCATCGTGCAGACCGGCTCGTTGTCGGCTGCGGCGGAGCAGTCGTGCCTGACGGTGCAGGCATTGGCGGCACAATTGAACAAGGTCGAAGAACAATTCGGGTTTCGGTTGTTCCGCCGCTCGAACAAAGGCCTCGCATTGACCAGCCAGGGCTCGGAACTGACGCCCTTCATGGATCAGGTCCTGGCGGCCACCCGGCAGCTGGAGGAAAAAGTCGCGGCGCTCAAGACGCCCAGGCGACGTACCCTCAAGGTAGCGCTCAACACGACGCTGCCGGCGGAATTCAATCGACGGATGATCGAACGCCTGATCGCCGTTTTCCCCCAGTATCAGCTGGAGTTCAGCTACGCCGAATCGATGGAGAACCTGAGCAAGCTCAAGAACGAGCATTTTGACCTGGCGATCCTGGTCGGACAGCCGAGCGGATTTACCAGCATCGCGATGCCGGATGTCCAGGTACGCGTGGTCGGCGCTCATTGTGGCGAAGAAGATGATTCCCTGGGCCTGCTGGGTGACCGGTTCCAAGTGCGTCCGGCCGAGGAATGCCCTTATTCGCGCAGTTTCCTGCGCTTCCTCGATGCCGGTCTCGGTGAATACGGGCCAAGCCAGCGAATGGTCTATTCCTGCAGCGAAACCCTGACGCTGTCGTTGATTACCCAGCTCGACGGTTTGGGCCTTGTCTCCCGGGACGCGGCGCTGCGCAACGGCTTGGCTATCTTCCCGGATTTCGAGGACTTCCTGGAGGTACGCCTGGCGGTAAACAACCCTGAGCTTTCGGACCAGGCGCTGCATGATGTGGTGGACCTGACGCTACAGGAACGAACCGAGCGCGATATACGCCGCCGTGCCCACCGCCACACTGAGAAACAGGTTGCGGCTGAAATACGCACATAGMDSRTLRNLMRIVQTGSLSAAAEQSCLTVQALAAQLNKVEEQFGFRLFRRSNKGLALTSQGSELTPFMDQVLAATRQLEEKVAALKTPRRRTLKVALNTTLPAEFNRRMIERLIAVFPQYQLEFSYAESMENLSKLKNEHFDLAILVGQPSGFTSIAMPDVQVRVVGAHCGEEDDSLGLLGDRFQVRPAEECPYSRSFLRFLDAGLGEYGPSQRMVYSCSETLTLSLITQLDGLGLVSRDAALRNGLAIFPDFEDFLEVRLAVNNPELSDQALHDVVDLTLQERTERDIRRRAHRHTEKQVAAEIRTNANANANANA
D1-35_03190411hypothetical proteinATGGCGACTTCCTCCATCACGCTCAACGCACAGCAACAATTGGATTCCCCGGACGCGGGTCGAATCGCGTTGAAGTTCTTCTTCAATCTCATGGAGTTGTGGGGCTGCAGCGTCGAGCAGCAGCGCACGCTGTTGGGCAAGGTAGGGAACACGACTTTCTACAAGTACAAACAATTACCCGACAACGTAAGACTGCCGCGCGATACCCTCGAGCGAATCTCCTACCTCATGGGTATTCATAAAGCCCTGAGCATCATCTTCAGTAACAGCCGGGACCGCGTGTATCAATGGGTCAGCAGTCCCAATAACGCGGCGCCATTCAACGGCCAGTCGGCGCTTTCCTACATGCTGACCGGGCGAGTGGTGGACATCGCCGATGTGCGGCGATACCTCGACGGAGTGCGCGGCTGAMATSSITLNAQQQLDSPDAGRIALKFFFNLMELWGCSVEQQRTLLGKVGNTTFYKYKQLPDNVRLPRDTLERISYLMGIHKALSIIFSNSRDRVYQWVSSPNNAAPFNGQSALSYMLTGRVVDIADVRRYLDGVRGNANANANANA
D1-35_03191678hypothetical proteinATGACGCCACCACTGGCGGACCCGCAATGGAAACGGGCCTATCGGATCGTCAACAGCAGCTTTCCGCCGATCACGCTGTTCGAAGACGTGCTTGATCCCGAAGACCTGCCCACCGCCTACGCCCTCGAAGCGCTGACCAATGACCGGCTCATGGAAGAGGCCGGCGTGCTGTCCCGGGTACGCCCCGAAGACCGGGTTTCCGGCCCGGGCTCCTCGCCGGTGATGGCGGCATTCACTCACATTGGCAAGCGCAGCCGCTTCAGCGACGGCACGTTCGGCGTCTACTACGCTGCCAGCAGCCAGGAAGCCGCGATTGCCGAGACCTGCTACCACCAGGCACGCTTCCTTGGCGCGACCAACGAGCCGGACCTGGAGTTGACCATGCGCACCTACGTCAACAAGATCGTCAAACCCCTGCACGACATCCGCCACGATTATCCCCATCTGCATAACCCGGACCCTGACGCCTACGGCCCGTCCCAGGTATTTGCCCGGGAGCTGCGTGAAACCTTGTCGTGGGGCCTGCTGTACAACAGCGTCCGCTTGCCCGGTCATGAATGCGTGGCCGCGTTTCGCCCGCCGGCGGTGTCGATTCCGGTGCAGGGCAAGCATATTCGTTACGTGTGGAGTGCGCAGAAACGGGAGATTTCGTTTGTATTCGAGGTGAGTCAGGTGTGAMTPPLADPQWKRAYRIVNSSFPPITLFEDVLDPEDLPTAYALEALTNDRLMEEAGVLSRVRPEDRVSGPGSSPVMAAFTHIGKRSRFSDGTFGVYYAASSQEAAIAETCYHQARFLGATNEPDLELTMRTYVNKIVKPLHDIRHDYPHLHNPDPDAYGPSQVFARELRETLSWGLLYNSVRLPGHECVAAFRPPAVSIPVQGKHIRYVWSAQKREISFVFEVSQVNANANANANA
D1-35_031921608hypothetical proteinATGAAAATCCGCACCAAGGTTGTAGGTTCGGGGTTGGTCAGCCTGTTTTTTGCGCTGTTGCTGGGCGGTATCGGGCTGTGGGGCTACCGCGCCATGACCGACGCCTTGGCGCAGAACGAGACCAGTATCTCGGCGATGCGCAAGCACATGGAGGCGGACATGATGCACGACGCCATTCGTGGCGATGTGTTGGCTGCCTTGCTGGTTGCACCGGGAGATGCCGAGGGCGCGAAGGAAGTCACCGAGGCGTTCGATGAGCATTCGCAGCGGATGCGCAAGGTTATCGCGGAGAACGCCGAGGCTCGGTTGCCGGGTACGATTTCCCAGACCATTGCCGAGCTGAAGCCTCAGGCCGAGGCGTATATCGCCTCGGCGAAGCAAGTGATTGGCAAGGCATTGAGCGGGGCTCAGGATGGCCGGGCGTTGCGTACCGAATTTGATAAAGCGTTTTCGGCGCTGGAAGAGCGTAACGAAGCGGTCAGTGAATTGATCGAGAGCCAGGCGCAGGTTTCTCGCGAACATCAGGACCACAGCATCCATACCTCGGAACGCTGGTTGATCATCACGTTGCTGGCCACCTGCGTGGCGCTTGCATTGCTGTCGTGGAGCCTGCTCAAGGCAGTGCTCACGCCGCTGAACAAGATCATTCTCAATACCCAGGCGATTTCTCAAGGCGATTTGCAGCGCTCGATGGGCCCTCATGGCGATGATGAGCTGGGCCAGTTACAGGCGGTGATCGAACAGATGCAGGCCAACTTGCGGCAGATGATCGCGACGATCCGTAGCCAGAGCGACGAGTTGCATGGCACGTCCCGCAATCTGGGCGATACGGCGCGGCAGATTGTGTCCAGCGCCGACCAGCAAGCTCAGAGCGCTACCAGCATGGCGGCGAGCATGGAGCAGATGATGGCGAACATCAGCCAGATCCATCAGCATGCCGACAGCGCGCGGACGATTTCGGCGCAGTCCGAACAACTGGCGAGCAGCGGTGGGCAGGTGATTCTGGGGGTGGTGGAAGGCATGAACCGGATCGCCGAGGTGGTCAACCAGTCTTCCAGCAAGATCACCGCCCTGGACGCGTCCTCCGAGGATATCCATTCGATCATCCAAGTGATCAAGAGCATCGCCGAACAGACCAATCTGCTGGCCCTCAACGCCGCCATCGAGGCCGCCCGTGCTGGCGAGGCGGGCCGCGGTTTTGCGGTGGTGGCCGATGAGGTGCGCAACCTGGCGGCGCGCACCACTCAGTCCACCCAGGAGATCACCGCGATGATCGAGCGCATCCAGTCCAGCGCCCGGGATGCGGTGGCGAACATGCAGGCCTGCGTCAGCCGCGTGGACGAAGGCGTCAACCTGGCCCAGCAGGCCGGCGTGTCGATCAGCGAAATCCGCACGGGCGCACGGCATGCCGCCGAAGTGGTGGAGGAAATCTCCCAGACCATTGCCGAACAATCAAAAGCCAGTGACGAAATGGCCCAGCGGGTAGAAGCAATAGCCGAGCAGTCTCGGGAAAACACCCGCTCGATTCACGATCTGACAAAAACGGCTGACCATCTGAACGATGCCGCGGGCTCGATGCAGGCTTCGGTGCAGCAGTTCAAGATTTGAMKIRTKVVGSGLVSLFFALLLGGIGLWGYRAMTDALAQNETSISAMRKHMEADMMHDAIRGDVLAALLVAPGDAEGAKEVTEAFDEHSQRMRKVIAENAEARLPGTISQTIAELKPQAEAYIASAKQVIGKALSGAQDGRALRTEFDKAFSALEERNEAVSELIESQAQVSREHQDHSIHTSERWLIITLLATCVALALLSWSLLKAVLTPLNKIILNTQAISQGDLQRSMGPHGDDELGQLQAVIEQMQANLRQMIATIRSQSDELHGTSRNLGDTARQIVSSADQQAQSATSMAASMEQMMANISQIHQHADSARTISAQSEQLASSGGQVILGVVEGMNRIAEVVNQSSSKITALDASSEDIHSIIQVIKSIAEQTNLLALNAAIEAARAGEAGRGFAVVADEVRNLAARTTQSTQEITAMIERIQSSARDAVANMQACVSRVDEGVNLAQQAGVSISEIRTGARHAAEVVEEISQTIAEQSKASDEMAQRVEAIAEQSRENTRSIHDLTKTADHLNDAAGSMQASVQQFKIPGPT0015710_22424DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_03193216hypothetical proteinATGACCAATCCCAAAGACTTCAAAACCCCAGGCCTAACCCCCTTCTCCTACCACTCCGACCGCCCCCTGTTCCGCGTCAACAGCGGCATCCCCATCGGCGAAGCCCTCTCCCACGCCTCGATCTTCTCCACATCGCCATGCGCCTGGCCGATGACGCGGCGATGGTTCGGGGTACGGATCGTTATGCCTGGGCGTCGTGTTATTTGCAGGAGATGAMTNPKDFKTPGLTPFSYHSDRPLFRVNSGIPIGEALSHASIFSTSPCAWPMTRRWFGVRIVMPGRRVICRRNANANANANA
D1-35_03195831hypothetical proteinATGAAGAAAAGGACAGCGGTGTTGGTTGACGGCGGATTTTTCTTCGAGCGCGTGAGATTTTTCGCGAGGAAATATTTCCGGCGAGATCTTGTCCTGACCGCTGAGCACCTGAGCAGCATCGTTCATCAGATGGTGAAAAACCACATCGAGGATCGAAGGGCGCTTCCTCGGGAGCTGTACCGGGTGTACTACTACGACTGCCCGCCCAACGATAAGCAAGTCCGCTATCCCATCACCCCTGATGGACACCGCACCCCTGGTAACATGAATTTCAAGGAGCACCCGCCGTACAAGGTTCGCGGGGAGCTTCACAATCGCCTGAAAAAAAGTCGTAAAACAGCGCTTCGGCTTGGCGAGCTGTCGAAGAGCGGTAGGTGGCGCCTGAACGACCATTCCCTTGATGATTTGCTTCGGGGAGAAAAGACATGGGACCAGCTTACAAACGCTGACTTTCACTATGACGTAGATCAGAAAGCCGTCGACATCAAGCTGGGCATGGATATCACCACCCTCGCTCTTAACAAGCTGGCTGACGTCATAGTCTTGGTAGCAGGCGACTCTGATTTCGTGCCAGCAGCGAAGCTTGCTCGGACAAACGGCATCGATTTTGTGCTTGATCCAATGTGGGCCGCAACTGCGGCAAGTTTAAGTGAGCATGTGGATGGACTGCGATCATATGACGTGGTTCGGATGATCAGTAGCGTCACAAGAGAGCCAGTCACCAATGTTCCTCTGTGGTGGCGGCAGCCAGAAGCAGCCGGTGATGCCGGGGAGGCTCCTGATAACATAGATCCACCAGCCGACAATGACGAGCCTGGCGTACCTGAGTAAMKKRTAVLVDGGFFFERVRFFARKYFRRDLVLTAEHLSSIVHQMVKNHIEDRRALPRELYRVYYYDCPPNDKQVRYPITPDGHRTPGNMNFKEHPPYKVRGELHNRLKKSRKTALRLGELSKSGRWRLNDHSLDDLLRGEKTWDQLTNADFHYDVDQKAVDIKLGMDITTLALNKLADVIVLVAGDSDFVPAAKLARTNGIDFVLDPMWAATAASLSEHVDGLRSYDVVRMISSVTREPVTNVPLWWRQPEAAGDAGEAPDNIDPPADNDEPGVPENANANANANA
D1-35_03196642hypothetical proteinATGGACCTACACAGCGAATTCGAAAAGAGCAAATACTTCCACCATGCCCGTATCGACCGGCGCGCGGCCGATGCCTTGGTAGGGTTGGCCGCAGGGATTACGGCGGACGGTGACGTGAACACCACCGAAGCGATTTTCTTGAAGCAATGGTTGGAAAACAATCTCGCGCATCTCAATGATCCGGTAATCAATCTACTTTATTCACGTTTGGCGTCCATGCTTCAAGACGATGCGCTGGACCCGGACGAGTCTCTTGAGCTGCTTAACATCCTGCGTGGTTTTTCTGGAGCGAGTATTGAGCCTTCGCAGGTTGGCAGAGCTGTTGCGGTTGCCCCTACGGATCTTCCGTTCAATTTACCTGCCCCTGATTTGCTGTGGGATGGCCGAATGTTTGTATTTACAGGCGTAATGGCCTTCGGGCCGCGCAAGGATTGTCAGGCGTTGGTCGAGGAGCGGGGTGGTTTGATAGGGGGCGGCGTGAGCAAGAAAGTGCATTATCTGGTCGTCGGTAGCGTGGGTAATGAACAATGGCGCCACAGTACCTACGGAACGAAAATCATGAAGGCAGTGGAGCTGCGGGAGGCGGGTGCTTCGATTGCTATTGTGGGTGAGGATCACTGGCAGAGAATGCTGTTTGGTTGAMDLHSEFEKSKYFHHARIDRRAADALVGLAAGITADGDVNTTEAIFLKQWLENNLAHLNDPVINLLYSRLASMLQDDALDPDESLELLNILRGFSGASIEPSQVGRAVAVAPTDLPFNLPAPDLLWDGRMFVFTGVMAFGPRKDCQALVEERGGLIGGGVSKKVHYLVVGSVGNEQWRHSTYGTKIMKAVELREAGASIAIVGEDHWQRMLFGNANANANANA
D1-35_031981254hypothetical proteinATGCCTGCCAAGGGCGCTGAGAGCGAGGTGCTGACGGGCGAAACATTACTCGCCCGTTTCATGGCTCTGGATGCTTTTCTCACAGAGCACCAGGCGCTATGGAAGCCCCGCCCTTTCACTCATCTGCAGCTACCTTGGGAAACTTCCCACCCCGAACTGGCCCAATGGCTACGCCAGCGTTCGCTGCAAGCGGCGGAAAACGACCATCATCAGCCGTGGTTGATTGAAGACGCGCCCGCGCCGTTCCCGGAACTGGCCGCTATCGCCCGCGCATTGAGCACGGTCGCCGAGCTGCCCGCCAGCCTGCTGAAAGCGCCAACTCATCGCCTCAACGTCGACGTGCCCGGGCGCAAATGGCAGCAGATCGAAGCCTTCGCCAGCCGCCTGACCTTCACCACCAAACCGACCCACTGGCTCGACTGGTGCGCCGGCAAAGGCCACCTTGGCCGACGGTTACTGCACGACGATCAGCACCTGACCTGCCTGGAATACGACCCCTTGCTGGTCGCCGCCGGCCAGCACCTGAGCCAGCGCCACAACCTGCCGGCCATGCACTTGCAGCAAGATGTATTGGCGCCGGATGCGGCCCAGGCGATCCAACCGGGACACACCCCGGTAGCCCTCCACGCCTGCGGCGACCTGCATGTTCGGCTCATGCACCTGGCGAGTGCCGCCGGCTGCGCACAAATGGCTATCGCACCGTGCTGCTACAACCGCATCAGCACGGCGCAGTATCGACCGCTGTCCGATGCGGCCAGCCAATCCAGCCTGCAACTGTCGCTGGACGACCTCGGCCTGCCACTGAGCGAAACCGTCACCGCCGGCTCGCGCGTCCGACGGCAACGGGACAAATCCATGGCCCGACGCCTGGCCTTCGACCTGCTGCAAAGGCAAATCCGCCGCAGCAACGACTACCTGCCCACGCCGTCATTACCCGGCGCCTGGCTGGAAAAACCGTTCGCCCACTACTGCACCGACCTGGCGGCCCTGAAGAATTTATCCATAGTTCGTTCCCCCGATTGGGACCAACTGGAGGCTGCGGGTTATCAGCGCCTGGCCGAGGTGCGCAACCTGGAACTGGTGCGAGGCCTTTTCCGACGGCCGTTGGAGCTTTGGCTGGTGCTGGACCGGGCACTTTTCCTCAGCCAAAAGGGTTACGAAGTGCGCCTTGGTATCTTCTGCGAAGCACCTCTTACGCCAAGAAATCTATTACTGCTGGCAGAGCGTCAGCCACACGCGACAGCCTGTGGATAAMPAKGAESEVLTGETLLARFMALDAFLTEHQALWKPRPFTHLQLPWETSHPELAQWLRQRSLQAAENDHHQPWLIEDAPAPFPELAAIARALSTVAELPASLLKAPTHRLNVDVPGRKWQQIEAFASRLTFTTKPTHWLDWCAGKGHLGRRLLHDDQHLTCLEYDPLLVAAGQHLSQRHNLPAMHLQQDVLAPDAAQAIQPGHTPVALHACGDLHVRLMHLASAAGCAQMAIAPCCYNRISTAQYRPLSDAASQSSLQLSLDDLGLPLSETVTAGSRVRRQRDKSMARRLAFDLLQRQIRRSNDYLPTPSLPGAWLEKPFAHYCTDLAALKNLSIVRSPDWDQLEAAGYQRLAEVRNLELVRGLFRRPLELWLVLDRALFLSQKGYEVRLGIFCEAPLTPRNLLLLAERQPHATACGNANANANANA
D1-35_03199690occM_2Octopine transport system permease protein OccMATGAACTGGGAAGTCATCATCAAGTGGCTGCCGAAACTGGCCCAGGGCGCAACGTTGACCCTGGAGCTGGTGGCCATCGCCGTGATCGCCGGCCTGTTGCTGGCGATTCCGCTGGGCATCGCCCGTTCATCGCGCCTGTGGTACGTGCGGGCGTTGCCCTACGCCTACATCTTCTTTTTCCGCGGCACTCCGCTGCTGGTTCAGCTGTTCCTGGTGTATTACGGCCTGGCGCAGTTCGACGCCGTGCGCAGCAGCGCCCTATGGCCTTATCTGCGGGACCCGTTCTGGTGCGCCACCGCCACCATGACCCTGCACACCGCCGCCTACATCGCCGAGATCCTGCGCGGCGCGATCCAGGCCATTCCCCGTGGCGAAATTGAAGCCGCGCGGGCCCTGGGCATGTCTCGCCCCAAGGCGCTGCTGTACATCATGCTGCCCCGCGCCGCGCGCATCGGACTGCCGGCCTACAGCAACGAAGTGATCCTGATGCTCAAGGCCAGTGCCCTGGCGAGCACCGTGACCCTGCTGGAACTCACCGGCATGGCCCGTACGATCATCGCCCGGACCTACCTGCCGGTAGAGATCTTCTTCGCGGCCGGCATGTTCTACCTGCTGATGTCCTTCGTCCTGGTACAAGGCTTCAAGCAACTGGAACGCTGGTTGCGCGTCGATGCCTGCCAAGGGCGCTGAMNWEVIIKWLPKLAQGATLTLELVAIAVIAGLLLAIPLGIARSSRLWYVRALPYAYIFFFRGTPLLVQLFLVYYGLAQFDAVRSSALWPYLRDPFWCATATMTLHTAAYIAEILRGAIQAIPRGEIEAARALGMSRPKALLYIMLPRAARIGLPAYSNEVILMLKASALASTVTLLELTGMARTIIARTYLPVEIFFAAGMFYLLMSFVLVQGFKQLERWLRVDACQGRPGPT0020540_108DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0020540-PA5155-K23057NANA
D1-35_03200696artQ_1COG4215Arginine ABC transporter permease protein ArtQATGATGATCGATCTCTACGGATTCGGCCCGGCGCTAGCCGCCGGCGCGCTGATGACCGTCCAGTTGGCCCTTTCTGCCTTATGCCTGGGGCTGGTACTCGGCCTGCTCGGTGCCCTGGCCAAGACCTCGTCATACAGGCCGTTGCAATGGCTTGGTGGCACTTATTCAACGCTGGTTCGCGGCATTCCGGAATTGCTCTGGGTGCTGTTGATCTATTTCGGCACCGTTAACCTGATGCGCGCCTTGGGTGAGTACTTCGGCAATCCCGACCTTGCTCTCAACGCCTTCGCCGCCGGCGTCATCGCACTCGGCCTGTGCTTTGGCGCCTACGCTACTGAAGTGTTTCGCGGCGCAATCCTGGCGATCCCCAAGGGTCACCGTGAAGCCGGCGTCGCTTTGGGCCTGTCGAAATGGCGGATCTTTACCCGATTGATCATGCCGCAAATGTGGCGCATCGCCCTGCCCGGCCTGGGCAACCTGTTCATGATCCTGATGAAGGACACCGCGCTGGTCTCGGTGATCGGCCTGGAAGAAATCATGCGACACGCGCAAATCGGCGTAACCATTTCCAAACAGCCGTTCACCTTCTATATGGTCGCCGCGCTCATGTACCTGGGGCTGACAGTACTCGCCATGATCGGCATGCACCTGCTTGAACGACGCGCGGCCCGTGGTTTCGCCAGGAGCACGCAATGAMMIDLYGFGPALAAGALMTVQLALSALCLGLVLGLLGALAKTSSYRPLQWLGGTYSTLVRGIPELLWVLLIYFGTVNLMRALGEYFGNPDLALNAFAAGVIALGLCFGAYATEVFRGAILAIPKGHREAGVALGLSKWRIFTRLIMPQMWRIALPGLGNLFMILMKDTALVSVIGLEEIMRHAQIGVTISKQPFTFYMVAALMYLGLTVLAMIGMHLLERRAARGFARSTQPGPT0020535_89DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0020535-PA5154-K23056NANA
D1-35_03201753argT_4COG0834Lysine/arginine/ornithine-binding periplasmic proteinATGCAGACCTACAGGAAAATACTCTTGGCCGCTGCGGCCAGCCTGGTCCTTTCGGCCAACGCCATGGCGGACGGCAAACTGAAAATGGGCATCGAAGCAGCCTACCCTCCGTTCAATAACAAGGACGCCAGCGGCCAGGTCGTGGGTTTCGACAAAGACATCGGCGACGCCCTGTGCGCCAAGATGAAAGTCGAGTGCGAAGTGGTCACTTCCGACTGGGACGGGATCATTCCGGCCTTGATGGCGAAGAAGTTCGATTTCCTGATTTCTTCGCTTTCGATCAATGAAGAGCGCAAGCAAGCGGTGGATTTCACCGACCCGTACTACACCAACAAACTGCAATTCATCGCGCCGAAAAACGTCGATTTCAAAATCGATAAAGAGTCTCTTCAGGGTAAGGTCATCGGGACACAGCGCTCCACGCTCGCTGGCACTTGGATGGAAGACAACATGGAAGGTGTCGAAGTGAAACTGTATGACACCCAGGAAAACGCCTACCTGGACCTCACCTCCGGTCGTCTCGACGGAATCCTGGCAGACAAATACGCGAACTACGACTGGCTGAAAACCGACGCTGGCCGGGCTTACGAATTCAAAGGTGACGCGGTGGTAGAGGGCGACAAAATCGCCATCGCCGTGCGCAAGGGTGACAATGAATTGCGCAACAAGCTGAACGCCGCATTAAAAGAGATCGTTGCCGACGGCACCTATAAAAAGATCAACGACAAGTACTTCCCGTTCAGCATCTATTGAMQTYRKILLAAAASLVLSANAMADGKLKMGIEAAYPPFNNKDASGQVVGFDKDIGDALCAKMKVECEVVTSDWDGIIPALMAKKFDFLISSLSINEERKQAVDFTDPYYTNKLQFIAPKNVDFKIDKESLQGKVIGTQRSTLAGTWMEDNMEGVEVKLYDTQENAYLDLTSGRLDGILADKYANYDWLKTDAGRAYEFKGDAVVEGDKIAIAVRKGDNELRNKLNAALKEIVADGTYKKINDKYFPFSIYPGPT0020530_157DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0020530-PA5153-K23055NANA
D1-35_03202774occPOctopine permease ATP-binding protein PATGGCCCAGGCCACGCCCGCGCTTGAAATCCGCAACCTGCACAAACGCTACGGCCAGCTGGAGGTGCTCAAGGGCGTCTCGCTGACCGCTCGCGACGGCGACGTGATCTCGATCCTCGGCTCTTCCGGATCCGGCAAGTCCACGTTCCTGCGTTGTATCAACCTGCTGGAGAACCCCAACCAGGGCCAGATCCTGGTGGCTGGCGAAGAGCTCAAGCTCAAGGCGGCGAAAAACGGCGAACTGGTAGCCGCCGACGGCAAACAGATCAACCGCATACGCAGCGAGATCGGTTTTGTCTTCCAGAACTTCAACCTCTGGCCGCACATGAGCGTACTCGACAACATCATCGAGGCTCCGCGCCGGGTGCTCGGCCAGAGCAAGGCCGAAGCCGTCGAAGTCGCCGAAGCCTTGCTGGCCAAGGTCGGTATCGCCGACAAGCGCCACGCCTACCCGGCCGAACTGTCCGGCGGCCAGCAGCAACGCGCCGCCATTGCCCGTACGCTGGCGATGCAGCCCAAGGTGATTCTGTTCGACGAACCCACCTCTGCCCTTGACCCGGAAATGGTCCAGGAAGTACTTAGTGTGATCCGCGCCCTGGCCGAGGAAGGCCGCACCATGCTGCTGGTTACCCACGAAATGGGCTTTGCCCGCCAGGTTTCCAGCGAAGTGGTATTTCTTCATCAGGGCCTGGTCGAAGAACAAGGAACGCCACAGCAGGTTTTCGAAAGCCCGCTTTCGGCGCGCTGCAAACAATTCATGTCCAGCAACCGCTAAMAQATPALEIRNLHKRYGQLEVLKGVSLTARDGDVISILGSSGSGKSTFLRCINLLENPNQGQILVAGEELKLKAAKNGELVAADGKQINRIRSEIGFVFQNFNLWPHMSVLDNIIEAPRRVLGQSKAEAVEVAEALLAKVGIADKRHAYPAELSGGQQQRAAIARTLAMQPKVILFDEPTSALDPEMVQEVLSVIRALAEEGRTMLLVTHEMGFARQVSSEVVFLHQGLVEEQGTPQQVFESPLSARCKQFMSSNRPGPT0020545_92DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0020545-PA5152-K23058NANA
D1-35_03203450hypothetical proteinATGAGATCCCTACAATGTTCTTTGTTGCCTTTCGTTACCATCGCCATTCTGCTATTCCCTCTCGCCCTCAACGCCACCAACCTCGCGCCCATCGACAACACAGGCGTCCAGATCCAACCCATGCAGCAGAACGGCATTACTTATCTGTCCGGCGGCATCGGCGAAGACGAAGCCCGGGCCATCGGGCAGGCCCAGGGTTACAACCTGCACATGACTTTTGCGATCGGCCCGGAGAACAAATACGTTCCGGATGTGGACGTGACTGTGCAGAACTCATCAGGACAAACATTACTGACGCTCAGCGATGCGGGCCCGCTGGTATATGTGCAATTGCCGCCGGGCAAGTACAGCGTGGTGGCGACGCGCAACGGGGAGGAGCGCCGCGACACCGCCGATGTGGGCAGCGGAGCCGCGCGCAAGCTGGTATTCCACTGGAACAGCGGCGAGTAGMRSLQCSLLPFVTIAILLFPLALNATNLAPIDNTGVQIQPMQQNGITYLSGGIGEDEARAIGQAQGYNLHMTFAIGPENKYVPDVDVTVQNSSGQTLLTLSDAGPLVYVQLPPGKYSVVATRNGEERRDTADVGSGAARKLVFHWNSGENANANANANA
D1-35_03204447hypothetical proteinATGGCCTCACTGAACAAGCAGCAGAAACGCGCCAAGCGTGCCAAAGACAAAGCCAAGCAGATCCGCATGACCGGGCGTAAATCCATCCCGATGTATGGCGATCCGGCCCATGCAACCGCCCAGCCACCGGTTTACGTACAGGAGTTGTTCGTCAAGCTGCGCGACGCCGAGGCCGTCAGCCGCAGCGAAATGCTCGACACATTGCTGGCAAACGTCAGCGAAATGATCATCGAGCGCCCAGGCCTGCTGGATCTGAAGAACGCCGAAAACGAGAGCATGGCCGCCACCAACCTGGCTGCCGACATGCTGGTGGACTACCGCATGTGGGTCGACGACATGGACCGCGAGGCGGCCCAGCGCTGGCTCAGCACGCCGGAGTTCATCAAGGACTTCAGCGAGGCGCTGGACCGTTATCGCCAGTCTATGGAAGAGCCCGTCGGCGAATAAMASLNKQQKRAKRAKDKAKQIRMTGRKSIPMYGDPAHATAQPPVYVQELFVKLRDAEAVSRSEMLDTLLANVSEMIIERPGLLDLKNAENESMAATNLAADMLVDYRMWVDDMDREAAQRWLSTPEFIKDFSEALDRYRQSMEEPVGENANANANANA
D1-35_032052235cph1Phytochrome-like protein cph1ATGACCCCGGAAAACCAGGAAGCCTTCGAAGAACTGCTGGCTAATTGCGCAGACGAACCGATTCGCTTCCCCGGCGCCATCCAGCCTCATGGCGTGCTGCTGATGCTGTCCGAGCCAGACTTCGTAATCCGTCAGGTCAGCGCCAACGTCTTGCAATTGATGGGACAGGATCCCTACAGATTGCTGGACCAGACGCTTGATGCACTGGTGGGACTGGAGCAGGCAGAAGCCATCCTCATTGCCTGCCACGCGCCCCCGGAAAGCGACAACGTGCCCGTAGCCATTGTCGTGAACCAGCAGCGTTTTGACGCCTTGGTGCATCGCCATCAGGGCGCCCTGATCATCGAGCTGGAACAACACCTGAGCGACTATCGCCCCGAAGGCGTCAGCGGCGAGGCCAACCTGGGCCGTATGCTCCAGCGCCTGCAAAGCGCAAAAGATCTTCAAGCCCTGTACGAAATCAGCGTGCGGGAAATCCAGGCCATGACCGGCTACGACCGCGTGCTGATCTATCGTTTTGAGGAAGAAGGCCACGGGCAGGTCATCGCCGAAGCCAGCGCGCCATCGATGGAGCTTTACAAGGGGCTGTTTTTCCCAGCCTCGGATATTCCCGAGCAGGCCCGTGAGCTGTATCGCACCAACTGGTTGCGCATCATCCCCAACGCCGACTACACGCCGATACCCCTGGTGCCCGAGCTGCGCCCCGATACCCAAGCGCCGCTGGATCTGAGTTTTTCGACGCTGCGCAGCGTCTCGCCGATTCACCGTCAATACATGAAGAACATGGGCGTGCTGTCGTCGATGAGCATCTCGTTGATGAAAGGCGAGCAACTGTGGGGCTTGATCAGCTGCGGCAATCGCCAGCCGCTGCTCGTGCCCCATGAAATGCGCATGGCCTGCCAGACCATCGGCCAGATCCTGTCACTGCAGATCAGCGCCATGGAAACCCTTGAACTGACTCGGCAACGGGACGCCAAGCTGGAGGACCTACAGGCGCTTGCCGCCGCCATGGCCGAATCCAGCGAAAACGTCTTCGATGGCCTGTGCCGCGAGCCACAACGCCTGATGGACCTCACCGGGGCCAGCGGCGTTGCGATCTTCGAGGACAACAAACTGCATCGCCACGGTCAGTGCCCCGAACCGGAGCAAATCCGCGAATTGCACAAGTGGATATTGGCAACAGGTCAGCCGGTCTTCTCTCACCATAACCTGGGCAGCGTTTTCGCCCCGGCCAAGGCTTTTCAGGATGTAGCGAGCGGGGTGCTGGCGATTCATCTGCCCAAGCCTGTGGAAAATGGCGTGCTGTGGTTCCGTCCCGAAGTGAAGCAAACCATCAATTGGAGCGGTGACCCGCAAAAACCCCTCGACCTGGAAGACAGCGAGACCGGATTACGCCTGCGGCCGCGCACCTCGTTTGAAATCTGGAAAGTCGAGATGGACGGTATCAGCGCCAAGTGGAGCCATGGCGACTTGTTCGCCGCCAACGACCTGCGCCGCTCGGCCCTGGAAAATGATCTGGCCCGACAGGTACGCAAGGAGCGCCAGGCGGTGCAAGCACGCGATGAACTGGTGGCGGTCGTGTCCCATGATTTGCGCAACCCGATGACGGTCATTTCCATGCTCTGCGGCATGATGCAAAAGGCCTTCAGCTCCGACGGCTCACACAGCTCGAAGCGAATTGCCTCGGCCATCGACACCATGCAACAAGCCGCCAGTCGCATGAATGCACTGCTGGAAGATCTGCTCGACACCTCGCGCATCGACGCCGGGCGCTACACCATCAACCCTCAGCCGATGGACGTCAGCCAGATCTTCGAAGACGCCTGTTCGCTACTGACGCCGCTGGCCTCCGCCAAGGCAATCAATATTTCTTTCCATGCCGAGCCCAACCTCAAGATCAACGCAGATCCCGAGCGGCTGTTCCAGGTGCTGTCCAACCTGATCGGCAATGCCATCAAATTCACGCCGCAGCAAGGGACCGTGGGCATCAGCGCGATGTCGGTGGGCGATGAGATCGTGTTCAGCGTCCGCGATACCGGTGAAGGCATCGCCCCCGAGCAGTTGCCGCATGTTTTTGACCGCTACTGGACGACCAAGGAAGGCAACCCGAATGGCACCGGACTTGGGCTGTATATATCCAAGGGGATTGTCCAGGCTCATGGCGGTAAACTGCACGCCGAAAGCCAGCCAGGCCAGGGCAGTGAATTCCGCTTTACCGTGCCGAAAATCGACTGAMTPENQEAFEELLANCADEPIRFPGAIQPHGVLLMLSEPDFVIRQVSANVLQLMGQDPYRLLDQTLDALVGLEQAEAILIACHAPPESDNVPVAIVVNQQRFDALVHRHQGALIIELEQHLSDYRPEGVSGEANLGRMLQRLQSAKDLQALYEISVREIQAMTGYDRVLIYRFEEEGHGQVIAEASAPSMELYKGLFFPASDIPEQARELYRTNWLRIIPNADYTPIPLVPELRPDTQAPLDLSFSTLRSVSPIHRQYMKNMGVLSSMSISLMKGEQLWGLISCGNRQPLLVPHEMRMACQTIGQILSLQISAMETLELTRQRDAKLEDLQALAAAMAESSENVFDGLCREPQRLMDLTGASGVAIFEDNKLHRHGQCPEPEQIRELHKWILATGQPVFSHHNLGSVFAPAKAFQDVASGVLAIHLPKPVENGVLWFRPEVKQTINWSGDPQKPLDLEDSETGLRLRPRTSFEIWKVEMDGISAKWSHGDLFAANDLRRSALENDLARQVRKERQAVQARDELVAVVSHDLRNPMTVISMLCGMMQKAFSSDGSHSSKRIASAIDTMQQAASRMNALLEDLLDTSRIDAGRYTINPQPMDVSQIFEDACSLLTPLASAKAINISFHAEPNLKINADPERLFQVLSNLIGNAIKFTPQQGTVGISAMSVGDEIVFSVRDTGEGIAPEQLPHVFDRYWTTKEGNPNGTGLGLYISKGIVQAHGGKLHAESQPGQGSEFRFTVPKIDNANANANANA
D1-35_03206606hypothetical proteinATGTCACCGGCCGCAACCCACCCCTCTTTGATCCAGGCATTGCGGACTGAAACCGCCGAGTTGCATGTCGCCTTGGAAAAACGCCTGCCGTTTTTTTCGGAACGGCTGAACCTGGACCTATACCGGCGCCTGATGGCGGCCTATTACGGTTTTTACCAGCCTTTGGAACAACGGCTTCAGGTATTGGCATTGATTCCGTCCGGGCTGGACCAATCCCTGCGCATCAAGCTTCCGGTATTGCGGACCGATCTCACGGCGCTGGGCATGGATGCAGCCGCTATCGAAGCGCTGCCCGTTTGCCAGCAACTGCCGCAGATCAACTCCCGCGCGGCCGCCCTCGGGGTTTCCTACGTGCTGGAAGGAGCGACCCTCGGCGGACAGATTCTGCGACGCAGGGTGGCGGAGCAGCTTGGCCTGGATGCCTCCAGCGGCGCTGCCTTTCTCAACGTGTATGGTGAACTCACCGGCCGCCGCTGGAAGGATTTCCTCCAATACCTGGACGACAGGAACCTTGGCGAACCCCAGACGCTCGAAGTCACACGCGCCGCCAGGTCGACGTTTACTCATTTTGAACACTGGCTGGACAGCCAAAAGGTACTGCTATGAMSPAATHPSLIQALRTETAELHVALEKRLPFFSERLNLDLYRRLMAAYYGFYQPLEQRLQVLALIPSGLDQSLRIKLPVLRTDLTALGMDAAAIEALPVCQQLPQINSRAAALGVSYVLEGATLGGQILRRRVAEQLGLDASSGAAFLNVYGELTGRRWKDFLQYLDDRNLGEPQTLEVTRAARSTFTHFEHWLDSQKVLLNANANANANA
D1-35_03207609hypothetical proteinATGAAGCCGATACTGCCCCAAGACGATCCACAGCTCGCGCCCTTGATCAACGAACTAGGCGAGCTGATTCGCCAGGCACGCCAGAAAGTGTTGCGTGCCGTTGACACTCTCCAGGTACAGACCTGCTGGCAGATCGGCCGGCACATCATCGAGTTCGAGCAAGGAGGCGTCGAACGCGCGGCTTATGGCGCAAGGTTGCTAGCGTCCTTGGCGAAGGTGCTGACGGGGCGGTTTGGGAAAGGGTTTGATGAACGTAACCTGCGGCATATGCGGGATTTTTATCTGAAGTTTTCAATTTGGAACGCAGTGCGTACCGAATTGAGCTGGACCCATTACCGCACGCTTCTGCGGGTAGTACACGACAACACTCGACATTGGTACATGAACGAAGCCGCCACCCAGAACTGGTCCACCCGCGCCTTGGAGCGCCAGATCGGCACGTTCTATTACGAACGCCTCCTGGCAAGCCGCGATCGACCTGCGGTAGAGCAGGAAGCAAGCGCAAGGCGCTGGATTGCGAACGGGCGCGGCTTGAGGAGTCCCCCCCGGACGCAGCGACCTGAAGAAATGAAGCCGTTATCGAAACGCATACTCAAAAAACCCATGTAGMKPILPQDDPQLAPLINELGELIRQARQKVLRAVDTLQVQTCWQIGRHIIEFEQGGVERAAYGARLLASLAKVLTGRFGKGFDERNLRHMRDFYLKFSIWNAVRTELSWTHYRTLLRVVHDNTRHWYMNEAATQNWSTRALERQIGTFYYERLLASRDRPAVEQEASARRWIANGRGLRSPPRTQRPEEMKPLSKRILKKPMNANANANANA
D1-35_03208408hypothetical proteinATGCCATCGGCGAACAAACAGCAAAAACGCAGCCAGCGTGCCAAGGAGAAAGCCAAGAAGAATCGCATTCAGCGTGCCGCTGCGCCGAACGACTTCCTGGACCCGAACGACGAGCGCATCGACCTGGAAACCGTGGACCTGTCTGACCTGTTCCGCATCATGAGCGCCGCCGAGAAGGTCAGTCAGAAAGCCATGTGCGAAGCGTTCTTGGGCCATCCACTGCTGGCGCTCGTGCTAGAACAGGAAGGCGAGGAAGAAGCGACCGACTTCATCATTACCGCCTTGATCGAATACCGTCGCCTGACCACGGGCGTCGATGAGCAGACTGCCCTGGATTGGGTGGAAAGCAAGCAGTTCCAGGCTGATTATGTCGCCGCATCCCAGGCGCTGACGCAAGGCCAAGGCTGAMPSANKQQKRSQRAKEKAKKNRIQRAAAPNDFLDPNDERIDLETVDLSDLFRIMSAAEKVSQKAMCEAFLGHPLLALVLEQEGEEEATDFIITALIEYRRLTTGVDEQTALDWVESKQFQADYVAASQALTQGQGNANANANANA
D1-35_03209330hypothetical proteinATGGATATCACCGGCATCCCCTTCGGCACTACCGACTGGTCCACCATCGAACCCACCGAACACAAAGGCATTACCGGAACCGCTTACTGGCGCACGCAGCATTTCGGCAGCGTTCGGGTACGGATGGTGGAATATACGGCCGGCTACCTGGCCGACCATTGGTGCACCAAGGGCCATATCCTGCTCTGTCTCAAAGGCGAGCTGAACACCGAGCTCGAAGACGGCCGGCAATTCCTGCTCAAGCCCGGCATGAGCTACCAGGTGGCCGACCAGGCCGAGCCTCATCGCTCCTCCACTCCATCCGGGGCGACGCTGTTCGTGGTGGATTGAMDITGIPFGTTDWSTIEPTEHKGITGTAYWRTQHFGSVRVRMVEYTAGYLADHWCTKGHILLCLKGELNTELEDGRQFLLKPGMSYQVADQAEPHRSSTPSGATLFVVDNANANANANA
D1-35_03211273COG2924putative Fe(2+)-trafficking proteinATGACCCGCACCATCATGTGCCGCAAGTACAAAGAACAGCTGGAAGGCCTGGAGCGCGCACCGTTTCCCGGTGCCAAGGGCCAGGACATCTACGACAACGTATCAGCCAAGGCCTGGGGCGACTGGCAAAAACACCAGACGCTGCTGATCAACGAAAAACGCCTGAACATGATGAATGCCGAAGATCGCAAATATCTTCAAGGGGAGATGGACAAGTTCTTTTCCGGCGAAGAATACGCCAAGGCCGAGGGCTACGTGCCGCCCTCCGAATAAMTRTIMCRKYKEQLEGLERAPFPGAKGQDIYDNVSAKAWGDWQKHQTLLINEKRLNMMNAEDRKYLQGEMDKFFSGEEYAKAEGYVPPSENANANANANA
D1-35_032121068mutYCOG1194Adenine DNA glycosylaseATGACATCCGAGCAATTTTCCAGCGCCGTATTGGATTGGTTCGACCGCCACGGGCGTCATGACCTGCCCTGGCAGCAAGACATCTCCCCGTATCGGGTATGGGTCTCGGAGATCATGCTCCAGCAGACCCAGGTCAGCACCGTGCTCAATTACTTCGACCGGTTCATGGCCGCCCTGCCTACCGTCCAGGCCCTTGCCGCCGCGCCGGAGGATGAAGTGCTGCACCTGTGGACCGGGTTGGGCTACTACACCCGCGCTCGTAATCTGCAGAAAACCGCGAAAATCGTCGTCGAGCAATATGGCGGCGAATTTCCCCGGCATGTGGAGAAGCTCACCGAACTGCCGGGAATCGGCCTATCCACCGCTGGCGCGATTGCCAGCATCAGCATGGGCCTGCGGGCGCCGATTCTCGATGGAAACGTCAAGCGGGTGCTGGCGCGCTTTACTGCCCAGGAAGGCTACCCAGGCGAGCCAAAGGTTGCGAAACAGCTCTGGGCCACCGCCGAACGCTTTACCCCTCAGGATCGGGTCAACGCCTACACCCAGGCGATGATGGACCTGGGCGCCACGCTCTGTACCCGCAGCAGACCCAGTTGCCTGCTCTGCCCGCTGGAAAAAGGCTGCGAGGCCCACATGCTGGGCCTGGAAACCCGCTATCCGATTCCCAAGCCGCGCAAGGAAGTGCCCAAGAAACGCACCTTGATGCCGATGCTGGCTAACCGCGAAGGCGCCATCTTGCTTTACCGCCGCCCATCCACCGGTTTGTGGGGCGGTCTGTGGAGCCTGCCGGAACTCGACGACCTCGACGACCTGCAACACCTGGCCCTGCAACATTCGCTGGAGCTGGGTCAGCAACAGGCAATGCCAAGCCTGGTACACACCTTCAGCCACTTCCAGTTGGCAATCGAACCCTGGCTGGTCCGGGTCCGCGAAACCGGCCATCACGTGGCCGAGGCCGACTGGCTCTGGTATAACCTCGCCACCCCGCCGCGCCTGGGCCTCGCCGCCCCGGTCAAGACATTGCTCGAACGCGCGGCCGCTGTATTGAACGCAGGAGAGTTGCAATGAMTSEQFSSAVLDWFDRHGRHDLPWQQDISPYRVWVSEIMLQQTQVSTVLNYFDRFMAALPTVQALAAAPEDEVLHLWTGLGYYTRARNLQKTAKIVVEQYGGEFPRHVEKLTELPGIGLSTAGAIASISMGLRAPILDGNVKRVLARFTAQEGYPGEPKVAKQLWATAERFTPQDRVNAYTQAMMDLGATLCTRSRPSCLLCPLEKGCEAHMLGLETRYPIPKPRKEVPKKRTLMPMLANREGAILLYRRPSTGLWGGLWSLPELDDLDDLQHLALQHSLELGQQQAMPSLVHTFSHFQLAIEPWLVRVRETGHHVAEADWLWYNLATPPRLGLAAPVKTLLERAAAVLNAGELQNANANANANA
D1-35_032132226hypothetical proteinATGAAAGCGTTCGGCAAAATCCTGGGTCTGGTACTTCTCGGGCTGTTGCTGATCATTGTGGCCCTGGGCTTTGCCCTGACCCACCTCTTCGATCCCAACGACTATAAGGAAGAGATCCGCCAGATAGCCCGCGACAAGGCCCACATCGAGCTGACCCTCAATGGCGATATCGGCTGGAGCCTGTTTCCATGGCTGGGTCTTGAATTGCACGAAGCCAGCGTTGCGACCCTGGCCAATCCGACCCAACCCTTTGCCGACCTGCAGATGCTTGGGCTTTCAGTCCGGGTGATGCCGCTTTTGCGCCGTGAAGTGCAAATGAGTGACGTACGGGTCGAAGGCCTGAACCTGCGGCTCAACCGCGACAAGAACGGTCATGGCAACTGGGAAGACATCGGCAAGGCGCCCGCCTCCACGACCGCTACGAAGGCGCCGGCGCCAACCGAACAGCCCGCCCCGCCGGCCAACGCTCCGACAGAGAAACCGGCCCAACCCACTCGCCTGGACATCGACAGCCTGACCGTGAACAACGCCCGGGTCGAATACAGCGACGAGCAGACCGGCAAGCTGTTTACCGCTGAAAGCATCCAGTTGAGCACCGGCCCGATCCACGATTCCACCAATATCCCGGTGACCCTCACGGCTTTCCTGTCCAGCAACCAGCCGGCTGTTCGGGTGCGCACCGAGGTGACTGGCGAGCTGCGCTTCGAACGCGCACTGCAACGCTACAAATTCGAAGACCTGAAGCTGTCCGGTGAAGCCACCGGCGATCCGTTGCAAGGCAAGACCGTGAGCTTTGCGGCGCAAGGGCAACTGTTCCTCGACAGGGCAGCCAACGTTGCCGAATGGACCGGTATCAAGCTTTCCTTGAACCAGCTTCGCGCCTTGGGCGAGCTGAAGGTCAACGATCTCGACAAAACGCCGCAGCTGAATGGCGGCGTGTCGATTGCGTCATTCGACCTGGCCAGCTTCATCGATAGCATCGGCCAGAAACTGCCGGCGATGGCCGATGGCAGCCTGAGCAAGGTCGAGCTGGCGAGCCGCATTGCAGCCACACCGACCAGCGTCGAGCTCAACGACATCAACCTGAAAATCGATGAGAGCAATTTCAGTGGTCGCATCGCCGTGGAAGATATTGCCAAGCAGTCGCTGCGTGCCCAGCTCAAGGCCGACACCTTCAATGTTGATCGCTACCTGCCGCCAAAGTCCGCCGAAGCCAACAGCGCCAAGGCTGCCCGCGAGGCCGAAGTCAGCAACACCGAGGCCAGCGCCATGGCCGGTGCCGGCAGCTCACCGCTACCAAGCGCCCCGACCCAAGGCGCGTGGAGCAATGATCGATTGTTCCCGGTGGAGCGCCTGAGCAAGCTCGATATCGATGCCGACCTGAGCTTCGGCCAACTGACCCTCGACAAGCTGCCCATCCAGAATGCCGCGCTGAAGGCCACCGGGCTCGGCGGCCTGTTGACGCTGGAAAACCTGCGGGGCGATTTGTATAACGGCAACTTCGAAGCCAAGGGCACGCTGGACGTGCGCCAGCCCACGCCGCAGTTGAGCCTGCAAACCCGCATCAACCGGGTGCCGGCCGACAAGATCATCGAAAGCCAGGGCAAAAATCCGCCCGTCAAGGGCCTGGTGACGCTCAACAGCGCCGTCACCGCCAGCGGCAACAGCCAGAAGGCCCTGATCGACAGCCTGAACGGCAATGCCGGGTTCGTCATCAATGACGGCGTGCTGCTCAATGCCAACCTCGAACAGCAGCTGTGCAAAGGCATCGCCACGCTGAACCGCAAGAGTCTCAGCGGTGAACCGCGCGGCAAGGACACACCGTTCCAGCAACTCGACGGCAGCCTTACCTTCCACAATGGCGTGGCCAGCAACCCGGACTTGAAAGTGCGCATCCCCGGCATGACGGTCAATGGCAACGGTGACATCGACCTGCGTGTATTGGGCATGGACTACCGCGTCGGCGTCATCGTTGAAGGCGACAAGAGCGACATGCCCGACCCGGCCTGCCAGGTCAACGAGCGTTATGTCGATGTCGAGTGGCCGTTACGCTGCCGAGGCCCGCTGGAGCTGGGCGCGAAAGCCTGCCGCCTGGACAACGACGGGCTGGGCAAGGTTGCCGCGAAACTGGCCGGCGACCGCCTCGGCGACAAGATCGACGAGAAGCTCGGCGACAAGGTCAGCCCCGAGCTCAAAGACGCGCTCAAGGGGCTGTTCAAGCGATGAMKAFGKILGLVLLGLLLIIVALGFALTHLFDPNDYKEEIRQIARDKAHIELTLNGDIGWSLFPWLGLELHEASVATLANPTQPFADLQMLGLSVRVMPLLRREVQMSDVRVEGLNLRLNRDKNGHGNWEDIGKAPASTTATKAPAPTEQPAPPANAPTEKPAQPTRLDIDSLTVNNARVEYSDEQTGKLFTAESIQLSTGPIHDSTNIPVTLTAFLSSNQPAVRVRTEVTGELRFERALQRYKFEDLKLSGEATGDPLQGKTVSFAAQGQLFLDRAANVAEWTGIKLSLNQLRALGELKVNDLDKTPQLNGGVSIASFDLASFIDSIGQKLPAMADGSLSKVELASRIAATPTSVELNDINLKIDESNFSGRIAVEDIAKQSLRAQLKADTFNVDRYLPPKSAEANSAKAAREAEVSNTEASAMAGAGSSPLPSAPTQGAWSNDRLFPVERLSKLDIDADLSFGQLTLDKLPIQNAALKATGLGGLLTLENLRGDLYNGNFEAKGTLDVRQPTPQLSLQTRINRVPADKIIESQGKNPPVKGLVTLNSAVTASGNSQKALIDSLNGNAGFVINDGVLLNANLEQQLCKGIATLNRKSLSGEPRGKDTPFQQLDGSLTFHNGVASNPDLKVRIPGMTVNGNGDIDLRVLGMDYRVGVIVEGDKSDMPDPACQVNERYVDVEWPLRCRGPLELGAKACRLDNDGLGKVAAKLAGDRLGDKIDEKLGDKVSPELKDALKGLFKRNANANANANA
D1-35_03214399panZPanD regulatory factorATGCCCATCGTTGTCGAGCGTTTGAATGAAGCCACTCATCAGGATCTTCAGGACCTGCAGAAAATCTACCAGGACGCCCCGGCCTGGCTGTTCGAGCCGTTCAGCGATGCCGGGCAGTTGATCAACAGGTGCCTGACGGAAGGTACGCTGATTGCGGCACGGTTCAACGACCGGCTGCTCGGCGCCGCACGCCTGCAACGGCACCAGGACGCTTGGTACTTGTCTCACCTGTGCGTAAGAAAGGTTACCCGCCGCCGTGGCGTAGCTGAGCGCCTGGTGAGCGAGGCACGGAGGATGGCTCGAGAAGATGACGCCAGGCTTCGGCTCGAGGCACCGGCCGGGCATCTGGAGGTGCAGGCCTTGGCGGCAAAGCTGAAGTTGTCTCTCGATATTTGCTGAMPIVVERLNEATHQDLQDLQKIYQDAPAWLFEPFSDAGQLINRCLTEGTLIAARFNDRLLGAARLQRHQDAWYLSHLCVRKVTRRRGVAERLVSEARRMAREDDARLRLEAPAGHLEVQALAAKLKLSLDICNANANANANA
D1-35_032151662hypothetical proteinATGAGCACGAGCATTACGGCGGACGGCGTTGCCGACCAGCCTGCGTTCCTCTCCAAGGAACGCATTATCGCCAAGCCCGGCTTCAACCGCTGGCTGGTGCCACCGGCCGCGCTGGCCATTCACCTGTGCATCGGCATGGCCTACGGCTTTTCGGTGTTCTGGTTGCCGCTGTCCAAGGCCATGGGCATCACTAAGCCGGTAGCCTGCGCGCCGGACATGAGCTTCATCTCGCAAGTCTTTTCGTCCCAATGTGACTGGCCGATCTCGATGCTCGGCTGGATCTACACCCTGTTCTTCATTTTCCTGGGTTGCTCGGCAGCCATCTGGGGCGGCTGGCTGGAACATGCCGGTCCGCGCAAGGCTGGCGTGGTATCGGCCCTGTGCTGGTGCGGTGGCCTGCTGATTTCGGCGCTGGGTATCTATACCCATCAGATCTGGCTGATGTGGGTCGGCTCCGGTGTCATCGGTGGTATCGGCCTGGGCCTGGGCTATATCTCCCCGGTCTCGACGCTGATCAAGTGGTTCCCGGACAAGCGCGGCATGGCGACCGGCATGGCGATCATGGGCTTCGGTGGTGGCGCGATGGTGGGTGCCCCGTTGGCTGCAGCGCTGATGAGCCATTTCGCTACGCCAACCGACGTGGGCGTATGGCAGAGCTTCCTGGTGATGGCCGCGATCTACTTCGTGTTCATGATCGGTGGCGCCCTGTCGTATCGCGTTCCGCCGACCGGCTGGAAGCCTGAGGGCTGGAACCCTGCACCGAAAAAAGCCGCGAACGCAATGATCACCCATCGCCACGTTCACGTGAACGTTGCCTGGAAAACCCCGCAGTTCCGTCTGGTCTGGCTGGTGCTGTGCCTGAACGTATCCGCCGGTATCGGCATCCTGGGCATGGCTTCGCCACTGCTGCAGGAAGTGTTCGGCGGCAAATTGCTCGGAAACGACCTGCCGTTCGGTCAGCTGGACGCCGCGCAACTGGGCCAGATCGCTGCCATTGCAGCCGGTTTCACCGGTCTGCTGAGCCTGTTCAACATCGGTGGCCGGTTCTTCTGGGCCTCCTTCTCGGACTACCTGGGTCGCAAAAACACCTACTTCGTGTTCTTTGCCCTGGGCGTGGCCTTGTATGCTCTGATCCCGAGCCTGGGCCACCTGGGCAGCGTCGCGCTGTTCGTGGCGGCGTTCTGCATCATCCTGTCGATGTACGGCGGCGGTTTCGCCACCGTGCCGGCCTACCTGGCGGACCTGTTCGGTACGCAAATGGTCGGTGCGATCCACGGTCGCCTGTTGACCGCCTGGGCGGCAGCCGGCGTACTGGGTCCGGTACTGGTGAACTACTTGCGTGAATATCAACTGAGCATCGGCGTTGAACGCGCCGCGGCCTATGACATCACCCTGTACATCCTCGCCGGCCTGCTGGTGCTGGGCTTCCTGTGCAACCTGATGGTTCGCCCGGTCGCCGACAAGTACTTCATGACCGACGCCGAACTGGCCGCAGAGCAAGCGCTGGGCCACGACAAGGGCGCCGACAGCACCACTTCCCTGGAGTGGAAAGCCGCACCGGGCACCAAGCCCCTGGCGATCGCCGCCTGGCTGGTGGTGGGCATTCCGCTGGCGTGGGGTGTGTGGGTGACCCTGCAGAAGACGGCGGTGTTGTTCCGCTAAMSTSITADGVADQPAFLSKERIIAKPGFNRWLVPPAALAIHLCIGMAYGFSVFWLPLSKAMGITKPVACAPDMSFISQVFSSQCDWPISMLGWIYTLFFIFLGCSAAIWGGWLEHAGPRKAGVVSALCWCGGLLISALGIYTHQIWLMWVGSGVIGGIGLGLGYISPVSTLIKWFPDKRGMATGMAIMGFGGGAMVGAPLAAALMSHFATPTDVGVWQSFLVMAAIYFVFMIGGALSYRVPPTGWKPEGWNPAPKKAANAMITHRHVHVNVAWKTPQFRLVWLVLCLNVSAGIGILGMASPLLQEVFGGKLLGNDLPFGQLDAAQLGQIAAIAAGFTGLLSLFNIGGRFFWASFSDYLGRKNTYFVFFALGVALYALIPSLGHLGSVALFVAAFCIILSMYGGGFATVPAYLADLFGTQMVGAIHGRLLTAWAAAGVLGPVLVNYLREYQLSIGVERAAAYDITLYILAGLLVLGFLCNLMVRPVADKYFMTDAELAAEQALGHDKGADSTTSLEWKAAPGTKPLAIAAWLVVGIPLAWGVWVTLQKTAVLFRPGPT0017235_863DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_OXALATE_TRANSPORT,PGPT0017235-oxlT-K08177NANA
D1-35_03216594hisBCOG0131Histidine biosynthesis bifunctional protein HisBATGGCCGAACGTAAGGCGTCTGTCGAGCGCGACACTCTGGAAACCCAGATCAAAGCCTCGATCAACCTGGATGGCACCGGAAAGGCCCGGTTTGATATCGGCGTGCCTTTTCTTGAGCACATGCTCGACCAGATCGCCCGTCACGGGCTGATCGACCTGGACATCGTCAGCAAGGGCGACCTGCATATCGACGACCATCACACCGTCGAAGATGTCGGTATCACGCTGGGCCAGGCTTTCACCAAAGCCATCGGCGACAAGAAGGGCATCCGTCGCTACGGCCATGCCTACGTGCCGCTCGATGAAGCGCTGTCGCGCGTGGTCATCGACTTCTCGGGCCGCCCTGGCCTGCAGATGCATGTGCCGTACACCCGCGCCACCGTCGGCGGCTTCGACGTCGACCTGTTCCAAGAGTTCTTCCAGGGCTTCGTCAATCACGCCAACGTGACCCTGCACATCGACAACCTGCGTGGGCACAACACCCATCACCAGATCGAAACCGTGTTCAAGGCGTTCGGCCGCGCGCTGCGCATGGCTGTCGAGCTCGATGACCGCATGGCCGGCCAGATGCCTTCCACCAAAGGCGTCCTGTAAMAERKASVERDTLETQIKASINLDGTGKARFDIGVPFLEHMLDQIARHGLIDLDIVSKGDLHIDDHHTVEDVGITLGQAFTKAIGDKKGIRRYGHAYVPLDEALSRVVIDFSGRPGLQMHVPYTRATVGGFDVDLFQEFFQGFVNHANVTLHIDNLRGHNTHHQIETVFKAFGRALRMAVELDDRMAGQMPSTKGVLPGPT0020305_19DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0020305-hisC-K00817NANA
D1-35_03217639hisHCOG0118Imidazole glycerol phosphate synthase subunit HisHATGCAGACGGTTGCGGTTATCGATTACGGCATGGGCAACCTGCACTCGGTGGCCAAGGCCCTCGAGCACGTAGGCGCCGGCAAGGTATTGATCACCAGCGATGCCGACGTGATTCGCGAAGCCGACCGGGTGGTGTTTCCCGGTGTCGGCGCGATTCGCGACTGCATGGCCGAGATTCGGCGCCTGGGCTTCGACAAGCTGGTGCACGAAGTCAGCCAGGATCGCCCGTTCCTCGGCATCTGCGTGGGCATGCAGGCTTTGCTCGATCGCAGTGAAGAGAACGACGGGGTCGATTGCATCTCGCTGTTCCCGGGCCAGGTCAAGTTCTTTGGCAAGGACCTGCATGAAGACAGCGAGCACTTGAAAGTGCCGCACATGGGCTGGAACGAAGTGCGGCAAACAGTGGACCACCCGCTGTGGCACGATATTCCGGACCTCGCGCGTTTCTACTTCGTGCACAGCTACTACATCGCCGCCGGCAATGCCCGGCAGGTGGTGGGCAGCGGTCACTATGGTGTCGATTTCGCCGCGGCCCTGGCCGATGGCTCGCGCTTCGCCGTGCAGTTTCACCCGGAGAAGAGCCATACCCATGGCCTGCAACTGCTGCAGAACTTCGCGGCGTGGGACGGGCGCTGGTAAMQTVAVIDYGMGNLHSVAKALEHVGAGKVLITSDADVIREADRVVFPGVGAIRDCMAEIRRLGFDKLVHEVSQDRPFLGICVGMQALLDRSEENDGVDCISLFPGQVKFFGKDLHEDSEHLKVPHMGWNEVRQTVDHPLWHDIPDLARFYFVHSYYIAAGNARQVVGSGHYGVDFAAALADGSRFAVQFHPEKSHTHGLQLLQNFAAWDGRWNANANANANA
D1-35_03218255hypothetical proteinATGGCCCGCAAGAAACCGCCGATCCTCACCCTCACGCCTGAGCAGGAAAGTGAGGCGAACCGCAAGATCCAGCGGTTCATGGAGGAGCGTTTCGAGCTGGACCTTGGCTCGTTCGAAGCGGCGGAAATTCTTGATCTGTTTACCCGCGAAATTGCTCCGCACTATTACAACAGGGCGATTTTCGATGTGCAGGCGCACCTTAAGGAAAGGTTCGAAAGCATCGAAAGCGACTTGTGGGCGCTCGAGAAAAACTGAMARKKPPILTLTPEQESEANRKIQRFMEERFELDLGSFEAAEILDLFTREIAPHYYNRAIFDVQAHLKERFESIESDLWALEKNNANANANANA
D1-35_03219738hisACOG01061-(5-phosphoribosyl)-5-[(5-phosphoribosylamino)methylideneamino] imidazole-4-carboxamide isomeraseATGCTGATTATCCCCGCTATCGATCTCAAGGACGGCGCTTGTGTCCGTCTGCGCCAGGGCCGCATGGAAGACTCCACGGTGTTTTCCGACGACCCGGTGAGCATGGCCGCCAAGTGGGTGGAGGGCGGTTGCCGTCGCCTGCATCTGGTTGACCTGAACGGTGCCTTCGAAGGCCAGCCGGTCAACGGTGAAGTGGTCACGGCCATCGCCAAGCGGTACCCGAACCTGCCGATCCAGATCGGCGGCGGCATTCGTTCGCTGGAGACCATCGAGCACTACGTCAAGGCCGGCGTGAGCTACGTGATCATCGGCACCAAGGCCGTCAAGGAACCCGAGTTCGTCGCCGAAGCCTGCCGTGCCTTCCCGGGCAAGGTCATCGTTGGCCTCGACGCCAAGGACGGGTTTGTCGCCACCGACGGCTGGGCTGAAGTGAGTACCGTGCAAGTGATCGACCTGGCCAAGCGTTTCGAAGCCGACGGCGTGTCCGCCATCGTCTACACCGACATTGCCAAGGACGGCATGATGCAGGGCTGCAACGTTCCGTTCACCGCTGCCCTGGCCGCCGCCACGAAGATCCCGGTGATCGCCTCCGGCGGCATCCACAACCTGGGCGACATCAAGGCACTGCTCGACGCCAGGGCGCCGGGCATCATCGGTGCGATCACCGGTCGCGCGATCTATGAAGGTACCCTGGACGTCGCCGAGGCCCAGGCCTTCTGCGATTCCTATAAAGGCTGAMLIIPAIDLKDGACVRLRQGRMEDSTVFSDDPVSMAAKWVEGGCRRLHLVDLNGAFEGQPVNGEVVTAIAKRYPNLPIQIGGGIRSLETIEHYVKAGVSYVIIGTKAVKEPEFVAEACRAFPGKVIVGLDAKDGFVATDGWAEVSTVQVIDLAKRFEADGVSAIVYTDIAKDGMMQGCNVPFTAALAAATKIPVIASGGIHNLGDIKALLDARAPGIIGAITGRAIYEGTLDVAEAQAFCDSYKGNANANANANA
D1-35_03220771hisFCOG0107Imidazole glycerol phosphate synthase subunit HisFATGGCGCTGGCCAAACGCATCATCCCTTGCCTGGACGTGGATAACGGCCGGGTGGTCAAGGGCGTCAAGTTCGAGAACATCCGTGACGCTGGCGACCCGGTGGAAATCGCCCGTCGTTATGACGAGCAGGGTGCGGACGAGATTACTTTCCTGGATATCACGGCCAGCGTCGACGGCCGCGATACCACGCTGCACACCGTCGAGCGCATGGCCAGCCAGGTGTTCATCCCGCTGACCGTGGGCGGTGGCGTGCGCAGCGTGCAGGACATCCGCAACCTGCTCAATGCCGGCGCGGACAAGGTGTCCATCAACACCGCGGCGGTGTTCAACCCGGAATTCGTCGGCGAGGCGGCCGAGCATTTCGGCTCGCAGTGCATCGTCGTGGCGATCGACGCGAAGAAGGTCTCCGGCCCGGGCGAAACCCCGCGCTGGGAAATCTTCACCCATGGCGGGCGCAAGCCAACCGGGCTGGACGCCGTTGAATGGGCCAAGAAGATGGAAGGCCTGGGCGCCGGAGAAATCCTGCTGACCAGCATGGACCAGGACGGCATGAAGAATGGCTTCGATCTCGGCGTCACCCGTGCCATCAGCGATGCCTTGGGCATTCCGGTGATCGCTTCCGGCGGCGTTGGCAACCTGCAGCACTTGGCCGATGGCATTCTGGAAGGCCACGCCAGCGCGGTATTGGCGGCGAGCATTTTCCACTTTGGCGAATACACCGTGCCGGAAGCCAAGGCCTACATGGCCCAGCGCGGTATCTGCGTCAGATAAMALAKRIIPCLDVDNGRVVKGVKFENIRDAGDPVEIARRYDEQGADEITFLDITASVDGRDTTLHTVERMASQVFIPLTVGGGVRSVQDIRNLLNAGADKVSINTAAVFNPEFVGEAAEHFGSQCIVVAIDAKKVSGPGETPRWEIFTHGGRKPTGLDAVEWAKKMEGLGAGEILLTSMDQDGMKNGFDLGVTRAISDALGIPVIASGGVGNLQHLADGILEGHASAVLAASIFHFGEYTVPEAKAYMAQRGICVRPGPT0007095_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-HQQ|PQS_BIOSYNTHESIS,PGPT0007095-trpE|phnA-K01657NANA
D1-35_032211107hypothetical proteinATGGCAATCATTGAACTGGACGTCAGCCTGCAAACCTTGCTCAAGGATGGGATACAGCCATTGGGCCTGGCCACCGAGCGTCCCGTCGACGGGACGGATGTCCTGATCGTAGGCGCGCCAGTCCACGATCAGAACACGCTGCGGCTGGCTGCCTGTACCTTGCAACCTGCCCAGGAGATCGTGGAGGGCCGCTGGGTCTGGCGTAACACGCTGATGACCCGCTGCAAGGATATGAAAGGTGGTGGCTCCGGCAGCCCGCTACTGGAGCGCCGTACCAATAAGATCATCGGCGTGATAGGCACTGGCAACCTGACCATCCAAGCCCACCCCTGCGAGCAGCACGCTCCTTGCACTCCGGTTGGCGACAGCTATAAAGCGATACCGGACGATGTTTATGGGAATCCTACGGATTTTCTCAGCCGCTGCTTTGTAGAGGGCCTCTTCGTTCAAGACGTGAATTCGTCTTGCCCGCTGTATCCGGTCTTTTCCGTCAGCGCCGCAGCGGACAGCCCGCAAAGATACATAAGAATTGGGAAAAAAGACGACGGCACTGCAGAGATCCCGACCTGGAACTACCACTTCACAATCAACACGCCGTTCTATCGTCATAAGACCGTTCGAACCGCAATGGATTGCGAAAGGCCGCAAGACTACAGCGGAGTAACAAGTGCGCGGGACGCTTTCATAAACACCGGGATAGGCGACCAGGTGGGCATGTACTTCCTGTGCATCGTGGGTGTCGACTCCGCTGATCAACGCCCCTCAGAGGGGCTCATAAACAACGTGTTGTCCCTTCCGGTCGAAATTCTCGACAACGCTCCAACAGCTCAGCCTGAGTTGAGTTTCACTGCAGGCGTGCAACTGTCGACAGCTGCGAATGAACTGCCACATCGAACCTACGCCTACAAGTTCGGCCCGACAGAGTCGACTGACTGTTCAGACAAAACCGATTACAGCAACATCGAATACATAGACGCATGGCTGGACAATTCGGATCTGCCTGGAAAGCTCTGCACCATTGCCTATGACATATCCAGACAAGCATCCGAGCCAAGAATGGACATCCTGAACCCTACCCCGCTCAAGGATATCCAGGACTCGCCCTGAMAIIELDVSLQTLLKDGIQPLGLATERPVDGTDVLIVGAPVHDQNTLRLAACTLQPAQEIVEGRWVWRNTLMTRCKDMKGGGSGSPLLERRTNKIIGVIGTGNLTIQAHPCEQHAPCTPVGDSYKAIPDDVYGNPTDFLSRCFVEGLFVQDVNSSCPLYPVFSVSAAADSPQRYIRIGKKDDGTAEIPTWNYHFTINTPFYRHKTVRTAMDCERPQDYSGVTSARDAFINTGIGDQVGMYFLCIVGVDSADQRPSEGLINNVLSLPVEILDNAPTAQPELSFTAGVQLSTAANELPHRTYAYKFGPTESTDCSDKTDYSNIEYIDAWLDNSDLPGKLCTIAYDISRQASEPRMDILNPTPLKDIQDSPNANANANANA
D1-35_03222354hypothetical proteinATGAAAACGATCTACTTGTTACTGGGCGGTCTGTTTTGCCTGTCTGGCGCACTGAGCGTTGCACATGGCAAAGACTATGGCGAAGGGGTTCAGAACTTCGCCGACTCAAAAATCCTGAACAACAAAGATGGCTCACATGACCATTGGCAGGGTATTGGACGCTTCTCTACGATGAACGGGAATTGTACTGCGACACTTCTCGATACCCATGACCCTTCCGGGACAACGCCCACGCCCGCCTACGTGTTGACCTCGGGACATTGCACCGAGCTGACCAACGCAAACATCGTGACCAACAAGCCAATCCTCGGCGTCATGCAGTTCAACTATTCGCCGATACCGCCCCCTACCTGAMKTIYLLLGGLFCLSGALSVAHGKDYGEGVQNFADSKILNNKDGSHDHWQGIGRFSTMNGNCTATLLDTHDPSGTTPTPAYVLTSGHCTELTNANIVTNKPILGVMQFNYSPIPPPTNANANANANA
D1-35_03223708hypothetical proteinATGAGCGGGGCGCAGGCCGGGGACGGCCGCGATGCTGGCCTGGTATTGCTGACGGAGAACTTTCCGCCCTACAACATGGCGAAGAACGGCAAGAACTTCGCCCAAGACGAAAACATCCATGGCATTGCGGTGGACATCGTCCGCGAGATATTCAAACGCGCCGATATTTCCTACAGCCTGACGCTGCGTTTTCCCTGGGAACGAATCTACAAGCTTGCCTTGGAAAAACCCGGTTATGGGGTGTTTGTAACGGCTCGGCTGCCTGAGCGCGAAAAGCTCTTCAAATGGGTTGGCCCCATCGGCCCGGACGATTGGATCATGCTCGCCAAGGCCGACAGCAAGATTGCCCTCGACTCGTTGGAGCAGGCGCGTCAGTACAGGATTGGCGCCTACAAGGGCGATGCAATTGCCGAAACATTGGCCAAACAGGGGCTCAAACCCATTGTCGTGTTGCGCGATCAGGACAACGCCAGAAAACTCGTCAATGGCCAGATAGACCTATGGGCTACCGGCGACCCGGCAGGGCGTTATCTGGCGCGTCAGGAGGGAGTGAGCGATCTCAAGACCGTACTGCGATTCAACAGTGCCGAGCTCTACCTGGCCTTGAACAAGGACGTGCCGGACGAGGTGGTGAGCCGCCTGCAAAAGGCTCTGGATGAGCTGCGCAAGGAAGGCGAAGTGGACGCGATCATGGCGCGCTATCTCTGAMSGAQAGDGRDAGLVLLTENFPPYNMAKNGKNFAQDENIHGIAVDIVREIFKRADISYSLTLRFPWERIYKLALEKPGYGVFVTARLPEREKLFKWVGPIGPDDWIMLAKADSKIALDSLEQARQYRIGAYKGDAIAETLAKQGLKPIVVLRDQDNARKLVNGQIDLWATGDPAGRYLARQEGVSDLKTVLRFNSAELYLALNKDVPDEVVSRLQKALDELRKEGEVDAIMARYLPGPT0020800_15019DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-35_03224780hypothetical proteinATGGGCCAGCGTTTCATTTTCGTCCTGTTGTGCCTGCTGGCGGGAGCCGTTAACGCGGCTCCCGCCACAGCTTCCCCGCCGCAGAAGGCTTACCTGAGCCTGATCATCGATGACCTGGGGCAGAATCTGCCCCGGGATCGCCGTGTACTGGCCCTGTCCGGTCCGGTCACCGCGGCAGTCATGCCCGACACGCCCCACGCCGCCGAAATCGCCCGCGAGGCTCATCGCGCCGGCAAACTCGTCATGCTGCACATGCCCATGGACCCGGCCACCGGGCCGTTCGCCTGGCATCCGGAATTATCCATCGAAGAATTGGGCAAGCGCCTGGACGCCGCGTTTGCCGCGGTGCCCTACACCAGCGGTATCAACAACCACATGGGCAGCCGCATGACCGCGCAACCCCAGGCGATGGCATGGCTGATGGCGAATCTGCAACAGCGTCACAAGTTTTTCGTCGACAGCCGCACCAGCGCGCAGACGGTCGCGGCTGCCGAAGCACAAAAGATCGGCCTCGCCAGCGTGTCGCGGGATGTATTTCTTGATGACGAGCGCACCGAAGCGGCTATCGCCGGCCAGCTTCAGGTCGCCATCAATCTGGCTCGGCGGCAGGGCTCGGCCGTGATGATCGGCCATCCCTATCCGCAGACCCTCGCCGTGCTCGAGCGCGAACTGCCCAAGCTCAAGGCCCAGGGCATCGAGTGGATCGACATCAAGTCGATGATCAGCCTGCGCAGCAACCGAGCGATGGCCGGGCACGGGAAGGATGGGGTTTATCGTTAGMGQRFIFVLLCLLAGAVNAAPATASPPQKAYLSLIIDDLGQNLPRDRRVLALSGPVTAAVMPDTPHAAEIAREAHRAGKLVMLHMPMDPATGPFAWHPELSIEELGKRLDAAFAAVPYTSGINNHMGSRMTAQPQAMAWLMANLQQRHKFFVDSRTSAQTVAAAEAQKIGLASVSRDVFLDDERTEAAIAGQLQVAINLARRQGSAVMIGHPYPQTLAVLERELPKLKAQGIEWIDIKSMISLRSNRAMAGHGKDGVYRNANANANANA
D1-35_032251317ctpBCOG0793Carboxy-terminal processing protease CtpBATGCTGCATTTGTCCCGCCTCACCTCGCTGGCCCTGACGATCGCCCTCGTGATCGGCGCGCCCCTGGCTTTCGCCGCGCAACCCGCGCCGGCGTCGACCGCCGCTACGGCCGCCACCACCAAGGCCCCGCTGCCGTTGGATGAACTGCGCACCTTTGCCGAAGTCATGGACCGGATCAAAGCCGCGTACGTGGAACCGGTGGACGACAAGATGCTGCTGGAAAACGCCATCAAAGGCATGCTCAGCAACCTTGACCCGCATTCGGCCTACCTGGGCCCTGAGGATTTTGCCGAGTTGCAGGAAAGCACCAGCGGCGAATTCGGCGGCCTGGGCATCGAGGTCGGCAGCGAAGACGGTTTCGTCAAAGTGGTCTCGCCGATCGACGATACGCCCGCCTCCAAGGCTGGCATCCAGGCTGGCGACTTCATCGTCAAGATCAACGGCCAACCGACCCGTGGCCAGAGCATGACCGAAGCCGTGGACAAGATGCGCGGCAAGATCGGCGAAAAAATCACCCTGACCCTGGTGCGCGACGGCGGTACGCCATTCGACGTGACGCTGACCCGGGCGGTCATCCAGGTCAAGAGCGTGAAGAGCCAACTGCTGGAGTCCGGCTACGGCTACATCCGCATCACCCAGTTCCAGGTCAAGACCGGCGAAGAAGTCGCCAAGGCCCTGGCCAAGATGCGCAAGGACAACGGCAAGAAGCTCAACGGCCTGGTCCTGGACTTGCGCAACAACCCCGGCGGCGTCCTGCAATCGGCTGTGGAAGTGGTGGACCATTTCATCACCAAGGGCCTGATCGTCTACACCAAGGGCCGCATCGCCAATTCCGAGCTGCGCTTCTCGGCCACCGGCAACGACCTCAGCGAAGCCGTGCCACTGGTCGTGCTGATCAATGGCGGCAGCGCGTCGGCGTCGGAAATCGTCGCCGGTGCTCTGCAAGACCAGAAACGTGGCGTTGTCATGGGCACCACCAGTTTCGGCAAGGGCTCGGTGCAGACCGTGTTGCCGCTGAACAACGACCGCGCCCTGAAAATCACCACCGCGCTGTACTTCACGCCCAACGGCCGCTCCATCCAGGCCCAGGGCATTGTCCCGGACATCGAGGTGCGCAAGGCCAAGATCACCAGCGAGGCGGACAGCGAGTACTTCAAGGAAGCCGACCTGCAAGGTCACTTGGGCAATGGCAACGGCGGCGCGGACAAACCGACCGGTTCCGGCGCCAAGGCCAAGCCGATGCCGCAGGATGACGACTATCAGTTGGCCCAGGCCTTGAGCCTGCTCAAAGGGTTGAACATCACGTCCGGCCGCTGAMLHLSRLTSLALTIALVIGAPLAFAAQPAPASTAATAATTKAPLPLDELRTFAEVMDRIKAAYVEPVDDKMLLENAIKGMLSNLDPHSAYLGPEDFAELQESTSGEFGGLGIEVGSEDGFVKVVSPIDDTPASKAGIQAGDFIVKINGQPTRGQSMTEAVDKMRGKIGEKITLTLVRDGGTPFDVTLTRAVIQVKSVKSQLLESGYGYIRITQFQVKTGEEVAKALAKMRKDNGKKLNGLVLDLRNNPGGVLQSAVEVVDHFITKGLIVYTKGRIANSELRFSATGNDLSEAVPLVVLINGGSASASEIVAGALQDQKRGVVMGTTSFGKGSVQTVLPLNNDRALKITTALYFTPNGRSIQAQGIVPDIEVRKAKITSEADSEYFKEADLQGHLGNGNGGADKPTGSGAKAKPMPQDDDYQLAQALSLLKGLNITSGRPGPT0015095_5722DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CHAPERONE|PROTEASES,PGPT0015095-prc|ctpA-K03797NANA
D1-35_032261293envCCOG4942Murein hydrolase activator EnvCATGCTCCGCGTCCTGATAGCCCTTGCTCTGACCTGCCTGCTCCAACCGGCCTTCGCGGACGAGCGCGCGCAAACCCAACAACAGTTGGAAGCCACGCGCCAGGACATCGCCGAGCTGAAGAAGCTGCTGAACAAGTTGCAGGAAGAAAAATCCAGCGTGCAGAAAGACCTGCGCGGCACCGAAACCGAGATGGGCAAGCTGGAGAAGCAGGTCGACGCCCTGCAGAAAGAGCTGAAGAAAAGCGAATCCGAGTTGCAACGCCTCGATGGAGAGAAAAAAAAACTCCAGAGCGCGCGCACTGAACAGCAAAAGCTGATCGCCATCCAGGCTCGGGCGGCCTACCAGAACGGTCGCCAGGAATACCTCAAATTGCTGCTCAACCAGCAGAATCCCGAGAAATTCGCCCGCACCCTCACCTATTACGACTACCTGAGCCAGGCCCGCCTGGAGCAGCTCAAGAGCTTCAATGAAACCCTGCGCCAGCTGGCCAATGTCGAGAAAGACATCGAGCTGCAGCAAGCCCAGTTGCTCGTGCAGAAAAGCAGCCTCGACACCCAGCGTGAAGAACTCGAGAAGGTTCGCAAGGAGCGCCAGGTGGCCCTGGCCAAGCTCAATGACGACGTGAAGGCTCGCGACAGCAAGCTCAAGGCCCGCGAACAGGACCAGGCCGAACTGGCAAATGTCTTGAAAACCATCGAGGAAACCCTGGCTCGCCAGGCTCGGGAGGCGGAAGAAGCGCGGCAGAAAGCGCTGATCGCCCAGCAGGAAGCCGAAAAAAAGCGTTTGCGTGAAGCCCAGGCCGACGCCGATGCCGGCGAAGCCCCGCGCAAGCCGGCCAAATCCAGCCCCGGCGCAGTGGTTTCCAGCGATGGCGAAACCTTCGGCGGCGCTTTTGCTTCAGCCCGGGGCAAACTTCCATGGCCGGTCAATGGTCGATTACTTGCACGCTTCGGTGAAACCCGTGGCGACGACACCCGCACCAAGTGGGACGGCGTGATGATCAGCGCTTCCGCCGGCAGCCAGGTGCACGCTGTACATGGCGGGCGCGTGGTGTTTGCCGACTGGCTGCGCGGTGCCGGCCTGCTGGTGATCCTCGATCACGGCAACGGATACCTGAGCCTTTACGGCCATAACCAGACGCTGCTCAAATCGGCGGGTGATGTGGTCAAGGCCGGCGAGTCCATCTCCACGGTCGGCAACAGTGGCGGGCAGGACACGCCAGCACTGTATTTTGCTATTCGCCAGCAGGGTCGCCCCAGTGACCCGGCACAATGGTGTCGTGCGCAAGGATAAMLRVLIALALTCLLQPAFADERAQTQQQLEATRQDIAELKKLLNKLQEEKSSVQKDLRGTETEMGKLEKQVDALQKELKKSESELQRLDGEKKKLQSARTEQQKLIAIQARAAYQNGRQEYLKLLLNQQNPEKFARTLTYYDYLSQARLEQLKSFNETLRQLANVEKDIELQQAQLLVQKSSLDTQREELEKVRKERQVALAKLNDDVKARDSKLKAREQDQAELANVLKTIEETLARQAREAEEARQKALIAQQEAEKKRLREAQADADAGEAPRKPAKSSPGAVVSSDGETFGGAFASARGKLPWPVNGRLLARFGETRGDDTRTKWDGVMISASAGSQVHAVHGGRVVFADWLRGAGLLVILDHGNGYLSLYGHNQTLLKSAGDVVKAGESISTVGNSGGQDTPALYFAIRQQGRPSDPAQWCRAQGPGPT0023855_799DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-MUREIN-ENDOPEPTIDASE_ACTIVITY|LIPOPROTEIN,PGPT0023855-envC-K22719NANA
D1-35_032271530gpmICOG06962,3-bisphosphoglycerate-independent phosphoglycerate mutaseATGACTACCACGCCTAAACCTTTGGTCCTGATGATTCTGGACGGCTTCGGTCACAGTGACAGCCACGAATCCAACGCCGTCTACGCGGCCAGGAAGCCTGTGCTGGATCGCCTGTGGGCCACCGTGCCGAACGGCTTGATCTCCGGCAGCGGCATGGACGTCGGCCTGCCCGACGGGCAGATGGGCAACTCCGAAGTCGGCCACATGAACCTCGGCGCCGGCCGCGTGGTGTATCAGGACTTCACCCGCGTGACCAAATCGATCCGCGACGGCGAGTTTTTCGAAAACCCGACCATTTGCGCCGCCGTGGATAAAGCCGTGGCCGCCGGCAAGGCCGTGCACTTCATGGGCCTGCTGTCCGACGGTGGCGTGCACAGCCATCAGGACCACCTGATCGCCATGGCCGAGTTGGCCGCCAGGCGCGGCGCTGAAAACATCTACCTTCACGCCTTCCTGGATGGCCGTGACACGCCGCCGAAGAGCGCCGAATCGTCGATCAAATTGCTGGATGACACGTTCAAGACCCTCGGCAAGGGCCGGATCGCCAGCCTGATCGGCCGTTACTTCGCCATGGACCGTGACAACCGCTGGGACCGCGTCGCCCAGGCCTACAACCTGATCGTCGACGGCAATGCGGAATTCCACGCCGCCACCGCGCAAGAAGGCCTGCAAGCTGCCTACGAACGTGGTGAAAGCGACGAGTTCGTCAAGGCCACAACCATCGGCGAGCCGGTAAAAGTCGAAGACGGCGACGCCGTGGTGTTCATGAACTTCCGCGCCGACCGTGCCCGCGAACTGACTCGCGTATTCGTCGAAGAAGATTTCAAGGAATTCGAGCGCGCCCGCCAGCCGAAGCTGGCCGGTTTCGTGATGCTGACCCAATACGCCGCCAGCATTCCCGCGCCATCGGCCTTCGCCGCCGGCAGCCTGGAAAACGTGCTGGGTGACTACCTGGCGAAAAACGGCAAGACCCAGCTGCGCATCGCGGAAACCGAGAAGTACGCCCATGTGACGTTCTTCTTCTCCGGCGGCCGCGAAGAGCCCTTCCCGGGCGAAGAGCGCATCCTGATCCCGTCGCCGAAGGTCGCCACCTACGATCTGCAACCGGAAATGAGCGCGCCGGAAGTGACCGACCGCATCGTCGACGCCATCGAGAACCAGCGTTACGACGTGATCGTGGTCAACTACGCCAACGGTGACATGGTCGGTCACAGCGGCGTGTTCGACGCAGCGGTCAAGGCGGTGGAATGCCTGGACACCTGCGTCGGTCGCATCGTCGAGGCGCTGGAAAAAGTCGGCGGCGAAGCGCTGATCACCGCCGACCACGGCAACGTCGAGCAAATGTCCGACGAATCCACCGGCCAGGCCCACACGGCCCACACCACTGAGCCGGTGCCATTCATTTATGTCGGCAAGCGTGACTTCAAGGTCCGCGACGGCGGCGTATTGGCCGACGTCGCACCGACCATGCTGATGCTGCTGGGCATGGAACAGCCGGCGGAGATGACCGGGACTTCGATCCTGGTCTGAMTTTPKPLVLMILDGFGHSDSHESNAVYAARKPVLDRLWATVPNGLISGSGMDVGLPDGQMGNSEVGHMNLGAGRVVYQDFTRVTKSIRDGEFFENPTICAAVDKAVAAGKAVHFMGLLSDGGVHSHQDHLIAMAELAARRGAENIYLHAFLDGRDTPPKSAESSIKLLDDTFKTLGKGRIASLIGRYFAMDRDNRWDRVAQAYNLIVDGNAEFHAATAQEGLQAAYERGESDEFVKATTIGEPVKVEDGDAVVFMNFRADRARELTRVFVEEDFKEFERARQPKLAGFVMLTQYAASIPAPSAFAAGSLENVLGDYLAKNGKTQLRIAETEKYAHVTFFFSGGREEPFPGEERILIPSPKVATYDLQPEMSAPEVTDRIVDAIENQRYDVIVVNYANGDMVGHSGVFDAAVKAVECLDTCVGRIVEALEKVGGEALITADHGNVEQMSDESTGQAHTAHTTEPVPFIYVGKRDFKVRDGGVLADVAPTMLMLLGMEQPAEMTGTSILVPGPT0018040_2253DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018040-gpmI-K15633NANA
D1-35_03228414yibNCOG0607putative protein YibNATGGTTGCTCACCTGATTGAATTTGCCACTAACCACTACATTCTCGTCGGTATCTTCGTCGTACTGCTGGCGTTGCTGGTTGCCCACACGATGCAGGGCGGCGGACGCAGCCTGAGCACCGGTGAGCTGACCGCGCTGGTCAACAAGGACGCCGGCGTAGTGGTCGACATCCGTCCGACCAAGGATTACGCCGCCGGTCACATCGTCGGCGCGCTGAACATTCCTCAGGACAAACTGATCGCTCGTGTGGCCGAACTGGAAAAACACAAGGCCAAGACGCTGATCCTGGTCGACGCCCAAGGCCAGCAGGCCGGTACCCTTGCCCGCGAACTGATGAAGTCCGGCTTCACCGCCGCCAAACTGTCTGGTGGCGTTGCGAGCTGGAAAGCCGACAATCTGCCCCTGGTGAAGTGAMVAHLIEFATNHYILVGIFVVLLALLVAHTMQGGGRSLSTGELTALVNKDAGVVVDIRPTKDYAAGHIVGALNIPQDKLIARVAELEKHKAKTLILVDAQGQQAGTLARELMKSGFTAAKLSGGVASWKADNLPLVKNANANANANA
D1-35_03229198grxCCOG0695Glutaredoxin 3ATGCTGCTCAAGAACAAGGGCGTAGCCTTCGAAGAGATCAAGGTCGACGGCAAGCCGCAACTGCGCGCCGAAATGACCCAGAAGGCCCGGCGTACCTCCGTGCCGCAGATCTGGATCGGCGACACCCACGTGGGCGGTTGCGACGACCTGTTCGCCCTGGAGCGCGCCGGCGAGCTCGACGCGCTGCTCAAGGCCTGAMLLKNKGVAFEEIKVDGKPQLRAEMTQKARRTSVPQIWIGDTHVGGCDDLFALERAGELDALLKAPGPT0013201_4310DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-CHAPERONES,PGPT0013201-grxC-K03676NANA
D1-35_03230483secBCOG1952Protein-export protein SecBATGACTGACCAACAGAACACAGCTGCCACTGAAGAAGAAGCCGCACCGCAATTCTCCTTGCAGCGCATTTACGTTCGCGACCTGTCCTTCGAAGCCCCGAAAAGCCCGGCGATCTTTCGCCAGCAGTGGGAGCCGAGTGTGGCCCTGGACCTGAATACCCGCCAGAAAGCCCTGGAAGAAGATTTCCACGAAGTGGTGCTGACCCTGTCGGTGACCGTGAAGAATGGCGACGAAGTCGCGTTCATCGCCGAAGTCCAGCAGGCCGGTATCTTCCTGATCAAGAATCTCGATGCCGCTTCGATGAGCCACACCCTGGGCGCGTTCTGCCCGAACATTCTGTTCCCGTACGCCCGCGAAACACTGGACAGCCTGGTGACCCGTGGCTCGTTCCCGGCCCTGATGCTGGCCCCGGTGAACTTCGATGCCCTGTACGCGCAAGAGCTGCAGCGCATGCAACAGGAAGGTGGCGCGACCGTCCAGTAAMTDQQNTAATEEEAAPQFSLQRIYVRDLSFEAPKSPAIFRQQWEPSVALDLNTRQKALEEDFHEVVLTLSVTVKNGDEVAFIAEVQQAGIFLIKNLDAASMSHTLGAFCPNILFPYARETLDSLVTRGSFPALMLAPVNFDALYAQELQRMQQEGGATVQPGPT0025745_939DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025745-secB-K03071NANA
D1-35_03231456trmLCOG0219tRNA (cytidine(34)-2'-O)-methyltransferaseATGTTTCACGTCATCCTTTTTCAACCGGAAATACCACCCAATACCGGCAACGTCATCAGGCTGTGCGCCAACAGCGGCTGCCACCTGCACCTGATCGAACCGCTGGGCTTCGAAATGGACGACAAGCGCCTGCGCCGCGCCGGCCTCGACTACCACGAGTATGCCACCTTGCAGCGGCACGCCGACTTGGCCAGTTGCCTGGAAAGCCTGGGGCATCCGCGCCTGTTCGCCTTCACCACCAAGGGCTCACGGCCGTTTCATGACGCCAGCTTCGTCGCCGGCGATGCATTCCTGTTCGGCCCGGAAAGCCGTGGCCTGCCGGCCGAAGTGCTCGACGCACTACCGGCGGACCAACGCTTGCGCTTGCCGATGCGTGAAGGCTGCCGCAGCCTGAACCTGTCCAACACCGTGGCGGTGGCGGTTTATGAGGCGTGGCGGCAGAACGGCTTTCAGTAGMFHVILFQPEIPPNTGNVIRLCANSGCHLHLIEPLGFEMDDKRLRRAGLDYHEYATLQRHADLASCLESLGHPRLFAFTTKGSRPFHDASFVAGDAFLFGPESRGLPAEVLDALPADQRLRLPMREGCRSLNLSNTVAVAVYEAWRQNGFQPGPT0013375_29DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013375-pncB-K00763NANA
D1-35_03232363hypothetical proteinATGGGCTCTCTGGCGATCGTCGGCATGATGGTCGGGCTGATGATCGGCCGCCTGACAACGCCCGATCCGAGCGAGCTGCAACAGGTCGAGGTCACCCAGGGAGGGCTGGTGGCCTGGTTCAACAACGAACCGGAGCTCCATGGGGAAATCATCGACGGCACTGTGGCGCTGTTGTTTCAGGCGCAAGGTCGGCCGCAGAAAGGCCAGCTCAAGCTCAACGGCAAGAACGTGAACTGGCGGGTGCGGTTGAGTGACAAGGGGCTGTTGCTGACTTTGGTGGCGGCGCGTCCGTTGCGAGGGGAGTGGACCGGCAGCGAGGTCGATGACCGCTGGCGGCTGGAGATCCGTCTCCAGGAGCAATAAMGSLAIVGMMVGLMIGRLTTPDPSELQQVEVTQGGLVAWFNNEPELHGEIIDGTVALLFQAQGRPQKGQLKLNGKNVNWRVRLSDKGLLLTLVAARPLRGEWTGSEVDDRWRLEIRLQEQNANANANANA
D1-35_032341437glnGCOG2204DNA-binding transcriptional regulator NtrCATGAGCCGTAGTGAAACCGTGTGGATCGTCGATGACGACCGTTCTATCCGCTGGGTCCTGGAAAAAGCCTTGCAACAGGAAGGCATGACCACCCAGAGCTTCGACAGCGCCGACGGGGTGATGAGCCGCCTGGCCCGTCAGCAGCCGGACGTCATCATTTCCGATATCCGCATGCCCGGCGCCAGTGGCCTGGACTTGCTGGCGCGGATTCGCGAGCAACATCCGCGGCTGCCAGTGATCATCATGACCGCTCATTCCGACCTGGACAGCGCCGTGGCGTCTTACCAGGGCGGTGCGTTCGAATACCTGCCCAAGCCGTTCGACGTCGACGAAGCCGTGTCCCTGGTCAAGCGCGCCAATCAGCACGCCCAGGAGCAACAAGGCCTGGAAGAAGTCCCGGCCCTGGCCCGCACCCCGGAAATCATCGGTGAAGCGCCGGCGATGCAGGAAGTGTTTCGCGCCATCGGTCGACTGAGCCATTCCAACATCACCGTGCTGATCAACGGTGAATCGGGTACCGGCAAGGAATTGGTTGCCCACGCCCTGCACCGCCACAGCCCGCGTGCGGCGTCGCCGTTCATTGCGCTGAACATGGCGGCGATTCCCAAGGACCTGATGGAGTCCGAGCTGTTCGGCCATGAAAAGGGCGCGTTCACCGGCGCGGCCAACTTGCGCCGGGGCCGCTTCGAACAAGCCGATGGCGGTACGTTGTTCCTGGATGAAATCGGCGACATGCCGGCTGACACCCAGACCCGACTGCTGCGGGTACTGGCCGACGGCGAGTTCTATCGAGTCGGCGGGCATACGCCGGTCAAGGTCGATGTCCGGATCATCGCCGCGACCCACCAGAACCTGGAAACCCTGGTCCACGCCGGCAAGTTCCGCGAAGACCTGTTCCATCGCCTGAACGTGATCCGCATCCACATCCCGCGCCTGGCGGACCGTCGCGAGGACATCCCGACCCTGGCCCGGCACTTCCTCGGCCGTGCGGCCCAGGAGCTGGCGGTGGAGCCCAAGCTGCTCAAGAGCGAGACCGAGGAATACCTCAAGAACCTGCCGTGGCCCGGCAACGTGCGCCAGCTGGAGAACACCTGCCGCTGGATCACGGTGATGGCGTCGGGTCGCGAAGTGCATATCAGCGACTTGCCACCGGAACTGTTGAGCCTGCCACAGGATTCGGCGCCGGTGACCAACTGGGAACAGGCCTTGCGCCAATGGGCCGACCAGGCCCTGGCCCGCGGTCAATCGAGCCTGCTCGACAGCGCCGTCCCGGCCTTCGAGCGCATCATGATCGAAACCGCCCTCAAGCACACCGCCGGCCGCCGCCGCGACGCCGCCGTGCTGCTGGGCTGGGGCCGCAATACCTTGACTCGCAAGATCAAGGAATTGGGGATGAAGGTTGATGGTGGGGATGATGATGAAGGGGATGAGGGCTGAMSRSETVWIVDDDRSIRWVLEKALQQEGMTTQSFDSADGVMSRLARQQPDVIISDIRMPGASGLDLLARIREQHPRLPVIIMTAHSDLDSAVASYQGGAFEYLPKPFDVDEAVSLVKRANQHAQEQQGLEEVPALARTPEIIGEAPAMQEVFRAIGRLSHSNITVLINGESGTGKELVAHALHRHSPRAASPFIALNMAAIPKDLMESELFGHEKGAFTGAANLRRGRFEQADGGTLFLDEIGDMPADTQTRLLRVLADGEFYRVGGHTPVKVDVRIIAATHQNLETLVHAGKFREDLFHRLNVIRIHIPRLADRREDIPTLARHFLGRAAQELAVEPKLLKSETEEYLKNLPWPGNVRQLENTCRWITVMASGREVHISDLPPELLSLPQDSAPVTNWEQALRQWADQALARGQSSLLDSAVPAFERIMIETALKHTAGRRRDAAVLLGWGRNTLTRKIKELGMKVDGGDDDEGDEGPGPT0000685_821DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-GLUTAMATE|GLUTAMINE_SYNTHASE|GLTS_PATHWAY,PGPT0000685-ntrC|glnG-K07712NANA
D1-35_032351086glnLCOG3852Sensory histidine kinase/phosphatase NtrBATGACCATTAGCGACGCACTACACCGTTTGCTGCTCGACAATCTCACCACCGCGACCATCCTGCTCGACGCCGAACTGCGTCTGGAGTACATGAACCCGGCGGCAGAGATGCTCCTGGCCGTCAGCGGCCAGCGCAGCCATGGGCAGTTCATCAGCGAACTGTTTACCGAATCCGCCGAAGCGCTGAATTCCCTGCGCCAGGCCGTCGAACAGGCTCACCCGTTCACCAAGCGCGAAGCGATGCTCACCGCCCTGACCGGCCAGACCCTGACGGTCGACTACGCGGTAACGCCGATCCTCAACAACAATGCCACCCTCCTGCTTCTGGAAGTCCATCCCCGTGATCGCCTGCTGCGCATCACCAAGGAGGAGGCGCAATTGTCCAAGCAGGAAACCAGCAAGATGCTGGTGCGCGGCCTGGCCCATGAGATCAAGAATCCGTTGGGTGGCATTCGTGGCGCGGCGCAGTTGCTCGCCCGGGAACTGCCAGAAGAAAGCCTCAAGGACTACACCAACGTCATCATCGAAGAAGCCGACCGCCTGCGAAACCTGGTGGATCGCATGCTCGGCTCGAACAAGCTGCCCTCACTGGCGCTGTGTAACGTTCACGAAGTACTGGAGCGCGTCAGCAGCCTGGTGGAGGCGGAGAGCCAGGGCTGCATCACCTTGGTGCGCGACTACGACCCGAGCATTCCCGACGTCCTGATCGACCGCGAGCAGATGATTCAGGCGGTGCTGAACATCGTGCGCAACGCCATGCAGGCCATCAGCAGCCAGAGCGAGCTGCGCATGGGTCGCATCAGCCTGCGCACCCGCGCCATGCGCCAGTTCACCATCGGTCATGTGCGCCATCGCCTGGTGACCAAGATCGAAATCATCGACAACGGCCCGGGCATCCCTGCGGAACTGCAGGAAACCATCTTCTTTCCCATGGTCAGCGGCCGTCCGGACGGTACCGGGCTGGGCCTGTCCATCACCCAGAACATCATCAGTCAGCATCAGGGCTTGATCGAATGTGAGAGCCACCCCGGCCACACCACTTTCTCGATCTTCCTGCCACTGGAACAAGGAGCCACATCGACATGAMTISDALHRLLLDNLTTATILLDAELRLEYMNPAAEMLLAVSGQRSHGQFISELFTESAEALNSLRQAVEQAHPFTKREAMLTALTGQTLTVDYAVTPILNNNATLLLLEVHPRDRLLRITKEEAQLSKQETSKMLVRGLAHEIKNPLGGIRGAAQLLARELPEESLKDYTNVIIEEADRLRNLVDRMLGSNKLPSLALCNVHEVLERVSSLVEAESQGCITLVRDYDPSIPDVLIDREQMIQAVLNIVRNAMQAISSQSELRMGRISLRTRAMRQFTIGHVRHRLVTKIEIIDNGPGIPAELQETIFFPMVSGRPDGTGLGLSITQNIISQHQGLIECESHPGHTTFSIFLPLEQGATSTPGPT0000680_688DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-GLUTAMATE|GLUTAMINE_SYNTHASE|GLTS_PATHWAY,PGPT0000680-ntrB|glnL-K07708NANA
D1-35_03236627hypothetical proteinATGATCCGCTGGCTGCTCGCCCTCGGCCTGCTGCTGGTGGCGCTACCGAGCCTGGCGCAGGTCTACACCTACATCGACGCCCAGGGCAATCGCGTCTTCACCGACCAGCCACGCCCCGGCAACGCGAAGAAAGTGCCGCTACCGCCCGGCAACCGGATGCCGGCCACGCCCTCCGGGAATACGCCGACGACGACCGCCGAAAAGCCACCCGCCGAGCCCTTGTTCCGATACGAGATGCTCCGGCTGCTGATCCCCGAGCCAGATGCGACGATACGCAGTACCGCGGGGGAACTGATCGTCACCGCCACCAGTGAGCCCGGTTTGCAGAAAGGTCACCGCTACCGTCTGCTGCTGGACGGCAAGCCCACTGGCGAGCCGGGACCCAGCCCAGTGTTTGCGCTGAAGAATATTGATCGCGGCACGCATCACCTGGCAGTGGAGATCCTCGACGAGCAAGCGCGAATCGTCGAGCGCACCGCCAACCAGCCCTTCCACATGCAGCGCATGTCCCTGGCGCAAAAGCGCCGCGTCAAACCCTGTGCTATCGCCGACTACGGCCAACGCCCCGAATGCCCCCTGGCGGACAAGCCCGAGGAGGAAAAAAGCAGCATCCTGCCCTTCTTCTAAMIRWLLALGLLLVALPSLAQVYTYIDAQGNRVFTDQPRPGNAKKVPLPPGNRMPATPSGNTPTTTAEKPPAEPLFRYEMLRLLIPEPDATIRSTAGELIVTATSEPGLQKGHRYRLLLDGKPTGEPGPSPVFALKNIDRGTHHLAVEILDEQARIVERTANQPFHMQRMSLAQKRRVKPCAIADYGQRPECPLADKPEEEKSSILPFFNANANANANA
D1-35_03237519hypothetical proteinATGGGTCGTGTTTTCTCAATCATCCTCTTATCGCTGTTGGCATTGCCTGCTACCGCGCAGATCTACAAATACACCGACGCCGACGGCAACACCGCCTACAGCAATCAGCCGCCCGACGGCGTACCAGCCCAGGCCGTGGAATTGCCGCCGCTCAACAGCGTCGAGTCCCAGACACCGGCCAGCCGCGAAGCACCTGCGGCCGCGCAAAGCAGCGACGCGCCGCGTAACGCCTATGACATCCTGGAACTGACCGACATCCCCACCGAAGAAGCCCTGCGCGCCAATAACGGCACCTTCACCGTTGGCGTCCGGGCGCAGCCGCGCCTGCAAGGCCCGCATCTGTTCAGGCTATTGCTGGACGGCCAGCCGTACGGGCAGCCGAGTAACGTGCCGCGCCTGCAACTGGTGAACATCGACCGCGGCGAACACAGCCTGGCAGTCCAGGTCATCAACGGGGAACGTCTCGTGCAACAAAGCGAAACCGTTACCTTCACTGTCCAGCGGATTCACCTTCCATGAMGRVFSIILLSLLALPATAQIYKYTDADGNTAYSNQPPDGVPAQAVELPPLNSVESQTPASREAPAAAQSSDAPRNAYDILELTDIPTEEALRANNGTFTVGVRAQPRLQGPHLFRLLLDGQPYGQPSNVPRLQLVNIDRGEHSLAVQVINGERLVQQSETVTFTVQRIHLPNANANANANA
D1-35_03238558hypothetical proteinATGACTCCGCGCCTCAAGCTCTGCCTTGCCCTGTCCGCCGCACTGCTGGCCACCAGCGCCGAAGCGGGCAACGCCCCCGAAGCCCTTACTCCGCTGCTGAACGCCATCGGTGAACGCCTGGCCATTGCCGATCAGGTGGCGTTGAGCAAATGGGACAGCGGCAAACCGGTGGAGGATCGCCAGCGCGAGCGTGAAGTCATCGCCGCCGCCGTCGCCCAGGCGCCGGCCTACAAACTGACCGGTGAAACCGTGGAAGCGTTTTTCGCCGCCCAGATTGAAGCCAACAAACTGGTGCAATACATCAACCTGTCCGACTGGGCCCTCGACGGCAAGGCCCCGGACCTGCCACGCCCGGACCTGGTGGGCGAGATCCGCCCCAAACTCGATCGACTGCAGAAACGTCTGTTGCAACAACTGGCCGACTTCGCCCCCTACCGCACCGACCCGCAGTGCCCGCAATGGCTGGCCCGCGCCACCCACCACAACAAACAACACCCAATACACAGGCTTGCCTTGATCCGAGCAACCGGCGGACTGTGTATCTCCCCGAAATCCTGAMTPRLKLCLALSAALLATSAEAGNAPEALTPLLNAIGERLAIADQVALSKWDSGKPVEDRQREREVIAAAVAQAPAYKLTGETVEAFFAAQIEANKLVQYINLSDWALDGKAPDLPRPDLVGEIRPKLDRLQKRLLQQLADFAPYRTDPQCPQWLARATHHNKQHPIHRLALIRATGGLCISPKSNANANANANA
D1-35_032391407glnAGlutamine synthetaseATGTCGAAGTCGGTTCAACTCATCAAAGATCATGACGTCAAGTGGATTGATCTGCGCTTCACTGACACCAAGGGCACTCAACATCACGTGACCATGCCGGCCCGTGATGCGCTGGACGACGAATTCTTTGAAATCGGCAAGATGTTCGACGGTTCCTCCATCTCCGGCTGGAAAGGCATCGAAGCCTCCGACATGATCCTGATGCCGGACGACGAAACCGCGGTCCTCGATCCGTTCACCGAAGAGCCGACCCTGATCCTGGTTTGCGACATCATCGAACCTTCGACCATGCAAGGCTATGACCGCGACCCACGCGCCATCGCCCACCGCGCCGAGGAATACCTGAAGTCCACCGGTATCGGCGACACCGCTTTCTTCGGTCCTGAGCCTGAATTCTTCATCTTCGACTCGGTCAAGTTCAAATCCGACATCTCCGGTTCCATGTTCAAGATCTTCTCCGAACAGGGTTCGTGGATGTCCGACCAGGACGTGGAAGGCGGCAACAAAGGCCACCGTCCAGGCGTCAAAGGCGGCTACTTCCCGGTTCCGCCGTTCGATTTCGACCACGAAATCCGTACTTCCATGTGCAACGCGCTGGAAGAAATGGGCCAGACCGTCGAAGTTCACCACCACGAAGTGGCAACTGCCGGCCAGAACGAAATCGGCGTGAAGTTCAACACGCTGGTCAAGAAGGCTGACGAAGTCCAGACCCTGAAGTACTGCGTGCACAACGTTGCCGACGCCTACGGCCGCACCGCGACCTTCATGCCGAAGCCTCTGTACGGCGACAACGGTTCGGGCATGCACGTGCACATGTCGATCTCCAAGGACGGCAAGAACACCTTCGCTGGCGAAGGTTATGCCGGTCTGTCGGACACCGCCCTGTACTTCATCGGCGGCATCATCAAGCACGGTAAGGCCCTGAACGGCTTCACCAACCCGTCGACCAACTCCTACAAGCGTCTGGTTCCAGGCTTCGAAGCACCGGTCATGCTGGCCTACTCGGCTCGCAACCGTTCCGCCTCGATCCGTATTCCTTATGTGAACAGCCCTAAAGCCCGTCGTATCGAAGCGCGCTTCCCGGATCCGGCTGCCAACCCGTACCTGGCCTTCGCAGCACTGATGATGGCCGGCCTGGACGGTATCCAGAACAAGATCCACCCCGGCGATGCCGCCGACAAGAACCTGTATGACCTGCCGCCTGAAGAGGCCAAGGAAATCCCACAGGTTTGCGGTAGCCTGAAAGAAGCCTTGGAAGAGCTGGACAAGGGCCGTGCGTTCCTGACCAAGGGCGGCGTATTCAGCGACGACTTCATCGACGCTTACATCGCGCTGAAAAGCGAAGAAGAGATCAAGGTTCGCACCTTCGTACACCCACTGGAATATGAGCTGTACTACAGCTGCTGAMSKSVQLIKDHDVKWIDLRFTDTKGTQHHVTMPARDALDDEFFEIGKMFDGSSISGWKGIEASDMILMPDDETAVLDPFTEEPTLILVCDIIEPSTMQGYDRDPRAIAHRAEEYLKSTGIGDTAFFGPEPEFFIFDSVKFKSDISGSMFKIFSEQGSWMSDQDVEGGNKGHRPGVKGGYFPVPPFDFDHEIRTSMCNALEEMGQTVEVHHHEVATAGQNEIGVKFNTLVKKADEVQTLKYCVHNVADAYGRTATFMPKPLYGDNGSGMHVHMSISKDGKNTFAGEGYAGLSDTALYFIGGIIKHGKALNGFTNPSTNSYKRLVPGFEAPVMLAYSARNRSASIRIPYVNSPKARRIEARFPDPAANPYLAFAALMMAGLDGIQNKIHPGDAADKNLYDLPPEEAKEIPQVCGSLKEALEELDKGRAFLTKGGVFSDDFIDAYIALKSEEEIKVRTFVHPLEYELYYSCPGPT0000645_4402DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMATE_DEGRADATION|CONVERSION,PGPT0000645-glnA-K01915NANA
D1-35_032401455thiICOG0301tRNA sulfurtransferaseATGAAACTAATCGTAAAAGTCTTCCCCGAGATCACCATCAAGAGCCGCCCGGTACGGATGCGTTTCATCCGCCAGCTGGCCAAGAACATCCGTGCCGTGCTCCGTGACCTGGACCCGGCCGTGGTGGTGAACGGCGTGTGGGACAACCTCGAACTGGAAACCCGCGTCAGCGAACCCAAGGCTTTGAAGGAAATGACCGAGCGCCTGAGCTGCATGCCGGGCATCGCCCATTTCCTCCAGGTCGACGAATATCCGCTGGGGGACTTCGACGATATCCTCGCCAAGTGCATGCTCCATTATGGTGACGCCTTGGCCGGCAAGATCTTCTCGGTACGCTGCAAGCGCGCCGGCAAGCATCCGTTCAGCTCGATGGACGTCGAACGTTATGTCGGCAGCCAGTTGCGCCGGCAGTGCGGCGCGGCCGGTATTTCCCTGAAAGACCCTGAAGTTGAAGTGCGCATCGAGATTCGCGACCAGCGGTTGTTCGTGATCCACAGCCAGCACGACAGCATCGGCGGTTATCCGCTGGGTTCGCTGGAGCAGACGCTGGTATTGATGTCCGGTGGTTTCGACTCCACCGTCGCCGCCTACCAGATCATGCGTCGCGGCTTGATGAGCCATTTCTGCTTCTTCAACCTCGGCGGGCGCGCCCACGAACTGGGCGTCATGGAAGTGGCGCACTTCATCTGGAAGAAGTACGGCAGCTCCCAGCGCGTGTTATTTGTGAGCGTGCCGTTCGAGGAAGTCCTGGGCGAGATTCTCGGCAAAGTCGATAACAGTCATATGGGCGTCATTTTGAAGCGTATGATGTTGCGTGCCGCGACGAGCATCGCCGACCGCCTGCACATCGACGCGCTGGTCACCGGCGAGGCGATTTCCCAGGTTTCGAGCCAGACGCTGCCGAACCTGTCGGTGATCGACTGCGTGACCGAGAAACTCGTGCTGCGGCCACTGATCGCCAGCCACAAGCAGGACATCATCGACACGGCCACGGAGATCGGCACCGCCGATTTTGCCCGGCACATGCCGGAGTACTGCGGGGTCATCTCGGTCAATCCGAAGACGGCGGCCAAGCGCGGGCGCGTGGAGCACGAGGAGAAAGAATTCGACATGGCGGTACTCGAACGCGCAATCGAGAACGCCAGGCTGGTGCCGATCGATCGGGTCATCGACGAATTGGGCCAGGACATTCAGATTGAAGAAGTCGGCGAAGCGCTGGCCGGTCAGATCATCATCGACATCCGTCACCCGGACGATGCTGAAGACGACCCGCTGAGCGTCGCCGGCGTCGAGGTACAAACGATGCCGTTCTATGCAGTGAACGCGCGTTTCAAGGAACTGGACCCTACTCGCCAGTACCTGCTGTATTGCGACAAAGGCGTGATGAGTCGCCTGCATGCCCATCATTTGCTCAGTGAGGGGCATGCCAATGTGCGCGTTTATCGACCGAGCTAAMKLIVKVFPEITIKSRPVRMRFIRQLAKNIRAVLRDLDPAVVVNGVWDNLELETRVSEPKALKEMTERLSCMPGIAHFLQVDEYPLGDFDDILAKCMLHYGDALAGKIFSVRCKRAGKHPFSSMDVERYVGSQLRRQCGAAGISLKDPEVEVRIEIRDQRLFVIHSQHDSIGGYPLGSLEQTLVLMSGGFDSTVAAYQIMRRGLMSHFCFFNLGGRAHELGVMEVAHFIWKKYGSSQRVLFVSVPFEEVLGEILGKVDNSHMGVILKRMMLRAATSIADRLHIDALVTGEAISQVSSQTLPNLSVIDCVTEKLVLRPLIASHKQDIIDTATEIGTADFARHMPEYCGVISVNPKTAAKRGRVEHEEKEFDMAVLERAIENARLVPIDRVIDELGQDIQIEEVGEALAGQIIIDIRHPDDAEDDPLSVAGVEVQTMPFYAVNARFKELDPTRQYLLYCDKGVMSRLHAHHLLSEGHANVRVYRPSPGPT0008940_288DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008940-thiI-K03151NANA
D1-35_032411821typACOG1217GTP-binding protein TypA/BipAGTGATCGAAAATCTACGCAACATCGCCATCATTGCTCACGTTGACCATGGTAAGACCACCCTGGTAGACAAACTCTTGCGTCAATCCGGCACCCTGGAGCGCAACGAGCTCAACGACGAGCGCGTGATGGACTCCAACGACCAGGAAAAAGAGCGCGGTATTACCATCCTGGCGAAAAACACCGCCATCAACTGGAACGGCTACCACATCAACATCGTGGATACCCCGGGCCACGCCGACTTCGGTGGTGAAGTCGAGCGCGTGATGTCGATGGTCGACTCCGTGCTGCTGCTGGTCGACGCCCAGGACGGCCCTATGCCGCAAACCCGTTTCGTGACCAAGAAGGCCTTCGAAGCCGGCCTGCGTCCGATCGTGTGCATCAACAAGGTTGACCGTCCAGGCGCGCGTCCGGACTGGGTTCTGGACCAGATCTTCGACCTGTTCGACAACCTGGGCGCCACCGAAGAACAGCTGGACTTCAAAGTCGTCTACGCCTCGGCCCTGAACGGTATTGCCGGTCTGGACCACACCGAAATGGCTGACGACATGACCCCGCTGTACCAGTCGATCGTCGACAACGTACCCGCGCCGAAAGTCGACCGTGACGGCCCGTTCCAGATGCAGATCTCGGCACTGGACTACAACAGCTTCCTGGGTGTGATCGGTGTTGGCCGTATCGCCCGTGGTCGCGTCAAGCCGAACACTCCGGTCGTGGCTATCGGTGCCGACGGCAAGAAGCGCAACGGTCGTATCCTGAAGCTGATGGGTCACCACGGTCTGCACCGTGTAGACGTTGAAGAAGCAGCTGCCGGCGACATCGTCTGCATCAGCGGCATGGACTCGCTGTTCATCTCCGACACCCTGTGCCACCCGGACACCGTTGAAGCGATGAAGCCGTTGACCGTCGACGAGCCAACCGTTTCCATGACCTTCCAGGTAAACGACTCGCCATTCTGCGGTAAAGAAGGCAAGTTCGTGACTTCCCGTAACATCAAGGAACGTCTGGACAAAGAGCTGCTGTACAACGTTGCACTGCGCGTTGAAGAAGGCGACTCGGCTGACAAGTTCAAGGTCTCGGGCCGTGGCGAACTGCACCTCTCGGTTCTGATCGAAACCATGCGTCGCGAAGGCTTCGAAATGGCTGTAGGCCGTCCGGAAGTGATCATCCGTCTGGTTGACGGCGTGAAGCACGAACCGTTCGAAAACGTCACCATCGACCTGCCGGAAGAATCCCAGGGCAAGGTGATGGAAGAGATGGGCCTGCGTAAGGGCGACCTGACCAACATGGTGCCGGATGGCAAGGGCCGTGTACGTCTGGAATACAACATCCCTGCTCGTGGTCTGATCGGTTTCCGTAACCAGTTCCTGACCCTGACCAACGGTGCTGGCATCCTGACTTCGATCTTCGACCGTTACGACGTGATGAAGTCCGGCGACATGTCCGGCCGTCAGAACGGCGTTCTGGTTTCGGTTGAAACCGGCAAGGCGCTGACCTACTCCCTGGAAACCCTCCAGGCGCGTGGCAAGCTGTTCGTTGAACATGGCCAGGAAATCTACGGCGGCCAGATCGTTGGTCTGAACAGCCGTGACAACGACCTGGGCGTGAACCCTACCAAGGGCAAGAAGCTCGACAACATGCGTGCTTCGGGTAAAGACGAAACCATCGCCCTGGTACCACCTGTTCGCTTCACCCTGGAACAGGCTCTGGAATTCATCCAGGACGACGAGCTGTGTGAAGTGACGCCTAAGTCGATCCGCCTGCGCAAGAAGATCCTGGACGAAAGCGAGCGTACCCGCGCCGCCAAGAAAGCCAAGAACTGAMIENLRNIAIIAHVDHGKTTLVDKLLRQSGTLERNELNDERVMDSNDQEKERGITILAKNTAINWNGYHINIVDTPGHADFGGEVERVMSMVDSVLLLVDAQDGPMPQTRFVTKKAFEAGLRPIVCINKVDRPGARPDWVLDQIFDLFDNLGATEEQLDFKVVYASALNGIAGLDHTEMADDMTPLYQSIVDNVPAPKVDRDGPFQMQISALDYNSFLGVIGVGRIARGRVKPNTPVVAIGADGKKRNGRILKLMGHHGLHRVDVEEAAAGDIVCISGMDSLFISDTLCHPDTVEAMKPLTVDEPTVSMTFQVNDSPFCGKEGKFVTSRNIKERLDKELLYNVALRVEEGDSADKFKVSGRGELHLSVLIETMRREGFEMAVGRPEVIIRLVDGVKHEPFENVTIDLPEESQGKVMEEMGLRKGDLTNMVPDGKGRVRLEYNIPARGLIGFRNQFLTLTNGAGILTSIFDRYDVMKSGDMSGRQNGVLVSVETGKALTYSLETLQARGKLFVEHGQEIYGGQIVGLNSRDNDLGVNPTKGKKLDNMRASGKDETIALVPPVRFTLEQALEFIQDDELCEVTPKSIRLRKKILDESERTRAAKKAKNPGPT0023720_3341DIRECT EFFECTCOLONIZING_PLANT_SYSTEMOTHER_COLONIZATION_RELATED_PROTEINSCOLONIZATION-HOST_INVASION_FACTORSHOST_INVASION-HOST_INFECTION_MEDIATOR,PGPT0023720-typA|bipA-K06207NANA
D1-35_03242438hypothetical proteinATGATGAAGCCCAACCTGATCGCCGCCGCGGAGATCGACCGACTCGATACCTGGGCGAAGTATTCCGCCCCGATGTGCGGTTCCTGCGTGTCGAGCTGTTGCACGCTGCCGGTGGAGGTCAAGATCAAGGACCTGATCCGTATCGGCATCGTCGATGAGTTCGAGCTGGGCGACCCGCCGAAAAACATCGCCAAGCGCCTGCAAAAGGAAGGGATCGTCGAGCGCTACAACCAGAAATCGGAAATCTTCACGCTCCAGCGCATGAGCAACAACGATTGCCTGTATCTGGATCGCAAGAGCCGGCTGTGCACCATTTACGAAAAGCGCCCGGACACCTGCCGCAATCATCCACGGGTCGGGCCACGGCCGGGGTATTGCGCCTACAAGCCCAAGGAAGTGGAGCGCGAGCGTAATCCGCGGACGTTGGATCGATTTTGAMMKPNLIAAAEIDRLDTWAKYSAPMCGSCVSSCCTLPVEVKIKDLIRIGIVDEFELGDPPKNIAKRLQKEGIVERYNQKSEIFTLQRMSNNDCLYLDRKSRLCTIYEKRPDTCRNHPRVGPRPGYCAYKPKEVERERNPRTLDRFNANANANANA
D1-35_032432451malPCOG0058Maltodextrin phosphorylaseATGACTCAAGAACCACTTGTTCGCGAAGCCGAGGTTGCGGCTTTTCGCGACGCCGTGTTGACCAAACTCACTTATGCCGTCGGCAAGGACCCCGATCATGCGTTTGATCACGATTGGTTCGAAGCCATCGCCCTCGCTGCCCGCGACCATATGGTCGAACACTGGATGGACCATACGCGGCAGATCTACCGAAAGGGCCAGAAGCGCGTCTACTACCTCTCCCTGGAGTTTCTCATCGGCCGGCTGCTGTACGACAGCCTGAGCAACCTCGGCTTGCTGGACACCGCCCGCGAGGCCTTGACCGAGCTGGGCGTGGACCTTGAGCGCATCCGTCTGCTGGAGCCCGACGCGGCCTTGGGCAACGGCGGTCTCGGCCGTCTGGCGGCGTGCTTCATGGAAAGCATGTCGACCCTCGGAATCGCCGGCCATGGTTATGGCATTCGTTACGAACACGGCCTGTTCCGCCAGGCGATTGTCGACGGCTGGCAACAGGAGCAGACCGAACACTGGCTGGACTTCGGCAACCCATGGGAATTCGAGCGGCCGGAAGTCGTCTACCCGATCGGCTTTGGCGGCAGCGTCGAGACTGTCACCGACGAAACCGGCAAGACCCGGCAGGTCTGGTCCCCGGCCGAAACCGTGCGGGCGATTGCCTATGACACGCCGGTCGTCGGCTGGCGCGGTGCCAGCGTCAATACCTTGCGCCTGTGGCGTGCCCGAGCCGTGGAAGACCTGCACCTGGAGCGCTTCAACGCTGGCGACCACCTCGGCGCCGTAGCGGAAGTGGCCCGCGCCGAGAGTATTTCCCGCGTGCTGTACCCGGCCGACAGCACCGAAGCCGGCCAGGAACTGCGCCTGCGCCAGGAATATTTCTTCGTCGCCGCCTCGCTGCAGGATTTGCTGCGCCGCCATCGCAACATGCACACCTCGGTACTGACCTTGGGCGATCACGCGGCGATCCAGCTCAACGACACCCACCCGTCGATTGCCGTGGCCGAGCTGATGCGCCAATTGGTGGACGTCTACGACGTGGCGTGGGACGCGGCCTGGCAGATCACCCAGGACACGCTCTCCTACACCAACCACACGCTGCTGCCAGAAGCATTGGAAACCTGGCCGGTGGGGCTGATGGAGCGCATGTTGCCGCGGCACATGCAGATCATCTACCTGATCAACGCCCAGCATATCGATTCGCTGCGGGCCAAGGGCGTGCACGATTTCGACGTGTTGCGCTCGGTGTCGCTGATCGAAGAAGACAACGGTCGCCGGGTGCGCATGGGTAACCTCGCGTTCCTCGGTTCCCACAGCGTCAACGGCGTGTCCGGACTGCACACGCAACTGATGCGCAGCACCGTATTCTCTGAGCTGCACAAACTTTACCCGGACCGGATCAACAACAAGACCAACGGCATCACTTTCCGCCGCTGGCTGTTCCAGGCCAACGCCGAACTGACCTCAATGATGGTCGACGCCCTCGGCCCGAGCGTGCTCGACAACCCCGAGGAGCGGCTGATCGAACTGGAGCCGTTTGCCGACAAACCGGCGTTCCGCAAGCAATTCGCCGAGCAGCGCCTGCACAGCAAGAAAGCCCTGGCCTACCTGATTCACGAGCGGCTGGGCATTGCCGTCAACCCGGCGGCGATGTTCGACGTGCAGGTCAAGCGGATCCACGAGTACAAACGCCAGTTGCTCAACCTGATGCACACCGTGGCGCTGTACCAGGCGATCCGCGCCGAGCCGGAGGTGGATTGGGTGCCGCGGGTGAAGATCTTCGCCGGCAAGGCCGCCGCCAGTTATCACCAGGCCAAGCTGATTATCAAGCTGACCAACGACATCGCCCGGGTGGTCAACAACGACCCGACCGTGCGCGGCTTGCTCAAAGTGGTGTTCCTGCCCAACTACAACGTCAGCCTGGCCGAAAGCATCATCCCGGCGGCGGACCTCTCGGAGCAGATTTCCACGGCCGGTTTCGAGGCCTCGGGTACCAGCAACATGAAGTTCGGCCTCAACGGCGCGCTGACCATCGGCACCATGGACGGCGCCAACGTGGAAATGCATGACCGCGTCGGTGGCGAGCACATGTTCATCTTCGGCCTGACCGCCGAGCAGGTGGAAGCGCGCAAGCGCAACGGCGAATTCAGTGCCGCGCCGGACATCGCCGCATCCCATCGCCTCAACGATGTGCTGCAAGCGATTCGTGGCGGGGTGTTCTCGCCTGACGATCCGATGCGCTACACCGGGTTGGTGGACTCGCTGGTGGATTACGACCGCTTCCTGGTCTGTGCCGATTTCGACGCCTACTGGAACGCCCAGGCCAAAGTCGAGGAGAGGTGGCACGATCCCAAGCAATGGTGGCGCTCGGCGGTGCTCAACACCGCGCGCATGGGCTGGTTCTCCTCGGACCGGACCATTCGTGAATACGCCACCGATATCTGGAAGGCCCTGGACTGAMTQEPLVREAEVAAFRDAVLTKLTYAVGKDPDHAFDHDWFEAIALAARDHMVEHWMDHTRQIYRKGQKRVYYLSLEFLIGRLLYDSLSNLGLLDTAREALTELGVDLERIRLLEPDAALGNGGLGRLAACFMESMSTLGIAGHGYGIRYEHGLFRQAIVDGWQQEQTEHWLDFGNPWEFERPEVVYPIGFGGSVETVTDETGKTRQVWSPAETVRAIAYDTPVVGWRGASVNTLRLWRARAVEDLHLERFNAGDHLGAVAEVARAESISRVLYPADSTEAGQELRLRQEYFFVAASLQDLLRRHRNMHTSVLTLGDHAAIQLNDTHPSIAVAELMRQLVDVYDVAWDAAWQITQDTLSYTNHTLLPEALETWPVGLMERMLPRHMQIIYLINAQHIDSLRAKGVHDFDVLRSVSLIEEDNGRRVRMGNLAFLGSHSVNGVSGLHTQLMRSTVFSELHKLYPDRINNKTNGITFRRWLFQANAELTSMMVDALGPSVLDNPEERLIELEPFADKPAFRKQFAEQRLHSKKALAYLIHERLGIAVNPAAMFDVQVKRIHEYKRQLLNLMHTVALYQAIRAEPEVDWVPRVKIFAGKAAASYHQAKLIIKLTNDIARVVNNDPTVRGLLKVVFLPNYNVSLAESIIPAADLSEQISTAGFEASGTSNMKFGLNGALTIGTMDGANVEMHDRVGGEHMFIFGLTAEQVEARKRNGEFSAAPDIAASHRLNDVLQAIRGGVFSPDDPMRYTGLVDSLVDYDRFLVCADFDAYWNAQAKVEERWHDPKQWWRSAVLNTARMGWFSSDRTIREYATDIWKALDPGPT0018545_3070DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENVIROMENTAL_SURRIVALCE-BACTERIAL_FITNESS-ENVIRONMENTAL_SURRIVAL-GLYCOGEN_BIOSYNTHESIS,PGPT0018545-glgP-K00688NANA
D1-35_032443624hypothetical proteinATGCAATGGATTTTGACACTGTTGGGCCTGGCACTCGGCTGGGTGGTGGAAGAGTCGTTTGCCGACGCGCTGATCGGTGCGCTGGTGGGGCTTGGCATCGCCCAGTCGTTTCGACTGGGACGCCTGGGTATCCAGGCCGCCAAGCAACAGATCCTGCTCCAAGATGCCCAGCGCAGCTTGCTCACGCTGGAAGCGCGTCTGGCGGTGCTCGAACGCGGCAACGTGGCCGAACCGAGTGAACCGGCTACAGCGCCGGAAATCGTCGTTGCCCAAGCGGCGAAGCCCGAGGCGCGCACCGAGCCGGAGCTCATCTGGCAGCTGCCACCAGAACTCGAACCAATCCCCGCGATGGCCACCCAGGCCAGCCAGCCGTTGCCCGATGACGTTTGGAAACCCGCGCCCGAAACATCCAGTCGGCGCGCAACCCGCGACTTCGAACCTCTGCCCCTGGAACCGAGGACTACCGAGCCGACGGCCCCTCGCGGTCCGAATCTGATCGATCGTGCCTGGACGGGCGCGCGCAACTGGCTGTTCGGCGGCAACACCGTGCTGCGGGTCGGCGTGGTGCTGTTGTTCCTCGGCCTGGCCTTCCTGCTGCGCTACGCCACTGAAGGCATGGTAGTGCCGATCGAGTTGCGTTACGCCGGCGTCGCGGCCAGTGCCTTGGGCCTGTTGGGCCTGGGCTGGTGGTTGCGCCACCGCAACAGCAACTATGCGTTGATGTTGCAGGGGACGGGGATCGCGGTGCTGTACCTGACCGTGTTCGCCGCCATGCGCCTGCACCCGCTGCTCGATTCCAAGGCTGCCCTGGGCCTGTTGGTTGCAGTCACGGTGTTTTCCGCGATCCTGGCCGTTACCCAGAATGCCCTGGGGCTGGCGGCAGCTGCCGCACTGGGCGGCTTCGCCGCGCCGATCCTGACCTCCACCGGCAGCGGCAACCATGTCGCGCTGTTCAGCTATTTCATCCTGCTCAATACCGGCATCTTCGCGATTGCCTGGTTCCGCGCCTGGCGCCTGCTCAACCTGATCGGCTTCGTCGGCACTTTCGGCATCGGTTTCGCCTGGGGCCTGCGTTCCTATACGCCGGAGCTGCTCTGGAGCACTGAGCCGTTCCTCATCGTGTTCTTCCTGATGTACCTGGCGATAGGCTTGTTGTTCACCCGGCGCAAGCTGCTGGAAATGAGCGATGCGCCTGAAGATGACAGCCGTCAGGCGCTGCTGCGCTGGTCGGCGCGCAAGGGCGACTATGTGGACGGCAGCATGCTGTTCGGTCCGCCGCTGGTGGGCTTCGGCTTGCAGTTCGCGTTGGTGCAGCATCTGGAATTCGCCGCCGCCTTCAGCGCCCTGGCCCTGGGCATGATCTACATGGGGCTGGCCCGCGTATTGATGGGCGGGCGCGCTGTATTGCTGGCCGAAACTTGCCTCGCCCTGGGCGTGATTTTCACCAGCCTGGCGATTCCCCTTGGCCTCGACGCCCGTTGGACTGCCGCAGCGTGGGCGGTGGAAGGCGCCGGGATCTTCTGGCTCGGCCTGCGTCAGCAGCGACCTTTTGCGCGAATCTTTGCCCTGTTGCTGCAATTGGGGTCGGCGCTGGCCTTCGTCAGCGAACTGCATGGCGGCGAAGGCAGCCTGCTGGAAGGCTCATGGCTGGGCGCGTTGATGCTCGGTGGCGCCTTGCTGTTCAGCTTCTATCAATTGCGCAAGGCCGAGCCCGGGCACGCCGCCAGTTGGGAGCTTCGCGGGCAACCCGTGCTGGCGGTGCTGGGGCTGAGCTTCCTTTATCTGCTGGCGCCACTGTTCTTCTTTACCCAGGGCACCGCCATCGCCTGGGCGCTGGCCGGGCTGGTGACGCTGTTTGTCGGCCTGCGCCTGCAATCACGCAGCTTCCTGTTTACCGCTTTCGCCGTGCAACTGCTCGGCGGTGCGCTGTTCCTGCTGCGTCTGCAAGGCGCCGAAGGCGATTCGGCGGCGGTGTTCAACGCTGGTTGGAGCGGTCTGCTCAGCGCCTCGTTGATCGGCCTGGCATTGATCGGCGGTATGTTGCTGGCGGCGCGCGACGACATGGTGCGCAACGATGTGCGCTTGCTGCGCGGCTTGTCGGTGGTGTTGCTGGCCGGGTTGGTGTTGATCAATCTTGCGGTGCTGTTCGTGTTGCCCTGGCAAACGGCGAGCGGCGTGTGGGCGGCCAGCGGTCTGTTGATCATCTGGCTGAGCCTGTACCTGAAGCAGCGCGTGAGCTTTGTCTTTGGCCTGCTGCTGCAAGTGATTGGCGGTGCGGCTTTCCTGATGGCAGGGCCGGCGCTGCTGGGCTCGCTTGATGCCGAGGATCTGCGTCCCTTGGCCCACAGCGGATTCTGGACACCGCTGGTGCTGGGGCTGGCTGCGCTGGTGGGCGCATGGCGTCTGCAAAAGGCGCACGCGGCGCGGGAACTCGATGCCTTGAGTTTGCAGCGCCTGTCCGAGCTGCTGCTGATCTGGGGTGCCGGTTGGTGGGCGCTGGCGTGGGGCAGCGAAGTGCTGCGCTTTGCCCCGCAAAACCTGCAAGGCAGTTTGTTGTTGATTGTCGCGGCCGCCAGTGTGGCGGTGTGGACCGTTGCGGCGCTGCGCTTGAAGTGGGCTGCAATGGGATTGCTGTGCACCTTGTTGATTCCAGCAGCAGGCTGTGTGCTGGTGGCGATCGGGCACAGCCGTTATCACCCGGCGGCGGATTTCGGCTGGCTGGCCTGGCTGGCGGTATTTGCCGTGCATTTCCTGTCGCTCAAGCGCCTGGCCACGAAGCTGCCGGCCCAGGCGCGCAGCACCGCCCATGTGCTCGGTTGCTGGTTGTTGATGGTGGTGCTGATGCTGGAGTTGCGTTACGGCCTGCTGTTGCTGTCCGAGCAGTACAATGCCTGGCGGTGGTTGGCGTGGGCGATCCTGCCGGGCCTCTACCTGGTGCTGATGGCCACGCCGCGTACCTTGCCGTGGCCGGTGTCGGCCCAACCGCGCGAATACCGCGTCTACGCGGCGGCGCCCATGGCACTGTTGATGCTCGGTTGGTTCTGGCTGACAAACACGTTCAGTGATGGCAACTCGGAGCCGCTGCCTTATGTGCCGTTGCTCAACCCCTTGGAACTGGGTCTGCTGTTCGCCTTGTTCGGTATCTATGTGTGGGCCCGCAACGCCGTGGAGCAAACGACGAACCGCTGGAGTCGGATCGGACAGGTCGCTCAGTTGATCGCCGGCGTGTCGCTGTTCGCGTTCTTCACCGCCTTGGTGATGCGCACTGCGCACCAGTGGATGGATGTGCCGTTCGAGCTGGATGCATTGCTTGAATCGATGTTCGTGCAGGCCGGGTTGTCCATTGTCTGGACCCTGATCGCCCTGGGCCTGATGATTGGCGGACACCTGCGGCATCGTCGCGAGGTGTGGCTGATCGGCGCGGCGTTGATTGCGGTGGTCGTGGCCAAGCTGTTCTTTGTCGAATTGAGTAACCGTGGTGGTCTGGCGCGGATCGTGTCGTTTATCGGCGTGGGCGTGTTGCTGCTGGTGGTCGGCTACTTTGCGCCGCTGCCGCCCAAACGCCCGGAGCCGGCCGTGGATGCCGAGCCGCCGATGCCTGTCAGTGAGGGAGTGTCATCTTGAMQWILTLLGLALGWVVEESFADALIGALVGLGIAQSFRLGRLGIQAAKQQILLQDAQRSLLTLEARLAVLERGNVAEPSEPATAPEIVVAQAAKPEARTEPELIWQLPPELEPIPAMATQASQPLPDDVWKPAPETSSRRATRDFEPLPLEPRTTEPTAPRGPNLIDRAWTGARNWLFGGNTVLRVGVVLLFLGLAFLLRYATEGMVVPIELRYAGVAASALGLLGLGWWLRHRNSNYALMLQGTGIAVLYLTVFAAMRLHPLLDSKAALGLLVAVTVFSAILAVTQNALGLAAAAALGGFAAPILTSTGSGNHVALFSYFILLNTGIFAIAWFRAWRLLNLIGFVGTFGIGFAWGLRSYTPELLWSTEPFLIVFFLMYLAIGLLFTRRKLLEMSDAPEDDSRQALLRWSARKGDYVDGSMLFGPPLVGFGLQFALVQHLEFAAAFSALALGMIYMGLARVLMGGRAVLLAETCLALGVIFTSLAIPLGLDARWTAAAWAVEGAGIFWLGLRQQRPFARIFALLLQLGSALAFVSELHGGEGSLLEGSWLGALMLGGALLFSFYQLRKAEPGHAASWELRGQPVLAVLGLSFLYLLAPLFFFTQGTAIAWALAGLVTLFVGLRLQSRSFLFTAFAVQLLGGALFLLRLQGAEGDSAAVFNAGWSGLLSASLIGLALIGGMLLAARDDMVRNDVRLLRGLSVVLLAGLVLINLAVLFVLPWQTASGVWAASGLLIIWLSLYLKQRVSFVFGLLLQVIGGAAFLMAGPALLGSLDAEDLRPLAHSGFWTPLVLGLAALVGAWRLQKAHAARELDALSLQRLSELLLIWGAGWWALAWGSEVLRFAPQNLQGSLLLIVAAASVAVWTVAALRLKWAAMGLLCTLLIPAAGCVLVAIGHSRYHPAADFGWLAWLAVFAVHFLSLKRLATKLPAQARSTAHVLGCWLLMVVLMLELRYGLLLLSEQYNAWRWLAWAILPGLYLVLMATPRTLPWPVSAQPREYRVYAAAPMALLMLGWFWLTNTFSDGNSEPLPYVPLLNPLELGLLFALFGIYVWARNAVEQTTNRWSRIGQVAQLIAGVSLFAFFTALVMRTAHQWMDVPFELDALLESMFVQAGLSIVWTLIALGLMIGGHLRHRREVWLIGAALIAVVVAKLFFVELSNRGGLARIVSFIGVGVLLLVVGYFAPLPPKRPEPAVDAEPPMPVSEGVSSNANANANANA
D1-35_032451371hypothetical proteinTTGAGTCGCAAGTTGAGTCGAATCGGGCTGGGCGTGGTGGGGTTGTGGGTGGCCATGTCGGCCGCGGCACAGGAACAACCGCAAGACTTCGCCCATCAGGTGCCGTTGGCCTTGAGCGGCGAGGGGCCGTGGTATCGCCTGGCGTTGCCGCTGGACGTGCAGTTGCAGGCGCGCCAGACCGACCTGAGCGATTTGCGGGTCTTCAACGCGGCGGGCCAGGCCCAGGCCTACGCATTGGTTCGCGAGTCGGCGCAGAGCCGGGAAAGTCGCACGCTCACCGATGTGAAATGGTTCCCGCTGTACAACGCCGCCGATGACAGCGAGCGTGCGCCCAGCGTGCGTGTGCAATCGAACGCCAACGGCACGCTGGTGGAAGTCCAGCCGTCCAGTCGGCTCGAGGCGGGCGAGGAAGAGTTGCGCGGCTGGTTGCTGGACGCCAGCGCGATCAAGGCGCCGTTACAGCAATTGATCCTCGACTGGACCAGCGAGCGCGATGGCTTCCAGCGCTTCACCATCGAAGCCAGCGACGACTTGCAGCACTGGCAGTCGTGGGGCGAAGGCCAGATCGCCCGGCTGACGTTTGCCGATGAGCGGGTCGAGCAGCATGAGGTGAGCTTGCCGGGGCAGTCGGCGCGCTACTTGCGACTGCTGTGGGATTCGCCGTCCTCGGCGCCGGTGCTGACCTCGGCCCAGCTGCAAAGCGCCAGCCGCGAAAGCCTGCCACTGCCGTTGGTCTGGTCGCAGCCGCTGGCTGGTGGCACGACCAAGGCCGGCGAATACACCTGGCAGTTACCCATGGGGTTGAACGTCGAACAGGTGCAGATCGAGTTGAGCCAGGCCAACACCCTGGCGCCGGCGACCCTGGCCGGTCGCCGCGAAAGCAGCCAACCCTGGCAGCCGATGGGCAGCGGTCTGCTCTATCGCCTGACCCAGAATGGCCAGGACGTGTTGCAAAACCAGCTGCAACTGTCCGGCCAGACCGTTCAACAACTGAAGCTGACGGTGGACGAGCGCGGCGGCGGTCTGGGCGCCGAGGCCCCGGCCCTGCGCTTTGCCGTGCGTCCGACCCAGGTGGTGTTCCTGGCGCGCGGCGAGGGCCCCTGGCGCCTGGCGCTGGGCAGTGCGACAGTCAAGGCGGCCAGCCTGCCATTGACCACGCTGGTGCCCGACTACAAACCTTCGCGGCTGGCGACGTTGGGTACGGCGACGGTGAACGGCACGGCCACGGCGACCCCGAGAGTCGAAACCACGCCTGCGCCCGTCGAGACCAATTGGAAAAAAATCGGCTTGTGGGCGGTGTTGCTGCTGAGTGTGCTGTTCCTCGCAGCAATGGCGTTCAGCCTGTTGCGCAAGCCACCGGTCAAGAACTGAMSRKLSRIGLGVVGLWVAMSAAAQEQPQDFAHQVPLALSGEGPWYRLALPLDVQLQARQTDLSDLRVFNAAGQAQAYALVRESAQSRESRTLTDVKWFPLYNAADDSERAPSVRVQSNANGTLVEVQPSSRLEAGEEELRGWLLDASAIKAPLQQLILDWTSERDGFQRFTIEASDDLQHWQSWGEGQIARLTFADERVEQHEVSLPGQSARYLRLLWDSPSSAPVLTSAQLQSASRESLPLPLVWSQPLAGGTTKAGEYTWQLPMGLNVEQVQIELSQANTLAPATLAGRRESSQPWQPMGSGLLYRLTQNGQDVLQNQLQLSGQTVQQLKLTVDERGGGLGAEAPALRFAVRPTQVVFLARGEGPWRLALGSATVKAASLPLTTLVPDYKPSRLATLGTATVNGTATATPRVETTPAPVETNWKKIGLWAVLLLSVLFLAAMAFSLLRKPPVKNNANANANANA
D1-35_032461011fbp_2COG0158Fructose-1,6-bisphosphatase class 1ATGTCCCGCGTTACCTTGAGTCGCTATTTGATTGAGCAGACCCGCAGCAACAATACCCCTGCCGATCTGCGCTTTTTGATCGAAGTGGTGGCGCGTGCGTGCAAGGAAATCAGCCACGCCGTCTCCAAGGGCGCGCTGGGTGGTGTCCTTGGCAGCATGGGCACCGAGAACGTGCAGGGCGAAGTGCAGAAGAAGCTCGACGTACTGTCCAACGAAATCCTGCTCGAAGCCAACGAGTGGGGCGGTCACCTGGCCGGCATGGCGTCCGAGGAAATGGACAATGCCTACCAGATCCCGGGCAAGTATCCCAAGGGCGCCTACCTGCTGGTGTTCGACCCGTTGGACGGCTCGTCGAACATCGACATCAACGCGCCGGTTGGCACCATCTTCTCGGTACTGCGTTGCCCGAACGAGTACCTGAGCCAGAACGAAGCGCTGAACGAAAAGGCCTTCCTGCAGCCAGGCACCGAACAGGTCGCCGCCGGCTATGCCATCTACGGGCCTCAGACCATGCTGGTACTGACCCTGGGCGACGGCGTGAAAGGCTTCACCCTGGATCGCGAGATGGGCAGTTTTGTCCTGACCCACGAAGACATCACCATTCCTGAGACCACTCAGGAGTTCGCCATCAACATGTCCAACCAGCGTCACTGGGAAGCCCCGGTACAACGCTACGTCAGCGAGTTGCTGGCCGGCGAAGAAGGCCCGCTGAAGAAGAACTACAACATGCGCTGGGTCGCCGCGATGGTTGCCGATGTGCACCGCATCCTGACCCGTGGTGGCCTGTTCATGTACCCACGCGACAGCCGCGAGCCGTCCAAGCCGGGCAAGCTGCGCCTGATGTACGAAGCCAACCCGATGTCGTTCCTGGTGGAGCAGGCCGGTGGCGCTTCCACCGATGGCCACCAACGCATTCTCGACATCCAGCCTGAAGGCCTGCACCAGCGCGTGGCCGTGTTCCTCGGCTCGAAGGAAGAAGTGGCGCGCGCCACGGCCTACCATAAGGAATAAMSRVTLSRYLIEQTRSNNTPADLRFLIEVVARACKEISHAVSKGALGGVLGSMGTENVQGEVQKKLDVLSNEILLEANEWGGHLAGMASEEMDNAYQIPGKYPKGAYLLVFDPLDGSSNIDINAPVGTIFSVLRCPNEYLSQNEALNEKAFLQPGTEQVAAGYAIYGPQTMLVLTLGDGVKGFTLDREMGSFVLTHEDITIPETTQEFAINMSNQRHWEAPVQRYVSELLAGEEGPLKKNYNMRWVAAMVADVHRILTRGGLFMYPRDSREPSKPGKLRLMYEANPMSFLVEQAGGASTDGHQRILDIQPEGLHQRVAVFLGSKEEVARATAYHKEPGPT0017665_1788DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017665-fbp|cbbFC-K03841NANA
D1-35_03247597hypothetical proteinATGGCCGAGCCCTGGCAGCCGTTGCTCGATTGGTGGTTCGGTTCAGCCGAATCACCCGATGACATCGCGGCTGACAAGGGCAAGCTGTGGTTCGGCAAAGGCCATGATCGCCAGGCGCAAGAGCGCTTCGGTGATCAGGTCGAGCAGGCACTGGCTGGCGGATTGACCGATTGGGCGCAACGCCCGGAAGGTTGGCTGGCCCTGGTGCTGTTACTCGATCAACTTCCGCGGATGATCTTTCGCGACACCCCCAGAAGCTTTTCCGGCGACCTGCGTGCCCAAGCGCTGGTAGCACAGGGACTGGCGGCGGGTTTCGACCGGCAACTCAAGCCTGTCCAGCGCGTATTCATTTATCTGGTACTCGAACACTGCGAAAACCTCGCCGTACAGAACGAAGCCGTGTCGCGGTTCATCGAGTTGGTTCGAGAACAGCCCGAGGCGCAGCGTGCGGTGTTTGAGGACAACCTGGATTATGCCGAACGGCATCAGAAGATCATTGCGCGGTTTGGCCGCTTCCCTCATCGCAATGCGGTGCTTGGGCGTGAGTCCACGGCTGAGGAAGTGGAGTTCTTGAGCAGGCCTGGGTCCAGGTTCTAGMAEPWQPLLDWWFGSAESPDDIAADKGKLWFGKGHDRQAQERFGDQVEQALAGGLTDWAQRPEGWLALVLLLDQLPRMIFRDTPRSFSGDLRAQALVAQGLAAGFDRQLKPVQRVFIYLVLEHCENLAVQNEAVSRFIELVREQPEAQRAVFEDNLDYAERHQKIIARFGRFPHRNAVLGRESTAEEVEFLSRPGSRFNANANANANA
D1-35_03248333hypothetical proteinATGAGGTTGAAGATCGTCATTCTTCAGTCAGCCGAAACAGATCTTAAAGAGCTTCGCGCCTATCTCATCGGTCGGTTTTCTTTCCATACATGGCAAAGCACTTACGCCAGCCTGAAGACGGCGATCCGTCATTTGGAGACCTTGCCTTACGCAGGATCGATTCCAGAAGAAATCGAAAGGCTCAATCTCGGTCAGTACCGGCAGATATTGTCAGGGATGAACCGAATCATTTATGAGGTGCGGGGCCAAACGATCTATATCCATATCATCGCCGATAACCGCAAGAGCTTGCCGACCCTGCTAATGCAGCGATTGCTTCGAAGCAGTCCTTAAMRLKIVILQSAETDLKELRAYLIGRFSFHTWQSTYASLKTAIRHLETLPYAGSIPEEIERLNLGQYRQILSGMNRIIYEVRGQTIYIHIIADNRKSLPTLLMQRLLRSSPPGPT0027550_358DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-ParE-ParD|paaAR_TOXIN-ANTITOXIN_SYSTEM,PGPT0027550-toxin_parE1_3_4-K19092NANA
D1-35_03249273hypothetical proteinATGAAACTCTCATCACAAATCAAACCCATCAGCTATTTGAAGAGCCATACCGCCGAAATCGTCAAGAGCATCACAGAGAGCAGAGAGCCGTTGATCATCACCCAAAACGGTGAAGCCAAGCTCGTGGTCATGGATGTAAAAAGTTTTGAAGAACAAGAAGACACCATGGCGTTGCTAAAGCTGCTGGCGATGGGCAACCAAGAAATTGAAAACGGTAAATTCAGGGAAATAGAAGAAGTCTTCGGCGAGCTGGATAAGGCGGACGACCAATGAMKLSSQIKPISYLKSHTAEIVKSITESREPLIITQNGEAKLVVMDVKSFEEQEDTMALLKLLAMGNQEIENGKFREIEEVFGELDKADDQNANANANANA
D1-35_032501944pctCCOG0840Methyl-accepting chemotaxis protein PctCATGGCAAATTGGCAGCCCTTCCTGACCCGTCCCTACGCGGTAGCGTTCTTAATGACCAGAAACATGAAATTCAGCCACAAAATCCTGCTGGCTGCCGCCCTTGTGGTGGCCGTCGCATTCGCCTGTTTCATCCTGTTCAACGACTATCGTCAACGACAAAGTCTCAACACCAGCACCGAGACGTCCATGCAGGAACTCGGCAACCTGACCAGTCGCAATATCCAGACATGGGTCGAAGGCCGAATCCAATTGCTGCAATCGCTGGCCCAACAAATCGCCATCGACGGAAACAGTGCCGAAAGCCTGAAACGCGCCGTGGGCCTGCCGGCCTACACCGGTAATTTCCAGCTCAGCTATTTCGGCGGTACCGACGGTGTGATGTTCTCGATACCGGCCGGTAATCGTGCCGCCGACTATGACCCGCGCGCCCGTGGCTGGTACAAGGCTGCCAATAGCGCCCAGCAGACCATCGTCACCGAGCCCTACATCGCGGCCTCGTCGGGCAAGCTGGTGATCACCGTTGCCACGCCGGTACAGCGTCAGAACCAGATGATCGGCGTGGCTGGCGCGGACATCGACCTGTCGAGCGTCAGCGCCATCATCAACTCGCTGAACTTCGGCGGCCATGGCCATGCGTTCATCGTCAGCGCCGACGGCAAGATCCTGATCCACCCTGACAGCAAGCGTGTCCTCAAGACGCTTGCCGAGGCCTACCCCAACGGCGCACCGCAAATCGGCCCGGGCCTGAAGGAAGTCGAGCTCGACGGCAAGACTCAATTCATCTCCTTTACCCAGGTCAACGGCGTGCCCGGAGCCAACTGGTACGTGGCGCTGGTACTCGATAAAGACACCGCCCTGGCGATGCTCAGCGAATTTCGCACCTCGGCGCTGATCGCCATGATCATCGCCGTGGTGTTCATCATCGCCCTCCTGGGCATGCTGATCCGGGTGCTGATGCAACCACTGCTGACCATGGGCCGCGCCATGCACGATATCGCCGAAGGCGAAGGCGACCTGACTCGGCGCCTGACCATTCATGGCCAGGACGAATTCGGTGCGCTGGGTACCTCGTTCAACCGCTTCGTCGAGCGTATCCATACTTCGATCCGCGAAGTGGCTTCGGCGACCGGCCAGGTCAACGAAGTCGCCCTGCGGGTGGTCAGCGCGTCCAACTCCTCGATGTACAACTCCGACCAGCAGGCCTCGCGGACCAGCAGCGTGGCCGCGGCCATCAACCAGCTCGGCGCCGCCGCCCAGGAGATCGCCCAGAACGCCGCCCTCGCCTCGCAGCATTCCAGTGAAGCCCGCAACCTGGCCGAAGACGGTCAGCAAGTGGTGGATAAAACCATCACCGCCATGCAGCAGCTGTCGGCCAAGATCAGCGATTCGTGCGGCAACATCGAAACCCTGAACAGCAACACAGTGAACATCGGCCAGATCCTGGAAGTGATCACCAGCATTTCCCAGCAGACCAACCTGCTGGCCCTGAACGCCGCCATCGAAGCCGCCCGCGCCGGTGAAGCCGGTCGCGGTTTCGCGGTGGTTGCCGATGAAGTGCGCAACCTGGCCCACCGTACCCAGGATTCGGCGCAGCAAGTGCAGAAGATGATCGAAGAGTTGCAGGTCGGCGCGCGGGAAGCGGTGCTGACCATGACCGACAGCCAGCGCCAGAGCGAAAGCAGCGTTGGCATCGCCAACCAGGCGGGCGAACGCCTGGGCAGCGTGACCCAGCGCATCGGCGAAATCGACGGCATGAACCAGTCCGTGGCGACCGCCACCGAAGAACAGACCGCCGTGGTGGAATCGATCAACGTCGACATCAACGAGATCAACACGCTAAACCAGGAAGGCGTGGAAAACCTGCAGGCCACCTTGCGGGCCTGTTCCGACCTGGAACAGCAGGCGGCGCGGTTGAAGCAATTGGTGGGTAGTTTCCGGATCTAGMANWQPFLTRPYAVAFLMTRNMKFSHKILLAAALVVAVAFACFILFNDYRQRQSLNTSTETSMQELGNLTSRNIQTWVEGRIQLLQSLAQQIAIDGNSAESLKRAVGLPAYTGNFQLSYFGGTDGVMFSIPAGNRAADYDPRARGWYKAANSAQQTIVTEPYIAASSGKLVITVATPVQRQNQMIGVAGADIDLSSVSAIINSLNFGGHGHAFIVSADGKILIHPDSKRVLKTLAEAYPNGAPQIGPGLKEVELDGKTQFISFTQVNGVPGANWYVALVLDKDTALAMLSEFRTSALIAMIIAVVFIIALLGMLIRVLMQPLLTMGRAMHDIAEGEGDLTRRLTIHGQDEFGALGTSFNRFVERIHTSIREVASATGQVNEVALRVVSASNSSMYNSDQQASRTSSVAAAINQLGAAAQEIAQNAALASQHSSEARNLAEDGQQVVDKTITAMQQLSAKISDSCGNIETLNSNTVNIGQILEVITSISQQTNLLALNAAIEAARAGEAGRGFAVVADEVRNLAHRTQDSAQQVQKMIEELQVGAREAVLTMTDSQRQSESSVGIANQAGERLGSVTQRIGEIDGMNQSVATATEEQTAVVESINVDINEINTLNQEGVENLQATLRACSDLEQQAARLKQLVGSFRIPGPT0015710_11098DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_03251255hypothetical proteinATGTCGCTGCGATCCATCGCCCTGCTGTTTGTGTGCGTCGTCTTGACCGCATGCAGCAAGGTCAACCAGGAAAACTATTCGAAGCTGTCGGCTGGCATGCCCAAGGCCGAAGTCGAAACGTTACTGGGGAAACCGACTGATTGTTCGGGCGCGCTCGGTATGTCCAGCTGCACCTGGGGCGACCAGAAAAGCTTTATCAGCGTGCAGTATGCCGGTGACAAAGTGTTGATGTTTTCCGGCCAAGGCCTGAAGTAAMSLRSIALLFVCVVLTACSKVNQENYSKLSAGMPKAEVETLLGKPTDCSGALGMSSCTWGDQKSFISVQYAGDKVLMFSGQGLKNANANANANA
D1-35_03252570blcCOG3040Outer membrane lipoprotein BlcATGATGCGGTTAGTTTTTGTGCTTCTGGCTGGCCTGGTATTGGCCGGCTGTGCCTCTTCTGGCGTAGACCCGTTGGCGCCCAAGACAGTCAACAGCGTCAATCTAAAGCGGTACCAAGGGACCTGGTACGAACTGGCCCGCCTGCCGATGTACTTCCAGCGCAACTGCGCGCAGTCCGAAGCGCATTACACCCTCAAGCCTGACGGCAACATGGACGTATTCAACCGCTGCCTGACTTCCGACTGGAAATGGGAAGAGGCCAGGGGCACGGCTTACCCGCAAGTGCCGGGTAAAACCGACAAGCTCTGGGTCGAATTCGATACCTGGTTCTCGCGGATCCTGCCGGGCGTGGCAAAAGGGGAATATTGGGTGTTGTACGTCAGCGACGACTACAAGACCGCCATCGTCGGCGACCCGAGCCGGCGCTACATGTGGTTGCTGTCCCGCACGCCGACGGTGAGGGTGGATGTACGTGAAGAACTGCTGAGCAAGGCCCGCCAGCAGGGCTATGACACGACGCGGTTGGTCTGGCGCGCATCGGACCGGCAGATGGCGAAGACTTCGGACTGAMMRLVFVLLAGLVLAGCASSGVDPLAPKTVNSVNLKRYQGTWYELARLPMYFQRNCAQSEAHYTLKPDGNMDVFNRCLTSDWKWEEARGTAYPQVPGKTDKLWVEFDTWFSRILPGVAKGEYWVLYVSDDYKTAIVGDPSRRYMWLLSRTPTVRVDVREELLSKARQQGYDTTRLVWRASDRQMAKTSDPGPT0012970_1079DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGNITROSATIVE|OXIDATIVE_STRESS|ROS_REGULATORY_PROTEINS,PGPT0012970-blc-K03098NANA
D1-35_032531365COG04028-oxoguanine deaminaseATGTCCGCCTTCTTTGCCGAACGCGCGCTGCTGCCTAGTGGATGGGCCAATGATGTACGTCTTGAGGTCGATGCCAACGGTATCCTGACCCACATCCAGGCCGACGCCCACGCAGACGGCGCCGAACGACTGGACGGCCCGCTCTTGCCAGGCATGCCGAACCTGCATTCCCATGCTTTCCAGCGGGCCATGGCCGGACTGGCGGAGGTGGCCGGCAACCCCAACGACAGCTTCTGGACATGGCGTGACCTGATGTACCGCCTCGTCGGGAAAATCAGCCCCGGGCAACTCGGCATTATCGCCCGCCAGCTGTACATCGAAATGCTCAAGGCCGGCTACACCTCGGTCGCCGAGTTCCATTACGTGCATCATGACCTCGACGGCGCGCCCTACGCTGACCCGGCCGAACTGGCGCTGCGCATCAGCCACGCCGCCAGCGCCGCCGGCATCGGCCTGACGTTGCTGCCGGTGCTCTACAGCCATTCCGGCTTCGGCGGCCAGGCGCCCAACGAGGGGCAGCGCCGGTTCATCAACAGCACCGAAAACTACCTGAAGCTTCAGGAGCGCTTGCAACCTGTCCTGGCCGGGCAAGCCAATCAGGCGCTGGGCTTGTGTTTCCACTCCTTGCGCGCCGTGACGCCCGGACAGATCAAGGACGTACTGGCCGCCAGCGATCCGCATTGCCCGGTGCACATCCACATCGCCGAACAGCAAAAGGAAGTCGACGATTGCCTGAGCTGGAGTGGCGCGCGGCCGCTGGAGTGGCTGTACGAAAATACCGAAGTCGACCAGCGCTGGTGCCTGGTTCACGCAACGCACGCCAACCCCCAGGAAGTCAGCCTCATGGCCAGGAGCCGGGCGATTGCCGGGTTGTGCCTGACCACTGAAGCCAATCTTGGCGACGGGATTTTCCCGGCCGTGGACTTCCTCGCCCAAGGTGGGCGGATGGGCATCGGTTCCGACAGCCATGTGTCGTTGAGTGTGGTGGAAGAGTTGCGTTGGCTGGAATACGGCCAGCGTTTGCGAGACCAGCGGCGCAACCGTTTGTATCGAACGGATCAACCGATGGTCGGGCGCACGCTGTATGACGCCGCGCTGGACGGCGGCGCCCAGGCGCTGGGACAACCCATCGGTGCTTTCACAGTAGGCAAGCGCGCCGATTGGCTGGTGCTTGATGGCAACGATCCGTACCTGGCCACGGCCAACGGCGACGGTATCCTCAATCGTTGGCTGTTCGCCGGTGGCGATCGCCAGGTGCGGGATGTGATGGTGGGTGGCAAGTGGGTGGTGCGCGATGGGCGCCATGCCGGCGAAGAGGAAAGCGCACGGGCGTTCACCCAGGTGTTGCGCGAGCTGCTGGGCTGAMSAFFAERALLPSGWANDVRLEVDANGILTHIQADAHADGAERLDGPLLPGMPNLHSHAFQRAMAGLAEVAGNPNDSFWTWRDLMYRLVGKISPGQLGIIARQLYIEMLKAGYTSVAEFHYVHHDLDGAPYADPAELALRISHAASAAGIGLTLLPVLYSHSGFGGQAPNEGQRRFINSTENYLKLQERLQPVLAGQANQALGLCFHSLRAVTPGQIKDVLAASDPHCPVHIHIAEQQKEVDDCLSWSGARPLEWLYENTEVDQRWCLVHATHANPQEVSLMARSRAIAGLCLTTEANLGDGIFPAVDFLAQGGRMGIGSDSHVSLSVVEELRWLEYGQRLRDQRRNRLYRTDQPMVGRTLYDAALDGGAQALGQPIGAFTVGKRADWLVLDGNDPYLATANGDGILNRWLFAGGDRQVRDVMVGGKWVVRDGRHAGEEESARAFTQVLRELLGPGPT0020245_520DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020245-hutF-K05603NANA
D1-35_03254750nagR_3COG2188HTH-type transcriptional repressor NagRGTGCCGACTCCGCCTGCCAAACCGCCGCTGGCCGCAACCATGGGTGACAGTCCGGCGCCCTTGTACGCCCGCGTCAAACAGATGATCACCCAGCAGATCGACAGTGGAAACTGGCCGCCGCACTACCGCGTGCCGTCGGAAAGCGAACTGGTCAGTCAGTTGGGCTTCAGCCGCATGACCATCAACCGTGCCCTGCGGGAAATGACCGCCGATGGCCTGTTGGTGCGCATGCAGGGTGTCGGCACGTTCGTCGCCGAGCCCAAGAGCCAGTCCGCGTTGTTCGAAGTACACAACATCGCCGATGAAATCGCCTCCCGGGGTCATCGCCATACCTGCAAGGTCATTACCCTGGAAGAGGAGGCCGCCGGCTCCGAACGTGCCCTGGCCCTGGATATGCGCGAAGGCCAGAAGGTCTTTCACTCGCTGATCGTGCATTTCGAGAACGACATTCCCGTGCAGATCGAGGACCGTTTCGTCAATGCGCTCGTGGCGCCCGACTACCTCAAGCAGGACTTCACCCAGCAAACGCCTTACGCCTACCTGAACCAGGTCGCGCCGCTGACCGAGGGGGAGCATGTGGTCGAGGCGATCCTGGCCGAGCCGAGCGAATGCAAGCTGTTGCAGATCGAGCGGGGCGAGCCGTGCCTGCTGATTCGCCGTCGCACCTGGTCCGGGCGCCAGCCGGTGACCGCCGCGCGCCTGATCCATCCGGGCTCCCGCCATAGCCTGGAAGGACGCTTTCACAAATGAMPTPPAKPPLAATMGDSPAPLYARVKQMITQQIDSGNWPPHYRVPSESELVSQLGFSRMTINRALREMTADGLLVRMQGVGTFVAEPKSQSALFEVHNIADEIASRGHRHTCKVITLEEEAAGSERALALDMREGQKVFHSLIVHFENDIPVQIEDRFVNALVAPDYLKQDFTQQTPYAYLNQVAPLTEGEHVVEAILAEPSECKLLQIERGEPCLLIRRRTWSGRQPVTAARLIHPGSRHSLEGRFHKNANANANANA
D1-35_03255570vesProtein VesATGAGCCAGCTGAAGGTTTTACGCGCCGCCGACTACCCACGCATGCCGTGGAAAAACGGCGGTGGCAGCACCGAAGAAATCACCCGCGATGCAGGCACCGGCCTGGAAGGTTTCGGTTGGCGCCTGTCGATCGCCGATATCGCTGAGTCGGGCGGTTTTTCCACCTTCGCCGGTTATGAACGGGTCATCAGTGTCTTGCAGGGTGACGGCATGACGCTGTATGTCGATGGCCAGGCCACGCGGGCATTGCATCCGCTGGACCCGTTTGCGTTCAGCGGCGAAAGCCATGTGCACTGCACCTTGCTGGGCGGGTCGATCCGCGATTTCAACCTGATCTATGCGCCGCAGCGTTACCGCGCGCGGTTGCAGTGGATGGGTGGGCAGCAGCATTTTCTCAGCGAGGCGGGGACGGTGTTGGTGTTCAGCGCGGCGCCGACGCTGAGGGTCAATATTGACGAGGCGGTCCAGACGCTGGGGCTTTATGACTGCCTGCAACTGAGCGGCAACACCGGGCTGCTGGAGATCACCACCCACGGCCAATGCTGCGTGATCGAGCTGACGGCCCACTAAMSQLKVLRAADYPRMPWKNGGGSTEEITRDAGTGLEGFGWRLSIADIAESGGFSTFAGYERVISVLQGDGMTLYVDGQATRALHPLDPFAFSGESHVHCTLLGGSIRDFNLIYAPQRYRARLQWMGGQQHFLSEAGTVLVFSAAPTLRVNIDEAVQTLGLYDCLQLSGNTGLLEITTHGQCCVIELTAHPGPT0020255_851DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MAINTENANCECE-BACTERIAL_FITNESS-HISTIDINE_REPLETION_RELATED_FITNESS,PGPT0020255-hutD|ves-K09975NANA
D1-35_032561689hutUCOG2987Urocanate hydrataseGTGACCGACGCTACCCGCAAACCTGAAAAATACCGTGACGTTGAAATCCGCGCGCCTCGCGGTAACACGCTGACCGCCAAGAGCTGGCTGACTGAAGCGCCGCTGCGGATGTTGATGAACAACCTCGACCCGGAAGTGGCGGAGAACCCCAAGGAGCTGGTGGTCTACGGTGGCATCGGTCGCGCGGCGCGCAACTGGGAGTGCTACGACAAGATTGTCGAAAGCCTGACCAACCTGAATGACGACGAAACCCTGCTGGTGCAATCCGGCAAGCCGGTGGGCGTATTCAAGACCCACAGCAACGCTCCTCGCGTACTGATCGCCAACTCCAACCTGGTGCCGCACTGGGCCAGTTGGGAGCATTTCAACGAACTCGACGCCAAGGGCCTGGCCATGTACGGCCAGATGACCGCCGGCAGCTGGATCTACATCGGCAGCCAGGGCATCGTCCAAGGCACTTATGAAACCTTCGTCGAGGCTGGTCGCCAGCATTACGATTCCAACCTCAAGGGCCGTTGGGTCCTGACCGCCGGCCTGGGTGGCATGGGCGGCGCGCAACCCTTGGCCGCGACCCTGGCCGGTGCGTGCTCGCTGAACATCGAATGCCAGCAGGTCAGCATCGATTTCCGTCTGAAAACCCGTTACGTCGACGAGCAAGCCAAAGACCTCGACGACGCCTTGGCGCGCATCGAGAAATACACCGCCGAAGGCAAGGCGATTTCCATCGCGCTGTGTGGGAACGCCGCCGAAATTCTCCCGGAAATGGTTCGCCGTGGTGTGCGTCCGGACATGGTCACCGACCAGACCAGCGCCCACGACCCGCTCAATGGTTACCTGCCGGCCGGCTGGACCTGGGACGAATACCGCGCCCGCGCCAAGACCGAACCTGCTGCCGTGGTGAAGGCCGCCAAGCAATCGATGGCCGTGCACGTCAAAGCCATGCTGGCCTTCCAGAAAATGGGCGTACCGACTTTCGACTACGGTAACAATATCCGCCAGATGGCCCAGGAAGAGGGCGTCGAGAATGCCTTCGACTTCCCGGGCTTCGTTCCGGCGTATATCCGTCCGCTGTTTTGCCGTGGCATCGGCCCGTTCCGCTGGGCCGCGCTGTCGGGCGACCCGCAGGACATCTACAAGACCGACGCCAAGGTCAAGGAGCTGATCGCCGACGACGCTCACCTGCACAACTGGCTGGACATGGCCCGCGAGCGCATCAGCTTCCAAGGCTTGCCGGCACGTATCTGCTGGGTTGGCCTGGGCCAGCGCGCCAAGTTGGGCCTGGCCTTCAACGAGATGGTGCGCAGCGGTGAGTTGTCGGCGCCGATCGTGATCGGCCGCGACCACCTGGACTCCGGCTCCGTCGCCAGCCCGAACCGTGAAACCGAATCCATGCAGGACGGCTCCGACGCCGTTTCCGACTGGCCGCTGCTCAATGCCTTGCTCAACACCGCCAGTGGCGCGACTTGGGTGTCGCTGCACCACGGTGGTGGCGTCGGCATGGGTTTCTCCCAGCACTCGGGCATGGTGATCGTCTGCGACGGCACCGACGAAGCGGCCGAGCGTATCGCCCGGGTACTGCATAACGACCCGGGCACTGGCGTCATGCGTCATGCCGATGCGGGTTACCAGATTGCCATTGATTGTGCGAAGGAGCAGGGGCTGAACCTACCGATGATCACCGGCAAGTAAMTDATRKPEKYRDVEIRAPRGNTLTAKSWLTEAPLRMLMNNLDPEVAENPKELVVYGGIGRAARNWECYDKIVESLTNLNDDETLLVQSGKPVGVFKTHSNAPRVLIANSNLVPHWASWEHFNELDAKGLAMYGQMTAGSWIYIGSQGIVQGTYETFVEAGRQHYDSNLKGRWVLTAGLGGMGGAQPLAATLAGACSLNIECQQVSIDFRLKTRYVDEQAKDLDDALARIEKYTAEGKAISIALCGNAAEILPEMVRRGVRPDMVTDQTSAHDPLNGYLPAGWTWDEYRARAKTEPAAVVKAAKQSMAVHVKAMLAFQKMGVPTFDYGNNIRQMAQEEGVENAFDFPGFVPAYIRPLFCRGIGPFRWAALSGDPQDIYKTDAKVKELIADDAHLHNWLDMARERISFQGLPARICWVGLGQRAKLGLAFNEMVRSGELSAPIVIGRDHLDSGSVASPNRETESMQDGSDAVSDWPLLNALLNTASGATWVSLHHGGGVGMGFSQHSGMVIVCDGTDEAAERIARVLHNDPGTGVMRHADAGYQIAIDCAKEQGLNLPMITGKPGPT0020250_1089DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020250-hutU-K01712NANA
D1-35_032571467hypothetical proteinATGGCTGTCACCAGCACACGCGATAGCAGCAAGCCGTTGATCGAGAAACGATCGATCGACTACATCCCGGAGGCGGAGCGACACGGTCGGTTGTTGAGCCAGTTCACCCTCTGGATGGGGGCCAACCTGCAGATCACGGCAATTGTCACCGGCGCGTTGGCGGTGGTGCTTGGCGGTGATGTGTTCTGGTCGTTGATCGGTCTGCTGATCGGCCAGGTGCTCGGCGGTGGCGTCATGGCCTTGCATGCCGCGCAAGGGCCCAAGCTGGGCCTGCCGCAGATGATCTCCAGCCGGGTGCAGTTCGGTGTGTATGGCGCGGCCATCCCGATCGTGCTGGTGTGCCTGATGTACCTGGGTTTCACCGCCACGGGAACCGTGCTTTCCGGCCAGGCGCTGGGCCAGTTGTTTGGCGTCAGTGACAGTCTCGGCATCCTTATTTTCGCCAGTGTCATCGTGCTGGTGACGGTGCTCGGTTACCGGGTGATCCACTTCATTGGCCGGGTCGCCAGCGTCATTGGTGTGATTGCCTTTGTCTACCTGTTCGCTCGCCTGATCAGCCAGACGGACGTTGGCGCGCTCTTGCAAATTCGCCATTTCAGCTGGAGCAGTTTCCTGCTGGCGGTGTCGCTCGCGGCCTCCTGGCAGATCGCCTTCGGCCCCTACGTGGCTGACTACTCGCGGTACCTGCCGAGCAAGACGTCTTCGGTGAAAACCTTTTTCGCCGCCGGCGCGGGTTCCGTCATCGGCGCGCAGGTAGCGATGATCCTCGGCGTGTTTGCCGCCGCTTCGGCCAACGGGCAGTTCGCCGGTCACGAAGTGGCCTACATCGTAGGCCTGGGAGGTACCGGCGCCACCGCTGCGCTGCTGTACTTCAGCATCGCCTTTGGCAAGGTCACCATCTCCACGCTGAACTCCTACGGCAGCTTCATGTGCATCGCGACGATCATCAGCGGTTTCCGCGGGCACCTGAGCGTAACGCGCTTGCAGCGTCTGGTCTTCGTGCTGGTCATCGTCGGCGCCGCGACCCTGATCGCGCTGCTCGGCCAGCACTCGTTCCTCGGTGCGTTCAAGTCTTTCATCTTGTTCTTGCTCGCATTCTTCACGCCGTGGAGCGCGATCAACCTGGTGGACTACTACTGCATCACGCGCGAGCGCTATGACGTGCCGGCACTGAACGACCCGAACGGTCGCTACGGTCGTTGGAACGCCCTCGGCATCAGCGTCTACGTCTTCGGTGTATTGGTTCAGTTGCCGTTCATCGCCACCAAGTTCTATACCGGCCCGTTGGTGAAAGCCATGGGTGGCGTGGATATCTCGTGGATCATCGGTCTGGTGGTCCCGGCGGCGTTGTATTACCTCATCGCCAGAAAGTGGCACAGCGCAGTACCCGATCAATTGATCCTGCCGGTCGAGCAGGACGCGGTTGACGCACAACCGAGCAGGGCGGGCCGCATCCAAGCGGTCTGAMAVTSTRDSSKPLIEKRSIDYIPEAERHGRLLSQFTLWMGANLQITAIVTGALAVVLGGDVFWSLIGLLIGQVLGGGVMALHAAQGPKLGLPQMISSRVQFGVYGAAIPIVLVCLMYLGFTATGTVLSGQALGQLFGVSDSLGILIFASVIVLVTVLGYRVIHFIGRVASVIGVIAFVYLFARLISQTDVGALLQIRHFSWSSFLLAVSLAASWQIAFGPYVADYSRYLPSKTSSVKTFFAAGAGSVIGAQVAMILGVFAAASANGQFAGHEVAYIVGLGGTGATAALLYFSIAFGKVTISTLNSYGSFMCIATIISGFRGHLSVTRLQRLVFVLVIVGAATLIALLGQHSFLGAFKSFILFLLAFFTPWSAINLVDYYCITRERYDVPALNDPNGRYGRWNALGISVYVFGVLVQLPFIATKFYTGPLVKAMGGVDISWIIGLVVPAALYYLIARKWHSAVPDQLILPVEQDAVDAQPSRAGRIQAVPGPT0009075_1894DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_TRANSPORT,PGPT0009075-cytX-K03457NANA
D1-35_03258969hypothetical proteinATGAAATCGAACAAGACCCTGCTGACCACATTGCTTGCCATGGGCCTGCTGGCCAGCGCCGGCGCCACGCAAGCGGCCGGCTGGTGCGAGTCGGGCAAACCGGTGAAGTTCGCCGGCCTGAACTGGGAAAGCGGCATGCTGCTGACCGACGTGATGCAAGTCGTGCTGGAAAAAGGCTACGGCTGCAAGACCGACAGTCTGCCAGGCAACTCCATCACCATGGAGAACGCCCTGAGCAGCAACGACATCCAGGTGTTCGCCGAAGAGTGGGTCGGCCGCAGTGAGGTGTGGAACAAGGCCGAGAAGGCCGGCAAGGTGGTGGGCGTCGGTGCCCCGGTGGTCGGCGCGATCGAAGGCTGGTACGTGCCGCGCTACGTGATCGAAGGTGATGCCAAGCGCAAGCTCGAAGCCAAGGCCCCGGGCCTGAAGAATATCGCCGACCTGGGCCAATACGCCGCCGTGTTCAAGGATCAGGAGGAACCGTCCAAGGGCCGCTTCTACAACTGCCCGGCCGGTTGGACCTGCGAGCTGGACAACAGCGAAATGCTGAAAAGCTACGGCCTGGAAAAAACCTACACCAACTTCCGCCCAGGCACCGGCCCGGCGCTGGATGCGGCAGTGCTGTCGAGCTACAAGCGTGGCGAGCCGATCCTGTTCTACTACTGGTCGCCGACGCCACTGATGGGCCAGGTCGACCTGGTGAAGCTCGAAGAAAAACCGGGCGTGGATAAAAGCGTGAGCATCAAGGTCGGCCTGTCCAAGACCTTCCACGACGAGGCTCCGGAACTGGTGGCGGTGCTGGAAAAGGTCAACCTGCCGATCGACATCCTGAACCAGAACCTCGGGCGCATGGCCAAAGAGCGGATCGAGTCGCCGAAACTGGCGAAGATCTTCCTGAAGGAACATCCTGAAGTCTGGCATGCCTGGGTCAGCGAAGACGCTGCCAAGAAAATCGACGCGGCTCTGTAGMKSNKTLLTTLLAMGLLASAGATQAAGWCESGKPVKFAGLNWESGMLLTDVMQVVLEKGYGCKTDSLPGNSITMENALSSNDIQVFAEEWVGRSEVWNKAEKAGKVVGVGAPVVGAIEGWYVPRYVIEGDAKRKLEAKAPGLKNIADLGQYAAVFKDQEEPSKGRFYNCPAGWTCELDNSEMLKSYGLEKTYTNFRPGTGPALDAAVLSSYKRGEPILFYYWSPTPLMGQVDLVKLEEKPGVDKSVSIKVGLSKTFHDEAPELVAVLEKVNLPIDILNQNLGRMAKERIESPKLAKIFLKEHPEVWHAWVSEDAAKKIDAALPGPT0013640_1629DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013640-gbuC|proX-K02002NANA
D1-35_03259852opuAB_2COG4176Glycine betaine transport system permease protein OpuABATGTTTCCCGAAAGCTTTACCTTCTCCATCGCCGACTGGGTCAACGGTTGGGTCGACTCCCTGGTGACCAACTATGGCGATGTGTTCCGGCATATCTCCGACACGTTGCTGTGGGCCATCGTCAACCTTGAAGGGCTGCTGCGCATGGCCCCCTGGTGGCTGATGCTGGCGATCGTCGGTGGCGTTGCCTGGCATGCTACCCGCAAGGTCGTGGCGACGGCGGTGATCGTCGGCCTGTTGTTCCTGGTGGGCGCGGTGGGCCTGTGGGACAAACTGATGCAGACCCTCGCGTTGATGCTGGTAGCGACGCTGATTTCGGTGCTGATCGGGATTCCGCTGGGCATTCTCTCGGCGCGCAGCAATCGCCTGCGTTCGGTGCTGATGCCCCTGCTGGACATCATGCAGACCATGCCAAGCTTCGTGTACCTGATTCCGGTGTTGATGCTGTTTGGCCTGGGCAAGGTCCCGGCGATCTTCGCCACGGTGATCTACGCCGCGCCGCCCTTGATCCGCCTGACCGACCTGGGCATCCGCCAGGTCGACGGCGAAGTCATGGAAGCCATCAACGCCTTTGGCGCCAACCGCTGGCAGCAGCTGTTCGGCGTGCAACTGCCCCTGGCCCTGCCGAGCATCATGGCCGGGATCAACCAGACCACCATGATGGCCCTGTCGATGGTGGTCATCGCCTCGATGATCGGCGCCCGTGGCCTGGGTGAGGACGTACTGGTCGGCATCCAGACCCTCAACGTCGGGCGCGGCCTCGAAGCCGGGCTCGCCATCGTGATTCTCGCCGTGGTCATCGACCGCATTACCCAGGCCTATGGTCGCCCTCGGCATGAGGTGAGCAAATGAMFPESFTFSIADWVNGWVDSLVTNYGDVFRHISDTLLWAIVNLEGLLRMAPWWLMLAIVGGVAWHATRKVVATAVIVGLLFLVGAVGLWDKLMQTLALMLVATLISVLIGIPLGILSARSNRLRSVLMPLLDIMQTMPSFVYLIPVLMLFGLGKVPAIFATVIYAAPPLIRLTDLGIRQVDGEVMEAINAFGANRWQQLFGVQLPLALPSIMAGINQTTMMALSMVVIASMIGARGLGEDVLVGIQTLNVGRGLEAGLAIVILAVVIDRITQAYGRPRHEVSKPGPT0013635_1863DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013635-gbuB|proW-K02001NANA
D1-35_03260831opuAA_2COG4175Glycine betaine transport ATP-binding protein OpuAAATGAGCAACGCAGCCGTCAGCAAGATCGAAGTCAGGAACGTCTTCAAGATTTTCGGCAACCGGTCCAAGGAGGCCCTGGAGCTGATCCGCCAGAACAGGACCAAGGACCAGGTGCTGGCCGAAACCGGCTGCGTGGTCGGCGTGAACGACCTGTCGCTGAGCATCGGTACCGGTGAGATTTTCGTGATCATGGGCCTGTCCGGTTCCGGCAAGTCCACTTTGGTTCGCCACTTCAACCGGTTGATCGACCCTACCAGCGGCGCGATCCTGGTGGACGGCGAAGACATCCTGCAACTGGACATGGATGCCCTGCGTGAATTTCGTCGACGCAAGATCAGCATGGTGTTCCAGAGCTTTGGCCTGCTGCCCCACAAGAGCGTGCTGGACAACGTCGCCTACGGCTTGAAAGTGCGTGGCGAAAGCAAGCAGGTCTGCGCCGAACGGGCGTTGCACTGGGTCAGCACCGTGGGCCTGAAGGGCTACGAGAACAAATACCCGCACCAGCTCTCCGGTGGCATGCGCCAGCGCGTCGGCCTGGCCCGGGCGTTGGCGGCGGATACCGACATCATCCTGATGGACGAGGCGTTCAGCGCCCTCGATCCGCTGATCCGGGCGGAAATGCAGGACCAGTTGCTGGAACTGCAAAAGACTCTGCACAAGACCATCGTCTTCATCACCCACGACCTCGACGAGGCCGTACGCATCGGCAACCGCATCGCGATTCTCAAGGACGGCAAGCTGATCCAGGTCGGCACGCCACGGGAGATCCTGCACTCGCCGGCGGATGAGTATGTCGATCGGTTTGTGCAGCGCAGGGCGGCGGTGGTTTGAMSNAAVSKIEVRNVFKIFGNRSKEALELIRQNRTKDQVLAETGCVVGVNDLSLSIGTGEIFVIMGLSGSGKSTLVRHFNRLIDPTSGAILVDGEDILQLDMDALREFRRRKISMVFQSFGLLPHKSVLDNVAYGLKVRGESKQVCAERALHWVSTVGLKGYENKYPHQLSGGMRQRVGLARALAADTDIILMDEAFSALDPLIRAEMQDQLLELQKTLHKTIVFITHDLDEAVRIGNRIAILKDGKLIQVGTPREILHSPADEYVDRFVQRRAAVVPGPT0013630_2510DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013630-gbuA|proV-K02000NANA
D1-35_032611524hutH_1COG2986Histidine ammonia-lyaseATGTCCCAGGCTGAAAAAATCATCATCGCCGACGCCCCGCTGCGCTGGCAGGACGTGGTCGCCGTCGCCCGCTTTGGCGCTGTGCTGGAGCTATCGGCCCAGGCCTGGGCGCGCATCGACAATGCCCAGGCCATCGTCCAGCGCATCGTCGAAAGCGGTGAACGGGCCTATGGCGTCAACACCGGGCTGGGCGCCTTGTGCAATGTCTCGCTCAAGGACGAACAGCTCAGCCAATTGTCGCGCAACACCTTGCTCAGCCATGCCTGTGGCGTCGGCCCGGCGCTGTCCGATGAGCAGACCCGGGCGATCCTCTGCGCGGCCATTCTCAACTACAGCCAAGGCAAATCCGGCATCCATCGCCGGGTGGTCGAGGCGTTGCTGGCGCTGCTCAATCGCGGCATCACGCCGCAAGTGCCGTCCCAGGGTTCGGTGGGTTACCTGACCCACATGGCCCACATCAGCATCGCGCTGCTGGGCGTCGGCGAGGTCAGCTATCGCGGGCAGGTCGTCTCGGCGCAGCAGGCGCTGGCCGCAGAAGGTCTGCAACCGGTGCAGTTGGGGGCCAAGGACGGTTTGTGCCTGGTCAACGGCACGCCGTGCATGACCGGCCTCAGTTGCCTGGCCCTGGCCGATGCGACGCGCCTGGTGCAGTGGGCCGATGTGATCGGTGCCATGAGCTTCGAGGCTCAGCGCGGGCAGATCGCCGCGTTCGATGCCGAGATCATTGCGCTCAAGCCGCACCCCGGCATGCAGCAGGTGGGCAGTAACTTGCGGGCGCTGCTCGATGGCAGCGAAGTCATCGCTTCGAGCCTGGGCATCCGCACCCAGGACGCCTTGAGCATCCGCTCGATTCCGCAAGTGCATGGCGCCGCTCGTGATCAGTTGGAGCATGCCCGGCAACAGATCGAAACCGAACTCAACGCCGCTACCGACAACCCGCTGCTGCTGGGTACGCCGGACAATTTCCGGGTCGTGTCCCAGGCCAACCCTCATGGCCAGTCGGTGGCGCTGGCGGCTGACCTGTTGGCGATCGCCATGGCGGAAATCGGCTCCATCGCCGAGCGTCGCCTCGACCGTTTGATCAACCCGCACGTCAGTGGGCTGCCGGCCTTCCTGGTGGCCAATCCCGGGGTGAATTCAGGGATGATGATCGTGCAATACGTCGCCGCGTCGCTGTGCGCGGAGAACAAGCAACTGGCGCAACCGGCGGTGCTCGACAATTTCGTCACCTCCGGGTTGCAGGAAGACCATTTGAGCATGGGCACCAACGCGGCCCTGAAGCTGCACCGGGCGCTGGAAAACTGTACGCAGATCCTCGCCATCGAATACCTGCTGGCGGCCCAGGCCTTTGAGTTTCTCAAGGCGCAGCGTTTTGGCGCTGGCACCAACACCGCCTGGAAGCTGCTGCGCGAGCGCGTCCCGGCCTACGACCAGGATCGCTGGCTGGCGCCGGACATCGCCAGCGCCGCCGGGCTGCTCAGGGATCCGAACGTGCTGCACCACGTTATACCGAATTTGAATTGAMSQAEKIIIADAPLRWQDVVAVARFGAVLELSAQAWARIDNAQAIVQRIVESGERAYGVNTGLGALCNVSLKDEQLSQLSRNTLLSHACGVGPALSDEQTRAILCAAILNYSQGKSGIHRRVVEALLALLNRGITPQVPSQGSVGYLTHMAHISIALLGVGEVSYRGQVVSAQQALAAEGLQPVQLGAKDGLCLVNGTPCMTGLSCLALADATRLVQWADVIGAMSFEAQRGQIAAFDAEIIALKPHPGMQQVGSNLRALLDGSEVIASSLGIRTQDALSIRSIPQVHGAARDQLEHARQQIETELNAATDNPLLLGTPDNFRVVSQANPHGQSVALAADLLAIAMAEIGSIAERRLDRLINPHVSGLPAFLVANPGVNSGMMIVQYVAASLCAENKQLAQPAVLDNFVTSGLQEDHLSMGTNAALKLHRALENCTQILAIEYLLAAQAFEFLKAQRFGAGTNTAWKLLRERVPAYDQDRWLAPDIASAAGLLRDPNVLHHVIPNLNPGPT0020230_2809DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020230-hutH-K01745NANA
D1-35_032621533hutH_2COG2986Histidine ammonia-lyaseATGACTGCCTTGAACCTGATTCCCGGCCAATTGAGCCTGGCTCAATTGCGTGACATCTATCAGCAACCGGTGACGCTCAGCCTCGACGCCAGCGCATCGGCGCAGATCGAAGCCAGCGTTGCCTGCGTGGAGCAGATCCTCGCCGAGAATCGCACCGCCTACGGCATCAACACCGGTTTCGGCCTGTTGGCCTCGACCCGTATCGCCAGCGAAGACCTAGAAAACCTGCAGCGCTCCCTGGTGCTGTCGCATGCCGCTGGCGTCGGCGAGCCGATCAGTGATGCGCTGGTGCGGTTGATCATGGTGCTCAAGGTCAACAGCCTGAGCCGGGGTTTCTCCGGCATTCGTCGGCAGGTGATCGATGCGCTGATCGCACTGATCAACGCCGAGGTCTACCCGCACATTCCGCTGAAAGGTTCGGTGGGCGCATCCGGTGACCTGGCGCCTCTGGCCCACATGTCGCTGGTGCTGCTGGGCGAAGGCAAGGCCCGTTACAAAGGCGAATGGCTGCCGGCTGTCGACGCCCTGAAAGTCGCCGGCCTCGCGCCGCTGACCCTGGCGGCCAAGGAAGGTCTGGCGTTGCTCAATGGCACCCAGGTTTCCACCGCGTTTGCCTTGCGCGGCCTGTTCGAAGGCGAAGACCTGTTTGCCGCTGCCCTGGCCCTGGGCAGCCTCACGGTGGAAGCGGTGCTTGGCTCGCGCTCGCCATTCGATGCGCGCATCCATGCCGCTCGCGGCCAGAAAGGCCAGATCGATGCCGCCGCGGCCTATCGCGACCTGTTGGGCGAGCGCAGTGAAGTGTCGGATTCGCACCAGAACTGCGACAAGGTCCAGGACCCGTACTCCCTGCGTTGCCAGCCGCAAGTGATGGGCGCCTGCCTGACCCAGTTCCGCCAGGCCGCCGAGGTGCTGGTGATCGAAGCCAACGCGGTGTCGGATAACCCGCTGGTGTTCGCCGCCGAGGGCGACGTGATCTCCGGCGGTAACTTCCACGCCGAACCGGTGGCGATGGCCGCCGATAACATGGCCCTGGCGATCGCCGAGATTGGCTCCCTGAGCGAGCGGCGCATTTCGTTGATGATGGACAAGCACATGTCGCAGCTGCCGCCGTTCCTGGTGGCCAATGGCGGGGTCAACTCCGGCTTCATGATCGCCCAGGTTACCGCTGCGGCCTTGGCCAGTGAAAACAAGGCGCTGTCCCATCCTCATTCGGTGGACAGCCTGCCGACCTCGGCGAACCAGGAAGACCACGTCTCCATGGCCCCGGCCGCCGGCAAGCGCTTGTGGGAAATGGCCGAGAACACCCGCGGGATTCTCGCGGTGGAATGGCTGGCGGCGTGCCAGGGGCTGGATTTGCGCGGTGGTTTGAAAACCTCGGCCAAACTGGAACAGGCCCGGGCGTTGCTGCGTGCAGAGGTGCCTTTTTATGAGAAGGACCGCTTCTTTGCGCCGGACATCAACGCGGCCAGTGAGCTGTTGGCGAGTCGGTGTCTGAACGAGCTGGTCACGGCGCAGTTGTTGCCGAGCCTGTAAMTALNLIPGQLSLAQLRDIYQQPVTLSLDASASAQIEASVACVEQILAENRTAYGINTGFGLLASTRIASEDLENLQRSLVLSHAAGVGEPISDALVRLIMVLKVNSLSRGFSGIRRQVIDALIALINAEVYPHIPLKGSVGASGDLAPLAHMSLVLLGEGKARYKGEWLPAVDALKVAGLAPLTLAAKEGLALLNGTQVSTAFALRGLFEGEDLFAAALALGSLTVEAVLGSRSPFDARIHAARGQKGQIDAAAAYRDLLGERSEVSDSHQNCDKVQDPYSLRCQPQVMGACLTQFRQAAEVLVIEANAVSDNPLVFAAEGDVISGGNFHAEPVAMAADNMALAIAEIGSLSERRISLMMDKHMSQLPPFLVANGGVNSGFMIAQVTAAALASENKALSHPHSVDSLPTSANQEDHVSMAPAAGKRLWEMAENTRGILAVEWLAACQGLDLRGGLKTSAKLEQARALLRAEVPFYEKDRFFAPDINAASELLASRCLNELVTAQLLPSLPGPT0020230_2420DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020230-hutH-K01745NANA
D1-35_032631203hutICOG1228ImidazolonepropionaseATGAAAACCCTCTGGCAAAACTGCCACGCCGCCACCATGGCCCAGGGCGTCTACTCGATTATCGAAGACGCCGCCATTGTCACCCAAGGCGAGCACATCCAATGGATCGGCCCCCGTGCCGAATTGCCGGTGGGCGACTACCCGGCAGTCAACGACCTGAAGGGCGCCTGGGTCACCCCGGGCCTGATCGATTGCCACACCCACGCGGTGTTCGGCGGCAACCGCAGCGGTGAATTCGAACAGCGCCTGCAAGGCGTCAGCTACGCCGACATCGCCGCGGCCGGCGGTGGCATCGCCAGCACCGTGCGCGCCACCCGCGCCGCCAGCGAGGACGAGCTGTTCGCCAGCGCCGCGAAACGCCTGAAAAGCCTGATGCGCGACGGCGTGACCACGGTGGAAGTCAAGTCCGGCTACGGCCTCGACCTGCCCAGCGAACGCAAGATGTTGCGGGTCATCCGCCGCCTCGGCGCCGAACTGCCGGTCAGTGTGCGCAGCACCTGCCTGGCGGCCCACGCCTTGCCGCCGGAATACAAGGACCGCGCCGACGACTACATCGAACACATCTGCGCCGAAATGCTCCCGGCGTTGGCCGCCGAGGGGCTGGTGGACGCGGTGGATGCGTTCTGCGAGTACCTGGCGTTTTCTCCAGAGCAGGTCGAACGGGTGTTCTTGACCGCGCAGCGATTGGACCTGCCGGTAAAGCTGCACGCCGAGCAACTGTCGTCGTTGCATGGTTCCAGCCTGGCGGCGCGGTATCAGGCGCTGTCGGCCGATCACCTGGAATTCATGACCGAGGATGACGCCAAGGCCATGGCCGAGTCGGGCACCGTAGCGGTGCTGCTGCCGGGGGCATTTTATTTCCTGCGAGAAACCCAGTTGCCGCCCATGGATGCCCTGCGCAAGCACGGCGTGAAAATCGCCGTCGCCAGTGACCTCAACCCCGGCACCTCGCCCGCGCTGTCGTTGCGCCTGATGTTGAACATGGCCTGCACCTGCCTGCGCCTGACCCCGGAAGAAGCACTGGCGGGAGCAACGATTCATGCCGCCCAGGCCCTGGGCATGGCTCAGACCCACGGCTCGCTGGAAGCCGGCAAGGTGGCGGATTTTGTCGCCTGGCACATCGATCGCCCGGCCGATCTGTCGTACTGGCTCGGCGGCGATCTGGAAAAACGCGTCGTGCGCCACGGCGTGGAAATCGATTGAMKTLWQNCHAATMAQGVYSIIEDAAIVTQGEHIQWIGPRAELPVGDYPAVNDLKGAWVTPGLIDCHTHAVFGGNRSGEFEQRLQGVSYADIAAAGGGIASTVRATRAASEDELFASAAKRLKSLMRDGVTTVEVKSGYGLDLPSERKMLRVIRRLGAELPVSVRSTCLAAHALPPEYKDRADDYIEHICAEMLPALAAEGLVDAVDAFCEYLAFSPEQVERVFLTAQRLDLPVKLHAEQLSSLHGSSLAARYQALSADHLEFMTEDDAKAMAESGTVAVLLPGAFYFLRETQLPPMDALRKHGVKIAVASDLNPGTSPALSLRLMLNMACTCLRLTPEEALAGATIHAAQALGMAQTHGSLEAGKVADFVAWHIDRPADLSYWLGGDLEKRVVRHGVEIDPGPT0020235_2286DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020235-hutI-K01468NANA
D1-35_03264804hypothetical proteinGTGGAGAAGGTCCTGAATTTCAAGCAAGGGCGCGTGCCGCTGTTGATCAGCATGCCTCACGCCGGCCTGCGCCTGACGCCGGCGGTAGAGGCCGGGTTGATCCCCGAGGCCCAGAGCCTGCCGGACACCGATTGGCATATCCCCCGGCTGTATGATTTCGCCGAAGAGCTGGGCGCCAGCACCCTGGCGGCCGAATATTCCCGGTTCGTCGTCGACCTGAACCGTCCTTCTGATGACAAACCGATGTACGTCGGAGCCACCACTGGCCTGTACCCGGCGACGCTGTTCGATGGCGTGCCGTTGTTTCGCGAAGGCCTGGCGCCGTCCGCCGAGGAGCGGGCCACGTACCTGCAGCAGATCTGGATGCCCTACCATCAGGCCCTGCAACAGGAACTGGCGCGGCTCAAGGCCGAGTTCGGCTATGCCTTGCTGTTCGATGCCCACTCGATCCGTTCGGTGATCCCGCACCTGTTCGACGGCAAGCTGCCGGACTTCAATCTCGGCACGTTCAACGGCGCCAGTTGCGACCCGGCCCTGGCCAGCCAGCTCGAAGCCATTTGCGCCCGCCACGACCAGTTCACCCATGTGCTCAACGGACGCTTCAAGGGCGGACACATCACCCGGCACTACGGCAACCCGGCCGAGGACATTCACGCGGTGCAACTGGAACTGTGCCAGAGCACCTACATGGAAGAGTTCGAGCCGTTCAACTATCGCCCGGACCTGGCGGCGCCGACCCAGGTGGTACTCAGGGAGTTGCTGGAAGGTTTCCTGGCGTGGGGGCGGCAGGCTTACCAGGAATAGMEKVLNFKQGRVPLLISMPHAGLRLTPAVEAGLIPEAQSLPDTDWHIPRLYDFAEELGASTLAAEYSRFVVDLNRPSDDKPMYVGATTGLYPATLFDGVPLFREGLAPSAEERATYLQQIWMPYHQALQQELARLKAEFGYALLFDAHSIRSVIPHLFDGKLPDFNLGTFNGASCDPALASQLEAICARHDQFTHVLNGRFKGGHITRHYGNPAEDIHAVQLELCQSTYMEEFEPFNYRPDLAAPTQVVLRELLEGFLAWGRQAYQENANANANANA
D1-35_03265948hypothetical proteinATGAAAAGACCGTTCAAACGCTGTCTGTCGATCCTCTGCGGTACCGTCCTGTTGAGCTCCGGCGCGATGGCCGTCGAGGCAACGTCCTGCCAGACCGTGCGCATGGGCGTGGTCAACTGGACCGACGTGATCGCCACCAGTGGCATGGCTGACGTGCTGCTCACTGGCCTGGGCTACGAAAGCAAGCAGACCAGCGCCGTGCAGCAGATCATCTTCGCCGGCATCCGCGACAAGCGGCTCGACATTTTCCTCGGCTACTGGAAACCGGCGATGGACAAGAACATCGCCCCGTTCCTGGCGGCCAATCAAGTGAAAGTACTGGACAAACCAAGCCTGGCCGACGCCCAGGCGACCCTGGCCGTTCCCGACTACGTGGCGGCGGCGGGGCTCAAGACCTTCGCCGACATCGCCCGGTTCAAGGACCAGTTGGGGGCGAAAATCTACGGCATCGAGCCGGGCAGCGGCGCCAATACCACCATCAAGACCATGATCGAGACCAACCACTTCGGTCTCAAGGATTTCAAGCTGATCGAGTCCGGCGAGGCCGGGATGCTGGCGGCGGTGCAGCGGGCAGTCAATCGCAAGGAATTCGTGGTCTTTGTCGGCTGGACCCCACACCCGATGAACATCAACATGAACATCGCTTACCTGACCGGCAGCGAAGATGTCTATGGCCCCAACGAAGGCGCCGCGACGGTCTCCATCGTCACCGCGCCGGACTACGCACAGCGGTGTCCGAACGTGCAGCGGCTGCTGGAGAACCTCACGTTTACCGCCGCCCAGGAGAGCCAGTTGATGGTGCCGATCATGGAACGCAAGATGCCCCAGGACGTCGCGCGGCAATGGTTGCGCGAGCACCCGGAGGACCTGCAGCGCTGGCTCGCCGGCGTGACCAGCTTCGATGGCAAGGATGGCATCGCGGCGGTGCAGGCCAGTCTCAAGAACTGAMKRPFKRCLSILCGTVLLSSGAMAVEATSCQTVRMGVVNWTDVIATSGMADVLLTGLGYESKQTSAVQQIIFAGIRDKRLDIFLGYWKPAMDKNIAPFLAANQVKVLDKPSLADAQATLAVPDYVAAAGLKTFADIARFKDQLGAKIYGIEPGSGANTTIKTMIETNHFGLKDFKLIESGEAGMLAAVQRAVNRKEFVVFVGWTPHPMNINMNIAYLTGSEDVYGPNEGAATVSIVTAPDYAQRCPNVQRLLENLTFTAAQESQLMVPIMERKMPQDVARQWLREHPEDLQRWLAGVTSFDGKDGIAAVQASLKNPGPT0013640_2293DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013640-gbuC|proX-K02002NANA
D1-35_03266912nlhH_2COG0657Carboxylesterase NlhHATGGCCTACCCACTCTCCCAGGCAATGTCCGCCTTCATCGACAAGACCCTGAGCTTCACCAGCCCGGATGACAGCCTCGCCGGCTCGCGCCAGGCTTACAGCCGGATGTGCCGGGCATTCACCCCGCCGCGCCCATCAACGCTTGCGGTCGAGGATCTGCACCTGGCTGGCGTGGCTGTCCGGGCCTATCACCTGCGTACTTCGCCGCCGCTCGCCGGGTGGCCGTGCATTCTTTACCTGCACGGTGGCGGTTGGGTGGTAGGGGACCTGGATTCCCATGATTTCATTTGCATGGAACTGGCCGCGGCCCTCGGCGTGCTGGTGGTGGCGGTGGATTACCGGCTTGCCCCCGAGCATCCGTTTCCCGCCGGGTTCGAAGATTGCCTTACTGTGTGGCGCCACCTGGGGGACCTGCCGTTTGCCATCAACCCTCGGCGCCGGGCCGTGGTGGGCGACAGCGCCGGCGGCAACCTCGCCGCTGCGGTGTGCCTGGCCTTGCGCGATGCAGGGCAGCCTCTGCCCCGGTCCCAGGTGCTGATCTACCCGGCGCTTGGTGGTCCCGAGCATTTACCGTCGCGCACCGAATGTTTCGACGCGCCGCTCTTGAGCCGCTGTGACCTGCAACGCTATGACGCGTGGTACCTGCGTGGCACCCAGCCCTCAGCCTACGCCGCGCCATTGCTCGCCGATGATTTCAGCGGCCTGCCCGCGACGCTGGTTGCCGTGGCGCAATGGGATCCGCTGCGCGACGACGGCGTCCTCTATAACGAGCGCCTGAGCGCCGCAGGGGTAGCCTCTGAGTTGTACAACGGCGAGGGTCTGGTCCACGGTTGCCTGCGCGCGCGGAGCCAGGTGCCGGAGGTCGATCAGCTATATCGCAGGCTACTGGCCTACCTGGCCGACACGCTTTGAMAYPLSQAMSAFIDKTLSFTSPDDSLAGSRQAYSRMCRAFTPPRPSTLAVEDLHLAGVAVRAYHLRTSPPLAGWPCILYLHGGGWVVGDLDSHDFICMELAAALGVLVVAVDYRLAPEHPFPAGFEDCLTVWRHLGDLPFAINPRRRAVVGDSAGGNLAAAVCLALRDAGQPLPRSQVLIYPALGGPEHLPSRTECFDAPLLSRCDLQRYDAWYLRGTQPSAYAAPLLADDFSGLPATLVAVAQWDPLRDDGVLYNERLSAAGVASELYNGEGLVHGCLRARSQVPEVDQLYRRLLAYLADTLNANANANANA
D1-35_03267972pip_2Proline iminopeptidaseATGCAGACTTTGTACCCGCAGATCAAACCCCATGCCCGGCACGATCTGGCTGTCGATGACACCCACACGCTCTATGTCGATGAAAGCGGCTCGCCGGAAGGCCTGCCTGTCGTGTTCATCCACGGTGGCCCGGGGGCGGGTTGCGATGCGCAAAGCCGTCGCTACTTCGATCCGAATCTGTACCGCATCGTTACGTTCGACCAGCGCGGCTGCGGCCGTTCCACGCCTCACGCGAGTCTGGAAAACAACACCACCTGGGACCTCGTCGAAGACCTGGAGCGCATCCGCAAGCACCTGGGCATCGAAAAGTGGGTGCTGTTCGGCGGCTCCTGGGGCTCGACCCTGGCCCTGGCCTACGCCCAGACTCATCCGGAACGGGTACATGGTCTGATCTTGCGCGGGATCTTTCTCTGCCGTCCGCAGGAAATCGAGTGGTTCTACCAGGCCGGGGCCAGTCGTCTGTTTCCCGACTACTGGCAGGACTACATCGCACCGATCCCCCTGGATGAACGCGATGACCTGCTCAGCGCTTTCCACAAACGCTTGATCGGCAACGACCAGATCGCCCAGATGCACGCGGCCAAGGCCTGGTCCACCTGGGAGGGGCGCACCGCGACCCTGCGCCCGAACCCGTTGGTGGTCGATCGTTTCTCCGAGCCGCAGCGAGCGCTGTCGATCGCCCGGATCGAATGCCACTACTTCACCAACAACGCCTTTCTCGAACCCAATCAGTTGATTCGCGACATGGGCAAGATCGCCCATTTGCCGGGCGTCATCGTGCATGGTCGCTACGACGTGATCTGCCCGTTGGACAATGCCTGGGAGCTGCACCAGAACTGGCCCAACAGCGAGCTGCAGGTGATCCGTGACGCCGGCCATGCCGCTTCGGAACCAGGGATTACCGACGCGTTGGTGCGCGCCGCCGCGCAAATGGCCCGCCGCCTGCTCGACCTGCCCCCCGAAGAAGCATGAMQTLYPQIKPHARHDLAVDDTHTLYVDESGSPEGLPVVFIHGGPGAGCDAQSRRYFDPNLYRIVTFDQRGCGRSTPHASLENNTTWDLVEDLERIRKHLGIEKWVLFGGSWGSTLALAYAQTHPERVHGLILRGIFLCRPQEIEWFYQAGASRLFPDYWQDYIAPIPLDERDDLLSAFHKRLIGNDQIAQMHAAKAWSTWEGRTATLRPNPLVVDRFSEPQRALSIARIECHYFTNNAFLEPNQLIRDMGKIAHLPGVIVHGRYDVICPLDNAWELHQNWPNSELQVIRDAGHAASEPGITDALVRAAAQMARRLLDLPPEEANANANANANA
D1-35_03268438dtdCOG1490D-aminoacyl-tRNA deacylaseATGAAGGGGTTGCTGCAGCGGGTTCGCGGCGCCCGGGTCGAAGTCGCGGGCGAGATCGTCGGTGCGGTGGACCATGGCTTGCTGGTGCTGGTAGCCGTCGAGCCTGGGGATACCCGGGCCAGTGCCGACAAACTCCTGCACAAGCTGCTTAACTATCGGGTGTTCAGCGACACCGACGGCAAGATGAACCTGTCCCTGGCGGACGTCGCGGGTGGTTTGCTGCTGGTCTCGCAGTTCACCTTGGCGGCGGACACCAAAAGCGGTCTGCGCCCGAGCTTTTCAACCGCCGCGCCGCCCGCCCTTGGCGAAGAATTGTTCAACTATCTCCTGACCCAGGCGAAACAGGTGCATGGCACCGTGGCATCAGGTAGATTCGGCGCCGACATGCAAGTGCATCTGGTCAATGATGGCCCGGTAACCTTTCTGTTACAGGTCTGAMKGLLQRVRGARVEVAGEIVGAVDHGLLVLVAVEPGDTRASADKLLHKLLNYRVFSDTDGKMNLSLADVAGGLLLVSQFTLAADTKSGLRPSFSTAAPPALGEELFNYLLTQAKQVHGTVASGRFGADMQVHLVNDGPVTFLLQVNANANANANA
D1-35_032691773mdoGCOG3131Glucans biosynthesis protein GGTGATTGTTAGTCCCTGTAATGCACCAAAAATGACTGCCAAACGGTTTAGAAACGCTCTGGTAGCGGGCTCGGCCCTGCTGTGCCTGTTTGGCGCGGGCCAACTGTGGGCATTCAGCCTGGATGATGTATCGGCGAAGGCACAAGAACTGGCCGGGCAGAAATTCGAAGCCCCGCGCAGCAACCTGCCGAACGAATTCCGCGAAATGAAATTCGCCGATTATCAGAAAATCCGTTTCCGCACCGAAAAAGCTGAATGGGCCGACCAGAAGACGCCGTTCCGGCTGTCCTTCTATCACCAGGGCATGCATTTCGACACACCGGTGAAGATCAACGAAATCACCGCGACCACCGTCGATGAGATCAAATACGACCCGACACGCTTCGATTTCGGTGATGTGAAGTTCGATCCGAAGGCCACCGAACAATTGGGCTACGCGGGTTTCCGCGTGTTGTACCCGATCAACAAAGCTGACAAGCAAGACGAAATCATGACCATGCTCGGCGCCAGCTACTTCCGCGTCATCGGCAAGGGCCAGGTTTATGGCTTGTCCGCTCGCGGCATGGCGATCGATACCGCATTGCCATCGGGTGAAGAGTTCCCGCGTTTTCGTGAGTTCTGGATCCAGCGTCCGAAGCCGACCGACAAGCACCTGGTGATCTTCGCCTTGCTCGATTCGCCACGGGCTACCGGCGCTTATCGCCTGACCGTGCGCCCGGGCACCGACACCGTCGTTGACGTCAAATCGCGTGTTTTCCTGCGTGATCGCGTCAACAAGCTGGGCATCGCCCCGTTGACCAGCATGTTCCTGTTCGGCGCGAATCAGCCGTCCAAGGTCCTGAACTACCGTCGCGAGCTCCACGACTCCAGCGGCCTGTCCATCCATGCCGGCAACGGCGAGTGGATCTGGCGTCCGCTGAACAACCCGAAACACCTGGCGGTGAGCAACTTCTCGGTAGAAAACCCGCGTGGTTTCGGCCTGCTGCAACGTGGTCGTGACTTCAGCCACTACGAAGACCTGGACGACCGCTACGAAAAACGTCCAAGCGCCTGGATCGAACCGAAAGGCGACTGGGGCAAGGGTACCGTAGACCTCGTCGAGATCCCGACCGCCGACGAAACCAACGACAACATCGTTGCGTTCTGGAGCCCGGAAAAACTGCCTGAGCCAGGCCAGCCACTGGACTTCGCCTATCGCCTGCACTGGACACTTGATGAAGCCAGCCTGCACTCGCCAGACAGCGCCTGGGTCAAGCAGACCCTGCGTTCCACGGGTGACGTGAAGCAGTCCAACCTGATTCGCCAGCCGGATGGCAGCGTGGCCTACCTGGTCGATTTCGAAGGCCCGTCCCTGCAAGCCCTGCCTGAAGACGCCGAGGTGCGTAGCCAGGTGAGCGTGGGTGACAACGGCGAAATCGTCGAGAACAGCGTGCGCTACAACCCTGAAACCAAGGGCTGGCGCCTGACGTTGCGCCTGAAGATCAAGGATCCGGGCAAGGCGACCGAGATGCGTGCCGCTTTGGTCCGGCCGCTGGTTCCTGTAGAGCTGCCGGCTACCTCGCATTCCGTGACCACGCTGGCCAAGGCCGACAAGGTCGCCAAGCAGCAGAGCGAGAAAGAGAAAGCCAACGAACAGGCCGGCGAGCAGCAGGAAGCCAAGGCCGTCAAGGCGTCCACCGCCGCCGCCGAGCCGACCCCAACCCCGCAGGAACCGGAGCAGACTGAGCAAGTCCTGACCGAGACCTGGAGCTATCAGTTGCCTGCCGATGAGTAAMIVSPCNAPKMTAKRFRNALVAGSALLCLFGAGQLWAFSLDDVSAKAQELAGQKFEAPRSNLPNEFREMKFADYQKIRFRTEKAEWADQKTPFRLSFYHQGMHFDTPVKINEITATTVDEIKYDPTRFDFGDVKFDPKATEQLGYAGFRVLYPINKADKQDEIMTMLGASYFRVIGKGQVYGLSARGMAIDTALPSGEEFPRFREFWIQRPKPTDKHLVIFALLDSPRATGAYRLTVRPGTDTVVDVKSRVFLRDRVNKLGIAPLTSMFLFGANQPSKVLNYRRELHDSSGLSIHAGNGEWIWRPLNNPKHLAVSNFSVENPRGFGLLQRGRDFSHYEDLDDRYEKRPSAWIEPKGDWGKGTVDLVEIPTADETNDNIVAFWSPEKLPEPGQPLDFAYRLHWTLDEASLHSPDSAWVKQTLRSTGDVKQSNLIRQPDGSVAYLVDFEGPSLQALPEDAEVRSQVSVGDNGEIVENSVRYNPETKGWRLTLRLKIKDPGKATEMRAALVRPLVPVELPATSHSVTTLAKADKVAKQQSEKEKANEQAGEQQEAKAVKASTAAAEPTPTPQEPEQTEQVLTETWSYQLPADEPGPT0013325_41DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GLYCAN_BIOSYNTHESIS,PGPT0013325-mdoG-K03670NANA
D1-35_032702571opgHCOG2943Glucans biosynthesis glucosyltransferase HATGAGTAATACTTCCGTACAGCCAGTGTCTCTGAGCGAGTATCTGGCCCATTTGCCGATGACCGACGAGCAGCGCGCCGAACTGGCGGGCTGCAAGTCCTTCAGCGAATTGCATGAACGCCTGGCTTCGTCGACGTTCGATGCGCCCGACGAGGCTGCCCAAGCCTCGGTGGGCCGTCGCCTGGCGCTCAGCACTGCCGAGGAACTCGAGGACGCCGAAATGCTGGCCCTCGATTCCAGTGGCCGTGTATGCCTGAAGGCTACTCCGCCGATTCGCCGGACCAAGGTCGTGCCGGAGCCATGGCGCACCAATATCCTGGTACGCGCCTGGCGCCGCCTGACCGGTCGCACCAACCCGCCGAAGCCGCCCAAGGACGAGCGCGTCTTGCCGCATGCGCGCTGGCGTACCGTGGGTTCGATCCGCCGCTACATCCTGTTGATCCTGATGCTCGGCCAGACCATCGTGGCCGGCTGGTACATGAAAGGAATCATGCCGTACCAGGGCTGGTCGCTGGTGGACCTGGATGAAGTGCTGCATCAGCCGCTGCTGCAGACGGCCACGCAAGTGCTGCCATACGCGCTGCAAACCAGCATCCTGATCCTGTTCGGGATCCTGTTCTGCTGGGTCTCGGCCGGTTTCTGGACCGCGCTGATGGGATTCCTCGAACTGCTCACCGGGCATGACAAGTACCGCATTTCCGGTGCCAGTGCCGGTAACGAGCCGATTCCCAAGGATGCCCGCACCGCCCTGGTGATGCCGATCTGTAACGAGGACGTGCCACGGGTATTCGCCGGTCTGCGCGCCACGTTCGAGTCGGTTGCGGCCACGGGTGACCTGGACCGCTTCGACTTCTTCGTGCTCAGCGACAGTAACGAAACCGACATCTGCGTCGCCGAGCAGCAGGCCTGGCTGGATGTCTGCCGTGAAACCGGGGGCTTTGGCAAGATCTTCTATCGCCGCCGCCGTCGCCGCGTGAAACGCAAGAGCGGCAACCTCGACGACTTCTGCCGTCGCTGGGGCAGCGACTACAAGTACATGGTCGTGCTCGACGCCGACAGCGTCATGAGCGGCGAATGCCTGACCAGCCTGGTGCGCCTGATGGAAGCCACGCCGGACGCTGGCATCATCCAGACCGCGCCACGTGCCTCGGGCATGGACACGCTGTATGCGCGCATGCAGCAGTTCGCCACACGGGTCTACGGTCCGCTGTTCACCGCCGGCCTGCACTTCTGGCAGTTGGGCGAGTCGCACTACTGGGGCCACAACGCGATCATCCGCATGAAGCCGTTTATCGACCACTGCGCCCTGGCGCCGTTGCCCGGTAAAGGTGCCTTCTCCGGTGCGATCCTCTCCCACGACTTTGTCGAAGCCGCGCTGATGCGCCGTGCCGGCTGGGGCGTGTGGATTGCCTATGACCTGCCGGGCAGCTACGAAGAGCTGCCACCGAACCTGCTGGACGAACTCAAGCGTGACCGTCGCTGGTGCCACGGCAACCTGATGAACTTCCGGCTGTTCCTGGTCAAGGGCATGCACCCGGTGCACCGTGCGGTGTTCCTGACCGGCGTGATGTCCTACCTGTCGGCACCGCTGTGGTTCTTCTTCCTGGTGCTGTCCACCGCGCTGCTGGCGGTGAACACGCTGATGGAGCCGCAGTACTTCCTCGAGCCGCGCCAGTTGTATCCGCTGTGGCCACAATGGCATCCGGAAAAAGCCATCGCGCTGTTCTCGACCACCATCGTGCTGCTGTTCCTGCCCAAGCTATTGAGCATCGTGCTGATCTGGGCGAAAGGCGCGAAGGAGTTCGGCGGCAAGTTCAAGGTCACGATGTCGATGCTGCTGGAAATGCTGTTCTCCATGCTGCTGGCGCCGGTGCGCATGATCTTCCACACCCGTTTCGTGCTGGCCGCCTTCCTGGGCTGGGCCGCGACCTGGAACTCGCCCAAGCGTGACGATGACTCCACGCCTTGGAGCGAAGCCATCAAGCGCCACGGCCCGCAGACCCTGCTGGGCTTCTTCTGGGCCTTGCTGGTGATCTGGCTGAACCCGAGCTTCCTGTGGTGGCTCGTGCCGATTGTCGGCTCGCTGATGTTGTCGATCCCGGTTTCGGTGATCTCCAGCCGCGTGGGCCTGGGCTTGAAGTCCCGTGATGAAAGCCTGTTCCTGATTCCCGAGGAATACGCGCCGCCACAGGAACTGCTGTCGACTGACCAGTACACCCATGAAAACCGTTGGCACGCGCTGAACGACGGCTTCATCCGGGCGGTGGTCGATCCGCGACAGAACGCCCTGGCGTACGCATTGGCTACCTCCCGTCACGGCAAGGCCGAGCCGATCGAATGGCTGCGCGTCGAGCGCGTCCGTCATGCCTTGAAGGTAGGCCCGGCCGGGCTCAACAACGCCGAGCGATTGGCGCTGCTGAGCGATCCGGTGGCGCTGTCCCGTCTGCATGAGCAGGTCTGGAGCGAGGCGCATCCCGAGTGGCTGGCGGCGTGGCGTGAATCGGTCAAGGCCGATCCGCATGCACCGTTGCTGCCGCTTCAACCGGTGGGCGCACAGCCTCAACTGGCCTGAMSNTSVQPVSLSEYLAHLPMTDEQRAELAGCKSFSELHERLASSTFDAPDEAAQASVGRRLALSTAEELEDAEMLALDSSGRVCLKATPPIRRTKVVPEPWRTNILVRAWRRLTGRTNPPKPPKDERVLPHARWRTVGSIRRYILLILMLGQTIVAGWYMKGIMPYQGWSLVDLDEVLHQPLLQTATQVLPYALQTSILILFGILFCWVSAGFWTALMGFLELLTGHDKYRISGASAGNEPIPKDARTALVMPICNEDVPRVFAGLRATFESVAATGDLDRFDFFVLSDSNETDICVAEQQAWLDVCRETGGFGKIFYRRRRRRVKRKSGNLDDFCRRWGSDYKYMVVLDADSVMSGECLTSLVRLMEATPDAGIIQTAPRASGMDTLYARMQQFATRVYGPLFTAGLHFWQLGESHYWGHNAIIRMKPFIDHCALAPLPGKGAFSGAILSHDFVEAALMRRAGWGVWIAYDLPGSYEELPPNLLDELKRDRRWCHGNLMNFRLFLVKGMHPVHRAVFLTGVMSYLSAPLWFFFLVLSTALLAVNTLMEPQYFLEPRQLYPLWPQWHPEKAIALFSTTIVLLFLPKLLSIVLIWAKGAKEFGGKFKVTMSMLLEMLFSMLLAPVRMIFHTRFVLAAFLGWAATWNSPKRDDDSTPWSEAIKRHGPQTLLGFFWALLVIWLNPSFLWWLVPIVGSLMLSIPVSVISSRVGLGLKSRDESLFLIPEEYAPPQELLSTDQYTHENRWHALNDGFIRAVVDPRQNALAYALATSRHGKAEPIEWLRVERVRHALKVGPAGLNNAERLALLSDPVALSRLHEQVWSEAHPEWLAAWRESVKADPHAPLLPLQPVGAQPQLAPGPT0013320_133DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013320-mdoH-K03669NANA
D1-35_03273168hypothetical proteinATGCCGAGCCTAGGCGAGGCACCGAGTGGTGGGGCAAAAGCGTTTTGCTTACTTTTGCGCTTCTCAAAAGTGAGCCGCCGTAAGGGCGGAACCCTAAGTGGCCGTTACCGCAGCAACGGATATATCCACAAATCCGAAGTGAGCTGCCCGAAGGGCATCAAACCCTGAMPSLGEAPSGGAKAFCLLLRFSKVSRRKGGTLSGRYRSNGYIHKSEVSCPKGIKPNANANANANA
D1-35_032741917mcpQ_2COG0840Methyl-accepting chemotaxis protein McpQATGTTCCGGTGGCTTGCCCAGGGTCTGGGAAACGTAAGCGTTAATCGCAAACTTGGCTTCGGCTTCGGCCTGGTGCTGTTCCTCACCCTGATGATCGCGTTCACCGGCTGGTCCGGCCTGGGCAATGTCATCAGCCGGGGCGACAAGCTGGGGTTCATTGCCAGCCTGAACGACCTGAGCAAGGACCTTGACCTCGCCAGCATCGACTACAACACCACGCGCGGCGAAAAAGGCCCGCAACAGGTCAACGACCTGCTCGGCAAGCTCGAGGCCGGGTTGAAGACAGCTCGCGAGATGATCGAACAGCCTGACGACGTGGCGTTGATCGACAAGCAACTGGCCGCCGTTGCCGAATACAAAAGCGCCTTCGCCCAGATGACCAGCGCCACCGTCAGCCGCGAAGATGCCCGCGGCAAGCTGGGCGCCAGTGCCGATAGCACCGTAGCCCGCGTCGCCGAAGTGGAGAAAGCGCTGCTGCAGGGCGGCGACATCACCCAGTTCAACAGCGTGGTGACCTTAAGCAAGGCGATCCAACAGGCACGCTATCAGGTTCGCGGTTACACCTACAGCGGCAAAAGCGAGGCCCAACAGCCGGCCATCGATGCAATTACCGATGTCCTGAAACTGCTGGCCCGCTTGCCAGCCCAGTTGCCTGAGGAACACGCCGACAGGCTCCAGCAGGCCAGCGACTCGATGAACATCTACCGGGCGGCAGTCAGCCAGTTCCGTGACTCCCAACTTGATAACGGTGCCGCTCTGCAGCGTATGAGCGAGCAAGGCCAGGTCCTGATCGACTCCAGCCAGAAGCTCACCGCGTCCCAGACGGCCGTGCGCGACCACGACACCGCCCAGGCCAAGGCCGTTCTGATCGCAGCCGCCGCGCTGGCGCTGCTGTTCGGTGTGATCGCCGCCTTGCTCATCACTCGGCAGATCGTCGGCCCGCTGGATGAGACCCTGAAGGTGGCAGAACGCGTCGCCGCGGGCGATCTTACCCACAACCTGACGTCCGAACGCCGCGACGAACTCGGTCAATTGCAACGCGCCATGCAACGCATGACCGTTGGCTTGCGGCAGTTGATCGGCGGCATCGGTGAAGGCGTTACCCAGATCGCCAGCGCTGCTGAACAGCTCTCGGCCGTGACCGAGCAGACCAGCGCCGGGGTCAATAGCCAAAAGATCGAGACCGACCAGGTCGCCACTGCCATGCACGAAATGACCGCCACCGTGCAGGAAGTGGCGCGCAACGCCGAGGAAGCCTCCGAGGCCGCCGTCGCCGCCGATCAACAGGCCCGCGAAGGTGACAAGGTCGTCGGCGAAGCCATCGCCCAGATCGAGCGCCTGGCGCGAGAAGTGGGCAACTCTACCGCCGCCATGGGCGATCTGAAGCGCGAAAGCGACAAGATCGGCAGCGTCCTGGACGTGATCAAGTCGGTGGCCCAGCAAACCAACCTGCTGGCCCTCAACGCGGCCATCGAGGCAGCCCGAGCCGGTGAAGCCGGGCGCGGCTTCGCCGTGGTGGCCGACGAAGTTCGCAGCCTGGCCCAGCGCACCCAGAAGTCCACCGAGGAAATCGAAGAACTGATCGTCGGCCTGCAAGCGGGTACCGAACAGGTCGCGACCATCATGGACAACAGCCGCAGCCTGACCGACAGCAGCGTCGAACTGACCCGCCGCGCCGGTGGCTCGCTGGAAAACATCACTCGCACGGTGTCGGCGATCCAGTCGATGAACCAGCAGATCGCAGCGGCGGCAGAGCAGCAGAGTGCGGTGGCCGAGGAGATCAACCGTAGCGTGCTGAATGTGCGGGATGTGTCAGAGCAGACGGCGTCGTCCAGTGAGGAAACGGCTGCCTCCAGTGCCGAACTGGCGCGGTTGGGGGTTCATTTGCAGACATTGGTGGGGCGGTTCAGGGTTTGAMFRWLAQGLGNVSVNRKLGFGFGLVLFLTLMIAFTGWSGLGNVISRGDKLGFIASLNDLSKDLDLASIDYNTTRGEKGPQQVNDLLGKLEAGLKTAREMIEQPDDVALIDKQLAAVAEYKSAFAQMTSATVSREDARGKLGASADSTVARVAEVEKALLQGGDITQFNSVVTLSKAIQQARYQVRGYTYSGKSEAQQPAIDAITDVLKLLARLPAQLPEEHADRLQQASDSMNIYRAAVSQFRDSQLDNGAALQRMSEQGQVLIDSSQKLTASQTAVRDHDTAQAKAVLIAAAALALLFGVIAALLITRQIVGPLDETLKVAERVAAGDLTHNLTSERRDELGQLQRAMQRMTVGLRQLIGGIGEGVTQIASAAEQLSAVTEQTSAGVNSQKIETDQVATAMHEMTATVQEVARNAEEASEAAVAADQQAREGDKVVGEAIAQIERLAREVGNSTAAMGDLKRESDKIGSVLDVIKSVAQQTNLLALNAAIEAARAGEAGRGFAVVADEVRSLAQRTQKSTEEIEELIVGLQAGTEQVATIMDNSRSLTDSSVELTRRAGGSLENITRTVSAIQSMNQQIAAAAEQQSAVAEEINRSVLNVRDVSEQTASSSEETAASSAELARLGVHLQTLVGRFRVPGPT0015710_10315DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_03275708hypothetical proteinGTGAACCTGCTGCTGCTTGAAGAGGCCGATTTCATCGAGCCGGACCGCGTCATCCTGAGCGATCGGCGCCTGACACACATGCAGGAAGTCCACCGCAGCGCCGTCGGCGACAGCCTGCGGGTCGGCCGTATCGGTGGCCTGATGGGCACGGCCCAGGTGTTGCGCCTGGAGGCTCGCGAAGCCGAACTGCAAGTGACCCTCGACCAGCCGCCGCCGGCCAAGTTGCCGCTGACCCTGGTGCTGGCATTGCCGCGTCCGAAGATGCTCCGGCGGGTATTCCAGACCGTCGCCACCATGGGCGTGCCGCGCGTGGTGCTGGTGAACAGTTATCGTGTGGAAAAGAGCTTTTGGCAGACGCCCTTCCTGGAGCCGGAGGCGATTCGCGAGCAACTTATTCTTGGTCTGGAGCAGGCTCGGGACAGCGTGCTGCCGGAAATCATCATTGAAAAACGCTTCAAGCCCTTCGTCGAAGATCGCCTGCCCGCCATCGTTGAAGGCACCCTCGGGCTGGTCGGCCACCCTGGCAACCACCCGCCCTGCCCGCGCGCGCTGACTGAACCGGTGACCTTGGCCATCGGCCCGGAAGGCGGCTGGATCCCCTACGAAATCGACCTGCTGGGCAAGGCCGGCCTGCAACCGGTGCAGCTCGGCGAACGGATCCTGCGGGTCGAGACCGCCGTCACGGCCCTGCTTGCACGGCTGTTCTAAMNLLLLEEADFIEPDRVILSDRRLTHMQEVHRSAVGDSLRVGRIGGLMGTAQVLRLEAREAELQVTLDQPPPAKLPLTLVLALPRPKMLRRVFQTVATMGVPRVVLVNSYRVEKSFWQTPFLEPEAIREQLILGLEQARDSVLPEIIIEKRFKPFVEDRLPAIVEGTLGLVGHPGNHPPCPRALTEPVTLAIGPEGGWIPYEIDLLGKAGLQPVQLGERILRVETAVTALLARLFNANANANANA
D1-35_03276798tatCCOG0805Sec-independent protein translocase protein TatCATGAGCGATATCCCTGAAAACGACCAGCCGATGCCGCTGGTATCGCACCTCACCGAGTTGCGCACCCGCCTGCTGCGCTGCGTCGCGGCGGTGTTCATCATCTTTGCCGGGCTGTTTGCCTTCACCCAGCAGATCTACACCTTCGTCTCCACGCCGCTGCGCGAGTACCTGCCGGTAGGCGCAACGATGATCGCCACCGATGTCTCGTCGCCGTTCCTGACGCCGTTGAAACTGACGATGATGGTCTCGCTGTTCCTGGCGATCCCGGTGATCCTGCATCAGATCTGGGGCTTCATCGCTCCGGGCCTGTACAAGCATGAAAAACGCATCGCCGTGCCGCTGCTGGTGTCGAGCATCCTGCTGTTCTACACCGGCATGGCCTTCGCCTACTTCTTCGTATTCCCGCTGATCTTCAAGTTCTTCGCCGCCGCCACCCCGGCAGGCGTGGAAATGATGACCGACATTACCAGCTACCTGGATTTCGTCATGACGCTGTTCTTCGCCTTTGGCGTGGCGTTCGAGATTCCCGTGGCGGTGGTATTGCTGGTGTGGATCGGCGTGGTCGACGTCGCCTACCTGAAGAAGATCCGTCCGTACGTGATCATCGGTTGCTTCGTGGTCGGCATGATCCTCACGCCGCCGGATATTTTCTCCCAGACCTTGCTGGCCGTGCCGATGTGGCTGCTGTTCGAGATCGGCATCCTGTTCGGCGGCCTGGTGCGCAAGCGCCGCGAAGAAGAACCCGAGGACCAGCCGGTCGACGACCACAACGACCAGCCGCCAGCGACCCAAGCGTGAMSDIPENDQPMPLVSHLTELRTRLLRCVAAVFIIFAGLFAFTQQIYTFVSTPLREYLPVGATMIATDVSSPFLTPLKLTMMVSLFLAIPVILHQIWGFIAPGLYKHEKRIAVPLLVSSILLFYTGMAFAYFFVFPLIFKFFAAATPAGVEMMTDITSYLDFVMTLFFAFGVAFEIPVAVVLLVWIGVVDVAYLKKIRPYVIIGCFVVGMILTPPDIFSQTLLAVPMWLLFEIGILFGGLVRKRREEEPEDQPVDDHNDQPPATQAPGPT0029295_2093DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TAT-TWIN-ARGININE_TRANSLOCATION_PATHWAYCE-TAT-TWIN-ARGININE_TRANSLOCATION_PROTEINS,PGPT0029295-tatC-K03118NANA
D1-35_03277423tatBSec-independent protein translocase protein TatBATGTTTGGGATCAGCTTCACTGAACTGCTGCTCGTCGGCCTCGTCGCCCTGTTGGTACTGGGGCCCGAACGCCTGCCGGGCGCTGCGCGCACCGCCGGTCTGTGGATCGGGCGCCTGAAGCGCAGCTTCAATGCGATCAAACAGGAAGTTGAACGTGAAATCGGTGCCGACGACATCCGTCGGCAACTGCACAACGAACACATCCTGTCCCTGGAACAGGAAGCACGGAAGATCTTCTCGCCGACCCAGCAGGAGCCGACGCCGGTCCAGCCCGTGGCCGAGCCGACGATTGCTCCCCAGGTCCCGGCGGTCGAATCTGCGCCAGTGGTGATTGAACCGGCCAAACCGGTTGATCCGGTTGATCCGGTTACTGCGACGCCCCCGACTCCCAACGACTCCACTCTGCCGCCGCGAGCCCCATGAMFGISFTELLLVGLVALLVLGPERLPGAARTAGLWIGRLKRSFNAIKQEVEREIGADDIRRQLHNEHILSLEQEARKIFSPTQQEPTPVQPVAEPTIAPQVPAVESAPVVIEPAKPVDPVDPVTATPPTPNDSTLPPRAPPGPT0014360_1911DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TAT-TWIN-ARGININE_TRANSLOCATION_PATHWAYCE-TAT-TWIN-ARGININE_TRANSLOCATION_PROTEINS,PGPT0014360-tatB-K03117NANA
D1-35_03278288tatASec-independent protein translocase protein TatAATGGGTATTTTTGACTGGAAACACTGGGTCGTCATTCTGGTGGTCGTGGTGCTGGTGTTCGGCACCAAGAAACTGAAAAACCTCGGCACTGATGTCGGTGAGTCGATCAAGGGCTTTCGCAAGGCCATGAACGATGACGAGAAACCGGCCGACCCACAGGCCAATCCGTCGCAACCGGTACAACCGGCCCAACCGGTACACCCACAGGCCACGCAGCCGGTGAATGCGCCGAACACCATCGACGTGCAGGCCCAGAAAGTCGAAGAGCCAATCCGCAAAGACTCGTGAMGIFDWKHWVVILVVVVLVFGTKKLKNLGTDVGESIKGFRKAMNDDEKPADPQANPSQPVQPAQPVHPQATQPVNAPNTIDVQAQKVEEPIRKDSPGPT0029290_978DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TAT-TWIN-ARGININE_TRANSLOCATION_PATHWAYCE-TAT-TWIN-ARGININE_TRANSLOCATION_PROTEINS,PGPT0029290-tatA-K03116NANA
D1-35_03279333hisECOG0140Phosphoribosyl-ATP pyrophosphataseATGAGTGACACCCTGACCCGCCTGGCCCAGGTGCTGGAAGAGCGCAAGGGCGCCGCGGCCGACAGCTCCTATGTCGCCAGCCTGTATCACAAGGGTTTGAACAAGATTCTGGAAAAGGTCGGCGAAGAGTCGGTCGAAACCATCATTGCCGCCAAGGACGCTGCCATCAGCGGCGACTGCAGCGACGTGATCTACGAGACCGCCGACCTGTGGTTCCACAGCCTCGTCATGCTCGCCCAACTGGGGCAGCATCCGCAGGCCGTACTGGATGAACTGGACCGTCGCTTCGGTCTGTCCGGGCACGTCGAGAAAGCCTCGCGCCCGTCCGCCTGAMSDTLTRLAQVLEERKGAAADSSYVASLYHKGLNKILEKVGEESVETIIAAKDAAISGDCSDVIYETADLWFHSLVMLAQLGQHPQAVLDELDRRFGLSGHVEKASRPSANANANANANA
D1-35_03280399hisIPhosphoribosyl-AMP cyclohydrolaseATGAAAAACTGGCAGGACGAGATCAAATGGGACGCCGACGGCCTGGTGCCGGCGATCGCCCAGGATCACAAGACCGGGCGTGTGCTGATGATGGCCTGGATGAACCGCGAGGCGCTGGCCCTGACCGCCGCCGAGAATCGCGCCATCTATTGGTCACGTTCCCGTGGCAAGCTGTGGCGCAAGGGTGAAGAGTCCGGGCACGTGCAGCACCTGCACGAGATGCGCCTGGATTGCGACGGCGACGTCATTATCCTGATGGTCGAACAGGTCGGTGAAATCGCCTGCCATACCGGCCGTCAAAGCTGCTTCTACCGTGTCTTCGAGAACGGCGACTGGAAAACCGTCGACCCGGTACTCAAGGACCCGCACGCCATCTATTCAGGACACAACCATGAGTGAMKNWQDEIKWDADGLVPAIAQDHKTGRVLMMAWMNREALALTAAENRAIYWSRSRGKLWRKGEESGHVQHLHEMRLDCDGDVIILMVEQVGEIACHTGRQSCFYRVFENGDWKTVDPVLKDPHAIYSGHNHEPGPT0007985_540DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0007985-ribA-K01497NANA
D1-35_032811605ubiBCOG0661putative protein kinase UbiBATGAAGCTGCTTGCCGTCCGCCGTCTGTTGCGCATCCAGCGCGTCGTGATCCGCTACCGCCTCGATGACCTGCTGTTCGCCCTGCCGCTGCCCTGGTTTCTCCTGGCACTGCGCTTTGTGCTGCCGTGGCGCTGGTTCCCCCGTCGAACGCTGGACTTGAGCCGCGGCGCACGCCTGCGCCTGGCCTTGCAGGACCTGGGGCCGATCTTCATCAAGTTCGGGCAGATCCTCTCGACCCGTCGCGACCTGTTGCCCGAAGACATCGCCGATGAGCTGATGCTGCTGCAGGATCGCGTGCCGCCCTTCGACTCGAAACTGTCGGTAGCGCTGATCGAGGCGCAGTTGGGCAAGAAGATCAGCGAAGTCTTCAGCCGTTTCGATGTCGAGCCGCTGGCTTCGGCGTCGGTCGCCCAGGTCCACGCCGCCCAGCTCAAGACGGGTGAAGAAGTGGTGGTCAAGGTGATCCGCCCGGGCCTCAAGCCGATCATTGCCCAGGACCTGGCCTGGCTGTTCATCCTTGCCCGCGCCGCCGAGCGGATGTCAGCCGATGCACGCCTGCTGCACCCGGTGGACGTGGTCCAGGACTATGAAAAAACCATCTTCGATGAGCTCGACCTGCTGCGCGAGGCCGCCAACGCCAGCCAGCTGCGGCGCAATTTCGAGGGCTCGCCGCTGCTGTACGTGCCGCAAGTCTATTGGGACTGGTGCCGGCCGAAAGTGCTGGTGATGGAGCGTATCTACGGGATCCAGGTGACCGACCTGGCAACCCTCGCCGACCAGCGCACCGACATGAAACTGCTTGCCGAGCGCGGCGTGGAGATTTTCTTCACCCAGGTGTTTCGCGACAGCTTCTTCCACGCCGACATGCACCCGGGCAACATCTTCGTCAGCACCGTGCAACCGTGGAGCCCGCAGTACATCGCCATCGATTGCGGCATCGTCGGCAGCCTCACCCCCGAGGACCAGGATTACCTGGCGCGCAACCTGTTCGCCTTCTTCAAGCGTGACTACCGCCGCGTCGCGCAGTTGCACATCGATTCGGGCTGGGTGCCGGCCGAGACCAAGCTCAACGAATTCGAAGCGGCGATCCGCACCGTGTGCGAACCGATCTTCGAAAAACCGTTAAAAGATATTTCATTCGGCCAGGTGCTGATGCGCCTGTTCCAGACTGCGCGCCGCTTCAACATGGAGGTCCAGCCGCAGTTGGTGTTGCTGCAAAAAACCCTGTTGAACATCGAAGGCCTCGGCCGCCAGCTGTACCCGGACCTGGATTTGTGGAACACCGCCCAGCCCTTCCTTGAACGCTGGATGCGCGAACGCGTCAGCCCGAAGACCTTGCTGGGCAACGTCCAGAGCCAGTTCGAGCAGATTCCGCACCTAGCCAACATGACCCGCGATCTGCTCGAACGCATGTCCCAGCCCCATGCCCATGATCCTGCTCCACCCTGGAAACAGCGGCGCGACGATTGGTTCCTGCGCCTGCTTGGCGCGGCCCACCTGGGTGGCGGCGCCGTGCTGGCCGCCGGTGGCCCGTTGAGCGAACTGGGCCATTGGCCCGCCGGGATCATGGTGGCCGTCGGTTTGTATCTGGTCGTTCGTCGATAGMKLLAVRRLLRIQRVVIRYRLDDLLFALPLPWFLLALRFVLPWRWFPRRTLDLSRGARLRLALQDLGPIFIKFGQILSTRRDLLPEDIADELMLLQDRVPPFDSKLSVALIEAQLGKKISEVFSRFDVEPLASASVAQVHAAQLKTGEEVVVKVIRPGLKPIIAQDLAWLFILARAAERMSADARLLHPVDVVQDYEKTIFDELDLLREAANASQLRRNFEGSPLLYVPQVYWDWCRPKVLVMERIYGIQVTDLATLADQRTDMKLLAERGVEIFFTQVFRDSFFHADMHPGNIFVSTVQPWSPQYIAIDCGIVGSLTPEDQDYLARNLFAFFKRDYRRVAQLHIDSGWVPAETKLNEFEAAIRTVCEPIFEKPLKDISFGQVLMRLFQTARRFNMEVQPQLVLLQKTLLNIEGLGRQLYPDLDLWNTAQPFLERWMRERVSPKTLLGNVQSQFEQIPHLANMTRDLLERMSQPHAHDPAPPWKQRRDDWFLRLLGAAHLGGGAVLAAGGPLSELGHWPAGIMVAVGLYLVVRRPGPT0009520_2101DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009520-ubiB|aarF-K03688NANA
D1-35_03282618ubiJCOG3165Ubiquinone biosynthesis accessory factor UbiJATGCTGCTCACCGGGCTGCTCGCCAGTGTCGAACTCGGTATCAACCGGGTCCTGCGCCTGGACAGCACGGCGCCGATGCGCCTGGCACACTTGAGCGGCAAGGTGATTGCCGTCGACTGCCGCAGCCCCGCGTTGCAGCTGTTCATCCTGCCCAGCGACGAAGGCCTGATGCTCGCCGCCCACTGGGAGGCCGAGGCCGACTGCACGCTGCGCGCGCCGGCATCGAGCCTGCTGGAGTTGGCGCTGAGCAAGAACAAGACGGCGGTGCTGCACAGCCCCGACGTCGAGCTCGACGGCGACAGCGGCGTGCTGCTGGAACTGGCGGCGATTCTCCAGGACCTGGAACTGGACTGGGAATACGAAGTGTCCCGCTGGATCGGTCCGGTCGCCACCCAATTGCTCAGTGGCCATCTGCGCAGCCGCTCCCGCTGGTACCGCCAGGGCTTCGCCAGCCTGGGACAGAATCTGAGTGAATACCTGGCCGAGGAATCGCGTACGCTCGTAGGCCAACGCGAAGCCCAGGCCCGTTTTGCCGAACTGGACCAGATCAAGCTCGATCTGGAACGTCTCGAGGCGCGTTTCGAGCGCCTTTCCCGATCCCTTGAACCCAAGCGATAAMLLTGLLASVELGINRVLRLDSTAPMRLAHLSGKVIAVDCRSPALQLFILPSDEGLMLAAHWEAEADCTLRAPASSLLELALSKNKTAVLHSPDVELDGDSGVLLELAAILQDLELDWEYEVSRWIGPVATQLLSGHLRSRSRWYRQGFASLGQNLSEYLAEESRTLVGQREAQARFAELDQIKLDLERLEARFERLSRSLEPKRPGPT0009560_697DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009560-ubiJ|yigP-K03690NANA
D1-35_03283771ubiECOG2226Ubiquinone/menaquinone biosynthesis C-methyltransferase UbiEATGACTGATCAGCGCAAAGGCAGCGATGCCGAACCCACCACACACTTCGGCTTCAAGAACGTGCCGGAAAGCCAGAAAGCGGAGAAAGTCGCCGAGGTTTTCCACTCGGTGGCCGCCAAGTACGACTTGATGAACGACCTGCTCTCGGGCGGCATGCATCGCCTCTGGAAGCGTTTCGCGATCGAGTTGTCGGGCGTGCGCAGCGGCAACCGCGTGCTGGACATTGCCGGCGGCACCGGTGACCTGACCAAGAAGTTCTCCCACATCGTCGGCCCCACCGGCCATGTGGTGCTCGCCGATATCAACGAATCCATGCTCAAGGTCGGTCGTGACCGCCTGCTCGACCTGGGCGTGGCCGGCAACGTCGAGTTCGTCCAGGCCGACGCCGAGAAGCTGCCGTTCCCCGACAACCATTTCGACTGCGTGACCATCGCCTTCGGCCTGCGCAACGTCACCCACAAGGAAGATGCCCTGCGCTCGATGTTGCGCGTGCTCAAGCCCGGTGGCCGGCTGTTGGTGCTGGAGTTTTCCAAGCCGACCAACGCGTTGATGTCCAAGGCTTATGACGCCTACTCGTTCGCCTTCATGCCGTTGATGGGCAAGCTGATCACCAACGACGCGGAAAGTTATCGTTACCTGGCCGAATCGATCCGCATGCACCCCGACCAGGAAACGTTGAAGTCGATGATGGTCGAAGCCGGTTTCGATCGGGTGACCTACCACAACATGACTTCCGGCATCGTCGCCCTGCACCGCGGTATCAAGCCCTGAMTDQRKGSDAEPTTHFGFKNVPESQKAEKVAEVFHSVAAKYDLMNDLLSGGMHRLWKRFAIELSGVRSGNRVLDIAGGTGDLTKKFSHIVGPTGHVVLADINESMLKVGRDRLLDLGVAGNVEFVQADAEKLPFPDNHFDCVTIAFGLRNVTHKEDALRSMLRVLKPGGRLLVLEFSKPTNALMSKAYDAYSFAFMPLMGKLITNDAESYRYLAESIRMHPDQETLKSMMVEAGFDRVTYHNMTSGIVALHRGIKPPGPT0009535_645DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009535-ubiE-K03183NANA
D1-35_03284276hypothetical proteinATGGCCCGTATTACTGTTGAGCGTGCCCATGACCTGGGCAAGGAAGCGGCCCGCGAAAAGGCCGACAAGCTGGCCCGGAAACTGTCCGACAGCTACGGCCTGGAGCCCAAGTGGGAGGGCGACACGCTGAAGCTCAAGCGTTCCGGGGTCAAGGGTGAAGTGCATGTGGGCGAGGATTCGATCCGCGTCGAAGTGGAGCTGGGCATGTTGATGTCGGCCATGAGCGGGACAATCAAGACGGAAATCGAAAAGGCGCTGGACAAGGCGTTGGCTTGAMARITVERAHDLGKEAAREKADKLARKLSDSYGLEPKWEGDTLKLKRSGVKGEVHVGEDSIRVEVELGMLMSAMSGTIKTEIEKALDKALANANANANANA
D1-35_03285423hypothetical proteinATGGCCAAAGTTATTCTGAAGAAAAAAACCGACGTTGATTCTTCCACGCTGGGCGACGTGAAAACGTACGCGCGCAAGATCTGGCTGGCGGGCCTGGGCGCCTATATCAAGGTCGGTCAGGAGGGCGGCGACTACTTCAAGGAGCTGGTCAAGGCCGGTGAAGTTGTTGAAACCAAAGGCAAAAAGAACATTGCTGGGAAACTTGAAGCGGCGAACAGCGAACTGATCGAAGCCAAGACCGACGTCAACACTTTCAAGGCCCGCGTTGAAGTTCAACTCGACAAAGTAGAGAAGGTATTCGACGCGCGTGTTGCAAGTGCCTTGAATCGTATCGGCATTCCGTCTAAACATGACGTTGAGACACTCTCTGCTAAGCTCGATGAGCTGACGGCATTGCTCGAACGTGTCGCGCGTAAACATTAAMAKVILKKKTDVDSSTLGDVKTYARKIWLAGLGAYIKVGQEGGDYFKELVKAGEVVETKGKKNIAGKLEAANSELIEAKTDVNTFKARVEVQLDKVEKVFDARVASALNRIGIPSKHDVETLSAKLDELTALLERVARKHNANANANANA
D1-35_03286900hypothetical proteinATGGCTGGCAAGAAAATCACCGAAAAAGAAGGCAGCTCGTGGACCGGGAAAATTGAAAAGTACTCCCGCAAAATCTGGCTTGCTGGTTTAGGCGTGTACTCGAAGATCGACACTGACGGCAGCAAACTCTTCGAGTCCCTGGTCAAGGACGGCGAGAAGGCCGAAAAACTCACCAAGACGGCGGTCGGCAAACAAGTCGATGCCGCCAAGGATTCTGCCGAGTCCACCAAGTCGCGCATGGGCGGCGTGAAGGATCGTGCACTGGGCAAGTGGGATGAGCTGGAAGGGGCTTTCGACAAGCGTCTGAACAGTGCAATTTCCCGCTTGGGCGTGCCGAGCCGCAATGAAGTCAAGGAACTGCACAGCAAGGTAGACACCCTGACCAGGCAGATCGAAAAACTCACCGGGGCCAAGGTCACGCCGGTCGCGACCAAGCCTGCTGCAACCAGGACGGCGGCGGCCAAGCCTGCAGCGAAGACGGCAGCCAAGCCACTGGTCAAGGCGGCGAAATCCGTCGCCAAGCCTGCGGCCAAAGCAGCGGCCAAGCCAGTAGCCAAAACCGCAGCGGCCAAGCCTGCAGCCAAGGCGGCGGCCAAACCCGTCGCGGCAAAAACTGCAGCCAAACCTGCCGCCAAGCCAGCGGCCAAGACGGCGGCGGCTAAACCAGCTGCGGCCAAACCGGCTGCCAAGCCAGCGGCAAAAGCCGCAGCAAAACCGGCCGCGGCGAAAAAGCCCGCAGTGAAAAAACCGGCCGCGCCAAAAGCAGCCGCACCCAAGGCGCCGGCCACGGCCGCCAAACCGGCCACCCCGACGAGCACGGCAAACTCTGCCTCGGCTCCGACCCCGGTAGCTACTCCGACTCCAGCGCCGGTTCCGTCGACGCCTACCAGCCAGTCCTGAMAGKKITEKEGSSWTGKIEKYSRKIWLAGLGVYSKIDTDGSKLFESLVKDGEKAEKLTKTAVGKQVDAAKDSAESTKSRMGGVKDRALGKWDELEGAFDKRLNSAISRLGVPSRNEVKELHSKVDTLTRQIEKLTGAKVTPVATKPAATRTAAAKPAAKTAAKPLVKAAKSVAKPAAKAAAKPVAKTAAAKPAAKAAAKPVAAKTAAKPAAKPAAKTAAAKPAAAKPAAKPAAKAAAKPAAAKKPAVKKPAAPKAAAPKAPATAAKPATPTSTANSASAPTPVATPTPAPVPSTPTSQSNANANANANA
D1-35_03287621hypothetical proteinATGAAAACCCGCGACCGAATCCTCGAGTGTGCCCTGCAATTATTCAACGAGAAGGGCGAGCCGAATGTTTCCACCCTCGAAGTCGCCAACGAGATGGGCATCAGCCCCGGCAACCTCTACTACCACTTCCATGGCAAGGAACCGCTGATACTCGGATTGTTCGAGCGATTCCAGGCCGAGCTTGCACCGCTGCTGGATCCGCCCGCCGATGCGCAACTGGCGCCGGAGGACTACTGGTTGTTCCTGCATTTGATCGTCGAGCGCCTGGCCCAATACCGGTTCCTGTTCCAGGACTTGTCAAACCTGGCGGGGCGCCTGCCGAAACTGGCCAAGGGTATCCGCCAGTTGCTCAACGCGTTGAAACGGACCCTGGCCTCTTTGCTGGCGCAGCTCAAGGCCCAGGACCTGCTGGTGAGCGACACCCAGGCACTCGGGCAACTGGTGGAGCAGATCACCATGACGTTGCTGTTTTCGCTGGATTATCAGCGGATCCTTGATCGCGAGGGCGAGGTTCGCCTGGTGGTCTATCAGATCATGATGCTGGTGGCGCCGCACTTGCCGCCAGCGATAAAGGTCGCGACCGAGCAGATGGCTTTGCGGTATCTGGAGGAGCACGAATAAMKTRDRILECALQLFNEKGEPNVSTLEVANEMGISPGNLYYHFHGKEPLILGLFERFQAELAPLLDPPADAQLAPEDYWLFLHLIVERLAQYRFLFQDLSNLAGRLPKLAKGIRQLLNALKRTLASLLAQLKAQDLLVSDTQALGQLVEQITMTLLFSLDYQRILDREGEVRLVVYQIMMLVAPHLPPAIKVATEQMALRYLEEHENANANANANA
D1-35_032881683phaC_1COG3243Poly(3-hydroxyalkanoate) polymerase subunit PhaCATGCGCGACAAACCGGCGAAGGGTTCCATGCCCGCCCCTGCCAGCTTCATCAACGCACAGAGTGCGGTCACCGGCCTGCGCGGCAGGGACCTGCTGTCGACCCTGCGCAACGTTGCCGCCCATGGCCTGCGCAACCCGGTCCACAGTGCCCGACATGCGTTGAGGCTCGGCGGCCAGCTGGGGCGCGTCCTGCTGGGGGACACCCTGCACCCGACCAACCCCGACGACAAACGCTTCGCCGACCCCACCTGGCAGCTCAACCCGTTCTACCGCCGCAGCCTGCAGGCCTACCTGAGCTGGCAGAAGGAAGTCCGCCAGTGGATCGATGAGGGCGGCATGAGCCCGGATGATCAGGCCCGTGCGCATTTCGCCTTCTCCCTGCTCAACGACGCGGTATCGCCGTCCAATACCCTGCTCAACCCGCTGGCGATCAAGGAGCTGTTCAATTCCGGAGGCAGCAGCCTGATTCGCGGGATCAGCCATCTGGTCGACGACCTGCTGCACAACGACGGCTTGCCCCGGCAAGTCACGCCACACGCCTTTGAAGTCGGCAAGACCCTGGCGAGTACGCCCGGCGCAGTGGTGTTTCGCAACGAGCTGCTGGAACTGATCCAGTACAAGCCTATGAGCGAAAAGCAATACGCCACGCCGCTGCTGATCGTGCCGCCGCAGATCAACAAGTTCTACATCTTCGACCTGAGCCCTTCCAACAGCTTCGTCCAGTACGCTCTGAAAAACGGCTTGCAGGTGTTCATCATCAGTTGGCGCAACCCGGACGTGCGCCATCGGGAATGGGGCCTGTCCAGTTATGTCGAGGCGACGGAAGAGGCCATGAACGTCTGCCGGACGATCACCGGCGCCCGCGAAGTCAACCTGATGGGCGCCTGCGCCGGTGGCATGACCATCGCCGCCCTGCAGGGCCATCTGCAAGCCAAGCGCCAACTGCGCCGGGTGGCCAGCGCCACCTACCTGGTGAGCTTGCTGGACAGCGAGATCGAGAGCCCGGCCACGCTGTTCATCGACGAACAGACCCTCGAAGCCGCCAAACGCCGCTCCTATCAGAAAGGCATTCTCGATGGCCGCGACATGGCTCGGGTCTTCGCCTGGATGCGGCCCAACGACTTGATCTGGACCTACTTCGTCAACAACTACCTGCTGGGCAAGGAGCCGCCGGCATTCGATATTCTCTACTGGAACAACGACTGCACGCGGCTTCCGGCGGCCTATCACGGCGACCTGCTGGATTTTTTCAAACACAACCCGCTGACACGGCCGGGCGCCCTGGAGGTGTGCGGCACGCCTATCGACTTGCAGAAAGTCACCGTGGACAGCTTCAGCGTGGCCGGCATCAACGACCACATCACGCCGTGGGATGCGGTGTACCGTTCGACGTTGCTGCTGGGCGGCGAACGACGTTTCGTGCTGTCCAACAGCGGACACGTCCAGAGCATCCTCAACCCGCCAGGCAACCCCAAGGCCAACTACATCGAGAATCCGAAACTGAGCAGCGACCCGCGCGCCTGGTACTACGACGCCAAGCACATCGAGGGCAGTTGGTGGACCCAATGGCTGGGCTGGATCCAGGAGCGCTCCGGCGCCCAGCACGAAACGCAGATGACGCTGGGCAACGCGAAATACCCGGCCCTGGAAGCGGCACCCGGGAATTACGTACGGGTACGCTGAMRDKPAKGSMPAPASFINAQSAVTGLRGRDLLSTLRNVAAHGLRNPVHSARHALRLGGQLGRVLLGDTLHPTNPDDKRFADPTWQLNPFYRRSLQAYLSWQKEVRQWIDEGGMSPDDQARAHFAFSLLNDAVSPSNTLLNPLAIKELFNSGGSSLIRGISHLVDDLLHNDGLPRQVTPHAFEVGKTLASTPGAVVFRNELLELIQYKPMSEKQYATPLLIVPPQINKFYIFDLSPSNSFVQYALKNGLQVFIISWRNPDVRHREWGLSSYVEATEEAMNVCRTITGAREVNLMGACAGGMTIAALQGHLQAKRQLRRVASATYLVSLLDSEIESPATLFIDEQTLEAAKRRSYQKGILDGRDMARVFAWMRPNDLIWTYFVNNYLLGKEPPAFDILYWNNDCTRLPAAYHGDLLDFFKHNPLTRPGALEVCGTPIDLQKVTVDSFSVAGINDHITPWDAVYRSTLLLGGERRFVLSNSGHVQSILNPPGNPKANYIENPKLSSDPRAWYYDAKHIEGSWWTQWLGWIQERSGAQHETQMTLGNAKYPALEAAPGNYVRVRPGPT0014740_1555DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_RELATED_GENESCE-BIOFILM-POLYHYDROXYBUTYRATE_PRODUCTION,PGPT0014740-phbC|phaC-K03821NANA
D1-35_03289858catD_2COG05963-oxoadipate enol-lactonase 2ATGCCGCAACCGTACATTTTCCGTACCGTCGACCTGGATGGCCAGACCTTGCGCACCGCGGTACGTCCCGGCAAGCCTCACTTGACGCCGCTGCTGATTTTCAACGGCATCGGCGCCAACCTGGAGCTGGTCTTCCCGTTCATCGAGGCCCTGGACCCGGACCTGGAAGTGATCGCCTTCGATGTGCCCGGGGTCGGCGGTTCGTCGACGCCGAGCCGGCCGTATCGTTTTCCGGGCCTGGCCAAGCTTACCGCGCGGATGCTCGATTACCTCGACTATGGGCAGGTCAACGTGATCGGTGTGTCCTGGGGCGGCGCCCTGGCCCAGCAGTTCGCCCATGATTATCCGGAGCGCTGCAAGAAGCTGGTGCTCGCCGCCACGGCCGCCGGCGCGGTGATGGTGCCGGGCAAGCCGAAGGTGCTGTGGATGATGGCCAGTCCCCGACGCTACGTGCAGCCGTCCCATGTGATGCGCATCGCGCCGCTGATCTACGGCGGCTCGTTCCGCCGCGACCCAAGCCTGGCGGCTCGTCACGCGGCCAAGGTACGTTCGGCGGGCAAGCTCGGTTATTACTGGCAACTGTTCGCGGGCCTCGGCTGGACCAGCATCCATTGGCTGCACAAGATCCACCAGCCGACCTTGATCCTGGCCGGGGATGACGACCCGCTGATCCCCCTGATCAACATGCGCATGCTGGCCTGGCGCATCCCCAATTCGCAGTTGCACATCATCGATGACGGCCACCTGTTCCTGATCACCCGGGCCGAGGCCGTGGCGCCGATCATCATGAAATTCCTCGAGGAAGAACGGCAGCGCGCGGTCATGCACCCGCATCCCGCGCCGCTGGGTGGCGGCTGAMPQPYIFRTVDLDGQTLRTAVRPGKPHLTPLLIFNGIGANLELVFPFIEALDPDLEVIAFDVPGVGGSSTPSRPYRFPGLAKLTARMLDYLDYGQVNVIGVSWGGALAQQFAHDYPERCKKLVLAATAAGAVMVPGKPKVLWMMASPRRYVQPSHVMRIAPLIYGGSFRRDPSLAARHAAKVRSAGKLGYYWQLFAGLGWTSIHWLHKIHQPTLILAGDDDPLIPLINMRMLAWRIPNSQLHIIDDGHLFLITRAEAVAPIIMKFLEEERQRAVMHPHPAPLGGGNANANANANA
D1-35_032901680phaC_2COG3243Poly(3-hydroxyalkanoate) polymerase subunit PhaCATGAGCAACAAGAACAACGATGAGTTGAAGTACCAAGCTTCGGAAAACACCCTGGGCTTGAATCCCGTCGTCGGCTTGCGCAGGAAAGACCTGCTGGCCTCTGCCCGGATGGTGCTGACCCAGACCATCAAACAACCGCTGCACAGCGTCAAGCACGTCGCCCATTTCGGCGCTGAATTGAGGAAAGTCCTGTTCGGCAAATCCGAGTTGCAGCCCGCCAGTGATGACCGTCGTTTCAACGACCCGGCGTGGAGCCAGAACCCGCTCTACAGACGTTATCTGCAAACCTATCTGGCGTGGCGCAAGGAGCTGCACGCCTGGATCGACGACAGCAGCCTCTCGCCCCAGGACATCAGCCGTGGGCACTTCGTGATCAACCTGATGACCGAAGCCATGGCCCCGACCAACTCGGCGGCCAACCCGGCGGCGGTCAAGCGCTTCTTCGAAACCGGCGGCAAGAGCCTGCTCGATGGCCTGTCCCACCTGGCCAAGGACCTGGTGCACAACGGCGGAATGCCGAGCCAGGTGGACATGGGTGCGTTCGAAGTCGGCAAGAGCCTGGGCGTGACCGAAGGCGCGGTAGTCTTTCGCAATGACGTGCTGGAGCTGATCCAGTACCGCCCCATCACCGAGCAGGTCCATGAGCGACCATTGCTGGTGGTGCCGCCGCAAATCAACAAGTTCTACGTATTCGACCTGAGCCCGGACAAGAGCCTGGCGCGCTTCTGCCTGCGCAGCAACGTGCAGACTTTCATCATCAGTTGGCGCAACCCCACCAAGGCGCAGCGCGAGTGGGGCCTGTCGACGTACATCGAAGCGCTCAAGGAAGCGGTGGATGTGGTCACGGCCATCACCGGCAGCAAGGACGTGAACATGCTGGGCGCCTGCTCGGGCGGCATCACCTGCACCGCCCTGCTCGGCCATTACGCCGCGCTGGGGGAGAAAAAGGTCAATGCCCTGACCCTGCTGGTGAGTGTGTTGGACACCACCCTGGACACCGACGTGGCGCTGTTCGTCGACGAGCAGACCCTGGAAACGGCCAAGCGCCATTCCTACCAGGCCGGCGTCCTTGAAGGCCGCGACATGGCCAAGGTGTTCGCCTGGATGCGGCCCAATGACCTGATCTGGAACTACTGGGTGAACAATTACCTGCTGGGCAACGAGCCGCCGGTGTTCGACATCCTGTTCTGGAACAACGACACCACGCGACTCCCGGCGGCGTTCCATGGCGACCTCATCGAGATGTTCAAGAACAACCCGCTGATCCGCCCCAACGCACTGGAAGTGTGCGGCACGCCGATCGACCTCAAGCAGGTCAGCGCCGATATCTTTTCCCTGGCCGGCACCAACGACCACATCACGCCGTGGAAGTCCTGCTACAAATCGGCGCAGCTGTTCGGCGGCAAGGTTGAATTCGTGCTGTCGAGCAGCGGTCACATCCAGAGCATTCTCAACCCGCCGGGCAATCCAAAGTCCCGCTACATGACCAGCGAAGACATGCCGGCCAAGGCCGAGGACTGGATGGAAAACTCCACCAAGCACACCGACTCGTGGTGGCTGCACTGGCAAGCCTGGCAGGCCGAACGCTCGGGCAAGCTGAAGAAGGCCCCCACCGTGCTGGGCAACAAGACGTATGTGGCCGGGGAAGCGGCGCCGGGCACTTATGTGCATGAGCGGTAAMSNKNNDELKYQASENTLGLNPVVGLRRKDLLASARMVLTQTIKQPLHSVKHVAHFGAELRKVLFGKSELQPASDDRRFNDPAWSQNPLYRRYLQTYLAWRKELHAWIDDSSLSPQDISRGHFVINLMTEAMAPTNSAANPAAVKRFFETGGKSLLDGLSHLAKDLVHNGGMPSQVDMGAFEVGKSLGVTEGAVVFRNDVLELIQYRPITEQVHERPLLVVPPQINKFYVFDLSPDKSLARFCLRSNVQTFIISWRNPTKAQREWGLSTYIEALKEAVDVVTAITGSKDVNMLGACSGGITCTALLGHYAALGEKKVNALTLLVSVLDTTLDTDVALFVDEQTLETAKRHSYQAGVLEGRDMAKVFAWMRPNDLIWNYWVNNYLLGNEPPVFDILFWNNDTTRLPAAFHGDLIEMFKNNPLIRPNALEVCGTPIDLKQVSADIFSLAGTNDHITPWKSCYKSAQLFGGKVEFVLSSSGHIQSILNPPGNPKSRYMTSEDMPAKAEDWMENSTKHTDSWWLHWQAWQAERSGKLKKAPTVLGNKTYVAGEAAPGTYVHERPGPT0014740_1701DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_RELATED_GENESCE-BIOFILM-POLYHYDROXYBUTYRATE_PRODUCTION,PGPT0014740-phbC|phaC-K03821NANA
D1-35_03291378hypothetical proteinATGACCAGACTCCCCACCGCCATCAACCTGCACAAAGCCTCCAAGACCCTGACGCTCAGATACGCGCCGGACGAGGAGTATCACCTGCCCGCGGAATTCCTGCGGGTGCACTCGCCTTCGGCCGAGGTCCAGGGCCACGGCAAACCTATCCTGCAATACGGCAAGCTCGGCGTCGGCCTGACCAAGGTCGAACCGGCCGGCCAATACGCACTGAAACTGACCTTCGACGATGGCCATGACAGCGGATTGTTCACCTGGGACTATCTGTACCAGCTGGCGGTGCGCCAGGAAGACCTGTGGAACGATTATCTCGCCGAACTCAAGGCGGCCGGAAAAACCCGCGACCCGAATGCGTCCGTCGTCAAGCTGATGCTCTAGMTRLPTAINLHKASKTLTLRYAPDEEYHLPAEFLRVHSPSAEVQGHGKPILQYGKLGVGLTKVEPAGQYALKLTFDDGHDSGLFTWDYLYQLAVRQEDLWNDYLAELKAAGKTRDPNASVVKLMLNANANANANA
D1-35_032921338hslUCOG1220ATP-dependent protease ATPase subunit HslUATGTCCATGACTCCCCGCGAAATCGTCCACGAACTCAATCGCCACATCATCGGCCAGGACGATGCCAAGCGCGCCGTCGCCATCGCCTTGCGTAACCGCTGGCGCCGGATGCAACTGCCGGAAGAACTGCGCGTCGAAGTGACCCCCAAGAACATCCTGATGATCGGCCCGACCGGTGTCGGCAAGACCGAGATCGCCCGGCGCCTGGCCAAGCTCGCCAACGCGCCATTCATCAAGGTCGAAGCCACCAAGTTCACCGAAGTCGGCTACGTGGGCCGCGATGTCGAGTCGATCATTCGTGACCTGGCCGATGCGGCGATCAAGCTGCTGCGCGAACAGGAAATCACCAAGGTTCGCCATCGCGCCGAAGACGCCGCGGAGGAGCGCATTCTCGATGCCCTGCTGCCACCGGCGCGCATGGGCTTCAACGCCGACGCCGCCACGACCCAGGACTCCAACACCCGCCAGCTGTTCCGCAAACGCCTGCGCGAAGGCCAGCTGGACGACAAGGAGATCGAGATCGAGGTGGCCGAAATGGCCGGCGTCGACATTTCCGCGCCGCCAGGCATGGAAGAAATGACCAACCAGTTGCAGAGCCTGTTCGCCAACATGGGCAAGGGCAAGAAGAAAAGCCGCAAGCTCAAGGTCAAGGAAGCGCTGAAGCTGGTGCGCGATGAAGAAGCCAGTCGCCTGGTCAACGAAGAGGAGCTGAAGGCCAAGGCCCTGGAAGCGGTCGAGCAGCACGGCATCGTGTTCATCGACGAAATCGACAAGGTCGCCAAGCGCGGCAATGTCGGCGGCGCCGACGTTTCCCGCGAAGGCGTGCAACGCGACCTGCTGCCGTTGATCGAAGGCTGCACGGTGAACACCAAGCTGGGCATGGTCAAGACCGACCACATCCTGTTCATCGCCTCCGGTGCGTTCCACCTGAGCAAGCCGAGCGACCTGGTGCCTGAGCTGCAAGGCCGCTTGCCAATCCGGGTCGAACTCAAGGCGCTGTCGCCGGAAGACTTCGAGCGCATCCTGAGCGAGCCCCATGCATCGCTGACCGAACAATACTGCGCGCTGCTCAAGACCGAAGGCCTGAACATCGAGTTCGCACCAGAAGGCATCAAGCGTCTGGCGCAGATCGCCTGGCAGGTCAACGAGAAGACCGAGAACATCGGTGCCCGGCGCCTGCACACGCTGCTTGAACGCCTGCTTGAGGAAGTCTCGTTCAGCGCCGGCGACCTGGCCAGCGCCCACAACGAAGCGCCGATCATCATCGACGCCGAATACGTCAACAGCCACCTCGGCGAGCTGGCGCAGAACGAAGACCTGTCGCGGTATATCCTGTAGMSMTPREIVHELNRHIIGQDDAKRAVAIALRNRWRRMQLPEELRVEVTPKNILMIGPTGVGKTEIARRLAKLANAPFIKVEATKFTEVGYVGRDVESIIRDLADAAIKLLREQEITKVRHRAEDAAEERILDALLPPARMGFNADAATTQDSNTRQLFRKRLREGQLDDKEIEIEVAEMAGVDISAPPGMEEMTNQLQSLFANMGKGKKKSRKLKVKEALKLVRDEEASRLVNEEELKAKALEAVEQHGIVFIDEIDKVAKRGNVGGADVSREGVQRDLLPLIEGCTVNTKLGMVKTDHILFIASGAFHLSKPSDLVPELQGRLPIRVELKALSPEDFERILSEPHASLTEQYCALLKTEGLNIEFAPEGIKRLAQIAWQVNEKTENIGARRLHTLLERLLEEVSFSAGDLASAHNEAPIIIDAEYVNSHLGELAQNEDLSRYILNANANANANA
D1-35_03293531hslVCOG5405ATP-dependent protease subunit HslVTTGACCACCATCGTTTCAGTCCGCCGTCACGGCAAAGTCGTCATGGGCGGCGACGGCCAGGTTTCATTGGGCAACACCGTGATGAAAGGCAACGCGAAGAAAGTCCGCCGCCTGTATCACGGCCAGGTCATCGCCGGTTTCGCCGGGGCCACCGCCGACGCCTTCACCCTGTTCGAGCGTTTCGAAGGGCAACTTGAAAAACATCAGGGTCACTTGGTCCGTGCAGCCGTCGAGCTGGCCAAGGAATGGCGCACCGACCGCTCCCTGAGCCGCCTCGAAGCCATGCTTGCGGTGGCCAACAAGGATGCTTCCTTGATCATTACCGGCAACGGCGACGTGGTTGAACCGGAAGACGGCCTGATCGCCATGGGTTCCGGTGGCGCCTACGCCCAGGCTGCCGCCAGCGCCCTGCTGAAAAAGACCGACCTTTCGGCTCGCGAGATCGTCGAGACTGCCCTGGGCATCGCCGGCGACATCTGCGTCTTCACCAACCACACCCAGACCATTGAGGAGCAGGACCTCGCGGAGTAAMTTIVSVRRHGKVVMGGDGQVSLGNTVMKGNAKKVRRLYHGQVIAGFAGATADAFTLFERFEGQLEKHQGHLVRAAVELAKEWRTDRSLSRLEAMLAVANKDASLIITGNGDVVEPEDGLIAMGSGGAYAQAAASALLKKTDLSAREIVETALGIAGDICVFTNHTQTIEEQDLAENANANANANA
D1-35_03294696ftsN_2Cell division protein FtsNTTGGCCGCCAAGAAAAAACCTGCACCCAAACGCGGCGCCAGTCGTTACCAGCCTCCGGCCAAACAGCCGATTCCGGGCTGGTTGTGGATGGCGATCGGCCTGACTGTCGGCGCATTCATCGTATTCCTGATGAAGCTGGAACCGGGCCAGGGCGATGACGTCAAGCGTGTTCGGCAAGAGCAGCAGAAAGCCACGCGGATCGCCGAGGCCAACAAGACCCCGCCGAGCCCGACACAACCGGTGAAGCCGAAATACGACTTCTACACCTTGCTCCCGGAATCGGAGGTCATCGTGCCGCCCGATGCGGTGCCGGAGAAGACCCTGCCGACGCCGCAGGTGCCGACCACGCCAGTGACCCCAGCCGAAGCGGCGAAGATCGACACCGCCCGCGCCCAGGCCGCCCTGGCCGGCATTACGCCGCCACCGGCCCCGCCGGTGCAGAAGGCCGCGCCGGTGACAAAATTCTTCCTGCAGGCCGGCTCGTTCCGCAAGGAAGCCGACGCCGACAAGGTCCGGGCGCAGATCATTCTGCTGGGCCAGTCGGTGTCGGTGGAGTCCGGAACGGTGAAGGACGAAACCTGGTATCGCGTACTGGTCGGACCGTTCAGCAACCGCGAAGAACTGACCAAGGCCCAGAAACAACTGGCTGGCAGCGGTTTCAGCAACCTGTTGTTACAACAACGTCAAAGCCGCTAGMAAKKKPAPKRGASRYQPPAKQPIPGWLWMAIGLTVGAFIVFLMKLEPGQGDDVKRVRQEQQKATRIAEANKTPPSPTQPVKPKYDFYTLLPESEVIVPPDAVPEKTLPTPQVPTTPVTPAEAAKIDTARAQAALAGITPPPAPPVQKAAPVTKFFLQAGSFRKEADADKVRAQIILLGQSVSVESGTVKDETWYRVLVGPFSNREELTKAQKQLAGSGFSNLLLQQRQSRNANANANANA
D1-35_032951737argSArginine--tRNA ligaseATGAAAGACACCATTCGCCAGCTTATCCAGCAAGCCATCACCCAACTCGTCACTGAAGGTGTGCTGCCAGAAGGCCTGTCGCCGGCGATTCAGGTCGAGAACACCCGCGACAAGACCCACGGTGACTTTGCCAGCAACATCGCGATGATGCTCGCCAAACCGGCCGGCATGAAACCTCGCGACCTGGCGGAAAAGATCATCGCCGCATTGCCGGCCGACGAAAACGTCACCAAGGCCGAAATTGCCGGCCCCGGGTTCATCAACTTCTTCCAGAATACCCAGGCGCTGGCCTCGCGGCTGGACGCGGCCCTGGCCGACGAGCGCCTCGGCGTACGCAAGGCCGGCCCGTTGCAGCGCACCGTGGTCGACCTGTCGGCCCCCAACCTCGCCAAGGAAATGCACGTCGGCCACCTGCGCTCGACCATCATTGGCGATGGCGTGGCGCGCGTCCTGGAGTTTCTCGGTGACACGGTGATCCGCCAGAACCACGTCGGCGACTGGGGCACCCAGTTCGGCATGCTGATGGCCTACCTGCAGGAAAACCCGATCACCAGCGACGAGCTCTCGGACCTGGAAAACTTCTACCGCGCCGCCAAGCAACGCTTCGACGAGTCGCCCGAGTTCGCCGACCGCGCCCGTGGCCTGGTGGTCAAGCTGCAGGCTGGCGATGCCGAGTGCCTGGCGCTGTGGACAAAGTTCAAGGACATCTCGCTGTCCCACTGCCAGAAGATATACGAGCTGCTGAACGTCAAGCTGAGCATGGCCGACGTAATGGGCGAAAGCGCCTACAACGACGACCTGATCAACGTGGTCAACGACCTCCGGGCCAAAGGCATGCTGGTGGAAAGCAACGGCGCCCAGTGCGTGTTCCTCGACCAGTTCAAGACCGCCGATGGCGAGCCGCTGCCGGTGATCATCGTCAAGGCTGACGGTGGCTACCTCTACGCCACCACTGACCTGGCGGCCGTGCGTTATCGCAACGGCGTGCTGAAGGCCGATCGGGTCCTGTATTTCGTCGACCAGCGCCAGGCCCTGCACTTCCAGCAGGTGTTCGAAGTGGCCCGTCTGGCCGGTTTCGTGACCCATCCGATGGAAATGGAACACATGGGGTTCGGCACCATGAACGGCGCCGATGGTCGCCCGTTCAAGACCCGCGATGGCGGCACGGTGAAGCTGATCGACCTGCTGACCGAAGCCCAGGACCGTGCGTACACTCTGGTCAAGGGCAAGAACCCGGAGCTGGCCGAAGACGAACTGCGCAAGATCGCCAAGGTGGTCGGCATCGACGCGGTGAAATATGCCGACCTGTCGAAGCACCGCGCCAGCGACTACAGCTTCAACTTCGACCTGATGCTCAACTTCGAAGGCAACACCGCTCCGTACCTGCTGTACGCCTACACCCGTGTGGCGGGCGTGTTCCGCAAGCTCGGCAAGGGCTTCGACGAAATCGAGGGCCAGATCGTCCTCGAAGCCGCCCATGAACAGGAGCTGGCGGCCAGGCTGGCGCAGTTCGGCGAAGTCCTGAACAACGTGGCCGACAAGGGCACGCCGCACACCTTGTGCGCCTACCTGTACGACGTCGCCGGGCTGTTTTCCAGCTTCTACGAGAACTGCCCGATGCTCAACGCCGAGACCCCGGCACAAATGCAGAGCCGCCTGCGCCTCGCCGCGCTGACCGGGCGCACGCTCAAGCAAGGCCTGGAACTGCTGGGCCTGGAAACGCTGGAGCGCATGTAAMKDTIRQLIQQAITQLVTEGVLPEGLSPAIQVENTRDKTHGDFASNIAMMLAKPAGMKPRDLAEKIIAALPADENVTKAEIAGPGFINFFQNTQALASRLDAALADERLGVRKAGPLQRTVVDLSAPNLAKEMHVGHLRSTIIGDGVARVLEFLGDTVIRQNHVGDWGTQFGMLMAYLQENPITSDELSDLENFYRAAKQRFDESPEFADRARGLVVKLQAGDAECLALWTKFKDISLSHCQKIYELLNVKLSMADVMGESAYNDDLINVVNDLRAKGMLVESNGAQCVFLDQFKTADGEPLPVIIVKADGGYLYATTDLAAVRYRNGVLKADRVLYFVDQRQALHFQQVFEVARLAGFVTHPMEMEHMGFGTMNGADGRPFKTRDGGTVKLIDLLTEAQDRAYTLVKGKNPELAEDELRKIAKVVGIDAVKYADLSKHRASDYSFNFDLMLNFEGNTAPYLLYAYTRVAGVFRKLGKGFDEIEGQIVLEAAHEQELAARLAQFGEVLNNVADKGTPHTLCAYLYDVAGLFSSFYENCPMLNAETPAQMQSRLRLAALTGRTLKQGLELLGLETLERMNANANANANA
D1-35_032962220priACOG1198Primosomal protein N'GTGCCCGACGCCATCCTGCGCCTCGCCCTGCCATCGCCCCTGCGACGTCTGTTCGACTACCGTGCCCCAGCCGGGGTAACACGCGCCCAGTTGCAGCCGGGCATGCGCCTGCGGGTGCCGTTCGGCCGGCGGGAAATGATCGGGATCCTGGTGGAAGTCACCGATCACAGCGAAGTGCCGGTCGACAAGCTCAAACCGGCCCTGGCGCTGCTCGACGCCACGCCACCGCTGCCCGCGGCGCTGTTCAAGCTGTGCCTGTGGACCGCACAGTATTATCAGCACAGCCTGGGCGACACCTTGAGCTGGGCGTTACCGGTGCTGTTGCGCCAGGGCGAACCGGCCGAGGCACGCCAGGAGCGATTCTGGTCGGTGACGCCGGGCGCTTCGCTGGATGACCCGCGCATCGCCCGCGCACCGCGCCAACGCGAGGCCCTGGCGACCCTGGCCCAGCATCCCCATGGGGTAGCGCACCAGCTGTTGAGCAAGTTGATGCTCAGCAAGGACAGCCTTGACCTGCTGCTGGCCAAGAATCTCGTCCAGGTAGAAGTCCGCCGGCACGCCCCCGACGCGCGCCACGAACACTGGCTGGCCCAGCCGGAACTGCCGCTCAACGCCGAACAGCGGACCGCTTGCGAGGCGATTCGCGCGGGTTTCGACAGTTATCACGCCTTTCTGCTGGCGGGAGTCACCGGCAGCGGCAAGACCGAGGTCTACCTGCAACTGATCCGTCAGACCCTCGAAGCCGGCAAGCAGGCTTTGGTGCTGATTCCGGAAATCAACCTGGGCCCGCAGACCCTGGCGCGCTTCGAGCAGCGCTTCAATGCGCGCATCGCCCTGGTGCATTCGGCGGTCAACGACCGCGAGCGCCTGGAAGCCTGGCTCGCCGCGCGCGACGGCGAGGCCGACATCATCATCGGCACCCGCTCGGCGCTGTTCACGCCGATGAAAAACCCCGGCTTGATCATCATCGATGAAGAACACGACGGCTCCTATAAACAGCAGGAAGGCCTGCGCTACCACGCCCGTGACCTGGCGCTGGTGCGGGCTCGCCAGGAAAACATCCCGATCGTGCTCGGCTCGGCCACGCCCTCCCTGGAAAGCCTGCACAACGCCTACACCGGCCGCTATGGCCTGCTGCGCCTCAACGAACGGGCCGGCGGCGCCAAGCAGCCGCGCTTCCTGCGCCTGGATGTGAAAAGCCGCCCGCTGGACAGCGGCATTTCCGGACCGATGCAGCAAGCCATCGGCCAGACCCTTGCCGCTGGGCAGCAGGTGCTGGTGTTTCTCAACCGCCGGGGGTTCGCCCCGACCCTGCTGTGCCATGACTGCGGCTGGATGTCCGGCTGCGAACGCTGCGACGCGCGGATGACCGTGCATCAGCGCTACGGCGAACTGCGCTGTCACCATTGCGGACACTCCGAGCCGGTACCGAGGCACTGCCCGCAATGCGGGAAAGTGGACCTGCGTCCGGTAGGCGCCGGCACCGAGCGCGCCGAGGAGCGGCTGGGCATCCTGTTTCCTGATTACCCGGTGCTGCGGGTGGATCGCGACAGCACCTCGCGCAAGGATGCGATGAATCAGCTGTTCGCCACGATCCAGAAGGGCCAGCCGTGCATCCTGGTGGGCACGCAGATGCTCGCCAAGGGGCATCACTTCCCGCGCGTGACGCTGGTATCGATCCTGGATGCCGACGGTGGGTTGTTTTCCGGTGACTTCCGCGCGAGCGAGCGCATGGCGCAGCTGATCGTCCAGGTCGCAGGTCGCGCCGGACGGGCCGAGGAGCCGGGCAAAGTGATTATCCAGACCCACCTGGCCGACCACCCGCTGCTGATCCAACTGACCGAGCAGGGCTACTTCGCCTTCGCCGAGCAGGCCTTGAGCGAACGTCGCGCCGCCGGGCTGCCGCCGTTCGCCCATCTGGCGCTGCTGCGGGCCGAGGCCCACAAGCCAGGACAGGCCGAAGGCTTCCTGGACGAAGCGTGCAGCGAGGCCGAGCGCCTGCTGGCGGAACAGAGCCTCAGCGGGATCGAACTATTGGGCCCGGTGCCGGCTCCGATGGAACGGCGGGCGGGACGTTATCGCGCACAGCTTTTATTACAGGCCAATGCCCGCGCACCGCTGCATCGGTTGCTGAGCGCCTGGTTGCTGGTACTGGAACAACTGCCCAGCGGGCGGTCGGTGCGCTGGTCGCTGGATGTGGATCCGGTGGATTTGTATTAAMPDAILRLALPSPLRRLFDYRAPAGVTRAQLQPGMRLRVPFGRREMIGILVEVTDHSEVPVDKLKPALALLDATPPLPAALFKLCLWTAQYYQHSLGDTLSWALPVLLRQGEPAEARQERFWSVTPGASLDDPRIARAPRQREALATLAQHPHGVAHQLLSKLMLSKDSLDLLLAKNLVQVEVRRHAPDARHEHWLAQPELPLNAEQRTACEAIRAGFDSYHAFLLAGVTGSGKTEVYLQLIRQTLEAGKQALVLIPEINLGPQTLARFEQRFNARIALVHSAVNDRERLEAWLAARDGEADIIIGTRSALFTPMKNPGLIIIDEEHDGSYKQQEGLRYHARDLALVRARQENIPIVLGSATPSLESLHNAYTGRYGLLRLNERAGGAKQPRFLRLDVKSRPLDSGISGPMQQAIGQTLAAGQQVLVFLNRRGFAPTLLCHDCGWMSGCERCDARMTVHQRYGELRCHHCGHSEPVPRHCPQCGKVDLRPVGAGTERAEERLGILFPDYPVLRVDRDSTSRKDAMNQLFATIQKGQPCILVGTQMLAKGHHFPRVTLVSILDADGGLFSGDFRASERMAQLIVQVAGRAGRAEEPGKVIIQTHLADHPLLIQLTEQGYFAFAEQALSERRAAGLPPFAHLALLRAEAHKPGQAEGFLDEACSEAERLLAEQSLSGIELLGPVPAPMERRAGRYRAQLLLQANARAPLHRLLSAWLLVLEQLPSGRSVRWSLDVDPVDLYNANANANANA
D1-35_03297225rpmECOG025450S ribosomal protein L31ATGAAAACCGATATCCATCCGGACTACCCAGTTGTGGCCGTAACCTGCAGCTGCGGCAACAAGTTCGAAACGCGTTCGACCTACGGCAAAGCCCTGGCGATCGACGTTTGCAATGAATGCCACCCGTTCTACACCGGTAAGCAAAAGACTCTGGATACCGGCGGCCGTGTTCAGAAGTTCGCCGATCGTTTCGGTGCTTTCGGCAAAGTTACTCCAAAAGCCTGAMKTDIHPDYPVVAVTCSCGNKFETRSTYGKALAIDVCNECHPFYTGKQKTLDTGGRVQKFADRFGAFGKVTPKAPGPT0014325_2973DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014325-rpmEB-K02909NANA
D1-35_03298822hypothetical proteinTTGGAAAGTCGTTCCGGCTATTCCAGGCTGATGAAAAAGGCGTCCCTAGCGGGCGCCTTTTTTGTGTCTGCGATTTGGCTCTGTGGTGCCCAGGCGGCGTGCCCGTTCCCGGATGGACTGCCCGACGTGGCCGTGCAACGGGTGGTCGATGGCGACACCTTGTACCTCAGCGACGGTCGTCGCATCCGCATGATCGGTCTCAACAGTCCGGAACTGGGAAAGCGCGGGCGTGCGGACGAGCCGTTTGCCGTGGCGGCGCGCCAGCGGCTCGAGGCACTGGTGGCTGCCAGCGCCGGTCGGGTCAGGGTGTCGCCTGGCAAGGACGACCGGGACGACTACGGGCGCACGCTGGCCCATGTCTATGACCAGCAGGGTCGGAACCTGGAAGAGCAATTGATTGCCGAGGGGCTGGGTTACCTGGTTGCGGTTGCGCCGAATGTCGATCTGGTCGAATGCCAGCAGGCGGCGGAGCGCAAGGCGCGGCAAGCCGGCCTGGGGCTATGGAAGAAGTCACCCGTCGTGCGCGCGGAGCAGATCAAGGCCCCCGGTTTTGCGCTGGTCAGCGGCCGCGTAGACAGTGTGCAACGCAATCGCGGCGGGATCTGGATCGAGCTGCAAGGCTCGGTTGTCCTGCATATTGCGGCCAATCTGCAGCGAAGCTTTGACGCTTCGATGCTCAAGGGCCTGGAAGGCCGGACCATCGAGGCCCGTGGTTGGGTTGTCGATCGCTCTCGACGCGGTGCGGCCAGGCCCGGGCAGGCGCGGTGGATGTTGCCTCTGACTGATCCGGCAATGTTGCAGGCAGTGCTCAGGCAGAAATAAMESRSGYSRLMKKASLAGAFFVSAIWLCGAQAACPFPDGLPDVAVQRVVDGDTLYLSDGRRIRMIGLNSPELGKRGRADEPFAVAARQRLEALVAASAGRVRVSPGKDDRDDYGRTLAHVYDQQGRNLEEQLIAEGLGYLVAVAPNVDLVECQQAAERKARQAGLGLWKKSPVVRAEQIKAPGFALVSGRVDSVQRNRGGIWIELQGSVVLHIAANLQRSFDASMLKGLEGRTIEARGWVVDRSRRGAARPGQARWMLPLTDPAMLQAVLRQKNANANANANA
D1-35_032991269maeBCOG0281NADP-dependent malic enzymeATGTCTGATCTGAAAACTGCCGCTCTCGAATATCACGCTAATCCTCGTCCAGGAAAGCTGAGTGTCGAGCTCACCAAGGCCACCGCCACTGCCCGCGACCTGTCGCTGGCCTACAGCCCCGGCGTAGCCGAGCCAGTACGCGAAATCGCTCGCGACCCTGAGCTGGCCTACAAATACACCGGCAAGGGCAACCTGGTTGCAGTCATTTCCGATGGCACCGCGATTCTCGGCCTGGGTAACCTCGGCCCACTGGCCTCCAAGCCGGTCATGGAAGGCAAGGGCGTGCTGTTCAAGCGCTTCGCCGGTATCGACGTGTTCGACATCGAAGTCGATTCCGAAAGCCCGCAGGCCTTCATCGACACCGTCAAGCGCATCTCCATCACCTTCGGCGGCATCAACCTGGAAGACATCAAGGCACCTGAGTGCTTCGAGATCGAGCGCGCCCTGATCGAACAGTGCGACATTCCGGTTTTCCACGATGACCAGCACGGCACCGCGATCGTGACCGCAGCCGGCATGATCAATGCCCTGGAAATCGCCGGCAAGACCCTGCCGGAAGCCAAGATCGTCTGCCTGGGCGCGGGTGCCGCGGCCATCTCCTGCATGAAGTTGCTGGTGAGCATGGGCGCCAGGATTGAAAACATCTTCATGGTTGACCGTACCGGCGTGATCCACTCCGGCCGTGACGACCTGAACCAGTACAAGGCCGTGTTTGCCCACGCGACCGACAAGCGCTCCCTGGCGGATGCGCTGGACGGTGCAGACGTGTTCGTCGGCCTGTCGGGTCCGAACCTGCTGAGCCCGGAAAACCTGCTGCGCATGGCGCCGAACCCGATCGTGTTCGCCTGCTCGAACCCGGACCCGGAAATCTCCCCGGAACTGGCTCACGCCACCCGCAGCGACGTGATCATGGCCACCGGCCGTTCGGACTATCCGAACCAGGTCAACAACGTCCTGGGCTTCCCGTTCATCTTCCGTGGTGCCCTGGACGTTCGCGCCAAGCGCATCAACGAAGAAATGAAAGTCGCCGCCGCCAACGCCCTGCGCGAACTGGCCAAGCTGCCGGTGCCTCAGGATGTGTGTGACGCCTATGGCGGCATCAAGCTGGAATTCGGTCGTGAGTACATCATTCCGAAGCCAATGGATGCGCGCCTGATCACCCTGATCTCCGACGCCGTGGCCAAGGCCGCGATCGAGACTGGCGTGGCCACCCTGCCGTATCCGAAGAACTACCCGCTCAAGAGCGTGGATGACGTGTTCAACGGCTAAMSDLKTAALEYHANPRPGKLSVELTKATATARDLSLAYSPGVAEPVREIARDPELAYKYTGKGNLVAVISDGTAILGLGNLGPLASKPVMEGKGVLFKRFAGIDVFDIEVDSESPQAFIDTVKRISITFGGINLEDIKAPECFEIERALIEQCDIPVFHDDQHGTAIVTAAGMINALEIAGKTLPEAKIVCLGAGAAAISCMKLLVSMGARIENIFMVDRTGVIHSGRDDLNQYKAVFAHATDKRSLADALDGADVFVGLSGPNLLSPENLLRMAPNPIVFACSNPDPEISPELAHATRSDVIMATGRSDYPNQVNNVLGFPFIFRGALDVRAKRINEEMKVAAANALRELAKLPVPQDVCDAYGGIKLEFGREYIIPKPMDARLITLISDAVAKAAIETGVATLPYPKNYPLKSVDDVFNGPGPT0001685_4073DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001685-maeB-K00029NANA
D1-35_033002448mrcACOG5009Penicillin-binding protein 1ATTGATTCGTCTGCTGAAATTTTTCGGATGGTCCATCGTCGCGGTTTTCTGCGGACTGCTCCTGGGTCTGAGTGGTGCCTTTCTTTACCTTAGTCCGGGATTGCCGTCCGTGGAGGCGCTGAGAAGTATTCAGTTGCAGATTCCTCTGCGGGTCTACAGCAGCGACAATAAATTGATCGCCGAATTTGGCGAAATGCGCCGCACGCCGATCCGTTTCGCCGACATTCCGCCCAATTTCATCAATGCGTTACTAAGTGCTGAAGACGACAACTTCGCCAACCACTATGGCGTTGATCCGGGCAGCCTGATGCGCGCCGCCAGCCAACTGGTCAAGAGCGGCCACATCCAGTCCGGCGGCAGCACCATCACCATGCAGGTCGCCAAGAATTTCTTCCTGACCAGCGAACGCAGCTTCTCGCGCAAGACCACCGAGATCCTCCTGGCCCTGCAGATCGAGCGGCAACTGACCAAGGATGAAATCCTCGAGCTGTACGTGAACAAGATCTACCTGGGCAACCGCGCCTATGGCATCGAGGCGGCGGCGCAGGTGTATTACGGCAAGTCGATCCGCGACGTGAGCCTGGCGCAGATGGCAATGATCGCCGGCCTGCCCAAGGCACCGTCACGTTTCAACCCGCTGGCCAACCCGGCACGCAGCAAGGAGCGTCGCGACTGGATCCTGGGGCGCATGTACAAGCTCGGCAAGATCAGCGAAGCCGACTACACCGCCGCGATCAACGAGCCCTTGAACGCCAGCTATCACGTACCGACTCCGGAAGTGAACGCCCCGTACATCGCCGAAATGGCCCGGGCCGAGATGGTCGGGCGCTATGGCAGCGACGCCTATACCGAAGGTTTCCGGGTCACCACCACGGTGCCGAGCAACCTGCAGGAAATGGCCAATACCGCGCTCCATGAAGGCCTGATGACCTACGACCAGCGCCACGGCTACCGTGGGCCGGAATCGCGCCTGCCAGGCAAGACCAAGGAAGCCTGGGCCCTGGAGCTGACCAAGCAGCGCACCATCAGCAGCCTGGAGCCGGCGATCGTCACTCAGGTGGACAAGGACGGCATCAAGGTCCTGACCCGCAATGGCGAGTCCGAAGAGCACGTGGCCTGGGACACCATGAAATGGGCCCGTCCGTTCCTCAATACCAACAGCATGGGCGCCAACCCGCGGCAGCCGTCGGACGTCGCTCAGGTCGGCGACCTGATCCGCGTACAGCGCCAGCCGGACAACTCCCTAAAGTTCAGTCAGATACCTGCCGCCCAAGGCGCGCTGGTGTCGCTGGACCCGCAGAATGGCGCGATCCGCTCGCTGGTGGGTGGTTTCGCCTTCGAGCAGAGCAATTACAACCGCGCCTTGCAGGCCAAGCGTCAACCGGGCTCGAGCTTCAAGCCGTTCGTCTACAGCGCTGCGCTGGATAACGGCTACACCGCCGCCAGCCTGGTCAACGATGCGCCGATCGTGTTTGTCGACGAGTACCTCGACAAGGTCTGGCGACCGAAGAACGACACCAATACCTTCCTCGGCCCGATTCGCCTGCGCGAAGCGCTGTACAAGTCCCGCAACCTTGTCTCGATCCGCCTGCTGCAGGCGCTGGGCGTGGACCGCACCATCGACTACATCAGCAAGTTCGGCTTCAACAAGCAGGACCTGCCGCGCAACCTGTCCCTGGCACTGGGCACCGCGACGCTGACGCCAATGGAAATCGCCACGGGTTGGAGCACCTTTGCCAACGGCGGCTACAAGATCACTCCGTACATCATCGACAGGATTGAAAGCCGCAACGGCGAAACGCTGTTTGTCGCCAACCCGCCACGAGTACCGACAGGCGAGCAGGCCAGCGACGGCGTCGCCGCCCCCGCCGCCGAGACCCTCACAGTCAAAGCAACTGGCGGCGAAGCCACCACCGCCCCTGGCGTACCGCAAGCGCCGGCAATCGCCGAACGCATCGTTGACGGCCGTACCACCTACATCCTCAACAGCATGCTGCAGGATGTGATCAAGCTCGGCACCGGCCGGCGCGCCCTGGCACTGGGTCGCACCGACCTGGCCGGCAAGACCGGTACCACCAACGAATCGAAGGATGCATGGTTCTCGGGCTACAACGGAGATTACGTGACCACCGTCTGGACCGGCTTCGACCAGCCCGAGAGCCTGGGTCGTCGCGAATTCGGCGGTACCGTGGCGCTGCCGATCTGGATGACCTACATGGGCGCCGCCCTCAAGGACCGGCCACCCCACACCCAGCCGGAACCGGAAGGCATCCTCAGCCTGCGGGTCGACCCGGCCAGCGGTCGCGCCGCCACCCCAGGCACGCCTGGCGCGTACTTCGAGCTGTTCAAGAGCGAAGACACGCCGCCGTCGGTCAATGAGCTGGGCAACGGTGTAGCGCCGGGCAGCCCGCTGCCGGCGGATGAGGCAGCGCCGATCGATCTGTTCTGAMIRLLKFFGWSIVAVFCGLLLGLSGAFLYLSPGLPSVEALRSIQLQIPLRVYSSDNKLIAEFGEMRRTPIRFADIPPNFINALLSAEDDNFANHYGVDPGSLMRAASQLVKSGHIQSGGSTITMQVAKNFFLTSERSFSRKTTEILLALQIERQLTKDEILELYVNKIYLGNRAYGIEAAAQVYYGKSIRDVSLAQMAMIAGLPKAPSRFNPLANPARSKERRDWILGRMYKLGKISEADYTAAINEPLNASYHVPTPEVNAPYIAEMARAEMVGRYGSDAYTEGFRVTTTVPSNLQEMANTALHEGLMTYDQRHGYRGPESRLPGKTKEAWALELTKQRTISSLEPAIVTQVDKDGIKVLTRNGESEEHVAWDTMKWARPFLNTNSMGANPRQPSDVAQVGDLIRVQRQPDNSLKFSQIPAAQGALVSLDPQNGAIRSLVGGFAFEQSNYNRALQAKRQPGSSFKPFVYSAALDNGYTAASLVNDAPIVFVDEYLDKVWRPKNDTNTFLGPIRLREALYKSRNLVSIRLLQALGVDRTIDYISKFGFNKQDLPRNLSLALGTATLTPMEIATGWSTFANGGYKITPYIIDRIESRNGETLFVANPPRVPTGEQASDGVAAPAAETLTVKATGGEATTAPGVPQAPAIAERIVDGRTTYILNSMLQDVIKLGTGRRALALGRTDLAGKTGTTNESKDAWFSGYNGDYVTTVWTGFDQPESLGRREFGGTVALPIWMTYMGAALKDRPPHTQPEPEGILSLRVDPASGRAATPGTPGAYFELFKSEDTPPSVNELGNGVAPGSPLPADEAAPIDLFPGPT0023875_2366DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023875-mrcA-K05366NANA
D1-35_033011065ftsA_2Cell division protein FtsAGTGCTACGACTCTTCAATAAAAAAGCCCACACACTTCTGGGGATCGACATCAGCTCGACGTCGGTGAAGCTGCTCGAATTGAGCCGTCAGGGCGATCGTCTGCGTGTCGAGTCCTACGCTGTCGAGCCGTTGCCAGCCAATGCCGTGGTGGAAAAGAACATCGCCGAGCTGGAAGGAGTGGGCCAGGCGCTTTCACGAGTGCTGGCCAAGGCCAGGACACCCTTGCGCAACGTGGCGGTGGCCGTGGCGGGGTCGGCGGTTATCACCAAGACCATCGAGATGGACGCCGGGCTGTCCGATGACGACATGGAGAACCAGCTCAAGATCGAGGCCGACCAGTACATTCCTTATCCACTGGACGAAGTGGCGATCGATTTCGAGGTGGCCGGCGTATCGCCTCGCAGCGCCGAGCGTGTCGAGGTGCTGCTGGCGGCTTGTCGCAAAGAGAATGTCGAGGTGCGCGAGGCGGCGCTGGCGCTTGCCGGGCTGACGGCCCGGGTGGTCGATGTGGAAGCGTACGCGCTGGAGCGTGCGTTCGGCCTGCTCGCCACTCAGCTGGCGGCATCCCAGGAGCGCCTGACCGTGGCGGTGATCGACATCGGAGCCACGATGACCACGCTCAGCGTGTTGCACAACGGGCGCATCATTTATACCCGCGAGCAGTTGTTCGGTGGGCGCCAGCTTACCGAGGAAATCCAGCGCCGTTATGGCCTGACGCCGGAGCAGGCCGGCGTGGCAAAAAAGCAGGGCGGCCTGCCGGACGACTATCTCGGCGAAGTGCTGCAACCGTTTCGCGAAGCGCTGGTGCAGCAAGTGTCGCGTTCCCTGCAGTTTTTCTTCGCTTCAGGTCAGTACAGCGCAGTGGACCACATCCTGCTGGCGGGAGGCACGGCCTCGGTCGCGGGCCTCGACCGTTTGATCGAGCAGCGCCTGGGCACACCTACCCAGGTGGCCAACCCGTTTACCAACATGGCCTTGAGCAGCAAGGTCAATGCCGGTGCCCTGGCCAGTGATGCGCCAGCCCTGATGATTGCCTGCGGGCTGGCCCTCAGGAGTTTCGACTGAMLRLFNKKAHTLLGIDISSTSVKLLELSRQGDRLRVESYAVEPLPANAVVEKNIAELEGVGQALSRVLAKARTPLRNVAVAVAGSAVITKTIEMDAGLSDDDMENQLKIEADQYIPYPLDEVAIDFEVAGVSPRSAERVEVLLAACRKENVEVREAALALAGLTARVVDVEAYALERAFGLLATQLAASQERLTVAVIDIGATMTTLSVLHNGRIIYTREQLFGGRQLTEEIQRRYGLTPEQAGVAKKQGGLPDDYLGEVLQPFREALVQQVSRSLQFFFASGQYSAVDHILLAGGTASVAGLDRLIEQRLGTPTQVANPFTNMALSSKVNAGALASDAPALMIACGLALRSFDPGPT0015945_800DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015945-pilM-K02662NANA
D1-35_03302567hypothetical proteinATGGCTCGGATCAACCTGCTTCCCTGGCGCGAAGAACTGCGCGAAGAGCGGCGCAAGCGCTTTTTGCTGGCATTGGTGGGGGCGCTGGTCGGTGCGGTGGGGCTGACGCTGCTGGCGGCACAGTACCTGAGCAACGAGATTGACTACCAAATGGCGCGCAACGCCCATCTGACCGGGGAAATCGCCGTGCTGGACGAGCGCATCAAGCAGATCAGCGAGCTGAAGGCTCGGCGTCAGCAACTGTTGGAGCGCATGCGGATCATCCAGGACTTGCAGGGCAACCGGCCGGTCAGTGCGCGCATTTTCGATCAACTGGCGCGGACCCTGCCGGATGGGGTGTTTTTCACTGAAGTGAAAATGGAAGAGGGCACGCTCTCCATCAAAGGGGCCGCGGCGTCAAACAACCGGGTCTCGGACCTGATGCGCAACCTCGACTCGTCGGAGCTGTTCGATGCGCCCAGCCTGACGGAGGTCAAGGCCACCACGGCGGGCCAGCTCGACCAGGCCAATGTCTTCCAGCTGACGGTTCGCCAGACCCGTCCGGCCGATGCGGAGGACGCCCAATGAMARINLLPWREELREERRKRFLLALVGALVGAVGLTLLAAQYLSNEIDYQMARNAHLTGEIAVLDERIKQISELKARRQQLLERMRIIQDLQGNRPVSARIFDQLARTLPDGVFFTEVKMEEGTLSIKGAAASNNRVSDLMRNLDSSELFDAPSLTEVKATTAGQLDQANVFQLTVRQTRPADAEDAQPGPT0015940_1013DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015940-pilN-K02663NANA
D1-35_03303624hypothetical proteinATGAAGCCGGCAGAGTGGTTCGACGCGCTGCGCAAGATCGATCTCAGTGACCTGGACACCAACAATGTCGGTTCATGGCCGACGCCGGTCAAGTGGCTGGCCGGCATCATGCTAGTGATCCTGGTGCTCGGCCTGGGCTACAACTTTGCCCTCAGTGACCTGGAAAACCAGCTGCAGCAGGTCCGTGAGGAGGAGAACACCCTCAAGGCGCAATTCGCCGGCAAGGCGCACATGGCGGCGAACCTGGAGCGCTATACCGAGCAGATGAAGCAGATGGAAACTTCCTTTGGCGTGCTGTTGCGCCAATTGCCCAGTGACACTGAAGTGCCGGGCCTGCTGGAGGACATCACCCGCACCGGCCTGGGCAGCGGCCTGGAGTTCGAGGAGATCAAGTTGCTGCCGGAGGTCACCCAGCCGTTCTACATCGAGTTGCCGATCCAGATCACTGTGACCGGCGGCTACCATGACCTGGCGACCTTCGTCAGCGGCGTAGCCGGGTTGCCCCGGATCGTCACCCTGCACGATTTCGAGATCGCGCCGATGGAGCCGGAGGCGGGGACGAAGCTGCGCATGAACATCCAGGCCAAGACCTACCGGTACAACGAGCAGGAGGCGCAGCCATGAMKPAEWFDALRKIDLSDLDTNNVGSWPTPVKWLAGIMLVILVLGLGYNFALSDLENQLQQVREEENTLKAQFAGKAHMAANLERYTEQMKQMETSFGVLLRQLPSDTEVPGLLEDITRTGLGSGLEFEEIKLLPEVTQPFYIELPIQITVTGGYHDLATFVSGVAGLPRIVTLHDFEIAPMEPEAGTKLRMNIQAKTYRYNEQEAQPPGPT0015955_795DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015955-pilO-K02664NANA
D1-35_03304546hypothetical proteinATGACGCCGGTCTGCCGCCTGGGTCTGCTGGTCGGGCTGGTTGCGCTGGCCGGGTGCAACAACGACAACGGTTTCAGTGACCTGGATGCCTACATGAACGAGATGCGCCTGCGCCCGCCCGGCAAGATCGAGCCAATGCCGACCTTCAGGCCTCACGAAACCTTTACCTACAGCGCGGCCAACTTGCGCAGCCCTTTTTCCCGGCAGGTTCCAGTCGATCAGGCTGGTCGACAGCAGGGCTCGCGCAACGTCCGCCCCGACCCGAACCGAGTCAAGCAATACCTGGAAGGCTTCAACATCGAGCAATTCGAGATGGTCGGTACGATCTCCAATGCCAGCGGCTCTTTTGCGCTGTTGCGTGGCGCTGGTGGGGTACACCGGCTGAAGGTCGGAGATTACCTGGGGCGTAACGACGGGCGGATCATCGCTATCAGCGCCACCCAGGTTGAAGTGGTCGAAATCGTTCCCGATGGCCAGGGCGCCTGGCTGGAGCGGCCGCGGACCATTCCCTTGAAAGAGCACTCAATAGTGGAACTCCAACAATGAMTPVCRLGLLVGLVALAGCNNDNGFSDLDAYMNEMRLRPPGKIEPMPTFRPHETFTYSAANLRSPFSRQVPVDQAGRQQGSRNVRPDPNRVKQYLEGFNIEQFEMVGTISNASGSFALLRGAGGVHRLKVGDYLGRNDGRIIAISATQVEVVEIVPDGQGAWLERPRTIPLKEHSIVELQQPGPT0015950_581DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015950-pilP-K02665NANA
D1-35_033052073pilQType IV pilus biogenesis and competence protein PilQATGAACAGGATTTTTTCAGCCCTCGGTATTTCGCTATGGATAGCGTTGTTGTCGCCGGTGGTTCATGGCGCCAGCCTGAAAGCGCTGGATGTCGCGGCGTTACCGGGGGACCGGATCGAGTTGAAGCTGACTTTCGACGGGCCGCCGCCCAAGCCCCGTGGTTATACCACCGAGCAACCGGCCCGCATCGCGCTGGATCTGCAGGGGGTGACCAGCCAACTGGCCAGCAAGAGCCGCGACCTGGGCAGTGGCAATGCCCGCAGCGCCACCGTGGTCGAGGCGGGGGATCGTACCCGGTTGATCATCGGCCTTACGCAACTGGCGCCCTATGACACGCGGGTGGAGGGCAACAATCTGTTCGTGGTGGTTGGCAAGGGCGCGACATCGAGAAGCCCGGCCCAACCCGCTCGCCCGGCGACCACCGTCCCTGTGTCTGCCAGGGCTCGCGCCCCGGCGGGCAAAGCCATTCGCGGGGTGGATTTCCAGCGCGGGACCCAGGGTGAAGGCAATGTGGTGATCGATTTGTCCGATCCGTCCATCGCCCCGGACATCCAGGAGCGCGAAGGCAAGATCATCCTCGATTTCGCCAGGACCCAGTTGCCCGAGCCGCTGAGGGTGCGCCTGGACGTCAAGGATTTCGCCACCCCGGTGCAGTTCATCAACGCCAGCGCCGCCTCCGATCGCGCCACCATCAGCATCGAGCCCAGCGGAACCTTCGATTACTCGACCTACCAGACCGACAACAAGCTGACCGTCAGTGTCCGGCCGATGACCGTCGAGGACCTGCAAAAACGCGATACCGATCGAGCCGCCTATAACGGCGAAAAACTGTCCCTGAACTTCCAGGACATCGAGGTGCGTTCGGTACTGCAGCTGATTGCCGATTTCACCAACCTCAACCTGGTGGCCAGCGATACGGTGCAGGGCGGTATCACCCTGCGGTTGCAGAACGTGCCGTGGGATCAGGCGCTGGACCTGGTGCTCAAGACCAAGGGGCTCGACAAGCGCAAAGTAGGTAACGTGCTGCTGGTGGCACCGGCTGACGAGATCGCCGCCCGCGAACGCCAGGAGCTGGAATCGCAAAAGCAGATTGCCGACCTCGCCCCGTTGCGCCGCGAACTGCTGCAGGTCAACTACGCGAAGGCGGCGGACATCGCCAAGCTCTTCCAGTCGGTGACCAGTGCCGAGGCCAAGGCCGATGAGCGCGGCACGATCACGGTCGACGAGCGGACCAACAACATCATCGCCTACCAGACCCAGGACCGGCTCGACGAACTGCGCCGGATCGTGGCGCAGCTGGATATCCCGGTGCGCCAGGTGATGATCGAGGCGCGTATCGTCGAGGCCAACGTCGACTACGACAAAAGCCTGGGCGTGCGCTGGGGGGGCTCGATACAGAACAAGGGCAACTGGAACTCTTCCGGGGTGACCACCGGTGATTCCACCACCATTGGTACGCCGGGCAGCACCAGCACCAACCAGCCATTCGTCGACCTCGGCGCCTCTGGCAATACCTCGGGGATCGGTATCGCGTTCATCACCGACAACGTCCTGCTCGACCTTGAGCTGACGGCCATGGAGAAAACCGGCAACGGTGAAATCGTCTCACAGCCCAAGGTGGTGACCTCCGACAAGGAGACGGCAAAAATCCTCAAGGGCACGGAGATTCCCTACCAGGAGGCCAGCTCCAGCGGCGCCACCTCGGTGTCGTTCAAGGAGGCCTCGTTGTCGCTTGAGGTCACGCCGCAGATAACCCCGGACAACCGCATCATCATGGAGGTCAAGGTCACCAAGGATGAGCCGGACTACCTGAACAAGGTCCAGGATGTACCGCCGATCAAGAAAAACGAGGTCAACGCCAAGGTGCTGGTCAACGACGGCGAGACCATTGTGATTGGGGGCGTTTTCTCAAATACTCAGAGCAAGGTTGTAGATAAGGTGCCATTTCTTGGCGATGTGCCGTATCTTGGCCGCCTTTTCCGGCGTGATGTGGTTTCGGAGAAAAAATCCGAGCTGCTGGTATTTCTCACTCCGCGTATCATGAACAACCAGGCGATTGCTGTGAGTCGTTGAMNRIFSALGISLWIALLSPVVHGASLKALDVAALPGDRIELKLTFDGPPPKPRGYTTEQPARIALDLQGVTSQLASKSRDLGSGNARSATVVEAGDRTRLIIGLTQLAPYDTRVEGNNLFVVVGKGATSRSPAQPARPATTVPVSARARAPAGKAIRGVDFQRGTQGEGNVVIDLSDPSIAPDIQEREGKIILDFARTQLPEPLRVRLDVKDFATPVQFINASAASDRATISIEPSGTFDYSTYQTDNKLTVSVRPMTVEDLQKRDTDRAAYNGEKLSLNFQDIEVRSVLQLIADFTNLNLVASDTVQGGITLRLQNVPWDQALDLVLKTKGLDKRKVGNVLLVAPADEIAARERQELESQKQIADLAPLRRELLQVNYAKAADIAKLFQSVTSAEAKADERGTITVDERTNNIIAYQTQDRLDELRRIVAQLDIPVRQVMIEARIVEANVDYDKSLGVRWGGSIQNKGNWNSSGVTTGDSTTIGTPGSTSTNQPFVDLGASGNTSGIGIAFITDNVLLDLELTAMEKTGNGEIVSQPKVVTSDKETAKILKGTEIPYQEASSSGATSVSFKEASLSLEVTPQITPDNRIIMEVKVTKDEPDYLNKVQDVPPIKKNEVNAKVLVNDGETIVIGGVFSNTQSKVVDKVPFLGDVPYLGRLFRRDVVSEKKSELLVFLTPRIMNNQAIAVSRPGPT0015965_716DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015965-pilQ-K02666NANA
D1-35_03306492aroKCOG0703Shikimate kinase 1ATGGGGGCTGGAAAAAGCACCATCGGTCGTTTGCTGGCCAAAGAGCTGCGCCTGCCATTCAAAGATTCCGACAAGGAAATTGAATTGCGCACGGGCGCCAATATCCCATGGATCTTCGATAAGGAAGGCGAACCGGGCTTTCGCGACCGCGAGCAGGCGATGATTGCCGAGCTGTGCGGTTTCGAAGGCGTGGTGCTGGCGACCGGTGGCGGCGCGGTCATGCGCGAGGCCAATCGTCGGGCGCTGCATGCCGGCGGACGGGTGGTCTACCTGCACGCTTCAGTCGAACAGCAGGTGGGTCGCACCGCCCGTGATCGCAACCGGCCGCTGTTGCGCACCGCCGACCCGGCCAAGACGCTGCGGGACCTGCTCGAATTGCGTGATCCGCTGTATCGGGAAATCGCCGACCTGGTCATCGAAACCGATGAACGGCCGCCACGGATGGTGGTGCTGGAAATTCTCGATCGCCTTCAGCAACTGCCACCCCGTTAAMGAGKSTIGRLLAKELRLPFKDSDKEIELRTGANIPWIFDKEGEPGFRDREQAMIAELCGFEGVVLATGGGAVMREANRRALHAGGRVVYLHASVEQQVGRTARDRNRPLLRTADPAKTLRDLLELRDPLYREIADLVIETDERPPRMVVLEILDRLQQLPPRPGPT0012900_3624DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_SHIKIMATE_DEGRADATION,PGPT0012900-aroL|aroK-K00891NANA
D1-35_033071101aroBCOG03373-dehydroquinate synthaseATGCAGACACTTAAGGTCGACCTGGGCGAGCGCAGCTACCCGATTCATATTGGCGAAGGCTTGCTCGACCAGCCCGAACTGCTGGCGCCGCATATCGCCGGACGGCAAGTCGCGATCATCACCAACGAAACCGTCGCTCCTTTGTACCTGGAACGCCTGACTCGCAGCCTGTCGGCTTTTTCCGTCATTTCCGTCGTACTGCCCGACGGTGAAGCGTTCAAGAACTGGGAAACCCTGCAATTGATCTTCGACGGTCTGCTGACTGCACGTCATGATCGTCGCACCACGGTGATCGCCCTGGGCGGCGGCGTGATCGGCGACATGGCCGGGTTCGCTGCGGCGTGCTATCAACGCGGTGTGGATTTCATCCAGATTCCTACCACGCTGCTATCGCAGGTCGATTCGTCCGTGGGCGGAAAGACCGGCATCAACCATCCGCTGGGCAAGAACATGGTGGGCGCGTTCTATCAGCCCAACGTGGTGCTCATCGACACCGCCTCCCTCAAGACGTTGCCGGCCCGTGAACTGTCCGCAGGCCTGGCTGAAGTGATCAAGTACGGGCTGATCTGCGACGAGCCGTTCCTCGGCTGGCTCGAAGAAAACGTCGACCGCCTGCGTGCGCTGGATCAACAGGCCCTGACTTACGCGATCGAGCGCTCTTGCGCAGCCAAGGCTGCCGTCGTCGGCGCCGATGAGCGCGAATCGGGTGTGCGGGCCACGCTCAACCTCGGCCATACCTTCGGTCATGCCATCGAAACCCATATGGGCTATGGCGTCTGGCTGCACGGTGAGGCCGTTGCCGCAGGGACGGTCATGGCCCTGGAAATGTCCGCGCGCCTGGGTTGGATCAGCCAGCAGGAGCGCGATCGTGGTATTCGCCTGTTTCAACGTGCCGGGTTGCCGGTGGTTCCGCCGGAAGAAATGACCGAGGCGGATTTTCTTGAACACATGGCAATCGACAAAAAAGTGATCGACGGTCGTCTGCGTCTGGTGCTGCTGCGCCGCATGGGCGAAGCGGTAGTGACCGACGATTATCCGAAAGAGGTTCTACAGGCCACGCTGGGAGCGGATTACCGCGCCCTGGCTCAGCTTAAAGGTTAAMQTLKVDLGERSYPIHIGEGLLDQPELLAPHIAGRQVAIITNETVAPLYLERLTRSLSAFSVISVVLPDGEAFKNWETLQLIFDGLLTARHDRRTTVIALGGGVIGDMAGFAAACYQRGVDFIQIPTTLLSQVDSSVGGKTGINHPLGKNMVGAFYQPNVVLIDTASLKTLPARELSAGLAEVIKYGLICDEPFLGWLEENVDRLRALDQQALTYAIERSCAAKAAVVGADERESGVRATLNLGHTFGHAIETHMGYGVWLHGEAVAAGTVMALEMSARLGWISQQERDRGIRLFQRAGLPVVPPEEMTEADFLEHMAIDKKVIDGRLRLVLLRRMGEAVVTDDYPKEVLQATLGADYRALAQLKGPGPT0012865_1678DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATESBIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012865-aroA-K01735NANA
D1-35_033081587damXCell division protein DamXATGACTAGTCTGCATGCCGACGAGGCGTTCCTCGGCCATTTCCAATTGAGTCATGACCCTTTCGCTCCACGGGTCCCGGGCTTCAAGTTTTTCCCTGCTCAACGCAAGCCAGTGCTGGGCCAGTTGCACCATCTGGCCCGCTACAGCCAATTGCTGCTGGTGGTCACCGGCCCCCAGGGCAGTGGCAAGACCTTGCTGCGCCAGGCCCTGGTGGCCAGTACCAACAAGCAGTCGGTGCAAAGCGTGGTGGTATCGGCCCGTGGTGCGGGTGATGCCGCGGGTGTGCTGCGCCAGGTGGCCCAGGCTCTGAATGTCGCCCAGGCGGAAATCGGCGCGATTCTCGACCAGATCGTACAATTGGCGCTCACCGGACAGGAAGTCTACCTGCTGGTGGACGATGCCGAACAACTCGACGAATCGGCCCTGGAGGCACTGCTGGCCCTGGCTGCCGGCGCGCCGGAAGGCCGTCCTCATGTGTTCCTGTTCGGTGAGTCGTCACTGATCGCCGAGCTGGACCAGTTGGAGCTCGAGGAAGAGCGTTTCCACGTTATCGAACTCGCGCCCTACACCGAGGAAGAAACCCGTGAATACCTGGCCCAGCGGCTGGAGGGGGCTGGCCGGGGTATCGAACTTTTCACCGCGGATCAGATCTCTGAGATTCACGAAAGCTCGGACGGCTGGCCTGGCAACATCAACCAGGTGGCCCGAGATGCTCTGATCGAAATCATGATCGCCAGCCGCTCAGCGGTGAAGCGTCCAAGTATGGGGTTCAACATGCCGAAGAAACACGTATTGGCGATTTCCGCCGTTGTCGTGGTTGCGGTGGCCGCCGCCTGGCTGATGCCAGGTCGCAACAAGGCACCGACCACCGGCGCACCTGCCAACGAACAGGCACAGCTGCCTCTCGGCCAGGGCACTCCGCAAGCCAACGGCGGTGCGCCGGCGGTGGAGTTCGCCGGCAATACCCAGCCGATGCCGCTGCCGCTGGTCGGCCAGTCGCAACCGGTCATGCGCGGTCCTCTGGCAGAAGCCGCGGGGGGCATCACCGAAGGCGACGATGGCGCGCCGCCGCCGATCGATGACAGCAGCGACGTACCGCCAACCGTGACCACCACCGCACCACCTGCGGGCGTGCCGGCCGGTCCGACACCGACGCCGACACCTGCCCCGGCTGCCAAACCGACCCCTGCGCCTACCCAGGTCGCCACCGCCAAGCCGGCCCCGACCCCGGCCGCCCCAGCGGCCAAGCCAGCACCGGCGCCTGCGGCCAAGCCTGCCGCCACCCCGGCCAAAGCCACGGGCGGTAGCTGGTACGCAGGTCAGGCACCGGGCAACTACGTGGTGCAGATCCTCGGCACCAGCTCCGAAGCCACTGCGCAGAACTTCGTCAAGGAGCAGGGCGGCGAGTACCGTTATTTCAAGAAAGTGCTCAACGGCAAGCCGCTTTATGTCATCACCTACGGCAGCTTTGCCAATCGTGACGCAGCCGTTTCCGCCATCAAGGCCTTGCCAGCGAAGGTTCAGGCTGGTAAACCTTGGCCTCGCACTGTCGCCAGCGTCCAACAGGAACTGGCAGCAACTCGCTGAMTSLHADEAFLGHFQLSHDPFAPRVPGFKFFPAQRKPVLGQLHHLARYSQLLLVVTGPQGSGKTLLRQALVASTNKQSVQSVVVSARGAGDAAGVLRQVAQALNVAQAEIGAILDQIVQLALTGQEVYLLVDDAEQLDESALEALLALAAGAPEGRPHVFLFGESSLIAELDQLELEEERFHVIELAPYTEEETREYLAQRLEGAGRGIELFTADQISEIHESSDGWPGNINQVARDALIEIMIASRSAVKRPSMGFNMPKKHVLAISAVVVVAVAAAWLMPGRNKAPTTGAPANEQAQLPLGQGTPQANGGAPAVEFAGNTQPMPLPLVGQSQPVMRGPLAEAAGGITEGDDGAPPPIDDSSDVPPTVTTTAPPAGVPAGPTPTPTPAPAAKPTPAPTQVATAKPAPTPAAPAAKPAPAPAAKPAATPAKATGGSWYAGQAPGNYVVQILGTSSEATAQNFVKEQGGEYRYFKKVLNGKPLYVITYGSFANRDAAVSAIKALPAKVQAGKPWPRTVASVQQELAATRNANANANANA
D1-35_033094449gltBCOG0067Glutamate synthase [NADPH] large chainATGAAAGCAGGTCTGTACCAACCAGATGAATTCAAGGATAACTGCGGTTTCGGCCTGATAGCCCATATGCAGGGCGAGCCCAGTCATACCCTTTTGCAAACGGCCATTGAGGCCCTGACCTGCATGACCCACCGTGGTGGGATCAACGCCGACGGGAAGACCGGCGACGGCTGTGGCTTGCTGATTCAAAAGCCTGACGAGTTCCTGCGTGCCATCGCCCAGGAAACGTTTGGCGTGACCCTGCCCAAGCAATACGCCGTGGGCATGGTGTTTTTCAACCAGGACCCGGTAAAGGCACAAGCCGCTCGCGAGAACATGAACCGCGAGATCCTCGCCGCCGGCCTGCAACTGGTCGGCTGGCGCCAAGTGCCGATCGACACCAGCGTCCTCGGCCGCCTGGCCCTTGAGCGCCTGCCGTTGATCGAGCAAGTGTTCATTGCCGGTGAAGGTTTGAGCGACCAGGAAATGTCGATCAAGCTGTTCAGCTCCCGTCGTCGTTCGTCCGTGGCCAACGCCGCTGATACCGACCACTACATCTGCAGCTTTTCCCACAAGACCATCATTTACAAAGGCCTGATGATGCCGGCGGACCTCACCGCCTTTTATCCGGACCTGAGCGATGAGTGCCTGAAAACCGCGATCTGCGTATTCCACCAGCGCTTCTCCACCAACACCCTGCCGAAATGGCCGCTGGCCCAGCCCTTCCGTTTCCTCGCGCACAACGGCGAGATCAACACCATCACCGGCAACCGCAACTGGGCCCTGGCCCGTCGCACCAAGTTCGCCAATGACCTGATGCCGGACCTCGAAGAGCTCGGCCCGCTGGTCAACCGTGTGGGCTCTGACTCCTCGAGCATGGACAACATGCTCGAACTGATGGTGACCGGCGGCATCGACCTGTTCCGTGGCGTGCGCATGCTTGTTCCGCCAGCCTGGCAGAACGTCGAAACCATGGACCCGGACCTCCGTGCCTTCTACGAATACAACTCCATGCACATGGAGCCGTGGGACGGCCCGGCCGGTATCGTCATGACCGACGGTCGCTACGCGGTGTGCCTGCTCGACCGTAACGGTCTGCGTCCGGCGCGCTGGGTCACCACCACCAATGGTTTCATCACCCTGGCGTCGGAAATCGGCGTGTGGAACTACCAGCCCGAAGACGTCATCGCCAAAGGCCGCGTGGGCCCTGGGCAGATTTTCGCCGTGGACACCGAGACCGGGCAGATCCTCGACACCGACGCGATCGACAACCGTCTCAAGTCCCGTCATCCGTACAAGCAATGGCTGCGCAAGAATGCCTTGCGCATCCAGGCGACCATGGAAGACAACGACCACGGCTCGGCTTTCTACGACGTCGACCAGCTCAAGCAGTACATGAAGATGTACCAGGTGACGTTCGAAGAGCGTGACCAGGTGTTGCGTCCGCTGGGCGAGCAGGGCTACGAAGCGGTCGGCTCCATGGGCGATGACACGCCGATGGCCGTGCTGTCCCAGCGCGTGCGCACGCCATATGACTATTTCCGCCAGCAGTTCGCCCAGGTAACCAACCCGCCGATCGACCCGCTGCGCGAAGCGATCGTGATGTCCCTGGAAATCTGCCTCGGTGCCGAGCGCAACATTTTCCAGGAGTCGCCGGAACACGCTTCGCGGGTGATCCTCAGCTCGCCGGTCATTTCTCCGGCCAAGTGGCGCTCGCTGACCAACCTTGATCGTCCCGGCTTCGAACGCCAGGTCATCGACCTGAACTACGACGAAAGCGTCGGCCTGGAAGCGGCGATCCGCAACGTTGCCGATCAGGCCGAAGAAGCCGCGCGTGCCGGACGTACCCAGATCGTTCTGACCGACCGTCATATCGCGCCCGGCAAGCTGCCGATCCACGCCTCGCTGGCCACCGGCGCGGTGCACCATCGCCTGACCGAAAAAGGCCTGCGCTGCGATTCCAACATCCTCGTGGAAACCGCCACGGCTCGCGACCCGCATCACTTTGCGGTGCTGATCGGCTTTGGCGCCTCGGCGGTGTACCCGTTCCTCGCCTACGAAGTGCTGGGCGACCTGATCCGTACCGGTGAAGTGCTGGGCGACCTCTACGAGGTGTTCAAGAACTACCGCAAAGGCATCACCAAGGGGCTGCTCAAGATCCTCTCGAAGATGGGTATCTCGACTATCGCCTCGTACCGTGGCGCGCAGTTGTTCGAGGCCATCGGTCTGTCCGAAGAAGTCTGCGAGCTGAGCTTCCGTGGTGTCCCGAGTCGCATCAAGGGCACCCGTTTCGTCGACATCGAAGCCGAGCAGAAAGCCCTGGCCGCCGAAGCCTGGAGCCCGCGCAAGCCGATCCAGCAGGGCGGTCTGCTGAAGTTCGTCCACGGTGGCGAATACCACGCCTACAACCCGGACGTGGTCAACACCCTGCAAGCCGCCGTGCAACAGGGCGACTACGGCAAGTTCAAGGAGTACACGGCGCTGGTGGATAACCGCCCGGTGTCGATGATCCGCGACCTGCTCAAGGTCAAGACCCTCGACACGCCGCTGGATATCAGCGAAGTGGAGCCGCTGGAGTCGGTACTCAAGCGTTTCGACTCCGCCGGCATCTCCTTGGGCGCCTTGTCTCCGGAAGCCCACGAAGCCCTGGCCGAAGCCATGAACCGCCTCGGTGCGCGTTCAAACTCCGGCGAAGGCGGCGAAGACCCGGCGCGCTACGGCACCATCAAGAGTTCGAAAATCAAGCAGGTGGCCACCGGCCGCTTCGGTGTGACCCCGGAATACCTGGTCAACGCTGAAGTGCTGCAGATCAAGGTTGCCCAGGGCGCCAAGCCCGGCGAAGGCGGCCAGTTGCCTGGCGGCAAGGTCAACGGCCTGATCGCCAAGCTGCGCTACGCGGTGCCCGGCGTGACGCTGATTTCGCCGCCGCCGCACCACGACATCTACTCGATCGAAGACTTATCGCAACTGATCTTCGACCTCAAGCAGGTGAACCCGAAGGCCCTGGTCTCGGTGAAGCTGGTGGCGGAAGCCGGCGTCGGCACGATTGCCGCCGGCGTGGCGAAAGCCTATGCCGACCTGATCACCATCTCCGGCTACGACGGCGGCACCGGTGCCTCGCCGCTGACCTCGATCAAGTACGCTGGCGCGCCGTGGGAACTGGGCCTGGCCGAAACCCACCAGACCCTGCGCGGCAACGACCTGCGCGGCAAGGTGCGGGTGCAGACCGACGGGGGCCTGAAGACCGGCCTCGACGTGATCAAGGCCGCCATTCTCGGTGCCGAGAGCTTCGGCTTCGGTACCGCGCCGATGATCGCGCTGGGCTGCAAATACCTGCGCATCTGCCATCTGAACAACTGCGCCACCGGCGTGGCGACCCAGAACGAGAAGTTGCGCAAGGATCACTACATCGGCACCGTCGACATGGTGGTGAACTTCTTCACCTACGTGGCCGAAGAGACCCGTGAGTGGCTGGCCAAGCTGGGCGTGCGCTCGCTGGAAGAGCTGATCGGCCGCACCGATCTGCTCGAGGTGCTCGAAGGCCAGACCGCCAAGCAGCATCACCTGGACCTGACCCCGTTGCTGGGCAGCGACCTGATCCCGGCGGACAAGCCACAATTCTGCCAGGTCGATCGCAACCCGCCGTTCGACAAGGGCGAGCTGGCCGAGAAGATGGTCGACATGGCCGCTTCGGCGATCAATGACCTGAGCGGTGCTCAGTTCGAGCTGAATATCTGCAACTGCGACCGCTCCATCGGCGCGCGGATTTCCGGCGAGATCGCCCGCAAGCACGGCAACCAGGGCATGGCTCACGCGCCGATCACGTTCCGCTTCAAGGGCACGGCCGGGCAAAGCTTCGGCGTCTGGAACGCAGGCGGCCTGAACATGTACCTGGAAGGTGACGCGAACGACTACGTGGGCAAGGGCATGACCGGCGGCAAACTGGTCATCGTTCCGCCCAAGGGCAGTGTCTACCGGACCCAGGACAGTGCGATCATCGGCAACACCTGCCTCTACGGCGCCACGGGCGGCAAGCTGTTCGCCGCCGGCACCGCGGGTGAGCGTTTCGCCGTACGTAACTCCGGCGCCCACACCGTGGTGGAAGGCACCGGCGATCACTGCTGCGAGTACATGACCGGTGGTTTCGTCTGCGTACTGGGCAAGACCGGTTACAACTTCGGCTCAGGCATGACCGGCGGTTTCGCCTATGTGCTCGACCAGGACAACAGCTTCGTCGACCGGGTCAACCACGAACTGGTGGAAATCCAGCGGATCAGCGGCGAGGCGATGGAAGCCTACCGCAGCCACCTGCAACGCGTGCTGAACGAATACGTCGAGGAAACCGACAGTGAGTGGGGTCGTGAACTCGCCGAGAACCTCGATGACTACGTACGTCGTTTCTGGCTGGTCAAGCCGAAAGCGGCCAACCTGAAGTCGTTGCTTTCCAGCACCCGTGCCAACCCGCAGTGAMKAGLYQPDEFKDNCGFGLIAHMQGEPSHTLLQTAIEALTCMTHRGGINADGKTGDGCGLLIQKPDEFLRAIAQETFGVTLPKQYAVGMVFFNQDPVKAQAARENMNREILAAGLQLVGWRQVPIDTSVLGRLALERLPLIEQVFIAGEGLSDQEMSIKLFSSRRRSSVANAADTDHYICSFSHKTIIYKGLMMPADLTAFYPDLSDECLKTAICVFHQRFSTNTLPKWPLAQPFRFLAHNGEINTITGNRNWALARRTKFANDLMPDLEELGPLVNRVGSDSSSMDNMLELMVTGGIDLFRGVRMLVPPAWQNVETMDPDLRAFYEYNSMHMEPWDGPAGIVMTDGRYAVCLLDRNGLRPARWVTTTNGFITLASEIGVWNYQPEDVIAKGRVGPGQIFAVDTETGQILDTDAIDNRLKSRHPYKQWLRKNALRIQATMEDNDHGSAFYDVDQLKQYMKMYQVTFEERDQVLRPLGEQGYEAVGSMGDDTPMAVLSQRVRTPYDYFRQQFAQVTNPPIDPLREAIVMSLEICLGAERNIFQESPEHASRVILSSPVISPAKWRSLTNLDRPGFERQVIDLNYDESVGLEAAIRNVADQAEEAARAGRTQIVLTDRHIAPGKLPIHASLATGAVHHRLTEKGLRCDSNILVETATARDPHHFAVLIGFGASAVYPFLAYEVLGDLIRTGEVLGDLYEVFKNYRKGITKGLLKILSKMGISTIASYRGAQLFEAIGLSEEVCELSFRGVPSRIKGTRFVDIEAEQKALAAEAWSPRKPIQQGGLLKFVHGGEYHAYNPDVVNTLQAAVQQGDYGKFKEYTALVDNRPVSMIRDLLKVKTLDTPLDISEVEPLESVLKRFDSAGISLGALSPEAHEALAEAMNRLGARSNSGEGGEDPARYGTIKSSKIKQVATGRFGVTPEYLVNAEVLQIKVAQGAKPGEGGQLPGGKVNGLIAKLRYAVPGVTLISPPPHHDIYSIEDLSQLIFDLKQVNPKALVSVKLVAEAGVGTIAAGVAKAYADLITISGYDGGTGASPLTSIKYAGAPWELGLAETHQTLRGNDLRGKVRVQTDGGLKTGLDVIKAAILGAESFGFGTAPMIALGCKYLRICHLNNCATGVATQNEKLRKDHYIGTVDMVVNFFTYVAEETREWLAKLGVRSLEELIGRTDLLEVLEGQTAKQHHLDLTPLLGSDLIPADKPQFCQVDRNPPFDKGELAEKMVDMAASAINDLSGAQFELNICNCDRSIGARISGEIARKHGNQGMAHAPITFRFKGTAGQSFGVWNAGGLNMYLEGDANDYVGKGMTGGKLVIVPPKGSVYRTQDSAIIGNTCLYGATGGKLFAAGTAGERFAVRNSGAHTVVEGTGDHCCEYMTGGFVCVLGKTGYNFGSGMTGGFAYVLDQDNSFVDRVNHELVEIQRISGEAMEAYRSHLQRVLNEYVEETDSEWGRELAENLDDYVRRFWLVKPKAANLKSLLSSTRANPQPGPT0000635_3401DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0000635-gltB-K00265NANA
D1-35_033101419gltDCOG0493Glutamate synthase [NADPH] small chainATGGCTGAACGTCTGAATAACGACTTCCAGTTCATCGATGTCGGGCGCAAGGATCCGAAGAAGAAACTGTTGCGTCAACGCAAGAAAGAGTTCGTGGAAATCTACGAGCCCTTCAAACCCCAGCAGTCGGCCGACCAGGCTCACCGTTGCCTGGGCTGCGGTAACCCGTACTGCGAATGGAAGTGCCCGGTGCACAACTTCATTCCCAACTGGCTGAAGCTGGTGGCCGAGGGCAACATCCTCCAGGCCGCCGAACTGTCCCACCAGACCAACACCTTGCCGGAAGTCTGCGGCCGGGTGTGCCCGCAGGATCGCCTGTGCGAGGGTGCCTGCACCCTCAACGACGGTTTTGGCGCGGTGACCATCGGTTCGGTGGAGAAGTACATCACCGACACCGCATTCGCCATGGGCTGGCGCCCGGACATGTCCAAGGTCAAGCCGACCGGCAAGCGTGTCGCGATCATCGGCGCCGGTCCGGCGGGCCTGGGCTGTGCCGACGTATTGGTGCGCGGTGGCGTGACCCCGGTGGTGTTCGACAAGAACCCGGAAATCGGTGGCCTGCTGACCTTCGGCATTCCCGAGTTCAAGCTGGAAAAGAGCGTGTTGAGCAATCGTCGCGAAGTGTTCACCGGCATGGGTATCGAGTTCCGCCTGAACACCGAGGTGGGCAAGGACGTCACCATGGAGCAACTGCTTGAGGAATACGACGCGGTCTTCATGGGCATGGGCACCTACACCTACATGAAGGGCGGCTTTGCCGGCGAGGACCTGCCAGGCGTCTACGACGCGCTGGACTTCCTGATCGCCAACGTCAACCGCAACCTGGGCTTTGAAAAGTCGCCGGAAGATTTCGTCGACATGAAAGGCAAGAAAGTCGTGGTACTCGGTGGTGGCGACACGGCGATGGACTGCAACCGCACCTCGATTCGCCAGGGCGCCAAGTCGGTGACCTGCGCCTATCGTCGTGACGAAGCAAACATGCCGGGCTCGCGCAAAGAGGTGAAGAACGCCAAGGAAGAGGGCGTGAAATTCCTCTACAACCGCCAGCCGATTGCGATTGTCGGGGAAGACAAGGTCGAAGGCGTGAAGGTAGTCGAGACCCGTCTTGGCGAACCGGATGCCCGTGGCCGCCGCAGCCCCGAGCCGATCCCCGGTTCCGAAGAGATCATCCCGGCCGACGCCGTGGTCATCGCCTTCGGCTTTCGTCCAAGCCCGGCGCCGTGGTTCGAGCAGTTCAGCATCCAGACCGACAGCCAGGGCCGCGTCGTTGCCCCGGAACAAGGCCAGTACAAGCACCAGACCAGCAATCCGAAGATCTTCGCCGGTGGCGACATGGTCCGCGGTTCGGACCTGGTGGTGACGGCGATCTTCGAAGGCCGCAATGCGGCGGAAGGGATTCTGGATTACTTGCAGGTCTGAMAERLNNDFQFIDVGRKDPKKKLLRQRKKEFVEIYEPFKPQQSADQAHRCLGCGNPYCEWKCPVHNFIPNWLKLVAEGNILQAAELSHQTNTLPEVCGRVCPQDRLCEGACTLNDGFGAVTIGSVEKYITDTAFAMGWRPDMSKVKPTGKRVAIIGAGPAGLGCADVLVRGGVTPVVFDKNPEIGGLLTFGIPEFKLEKSVLSNRREVFTGMGIEFRLNTEVGKDVTMEQLLEEYDAVFMGMGTYTYMKGGFAGEDLPGVYDALDFLIANVNRNLGFEKSPEDFVDMKGKKVVVLGGGDTAMDCNRTSIRQGAKSVTCAYRRDEANMPGSRKEVKNAKEEGVKFLYNRQPIAIVGEDKVEGVKVVETRLGEPDARGRRSPEPIPGSEEIIPADAVVIAFGFRPSPAPWFEQFSIQTDSQGRVVAPEQGQYKHQTSNPKIFAGGDMVRGSDLVVTAIFEGRNAAEGILDYLQVPGPT0000640_3460DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMINE_DEGRADATION,PGPT0000640-gltD-K00266NANA
D1-35_033111068hemECOG0407Uroporphyrinogen decarboxylaseATGACTGCCCTGAAGAACGACCGTTTCCTTCGCGCCCTGCTCAAGCAACCTGTAGACGTCACCCCGGTGTGGATGATGCGCCAGGCCGGTCGCTATCTGCCGGAGTACCGCGCCAGTCGCGCCAAGGCCGGCGACTTCATGAGCCTGTGCATGAACCCGCAGTTCGCCTGTGAGGTCACGATGCAGCCGCTGGACCGCTACCCGCAGCTGGACGCGGCGATCCTGTTCTCCGACATCCTCACCATCCCTGACGCCATGGGCCAGGGCTTGTACTTCGAGACTGGTGAAGGCCCGCGCTTCAGGAAAGTCGTCAGCAGCCTGGCCGACATCGAGGCGTTGCCGATTCCCGATCCGCAGAAAGACCTCGGCTATGTCATGGACGCCGTCAGCACCATTCGCCGCGAACTGAACGGCCGCGTCCCGTTGATCGGTTTCTCTGGCAGCCCGTGGACGCTTGCGACCTACATGGTCGAAGGCGGCTCGTCGAAAGACTTCCGCAAGACCAAGGCGATGCTCTACGACAATCCCCAGGCCATGCATTTGCTGCTGGACAAGCTGGCGCAGTCGGTCACGTCCTATCTCAACGGCCAGATCATGGCCGGTGCGCAAGCGGTGCAGATCTTCGACACCTGGGGCGGCAACCTGTCGGCGGCGGCGTACCAGGAGTTTTCCCTGGCCTACATGCGCAAGATCGTCAGCGGTCTGATTCGCGAACACGAAGGTCGCAAAGTCCCGGTGATCCTGTTCACCAAGAACGGCGGGTTGTGGCTGGAAAGCATCGCCGATGCCGGCGCGGACGCCCTGGGCCTGGACTGGACCTGTGACATCGGCAATGCCCGCGAGCGCGTCGGTAACAGAGTCGCGCTGCAAGGCAACATGGATCCGACCGTGCTGTATGCCAAGCCAGAAGCCATCCGTGCCGAAGTCGGGCGCATCCTCGCCAGTTATGGCAAGGGCAGCGGGCACGTGTTCAATCTCGGTCATGGGATCACCCCGGAAGTCGACCCGGAACACGCTGGGGCTTTCCTGCGGGCGGTGCATGAGTTGTCGGCGCAATATCACGGGTAAMTALKNDRFLRALLKQPVDVTPVWMMRQAGRYLPEYRASRAKAGDFMSLCMNPQFACEVTMQPLDRYPQLDAAILFSDILTIPDAMGQGLYFETGEGPRFRKVVSSLADIEALPIPDPQKDLGYVMDAVSTIRRELNGRVPLIGFSGSPWTLATYMVEGGSSKDFRKTKAMLYDNPQAMHLLLDKLAQSVTSYLNGQIMAGAQAVQIFDTWGGNLSAAAYQEFSLAYMRKIVSGLIREHEGRKVPVILFTKNGGLWLESIADAGADALGLDWTCDIGNARERVGNRVALQGNMDPTVLYAKPEAIRAEVGRILASYGKGSGHVFNLGHGITPEVDPEHAGAFLRAVHELSAQYHGPGPT0008465_1890DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008465-hemE-K01599NANA
D1-35_03312615hypothetical proteinATGAAAACCAGAACATTAAAGGGAAGCACGATCCCTGGATTTGATTCTTCGTTGCCCTTGTTTCCCGAATGCCTGCAGAAAAGCCCTTCGAGCTATTCCAAGCCGCGGATACTGCTGCACTGGATATCGGCCTTCATTATTCTATGGACGCTGGCATCCGGTTTTTATGTGGCCTATGTTCCGGTGCCCGTTTCGATCAAACAGTGGGTTGGATCGCTTAATGTTTCACTGACAACGGTATTGATTCCGTTGTTTGCCTGGCGACTCTGGTTGTTTTTCTCCAACCTTGAAATCCGGGCTGCGGCATCGTCCATCAATAAAAGCCTGGCGCTGGCGGTACATGCAGTGATCTATTTGGTCACCAGTGTCGTGCTGGCCACCGGCGTGCTGATGATGACAACGCCGATCAGCCTGTTCGGGCTCATCCAGATCCCCCAGCCGCTGGATGACGAGCGACTGAACGACTTGGCGTTGACCCTCCACATTCTGTCCTGCCTGGCGCTGGCGCTGCTCGTCGCATTGCATATTTGCGCAGTGGTCTGGCATGAGTCTTCTGGCCGCAGGGTGCTACGGCGGATGACATTCAAGAAATCTGTAGGCGTGCTCATTCAGTGAMKTRTLKGSTIPGFDSSLPLFPECLQKSPSSYSKPRILLHWISAFIILWTLASGFYVAYVPVPVSIKQWVGSLNVSLTTVLIPLFAWRLWLFFSNLEIRAAASSINKSLALAVHAVIYLVTSVVLATGVLMMTTPISLFGLIQIPQPLDDERLNDLALTLHILSCLALALLVALHICAVVWHESSGRRVLRRMTFKKSVGVLIQPGPT0013195_501DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_SUPEROXIDE_ANION_RADICALS,PGPT0013195-cybB-K12262NANA
D1-35_033131278ynfMInner membrane transport protein YnfMGTGAAAACCGCTGTCGCTCCACTGGCCCATGAAATCCCGCCGCGTCCTCAGGATGATGCCGCTGCCGAGCTCAAGGACATCTATATCGAAAAAGGCACGCCGTTGTTCATGCGTACGGTGTTGGCCTTGTTCTGCGGCGGTTTTGCAACCTTCGCGCTGTTGTACTGCGTGCAACCGATGATGCCGCTGCTGTCGGCGGAGTTTTCCATCAACGCCGCCCAGAGCAGCTTGATCCTGTCGGTGGCGACCGGCCTGCTTGCCGTCGGCCTGTTGGTCACCGGTCCGATTTCCGACCGCATCGGCCGCAAATCAGTGATGGTCGCCGCGCTGTTCGCAGCGGCGCTGTGCACGATCGCCAGTGCGATGATGCCCACCTGGCAAGGCGTGCTGGTCTTGCGCGCCCTGGTGGGGTTGTCGTTAAGCGGATTGGCGGCGGTGGCGATGACCTACCTGAGCGAAGAAATCCATCCCAGGCACATCGGCCTGGCAATGGGGCTGTACATCGCCGGCAACGCCATCGGCGGCATGTGCGGGCGGCTGATCACCGGCGTATTGATCGACTTTGTCAGCTGGCATACCGCGATGCTGGTGATCGGTGGCCTGGCCCTGGTTGCGGCGGCGGTGTTCTGGCGGATCCTTCCCGAATCGCGCAACTTCCGCCCACGCTCGTTGCATCCACGCAGCCTGCTGGACGGTTTCACCCTGCACTTTCGCGACGCCGGGCTACCCCTGCTGTTTCTTGAAGCCTTCGTACTGATGGGGGCGTTCGTCACGCTGTTCAACTACATCGGCTACCGCCTGCTGGCCGCGCCTTACCATATGGACCAGGCATTTGTCGGGTTGCTGTCGGTCGTGTACCTGTCCGGCATCTACAGTTCGGCCAAGGTCGGGGCAATGGCTGACAAGCTCGGCCGGCGGAAAATGCTCTGGGCGACCATCGCGTTGATGCTGGCGGGCCTGCTGTTGACGCTGTTTACGCCGCTCTGGCTGGTGATCATCGGCATGCTGGTGTTCACCTTCGGTTTCTTCGGCGCGCACTCGGTGGCCAGCAGCTGGATCGGCCGCCGCGCCCTGAAGGCCAAGGGCCAGGCTTCGTCGTTGTACTTGTTCAGCTATTACGCCGGCTCGAGCATTGCCGGTACGGCGGGCGGGGTCGCGTGGCACCTGGGGGGATGGAACGGAACCGGGTTGTTCATCGGCGCACTGCTCTTGGTGGCATTGCTGGTAGCCGTGAAACTGGCGAAGCTGCCGCCGCTCCCCGGCAACGTCCAGGGCTAGMKTAVAPLAHEIPPRPQDDAAAELKDIYIEKGTPLFMRTVLALFCGGFATFALLYCVQPMMPLLSAEFSINAAQSSLILSVATGLLAVGLLVTGPISDRIGRKSVMVAALFAAALCTIASAMMPTWQGVLVLRALVGLSLSGLAAVAMTYLSEEIHPRHIGLAMGLYIAGNAIGGMCGRLITGVLIDFVSWHTAMLVIGGLALVAAAVFWRILPESRNFRPRSLHPRSLLDGFTLHFRDAGLPLLFLEAFVLMGAFVTLFNYIGYRLLAAPYHMDQAFVGLLSVVYLSGIYSSAKVGAMADKLGRRKMLWATIALMLAGLLLTLFTPLWLVIIGMLVFTFGFFGAHSVASSWIGRRALKAKGQASSLYLFSYYAGSSIAGTAGGVAWHLGGWNGTGLFIGALLLVALLVAVKLAKLPPLPGNVQGPGPT0017201_331DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_OTHER_SUGAR_TRANSPORT_RELATED_PROTEINS,PGPT0017201-ynfM-K08224NANA
D1-35_03314894benMHTH-type transcriptional regulator BenMATGGAACTGCGTCACTTGCGTTACTTCATCGCGGTCGCCGAAGAGCTGCACTTCGGCCGCGCCGCCTTGGTGCTTGGGATCTCCCAGCCGCCACTGAGCCAACAGATCCAGGCGCTGGAGCAAGAGATTGGTGCACGCCTGTTCGAGCGCACCAACCGTCGCGTCGAACTGAGCGAGGCCGGACGGCTGTTTCTCGAAGAGGCGCGCCGGGTCCTGGCCCAGGTCGACAAGGCTGCCGACGTAGCCCGCCGCGCCCAGTTGGGGGAATTGGGCGAGCTGAAAATCGGCTTCACCTCCTCAGCCCCCTTCAATTCCACCATTCCCCAGGCGATTTTCACCTTTCGCCAGCGCTTTCCCGCAGTCCACCTGAACCTGCGGGAAATGAGCAGCACCCAAGTGGCCGATGCGTTGCTCGACGAGGCCATCGACGTGGGCATCATGCGTCCGCTGCCGCTTCCCGACGCCTTGAGCGAAATCGAACTCAGCCGCGAACCCTTGGTGGCTGTGCTCAGCTCCAAGCACCCGTTAGCCCAGGGCAGTGACGAAGGCCTGTTTCTCGCTTCGCTGGCCGAGGAACCGTTCGTGTTTTTCCCCCGCAGCTACGGCAGCGGTCTCTACGCCCAATTGTTGACGCTGGCCCGCGACGCCGGTTTCAGCCCGCACTTCGCCCAGGAAGCGGGCGAAGCCATGACCATCATCGGCCTGGTGGCGGCGGGGCTGGGCGTCTCGGTCTTGCCGGCGTCATACCAGCGCATGCGTATCGACGGCGTGGTCTACCGGTCATTGCTCGACCCGGCGGCGGTCTCGGCGGTGTGGCTGGTCCAGCGCAAGGACCAGCGTTCGCCGATGGCGAAGGCGTTTGTGGCGCTGTTGACAAGCAATCCCTTGAGTTGAMELRHLRYFIAVAEELHFGRAALVLGISQPPLSQQIQALEQEIGARLFERTNRRVELSEAGRLFLEEARRVLAQVDKAADVARRAQLGELGELKIGFTSSAPFNSTIPQAIFTFRQRFPAVHLNLREMSSTQVADALLDEAIDVGIMRPLPLPDALSEIELSREPLVAVLSSKHPLAQGSDEGLFLASLAEEPFVFFPRSYGSGLYAQLLTLARDAGFSPHFAQEAGEAMTIIGLVAAGLGVSVLPASYQRMRIDGVVYRSLLDPAAVSAVWLVQRKDQRSPMAKAFVALLTSNPLSNANANANANA
D1-35_03315444hypothetical proteinATGTTCAAGCAGTTGACCTTTACCGCCTTGCTGGCAGTTGCCACGCTGACCACAGGGTGTGCTTCGGTAAAAATGGCGGATGATTCCCAAGACGCGCGGGCGAAAACCTTTCAGACTTCCCCTGACAAAGCGAACATCTACGTTTATCGCAACGAGAGCATGGGCGCCGGGGTAAAAATGCCCGTAACGCTCAACGGCAAGGCTGTCGGGCAGACTGTTGCCAAGTCGTACTTGATGCTGTCGGTGCCGGCTGGTCAACAGACCCTGGTTTCGTCTGCGGAAAATGACTCAGAGCTCAAGCTCAGCACCGAACCAGGCAAGAATTATTTCGTCTGGCAGGAAGTGAAAGTGGGTTTCATCAAGGCTCGTAACAACCTGCAGGTTGTTGATGACAAAACCGGTCGCGCCGGGGTGTCTGAAAGCAAGCTGATCCAAGCCGAGTAGMFKQLTFTALLAVATLTTGCASVKMADDSQDARAKTFQTSPDKANIYVYRNESMGAGVKMPVTLNGKAVGQTVAKSYLMLSVPAGQQTLVSSAENDSELKLSTEPGKNYFVWQEVKVGFIKARNNLQVVDDKTGRAGVSESKLIQAENANANANANA
D1-35_033161227fabF_3COG03043-oxoacyl-[acyl-carrier-protein] synthase 2ATGAAGCGCGTCGTCGTCACCGGCATGGCCGGCATCACCTCCCTGGGCAGCGATTGGGAGACTATCGCGACCCACTTCGCCGCCAACCGCAGCGGCATCCGGCGCATGCACGAGTGGGACCGCTTCAGCGAATTGAACACCCGCCTGGCCGGGCCCGTGGACGACTTTCAGGTCCCGGCCCACTGGACCCGCAAGCAACTGCGCAGCATGGGCCGGGTTTCCCGCCTGGCGGTGGGCTCGGCGGAACAAGCCCTGGCCGACGCCGGACTGTTGGACGACCCGTCGATCAAGGATGGACGCATGGGTGTGTCGTGCGGCTCCTCCACGGGAAGCACCGATGAGATCAAGGCCTTCGGCAACATGCTGCTCAACAGCGTCGCCGAAGGTTTGAACGCCAACTCCTACGTGCGGATGATGCCGCACACCACGGCGGCCAATATCAGCATCTTCTTCGGGCTGACCGGGCGCCTGATTCCCACTTCCAGCGCCTGCACCAGCGGCAGCCATGGCATCGGCTATGCCTACGAGGCGATCAAGTTCGGCCGCCTGCCGTTGATGCTCGCCGGCGGCGCCGAGGAACTGTGCCCGACCGAAGCAATGGTCTTCGATGCGCTCTACGCCACCAGCCTGAAAAACGATGCCCCACAAACCAGCCCGCGACCCTACGACAAGGGCCGCGATGGCCTGGTGATCGGCGAGGGCGCCGGCATGCTGGTCCTCGAAGAACTTGAACACGCGCTGGCCCGTGGCGCGCGGATCCACGCCGAGATCGTCGGCTTCGGCAGCAATGCCGACGGCCAACACGCCACCCGCCCCGAATTGAGCACCATGCGCCGCGCCATGGAACTGGCCCTGGAAGACGCTGGCCTGGAGCCGTCCGCCATTGGCTACGTCAACGGCCACGGCACCGCCACCGAGCAGGGCGACATTGCCGAAACCCTGGCCACCAGCAGCCTGTTTGGCGAACACATGCCCATCAGTTCGCAGAAAAGCTTCCTCGGCCACACCCTGGGCGCCTGCGGTGCCCTGGAATCCTGGTTCAGCATCGAAATGCTGAACCGTGACCGCTACGTGCACACCTTCAACCTCGACGAAGTCGACCCCGAATGCGGCCGTCTCGATTACCTGCGCAACGAGTTTCGCAGCATGAGCAACGAGTACGTGATGAACAACAACTTCGCCTTCGGCGGGGTCAACACCTCGCTGATTTTTCGGCGCTGGCGTTGAMKRVVVTGMAGITSLGSDWETIATHFAANRSGIRRMHEWDRFSELNTRLAGPVDDFQVPAHWTRKQLRSMGRVSRLAVGSAEQALADAGLLDDPSIKDGRMGVSCGSSTGSTDEIKAFGNMLLNSVAEGLNANSYVRMMPHTTAANISIFFGLTGRLIPTSSACTSGSHGIGYAYEAIKFGRLPLMLAGGAEELCPTEAMVFDALYATSLKNDAPQTSPRPYDKGRDGLVIGEGAGMLVLEELEHALARGARIHAEIVGFGSNADGQHATRPELSTMRRAMELALEDAGLEPSAIGYVNGHGTATEQGDIAETLATSSLFGEHMPISSQKSFLGHTLGACGALESWFSIEMLNRDRYVHTFNLDEVDPECGRLDYLRNEFRSMSNEYVMNNNFAFGGVNTSLIFRRWRPGPT0008360_7159DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008360-fabF-K09458NANA
D1-35_03317729fabG_73-oxoacyl-[acyl-carrier-protein] reductase FabGATGACTGAATCCGTACTGGTCACCGGCTCCAGCCGTGGCATCGGCCGCGCCATCGCCCTGCGCCTGGCCCAGGCCGGCCACGACATCGTCTTGCACTGCCGCAGCGGTCGCGCCGAGGCCGAAGCCGTCCAGGCGCAAATCCAGGCCTTGGGCCGCAATGCCCGGGTGCTGCAATTCGACGTCTCCGACCGCGCCGCCTGCAAGACCATCCTTGAGGCCGACGTGGAAACCCATGGCGCCTATTACGGCGTGGTGCTCAACGCCGGCCTGACCCGCGACGGCGCGTTCCCCGCCCTGAGCGAGGACGATTGGGACAGTGTGATGCGCACCAACCTCGACGGTTTCTACAACGTGCTCCACCCGGTGATGATGCCGATGATTCGCCGTCGCGCCGCCGGACGAATCGTTTGCATCACGTCGGTGTCCGGCCTGATCGGCAACCGTGGCCAGGTCAACTACAGCGCCTCGAAGGCGGGCCTGATCGGCGCGGCCAAGGCGTTGGCAATCGAGCTGGGCAAGCGCAAGATCACCGTCAACTGCGTCGCGCCGGGGTTGATCGACACCGCCATGCTCGATGAAAACGTCCCCGTGGAAGAACTGATGAAAATGATCCCCGCCCAGCGCATGGGCACGCCTGAAGAAGTGGCCAGCGCGGTGAATTTCCTGATGTCCGCCGAAGCCGGCTACATCACCCGGCAAGTCCTGGCCGTCAATGGAGGCCTGTGCTGAMTESVLVTGSSRGIGRAIALRLAQAGHDIVLHCRSGRAEAEAVQAQIQALGRNARVLQFDVSDRAACKTILEADVETHGAYYGVVLNAGLTRDGAFPALSEDDWDSVMRTNLDGFYNVLHPVMMPMIRRRAAGRIVCITSVSGLIGNRGQVNYSASKAGLIGAAKALAIELGKRKITVNCVAPGLIDTAMLDENVPVEELMKMIPAQRMGTPEEVASAVNFLMSAEAGYITRQVLAVNGGLCPGPT0003180_20079DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-35_03318468hypothetical proteinATGATTGACTGGCCGCTCGCCGAACTGCTGCCGCACGCCGGCGACATGATTCTCATCGACCGGATCCTGTCCTTTGATGACGAGCAGATCCACACCCTCGCTACCGTCAGGCCCGGCGGTCTGTTCAACCGCGACGACGGCGCGCTGCCGGCCTGGGTCGGCATCGAGCTGATGGCCCAGAGCGTCGCGGCGTTTGCCGGTTGCCACGCACGCCAACGCGGCGATGCCGTGGAGCTGGGCTTTTTGCTCGGAACCCGCAAGTTCGAATGCAACGTCGAATATTTCCCTCTCGGCACCGAGCTGACCTTGCACGGCATCCGATCGCTGGAAGACGACAACGGCATGGGTGTGTTCGAATGCCACATCCGCGCGCCCGGTATCCATGCCAGCGCACGGTTGAATGTGTTCCGCCCGCCCCATGCCGCCCAGTACCTCAATGAACCGTCCGCAACAGGAAACCAGCCATGAMIDWPLAELLPHAGDMILIDRILSFDDEQIHTLATVRPGGLFNRDDGALPAWVGIELMAQSVAAFAGCHARQRGDAVELGFLLGTRKFECNVEYFPLGTELTLHGIRSLEDDNGMGVFECHIRAPGIHASARLNVFRPPHAAQYLNEPSATGNQPPGPT0013310_18DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0013310-fabB-K00647NANA
D1-35_033191197hypothetical proteinATGACCGCTTATTTGAACGCCTTGGGCGTGATTTGCGCCCTGGGTCGAGGCAAACAAAACGTTGCCCGCAACCTGTTTGCCGGCGACTGCTCAGGCGTGCGCGTCGAAGCCGGCTGGGTAGCCGAACGGGCATTGCCGGTGGCTTGCGTAACCGGAGAGCTCGCCGCTATCCCTGAATCCATGGCGGCGCAACGCAGCCGCAACAATCAGCTGCTGCTCGAAGCAGGGTTGCAGATTCGTCCCGAGATCGATCAGGCCATCCAGGCTTACGGTCGTGCGCGCATCGGCATCGTGCTGGGGACCAGCACTTCGGGCATCGACGAGGCCAGCCAGGGCATTGCCCACTATCTGCGCGAGCAACGATTCCCCGAAGGTTACGACTACCAGCAGCAGGAACTCAGCGCGCCCGCCAACTTTCTCTCCGACTGGCTTGGCCTGAGCGGCCCGTCCTACGTGATATCGACCGCTTGCACCTCCAGCGCTCGGGCCCTGATGAGCGCTCGCCGCCTGCTCGACCTGGGATTGTGCGACGCGGTGCTTTGCGGTGGTGTGGACAGCTTGTGCAAGCTGACCCTCAATGGCTTTTCTGCGCTGGAAGCGGTCTCGAGCGAGCGCTGCAATCCGTTCTCGGTGAACCGCAGCGGCATCAACATCGGCGAAGCGGCGGTGCTGTTTCTCATGAGCAGGACCCCGTCCGCCGGGCACTCGATTGCCCTGCTCGGCGACGGCGCCAGTTCCGATGCGCACCACATCTCTGCGCCGGAACCCAGCGGCCGGGGTGCCCGCCAGGCGATGGAAAAAGCCTTGCGCTGCGCGGGCCTTAACGCCAGCCAGATCGACTACCTGAACCTGCATGGCACCGCCACGCAACATAACGACGCCATGGAAAGCCACGCGGTGGCCGGCCTGTTCCCGGCGGGCGTGTCCTGCTCGTCGACCAAGCCGCTGACCGGCCACACCCTCGGCGCGGCGGGCGCATTGGAGGCTGCGTTCTGCTGGTTGGCCCTGTCCGGTGGAAATACCGCACAGGCCCTGCCGCCGCACGTCTGGGACGGCCAGGCCGACCCCGAGTTGCCGGCATTGGACTGGGTAACGTCCGACACCCGCTTGCCCCCGAACCTGCCCCGTCGCCTGATGAGCAACTCGTTTGCTTTCGGCGGCAACAACGTCAGCCTGATTATCGGAGACGCGCAATGAMTAYLNALGVICALGRGKQNVARNLFAGDCSGVRVEAGWVAERALPVACVTGELAAIPESMAAQRSRNNQLLLEAGLQIRPEIDQAIQAYGRARIGIVLGTSTSGIDEASQGIAHYLREQRFPEGYDYQQQELSAPANFLSDWLGLSGPSYVISTACTSSARALMSARRLLDLGLCDAVLCGGVDSLCKLTLNGFSALEAVSSERCNPFSVNRSGINIGEAAVLFLMSRTPSAGHSIALLGDGASSDAHHISAPEPSGRGARQAMEKALRCAGLNASQIDYLNLHGTATQHNDAMESHAVAGLFPAGVSCSSTKPLTGHTLGAAGALEAAFCWLALSGGNTAQALPPHVWDGQADPELPALDWVTSDTRLPPNLPRRLMSNSFAFGGNNVSLIIGDAQPGPT0013310_1924DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0013310-fabB-K00647NANA
D1-35_03320483hypothetical proteinATGATCCGTGGTCTGCTTGCAGGTTTACTCTTGCTGCTCAGCGCCTGCGCCAGCCAGGCACCACTGCCTGAGCGCATGCCGACCCTGGCGCTGCCGCTGCAATTGCACGTCGAACGGCAACTGGACGGCCAGCGCCAGGATTGGCTGCTGGTGATTCAGCGCGAAAGCGCCGGCATCCGCTGGTCGATGATGGATCCGCTGGGCATTCCCGTCGCTCGCCAGCGCCTGGTCGACAGCCAATGGCAAGCCGACGGCCTGCTGCCGCCCAATGCCGAAGCCCGGGAATTGTTCGCCGCCCTGCTGTTTGCCCTGACCCCCGAGGCGGAACTGGCCGGCCGTTACCCGACCGCCCGGCAGCAAGACGCTCGACGAACGCTCGATACCCGCTGGCAGGTGCGCTACACACAACCGCTGGACTTTCAATTGAGCCTGCCGCAGGGGCCGCATTACCGCATTACACCGTTGAGCGAGAGCGCACGATGAMIRGLLAGLLLLLSACASQAPLPERMPTLALPLQLHVERQLDGQRQDWLLVIQRESAGIRWSMMDPLGIPVARQRLVDSQWQADGLLPPNAEARELFAALLFALTPEAELAGRYPTARQQDARRTLDTRWQVRYTQPLDFQLSLPQGPHYRITPLSESARNANANANANA
D1-35_03321729COQ52-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrialATGAGCTACCTGAGCGACAACTACGTCGAAGAAACCCGCTTCGGTTTCTGGTTCCTGCGCAGCCACACCTGGCAGCACCATGTGCTGCGCGTGGCCATCGACGATCTGCGCAGCCTGTTCAGCTCCTCGCCGCCGGCCAATCCGGTGCTGCTGGATGCCGGTTGCGGCCAGGGCAAGTCGTTCCGGTATCTGCGCCAGGTGTTCGCGCCGCAACGCCTGATTGGCGTCGACGCCGACCCTCATAGCCTGAACCTCAGCGCCGAGGAAGCGGCTCGCCAGGGCATGGCCGTGGAGCTGATCGGCAGCGACTGCGCGACATTGGCGGTGCCCGATGCCAGCGTCGATTTGCTGTTCTGCCACCAGACCTTCCATCACCTGGTGGAACAGGAAAAAGCCCTCGCCGAGTTCTATCGCGTGCTCAAGCCCGGCGGCTACCTGCTGTTTGCCGAATCCACCAAGGCCTACATCGATACCTGGGTGATCCGCTGGCTGTTCCGCCACCCGATGCAGGTGCAGAAAAGCGCCGCGCAATACCTGGCGATGATCGCCAATCAAGGGTTCCGCTTCGAAGACTGCAACGTCTCCTATCCGTACCTGTGGTGGAGCCGCGCCAGGGACTTCGGCCTGCTGGAACGCTGGGGCCTGCGCCGGCCCAGGCCGTTTGGCGAGCGCGAGGAAACCCTGGTCAATGTGGTGGCCCGCAAGCCGCTCGAAGGGGTCGCCGGATGAMSYLSDNYVEETRFGFWFLRSHTWQHHVLRVAIDDLRSLFSSSPPANPVLLDAGCGQGKSFRYLRQVFAPQRLIGVDADPHSLNLSAEEAARQGMAVELIGSDCATLAVPDASVDLLFCHQTFHHLVEQEKALAEFYRVLKPGGYLLFAESTKAYIDTWVIRWLFRHPMQVQKSAAQYLAMIANQGFRFEDCNVSYPYLWWSRARDFGLLERWGLRRPRPFGEREETLVNVVARKPLEGVAGNANANANANA
D1-35_033221248kmoKynurenine 3-monooxygenaseGTGCCAACAGTTGAAATGGAACGTCGACAGGTCGTCATCATCGGCGCAGGCCCTTCCGGCGCCATCGCCGCCGCACTGCTCAAGCGCAAGGGCCACGATGTGCTGGTCATCGAGCGCCAGCATTTCCCACGGTTCTCCATTGGCGAAAGCCTGCTGTCCCATTGCCTGGATTTCGTCGAGGAAGCCGGCATGCTCGAGGCGGTCAACGCCGCCGGGTTCCAGCGCAAGAATGGCGCGGCATTCGCCTGGGGCGAGCGCTACAGCGCCTTCGATTTCGGCGATACCTTCAGCGAAGGCAAGCCGACCACGTTCCAGGTCCAGCGCGCCGACTTCGACAAGTTGCTGGCCGATCAGGCGGCGCTGCAAGGCGTGGAAATCCGCTACGGCCAGGCCATCGCCAGCGCCGATTTCAGCCTGGGCAAACCGCAACTGGGCGTGCAGCGCGAAGACGGCAGCGAGTACCGCGTCGAGGCAGACTTCGTCCTTGACGCCAGCGGCTACGGCCGGGTCCTGCCGCGCCTGCTGGACCTTGAGGCGCCGTCGAACTTCCCGCCGCGCCAGGCGGTGTTCACCCACATCGAAGACCGCATCGACAACCCGGCATTCGATCGGGAGAAAATCCTCATCACCACGCATCCGACCCAGCGCGACGTGTGGTTCTGGACCATTCCGTTCAGCGGCGGTCGTTGCTCGGTCGGCGTGGTCGCCGCGGCGGAGCATTTCGAAGGCCGCACCGACGACCTCGATGCCTGCCTGCGCGGCTTCATCAACGAAACCCCAAGCCTGGCCAGCGTACTGGGCAATGCCGTGTGGGACACGCCGGCACGGACCATCGGCGGCTACTCGGCCAACGTCAAGACCCTGCACGGCCCTGGCTTCGCCCTGCTGGGCAACGCCGCGGAATTCCTCGACCCGGTGTTTTCTTCCGGCGTGACCATCGCCATGCGCTCGGCAAGCATGGCCGCCGGCGTGCTGCATCGCCAGCTGCAAGGTGAACAGGTGGATTGGCAGAGCGAGTTCGCCGAACCGCTCAAGCGCGGCGTCGATACCTTCCGCTGCTACGTCGAGGGCTGGTACGCCGGTACTTTCCAGGATGTGATTTTCTACAGCGAAGGCTCCGCCGACATTCGCCGGATGATCAGCGCGATCCTCGCCGGCTATGCCTGGGACCAGCGCAACCCGTTCGTCAGCGAACCCAAGCGGCGCTTGCGCATGCTTTCGGAAATCTGCGCGAGCCCGGCGCCATGAMPTVEMERRQVVIIGAGPSGAIAAALLKRKGHDVLVIERQHFPRFSIGESLLSHCLDFVEEAGMLEAVNAAGFQRKNGAAFAWGERYSAFDFGDTFSEGKPTTFQVQRADFDKLLADQAALQGVEIRYGQAIASADFSLGKPQLGVQREDGSEYRVEADFVLDASGYGRVLPRLLDLEAPSNFPPRQAVFTHIEDRIDNPAFDREKILITTHPTQRDVWFWTIPFSGGRCSVGVVAAAEHFEGRTDDLDACLRGFINETPSLASVLGNAVWDTPARTIGGYSANVKTLHGPGFALLGNAAEFLDPVFSSGVTIAMRSASMAAGVLHRQLQGEQVDWQSEFAEPLKRGVDTFRCYVEGWYAGTFQDVIFYSEGSADIRRMISAILAGYAWDQRNPFVSEPKRRLRMLSEICASPAPNANANANANA
D1-35_033231158hypothetical proteinATGATGACCCTGCTGTTCTGGTTGATGGCCCTGGCGCTGTTTGCCGTGGCGACGATTGTCGGGCGGCGCTGCGGGCTGATCCCGATTGTCAGCCAGTTGCTGCTGGCGACGTTCGGCCTGCCCTTGCTGATGTATTTCTGGATCGAACCGGGCTGGCACCTCAGCGGTGCGCAACTGGTCTCGCCGGTGTGGTTGAAGAACCTCTACAGCCTGGCGTTCGCCCTCTTGTTGGGGCATATCCTCAGCGATGTGATCGACCTGCGCCTCGACCGCCAGAGCGTGAAGATCGCCCTGCCGAGCTTTGGCGTGCCGTTTGCCTGCGGCCTGGCGACCGCGTTCTGGCTGCTGCCGCCGCAACCGTGGATCAGCTCGCTGGCGGTGGGGCTGCTGTTCGCGATCACGGCGATACCCGTGCTGTATCTGTATCTGCGCCACATCGGCTACCCGCCCGACGCGACCCGCCGCCTGGTGCAGACCGCGATCCTGATCGACCTGATCTGCTGGAGCCTGTTCGCCCTCGCCCAGGGCAGCCTGCACCTGGCCAGCCTGCTGCTGCCGCTGGCCGCCGCCGGCGTGCCGTTGCTGCTGCGACTGGCGGGCCTGCGCCAACCCTTGCTGCACAGTGGCCTGTTCTTTGTTCTGCTGGTGGTGGCCGAGCATTACCGGCTCAACGCGCTGATCACCGGTATCGGCTATCTGCTGTGCATGGCGGCGCTCAAAGTGCCGCTGGTATTGCCGCTCGGCGCGGAGTGGATGCACAGGTTGCAGACCTACCTGGCCATCCCCTTGATCCTGACGTTCGGCATTGTGCAGATCAATGTGCACAGCGCCCTGGCCAGCCTCGGCTGGGTCCAGCTGGCGGCGTTGCTGCTGTTGCCGATTGCCAGCAAACTGCTGGGCAACTGGCTGGGGCTGGGTTGGGCCGGAGCCTCGTTCGTCGGTGCCAGCCGCTTTCGGGAAAGCATCCTGCTGAATATTCGCGGCTTGAGTGAAATCGTCTTTCTCAATCTGCTGCTGCAACAGCAACTCATCAGCCCGGCGCTGTACTTCGCGCTGATGCTGATGGGGTTGTTCGCCACATTGCTGCCGGCCCTGGCCGGCTTTCACCGTATTCCCTCGATTGCCGTCCCGGCGAGGAGACCCAGTGCCAACAGTTGAMMTLLFWLMALALFAVATIVGRRCGLIPIVSQLLLATFGLPLLMYFWIEPGWHLSGAQLVSPVWLKNLYSLAFALLLGHILSDVIDLRLDRQSVKIALPSFGVPFACGLATAFWLLPPQPWISSLAVGLLFAITAIPVLYLYLRHIGYPPDATRRLVQTAILIDLICWSLFALAQGSLHLASLLLPLAAAGVPLLLRLAGLRQPLLHSGLFFVLLVVAEHYRLNALITGIGYLLCMAALKVPLVLPLGAEWMHRLQTYLAIPLILTFGIVQINVHSALASLGWVQLAALLLLPIASKLLGNWLGLGWAGASFVGASRFRESILLNIRGLSEIVFLNLLLQQQLISPALYFALMLMGLFATLLPALAGFHRIPSIAVPARRPSANSNANANANANA
D1-35_033242340hypothetical proteinATGACTTTGCCGAGTGAACGCAGGCTGCCGCGGCTGTTCCTGGTCCTGCTGCTGGCGGTGCTCGCACTCGCCGGTTGGCAATGGCGCAACGGTGCGCCGCTGTCGGCCAATCTCATGGAACTGGTTCCGGGCACGTCCCCGGACGCCTTGGAACTTGTCGCTGAACAGCGCATGCAGGAACCGCTCAATCGCGAGGTTCTGGTGCTGGTCGGCCACGCCGATCGCCAGCAGGCCATCGCCCTGGCGCAAGCCCTCGGCGAGCAATGGCAGGCCAGCGGGCTGTTCGACAAGGTCCAATGGACGCTCCAGGCCGACTTGCCGGCGCTTCGCTCGCAGTTGCTGGATGGCCGCTTGGCGATGCTCTCGGCAGTCGACCGGCAACAGTTGATCGAGCAGCCCCAGGCGTTTATCCAGCAGCGGGTACAGGCCCTGTTCGACCCGTTCAGCGGCTTCAGCCTGGTGCCCAGCCAGGACGACTGGCTCGGCCTGACCGGGCGCATCCAGAACAGCCAGCCACAACGCGGCGCCATACAACTGGACGTGGGCAGCGGCGCGCTGGTCGCCGAAGCCGACGGCAAGCATTGGGTAATGCTGCGGGCGCGTACCCAGGGTAACGCCTTTGACATGCACCTGCCGCTGCAAGTCGCCGATCTGCTGCAACGCAGCCGTGATCAAGCCAGCCAGGCCCAGGGCCAATTGTTGGCGGCCAGCGGCCTGTTGTATGCCGCCAGTGGCCAGCGACAGGCTTCGCGCGAGATCACCTGGGTCGGCGGCGGCGCGACGGTCGGCATCCTGGTACTGCTGTTGCTGGCGTTCCGACGCTTTGCCGTGTGGCTGGCGTTCGTGCCGGTGCTGGTCGGCATATTGTTCGGCGCGGTGGCGTGCGTGGCGCTGTTCGGGCGCATGCATGTGATGACCCTGGTCCTGGGTTCGAGCCTGATTGGCGTGGCGGTGGATTACCCGCTGCACTACCTGTCCAAAAGCTGGAGCCTCAAGCCGTGGCGCAGCTGGCCGGCCCTGCGCCTGACCCTGCCGGGCCTGAGCCTGAGCCTGGCAACCACTTGCATCGGCTATCTGGCGCTGGCCTGGACGCCCTTCCCGGCCCTGACCCAGATTGCTATCTTCTCTGCCGCCGGCCTGGTCGGTGCCTATCTGTCGGCGGTCTGCCTGTTGCCGGCCCTGCTCAAGCACGCCGACCTGCGCCCAGCGCAATGGCCGCTACGCCTCTGCCATAACCTGCTCAGGTGCCGCGAAATGTTGCTGGCGCGGGTGCGCACGCCGATTCTGCTGGCCTTGTTGCTGGCCTTCTGTGGTGGCGGACTCTGGCAACTGACCAGCAAGAACGACATCCGCCAGTGGATCGGCACGCCCCAGCACCTGACCGACGAAGCCCGCGATGTCGCGCGCATCACCGGTTTCCAGCCGACCAGCCAGTTCTTCCTGATCCGTGCCGATGATCAAGCGCAGTTGCTCGAACGCCAGACCGCCCTCAACGAGCGGCTCGACCAGTTGATCGGCCTGGAAAAACTCCAGGGCTACCTGTCCCTCAATCAACTGGTCAGCCCACCCGCCGAACAGGAAAAACTCCGCGCGGCCCTGGCGCGGTTGCCGGCGTTCTGGCAACCGCTGCTGGACCTGGGCGTGCCGCTCGCCGCGCTGCAAGCGGAGTTGAAGCAGTTGCAGGCCTTGCCAACCGCCGACATCGATGCCGCATTGAGCGGGCCGCTGGCCGAACCCTACCGCATGCTCTGGCTCGGCCCGACAGGCCAAGGCGTGGCGGCGGTGGTCAGCCTGCAAGGCTTGAACGATGCCGCGTTGCTCCGCGTGCAGGCGGTGGATCTGCCCGGCGTGCAATTAGTGGATCGCCTCGGCGACCTCAACCGCGTCTTCGCCGCCACGCAGGTCAGCGCCGCCGAACTCAAGCTGGCGTCCTGCGTGCTGATCGTGCTGGTGCTGATCTGGCCGTTCGGCGTCGGCGGGGCCCTACGCGTCGTCGCCCTGCCGCTCCTGGCCGCGCTGTGCAGCCTGGCGAGCCTCGGCTGGCTGGGGCAACCGTTGACGCTGTTCAGTCTGTTCGGCCTGTTGCTGGTGACGGCCATCGGGGTCGACTACGCCATCCTCATGCGTGAACAGATCGGTGGGGCCGCCGTGAGCCTGCTGGGCACGCTGCTGGCGGCGACCACCACCTGGCTGTCGTTCGGCCTGCTGGCGTTGTCCAGCACGCCGGCCGTGAGCAATTTCGGCCTCGCGGTGAGCCTGGGGCTGGCGTTCAGCTTCTTGCTGGCGCCGTGGGCCGGGCAGCAGGCCCATGCGAATGCCGCTACGGAGCCGGTGCAATGAMTLPSERRLPRLFLVLLLAVLALAGWQWRNGAPLSANLMELVPGTSPDALELVAEQRMQEPLNREVLVLVGHADRQQAIALAQALGEQWQASGLFDKVQWTLQADLPALRSQLLDGRLAMLSAVDRQQLIEQPQAFIQQRVQALFDPFSGFSLVPSQDDWLGLTGRIQNSQPQRGAIQLDVGSGALVAEADGKHWVMLRARTQGNAFDMHLPLQVADLLQRSRDQASQAQGQLLAASGLLYAASGQRQASREITWVGGGATVGILVLLLLAFRRFAVWLAFVPVLVGILFGAVACVALFGRMHVMTLVLGSSLIGVAVDYPLHYLSKSWSLKPWRSWPALRLTLPGLSLSLATTCIGYLALAWTPFPALTQIAIFSAAGLVGAYLSAVCLLPALLKHADLRPAQWPLRLCHNLLRCREMLLARVRTPILLALLLAFCGGGLWQLTSKNDIRQWIGTPQHLTDEARDVARITGFQPTSQFFLIRADDQAQLLERQTALNERLDQLIGLEKLQGYLSLNQLVSPPAEQEKLRAALARLPAFWQPLLDLGVPLAALQAELKQLQALPTADIDAALSGPLAEPYRMLWLGPTGQGVAAVVSLQGLNDAALLRVQAVDLPGVQLVDRLGDLNRVFAATQVSAAELKLASCVLIVLVLIWPFGVGGALRVVALPLLAALCSLASLGWLGQPLTLFSLFGLLLVTAIGVDYAILMREQIGGAAVSLLGTLLAATTTWLSFGLLALSSTPAVSNFGLAVSLGLAFSFLLAPWAGQQAHANAATEPVQNANANANANA
D1-35_03325594hypothetical proteinATGAAACGCCTGTTCATCTGGCTGCTGCTGTGTGGCTTGGCGCCGCTGGCCCAGGCGTTCGACCTGCAGCAATTGAGCGAGCAACTGGCCCGCCCGGAGGTGATCCACGGCCAGTTCATCCAGGAAAAACATCTGCGCGCCCTGCCCCAGCCGCTGATCAGCAAGGGCCGTTTCGTGCTGGCGAAAAACCACGGCCTGCTGTGGCTGCTGCAAACGCCGCTGCAACAGGACTACCGCATCACGGCCAAAGGTATCGCCCGGCGCGATGGCAACGCCTGGCAGATGCTGCCGAACAAGAGCGCCGGCGCCGAGCAGAACCGCCTGTTCCTGGCGGTATTGCAGGGCGACAGCAGCGGCTTGCAGCGGGATTTCGAGCTGAGCCTGTCGGGCCAGCCACAGCAGTGGAAACTCACCCTGACTCCACGCTCGGTATTGCTCAAACAAGTCTTCAAGCAGATCAATATCGACGGCGGCGAACTGGTCCAGCGCATCGAACTGCTGGAAACCCAGGGTGACAGCACCGTACTGCGGATGCAGGACGCTACCGGCGCGCAACCGTTGAGCGAAGCGGAGCAACATGACTTTGCCGAGTGAMKRLFIWLLLCGLAPLAQAFDLQQLSEQLARPEVIHGQFIQEKHLRALPQPLISKGRFVLAKNHGLLWLLQTPLQQDYRITAKGIARRDGNAWQMLPNKSAGAEQNRLFLAVLQGDSSGLQRDFELSLSGQPQQWKLTLTPRSVLLKQVFKQINIDGGELVQRIELLETQGDSTVLRMQDATGAQPLSEAEQHDFAENANANANANA
D1-35_03326426hypothetical proteinATGCGTAGCCAGGGCGCTCTGCACGTTGACACCCGGATCGTGGTGCCGTTTTTCGACGTCGACTCCATGAACGTGGTCTGGCACGGCCACTACGTCAAATATCTCGAAGTGGCCCGCTGCGCCTTGCTCGACCTGATCGGCCACAACTACAACGACATGCTCGAATCCGGCCATGCCTGGCCGATCATTGACTTGCAGTTACGCTATGTGCGCAGCGCCGTGTTCGGCCAGGCCCTGACCGTGCGCGCCAGCCTGGTGGAGTGGGAAAACCGGCTGAAGATCAATTACCTGATCAGCGACGCCGCCACCGGCGAACGCCTGACCCGGGCGAGTTCGGTGCAGGTGGCCGTGGACATGGCCAGCCGTGAAATGCTGCTGGCCTCGCCTCGGGTATTTGTCGAAGCCGTCGAGAGGAAACTGTCATGAMRSQGALHVDTRIVVPFFDVDSMNVVWHGHYVKYLEVARCALLDLIGHNYNDMLESGHAWPIIDLQLRYVRSAVFGQALTVRASLVEWENRLKINYLISDAATGERLTRASSVQVAVDMASREMLLASPRVFVEAVERKLSPGPT0001850_5417DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0001850-ybgC-K07107NANA
D1-35_033271545cmdFTyrosine 2,3-aminomutaseATGACCAAGCCCATTCCTGAGCCGGTAACTTTCGGCGAACACGCCTTGCGCATCGAAGACGTGCTGGCCCTGGCCAACCGTCAGGCGCCGACGCAATTGCAGGCGGACCCGGCGTTCCGCCAGCGCATTGCCAAGGGTGCGCAATTCCTCGACTCGTTGCTGGACAAGGAAGGCGTCATCTATGGCGTGACCACCGGCTACGGTGACTCTTGCGTGGTGGCCGTGCCGTTGCACCATGTCGAAGCCTTGCCGCGGCACTTGTACACCTTCCACGGCTGCGGGCTGGGCAAGCTCCTCGATGCCCAGGCTACCCGCGCCGTGCTGGCCGCGCGGTTGCAGTCGCTGTGCCACGGCGTGTCAGGGGTGCGAGTGGAGCTGCTGGAACGGCTCCAGGCCTTCCTCGAACACGACATCCTGCCGTTGATTCCGGAAGAAGGCTCGGTGGGCGCCAGTGGCGACCTGACGCCGCTGTCCTACGTCGCCGCCACGCTGTCTGGTGAACGGGAGGTCATGTTCCGTGGCGAGCGCCGGCTGGCCGCCGACGTGCACCGCGAACTGGGCTGGACGCCGCTGGTGCTGCGACCCAAGGAAGCCCTGGCGCTGATGAACGGCACCGCAGTGATGACCGGCCTGGCCTGCCTGGCCTTCGCCCGCGCCGATTACCTGTTGCAACTGGCGACCCGGATCACCGCGCTGAATGTCGTCGCCCTGCAAGGCAACCCGGAGCACTTCGACGAGCGCCTGTTCGCCGCCAAGCCACACCCGGGCCAGATGCAGGTCGCCGCGTGGCTGCGCAAGGACCTGGCCATCGACGCGCCGACCGCGCCGCTGCATCGCCTGCAGGATCGCTACTCCCTGCGCTGCGCCCCTCACGTACTAGGGGTGTTGGCGGACAGCCTGGGCTGGCTGCGTTCGTTCATCGAAACCGAGCTCAACAGCGCCAACGACAACCCGATCATCGACGCCGAAGCCGAGCGTGTGCTGCATGGCGGGCATTTCTACGGCGGGCACATCGCCTTTGCCATGGACAGTCTGAAAAACCTGGTGGCCAACGTCGCCGACCTGCTCGACCGCCAGCTCGCACTGTTGGTGGACGAGCGCTACAACCATGGCCTGCCGAGCAACCTGTCCGGCGCCAGCGCCGAGCGGGCGATGCTCAACCATGGCTTCAAGGCCGTGCAGATCGGCACCAGCGCCTGGACCGCCGAAGCCTTGAAGAACACCATGCCTGCCAGCGTGTTCTCGCGCTCCACCGAATGCCACAACCAGGACAAGGTCAGCATGGGCACCATCGCCGCCCGGGACGCGATCCGTGTGCTGGAGCTGACCGAACAGGTGGCCGCCGCGACCTTGCTGGCGGCCAACCAAGGCGTGTGGCTGCGCAGCCGTGTCGACGACGCGCGACCATTGCCGCCAGCGCTGGCCGCCATGCACCGGCAACTGTCCGAAGACTTCCCGCCGGTGATCGAAGATCGCGCCCTGGAAGGCGAATTGCGCCTGTGCCTGCAACGCATCGCCGAGCAACACTGGAGGCTGCATGCGTAGMTKPIPEPVTFGEHALRIEDVLALANRQAPTQLQADPAFRQRIAKGAQFLDSLLDKEGVIYGVTTGYGDSCVVAVPLHHVEALPRHLYTFHGCGLGKLLDAQATRAVLAARLQSLCHGVSGVRVELLERLQAFLEHDILPLIPEEGSVGASGDLTPLSYVAATLSGEREVMFRGERRLAADVHRELGWTPLVLRPKEALALMNGTAVMTGLACLAFARADYLLQLATRITALNVVALQGNPEHFDERLFAAKPHPGQMQVAAWLRKDLAIDAPTAPLHRLQDRYSLRCAPHVLGVLADSLGWLRSFIETELNSANDNPIIDAEAERVLHGGHFYGGHIAFAMDSLKNLVANVADLLDRQLALLVDERYNHGLPSNLSGASAERAMLNHGFKAVQIGTSAWTAEALKNTMPASVFSRSTECHNQDKVSMGTIAARDAIRVLELTEQVAAATLLAANQGVWLRSRVDDARPLPPALAAMHRQLSEDFPPVIEDRALEGELRLCLQRIAEQHWRLHAPGPT0020230_1534DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_HISTIDINE_DEGRADATION,PGPT0020230-hutH-K01745NANA
D1-35_03328939hypothetical proteinATGAGCACAGACAAACAGCACTGGGCGGACCGCCAGGAGCGCGGCAGTTTCTGGCTGATGAAACTCACCGCGTTGGCTGCGAAGGTTCTTGGCCGAAGGCTTCTCACGCCGGTGCTGTACGGCATCGTCCTGTATTTCTTTGTTTTCGGCCGCAGCGCCCGGCAAGCGGCGTGGCAGTACCAGCAACGGCTCGCCGACTGGAGCCGTCAGCCCGAGTTGCGCCCAACGCATCGGCGAGTGTTCGGACAGTTCATGGCTTTTGCCGATTCGCTGCTGGATAAACTCGACGTCTGGAACGGCAAGCTGAGCATCGACCAGATCGAAATCGTCGACCCGGCGCTGCTGCGCAATCACCTGCGCGACAGCCGCGGGCAAATGCTGGTGGGCGCGCACCTGGGCAATCTGGAAATGTGCCGGGCCCTGGCCGAACTGGGCGAGAAGGTCACCATGAACGTGCTGGTGCACACCAAGCACGCCGAGCAGTTCAATCGTTTGCTCGGCGAGGCCGGCGCCACGCACCTGCGGTTGATCCAGGTCAGCGAGCTGGACCCGCTGATCATGTTGCAACTGAGCGAACGCCTGGAGCGCGGCGAATGGTTGGCGATCGCCGGCGACCGCGTGCCGCTGCATGGCGGGCGCAGCGTGACGGTGGATTTCATGGGGCACCCGGCCGCCTTCCCGCAAGGGCCCTGGCTGCTGGCCGGCCTGTTGAAATGCCCGGTCAACCTGCTGATGTGCCTCAAGCACGAGGGACGTTATCGCGTCACCCTCGAACCGTTCGCCGATGCCGTGGTTTGGAAACGCAACGAGCGCGAACAGGTGATCGCCCATTGGGCCGGCCTGTACGCCGGCCGCCTGGCGCAGTATTGCCTCCAGGCGCCACAACAGTGGTTCAACTTTTACCCTTTCTGGAAGACCGATGACCAAGCCCATTCCTGAMSTDKQHWADRQERGSFWLMKLTALAAKVLGRRLLTPVLYGIVLYFFVFGRSARQAAWQYQQRLADWSRQPELRPTHRRVFGQFMAFADSLLDKLDVWNGKLSIDQIEIVDPALLRNHLRDSRGQMLVGAHLGNLEMCRALAELGEKVTMNVLVHTKHAEQFNRLLGEAGATHLRLIQVSELDPLIMLQLSERLERGEWLAIAGDRVPLHGGRSVTVDFMGHPAAFPQGPWLLAGLLKCPVNLLMCLKHEGRYRVTLEPFADAVVWKRNEREQVIAHWAGLYAGRLAQYCLQAPQQWFNFYPFWKTDDQAHSNANANANANA
D1-35_03329735hypothetical proteinATGCATAACCCCTGCGCCGTCATCCCGGTCTACAACCACGAAACCGCCATCGCGACGGTGGTCCAGACGTTGCTTGGCAACGGTTTGCCCTGCGTGCTGGTGGACGATGCCAGCAGCCCGGCCTGCGCGGCTGTGCTGGAGCAACTGGCCGGGCATGAGCGGGTTCACCTGGTCCGGCTGGCAGTGAACCAGGGTAAAGGCGGCGCGGTGATGACCGGCCTGCGGGAGGCTTCGCGCCTGGGCTTCAGCCACGCCTTGCAGGTCGACGCCGATGGGCAACACGACCTTGGTGACGTGCGCACCTTCATCGAGAAATCCCGCGCCCACCCGGACGCGCTGATCTGCGGCTATCCGCTGTACGACGCCAGCGTGCCGAAGGGCCGTCTGTACGCGCGCTACCTGACTCACGTGATGGTCTGGATCAACAGCCTGTCGCTGCAGATCCGCGATTCGATGTGCGGCTTCCGGGTCTATCCGCTGGCCCCCACCCTGGCACTGATCGACTCGGCGAACATCGGCAAGCGCATGGACTTCGATTCGGACATCCTGGTGCGCCTGTCCTGGCGCAACCAGCCGATGCACTGGTTGCGCACCCGCGTGCATTACCCTTTGGACGGGGTTTCGCATTTTCGCCTGTTCCACGACAACGTGCTGATTTCACGCATGCACACTCGGTTGTTCTTCGGCATGCTGGTGCGCTTGCCGGCGATTCTCTGGCGGCGGTGGCGAGCATGAMHNPCAVIPVYNHETAIATVVQTLLGNGLPCVLVDDASSPACAAVLEQLAGHERVHLVRLAVNQGKGGAVMTGLREASRLGFSHALQVDADGQHDLGDVRTFIEKSRAHPDALICGYPLYDASVPKGRLYARYLTHVMVWINSLSLQIRDSMCGFRVYPLAPTLALIDSANIGKRMDFDSDILVRLSWRNQPMHWLRTRVHYPLDGVSHFRLFHDNVLISRMHTRLFFGMLVRLPAILWRRWRAPGPT0023090_13DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-O-ANTIOGEN_BIOSYNTHESIS,PGPT0023090-ppgS-K22907NANA
D1-35_033301683acs_2Acetyl-coenzyme A synthetaseATGAATTGGATAACACTTGAGCAGATGCTGCTCAAGGCCCAGCCGGACCGTGTTGTTGCAGTCGCCCCGGCATTAAACCACTCGCAACTGCGCGACGACGCGCTCTGCCTGGCCGCTAGCCTGCAAGCCCGGGACATCCGGCGCGTGGCCGTGCATTTCGAAGATGCCGCCGACCTCGCGGTGGCCCTGCTCGGCGCCTGGCGCGCCGGGGCGCAGGTGCTGCTGCCCGCCGACCTGCAAGCGCAAACCCGCCAGCGCTGGTCGGCCGACGTCGACTTGTGGCTGACCGACCTGCCCGTAGACGCCCGGCCCGACGAGATCCGCCAGGCGCCGCTGGAGGCTGCCGAACTGGACCTCGATCAGTGCTGGTTGACCCTGTGCACCTCCGGCTCCAGTGGCGAGCCCAAGCGCATCGAGAAAACCCTGCGCCAGCTGAGCAATGAAGTCCAGGCGCTGGAGCAATTGTGGGGCGCCGACCTCGGTCCGCAGGCCTGCATGATCGGCAGCGTCGCCACCCAGCATATCTACGGTCTGCTGTTCCGGGTGCTGTGGCCGTTATGCGCCGGACGCACCTTTGTGCGCCGGCAGTTGGCTTTCCCGGAAGACCTTCAGCGCGCCAGTCGCGAGCATCCGGCATTTGCCTGGGTCGCCAGCCCGGCGCTGCTCAAGCGCATGGGCGACAATCTCGATTGGCCGGCCTTGAGCAGCGTACGTCGGGTGTTCTCCTCCGGCGGCGCACTGCCGGCCGAAGCAGCCCGCAGCCTTCAGCAACGCCTGGGACAATGGCCAACGGAAGTGTTCGGCAGCTCGGAAACCGGCGGTATCGCCTGGCGTCAGGGCGGCGACCTCTGGCAACCCTTTGCCGGCGTCGAACTGGGCCAGGACAGTGACGGCGCCCTGCTGATTGCTTCGCCTTATCTCCCAAGCGGCCATGTCGAGCACAGCGCCGACGCGGCGCGTATCACCGAGGACGGGCGCTTCGAATTGCTCGGCCGCCTGGATCGCATCGTCAAGCTTGAAGAAAAACGTATCTCGTTGCCAATGCTGGAGCAGGCGCTGACGGCCCACGACTGGGTCAGCGAAGCACGGCTGGGGGTGGTCCAGGAAAATCGTGCTTCTCTCGGCGCACTGCTGGTGCTCAGCGAAACCGGCCTGCATGCCTTGCGCAACCTGGGCCGACGAGCCATGACCGAGGCCCTGCGCCAGCACCTGAGCGGACATTGCGAAACCCTGGCCCTGCCGCGACGCTGGCGCTGGCTGCGGCAACTGCCGTTCAACGGCCAGGGCAAACTGGCCCAGGCCGAGGTCGAAGCTTTGCTGATGGCGCCACGTCCGAAGGCGCCTGAAGTGCTCGACCAAGGCGAGACCGACGGCGAATGGAACCTGCGTCTGGCCGTGCCGCCAGACTTGGCGTACTTCAGCGGTCACTTCCCCACCGCGCCGGTCCTGCCCGGCGTGGTGCAGGTGGACTGGGCCTTGAACCTGGGCCGCCAACTGATGGAGTTGCCGCCGCGGTTCGTCGGCATGGAAGTGCTCAAATTCCAGCAACTGGTGCGCCCCGGCGATGAAATCCAGCTACACCTGCGCTTCGATCGCGAGCGCGGCAAGTTGTATTTTACCTATCGCAATGACACCGCGGCGTGCTCCAGTGGGCGGATTGTGTTGGGGCCAACCAATGATTAAMNWITLEQMLLKAQPDRVVAVAPALNHSQLRDDALCLAASLQARDIRRVAVHFEDAADLAVALLGAWRAGAQVLLPADLQAQTRQRWSADVDLWLTDLPVDARPDEIRQAPLEAAELDLDQCWLTLCTSGSSGEPKRIEKTLRQLSNEVQALEQLWGADLGPQACMIGSVATQHIYGLLFRVLWPLCAGRTFVRRQLAFPEDLQRASREHPAFAWVASPALLKRMGDNLDWPALSSVRRVFSSGGALPAEAARSLQQRLGQWPTEVFGSSETGGIAWRQGGDLWQPFAGVELGQDSDGALLIASPYLPSGHVEHSADAARITEDGRFELLGRLDRIVKLEEKRISLPMLEQALTAHDWVSEARLGVVQENRASLGALLVLSETGLHALRNLGRRAMTEALRQHLSGHCETLALPRRWRWLRQLPFNGQGKLAQAEVEALLMAPRPKAPEVLDQGETDGEWNLRLAVPPDLAYFSGHFPTAPVLPGVVQVDWALNLGRQLMELPPRFVGMEVLKFQQLVRPGDEIQLHLRFDRERGKLYFTYRNDTAACSSGRIVLGPTNDNANANANANA
D1-35_03331546hypothetical proteinATGAGCCGGCTGATTGGCCTCGGCCTGCTGCTGGCGGGCCTGCTGTACCCCTTCGCGGTGTATTTCGGCATGGAGCACTTTGCTCCATGGCAGTTCGGGCTGTTATTAGGTGGCCTGTGGCTGGCCCGGGCGTTACTCGGCAAAGGCAACCCCGGCAGTCGCTGGATGGCGGCCTCGGCGATTACCTTTTGTGTATTGCTCGCGGTGTTCGACAGCCCGCTCCTGCTGCGCTGGTATCCGGTGCTGATCAGCGCGTTCATGCTCGGGCTGTTCACCCTGAGCCTGAAATATGGCCCGCCGATGGTTGAACGCCTGGCCCGCCTGCGGGAACCGCAATTGCCGGCCAGGGCGGTGATCTATACCCGCCAGGTGACAGTGGCCTGGAGTGTGTTTTTCCTGTGTAACGGTGTGCTCGCTGCGGTCCTGACGCTTTGGGCGCCGCTGAGCTGGTGGATGTTGTACACCGGCCTGATTTCCTACGGACTGATGGGCCTGATGTTTGCCATTGAATGGCTCATACGACAACGGGTAAGAGGCCGCCCATGAMSRLIGLGLLLAGLLYPFAVYFGMEHFAPWQFGLLLGGLWLARALLGKGNPGSRWMAASAITFCVLLAVFDSPLLLRWYPVLISAFMLGLFTLSLKYGPPMVERLARLREPQLPARAVIYTRQVTVAWSVFFLCNGVLAAVLTLWAPLSWWMLYTGLISYGLMGLMFAIEWLIRQRVRGRPNANANANANA
D1-35_03332255acpP_2COG0236Acyl carrier proteinATGCAAACTCGCGACGACATTTTCAACATTCTGCGTGCTGCACTGGTCGAGCTCTTCGAGCTGGACCCCGATCACGTGACGCTGGAAGCCAACCTCTACCAGGATCTGGAAATCGACAGCATCGATGCGGTCGACCTGATCGACCACATCAAGCGCCAGACCGGCAAGAAGATTGCCGCCGAAGAATTCAAGTCGGTGCGCACCGTCAACGACGTGGTGGAGGCGGTCTATCGACTGGTCCAACCGGCCGCATGAMQTRDDIFNILRAALVELFELDPDHVTLEANLYQDLEIDSIDAVDLIDHIKRQTGKKIAAEEFKSVRTVNDVVEAVYRLVQPAAPGPT0011375_2940DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0011375-acpP-K02078NANA
D1-35_03333258acpP_3Acyl carrier proteinATGAGCGATCTGCACCGTGACATCAAACAGCTGATCATCGACGCCCTTGGCCTGGAAGACATCGCCGTCGAGGACATCGGCGACGACCAGACCCTGTTCGGCGAAGGCCTGGGCCTGGATTCGGTGGATGCCCTGGAGCTCGGCCTGGCGATTCAGAAGCAGTACGGCATCAAGATCGACGCCGACGCCAAGGACACCCGTAACCATTTCAGCAATGTGGCAAGCCTTGCGGCCTTCGTCACTGCAAAACGCCCCTGAMSDLHRDIKQLIIDALGLEDIAVEDIGDDQTLFGEGLGLDSVDALELGLAIQKQYGIKIDADAKDTRNHFSNVASLAAFVTAKRPPGPT0011375_2524DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0011375-acpP-K02078NANA
D1-35_03334810hypothetical proteinATGGACCTGGCAACGCAACCGGTGACCGGTAAACATCGCGACGCCTACTACTGGCGCCTGCTCGCAACTGCTGCAAGCTTCGCCCTCTTCGGGCTGGGCGGGCTGTGCCTGCGATTGGTGGTGTTCCCGTTGCTCAGTGCGTTACCCGGCGATCCCACGGCCCATCGGCAACGGGCCCGCCGCACGGTTGGACGTCTGTTCTGGTTCTTCATCCGGTTCATGGCCCGTACCGGCGTGCTCACCTATCGAATCGACGGCGCGGAGAAACTCGGCCGGCCCGGGCAGATGATCATCGCCAACCACCCTTCGCTGATCGACGTGGTGTTCCTGATCGGGCTGGTGCGCGACGCCAACTGCGTGGTCAAGCAGAGTCTCTGGACCAACCCCTTCACCCGTGGCCCGCTGCGCTCGACGCAATACATCAGCAACGATGGCAGCATGGACATGCTCGATGCAGCCAGTGACGCGCTGCAAGACGGCCAGTGCCTGATCGTCTTTCCCGAAGGTACGCGCACCCAGCCAGGCCAGGCCCCGGCCTTTCATCGCGGGGCCGCGGCCATCGCCCTGCGGGGCGCGAAGATCCTCACACCCGTGACGATCAAGGTCAGCCCCACCACCCTGACCAAGGCCGAACCCTGGTACCGCATCCCCCAGCGGCGCGTGCACTTCAGTTTTCGCGTGGGGGCCGATATAGATCCACAAGCCTTCACCGCGCTTGGCCCCCCGCCGCAGGCTTCGCGCCGGCTCAACGATTTTCTGCATCACTATTACATCAAGGAGCTCGCCGAAGATGAGCGATCTGCACCGTGAMDLATQPVTGKHRDAYYWRLLATAASFALFGLGGLCLRLVVFPLLSALPGDPTAHRQRARRTVGRLFWFFIRFMARTGVLTYRIDGAEKLGRPGQMIIANHPSLIDVVFLIGLVRDANCVVKQSLWTNPFTRGPLRSTQYISNDGSMDMLDAASDALQDGQCLIVFPEGTRTQPGQAPAFHRGAAAIALRGAKILTPVTIKVSPTTLTKAEPWYRIPQRRVHFSFRVGADIDPQAFTALGPPPQASRRLNDFLHHYYIKELAEDERSAPNANANANANA
D1-35_03335720hypothetical proteinGTGATCAATTTCAACATCGCCCAATGGCGCGCATGGGCCCCTGGGCTCGAAAGCGTGGACGATTGGCAGGCATGGAGCCGACAACCGGCCGTGCCGCCCATCAGCGATGCCGCCCCTGACGTGTCCTTCCTGCCCGCCATGCAGCGCCGCCGACTCAGCCGCCTGGCGCGCATGGCGTTCAGCGTCGCCTGGCCACTGGCCGAAGGTCGGCCGGACCTGCCGTTGGTCTTTATTTCCCGTCACGGCGAAACCCCGCGCACATTTGAGATTCTCAAGGACCTGGCAGCCGATCAGCCCTTGTCGCCGACACAGTTCAGCCTGTCGGTGCATAACGCCGTCATCGGCCTGTGGTCGATCATGCGCGGCGAAACCAGCGAGATGACCGCCCTCGCCGCTACCGGCGACGGCCTGGAGCACGGCATGCTGGAGGCCGCCGCACTGTTGAACGAGGGTGCGCCGGCGGTACTGCTGGTGATCACTGAAGAGCAACCACCGCAGGTGTACGCGCCGTGGGTCAACGACGTGCCGTTTCCCTACGCGCTGGGGCTCCTGCTGACTTCGGGCGATGACTGGCAACTTGAATTATCCAGCCCGTCGGCACCGATGCCCGGCAGCGACTGGCCCCATGCCCTGGATCTGCTGCGTAAGCTGCTGGAAAACGACACCACCTGCCAACATGCCTGGAAGAATCGTCTATGGACCTGGCAACGCAACCGGTGAMINFNIAQWRAWAPGLESVDDWQAWSRQPAVPPISDAAPDVSFLPAMQRRRLSRLARMAFSVAWPLAEGRPDLPLVFISRHGETPRTFEILKDLAADQPLSPTQFSLSVHNAVIGLWSIMRGETSEMTALAATGDGLEHGMLEAAALLNEGAPAVLLVITEEQPPQVYAPWVNDVPFPYALGLLLTSGDDWQLELSSPSAPMPGSDWPHALDLLRKLLENDTTCQHAWKNRLWTWQRNRNANANANANA
D1-35_03336774soj_2COG1192Sporulation initiation inhibitor protein SojATGCGGCGTGTGGTGTTCAATCAGAAAGGTGGCGTGGGCAAGTCCAGCATCGCCTGCAATCTGGCGGCGGTCAGCGCCAGCGAGGGTTATCGCACGCTGTTGGTGGACCTGGATGCCCAGGCCAACTCCACTCAATACCTGACTGGCCTGACCGGCGATGACATTCCCATGGGGATCGCCGACTTCTTCAAGCAGACCCTGTCGTCGGGGCCCTTCTCGAAGAAGAACAAGGTCGATATCTACGAGACGCCGTTTGACAACCTGCATGTCATCACCGCCACGGCAGAGCTGACGGATCTGCAGCCCAAGCTTGAGGCGAAACACAAGATCAACAAGCTGCGCAAGCTGCTCGAAGAGCTCGACGAGGACTACGACCGGATCTACCTGGATACTCCGCCAGCCCTCAACTTCTATGCGGTTTCAGCGCTGATCGCGGCTGATCGGGTACTGATTCCTTTCGATTGCGACAGCTTCTCTCGCCAGGCGCTGTATGGCCTGATGGCGGAAATCGAAGAGCTGAAGGACGACCATAACGAAGGCCTGGAAGTCGAAGGCATCGTCGTCAACCAGTTCCAGGCCCGCGCCAGCCTGCCGCAGCAGATCCTCGACGAATTGATTGCCGAAGGCCTGCCGGTGTTACCGGTGTACCTGAGCAGTTCGGTGCGCATGCGTGAGTCGCACCAGGCGAGCCTGCCGCTGATCCACCTGGACCCGCGGCATAAGCTGACCCAGCAGTTTGTGGAGTTGCATAATCTGCTGGAAAACGCCGACTGAMRRVVFNQKGGVGKSSIACNLAAVSASEGYRTLLVDLDAQANSTQYLTGLTGDDIPMGIADFFKQTLSSGPFSKKNKVDIYETPFDNLHVITATAELTDLQPKLEAKHKINKLRKLLEELDEDYDRIYLDTPPALNFYAVSALIAADRVLIPFDCDSFSRQALYGLMAEIEELKDDHNEGLEVEGIVVNQFQARASLPQQILDELIAEGLPVLPVYLSSSVRMRESHQASLPLIHLDPRHKLTQQFVELHNLLENADNANANANANA
D1-35_03337423trxCCOG0526Thioredoxin 2ATGCTGATCCCCTGCCCTCATTGCAACGGCCTCAATCGCATCCCCGCCGAACGCCTGGGCGACCAGCCCAAGTGCGGACGTTGCAAGGCCCAGGTGTTATTGAGCGAACCGTTCGAACTCAAGCAAGGCGACTACGCCAGCCAGATCAAGGGCGACCTGCCGCTGTTGGTGGATGTCTGGGCAGACTGGTGCGGTCCGTGCAAGTCCTTCGCGCCGGTCTTCGAACAGGCCGCCGCGCAGCTGGCGGGTAAATGCCGACTGGCCAAGCTCGACAGCGAGGCCAACCAACAACTGTCGGCCCAGCTGGGGATTCGCTCGATTCCCAGCCTGATTCTGTTCAAGGATGGCCGGGAGGTTGCCCGGCAGAGCGGGGCGTTTCCTTTGCCGCAGCTGATGAATTGGTTGCGCGGCCAGGGGATCTGAMLIPCPHCNGLNRIPAERLGDQPKCGRCKAQVLLSEPFELKQGDYASQIKGDLPLLVDVWADWCGPCKSFAPVFEQAAAQLAGKCRLAKLDSEANQQLSAQLGIRSIPSLILFKDGREVARQSGAFPLPQLMNWLRGQGIPGPT0013061_936DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-THIOREDOXINES|THIOESTERASES,PGPT0013061-trxC-K03672NANA
D1-35_03338627ycaC_3COG1335putative hydrolase YcaCATGACTACTTCCTACAACCGTCTCGACAAAGATAACGCCGCCGTTCTGCTGGTGGACCACCAGGCTGGCCTGCTGTCGCTGGTGCGCGACATCGACCCGGACCGTTTCAAGAACAACGTGCTGGCCCTGGCTGACCTGGCCAAGTACTTCCAACTGCCGACCATCCTCACCACCAGCTTCGAAACCGGCCCCAACGGCCCGCTGATGCCAGAACTCAAGACGCTGTTCCCGGACGCGCCTTACATTGCTCGTCCTGGCCAGATCAACGCCTGGGACAACGAAGATTTCGTCAAGGCGATCAAGGCCACCGGCAAGAAGCAATTGATCATCGCCGGTGTCGTGACTGAAGTCTGCGTAGCCTTCCCGGCCCTGTCGGCCCTGGCCGAAGGTTTCGAGGTGTTCGTAGTGACCGATGCGTCCGGTACGTTCAACGAACTGACCCGCCAATCGGCGTGGGACCGCATGTCCTCCTCGGGCGCGCAATTGATGACGTGGTTCGGCCTGGCCTGCGAACTGCACCGCGACTGGCGCAACGATGTGGAAGGTCTGGCGACCCTGTTCTCCAACCACATCCCGGACTATCGCAACCTCATGACCAGCTACAACACGCTGACCAACGCGAAGTAAMTTSYNRLDKDNAAVLLVDHQAGLLSLVRDIDPDRFKNNVLALADLAKYFQLPTILTTSFETGPNGPLMPELKTLFPDAPYIARPGQINAWDNEDFVKAIKATGKKQLIIAGVVTEVCVAFPALSALAEGFEVFVVTDASGTFNELTRQSAWDRMSSSGAQLMTWFGLACELHRDWRNDVEGLATLFSNHIPDYRNLMTSYNTLTNAKNANANANANA
D1-35_03339270hypothetical proteinATGAGCAATCCTCAAGACCCAACCCTTCCCCAGACGCTGGACAACCCCAACGACGACGGCTTCGTGCTTGGCACCGCCGGCCGCGACGAAGACCCGAACGCCGCCACGGCCTATGCGACCGATGACCGCCATGATCGCGATGAGCTGACCCCGGAAGACGCCCGCGGCATGCCGGGGTATCCCGACGAAAAAAAACCGGCGGAATCGGCGGCGGAAGAAGCGGAATCTGGCATCGAGACGCCTGAGCAGGGGAACGATAAGGCGGGGTGAMSNPQDPTLPQTLDNPNDDGFVLGTAGRDEDPNAATAYATDDRHDRDELTPEDARGMPGYPDEKKPAESAAEEAESGIETPEQGNDKAGNANANANANA
D1-35_03340279hypothetical proteinGTGGTCTATATCGCGATCACATCGCTCCCAATGTGGGAGCGAGCCTGCTCGCGAATACTCTCTCTCCCTGACAATCTGAAGCCGTGGCGAGGGAGCTTGCTCCCGCTCGGCGGCGTAGCCGTCGTGGTTTACCTGGACGACTGCGTCGGTCTTTCAGGACTGCTTCGCAGCCCAGCGGGAGCAAGCTCCCTCGCCACGGGGGCCATGTGTCTGGCAGGTCGTTACGACGAGCAGCTGATCTCCAGGTGCTTGCCCCATTCCGGCGGCCTTTCGGCGTAGMVYIAITSLPMWERACSRILSLPDNLKPWRGSLLPLGGVAVVVYLDDCVGLSGLLRSPAGASSLATGAMCLAGRYDEQLISRCLPHSGGLSANANANANANA
D1-35_033411464selOCOG0397Protein adenylyltransferase SelOATGAAAACACTGGAAACGCTGACTTTCGATAACCGCTTCGCCCGCCTGGGCGACGGTTTCTCGGCCCACGTGCTGCCGGAGCCCATCGACAATCCGCGCCTGGTGGTTGCCAGCCCGGCCGCGATGGCGCTGCTTGACCTGGATCCGGCCGAAGCACAGACGCCACTGTTTGCCGAAATTTTCGGCGGCCACAAACTCTGGGCCGAAACCGAGCCTCGGGCCATGGTGTATTCCGGGCATCAGTTCGGCCACTACAACCCGCAATTGGGCGATGGCCGCGGGTTGCTGCTGGGCGAGGTGTACAACGAGGCCGGCGAGCATTGGGACCTGCACCTCAAGGGCGCCGGCCAGACACCGTTTTCGCGGATGGGCGATGGCCGGGCGGTACTGCGCTCCTCGATCCGCGAATTCCTCGCCTCCGAAGCCCTGCATGCGTTGGGCATCCCGACCACGCGCGCGCTGTGTGTGATCGGCTCCGACACCCCGGTATGGCGCGAAAAGCAAGAGCGCGCCGCCATGGTGCTGCGCCTGGCGCCGAGTCATGTGCGCTTCGGGCATTTCGAATACTTCTACTACACCAAGAAACCGGAGTTGCACGCAGCCCTGGCCGAGCACGTGCTGAACCTGCATTTCCCTGAGTGCCGGGAGCAACCGGAACCGTACCTGGCGATGTATCGGGAGATTGTCGAACGCAACGCCGAGTTGATTGCCAAATGGCAGGCCTACGGCTTCTGTCACGGGGTGATGAATACCGACAACATGTCGATATTGGGTATCACCTTCGACTTCGGCCCTTTCGCCTTCCTCGACGACTTCGACGCCAACTTCATCTGCAACCACTCCGACGACCAGGGCCGCTATTCATTCAGCAACCAGGTGCCCATCGGCCAGTGGAACCTCAGCGCCCTCGCCCAGGCCCTGACCCCCTTCATCAGCGTCGACGCCCTGCGCGAGACCCTGGGTCTGTATCTGCCGCTGTACCAGGCCCATTACCTGGACCTGATGCGTCGCCGCCTCGGCCTGACCCGCGCCGAGGACGATGACCAGAAACTGGTGGAGCGCCTGCTGCAACTGATGCAGAACAGCGGCGTCGACTACAGCCTGTTTTTCCGTCGCCTGGGCGAACAGGCGCCCGAACAGGCCGTCGCCCGCTTGCGCGATGACTTTGTCGATCTCAAGGGTTTCGATGCCTGGGGCGAGCTTTACCTCGCTCGGGTCAATCGCGAGGGCGTTGTCGATCAAGCCCAGCGCAGAGCCCGCATGCACGCGGTCAATCCGTTGTATGTATTGCGCAACTACCTGGCGCAGAAAGCCATCGACGCCGCCGAATCAGGCGACTACGAAGAAGTCCGCCGCCTCCACGGCGTACTGTCCCGTCCGTTCGAAGAACAACCGGGCATGGACAGCTACGCCGAAAGGCCGCCGGAATGGGGCAAGCACCTGGAGATCAGCTGCTCGTCGTAAMKTLETLTFDNRFARLGDGFSAHVLPEPIDNPRLVVASPAAMALLDLDPAEAQTPLFAEIFGGHKLWAETEPRAMVYSGHQFGHYNPQLGDGRGLLLGEVYNEAGEHWDLHLKGAGQTPFSRMGDGRAVLRSSIREFLASEALHALGIPTTRALCVIGSDTPVWREKQERAAMVLRLAPSHVRFGHFEYFYYTKKPELHAALAEHVLNLHFPECREQPEPYLAMYREIVERNAELIAKWQAYGFCHGVMNTDNMSILGITFDFGPFAFLDDFDANFICNHSDDQGRYSFSNQVPIGQWNLSALAQALTPFISVDALRETLGLYLPLYQAHYLDLMRRRLGLTRAEDDDQKLVERLLQLMQNSGVDYSLFFRRLGEQAPEQAVARLRDDFVDLKGFDAWGELYLARVNREGVVDQAQRRARMHAVNPLYVLRNYLAQKAIDAAESGDYEEVRRLHGVLSRPFEEQPGMDSYAERPPEWGKHLEISCSSNANANANANA
D1-35_033423363mscKCOG3264Mechanosensitive channel MscKATGCCTACCCTGCGCTCCTTTTTCGCCATTGCCCTGCTCGGCCTGGGTCTTTCCATCTGCACGGTGCACGCCGCCGAACCGCCTACCAGCGCCTCGGTCCAGGCCAGCCTGGACAAGATCGCCGACCGCAAACTGCCGGAGGCCGACCAGAAAGCCTTGCAGGCCGTGTTGCAGAACACCCTGACCCAGCTCAGCAACAAGGCCGACTACGAACAGAAGCTGCAAGCCCTCAAGCAGCAACTGGCCAACGCCCCCAAGCAGAACATCGAAAACCAGCGCGAGCTGGCGCGGCTCAAGGGCACCAATGTGGTGCCGGTGGCGCAGCGCTACGCCAACCTGCCCATCCCTCAGCTCGAACAGATGCTGACGGAGCGCTCCACCCAGCAGAGCGACCTGCAAAAGGCCCTGGCCGACGCCAACAGCCTGGTGATCACCGCCCAGACCCGCCCCGAGCGCGCCCAGGCGGAAATCTCCGCCAGCCAGACCCGCATCCAGCAGATCAACACCATCCTCAAGGCCGGCCGCGACGCCGGCAAGGCCCTCAGCGCCGAACAGCGCGACCAGCTCAACGCTGAACTGGCGGCCCTCAATGCGCTGATTCCATTGCGCCGCCAGGAGCTGGCCGGCAACAGCCAACTGCAAGACCTGGGCAACAGCCAGCATGATTTGCTGTCGGAAAAGATCGACCGCATGGAGCGAGAGATCCAGGATCTGCAGAACCTGATCAACCAGAAGCGCCTGGCCCAGTCCCAGGAAACGGTGACCCAGCAATCCATCGAAGCGCAGAAGGCCGGCGGCAGCAGCCTGCTGGCGACCGAAAGTTCGGCCAACCTGAAGCTCTCCGATTACCTGCTCAAAAGCACCGATCGGCTCAACGAGGTCACCCAGCAGAACCTGCAAACCAAGCAGTTGCTCGATAGCGTCACCCAGACCGACGCCGCTCTGGATGAGCAGATCAGCGTGCTCAAGGGCAGCCTGCTGCTCTCCAAGATTCTCTACAAGCAGCGCCAGACCCTGCCACACCTGAAACTGGACCAGAACCTCGCCGACCAGATCGCCGACATCCGCCTGTACCAGTTCGAGGTCAGCCAGCAACGCGAGCTGCTGAACAATCCAAGCGCTTATGTCGACAGCCTGCTGGCGTCCCAGCCGTCGGAGCAGGTCACGCCGCAACTGCGCAAGACGCTGCTGGAGCTGGCCCTGACCCGGGTCGACCTGTTGGAACGGCTGAACCGTGAGTTGAGCGCGGTGCTCAACGAATCCATCACCTTGCAGCTCAACCAGAAGCAACTGCTCAGTACCGCCCAGAACCTGCGGGCAACGCTTGAAGAACAGATGTTCTGGATTCCCAGCAACAAACCGCTGGATTTCGAATGGATGCGTGGCGTGCCGGCCCGCCTGGAGAAGCAGGTCGACTCACTGCCCTGGGCGTCGAGCCTCAGTGAGCTGGCCGACGGCCTGACCCAGCGGCCGCTGCTGTTCCTGCCCCTGGCACTGCTGATCGGTGCGCTGCTGTGGCGACGCAAGAATCTTTATGCGCGCTTGAACAAGGTTCACCAGGATGTCGGCCACTTCAAGCGCGACAGCCAGTGGCACACGCCCCAGGCGATCCTGATCAACATCCTGCTGGCGATGCCGGTGGCTCTGGCACTGGCGCTGTGCGGCTATGCCTTGCAGATCGACGCCCGCGGGCAGAACACCAACCTCGGCGCCGCGCTGCTGCAGATCGGCCAAGCCTGGCTGGTGTTCTATACCGCCTATCGAATCCTCTCTCCCGGAGGCGTCGCCGAGCTGCATTTCCGCTGGGAAAAACCCCAGGTGGAATTCCTCCAGGCCTGGATCCGTCGACTTGGCCTGGTGGTGCTGGCCCTGGTGGCGGTGGTTGCCGTGGCGGAGTTGCAGCCGTCGGCCCTGGCCGATGACGTACTCGGCATGCCGGTGGTGTTGACCTGCTACGCCTCGATGGCCTGGCTGCTCAGCCGACTGCTGCTCAGCAGCCCGACGCACACCAACGCCTCGCTGTTTCGCAAGGCCGTCGGCGTACTGTTCACCGCGCTGCCGATCGCATTGTTCGTCGCTGTCTGCTTCGGCTACTACTACACCGCGTTGAAACTCAGCGATCGCTTGATCAATACCCTGTACCTGCTGATGTTCTGGCTGGTAATCGAAGCCACCTTCGTGCGCGGCCTGTCGGTCGCGGCCCGGCGACTGGCCTACCAGCGCGCCCTGGCCAAGCGCCAGGCGGCCAAGGAGGTCGGCGACGGTGAAACGGTGGTCGAGGAGCCGACCCTGGACATCGAGAAGGTCAACGAACAGTCCCTGCGCCTGATCCGCCTGGCCCTGCTGGGCGGTTTCATGGCCGCGCTGTACTGGGTCTGGTCGGACCTGATCAGCGTGTTCTCCTACCTGGACAACATCACCCTCTACGAATACACCAGCGGCACCGGCGTGAACATGAGCATGGTGCCCATCAGCATCGGCGACATGCTTGGCGCGCTGATCATCATCGGTATCACTTTCGCCCTGGCGCGCAACCTGCCGGGCCTGCTGGAAGTGTTCGTGCTGTCGAAGCTGAACCTGGCCCAGGGCAGCGCCTACGCCACCACCACGCTGCTGTCCTACGTCATCGCCGGCGTCGGCTTTGTCACCACGTTGTCCACACTCGGCGTGAGCTGGGACAAGCTGCAATGGCTGGTGGCCGCGCTGTCGGTGGGCCTGGGCTTCGGCATGCAGGAGATCTTCGCCAACTTCATCTCCGGCATCATGATCCTGTTCGAGCGCCCGGTGCGGATCGGCGACACCATCACCATCGGCAACCTGTCGGGCACGGTCAGCAAGATCCGCATTCGCGCGACCACCATCACCGACTTCGATCGCAAGGACATCATCGTCCCGAACAAGACCTTCATCACCGGGCAATTGATCAACTGGTCGCTGACCGACACCGTGACCCGGGTGACCCTGAAACTCGGCGTGGACTACGGATCGGACCTGGATCGGGTTCGCGAGCTGCTGCTCAAGGCTGCCCGCGACAACCCGCGCGTGCTGAAAGAGCCGGAGCCGATCGTGTACTTCCTGAACTTCGGTGAAAGCACCCTGGACCACGAGTTGCGCATGCATGTGCGCGACCTCGGCGACCGCAACCCGGTGCTGGACGAGATCAACCGGTTCATCAACCGGGAATTCAAGAAGGAACATATCAACATCTCGTTCCGTCAGATGGAGATCTACCTGAAGAACCTGCAAGGCCAGGAATACAAGCTGGTGCCCGCCGAGCCCGACCACAAGACCCTCGGGCCCGTGCCCTCGGCCGTAGCCAGCATCAAGCCCATTCCGGAGCCACCGCAACAGACACTCGACTGAMPTLRSFFAIALLGLGLSICTVHAAEPPTSASVQASLDKIADRKLPEADQKALQAVLQNTLTQLSNKADYEQKLQALKQQLANAPKQNIENQRELARLKGTNVVPVAQRYANLPIPQLEQMLTERSTQQSDLQKALADANSLVITAQTRPERAQAEISASQTRIQQINTILKAGRDAGKALSAEQRDQLNAELAALNALIPLRRQELAGNSQLQDLGNSQHDLLSEKIDRMEREIQDLQNLINQKRLAQSQETVTQQSIEAQKAGGSSLLATESSANLKLSDYLLKSTDRLNEVTQQNLQTKQLLDSVTQTDAALDEQISVLKGSLLLSKILYKQRQTLPHLKLDQNLADQIADIRLYQFEVSQQRELLNNPSAYVDSLLASQPSEQVTPQLRKTLLELALTRVDLLERLNRELSAVLNESITLQLNQKQLLSTAQNLRATLEEQMFWIPSNKPLDFEWMRGVPARLEKQVDSLPWASSLSELADGLTQRPLLFLPLALLIGALLWRRKNLYARLNKVHQDVGHFKRDSQWHTPQAILINILLAMPVALALALCGYALQIDARGQNTNLGAALLQIGQAWLVFYTAYRILSPGGVAELHFRWEKPQVEFLQAWIRRLGLVVLALVAVVAVAELQPSALADDVLGMPVVLTCYASMAWLLSRLLLSSPTHTNASLFRKAVGVLFTALPIALFVAVCFGYYYTALKLSDRLINTLYLLMFWLVIEATFVRGLSVAARRLAYQRALAKRQAAKEVGDGETVVEEPTLDIEKVNEQSLRLIRLALLGGFMAALYWVWSDLISVFSYLDNITLYEYTSGTGVNMSMVPISIGDMLGALIIIGITFALARNLPGLLEVFVLSKLNLAQGSAYATTTLLSYVIAGVGFVTTLSTLGVSWDKLQWLVAALSVGLGFGMQEIFANFISGIMILFERPVRIGDTITIGNLSGTVSKIRIRATTITDFDRKDIIVPNKTFITGQLINWSLTDTVTRVTLKLGVDYGSDLDRVRELLLKAARDNPRVLKEPEPIVYFLNFGESTLDHELRMHVRDLGDRNPVLDEINRFINREFKKEHINISFRQMEIYLKNLQGQEYKLVPAEPDHKTLGPVPSAVASIKPIPEPPQQTLDPGPT0013825_260DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0013825-mscK|kefA|aefA-K05802NANA
D1-35_033431743nhaP2COG3263K(+)/H(+) antiporter NhaP2TTGACTGCGACGACCATCAACAGCCTGTTCTTGATCGGCGCGTTGCTGGTGAGTGCGAGCATTCTGGTCAGTTCTCTTTCGTCGCGCCTGGGCATCCCGATCCTGGTGATCATCCTCGCCGTGGGCATGGTCGCCGGCGTGGACGGTGCCGGTATTCTTTTTGACAACTACGCCACGGCCTACCTGGTCGGCAACCTCGCGCTGGCGGTGATTCTGCTCGACGGCGGCTTGCGCACGCGGGTCTCAAGCTTTCGCGTGGCATTGTGGCCGGCGTTGTCGCTGGCCACCGTCGGCGTGCTGATCACCACCGGGCTGACCGGCCTGGCAGCGGCGTGGCTATTCGACCTGAACCTGATCCAGGGCCTGCTGATCGGTGCGATCGTCGGCTCCACCGACGCTGCGGCGGTGTTTTCGCTGTTGGGCGGCAAAGGCCTCAACGAACGGGTCAGCGCCACTCTGGAAATCGAGTCCGGCAGCAACGACCCGATGGCGGTGTTCCTCACCGTCACCCTGATCGGCATGCTCGCCAGCGGCGAAACCGGCCTGCAGTGGAGCCTGTTGGGGCACCTGGTGCGCGAGTTCGGTATCGGCGCCGTGATCGGCCTGGGTGGCGGCTGGCTGATGCTGCAACTGGTCAACCGCATCAACCTCGCCAACGGCCTCTACCCGATCCTGGTGATCAGCGGCGGCCTGGCCGTGTTTGCCCTGACCAACGCCCTGCATGGCAGCGGCTTCCTGGCCGTGTACCTGTGCGGACTGGCGATCGGCAACCGCCCGATACGCAGTCGCCACGGCATCCTGCATATGCTCGATGGCATGGCCTGGCTGGCGCAGATCGGCATGTTCCTGGTGTTGGGCCTGCTGGTCACGCCCCATGACCTGCTGCCGATCGCCCTCCCCGCCCTGGGCCTGGCCCTGTGGATGATCCTGTTCGCGCGCCCGCTGTCGGTCATGGTCGGGCTGCTGCCGTTCAAGGCTTTCCACGGTCGCGAGAAGGTGTTCATTTCCTGGGTCGGCCTGCGTGGCGCGGTACCGATCATCCTCGCGGTGTTCCCGCTGATGGCCGGTTTGCCTCACGCACAGCTCTATTTCAACCTGGCATTCTTTATCGTGCTGGTGTCGCTGCTGGTGCAAGGCACGAGCCTGCCGTGGGTCGCCAAGCTTCTGCACGTGACCGTCCCGCCAGAACCTCTGCCGATTTCCCGGGCAGCGCTGGAGGTTCACGTCACCAGCGAGTGGGAGCTGTTCATCTATCGCCTCGGTGCGGAAAAGTGGTGCATCGGCTCGCCGCTTCGGGATCTGAAAATGCCTGACGGAACCCGTATTGCGGCCTTGTTTCGTGGCCAGCAACTACTCCATCCGTCGGGTAGTACGGTCCTGGAAGTCGGTGATCTGCTGTGTGTAATCGGCCATGAACACGACCTGCCAGCCCTGGGAAAACTGTTCAGCCAGGCGCCGCAACGGGGCCTCGATCTGCGCTTTTTCGGCGACTTCGTACTCGAAGGAGACGCCCAGCTGGCCGCGGTCGCGGCGCTGTACGGGCTGCAACTCGACGGCATCGATCCGGACATGTCCCTGGGCCGCTTCATTGCCCAGAAAGTCGGGGGGGCTCCGGTGGTCGGCGACCAGGTGGAGTGGAACAGTACCCTATGGACGGTCGCGGCCATGGACGGGAACAAGATCGGCAAAGTGGGCGTCAGATTCCCCGAAGGAAGTCGCCCGGGCCCCGGCTTGTTCCTCTAAMTATTINSLFLIGALLVSASILVSSLSSRLGIPILVIILAVGMVAGVDGAGILFDNYATAYLVGNLALAVILLDGGLRTRVSSFRVALWPALSLATVGVLITTGLTGLAAAWLFDLNLIQGLLIGAIVGSTDAAAVFSLLGGKGLNERVSATLEIESGSNDPMAVFLTVTLIGMLASGETGLQWSLLGHLVREFGIGAVIGLGGGWLMLQLVNRINLANGLYPILVISGGLAVFALTNALHGSGFLAVYLCGLAIGNRPIRSRHGILHMLDGMAWLAQIGMFLVLGLLVTPHDLLPIALPALGLALWMILFARPLSVMVGLLPFKAFHGREKVFISWVGLRGAVPIILAVFPLMAGLPHAQLYFNLAFFIVLVSLLVQGTSLPWVAKLLHVTVPPEPLPISRAALEVHVTSEWELFIYRLGAEKWCIGSPLRDLKMPDGTRIAALFRGQQLLHPSGSTVLEVGDLLCVIGHEHDLPALGKLFSQAPQRGLDLRFFGDFVLEGDAQLAAVAALYGLQLDGIDPDMSLGRFIAQKVGGAPVVGDQVEWNSTLWTVAAMDGNKIGKVGVRFPEGSRPGPGLFLPGPT0013860_275DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013860-cvrA|nhaP2-K11105NANA
D1-35_033441611hypothetical proteinATGAACATCGCGCCGCGGGCGTTCCTGGGGTTTGCCCTGATCGGCGCCCTGATGCTGGCCCTGGGCGTATTTGCCTTGAGCCAGATGAGCAAGATCCGCGTCTCGGGCGAAACCATCGTCCAGAACAGCGTCCCGAGCATCAAGGCCCTCGACGAGTTCACCCAGCTCACCCTGCGCCTTCGCGTCCTGTCCTATCGCCTGCTGACCAACCGTGAACCGGACGTCCAGCAGAAAACCTATGAGCTGTTCGAACAACGCAATCAGCAGATCCGCGAGGCGCAGACCGCATACGAAAAGCTCATCAGCGCCCCGGATGAACGCGCCGCTTATGAGCAATACGTACAGTTGCTGAATCAGTACCGCCAGCTCGAAGAGCGGATGAAGACCCTGTCGCGCAACAACCAGCTCGATCAATTGCAAGCGCTGCTCAACACTGAATTGCTGAGCAACTCCGACGCGATCAACGCGGCGGTCACCCGTTTGATGGAAATCAACAATCGCCAAGCCGAAATGCTCAACCAGGGTGCTGCCCAACAGTACTCAACGGCTTTCACCTGGGTCGTCACCTTGCTGGTCGTCGCCACCGGCCTGACCCTGCTGTTCGCCTGGCTGTTGACCAACAGCATCACCAAGCCAATCGCCAACGCGCTGGATGCCGCCGAAGAAATTGCCAAGGGCAACCTGACCCGGCCGATCGTCGTGGATGGCAGCGACGAAGCCGGCCGCCTGTTGCGAGCAATGGCGACCATGCAGGAGAAATTGCGCGACACTCTGCAGCGGATCTCCGGCTCGGCCACCCAACTGGCCTCCGCCGCCGAAGAGCTCAACAGCGTCACCGACGAAAGTGCCCGTGGCCTGACCCAGCAGAACAACGAAATCGAGCAGGCCGCCACGGCGGTCAACGAGATGACCAGCGCCGTGGAAGAAGTCGCCCGCAACGCAGTCAGCACTTCCGAAGCGTCGAAGAACGCCACCACTTCGGCGGGTGACGGTCGTGACCTGGTGCAAGAGACCGTCAGCGCCATCGAACGCATGAGCGCCGACGTGCAGAGCACCGCGACGCTGATCGGCAACCTCGCCGATGAGTCCCGCGATATCGGCAAAGTGCTCGATGTGATCCGTGGCCTGGCCGACCAGACCAACCTGCTGGCACTGAACGCCGCCATTGAAGCGGCCCGTGCCGGTGAAGCCGGTCGTGGTTTTGCGGTGGTAGCCGATGAAGTACGCGCCCTCGCCCACCGCACCCAACAGTCGACCAGCGAGATCGAGCGCATGATCGGCAGCATCCAGAGCGGCACCGAACAGGCCGTGGACTCGATGCGCAACAGCACCGAACGCGCCGAGTCGACGCTGAACATCGCCCGCGGGGCCGGGATGTCCCTGGACACCATCAACACCGCCATCGTCGAGATCAACGAACGCAACCTGGTGATCGCCAGCGCCGCCGAGGAACAGGCTCAGGTGGCCCGCGAAGTCGACCGCAACCTGGTGAACATCCGCGACCTGTCGGTGCAATCGGCCACCGGCGCCAACCAGACCACCGCCGCCAGCGCCGAACTGTCGCGCCTGGCCGTAGACCTGAACAGCATGGTCGGGCGGTTCAGCCTCTGAMNIAPRAFLGFALIGALMLALGVFALSQMSKIRVSGETIVQNSVPSIKALDEFTQLTLRLRVLSYRLLTNREPDVQQKTYELFEQRNQQIREAQTAYEKLISAPDERAAYEQYVQLLNQYRQLEERMKTLSRNNQLDQLQALLNTELLSNSDAINAAVTRLMEINNRQAEMLNQGAAQQYSTAFTWVVTLLVVATGLTLLFAWLLTNSITKPIANALDAAEEIAKGNLTRPIVVDGSDEAGRLLRAMATMQEKLRDTLQRISGSATQLASAAEELNSVTDESARGLTQQNNEIEQAATAVNEMTSAVEEVARNAVSTSEASKNATTSAGDGRDLVQETVSAIERMSADVQSTATLIGNLADESRDIGKVLDVIRGLADQTNLLALNAAIEAARAGEAGRGFAVVADEVRALAHRTQQSTSEIERMIGSIQSGTEQAVDSMRNSTERAESTLNIARGAGMSLDTINTAIVEINERNLVIASAAEEQAQVAREVDRNLVNIRDLSVQSATGANQTTAASAELSRLAVDLNSMVGRFSLPGPT0015710_21325DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_03345231hypothetical proteinATGTTGGAAACATCCCTCAGCCAGCTGGAGCAACTGGTCAACGACCTGGTGCAACAGAACCGCCACCTGACCGGCCTGAATGAAAGCCTGAGCGCCGAACTGGCCAAGGCCAAGGATGAAAACGAAAGCCTTCAGCTGAACCTGATGGAACAGGAAGAATTGCACGGCACCACCGCCGCACGGATCCAGGCCCTGATCGAGCGCGCCAGCACCGCAACGGTCGGCGCATGAMLETSLSQLEQLVNDLVQQNRHLTGLNESLSAELAKAKDENESLQLNLMEQEELHGTTAARIQALIERASTATVGANANANANANA
D1-35_03346303hypothetical proteinATGAAGCAGGGTGCCGATGGGGTGACGGTCGTCTCGATTCTCGGAGAGGAATACTCGATCAAGGCGCCTGCCGGGCAGGAGCAGGCGCTGCTGGACGCCGCTTCGATGCTCAAGGCGGCCCTGGCCGATACCAAGCGTAAATTCCCGACGTTGATCGGCGACCGGCTGCTGGTGCTGGCGGCCATGAACCTGTGTTCGCAACAGATTGAAATGCAAAAGCAGCACCGCGCGGAGCTCGACCGCTACGAGGAGCAGGTCAGCGCCACGGTCGAGGTTATTTCCAAGACGATCCAGCAGGCTTGAMKQGADGVTVVSILGEEYSIKAPAGQEQALLDAASMLKAALADTKRKFPTLIGDRLLVLAAMNLCSQQIEMQKQHRAELDRYEEQVSATVEVISKTIQQANANANANANA
D1-35_033471803dmdC_1COG19603-methylmercaptopropionyl-CoA dehydrogenaseATGTCCGAGACGCTGCTCAGTTCCCGCAATCTGGCTTTCGAGCTGTATGAAGTCCTTGATGCCGAAGGCCTGACCCAGCGCGAACGGTTTGCCGAGCACAATCGCGAAACCTTCGACGCGGCCATCGGTACGGCCCGCAGCATCGCCGAAAAATACTTCGCGCCGCACAACCGCAAGAACGACGAAAACGAACCGCGCTATGCAGATGGCCAGGCCATCCTGATCCCGGAAGTGAAACCCGCGGTGGATGCGTTCCTGGAGGCGGGCTTTCTCAACGCCGCCCGCAGCTTCGACGCCGGCGGCATGCAACTGCCGACGCTGCTGTCCCAGGCGTGCTTCGCGCATTTCCAGTCGGCCAATGCTGCTTCGACTTCTTACCCGTTCCTGACCATGGGCGCGGCGAACCTGATCGAAAGCTTTGGTAGCGATGAGCAGAAACAACGCTTCCTGCAACCGATGATCGACGGCCGTTTCTTTGGCACCATGGCCCTGACCGAACCACACGCGGGTTCTTCGCTGGCGGATATTCGTACGCGCGCGGAACCGGCGTCCGACGGCACTTATCGACTCAAGGGCAACAAGATCTTCATTTCCGGTGGCGACCATCCGCTGTCGGAAAACATCGTGCACATGGTCCTGGCCAAACTGCCGGACGCGCCGCCGGGCGTGAAGGGCATCTCGCTGTTTATCGTGCCCAAGTTCCTGGTCAACGAAGATGGCAGCCTGGGCAAGCGCAACGACGTACTGCTGGCCGGGCTGTTTCACAAGATGGGCTGGCGCGGCACTACGTCTACGGCGCTGAACTTCGGTGATAACGGTGAGTGTGTCGGTTACCTCGTCGGCAAACCGCACCATGGCCTGAGCTACATGTTCCAGATGATGAACGAGGCGCGGATCGGCGTCGGCATGGGCGCCGTCATGCTGGGCTACGCCGGTTACCTGTATTCCCTTGAATACGCCCGCGAGCGCCCGCAGGGACGAGTGCCCGACAGCAAGGATCCAGGCACCGCGCCCGTACCGATCATCCAGCACGCCGACGTACGCCGCATGCTGTTGACCCAGAAAGCCTACGTGGAAGGTTCGTTCGACCTGGGCCTGTACGCGGCGCGGCTGTTCGACGACACCACTACGCTTGAGAGCGAAGCCGAGCGCCGCCGCGCCCATGAGTTGCTGGACCTGCTGACGCCTATCGTCAAATCATGGCCATCGGAGTTCTGCCTGAAGGCCAACGAATTGGCGATCCAGATTCTCGGCGGCCATGGTTACACCCGTGAATATCCGGTGGAGCAGTATTACCGCGACAACCGCCTGAACCCGATCCATGAAGGCACCCATGGCATCCAGTCCCTGGACTTGCTCGGACGCAAACTGGCACAGAACGGCGGGGCCGGTCTCAAGCAACTGATCCGTCTGGTGGCCGATACCAGCGAGCGCGCCCAGGCGTACGATTCGTTGACGCCCCTGCGCCAGCCGCTGGAAGCCCTGGTGGCGCGCCTGCAATCGGTCACCCTCGGGCTGCTGACGGACCTGGCCCAGGGCAAGGTCAACAGCAGCCTGGCCAATTCGGCGCTGTACCTGAAAGTGTTTGGCCATATGGTGATTGGCTGGCGCTGGCTGGAACAGGCGATTCGTGCCGAGGAAGGGTTGGCCAGGGGCAATGCGGCGGATGTGGATTTCTACAGGGGCAAGCTGCAAGCGGCGCGCTACTTCCTGACCTGGGAAGTGCCAGGCTGTCATCACGAGCTGGCGATTCTCGAGGCGCGGGATGATACGTGCCTGGGGATGCGGGATGAGTGGTTTTGAMSETLLSSRNLAFELYEVLDAEGLTQRERFAEHNRETFDAAIGTARSIAEKYFAPHNRKNDENEPRYADGQAILIPEVKPAVDAFLEAGFLNAARSFDAGGMQLPTLLSQACFAHFQSANAASTSYPFLTMGAANLIESFGSDEQKQRFLQPMIDGRFFGTMALTEPHAGSSLADIRTRAEPASDGTYRLKGNKIFISGGDHPLSENIVHMVLAKLPDAPPGVKGISLFIVPKFLVNEDGSLGKRNDVLLAGLFHKMGWRGTTSTALNFGDNGECVGYLVGKPHHGLSYMFQMMNEARIGVGMGAVMLGYAGYLYSLEYARERPQGRVPDSKDPGTAPVPIIQHADVRRMLLTQKAYVEGSFDLGLYAARLFDDTTTLESEAERRRAHELLDLLTPIVKSWPSEFCLKANELAIQILGGHGYTREYPVEQYYRDNRLNPIHEGTHGIQSLDLLGRKLAQNGGAGLKQLIRLVADTSERAQAYDSLTPLRQPLEALVARLQSVTLGLLTDLAQGKVNSSLANSALYLKVFGHMVIGWRWLEQAIRAEEGLARGNAADVDFYRGKLQAARYFLTWEVPGCHHELAILEARDDTCLGMRDEWFPGPT0002285_15DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0002285-bcd-K00248NANA
D1-35_033483954putACOG0506Bifunctional protein PutAATGGCTACCACCACCCTTGGGGTCAAACTCGACGACCCGACCCGCGAACGCCTGAAGGCGGCCGCAACCTCGATTGATCGCACGCCGCACTGGCTGATCAAGCAGGCAATTTTCAATTACCTGGAAAAACTCGAGGGTGGTGCAACCCTGACCGAGCTGAACGGTTCGACCCGCGCCGACAGCGATGATGCCGGTGAAGTCCAGCCCGATCACGCTCACCAGTGCTTCCTGGAGTTCGCCGAAAGCATTCTGCCGCAATCGGTCCTGCGCGCCTCCATTACCGCCGCCTACCGCCGCCCTGAGCCGGAAGTGGTGCCGATGCTGATCGAGCAGGCCCGACTGCCGGCCGAAATGGCCGAAGCCACCAACAAGCTCGCGGCGTCGATCGCGGAAAAACTGCGCAACCAGAAGAGCGCCGGCGGGCGTGCCGGTATTGTCCAGGGCTTGCTGCAGGAATTTTCCCTGTCGTCCCAGGAAGGCGTGGCGCTGATGTGCCTCGCCGAAGCACTGCTGCGCATCCCGGACAAAGGCACCCGCGACGCACTGATTCGCGACAAGATCAGCACGGGCAACTGGCAGCCGCACCTGGGCAACAGCCCGTCGCTGTTCGTCAACGCCGCCACCTGGGGCCTGCTGCTGACCGGCAAGTTGGTCGCCACTCATAATGAAGCCGGCCTGACTTCGTCGCTGAGCCGCATCATTGGCAAGAGCGGCGAGCCGATGATCCGCAAGGGCGTCGACATGGCCATGCGCCTGATGGGCGAGCAGTTCGTCACCGGCGAAACCATCGCCGAAGCCCTGGCCAACGCCAGCAAATTCGAAGCCAAGGGCTTCCGTTATTCCTACGACATGCTCGGTGAAGCCGCGCTCACCGAACATGACGCCCAGAAGTACCTGGCCTCGTACGAACAAGCCATCCATTCGATCGGCAAAGCCTCTCACGGCCGTGGGATTTACGAAGGCCCGGGCATTTCCATCAAGCTTTCGGCCCTGCACCCGCGTTACAGCCGCGCCCAGTACGAACGCGTCATGGACGAACTGTACCCGCGCCTGCTGTCGCTGACCCTGCTCGCCAAGCAATACGACATCGGCCTGAACATCGACGCCGAAGAGGCCGACCGCCTCGAACTGTCCCTGGACCTGCTCGAGCGCCTGTGCTTCGAGCCGCAGCTGACCGGCTGGAACGGCATCGGCTTTGTGATCCAGGCCTACCAGAAGCGTTGCCCGTACGTCATCGACTATGTGATCGACCTCGCTCGTCGCAGCCGTCACCGCCTGATGATCCGCCTGGTGAAAGGCGCCTACTGGGACAGCGAGATCAAGCGCGCCCAGGTCGAAGGCCTGGAAGGCTATCCGGTCTACACCCGCAAGGTGTACACCGACGTTTCCTACATCGCCTGCGCCCGCAAGCTGCTGTCGGTGCCGGAAGTCATCTATCCGCAATTCGCCACGCACAACGCCCACACTTTGTCGGCGATTTACCACATCGCCGGTCAGAACTATTACCCGGGGCAGTATGAGTTCCAGTGCCTGCACGGCATGGGCGAACCGCTGTACGAACAGGTTGTAGGCAAGGTTTCCGAAGGCAAGCTGAACCGTCCGTGCCGTGTGTACGCGCCTGTCGGCACCCACGAAACGCTGCTGGCCTACCTGGTGCGGCGCTTGCTGGAAAACGGCGCGAACACTTCGTTCGTCAACCGCATCGCCGACCAGTCGATTTCCATCCAGGAGCTGGTGGCCGATCCAGTGGCGAGCATCGAGCAGATGGCAACGCTGGAAGGCGGTTTCGGCCTGCCGCACCCGCGTATTCCGTTGCCACGCGATTTGTACGGCAGCGAGCGCGCCAACTCCAGCGGCATCGACCTGGCCAACGAACATCGCCTGGCCTCGTTGTCCTGCGCCCTGCTGGCCACCGCCCACAACGACTGGAAAGCCGCGCCGATGCTCGGCTGCGCCGCCAGTGAAGAAACCCCGGCACCGGTGCTGAACCCGGCCGATCATCGTGACGTGGTGGGCCACGTGCAGGAGGCTACCGTCGCCGATGTCGACAACGCCATCCAGTGCGCCCTCAACGCCGCGCCGATCTGGCAAGCCACGCCACCGGCCGAACGCGCCGCGATCCTGGAGCGCGCCGCCGACCTGATGGAAGGCGAGATCCAGCCGCTGATGGGCCTGCTGGCCCGCGAAGCCGGCAAGACCTTCGCCAACGCCATCGCCGAGGTACGCGAGGCCGTGGACTTCCTGCGCTACTACGCGGTGCAGGCGCGCAACGATTTCACCAACGATGCCCACCGTCCATTGGGCCCGGTGGTCTGCATCAGCCCATGGAACTTCCCGCTGGCGATTTTCAGCGGCCAGGTCGCCGCCGCACTGGCCGCCGGCAACCCGGTACTGGCCAAGCCCGCCGAGCAGACGCCTCTGGTGGCTGCCCAGGCAGTGCGCCTGATGCTTGAAGCCGGCATTCCGGAAGGCGTCCTGCAATTGCTGCCGGGCCGTGGCGAAACCGTTGGTGCACGCCTGGTGGGTGACGATCGGGTAAAAGGCGTGATGTTCACCGGTTCAACCGAAGTCGCGCGCCTGCTGCAACGCAATATCGCCGGACGCCTGGACAACCAGGGCCGGCCGATCCCGCTGATCGCCGAAACCGGCGGCCAGAACGCGATGATCGTCGACTCTTCGGCCCTGACCGAACAAGTGGTCATCGACGTGGTGTCCTCGGCTTTCGACAGCGCCGGCCAGCGTTGCTCGGCCCTGCGTGTTCTGTGCCTGCAGGAAGATTCCGCCGACCGCGTCATCGAAATGCTCAAGGGCGCCATGGCCGAATCGCGCCTCGGCAACCCCGAGCGCCTGTCGGTGGACATCGGCCCGGTGATCGACGCCGAAGCCAAGGCCGGTATCGAGAAACACATCCAGGCCATGCGCGACAAAGGTCGCACCGTGTATCAGATGGCAATCGCCGACAGCGACGAGTGCAAGCGCGGCACCTTCGTGATGCCGACCCTGATCGAGCTGGAAAGCTTCGACGAGCTGCAACGCGAGATCTTCGGCCCGGTGCTGCACGTGGTGCGCTACAAGCGCAAGGAACTGGACCAGTTGATCGGTCAGATCAACGCCTCCGGCTACGGCCTGACCCTGGGTGTGCACACGCGTATCGATGAAACCATCGCCAAGGTGATCGACAACGTCCATGCCGGTAACGTCTATGTAAACCGCAACATCGTCGGTGCCGTGGTCGGCGTGCAGCCGTTCGGCGGCGAAGGCCTGTCGGGCACCGGTCCGAAGGCCGGCGGCCCGCTGTACCTGTACCGCTTGTTGTCGACTCGTCCTACCGATGCGATCCAGCAGTCCTTCGTACGGGGCGATGCCCTGTCGGCACCGGACCTGCGCTTGCGCGACGCCATGAGCAAACCGCTGACCGCCCTGCAAGCCTGGGCCGACAGCCACAAGCTCGCCGAACTGAGCGCCCTGTGCGTGCAGTTCGCCGCCCAGTCGCAAAGCGGCATCACCCGCCAGCTGACCGGCCCGACCGGCGAACGCAACAGCTACGCCATCCTGCCCCGCGAGCACGTGTTGTGCCTGGCGGACGTGGAAGGCGACCTGCTGACGCAGCTGGCGGCCGTATTCGCCGTGGGCGGCTCGGCCGTGTGGCCGGAAACCGACACCAGCAAGGCGTTGTTCGCACGCTTGCCGAAGGACATTCAAGCGCGTATCCAGCGGGTTGCCGATTGGACCAAGGACGACGTGCTGTTCGACGCAGTCCTGCACCACGGCGACTCTGACCAGTTGCGCGGCGTGTGCCAGCAAGTGGCCAAGCGCGCCGGGGCGATCGTCGGGGTGCATGGCTTGTCCCAGGGCGAAACCAATATCGCCCTGGAACGCCTGGTGATCGAACGCGCGCTGAGCGTCAACACCGCCGCGGCGGGTGGTAACGCCAGTCTGATGACGATCGGTTAAMATTTLGVKLDDPTRERLKAAATSIDRTPHWLIKQAIFNYLEKLEGGATLTELNGSTRADSDDAGEVQPDHAHQCFLEFAESILPQSVLRASITAAYRRPEPEVVPMLIEQARLPAEMAEATNKLAASIAEKLRNQKSAGGRAGIVQGLLQEFSLSSQEGVALMCLAEALLRIPDKGTRDALIRDKISTGNWQPHLGNSPSLFVNAATWGLLLTGKLVATHNEAGLTSSLSRIIGKSGEPMIRKGVDMAMRLMGEQFVTGETIAEALANASKFEAKGFRYSYDMLGEAALTEHDAQKYLASYEQAIHSIGKASHGRGIYEGPGISIKLSALHPRYSRAQYERVMDELYPRLLSLTLLAKQYDIGLNIDAEEADRLELSLDLLERLCFEPQLTGWNGIGFVIQAYQKRCPYVIDYVIDLARRSRHRLMIRLVKGAYWDSEIKRAQVEGLEGYPVYTRKVYTDVSYIACARKLLSVPEVIYPQFATHNAHTLSAIYHIAGQNYYPGQYEFQCLHGMGEPLYEQVVGKVSEGKLNRPCRVYAPVGTHETLLAYLVRRLLENGANTSFVNRIADQSISIQELVADPVASIEQMATLEGGFGLPHPRIPLPRDLYGSERANSSGIDLANEHRLASLSCALLATAHNDWKAAPMLGCAASEETPAPVLNPADHRDVVGHVQEATVADVDNAIQCALNAAPIWQATPPAERAAILERAADLMEGEIQPLMGLLAREAGKTFANAIAEVREAVDFLRYYAVQARNDFTNDAHRPLGPVVCISPWNFPLAIFSGQVAAALAAGNPVLAKPAEQTPLVAAQAVRLMLEAGIPEGVLQLLPGRGETVGARLVGDDRVKGVMFTGSTEVARLLQRNIAGRLDNQGRPIPLIAETGGQNAMIVDSSALTEQVVIDVVSSAFDSAGQRCSALRVLCLQEDSADRVIEMLKGAMAESRLGNPERLSVDIGPVIDAEAKAGIEKHIQAMRDKGRTVYQMAIADSDECKRGTFVMPTLIELESFDELQREIFGPVLHVVRYKRKELDQLIGQINASGYGLTLGVHTRIDETIAKVIDNVHAGNVYVNRNIVGAVVGVQPFGGEGLSGTGPKAGGPLYLYRLLSTRPTDAIQQSFVRGDALSAPDLRLRDAMSKPLTALQAWADSHKLAELSALCVQFAAQSQSGITRQLTGPTGERNSYAILPREHVLCLADVEGDLLTQLAAVFAVGGSAVWPETDTSKALFARLPKDIQARIQRVADWTKDDVLFDAVLHHGDSDQLRGVCQQVAKRAGAIVGVHGLSQGETNIALERLVIERALSVNTAAAGGNASLMTIGPGPT0020210_394DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_PROLINE_DEGRADATION,PGPT0020210-putA-K13821NANA
D1-35_033491485putPCOG0591Sodium/proline symporterATGAGTTTCAGCAATCCTACCCTGATCACCTTCGTGATCTATATCGCAGCCATGGTCCTGATCGGCCTGATGGCTTATCGCTCCACCAACAACCTTTCCGATTACATCCTGGGCGGTCGCAGCCTGGGCAGTGTCGTGACGGCGCTCTCTGCCGGTGCCTCCGACATGAGCGGCTGGCTGTTGATGGGTTTGCCCGGCGCCATCTATATGTCCGGCCTGTCGGAAAGCTGGATCGCCATCGGCCTGATCATCGGTGCCTACCTGAACTGGCTGTTCGTGGCCGGGCGCCTGCGGGTGCAGACCGAGCACAACGGTGACGCGCTGACGCTGCCGGACTACTTCGCCAGCCGTTTCGAAGACAAGAGCGGTTTGCTGCGGATCATCTCCGCCGTCGTGATCCTGGTGTTCTTCACCATCTACTGCGCTTCCGGCATTGTTGCCGGTGCCCGTCTGTTCGAAAGCACTTTCGGCATGTCCTACGAGACCGCGCTGTGGGCCGGTGCCGCCGCGACCATCGCCTACACCTTCATCGGTGGTTTCCTGGCCGTGAGCTGGACCGATACCGTGCAGGCCACGCTGATGATCTTCGCGTTGATCCTCACGCCGATCATCGTGCTGCTGGCCACCGGCGGCGTCGATACCACGTTCCTGGCCATCGAAGCGAAAGACCCTACGTCGTTCGACATGCTGAAAAACACCACCTTCATCGGCATCATCTCGCTGATGGGCTGGGGCCTGGGCTACTTCGGCCAGCCGCATATCCTGGCGCGCTTCATGGCGGCAGATTCGGTCAAGTCGATTGCCAAGGCGCGTCGTATTTCCATGGCCTGGATGATCCTGTGCCTGGGCGGCACCGTTGCCGTCGGTTTCTTTGGTATCGCCTACTTCTCGGCGCACCCTGAAGTGGCCGGTCCGGTAACCGAAAACCCTGAGCGTGTGTTCATCGAACTGGCGAAACTGCTGTTCAATCCATGGGTTGCCGGTGTCCTGCTGTCGGCCATCCTGGCGGCGGTCATGAGCACCTTGAGCTGCCAACTGCTGGTATGCTCCAGTTCCTTGACCGAAGACTTCTACAAGACGTTCCTGCGCAAGAGCGCTTCCCAGCTGGAACTGGTCTGGGTCGGTCGTTTCATGGTGCTGCTGGTAGCGGTCATCGCCATCGCCCTGGCCGCCAACCCGGAAAACCGCGTGCTGGGCCTGGTGAGCTACGCCTGGGCCGGTTTCGGTGCGGCATTCGGTCCTGTGGTACTGATTTCGGTGATCTGGAAAGACATGACCCGTAACGGCGCGCTGGCCGGGATCCTGGTGGGTGCGATCACCGTAATCGTCTGGAAGCATTTCGAGCTGCTGGGCCTTTACGAAATCATCCCTGGCTTCATCTTTGCCAGCCTGGCGATCTACCTGGTCAGCAAGATGGGTTCGCCAACCGCCGGCATGCTGCAGCGCTTCGAAGCGGCCGAGAAGGATTTCCGCTTGAATCAATAAMSFSNPTLITFVIYIAAMVLIGLMAYRSTNNLSDYILGGRSLGSVVTALSAGASDMSGWLLMGLPGAIYMSGLSESWIAIGLIIGAYLNWLFVAGRLRVQTEHNGDALTLPDYFASRFEDKSGLLRIISAVVILVFFTIYCASGIVAGARLFESTFGMSYETALWAGAAATIAYTFIGGFLAVSWTDTVQATLMIFALILTPIIVLLATGGVDTTFLAIEAKDPTSFDMLKNTTFIGIISLMGWGLGYFGQPHILARFMAADSVKSIAKARRISMAWMILCLGGTVAVGFFGIAYFSAHPEVAGPVTENPERVFIELAKLLFNPWVAGVLLSAILAAVMSTLSCQLLVCSSSLTEDFYKTFLRKSASQLELVWVGRFMVLLVAVIAIALAANPENRVLGLVSYAWAGFGAAFGPVVLISVIWKDMTRNGALAGILVGAITVIVWKHFELLGLYEIIPGFIFASLAIYLVSKMGSPTAGMLQRFEAAEKDFRLNQPGPT0013970_1151DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013970-putP|ycgO-K11928NANA
D1-35_033502028vgrG1_4Actin cross-linking toxin VgrG1ATGTTCGCGCCTGCCAACTCGCCACGTTTTACGCTGACATTCGACAGCGGCCCGAATGAATTGCAGGTCCTTGAGTTCAAGGGCACGGAAGCCGTCAGCCAGCCCTATCGCTTTGATCTGGAACTGGTCAGCGAGCGGCCCGACCTGGTGCTTGAAGATCTATTGCATCGTCAGGCTTATCTGCGCTTCGGCCACCAAGGTGGCGGGATACACGGCCAGGTCTATAGCGTCGCCCAAGGCGATTCGGGCGAGCGGCTGAGCCGTTATCAAATCAGCCTGGTGCCTCGCCTGGCTTACTTGCGCCATCGCATCAACCAGCGGATTTTCCAGCACCTGAGCGTGCCGGAAATCATCGCCCACGTATTGAAGGACCACGGTATTCTCGCCGATGCCTGCCAGTTCACTGGTCTCGGCGGACGATACCCCGAGCGTGAATATTGCGTGCAGTACCACGAAAGCGATCTGGTTTTTATCGAGCGGATTTGCGCCGAAGTCGGCATCCATTATCACTTCCGACACAGCCCTGACGGCCACCTGCTGATATTTGGCGACGACCAGACGGTGTTCCCGCGCTTGCCCGAGTCCACTGTGTATCTGCCCGGCAGCGGCATGGCTGCCGCCGAGCCGGCCATCAAGCGCCTGGCGGTGCGGCTGCAGACCCACACCAACGCCGTGATGTTGCGCGACTACGATTTTCGCAAGCCGGGCCTCTCGTTGCAGGCGGACATCGACAATCAGCAACTTCCCGTTCTGGAGAGTTATCACTACCCCGGCCAGTTCACCGACCGCGACGATGGCCAGCATCTGGCCCAGCATGCTCTCGAGCGGCAGGCGGGTGATGGGTGCCTGGCGGAGGGCGGCAGCGATGACAGCGCCTTTGCCAGCGGACATTTCATGTGTATCAAGGAGCATCCCCGGGCGCAATGGAACGACCTCTGGTTGCTGACGCAGGTTGACCACCATGGCCGCCAGCCGCAGGTGCTGGAAGAAAACGCCTCTGTCGGCGCGGATGAGTTCCAGGGCTACCGAAATAGCTTCCTCGCGACGCCGTGTGAAGTGTTCTTTCGTCCGCCGTTGCAACACAGGAAGCCGTCCGTCAACGGCTACCAGCCCGCGGTGGTGACCGGCCCGGCGGACAGCGAAATACATTGCGACGCGTTCGGGCGGGTCAAGGTGCAACTGGTCTGGGATCGCGACGGTAAGCGTGACGAGCATTCCGGTTGCTGGCTGAGGGTGGCGAGCGGCTGGGCACACGATCACTACGGCGGCGTGATGATTCCCCGGGTCGGCATGGAAGTGCTGGTGGGGTTCATGGAGGGCGACGTGGACAAGCCGCTGGTGGTGGGCTGTCTGCCGAACGGCGCCAACCCGGTACCGCTGGACCTGCCGGCGGACAAGACCCGCAGCATATTGCGCAGCCAGAGCAGCCCCGGTGGCGGTGGCTACAACGAGTTGCGCATCGAGGACCGCAAGGGTGCCGAGGAAATCTACCTGAGGGCCCAGCGCAACTGGACCCAGCACGTGTTGCACGACCAGCGCGTGCAGGTCGATCACGAGCGCAGCATCGTGGTCGCAGGCTTGTCGCGGCATGAACTGCAGAACGGCGAGCAGCGCATCACCGCAGGTCGGCGTCAGGTCGAGGTCCGCCAGGACGATCACCTGCTGGTCACGGGCGATCGGCATATCCGCGTGGCCAACCAGGCCATCAGCGCCGTGGGGGGCTTTCATGTCAGTGCCGGCCGGCAGGTCGTGCTGGAGGGTGGCGCCAGCGCGACCATCCAGGCCGGTGGGCACTGGATCAACATCGGTCCGGGCGGAATCTTCAGCAGCGTGCCGATCCAGGTCGGTGGCGCGCCGATGGCAGTCATGGGGGCCGAAGCCATTGCGCCCGGCGCGGCGGGAAAACTCGCCGCCGCGCCGGCCTCAGCCCTTAGCCATGCGCAGATCCTCAGCCTGAAAAGCCCCGCGCCGTTCTGCGAGGAATGCGAGCGCTGCAAGGAGGGCGCCTGTGATCTGTTGGCGTATTGAMFAPANSPRFTLTFDSGPNELQVLEFKGTEAVSQPYRFDLELVSERPDLVLEDLLHRQAYLRFGHQGGGIHGQVYSVAQGDSGERLSRYQISLVPRLAYLRHRINQRIFQHLSVPEIIAHVLKDHGILADACQFTGLGGRYPEREYCVQYHESDLVFIERICAEVGIHYHFRHSPDGHLLIFGDDQTVFPRLPESTVYLPGSGMAAAEPAIKRLAVRLQTHTNAVMLRDYDFRKPGLSLQADIDNQQLPVLESYHYPGQFTDRDDGQHLAQHALERQAGDGCLAEGGSDDSAFASGHFMCIKEHPRAQWNDLWLLTQVDHHGRQPQVLEENASVGADEFQGYRNSFLATPCEVFFRPPLQHRKPSVNGYQPAVVTGPADSEIHCDAFGRVKVQLVWDRDGKRDEHSGCWLRVASGWAHDHYGGVMIPRVGMEVLVGFMEGDVDKPLVVGCLPNGANPVPLDLPADKTRSILRSQSSPGGGGYNELRIEDRKGAEEIYLRAQRNWTQHVLHDQRVQVDHERSIVVAGLSRHELQNGEQRITAGRRQVEVRQDDHLLVTGDRHIRVANQAISAVGGFHVSAGRQVVLEGGASATIQAGGHWINIGPGGIFSSVPIQVGGAPMAVMGAEAIAPGAAGKLAAAPASALSHAQILSLKSPAPFCEECERCKEGACDLLAYPGPT0030410_3194DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_PROTEINS,PGPT0030410-vgrG-K11904NANA
D1-35_03351840rlmJCOG2961Ribosomal RNA large subunit methyltransferase JATGAATTATCGCCATGCCTTCCACGCCGGCAATCACGCCGATGTGTTCAAACACCTGACCTTGACCCGCCTCATTGCCCTGATGTCGCGCAAGGAGCAGCCCTTTGCCTACCTCGATACCCACGCGGGCATCGGGCTGTACGACTTGCAGGGTGACCAGGCCAATCGCACCGGCGAATACCTGGAAGGCATCGCGCGGTTGTGGGGCCAGGATGACCTGCCGCCGCTGACCGCCGAGTACATGAAGGTGCTGCACGAGATGAACCCGGACGGCCAGTTGCGTTATTACCCGGGCTCACCGGAGCTGGCGCGGCGCCTGACCCGGGCGCAGGATCGGGTGCTGCTCAACGAGAAACATCCCGAAGACGGTGTACTGCTCAAGGACAACATGAAGGGTGACCGTCGCGTGGCGGTGCACCTGGGCGAAGGCTGGCATGTGCCGCGGGCTCTGCTGCCGGTGAGCGAGAAGCGCGGGCTGATGCTCATCGATCCGCCGTTCGAGCAGCTCGACGAGATGCAGCGCTGCGCCGCTTCGCTCAAGGAAGCCATCGGCCGGATGCGCCAGACGGTTGCGGCGATCTGGTACCCGGTGAAGGACCAGCGCATGTTGCGTCGCTTCTATCAGGACCTGGCCGGCACCGGCGCGCCGAAGCTGTTGCGGGTGGAATTGCTGGTGCATCCGCTGGCCACGCCGAACAGCCTGAACGGCTCCGGCCTGGCCATCGCCAATCCGCCTTGGGGGCTTGAGGAAGAATTGCGGGAATTGCTGCCCTGGTTATCCAGGAAGCTCGGGCAGACCCAGGGTGGTTGGCAGATGGATTGGTTGATTGCTGAAAGCTGAMNYRHAFHAGNHADVFKHLTLTRLIALMSRKEQPFAYLDTHAGIGLYDLQGDQANRTGEYLEGIARLWGQDDLPPLTAEYMKVLHEMNPDGQLRYYPGSPELARRLTRAQDRVLLNEKHPEDGVLLKDNMKGDRRVAVHLGEGWHVPRALLPVSEKRGLMLIDPPFEQLDEMQRCAASLKEAIGRMRQTVAAIWYPVKDQRMLRRFYQDLAGTGAPKLLRVELLVHPLATPNSLNGSGLAIANPPWGLEEELRELLPWLSRKLGQTQGGWQMDWLIAESNANANANANA
D1-35_03353648msrACOG0225Peptide methionine sulfoxide reductase MsrAATGGTCTTGCGCTCGGAAATCCTGGTGAACAAAAACGTGCTTCCTACTCAAGAACAAGCTCTGCCTGGCCGTGAAACCCCGATGACCGTGCCGGAAAAACACTTCGTCCATGACGCGCCGCTGCTGGGCCCGTTTGCCATGGACGTGGACTTCGCGATCTTTGGCCTGGGTTGCTTCTGGGGTGCGGAGCGCAAGTTCTGGCAACGTGAAGGCGTGGTCAGCACGGCGGTGGGTTACGCGGGCGGCTTTACGCCAAACCCGACTTACGAAGAGGTCTGCTCGGGCCTGACCGGCCACAGCGAAGTGGTGCTGGTGGTCTACGAGCCGGAGAAAGTCAGCTACAACGAACTGCTGGCGATGTTCTGGGAACTGCACAACCCGACCCAGGGCATGCGCCAGGGCAACGACATCGGCACCCAGTACCGCTCGGTGGTCTACTGCACCACGCCCGAGCAGCTGGAAGCGGCGAAAAAGAGCAAGGAACTATTCCAGGCTGAACTGACCAAGGCCGGGCTGGGAGAAATCACCACCGAAATCGACGAAGCGCCGACCTTCTACTTTGCCGAGGCGTATCACCAGCAATACCTGGCGAAGAACCCTGAAGGTTATTGCGGGATTGGCGGTACGGGCGTGACTTGCCCGATCTGAMVLRSEILVNKNVLPTQEQALPGRETPMTVPEKHFVHDAPLLGPFAMDVDFAIFGLGCFWGAERKFWQREGVVSTAVGYAGGFTPNPTYEEVCSGLTGHSEVVLVVYEPEKVSYNELLAMFWELHNPTQGMRQGNDIGTQYRSVVYCTTPEQLEAAKKSKELFQAELTKAGLGEITTEIDEAPTFYFAEAYHQQYLAKNPEGYCGIGGTGVTCPIPGPT0013065_2269DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-SULFOXIDE_REDUCTASES,PGPT0013065-msrA-K07304NANA
D1-35_033542694hypothetical proteinATGAAAAGCCAACCCGATGCCGCCAGCCGTATGGCGGCCGAGGTAGTGACGCAGTTACCGGTGCCCTCGCGGCTCGGTATGCTGCGTTTCGAACGGCTGAATGAAGCAAGCTGGGCGCTACTGTTTCTCGATCCCAACTGCGAACGTTACTTTGGCCTGCCGGCCGTCGAGCTGTGCTCGCTGGTGAGCTCACCCTACGCCAGCCTCATGGAGCCGGAAGCACGCTATCAGCTGCACGACGCGATCCAGCAGCAGTTGACCCAGGCCCCTCATTACCAGATCCGCTACACGCTGCACACCGCCAGGGGACCGTTGAACCTCCTGGAAACGGGTGAAACCTACAAACAGCACAACCGCCATTTGCTGCGCGGCTATCTGCTGGTGGTGGACAGCCTGCTGCCGACCGAGCCCTCCGTGCCGGCGCTCGATCTGGAAACCCAGAACTCGCGCCTGCAGATCGCCCTGGAACTGAACCAGCGCGCCCAGCAGGAGCAGCTCCAGCACCTTGACCGGGTGCGCGCCCAACAAGACCTGATTCTGCTGCTGACCCGCCAGCGCTATAGCGCCAACAATTCGTTGCAGGAAGCCGCCGAGCTGATTACCCGTAGCGCCTGCGATATCTACCAGATCGACAGCGCCAGCATCTGGAATCTGGAGGACGGCAAACTGCTGCCGATCTCGGCCTATAACCGCGCCTCCCAGGGATATTTCCTTCCAGGGGTAATCAACGCCAGCGACTTCCCAACCTACATGGAAGCGTTGCAGACCTGCCGCGCCATTGATGCCCACAATGCGATGCGCGACCCGCGCACCCGCGAGATGGCCGAGAACCTGCGCATCCGCGACGTCAACGCAATTCTCGACGCCAGTATCCGTATCGACGGCCAGGTGGTAGGCGTCCTGTGCCTGGAGCAAGTGGGCGCCACCCGCGCCTGGCAATCGGATGAAATCGCCTTTGCCGGCGAACTGGCGGACCAGTTCGCCCAGGTCATCAACAACCACAACCGGCGCACCGCCACCAGCGCCCTGCACTTGTTCCAGCGCGCGGTGGAACAGAGCGCCAACGCGTTCCTGCTGGTCAACTGCGACGGCGTGGTGGAATACGTCAACCCGAGCTTCACCGCCATCACTCAGTACACCACTGAAGAAGTCCACGGTCAGCGCCTGTCCGAGCTGCCGGCTCTGGAGAATCTCAGCGAACTGCTCTTCGACGCACCGTCGGCCCTGGCCCAGAGCAACAGCTGGCAGGGCGAATTCAAGAGCCGACGCAAAAACCTCGAGCCCTACTGGGGCCAGCTGTCGATTTCCAAGGTCTATGGCGACAACCGCGAACTGACCCACTACATCGGCATCTACGAAGACATCACCCAGACCAAACTGGCGCAGCAGCGCATCGAACGCCTGGCCTACACCGACAACCTGACCAACCTGGGCAACCGCCCGGCGTTCATTCGCAATCTCGATGAACGCTTCGCCCGGGACAGTGACTCGCCCATCAGCCTGTTGCTGGTGGACATCGACAACTTCAAGCGCATCAACGACAGCCTCGGCCACCAGACCGGCGACAAGCTGCTGATCAGCCTGGCCCGACGCCTGCGCAACAGCCTGAGCCCAAGCGGCAGCCTGGCGCGGTTCGCCAGTAACGAGTTCGCCGTACTGCTGGATGACACCGGCCTGGAAGCCGGCCAGCAGATCGCCAGCCAATTGCTGATGACGCTCGACAAGCCGATGTTCGTCGATAACCAGTTGATCAGCGTGACCGGTTCGGTCGGCCTGGCCTGCGCACCGTTGCATGGGCGTGACCCGCAGACGCTGATGCGCAACGCCGGCCTTGCCCTGCACAAGGCCAAGGCCAACGGCAAGCATCAGGTCCAGGTGTTCACCGAGGCGCTGAACGCCGAGGCCAGCTACAAGCTGTTCGTGGAAAACAACCTGCGCCGCGCCCTGACCCAGAATGAACTGGACGTTTTCTACCAGCCCAAGCTGTGCCTGCGCAGCGGTCGCCTGCTGGGCATGGAGGCGCTGCTGCGCTGGAACCACCCGGAAAAAGGCATGATCCGTCCGGACCAGTTCATCAGCGTGGCCGAGGAAACCGGCCTGATCATCCCCATCGGCAAATGGATCGCCCGCCAGGCTTGCCGCATGAGCAAGCAATTGACCGCAGCCGGCCTGGGCAACCTGCAGGTGGCGATCAACCTGTCGCCCAAGCAGTTCTCCGACCCGGACCTGGTGGCCTCGATCGCCAGCATCCTCAAGGAAGAGCAACTGCCCGCCCGCTTGCTGGAACTGGAGCTGACCGAAGGCTTGCTGCTCGAAGCCACCGAAGACACGCACCTGCAACTCGACCAGCTCAAGCGCCTGGGCCTGACCCTGGCCATGGACGATTTCGGTACCGGTTATTCATCCCTGAGCTATCTGAAGAAATTCCCGATCGACATCATCAAGATCGATCGCAGCTTCATCCATGAAATCCCGGACAACCAGGACGACATGGAAATCACCTCCGCCGTGATCGCCATGGCCCACAACCTGAAACTCAAGGTCGTCGCCGAAGGCATCGAGACCGCCCAGCAGCTGGCGTTCCTGCGTCGCCACCGCTGCGACGTCGGCCAGGGCTACCTGTTCGACCGGCCGATTCCCGGTGCAGAGCTTGTCGAGAAGCTCAAGCGCTACCCGCGCGGCCCTCTTGTCTGAMKSQPDAASRMAAEVVTQLPVPSRLGMLRFERLNEASWALLFLDPNCERYFGLPAVELCSLVSSPYASLMEPEARYQLHDAIQQQLTQAPHYQIRYTLHTARGPLNLLETGETYKQHNRHLLRGYLLVVDSLLPTEPSVPALDLETQNSRLQIALELNQRAQQEQLQHLDRVRAQQDLILLLTRQRYSANNSLQEAAELITRSACDIYQIDSASIWNLEDGKLLPISAYNRASQGYFLPGVINASDFPTYMEALQTCRAIDAHNAMRDPRTREMAENLRIRDVNAILDASIRIDGQVVGVLCLEQVGATRAWQSDEIAFAGELADQFAQVINNHNRRTATSALHLFQRAVEQSANAFLLVNCDGVVEYVNPSFTAITQYTTEEVHGQRLSELPALENLSELLFDAPSALAQSNSWQGEFKSRRKNLEPYWGQLSISKVYGDNRELTHYIGIYEDITQTKLAQQRIERLAYTDNLTNLGNRPAFIRNLDERFARDSDSPISLLLVDIDNFKRINDSLGHQTGDKLLISLARRLRNSLSPSGSLARFASNEFAVLLDDTGLEAGQQIASQLLMTLDKPMFVDNQLISVTGSVGLACAPLHGRDPQTLMRNAGLALHKAKANGKHQVQVFTEALNAEASYKLFVENNLRRALTQNELDVFYQPKLCLRSGRLLGMEALLRWNHPEKGMIRPDQFISVAEETGLIIPIGKWIARQACRMSKQLTAAGLGNLQVAINLSPKQFSDPDLVASIASILKEEQLPARLLELELTEGLLLEATEDTHLQLDQLKRLGLTLAMDDFGTGYSSLSYLKKFPIDIIKIDRSFIHEIPDNQDDMEITSAVIAMAHNLKLKVVAEGIETAQQLAFLRRHRCDVGQGYLFDRPIPGAELVEKLKRYPRGPLVPGPT0023624_777DIRECT 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
D1-35_033551392hypothetical proteinATGTTCAAACCTACCGTCGGCCCCATCGTCGGCCACACCACGACCCACCATGCGCGGATATTCCTGCGCGGCGACCACGCCAGCAACAGGGTCTTCGCCGGGATTCGCCACAGGCGCCAAGGTGACACCGGCTGGTCGCAAGGCCAATTCGTGCAATTGAAGGCTTACCGCGACATGACCGCTGTCATCGTGCTCAAGGGTCTTCGCGCCGATACCGCCTACGAATACCAGGCGGGCTGGTTCAGCCCCATGCGCCCGACCCATACCGCGGCGACCGTGGGTCAACTGCTATTGCCATGGCCAGGGGAGGTTTACCACTTGCGCACGCCGTCCGGCACCGACAACGCTACTCGCAGTTATATCCTAGGCTCCTGTCGCTATTTGCAGATCGTCGGCGACATGCCGTTGCTGCCCGGGCTCGGTGATCGGATCTTCGCGAGCATCAACCGCCTCGTGAAACAGGCTGATCCGCCGATCAGTGCCGTATTGATGACCGGTGACCAGGTCTACCTCGATGACCTGAACAGGGTCGCCCCGGACCGCAGCGCCCGGGACATTCTGTTCAAGTACCGCTCGGCCTTCTCCCAGCCGCACATCAGGCGCTTGATGTCCAGCGTACCGACCTACATGATCCTCGATGACCATGAAATAGAGGACAACTGGCCCGCCAATAAAGAACCGGACGATGAGCGTCTATACGCCAACGCCCTGGATGCCTACGCGCTGTATCAGGCCAGCCATGGCCCGGCTGGCGAAGACCTGGACGACGCAAGCCCAGGCCGACCGCCGCGACGATACTGGTACCTGTTCGCTCACGGCGATATCCAATGGTTCGTCACCGACAGCCGGACCCGACGCAACCTGTCGGCGGCTGACCGGCGCATCCTTGATCAAGAACAGGAGCAGGCGCTGCTCGAATGGCTCATCGGCAGCACTGCCCGGGTCAAGCTTGTCGTAACCAGCGTCATGTTCTATCCCGATCGCAAACTGGATGACGGAGACGCCTGGCAAGCCTTCCCGAACCAACGCCTGCGCCTGATCGAAGCCATCCGCACGCACCGGATCAAAAACGTGATTTTTGTGTCCGGCGACGTGCACGGCTCCCTGACCAGCCGCCTGGTTCATAACCAGGATCCTGATTTCGCAGTCCACACCATCGTTTCCTCGCCGCTGTGCAACAGCCTGCTGCTGCCCTACGCCACAGCCTCGAGTTTCATCATCGGCGAGCCCATGGCCAAGGCAGCGGGCGGCGAGTATCGATATGAACTGACCAGCAAGGTCATCAGCCAGGACAATTTCGCTCAGCTGCGAGTAACGACCCAGAGCATTCAAGTGACCTTTCATGACCGTGACGGCGGCCCCTTGGAGGTCGTCGATATACCGTTGCGCTGAMFKPTVGPIVGHTTTHHARIFLRGDHASNRVFAGIRHRRQGDTGWSQGQFVQLKAYRDMTAVIVLKGLRADTAYEYQAGWFSPMRPTHTAATVGQLLLPWPGEVYHLRTPSGTDNATRSYILGSCRYLQIVGDMPLLPGLGDRIFASINRLVKQADPPISAVLMTGDQVYLDDLNRVAPDRSARDILFKYRSAFSQPHIRRLMSSVPTYMILDDHEIEDNWPANKEPDDERLYANALDAYALYQASHGPAGEDLDDASPGRPPRRYWYLFAHGDIQWFVTDSRTRRNLSAADRRILDQEQEQALLEWLIGSTARVKLVVTSVMFYPDRKLDDGDAWQAFPNQRLRLIEAIRTHRIKNVIFVSGDVHGSLTSRLVHNQDPDFAVHTIVSSPLCNSLLLPYATASSFIIGEPMAKAAGGEYRYELTSKVISQDNFAQLRVTTQSIQVTFHDRDGGPLEVVDIPLRPGPT0002575_2385DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0002575-phoD-K01113NANA
D1-35_033561647aceFCOG0508Dihydrolipoyllysine-residue acetyltransferase component of pyruvate dehydrogenase complexGTGAGCGAACTCATTCGCGTACCTGACATCGGCAGCGGTGAAGGTGAAGTAATTGAACTGTTTGTGAAGGTCGGCGACCGCATCGAAGCCGACCAGAGCATCCTGACGCTTGAATCGGACAAGGCCAGCATGGAAGTGCCCGCGCCGAAGGCCGGTGTCATCAAGAGCCTGAAAGTGAAGCTGGGCGATCGCCTGAAAGAGGGCGACGAGCTGTTGGAACTGGAAGTCGAAGGCGCCGCTGCGGCACCTGAAGCGCCAGCGCCCGCTGCGGCCCCGGCGGCGGCTGAAAAGCCTGCCGCCGCACCGGCTGCAGAAGCCGCTCCGGCGGCTGCGGCTGCACCTGCGGCGGCCTCTGTCCAGGACATTCATGTCCCGGACATCGGTTCGTCGGGCAAGGCCAAGATCATCGAAGTACTGGTCAAGGCCGGCGACACCGTCGAAGCCGACCAGTCGCTGATCACCCTGGAATCCGACAAGGCCAGCATGGAGATCCCTTCGCCGGCTGCCGGCGTGGTGGAAAGCGTCGAGGTCAAGCTGGACGACGAAGTCGGCACCGGTGACTTGATCCTGAAGCTGAAAGTAGCCGGTGCCTCGGCACCTGCCGTGCCAGCCCCGGCTGCTGCGCCTGCTGCCAAGGCTGAGTCGGCCCCGGCTCCGGCTCCAGCCGCCGCGCCTGCCGCCAAGGCCGAAGCGGCTCCTGCCCCTGTCGCCGCTGCGCCTGCGCCAAGCGGTGCCAAGGTGCACGCCGGCCCAGCCGTGCGTCAGCTGGCCCGTGAGTTCGGCGTCGAGCTGTCGGCCGTCGGTCCAAGCGGTCCTCACGGCCGCGTGCTGAAGGAAGACGTGCAGGCCTACGTCAAGGCCATGATGCAGAAGGCCAAGAACGCACCGGCCGAAGGCGCCACTGGCGGCGCGGGTATCCCGCCGATTCCGGCGGTGGACTTCAGCCGCTTCGGTGAAACCGAAGAAGTCGCGATGACCCGCCTGATGCAGATCGGCGCGTCGAGCCTGCATCGCAGCTGGCTGAACATTCCACACGTGACTCAGTTCGACCAGGCTGACATCACCGAACTGGAAGCCTTCCGCGTCGCACAGAAAGCCGTGGCCGAAAAGGCCGGCGTGAAGCTGACCGTGTTGCCGCTGCTGCTCAAGGCTTGCGCGCACCTGCTCAAGGAATTGCCGGACTTCAACAGCTCCCTGGCCCCAAGCGGCAAGGCTGTGATCCGCAAGAAGTACGTGCACATCGGCTTTGCCGTCGACACCCCGGAAGGCCTGCTGGTACCGGTCATCCGTAACGTCGACCAGAAGAGCCTGCTGCAACTGGCTGGCGAAGCCGCTGCCCTGGCCGAAAAAGCCCGGAACAAGAAGCTCACCGCCGACGACATGCAGGGCGCCTGCTTCACCATCTCCAGCCTCGGTCACATTGGCGGCACCGGCTTCACGCCGATCGTCAACGCGCCGGAAGTGGCGATCCTGGGTGTCTCCAAGGCCACCATCCAGCCAGTCTGGGACGGTAAAGCCTTCCAGCCCAAGCTGATGCTGCCGCTGTCGCTGTCCTACGATCACCGTGTGATCAATGGTGCGGCCGCTGCACGCTTCACCAAGCGCTTGAGCGACCTGCTGGGCGACATCCGCACCATCCTGCTGTGAMSELIRVPDIGSGEGEVIELFVKVGDRIEADQSILTLESDKASMEVPAPKAGVIKSLKVKLGDRLKEGDELLELEVEGAAAAPEAPAPAAAPAAAEKPAAAPAAEAAPAAAAAPAAASVQDIHVPDIGSSGKAKIIEVLVKAGDTVEADQSLITLESDKASMEIPSPAAGVVESVEVKLDDEVGTGDLILKLKVAGASAPAVPAPAAAPAAKAESAPAPAPAAAPAAKAEAAPAPVAAAPAPSGAKVHAGPAVRQLAREFGVELSAVGPSGPHGRVLKEDVQAYVKAMMQKAKNAPAEGATGGAGIPPIPAVDFSRFGETEEVAMTRLMQIGASSLHRSWLNIPHVTQFDQADITELEAFRVAQKAVAEKAGVKLTVLPLLLKACAHLLKELPDFNSSLAPSGKAVIRKKYVHIGFAVDTPEGLLVPVIRNVDQKSLLQLAGEAAALAEKARNKKLTADDMQGACFTISSLGHIGGTGFTPIVNAPEVAILGVSKATIQPVWDGKAFQPKLMLPLSLSYDHRVINGAAAARFTKRLSDLLGDIRTILLPGPT0001390_2387DIRECT 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
D1-35_033572646aceE_2COG2609Pyruvate dehydrogenase E1 componentATGCAAGACCTCGATCCCGTCGAAACCCAGGAATGGCTGGACGCCCTGGAATCGGTTCTCGACAAAGAAGGCGAAGACCGTGCTCATTACCTGATGACCCGTATGGGCGAACTCGCAACCCGCAGCGGTTCGCAACTGCCCTACGCCATCACCACGCCGTACCGCAACACAATCCCCGTCACCCACGAAGCACGCATGCCTGGCGACCTGTTCATGGAACGCCGCATTCGCTCGCTGGTGCGTTGGAACGCGTTGGCCATGGTCGTGCGGACCAACCTGAAAGATTCTGACCTGGGCGGTCACATCTCCAGCTTCGCCTCCAGCGCGACGCTGTATGACATCGGCTTCAACTACTTCTTCCAGGCCCCGACCGACGAACACGGCGGCGACCTGATCTACTTCCAGGGTCACGCATCGCCAGGCGTCTACGCCCGTGCGTTCATGGAAGGCCGCATCACCGAAGACCAGATGAACAATTTCCGCCAGGAAGTGGACGGCAACGGCCTGTCCTCGTACCCACACCCTTGGCTGATGCCCGATTTCTGGCAGTTCCCGACCGTATCCATGGGCCTGGGCCCGATCCAGGCCATCTACCAGGCACGCTTCATGAAGTACCTGGAAGCCCGTGGCTTCATCCCGGCCGGCAAGCAGAAAGTCTGGTGCTTCATGGGTGACGGCGAGTGCGACGAGCCGGAATCCCTGGGCGCAATCTCCCTGGCCGGCCGCGAGAAGCTCGACAACCTGATCTTCGTCATCAACTGCAACCTGCAGCGCCTCGACGGCCCGGTTCGCGGCAACGCCAAGATCATCCAGGAACTCGAAGGCGTGTTCCGTGGCGCCCAGTGGAACGTCAACAAAGTCATCTGGGGCCGTTTCTGGGACCCACTGCTGGCCAAGGACGTCGACGGCATCCTGCAACGTCGCATGGACGAAGTCATCGACGGCGAGTACCAGAACTACAAGGCCAAGGACGGCGCGTTCGTCCGCGAGCACTTCTTCAACTCGCCTGAACTCAAGGCGATGGTCGCCGACCTGTCCGACGACGAGATCTGGAAGCTCAACCGTGGCGGCCATGACCCGTACAAGGTCTATGCGGCTTACCACCAGGCGGTCAACCACAAAGAGCAGCCGACCGTCATCCTGGCCAAGACCATCAAGGGTTATGGCACCGGTGCCGGCGAAGCGAAGAACACCGCGCACAACACCAAGAAGGTCGATGTCGACAGCCTGAAGCTGTTCCGCGATCGCTTCGACATTCCGGTCAAGGACAGCGAGCTGGAAAACCTGCCGTTCTTCAAGCCGGAAGAAGGCAGCGCCGAGGCCCGTTACCTGGCCGAGCGGCGCGCCGCCCTGGGTGGTTTCGTGCCGCAGCGCCGCGCCAAGAGCTTCAGTATCCCGACCCCACCACTGGAAACCCTCAAGGCGATCCTGGACGGCTCGGGCGACCGTGAAATCTCCACCACCATGGCCTTCGTGCGGATCCTCGCGCAACTGGTCAAGGACAAGGAGATTGGCCAGCGCATCGTTCCGATCATCCCGGACGAAGCCCGTACCTTCGGTATGGAAGGCATGTTCCGCCAGCTGGGCATCTACTCGTCCGTCGGCCAGCTCTACGAGCCAGTCGATAAAGACCAGGTGATGTTCTACCGCGAGGACAAGAAGGGCCAGATCCTCGAAGAAGGCATCAACGAAGCGGGCGCCATGAGCTCGTTCATTGCCGCCGGTACTTCGTACTCCAGCCACAACCAGCCGATGCTGCCGTTCTACATCTTCTATTCGATGTTCGGCTTCCAGCGTATCGGCGACCTGGCCTGGGCCGCTGGCGACAGCCGTACCCGTGGCTTCCTGATCGGCGGTACCGCCGGCCGGACCACGCTGAACGGCGAAGGCCTGCAGCACGAAGATGGCCACAGCCACATGCTGGCCGGGACCATCCCGAACTGCCGCACCTATGATCCGACCTACGGCTACGAGCTGGCGGTGATCATCCAGGACGGCATGAAAAAGATGATCGAAGAGCAACAGGACGTCTTCTACTACATCACCGTGATGAACGAGTCCTACCAGCAGCCAGCCATGCCGGCCGGCGTCGAGGCAGGTATCGTCAAGGGTATGTACCTGCTCGAGGAAGACACCCGCGAAGCGGCGCACCACGTCCAGCTGATGGGCTCCGGCACCATCCTGCGCGAAGTGCGTGAAGCGGCGAAGATCCTGCGCGAAGAATTCAACGTCGGCGCCGACGTCTGGAGCGTCACCAGCTTCAACGAATTGCGTCGCGACGGCCTCGCTGTAGAGCGCAGCAACCGCCTGCACCCTGGCCAGAAGCCGAAACTGAGCTACGTCGAAGAATGCCTGAACGGTCGCAAAGGGCCGGTCATCGCCTCTACCGACTACATGAAGCTGTTCGCCGAGCAGATCCGCCAGTGGGTTCCTTCCAAGGAGTTCAAGGTGCTGGGCACCGACGGTTTCGGCCGTAGCGACAGCCGCAAGAAGCTGCGTCACTTCTTCGAAGTCGACCGTAAGTTCGTTGTGTTGGCAGCCCTGGAAGCACTGGCTGACCGCGGCGATATCGAACCCAAGGTGGTGGCCGAGGCCATCGTCAAGTTCGGCATCGATCCGGAAAAACGCAACCCACTGGACTGCTGAMQDLDPVETQEWLDALESVLDKEGEDRAHYLMTRMGELATRSGSQLPYAITTPYRNTIPVTHEARMPGDLFMERRIRSLVRWNALAMVVRTNLKDSDLGGHISSFASSATLYDIGFNYFFQAPTDEHGGDLIYFQGHASPGVYARAFMEGRITEDQMNNFRQEVDGNGLSSYPHPWLMPDFWQFPTVSMGLGPIQAIYQARFMKYLEARGFIPAGKQKVWCFMGDGECDEPESLGAISLAGREKLDNLIFVINCNLQRLDGPVRGNAKIIQELEGVFRGAQWNVNKVIWGRFWDPLLAKDVDGILQRRMDEVIDGEYQNYKAKDGAFVREHFFNSPELKAMVADLSDDEIWKLNRGGHDPYKVYAAYHQAVNHKEQPTVILAKTIKGYGTGAGEAKNTAHNTKKVDVDSLKLFRDRFDIPVKDSELENLPFFKPEEGSAEARYLAERRAALGGFVPQRRAKSFSIPTPPLETLKAILDGSGDREISTTMAFVRILAQLVKDKEIGQRIVPIIPDEARTFGMEGMFRQLGIYSSVGQLYEPVDKDQVMFYREDKKGQILEEGINEAGAMSSFIAAGTSYSSHNQPMLPFYIFYSMFGFQRIGDLAWAAGDSRTRGFLIGGTAGRTTLNGEGLQHEDGHSHMLAGTIPNCRTYDPTYGYELAVIIQDGMKKMIEEQQDVFYYITVMNESYQQPAMPAGVEAGIVKGMYLLEEDTREAAHHVQLMGSGTILREVREAAKILREEFNVGADVWSVTSFNELRRDGLAVERSNRLHPGQKPKLSYVEECLNGRKGPVIASTDYMKLFAEQIRQWVPSKEFKVLGTDGFGRSDSRKKLRHFFEVDRKFVVLAALEALADRGDIEPKVVAEAIVKFGIDPEKRNPLDCPGPT0001385_2616DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001385-aceE-K00163NANA
D1-35_033582940glnECOG1391Bifunctional glutamine synthetase adenylyltransferase/adenylyl-removing enzymeATGAGCCTGCCCTCGCTTGCCGAAATTCCGGCAATTCTCCAGTCATTGGTCAGTCGCGCCGAGCAGTCGTTCCGCGCGGCGGTCGCTTCGCTGGACGACGATCACGGGCTGTCCGCCTGGACGCCGCAGCGTTGGGCCGAGTTCAACCGCGTCGCCGCTGCCAGTGACTTTGTCATCGAACAAAGTGTACGGGATCCTGCGATGCTGCTGGAACTGGTGCGCAGCGGTGAGCTGGACCGCAGCCTGGCGGCGGGTGAAATGTGCGGGCAGATCGCCGCTGCCGTACGAGCCGCCGAGAGCGAGGATGAACTGGGTCGCGTACTGCGTCGCCAGCGCACCCGTCAGCAAGTACGGATCATCTGGCGCGACCTGACCCGCCAGGCCGATCTGGTACAGACCTGCCGTGATCTCTCGGACATGGCCGACACCTGCATCGATCAGGCGTATCAGTGGTTGTACCAGCGCCTGAGCCAGCAATTCGGCACCCCCACCGGCCGGCGCAGTGGCGAGCCGCAGCAGATGGTCATCCTGGGCATGGGCAAGCTGGGAGCGGTGGAACTGAACCTGTCGTCGGACATCGACCTGATCTTTGCCTACCCCGAAGGCGGCGAAACCGTTGGCGCGAAGCGGCCGCTGGATAACCAGGAGTTTTTCATCCGCGTCGGCCAGCGGCTGATCAAGGCCCTCGACCCGATGACCGTCGACGGGTTCGTGTTCCGCGTCGACATGCGCTTGCGCCCCTACGGCTCGGCCGGTGCCCTGGTATTGAGCTTCAATGCCCTGGAACAGTATTACCAGGATCAGGGGCGCGACTGGGAACGCTACGCCATGATCAAGGCGCGGGTGGTGGCCGGCGACCAGGTGGCCGGCGCGCAATTGCTCGACATGCTGCGCCCGTTCGTCTATCGCCGTTACCTGGATTTCTCTGCCATCGAAGCGCTGCGCACCATGAAGCAGCTGATCCAGCAGGAGGTGCGGCGCAAAGGCATGGCCGACAACATCAAGCTGGGCTCGGGCGGCATTCGCGAGGTGGAGTTCATTGCCCAGGCGTTCCAGCTGATCCATGGCGGTCGTGACCTGAGCTTGCAGCAACGGCCGTTGTTGAAGGTGTTGGGTACCCTGGAAGGCCAGGGCTATCTGCCGGCCAAGGTCATCGATGAATTGCGCCAGGGGTATGAATTCCTGCGATACACCGAGCACGCGATCCAGGCCATTGCCGATCGCCAGACCCAGATGCTGCCGGATAACCCGCAAGACCAGGCGCGCATTGCGTTCATGCTGGGCTTCGTCGATTGGGCGGCGTTCCACGAGCAGTTGATGTACTGGCGCGGTCGGGTGGCGTGGCATTTTGGCCAGGTCATCGCTGACCCGGATGAGGACGAGGGCGGCGAAGGCGAAGTGGTGGTTGGCGGCGAATGGTTGCCATTGTGGGAAGACAGTCAGGACGAGGAGGCGGCGTGTCGTCAGTTGGAGGAGGCCGGTTTTGCCGATGCACCCAAAGCGCTCAAGGCCCTCGCTGTCCTGCGTGCCAGCCCGCAGCTGCGCGCCATGCAGCGCCTGGGGCGCGAGCGCCTGGACGCGTTCATTCCGCGCCTGCTCGCCCAGGCGGTGGAACATGCCGACCCGGACCTGGTGCTCGAACGGGTATTGCCGCTGGTAGAGGCCGTCGCCCGCCGTTCGGCCTATCTGGTGCTGTTGACCGAGAACCCCGGCGCCCTGCGGCGTTTGTTGACGCTGTGCGCGGCGAGTCCGTGGATCGCCGAGCAGATCACCCGGTTCCCGCTGTTGCTCGATGAATTGCTCAATGAAGGCCGTTTGTTCAAGCCGCCCCTGGCGCCTGAGCTCGCGGCGGAGTTGCGTGAGCGTCTGACACGGATTCCCGAGGACGATCTTGAGCAGCAGATGGAAGCCTTGCGGCATTTCAAACTGGCGCACCGCTTGCGGGTGGCCGCCTCGGAAATCGCCGGCAGCCTGCCGCTGATGAAAGTCAGCGATTACCTGACCTGGCTGGCCGAAGCGATTCTCGAACAGGTGCTGGCCCTGGCCTGGCGCCAGACGACGGCCAAGCATGGGGTGCCACTGCGCACCGACGGCAGCCTGTGTGATCCGGGCTTCATTATTGTCGGTTATGGAAAAGTCGGGGGGCTGGAACTGGGGCATGGTTCCGACCTGGATCTGGTGTTTATCCACGACGGTGACCCGCAGGCCGAAACCGACGGTCCGAAACCCATCGATGGCGCACAGTTTTTCACCCGGCTTGGTCAGCGAATCATTCATTTGCTGACGGCCCAGACCAACTCTGGGCAGCTGTATGAGGTGGACATGCGCCTGCGACCTTCCGGGGCGTCGGGCTTGCTGGTCAGTTCTCTGGGGGCGTTTGCCCGTTACCAGGAAAACGAAGCCTGGACCTGGGAGCATCAGGCGCTGGTACGTGCCCGGGTGCTGGTGGGCAGCCAGGATGTGGGCCAGGCGTTCGAAAAAGTCCGCGTTCAGGTACTGGGACGCTCGCGTGACTTGCCGACTTTGCGCCAGGAGGTCAGCGAGATGCGCGCCAAGATGCGCGATAATCTCGGCAGCAAGGCCACCGCTGCCGGAACCGCGCCAAATGCCTTCGAAGCCACGGCACCCTTCGACCTCAAGCAGGACGCCGGAGGTATCGTCGATATTGAATTTATGGTGCAATACGCGGCCCTGGCGTGGTCCGAGGAACATCCATCGCTGGTCCGCTATACCGACAACATCCGCATCCTGGACGGGTTGCAGGAGGTCGGGTTGCTGCCCGCCGAGGACGCCACGCTGTTGCGCGAAGCCTACAAGGCCTACCGCTCAGCCGCCCACCGCCAGGCTCTGCAGAAAGACGCCGGGGTGATCGCAGGCGATCAGTTCGTCGAGGAGCGTCGACAGGTGATGCGAATCTGGCGGGAGTTGGGGCTCAGCTGAMSLPSLAEIPAILQSLVSRAEQSFRAAVASLDDDHGLSAWTPQRWAEFNRVAAASDFVIEQSVRDPAMLLELVRSGELDRSLAAGEMCGQIAAAVRAAESEDELGRVLRRQRTRQQVRIIWRDLTRQADLVQTCRDLSDMADTCIDQAYQWLYQRLSQQFGTPTGRRSGEPQQMVILGMGKLGAVELNLSSDIDLIFAYPEGGETVGAKRPLDNQEFFIRVGQRLIKALDPMTVDGFVFRVDMRLRPYGSAGALVLSFNALEQYYQDQGRDWERYAMIKARVVAGDQVAGAQLLDMLRPFVYRRYLDFSAIEALRTMKQLIQQEVRRKGMADNIKLGSGGIREVEFIAQAFQLIHGGRDLSLQQRPLLKVLGTLEGQGYLPAKVIDELRQGYEFLRYTEHAIQAIADRQTQMLPDNPQDQARIAFMLGFVDWAAFHEQLMYWRGRVAWHFGQVIADPDEDEGGEGEVVVGGEWLPLWEDSQDEEAACRQLEEAGFADAPKALKALAVLRASPQLRAMQRLGRERLDAFIPRLLAQAVEHADPDLVLERVLPLVEAVARRSAYLVLLTENPGALRRLLTLCAASPWIAEQITRFPLLLDELLNEGRLFKPPLAPELAAELRERLTRIPEDDLEQQMEALRHFKLAHRLRVAASEIAGSLPLMKVSDYLTWLAEAILEQVLALAWRQTTAKHGVPLRTDGSLCDPGFIIVGYGKVGGLELGHGSDLDLVFIHDGDPQAETDGPKPIDGAQFFTRLGQRIIHLLTAQTNSGQLYEVDMRLRPSGASGLLVSSLGAFARYQENEAWTWEHQALVRARVLVGSQDVGQAFEKVRVQVLGRSRDLPTLRQEVSEMRAKMRDNLGSKATAAGTAPNAFEATAPFDLKQDAGGIVDIEFMVQYAALAWSEEHPSLVRYTDNIRILDGLQEVGLLPAEDATLLREAYKAYRSAAHRQALQKDAGVIAGDQFVEERRQVMRIWRELGLSPGPT0000655_1041DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-GLUTAMATE|GLUTAMINE_SYNTHASE|GLTS_PATHWAY,PGPT0000655-glnE-K00982NANA
D1-35_03359714rspR_1COG1802HTH-type transcriptional repressor RspRATGAGCAAGCCCGGCCAAACGGTGCTGGTTGCGTTGCGTCGGATGATCGCCTCCGGCGAGCTGGCGGCCGGCGAGCGGCTGATGGAAATTCCCACGGCGCAGTTGTTCGGCGTCTCGCGGATGCCGGTGCGCATGGCGTTTCGCACCCTGGAGCAGGAAGGGCTGCTGGTGCGTTTTGGCGGGCGGGGTTTCCAGGTGCGCTCGGTCAGCGCCGAGGAGATTGCCGGGGCGGTGGAAGTGCGTGGGGTGCTGGAGGGCCTGGCTGCCCGGCAAGCCGCCGAACGCGGTTTGTCCGAGGAGGCTCGCCGGGCGCTTGAGCAGTGCCTGGTCGATGGCGACGAACTGTTCGCCAAAGGTTATGTGACCGAAGAGGACCTGGAGGTCTATCACGACCTCAACATGCGTTTTCACCAGGTAATCGTCGAGGGCAGCCACAACCCGGCCATCGCCGACGCCCTGGCGCGCAACGATCACCTGCCGTTCGCCTCGGTCACGGCCCTGGCGGTCGACCGCCAGAACATGGCCGGCGAATACCGGCGCTTCAACTATGCCCACATGCAGCATCATTCGGTGTTCGACGCGCTGGTCAATCGCCAGGGCGCCCGGGCCGAGGCGATCATGCGCGAGCACGCCAACGCGACCCTGCGCTACGCCGAGGTGTTTGGCTCGACGCTGGCGGATGAGCGGATGAAGGTAATCCTTAGAACTGAATGAMSKPGQTVLVALRRMIASGELAAGERLMEIPTAQLFGVSRMPVRMAFRTLEQEGLLVRFGGRGFQVRSVSAEEIAGAVEVRGVLEGLAARQAAERGLSEEARRALEQCLVDGDELFAKGYVTEEDLEVYHDLNMRFHQVIVEGSHNPAIADALARNDHLPFASVTALAVDRQNMAGEYRRFNYAHMQHHSVFDALVNRQGARAEAIMREHANATLRYAEVFGSTLADERMKVILRTENANANANANA
D1-35_033601872menE2-succinylbenzoate--CoA ligaseGTGAGTTCCGAGTTCAGATCATCCTCCCGGCCCGAACCTGCGCGCTATCGCCAGGTGTCGATCGGGCATCCAGCCGTTGAAGTGAAGGAAGAGCAGGGCATCCTGCAGATGCGCTCCCTGGAGCCCTTGGCGCCGTTGCCGTCGCGCCTGCTCGATCGCCTGGTGCACTGGGCCCGGGTGCGACCGGACCAGACGTTCATTGCCGCTCGCGAAAACCAAGGCGATTGGCGTCACGTCAGCTATGCGGAAATGCTCGACAGCGTGCGGGCCATTGCCCAAGGCCTGCTTCGTTATGGCCTGTCGGCCGAAAAACCCCTGGCGCTGCTCTCGGGTAACGACATCGAGCATTTGCAAATGGCCTTGGGCGCGATGTACGCCGGGATTCCCTATTGCCCGGTGTCGCCGGCCTATTCGTTGCTGTCCCAGGATTTCGCCAAGTTGCGGCACGTCTGCGACCTGTTGCAGCCGGGGCTGATATTTGTCAGCGAGGCCGCGCCGTTCGAGCGCGCGATCAATGCGGTATTGCCTATGGATATCCCCCTGGTCAGCGTGCGCGGAGAAATACCCGGCCGCGCCAGGACAAGCTTCGCCAGCCTGCTGGCGCAGCCGGGCGGCAGCGAGGCCGAGCGGGCTTTCACCGCCACCGGCCCGGACAGCATCGCCAAGTTCCTGTTCACCTCCGGCTCCACCAAGCTGCCGAAGGCGGTGATCACCACCCAACGCATGCTTTGCGCCAACCAGCAGATGCTCTTGCAGACCTTCCCGGTGTTTGGCGAGGAACCACCAGTGCTGGTGGATTGGCTGCCCTGGAACCATACGTTTGGTGGCAGCCATAACGTCGGCATCGTGCTGTACAACGGCGGCACCTTCTATCTGGACGATGGCAAGCCCACCGTCCAGGGCTTCGCCGAAACCTTGCGCAATCTCAAGGACATTTCCCCAACCGCTTACCTGACCGTGCCCAAGGGCTGGGAGGAATTGGTCAGCGCGCTGGAACAGGACGCCGAACTGCGCGAGCGCTTTTTCAAGCGCATCAGCCTGTTCTTCTTCGCCGCGGCGGGGCTTTCGCAGAGCACCTGGGATCGCCTCGACAAGGTGGCCGAGCAGCATTGCGGCGAGCGCATCCGCATGATGGCCGGCCTGGGCATGACCGAAGCGTCGCCGTCCTGCACCTTCACCACCGGGCCGCTGTCCATGGCCGGCTACATCGGCTTGCCGGCGCCAGGTTGCGAAGTGCGGATGGTGCCGGTGGACGGCAAGTTCGAAGGGCGCTTTCGCGGGCCACACATCATGCCCGGCTACTGGCGGTCGCCGCAGCAGACCGCCGAGGTGTTCGACGAGGCCGGTTTCTATTGTTCGGGCGACGCCATCAAGCTGGCCGATGCCGCCAACCCGCAGTTGGGGCTGATGTTCGACGGGCGCATCGCCGAAGACTTCAAATTGTCCTCCGGCGTGTTCGTCAGCGTCGGGCCGTTGCGCAACCGCGCGGTGCTGGAGGGCACGCCGTACGTCCAGGACCTGGTGGTGACGGCGCCGGACCGCCCGCACCTGGGCGCGCTGGTATTCCCGCGCCTGCATGACTGCCGGCGCCTCTCGGGCCTGGCGCAGGACGCCAGCGACGCCGAGGTCCTGGCCAGCCCGCCGGTGCGCCAGTGGTTTGCCGACTGGTTGCAGCGCCTGAACCGCGAAGCCAACGGCAACGCCAGTCGTGTGGAGTGGATCGCACTGCTCGACGAACCCGCTTCCATCGACCGTGGCGAAATCACCGACAAGGGCTCGATCAACCAGCGCGCCGTGTTGCAATGGCGCGCGGCGAAGGTCGAGGCGCTGTATCGGGGAGAAGACCCAACGGTCCTGCGCGCTGGCAATTAAMSSEFRSSSRPEPARYRQVSIGHPAVEVKEEQGILQMRSLEPLAPLPSRLLDRLVHWARVRPDQTFIAARENQGDWRHVSYAEMLDSVRAIAQGLLRYGLSAEKPLALLSGNDIEHLQMALGAMYAGIPYCPVSPAYSLLSQDFAKLRHVCDLLQPGLIFVSEAAPFERAINAVLPMDIPLVSVRGEIPGRARTSFASLLAQPGGSEAERAFTATGPDSIAKFLFTSGSTKLPKAVITTQRMLCANQQMLLQTFPVFGEEPPVLVDWLPWNHTFGGSHNVGIVLYNGGTFYLDDGKPTVQGFAETLRNLKDISPTAYLTVPKGWEELVSALEQDAELRERFFKRISLFFFAAAGLSQSTWDRLDKVAEQHCGERIRMMAGLGMTEASPSCTFTTGPLSMAGYIGLPAPGCEVRMVPVDGKFEGRFRGPHIMPGYWRSPQQTAEVFDEAGFYCSGDAIKLADAANPQLGLMFDGRIAEDFKLSSGVFVSVGPLRNRAVLEGTPYVQDLVVTAPDRPHLGALVFPRLHDCRRLSGLAQDASDAEVLASPPVRQWFADWLQRLNREANGNASRVEWIALLDEPASIDRGEITDKGSINQRAVLQWRAAKVEALYRGEDPTVLRAGNPGPT0019895_153DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0019895-fcs-K12508NANA
D1-35_033611449vdhVanillin dehydrogenaseATGCTGGACGTGCCCCTGTTGATTGGCGGCCAGTCGTGCCCGGCCCGCGATGGCCGGACCTTCGAGCGCTGCAACCCGGTGACCGGTGAAGTGGTGTCCCGCGTGGCCGCCGCCACGCTGGAAGATGCCGACGCCGCCGTGGCCGCCGCACACGCTGCCTTCCCGGCCTGGGCCGCGCTGGCGCCCAACGAGCGTCGCACCCGTCTGTTGCGCGCGGCCGAGCAGTTGCAGGCGCGCAGCGGCGAATTTATTGCCGCCGCTGGCGAAACCGGCGCCATGGCCAACTGGTACGGCTTCAATGTGCATCTGGCTGCAAACATGCTCCGCGAAGCCGCCTCCATGACCACGCAAATCAATGGCGAAGTCATCCCTTCGGACGTGCCCGGCAGTTTCGCCATGGCCTTGCGTCAGCCGTGTGGCGTGGTGTTGGGCATCGCGCCGTGGAACGCCCCGGTCATTCTCGCCACCCGCGCAATCGCCATGCCCCTGGCGTGCGGCAACACTGTGGTACTCAAGGCCTCGGAAGTCAGCCCGGCCGTGCACCACCTGATCGGCCAGGTGCTGCAGGACGCCGGTCTGGGCGATGGCGTGGTCAATGTCATCTGCAATGCGCCCACGGATGCGCCGGCCATTGTCGAGCGCCTGATCGCCAACCCGGCGGTACGGCGGGTCAACTTCACGGGCTCGACCCACGTCGGCCGCATCGTCGGCGAACTGTCGGCGCGTCATCTCAAGCCGGCATTGCTGGAGCTGGGCGGCAAGGCACCGCTGCTGGTGCTCGATGACGCCGATCTTGACGCAGCGGTGCAGGCGGCGGCGTTTGGGGCCTACTTCAACCAGGGCCAGATCTGCATGTCCACCGAGCGCCTGATCGTAGACGCGAGCGTGGCCGATGCCTTTGTCGCCCGACTGACCGCGAAGATTGCGACCCTGCGCGCCGGCGATCCTGCCGCGGGTGATTCGGTGCTGGGCTCGCTGGTGGACACCAGCGCCGGACTGCGCATCAAAGGCCTGATCGACGATGCCCTGGCCAAAGGCGCCAGACTAGTCGCCGGCGGCCAACTGGACGGCAGCATCCTCCAACCGACCTTGCTCGACGGGGTCACCCCGGACATGCGCCTGTACCACGAAGAGTCCTTCGGACCGGTGGCGGTGTTGCTGCGCGGCGACGGTGACGAAGCGTTGCTGCGCCTGGCCAACGATTCCGAGTTCGGCCTGTCGGCGGCGATCTTCAGCCGCGATACCAGCCGCGCCCTGGCGCTGGCCCAACGAATCGAATCCGGCATCTGCCACATCAATGGCCCGACCGTGCACGACGAGGCGCAAATGCCCTTCGGCGGGGTCAAGTCCAGCGGCTACGGCAGCTTTGGCGGCAAGGCCGCCATCGAGCATTTCACCCAGTTGCGCTGGGTGACGATGCAGAACGGCCCACGGCATTACCCGATCTGAMLDVPLLIGGQSCPARDGRTFERCNPVTGEVVSRVAAATLEDADAAVAAAHAAFPAWAALAPNERRTRLLRAAEQLQARSGEFIAAAGETGAMANWYGFNVHLAANMLREAASMTTQINGEVIPSDVPGSFAMALRQPCGVVLGIAPWNAPVILATRAIAMPLACGNTVVLKASEVSPAVHHLIGQVLQDAGLGDGVVNVICNAPTDAPAIVERLIANPAVRRVNFTGSTHVGRIVGELSARHLKPALLELGGKAPLLVLDDADLDAAVQAAAFGAYFNQGQICMSTERLIVDASVADAFVARLTAKIATLRAGDPAAGDSVLGSLVDTSAGLRIKGLIDDALAKGARLVAGGQLDGSILQPTLLDGVTPDMRLYHEESFGPVAVLLRGDGDEALLRLANDSEFGLSAAIFSRDTSRALALAQRIESGICHINGPTVHDEAQMPFGGVKSSGYGSFGGKAAIEHFTQLRWVTMQNGPRHYPIPGPT0005525_231DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_VANILLIN|VANILLATE_DEGRADATION,PGPT0005525-vdh-K21802NANA
D1-35_03362831Hydroxycinnamoyl-CoA hydratase-lyaseATGAGCAATTACGAAGGTCGCTGGACAACGGTCAAGGTCGACATCGAGGAAGGCATCGCCTGGGTAACCCTCAATCGCCCGGAAAAACGCAACGCCATGAGCCCGACCCTCAACCGCGAGATGATCGATGTGCTGGAGACCCTGGAACAGGATCCCGCCGCTGGCGTGCTGGTGCTGACCGGTGCGGGGGAGGCCTGGACCGCCGGCATGGACCTCAAGGAATATTTCCGCGAAGTGGATGCCGGGCCGGAAATCCTCCAGGAAAAAATCCGTCGCGAAGCCTCGCAATGGCAATGGAAACTGCTGCGCATGTACGCCAAGCCGACCATTGCCATGGTCAACGGCTGGTGCTTCGGCGGCGGCTTCAGCCCGCTGGTGGCGTGCGACCTGGCGATCTGCGCCGACGAAGCCACCTTCGGCCTTTCGGAAATCAACTGGGGCATCCCGCCCGGCAACCTCGTGAGCAAAGCCATGGCCGATACCGTGGGCCATCGCCAATCCCTGTACTACATCATGACCGGCAAGACCTTCGGCGGGAAAAAAGCCGCGGAGATGGGCCTGGTCAATGAAAGCGTACCCCTGGCACAGCTGCGTGAGGTCACCGTGGAGCTGGCGCGCAACCTGCTGGAGAAAAACCCGGTGGTGCTGCGCGCGGCCAAGCATGGTTTCAAGCGTTGCCGCGAGCTGACCTGGGAGCAGAACGAGGACTACCTCTACGCCAAGCTGGACCAGTCGCGCCTGCTCGACACCGAGGGCGGCCGCGAGCAGGGCATGAAGCAGTTCCTGGACGACAAGAGCATCAAGCCGGGCCTGCAAACCTACAAACGCTGAMSNYEGRWTTVKVDIEEGIAWVTLNRPEKRNAMSPTLNREMIDVLETLEQDPAAGVLVLTGAGEAWTAGMDLKEYFREVDAGPEILQEKIRREASQWQWKLLRMYAKPTIAMVNGWCFGGGFSPLVACDLAICADEATFGLSEINWGIPPGNLVSKAMADTVGHRQSLYYIMTGKTFGGKKAAEMGLVNESVPLAQLREVTVELARNLLEKNPVVLRAAKHGFKRCRELTWEQNEDYLYAKLDQSRLLDTEGGREQGMKQFLDDKSIKPGLQTYKRPGPT0019905_108DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-PLANT_HYDROXYCINNAMIC_ACID_RESISTANCEADAPTION_TO_PIS-HCA_DEGRADATION-VANILLIN_INTERMEDIEATE,PGPT0019905-ferB-K18383NANA
D1-35_03363489slyA_2Transcriptional regulator SlyAATGGCCAAGTCTTCCAAGCTTGCCGAAGCCGCCGCGGCGCCCCTGGCCGACGGTACCGACACGCAGGCGCCGCTGGATTCCGCGCTGGATGACCTGATCGGTTACGCCTTGCGTCGCGCGCAGTTGAAACTGTTCCAGAACCTGATCAGCCGTCTCGCGGTCCACGACTTGCGACCGGCCCAGTTCTCGGCCCTGGCGATCATCGACCAGAACCCCGGCCTGATGCAGGCCGATCTGGCCAAGGCGCTGGCCATCGAGCCACCGCAAGTGGTGCCCTTGTTGAACAAACTGGAAAGCCGCGCCCTGGCCGTACGGGTGCGCTGCAAGCCGGACAAGCGCTCCTACGGGATTTTCCTGAGCAAGACCGGCGAAACCCTGCTCAAGGAGCTCAAGCAGATCGCCGCCCAGAGCGACCTGGACTCCACCGCCGCCCTCAATGGTGCCGAGCGCGAGGAACTGCTGCGGTTGCTGAAGAAGGTTTATCAGTAAMAKSSKLAEAAAAPLADGTDTQAPLDSALDDLIGYALRRAQLKLFQNLISRLAVHDLRPAQFSALAIIDQNPGLMQADLAKALAIEPPQVVPLLNKLESRALAVRVRCKPDKRSYGIFLSKTGETLLKELKQIAAQSDLDSTAALNGAEREELLRLLKKVYQNANANANANA
D1-35_033641308nicP_3Porin-like protein NicPATGCCAGATATCATCCGGAACGCCCAGGCGGCGATCCCTGTTTCACCGCTCGTTCACTGGTTGGCCGGAACCGGGCTGAGTCTTCTTTGCAGCGTGGCGCTGGCCGAAGGTTTCATCGACGACAGCCACGGCACGTTGACCCTGCGAAATTACTACATGGATCGCGATTACAAGGACGACGGCGCCAAGACTGCGGCCCGGGAGTGGGCCCAAGGCGTGTTCATGAACGTCGAGTCGGGCTTTACCCCCGGTACGCTCGGATTTGGCCTGGATGTACGGGGGCTGCTGGGCATCAAGCTCGACTCCTCGCCGGACCGCAGCGGCACTGAACTGTTGCCGGTGTCGAGCAGCGACAAGCGCGCGGCGGATGAATACTCGCGGCTGGGCGTGACCGGCAAGTTGCGTTTCGGGCAAACCACGGTAAAGACCGGCGATGTCTCGATTTTCCTGCCGTTTGCCTTCGCCAGTCCGTCGCGGCTATTGCCGCAGACCTTTCGCGGGACAACCCTGAGCTCCAAGGACGTCGACGGATTGGCGCTGAACACCGGTTACATCGATCGCATCGCCCGGCGCGATTCTACCGATTACCAGCCGATGAGCATCGCCTCGCCCAATCGTCGTTTCAACGGCGCGGCGACCTCGTCTCACATGGCGTACGTGGGAGGCGATTATCAGGTCAACAAGGATCTCGGCCTGCGCATCTACCACGCCGAAGTTGCCGATCTGTACCAGCAGAATACCTTCGCCTTGCTGCATAACCTGCCATTGGGTGATGGAGTGCTGACCACCGATCTACGGAGTTTTTTCAGCAGCGAGGAGGGTGCCGCCAAGGCTGGCAAGGTGGATAACCGCAACGTCTCGGCGCTGGTCGGTTATCGCCTGGGCGGGCATCGCGTCAGCCTGGGCTACATGCATTCGAGCGGCGATACGGCAACACCGTACGTGTCGGGCACCGAGCTGATGGGTTTGAGCGAAATGACCATGAGTTCGGACTTTCTCAATGCCAAGGAGCGCACCTGGCAAGCGATCCACGATTATGACTTCGCCGCCGTTGGCGTGCCTGGCTTGCGGACCCGGTTGCGTTACGTGCGTGGCGACCATATCGAGCTGGCGGCCCTTAATGCCGAGGATCGCAAGGAGCGTGAGTTCCAGATGGAGTTGGGTTATGTGATCCAGAGCGGCCCGCTGAAAAACGTCGGCCTGCTGGCGCGCAAGTCGATCTACCGAAACGACTTTCCGGGAACGGCGGCGTTTCGCGATGAAAACCAGACCCGGTTCCTGGTGACGTACAGCGTGCCGATCTGGTGAMPDIIRNAQAAIPVSPLVHWLAGTGLSLLCSVALAEGFIDDSHGTLTLRNYYMDRDYKDDGAKTAAREWAQGVFMNVESGFTPGTLGFGLDVRGLLGIKLDSSPDRSGTELLPVSSSDKRAADEYSRLGVTGKLRFGQTTVKTGDVSIFLPFAFASPSRLLPQTFRGTTLSSKDVDGLALNTGYIDRIARRDSTDYQPMSIASPNRRFNGAATSSHMAYVGGDYQVNKDLGLRIYHAEVADLYQQNTFALLHNLPLGDGVLTTDLRSFFSSEEGAAKAGKVDNRNVSALVGYRLGGHRVSLGYMHSSGDTATPYVSGTELMGLSEMTMSSDFLNAKERTWQAIHDYDFAAVGVPGLRTRLRYVRGDHIELAALNAEDRKEREFQMELGYVIQSGPLKNVGLLARKSIYRNDFPGTAAFRDENQTRFLVTYSVPIWNANANANANA
D1-35_033651227mhpT3-(3-hydroxy-phenyl)propionate transporterATGAACCATCCGCCGCGTCGTGCGACGTTGACCATTGCCCTGTGTTTCATCGTCGCGCTGATCGAAGGCTTTGATCTTCAATCGGCCGGCACCGCCGCTGCCGGCTTGCGACAGACCTTCGCCCTGGACCCGAAGATGATGGGCTGGGTCTTCAGCGCGGGGATCATCGGCCTGCTGCCAGGTGCGTTTTTCGGCGGCTGGATTGCCGATCGCATCGGCCGCAAGAAAATCCTGATTGCCGCTGTCCTGCTGTTCGGCGTGTTTTCCCTCGGCACCGCGTTTGTCGAGCAATTCTCCAGCCTGCTGCTGGTGCGCTTCATGACCGGCCTGGGACTGGGCGCCGCCCTGCCCAACCTCATCGCCCTGTGCGCTGAAGCCGTGGGCGAACAACGCCGTGGTACCGCCATCAGTGTCATGTACGCCGGGGTTCCGCTGGGTGGCGCGCTGGCGGCAGTGGTCGCCATGACCTTTGGCGAGCACTGGCAGATGACGTTCTTCATCGGTGGCCTGGCGCCCTTGCTGGTGGTGCCGTTGATGCTGCTGTGGCTGCCGGAGTCCAGTGCTTTCAAGCAGATACGACACGTCGCGGGCGAGGTCCGTGGTTCGACCGGTCAGGCGCTGTTCGGCGAAGGCCGGGGGCTGACAACGCTGGGCCTCTGGTTGAGTTATTTCTTCACCCTGACGGTGATGTACATGCTGCTCAACTGGCTGCCTTCTTTGCTGGTGGAACAAGGTTTCAGCAAACCCCAGGCCGGCCTGGTGCAGATGCTGTTCAACATCGGCGGGGCCCTGGGATCGTTGATCGGTGGTTTGTTGCTGGACCGTTTCAACGCCGTCAAGGTAGTGCTGTTTGTCTATGCCGGCCTGCTGAGCGCCCTGGCCGGGGTCGGTTTGTCGGTGGGCATCATGCCGATGGGCATCGCCGGGTTTGCCGCCGGGCTGTTTGTCATGGCGGCGCAACTGGTGCTTTATGCCTCGGCGCCGCCCTCCTACCCTACGGCGGTGCGCGCAACCGGCGTCGGCGCAGCCGTTGCCATCGGGCGCCTGGGCTCGGTGGCCGGGCCTTTGGCCGCCGGCCAGATCCTCGCGGCTGGCGGCGGGACCACTGCGGTACTGCTGGCGACTTCCCCTGGATTGGTGGTGGCGACGTTGGCCATCCTCAGCGTGATCCGCCGTTCGGCCGGGCCACGGTTGGGCACGGCAGAGCCGGTGGCGCAGAAATCCTGAMNHPPRRATLTIALCFIVALIEGFDLQSAGTAAAGLRQTFALDPKMMGWVFSAGIIGLLPGAFFGGWIADRIGRKKILIAAVLLFGVFSLGTAFVEQFSSLLLVRFMTGLGLGAALPNLIALCAEAVGEQRRGTAISVMYAGVPLGGALAAVVAMTFGEHWQMTFFIGGLAPLLVVPLMLLWLPESSAFKQIRHVAGEVRGSTGQALFGEGRGLTTLGLWLSYFFTLTVMYMLLNWLPSLLVEQGFSKPQAGLVQMLFNIGGALGSLIGGLLLDRFNAVKVVLFVYAGLLSALAGVGLSVGIMPMGIAGFAAGLFVMAAQLVLYASAPPSYPTAVRATGVGAAVAIGRLGSVAGPLAAGQILAAGGGTTAVLLATSPGLVVATLAILSVIRRSAGPRLGTAEPVAQKSNANANANANA
D1-35_033662421hypothetical proteinTTGAAAGACGACAGAATCCAAACCGTGATCGGCCGCCAGGAAGACTTCGACCGGACGTCGGGCAATTTCGCCGAGCGGGCGATTTTCAACCATCGACCGCTGGTAATCCTGCTGTGCCTGCTGGTGACCCTGGTGCTGGGCTGGCAAGCCACGCGCATCGGTATCAATGCCAGTTACGAGAAGACCATTCCCACCGGGCATCCCTACGTCGCCAACTTCCTGGAGAATCGCAGTGAGTTGAGTGGCCTGGGCAATTCGCTGCGCATCGCCGTGGAGGTCAGGCAGGGCAGTATTTTCACCAAGGACTATCTCGATACTCTGGCCAGGCTCAATGATGAGCTCTATCTGCTACCGGGCGTCGACCGCCCCTATATGAAATCGTTATGGACCCCGACCACGCGCTGGACCGCCGTGACGGAGGAGGGGCTCGATGGCGGCACGGTGATCCCTGACGATTACGATGGCTCGGCCAGCAGCATCGAACAGGTGCGCACCAACGTCGGCCGTTCCGGTGAAGTCGGCCAGTTGATCGCCGGCAACTACAAGTCCAGTGTGATCTTCGTGCCGCTGCTGGAGATCAACCCGCAGACGGGCAAGGCGCTGGACTATGGTGAGTTTTCCCGGCAACTGGAGGCGTTGCGAGACAAGTACCAGACCGACGACCTGCGGATCCATATCACCGGCTTTACCAAGATCGTCGGCGACCTGATCGAGGGAATGACCCAGGTCCTGCTGTTTTTCGTGGTGGCGGTACTGGTGACGGTGATGGTGCTGTTCGGCTACACCCGTTGTGCGCGCAGCACCCTGGTGGTGGTGACCTGTTCGCTGGCCGCCGTGCTTTGGCAACTGGGGCTGCTGGCACTGCTCGGTTACGAGCTGGACCCATACTCGGCACTGGTGCCGTTCCTGGTGTTCGCCATCGGCATGAGCCACGGCGCGCAGAAGATGAACGGCATCATGCAGGACATCGGTCGGGGCACCCACCGGGTGGTTGCCGCGCGTTATACCTTCCGCCGGCTGTTCGCCGCCGGCATCACCGCCTTGCTCTGTGATGCGGTGGGCTTTGCGGTGTTGCTGCTGATCAACATCCGGGTGATCCAGGACCTGGCGGTCACCGCCAGCCTCGGGGTGGCGGTGCTGATCTTCACCAACCTGATCCTCTTGCCGATCCTGCTCAGCTACATCGGCGTCAGCCCGGCAGCGGCGCAACGCAGCCTGAGCGCGGAAACCACCGAACAGCAAGCGCAGATCAAACATCCGCTGTGGCGCGTGCTCGATCTGTTCACCCAGCGGCGCTGGGCCATTGGCGCCATGCTGGCTGGCTTGTTGTTGGCCGCGTCTGGTTTTGCCGTGAGCCTGCACCTGAAGATCGGCGACCTGGACCCCGGCGCTCCGGAACTGCGTGCCGACTCTCGTTACAACCGCGATGCGCTGTTCATGACGCAAAACTATGCGGCCAGCTCGGACATCTTCGTGGTCATGATCAAGACCCCGGAGGATCAGTGCACCCGTTACGCCAGCCTGTCCGCGGTCGACGCGCTGGCCTGGCAACTGGAGCAATTGCCCGGCGTGGAATCGACCACCTCGATGGCGGCGCTGAGCAAGATCGCCACGGCCGGGTATAACGAGGGCAATTTCAAATGGTATGAACTGATACCCAACGACGGCGCGCTGGGCGCCGTGCAAACCCGCGCGCCACGAGAGCTGTTCAACCAGGGCTGCTCGATGCTGTCGCTGTACGTCTACCTGGCCGATCACAAGGCTGACACCTTGAACCGCGTGGTGGAGGCCAGCGAGCAGTTCATCGCCGGACATCAGCTGCCAGAGGTCAAGTTCATGCTGGCAGCCGGCAGTGCGGGGATTGAAGCGGCGACCAATATCGTCGTGAAGAAATCCATGCGCGAGATGCTCTTCTGGGTCTACGGCGCGGTCAGCCTGTTATGCCTGCTGACGTTCCGCAGCTGGCGCGCCACCCTCTGCGCGATGCTGCCGCTGATGCTCACCTCGATTCTGTGCGAGGCGCTGATGGTGGGGCTGGGCATGGGCGTGAAAGTCGCGACGCTGCCGGTCATCGCCCTGGGCGTGGGCATCGGCGTCGATTACGCGCTCTATGTGCTCAGCGTGATCCTGGCGCGCATGCGTGCCGGCGACACCCTCGCCCAGGCGTACTACCAGGCGCTGTTGTTCACCGGCAAAGTGGTATTGCTGACGGGCATGACATTGGCGGTGGCGGTGTCGACCTGGGCTTTTTCACCGATCAAGTTCCAGGCCGACATGGGGATCTTGCTGGCCTTCATGTTCCTGGTGAACATGCTTGGCGCCCTGATCCTGCTGCCGGCCCTGGCATGGTGGCTGTTGCCGCGGAAGGTGTTTGAAAAGAAGCCTGAACTGAGCCGGCGGGAGCGCTGGGTGAGGGGCTGAMKDDRIQTVIGRQEDFDRTSGNFAERAIFNHRPLVILLCLLVTLVLGWQATRIGINASYEKTIPTGHPYVANFLENRSELSGLGNSLRIAVEVRQGSIFTKDYLDTLARLNDELYLLPGVDRPYMKSLWTPTTRWTAVTEEGLDGGTVIPDDYDGSASSIEQVRTNVGRSGEVGQLIAGNYKSSVIFVPLLEINPQTGKALDYGEFSRQLEALRDKYQTDDLRIHITGFTKIVGDLIEGMTQVLLFFVVAVLVTVMVLFGYTRCARSTLVVVTCSLAAVLWQLGLLALLGYELDPYSALVPFLVFAIGMSHGAQKMNGIMQDIGRGTHRVVAARYTFRRLFAAGITALLCDAVGFAVLLLINIRVIQDLAVTASLGVAVLIFTNLILLPILLSYIGVSPAAAQRSLSAETTEQQAQIKHPLWRVLDLFTQRRWAIGAMLAGLLLAASGFAVSLHLKIGDLDPGAPELRADSRYNRDALFMTQNYAASSDIFVVMIKTPEDQCTRYASLSAVDALAWQLEQLPGVESTTSMAALSKIATAGYNEGNFKWYELIPNDGALGAVQTRAPRELFNQGCSMLSLYVYLADHKADTLNRVVEASEQFIAGHQLPEVKFMLAAGSAGIEAATNIVVKKSMREMLFWVYGAVSLLCLLTFRSWRATLCAMLPLMLTSILCEALMVGLGMGVKVATLPVIALGVGIGVDYALYVLSVILARMRAGDTLAQAYYQALLFTGKVVLLTGMTLAVAVSTWAFSPIKFQADMGILLAFMFLVNMLGALILLPALAWWLLPRKVFEKKPELSRRERWVRGNANANANANA
D1-35_033671104hcf136_1Ycf48-like proteinATGAACGTTGAAAAAATCTTCGCGAGCCGCGGTCCGCTATGGGCGGTTTGTGTCCTGGTGTGCTGCCTGTGGGCGAGCGTGCCTTGGGTCGCGCACGCCACGACCTTGGCCGTACTGCAGCAACCGGCGCTGCCCACGGCCAAGGCGCCACGCGCGGTATTGCTCGGGCTGGCCCGGGCCGGTGAGCGCCTGGTGGCGGTCGGTGAGCGCGGGATCGTGCTGCTTTCCGACGATGCCGGAATGAATTGGCGCCAGGCCAAGGTGCCGGTCAGCGTCAGCCTGACGGCGGTGCAATTTGTCGATGCCGAACAGGGCTGGGCGGTCGGTCATCTGGGCGTGGTACTGCACACCCGGGACGGCGGCGAAACCTGGGAAAAGCAACTCGATGGCGAGCGTGCGATCGCCCTCGCGATGCAGGTTGCAGAGCGCGATGCCGATGAGCCCGGCGGTGCCAGCCAGTTGACGCAGGCTCGGCATATGCTCGCCGACGGGCCGGATAAACCGCTCCTTGACCTGTATTTCGTTGATCGCCTGCACGGCTACGTCGTGGGGGCGTACAACCAGATCTACCGTACCGACGACGGCGGGCGTAGCTGGCAACCGTGGATGCGTCATGTCGACAACCCGCAGGGCTTGAACCTGTATGGCGTCCGCGGCGTGGGCAAGGACCTGCTGCTGGTGGGAGAGCGCGGCCTGCTGTTGCGTTCGAGCGATGGCGGACAGTCGTTCCACGCCTTGAAGTCACCGTATGAAGGCAGTTTTTTCGGCCTGCTTGGCACCCGCGACGGGGCCTTGATTGCCTACGGTCTGCGTGGCAATGCCTGGTGGTCGGACGATCGAGGCAACAGTTGGCGACGCCTTGAGACCGCTATCGAGTCGACGCTGGCGGCGGCGCTTGAGCTGCGCGACGGCAGCCTGTTGTTGGCCAGCCAGGGCGGTGAGTTTTTATTCAGCCATGACCAAGGCCGCAGCTTTGACAAGCGTCAGAGCCGCAGCGGTGGCACGGTTGCCGCCGTGCAACAGGCGGTCGATGGCAGCCTCGCCAGCGTCGGTTTGAGCGGCGTGGCCGCCGACCAGGATCCGCGAGGCTCCAGTAAACCTTGAMNVEKIFASRGPLWAVCVLVCCLWASVPWVAHATTLAVLQQPALPTAKAPRAVLLGLARAGERLVAVGERGIVLLSDDAGMNWRQAKVPVSVSLTAVQFVDAEQGWAVGHLGVVLHTRDGGETWEKQLDGERAIALAMQVAERDADEPGGASQLTQARHMLADGPDKPLLDLYFVDRLHGYVVGAYNQIYRTDDGGRSWQPWMRHVDNPQGLNLYGVRGVGKDLLLVGERGLLLRSSDGGQSFHALKSPYEGSFFGLLGTRDGALIAYGLRGNAWWSDDRGNSWRRLETAIESTLAAALELRDGSLLLASQGGEFLFSHDQGRSFDKRQSRSGGTVAAVQQAVDGSLASVGLSGVAADQDPRGSSKPNANANANANA
D1-35_033681362putative proteinATGCAGAACCCAGCATTCCTGAACACCTGCGTCCTCGCCCTTGCCCTGGCCGGCATGAGCCTGGCGCAGGCGGCGGTATCGCCTGAGCAGGCCGCGCGCTTGAAAACCGATCTGACCCCCTTCGGTGGTGAGCGCGCCGGCAACGCCGATGGCAGCATCCCGGCCTGGCAGGGCGGTTATACCCAGGTCGCGCCCGGCTACAAAGCGGGTGACAAGCGCCCTGATCCATTTGCCGGCGACAAACCGCTGTACTCGATCAAGGCGTCGAACATGACGCAGTACGCCGGCCAACTGGCCGAGGGCACCCAGCTGCTGCTGAAGAAATATCCGGACTATCGCCTGGATGTGTACCCGACTCATCGCTCGGCCGCCGCGCCGCAATGGGTGTACGACAACACCAGCAAGAATGCCACGCGCGCCGCACTGGACGTGGACAGCGAAAAAGTCTCCAACGCCTATGGCGGCATCCCGTTCCCGATCCCTGAGAACGGTGCGCAGGTGCTGTGGAACTATCGGTTGTCCTGGCAGGGCGGCGACACCATCAGCTCGCCGTTCGATACCTGGCTGATGACCGCCGGTGGCAAGAAAGTCCAGGCGACCCGGGCCCAGTACACCTATCAGTTTCCCTACTACGTCGAAGGCGGCAGCCTGGAAAACTATTCGGGCAAGTACCTGCTGGGCAAGCTGTTCACCGAATTGCCGTCGTCCAAGGCCGGCGAGGGCCTGATGACCCATTGGGACCTGGACCCGGCCAATCGTGCGGCCTGGCAGTACCTGGTCGGTCAACGCCGGGTTCGTCGTGCACCGAACATTGCCTACGACACACCGGACTTCGTCACCTCCGGCGTCGGCCTGTTCGATGAGGCGTTCATGCTGTTCGGGCCCACCGATCGTTATGACCTCAAGCTGGTGGGCAAAAAAGAACTGATCGTCCCCTACAACAATAACCGCGCCGCGCTGGCCAAGAGCGACGAGCTGGTCAAGGTCGGTTTCCTCAATCCTGACCTGGTGCGCTGGGAGAAACATCGGGTCTGGGTCGTCGAGGCCACGCTCAAGTCCGGCAAGCGCCATGTCGTGCCGCGTCGCACCTACTACGTCGACGAAGACTCCTGGCAGATCCTGATGGCCGACGGTTATGACGCCCAGGGCAAGCTCGGTCGGCAGATGTATTCGCTGACGCTGCTGGCACCGGACCTGCCGGCCTTGACCGCACAGGTCATGTGGGGCAGCTACAACCTCGACACCGGGGCCTACTTCCTCAATTCGTCGAGCAACGACCTGACAGTCCAATACCAGAAGGTCGCGAAGCCTTCAGCGTCCTATTTCACGCCGGATGCCATGGCCAACGAAAACATGCGTTGAMQNPAFLNTCVLALALAGMSLAQAAVSPEQAARLKTDLTPFGGERAGNADGSIPAWQGGYTQVAPGYKAGDKRPDPFAGDKPLYSIKASNMTQYAGQLAEGTQLLLKKYPDYRLDVYPTHRSAAAPQWVYDNTSKNATRAALDVDSEKVSNAYGGIPFPIPENGAQVLWNYRLSWQGGDTISSPFDTWLMTAGGKKVQATRAQYTYQFPYYVEGGSLENYSGKYLLGKLFTELPSSKAGEGLMTHWDLDPANRAAWQYLVGQRRVRRAPNIAYDTPDFVTSGVGLFDEAFMLFGPTDRYDLKLVGKKELIVPYNNNRAALAKSDELVKVGFLNPDLVRWEKHRVWVVEATLKSGKRHVVPRRTYYVDEDSWQILMADGYDAQGKLGRQMYSLTLLAPDLPALTAQVMWGSYNLDTGAYFLNSSSNDLTVQYQKVAKPSASYFTPDAMANENMRNANANANANA
D1-35_033691650hypothetical proteinATGGATAACCTCAAAGACAGCTTTGGTTTCAAGCATTGCGCGCTATTCCTGGCGCTTTGCAGCAGCGGTGTGATGGGCGAGAGGGCCGAGGCCATGCAAATGGACCTGGGTGACTCCGACTGGAAACTGCGCTGGGACAACACCATCAAGTACAGCCAGGCCTGGCGCCTGCACGGACAGGACAGCCGTCTGGTCAACGCGCCGACCGCCAATGGCCTGTACCCCTCGATCCAGAGCCAGGGCGACAAGAACTTCAGTCGCGGCCTGGTCTCCAACCGTCTCGACCTGTTTTCCGAAATGGACCTCAGCCGGCAAAACTACGGGCTGCGGGTCAGCGGCGCGGCCTGGTACGACGATATCTACAACCAGGACACCGACAGCAGCGAGCAGCCACATTTCCTCAGCGAAACCCGCGAGCTGCATGGACGCGACGCTGAGATTCTCGATGCCTTCGTGTTCCTGCGCGGAGACCTCGGGGATGACTCCCAAGGCGTGGCGCGTCTTGGACGCCACAGCCTGATCTACGGCGAAAGCCTGTTCTACGGCGGCAACGGCATTGCCAATGCCCAGGGGCCGACCGATGTGGTCAAGTTGCTCAGCGTGCCGGGAACACAGTTCAAGGAGATCCTGCGGCCGGTCAATCAGATTTCCGGGCAGTTGCAGATCAACCCGCAGCTGTCGGTGGGCGCCTACTATCAGTTCGAGTGGGAACGTTCCAACCTGCCCGGCGCCGGCAGCTACCTGAGCGATGCCGACGCCATCGGTTACGGCAGCGGCCCGCTGCGTGAGGTATTCGGCAACGACACGGTGAACGGCGGCGACCTGAAACCGCGCAATTCGGGGCAGGGCGGTATGCAGATCCGCTTCAAGCCGGCCGGCACAGAGCTGGAGCTGGGTTTCTACGCGGCCCAGTATCACGACAAGGCGCCGATCGGGTTGTATGCCTACCTGGACGGTCCGGCGGCTGCGGCCAGCGGACTGCCGATCCTCGGCTCCTATCGCCAGGTCTACGCCGAAGACATCAAGACCGCCGGCGTCAGCTTTTCTACCGCTTACGGTCCGTTCAACTTTGCCGGTGAATCGTCGGTGCGCTGGAACGCGCCGCTGGTGAGCAACCTGCAAGTAGTGACCCCCGGCATGCAGGCCGATGGTGGCGACGATGCGCTGTTCGCCCGGGGCAAGACCGCGCACGTCAATCTGTCGGCGATCTACCTGCTGTCGCCCACCGCTTTCTGGGACGGCGGCTCGGCCCTGGCCGAGCTGGCCTGGAACCGCACCCTGAGCGTGACCGAGAACGCTGCCGCGCTGGATTCCAATACCACCCGGGATGCCACGGCGTTGCGAGTATTGATGGAACCGGCGTACTTCCAGATCGTCGACGGGATCGACCTCACCGTGCCGGTCGGCATGGGGATCGTGCTTGATGGACGCTCATCGGCGGTGAACAAATCCGGCTTCGGCAATACCCATTCCGGCGACTGGAGCGTCGGCCTCAAAGCCACCTACCTGCAGCGCTGGGATGTCGGCCTCAATTACGTGAACTTCTTCGGCGCACCCAAGGCCGGGCTGCGCGAGGACGGCAATTTCAGTTACGGCCAGTCGTTGGCCGACCGCGACTTCGTCTCGCTCTATGTGAAAACCTCATTCTAAMDNLKDSFGFKHCALFLALCSSGVMGERAEAMQMDLGDSDWKLRWDNTIKYSQAWRLHGQDSRLVNAPTANGLYPSIQSQGDKNFSRGLVSNRLDLFSEMDLSRQNYGLRVSGAAWYDDIYNQDTDSSEQPHFLSETRELHGRDAEILDAFVFLRGDLGDDSQGVARLGRHSLIYGESLFYGGNGIANAQGPTDVVKLLSVPGTQFKEILRPVNQISGQLQINPQLSVGAYYQFEWERSNLPGAGSYLSDADAIGYGSGPLREVFGNDTVNGGDLKPRNSGQGGMQIRFKPAGTELELGFYAAQYHDKAPIGLYAYLDGPAAAASGLPILGSYRQVYAEDIKTAGVSFSTAYGPFNFAGESSVRWNAPLVSNLQVVTPGMQADGGDDALFARGKTAHVNLSAIYLLSPTAFWDGGSALAELAWNRTLSVTENAAALDSNTTRDATALRVLMEPAYFQIVDGIDLTVPVGMGIVLDGRSSAVNKSGFGNTHSGDWSVGLKATYLQRWDVGLNYVNFFGAPKAGLREDGNFSYGQSLADRDFVSLYVKTSFNANANANANA
D1-35_03370768calAConiferyl-alcohol dehydrogenaseATGAAACTCGACAACAAGATTGTACTGGTAACCGGCGTCTCGTCGGGCATCGGTGCCGCCACGGCGAGCCTGCTGCGTGCCCACGGCGCCGAGGTAATCGGCGTGGACCTCAAGGCGCCGCACCAGACCCTGGACGGTTTTGTACAGGGGGACCTGAGCAGCGCCGAGAACATCGACCGCCTGCTGCCGCAGCTACCCGCACGGTTCGATAGCCTGTGCAATATTGCCGGGGTGCCGGGCACCGCCAGTCCGCAACTGCTGGCGCGGGTCAACTATCTCGGATTGCGCCACTTCAGCCAGGCGTTGCTGCCACGCATCAACGCGGGCGGCAGCATCGTCAATATCGCCTCGATCCTTGGCGCCGAATGGCCGCTACGCGTAGAGCAGCACAAGGCGCTGGCGCGCAGCGAAGGGTTTGCCGCCGGGCAAGCCTGGCTGGCTGACCACCCGGTGCCGGACCAGACCTGCTACCAGTATTTCAAGGAAGCCTTGATCGTCTGGACCTACCTGCAGGCCCAACCCTGGTACCTGGAGCATTCGGTGCGCATGAACTGTGTCGCGCCGGGGCCGGTCTTCACGCCCATCCTCGACGACTTCGTGAGCATGCTCGGCGAGGCTCGGACCCAGGCCGATGCCCATCGCATGAAGCGTCCCGCCTACGCCGATGAGGTAGCGGCGGTGATCGCCTTCCTGTGTGCCGACGAGTCGCGCTGGATCAACGGCGTCAACCTGCCCGTCGATGGTGGATTGGCCTCCACCTACGTTTGAMKLDNKIVLVTGVSSGIGAATASLLRAHGAEVIGVDLKAPHQTLDGFVQGDLSSAENIDRLLPQLPARFDSLCNIAGVPGTASPQLLARVNYLGLRHFSQALLPRINAGGSIVNIASILGAEWPLRVEQHKALARSEGFAAGQAWLADHPVPDQTCYQYFKEALIVWTYLQAQPWYLEHSVRMNCVAPGPVFTPILDDFVSMLGEARTQADAHRMKRPAYADEVAAVIAFLCADESRWINGVNLPVDGGLASTYVNANANANANA
D1-35_033711473xylCBenzaldehyde dehydrogenase [NAD(+)]ATGTCTGCATCCGAAAACCACCTGCTAGCCCAGGTGATCGCGTCCGAATGTGTCTTCAACGGGAATTGGGTGCCTGCCTCGGGCCCGTTGCTGACTATCATCGAGCCGGCCACCGGTGAGGCGCTGATGCGCAGTGCTTCGGCCGATGCTGCCGATATCGCCAAGGCCAGTCGCGATGCGGCCCTGGCGCAACCGGCCTGGGCCGCCCTCGGTCCACGGGAACGGGCGGCAATCTTTCGCAAGGCGGCTGACGTCGCCGAACGCTCCTTCGCGGAACTGGCGCTGTACGTCGCACGGGAAACCGGCGCGGCATTGTTCAAGGGCCAACACGAGGTGCGCGAGGCGATCGTGCTGTTGCATCAGGCCGCCGGCATGCTGTCTCAGGCTCATGGCGTGGTGCTGCCCAGCGAGGCGGGGCGCCTGTCTTATGCGCGGCGCTTGCCCCATGGTGTGATCGGAGTGATCTCGCCGTTCAACTTCCCGCTGGTGTTGTCGATGCGCTCCGTGGCGCCGGCCCTGGCGGCGGGCAATGCGGTGGTGCTCAAGCCGGATCCGCAGACGCCGGTCAGTGGCGGTTTTCTGATCGCCCGTCTCTTCGAAGCCGCGGGCCTGCCCAAGGGCTTGTTGCAGGTATTGCCTGGTGCGGCCGACGCCGGGGAAGCGCTGTGCCGTGATCCCAACGTCAAGATGATCGCCTTCACCGGTTCCACCGGCGCCGGTCGCAAGGTGGCCGAAGTGGCCGGGCGCAACCTCAAGAAAGTCGCGCTGGAGCTGGGCGGCAAAAACCCCTTGATTGTCCTCGAAGACGCCGACCTGGACCTCGCGGCCCGCAATGCGGCCTGGGGCGCCTGGTTGCATCAGGGGCAGATCTGCATGGCCACCGGGTTGATCCTCGCCCATGAGTCGATTGCTCAGGCCCTCATTCAGAAACTGGTGGATAAAGCCCAGGCGTTGACGGTCGGCAACGCCGCCCGCGAGGAAGCCGCGCTCGGACCGTTGATCAACCAACGCCAGTTGCAGCGCGTGCACGACATCGTCAATGACAGCGTGCGCGCGGGGGCGAGGCTGGAAACCGGCGGTAACTACGACCGTTTGTTTTATCAACCGACCGTGCTCAGCGGCGTGAAGCCGGGCATGCGTGCCTTCGAGGATGAAGTCTTCGGTCCGGTGGCGAGCGTGGTCAGTTTTGCCAGCGACGAGGAAGCCATCGAGTTGGCCAATCGCAGCGAGTACGGCCTGTCGGCGGCGGTCATTTCACCCTCGGTGGGCCGGGCCATGGCGATTGGCGAGCGATTGCAGTGCGGCATGCTGCACATCAATGACCAGACTGTCGCCGACGAGTGCATCAACCCGTTCGGTGGGCGCGGCGCTTCGGGCAATGGCGGCAGCGTCGGCGGCCCGGCGGACTGGGACGAGTACACCCAGTGGCAGTGGGTCACGGTCAAGGACAAGGCGCCTGTCTATCCGTTCTGAMSASENHLLAQVIASECVFNGNWVPASGPLLTIIEPATGEALMRSASADAADIAKASRDAALAQPAWAALGPRERAAIFRKAADVAERSFAELALYVARETGAALFKGQHEVREAIVLLHQAAGMLSQAHGVVLPSEAGRLSYARRLPHGVIGVISPFNFPLVLSMRSVAPALAAGNAVVLKPDPQTPVSGGFLIARLFEAAGLPKGLLQVLPGAADAGEALCRDPNVKMIAFTGSTGAGRKVAEVAGRNLKKVALELGGKNPLIVLEDADLDLAARNAAWGAWLHQGQICMATGLILAHESIAQALIQKLVDKAQALTVGNAAREEAALGPLINQRQLQRVHDIVNDSVRAGARLETGGNYDRLFYQPTVLSGVKPGMRAFEDEVFGPVASVVSFASDEEAIELANRSEYGLSAAVISPSVGRAMAIGERLQCGMLHINDQTVADECINPFGGRGASGNGGSVGGPADWDEYTQWQWVTVKDKAPVYPFPGPT0005405_77DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_BENZALDEHYDE_DEGRADATION,PGPT0005405-xylC-K00141NANA
D1-35_033721773mopRPhenol regulator MopRATGAATAATCCCCACTGTCCGCTGCCGGAGCGGATCGCTGCCGAGCCTTTTCGTCCACGCGGCGATAGCAAGGAACTGAGCGACAGCAGCTCGCCAACCCCGGCAGAACTGACCAACTGCCTGTTTTTCTCCCCCGATGACGGGCGTATCTGGCTCAACGACCAACGCATGTTGTTGCTGCACAGTTCGTCCTTCGGCGCGTTGCGTCGGGAAATCATCGAGCGCCAGGGACTGGAGCAGGCCCGAGGCATGCTCACCCGCACCGGCTATTGCTCCGGCGCCCGGGACGCCCGGCTGATTCGTGAACGCTGGCCCCACGCCGACGCAGCCGCGGTGTTTCGCGCAGGCACGCACCTGCATACCCTCGAAGGCATGACCAAGGTCGAGCCGCTGCATTTCAAGTTCGATGCGGAATCGGGGTTCTACGAGGGGGAATTTCTCTGGCACCACTCCTGCGAAGCCGACGAACATATCGCCGCCTATGGCACCGGGCAGGATCCGGTGTGCTGGACCGAGCTGGGGTACGCGATCGGCTTCGTCAGCGGGTTGTTCGGGCAACTGGTGGTCTTTCGCGAAGTGGAATGCCGGGGCATGGGGCATGAACGCTGTCGTGTCGTCGGCAAGACCGCTGAGCAATGGGGCGATATCGAGCGCGACCTGAGCTACCTCAATGCCTCACAGCCGGCGGCGCCTTTGCCGTCCGGCGCCAGGCCCGACCCAATGGCAGCCAGTGATCCGCTGCCTGACAGCGAACAACCGCTGATTGGCGCCAGTGCGGCGTTCAACGCGGCGACGCTGGCTCTGCAACGGGTCGCCTTGACACCGGCCACCGTGCTGGTCACCGGCGAGTCTGGCGTGGGCAAGGAAATGTTCGCCCGTCAGTTGCACCAACTGAGCCGGCGCCGCCAGGGGCCGTTCATCGCCCTCAACTGCGCGGCGATACCGGACAACCTGATCGAAGCCGAGCTGTTCGGCGTAGAGCGCGGTGCCTATACCGGCGCCACCCATTCACGCCCCGGCCGTTTCGAGCGGGCCGATGGCGGTACGTTGTTCCTCGATGAAATCACCTGCCTGAGCCTGGCCGGCCAAGGCAAGCTTTTGCGCGCGTTGCAGGAGCGCGAAATCGAGCGGGTCGGTGGCGGCCATGCCATCAAGGTCGACGTGCGAGTGGTCGCGGCGACCAACCTCGATCTGCGCAAAGCCGTGGCGCAAGGCGAGTTTCGCGAAGACCTGTTCTACCGGCTCAACGTCTACCCCATCGCCCTCCCGCCCTTGCGCGATCGCCGCGATGACATACCGTTGCTGATCAATGCCTTTCTCAAGCGCTTCTGCCTGGAATACGGTCGTACACCGGTGGGCCTGACCATGCGCGCCTTGAAGATGCTGCTGCGCTACGACTTCCCAGGCAACGTGCGGGAACTGCAGAACCTCATCGAGCGCGGCTTGATTGCCAGTGAAGAAGGCCAGGCCATTGATCTGGTGCATCTGTTTCGCGACGAGCGATTGCCGGCGGATGCGTATTCGGTGGACGGCAATGGCGGGCTCACGTCATTGGCGCCGGCCGCGAGCGACGCCACGGCGAAGGCGCCGTTGTTGCCGTCCCTGAGCCAATGGGACGCGGACTTCTCCATCGATGGCCTGGAGTCGCGCCTGATCAACGAAGCCCTGCAACTGAACAGCGGCAACCTGGCGGCGGCAGCCAGGTCACTGGGCTTGAGCCGGGCGCAGTTTGCCTACCGGTTGAAGAAACATCAACGCGGTAATCCAGACTGAMNNPHCPLPERIAAEPFRPRGDSKELSDSSSPTPAELTNCLFFSPDDGRIWLNDQRMLLLHSSSFGALRREIIERQGLEQARGMLTRTGYCSGARDARLIRERWPHADAAAVFRAGTHLHTLEGMTKVEPLHFKFDAESGFYEGEFLWHHSCEADEHIAAYGTGQDPVCWTELGYAIGFVSGLFGQLVVFREVECRGMGHERCRVVGKTAEQWGDIERDLSYLNASQPAAPLPSGARPDPMAASDPLPDSEQPLIGASAAFNAATLALQRVALTPATVLVTGESGVGKEMFARQLHQLSRRRQGPFIALNCAAIPDNLIEAELFGVERGAYTGATHSRPGRFERADGGTLFLDEITCLSLAGQGKLLRALQEREIERVGGGHAIKVDVRVVAATNLDLRKAVAQGEFREDLFYRLNVYPIALPPLRDRRDDIPLLINAFLKRFCLEYGRTPVGLTMRALKMLLRYDFPGNVRELQNLIERGLIASEEGQAIDLVHLFRDERLPADAYSVDGNGGLTSLAPAASDATAKAPLLPSLSQWDADFSIDGLESRLINEALQLNSGNLAAAARSLGLSRAQFAYRLKKHQRGNPDPGPT0004315_43DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ZINK_RESISTANCEZINK_RESISTANCE-ZINK_HOMEOSTASIS,PGPT0004315-zraR|hydG-K07713NANA
D1-35_03373636hypothetical proteinATGTTGAGCATTGTCGAGCAGGCAGCCAGTGAAGCGTTGCGCCAGCGAATGGAGGCGGCCGGTTGCGCTTTCGAATTCCTGGCGCTTGCTCCCGAGGCGGATGTAATCGTCGATCAGTCGCTGCACCGCCAGGCCGTGGACCGACTGTTCCAGCACATCGAGGCACAATGGCTTGAACGAGATCGCCAACTGCGCCTTGATCCGCGCTATGCCGATATCGCCCCACCGAGCATGCACTGGGACCTGACCAAGGCCATTCCCAAGGCGCTGGGTCAGGATCAGGTCATTCGCCTCATGCGCGCGGGAAAGACTGAACGCAACCCGCAAGCCTATGCCTTGTACGACGCGTTTTGCGAGCCGCCCTACAGCACCCGCTTCAACAACGACACGCCCCAGGCGCTGTTCAAAGAGTGGCTCGATTTGCTGGGGCTTGTGCCGGATAGCGGCGTGGTGGTGCTGGACTGGGTCGACAACTTCAACTTCAACGGATTGGCCAGCGACGAGCCCGATCCCGCCCGGGATCCCTGGAGCGACTATTTCGATGATGGCCTGGAGTGGTGGGGGGTGTGGTGCCTGAGCATCTGGAATCCCGAGCGCCGGACCCTGGGTGTGCTGACGGCGAGCACGACGGATTAAMLSIVEQAASEALRQRMEAAGCAFEFLALAPEADVIVDQSLHRQAVDRLFQHIEAQWLERDRQLRLDPRYADIAPPSMHWDLTKAIPKALGQDQVIRLMRAGKTERNPQAYALYDAFCEPPYSTRFNNDTPQALFKEWLDLLGLVPDSGVVVLDWVDNFNFNGLASDEPDPARDPWSDYFDDGLEWWGVWCLSIWNPERRTLGVLTASTTDNANANANANA
D1-35_033741290rtcBCOG1690RNA-splicing ligase RtcBATGCCCAGTGTCGAAATTGAGCCGGCAATCAAGCGCGGCTCGTCATTGAACAGAACCGCGACCATGCACCAGAAAACCTACGAATTGCTGGAAGTCGCCAACGGCAAGCCCATCAAACTCTGGACCCAGGGCGTGCCGGTGGAGGCCGAAGCCCGCCAGCAACTGATGAACACGGCGAAAATGCCATTCATTTTCAAACACCTGGCAGTGATGCCCGATGTGCACCTGGGCAAGGGCTCGACCATCGGCAGTGTCATCCCCACCGTAGGCGCGATCATTCCGGCGGCGGTGGGGGTGGATATTGGTTGCGGCATGATCGCCGCGCGCACTTCGCTCGATGCCGCCGATTTGCCGGACAGCCTCCAGGCCCTGCGCAGCGCTATCGAAAAAGCCGTGCCCCATGGGCGCAGCCTCAGCCATGGCGGACGCGACAAGGGCGCCTGGAGCAATGTCCCACGCGAGGCTGACCAGGCGTGGGTCGCGCTGGCCGCGCGCTTCAAGGCGATTACCGACAAATACCCGAAGCTGGCCCGGACCAACAACCGTCAGCATCTGGGTACGCTGGGCAGCGGTAATCATTTCATTGAAGTGTGCCTGGATGAGGCCAACCGGGTCTGGTTCATGTTGCACAGCGGCTCCCGGGGTGTGGGCAATGCCATCGGCAATCTGTTCATCCAGTTGGCCCAGGCCGACATGCGCCAGCACCTCGCCAATCTGCCGGACCGTGACCTGGCCTACTTCGAGGAGGGCAGCCGGCATTTCGACGATTATGTCGAAGCGGTGGGCTGGGCCCAGGATTTCGCCCGGCAGAATCGGGCCTTGATGATGGACGCGGTGATACGCGCCGCCCGGCAGGTCATCGGCAAACCGTTCGAAGTGGCGCTGGAAGCGGTGAATTGTCATCACAACTATGTGCAGAAAGAGCGACACTTCGGACACGACGTACTGGTGACGCGCAAGGGCGCGGTGTCGGCCAGGAAAGGCGAGTTGGGTATCATCCCCGGTTCGATGGGCGCCAGGAGCTTTATCGTGCGCGGCCTGGGCAACGAGCAATCGTTTTGTTCGTGTAGCCACGGTGCCGGCCGGGTCATGAGCCGGACCGAGGCGAAAAGGCGTTTCAGCGTCGAGGATCAGGTCCGCGCGACCGCCCATGTGGAATGCCGGAAAGACGCTGCGGTGATTGATGAAATTCCGATGGCATACAAAGACATAGACAAGGTAATGCATGCACAACGTGAACTTGTGGAAGTGCTGCATACGCTGCGTCAGGTCGTGTGCGTGAAAGGTTAGMPSVEIEPAIKRGSSLNRTATMHQKTYELLEVANGKPIKLWTQGVPVEAEARQQLMNTAKMPFIFKHLAVMPDVHLGKGSTIGSVIPTVGAIIPAAVGVDIGCGMIAARTSLDAADLPDSLQALRSAIEKAVPHGRSLSHGGRDKGAWSNVPREADQAWVALAARFKAITDKYPKLARTNNRQHLGTLGSGNHFIEVCLDEANRVWFMLHSGSRGVGNAIGNLFIQLAQADMRQHLANLPDRDLAYFEEGSRHFDDYVEAVGWAQDFARQNRALMMDAVIRAARQVIGKPFEVALEAVNCHHNYVQKERHFGHDVLVTRKGAVSARKGELGIIPGSMGARSFIVRGLGNEQSFCSCSHGAGRVMSRTEAKRRFSVEDQVRATAHVECRKDAAVIDEIPMAYKDIDKVMHAQRELVEVLHTLRQVVCVKGNANANANANA
D1-35_03375852hypothetical proteinATGCGTGCGATTTTTTCCGTCATGCGTCTTGCCGCGCTGTCGCTGGGGCTGACGTTCGCCGTCAGTGCGGTAGCCACCGAAGAGACGAAACTGGTCGAGTCCATCAACCTCTACCGCAGCCAGTCCCAGAGCTGCGCCGGCCAGGCGTCCCTGGAGCTGCCGCCGCTGGCGATGGACTCGCGGTTGATCCTGTCGGCCAATGGCATCGGCGATCTGCAACAGGCGTTGGCCCGGGCGGCCTATCCGATGGTCAACGTGCAAGCGATCAGCCTGTCCGGGCCGCGCGACGCGCAAGCGGCGATGAAGGCCGTGCAGGAAAGTTTCTGCCAGGTCGTGCTGGACCCGCAGTTCATCGACGTCGGTGTCAGCCGACTGGACCGCGAATGGCGCATCGTGCTGGCTCGCCCGCTGTTGTCGGCACGACTGGGCGATTGGCAAGCCGAAGGCCAGAAACTGCTCAAACTCATCAACAGCGCCCGCGCGCAACCGCGCCGCTGCGGCACCGAGGCCTACAGCGCGACCACTCCGCTGGCCTGGAACGCCACCCTGGCCCTGGCGGCGGTGAATCACACGCGCGCCATGGCCAACAACAACTTCTTCGACCACAAGGACCGCGATGGCCGCACGCCCGGCGACCGCGCCGAACTGGCCGGCTATCTGGGCCAGGCCATCGGCGAAAACATCGCCGCTGGGCAAGACACGGCTTTGAAAGTGGTGGACGGCTGGTTGGCCAGCCCCGGGCATTGCGCCAACCTGATGAACCCGCAGTTTCGCGAACTGGGAGCCGGGTATGCGGTGGACCCGAAAAGTGATGCGGGGATCTACTGGACGGCGATGTTCGGTATTCAATGAMRAIFSVMRLAALSLGLTFAVSAVATEETKLVESINLYRSQSQSCAGQASLELPPLAMDSRLILSANGIGDLQQALARAAYPMVNVQAISLSGPRDAQAAMKAVQESFCQVVLDPQFIDVGVSRLDREWRIVLARPLLSARLGDWQAEGQKLLKLINSARAQPRRCGTEAYSATTPLAWNATLALAAVNHTRAMANNNFFDHKDRDGRTPGDRAELAGYLGQAIGENIAAGQDTALKVVDGWLASPGHCANLMNPQFRELGAGYAVDPKSDAGIYWTAMFGIQNANANANANA
D1-35_03376891cynR_3HTH-type transcriptional regulator CynRATGAACGTTTCTTTCCGACAGCTTCGAGCCTTCATCCTCATCGCCGAGACTTCAAGCTTCACCCGCACCGCGGAACAGTTGCATCTGTCGCAACCGGCGCTGAGCTACAGCATCCGCAAACTGGAAGAGAGCATGGGGTTGCAGTTGCTTGCGCGTAATACCCGCAGCGTCGAGTTGACGCCAGCCGGCGAGCATTTCCTGCCCCAGGCCAGGCGCATGCTGCGGGACATGGACGATGCCGTGCGCGATGCTCGCGACACCTTGAGCCTGAGTCGCGGCACGCTTCGGCTCGCGGCGTTGCCCACGGCTGCCGCGTCGTTTCTGCCGATCGCCATGGCTGCTTTCCAGCGTGAAAACCCCGGTGTGACGGTGAGCCTGCTGGATGGCCGCGCCGGAGAGATCCTCGGCTGGGTACAGCGCGGCGAGGTAGACGCCGGCATCAGTTCGCTGCCTGACGACCTGGCTGGACTGAGCTTCGAGCGCCTGCTGGATGACAATCTGGTACTGCTGAGCCACAAGCCCTCGCAGGGTGGCGGCCAGGATGAGTGGACGCAGCAGCCCTACATTGCCCTGACGCCTGACACGAGCATCCGGCCTTTGGCTGACGCGGCGCTGCGCTATTTGAACGTGGATGCAGTCCCAGCCTGGGAGGTGGCGCATATGAGCACGGCCACGGCGCTGGTACGGGAGGGGCTGGGATTTTCTTTATTGCCGGCCAGTTGCACGGCGGTGTTCAACATCGGCGAACAGTGCGCTGTAACCCCAATCGATCAGCCGGCCAAGCGTTCGATCGGGCTGTTGCAGCGCAAGCCGGTGGCACAATCGCCGTCGTTGAGCCAGTTCATGGGACATGTGCGGCGGGTTTTGCGGGGGGGTGAGGCGGGCGCTTGAMNVSFRQLRAFILIAETSSFTRTAEQLHLSQPALSYSIRKLEESMGLQLLARNTRSVELTPAGEHFLPQARRMLRDMDDAVRDARDTLSLSRGTLRLAALPTAAASFLPIAMAAFQRENPGVTVSLLDGRAGEILGWVQRGEVDAGISSLPDDLAGLSFERLLDDNLVLLSHKPSQGGGQDEWTQQPYIALTPDTSIRPLADAALRYLNVDAVPAWEVAHMSTATALVREGLGFSLLPASCTAVFNIGEQCAVTPIDQPAKRSIGLLQRKPVAQSPSLSQFMGHVRRVLRGGEAGAPGPT0021950_568DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARNITHINE_USAGEPLANT_DERIVED_CARNITHINE_DEGRADATION,PGPT0021950-dhcR-K17737NANA
D1-35_033771350hypothetical proteinATGACAAAAACAATTCTCGTCGGGTGTGGCGCAGGTTTTGCCAATGATCGGCCCGACGCCGCGCTACGCCTGGCCCAGGACATGGCGCAACGCAGCGGCCAGCGCTACATAATGCTGGAGCTGCTGGCTGAACGGACCCTCGCCGAGGCGCAATTGCGCAAGCGCCTCGATCCACGGTCGGGCTACTCCGCGCGCCTGTTCGACTTCCTCGAACCCATGCTGGACATTTGCATCGAAGCCGGCATTGCGATCATCACCAACGGCGGCGCAGCCAACCCCAGGGCCGCCGCGCAACGGTTGCGCGACGAATTGGCCGGCCGTTTCCCGGCGCTGAAAATCGCCTGCGTACTGGGCGACGACCTGCTCGAAGAAACGCCTCCGCGCTATGAACGATGGCTGTCGTCGAGTGCCGATGAACAGCCTGTTTCGGTGAACGTCTACACCGGGGCCGACGGCATCGTCCAGGCACTGGCCGAGGGCGCTGGCATCGTGCTGTGTGGCCGGGTTGCGGATCCGTCCCTGGCGGTAGGCGCGATCCGCCATGGGTTGGGTTGGAAGGCCGACGATTGGCAAAAAATGGCCGTCGCGACCGCCGCCGGACACCTGCTGGAATGCTGCGCCCAGGTCACTGGCGGCTATTTCGCCCATCCCGGAATGAAGGACATCCCGGATCCGGCCAACCTCGGCTGCCCGATCGCCGAAATTCACCAGGACGGCCGCTTGATCATCGGCAAGACGCGCAACAGCGGCGGACGAGTCAGCGAGCAGACCGTCAAGGAGCAATTGCTTTACGAAGTCCATGACCCGCGACGTTATCTGACGCCGGACGTCGTGCTGGATCTGGGCGCGGCCCACGTACAGGACCTGGGGAACGACCGGGTGGAAGTCACTGGCGTGATCGGCCATCCGCGCCCCGACACCCTCAAGGGCCTGGCGGGTATGCGCGGACTCTGGTTCGGCGAGGCCGAGATTTCCTATGCAGGCCCCGGTGCCGTGGCGCGTGCCGCCCTGGCGCGCGACATCCTGCTGCAGCGTTTCGATCGTCTGGCGCCAGGTGTACAGCCCTGGATCGACCTGTCGGGAGTCGCCAGCCTGTTCAACGACCAGGGTGGCCGTTATCTGCAAAAACACCTGGTCCAGGCGCCTTTGCTGGAGGACGTGCGGGTGCGTATCGGCCTGACCCATACCGACCGATCGCTGCTCGAAACCCTCCTGGCAGAAGTCGAGTCGCTCTACACCAACGGACCGGCTGGCGGCGGTGGCGTCCGGCGCCACCTCGCAGAAGCCGTTACCACCCGCAGCTTCCTGCTGCCGCGTGATGAAATCCATACAGCCCTGGAGTGGTACTGAMTKTILVGCGAGFANDRPDAALRLAQDMAQRSGQRYIMLELLAERTLAEAQLRKRLDPRSGYSARLFDFLEPMLDICIEAGIAIITNGGAANPRAAAQRLRDELAGRFPALKIACVLGDDLLEETPPRYERWLSSSADEQPVSVNVYTGADGIVQALAEGAGIVLCGRVADPSLAVGAIRHGLGWKADDWQKMAVATAAGHLLECCAQVTGGYFAHPGMKDIPDPANLGCPIAEIHQDGRLIIGKTRNSGGRVSEQTVKEQLLYEVHDPRRYLTPDVVLDLGAAHVQDLGNDRVEVTGVIGHPRPDTLKGLAGMRGLWFGEAEISYAGPGAVARAALARDILLQRFDRLAPGVQPWIDLSGVASLFNDQGGRYLQKHLVQAPLLEDVRVRIGLTHTDRSLLETLLAEVESLYTNGPAGGGGVRRHLAEAVTTRSFLLPRDEIHTALEWYNANANANANA
D1-35_03378324hypothetical proteinATGAGCCTGGTCACCCTAGCCGACTTCGCCCACGCCCGTGCCGGCGACAAAGGCAATATCCTCAGCATCGCGGTATTTCCCCACGACCCGGCCCATTATCCCTGGCTGCTTCGGGTGCTGAGCTGCGAGCGCGTCGCCGAGCAGTTCGCGACGCGCCAGCCCTCCAGGGTGCATCGCTATGAACTGCCGAACCTGAAGGCGTTGAACTTCGTGCTCGAGGACGCCCTGGAAGGCGGCGTGAATCGAAGCTGCGGTCTCGACCGCCATGGAAAAAGCCTGAGCTACCTGCTCCTGGCCTTGCGCCTGCCGGGACCGGAAGACTGAMSLVTLADFAHARAGDKGNILSIAVFPHDPAHYPWLLRVLSCERVAEQFATRQPSRVHRYELPNLKALNFVLEDALEGGVNRSCGLDRHGKSLSYLLLALRLPGPEDNANANANANA
D1-35_033791308citN_3COG2851Citrate transporterATGATTACAACCCTGGGTTTCCTGATGATGCTTGCCATTATCGGGCTGATATTGCTGCGCCGGATCAGTCCGGTGGTGGCGTTCACCACCCTTCCCGTGGTCGTCTGCCTGCTCGCCGGCTTCAATCTCGCGCAGATCGGCGAGTTCATCAAGGCCGGCCTGGTCACCGTCGCGCCGACCGCCGCGCTGTTTCTGTTTGCCATCCTGTTCTTCGGCATCATGCGCGACCGTGGCTTGTTCGATCCGCTGGTCAACCTGTTGATCCGCAGCACGGGCGGCAAGCCCCTGGCGGTGGCGCTGGTTACCGTTCTGGTGACTTCAGTGGTGCATCTGGATGGCGTCGGCGCCGCGACGTTCCTGTTGACGATCCCGGCACTGCTGCCCTTGTACAAGCGCCTGAACATGAGCCCGACGATGCTGTTGTGCCTGGTGGGGACCACGGCCGGGGTCATCAACATGGTGCCCTGGGGCGGGACGACTGCGCGGGCCGCTGCCGTGTCGGGGCTCGATGCCACCGAGCTGTGGCTGGGGTTGCTGCCGGTGCAGATGGTGGGCCTGGTGTGCATGCTCGGGGTGGCGACGATACTGGGGTCGCGCGCCCAGCGGCGCCAACCGATGTCGCTGGGTGCGGCCGCGACGCGTGACATGGACGACCTGCAAATGCAAAGCCGCGAATTCAGTCTCTCTCCCCGGCAGCTGCGCTACTGGCTGAATGTGGCCCTGACCGGCGGCATTCTGCTGTGCCTGTTCACCGGTATCTTTCCGCTGTACGCCTGTTTCATGGTCGGATTGGGCATCGCCCTGCCCTTGAACTTCCCATCCCTCGACGCCCAGGCCGAACGCCTCAAGGCCCATGCGTCCGATGCGTTACAGATGGTTCTGGTGATGATGGCCGCCGCCGTGCTGCTGGGCGTGCTCTCCGGAGCGAAGATGTCAGACGGCATGGCCTTGGCGCTGATCGACATCCTGCCCGCCGGTGCTGCCCAATACCTGCATGTGATTGTCGGGTTCTTCGGCGTCCCCCTTGGAATGATCTTCTCGCCGGACGCCTACTATTTCGCCCTGCTGCCGGTGATCAAGGACGTCGCCATCGCCGCTGGCGTTCCTCTCGAAGCGGTGGCCCGGGCCATGCTGATCGGTGAGAACACCGGCTTCTCCATCAGCCCGGTGGTACCCAGCGTGTATCTGGCCCTGGCACTGTCCGGCGTAGAGTTGCGCAAGCACATGGCCTATACGTTTTTCTGGGCCTGGGGCGTCAGCCTGGTAATGCTCGCCTTTGCCGTGGCAACCGGGGCTGTACAAGTCTGAMITTLGFLMMLAIIGLILLRRISPVVAFTTLPVVVCLLAGFNLAQIGEFIKAGLVTVAPTAALFLFAILFFGIMRDRGLFDPLVNLLIRSTGGKPLAVALVTVLVTSVVHLDGVGAATFLLTIPALLPLYKRLNMSPTMLLCLVGTTAGVINMVPWGGTTARAAAVSGLDATELWLGLLPVQMVGLVCMLGVATILGSRAQRRQPMSLGAAATRDMDDLQMQSREFSLSPRQLRYWLNVALTGGILLCLFTGIFPLYACFMVGLGIALPLNFPSLDAQAERLKAHASDALQMVLVMMAAAVLLGVLSGAKMSDGMALALIDILPAGAAQYLHVIVGFFGVPLGMIFSPDAYYFALLPVIKDVAIAAGVPLEAVARAMLIGENTGFSISPVVPSVYLALALSGVELRKHMAYTFFWAWGVSLVMLAFAVATGAVQVPGPT0001500_720DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_CITRATE_TRANSPORT,PGPT0001500-TC_CITMHS|CitMHS_family|citN-K03300NANA
D1-35_03380900hypothetical proteinATGGAATACGACGTCATCATTACAGGCGGCAGCTATGCCGGTATGTCCGCGGGTTTGCAACTGGCCCGCGCCCGGCGCAAGGTGCTGGTGATCGACGCGGGCGAGCGTCGCAACCGCTTCGCCGCGACATCCCATGGTTTTCTCGGGCAGGACGGTCGTGCCCCAGGCGATATAGCCGGCGACGCCCATGTTCAGCTCATGGCGTACCCGACGGTTGAATGGGTTCGCGACACCGCGACCCAAGCCAGCAGGGATGCCGAAGCTTTTATTGTCGAGACCGCAAACGGCCTGCGTTACCGTTCTCGCCGGCTGTTGCTGGCCACAGGCGTGATTGATGACTTGCCCGACGTGCACGGGCTGACTGAGCGCTGGGGCAAAAGCGTTTTCCATTGCCCGTATTGCCACGGCTACGAGTTGAACCAAGGGCCGATCGGCGTTCTCGCAACCTCGCCGATGTCACTGCACCACGCCCAGATGCTGCCCGACTGGGGGCCGACGACGTTCTTCACCAATGGCGTGCTGGCGCTTGATCCGGAGCAACAAGCGAGCCTCGATCAGCGTGGCGTCACCGTGGTGACCGAGCGAGTGGCGCGTATCGAAGGCGAGCGGGCCGACGTGGTACTGGCCAACGGTCGGGTGGTCGCCATCGACGGCCTGTTCGTCTTGCCGCGTACGCGGGTTGCCAGTCCACTCGCGGCAGCCCTGGGCTGCGCGTTTGAAGAGGGTCCGCTTGGCGCGTTCATCCAAAGCGACGCGATGACCCGGGAATCCAGCGTGCCGGGCATATTTGCCTGCGGCGATGCGGCCATGCCGTTCGGCTCGGTCGCGCTGGCCGTTGGCGATGGGGTGAGGGCGGGCTCCGGGGTGCATCGGTCGCTGATCTTCCAAGCCCACCCTTGAMEYDVIITGGSYAGMSAGLQLARARRKVLVIDAGERRNRFAATSHGFLGQDGRAPGDIAGDAHVQLMAYPTVEWVRDTATQASRDAEAFIVETANGLRYRSRRLLLATGVIDDLPDVHGLTERWGKSVFHCPYCHGYELNQGPIGVLATSPMSLHHAQMLPDWGPTTFFTNGVLALDPEQQASLDQRGVTVVTERVARIEGERADVVLANGRVVAIDGLFVLPRTRVASPLAAALGCAFEEGPLGAFIQSDAMTRESSVPGIFACGDAAMPFGSVALAVGDGVRAGSGVHRSLIFQAHPNANANANANA
D1-35_03381468ywnACOG1959Putative HTH-type transcriptional regulator YwnAATGGAATCTGTCAGTCCGATGAGAAACGACACACGCCTGTCCCGCATGCTCCATGTATTGATCCACATGGACCGCCACCAGCAATCCGCCACCTCCGACACCCTCGCGCAGATGCTCGGCACCAACCCGGTGGTCGTGCGCCGGACCATGGCATTGCTCAAGGAACAGGGTTACGTCACATCGGAAAAGGGCCATCGCGGGGGTTGGGCCCTGGCCAAGCCGCTCTCGGAGATGACGCTGCTGGATATTCATCAAGCGTTGGGCAGCACATCGATCTTTGCGCTTGGCCTGTCGACCGACCACCCGCAATGCCTGGTGGAACAAGCGGTGAACGCGGCGCTGACGGACGCCTTCGACGAGGCCCAGGCGTTGCTGCTCAAGCGTCTGGGCAGCATAACCCTGGCGCAGTTGGCCGAGGATTTTGATGCGCGGTTTCGGGGCGCCCACGAGGTCGAGCCTCACCACTGAMESVSPMRNDTRLSRMLHVLIHMDRHQQSATSDTLAQMLGTNPVVVRRTMALLKEQGYVTSEKGHRGGWALAKPLSEMTLLDIHQALGSTSIFALGLSTDHPQCLVEQAVNAALTDAFDEAQALLLKRLGSITLAQLAEDFDARFRGAHEVEPHHNANANANANA
D1-35_033821644mqo_1COG0579Malate:quinone oxidoreductaseATGTTGAAGAAAACACATACGGCGCTGCTGGGCCTGGCGATGGCGATGGGTCTTGCGACCACGCACGCCGCCGAGCCGAAAAAAGTGGATGTCTTGCTCATTGGCGGCGGCATCATGAGTTCGACCCTCGGCGTCTGGCTCAATGAGCTGGAGCCGGGCTGGACCATGGAAATGGTCGAGCGCCTGGACGGTGTTGCCGAAGAGAGCTCCAATGGCTGGAACAACGCCGGTACCGGGCACTCCGCCCTGGCCGAGTTGAACTACACGCCGGAAGACAAGAACGGCAAGGTCGACATCTCCAAGGCTATCGAAATCAACGAAGCCTTCCAGATTTCCCGTCAGTTCTGGTCCTGGCAGGTCAAGAACGGCGTGCTGAAGAACCCGCGCTCGTTCATCAACTCCACCCCGCACATGAGTTTCCTGTGGGGTGACGAGAACATCGCATTCCTGAAGAAGCGCTACGACGCTCTCCAGGCCAGCCCGCTGTTCGCCGGCATGCAGTATTCCGAAGACCCTGCGCAGATCAGCAAGTGGGTTCCGCTGATGATGCAAGGGCGTGACCCGAGCCAGAAAGTCGCGGCCACCTGGAGCCCGCTGGGTACTGACGTGAACTTCGGCGAAATCACCCGCCAGTTCGCTGCTCACCTGCAAACCAGGCCGAACTTCTCGCTCAAGCTGTCCAGCGAAGTGGAAAACATCACTCGCAACGAGGATGGCTCCTGGCGCGTTTCGTACAAGAACCTGAAAGACGGTACCGAAACCGAGACCGACGCCAAGTTCGTGTTCATCGGTGCCGGTGGCGGCGCGCTGCACCTGCTGCAGATGTCGGACATTCCGGAAGCTCGTGAATACGCCGGTTTCCCAGTGGGCGGTTCGTTCCTGGTAACCGAAAACCCGACCGTCGCCCAGATGCACCTGGCCAAGGCGTACGGCAAGGCTTCGGTTGGCGCGCCACCGATGTCGGTTCCGCACCTGGACACCCGCGTACTCGACGGCAAGCGCGTGATCCTGTTTGGCCCATTCGCCACGTTCTCCACCAAGTTCCTGAAGAACGGTTCGTACTTCGACCTGCTGACCAGCACCACGACCCACAACGTGTGGCCGATGACCAAGGTCGGTATCGAACAGTACCCACTGGTTGAATACCTTGCCGGCCAACTGATGCTGTCGGATGAGGACCGCTTCAACGCGCTGAAGGAATACTTCCCGGACGCCAAGCAGGAAGACTGGCGCCTGTGGCAAGCCGGCCAGCGCGTGCAGATCATCAAGCGTGACGAAGAGAAGGGCGGCGTGCTGAAACTCGGTACCGAAGTCGTCGCTTCCCAGGACGGCAGCATCGCCGGTCTGCTGGGTGCCTCGCCAGGCGCCTCGACCGCTGCACCGATCATGCTGAGCGTGCTTGAGAAGGTCTTCAAGGACAAGGTAGCCACCCCGGCCTGGCAGGAAAAACTGCGTCAGATCGTACCGAGCTACGGCACCAAGCTGAACGACAATCCTGAGCGCGTCGCACAGGAATGGGCCTACACCAGCGAAGTCCTGCAACTGGACCCGCCACCGGCTGTCGGCAAGCCAGGCACCGCGGTAGCACCGGCCCAACCGGCTGCTCCTCGCGAGGCCAACCCAGCGGCCGACATGGCGCTGTAAMLKKTHTALLGLAMAMGLATTHAAEPKKVDVLLIGGGIMSSTLGVWLNELEPGWTMEMVERLDGVAEESSNGWNNAGTGHSALAELNYTPEDKNGKVDISKAIEINEAFQISRQFWSWQVKNGVLKNPRSFINSTPHMSFLWGDENIAFLKKRYDALQASPLFAGMQYSEDPAQISKWVPLMMQGRDPSQKVAATWSPLGTDVNFGEITRQFAAHLQTRPNFSLKLSSEVENITRNEDGSWRVSYKNLKDGTETETDAKFVFIGAGGGALHLLQMSDIPEAREYAGFPVGGSFLVTENPTVAQMHLAKAYGKASVGAPPMSVPHLDTRVLDGKRVILFGPFATFSTKFLKNGSYFDLLTSTTTHNVWPMTKVGIEQYPLVEYLAGQLMLSDEDRFNALKEYFPDAKQEDWRLWQAGQRVQIIKRDEEKGGVLKLGTEVVASQDGSIAGLLGASPGASTAAPIMLSVLEKVFKDKVATPAWQEKLRQIVPSYGTKLNDNPERVAQEWAYTSEVLQLDPPPAVGKPGTAVAPAQPAAPREANPAADMALPGPT0001440_355DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001440-mqo-K00116NANA
D1-35_033831278hypothetical proteinATGTTATCCCCTTTCTTTTGGCAGGAATTCTCATTCCTGATCCTGCAAAGCCCCCGACTCCTGAGTATCGCCATGAGCCTATCCCCAAGCGCGACAAGCCCGTCCGCTGTCATCGCTCCAACCCTCGCTTCCAGTACCGCAACAACCGCGACGCGCCTGCTCGCCATCGATGCCTTGCGGGGTTTTGTCATGTTGCTGATGCTGGTCGACCATGTCCGCGAAACGTTCCTGCTGCACCGCCAGGTCACTGACCCGATCGATGCATTGAGCGTGACCCCGGACCTGTTTTTCACTCGTTTGCTCAGCACGCTCTGTGCGCCAGTGTTCATCTTCCTTACCGGTTTGTCGGCCTGGCTCTACAGCCAGAAACACACCGCCAGCGAGACTTCGGTGTTCCTGCTCAAGCGTGGTCTGTTCCTGGTGTTCCTGGAGCTCACGTTCGTCTGTTTCGCCTGGAACGCCGAGTTTCCGCCGAAGACTTTGTGGCTGCAGGTCATCTGGTGCATCGGCATCTGCATGATCGCCCTGGCGGCGTTGCTGCACTTCAAACGCAGCTGGCTGATCGTGCTGGGCGCTGCCATCGTTGCCGGGCATAACCTGTTGGACGGTGTGGTGCTGGGGCCGGACTCGCCGTTTTTCGTGCCCTGGTCGATTCTTCATCAGCGGTCGTTCATCGAGATCACCGAGTTCACCCGGGCACGCACCACCTACCCGGTGTTGCCATGGATCGGCGTGATCCTTCTGGGTTGGGCGATCGGGCCATGGTTCGGCAAGGACATCGAAGCGCCCACGCGAGTGCGGCGCCTGCTCAAGGTCGGCATCGGCCTGCTGGTGGCGTTCGTGTTTATCCGTTATCTCAACGTCTACGGTGACAAACCCTGGGTCCAGACCGGGGATGCACTGCGCACCTTCATGAGTTTCATGAGCGCGACGAAGTACCCGCCGTCGCTGATGTTCCTGATGCCGACGCTGGCGGTGGGCCTGATCCTGCTGGCGCTTTTCGAAAAAGCTCAGGCGAAGGGCAGCATCGCGATTCTGGCCATCTATGGCGGCGCGCCGATGTTTTTCTACCTGCTGCACCTGTACGTGCTGAAGGCCATGTACCTGCTGGCGGTGTTTATCTGGGGCACCAATCAGGGCGCTTATTTTGGCTTCGAGCACTTGCCGATGGTCTGGTTGTGGAGCGTGTTGTTGAGTGTCGTCCTGTTTTTTCCAACGCGTTGGTACGCAGCGTTGAAACAACGTCGGCGTGACATCGCGATCCTCAAGTACCTCTGAMLSPFFWQEFSFLILQSPRLLSIAMSLSPSATSPSAVIAPTLASSTATTATRLLAIDALRGFVMLLMLVDHVRETFLLHRQVTDPIDALSVTPDLFFTRLLSTLCAPVFIFLTGLSAWLYSQKHTASETSVFLLKRGLFLVFLELTFVCFAWNAEFPPKTLWLQVIWCIGICMIALAALLHFKRSWLIVLGAAIVAGHNLLDGVVLGPDSPFFVPWSILHQRSFIEITEFTRARTTYPVLPWIGVILLGWAIGPWFGKDIEAPTRVRRLLKVGIGLLVAFVFIRYLNVYGDKPWVQTGDALRTFMSFMSATKYPPSLMFLMPTLAVGLILLALFEKAQAKGSIAILAIYGGAPMFFYLLHLYVLKAMYLLAVFIWGTNQGAYFGFEHLPMVWLWSVLLSVVLFFPTRWYAALKQRRRDIAILKYLNANANANANA
D1-35_033841371luxQAutoinducer 2 sensor kinase/phosphatase LuxQATGGCGAAGCCCTCTGACGAACAGCAAAAGGCCCTCGCCGGGCTGCTGGGATTGGGCAATCATTCGACGCGCAAGAGCCATTACCCGGAGCTGGCGGCGCGTCTCGCCGAACTGGAACAGGCCCGCCAGCATCTGCAGCAACTCAACGACCAACTGGAGCAACGGGTGGCGGAGCGCACCGATGCGTTGCTGGAGGCCAACCACAACCTGCAACAGCAGATCGCCCAGCGCGAGTTGGTCGAGCAACAGCTGCGCGATGCCCGGGACGCCGCCCAGGCCGCGAACCGCAGCAAGGACAAATACCTGGCCGCCGCCAGCCACGATCTGCTGCAACCGCTCAACGCCGCGCGGTTGCTGATTGCCACATTGCGTGAACGCCAGATGCCAGCCGCCGAGCATCTACTGGTGGAACGCACGCACCAAGCGCTCGAAGGCGCCGAGGACCTGCTCACCGACCTGCTGGATATTTCCCGGCTCGACCAGGCCGCCGTCAAACCCGACCCGGCGTCGTATCGGCTGGATGAGCTGCTCGCGCCGTTGGTGTCGGAATTCCAATCGGTGGCCGGCGCCGCGGGCCTGGAATTGCGCGTGCGATTCGCCGATGAAGCGGTGCTGACCGACCTGCGGTTGATGACCCGCATCCTGCGCAATCTGCTGAGCAACGCCTGTCGCTACACCGACCAGGGCGGCATCCTCCTGGCGGCGCGGCGCCGGGGAGGGCGCTTGAGCCTGGAGGTCTGGGACACGGGCAGAGGCATTGCCGCCGATTGTCTGGAATCGATTTTCCTCGAGTTCAACCAACTGGATGTCGGCCGCGCGGCGGACCGCAAGGGCGTCGGCCTGGGGCTGGCGATCGTCGAGCGTATCGCTCATATCCTCGGCTACCGGGTGCGGGTGCGTTCGCGGCCGGGACGCGGCTCGGTGTTCAGCATCGAGGTGCCATTGTCTGCCGAAAAGCCACTGCCCCTGACCCACGCGCCTGCTCAGGCCGTCGCCGGAAACCCGTTGCCTGGGCGCCGGTTACTGGTCATCGACAATGAGCTGAGCATTTTGCAGAGCATGGCGGCACTGCTCGGGCAGTGGGGGTGCGAAGTGCTGACCGCCACCGACGAAGCGGGCGCCTTCGATGTGCTGCAAGGCCGCGCACCGGAGCTGATCCTGGCGGATTTTCACCTCGACCATGGGGTGGTCGGCTGCGAGGTGGTCAAGCACCTGCGCGAACATTTCCAGCAAGCGATCCCCGCTGTGATCATCACCGCCGACCGCAGCGACCAGTGCCGCCGTGCCTTGCGCAAGCTGAATGCGCCGCTGCTAAACAAACCGGTAAAGCCGGGCAAGTTGCGGGCGGTGTTGAGCCAGTTGCTGGGGTAGMAKPSDEQQKALAGLLGLGNHSTRKSHYPELAARLAELEQARQHLQQLNDQLEQRVAERTDALLEANHNLQQQIAQRELVEQQLRDARDAAQAANRSKDKYLAAASHDLLQPLNAARLLIATLRERQMPAAEHLLVERTHQALEGAEDLLTDLLDISRLDQAAVKPDPASYRLDELLAPLVSEFQSVAGAAGLELRVRFADEAVLTDLRLMTRILRNLLSNACRYTDQGGILLAARRRGGRLSLEVWDTGRGIAADCLESIFLEFNQLDVGRAADRKGVGLGLAIVERIAHILGYRVRVRSRPGRGSVFSIEVPLSAEKPLPLTHAPAQAVAGNPLPGRRLLVIDNELSILQSMAALLGQWGCEVLTATDEAGAFDVLQGRAPELILADFHLDHGVVGCEVVKHLREHFQQAIPAVIITADRSDQCRRALRKLNAPLLNKPVKPGKLRAVLSQLLGPGPT0025850_595DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QUORUM_SENSING_REGULATORSCE-QSR-QUORUM_SENSING_REGULATED_FLS,PGPT0025850-PA1979-K20975NANA
D1-35_033851176dhaTCOG14541,3-propanediol dehydrogenaseATGAGCCCCCCTGAAAAAATGAGCCTCAGCCCGCTGCGCAAGTTCGTTTCTCCTGAAATCATGTTCGGTGCCGGCTGCCGGCACAATGTCGGCAACTACGCCAAGACCTTCGGCGCCCGCAAGGTGCTGGTGGTCACTGACCCCGGGGTCATCGCCGCCGGTTGGGTCGGTGATGTCGAAGCCAGCCTGCAAGCCCTGGGCATCGATTACTGCATCTACAGCGACGTTTCGCCCAACCCGCGGGTCGAGGAAGTCATGCTCGGCGCCGAGACGTACCGTGAAAACCACTGTGACGTGATCGTCGCGGTAGGTGGTGGCAGCCCGATGGACTGCGGCAAGGCGATCGGCATCGTCGTCGCCCACGGTCGCAGCATCCTCGAATTCGAAGGCGTCGACACCCTGCAGGTACCCAGCCCGCCGCTGATCCTGATCCCGACCACGGCCGGTACCTCGGCCGATGTGTCGCAGTTCGTGATCATCTCGAACCAGCAGGAGCGCATGAAGTTTTCCATCGTCAGCAAGGCGGCGGTGCCGGATGTGTCGTTGATCGATCCGGAGACGACCTTGAGCATGGACCCGTTCCTCTCGGCCTGTACCGGTATCGACGCGCTGGTGCATGCCATCGAGGCGTTCGTCTCCACCGGCCACGGGCCGTTGACCGATCCTCATGCGCTGGAGGCGATGCGCCTGATCAACACCCACCTGGTACAGATGATCGCCAACCCGGCCGACGTCGCCCTGCGCGAGAAAATCATGCTCGGCAGCATGCAGGCCGGGCTGGCGTTTTCCAACGCGATCCTCGGCGCGGTGCACGCCATGTCCCACAGCCTCGGTGGCTTCCTCGACCTGCCCCATGGCTTGTGCAACGCGGTGCTGGTGGAGCATGTGGTGGCGTTCAACTACAACTCGGCGCCGGAGCGTTTCAAGGTGATTGCCGAAACCCTGGGCATCGATTGTCGCGGGCTCAACCATCGACAGATCCGCACGCGGCTGGTGGAACACCTGATTGCCCTCAAGCACACCATCGGTTTCCACGAAACCCTCGGCTTGCATGGGGTGAGTACCTCGGATATCCCGTTCCTGTCGCAACACGCCATGCATGACCCGTGCATCCTTACCAATCCACGCGAGTCGAGCCAGCGGGATGTCGAGGTCGTCTATGGCGAAGCCCTCTGAMSPPEKMSLSPLRKFVSPEIMFGAGCRHNVGNYAKTFGARKVLVVTDPGVIAAGWVGDVEASLQALGIDYCIYSDVSPNPRVEEVMLGAETYRENHCDVIVAVGGGSPMDCGKAIGIVVAHGRSILEFEGVDTLQVPSPPLILIPTTAGTSADVSQFVIISNQQERMKFSIVSKAAVPDVSLIDPETTLSMDPFLSACTGIDALVHAIEAFVSTGHGPLTDPHALEAMRLINTHLVQMIANPADVALREKIMLGSMQAGLAFSNAILGAVHAMSHSLGGFLDLPHGLCNAVLVEHVVAFNYNSAPERFKVIAETLGIDCRGLNHRQIRTRLVEHLIALKHTIGFHETLGLHGVSTSDIPFLSQHAMHDPCILTNPRESSQRDVEVVYGEALPGPT0006370_246DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006370-yiaY-K13954NANA
D1-35_033861521adh_1COG1012Aldehyde dehydrogenaseATGATTTACGCACAACCCGGAACCCCAGGCGCCGTCGTTTCCTTCAAGCCGCGCTATGGCAATTTCATCGGCGGCGAATTCGTTCCGCCGGTCCACGCTGAGTACTTCACCAACACGTCGCCGGTCAACGGCGAAGTCATCGGCGAGTTTCCGCGCTCCAGCGCCGCCGACATCGACAAGGCCCTGGACGCCGCCCATGCCGCTGCCGACGCCTGGGGCAAAACCTCGGTCCAGGATCGCTCCCTGGTGCTGTTGAAAATCGCCGACCGTATCGAGCAGAACCTGGAGCTCCTTGCCGTGAGCGAGACCTGGGACAACGGCAAGGCCGTGCGCGAAACCCTCAATGCCGACGTACCGCTTGCGGCTGACCATTTCCGTTATTTCGCCGGCTGCATCCGCGCCCAGGAGGGCGGGGCCGCCGAAATCAACGAACTGACCACGGCCTACCATTTTCATGAACCGCTGGGCGTGGTCGGGCAAATCATCCCGTGGAACTTCCCGTTGTTGATGGCCGCCTGGAAACTCGCCCCGGCCCTGGCCGCCGGCAACTGCATCGTGCTCAAGCCGGCGGAGCAGACGCCGCTGTCGATCACCGTGTTCGCCGAGCTGATCGCCGACCTGCTGCCAGCCGGCGTCCTGAACATCGTCCACGGCTTCGGCCGCGAAGCCGGTGAAGCCCTGGCCACCAGCAAGCGCATCGCCAAGATCGCCTTCACCGGTTCCACCCCGGTCGGCTCGCACATCATGAAATGCGCCGCCGAAAACATCATCCCGTCCACCGTGGAACTGGGCGGCAAGTCGCCGAACATCTTCTTCGACGACATCATGCAGGCCGAACCGGCGTTCATCGAAAAAGCTGCCGAAGGCCTGGTGCTGGCGTTCTTCAACCAGGGTGAAGTCTGCACCTGCCCATCCCGGGCGCTGGTCCAGGAGTCGATCTATGACGAATTCATGCAAGTGGTGCTGAAGAAGATCCAGCAGATCAAGCGCGGCAACCCGCTGGACACCGAGACCATGGTCGGCGCCCAGGCGTCCGAGCAGCAGTACGACAAGATCCTTTCGTACCTGGACATCGCCCGGGAAGAGGGCGCCGAATTGCTCACCGGCGGCGCGGCGGAACGCCTTGAAGGCGACCTGTCGAGCGGCTATTACATCCAGCCGACCCTGCTCAAGGGCCACAACAAGATGCGCGTGTTCCAGGAAGAAATCTTCGGGCCGGTGGTGGGCGTGACCACCTTCAAGGACGAAGCCGAAGCCCTGGCCATCGCCAACGACACCGAGTTCGGCCTCGGCGCCGGCCTCTGGACCCGCGACATCAACCGCGCCTACCGCATGGGCCGGGCAATCAAGGCCGGACGCGTCTGGACCAACTGCTACCACCTGTACCCGGCGCATGCCGCGTTTGGTGGCTACAAGAAGTCCGGCGTCGGGCGTGAGACGCACAAGATGATGCTCGACCATTATCAGCAGACCAAGAACCTGCTGGTGAGCTATGACGTCAATCCGTTGGGGTTCTTCTGAMIYAQPGTPGAVVSFKPRYGNFIGGEFVPPVHAEYFTNTSPVNGEVIGEFPRSSAADIDKALDAAHAAADAWGKTSVQDRSLVLLKIADRIEQNLELLAVSETWDNGKAVRETLNADVPLAADHFRYFAGCIRAQEGGAAEINELTTAYHFHEPLGVVGQIIPWNFPLLMAAWKLAPALAAGNCIVLKPAEQTPLSITVFAELIADLLPAGVLNIVHGFGREAGEALATSKRIAKIAFTGSTPVGSHIMKCAAENIIPSTVELGGKSPNIFFDDIMQAEPAFIEKAAEGLVLAFFNQGEVCTCPSRALVQESIYDEFMQVVLKKIQQIKRGNPLDTETMVGAQASEQQYDKILSYLDIAREEGAELLTGGAAERLEGDLSSGYYIQPTLLKGHNKMRVFQEEIFGPVVGVTTFKDEAEALAIANDTEFGLGAGLWTRDINRAYRMGRAIKAGRVWTNCYHLYPAHAAFGGYKKSGVGRETHKMMLDHYQQTKNLLVSYDVNPLGFFPGPT0007176_929DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_METABOLISM,PGPT0007176-aldB-K00138NANA
D1-35_033871776qedA_1Quinoprotein alcohol dehydrogenase (cytochrome c)ATGACTCATCCCGCACGTCGCCAATCCTTCGCCGTGAGCCTGCTGCTCAGTGCCATGCTGCTGTCCGGCTCGGCCTTGGCCGCCGTGACCGACCAGGAAATTCTCCAGGACCCGAAAAACCCGCAGCAAATCGTGACCAACGGCCTCGGTGTGCAGGGCCAGCGCTATAGCCCGCTCGACACCCTCAACGTGAACAACGTCAAGGACCTGCGGCCGGTCTGGGCGTTTTCCTTCGGCGGCGAAAAGCAGCGCGGCCAGCAGGCCCAGCCGATGATCAAGGACGGGGTGATGTACCTCACCGGCTCCTATTCACGGGTGTTCGCGGTGGACGCACGCACCGGCAAGAAACTCTGGCAATACGATGCGCGCCTGCCCGATGACATCCGTCCCTGCTGCGACGTGATCAACCGTGGCGTGGCGCTGTATGGCGACCTGGTGTTCTTCGGCACGCTGGACGCCAAGCTGGTGGCCTTGAACAAGGACACCGGCAAGGTGGTGTGGAGCAAAAAAGTCGCTGACCACAAGGAAGGTTATTCCATCAGCGCCGCGCCCATGGTCGTCAATGGCAAGCTCATCACCGGCGTGGCGGGCGGCGAGTTTGGCGTGGTCGGGCAGATCAGCGCCTTCGACCCGAAAAACGGCGAACTGCTCTGGACCCGGCCGACCGTGGAAGGCCACATGGGCTACGTCTACAAGGACGGCAAGGCCGTGGAGAATGGTATCTCCGGCGGCGAGGCCGGCAAGACCTGGCCCGGCGATCTGTGGAAAACCGGCGGTGCCGCGCCTTGGCTGGGCGGTTACTACGATCCGGAAACCAACCTCCTATTGTTCGGTACCGGCAACCCGGCACCGTGGAACTCCCACCTGCGCCCTGGCGACAACCTCTATTCCTCGTCGCGCCTGGCGCTGAACCCGGACGACGGCACCATCAAGTGGCACTTCCAGAGCACGCCACACGACGGTTGGGACTACGACGGCGTCAATGAACTGATCTCGTTCAACTACAAGGACGGTGGCAAGGACATCAAGGCGGCAGCGACGGCCGATCGTAACGGTTTCTTCTACGTGCTCGACCGCACCAATGGCAAGTTCATCCGTGGTTTCCCGTTCGTCGACAAGATCACCTGGGCCTCCGGCCTGGACAAGGACGGGCGCCCGATCTACGTAGACACCAGCCGGCCGGGCGCACCGGGCAGCGAAGCCAAGGGCAGTTCGGTGTTCGTCGCCCCGGCGTTCCTCGGCGCGAAGAACTGGATGCCGATGGCCTATAACCAGGACACCGGTCTGTTCTACGTGCCGTCCAACGAGTGGGGCATGGACATCTGGAACGAGGGCATCGCCTACAAGAAAGGCGCGGCGTTCCTCGGGGCCGGGTTCACCATCAAGCCACTGAACGAGGATTACATCGGCGTGCTGCGGGCCATCGACCCGAAGACCGGCAAGGAAGTCTGGCGCCACAAGAACTTCGCGCCGCTGTGGGGCGGGGTGCTGACCACCAAGGGCAACCTGGTATTCACCGGTACGCCTGAAGGTTTCCTGCAAGCCTTCAACGCGAAGACCGGGGAAAAAGTCTGGGAGTTCCAGACCGGTTCCGGCGTGCTCGGCTCGCCGATTACCTGGGAGATGGACGGCGAGCAATACGTCTCGGTGGTCTCCGGCTGGGGCGGCGCGGTACCGCTGTGGGGCGGCGAGGTGGCCAAGCGCGTGAAGGACTTCAACCAGGGCGGCATGCTCTGGACGTTCAAGTTGCCGAAAGAGCTGGTGGCCAAGCGCTGAMTHPARRQSFAVSLLLSAMLLSGSALAAVTDQEILQDPKNPQQIVTNGLGVQGQRYSPLDTLNVNNVKDLRPVWAFSFGGEKQRGQQAQPMIKDGVMYLTGSYSRVFAVDARTGKKLWQYDARLPDDIRPCCDVINRGVALYGDLVFFGTLDAKLVALNKDTGKVVWSKKVADHKEGYSISAAPMVVNGKLITGVAGGEFGVVGQISAFDPKNGELLWTRPTVEGHMGYVYKDGKAVENGISGGEAGKTWPGDLWKTGGAAPWLGGYYDPETNLLLFGTGNPAPWNSHLRPGDNLYSSSRLALNPDDGTIKWHFQSTPHDGWDYDGVNELISFNYKDGGKDIKAAATADRNGFFYVLDRTNGKFIRGFPFVDKITWASGLDKDGRPIYVDTSRPGAPGSEAKGSSVFVAPAFLGAKNWMPMAYNQDTGLFYVPSNEWGMDIWNEGIAYKKGAAFLGAGFTIKPLNEDYIGVLRAIDPKTGKEVWRHKNFAPLWGGVLTTKGNLVFTGTPEGFLQAFNAKTGEKVWEFQTGSGVLGSPITWEMDGEQYVSVVSGWGGAVPLWGGEVAKRVKDFNQGGMLWTFKLPKELVAKRPGPT0006870_208DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUBSTRATE_UTILIZATION-OTHERSPLANT_DERIVED_ALCOHOL_DEHYDROGENASE-CYTOCHROME_C,PGPT0006870-exaA-K00114NANA
D1-35_03388936gloB_1Hydroxyacylglutathione hydrolaseATGCGCTGGTTGTTGCTGATCTGTCTTGGGCTGTGCCTGCCGGCCTGGTCCGCCACCGAGTATTCGCTCAAGCCACGGCAGATCGCCGAGGGCACGTGGCTGCTGGAAGGCAGCACGGATAATTTTGCCAAGGCCAACGGCGGCAATATCGTCAATACCGCGTTCATCGTCACCGAGGCCGGCGTGGTGGTCATCGACACCGGACCGTCAAAGCGCTACGGCGAGGCGCTGCGCCAGGCCATCGCCGCAACGACTGACAAGCCGGTGGCTCAGGTGCTGCTGACTCATCATCACCCTGACCATGTATTGGGCAACCAGGCCTTCAGCGATGTGCCCATCGGGGCGCTGCCCGGCACCACCGATCTGCTGCGACAGCAGGGCGACGCGATGGCGGAAAACATGTACCGGCTGGTGGGCGACTGGATGCGCGGCACCGAGGTGGTGCTGCCGACGCAGGCGTTGAGCCCCGGCACGCTGCAGGTGGGTGAGCATTCGTTGCGCTTGCTGGCGCTGGCCGGGCATACCGGGGCGGATCTGGCGATCCTTGATGAAACCACGGGCGTGCTGTTCGCCGGCGACCTGGTGTTTTATGAGCGAGCGCTGACTACCCCGAACAGCCCCGGCCTGGAGGTATGGCTCAAGGATCTGGACACCTTGCAGGGCCTGCCATGGAAGCAGATCGTGCCGGGTCATGGTCCGGTGACGGCGGATGCCCGGCCATTCGCGCAGATGCGCGACTACCTCGGCTGGCTCGACCAACTGATGCGCGACGGCGCGGCCCGGGGCGACGACATGGCCGAGATGATCCGCAGCCCCATCCCCGAGCGCTTCGCCGCGATCAGCCTGAGCCGGTATGAGTTGATTCGCAGCGTCAGCCATCTATACCCGCGTTATGAGCGGGCGGGGATGAGGCGGGTGGACACAAAGCCCCAGTAAMRWLLLICLGLCLPAWSATEYSLKPRQIAEGTWLLEGSTDNFAKANGGNIVNTAFIVTEAGVVVIDTGPSKRYGEALRQAIAATTDKPVAQVLLTHHHPDHVLGNQAFSDVPIGALPGTTDLLRQQGDAMAENMYRLVGDWMRGTEVVLPTQALSPGTLQVGEHSLRLLALAGHTGADLAILDETTGVLFAGDLVFYERALTTPNSPGLEVWLKDLDTLQGLPWKQIVPGHGPVTADARPFAQMRDYLGWLDQLMRDGAARGDDMAEMIRSPIPERFAAISLSRYELIRSVSHLYPRYERAGMRRVDTKPQNANANANANA
D1-35_03389756hypothetical proteinATGAACTGGCGAGCGTGGGGCCTGCTGTGGTGTTGCCTGCCGTTGATGGCGAGCGCGATCGAGCCGGGAAAGGACCCGGTGCCTTCCGTGATGTGGGCTTTCTATCACAAGCAACTGCTGGCGGACGCGCCGTTCGTGTTCGACGAGCGAGTCCGGCTGCTGGCGCCACCGTTTGCCGAAGACGCGCGCCAGGTGCCGCTGGAAATCGATGCCCGCGCCTTTACCGGTGACGTCGTGCGTATATTGGCCTGGGCCGAATTGAACCCGCTGCCGAAGATTGTCGACTTCCAGCCCACGGAACGGGTGCTGCCCTGGCTGTCGATCCGTATTCGCATCGAGCAAGCCAGTCCATTGCGTGCGGCAGTGCAGACCCGCGACGGGCTGTGGCACGTCGGTTCGACGCTGATCGACGCGGCGGGTGGCGGCTGCACCGCGCCCAGCGTCGTGCGCACCCAACCGGGTTGGGAGAAGCACTTGGGCGAAGTGCTGGGCGGTCGCTACCCGCGGGGCGATTCGAGTCGCCTGCGTCTGCAGGTTGCCCACCCCATGGACAACGGCCTGGTCAGCGGCATCCCGGAGTTTTTCATCAACCAGGCTCGGCTGCTGGATGCCGACGGCAAGCTGTTGGCGCGCCTGGAGCTGTTTCCGGCGGTCAGCGAAAACCCCTCCCTGGGCTTCGACATCCAGGGCCCGGGACAGACCCGCCTGTTGCTGCGCGACACCAGCGGCAACGAGTTCGAAGCGGCCATTCCCTGAMNWRAWGLLWCCLPLMASAIEPGKDPVPSVMWAFYHKQLLADAPFVFDERVRLLAPPFAEDARQVPLEIDARAFTGDVVRILAWAELNPLPKIVDFQPTERVLPWLSIRIRIEQASPLRAAVQTRDGLWHVGSTLIDAAGGGCTAPSVVRTQPGWEKHLGEVLGGRYPRGDSSRLRLQVAHPMDNGLVSGIPEFFINQARLLDADGKLLARLELFPAVSENPSLGFDIQGPGQTRLLLRDTSGNEFEAAIPPGPT0002355_319DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILISATION-OTHER_ACID_METABOLISMSK-SOLUBILISATION-SULFURIC_ACID_BIOSYNTHESIS,PGPT0002355-soxY-K17226NANA
D1-35_03390876hypothetical proteinATGCGCCTGTTCGCGTGGGTGATGTGCAGCCTGCTGTTGTGTGGCCAGGCGGTGCAGGCGCAGGTGCGCAGCTATGACCAGATGATTGCCGCCGGTGAATTGAAGGTCGCGGTCTACATGGACTTCGCTCCCTACAGCTTTGAAGACCAGGGCCAGCCGCGGGGCGTTGACGTGGAGCTGGCGCAGGCCCTGGCCAAGGCGCTGGGCGTACGGCTGAAATTGCTCTGGGCACCGCCCGGCGAAAAGCTCGACGACGACTTGCGCGACTACATCTGGCGCAGCAGTCCGCTGCACGATCGACAACTGGCCGATCTGATGATGCGAGTGCCTTATGACCATGACTATGTACAAAGGCGCAACGACGTTGGCGAGCTGGAGAACGCCCAGGTCGTGATGTTCGGTCCGTATCAGCAGGAATGCTGGCAAGTGGCGTACGACCGGCGTCGACTGGCCTCGGTGGGCAGCGTTGCGGTGTTCCAGCAACACCCCATTGGCGTTGAAGTCGACAGCGTGCCGTCGTTCTACCTGACGTCCGTGTTCAACGGCATGCTCAGTGCCAAGACCCGCCATTACCCCAGCGTTGCCAAGGCCTTCGGCGCCATGCAGGCCGGGGAGGTCGATGCGGTCATGGCGATGCGCGGGGAAATCGACTGGCAGGTGCACCGGGCGGCTGATCCGCAATTGGCCCTGGCGGAGAACGCTTATCCGAACATGGGCAAGCAGCGCTGGGAAATCGGCATGGCCGTGCACGAAAGCAACCGGCAACTGGCCTATGCGGTGGAGGAAGCCTTGGAAGCGTTGATCCGCGACGGCAGCCTCAAGGCCGTGTATGCCCGCTATGGCCTGCGCTACGAAGTGCCGGACATGTATCAATAGMRLFAWVMCSLLLCGQAVQAQVRSYDQMIAAGELKVAVYMDFAPYSFEDQGQPRGVDVELAQALAKALGVRLKLLWAPPGEKLDDDLRDYIWRSSPLHDRQLADLMMRVPYDHDYVQRRNDVGELENAQVVMFGPYQQECWQVAYDRRRLASVGSVAVFQQHPIGVEVDSVPSFYLTSVFNGMLSAKTRHYPSVAKAFGAMQAGEVDAVMAMRGEIDWQVHRAADPQLALAENAYPNMGKQRWEIGMAVHESNRQLAYAVEEALEALIRDGSLKAVYARYGLRYEVPDMYQPGPT0020800_3928DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-35_03391462hypothetical proteinATGACAACAAAACGCAACGCCATCATCGCTAGCGCATTGCTGATAGGGCTGACTGGCGCAGGCTCGGCATGGGCCCATGGCAACGTAGTGCCCCAGGCAGTGGAAACCCAAGGGCTGACGCCGATCAAGGACACCAACCTGCCGTTGGATGCCGACGGCTGGGCGGCACAGAACCCGTATCGCAATTCTCCCGAACGCGAAAAAGCCGTGGAGATCGGTGCCTCGGCCTACAACCAGAACTGCGCGGCCTGCCATGGCCTTGAGGCCAAGTCCGGCGGTATCGCCCCGGACTTGCGCATGCTCGACGCCGCCGAGGCTGGCGATGAATGGTTTGTCGAACGCGTGCGCCATGGCGCGGTGCGCGATGGCCGGGTGTATATGCCCAAAATGGCCGATTACCTGAGCCAGGAAGCGCTGTGGGCGGTGCGTACCTACCTGGACAGCGTGCACGTCGAGGAGTGAMTTKRNAIIASALLIGLTGAGSAWAHGNVVPQAVETQGLTPIKDTNLPLDADGWAAQNPYRNSPEREKAVEIGASAYNQNCAACHGLEAKSGGIAPDLRMLDAAEAGDEWFVERVRHGAVRDGRVYMPKMADYLSQEALWAVRTYLDSVHVEENANANANANA
D1-35_033921857qedA_2Quinoprotein alcohol dehydrogenase (cytochrome c)ATGACAATAAAAACGCTACCTGCCCTCTCCTCCCTGAGCGTTGCCTTGCTGCTCGCCGGCGGCCTGTCCCTGGGTCCGCAGGCGCACGCCGCCGTCACCTGGGAAGACATTGCCAACGATCACCTGACGACGAAGGACGTGCTGCAATACGGCATGGGCACCAACGCCCAGCGCTGGAGTCCGCTGGCCCAGGTCAACGACAAGAACGTGTTCAAGCTCACCCCGGCCTGGTCCTACTCGTTCGGTGACGAAAAACAACGCGGCCAGGAATCCCAGGCGATCGTCAGCGACGGCGTGGTGTATGTCACCGGATCCTACTCCCGGGTGTTCGCCCTCGACGCCCGGACCGGCAGACGCCTGTGGACCTACAACCACCGCCTGCCGGACAACATCCGGCCGTGCTGCGATGTGGTGAACCGTGGCGCGGCCATTTATGGCGACAAGATCTACTTCGGGACTCTGGACGCACGGGTGGTTGCCCTGGACAAGAACACCGGCAAGGTGGTCTGGAACAAGAAATTCGGCGACCACGCCGGCGGCTACACCATGACCGGCGCCCCAGTGCTGATCAAAGACAAGGCCAGCGGCAAGGTCCTGCTGATCCACGGCAGCTCCGGCGACGAGTTCGGTGTCGTCGGGCAACTGTTCGCCCGCGACCCGGACACCGGTGAAGAAGTCTGGATGCGGCCGTTTGTCGAAGGCCACATGGGCCGCCTCAACGGCAAGGACAGCACGCCGACCGGCGACGTCAAGGCGCCCTCCTGGCCTGACGACAAAACCACCGAGACCGGCAAGGTCGAGGCCTGGAGCCACGGTGGCGGCGCGCCTTGGCAGAGCGCCAGTTTCGACCCCGAGACCAACACCATCATCGTTGGCGCGGGCAACCCCGGCCCCTGGAACACCTGGGCGCGCACCGCCAAGGACGGCAACCCGCATGACTATGACAGTCTCTACACCTCGGGCCAGGTGGGAGTCGATCCAAGCACTGGCGAAGTGAAGTGGTTCTACCAGCACACGCCCAATGACGCCTGGGATTTCTCCGGCAACAACGAGCTGGTGCTGTTCGACTACAAGGACAAGGACGGCAAGCAGGTGAAGGCCACCGCCCACGCCGACCGCAACGGTTTTTTCTACGTGGTGGATCGCAACAACGGCAAGCTGCAGAACGCTTTCCCCTTCGTCGACAACATCACCTGGGCCAGCCACATCGACCTGAAGACCGGGCGGCCCGTGGAAAACCCCGGCCAACGTCCGGCCAAGCCGTTGCCAGGCGAAACCAAGGGTAAACCGGTGGAGGTTTCGCCGCCGTTCCTGGGTGGGAAAAACTGGAACCCCATGGCGTACAGCCAGGACACCGGGCTGTTCTATGTGCCGGGCAACCAGTGGAAGGAGGAGTACTGGACCGAGGAGGTCAGCTACAAAAAAGGCTCGGCCTACCTGGGCATGGGTTTTCGCATCAAGCGCATGTACGACGATCACGTCGGCAGCCTCCGGGCGATGAACCCCACCACTGGCAAGGTGGTGTGGGAACACAAGGAGCCGCTGCCGTTGTGGGCCGGTGTGCTGGCGACCAAGGGCAACCTGGTGTTCACCGGCACCGGTGACGGCTTCTTCAAGGCCTTCGACGCGAAAACCGGCGAGGAGCTGTGGAAGTTCCAGACCGGCAGCGGCATCGTCTCCCCGCCCATCACCTGGGAACAGGACGGCGAGCAGTACATCGGCGTGACCGTCGGTTATGGCGGCGCCGTGCCGTTGTGGGGCGGCGACATGGCCGAACTGACCAAACCGGTGGCCCAGGGCGGGTCGTTCTGGGTGTTCAAGATTCCGAGTTGGGATAAAGCAACGGCGCAGAAATAAMTIKTLPALSSLSVALLLAGGLSLGPQAHAAVTWEDIANDHLTTKDVLQYGMGTNAQRWSPLAQVNDKNVFKLTPAWSYSFGDEKQRGQESQAIVSDGVVYVTGSYSRVFALDARTGRRLWTYNHRLPDNIRPCCDVVNRGAAIYGDKIYFGTLDARVVALDKNTGKVVWNKKFGDHAGGYTMTGAPVLIKDKASGKVLLIHGSSGDEFGVVGQLFARDPDTGEEVWMRPFVEGHMGRLNGKDSTPTGDVKAPSWPDDKTTETGKVEAWSHGGGAPWQSASFDPETNTIIVGAGNPGPWNTWARTAKDGNPHDYDSLYTSGQVGVDPSTGEVKWFYQHTPNDAWDFSGNNELVLFDYKDKDGKQVKATAHADRNGFFYVVDRNNGKLQNAFPFVDNITWASHIDLKTGRPVENPGQRPAKPLPGETKGKPVEVSPPFLGGKNWNPMAYSQDTGLFYVPGNQWKEEYWTEEVSYKKGSAYLGMGFRIKRMYDDHVGSLRAMNPTTGKVVWEHKEPLPLWAGVLATKGNLVFTGTGDGFFKAFDAKTGEELWKFQTGSGIVSPPITWEQDGEQYIGVTVGYGGAVPLWGGDMAELTKPVAQGGSFWVFKIPSWDKATAQKPGPT0006870_100DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUBSTRATE_UTILIZATION-OTHERSPLANT_DERIVED_ALCOHOL_DEHYDROGENASE-CYTOCHROME_C,PGPT0006870-exaA-K00114NANA
D1-35_03393639pipB2COG1357Secreted effector protein PipB2ATGAAACCACTGCCCTCGCTGCTTCTGCTCCTCGCCGCCGGTGCCAACGCCGACGACACCCCACTGACCATCAACGGCTGCCTCATCGCCGAATCCAGTCAATGCCCCGGCGCCAACCTGCGGGGCGCCAACCTGGCGAGCCAGGACCTGCGCAAGATGAATCTCGCCGGTGCCGACTTGCGCGAGGCCGACCTGCGTCATGCGCGGCTGGACCTGGCCAACCTTGAGAAGGCGCAGCTCCAGGGCGCCAACCTGAACCGTGCCAGCCTGCAACAGAGCAACCTGCGCCTGGCGGATTTCAGCGGCGCCACGCTCAAGGCAATCCAGGGCTGGGGGCTGTTCGCCCAGGGCGCGCAATTCCAGCGGGCCGACTTGAGCGGTGCCTACCTTCAATTCGCCCGTTTGTCCGGGGCTCGCCTGCACGAGGCCAACCTGCAAGCCGTCGACCTGGAGATGGCCTGGCTGAGCAAGGCCGACCTCAAGGGCGCCGACCTGCGCGATGCCAACCTGCAAGAGGTCAAGCTCGCTGAAAGCAACCTGGAACAGGCCAACCTGAGTGGCTCGCGCCAGCATTACGGGAATTTCCAGGATGCGAATATGCAGGACTGCATCGGCTGCCCCACAAGTTGGGATCACTGAMKPLPSLLLLLAAGANADDTPLTINGCLIAESSQCPGANLRGANLASQDLRKMNLAGADLREADLRHARLDLANLEKAQLQGANLNRASLQQSNLRLADFSGATLKAIQGWGLFAQGAQFQRADLSGAYLQFARLSGARLHEANLQAVDLEMAWLSKADLKGADLRDANLQEVKLAESNLEQANLSGSRQHYGNFQDANMQDCIGCPTSWDHNANANANANA
D1-35_03394639exaETranscriptional activator protein ExaEATGAGCATCTTGTTGGTGGACGATCACGCTGTGGTTCGGCAAGGTTACGCCAGCCTGTTGCGAGCGTTGATGCCGGAACTGCTGGTGCGCGAAGCGGCCTCGGGCGAAGAAGCGTTGAGCCAGGTGCAGGAACAGGTGCCGAACCTGGTGATCATGGACTTCGGCCTGCCGGGCATCAGCGGCCTGGAAACCACCCGCCGCCTGCGTCAACGCTTGCCGCAACTGCGCGTGCTGTTTTTCAGCATGCACGACGAACTGCCATTGGTGCGCCAGGCGCTGGACGCCGGCGCCGCGGGTTACCTGACCAAAAATTCGGCACCGCAAATATTGTTGGAGGCGGTGCGCCGGGTGCTGGCCGGCCATGCCTATATCGAGCAGACCCTGGCGACCCAACTGGCCTGCGCCAGCACGCGGCCCGATGCGGACCCGCGCCTGCAATCGATGACCCAACGCGAACTGGAGATCTTCGTCATGCTCGCCAGGGGCACCCCGGCGCGGACCATCGCCGAACAGCTGTGCATCAGCGCCAAGACCGTGTCCAACCATCTGACGCTGCTCAAGAGCAAACTGCAGGTCAGCTCCCATGCCGAACTGGTCCACCTGGGAATCGATATGGGTGTGGTGCGGGTGGCTGGGTGAMSILLVDDHAVVRQGYASLLRALMPELLVREAASGEEALSQVQEQVPNLVIMDFGLPGISGLETTRRLRQRLPQLRVLFFSMHDELPLVRQALDAGAAGYLTKNSAPQILLEAVRRVLAGHAYIEQTLATQLACASTRPDADPRLQSMTQRELEIFVMLARGTPARTIAEQLCISAKTVSNHLTLLKSKLQVSSHAELVHLGIDMGVVRVAGPGPT0012935_1088DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-VarA|VarS_SIGNALLING_SYSTEM,PGPT0012935-gacA|uvrY|varA-K07689NANA
D1-35_033951257hypothetical proteinATGTCCGCCCTCTGGCGAATCAACCTCTGGGTCACGGTGTTCTTTGCCCTGGTCGCCGTGGCCTGCGCAACGCTGCTGCTGCACCAGGCCACCGCCGATGTGCAGCGCGAACTGCAATCGGCCGAGTCGGTGGTGCATTACCTGCGCGAAACCGCCGAGCGAGACCCGACCAGCCTGCAATCGCGCCTTACCGGCAGCCTGCGTCACGTGCGGGTGCATTGGCTGGCGCCTGGGGAGAACGCCCCGGCGAACGATCCCGGGTTGCAGGCCTGGCTGGGTCGCCAACTGTTGGCCGACGGCCCGGTTGCGCAGATGGTGGTCCTGCAGGACGGGCGTCGGGCCTGGATCGCTGTCGACCCACGGGATGAAATCGACGAGATCCTCGATTCCCTGGCGCAACTGTTCGGCGTCTGCCTGATGGCACTCTTCGTCAGTTTGCTGGTGATTCGCTGGGCGGTGCGCCGGGGCGTGCGTTTGCTGGATGAATTGCTCCACGCGATGCGCCAGGTGTCCGCCGGGGACTTGCAGGTCAGCCTGCGCACCGAAGGCGTTTCGGAAGCCCAGCAGTTGGCAGAGCATTTCAATCGGATGACCGCCGCGCTGGCCCAGACCCGCGCGGACAACGCCCAGCTGACCCGGGCACTGCTGGCAGTGCAGGAACAGGAGCGCACGCGCTTGTCGCAGACGCTGCACGATGACCTTGGCCAATACGTGGCCGGTATTCGCGCACGGGCCTGTCTGCTGCGCCTGGTCATCCATCAGCCGCCAGCCTTGGAGCAAACGGCAAACGAACTGGAAGAACACTGCGATCACCTGCAAAAAGGCTTTCGCGCGTTGGTCCACGACTTGTATCCGGTGGTGTTGCAGCACCTGCCGTTGTGCGAGGCAATCGGGCTGCTCGCGAGGCAGTGGCAGGACAGACACGGGATCGCCTGTCAGTTGCGAGTCGATGGAGCGTCGCTGTCGATATCCGGGCCTGACAAGGCCCACCTCTATCGCCTGTTGCAGGAAGCACTGACCAACATCGCCCGGCACGCCAACGCCAGTCAGGTACGGATTCGCTTGCAGCACCGCAGCGGCCGCCTGCGCCTGCTGGTGCGCGATAACGGACGTGGCGCGCAGCAACCGGCCCGGGCGGGTGTCGGCCTGCATTCGATGGCCGAACGGGCCCGCAGCCTTGGTGGTGAGCTGCGCATCATCAGCCAGCCCGGCGCCGGGTGGGCGCTGGCCTTGAATATTCCCCTGGAGGTTTCATGAMSALWRINLWVTVFFALVAVACATLLLHQATADVQRELQSAESVVHYLRETAERDPTSLQSRLTGSLRHVRVHWLAPGENAPANDPGLQAWLGRQLLADGPVAQMVVLQDGRRAWIAVDPRDEIDEILDSLAQLFGVCLMALFVSLLVIRWAVRRGVRLLDELLHAMRQVSAGDLQVSLRTEGVSEAQQLAEHFNRMTAALAQTRADNAQLTRALLAVQEQERTRLSQTLHDDLGQYVAGIRARACLLRLVIHQPPALEQTANELEEHCDHLQKGFRALVHDLYPVVLQHLPLCEAIGLLARQWQDRHGIACQLRVDGASLSISGPDKAHLYRLLQEALTNIARHANASQVRIRLQHRSGRLRLLVRDNGRGAQQPARAGVGLHSMAERARSLGGELRIISQPGAGWALALNIPLEVSPGPT0017175_805DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_HEXOSE_PHOSPHATE_UPTAKE_SENSING,PGPT0017175-uhpB-K07675NANA
D1-35_03396258hypothetical proteinGTGCGGATACTCAAGACGCTGCTGTTGCCGTTGTTGCTGATCCTGAGCCTGATCGGGGTTGACAGGCATAAGACCATCCCTGTGGGAGCGAGCTTGCTCGCGATAGCGGTGGTTCAGCCGACCTTGATGTTGGATGCGCCGCCGTCATCGCGAGCAAGCTCGCTCCCACAGGATGTCGGTGTCCCACAGGATGTCGGTGTCCCACAGAGGGCCGGTGTCCCACACGGGGCCGGTGTAGACAAAGGATCGGGGCGCTAGMRILKTLLLPLLLILSLIGVDRHKTIPVGASLLAIAVVQPTLMLDAPPSSRASSLPQDVGVPQDVGVPQRAGVPHGAGVDKGSGRNANANANANA
D1-35_033971167hypothetical proteinATGCGCCGGCTCGCACGTTTTGCCCTGGTTTATCTGCTGGCTACGACCACCGCTCAGGCCGGCGATGCCGTGGCGTTGCAAGTGCGCATCGGCTACCTGGGTTATCGCCCCGATCCCGGCCCGCTGCTGTCCAATGTGATTGCCGAACCCACCGATGCCGGGCTGCGCGGCGCCGAGCTGGCGATTGTCGACAGCAACAGCACCGGACGTTTTCTCAAGCACGACTACCGCCTCGAAAGCGCCAGCGTAGACAGCCCCGAAGCGCTGCTCCAGGCCGCCCGCGCCCAGCACGATCGGGGCCTGCGGCTGTTCGTGGTGAATGCACCCGCTACCAGCCTGCGCCAGCTCAGCGCCGCCCTGCCCGACAGCCTGCTGTTCAACGCCGGCAGCCCCGACGACAGCCTGCGCACCAGCGACTGCCTGGGCAATGTGCTGCACACCCTGCCTGATCGGGCGACACTCGCCGATGCGCTGATCCAGTTCAGCGTTGTGCGCAAATGGCAGCGCGCCTTGCTGATCGTCGGCCAGACACCCGCAGACCAGGCCTACGCCGCCGCACTGCGCCGGGCCATGAAGCGTTTCGGCATGAAGATCGTCGCCGAGAAACCCTGGCAGTTCGACAACGACCAGCGCCGCAGTGCCCAGGCCGACATGCCGCTGTTCACCCAGACCGCCGAATACGACGTGGTGCTGGTGGCCGACGAACGCGGCGATTTTGGCGAGTACGTGCCCTACCAGACCTGGTACCCGCGCCCCGTGGCCGGCACCCAGGGACTGACCCCGACCGGCTGGCACAAGACCGTCGAGACCTACGGTGCGGCGCAGTTGCAAAAACGCTTCGAAGCCTTGGCCGGACGCTGGATGAACGACCGCGACTTCGCCGCCTGGATCGCCGTGCGCAGCATCGCCGCCGCCGTCGGCAAGCTGCGTCAGGATGACCCGTTCGCCATCCGCCAACTGGCCCTCGGCGACCAACTGCCGCTCGACGGTTTCAAAGGCCGCAAGCTCAGCTATCGCCCCTGGAACGGCCAATTGCGCCAACCCATTGCGCTGGTCCAGCCACGCGCCCTGGTCAGTACCTCCCCCCAGGACGGGTTCCTGCACCCCAGCAACGAAATGGACAGCCTGGGCTACGACCAGCCCGAAGTCAGCTGCCGCTACCCCTGAMRRLARFALVYLLATTTAQAGDAVALQVRIGYLGYRPDPGPLLSNVIAEPTDAGLRGAELAIVDSNSTGRFLKHDYRLESASVDSPEALLQAARAQHDRGLRLFVVNAPATSLRQLSAALPDSLLFNAGSPDDSLRTSDCLGNVLHTLPDRATLADALIQFSVVRKWQRALLIVGQTPADQAYAAALRRAMKRFGMKIVAEKPWQFDNDQRRSAQADMPLFTQTAEYDVVLVADERGDFGEYVPYQTWYPRPVAGTQGLTPTGWHKTVETYGAAQLQKRFEALAGRWMNDRDFAAWIAVRSIAAAVGKLRQDDPFAIRQLALGDQLPLDGFKGRKLSYRPWNGQLRQPIALVQPRALVSTSPQDGFLHPSNEMDSLGYDQPEVSCRYPNANANANANA
D1-35_03398975Hydrazine synthase subunit betaATGCGCCGCTCCCTGCTTTGCCAGATCCTCGCCTTCGGCGCTGCGTTGATCGCGGCGGGCCCTGCCGTCGCCGCCATCGCCTGGGTCTCCAACGAGAAAGACAACAGCCTGAGCCTGATCGATATGCACAGCCTGGAAGTCGTCGACACCCTGCCGGTGGGCCAGCGCCCTCGGGGTCTGCTGCTGTCCCATGACAATCGCCTGCTGTACATCTGCGCCAGCGATTCGGATCGCGTCCAGGTGATGGACGTTGCCACCCGCAAGATCATCAAGGAGTTGCCCTCCGGCAAGGACCCGGAACAGTTCGCTCTGCACCCCAACGATCGCTGGCTCTATGTCTCCAACGAAGACGATGCCCTGGTCACGGTGATCGACACCCAGACCTCCGAAGTACTCGGCCAGATCGCTGTGGGCGTCGAGCCCGAAGGCATGGCCGTCAGTCCCGATGGCAAGTGGGCGGTCAACACCAGCGAGACCACCAATATGCTGCACTGGATCGACACCAGCACCCAGACATTGGCCGACAACACCCTGGTGGACCAGCGGCCGCGCTTCGTCGAATTCAACCGCGACGGTACGCAGCTCTGGGCCTCGGCCGAGATCGGCGGCACCTTGAGCATTCTCGACGTCGCCACCCGCCAGGTACTCAAGACCCTGACCTTCCAGATCAAGGGCGTGCACCCGGACAAGGTCCAACCGGTGGGCATCAAGCTCAGCGCCGACGGCAAGCTGGCATTCGTCGCCCTGGGCCCGGCCAACCATGTCGCGGTGATCGACGCGCAAACCTTCGAAGTGCTGGATTACCTGCTGGTGGGTCGACGGGTCTGGCAGTTGGCATTCACCCCGGACCAGAAGCAACTGCTGGCAACCAATGGCGTCAGCGGCGATGTCTCGGTGATCGACGTGCAGAGCCGCAAGGTGCTCAAGTCGGTGAAGGTCGGACGTTATCCGTGGGGCGTGGTGGTCACGCCATGAMRRSLLCQILAFGAALIAAGPAVAAIAWVSNEKDNSLSLIDMHSLEVVDTLPVGQRPRGLLLSHDNRLLYICASDSDRVQVMDVATRKIIKELPSGKDPEQFALHPNDRWLYVSNEDDALVTVIDTQTSEVLGQIAVGVEPEGMAVSPDGKWAVNTSETTNMLHWIDTSTQTLADNTLVDQRPRFVEFNRDGTQLWASAEIGGTLSILDVATRQVLKTLTFQIKGVHPDKVQPVGIKLSADGKLAFVALGPANHVAVIDAQTFEVLDYLLVGRRVWQLAFTPDQKQLLATNGVSGDVSVIDVQSRKVLKSVKVGRYPWGVVVTPNANANANANA
D1-35_03399732lnrLCOG1131Linearmycin resistance ATP-binding protein LnrLATGAACGCCTTGGAGGTCAGAGACCTGAGCTTTGCCTACGGCGCGCGCGAAGCCCTGCGCCAGATCAGTTTCAGCCTGCCCGCCGGACGCTTCGCCGCGCTGCTCGGGCCCAATGGTGCCGGCAAGTCGACGCTGATTGCCTTGCTGACGCGCCTGTACGACGTGCAACGCGGCGAGATCCGGGTCGGCGGCCACTCGTTGCAGGGCGCGCCACGCCAGGCCTTGCGCCAGTTGGGGGTGGTGTTCCAGCAAAGCACCCTGGACCTGGACCTGAGCGTCGAACAGAACCTGCGTTATCACCTCGCGCTGCACGGCTTTGCCCGGCGCCAGGCCGACGTCCGGATTGAGCTCGAACTGGCTCGCCAGCACCTGACCGAACGGCGTCACGAGCGGGTGCGCAACCTCAACGGCGGGCATCGGCGCCGGGTGGAAATTGCCCGCGCGCTGCTGCACGAGCCGCGCCTGTTATTGCTCGATGAGCCGAGTGTCGGCCTCGATCCGGCCAGCCGTCAGGCCCTTGGAGAGCATATCCGCCAACTGTGCCGCGAACAGGGCATCAGCGTGCTCTGGACCACGCACCTGCTGGACGAAGTGCAGCCCTTTGACGACTTGCTGATCGTGCATCAGGGGCGGCTGGTCGCCAGCGGTCGCGCCGAGGCGGTGAGCCTGGAACATGGCGGCAGCCTCGGCTCGGCCTTCGATCGATTGACCACCCCGGGAGTGGCCGCATGAMNALEVRDLSFAYGAREALRQISFSLPAGRFAALLGPNGAGKSTLIALLTRLYDVQRGEIRVGGHSLQGAPRQALRQLGVVFQQSTLDLDLSVEQNLRYHLALHGFARRQADVRIELELARQHLTERRHERVRNLNGGHRRRVEIARALLHEPRLLLLDEPSVGLDPASRQALGEHIRQLCREQGISVLWTTHLLDEVQPFDDLLIVHQGRLVASGRAEAVSLEHGGSLGSAFDRLTTPGVAAPGPT0006725_24796DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006725-ybhF|yadG|ecsA-K01990NANA
D1-35_03400792hypothetical proteinATGAATGCGTATTGGCAATGTTTCAGCGGCATCGTGATGCGCGAATGGCTGCGCTTCGTGTTGCAACGCACGCGGTTGCTCAGTGCCCTGGTACGGCCGTTGTTATGGCTGCTGGTGTTCGCCGCCGGCTTCCGGGCCGCCCTGGGCATTGCGATCATTGCGCCCTACGACACCTACATTCCTTATGAGGTGTACATCGTGCCGGGGCTGGCCTGCATGATCCTGCTGTTCAACGGCATGCAGGGCTCACTGTCGATGGTCTATGACCGGGAAATGGGCAGCATGCGCGTACTGCTCACCAGCCCCCTGCCCCGGGCCTTCCTGTTGGCGAGCAAGTTGCTCGCGACTTCGCTGATCTCGCTGATGCAGGTCTATGCCTTTCTCGCCATCGCCTGGTTGTATGGCGTCCAGCCTCCAGCCACGGGCTTGCTGCTGGCGCTTCCGGCGTTGCTGCTGGTGGCCTTGATGCTCAGTGCCCTCGGCTTGTTGCTGTCCAATGCGATCCGCCAGTTGGAGAACTTCGCCGGGGTGATGAACTTCGTCATCTTCCCGATGTTTTTCCTGTCTTCGGCGCTGTACCCGCTGTGGAAAATGCTCGAGGCCAGTCCGTGGTTGTACTGGCTGTGCGCGGTGAACCCGTTCACCCACGGCGTGGAGCTGGTGCGCTTCGCCCTGTATGGGCAATTCAACCTGCTGGCGATGGCCATGTGCGTGGGTCTGAGCCTGGTGTTTGCGTTGCTGGCGGTGTGGACGTTCAATCCGCAGCATGCGGCATTGCGCAAGGCGAGTTGAMNAYWQCFSGIVMREWLRFVLQRTRLLSALVRPLLWLLVFAAGFRAALGIAIIAPYDTYIPYEVYIVPGLACMILLFNGMQGSLSMVYDREMGSMRVLLTSPLPRAFLLASKLLATSLISLMQVYAFLAIAWLYGVQPPATGLLLALPALLLVALMLSALGLLLSNAIRQLENFAGVMNFVIFPMFFLSSALYPLWKMLEASPWLYWLCAVNPFTHGVELVRFALYGQFNLLAMAMCVGLSLVFALLAVWTFNPQHAALRKASPGPT0006730_15822DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|LANTIBIOITC|NISIN,PGPT0006730-ybhS|ecsB-K01992NANA
D1-35_03401534hypothetical proteinATGCCCCGTTTGCTCGCGATCGTCTTGCTGGGCCTGTCGCTGAATGTCGCGCAGGCCGACACCTCGCTGTTTTCCCCGCAGGGCTTTCGCATCACTCAATACCGCAGCCCGACGCCCGCCTCCGCAGACAGCGCGCAAACCGTCGACACCGAAGCCTTGCAGCGCCTGCTAAAGCAAACGCCCGCGCCAGTGCTGATCGACGTCTACCGCCGGCCCTGGGTCCAGGGCCGGTTCATCGACACCGAACCCCATGCCAACCTGCCCGGCAGCTTGTGGCTGGCCAACACCGGCGACGGCGAACTGGACGCGACCTGGCAGGACTACTTCACGTTTTACCTGCGCAAAGCCACCGCCGGCCAGGCCGATCAACCGCTGGTCTTTTACTGCCGCTCCGATTGCTGGTTGAGCTGGAACGCGGTAAAACGCGCCGCCGCCTTGGGCTATAAACATCTGTATTGGTACCGCGACGGCCTGGATGCCTGGGAGGCGGCCAACCTGCCCCTGCAAGCGGCCCGCCCCGAACCCTTGCCCTGAMPRLLAIVLLGLSLNVAQADTSLFSPQGFRITQYRSPTPASADSAQTVDTEALQRLLKQTPAPVLIDVYRRPWVQGRFIDTEPHANLPGSLWLANTGDGELDATWQDYFTFYLRKATAGQADQPLVFYCRSDCWLSWNAVKRAAALGYKHLYWYRDGLDAWEAANLPLQAARPEPLPNANANANANA
D1-35_03402666degU_2COG2197Transcriptional regulatory protein DegUATGTATAAAATCCTGATAGCCGACGATCACCCACTGTTTCGCGAAGCCATCCACAACGTCATCAGCGACGGTTTCGCCGGGAGCGAGGTGATGGAAACCGCTGACCTGGACAGCGCCCTGGCGCTGACTCGCGAACACGATGACCTCGACCTGATCCTGCTCGACCTGAACATGCCCGGCATGCACGGCCTCAATGGCCTGATCAACTTGCGCAACGAGGCACCGACTATCCCGGTGGTGATCGTGTCCGCCGAGCAGGACAAGCAGATCGTCCTGCAGGCCATCACCTATGGCGCGGTGGGTTTTATCACCAAGTCGTCGCCGCGCGCGCAGATGACCGACGCCATCGAGCAGATCCTCAATGGCAACGTGTACCTGCCGCCAGACATCATCCGCACCCAGAAGAGCCCGACGGGCCGGCGCCTGAACGAGACCCCGGCGTTCCCGCCGGAACTGCTCCAGGCCTTGACCCGCAAGCAATTGCTGGTGCTCGAACGCATGACCAAAGGCGAGTCGAACAAGCAGATCGCCTACACGCTGGACATCGCCGAAACCACGGTCAAGGCCCACGTCTCGGCGATCCTGCGCAAGCTCAACGTGCATAACCGGGTGCAGGCGATTCTCAGTGCGGGGGATATCGATTTCGGGGCTTACCTGCGGCGCTAAMYKILIADDHPLFREAIHNVISDGFAGSEVMETADLDSALALTREHDDLDLILLDLNMPGMHGLNGLINLRNEAPTIPVVIVSAEQDKQIVLQAITYGAVGFITKSSPRAQMTDAIEQILNGNVYLPPDIIRTQKSPTGRRLNETPAFPPELLQALTRKQLLVLERMTKGESNKQIAYTLDIAETTVKAHVSAILRKLNVHNRVQAILSAGDIDFGAYLRRNANANANANA
D1-35_034032604rcsC_13Sensor histidine kinase RcsCTTGCCCGTCATCGCGTCCCCGGTCATCGCTGAACTGCAGGCACAGATCGCCGCCCTGCAACACGACAACCACAAGCTGCGGCGCATAAACGCGGCGCTGATCGAGCGGGTCGAATCCGGCGTGACCCGTGGCAGCGACCCGTACGCAGCGTTCCAGCATTCGGTGGTGCTGGCCGAACAGGTCCGCGAGCGCACCGACGCCTTGAACCAGGCGATGGCCGAGCTCAAGGCCGGCAACCATCTTCTGGGCGAAGCCCGGCTGCGGGCGGAAACCGCCCATCGCCATCTGATCGATGCGATCGAGAGCATTTCCGATGCGTTCGTGCTGTTCGACGAACAGCAACGCATCGTCCTCTTCAACAGCCGTTTCAAGGCGTTCTGGGCTCACAGCCGGGTGCGGATCATCGCGGGGATGCGCCTTGGCGAGGTCAAGCGCCTGATGACCGCCAATGGCCTGTTCAGCGAAGAAACCCGCGGCCAGCCCGATGAGCCGGTGTTGTACCGATTACAGAACGGCCGCTGGCTGCAGGTCAGTGAACGGCCGACCCAGGAAGGCGGGCGGGTCTTCCTGTTTACCGATATCACTGACGTCAAACTCAGCGAAACCGTACGCCGTGAGCAAGCCATCGCGCAGAAATCCCACTTGCTGCAGCGCGCGGTGGACAACCTGTCCCAGGGCGTAGCGATGGTCAATGCCCAGGGCATATTGGAATTGTGGAACCGGCGCTTCCTGGAACTCAGCGGCCTGGCGCCGGTGGCGGCTCATCGGCCATTCATCGAGGTGATCGCCGACAGTGAGCTGCAACTGCTTACGCCGGCCAGTCGCGACGGCAATGGGCGGTTGATCCAGGAGTGCGAACAGCGCCTGTCCGATGGCCGGGTCCTGGAGATCCGAACTCATCCGCTGCCGACCGGCGGCTACGTCAATACCTTCACTGACATTACCGAGCGCTACCAGCATGCCGAGGCACTGAGCGAAAGCGAGCGCTGGATCCGCTTGATCACAGATCACGTACCGGCACTGATCGCCTACCTCAACGCCGACCTGGTCTACGAATTCACCAACAAGGTCTATGAGCAGTGGTATTGCTGGCCGCGGGGCGTGATGCTCGGCCAAAGCCTGCGCGAAGCCCACAGCGAGCAGCATTACCAGCGCCTGGAAGCCTACGTGGCCCGAGCGTTGGCCGGGGAGAGCGTGACCTTCGAATTCGCCGAGACCAACATCAACAACCAGGAGCGCTACATGCTGCGCTCCTACGTGCCCAATCGGCTGGCCAACGGCGAGGTGGTGGGCATCTTCGTGCTGATCCGCGACATCACCGAACGTCGCCGCACCGCCGAGGCCCTGCATCAGGCCTACCAGAATCTGGAGCAGCGCGTGCAGGAGCGCACGGCCGAGCTGACCACGCTCAACGACCAGTTGCTACGCGAGATCGACGAACGCAGCCGGGTCGAGCTGCGCCTGCGCGAAGCCAAGCGCGAGGCCGAGCGGGCCAACCTGTCGAAAACCAAATTTCTCGCCGCGGTCAGCCATGACCTGCTGCAACCGTTGAACGCGGCGCGGCTGTTCACCAGCGCCTTGCTCGAACGCCGCGAACCGGTGGCGAACGCGCAACTGGTGCGCAACGTCAGCAATTCGCTGCAGGACGTGGAAAACCTGTTGGGCACCCTGGTCGATATTTCCAAGCTGGATGCCGGGGTGATCAAGGCCGATGTGGCGCCGTTCGCCCTCAGTGAGCTGCTCGACACCCTGGCCGCCGAATACCTTCAGGTTGCGCGTAGCGAGGGCCTGGCGTTGCGCTTCGTGCCTTGTTCGGTGCTGGTGCGCAGCGACATTCAGTTGCTGGCGCGGATCCTGCGCAACCTGTTGAGCAACGCCATTCGCTACACCCCCAGCGGGCGGGTGGTCCTGGGTTGCCGGCGTCACGGTAACCGTGTCTCGATCGAAGTCTGGGATTCCGGTATCGGCATTGCCCAGGATCGGCTGGAGGAAATCTTCCAGGAATTCAAGCGTGGGGACGTCCAGCGCCCTGACCAGGATCGCGGACTCGGCCTGGGATTGGCGATCGTCGAGAAGATCGCCGGGATTCTCGGGCATCCGATCAAGGTCCGCTCCTGGCCGGGCCAGGGCTCGGTGTTCGCCATCGAGGTGCCGCTCAGCGCTACCGCACCCAAGCCGCTGGCGTGCCTGGATATGAGCGAGCCGATGCTCGAACGCCTGCGTGGCGCGCGGGTCTGGGTGCTGGACAACGACGCGGCGATCTGTGCCGGCATGCGCACCTTGCTCGAAGGTTGGGGCTGCCGCGTGGTGACTGCACTGTCGGAACAGGACCTGGCACGCCAGGTGGACAATTACCGCGCCGAGGCGGATTTGCTGATTGCCGACTATCACCTGGACCACGATCAGAATGGCATGGACGCGGTGGCCCGGATCAACGCCTGCCGCACCTCACCGATCCCGGCCATGATGATCACGGCCAACTACAGCAACGAACTCAAGCAGCAGATCCGCGAGCGCGGGCACACGCTGATGCACAAGCCGGTGCGGCCGATGAAGCTGAAGATTGCGATGAGTCATTTGTTGGGCCAAACCCAGGTTCGGTGAMPVIASPVIAELQAQIAALQHDNHKLRRINAALIERVESGVTRGSDPYAAFQHSVVLAEQVRERTDALNQAMAELKAGNHLLGEARLRAETAHRHLIDAIESISDAFVLFDEQQRIVLFNSRFKAFWAHSRVRIIAGMRLGEVKRLMTANGLFSEETRGQPDEPVLYRLQNGRWLQVSERPTQEGGRVFLFTDITDVKLSETVRREQAIAQKSHLLQRAVDNLSQGVAMVNAQGILELWNRRFLELSGLAPVAAHRPFIEVIADSELQLLTPASRDGNGRLIQECEQRLSDGRVLEIRTHPLPTGGYVNTFTDITERYQHAEALSESERWIRLITDHVPALIAYLNADLVYEFTNKVYEQWYCWPRGVMLGQSLREAHSEQHYQRLEAYVARALAGESVTFEFAETNINNQERYMLRSYVPNRLANGEVVGIFVLIRDITERRRTAEALHQAYQNLEQRVQERTAELTTLNDQLLREIDERSRVELRLREAKREAERANLSKTKFLAAVSHDLLQPLNAARLFTSALLERREPVANAQLVRNVSNSLQDVENLLGTLVDISKLDAGVIKADVAPFALSELLDTLAAEYLQVARSEGLALRFVPCSVLVRSDIQLLARILRNLLSNAIRYTPSGRVVLGCRRHGNRVSIEVWDSGIGIAQDRLEEIFQEFKRGDVQRPDQDRGLGLGLAIVEKIAGILGHPIKVRSWPGQGSVFAIEVPLSATAPKPLACLDMSEPMLERLRGARVWVLDNDAAICAGMRTLLEGWGCRVVTALSEQDLARQVDNYRAEADLLIADYHLDHDQNGMDAVARINACRTSPIPAMMITANYSNELKQQIRERGHTLMHKPVRPMKLKIAMSHLLGQTQVRPGPT0025850_87DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QUORUM_SENSING_REGULATORSCE-QSR-QUORUM_SENSING_REGULATED_FLS,PGPT0025850-PA1979-K20975NANA
D1-35_034041164hypothetical proteinATGCAGCAGGCCCAGAGCGAAGGTGTGGTCAGCGCCATGTCCCAGGCAACGGACGTCGAGCAAGTGGCCCAGGAATTGGCGCGACAGCTGTTGCATCCGTACCTGGGTTTCGTGCTGTTTTTCTGTTCCGCCGAATACAACTTGCCGGCCCTGGGCCAGGCGCTGTCACGCAGTTTCGGCGGGATTCGCCTGGTCGGTTGCACCAGCGCCGGGGAAATCACCCCGCAGGGCTACGGTCGCAACTGCGTGACGGCGGTGGGGTTCGATCATCGGCATTTTTCCATTGCCGCCGAGCTGATCGGCGAGATGGAGCACTTCAGCCTGATCGACGCCCAGCAGATGGTCGAGCGACTGGCCGGTGGCTGTCGCAGCAACGTCCTGGCGCCGATCAAGGGCCACAGTTTTGCCTTGACCTTGCTCGACGGCCTGTCCAGTCGCGAGGAAATGGTACTGGCCGCGTTGAGCGCAGCCTTGGGCGACATCCCGCATTTCGGTGGCTCGGCCGGCGATGACAATTACCTGACCCACACCCACGTCTACTTTGAAGGCCAGTTCCACAGCGGCGCCGCCGTGGTGGTGCTGATCAATACCTGGCTGGAGTTCGAGGTGTTCACCACCCATCACATCCTGCCTCGCCAGGAGAAGCTGGTGGTGACCGGCGCCGACAGCGCCTCGCGACGGGTCTACGAACTCAATGCCGAACCCGCCGCCGAAGAATACGCCCGGCATATCGGTGTGCCGGTCAGCGCGCTGGATTACCGGATATTTGCCGCCCACCCACTGGCCGTGCGCATCAACGATCAGTACTACGTGCGGGCGATCCAGCAGGTCCACTCGGACCTGAGCCTGACTTTTTATTGCGCCGTAGAGAACGGCATCGTGCTCACGGCCATGCGCCCGGGGCCTCTGCTGCATAACCTGCAAGCGCTGTTTGACGGCTTGCAGGAGCGCCTGGGTGACCTGTTGTTGACCATCGGCTGCGACTGCTTCCTCAGGCGCCTTGAGCTGGAAGACAGCGCTGGCCTGGAGCAGATCGGCCAGTTCCTGCGCGAACAACGGGTGATGGGGTTCAACACCTATGGAGAACAGTTCAATGGCATGCACATCAACCAGACCTTCACCGGAGTTGCCATTGCCCGTCATCGCGTCCCCGGTCATCGCTGAMQQAQSEGVVSAMSQATDVEQVAQELARQLLHPYLGFVLFFCSAEYNLPALGQALSRSFGGIRLVGCTSAGEITPQGYGRNCVTAVGFDHRHFSIAAELIGEMEHFSLIDAQQMVERLAGGCRSNVLAPIKGHSFALTLLDGLSSREEMVLAALSAALGDIPHFGGSAGDDNYLTHTHVYFEGQFHSGAAVVVLINTWLEFEVFTTHHILPRQEKLVVTGADSASRRVYELNAEPAAEEYARHIGVPVSALDYRIFAAHPLAVRINDQYYVRAIQQVHSDLSLTFYCAVENGIVLTAMRPGPLLHNLQALFDGLQERLGDLLLTIGCDCFLRRLELEDSAGLEQIGQFLREQRVMGFNTYGEQFNGMHINQTFTGVAIARHRVPGHRNANANANANA
D1-35_034051185hypothetical proteinATGCACAACAATAAGAATACCTGCCTGCGTTTTTTGCCTGCGGTCATCGCCGGCCTGTCGAGCCTGGGCCTGACGCCTTGGGCGCAAGCCGAAATCATGCTGTACGACAAGGACCAGACCACTTTCTCCACCGATGGCTACATCAACGCCTTCTACGTCAACAGCGACGTGGACCGGGCGGGGGAGCAGTTCGACCGGCGCCAGTCGCGGGTCAAGATGGGCTTTTTGCCCAACTACCTGGGATTCAACATGGGCAAGCAGGTCGATGACCTCAAACTCGGCGCCCGCGCCTCGTTCTGGGTGACCATCAATGACAGCGAAACCAACGGCACCGACACCGCCATCGACGTGCGGCAGTTCTACGGCACCGTCGCCAATCCGGAGTGGGGCGAGGTGCTGATCGGCAAGGACTTCGGCCTGTTCGCCCGCTCCAACATCTTGCTTGATGAGTTGCTGGCCGGTTACGGCCAGGTCAGCGACACCCTCGGCCTGGTGGATGGCGGCGGGGTGTCGTTCGGCAATATCGGCAGCGGCTACCCATACCCGTTCCCGACTTCGCAGATCACCTATCGCACTCCGGTGATGGACGGGTTGCGTGTGGCGGTGGGCATCATGGACCCGGTGGACACCAACGACAGCAGCGCCACCGGCAAGGCCTACCAGGAAAACCCGCGTACCGAGAGCGAGGTCACCTATCAGTTCGATCTCGGCGGGGCGAAAATCTACAGCTGGCTGAACGGCAGCTACCAGACCTCGGATAACACCGATACCAATGTCGAATCGGTCACCTCCAAAGGCCTGGGTTATGGCGTGCAAGCGAAGATGGGCGGGCTCTCGCTCACCGGCTCCGGGTTCCAGGCCAAGGGCATCAACCCGTTTTTCACCAATAACGCCGGCGAGGCCACGCTGCGCAACGTCGATAGCAAGGGATATCTGCTGCAGGGTTCCTACAAGCTCGGCAAGAATCGCCTGGCGCTGTCCTACGGCAAGACCGAGGACGACGGCAACGGAGTGGTCGGCAGTGGCGCCGACTACGAGACTCGCGGTGTCGCGCTGTTTCATGACATCAACGACAACCTCAAGCTCGTCGCCGAATACAACCAGTTCGAAATCAACGGCCACGACACCAGCGCACAGAACGAAGACACCGACACCTTCGCGGTGGGGGCCGTGCTGACCTGGTAAMHNNKNTCLRFLPAVIAGLSSLGLTPWAQAEIMLYDKDQTTFSTDGYINAFYVNSDVDRAGEQFDRRQSRVKMGFLPNYLGFNMGKQVDDLKLGARASFWVTINDSETNGTDTAIDVRQFYGTVANPEWGEVLIGKDFGLFARSNILLDELLAGYGQVSDTLGLVDGGGVSFGNIGSGYPYPFPTSQITYRTPVMDGLRVAVGIMDPVDTNDSSATGKAYQENPRTESEVTYQFDLGGAKIYSWLNGSYQTSDNTDTNVESVTSKGLGYGVQAKMGGLSLTGSGFQAKGINPFFTNNAGEATLRNVDSKGYLLQGSYKLGKNRLALSYGKTEDDGNGVVGSGADYETRGVALFHDINDNLKLVAEYNQFEINGHDTSAQNEDTDTFAVGAVLTWNANANANANA
D1-35_034061275gudD_2COG4948Glucarate dehydrataseATGAAGATCAAACGCGTTACCGTGACCCCCATCGCTTTTCGCGATCCACCTTTGCTCAACGCCAGCGGCATTCATGAGCCGTTCGCGCTGCGCTCGATCATCGAGATCGAAAGCGACAACGGTTACATCGGCCTCGGCGAGAGTTACGGCGATGCGCCGGCCCTGGCGATCCAGCAGCAGGTACAGAGCCAGTTGATTGGCCTCGATCCGTTCAGTCTCAACCAGTTGCGCGCTATCGTCCAGGCCACCGTGGCTGCCCACAAACCGGCGAGCGTCGCCGGGGCGGAACTGGCGCCGGGCTCCCATGCGAGCAAGGCGGTGAGCAATGCCTATTCCGCTTTCGAAGTCGCTTGCCTGGACTTGCAGGCGCATTACCTGAATGTGCCGCTGGTGGATTTGCTGGGCGGTGCGATCCGCGACGAAGTGCCGTTCAGCGCCTACCTGTTTTTCAAATACGCCGAGCATATCGATTCACCGTATCCCGCGGACAGTTGGGGCGAAGCGCTGAATGAGCAGCAGATCGTCGCCCAGGCCCGACGGATGATCGACGAGTACGGTTTCAAGAGCATCAAGCTCAAGGCCGGGGCATTGGAGCCGGAGCATGAAGTGGCCTGCATCAAGGCCTTGAAACAGGCTTTTCCTGGCTTGCCGCTGCGCATCGATCCCAATGGCAACTGGTCGCTGGAGACCTCTATCCGCATGGCCGAGCTGCTCGGTGATGACCTGCAATATTACGAAGACCCCACGCCCGGGCTCGAAGGGATGGCCGCGCTGCACAAGCGCACGGGATTGCCGCTGGCGACGAATATGGTGGTCACCGACTTCGACGAATTCCGCCGCAGCGTGGCGCAGGACAGCGTGCAGATTGTCCTGGCTGACCACCATTACTGGGGCGGGCTGCGCGATACCCAGATGCTCGCGAAGATGTGCGAGACCTTTGGTCTGGGCGTGTCGATGCACTCCAACTCGCACCTGGGCATCAGCCTCATGGCCATGGCCCACGTGGCGGCTTCGGTGCCGAACCTGGACTACGCCTGCGATACCCATTACCCCTGGCAGGAACCGGATGAAGAAGTGATCAAGGGCGGCAAGCTGGCATTTGTCGACGGTTGCGTGAAGATCACCCGGGCGCCGGGCCTTGGCCTGGAGCTGGACCGCGATCAACTGGGCAAGCTGCATGAGCAGTTCCTCAGTTGCGGCATTCGCCAGCGCGACGATGTGCGGCAGATGCGGCGCTACCGGCCGGACTGGACCACGGTCAAACCGCGGTTCTAAMKIKRVTVTPIAFRDPPLLNASGIHEPFALRSIIEIESDNGYIGLGESYGDAPALAIQQQVQSQLIGLDPFSLNQLRAIVQATVAAHKPASVAGAELAPGSHASKAVSNAYSAFEVACLDLQAHYLNVPLVDLLGGAIRDEVPFSAYLFFKYAEHIDSPYPADSWGEALNEQQIVAQARRMIDEYGFKSIKLKAGALEPEHEVACIKALKQAFPGLPLRIDPNGNWSLETSIRMAELLGDDLQYYEDPTPGLEGMAALHKRTGLPLATNMVVTDFDEFRRSVAQDSVQIVLADHHYWGGLRDTQMLAKMCETFGLGVSMHSNSHLGISLMAMAHVAASVPNLDYACDTHYPWQEPDEEVIKGGKLAFVDGCVKITRAPGLGLELDRDQLGKLHEQFLSCGIRQRDDVRQMRRYRPDWTTVKPRFPGPT0018180_898DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTARATE|GLUCARATE_DEGRADATION,PGPT0018180-gudD-K01706NANA
D1-35_034071386abaQ_1Quinolone resistance transporterTTGAATCACGTATCGGACTCGACCCTGGCCACCGCCGCGGCCAAGGTCAAACGTCACGTCCTGCCGTTGGTGGTGGTGATGTTCATCGTCAACTACATCGACCGCGTCAACATCGGCTTCGTCCGCAGCCATCTGGAAACCGACCTGGGCATTGGCGCAGCAGCCTATGGCCTCGGTGCCGGGCTGTTCTTCATCGGCTACGCGCTGTTCGAGGTGCCGTCCAACATGCTCTTGCAGCGCTACGGCGCCCGGGCCTGGCTGACGCGCATCATGTTCACCTGGGGCGCGGCGGCCATGGCCATGGCGTTCGTGCGTGGCGAAACCAGTTTTTATGTGTTGCGCTTCATTCTGGGCGCGGCGGAGGCGGGCTTCTTCCCCGGCATCATCTATTACTTCACCCAATGGTTGCCGTCCAACGAGCGCGGCAAGGCGATGGCGATCTTCCTCAGCGGTTCGGCGATCGCCTCGGTGATTTCCGGCCCGGTATCCGGCGCCTTGCTGCACATCAGCGGGCTGGGCCTGCATGGCTGGCAATGGATGTTCCTGATCGAAGGGGGCGCGTCCATCGTGCTGTGCGGGTTTGTCTGGTTCTGGCTGCAATCGCACCCCAGCCAGGCCAAATGGCTGACCGCTGAAGAAAAAACCGTGTTGATCGCCGCCATCGCCGAAGAGCAGCGGGCGCGGGAAGCCGCCCAGGTCATCAAGCCTTCAATGTTCAAATTGCTCGCCGACCGGCAGATCGCGCTGTTCTGCTTCATCTATTTTTCCATCGCCCTGACCATTTATGGCGCCACGTTCTGGCTGCCGAGCATGATCAAGAAAATGGGCAACCTGGGGGATTTCCAGGTCGGCTTGCTCAACTCGATTCCGTGGATCATCTCCATCGTCGCGATGTACGGCTTCGCTGCCCTGGCCGGCAAGTGGAAGTTCCAGCAGGCCTGGGTCGCGGTGACGCTGGTGATCGCCGCGTTCGGCATGTTCATGTCCACCACCGGCGGGCCGATCTTCGCCTTCGTCGCCATCTGTTTCGCGGCCATCGGCTTCAAGGCCGCCTCGGCGCTGTTCTGGCCGATCCCCCAAGGCTATCTCGACGCCCGCATCGCGGCGGCCGTGATTGCCTTGATCAATTCCATCGGCAACCTCGGCGGCTTCGTCGCCCCGACGGCCTTCGGATTCCTGGAGCAGACCACCGGTTCCATCGAAGGCGGCCTGTATGGGTTGGCGATCACCTCGCTGGTTGCCGCCGTGGTGATCTTTTTCGCCCGGACCCAACCGGGGCGCGGCAAACCTGACGCGCTGTCCGGCCAGCCTGAACACTCGGTCGAAGCTGACCTGCTGAACAAATCTCAAGCCCTGAAACCTGGCCCATCGGGAGCCGCTGCATGAMNHVSDSTLATAAAKVKRHVLPLVVVMFIVNYIDRVNIGFVRSHLETDLGIGAAAYGLGAGLFFIGYALFEVPSNMLLQRYGARAWLTRIMFTWGAAAMAMAFVRGETSFYVLRFILGAAEAGFFPGIIYYFTQWLPSNERGKAMAIFLSGSAIASVISGPVSGALLHISGLGLHGWQWMFLIEGGASIVLCGFVWFWLQSHPSQAKWLTAEEKTVLIAAIAEEQRAREAAQVIKPSMFKLLADRQIALFCFIYFSIALTIYGATFWLPSMIKKMGNLGDFQVGLLNSIPWIISIVAMYGFAALAGKWKFQQAWVAVTLVIAAFGMFMSTTGGPIFAFVAICFAAIGFKAASALFWPIPQGYLDARIAAAVIALINSIGNLGGFVAPTAFGFLEQTTGSIEGGLYGLAITSLVAAVVIFFARTQPGRGKPDALSGQPEHSVEADLLNKSQALKPGPSGAAAPGPT0002325_422DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-ORGANIC_ACID_METABOLISMP-SOLUBILISATION-TARTARIC_ACID_TRANSPORT,PGPT0002325-ttuB-K13021NANA
D1-35_03408897hcaR_1Hca operon transcriptional activator HcaRATGTTTGAACTGGCCCAACTGCGCTGCTTCACCACAGTGGCAACCGAACTGAATTTCCGCAGGGCCGCCGAACGCCTGAACATGACCCAGCCGCCCCTGAGTCGACAGATCCAGTTGCTGGAGCATCACCTCGGCGTCGAGCTGTTTACCCGCAGCACCCGCAGCGTCGCCCTCACCGCAGCCGGCCGGGCATTTTTCATCGAAGCGCAGAACCTGCTGCAACAGGCGCAACAAGCCGCCGAGGCCGCCAAGCGTTTTGCCCAGGGCGACATCGGCTCGGTCACCATCAGCTTCGTCGGCAGCGCGGTGTATGAATTCCTGCCCAAAGTCATTGCCGAGGCGCGGCTCAAACAGCCACAGGTCAAGATCGTCCTCGCGGAGATGAACACCTACCAGCAGCACGAAGCCTTGCGCGCCCGGCGCATCGACCTCGGCATCGTTCGTTCGCCGTTGCTGGAAACCGGCTACGCGACCGAATGCCTGGTACGCGAGCCGTTCGTCCTGGCCGTGCCGGCCGGCCATCCGCTGGCCAGCGCCGAGTCTGTCAGCGTGCAGGATCTGGACGGGCAACCGTTCCTCATGTACTCCCACTCCGCCTACCCGCCCTTCAACGAACTGCTCACCGGCATGCTGCGCTCGGCCCGCGTCGCCCCGCAGTTCGTGCAATGGCTCGGTTCATCGCTGACCATCCTGGCACTGGTCAACGCCGGCATGGGCGTGGCGCTGGTGCCCCGGTGCGCGACCAGCGTGGTGTTCAAGCAAGTGGTGTTTCGCGAGATCGACCTGGGCGAAGGCGTGCAAAGCGAACTGCATCTGGTGTGGCGGGAGGATAACGACAATCCGGCGTTCACGATGCTGTTGGAGGGGATTCGCGGGGCGGTTCGGGAGGGGTTGTAAMFELAQLRCFTTVATELNFRRAAERLNMTQPPLSRQIQLLEHHLGVELFTRSTRSVALTAAGRAFFIEAQNLLQQAQQAAEAAKRFAQGDIGSVTISFVGSAVYEFLPKVIAEARLKQPQVKIVLAEMNTYQQHEALRARRIDLGIVRSPLLETGYATECLVREPFVLAVPAGHPLASAESVSVQDLDGQPFLMYSHSAYPPFNELLTGMLRSARVAPQFVQWLGSSLTILALVNAGMGVALVPRCATSVVFKQVVFREIDLGEGVQSELHLVWREDNDNPAFTMLLEGIRGAVREGLNANANANANA
D1-35_03409432hypothetical proteinATGAAAAAAGCGCTATCGGTCATCGGTTTCCTGTGCCTGTTCAGCGGCTACGCCGCAGCCGCCCCCGCCTCGGCTGAAAAAGAGGTTGCCGAAGCGGTCGACCACCTGACCCAGGCCATGCTGCACAAGGACATTCCCCAGCTTCAGGCGCTCGCCGCCGAGAACCTGACTTACGGCCATTCCAGCGGCAACATCCAGGACAAGAAAGCCTTCATCGCCGACATCGAAACCGGCAAAAGCGCGTTCAAGACCCTGGAGATGAAGAATCAGAAAATCACCCTGTCAGGCGATGTGGCCCTGGTGCGCAATCATTTTTCCGCGCAAGCACTCAAGGGCACCGAAGTGATCCCGACGGAAATCGAGAACTTCCAGATCTGGCAGAAGCAGAATGGGAAGTGGCTGCTGATCGGGCGTCAGGCGTTTCGGTTCTGAMKKALSVIGFLCLFSGYAAAAPASAEKEVAEAVDHLTQAMLHKDIPQLQALAAENLTYGHSSGNIQDKKAFIADIETGKSAFKTLEMKNQKITLSGDVALVRNHFSAQALKGTEVIPTEIENFQIWQKQNGKWLLIGRQAFRFNANANANANA
D1-35_03410924pgrR_6HTH-type transcriptional regulator PgrRATGAAGCGGCATTTCGAAGATTTGCAATTGGGCAGCATCGAATTGTTCTGCCTGGCGGCCGAGGCGGGCAGCTTCACGGCGGCCGCCCAGGTGGCCGGGGTGACTCCGGCGGCGGTGAGCCGGTCAATCTTTCGCCTGGAGGAGCGCCTGGGTTCGCGGCTGTTCGTGCGTACCACTCGAAGCATCCGGCTGACCGATGCCGGCCGGACCTTTTTTGAGCAATGTCGCCAGGCGTTGACGCAACTGGTCGAGGCGCAACAGGAAGTGATGGGCGCGCAAACGGTGCCGTCCGGGCAACTGCGCATCAGCGTGCCCACGACTTACGGTCATCATCGCATCCTGCCGCTGCTGCCGGCATTTCGCGCGTTGTACCCGCAGGTCAGCGTGGATGTCCACCTGAGCAACCGCAACATTGACTTCGTTGCCGAAGGTTATGACCTGGCGATACGGGTACGCGCCCAGCCGGATTCTTCGATGATCGCCCGGTTGCTGGAGGACGCCGGGTTGGTGGTGGTTGCGTCCCCGGAGTACCTGCAACGGGCCGGCACGCCGCTCACCCTGGAAGACCTCGACTTACACGAATGCATCCAGTTCGAACTGCCCAGCAGCGGACGGCGTATCTCCTGGCTGTTCAATGTCGAGGGCAAGGAGAAGGAGGTGTTCGGGCAGGGCGGGTATTGCTGTTCCGATGATGTGCTGGGCGGCGTAACGCTGGCCAGGCATGGCGCGGGATTGTTCCAGACCTACAGATTCATCGTGGAAAAGGAATTGGCGAACGGGCAACTGGTGGAGGTGCTGGCGCCGTTCGCGGGACGCTCGCGCCCGTTCACCTTGCTGTACCCCCACGGCCGTTACGTGCCGCAGCGAGTGCGGGCGTTTGTGGATTTTCTGTTGGGGTATCGGCAGCAATGGGCCGAGGGCTGAMKRHFEDLQLGSIELFCLAAEAGSFTAAAQVAGVTPAAVSRSIFRLEERLGSRLFVRTTRSIRLTDAGRTFFEQCRQALTQLVEAQQEVMGAQTVPSGQLRISVPTTYGHHRILPLLPAFRALYPQVSVDVHLSNRNIDFVAEGYDLAIRVRAQPDSSMIARLLEDAGLVVVASPEYLQRAGTPLTLEDLDLHECIQFELPSSGRRISWLFNVEGKEKEVFGQGGYCCSDDVLGGVTLARHGAGLFQTYRFIVEKELANGQLVEVLAPFAGRSRPFTLLYPHGRYVPQRVRAFVDFLLGYRQQWAEGNANANANANA
D1-35_03411207COG1942putative tautomeraseATGCCTTTCGTCAATGTTCGTATCACCCGCGACGGCGTTACCCGCGAGCAGAAAGCCCAGGTCATCAGCGAAATCACCGAGACCCTGCAGCGCGTGCTGGGCAAGGACCCGCACCTGACCCATATCGTGATCGAGGAAGTCGACACGGATAACTGGGGTTACGCGGGCATGACGACAACCGAGTATCGAAGCAAGCCCAAGGAATGAMPFVNVRITRDGVTREQKAQVISEITETLQRVLGKDPHLTHIVIEEVDTDNWGYAGMTTTEYRSKPKEPGPT0005210_1362DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_CATECHOL_DERIVATE_UTILIZATION,PGPT0005210-praC|xylH-K01821NANA
D1-35_03412735baiA3-alpha-hydroxycholanate dehydrogenase (NADP(+))ATGAGCAATCGGAAAACCGTCATCATCACCGGCGCGTCCAGCGGTATCGGCCTTGGCCTGGTCAAGGCGTTCCTCGCTCGCGGCTACAACGTGGTGGGCAATGCCCGCTCGCAATCGGGCCTGGATGACGCGGCCGGCCAGCTCGGTCACCCGGCGAGCTTCATCGGCGTGGCCGGTGACATTGCCGCCCCGGCAACCTCTACCGCCCTCATCGGCAAAGCCATCGAAGTCTTCGGCGCGGTGGACGGGCTGGTGAACAACGCCGGGTTCTTCCTGCCCAAACCCTTCATCGAATACAGCCCCCAAGACCTCGAATCGCTGTTGGACACCAACCTCAAGGGGCTCGTCTACGCCAGCCAGGCTGCTGCCGCACACATGATCAGCCGCCGCCAGGGTTTCATCATCAACATCTCCGCCTCGGTGGCCCTGCAACCGAACATCCAGGTGCCGGCAGCGCTGCCGGTGCTGATCAAGGGCGGTGTCAACCAGATGACCCGTGCCCTGGCGCTCGAACTGTCGCCACACAACATCAAGGTCAACGCGGTAGCGCCTGGCATCATCGACACGCCGATGCATGACCCGGCCAATCGTGACTTCCTCAACAACCTGGCCCCGGCCGGGCGGGTAGGCACCATCGACGAGATTGCCGAAGCGGTCCTGTACCTGGCGGGTGCCGATTTCACCACTGGCGCGATCCTGCCGGTGGACGGTGGGATGAGCACCGGCAAGTGGTAAMSNRKTVIITGASSGIGLGLVKAFLARGYNVVGNARSQSGLDDAAGQLGHPASFIGVAGDIAAPATSTALIGKAIEVFGAVDGLVNNAGFFLPKPFIEYSPQDLESLLDTNLKGLVYASQAAAAHMISRRQGFIINISASVALQPNIQVPAALPVLIKGGVNQMTRALALELSPHNIKVNAVAPGIIDTPMHDPANRDFLNNLAPAGRVGTIDEIAEAVLYLAGADFTTGAILPVDGGMSTGKWNANANANANA
D1-35_034132142cntO_2Metal-pseudopaline receptor CntOATGCGTCGGATACTCGTTTCTCTGTGTGTGCTTCAGGCTTATTCCATTTCCACCTGGGCAGAAGAACCCGGCACGACGGACTGGGCGCCTTTGGAGCTGCAAGCCACCGATATCGTCGGCACCTCGGACTTCGAGACCGCGCAGGGGCCGGTGAAGGGCTACCACGCGACCCGTTCGGCCAGTGCCACGCGTACCGACACCGCGATTCATGAAACCCCACAATCGATCTCCGTCGTATCCCGCGATGTGGTGGAGGACCTCAGCGCCACGCGTCTTCAGGATGCCCTCGATTACGCCGGTGGCGTCGGCAGGGCCAACAACTTCGGCGGCCAGGGCCTGACCACCTTTACGGTGCGCGGCTTTACCACGGGCGAGTTCTACCGCAACGGTTTTCCGATCAACCGCGGCTATCCGAACATGCCGGATGCCAACACCATCGAGCGGCTGGAGGTACTGCGCGGCCCGGCGACGATGCTGTATGGCCGTGGCGACCCGGGTGGCACGTTCAATATCGTATCCAAGCAACCGCTGGCCGAGCGCACGGTGACCCTGGGCAGCCAGGTCACTGACCAGGGCATGCGTCGCGGCACCCTGGATGCGTCGGGGCCGCTGGATGAAGAAGGGCGTCTGGCTTATCGCCTGAACGTGATCGGCGAGGGCGGCGATACGTTTCGCGATCACGTCGAGACCGAGCGTTATGGCCTCGCCCCGGTGGTCACCTGGCAGGTCAACGACACCACGCGCCTGACGTTCGAAGGCGATTTCATGCGCAACAACCATCCGCTGGACCGTGGCTTGACCCATTATCCCGGCCAGCGCGGCACGGCGTCCCGCGATACCTTCTTCGGTGAGAAAGACGCCGGCAAGCTGCACAACGACAACAGCATGCTGCAGGTGCGTTTCGAGCACATGCTCAACGACGACTGGACCCTCGCCGGCGGCACCCAGTGGCTCGACGGCACGTTGCAGGGCAACGCCGTCGAAGCCAACGGCATCGGCGCCGATGGGCAGACCCTGGGGCGCAACTTCAACTATCGCAAACTGGAATGGACCGACCGCGATACCCAGCTCAATCTCACCGGGCATTTCTCCACCGGCGGGTTCGAGCACACGCTGTTGACCGGTGTCGAGTATGAAGACTACGACTATAAGTCGATCATCCAGCGCTCTGCTGCCGGTGCCGGTGCGTATCCGATCGACATCTTCGATCCGGTGTATGGGCAGCCGCGCCCGGCGTTGACCCGCACGCCCACCAATGACCAGGAAAACCTCAAGACCTTCGGCTTTTTCATCCAGGACCAAGTGGCGCTGACCGAGCGTCTCAAGGTGCTGGCCGGTGCGCGTTTCGAGCGGTTCGAGCATGAGTACGAAACCTTCGTTCCCCAGGCGCGTCCCGGCAGCCGCAACTGGGACGTCACCGACAACGCCGTCACCCCACGCCTGGGCGTGATCTATGACCTGACCGACACGGTCGCCGTCTATGCCAACACCGCCCGTTCGTTCAAACCCAATAACGGCGCCAGCCGCGAAGGGGGCGGGTTCAAGCCGGAGGAAGGCAAGTCTTACGAAATGGGCGTCAAATGGGAGGCGCTGGATCGTCAGTTGAGCGTCGATGCAGCGATATACCAGATCGAAAAACGCAACGTGCTGACACCCGATCCGCTGGATTCGACCTTCAGCGTGGCGGCCGGCGAGGTGCGCAGCCGTGGTTTCGACCTGAACGTGGCGGGCAACCTGACGCCGGAGTGGCGCGTGATTGGCGGCTACGCCTATGTGGATGCCGAAGTGACCAAGGACGTCAACATCCCCACGGGTACGCGCTTGCTCAACGTGCCGAAGAACTCCTTCAGCCTGTTGAACGTCTACGAGTTCCAGGACGGCGGCCTCAAGGGACTGGGCCTTGGCCTGGGCGCCAGGTACGTCGACGAGCGGGCCGGCAACACCGCGGCCACCACCTTCACCATGGACGATTACACGGTGGTTGACCTGCTCGGCTACTACAAGGTCAACGAGCGCATTCGCCTCAACCTCGACCTCAAGAACCTGTTCGATGCGGATTACGAGGAGGGCGCGTTTGGTGGTGTGTACGCCTATCCGGGCGCGCCGCGCACCGTGCAGGCAGGTATTTCCTACACGCTGTAGMRRILVSLCVLQAYSISTWAEEPGTTDWAPLELQATDIVGTSDFETAQGPVKGYHATRSASATRTDTAIHETPQSISVVSRDVVEDLSATRLQDALDYAGGVGRANNFGGQGLTTFTVRGFTTGEFYRNGFPINRGYPNMPDANTIERLEVLRGPATMLYGRGDPGGTFNIVSKQPLAERTVTLGSQVTDQGMRRGTLDASGPLDEEGRLAYRLNVIGEGGDTFRDHVETERYGLAPVVTWQVNDTTRLTFEGDFMRNNHPLDRGLTHYPGQRGTASRDTFFGEKDAGKLHNDNSMLQVRFEHMLNDDWTLAGGTQWLDGTLQGNAVEANGIGADGQTLGRNFNYRKLEWTDRDTQLNLTGHFSTGGFEHTLLTGVEYEDYDYKSIIQRSAAGAGAYPIDIFDPVYGQPRPALTRTPTNDQENLKTFGFFIQDQVALTERLKVLAGARFERFEHEYETFVPQARPGSRNWDVTDNAVTPRLGVIYDLTDTVAVYANTARSFKPNNGASREGGGFKPEEGKSYEMGVKWEALDRQLSVDAAIYQIEKRNVLTPDPLDSTFSVAAGEVRSRGFDLNVAGNLTPEWRVIGGYAYVDAEVTKDVNIPTGTRLLNVPKNSFSLLNVYEFQDGGLKGLGLGLGARYVDERAGNTAATTFTMDDYTVVDLLGYYKVNERIRLNLDLKNLFDADYEEGAFGGVYAYPGAPRTVQAGISYTLPGPT0003790_21226DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014NANA
D1-35_034141413hisC_5Histidinol-phosphate aminotransferaseATGGACCTGAACATCAATCGCAACGCTACGGGGTCCCTGGTCCGGCAACTCGTCGCCAGCGTCAGCGACTGGATAAACGCCCACGGCATTCGCCCTGGCGCCCGCATGCCTTCGATCCGCCAACTGGCGGCGGAAAATGGCTTGAGCCTGTCGAGCGTGATCAAGGCCTACGACCAACTGGTCGCCAGCGGTGTACTGGAATCCCGGCATGGGTCAGGGTTTTTCGTGGCGCAACGCCGCCCCGAGGCGTTGGCCCCGGAAGCCGAGGAGGCTATTGCCTGGAAACTGTTCGATAATCCATCGACCCAACTCAAGCTGGGGTGCGGCTGGCTGCCGGACGCCTGGCGCGACGACAGCGATCTGGGCCAGGCGATCCGCCAGGTGGTGCGCTGCGACAGTCACGCGTTGTTCAACTACAGCACCCCGCTGGGTTCCGCTCCTCTGCGCCTGCAGATCCAGAAGCGCCTGGGCCTGATCGATATTTACGTCGATCAGGCGCAAATCATCACGACCCAGGGCGCCAGTCATGGCCTCGACCTGCTGGTGCGCACATTGCTCAAACCCGGCGACCTGGTACTGGTGGAAAGCCCCGGTTACTACAACCTGTTCAACCTGCTGAAGCTGCACGGGGTCAAGACTCTGGCAGTTCCGAGGACCGCGCAGGGCCCGGACGTTGCGAGCCTGGAGCGCTTGCTCGGCGCGCATGAACCGAAGTACTTCTTCGTCAACAGCATGTACCAGAACCCCACCGGCACCAGCCTGGCGCCGAGCGTTGCCTATCGCCTGCTGCAACTGGCGACGCTGCATGACTTCCGCATTATCGAGGACGACATCTACGCCGACTTCCAGAACGGTCCGACCTCACGCCTGGCTTCCCTCGACGCCCTGGACCGGGTGATCTACCTGGCGAGTTTTTCCAAGACCTTGTCCAGTTCATTACGCGTCGGCTACGTAGTGGCCCAGCCGGAAATCATCAACCGCCTGGCTGAAATCAAGATGGTGACCGGCATCGGCTGTTCATTGCTGGCGGAGAACGTCGTGGCGACGCTGTTGGCCAACGGCGCTTATCGCAAGTTGATCCAGCGCTTGCGCCTGCGTTTGAACAAGCAGATGGCAAGCACGTTGCGCCAGCTTGAACCGGCCCTTTGGGAAGTGTTTGCCGAGCCCTCGGGTGGCCTGTTCATCTGGGCGCGACCCCGGCATGTGCCGGCGGCGCGCGTGCAAACGATCGCCGAGCAATTGCAGGTGCAGTTGTCCCAAGGGGCGACGTTCTTGCCGAACGGGGAGGCCAGTGACTGGTTGCGCCTGAACGTGGCATATACCCAGGATGCTCGTGCCCAGGCTTTTTTCCGCGAGATTGAACAGGAATCGACTGTTGGAACGGCAGTGCTAATGGGAATAGATGTCAAATAGMDLNINRNATGSLVRQLVASVSDWINAHGIRPGARMPSIRQLAAENGLSLSSVIKAYDQLVASGVLESRHGSGFFVAQRRPEALAPEAEEAIAWKLFDNPSTQLKLGCGWLPDAWRDDSDLGQAIRQVVRCDSHALFNYSTPLGSAPLRLQIQKRLGLIDIYVDQAQIITTQGASHGLDLLVRTLLKPGDLVLVESPGYYNLFNLLKLHGVKTLAVPRTAQGPDVASLERLLGAHEPKYFFVNSMYQNPTGTSLAPSVAYRLLQLATLHDFRIIEDDIYADFQNGPTSRLASLDALDRVIYLASFSKTLSSSLRVGYVVAQPEIINRLAEIKMVTGIGCSLLAENVVATLLANGAYRKLIQRLRLRLNKQMASTLRQLEPALWEVFAEPSGGLFIWARPRHVPAARVQTIAEQLQVQLSQGATFLPNGEASDWLRLNVAYTQDARAQAFFREIEQESTVGTAVLMGIDVKNANANANANA
D1-35_034151167hypothetical proteinTTGAACGCATCGCAACGACACTCATGGGGCCTGGCATTCGGATTGTGCCTGATCACCCTGGCGGTCAATCTCCAGGCGCCGCTATACACCACCTATGCGCAGCTTTCCGGCTACGGAGCCGGCGCCACGGCGGTGGCGTTCTCCGGTTATGTGCTGGGGGTGTTGCCGGTGCTGCTGGCCTTCGGCGGCTTGGCCGACCGGGTGGGCCGCAAACCGTTGATCATCGCGGCGCTTGCCCTGTCGATGCTGGCGACGCTGGTCACCGTGTTCTGGCCCAACCTGATCGCTCTGGGTGTGGCGCGCCTGATGATGGGGGTCGGGACCGGGCTGGCCTCGGCGACCGCGACCGCCTATATGACGGAACTGCTGGCAACCGCCGACAGCCGTTCACCGGCCAACCGGGTCACGGCCAGCACCTCCCTGGGTTTTGGCCTGGGCGCGGCGCTGACCAGCCTGTTTCTTTTCGCCTGTCCCAGCGTTACCCCTGGCAGTTTCTGGCTGCAGTTGGTGCTGGCTGGCCTGGCGCTGATCGTCGTCTGGCGGCTGCCCGACCCCGCGGTGCGAATCGAGCAGGCACCGCTGCTGCGCCTGCCGCTGTTTCCCGCCGGGAGCCTGCCCTACAGCTTTTCCATGCTGCTGGCCTGGGCCACTTCCGGGCTGGTGATCGCGATCCTGCCATCGGTGCTCGCCAGCCACGATTTGCAGCGTTGGTCGGGATTGTCGACGTTTACTGTCATCAGCTGCGGGCTGCTCTTCCAGCCTTGGGTGCGGCGCATGCAACCCGCCAGAGCTACCGGCTTGGGCCTGTTGGTCTTGCCGTTGAGCTATGCATTGCTCGCCTGGGGCGCGAGCATCGGTTCCCTGGTCGCGGTGCTGTTCGGGGCCCTCGGCGCCAGCAGTGCGTGCTACGGCTTTTTGTACCTCGGCGGGTTGTCGGCCGTGACCGCCATGGCCGGTGCGCAGAAAGCCCGGGTCAGCGCCGGTTTTTTCCTGTTCGCCTACATCGGGTTCAGCATCCCGGTGGTGGTGACCGGGTTGCTGGCCGATCGTTTCGGCGCTGACATGGCGCTGCTGGTGTTCGGCCTGGCACTGCTGGCGGGCGCAGCGGTCACCGGTTTGCTGATCGTTCGCAGCGAAGCTTTCATCGCCCAGCCATCCCATGGCTGAMNASQRHSWGLAFGLCLITLAVNLQAPLYTTYAQLSGYGAGATAVAFSGYVLGVLPVLLAFGGLADRVGRKPLIIAALALSMLATLVTVFWPNLIALGVARLMMGVGTGLASATATAYMTELLATADSRSPANRVTASTSLGFGLGAALTSLFLFACPSVTPGSFWLQLVLAGLALIVVWRLPDPAVRIEQAPLLRLPLFPAGSLPYSFSMLLAWATSGLVIAILPSVLASHDLQRWSGLSTFTVISCGLLFQPWVRRMQPARATGLGLLVLPLSYALLAWGASIGSLVAVLFGALGASSACYGFLYLGGLSAVTAMAGAQKARVSAGFFLFAYIGFSIPVVVTGLLADRFGADMALLVFGLALLAGAAVTGLLIVRSEAFIAQPSHGNANANANANA
D1-35_03416672rspR_2COG1802HTH-type transcriptional repressor RspRGTGACATTATCCAAGTTCAACCTGCCCGACCTGGGCAATACCCCTTCCACCTCGGAAATCATCACCCGTCACCTGCGCGATGCCATTGTGGCCGGGCATTTCGCCGAAGACGAGCCGATTCGCCAGGACGACATCGCCCGGCAGTTCAATGTCAGCAAGATCCCCGTGCGCGAGGCGCTCAAGCGCCTGGAGGCCGAAGGCCTGGTGATGTTCCAGCGCAACCGCGGGGCGATGGTCACGCGGATTTCCGAAGCGGAACTGGCGCAGATGTTCGAGGTGCGGATGCTGCTCGAAGACAAGGTCCTGCGCCTGGCCATTCCCAACATGACCGAAGCGACCTTTGCCCGCGCCGACAGCATCTGTCGCGAGTTCATCGGCGAAGATGACGTCGGCCGCTGGGCCGAGCTCAACTGGCAACTGCACGCCTGCCTTTACGAACCGGCGCAACGGCCGTTCATGGTCGGGCTGATCCGCTCGGTCCACGACAAGCTGGAACGTTATCTGCGCATGCAGATGAGCCTGTCGGCGGGCAAGGAGCGCGCCGACCACGAGCACCGGGAAATTCTCGACGCCTGCCGGGCCGGTGATGTCGAACGCGCGGTGAAGCTGCTGGACGAACACATCGCCGGAGTCTGCCAGACACTGTTCGAATTCCTGCCGTCGAGCCGATGAMTLSKFNLPDLGNTPSTSEIITRHLRDAIVAGHFAEDEPIRQDDIARQFNVSKIPVREALKRLEAEGLVMFQRNRGAMVTRISEAELAQMFEVRMLLEDKVLRLAIPNMTEATFARADSICREFIGEDDVGRWAELNWQLHACLYEPAQRPFMVGLIRSVHDKLERYLRMQMSLSAGKERADHEHREILDACRAGDVERAVKLLDEHIAGVCQTLFEFLPSSRNANANANANA
D1-35_03417933COG39384-hydroxyproline 2-epimeraseATGAAACGCATCACTGTGATCGACTCCCACACCGGCGGCGAACCGACCCGATTGGTCACCGCCGGTTTCCCTGACCTGGGCCAGGGCAGCATGGCCGAGCGCAGGCAGCGCCTGGCCGAACAGCACGATGCCTGGCGCACCGCGTGCGTGCTGGAACCCAGGGGCAGCGATGTGCTGGTGGGCGCCCTGCTGTGTGAACCGGTGGACCCGACGGCCTGTGCCGGAGTGATCTTTTTCAACAACAGCGGCTACCTGGGCATGTGCGGCCACGGCACTATCGGCCTGGTGGTGTCATTGGCGCACCTGGGCCGGATCGGCCCCGGCGTGCATAACATCGAGACGCCGGTGGGCACGGTGCAGGCCACTCTGCACGAAGATCGTTCGGTCAGCGTGCGCAACGTGCCGGCCTACCGTTATCGCCAGGCGTTGCGCCTGGAAGTGCCCGGCATCGGTCCGGTGGTGGGCGACGTGGCCTGGGGCGGCAATTGGTTTTTCCTGATCGCCGACCACGGCCAGCGGGTGGCGGGCGACAATCTCGATGCCTTGACCGCCTACACGTTCGCGGTCCAGCAGGCTCTTGAACAGCAGGGCTTTCGGGGCGAGGACGGCGGGCTGATCGATCACATCGAACTGTTCGCCGATGATCCCGATGCCGACAGTCGCAACTTCGTGCTCTGCCCCGGCAAGGCCTATGACCGCTCCCCTTGCGGCACCGGCACTAGCGCCAAACTGGCGTGCCTGGCCGCCGACGGCGAGTTGCAACCGGGACAGATCTGGCGTCAGGCCAGTGTCATCGGCAGTGAATTCGAAGGCTCGTACGAGCGTTCAGGTGAGCGCATCGTCCCGACCATCCGCGGCCGCGCCTACATCAGCGCGGAAACTACGTTGATCATCGATCCGGACGACCCGTTCGCCTGGGGCATTCGCCCGTGAMKRITVIDSHTGGEPTRLVTAGFPDLGQGSMAERRQRLAEQHDAWRTACVLEPRGSDVLVGALLCEPVDPTACAGVIFFNNSGYLGMCGHGTIGLVVSLAHLGRIGPGVHNIETPVGTVQATLHEDRSVSVRNVPAYRYRQALRLEVPGIGPVVGDVAWGGNWFFLIADHGQRVAGDNLDALTAYTFAVQQALEQQGFRGEDGGLIDHIELFADDPDADSRNFVLCPGKAYDRSPCGTGTSAKLACLAADGELQPGQIWRQASVIGSEFEGSYERSGERIVPTIRGRAYISAETTLIIDPDDPFAWGIRPPGPT0014235_627DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_PROLINE_DEGRADATION,PGPT0014235-lphA-K12658NANA
D1-35_034181116mnmC_2tRNA 5-methylaminomethyl-2-thiouridine biosynthesis bifunctional protein MnmCGTGAGCGAGGGTCCTGTCGCCGATGTCATCGTCATTGGCGCCGGCATCATCGGCGCGGCCTGTGCCCGGAGCTTGGCCCTGCGTGGCTTGCGGGTGCTGGTGCTCGACGCCGGCTGGCACGGCGCCACGGCGGCCGGCATGGGGCATCTGCTGGTCCTCGACGACAACCCGGCGGAGCTGGCCCTGAGCCAATATTCCCTGCGGCGATGGCGCGAGTTGGCCCCCGCCTTGCCTGGGGGCTGCTCCTGGCGCAATAACGGCACGCTGTGGCTGGCCGCCAACGCCGAAGAGATGGCCGTGGCCCACGACAAGTACCTGAACCTGATGGCCCACGGCGAAGCCTGCGAACTGCTTGGCCAGGCCGCTTTGCAGCAACGCGAACCGGAACTGCGGACGGGACTGGAAGGCGGGCTGCTGATCAAGGGCGACGGCATTCTCTATGCGCCCGCCGCCGCCCGCTGGATGCTCGATCACGACAACATTCGCCAGCAGCGTGCCGAGGTCAGCGAAGTGGACGGCCACCGCGTGCGTCTCACCGGGGGTCACTGGCTGAGCGCCGAAGCGGTGGTGCTCGCCAACGGCATCCAGGCCACCGACTTGTGCCCGGAGCTGCCGATCGAACCCAAGAAAGGCCACCTGTTGATTACCGATCGCTACCCCGCCACTGTCACCCACACCCTGGTCGAACTGGGTTATGTCACCAGCGCCCACAACGCCAGCGGGCCATCGGTGGCCTGTAACATCCAGCCGCGCCCGACCGGACAACTGTTCATTGGCGCCTCTCGGCAATTTGGCAACATCGATCCGCAGGTCGAGGGCTGGATGCTGGCGAAAATGCTCAAGCGCGCCGTCGATTACATGCCTGGCCTGGCGCATCTCAACGGCATCCGCGCCTGGACCGGTTTTCGCGCGGCGAGCCCCGACGGCCTGCCGCTGGTGGGCCAGCATCCGCAACGCAAGGGCTTGTGGCTGGCGGTGGGTCACGAAGGACTCGGCGTCACCACCGCGCCGGCGACGGCCGACCTGCTGGTCGCGCAACTGTTCAACGAAACCGCGCCGCTGGCCGCACAACCTTATCTGCCGCAACGTTTCCTGGGAGAACCTGCCCATGCCTGAMSEGPVADVIVIGAGIIGAACARSLALRGLRVLVLDAGWHGATAAGMGHLLVLDDNPAELALSQYSLRRWRELAPALPGGCSWRNNGTLWLAANAEEMAVAHDKYLNLMAHGEACELLGQAALQQREPELRTGLEGGLLIKGDGILYAPAAARWMLDHDNIRQQRAEVSEVDGHRVRLTGGHWLSAEAVVLANGIQATDLCPELPIEPKKGHLLITDRYPATVTHTLVELGYVTSAHNASGPSVACNIQPRPTGQLFIGASRQFGNIDPQVEGWMLAKMLKRAVDYMPGLAHLNGIRAWTGFRAASPDGLPLVGQHPQRKGLWLAVGHEGLGVTTAPATADLLVAQLFNETAPLAAQPYLPQRFLGEPAHAPGPT0020390_479DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_PROLINE_DEGRADATION,PGPT0020390-lhpB2-K21061NANA
D1-35_03419237hypothetical proteinATGCCTGAACTCTGCATTGATGGACGCAAACTCTCGATCGCTGAAGGCACCACCGTCGCCGCGGCTTTGGCCTTGGGCTCCGATGGCTGCAGCCGAACCTCGGTGACTGGCCAGCGACGCGCGCCCTTGTGCGGCATGGGCATCTGCCAGGAATGCCGGGTGCTCATCGACAGTCGTCGGCGCCTGGCCTGTCAGACGCTGTGCCGTGATGGCATGCGAGTGGACACCCGGGCATGAMPELCIDGRKLSIAEGTTVAAALALGSDGCSRTSVTGQRRAPLCGMGICQECRVLIDSRRRLACQTLCRDGMRVDTRAPGPT0020400_341DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0020400-lhpD-K22550NANA
D1-35_034201257hcnB_2Hydrogen cyanide synthase subunit HcnBATGAATCAATCCACTGACATTCTGATCATCGGTGCCGGCCCTGCCGGAATGGCGGCGGCGCTGGCGGCGTCCAGCAGCGGCGCGCGCATTGTGCTGCTCGACGACAACCCGGTCCCCGGCGGACAGATCTGGCGCGACGGCCCCCAGGCCAACCTGCCCAAGCAGGCACGGCGCTTGCGGGAACGTGTGCGCGCTTGCACCAATGTGTCCTGGCGCATGGGCGCCCGAGTGATCGCCAGCGCCGCCGATAAAACCCTGCTGGTAGAAGACGCCGAGCAGGGTTGGCTGATCGCTTATGACCGCTTGATCCTGTGCACCGGAGCCCGTGAACTGCTGCTGCCCTTCCCTGGCTGGACGCTGCCCGGTGTCACCGGCGCCGGCGGCCTGCAGGCGTTGATCAAGGGCGGCCTGCCGGTGCGTGGCGAACGTTTGGTGGTCGCCGGCAGCGGGCCGCTGCTACTTGCCAGTGCGGCCACGGCGAAACATCACGGGGCGCAACTGCTGCGAATCGCCGAGCAAGCCAACCGCGCCGCCGTGGCGGGTTTCGCCGCGAGCTTGCCGCGCTGGCCGGGCAAATTGTTGCAGGCGTTCAGCCTGTTTGATGCGCACTACCGCACCGGCACCCATGTGTTGGAGGCATTGGGGAAGGACAGACTCGAAGGCGTGCGGCTGCTGCAACACGGCAAAACCGTTGAACTGGCCTGCGACCGGTTGGCCTGTGGCTTCGGCCTTATTCCCAATACCCAGCTGGGCCAGGCTTTAGGCTGTGGCCTCGATGGACAAGCGCTTGCGGTCGATGCCCGGCAAGCCACCACTCGCGTTGATCATTACGCCGCAGGTGAATGCACCGGTTTCGGCGGCAGCGAACTGGCCCTGGTGGAAGGCGCCATCGCTGGCCACGCCGCTGTCGGCGATACCCCGGCCGCCGAGCGTCTGTGGCCTGGTCGTGCACGCTGGCAAGGTTTTGCCCGGGCCTTGAATACTGCCTTTGCCCTTGATGCCCATTTGAAGAACCTGCCCCAACGCGACACCTTGGTCTGCCGTTGTGAAGACGTGGCCTATGGTGAGCTGAGCGATTTTGAGAACTGGCGTGAGGCAAAACTGGCGAGTCGTTGCGGCATGGGGGCGTGTCAGGGCCGGGTCTGTGGCGCGGCGCTGGAGCATCTGCTTGGCTGGACGCCGCCTGCTCCTCGCCCGCCTTTCAGTCCGGCGCGGATTGAAACGTTGCTGAGGTTGGAGGATCTCCCGTTCAATTGAMNQSTDILIIGAGPAGMAAALAASSSGARIVLLDDNPVPGGQIWRDGPQANLPKQARRLRERVRACTNVSWRMGARVIASAADKTLLVEDAEQGWLIAYDRLILCTGARELLLPFPGWTLPGVTGAGGLQALIKGGLPVRGERLVVAGSGPLLLASAATAKHHGAQLLRIAEQANRAAVAGFAASLPRWPGKLLQAFSLFDAHYRTGTHVLEALGKDRLEGVRLLQHGKTVELACDRLACGFGLIPNTQLGQALGCGLDGQALAVDARQATTRVDHYAAGECTGFGGSELALVEGAIAGHAAVGDTPAAERLWPGRARWQGFARALNTAFALDAHLKNLPQRDTLVCRCEDVAYGELSDFENWREAKLASRCGMGACQGRVCGAALEHLLGWTPPAPRPPFSPARIETLLRLEDLPFNPGPT0020395_394DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0020395-lhpC-K22549NANA
D1-35_03421231hypothetical proteinGTGGATTATCTGGGATGGGTCCAATGGCCCGCGATGGCGGTAACGGTATTGGCCGCGTGGCTGATCGGCTCACGCCAACCCCGCCGGCGGGTCGCTGGGTTCAGTTGTTTTATCGTCAGTAACATTCTCTGGGTCGTGTGGGGTCTGCACACCGATGCCTATGCGCTGATCGTCCTGCAGTTCTGCCTGTGTGCGATGAACCTGCGGGGCTTCAAGAAAAATACCCAGTAGMDYLGWVQWPAMAVTVLAAWLIGSRQPRRRVAGFSCFIVSNILWVVWGLHTDAYALIVLQFCLCAMNLRGFKKNTQNANANANANA
D1-35_034221935rcsC_14Sensor histidine kinase RcsCATGCTTGAGAACAACCCAAAGACTACCCGCATCAACGAAGAACAGCGCTTTCGGCTGCTTATCGATGCCGTGGTCGACTACGCCATTTACATGACCGACCCGTCCGGCATCATCACCAGCTGGAACTCTGGCGCTCGACGCTTCAAGGGCTACGAGGAATCCGAGATCCTCGGCCTGCACTTTTCCCGGTTCTACACCGATCAGGACCGTGCCGCCGGGCTGCCGCAACTGGCCCTCGATACGGCCGTGCGCGAGGGGCGTTTCGAAGGCGAAGGCTGGCGGGTGCGCAAGGACGGCACGCTGTTCTGGTCCCATGTGGTCATCGACCCGATCATCGACAGCCAGAGCGGCGAACTGCTCGGTTTCGCCAAGATCACCCGGGACCTGACCGATCGCAAGATGGCCGAGGAAACCCTCAAGCAGAGCGAGCAACAGTTCCGCCTGCTGGTGCAAAGCGTCACCGACTACGCCATCTACATGCTTGATCCGGACGGGCAGGTGACCAACTGGAACCAAGGTGCGCAGCGGATCAAGGGCTACCTGCCGGCCCAAGCGATCGGCCAGCACTTCTCGATGTTCTACACTCCCGAAGACCGGGAGGCCGGGGAGCCGCAGCGGGCCCTGAGCATCGCCGCCAGCGTCGGCCGTTTTGAAAAGAAGGGTTGGCGCGTGCGCAGGGATGGCACGCGCTTCATGGCTCATGTGGTTATCGATGCGATTCGCAGCGATACCGGCACACTCCTCGGATTTGCCAAGATCACCCGCGACATTACCGATGCCACGCAGGCGCAACAGGCCTTGGAGCAGGCTCGCGAGGCACTGTTTCAAGCGCAGAAACTGCAAGCGATCGGCCAGCTCACCGGCGGCATCGCCCACGATTTCAACAATCTGCTGACAGTGATCCTCGGCAATCTGGAAATCATGCGCAAGCGCATGCCCAGCGAACCAAAACTCACCCAACTGCTGGACAACGCCGTCCAGGGGGCGCTTCGCGGTGTTTCCTTGACCCAGCGCATGCTGGCGTTCGCCCGTCGGCAGAAGCTCAGCTCCGAACCAGTGGAGCTGGCGACGCTGGTGCAAGGCATCAGCGGCCTGCTGCAAAGCTCGATGGGCCCGTCGATTCATATCCAGACCCGATTTGCCGAGGCGTTGTCGCCGGTGCTGGCCGACGTCAACCAGCTCGAACTGGCGATCCTCAACCTGGCGACCAATGCCCGGGATGCCATGCCCCAGGGCGGCAGGATCTTGATCGAGGCGCAGGAGCGGCTGGGTAGCCAGGCCGGTGGTCCAGGAAGGCCGTTGGGCAACGAGCGATACATTTGCCTGTCGCTCAACGACGAAGGCGATGGCATGGACGAGATGACGCTGGCCTCGGCCGTGGATCCTTTTTTCACTACCAAGGGCGTGGGCAAGGGCACCGGCCTGGGATTGTCCATGGTGCATGGTCTGGCCGAGCAACTGGGCGGACGACTGATCCTCAAGAGCGAAAAAGGCGTAGGTACCACCGCCGAGCTGTGGTTGCCGGTGGCTGATGAGTCGACCACGGACAAGCCGCCCGCAGTAGAGACAGCTACGCCACCTGTCCACGCGCTGCTGGTATTGGTGGTCGACGATGACAGCCTGGTGATGACCAGCACCCGCTTGCTGATCGAAGACCTGGGCCACCGGGTGCTTTGCGCTTTGTCGGGCCCCCAGGCGCTGGAGTTGTATGAGCGCAACCCGGATATCGACCTGGTGATCACCGACATGGCCATGCCCCAGATGGACGGTGCGCAGTTGGCGAAACTGCTGCGCGACCGTCAGCCGACGCTGCCGATCATCCTGGCGACTGGCTACGCCGAGCGCCTGGAAGGCTTCGCCACGCAGTTGCCACGGCTGACCAAGCCGTTCAAGCAGATTGATCTGGTGCAGGTGATTGGGCAGACGATGAAATAAMLENNPKTTRINEEQRFRLLIDAVVDYAIYMTDPSGIITSWNSGARRFKGYEESEILGLHFSRFYTDQDRAAGLPQLALDTAVREGRFEGEGWRVRKDGTLFWSHVVIDPIIDSQSGELLGFAKITRDLTDRKMAEETLKQSEQQFRLLVQSVTDYAIYMLDPDGQVTNWNQGAQRIKGYLPAQAIGQHFSMFYTPEDREAGEPQRALSIAASVGRFEKKGWRVRRDGTRFMAHVVIDAIRSDTGTLLGFAKITRDITDATQAQQALEQAREALFQAQKLQAIGQLTGGIAHDFNNLLTVILGNLEIMRKRMPSEPKLTQLLDNAVQGALRGVSLTQRMLAFARRQKLSSEPVELATLVQGISGLLQSSMGPSIHIQTRFAEALSPVLADVNQLELAILNLATNARDAMPQGGRILIEAQERLGSQAGGPGRPLGNERYICLSLNDEGDGMDEMTLASAVDPFFTTKGVGKGTGLGLSMVHGLAEQLGGRLILKSEKGVGTTAELWLPVADESTTDKPPAVETATPPVHALLVLVVDDDSLVMTSTRLLIEDLGHRVLCALSGPQALELYERNPDIDLVITDMAMPQMDGAQLAKLLRDRQPTLPIILATGYAERLEGFATQLPRLTKPFKQIDLVQVIGQTMKNANANANANA
D1-35_034232388dinG_33'-5' exonuclease DinGGTGACCGAGATGCCGGGCTACAGCATTGCCGTGCGGGCGTTATGCGAGTTCACCGCGAAGGTCGGCGATCTCGACTTGCGTTTCACGCCGTCACCCACCGCCCTGGAAGGTATCGTCGGCCACCGTACCGTGGCATCGCGGCGCCAGGAGGGCTATCAGGCCGAAGTCAGCCTGGAAGGCGTCTACCAGACCTTGAAGGTCAAGGGGCGGGCCGACGGCTACGACCCGGCCCGCAATCGCCTGGAGGAAGTGAAGACCTATCGGGGCGACCTGAGCAAGCAACCGGACAACCACCGCCAGTTGCATTGGGCCCAGGCGAAAATCTATGGCTGGCTGCTGTGCGACAAGTTGCAGTTGCCGCGCATTGACGTTGCCTTGGTCTATTTCGACATCGTCAGTGAAAAGGAGACCTGCCTGACCCAAAGCTGCGTAGCCTCGCAGCTCCAGGCGTTCTTCGAGCAGCAGTGCGCACGGTTCCTGGCGTGGGCCGAACAGGAAATGCGCCATCGCCAGGCGCGTAACCTGGGCGCCCAGGCGCTGACGTTTCCCCACGCCGGCTTTCGGCCGGGGCAACGTCACCTGGCTGAATCGGTGTTCAAGGCGGTCAGCACCGGGCGCTGCCTGATGGCCCAGGCGCCCACCGGCATCGGCAAGACCGTCGGCACCTTGTTTCCCATGCTCAAGGCCTTGGCGCCGCAGCGTCTGGACAAGGTGTTCTTTCTCACGGCAAAAACCCCCGGACGCAGGCTGGCCCTGGATGCGGCCCGGCTGATCACCAACAACGCCCCGGCGATGCCGCTGCGGGTATTGGAAATGATCGCGCGGGACAAGGCTTGCGAGCATCCGGACAAAGCCTGCCACGGCGAATCATGCCCGCTGGCCCGGGGGTTTTATGATCGCCTGCCGCAGGCCCGGGCAGCGGCGAGCCAGGTCACGCTGCTCGACCAGGCGGCGTTGCGCGACATCGCCCTGAGCCACGAAGTCTGTCCGTACTACCTGAGCCAGGAAATGGCCCGTTGGGCCGACGTGGTGGTGGCGGACTACAACTACTACTTCGATTTCAGCGCCTTGCTCTTCGGCCTCGCCCAGGCCAATGGCTGGACCGTTGCGACCCTGGTGGACGAAGCCCACAACCTGGTGGAGCGAGGGCGCCAGATGTACAGCGCGAGCCTGGACCAGCTTGCGCTGGCGACGGTGCTGAAAACGGCGCCGGAGCCTTTGAAGAAAGCGTTGCGCAAGGTCAGCCGTCAGTGGAACGCCTTGCACGAGCCGCAAATTGCCGCCTACCAGGCGTATGAAAAACCACCGGAGAAACTGCTTCAGGCACTGGGAACGTGCACCAGCGCCATCGGCGATTACCTCAATGACCATCCCCAAGGGCTGGACAGTCAGCTGCAAGCGTTTTATTTCGATGCGTTGCAGTTCGGTCGCGTGGCGGAGGCATTTGATGAGCATTTCCTGTTCGATATTCACAAGCGCGAATCCAGCCGCCAGCGCAGCCTGTCGACGCTGTGCCTGCGCAACGTGGTGCCGGCCGGTTTCCTGCGACCCAGGTTCACGGCGTCGCGCAGCAGCGTACTGTTCTCCGCGACGCTGAGCCCGCGGCGCTATTACGCCGATTTGCTGGGGACACCCGCGGACACGGTGTGGATCGATGTCGAGTCGCCGTTCCAGGCCGAACAGCTGGATGTCCAGGTGGTCAGCCGGATCTCCACCCGCTTCGCCCATCGCCAGGGCTCCCTTGAACCGATCGTCGCGCTGATGGCTCGCCAGTTCGCCGAGCGTCCCGGCAACTACCTGGCGTTCTTCAGCAGCTTCGATTACTTGCAACAGGTGGCCGGATTGTTGGCCGAGCGACATCCGCACATTGCGACCTGGACGCAATCGCGCGGCATGGGCGAGGCGCCGCGGCAGGCGTTCCTCGAACGCTTCATGGAGCACAGCCAGGGCATTGGCTTCGCGGTGCTGGGCGGCGCGTTCGGCGAGGGCATCGACCTGCCAGGCTCGCGGCTGATCGGAGCGTTCATCGCCACCCTCGGGCTGGCGCAGTTCAACCCGGTCAATGAACAGATCAAGCAGCGCATGGCGACGATCTTTGGCGACGGCTATGACTACACCTACCTGTATCCCGGCCTGCAAAAAGTCGTGCAGGCCGCTGGCCGGGTCATCCGAACCCAGCAGGATCGCGGAGTGGTGATGCTGATCGACGACCGCTTTGGCGAGGCCAAGGTGCAGCGATTATTGCCGCAGTGGTGGACCGTCAGGCAGGAACGAGATACTCCAGCTGTGGGAGCGAGCCTGCTCGCGAAGGCGTCGGACCATCTTGCACCTTCGCAGGCTGGCTCAACCGCTTCGCGAGCAGGCTCGCTCCCACAAGGGTCTGCATAGMTEMPGYSIAVRALCEFTAKVGDLDLRFTPSPTALEGIVGHRTVASRRQEGYQAEVSLEGVYQTLKVKGRADGYDPARNRLEEVKTYRGDLSKQPDNHRQLHWAQAKIYGWLLCDKLQLPRIDVALVYFDIVSEKETCLTQSCVASQLQAFFEQQCARFLAWAEQEMRHRQARNLGAQALTFPHAGFRPGQRHLAESVFKAVSTGRCLMAQAPTGIGKTVGTLFPMLKALAPQRLDKVFFLTAKTPGRRLALDAARLITNNAPAMPLRVLEMIARDKACEHPDKACHGESCPLARGFYDRLPQARAAASQVTLLDQAALRDIALSHEVCPYYLSQEMARWADVVVADYNYYFDFSALLFGLAQANGWTVATLVDEAHNLVERGRQMYSASLDQLALATVLKTAPEPLKKALRKVSRQWNALHEPQIAAYQAYEKPPEKLLQALGTCTSAIGDYLNDHPQGLDSQLQAFYFDALQFGRVAEAFDEHFLFDIHKRESSRQRSLSTLCLRNVVPAGFLRPRFTASRSSVLFSATLSPRRYYADLLGTPADTVWIDVESPFQAEQLDVQVVSRISTRFAHRQGSLEPIVALMARQFAERPGNYLAFFSSFDYLQQVAGLLAERHPHIATWTQSRGMGEAPRQAFLERFMEHSQGIGFAVLGGAFGEGIDLPGSRLIGAFIATLGLAQFNPVNEQIKQRMATIFGDGYDYTYLYPGLQKVVQAAGRVIRTQQDRGVVMLIDDRFGEAKVQRLLPQWWTVRQERDTPAVGASLLAKASDHLAPSQAGSTASRAGSLPQGSANANANANANA
D1-35_034241653fan1Fanconi-associated nuclease 1GTGACAGCCAATCCCCTTGACGACCCCTTTTATTACCTGAACAACTTCCAGCGGGTCCTCGCCTGGTTGACGCAACGCTATGCCGACGTATTGAGTGTCGAAGAGCAGCGGTTTATCGATGATTTCATCGCTTTGCCGCGTCCGGCCCAAGGCTTGCTGGTGCGGATGGTGATGCGCAAGGGCCTGCACTTTCGTCACACCAAACTGCGCTACGCGGAAATTGGCGATATCGCCGACGCCGTGGCGCCGTTGTTGGCGCTGGGCTGGGTCGAAGAGCAGGCGTGCCTGAGCCTTGTCGAACTGTTCGAGGTGCTGCTCAAGCCGGAAGTACTTCTGTGCCTGGGGCATCTGATCGAGCAACCCAAGGCACGCAAATCCGAATGGCTGCAGGCGCTGAGTAATCAGGACGGCCAGCCGCAGCCGTTTCGCGCCTGGTGCCCGCAGCTCGAAGAGCGGCTGTACAGCCTCACGGTGATGGGGCTGTGCGACCGTTTGCGGTTGATGTTCTTCGGCAATCTCTATCAGGACTGGTCGGAGTTCGTGCTGGCGGACCTGGGTATCTTTGTCTATGAAGCCGTTGAGTTCAGCGCCGAGTCCCGGGGGCTGCGCAGCCGTGAGGACATCGATGCCTGTGTCTTCCTGCATGAATGCCAGCAACGCTTCGACGCCGGCGAACCGCTCGAACCGATCATCGCCCGGGTCAATGCCCTGGAGCTGGGCAATCCCTGGCTTGAGCGGCGCCGGGGCAAGCTGTTGTTCCAGCTCGGCCAGCATTGCGAACGCATCGGTGATTTTGCCCAGGCCCTGAGTCTTTATCGCGGTTGTACCTACCCCGGCGCGCGACTGCGAATGATCCGCGTGCTGGAGCGCATCGGCGAATATGCCCTGGCCCTCGAACTGGCTGAAGCCGCGGCCCAGTCGCCCCAAAGCGCTGCCGAGCGCCAGGCCTTGCTCCGGATCGTGCCCCGGCTGCGGCGCAAACTCGGCGGCCCGCCGGTGGCCCGCGCCGTGGCCAGGGAGGTGGAGCGACTGGACTTGCATCTGCCGCGTGTCGACCCGACGTTGTCGGTGGAATATTACGTCCAGGCTCATCTGCATGACGAAGCCGCCCCGGTGCATTACGTCGAAAACAGCCTGGTCAATTCGCTGTTCGGCCTGTTGTGCTGGCCGGCGATTTTCGCGCCGCTGCCGGGGGCTTTTTTCCACCCGTTCCAGCGCGGGCCGGTGGACCTGCTGAACGAAGATTTCCATGACCGTCGCGCCGAACTGTTCGCGGCCTGTTTCGCCGAGCTGGACGACGGGCGCTATCGGCAGACCATCCGTCAACGTTACGCGGAAAAATGGGGCGTGCAGTCACCGTTCGTGTTCTGGGGCGCACTGTCCGAAGACCTGCTGGACCAGGCGCTTGACTGTCTGCCGGCCGAACACCTCAAGCACTGGTTCGCCCGTCTGCTGCTGGACATCAAGGCCAACCGCGCCGGCATGCCCGACCTGATCCAGTTCTGGCCGCAGCACAAGACCTACCGCATGATCGAAGTCAAAGGCCCCGGCGATCGCCTGCAGGATAACCAGCTGCGCTGGCTGGAGTTCTGCCACGAACACCGGATGCCCGTCGCCGTCTGTTATGTGCAATGGGCGGAGCAGGGCGCGTGAMTANPLDDPFYYLNNFQRVLAWLTQRYADVLSVEEQRFIDDFIALPRPAQGLLVRMVMRKGLHFRHTKLRYAEIGDIADAVAPLLALGWVEEQACLSLVELFEVLLKPEVLLCLGHLIEQPKARKSEWLQALSNQDGQPQPFRAWCPQLEERLYSLTVMGLCDRLRLMFFGNLYQDWSEFVLADLGIFVYEAVEFSAESRGLRSREDIDACVFLHECQQRFDAGEPLEPIIARVNALELGNPWLERRRGKLLFQLGQHCERIGDFAQALSLYRGCTYPGARLRMIRVLERIGEYALALELAEAAAQSPQSAAERQALLRIVPRLRRKLGGPPVARAVAREVERLDLHLPRVDPTLSVEYYVQAHLHDEAAPVHYVENSLVNSLFGLLCWPAIFAPLPGAFFHPFQRGPVDLLNEDFHDRRAELFAACFAELDDGRYRQTIRQRYAEKWGVQSPFVFWGALSEDLLDQALDCLPAEHLKHWFARLLLDIKANRAGMPDLIQFWPQHKTYRMIEVKGPGDRLQDNQLRWLEFCHEHRMPVAVCYVQWAEQGANANANANANA
D1-35_03425225hypothetical proteinATGAACATCAGGTTTCTCGGCCTGCCCTTGGTCGTCACCGCGCTGCTGGCGCTGGCCGGCTGCGCCTCGCCGACCGTGGTGACCTTGCAGAACGGTACCCAGTATTTGACCGAGGACACGCCGAACACCCGCACCGCCGATGGCTTCTACGAATTCGAAGACATTTCTGGCCGCAAAGTCCGGGTCCGCGCCGATGAAGTGGCGACGATTCGCAAGGAAGACTGAMNIRFLGLPLVVTALLALAGCASPTVVTLQNGTQYLTEDTPNTRTADGFYEFEDISGRKVRVRADEVATIRKEDNANANANANA
D1-35_03426921nodD2_3Nodulation protein D 2ATGTCCGCACCCGATTTGAATTTGCTCCTCACCCTGGATGTGCTGCTGTCCGAAGGCAGCGTGGCTGGTGCGGCGCGGCGGCTGCGCCTCAGTCCTTCGGCCATGAGCCGGGCATTGGCGCGGTTGCGCCAAGTCACTGGCGACCCGTTGCTGGTGCGGGCCGGGCGGGGTTTGGTGCCGACTCCGCGCGCGTTGGCGTTGCGCGAGCAGGTCAGTCAACTGGTCCAGGACGCCCAGGCCGCGCTGCGCCCGGAGCAGGCGCCGGATCTGCGTCGAGTGAACCGAACCTTCACGCTGCGTACCCGGCAAGGCTTCGTGGAGAACTTCGCGCTGGAGCTGATTGCCCGAGTCAGCGAACAGGCGCCAGGGGTTCGGCTGTGTTTCGTCGACAAGGCCGATAAGGACAGCGCCGCGCTGCGCGAGGGCAGTGTGGATCTGGAAACCGCCGTGGTGGATGAGCGCACCCGTCCGGAGTTGCGCACGCAGGCGTTGTTTCGAGACCGCCTCATCGGCGTGGTTCGCCCGGGGCATCCGCTGAGCCAGATCGAGGTGAGCGCTGCCGATTATGCGATGGGCGCGCACATCGGCGTGTCCCTGCACGACCTCGATCATGGACCGATGGATCAGGCGTTGGGGGCATTGGGTCTGTCCCGTGAAATCATCACCAGCGTCCCGGGGTTTTCCGCTGCGCTGGGGCTCGCCCGGTCCAGCGACCTCATCGCCAGCGTGCCGGAGCGCTACACCACCCGCTTGCGCGCCGGCATGCACAGTTTTGCGCTGCCGTTTGCGCTGCCCGGGTTCACTATCGCGATGCTCTGGCACCCGCGTATGGATGCCGATCCGGTGCATCGCTGGTTAAGAGGTTGCATGAGAGAGGTTTGCGCGGATCAATACGCGCGCAAAAAACCCGGGGGGCAATAAMSAPDLNLLLTLDVLLSEGSVAGAARRLRLSPSAMSRALARLRQVTGDPLLVRAGRGLVPTPRALALREQVSQLVQDAQAALRPEQAPDLRRVNRTFTLRTRQGFVENFALELIARVSEQAPGVRLCFVDKADKDSAALREGSVDLETAVVDERTRPELRTQALFRDRLIGVVRPGHPLSQIEVSAADYAMGAHIGVSLHDLDHGPMDQALGALGLSREIITSVPGFSAALGLARSSDLIASVPERYTTRLRAGMHSFALPFALPGFTIAMLWHPRMDADPVHRWLRGCMREVCADQYARKKPGGQNANANANANA
D1-35_034271443ribZRiboflavin transporter RibZATGAAACCCGTTACTGCAGATCACCTGTCAACAAATGCCGACAATCCACCGCAGCACAGGGCACATGGGGCCCTGGCCAGCCTTGCACTGGCAACGCTGCTCGCATCCCTGGGCGCCAGCGTCGCCAGCGTCGGCCTGCCGGTGCTGGCCCAGGCATTCGATGCGTCCTTCCAACTGGTCCAGTGGGTGGTCCTCGCCTATCTGCTGGCGATCACCACGCTGATCGTCAGCCTCGGACGCTTGGGCGACCTGGTCGGGCGCCGCAAGCTGCTGCTGGCGGGCATCGCACTGTTCACGCTGGCTTCGGCCCTGTGTGGCCTGGCGCCGTCGTTGTGGCTGCTGATCGCTGCCAGGGCCCTGCAAGGCGTGGGCGCGGCCATCATGATGACGTTGACCCTGGCCCTCGTCGGCGAAACGGTGGACAAAGCCAGGACCGGCAGCGCCATGGGCCTGCTCGCCACGCTGTCAGCGGTCGGCACCGCCCTCGGGCCGTCCCTTGGCGGCATATTGATCAGCGGGTTCGGCTGGCAGGCGTTGTTTCTGGTCAACGTTCCTCTCGGGTTACTGACGCTGTTGCTGGCCTGGCGTTTTTTGCCTGCCGGATACCCGGCGCAAAAGACCGGGCGCGTGGGTTTCGATGGGCTGGGCACGCTCCTGCTGGCTTTCACACTGGGCGCTTATGCCCTGGCCATGACACTCGGACGTGGGAGCTTTGGCGCACTGAATTTCGGCCTGTTGCTGGCGGCGGTCCTGAGCGGCGGATGGTTCGTCCGGACGCAGAAACGACTCGCGTCGCCGCTGATCCCGCTGCCGATGTTCCGCGACCGCCTGCTCGTCTCGAGCCTGGCTACAAGCGCGCTGGTAGCCGCGATCATGATGGCGACCCTGCTGGTTGGCCCGTTCTATCTCGCCATCGCCCTCGGGTTGCCTCCGACAACGGTGGGACTGGTGTTGGCGGCAGGGCCGTGTGTCGCCGCCCTCGCCGGCATGCCCGCTGGGCGGCTGGCGGACCGTTTCGGCGTGCGCCTCATGCGTCTTGTCGGGCTGACGACCCTGATGTTCGGCTGTCTGCTGCTGTCGCTGGTTCCTCCCGCCTTGGGCATAGCCGGTTATGCCGCGGCCATTGTAGTCACGACACTTGGCTATGCGATGTTCCAGACGGCCAACAATACATCGGTCATGGCCGAGCTCCCCGCCCATCAGCGGGGGGCCATTGCCGGCTTGCTCAACTTGTCGCGCAACCTGGGATTCCTTACTGGCGCATCGGTGCTCGGTGCAGTTTTCGCCAGCACTTTGCCGACGAACGGTATCGGCGCTACAACGCCCGGGACTGCGGCCCACGGCTTGCACGTCACCTTCGCCATTGCCCTCGCAATAGCGGGCCTGGCACTGCTGATTGCGCTGAAATACCGCGATCCAGAGCCGTCGTCCCAACGGCAATAAMKPVTADHLSTNADNPPQHRAHGALASLALATLLASLGASVASVGLPVLAQAFDASFQLVQWVVLAYLLAITTLIVSLGRLGDLVGRRKLLLAGIALFTLASALCGLAPSLWLLIAARALQGVGAAIMMTLTLALVGETVDKARTGSAMGLLATLSAVGTALGPSLGGILISGFGWQALFLVNVPLGLLTLLLAWRFLPAGYPAQKTGRVGFDGLGTLLLAFTLGAYALAMTLGRGSFGALNFGLLLAAVLSGGWFVRTQKRLASPLIPLPMFRDRLLVSSLATSALVAAIMMATLLVGPFYLAIALGLPPTTVGLVLAAGPCVAALAGMPAGRLADRFGVRLMRLVGLTTLMFGCLLLSLVPPALGIAGYAAAIVVTTLGYAMFQTANNTSVMAELPAHQRGAIAGLLNLSRNLGFLTGASVLGAVFASTLPTNGIGATTPGTAAHGLHVTFAIALAIAGLALLIALKYRDPEPSSQRQNANANANANA
D1-35_03428279hypothetical proteinATGAATAAAGGATCTTTCAGCAAGGTTACGTTCCCCAACGCCTGCCAATTGATGCGCTGGCATTTCCATCCCATGGGCTTCGAGGCCAGCATGGATGCGCCGGGCAGCATGGTTGCGCGGTTGTTCGACCGTGCCAGCGGCGAAACCATGATCGCGATTGCAGGCATCCCCTGCGCCACCGTGATGAACGCGCCCGATGTGGAGCGGATCATCGAAGCGGTGGAAGCCGAGCTTGAAGCCTTCGTACCGCCGGTTGGCTTGCGACGATTCGCTTCCTGAMNKGSFSKVTFPNACQLMRWHFHPMGFEASMDAPGSMVARLFDRASGETMIAIAGIPCATVMNAPDVERIIEAVEAELEAFVPPVGLRRFASNANANANANA
D1-35_034292469rep_2ATP-dependent DNA helicase RepGTGTCGCAACACACTCCCGATCTTCCTCCCGAACTCCTGCCACTGGCCCAGATGCCCTGGCTCAAGCGCCTGGCTGCGCGATTTTTTGGTCATGGCCTGACGCGCCTGCGCGCCCAGCATCGGGCGTCCTGGTTGCATGGCCAGGCCGATGGCTTTCGTAGCGGGCACACCGCGGGTTTTGATTATGGTTTCAAGGAAGGCAAAGCCGAAGGCCTGGAAGAGGGGCGTCAGGTCCTGCTGATCAGGGATTCGCGCAGCACCGAGCATCCGGGGCCTAAAGTCGACGATCTGTTGTTCGATGACTGGCGCCTGCCGCTTACCGCCGAACTGAAGAAGCGCATCAAGGCCGACGTCGCGCGCCTACTACCGGCGCATGCGCAACCCAGCAGTGCGCAGTGGAAGATGATTTTCAGCGATACCCCGGCGACGTCGGTCGTCGCGGGAGCAGGCGCAGGCAAGTCCACAACGCTGGTACTGCGCATCGTGCTGCTCTGTCATTACCTGGGGTTCGAGCTGGATTCGATGACCGTGGTCACGTTTACTCGCGAATCGCGCAAGGATTTCATGCAGAAGCTCATCGACATGTTTGCGCTTTGGGGGCATGCGATCAGCCTGGCGCAGGCACGCGAGCTGGTGCGCACGTTCCACTCGCGAATCCTGCCCATGGTGCGCAGCCTGCCTGGATTCGAACGGCTCCAGGCCTTCGAGGCGCTGAGCCTTCGCGCCGGGCCAAGTGACGATGGCGCCTTGGCCAGCCCATTCGACTTGCGCATCAACGAGGTCCAGCGCCAGCACCTCAACGCCTGTTATCACAGCCTCTACAAGCGTGACGAGCGTTTCCGCGAGCTGATCAAGCCGCTTTCCCGGCACGCCTTGCAGCTCAAGACGCTGGAGCGCGATCACCCGGATGTGCAGAAGCGGATAGCCGTGACTGAACTGGCGGCCCAGCGCGACGAAGCACTGTGCGACGCGATCGAGGATCTCTGGTTCAAGGCGGGCGCCTGGCCAATCAAGGGGATCGAGCCGAAACGCCAGGCCTTTGAAGTCAATGGTTCCAGGTTTCATTCCCACGGTTACGTTCCGTCGCTGGACGCCTGGGTAATGCTGGGTTTCGATCCACGTGAAGATTCTCGGCTCAGCCGGCCCGGCGCCAAGCTGAGCCTGCGCGCGGAATGGGCTGTAAAGCGGACCCTGTTTCAAGCTTTCTGCCGTAAACCTTTGATATGGCTAGATAGTTATGAGGAGTCCAGGCGCGTATTGGCCTCGTTGGCCGGGGATGCCAGTGCCGGTCCGGGGTTCGATTACAAGGTCAAGGGAGAGCTGGGCTCCGCCCCTTTGCTGGACTGTTTTGTCGCAGCGGCAGGGTTCATCGAGAATCTCGCCCTGGATGTCCCTGATGCCGTGGGCCAGATGAGTTTCTCCCATGACGATCCCGATCGGTATTTCTTCGAAGCGTTGAGCCGCTTCTGGCGCGCTTTCGAGGATCATCTGCTCGACCAGTCGCCGCCGGTCATGACCTACAACCGCATGTTTGCGCTGTTCAGCGAGCATTCAGAGGAAAACCTCAAGCTGCTCGACGACGCGCTGTTGCGGCCGATGGCCCACTTGATGATCGACGAGTTCCAGGATGTTTCGCCGCAGATCGTCTCCTGGATCCGAGCGAGCCTGCGCGAAGTGCGCAGGCGCGGTGCCGCGCTGCATGTGGGGCGCGCCGCCCAGCGTTCTTCGCTGTTGTGCGTGGGTGACGACTGGCAATCGATCTATGGCTGGCGGGGCAGTTCGCCAAGTTTCTTCATGGCCTTCAACAAGCAATTCCCGTCCCCGGCCAGCATGCGGGTGATGCTCACCGAAAACTACCGCAGCCATCAATACATCATCGACGCCGCCGAGCATGTCGTGCGCGCGGCGGCGGCCATGCCTGGCAAAAAAGCCAAGGCCAGCGGCGTGTCACGAACGCCAAGTCCGGTCAATGTGCTGGATCGGGATGACGAAGGGTTGGCGCGGCGGCTTGATGAGCATTACCGGAAGGGTGATTCGATCTTGATGCTGTATCGAAGAAGTAGCGACAAGTCATTGTTGGAAAAGCATATTCAGCCAATAGTTAATGTTGATTCTAGCTTGCCGGTGCCAATGAGGCGCTTCAGGCAAATGACTTATCACAGCGCGAAAGGCCTTGAGGCGGATGCGGTATTCCTGCTGGGTGACTGCCAGCATCTGACCAGTTCGCCGTACAAGAACCAGGTCTACCGGATGGCCGGGCTGGGCCAGGACGGCGACACCGAACCGTACGACACGGCGCAAAAAGATGAAATTCTGCGCTTGGCATACGTGGGGATCACGCGGGCGGTGCAGCATTGCTACTGGTATGTGGACGGCCAGGACAGTCAAGCCGCCAACGCGCCCAGAGCCTCGGACCGTGTCGCGGCGGGCAAGCCATTCTTTGTCGATCATCGCCGTGCGCGCGGCTGAMSQHTPDLPPELLPLAQMPWLKRLAARFFGHGLTRLRAQHRASWLHGQADGFRSGHTAGFDYGFKEGKAEGLEEGRQVLLIRDSRSTEHPGPKVDDLLFDDWRLPLTAELKKRIKADVARLLPAHAQPSSAQWKMIFSDTPATSVVAGAGAGKSTTLVLRIVLLCHYLGFELDSMTVVTFTRESRKDFMQKLIDMFALWGHAISLAQARELVRTFHSRILPMVRSLPGFERLQAFEALSLRAGPSDDGALASPFDLRINEVQRQHLNACYHSLYKRDERFRELIKPLSRHALQLKTLERDHPDVQKRIAVTELAAQRDEALCDAIEDLWFKAGAWPIKGIEPKRQAFEVNGSRFHSHGYVPSLDAWVMLGFDPREDSRLSRPGAKLSLRAEWAVKRTLFQAFCRKPLIWLDSYEESRRVLASLAGDASAGPGFDYKVKGELGSAPLLDCFVAAAGFIENLALDVPDAVGQMSFSHDDPDRYFFEALSRFWRAFEDHLLDQSPPVMTYNRMFALFSEHSEENLKLLDDALLRPMAHLMIDEFQDVSPQIVSWIRASLREVRRRGAALHVGRAAQRSSLLCVGDDWQSIYGWRGSSPSFFMAFNKQFPSPASMRVMLTENYRSHQYIIDAAEHVVRAAAAMPGKKAKASGVSRTPSPVNVLDRDDEGLARRLDEHYRKGDSILMLYRRSSDKSLLEKHIQPIVNVDSSLPVPMRRFRQMTYHSAKGLEADAVFLLGDCQHLTSSPYKNQVYRMAGLGQDGDTEPYDTAQKDEILRLAYVGITRAVQHCYWYVDGQDSQAANAPRASDRVAAGKPFFVDHRRARGNANANANANA
D1-35_034301647pgmCOG0033PhosphoglucomutaseATGACAGTCAGTCCATTTGCGGGCAAGCCGGCGCCGGCAGAGTTGTTGATCGATATCCCGCGACTGGTGACGGCGTATTACACCGGCCGGCCCGACGCCTCGATTGCGACCCAGCGCGTCGCGTTCGGCACTTCCGGGCACCGTGGCAGTTCGTTCGATCTGGGGTTTAACGAATGGCACGTACTGGCCATCAGTCAGGCGATCTGCCTGTACCGTGAAGCCCAGGGCATCGACGGACCGCTGTTTGTCGGTATCGACACTCATGCACTGTCGACTCCGGCGGGAGCCAGCGCGTTGGAAGTGCTGGCCGCCAATGGCGTGACCGTGATGATCGCCGAGGGTGACGAGTACACCCCGACGCCAGCGATTTCCCACGCCATCCTGTGCTACAACCGTGGCCGTACCACTGGGCTGGCTGACGGCATCGTCATTACGCCGTCGCACAATCCGCCGCAAAGTGGCGGCTACAAATACAACCCCACCAATGGCGGTCCGGCCGATACCCATATCACCAAATGGATTGAAGCCAAGGCCAACGAGCTGCTGGCCAACCAGTTGGTTGGCGTCAAGCGCATCAGCTACGAACAGGCGCTCAAGGCCGACACCACTCACCGTCACGATTACCTCAATACCTACGTGGCAGACCTCGGCAACGTCATCGATTTCGATGCGATCCGTGGTGCAGGGCTGCGCCTGGGCGTAGACCCGCTGGGCGGCGCTGGCGTGCGCTACTGGCCCGCCATCGCCGAGCACTATCGACTGGACCTGGAAGTGGTCAACACCCAGGTGGATTCCACCTTCCGCTTCATGACGGTCGATTGGGACGGGCAGATCCGCATGGACCCGTCCTCCAGCCACGCCATGCAAGGGTTGATCGGTTTGAAGGAGCGCTTCGACGTGGCCTTCGCCTGCGACCCGGATCATGACCGCCACGGCATCGTGACGCCGAGTGGCGGCTTGCTGGCGCCGAACAATTACCTGGCGGTCTCCATCGATTACCTGTTCCAGAATCGGCCGCAATGGCGTGCCGATGCGGCGGTCGGCAAGACCGTGGTCAGCAGCGGCTTGATCGACCGCGTGGCCAAGCGCCTGGGCCGCCGCCTCTATGAGGTGCCGGTGGGCTTCAAGTGGTTCGCCGACGGCCTGTTCGATGGTTCCCTTGGCTTTGGCGGAGAAGAAAGCGCCGGTGCCTCGTTCCTGCGCAAGGATGGCGGCGTATGGAGCACCGACAAGGATGGGCTGATCCCAGCCTTGTTGGCCGCTGAAATGACGGCTCGCACCGATCGCGACCCGAGCCAGGCCTATCGCGCCCTGACGGATGAGCTGGGCGAGCCGTTCTCGGTACGTGTCGATGCCAAGGCCAGCCCGCAGCAGAAAGCGCTGCTGAGCAAGCTGTCGCCGGATCAGGTCCAGTCCACTGAGCTGGCGGGCGAAACGATCCAGAGCATCCTCAGCCACGCCCCGGGTAACGACCAGGCCATCGGCGGCCTGAAAGTCATGACCGAAAATGGCTGGTTTGCCGCGCGTCCGTCCGGCACCGAGGACATCTACAAAATCTACGCCGAAAGCTTTATTGGCGACGAGCACCTGAAACAGCTGGTGGTCGAGGCCCAGGCGCTCGTGGATGGCGCAATTTCCGGGCAGTGAMTVSPFAGKPAPAELLIDIPRLVTAYYTGRPDASIATQRVAFGTSGHRGSSFDLGFNEWHVLAISQAICLYREAQGIDGPLFVGIDTHALSTPAGASALEVLAANGVTVMIAEGDEYTPTPAISHAILCYNRGRTTGLADGIVITPSHNPPQSGGYKYNPTNGGPADTHITKWIEAKANELLANQLVGVKRISYEQALKADTTHRHDYLNTYVADLGNVIDFDAIRGAGLRLGVDPLGGAGVRYWPAIAEHYRLDLEVVNTQVDSTFRFMTVDWDGQIRMDPSSSHAMQGLIGLKERFDVAFACDPDHDRHGIVTPSGGLLAPNNYLAVSIDYLFQNRPQWRADAAVGKTVVSSGLIDRVAKRLGRRLYEVPVGFKWFADGLFDGSLGFGGEESAGASFLRKDGGVWSTDKDGLIPALLAAEMTARTDRDPSQAYRALTDELGEPFSVRVDAKASPQQKALLSKLSPDQVQSTELAGETIQSILSHAPGNDQAIGGLKVMTENGWFAARPSGTEDIYKIYAESFIGDEHLKQLVVEAQALVDGAISGQPGPT0017710_3015DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0017710-pgm-K01835NANA
D1-35_034311398norG_5COG1167HTH-type transcriptional regulator NorGATGAAGGGCCACCGTGAAACAGACTTCACCTACCAGGCGGTTTATCGGTACCTGACGAACCTGATCAATGAGCTGGGCGCTGATGCTCGGGTGCGTCTGCCGTCATTGCGGCAGTTGGCCGAGCGCCTCAATGTCTCCATATCCACCATCCAGTACGCTTACTCCCTGCTGGAAAAGGAAGGGCGGGTCTATTCGATTGCCAAGTCCGGATACTACGCATTGCCGATGGTCAGCGTGTCCACTCTTGGCGATGGCGATGATTTGCTGGAGACCCTGTACGTCAACGCGCGTCGCCCAGGCATGCTGGTGCTCAGCGGTGATGAACCGGCTTCGTTGCAGCCGCTCGACAGTCCGCTTCTGTTGCTTGAACGCGAGCTCCTGCGCCAGTACCCCCGCGCTTCACAACATCCCCTGCAGCCCTGGGGAGAGCAGGAGTTGCGAACCGCACTGGCGGCACGCTACACCTCTTCACCGTCGCGATGCTGGAGTGCCGATGACGTCTATATCGGCGCTGACTTGCGCGGCGTTCTGGAAATCCTGATAGCGGTGCTGGCACTCAAGGGCAACACGGTGCTCGTGGAGTCGCCCTGCGAATGGACCGTCCTGCGTTTGTTGCAAGCGGCCGATATCCGCGTCATCGAGCTGCCCTTGCTGGACGAGGGGGAAATCGATATTGAACAGTTGGAGCGGTTGCTGGCGAATGAAACGGTATGCCTGATGATGGTGTCTTCGGTGTTGAGCATGCCCAGGAGCAGGTTGAAAAGTGCAGCCGACCGGCGAGCACTGGCGCGTCTGCTGGAACAGTACGGCACATGGGTACTGGAGAACGACAGCCATACGGAGCTGGTATTCGAGCCCGGCTCGTTGCCTTTTCGAGAGTGGCTCGACCCGGACCGGCTGATCGTGTATTCCACCTTCGAGACAACCATAGGGCCCGAGGCGCCCTACGGTTATGTGCTGTCGCGCCAGCTGACGCTGATGTTGCAGCGTCATTTCCTGTTGCGCGCATTTCGTCTTTCGCCGATTCGCCAGAAAGCGATTGCGCGTTTATACAACAATGGCCGGATCGACCAGCATCTACTGGTATTGCGACGCCTGCTACGCGAAAGCGCCACGTCGGCGACGCAACTGTTGCGCGAGCGAGTCGGAGACTGCCTGCAATGGGAGGAGCCCGAGGGCGGCGCAACAATCTGGGTACGCTCTTCACGCCAGGTCGATCTGCGGCGGGTTTTCCAACGGCTGCTCGCCCGGCGAATCGTCATCGCGCCGGGAGAGCTGTTCAGCACCCAAGGACGATATGACCAGCATTTTCGGTTGGCTCATGCTCTCGACGGCGTGGGCGGCCGGGAAGCGGCCTTCTGCGCACTGGCCGAGGCCCTGAGGCTCGAACAATCCTGAMKGHRETDFTYQAVYRYLTNLINELGADARVRLPSLRQLAERLNVSISTIQYAYSLLEKEGRVYSIAKSGYYALPMVSVSTLGDGDDLLETLYVNARRPGMLVLSGDEPASLQPLDSPLLLLERELLRQYPRASQHPLQPWGEQELRTALAARYTSSPSRCWSADDVYIGADLRGVLEILIAVLALKGNTVLVESPCEWTVLRLLQAADIRVIELPLLDEGEIDIEQLERLLANETVCLMMVSSVLSMPRSRLKSAADRRALARLLEQYGTWVLENDSHTELVFEPGSLPFREWLDPDRLIVYSTFETTIGPEAPYGYVLSRQLTLMLQRHFLLRAFRLSPIRQKAIARLYNNGRIDQHLLVLRRLLRESATSATQLLRERVGDCLQWEEPEGGATIWVRSSRQVDLRRVFQRLLARRIVIAPGELFSTQGRYDQHFRLAHALDGVGGREAAFCALAEALRLEQSNANANANANA
D1-35_034321485hypothetical proteinATGAGTGCAATTCATCAACAGGCAATGACTTACGTATATCAACAGGTATTGCAACGCTTGTTGGAATTTTATTCCCGTGCGGAACGGACCGCACTGCAGCTTCTGGTCCAGCGATTGATCGTCGCCGCTGGCGGTATTGAACGAATTGGCACCTATCGGGTGCTGGTGGCCCAGAATGGCAGTCGGGAGGGGTTCTATGCGCTGACGGCCCTGCGCGCCGCGCAGTTGAGCATTGCTGGCCGGCATCCGACGACTTTCGACCTGCGCGTCGCCACGCCACGCCTGGGCGAGATGACCCAGGCCACCCTGGAGAATATCCACTGTTGCTACAGCGCTCTGTTTCTCTACGACGACCCACGGGTAGAGCTGCTGATGGCGGACAATCGAGAGGTGGTGCCGTTTGATCGCTCCAAGCCGTTATCGGCGCAAGGGCGCGAGGCCAATCGCACTGACATGCTGATGCTTGGGCACCTGCGTTCCTCCGACAGCCTCCTGGGCGTGGGCGACGAAGGCTACCTGGCGATGGCGGAGTTCTACAAGAACATGGCTCGCTGGGATGCGGGCGTGGATTCATGGGTCAGTTGCGACACGCCACGCCAGCAAAAGCAGTTCCTGTCCGGGTTGCGCCGGGCGACCCGCAAGATCGGTCTGGTGTTTGAGCCCGTGGGTGGATTCGACGGCCTGTTTGCCCAATTCGATTTCCTGGGCAGTGACCTGTTCCGGCGTTTTTATGGCCAGGAGCACCTGGGTGTCTGGCAACCCGAAGGGCGGCTGGAGGCCTGCCGGCAAGTCGGGCACATCCGTATCGATGATCTGATCACCGAGCGGCTGGAAGAAAGCAACTGGGCGTTGTTCAGCGAATTCCTCGGCGTCAGCTCCGATGAGCTGGTTGCGCCATCGCTTGAGCATGAATACCTGAGTCCGTACCTCTCGGCCCACCTATGTGGCTTGCAGGCCTGTCATCAGCAGGAGCGCGGCTATGCGGCTGGCTACACCGATTACGTGCAACGCATGATCATGGTCATGCACCGCAAGCGTATGCCGGAGCCCGTCTGCCAGCAGGTCCAGGGGCTGTTGGGTGCACCGTCGGAGATTCCCGAGCGTCGAGCCGTGATCGCCCTGGAAACGGAAAAAAATCTGAATCTGAACGAAACGCAACTGGTCTGCATGCTGTTTGCGCCCTTCGTTGAAAAGGGCGCCGGCCTGGAGCATTTCCTGCGGTGCTGTCATCCCGGCATGCTGGTGGGCATGCCCGACCTGCACAGGGCGTTGCGGGGCGGCCCGGTCACGGATCAGGTGGCGCATTGGATGGTTGATGTCAGTGGCCTGCCCGTTGCAATGCTGTGCAAGTTGTACCGGGCCCGAATCACCACGCCGGAGCCGGAAATCATCCGGGCGGACCCGCAAACGGCCATGGAGGGCGCTGATACGGACCAGGGCGGGCAGGGCGCCGATGGTCCCGGCGAACGTGCAGCGCGGCGCTGAMSAIHQQAMTYVYQQVLQRLLEFYSRAERTALQLLVQRLIVAAGGIERIGTYRVLVAQNGSREGFYALTALRAAQLSIAGRHPTTFDLRVATPRLGEMTQATLENIHCCYSALFLYDDPRVELLMADNREVVPFDRSKPLSAQGREANRTDMLMLGHLRSSDSLLGVGDEGYLAMAEFYKNMARWDAGVDSWVSCDTPRQQKQFLSGLRRATRKIGLVFEPVGGFDGLFAQFDFLGSDLFRRFYGQEHLGVWQPEGRLEACRQVGHIRIDDLITERLEESNWALFSEFLGVSSDELVAPSLEHEYLSPYLSAHLCGLQACHQQERGYAAGYTDYVQRMIMVMHRKRMPEPVCQQVQGLLGAPSEIPERRAVIALETEKNLNLNETQLVCMLFAPFVEKGAGLEHFLRCCHPGMLVGMPDLHRALRGGPVTDQVAHWMVDVSGLPVAMLCKLYRARITTPEPEIIRADPQTAMEGADTDQGGQGADGPGERAARRNANANANANA
D1-35_034331026tdhL-threonine 3-dehydrogenaseATGTCCCGCACGATCCGTTTTCACAAGTTTGGTGGTGCCGAGGTGCTCAAATGCGAAGAGCATGCGGCGGCTCTTCCTGCGCCAGGAGAAGTGCAGGTCCGCGTCGAAGCGATCGGCATCAGTTGGTACGACACCCTGTGGCGCCAGAACCTGGCATCGTCCCAGGCGCGCCTGCCTTCAGGCCTTGGCCATGAAATGGCCGGCGTGGTGACAGCCGTCGGCGACGGGGTCGATGACTTGGCCGTAGGCGACAAAGTCGCCAGCTTCCCCGCCGAGAGCCCGAACGATTATCCGGTGTACGGTGAGGTCATCGTCCTGCCGCGCACCGCTTTGACCCGCTATCCCGACGTGCTCAGCCCGATCGAGGCCGCGGTCCATTACACGCCGCTGCTGATCGCCTATTTCGCCTACATGGACCTGGCAAGGGTCAAGCCCGGGCAGTTTGCGCTGGTGACCGATGCCAGCCATTGCGCCGGTCCTTCCTTCGTGCAACTTGGCAAGGCGTTGGGCGTGCGGGTGATCGCCGCCACCAAGACGGCTGAAGAGCGTGAATACCTGCTGTCGCTGGGCGCCGAAAAAGTCATCGTCACCGAAGAGCAGGACTTGTTGATGCAAATCAACAAGCTCACCGACAGCCGTGGCGTCGATGTGGTGTTCGACGGCTTGGGCGGGCCGCAGATGTCGCTGCTCGGCGATGTCCTGGCGCCCCGTGGCAGCCTGGTGCTGTATGGCTTGCAGGGCGGCAACCAGACACCGTTTCCAGCCTGCGCGGCGTTCCAGAAGAACATCCAGTTCTTTGTCCACTGCATCGGCAATTTCACCGGCAAGCCGGAGCTGGGCATTCTCCAGGACCAGGTCGCGTTGCAACGGGCGTTGCGTGATATCAACCAGTTGACCGCCGACCGTGTCCTGTTGCCCCTCAAGACTCGGGTGTTCCCGTTCTCCGAGTTCGTCGAGGCCCATCGGTACATGGGCGAATGTCCTTGCCGTGAACGCGTTGCCCTCCAGGTAGTCGACCCCGCCTGAMSRTIRFHKFGGAEVLKCEEHAAALPAPGEVQVRVEAIGISWYDTLWRQNLASSQARLPSGLGHEMAGVVTAVGDGVDDLAVGDKVASFPAESPNDYPVYGEVIVLPRTALTRYPDVLSPIEAAVHYTPLLIAYFAYMDLARVKPGQFALVTDASHCAGPSFVQLGKALGVRVIAATKTAEEREYLLSLGAEKVIVTEEQDLLMQINKLTDSRGVDVVFDGLGGPQMSLLGDVLAPRGSLVLYGLQGGNQTPFPACAAFQKNIQFFVHCIGNFTGKPELGILQDQVALQRALRDINQLTADRVLLPLKTRVFPFSEFVEAHRYMGECPCRERVALQVVDPANANANANANA
D1-35_03434915nodD2_4Nodulation protein D 2ATGAATCGTAATGACCTGCGTCGTGTCGACCTGAACCTGTTGATCGTGTTCGAAACATTGATGCATGAGCGCAGTGTGACCCGCGCCGCCGAGAAATTGTTCCTCGGCCAACCGGCCATCAGCGCCGCGCTGTCGCGCCTGCGCAGCCTGTTCGACGATCCGCTGTTCGTGCGCACCGGGCGCAGCATGGAGCCCACCGCGCGGGCGGTGGAAATCTTCGCCCTGCTCTCTCCGGCCCTGGATTCGATTTCCACGGCGGTCAGCCGGGCGGCGGAATTCGATCCTGCCACCAGCACCTCGGTCTTTCGCATCGGCCTGTCGGATGACGCCGAGTTCGCCCTGCTGCCGATGCTGCTCAAGCGCCTGCGGGCCGAAGCGCCAGGCATCGTGCTGGTGGTGCGCCGGGTCAATTACATCCTGATGCCGGGCTTGCTGGCCTCCGGCGAAATCTCCATCGGCGTCAGCTACACCGACGACCTGCCGGCCAACGCCAAGCGCAAGGTCTTGCGCCGCAGCTCGCCGAAAGTGCTGCGCGCCGACACCGCGCCGGGACGTCTGACGCTGGACGAATTCTGCGCCCGCCCCCATGCGTTGGTGTCCTTTGCCGGCGACTTGAGCGGGTTCATTGATGAAGAGTTGGAAAAGCTCGACCGCAAGCGCCATGTGGTATTGGCCGTACCGCAGTTCAACGGCCTGAGCACGCTGCTGTCGGGCACCGACATCATCGCCACCGTGCCCGACTACACCGCCGAAGCACTGACCGCCGCCGGCGGCGTGCGCGCTGAAGACCCACCGATCCCCGTGCGCAGCTTCGAACTGCACATGGCCTGGCGCGGCTCCCAGGACAACGACCCGGGCGAACGCTGGTTGAGATCGCGGATTCAGATGTTTTTTGGGGACCCTGAGAGTCTTTAGMNRNDLRRVDLNLLIVFETLMHERSVTRAAEKLFLGQPAISAALSRLRSLFDDPLFVRTGRSMEPTARAVEIFALLSPALDSISTAVSRAAEFDPATSTSVFRIGLSDDAEFALLPMLLKRLRAEAPGIVLVVRRVNYILMPGLLASGEISIGVSYTDDLPANAKRKVLRRSSPKVLRADTAPGRLTLDEFCARPHALVSFAGDLSGFIDEELEKLDRKRHVVLAVPQFNGLSTLLSGTDIIATVPDYTAEALTAAGGVRAEDPPIPVRSFELHMAWRGSQDNDPGERWLRSRIQMFFGDPESLPGPT0028130_494DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexEF-OprN,PGPT0028130-mexT-K18297NANA
D1-35_03435273hypothetical proteinGTGCTCACCCCTCACCAGGAACAGGTTATCCATGACTTGGTGCAGTCCGGCCGTTATCAGAATGCCAGCGAAGTGATGCGAGAAGGTTTACGTTTATTGGAGCAGCGTGTCGCCGAAGACAGCGCCAAAATCGAGGCCCTGCGTCAGGCGACCTCAATCGGCATCATGGATCTTGAGCACGGGCGCTTTACTCAGGTGACCGAAGGGGATCTGGAGCACTACCTCGAGGGCTTGAGCCTGGAGGCAGCCCTCCCCACGCGCGAGAAACACTGAMLTPHQEQVIHDLVQSGRYQNASEVMREGLRLLEQRVAEDSAKIEALRQATSIGIMDLEHGRFTQVTEGDLEHYLEGLSLEAALPTREKHPGPT0027540_170DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-ParE-ParD|paaAR_TOXIN-ANTITOXIN_SYSTEM,PGPT0027540-antitoxin_parD1_3_4-K07746NANA
D1-35_03436357hypothetical proteinATGCCGCAGTTTCGGATTTCCAACCCGGCGCGCGCCGACATTGTCGACATTCTCAGGCTCTCGCAGACGCAGTTCGGCGATCAAGCTCGTCAGCGCTACCAAGCGCTGATCCCCGCGGCGCTGCAAGCGCTTGCCGACACGCCTTATCGCATCGGCAGCCACGACCGCGATGAGCTTGCACCGGGCCTTCGCAGCTATCACCTCATCTATTCACGCCTGCAGGCCAAACAAACCCATGGAACGGTCAAAAGCCCACGCCATATCGTGTTCTATCGTGTGGCAAACGACGACGTGATCGAGGTCGTCAGGCTCCTTCATGACGCCATGGAAGTGCCGTTGCACTTGCCTAACGATTGAMPQFRISNPARADIVDILRLSQTQFGDQARQRYQALIPAALQALADTPYRIGSHDRDELAPGLRSYHLIYSRLQAKQTHGTVKSPRHIVFYRVANDDVIEVVRLLHDAMEVPLHLPNDPGPT0027550_121DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-ParE-ParD|paaAR_TOXIN-ANTITOXIN_SYSTEM,PGPT0027550-toxin_parE1_3_4-K19092NANA
D1-35_03437555hypothetical proteinATGTCGAAGCATTTGCTGTTGGGCTGGACCCGTTCCTTGTGCGTGCTTGCTGCCTTGAGCGGCGCGGCCACCCTGGCAGTTGCTGCCTCGCCTGAAAAAACCGCTACGACGGCATCGGATACGCAAGCGGTGTCCCTGGCAGGCGGCAAGCTGAAGTTCGTGCTGAACGGCGTCGAGGCCCGTACCTTGAACAGCGACAACGGCGGCACGATGTACTTCGATCCGAAAAGCGAGCGGGCCATCATCGTTACCGAAGGTCCGGCGCCGACTGCGGGCACCACCCAGGACGCTGCGTTTCGCCTTGCCGTGGATACCGTGAAGGAAAAGCAGCAGGCCGCGTCAGCCAACTTTCGCATGACTGGCGAGAAGACCATTCAGGTGAACGGCCTGAAGATGTACCGCCTGGACGGCACCGACGATTTCAACGGCCTGAAACTACTGATGGCCTCGTTGATGACGATGAACGATCAGAACATCACTATCATCGAAGTGATGTCCAGCGTAAACGACCCGTCCGGCCACACCGCTGCGTTGGAGAATATTCTGGGCAAGTAAMSKHLLLGWTRSLCVLAALSGAATLAVAASPEKTATTASDTQAVSLAGGKLKFVLNGVEARTLNSDNGGTMYFDPKSERAIIVTEGPAPTAGTTQDAAFRLAVDTVKEKQQAASANFRMTGEKTIQVNGLKMYRLDGTDDFNGLKLLMASLMTMNDQNITIIEVMSSVNDPSGHTAALENILGKNANANANANA
D1-35_03438114hypothetical proteinGTGGCCAATGTCTTCCAGGATTTCCCGGCGATACGACCCCGTGAAATGACGGGCGAATGGGTCCTCCTCGGCAGGCGGATCAACCGCATCAGCGCCACCCTCCAGAACCAATGAMANVFQDFPAIRPREMTGEWVLLGRRINRISATLQNQNANANANANA
D1-35_03439528dhmA_1Haloalkane dehalogenaseATGAAAACCGTTAAAGCCGGTGTTCTGGAAATCGCCTATCTGGAGGTCGGTCCGGTCGACGGGGCCCCCGTCGTGTTGCTCCACGGCTTCCCCTATGACGTGCATGCCTACGAAGAAGTCGCCAGGATCCTGGCTTCAGCTGGAAAGCGATGCTTGACGCCTTACCTTCGTGGCTACGGCCCCACCCGATTTCTGGATGAGCAGACAATGCGCTCTGGAGAGCAGGCGGCAATAGGAGCCGACCTGTTGGCTTTTCTCGACGCACTGAAAATCGAAAAAGCTGTACTTGCGGGTTATGACTGGGGCGGAAGAGCGGCTTGCATCGTCGCCGCGCTATGGCCGGAAAGGGTAAGCGGTTTGGTCAGCTGTGGTGGCTACAGTATTCAGAATATCGCTGAAGCGCACCAGCCTGTTTCTCCCGAGGCTGAGCACCTGCTCTGGTATCAGTACTATCTTCACGGTAGCCGTGGTCGCGCTGGATTGACCTCGAACAGAAAGGATTTCTGCCGCTTGTTATGGCGCATGTGAMKTVKAGVLEIAYLEVGPVDGAPVVLLHGFPYDVHAYEEVARILASAGKRCLTPYLRGYGPTRFLDEQTMRSGEQAAIGADLLAFLDALKIEKAVLAGYDWGGRAACIVAALWPERVSGLVSCGGYSIQNIAEAHQPVSPEAEHLLWYQYYLHGSRGRAGLTSNRKDFCRLLWRMNANANANANA
D1-35_03440969rhaR_2HTH-type transcriptional activator RhaRATGAAAAACCACAACATCAGCCATTTCCGCGATATTCATGTTCACGCCGCTACCGTCCAGGAGTGGAACCAGGATTACAACCAACTGACCGCCGGCTCGGCCGAGAGCTCGCTCATACAGCTGAGCACCGCGCGCTGCCACGTATTCCGCGAGAAGATCAACCAGCGTGTCGTGCAGCACGGCGTCGCGCCCCGGGGCAAGATGTGTTTCGCCGTGCCCATCACGGTTCCGGGTTCGATCCGGATGCAAGGGCGGGAGGTCGACGACAGCAGCCTGTTCTTCCTGCACGGGGGCGAGGAGTTCATGTTCCATATGCCGATGGGCATGGAGCTGCTGGCCATTACCTTCGAGCGCGAATGGTTCGAGCAGGCGCTGGCACAAACCACCTCGGCAAAGGAAATCGGTCAATTGCTGCGGCAGCCGGTCATCAGGCTGCCCACTCAACGTTATGCCGACGCCCGCCGTCGCATGCTGGCGGCATTCTCCCTGGCTGTCTCAAGCGAAGAGCTCGACCCGACGCAAGATCGCGAGCTGGCGCTGGAACAGGCCATGCTCGGCGAGTTGCTGCAACTGATGACCGATCCGGCCTGCGACAAGCAGCAGCGCACGCCAAGCTCGACGCGCAGTTACATTGTCGAAAAATGCCACCGTCTGGCGACCGCGGAACTGAACAACGTGCCCAGCGTGGACGACCTCTGCCAGCGCCTCCAGGTGAGCCGGCGTACCGTGCAGAACAGCTTCCGCTCGGTTGCCGAGACCACGCCAATCAACTATCTGCGCTCCGTCAGGCTCAACGGTGTGCGCCGGACCTTGATGTCTACCCGGGCGTCCCATCTGTCGATCGGCGACGCCGCCGCCCAATGGGGTTTTTATCACCTCAGCCATTTTGCCGCGGAGTATCAGGAGCTGTTCGCGGAATTGCCCTCCCATACTGCCCGCGCCGCCATTCCCGATTGCGCCCATGCCTGAMKNHNISHFRDIHVHAATVQEWNQDYNQLTAGSAESSLIQLSTARCHVFREKINQRVVQHGVAPRGKMCFAVPITVPGSIRMQGREVDDSSLFFLHGGEEFMFHMPMGMELLAITFEREWFEQALAQTTSAKEIGQLLRQPVIRLPTQRYADARRRMLAAFSLAVSSEELDPTQDRELALEQAMLGELLQLMTDPACDKQQRTPSSTRSYIVEKCHRLATAELNNVPSVDDLCQRLQVSRRTVQNSFRSVAETTPINYLRSVRLNGVRRTLMSTRASHLSIGDAAAQWGFYHLSHFAAEYQELFAELPSHTARAAIPDCAHAPGPT0000623_369DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-ETHANOLAMINE_USAGEN-AQUISITION-ETHANOLAMINE_DEGRADATION,PGPT0000623-eutR|yfeG-K04033NANA
D1-35_034411374COG0160Isoleucine 2-epimeraseATGAGTGAAGCCAAACTTGAATCCCTGCATTTTGCGGATGCCCCGCGGATCACCTCCGCCATTCCCGGCCCCCGGACCATCGAGGCCCTGGCGTTATCGGCGCGTACCGAGTCGATGGCGCGCGGCGGCGGACGCATGCCCGTGGCCATGGACCGGGCTTTTGGCGCGACCTTCAAGGACCCCGATGGCAACACCTATATCGACCTGTCCGCCGGCGTGGGCGTCAGCAGCGTAGGCCGCTGCCATCCGAAGGTGGTGCAAGCGATCCGTGAACAGTCCGAAGTGCTGATGCACGCCCTGGAAGTGAACAGTACCCGGCGCACCGAACTGGCGGCGAAGATTGCCGAAATCGCTCCCGACGGCTTGCGCGGCGATTGCATAACGTTCTTCACGCAAAGCGGCAGCGACGCGCTGGAAGCCGCGGTCAAGTTCGCCAAGCGCATTACCGGGCGGCATCAGATCATCGCTTTCCACGGTGGCTACCACGGCGTCTGGAACGCCTCGGGCGCGCTGACCACTGGCACGGCCTACCGCAAGGGCTACGGTGCCCAGATGGGCGGAGTCATTCATGCGCCCTACCCTTACGCCTATCGTTTTCCCTTCGACACCACGCACAAAAGCGCCGAGCAGATCGCCGGCGAATACGTGGATTACTTGCTGAACACCCCTTACACAGCGGCCGATGACGTGGCCGCGGTGATCGTCGAACCGGTCCAGGGCGAAGGCGGCTACGTGCCCCCGTCGCCAGAGTTCCTGCAATTGTTGCGCAAGGCCTGCGACCGCAGTGGCGCGTTGCTGATCGTCGATGAAGTGCAGTCCGGCGCGGGACGCACCGGCAAGATGTGGGCGGTCGAACATTCAGGCGTGAAGCCCGACATGCTCACCTTCGGCAAGGGCATCGGCAGCGACCTGCCGATGGCGGGCCTGATCATGCGCTCGGACCTGGCGGCGGCGATTCCTGACGGCTCGGTGCCCAATACCTTTGCCGCCAACTCACTCTCGGCGGCAGTGGCGCTGACCAATATCAGCATCCTCCAGGACCCCGAGCTCGACCTGCTCAACCGCGCCCACACGCTCGGGCTGGAAGCACAGGAACGCATCCGCGGTTTCGACAGCCCGTTCATCGGCGAGGTGCGCGGTCGCGGCCTGATGATCGGCATCGAGCTGGTCGAGGACCCGGTCACCAAGGCGCCGCTGGCGCCGGCCAGGATCGGCCAACTGATGGGCTACCTGCTGAACCACGGCGTACTGATGATTCCCTGCGGTCGCTACAGCAACGTGATGCGGGTGATGCCTTCGCTGACGATCCCACGCTCGATGTTCTTCAAGGCCCTGGACATTTTTGGCGACGCCCTGGCCACCCTCAAGGCATGAMSEAKLESLHFADAPRITSAIPGPRTIEALALSARTESMARGGGRMPVAMDRAFGATFKDPDGNTYIDLSAGVGVSSVGRCHPKVVQAIREQSEVLMHALEVNSTRRTELAAKIAEIAPDGLRGDCITFFTQSGSDALEAAVKFAKRITGRHQIIAFHGGYHGVWNASGALTTGTAYRKGYGAQMGGVIHAPYPYAYRFPFDTTHKSAEQIAGEYVDYLLNTPYTAADDVAAVIVEPVQGEGGYVPPSPEFLQLLRKACDRSGALLIVDEVQSGAGRTGKMWAVEHSGVKPDMLTFGKGIGSDLPMAGLIMRSDLAAAIPDGSVPNTFAANSLSAAVALTNISILQDPELDLLNRAHTLGLEAQERIRGFDSPFIGEVRGRGLMIGIELVEDPVTKAPLAPARIGQLMGYLLNHGVLMIPCGRYSNVMRVMPSLTIPRSMFFKALDIFGDALATLKAPGPT0007140_180DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSINSECTICIDAL_COMPOUNDSINSECTICIDAL-GAMMA-AMINOBUTYRIC_ACID_BIOSYNTHESIS,PGPT0007140-puuE-K00823NANA
D1-35_034421455puuC_3COG1012NADP/NAD-dependent aldehyde dehydrogenase PuuCATGACCCAGCACTTCAAGCACTTCATCGAAGGCGCGGCCGTCGAAGCCTCCGACGGCCGCCGCATCCCCCTCGTCGACCCCGTGACGGAACAGGCCTACGGCAGCTCAGCACGCGGCACCGCCAAGGACGTCGACCGTGCGGTGAACGCTGCACTCGACCAACTCGAGCGTGGCGCCTGGAGTCGGCTTGACGGCGCCCAGCGCGCGCGACTGCTGTCTAAACTGGCTGACCTGGTCGAGCGCGACACCGAACAGCTCGCCGACCTCGACGCCAATGCCATCGGCCGCTCCCCCCTCGAACCGCGCCGGATGGACATCCCCAACGCCGTTGCGAACCTGCGCGCCGCCGCCGGCTGGGCCAATCAGCTGGAGGGCCGGACCATCCCCTCCGGCGGCTATTTCGGCACCAGGACCCTGTCGTATACGGTGCGCGAACCGGTGGGCGTGGTCGGCGCCATCGTGCCCTGGAACTCACCGCTGATGATCACCGTCTGGAAGCTTGCCGCGTTACTCGCGGCAGGCTGCACGGTGGTCATCAAGCCTTCGGAAGAAACCCCGCAATCGGCCCTCCATCTGGCGGCGCTGGCCCAGGAAGCGGGCTTCCCCGACGGGGTGATCAACGTGGTCACCGGTTACGGCGATGAAGTTGGCCGTGCCCTGTGCGAACACCCGCACGTCGCCAAGATCAGCTTCACCGGCAGCCCCGAAGCGGGTCGCGAAATCCAGCGCACCGCCGGTGTGCTGTTCAAGCGCGTCGCCCTGGAGCTGGGCGGCAAGAGTCCGCAGATTGTCTTCGACGACGCACCCTTCGACGATGCGCTGCACGGCTGTTCGCTCGGCCTGTTCGTCAACCAGGGACAGATCTGCGCGGCCGGCTCGCGCATCCTGGTCCAGCGCGGCATCGCCGAGCGCTTCGCCGCGGCGCTTGCCGATGCGGCACGAGCGGTCAAGGTCGGTGATCCTCGGCAAGCTGGCATACAGATGGGCCCCGTGGCCAAAAAGGCCCAGTTCGAGCGCGTCAACCGGTACATCCAACTGGGCATCGAGCAAGGTGCCACGCTGTTGGCTGGCGGCGTATCGACGCCCGAAAGGGGCTGGTTTGTCCAACCGACCATCTTTGCCAATGCACGCAATGACATGGCGATCGCCCGGGACGAGATCTTCGGCCCGGTCGGCACCGTGATCACTTTCGACAGCGAAGACGAGGCTCTTGCCTTGGCCAACGATTCGGCCTACGGCCTGGCGGCGACGGTCTGGACCAACGACCTTGCAAAAGCGCATCGCGTGGCTGGCGCGGTGAAGGCCGGCGCCGTGGGCGTCAACTGCTGGAGCCCGCTGGACGCCAACCTGCCTTGGGGCGGGGTGAAAGCCAGCGGCATTGGCCGTGAGGGCGGATTTTCCGGCGCGTTGGCCTACACCGAAGAAAAAGTCATCACCGTATTGCTGCCCACCTGAMTQHFKHFIEGAAVEASDGRRIPLVDPVTEQAYGSSARGTAKDVDRAVNAALDQLERGAWSRLDGAQRARLLSKLADLVERDTEQLADLDANAIGRSPLEPRRMDIPNAVANLRAAAGWANQLEGRTIPSGGYFGTRTLSYTVREPVGVVGAIVPWNSPLMITVWKLAALLAAGCTVVIKPSEETPQSALHLAALAQEAGFPDGVINVVTGYGDEVGRALCEHPHVAKISFTGSPEAGREIQRTAGVLFKRVALELGGKSPQIVFDDAPFDDALHGCSLGLFVNQGQICAAGSRILVQRGIAERFAAALADAARAVKVGDPRQAGIQMGPVAKKAQFERVNRYIQLGIEQGATLLAGGVSTPERGWFVQPTIFANARNDMAIARDEIFGPVGTVITFDSEDEALALANDSAYGLAATVWTNDLAKAHRVAGAVKAGAVGVNCWSPLDANLPWGGVKASGIGREGGFSGALAYTEEKVITVLLPTPGPT0006035_781DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_LIGNIN_DEGRADATION|LIGNINASESPLANT_LIGNIN_DEGRADATION-DEHYDROGENASE_ACTIVITY,PGPT0006035-feaB-K00146NANA
D1-35_03443564yceJ_2COG3038Cytochrome b561ATGAATCCGGCAAATCAAACCCCTGTTGATCGGTATCCTACATCCCTGCGACTCCTGCATTGGACGCGCGCCGTGCTCATCGCAGGCCTGCTCTGGGCAGGCTGGCACATGACCGGGCTGGATGACGAAGTGGCGAGCAAATACGAGCTTTATTATCCGTGGCACAAATCGTTCGGGGTGTTGGCATTCTTGCTGGTCCTGGTCCAGATCGTCTTGCGCGTGCGAACCCCCAGGCTGCCGCAGCCGCCGGAATCATTGGCGCGCTATGAACGGGTTTCGTCAAGACTTGCGCACCGTACCTTGTATGCGCTGCTGGTGATCGTGCCGTTGATGGGCTATTCGATGTCGAGCACCTACACGATGAGCGACGGGGTGTTCTTCTTTGGCGTGAACCTCCCGGAGCTCCTTGGCAAAAATGACGATTGGTTCGTTGTCTTCCAGTGGCTGCACAAGGTGCTCGCCTACACGCTGCTCGGCCTGATCCTGCTGCACGTTGCCGGCGCGCTCAAACACCGGTTCCTCGACCGCGATCCCCGAAGCGACGTGCTGCGCCGCATGCTCTGAMNPANQTPVDRYPTSLRLLHWTRAVLIAGLLWAGWHMTGLDDEVASKYELYYPWHKSFGVLAFLLVLVQIVLRVRTPRLPQPPESLARYERVSSRLAHRTLYALLVIVPLMGYSMSSTYTMSDGVFFFGVNLPELLGKNDDWFVVFQWLHKVLAYTLLGLILLHVAGALKHRFLDRDPRSDVLRRMLNANANANANA
D1-35_03444987acuICOG0604Acrylyl-CoA reductase AcuIATGACCTTCAAAGCGCTGATTTGCACCAAAACCGCTGACGTGATTTCCACCAGCCTGGTCGACTTCAAGGATGAGGACCTGATGGCCGGCGACGTCACCGTCGCGATCGAGTACTCCACCGTCAATTACAAGGACGCCTTGGCGCTTAGCGGTCGCACACCAGTGATCCGCCAATTTCCGCTGATTCCCGGCATCGACTTTGCCGGCGTTGTCGAAAGCTCAAGTCATGCCGCTTTCCAGGCTGGCGATCGGGTGCTGCTCAACGGCTGGGGGCTGAGCCAGACCCACCACGGCGGCTTTGCCCAGAAGGCGCGCGTGAGCGGCGACTGGCTGGTGAAGGTTCCGGAGGTTTTTTCGACCCGCCAGGCCATGGCCATCGGCACCGCCGGCTATACCGCGATGCTTAGTGTGTTGGCCCTGGAGCACGGTGGCCTGACGCCTGAGCGTGGCGACGTTCTGGTGACCGGCGCCAACGGCGGCGCGGGCTCGGTTGCAATCGCACTGTTGTCGGGCCTGGGCTATCGGGTGATTGCCTCGACCGGCCGCCCGGAAGAAGCCGATTATCTGCGCGATCTAGGCGCCTTCGAGATCATCGATCGCCACACCTTGTCCGAGCCGGGTGCTCCGGTTGCCAAGGAGCGTTGGGCCGGCGTCATCGATTCGGTCGGTAGCCATACCTTGGTCAACGCCTTGGCACAGACTCGATATCGTGGCGTTGTCGCCGCTTTCGGCCTGGCCCAGGGGGCGGATCTGCCCGGCTCGGTGCTGCCCTTCATCCTGCGCAACGTGACCCTCGCCGGTATCGACTCGGTGAACGCTCCGCAAGACGTCCGCCTGCAGGCATGGGCGCGACTGGCCCGGGATCTCGACGTGAACAAGCTCGCCCGGACCACGCAGGTCGTCGGCCTGGCGCAGGTTCCGCAGGTCGCCGCTCAGGTGCTGGAAGGAAAGGTACGCGGGCGTACGGTCGTTGATGTGAACGCATAAMTFKALICTKTADVISTSLVDFKDEDLMAGDVTVAIEYSTVNYKDALALSGRTPVIRQFPLIPGIDFAGVVESSSHAAFQAGDRVLLNGWGLSQTHHGGFAQKARVSGDWLVKVPEVFSTRQAMAIGTAGYTAMLSVLALEHGGLTPERGDVLVTGANGGAGSVAIALLSGLGYRVIASTGRPEEADYLRDLGAFEIIDRHTLSEPGAPVAKERWAGVIDSVGSHTLVNALAQTRYRGVVAAFGLAQGADLPGSVLPFILRNVTLAGIDSVNAPQDVRLQAWARLARDLDVNKLARTTQVVGLAQVPQVAAQVLEGKVRGRTVVDVNAPGPT0002275_1173DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PROPIONIC_ACID_BIOSYNTHESIS,PGPT0002275-acuI|yhdH-K19745NANA
D1-35_03445813hcaB_23-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenaseATGACCACCATTAAACCCGTAGCGTTGGTGACCGGCGCTTCGTCCGGCATCGGGGAGGCCATTGCGAACCGACTCGCGGCGGCTGGCTACTCCGTATATGGCACTAGCCGGCGAGGTACACCGGCGCTTCATCAGGCATTTTCGATGCTGGCGCTGGACGTGACCGACGACGCCAGCGTCCACGCAGCTGTCGCCGAGCTGCTGCGCCGGGAAGGGCGTATCGATTTGCTGGTCAACAATGCCGGCTTCGGGCTTGCTCCGGCCGCGGCGGAAGAAAGCTCGATCGAGCAGGCCAAGGCCGTCTTCGATACCAATTTTCTCGGTGTCGTGCGCATGACCCGCGCCGTTGTGCCCCACATGCGACGTCAGGGCAGCGGTCGAATCATCAACATCGGCTCCATTCTTGGTGTCGTATCCGTACCTTATGTGGCGCTCTACGTGGCCAGCAAACATGCGGTGGATGGCTATTCCCAAGCGCTGGACCACGAGTTGCGTACCCATGGCATCCGGGTGGTCGTCATCGAGCCCGGCTATACGCGCACGGCATTCGAAAGCAACAGCCTGCAGGCCGACGCCAAGCTGGACGTGTATGAGGACATTCGGGTTAAGGTAACGAAGGTCGTCAACCAGGCAATGGCGACCGCCGAGGGCCCCGACGTGGTGGCTGACGTGGTGCTCAAGGCTGCTCGCGCCGAGCGGCCGAAGCTGCGTTACACCGCCGGCAAGACAGCCGCGCAGTTGCAGTTCATGCGTCGCTTCGCGCCGGCTGGCGTGCTGGACACGGGCATCCGCAAGGCCCTGCAGCTCGCGTGAMTTIKPVALVTGASSGIGEAIANRLAAAGYSVYGTSRRGTPALHQAFSMLALDVTDDASVHAAVAELLRREGRIDLLVNNAGFGLAPAAAEESSIEQAKAVFDTNFLGVVRMTRAVVPHMRRQGSGRIINIGSILGVVSVPYVALYVASKHAVDGYSQALDHELRTHGIRVVVIEPGYTRTAFESNSLQADAKLDVYEDIRVKVTKVVNQAMATAEGPDVVADVVLKAARAERPKLRYTAGKTAAQLQFMRRFAPAGVLDTGIRKALQLANANANANANA
D1-35_03446612hypothetical proteinGTGGGCGGTATCGACACCCTGATCGGTGGCACCGGCAGCGACACCTACGTGGTGGACGATCTTGAGGACATCATCAGTGAAACCAGCACCCTGGCCAGTGAGGTCGACACCGTGCGCTCGTCGGTGGACTGGAGCCTGGGGGCGAACCTGGAAAACCTCACGCTCACCGGGGCCGCGGCCGTCAATGCTACTGGCAATGACCTGAGCAACGTGCTGATCGGCAACGCAGGCAACAACGTGCTGGATGGCGGGGCGGGCAACGATAGCGTTGATGGCGGAGCCGGCGCTGATGTCCTCATCGGCGGAGATGGCGCTGACCGTTTTGTTTTCAGCGTGCTGAATGAGCTGGGCATAGGTAGCACTCGCGACAGTATCTTCGACTTCAACAGTCTTCAGGGCGACAAGATTGACCTGTCGAAACTGGATGCCAGTCTCCTGACGCCGCTGAACGATACGTTCAGCTTTATCGACTCGGCTGATTTTACCGGGGCCGGGCAATTACGCTTCGTCGACCACGTGCTTTATGGCAACGTCAATGGCGACCTGAACGCGGATTTCGAGATTCAGTTGCTAGGCGTCAATTCCTTGAGCTCGAACGATCTGCTGGCTTGAMGGIDTLIGGTGSDTYVVDDLEDIISETSTLASEVDTVRSSVDWSLGANLENLTLTGAAAVNATGNDLSNVLIGNAGNNVLDGGAGNDSVDGGAGADVLIGGDGADRFVFSVLNELGIGSTRDSIFDFNSLQGDKIDLSKLDASLLTPLNDTFSFIDSADFTGAGQLRFVDHVLYGNVNGDLNADFEIQLLGVNSLSSNDLLAPGPT0027825_32DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0027825-prtC-K01406NANA
D1-35_034471341tolC_1COG1538Outer membrane protein TolCATGAGATCTCTGATCATCCTGTGCGCGATCCTCGCGCCGCTCGGCGCCCTTGCGGACAGCGTGCCAACGTCTTCCCACGTGGATCTGTGGCAATTGCATCAGGAAGCGCAGGGCGCCGATCCACGCGTTCTGCGAGCACAGGCCTTGATTCGCAGCGGGAAGGGCAACGAGCGCGCCGCGTTCGGCCAACTGCTGCCGCAGCTCAACGCCAGCGGTAGCGTCAATCGCAGCCGGCGTGACGATGATGTCAGCCGCATCCAGTACAACGGCAAGCGCATGGCCGTGGTGCTCAACCAAGTGATCTACGATCCGCAGGTCTGGCGCAGCTACCGCAAATATGTGGAGCTGGCCCGGCAGAGTGAATACGAATCCGACGACACCCAGGTGCAGGCCAGTATCGATTTGTCTGAACGCTACTTTGCCGTTCTCGCGGCCGAGGATGAACTGTCCCTGGTGCGCAGTGAACTGGACGCAACCGAGCGCAACCTCAAGCGAATAAATGCCTTGTATGCGCGCCAGATGGCGATGGTAACCGACAGGCTTGATCTCGAGGCCCGCGTGGATGCGCTCAAGGCAGACGAGATCGAAGCCAGCAACAAGGTTGCGATCAGTCGTGAGGCTATTTCCGAGCTGGTGGGGCGTGATGTCCATGAGCCGTTCAAGCGCATCGCAGAGAATCCTGCCTTCAGCCTGCCGGCGCAAGCACAGGACTATTGGGTGCATGCAGCGCTCGATAGCAACCCGGCACTGCATGCCCGCGAACACAGTATCCTTGCAGCCGAGGCGGCTGTTGGTGAAGCCAGGGCCGGTCATCTGCCCAGGCTGGGCCTGAATCTCACGGCGCAACGTAGTGACATCGGCTACGAAGGTGCCTTGACTCCCCGCACGGATAACCTGGTCGCTTCCCTTGATTTGCAAGTGCCTCTCTACAGTGGCGGCTCCACCCGCGCGCGGGTGTCCAGTTCGGAAAGCGACAAGGAGGTCGCCCAGCAGGAATTGGAGGCCTTGCGCCGCCAGGTCATCAAGGAAACTCGCACTGCCTATCTGGGCATGACGGCCGAACTCAGCCGTATCAAGGCGACCCGACGCGCCCTGGAGTCCGCGGAAAAGTCCAGAATAGCTACCGAGAAAGCCTTCAACTACGGCGTCAAGCATGCCGTGGACGTGCTGGATAGTATCCAGGAAGAGTTTCGTGCACGACGCGATTTCTATCAGTCCCAATACCGCTTCGTGACCAGTCTGCTCGTGCTGCATCGCTGGAGTGGAAGATTGGCAGACGAGGATATCCGCAAGGCCAACGACTGGCTGGTTGCGCCTTGGTCAGACCGTTCGGCACAATAAMRSLIILCAILAPLGALADSVPTSSHVDLWQLHQEAQGADPRVLRAQALIRSGKGNERAAFGQLLPQLNASGSVNRSRRDDDVSRIQYNGKRMAVVLNQVIYDPQVWRSYRKYVELARQSEYESDDTQVQASIDLSERYFAVLAAEDELSLVRSELDATERNLKRINALYARQMAMVTDRLDLEARVDALKADEIEASNKVAISREAISELVGRDVHEPFKRIAENPAFSLPAQAQDYWVHAALDSNPALHAREHSILAAEAAVGEARAGHLPRLGLNLTAQRSDIGYEGALTPRTDNLVASLDLQVPLYSGGSTRARVSSSESDKEVAQQELEALRRQVIKETRTAYLGMTAELSRIKATRRALESAEKSRIATEKAFNYGVKHAVDVLDSIQEEFRARRDFYQSQYRFVTSLLVLHRWSGRLADEDIRKANDWLVAPWSDRSAQPGPT0003600_4172DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_I_SECRETION_SYSTEMSCE-TSS1-AlgE-TYPE_MANNURONAN_C-5-EPIMERASE_TRANSPORT,PGPT0003600-tolC-K12340NANA
D1-35_034481332prsE_4Type I secretion system membrane fusion protein PrsEATGGGCAGCGTTATGCAAAACAGTAAGCAGTTTTCCGTTGATGTGGCCGGGTTGGCCATAGATGACAGGCCGGTACGGCGCATCGGTTACTCCTTGCTGCTGGTCACCTTTGGCCTGTTTGGCGGCTGGGCGGCCCTGGCGCCGCTGGACAGCGCAGCCCTCGCGCCGGGTGTGGTCACGGTAAAAAGCTATCGCAAGACTGTGCAGCATCTTGAAGGCGGCATCGTGCGCGAGCTACGTGTGCGTGAGGGTGACCTGGTGAAAGCGGGCGATGTGCTGCTGGTGCTTGACAATACCCAGGCCCGTTCGGAGATGGAGGCGATGCGCAGCCAATTGATTGCTGCGCTCGAACTCGAAGCCCGACTGGTGGCGGAGCGTGACGCGTTGCCGGAGCCGCTGGCCGTGTCCACCCTCGACCCCGCCGACCCGCGCGTTCACGAAGCCCGCGACAGTGAAGCGCGGATCTTCCAGGCCCGAAGGACCTCGCTGCAGGGCGAAATTGCCTTGCAGGAGAAGTCCATCGGCCAGATCGAAGAGCAGATTCGAGGCTATAAGGCCATCGTCGCCAGCAAGCAAGCGCTGGCCACGTCTTATGAAGAAGAGATTGTCGACCTGCGTGCATTGTTGGCCGAAGGCTACGTGGATAAACAACGTCTGCGCGAGCAGGAGCGCAGCCTGTCGCGCTTGCAGGCCGAAATAGCCGAAAGCCAGTCGGAGAGCGCACGAGCGCGCGTCCATGCGGACGAAGCGCAACTGAAGATTCTCCAGCTGAAAAAAACCTTCGCCAGTGAAGTGGCAGGTTTGCTGGGTGAAGCGCGAAGCAAGGTCTACGAGTTGCGCGAACGACTGGCCACCTTGCAGGATCGCGACCAGCGCACCGACATCCTCGCCCCGGAGTCAGGCCGGGTCATAGGGATGACCGTGCACACCCTGGGCGCCGTGGTCAGCCCTGGGACCGCCCTGTTGGACATTGTCCCGGCCAATGAAGAGCTGATTGTCGAGGCGCAGGTTTCGACCGTGGACATCGACCGTATCGCGCCGGGCAGGCTGGCGGACATTCGCTTCAGCGCGTTCAAGAGCAGCACCACGCCTGTCATCGAAGGGCAACTGGTGCAGATATCGGCGGATCGTCTGGTCAACCAGGACACCGGCACGGCTTATTACCTGGCGCGTGTAGCGTTGACCGACAAGGGACGCCAGGCGCTGGGCGAACGTGCCCTGGTGCCGGGGATGCCGGTCGAAGTGCTGATCAACACAGGGGCGCGGACGTTGTTGGAGTACCTGATGCAGCCTGCCAGCAATGCTTTCGCCCGTTCGATGATCGAGGATTGAMGSVMQNSKQFSVDVAGLAIDDRPVRRIGYSLLLVTFGLFGGWAALAPLDSAALAPGVVTVKSYRKTVQHLEGGIVRELRVREGDLVKAGDVLLVLDNTQARSEMEAMRSQLIAALELEARLVAERDALPEPLAVSTLDPADPRVHEARDSEARIFQARRTSLQGEIALQEKSIGQIEEQIRGYKAIVASKQALATSYEEEIVDLRALLAEGYVDKQRLREQERSLSRLQAEIAESQSESARARVHADEAQLKILQLKKTFASEVAGLLGEARSKVYELRERLATLQDRDQRTDILAPESGRVIGMTVHTLGAVVSPGTALLDIVPANEELIVEAQVSTVDIDRIAPGRLADIRFSAFKSSTTPVIEGQLVQISADRLVNQDTGTAYYLARVALTDKGRQALGERALVPGMPVEVLINTGARTLLEYLMQPASNAFARSMIEDPGPT0029390_633DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_I_SECRETION_SYSTEMSCE-TSS1-HEMOPHORE|METALLOPROTEASE_TRANSPORT,PGPT0029390-hasE|prtE-K12537NANA
D1-35_034491749prsD_2Type I secretion system ATP-binding protein PrsDATGTCAGCCCACACCCGGACCGAGTTGGAAGGCGCGCTTGCCGCATGCAAGGGCAGCTTTCTTTCCGTGGCCTTTTTCAGTTTTTTCGTCAATTTGCTGATGTTGGTCCCCTCGTTCTACATGTTGCAGGTGTATGACCGCGCGGTAGCCAGCGCCAGCCTGTCCACCCTGTTGATGCTGACGCTGATCATGTTGCTGTTGATGAGCACGATGGGCGGCCTGGAATGGGTTCGTTCGCGGATCATGGTACGAATCAGCACGCGCCTCGACACGCTGCTGGGGCAGCGTCTGTTCGACGCCAGTTTCAGGCAGGCACTCAATACCAGCGGCATGGACGCCACAGCACAGCCATTGAGCGACCTGAACGCGTTGCGCCAGTTCCTGACCGGCAACGGTCTCTTTGCGTTTTTCGATACGCCATGGATTCCAATCTATCTGGCCGTCATGTTCATCTTCCATCCCTGGTACGGTTGGATGGGGTTGTTGAGCGCGGTCCTGCTGGGGGCGCTGGCCTTCGTCAACGAAAAGCTCACGCAAGTGCCGCTGCAGGATGCCAATCGCGAGCAGATGGCCGCCACCGCTTTTACCAACAAAAGCTTGCGCAATGCCGAGGTGGTCGAGTCGATGGGCATGCTTGCCAGCCTTCGCGAACACTGGAGCAGGCGGGTCCATACAGTGTTATCCCTGCAAAGCCTGGCCAGCGACCGCGCCACGACCGTTGCGGCGATATCCAGGACGTTCCGCCAGATTGTGCAATCGCTGGTGTTGGGCCTGGGCGCTTACTTGACAATCAATCATGAAATCACGCCCGGACTGATGATCGCCGGCTCCATTTTGCTGGGCCGCGCGCTGGCCCCCATCGACCAGTTGATTGGTGTGTGGAAAAACTTCCTGGGCGCACGCTCGCAATACGCACGACTGCATGAGTTGCTGGCCAGGCACGCCGCGGATCCGGAGCGCATGTCACTGCCTGCGCCGGAGGGCGCGGTCCGCGTCGAGGGCCTTTCGGTCGGTTCTCCGGGCAGTCGTAAACCGATTATCCGTGGCCTGGACTTCAACGTAGCTCCTGGAGAAGCAGTGGGCATCATTGGCCCCAGTGGGGCAGGCAAATCGACGCTGGCCAGGGCGTTGCTGGGAATCTGGCCAAGTCTGACCGGCACCGTGCGCCTGGACGGCGCGGACATCAGCCAATGGCGCCGGGAGGAGCTGGGTGCGTATATCGGTTACTTGCCGCAGGACATCGAACTGTTCGAAGGCACCATCAGCCAGAACATTTCGCGTTTCGGCCCGATGGACGCTTCTGCGGTGGTCGCCGCCGCACGCATGGCCGGGGTGCATGAGATGGTGCTGCAATTGCCCGATGGCTACGACACGCTGATTGGTGCCAACGGCGGTGGACTGTCCGGCGGGCAGCGCCAGCGTGTCGGGCTGGCCCGCGCCTTGTACGGCGAACCGCGCCTGGTAGTGCTCGATGAACCGAATTCCAACCTGGACGACGCCGGAGAAAAAATGCTCGCCGAGGCGCTGCGAAAGCTCAGGCAGAGCCGGGCCACGGTGTTTGTCATTACCCATCGATCCGGGATATTGGCCCAGGTGGATAAATTACTGGTTCTCAACCATGGCGAAAGGAGCCTGTTCGGGCCTCGCGACAGTGTCATGGCGCGGCTGCAGGGCGCTACGCCTGCGGCTCGCCAGGCTGGAGCCATTGAGCCGCAGGATGCGGATGGGCAGCGTTATGCAAAACAGTAAMSAHTRTELEGALAACKGSFLSVAFFSFFVNLLMLVPSFYMLQVYDRAVASASLSTLLMLTLIMLLLMSTMGGLEWVRSRIMVRISTRLDTLLGQRLFDASFRQALNTSGMDATAQPLSDLNALRQFLTGNGLFAFFDTPWIPIYLAVMFIFHPWYGWMGLLSAVLLGALAFVNEKLTQVPLQDANREQMAATAFTNKSLRNAEVVESMGMLASLREHWSRRVHTVLSLQSLASDRATTVAAISRTFRQIVQSLVLGLGAYLTINHEITPGLMIAGSILLGRALAPIDQLIGVWKNFLGARSQYARLHELLARHAADPERMSLPAPEGAVRVEGLSVGSPGSRKPIIRGLDFNVAPGEAVGIIGPSGAGKSTLARALLGIWPSLTGTVRLDGADISQWRREELGAYIGYLPQDIELFEGTISQNISRFGPMDASAVVAAARMAGVHEMVLQLPDGYDTLIGANGGGLSGGQRQRVGLARALYGEPRLVVLDEPNSNLDDAGEKMLAEALRKLRQSRATVFVITHRSGILAQVDKLLVLNHGERSLFGPRDSVMARLQGATPAARQAGAIEPQDADGQRYAKQPGPT0029385_1097DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_I_SECRETION_SYSTEMSCE-TSS1-HEMOPHORE|METALLOPROTEASE_TRANSPORT,PGPT0029385-hasD|prtD|-K12536NANA
D1-35_03450765hypothetical proteinATGAGCCGGATCCCACGCGTATTGAATGGTCGTCCCAAGGCACTCTGGCGGCTCTGCTTTTCGCTTTTGTCATTGGTTATCCTTCATGCGCACGGTGAGCCACAAGTCATCGAGCTGCACATCCCGGACGCACCGCCGCTGACGTTCATCAACGACCCCAGGGGGTACGGCATCGTCGGTGACGTCGCGGTGCAGGCGATTACCCGGGCCGGGTATACGCCAAAGATCCACCTGCTGCCTTGGGCAAGGGCACAAAAACATGTCAGCGAAGAACACGACTACCTGATAGCTCCCTTGTCGCGCATTCCTGTGCGCGAGGATCGCTTCAGCTGGATCGCTTCGATCATGCCCATGGAGCGCGCCTTCTTCAGCCTCGACCGGCAGGTCACCAGTTTCGCCCAGGCGAAAGCAACCTACCGCAAGATCGGCGTCGGCCTGGGCAGTGCACAGGAGGACATCCTGCGCGCCGAAGGCTTCAGCGACGAACAGATCTACCCGCTGGCCATCGGTGACAACCCTGCCCAGATGCTGCTGATGGGACGTATCGATGCCTGGTTCAACGGTGTTCCGGAGAGTCGCTATATCTGGCCGAAGGTGTCCAGGCGCAAACTGCTGATGAGCCCGGTTGGCAGCAGCGCCGACCTCTATCTGGCGTGTTCCAGGCGCTGCTCCGAAAAAATCGTCGAAGACTTGCGTGGGGCCGTCGAGGCGCTGCGCAAGGACGGCACGATCAAGCGGATACGTGAGGTATATCTGCCTGACTGAMSRIPRVLNGRPKALWRLCFSLLSLVILHAHGEPQVIELHIPDAPPLTFINDPRGYGIVGDVAVQAITRAGYTPKIHLLPWARAQKHVSEEHDYLIAPLSRIPVREDRFSWIASIMPMERAFFSLDRQVTSFAQAKATYRKIGVGLGSAQEDILRAEGFSDEQIYPLAIGDNPAQMLLMGRIDAWFNGVPESRYIWPKVSRRKLLMSPVGSSADLYLACSRRCSEKIVEDLRGAVEALRKDGTIKRIREVYLPDPGPT0020800_13592DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-35_034511254bepFEfflux pump periplasmic linker BepFATGGAACATTCACTTTCTAAATTGCGCTTTCCCCTGGCACTGTTGGCAGTGCTGGTGATCAGCGCGTGCGGCAAGACCCCCGACACGGCAGCTTCGATGCCGGCGGCCAAAGTCAGTGTGGCCAAGGTACTGGAGCAACCCGTCAACGAATGGGACGAGTTCACCGGGCGCCTCGAAGCGCCGGAAACCGTCGAGATCCGCCCGCGGGTTTCCGGGCAGATCGATGAAGTGGCCTTCACCGAAGGCGCGCTGGTCAAGAAAGGCGACCTGCTGTTCCAGATCGACCCGCGCCCGTTCCAGGCTGAAGTGCGTCGTCTCGAAGCCCAACTGGCCCAGGCTCGCGCCACCGCGACCCGCAGCGAGAACGAGGCCCAGCGCGGCGAACGCCTGCGCTTGAGCAATGCGATTTCCGCCGAACTGGCGGATTCGCGCACCACCGCAGCCCAGGAAGCCCGCGCCGCCGTGGCCGGCATCCAGGCGCAACTGGACCTGGCCAAGCTGAACCTCAGCTTCACCCGGGTCACCTCGCCCATCAACGGCCGTGTCAGCCGGGCGGAAATCACCGCCGGCAACCTGGTGACCGCCGACGTCACGCCGCTGACCAGCGTGGTCTCCACCGACAAGGTCTACGCCTATTTCGACGCCGACGAGCGCGTCTTCCTCAAGTACACCCAACTCGCCCGCCAGGGCCAGCGCGGCCAGGCCACGCCGGTCTACATGGGCCTGTCCAACGAGGAAGGCAACCCGCACCTGGGCCAGATGAACTTCGTCGACAACCAGGTCAACCCGCAGACCGGCACCATCCGTGGCCGCGCGGTGTTCGACAACAAGGACGGCGCCTACACCCCTGGCCTGTACGCCCGACTGAAACTGGTGGGCAGCGGCACCTACTCCGCCGTACTGATCAACGACGAAGCCGTCGGCACCGACCTGGGCAAGAAATTCGTGCTGGTGATGGACGCCGACAACAAGCCGGCGTACCGCGCCGTCGAGCTGGGGCCGAAGATCGAAGGCCTGCGTATCGTGCGCAACGGCCTGAGCAAGGACGACACCATTATCGTCAAGGGACTGCAACGGGCCCGTCCGGGTTCGCCGGTCACGCCTGAAACCGTGCCGATGGCCAGCGAGCAGACACTCGCCGCCCTGGCACAACAACGTAAAGCGCTCGAAGCCAGCAATCTGCCCCAGGTCGCGCCCAACAAGGCAGCGTCCGGCTCCGCAGGCAAACTGGCTTCTGCGTCCCCACGCGGCTAAMEHSLSKLRFPLALLAVLVISACGKTPDTAASMPAAKVSVAKVLEQPVNEWDEFTGRLEAPETVEIRPRVSGQIDEVAFTEGALVKKGDLLFQIDPRPFQAEVRRLEAQLAQARATATRSENEAQRGERLRLSNAISAELADSRTTAAQEARAAVAGIQAQLDLAKLNLSFTRVTSPINGRVSRAEITAGNLVTADVTPLTSVVSTDKVYAYFDADERVFLKYTQLARQGQRGQATPVYMGLSNEEGNPHLGQMNFVDNQVNPQTGTIRGRAVFDNKDGAYTPGLYARLKLVGSGTYSAVLINDEAVGTDLGKKFVLVMDADNKPAYRAVELGPKIEGLRIVRNGLSKDDTIIVKGLQRARPGSPVTPETVPMASEQTLAALAQQRKALEASNLPQVAPNKAASGSAGKLASASPRGPGPT0028870_52DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexEF-OprN,PGPT0028870-mexE-K18298NANA
D1-35_034523180oqxB27multidrug efflux RND transporter permease subunit OqxB27ATGAAATTTTCCCAGTTCTTCATTTCGCGGCCGATCTTCGCAGCGGTGCTCTCGCTGCTGATCCTGATCGCCGGTGCGATCTCGCTGTTCCAGCTGCCGATCAGCGAATACCCCGAAGTCGTGCCGCCGACCGTGGTCGTGCGCGCCAACTTCCCCGGTGCCAACCCCAAGGTCATCGGTGAAACCGTAGCCGCGCCTTTGGAACAAGCCATCACCGGTGTCGAGAACATGCTCTACATGTCCTCGCAGTCCACCGCCGACGGCAAGATCACCCTGACCATCACCTTCGCCCTGGGCACCGACCTGGACAACGCCCAAGTGCAGGTACAGAACCGCGTCACCCGCACCGAGCCCAAGTTGCCGGAGGAAGTGACCCGGATCGGCATCACGGTGGACAAGGCGTCGCCCGACCTGACGATGGTCGTGCACTTGACCTCGCCGGACAAACGCTACGACATGCTTTATCTGTCCAACTACGCCTTGCTCAACATCAAGGATGAGCTGGCGCGCCTCGGCGGCGTCGGTGATGTGCAGTTGTTCGGCATGGGCGACTATTCGCTGCGGGTCTGGCTGGATCCGAACAAGACTGCGTCGCGCAACCTGACCGCTACCGACGTTGTCACGGCGATCCGCGAGCAGAACCGCCAGGTTGCCGCCGGTGCCCTGGGCGCGCCTCCAGCGCCGAATGCCCAGGCGTTCCAACTCTCGGTCAACACCCAGGGGCGCCTGGTCAGCGAGGAAGAGTTCGAGAACATCATCATCCGTTCCGGCGCCAATGGTGAAATCACTCGCCTGAAAGACATCGCACGGGTGGAGCTGGGCTCCAGCCAATACGCCCTGCGTTCGCTGCTCGACAACCAGCCGGCGGTGGCGATCCCGATCTTCCAGCGCCCGGGTTCCAATGCCATCCAGATTTCCAACGATGTGCGCGAGAAAATGGATGAGCTGAAAAAAGGCTTCCCGGCCGGCATGGACTACAGCATCGTCTATGACCCGACGATCTTCGTGCGCGGCTCCATCGAAGCGGTGGTGCATACCCTGTTCGAAGCGCTGATCCTCGTGGTGCTGGTGGTGATCCTGTTCCTGCAGACCTGGCGCGCCTCGATCATCCCGCTGGTGGCAGTGCCGGTGTCGCTGATCGGTACATTCGCGGTCATGCACCTGTTCGGCTTCTCACTCAATGCGCTGTCGCTGTTCGGGCTGGTACTGGCCATCGGTATCGTCGTGGATGACGCCATCGTGGTGGTGGAGAACGTCGAACGAAACATCGGCCTCGGGCTCACGCCGGTGGAAGCCACCAAGCGCGCCATGGGCGAAGTGACCGGGCCGATCATCGCCACGGCACTCGTACTGTGTGCGGTATTCGTTCCCGCCGCCTTCATCAGCGGCTTGACCGGGCAGTTCTACAAACAGTTTGCCTTGACCATTGCCATCTCGACGGTGATCTCGGCGTTCAACTCGCTGACCCTGTCGCCAGCCCTGGCCGCGGTATTGCTCAAGAGCCATGACGCGCCCAAGGACCGTTTCTCGCGGCTCCTCGACAAGATCTTCGGCGGCTGGCTGTTCCGTCCGTTCAACCGCTTCTTCGACCGCGCCAGCCACGGTTACGTGGGCACCGTCGGCCGCGTGATCCGCAGCAGCGGCATTGCCCTGATCGTTTACGCTGGCTTGATGGTGCTGACCTTCTTCGGTTTCTCCAACACGCCAACCGGTTTCGTGCCTGGCCAGGACAAGCAATACCTGGTGGCCTTCGCGCAACTGCCCGACGCCGCGAGCCTGGACCGCACCGAAGACGTGATCAAGCGCATGTCCGAAATGGCCCTCAAGCAGCCGGGCGTTGAAAGCGCGGTGGCCTTCCCGGGCCTGTCGATCAACGGCTTCACCAACAGCCCGAACGCCGGCATCGTCTTCGTGACCCTCAAGCCTTTTGATGAGCGCAAGGACGCGAGTATGTCGGCCGGTGCCATCGCTGGTGCGTTGAACGGCCAGTATTCGGAGATCCAGGAAGCCTACATGGCGATCTTCCCGCCGCCGCCGGTACAGGGCCTGGGCACGATCGGTGGTTTCCGCCTGCAAATCGAAGACCGGGGCAACCTGGGCTACGACGAGCTGTACAAAGAAACGATGAACATCATCACCAAGAGCCACAACGTGCCGGAACTGGCCGGGTTGTTCACCAGCTACACGGTGAACGTGCCTCAGGTCGATGCCGCCATCGATCGTGAAAAAGCCAAGACCCACGGCGTAGCCGTCAGCGACATCTTCGACACCCTGCAGATCTACCTGGGTTCGCTGTATGCCAACGACTTCAACCGCTTCGGCCGTACCTACCAGGTCAACGTCCAGGCCGAGCAACAGTTCCGCCTCGAGTCGGACCAGATCGGCCAGCTCAAGGTGCGCAACAACCGTGGCGAGATGATCCCGCTGGCGACCTTCATCAAGGTCAGCGACACCTCGGGGCCGGACCGCGTGATGCACTACAACGGCTTCATCACCGCTGAAATCAACGGTGCCGCCGCCCCGGGCTACAGCTCCGGCCAGGCTGAAAAAGCCATCGAGAAACTGCTCAAGGACGAATTGCCCAACGGCATGACGTACGAGTGGACCGACCTGACGTACCAGCAGATTCTTTCGGGCAACACCGCGTTGTTCGTGTTCCCGCTCTGCGTATTGCTGGCGTTCCTGGTGCTCGCGGCCCAATACGAAAGCTGGAGCCTGCCTCTGGCGGTGATCCTGATCGTACCGATGACGCTGCTGTCGGCGATTACCGGGGTGATTCTCTCCGGTGGCGACAACAACATCTTCACCCAGATCGGCTTGATCGTACTGGTCGGACTGGCCTGCAAGAACGCGATTCTGATCGTCGAGTTCGCCAAGGATAAACAGCTCGAAGGCATGACCCCGCTGGCTGCGGTACTGGAAGCTTGCCGCCTGCGTCTGCGGCCGATCCTGATGACCTCCTTCGCCTTCATCATGGGCGTGGTGCCCCTGGTGCTCTCCAGCGGCGCCGGTGCGGAAATGCGCCACGCCATGGGTGTCGCGGTGTTCTCGGGCATGCTTGGGGTGACCTTCTTCGGCCTGCTGCTGACCCCGGTGTTCTACGTATTGATCCGTAACTTCGTCGAGCGCAGCGAGGCCCGCAAAGCGGCCCGGGCCTTGAAACTGGAGGCGCAACAATGAMKFSQFFISRPIFAAVLSLLILIAGAISLFQLPISEYPEVVPPTVVVRANFPGANPKVIGETVAAPLEQAITGVENMLYMSSQSTADGKITLTITFALGTDLDNAQVQVQNRVTRTEPKLPEEVTRIGITVDKASPDLTMVVHLTSPDKRYDMLYLSNYALLNIKDELARLGGVGDVQLFGMGDYSLRVWLDPNKTASRNLTATDVVTAIREQNRQVAAGALGAPPAPNAQAFQLSVNTQGRLVSEEEFENIIIRSGANGEITRLKDIARVELGSSQYALRSLLDNQPAVAIPIFQRPGSNAIQISNDVREKMDELKKGFPAGMDYSIVYDPTIFVRGSIEAVVHTLFEALILVVLVVILFLQTWRASIIPLVAVPVSLIGTFAVMHLFGFSLNALSLFGLVLAIGIVVDDAIVVVENVERNIGLGLTPVEATKRAMGEVTGPIIATALVLCAVFVPAAFISGLTGQFYKQFALTIAISTVISAFNSLTLSPALAAVLLKSHDAPKDRFSRLLDKIFGGWLFRPFNRFFDRASHGYVGTVGRVIRSSGIALIVYAGLMVLTFFGFSNTPTGFVPGQDKQYLVAFAQLPDAASLDRTEDVIKRMSEMALKQPGVESAVAFPGLSINGFTNSPNAGIVFVTLKPFDERKDASMSAGAIAGALNGQYSEIQEAYMAIFPPPPVQGLGTIGGFRLQIEDRGNLGYDELYKETMNIITKSHNVPELAGLFTSYTVNVPQVDAAIDREKAKTHGVAVSDIFDTLQIYLGSLYANDFNRFGRTYQVNVQAEQQFRLESDQIGQLKVRNNRGEMIPLATFIKVSDTSGPDRVMHYNGFITAEINGAAAPGYSSGQAEKAIEKLLKDELPNGMTYEWTDLTYQQILSGNTALFVFPLCVLLAFLVLAAQYESWSLPLAVILIVPMTLLSAITGVILSGGDNNIFTQIGLIVLVGLACKNAILIVEFAKDKQLEGMTPLAAVLEACRLRLRPILMTSFAFIMGVVPLVLSSGAGAEMRHAMGVAVFSGMLGVTFFGLLLTPVFYVLIRNFVERSEARKAARALKLEAQQPGPT0028875_193DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexEF-OprN,PGPT0028875-mexF-K18299NANA
D1-35_034531425ttgI_2Toluene efflux pump outer membrane protein TtgIATGAGTTTGAAAGCGTTCCTGCCGAGCTTGCTGGTCCTGGCGTTAAGCGCCTGCGCCGTGGGCCCGGACTACCAGGCACCGAAAACGGAGGCGGCCAACATCACCGCCGCCACCGACGGCGCCGCCGGCCAGAAGAACTTCGACCGCGCGCGGTTCGAAGGTATCTGGTGGCAGCAGTTCGACGACCCGACCCTCAACGCGTTGGTGACTCGCTCCCTGGACGGCAACCGCGAGTTGCGCGTGGCCTTCGCCCGCCTGCGGGCCGCCCGGGCGATTCGCGACGACGCCAGCAATGATGCAATGCCGACCATCACCAGCCGCGCCAGCAGCGAACTGGGCAAAGGCCAGAACCCGATGGGGCAGACCGACGACCGGGTCAACTCCGAGCGTTATGACCTGGGCCTGGACATGGCCTGGGAACTGGACCTGTTCGGCCGCATCCAGCGCAACCTGGAAGCGACCGATGCCGACCAGCAGGCCGCCGAGGCCGATCTCTATCAGTTGCAGGTGAGCATGATCGCCGAACTCGTGGATGCCTACGGCCAGCTGCGCGGCGCCCAACTGCGTGAAAAAATCGCCCTGGCCAACCTGCAGAACCAGCAGGAGTCACGCAAGATCACCGAAAGCCTGCGTGATGCCGGCGTCGGCGATCAGCTCGACGTGGTGCGTGCCGATGCGCGCCTGGCCGCGGTGGAAGCCAGCGTGCCGCAACTGCAAGCCGAACAGGCGCGCCAGCGCAACCGCATCGCGACATTGCTGGGCGAGCGTCCGGACAAGCTGAGCGTGGACCTGAGCCCTAAACAGCTGCCGGCGATTGCCAAGGCCCTGCCGATTGGCGACCCCGGGCAACTGCTGCAACGCCGTCCGGATGTCCTGAGTGCCGAGCGTCAACTGGCAGCTGCCACGGCGCGCATCGGCGTGGCCAAGGCCGACCTGTTCCCAAGGGTCAGCCTCAGCGGCTTCCTCGGCTTCACCGCCGGGCGTGGCTCGCAGATCGGTTCCTCGGCGGCCAATGCCTGGGCGCTGGGTCCAAGCATTACCTGGGCCGCGTTCGACCTGGGCAGTGTGCGAGCGCGCTTGCGCGGTGCCAGCGCCGAGGCTGATGGCGCCCTGGCGAACTATGAACAGCAGGTGCTGCTGGCCCTGGAAGAGTCGGAAAACGCCTTCAGCGATTACGGCAAACGCCAACAGCGGCTGATCTCGCTGATCCGCCAGAGCGAATCGAGCCGCGCGGCCGCCGACCTGGCCGAGATTCGCTACCGTGAAGGCACCGAGGACTTCCTCGTGCTGCTCGACGCCCAGCGTGAACGCCTCGCTGCCGAGGACAGCCAGGCCCAGGCCGAAGTGGACCTGTATCGCGGCATCGTCGCGATCTACAAGGCCCTGGGCGGCGGCTGGCAACCGGAAACCGTCGCCAGCAACTGAMSLKAFLPSLLVLALSACAVGPDYQAPKTEAANITAATDGAAGQKNFDRARFEGIWWQQFDDPTLNALVTRSLDGNRELRVAFARLRAARAIRDDASNDAMPTITSRASSELGKGQNPMGQTDDRVNSERYDLGLDMAWELDLFGRIQRNLEATDADQQAAEADLYQLQVSMIAELVDAYGQLRGAQLREKIALANLQNQQESRKITESLRDAGVGDQLDVVRADARLAAVEASVPQLQAEQARQRNRIATLLGERPDKLSVDLSPKQLPAIAKALPIGDPGQLLQRRPDVLSAERQLAAATARIGVAKADLFPRVSLSGFLGFTAGRGSQIGSSAANAWALGPSITWAAFDLGSVRARLRGASAEADGALANYEQQVLLALEESENAFSDYGKRQQRLISLIRQSESSRAAADLAEIRYREGTEDFLVLLDAQRERLAAEDSQAQAEVDLYRGIVAIYKALGGGWQPETVASNPGPT0028880_290DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexEF-OprN,PGPT0028880-oprN-K18300NANA
D1-35_034541056bepA_2Beta-barrel assembly-enhancing proteaseATGTCCTCGTCTCGCCGCTATCTGCTCCTCAGCCTCGCCGTCGTCCTGGTCATCGGTCTCGTCGCGATATGGCTACGCAGCACCACGCCGCAAATCCCCGAAGCAATCAAGCGTGGTTACAGTGAGGCCCTGGACAACGCCCGCAACGGCCAGCCCGGCGCGGCGCGGATGCTTTACCAGCAACTCGGACGCCCGGACCTCTCGCCCAAGCGCCGCGTACGCTTGCACGCCGAGCTGCCCAACTACCCGAGCCCCCAGGCACTGAAACTGGCACAAGCGGACTTGCAGAGCGAATCGCCGCAGGTGCGCCGCGCGGCCATCGACAGCATCGTCGGGCTGGTACCGAACGCCCAGCGCAGCCTGTTGCTCGGCCCACTCCTGGACGATAACGAGCCGGACGTCCGGTTCGCCGCGGTGAATGCCTTGCTGGGGCTTTCGCCGGATGAACTGGGCCTGTACTTCGGCGCGATGCAGATCGCCGCCGACACCTGGAAGCAAGTGCTCAACGACGCTCCACCCACCACCGAGTCCCTGTATCAGCTTGCCCGGCTGTACCTGCATAACGCTGATCTGGAAAAAGCCCAGCAGGCGCTGGAGCAGGCCCTGCGCCTGCAGCCGGACAACCTGCCGGCGCTGGTCATGCAGGTCGATGTGCTGGACCGACAAGGCCAGGCCGAAGCTGCACGACAACTGCTCGCCCGGCAGTTGCAGACCCAGCCGGCATCGGCTTATCTGCAACATGCGCTGGGCATGTGGCTGCTCCAGCACGGGCAGACCGAATACGCCGTGCTTGGCCTGGCCAAGGCGGTGGAGCTTGAGCCTGAGAACCGGCACTACCGCTATGACCTGGCGACCACTTTGCATGCCGAGCAGGAGGTGGAAGCCGCGCAGAAACAGCTCCAGGAAATTGTCCAGCGCTACCCTGCCGACCGCAAGGCGCGGGTATTGCTGATCAATTATTGGAAGGAGACCGGTCAGTTGCAGCATGTCCAGGTTTTATTGGCCCAACTGGAACAACTGAACCCCGACGACCCGGCGATACAACAAGGCCTGTAGMSSSRRYLLLSLAVVLVIGLVAIWLRSTTPQIPEAIKRGYSEALDNARNGQPGAARMLYQQLGRPDLSPKRRVRLHAELPNYPSPQALKLAQADLQSESPQVRRAAIDSIVGLVPNAQRSLLLGPLLDDNEPDVRFAAVNALLGLSPDELGLYFGAMQIAADTWKQVLNDAPPTTESLYQLARLYLHNADLEKAQQALEQALRLQPDNLPALVMQVDVLDRQGQAEAARQLLARQLQTQPASAYLQHALGMWLLQHGQTEYAVLGLAKAVELEPENRHYRYDLATTLHAEQEVEAAQKQLQEIVQRYPADRKARVLLINYWKETGQLQHVQVLLAQLEQLNPDDPAIQQGLNANANANANA
D1-35_034551503kaiC_2Circadian clock protein kinase KaiCTTGATTACATCTAACGAGTCGATCAGCGCAAAAGCCGCCACCGGGATCGAAGGGCTGGACGATGTCCTTTCCGGTGGTTTGTCCCTGGGTCACGTGTTTCTCCTGGAGGGAGAGCCGGGTACCGGTAAAACCACGGTCGCGTTGCATTTCCTGATGGCCGGCGCCAAGGCCGGCGAACGCTCGTTGTATATCACGCTGTCGGAAACCGAGCGTGAATTGCGTCAGGGCGCGGCCTCCCATGGATGGACGCTCGATGAGAGCATCCACATCTTCGAGCTGACCCCGCCCGAGAGCCTGCTCAACGCCGATCAGCAGCAGAGCCTGCTGTATTCCTCCGACCTGGAACTGGGGGAAGCGACCCGGCAGATCTTCGAAGTGGTGGAGCGCATCAAGCCGACCCGGGTCGTGCTGGACAGTCTTTCGGAGATTCGCCTGCTGGCGCAGAGCTCTCTGCGCTACCGTCGGCAGATCCTCGCGATCAAACACTACTTCGTGCGTTATGACGCCACGGTCCTGCTCCTGGATGACCTGACCACTGAATCCCTGGACAAGACCGTGCACAGCGTGGCCCACGGCGTCATTCGCCTCGAGGAACTGACCCCCAACTACGGTGCCGAACGGCGCCGGCTGCGGGTGGTCAAGTATCGCGGGCAGAAATACCGTGGCGGTTACCACGATTTCACCATCATGAGCGACGGCCTGCACGTCTTCCCTCGCCTGGTGGCCGCCGAGCATCGCGGCCAGTACCTGCGTCAGCAGCTGTCCAGCGGCATCGGCGAAATGGACGCCCTGTTGGGCGGTGGCATCGAGACCGGCTCCAGCACGCTGATTCTCGGTCCGGCCGGTACCGGCAAATCGCTGATCTCGTTGATCTTTGCTGCAGCTGCCGTACGCCGCGGAGAAAAAGCCGCGCTGTTCATCTTCGACGAAGAGCTGGGGCTGCTGTTCGAGCGCATGAAAAACATCGGCATCGATCTGCACGAATTGCAAAAAACCGGCAATCTGCTGATCGAGCAGGTCGATGCCGCGGAGCTGTCTCCGGGTGAGTTTTCCCATCGTGTGCGGCGTTGCGTCAGTGACGGCAATATCAAGACCGTGGTGATCGACAGCATCAACGGCTACCAGGCCGCCATGCCGGAAGAAAACGCCCTGGTCTTGCATATGCATGAGCTGTTGCTCTACCTCAACCGCAAAGGCGCGGCGACCTTCATGACCGTCGCGCAACACGGGCTGGTGGGCGACATGCAGGCGCCAGTGGACATTACCTACCTCGCCGACACCGTCATCCTGCTGCGTTACTTCGAAGCGCTGGGCAAGGTTCGCCGGGCGGTTTCCGTTATCAAGAAGCGCACCGGCGCCCATGAGTCGACTATCCGTGAATATCGCATCAGCAAGCTGGGCATGACCATCGGCCAACCGCTGGAAGCGTTCCAGGGCGTGTTGCGTGGCGTACCGACCTATATGGGTGCGGACAACCCATTGCTTGAGGATGGCACTCCGTGAMITSNESISAKAATGIEGLDDVLSGGLSLGHVFLLEGEPGTGKTTVALHFLMAGAKAGERSLYITLSETERELRQGAASHGWTLDESIHIFELTPPESLLNADQQQSLLYSSDLELGEATRQIFEVVERIKPTRVVLDSLSEIRLLAQSSLRYRRQILAIKHYFVRYDATVLLLDDLTTESLDKTVHSVAHGVIRLEELTPNYGAERRRLRVVKYRGQKYRGGYHDFTIMSDGLHVFPRLVAAEHRGQYLRQQLSSGIGEMDALLGGGIETGSSTLILGPAGTGKSLISLIFAAAAVRRGEKAALFIFDEELGLLFERMKNIGIDLHELQKTGNLLIEQVDAAELSPGEFSHRVRRCVSDGNIKTVVIDSINGYQAAMPEENALVLHMHELLLYLNRKGAATFMTVAQHGLVGDMQAPVDITYLADTVILLRYFEALGKVRRAVSVIKKRTGAHESTIREYRISKLGMTIGQPLEAFQGVLRGVPTYMGADNPLLEDGTPPGPT0030523_530PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-ENVIRONMENTAL_RYTHMICS_SIGNALLINGPUTATIVE-CLOCK-ASSOCIATED_HISTIDINE_KINASE,PGPT0030523-kaiC-K08482
D1-35_034561671rcsC_15Sensor histidine kinase RcsCGTGACGTCGGCCGAGCCACTGTCCGAGCGGGCGCTGATTCTCGCGCCGCTCGGACGGGACAGCCAGATTGCCCTGATGATTCTCAAGGAAGCCGGTTTCAACGGCCTCGTTTGCAGTCATCTGGGCCATTTATGCGAAGAATTGGGGCAAGGCGCAGGCCTTTTGGTGATTTCATCGGAAGCCCTGGTCGGGCCGGATCTGGAGACCCTGTTCCAGCACATCGAACAGCAGCCGGCCTGGTCCGACTTGCCGATTGTCCTGCTGACTCATCACGGTGGCCCGGAGCAGAACCCGGTGGCACGCATCGGCGTGCAGCTGGGCAACGTGACGTTCCTGGAGCGTCCGTTCCATCCGGTGACGCTCGTCAGCCTGGTGACCACCGCGTTGCGCGGACGCCGCAGGCAATACGAAGCGCGGGACCGGCTGATCGACCTGAGCAACAGCGAGCTGCGCCTGCAAACGACCCTCGAAACCCTGGAACAACAGGTCGAGGAGCGCACCGCCCAGCTGCGTCATAACGAAGAAGCCCTGCGCCAGTCGCAGAAAATGGAAGCAGTCGGCCAATTGACCGGCGGCATCGCCCATGACTTCAACAACATGCTCACCGGCATCATCGGCAGCCTCGAACTGCTGCGCCGACGCCTGGCGCGCGGCCGCACCGAAGACCTGGACAGCCTGATCGACCTGGGCGTGACCTCGGCCAACCGCGCGGCAGGCCTGACGCATCGGCTGCTGGCCTTTTCCCGGCGGCAATCGCTGGACTCCAAGGCTGTGCAAATGAACACGCTCGTATTATCCATGGGCGAGTTGCTGCAGCGCAGCCTCAACGAGAGTATCCGCCTGGAGATGCAACTGGACGAGCAGCTCTGGATCGCCGAAGCCGACCCCAATCAACTGGAAAGCGCCCTGCTCAACCTGGTACTCAACGCCCGCGATGCCATGCCCGGTGGCGGCAAACTGCTGGTGCAGACGTTCAATCGTTACCTGGACACCGGCTTCACCGACGCCTACACCAACCTGGAGCCCGGGGACTACGTGGTGTTAAGCGTGCAGGATAGCGGATGCGGCATGCCGGAATCGGTGATGCACCGTGCGTTCGATCCTTTCTTCACGACCAAGCCGATCGGCCAGGGCACCGGCCTGGGTCTTTCGATGATCTATGGCTTCAGCAAGCAGTCCCGTGGCCACGTGACCATCGACAGCGAGGTCGACAAAGGCACCACCGTAAACCTTTATCTGCCGCGCTTTGTGGGCGAGGAGATACACGAACCGGCCGTCGCCACCCAGCAGGCGCCTTATGCGCAGGATGGCGAAACCGTGCTCATCGTCGAAGATGATGCGGCGGTGCGGGTGTTGGTCAGCGCAGTGCTGAGCGAGTTGGGCTACGCCTTCGTCGAGGCCGGAGACGCAAACGCGGCGATGCCGATCCTGCAATCGAACCAGCGCATCGACCTGTTGATCAGCGATGTGGGCCTGCCCGGCATGAATGGGCGGCAACTGGCCGAAATCGGCCGGCAGATCCGCCCCGATCTGAAAGTGCTGTTCATCACCGGTTACGCCGAACACGCGGCGGTGCGCGGTGGTTTCCTCGACCCAGGCATGCAGATGATCACCAAGCCGTTCACGTTTGATCTGTTGACGGCGAAGGTGCGGGAGATGATCAAGGTTTGAMTSAEPLSERALILAPLGRDSQIALMILKEAGFNGLVCSHLGHLCEELGQGAGLLVISSEALVGPDLETLFQHIEQQPAWSDLPIVLLTHHGGPEQNPVARIGVQLGNVTFLERPFHPVTLVSLVTTALRGRRRQYEARDRLIDLSNSELRLQTTLETLEQQVEERTAQLRHNEEALRQSQKMEAVGQLTGGIAHDFNNMLTGIIGSLELLRRRLARGRTEDLDSLIDLGVTSANRAAGLTHRLLAFSRRQSLDSKAVQMNTLVLSMGELLQRSLNESIRLEMQLDEQLWIAEADPNQLESALLNLVLNARDAMPGGGKLLVQTFNRYLDTGFTDAYTNLEPGDYVVLSVQDSGCGMPESVMHRAFDPFFTTKPIGQGTGLGLSMIYGFSKQSRGHVTIDSEVDKGTTVNLYLPRFVGEEIHEPAVATQQAPYAQDGETVLIVEDDAAVRVLVSAVLSELGYAFVEAGDANAAMPILQSNQRIDLLISDVGLPGMNGRQLAEIGRQIRPDLKVLFITGYAEHAAVRGGFLDPGMQMITKPFTFDLLTAKVREMIKVNANANANANA
D1-35_03458378cpdR_1Response regulator receiver protein CpdRATGAGTGAAGATGCGCAAGACGTTGTACTGATTGTCGAGGATGATCCGTCGATCCTGATGGTGCTGTCGGCCTACCTGTCTGGCGAAGGGTACCGGGTGCTCCAGGCTGAAAACGGCGAGCAGGCGTTCGAGATTCTGGCGAGCAAGCCTCACCTGGACATGATGATTACCGACTTCCGTCTGCCGGGGGGGATTTCCGGGGTGCAGATCGCTGAGCCTGCGGTGAGGTTGCGTCCGGACCTGAAGGTCATCTTTATCAGTGGGTATGCTCAGGAAGTGCGCGAGACCGATAGCCCCATCACGCGCAAGGCGCCGATTCTGGACAAGCCGTTTGATCTGGATGTGTTGCAGAAGATCATGCAGGGGATGTTGTCGTAGMSEDAQDVVLIVEDDPSILMVLSAYLSGEGYRVLQAENGEQAFEILASKPHLDMMITDFRLPGGISGVQIAEPAVRLRPDLKVIFISGYAQEVRETDSPITRKAPILDKPFDLDVLQKIMQGMLSNANANANANA
D1-35_034591275rcsC_16Sensor histidine kinase RcsCATGAACCACATGCCAAGAGATATTCAAGCCAAACTGCTGATCGTCGACGATCTGCCTGAGAATCTGTTGGCCCTGGAAGCGCTGATCAAGCGCGAAGACCGCGAGGTCTTCAAGGCCTTGTCGGCGGATGAAGCGCTCTCGCTGCTTTTGCAACACGACTTTGCCCTGGCAATCATTGATGTGCAGATGCCGGGCATGAACGGATTCGAACTGGCCGAGCTGATGCGCGGCACGGAAAAGACCCGCAGCATCCCGATCATTTTTGTCAGCGCCGCCGGCCGCGAGCGCAACTATGCATTCACCGGCTATGAAAGCGGCGCGGTGGATTTCCTGCACAAGCCGCTGGACACCCACGCGGTCAAAAGCAAGGTCAGCGTGTTCGTCGAGCTCTATCGCCAGCGCAAGGCGATGAAGGAACAGGTGCTCGCTCTCGAGCAGAGTCGCCGGGAGCAGGAGCAATTGCTCCAGCAGTTGCAAGCCACCCGTGGCGAGCTCGAGCAGGCGGTGCGCATGCGGGATGATTTCATGTCGATCGTCGCCCATGAGGTTCGTACGCCGCTTAACGGCCTGATCCTGGAAACGCAGTTGCGCAAGATGCACTTGGCGCGCGACAACGCCTCGGCGTTCACCCTGGACAAGATCAAGGCGATGGTTGAACGCGATGAGCGCCAGATCAAGAGCCTGATCCGCTTGATCGAGGACATGCTGGACGTGTCCCGGATTCGCACCGGGAAGTTGTCCATCCGTCCGACCCGCTTCAACCTGACGGCGCTGGTGGAGAACCTGCTGCGCAACTTCCAGCCGCAGATCGCCGCTGCCGAATGCTCGGTGAATTGTACCGCCGAGCCTATGGTGGAAGGGCACTGGGATGAGTTTCGCATCGAGCAGGTGGTCTCGAACCTGCTGACCAATGCGTTGCGTTATGGCAGCAAGAGCCCGATCGAAGTGCGCGTCTACCAGACGCCCGACCACGCCTGCATCGAAGTGCAGGATCACGGTATCGGCATCAGCGAAGAGAACCAGAAACGCATCTTCCAGCAGTTCGAGCGGGTATCGTCCAAGGCCGCCACCGCTGGCCTGGGGCTGGGCTTGTTCATCTCCGAGCAGATTGTCACCGCCCATGGCGGTATCATCACGGTCAATAGCCGCCTCAACGAAGGGGCGTTGTTTCGCGTTTGTCTGCCTTTTCAGAAAACTGGCGAACGGACGCAACCTCTGAGTGGCCCCAAGGTCGTATCAGCAGCTATTGATCCAACAAAGGCTTCTCATGAGTGAMNHMPRDIQAKLLIVDDLPENLLALEALIKREDREVFKALSADEALSLLLQHDFALAIIDVQMPGMNGFELAELMRGTEKTRSIPIIFVSAAGRERNYAFTGYESGAVDFLHKPLDTHAVKSKVSVFVELYRQRKAMKEQVLALEQSRREQEQLLQQLQATRGELEQAVRMRDDFMSIVAHEVRTPLNGLILETQLRKMHLARDNASAFTLDKIKAMVERDERQIKSLIRLIEDMLDVSRIRTGKLSIRPTRFNLTALVENLLRNFQPQIAAAECSVNCTAEPMVEGHWDEFRIEQVVSNLLTNALRYGSKSPIEVRVYQTPDHACIEVQDHGIGISEENQKRIFQQFERVSSKAATAGLGLGLFISEQIVTAHGGIITVNSRLNEGALFRVCLPFQKTGERTQPLSGPKVVSAAIDPTKASHENANANANANA
D1-35_03460588cheB_4COG2201Protein-glutamate methylesterase/protein-glutamine glutaminaseATGAGCCCAATGACGGACAGATCCAGGCCCCTGATCGAGGCCATCGTAGTCGGCGCTTCCGCCGGAGGCGTCGAGGCGCTGCTCAACATCTTCACGCCTCTGCGCAAGGGCTTCAGCCTGCCTGTCCTCGTGGTGCTGCATTTGCCCGACGAACGTAACAGCCAGTTGGCCCAGGTGTTTCGTCATCGCCTGGCGATACCCGTCGAAGAAGTCCAGGACAAGCAGGACATACGCCCGGGCACGTTGTATGTCGCAACACCCGGTTATCACCTGTCGATCGAGGCTGATCGCAGCCTGTCACTGAGCCTTGAAGCGCCGGTGCACCATTCGCGGCCATCGATCGACGTGTTGTTCGAGTCGGCCGCCGATGTCTATGGTCCTCGTCTGCTGGCAGTGGTCCTGACTGGTGCCAACAGTGACGGCGCCAGGGGGCTGGCCAGGGTGAAAGAGCTGGGCGGCATCACCGTCGTCCAGGACCCGAGGGAGGCACAGGTTTCCACCATGCCCGAAGCGGCGCTTACGTTGCATGAGCCCGACCATATCCTAACTTTACAGGGCATCGGCCAGTTGCTGGCCGGGCTGGAATGAMSPMTDRSRPLIEAIVVGASAGGVEALLNIFTPLRKGFSLPVLVVLHLPDERNSQLAQVFRHRLAIPVEEVQDKQDIRPGTLYVATPGYHLSIEADRSLSLSLEAPVHHSRPSIDVLFESAADVYGPRLLAVVLTGANSDGARGLARVKELGGITVVQDPREAQVSTMPEAALTLHEPDHILTLQGIGQLLAGLEPGPT0015650_4164DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015650-cheB|chpB|wspF-K03412NANA
D1-35_03461816cheR_2Chemotaxis protein methyltransferaseGTGGAACGAAACACTGACATCGAACTTCGTTTGTTGATCGAAGCGATCTATTTGAAGTACAGCTACGACTTTCGTGACTATTCCGGCGCCTCCATCAAGCGCCGGGTCCTGCATGCGTTGAATCAGTTCGAATGCAAGACCATCTCGGCCTTGCAAGAGCGCGTACTTCACGACCCGAGCGCGTTCATGCAATTGCTCCAACTGCTGACGATTCCGGTCAGCGAGATGTTTCGCGACCCTGCGCACTTCCTGGCCATTCGCGAGGAAGTGGTGCCGCTGCTCAAGACCTATCCTTCGATCAAGATCTGGATCGCCGGCTGCAGCACCGGTGAAGAGGTCTACTCGATGGCGATCCTGCTGCACGAAGAAGGGCTGTTGGACCGCACCTTGATCTACGCCACGGACATCAATCCCCGTTCACTGGAGAAAGCCAAGCAAGGCATTTTTTCCCTAGAGAATGTCCGGGCCTACACCCAGAATTACCAGCTCGCCGGAGGCCGGCGTTCGTTTGCCGACTACTACACGGCCGCCTACGATTACGCCATGTTCGACAAAACCCTGCGTCAGAACGTGACCTTTGCCGATCACAGCCTGGCGACGGACAGTGTGTTTTCCGAAACTCAATTGATTTCCTGTCGTAACGTATTGATTTATTTTAATAAAAAGCTGCAAGATCGCGCATTTGGATTGTTTCATGAGTCCCTCTGCCATCGTGGTTTCCTGGTGTTGGGCAGTAAGGAAACACTGGATTTTTCGGCTTTCGGCAAGCAGTTCGAGCCGTTGGTCAAACAGGAACGGATCTATCGCAAGTTATGAMERNTDIELRLLIEAIYLKYSYDFRDYSGASIKRRVLHALNQFECKTISALQERVLHDPSAFMQLLQLLTIPVSEMFRDPAHFLAIREEVVPLLKTYPSIKIWIAGCSTGEEVYSMAILLHEEGLLDRTLIYATDINPRSLEKAKQGIFSLENVRAYTQNYQLAGGRRSFADYYTAAYDYAMFDKTLRQNVTFADHSLATDSVFSETQLISCRNVLIYFNKKLQDRAFGLFHESLCHRGFLVLGSKETLDFSAFGKQFEPLVKQERIYRKLPGPT0015670_3604DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015670-cheR|pilK-K00575NANA
D1-35_034623471rcsC_17Sensor histidine kinase RcsCATGACTCCTTCGTCTTCGGTCGACGAACAAAGTTTTCGCAAGCTCCTGAGCCGCAATATCAGCCTGCCGCTGGGCATGGGTGCACTCAGCGCGGTGTTTTTCATCGTGTTGATCACTTATCTGCTGTCGGTGATCCAGTGGGTCGGGCACACCGATCGCGTCATCAACAATGCCAATGAAGCGCTGAAGCTGAGCGTCGATCTGGAAACCGGCATGCGCGGTTACCTGCTGAGCGGCGACGAGCATTTCCTCGACCCTTACGAGGTGGCCAAGCCGCGCATCGCCGTGGCCCTGGATACATTGTTGGAACTGACAGCCGACAATCCCGTCCAGACCGATCGCCTGCGTAAGGTCCAGGCACTGCAGACGGAATGGGCCAACTATGCCCAGAGCATGATCGACCTGCAGCGCAGCAGCGGTGATTACCGCGGCGCGGTGAAGAAGGGGCGTGGCAAACGGTTGACGGACGAGATCCGCACGACCTTCGAAGACATCGTCGAAACCGAGCAGCAGTTGCGCGCCGAGCGCAACGAGCAGGTGCGTACCACCACGCTCTGGAGCATTGCCCTGTATTTGCTCTTCGTCGCAGCCATCAGCGGGTTGCTGGCCTACGTGGGGCGGCGCGATCTGTTGGCCCTGTCGAGCAACTACAGCGCGAGCCTGAAAGTCCAGCAGGAAAGCGCCCTGCATCTGGAAAAGCAGGCGTGGCTGCGCAACGGCCAGACTCAACTGGCCGAGCAGGTGCTCGGCCAACTGACGCTGAATCTTTTGGGGCGCAACATCCTGCAGTTCTGCGCCCAGTACCTGGGCAGCGTTGTTGCCGCACTGTATGCGCGGGAAGAAAACGGCGTGCTCAAGCGCATCGCCACCTATGGCATGTCCCGGGAAGACGACGAACAGCACCAGATGGTCATGGACGGCGAAGGCATCGTCGGGCAGGCCGTGCGCCAAGGGCGGCTCATCCGTCTGGATGACGTGCCACGCGATTACCTCAAGGTCAGCTCAGGGCTGGGCCAAGGGTTGCCCAATTGCGTGATGGTGGTGCCGACCCGTGACGACGACCGCATCAATGGTGTCATCGAGTTGGGCTTCCTGCGCCCCCTGGCCGGGCGGGACATCGAGTTGCTGGAACTGGTTGCCGGCAATATCGGCACCTCCATCGAGGCGGCCCGTTACCGTCAACGTCTGCAGGAAGTACTGGCCGAAACCCAGCAGCTCAACGAAGAGTTGCAGGTGCAGCAGGAAGAACTCAAGACGGCCAACGAAGAACTCGAGGAACAGTCGCGCATTCTCAAGGAATCCCAGGCCCACCTGGAAGCCCAGCAGCAGGAGCTGGAGCAGACCAACGAGCAATTGGCCGAGCAGCGCGACGCCATGGACCAGAAGAACAGCGAGTTGAACCTGGCCCAGATCCAATTGCAGGAGCGCGCCGAAGAGCTGCAGCGTTCGAGCAAGTACAAGTCCGAATTTCTCGCCAATATGTCCCATGAGCTGCGCACGCCGCTCAACAGTTCGTTGATCCTGTCCAAGCTGCTGGCGGAGAACCCGCAGAGGAACCTCAGCGACGAACAGGTCAAGTTTGCCGAGTCGATCTACTCCGCGGGCAATGACTTGCTGAACCTGATCAACGACATCCTGGACATTTCCAAGGTCGAGGCCGGAAAACTCGAGGTGCGCCCGGAAAACACCAGCGTGCCTCGCCTGGTCGAAGGGCTGCGGGACATGTTCAAGCCGCTGGCGGCGGACAAGGGCCTGAGTTTCGAGGTGCAGTTGCAGCCTGACGCGCCGTCGATGCTGTATACCGATCGCCAGCGCCTTGAGCAGGTGCTCAAGAACCTTTTGTCCAACGCGGTGAAGTTCACCGAGCAGGGCTCCGTCTGCCTGACCATCACCGGCCAGCCCGGCTCGGGTATCGCGTTCATGGTGCGCGACTCGGGGATCGGCATCGCCGCCGACCAGCAGCAGAGTATTTTCGAGGCGTTCCGCCAGGCCGACGGCACCACCAATCGGCGTTACGGCGGCACCGGCCTGGGGCTGTCGATTTCCCGCGACCTGGCGACGTTGCTCGGCGGCTCGATCTCGGTCTCCAGCGAGCCGGGGCAGGGCAGTGTGTTCACGCTGGTGATGCCTGGGCGTTATGTCGAGCCAGGGGAGGCGCCTGTCGAACCGATGGCGTTCACCCCGACGACCACTGCCCCGGCCCATGTGCCGGCTCCGACACTGGTCGCCGAGGTGGAAACCCCTGTCCCGCAATTTGCCGATGACCGGGACAAGGCGCCTTTCGCTACCCGTTGCATTCTGGTTATCGAAGACGAACCGAAGTTTGCCCGGATCCTGTTCGATCTGGCCCATGAACTGGGCTATCAGTGCCTGGTCGCCCATGGCGCTGACGAAGGCTTTGACCTGGCCTTGCAACTGAGCCCGGACGCGATCCTGCTGGACATGCGTTTGCCGGACCATTCCGGGCTGACCGTGTTGCAGCGGCTCAAGGAGCAGGCCCAGACCCGGCACATCCCGGTGCACGTCATTTCCGTCGAGGACCGCGTCGAAGCGGCGATGCACATGGGCGCGATCGGTTATGCCGTCAAACCGACGACCCGAGAAGAGCTCAAGGACGTTTTCGCGCGCCTGGAAGCCAAGCTGACCCAGAAGGTCAAGCGCGTGCTGCTGGTGGAAGACGATGACTTGCAGCGCGACAGCATTACCCGGCTGATCGGCGACGATGACATCGAGATCACCGCGGTCGGCCTGGCCCAGCAGGCCCTGGACCTGCTGCGCACGCATGTCTATGACTGCATGATCATCGACCTCAAGCTGCCGGATATGCTCGGCAATGACTTGCTCAAGCGTATGTCCAGCGAAGAGATCTGCTCGTTTCCGCCAGTGATCGTCTACACCGGACGCAACCTGACCCGTGATGAAGAAGCCGAACTGCGCAAATACTCGCGCTCGATCATCATCAAGGGCGCGCGCTCGCCGGAACGCTTGCTGGACGAAGTCACACTCTTTCTGCACAAAGTCGAATCGCGGTTGTCCCATGAACGACAGCGGATGCTGCAGACCGCCCGCAGCCGCGACAAGGTTTTCGAAGGCCGCAAGGTGCTGCTGGTGGACGACGATGTGCGCAACATTTTCGCCCTGACCAGCGCCCTGGAGGCGAAAGGCGCCGTCGTGGTCATCGGCCGTAACGGTTACGAAGCGATCGAACGCCTGAACGAAGTCGAGGATATCGATCTGGTGCTGATGGACGTGATGATGCCCGAGATGGACGGCTTTGAAGCCACCGCGCTGATCCGCAAGGACCCGCGCTGGCGCAAGTTGCCGATCATCGCCGTGACCGCCAAGGCCATGAAGGATGACCAGGAGCGTTGCCTGGCGGCGGGCTCCAACGATTACCTGGCCAAGCCGATCGACCTGGATCGCCTGTTCTCACTGATTCGCGTGTGGTTGCCGAATATGGAAAGAATCTAGMTPSSSVDEQSFRKLLSRNISLPLGMGALSAVFFIVLITYLLSVIQWVGHTDRVINNANEALKLSVDLETGMRGYLLSGDEHFLDPYEVAKPRIAVALDTLLELTADNPVQTDRLRKVQALQTEWANYAQSMIDLQRSSGDYRGAVKKGRGKRLTDEIRTTFEDIVETEQQLRAERNEQVRTTTLWSIALYLLFVAAISGLLAYVGRRDLLALSSNYSASLKVQQESALHLEKQAWLRNGQTQLAEQVLGQLTLNLLGRNILQFCAQYLGSVVAALYAREENGVLKRIATYGMSREDDEQHQMVMDGEGIVGQAVRQGRLIRLDDVPRDYLKVSSGLGQGLPNCVMVVPTRDDDRINGVIELGFLRPLAGRDIELLELVAGNIGTSIEAARYRQRLQEVLAETQQLNEELQVQQEELKTANEELEEQSRILKESQAHLEAQQQELEQTNEQLAEQRDAMDQKNSELNLAQIQLQERAEELQRSSKYKSEFLANMSHELRTPLNSSLILSKLLAENPQRNLSDEQVKFAESIYSAGNDLLNLINDILDISKVEAGKLEVRPENTSVPRLVEGLRDMFKPLAADKGLSFEVQLQPDAPSMLYTDRQRLEQVLKNLLSNAVKFTEQGSVCLTITGQPGSGIAFMVRDSGIGIAADQQQSIFEAFRQADGTTNRRYGGTGLGLSISRDLATLLGGSISVSSEPGQGSVFTLVMPGRYVEPGEAPVEPMAFTPTTTAPAHVPAPTLVAEVETPVPQFADDRDKAPFATRCILVIEDEPKFARILFDLAHELGYQCLVAHGADEGFDLALQLSPDAILLDMRLPDHSGLTVLQRLKEQAQTRHIPVHVISVEDRVEAAMHMGAIGYAVKPTTREELKDVFARLEAKLTQKVKRVLLVEDDDLQRDSITRLIGDDDIEITAVGLAQQALDLLRTHVYDCMIIDLKLPDMLGNDLLKRMSSEEICSFPPVIVYTGRNLTRDEEAELRKYSRSIIIKGARSPERLLDEVTLFLHKVESRLSHERQRMLQTARSRDKVFEGRKVLLVDDDVRNIFALTSALEAKGAVVVIGRNGYEAIERLNEVEDIDLVLMDVMMPEMDGFEATALIRKDPRWRKLPIIAVTAKAMKDDQERCLAAGSNDYLAKPIDLDRLFSLIRVWLPNMERINANANANANA
D1-35_03463372cpdR_2Response regulator receiver protein CpdRATGTCCGTCCCCGCTTCTGACACCCCCTCCACCATCCTGGTAGTCGAAGACGACAACATCGTGCGCATGTTGATTGTCGATGTCCTGGAAGAACTGGAATACAAGGTTTTGGAAGCTGACGGCTGCGAGCAGGCACTTGAGTTTCTGAACGATGACGCTCAGCCCATCGCTCTGATGATGACGGACGTCGGCCTGCCGGTCATGGACGGCCGCGAACTGGCGAAACGGGCCCAACTGGCCAGGCCAGGGCTGCCGATCCTGTTCGCCAGCGGTTATGCCGAAAGCATCGATGTGCCCGAAGGCATGAACGTGATCGGCAAACCCTTCTCCATCGACCAACTGCGCGACAAGGTCAAAAAGATTCTTTCTTGAMSVPASDTPSTILVVEDDNIVRMLIVDVLEELEYKVLEADGCEQALEFLNDDAQPIALMMTDVGLPVMDGRELAKRAQLARPGLPILFASGYAESIDVPEGMNVIGKPFSIDQLRDKVKKILSPGPT0003915_1827DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-POLYMYXIN_RESISTANCE,PGPT0003915-pmrA-K07666NANA
D1-35_034641293hypothetical proteinATGTCTCATCCCACCGCCACCAAAGTCCTGGTGATCGGCTATGTCTGGCCCGAGCCACGCTCATCGGCGGCCGGTGGGCATGTCATGCAGTTATTGGAGGCTTTTCTCGGGCAAGGCTGGGACATCACTTTCAGCAGCCCCGCCAGGCCCGGGGAAAACCGCGCCGACCTGATCGCCCTGGGCATCCGCGAGGTACCGATCGAGCTCAATAGCAGCAGTTTTGACGCATTCATCAGCGAACTCGCGCCCGATGTCGTCCTGTTCGACCAGTACATGATGGAAGAGCAGTTTGGCTGGCGAGTCGAGAAGCACTGCCCCGACGCCCTGCGCGTGCTGGAAACTTCCGATCTGCAGAGCCTGCGCCACGCGCGGCATCAGCGCTTGAAGGATCGCTTGAAAGCCGATGAAACCTGTGAGGATTTCAGCGACCTGTTCGCCCCCGCCCTGCGCGAAGAATTCGAGCTGATGGCCGACACCGACCTGGCCAAGCGCGAGATTGCCGCTCTGTATCGATGCGATCTGAACCTGATGGTGTCCGAAGTCGAGATCGAACTGTTGGTGGAGCACTTCAAGGTGCCCCGTGAGCTGTTGCTCTGGTGCCCATTGATGCTCGACCTGCCTGAGCAAGCCTTCGTGCCTTTCGAAGAACGGGCGCACTTCCTCAGCATCGGCAATTTCCGCCATGCACCGAACTGGGACGCCGTACTCTGGATGAAAAATGCCGTGTGGCCGCTGATTCGCCAGCGACTGCCCGGTGCACAGCTGCACCTGTATGGCGCCTATACCCCGCCCAAGGCCGCAGCGCTGCATAACCCGGCCCAAGGCTTCCACATCATGAACTGGGCAGAGGATGCCTTGCAGGTCATGTCCGCGGCGCGCATCTGCCTGGCCCCCCTGCGTTTCGGCGCCGGTATCAAGGGCAAACTGATCGAAGCCATGCTCTGCGGCACGCCGAGCGTCACCACGCCCATCGGTGCCGAAGCCATGCACGCCGGCATGCCCTGGCCCGGTGTCATCGCGCAGAGCGCCGAGGATATTGCTAGCGCCGCCGTACAGTTGTATAGCGATCAGGCACGCTGGGCCGATGCCCAGGACGCCGGGCTGGCTTTGCTGGCGGCGCGCTTTCGCCGGCGGGTGCACGGCCCGGCGCTGATCGACAGCATCAATGCCTGTCGTGCCGATCTGGCGCGCCGACGCCGGGACAACTTCACCGGCAGCATGCTGCGCCATCACCAGCACAAGAGCACCCAGTACATGTCCCAGTGGATCGAAGAGAAGAACCGCAACAGCTGAMSHPTATKVLVIGYVWPEPRSSAAGGHVMQLLEAFLGQGWDITFSSPARPGENRADLIALGIREVPIELNSSSFDAFISELAPDVVLFDQYMMEEQFGWRVEKHCPDALRVLETSDLQSLRHARHQRLKDRLKADETCEDFSDLFAPALREEFELMADTDLAKREIAALYRCDLNLMVSEVEIELLVEHFKVPRELLLWCPLMLDLPEQAFVPFEERAHFLSIGNFRHAPNWDAVLWMKNAVWPLIRQRLPGAQLHLYGAYTPPKAAALHNPAQGFHIMNWAEDALQVMSAARICLAPLRFGAGIKGKLIEAMLCGTPSVTTPIGAEAMHAGMPWPGVIAQSAEDIASAAVQLYSDQARWADAQDAGLALLAARFRRRVHGPALIDSINACRADLARRRRDNFTGSMLRHHQHKSTQYMSQWIEEKNRNSNANANANANA
D1-35_03465906rhaS_8HTH-type transcriptional activator RhaSATGACCCGAACAGCCAGAGTCACCGACCCTTCCTACGAGTTGATGGACGACCACAACGGGCTGTCCATCATCTATCGCCAGCACGGCTTTCCTTGCCCGCTGGTGCGCTGGCATTTCCACAAGGAATACGAGCTGCACCTGATCGTCGCCAGTTCGGGCAAAGTCTTCATCGGCGACTACATCGGCAATTTTTCTCCGCAGTCGCTGTTCCTTACCGGCCCCAACCTGCCCCACAACTGGATCAGCCAGGTGGCCGAGGACGAAGTGGTGCCCAAGCGCGACATGCTGGTGAACTTCACCGATGAACTGTTTGAAAGCGGCAACCAGGTGTTCGCCGAGCTCAAGACCCTCGCACCGCTGCTGGAGCGTGCCCAGCACGGCATCGAATTTCGCTGCAAGCGCACCATCCGCCAGGCCATGACGTTGATGCAACGCATCGCCGACGCCCAGGGCATGAGCCGGCTGGGCTACTTTTTTATCCTCATGGAGCTGCTGGCGGCCTGCGACGACTTCCAGCTGCTTTCGGGCGCCACCACACCACACGCGGCGGACGAGCACAGCATCGACCGCACCAACCGCGCGGTGGATTACATCTTTGCCCATTACGCCCGGGAGTTGCCCCTGGAAGAAGTCGCCGAGCATCTGGGCATGAAACCCACCTATTTCAGCCGGGTTTTCAAGCAAGCCACGGGGCGTTGCTTCATCGAATTCGTCAATCGCCTGCGCATCAGCAAATCTTGCGAGCTACTGGCCGATGGCGACAAACCAGTGACCGATGTGTGCTTCGAGTCGGGCTTCAACAATATTTCCAACTTCAACCGACGCTTCCAGCAACTCAAGGGCATGACCCCGTCGCACTACCGGCGGCTGGCGGTGCAGCGGTTGACCGAGCAGAACCAGGCCTGAMTRTARVTDPSYELMDDHNGLSIIYRQHGFPCPLVRWHFHKEYELHLIVASSGKVFIGDYIGNFSPQSLFLTGPNLPHNWISQVAEDEVVPKRDMLVNFTDELFESGNQVFAELKTLAPLLERAQHGIEFRCKRTIRQAMTLMQRIADAQGMSRLGYFFILMELLAACDDFQLLSGATTPHAADEHSIDRTNRAVDYIFAHYARELPLEEVAEHLGMKPTYFSRVFKQATGRCFIEFVNRLRISKSCELLADGDKPVTDVCFESGFNNISNFNRRFQQLKGMTPSHYRRLAVQRLTEQNQANANANANANA
D1-35_034661311hypothetical proteinATGAAACCTTCGGTAAAAGCTCTGCTTGTCTCCACCTGCATGACCCTCAGCAGCGTCAGTTTCGGCGCGCAAACCCTGACCATTGCCACCGTCAACAACAGCGACATGATCCGCATGCAAAAGCTTTCGAAGACTTTCGAGGCCGAGCACCCGGACATCACGCTGAACTGGGTGGTGCTCGAAGAAAACGTCCTGCGCCAGCGCCTGACCACGGACATCGCCACCCAGGGTGGACAGTTCGACGTGCTGACCATTGGCATGTACGAAGCCGCACTGTGGGGAGCCAAGGGCTGGCTGGAGCCGATGAAGGACCTGCCGGCGTCCTACGACCTGGAAGACGTCTTCCCTTCCGTGCGCGATGGCTTGTCGGTCAAGGGCTCGTTGTACGCCCTGCCGTTCTATGCCGAAAGCTCGATCACCTATTACCGCACGGACCTGTTCAAGAACGCCGGGCTGAGCATGCCTGAGCACCCGACCTGGACCCAGATCGGTGAATTCGCGCAAAAGCTCACCGACAAGTCCAAGGAACAGTATGGCCTGTGCCTGCGGGGCAAGGCCGGTTGGGGCGAGAACATGGCGCTGATCACGACCCTGGCCAACGGTTTTGGCGCGCGCTGGTTCGATGAGAAGTGGCAGCCGGAGTTCAATGGGCCTGAGTGGAAGGATGCCCTGAACTTCTACGTCGACAACATGAAGAAATCCGGCCCGCCGGGCGCGTCCAGCAACGGCTTCAACGAGAACCTGGCCCTGTTCAACAGCGGCAAGTGCGCGATGTGGGTCGATGCCAGCGTCGCCGGTTCGTTCGTGACCGACAAAACCCAGAGCAAGGTGGCCGATCACGTCGGGTTCACCTTCGCCCCCCACGAAAAAACCGACAAGGGCACTTCGTGGATGTACTCCTGGTCGCTGGCCATCCCGACCAGTTCCAAAGCCAAGGACGCGGCCAAGGTCTTCACCACTTGGGCAACGTCCAAGGAATACGGCCAACTGGTCGCCAAGACCGACGGCATTGCCAACGTACCGCCAGGCACCCGCGCCTCGACCTACAGCGACGAGTACATGAAGGCCGCGCCGTTTGCCAAGGTGACGCTGGAGTCGTTGAAAGTCGCCGACCCGAAAGCACCGACGGTCAAGCCCGTGCCTTACATCGGCATTCAGTTGGTGACCATTCCTGAATTCCAGGCCATCGGCACCCAGGTCGGCAAGTTCTTCTCCGGCGCGCTGACCGGCCAGCAGAGCGTGGACCAGGCATTGACCGCCGCGCAGTCCACCACCGAGCGCGAGATGAAACGCGCCGGGTATCCAAAGTAAMKPSVKALLVSTCMTLSSVSFGAQTLTIATVNNSDMIRMQKLSKTFEAEHPDITLNWVVLEENVLRQRLTTDIATQGGQFDVLTIGMYEAALWGAKGWLEPMKDLPASYDLEDVFPSVRDGLSVKGSLYALPFYAESSITYYRTDLFKNAGLSMPEHPTWTQIGEFAQKLTDKSKEQYGLCLRGKAGWGENMALITTLANGFGARWFDEKWQPEFNGPEWKDALNFYVDNMKKSGPPGASSNGFNENLALFNSGKCAMWVDASVAGSFVTDKTQSKVADHVGFTFAPHEKTDKGTSWMYSWSLAIPTSSKAKDAAKVFTTWATSKEYGQLVAKTDGIANVPPGTRASTYSDEYMKAAPFAKVTLESLKVADPKAPTVKPVPYIGIQLVTIPEFQAIGTQVGKFFSGALTGQQSVDQALTAAQSTTEREMKRAGYPKPGPT0016380_590DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MANNITOL|SORBITOL_TRANSPORT,PGPT0016380-smoE|mtlE-K10227NANA
D1-35_03467936ugpACOG1175sn-glycerol-3-phosphate transport system permease protein UgpAATGAATAGCTCAACGACAACCGCCAAAGCCCCCATCGTGATTGCTCCGCCGCCAGCCCGCAAGATCCGCCTGGCCAACCCCGGCTGGTTCCTGGTCAGCCCGTCGGTCGCCTTGTTACTGCTGTGGATGATCGTGCCGCTGGGCATGACCGTCTATTTCTCGATGATCCGTTACAACCTGCTCTATCCTGGTGAAAACGAATTCGTCGGGCTGGAGAACTTCACTTATTTCCTGACCGATTCGGGCTTCATGCCCGGCGCCACCAATACCCTGCTGCTGGTGGGCAGCGTGCTGCTGATCAGCATCGTGCTCGGCGTGTTGATCAGCGCGTTGCTGGAGGCCAGCGAATTTTTCGGTCGCGGCATCGTGCGGGTGTTGCTGATCTCGCCGTTTTTCATCATGCCCACCGTCGGTGCGCTGATCTGGAAGAACCTGATCTTCCATCCAGTCTCCGGCATCCTCGCCTCGGTGTGGAAGCTCTTCGGTGCGCAGCCGGTGGACTGGCTGGCGCATTACCCGTTGCTCTCGATCATCATCATCGTGTCGTGGCAATGGCTGCCCTTCGCGATCCTGATCCTGATGACCGCCATGCAGTCCCTCGACCAGGAACAGAAAGAAGCCGCGCGCCTGGACGGTGCCGGACCGATCGCGATTTTCTGGCACCTGACCCTGCCACACCTGGCGCGTCCGATTGCCGTGGTGCTGATGATCGAGACGATTTTCCTGCTGTCGGTGTTCGCCGAGATCTTCACCACTACCAACGGTGGCCCTGGCTACGCCTCCACCAACCTCGCCTACCTGATCTACAACCAGGCGCTGGTGCAGTTCGACGTCGGCATGGCGTCAGCCGGTGGCCTGATCGCCGTGGTGATCGCCAACATCGCCGCCATCATCCTGGTCCGGATGATCGGCAAAAACCTCACCGACAAGCATTGAMNSSTTTAKAPIVIAPPPARKIRLANPGWFLVSPSVALLLLWMIVPLGMTVYFSMIRYNLLYPGENEFVGLENFTYFLTDSGFMPGATNTLLLVGSVLLISIVLGVLISALLEASEFFGRGIVRVLLISPFFIMPTVGALIWKNLIFHPVSGILASVWKLFGAQPVDWLAHYPLLSIIIIVSWQWLPFAILILMTAMQSLDQEQKEAARLDGAGPIAIFWHLTLPHLARPIAVVLMIETIFLLSVFAEIFTTTNGGPGYASTNLAYLIYNQALVQFDVGMASAGGLIAVVIANIAAIILVRMIGKNLTDKHPGPT0016385_267DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MANNITOL|SORBITOL_TRANSPORT,PGPT0016385-smoF|mtlF-K10228NANA
D1-35_03468831hypothetical proteinATGACTCTTCAACAATCCCGTCGCCTGCAAAGCCTGTTGCTGGGCACGTTGGCCTGGGCCATCGCGATCCTGATCTTCTTTCCGATCTTCTGGATGGTGCTGACCAGCTTCAAGACTGAAATCGACGCCTTCGCCACGCCGCCGCAGTTCATCTTCGCGCCGACGCTGGAGAACTACCTGCACATCAACGAGCGCAGCAACTACTTCAGCTTCGCCTGGAACTCGGTGGTGATTTCCTTCAGCGCCACCGCCCTGTGCCTGCTGATCGCGGTGCCGGCGGCGTACTCCATGGCGTTCTACGAAACCCAGCGCACCAAAGGCACGCTGCTGTGGATGCTCTCCACCAAAATGCTGCCGCCGGTGGGCGTGCTGATGCCGATCTATCTGCTGGCCAAGCAGTTCGGCCTGCTGGACACGCGCCTCGCGCTGATCATCATCTACACCCTGATCAACCTGCCCATCGTGGTCTGGATGATTTACACCTACTTCAAGGACATCCCGCGCGACATCCTTGAAGCCGCGCGCCTGGACGGTGCCACCCTGTGGCAGGAAATGGTCCGCGTGCTGCTGCCGATCGCCAAGGGCGGCCTGGCGTCAACGGTGCTGCTGTCGCTGATCCTGTGCTGGAACGAGGCGTTCTGGTCGCTCAACCTCACCTCATCCAAAGCCGCGCCGCTGACAGCACTGATCGCCTCGTATTCCAGCCCCGAGGGCCTGTTCTGGGCCAAGTTGTCCGCCGTCTCGACCCTGGCCTGCGCGCCGATCCTGATTTTCGGCTGGATCAGCCAGAAACAGCTGGTGCGCGGTTTGTCCTTCGGCGCGGTGAAGTAAMTLQQSRRLQSLLLGTLAWAIAILIFFPIFWMVLTSFKTEIDAFATPPQFIFAPTLENYLHINERSNYFSFAWNSVVISFSATALCLLIAVPAAYSMAFYETQRTKGTLLWMLSTKMLPPVGVLMPIYLLAKQFGLLDTRLALIIIYTLINLPIVVWMIYTYFKDIPRDILEAARLDGATLWQEMVRVLLPIAKGGLASTVLLSLILCWNEAFWSLNLTSSKAAPLTALIASYSSPEGLFWAKLSAVSTLACAPILIFGWISQKQLVRGLSFGAVKPGPT0016390_515DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_MANNITOL|SORBITOL_TRANSPORT,PGPT0016390-smoG|mtlG-K10229NANA
D1-35_034691104malKCOG3839Maltose/maltodextrin import ATP-binding protein MalKATGGCCAACCTGAAAATCAAGAATCTGCAAAAAGGCTTCGAAGGCTTTTCCATCATCAAGGGCATCGACCTTGAAGTGAACGACCGCGAATTCGTGGTCTTCGTCGGCCCTTCGGGCTGCGGCAAGTCCACGCTGCTGCGGCTGATCGCCGGCCTGGAAGAAGTCAGCGACGGCACCATCGAGCTGGACGGCCGTGACATCACCGAAGTCAGCCCGGCCAAGCGCGACCTGGCGATGGTGTTCCAGACCTATGCCCTGTACCCGCACATGAGCGTGCGCAAGAACATGTCCTTCGCCCTCGACCTCGCCGGTGTGCCCAAGACCGAGGTGGAAAAAAAAGTCAACGAAGCGGCGCGCATCCTCGAACTGGGGCCGATGCTGGAGCGCAAGCCCAAGCAGCTGTCCGGCGGCCAGCGCCAGCGCGTGGCGATCGGCCGGGCCATCGTGCGCAACCCGAAAATCTTCCTGTTCGACGAGCCCTTGTCGAACCTCGACGCCGCCCTGCGCGTGCAGATGCGCCTGGAACTGGCGCGCCTGCATAAAGAGTTGCAGGCAACCATGATCTACGTGACCCACGACCAGGTCGAAGCCATGACCCTGGCCGACAAGGTGGTGGTGCTCAACGGCGGTCGCATCGAGCAGGTCGGCTCGCCGCTGGAGCTGTATCACCAGCCGGCCAACCTGTTCGTCGCCGGGTTCCTCGGCACGCCGAAGATGGGTTTTCTCAAGGGCAAGGTCACCGGCCTGGACGGCCAGGGTTGTGAAGTGCTGCTGGACGCCGGCACCCGTATCAGCCTGCCGCGCAGCGGTGCCAACCTGAGCGTCGGCGGCGCGGTAACCCTGGGGATTCGTCCGGAACACCTGAACCTGGCGCAACCGGGTGATTGCGCGCTGCGGGTCACCGCCGATGTCAGCGAACGCCTGGGCAGCGACACCTTCTGCCATGTCGTCACCGCCTCCGGCGAAGCCCTGACCATGCGCGTGCGGGGTGACCTGGCGAGCCGTTTCGGCGAGCAACTGGAGCTGCACCTGGACGCCGAACACTGCCACTTATTCGATGCCGAAGGCGTTGCGGTTTCCCGCGCGCTGCGCGCTGCCGCCTGAMANLKIKNLQKGFEGFSIIKGIDLEVNDREFVVFVGPSGCGKSTLLRLIAGLEEVSDGTIELDGRDITEVSPAKRDLAMVFQTYALYPHMSVRKNMSFALDLAGVPKTEVEKKVNEAARILELGPMLERKPKQLSGGQRQRVAIGRAIVRNPKIFLFDEPLSNLDAALRVQMRLELARLHKELQATMIYVTHDQVEAMTLADKVVVLNGGRIEQVGSPLELYHQPANLFVAGFLGTPKMGFLKGKVTGLDGQGCEVLLDAGTRISLPRSGANLSVGGAVTLGIRPEHLNLAQPGDCALRVTADVSERLGSDTFCHVVTASGEALTMRVRGDLASRFGEQLELHLDAEHCHLFDAEGVAVSRALRAAAPGPT0014160_1033DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_GLUCOSE|MANNOSE_TRANSPORT_I,PGPT0014160-malK|mtlK|thuK-K10111NANA
D1-35_034701482por_1COG0246Polyol:NADP oxidoreductaseATGAAACTCAACCGACAGAACCTGCACAACCTCAACGCCGAGGTCGCCCTGCCCGCTTACAACCTGGGCGACCGCCGCCAGGGCATCGCCCACATCGGCGTCGGCGGTTTCCACCGTGCGCACCAGGCGTATTACACCGATGCGTTGATGAACACCGGCGAAGGCCTCGACTGGGCTATCTGCGGCGTAGGCCTGCGGGCCGAAGATCGCCGGGCCCGGGATGATCTGGCTGGCCAGGACTACCTGTTCACCCTGTATGAACTGGGCGATACCGATGACACCGAAGTCCGGGTCATCGGCGCGATCGCCGACATGCTGTTGGCCGAGGATGGCGCCCAGGCGTTGATCGACAAACTGGCCGACCCGCAGATCCGCATCGTCTCGCTGACGATCACCGAGGGTGGTTATTGCATTGACGACAGCAACGGCGAATTCATGGCCCATCTGCCGCAGATCCAGCACGACCTGGCCCGTCCGGACGAACCGCAGACCGTGTTCGGCTTCCTCTGCGCCGCCCTAGCCAAACGCCGCGCCGCCGGGACGCCGGCGTTCACCCTGATGTCCTGCGATAACCTGCCCCACAACGGCGCCGTCACGCGCAAGGCGCTGCTGGCGTTTGCCGCATTGCGAGACCCCGAACTGAGACAATGGATCGAGCAGAACGTGAGCTTCCCCAACGCCATGGTCGATCGCATTACCCCGATGACCAGCAGCGCCCACCGCTTGCAGCTGCACGACGAGCATGGCATCGACGACGCTTGGCCAGTGGTGTGCGAACCCTTTGTGCAATGGGTGCTGGAGGACAAATTCGTCAATGGTCGCCCGGCCTGGGAGAAGGTCGGTGTGCAGTTCACCGATGACGTTTCGCCCTATGAAGAGATGAAGATCAAGCTGCTCAACGGCAGCCATCTCGCGTTGACGTACCTGGGTTTCCTCAAGGGGTATCGTTTCGTCCACGAAACCATGAACGACCCGTTGTTCGTGCGTTACATCCGCGCCTACATGGACCTGGACGTGACGCCACAACTGGCGCCCGTGCCGGGCATCGACCTGACGGAATACAAGGACACCCTGGTGGAGCGCTTCTCCAACCAGGCCATCGCCGACCAGTTGGAACGGGTGTGTTCGGATGGCTCGTCGAAATTTCCCAAATTCACCGTGCCGACCATCAACCGCCTGATCGCCGACGGCGGCCAGACCCGCCGCGCGGCGCTGGTGGTGGCGGCCTGGGCTGTTTACCTCAAAGGGGTAGATGAAAATGGCACGACCTATTCGATCCCCGATCCACGCGCGGCGTTCTGCCAGGCGCTGGTGGCTGACGACGCGCTGGTGACCCAGAGAATGCTTGCAGTGGAAGAAATTTTTGGCACGGCCATCCCCCGTTCGCCCGAGTTCGTGGCAGCATTCGAATGGTGCTGCAACAGCTTGCGCGAGCAAGGGGTGACCAAGACGCTTGAGCGGGTGCTGGCTGATCAAGGCTAGMKLNRQNLHNLNAEVALPAYNLGDRRQGIAHIGVGGFHRAHQAYYTDALMNTGEGLDWAICGVGLRAEDRRARDDLAGQDYLFTLYELGDTDDTEVRVIGAIADMLLAEDGAQALIDKLADPQIRIVSLTITEGGYCIDDSNGEFMAHLPQIQHDLARPDEPQTVFGFLCAALAKRRAAGTPAFTLMSCDNLPHNGAVTRKALLAFAALRDPELRQWIEQNVSFPNAMVDRITPMTSSAHRLQLHDEHGIDDAWPVVCEPFVQWVLEDKFVNGRPAWEKVGVQFTDDVSPYEEMKIKLLNGSHLALTYLGFLKGYRFVHETMNDPLFVRYIRAYMDLDVTPQLAPVPGIDLTEYKDTLVERFSNQAIADQLERVCSDGSSKFPKFTVPTINRLIADGGQTRRAALVVAAWAVYLKGVDENGTTYSIPDPRAAFCQALVADDALVTQRMLAVEEIFGTAIPRSPEFVAAFEWCCNSLREQGVTKTLERVLADQGPGPT0018400_337DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_MANNITOL_DEGRADATION,PGPT0018400-mtlK-K00045NANA
D1-35_034711488xylBCOG1070Xylulose kinaseATGGCAAACCAACAACTGTTCCTGGGCATTGACTGCGGCACCCAAGGCACCAAGGCGCTGATCCTCGATTCGATCAGCGGCCAGGTACTTGGCCAGGGCGCCGCCGCCCACGACATGATCAGCGGTGCCAACGGCCGCCGGGAACAAGACACCCGGCAATGGCTCGACGCGTTCACCCAGGCCACTCGCCAAGCGCTGGCGGATGCAAAGGTCGATGGCCAGTCGATTCTCGGCATCGGCGTCTCCGGCCAGCAGCACGGCCTGGTATTGCTCGATGACCAGGGCCAGGTCCTGCGCCCGGCAAAACTGTGGTGCGATACCGAGACGACCGCGGAAAACGATCGTCTCCTGGCGCATCTCGGCGGTGAAGAAGGCAGCCTGGAACGCCTCGGCGTGGTGATTGCGCCGGGCTACACGGTGTCCAAACTGCTCTGGACCCGAGAACAGCACCCGCAGGTTTTCGAGCGGACCGCCAGCATCCTGCTGCCCCATGACTTCCTCAATTACTGGCTTACCGGGCGCCATTGCAGCGAGTACGGCGATGCCTCGGGCACCGGCTACTTCAACGTCCGTACCCGCCAATGGGATCGCGCGCTGCTGCGCCATATCGACCCTAGCGGCCGGCTGGAATCGGCCTTGCCCGAGCTGATCGAGGCCCATCAGCCAGTCGGCAGGATCCTGCCCGAGATCGCCGCACACCTGGGCCTCAACCCCGACGCGGTGGTCGCCAGTGGCGGCGGCGACAACATGATGGGCGCCATCGGCACCGGCAACATCCAGCCCGGCGTGATCACCATGAGCCTTGGTTCCTCCGGCACGGTGTATGCGTATGCCGCCGAGCCCGTGGTCAGCCCGCAAGCATCCGTGGCGACGTTCTGTTCGTCGAGCGGCGGCTGGCTGCCGTTGATCTGCACCATGAACCTGACCAACGCCACCGGAGCGCTGCGCGAGCTGCTGGAACTGGACATCAATACGTTCAATACCCTCGTGACCCAGGCGCCGATCGGTGCCGAGGGCGTGTGCATGCTGCCGTTCCTCAATGGCGAACGCGTCCCCGCCCTGCCCCATGCCACCGGCAGCCTGCTGGGCCTGACGACCACCAACCTGACCCGGGCCAACCTCTGCCGCGCGGTGGTCGAAGGCACGACCTTCGGCCTGCGCTATGGCCTCGACCTGCTCCGTGCCAACGGGCTCAAGGCCCAGAGCATTCGCCTGATCGGCGGCGGCTCGAAGAGCCCGGTCTGGCGACAGATCGTCGCCGACATCATGGACACTACCGTCATTTGCACCGAACAGAGTGAAGCCGCTGCCCTGGGCGGGGCGATCCAGGCGGCGTGGTGTCATGGCGCCGGGCAAACATCCCTGGCCGACCTGTGCGAGCGCTGCGTCAAACTCGACCCGGCCAGCGAAACCCGGCCCGTCGCCGCGCACGTCGCGGCGTCACAACAAGCCTACGAACGTTACCGGCAGCACGTCGCAACCCTTTGAMANQQLFLGIDCGTQGTKALILDSISGQVLGQGAAAHDMISGANGRREQDTRQWLDAFTQATRQALADAKVDGQSILGIGVSGQQHGLVLLDDQGQVLRPAKLWCDTETTAENDRLLAHLGGEEGSLERLGVVIAPGYTVSKLLWTREQHPQVFERTASILLPHDFLNYWLTGRHCSEYGDASGTGYFNVRTRQWDRALLRHIDPSGRLESALPELIEAHQPVGRILPEIAAHLGLNPDAVVASGGGDNMMGAIGTGNIQPGVITMSLGSSGTVYAYAAEPVVSPQASVATFCSSSGGWLPLICTMNLTNATGALRELLELDINTFNTLVTQAPIGAEGVCMLPFLNGERVPALPHATGSLLGLTTTNLTRANLCRAVVEGTTFGLRYGLDLLRANGLKAQSIRLIGGGSKSPVWRQIVADIMDTTVICTEQSEAAALGGAIQAAWCHGAGQTSLADLCERCVKLDPASETRPVAAHVAASQQAYERYRQHVATLPGPT0017535_738DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017535-xylB-K00854NANA
D1-35_03472939scrKCOG0524FructokinaseATGTATCTGGTATGTGGTGAAGCGCTGTTTGATTTTTTCAGCGCAAACGAAGCGCAGACTCCGGCTTCGCAAGTGAACTTCAAGGCGCTCGCCGGTGGTTCACCGTTCAACGTGGCGGTGGGTTTGCGTCGACTGGGGATCGAGTCGGCACTATTCACCGGGCTGTCCACCGACTATCTGGGCCGGCGCTTGAAACAGGTGCTCGTGGACGAAGGCGTCAGCATTCAATTTGCCCAGGACTTCGAGGCCCCCACCACCCTGGCCATGGTCGCTGTCGGCGCCAACGGCTCGCCCCACTACAGCTTCCGTGGCGAAGGCTGCGCAGACCGGCAATTGCGCGCGGAGCATTTGCCGACGCTGGGCCCGCAAGTGCGCGGCCTGCATGTGGGTTCGTTCTCCTTGGTGGTGCAACCGGTGGGCGATACGCTGCTGGCACTGGTACAACGCGAAAGCGGCCGACGCCTGATCAGCCTCGACCCGAACGTGCGGCTCAATCCGCAGCCAGACATCGGGTTGTGGCGTTCACGGATCGCGACGCTGGTGGAATATGCCGACCTGATCAAGGTCAGCGATGAAGACCTGAGCCTGCTCTATCCTGACCGGGACCCACATGAAGTGATTGGGGGCTGGCTGGAGCACCGCTGTCAGTTGGCCTTCCTCACCCGTGGCGGCCAGGGCGCAACGGTGTTCAGCCGTCAGCATGGCGTATGGTCGCTTCCCGCCTGCCCGGTCCAGATCGCCGATACGGTGGGCGCGGGCGACACGTTCCAGGCTGCGCTGATCGCTTGGCTGACCGAACAGCAGTTGGATGATGTGCAGGGTTTGCATTCGCTGAGCGCGGAGCAGATCGGGGAGATGCTGCATTTCGCCATGCGCGCCGCGGCACTTACGTGCGGCAAAGTCGGGCCAGACCTGCCCTATCGGCAGCAATTGGTCTAGMYLVCGEALFDFFSANEAQTPASQVNFKALAGGSPFNVAVGLRRLGIESALFTGLSTDYLGRRLKQVLVDEGVSIQFAQDFEAPTTLAMVAVGANGSPHYSFRGEGCADRQLRAEHLPTLGPQVRGLHVGSFSLVVQPVGDTLLALVQRESGRRLISLDPNVRLNPQPDIGLWRSRIATLVEYADLIKVSDEDLSLLYPDRDPHEVIGGWLEHRCQLAFLTRGGQGATVFSRQHGVWSLPACPVQIADTVGAGDTFQAALIAWLTEQQLDDVQGLHSLSAEQIGEMLHFAMRAAALTCGKVGPDLPYRQQLVPGPT0017625_2226DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FRUCTOSE_METABOLISM|DEGRADATION,PGPT0017625-scrK-K00847NANA
D1-35_03473285hypothetical proteinATGTTTTTATCTGCCCTCGAAATGCGAAACATCATTGAAAGCAGCCTGCTGCCCAAACGCTCGCAATGCACCTTGTCACCTGATCTGTCCATGACCGTTAAAATCTACGACGACCACCAGACCGACCGCGTGGCCCTGGTCAAGAGCGATATTGACGCCACCAAGCTCACCGGCTGCCGCGCCATCAACGATCTGATTGCGGAACTGCGTACCGAACTCGACCGTGGCCAGGGTCACGGCCACGGGAACTATTTCCACCAGCAACACCGGATGAGCGGGCGTTAAMFLSALEMRNIIESSLLPKRSQCTLSPDLSMTVKIYDDHQTDRVALVKSDIDATKLTGCRAINDLIAELRTELDRGQGHGHGNYFHQQHRMSGRNANANANANA
D1-35_034741008ilvA_2COG1171L-threonine dehydratase biosynthetic IlvAATGACCCCAACCAGCCCCGAGCAGACGCTGCTGGAGCACTACGTCAAGAAGATCCTTGCCGCTGCGGTGTACGAACTGGCGGTGCCCACGCCGCTGCAAGCGGCTGCGGCGCTGTCCCAGGCCTTGGGCAATCGGATTCTGCTCAAGCGCGAGGACCTGCAACCGACGTTCTCGTTCAAGATCCGCGGCGCTTATAACAAGCTCGTGCAACTGACCCCCGAGCAACGCAGCCGTGGCGTGATCACCGCATCGGCGGGCAACCACGCCCAAGGCGTGGCGCTGGCGGCTCAAGCGTTGGGTATCTCGGCGTGCATCGTCATGCCGCGCACGACGCCCCAACTGAAAGTACTGGGCGTGCGCAGTCGCGGGGCCGAAGCGTTGCTGCATGGTGAGAGTTTTCCATTCGCCCTGGAATTCGCCCTGGACCTGGCTCGGCAGACCGGGCGGGAATTCGTCTCGCCGTTCGATGACCCGCAAGTCATCGCCGGGCAGGGAACCGTCGCGATGGAGATCCTGCGCCAGCATCCAGGTCAACTGGATGCCATCTTTGTTCCGGTCGGCGGTGGCGGCTTGATTGCCGGGGTGGCGGCTTACGTCAAATACCTGCGTCCGGAGGTGCGCATCATTGGCGTCGAGTCGGAACACTCCGCATGCCTCCAGGCCGCACTGGCAGCAGGGGAGCGGGTGACGCTAGCGAGCGTCGGCACGTTCGCCGACGGCGTGGCCGTCGCGCAGATCGGCGCCCATGGCTTCGATATCTGTCGTTTCTGTGTCGATGAAGTGATCACCGTCAGCAACGACCAGCTCTGCGCCGCGATCCGGGATATCTATGACGACACCCGCTCGATCACCGAGCCATCCGGCGCCCTGGCGGTGGCGGGGATCAAGCGCTACGTGACGGACAGCGGAGCGCAGGGCCAGACACTGGTGGCGATCAACTCTGGCGCAAACATCAACTTCGACAGCTTGGGCCACGTGGCAGAGCGCGCGGCAATGGCTGCGTCTTGAMTPTSPEQTLLEHYVKKILAAAVYELAVPTPLQAAAALSQALGNRILLKREDLQPTFSFKIRGAYNKLVQLTPEQRSRGVITASAGNHAQGVALAAQALGISACIVMPRTTPQLKVLGVRSRGAEALLHGESFPFALEFALDLARQTGREFVSPFDDPQVIAGQGTVAMEILRQHPGQLDAIFVPVGGGGLIAGVAAYVKYLRPEVRIIGVESEHSACLQAALAAGERVTLASVGTFADGVAVAQIGAHGFDICRFCVDEVITVSNDQLCAAIRDIYDDTRSITEPSGALAVAGIKRYVTDSGAQGQTLVAINSGANINFDSLGHVAERAAMAASPGPT0001960_5302DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_THREONINE_DEGRADATION,PGPT0001960-ilvA|tdcB-K01754NANA
D1-35_034761152yliICOG2133Aldose sugar dehydrogenase YliIATGTTGCGTAAAACATTCCTGGCAACACTTTGCGCCAGCGCTGTCCTGGCCCTTTCAGCGCCGGCCTCTGCCGCGCCAGTCCAGCAATTCAAGGCCGAGGACGGCACCGTCGAAGTCACCACGGTCACCCGGGGGCTGGAGCGGCCCTGGTCCGTGGCGTTCCTGCCGGAGCAGCAGGGCATGCTGGTCACGGAGCGTCCCGGTAACCTGCGATGGGTGAAGGCCGACGGGAAATTGTCTGCGCCGTTGAGCGGTGTTCCCGAGGTCTGGGCCAAGGGGCAGGGTGGTTTGCTGGATGTTGTGCTGTCTCCGGACTTCAAACAGGATCGCACCGTCTACCTGTCGTATGCCGAGGCGGGCGAGGATGGCAAGGCCGGCACGGCGGTGGGCCGTGGGCAGTTGTCCAGCGACATGACGCGCCTGGACAACTTCGATGTAATTTTCCGCCAGCAACCCAAGCTCTCGACGGGCAACCATTTCGGTTCGCGCCTGGTATTCGACCGGGACGGCTATCTGTTCATCACCCTGGGCGAAAACAACGACCGTCCGACCGCACAGGACCTGGACAAGCTGCAAGGCAAGATCGTGCGGATCTATCCCGACGGCAAGGTGCCGGACGACAACCCTTTCGTGGGGCAGAAAAACGTCCGTCCCGAGATCTGGTCCTACGGCTTGCGCAATCCCCAAGGCGCCGCGCTCAATCCGTGGAATGGCACGCTATGGGAGAGTGAGCATGGCCCCAAGGGCGGTGACGAGCTGAACATCATCGAGCGCGGCAAGAACTATGGCTGGCCGTTGGCGACTCATGGCGACAACTATTCCGGCGCGCCGATTCCCGAGGCCCAAGGCAAGACCGCGAAGGGTACCGTCGGTCCCCATCACGTCTGGCAGGTATCGCCAGGGCTCAGCGGCATGGCGTTCTACGACAATGACCGGTTTAAGGCCTGGCAACGCAACGCGTTTGTCGGGGCGCTGGTTTCCAGGGACCTGATTCGCCTGGAGTTCGACGGCGACAAGGTTGTCCATGAAGAACGCTTGCTTGGCGAGCTCAAGGAGCGGATCCGCGATGTTCGCCAGGGGCCGGATGGTTTCCTCTATGTGCTGACGGACGACGATGACGGTGCGCTGTACAAGGTCGGGCTGAAGCAATAGMLRKTFLATLCASAVLALSAPASAAPVQQFKAEDGTVEVTTVTRGLERPWSVAFLPEQQGMLVTERPGNLRWVKADGKLSAPLSGVPEVWAKGQGGLLDVVLSPDFKQDRTVYLSYAEAGEDGKAGTAVGRGQLSSDMTRLDNFDVIFRQQPKLSTGNHFGSRLVFDRDGYLFITLGENNDRPTAQDLDKLQGKIVRIYPDGKVPDDNPFVGQKNVRPEIWSYGLRNPQGAALNPWNGTLWESEHGPKGGDELNIIERGKNYGWPLATHGDNYSGAPIPEAQGKTAKGTVGPHHVWQVSPGLSGMAFYDNDRFKAWQRNAFVGALVSRDLIRLEFDGDKVVHEERLLGELKERIRDVRQGPDGFLYVLTDDDDGALYKVGLKQPGPT0017700_1229DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_ALDOSE_DEGRADATION,PGPT0017700-yliI-K21430NANA
D1-35_03477342hypothetical proteinATGAACAGACTGATACTCGCCACCCTGGTGCTGCTGACGGCAGCCACTGCCCAGGCGGCTACGCCCGGCGCCGATCCAGTACTCGTGGCGCAGAACCTGCCGGGCAACAACAATCCCTACAACAGTCCGATTCGCCGGGCCAACCCGAACAGCATGCAGGGCACCCAGCCCAACGTGCCAGGCATACGGAACAACCCGACGGTTCCGGTTCCCCGACCGCCGACCCTGGAGAATGGCGGCATCGGCAACGGCTACCCGCGTTCCGGACCGCCATCGGGGTCGCCACGCCCCACCATCGAGTCGCCGACGCCTCCCCGGCACACCAATAATGGCAATCGTTGAMNRLILATLVLLTAATAQAATPGADPVLVAQNLPGNNNPYNSPIRRANPNSMQGTQPNVPGIRNNPTVPVPRPPTLENGGIGNGYPRSGPPSGSPRPTIESPTPPRHTNNGNRNANANANANA
D1-35_03478891kuCOG1273Non-homologous end joining protein KuATGGCACGGGCTATCTGGAAAGGCGCAATCAGTTTCGGGCTGGTCCACATTCCCGTGGCCCTGGTGTCAGCCACCGCGTCCCAGGGCGTGGATTTCGACTGGCTGGACAAACGCAGCATGGACCCGGTGGGCTACAAGCGGGTCAACAAGGTTACCGGCAAGGAGGTGACCAAGGACGACATCGTCAAAGGCGTGGAATACCAGAAAGGCCAATACGTGCTGATCAGCGAAGAGGAGATTCGCGCCGCCCACCCCAAGTCCACCCAGACCATCGACATCTTTTCCTTCGTCGACAGCGAGAAGATCCCGCTGCAGAACATCGAAAAGCCGTATTTCCTCGCACCTGATAAACGTGGTGGCAAAGTCTACGCCCTGCTGCGCGAAACCCTGCTCAAGACCAACAAAGTCGCGCTGGCGAATGTGGTGATGCATACCCGCCAGCACCTGGCGGCGCTGATGCCCCTGGAATCGGCCCTGGTGCTGGTGCTGCTGCGCTGGCCCGCCGAAGTCCGCGAACTCGACGTCCTGGAACTGGGCGACGAAGTCACCAACCCGACGCTGGCGAAGGGCGAACTGGACATGGCCAAACGGCTCGTAGAAGACATGAGTGGCGACTGGGAACCCCAGGAGTATCGCGACAGTTTCCAGGAAAAGATCATGGAACTGGTGGAGAAAAAAGCCACCGAAGGCCGGCTCGAAGCGGTGGAAACCGACCCCGGCGAAGAACAGCGCAAAACCGCCGACGTTATCGACCTCACCGAACTGCTCAAGCGCAGCCTCGGCGGCAAGGGCAAGACGGCGGAAAAGCCTGCCGAAAAGCCTGCGGCAAAATCGACCAAGACGCGCAAATCCGCTCCTGCTAAAAAAGCCACCAAGGCCTCCCGGGGCTAAMARAIWKGAISFGLVHIPVALVSATASQGVDFDWLDKRSMDPVGYKRVNKVTGKEVTKDDIVKGVEYQKGQYVLISEEEIRAAHPKSTQTIDIFSFVDSEKIPLQNIEKPYFLAPDKRGGKVYALLRETLLKTNKVALANVVMHTRQHLAALMPLESALVLVLLRWPAEVRELDVLELGDEVTNPTLAKGELDMAKRLVEDMSGDWEPQEYRDSFQEKIMELVEKKATEGRLEAVETDPGEEQRKTADVIDLTELLKRSLGGKGKTAEKPAEKPAAKSTKTRKSAPAKKATKASRGNANANANANA
D1-35_034791989ligD_1COG1793Multifunctional non-homologous end joining protein LigDATGGCCAAGGCCGAGAGTGAATATGCCCGCCTGTCCGCCGTGGAGGCGGATGAACCAACGACTCGTAGCCGCACCCGCCGGAATGCGCAGACCGACACGGGGCGAATCCCCGAACGTCTGTCGCCGCAGCTGGCGACACCGGTGGAGCAACCGCCGGCCGGTGAGTGGCGCTATGAAGTGCAGTTTCATGGCTACCGGTTGATGACGCGCATCCAGAACGGCGAGGTCCGGCTGTTCAATCGCCACCATGCGGACTGGACCGATCGCCTCACGCTGCACGCCGACGCCCTGGCCCAGTTGAATCTGGGCGACAGCTGGCTCGACGGCGAACTGGTGCTGCTCGATGAGACCGGGCATTCCGACTTCCCTGCCCTGCGCCAGGCCTTCGAGATCGGCCGCAGCGTCGACATGCTGTATTTCCTTTTCGACGCACCGTTTCTCAATGGCGTCGACCTGCGCGACAAACCGGTTGAAGAACGCCGCGCAGCCTTGAAAAATGCGCTCAAGAGCAACTCCAGCAAGCGCCTGCGGTTCTCCGAGGCGTTTTCCGCCAGCCAGCATGACATCTTCGAAAGCGCCAGCGCCCTGTCACTGGACAGCGTGGTTGGCAAGCGTCTGGGCAGCCCTTATGCCTCGGGACGGAACGCCGATTGGGTCAAACTCAGATGTCGGCTGCGCCAATGCTTCGTCATCGTCGGGTTCACCCGCCCGCAAGGCACGCGCAACGGCTTCGGCGCACTGTTGCTAGCGGTCAACGGGCCGTCGGGGCTGGTCTATGCCGGCCGGGTCGGCACGGGCTTCAGCCAATCCCAACTCAAACAACTGCATGAACAGCTATGTGCCTTGGAACGTGAAACGTCGCCACTCGACCAGCTGCTCAAAGGCGCACCGGCGCGCGGCGTGCATTGGGTCGAGCCGACGCAGGTCTGCGAAATCGAATTTGCCGAATGGACCCGCGACGGGCTGGTGCGTCAGGCGGTGTTCCTCGATCTGCCCGGCGACCGGCAGGTCAGTCGGGTGACGCGTGAACAACCCATGCCCATCAAAGCCACGCCCGCCAAGCCCAAACGCCGCGGCAAGGCCGACACCGCGAAAGTCGACGGCGTGGTCATCACCCACCCGGACCGCGTCGTCGACAGCGTCAGCGGTGTGCAGAAAGCCGAACTGGCCCAGTATTACCTGGACATCGCCCCCTGGATCCTGCCGCATCTCAAGTTGCGGCCGGTCTCCCTTGTACGGGCGCCGGAAGGGATTGGCGAGGAGCTGTTTTTTCAGAAACACGCCGATCGCCTGGAAATCCCCCATATCAGGCAACTCGATCCGGCGCTGGACCCGGGCCATGCGGCTTTGATGGAAATCGACAGCATCCATGCCCTGGTCGGCGCGGCGCAGATGGGCGCGGTGGAACTGCACACCTGGACGGCGACCCATGACCGGATCGAGACGCCCGATCTGTTTGTGCTGGACCTGGACCCGGATCCGTCGTTGCCCTGGAACGCCATGCTCGACGCGACGCGCATGACCCTGTCAGTACTCGACGAACTGGGTTTGCAGGGGTTTCTCAAGACCAGCGGCGGCAAAGGCATGCACGTCATCGTGCCACTGGCGCGAAGCGAGGGGTGGGACGTCACCAAGGCCTTTGCCAAGGCCATATCGCAGTTCCTGACCCGGCAGATGCCGCAACGAATCACCGCGACCATGGGCCCGAAAAACCGCGTGGGCAAGGTCTTTATCGACTACCTGCGCAACGCCCGTGGTGCCAGTACCGTCGCCGCTTATTCGGTGCGTGCCCGGCCGGGCCTGCCGGTTTCGGTACCGATCGCCCGGGACGAACTCGCCGGCCTGCGCAACGCGCAGCAATGGGATATCCATACCGCGCTGGAACGGGCCAAGGGCCTGGGCGCCGATCCGTGGGAAGGCTACAACCATCGCCAACGGATCACGGCGAAGATGTGGGAACAGTTGGAGGCTGAGAAACCGGGCGGCTGAMAKAESEYARLSAVEADEPTTRSRTRRNAQTDTGRIPERLSPQLATPVEQPPAGEWRYEVQFHGYRLMTRIQNGEVRLFNRHHADWTDRLTLHADALAQLNLGDSWLDGELVLLDETGHSDFPALRQAFEIGRSVDMLYFLFDAPFLNGVDLRDKPVEERRAALKNALKSNSSKRLRFSEAFSASQHDIFESASALSLDSVVGKRLGSPYASGRNADWVKLRCRLRQCFVIVGFTRPQGTRNGFGALLLAVNGPSGLVYAGRVGTGFSQSQLKQLHEQLCALERETSPLDQLLKGAPARGVHWVEPTQVCEIEFAEWTRDGLVRQAVFLDLPGDRQVSRVTREQPMPIKATPAKPKRRGKADTAKVDGVVITHPDRVVDSVSGVQKAELAQYYLDIAPWILPHLKLRPVSLVRAPEGIGEELFFQKHADRLEIPHIRQLDPALDPGHAALMEIDSIHALVGAAQMGAVELHTWTATHDRIETPDLFVLDLDPDPSLPWNAMLDATRMTLSVLDELGLQGFLKTSGGKGMHVIVPLARSEGWDVTKAFAKAISQFLTRQMPQRITATMGPKNRVGKVFIDYLRNARGASTVAAYSVRARPGLPVSVPIARDELAGLRNAQQWDIHTALERAKGLGADPWEGYNHRQRITAKMWEQLEAEKPGGPGPT0014910_1149DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014910-ligD-K01971NANA
D1-35_03480900hypothetical proteinGTGAAGCTCATTATTGTCGCAATCTACGTACTTTCCATTGGCTATGTGCACCTGCGCGGGCGCGTGCGGCATAAATTCGGGCGCCAGTTGAGCGATCACTCATCCTTCCTTGCGCCGATCAATTGCCTGCTCTACCTGTGTTCGAAACTGCCCAACAGGCCTTTCCTGAGCCCGGCCCAGTTTCCTGACCTGAGCCCCTTGCAGGCCCATTGGGAAGAGATCCGCGCCGAAGGCCAGAGCCTGCTGCAAGCGGGGGAGATCAAGCGCTCCGATCAATATGACGACGTGGGCTTCAACTCGTTTTTCAAGACTGGCTGGAAGCGCTTCTACCTGAAGTGGTATGGCGACAGCCATCCCTCGGCGATGAAGCTGTGCCCGCGCACCACCGAACTGGTGCAGAGCATCGGCTCGATCAAGGCCGCGATGTTCGCCGAGCTGCCGCCGGGTTCGAAGCTGGTGCGTCATCGCGATCCGTATGCCGGGTCTTATCGCTACCACTTGGGGCTGCAGACACCCAACGACGCCGGCTGCTACATCAATGTCGACGGTGAGGCTTATCACTGGCGCGACGGCGAGGCGGTGGTGTTCGACGAAACATTCATTCATTACGCCGAGAACACCACGTCGCAGAACCGCATCATCCTGTTCTGCGACGTGGAGCGGCCGATGAGATTTCGTTGGGCCACCGCCTTCAATCGCTGGTTCAGTCGTACCGTGATGGCCGCCGCTGGCGCGCCGAATGACGCCGGGGACCGGACCGGTGGCCTGAACCGGGCGTTTTCCCGGCTGTACAAGATCCGCCTGCAAGGCAAAGCGCTGAAAAAGCGCAATCGCAAGCTGTATTACCTGCAGAAATGGGCGTTCTTTGGCGGCCTGCTGGCGATCTTCATCTGGATCTGAMKLIIVAIYVLSIGYVHLRGRVRHKFGRQLSDHSSFLAPINCLLYLCSKLPNRPFLSPAQFPDLSPLQAHWEEIRAEGQSLLQAGEIKRSDQYDDVGFNSFFKTGWKRFYLKWYGDSHPSAMKLCPRTTELVQSIGSIKAAMFAELPPGSKLVRHRDPYAGSYRYHLGLQTPNDAGCYINVDGEAYHWRDGEAVVFDETFIHYAENTTSQNRIILFCDVERPMRFRWATAFNRWFSRTVMAAAGAPNDAGDRTGGLNRAFSRLYKIRLQGKALKKRNRKLYYLQKWAFFGGLLAIFIWIPGPT0022350_471DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LIPID_A_METABOLISM,PGPT0022350-lpxO-K12979NANA
D1-35_034811566ybiTCOG0488putative ABC transporter ATP-binding protein YbiTATGCAGTTCGGCGCCAAGCCACTGTTCGAAAACGTCTCTGTCAAATTTGGCGCGGGTAACCGCTACGGCCTGATCGGCGCCAACGGTTGCGGCAAGTCGACCTTCATGAAAATCCTCGGCGGCGACCTCGAGCCGTCCGGCGGCCAGGTGATGCTCGAGCCGAACGTGCGCCTGGGTAAACTTCGCCAGGATCAGTTCGCCTACGAAGAATTCACCGTGATCGACACCGTGATCATGGGTCACGAAGAGCTGTGGAAGGTCAAGGCCGAGCGCGACCGCATTTATTCGCTGCCGGAAATGACCGAAGAAGACGGCATGGCCGTGGCTGAGCTGGAAACCGAATTTGCCGAGATGGACGGCTACACCGCCGAATCTCGCGCCGGTGAACTGCTGTTGGGCCTGGGGATTGGCATCGAGCAGCATTTCGGTCCGATGAGCGAAGTGTCGCCAGGCTGGAAACTGCGTGTGCTGCTGGCCCAGGCGCTGTTCTCCGACCCGGAAGTGCTGCTGCTTGACGAGCCGACCAACCACCTGGATATCAACACCATCCGCTGGCTGGAAAACGTACTGACCCAGCGTTCGAGCCTGATGATCATCATCTCCCACGACCGTCACTTCCTGAACAGTGTCTGCACCCACATGGCGGACCTGGACTACGGCGAGCTGCGTCTGTTCCCGGGCAACTACGACGAGTACATGACCGTGGCGACCCAGTCCCGCGAGCAGCTGCTGTCGGACAACGCCAAGAAGAAAGCACAGATTTCCGAACTGCAGTCATTTGTCAGCCGTTTCTCGGCCAACGCCTCGAAAGCCAAGCAGGCCACCTCCCGCGCCAAGCAGATCGACAAGATCCAGCTGGCCGAGGTCAAGCCATCGAGCCGCGTCAGTCCGTTCATCCGTTTCGAGCAGACCAAGAAGCTGCACCGCCAGGCGGTCATCGTCGAACGCATGGCCAAGGGCTTCGACGGCAAGCCGCTGTTCAAGGATTTCAGCTTCACCGTCGAAGCCGGTGAGCGCGTGGCGATCATTGGCCCGAACGGCATCGGCAAGACCACCTTGCTGCGCACCCTGGTCAATGAACTGGAACCGGATGCCGGTACCGTGAAATGGACCGACGCCGCGGAACTGGGCTACTACGCCCAGGACCACGCCCATGACTTCGAGGATGACGTCAACCTGTTCGACTGGATGGGCCAGTGGACCCAGGGTGGCGAGCAGCTGGTTCGTGGCACCTTGGGCCGCATGCTGTTTTCCAACGACGAGATCCTCAAGTCGGTCAAGGTCATCTCCGGTGGTGAACAAGGCCGCATGCTGTTCGGCAAGCTGATCCTGCAAAAGCCGAACGTGCTGGTGATGGACGAACCGACCAACCACCTGGACATGGAATCCATCGAAGCGCTGAACCTGGCGCTGGAAAACTATCCGGGCACGTTGATCTTCGTCAGCCACGACCGTGAGTTCGTGTCGTCCCTGGCAACCCGCATCATCGAGCTCAGCGCCGACGGCGTGGTCGACTTCAGCGGCACCTATGACGACTACCTGCGCAGCCAGGGCGTGTTGTTCTAAMQFGAKPLFENVSVKFGAGNRYGLIGANGCGKSTFMKILGGDLEPSGGQVMLEPNVRLGKLRQDQFAYEEFTVIDTVIMGHEELWKVKAERDRIYSLPEMTEEDGMAVAELETEFAEMDGYTAESRAGELLLGLGIGIEQHFGPMSEVSPGWKLRVLLAQALFSDPEVLLLDEPTNHLDINTIRWLENVLTQRSSLMIIISHDRHFLNSVCTHMADLDYGELRLFPGNYDEYMTVATQSREQLLSDNAKKKAQISELQSFVSRFSANASKAKQATSRAKQIDKIQLAEVKPSSRVSPFIRFEQTKKLHRQAVIVERMAKGFDGKPLFKDFSFTVEAGERVAIIGPNGIGKTTLLRTLVNELEPDAGTVKWTDAAELGYYAQDHAHDFEDDVNLFDWMGQWTQGGEQLVRGTLGRMLFSNDEILKSVKVISGGEQGRMLFGKLILQKPNVLVMDEPTNHLDMESIEALNLALENYPGTLIFVSHDREFVSSLATRIIELSADGVVDFSGTYDDYLRSQGVLFNANANANANA
D1-35_034821194yhhS_2putative MFS-type transporter YhhSATGCCAACGCCCCAGCCCGCATCCAGTTCCCTGTCGATCACCTTGCAGATCGTCTCCATCGTTTTTTATACCTTCATCGCTTTCCTCTGCATCGGCCTGCCGATTGCCGTGTTGCCTGGGTATGTCCATGAGCAACTGGGCTTCAGCGCAGTGGTGGCCGGGCTGACCATTGGCTCGCAGTATCTGGCGACCTTGCTCAGCCGGCCCATGGCCGGGCGACTGTCGGACAATGTCGGCACCAAGCGGGCGATCGTCTACGGCCTGGTGGGCATCCTGCTCAGTGGCGTGCTGACGCTGTTGTCGACGCTGCTGCAAAGCTTTCCGTTGCCCAGCCTGTTGATCCTGATTGCCGGGCGTTTGCTGCTCGGGGTCGCCCAAGGCCTGATCGGCGTCGGTACCATCAGCTGGTGCATGGGACAGGTCGGCGTGGAGCACACTGCCCGTTCGATCTCCTGGAACGGCATCGCTTCCTATGGCGCCATCGCCATCGGCGCACCGCTGGGCGTGGTCATGGTCGGCGGCCTGGGCTTCGCCAGCCTGGGCATCGCCTTGTCGTTATTGGCCGGCGGCGCATTGCTGCTGATTCGCAACAAACCCTCGGTGCCGGTCGTTCGCGGCGAGCGCCTGCCCTTCTGGGCCGTGTTCGGACGCATTGCACCGTTCGGGACAAGCCTGTGCCTGGCCTCGATCGGCTATGGCACGCTGACCACCTTCATCACCCTGTTCTACCTCAGCCGAGGCTGGACCGGCGCCGCCTGGTGCCTGACCGTTTTCGGCATCTGCTTCATCCTGTCACGGTTGCTGTTCATCTCCAGCATTGCCCGTTTCGGTGGCTTCAACTCGGCCATTGTCTGCATGAGCATCGAGACCCTGGGCCTGGTGCTGCTGTGGCTGGCGCCTACCACCGCATTCGCCTTGGTCGGCGCGGGGCTGGCGGGCTTCGGGTTGTCGCTGGTGTACCCGGCGCTGGGCGTGGAGGCCATCAAGCAGGTGCCCAACAGCAGCCGCGGCGCCGGCTTGAGTGCCTATGCGGTGTTCTTTGACCTGGCACTGGCGATTGCCGGACCGCTGATGGGCGCGGTGGCATTGAACCTGGGCTACTCGTCGATATTTTTCTTCGCCGCCTTGCTGTCGATCATCGGCCTGGGCCTGACGCTCGTGTTGCGTCGGCGAGCCGAAAGCCCGCATCACTGAMPTPQPASSSLSITLQIVSIVFYTFIAFLCIGLPIAVLPGYVHEQLGFSAVVAGLTIGSQYLATLLSRPMAGRLSDNVGTKRAIVYGLVGILLSGVLTLLSTLLQSFPLPSLLILIAGRLLLGVAQGLIGVGTISWCMGQVGVEHTARSISWNGIASYGAIAIGAPLGVVMVGGLGFASLGIALSLLAGGALLLIRNKPSVPVVRGERLPFWAVFGRIAPFGTSLCLASIGYGTLTTFITLFYLSRGWTGAAWCLTVFGICFILSRLLFISSIARFGGFNSAIVCMSIETLGLVLLWLAPTTAFALVGAGLAGFGLSLVYPALGVEAIKQVPNSSRGAGLSAYAVFFDLALAIAGPLMGAVALNLGYSSIFFFAALLSIIGLGLTLVLRRRAESPHHNANANANANA
D1-35_034831095hypothetical proteinATGGCCGGAGCGGCGAGCGACGTGGCTCCTGGTGGGTGGGTGAAGGTGGACTATTCGATGATGCGTCTTGGTGCGCTGCTGCTGCTTTGCTGGGTGAGCGGTCTCGGTTCGGTGCAGGCCGCGCCGGCGCCACATCCGCATTGGAGCGCGGGCTTTCATGAGCTGGATTTTCCTGATCCGCTGGACCACCAGCCGATGCATGCCATCGCGTTTTACCCCTCCACCGCGAAGGAGCAATCCAGTCTGTTGGGCGGCTACCAGATCGATGCGGCGGCGGATGCACAGATCGCCATCGGGCGGTTTCCGCTGCTGATGCTGTCCCATGGCAATACCGGCACGCCGCTGGCCCTGCATGATCTGGCCACGTCGCTGGCCCGCAAGGGCTTCGTCGTGGTGGCGGTGATTCATCCCGGCGATAACGCCCAGGATCACAGCCGGCTCGGTACGCTGAGTAACTTGTACGGGCGGCCGATCCAGATCTCCGAAGCCATCACCGCGACGCTGAACGACCCGATGCTGGCGCCCTTCGTCAACGCCGGGCAGGTCGGCGTGATCGGCTATTCGGCCGGTGGCGAAACCGCGCTGATCCTGTCTGGCGCCACGCCGGACCTCAATCGCCTGCGCCGTTATTGCCAGGAGCGACCGGATGACCGTGACGCCTGCAATACCCAGGGAGAACTGATTGCCGACCGCGATGACCTGTATCCGGTGGCCGATCCCAGGGTCCGCGCGCTGTTGCTGATGGCGCCGTTGAGTTTGAAGTTCGGTCGGCACACGTTGGCCGATGTCCATGTGCCGGTGCTGCTCTATAGCGGCGACGGCGACAAACTGGTGGCTTTCGACAAGAACGCCGCGGCCCTGGCGCGCAAGCTGCCTACCGCGCCGGATTTCAAGACGTTGGCCGGGGCCGGGCACTTTGTTTTCATGGCGCCCTGTACGGACGAGCAGATCGCGGCGATGCCAGCGCTGTGCACCGATGCCGACGGCGTTGATCGCAAGGACATTCACCGCACGATGATCACCGAAGCCAGTCGCTTCTTCAGCCAGGCACTGGGAAAGCCGACCCGTGCGGGCCTGCGGACTGCCGATCAGTGAMAGAASDVAPGGWVKVDYSMMRLGALLLLCWVSGLGSVQAAPAPHPHWSAGFHELDFPDPLDHQPMHAIAFYPSTAKEQSSLLGGYQIDAAADAQIAIGRFPLLMLSHGNTGTPLALHDLATSLARKGFVVVAVIHPGDNAQDHSRLGTLSNLYGRPIQISEAITATLNDPMLAPFVNAGQVGVIGYSAGGETALILSGATPDLNRLRRYCQERPDDRDACNTQGELIADRDDLYPVADPRVRALLLMAPLSLKFGRHTLADVHVPVLLYSGDGDKLVAFDKNAAALARKLPTAPDFKTLAGAGHFVFMAPCTDEQIAAMPALCTDADGVDRKDIHRTMITEASRFFSQALGKPTRAGLRTADQNANANANANA
D1-35_03484609azoR1_1COG1182FMN-dependent NADH-azoreductase 1ATGAAACTGTTGCACATCGATTCGAGCATCCTCGGCGACAACTCCGCTTCGCGCCAACTGAGCCGTGAACTGGTGCAAGCCTGGAAAGCCGCCGAGCCAGCTATCAACGTCACCTATCGTGACCTGGCCGCTGACGCCATCAGCCACTTTTCCGCGCAGACCCTGGTCGCTGTCGGCACCAGCGCCGAATTGCGCGATGCCGCTCAACAGCACGAAGCTGACCTCAGCGCGTCGACCCTGGCCGAGTTCCTCGCCGCCGACGCGGTGGTGATCGCAGCACCGATGTACAACTTCAGCATCCCGACCCAACTCAAGGCCTGGATCGACCGTATCGCCGTGGCCGGCCAGACCTTCCGCTACACCGAAGCCGGCCCGGAAGGCCTGTGTGGCGACAAGAAGCTGGTCATCGTTTCCACCTCGGGCGGCCTGCACGCCGGTCAACCGAGCAGCGTGGGGCATGAACAATACCTGAGGTTGATGTTCGGTTTTCTCGGCATCACCGACATCGAATTTGTTCGCGCAGAAGGCCTGGCTTACGGTGACGACATGCGCACCAAGGCCATCAGCGAGGCCAAGCTGCAGATCAGCCAGCAGTTCGCCGCTGCGTAAMKLLHIDSSILGDNSASRQLSRELVQAWKAAEPAINVTYRDLAADAISHFSAQTLVAVGTSAELRDAAQQHEADLSASTLAEFLAADAVVIAAPMYNFSIPTQLKAWIDRIAVAGQTFRYTEAGPEGLCGDKKLVIVSTSGGLHAGQPSSVGHEQYLRLMFGFLGITDIEFVRAEGLAYGDDMRTKAISEAKLQISQQFAAAPGPT0006790_2083DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_DEGRADATION_OF_OTHER_NITRO-COMPOUNDSXENOBIOTIC_AZO_DYE_DEGRADATION,PGPT0006790-acpD|azoR-K01118NANA
D1-35_03485909dmlR_18HTH-type transcriptional regulator DmlRATGCAAGACCTTAATGACCTGTATTACTTTGCCAAGGTGGTTGAAGCCGGTGGCTTCGCGGCCGCCGGGCGCTTGCTGGGCATCCCCAAGTCACGCTTGTCACGGCGAATCGCCGAGCTCGAAGAGCGCCTTGACGCCCGTCTGCTGCAACGCACCACCCGCCAGTTGAAGCTGACCGCCGTGGGTGAACGTTACCTGCGTCATTGCCAGGCCATGTTGCTGGAAGCGGAGATGGCCGACGAAGCGGTGGCGAGCATGTCCAGCGAGCCCCGTGGGCGTTTGCGGGTGTCGAGCCCGGTGGGCCTGGCGCACCAGTTCCTGCCGCTGATCATCGAAAGCTTCCTGGCGAAATACCCCCAGGTGCAGTTGGAAATGATCCTGCTCAACCGGCGCGTGGATCTGATCAGCGAGGGCATCGACGTGGCGTTGCGCGTCCGTGACCTGGGCGACGAAGACCCGCTGCTGATGACCCGGCGCTTGCGCCAGGCCCGCCTGACCCTGGTTGCCAGCCCGGTGCTCATTGAAGGGCGGCGGATCGAAACTCCGGACGACCTCAGGCAATTGCCGGTGCTGGGAGCGCTGGAGGCGGACCGTCTGGTGCATGTGCGCTTGCTCAGTACCGCAGGGCAAAGCGTCGAGCTGGCCCTGGAGGCGCGCCTGGGCATCGACGACTTTATCGTGCGGCGCGCCTGCACCCTCACGGGGCTGGGCTTTACCCTGTTGCCGAGCATGTATTGCGAAGAAGAACTGCGCGACGGTCGACTGGTGGAGCTGTTGCCTGGATGGTCATCACCGGATGGCTGGCTCCAGGCGGTCTATCCTCACCGGCGCGGCATGCTGCCGGCGGTGCGCGCGTGGATCGATCATCTGGTGGAAGCTTTTGCACAATGTGGAGACAGGACGATATGAMQDLNDLYYFAKVVEAGGFAAAGRLLGIPKSRLSRRIAELEERLDARLLQRTTRQLKLTAVGERYLRHCQAMLLEAEMADEAVASMSSEPRGRLRVSSPVGLAHQFLPLIIESFLAKYPQVQLEMILLNRRVDLISEGIDVALRVRDLGDEDPLLMTRRLRQARLTLVASPVLIEGRRIETPDDLRQLPVLGALEADRLVHVRLLSTAGQSVELALEARLGIDDFIVRRACTLTGLGFTLLPSMYCEEELRDGRLVELLPGWSSPDGWLQAVYPHRRGMLPAVRAWIDHLVEAFAQCGDRTINANANANANA
D1-35_03486351hypothetical proteinATGAGCTTGAGCGAAGAGGACGTCGCGCAATTCTGCCTGGGCTTGCCGGGCGCCCGGGAAGACTATAAATGGGGCGGCGTGCGGGTATTTTCGATCGCCGGCAACAAGATGTTCGCCCTGCAGAACCTGCGGGGGGATTCGTTGGCGTTCAAGGTCGACAAGGACCTGTTTCTCGGCCATTGCGACCGCCCCGGCATTCATCCGGCGCCGTACCTGGCCAGGGCCCAATGGATCATCATGCAAGTCCCCTACCCGCTGGGCGATGAGGAGCTGCGCAGTCTGTTGCGACGTTCCCATCAGTTGGTGGTCAGCAAGTTGCCCAAGCGCACGCAGGTTGGGTTGTTGCTGTAGMSLSEEDVAQFCLGLPGAREDYKWGGVRVFSIAGNKMFALQNLRGDSLAFKVDKDLFLGHCDRPGIHPAPYLARAQWIIMQVPYPLGDEELRSLLRRSHQLVVSKLPKRTQVGLLLNANANANANA
D1-35_03487378hypothetical proteinGTGCAGAACCTGCGCCTCAAGTTGACGGTATTTGCGATTCTGTGCGCGTTGCCGCTTTTTGGCTCGCTGCTGCTCGGATTGCGGGGCGAGTCGTGGGTGCCCATGACGGCGTACGGAGTCGTCAGTGCCGTGGCGTTCCTGCTTTACTGGAGCGACAAGCGCAAGGCACGCGCCGATGCCTGGCGCACGCCGGAGAACGTTCTGCACGCGGTCGAACTCGCCGGTGGCTGGCCGGGTGCATTGCTGGCCCAGCAGGTGTTTCGCCACAAGACCCGCAAAGTGTCGTTTCAAGTGGTGTTCTGGTTCATCGTGGTGTTGCACCAGGGATTCTGGATCGACCAGTTGTTCCTGGGCGGCCATCTGTTGGCGTTGTTCTGAMQNLRLKLTVFAILCALPLFGSLLLGLRGESWVPMTAYGVVSAVAFLLYWSDKRKARADAWRTPENVLHAVELAGGWPGALLAQQVFRHKTRKVSFQVVFWFIVVLHQGFWIDQLFLGGHLLALFNANANANANA
D1-35_03488831uppPCOG1968Undecaprenyl-diphosphataseATGGATTTGTGGACGGCCTTTTCGGCATTGATTCTCGGCGTGGTAGAAGGGCTGACGGAGTTCCTGCCGATTTCCAGTACGGGGCACCAGATCGTCGTCGCCGACTTGCTCGAATTCGGTGGGGAGCGCTCGATGGCGTTCAACATCATCATCCAGCTCGGTGCGATCCTGGCGGTGGTCTGGGAGTTTCGGCGCAAGATCTTCCACGTGGTGCTGGGCCTGCCGACCCAGCCCGGCGCTCGCCGCTTTACCGCCAACCTGCTGATCGCGTTTTTCCCTGCGGTGATACTGGGCGTACTGCTGGCCGACTGGATCCACCATTACCTGTTCAACCCGATCACGGTCGCCACCGCGCTGGTATTGGGAGGTCTGGTGATGCTCTGGGCCGAGAGGCGCCAGCACACGGTGCACGCCGAAACCGTGGATGACATGACCTGGAAGGATGCGCTGAAAGTCGGCCTGGCCCAGTGCATCGCGATGATTCCCGGCACCTCTCGCTCCGGTGCGACCATCATTGGCGGCCTGCTGTTCGGCCTGTCGCGCAAGACCGCCACCGAATTCTCGTTCTTCCTGGCCATGCCAACCATGGTCGGCGCGGCGGTCTACTCGGGTTATAAATACCGCGAGCTGTTTGTCCCGGCGGATTTCCCGGTGTTTGCCATCGGTTTCATCACCGCGTTCATCTTCGCCATGATCGCGGTCAAGGGCCTGCTGCGCTTCATCGCCAGCCACAGTTATGCGGTGTTCGCCTGGTACCGGATTGCGTTCGGCCTGTTGATCCTGGCGACCTGGCAATTCGGCTGGGTCGACTGGACGGCTGCCCGGCCTTGAMDLWTAFSALILGVVEGLTEFLPISSTGHQIVVADLLEFGGERSMAFNIIIQLGAILAVVWEFRRKIFHVVLGLPTQPGARRFTANLLIAFFPAVILGVLLADWIHHYLFNPITVATALVLGGLVMLWAERRQHTVHAETVDDMTWKDALKVGLAQCIAMIPGTSRSGATIIGGLLFGLSRKTATEFSFFLAMPTMVGAAVYSGYKYRELFVPADFPVFAIGFITAFIFAMIAVKGLLRFIASHSYAVFAWYRIAFGLLILATWQFGWVDWTAARPPGPT0024165_2189DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-UNDECAPRENOL_MODIFICATION,PGPT0024165-bacA-K06153NANA
D1-35_034891635mcpP_2COG0840Methyl-accepting chemotaxis protein McpPATGAATAGCTTGCGCAGTGTATCGATCAGCCGACGCCTGTGGCTCATCCTGGTCGTGGCCATCGTGATGTTGTTCACGCTGGGCGCGTTCATGCTAAAGCAGATCCACATCGATCTGTATCAGGCCAAGGTGCAGAAAACCCAACATGTAGTGCAGACCGCCAGCGGCGTACTGAGCTATTACCATGGCCTGGAGACCGCCGGTACCCTGACGCGCGAGGCGGCGCAGAAGCAGGCGCTCAGCGCGGTGCGCGGCCTGCGTTATGACCACAATGACTACTTCTGGATCAATGACCTGGCGCCGGTCATGGTCATGCACCCGACCAACCCGAAACTTGAAGGGCAGAACCTTTCGGCCATCCGCGATCCGAACGGTTTTGCCCTGTTCAACGAAATGGTCGCCATCGCCAAGGCCAAGGGCGCCGGCATGGTCGATTACCTTTGGCCCAAGCCGGGCGCCGAGGCACCGGTGGGGAAAACGTCCTATGTGAAGCTGTTCGAGCCTTGGGGCTGGATCATCGGTTCGGGCGTGTACGTGGATGATGTACAGGCGGAATTCCAGTCCCAGTTGATCAAGGCTTCCTTGATCGGCTTGGCGATCACCTTGTTCATGGGCCTGCTGTTGACCCTGATCGTACGCAGCATCGTCCGGCCCTTGCAGGAGACAGTCAATGCCATGGCCAACATCGCCAGCGGCGAGAGTGACCTGACCCGCACCCTCGATACCCATGGCCAGGACGAAGTCACGCAATTGGCCAGGCACTTCAATGCCTTCACCGCCAAGCTGCGCCAGGTGGTGGGTCAGTTGCAGGTCTCAGCCAGCGAGTTGGGGCAATCGTCCAGCGACCTGGGCAACGACGCCGCCCAGGCCCAGCAGCGCAGCCAGCAACAATCGCAACAGATGGAGCTGGTGGCGACCGCCATCAACGAAGTGACTTATGGCGTGCAGGATGTAGCGAAGAATGCCGAACACGCCGCCAGCGAAATGCGCGACGCCGAATCCCAGGCCCAGCAGGGCCAGGTGAACATCGACGGCAGCCTGCAACAGATCGACCGGCTCTCCCAGACCATCGACCAGGCCGTGGAAGTGATCCGCACCCTGGCCAGTGAAAGCACCCAGATCGGCAGTGTGCTGGAAGTGATCCGTTCGATTGCCGAGCAGACCAACCTGCTGGCGCTCAACGCCGCCATTGAAGCCGCCCGCGCCGGCGAGCAAGGTCGCGGTTTTGCCGTTGTGGCCGACGAGGTGCGCCTGCTGGCCCAGCGCACGCAGAAGTCCACCGCTGAAATCCAGGCGATGATCGAACGCCTGCAAAATCATTCCGAAGCCGCTGTGAAAGTCATCAGCGACAGCAGCCGTGCTTCGCAGCTGACCATCGAGCAGGCCGGACTGGCCGGCGCCAGCCTCAATGCCATCGGCCAGGCCCTGCGCAATCTCAACAGCCTGAACGCCTCCATCGCCAGCGCCACCCTGCAACAGGCGCATGTGGTGGAAGACATCAACCAGAACGTCACCCAGGCCGCCGGCCTGTCCCACAGCACCGCCATGGCCGCGGAACAGTCCAGCGTGGCAAGCGCCCGCCTCAAAGGCCTGAGCGAACAACTGAACGGCCTGCTCAAGCAATTTCGGGTCTGAMNSLRSVSISRRLWLILVVAIVMLFTLGAFMLKQIHIDLYQAKVQKTQHVVQTASGVLSYYHGLETAGTLTREAAQKQALSAVRGLRYDHNDYFWINDLAPVMVMHPTNPKLEGQNLSAIRDPNGFALFNEMVAIAKAKGAGMVDYLWPKPGAEAPVGKTSYVKLFEPWGWIIGSGVYVDDVQAEFQSQLIKASLIGLAITLFMGLLLTLIVRSIVRPLQETVNAMANIASGESDLTRTLDTHGQDEVTQLARHFNAFTAKLRQVVGQLQVSASELGQSSSDLGNDAAQAQQRSQQQSQQMELVATAINEVTYGVQDVAKNAEHAASEMRDAESQAQQGQVNIDGSLQQIDRLSQTIDQAVEVIRTLASESTQIGSVLEVIRSIAEQTNLLALNAAIEAARAGEQGRGFAVVADEVRLLAQRTQKSTAEIQAMIERLQNHSEAAVKVISDSSRASQLTIEQAGLAGASLNAIGQALRNLNSLNASIASATLQQAHVVEDINQNVTQAAGLSHSTAMAAEQSSVASARLKGLSEQLNGLLKQFRVPGPT0015710_20210DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_03490564pnuCCOG3201Nicotinamide riboside transporter PnuCATGTCCGGGCTTGAACTGTTTGCCGCAGCCCTCGGCGTGATCGCTGTCTGGTTGACCGTCAAGCAGAATCCCTGGTGCTGGCCGATCGGCCTGGTCATGGTGCTGCTGTACAGCTGGTTCTTCTTCGACGTGAAGTTGTACTCCGACATGCTCTTGCAGATGGTCTACGCCGTCCTGCAACTGTATGGCTGGTGGCAGTGGACCCGCGCCGGACACAATCACCATGGTCGGCAGGTGACGTATCTGGGTACGCCGTCAGTGCTGCTCAGCCTCGCCCTCGGTGCGACGGGCAGTCTGATGCTCGGGGCGGCCATGGCGCATTGGACCGACGCCGCCCAACCCTGGCTCGACGCGGCGCTGACCGGTTTCAGCCTGGTGGCTCAGTGGTGGATGGCGCAAAAGCGTGTGCAGTGTTGGCCGCTGTGGATCGTCCTGGATGTGATTTTCGTCGGCCTGTTCATCTACAAGGGTCTGTACCTGACCGCCGCGCTTTATGCGCTGTTCACTCTGCTGGCGGTGCAAGGCTGGCGGGAATGGCGCGCCGACCCGGCCCTGCGCACATGAMSGLELFAAALGVIAVWLTVKQNPWCWPIGLVMVLLYSWFFFDVKLYSDMLLQMVYAVLQLYGWWQWTRAGHNHHGRQVTYLGTPSVLLSLALGATGSLMLGAAMAHWTDAAQPWLDAALTGFSLVAQWWMAQKRVQCWPLWIVLDVIFVGLFIYKGLYLTAALYALFTLLAVQGWREWRADPALRTNANANANANA
D1-35_03491525hypothetical proteinATGAAAGTAGTGGTACTGACCGGCCCGGAATCCAGCGGCAAAAGCTGGCTGGCCGGGCAACTGCAGGCGCATTTCGGTGGTTTGCGGGTGGACGAATACGTGCGCCACTTCATGGAGCAAACCCAGCGTGATACCTGCCTGGCCGACATCACCGATATCGCCACCGGGCAACTCGCCTGGGAAGACGCGGCTCGTGCCCGGCAGCCGGCGCTGCTGATCCTCGATACCCATCTGTTGAGCAATATCCTCTGGAGCCAGACCCTGTTCGGTGATTGCCCGGATTGGCTCGAACCCGTCTTGCTGGCGCGCCATTACGATTTGCATCTGCTGCTCAGCCCCGAGCAGGTCGAATGGGTCGGCGACGGTTTGCGCTGCCAGCCGGAGCTGGCAGAACGGGTGAGGTTTTTCGAGACCATCAGGGACTGGCTGGTTCGCCACCAACAACCGTTCCTGTTGATTGAAGGCGACTGGGAGCAACGGCGCGAGCAAGTGTTCGCGGCCATTGCGCGGCTCCTTCAGGCCTGAMKVVVLTGPESSGKSWLAGQLQAHFGGLRVDEYVRHFMEQTQRDTCLADITDIATGQLAWEDAARARQPALLILDTHLLSNILWSQTLFGDCPDWLEPVLLARHYDLHLLLSPEQVEWVGDGLRCQPELAERVRFFETIRDWLVRHQQPFLLIEGDWEQRREQVFAAIARLLQANANANANANA
D1-35_03492450hypothetical proteinATGGGGACTTCCAACAGAAATCTGACCTGTCTGTTGTTGATCGGCTGCGCCGTCGGTGCGACGACGCTCAGCCTGCCGGCCCAGGCCGAGGGTAACGGTGTCATCGTACTCGACCGTGACGTGCAACCGGTTCATTTCGGTCGCAATGGCGGCAAAGACCCCTACCCGACCACCGTCAATGCCAATCCGTCCGTCCGGATCAACCAGGCGACCGCCAGTACCGAGCTCAGCGACGGCGAATTTGCCGGTGTCGCCAGCGGCTCGACAATCCGCAACACCACCACTGCGAACACCGGCGTGCAGGGCGTCAATGTCGTGACCAACCCCAACGGCATGCCGGGCATGAGTGCCGGCCACGGTGGCGGCAGCGGTGGCGCCATCTCGGGCACCATCAACCGCTCGCTGAGTTCCGGCCTGGCCCCTCTGGGTCGGTTGGCGGGAGGCCAGTGAMGTSNRNLTCLLLIGCAVGATTLSLPAQAEGNGVIVLDRDVQPVHFGRNGGKDPYPTTVNANPSVRINQATASTELSDGEFAGVASGSTIRNTTTANTGVQGVNVVTNPNGMPGMSAGHGGGSGGAISGTINRSLSSGLAPLGRLAGGQNANANANANA
D1-35_03493579hypothetical proteinATGAATCCAACCTGGCTCATGGTTGCCCTGCTCGGCAGCTCCACCGTGCTCGCCGCCCCGGGCGTGGCGGTGGTCAACCAGGCCGACCTGGAAAATTCCGGCGGTCGTTACACCGGTAATTTCAACGTCAACCAGGCGGCCGGCGACCAGACCCAGCAGACCAACACCCGCGCCATCGCCATCGGCACCGATGCCCACGCAAGCACCGTCGTGCACCAGCGCCTCGATACGCCGGCCAAGCCGTCGATGAACGCGAGCGCGCGTATCGGCGGCAACTCTTTCACCAACGGCAACGGCGTGCTGGGCGTCAACCAGTCCGCCGGGGCCAACAACCAGATGGCCAATGTCATGCGAGTGGGCATCAGTGCCCACCCGCAGAGCATGGACGACAGTGCCCTTTCCCAACAGAACGTGGCGCTGGTACCGAACTCGGGAGCAACTGACACCCCAACCGGCAGTCGCCAGGTCGCCACCAGCGACCAGGCCTTCACCGGCAGCCGAGGGGTGATCCAGGTGAACCAGAGTGCCGGGGTGGGGAACCGCATGGCCAACACCCTGAGCATCCGGGTCGCAGACTGAMNPTWLMVALLGSSTVLAAPGVAVVNQADLENSGGRYTGNFNVNQAAGDQTQQTNTRAIAIGTDAHASTVVHQRLDTPAKPSMNASARIGGNSFTNGNGVLGVNQSAGANNQMANVMRVGISAHPQSMDDSALSQQNVALVPNSGATDTPTGSRQVATSDQAFTGSRGVIQVNQSAGVGNRMANTLSIRVADNANANANANA
D1-35_03494972hypothetical proteinATGAAACCTACAATGGCGCTCAAACCATTGGTTTTCGCTCTCGCCGCTGTCATGGCAATGGCTGCGCAGGCCGGCGGAAACGGTAACGGGCACGGCAACGGTCATGGCAACCACGGCCCTCAAGGGCCAACGCTGGATCAGTTGCTGTCCATCAGCGCCGGCGCAGGGGCCACGGTGCTGGACGAGCAGAACAGCGATGGCAACGTGGTGACCAACCAGGCCACCCGCAACACCGCTGAAGCCACTGATTCGCTCAACGGCAGCAACGGCAACATGGGCGCCAACATCGCCGCCGGCGACGGCAACCAGCAAGACAATGCCGCCGCCCTGGCCACCGCCGACGAGAGCTTCATCTTCGGCGCGGCTGTCGCAGCGTCCAGCGCCACACAAGTCAATAACAACAACTATGTGAAGAACAACTCGACGCAGAACAACGCCTCGCTCACCAGCGCGGGCAACAACGGCTCCGGCAACATCGGCATCAACGTGACCGCCGGCAACTTCAACCAGCAGAAAAACAACCTGGCCATCGCCGTATCGGGCGGCCGCGTCGCCCAGGCTTCCGCCGCGGCCGACCAGTCGTCCACCGGCCTTGTCGTCGACAACAAAGGCGTGCGGACCTACAAGACCGACACCCTCACCAGCACCTCCGAGGCTTCCGGCACCTTCAAGGCCAAAGGCACCGGTACCGTCGAGGATGACGGCGGCTGGGGCAACAAGGGCGGCTACGGTGGTGGTCACGATGACGACAAGTTCAAGTTCTCCGCCGTGGGCACTTTCGAACTGGCCGGCAGCAATACCCAACAGGTGCTGACTCGCGACGGCTGGAAAAATCCGGTCTACAACAACGCCACCATGACCAACTCCATGAACGGCTTCTCCGGTAACGGCGGCGCCAACGTGTCGGCGGGCGTAGGCAACCAGCAAAGCAACTCGCTGTCGATTGCTGCCGGCTGCAAGGCTTGCATGTAAMKPTMALKPLVFALAAVMAMAAQAGGNGNGHGNGHGNHGPQGPTLDQLLSISAGAGATVLDEQNSDGNVVTNQATRNTAEATDSLNGSNGNMGANIAAGDGNQQDNAAALATADESFIFGAAVAASSATQVNNNNYVKNNSTQNNASLTSAGNNGSGNIGINVTAGNFNQQKNNLAIAVSGGRVAQASAAADQSSTGLVVDNKGVRTYKTDTLTSTSEASGTFKAKGTGTVEDDGGWGNKGGYGGGHDDDKFKFSAVGTFELAGSNTQQVLTRDGWKNPVYNNATMTNSMNGFSGNGGANVSAGVGNQQSNSLSIAAGCKACMNANANANANA
D1-35_03495681hypothetical proteinATGCGTGCGACTGCCCTTTGCCTGTTGGTTTTGCTTGCCGGCTTGACCGAAGCCGCGCAGATGCCGGTCGCCGCCCTGCCTGGCGGCATGCTGGTCTACAAACCCGTGCAAAGCGTACGCGAGCGCAAGTTCAGCGACATCGTCGAGCAGAAGACCGATTTCAGTTGTGGCGCCGCGGCGCTGGCCACTGTGTTGCGCCAGGCCTATTGGCTGGACGTCGACGAAGAGCATGTCATCAAGGGCATGCTGGTCAATGCCGACCAGGATCTGGTCCGCACCCAGGGTTTCTCCATGCTGGACATGAAGCGCTACGTGGAAACCATCGGCATGCGCGCCCGCGGCTATCGGATACCACCGGAAAAACTCGCCGCGGTGACGATCCCGGTCGTGGTCCTGATGGAAATTCGCGGCTACAAGCACTTCGTGGTGCTGCAGCGGGCGGACAAGCGATGGGTGTATATCGCCGACCCGGTGCTTGGTCACAAACGCTACGCCCATGACGAATTCGTAAAAGGCTGGAACGGCATTGTCTTCGCCATCGTCGGCCCCGGCTATGACAAGACCAACGCCTTGCGCAGCCCTCCGCAACCTCTGACAGCGCGCAACAAGCTGGACGGTTTTAATCCGGTCAAGGACGCGGAACTGATGGATTTCGGCTTCATCCAGAGCGACTTTTTCTAAMRATALCLLVLLAGLTEAAQMPVAALPGGMLVYKPVQSVRERKFSDIVEQKTDFSCGAAALATVLRQAYWLDVDEEHVIKGMLVNADQDLVRTQGFSMLDMKRYVETIGMRARGYRIPPEKLAAVTIPVVVLMEIRGYKHFVVLQRADKRWVYIADPVLGHKRYAHDEFVKGWNGIVFAIVGPGYDKTNALRSPPQPLTARNKLDGFNPVKDAELMDFGFIQSDFFNANANANANA
D1-35_03496747hypothetical proteinATGAAACGCTCATACTGGCTCACGCTGGCCTGCCTGGCCGCAACGACGTCGGGTCTTGCCCACGCCGGTTTCAAACCGATCGAAGTCCAGGACCAGGAGCTCGCCGAGCTGCGCGGTCGCTACGTCATGCCCGGACGAGTCATCAGTTTTGGCATCGTCATGAGCAGCACCTGGCGCAACGCCAGTGGCGACCTGATCGGCGCTTCCAGTTCCATGCAGATTCAGGCTGCAACGGTCAAACCGCAGTTCTACGTCTCCACGATCAAGCAGACCGGCAACGGCAGCGCCCCGGAACAGGGTGGCGGCACGATCACCGGCGGCGCCGGTCTCGGCTCGGGCCAGGGCGTAACCCAGAGCGTGCGCGCCGCGGGCGATGGCAACAGCGCGTACAACAATGTCAGCATCAACGTGAAAGAAAGCAGCCAGGCACCTGCCCTGGCGCCCGCCCAAGGCCAATTGCTCGACAAGGGCCAGACCATCAGCGGCAGCAACGCCGCCGGCAGCGTGGCGGTCACCGCCACCGGCAGCGGCATGCAGATGGCAATCCAGGCCAACCACAACCAGGGCAGCACCCTGCAACAGGTGGCCCAGGGCGGCTTGCTGCAAAACACCCGCCTGCTGGGCAACGGCAACCTGGTCAACAACATGACCCAGCTCAACGTGGTGCTGAACAGCAACGGCCCCAGCGCCGGGGCATTGGACTGCAACCTGACGCAGCTGCGCGGCCTTCGAAACCTTGGATATTGAMKRSYWLTLACLAATTSGLAHAGFKPIEVQDQELAELRGRYVMPGRVISFGIVMSSTWRNASGDLIGASSSMQIQAATVKPQFYVSTIKQTGNGSAPEQGGGTITGGAGLGSGQGVTQSVRAAGDGNSAYNNVSINVKESSQAPALAPAQGQLLDKGQTISGSNAAGSVAVTATGSGMQMAIQANHNQGSTLQQVAQGGLLQNTRLLGNGNLVNNMTQLNVVLNSNGPSAGALDCNLTQLRGLRNLGYNANANANANA
D1-35_034971284hypothetical proteinATGTATCGATCCGTATCGTTGCGCGCTGTGATGTGTTTAAGCACGATGTTTCCGGCGACCGTGCTGCAAGCGGCACCCGACGCGGACATCGAGGCCCTGAAGCAAGAACTTCTCGAGCTCAAGCAACGCTACGAGGTCCAGCAAAAAGCCCTGGCGGTACTCGAACAACGAGTCCGCCAGGTCGAGGATCAACCCGCCGCCCCGCCGCCCAAGCGCCTGGCCAAATCTCCCGCCGACATGAAAGGCAACCAAGGCGTGGCCGGCAGCGGCGCGGCAACGGCGGGTGGCAGTGGTTACGGGCAATCTTTGGCCGACGACTCGCAACCGGCCCAGAGCGTCTCCAACCTGTATGACGAAGCCAGCGGCTTTTTCGGCGGCGGCAAATTCAGCTTCGAAACCGGCGTGACCTACTCGCGCTACGACACCCGGCAACTGATTCTCAACGGCTTCCTGGCCCTGGATTCGATTTTCCTTGGCAACATCAACCTGGACCGGATCAAGGCGGACACCTGGACCCTGGACCTTACCGGTCGCTACAACTTCGACAATCGCTGGCAGTTCGACCTCAACGTGCCGGTGATCTACCGCGAGTCCACCTACCAGTCCGGTGGCGCCAACCAGGGCGCGGCCGGCGTCACCAGCGAAGAAACGGTGACCCGCGACCCCACCATCGGCGACGTCAATTTCGGCATTGCGTACAAGTTCATGGATGAATCGGTCAACAGCCCGGACGCGGTGGTGACTCTGCGCGTCAAGGCACCCACCGGCAAGGATCCGTTCGGCATCAAGCTGCGCCGGTCCCAGGCCAACACCAACCTGTTCGTGCCGGAAGACCTGCCCACCGGTAACGGCGTGTGGTCGATCACGCCCGGGATATCCCTGGTCAAGACCTTCGACCCGGCAGTACTGTTCGGCAGCCTGTCCTACACCCACAACTTCGAAGAGTCGTTCGACGACATCAGTTCCACCGTCAACCAGGAAGTGCCAGGCAAGGTGCGCATCGGCGACAGCTTCCAGATCGGCGCGGGCATCGCCTTTGCCCTGAACGAGAAGATGAGCATGTCGTTCTCGGTCTCGGACCTGATCCAGAAGAAAAGCAAGCTCAAGCAGGACGGCGGGGACTGGGAATCGGTGGTCTCCAGCGACGCCAACGCCGGTTACTTCAACATCGGCATGACGGTGGCCGCCAGCGACAACCTGACCATCGTGCCCAACCTGTCCATCGGGCTGACCGACGATGCGCCGGATTTCACCTTCAGCCTGAAATTGCCGTATTACTTCTAAMYRSVSLRAVMCLSTMFPATVLQAAPDADIEALKQELLELKQRYEVQQKALAVLEQRVRQVEDQPAAPPPKRLAKSPADMKGNQGVAGSGAATAGGSGYGQSLADDSQPAQSVSNLYDEASGFFGGGKFSFETGVTYSRYDTRQLILNGFLALDSIFLGNINLDRIKADTWTLDLTGRYNFDNRWQFDLNVPVIYRESTYQSGGANQGAAGVTSEETVTRDPTIGDVNFGIAYKFMDESVNSPDAVVTLRVKAPTGKDPFGIKLRRSQANTNLFVPEDLPTGNGVWSITPGISLVKTFDPAVLFGSLSYTHNFEESFDDISSTVNQEVPGKVRIGDSFQIGAGIAFALNEKMSMSFSVSDLIQKKSKLKQDGGDWESVVSSDANAGYFNIGMTVAASDNLTIVPNLSIGLTDDAPDFTFSLKLPYYFNANANANANA
D1-35_034981326atoC_2COG2204Regulatory protein AtoCGTGATTGAAACCAGTGCGTTGCGTCGTCTGCTCGTGGTCGATCCTTGCGATGATTGCTATCGCCTGTTACCGGGCCTGCGCGACATCGGTTGGGACGTCGACAGCTGCTCCCTGGAACACGCCAGCGACCGGACGTGTGACGTCGGCTTGTTGCGCCTGCAGCCCTTTCACCTGGAGCGTCCCGAGGCCGTCAAGGAATTGATTCGCCGCAGCGGCGCCGAGTGGATCGCCGTGCTCAGTCAGGAAGTGTTGCGCCTGCAAAACGTCGGCGATTTTGTCTGCGAATGGTTTTTTGACTTCCATACCTTGCCGTTCGATGTCTCCCGCGTCCAGGTGACATTGGGCCGGGCGTTCGGCATGGCGCGGTTGAGGGGGCGGGGCGCGGTTCACATCAATCAGCCTGAACATGAGCTGCTGGGCGACAGCAAGCCGATTCGCGAACTGCGCAAATTATTGGGCAAGCTGGCCCCCGCCGAGTCGCCGGTATTGATTCGTGGTGAAAGCGGCACGGGCAAGGAGCTGGTCGCGCGCACCCTGCATTGCCAATCGCACCGGCGTAACAAGCCGTTCATTGCCATAAATTGTGGCGCGATCCCCGAGCACCTGATCCAGTCCGAGCTGTTCGGCCACGAGAAGGGCGCTTTCACCGGCGCTCATCAACGCAAGATCGGACGGATCGAAGCCGCTCATGGCGGCACGTTGTTTCTCGATGAGATCGGCGATCTGCCGTTGGAGCTGCAGGCCAACCTGCTGCGTTTTTTGCAGGAAAAGCACATCGAGCGTGTAGGCGGCAGCCAACCGATTGCCGTCGATGTGAGGGTGCTGGCGGCGACGCATGTCGATCTGGAGGCGGCCATCGAGCATCGGCGTTTTCGTGAGGACCTGTATTACCGCCTCAACGTCTTGCAGGTGGTCATGGCACCGCTGCGCGAACGCCATGGCGACCTGTCGATGCTGGCCAGCCACTTTGCCCATTTCTACAGCCACGAAACCGGTCGCCGGCCGCGCAGTTTCAGCGAGGACGCGCTGGTGGCGATGGGCATGCACGACTGGCCCGGCAATGTGCGGGAGCTGGCCAACCGCGTCCGTCGCGGCCTGGTGCTGGCCGAAGGACGGCAGATCGAGGCTCGCGACCTTGGCCTTGTCGGCCAGCAGGGCGTCGCCGCACCGATGGGTACTCTGGAAGACTACAAGACCCGCGCCGAGCGCCAGGCGTTGAGCGATGTGCTCAACCGCCACAGCGATAACCTCAGCGTGGCGGCCCGCGTGCTGGGCGTGTCGCGGCCGACGTTCTATCGGTTGTTGCACAAGCATCAGATTCGTTAGMIETSALRRLLVVDPCDDCYRLLPGLRDIGWDVDSCSLEHASDRTCDVGLLRLQPFHLERPEAVKELIRRSGAEWIAVLSQEVLRLQNVGDFVCEWFFDFHTLPFDVSRVQVTLGRAFGMARLRGRGAVHINQPEHELLGDSKPIRELRKLLGKLAPAESPVLIRGESGTGKELVARTLHCQSHRRNKPFIAINCGAIPEHLIQSELFGHEKGAFTGAHQRKIGRIEAAHGGTLFLDEIGDLPLELQANLLRFLQEKHIERVGGSQPIAVDVRVLAATHVDLEAAIEHRRFREDLYYRLNVLQVVMAPLRERHGDLSMLASHFAHFYSHETGRRPRSFSEDALVAMGMHDWPGNVRELANRVRRGLVLAEGRQIEARDLGLVGQQGVAAPMGTLEDYKTRAERQALSDVLNRHSDNLSVAARVLGVSRPTFYRLLHKHQIRPGPT0004315_972DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ZINK_RESISTANCEZINK_RESISTANCE-ZINK_HOMEOSTASIS,PGPT0004315-zraR|hydG-K07713NANA
D1-35_03499267hypothetical proteinATGAACGCCCCGCTCCGTATCAACGAAGCTCTTTTGATTGCCGACCGCGCATTCCGTCCTTTCCAATGCGTGGCCTGGGCCCCACAAGACGGTAACGGCGAACTCAGCCTGACCGTCATCGACCGCACCAACACCCACATCGGCCGGACCCAGATCCCCAGCAGTGCCTATACGGACCCAGCGCAACTTGCCGACCTGTTGAAGCAGGCCCGTGCCGAGTTGAGCCAGGAAGGTTACAAGCTGCAATCGTGGTCGATGCCTGAATAAMNAPLRINEALLIADRAFRPFQCVAWAPQDGNGELSLTVIDRTNTHIGRTQIPSSAYTDPAQLADLLKQARAELSQEGYKLQSWSMPENANANANANA
D1-35_035001503nhaBCOG3067Na(+)/H(+) antiporter NhaBATGTCCGGCCCAATGGCTCAAGCGTTCGCGCACAACTTTCTGGGGCATTCTCCGCGCTGGTACAAGGCGTGCATCATCACCTTCCTGATTCTCAACGCCGTGGTGCTGTTCACACTCGGCCCGGTCGTTACCGGCTGGCTGTTGGTTGTGGAGTTCATCTTCACCCTCGCCATGGCGCTGAAATGCTACCCGCTGATGCCGGGCGGACTGTTGATGATCGAAGCCCTGGCCATGGGCATGACCACGCCCAAGGCCCTGTATGACGAACTGCTTCACAACTTCCCGGTCATCCTGCTGCTGATGTTCATGGTGGCGGGCATCTATTTCATGAAGGACCTGCTGCTGTTTCTGTTCTCGCGCCTGCTGTTGGGCGTGCGCTCCAAGGCGCTGCTTTCCTTGATGTTCTGCTTTCTTTCGGCATTCCTGTCAGCGTTTCTCGATGCACTGACGGTCACCGCGGTGATCATCAGTGCCGCCGTCGGGTTCTATTCGGTGTATCACCGCGTTGCGTCCGGCAATGACCCGCGCCAGGACAGCAGCGTTGATGAAGACCATGACCTGCCTTCCCTGCACCATGAAGACCTGGACCAGTTCCGCGCGTTCCTGCGCAGCCTGCTGATGCATGGCGCCGTGGGCACCGCGTTGGGTGGTGTCTGTACTTTGGTGGGCGAACCGCAGAACCTGCTGATCGGCCATGAGATGGGTTGGCATTTCGCGGAATTCTTCCTCAAGGTCGCGCCGGTGTCGCTGCCGGTTCTGGTAGCCGGACTGGTGACCTGCGTGGCGCTGGAGAAGCTGCGCTGGTTCGGCTATGGCACGCTGCTGCCGGAGAATGTGCGAGCGGTTCTGGCCGATTACGCCGAACAGGACAATCTCGATCGCACCGCACGCCAACGCGCGGCACTCATCGTCCAGGGTCTCGCGGCGCTGCTCCTGATCGTCGCCCTGGCCCTGCACATTGCCGAGGTCGGCCTGATCGGCCTGGCAGTGATCGTCCTGATCACCGCCTTTACCGGAATCACTGACGAGCACCGACTCGGCAGCGCATTCAAGGACGCCATGCCGTTCACTGCGCTGCTGGTGGTGTTCTTTGCGGTGGTCGCGGTCATTCATGACCAGCAGCTGTTTACACCGCTGATCCAATGGGTCCTGGCCCTGCCGGCCGATCAGCAGCCCGGCATGCTGTTCATCGCCAATGGCCTGTTGTCAGCCATCAGCGACAACGTCTTCGTCGCCACCATCTATATCACCGAAGTGAAACAGGCCTTTGTTGCCGGCCACATGAGCCGCGAGCAGTTCGAGACCCTGGCGGTCGCCATCAACACCGGCACCAACCTGCCCAGCGTCGCCACGCCCAACGGCCAGGCAGCGTTCCTGTTTCTGCTGACGTCGGCGATCGCTCCGCTGATCCGCTTGTCCTACGGTCGGATGGTCTGGATGGCCGTGCCGTATACGGTGGTGATGGGCGGCCTTGGCTGGTATGCGGTGACTTACTGGCTGTAAMSGPMAQAFAHNFLGHSPRWYKACIITFLILNAVVLFTLGPVVTGWLLVVEFIFTLAMALKCYPLMPGGLLMIEALAMGMTTPKALYDELLHNFPVILLLMFMVAGIYFMKDLLLFLFSRLLLGVRSKALLSLMFCFLSAFLSAFLDALTVTAVIISAAVGFYSVYHRVASGNDPRQDSSVDEDHDLPSLHHEDLDQFRAFLRSLLMHGAVGTALGGVCTLVGEPQNLLIGHEMGWHFAEFFLKVAPVSLPVLVAGLVTCVALEKLRWFGYGTLLPENVRAVLADYAEQDNLDRTARQRAALIVQGLAALLLIVALALHIAEVGLIGLAVIVLITAFTGITDEHRLGSAFKDAMPFTALLVVFFAVVAVIHDQQLFTPLIQWVLALPADQQPGMLFIANGLLSAISDNVFVATIYITEVKQAFVAGHMSREQFETLAVAINTGTNLPSVATPNGQAAFLFLLTSAIAPLIRLSYGRMVWMAVPYTVVMGGLGWYAVTYWLPGPT0013940_506DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013940-nhaB-K03314NANA
D1-35_03501822yidACOG0561Sugar phosphatase YidAATGACTGATCAGTTGAAACGTCCTATCCGCTTCCTGCTCAGTGACATGGACGGCACTTTGTTGCTTCCTGACCACAGCCTCAACCAGCGCACCATCGAAGCCGTCCGCTCCTTGCGTGAGGCCGGCGTGCTGTTCAGTCTCGCTACCGGGCGTCCGCCCCGGGCGATGTTGCAGCAGATCGAAGCCCTTGGTGTCGACCTGCCCACGGCGGCGTTCAACGGCGGTACGCTGGTGCACCCCGATGGCAGTTTTCTCGCGGTTCATTACTTGCCGCCTGAAGCGGCGTTGAGCACCCTGGCCCTGTACGCCGACCAACCGGGTATCGAGGTCTGGGTGTTCGCCGATGGCGAGTGGCTGGTGCGCGATGCCCATGGGCCAATGGTGCCGGTTGAAACCCGTGGCCTGGGTTATCCGCCCTTGGAGGTAGAAAGCTTCGAGCCTTACCTTGAACGCATCGACAAGATCGTTGCGACCAGCGCCAATACCGATCTGCTGGTCGAACTGGAGGCTCGCTTGCATCCGCTGCTCAAGGGCCAGGCCCAGGTGTCGCGTTCGCAACCGATCTACCTGGACGTGACGGCGATGAAGGCGAACAAAGGGGAGGCGCTGTCAACGCTGGCGGACTACCTCGGCGTGCCGCTGGAGCAGACCGCCGCCATGGGGGACGGTGGCAACGACCCGGCGATGTTCCATCGCGCGGGGCTGTCGATTGCCATGGGGCAGGCGGAAGAGGCGATCAAGCGTCAGGCTGACGTGATCACCGCCGCCAATACCGAGGACGGCGCGGCGCTGGCGATCGAGCGATACATCCTGCCGCGCTAGMTDQLKRPIRFLLSDMDGTLLLPDHSLNQRTIEAVRSLREAGVLFSLATGRPPRAMLQQIEALGVDLPTAAFNGGTLVHPDGSFLAVHYLPPEAALSTLALYADQPGIEVWVFADGEWLVRDAHGPMVPVETRGLGYPPLEVESFEPYLERIDKIVATSANTDLLVELEARLHPLLKGQAQVSRSQPIYLDVTAMKANKGEALSTLADYLGVPLEQTAAMGDGGNDPAMFHRAGLSIAMGQAEEAIKRQADVITAANTEDGAALAIERYILPRPGPT0017727_232DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_GLUCOSE_DEGRADATION,PGPT0017727-yidA-NANANA
D1-35_035021521zwf_2COG0364Glucose-6-phosphate 1-dehydrogenaseATGACCTCGATCGGCAGGAAATCCAAGGCTGAACCGGCACCACCGAGCACGTTGTTCCTGTTCGGTGCTCATGGAGACCTGGTCAAGCGTTTGCTCATGCCGGCGCTCTACCACCTGAGTCGTGACGGGTTGTTGGGGGATGGCCTGCAGATCATTGGTGTCGACCACAACGCTATCAGCGATGTGGATTTTGCAAAAAAACTCGAGGATTTCATCCGTAACGAAGCGGCGAGCAAGGGAGGCGACCCCGACCAGGCGCTCGATCCGGTGCTTTGGGCCAGCCTGGCCCGGGGCATCAGTTACGTCCAGGGTGATTTTCTCGATGACAGTACCTACGAAGCGCTGGCGGCGAAGATCGCCGCCAGCGGCACCGGCAATGCGGTCTTCTACCTGGCGACCGCGCCACGCTTTTTCAGTGAAGTGGTCCGCCGCCTTGGCGCGGCGGGGCTGCTTCAAGAGCAGGATGACGCCTTCCGGCGCGTGGTGATCGAGAAGCCGTTCGGCTCCGACCTGCAAACCGCCGAGGCGCTCAACGCCTGCCTGCTCAAGGTAATGAGTGAAAAGCAGATCTACCGGATCGACCACTACCTGGGCAAGGAAACGGTGCAGAACATTCTCGTCAGCCGTTTCTCCAACAGCCTGTTCGAGGCGTTCTGGAACAATCACTACATCGACCACGTGCAGATTACCGCCGCCGAGACCGTCGGCGTGGAAACCCGTGGCAGCTTTTATGAACATACCGGTGCCCTGCGGGACATGGTGCCCAATCACCTGTTCCAGTTGCTGGCGATGGTTGCGATGGAGCCGCCGGCCGCGTTCGGCGCCGACGCGGTGCGAGGCGAAAAGGCCAAGGTGGTGGGCGCAATCCGGCCCTGGTCGGTCGAGCAGGCGCGGGCCAACTCGGTGCGCGGCCAGTACACGGCGGGTGAGATCAACGGCAACCCTGTCAGCGGTTACCGCGAGGAAACCAACGTCGCGCCCGACAGCAGCACCGAAACCTACGTTGCGCTCAAGGTCATGATCGATAACTGGCGGTGGGTAGGCGTGCCGTTCTATCTGCGCACCGGCAAGCGCATGAGCGTGCGCGACACGGAAATCGTCATTTGCTTCAAGCCGGCACCGTATGCGCAGTTTCGTGACACCGAGGTCGACGAACTGCAACCTACGTACCTGAGAATCCAGATTCAGCCCAACGAAGGCATGTGGTTCGACCTGCTGGCCAAGCGGCCCGGGCCGGCACTCGACATGGCGAATATCGAGTTGGGCTTTGCCTACAAGGACTTCTTTGAAATGCAGCCATCAACGGGTTACGAGACCCTGATCTATGATTGCCTGACGGGCGACCAGACGCTGTTCCAGCGCGCCGACAACATTGAAAACGGCTGGCGCGCGGTGCAACCCTTCCTCGATGCCTGGCGCGAGGATGCAAGCGTTCAGCCTTACCAGGCTGGCGAGGATGGCCCAGCGGCGGCACAAGATCTGTTGACTCGCGATGATCGCGTCTGGCATGGCCTCGGATGAMTSIGRKSKAEPAPPSTLFLFGAHGDLVKRLLMPALYHLSRDGLLGDGLQIIGVDHNAISDVDFAKKLEDFIRNEAASKGGDPDQALDPVLWASLARGISYVQGDFLDDSTYEALAAKIAASGTGNAVFYLATAPRFFSEVVRRLGAAGLLQEQDDAFRRVVIEKPFGSDLQTAEALNACLLKVMSEKQIYRIDHYLGKETVQNILVSRFSNSLFEAFWNNHYIDHVQITAAETVGVETRGSFYEHTGALRDMVPNHLFQLLAMVAMEPPAAFGADAVRGEKAKVVGAIRPWSVEQARANSVRGQYTAGEINGNPVSGYREETNVAPDSSTETYVALKVMIDNWRWVGVPFYLRTGKRMSVRDTEIVICFKPAPYAQFRDTEVDELQPTYLRIQIQPNEGMWFDLLAKRPGPALDMANIELGFAYKDFFEMQPSTGYETLIYDCLTGDQTLFQRADNIENGWRAVQPFLDAWREDASVQPYQAGEDGPAAAQDLLTRDDRVWHGLGPGPT0017380_2181DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0017380-zwf-K00036NANA
D1-35_03503981COG10236-phosphogluconate dehydrogenase, NAD(+)-dependent, decarboxylatingATGCAACTCGGGATCATTGGACTGGGCCGCATGGGCGGCAATATTGCGCGGCGCCTGATGCTCAATGGGCACACCACCGTCGTCTATGACCGCAATGCCGCTTTTGTCGAAAACCTGAGCCAGGAAGGCGCGACGGGCGTCGCGGACCTGCCGGCGCTGGTCGCCGGCCTGGAGAAGCCTCGGGCTGTCTGGGTCATGCTGCCGGCCGGCGCACCCACCGAAGACACCATCAACGTGCTCAGCGACCTGCTCGAGCCGGGGGACGTCATCATTGATGGCGGCAACACGTACTACAAGGACGACATCCGGCGCGCCCAGGCGCTGTCGGAAAAAGGCTTGAACTACATCGACGTCGGTACCTCCGGCGGCGTCTGGGGGCTTGAGCGCGGCTATTGCATGATGATCGGCGGTGACGCTGAAGTCGTGCGGCGCCTGGACCCGTTGTTCGAAAGCCTCGCGCCGGGCATCGGCGATATCCCGCGTACCCGTGACCGCAAGTCTGACGACGACCGCGCCGAGCGTGGCTACATCCATGCGGGCCCGGCCGGTTCCGGTCATTTCGTCAAGATGATCCACAACGGCATCGAATACGGAATGATGCAGGCCTTCGCCGAGGGCTTCGACATCCTCAAGACCAAATCCAGCGAAAGCCTGCCACCGGAGCAGCGTTTCGACCTCAACCTGGCCGATATCGCCGAGGTCTGGCGGCGTGGCAGCGTGGTTTCGTCCTGGCTGCTGGACCTGACCGCTGATGCATTGGCCAGCGATCCGAAGCTCGATGGCTTCTCCGGCGAGGTCGCCGACAGCGGGGAAGGCCGTTGGACCATCGAAGCGGCCATCGAGCAAGCGGTGCCGGTACCGGTGCTGTCCAGTTCGCTGTTCGCCCGTTTCCGTTCCCGCCAGCAAGCCACCTATGGCGACAAGATGCTCTCGGCCATGCGCTTCGGCTTTGGCGGCCATGTGGAGACGCCGAAAAAATGAMQLGIIGLGRMGGNIARRLMLNGHTTVVYDRNAAFVENLSQEGATGVADLPALVAGLEKPRAVWVMLPAGAPTEDTINVLSDLLEPGDVIIDGGNTYYKDDIRRAQALSEKGLNYIDVGTSGGVWGLERGYCMMIGGDAEVVRRLDPLFESLAPGIGDIPRTRDRKSDDDRAERGYIHAGPAGSGHFVKMIHNGIEYGMMQAFAEGFDILKTKSSESLPPEQRFDLNLADIAEVWRRGSVVSSWLLDLTADALASDPKLDGFSGEVADSGEGRWTIEAAIEQAVPVPVLSSSLFARFRSRQQATYGDKMLSAMRFGFGGHVETPKKPGPT0017385_3934DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0017385-gnd|gntZ-K00033NANA
D1-35_03504174hypothetical proteinATGGGCCCTGTCGTTACCGCACGTCCTCCACAAACCCTTTATGTGACCATTCGTCGCGACGAATTACGCCTGCTGAAGGAAGAGCGTGATCTGCTGCTTGATGAAGTGACGCAGTTGCGCATGCAGTTGCAACACGCACAGCTCTCACACCAGGGCCAGGCTTTGGCTCGCTGAMGPVVTARPPQTLYVTIRRDELRLLKEERDLLLDEVTQLRMQLQHAQLSHQGQALARNANANANANA
D1-35_035051740eptCCOG2194Phosphoethanolamine transferase EptCATGAGTGTGTTCAAACGCAGCAAAACGACTGCGAAAGGTTTCGATTGGGCCGGGTTCGGCTGGCTGTTTCTGTTCTTCTGGTATTTTTCCGGCATCACCCAACTGCTGATCCTGTCGAGCGGCACCGCCGGGTTCGCCGGGTTTCGCCAGGCCTTCGTGATGAGTGCGTTGTGGTTGGCACCGCTGCTGCTCTTCCCTGCCCGCACCCGCCTGCTCGCCGCGATCATCGGGATCGTGCTCTGGGCTTGCTCGATGGCCAGCCTGGGCTATTTCTTCATCTACCAGCAGGAATTTTCCCAAAGCGTCATCTTCATCATGTTCGAGTCGAACGTGTCCGAAGCTGGCGAATACATGACCCAGTATTTCGCCTGGTGGATGGTGCCGGCGTTCCTGGCGCATACCCTGGTCGGTTACTTCCTCTGGACGCGCCTGCGCCCGGTCTACCTGCCACGCAGCCAGGCCTGGGCGGCAGCGCTGGTCATCATGGTGGCCGTGGTCGGCTACCCGCTGACCAAGCAGACCCTGCGCACTGGCAGCCTGGCCAAGGGCTTCGAGAAGTTCGAGAGCCGCGTCGAGCCGGCGGTGCCCTGGCAGATGCTGGTAGCGTACCGCCGCTACACCGAACAGCTGGAAAACATGCAGGGCATGCTCCACAGCACCAGCAAGATTGCGCCCCTGCGCAACCTTCAGGACACCATGGCCAACGAGCCGGCCACCCTGGTGCTGGTCATCGGCGAATCGACCAACCGCCAGCGCATGAGCCTGTACGGCTATCCGAGAGAAACCACGCCAGAACTGGACAAGCTCAAGGACCAGCTCTCGGTCTTTGACAATGTCATTACCCCGCGCCCCTATACCATCGAGGCCCTGCAGCAGGTACTGACGTTCGCCGACGAGGAGAACCCGGACCTTTATCTCAGCACGCCATCGCTGGTGAGCATGATGAAACAGGCCGGCTACAAGACGTTCTGGATCACCAACCAGCAGACCATGACCAAGCGCAACACCATGCTCACGACGTTTTCGCAACAGGCCGATGAGCAGGTCTACCTGAACAACAACCGCAACCAGAACGCCGCGCAGTACGACGGCGACGTGATCGAGCCGTTCAACAAGGCCTTGGCCGACACCGCGCCGCGCAAGCTGATCGTGGTGCACCTGCTCGGCACCCACATGAGTTATCAGTACCGGTATCCACCGACCTTCAACAAATTCACCGACCGCCAGGGCGTGCCTGCCGGGGTGCGTGACGATCAGGTGCCGACCTACAACAGTTACGACAACGCGGTGCTGTACAACGACTTCGTGGTGTCCAGCCTGATCAAGGACTACGCCAAGAGCGACCCCAACGGCTTCCTGCTGTATCTGTCGGACCACGGCGAAGACGTCTTCGATTCACCGGGCCATGGCACCCTGGGCCGCAACGAGGCCAAGCCGACAGCGCCGATGTACACCATCCCGTTCATGGCGTGGGCTTCGCCGAAGTGGCGCGAAACCCATGACTGGAATTTCGCTGGCGACCTGTCGCGGCCCTACAGCAGCTCGCACCTGATTCACACCTGGGCGGACATGGCGGGCTTGAGCTTTGATGAGCTCGATCGCAGCAAGAGCCTGGTCAGCGATGACTTCAAGTCGCGGCCGCTGTTGATCGGCAACCCCTACCAGGACCAGCGCAAGGGGCTGATCGATTTCAGCCTGATGCAGCCCAAGGGCCCCGCGGGCCAGGTCGTACAAAAGTAGMSVFKRSKTTAKGFDWAGFGWLFLFFWYFSGITQLLILSSGTAGFAGFRQAFVMSALWLAPLLLFPARTRLLAAIIGIVLWACSMASLGYFFIYQQEFSQSVIFIMFESNVSEAGEYMTQYFAWWMVPAFLAHTLVGYFLWTRLRPVYLPRSQAWAAALVIMVAVVGYPLTKQTLRTGSLAKGFEKFESRVEPAVPWQMLVAYRRYTEQLENMQGMLHSTSKIAPLRNLQDTMANEPATLVLVIGESTNRQRMSLYGYPRETTPELDKLKDQLSVFDNVITPRPYTIEALQQVLTFADEENPDLYLSTPSLVSMMKQAGYKTFWITNQQTMTKRNTMLTTFSQQADEQVYLNNNRNQNAAQYDGDVIEPFNKALADTAPRKLIVVHLLGTHMSYQYRYPPTFNKFTDRQGVPAGVRDDQVPTYNSYDNAVLYNDFVVSSLIKDYAKSDPNGFLLYLSDHGEDVFDSPGHGTLGRNEAKPTAPMYTIPFMAWASPKWRETHDWNFAGDLSRPYSSSHLIHTWADMAGLSFDELDRSKSLVSDDFKSRPLLIGNPYQDQRKGLIDFSLMQPKGPAGQVVQKPGPT0022455_124DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_CORE_OLIGOSACCHARIDE_METABOLISM,PGPT0022455-eptC-K19353NANA
D1-35_03506495hypothetical proteinATGGAAGAAGCCAAGGATATCCTTGTACTGCAAGCCAGCTACACCAACCCGGTCCACGCTGAAGCGATCTGCCATGTGCTCAACGGTTATGCCGAGGATCCGATGGGCGGTGGGCATTCGCTGCCGGCCGAGGTGTTGGCCCATCTGCCTGAAGAGCTGGCCAAGCGTTCCCACGCTTTCAGTGTGCTGGCGTTCGTCAATGGCGAGCCGGCGGGGTTGGTCAACTGTTTCGAGGGGTTTTCGACCTTCGCTTGCCGGCCTTTGGTGAATGTCCACGATGTAGCCGTAATGCCGGCGTTTCGTGGGCTTGGCCTGAGCCAGAAGATGCTGCAGAAAGTCGAAGACATCGCCCGCCAGCGCGGGTGCTGCAAGATCACCCTGGAAGTGCTGGAAGGCAACGCCGTGGCCCAGGCCAGTTATGCCAAGTTCGGCTTTGCCGCCGGCATGTTCGACCCGGCCCACGGGCGCATGCTGTTCTGGATCAAGCCCCTCTAGMEEAKDILVLQASYTNPVHAEAICHVLNGYAEDPMGGGHSLPAEVLAHLPEELAKRSHAFSVLAFVNGEPAGLVNCFEGFSTFACRPLVNVHDVAVMPAFRGLGLSQKMLQKVEDIARQRGCCKITLEVLEGNAVAQASYAKFGFAAGMFDPAHGRMLFWIKPLNANANANANA
D1-35_035071122zapE_2COG1485Cell division protein ZapEATGACTTTCACTTCCCCCTTGAGCGCCTGGCAGCATGCCATCGAACACCACGGCTTCGTCCAGGACGAAGCCCAGGAGCTGGCAATCATGGCATTGGAGCAGTGCCATCAGGCGCTGCACGAAGGCCGCAAGGCAATCAAGGGTGTTTACCTGTGGGGACCGGTCGGGCGGGGCAAGACGTGGCTCATGGATCGCTTTTATGAAAGCCTCGAGGTTCCGGCCCGTCGCCAGCATTTCCATCATTTCATGGCCTGGGTGCATCAGCGCTCGTTCCAGCTCACCGGCACGCCAGATCCGTTGCAGGCCCTGGCTCGAGAGCTGAGCCGAGAGGTGCGGGTGTTGTGCTTCGACGAGTTGTTCGTGACCGACATCGGCGATGCGATCATCCTCGGCCGCCTGTTCCAGGTGATGTTCGAGCTGGGCATGGTGGTGGTCAGCACGTCCAACCTGCCGCCGGATGAGCTGTACGCCAGCGGTCACAACCGTGAGCGCTTCCTGCCGACCATAACGGCCATCAAGCAGTACATGCAGGTCGTGCCGGTGAATGGCTGGCAGGATCATCGCCAGCACCCGGGCGCCTTGCAGCAGCGTTATTGGCTGCGTGACCCGGCCCAGCCTGATCCGTTGGCGGAGGTTTTCGCCCAGTTGAGCGCCGGGCAGAAAACCCGCAACCAGGCGCTCGAGGTCGGCCATCGCCAGATCGTTCCGGTCCAGGCCAGCGATACAGTGCTGTGGAGCCGTTACCCCGATCTTTGCGAGCAACCATTCTCGGCGCTTGATTTCATGGCGCTGTGTGATCGTTTCAAGGCCATTCTTCTCAGTGACGTACCCTGCCTGAGCGCCGAACAACGCGAAGGGCGTATTGCCCGAGGCACCGAAGACGGGGTCGAGCGGGTCGAGGCCGGTGATCGCGAGCTGCCGCAGCTGTCGATTCATGACGACGGCGTACGGCGTTTCATTGCTTTGGTCGACGAATGTTATGACCGCAAAGTGCCGTTGTACCTGTCGGCCCAGGTGCCGATGGACCAGTTGTACACGCAGGGCTATCTGCAATTCCCGTTTCGCCGTACTCTCAGTCGCCTTCAGGAAATGCAACTGCAACGTTTTGGTCAGCCCGCCTGAMTFTSPLSAWQHAIEHHGFVQDEAQELAIMALEQCHQALHEGRKAIKGVYLWGPVGRGKTWLMDRFYESLEVPARRQHFHHFMAWVHQRSFQLTGTPDPLQALARELSREVRVLCFDELFVTDIGDAIILGRLFQVMFELGMVVVSTSNLPPDELYASGHNRERFLPTITAIKQYMQVVPVNGWQDHRQHPGALQQRYWLRDPAQPDPLAEVFAQLSAGQKTRNQALEVGHRQIVPVQASDTVLWSRYPDLCEQPFSALDFMALCDRFKAILLSDVPCLSAEQREGRIARGTEDGVERVEAGDRELPQLSIHDDGVRRFIALVDECYDRKVPLYLSAQVPMDQLYTQGYLQFPFRRTLSRLQEMQLQRFGQPANANANANANA
D1-35_03508342hypothetical proteinATGTCCAATCCCGTCTCTTCCCTGGCCCCGGCCATCGCCGGCTACATCGCTGCCGCGAATGCTCGCGACAGCTCGGCGGTGACGCGTTTCTTCGCCGAGGATGCCAATGTGTTCGATGAAGGCAACCACCGGGTCGGCACCCAGGCCATCGCCCAGTGGATGGAAGATACCGCGCGCCGTTACCAACCGCGGGTCGAAGTCCTCAACGTGCAGCAACGCACCGGAAAGGTGCTGGTCCATAACCTGATCTCCGGAACCTTTCCCGGCAGTCCACTGGAGTTGCGCTACACCTTCCGGCTCGATGAGCAGGGGAAGATCAGTCGGCTGGATATTTCCGCCTGAMSNPVSSLAPAIAGYIAAANARDSSAVTRFFAEDANVFDEGNHRVGTQAIAQWMEDTARRYQPRVEVLNVQQRTGKVLVHNLISGTFPGSPLELRYTFRLDEQGKISRLDISANANANANANA
D1-35_03509717hypothetical proteinGTGTCGCGAACCACTCGGCTGCTGACCTTGTTGCAAGTCTTGCGGGGCAAGCGCTGCCCGGTTACCGCCGCGACGCTGGCGGCCGAGCTGAAGGTGTCCGAGCGCACGCTTTATCGCGATATAGCCGAACTGACTGCCCTGGGCGCGCCGATCCAGGGCGAGGCGGGCATAGGTTATGTGCTGCGCAGCGGCCTGTTCCTTCCGCCGCTGATGTTCACCGCCGATGAAATCGAGGCCATCGTGCTGGGCTTGCGCTACGTCGACCAGCGTGGCGATGAGGTTCTGGGCAAGGCCGCCGCCGACGCTTTGGCAAAGGTCGAGGCGGTGTTGGCCCCTGGTTTGCGCGATGCCTTGCACAACCCCACGGTATTGCCCGGCCCACCGGGTTACGGTTATCCGCAGAACGCCGTCGAGCTGAATGTCTACCGCCAGGCCATTCGCACTCAAGCCAAATTGCACATCGATTACGCCGACGTCAACAAGACCCCCAGCCAGCGGTTGATCTGGCCGCTGGCCCTGGGCTTTTTCAATGAGGCGCGGGTGGTGGTGGCCTGGTGCGAACTACGCGGTGCCTATCGGACGTTTCGTACCGACCGGATTGCCTCAGCCAGCGTCCAGGGCGAGCGCTACCCCGGCAGGCGCAGCGACTTGCTGCGAGCCTGGTTGGCGCTGATGAATCTCGATGAGGCGGGGCGTTTTACTCCTGACAAAAACTGAMSRTTRLLTLLQVLRGKRCPVTAATLAAELKVSERTLYRDIAELTALGAPIQGEAGIGYVLRSGLFLPPLMFTADEIEAIVLGLRYVDQRGDEVLGKAAADALAKVEAVLAPGLRDALHNPTVLPGPPGYGYPQNAVELNVYRQAIRTQAKLHIDYADVNKTPSQRLIWPLALGFFNEARVVVAWCELRGAYRTFRTDRIASASVQGERYPGRRSDLLRAWLALMNLDEAGRFTPDKNNANANANANA
D1-35_03510516hypothetical proteinATGAGTTATGGTACCTACACGTTTCTAACGCGAGAGAGCATTTCCATGCGCAGAATCTTCCGTTTGCCCCTCATCCTGATACTGCTCAGCCTGAGCGCCTGCGCCCTCTTCCCGCACCGCGACCCGCTGAATATCAACGTGGTCGGTATCGAGCCACTGCCCAGCGAGGGTCTGGAGATGCGCTTCGCGGTGAAACTGCGCTTGCAGAACCCGAACGAAACCGCCATCGACTACAGCGGTGCGGCATTGGATCTGCAAGTCAACGGCCGCACGTTGGCGACCGGCGTCAGTGACCAGAGCGGCTCGATCCCACGCTTTTCCGAAGGAATCCTGAGCATACCGGTGAGCATCTCGGCGTTTTCAGTGATCCGCCAGACCCTGGGCCTGAGCCAGACCCAGAGCCTGGACAACCTGCCCTACGTGCTCAAGGGCAAACTCGCCGGCGGCTTGTTCGGCACCCTGCGCTTCGTCGATCGCGGAACCCTTGATCTACCGAATTCCGCAGCCGCCTGGTGAMSYGTYTFLTRESISMRRIFRLPLILILLSLSACALFPHRDPLNINVVGIEPLPSEGLEMRFAVKLRLQNPNETAIDYSGAALDLQVNGRTLATGVSDQSGSIPRFSEGILSIPVSISAFSVIRQTLGLSQTQSLDNLPYVLKGKLAGGLFGTLRFVDRGTLDLPNSAAAWNANANANANA
D1-35_03511420hypothetical proteinATGAACAGTTTAAAAACGGGCGTGATCATCAGTACTGTACTGGCATCATTGGGCGCAAGCGTTTATGCTCAAGCGGCGTCCGACAGCAAATGTTACGTTGTGTATTCGTCAAAGTATAAAGAACCGGCAAAAATTACGCCTGTGGTAAAAAAACCGGTGGAAAAAGGAGTGGTGGGCAAGGAGTACATATTAGATGCCAGTAGCTCTATTACACCGAGTGGGAAGAAAGGGTACAAGTGGGCCGTGGGCACAGGGGGGTACGAGTTCGCTGGGCCAACCGATCAAGCAACAGTCAAAATCAAGTCAGACAGAAAAGAAGGGGTGGATGCGGTTTACAGTCTTACAGTAAGCGACCCAGACTGCCCAGATTCACCGGCAGGCACGCTGGGCGCGGAGGTATTTACGATTGAGAAAGGATAAMNSLKTGVIISTVLASLGASVYAQAASDSKCYVVYSSKYKEPAKITPVVKKPVEKGVVGKEYILDASSSITPSGKKGYKWAVGTGGYEFAGPTDQATVKIKSDRKEGVDAVYSLTVSDPDCPDSPAGTLGAEVFTIEKGNANANANANA
D1-35_03512924COG0388NitrilaseATGCCCAAATCCATTGTGGCTGCCTTGCAGATCGGCTCGCTGCCAGGCGGCAAAGGCGAAACCCTCGCGCAGATTCTTTCCTACGAAGACGCTATTCGTGAGGCCGGTGCACGCCTGGTGGTCATGCCCGAGGCGCTGTTGGGCGGCTATCCCAAGGGCGAGACATTTGGCACCCAGCTCGGCTATCGGCTACCGGAAGGGCGCGAAGCGTTTGCCCGCTACTTTGCCAACGCCATCGACGTGCCCGGTGCGGAAACCGAGGCGCTGGCGGGTCTTTCGGCGCGAACCGGGGCAAGCCTGGTGTTGGGCGTCATCGAGCGCGCCGGCAATACGCTGTACTGCACCGCGCTGTACTTTGAACCGGACGCCGGCCTGGTCGCCAGGCATCGCAAACTGATGCCCACCGGCACTGAGCGGCTGATCTGGGGCAAGGGTGACGGTTCGACGTTACCGGTGATCGACAGCCAGGTTGGGCGCGTGGGCGCGGCGGTGTGCTGGGAAAACATGATGCCGCTGCTGCGCACCGCGATGTATGCCAAGGGCGTGGACGTCTGGTGCGCGCCGACGGTGGATGAGCGGGAAATGTGGCAGGTGAGCATGCGGCATATCGCTCATGAAGGGCGTTGCTTCGTGGTCAGTGCCTGCCAGGTCCAGGCCTCGCCGGCAGAGCTGGGTATCGAGGTGGCGAACTGGCCGGCGGAGCGGCCGTTGATCGCGGGCGGCAGCGTGATTGTCGGACCCATGGGCGACGTGCTGGCCGGGCCGTTGAGGGGCTCCGTCGGATTGCTGACTGCTGAAATCGATACCGATGAGCTGGTGCGGGCGCGTTACGACTATGACGTGGTCGGGCACTACGCCCGGCCCGATGTATTCGAGCTGGTGGTGGATGAGCGCGCCAGGCCGGGTGTGCGGTTTACTGCATGAMPKSIVAALQIGSLPGGKGETLAQILSYEDAIREAGARLVVMPEALLGGYPKGETFGTQLGYRLPEGREAFARYFANAIDVPGAETEALAGLSARTGASLVLGVIERAGNTLYCTALYFEPDAGLVARHRKLMPTGTERLIWGKGDGSTLPVIDSQVGRVGAAVCWENMMPLLRTAMYAKGVDVWCAPTVDEREMWQVSMRHIAHEGRCFVVSACQVQASPAELGIEVANWPAERPLIAGGSVIVGPMGDVLAGPLRGSVGLLTAEIDTDELVRARYDYDVVGHYARPDVFELVVDERARPGVRFTAPGPT0000835_1099DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRP-DEPENDENT_PATHWAY_3,PGPT0000835-nitA|nitB|nitR|nit1-K01501NANA
D1-35_03513909nodD2_5Nodulation protein D 2ATGAAGCACATGAATATCGCCGATGTAGACCTGAACCTGCTGAAGACCTTCGAAGCCCTGCACGACGAATCCAGTGCAAGCCGCGCCGCCCTGCGCCTGGGCGTCACTCAATCGGCCATCAGCGCGGCGCTGCGCAGGCTGCGAAGCGTGTACGACGATCAGTTGTTCGTGCGCACCGGCCGCGGCCTGGCGCCGACATTGCGGGCCAACCAACTGAAACCGGTGATCAGCGAAGCGTTGGACAAATGCCGCCAGAGCCTGGCGATGATCGATCCGGGCGCCAGCCACTACGAGGGCCGCTCAGTCATCGTCGGGCTGTCGGATGATTTTGAAATTGCCTATGGCCGGCGATTGATCGAGGAAGTTGCGCGAAGAGCGCCGGGCCTGCGCTTGATCTTTCGCCAGACCCACAGCCAGATCGTCGGTCGCGCCTTGATGGAGCGCAGCCTGGACGTGGCGATTACAGCGGGAGGATTTACCGAGCGGCTGCTCAGTCGCCAAGTCCTCGGCGAAGGCGGCTACGCCTGCCTGGTGGACCCTGCCAGCCTGACGGAGGACCAGCAGGGCCTGAGCCTGGAAGCGTTCGTGGCGCGCGAGCATCTGCTGGTTTCATCGGGCGGTTTCATCGGCATCACTGATGAAGGACTGGCCGCACTCGACCTGCGCCGACGGGTGAGCGCCTCGACCACTCACTTCGCCGCGCTGCCGTTCCTGCTCAAGGGCAGCCAGGCCGTGGCGACCATTCCGGACCATGCCGCCACGGCCATTGCGGCGCTCAGCGGCCTGTCGCTGTTGCCCTGCCCGCTGGCGTTGCCGCGCTACCCGATCGAGCTAGGGTGGCGGACCCATGCGCAGCGGGATCCGGCCGTGGAGAAAGTGCGCGAGGCCATTGTCGCGACCTTCAACTGAMKHMNIADVDLNLLKTFEALHDESSASRAALRLGVTQSAISAALRRLRSVYDDQLFVRTGRGLAPTLRANQLKPVISEALDKCRQSLAMIDPGASHYEGRSVIVGLSDDFEIAYGRRLIEEVARRAPGLRLIFRQTHSQIVGRALMERSLDVAITAGGFTERLLSRQVLGEGGYACLVDPASLTEDQQGLSLEAFVAREHLLVSSGGFIGITDEGLAALDLRRRVSASTTHFAALPFLLKGSQAVATIPDHAATAIAALSGLSLLPCPLALPRYPIELGWRTHAQRDPAVEKVREAIVATFNPGPT0028130_537DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexEF-OprN,PGPT0028130-mexT-K18297NANA
D1-35_03514255hypothetical proteinATGAGTTTCAATCTGGCTGACAAGCCCCTGGCCGAGCGTGCGGCGCTGGAAGATGAAAAATCCCGACTTTTCGAGCTGTGGCAAAACAATCTGGGCAAGGCCAAGGGTGACGCTGCGCGGTTGTTTGGCGAACGCTCCAAGCGCAAGGGCAAATGGGCCGAGTGGGTGCGCGCCGAGCTGGACGGCATGTCGCCTCCGGAGTACGCCAATATGGTGCGCAGTGAGGTCAATCGACTGATGGCCGCGAACAAATAAMSFNLADKPLAERAALEDEKSRLFELWQNNLGKAKGDAARLFGERSKRKGKWAEWVRAELDGMSPPEYANMVRSEVNRLMAANKNANANANANA
D1-35_03515318hypothetical proteinATGGCTCGCACAAGCGCCGCGCAAGCGAACGGAGAGCAAATCAAGGATCAAGCCTTCAGCGAACTGAAAGCATTGATTGAAGAGTCGGAGAAGCTGCTCAAGAGCGGTGCCGCCCTGGTTGGCGAGGACGCGGAGAACCTGCGCGAGCAGATTTCACAGAAACTGCGCCAAGCCCTGGATTCGGTCGCCAGCGCACGGGAGCGCACGCGCCCGATGGTTGATGCCACGCAAGCCTATATCGGCGGCCATCCCTGGCAGACCGTAGCGATTTCCGCGGGTTTCGGGCTCGTGGTGGGCTTGTTGCTGGGACGCCGTTAAMARTSAAQANGEQIKDQAFSELKALIEESEKLLKSGAALVGEDAENLREQISQKLRQALDSVASARERTRPMVDATQAYIGGHPWQTVAISAGFGLVVGLLLGRRNANANANANA
D1-35_035161032dpkACOG2055Delta(1)-pyrroline-2-carboxylate/Delta(1)-piperideine-2-carboxylate reductaseATGCCCGCGCTACCCGATCCTGCCGGTCCTTGCACATTGTCCTATGAAGCGTTGGTGAGTTTGCTGGAGCAGATTTTCCTGCGCCATGGCACCTCGATCGATGTCGCCCGCACCCTGGCCGAGAACTGCGCCGGCGCCGAACGCGATGGCGCCCACAGCCATGGGGTGTTTCGCATGCCCGGGTATGTTTCGACGTTGAACAGCGGCTGGGTCAACGGCCAGGCCGTGCCGATCGTCGAGGATGTTGCGTCCGGGTTCGTCCGGGTCGATGCCTGCAACGGCTTTGCCCAGCCCGCCCTGGCCGCCGCCCGCCCATTGCTGGTGGACAAGGCTCGCAGCGCCGGTATCGCGGTGCTGGCGATACGCAACTCTCACCACTTCGCCGCGCTGTGGCCGGATGTCGAGCCGTTCGCCTATGAAGGCCTGGTGGCCTTGAGCGTGGTCAACAGCATGACCTGTGTGGTGCCCCATGGCGCGGATCGGCCATTGTTCGGTACCAATCCCATTGCTTTCGCCGCCCCACGCAACGGCGGCGAGCCGATTGTTTTCGACCTCGCTACCAGCGCCATCGCCCATGGTGACGTGCAGATTGCCGCGCGCAAAGGTGAGCGATTGCCTCCCGGCATGGGGGTGGACAGTCTCGGTCAGCCGACCTGTGATCCGAAGGCGATTCTGGAGGGCGGCGCGCTACTGCCGTTTGGCGGTCACAAAGGGTCGGCCTTGTCGATGATGGTGGAACTGCTGGCGGCCGCGCTGACGGGGGGCAACTTTTCGTTCGAGTTCGACTGGCACAACCATCCCGGAGCCAAGACTCCCTGGACCGGACAGTTGTTGATCGTGATCGATCCGAGCAAGGCCGCCGGCCAGGATTTCGCTTCACGCAGCGAAGAATTGGTCAGGCAGATGCACGGTGTCGGATTGCGTCGGTTGCCAGGGGATCGCCGACACCGTGAGCGCAGCAAGTCCATCGAACAGGGGATTGTGCTGGACGAGCAGACGCTGGGCCAACTGCGCGAGTTGGCGGGGCTATAGMPALPDPAGPCTLSYEALVSLLEQIFLRHGTSIDVARTLAENCAGAERDGAHSHGVFRMPGYVSTLNSGWVNGQAVPIVEDVASGFVRVDACNGFAQPALAAARPLLVDKARSAGIAVLAIRNSHHFAALWPDVEPFAYEGLVALSVVNSMTCVVPHGADRPLFGTNPIAFAAPRNGGEPIVFDLATSAIAHGDVQIAARKGERLPPGMGVDSLGQPTCDPKAILEGGALLPFGGHKGSALSMMVELLAAALTGGNFSFEFDWHNHPGAKTPWTGQLLIVIDPSKAAGQDFASRSEELVRQMHGVGLRRLPGDRRHRERSKSIEQGIVLDEQTLGQLRELAGLPGPT0001796_158DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_AQUIRED_RESISTANCE|SARSAR-CONDITIONING_COMPOUNDSSAR-PIPECOLATE_BIOSYNTHESIS,PGPT0001796-dpkA|lhpD-K13609NANA
D1-35_035174800hypothetical proteinATGACTAGTGCAAACCCGCCCCTGCTATTTCCTGAAATATTCAAAGCCCGGCGCCTGAATGAATTGACCGCGCCCCACGGGTTGACCCAGGCAGATCTTGACTGGCTGCATCACGCTGCCCTGCCCAACTACACGCAACGCGGCGAGCAGTCACCCGCAATGACGATCGAAACAATTACCCTGGATGTCCAGGGCAAACCCTTGATCCCGCTCGCCGGTTGCCTGGTGCTCAGCGCGCAGGGCGATCACCCTGCGTTCCTCTATACACCGTACGGCGGCATCGCAAAGTTCGATAGCCCGGAGACCCTCGAGCACAGGCTTGATGAAATGCTGGCGACACCGCTGGAACGGGATGAGCTGTTTTGCCTCCTTTCGCTCTCCCAGCGCAACGAACTCTATGGCGCATCCTTTCAGAAAACCCGCCGAACAGTCTACGGAGATCCGCTCGAGACACGATTGGCATCGATCAGCAATGCCCAGGAACTCAACGCCCAGGCAATGGTGCATGAGTTGCTCCAAGTTCCGTCGTTGGCAGCGATGCTTGACCAGGTATTGCAGGAGCTGTTGGACAACTTCGATCATAAGCAGGCACGCGTCTCGCTCAGTCTCATCAAGGGCGCGGACGTCCCGTTACAGCAGTGGACCCGGAACATGCCACTGAGTGATGCAGTGCTGATCTACTTCCATCATCAAGGCTGGCCTGACGGATACGAGGCGGCTTTCACTCACCCCTCCACCGAGGAATCGCCCGCAAACGCCTTGCACTGGCAGACCATGGTAAAGCTCACCGCAAGGAATCTGGTGCGCCACCTCACTGATCGCCTCGAGGCCTACTGGGACGCTGCGAGTCCCCTGAACATTTCACGGCGACAGTTTCTGTCCCGTGTCATCGACGACAAGCTACGGTCAGCGATCGTTATCGAAGGCGAAAAAGGCCAACTGACAGAAGCACAAAGCAGCGAGCTGCATCGTCTGTTCCGGCCATCTCGCCACGACGAGAGGCTGATGTTCATCGAAACGATTCGCCTCTGGGAACATGAAACCCATAGCGTCGAACTGGCGGGCTCGTTGATGATCAGCGCGAATGGGCACTACCTTTACACCCCTGGCAAAGGCATTCAGCAAGTTGACCATCATCTGGGCTTCAGGGATACGTTGCTGGGCCCGCCCACCGCGGCCCCGCAAATGGACGCCCTTTATAGACTGCTGAGCCTTGAGGAACGCAACCGTCTTCTGCGCTTCGACGCTCCGCAGGTCTCCGGCAAGGAGGTGAGCTTGCCCGTAGCCGAGTCCCTGGGCCAGGCGATCATTGCCAAACAGCTGGACAATATTCATTTCGCACTGGAAATGTCCCGCCAGGGCGAGGTCGATATCCATGCGCTGCTGGACAAGGCGCTCGATATACGCACCCTGATCGACAACGGCCTGCTCGACCAGAAGGTCGACGGACACTGGGGCGCGCGCGCTGCGTTTTATGGAAACCTGCGCCCCTCCAATTTCATCGCCGATGTGCTGCACAGAAAGCTCAAGACCTATGACAGTGTGCAAAAAGCTTTCGATAGCGAGTTCACTGAGTTACCCCATTCAAGCGAATCGGAGCTCCTCGACAGCGAGCTGAGGAAGCTGCTTCCCAAGCTATGCAGCACTTTTTCCCTGGGCATCCGGGAGGAGGCTGAGCTGCGGCAGCTCAACGGGACGCTGTCGACCGACGCCCACAAGCTCATCAACAGCGTGTTTGCCTTCGACGCAAACTACCCCGACCGCGAACAACGCCCCAGCGTCAAAGGTTTCCGCCCGGACGTATATTCGCTGAAGTTGACCTGCACAACGGAAGGCGCCACGACCGCCGTTTCTCCAGCCAGTTGCTTCCTGCTGACCGAGCGTGGCGGGCTGGATACGCCTTTTTCCGGCATGGCAATCCTGTGGCTCCCCACATGCGGACTCAAGGTTTTTCCGTCCGTCGCCCTTGCCAGCCAACAGTTGAATCAATACCTGTCCAACGCCCGGTCGCGTTTCGATGTGCTGACCAATCTCACGCCCGCGCAACGGAATCCCCATGCCCGCTACCAGCTCGAGGCATTTGAACTGATCGAAGGCAATGTGCTGATGAATCGGATGACTTCGTTCAGCGAACACTTTGCGGCCGAACACGCGTATTTGCGTGCATTACAGATAGGTGACTGGCGACTGACCGAACCGGCAATGCTCGAAAGCCTGAAAGCACTGTTGGACAAGGGCGCCGCTACCAACCTGCCAGTTGCCGAGCGCATCGCCCATGCCTACCGGTTCCAGCAAAAGCTTCCCGCCTGGTTGGGTGCCGCCTCGCTCGAGGACCAACGACAGCACATCGAACTGCTTGAACAATATCGAAACAGCGTAACCGAGGACAAAGACTACCTGGACGGCATAGAACCTCTACGTAACTACGTCGACAGAACCTTGAAGGCGCTGTTGGAAACACGTTTTCCCGATACGGGCCTTGACCCTGCCACACTGCTGATTTCGCCCCATCTTGCGCTGGCAGGCCCGGCAAGCAGCCTGACCGATTTCGCCCTGAATCATCTCGACAGTCGCCAGCGACCCGGCTTCACGATTTCGTCGATGCTCTCGCAAAAACTACCCAACCACTTGAACGAAGCCGCTCTCAGGCAAATGTTGCTGTCGTTGGGTACGTCAACCCGCTACAGGGCGCATGTGCTGGACAAGCTGTCCGACAGCGCAGAGGGCATAGAGCAAAGGAAAAGTCGATTTTATCAACAACTACCCTGGCAACTGCTGCAACACGCCCACGCCAGATATTTGCAACAGAATCTCTCTCCGTTTGCCTTCAGCTTGATCAGCCAAGTGTTCGATATGCCGGACAGCATCGCCCGGCTGGAAGCAGACGGGGCCGAGGCAATCATCCGCCCGATGGAACTGATCAAGACGCAAGGCGCCGAAGCCGTCAAGGCTACCGGGCTCTATCTGATCGGGTCGAGTGTCGATGCAAAAGCCCCGCATATCCTGTATTCCCCTTACCACGAAGGGAATGTTTTCACCGAGTTCGAGAACGAAACGAAGGTCATCGCTGCAGTCAATGCGCCAGGGGTGCTTCAGGACATGCTGATTCACCGGCTCCCCGAAAGCCAGCAAGCCACGTTCCGAAATCTGTTCGCGTCCACGGCAGGAAAACTCTCGGAGATAACCCTGGCTTCGAACCCGATTGCCAACCTGCTCGGTACGTTGTTCAACGACAACACCTCATTACTGGCAGGCATGCTGAAAACCCACACCGATGGCACGCGCCAGTTCGACTGGCAAACCGTGGTGCATTTGTTCAGTACCGGCATCAAGGCCCTTGGCCGGGAACTGCCTGGCAAACTGGCGTTGATCGAGACTCTCAAAGATGCCTATGAGGATTTCAAGGCGTCTTCCGAGGATTTCCAGCAGGGCAATTGGGGGGCAGGCTTGCATGATTTCATCTGTGGCGCAGCGGAAATGGTCTCCCTGGGCTGGCTCAATCGGGACGATACCTTCGGCCTGCTCGATCCGGTGGGTCCCGCCGCCCTGCCTCGCCCCGCGGTAAAAGCATCTCACTGGCAGCACCTGACCAGCGCAGCGCGTACAGACCTGCAGCCATTCGAAGCCCTCAAGGTCAGCCTGGCCGACCTCAAGAAACACCCGTTCGATGGAACCTACGAAGCCCTGGCGTCCGGCAAGCACTACGCACCGGTGTTCGGCAAAGTCTTTCAGGTAGCAAAAGCTGCCCATGACTGGCGCATCACCCATGGCCACGCCGAGGGGCCAGTGCTCAAGCGCTCGTCTGAGTCCGGGCAGTGGTTGATCGATCCAGACTCGCGGCACATTCGCTACGGAAAAGTGATGTCAACCTTGACTGATATGCATAGCGACTTCAACGCGAAGGAAGTCATCAATATTGAAGCACGGGGTATGAAGCAGATACGCCGGATGTCCCCCTCCCGCGCGAACATGATCGAGCAAGCCCTGGAAACGGCACGGCATTACTCCCGCAACGCGCTGCAAAATCTTGAGCAGGTCAAAGGCGGCATGCCTGCCGGGTCCCGACTGGACACCTTCCTGACGACTTTTCTCGGCGTCAGGGTGATCGACGCGCGCCTTGTAGAAAAAATACACACCGCCATCGCCCCGATCTGCCAGACGCTGGCGGATCCGTTGTGGCTTCATAAAAACGGCAGTCGCATCGTTATCGGCATCGCCAAAAGCGCCAACTATGATGCGAGTGCCTTCGTATTCGAGGCCGGCAAGGGCGGCAGGATTTATCTCACCCAAGAGTTTTTCGCCATGGTGCCGCATTGGTACAACAGTGCCGTGCCCGATACATTCAATGTCGACGCGCACGCCCAAGGCTCAACCTTCATTCATGAACTGTCCCATCTGCTGTGCGACACACTGGATATCGTCTACCTGGGCGCCTACTTACCATTCCACGACCTCATTTCAACAGTGACTCAACTGGCACAAAAAAAAGCCGATGAACAAAAGGACCTGCAACTCAACGGTTTTTCGTGGACCACGCCGCGCGCTCGCCTGTTCACGGATTGGGACCGTGCAACCCACTCGTTCAAGAGCCTCGACCTCCTGCCCAAGCACAAAGATACCGTCAGAAAAATCCTGCAAATCACCAGCAGTGCAAATCTGGAGCAAGCCCGCGACGCATTTCTGGACCTGAACTCAGCGGATCGACGGATCGACGTCATGTTTAAAAATGCCGACTCTATAGCGCTGCTCATTTGTGAGCTGGGGCGACAATTGGATCCGCCTCCGGTGGCTACGCCATAGMTSANPPLLFPEIFKARRLNELTAPHGLTQADLDWLHHAALPNYTQRGEQSPAMTIETITLDVQGKPLIPLAGCLVLSAQGDHPAFLYTPYGGIAKFDSPETLEHRLDEMLATPLERDELFCLLSLSQRNELYGASFQKTRRTVYGDPLETRLASISNAQELNAQAMVHELLQVPSLAAMLDQVLQELLDNFDHKQARVSLSLIKGADVPLQQWTRNMPLSDAVLIYFHHQGWPDGYEAAFTHPSTEESPANALHWQTMVKLTARNLVRHLTDRLEAYWDAASPLNISRRQFLSRVIDDKLRSAIVIEGEKGQLTEAQSSELHRLFRPSRHDERLMFIETIRLWEHETHSVELAGSLMISANGHYLYTPGKGIQQVDHHLGFRDTLLGPPTAAPQMDALYRLLSLEERNRLLRFDAPQVSGKEVSLPVAESLGQAIIAKQLDNIHFALEMSRQGEVDIHALLDKALDIRTLIDNGLLDQKVDGHWGARAAFYGNLRPSNFIADVLHRKLKTYDSVQKAFDSEFTELPHSSESELLDSELRKLLPKLCSTFSLGIREEAELRQLNGTLSTDAHKLINSVFAFDANYPDREQRPSVKGFRPDVYSLKLTCTTEGATTAVSPASCFLLTERGGLDTPFSGMAILWLPTCGLKVFPSVALASQQLNQYLSNARSRFDVLTNLTPAQRNPHARYQLEAFELIEGNVLMNRMTSFSEHFAAEHAYLRALQIGDWRLTEPAMLESLKALLDKGAATNLPVAERIAHAYRFQQKLPAWLGAASLEDQRQHIELLEQYRNSVTEDKDYLDGIEPLRNYVDRTLKALLETRFPDTGLDPATLLISPHLALAGPASSLTDFALNHLDSRQRPGFTISSMLSQKLPNHLNEAALRQMLLSLGTSTRYRAHVLDKLSDSAEGIEQRKSRFYQQLPWQLLQHAHARYLQQNLSPFAFSLISQVFDMPDSIARLEADGAEAIIRPMELIKTQGAEAVKATGLYLIGSSVDAKAPHILYSPYHEGNVFTEFENETKVIAAVNAPGVLQDMLIHRLPESQQATFRNLFASTAGKLSEITLASNPIANLLGTLFNDNTSLLAGMLKTHTDGTRQFDWQTVVHLFSTGIKALGRELPGKLALIETLKDAYEDFKASSEDFQQGNWGAGLHDFICGAAEMVSLGWLNRDDTFGLLDPVGPAALPRPAVKASHWQHLTSAARTDLQPFEALKVSLADLKKHPFDGTYEALASGKHYAPVFGKVFQVAKAAHDWRITHGHAEGPVLKRSSESGQWLIDPDSRHIRYGKVMSTLTDMHSDFNAKEVINIEARGMKQIRRMSPSRANMIEQALETARHYSRNALQNLEQVKGGMPAGSRLDTFLTTFLGVRVIDARLVEKIHTAIAPICQTLADPLWLHKNGSRIVIGIAKSANYDASAFVFEAGKGGRIYLTQEFFAMVPHWYNSAVPDTFNVDAHAQGSTFIHELSHLLCDTLDIVYLGAYLPFHDLISTVTQLAQKKADEQKDLQLNGFSWTTPRARLFTDWDRATHSFKSLDLLPKHKDTVRKILQITSSANLEQARDAFLDLNSADRRIDVMFKNADSIALLICELGRQLDPPPVATPNANANANANA
D1-35_035181002hypothetical proteinATGACCGAACGAATACTCTCGGAAGCCGAATACGACGCCATCAGCGATGCGGCCGCGCATTGGTGCATGCGTTTGCACGCTGATGACTGCACCGATGCCGACCGATTGGCGTTCAAGCAATGGCATGACGCCGACCCTCTGCACGCTTTCGAATACCAGGCCATGCTGGAAATCTGGGGCGTGGCCGAGCATCTGCCGCGTGTCGAATCCGCGCCGACCCTGCCAGCCCGGCGGCCACGGCCGCGCTGGAGCCGTCTGGCTGTCGCCGCCGCGGTGATCGCGCTGGGCTTGCCCTTGGCCGCGATTACCGGTTGGAACATGGGGTGGCTACCTGACTCGTACCAGCGCCTGGAAGCCGGCGCGAGCGTACGTCATGTCACGCTGGGCGATGGCAGCCAGGTGGAGCTCAACCTTGGCAGCGAACTGGTGTTCGCCAACTACAAGCATGAGCGTCGGGTCACGCTGAAAAAAGGCGAGGCGTTCTTCGATGTCAGTCACGACACCCGGCATCCTTTCGTCGTTCGGGCGGGCCAGGGCCAGGTGCGTGTGACAGGCACCCGTTTCAACGTGTGGATGTATCAGGACCAGGTTCGGGTCACATTGGTGGAAGGCTCGGTATGGGTGACCAGCAACATGAACGCCACTGCGGGCGGCTCGCAACTGTCACCGGGAATGCAGGCAAGCTACAAGGCGGGCGACTACCAGCCGCAGGTACGCGAGATCGAACCCGGCGACAGCTCCCTGGCCTGGCGCAACGGCAAGCTGGTGCTGAATGACCTGGCCCTTTCCGACGCACTGCCATTGATCAATCGCTACCTCGAACGTCCCGTCATGCTGGCCGACCATGCTACCGGCACCCTGCGTGTCGGCGGCATCTACAACCTCAACGAAGTGAAGAACCTCGTGCCCTCGCTGCCCAAGGTCCTGCCGATCTATCTGACCCAGAACCAGGACGGCAACCTGGTCCTCAATTCCATCGGTCATCATCCGGCCAAACATTAAMTERILSEAEYDAISDAAAHWCMRLHADDCTDADRLAFKQWHDADPLHAFEYQAMLEIWGVAEHLPRVESAPTLPARRPRPRWSRLAVAAAVIALGLPLAAITGWNMGWLPDSYQRLEAGASVRHVTLGDGSQVELNLGSELVFANYKHERRVTLKKGEAFFDVSHDTRHPFVVRAGQGQVRVTGTRFNVWMYQDQVRVTLVEGSVWVTSNMNATAGGSQLSPGMQASYKAGDYQPQVREIEPGDSSLAWRNGKLVLNDLALSDALPLINRYLERPVMLADHATGTLRVGGIYNLNEVKNLVPSLPKVLPIYLTQNQDGNLVLNSIGHHPAKHPGPT0003910_3179DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003910-prhR|fecR-K07165NANA
D1-35_035192355pvdQCOG2366Acyl-homoserine lactone acylase PvdQGTGAGAATGTCCGGGCAGTTATCGAGGTTTTGCCTTGCGGGTGCGTTGCTGGGGATGGCCCTGGGTGTCAGTACCGTTGTCAGCGCGCGAGGAGAGGTGGAGCAGGCCACCGCCGAGATTCGCCGCACCAGTTTTGGCGTGCCGCACATACGCGCCCAGGATGAGCGTGGATTGGGCTACGGCATCGGGTACGCGTATGCGCAGGATAATCTTTGCCTGCTGGCCAATGAGATCGTGACGGTCAACGGCCAGCGCTCGCGTTACTTCGGCCCCGAACAGGTCACCCTGGAGCAGCGGTCCAACCGGGCCAGCGACCTGTTCTTCAGCTGGCTCAACACGCCTCAGGCCGTATCCGGTTTCTGGCAGGCCCAGACGCCCCAGGTGCAGCAACTGGTCGAAGGCTACGTGGCCGGTTACAACCGCGCACTGGCCGAGCGCAAGGCACAGGGCTTGCCCGCACAGTGCGCCAGCGAATGGGTGCGGCCAATCACGGCGCTGGACCTGGTCAAGCTGACCCGGCGCCTGTTGGTGGAAGGTGGCGTCGGCCAGTTCGCCGAGGCCGTGGCGGGCGCGCAGCCGCCCAAGGCGACCACACAGGCCGACACCTCGATGTCCGGCTTCGAGGTCGCCGCGACCCGCCAGCAGCGCTTCGCCCTCGACCGCGGCAGCAACGCCGTGGCAATCGGCAGCGAACGTTCGTTCAACGGTCGCGGCATGTTACTCGCCAATCCCCATTTCCCCTGGGTGGGCGGCATGCGCTTTTATCAGATGCACCTGACCATTCCCGGCAAGCTGGATGTCATGGGCGCCGCGTTGCCCGGCTTGCCGATGATCAATATCGGTTTCAGCCAGCACCTGGCCTGGACCCATACCGTCGACACCTCCAAGCATTTCACCCTGTACCGCTTGCAGCTCGACCCGAAGGACCCGACCCGCTATCTGCTGGACGGCAAGTCAGTGCCGATGAGCCAACAGGTGGTCACGGTGGACGTCAAGCAGGCCGGCGGGCAGGTCAAGCCGGTTTCGCGGGTGGTGTACGGCTCGCAATTCGGGCCGGTTGTGCAATGGCCTGGCAAGCTGGACTGGGACAACCGCTTCGCCTACAGCCTGCGGGACGCGAACCTGGAGAACGATCGCGTGCTGGCGCAGTGGTACGCCATGAATCAGGCCGTCACGCTCAAGGATCTGCAGGCGTCGGTCCAGCGGATCCACGGAATTCCCTGGGTCAATACTCTGGCGGTGGACGACCAGGGACAAAGTCTCTACATGAACGTTTCGGTGGTGCCCAACGTTGACGCGGCCAAGCTGGCGCGGTGCAGTGATCCGAGGGCCGGGCTGAAACTGATCGTGCTGGATGGCTCGCGCAGCGAATGCAACTGGAGCGTGGACCCCAAGGCCGCGCAAAAGGGCATCTATGCCGCCGACAAACTGCCGCAGTTGTCGCGTCGTGATTACGTGCAGAACTCCAACGATTCGGCCTGGATGGTCAATCCCGCTCAGCCCTTGTCCGGTTATTCGCCACTGATCAGCCAGCAGGACCAACCGCTGGGGTTGCGCGCACGTTTCGCGCTGGATCGACTGGGCCAGTTTGGCAAAGACGGGCCGGTGCAAGTGGATGAGTTGCAGCGCATGGTCATGGACGACCAGGTTTACCTGGCGGAACAGTTGATGCCGGACCTGCTGGCCTTCTGCGCCGGGGACCTGAAGGCTGATGCCGCCGCTCTGACTGAAGTATGCACCCGCCTGAAGGCCTGGGATCGCACGGCGAGCCTGGACAGCGGCGTCGGCTTCGTGCATTTCCAGCAGATCATGAAAACGCTGCAAGCCGTGCCTGATACCTGGCGCGTCGCGTTCGATCCGAACGATCCGCAACACACTCCGCGGGGCCTGGCAATCGAGCGGCCTGCGGTGGCCGAGGCGCTGCGCCAGGCCATGCTGGCTTCACGGGAGTCGGTGAAATCGGCGGGGCTGTCAGCGGACAGCCGCTGGCGGGACGTCCAGGTTGCCAGCCAGGGCGGTCGGCAGACGCCGATCCACGGCGGCCCGGCGGAGCTGGGAATCTATAACGCGATCCAGAGTGTGCCGGGGGCGAACGGCAAGCGGGAAGTGGTCAGCGGCACCAGCTATCTGCAAGTGGTGACATTCGATGGCAGCGGCCCGCAGGCCCAGGGACTGCTGGCGTTTTCCATTTCCAGTGACCCGGCCTCGCCTTACTCGGCGGACCAGACCCAGGCATTCTCGAAGCGGCAGTGGAGCACGCTGCCCTTTACCGAGCAGCAGATCAAGGCCGATCCGAACTACCAGGCCAAGGTCATCCGCGAGCGTGATGAGGCGGGCAGGGTCGCGACGCAGTAAMRMSGQLSRFCLAGALLGMALGVSTVVSARGEVEQATAEIRRTSFGVPHIRAQDERGLGYGIGYAYAQDNLCLLANEIVTVNGQRSRYFGPEQVTLEQRSNRASDLFFSWLNTPQAVSGFWQAQTPQVQQLVEGYVAGYNRALAERKAQGLPAQCASEWVRPITALDLVKLTRRLLVEGGVGQFAEAVAGAQPPKATTQADTSMSGFEVAATRQQRFALDRGSNAVAIGSERSFNGRGMLLANPHFPWVGGMRFYQMHLTIPGKLDVMGAALPGLPMINIGFSQHLAWTHTVDTSKHFTLYRLQLDPKDPTRYLLDGKSVPMSQQVVTVDVKQAGGQVKPVSRVVYGSQFGPVVQWPGKLDWDNRFAYSLRDANLENDRVLAQWYAMNQAVTLKDLQASVQRIHGIPWVNTLAVDDQGQSLYMNVSVVPNVDAAKLARCSDPRAGLKLIVLDGSRSECNWSVDPKAAQKGIYAADKLPQLSRRDYVQNSNDSAWMVNPAQPLSGYSPLISQQDQPLGLRARFALDRLGQFGKDGPVQVDELQRMVMDDQVYLAEQLMPDLLAFCAGDLKADAAALTEVCTRLKAWDRTASLDSGVGFVHFQQIMKTLQAVPDTWRVAFDPNDPQHTPRGLAIERPAVAEALRQAMLASRESVKSAGLSADSRWRDVQVASQGGRQTPIHGGPAELGIYNAIQSVPGANGKREVVSGTSYLQVVTFDGSGPQAQGLLAFSISSDPASPYSADQTQAFSKRQWSTLPFTEQQIKADPNYQAKVIRERDEAGRVATQPGPT0003395_398DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QUORUM_QUENCHINGCE-QUORUM_QUENCHING-AHL-DEGRADATION,PGPT0003395-pvdQ-K07116NANA
D1-35_03520381hypothetical proteinATGCATAACGCACCGATGCCCATGGAGGGCAAGCCAGGATCGGCACGTGTGTCAATGAGCACCACCAATAACGTTTTCGCCAAGCCAACGGAACGCGGCGGCAATGAACACATCAGGCGTCTGCTCAAGAGTTACGGGCTGCGAACGAGCCTGATCCGCCTCAAGGTGATCGATGCGCTGCTCAAGGCCGCCGAAGAGAATCGGCAACTGGGGGTGCGGGGCGTGCATAGCCAGTTGCTGGGGCTGGACATTCCGTTGTCCTTCCTCAGTGTACGCGAGGTGCTCAAGCGCCTGTGCAGCGAGGGGGTCGTCAGCCTCCATCCGGATAAAAGCTACAGCTTGCACCCGAGTGCGGTGGCCGTGCTCAACGCCAAGCAGTAGMHNAPMPMEGKPGSARVSMSTTNNVFAKPTERGGNEHIRRLLKSYGLRTSLIRLKVIDALLKAAEENRQLGVRGVHSQLLGLDIPLSFLSVREVLKRLCSEGVVSLHPDKSYSLHPSAVAVLNAKQNANANANANA
D1-35_03521189hypothetical proteinATGACTCATTCGCAACGTTTGAAATACTCGATCCTGGTGGTCCTCGTTGTCCTGGCAATCATGCTCGGGCTGTCATGGATGCAAGGTAAAGGCATGATCAGCGAGCAGCTGTTTCAATACATTGCTATTGCCGTGGCGGTCATCGTGGTGGTGATCAACGGGGTGATGAGGCGCAAGGTCAAGCCTTGAMTHSQRLKYSILVVLVVLAIMLGLSWMQGKGMISEQLFQYIAIAVAVIVVVINGVMRRKVKPNANANANANA
D1-35_035221995hypothetical proteinATGCCCGCATTCCGCACCATTCAAGCCCGCTATACGCTGTTCCTGGTTCTGTTCATCCTGGTGCTGTCCATCCTGACGGTGGTCGGTATCAGCTATCTGGTCGCGCCAAAGCTGCGCCAGACCGAGGAACAAGTAGCGCTGAACCGCATCGAAGAGGTCGCGGAACAGATCCAGGGCGAGCTGAACAAGGTGCAGGCGCAGCAGCGGAGCATCACCCAGACCATCCCGCTGCTCGACAGCGACGCCATCGACAAGGTATTGCCTGGCCTGGTGGATCAATACGGCGAATTGAAGGTGTTCGGCGGCGGGATCTGGCCACTGCCCAACCAGCGCGCCGAGGGTCGCAGCAAGTTCAGCACGTTCTGGCACCGCGACGCATCCGGCAAACTGGCGGTCAACACCTTCTGGAACAGCGACGCTGCGCCGAACTATTTCGAACAACCGTGGCACAAGGGCGGCATGGCCACCCCTCCCGGCAAATGCGCCTGGGCCGCCGCCTACAAGGACGACGCCAGCGCCGAGCCACGGACCAACTGCGCCATGGCGATCCAGAAGAACGGCGCGCCTTACGGCGTTTCCACCATTGACGTGACCCTGGGCTTTTTCAACGATTTGATCGCGCGCAAGGAAGCGGAACTGAGCGCCGAGATGCTGATCGTCGAAGCCGACGGCAAGATCATCAGCAACAGCTCGCGTATCAGCGGGCCGATCGTGCTGAAGAACATCAGCGAGCTGGCGGCTACCTCGCCGTTCGCCGCTCAGGTCAAGGCAGGCCTGGCCAACCGTGACCAGCCGTTGCAACGGCTCGAGTTCGACAACAAGGGTGAGGCCAGCACGTTTTTCATGCGCCCCATCGAAGGCTCCCCATGGTTCCTCGCCACTGCCCTGCCGACCCGCCTGATCACCGCCCAGCGTGACGACGTGTTGAGCACGCTGAGCCTGCTGCAGATTCCGCTGGTGATCCTGTTGGTGCTGATGCAGTTGTACGCCATCCGCCAACTGACCCACCGCATGAAGGTCCTCAAAGGCAATATCGACGCGCTGTCCACTGGCGATGCCGACCTGACCCGACGCATCACCATCCGTGCCGAAGACGAACTGGGCGCCATTGGCCATTCGGTCAACCGGTTCATCGCCTATCTGCAAGACATGATCGGCGAAGTCACCCAGGCCACCGGCGCCATGGCCTCGGGCCTGGACAGCCTGCAGCGGAGTTCGGCCCATACCAGCGAAATCCTGATGCGCCACGCCTCGGAAACCGACCAGACCGTGACAGCCATCACCGAGATGAGCTCCACCGCTGAAAGCGTGGCGCAAAACGCCGCCGAAACGGCAGCGTTCACCCAGCGCGCCAATGAGCATGCCGATCGTTCGCGGGTCGTGGTCGGTGAAGCGTCCAACAGCGTCGTGGCGCTGATCGATGAGGTCGCCAGCGCCACGCGCAAAGTCGAAGACATGCAGCAGGACGCGCAACGCATCACCGAAATTCTCGGCGTGATCGGCGCCATCGCCGGGCAGACCAACCTGTTGGCCCTCAATGCCGCCATCGAAGCGGCCCGGGCCGGCGAGCAGGGCCGTGGCTTCGCGGTGGTCGCCGACGAAGTCCGCGCCCTCGCCGCCCGCACCCAGGCCAGCACCTCGGAAATCAATGAAATGCTGACCCGCCTGACCCAGGGCGTGACCTCGTCGGTCGCCGCCATGGAAAACACCCAGGCCAGTTGCCAATCGGCGGCCGACGCCACGTCCCGGGTCAACTCGGGCCTGGATGAAATGGCCGGCTCCGTCAGCCAGATCAACAGCCTGAGCACCCAGATCGCCACCGCCGCCGAACAGCAGAGCGCAGTGACCGAGGAAATCAACCGCAGCATGGTGCAGATCCGCCATATGGTCGAGGAACTGGTGGAAAGCGGCCTGGCCAGCCAGAACAACACCCGCCAGCTGCTGGAAGCCAACAGCCGGGTGAATGCGATCATGGGGCGGTTCAAGGTTCGCTAAMPAFRTIQARYTLFLVLFILVLSILTVVGISYLVAPKLRQTEEQVALNRIEEVAEQIQGELNKVQAQQRSITQTIPLLDSDAIDKVLPGLVDQYGELKVFGGGIWPLPNQRAEGRSKFSTFWHRDASGKLAVNTFWNSDAAPNYFEQPWHKGGMATPPGKCAWAAAYKDDASAEPRTNCAMAIQKNGAPYGVSTIDVTLGFFNDLIARKEAELSAEMLIVEADGKIISNSSRISGPIVLKNISELAATSPFAAQVKAGLANRDQPLQRLEFDNKGEASTFFMRPIEGSPWFLATALPTRLITAQRDDVLSTLSLLQIPLVILLVLMQLYAIRQLTHRMKVLKGNIDALSTGDADLTRRITIRAEDELGAIGHSVNRFIAYLQDMIGEVTQATGAMASGLDSLQRSSAHTSEILMRHASETDQTVTAITEMSSTAESVAQNAAETAAFTQRANEHADRSRVVVGEASNSVVALIDEVASATRKVEDMQQDAQRITEILGVIGAIAGQTNLLALNAAIEAARAGEQGRGFAVVADEVRALAARTQASTSEINEMLTRLTQGVTSSVAAMENTQASCQSAADATSRVNSGLDEMAGSVSQINSLSTQIATAAEQQSAVTEEINRSMVQIRHMVEELVESGLASQNNTRQLLEANSRVNAIMGRFKVRPGPT0015710_6988DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_03523447hypothetical proteinATGGCCCATCCCCTGCATCTGCTCGCCTTGAGTACCTTGCTCATTTCCGCCCTGGCCCAGGCCGCCGAACCGGCGACCATCGATGTGCACCGCGATGCCAATTGCGGTTGCTGCAAGAAGTGGATATCCCACTTGCAGGAGAACGGTTTCAAGGTCAACGACCATGTCGAGGCCGACATGAGCGCGGTCAAGCAACGCCTTGGCGTCGCGCCCAACCTGCGTTCCTGCCACACCGCCGAAATCAACGGCAAATTCGTCGAAGGCCACGTTCCGGCCGAGCAGGTGCTGGCATTGAGCATACGCGACGACCTGCTTGGCGTAGCCGCGCCCGGCATGCCGATGGGCTCGCCGGGCATGGAGATGGACGGCATGAGCGATGCCTACCAAGTGATCGGGCTGAAAAAAGACGGGACGCAAACCGTGGTGGCGGACTATCCGGCCCATTGAMAHPLHLLALSTLLISALAQAAEPATIDVHRDANCGCCKKWISHLQENGFKVNDHVEADMSAVKQRLGVAPNLRSCHTAEINGKFVEGHVPAEQVLALSIRDDLLGVAAPGMPMGSPGMEMDGMSDAYQVIGLKKDGTQTVVADYPAHNANANANANA
D1-35_03524435yqaACOG1238Inner membrane protein YqaAATGGGCGAAGCGTATATCGGGCTGTTCTTTGCAGCGTTTGGCGCGGCGACCCTGCTGCCGTTGCAATCCGAGGCGCTGCTGGTGGGCCTGCTACTCAGCGAACGTTACGCGATCTGGCTGCTGCTGGCAGCTGCAACCCTCGGCAACGTCCTCGGTTCGCTGGTGAACTGGTGGCTGGGCACACGCCTGGAACAGTTCAAGGATCGCCGCTGGTTTCCGGTCAGCCCGTCCCTTCTGGACAAGGCCCGTCGGCACTACCAGCGCTATGGCTACTGGTCGCTGTTGCTCAGTTGGCTGCCCATCATCGGCGATCCGCTGACATTGGTCGCCGGCGTGATGGGTGAGCCCTGGCGGCGCTTCCTGTTGATCGTGACGCTCGCCAAAGGCCTGCGTTATGGCGTGCTCACCTGGGCGACCCTCGGCTGGATGGGTTGAMGEAYIGLFFAAFGAATLLPLQSEALLVGLLLSERYAIWLLLAAATLGNVLGSLVNWWLGTRLEQFKDRRWFPVSPSLLDKARRHYQRYGYWSLLLSWLPIIGDPLTLVAGVMGEPWRRFLLIVTLAKGLRYGVLTWATLGWMGNANANANANA
D1-35_035251032dhmA_2Haloalkane dehalogenaseATGTCGCGTTTGACCGCCCGCTGGCTGCCCAGCCTGTTCCTCACCGCTGCCTTGCCAATGCTCGCCCAGGCCGCGAACCCACCTGAAGGCCCGGCCTATGGCCCGCAGCTTGAGGGTTTCGAGTACCCCTATACGCTCAAGCATTTTGCCTTGCAGTCCCAGGGCAAATCGCTGCAGATGGGCTATATGGACGTGCCCGCCCAAGGCAAGGCCAACGGCCGGACGGTGGTGCTGATGCATGGCAAGAATTTCTGCGCCGCCACCTGGGGCGATTCGATCAAGGCGCTCAGTGACGCCGGTTACCGGGTCATCGCCCCGGACCAGATCGGTTTTTGCACGTCGAGCAAGCCGGACCATTACCAGTACAGCTTCCAGCAGTTGGCGATCAACACCCAGGCCCTGCTCAAGGCTCTCGGCGTACAGAAGGCCATCGTGCTGGGCCACTCCACCGGTGGCATGCTTGCCACCCGCTATGCCTTGCAGTTCCCCGACCAGGTCGAACGCCTGGCGATGGTCAACCCCATCGGCCTCGAGGACTGGAAAGCCCTTGGCGTGCCTTACCGCACCGTGGACCAATGGTACGAGCGCGAGCTGAAACTCAACGCCGAGGGCATTCGCAACTACGAGCGCAACACCTATTACGGCGGACGCTGGAAACCGGAGTTCGAGCGTTGGGTCGACATGCTTGCCGGCTTGAACAAGGGCCCGGGACATACACAAGTGGCGTGGAATTCGGCGCTGATCTACGACATGATCTTCACCCAGCCGGTCTATTACGAGTTCAAGGACCTGAAGGTCCCCACGCTGCTGTTGATCGGGACGTCCGACACCACCGCCATCGGCAGTGACATTGCCCCGCCGGCCGTGAAAGCCCGGCTGGGCCGTTACGAGGTGCTAGGCAAACAGGTCGCCGGACTGATCCCGCAGTCGACCCTGGTGGAATTCCCCAACCTGGGGCACGCGCCGCAAATGGAAGAGCCGGCGCGGTTCCACCAGGCGCTGCTCGGCTGGCTGGACAAACCCATTCCCTGAMSRLTARWLPSLFLTAALPMLAQAANPPEGPAYGPQLEGFEYPYTLKHFALQSQGKSLQMGYMDVPAQGKANGRTVVLMHGKNFCAATWGDSIKALSDAGYRVIAPDQIGFCTSSKPDHYQYSFQQLAINTQALLKALGVQKAIVLGHSTGGMLATRYALQFPDQVERLAMVNPIGLEDWKALGVPYRTVDQWYERELKLNAEGIRNYERNTYYGGRWKPEFERWVDMLAGLNKGPGHTQVAWNSALIYDMIFTQPVYYEFKDLKVPTLLLIGTSDTTAIGSDIAPPAVKARLGRYEVLGKQVAGLIPQSTLVEFPNLGHAPQMEEPARFHQALLGWLDKPIPPGPT0024360_3DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_LYSOPHOSPHOLIPASE_ACTIVITY,PGPT0024360-PLB-K13333NANA
D1-35_03526963hprACOG1052Glycerate dehydrogenaseATGGCGGTGCAAATAGCAGTCATCGACGATTGGCAAGACGTCGCCAGGGACGTGGTGGACTGGTCGGTGCTCGATAGCATTGGTGAAGTGACCTTCCTGCACGATTACCCCGCCGACCGCGACACCCTCGCCGAGCGCCTGCAACGCTTCGACGTCATCTGCGTGATGCGCGAGCGCACCCGCTTCGACGAAGAACTGCTGCGCCGCCTGCCCAACCTGCAGCTGTTGCTGACCGGCGGCATGCGCAACGCCGCCCTTGACCTCAAGGCTGCCACGACACTGGGCATCCAGGTCTGCGGCACCGAGAGCTACAAGCACGCTGCGCCGGAACTGACCTGGGCGCTGATCATGGCCCTGAGCCGCAATCTTGTACCGGAAGCCAACGCCCTGCGCGCTGGGCTGTGGCAACAGGGCCTGGGCGGTGATTTGCACGGCAAGACCCTGGCGATCCTGGGCCTGGGCAGCATCGGCACGCGCGTTGCGCAGTTCGGCCAGGTGTTCGGCATGCGTGTGATCGCCTGGAGCGAAAACCTGACCGCCGAGCGAGCCGCCGCAGCCGGCGTGCAATACGTGAGCAAACAAGCGCTGTTCGAGCAGGCTGATATCCTCTCGATCCATCTGGTGCTCAGCGAGCGCAGCCGGGGCCTGGTGGACGCCCAGGCCCTGGGCTGGATGAAACCCGAGGCGCTGCTGGTCAATACCGCGCGCGGGCCGATTGTCGACGAGGCGGCCCTCATTGACGCACTCCGGCACAAACGCCTGGCAGGCGCCGCGCTGGACGTATTCGCCGAGGAACCGTTGCCGCCCGAGCACCCGTTCCGAACCCTCGACAACGTGTTGGCCACACCTCACGTGGGTTATGTGAGCCGGCAGAATTATCAGCAGTTCTACGGCCAGATGATCGAGGACCTGCAGGCCTGGGCGGCTGGCAAGCCGATCCGGGTGCTGACCGCGGCTGGTTGAMAVQIAVIDDWQDVARDVVDWSVLDSIGEVTFLHDYPADRDTLAERLQRFDVICVMRERTRFDEELLRRLPNLQLLLTGGMRNAALDLKAATTLGIQVCGTESYKHAAPELTWALIMALSRNLVPEANALRAGLWQQGLGGDLHGKTLAILGLGSIGTRVAQFGQVFGMRVIAWSENLTAERAAAAGVQYVSKQALFEQADILSIHLVLSERSRGLVDAQALGWMKPEALLVNTARGPIVDEAALIDALRHKRLAGAALDVFAEEPLPPEHPFRTLDNVLATPHVGYVSRQNYQQFYGQMIEDLQAWAAGKPIRVLTAAGPGPT0019780_1351DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_OXALIC_ACID_DERIVATE_UTILIZATION,PGPT0019780-gyaR-K00015NANA
D1-35_035271572glgACOG0297Glycogen synthaseATGATCAGTGCTGCCTTGGAACCACAGCAAGTCCGCTCTCAATTACCGCCGGCGGCTGAATCGCCGACGGCACCGGTGCTGGCCACCGGAGGCAAGGCACTGCTCCCTGTCGTTCGACAGAACCCCAACCGCAAGAAGATCCTGTTCGTGACCTCGGAAATCGCCGACCTGGTCAAGACCGGTGGCCTGGGCGACGTTTCTTCCGCCCTGCCCCGGGCCATGGCCGGCCTGCATGATGTCCGGGTGCTGATCCCCGGGTATCCGCAAGTCATGAACAGCGGCAATCCGATCCATATCATCGGCGAACTGGGCGGCCACGCAGCGCTGCCGCCGTGCAAGATCGGCCGCATGGACATGGCCGACGGTCTGGTGATCTACGTCCTGATCTGTCCCGAACTGTATGCCCGCGAAGGCTCGCCCTACGGCGCCAACAATGGCCGCGACTGGCCGGACAACCACATCCGCTTCGCCCGCCTGGGCCTGGCCGCAGCCGACATCGCCGCCAACCTGGCGCAGATCCACTGGTGCCCCGACCTGGTCCATGCCCACGACTGGCCGGCCGGCCTGGCCCCCGCCTATATGCACTGGCGCGGCCAACGTACCCCGACCCTGTTCACCATCCACAACCTGGCGTACCAGGGCGTGGTCAGCCTGGCTTCCTGCCCGGAGCTGGGCATCCCGGAGCACGCGCTGCAACAGGAAGGCATGGAGTTCTACGGCAAGCTGTCGTTCCTCAAGGCCGGCATGGCCTATTCCAGCCACATCACCACGGTCAGCGCTACCTACGCCCAGGAAATCACCACCCCGGCGTTCGGCTGCGGGCTTGACGGGTTCCTCGCCGCCAAAACCCAACAAGGCCTGCTCAGCGGGATCCCCAACGGCATTGACGAGAGCTGGGATTCGGCGACCGACTCACATCTCCAGCGCCAGTTCTCCATAGGGGACTGGGAAGGCAAGGCTGCCAACGCCGCCCACGTCCGTGACCTGTTCGGCCTGGACCATACCAGTGGCCCGCTGTTCGCCGTGGTATCGCGCCTGGTGTATCAGAAAGGCCTGGACCTGACCGAGGCCGTCGCCGAATTCATCGTCGAGTCCGGCGGGCAGATCGCGATCATTGGCCGCGGCGAACCGGAAGAAGAACAGGCCATGCGTGAACTGGCGCTGCGCTTCCCCGGCAAGATCGGCGTGCGCATCGGCTTCAACGAAACCGATGCCCGGCGGATGTTCGCTGGCAGCGATTTTCTGCTGATGCCATCGCGCTACGAGCCGTGCGGCTTGAGCCAGATGTACGCCCAGCGCTTCGGCTCGCTGCCGGTGGCGCGCAATACCGGCGGCCTGGCGGACACCATCGAGGATGGCATCACCGGGTTCCTGTTCGACGAATCCACCGTGGAAAGCTACAAGCAGGCCCTGAGCCGGGCTTTCAAGGTATTCGAGTTTCCCGAGCTGCTCAATGCCATGCGTTGCCGGGCGATGTCGGCCCCCTTCAATTGGTCCAAGGCCGTAGAGCCCTATGCCGAACTTTATGAACAACTGGTAGCTAAATCGCTGGGAAAATCGGCCAGACAATGAMISAALEPQQVRSQLPPAAESPTAPVLATGGKALLPVVRQNPNRKKILFVTSEIADLVKTGGLGDVSSALPRAMAGLHDVRVLIPGYPQVMNSGNPIHIIGELGGHAALPPCKIGRMDMADGLVIYVLICPELYAREGSPYGANNGRDWPDNHIRFARLGLAAADIAANLAQIHWCPDLVHAHDWPAGLAPAYMHWRGQRTPTLFTIHNLAYQGVVSLASCPELGIPEHALQQEGMEFYGKLSFLKAGMAYSSHITTVSATYAQEITTPAFGCGLDGFLAAKTQQGLLSGIPNGIDESWDSATDSHLQRQFSIGDWEGKAANAAHVRDLFGLDHTSGPLFAVVSRLVYQKGLDLTEAVAEFIVESGGQIAIIGRGEPEEEQAMRELALRFPGKIGVRIGFNETDARRMFAGSDFLLMPSRYEPCGLSQMYAQRFGSLPVARNTGGLADTIEDGITGFLFDESTVESYKQALSRAFKVFEFPELLNAMRCRAMSAPFNWSKAVEPYAELYEQLVAKSLGKSARQPGPT0025880_950DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENVIROMENTAL_SURRIVALCE-BACTERIAL_FITNESS-ENVIRONMENTAL_SURRIVAL-GLYCOGEN_BIOSYNTHESIS,PGPT0025880-glgA-K00703NANA
D1-35_035281803glgB_21,4-alpha-glucan branching enzyme GlgBATGCCGTCAAGGACGCCTGAAACCTGGACCCACGGCGCGGTCTTGCTCGATTCCGAGCACACCCGCTTCGCGCTATGGGCCCCGGATGCCTTTTACGTCAGTGTCGAACTCGACACTGGAGAATCCATACCGATGCTGCCCCAGGCCAACGGCTGGTTCATGATCCAGGCCCGTTGCCCCGCTGGCACTCGTTACCGCTTCAACATCGATGGCGAGCTGGAGGTGCCCGATCCAGCCTCCCGCGCCCAGGACGGTGATATCGATCGCCACAGCGTGGTGGTCGACCCCCACGCCTACCAATGGCGACACACCAACTGGTCCGGTCGCCCCTGGTACGACGCCGTCATTTACGAACTGCATGTTGGCGCCCTCGGTGGTTTCGAAGGCGTCGAGCAGCAACTGGCACGCCTGGCCGGGCTTGGCGTGACCGCCATCGAACTGATGCCCCTGGCGCAGTTTCCCGGCGATCGCAACTGGGGCTACGACGGTGTATTGCCCTACGCTCCCCAGGCCTCCTATGGCACGCCGGACCAGCTCAAGCATCTGATCGACAGCGCCCATGGCCATGGCTTGGCGGTCATTATCGACGTGGTCTATAACCACTTCGGCCCCGATGGCAACTACCTGCACCGCTACGCCAAGGGCTTCTTTCGCGAAGACAAGCACACACCCTGGGGCGCGGCGATCGACTTCCGGCGCCGCGAGGTCCGCGACTTCTTCATCGAAAACGCCCTGATGTGGTTGCTCGAATACCGTTTCGACGGCCTGCGCCTGGACGCCGTGCATGCGATCGAAGACCCGGACTTCCTCCAGGAGCTCGCCACCACGGTGCGCCAACAGGTCGACCCGACGCGCTACGTCTGGTTGACCGTCGAGAACGAACACAACCAGGCCAGCCTGCTGGAGCACGGCTACGACGCCCAGTGGAACGATGATGGGCACAATGCCTTGCACGTGCTGCTGACCGGCGAGACCGATGCCTATTACGCCGACTATGCCGAGCAGACCACGGAAAAGCTCGCGCGCTGCCTGAGCCAGGGGTTCGTGTTCCAGGGCCATACCAACCGCCACGGTGAATCCCGCGGCGAGCCCAGCGGCCACCTGCCGCCGAGCGCATTCGTATTGTTACTGCAAAACCACGACCAGATCGGCAACCGGGCCTTGGGCGAGCGCCTGCACCAGCTGGCCCCGCCACAGGCGCTGCAAGCCGCGACCGCCTTGTTGCTGCTTTCACCGATGATCCCGCTGATGTTCATGGGCGATGAAGTGGTCGCCGAACAACCGTTCCTGTTTTTCACCAGCCACCATGGCGAACTGGCGGAGTTGGTGCGCGAAGGTCGACGCAACGAGTTCAAGGCCTTTGCAGCTTTTGCCGACCCCGAGAAACGCGAGCGGATTCCCGACCCGAACGCGGCCGGCACGTTCGACGCTTCACGGCCCAACCTGGAAGCCCATCAACCGGAACAACTGGCCTGCGAAACCCTGTATCGCCAGTTATTGAAGATCCGCCGTGAGGAAATCGTCCCGCGCCTCCCCGCCGCCCATGCCCTGGGCGCGGATGTGCTGGGCCATGGCGCCGTCAGCGCGCGCTGGCAGATGGGCGACGGCAGCGTGTTGCGCATCGACCTGAACCTCAGCGACAAACCGGTCGAACACAGCGCACCGCAAGATGCGCAGATTCTTTTCGAACATCCACCGCAGGCCATGGGTCTGTTGCAACAAGGGGTGCTCACGCCCCACAGCGCGCTGGTCAGTCTGACGCAAGCGACAACCTTGCCCAATATCACTGGAGAGCGCCTATGAMPSRTPETWTHGAVLLDSEHTRFALWAPDAFYVSVELDTGESIPMLPQANGWFMIQARCPAGTRYRFNIDGELEVPDPASRAQDGDIDRHSVVVDPHAYQWRHTNWSGRPWYDAVIYELHVGALGGFEGVEQQLARLAGLGVTAIELMPLAQFPGDRNWGYDGVLPYAPQASYGTPDQLKHLIDSAHGHGLAVIIDVVYNHFGPDGNYLHRYAKGFFREDKHTPWGAAIDFRRREVRDFFIENALMWLLEYRFDGLRLDAVHAIEDPDFLQELATTVRQQVDPTRYVWLTVENEHNQASLLEHGYDAQWNDDGHNALHVLLTGETDAYYADYAEQTTEKLARCLSQGFVFQGHTNRHGESRGEPSGHLPPSAFVLLLQNHDQIGNRALGERLHQLAPPQALQAATALLLLSPMIPLMFMGDEVVAEQPFLFFTSHHGELAELVREGRRNEFKAFAAFADPEKRERIPDPNAAGTFDASRPNLEAHQPEQLACETLYRQLLKIRREEIVPRLPAAHALGADVLGHGAVSARWQMGDGSVLRIDLNLSDKPVEHSAPQDAQILFEHPPQAMGLLQQGVLTPHSALVSLTQATTLPNITGERLPGPT0014130_572DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_GLYCOSIDE_UTILIZATIONPLANT_DERIVED_GLYCOSIDE-GLYCOSIDASES|GLYCOSYLHYDROLASES,PGPT0014130-treZ|glgZ-K01236NANA
D1-35_035292079malQCOG16404-alpha-glucanotransferaseATGAGCGATGCGCAACTGGAAATCCTCGCTGGCCGAGCGGGCCTGGCGGTGGACTGGATCGATGCCAATGGCCGTGCCCAGAAAGTTACACCCGCGGTGTTGCGCTCGGTCCTCACCGGCCTGGGGCATCCCGCCGGCACTGCCCAGGAAATCGACGCCAGCCTGTTGCAGTTGCAGGAAGACCAACAGAACCACCGCCTGCCGCCGCTGCTTACCGCAAACGCAGGCGTGAATGTCGACCTGAGCCGCTATTTCGAACCCGCGACCCCGTGCGAGATCCAGCTTGAAGATGGCGCGACGCTGAATCTGAAACTTGACGCCGACGCGACGCTGCCGGGGATCGTCCCGGTGGGCTATCAGCAGGTCAGCATCCAGGGCCAGCATTTCACCCTGGCGGTGGCGCCCACCCGTTGCTACAGCGTGGCGGATGCGGTGGACGACCCGACCCCCAGGGTCTGGGGCCTGAGCGCGCAACTTTATTCCCTGCGCCGCCCCGGCGATGGCGGCTTCGGCGACACCCAGGCCCTGGAAGAACTGGCCCGGGTGGCCGGCGAACGTGGTGCCGACGCCCTGGCCATCAGCCCGATGCATGCGATGTTCAGCAGCGATACCGGGCGCTACAGCCCATATTCGCCCTCCAGCCGGCTTTTTCTCAACAGCCTGTACGCCGCACCAGGCACCATCCTTGGCGAGCGTGCGTTGCGCACGGCCATCGACGCCACCGGCTTGACCAACCAGTTGCGCAGCCTCGAAGAGCAGCCGCTGATCGACTGGCCGGTGGCTGCCGAAGCCAAGCAGCGAGTTCTTCGCGCGCTGTACGACGGCTTCAGCCAGGGCGAACATCCGCTGCATGAGGATTTCAGCAGTTTCCGCCACAGCAGCGGCGAGGCCCTGGAAAACCATTGCCGCTTCGAAGCCCTCCAGGCCGATCGCGCCGCTCGGGGCGAAAGCCTCGACTGGCGCCAGTGGCCGAAAGAATGGCGCGATCCGCGCAGCGCCGCGCTGGCCCGTTTCGCCGAAGAGAACGCAGATGAAATCGGCTTCTACGCCTTCTGCCAATGGTTGATTGCCCGCTGCCTGGAGCGCGCCCAGAGCGCGGCGAAGTCCAGTGGCATGGGCATCGGCCTGATCGCCGATCTCGCCGTGGGCGCTGACGGCGCCGGCAGTCAGGCCTGGAGCCGCCAGGATGAATTGCTCGCCTCGCTCACCGTCGGCGCACCGCCGGACATTCTCAACCGCTCCGGACAGGGCTGGGGTATCTCGGCGTTCTCGCCAGAGGGGCTGGTACGCAACGGTTTCCGCGCGTTCATAGAAATGTTGCGGGCTAATTTCGCCCACGCCGGCGGCTTGCGCATTGACCACATCATGGGTCTGCAACGATTGTGGGTGATCCCCAACGACGCCCCGCCCACCGATGGCGCCTACCTCTATTACCCGATCGATGATCTGCTGCGGCTGCTGGCCCTGGAATCCCATCGCCACCGGGCCATCGTGCTCGGCGAGGACCTTGGCACCGTGCCCGAAGGCCTGCGGGAAAAACTCGCGGCCCGCGCCATCCTCGGCATGCGTGTGCTGTTGTTCGAACAGGACAATACCCACTTCAAGCCGATCCTCGATTGGCCGGATGACGCCCTGGCCACCACCAGTACCCATGACCTGCCAACCCTGAACGGTTGGTGGCACGGTCACGACATCGACTGGAACGCCCGGCTGGACCTGATCGACTCCCACACCGAGATGGACTGGCGCCGGCACCGCCAACGCGAGCGTGACGGGTTACGCAATGCATTGAACCAGGACCCGCAGAATTTTCGCGAAGAACACCGCGAAACCGACCAGGTGCTGGACGCCAGCGTGCGCTTCCTCGGCCATACCCGCGCGCCGCTGGTGCTGTTGCCCCTGGAAGATGCCCTGGGTATCGACGAACAGGCCAACCTGCCCGGCACCACCGACACCCACCCCAACTGGCGGCGGCGCCTGGCTTTGGAAAGCCGCGCGCTGCTGGATGACCCGGACGCCGCACGGCGTCTGGAAATACTCGCCTGCGCGAGACTTCAGGCGAACGAGCGTGACCGATGAMSDAQLEILAGRAGLAVDWIDANGRAQKVTPAVLRSVLTGLGHPAGTAQEIDASLLQLQEDQQNHRLPPLLTANAGVNVDLSRYFEPATPCEIQLEDGATLNLKLDADATLPGIVPVGYQQVSIQGQHFTLAVAPTRCYSVADAVDDPTPRVWGLSAQLYSLRRPGDGGFGDTQALEELARVAGERGADALAISPMHAMFSSDTGRYSPYSPSSRLFLNSLYAAPGTILGERALRTAIDATGLTNQLRSLEEQPLIDWPVAAEAKQRVLRALYDGFSQGEHPLHEDFSSFRHSSGEALENHCRFEALQADRAARGESLDWRQWPKEWRDPRSAALARFAEENADEIGFYAFCQWLIARCLERAQSAAKSSGMGIGLIADLAVGADGAGSQAWSRQDELLASLTVGAPPDILNRSGQGWGISAFSPEGLVRNGFRAFIEMLRANFAHAGGLRIDHIMGLQRLWVIPNDAPPTDGAYLYYPIDDLLRLLALESHRHRAIVLGEDLGTVPEGLREKLAARAILGMRVLLFEQDNTHFKPILDWPDDALATTSTHDLPTLNGWWHGHDIDWNARLDLIDSHTEMDWRRHRQRERDGLRNALNQDPQNFREEHRETDQVLDASVRFLGHTRAPLVLLPLEDALGIDEQANLPGTTDTHPNWRRRLALESRALLDDPDAARRLEILACARLQANERDRPGPT0018570_1482DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_COMPLEX_SUGAR_UTILIZATIONPLANT_DERIVED_MALTOSE_DEGRADATION,PGPT0018570-malQ-K00705NANA
D1-35_035302787treYMaltooligosyl trehalose synthaseATGAACCAGACACTGACCCAACCGCTGCAGGCCACCTTGCGCCTGCAATTTCATAAAGGCTTCACCCTCGACGATGCGGTAGCGCAAGTGCCCTATTTCGCAGCGCTGGGCATCAGCCACATCTATGCGTCTCCCCTGCTCAAGGCACGGGCCGGGTCCATGCACGGCTACGACGTGGTCGACCCGACCCAGGTCAACCCGGAGCTGGGCGGAGAGGCTGCGCTCAAGCGCCTGGTCGCCACCTTGCGCGAGCACCGGATGGGCCTGATTCTCGACATCGTGTCCAACCACATGGCCGTTGGCGGCAACGACAACCCCTGGTGGCTGGACCTGCTGGAGTGGGGACGCTTGAGCCCTTATGGCGAATTCTTCGACATCCAGTGGCATTCCCCCGACCCGCTGATGGAAGGCCAGTTGCTGCTGCCATTCCTGGGCAGCGACTACGGTGTGGCGTTGCAGGAAGGCACCTTGAAACTGCGTTTTGATTCCGCGCAAGGCAGCTTCCATGTCGAGCATTACGAGCACCGCTTCCCCATCTGCCCGATGCAATACGGTGAGCTGCTCAAGCCTGCGGACGCTCTGGAGCCCGAGCAGATCGACGCGCTCAAGGCGCTGGCCGAGCGTTTCACCACGCTGAACTACCAGACCGACGCCCACTCCCTCGCCCGCCCGCTCCAGCAAGAGCTGCGCGATCTGGCCACGCAAACGAGCATCCTCAGCGCCATTGAGGACACCCTGCGCGGCTACGATTCCACCGAGCCCGCGGGTTTCGAGCGCCTGCACCAACTGCTCGAGCGCCAGAGCTACCGGCTCGCCAGCTGGCGCACGGCGGCGGACGATATCAACTGGCGACGCTTCTTTGATGTCAACGAACTGGGCGGCCTGCGGGTCGAGCGGCCGGCGGTGTTCGAGGCGACCCACGCCAAGATCTTCGAGCTGATCGCCTCGGGGCTGGTGGACGGCCTGCGGATCGACCACATCGACGGCCTGGCCGATCCTCGCGGTTACTGCCGCAAGCTGCGCCGTCGCGTCGACTCGCTCTCGCCCTCGCGGCACCTGCCGATTTTTGTCGAGAAAATCCTCGGCGACGGCGAAACCCTGCGCCGCGACTGGAACATCGATGGCAGCACCGGTTACGAGTTCATGAACCAGATTTCGCTGTTGCAACACGACCCGGCCGGCGCCGAGCCCCTCGCCGAGTTCTGGAGCCGGCACAGCGAGCGCCCGGCGCACTTCATCGAAGAGGCCCGCCTGGCCCGCCAGCAGATTCTCAACGGCTCTCTTGCCGGAGATTTCGAAAGCGTCGCACAGGCCCTGTTGCAAGTCGCCCGGGACGACGTGATGACCCGCGATCTGACCTTGGGCGCGATTCGTCGGGCGTTGCAGGAGTTGATCGTGCATTTCCCGGTGTATCGCACGTACATCAACCCGCTGGGACGCTCCGCCGAGGACGAGGTGTTTTTCCAGAAAGCCCTGGAAGGCGCCCGGCAAACCCTGAGCGAAGCCGATTGGCCGGTGCTCGACTGCCTGGCCGACTGGCTCGGTGGCATGCCATGGCGCAAGCGGCCTCGCGGCAGTGAGCGCAAACGCCTGCGCCACGCCTGCGTGCGCTTCCAGCAACTGACCTCGCCGGCAGCGGCCAAGGCTGTCGAGGACACCGCACTGTATCGCTCGGCGGTACTGCTTTCGCGCAATGACGTGGGCTACAACACCGAGCGCTTCAGTGCCCCGGCCGAGGAATTCCATGAAGCGTGCCGGGAACGGCTCGAACACTTTCCCGACAACCTCGTCACCACCGCGACCCACGACCACAAGCGCGGCGAAGACACCCGAGCCCGGCTGGCAGTGATCAGCGAACGCCCGGACTGGTACACTGCGTGCGTGGAGCAATGGCGCATCCTCTCGCCGTCGCTGCACAGCGACCCAGCAGCCCCATCGGCCGGTGATGAACTGATCCTTTACCAGGCCCTGCTCGGCAGCTGGCCGCTGGACCTCGACCTGCAGGACCCCAAAGCCTTGGCCGAATACAGCGAACGCCTGTGGCAATGGCAACGCAAGGCCCTGCGCGAAGCCAAGCTGCAAAGCAGCTGGGCGGCGGTCAACGATGCCTATGAGCAAGCCACCCAGATGTTCCTTGAGCGGTTGCTGCTGTGCGACGAGGGCCTGCCGTTGCGCAGCGCCATCGCCGAGGCGGTCCAGGCCATCGCTCCGGCGGGCGCCCTCAACAGTCTGGCGCAAACCTTGCTGCGCATGACCGTACCCGGCGTCCCGGACCTCTACCAGGGCAACGAATTCTGGGATTTCAGTCTGGTGGATCCGGATAACCGTCGCCCGGTGGATTTTAATGCTCGCCGTGAGGCGGTACAGGGCGACAGCTCACCGGCGACGCTGGTACGCGACTGGCGCGACGGTCGGGTCAAGCAGGCACTGATAGCGCGGACGCTGGCCTTGCGCGCCGAATACCCGCAGCTGTTTCGCCAAGGCAGCTATCAACCGCTGCCGGTGCTTGGCGAACACGCCGGGCGGGTGCTGGCGTTCATGCGCGAATACCAGCAGCAGCGGGCGATCGTGGTGGTCCCGGTGCACGCCGCCCGCCTGCTGGAAAACGGTGCCTTGCCCCACGTGGCTGCATCGGACTGGGGCGATACCCGGGTGTCGTTACCGTTCGCCGCCGAGGATGGAAAACTGAAGGGACTTTTTGCAAGCGCAGCAGTCACACCCCAAAGGGAGCTGATGGTCAGCGCCGCGCTGGGGGATTTCCCGGTCAATGTCTTTATTGAATCTTGAMNQTLTQPLQATLRLQFHKGFTLDDAVAQVPYFAALGISHIYASPLLKARAGSMHGYDVVDPTQVNPELGGEAALKRLVATLREHRMGLILDIVSNHMAVGGNDNPWWLDLLEWGRLSPYGEFFDIQWHSPDPLMEGQLLLPFLGSDYGVALQEGTLKLRFDSAQGSFHVEHYEHRFPICPMQYGELLKPADALEPEQIDALKALAERFTTLNYQTDAHSLARPLQQELRDLATQTSILSAIEDTLRGYDSTEPAGFERLHQLLERQSYRLASWRTAADDINWRRFFDVNELGGLRVERPAVFEATHAKIFELIASGLVDGLRIDHIDGLADPRGYCRKLRRRVDSLSPSRHLPIFVEKILGDGETLRRDWNIDGSTGYEFMNQISLLQHDPAGAEPLAEFWSRHSERPAHFIEEARLARQQILNGSLAGDFESVAQALLQVARDDVMTRDLTLGAIRRALQELIVHFPVYRTYINPLGRSAEDEVFFQKALEGARQTLSEADWPVLDCLADWLGGMPWRKRPRGSERKRLRHACVRFQQLTSPAAAKAVEDTALYRSAVLLSRNDVGYNTERFSAPAEEFHEACRERLEHFPDNLVTTATHDHKRGEDTRARLAVISERPDWYTACVEQWRILSPSLHSDPAAPSAGDELILYQALLGSWPLDLDLQDPKALAEYSERLWQWQRKALREAKLQSSWAAVNDAYEQATQMFLERLLLCDEGLPLRSAIAEAVQAIAPAGALNSLAQTLLRMTVPGVPDLYQGNEFWDFSLVDPDNRRPVDFNARREAVQGDSSPATLVRDWRDGRVKQALIARTLALRAEYPQLFRQGSYQPLPVLGEHAGRVLAFMREYQQQRAIVVVPVHAARLLENGALPHVAASDWGDTRVSLPFAAEDGKLKGLFASAAVTPQRELMVSAALGDFPVNVFIESPGPT0014125_414DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_TREHALOSE_METABOLISM,PGPT0014125-treY|glgY-K06044NANA
D1-35_03531354hypothetical proteinATGAGTACCGACGATAAACGCATTCGTGAATTTGCCTATCAGATCTGGGAGTCCGAGGGTAAGCCCGCCGGGCAGGAAAAACGTCACTGGGAAATGGCGCGCAAACTGGCTGAAGCCGAGGCACTGGCGCCTAGCAAGCCGCCGAAAGCAGCGAGCAAGACCGCCGCCAGCAAGACCGACGGCACCAAGCCGGCACCCGCCAAGAGCGCTGCGACCAAGACCGCTGCGAAGAACACCACACCCAAGGCCAAGCCTGCGGCCAAACCCTCCGCGGCGACTGCCGCAGTGGTCCCGCCCGCCGACAAGGCGGCCGCGAAGAAGCCACGAGCGGTGCGCAAACCACCGGCGGTCTGAMSTDDKRIREFAYQIWESEGKPAGQEKRHWEMARKLAEAEALAPSKPPKAASKTAASKTDGTKPAPAKSAATKTAAKNTTPKAKPAAKPSAATAAVVPPADKAAAKKPRAVRKPPAVNANANANANA
D1-35_035322160glgXCOG1523Glycogen operon protein GlgXATGACCCGTCCAAAAAACACCACGCCGCCGCCGGTTATCGAGGCCTCGCGGATTCGTGAAGGGCTGCCGTTTCCGCTTGGCGCGACCTGGGATGGCCTGGGGGTCAATTTTGCGTTGTTCTCAGCCAACGCCACCAAGGTCGAACTGTGTATTTTTGATGACACCGGCGAAGTCGAACTCGAACGCATCGAGTTGCCGGAGTACACCGACGAGATTTACCACGGCTATCTGCCCGATGCCCATCCGGGGCTGATCTACGGCTATCGTGTCTATGGCCCTTACGATCCGGAGAATGGCCACCGCTTCAACCCCAACAAGCTGCTCATCGATCCCTACGCGAAACAGCTGGTGGGAGAACTGAAATGGTCCGAGGCCTTGTTCGGCTACACCATCGGTCACCCCGACGGCGACCTCAGTTTCGATGAACGCGACAGCGCCCCTTTTGTGCCCAAGTGCAAGGTCATCGACCCGGCCCACACCTGGGGCAACGACCATCGCGTCAGCGTGCCGTGGGACAAGACCATCCTCTACGAGACCCATGTGCGCGGCATCACCATGCGCCATCCCGCGGTGCCTGAGAACCTGCGTGGCACCTTCGGCGGCCTGATGGTCGACGATGTACTCGAACATATCCGCAAGCTGGGCGTGTCTTCGGTCGAACTGATGCCCATCCATGCCTTTGTCAACGACCAGCACCTGCTGCACAAAGGCATGACCAATTACTGGGGCTACAACAGCATCGCCTTTTTCGCCCCTGACCCGCGTTACCTGGCCAGCGGCAAGATCGCCGAGTTCAAGGAAATGGTCGCGCACATGCACGAGGCCAATCTTGAAGTGATTCTCGACGTGGTCTACAACCACACCGCCGAGGGCAACGAACAGGGCCCGACCCTGTCCATGCGCGGGATCGACAATGCCTCGTACTACCGGCTCATGCCCGACGACAAGCGCTATTACATCAACGACTCGGGCACCGGCAACACCCTCGACCTGAGCCACCCGTGTGTGCTGCAGATGGTAACCGACTCCCTGCGCTACTGGGCCACGGAAATGCACGTCGATGGCTTCCGCTTCGACCTGGCGACGATCCTGGGTCGCTACCATGACGGTTTCGATGAACGCCACAGCTTCCTCGTCGCCTGTCGCCAGGATCCGGTGCTGCGCCAGGTGAAACTGATCGCCGAACCTTGGGATTGCGGGCCTGGAGGTTACCAGGTCGGAGGGTTCCCACCGGGCTGGGTCGAATGGAACGACAAGTTCCGCGATACCGTGCGCGCCTTCTGGAAAGGCGACGACGGCCAACTCGCCGACTTCGCCAGCCGCATGACCGCTTCGGGCGAAATGTTCAACCAGCGCGGTCGCCGCCCTTATGCCTCGGTGAACTTCGTCACCGCCCACGACGGTTTTACCTTGCACGACCTGGTGTCGTACAACGACAAACACAACGAAGCCAACGACGAAAACAACCAGGACGGCAGCAACAACAACCTGTCCTGGAACCATGGCGTCGAAGGTCCGACGGATGATCCCGAGATCAACGCGCTGCGCCACCGGCAGATGCGTAACTTCTTCGCAACGCTGTTGCTCGCCCAAGGCACGCCGATGATCGTCGCGGGCGACGAGTTCGCCCGCACCCAGCATGGCAACAACAATGCCTACTGCCAGGACAGCGAGATCGGCTGGGTCAACTGGGACCTGAGCGAGGATGGCGCGGCGCTGCTCAAGTTCGTCAAGCGTCTGATCAAGCTGCGTCTGACTTATCCGATCCTGCGGCGCGGACGCTTCCTGGTGGGCAATTACAACGAGGACATCGGCGTCAAGGATGTCACCTGGTTGGCCCCGGATGGCAACGAGATGACCATTGAACACTGGCAGGACGGCCAGAACCGCTGCCTGGGCATGCTGATGGACGGGCGCGCCCAGGAAACCGGTATCCGCCGCAAGGGGGCCGACGCAACCTTGTTGCTGGTCGTCAACGCACACCATGACATCGTCAACTTCCGCTTGCCGGAAGTGCCGGAAGGCAGTTTCTGGACGTGCATGGTGGACACCAACCAGCCGACGGTGCGCGGTCAGGAGCGCTTCGATTTTGATGCCGAATACTCCGTGACCGGCCGCTCGTTGCTGTTGTTCGAGCTGCAACGCGACGAAGAGGAATAAMTRPKNTTPPPVIEASRIREGLPFPLGATWDGLGVNFALFSANATKVELCIFDDTGEVELERIELPEYTDEIYHGYLPDAHPGLIYGYRVYGPYDPENGHRFNPNKLLIDPYAKQLVGELKWSEALFGYTIGHPDGDLSFDERDSAPFVPKCKVIDPAHTWGNDHRVSVPWDKTILYETHVRGITMRHPAVPENLRGTFGGLMVDDVLEHIRKLGVSSVELMPIHAFVNDQHLLHKGMTNYWGYNSIAFFAPDPRYLASGKIAEFKEMVAHMHEANLEVILDVVYNHTAEGNEQGPTLSMRGIDNASYYRLMPDDKRYYINDSGTGNTLDLSHPCVLQMVTDSLRYWATEMHVDGFRFDLATILGRYHDGFDERHSFLVACRQDPVLRQVKLIAEPWDCGPGGYQVGGFPPGWVEWNDKFRDTVRAFWKGDDGQLADFASRMTASGEMFNQRGRRPYASVNFVTAHDGFTLHDLVSYNDKHNEANDENNQDGSNNNLSWNHGVEGPTDDPEINALRHRQMRNFFATLLLAQGTPMIVAGDEFARTQHGNNNAYCQDSEIGWVNWDLSEDGAALLKFVKRLIKLRLTYPILRRGRFLVGNYNEDIGVKDVTWLAPDGNEMTIEHWQDGQNRCLGMLMDGRAQETGIRRKGADATLLLVVNAHHDIVNFRLPEVPEGSFWTCMVDTNQPTVRGQERFDFDAEYSVTGRSLLLFELQRDEEEPGPT0019225_1349DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-ISOAMYLASE,PGPT0019225-ISA|treX-K01214NANA
D1-35_03533765hypothetical proteinATGAAACCCGCCTCCCGCTTGCAAGGCCGGCAGCATCCCCAGATATGGAACAGCGCGCCGCAACTGGCCGACATTCCCATCATCAGCACCCAGACACTCATATCCGCCGGCTCCCGCGCGGTCATCCTTGCCCCGCACCCGGGCGACGAGGTCGGTGCCTGCGGGGGACTGCTCCAGTTGTTGAGCAACCTGGACCATCCCATGCTACTGATCTCCGTCACCGACGGCAGCCTCGGCCACCCGGGTTCGCCATTATGGAACGATGAGCGGCTGCGCACGTTCCGCCCCCACCCCCAGGAAAGCGTCGACGCCCTGCATCGCCTGGGTGTGCCGCCCAACGGCCTGCAATGGGTGCGCGGCGGCTTCCCGGAAAAGAGCCTGGCCGAGCACGAGGAGCCACTGGCCGCGTTCATCGGTCATCATCTTCGCCCCGGTGACGTGGTATTCAGCACCTGGCGCCAGGACGGCGACAGCGATCACGACACTGTCGGACGCGCAGGAGCCCTGGCAGCCGAAGTTATCGGTGCGGTGTTCAATGAACTGCCGGTATGGGCGTGGCATTGGCCCCTCCGCGAACAGAAGAGGATCCCCTGGCATCGGGCTCGCAAACTGCGTCTGGATGTCTGGACCACCGCCCGCAAGCGCCACGCCATGCATGCTTACTCCAGCCAGCTCAACGGTGAACCGGCCAGCGGTATCGCACCGCTGGTACCGCGGGTGATTCTCGACCGCATGGGCATGCCGTACGAAATCGTTTTCATCTGAMKPASRLQGRQHPQIWNSAPQLADIPIISTQTLISAGSRAVILAPHPGDEVGACGGLLQLLSNLDHPMLLISVTDGSLGHPGSPLWNDERLRTFRPHPQESVDALHRLGVPPNGLQWVRGGFPEKSLAEHEEPLAAFIGHHLRPGDVVFSTWRQDGDSDHDTVGRAGALAAEVIGAVFNELPVWAWHWPLREQKRIPWHRARKLRLDVWTTARKRHAMHAYSSQLNGEPASGIAPLVPRVILDRMGMPYEIVFINANANANANA
D1-35_03534291hypothetical proteinTTGGGGTTCCGCCCTTACGGCGGGTCACTTTTGGAAAGAGCGCCAAAAGTAACCAAAAACGCTCTGCCCCACCACTCGGCACCTCGCCTGGGCTCGGTGTGCCCTCACTCCGGCATTGCTCCGTGGGCCCGCCGCGAAGGGCCGTCCCTGGCCCAGCGCGGCTATCCCGGCATCCATGCCGGGATGCCCACTGCGCAATGCCTGCGTTCGGCCAGCGTGGTTAACGGGGCGTCCCAGATCAAGGTCAAGATCAAGATCAAGATCAAGATCAAGATCAAGATCAAGGTCTAAMGFRPYGGSLLERAPKVTKNALPHHSAPRLGSVCPHSGIAPWARREGPSLAQRGYPGIHAGMPTAQCLRSASVVNGASQIKVKIKIKIKIKIKIKVNANANANANA
D1-35_03536801hypothetical proteinGTGACTGGCGATTCCAACTGGCAGGCCGAGCAACCCGCGGCGGGGGATGCATCTGCGGCGGTTCATCGGCTGCGGGTCCTGACGGTCAATACGCATAAGGGGTTTACCGCCCTCAACCGCCGCTTCATCCTGCCCGAATTGCGCGAAGCGGTACGCAGCACGGGGGCCGACCTGGTATTTCTCCAGGAAGTGCTGGGTGAACACGACCGCCACGCGTCACGCTATGACAATTGGCCCCAGACCTCGCAGTACGAGTTCCTCGCCGACAGCATGTGGAGCGATTTCGCCTATGGCCGGAACGCGGTCTACCCCGACGGCCACCATGGCAATGCCCTGCTCTCGAAATATCCAATCCGCCAGTTCCGCAATCTCGACGTGTCCATCACCGGCCCGGAGCGGCGCGGGTTGCTGCACTGTGTACTGGACGTGCCAGGGCACGCCGAAGTCCATGGGATCTGCGTTCACTTGAGCCTGCTCGAAAGCCATCGCCAACTGCAGCTTCAATTGCTCTGCAAGCTACTCGATTCGCTGCCCGAAAACGCGCCCGTCATCATTGCGGGGGATTTCAATGACTGGCAGCTGCGCGGCAACACCACCCTCGCCGGCCGCCGCTACCTGCACGAAGCCTTCGAACACCACCATGGCCGCCCAGCCAGGACCTATCCGGCGCGTTTTCCCCTGCTGCGCCTGGACCGCATCTATCTGCGCAACGCCACCAGCCATGCTCCGCAGATTCTCGGCAACCGACCTTGGACACACCTGAGCGACCATTTGCCGCTGTCGGTGGAGGTGCACCTGTAGMTGDSNWQAEQPAAGDASAAVHRLRVLTVNTHKGFTALNRRFILPELREAVRSTGADLVFLQEVLGEHDRHASRYDNWPQTSQYEFLADSMWSDFAYGRNAVYPDGHHGNALLSKYPIRQFRNLDVSITGPERRGLLHCVLDVPGHAEVHGICVHLSLLESHRQLQLQLLCKLLDSLPENAPVIIAGDFNDWQLRGNTTLAGRRYLHEAFEHHHGRPARTYPARFPLLRLDRIYLRNATSHAPQILGNRPWTHLSDHLPLSVEVHLNANANANANA
D1-35_035372424hypothetical proteinATGAACTTGCGCAATCATGGCGTCAACCGGCTGTTCAATGCCTTGTGGCTGACTACACCGCTGTTGCTGGACGCATCGCCCGCCATGGCGGCATGCACCCTGACGCCGACGGCAGGCAATGACAGCTATGTCTGCGACAGCGGCACCAGCCCTGGATTGAGCGACCTGTCGGGAGATAACCGCCTGACGATGCCGGCCCATGGCAGCGGTGTGATCCAGGGAGACGTCACCTTCGGCGCCGGAGCCGATTACGTCGAGATCAATCCCGACGGCATCGTGGCAGGCGACGTACGACAAGGCTCGGGCACCGATGATTTTGTCATGCGCGGCGGCAGCATCCAGTCACTGGCCCAGGGCGATGGGCTCGATACGTTCCTGATGACCGGCGGCACCATCGTCGGCGCGTTCGAAGACGGAGACCAGGCGACAATGACCGGCGGCACCATCGGCCGGGTCGACATGAAACTCGACGATAATATTTTCGACATGTCAGGTGGGCAGATTCTTGGCAATCTGGTGACCGGCTTTGGTCGGGATACCATTATCGTTAGCGCGGGACGCATCGGCGGAAACGTCAGTGTCAGTGGCGGTGACGACCGTATTGCCGTGAGCGGGGGCGAGATCGTCGGCGAGGTTCGAGCCAGTTTCGGTAATGACCAGTTGCAGTGGAGCGGCGGCCTCATCCGTTCCGCCATCCTGATGGGCGAAGGCAACGACACGGCGCTGTTGAGCAACCTGGATAAAACCCTGCTCGCCACCACACCCAGCCTGGATGGGGGGTTGGGCCAGGACACACTGGCTTTTGTGGCCAGCACGACCGGCGATGGCGCCCGTTACCTCAACTGGGAATCGGTCAGCCTCACCCAAGGCTCCCGCCTGGACTTGGGCGACACGCTGGTCTTGGGCGACGGTATCACCGGCACCGGCACGCTGAACATCGACGCAAGCAGCCTGTTGACGGCCAGCCAGGGCAGCATTCGCCCGTTCACTGCTGGCCAGATGGCGACGCTTGAAAATGCCGGAACCATCGACCTCGGCGCAGGCAACACCCACACCAGCGACACCCTTACCGTACAAGGCAACTACGTGGGCAATGGCGGCCAGTTGCGCCTGCAAACGCTGCTCGGTGCAGACGACTCGCCGAGCGACAAGCTGATAGTCAACGCCGGCACGCTCGGCGGCAGCACGGCCATCACCATCACGAACATCGGCGGTGCAGGTGCCTTGACTGCCCGCGACGGCATCGAGCTGGTCCAGGCTCAGGGCGGCGCCGTCAGCGACAGCGGGGCTTTTTCACTGGCGCGTTCGGTGTCGGCCGGCGCGTTTGATTACCGTTTGTTCAAGGGCGGCGTGACCGGTAATGAAAACAGCTGGTATCTGCGCTCGACCGTGGTCGCCGGTCCGATCGCCGTGGCCAGCCCCACGCTGCCGGCCTTGCCCGTCGCCGTGCCGGGCGCAGCGCCCATTGCGCTGTACCGTCCGGAAGTACCCGTCTGGTCGGCGTTGCCTCCCGTCGCCGCCCAACTGACCCTGATGGCCCTGGGCACGTTCCATGATCGCCAGGGCGACCAACGCCTGCTGACGGAAACCGGCGCCTTCGGGGCCGGTTGGGGCCGAGTCTACGGCAAGGACCTCGATCAGACTTGGGCCGGCACGGTGACACCGAGGTTCGACGGCTCCATCAAGGGCTTCCAGGTGGGCAACGACCTTTACAGCGCGCCGGTCTTCGACGGCCAGACCCAGCGCATCGGTTTTTTCGTTGGCCATAGCGAATTGAACGGCAACGTCGACGGCTACAACCTGGGGTTCGAAGGGCGGCGCGCCGGCAAGGTTGAACTCGACGGCGACAGTTATGGCTTGTACTGGACGCTGACCGCTCCCTCCGGTGGTTACATCGACACGGTGGTCATGGGCACCCGGCTGAATGGGGACAACCGCTCCGAGCGCGGCCTCAAGCTGGATAATCGCGGGCATGCGCTGACCCTTTCGGCGGAAGCTGGCTACCCATTTGCCGTGGGCAGTGGCTGGGTCGTCGAGCCACAGGCACAGATCATCCATCAGAAGATCTCCCTGGACACCCAGGATGATGGGATTTCCAGAGTCGAATTCGATTCCGACAGCGCCTGGACCGGCCGGCTCGGTGCCCGTCTCAAGGGTCGCTACCTGATCAGCGACACGCCGGTGGAGCCGTACCTGCGGGCCAATGTCTGGCACACGTTCTCTGGCACCGACACGGTGACATTCGACGACGCCCAACGGATCGAGACCCAACAACGCAGCTCAACCGCCGACCTGGGCGCGGGCGTCATCGTCAGCCTTGCGCCTGCGGTCAGCGCCTATGCCGGAGTGGACTACGGCAATAACCTCGACAGCAACCAGCAACGCAGCGTGGCCGGAAATGTCGGTGTGCGAATCAGTTGGTGAMNLRNHGVNRLFNALWLTTPLLLDASPAMAACTLTPTAGNDSYVCDSGTSPGLSDLSGDNRLTMPAHGSGVIQGDVTFGAGADYVEINPDGIVAGDVRQGSGTDDFVMRGGSIQSLAQGDGLDTFLMTGGTIVGAFEDGDQATMTGGTIGRVDMKLDDNIFDMSGGQILGNLVTGFGRDTIIVSAGRIGGNVSVSGGDDRIAVSGGEIVGEVRASFGNDQLQWSGGLIRSAILMGEGNDTALLSNLDKTLLATTPSLDGGLGQDTLAFVASTTGDGARYLNWESVSLTQGSRLDLGDTLVLGDGITGTGTLNIDASSLLTASQGSIRPFTAGQMATLENAGTIDLGAGNTHTSDTLTVQGNYVGNGGQLRLQTLLGADDSPSDKLIVNAGTLGGSTAITITNIGGAGALTARDGIELVQAQGGAVSDSGAFSLARSVSAGAFDYRLFKGGVTGNENSWYLRSTVVAGPIAVASPTLPALPVAVPGAAPIALYRPEVPVWSALPPVAAQLTLMALGTFHDRQGDQRLLTETGAFGAGWGRVYGKDLDQTWAGTVTPRFDGSIKGFQVGNDLYSAPVFDGQTQRIGFFVGHSELNGNVDGYNLGFEGRRAGKVELDGDSYGLYWTLTAPSGGYIDTVVMGTRLNGDNRSERGLKLDNRGHALTLSAEAGYPFAVGSGWVVEPQAQIIHQKISLDTQDDGISRVEFDSDSAWTGRLGARLKGRYLISDTPVEPYLRANVWHTFSGTDTVTFDDAQRIETQQRSSTADLGAGVIVSLAPAVSAYAGVDYGNNLDSNQQRSVAGNVGVRISWPGPT0030335_601DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_V_SECRETION_SYSTEMSCE-T5a_AUTOTRANSPORTER_SECRETION,PGPT0030335-aidA_I|misL-K12678NANA
D1-35_03538903hypothetical proteinATGAAAACGTCCCAGCGCCCCCAAGCCCTTCAAGCTACCCTCTGCACCGTCTCCACTTCGTTATTGCTGTGCTCCTCCATGGAGCTCCAGGCCGAGCCCGCCGGGCGGCCGGCTTCCCTTTGGTATGACCGAATGCCAGCCGACGGCCAGACGGACAACGACGCCGTAACGGGCAGGAGCCCCGCCCTGCTTACCCTGCGAAACGACAGCGGTCACACCCAACGGATGGGTTTGATCAGCGCTTTTCACCAGATCACTTCCAACCATGGCGGACTGCTGGTTACACCGGCCATGAGCGATCCCGGCAAGGATGCGCTGAACCTGCAGGGCCCCAGCCTCGGCGCCTACTGGAGCCTGACCGGTCCGGCAGGCTGGCACCTGGATTTGAGCGCGAGCGGCGGACGCGTCAATGGTTACAGCCTGACCGAACAAGGCCAGCGCCAGGCCACCGAGGGCAACGCCGTCACGCTGTCGGTCGAGGGCGGATTTCCCATCGGCATCAGCGATAACTGGATCGTCGAACCCCAGGCCCAACTGATCAACCAGCGCATCACACTCGACACACCGAATGCCGGCAATGGCAACAACAACAAACTCAACAGCTGGAGCGGCCGCGTCGGCGCCCAACTCAGAGGTACGTACCAGGTCAACGGCCTGGGCGTGGAGCCTTACGTGCGCACGAACCTGTGGCACACGGTCCTGAGCGCCGACACCCTGAGCCTGGACAAGGTCGAAAAAATCAGCAGCAGCCGCAAGGCTTCTACCGTTGAGGTGGGCCTGGGGCTGGTGGCCCGGGTTACGCCGGTGGTAAGCCTTTATGTCAGCGCTGACTACAGCAGCGACGTCGACGACAACGACCTCAATGGCGTCATTGCCAGCCTCGGCGTGCGGATGCGCTGGTAAMKTSQRPQALQATLCTVSTSLLLCSSMELQAEPAGRPASLWYDRMPADGQTDNDAVTGRSPALLTLRNDSGHTQRMGLISAFHQITSNHGGLLVTPAMSDPGKDALNLQGPSLGAYWSLTGPAGWHLDLSASGGRVNGYSLTEQGQRQATEGNAVTLSVEGGFPIGISDNWIVEPQAQLINQRITLDTPNAGNGNNNKLNSWSGRVGAQLRGTYQVNGLGVEPYVRTNLWHTVLSADTLSLDKVEKISSSRKASTVEVGLGLVARVTPVVSLYVSADYSSDVDDNDLNGVIASLGVRMRWNANANANANA
D1-35_035391626gapNCOG1012NADP-dependent glyceraldehyde-3-phosphate dehydrogenaseATGACCACAGCCAACTTCCTCGCCAATCTGTTCCCCGGTGCCGCCGACATCCCGCCAGCCTACCGCCTCGAAGGCCAGGTGGAGCAGCGCGAATACCTGGTCGATGGCGTCCTGAAGACCTGGCAGGGTCCGCTCGCCACGGTGCGCAGCCCGGTATACCTGGCCGGCGCCGATGGCGATGAACAGGTCATTCTCGGCAGCACGCCACTGCTGGATGCCGAGACCGCCCTCACGGCCCTTGACGCTGCCGTCCGGGCCTATGATCGCGGCCAGGGCCAATGGCCAACCATGCGCGTCGCTGAACGCATCCGTCATGTCGAGACTTTTTTGGCGCGGATGCGCGAGCAGCGTGAGGCGGTGGTCAAGCTGCTGATGTGGGAGATCGGCAAGAACCTCAAGGATTCCCAGAAGGAATTCGACCGCACCTGCGACTACATCGTCGATACCATCAATGCCCTCAAGGAACTGGACCGTCGATCCAGCCGCTTCGAGCTGGAACAGGACACCCTCGGACAGATCCGTCGCGTGCCATTGGGCGTGGCCCTGTGCATGGGCCCTTATAACTATCCGCTGAACGAAACCTTCACCACGCTGATTCCGGCGCTGATCATGGGCAACACGGTGGTGTTCAAGCCGGCCAAGCTCGGCGTACTGCTGGTACGGCCGCTGCTGGAAGCCTTTCGCGACAGCTTCCCCGCCGGCGTGATCAACGTGATCTACGGCAGCGGCCGGGAAACCGTCAGCGCCCTGATGGCCAGCGGCAAGATCGACATATTCGCCTTCATCGGCACCAACAAGGCCGCCAGCGACCTGAAGAAACTCCATCCGCGCCCGCATCGCCTGCGTGCCGCGCTGGGGCTGGACGCGAAGAATCCTGGCCTGGTGCTGCCCGACGTCGACCTGGACAATGCCGTCAGCGAGGCGCTGACCGGTTCGCTGTCTTTCAACGGCCAACGCTGCACCGCGTTGAAGATCCTCTTCGTCCACGAAGACATCGCTCCGGCGTTCATCGAGAAATTCAACGCAAAGCTTGCTGCGCTGAAACCCGGCATGCCATGGGAAGACGGCGTCGCACTGACGCCATTGCCCGAAGCGGGCAAGGTCGATTACCTGCATTCGCTGGTAGCCGATGCGATCGCCAAGGGTGCCGGCGTCATGAACCAGCACGGCGGCGAATCCCGGGCTTCGTTTTTCTACCCGGCGGTACTCTATCCAGTAAATACCGCCATGCGGGTCTATCACGAAGAACAGTTCGGCCCGGTCGTGCCCATCGTGCCGTACCGCGACGTCAATACCGTGATCGATTACGTCCTCGAGTCCGACTTTGGCCAGCAACTGAGCATTTTCGGCACCCACCCGGCCGAAGTCGGCAGGCTGGTGGACACCTTCGCCAATCAGGTCGGACGCATCAATATCAACGCCCAATGCCAGCGTGGCCCGGACACCTTCCCGTTCAATGGCCGGAAAAACTCCGCCGAGGGCACATTGTCGGTTCACGACGCACTGCGGACCTTTTCGATCCGCACACTGGTTGCGACCAAGTTCCAGGACAGCAACAAGGCGCTGATCAGCGACATCATTCGTGAGCGGGATTCGAACTTCCTGACCACCGATTACATCTTCTGAMTTANFLANLFPGAADIPPAYRLEGQVEQREYLVDGVLKTWQGPLATVRSPVYLAGADGDEQVILGSTPLLDAETALTALDAAVRAYDRGQGQWPTMRVAERIRHVETFLARMREQREAVVKLLMWEIGKNLKDSQKEFDRTCDYIVDTINALKELDRRSSRFELEQDTLGQIRRVPLGVALCMGPYNYPLNETFTTLIPALIMGNTVVFKPAKLGVLLVRPLLEAFRDSFPAGVINVIYGSGRETVSALMASGKIDIFAFIGTNKAASDLKKLHPRPHRLRAALGLDAKNPGLVLPDVDLDNAVSEALTGSLSFNGQRCTALKILFVHEDIAPAFIEKFNAKLAALKPGMPWEDGVALTPLPEAGKVDYLHSLVADAIAKGAGVMNQHGGESRASFFYPAVLYPVNTAMRVYHEEQFGPVVPIVPYRDVNTVIDYVLESDFGQQLSIFGTHPAEVGRLVDTFANQVGRININAQCQRGPDTFPFNGRKNSAEGTLSVHDALRTFSIRTLVATKFQDSNKALISDIIRERDSNFLTTDYIFPGPT0018005_136DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018005-gapN-K00131NANA
D1-35_03540894hypothetical proteinATGGACAAGACCCTACGCCGCGGTTCGCTCGAAATGACCGCCGCCATGCTGATTTCCGGAACCATCGGCTGGTTCGTGCTGGTGTCCGGCCTGCCGGTGCTGGATGTGGTGTTTTGGCGCTGCGTGTTTGGCGCCGGCACGTTGTTGCTGATCTGCGCCGGTTTCGGTTTCCTGCGCCGGGATATCCTGACTCGCACGACCTTCCTGCTGGCGGTGCTCAGTGGTGTTGCGATCGTCGGTAACTGGGTGTTGTTGTTCGCTTCATACTCCCGCGCTTCGATCGCCATCGGCACCGCGGTGTACAACGTCCAGCCCTTCATGCTGGTGGGGCTGGCCGCGCTGTTCCTGGGAGAGAAGATCACTGCGCAGAAGCTGTTCTGGCTGGCGGTGTCGTTTCTCGGGATGCTGGCCATCGTCAGCGCCCACGGCGAGCAGGGGCAGGGAGGCGAGGATTATCTGGTGGGTATCGCCCTGGCGCTGGGGGCGGCATTCCTGTACGCCGTTGCGGCGTTGATCATCAAGCGCCTGACCGGCACGCCGCCGCACTTGATCGCCTTGATCCAGGTCGCCACCGGCATCCTCTTGTTGGCACCATGGGCGAATTTCTCGGCCTTGCCGCAGCAACCCGAGGCCTGGGCCAGCCTGCTGACGCTCGGCATGATTCATACCGGCGTGATGTACGTACTGCTGTACAGCGCGATCCAACGCTTGCCGACTGCCGTGACGGGCGCTCTATCCTTTATTTACCCGATCGCGGCGATCCTGGTTGACTGGTTTGCCTTCGGCCATCGCCTCGAGCCGCTGCAATGGCTGGGTGTGGCGGCGATCCTGCTGGCGGCTGCAGGCATGCAACAGGGCTGGGGCATCAAGTCGCGCCGCCCAGCCCTGAGCTGAMDKTLRRGSLEMTAAMLISGTIGWFVLVSGLPVLDVVFWRCVFGAGTLLLICAGFGFLRRDILTRTTFLLAVLSGVAIVGNWVLLFASYSRASIAIGTAVYNVQPFMLVGLAALFLGEKITAQKLFWLAVSFLGMLAIVSAHGEQGQGGEDYLVGIALALGAAFLYAVAALIIKRLTGTPPHLIALIQVATGILLLAPWANFSALPQQPEAWASLLTLGMIHTGVMYVLLYSAIQRLPTAVTGALSFIYPIAAILVDWFAFGHRLEPLQWLGVAAILLAAAGMQQGWGIKSRRPALSNANANANANA
D1-35_03541438lrpCCOG1522HTH-type transcriptional regulator LrpCATGACTGACGACATCGACCAGATCCTCATCAGCGCCTTGATGGAAGACTCACGACGTTCCCTGAAGGCCCTGGCGAGCCTGAGCGGCCTTTCATCCCCCAGCGTTGCCGAACGCCTGCGCCGGCTGGAGGAACGTGGCGTGCTCAAGGGCTACACCGTCGAGGTCGATCCGAAGTGCTTTGGTTATCAACTTCAGGCCATCGTGCGCATCCGTCCGTTACCGGGGCAGTTGCAGGAAGTGGAGCGGCAGATCCAGGCCATCGGCGAATTCACCGAATGTGACAAGGTGACTGGGGAAGACTGTTTCATTGCGCGACTGCACGTGCGCTCGATGGAGCAGTTGGATGTGCTGCTGGACAAGTTGAATGTGCTTGCCGAAACCAATACGGCGATCGTCAAGAAGACACCGGTCAAGCGGCGTTTGCCGCCGATGGAGTGAMTDDIDQILISALMEDSRRSLKALASLSGLSSPSVAERLRRLEERGVLKGYTVEVDPKCFGYQLQAIVRIRPLPGQLQEVERQIQAIGEFTECDKVTGEDCFIARLHVRSMEQLDVLLDKLNVLAETNTAIVKKTPVKRRLPPMENANANANANA
D1-35_03542672yccACOG0670Modulator of FtsH protease YccAATGCGCGAACAGGATTACGCAGTGAACAACAGCGTGCAGGCTGAGCAGCTAGAGGTTAGCCGCGTCCTGCGCAACACTTATGGCCTGCTGGCACTCACGCTCGCTTTCAGCGGTGTGATGGCCTTCGTCGCACAACAGATGCGTGTCGGCTACCCGAACATCTTTGTCGTGCTGATCGGTTTCTACGGCCTTTTCTTCCTCACCAACAAGCTCCGCGATTCGGCCTGGGGCCTGGTTTCTGCCTTCGCCCTGACCGGTTTCATGGGCTTTTTGCTCGGCCCGATCCTCAACCGCTACCTGGGCATGCAGGGCGGCGCCGAAGTGGTCAGCTCGGCTTTCGCCATGACGGCGTTGGTGTTCGGTGGCCTGTCGGCCTACGTGCTGATCTCGCGTAAGGACATGAGCTTCCTGAGCGGTTTCATCACCGCCGGTTTCTTCGTGTTGCTGGGTGCGGTAGTGGCCAGCTTCTTCTTCCAGATCAGCGGCCTGCAACTGGCGATCAGCGCCGGCTTCGTGCTGTTCTCGTCGGTCTGCATCCTCTACCAGACCAGCGCCATCATCCATGGCGGCGAGCGCAACTACATCATGGCGACCGTCAGCCTGTATGTATCGATCTACAACCTGTTCGTCAGCCTGCTGCAACTGTTCGGGTTGATGAGCCGCGACGACTGAMREQDYAVNNSVQAEQLEVSRVLRNTYGLLALTLAFSGVMAFVAQQMRVGYPNIFVVLIGFYGLFFLTNKLRDSAWGLVSAFALTGFMGFLLGPILNRYLGMQGGAEVVSSAFAMTALVFGGLSAYVLISRKDMSFLSGFITAGFFVLLGAVVASFFFQISGLQLAISAGFVLFSSVCILYQTSAIIHGGERNYIMATVSLYVSIYNLFVSLLQLFGLMSRDDNANANANANA
D1-35_03544891hypothetical proteinATGCCATCCCCTACCCCACTCAAGGAAAGTAAAGTGACCAGCAAAACCATCGGTTCGATCGTCGCGGCAATTATCGGCGTGGTCCTGTTATGCGTGTTCTTTGGCAGCTGGTACACGGTGGATGAAACCGAGCGTGGCGTGCTTTTGCGCAACGGCGCCCTGGTTGGGGTGGTTGAGCCGGGCCTGTCGTTCAAGACGCCTTTCATCGAGTCGGTCCGCCTGATCAGCACACAGAGCCAGGTGACGTCCTATGACGACCTGCAGGCGTACAGCAAGGACCAGCAATCAGCCGAGCTCAAGGTGTCCGTGTCCTGGCATATCGCGCCTTCCGATGTAGCGAAGGTCTATACCCAGTTCAAGGACCTGGAAGGCATTCGCGACCGGATGATCAGCCGCCAGGTGCCGACTCAGGTGGAAAACGTGTTCGGCAAGTTCAACGCCGTCGCCGCCGTGCAGAACCGCGTGCAACTGGTCAATGATATTTCGGCGGCGATCAAGGCAACTATCACCGGGCCGGTGATCATCGACAGCGTCCAGGTTGAAAACATCGATTTCAGCGACGCCTACGAAAAAGCCATCGAAGCGCGCATGGCCGCTGAAGTGCAGGTCAAGACTCGTGAGCAGCAGCTCGCCACCGAGCAGGTGCAGGCTCAGATTCGGGTGACCCAGGCCCAGGCGGAAGCCGATTCGCAAGTTGCCCAGGCCAAGGCCGACGCGCTGGCCACCGAGCTGCGCGGCAAGGCTGAAGCCGAGGCGATCAAGGCGCGCGCCCAGGCGCTGGCCAGCAACCAGAACCTGGTTGAGCTGACCAAGGCCGAGCGTTGGAACGGCGAGCTGCCCACCACCATGCTGCCCAACACCGCGCTGCCCTTCATCGATCTCAACAAGTAAMPSPTPLKESKVTSKTIGSIVAAIIGVVLLCVFFGSWYTVDETERGVLLRNGALVGVVEPGLSFKTPFIESVRLISTQSQVTSYDDLQAYSKDQQSAELKVSVSWHIAPSDVAKVYTQFKDLEGIRDRMISRQVPTQVENVFGKFNAVAAVQNRVQLVNDISAAIKATITGPVIIDSVQVENIDFSDAYEKAIEARMAAEVQVKTREQQLATEQVQAQIRVTQAQAEADSQVAQAKADALATELRGKAEAEAIKARAQALASNQNLVELTKAERWNGELPTTMLPNTALPFIDLNKNANANANANA
D1-35_035451827sasA_15Adaptive-response sensory-kinase SasAGTGTACCCAGGCCAAAGCAGCTCGACGAAACACCCCGTCTCCCTTATCAAGAAATACAAATGGCCCGCCCTGTTGGCCACTGCGCTGGTTGTGTTTTCAGCCCTGATATTCTTCCTGATCAAGTCCTACACGGGCGACACCGCGACCTTCTTCGAGTCACGCGACTTCATCCGTCAGCTCAAACAAGCCGACGCCAACTGGAACGTGAAGATTCTCAGGAAAAAAATAGGCGTCAGCAACAACCTGTCACTCGCTCCGCCAGCCGACGCGCATAGCCGATGGGAGCAATTGGAGCAACTGAACAGTTCCGGTCCACTGGCTGCACTTTGGGCGTCGAGACGCAACGGTTACATGGACGCGGTCAGGAACAAGACCCTGTTGGTGGAACAGTTCGAGCAGCACAATGCCAATCTGCGCGCCTCCCTGGATGCACTTCCGACGGTAGAGGATGAAATTCAGACGCTGCTGCAACAGATGAAGGATGACGGAGAAATCGCTCGGCTGACGGCAGCCTCCAGCGTTCTCGACCTGGCGCTGACCACACTGGAATACGCGCTTTATGTCACCTCGGACAAAGCCAGCGAACTGCAAGAACAGCTAAGCGAACTCGAACATCGGATCGACCAGTTGCCCTCGTCCTATCGGCCGGCTTTCACCTCACTGACCCGGCACGTCAAGACCGTCATCCAGGAACAGCCAGTAGTCAACGATCTGCTGGATCGCATCAGCGTCATCCCCGTCGCCCAGGAACTGGACAGCATCAACGAGCTGCTCAACGAAACGCAGCGCAGGACGGCCGCGATCGATCGCAAATATCATATGTACCTGGCCGTCTGCGCCAGTCTGATGGCGCTCTTGATGATCTACCTCGCCGTACGGCTGGTGCGCAGTTCTTCGCTCATCAACCAGATCAACCATGAGCTGCAAACGTCCAACGACAAGCTGGAGCAACGCGTGGAGGAGCGTACGCGCGAGTTGAAGGAGGCCGAGCGTGAGCTGGTGGACGCCGCGCGCATGGCAGGCATGGCCGAGATCGCCACGAACGTGTTACACAATGTTGGCAATGTCCTCAACAGCGTCAACATCTCAGCGGAGCTGGTGACGCGCAAGTTGAAGAACAGCAAGACGCAAGGGCTGGGCAAAGCGGTAAGGATGATGAATGAACATGCCACGGACCTGGGTCAGTTCATCACCGAGGATGAAAAAGGCAAGTTGTTGCCCCGGTATTTCAATGAACTGGTGGATTCCATCGCCACCGAACAGGGGTTGCTGATTGAAGAACTCGCGCAACTGACCAAAAGCATCGACCACATCAAGGAGATCGTCACGACTCAGCAGACCTATGCCGGGGCTGCGCGGCTGATCGAGCCGCTGAATGTGGCCGACCTGTTCGAAGATGCATTGCGCATGAATTCGGGGGCGCTCAGCCGACACCAGGTCACCGTGATCAAGGATTATCAGGACATTCCGATGATCATGGGCGACAAGCATCGCCTGCTGCTGATCCTGATCAATCTGATCAGCAATGCCAAGGCCGCCATGTCCAACGTCGAGCCGCCAAGGGAAATGACCCTGGGGGTCCGCATCGTCGATCAGACAACGCTCTGCGTCAGCGTCAGGGATCGTGGCGAAGGGATCGCGCCTGAAAATCAGGCGAGGATCTTCAACCACGGATTCACCACCCGCAAGGATGGCCACGGTTTTGGCCTGCACAGCTGTGCCCTGGCGGCGGTGGAGATGAACGGTCGCCTGCAGGTTCAAAGCGACGGACCGGGGCAAGGCGCCCTGTTCACTTTGGAAATCCCGTTGGAACTGGCATTTTCCTGAMYPGQSSSTKHPVSLIKKYKWPALLATALVVFSALIFFLIKSYTGDTATFFESRDFIRQLKQADANWNVKILRKKIGVSNNLSLAPPADAHSRWEQLEQLNSSGPLAALWASRRNGYMDAVRNKTLLVEQFEQHNANLRASLDALPTVEDEIQTLLQQMKDDGEIARLTAASSVLDLALTTLEYALYVTSDKASELQEQLSELEHRIDQLPSSYRPAFTSLTRHVKTVIQEQPVVNDLLDRISVIPVAQELDSINELLNETQRRTAAIDRKYHMYLAVCASLMALLMIYLAVRLVRSSSLINQINHELQTSNDKLEQRVEERTRELKEAERELVDAARMAGMAEIATNVLHNVGNVLNSVNISAELVTRKLKNSKTQGLGKAVRMMNEHATDLGQFITEDEKGKLLPRYFNELVDSIATEQGLLIEELAQLTKSIDHIKEIVTTQQTYAGAARLIEPLNVADLFEDALRMNSGALSRHQVTVIKDYQDIPMIMGDKHRLLLILINLISNAKAAMSNVEPPREMTLGVRIVDQTTLCVSVRDRGEGIAPENQARIFNHGFTTRKDGHGFGLHSCALAAVEMNGRLQVQSDGPGQGALFTLEIPLELAFSNANANANANA
D1-35_03546192hypothetical proteinATGAGTACTGCGATGCTGACCAAAATGCACATCAACGGCTATGACGTGCTCAGCGTGAACAGCGGGCCCTGGAGGGTCTGCACCCAGGCGGACCGGTTGGGTTCCTTTGCTTCGCGCGAAGAGGCGTTGGCCTATGCCGCCGCGTTGCCCGCCCGGAAACGCCGCAGCGCTGCGTCCGCGAACGTCAGGTAAMSTAMLTKMHINGYDVLSVNSGPWRVCTQADRLGSFASREEALAYAAALPARKRRSAASANVRNANANANANA
D1-35_03547900hypothetical proteinATGAATAAGATCGCCAAGGCACTGCTTGTGGTGCTGCTTGCCAACGGCCTGTCGGGATGTATCGGCCCGCCCATCGAGCTGACCGCGCAAACCGAGCAACGCTTGCGCGTCCAGCCGCCGATCCGTTTCCTCCTGACATTCGATGACGGTCCCAGCGCCTCATCCTTCTGGAACCCGAGCCTGGACGTGCTCGACGCCCTTGCGGACAACCCGGTGCAGCCGGGAATCAAGGCGCTGTTTTTTGTCCAGACGCGAGCGCCACGGGCCGGTGGCAGCGACATCGGTCGCTCGGTGCTGCAGCGTGAGCAGCGCGAGGGGCATGTCCTGGGTTTTCACACGGCCACCCATTGGCACACCAACCATCGATCCCTCGATCCCGATGAGCTGGAGCTGTCGCTTACCCACGGTGCAGCCGACATCGCCGCGGTTACCGGGGCACCGCCGACCCTGGTCCGGCCGCCATTCTGGAGCTATGACCAGCGCACCTTCGCCGCCTACCAACGGCATGGCATGCATGTTTTGCTGACTGACCTGAGCGCCAACGATGGCAAGGTCTGGGGCATTACCCTGAGTCCTCGCCGGCGGATAAACCTGCTACGCCAGCTCTCGGAGGTGCGTGAGCGCATCGCCGCCGGGCAGTTGCCTGCGGTGGATGGAGTGATTCCGGTGGTAGTGACCTTCCACGACCTCAACCGCTATACCGCCCGTCATGCGCGGGAGTATCTGCAGATCCTGATCGACAGCGCCCAGGCCACCGGATTGAAGACCTACGCGAAACCTTTCTATGACGATCGTCAGGCGCTGGAGCGCGCAGCGATGGCCCGGACCCTGAAGGACGCCACCCAGCCGGTGCGCCTGCCCGGTCTGTGGGATTGGTTATGGAAGCGCGATCCTGACTGAMNKIAKALLVVLLANGLSGCIGPPIELTAQTEQRLRVQPPIRFLLTFDDGPSASSFWNPSLDVLDALADNPVQPGIKALFFVQTRAPRAGGSDIGRSVLQREQREGHVLGFHTATHWHTNHRSLDPDELELSLTHGAADIAAVTGAPPTLVRPPFWSYDQRTFAAYQRHGMHVLLTDLSANDGKVWGITLSPRRRINLLRQLSEVRERIAAGQLPAVDGVIPVVVTFHDLNRYTARHAREYLQILIDSAQATGLKTYAKPFYDDRQALERAAMARTLKDATQPVRLPGLWDWLWKRDPDPGPT0018645_3627DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_HYDROLASE_ACTIVITY,PGPT0018645-pda|pgdA-K22278NANA
D1-35_03548255hypothetical proteinATGGGCGGTCCATCGCTTTACATCATCGACTACGTGCTCCATGGCGAGCCCAAGTCTTTCATCATTCGTGCAGAAGTGATGAATAACTCCGAAGCTTGGCACTGGGCCAGTTGCGATGCGGGTGTCGGACGTATACCCAAATTCGGCAGGGAAAAAGTCAAGCGGGTCTCCAAACCCATGGCGGAAAAATATGGCATTACCGATGTGCGCTGGCGAGCTTCCGTCGCGCCGTCCTGGGTCAGGGAGTCAGGCTGAMGGPSLYIIDYVLHGEPKSFIIRAEVMNNSEAWHWASCDAGVGRIPKFGREKVKRVSKPMAEKYGITDVRWRASVAPSWVRESGNANANANANA
D1-35_03549231hypothetical proteinATGTCTGAAAAAGAGTCCATCACCACCCTGTTGACCTTACTGGAATCGCGCCAGGCGCGGCTGACAGCCGCCTGCAAGGAAATTGCCGACTGGGTCGACCACCAGGGCGGGCACCCCGCCGCCGTACGAATCCGCGACCGACTCAATGATATCGAGAAGGACGCCCCCACGATCCAGAGCGCGCTGTCCTCATTGAAGCCCGCGGAACCGCCGCTGCCCAAGTTCCGTTAGMSEKESITTLLTLLESRQARLTAACKEIADWVDHQGGHPAAVRIRDRLNDIEKDAPTIQSALSSLKPAEPPLPKFRNANANANANA
D1-35_03550426hypothetical proteinATGAATGCCAAGGTCCTGCTTCTGATTGCCTGTGCCAGCCCTGCGACTGCCCTGGCGCAAGGTTGTGACGTCATCACCCGGTCCCAGAGCCAAGCGGTGCCGGAAATCGAAACCCGCAGTTGCTATGAGTACAAGGGTGTTCCTGCCGAAGCCATCGGCTGGTCGTGCAGTAACGAAAGCAAGGGCACGCTCAGCACCGAGAAGAAACCCGTCGAACGCTGCGCCGAGGGTTATGTAGCCACCTGCCAGGCGAGGCTGACCCAGGAGGCCCTGGCCAACCCCCGTTCCACCAGCAAGGACCGCAGTGGCAGCTCGGCGAATCTTCCAGACAATGCCCAGGTCACCCGGTACTACTACGGCGCAGAACAGCTTCAGCAAGCGAAAAAGGACTGCGAAACCACCGGCGGCCAATGGAAAAACCGTTGAMNAKVLLLIACASPATALAQGCDVITRSQSQAVPEIETRSCYEYKGVPAEAIGWSCSNESKGTLSTEKKPVERCAEGYVATCQARLTQEALANPRSTSKDRSGSSANLPDNAQVTRYYYGAEQLQQAKKDCETTGGQWKNRNANANANANA
D1-35_03551228hypothetical proteinATGTCTGAACTAGCCAGTTATTTCTGGATCGCGGTTGCGGTAATCGTGTTGCTGTTGGATCTGTGGGCGATCGTCAGCGTCTTTCGCAGCGACAAATCGGCCGGGACCAAGGCAGGCTGGGCATTGCTGCTGGTCATCCTGCCGGTGCTGGGCTTGATTATCTGGGGTGTGGCCGGGCCGCGAGGCATGAAGAATCCGCCTTCGTCGCCCGAGCACAGCAAGGGCTGAMSELASYFWIAVAVIVLLLDLWAIVSVFRSDKSAGTKAGWALLLVILPVLGLIIWGVAGPRGMKNPPSSPEHSKGNANANANANA
D1-35_03552186hypothetical proteinATGACCACCGTTGAAGACTTCAAAATCAAATCCCACGAACTTTTAGTCGAGCTCGACACAGCGACCTCAGAAATGATGGCGCTGATCTGTGTCCATCAAATGTCCGGGACTGCCTGGGATGAGGCCGTCCGACGCCAACATGAGGCCTATGAGCAATGGGTCGCCTATCTGAATGAACGCGCGTAGMTTVEDFKIKSHELLVELDTATSEMMALICVHQMSGTAWDEAVRRQHEAYEQWVAYLNERANANANANANA
D1-35_03553363rppH_2RNA pyrophosphohydrolaseATGAAAATTCGAGCGACCGTCATCTGTGAAGAGGACCGCCACATCCTCCTGGTTCGTAAGCCCAAGAGCCGCTGGGCCTTGCCTGGCGGCACCGTCGAGCGTGGCGAGACGCATGCCGATGCTGCCTTGAGAGAACTGGCGGAAGAAACCGGACTGAGCGCCGAAAACCTGCTCTACCTGATGCGGGTCAGCGATGGCGACACCGAACATCACGTCTTTGAGGCTTCGGTCAACGACTCGAAGGACGCCAGGCCGCAGAATGAAATCAGCGACTGCCTGTGGCATCCCTTGGATGCCCTCGCCCAATTGCAGATGAAAAAGGGCATGCGGGAAATACTCGAGGCGTTTCGGCGCAGGTTGTAAMKIRATVICEEDRHILLVRKPKSRWALPGGTVERGETHADAALRELAEETGLSAENLLYLMRVSDGDTEHHVFEASVNDSKDARPQNEISDCLWHPLDALAQLQMKKGMREILEAFRRRLNANANANANA
D1-35_03554216hypothetical proteinATGGTAATCGACAATAACGGTCCGGAAGCGCCATACCCGGGACCCGATGAAAATACGCCGGAGACGGGCGAAGGTCATGATTCCGGTCTTGATCAAGCTGAGTCTGAACCAAAGCAGGGCACTGGCGAGAGGCCGGAAGACTGGAATCCGCCGCCGGGAAATCCCGGTTCCGACCAGGACGCCCAGACGAATCGTGAGAATGGCGGCGCGAAGTAGMVIDNNGPEAPYPGPDENTPETGEGHDSGLDQAESEPKQGTGERPEDWNPPPGNPGSDQDAQTNRENGGAKNANANANANA
D1-35_03555381hypothetical proteinATGGACCCGTATGAAATAGAAGACACCAGCGACTGGCTGGGCACCCCAACCCCCCTGGAAATGTACAAGCACTCCTGCCTCATGCTCGAGAACGAGGTGCAGGAACTCACGACCCAGTTGCGCAAAGCCCGTCAGGACATTTTCGGCTTGATCGAAATGCACGGTGCAGAAGCCAAAGAGTCCGCCAGGCTGCGGGCTGAGCTGAAGCGGGCAAGGGAGCGATGGAATTCAGAGCATCTTTTATATGGCGAACTCAAGAACAAGTCGGACTTCGACTATATGGCAAGATCCGCGCTGATCGCCGACCTGTACCGGCGACTGAAGGTCTACGAGGGTGACAGCCTCCCCGAGTACATCATCACCAACAACCAGCCAAAGTAGMDPYEIEDTSDWLGTPTPLEMYKHSCLMLENEVQELTTQLRKARQDIFGLIEMHGAEAKESARLRAELKRARERWNSEHLLYGELKNKSDFDYMARSALIADLYRRLKVYEGDSLPEYIITNNQPKNANANANANA
D1-35_03556129hypothetical proteinATGTGCGGACGACTCTCGCAGTACACCGGCATCCACGACTTCGTGGCTGTGTTGAGCATGCCTACCGCACTGGTCAACACCGTTGGTGACCAGCCCTTGGATCGGTACAACGGCGCACCGGCGCAGTAGMCGRLSQYTGIHDFVAVLSMPTALVNTVGDQPLDRYNGAPAQNANANANANA
D1-35_03557558yedK_3COG2135SOS response-associated protein YedKTTGCTCCATCAGGAAGACGACACGCTGCATACTGACCTGGTGCGATGGGGATGGCGGCCATACTGGGCCAAAGACAGGGCCGCACCGATCAATGCCCGGGTAGAGAAAGTGGCCCACGGACCGTTCTATCGCCCGATCTGGCCGAACCGCGCCATCACGCCGATCAACAACTGGTTCGAGTGGGTCGACGAAGGTGGGCCGAAGAAGCAGCCCTACCTGATCCGCCGGCGGGACCAGGCACCGATCCTTTGCGCATCGATCGGCCAGTTCCCCACCGGTGGCCGTGAGCGTGGCGAGCATGACGGCTTCGTCATCATCACCGCCGACAGCGCGGGCGGGATGGTCGACATCCACGACCGCCGGCCCGCGGTGCTGACGCCTGAGCTTGCCCGGGAATGGCTGGACCCGGCCACGCCAAAAGAACGCGCCGAGCAAATGGTCCTGCACCAGGGCGAGCCGGCAGAGGCCTTCGAGTGGTTCAAGGTGGATCGCGCCGTCGGCAATGTGCGCAACCAGGGCCCGGACCTCATCAGGCCTATCGCTGGCTCACTTCTCTGAMLHQEDDTLHTDLVRWGWRPYWAKDRAAPINARVEKVAHGPFYRPIWPNRAITPINNWFEWVDEGGPKKQPYLIRRRDQAPILCASIGQFPTGGRERGEHDGFVIITADSAGGMVDIHDRRPAVLTPELAREWLDPATPKERAEQMVLHQGEPAEAFEWFKVDRAVGNVRNQGPDLIRPIAGSLLNANANANANA
D1-35_03558534hypothetical proteinATGCCTGTTTACGCTAAATATTTACCCGCTTTTTTTGTGGGTAGCATTATAGCGAACTTTAGCAGGAGTGTAGCCGTTGGCCCTGTAGCTGCTTATTCGGCGTTGCTGGTAATGCTAGTTTCAGACATGCTGTTGGGGTATAAGACAGACTCGTCAATTATGCTCCAGACCGTATGTGCGGGCGCTTTGATTCTGAGCATTGGACGCTCTGATTCTATGCAATGGCTTAATCGCTCGGTTTTATCATTCCTTGGCAAGATATCCTTTTCGTTTTATTTAATGCACTTGGTTGGAATGATTCTGACTAGGCAACTTTGCGTTAAGCTTGGAATACCGCTTGGTCAGATGTCGATGATTGAAAACGCAATAGTCTACGCGGCGATCTCTGTACCCCTAACCATCGTTATATCGGTTGTCTCCTATCAATTTGTGGAGCTCCCCATGAATAAAGTTGGCGGATCTACAGCCGCATCCTTAAGGAAAGTTTTTACCCAGGGCGCTCTGTCTGGCGCCCCTAGAACATCAGAGAAGTGAMPVYAKYLPAFFVGSIIANFSRSVAVGPVAAYSALLVMLVSDMLLGYKTDSSIMLQTVCAGALILSIGRSDSMQWLNRSVLSFLGKISFSFYLMHLVGMILTRQLCVKLGIPLGQMSMIENAIVYAAISVPLTIVISVVSYQFVELPMNKVGGSTAASLRKVFTQGALSGAPRTSEKNANANANANA
D1-35_03559339hypothetical proteinGTGGGCTGCGTGATCCGCAACCGTGTGAACGATGGAAAGGAAAAGTCCTGGTGGGGCGAGGGGTACGCCGGCGTGTGCCTGAAGCCGTACCAGTTCAGCTGCTGGAACCAGAACGACTGGAACTATCCGTACCTGAGCGGGACCAAGCCAATTCCGCCGGCGCAGTTCGCCCAGGCGCTGCGGGCGGCCGATCTGGTGATCTCCGGCGCCCAGCCGGACATCACTCGCGGCGCGACCCACTACTACGCGACCACGATGCCGAAGCCCCCGGCCTGGTCCAAGGATGCGACCCAGACCTTCCGCCTGGGCAATCATATCTTTTTCAAGGACGTGCCGTAAMGCVIRNRVNDGKEKSWWGEGYAGVCLKPYQFSCWNQNDWNYPYLSGTKPIPPAQFAQALRAADLVISGAQPDITRGATHYYATTMPKPPAWSKDATQTFRLGNHIFFKDVPNANANANANA
D1-35_03562840hypothetical proteinATGACTGAACGCCCACAACTGGTGGCGAGCCGGGCTCCGGTGCCCACGCCTTCGCATCCCAATCTCGGCAAGCCGGAGCGCCTGATGTCGCTGGCGGCCGGTTCATTGTTGATTGCCAACGGCCTGCGCCAAGGCGGCCTCAAGGGCTGGCCGCAGGTATTGCTTGGCGCGTGTGCTGCCTGGCGTGCCTATTCCGGCACGTGCCGGGTCAAGCGGGCGCTGACTCATAGTCCGTTCGAGCAGACCTTCGAACAGGATCGTGACTGGGGCGGCAGCAAGGTGATTTCCCGCAGCATCACGGTCGGCAAGCCCAGGGAGGAAGTGTTCGCGTTCTGTCGCGACCCGGCCAATCTGGGTGCGCTGATGCCTTGGATCGACGCCATCGAGCAGACCGGCGAACGCACTTATCGCTGGGTCGCCCATGGCCCGATGGACAAGACGTTGCACTGCGACCTCGAACAGTGCGAGCCCAAGGAAGACCGCAAGCTGCACTGGATCGCCGGGCCGGACACACGATTCAAGCACGATATCCAGATGCATTTCAGCGATGCTCCGGGCGGGCGCGGTACGCAGATCAAGGTCATTGTCGCTTGCCAGACGCCGCTCGGCGCGGCTGGCTACGCGCTGGCGGCGGCGATTTCCCGGTTCTCGGACAAAGCCTTGTTGAACGTGCTGCGCAGTATCAAGCAGCAGCTTGAAACCGGAGAAGTCAGCACCAACAGGATGCGCCCGGAGCAGACGCAGGACTTCCTCTTCGTGCACCCCGCCAACAGCGCGACCCAGGCACCCGCCAATGACTCATCCACTGACAAGCCCGAACTCAACGGAGGAACCGTCTGAMTERPQLVASRAPVPTPSHPNLGKPERLMSLAAGSLLIANGLRQGGLKGWPQVLLGACAAWRAYSGTCRVKRALTHSPFEQTFEQDRDWGGSKVISRSITVGKPREEVFAFCRDPANLGALMPWIDAIEQTGERTYRWVAHGPMDKTLHCDLEQCEPKEDRKLHWIAGPDTRFKHDIQMHFSDAPGGRGTQIKVIVACQTPLGAAGYALAAAISRFSDKALLNVLRSIKQQLETGEVSTNRMRPEQTQDFLFVHPANSATQAPANDSSTDKPELNGGTVNANANANANA
D1-35_035631173COG1063putative zinc-binding alcohol dehydrogenaseATGCGCGCATTGACTTGGCAAGGCCCCAACAAGCTTCAGGTCGAGACGGTCGACGACCCGTCCATCCTCAACCCTCGTGACGCCATCGTACGGGTGATCCTGTCCTCGGTGTGCGGCTCGGATCTGCACCTGCTGGGCGGTTACGTGCCGACCATGCAGGCCGGTGACATCATTGGCCACGAATTCATGGGCGAGGTGGTGGAGACCGGCTCGGCCGTCACGCAATTCAAAAAGGGCGACCGGGTTGTCACGGTGTCGATTGTCGGCTGTGGAGAATGCGAGCACTGCCAGCGCTCGGACTTTTCCTGCTGTGACAATTCCAATCCGAACCCTACGGCGACAGACATTGCCTACGGCCAACCGGCGTGCGGCATCATCGGCTACAGCCATGCCTTCGGCGGTTATTCCGGCAGTCATGCGACCTATATCCGCGTGCCCTACGCCGACGTCAATCTGTTCAGCATTCCCGAAGGCGTCAGCGATGAGCAGGCAGTGTTTGTCTCCGACGCAGTGCCCACCGGCTATTTCGCCGCCGACAACGCCGACATTCAGCGCGGCGATACGGTAGCGGTCTGGGGCTGCGGCGGGGTCGGGCTGATGGCAATCACCAGTGCCTACCTGCTGGGCGCCGAACGGGTGATCGCCATCGACCGTTTTGCCGATCGCTTGCGCCTGGCCGAGGAAAAAGCCGGGGCCATCGCCCTCAACTACGAGACCACCGATGTGCATGCCGCCTTGCTGGAGCTGACCGGCGGCCGTGGGCCGGATCGCTGCATCGATTGCGTCGGCATGGAGGCCCACGGCACCGAAGTCGATTATTTCTACGACAAGACCAAGCAGATGCTGCGCCTGCACACCGAGCGCGGAACCGTGCTGCGCCAGTCGATCCGCGCCTGCCGCAAAGGCGGGACGGTGTCGGTGGTCGGGGTCTATGGCGGCTTGCTGGACAAATTCCCGATGGGCGCGATCGTCAATAAATCCCTGACCCTGCGTTCCGGCCAGCAACCGGGGCAGCGCTACGTGAAGCGCTTGTTCGAACACATTCAGAACGGTGAGCTGGACCCCTCCTACCTGCTGACCCATCCCATGGGGCTTGAGCAGTCGGTGGACGGCTATGCGATGTTCAAGGAAAAACGCCAGGATTGTCTGCGGGCGGTATTTCGGCCGGAGTGAMRALTWQGPNKLQVETVDDPSILNPRDAIVRVILSSVCGSDLHLLGGYVPTMQAGDIIGHEFMGEVVETGSAVTQFKKGDRVVTVSIVGCGECEHCQRSDFSCCDNSNPNPTATDIAYGQPACGIIGYSHAFGGYSGSHATYIRVPYADVNLFSIPEGVSDEQAVFVSDAVPTGYFAADNADIQRGDTVAVWGCGGVGLMAITSAYLLGAERVIAIDRFADRLRLAEEKAGAIALNYETTDVHAALLELTGGRGPDRCIDCVGMEAHGTEVDYFYDKTKQMLRLHTERGTVLRQSIRACRKGGTVSVVGVYGGLLDKFPMGAIVNKSLTLRSGQQPGQRYVKRLFEHIQNGELDPSYLLTHPMGLEQSVDGYAMFKEKRQDCLRAVFRPEPGPT0006355_361DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006355-frmA|ADH5|adhC-K00121NANA
D1-35_035641224tetATetracycline resistance protein, class CATGCCCCATATAGGTCTCCCCCAGGCTTCCAGTGTGCGCCTGCTCGTCTTCCTGCTGTTCTCCATCCAGCTGGTTTCCATGGGCGCGATGGAAATGAGCGGGCCGTTCTGGCCTGTGCATTTGCGCCAGCTGACCAGCAACGACGCGCTGTTCAGCTTTGCCAGCACGGCGGTGTACGTCGGCCCGATGCTGGGCATCATCCTGACCAGTGCCTTCTGGGGCCGGATCGGTGATCGTTACGGTCACAAGCTGATGATGATCCGCGCGCTGGCGGGGCTCTCGTTGACCCAGCTCGGGCTGGCATTGAGCAGCGATATCTGGGTAATCCTGCTCCTGCGTTTCCTGCAAGGCGCCTTCGCCGGTTATATCGCCCCGGCCCAGGCCTATGGGGTGAGCATCGAGGCACCGTCGCGGCGGGCCAGGCTGTTTGCGATCCTGCAGATTTCCACCAACGTCGGTTCGTTGCTCGGGGCGGTGGTCGGCGGGCTGATTCTCGATCATGCGACGTTTTTCTGGATCAACATCGTCGCCTCGGGCCTCTGCGCCGCATGTACCGTCGTCGCGGCGCTGGCGTTGCCCAACGTGGCGCCAGTAAAAAAAGCACCGCTGGCAGGCAAGCCTCCCCTGCCGCCCAGGCTGTTCGACCCGGCGATCAATTGGCTGCTGGGCATCATGGGCCTCCTGCTGCTGGCGCGAATGCTGCCGCAGACTTCGTTTTCCTTGTACGTGGGGGCGACCTTCGAGGTCAGCAATGCCATGGTCGGGCTTTGCTACGGCTTGCTAGCCCTGGGCTTCATTCTTTGTGCGACGTCCTGGTCGCGCTACTTCGAACGGCGCAACCCGGCGCAAACGCTGCAGGCCATGGCGAGCATTGTCATCGGCCTGGTCATCGTCACCGCCGTGGCCGGCCTGACGCGCCAGCCGGTCGTCTTCGCCCTCGCCTATTTCCTCTGGGGCCTGCTGTTGGGCGCAACCACGCCGGTGCTGACGGCGCTCATCTCCCGAAGCGTCGACAACAGTCGCCAGGGCCAGGTGCTGGGGTTGGCCCAGGGCGTTTCACAGACGGCATCGATCATTGGCATCTCCCTTGGCGCATTGCTCAGCCAGGTGTATGGCCTGAAGCACATTTTTCTTTATGTCTGCCTCGCCTACGCAATCGCACTGGTGCCGTTGATGCTGCTGCGCCACAAACCACTCGGAATGGCCGACAGGGCTGGCGAATAGMPHIGLPQASSVRLLVFLLFSIQLVSMGAMEMSGPFWPVHLRQLTSNDALFSFASTAVYVGPMLGIILTSAFWGRIGDRYGHKLMMIRALAGLSLTQLGLALSSDIWVILLLRFLQGAFAGYIAPAQAYGVSIEAPSRRARLFAILQISTNVGSLLGAVVGGLILDHATFFWINIVASGLCAACTVVAALALPNVAPVKKAPLAGKPPLPPRLFDPAINWLLGIMGLLLLARMLPQTSFSLYVGATFEVSNAMVGLCYGLLALGFILCATSWSRYFERRNPAQTLQAMASIVIGLVIVTAVAGLTRQPVVFALAYFLWGLLLGATTPVLTALISRSVDNSRQGQVLGLAQGVSQTASIIGISLGALLSQVYGLKHIFLYVCLAYAIALVPLMLLRHKPLGMADRAGEPGPT0029185_314DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029185-mdtG-K08161NANA
D1-35_03565516fecI_6COG1595putative RNA polymerase sigma factor FecIATGAGCGATCCAGGGTCAGCGGTCAACGATTGTCACCTGCGCACCGTCGCAGACCTCTACAGCGGACACCATGGCTGGTTGTACGCCAGGCTTTATCGAAAACTGGGCAATGCGCTGGACGCCGCCGACCTGGCCCATGACACGTTCATTCGCATCCTCGCCTCGAAGGTGGCGGTGATCGAGGAACCGCGTGCGTACCTGAGCTGCGTCGCCGGGGGCATCCTGGTCAACTGGTTCCAGCGCAAGGCACTCGAACGCGCCTACCTCCAGGCACTGGCGACATTACCCGAGCCCGAGGCGCCCTCGCCCGAACGACGCTTGCTGGTGCTCGAGACGCTGCATGAAATCGACGCCATGCTCGACACCCTGCCGCCCCTGGTAAAGCGTGCGTTCCTGCTGTCGCAGATCCATGGCCTGAAATATGACGACATCGCCACGCAACTCGGCGTTTCGCTGATCACCGTCAAGCGCTACATGAAACAGGCTTTCCTGCACTGCCTGATGCTGGTGGACTGAMSDPGSAVNDCHLRTVADLYSGHHGWLYARLYRKLGNALDAADLAHDTFIRILASKVAVIEEPRAYLSCVAGGILVNWFQRKALERAYLQALATLPEPEAPSPERRLLVLETLHEIDAMLDTLPPLVKRAFLLSQIHGLKYDDIATQLGVSLITVKRYMKQAFLHCLMLVDPGPT0003900_298DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003900-prhI|fecI-K23514NANA
D1-35_03566966fecR_4COG3712Protein FecRATGCCCGCCCATGACCGCCACGCCCTCGACCCGGCCATTCTCAACGAAGCCGCCGATTGGCTGATGCGCCTGAGCGAAGGCAGCGTCAACGACGCCGAACGCCTGGAGTGGGAACGCTGGCGTACCAGCAGCCCGGCCCACCGCCAGGCCTGGGCGCGGGCCGAACTGCTGCTGAGCAAGCTGCAAGGCTTGCCGCCCGCGCTGGCGATGCCGGCGCTGGACCGCCCGAGCAATCCGGCGCGGCGTGCCGCCATGGGCAAGCTGGCCGCCCTGCTCGCCCTGGCGCCATTGGCCTGGGGCAGCTGGAAGCTCAACGACTGGCAACAGTGGACCGCCGATTACCGCGCTCCGGTGGGCGAGCGGCGCGACCTGACCCTGACCGACGGCACCCGCCTGACGTTGAACACCGACACCGCAATCGATGTATTTTTCGACGAACACCAGCGCCTGCTGCTGTTGCGCCGAGGCGAAATACTGGTCCAGACCGCAGCGGACCCAGCAGCGCTCGCCCGGCCGTTCCGGGTGCAGACCGACGAAGGCCGGATGCAGGCGCTCGGGACGCGCTTCAGCGTTCGCGAAGACACCGGCCATACTCGCCTCGTCGTGCTGGAAGGCGCGGTGCGCATCGAGGTCAAGGGCATCGGCGAGCAAGTGGTCGGGGCTGGCCAGAGCAGCGGTTTTACCGCCCGGGGCATCGACGCCCTGAAACCTGCCGACAAGTCGGTGCTGGCCTGGACCCAGGGCATGCTGATGGCCGACAACATGCGCCTGGCGGATTTCGTCAACGAACTGAGCCGTTATCGCAACGGCGTCCTGCGTTGCGACCCGGCGATCGCCAACCTGCGGATATCCGGCGCCTTTCCCCTGAACGACAGCCGGCAGACCCTGAACATGCTCGCCCGAACCTACCCCATCCGGGTCACATCCCGCCTGGGCGATTACTGGGTCATGCTGGCGCCGGCTTGAMPAHDRHALDPAILNEAADWLMRLSEGSVNDAERLEWERWRTSSPAHRQAWARAELLLSKLQGLPPALAMPALDRPSNPARRAAMGKLAALLALAPLAWGSWKLNDWQQWTADYRAPVGERRDLTLTDGTRLTLNTDTAIDVFFDEHQRLLLLRRGEILVQTAADPAALARPFRVQTDEGRMQALGTRFSVREDTGHTRLVVLEGAVRIEVKGIGEQVVGAGQSSGFTARGIDALKPADKSVLAWTQGMLMADNMRLADFVNELSRYRNGVLRCDPAIANLRISGAFPLNDSRQTLNMLARTYPIRVTSRLGDYWVMLAPAPGPT0003910_4936DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003910-prhR|fecR-K07165NANA
D1-35_035672436fatAFerric-anguibactin receptor FatAATGCCCGTTGCCCGCCCCCTGCGTTCGGATCGCAAGCTGAATCTGGCGATTCGCAGTGCCATGCTCAGCGTTGCACTTTCCACCTTGAGCCCGTGCACCTGGGCGGCACCGGGCGCGCCGCTGGACAACGTTGCCAGCCAGTCCTACAACATACAGCCAGGTCCCTTGGGTGCCACGTTATCGGCGTTCGCCGTGCAGGCCGGCATCGCATTATCGTTTGAACCCTCCCTGACCCAAGGCTTGAACAGCCCGGGCCTTTCAGGGCAGTTCACCGCGCGTGAAGCGTTTACCCGATTGCTGGCCGGCAGCGGCCTGGAACTGGTCGCCCGCGACGATGGCAGCTACACCCTGGAAAAATCCGCCGGCGACGGGGGGCTGGCCCTGGCGCCAACCACCATCAATGCCGCCGAGGTGCGCCCCGGGGATTTGCCGCCGACCTACAGCGGTGGCCAGGTGGCCCGTGGCGGCCGGGTTGGCCTGCTGGGTAACAAGGACCTGATGGACACGCCATTCAGCGTCAGCAACTACACCTCGACCCTGATGAAGGACCAGCAGGCCGTGACCGCCGCCGACGTGCTGGAGCGCGACTCCTCGGTGCGCTCCACCGGCCAGACCGGCGGCATCGTCGATTCGTTCTTCATTCGCGGTTTCCCGGTGGGCGAAGGCAACCTGGGTGAGCTGGCGTTCGACGGCGTGTACGGCGTGGCGCCGAACTACCGGGTGTTCACTGAATATGCCGAGCGCATCGAGGTCATCAAGGGCCCGGCTGCGCTGCTGTACGGCATGTCGCCCAACAGCGGCGTCGGTGGCGTGATCAACATCGTGCCCAAGCGCTCGCTGGACCAGGACCTGACTCGCGTTACCGCCAGCTACGCCATGGACACCCAGGCAGGCGGGCATGTCGACATCAGCCGCCGCTTCGGCGAGGAACGCCGCTTCGGTGTGCGCGTCAACGGCAGCCTGCAGGGTGGCGACACCGCGATCGACAAGCAGTCCCGGGATGTCGGCATCGGTGCGATCTCCCTGGATTACCAGGGCGACCGGTTCAGGACCAGCCTGGACCTGATCAGCCAGGAAGAACAGTGGGACGCACCCTCCCGGCCGTTTGCCATCGCCAGCGGTGTCGAGGTGCCTTCGGCGGCCAACGGGCGCAGCAACGTGACCCAGGAATGGGGCTGGTCCGAAACCCGCGACAAGTCGGCGCTGCTCAGTGGTGAATATGACCTGAGCGACAACCTGACGGTATTCGGCCACGCCGGGGGCGGCAAGTCCGATGTGGCACGACTGTCGGACCAGACCCCGACGATCCTCAACAGCGCCGGTGACACCCGCTCGGTACCGGGCTACTACAAGTTCGAGGTGGAGCGTTACACCGTCGATGCCGGTGCCCGTGCCCGCTTCGAAACCGGTCCGGTCAGCCACAGCGCCACCTTGCAGGCCAGCCGCTATCGCGATGAATTGCGCCGAGGAATCAATTCCGGCGCCCCGGTCTTTTCGAATATCTATCACCCGGTGGCGCGCGACAAACCGTCCATCGCATCGCCCGATGTGGCGAAGGTCTCCGATACCGAACTGTCCGGCGTGGCCCTGGCCGATACCTTGTCGATCCTCGATGAACGGGTCCAGGTAACGCTTGGCCTGCGCAAGCAGAGCATTGAATCAAACAACTACAACACCCTCGGGAATGTCACCAGCGCCTATGACGAAAGCGAAACCACGCCTTTGTTCGGCGCGGTGGTCAAGCCCTGGGAACATGTGTCGTTCTACTACAACTACATCGAAGGCCTGAGCAAGGGCGACACTGCGCCGGCCACTGCGAGCAACTCGGGCGAAATCTTCAAGCCCTACATCTCTCGCCAGCAGGAGGTCGGGGTCAAGGTCGACTACGGCACGTTCACCTCGACCCTGGCGCTGTTCCAGATCAAGAAGCCCGCCGGCGAATTGACCAACGGCACGGCCGGTGGCGTGTATTCGGTCCAGGGCGAGCAGCGCAACCGCGGCATCGAACTGAACATGTTCGGCGAACTGCGCGAGGGCACGCGTCTGCTCGGTGGCGTCACCTTGCTCGACGGCGAACTCACCAAAAGCGGGACCGCCGCCAATCGCGGCAACAAACCGGTGGGCGTGCCCGAAGTGCAGGCCAACCTCTGGGCCGAATGGGACACCCCCTGGGTCCAGGGCCTGACGTTGACCAGTGGAGCGATCTACACCGGCAGCCAATACGTCAACCAGGCCAATACCCAAGAGCTCGATCCGTGGACACGCTTTGATGCCGGCGCCCGCTACAGCACGGTACTCGATGGCCGGCCGACCACGCTGCGCGCCACGGTGCAGAACGTGTTCGACCGCGAATACTGGTCCGGCGTGGCCTCCTACGGCGCGTTCTCCCAAGGCGCGCCACGCACCCTGTTGCTTTCAGCGACGGTCGACTTCTGAMPVARPLRSDRKLNLAIRSAMLSVALSTLSPCTWAAPGAPLDNVASQSYNIQPGPLGATLSAFAVQAGIALSFEPSLTQGLNSPGLSGQFTAREAFTRLLAGSGLELVARDDGSYTLEKSAGDGGLALAPTTINAAEVRPGDLPPTYSGGQVARGGRVGLLGNKDLMDTPFSVSNYTSTLMKDQQAVTAADVLERDSSVRSTGQTGGIVDSFFIRGFPVGEGNLGELAFDGVYGVAPNYRVFTEYAERIEVIKGPAALLYGMSPNSGVGGVINIVPKRSLDQDLTRVTASYAMDTQAGGHVDISRRFGEERRFGVRVNGSLQGGDTAIDKQSRDVGIGAISLDYQGDRFRTSLDLISQEEQWDAPSRPFAIASGVEVPSAANGRSNVTQEWGWSETRDKSALLSGEYDLSDNLTVFGHAGGGKSDVARLSDQTPTILNSAGDTRSVPGYYKFEVERYTVDAGARARFETGPVSHSATLQASRYRDELRRGINSGAPVFSNIYHPVARDKPSIASPDVAKVSDTELSGVALADTLSILDERVQVTLGLRKQSIESNNYNTLGNVTSAYDESETTPLFGAVVKPWEHVSFYYNYIEGLSKGDTAPATASNSGEIFKPYISRQQEVGVKVDYGTFTSTLALFQIKKPAGELTNGTAGGVYSVQGEQRNRGIELNMFGELREGTRLLGGVTLLDGELTKSGTAANRGNKPVGVPEVQANLWAEWDTPWVQGLTLTSGAIYTGSQYVNQANTQELDPWTRFDAGARYSTVLDGRPTTLRATVQNVFDREYWSGVASYGAFSQGAPRTLLLSATVDFPGPT0003790_9341DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014NANA
D1-35_035681173hypothetical proteinATGCAGATTCAATCTCTGACGCGCTCATCGCTCATCGCCTGGCTGCTGGGTGCTACCGCCCTGCTGCTGAGCGGCCTGGTGTTTTCAGACACCTTGCCCGCCACCAGAACCACCGTCACCGACTTGCTCGGCCGCCAGGTCCAGGTGCGCATTCCGGTGCAACGGGTGATCCTCGGCGAAGGTCGCCAGTTGTACCTCGTCGCGGCACTCGACACCGACAACCCGATCCGCCGCATCGTCGGTTGGCGCAAGGACCTGATCCAGTCCGACCCGGACACCTACGGCGCCTACCTGCGGCGGTATCCGGCAATTGCCCGGATTCCGACCTTCGGCGGTTTCGAAGACGGCACCTTCGACATCGAGCAAGCGATCAGCCAGCAACCGGACGTGATCGTCCTCAACATCGAGGCCCAGCACGCCACCGAAGACGCGCGCCACATCGAGAAACTCGATGCGCTGGGCATTCCGGTGGTCTACGTCGACTTTCGCAACAACCCGATGCAGAACACCGAACCGACCATGCGCCTGTTTGGCCAGCTGTTCGGCGAAGAGGCACGCGCCGAGGCGTTCATCGCCTTTCGCAACCAGCAGATCCGTCGCGTCACCGATGTGATCCAGGCCCGCCAGCCGCCCCGCCCGAAAGTGTTCATCGAACGCATCGGTGGCTACACCGACGATTGCTGCCTGAGTTTCGGCAACGAAAATTTCGGCCGTTTCGTCGAGCTGGCCGGGGGCCGCAACATTGCCAGCGCAATCATTCCCAACACCTTTGGCCAGTTGAACGCGGAACAGGTGATCGTCGCCAACCCGGAACAGGTGGTGGTCACCAGCGCCAACTGGGAGGCCTTTGCGCCGGGCGGGCACTGGGTCGGTGTCGGGCCCGGCGCCGATCTGGCCGAGGCGCGGCGCAAATTGCAGTGGTACACCGCCCGCCCGGCCTATGCCGGGATCAAGGCTCAGCAAACCCAGGGCTTTCATGCCATCTGGCACCAGTTCTACAACAGCCCGTACCAGTTCATCGCCATCCAGCAACTGGCCAAGTGGTTCCATCCGGAGCTGTTCACCGACCTGGACCCCGACGCGACGTTTCGCGAGTTCCACCAGCGCTTCTTGCCTGTGCCCTATGAGCCAGGCTATTTCGTCAGCCTCAAGCCCGCGCAGGCCCAACCATGAMQIQSLTRSSLIAWLLGATALLLSGLVFSDTLPATRTTVTDLLGRQVQVRIPVQRVILGEGRQLYLVAALDTDNPIRRIVGWRKDLIQSDPDTYGAYLRRYPAIARIPTFGGFEDGTFDIEQAISQQPDVIVLNIEAQHATEDARHIEKLDALGIPVVYVDFRNNPMQNTEPTMRLFGQLFGEEARAEAFIAFRNQQIRRVTDVIQARQPPRPKVFIERIGGYTDDCCLSFGNENFGRFVELAGGRNIASAIIPNTFGQLNAEQVIVANPEQVVVTSANWEAFAPGGHWVGVGPGADLAEARRKLQWYTARPAYAGIKAQQTQGFHAIWHQFYNSPYQFIAIQQLAKWFHPELFTDLDPDATFREFHQRFLPVPYEPGYFVSLKPAQAQPPGPT0003765_536DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003765-feuA|yvrC|ABC_FEV_S|fatB-K02016NANA
D1-35_035691059hmuU_1COG0609Hemin transport system permease protein HmuUATGAATGGCCGTATCGAGGGTATCGCCCTGGGCACGATTTACCGCGAGCAGGTCTGGCGCAAACGCTTGATCCTGATCGGCCTGGCCCTGTTGCTGCTGTTCAGCGTGCTGCTCGACCTGGCCCTCGGCCCGGCCAGCTACAGCCTGGATGAAGTCCTGGGCGCGCTGTTCTCTCCGGATGCCGCGGCGCCGCAAGTGCGGGTGGTGATGTGGGATATCCGCCTGCCGGTGGCGCTGATGGCCGTGGCCGTGGGCGCCGCGTTGTCCCTGGCCGGCGCGCAGATGCAGACCATCCTCAACAACCCGCTGGCGAGCCCATTCACCTTGGGCATCTCGGCGGCAGCCAGTTTCGGCGCGGCCCTGGGCTTGGCATTCGGCGTGGCCCTGGTGCCGGTGATCGCCCAATACATGGTGCCGCTCAATGCCTTTATCATGGCGATGCTCTCGGCGCTGCTGATTCATGTCCTGAGCCTGCGCCGGGGCATGACCAGCGAAACCATCGTGCTGCTCGGTATCGCCCTGGTCTTCACCTTCAATGCGCTGTTGGCGCTGGTGCAGTTCTTCGCCACCGAGCAGGCCGTGGCCGCCGTGGTGTTCTGGACCATGGGCAGCCTGACCAAGGCCACCTGGCCGAAACTCGGCGTGATCTGCCTGGTAATCCTCGTCACCTTGCCGATTTTTGCCCGCCGCGCCTGGGCCATGACCGCCCTGCGCCTGGGGGATGAAAAAGCCGCGAGTTTCGGCATCAACGTGCGCAAGTTGCGCTTGCAGACGCTGATCATGGTCAGCCTGCTGGCCGCGTTTCCAGTGGCGTTTGTCGGCACCATCGGCTTCATCGGCCTGGTGGGGCCGCACATCGCCAGGATGCTGATCGGCGAGGACCAGCGTTTCTTCCTGCCGGCCTCACTGCTGACCGGCGCGCTGATCCTGTCGGCCAGTTCGGTGGTGAGCAAGACCCTGATACCCGGGGCGATCTTCCCGATCGGCGTGGTCACGTCGCTGATCGGCGTGCCGTTCTTCATTTCTCTCATTCTGGGCGGCAGGAAACAGTCATGGTGAMNGRIEGIALGTIYREQVWRKRLILIGLALLLLFSVLLDLALGPASYSLDEVLGALFSPDAAAPQVRVVMWDIRLPVALMAVAVGAALSLAGAQMQTILNNPLASPFTLGISAAASFGAALGLAFGVALVPVIAQYMVPLNAFIMAMLSALLIHVLSLRRGMTSETIVLLGIALVFTFNALLALVQFFATEQAVAAVVFWTMGSLTKATWPKLGVICLVILVTLPIFARRAWAMTALRLGDEKAASFGINVRKLRLQTLIMVSLLAAFPVAFVGTIGFIGLVGPHIARMLIGEDQRFFLPASLLTGALILSASSVVSKTLIPGAIFPIGVVTSLIGVPFFISLILGGRKQSWPGPT0003770_2611DIRECT 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
D1-35_03570756fepC_1COG1120Ferric enterobactin transport ATP-binding protein FepCATGGTGACGATCGAGCTGCAAGGTGTCGGCGCTCGTTATGGTCGTCGGTCGATACTGGACGGGATCACTACGCCGCTGCTCACGGGTGGCGAGGTGGTGGCGGTGGTGGGGCCCAACGCGGCCGGAAAATCGACCCTGTTCAAACGCATCGCCGGCCTCATCGACGGCCCCGGCCATGTTCGCCTGGAAGGCTCGCGCAGGGGCCAGCAGGGCATTTGCTACATGCCGCAGAACCTCAACGCCAACGCCCGGCTGACGGTCTACGAATCGGTGCTGCTCGCGCGCAAACAGCAGGCGCCCGGCTGGACAGTGCAAGCTGATGAGCTGGAAGTGGTGGACCGCATCCTCGCGTCCCTGGGCATCAGTGATTTGTCGTTTCGCAACCTCGGTGAACTGAGCGGTGGGCAACAGCAACTGGTGTCCATCGCCCAGACGCTGGTGCGCGAGCCCGAAGTCCTGTTGATGGACGAACCCACCAGCGCCCTGGACATGCACCGCCAGGTCCAGGTCCTGAGCTTCATGCGCGCCCTCGCCCGCCAACACTCGATCATCGTGTTCATTGCCATTCACGACCTGAACCAGGCGTTGCGCTTTGCCGACCAGGTGCTGGTCATCGCCGAGGGCACCCTGCAAGGCTGCGGTCGAAGTGAAGAAGTGATCACCGAGCAGATGCTGCGCAACGTGTACCGGGTCCAGGCCCGGATCGAACGCTGTTCAAGGGATGAGCGGCACATCATCGTGGACGACGTGGTTTGAMVTIELQGVGARYGRRSILDGITTPLLTGGEVVAVVGPNAAGKSTLFKRIAGLIDGPGHVRLEGSRRGQQGICYMPQNLNANARLTVYESVLLARKQQAPGWTVQADELEVVDRILASLGISDLSFRNLGELSGGQQQLVSIAQTLVREPEVLLMDEPTSALDMHRQVQVLSFMRALARQHSIIVFIAIHDLNQALRFADQVLVIAEGTLQGCGRSEEVITEQMLRNVYRVQARIERCSRDERHIIVDDVVPGPT0003760_8379DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
D1-35_03571780yfcA_2COG0730putative membrane transporter protein YfcAATGCCTTTTGAACTCAGCGTCGACCTTTCTACCCTCGCTATCCTTGCCGTCGTCGCGTTCATCGCCGGCTTCATCGACGCCATCGCTGGCGGCGGTGGGCTGCTGACCACGCCGGCGTTGCTGACCGCCGGCCTGCCACCGCACCTGGTGCTGGGCACCAACAAGCTCAGCTCGACCTTCGGCTCAGCCACGGCCAGTTTTACCTTTTACAAGCGCAAGCTGTTTCACCCACGGCAATGGACCCACGCCCTCGTCGGCACGCTGGTCGGTGCCTTGGTCGGCGCCGTCGTTGCTCATTACCTGCCCGCCGAGTGGCTGAACAAGATGCTGCCGGTGATTGTCTTTGCCTGTGGCCTGTACCTGTTGTTCGGCGGCACGCCCAAGGCGCCGCTGGACAGCAATGCGCCGATCAAGAAGACGTGGCAGTCATCCCAGGGTTTCACCTTGGGTTTCTACGACGGCGTGGCCGGCCCGGGCACCGGTGCGTTCTGGACCGTCAGCAGCCTGCTGCTCTACCCCATCGACCTGGTCAAGGCCAGCGGCGTGGCCCGCAGCATGAACTTCGTCAGCAACATCGCGGCGCTGTCGGTGTTCATCTTTTCGGGCCAGGTGGATTGGATCATCGGCCTGAGCATGGGCCTGTCGGTGATGGTCGGCGCGTTCTTCGGCGCGCGCACCGCCATCAGCGGCGGCGCGAAGTTCATCCGCCCGGTATTCATCACCGTGGTGCTGGGCCTGACCGTGCGCCTAGCCTGGCAGCACTGGTTCAGCGTGGCCTAGMPFELSVDLSTLAILAVVAFIAGFIDAIAGGGGLLTTPALLTAGLPPHLVLGTNKLSSTFGSATASFTFYKRKLFHPRQWTHALVGTLVGALVGAVVAHYLPAEWLNKMLPVIVFACGLYLLFGGTPKAPLDSNAPIKKTWQSSQGFTLGFYDGVAGPGTGAFWTVSSLLLYPIDLVKASGVARSMNFVSNIAALSVFIFSGQVDWIIGLSMGLSVMVGAFFGARTAISGGAKFIRPVFITVVLGLTVRLAWQHWFSVANANANANANA
D1-35_03572831nudC_2NADH pyrophosphataseATGATTTCACGCTGGACCACCGCAGTACTCGACACCGACCTCGCGGGCGGCTGGGCCGTGGCCCGCAGCCCGGAGGGCTTTCTCTACGACGACAACGGCGCGTTGTTTCCCCGCGAGTGGCTCAAGCGCCAGGATGTGTCGATTCTCGCCGAGCACGGCATTGGCCATCTTGACGGCGAGCCGGTCTACCTGCTGGAACTGCATAGCTCGCTGGAGATTCCCGGCTGCAACTGGAAAGGCCTGCGGGCCTTCATGCTCGAGGACGACCACACGCTGTTCAAGGTGCTGGGTTATGCGGCGCAGATCGGCACCTGGGCTCGCGAACATCGCTTTTGTGGCAGTTGCGGCCAGCGCATGATCCAGGTGCCGCGAGAGCGGGCGATGTACTGTGAGGCATGCGATCTGCGGCATTACCCGCGAATCTCGCCGAGCATGATCGTGCTGATTACCCGTGGCGATGAGGTCTTGCTGGCCCGTTCGCCCCGGTTTGTCACCGGTGTCTACAGCACCCTGGCCGGGTTTGCCGAGCCGGGCGAGTCGGCCGAGGATTGCCTGGTCCGGGAGGTGCGCGAGGAGGTCAGCATCGAGGTGAAGAACATCCAGTACGTGGGCAGCCAGTGCTGGCCGTTTCCCCATTCGATGATGCTGGGTTTTCATGCCGAGTATGCCGGCGGTGAGATCGTGCCCCAGGAAGACGAGATCGAGGACGCCCAATGGTTCAGCGTCCATGACCTGCCGCCGTTGCCGGCCTCGCGCTCCATCGCCCGCTACCTGATCGACCTGTATGTCGCCCGCCGTCTAGGCCACGCTGAACCAGTGCTGCCAGGCTAGMISRWTTAVLDTDLAGGWAVARSPEGFLYDDNGALFPREWLKRQDVSILAEHGIGHLDGEPVYLLELHSSLEIPGCNWKGLRAFMLEDDHTLFKVLGYAAQIGTWAREHRFCGSCGQRMIQVPRERAMYCEACDLRHYPRISPSMIVLITRGDEVLLARSPRFVTGVYSTLAGFAEPGESAEDCLVREVREEVSIEVKNIQYVGSQCWPFPHSMMLGFHAEYAGGEIVPQEDEIEDAQWFSVHDLPPLPASRSIARYLIDLYVARRLGHAEPVLPGPGPT0013440_1971DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013440-nudC-K03426NANA
D1-35_03573813crtCOG1024Short-chain-enoyl-CoA hydrataseATGTCGCAATACCAAGCGTTCCACGTCGAACTTGCAGACAAAATCGCCCATGTGCAGATCAATCGCCCCGACAAGATCAATGCCATGAACGCCGCGTTCTGGAGCGAGATCATCGAGATCTTCCAGTGGATCGACGATACCGACGAAGTGCGGGTGGTGGTCCTGAGCGGTGCCGGCAAGCATTTTTCGTCGGGTATCGATCTGATGATGCTGGCCGGCGTGGCGAACGAACTGGGCAAGGACGTCGGCCGCAACGCCCGTGTGCTGCGGCGCAAGATCCTCGAACTGCAAGCCTCGTTCAACGCCGTGGACAATTGCCGCAAACCGGTTCTCGCGGCGATCCAGGGGTATTGCCTGGGCGGTGCCATCGACCTGATTTCTGCCTGCGACATGCGCTACGCGGCCGAGGATGCGCAATTCTCCATCAAGGAAATCGACATCGGCATGGCGGCCGATGTTGGCACATTGCAACGCTTGCCCCGGATCATCGGGGACGGCATGCTGCGTGAACTCGCTTATACGGGGCGCACCTTTGGTGCCGACGAAGCGCGCAGCATTGGTCTGGTCAATCGTGTCTACAGCGATACCGCCAGCCTGCTTGACGGAGTGATGGGCATCGCCCGGGAAATCGCCGCCAAGTCGCCGATCGCCATAGCCGGCACCAAGGAAATGATTGGCTACATGCGTGATCACGGCATCGACGACGGGCTGGAATACGTCGCTACGTGGAATGCCGCCATGCTGCAATCGAATGACCTGCGCGTGGCCATGGCCGCCCATATGAGCAAACAGAAACCCGAATTTCTGGATTGAMSQYQAFHVELADKIAHVQINRPDKINAMNAAFWSEIIEIFQWIDDTDEVRVVVLSGAGKHFSSGIDLMMLAGVANELGKDVGRNARVLRRKILELQASFNAVDNCRKPVLAAIQGYCLGGAIDLISACDMRYAAEDAQFSIKEIDIGMAADVGTLQRLPRIIGDGMLRELAYTGRTFGADEARSIGLVNRVYSDTASLLDGVMGIAREIAAKSPIAIAGTKEMIGYMRDHGIDDGLEYVATWNAAMLQSNDLRVAMAAHMSKQKPEFLDPGPT0001860_2901DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0001860-paaF|echA-K01692NANA
D1-35_035741491cusCCOG1538Cation efflux system protein CusCATGACCGACCGTTCGCTTTTCAACCTTGCCGCACCGCTGGCAGCCGCCCGTGGCTCGCGGGTATTGAGCCTGGCGCTGTGCGTGGCGCTGCTCAGCGCTTGCGCGATCGGCCCGGATTACCAGCGCCCGGCGGCCGCTGCGCCGGTGCAGTACAAGGAAGCCCAAGGGTGGCGCCAGGCCAACCCCAGCGACGCCTTGGCCCGGGGCGCCTGGTGGGAGCTGTACAGCGACGCCCGGCTGAATGAGCTGGTGGCAAAGCTCAACGCATCCAACCAGACCGTGGCCCAGGCCGAAGCCCAGTATCGTCAGGCCCAGGCGTTGGCGCGCAGTGCGCGGGGAGCTTTTTTCCCAACGGTCGACCTTACCGTCGGCAAGAACCGCTCCAGCCAAGGCACCGGCAGCAGCAGTTCGAGCCTGAGCAGTTCTTCCAGCGGCATTCGCGACACCTACAGCGCCCAGGCCGGGGTGAGTTGGGAAGCGGATGTCTGGGGCAAGTTGCGCCGCACCCTGGAAGCCGATGAAGCCAGCGCGCAAGCCAGCTTTGCCGACCTGGCGGCGATGCGCCTGAGCCAACAATCGGAACTGGTGCAGAACTACTTGCAGTTACGGGTCATCGACCAACAGAAGCGCTTGTTGCAGACCACGGTCGATAACTATCAGCGCTCATTAAAAATGACCGAAAACCAGTACCGCGCCGGGGTGTCGGGCAAGGACGCGGTGGCCCAGGCGCAGAACCAGCTCAAGACCACCCAGGGCGACCTGATCGACCTGATCTGGCAGCGGGCGCAGTTCGAAAATGCCATCGCCGTGCTGATCGGCCTGCCTCCCGCCGAATTCAGCCTGGCCGAAACCGAGGACGTCCCGGCGCTGCCGCAGGTCCCGGTGGCGGTACCCTCGCAGTTGCTTGAGCGGCGTCCGGACATCGCTTCAGCGGAACGCTCGGTGATGGCCGCCAACGCCAACATTGGCGTGGCGAAGGCGGCCTATTATCCGGACCTGACCCTGAGCCTGAGTGGCGGCTACAGCAGCAGTACCTACGATAACTGGATAAGTGTGCCGAACCGCTTCTGGTCGGTCGGGCCACAGCTGGCGATGACGCTGTTCGACGGCGGCCAGCGCTCGGCGGAAGTCGACCGCAGCGTCGCGGCGTACGACCAGACCGTGGCGACCTATCGGCAGACCGTGCTCGACGGTTTTCGTGAAGTCGAGAACTACATGATCCAGCTCAAGGTGCTCGAAGACGAAGCCCGCGTGCGCCAGGAAGCACTCGACGCCGCCCGCGAGTCCCTGCGCCTGACCCAGAACCAGTACCGGGCCGGCTTGATCGGCTATCTCGACGTGGTAACCGTCCAGGCCACCGCCCTGAGCAACGAACGCAGCATGCTGAGCCTGCAACAGAGCCGGTTGATCGCCAGCGTGCAACTGATCGCGGCGCTGGGCGGCGGGTGGGATGGGCAGTTGCAGGCGAGCGAACAGCCAGCAGCGGACTGAMTDRSLFNLAAPLAAARGSRVLSLALCVALLSACAIGPDYQRPAAAAPVQYKEAQGWRQANPSDALARGAWWELYSDARLNELVAKLNASNQTVAQAEAQYRQAQALARSARGAFFPTVDLTVGKNRSSQGTGSSSSSLSSSSSGIRDTYSAQAGVSWEADVWGKLRRTLEADEASAQASFADLAAMRLSQQSELVQNYLQLRVIDQQKRLLQTTVDNYQRSLKMTENQYRAGVSGKDAVAQAQNQLKTTQGDLIDLIWQRAQFENAIAVLIGLPPAEFSLAETEDVPALPQVPVAVPSQLLERRPDIASAERSVMAANANIGVAKAAYYPDLTLSLSGGYSSSTYDNWISVPNRFWSVGPQLAMTLFDGGQRSAEVDRSVAAYDQTVATYRQTVLDGFREVENYMIQLKVLEDEARVRQEALDAARESLRLTQNQYRAGLIGYLDVVTVQATALSNERSMLSLQQSRLIASVQLIAALGGGWDGQLQASEQPAADPGPT0028955_368DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-CHLORAMPHENICOL|TRIMETHOPRIN_EFFLUX_PUMP_BpeEF-OprC,PGPT0028955-oprC|opcM-K18903NANA
D1-35_035753105mdtC_1COG0841Multidrug resistance protein MdtCATGAACCTCTCCGGCCCCTTCATCCGCCGCCCGGTAGCAACCATGCTGCTGAGCTTCGCCATCATGCTGCTCGGCGGTGTGTGCTTTGGCTTGCTGCCGGTGTCGCCGCTGCCGCAGATGGATTTCCCGGTGATCGTGGTCCAGGCCAACCTGCCGGGGGCGAGTCCCGAGGTGATGGCTTCCACCGTGGCGACGCCGCTGGAGCGTTCCTTCGGCGCGATCGCCGGGGTCAACACCATGAGCAGTCGGTCCAGCCAGGGTTCGACCCGGGTGATCCTGCAATTCGACCTGGACCGCGACATCAACGGCGCGGCGCGGGAGGTGCAGGCGGCCATCAACGCCTCGCGCAACCTGCTGCCCAGCGGGATGCGCAGCATGCCGACCTACAAGAAGGTCAATCCGTCCCAGGCGCCGATCATGGTGCTGTCGCTGACCTCGGATGTGCTGGAGAAAGGCCAGCTCTACGACCTGGCCTCGACGATTCTGTCCCAGAGCCTGTCCCAGGTGTCGGGCGTGGGCGAGGTGCAGATCGGCGGCAGTTCGCTGCCGGCGGTGCGCATCGAACTGGAGCCGCAATTGCTCAATCAGTACGGCGTGGCGCTGGACGACGTGCGAACGGCGATTGCCAACAGCAACGTGCGCCGGCCCAAGGGTTCGGTCGAGGACGACCAGCGGATGTGGCAAGTCCAGGCCAACGACCAGCTGGAAAAGGCCAAGGATTACGAAACACTGATCATCCGCTATCAGGATGGCTCGGTATTGCGGCTCAAGGACGTGGCCAAGGTCAGCGACGGCGTCGAGGATCGCTACAACAGCGGTTTCTTCAATGACGATGCCGCCGTGTTGCTGGTGATCAATCGCCAGGCCGGCGCCAACATCATCGAGACCGTCAACGAGATCAAGGCCCAGTTGCCGGCCTTGCAGGCCGTGTTGCCCGCCAGCGTCAAGCTGAACCTGGCGATGGATCGCTCGCCGGTGATCAAGGCGACCCTGCACGAAGCGGAAATGACCTTGCTGATCGCCGTCGCCCTGGTGGTACTGGTGGTGTTCCTGTTTCTCGGCAATTTCCGCGCTTCGCTGATCCCGACCCTGGCGGTGCCGGTGTCGCTGGTGGGCACGTTCGCGGTGATGTATCTGTACGGTTTCTCGCTCAACAACTTGTCGCTGATGGCGTTGATCCTCGCCACCGGGCTGGTGGTGGACGATGCCATCGTGGTGCTGGAAAACATCTCCCGGCACATCGATGAGGGCGTGCCGCCGCTGAAGGCCGCGTATATGGGGGCCGAGGAGGTGGGCTTCACGCTGCTGTCGATGAACGCCTCGCTGGTGGCGGTGTTCCTGTCGATCCTGTTCATGGGCGGGATCGTCGAGAGCCTGTTCCGGGAGTTTTCCATCACCCTGGCGGCGGCCATCGTCGTCTCGCTTATCGTATCCCTGACGCTTACGCCGATGCTCTGCGCGCGCTGGCTCAAACCTCACGTGCCAGGGCAGGAGAACCGCTTGCAGCGTTGGAGCCAGGGCGCCAACGAAAGAATGGTCCGTGGCTATGCGCGCACGCTGGACTGGGTACTGCGCCATCGGCGCCTGACCTTGCTCAGCCTGCTGGTGACCATCGGCGTGAACATCGCGTTGTACGTGGTGGTGCCGAAAACCTTCATGCCCCAGCAGGACACCGGCCAGTTGATCGGCTTCGTGCGCGGTGACGACGGGCTGTCGTTCAACGTGATGCAACCGAAGATGGAGATCTTCCGTCGCGCGGTGCTCAAGGACGAGGCCGTACAGAGCGTGGCCGGTTTTATCGGCGGCAACAACGGCACCAACAATGCCTTCATGCTGGTGCGCCTCAAGCCGATCAACGAGCGCCGGATTTCCGCGCAGAAAGTCATCGAGCGCCTGCGCAAGGAAATGCCCAAGGTGCCCGGCGGCCAGTTGATGCTGATGGCCGACCAGGACCTGCAGTTCGGTGGCGGCCGCGAGCAGACCACCTCGCAATATTCCTACATTCTGCAGAGCGCCGACCTGGCGTCGCTGCGCGAGTGGTACCCCAAGGTCGTCGCGGCGTTCCGCGCCTTGCCGGAGCTTACCGCCATCGATGCCCGTGACGGTGGCGGCGCACAGCAGGTAACCCTGATTGTGGATCGCGACCAGGCCAAGCGCCTGGGCATCGACATGGACATGGTCACATCGGTGTTGAACAACGCCTACAGCCAGCGGCAGATATCAACCATCTACGACAGCCTCAACCAGTACCAGGTGGTCATGGAGGTCAACCCCAAATACGCCCAGGACCCCAACACCCTCGAACAGGTCCAGGTGATTACCGCCGATGGCGCACGGGTCCCGCTGTCCGCGATTGCCCATTACGAGAACAGCCTGGAAGACGACCGGGTCAGCCATGAAGGCCAGTTCGCTTCCGAGGGCATCTCCTTCGATATGGCCGAAGGCGTGACCGTGGAGCAGGGCACGGCCGCCATCGAACGGGCGATCGCCAAGCTGGGAATGCCCGAAGACGTCATCGCGAAAATGGCCGGGACCGCCGACGCTTTCGCCGCCACCCAGAAAAGCCAGCCGTTCATGGTGCTCGGGGCGCTGCTGGCGGTGTATCTGGTCCTGGGCGTGCTGTATGAAAGCTACATCCACCCGTTGACCATCCTGTCCACGTTGCCTTCGGCCGGCGTTGGCGCGTTGCTGTCGATCTACGTTTTGGGCAGCGAGTTCAGCCTGATCTCGCTGCTGGGGCTGTTCCTGCTGATTGGTGTGGTGAAGAAAAACGCGATCCTGATGATCGACCTCGCGCTGCAACTGGAGCGCGCCGGCCAGACGCCGTTGGAGTCGATCCGCAGTGCTTGCCTGTTGCGCTTGCGGCCGATCCTGATGACGACGGTGGCGGCGATCCTCGGTGCCTTGCCGCTGTTGCTCGGCGGTGCCGAAGGTTCGGAGATGCGCCAGCCGCTGGGCCTGACCATCATCGGCGGCCTGGTGTTCAGCCAGGTCCTGACGCTCTACACCACGCCGGTGGTTTACCTTTATCTCGATAACCTGCGCCACCGCTTCAACCGCTGGCGTGGGGTGCGCACCGATGCTGCCCTGGAAACTCCGCTATGAMNLSGPFIRRPVATMLLSFAIMLLGGVCFGLLPVSPLPQMDFPVIVVQANLPGASPEVMASTVATPLERSFGAIAGVNTMSSRSSQGSTRVILQFDLDRDINGAAREVQAAINASRNLLPSGMRSMPTYKKVNPSQAPIMVLSLTSDVLEKGQLYDLASTILSQSLSQVSGVGEVQIGGSSLPAVRIELEPQLLNQYGVALDDVRTAIANSNVRRPKGSVEDDQRMWQVQANDQLEKAKDYETLIIRYQDGSVLRLKDVAKVSDGVEDRYNSGFFNDDAAVLLVINRQAGANIIETVNEIKAQLPALQAVLPASVKLNLAMDRSPVIKATLHEAEMTLLIAVALVVLVVFLFLGNFRASLIPTLAVPVSLVGTFAVMYLYGFSLNNLSLMALILATGLVVDDAIVVLENISRHIDEGVPPLKAAYMGAEEVGFTLLSMNASLVAVFLSILFMGGIVESLFREFSITLAAAIVVSLIVSLTLTPMLCARWLKPHVPGQENRLQRWSQGANERMVRGYARTLDWVLRHRRLTLLSLLVTIGVNIALYVVVPKTFMPQQDTGQLIGFVRGDDGLSFNVMQPKMEIFRRAVLKDEAVQSVAGFIGGNNGTNNAFMLVRLKPINERRISAQKVIERLRKEMPKVPGGQLMLMADQDLQFGGGREQTTSQYSYILQSADLASLREWYPKVVAAFRALPELTAIDARDGGGAQQVTLIVDRDQAKRLGIDMDMVTSVLNNAYSQRQISTIYDSLNQYQVVMEVNPKYAQDPNTLEQVQVITADGARVPLSAIAHYENSLEDDRVSHEGQFASEGISFDMAEGVTVEQGTAAIERAIAKLGMPEDVIAKMAGTADAFAATQKSQPFMVLGALLAVYLVLGVLYESYIHPLTILSTLPSAGVGALLSIYVLGSEFSLISLLGLFLLIGVVKKNAILMIDLALQLERAGQTPLESIRSACLLRLRPILMTTVAAILGALPLLLGGAEGSEMRQPLGLTIIGGLVFSQVLTLYTTPVVYLYLDNLRHRFNRWRGVRTDAALETPLPGPT0003595_629DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0003595-mdtC-K07789NANA
D1-35_035763096mdtB_2COG0841Multidrug resistance protein MdtBATGAATCTCTCGCGGCTGTTCATCCTTCGCCCGGTCGCCACCACGTTGAGCATGCTGGCGATTGTCCTGGCCGGCCTGATTGCCTATCGGCTGCTGCCGGTGTCGGCACTGCCCCAGGTCGACTACCCGACCATCCGCGTGATGACGCTGTACCCGGGCGCCAGTCCCGACGTCATGACCAGCGCCGTGACCGCGCCCCTGGAGCGGCAGTTCGGGCAGATGCCGGGCCTCACCCAAATGGCTTCCACCAGTTCCGGTGGTGCGTCGGTGATCACCCTGCGTTTCAATCTGGACATCAACATGGATGTCGCCGAGCAGCAGGTGCAGGCCGCGATCAACGCCGCGACCAATCTGTTGCCAACCGATCTGCCGGCGCCGCCGGTGTACAACAAGGTCAACCCGGCGGACACCCCGGTGCTGACGCTGGCGATCACCTCCAAGACCATGCTGCTGCCCAAGCTCAATGACCTGGTGGACACGCGAATGGCGCAGAAGATCGCCCAGATCAGCGGCGTCGGCATGGTGACCATCGCCGGCGGCCAGCGCCAGGCCGTGCGGATCAAGGTCAACCCGGAGGCACTTGCGGCCGCCGGGCTGAACCTGGCCGATGTGCGGACCCTGATCGGTGCTTCCAACGTCAACCAGCCCAAGGGCAACTTCGACGGCCCGACGCGGGTCTCGATGCTCGACGCCAACGATCAGCTGACCTCGCCCAAGGACTACGCCGAACTGATCCTGGCCTACGCCAACGGCGCGCCATTGCGGCTCAAGGACGTGGCACAGATCGTCGACGGCGCGGAGAACGAACGCCTCGCCGCCTGGGCCAACGAAAACCAGGCCGTGCTACTGAACATCCAGCGCCAGCCCGGGGCCAACGTCATCGAGGTGGTGGACCGGATCAAGGCGCTGCTGCCGAGCATCACCGATAACCTGCCGGCTGGCCTCGACGTTACCGTGCTGACCGACCGCACCCAGACCATCCGCGCCTCCGTCACCGATGTGCAGCATGAACTGCTGATCGCCATTGCCCTGGTGGTGATGGTGACGTTCCTGTTCCTGCGGCGGGTCAGCGCCACGATCATTCCGTCGGTGGCCGTGCCGTTGTCGTTGATCGGTACATTCGGCGTGATGTACCTGGCCGGGTTTTCCGTCAACAACCTGACCCTGATGGCCCTGACCATCGCCACCGGTTTTGTGGTGGACGATGCCATCGTCATGCTGGAGAACATTGCGCGCTTCATCGAGGAGGGCGACAGCCCGATGCAAGCCGCGCTCAAGGGCGCCAGGCAGATCGGTTTCACCCTGATTTCCCTGACGCTGTCGTTGATCGCGGTGCTGATCCCGCTGTTGTTCATGGCGGACGTGGTCGGCCGATTGTTCCGCGAGTTCGCCATCACCCTGGCAGTGGCGATCCTGATTTCTTTGGTGGTGTCCCTGACCCTGACGCCGATGATGTGCGCCCGCTTGCTCAAGCGCGAGCCCAAGGAACAGGAGCAGGGCCGTTTCTACCGGGCCAGCGGTGCCTGGATCGACTGGTTGATCGCCGCCTACGGGCGCAAGTTGCAATGGGTGCTCAAGCATCAGCCGCTGACCCTGCTGGTGGCGGTGGGCAGCCTGGTGCTGACGGTGGTGTTGTACCTGGCCGTGCCCAAGGGCTTTTTCCCGGTGCAGGACACGGGCGTGATCCAGGGCATTTCCGAAGCGCCGCAGTCGATTTCCTTCGCCGCCATGAGCGAGCGCCAGCAGCAGCTGGCCAAGGTCATCCTCGCCGACCCGGCGGTGCAGAGCCTGTCCTCTTACATCGGTGTCGACGGCGACAACGCCACGCTCAATAGCGGACGCCTGCTGATCAACCTCAAGCCCCACAGCGAGCGGGACGACAGCGCCAGCGAGATCATCACCCGCTTGCAACCGCAGCTCGACCGGCTGGTCGGCATTCGCCTGTTCATGCAGCCGGTGCAGGACCTGACCATCGAAGACCGGGTCAGCCGCACCCAGTACCAGTTCAGCCTGTCATCGCCGGACGCCGAGTTGCTCAGCCTGTGGAGCGGTCGTCTGGTCGAGGCCCTGGCCCAACAGCCGGAACTGACCGACGTCGCCAGTGACCTGCAGGACAAAGGCTTGCAGGTCTACCTGGTCATCGATCGCGACGCCGCCTCGCGCCTGGGCGTGTCGGTGTCGAACATCACCGATGCGCTGTACGACGCTTTCGGCCAGCGACAGATCTCCACCATCTATACCCAGGCCAGCCAGTACCGTGTGGTGCTTCAGGCCCAGGCCGGGGAAAATCTCGGGCCGCAGGCGCTGGACCAGATCCACGTCAAGACCACTGACGGCGGCCAGGTCCGATTGTCGAGCCTGGCCCGTGTCGAAGAGCGTCAGGCGCAACTGGCAATCGCCCACATCGGCCAGTTCCCGGCGGTGATGATGTCGTTCAACCTGGCGCCGGGCGTGGCCCTCGGGCACGCGGTGGAGGTGATCGAAAAGGTCCAGCAGGATATCGGCATGCCAGTGGGCGTGCAGACCGAGTTCCAGGGCGCGGCGCAGGCGTTCCAGGCATCGTTGTCGAGCACTTTGCTGCTGGTCCTGGCTGCGGTGGTGACCATGTATATCGTGCTGGGGGTCTTGTACGAAAGTTACATCCATCCGATCACCATCCTGTCCACCTTGCCCTCGGCGGCTATCGGCGCGTTGCTGGCGTTGATCCTCACCGGCAATGACCTGGGCATGATCGCGATCATCGGCATCATCCTGCTGATCGGTATCGTCAAGAAAAACGCGATCATGATGATCGACTTCGCCCTGGACGCCGAACGCAACCAGGGCCTGGCTCCGCAGACGGCCATCTACCAGGCCGCGTTGCTGCGCTTTCGGCCAATCCTTATGACCACGCTGGCGGCGCTGTTTGGCGCGGTGCCCCTGATGCTCGCCACCGGCTCCGGCGCCGAGTTGCGCCAGCCGTTGGGCCTGGTGATGGTGGGCGGGTTGCTGGTGAGCCAGGTGTTGACCTTGTTCACCACCCCGGTGATCTACCTGTACTTCGATCGTCTGGGCCGTCGGTTTGCCCGGCCTGAGGAGAAAGAGGTGCGGGTATGAMNLSRLFILRPVATTLSMLAIVLAGLIAYRLLPVSALPQVDYPTIRVMTLYPGASPDVMTSAVTAPLERQFGQMPGLTQMASTSSGGASVITLRFNLDINMDVAEQQVQAAINAATNLLPTDLPAPPVYNKVNPADTPVLTLAITSKTMLLPKLNDLVDTRMAQKIAQISGVGMVTIAGGQRQAVRIKVNPEALAAAGLNLADVRTLIGASNVNQPKGNFDGPTRVSMLDANDQLTSPKDYAELILAYANGAPLRLKDVAQIVDGAENERLAAWANENQAVLLNIQRQPGANVIEVVDRIKALLPSITDNLPAGLDVTVLTDRTQTIRASVTDVQHELLIAIALVVMVTFLFLRRVSATIIPSVAVPLSLIGTFGVMYLAGFSVNNLTLMALTIATGFVVDDAIVMLENIARFIEEGDSPMQAALKGARQIGFTLISLTLSLIAVLIPLLFMADVVGRLFREFAITLAVAILISLVVSLTLTPMMCARLLKREPKEQEQGRFYRASGAWIDWLIAAYGRKLQWVLKHQPLTLLVAVGSLVLTVVLYLAVPKGFFPVQDTGVIQGISEAPQSISFAAMSERQQQLAKVILADPAVQSLSSYIGVDGDNATLNSGRLLINLKPHSERDDSASEIITRLQPQLDRLVGIRLFMQPVQDLTIEDRVSRTQYQFSLSSPDAELLSLWSGRLVEALAQQPELTDVASDLQDKGLQVYLVIDRDAASRLGVSVSNITDALYDAFGQRQISTIYTQASQYRVVLQAQAGENLGPQALDQIHVKTTDGGQVRLSSLARVEERQAQLAIAHIGQFPAVMMSFNLAPGVALGHAVEVIEKVQQDIGMPVGVQTEFQGAAQAFQASLSSTLLLVLAAVVTMYIVLGVLYESYIHPITILSTLPSAAIGALLALILTGNDLGMIAIIGIILLIGIVKKNAIMMIDFALDAERNQGLAPQTAIYQAALLRFRPILMTTLAALFGAVPLMLATGSGAELRQPLGLVMVGGLLVSQVLTLFTTPVIYLYFDRLGRRFARPEEKEVRVPGPT0003590_994DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0003590-mdtB-K07788NANA
D1-35_035771317mdtA_4Multidrug resistance protein MdtAATGGTTGACCACTCCATGCAATCCTCTGTTTCCCGCAAATCCCGTCGCTGGCTGTTCGGCCTGTTTGTCGTACTGGTCATCGCGCTGCTGGCCTGGAAGTTCTGGCCCGCCAGTACCGACCCGAAAAACGGCGCAGAGCAGAAAGCCGCGGCTGGACACGCGGGACGCTCGGGTGGCATGCGGCCGGGGTTTGGCGGGGCTACGGGGCCGATTCCGGTTCGGGTGGCGCCAGCGGTCACCGGGGATTTCCCCCTGTATTACAAGGCGCTGGGCACGGTCACCGCGCTCAATACGATCAATGTTCGCAGCCGGGTCGGCGGCGAGTTGGTGAAGATCGCCTTTGAAGAAGGGCAGATGGTCAAGGCCGGCGACCTGCTGGCGGAAATCGACCCACGTCCTTACCAGAATGCCTTGCTCCAGGCCGAAGGCACACTGCTGCAAAACCAGGCCCAACTGAAAAATGCCCAGGTCGACCTGGAACGCTATCGCGGCCTGTACGCCGAAGACAGTATCGCCAAGCAGACCCTCGATACCGCCGCTGCGCTGGTGGGCCAGTACCAGGGGACGGTCAAGACCAACCAGGCGGCGGTCAACGACGCCAAGCTCAACCTGGAATTCACCAGGATCCGCGCGCCGATCAGCGGCCGCGTAGGTTTGCGTCAACTGGACATCGGCAACCTGGTGGCCGCCAACGACACCACGGCCCTGGCCGTCATCACCCAGACCCAGCCCATCAGCGTCGTGTTCACCCTGCCGGAAAACAACCTCGAAACCGTGCTCGCCCGCTATCGCAGCGGAGCGAAACTACCGGTCGAGGCCTGGGACCGTGGCGATGTGAAACTCCAGGCCAGCGGTGTTCTGCAAAGCCTGGACAACCAGATCGACATCACCACCGGCACCTTGAAATTCAAGGCGCGCTACGAAAACCGCGACCAGTCGCTGTTTCCCAACCAGTTCGTCAACGTGCGCTTGCTGGCCGACACCCTCAAGGGCGTGGTCCTGGCGCCGACCGCAGCCATCCAGTTCGGCACCAACGGCACCTTCGTCTACGCCCTTGATGGCGACAGGAAAGTCACCATCAGGAAGCTCAAGATCGGTGCCAGCGATGGCGAAAAAACCATTGTCACCGAGGGCCTGGCCGCCGGCGACAGGGTGGTGCTCGAAGGCACCGACCGCTTGAAGGAGGGCAGCGAGGTGGAAGTGGTCAACGACAGCCAGGAGGTGCCGACCACGCCGACCGAACACCTGCAAGGCAAGACGGCCGCGGCCCCGACTGAGCCGACCGCGGCCGACAAGGCGAAAAAGGGCGGCGCATGAMVDHSMQSSVSRKSRRWLFGLFVVLVIALLAWKFWPASTDPKNGAEQKAAAGHAGRSGGMRPGFGGATGPIPVRVAPAVTGDFPLYYKALGTVTALNTINVRSRVGGELVKIAFEEGQMVKAGDLLAEIDPRPYQNALLQAEGTLLQNQAQLKNAQVDLERYRGLYAEDSIAKQTLDTAAALVGQYQGTVKTNQAAVNDAKLNLEFTRIRAPISGRVGLRQLDIGNLVAANDTTALAVITQTQPISVVFTLPENNLETVLARYRSGAKLPVEAWDRGDVKLQASGVLQSLDNQIDITTGTLKFKARYENRDQSLFPNQFVNVRLLADTLKGVVLAPTAAIQFGTNGTFVYALDGDRKVTIRKLKIGASDGEKTIVTEGLAAGDRVVLEGTDRLKEGSEVEVVNDSQEVPTTPTEHLQGKTAAAPTEPTAADKAKKGGAPGPT0003585_397DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0003585-mdtA-K07799NANA
D1-35_03578552tpxCOG2077Thiol peroxidaseATGGTTAACTCCGGCCTCACCATTTTCAAACCTGTCAGAAGGAATCCGTTCATGGCTCAAGTCACTCTCAAAGGCAACCCTGTCCAAGTCAACGGCCAGTTGCCCCAAGCCGGTTCCAAGGCGCCAGCCTTTTCCCTGGTTGCCGGCAATCTGTCGGACGTTTCCCTGAAGGATTTCGCCGGCAAGCGCAAAGTGCTGAACATTTTCCCAAGCGTCGACACGCCGACCTGCGCCACTTCCGTGCGCAAGTTCAACGCCCAGGCCAACGACCTGAACAACACCGTAGTGCTGTGCATCTCCGCCGACCTGCCGTTCGCCCAGGCCCGTTTCTGTGGTGCCGAAGGCCTGGAAAACGTGCAGAACCTGTCGACCCTGCGCGGAGCCGAGTTCATTGAGAACTACGGCGTTGCCATTGCCGACGGCCCGCTCAAAGGCCTGACCGCCCGTGCCGTGGTGGTGCTGGATGAAAACGACACCGTGCTGCACAGCGAGCTGGTCAAGGAAATCGCCGAAGAGCCGAACTACGACGCGGCGCTGGCTGTCCTGAAGTAAMVNSGLTIFKPVRRNPFMAQVTLKGNPVQVNGQLPQAGSKAPAFSLVAGNLSDVSLKDFAGKRKVLNIFPSVDTPTCATSVRKFNAQANDLNNTVVLCISADLPFAQARFCGAEGLENVQNLSTLRGAEFIENYGVAIADGPLKGLTARAVVVLDENDTVLHSELVKEIAEEPNYDAALAVLKPGPT0013105_1199DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013105-tpx-K11065NANA
D1-35_03579672hypothetical proteinATGAAGTTCGCCTCCATGATCGGCACCGTTTGCATCGCCTCGCTCGCGCTCGCGGGCTGCTCCAGCAAAGTCACCCAGCCGGACGAGTATTCCGGGTTCCTGGGGGACTACAGCCGGCTCAAGGAAGAAAAATCGCCGTCGGGGGCCGAGGTGATGCGCTGGGTCGATCCGAAGATCGATCTGGCGAAGTATTCCCGCATCTATATCGAACCGACCCAGCTGTACCCCAAGCCGCAAGCGACGGTGAAAATCCCGTCGGCAACATTGGCCGGCATCACCAGCTACTACGACCAGGCGCTCAAGCGTGAAGCCGGCAAGTCCCTGCCGCTGGCGACCAGCCCTGGCCCGGGTGTCCTGGTGGTGCGGGCGGCGATCACCGCGGTCAGCAGCAAGACCGAGGGCCTGAAACCCTACGAAGTGATTCCGATCGCCCTGGTGGCCGCCGCGGTCAGTACCGCCAGCGGCATTCGTGACCAGGAAACCACCCTGGGCACCGAAGCGGTGTTTCTCGACGGTGGCAATAATGCGGTAATCGCCCAGGTGGTGCGCAAGGGCACGGGTAAACCGTTGTCGAACGAGTCCCAGGTCATGAAGCCCGATGATGTCAAAGGAGTCATCGATGGCTGGGCGGCGGATCTGCATCAGTCATATTTGCAGCTCAAGGCTAAATAGMKFASMIGTVCIASLALAGCSSKVTQPDEYSGFLGDYSRLKEEKSPSGAEVMRWVDPKIDLAKYSRIYIEPTQLYPKPQATVKIPSATLAGITSYYDQALKREAGKSLPLATSPGPGVLVVRAAITAVSSKTEGLKPYEVIPIALVAAAVSTASGIRDQETTLGTEAVFLDGGNNAVIAQVVRKGTGKPLSNESQVMKPDDVKGVIDGWAADLHQSYLQLKAKPGPT0004500_2DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0004500-dppA-K12368NANA
D1-35_03580495hypothetical proteinATGGACGATGTACAGCAATTGGGCGAAATGCTCCGTCACTACGCCGACAGCGAAGCGCACAAGAAGCAGCAGCACCAGGCCCACTCGGCAGTATGGGCTGAGCGGATCGAGGCGTTGTACGGGCAGATCGAGCAATGGTTGGCGCCGGTCCTGGCGCCGAACCTGCTGGAGTTGAGCCGTGGCGCGTATGTCGCCCATGGGCCGAGTGTTCCTGCCGAGACGTCGACTTTCAAGACGGAAAAACTGACGTTGTCCATTACCGGTAAACCGGTTGAGTTTGTGCCGGATGTGATGGGCGCGGGCGGGTTGATTTCCTTGTCGATCATCGGCCTGACCGCCACTCGCCACGGCAGCATTTCCCTGGTTTGCCAGCCGCCATCAACGCAGTGGCAATGGCGCAGGACCAACGGGCTGAAAGATCCGGACACCTACGTCTTCGATGCAAATTTCCTCGCTCAGCAGTTGCAGAGTCTTATACCGCGCGAGCGAAGCTGAMDDVQQLGEMLRHYADSEAHKKQQHQAHSAVWAERIEALYGQIEQWLAPVLAPNLLELSRGAYVAHGPSVPAETSTFKTEKLTLSITGKPVEFVPDVMGAGGLISLSIIGLTATRHGSISLVCQPPSTQWQWRRTNGLKDPDTYVFDANFLAQQLQSLIPRERSNANANANANA
D1-35_03581798COG1305putative proteinATGAAATTGTCCATTCGCCACGACACGACCTACAGCTATGCCGACGAAGTCTGCACCAGCATCCAGTTCCTGCGCCTGACGCCCAAGGACAGCCCGCGCCAGCGCATTCTGCAATGGCACCTGGAGTTGCCACGCCTGGTGCGCAGCCAGCTCGATCCTTACGGCAACATCCTGCATGTCATGACCATGGACGAGCCGCATGGGGCTCTGGTACTGACCGCTTACGGTGAAGTACAGATCGACCAGACCGTGGAGATGGAGCCTGACAGCCAGTCACCGCTGCCGTTCCTGCGCACCAGCCGTCTCAGCCAGGCTGATGAGAGCCTCAGCGCTTTCGCCGTGGCCCGGTGCGGGGCACGGCGTGATCGTTCGGCGCTGGCCGACTTGATGAATGGCCTTGCCGATCGCATGGCCTACCTTCCCGGCACTACCGCGGTCAGCAGCACGGCGGCCGAGGCGTTTGCCGGCGGTGCCGGCGTCTGCCAGGACCACGCCCATGCATTCGTGGCGTGTGCCCGCAGCCTGGGCGTGCCGGCGCGCTATGTGTCCGGCTACCTGTGCACCGAAGACGAAAACCACCTGGCGAGCCATGCCTGGGCTGAAGCCTGGCTGGGGGATGGCTGGTACAGTTTCGACGTAACCAATCGCCTGACCCGTCCCGATCGCCACCTGAAACTGGCGATCGGCCTGGACTATCTCGACGCCTGCCCGGTGCGCGGCATGCGCCGGGGCGGCGGGGCGGAGCAGATGCACGCGCGGGTGCAGGTGAGCTCGATGGTGCAGGTGCAGCATCAGTAAMKLSIRHDTTYSYADEVCTSIQFLRLTPKDSPRQRILQWHLELPRLVRSQLDPYGNILHVMTMDEPHGALVLTAYGEVQIDQTVEMEPDSQSPLPFLRTSRLSQADESLSAFAVARCGARRDRSALADLMNGLADRMAYLPGTTAVSSTAAEAFAGGAGVCQDHAHAFVACARSLGVPARYVSGYLCTEDENHLASHAWAEAWLGDGWYSFDVTNRLTRPDRHLKLAIGLDYLDACPVRGMRRGGGAEQMHARVQVSSMVQVQHQNANANANANA
D1-35_03582951hypothetical proteinATGCTTTCAAGAACCGCTTCGGACCTCTATTGGATGTCCCGCTACCTGGAGCGCGCCGAGAACCTGGCGCGCATGCTCGAAGTCAGTTATTCGCTGTCGTTGATGCCCCAGGCCGGGCGCAGCGACGGGCATGCCGAGCTGGCGATGTCGCTGTTGGCGGCCGGTACGCTGGACGATTACAACGCCCGTTATGACGCGCTCAACAGCGAGCGCATGCTGCATTTCTTTGCTCTGGATGAAGCCAACCCCGGCAGTATCTATAGCTGCCTGCGTGCCGCGCGCACCAATGCCCACGCCGTGCGCGGACGCATCACCGCCGACATGTGGGAAAACATCAACGCGACCTGGCTGGAGATGCGCAACATCGCCAGTAACGGCCTGGGCCGCTACGGCATCAGCCATTTCTGCGAATGGGTCAAGGAGCGTTCGCACCTGTTCCGCGGCGCGACGTCGGGCACGATCATGCGCAACGACGCCTACAGTTTCATTCGCCTGGGAACCTTCATCGAGCGCGCGGACAACACCTTGCGCCTGCTGGACGCGCGCTACGAGATGTTCGGCGAGGAGTCGGAGGAGGTCAGCGACAACTCGGCGCGCGGCTATTACCAATGGAGTGCCTTGTTGCGGGCGCTGTCTTCGTTCGAGGCGTTCAACGAGATCTACCGTAACGCTCCCAACGCCGAGCAGGTCTCGGAGATGTTGCTGCTGCGGGCCGACGTGCCGCGCTCGCTGCATGCGTGCATCGAAGAACTGGACCATATCCTCGCCAGCCTGCCTGGCAACAACGGTCGTCCGGCCCAGCGCCTGGCCGCGGAATTGAATGCGCGCCTGCGTTATTCCGGCATCGACGAGATCCTCGCGTCGGGCCTGCATCAATGGCTGACCGAACTCATCGGCCAGATCCGCCACCTGGGCCAGACCGTCCACGATGCCTACCTGGAGGTGGTATGAMLSRTASDLYWMSRYLERAENLARMLEVSYSLSLMPQAGRSDGHAELAMSLLAAGTLDDYNARYDALNSERMLHFFALDEANPGSIYSCLRAARTNAHAVRGRITADMWENINATWLEMRNIASNGLGRYGISHFCEWVKERSHLFRGATSGTIMRNDAYSFIRLGTFIERADNTLRLLDARYEMFGEESEEVSDNSARGYYQWSALLRALSSFEAFNEIYRNAPNAEQVSEMLLLRADVPRSLHACIEELDHILASLPGNNGRPAQRLAAELNARLRYSGIDEILASGLHQWLTELIGQIRHLGQTVHDAYLEVVNANANANANA
D1-35_035831410COG2308putative proteinATGCCCCACGCTTTTTTCAATGAAATGTATGACGCACAGGGTGACTGCCGCCCGCATTACCAAGCCTTCTCGCGCTGGCTGGCGGATACGCCGCTGGAGCTGTTGGAGCAACGCCGCCGCGAAGCCGACCTGCTGTTTCATCGCGCGGGCATCACGTTCACCCTCTACGGCGACGAGCAGGGCACCGAGCGCCTGATCCCCTTCGACATCATCCCCCGCAGCATCAAGGCCAGCGAATGGCAGACGGTCGAGCGTGGCTGCATCCAGCGGGTCCAGGCCCTGAACATGTTCCTGGCCGATATCTACCACGGGCAACGCATCCTCAAGGAAGGCATCATCCCGGCCGAGCAAGTGCTGGCCAACGAGGGCTACCAGATCGCAATGCAGGGCCTGGACCTGCATCGTGGCATCTACGCGCACATTGCCGGTGTCGACCTGGTTCGCGACGGCGACGGCAGCTACTACGTGCTGGAGGACAACCTGCGCACGCCCAGCGGCGTGAGCTACATGCTCGAAGACCGCAAGATGATGATGCGCCTGTTCCCCGAGTTGTTCGCCGCCCAGCGCGTGGCGCCCATCGACCACTATCCGAACCTGCTGCTCGATACCCTCAAAAGCTCAAGTCCACTCGACAACCCTACCGCCGTGGTGCTGACCCCAGGGCGTTTCAACAGTGCCTATTTCGAACATGCGTTCCTGGCCCGGGAAATGGGCGTGGAGCTGGTAGAGGGCGCCGACCTGTTCGTGCGTGACGACCACGTCTATATGCGCACCACCGCCGGCCCCCAGCAGGTGGATGTGATTTACCGTCGCCTTGACGACGCCTACCTCGATCCGCTGTCGTTCAATCCCGATTCGATGCTCGGCGTGCCCGGGCTGGTCGCGGTCTATCGTTCCGGCAACGTGGTGCTGGCAAACGCCGTCGGCACTGGCGTGGCGGACGACAAGTCGATCTACCCCTATGTCGACGAGATGATCCGCTTCTACCTCACCGAAGAGCCGATCCTGAAGAACGTGCCCACCTGGCAGTGCCGCAAACCCCAGGACCTGTCCCATGTGCTGGCGAACCTGCCGGACCTGGTAGTCAAGGAAACCCAGGGCTCCGGCGGCTACGGCATGCTGGTGGGGCCGGCCGCCACCGCAGCGGAAATCGAGGATTTCCGTGCCCGTCTCAAGGCCCGGCCGGAGGCGTACATCGCCCAGCCGACCTTGAGCCTGTCCACGTGCCCGACTTTTGTCGAAAGCGGCATCGCCCCGCGCCACATCGACCTGCGTCCCTTCGTGCTGTCCGGCAAGGAAACCCGCCTGGTGCCCGGCGGCCTGACCCGCGTGGCGCTGCGCGAAGGCTCGCTGGTGGTGAACTCGTCCCAGGGTGGCGGCACCAAGGACACTTGGGTAGTGGAGGACTAAMPHAFFNEMYDAQGDCRPHYQAFSRWLADTPLELLEQRRREADLLFHRAGITFTLYGDEQGTERLIPFDIIPRSIKASEWQTVERGCIQRVQALNMFLADIYHGQRILKEGIIPAEQVLANEGYQIAMQGLDLHRGIYAHIAGVDLVRDGDGSYYVLEDNLRTPSGVSYMLEDRKMMMRLFPELFAAQRVAPIDHYPNLLLDTLKSSSPLDNPTAVVLTPGRFNSAYFEHAFLAREMGVELVEGADLFVRDDHVYMRTTAGPQQVDVIYRRLDDAYLDPLSFNPDSMLGVPGLVAVYRSGNVVLANAVGTGVADDKSIYPYVDEMIRFYLTEEPILKNVPTWQCRKPQDLSHVLANLPDLVVKETQGSGGYGMLVGPAATAAEIEDFRARLKARPEAYIAQPTLSLSTCPTFVESGIAPRHIDLRPFVLSGKETRLVPGGLTRVALREGSLVVNSSQGGGTKDTWVVEDPGPT0026300_18DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026300-gshA|ybdK-K06048NANA
D1-35_03584591hypothetical proteinATGAGTTTCGAAATTCGCAAGATCGTCAGCTATGTCGAAGAAACCTTCATCGAAGGAGGCAAGGTCACCGACAAGCCGGTGACCATGGTCGGGCTGGCGGTGGTCATGAAGAACCCTTGGCTGGGCCGTGGTTTTGTCGAAGACCTGAAACCCGAGATCCGCGCCAATTGCTCCGATCTCGGCGCGCTGATGGTCGAGCGCCTGGTGGGCATCATCGGCGGTGCGCAAAAGATCGAAGCCTATGGCAAGGCCGCGGTCGTCGGTGCCGACGGCGAGATCGAGCACGCCTCCGCCGTGATCCATACCCTGCGTTTCGGCAACCATTACCGCGAGGCGGTCAAGGCCAAGAGCTACCTGAGCTTCACCAACAAGCGCGGCGGCCCCGGCACCTCGATCCAGATCCCGATGATGCACAAGGACGACGAAGGCCTGCGCTCGCACTACATCACCCTGGAAATGCAGATCGAAGACGCTCCACGCGCCGACGAAATCGTCGTGGTGCTGGGCTGCGCCGATGGCGGGCGCCTGCATCCACGCATCGGCAATCGTTACATCGACCTGGAAGAGCTGGCCGCCGAACAGGCCCAGTGAMSFEIRKIVSYVEETFIEGGKVTDKPVTMVGLAVVMKNPWLGRGFVEDLKPEIRANCSDLGALMVERLVGIIGGAQKIEAYGKAAVVGADGEIEHASAVIHTLRFGNHYREAVKAKSYLSFTNKRGGPGTSIQIPMMHKDDEGLRSHYITLEMQIEDAPRADEIVVVLGCADGGRLHPRIGNRYIDLEELAAEQAQNANANANANA
D1-35_03585834tgnD_2(E)-2-((N-methylformamido)methylene)succinate hydrolaseATGATTTGGCTCACCGCTGAACTCACCCCGGCCGGCACCAGTTACCTGGCAACCGGCCAAGGCCAGCCCGTGGTCCTGATCCACGGCGTGGGCCTGAACAAAGAAATGTGGGGCGGCCAGGTCGTTGGCCTGGCCACGAAGTACCGCGTCATCGCCTACGACATGCTCGGCCATGGCGCCAGCCCGCGCCCTGCCACCGGCACTGGCCTGCTCGGGTACGCCGATCAGCTGCTCGAATTGCTGGACCACTTGCAACTGCCCCAGGCCAGCGTGATCGGCTTTTCCATGGGCGGCCTGGTGGCACGCGCCTTCGCCTTGCATTACCCGCAGCGCCTGCAAGGCCTGGTGGTGCTCAACAGCGTATTCAACCGCAGCGCCGAACAACGCGCGGGGGTCATCGCCCGCACCGCCCAGGCCGCCGAGCATGGCCCGGACGCCAACGCCGAAGCCGCGCTGTCGCGCTGGTTCAGCCGCGAATACCAAGCGGCCAATCCGGCGCAGATCGCCGCGCTGCGCCAGACCCTGGCGCAGAACGATCCCCAGGGTTACCTGACCACCTATGAGCTGTTCGCCACCCAGGACATGTACCGCGCCGACGACCTGGGCAGCATCCAGGCGCCGACGTTGATTGCCACCGGCGAACTGGACCCCGGCTCGACCCCGGAAATGGCCCGGCAACTGGCCGAGCGGATTCCCGGCGCCACGGTTGCCGTGCTCGCCGAGCAACGGCATATGATGCCGGTAGAGTCGCCGCGCCTGGTCAACCAGTTGCTGCTGGAATTCCTCGACACGGCCAATACCCGAAAAAATCCAATAAAGGGAATCGTTGCATGAMIWLTAELTPAGTSYLATGQGQPVVLIHGVGLNKEMWGGQVVGLATKYRVIAYDMLGHGASPRPATGTGLLGYADQLLELLDHLQLPQASVIGFSMGGLVARAFALHYPQRLQGLVVLNSVFNRSAEQRAGVIARTAQAAEHGPDANAEAALSRWFSREYQAANPAQIAALRQTLAQNDPQGYLTTYELFATQDMYRADDLGSIQAPTLIATGELDPGSTPEMARQLAERIPGATVAVLAEQRHMMPVESPRLVNQLLLEFLDTANTRKNPIKGIVAPGPT0000920_136DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TRIGONELLINE_USAGEPLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0000920-tgnD-K23465NANA
D1-35_035861482tgnCCOG1012(Z)-2-((N-methylformamido)methylene)-5-hydroxybutyrolactone dehydrogenaseATGACACTTGCACGCTTTTCGATGTGCATCGGCGGTGAATGGGTCGATGCGCTGTCCGGCAAGACCTTCGAGAGCCTGAACCCGGCGCTGGCCGAGCCCTGGGCCGAGCTGCCCGATGCCGACGAAGCCGATGTCGATCGCGCCGTACAAGCCGCACAAACGGCTTTTGACAGCCCGGCCTGGCGCGGACTGACCGCCACTGCTCGGGGCAAACTGCTGCGCCGTCTCGGTGACCTGATCGCCGAAAACAAGGAAAAGCTGGCCCAGCTCGAAAGCCGCGACAACGGCAAGCTGATCCGTGAAACCCGTGGCCAGGTCGGCTACCTGCCGGAGTTTTTCCACTACACCGCAGGCCTCGCCGACAAGCTCGAAGGCGGCACCTTGCCCCTCGACAAGCCGGACCTGTTCGCCTACACCGTGCACGAAGCCATGGGTGTGGTCGCGGCGATCATCCCCTGGAACAGCCCGCTGTACCTGACCGCGATCAAGCTCGCCCCGGCGCTGGCGGCCGGCAACACCATCGTGATCAAGCCGTCCGAGCACGCCTCGGCGACGATCCTGGAACTCGCCCGCCTGGCCTTGGAGGCTGGGATTCCGCCGGGCGTGGTCAACGTGATTACCGGCTATGGCCCCAGCACCGGCGCCGCCCTCACCCGCCATCCGCTGGTGCGCAAGATCGCCTTCACCGGTGGTGCCGCCACGGCCCGGCATGTGGTGCGCAGCAGCGCCGAGAACTTCGCCAAGCTGTCACTGGAGCTGGGCGGCAAATCGCCCAACATCATCTTTGCCGACGCCGACCTCGACAGCGCCATCAACGGTGCGATTGCCGGGATCTACGCCGCCTCCGGCCAGAGCTGCGTGTCCGGATCGCGACTGCTGGTGCAGGATGAAATCTACGACGAGTTCGTCTCGCGCCTGGTGGAGCGCGCCCAGCGCATTCGCATCGGCAGCCCCCAGGAAGACGCCAGCGAGATGGGCCCCATGGCCACCGCGCAGCAACTGGCCGTGGTCGAAGGCCTGGTGGCCGATGCCATCGCCGAAGGCGCACGCCTGCGTACCGGCGGCAAGCGCCCGCAGAACCTTGGCGCCGGCTGGTTCTACGAGCCGACCCTGTTCGAGTGCGATCGCAATTCGATGAAAATCATGCAGGAAGAAGTCTTCGGCCCGGTGGCCTCGGTCATTCGTTTCAAGGACGAAGCCGAAGCCCTGGCGATCGCCAACGACTCGCAGTTCGGCCTCGCCGCCGGCATCTGGACCCGTGACCTGGGCCGCGCCCATCGCCTGGCCCGGGACGTGCGATCCGGGATCATCTGGGTCAACACCTACCGCGCGGTCTCGGCCATGGCGCCGATCGGCGGGTTCAAGAACAGTGGCTACGGACGCGAAAGCGGCATCGATTCAGTGCTGGCCTATACCGAGCTGAAAACGGTGTGGATCAACCTTTCCCAGGCACCCATGCCTGACCCGTTCGTGATGCGCTAGMTLARFSMCIGGEWVDALSGKTFESLNPALAEPWAELPDADEADVDRAVQAAQTAFDSPAWRGLTATARGKLLRRLGDLIAENKEKLAQLESRDNGKLIRETRGQVGYLPEFFHYTAGLADKLEGGTLPLDKPDLFAYTVHEAMGVVAAIIPWNSPLYLTAIKLAPALAAGNTIVIKPSEHASATILELARLALEAGIPPGVVNVITGYGPSTGAALTRHPLVRKIAFTGGAATARHVVRSSAENFAKLSLELGGKSPNIIFADADLDSAINGAIAGIYAASGQSCVSGSRLLVQDEIYDEFVSRLVERAQRIRIGSPQEDASEMGPMATAQQLAVVEGLVADAIAEGARLRTGGKRPQNLGAGWFYEPTLFECDRNSMKIMQEEVFGPVASVIRFKDEAEALAIANDSQFGLAAGIWTRDLGRAHRLARDVRSGIIWVNTYRAVSAMAPIGGFKNSGYGRESGIDSVLAYTELKTVWINLSQAPMPDPFVMRPGPT0000915_166DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TRIGONELLINE_USAGEPLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0000915-tgnC-K23463NANA
D1-35_03587486hsaB_1COG1853Flavin-dependent monooxygenase, reductase subunit HsaBATGATCGAACCCGGCATCTACAAAGAAGTCATGAGCTCCTTCCCGTCCGGCGTCACGGTGGTCACCACCCTGGACCCGGAGGGCAATATCGTCGGCATCACCGCCAGCGCTTTCAGCGCCTTGTCCATCGACCCGGCGCTGGTACTGTTCTGTCCCAACTATGCCTCCGATACGTACCCGATCCTGCGCGACAGCAAGCAGTTCGCGATCCACTTGCTGTCCGCCGACCAGACCGCCGAAGCCTACGCCTTCGCCGGCAAAGGCAAGGACAAGGCCAAAGGCATCGACTGGCACCTGAGCGACCTGGGCAATCCGTTGCTGGGTAAAGCCACGGCGATCATCGAGTGCGAGCTGTGGCGCGAATACGACGGTGGCGATCACGCGATCATCGTCGGCGCGGTGAAGAACCTGATCCTGCCCGCGCAACCGGTCACGCCGATGATCTACCACAAAGGCAAGCTGGGCCCGCTGCCCGTGCTCGCTTGAMIEPGIYKEVMSSFPSGVTVVTTLDPEGNIVGITASAFSALSIDPALVLFCPNYASDTYPILRDSKQFAIHLLSADQTAEAYAFAGKGKDKAKGIDWHLSDLGNPLLGKATAIIECELWREYDGGDHAIIVGAVKNLILPAQPVTPMIYHKGKLGPLPVLAPGPT0006700_591DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STEROID|DERIVATE_DEGRADATIONXENOBIOTIC_ADROSTENEDIONE_DEGRADATION,PGPT0006700-hsaB-K16048NANA
D1-35_03588405hypothetical proteinATGAGCAACGAAAAATACCAGCAAGGCCTGAAGATCCGCACCCAGGTACTGGGCCAGGACTACGTCAACCGCGCCATCGAGAACGCCGACGATTTCACCCGGCCGCTGCAGGAAATGGTCACGGAATATTGCTGGGGCCATGTCTGGGGCCGCGAGGGTTTGTCGCTCAAGGAGCGCAGCATGATCAACCTGGCGATGATCTCGGCGCTCAATCGCCCGCACGAACTCAAGCTGCATGTGCGCGGCGCCTTGCGTAACGGACTGAGTCGTGAGCAAATACGCGAAATTCTGCTTCAGGTCGGCATTTATTGCGGCGTCCCCGCTGCCGTAGACAGTTTCCGGCTTGCCCGCGAAGCCTTCGCCGAAGCCGACGCCGAGGCCTCCAGTCAACCCTCGGCTGTTTGAMSNEKYQQGLKIRTQVLGQDYVNRAIENADDFTRPLQEMVTEYCWGHVWGREGLSLKERSMINLAMISALNRPHELKLHVRGALRNGLSREQIREILLQVGIYCGVPAAVDSFRLAREAFAEADAEASSQPSAVPGPT0005005_2427DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005005-pcaC-K01607NANA
D1-35_03589753nanR_2HTH-type transcriptional repressor NanRATGAAACGCCTGCCACTCGACGACAGCTTCAAGGTCAATCGCAACCCCGTTACCCTGCGCGAAATCGTGCTGGATAAACTGCGAAGCGCCATCATGAACTTCCAGCTGCTGCCGGGCGATCGCCTGGTTGAACGCGACCTGTGCGACCGCCTGGGCGTGAGCCGTACGTCGGTGCGTGAAGCCCTGCGTCACCTCGAATCCGAAGGCCTGGTGGAGTTCGCCGATGCCAAGGGTCCACGGGTGGCGATCATCACCCTGGCCGACGCCGGTGATATCTATGAGCTGCGGTGCGTGCTCGAAGGCTTGATCGTCCAGTTGTTCACCCTGCGGGCCAAGGCCAAGGACATCAAGGCGCTGGAAAAAGCCCTCGAGGAAAACCGCAAGGCCCTCAAGGACGGCGAGCTGCAGCAGGTGCTGGATTCGGTCCAGGGTTTCTACGACGTACTGCTTGAAGGTTCCGGCAATCACGTTGCCGCCACCCAGTTGCGCCAGTTGCAGGCGCGCATCAGCTACCTGCGGGCGACGTCGGTGTCCCAGGAAAACCGCCGTGGCAGCAGCAACCAGGAAATGGAACGCATGGTCGAGGCGATCAAGAGTGGCGATCCGCTGGTGGCCCACCAGGCCTGCGTCGATCACGTACGCGCCGCCGCCAAGGTCGCGCTGGAATACCTCAAGCGCCAGCAGGAAGAGACCGGCAACATCCCGGAAATCACCGCGCCCATCGCGTTGAAAGAACCTCGCATAGGACGCTGAMKRLPLDDSFKVNRNPVTLREIVLDKLRSAIMNFQLLPGDRLVERDLCDRLGVSRTSVREALRHLESEGLVEFADAKGPRVAIITLADAGDIYELRCVLEGLIVQLFTLRAKAKDIKALEKALEENRKALKDGELQQVLDSVQGFYDVLLEGSGNHVAATQLRQLQARISYLRATSVSQENRRGSSNQEMERMVEAIKSGDPLVAHQACVDHVRAAAKVALEYLKRQQEETGNIPEITAPIALKEPRIGRPGPT0000900_32DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TRIGONELLINE_USAGEPLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0000900-tgnR-K23466NANA
D1-35_03590564nudC_3NADH pyrophosphataseATGTTCAGCCCGAGCTTTTGTCCAAAGTGTGGCGGCACTGACTTGAGCCAGCGCCTGCCAGCGGGCGATACCCATGAGCGGCTGATGTGCGGCGGCTGCGGCTACATCCACTACGTGAACCCGAAGATCATCGCCGGCTGCATCATCGAACAGGACGGCAAATACCTGCTGTGCCAACGCGCCATCCCGCCGCGCCCCGGCACCTGGACACTGCCGGCCGGCTTCATGGAAGGCAACGAGACCACCGAGCAGGCGGCCCTGCGTGAAGTCTGGGAAGAGACCGGCGTGCGCGCCGAAATCATCTCGCCCTACTCGATTTTCAGCGTGCCGAAAATCAGCGAGGTGTACATCATCTTCCGCGCCATCGCGCTGGAGATCACCGGCGAGTTCGGCGCGGAAACCCTCGCCTGCCAATTCTTCGCTGCCGAAGACATCCCATGGGACAGCATCTATTACCCGGCCATCCGGCAGATCCTCGAACGTTACATCGAGGAACGCCAGGCCGGGGTCTACGGCATCTACATGGGCAACGACGACAGCGGCAAGATTCACTTCATCCGCTGAMFSPSFCPKCGGTDLSQRLPAGDTHERLMCGGCGYIHYVNPKIIAGCIIEQDGKYLLCQRAIPPRPGTWTLPAGFMEGNETTEQAALREVWEETGVRAEIISPYSIFSVPKISEVYIIFRAIALEITGEFGAETLACQFFAAEDIPWDSIYYPAIRQILERYIEERQAGVYGIYMGNDDSGKIHFIRPGPT0008680_127DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008680-NUDT23-K18453NANA
D1-35_03591294hypothetical proteinATGAAGGCGTACTGGATTGCTCATGTGGATGTCACCGACCCCGATCAATACAGCCAATACACCCAGCGCGCGCCAGCGGCGTTTGCCTTGTATGGCGCACGGATGCTCGCCCGGGGCGGACGCAGCAAAGCGATGGAAGGCAGGGCCACGCCGCAGCGCAGCGTGGTAATCGAATTCGATTCCTACGAACAGGCGCTGGCCTGCTATCACTGCGAGGAGTATCAGCAGGCGAAGAAGCACCGTGAAGGTGTGGCGCGGGCCGAGGTGATCATCGTCGAGGGCGTGGCGCCCTGAMKAYWIAHVDVTDPDQYSQYTQRAPAAFALYGARMLARGGRSKAMEGRATPQRSVVIEFDSYEQALACYHCEEYQQAKKHREGVARAEVIIVEGVAPNANANANANA
D1-35_035921110ribBA_1COG0108Riboflavin biosynthesis protein RibBAATGGCCTTTAACAGCATTGAGGAAATCATCGAAGACTACCGCCTGGGCAAGATGGTGTTGCTGGTGGATGACGAAGATCGGGAAAACGAAGGCGACTTGCTGCTCGCCGCCGATTGTTGCAATGCCCAGGCGATCAGCTTCATGGCCCGCGAAGCACGCGGGCTGATCTGCCTGACCCTGACCGATGAGCACTGCCAACGCCTGGGCCTCGAACAGATGGTGCCAAGCAACGGCAGTGTGTTCAGCACCGCTTTCACGGTGTCCATCGAGGCCGCCACGGGCGTGACCACCGGTATCTCCGCCGCTGACCGGGCGCGCACCGTCGCCGCCGCTGTTGCTCCTGATGCGGGGCCGACGGACATTGTGCAACCGGGGCATATCTTCCCGCTGCGGGCCAAGGAAGGCGGCGTACTGACCCGCGCCGGGCATACCGAAGCCGGATGCGACCTGGCGCGCCTGGCAGGCTTCACGCCGGCATCGGTGATTGTCGAAGTCATGAACGATGACGGCACCATGGCGCGCCGCCCGGACCTGGAAATTTTCGCCCGCAAGCACGGGATCAGGATCGGCACCATCGCCGACCTGATCCACTACCGCCTGAGCACCGAGCACACCGTGGTGCGCATCGGTGAGCGGGAACTGCCGACGGTGCACGGTATCTTCCGCTTGTTCACCTTTGAAGATCGCATCGAAGGCGGCGTGCACATGGCGATGGTCATGGGCGACATCCGCCGGGAAGAACCGACACTGGTGCGCGTGCATGTGATCGACCCGCTGCGCGACCTGGTGGGTGCCGAGTACAACGGCCCGTCCAACTGGACGTTGTGGGCGGCGCTGCAACGGGTCGCCGAGGAAGGTCGTGGCGTGGTGGTGGTGCTGGCCAACCACGAGTCATCCCAGGCGTTGCTCGAGCGTGTGCCGCAACTGACCCAGCCGCCACGGCAATTCAGCCGTTCCCAATCGCGCATCTATTCTGAGGTGGGGACTGGCGCGCAGATTCTGCAGGACCTGGGTGTCGGCAAGCTGCGGCATTTGGGGCCACCGCTCAAGTATGCCGGGTTGACCGGGTACGACCTGGAGGTAGTGGAGAGCATTCCTTTTACCGGGTAGMAFNSIEEIIEDYRLGKMVLLVDDEDRENEGDLLLAADCCNAQAISFMAREARGLICLTLTDEHCQRLGLEQMVPSNGSVFSTAFTVSIEAATGVTTGISAADRARTVAAAVAPDAGPTDIVQPGHIFPLRAKEGGVLTRAGHTEAGCDLARLAGFTPASVIVEVMNDDGTMARRPDLEIFARKHGIRIGTIADLIHYRLSTEHTVVRIGERELPTVHGIFRLFTFEDRIEGGVHMAMVMGDIRREEPTLVRVHVIDPLRDLVGAEYNGPSNWTLWAALQRVAEEGRGVVVVLANHESSQALLERVPQLTQPPRQFSRSQSRIYSEVGTGAQILQDLGVGKLRHLGPPLKYAGLTGYDLEVVESIPFTGPGPT0007990_3695DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0007990-ribBA-K14652NANA
D1-35_035931026hypothetical proteinATGGTGTTGAAGAAAAGTGCAGCCGCAATTCTTTTTGCCGGCCTGCTGAGTGTCACCAGCCAGGCGACGATAGCCGCTGAAAGCGTCAACTTCGTCAGTTGGGGCGGCAGCACCCAGGACGCGCAGAAGCAGGCCTGGGCCGATCCATTCAGCAAGGCCAGCGGCATCACCGTGGTCCAGGATGGCCCGACCGACTACGGCAAACTCAAGGCCATGGTCGAAAGCGGCAACGTGCAATGGGACGTGGTCGACGTCGAGGCAGACTTCGCCTTGCGCGCCGCCGCCGAAGGCCTGCTCGAACCCCTCGATTTTTCGGTCATCCAACGCGACAAGATCGACCCGCGTTTCGTCTCCGACCACGGTGTCGGCTCGTTCTATTTCTCCTTCGTACTCGGCTACAACGAAGGCAAGCTCGGTTCGGGCAAGCCAACGGATTGGTCCGCGCTGTTCGACACCAAGACCTACCCCGGCAAGCGCGCCCTCTACAAATGGCCAAGCCCTGGCGTGCTGGAACTGGCCCTGCTGGCCGATGGCGTGGCGCAGGACAAGCTCTATCCGCTGGACCTGGACCGCGCCTTCAAGAAACTCGACACCATCAAGAAAGACATCGTCTGGTGGGGCGGCGGCGCCCAGTCCCAGCAATTGCTGGCGTCCGGCGAGGCCAGCATCGGCCAGTTCTGGAACGGTCGGATCTATGCCTTGCAACAGGACGGCGCGCCCGTCGGCGTGAGCTGGAAGCAGAATCTGGTCATGGCCGACATCCTGGTTATCCCGAAAGGTGCGAAAAACAAGGCCGCCGCCATGAAGTTCCTGGCCAACGCCAGCAGCGCCAAGGGTCAGGCAGACTTCTCCAACCTGACCGCCTACGCCCCCGTCAACGTTGACAGCATCGCGCGCCTGGATTCGGTGCTCGCCCCCAACCTGCCGACCGCCTACGCCAAGGATCAGATCACGCTGGATTTTGCGTACTGGGCCAAGAACGGTCAGGACATCGCGACACGGTGGAATGAATGGCTGGTCAAATGAMVLKKSAAAILFAGLLSVTSQATIAAESVNFVSWGGSTQDAQKQAWADPFSKASGITVVQDGPTDYGKLKAMVESGNVQWDVVDVEADFALRAAAEGLLEPLDFSVIQRDKIDPRFVSDHGVGSFYFSFVLGYNEGKLGSGKPTDWSALFDTKTYPGKRALYKWPSPGVLELALLADGVAQDKLYPLDLDRAFKKLDTIKKDIVWWGGGAQSQQLLASGEASIGQFWNGRIYALQQDGAPVGVSWKQNLVMADILVIPKGAKNKAAAMKFLANASSAKGQADFSNLTAYAPVNVDSIARLDSVLAPNLPTAYAKDQITLDFAYWAKNGQDIATRWNEWLVKPGPT0007855_4571DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007855-ABC_SP_S|ydcS-K02055NANA
D1-35_03594924hypothetical proteinATGAAAATGGCGGCAGCGGCAACCCCTCGCACCGGGGGCGCCGTCGGCGCTGCCGGTCCGGCCGTGGCGCGCAAGCAGACGCCGTCGTTGATGCAGCGCTGGCGCGGCGCCGGCAACCTGATTCCTGCGCTGCTGTTCCTCGGCCTGTTCTTCCTGGCGCCACTGATCGGCCTGCTGCTGCGCGGCGTGCTGGAACCCGTGCCGGGCCTGGGCAACTACGAGCAGCTGTTCGCCAATTCGGCTTACGCCCGGGTGTTGTTCAACACCTTCTCGGTGGCCGGGCTGGTGACGTTGTTCAGCCTGCTGCTGGGCTTCCCGCTGGCCTGGGCCATCACCCTGGTGCCCCGTGGCTGGGGCCGCTGGATGTTGAACATCGTGCTGCTGTCGATGTGGACCAGCCTGCTGGCCCGCACCTATTCCTGGCTGGTGCTGTTGCAGGCCTCGGGCGTTGTGAACAAGGCATTGATGGCCCTGGGCATCATCGACCAGCCGCTGGAGATGGTGCACAACCTCACCGGCGTGGTGATCGGCATGAGCTACATCATGATCCCGTTTATCGTCCTGCCGCTGCAGGCGACCATGCAAGCCATCGACCCGATGATCCTGCAGGCCGGTTCCATCTGCGGCGCCAGCCCCTGGACCAACTTCTTCCGGGTGTTCCTGCCGCTGTGCCGGCCGGGGCTGTTCTCCGGCGGGCTGATGGTCTTCGTCATGTCCCTCGGTTACTACGTGACCCCGGCCCTGCTGGGCGGCGCGCAGAACATGATGCTGCCGGAATTCATCATCCAGCAGGTGCAGTCGTTCCTCAACTGGGGCCTGGCCAGTGCCGGTGCTGCCTTGTTGGTGGCGATCACCCTGGTGTTGTTCTACTTCTATCTGAAGCTCCAGCCGGAATCCCCGGTGGGCGCCAGCAACGCGAGGTAAMKMAAAATPRTGGAVGAAGPAVARKQTPSLMQRWRGAGNLIPALLFLGLFFLAPLIGLLLRGVLEPVPGLGNYEQLFANSAYARVLFNTFSVAGLVTLFSLLLGFPLAWAITLVPRGWGRWMLNIVLLSMWTSLLARTYSWLVLLQASGVVNKALMALGIIDQPLEMVHNLTGVVIGMSYIMIPFIVLPLQATMQAIDPMILQAGSICGASPWTNFFRVFLPLCRPGLFSGGLMVFVMSLGYYVTPALLGGAQNMMLPEFIIQQVQSFLNWGLASAGAALLVAITLVLFYFYLKLQPESPVGASNARPGPT0007850_1385DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007850-ABC_SP_P1|ydcU-K02054NANA
D1-35_03595810hypothetical proteinATGCTCCTGACTCCCAATGCCATGAGCCGACGCATGCGGTTCGGCCTGTATTTCACCACCGGGCTGATCGCGCTGTTCCTGCTGCTGCCCATCGTGTTCATCGTGCTGCTGTCGTTCGGCTCGTCGCAGTGGCTGGTATTTCCGCCGCCGGGCTGGACCTTCAAATGGTACGGCCAGTTCTTCTCCAACCCGGACTGGATGAGCGCCGCGCTGACCAGCCTCAAGGTCGCGGTGCTGACCACCGTCTGCGCCGTGGCCCTGGGCCTGCCTACCGCGTTTGCTCTGGTGCGCGGGCGCTTCCCCGGCCGGGAAATGCTCTACGGCTTGTTCACCCTGCCGATGATCGTGCCGCTGGTGATCATCGCCGTGGCGGTCTACGCGCTGTTCCTGAAACTCGGCTACACCGGGACGATGTTTGCCTTCGTGGTCAGCCATGTGATCGTCGCGCTGCCGTTCACCATCATCTCGATCATCAACTCGCTCAAACTGTTTGACCAATCCATCGAGGACGCAGCGGTGATCTGCGGCGCCTCGCGCCTGCAAGCGGTGTTCAAGGTGACGTTCCCGGCGATTCGCCCGGGCATGGTCGCCGGCGCCTTGTTCGCATTCCTGGTGTCGTGGGACGAGGTGGTGCTGAGCGTGATGATGGCCAGCCCGACCCTGCAGACCTTGCCGGTAAAAATGTGGACCACTTTGCGCCAGGACCTGACGCCTGTGATCGCCGTCGCTTCGACGCTGCTGATCGGTCTCTCGGTGCTGGTAATGGTGATCGCCGCCGCCCTGCGCCGGCGCAACGAAATCAGCGCTTGAMLLTPNAMSRRMRFGLYFTTGLIALFLLLPIVFIVLLSFGSSQWLVFPPPGWTFKWYGQFFSNPDWMSAALTSLKVAVLTTVCAVALGLPTAFALVRGRFPGREMLYGLFTLPMIVPLVIIAVAVYALFLKLGYTGTMFAFVVSHVIVALPFTIISIINSLKLFDQSIEDAAVICGASRLQAVFKVTFPAIRPGMVAGALFAFLVSWDEVVLSVMMASPTLQTLPVKMWTTLRQDLTPVIAVASTLLIGLSVLVMVIAAALRRRNEISAPGPT0007845_2595DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007845-ABC_SP_P|ydcV-K02053NANA
D1-35_035961152btuD_7Vitamin B12 import ATP-binding protein BtuDATGAGTGCCGTCAAAGACCCCGCACAGCAGAACAACAAGACCCTGGTCAGCCTGCGCAACCTGAACAAGCACTACGGCGACTTTGCCGCCGTGGACAATATATCCCTGGAGATCCAGGACGGTGAATTCCTGACCTTCCTCGGCTCCAGCGGCTCGGGCAAGAGCACCACCCTGTCGATGCTGGCCGGTTTCGAAACCCCCAGCAGCGGCGAGATCCTGGTGGATGGCAAATCCCTGGTCAACGTGCCGCCGCACAAGCGCGACATCGGCATGGTGTTCCAGCGCTATTCGTTGTTCCCTCATCTGTCGGTGCGCGACAACATCGCCTTCCCGCTGGCGATCCGCAAACTGGCCAGCGCCGAGCGCGAGCGCCGGGTCGATGCCATGCTCAAGCTGGTGCAATTGGGAGAGTTCGCCCATCGGCGCCCTTCGCAACTGTCCGGCGGACAACAACAGCGCGTGGCAATTGCCCGGGCGCTGGTCTATGAACCGCGCATCCTGCTGATGGACGAACCTCTCGGCGCGCTGGACAAAAAGCTGCGCGAAGATTTGCAGGACGAACTGCGCCAGTTGCACCGCCGGCTGGGCATCACCATCGTCTACGTCACGCACGACCAAGAAGAAGCCATGCGCCTGTCCCAGCGCATCGCGATCTTCAGCCACGGCAAGATCGTCGGCCTGGGCAGTGGCTACGACCTCTACCAGAATCCACCGAATGCCTTTGTCGCCTCGTTCCTGGGCAACTCCAACTTCCTCAAGCTCAAGGCCCAGGGCAATGCCGCGGCGACCTTCGAAGGCCAGTCACTGTCGATCCGCCTGACCACCGGCCTGCAAACCGACCAGGACGTGCTGCTGATGGTCCGCCCGGAAAAAGCCCTGGCCCTGAGTGTCGAGCAGGCGACCCAGGACACCCTGCCCGCCGGCTGGAACGAAGTCTCGGCCAAGGTCGTGGAGGTGCTTTTTCTTGGCGAAAGCCAGACCTGCAGCGTGGTGACGTCCGGCGGCACTCACATGACCGTCAAGGCACTGTCCGCCGCCGGCATGCCGCTCAAGGCCGGCGACCCGGTGCGGGTGCGCTGGGCCGCCGCCGATGCCTGCGTCTACACCCAATGGGCCGAGAGCGACCTGAACAAGGCCGCCGGCGCCCACTGAMSAVKDPAQQNNKTLVSLRNLNKHYGDFAAVDNISLEIQDGEFLTFLGSSGSGKSTTLSMLAGFETPSSGEILVDGKSLVNVPPHKRDIGMVFQRYSLFPHLSVRDNIAFPLAIRKLASAERERRVDAMLKLVQLGEFAHRRPSQLSGGQQQRVAIARALVYEPRILLMDEPLGALDKKLREDLQDELRQLHRRLGITIVYVTHDQEEAMRLSQRIAIFSHGKIVGLGSGYDLYQNPPNAFVASFLGNSNFLKLKAQGNAAATFEGQSLSIRLTTGLQTDQDVLLMVRPEKALALSVEQATQDTLPAGWNEVSAKVVEVLFLGESQTCSVVTSGGTHMTVKALSAAGMPLKAGDPVRVRWAAADACVYTQWAESDLNKAAGAHPGPT0007860_200DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007860-ABC_SP_A|ydcT-K02052NANA
D1-35_03597486hsaB_2COG1853Flavin-dependent monooxygenase, reductase subunit HsaBATGATCGATGCCAACCTCTACAAACAAGTCATGGGTTCGTTCCCGTCCGGGGTGACGGTGATCACCACGCTGGACGATGACGGACAAATCGTCGGGTTGACCGCCAGCGCCTTCAGTTCATTGTCGATGGACCCGGCCCTGGTGCTGTTCTGCCCCAACTACAGCTCCGATTCCTACCCGCTGCTGATCCGGAACAAACGCTTCGCCATCCACGTGCTTTCCGGCGGCCAGCAGAACGAAGCCTACGCGTTCGCCCGCAAAGGCAAGGACAAGGCCCAGGGCATCGAATGGACCTTGAGCGAGCTGGGCAATCCGTTGTTGAGCAACGCCACCGCCATCATCGAATGCGAACTGTGGCGTGAATACGAGGGTGGCGACCACGCCATCATGGTCGGCGCCGTGAAGAACCTGATCGTGCCGCAACACACACCGGGGCCGCTGGTTTATTGCCACGGCAAGATGGGCGCCCTGCCCGTCCTCGCCTGAMIDANLYKQVMGSFPSGVTVITTLDDDGQIVGLTASAFSSLSMDPALVLFCPNYSSDSYPLLIRNKRFAIHVLSGGQQNEAYAFARKGKDKAQGIEWTLSELGNPLLSNATAIIECELWREYEGGDHAIMVGAVKNLIVPQHTPGPLVYCHGKMGALPVLAPGPT0006700_578DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STEROID|DERIVATE_DEGRADATIONXENOBIOTIC_ADROSTENEDIONE_DEGRADATION,PGPT0006700-hsaB-K16048NANA
D1-35_035981044tgnBCOG2141Flavin-dependent trigonelline monooxygenase, oxygenase componentATGAAATTTTCCCTGTTCGTACACATGGAGCGCTGGGACGAAAGCGTCAGCCATCGCCAGTTGTTCGAAGACCTCAGCGAGCTGACGCTGATGGCCGAAGCCGGCGGTTTCAGTACCGTGTGGATCGGCGAACACCACGCCATGGAATACACCATTTCGCCAAGCCCGATGCCGCTGCTGGCGTACCTGGCCGGCAAGACCACGACCATTCACCTCGGCGCCGGCACCATCATCGCGCCGTTCTGGCACCCGCTGCGAGTGGCTGGCGAATGCGCGTTGCTCGACGTTATCAGCAACGGCCGCATGGAAGTCGGGCTGGCCCGGGGTGCCTATCAGGTGGAATTCGACCGCATGGCCGGCGGCATGCCTGCCTCCTCCGGCGGCCAGGCATTGCGGGAAATGGTCCCGGTGGTGCGCGCCCTGTGGCAAGGCGACTACGCCCACGACGGCGAGATCTGGAAATTCCCCACTTCCACCTGCGTGCCCAAGCCCATCCGCAAGCCTCATCCGCCGATGTGGATCGCCGCCCGCGACCCTGACTCGCACAACTTCGCCGTCGCCAATGGCTGCAACGTGATGGTCACGCCTTTGATGAAAGGCGATGAAGAAGTCCAAGACCTGAAGAACAAATTCCAGGCCGCCCTGGACAACAATCCCGACGTGCCACGTCCGCAATTGATGGTGCTGCGCCACACCCATGTGCACGCCGAGGACGATCCCGAGGGCTGGAAGATCGGTGCCCAGGCAATCTCGAAGTTCTATCGCACCTTCGATGCCTGGTTCGGCAACAAGCAGGTGCCGGTCAACGGTTTCCTGGCGCCAAGCCCGGAAGAAAAATTCGCCGAGCGCCCGGAGTTTCAGCTGGAGAACATCCGCAAGAACACCATGATCGGCACGCCGCAAGAGATCATCGAACGGATCAAGTACTACCAGGAACTGGGCGTGGACGAGTTCAGCTTCTGGTGCGACAACAGCTTGCCGCATGCCGAGAAGAAAAAATCCCTGGAGTTGTTCATCCAACAGGTGGTTCCAGCGTTTCGCTGAMKFSLFVHMERWDESVSHRQLFEDLSELTLMAEAGGFSTVWIGEHHAMEYTISPSPMPLLAYLAGKTTTIHLGAGTIIAPFWHPLRVAGECALLDVISNGRMEVGLARGAYQVEFDRMAGGMPASSGGQALREMVPVVRALWQGDYAHDGEIWKFPTSTCVPKPIRKPHPPMWIAARDPDSHNFAVANGCNVMVTPLMKGDEEVQDLKNKFQAALDNNPDVPRPQLMVLRHTHVHAEDDPEGWKIGAQAISKFYRTFDAWFGNKQVPVNGFLAPSPEEKFAERPEFQLENIRKNTMIGTPQEIIERIKYYQELGVDEFSFWCDNSLPHAEKKKSLELFIQQVVPAFRPGPT0000910_77DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TRIGONELLINE_USAGEPLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0000910-tgnB-K23464NANA
D1-35_035992124cntO_3Metal-pseudopaline receptor CntOTTGAATCGTTCCACCCCCCTCGCTTACCGCAATGCCCTCGTCAAATGTGTTTTACCTGCGCTGTCCTGCTGTTTCATGGCAAGCCCCTTGAAGGCCCAGGACACCCTTGAACTGCCCACCACGGATGTGCAAGGCAGTCGGATCATTCAGGACGAAGGCTACACGGCGACGCAAGCCAGCACGGCGAGCAAGAGCGATGTACCGATCAAGGAAGAGGCGCAGTCGATCAACGTGGTGACCCAGCAGACCCTGGCGGACTACCAGGTGCGCTCGCTGAACGACGCGATGAAGTTCGTCAGCGGCGTCAGCCAGGGCAACACCCTGGGGGGCTCCCGGGACTCGCTGGTCAAGCGCGGTTTTGGCACCAACGATGACGGTTCGATCCTGCGCGATGGTGTGCGTTCGAACCTGGGCCATAACTTCAGCGCCACCACTGAGCGAGTCGAAGTGCTCAAGGGCCCGGCCTCTATGTTGTACGGCGCGCTGGAACCGGGTGGCCTGATCAACGTCATCAGCAAGAAGCCCGAATACACCCAGAGCACCACATTGAGCGGTTCCGCCTACAGCGAGGGCGGCGGCACCATGGCCCTGGACACCACCGGGCCGTTGGGCGACACCGGGTTGGCCTATCGCCTGATCGCCGAACGCGGCCATGAGGATTACTGGCGCAACTACGGCGTCAACGAGAGCACGCTGGTGGCGCCATCGCTGGCCTGGACCGGTGAGCGTGCTTCGTTGAACCTGAGTTATGAGTACAACGAATATTCCAACCCGTTTGACCGTGGCACGGTGTTCAAGAATGGGCATCCGGCCGACATCGACTATGACAAGCGCCTGGACGAGCCTTGGGCCAAGAGCATCGGGATCCGCGAGACGGCCACCGCGCGGTTCGAGTACGAGTTGAGCGAGGCGTGGAAAACCCGGGTGACCTACGGCTGGAACAATGACCGCTACAGTCTTGCGATTGCCCAGCCCAACTCGCTGGTCGGCAATACTCTGCGGCGAGCCGCCAACGGCGCTCACTACGATGATGAAACCCGTTACGCCAGTTGGGATTTCATCGGCAAGCAGGAGCTGTTCGGCCAGCGCCATGACCTGCTGGTCGGTGCCGATAATCAGGTGTCTGACCAGTACCGTGGCAAGACCTACCGCGGGCCAGTGCGGGGCGGCTTCGATATCACGGCGCCGGTGTACGGAGGTTTGGCGCAGCCCAGCGTCATCAACCCCGCCCAGAGCAACCTGAGTAACCAGCTGACGTCCAGCTCGGTGTACCTGAAGGACAACTGGCACTTGGATGATCGCTGGATTCTGGTCTTTGGTGGTCGTTATCAACACTACGATCAGTTCAGCAAGCAAGGGTCGATCACGAGCGTGCCGGTTCGCGACGACAACGGCGATGCCTTCGTGCCGTTCCTGGGCCTGGTCTACAAGGCCACCGAGGACCTGTCGCTGTATGGCAACTACAGTCGTTCGTTCAAGCCCAACGATACCGTGGATGACAACCTCAGCACCTTCAAGCCGGAAGAGGGCCGCAGCTACGAAATCGGGGCCAAGTACGATCCGCTGCCGGGGCTGAATATTAATCTAGCGTTGTTCGATATCGTCAAGAAGAACGTCGTCACTACCACCCTGGTCGGCGGGCAGAACATCGCCGAAGCCGCCGGCAAGGTCGGCTCCCAAGGCCTTGAGCTGGACATCACCGGACGTTTGGCCGAGCGGTGGGACTTGATCGGCACCTACGCCTACACCCACACCGAAATACTGGATGATCCAAGAAACGAAGGTCACCGTCTGGCCGATGCTCCCAAGCACACCGCCAGCCTGTACCTCAGCCACCATCTGAACGTGCCGGCCGAATTCGGCGCCTGGCACGCCGGGGCCGGAGCGCGGTATGTCGGTGAACGCGCCGCCAACAACGCCAACGATTTCTGGCTCAGCAGCTACACCGTCGCCGACGCGTTCCTGCGCTGGGAGTCGCCGGTGTTCGGACAAAAGACCTCGTTGCAGTTGAACGTCGACAACCTCTTCGACAAGCAGTACTACCCGTCGTCTACCGGGAGCCAGTTGCAGGTCAACGTCGGCGAGCCGCGTACTGCCAGATTGAGCGCCAGCGTGACGTTCTGAMNRSTPLAYRNALVKCVLPALSCCFMASPLKAQDTLELPTTDVQGSRIIQDEGYTATQASTASKSDVPIKEEAQSINVVTQQTLADYQVRSLNDAMKFVSGVSQGNTLGGSRDSLVKRGFGTNDDGSILRDGVRSNLGHNFSATTERVEVLKGPASMLYGALEPGGLINVISKKPEYTQSTTLSGSAYSEGGGTMALDTTGPLGDTGLAYRLIAERGHEDYWRNYGVNESTLVAPSLAWTGERASLNLSYEYNEYSNPFDRGTVFKNGHPADIDYDKRLDEPWAKSIGIRETATARFEYELSEAWKTRVTYGWNNDRYSLAIAQPNSLVGNTLRRAANGAHYDDETRYASWDFIGKQELFGQRHDLLVGADNQVSDQYRGKTYRGPVRGGFDITAPVYGGLAQPSVINPAQSNLSNQLTSSSVYLKDNWHLDDRWILVFGGRYQHYDQFSKQGSITSVPVRDDNGDAFVPFLGLVYKATEDLSLYGNYSRSFKPNDTVDDNLSTFKPEEGRSYEIGAKYDPLPGLNINLALFDIVKKNVVTTTLVGGQNIAEAAGKVGSQGLELDITGRLAERWDLIGTYAYTHTEILDDPRNEGHRLADAPKHTASLYLSHHLNVPAEFGAWHAGAGARYVGERAANNANDFWLSSYTVADAFLRWESPVFGQKTSLQLNVDNLFDKQYYPSSTGSQLQVNVGEPRTARLSASVTFPGPT0003790_22244DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014NANA
D1-35_036001797hypothetical proteinATGCAGACGTTAAAGGCCTTGTACGAGTCTATCGAGATGCAATTCTTCGATACCCTCACCAAAAAGCTTTCAAGCCTTTTCCTGCTGGTCGTCGTCAGTGGCCTGCTGTACTGGGTCGCCGTCAGTGCCCGGGCCGATATTCTCGTGCAGTTGCGCACGGCCCAACTGGACGCCGCGCTGCTGGGCCAGATCGAAGATCGCCTCGACAGCCTCACCCATGCCCTGCTCTTCGGCGCGCTCCTGACGTTCGGCATGATCAGCTTCATGGTCTGGTATTTCCGCCACCTCATCGTGCGCCCCGTCACTGTGATGACCAAGGCGCTGGAAGAGATCGCCAACGGCGAAGGCGATTTGTCCAAGGACTTGCCGCTGGTCACCCATGACGAGATCCGCACGCTGGCCGCCACCTGCAACCGCTTCCTGGCCAAGCAGCGCGAGATCATCAGCAACGTCCAGGCCTTGACGGTGCACATTGCCGTGGAGTCGGCCCGTTCATTGAAGAACATCAGCGACTCCAGCGACAGCGCGACCCACCAGGCGCGCTTCGCCAAGGAAGTGATGGACCAGAGCAACACCGCCGTGGGCCGTATCGAAGAAGTCTCGCGCCAGACCCAGGGCATCTCCAGCACCACCGCGCAGAACCTGAACATGGCCCGCGATTCCTATGCCGAGTTGCTGGAAGTGACCGGCAACATCAGCGAGATCTCCAGCAGCCTGGGTGAATTCGCCACGCTGGTGGACGCGCTGAACCAGCGTTCGTCGAGCATCAAATCCATCGTCGGGCTGATCCAGCAGATTTCCGCCCAGACCAACCTGCTGGCACTCAACGCCGCCATCGAAGCGGCGCGCGCCGGGGAAAGTGGCCGTGGCTTCGCCGTGGTCGCCGATGAAGTGCGCACCCTGGCGCAAAACGTCAGCCGGGCTACCGACGATATTTCGCGCAACATCGACGCGATGCTCCAGGAGGTCAGCTCCACCCACGAGCAGACCACCCAGATCAGCCACAGCGCCCGGGAAACCCAGAAGGTAGTGGAACGCGCCTCTGGCCATTTCGAGAGCATGATCGTCGACTTCGAGTCCACCAACGGCAAACTGGCGGATATCGCCGACCACATCCAGCAGTTCGCCGACTCCAACACCGGTATCAACGAACGCGTCACCCAGATCCATGCCGACAGCCAGTCGATCGACCAGCGCATGCAGCAGTCGGCGACCGCCACCCGCGATCTGTCCGGTGTTGCCGAGAAGGTCCAGACGCTGCTGGGCCGCTTCGTGCTCGGCCACGGCAAGCTGGACGCGGCCATCACCCGCGCCAGCGAATGCCGCGACACGCTGCAGGTTCAGCTGCAGGCGCTACAGGAACAAGGCGTCAACCTGTTCGACCAGAATTACCAGCTGATCCCGGGTACCGATCCCAAGCAATACATGGCCAGCTACACCGAACGCTTCGCCCGGGTCTGCCAGGAAGAATGCGACAAGCTGACCCGCAGCACGCCGGGCGGCAAGGTCTCGTTCATCGTCGATACGAAGGGCTATTGCCCGGTCAACAACAGCTGGGTGTCCAAGCAACCCACTGGCGACCGCGCGGTCGACCTGCCGGTGTGCCGCAACAAGCGGATCTTCAACGACCCTATCGGCCTGCGTGCGGCGGGCAACGTCCAGCGCTTCCTGCTCCAGACCTACCTGCGCGACACCGGGGAAATCATGACCGAGATCGACGTACCGTTCTTCTTCGGCGGCCGTCACTGGGGCAACCTGCGGGTGGGGTTTGATGCGGCGGTGTTGCTGGCTGACTGAMQTLKALYESIEMQFFDTLTKKLSSLFLLVVVSGLLYWVAVSARADILVQLRTAQLDAALLGQIEDRLDSLTHALLFGALLTFGMISFMVWYFRHLIVRPVTVMTKALEEIANGEGDLSKDLPLVTHDEIRTLAATCNRFLAKQREIISNVQALTVHIAVESARSLKNISDSSDSATHQARFAKEVMDQSNTAVGRIEEVSRQTQGISSTTAQNLNMARDSYAELLEVTGNISEISSSLGEFATLVDALNQRSSSIKSIVGLIQQISAQTNLLALNAAIEAARAGESGRGFAVVADEVRTLAQNVSRATDDISRNIDAMLQEVSSTHEQTTQISHSARETQKVVERASGHFESMIVDFESTNGKLADIADHIQQFADSNTGINERVTQIHADSQSIDQRMQQSATATRDLSGVAEKVQTLLGRFVLGHGKLDAAITRASECRDTLQVQLQALQEQGVNLFDQNYQLIPGTDPKQYMASYTERFARVCQEECDKLTRSTPGGKVSFIVDTKGYCPVNNSWVSKQPTGDRAVDLPVCRNKRIFNDPIGLRAAGNVQRFLLQTYLRDTGEIMTEIDVPFFFGGRHWGNLRVGFDAAVLLADPGPT0015710_13404DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_03601639COG0450PeroxiredoxinATGAGCCTCAGACTTGGCGACATCGCCCCCGATTTCGAACAGGATTCCAGCGCCGGCAAGATTCGCTTCCATGAATGGCTCGGTGATAGCTGGGGTGTGTTGTTCTCCCATCCAGCGGATTTCACCCCGGTGTGCACCACCGAACTGGGCCTTACCGCCAAGCTCAAGGATGAATTCGCCAAGCGCGGCGTCAAGGCCATTGCCCTTTCGGTAGACCCGGTGGACTCGCATCACAAGTGGATCGAGGACATCAACGAAACCCAGAATGCCGTGGTCAATTTTCCGATCCTGGCCGACGCCGACCGCAAGGTATCCGACCTCTACGACCTGATTCACCCCAACGCCAGCGACACGTTGACCGTGCGTTCCTTGTTCGTGATTGACCCGAACAAGAAGATCCGCCTGACCATCACCTACCCGGCGAGCACCGGGCGCAACTTCAATGAAATCCTGCGGGTGATCGATTCCTTGCAGCTGACCGACAACTACAAGGTCGCCACGCCGGCGAACTGGCAGGATGGCGATGAAGTGGTGATCGTGCCGTCGCTCAAGGATGAGGAGGAACTCAAGCAGCGCTTTCCCAAAGGCTATCGCGCCGTCAAACCATACCTGCGCCTGACGCCGCAGCCCAATCGCTGAMSLRLGDIAPDFEQDSSAGKIRFHEWLGDSWGVLFSHPADFTPVCTTELGLTAKLKDEFAKRGVKAIALSVDPVDSHHKWIEDINETQNAVVNFPILADADRKVSDLYDLIHPNASDTLTVRSLFVIDPNKKIRLTITYPASTGRNFNEILRVIDSLQLTDNYKVATPANWQDGDEVVIVPSLKDEEELKQRFPKGYRAVKPYLRLTPQPNRPGPT0007245_2DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007245-hflX-K03665NANA
D1-35_03602594ssuECOG0431FMN reductase (NADPH)ATGTTGGTTGTCTCGCTCGGCGGCAGTCCCAGCCAGCGCTCCCGATCAGGAGTGCTGCTGGAGCGCTCGCAACGTTGGTTGCAGCAGCAAGGTGTGGAAGTGGTGAGCTATCAGGTGCGTGATTTTCCCGCCGAAGATCTGCTCCATGCCCGCTTCGATAGCCCCAAGGTACTGGACCTGCTGGCCCAGATCGAAAACGCCGACGGCCTGGTGATCGCTACGCCTGTCTACAAGGCGTCTTTCTCCGGCGCGTTGAAAACGGTACTGGACCTGCTGCCCGAACGCGCGCTGGCCCATAAGGTAGTGTTGCCCATGGCGACAGGCGGCAGCATCGCCCACATGCTGGCGGTGGACTACGCCCTGAAGCCGGTGTTGTCGGCACTCAAGGCCCAGGAAATGCTGCATGGGATTTTCGCCGAGGACAACCAGATCGCTTACGGCGAAGGCAGCGCCCAGGCGCAATTGGCGCCGGCCCTGCAGCAGCGTCTGGACGAGGCGCTTGAACAGTTCTACAGCGCCATGGCCCGGCGGCCCAAGCCGCTGGATCCCAGCGTATTGAACGAACGTCTGTTGAGTGCTCGCTGGAGCATCTGAMLVVSLGGSPSQRSRSGVLLERSQRWLQQQGVEVVSYQVRDFPAEDLLHARFDSPKVLDLLAQIENADGLVIATPVYKASFSGALKTVLDLLPERALAHKVVLPMATGGSIAHMLAVDYALKPVLSALKAQEMLHGIFAEDNQIAYGEGSAQAQLAPALQQRLDEALEQFYSAMARRPKPLDPSVLNERLLSARWSIPGPT0003045_740DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0003045-ssuE-K00299NANA
D1-35_03603966ssuAPutative aliphatic sulfonates-binding proteinATGCGCACTGTCATTTTGCGTCGCGGGCTGGTCGCTCTGTTTGCTGCGGCTGTGTCCTTCGGCGCCATCACCCAGGCTCAGGCCGAAACCTTGCGGATCGGCTATCAGAAGTACGGCACTCTGGTGCTGCTCAAGGCCAAGGGCACCTTGGAAAAACGCCTCGCCGCCCAAGGCGTCGACGTGCAATGGACCGAATTTCCCGGCGGCCCGCAGCTGCTGGAAGGCCTGAACGTCGGCTCGATCGATTTTGGCGTGACTGGCGAAACCCCTCCGGTGTTTGCCCAAGCGGCAGGCGCGGATTTGCTTTATGTCGCCTACGAGCCACCGGCGCCGAACAGCGAGGCAATCCTGGTGCCCAAGGGCTCGCCGATCCAGTCGGTGCAGGAGCTCAAGGGCAAAAAAGTCGCGCTGAACAAAGGCTCTAACGTCCACTACCTGCTGGTACGCGCGCTGGAAGATGCCGGCCTCGAATATTCCGACATCCAGACGGTTTTCCTGCCGCCGGCGGATGCCCGTGCCGCGTTCGAACGCGGCAGCGTGGACGCCTGGGTAATCTGGGACCCGTACCAGGCAGCCGCCGAACAACAGTTGCAGGCACGCACCCTGCGTGACGGCAAGGGCATCGTCGACAACCACCAGTTCTATCTGGCGACCAAACCTTACGCGCAAAAAAATCCCCAGGTCATCACGACGCTAGTGGAAGAGGTGCGTGCGGTAGGGGAGTGGTCCAAGGCCAACCCTGAAGACGTGACCCGGCAGGTCTCGCCGCTGCTAGGCCTGCCGGCGGACATCACCCTGACGTCGGTGAAACGCCAAGGCTATGGGGCTCTGTTCCTGACGCCGGAGGTGGTCGCGGCGCAGCAGAAAATCGCCGACAGCTTCTATCAGCTCAAATTGATTCCCAAGCCCTTGAGCATCAAGGACGTGATCTGGACGCCGCCGGCGGCCGTTGCGAACGCGCAGTAAMRTVILRRGLVALFAAAVSFGAITQAQAETLRIGYQKYGTLVLLKAKGTLEKRLAAQGVDVQWTEFPGGPQLLEGLNVGSIDFGVTGETPPVFAQAAGADLLYVAYEPPAPNSEAILVPKGSPIQSVQELKGKKVALNKGSNVHYLLVRALEDAGLEYSDIQTVFLPPADARAAFERGSVDAWVIWDPYQAAAEQQLQARTLRDGKGIVDNHQFYLATKPYAQKNPQVITTLVEEVRAVGEWSKANPEDVTRQVSPLLGLPADITLTSVKRQGYGALFLTPEVVAAQQKIADSFYQLKLIPKPLSIKDVIWTPPAAVANAQPGPT0003025_2485DIRECT EFFECTBIO-FERTILIZATIONSULFUR_ASSIMILATION|MINERALIZATIONS-ASSSIMILATION-SULFUR_METABOLISMS-METABOLISM-ALKANESULFONATE_TRANSPORT,PGPT0003025-ssuA-K15553NANA
D1-35_036041149ssuDCOG2141Alkanesulfonate monooxygenaseATGAGCCTCAATATTTTCTGGTTCCTGCCCACCCACGGCGACGGCCATTACCTTGGCACCGCTGAAGGCGCCCGCGCCGTCGATCATGGTTACCTGCAACAGGTTGCCCAGGCTGCCGATCGGCTGGGTTTCGGCGGGGTGTTGATTCCTACCGGGCGTTCCTGCGAAGACTCCTGGCTGGTAGCCGCTTCGTTGATTCCGGTGACCCAGCGCCTGAAGTTCCTGGTTGCCCTGCGCCCCGGGATCATTTCCCCGACGGTGGCGGCGCGTCAGGCCGCGACGCTGGATCGGCTGTCCGGCGGGCGGGCGCTGTTCAACCTGGTGACGGGTGGCGATCCGGACGAGCTGGCCGGTGACGGGCTGTTTCTGGACCACGAGCAACGCTACCAGGCATCGGTGGAATTCACCCGGATCTGGCGTCGGGTGCTAGAGGGCGAGACGGTCGATTACGACGGTGAACACATCAGTGTGAAGGGCGCCAAGCTGCTCTATCCGCCGATCCAGCAACCGCGTCCGGCATTGTATTTCGGCGGCTCGTCGGAAGCTGCCCAGGATCTCGCCGCCGAGCAGGTGGAAATGGTTTTGACCTGGGGCGAACCGCCCGCCGCCGTCGCGGAAAAAATTGCCCAGGTGCGGGCCAAGGCCGAGAAGCTTGGGCGCACCGTGCGTTTCGGCATTCGCCTGCATGTGATCGTGCGGGAAACCAACGCCGAAGCCTGGCAAGCCGCCGACCGGCTGATCTCCCACCTGGACGACGAAACCATCGCTCGCGCCCAGGCGTCCCTGGCGCGTTTCGACTCGGTGGGTCAGCAACGCATGGCCGCGTTGCACGGCGGTCGGCGCGACAAGCTGGAAGTCAGCCCCAACCTCTGGGCCGGTGTCGGCCTGGTGCGCGGCGGTGCCGGAACGGCGCTGGTGGGCGATGGCCCGACCGTGGCTGAGCGGGTCAAGGAATACGCCGACCTGGGCATCGACACGTTCATTTTCTCGGGTTATCCACACTTGGAAGAATCCTATCGGGTGGCGGAACTGTTGTTCCCGCACCTCGATGTGGAGCGCCCGGAACTGCCGAAAAGCCAGGGCTATGTGAGCCCGTTCGGTGAAATGGTCGCCAACGATATCCTGCCCAAAGCTGCTTCGCAGAGCTGAMSLNIFWFLPTHGDGHYLGTAEGARAVDHGYLQQVAQAADRLGFGGVLIPTGRSCEDSWLVAASLIPVTQRLKFLVALRPGIISPTVAARQAATLDRLSGGRALFNLVTGGDPDELAGDGLFLDHEQRYQASVEFTRIWRRVLEGETVDYDGEHISVKGAKLLYPPIQQPRPALYFGGSSEAAQDLAAEQVEMVLTWGEPPAAVAEKIAQVRAKAEKLGRTVRFGIRLHVIVRETNAEAWQAADRLISHLDDETIARAQASLARFDSVGQQRMAALHGGRRDKLEVSPNLWAGVGLVRGGAGTALVGDGPTVAERVKEYADLGIDTFIFSGYPHLEESYRVAELLFPHLDVERPELPKSQGYVSPFGEMVANDILPKAASQSPGPT0003040_937DIRECT EFFECTBIO-FERTILIZATIONSULFUR_ASSIMILATION|MINERALIZATIONS-ASSSIMILATION-SULFUR_METABOLISMS-METABOLISM-ALKANESULFONATE_DEGRADATION,PGPT0003040-ssuD-K04091NANA
D1-35_03605783ssuC_3COG0600Putative aliphatic sulfonates transport permease protein SsuCATGAAAAAACTTATCCACAACCTCGCGCCGTGGGCGGTGCCCCTGCTGTTGTTGGCGGTGTGGCAATTGTCGGTATCGGCCGGCTGGTTATCCACGCGGATCCTGCCGGCGCCGGTGGCGGTGATCGAGGCCGGAGTGAACCTGGTGCGCAGCGGTGAAATCTGGACGCACCTGGCTATCAGCGGTTGGCGCGCGGCGGTCGGCTTCCTGATTGGCGGCGGCATCGGCCTGGCCCTGGGCTTTATCACCGGCCTGTCGAAGTGGGGCGAACGGCTGTTGGACAGCTCCGTGCAGATGGTGCGTAACGTGCCTCACCTGGCGCTGATTCCACTGGTGATCCTCTGGTTCGGTATCGACGAGTCGGCGAAGATTTTCCTGGTGGCGCTGGGCACGCTGTTTCCGATCTACCTCAACACCTACCACGGGATTCGCAATGTCGACCCGGCGCTGGTGGAGATGTCCCGCAGCTACGGTTTATCCGGCTTCAGCCTGTTTCGCCAGGTGATCCTGCCGGGCGCCTTGCCTTCGATCCTGGTGGGCGTGCGTTTTGCCCTGGGTTTCATGTGGTTGACGCTGATCGTCGCGGAAACCATCTCGGCCAGCTCCGGTATCGGTTATCTGGCGATGAATGCCCGGGAATTCCTGCAGACCGACGTGGTGGTGCTGGCGATTCTGCTGTACGCCGTGCTCGGCAAGCTGGCCGACCTTGCTGCCCGCGGGCTTGAACGCGTCTGGCTGCGCTGGCATCCGGCCTATCAGGTGAACAAGGGAGGTGTCGCATGAMKKLIHNLAPWAVPLLLLAVWQLSVSAGWLSTRILPAPVAVIEAGVNLVRSGEIWTHLAISGWRAAVGFLIGGGIGLALGFITGLSKWGERLLDSSVQMVRNVPHLALIPLVILWFGIDESAKIFLVALGTLFPIYLNTYHGIRNVDPALVEMSRSYGLSGFSLFRQVILPGALPSILVGVRFALGFMWLTLIVAETISASSGIGYLAMNAREFLQTDVVVLAILLYAVLGKLADLAARGLERVWLRWHPAYQVNKGGVAPGPT0003030_1923DIRECT EFFECTBIO-FERTILIZATIONSULFUR_ASSIMILATION|MINERALIZATIONS-ASSSIMILATION-SULFUR_METABOLISMS-METABOLISM-ALKANESULFONATE_TRANSPORT,PGPT0003030-ssuB-K15554NANA
D1-35_03606807ssuBCOG1116Aliphatic sulfonates import ATP-binding protein SsuBATGACCGCCCAACAACCGCCGCGCCTGCTGCGAGGTATCCCGCTGGCGGTGCGCAATCTGCAGAAGACCTTTGGTTCGCGCCAGGTATTGCGTGACATCGACTTGCATATCCCGGCCGGGCAGTTCGTCGCCGTGGTTGGCCGCAGCGGCTGCGGCAAAAGTACCTTGTTGCGCTTGCTGGCCGGCCTCGATCAGCCGTCGGGCGGGCAATTGTTGGCCGGTTCGGCATCGCTGAGCGCTGCACGGGAAGACACACGTCTGATGTTTCAGGAGGCGCGTTTGCTGCCCTGGAAAAAGGTCATCGACAACGTCGGCCTCGGACTCAAGGGCGACTGGCGACCACAAGCGTTGCAGGCGCTGGATGCCGTGGGCCTGGCCGATCGTGCACACGAGTGGCCGGCGGCATTGTCCGGCGGACAGAAACAGCGGGTGGCCCTGGCCCGGGCGCTGATTCATCAACCGCGCCTGCTGTTGCTGGACGAACCTCTGGGCGCGCTCGATGCGCTGACCCGGATCGAAATGCAGCAACTGATCGAGCGTCTCTGGCAGCAACACGGCTTCACCGTGCTGTTGGTGACCCACGACGTCAGCGAAGCGGTGGCGATCGCCGACCGGGTGATCCTGATCGAAGACGGCCAGATCGGCCTCGACCTGGCCATCGACTTGCCGCGCCCGCGTGCCCGCGGTTCGCATCGGCTGGCGAGCCTGGAAACCGAAGTCCTCAACCGCGTGCTGTCCTTGCCCGGCCAACCGCCGGAATCCGAACCCGTTTCACCCTTGCCCACGCAACTGCGTTGGGCGCAATAAMTAQQPPRLLRGIPLAVRNLQKTFGSRQVLRDIDLHIPAGQFVAVVGRSGCGKSTLLRLLAGLDQPSGGQLLAGSASLSAAREDTRLMFQEARLLPWKKVIDNVGLGLKGDWRPQALQALDAVGLADRAHEWPAALSGGQKQRVALARALIHQPRLLLLDEPLGALDALTRIEMQQLIERLWQQHGFTVLLVTHDVSEAVAIADRVILIEDGQIGLDLAIDLPRPRARGSHRLASLETEVLNRVLSLPGQPPESEPVSPLPTQLRWAQPGPT0003035_673DIRECT EFFECTBIO-FERTILIZATIONSULFUR_ASSIMILATION|MINERALIZATIONS-ASSSIMILATION-SULFUR_METABOLISMS-METABOLISM-ALKANESULFONATE_TRANSPORT,PGPT0003035-ssuC-K15555NANA
D1-35_03607216hypothetical proteinATGACTATCAAAGCCATCAACGTACGCAACCAGTTCAAAGGCACCATCAAGGAAATCGTCGAAGGCGACGTGCTGTCGGAAATCGACGTGCAGACCGCCTCGGGCATCGTTACCTCGGTCATCACCACCCGCTCGGTCAAGGAGCTGGAACTGGCGATTGGCAGCGAAGTGATTGCCTTCGTCAAATCCACCGAGGTGTCTATCGCCAAGTTGTGAMTIKAINVRNQFKGTIKEIVEGDVLSEIDVQTASGIVTSVITTRSVKELELAIGSEVIAFVKSTEVSIAKLNANANANANA
D1-35_03608633hypothetical proteinATGACACGCACCGCCACCCCTCGCAAACCCCGCGCCCGCAGCCAGGCCCGGATCGACTCGATCCTCGATGCCGCCCGCACGCTGCTCGCCGCCGAAGGCGTGGCCAGCCTGTCGATCTACAGCGTCGCCGAGCGCGCCGGGATCCCGCCCTCCTCCGTCTATCACTTCTTCGCCAGCGTCCCGGCCCTGCTCGAAGCCCTGACCGCCGACGTCCATGCAGCCTTTCGTGCCTGCCTTCAAACACCGATCGATCATGCAGCGCTGAACCATTGGCACGATCTGTCGCGGCTGGTGGAGCAACGGATGCTGGTGATCTACAGCGAGGACGCCGCCGCTCGCCAACTGATCCTGGCCCAGCATGGCCTGACTGAAGTCACCCAGGCCGACCGCCAGCATGACCTGGAACTGAGCGAGCTGATGCACACCGTCTTTGCCCGCCATTTCCAACTGCCGCCCTTGCCTGCCGATGTCGACGTGTTCGCCTTGGCCATGGAACTGGGCGACCGCGTCTACGCCCGCTCGGTACACCAGCACGGCCAGATAACCCCGCGCATGGCCGAGGAAGGCATGCGTGTGTTCGATGCGTACCTGGGGCTCTATCTCCCTCCGTTTCTGCCCAAGCGCTCTGATTGAMTRTATPRKPRARSQARIDSILDAARTLLAAEGVASLSIYSVAERAGIPPSSVYHFFASVPALLEALTADVHAAFRACLQTPIDHAALNHWHDLSRLVEQRMLVIYSEDAAARQLILAQHGLTEVTQADRQHDLELSELMHTVFARHFQLPPLPADVDVFALAMELGDRVYARSVHQHGQITPRMAEEGMRVFDAYLGLYLPPFLPKRSDNANANANANA
D1-35_036091377puuA_2COG0174Gamma-glutamylputrescine synthetase PuuAATGTCGGTACCCCCGCGTGCCGTTCAGCTTAACGAAGCGAACGCGTTCCTTAAGGAACATCCTGAGGTTCTGTACGTTGACCTTCTGATTGCGGATATGAATGGTGTGGTGCGCGGCAAGCGCATCGAACGCACCAGCCTCCACAAGGTTTACGAGAAAGGCATCAACCTGCCGGCCTCTCTATTTGCCCTGGATATCAATGGCTCGACGGTGGAAAGCACCGGCCTGGGCCTGGACATCGGCGATGCCGACCGCATCTGCTATCCAATCCCCGGCACTCTAAGCAACGAACCCTGGCAGAAGCGCCCCACCGCGCAACTGCTGATGACCATGCACGAGCTTGAAGGCGATCCGTTCTTCGCCGACCCTCGCGAAGTCCTGCGCCAGGTCGTGACCAAGTTCGATGAACTGGGCCTGACCATCTGCGCGGCATTCGAGCTGGAGTTCTACCTGATCGACCAGGAGAACGTGAATGGCCGTCCACAACCGCCCCGCTCGCCAATCTCTGGCAAACGCCCGCACTCGACACAGGTCTACCTGATCGATGACCTCGACGAATACGTCGATTGCCTCCAGGACATCCTGGAAGGGGCCAAGGAGCAAGGCATTCCCGCCGACGCCATCGTCAAGGAAAGTGCCCCGGCGCAGTTCGAAGTGAACCTGCACCACGTGGCCGACCCGATCAAGGCTTGTGACTACGCGGTACTGCTCAAGCGGCTGATCAAGAACATCGCCTACGACCATGAAATGGACACCACCTTCATGGCCAAGCCGTATCCAGGCCAGGCGGGCAACGGTCTGCACGTCCATATCTCGATCCTGGACAAAGAAGGCAAGAATATCTTTGCCAGCGAGGATCCCGAGCAGAACGCCGCGCTGCGTCACGCGATCGGCGGTGTGCTCGAGACCCTGCCCGCGCAGATGGCGTTCCTCTGCCCGAACGTCAACTCCTACCGTCGTTTCGGCGCACAGTTCTACGTGCCGAACTCGCCGACCTGGGGCCTGGACAACCGCACCGTGGCCTTGCGCGTGCCGACCGGCTCCGCCGATGCCGTACGCCTGGAACACCGTGTCGCCGGCGCCGATGCCAACCCGTACCTGTTGATGGCGGCGGTCCTGGCGGGCGTGCACCATGGCCTGACCAACAAGATCGAGCCCGGCGCGCCCGTCGAAGGCAACAGCTACGAGCAGAACGAGCAAAGCCTGCCGAACAACTTGCGCGATGCCCTGCGCGAACTGGACGACAGCGAAGTCATGGCCAAGTACATCGATCCCAAGTACATCGATATCTTCGTGGCCTGCAAGGAAAGCGAGCTGGAAGAGTTTGAACACTCCATCTCCGACCTTGAGTACAACTGGTACCTGCATACCGTTTAAMSVPPRAVQLNEANAFLKEHPEVLYVDLLIADMNGVVRGKRIERTSLHKVYEKGINLPASLFALDINGSTVESTGLGLDIGDADRICYPIPGTLSNEPWQKRPTAQLLMTMHELEGDPFFADPREVLRQVVTKFDELGLTICAAFELEFYLIDQENVNGRPQPPRSPISGKRPHSTQVYLIDDLDEYVDCLQDILEGAKEQGIPADAIVKESAPAQFEVNLHHVADPIKACDYAVLLKRLIKNIAYDHEMDTTFMAKPYPGQAGNGLHVHISILDKEGKNIFASEDPEQNAALRHAIGGVLETLPAQMAFLCPNVNSYRRFGAQFYVPNSPTWGLDNRTVALRVPTGSADAVRLEHRVAGADANPYLLMAAVLAGVHHGLTNKIEPGAPVEGNSYEQNEQSLPNNLRDALRELDDSEVMAKYIDPKYIDIFVACKESELEEFEHSISDLEYNWYLHTVPGPT0000645_5086DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMATE_DEGRADATION|CONVERSION,PGPT0000645-glnA-K01915NANA
D1-35_03611777puuD_2COG2071Gamma-glutamyl-gamma-aminobutyrate hydrolase PuuDATGTCTCGCCTGCCGTTAATCGGCATCACCACCTGCTCCAGGCAGATCGGTCTGCATGCGTATCACACCACTGGCGACAAATATGCGCGGGCTGTCGCAACGGCCGCCAAGGGCTTGCCGGTGCTGATCCCGTCCCTGGCGGATCTGTTCTCCCCGTCCGATATTCTGGACGCCCTGGACGGTATTCTTTTTACCGGCTCCCCTTCCAATGTAGAACCTTTTCACTACCAGGGCCCGGCCAGCGCGCCAGGCACCGCTCATGATCCTGCACGGGACGCCATTACCCTGCCGCTGATCCGCGCAGCGGTCGACGCGGGCGTTCCGGTGCTGGGCATCTGTCGCGGTTTCCAGGAAATGAACGTTGCCTTTGGCGGTAGCCTGCATCAGAAAGTTCATGAAGTCGGAACCTTCATCGATCATCGTGAAGACGACACCCAGCCGGTAGAGGTCCAATATGGTCCTGCCCATGCCGTGCATGTCCAGCCTGGCGGTATCCTCGCGTCTTTGGGGCTGCCGCCGCAGGTCGAGGTCAACTCGATCCACAGCCAGGGCATCGAGCGCCTGGCCTCGGGGCTGCGGGCCGAAGCGCTGGCGCCGGATGGCTTGATCGAAGCCGTCTCGGTGGTACAAGGCAAGGCTTTTGCTTTAGGAGTGCAATGGCACCCTGAATGGGCGGTAGGCTCCAACCCGCACTACCTTGCGATTTTCCAGGCATTTGGCGATGCCTGCCGAGCAAGGGCAACACAACGCGACGCCGATGCGTCAAACAACGCCTGAMSRLPLIGITTCSRQIGLHAYHTTGDKYARAVATAAKGLPVLIPSLADLFSPSDILDALDGILFTGSPSNVEPFHYQGPASAPGTAHDPARDAITLPLIRAAVDAGVPVLGICRGFQEMNVAFGGSLHQKVHEVGTFIDHREDDTQPVEVQYGPAHAVHVQPGGILASLGLPPQVEVNSIHSQGIERLASGLRAEALAPDGLIEAVSVVQGKAFALGVQWHPEWAVGSNPHYLAIFQAFGDACRARATQRDADASNNAPGPT0007640_56DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINE_USAGEPLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007640-puuD-K09473NANA
D1-35_036121359puuA_3COG0174Gamma-glutamylputrescine synthetase PuuAATGAGTAACAACCTCGACCAGCTCACCGATTGGTTGAAAGACCACAAGATCACAGAAGTCGAATGCATGATTGGCGACCTGACCGGCATTACCCGGGGCAAGATCTCGCCGACCAACAAGTTCATCGCCGAAAAAGGCATGCGCCTGCCCGAGAGCGTTCTGCTCCAGACCGTAACGGGCGACTATGTCGAAGACGACATCTATTACGAACTGCTCGACCCCGCCGACATCGACATGATCTGCCGCCCGGACGAAAACGCAGTCTTCCTGGTGCCCTGGGCCATCGAGCCCACCGCCCAGGTGATCCACGATTCCTACGACAAGCAAGGCAACCCCATCGAGCTGTCGCCGCGCAACGTGCTCAAGAAGGTGCTCAAGCTCTACGCCGACAAGGGCTGGCAGCCGATTGTCGCGCCGGAGATGGAGTTCTACCTGACCAAGCGCAGCGACGACCCGGACTTTCCGCTGCAACCGCCTATCGGCCGTTCCGGTCGCCCGGAAACCGGTCGCCAGTCTTTCTCGATCGAAGCGGCGAACGAATTCGACCCGTTGTTCGAGGACGTCTATGACTGGTGCGAATTGCAGGAACTGGACCTCGATACCCTGATTCACGAAGACGGCACCGCGCAGATGGAAATCAACTTCCGTCATGGCGATGCACTGTCGCTGGCCGACCAGATCCTGGTGTTCAAGCGCACCATGCGCGAGGCGGCGCTCAAGCACGATGTGGCCGCCACCTTCATGGCCAAACCGATGACCGGCGAGCCGGGCAGTGCGATGCACTTGCACCAGAGCATCATCGACAAGGAAACCGGCAAGAACGTCTTCTCCAACGAAGACGGGACCATGAGCGAGCTGTTCCTGCACCACATCGGTGGCCTGCAGAGATTCATCCCCGAGCTGCTGCCGCTGTTCGCCCCCAACGTCAATTCGTTCCGCCGCTTCCTGCCCGACACCTCGGCGCCGGTGAACGTCGAATGGGGCGAAGAAAACCGCACCGTGGGCTTGCGGGTTCCGGACGCCGGGCCGCAGAACCGTCGCGTGGAAAATCGCTTGCCGGGCGCCGACGCCAACCCGTACCTGGCGATTGCCGCCAGCCTGTTGTGCGGCTACATCGGCATGGTCGAGGGCATCGATCCGAGCGCGCCAGTGGTCGGCCGTGGTTATGAGCGCCGGAACCTGCGTTTGCCGCTGACCATCGAAGATGCCCTGGAGCGCATGGAAAACAGCTCCACCATCGAGAAGTACCTGGGCAAGAAATTCATCACGGGCTACGTCGCGGTCAAGCGGGCCGAGCATGAAAACTTCAAGCGCGTCATCAGTTCGTGGGAGCGGGAATTCCTGCTCTTTGCCGTCTGAMSNNLDQLTDWLKDHKITEVECMIGDLTGITRGKISPTNKFIAEKGMRLPESVLLQTVTGDYVEDDIYYELLDPADIDMICRPDENAVFLVPWAIEPTAQVIHDSYDKQGNPIELSPRNVLKKVLKLYADKGWQPIVAPEMEFYLTKRSDDPDFPLQPPIGRSGRPETGRQSFSIEAANEFDPLFEDVYDWCELQELDLDTLIHEDGTAQMEINFRHGDALSLADQILVFKRTMREAALKHDVAATFMAKPMTGEPGSAMHLHQSIIDKETGKNVFSNEDGTMSELFLHHIGGLQRFIPELLPLFAPNVNSFRRFLPDTSAPVNVEWGEENRTVGLRVPDAGPQNRRVENRLPGADANPYLAIAASLLCGYIGMVEGIDPSAPVVGRGYERRNLRLPLTIEDALERMENSSTIEKYLGKKFITGYVAVKRAEHENFKRVISSWEREFLLFAVPGPT0000645_6284DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLUTAMATE_DEGRADATION|CONVERSION,PGPT0000645-glnA-K01915NANA
D1-35_036131365spuC_2COG0161Putrescine--pyruvate aminotransferaseATGACCCGCAACAATCCGCAAACCCGTGAATGGCAGGCCCTGAGCAGCGATCATCATCTGGCACCGTTCAGCGACTTCAAACAGCTCAAAGAGAAAGGCCCGCGCATCATCACCCACGCCAAGGGCGTGTACCTCTGGGACAGTGAAGGCAACAAGATCCTCGACGGCATGGCCGGCCTCTGGTGCGTGGCGGTCGGCTACGGCCGCGATGAGCTGGCGGACGCCGCCAGCCAACAGATGCGCGAGCTCCCGTACTACAACCTGTTCTTCCAGACCGCCCACCCGCCGGTGCTGGAACTGTCGAAGGCCATCGCCGACATCGCCCCGGAAGGCATGAACCACGTGTTCTTCACCGGCTCCGGCTCCGAAGGCAACGACACCATGCTGCGTATGGTCCGCCACTACTGGGCGATCAAAGGGCAGCCGAACAAGAAAGTCATCATCAGTCGCAAGAACGGTTATCACGGTTCGACCGTGGCTGGCGCGAGCCTGGGTGGCATGACCTACATGCATGAGCAGGGCGACCTGCCGATCCCGGGTATTGTCCACATCGCCCAACCCTACTGGTTTGGCGAAGGCGGCGACATGAGCCCCGAAGAGTTCGGCATCTGGGCCGCCAATCAGCTGGAAGAAAAGATCCTCGAGATCGGCGTCGACAACGTCGGTGCGTTCATTGCCGAGCCGATCCAGGGCGCCGGCGGCGTGATCGTGCCGCCGGACAGCTACTGGCCGCGCATGAAGGAAATCCTCGCCAAATACGACATCCTGTTCGTGGCCGACGAGGTCATCTGCGGTTTTGGCCGCACGGGTGAGTGGTTCGGTACCGATCATTACGGGTTGAAACCGCACATGATGACTATCGCCAAGGGCCTTACCTCGGGTTACATCCCCATGGGCGGCCTGATCGTGCGCGACGATGTGGTCGCGGTGCTCAACGAAGGCGGTGACTTCAACCACGGCTTCACCTACTCCGGTCACCCGGTGGCCGCTGCGGTGGCCCTGGAAAATATCCGTATCCTGCGCGAAGAAAAGATCATCGAGCGCGTCCACAGCGAAACGGCACCGTATTTGCAGCAGCGCCTGCGGGAACTGAACGACCATCCGCTGGTGGGTGAAGTGCGCGGCGTCGGTTTGCTGGGGGCGATCGAACTGGTCCAGGACAAGGCCACGCGCAAACGCTACGAAGGCAAGGGCGTGGGCATGATCTGCCGGCAGTTCTGCTTCGATAACGGGCTGATCATGCGCGCAGTGGGCGACACCATGATCATTGCGCCGCCGCTGGTGATCAGCAAGGCCGAGATCGACGAATTGGTGGCCAAGGCGCGGCAATGCCTGGACCTGACGCTCGGTGCGCTGCAAGGCTGAMTRNNPQTREWQALSSDHHLAPFSDFKQLKEKGPRIITHAKGVYLWDSEGNKILDGMAGLWCVAVGYGRDELADAASQQMRELPYYNLFFQTAHPPVLELSKAIADIAPEGMNHVFFTGSGSEGNDTMLRMVRHYWAIKGQPNKKVIISRKNGYHGSTVAGASLGGMTYMHEQGDLPIPGIVHIAQPYWFGEGGDMSPEEFGIWAANQLEEKILEIGVDNVGAFIAEPIQGAGGVIVPPDSYWPRMKEILAKYDILFVADEVICGFGRTGEWFGTDHYGLKPHMMTIAKGLTSGYIPMGGLIVRDDVVAVLNEGGDFNHGFTYSGHPVAAAVALENIRILREEKIIERVHSETAPYLQQRLRELNDHPLVGEVRGVGLLGAIELVQDKATRKRYEGKGVGMICRQFCFDNGLIMRAVGDTMIIAPPLVISKAEIDELVAKARQCLDLTLGALQGPGPT0007865_721DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007865-spuC-K12256NANA
D1-35_036141128spuD_1COG0687Putrescine-binding periplasmic protein SpuDATGAAGGCAATAGGCATGAAGACATTAGGTATGAAGATAGCTGGCAAGACCCTCCTCGCCATGTCCCTGGCGGGCGTGATGGCGGGCGCCGCCCAGGCGGACGACAAAGTGCTGCACGTCTACAACTGGTCGGACTACATTGCGCCGGACACGGTCGCCAAGTTCGAGAAGGAGACAGGGATCAAGGTCGTCTACGACGTCTTCGACAGCAACGAGACCTTGGAGGCCAAGCTGCTGGCGGGCAAATCCGGCTATGACGTCGTCGTGCCGTCGAACAACTTCCTCGCCAAGCAGATCAAGGCCGGTGTCTATCAGGAGCTGGACAAGTCCAAGCTGCCGAACTGGAAAAACCTCGACACCGACCTGCTCAAGGCCGTCGGCGATGCCAGCGACCAGGGCAACAAACACGCCTTCCCGTACATGTGGGGCACCATCGGCATCGGTTACAACCCGGAAAAGGTCAAGGCCGCATTGGGCATCGACAAGATCGATTCCTGGGACACCCTGCTCAAGCCCGAGAACATCGCCAAGCTCAAGAGCTGCGGGGTGAGCTTCCTCGATTCGCCGACCGAAATGATTCCGGTGGCCCTGCATTACCTCGGCTACCCGACCGACAGCCAGGACAAGAAGCAACTGGCCGAGGCCGAAGCGTTGTTCCTCAAGCTGCGTCCATCGATCGGCTACTTCCACTCCTCCAAGTACATCTCGGACCTGGCCAACGGCAACATCTGCGTGGCCGTGGGTTACTCGGGTGATATCGAGCAATCCAAGAGCCGTGCTGCCGAAGCTGGCGGCAAGGTGAAAGTGGCCTACACCATTCCGAAGGAAGGTGCCGGTTCGTTCTACGACATGGTCGCCATTCCCAAGGATGCCAAAAACGTCGAAGGCGCCTACAAGTGGATGAACTTCATCATGCAGCCGGAAATCATGGCGGAGATCACCGACAACGTGCGCTTCCCTAACGGCAACAAGGCCGCCACCCCACTGGTGGACAAGGAAATTTCCGGTGACCCGAGCATTTATCCATCGGACGAAGTTAAGGCCAAGCTCTACGCGATTGCCGACCAGCCGGCCGCGACCCAGCGGATCCTGACCCGCAGCTGGACCAAGATCAAATCCGGTAAATAAMKAIGMKTLGMKIAGKTLLAMSLAGVMAGAAQADDKVLHVYNWSDYIAPDTVAKFEKETGIKVVYDVFDSNETLEAKLLAGKSGYDVVVPSNNFLAKQIKAGVYQELDKSKLPNWKNLDTDLLKAVGDASDQGNKHAFPYMWGTIGIGYNPEKVKAALGIDKIDSWDTLLKPENIAKLKSCGVSFLDSPTEMIPVALHYLGYPTDSQDKKQLAEAEALFLKLRPSIGYFHSSKYISDLANGNICVAVGYSGDIEQSKSRAAEAGGKVKVAYTIPKEGAGSFYDMVAIPKDAKNVEGAYKWMNFIMQPEIMAEITDNVRFPNGNKAATPLVDKEISGDPSIYPSDEVKAKLYAIADQPAATQRILTRSWTKIKSGKPGPT0007805_1157DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007805-potF-K11073NANA
D1-35_036151098spuECOG0687Spermidine-binding periplasmic protein SpuEGTGCCTGTCTTTTCTTTGTTACGCAACGCTTTGCTGGTCGGTGCCGGCCTGACGCTCGCCGTCGGTGTCCAGGCCGCCTCCACCGTGCATATTTATAACTGGTCGGACTACATCGGCGAGACCACCCTGGCGGACTTCGAGAAAGCCACCGGGATCAAGCCGGTCTACGACGTGTTCGATTCCAACGAAACCCTGGAAGGCAAGTTGCTGGCCGGTCGTACCGGTTACGACGTGGTTGTGCCGTCCAACCACTTCCTGGGCAAGCAGATCAAGGCTGGTGCGTTCCAGAAACTCGACAAGGCGCAATTGCCCAACTACGCCAACCTCGACCCCGTGCTGCTCAAGCGCCTGGAGAAAAACGACCCGGGCAACCAATATGCCGTGCCTTACCTGTGGGGCACCAACGGCATCGGCTACAACGTCGAGAAGGTCAAGGCGGTATTGGGCGTCGAGAAAATCGACTCGTGGGCCATGCTGTTCGAACCGGAAAATATCAAGAAGCTCTCCAGCTGCGGCGTTTCGTTCCTCGACTCGGGCGACGAAATGATTCCGGCCATGCTCAACTACCTGGGCCTGGACCCCAACAGCCAGAACCCCGAAGACTACAAGAAGGCCGAGGCCCAGCTCCTCAAGATCCGGCCTTACGTCACCTACTTCAATTCCTCCAAGTACATCTCCGATCTGGCCAACGGCGAGATCTGCGTGGCCGCCGGTTTCTCCGGGGACATTTTCCAGGCCCGCGAACGTGCCAGCGAGGCCGGCAAGGGCGTCGATATCGCCTACGTGATTCCCAAGGAAGGCGGCAACCTCTGGTTCGACATGCTGGCGATCCCGCGCGACGCCAGCAACGCCAAGCAGGCCCATGCGTTCATCAACTACCTGCTCAAGCCTGAGGTCATCGCCCAGGTGAGCGACGTCGTTGGTTACGCCAACCCGAACCCGAAGGCTGGCGAACTGATGAGCCAGGACGTACGCACCGACGAAGCGGTCTACCCACCGCAAGCGGTCGTCGACAAGCTCTACGTCAATTCCGAGTTGCCGCCCAAGATCCAACGACTCATGACCCGCAGCTGGACTAAGGTCAAGTCGGGTAAATAGMPVFSLLRNALLVGAGLTLAVGVQAASTVHIYNWSDYIGETTLADFEKATGIKPVYDVFDSNETLEGKLLAGRTGYDVVVPSNHFLGKQIKAGAFQKLDKAQLPNYANLDPVLLKRLEKNDPGNQYAVPYLWGTNGIGYNVEKVKAVLGVEKIDSWAMLFEPENIKKLSSCGVSFLDSGDEMIPAMLNYLGLDPNSQNPEDYKKAEAQLLKIRPYVTYFNSSKYISDLANGEICVAAGFSGDIFQARERASEAGKGVDIAYVIPKEGGNLWFDMLAIPRDASNAKQAHAFINYLLKPEVIAQVSDVVGYANPNPKAGELMSQDVRTDEAVYPPQAVVDKLYVNSELPPKIQRLMTRSWTKVKSGKPGPT0007805_1116DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007805-potF-K11073NANA
D1-35_036161143potA_3COG3842Spermidine/putrescine import ATP-binding protein PotAATGGCAGTTGCCTCCGGCGCCTATAAGAAAGCCCTCGAGGGCGACCAGACACCCAAGCAGGTGCTGGTCAAGATCGACCGGGTCACGAAGAAGTTCGACGAGACGATTGCCGTGGACGATGTGTCCCTGGAAATCAAGAAAGGCGAGATCTTCGCCTTGCTCGGCGGTTCGGGATCAGGCAAATCCACCTTGCTGCGCATGCTGGCAGGTTTCGAGCGGCCCACGGAGGGGCGGATCTTCCTCGATGGCGTGGACATCACCGACATGCCGCCCTACGAGCGGCCGATCAACATGATGTTCCAGTCCTACGCCTTGTTCCCCCACATGACGGTGGCGCAGAACATCGCCTTCGGCCTGCAACAGGACAAGATCCCGAAAGCCGAGGTCGATGCCCGCGTGGCCGAGATGCTCAAGCTCGTGCAGATGAGCCAGTACGCCAAGCGCAAGCCGCACCAGCTCTCCGGCGGCCAGCGCCAGCGTGTCGCCCTGGCCCGTTCGCTGGCCAAGCGGCCGAAGCTGCTGCTGCTCGATGAGCCGATGGGCGCCCTGGACAAGAAGCTGCGCTCGCAGATGCAGCTTGAGCTGGTGGAGATCATCGAGCGGGTCGGCGTGACCTGTGTAATGGTGACCCATGACCAGGAAGAGGCCATGACCATGGCCGAGCGCATCGCGATCATGCACCTGGGCTGGATTGCCCAGATCGGCAGCCCGATCGACATCTACGAAACCCCGACCAGCCGCCTGGTCTGCGAATTCATCGGCAACGTCAACATCTTCGAGACCGAAGTGGTGGACGACGCCGAGGGCCACGCGGTGCTGACCTGCAAGGACCTTGATCGCAATATCTACGTCGGCCACGGCATCAGCACTTCGGTGCAGGACAAGTCCGTGACCTACGCCATTCGCCCGGAGAAGCTGCTGGTCACCTCCGAGCAGCCAACCTGCGAGCACAACTGGTCCAGCGGCAAGGTCCATGACATTGCCTACCTGGGCGGCCACTCGGTGTTCTACGTCGAATTGCCAAGCGGCAAGCTGGTGCAGTCGTTCGTCGCCAACGCCGAGCGGCGCGGCCAGCGCCCGACCTGGGGCGACCAGGTGTTCGTCTGGTGGGAAGACGACAGCGGCGTGGTGCTTCGCTCATGAMAVASGAYKKALEGDQTPKQVLVKIDRVTKKFDETIAVDDVSLEIKKGEIFALLGGSGSGKSTLLRMLAGFERPTEGRIFLDGVDITDMPPYERPINMMFQSYALFPHMTVAQNIAFGLQQDKIPKAEVDARVAEMLKLVQMSQYAKRKPHQLSGGQRQRVALARSLAKRPKLLLLDEPMGALDKKLRSQMQLELVEIIERVGVTCVMVTHDQEEAMTMAERIAIMHLGWIAQIGSPIDIYETPTSRLVCEFIGNVNIFETEVVDDAEGHAVLTCKDLDRNIYVGHGISTSVQDKSVTYAIRPEKLLVTSEQPTCEHNWSSGKVHDIAYLGGHSVFYVELPSGKLVQSFVANAERRGQRPTWGDQVFVWWEDDSGVVLRSPGPT0007810_490DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007810-potG-K11076NANA
D1-35_03617921potHCOG1176Putrescine transport system permease protein PotHATGAACATGCGCAAGCTCAAACGCCGACTCGCTCGAATAACGCCCGGTGGCCGTCAGCTGGTCATTGGGGTGCCCTTCATCTGGCTGTTCCTGTTCTTCATGCTGCCGTTCTTCATCGTCCTGAAGATCAGCTTCGCCGAAGCCGACGTGGCCATCCCGCCGTACACCGAGATCTACAGCTACGTTGACCAGAAGCTGCAAGTGCTGCTCAACCTCGCCAACTACGCGATGCTCAGCGAGGACGAACTGTACATCGCCGCCTATCTCGGCTCGCTGAAGATGGCCCTGATCAGCACCGTGCTGTGCCTGCTGATCGGCTACCCGATGGCCTACGGCATCGCCAACGCCCGCAAAGAGATGCAGACGGTGCTGGTATTGCTGATCATGATGCCGACCTGGACCGCGATCCTGATCCGCGTCTACGCGTGGATGGGCATCCTCAGCAACAACGGCCTGCTCAATGGCTTCCTGATGAGCATGGGCTGGATCAGCGAGCCCTTGCAGATCCTCAACACCAACCTGGCGGTCTATATCGGCGTGGTTTATTCCTACCTGCCGTTCATGATCCTGCCGCTGTACGCCAACCTGGTCAAACACGACCCGAGCCTGTTGGAAGCCGCGTCCGACCTGGGTTCGAGCACGTTCAACAGCTTCTGGAAAATCACCGTGCCGCTGTCCAAGAACGGCATCGTCGCAGGCTGCATGCTGGTGTTCATCCCGGTAGTGGGTGAGTTCGTGATCCCGGAACTGCTGGGCGGTCCGGAAACCTTGATGATCGGCAAGGTGCTGTGGCAGGAGTTCTTCAATAACCGTGACTGGCCGGTGGCATCCGCCCTGGCGGTAGTGATGCTGGCGATCCTGATCGTGCCCATCATCCTGTTCAACAGCAGTCAGGCCAAGGAAATGGAGGGCAAGGAATGAMNMRKLKRRLARITPGGRQLVIGVPFIWLFLFFMLPFFIVLKISFAEADVAIPPYTEIYSYVDQKLQVLLNLANYAMLSEDELYIAAYLGSLKMALISTVLCLLIGYPMAYGIANARKEMQTVLVLLIMMPTWTAILIRVYAWMGILSNNGLLNGFLMSMGWISEPLQILNTNLAVYIGVVYSYLPFMILPLYANLVKHDPSLLEAASDLGSSTFNSFWKITVPLSKNGIVAGCMLVFIPVVGEFVIPELLGGPETLMIGKVLWQEFFNNRDWPVASALAVVMLAILIVPIILFNSSQAKEMEGKEPGPT0007820_562DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007820-potH-K11075NANA
D1-35_03618888ydcV_3Inner membrane ABC transporter permease protein YdcVATGAAGCGCTTCAGTTTTTCAAGCCTGATGCTGGTGTTGGGGCTGTTGTTCATCTATGCGCCAATGCTGATCCTGGTGATCTTTTCGTTCAACGCCTCGAAACTGGTGACGGTGTGGGGCGGTTGGTCGGTCAAGTGGTACGTCGGCCTGCTGGACAACTCGCAACTGATGGGCTCGGTGGTGCGTTCGCTGGAGATCGCCTGCTACACCGCGATCGCCGCGGTGGCGCTGGGTACGCTGGCGGCCTTCGTGTTGACCCGCATCACCCACTTCAAGGGCCGCACGTTGTTCGGCGGCCTGGTCACCGCGCCGTTGGTGATGCCGGAAGTGATCACCGGCCTGTCGCTGTTGCTGTTGTTCGTGGCGATGGCGCAGATGATCGGCTGGCCACAGGAGCGTGGCATCGTCACGATCTGGATCGCCCATACGACGTTCTGCGCGGCCTATGTGGCGGTGGTGGTCTCGGCGCGCTTGCGTGAGCTGGACCTGTCCATCGAAGAGGCAGCCATGGACCTCGGTGCGCGGCCGTGGAAGGTGTTCTTTTTGATCACCATCCCGATGATCGCGCCATCGCTGGCGGCGGGCGCGATGATGTCGTTCGCTTTGTCCCTCGACGACCTGGTGCTGGCAAGCTTCGTCTCCGGTCCTGGCTCGACGACGTTGCCAATGGAAGTCTTCTCGGCGGTACGCCTGGGGGTCAAGCCGGAAATCAACGCGGTGGCGAGCCTGATCCTGCTGGCGGTGTCGCTGGTGACCTTCCTGGTCTGGTACTTCAGCCGCCGCGCCGAAGAAAACCGCAAGCGAGCGATCCAGCAAGCCATCGAGGAAAGCGCCGCCGATTCCTGGAAACAACCGCAGGTGCGCCGGCCCGAGACCACTTCGGCCTGAMKRFSFSSLMLVLGLLFIYAPMLILVIFSFNASKLVTVWGGWSVKWYVGLLDNSQLMGSVVRSLEIACYTAIAAVALGTLAAFVLTRITHFKGRTLFGGLVTAPLVMPEVITGLSLLLLFVAMAQMIGWPQERGIVTIWIAHTTFCAAYVAVVVSARLRELDLSIEEAAMDLGARPWKVFFLITIPMIAPSLAAGAMMSFALSLDDLVLASFVSGPGSTTLPMEVFSAVRLGVKPEINAVASLILLAVSLVTFLVWYFSRRAEENRKRAIQQAIEESAADSWKQPQVRRPETTSAPGPT0007815_130DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007815-potI-K11074NANA
D1-35_03619639hypothetical proteinATGAGCAGCATCGCCGGCATCCGGATTCCCGACAGCGCCCTCGCCCGGGCCACCACCGAATATATCCGCGACATCGAATCAGACCTGCTTTATCACCATTCCCGCCGGGTGTTCCTGTTCGGCGCCTTGAGTGGCGAGCGCCGCCAATTGGCCTACGATCCGCAGCTGCTGTACGTCGGCGCGATGTTCCACGACCTCGGCCTGGTGGAAGGCTATCGCAGTGATGACGAGCGTTTCGAGGTGGACGGGGCAAACGCTGCCGCAGCATTTCTCAAACCCTACGGGCTGAGCGATGACGACATCGAACAGGTGTGGCTGTCGATTGCCCTGCACACCACCCCAGGCGTGCCGAAACACCTGCGCCCGACCGTCGCCCTGGTGACCGCCGGGGTGGAAATGGACGTGCTCGGCATGGACTACGCCGCGTTCCCCGCCGCACAGCGCGACGCCGTGGTGCATGCGCACCCGCGTGGAGAAGGTTTCAAGGAGTGCATCATCTGCGCCTTCGCCGACGGCTTGCGGCATCGTCCGCAGACCACTTTTGGCAACGTGAAGACCGATGTGCTGGTGGATCAGGAACCGGGGTTCAAGCCGATGAACTTCATCGAGGTGATTCGCACGTCGCCCTGGGTTTCGTAGMSSIAGIRIPDSALARATTEYIRDIESDLLYHHSRRVFLFGALSGERRQLAYDPQLLYVGAMFHDLGLVEGYRSDDERFEVDGANAAAAFLKPYGLSDDDIEQVWLSIALHTTPGVPKHLRPTVALVTAGVEMDVLGMDYAAFPAAQRDAVVHAHPRGEGFKECIICAFADGLRHRPQTTFGNVKTDVLVDQEPGFKPMNFIEVIRTSPWVSNANANANANA
D1-35_03620966cdhR_9COG4977HTH-type transcriptional regulator CdhRATGGAAAAGACCGTCGCCATCGTGGTATTCACAGGCGCCCAGTCTCTGGACATCAGCGGCCCCATGGATGTGTTCTGCGAAGCCAATCGCTTTCTCGCCGCGCATGATCACTATCGCTTGGAAGTGATCGGTATCGAGCCCGGCGCAATGTCCTGCTCCAACGGAATGTCCCTCAACCCGCACCGACATTTCAGCGAAGCGTCAGGCGCGTATGACCTGTTGCTGGTCGCGGGCGGTCCGCAGTTGCCATTTATGGAATTTGGCCCGGCGTTCAATGCCTGGTTGCACGACGCCTGCGCCCGTGCGCGACGCTTCGGTTCGATTTGCAACGGCGCGTTCATGCTGGCTCGGGCCGGCTTGCTCGAAGGGCGGACTGTCACGACCCATTGGGGCGATGCATCGGCATTGACGCGGATGTGTCCCTCGACCCGGGTCGAAGCCGATCGGCTGTACGTGCAGGACGGCGCGCTCTACACCTCGGCGGGTGTCACGGCGGGGATTGATCTGTCGCTGTTCCTGCTGGCGCAAGACCATGGGCCGGACGTGGCGCTGAATGTCGCCAAGCGGCTGGTGGTGTTCACCCAGCGCTCGGGCGGGCAGTCGCAGTTCAGTCCGTTCCTCGTACCGCACGCCGAGCCTGCCTCCGCGGTGGCTCAGGTTCAGTCATACGTGATGGCCAACCTCAACGGTGACCTGGGCATTGCCGACCTCGCCAACGCCGCGAACATGAGCCAACGCAACTTCTCCAGGGTGTTCACCCGGGAAGCGAAGGTCACGCCGGCGGAGTTCGTCGAGCAGGCCCGGGTAGACGCGGCGCGGGTAATGCTGGAAAGCACCCGGGCGCCGCTCAAGACCGTGGCGTACCAATGCGGCTTTCGCGACGCCCAGCACATGCGCAGCGTATTCAATCGCAGGCTGGGCGTGACACCGCAGCAGTTCAGGCTGAATTTTGCCGCGCTGGTTTGAMEKTVAIVVFTGAQSLDISGPMDVFCEANRFLAAHDHYRLEVIGIEPGAMSCSNGMSLNPHRHFSEASGAYDLLLVAGGPQLPFMEFGPAFNAWLHDACARARRFGSICNGAFMLARAGLLEGRTVTTHWGDASALTRMCPSTRVEADRLYVQDGALYTSAGVTAGIDLSLFLLAQDHGPDVALNVAKRLVVFTQRSGGQSQFSPFLVPHAEPASAVAQVQSYVMANLNGDLGIADLANAANMSQRNFSRVFTREAKVTPAEFVEQARVDAARVMLESTRAPLKTVAYQCGFRDAQHMRSVFNRRLGVTPQQFRLNFAALVNANANANANA
D1-35_03621342hypothetical proteinATGTTCATTAACTGGTCCGAGCTGCTGCCCACCATCAAGAGCGCCTTTGGCGCCCTGGGAAAAAGCAATCCAAAAATGGTCAAGGCCTACATGGCCCTGGATGAAGCGGCGGCCGAGAACAACGTGCTCGATGCCAAGACCCGCGAGCTGATTTCCATCGCCGTGGCGATCACCACTCGCTGTGACGGTTGCATCGGCGTGCACACCGATGCCGCCATCAAGGCCGGCGCCACTCGCGAAGAAATCGCCGCGACCCTGGCGACGGCGGTCTCGCTGAACGCCGGCGCGGCTTACATTTATTCGCTGCGGGCGCTGGAGGCCCATGACGCGCTGAAGAAGTGAMFINWSELLPTIKSAFGALGKSNPKMVKAYMALDEAAAENNVLDAKTRELISIAVAITTRCDGCIGVHTDAAIKAGATREEIAATLATAVSLNAGAAYIYSLRALEAHDALKKNANANANANA
D1-35_036222409quiP_2COG2366Acyl-homoserine lactone acylase QuiPATGAAACGCCTGCTCGTCGCTTTCCTGTCACTGGTTGTCACCGCCATCATCGTCGCGGGCGGCTACCTCTACAGCAAGCAGCCCACGCGCCAGGGCACCGTGCAGTTGCAGGGCCTGCAAGGCTCGGTGACGGTGCGCTACGACGAACGTGGGGTGCCGCATATCCGCGCCGAGAACGAAACCGACCTGTACCGCGCCCTCGGTTATGTCCACGCCCAGGATCGACTGTTCCAGATGGAATTGATGCGCCGACTCGCCCGTGGCGAGCTGGCCGAGATCCTCGGGCCGAAGCTGCTCGACACCGACAAGCTGATGCGCAGCCTGCGCATCCGCGAACGCGCTGCCAGCCATGTCGCCGAGCAGGATCGGCAGTCGCCGGCGTGGATCGCGACGCAGGCTTATCTGGACGGCATCAATACCTACCAGCAAACCCATACGCGGCCGCTGGAGTTCGATGTGCTGGGCATTCCCAAGCGGCCCTTCACCGCTGAAGACACCGCCAGCATCATCGGCTACATGGCGTACAGCTTCGCCGCCGCCTTTCGCACCGAACCGCTGTTGACTTACGTGCGTGACAAACTCGGTGCCGAGTACGTGAATATCTTCGACCTCGATTGGCAGCCTCAGGGCGTCCTGCAAAAAGATCCCGCAAGCGGTCCGTCCCTGACCAGCATTGACTGGAAAGACCTCAATGCCCTGGCGCGCCTGAGCGAACAGGCCCTGGCCGAAAATGGCCTGCCGCAGTTCGAAGGCAGCAACGCCTGGGCGGTTTCCGGCAGCCGCACGCACAGCGGCAAGCCCTTGCTGGCGGGTGACCCGCACATCCGTTTTTCCGCGCCGTCGGTGTGGTACGAGGCGCATTTGTCGGCGCCGGGTTTCGAGCTCTACGGCCAATACCAGGCGCTGGTGCCCTTTGCGACGCTGGGCATGAACAAGGATTTCGGCTGGAGCATTACCATGTTCCAGAACGACGACCTGGACCTGATCGCCGAGAAGACCAACCCGGACAACCCCGAACAGGTCTGGTATCGCGACCAATGGGTGGACATGACCCGCAGCGAACAGCAGATCGCCGTCAAAGGCCAGGCACCCGTGACCCTGGTGCTGCGCCAGTCGCCCCATGGCCCGATCGTCAACGATGCCCTCGGCGCCAATGCCGGCAAGACGCCGATCGCCATGTGGTGGGGGTTCCTGGAAACCCGCAACCCGATCCTCGAAGCCTTCTACCAGCTCAACCGCGCCGACACCCTCGCCAAGGCTCGCGGCGCGTCGGCCGGGATCCACGCGCCGGGCCTGAATGTGGTCTGGGCCAACGCCAAGGGCGATATCGGCTGGTGGGCCGCGGCGCAGTTGCCCAAGCGCCCGGAGGGTGTGAAGCCCGGTTTCATTCTCGATGGCGGTAGCGCTGAAGCGGAAAAACCGGGCTTCCAGCCTTTCACCAGCAATCCCCAGGAAGAGAACCCGGCCAGGGGCTACGTTCTCTCGGCAAATTTCCAGCCGGTGCCGGCCAGCGGGATCGAGATTCCCGGTTACTACAACCTTGCCGACCGGGGCCAGGAGCTGGATCGGCAGTTGAGCGAGAAACAGGCCAAATGGGATATCCAGACCACCCAGAAGCTGCAACTGGGCACCACCACCGCCTATGGCCCGCGCCTGCTTGCGCCGCTGTTGCCGATACTGCGCGAAGCGGTCAGCGACCCGCAGGAGCGCAAGTGGCTTGAACAACTGGCTGGATGGAAGGGCGACTACCCGCTGGACTCCACCAGCGCCACGCTGTTCAACCAGTTCCTGTTCGAGCTGGCCGACGCCGCCCTGGGCGATGAACTGGGCGACGGCTTTTTCGAAACGGCATTGTCGACCCGGGTGATCGACGCCGCGCTGCCACGCCTGGCCGCCGCAAAAGACTCGCCATGGTGGGACGACCGCTCGACATTGGGCACCGAAACCCGTACCGATACGGTGATCAAGGCCTGGAACAAAAGCCTGGTGCACCTGAAAGCCACCTTGGGCGAGGACGCCAGCCAATGGCAATGGGGCAAGGCCCACACCCTGACCCACGGGCATCCGTTGGGCCAACAGAAACCGCTGGACCGGGTCTTCAATGTCGGCCCGTTCGCCGCCCCCGGTACCCATGAAGTACCCAACAACCTCTCGGCCAGGATCGGCCCGGCGCCCTGGCCGGTGACCTACGGCCCCTCCACTCGACGCATCATCGACTTCGCCGACCCGACCCACAGCGTCACCATCAATCCGGTCGGCCAGAGCGGCGTGCCGTTCGACAAGCATTATGAAGACCAGGCCGAAGCCTACATCGAAGGGCTGTATCACCAGGCGCACCTGGCGGAGGAGGAAGTCACGGCCAACACCCGCGGCACCTTCAAACTGTTGCCCGCCAGGGCGCAGCCCTGAMKRLLVAFLSLVVTAIIVAGGYLYSKQPTRQGTVQLQGLQGSVTVRYDERGVPHIRAENETDLYRALGYVHAQDRLFQMELMRRLARGELAEILGPKLLDTDKLMRSLRIRERAASHVAEQDRQSPAWIATQAYLDGINTYQQTHTRPLEFDVLGIPKRPFTAEDTASIIGYMAYSFAAAFRTEPLLTYVRDKLGAEYVNIFDLDWQPQGVLQKDPASGPSLTSIDWKDLNALARLSEQALAENGLPQFEGSNAWAVSGSRTHSGKPLLAGDPHIRFSAPSVWYEAHLSAPGFELYGQYQALVPFATLGMNKDFGWSITMFQNDDLDLIAEKTNPDNPEQVWYRDQWVDMTRSEQQIAVKGQAPVTLVLRQSPHGPIVNDALGANAGKTPIAMWWGFLETRNPILEAFYQLNRADTLAKARGASAGIHAPGLNVVWANAKGDIGWWAAAQLPKRPEGVKPGFILDGGSAEAEKPGFQPFTSNPQEENPARGYVLSANFQPVPASGIEIPGYYNLADRGQELDRQLSEKQAKWDIQTTQKLQLGTTTAYGPRLLAPLLPILREAVSDPQERKWLEQLAGWKGDYPLDSTSATLFNQFLFELADAALGDELGDGFFETALSTRVIDAALPRLAAAKDSPWWDDRSTLGTETRTDTVIKAWNKSLVHLKATLGEDASQWQWGKAHTLTHGHPLGQQKPLDRVFNVGPFAAPGTHEVPNNLSARIGPAPWPVTYGPSTRRIIDFADPTHSVTINPVGQSGVPFDKHYEDQAEAYIEGLYHQAHLAEEEVTANTRGTFKLLPARAQPPGPT0028075_1007DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028075-pac-K01434NANA
D1-35_03623588hypothetical proteinATGCGCCCGTCCCACCGCACGACCTTGCTTGCCAGGCTCCTCGCCCTGACGTGCGCCGTCATCCTTTGGTTCGCCTACGACTGGTTCCAGGGGCGTTTCCTCCGGGCGTTCAGTCAACACACGGCGGTGTTTTCCGGCGACCCGCTGCGCCTGCCCACCGACCTCGCTGGCCCGGGCGCAATCCGCCTGGTGCATTTCTGGGATCCGGCCTGCCCTTGCAACGTCGGTAATCAGCAGCACCTCTCCGAGCTGATCGACAAATATGCACCGCAAGGCGTCGAGTTCTTCGCCGTACAAAAGACCGGCAGCCAAGGCCACTTGCCCAGCACTCTGAGCGGTCTCAAACCCCTGACGGCGTTGCCAGGCTCGGCACAGATTCCCGCCAGCCCCGCCGTGGCGATCTGGGACCGCAGCGGCAAGCTGGCGTACTTCGGGCCGTACAGCGAAGGACTGACTTGCAACTCGAGCAATAGCTTTATCGAGCCGATTCTTGAGGCGCTGAGCGTCGGCCGGGCGGTGGATGCGACGCACACCTTGGCGGTGGGTTGTTATTGCCCGTGGGGCCAGGACACATCAAGCAAGGAATAAMRPSHRTTLLARLLALTCAVILWFAYDWFQGRFLRAFSQHTAVFSGDPLRLPTDLAGPGAIRLVHFWDPACPCNVGNQQHLSELIDKYAPQGVEFFAVQKTGSQGHLPSTLSGLKPLTALPGSAQIPASPAVAIWDRSGKLAYFGPYSEGLTCNSSNSFIEPILEALSVGRAVDATHTLAVGCYCPWGQDTSSKENANANANANA
D1-35_03624948hypothetical proteinATGCCCGCCTCCTTCGACCCCGATCACCTGCGCGCCAGCCTGCAACCCCTGGCGCAGTGGCAACCGCTGTCTGCGCAAGCGCAGGCCTACCAGCAATTCTATGGGCTGGACTTTCCGGCGCGCACCTTGCGCAGGGGCCTGGGACGTTTCGACATTGCCGGGTATGAACTGGTCGGCCAGGTCTGGTGGCCGGAAAAAGCCGTGGGGACGCTGTTCCTCTTTCACGGTTATTACGACCATATGGGGCTGTACCGGCATTTGGTCGAGTGGGCGCTGGATCAGCAATGGGTGGTGATCAGCTGTGACTTGCCGGGCCACGGCCTGTCCAGTGGCGAACGCGCCAGCATCGGCGATTTCGCCGAATACCAGGCGACCTTGCGCGGCTTGCTGGCCGAAGCCGAGACCCTGGACCTGCCGCAACCCTGGCACCTGTGCGGCCAGAGTACCGGCGGCGCGATCGTGGTGGACCATGTGCTGCACCACGGCGCGGACAGCCCGGCCCAGGGCCAGGTCATCCTGTTGTCGCCCTTGGTTCGGCCACGGGCCTGGGGCTGGTCGCGCCTCAGTTATTACTTGCTCAAACCTTTTGTGAGCGGCATCGCCCGGCGCTTCAGCGAGAACTCCAGCGACCCGGGTTTCCTGCCGTTCCTGCAGGCCGATCCGCTGCAACCGCTGCGCCTGCCCACTGCGTGGGTCGGGGCGCTGGCGCAATGGATCCGGCGTATCGAGGCGGCGCCGAGCAGCTCGCGGCAACCCTTGATCGTGCAAGGGCAGGCGGACATGACCGTGGATTGGCGGCATAACCTGCAAGTATTGCGCGGCAAGTTCGATCGGCCGCAGGTATTGATGTTGCCCGAGGGGCGGCATCACCTGGCGAACGAGACCTTGGCGATACGGCAGGAGATGTTTGGGTTTTTGAGCAAACGGATGGGCCGGATTCGGCGGTAAMPASFDPDHLRASLQPLAQWQPLSAQAQAYQQFYGLDFPARTLRRGLGRFDIAGYELVGQVWWPEKAVGTLFLFHGYYDHMGLYRHLVEWALDQQWVVISCDLPGHGLSSGERASIGDFAEYQATLRGLLAEAETLDLPQPWHLCGQSTGGAIVVDHVLHHGADSPAQGQVILLSPLVRPRAWGWSRLSYYLLKPFVSGIARRFSENSSDPGFLPFLQADPLQPLRLPTAWVGALAQWIRRIEAAPSSSRQPLIVQGQADMTVDWRHNLQVLRGKFDRPQVLMLPEGRHHLANETLAIRQEMFGFLSKRMGRIRRNANANANANA
D1-35_03625744hypothetical proteinATGCGCCGTTTGCTTTTCTCACTGTTGATGTTCTGCGTATTGCCCGCCTGGGCAGACAGCTATGACCAGTTGTACAAGGTCGCCGGCTGGCCGGAACAGCGGGCGCATTTCAATGATGCCTTGAGCGCCGCGCAGCAGCGCTACCAGAACAGCTTGCCGCCGGCGGTCTTCCAGGCGCTGGTGAACAACAGCAACCAGCGTTTCGCGCCCCAGGCAATGGACCAGCGGGCCGAGGCGCAACTGCGCAGCAATCTTGCCGACCCGAACCCGGCCCTGGCTTTTTTCCAGTCGCCACTGGGCCGCAAAGTCGTCGCCGCCGAACTGCTCGCCACCCGCCGCGACCAACTGGCGAAGAACGCCAAGGGCCTGCCGAAGATGCAAGCCAGCGACAATCGCCTGCTGATCATCGGCCACCTGGCCCAGGCCCTGCCTGCCCGCGAAGCCGGCGCCGAAGTCAGCCTGGCGATTGCCGGCGTGGCAGCCGACAGCTTGAGCTCGATGATTCCCGGCCTGCTCGGCGGCGGCCAGGCCCAGGGCATGCTCAACGGTCAGCGCCAGCGCCTGATGGATCAGATCGGCGCGGACCTGAACAACACGCTGCTATACGTCTACCGCGACCTGACGGATACCGAACTGGAAGAATTCGCCACGTTTGCCGAGTCGGCCGAGGGCCAGGCTTATTATCAGGCGGCATTGGCGGCGATCCGGGCGGGGTTGGCGGTGGGGCAGAATCTGGGGCAGTAAMRRLLFSLLMFCVLPAWADSYDQLYKVAGWPEQRAHFNDALSAAQQRYQNSLPPAVFQALVNNSNQRFAPQAMDQRAEAQLRSNLADPNPALAFFQSPLGRKVVAAELLATRRDQLAKNAKGLPKMQASDNRLLIIGHLAQALPAREAGAEVSLAIAGVAADSLSSMIPGLLGGGQAQGMLNGQRQRLMDQIGADLNNTLLYVYRDLTDTELEEFATFAESAEGQAYYQAALAAIRAGLAVGQNLGQNANANANANA
D1-35_03626633hypothetical proteinATGCGCGCCATGCGAATACCTTCTGATCATCCGTTGCTGTTACGTATCGTCGACGACCTGGCCGAGCGCGGGTGGTCGCAGCAGAACATCTTCTTGCCGGATGCGCTCACCCGCGCGCTGGCGGCCGAATGTCGCCAGCGCGCCGCCGAAGGCGAACTGGCTCCAGCCGCGGTGGGGCGTGGGCCGTTTTCGGAAATTCGCGAAGGGGTTCGTGGCGATCGCATCCAATGGATCGAGCCCGGCCAGGTCGACGCCTGTGATCGTTACCTGGGGCTGATGGACAGCCTCCGCGAGGCCTTGAATCGGGGGCTGTTCCTGGGCCTGGAGGATTTTGAAAGTCATTTCGCCCTGTACCCGCCGGGTGCGTTCTACCTCAAGCACGTAGACCGTTTCCGCGATGATGACCGGCGCATGGTCTCGGCGGTGCTCTACCTCAATGACGCCTGGCTGCCGGAGCACGGCGGCCAGTTGCGCATGTACCTGGATGAAGGCGTGGAGCATGACGTGGTGCCCACGGGCGGCTGCCTGGTGGTGTTTCTGTCGGGGGATATACCCCATGAAGTCCTGCCGGCCACGCGTGATCGGCTGTCCTTGACCGGTTGGTTCCGGCGCCGTGGCAACGAGTTGTTCTGAMRAMRIPSDHPLLLRIVDDLAERGWSQQNIFLPDALTRALAAECRQRAAEGELAPAAVGRGPFSEIREGVRGDRIQWIEPGQVDACDRYLGLMDSLREALNRGLFLGLEDFESHFALYPPGAFYLKHVDRFRDDDRRMVSAVLYLNDAWLPEHGGQLRMYLDEGVEHDVVPTGGCLVVFLSGDIPHEVLPATRDRLSLTGWFRRRGNELFNANANANANA
D1-35_03627492hypothetical proteinATGCAAAAGATCCTTGTCAGCCGCTGCCTGCTCGGCCATCGCGTGCGCTACGACGGTGGCGCACGCGGGCCGTTCGACCTGCTCCAGCATTGGCTCGACGAAGGTCGGCTCGTACCGCTGTGCCCGGAAGTCGCCGGCGGCCTGCCCACGCCTCGGCCGGCGGCGGAGATTCCAGGCGGCCAGGGCGCGCGAGTGCTCGATGGCAACGCGGCGGTGATCACCACCGAGGGCGAGGACGTGAGCGCGCAGTTTCTATCCGGTGCGTATCAAGCGCTGGCGTTGGCGCGCGAGCACGGCATCCGCATCGCCGTGCTCAAGGCCAACAGCCCCTCGTGTGGCAACCTGCTGACGTATGACGGCACGTTCAGCGGGGTCAAGATTCGAGGTGAAGGCGTGACGGCGGCATTGCTCAAGCGCAATGGGGTTCGGGTGTTCAGCGAGCTGGAACTGGCTGAAGCGGCGTTGGCGCTCAAGGCATTGACCGCAGAATAGMQKILVSRCLLGHRVRYDGGARGPFDLLQHWLDEGRLVPLCPEVAGGLPTPRPAAEIPGGQGARVLDGNAAVITTEGEDVSAQFLSGAYQALALAREHGIRIAVLKANSPSCGNLLTYDGTFSGVKIRGEGVTAALLKRNGVRVFSELELAEAALALKALTAEPGPT0013380_7DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013380-punA-K03783NANA
D1-35_036281374hypothetical proteinATGACTGAATCCATTAAGCCATTGAAGCTCGCCGTGGTCGGGCACACCAACGTCGGCAAGACCTCCCTGCTGCGTACCCTGACCCGGGATGTCGGCTTCGGCGAAGTGTCCCACCGCCCGAGCACCACCCGTCACGTCGAAGGCGCGCGCCTGTCGGTGGACGGCGAGGCGCTGCTGGAGTTGTACGACACGCCTGGGCTGGAAGACGCCATCGCCCTGCTCGATTATCTCGAACGCCTCGAGCGTCCCGGTGAACGCCTGGATGGCCCGGCACGCCTGGCCCGTTTCCTCGAAGGCAGCGAGGCGCGACAACGCTTCGAGCAAGAAGCCAAGGTGCTGCGGCAGTTGCTCGCCAGCGACGCCGGGCTTTATGTGATCGATGCCCGCGAACCGGTGTTGGCCAAGTACCGCGATGAACTGGAAGTCCTCGCCAGTTGCGGCAAACCGCTGCTGCCGGTGCTCAATTTCGTCAGCAGCGCCCAGCACCGTGAAGCCGACTGGCGCGAAGCCCTGGCGCGGCTGGGCCTGCATGCATTGGTCCGTTTCGACAGCGTCGCCCCGCCCGAGGACGGCGAGCGACGTCTGTATGAAAGCCTGGCGTTGCTGCTGGAAAGCGCTCGCGGGCAATTGGAGCGGCTGATCGCTGACCAACAGGCCCAGCGTCTGGCGCGCCAGCAGAGCGCCAGACGGCTGATTGCCGAATTGCTGATCGATTGCGCCGCTTGCCGGCGCAGCGTCGCCAGCGATGCCGAACTGGAACGCCAGGCCATCAGCGAACTGCGCAACGCGGTGCGTCAGCGCGAACAGCGTTGTGTCGAGGCCCTGCTCAAGCTCTACGCTTTCCGCCCTCAGGATGCAGCGGCCAGCGATCTTCCCTTGCTGGATGGCCGTTGGGGTGATGACCTGTTCAACCCCGACACACTCAAGCAATTGGGCGTACGGGTCGGTGGCGGCATTGCGGCCGGGGCGGCGGCCGGAGCCGGTGTCGACCTGCTGGTGGGTGGCCTGACCCTGGGCGCCGCCGCCCTCGCCGGGGCGATTGCCGGCGGCGCGCTGCAAACGGCCCGCAACTATGGCGACCGGTTGATCGGCAAGCTCAAGGGCCAACGTGAACTGAGCGTCGATGACAACGTGCTGCGCCTGTTGGCCCTGCGCCAACGGCAACTGCTGCAAGCCATCGACCAGCGTGGCCATGCGGCGATGGAGAGCATCCATATCGCCACGCCTCAGGACAAGACCTGGCGCGAAGGCAAGCTGCCTGAAGCACTGGGCAAGGCCAGGGCGTATCCGCAGTGGTCGTCGTTGAATCCCCAGCCACGACTGAGCCAGGCCGAACGACAGGAACAGATCGAGCTGTTGGCTGAACAGCTCTAGMTESIKPLKLAVVGHTNVGKTSLLRTLTRDVGFGEVSHRPSTTRHVEGARLSVDGEALLELYDTPGLEDAIALLDYLERLERPGERLDGPARLARFLEGSEARQRFEQEAKVLRQLLASDAGLYVIDAREPVLAKYRDELEVLASCGKPLLPVLNFVSSAQHREADWREALARLGLHALVRFDSVAPPEDGERRLYESLALLLESARGQLERLIADQQAQRLARQQSARRLIAELLIDCAACRRSVASDAELERQAISELRNAVRQREQRCVEALLKLYAFRPQDAAASDLPLLDGRWGDDLFNPDTLKQLGVRVGGGIAAGAAAGAGVDLLVGGLTLGAAALAGAIAGGALQTARNYGDRLIGKLKGQRELSVDDNVLRLLALRQRQLLQAIDQRGHAAMESIHIATPQDKTWREGKLPEALGKARAYPQWSSLNPQPRLSQAERQEQIELLAEQLNANANANANA
D1-35_036291368putative membrane proteinGTGACTGAACTGCAAAACCTCTGGTTGACCGAGACGATACGCCTGCGCGAAGAACATGCCGGCCCGCTCGAAGACCAGGAAGCCAATCGCCTGGCCCGCGCGGCCGGCGGCGATCTGTCCACGCGCATCCGTCATCGCGCCCACTGGCTGGCCGAGCGCGATGGCCTCGTCCAGGCCCTGCGCCACTGGCTGCAAGGCGCACGGCTGGCACTGGTCGCATTGGCCGTGCTCGCCGTGGCCAGCGGCGCCGGCCTGGGCTTTGCCGCCCTCGGCGATGGACGCGCGCCGGTCAACGTATTCTGGGCCCTCGGCAGTCTGTTGGGGCTGAACCTGATCCTGCTGGTCGGCTGGGCTCTGGGCCTGCTGTTGGCCGGTGAGCAAGGCGCCACGCTCGGCCGCCTGTGGCTGTGGCTCAGCGAAAAACTCGCCCGCGACGCCAAGGCCGCGCAACTCGCGCCGGCCCTGCTGCTGTTGCTGCAACGGCACAAGCTCAACCGCTGGGCCCTCGGTGTGCTGGTCAATGGCTTGTGGTTGCTGGCGATGCTCAGCGCGCTGGTCATCGTTTTGTTGCTGATGGCGACCCGGCGCTATGGCTTCGTATGGGAAACCACCATTCTCGGTGGCGAGACCTTCGTCGCCATGACTCAGGCCCTCGGTGCGTTGCCCGCCCTGCTGGGCTTCAGCGTGCCGAGCGTCGAGATGATCCGCGCCAGCGGCGACGCCGCGCTGGACATCGAAAGCGCCCGCCAGGCCTGGGCTGCCTGGTTGGTGGGCGTGCTGCTGGTCTACGGCGTGCTGCCGCGCCTGAGTCTTGCGCTGTTGTGCCTGTGGCGTTGGCGCCGTGGCCGCGCCAGCCTGCGCCTGGACTTGAACCTGCCCGGCTACGCTCAGCTGCGTGAGCGATTGATGCCAAGCAGCGAACGCCTGGGCGTCAATGACGCCGCGCCCGCACAATTGCATCACGTCGAAAGCGCCGTGGGCGCCATGAAAAGCGACGGCGCGCTGCTGGTGGCGATCGAGCTGGATGAACGTCCCTGGCCGCCGAAGCTGCCGGGCACCGTGAAAAGCGCGGGCATCCTCGACAGCCGCGAATCGCGCCACAAATTGCTTGAACAACTTTCGCGCTTCCCGCCCGCGCGACTGGCGATTGCCTGCGATCCCCGGCGCTCGCCAGACCGTGGCAGCCTGGCATTGATCGCCGAACTGGCTCGCAGCGCCAGCGCCACCCGCGTCTGGCTGTTGCAGGCACCGCCCGGCGAAGCACTGGATGCCGAGCGCCTGGGTGACTGGCACAGCGCGTTGCAGCAGCTGCAATTGCCGTTCGCCGACTGCGCGCCGTTGAACTGGCTGGAGACGGGCCATGACTGAMTELQNLWLTETIRLREEHAGPLEDQEANRLARAAGGDLSTRIRHRAHWLAERDGLVQALRHWLQGARLALVALAVLAVASGAGLGFAALGDGRAPVNVFWALGSLLGLNLILLVGWALGLLLAGEQGATLGRLWLWLSEKLARDAKAAQLAPALLLLLQRHKLNRWALGVLVNGLWLLAMLSALVIVLLLMATRRYGFVWETTILGGETFVAMTQALGALPALLGFSVPSVEMIRASGDAALDIESARQAWAAWLVGVLLVYGVLPRLSLALLCLWRWRRGRASLRLDLNLPGYAQLRERLMPSSERLGVNDAAPAQLHHVESAVGAMKSDGALLVAIELDERPWPPKLPGTVKSAGILDSRESRHKLLEQLSRFPPARLAIACDPRRSPDRGSLALIAELARSASATRVWLLQAPPGEALDAERLGDWHSALQQLQLPFADCAPLNWLETGHDNANANANANA
D1-35_03630513IS1595 family transposase ISSsu9ATGAAAAAAACTCTTCCCTTAAGCCTGATCGCAGCCCTCGGTGAAAACCGTGTGATCGGCATCGACAACAGCATGCCCTGGCACTTGCCGGGGGACTTCAAATACTTCAAGGCCACCACCCTGGGCAAGCCGATCATCATGGGGCGCAAGACCTGGGACTCCCTCGGTCGGCCGCTGCCGGGACGCTTGAACATTGTCGTCAGCCGCCAGCCGGGCCTGGTGCTGGAAGGCGCGGAAGTCTTTTCTTCGCTGGAGGCCGCAGTGGAACGGGCCGAAGCCTGGGCGTTGGAACAGGGCGTTGACGAGCTGATGCTGATCGGTGGCGCCCAGCTCTACGCGCAGGCACTGGAGCAGGCGGATCGGTTGTACCTGACCCGCGTGGCGCTGAGCCCGGAAGGGGATGCGTGGTTTCCGGAGTTTGCTTCGAGCCGGTGGAAACTTGTGTCGAACCAGCTGAACCCGGCTGAAGGGGACAAGCCGGCGTACAGTTTTGAGGTGTGGGAGAAGCTTTAGMKKTLPLSLIAALGENRVIGIDNSMPWHLPGDFKYFKATTLGKPIIMGRKTWDSLGRPLPGRLNIVVSRQPGLVLEGAEVFSSLEAAVERAEAWALEQGVDELMLIGGAQLYAQALEQADRLYLTRVALSPEGDAWFPEFASSRWKLVSNQLNPAEGDKPAYSFEVWEKLPGPT0007945_1362DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007945-folA-K00287NANA
D1-35_036311392tcyPCOG1823L-cystine uptake protein TcyPATGAATCTACCGCTGATCTTCAATCTGTTGGTGTTCATCGCCTTGCTGTACGGCTTGGCGCAAACCCGTCACAGCACTTGGAGCCTGGCCAAAAAAGTGCTGCTGGCGCTGGTCCTGGGCGTGGTGTTCGGTATCGCGCTGCACACGATCTACGGCGCAGGCGACCCGGTGCTCAAAGCCTCGATCGGCTGGTTCGACCTGGTGGGCAACGGCTACGTGCAGTTGCTGCAGATGATCGTGATCCCGCTGGTCTTTGCTTCGATCCTCAGCGCCGTGGCCCGCCTGCACAACGCCTCGTCCTTGGGCAAGATCAGCTTCCTGACCATCGGCACGCTGCTGTTCACTACCGCCATCGCCGCCCTGATCGGTATCGGCCTGACCAACCTGTTCGGCCTCACTGCCGAAGGCCTGGTGGCCGGAACCCAGGAGCAGGCACGGCTGCAAGTGATCCAGAGCGATTACGCCGGCAAGGTCGCCAACCTGAATATCCCGCAACTGCTGCTTTCGTTCATTCCGCAGAACCCCTTCGCCGACCTGGCCAGGGCCAAGCCGACGTCGATTATCAGCGTGGTGATCTTCGCGGCGTTCCTCGGTGTGGCGGCGTTGCAATTGCTCAAGGATGACGCAGAGAAAGGCCAGAAAGTGATCAACGCCATCGACACCCTGCAAAGCTGGGTGACGCGCCTGGTGCGCCTGGTGATGAAGCTGACCCCATATGGCGTACTGGCGCTGATGACAAAAGTGGTGGCTGGCTCCAACCTGCAGGACATCATCAAGCTCGGCAGCTTCGTGGTGGTGTCGTACCTGGGGCTGGGGCTGATGTTCGTGGTCCACGGCCTGCTGGTGTCCGCTGCCGGGATCAATCCGTTGCGCTTCTTCCGCAAGATCTGGCCGGTGCTGACCTTCGCTTTCACCAGCCGCTCCAGCGCGGCGACCATCCCCCTGAGTATCGAAGCCCAGACCAGCCGCCTCGGCATTCCCCGGGCGATCGCCAGCTTCAGCGCATCGTTTGGCGCCACCATCGGCCAGAACGGTTGCGCCGGGCTGTATCCGGCGATGCTGGCGGTCATGGTCGCGCCTACGGTGGGGATCAATCCGCTGGACCCGGTGTGGATCGCGACGCTGGTAGCCATTGTGACCTTGAGTTCAGCGGGCGTGGCCGGTGTCGGCGGTGGCGCAACGTTCGCCGCGTTGATCGTGCTGCCGGCCATGGGCTTGCCGGTCTCGCTGGTGGCGCTGCTGATTTCGGTCGAGCCATTGATCGACATGGGCCGTACCGCGTTGAACGTCAGTGGCTCGATCACCGCCGGGGCGATTACCAGCCAGGTGATGCAGCAGACGGACAAGGCCTTGCTCGATGCCGAGGAGCATGGGGAGTTGGTGCACGCTTGAMNLPLIFNLLVFIALLYGLAQTRHSTWSLAKKVLLALVLGVVFGIALHTIYGAGDPVLKASIGWFDLVGNGYVQLLQMIVIPLVFASILSAVARLHNASSLGKISFLTIGTLLFTTAIAALIGIGLTNLFGLTAEGLVAGTQEQARLQVIQSDYAGKVANLNIPQLLLSFIPQNPFADLARAKPTSIISVVIFAAFLGVAALQLLKDDAEKGQKVINAIDTLQSWVTRLVRLVMKLTPYGVLALMTKVVAGSNLQDIIKLGSFVVVSYLGLGLMFVVHGLLVSAAGINPLRFFRKIWPVLTFAFTSRSSAATIPLSIEAQTSRLGIPRAIASFSASFGATIGQNGCAGLYPAMLAVMVAPTVGINPLDPVWIATLVAIVTLSSAGVAGVGGGATFAALIVLPAMGLPVSLVALLISVEPLIDMGRTALNVSGSITAGAITSQVMQQTDKALLDAEEHGELVHANANANANANA
D1-35_036321056hypothetical proteinATGAAGCTCATACCTCGCTTGCTCGCTGTCGCTATAGGCCTGGGCCTCGCCGGCCAGGCGCTCGCCACTGACCTCAAGCATTGGCCCGCGGAACAGGCCAAGGCGCTGGAAGCGATGATCGCGGCCAACGCCAACAAAGGTAACTACGCGGTGTTCGACATGGACAACACCAGCTACCGCTACGATCTCGAAGAATCGTTGCTGCCGTTCATGGAGAACAAGGGGCTCATCACCCGGGAAAGCCTGGACCCGTCCTTGAAGCTGATGCCATTCAAGGACACCGCCGACCACAAGGAAAGCCTGTTCAGTTATTACTATCGACTCTGCGAAGTGGACGACATGGTCTGCTACCCGTGGGTGGCCCAGGTGTTTTCCGGCTTCACTCTCAAGGAGCTGAAGGGCTACGTCGATGAGCTGATGGCTTCCGGCAAACCGGTACCGACCACGTATTACGATGGCGACAAAGTGGTCCAGTACAACGTCAACCCACCGAAGATATTCACCGGGCAGGCCGAGCTGTACAACAAGCTGATGGAGAACGGCATCGAGGTCTATGTCATGACCGCCGCTTCCGAAGAGCTGGTGCGCATGGTTGCCTCCGACCCGAAGTATGGCTACAACCTCAAGCCGCAGAACGTCATTGGCGTAACCACGCTGCTCAAGGACCGCAAGACCGGCGAACTGACCACCGCCCGCAAGCAAATCACCAACGGTAAATATGACGAAAAGGCCAATCTTGGCCTGGAGTACACACCGTACCTGTGGACGCCGGCGACCTGGATGGCCGGCAAGCACGCGGCGATCCTGACCTACATCGACGAATGGAAAAAACCGGTGCTGGTGGCTGGTGACACGCCGAGCAGCGACGGCTACATGCTGTTCCATGACGTAGACGTGGCCAAGGGCGGCATCCACTTGTGGGTCAATCGCAAGGATAAATACATGACCCAGATAAACGGCATGATGGCCAAGCACGCGGCCGCTCAGGCCAAGGAAGGACTGCCCGTGACAGCGGACAAGAATTGGGTGATCGTCAAGCCGGAAGATATCCAGTAAMKLIPRLLAVAIGLGLAGQALATDLKHWPAEQAKALEAMIAANANKGNYAVFDMDNTSYRYDLEESLLPFMENKGLITRESLDPSLKLMPFKDTADHKESLFSYYYRLCEVDDMVCYPWVAQVFSGFTLKELKGYVDELMASGKPVPTTYYDGDKVVQYNVNPPKIFTGQAELYNKLMENGIEVYVMTAASEELVRMVASDPKYGYNLKPQNVIGVTTLLKDRKTGELTTARKQITNGKYDEKANLGLEYTPYLWTPATWMAGKHAAILTYIDEWKKPVLVAGDTPSSDGYMLFHDVDVAKGGIHLWVNRKDKYMTQINGMMAKHAAAQAKEGLPVTADKNWVIVKPEDIQNANANANANA
D1-35_036331842ilvDCOG0129Dihydroxy-acid dehydrataseATGCCTGATTACCGTTCGAAAACATCCACCCATGGCCGCAACATGGCCGGCGCCCGTGCCCTGTGGCGCGCCACGGGGATGAAGGATGACGACTTCAAGAAGCCGATCATCGCCATTGCCAACTCCTTCACGCAATTCGTACCAGGCCATGTTCACCTCAAGGACCTGGGCCAACTGGTTGCACGGGAAATCGAACGCGCCGGCGGGGTTGCCAAGGAATTCAACACCATCGCCGTGGACGACGGCATCGCCATGGGTCACGACGGCATGCTGTATTCGCTGCCCAGCCGCGAGATCATCGCCGACTCGGTCGAATACATGGTCAATGCCCACTGCGCCGACGCCATCGTGTGCATTTCCAACTGCGACAAGATCACCCCCGGCATGCTCATGGCCGCCCTGCGCCTGAACATCCCGGTGATCTTCGTATCGGGTGGCCCGATGGAAGCCGGCAAGACCAAGCTCGCCAGCCATGGCCTGGACCTGGTGGACGCCATGGTGATCGCCGCCGACTCCAGCGCATCCGACGAGAAAGTCGCCGAGTACGAGCGCAGCGCCTGCCCGACCTGCGGTTCTTGCTCCGGCATGTTCACCGCCAACTCGATGAACTGCCTGACCGAGGCCCTGGGCCTGGCGTTGCCTGGCAACGGTTCGACCCTGGCCACCCACAGCGACCGCGAACAGCTGTTCCTGCAGGCCGGCCGGACCATCGTCGAGCTGTGCAAGCGCTACTACGGCGAAAACGACGAGTCGGTGTTGCCGCGCAACGTCGCCAACTTCAAGGCGTTCGAGAACGCCATGACCCTCGACATCGCCATGGGCGGCTCGACCAACACCATCCTGCACCTGCTGGCCGCGGCCCAGGAAGCCGAGATCGATTTCGACCTGCGCGACATCGACCGCCTCTCCCGCCACGTGCCGCAACTGTGCAAGGTCGCGCCGAACATCCAGAAGTACCACATGGAAGACGTGCACCGCGCCGGGGGGATCTTCAGCATCCTCGGTTCGCTGGCCCGCGGCGGCCTGCTGCACACCGACCTGCCAACCGTACACAGCAAGACCATGGCCGAGGCCATCGCCAAGTGGGACGTCACCCAGACCAGCGACGAAGCCGTGCATCACTTCTTCAAGGCCGGCCCGGCGGGCATCCCGACACAAACCGCGTTCAGCCAGTCGACCCGTTGGGAAACCCTGGACGACGACCGTGAGAACGGCTGCATCCGCAGCGTCGAGCACGCCTACTCCAAGGAAGGCGGCCTGGCCGTGCTGTACGGCAACATTGCCCTGGACGGCTGCGTGGTGAAGACCGCCGGCGTCGACGAATCGATCCATGTGTTCGAAGGCAACGCGAAGATTTTCGAAAGCCAGGACAGCGCCGTGCGCGGGATTCTCGCCGACGAGGTGAAAGCCGGCGACATCGTGATCATTCGTTACGAAGGTCCGAAGGGCGGCCCGGGTATGCAGGAAATGCTCTACCCGACTTCCTACCTGAAATCCAAGGGCCTGGGCAAAGCCTGTGCGCTGCTGACCGACGGCCGTTTCTCCGGCGGCACGTCGGGCCTGTCCATCGGCCACGCTTCGCCGGAAGCAGCGGCTGGCGGTGCCATCGGCCTGGTGCGCGATGGCGACAAGGTGCTGATCGACATTCCGAACCGTTCGATCAATCTGTTGATCAGCGATGAGGAACTGGCTGCACGCCGCGTCGAACAGGACAGCAAAGGCTGGAAGCCGGTGGAAGTGCGTCCGCGCAAAGTCACCACCGCCCTCAAGGCCTACGCCCTGCTCGCCACCAGTGCCGACAAGGGCGCGGTGCGCGACAAGGCGATGCTTGACGGGTTGTAAMPDYRSKTSTHGRNMAGARALWRATGMKDDDFKKPIIAIANSFTQFVPGHVHLKDLGQLVAREIERAGGVAKEFNTIAVDDGIAMGHDGMLYSLPSREIIADSVEYMVNAHCADAIVCISNCDKITPGMLMAALRLNIPVIFVSGGPMEAGKTKLASHGLDLVDAMVIAADSSASDEKVAEYERSACPTCGSCSGMFTANSMNCLTEALGLALPGNGSTLATHSDREQLFLQAGRTIVELCKRYYGENDESVLPRNVANFKAFENAMTLDIAMGGSTNTILHLLAAAQEAEIDFDLRDIDRLSRHVPQLCKVAPNIQKYHMEDVHRAGGIFSILGSLARGGLLHTDLPTVHSKTMAEAIAKWDVTQTSDEAVHHFFKAGPAGIPTQTAFSQSTRWETLDDDRENGCIRSVEHAYSKEGGLAVLYGNIALDGCVVKTAGVDESIHVFEGNAKIFESQDSAVRGILADEVKAGDIVIIRYEGPKGGPGMQEMLYPTSYLKSKGLGKACALLTDGRFSGGTSGLSIGHASPEAAAGGAIGLVRDGDKVLIDIPNRSINLLISDEELAARRVEQDSKGWKPVEVRPRKVTTALKAYALLATSADKGAVRDKAMLDGLPGPT0001875_1679DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0001875-ilvD-K01687NANA
D1-35_036341206ydhC_2Inner membrane transport protein YdhCATGGCTGACACCATAATCCTTCCACACGCCCGCAAAGCCGCTACCGTCGGTTTGCTGCTGACGCTGACCTTGCTTGGAGTGTTTCCAATAGATGTGGTACTTCCCTCATTCCCTGCACTGTCCGAGCATTTTCAAAGTCCCTCATCCGATATTGCCCTGTCCGTTAGCCTGTTCGCGGTGGGCATCGCTCTTTCGCAACTGCTGATCGGCCCGCTTTCCGATGTCATGGGGCGGAAAAACCTGCTGCTGATCGGGATCGCCATTTCAGCGGTGGGAGCAACGGGTTGCGTGCTCGTCGACAGCTACTGGTCCTTTCTGTTCTTCCGTGTCATCCAGGCCTTGGGATGCGGTTGTTTCGTCCTGTCCCAAGCGCTGATCCAGGACCTGTTCACCGGCCAGGAACAGCAGCGGCTGCGAATTTTGCTGGTCACCTGCGGCGGTATTTTCATTTCCTTTTCGCCCCTGGCGGGCACTGGGCTGCAAAGCTGGATGGGTTGGCGAGGCAGTTTCCTGGTGTTCACTGCACTGTCGATTGGGGTGTTCGCAAGCGTCTGTCGTTTACTTGAGCACTCTCGGGTCGACGGTCATCCCAGGCGTTTCAACTTCGTCGCATCCTATCGAAAGGTCTTCGGTGACTTCAGCTTCCTGGCCTATTGGTTGATTTCGGCGCTGGCTTTTTCCTGCCATTTTTCATTCATCGTCATTTCACCGCTGATCCTGATAGACCAGTTGCACTTATCACCCGAGGCTTTTTCGCTCGTACTGCTGGGCTATGGGCTGGCCTACATTGGCGGCGGCCTCATCGCGACCATGCTGAGTAACCGGATCGACCCGCAGACGCAAATCATGACGGGGCTGGGCCTGATCCTCGCCGCTGGCCTTCTGATGCTGGGGCTCGCCAACCAGCTGGGCTTGTCGGTGACCACTCTGTTGCTACCCATGATCGTATGCACCGCCGGAACGACCATCGCCCGGGCGGCAGCCAACAACCAAGCCATGACGCTGTTTCCGGGACAGGCCGGCACGTCCGCCTCGGCCGGTAGCGTACTGGTGTTCATCGTCGGCGGGCTGACCAGTGCCGTGATCAGCCTCACCCCGCTGGACTTGCAAGTCGCCCTGGCCCTGTGTCTGGTGTTGCTCAGCCTGCTCGGGCTGACGCTCAATGCCTTGGTCCGGCAACGTGACGGGGGGCTGTTGCCCGGCTGAMADTIILPHARKAATVGLLLTLTLLGVFPIDVVLPSFPALSEHFQSPSSDIALSVSLFAVGIALSQLLIGPLSDVMGRKNLLLIGIAISAVGATGCVLVDSYWSFLFFRVIQALGCGCFVLSQALIQDLFTGQEQQRLRILLVTCGGIFISFSPLAGTGLQSWMGWRGSFLVFTALSIGVFASVCRLLEHSRVDGHPRRFNFVASYRKVFGDFSFLAYWLISALAFSCHFSFIVISPLILIDQLHLSPEAFSLVLLGYGLAYIGGGLIATMLSNRIDPQTQIMTGLGLILAAGLLMLGLANQLGLSVTTLLLPMIVCTAGTTIARAAANNQAMTLFPGQAGTSASAGSVLVFIVGGLTSAVISLTPLDLQVALALCLVLLSLLGLTLNALVRQRDGGLLPGPGPT0029005_3159DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029005-bcr|tcaB-K07552NANA
D1-35_03635954hypothetical proteinATGACTGGCTCAACCTTTACCCAAACGCCTTGCTACACCTTGGGCGACTGGAATAACAAGGCAACGGTGCGAGTGCGCAAGGACGACTACCGCCTTCCCGAGGATCTGGAGCAACAACTGTTGAGCAAAGGCTGGTTCCCACCAACTTTCATCCCCTATATTCAACACCCACTTATCCAGGCATCTGGACGTTCCGTCGCTCAACGTCTTGAGGCCAATCACTTGGTGTATTTTTTAGACTACACCACGCTGCTGGAGCACCGCATCGTCAATCGTTCTGTGGAGACTATCGCTCATGGCGAACTTGCCGTGACGATTCCGAACATGATGAAAACTGCCGCGCTGCAGCTCTATACCGACGAAGGCTATCACGCACTGTTCTCCCATGAAGTAGCGGAACAGGTCGCGGCCATATATGACATCGACGATCGCCAAACGCCGAGACGCATTGACCGGCTGTTAGGCATGATCGACACCATCAGTCCGGCGGATCGCCCACTTGCGTGGTTCCTGATGGGATTCGTCTCGGAAACAATAATCGCCAAAGAACTACTAGCCATCACATGCGATAGCCTGGTTTCCACGGTGTACCAAATGCTCAGGAATCATCTCGAGGACGAGGCACGCCACAGTCGCTACTTTGGCGAGGTGTTCCAGTTTTTTTGGACAGCCCTGGCCCCGACACAACACGATCAGGCCGCAAGGATGCTGCTGGAGATCATCGAGCTTTATTTCGAGCCAGACGTGCCCTGGCTGATGCGCAGCCTCGCCAGCGTAGGCTTCGACGAGCAGTCATCCTTTCAGATCATCGCCGACTTCCTACAACCGGACGCCCACTCCCAACGCCTTCGCTCCGGTGCGGTATCAACGTTCGCGGCCATGAAGAAGGCGCGCTTCTTTGACAACGAACACCACCGGCAGCTTTTCTCCCAAGCGGGGCTTATCGATGGCTGAMTGSTFTQTPCYTLGDWNNKATVRVRKDDYRLPEDLEQQLLSKGWFPPTFIPYIQHPLIQASGRSVAQRLEANHLVYFLDYTTLLEHRIVNRSVETIAHGELAVTIPNMMKTAALQLYTDEGYHALFSHEVAEQVAAIYDIDDRQTPRRIDRLLGMIDTISPADRPLAWFLMGFVSETIIAKELLAITCDSLVSTVYQMLRNHLEDEARHSRYFGEVFQFFWTALAPTQHDQAARMLLEIIELYFEPDVPWLMRSLASVGFDEQSSFQIIADFLQPDAHSQRLRSGAVSTFAAMKKARFFDNEHHRQLFSQAGLIDGNANANANANA
D1-35_036361083hypothetical proteinATGCATATAAATCCTTATCTATTTATACTTGCGCACCCGCCACGCCAGATTATCTGGAACTATGAACATCACACTCAACATGAACTTGATCTTAGTTATTCAACGCGCCTAGCTCAACTCATCAGCGACCCCACCCTATTCGACAATCTCAACCCCATTGATGTCGATTTTTTGAACGCAGAGATATTAACAACAGAACCCAGGAAGCCTATAGATTGGAAATGGGATCCACTGTCTAAGATATTCCATATCGGCACAAAAAATATTCCTTGCGAAGCTGTTCCTCAAGATGTGCATGAATGGGCAGCGATTTATCTTGAACATTGCAACGAGGTTCTCTCGTCGCCGGCACCTTCAGCCAGGACAAAACCGGACTTGGACGAGCTAATTTTCCTTGCACCCTGCTCTTGGCCGGACCTGCAGGACGTTTCGCTGACGCAGACGCTTATTGGCCGCCGCACGTCTCGCTCATTCAGCGAAGAATCCATTTCGCTTAAGCAGGTCAGCACCCTGCTTTATCTGACCCTGGGTTATCTGAGCGAACGTCATTTCGTTCAGGGCGCTGCCCAACCCGAAGCCTTAGGCGCGCGACGCAGCAGCCCTTCTGGGGGAGGCCTGAATGCCTGCGAAGGCTATCTTTACGTTCGCAACGTCGGGGGGCTACAGAGCGGTGTCTACAGTTATTACCCGGATGAGCATGCCTTGGGCCTGATCGGGCCTCTACCAACTGAACCTTTGGGCCTGTTGTTAGGCGGACAACATTTCATCAATACGCTGCCATTCGGGCTATTCCTAACCTCCCGCTTCGACAAACTCTGGTGGAAGTACGAACACTCCCGCACCTATCGAATGGCCTTCATAGAGGCAGGGCACGTGTCGCAGGTTTTTCTGATGGTCGCGACTGGTTTAGGGCTAGATACGTGGCTGACTGGAGCGCTAACCGACTGCAAAGTGGAACAACTGCTGGGTCTTAAAGAAAGCCCCGAACAACCTTTATTTTTTGTCGGTTGCGGCCAAGGCGATGGGCAAGTGCACTGCGAAGTGTTGAGGATATTGGCCAATGACCAGGACATGGTTTCATGAMHINPYLFILAHPPRQIIWNYEHHTQHELDLSYSTRLAQLISDPTLFDNLNPIDVDFLNAEILTTEPRKPIDWKWDPLSKIFHIGTKNIPCEAVPQDVHEWAAIYLEHCNEVLSSPAPSARTKPDLDELIFLAPCSWPDLQDVSLTQTLIGRRTSRSFSEESISLKQVSTLLYLTLGYLSERHFVQGAAQPEALGARRSSPSGGGLNACEGYLYVRNVGGLQSGVYSYYPDEHALGLIGPLPTEPLGLLLGGQHFINTLPFGLFLTSRFDKLWWKYEHSRTYRMAFIEAGHVSQVFLMVATGLGLDTWLTGALTDCKVEQLLGLKESPEQPLFFVGCGQGDGQVHCEVLRILANDQDMVSNANANANANA
D1-35_036371197rlmI_1COG1092Ribosomal RNA large subunit methyltransferase IATGTCCCTGCCCAGCCTGCGCCTCAAAGCCAACGCCGACCGTCGCCTGCGCGCCGGCCACCTGTGGGTCTACAGTAACGAAATCGATGTGGCCGCCACCCCGCTGCACGGCTTCAAGGCCGGTGACCAGGCGGTCCTCGAAGCCGCCGGCGGCAAGCCGCTGGGCATCGTTGCGATGAGCCCGAACAACCTGATCTGCGCACGCCTGCTGTCCCGCGACGTGAAGCTGGCGCTGGACAAATCCCTGTTGGTGCATCGCCTCAACGTGGCGTTGTCCCTGCGCGAGCGGCTGTTCGACAAGCCGTTCTATCGCCTGGTCTACGGTGATTCCGACCTGCTGCCGGGCCTGGTGGTCGACCGTTTCGGCGACATCCTGGTGGTGCAGATCGCCTCCGCCACCATGGAAGCCCACAAAGACGACGTGATCGCCGCCCTCACCCAGGTGCTCAAGCCTAGCGGCATCCTGTTCAAAAATGATTCCGCGGCACGCGACGCCGAAGGACTGGAGCGCTACGTCGAAACCGTGTTCGGCCTCGTCCCGGAATGGGTCGCCCTGGAAGAGAACGGCGTGAAATTCGAAGCGCCGGTCATGCAAGGCCAGAAAACCGGCTGGTTCTACGACCACCGCATGAACCGTGCGCGCCTGGCACCCTACGCCAAGGGCAAGCGCGTTCTGGACCTGTTCAGCTACATCGGCGGCTGGGGCGTGCAAGCCGCGGCGTTCGGTGCCAGTGAAGTATTCTGCGTCGACGCCTCGGCCTTCGCCCTCGACGGCGTCGAGCGCAACGCCGCGCTGAACGGCGTCGCCGAGAAGCTGACCTGCATTGAAGGTGACGTATTCGAAGCCTTGAAGGAACTCAAGGCCAGCGAAGAGCGTTTCGACGTGATCGTTGCCGACCCGCCGGCCTTCATCAAGCGCAAGAAAGACCTGAAGAACGGCGAAGGCGCCTACCGCCGCCTCAACGAACAGGCCATGCGCCTGCTCAGCAAGGACGGCATCCTGGTCAGTGCGTCATGCTCGATGCACCTGCCCGAAGACGATCTGCAGAACATCCTGCTGACCAGCGCCCGTCACCTGGACCGCAACATCCAACTGCTCGAACGCGGCGGCCAGGGCCCCGATCACCCGGTCCACCCGGCGATCGCCGAGACGCGCTACATCAAGAGCATCACCTGCCGCTTGCTGCCTAATAGCTGAMSLPSLRLKANADRRLRAGHLWVYSNEIDVAATPLHGFKAGDQAVLEAAGGKPLGIVAMSPNNLICARLLSRDVKLALDKSLLVHRLNVALSLRERLFDKPFYRLVYGDSDLLPGLVVDRFGDILVVQIASATMEAHKDDVIAALTQVLKPSGILFKNDSAARDAEGLERYVETVFGLVPEWVALEENGVKFEAPVMQGQKTGWFYDHRMNRARLAPYAKGKRVLDLFSYIGGWGVQAAAFGASEVFCVDASAFALDGVERNAALNGVAEKLTCIEGDVFEALKELKASEERFDVIVADPPAFIKRKKDLKNGEGAYRRLNEQAMRLLSKDGILVSASCSMHLPEDDLQNILLTSARHLDRNIQLLERGGQGPDHPVHPAIAETRYIKSITCRLLPNSNANANANANA
D1-35_03638540yraACOG0693Putative cysteine protease YraAATGCCCGCTAATCTGAACAACAAGCGTGTCGCCATTCTGGTCACCGACGGTTTTGAACAGGCCGAACTGACCGGTCCCAAAGAGGCGCTGGAACAGGCCGGGGCCAAGGTCGACATCATTTCCGCCAGCGACGGCCAGGTCAAAGGCTGGAACCATGACAAGCCGGCCGACGACTTCAAGGTGGACCTGACTTTCAAGGCGGCGAATGTCGATCAGTACGAAGCGGTGCTGCTGCCCGGCGGCGTGCAGAATTCAGACACCATCCGCATCGACCCCGACGCGCAGAACCTGGTCAAGGGCTTCGAGGCGGCTGGCAAGCCTATCGCGGTGATTTGCCATGGCGGCTGGTTGCTGGTGTCCAGCGGCCTGGTCAAAGGCAAGACCATGACCAGCTACAAGACGCTCAAGGATGACCTGGTCAATGCCGGCGCGAACTGGGTCGACCAGGAAGTCGTCCGGGATGGCACCTGGATCAGCAGCCGCCAGCCAGATGATATTCCCGCGTTCAACCGTGAACTGATCAACTCGCTGTCGGCCTGAMPANLNNKRVAILVTDGFEQAELTGPKEALEQAGAKVDIISASDGQVKGWNHDKPADDFKVDLTFKAANVDQYEAVLLPGGVQNSDTIRIDPDAQNLVKGFEAAGKPIAVICHGGWLLVSSGLVKGKTMTSYKTLKDDLVNAGANWVDQEVVRDGTWISSRQPDDIPAFNRELINSLSAPGPT0015010_2593DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-METHYLGLYOXAL_DETOXIFICATION,PGPT0015010-yfkM|pfpI|yraA-K05520NANA
D1-35_03639870hypothetical proteinATGTCCAAAGAACTTTCCGCCGAACAGATCCAACAGTCCCTGCAGGGCATCAGTGTGCCGCCCCAGCCGCAAATCATGGTGGATTTGCAGATGGAGCAGTACATGCCCGACCCGGACCTGGAAACCATTGCCAAGCTGATTTCCCAGGATCCGGGCCTTTCGGGTGCCTTGCTCAAGATCGTCAATTCGCCGTACTACGGCTTGAGCAACAAGATCACTTCGATCCAGCGCGCAGTGAACCTGCTGGGCAGCCGGTCGATCATCAACCTGATCAACGCGCAGTCGATCAAAGGCGAATTGCACGACGATGCCATCGTCACCTTGAACCGCTTCTGGGACACCGCCCAGGACGTGGCCATGACCTGCCTGACGCTGGCCAAGCGCGTCGGCCTGCAGAACGGCGACGAAGCCTATGCCCTGGGTTTGTTCCATGACTGCGGCGTGCCGCTGATGCTCAAGCAGTTCCCCACCTACATGGGCGTGCTGGAGGAGGCCTATGCCAATGCCAGCGCCGAGATCCGGGTGGTGGACACCGAAAACCGCGTGTTCAACACCAACCATGCGGTGGTCGGTTACTACACCTCCAAGTCCTGGCGCCTGCCGGACCACGTCAGCCAGGCCATCGCCAATCACCACAACGCCCTGGCGATTTTCAGCGATGAATCTTCGCGCAATAACAGTCAGTTGAAAAACCTGTTGGCGATCCTGAAGATGTCCGAGAACATCTGTGCTTCCCATCGCGTGCTGGGCAACCAGGCTGAGGATCACGAGTGGAATTGCGTCGGGCCACTGGTGCTCGATTACATCGGTCTGCCGGAGTACGACTTCGAGACCCAGAAACAGGAAATCCGCGACCTGGCCTCTCGTTGAMSKELSAEQIQQSLQGISVPPQPQIMVDLQMEQYMPDPDLETIAKLISQDPGLSGALLKIVNSPYYGLSNKITSIQRAVNLLGSRSIINLINAQSIKGELHDDAIVTLNRFWDTAQDVAMTCLTLAKRVGLQNGDEAYALGLFHDCGVPLMLKQFPTYMGVLEEAYANASAEIRVVDTENRVFNTNHAVVGYYTSKSWRLPDHVSQAIANHHNALAIFSDESSRNNSQLKNLLAILKMSENICASHRVLGNQAEDHEWNCVGPLVLDYIGLPEYDFETQKQEIRDLASRNANANANANA
D1-35_03640813mutMCOG0266Formamidopyrimidine-DNA glycosylaseATGCCAGAACTGCCGGAAGTCGAAACCACCCGCCGCGGGATCGCGCCACACCTCGAAGGGCAACGGGTCAGCCGCGTCGTCGTGCGTGACCGCCGCTTGCGCTGGCCGATTCCCGAAGACCTCGATGTGCGTCTTTCGGGGCAACGCATCGTGCAGGTGGAACGTCGGGCCAAATATTTGTTGATCAATGCCGAGGTTGGCACGCTGATCAGCCACCTGGGCATGTCCGGCAACCTGCGGCTGGTCGAGATCGGCATGCCCGCCCTCAAGCATGAACATGTCGACATCGAACTGGAGTCCGGGCTGGCCTTGCGCTACACCGATCCGCGTCGCTTCGGGGCGATGCTCTGGAGCCTTGACCCGCTCAATCACGAGTTGCTGATTCGCCTCGGGCCGGAACCGCTGACTGACCTGTTCGACGGCGAACGGCTGTTCCAGCTTTCCCGTGGGCGCTCGATGGCGGTCAAGCCGTTCATCATGGACAACGCGGTCGTGGTGGGCGTGGGCAATATCTATGCGACCGAAGCGCTGTTCGCCGCCGGGATCGACCCACGGCGCGCCGCCGGAAGCATTTCTCGGGCGCGCTATCTGAAACTGGCGATCGAGATCAAGCGCATCCTTGCCCATGCCATCGAACGCGGTGGAACCACGCTGCGGGATTTCATCGGTGGAGACGGCCAGCCCGGTTATTTCCAGCAGGAGCTGTTCGTGTACGGTCGGGGTGGGGAGTTGTGCAAGATCTGTGGCACGGGGCTGCGGGAAATCCGCCTGGGCCAGCGCGCCAGCGTCTGGTGTCCGCGCTGCCAGAGGTGAMPELPEVETTRRGIAPHLEGQRVSRVVVRDRRLRWPIPEDLDVRLSGQRIVQVERRAKYLLINAEVGTLISHLGMSGNLRLVEIGMPALKHEHVDIELESGLALRYTDPRRFGAMLWSLDPLNHELLIRLGPEPLTDLFDGERLFQLSRGRSMAVKPFIMDNAVVVGVGNIYATEALFAAGIDPRRAAGSISRARYLKLAIEIKRILAHAIERGGTTLRDFIGGDGQPGYFQQELFVYGRGGELCKICGTGLREIRLGQRASVWCPRCQRPGPT0021790_1DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0021790-ECHS1-K07511NANA
D1-35_03641321hypothetical proteinATGACTCTGCTTCGAACTTTCCTCCTGGCACTCTCGCTGAGTGTCGGCTTGCCTGCCTTGGCGAACACCGAAAGCGGTGACCCGCGCTACACCATCCAGAATCCACCCGCGTACGCCATGCTCGGCGACTTGCTCATTGCTCGTCCGTTGCTGCTCGCCGCCACCGTGATCGGTGCCGGGGCGTTTGTCGTGTCGTTGCCCTTTACGGCGCTGGGTGGCGGGGTTGGCGATGCGGGGAAGGCGTTGGTGGTCGACCCGGCGAAAGCGACGTTTGTGCGGTGCCTGGGGTGTGTTGGGGAGGGGTTTGAGCGGCAGGAGTGAMTLLRTFLLALSLSVGLPALANTESGDPRYTIQNPPAYAMLGDLLIARPLLLAATVIGAGAFVVSLPFTALGGGVGDAGKALVVDPAKATFVRCLGCVGEGFERQENANANANANA
D1-35_03642252fdx_2COG1145FerredoxinATGTCCCTGATCATCACCGACGACTGCATCAATTGCGACGTCTGCGAACCCGAGTGCCCGAACGCCGCCATTTCCCAGGGCGAAGAGATCTATGTCATTGACCCGAACCTGTGCACCCAGTGCGTCGGGCACTATGACGAGCCTCAATGCCAGCAGGTATGCCCGGTGGATTGCATCCCGCTGGACGAGGCTCATCCGGAGACTGAGGAACAGTTGATGGCGAAATATCGCAAAATCACTGGCAAGGAATGAMSLIITDDCINCDVCEPECPNAAISQGEEIYVIDPNLCTQCVGHYDEPQCQQVCPVDCIPLDEAHPETEEQLMAKYRKITGKEPGPT0003976_164DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-BACTERIOFERRITIN-ASSOCIATED_FERREDOXIN,PGPT0003976-yfhL-NANANA
D1-35_03643480coaDCOG0669Phosphopantetheine adenylyltransferaseATGAACCGAGTGTTGTACCCAGGTACCTTCGACCCCATTACCAAGGGCCATGGCGATCTGGTCGAACGCGCCTCGCGCCTGTTCGACCATGTGATCATTGCCGTCGCCGCCAGCCCGAAGAAAAACCCGCTGTTCCCGCTGGAGCAACGTGTGGAGCTGGCCCGTGAGGTCACCAAGCACCTGCCGAACGTGGAAGTGGTCGGCTTCTCGACGCTGCTGGCGCATTTCGCCAAGGAAAAGAACGCCAATGTGTTCCTGCGCGGCCTGCGTGCGGTCTCGGATTTCGAATACGAGTTCCAGCTGGCCAACATGAACCGCCAGTTGGCCCCGGACGTCGAGAGTCTCTTCCTGACGCCATCGGAGCGTTACTCCTTCATCTCGTCGACCCTGGTGCGGGAAATTGCGGCCTTGGGCGGCGATATCACCAAGTTCGTCCACCCGGCCGTGGCCGACGCGCTGACCCTGCGCTTCAAGAAGTAAMNRVLYPGTFDPITKGHGDLVERASRLFDHVIIAVAASPKKNPLFPLEQRVELAREVTKHLPNVEVVGFSTLLAHFAKEKNANVFLRGLRAVSDFEYEFQLANMNRQLAPDVESLFLTPSERYSFISSTLVREIAALGGDITKFVHPAVADALTLRFKKPGPT0008825_3471DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008825-coaD|kdtB-K00954NANA
D1-35_036441596COG2303putative GMC-type oxidoreductaseATGCCCGTACCCGATCCGTTCCGCGAAGGCCTGGCCCGTGGCTGGACCACCTACAACGGCGCGCAACTGACCCAGGACCTCACGCTGGAAGCCGACGTGGCGATCATCGGCAGCGGCGCCGGCGGTGGCACCACGGCGGAAATTCTCAGTGCCGCCGGCTACAAGGTATTGCTCATTGAGGAAGGCCCGCTCAAGACCAGCCAGGACTTCAAGCTGCTTGAGGATCAGGCTTACACCAGCCTGTATCAGGAAGGTCTCGGGCGAATGAGCAAGGACGGCGCCATCACCATTCTCCAGGGCCGGGCCGTGGGGGGCACCACGTTGATCAACTGGACCTCGAGCTTTCGTACGCCTGACCAGACTCTCGAACACTGGGCGACCGAGCATGCCGTCCGGGGCCACGGCCCCGCCGAGATGGCGCCCTGGTTCGAACGCATGGAGCAGCGCCTGGGGGTGGCGCCATGGCTGATTCCGCCCAATGCCAACAACGACGTCATTCGCAAGGGCTGCGAGCAATTGGGCTACAGCTGGCATGTGATCCCGCGCAACGTGCGCGGCTGCTGGAACCTGGGCTATTGCGGGATGGGCTGCCCGACCAATGCCAAGCAGTCGATGCTGGTCACCACCATACCCGCCACGCTGGACCAGGGCGGCGCCCTGCTCTATCTGGCGCGGGCCGAACGCCTGATCATCAGCAACGATGCGGTAGTGGAATTGCAATGCCAGGCCATGGACGAACGCTGCGTGGCGTCGACCGGACGGCGCATCAGGGTCAAGGCGCGGCATTACGTGCTGGCCGGTGGCGGCATCAACAGCCCCGCCCTGCTGCTGCGCTCCGACGCGCCGGATCCGCATCGATGCCTGGGCAAGCGCACCTTCCTGCACTTGGTGAACATGTCAGCCGGACTGTTCGATGAAGTCATCAACCCTTTTTATGGGGCTCCACAGTCGATTTATTCAGATCATTTCCAATGGCAGGATGGCGTCACCGGCAAAATGTCCTACAAGCTGGAAGTCCCGCCTTTGCACCCGGCCCTCGCCGCCACGCTGTTGGGCGGCTTTGGTGCGCAGAACGCAGCGCACATGGCAAAGTTGCCCCACACTCACGCCATGCTGGCGCTACTGCGCGACGGCTTTCACCCGGACAGCCCCGGCGGTACCGTGGAATTGCGCAGCGACGGCACGCCTGTGCTCGACTATCAGGTCTCCCCCTACACTTGGGACGGTTTGCGCCGGGCATTTCACAGCATGGCCGAGATCCAGTTCGCCGCAGGGGCCAGGTCGGTCATGCCGATGCACAGCGATGCCCGGCACGTGAAAACCCTGGCCGAGGCCCGGGCGCTGATCGACGGGCTGGACCTGGCCCTTTTCCGCACCCGCCTGGGCAGCGCTCATGTCATGGGGGGTTGCGCCATGGGCGAAGAGCCGAAACAGGCGGTGACCGACAGCCTCGGCCGCCACCACCAACTGCGTAATCTTTCCATCCACGACGGCTCGCTGTTCCCCACCAGCATCGGCGCCAACCCGCAACTGTCGGTGTACGGCCTGACTGCCAAACTGGCGACCCTGCTGGCCGAACGTCTGCAAAACACATGAMPVPDPFREGLARGWTTYNGAQLTQDLTLEADVAIIGSGAGGGTTAEILSAAGYKVLLIEEGPLKTSQDFKLLEDQAYTSLYQEGLGRMSKDGAITILQGRAVGGTTLINWTSSFRTPDQTLEHWATEHAVRGHGPAEMAPWFERMEQRLGVAPWLIPPNANNDVIRKGCEQLGYSWHVIPRNVRGCWNLGYCGMGCPTNAKQSMLVTTIPATLDQGGALLYLARAERLIISNDAVVELQCQAMDERCVASTGRRIRVKARHYVLAGGGINSPALLLRSDAPDPHRCLGKRTFLHLVNMSAGLFDEVINPFYGAPQSIYSDHFQWQDGVTGKMSYKLEVPPLHPALAATLLGGFGAQNAAHMAKLPHTHAMLALLRDGFHPDSPGGTVELRSDGTPVLDYQVSPYTWDGLRRAFHSMAEIQFAAGARSVMPMHSDARHVKTLAEARALIDGLDLALFRTRLGSAHVMGGCAMGEEPKQAVTDSLGRHHQLRNLSIHDGSLFPTSIGANPQLSVYGLTAKLATLLAERLQNTPGPT0013615_4094DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013615-betA|CHDH-K00108NANA
D1-35_03645546hypothetical proteinATGAGCCCAAACCTGACCGATACGCCCGCCCTGACACGGCGTGGTTTGCTGCAACTGAGCCTTGGCGCCAGTGTTTTCCTCGCCACCGTCGGCCTGGGCGCCAGCCTCAGCGGCTGTTCGTCCAGCCAACCGGCGGACGGCCTGAAGGCCCTGCGCGACAGCGACCTGGCATTTCTACGCGCCGTCATTCCGGTGATGCTCGACGGCGCAGTGACGGCAGGAACGATCCAGGCCGCCACCGATGCCACGCTGCAAAGCCTGGATCGCGGCCTGGCGCACTTGTCTGCGGCGATGCTCAAGCTCACGCATCAACTGTTCGACGTGCTCACGTTGGGTGTGACCCGCGGGCCGCTGACCGGAATCTGGGGCGGGTGGGAAAACGCCAGCGCCGATGACATCCAACAATTCCTGACACGCTGGGAAAACAGCTCGCTGAGCTTGTTGCGCCAAGGCCACAGCTCTTTGCTGCAAATGGTGATGATGGCCTGGTACAGCCGGCCCGAGGCCTGGGCGCACTGCGGGTATCCGGGCCCGCCAACCGTCTGAMSPNLTDTPALTRRGLLQLSLGASVFLATVGLGASLSGCSSSQPADGLKALRDSDLAFLRAVIPVMLDGAVTAGTIQAATDATLQSLDRGLAHLSAAMLKLTHQLFDVLTLGVTRGPLTGIWGGWENASADDIQQFLTRWENSSLSLLRQGHSSLLQMVMMAWYSRPEAWAHCGYPGPPTVNANANANANA
D1-35_036461431calBConiferyl aldehyde dehydrogenaseATGCCAGCCGACGTTGCTTACCTGCACCAGTCTCAACAGCAGCTGGATGAAATTCGGACGATCTTCGAGGCCCAGCGCCGTGCTTTCGCCGCTCATCCCATGCCAACGGCCGAGCAGCGCCGGCAGTGGCTCAAGGCATTGCGCGAACTGTTGAGCAATGAACGGCAAGCCCTGATCGACGCGATCAGCCAGGACTTCAGTCACCGCAGCGCCGACGAAACCCTGCTGGCCGAGCTGATGCCGAGCCTGCACGGCATCCATTACGCCAGCCGCAACCTCAAGGGCTGGATGAAACCTTCCCGGCGCAAGGTCGGCATGGCCTTCCAACCGGCATCGGCCAAGGTGGTCTACCAGCCATTGGGCGTGGTCGGGGTCATCGTGCCGTGGAATTACCCCCTCTTCCTGGCCGTGGGCCCATTGGTCGGCGCCTTGTCAGCGGGCAACCGGGTCATGCTCAAGCTCAGCGAGGCGACCCCGGCCACCGGGTTGCTGCTCAAGCGACTGTTCGCCCGTATCTTTCCCCAGGACCTGGTGTCGGTGGTGCTGGGCGAGGCTGACGTTGGCATTGCATTCTCCAGGTTGCCGTTCGATCACCTGTTGTTCACCGGCGCCACCAGCATCGGCAAGCATGTGATGCGTGCCGCCGCGGAAAACCTCACCCCCGTCACCCTTGAGCTGGGTGGCAAATCACCCGCCATCGTGTCCGACGACGTACCGCTCAAGGACGCCGCCGAACGCATAGCCTTCGGCAAGACCCTGAATGCCGGGCAGACCTGCGTCGCGCCGGATTACGTGCTGGTACCGCAGAGCCGCGTCGGAGCGTTCGTCGAGGCGTATCGCGAAGCGGTCCGCAGGTTTTATCCGACGCTGGCGGACAACCCGGACTACACCGCCATCATCAACGATCGCCAACTGGCGCGGCTCAACGGCTACATCGGCGACGCCACCAGCAAAGGCGCGCTGCTGATCGAGCTGTTCGACCAGGGCCAGGGACGCCGCATGGCCCACAGCCTGTTGCTCAATGTCACGGATGACATGACGGTGATGCAGGATGAGATCTTCGGCCCACTGCTGCCCATCGTGCCGTATGAAGGCCTGGACCAGGCTTTTGCCTACATCAATCGGCGGCCTCGTCCGCTGGCGCTCTACTACTTCGGCTACAACAAGGCCGAACAGCAGCGAGTACTCAATGAAACCCATTCCGGCGGCGTCTGCCTGAACGACACGCTGCTGCATGTGGCCCAGGACGACATGCCGTTCGGCGGCATTGGCGCCTCGGGGATGGGCCACTATCACGGTCACGAGGGATTCCTGACCTTCAGCAAGGCCAAGGGCGTCCTGATCAAGCAGCGCTTCAACGCCGCCAGACTGATTTATCCGCCCTATGGCAAGCCTTTGCAGAAGCTGATCCAGAAGCTGTTCATCCGCTAAMPADVAYLHQSQQQLDEIRTIFEAQRRAFAAHPMPTAEQRRQWLKALRELLSNERQALIDAISQDFSHRSADETLLAELMPSLHGIHYASRNLKGWMKPSRRKVGMAFQPASAKVVYQPLGVVGVIVPWNYPLFLAVGPLVGALSAGNRVMLKLSEATPATGLLLKRLFARIFPQDLVSVVLGEADVGIAFSRLPFDHLLFTGATSIGKHVMRAAAENLTPVTLELGGKSPAIVSDDVPLKDAAERIAFGKTLNAGQTCVAPDYVLVPQSRVGAFVEAYREAVRRFYPTLADNPDYTAIINDRQLARLNGYIGDATSKGALLIELFDQGQGRRMAHSLLLNVTDDMTVMQDEIFGPLLPIVPYEGLDQAFAYINRRPRPLALYYFGYNKAEQQRVLNETHSGGVCLNDTLLHVAQDDMPFGGIGASGMGHYHGHEGFLTFSKAKGVLIKQRFNAARLIYPPYGKPLQKLIQKLFIRPGPT0019970_641DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_LIGNIN_DEGRADATION|LIGNINASESPLANT_LIGNIN_DEGRADATION-DEHYDROGENASE_ACTIVITY,PGPT0019970-calB-K00154NANA
D1-35_03647672hypothetical proteinATGGCCCCACGAATAAAAACCAGCGAGCGCATCGTGCAGAACAGCCTGGAGTTGTTCAACCGGCAGGGTGAGCGCAGTGTCAGCACCAATCACATTGCCGCCCACATGGACATGTCCCCGGGCAATCTCTATTACCACTTCCCCAACAAGCAGGCGATCATCGCCGTGCTGTTCAGCGAATACGAAAACCTGGTGGACAGCTTCCTGCGGCCACCCCAGGGGCGGGCCGCCACGGTGGACGACAAGCGCTTCTACCTGCAGGAGCTGCTCTCGGCGATGTGGCGCTACCGGTTCCTGCACCGGGACCTGGAGCACCTGCTTGACAGCGACCCGGAACTGGCGGCTCGCTACCGACGCTTTTCCCAACGCTGCCTGATCCATGGCACGGCTATCTACGAAGGCTTCGTCGACGCCGGTATCCTGGCGATGGACCGTGTCCAGATCGAGTCCCTGACCCTCAATGCCTGGATTGTCCTCACGTCCTGGGTCCGGTTCCTCTGCACCACGCGCGAAAACTCCAACCACCTGAGCGAACAGGCGATCAAGCGCGGGGTGTATCAGGTGCTGGTGCTCGAGGCGGGGTTTGTGACCGGGCAGGCCCGCGAAGCGGTAGATGCCCTGTTCAAAGAATTTTATGTCCCGCTGGCCCAGACCCTGGAGGAAGGGCAGTAGMAPRIKTSERIVQNSLELFNRQGERSVSTNHIAAHMDMSPGNLYYHFPNKQAIIAVLFSEYENLVDSFLRPPQGRAATVDDKRFYLQELLSAMWRYRFLHRDLEHLLDSDPELAARYRRFSQRCLIHGTAIYEGFVDAGILAMDRVQIESLTLNAWIVLTSWVRFLCTTRENSNHLSEQAIKRGVYQVLVLEAGFVTGQAREAVDALFKEFYVPLAQTLEEGQNANANANANA
D1-35_03648855sseBCOG2897Putative thiosulfate sulfurtransferase SseBATGCCCATCGCGCAACTCATCAGCCCTCAGGCCCTGGAACAGCGGAGATCACAGCCCGGGCTGGTGATCCTCGATTGTCGTTTTGCCCTGGAGGACCCGGACTATGGCCAGCGCAGTTACGCCGAGGGCCATATCGCCGGCGCGTCGTTCGCCGACCTTGAACGGGATCTGAGCGGACCGGTCATCAAGGGCGTCACCGGACGTCATCCGCTGCCGGAGCCCGAGGCGCTGGTTGAGCGTCTCCGGGCCTGGGGGGTCAACAATGACAGCGAGGTCGTGCTGTATGACGACGGCCCCGGCGCCTATGCCGCCCGGGCCTGGTGGCTGCTGGCCTGGTTGGGCAAACGCGATGGCGTGCATATTCTCGACGGCGGGCTCAAGGCCTGGCATGCGGCCGGCCTGCCCCTGAGCCTGGATCCGCCGCAGGCTGCTCGCGGGACTTTCAGCGGCGCGCCGGACGCGAGCTTGCTGCTCAGTGCGCAGGCGTTGCAGCAACGCCTCGGTGATGCGGACATGACCCTGCTGGATGCCAGGGCGCTGCCGCGTTTCAAGGGCGAAGTCGAACCGATCGACCCGGTGGCGGGGCATATCCCGGGCGCATCATGCGCAGCATTCACCGACAACCTGGGGACCGATGGACGCTTCTTGCCGGCCGATCAACTCAAGCTGCGTTTCGCTGAAAAACTGGGCGAGCGTCCGCCCACCGAGCTGGTGGCCTACTGTGGCTCCGGCGTGACGGCGTGCCATAACCTGTTTGCCTTGTGCCTGGCGGGCTATCCGCTGGGACGGTTGTATGCCGGCTCGTGGAGCGAGTGGATCAATGATCCCCAGCGGGGCGTGGCGAAGGGCGAATAGMPIAQLISPQALEQRRSQPGLVILDCRFALEDPDYGQRSYAEGHIAGASFADLERDLSGPVIKGVTGRHPLPEPEALVERLRAWGVNNDSEVVLYDDGPGAYAARAWWLLAWLGKRDGVHILDGGLKAWHAAGLPLSLDPPQAARGTFSGAPDASLLLSAQALQQRLGDADMTLLDARALPRFKGEVEPIDPVAGHIPGASCAAFTDNLGTDGRFLPADQLKLRFAEKLGERPPTELVAYCGSGVTACHNLFALCLAGYPLGRLYAGSWSEWINDPQRGVAKGEPGPT0002045_3095DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002045-sseA-K01011NANA
D1-35_036491005hypothetical proteinATGATCGTGTCCTGCGCACCTGAACGCTTCATACCCGCCCCGGGCCTTGGCAATCCGCACCTGCAGACCTTGTGGGGCCCATTGTGGCGTAAAACCGTTCACATCGATCGCGAACGTGAGCGCCTCTGGCTGGACGATGGTGATTTCCTCGACCTTGACTGGCATGGCCCGCATAGCGCCGAAGCACCGCTGGTGCTGGTGCTTCATGGGCTGACCGGTTCCTCCAACTCACCCTACGTTGCCGGCCTGCAACGCGCGCTCAATGCTCAAGGCTGGGCCAGCGTCGCCCTGAACTGGCGTGGTTGCTCGGGCGAGCCGAACCTGCTGGCTCGCAGTTATCATTCCGGCGCCAGCGAAGATCTCGCCGCGGCTATCGCCCATCTGCGGGCCCGACGCCCCTTGGCGCCGCTGTTTGCGGTGGGCTATTCGCTGGGCGGGAATGTGCTGCTCAAGCATTTGGGGGAAGCCGGCAACCACAGCCAGTTGCAGGGCGCAGTTGCGGTCTCGGTACCGTTTCGCCTGGACCAGTGCGCCGACCGCATCGGACAGGGCTTTTCCAGGTTCTATCAGGCGCACTTCATGCGGGAAATGGTCGCCTACGTGCGCAACAAGCAACGCCAGTTCCAGCATGACGGACGCGACGAAGGGCTCGCGGCCCTGGCAGCCCTGGGCTCGCTGGACAACATGCGCACCTTCTGGGATTTCGACGGCCGGGTGACAGCGCCGCTGCACGGCTTTTCCGACGCAGCGGATTACTACCGGCGCGCGTCCAGCCGCTATTTCATGGCGGGAATCAGTACACCGACGCTGGTCATCCAGGCCGCCGACGACCCATTTGTATTCCCCCACAGCCTGCCCGAACCCGGCGAGTTATCGGCCTGGACCCACCTGGAACTGCACATGCGGGGCGGGCATGTGGGATTTGTCGACGGAACCCTGCGCCGCCCGGGCTATTACCTGGAACGCCGGATTCCCTGCTGGCTGGCCAGCCTGGCACAAGGCTGAMIVSCAPERFIPAPGLGNPHLQTLWGPLWRKTVHIDRERERLWLDDGDFLDLDWHGPHSAEAPLVLVLHGLTGSSNSPYVAGLQRALNAQGWASVALNWRGCSGEPNLLARSYHSGASEDLAAAIAHLRARRPLAPLFAVGYSLGGNVLLKHLGEAGNHSQLQGAVAVSVPFRLDQCADRIGQGFSRFYQAHFMREMVAYVRNKQRQFQHDGRDEGLAALAALGSLDNMRTFWDFDGRVTAPLHGFSDAADYYRRASSRYFMAGISTPTLVIQAADDPFVFPHSLPEPGELSAWTHLELHMRGGHVGFVDGTLRRPGYYLERRIPCWLASLAQGNANANANANA
D1-35_03650612rsmDCOG0742Ribosomal RNA small subunit methyltransferase DATGGCCCGTCCATCCAATTCCAGCAAGAAACCCGCGCACAACGGGGTTAACCAGTTGCGCATCATCGGCGGTGAGTGGCGCAGCCGGCGCTTGAGCTTCCCCGATGCCCCGGGCCTGCGGCCGACGCCGGACCGGGTGCGCGAAACCCTGTTCAACTGGCTCGCGCCGTATGTGGCGGGTGCCCGGGTGCTCGACCCGTTCGCCGGCAGTGGCGCGCTGTTTCTCGAGGCCTTGTCCCGTGGCGCCGCCATGGGCCAGGCGCTGGACGCCAGCAGCCTGGCGGTCTCGAGCCTGAAAGAACACCTGGGCACGCTGCGTTGCACCGTCGGCCAGGTGCAGACGGCGGATGCGCTGCGCTATCTCGACAGCCAGCCCGCGACACCTTTCGACCTGGTGTTCCTCGACCCGCCGTTCAACCAGAACCTGTTGCCGGCCGTCTGCGCGTTGCTTGAGGAACGGCAATGGCTGGCCGACGATGCCTGGGTCTACACTGAAAGCGAGACCGCCCCTTCGACCCTGGGCTTGCCGGCCAATTGGCGCCTGCATCGCGAGCAGAAATCCGGGCGGGTGTATTACGCATTGTGGCAACGTACGGCAGAGGCCGTTGGCTGAMARPSNSSKKPAHNGVNQLRIIGGEWRSRRLSFPDAPGLRPTPDRVRETLFNWLAPYVAGARVLDPFAGSGALFLEALSRGAAMGQALDASSLAVSSLKEHLGTLRCTVGQVQTADALRYLDSQPATPFDLVFLDPPFNQNLLPAVCALLEERQWLADDAWVYTESETAPSTLGLPANWRLHREQKSGRVYYALWQRTAEAVGNANANANANA
D1-35_036511491hypothetical proteinATGAGTGAGCGCAAATCACCGCGCCTGGTGCTGATCGGCCTGGTATTGATCGCCGTGGTCGGCGCGCTGGCCTTTTACCTGTCGCCATCGACCAGCTCCAACGCCAGCCAGGCGCTGGACAAGGCCAAGTCCGGCAACAAGCTGCAATCGCTGGCTGAACTGGACGGCAAGGCGCCCAGCCATCGCCAGCTCGACGTGCAGACCTGGAAAACCGCCGACGGCGCCAAGGTGCTGTTCGTCGAAGCTCGCGAATTACCGATGTTCGACCTGCGCCTGACCTTCGCCGCCGGCAGCAGCCAGGACGGCGACGCACCGGGCCTGGCGCAGTTGACCAACGCCATGCTCAACGAAGGCGTGGCGGGCAAGGACGTCAGTGCCATTGCCGAAGGCTTTGAAAGCCTCGGCGCCGATTTTGGCAACGGCGCCTTCCGGGACATGGCCGTGGCTTCGCTGCGCAGTCTCAGCGCTGCCGACAAGCGCGAGCCGGCGCTGAAGCTGTTTGCCGAAGTTGTCGGCCAGCCGACCTTCCCCGCCGACTCCTTCGCGCGCATCAAGAACCAGATGCTCGCCGGTTTCGAGTACCAGAAGCAGAACCCCGGCAAACTGGCGGGCCTGGAACTGATGAAGCGCCTGTACGGCGACCATCCGTATGCGCACTCCAGCGACGGCACGGCACAGAGCATCCCGCCGATTACCCTGGCCCAGGCCCGGGCCTTTCATGCCAAGGCCTATGCCGCCGGCAACGCGGTGATCGCCCTGGTGGGGGACCTGTCCCGTGCCGAGGCCGAAGCCATTGCCAACCAGATATCCGCCGCACTGCCCAAGGGCCAGGCCCTGGCGAAAACGCCGCCACCGGTGGAGCCGAAAGCGAGCGTCCACCATATCGAGTTCCCGTCCAAGCAGACCAACCTGATGCTCGCGCAACTGGGCGTCGACCGCGACGATCCGGACTATGCCGCCGTGTCCATGGGCAACCAGATCCTCGGCGGCGGTGGCTTCGGCACGCGGCTGATGACCGAGGTCCGAGAAAAACGCGGCCTGACCTATGGCGTCTATTCCGGCTTCACGGCGATGCAGGCTCGCGGCCCGTTCATGATCAGTCTGCAGACCCGTGCCGAGATGAGCGAAGGCACGTTGAAGCTGGTACAGGATGTGTTCGCCGATTATCTCAAGAACGGCCCGACCCAGAAGGAGCTCGACGACGCCAAGCGCGAGCTGGCCGGCAGCTTCCCGCTGTCGACCGCGAGCAACGCCGACATCGTCGGTCAGCTCGGCGCCATGGGCTTTTATGACTTGCCGCTGAGCTACCTGGAGGACTTCATGCGCCAGTCCCAGGCGCTGACGGTCGAGCAAGTCAGGACCGCGCTGAACAAACACCTGAGCACGGACAAGATGGTCATCGTCACCGCTGGCCCGACCGTGCCGCAAAAGCCGTTGCCGGCCCCCACTGACAAACCTGCCGAGCAGCCGCTCGGGGTTCCGGAGCATTAAMSERKSPRLVLIGLVLIAVVGALAFYLSPSTSSNASQALDKAKSGNKLQSLAELDGKAPSHRQLDVQTWKTADGAKVLFVEARELPMFDLRLTFAAGSSQDGDAPGLAQLTNAMLNEGVAGKDVSAIAEGFESLGADFGNGAFRDMAVASLRSLSAADKREPALKLFAEVVGQPTFPADSFARIKNQMLAGFEYQKQNPGKLAGLELMKRLYGDHPYAHSSDGTAQSIPPITLAQARAFHAKAYAAGNAVIALVGDLSRAEAEAIANQISAALPKGQALAKTPPPVEPKASVHHIEFPSKQTNLMLAQLGVDRDDPDYAAVSMGNQILGGGGFGTRLMTEVREKRGLTYGVYSGFTAMQARGPFMISLQTRAEMSEGTLKLVQDVFADYLKNGPTQKELDDAKRELAGSFPLSTASNADIVGQLGAMGFYDLPLSYLEDFMRQSQALTVEQVRTALNKHLSTDKMVIVTAGPTVPQKPLPAPTDKPAEQPLGVPEHPGPT0001280_2752DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-GLUCONIC_ACID-PQQ_PATHWAY,PGPT0001280-pqqL|yddC-K07263NANA
D1-35_036521356COG0612putative zinc proteaseATGAATGCTCTTGCCCGCCGCGCCGCTGGCCTGCTGCTCAGCACAGTTTGTCTGCCCTTTTCCGCCCTTGCTGCCGACCCGCAACCTACCCATGAATTTACCCTCGACAACGGTTTGAAGGTCGTCGTGCGCGAGGATCACCGGGCTCCGGTGGTCGTCTCCCAGGTCTGGTACAAGGTGGGCTCCAGCTATGAAACGCCGGGCCAGACCGGCCTGTCCCACGCCCTGGAACACATGATGTTCAAGGGCAGCGAAAAAGTCGGTCCCGGCGAAGCGTCGTTGATCCTGCGCGACCTTGGCGCCGAGGAGAACGCGTTCACCAGCGATGACTTCACCGCCTATTACCAGGTACTGGCCCGGGATCGCCTGGGCGTGGCCTTCGAGCTTGAAGCCGATCGCATGGCCAGCCTGCGCTTGCCGCCGGAGGAGTTCAGCCGCGAGATCGAGGTCATCAAGGAAGAGCGCCGCATGCGCACCGATGACAAGCCCATGTCCAAGGCCTACGAGCGATTCAAGGCCATGGCGTACCCGGCCAGCGGCTACCACACGCCGACCATCGGCTGGATGGCCGACCTGGACCGGATGAAGGTCGAGGAGCTGCGCCACTGGTACGAATCCTGGTATGCACCGAACAATGCGACCCTGGTAGTGGTTGGCGACGTGACACCAGACGAGGTCAAGACCCTGGCCCAGCGCTATTTCGGCCCGATTGCCCGGCGCGCCGTGCCGGCGGCGAAAATCCCGCTGGAGCTGGCCGAACCCGGTGAGCGCAAGATCACCCTGCATGTACAGACCCAACTGCCGAGCGTCATGCTGGCGTTCAACGTGCCGAGCATCGCCACGGCCACCGACAAAGTCCCGGTCAACGCCTTGCGGCTGATTTCCGCGCTGCTGGACGGCGGTTACAGCGGCCGGATCCCGGCCCAGCTGGAGCGCGGCGAAGAATTGGTGTCCGGCGGCTCGTCGAACTACGACGCCTACACCCGTGGCGATACCCTGTTCACCCTGTCGGCGACACCCAACACGCAGAAAAACAAGACCCTCGCCGAGGCCGAAGCCGGGCTGTGGCGCTTGCTCGAACAACTGAAGACCACCGCCCCCACCGCCGAGGAACTGGAGCGCGTCCGCGCCCAGGTGATCGCCGGCCTGGTGTATGAGCGCGACTCCATCACCAGCCAGGCCACCGCCATCGGCCAGCTGGAAACGGTCGGCCTGTCCTGGAAGCTGATGGACACCGAGCTGGCCGAACTGCAAAGCGTGACCCCGCAGGATATCCAGAAGGCAGCCCAGTTGTATTTCACCCGCTCGCGCCTGAGCGTCGCGCACATCCTGCCCGAGGAGAAAGCTCATGAGTGAMNALARRAAGLLLSTVCLPFSALAADPQPTHEFTLDNGLKVVVREDHRAPVVVSQVWYKVGSSYETPGQTGLSHALEHMMFKGSEKVGPGEASLILRDLGAEENAFTSDDFTAYYQVLARDRLGVAFELEADRMASLRLPPEEFSREIEVIKEERRMRTDDKPMSKAYERFKAMAYPASGYHTPTIGWMADLDRMKVEELRHWYESWYAPNNATLVVVGDVTPDEVKTLAQRYFGPIARRAVPAAKIPLELAEPGERKITLHVQTQLPSVMLAFNVPSIATATDKVPVNALRLISALLDGGYSGRIPAQLERGEELVSGGSSNYDAYTRGDTLFTLSATPNTQKNKTLAEAEAGLWRLLEQLKTTAPTAEELERVRAQVIAGLVYERDSITSQATAIGQLETVGLSWKLMDTELAELQSVTPQDIQKAAQLYFTRSRLSVAHILPEEKAHEPGPT0001280_4172DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-GLUCONIC_ACID-PQQ_PATHWAY,PGPT0001280-pqqL|yddC-K07263NANA
D1-35_036531434ftsYCOG0552Signal recognition particle receptor FtsYATGTTTGGTTCCAACGACGACAAGAAGACCCCAGCTGCGGCTGGCGAGAAAAAAGGCCTGTTCGGATGGCTGCGCAAGAAGCCGCAGGAAACCGTCGTCGAGCAGCCGCAACTGCCGCCAGAGCCGGCCGCCGAGACTGTGGCCGAGACCGCGGTAGAAGAGACTGCGCCGATCGTCCTGCCGATTGCCGAACCGGTGCTGCAGCCGGTCGAGCCTGAGGTTACCGCCGAGCCGGTTGCCGAGCAGCCACTGACCCCGCCCGCCGGGCAAACTCCCTGGCTGACCTTGCCTGTGGCCGAAGAACCGGTCGGGCTGGTCGACGATGAGCAGGCTGCGCATGTCACCCCACCGATTCCGGCATCGACGCAACCGGTCGAGGCGCCCATTGCCGAGACACCGGTTGTCGCTGCGCCTGCCACCCCCGAGCCCGCCCCTGAGCCCGAGGCTGTAACAGCTGAGGTTCCGGCTCTGGTCGAGCCGCCGCGCAGCGCCGAAGAAAACAAAGTCGGCTTCTTCGCCCGCCTCAAGCAGGGCCTGTCCAAGACCAGCGCCAGCATTGGCGAAGGCATGGCCAGCCTGTTCCTCGGCAAGAAGGTCATCGATGACGAATTGCTCGAAGACATCGAGACCCGCCTGCTGACCGCAGATGTCGGCGTCGAGGCCACTTCCGTCATCATCCAGAGCCTGACCCAGAAGGTCGCCCGCAAGCAGCTCACCGATGCCGACGCGTTGTACAAATCCCTGCAAGGCGAACTGACCAGCCTGCTCAAACCGGTGGAAAAGCCGCTGGTGATTGCTTCGCAGAACAAGCCGTTCGTGATCCTGGTCGTCGGCGTCAACGGCGCCGGCAAGACCACCACCATCGGCAAACTGGCGAAGAAGCTTCAGCTCGAAGGCAAAAAAGTCATGCTCGCCGCTGGCGACACCTTCCGCGCCGCCGCGGTAGAACAGTTGCAGGTGTGGGGTGAGCGCAACAAGATCCCGGTCATTGCCCAGCACACGGGTGCGGACTCCGCCTCGGTGATTTTCGACGCCGTGCAGGCCGCCAAGGCCCGTGGCATCGACGTGTTGATCGCCGACACGGCCGGTCGCCTGCACACCAAAGACAACCTGATGGAAGAATTGAAGAAGGTCCGCCGGGTCATCGGCAAGCTCGACGCCGAGGCGCCTCACGAGGTGCTGCTGGTGCTGGATGCTGGCACCGGCCAGAACGCCATCAACCAGGCCAAACAGTTCAACCAGACCGTCGAACTGACCGGGCTGGCCCTGACCAAGCTGGACGGCACCGCCAAGGGCGGGGTGATCTTCGCCCTGGCCAAGCAATTCGGCTTGCCGATTCGTTACATCGGCGTGGGCGAAGGCATCGACGACTTGCGCACCTTTGAAGCCGAGCCTTTTGTCCAGGCACTGTTTGCCGAGCGGGAGCATTCATGAMFGSNDDKKTPAAAGEKKGLFGWLRKKPQETVVEQPQLPPEPAAETVAETAVEETAPIVLPIAEPVLQPVEPEVTAEPVAEQPLTPPAGQTPWLTLPVAEEPVGLVDDEQAAHVTPPIPASTQPVEAPIAETPVVAAPATPEPAPEPEAVTAEVPALVEPPRSAEENKVGFFARLKQGLSKTSASIGEGMASLFLGKKVIDDELLEDIETRLLTADVGVEATSVIIQSLTQKVARKQLTDADALYKSLQGELTSLLKPVEKPLVIASQNKPFVILVVGVNGAGKTTTIGKLAKKLQLEGKKVMLAAGDTFRAAAVEQLQVWGERNKIPVIAQHTGADSASVIFDAVQAAKARGIDVLIADTAGRLHTKDNLMEELKKVRRVIGKLDAEAPHEVLLVLDAGTGQNAINQAKQFNQTVELTGLALTKLDGTAKGGVIFALAKQFGLPIRYIGVGEGIDDLRTFEAEPFVQALFAEREHSPGPT0025740_1162DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025740-ftsY-K03110NANA
D1-35_03654672ftsECOG2884Cell division ATP-binding protein FtsEATGATTCGTTTCGAACAGGTCGGTAAACGCTATCCGAACGGTCACGTCGGCCTGCATGAGCTGAGCTTTCGGGTCCGTCGGGGCGAGTTTCTGTTTGTCACCGGCCATTCCGGCGCCGGTAAAAGTACCTTGCTGCGCCTGCTGCTGGCGATGGAACGGCCCACCACCGGCAAGCTGCTGCTGGCCGGCCAGGACCTGAGCACCATCAGCAATGCCCAGATTCCCTACCTGCGACGGCAGATCGGTGTGGTGTTCCAGAACCACCAATTGCTGTTCGATCGCACAGTGTTCAACAACGTGGCGCTGCCGTTGCAGATCCTCGGGCTGTCCAAGGCCGAGATCAACAAGCGCGTGGACTCGGCACTGGAGCGTGTAGCGCTGTCGGACAAGACCGACCTGTATCCGGGCGACCTGTCCACCGGCCAGCAACAGCGTGTCGGTATCGCCCGCGCGATCGTCCACCGCCCGGCCTTGCTGCTGGCGGATGAACCCACCGGTAACCTCGACCCGCGACTGGCGGCGGAAATCATGGGCGTATTCGAAGATATCAACCGTTTGGGCACCAGCGTGCTGATCGCCAGTCACGACCTGGCGCTGATCGCACGTATGCGTCATCGCATGCTCACCTTGCAGCGCGGTCGACTGATCGGCGACGGGGAGGCGGGTGTATGAMIRFEQVGKRYPNGHVGLHELSFRVRRGEFLFVTGHSGAGKSTLLRLLLAMERPTTGKLLLAGQDLSTISNAQIPYLRRQIGVVFQNHQLLFDRTVFNNVALPLQILGLSKAEINKRVDSALERVALSDKTDLYPGDLSTGQQQRVGIARAIVHRPALLLADEPTGNLDPRLAAEIMGVFEDINRLGTSVLIASHDLALIARMRHRMLTLQRGRLIGDGEAGVPGPT0020520_444DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_METHIONINE_TRANSPORT,PGPT0020520-metN-K02071NANA
D1-35_036551023ftsXCOG2177Cell division protein FtsXATGAGCGCAACCCGTAGTCCGAAAGTGGCCGAGCGCGTGGCTCCCAAGGCCTCCGACCCGCAGCCGCAGAAAAAGAAACGCGACGATGACGACGGCCCGGATTTCGCCACGCTGCTGCACGCCTGGATCGAAAGCCATCGCGCCAGCCTGGTCGACAGCCTGCGGCGCCTGGGCAAGCAGCCCATCGGCAGCTTCTTTACCTGCATGGTGATGGCCGTGGCCCTGAGCCTGCCCATGGGCCTGTCATTACTGCTTAATAATGTCGAGCGCCTGGGCGGCTCCTGGCAGCGCGCGGCGCAGATTTCTCTTTATCTGCAACTGGACGCGACACCAGGCGAAGGCCAGGCGTTGCGTGAGCAGATCAAGGCCATGCCGGGCGTAGCCGACGCCGAATACGTCGGGCGCGAGCAGGCGCTCGAAGAGTTCCAGCAGCAGTCCGGCCTGGGCGAGGCCCTCAAGGAACTCCCGGAAAACCCGCTGCCGGGCGTGGTGCTGGTGACTCCGAACGAGGTCGACAAGCCCACCCTTGAAGCATTAAGACAAAGACTTTCGGAACTGCCCAAGGTACAACAGGCCCAACTTGATCTAGTCTGGGTCGAGCGTCTTGCGGCGATACTCAAGCTCGGCGACCGGTTTGTCTTTGGTCTGACGGTGCTTCTGGTTTCTGCATTACTTTTGGTGATAGGCAATACCATTCGTCTTCATATTGAAAACCGCCGCACAGAGATAGAAGTGATTAAACTCGTCGGCGGTACGGACAGTTATGTTCGCAGGCCCTTCCTCTACATGGGGGCGCTGTATGGCTTCGGTGCCGGGATCCTGTCCTGGGGGGTATTGGCGTTCGGCCTGGATTGGCTGAACGATGCGGTAGTGGGATTGGCCGGTTTGTACGGCAGTGATTTTTCACTGGCCGGTGTGCCAGTCGCCGACGGCGTGTCGCTCTTGCTTGGCGCGGTGCTGTTGGGTTATATCGGTGCATGGATTGCGGTAGCACGCCACCTGCGTGAGCTTGCTCCAAAATAGMSATRSPKVAERVAPKASDPQPQKKKRDDDDGPDFATLLHAWIESHRASLVDSLRRLGKQPIGSFFTCMVMAVALSLPMGLSLLLNNVERLGGSWQRAAQISLYLQLDATPGEGQALREQIKAMPGVADAEYVGREQALEEFQQQSGLGEALKELPENPLPGVVLVTPNEVDKPTLEALRQRLSELPKVQQAQLDLVWVERLAAILKLGDRFVFGLTVLLVSALLLVIGNTIRLHIENRRTEIEVIKLVGGTDSYVRRPFLYMGALYGFGAGILSWGVLAFGLDWLNDAVVGLAGLYGSDFSLAGVPVADGVSLLLGAVLLGYIGAWIAVARHLRELAPKNANANANANA
D1-35_03656855rpoHCOG0568RNA polymerase sigma factor RpoHATGACCACTTCTTTGCAACCTGCTTATGCTCTAGTCCCGGGTGCGAACCTTGAGGCCTATGTGCACACGGTGAACAGCATTCCATTGCTGACGCCCGAGCAGGAGCGTGAACTGGCCGAGAGTCTCTATTATGAGCAGGATCTTGAGGCGGCTCGGCAGATGGTGCTCGCCCACCTGCGTTTTGTCGTACATATCGCCCGCAGCTATTCCGGCTACGGGCTGGCCCAGGCCGACCTGATCCAGGAAGGCAACGTCGGCCTGATGAAGGCGGTCAAGCGGTTCAACCCTGAAATGGGCGTGCGGCTGGTATCGTTCGCCGTGCACTGGATCAAGGCGGAAATCCACGAGTTCATCCTGCGCAACTGGCGCATTGTGAAAGTCGCGACCACCAAGGCCCAGCGCAAGCTGTTCTTCAACCTGCGCAGCCAGAAGAAACGTCTGGCCTGGCTGAACAACGAAGAAGTCAATCGCGTGGCTGAAAGCCTGGGCGTAGAGCCTCGGGAAGTGCGCGAGATGGAAAGCCGCCTGACCGGCCATGACATGGCCTTCGACCCGGCCGCCGAGGCCGACGACGACAGCGCTTTCCAATCGCCGGCCAACTACCTGGAAGACCACCGGTACGACCCGGCGCGTCAACTGGAAGACGCTGATTGGAGCGACAACTCCAACACCAACCTGCACGAAGCGCTGGAAGTGCTGGACGCGCGCAGCCGTGACATTCTTTATCAGCGCTGGCTGGCTGAAGAGAAGGCCACGCTGCACGACCTGGCGCAGAAGTACAACGTGTCGGCCGAGCGAATTCGCCAGCTTGAGAAAAGTGCGATGAACAAGCTCAAGGTGTCGATCGCGGCTTGAMTTSLQPAYALVPGANLEAYVHTVNSIPLLTPEQERELAESLYYEQDLEAARQMVLAHLRFVVHIARSYSGYGLAQADLIQEGNVGLMKAVKRFNPEMGVRLVSFAVHWIKAEIHEFILRNWRIVKVATTKAQRKLFFNLRSQKKRLAWLNNEEVNRVAESLGVEPREVREMESRLTGHDMAFDPAAEADDDSAFQSPANYLEDHRYDPARQLEDADWSDNSNTNLHEALEVLDARSRDILYQRWLAEEKATLHDLAQKYNVSAERIRQLEKSAMNKLKVSIAANANANANANA
D1-35_03657723mtgACOG0744Biosynthetic peptidoglycan transglycosylaseATGCTGCGTACATTGTTTCGACGATTCGTTAAAGCCCTGCTCTGGTTCGCCGTCGGCAGCGTTGCGCTGGTGCTGCTGTTTCGCGTGGTACCGCCACCGTTCACCGCGCTGATGATCGAGCGCAAGGTCGAATCCTGGTTCGGCGGCGAGCCGATCGACCTGCAGCGCGACTGGCAGCCCTGGGACCAGATCTCCAATAACCTTAAAATCGCGGTGATTGCCGGCGAGGATCAGAAGTTTCCCGAGCACTGGGGCTTTGACATCGGCGCGATCCAGGCGGCGTTTGCCCATAACGGGCGCGGCGGCTCGATTCGCGGCGCCAGTACCCTCAGCCAGCAAGTCTCCAAGAACCTGTTTCTGTGGTCGGGCCGCAGCTGGCTGCGCAAAGGGCTGGAGGCGTGGTTCACCGCGCTGATCGAAGTGTTCTGGCCCAAGCAACGGATTCTCGAGGTGTACCTCAACAGTGTCGAGTGGGACGACGGCGTGTTCGGGGCTGAAGCGGCCGCGCGGCATCATTTTCGTGTAAGCGCCGGGGCCTTGTCCCGGCAACAGGCCAGCCTGCTGGCGGCGGTACTGCCCAACCCGCGGGTCTGGAGTGCTAGCCGGCCGAGCCCCTACATATTGCGACGCGCCAGCTGGATCCGGCAGCAGATGAGCCAGTTGGGCGGTGATGGTTATCTGCTGGAGCTTGACCGCGCGCGCCGCGCGCCGTGGGCTCGGTAGMLRTLFRRFVKALLWFAVGSVALVLLFRVVPPPFTALMIERKVESWFGGEPIDLQRDWQPWDQISNNLKIAVIAGEDQKFPEHWGFDIGAIQAAFAHNGRGGSIRGASTLSQQVSKNLFLWSGRSWLRKGLEAWFTALIEVFWPKQRILEVYLNSVEWDDGVFGAEAAARHHFRVSAGALSRQQASLLAAVLPNPRVWSASRPSPYILRRASWIRQQMSQLGGDGYLLELDRARRAPWARPGPT0024110_953DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-N_ACETYLMURAMATE_MODIFICATION,PGPT0024110-mtgA-K03814NANA
D1-35_03658372hypothetical proteinATGTTGCGTAGCTTTCTGATGCTGGCGGCTTTTTTCGGTTTCACCGGCGTAGCGCTGGGAGCATTCGCCGCCCATGGTCTGAAAAGCCGTCTGAGCGCCGATTACCTGGCGATTTTCCACACTGGCGTCACCTACCAACTGGTGCACACCCTGGCGCTGTTCGGCGTCGCATTGCTGGCCACGCACATTCCCGGGCGTATCGTCACCTGGGCCGGTATTTCCTTTGTCATCGGTATCCTGTTGTTCTCTGGCAGCCTGTATCTGTTGACGCTTACGGGCATCAGCAAGCTGGGCATCATCACGCCGTTCGGTGGTGTGGCGTTTCTGCTGGGTTGGCTTTTCCTCGGTCTTGCCGCCTGGCGTCTGGCCTGAMLRSFLMLAAFFGFTGVALGAFAAHGLKSRLSADYLAIFHTGVTYQLVHTLALFGVALLATHIPGRIVTWAGISFVIGILLFSGSLYLLTLTGISKLGIITPFGGVAFLLGWLFLGLAAWRLANANANANANA
D1-35_036591983hypothetical proteinGTGCCCAGCGTCCATACAATGCCAAACATCCCCGCTATCGATGGCCTGCGCGCCGTCGCTGTCCTGAGCGTGATCATTTTCCATGCCGATTTCCTGAAACTGCCCGGAGGTTTCACCGGGGTCGACATGTTCTTCGTCATCTCGGGCTACGTCATCAGCCAATCGTTATACACCCGCTCCGACATGAGCTTTTCGGCTTACCTGGCGGACTTCTACCGGCGACGCTTCCTGCGCATCGTCCCGGCCCTGCTGGTGGTTCTGGTGGCGTGCGCCCTGGTCTCGGCGATGTTCGTACCCCAGGCCTGGCTCAGTGCGCAGAATGATCAAACCGGACTGGCGGCCTACTTCGGCCTGAGCAACTTCACGCTGGCGTGGAACACCGACACCTACTTCTCGCCGGCCGCCCAGCTCAATCCCTATACCCACACCTGGACGCTGGCCGTCGAAGAGCAGTTCTACCTGGTTTTTCCCCTGGTCTACTTCGTCTGGCTGCGTTTTCGCCAACGACACAGTCTCGCCTGGGCCTTGCTGCCCTTGCTCGCGCTGGCCTCGCTGGCATTCAGCGTGGTGCAGACAGAGCAAAGCCCTCTCGAAGCGTTTTACCTGTTACCCAGCCGATTCTGGGAACTGGCATCCGGGGCGGTCCTCTTTCAACTGGTGGCCACAGGACGCTTGCAACTGACCTCTGCGGCGACGCCTGCCGTGCTGTTCGCTGGGCTCGCCCTGGTGTCAGGCGGGTTGATTTTCGCCGACGCGAAACACTTTCCGTTTCCCTGGGCCGTGCTGACCGTCGCTGGCACCCTGCTGGCCCTGGCGGCCGTAGTACAGAAAACCAATACCCCCTCGCTGCTGCGTCTTTTGCAATCGAAACCCGCGACCTATGTCGGTCGGTTGTCCTACTCGCTTTACCTTTGGCATTGGCCGGTGCTGGTGTTCCTGCGCTGGACCATTGGCCTTGAGCAACTCGCCATACAGCTGGCCTATCCAGTAATCGTCGCGGCACTCGCTGCCGCCTCCTATCACTGGGTCGAGACACCGCTGCGCACCGGCCGGTCGCTTTTTCAACGCCGCGCCTGGATCACCATTGCCTCATGCCTGGCGGCGCTCGGCCTGTCCTGGTCAGGTGCTCGCTGGATGAGTGAAAATCCTGAGGTACTGTCGCTGAGCCAGACCAGCGACACCTATACCTGGTTTTCCAGGAAATTACCGCAAGGACCGGCCAGCGAGCCGATCAGCGACCCATCGCTGCAAGGCCGCCAACTGTTCGTGTTCGGCGATTCGCACGCGGCGGCATACCGCACCCTGCTGAGCCTCGTCTCGCGACAGCTGGGTATCAGCGTTGTGGAATACGAGCGCGGCGGCTGCGCGGTGGTCAGCCTCATGGCACCCGACCCACAAGGCGCCTGCACCCGAGCCAGGAATGAAGCCCTGCGTGACATCGAAGCGCGGGCAAAACCCGGCGATATCGTTTTCCTCGCCTCCCTGCGGATGCCGGAACTGGCAGGGCGCGACTGGGTACGTGGCGATGAAAGCGTGCTAAGCGAGGCCCTCGCCGAACTGTCCCCAGAGCAGGTCGACGGAGCCCGCCGCAGCGCAGAAGCAACGCTGAAGCGGCTGATGAATGCCGAGGTGCGGGTACTGATCGATGCCCCCATGCCGCTGTTCAAGTCGCCAGCCTACCGCTGCTCGGACTGGTTCAACCGGATGAATCCGATCTGCGCGCCTGGTTTCACCGTCGAGCGGGATCAGATCGAGCAGCTGCGAGCGCCACAAATGGCTTTGCTGAAGCATTTAACCCTTGAGTATCCGCTGCTTCGCGTCTGGGATCCGCTGCCGCTGCTGTGCCCAGGCTCCACTTGCTCGGCTTACGACGACGGTCAACCACTTTTCCGCGACGGCGATCACCTTAGCGGATACGGTAACCGCCTCCTCGCGCCATCGTTCATCCAGGTCCTGCTCAATGGCTGGAGGCGCGCGACGTGAMPSVHTMPNIPAIDGLRAVAVLSVIIFHADFLKLPGGFTGVDMFFVISGYVISQSLYTRSDMSFSAYLADFYRRRFLRIVPALLVVLVACALVSAMFVPQAWLSAQNDQTGLAAYFGLSNFTLAWNTDTYFSPAAQLNPYTHTWTLAVEEQFYLVFPLVYFVWLRFRQRHSLAWALLPLLALASLAFSVVQTEQSPLEAFYLLPSRFWELASGAVLFQLVATGRLQLTSAATPAVLFAGLALVSGGLIFADAKHFPFPWAVLTVAGTLLALAAVVQKTNTPSLLRLLQSKPATYVGRLSYSLYLWHWPVLVFLRWTIGLEQLAIQLAYPVIVAALAAASYHWVETPLRTGRSLFQRRAWITIASCLAALGLSWSGARWMSENPEVLSLSQTSDTYTWFSRKLPQGPASEPISDPSLQGRQLFVFGDSHAAAYRTLLSLVSRQLGISVVEYERGGCAVVSLMAPDPQGACTRARNEALRDIEARAKPGDIVFLASLRMPELAGRDWVRGDESVLSEALAELSPEQVDGARRSAEATLKRLMNAEVRVLIDAPMPLFKSPAYRCSDWFNRMNPICAPGFTVERDQIEQLRAPQMALLKHLTLEYPLLRVWDPLPLLCPGSTCSAYDDGQPLFRDGDHLSGYGNRLLAPSFIQVLLNGWRRATNANANANANA
D1-35_03660201hypothetical proteinATGCGCATTCAGTTGAACGGCGAACCCCTTGAACTGCCCGACGGCGAAACCGTCGCGGCCCTGCTGACCCGTCTGGAACTCACCGGACGCCGCGTCGCGGTGGAGCTCAACCTGGATATCGTCCCGCGCAGCCAGCACGCCGACACCATGTTGAACGACGGCGACAGTGTCGAAGTGGTCCACGCCATCGGCGGCGGTTAGMRIQLNGEPLELPDGETVAALLTRLELTGRRVAVELNLDIVPRSQHADTMLNDGDSVEVVHAIGGGPGPT0008970_498DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008970-thiS-K03154NANA
D1-35_03661795thiGCOG2022Thiazole synthaseATGAGCATCGTTCGTAGCGACAAGCCCTTCGTCCTGGCCGGTCGTACTTACCAGTCGCGTCTGCTGGTAGGCACCGGCAAGTACCGCGACATGGAAGAGACCCGCCAGGCCATTGAAGCTTCGGGTGCCGAGATTGTGACCGTCGCCGTGCGTCGGACCAACATTGGCCAGAATCCGGGCGAACCGAACCTGCTGGATATCCTGCCGCCGGATCGCTACACCATCCTGCCGAACACCGCCGGTTGCTTCGACGCCATCGAGGCTGTGCGCACCTGCCGCCTGGCCCGTGAGCTGCTCGACGGTCACAACCTGGTGAAGCTGGAAGTGCTGGCGGACCAGAAAACCCTGTTCCCCAACGTGATCGAAACCCTCAAGGCCGCAGAAACCCTGGTCAAGGAAGGTTTCGACGTGATGGTCTACACCAGCGATGACCCGATCATAGCTCGTCAGCTGGCGGAAATCGGCTGCATCGCGGTCATGCCGCTGGCCGGGCTGATCGGCACGGGCCTGGGGATCTGCAACCCGTACAACCTGCAGATCATCCTTGAAGAAGCGAAGATCCCGGTGCTGGTGGATGCCGGTGTCGGCACCGCCTCCGATGCCACCATCGCCATGGAACTGGGTTGTGAAGCGGTGCTGATGAACTCCGCCATCGCCCACGCCCAGCAGCCGGTCCTGATGGCCGAAGCCATGAAACACGCCATCGTTGCCGGTCGCCTGGCCTACCTGGCCGGGCGCATGCCGAAAAAACTCTATGCCAGCGCATCCTCGCCGCTGGATGGTCTGATCAAGTAAMSIVRSDKPFVLAGRTYQSRLLVGTGKYRDMEETRQAIEASGAEIVTVAVRRTNIGQNPGEPNLLDILPPDRYTILPNTAGCFDAIEAVRTCRLARELLDGHNLVKLEVLADQKTLFPNVIETLKAAETLVKEGFDVMVYTSDDPIIARQLAEIGCIAVMPLAGLIGTGLGICNPYNLQIILEEAKIPVLVDAGVGTASDATIAMELGCEAVLMNSAIAHAQQPVLMAEAMKHAIVAGRLAYLAGRMPKKLYASASSPLDGLIKPGPT0008965_1029DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008965-thiG-K03149NANA
D1-35_03662726trmBCOG0220tRNA (guanine-N(7)-)-methyltransferaseATGACTGAATCGAACGACACGCCGGTCCTCCCGGAAGAAGGCGAAGAGCGCCAGCACCGCCGCATCAAGAGTTTCGTGATGCGCGCCGGGCGCATGACTGAAGGCCAGCAACGCGGCCTGGAGCAGGGTGCGCCGTTGTATGTTCTGCCGCTGGCCGACGCGCCGGTGGACTTCGACCAGGTGTTCGGCCGCTCGGCGCCACGCTCGCTGGAAATCGGCTTCGGCATGGGCCATTCGCTGCTGGAAATGGCCGCGGCCGCGCCGGACCAGGATTTCATCGGCGTGGAAGTGCACCGTCCGGGTGTCGGTGCGTTGCTCAACGGCGTACTGACTCAAGGTCTGACCAACCTGCGGGTCTACGATTGCGACGCCATCGAAGTGCTCAACCGCTGCGTGGCCGACAACAGTCTCGACCGGCTGATGCTGTTTTTCCCGGACCCGTGGCACAAGAGTCGCCACCACAAGCGCCGGATCGTCCAGGCATCGTTCGCTGAACTGGTGCGCAGCAAGTTGAAGGTCGGCGGTGTGCTGCACATGGCCACCGACTGGGAGCCGTACGCCGAATACATGCTGGAAGTGATGAGCGTCGCGCCGGGCTACCGCAACCTGGCCGAAGATGGCCGCTACGTCCCGCGTCCGGCGGAACGGCCGATTACCAAGTTCGAACGCCGTGGCGAACGGCTCGGGCATGGGGTCTGGGATTTGAAGTTCGAGAAGTTGGCGTAAMTESNDTPVLPEEGEERQHRRIKSFVMRAGRMTEGQQRGLEQGAPLYVLPLADAPVDFDQVFGRSAPRSLEIGFGMGHSLLEMAAAAPDQDFIGVEVHRPGVGALLNGVLTQGLTNLRVYDCDAIEVLNRCVADNSLDRLMLFFPDPWHKSRHHKRRIVQASFAELVRSKLKVGGVLHMATDWEPYAEYMLEVMSVAPGYRNLAEDGRYVPRPAERPITKFERRGERLGHGVWDLKFEKLANANANANANA
D1-35_03663324hypothetical proteinATGGATCTGGTACTCGACCTGCTCGCCACCGTGTCCCGCTGGAGCCGCAGCAACCTGTCGGAAATCTCCCTGGCACTGGTAGGCTGCCTGCTGGTGTTGTTTGGCGCTGACATCAAGGGCTGGGTCGAACAACGCCTGGGCAGCATCGCCGGCGCCTTGCGCGTCCCGCTGATCGCCCTGCTGTGCATGATCGGCAGCGGCGCCGCGCTGATCTACGCCACGCCGTGGATCGTCCGGGGCTTGAGCCAGTTCAACAACTACAGCCTCGCGCCGGTGTTGCTGGTGGTTTTGGTGCTGATCGGCGTCGTGGCGGATCGGCGCTGAMDLVLDLLATVSRWSRSNLSEISLALVGCLLVLFGADIKGWVEQRLGSIAGALRVPLIALLCMIGSGAALIYATPWIVRGLSQFNNYSLAPVLLVVLVLIGVVADRRNANANANANA
D1-35_036641200hemWCOG0635Heme chaperone HemWATGATCGACGACGCTCCCGCACCGCTGATTCATGGCGGTGTACAAACACCCCGGGCGCCGCTACCGGAGCTGCCGCCCCTGGCGCTGTATATCCACATCCCGTGGTGCGTGCGCAAATGCCCGTATTGCGATTTCAACTCCCACACCGCCAGCCCGCAGTTGCCGGAAGAGGAGTATGTCGACGCTCTGCTGGCCGACCTCGACCAGGATCTGCACGCGGTTCATGGTCGGCCGTTGAGCTCGATCTTTTTTGGTGGCGGTACCCCGAGCTTGTTCAGCGCCCGGGCCCTGGGCCGATTGCTCAAGGGTGTCGAGGCGCGGATAGCGTTCGCCCACGACATTGAAATCACCCTGGAAGCCAACCCCGGCACGTTCGAGCAGGAAAAATTCATCGCCTACCGAGCGTTGGGCATCAATCGCCTGTCCATCGGTATCCAGAGCTTCCAACAGGCCAAGCTTGAGGCCCTGGGGCGGATCCATAACGGTGACGAGGCGGTGCGCGCCGCCGGTATGGCTCGCCAGGCCGGCTTCGACAACTTCAACCTGGACCTGATGCATGGGCTGCCCGACCAGTCTCTCGACGACGCTTTGAGCGACCTGCGCCAGGCCATCGCCTTGAAGCCAACCCACCTGTCCTGGTACCAACTGACGCTGGAGCCGAACACGGTGTTCTGGAACCAGCCGCCGACCTTGCCGGAAGACGATACGCTGTGGGACATCCAGGAAGCCGGGCAAGCGCTGCTCGCCGAGCATGGCTACGCCCAGTACGAAGTCTCGGCCTATGCCCTGCCCGGCCGGGCGGCGCGACATAATCTCAATTATTGGAGCTTCGGCGACTTCATCGGTATCGGTGCCGGTGCCCACGGCAAGCTCAGCCATCCGGACGGACGCATAGTACGCACCTGGAAGACCCGCTTGCCGAAGGATTACCTCAACCCGGCCAAGCGCTTCCTGGCCGGGGAAAAGAGCCTCGCCAACGAAGAGCTGCCTTTCGAGTTCCTGATGAACGCGCTGCGCCTCACCGAAGGCGTACCGTCGCGGCTGTATCCGCAGCGCACCGGGCTGACCCTGGAAAGCCTGGCCGAAGGCCGGCGCGAAGCCGAACAAAGCGGGTTGTTGCAGGTCGAACCGTCACGTCTGGCGGCGACCGAGCGCGGACAGCTGTTTCTCAACGACCTGCTGCAAAAATTTCTGAGCTGAMIDDAPAPLIHGGVQTPRAPLPELPPLALYIHIPWCVRKCPYCDFNSHTASPQLPEEEYVDALLADLDQDLHAVHGRPLSSIFFGGGTPSLFSARALGRLLKGVEARIAFAHDIEITLEANPGTFEQEKFIAYRALGINRLSIGIQSFQQAKLEALGRIHNGDEAVRAAGMARQAGFDNFNLDLMHGLPDQSLDDALSDLRQAIALKPTHLSWYQLTLEPNTVFWNQPPTLPEDDTLWDIQEAGQALLAEHGYAQYEVSAYALPGRAARHNLNYWSFGDFIGIGAGAHGKLSHPDGRIVRTWKTRLPKDYLNPAKRFLAGEKSLANEELPFEFLMNALRLTEGVPSRLYPQRTGLTLESLAEGRREAEQSGLLQVEPSRLAATERGQLFLNDLLQKFLSPGPT0003200_2983DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003200-hemN|hemZ-K02495NANA
D1-35_03665597rdgBCOG0127dITP/XTP pyrophosphataseATGATGAACCTCACCCAACTCGTGCTGGCCAGCCACAACGCCGGCAAACTCAAGGAACTCCAGGCCATGCTCGGCGGATCGGTGCAACTGCGCTCGATCGGGGAATTCAGCCAGGTCGAGCCGGAAGAAACCGGCCTGTCATTCGTCGAGAATGCCATCCTCAAGGCCCGCAATGCCGCGCGTATTTCCGGGCTGCCGGCGCTGGCCGATGACTCCGGTCTGGCGGTTGATTTCCTCGGCGGCGCACCGGGCATCTACTCGGCCCGTTACGCCGATGGCAAAGGTGATGCGGCAAACAACGCCAAGCTGCTTGAAGCCCTCAAGGATGTGCCCGAGGCCGAACGCGGCGCACAGTTCGTTTGTGTGCTGGCCCTGGTGCGCCACGCCGACGACCCGTTGCCGATCCTCTGCGAAGGCTTGTGGCACGGGCGCATCCTTACCGAGGCCAGCGGCGAGCACGGCTTTGGCTATGACCCATTGTTCTGGGTACCCGAACGCAACTGTTCCAGCGCCGAGCTGGGGCCGGTGGAGAAAAATCAACTGAGCCACCGCGCCCGCGCCATGGCCCTGCTGCGTCAACGCCTGGGCCTGCAATGAMMNLTQLVLASHNAGKLKELQAMLGGSVQLRSIGEFSQVEPEETGLSFVENAILKARNAARISGLPALADDSGLAVDFLGGAPGIYSARYADGKGDAANNAKLLEALKDVPEAERGAQFVCVLALVRHADDPLPILCEGLWHGRILTEASGEHGFGYDPLFWVPERNCSSAELGPVEKNQLSHRARAMALLRQRLGLQPGPT0021590_4205DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021590-rdgB-K02428NANA
D1-35_03666435hypothetical proteinATGAAACGTCTAGCGTTGTTCTTAATCACCACCTGCCTGAGCGTGGGCGCCATGGCTGCCGACGTCATCAAGGCCGAGCGCAAGGAAGTGTTCGGTGACGTGACCGTGCACTACAACACGTTCAATTCCACCTTCCTGACACCCGACATCGCCAAGGCCGCCGAGCTGATCCGCAGCAAGAACCAGGGCGTGATCAATGTCTCGGTGCTCAAGGGTGGCAAGCCACTGATCGCCCAGGTCAGCGGCACGGTGAAGGACCTGACCAGCAAGACAGTCACCCTCACCTTCCGCCAGGTTACCGAACCAGGCGCGATCTATTACATTGCCCAGTATCCAGTGGACCAGCAGGAAACCCGGACTTTCGAGATCAAGGTGCAGACCGGCGACAAGATCAACACCATCAACTTCAACCAGGAACTGTTCCCGGGCCAATGAMKRLALFLITTCLSVGAMAADVIKAERKEVFGDVTVHYNTFNSTFLTPDIAKAAELIRSKNQGVINVSVLKGGKPLIAQVSGTVKDLTSKTVTLTFRQVTEPGAIYYIAQYPVDQQETRTFEIKVQTGDKINTINFNQELFPGQNANANANANA
D1-35_03667621metXACOG0500Bifunctional methionine biosynthesis protein MetXA/MetWATGAGAGCCGATCTGGACATCATCCAGGAATGGATCCCCGCCGGCAGCCGCGTGCTCGACCTGGGCTGCGGCAACGGCGAACTGCTGACCTGGCTGCGCGACAACAAACAAGTCACCGGCTACGGGCTGGAAAACGACCCGGACAACATCGCCGAGTGCGTGGCCAAGGGCATCAATGTCATCGAGCAGGACCTGGACAAGGGCCTGGGCAACTTCGCCAGCAACAGCTTCGACATCGTGGTCATGACCCAGGCCCTGCAAGCCGTGCATTACCCGGACAAGATTCTCGACGAAATGCTCCGTGTCGGCCGCCAGTGCATCATCACCTTCCCCAATTTCGGCCATTGGCGCTGCCGCTGGTACCTGGCGAGCAAGGGGCGGATGCCGGTCTCGGAATTCCTGCCGTACACCTGGTACAACACGCCGAACATCCATTTCTGCACCTTCGAGGATTTCGAAGAACTGTGCCGCGAACGCAAGGCCAAGGTCATCGATCGCCTGGCGGTGGACCAGCAGCACCGCCACGGGTGGGCCAGCAAGCTATGGCCTAATCTCTTAGGTGAAATAGGCATCTATCGGGTCAGCAGCCCGGGCCTCGCCGACCACAAGGTCGCGGTATAAMRADLDIIQEWIPAGSRVLDLGCGNGELLTWLRDNKQVTGYGLENDPDNIAECVAKGINVIEQDLDKGLGNFASNSFDIVVMTQALQAVHYPDKILDEMLRVGRQCIITFPNFGHWRCRWYLASKGRMPVSEFLPYTWYNTPNIHFCTFEDFEELCRERKAKVIDRLAVDQQHRHGWASKLWPNLLGEIGIYRVSSPGLADHKVAVNANANANANA
D1-35_036681140metXSCOG2021Homoserine O-succinyltransferaseATGCCAGCTGCCTTTCCCCCCGATTCCGTTGGTCTGGTGACGCCGCAAATGGCGCATTTCAGCGAGCCCCTGGCCCTGGCCTGCGGTCGTTCGTTGCCAGCCTATGACCTGATCTACGAAACCTATGGCACCCTCAATGCCACGGCGAGCAATGCCGTGCTGATCTGCCACGCCCTGTCGGGGCACCACCACGCCGCCGGCTACCACAGCGTCGACGATCGCAAGCCTGGCTGGTGGGACAGTTGCATCGGCCCCGGCAAGCCCATCGACACGAACAAGTTCTTCGTGGTCAGCCTGAACAACCTCGGTGGTTGCAACGGCTCCACCGGTCCCAGCAGCATCAACCCGGACACCGGTAAGCCGTTCGGCGCCGATTTCCCGGTGCTGACCGTGGAAGACTGGGTCCACAGCCAGGCACGCCTGGCCGACCGCCTCGGTATCGCACAATGGGCGGCGGTGATCGGCGGCAGCCTCGGCGGCATGCAGGCGCTGCAATGGACCATCACCTACCCGGACCGCGTGCGCCACTGCCTGGCGATCGCCTCGGCGCCCAAGCTGTCGGCCCAGAACATCGCGTTCAACGAAGTGGCGCGCCAGGCGATCCTCACCGACCCCGAATTCCACGGCGGTTCGTTCCAGGAGCACGGCGTGATTCCCAAGCGCGGGCTGATGCTGGCGCGGATGGTCGGTCACATCACCTACCTGTCCGACGATTCCATGGGCGAAAAATTCGGCCGTGGGCTCAAGAGCGAGAAGCTCAACTACGATTTCCACAGCGTCGAGTTCCAGGTGGAAAGCTACCTGCGCTACCAGGGCGAGGAGTTTTCCGGGCGCTTCGACGCCAACACCTACCTGCTGATGACCAAGGCTTTAGACTACTTCGATCCGGCGGCGAACTTCGACGATAACCTGGCGAAAACCTTCGCCAACGCCACCGCCAGGTTCTGCGTGATGTCGTTCACCACCGACTGGCGTTTCTCCCCGGCCCGCTCCCGGGAACTGGTGGACGCGCTGATGGCCGCGCGCAAGGACGTCTGCTACCTGGAAATCGACGCGCCCCAGGGCCACGACGCCTTTCTGATTCCGATCCCGCGCTACCTGCAGGCGTTCGGCAACTACATGAACCGTATTACGCTGTGAMPAAFPPDSVGLVTPQMAHFSEPLALACGRSLPAYDLIYETYGTLNATASNAVLICHALSGHHHAAGYHSVDDRKPGWWDSCIGPGKPIDTNKFFVVSLNNLGGCNGSTGPSSINPDTGKPFGADFPVLTVEDWVHSQARLADRLGIAQWAAVIGGSLGGMQALQWTITYPDRVRHCLAIASAPKLSAQNIAFNEVARQAILTDPEFHGGSFQEHGVIPKRGLMLARMVGHITYLSDDSMGEKFGRGLKSEKLNYDFHSVEFQVESYLRYQGEEFSGRFDANTYLLMTKALDYFDPAANFDDNLAKTFANATARFCVMSFTTDWRFSPARSRELVDALMAARKDVCYLEIDAPQGHDAFLIPIPRYLQAFGNYMNRITLNANANANANA
D1-35_03669591hypothetical proteinATGATTGGATTGAACACTGCAGCGGTCTACGTCCTGCAAACCCTCGGCAGCCTGTACCTGCTGATCGTGCTGATGCGCTTCGTGCTGCAACTGGTGCGCGCCAACTTCTACAACCCGCTGTGCCAGTTCGTCGTCAAGGCGACCCAACCGCTGCTCAAGCCCCTGCGCCGGATCATCCCGAGCCTGTTCGGCCTGGACATGTCGTCGCTGGTGCTGGCGATCCTCGTGCAACTGGCGCTGATGGCCCTGACTCTGCTGCTGACCTACGGCACCACCGGCAACCCGCTGCAATTGCTGATCTGGTCGCTCATTGGCGTCGCCGCGCTGTTTTTGAACATCTTCTTCTTTGCCATGATCATCAGTGTGATCCTGTCCTGGGTCGCGCCGGGCAGCCACAACCCGGGCGCCGAGCTGGTGAACCAGATCTGCGAGCCGGCCCTGGCGCCGTTCCGCCGCATCGTGCCGAACCTCGGCGGCCTGGATATCTCGCCGATCCTGGCGTTCATGGTGATCAAGCTGATCGACATGCTGGTGATCAACAACCTGGCGGCGATGACCATGATGCCGGAGATCTTGCGGGTGTTAATCTGAMIGLNTAAVYVLQTLGSLYLLIVLMRFVLQLVRANFYNPLCQFVVKATQPLLKPLRRIIPSLFGLDMSSLVLAILVQLALMALTLLLTYGTTGNPLQLLIWSLIGVAALFLNIFFFAMIISVILSWVAPGSHNPGAELVNQICEPALAPFRRIVPNLGGLDISPILAFMVIKLIDMLVINNLAAMTMMPEILRVLIPGPT0013730_248DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IVa_PILUS_HOMOLOG_PROTEIN,PGPT0013730-yggT|ylmG-K02221NANA
D1-35_03670819proC_2COG0345Pyrroline-5-carboxylate reductaseATGAGTAACACGCGTATTGCCTTCATCGGCGCCGGCAACATGGCCGCCAGCCTGATCGGCGGCCTGCGGGCCAAGGGCCTGGACGCATCCATGATCCGCGCCAGCGATCCGGGTGAAGAGACCCGCAAGCGGGTGAGCGCCGAGCACGGCGTCGAAACCTTCGCCGACAACGCCCAGGCCATCGAGGGTGTGGACGTCATCGTGCTGGCCGTCAAGCCGCAAGCAATGAAGTCCGTGTGCGAGGCACTTCGGCCGCACCTCAAGCCTCATCAATTGGTGGTGTCGATCGCCGCCGGCATTACCTGCGCCAGCATGAATAACTGGCTCGGCGCCCAGCCGATCGTGCGCTGCATGCCCAACACCCCGGCACTGCTGCGCCAGGGCGTCAGCGGCCTGTTCGCCACCGCACAGGTGAGCGCCGAACAACGCCAGCAGGCTGAACAGTTGCTGTCAGCCGTGGGCCTGGCGCTGTGGCTGGACACCGAGCAGCAACTGGACGCGGTCACCGCTGTCTCCGGCTCGGGCCCGGCGTATTTTTTCCTGCTGATCGAAGCCATGACCGCCGCCGGAGAAAAACTCGGTCTGAGCCGCGAGATCGCTGCCCAACTGACCTTGCAGACTGCTCTCGGCGCCGCTCACATGGCGGTGTCCAGCGATGTCGATGCAGCGGAATTGCGTCGCCGCGTGACCTCGCCGGCCGGCACCACCGAAGCGGCCATCAAATCATTCCAGGCCGGGGGCTTCGAAGCCCTGGTGGAAAAAGCACTCGGCGCCGCCGCGCACCGCTCGGCCGAAATGGCCGAACAACTGGGCCAATAAMSNTRIAFIGAGNMAASLIGGLRAKGLDASMIRASDPGEETRKRVSAEHGVETFADNAQAIEGVDVIVLAVKPQAMKSVCEALRPHLKPHQLVVSIAAGITCASMNNWLGAQPIVRCMPNTPALLRQGVSGLFATAQVSAEQRQQAEQLLSAVGLALWLDTEQQLDAVTAVSGSGPAYFFLLIEAMTAAGEKLGLSREIAAQLTLQTALGAAHMAVSSDVDAAELRRRVTSPAGTTEAAIKSFQAGGFEALVEKALGAAAHRSAEMAEQLGQPGPT0014225_2914DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_PROLINE_DEGRADATION,PGPT0014225-proC-K00286NANA
D1-35_03671693yggSCOG0325Pyridoxal phosphate homeostasis proteinATGACCACCATAGCAGACAACATTGCTCAGGTTAGATCGCGCATCCATGCCGCGGAGCAGGCCGCCCAGCGCCCAGGACACAGCGTCCAGCTGCTGGCGGTGAGCAAGACCAAGCCGGCCCAGGCCCTGCGCGAAGCCCATGCCGCAGGCCTGCGGGATTTCGGCGAGAACTACCTGCAGGAAGCGCTGGGCAAGCAGGCCGAACTGACCGACCTGCCCTTGATCTGGCACTTCATCGGCCCCATTCAATCGAACAAGACGCGTGCTATCGCCGAACATTTCGACTGGGTGCACTCCGTGGATCGCCTGAAAATTGCCCAACGCCTGTCCGAGCAGCGCCCGGCCGACCTGCCGCCGCTGAACATCTGCATCCAGGTCAACGTCAGCGGTGAAGCCAGCAAGTCCGGCTGCACGCCAGCGGACCTGCCCGCCCTCGCCAATGCCATCAGCACGCTGCCTCATCTCAAGTTGCGTGGGTTGATGGCGATTCCCGAACCAACCGACGATCGCGCCGAACAGGATGCAGCTTTCGCCAAGGTTCAACAGCTGCAAGCCAGCCTGGACCTGCCGCTGGACACGTTGTCCATGGGCATGAGCCATGACCTTGAATCCGCCATTGCCCAAGGCGCCACCTGGGTGCGCATCGGCACAGCGCTGTTTGGGGCGCGTGACTACGGCCAAGCGCCCATCTGAMTTIADNIAQVRSRIHAAEQAAQRPGHSVQLLAVSKTKPAQALREAHAAGLRDFGENYLQEALGKQAELTDLPLIWHFIGPIQSNKTRAIAEHFDWVHSVDRLKIAQRLSEQRPADLPPLNICIQVNVSGEASKSGCTPADLPALANAISTLPHLKLRGLMAIPEPTDDRAEQDAAFAKVQQLQASLDLPLDTLSMGMSHDLESAIAQGATWVRIGTALFGARDYGQAPINANANANANA
D1-35_036721035pilT_2COG2805Twitching mobility proteinATGGATATCACTGAATTGCTGGCGTTCAGCGCCAAACAGGGGGCGTCGGACCTGCACCTGTCCGCCGGGCTGCCGCCGATGATCCGCGTGGACGGCGATGTACGGCGGATCAACCTGCCGGCGCTGGACCACAAGCAGGTTCATGAACTGATCTACGACATCATGAACGACCGCCAACGAGTGGATTACGAGAAGTTTCTGGAAACCGATTTTTCCTTCGATGTACCCGGCGTGGCGCGATTTCGAGTCAATGCCTTCAACCAGAATCGGGGCGCGGGGGCAGTGTTCCGGACTATTCCCTCAAAAGTCCTGACCATGGAAGACCTGGGGATGGGCGAGGTGTTTCGCAAGATCACCGAGGTTCCTCGCGGGCTGGTGTTGGTAACCGGGCCGACCGGCTCGGGCAAGTCGACCACCCTGGCGGCCATGATCGACTATCTGAACAGCCACAAGCACCATCACATCCTCACCATCGAAGACCCCATCGAATTCGTGCATGAACCGCGCAAGTGTCTGATCAACCAGCGTGAGGTGCATCGCGATACCCAGGGTTTCTCCACGGCGCTGCGTTCGGCCCTGCGGGAGGACCCGGACGTGATCCTGGTGGGGGAGATGCGCGACCTGGAGACCATCCGGCTGGCGCTGACCGCCGCCGAAACCGGGCACTTGGTGTTTGGCACCCTGCACACCACGTCGGCGGCCAAGACCATTGACCGGGTAGTGGACGTGTTTCCTGGCGACGAGAAGTCGATGGTCCGCTCGATGCTGTCGGAGTCGCTTCAGGCGGTGATTTCCCAGACGCTGGTCAAGAAGATTGGCGGCGGCCGCATCGCGGCGCACGAGATCATGCTGGGCACTTCGGCGATCCGCAACCTGATCCGCGAAGACAAGATCGCGCAGATGTATTCATCGATCCAGACCGGCGGCTCGCTGGGGATGCAGACGCTGGACATGTGCCTGAAGGATCTGGTGAGCAAGGGCCTGATCAGCCGCGAGCACGCGCGAGAGCGGGCGCGTACGCCGGATAATTTTTAGMDITELLAFSAKQGASDLHLSAGLPPMIRVDGDVRRINLPALDHKQVHELIYDIMNDRQRVDYEKFLETDFSFDVPGVARFRVNAFNQNRGAGAVFRTIPSKVLTMEDLGMGEVFRKITEVPRGLVLVTGPTGSGKSTTLAAMIDYLNSHKHHHILTIEDPIEFVHEPRKCLINQREVHRDTQGFSTALRSALREDPDVILVGEMRDLETIRLALTAAETGHLVFGTLHTTSAAKTIDRVVDVFPGDEKSMVRSMLSESLQAVISQTLVKKIGGGRIAAHEIMLGTSAIRNLIREDKIAQMYSSIQTGGSLGMQTLDMCLKDLVSKGLISREHARERARTPDNFPGPT0015875_2214DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015875-pilT-K02669NANA
D1-35_03673612hypothetical proteinATGCGTCCATTTTTCAAGACATGGCTGACCATTTGCCTATTATTGCCACTGGCCGCCCACGCCACCAATCGTGAGCAACGTCTTCCGAACATCAACGGCTATACGCCCAAATCCCACGTTTCTGCTCCATCGAGCAAAAACAGGCAAAGCGTCCAGCGTGTAAGTAACGCTCACAGCCGGCTGGTGCCGCCCATGGCGACCAAGACGACCAGCAATGTGCTGAGCCGCGCCGTGAATGTACTGGGCACACCTTACCGTTGGGGCGGCAGCAGCCCAAGTAAAGGTTTCGATTGCAGTGGTCTGGTGAAATACGCGTTCAATGACGCCACGTTCGACCTGCCGCGTACCTCCAATGCGATGGCTGCCGGCCATGGCGAGAAAGTCGAGCGCAAGGACCTCAAGCCCGGCGACCTGATTTTCTTCAAGCTCAAGAGCCGTCGGGTCAACCACGTAGCCATCTACCTGGGCAACGACCGCTTCATCCACGCCCCGCGCCGAGGCAAGTCGGTGACCATCGACACCCTGAACAAGCCGTACTGGAACACCCATTACGTGGTTGCCAAGCGCGTGCTGCCGAAAGAGCCGGGGGCGATGCGCGTGGTTCAGCGCTAAMRPFFKTWLTICLLLPLAAHATNREQRLPNINGYTPKSHVSAPSSKNRQSVQRVSNAHSRLVPPMATKTTSNVLSRAVNVLGTPYRWGGSSPSKGFDCSGLVKYAFNDATFDLPRTSNAMAAGHGEKVERKDLKPGDLIFFKLKSRRVNHVAIYLGNDRFIHAPRRGKSVTIDTLNKPYWNTHYVVAKRVLPKEPGAMRVVQRPGPT0023830_379DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-MUREIN_DD-ENDOPEPTIDASE_ACTIVITY,PGPT0023830-mepH-K19303NANA
D1-35_03674429hypothetical proteinATGAACAGCTATCAACAGGGCGCAATCCGCGATACCCACAGCAAAGTCATCGGGTATCTGTTGTGGATTCTCGGTTTTACCGGCGCTCACCGTTTCTATTACGGCAAGCCGGTCACCGGCACGATCTGGTTCTTCACCTTCGGGCTGCTGGGTATCGGTTGGTTGATCGACCTGTTCCTGATTCCGGCCATGGACCGCGAAGCCGACCTGCGCTTCACCCCGGGGCCGATCGAGTACAGCGTGGCGTGGATTCTGCTGACGTTTCTCGGGGTGCTTGGCGTGCATCGCATGTATCAAGGCAAGTGGCTCAGCGGGATCATCTACCTGCTGACTGGCGGGGTGTTTTTTCTGGGGGTGCTGTATGACTTCTGGACGCTAAACGATCAGGTGTCGATTCGTAATGCGCAGAAGCGTGGGGCTTTCCAGTAAMNSYQQGAIRDTHSKVIGYLLWILGFTGAHRFYYGKPVTGTIWFFTFGLLGIGWLIDLFLIPAMDREADLRFTPGPIEYSVAWILLTFLGVLGVHRMYQGKWLSGIIYLLTGGVFFLGVLYDFWTLNDQVSIRNAQKRGAFQNANANANANA
D1-35_036751272pyrC'COG0044Dihydroorotase-like proteinGTGAAGCTCAGCATTCTCGGCGCACGCGTGATCGATCCGGCCAGCGGCCTGGATCAAGTGACTGACATTCATATCGATGCCTGCAAGATCGTCGCGCTCGGCGCCGCACCGACAGGCTTTGTGGCGGCCGAGGTCCTTGACGCCCAAGGCCTGGTGGCCGCGCCCGGCCTGGTGGACCTGAACGTTGCCCTGCGCGAGCCGGGCTACAGCCGCAAAGGCAGCATCGTCAGCGAAACCCGCGCCGCCGCCGCTGGTGGCGTGACCAGCCTGTGCTGCCCGCCGCAAACCAAGCCGGTGCTGGACACCTCGGCCGTGGCCGAGCTGATCCTCGACCGCGCCCGCGAGGCCGGCAACACCAAGGTCTTCCCGATTGGCGCACTGAGCAAAGGCCTGGAAGGCGAACAACTGGCCGAACTCATCGCCCTGCGTGATGCCGGTTGCGTGGCGTTCGGCAACGGCCTCAACAGTTTCCGCAATACCCGGACCCTGTGCCGCGCCCTCGAATACGCGGCGACTTTCGGCCTGACGGTGATCTTCAACTCCCAGGACCATGACCTGGCCGAAGGTGGCCTGGCCCATGAAGGCCCGACCGCCAGTTTCCTCGGCTTGCCGGGCATCCCGGAAACCGCCGAGACCGTGGCCCTGGCCCGGGACCTGCTGTTGGTCGAGCAGAGCGGTGTACGCGCGCATTTCAGCCAACTGACCAGTGCCCGTGGCGCCGCGCTGATAGCCCAGGCCCAGGCCCGAGGCTTGCCGGTGACCGCCGATGTGGCGCTGTATCAGCTGATCCTGACCGACGAAGCGCTGATCGATTTCAACAGCGTCTATCACGTCCAGCCGCCGCTGCGCACACGCGCCGACCGCGACGGCTTGCGCGAGGCGGTGCAGTCCGGGGTGATCTCGGCCATTTCCAGCCATCACCAACCCCACGAGCGCGATGCCAAGCTGGCACCGTTCGGCGCCACCGAGCCGGGCATCAGCAGCGTTGAACTGCTGCTGCCGCTGGCCTTGACGCTGGTGGAAGACGGTTTGCTGGACCTGCCGACTCTGCTCGCACGCCTGAGCGCCGGCCCGGCCCAGGCGCTGCAGCTGCCAGCCGGGAAACTGGCGGTGGGCGCGCCGGCGGACCTGGTGCTGTTCGACCCGGCCGCCTCCACCGTGGCCGGCGAAGCCTGGCGTTCCAAGGGTGACAACTGCCCATTCCTCGGCCACAGCCTGCCGGGCGTGGTGCGCTACACCTTGATGGATGGGCGGATTACCCACCAGGCCTGAMKLSILGARVIDPASGLDQVTDIHIDACKIVALGAAPTGFVAAEVLDAQGLVAAPGLVDLNVALREPGYSRKGSIVSETRAAAAGGVTSLCCPPQTKPVLDTSAVAELILDRAREAGNTKVFPIGALSKGLEGEQLAELIALRDAGCVAFGNGLNSFRNTRTLCRALEYAATFGLTVIFNSQDHDLAEGGLAHEGPTASFLGLPGIPETAETVALARDLLLVEQSGVRAHFSQLTSARGAALIAQAQARGLPVTADVALYQLILTDEALIDFNSVYHVQPPLRTRADRDGLREAVQSGVISAISSHHQPHERDAKLAPFGATEPGISSVELLLPLALTLVEDGLLDLPTLLARLSAGPAQALQLPAGKLAVGAPADLVLFDPAASTVAGEAWRSKGDNCPFLGHSLPGVVRYTLMDGRITHQAPGPT0021145_4114DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021145-pyrC-K01465NANA
D1-35_036761005pyrBAspartate carbamoyltransferaseATGACGCCTCTCGAAACCAAGCGCCCGCTGCAGCTCAACGATCAGGGCCAGCTGCGGCACTTCCTGTCCCTCGACGGCCTGCGCCGCGAGCTGCTGACAGAAATCCTCGACACCGCCGACTCGTTCCTCGAAGTCGGCGCCCGGGCGGTGAAAAAAGTCCCGTTGCTGCGCGGCAAGACCGTGTGCAACGTGTTCTTCGAAAACTCCACCCGCACCCGCACCACCTTCGAACTGGCGGCCCAGCGGCTGTCGGCGGACGTGATCACCCTGAACGTGTCGACATCCTCGGCGAGCAAGGGCGAAACCCTGCTCGACACGCTGCGCAACCTCGAAGCCATGGCCGCCGACATGTTCGTCGTGCGCCACGGCGACTCCGGCGCGGCGCATTTCATTGCCGAGCACGTGTGCCCGCAAGTGGCGATCATCAACGGTGGCGACGGCCGTCACGCTCATCCGACCCAGGGCATGCTGGACATGTTGACCATCCGTCGGCACAAAGGCAGCTTCGAGAACCTGTCGGTGGCCATCGTCGGCGACATCCTGCACTCGCGGGTGGCCCGCTCGAACATGCTCGCGCTCAAGACCCTCGGCTGTCCGGACATCCGCGTGATCGCGCCGAAAACCCTGCTGCCCATCGGCGTCGAGCAATACGGCGTGAAGGTCTACACCGACATGACCGAAGGCCTGAAGGATGTGGACGTGGTGATCATGCTGCGCCTGCAACGCGAACGCATGACCGGCGGCCTGCTGCCCAGCGAAGGCGAGTTCTACCGCCTGTTCGGCCTGACCACCGCGCGCCTGGCCGGCGCCAAGCCGGACGCCATCGTCATGCACCCGGGGCCGATCAATCGCGGCGTGGAGATCGAGTCGGCGGTGGCCGACGGGCCGCACTCGGTGATCCTCAACCAGGTGACCTACGGCATCGCCATCCGCATGGCCGTGCTGTCCATGGCCATGAGCGGGCAAACGGCCCAGCGCCAATTCGACCAGGAGAACGCCCAGTGAMTPLETKRPLQLNDQGQLRHFLSLDGLRRELLTEILDTADSFLEVGARAVKKVPLLRGKTVCNVFFENSTRTRTTFELAAQRLSADVITLNVSTSSASKGETLLDTLRNLEAMAADMFVVRHGDSGAAHFIAEHVCPQVAIINGGDGRHAHPTQGMLDMLTIRRHKGSFENLSVAIVGDILHSRVARSNMLALKTLGCPDIRVIAPKTLLPIGVEQYGVKVYTDMTEGLKDVDVVIMLRLQRERMTGGLLPSEGEFYRLFGLTTARLAGAKPDAIVMHPGPINRGVEIESAVADGPHSVILNQVTYGIAIRMAVLSMAMSGQTAQRQFDQENAQPGPT0021160_893DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021160-pyrB-K00609NANA
D1-35_03677507pyrRBifunctional protein PyrRATGAGCCTGCCCAATCCTGCCGAACTGATCAGCCAGATGGCGATCCGTCTCACGGCGCACCTGGAACAACGTGGCATCAGCGAACCGCGCTACATCGGCATTCGCACCGGCGGCGTCTGGGTTGCCCAGGCCTTGCTCGATGAACTGGGCAGCGACTCGCCGCTGGGCACCCTGGACGTGTCCTTCTACCGCGACGACTTCAGCCAGAACGGCCTGCACCCGCAAGTGCGCCCTTCGGCGCTGCCGTTCGAGATCGAAGGCCAGCACCTGGTGCTGATCGACGACGTGCTGATGAGCGGGCGGACCATCCGCGCTGCCATGAATGAGTTGTTCGACTACGGTCGCCCGGCCAGCGTTACGCTGGTCTGCCTGCTCGACCTGGACGCCGCCGAACTGCCGATCCGCCCTAACGTGGTCGGCGCGACGCTGGCGCTGGCGGCCCATGAACGGGTCAAGCTTTCCGGCCCGGCGCCGCTGCAACTCGAACTGCAAGACCTCGCCCTTTAAMSLPNPAELISQMAIRLTAHLEQRGISEPRYIGIRTGGVWVAQALLDELGSDSPLGTLDVSFYRDDFSQNGLHPQVRPSALPFEIEGQHLVLIDDVLMSGRTIRAAMNELFDYGRPASVTLVCLLDLDAAELPIRPNVVGATLALAAHERVKLSGPAPLQLELQDLALPGPT0021245_2461DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021245-pyrR-K02825NANA
D1-35_03678438yqgFCOG0816Putative pre-16S rRNA nucleaseATGGCCCTGCGCCTGCTGCTGGGCTTTGATTACGGCACCAAACAGATCGGCGTCGCGGTCGGCCAGGTCATTACCGGCCAGGCCCGCGAGCTGTGCACATTAAAAGCGCAGAACGGCGTTCCGGACTGGAACCAGGTCGAAGCGCTGATCAAGGAATGGAAACCCGACGCCGTGGTGGTCGGCCTGCCATTGAACATGGACGGCACGCCCAGCGACATGTGCCTGCGTGCGGAAAAATTCGCTCGCCGGCTCAATGGCCGCTTTAACCTGCCCTTCTATACCCATGACGAGCGCCTGACCACCTTCGAGGCCAAGGGCGAGCGGCTGATGCGCGGCGGGCAGAAAGGCAGTTACCGCGACAATCCGGTGGACGCCATCGCCGCCGCCCTGCTGCTGCAAGGCTGGCTTGATGCCAACGCCGCCCTGTTCGAAACCTGAMALRLLLGFDYGTKQIGVAVGQVITGQARELCTLKAQNGVPDWNQVEALIKEWKPDAVVVGLPLNMDGTPSDMCLRAEKFARRLNGRFNLPFYTHDERLTTFEAKGERLMRGGQKGSYRDNPVDAIAAALLLQGWLDANAALFETNANANANANA
D1-35_03679570hypothetical proteinATGAAAAACGTCAGCCCCACCTACCTCAAGCATCACTTCCTGATTGCCATGCCGCACATGGCCGATCCAAACTTTGCCCATACCTTGACCTACATCGTCGAGCACACGGCCAATGGGGCCATGGGATTGGTGGTAAACCGCCCGCAGGAGCTGAACCTGGCGGATATCCTTGAGCAGCTGCGTCCCGAGGTCGAGCCGCCACTCCTGTGCCAGCATGTGCCGATTTTCATCGGCGGGCCGGTGCAGACCGATCGCGGTTTCGTACTCCATCCGTCGGGTCCCAAATTCCAGGCCACCGTTGATCTGAACGGCGTGTCGCTGTCCACTTCCCAGGACGTGCTGTTTGCCATCGCCGACGGCGTCGGTCCGGAAAAAAGCCTGATCGCCCTGGGCTATGCCGGTTGGGAACCCGGACAGCTGGAAGCCGAGCTGGCCGACAACGCCTGGCTGACGTGCCCGTTCGATGCCGACATCCTGTTCAACACCAGCAGCGAGTTGCGCCTGGAAGCGGCGGCCAGCCGATTGGGCGTGAACCTGGGCCTGCTTACCAGCCAGGCGGGACACGCCTGAMKNVSPTYLKHHFLIAMPHMADPNFAHTLTYIVEHTANGAMGLVVNRPQELNLADILEQLRPEVEPPLLCQHVPIFIGGPVQTDRGFVLHPSGPKFQATVDLNGVSLSTSQDVLFAIADGVGPEKSLIALGYAGWEPGQLEAELADNAWLTCPFDADILFNTSSELRLEAAASRLGVNLGLLTSQAGHAPGPT0026120_1291DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-ALGINATE_METABOLISMCE-EPS-ALGINATE_BIOSYNTHESIS,PGPT0026120-algH-K07735NANA
D1-35_03680936hypothetical proteinATGCCCGGCCTGAAAAAACGTGATGCTGGTTTCCTTGTCATGACACTCCCGTCCGATCTGCCCCAAGAGCTCGCCCATCGTGGCGTGCGCCCGGCTGATCGCCTCGGTTTTACGCTGTTCCTGGCGGCACTGATCCACCTGGCGGTGCTGCTGGGCGTCGGGTTTGCCACGGTCGAACCCAAGCAGATCAGCCAGACCCTGGAGATCACCCTGGCGACCTTCAAGAGCGAAACCAAGCCTCAGAAGGCCGATTTCCTTGCTCAGGAAAACCAGCAGGGCAGCGGCACCCTGGAAAAGAAAGCGATTCCCAAGACGACCGAAATCGCGCCGTTCCAGGACAACAAGGTCCAGAAGATCACCCCACCGCCGGCCGCCAAGCCGGAAGTTCAGGAAGCCGCGCCCAAGGCCGCCGTGACCACTACCGCGCCGAAGCCGAAAAAGGCCCCGGTCAAGGAAGAGGTCAAGCCCGATCCCAAGCCCAAGGCGCCGGAACCGACCTTCGACAGCTCCCAGCTGTCCAGCGACATCGCCAGCCTGGAGGCCGAACTGGCCCAGGAACAGCAGTTGTACGCCAAGCGCCCGCGCATCCACCGCCTGAGCGCCGCGTCGACCATGCGCGACAAGGGCGCCTGGTACAAGGACGAATGGCGCAAGAAGGTCGAGCGTATCGGCAACCTGAACTACCCCGAGGAAGCCCGGCGCAAACAGATCTACGGCAATTTGCGGCTGATGGTTTCGATCAATCGTGACGGCTCGCTGTATGAAGTGCTGGTGCTTGAGTCCTCCGGCCAGCCGCTGCTGGACCAGGCCGCCCAGCGGATCGTGCGCCTGGCCGCGCCGTTCGCGCCGTTCACCGGGGACCTGTCGGACATCGACCGCCTGGAAATCATCCGCACCTGGAAATTTGCCCGGGGTGATCGGCTGTCCAGTAACTGAMPGLKKRDAGFLVMTLPSDLPQELAHRGVRPADRLGFTLFLAALIHLAVLLGVGFATVEPKQISQTLEITLATFKSETKPQKADFLAQENQQGSGTLEKKAIPKTTEIAPFQDNKVQKITPPPAAKPEVQEAAPKAAVTTTAPKPKKAPVKEEVKPDPKPKAPEPTFDSSQLSSDIASLEAELAQEQQLYAKRPRIHRLSAASTMRDKGAWYKDEWRKKVERIGNLNYPEEARRKQIYGNLRLMVSINRDGSLYEVLVLESSGQPLLDQAAQRIVRLAAPFAPFTGDLSDIDRLEIIRTWKFARGDRLSSNPGPT0003745_813DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003745-tonB-K03832NANA
D1-35_03681954gshBCOG0189Glutathione synthetaseATGAGCGTACGCGTCGGCATTGTCATGGACCCAATCGCCAGCATTTCCTATAAGAAGGATAGCTCGCTGGCCATGCTGCTGGCCGCTCAGAAGCGCGGCTGGGAGCTGTTCTACATGGAACAGCGCGACCTTTACCAGGCCGAGGGCCAGGCGCGCGCGCGAATGAAGCCGCTGAAGGTCTTCGCCAACCCTGAGAAGTGGTTCGAACTGGGCGCGGAAAGCGACGCGCTGCTGAGCGACCTGGACGTGATCCTGATGCGCAAGGATCCGCCGTTCGACATGGAGTTCGTTTACTCCACCTACCTGCTGGAGCAGGCCGAAAGCGCCGGTGTGCTGGTGGTCAACAAGCCGCAGAGCCTGCGCGACTGCAACGAGAAGCTGTTCGCCACGCTGTTCCCGCAGTGCACGCCGCCCACCATCGTCAGCCGTCGTCCGGACGTGCTGCGCGAATTCGCCGATCACCACGGCGACGTGATCCTCAAGCCGCTGGACGGCATGGGCGGCTCGTCGATCTTCCGTCACACCGCCGGCCATCCGAACCTGTCGGTGATCCTCGAAACCCTGACCTTGCATGGCAAGCAACAGATCATGATCCAGGGTTACCTGCCGGCCATCGTCGACGGCGACAAGCGCATCCTGATGATCGACGGCGAGCCGGTGGACTATTGCCTGGCGCGCATCCCGGCGGCCGGTGAAACCCGTGGCAACCTGGCGGCTGGCGGCCGTGGCGAAGCCCGCCCGCTGACCGACAAGGACCGCTGGATCGCCGCCCAGGTCGGCCCGACGCTACGCGAGAAAGGCCTGCTGTTCGTCGGCCTGGACGTGATCGGCGAGCACCTGACGGAGATCAACGTCACCAGCCCGACCTGCATCCGCGAGATCGACAATGCCTTTGGCACCGACATCGGCGGGATGCTGATGGATGCCATCGATCAGAAGCTCAAGGCGCGTTGAMSVRVGIVMDPIASISYKKDSSLAMLLAAQKRGWELFYMEQRDLYQAEGQARARMKPLKVFANPEKWFELGAESDALLSDLDVILMRKDPPFDMEFVYSTYLLEQAESAGVLVVNKPQSLRDCNEKLFATLFPQCTPPTIVSRRPDVLREFADHHGDVILKPLDGMGGSSIFRHTAGHPNLSVILETLTLHGKQQIMIQGYLPAIVDGDKRILMIDGEPVDYCLARIPAAGETRGNLAAGGRGEARPLTDKDRWIAAQVGPTLREKGLLFVGLDVIGEHLTEINVTSPTCIREIDNAFGTDIGGMLMDAIDQKLKARPGPT0013040_1058DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-GLUTATHION_METABOLISM,PGPT0013040-gshB-K01920NANA
D1-35_03682429walR_2COG0745Transcriptional regulatory protein WalRATGGCAGAGCATCTCACGCAGCAGCAACCCAGCGCCTTGAAGGTCATGGTCATCGACGACTCGAAGACCATCCGCCGCACCGCCGAGACCTTGCTGCGCAACGTTGGCTGCGAGGTCATCACGGCGGTCGATGGTTTCGACGCCATGGCCAAGATCGTCGACCACCATCCGGGCATTATCTTTGTCGACATCATGATGCCGCGCCTGGACGGTTACCAGACCTGTGCCCTGATCAAGAACAACAGCGCCTTCAAGGCGACGCCGGTGATCATGCTGTCGTCCCGCGACGGTCTGTTCGACAAGGCCAAGGGGCGCATCGTCGGCTCCGATCAGTTTCTGACCAAGCCTTTCAGCAAGGAAGAATTGCTGGGCGCGATACAGGCCCATGTCCCGGGTTTTGCCGCTGTCCAGCCGCACCAGGCACATTAAMAEHLTQQQPSALKVMVIDDSKTIRRTAETLLRNVGCEVITAVDGFDAMAKIVDHHPGIIFVDIMMPRLDGYQTCALIKNNSAFKATPVIMLSSRDGLFDKAKGRIVGSDQFLTKPFSKEELLGAIQAHVPGFAAVQPHQAHPGPT0015835_119DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015835-pilG-K02657NANA
D1-35_03683366pleDResponse regulator PleDATGGCACGAGTTCTGATCGTCGATGATTCGCCGACTGAAATGTACAAATTGACCGGCATGCTGGAAAAGCACGGCCATCAGGTCTTGAAAGCCGAGAATGGCGCCGACGGCGTGGCCCTGGCCCGCCAGGAAAAGCCCGACGCGGTGCTGATGGACATCGTCATGCCCGGCCTCAATGGGTTCCAGGCCACGCGCCAGCTGACCAAGGACCCGGACACGGGGCATATCCCGGTCATCATCATCACCACCAAGGACCAGGAAACCGACAAGGTCTGGGGGACCCGCCAAGGGGCGAAGGACTACCTGACCAAACCGGTGGACGAAGAAACCCTGATCGCGACCTTGAACAAAGTACTGGCGGGTTGAMARVLIVDDSPTEMYKLTGMLEKHGHQVLKAENGADGVALARQEKPDAVLMDIVMPGLNGFQATRQLTKDPDTGHIPVIIITTKDQETDKVWGTRQGAKDYLTKPVDEETLIATLNKVLAGPGPT0015840_238DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015840-pilH-K02658NANA
D1-35_03684540hypothetical proteinATGAGCCACTCCCTGACCGCATTCGAACTGTTGCTTCAGATCGATCGGCGCTGTCGGCTGCTGGGCGCGGACCTGCCGTCCCAGCCAACCCATCGCGACAGTTGGAGCGGGATCGGCTTTCGCCTCGGCGAGCATTGGTACGTGGCGCCCATGGGCGAGGTCAGCGAAGTGCTGCACGAGCCGCGCTACACGTCGTTGCCCGGGGTCAAGCCATGGGTTCGCGGAGTGGCTAACCTGCGCGGACGTTTATTGCCGCTGATGGACCTGTGCGGTTTTTTCGGTCATGAGCTGTCCAGTGTGCGCAAGCAGCGGCGGGTGCTGGTGGTCGATAACGAAGAAGTCTTCGCCGGCTTGCTGGTGGACGAAGTCCTCGGGCTGCAGCATTTCGCCCAGGGCAGCCTGGAACCGGTTTTGCCTGGCTACCTCGATGGCCCGGAATCGGCCTTCGTCCAGGGCCGTTTTCCTGGCGATCGGCAGTGGCAGGTGTTCAGCCCTTTTGCCGTGACGCGTTCGCCAGGGTTCATGAATGTGGCGGTTTAAMSHSLTAFELLLQIDRRCRLLGADLPSQPTHRDSWSGIGFRLGEHWYVAPMGEVSEVLHEPRYTSLPGVKPWVRGVANLRGRLLPLMDLCGFFGHELSSVRKQRRVLVVDNEEVFAGLLVDEVLGLQHFAQGSLEPVLPGYLDGPESAFVQGRFPGDRQWQVFSPFAVTRSPGFMNVAVPGPT0015845_190DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015845-pilI-K02659NANA
D1-35_036852061hypothetical proteinATGATCAAAGCAAAAACAGGCAAGCCTCTGGAAGCGTCGCGCAGTCGGTCGCAGATCATCGTGCTGTTCGTCGCGCTGATTGTCTTCATCATGCTGTTGTTCGCCAACTTCGCGTACCTCAACACCCAGTCCACCTATGACAAACAGTACATCGGCCACGCCGGTGAGCTGCGGGTGCTGTCCCAGCGCATTGCCAAGAACGCCACCGAAGCCGCGGCCGGCAAGGCCGCCGCGTTCAAGTTGCTGAGTGATGCGCGCAACGATTTCGCCCAGCGCTGGGGATACCTGAAGCAGGGTGACCCGGTGACCGGCCTGCCCCCGGCGCCCGCCACCCTGCGCCCGCAGATGCGCGCGGTACAGCTGGACTGGGAGCGCCTGCTGAAGAACACCGATGCGATTCTTTCCAGTGAGCAGACCGTCCTGTCGCTGCACCAGGTGGCGGCAACCCTCGCCGAAACCGTGCCGCAACTGCAGGTCGAATACGAAAAAGTTGTCGAAATCCTCTTGCAGCGAGGCGCCCCGGCCTCACAGGTGGCCATGGCCCAGCGCCAGTCACTGCTGGCCGAGCGTATTCTCGGCGCGGTGAATACCGTATTGGCCGGCGACGAGAACGCCAGCCAGGCTGCCGACACCTTCGGCCGTGACGCCGCGCGTTTTGGCCAGGTGCTCAATGGCATGCTGCAAGGCGACCCGACCTTGAAGATCCCCCAGGTCCAGGATCGTGACGCCCGGGCGCGCCTGACGGAAATCAGCGAGCTGTTCGAATTCGTCTCGGGGTCGGTGGACGAAATCCTCGAGACCTCCCCGGAGCTGTTCAAGGTCCGCGAGTCGGCGGGCAACATCTTCAACCTGTCGCAGACCCTGCTCGACGAAGCCTCTCACCTGGCCACAGCTTTCGAGAACCTGGCCGGCGGTCGTTCCGTCAACAGCATCGGCGGGTATGTGCTGGGCCTGCTGGCACTGATGTCGATCATCCTCATCGGCCTGGTGATGGTGCGTGAAACCAACCGCCAATTGCGCGAAACCGCGGAAAAGAACGAGCGCAACCAGAACGCGATCATGCGCCTGCTGGACGAAATCGAAGACCTGGCCGATGGCGACCTGACCGTTACCGCCTCGGTTACCGAGGACTTCACCGGGACCATCGCCGATTCCATCAACTATTCGGTGGACCAATTGCGCGATCTGGTGGCGACCATCAACCTCACGGCCGGCCAGGTGGCCGCCGCCGTGCAGGAAACCCAGGCCACGGCCATGCACCTGGCCCAGGCGTCGGAACACCAGGCCCAGCAAATTTCCGAAGCTTCGACTTCAATCAATGAAATGGCCCAGTCCATCGACCAGGTATCGGCCAATGCGGCCGAGTCGTCGGCGGTGGCCGAGCGCTCCGTGGAAATCGCCAACAAGGGCAACGAGGTGGTGCACAACACCATTCATGGCATGGACAACATTCGCGAGCAGATCCAGGACACCGCCAAGCGCATCAAGCGCCTCGGTGAGTCGTCACAGGAAATCGGCGACATTGTCAGCCTGATCGATGACATCGCCGACCAGACCAACATCCTTGCGCTCAACGCGGCGATCCAGGCGTCCATGGCGGGCGATGCCGGTCGGGGTTTTGCGGTGGTGGCCGACGAAGTGCAGCGCTTGGCCGAGCGCTCCTCGGCGGCCACCCGGCAGATCGAGACGCTGGTGCGGGCGATCCAGGCCGACACCAACGAAGCGGTGATCTCCATGGAGCAGACCACCACCGAGGTGGTGCGCGGTGCCCGACTGGCCCAGGATGCCGGCGTCGCCCTGGAAGAAATCGAGGGCGTTTCCAAGACCCTGGCGGCGCTGATCCAGAGCATCTCCAACGCGGCGCAGCAACAGACCACCTCGGCGGGACAGATTTCGCTGACCATGAACGTGATCCAGCAGATCACCAGCCAGACCTCGTCCGGCTCAACCGCCACGGCCGAGAGTATCGGCAACCTGGCGAAAATGGCCAGCCAGCTGCGCCGCTCGGTGTCCGGGTTCACCTTGCCCGCGGCACCTGTGGCGGACGAGGATAAGGTGTGAMIKAKTGKPLEASRSRSQIIVLFVALIVFIMLLFANFAYLNTQSTYDKQYIGHAGELRVLSQRIAKNATEAAAGKAAAFKLLSDARNDFAQRWGYLKQGDPVTGLPPAPATLRPQMRAVQLDWERLLKNTDAILSSEQTVLSLHQVAATLAETVPQLQVEYEKVVEILLQRGAPASQVAMAQRQSLLAERILGAVNTVLAGDENASQAADTFGRDAARFGQVLNGMLQGDPTLKIPQVQDRDARARLTEISELFEFVSGSVDEILETSPELFKVRESAGNIFNLSQTLLDEASHLATAFENLAGGRSVNSIGGYVLGLLALMSIILIGLVMVRETNRQLRETAEKNERNQNAIMRLLDEIEDLADGDLTVTASVTEDFTGTIADSINYSVDQLRDLVATINLTAGQVAAAVQETQATAMHLAQASEHQAQQISEASTSINEMAQSIDQVSANAAESSAVAERSVEIANKGNEVVHNTIHGMDNIREQIQDTAKRIKRLGESSQEIGDIVSLIDDIADQTNILALNAAIQASMAGDAGRGFAVVADEVQRLAERSSAATRQIETLVRAIQADTNEAVISMEQTTTEVVRGARLAQDAGVALEEIEGVSKTLAALIQSISNAAQQQTTSAGQISLTMNVIQQITSQTSSGSTATAESIGNLAKMASQLRRSVSGFTLPAAPVADEDKVPGPT0015850_440DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015850-pilJ-K02660NANA
D1-35_036865922rcsC_18Sensor histidine kinase RcsCATGGGTGATCGGCACGACTACGTGGCCCTGGAATGGGTCAAGGGCGAGATTGCCGAAACGCTGAAGCAGGCCCACCTGGCCCTCAATCGCCTGGTGGACGACCCCCAGGCGTCGGATGCGCTTGCCCAATGCCTGGCCTGCATTCACCAGGTCCATGGCGGCCTGCAGATGATCGAATTCTACGGCGCGGCGTTGCTGGCCGAGGAAATGGAGCAACTGTGCAGCGCGCTGCAGGACAACCGCATCGCCCACCGCGAGGAGGCGATCAGCCTGTTGCGCCAGGCCCTGGGCCAGTTGCCGGTCTACCTAGAACGGGTGCAGGGTGCTCGTCGCGACCTGCCGCTGGCGGTGCTGCCCTTGCTCAACGATCTGCGCAGTGCGCGGGGCGAGAGCCTGTTGTCGGAGACCAGCCTGTTCAGCCCGGAACTGCCCGATATCGCGCCGCTGGACGAGGACGCCTTGAAGCGGCTCGCGCCGGCGGACCTGCCGAGCACCTTGCGCAAATTGCGCCAGACCCTGCAGGTGGCCCTGGTGGGCCTGTTGCGCGAGCAGGACGACGCGACTCACCTCGGTTACCTGGCCAAAGTCTTTCAGCGCCTTGAAGCGCTTTGCGCCGCAGCGCCGCTCAATGCGTTGTGGCAGGTCGCTTCGGCGTTGGTCGAAGGCATGCGCGAGGGGCGTATCGCCAACAGCCCGGCGCTGCGTAGCCTGTTCAAGGATGCTGACAAGGAACTCAAGCGCTTGCTGGAGCAAGGCATGCCGGGCATCAACCAAGCGGCCCCGCCACACCTGCTCAAGAGTCTGTTGTTCTATATTGCCAAGGCCGAACATCCCAGCGGGCAGATGCAGATCATGAAAGAACGCTACTCACTGGACGACGCGCTGCCCGACAGCGCTATGGTCGATGAAGAACGCGCGCGCCTGGCCGGGCCCGACCGCGATGCCATGCGCTCGGTGCTGGCAGCGCTCTGCGAGGAGCTGGTGCGGGTCAAGGAACGCCTGGACCTGTTCGTGCGCAGCGACCGCCAGCATGCCTCGGAGCTGGACAGCCTGCTGGCGCCCCTGCGGCAGATTGCCGACACCCTGGCGGTGCTGGGTTTCGGCCAGCCGCGCAAGGTCATCATCGATCAACTGGCCGTCGTACTGAGCCTCGCCCAGGGCCAGCGCGAGCCTGATGACGCGACGCTCATGGACGTTGCCGGAGCCTTGCTGTACGTCGAGGCAACCCTGGCCGGAATGGTCGGCACCGTCGAGCCTGAAAGCCGCGAAGACAATCGCCTGCCGACGACCGACCTGACCCAGATCCATCAGATCGTCATCAAGGAAGCCCATACCTGCCTGCAACAGGCCAAGGACATGATCGTCGACTACATCGACGCACACTGGAACAGCGCCCAGCTTGAGCCATTGCCGGCGCTGCTGACCCAGGTCCGCGGGGCGCTGGCGATGATTCCCCTGAGCCGCGCCGCCCGCCTGGTGGAGGCTTGCAACGATTTCATCCGTGAACACCTGCTGCTCGACCCAGCCCAGCCGGGGTGGGAAGCACTCGATCACCTGGCCGATGTGATTACCGGCCTGGAATATTACCTGGAGCGTTTGAGCGAAGACCCGTTGATGCCCGCCGAGAATCTGCTCGACGGCGTCGAGCGGAGCCTGGGCGCCCTCGGCTACTTTCCCGACGAAGCCCGCGTGCCCTTGCTCGATGACCGGCTGAGCCCGAACGAGGCCCAGGTCATGCAGGATTTGCAGGAACTGGACGACCCACAGACCGTGCAATCCCTCGCTGATGTTCTGGCCAGCCCGGTCTCGGCGGTCAACCCGCCGGCCAAAGGCATGCCCGGTAGCCTGCTGCCGCCGCCCGTGGATGAGCATCCGGTGGACGACGAGCTGCGGGAGGTCTTCCTCGAGGAAACCGACGAGGTGCTCGATGTCCTGCGCGAATACCTGCCGCGCTGGGCTGCGCAGCCCGACGACCAAGGCGCGCTCACTGAGCTGCGCCGGGCCTTCCATACCCTCAAGGGCAGCGGCCGGATGGTTCGGGCACTGGTGCTGGGTGAGTTGGCCTGGGCGGTGGAAAACCTGCTCAACCGCGTGCTGGAGCGCAGCGTCGAGCCGGGCGCTTCGGTTCGGCAATTGCTTGAGGACGCGGTGCGATTGCTGCCGGAACTGGTCGCTGAATTCGCTGCCCAGCGCCAATGCCAGCGCGACGACGTCGACCGTCTGGCTGCTCGCGCCCATGCCTTGGCCAAGGGTGGCGATGAGGAAGATGACGACCAGCAGGACGTGGCCGCTCTCGATCCCTTGCTGCTGAAAATCTTCGATAACGAAGCCCAGGGGCATCTGGCCGCGCTTGATCGATTCCTCGACCAGGCCGCCGAACATCTGCCATTGCAGGCCAGCGACGAGCTGCAAAGGGCCTTGCACACGCTCAAGGGCAGTGCATCGATGGCCGGTGTGCTGCCGATCGCCGAACTGGCCGGGGCGATGGATGAGATGGCCCGGGAATACAAGGCGCACCTGATCGCTTTCGACCTGGAGGAGATCGAGTTGCTGCTGGAGGCTGAAGGGTTGCTGCGCCGCGGTCTGCGCCAGCTGCATAACGAGCCGCTGGCAGCGATTCCCGGCGCCGCGGACCTGATCCAGCGAACCCAGGCACTGTCCGTCGAACGCCTGCAAACGGCTCTCAACACGCCGGACCAGGGCGTGCGAACCAAGCGCGACCCGCAATTGATCAACAATTTTCTCGCCCAGGGCATGGATATCCTGCTGGACGCGGAGAACCTGCTGCGGCGCTGGCAGCAACACTCCGGCGAGGGCCAGGAGCTGAGCGCGCTGCTCGATGAGTTGACCACCCTTGGCGAAGGCGCGCATCTGGCCGACCTGCACCCGGTGGACGAGCTCTGCGAAGCCTTGCTGGACCTGTATGGCGCCGTCGAGGAAAGCAGCCTGGCGGTCAGCGACAGGTTTTTCCATGAGGCGCAGCTTGCTCACGAAGCGTTGATCGACATGCTCGACGAATTGGCTGCCGGCCAGCACGTGCGTGCGCAACCTGCCCGGGTGCAGGCGCTGCGCAGCCTGCTCCAGGAAGGCCTCGACCCGACGGCCACGGGACTGATCCGCAGTGACGGCAGCCGCACGTTGAGCATCCGCGAGCTGGGTCATGCGACGGCTGAGATGGAGCGCAGTTCGCCGGCGGCTGTTTCGGTGGATGACGATATCGCCGCGATCTTTCTCGAAGAGGCCCAGGATATTCTCGAAAGCGCCGCACAGGCCTTGCGGCGCTGGCTCGCCGACCCGGAGAACGGCGCGCCGCTGTCCTCGCTGCAGCGTGACTTGCACACCCTCAAGGGCGGCGCACGCATGGCGGATGTGCGGCCGGTGAGCGACCTGGCCGGGGAGCTCGAAACCCTATACGAAGGGCTGGTGGATCGCCGCTACAGTTACAGCGAGGAGCTGGCGCAACTGCTCAACAGCAGTCACGAACGCCTCGATCTGTTGCTCGGGCAACTGCAGCAAGGCCAACCGCTGGGCGATCCCGTGGCGTTGATTGACGCCATTCATCGTTTCCGCCAGGACAAGCCGAACGCCATCGAGGTGGCGGGGCATCGGCAAAATGACACGGCGGGCCATGATCCGGAGTTGCTGGAAATCTTTCTAGAGGAAGGTTTCGATATCCTCGACAGTTCCGGGGCGGCGTTGCAACGCTGGCAGGAAGAGCCGTCGAACCGTCAGGCGGTGGAAACCCTGCTGCGCGATCTGCACACCCTCAAGGGTGGCGCGCGGATGGTGGAGATCGGGCCCATCGGCGATCTTGCCCACGAACTGGAGAACCTTTACGAAGGGCTGTCGGCGGGCCTGTTACAACCGAGCCCGGCGCTTTTTGCCTTGCTGCAAGGCAGCCATGACCGGCTGGCCCACATGCTCGATGCCGTCCGTGCCGGGCAGCCGTGCCCGCCGGCCGACCGGCTGATCGCGCAGATCCAGGCGGTCAATCATCCGCAGGACAGCGAGGCGCCCCAGATCGTTACGCCGGTCGAGCCGGCACCGGCCCAGGTCGCGCCGCCGATGCGAGCCGAGCCCGCCGCGCCGGGCGATGGCGCGGACATGGTCAAGGTCTCCGCCGAACTGCTCGACGATCTGGTCAACCTGGCCGGGGAAACTTCGATTTTCCGTGGGCGCATCGAGCAACAGGTCAACGATGCGCGCATCGCCCTGAACGAGATGGAAACGACCATCGAGCGCATGCGCGATCAACTGCGACGCCTGGATACCGAAACCCAGGGGCGGATTCTCAGCCGCCAGCAGGTGGACGCCGAACGACTGGGCTACGAAGAATTCGACCCACTGGAAATGGACCGCCATTCCCAGTTGCAACAATTATCCCGAGCGTTGTTCGAGTCCGCCTCGGACCTGCTTGACCTCAAGGAAACGCTAGACCGCAGCAACCACGACGCCGAAAACCTGCTGCAACAGCAGGGGCGCATCAACACCGAGCTCCAGGAAGGCCTGATGCGTACGCGCATGGTGCCGTTCGAGCGCATGCTGCCGCGCCTCAAGCGCATCGTCCGGCAGGTGGCGCAGGAGCTGGGCAAGGACGTCGAGTTCGTGGTCGACAATGCCGAGGGCGAGATGGACCGCAACGTGCTCGAACGCATGGCGGCGCCTTTGGAACATATGTTGCGCAATGCCGTTGATCATGGCCTGGAGCCCGCCGATGTGCGCATCGCAGCCGGCAAACCGGCGCGGGGACGCATCAGCCTGGATCTGTCCCGCGAAGGCGGCGACATCATTTTCGACATCCGTGACGACGGCGCCGGGGTGCCATTGGACGCGGTGCGGCGCAAGGCGATAAAGCGTGGGCTGCTGGCGCCCGACAGCGATATCAGCGACCGCGACGTGCTGCAGTTCATCCTGCAGCCAGGTTTTTCCACGGCGGAAAAAATCACCCAGATCTCCGGGCGCGGCGTTGGCATGGACGTGGTCCACGAAGAAGTGCGACAGCTGGGCGGCAGCATGGTCATCGATTCGACGCCGGGCAAGGGCGTGCATTTTCGTATCCGGCTGCCATTCACCGTGGCGGTCAACCGGGCGCTGATGGTGCAGTGTCACGAAGATCAATACGCCATCCCGCTCAACACCATCGAGAGCATCGTCCGGGTATTGCCCGCCGAACTGGATGGCTATTACCAGCTCGATCCGCCGACCTACACCTACGCCGGGCAACGTTATGAGTTGTGCTACCTGGGCGAGTTGCTGAAAACCGGCGCCCGCCCGAAATTGCTCGGCCAGAGCCAGCCATTACCGGTGCTGCTGGTGCAATGCAACGAACGACACGTCGCCGTGCAGGTAGACGCCACCGCCGGCACCCGGGAAATCGTGGTCAAGAGCCTCGGCCCGCAATTCTCGGCGGTCCAGGGCTTGTCCGGGGCAACGATCCTGGGGGACGGCCGGGTGGTGCTGATTCTCGACCTGCTCGCGCCGATCCGCGCCTTGCCCAACCAGGCGGCGCGCCGTCCGGCCGTGGTGCAAGGCGAGGGCGAGCAGCAGCGGCCTTTGCTGGTGCTGGTGGTGGACGATTCGGTAACAGTGCGCAAGGTCACCAGTCGTCTGCTGGAACGCCACGGCATGCATGTGCTCACCGCCAAGGACGGCGTGGACGCCATGGCATTGCTGGCCGAACATTCGCCGGACCTGATGCTGCTGGACATCGAGATGCCCCGCATGGATGGTTTCGAAGTGGCGACGCAAGTGCGCAACGACCCGCGCCTGGCGCATCTGCCGATCATCATGATCACCTCCCGCACCGGCCAGAAACACCGCGACCGCGCCATGGCCGTCGGCGTCAACGACTACCTGGGCAAGCCGTACCAGGAGTCGGTGCTGCTCGACAGCATCGCCCACTGGAGCAAGACCCATGCATGAMGDRHDYVALEWVKGEIAETLKQAHLALNRLVDDPQASDALAQCLACIHQVHGGLQMIEFYGAALLAEEMEQLCSALQDNRIAHREEAISLLRQALGQLPVYLERVQGARRDLPLAVLPLLNDLRSARGESLLSETSLFSPELPDIAPLDEDALKRLAPADLPSTLRKLRQTLQVALVGLLREQDDATHLGYLAKVFQRLEALCAAAPLNALWQVASALVEGMREGRIANSPALRSLFKDADKELKRLLEQGMPGINQAAPPHLLKSLLFYIAKAEHPSGQMQIMKERYSLDDALPDSAMVDEERARLAGPDRDAMRSVLAALCEELVRVKERLDLFVRSDRQHASELDSLLAPLRQIADTLAVLGFGQPRKVIIDQLAVVLSLAQGQREPDDATLMDVAGALLYVEATLAGMVGTVEPESREDNRLPTTDLTQIHQIVIKEAHTCLQQAKDMIVDYIDAHWNSAQLEPLPALLTQVRGALAMIPLSRAARLVEACNDFIREHLLLDPAQPGWEALDHLADVITGLEYYLERLSEDPLMPAENLLDGVERSLGALGYFPDEARVPLLDDRLSPNEAQVMQDLQELDDPQTVQSLADVLASPVSAVNPPAKGMPGSLLPPPVDEHPVDDELREVFLEETDEVLDVLREYLPRWAAQPDDQGALTELRRAFHTLKGSGRMVRALVLGELAWAVENLLNRVLERSVEPGASVRQLLEDAVRLLPELVAEFAAQRQCQRDDVDRLAARAHALAKGGDEEDDDQQDVAALDPLLLKIFDNEAQGHLAALDRFLDQAAEHLPLQASDELQRALHTLKGSASMAGVLPIAELAGAMDEMAREYKAHLIAFDLEEIELLLEAEGLLRRGLRQLHNEPLAAIPGAADLIQRTQALSVERLQTALNTPDQGVRTKRDPQLINNFLAQGMDILLDAENLLRRWQQHSGEGQELSALLDELTTLGEGAHLADLHPVDELCEALLDLYGAVEESSLAVSDRFFHEAQLAHEALIDMLDELAAGQHVRAQPARVQALRSLLQEGLDPTATGLIRSDGSRTLSIRELGHATAEMERSSPAAVSVDDDIAAIFLEEAQDILESAAQALRRWLADPENGAPLSSLQRDLHTLKGGARMADVRPVSDLAGELETLYEGLVDRRYSYSEELAQLLNSSHERLDLLLGQLQQGQPLGDPVALIDAIHRFRQDKPNAIEVAGHRQNDTAGHDPELLEIFLEEGFDILDSSGAALQRWQEEPSNRQAVETLLRDLHTLKGGARMVEIGPIGDLAHELENLYEGLSAGLLQPSPALFALLQGSHDRLAHMLDAVRAGQPCPPADRLIAQIQAVNHPQDSEAPQIVTPVEPAPAQVAPPMRAEPAAPGDGADMVKVSAELLDDLVNLAGETSIFRGRIEQQVNDARIALNEMETTIERMRDQLRRLDTETQGRILSRQQVDAERLGYEEFDPLEMDRHSQLQQLSRALFESASDLLDLKETLDRSNHDAENLLQQQGRINTELQEGLMRTRMVPFERMLPRLKRIVRQVAQELGKDVEFVVDNAEGEMDRNVLERMAAPLEHMLRNAVDHGLEPADVRIAAGKPARGRISLDLSREGGDIIFDIRDDGAGVPLDAVRRKAIKRGLLAPDSDISDRDVLQFILQPGFSTAEKITQISGRGVGMDVVHEEVRQLGGSMVIDSTPGKGVHFRIRLPFTVAVNRALMVQCHEDQYAIPLNTIESIVRVLPAELDGYYQLDPPTYTYAGQRYELCYLGELLKTGARPKLLGQSQPLPVLLVQCNERHVAVQVDATAGTREIVVKSLGPQFSAVQGLSGATILGDGRVVLILDLLAPIRALPNQAARRPAVVQGEGEQQRPLLVLVVDDSVTVRKVTSRLLERHGMHVLTAKDGVDAMALLAEHSPDLMLLDIEMPRMDGFEVATQVRNDPRLAHLPIIMITSRTGQKHRDRAMAVGVNDYLGKPYQESVLLDSIAHWSKTHAPGPT0015785_292DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-cAMP|VFR_SIGNALLING_PATHWAY,PGPT0015785-chpA-K06596NANA
D1-35_03687474hypothetical proteinATGCATGAGCACCGCACCAGCCATCTCACAGGTTTGTTGCTGCCGCTTGCCGACCGGCATCTGATCCTGCCGAACGTGGCCGTGGCCGAGTTGATCGACTACCAGAGCAGCGTGTTCGATCTGGACACCCCGCCCTGGTTCCTGGGCTGGGTAAGCTGGCGCGAACGGCAGATCCCGCTGCTGAGCTTCGAGTCAGCCTGCGGCCAGAAGACCGTGATCGGCGAGCGCGCTCGCATCGTCGTGCTCAATGCCCTGGGCGGCCGCCCGGAACTGCGTTTCATCGCGCTGCTGGTCCAAGGCATCCCGCGCTCCTGCAAGCTCGACACCCAGTTGAGCTACGTCGACGTGCCGCTGTGCGGATTGGAGCAGGCGGCCGTGCAAGTGGGCGAGCATGTGGCGAAAGTGCCGGATCTGCTGGCGTTGGAAGAGTTGGTGGTTGCGGCGGGGTTGGTAAGAGTTGAGTCAGCCAACTGAMHEHRTSHLTGLLLPLADRHLILPNVAVAELIDYQSSVFDLDTPPWFLGWVSWRERQIPLLSFESACGQKTVIGERARIVVLNALGGRPELRFIALLVQGIPRSCKLDTQLSYVDVPLCGLEQAAVQVGEHVAKVPDLLALEELVVAAGLVRVESANPGPT0015795_148DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-cAMP|VFR_SIGNALLING_PATHWAY,PGPT0015795-chpC-K06598NANA
D1-35_036881671madAAcetyl-S-ACP:malonate ACP transferaseATGACAACAACAATATCCCCCGACTCGCGATGGACGCGGCGGCGCAGCGAAAAGCAGCGGCGCCTGGCGTTGGTGAAGGGGCTTGCCGACGGTGTGGTGCTGCCCACCGACAAGATCGTCGCGGCGCTGGAGGCGTTGATCCTGCCCGGCGACCGTGTGGTGCTGGAGGGCAATAACCAGAAGCAGGCGGACTTCCTGTCCCGCTCTCTGGCGAAAGTCGACCCTTCGAAGCTGCATGACCTGCACATGATCATGCCCAGCGTCGGTCGTTCCGAGCACTTGGACCTGTTCGAACGCGGCATCGCCCGCAAGCTCGATTTCTCGTTCGCCGGCACGCAGAGCCTGCGCATCAGCCAGTTGCTGGAAGACGGCCTGCTGGAAATCGGCGCGATCCACACCTACATCGAGCTCTACGCCCGGCTGGTGGTCGACTTGATTCCCAACGTGGTGCTTTCGGCCGGTTTCATGGCCGACCGCGCCGGTAATATCTATACCGGTCCCAGCACCGAAGACACCCCGGCGCTGATCGAACCGGCGGCGTTCAGCGACGGTATCGTCATTGTTCAGGTCAATCAGTTGGTGGACGACGTCAGCGACCTGCCCCGCGTAGACATTCCAGCATCCTGGGTCGACTTCGTGGTGGTGGCCGACAAGCCGTTCTACATCGAGCCGCTGTTTACCCGCGACCCGCGCCACATCAAGCCCGTGCATGTCTTGATGGCAATGATGGCGATTCGCGGGATCTACGAAAAACACAACGTCCAGTCGCTCAACCACGGCATCGGTTTCAACACCGCCGCCATCGAATTGATCCTGCCGACCTACGGCGAAGCACTTGGACTGAAGGGCAAAATCTGCCGCAACTGGGCGCTCAATCCGCACCCGACGCTGATCCCGGCCATCGAAAGTGGCTGGGTCGAGAGCGTGCATTGCTTCGGCACCGAACTGGGCATGGAAAACTACATCGCCGCCCGGCCTGACGTGTTTTTTACCGGGCACGACGGTTCGCTGCGTTCCAATCGAATGGTTTGCCAACTGGCCGGGCAGTACGCGGTGGACCTGTTCATTGGCGCCACATTGCAGGTGGACGGCGACGGCCATTCCTCCACCGTGACCCGTGGCCGACTGGCCGGTTTCGGCGGCGCGCCGAACATGGGCCACGACCCGCGCGGTCGCCGTCACGGGACGCCGGCCTGGCTCGACATGCGCCACGGCGACGGCGAGGCGCCGCTGCTCGAACGCGGCAAGAAACTGGTGGTGCAGATGGTCGAAACGTTCCAGGAGGGCGGCAAACCGACCTTCGTCGACACCCTCGACGCGGTGGACGTGGCGAAGAAAGCCGGCATGCCCCTGGCGCCGATCATGATCTACGGCGACGACGTTACCCATCTGCTGACCGAAGAAGGCATCGCCTACCTGTACAAGGCCCGCTCCCTGGAAGAACGCCAGGCAATGATCGCCGCCGTGGCCGGGGTCACTGCCATCGGCCTGCGCCATGACCCGAAAGACACCGCGCGCATGCGTCGCGAAGGGCTGATCGCCTTGCCCGAAGACCTCGGAATCCGCCGCACCGACGCCACCCGCGAGTTGCTCGCGGCCAAGAGCGTGGCCGATCTGGTGGAATGGTCCGGTGGCCTCTACAACCCGCCCGCCAAGTTCAGGAGCTGGTAAMTTTISPDSRWTRRRSEKQRRLALVKGLADGVVLPTDKIVAALEALILPGDRVVLEGNNQKQADFLSRSLAKVDPSKLHDLHMIMPSVGRSEHLDLFERGIARKLDFSFAGTQSLRISQLLEDGLLEIGAIHTYIELYARLVVDLIPNVVLSAGFMADRAGNIYTGPSTEDTPALIEPAAFSDGIVIVQVNQLVDDVSDLPRVDIPASWVDFVVVADKPFYIEPLFTRDPRHIKPVHVLMAMMAIRGIYEKHNVQSLNHGIGFNTAAIELILPTYGEALGLKGKICRNWALNPHPTLIPAIESGWVESVHCFGTELGMENYIAARPDVFFTGHDGSLRSNRMVCQLAGQYAVDLFIGATLQVDGDGHSSTVTRGRLAGFGGAPNMGHDPRGRRHGTPAWLDMRHGDGEAPLLERGKKLVVQMVETFQEGGKPTFVDTLDAVDVAKKAGMPLAPIMIYGDDVTHLLTEEGIAYLYKARSLEERQAMIAAVAGVTAIGLRHDPKDTARMRREGLIALPEDLGIRRTDATRELLAAKSVADLVEWSGGLYNPPAKFRSWPGPT0019600_95DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALONATE_UTILIZATION,PGPT0019600-mdcA-K13929NANA
D1-35_03689876citGCOG17672-(5''-triphosphoribosyl)-3'-dephosphocoenzyme-A synthaseATGCGCGCCCTTAATCTGCAACCCAAGACCTTATCCCTGGCTGAGCGTTTGGCCGACCTGGCAGTGGACGCGTTGATCGATGAAGCCGACCTCTCGCCCAAACCGGCCTTGGTGGACCGTCGCGGCAGCGGCGCCCACACCGATCTGCACCTGGGCCTGATGCACGCTTCGGCGTTGTCGTTGTGGCCGGCATTCAAGGAAATGGCCGAGGCCGCGTTCGACTGTGGCGAGATCGGCTTGCCACTGCGTGAAGCCCTGGGGCGCATCGGCCGGGAAGGTGAAGCCGCGATGCTCACCACCACGGGCGGTGTGAATACTCACCGGGGCGCGATCTGGGCTTTGGGCCTGTTGGTCGCTGCGGCGGCGCTGGAACCTGAGTCCAGTGGCGCTGGCGCCGTCACATTGCGTGCCGCCCGCCTGGCCTTGCTCAACGACCGTCATGCGCCTCAACCCTTGAGCCACGGTGCCCAAGTGGCCCAGCGCTACGGCGCCCGCGGTGCCCGGGAGGAAGCGCAACTGGCATTTCCGGCGGTGACAACCCTGGGCCTGCCGCAACTCAAGCGCAGCCGCGCGGCCGGCGTCGGCGAACAGAACGCCCGCCTTGACGCCTTGCTGGCAATCATGACCCGCCTGGCCGACACCTGCGTGCTCTATCGCGCCGGCGAAGCGGGTTTGCAGGCGATGCAACAGGGCGCCAGGGCGGTGCTCGACGCCGGCGGCAGTGCGAGCCTGGGCGGTCGTCGCCAGCTGCACGTGCTGGACCAACAACTGATTGCCTTGAACGCCTCGCCCGGCGGCGCCGCCGACCTGCTCGCCGCCTGCCTGTTTCTCGACCGTATCGAGCGCAGTGATGGCCTCTTTCCAGGAGTGTGCTGAMRALNLQPKTLSLAERLADLAVDALIDEADLSPKPALVDRRGSGAHTDLHLGLMHASALSLWPAFKEMAEAAFDCGEIGLPLREALGRIGREGEAAMLTTTGGVNTHRGAIWALGLLVAAAALEPESSGAGAVTLRAARLALLNDRHAPQPLSHGAQVAQRYGARGAREEAQLAFPAVTTLGLPQLKRSRAAGVGEQNARLDALLAIMTRLADTCVLYRAGEAGLQAMQQGARAVLDAGGSASLGGRRQLHVLDQQLIALNASPGGAADLLAACLFLDRIERSDGLFPGVCPGPT0019605_228DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALONATE_UTILIZATION,PGPT0019605-mdcB-K13930NANA
D1-35_03690300mdcCMalonate decarboxylase acyl carrier proteinATGCAAACCTTATCCTTTGAATTCACCGCCGGGCAGCCGCCACGGGGCCGGGCGCTGGTCGGCTGCGTCGGCTCGGGCGATCTCGAAGTACTGATCGAACCCGGGCTGGCGGGCAAGCTGACCATCCAGGTGCAGACCTCGGTCAATGGCAGCGAGCAACGCTGGCAACACTTGTTCGCGCGCATGTTCGACGGCCAGACGCCTCCCGCGATGGCCATTGAAATCCACGATTTCGGCGCCACCCCCGGCGTGGTGCGTCTGCGCCTTGAACAAGGCTTCGAGGAGATCGGCCATGACTGAMQTLSFEFTAGQPPRGRALVGCVGSGDLEVLIEPGLAGKLTIQVQTSVNGSEQRWQHLFARMFDGQTPPAMAIEIHDFGATPGVVRLRLEQGFEEIGHDPGPT0019610_344DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALONATE_UTILIZATION,PGPT0019610-mdcC-K13931NANA
D1-35_03691852madCMalonyl-S-ACP:biotin-protein carboxyltransferase MADCATGACTGACAGCGCTGCGTTGCTCAACAAGCACAGTTTCGTCGAGCTCGGTGCCCGGCAACGGGCCAAGGCCTTGCTCGATGACGGTACGTTCCGCGAACTGCTCGACCCCTTCCAGCGAATCATGTCGCCGTGGTTGCTGCGTCAGGGCGTGGTCCCGCAAAGCGACGATGGCGTAGTGATCGCCAAGGGCGAGCTCGACGGTTTGCCGGTGGTCATCGCCGCCATTGAAGGCGCGTTCCAGGGCGGCAGCCTCGGTGAAGTCGGCGGGGCAAAGATCGCCGGTGCCCTGGAGCTGGCGGCCGAGGACAATCGCAAAGGCATCCCGACCCGGGCCGTGTTGCTGCTGGAGACCGGCGGCGTGCGTTTACAGGAAGCCAACCTCGGGCTCGCGGCAATTGCCGAGATCCATTCGGCGATTATCGACCTGCGCCAATACCAGCCGGTGGTTGGCGTAGTCGCTGGCAGCGTCGGCTGTTTCGGCGGCATGTCCATCGCCGCCGGGCTGTGCAGTTATTTGCTGGTGACGCAGGAAGCGCGGCTGGGGCTGAACGGTCCGCAGGTGATCGAGCAGGAAGCCGGCATCGATGAGTACGACTCCCGCGACCGTCCGTTCATCTGGAGCCTGACCGGTGGCGAACAACGTTTCGCGACCGGGCTGGTGGACCGCTACGTCGCCGATGACGTGGCGCAGATTCGTCGTCAGGTCAGCGAACTGTTGCATCTGGGTGTGCCCACTGAACACCGCAGTGGCCAAGCCAGACTGTTCCTCCAGCGCCTGTCGCGCCTGGACACCGAGGTGCAAATCGAACCGGCAGCGGTTCGCCAGTTGTTTCAGGGAGAACGTCCATGAMTDSAALLNKHSFVELGARQRAKALLDDGTFRELLDPFQRIMSPWLLRQGVVPQSDDGVVIAKGELDGLPVVIAAIEGAFQGGSLGEVGGAKIAGALELAAEDNRKGIPTRAVLLLETGGVRLQEANLGLAAIAEIHSAIIDLRQYQPVVGVVAGSVGCFGGMSIAAGLCSYLLVTQEARLGLNGPQVIEQEAGIDEYDSRDRPFIWSLTGGEQRFATGLVDRYVADDVAQIRRQVSELLHLGVPTEHRSGQARLFLQRLSRLDTEVQIEPAAVRQLFQGERPPGPT0019615_365DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALONATE_UTILIZATION,PGPT0019615-mdcD-K13932NANA
D1-35_03692804hypothetical proteinATGAATACGTATTCATTGAGGGGCCTGCGCTGGTTCGAGGCCTTGAGCGGTGGCGTCAAACCGTTGGAAGGCTTGCCCGCTTCGCTGAAAGTGGCCGATGTCCAACTCGGCGAACAAACCGCGCGTCTGTTGGCTGTCGTGGCCGATCCCGCCAACCGTTTCCCTCGGGCGCGCAATGGCGAAGTCGGTTTGCTCGAAGGCTGGGGCCTGGCCAAAGCCGTGGACGACGCCATCGCGGCCGATCGCAACGCGGCCAGCAAACGTGTGCTGATCGCCATCGTCGATGTGCCGAGCCAGGCCTACGGTCGGCGTGAAGAAGCGCTGGGCATTCATCAGGCTTTGGCCGGCGCGGCGGACAGTTATGCCCGGGCCCGACTGGCCGGGCATCCAGTGATCGGCTTGCTGGTGGGCAAGGCGATGTCCGGTGCGTTCCTCGCCCACGGCTACCAGGCCAACCGGTTGATCGCCTTGCGCGACCCGGGCGTGATGGTCCATGCGATGGGCAAGGCTTCGGCAGCGCGGGTCACCCTGCGCAGCGTCGAGGAACTCGAAGCCCTGGCCGCCAGCGTGCCGCCGATGGCCTACGACATTGACAGTTTTGCCAGTCTTGGACTGCTCTGGGAGACCTTGTCGGTCGAACAGATCGAGCAGCCGACGGCGGCGGATCTGGCGCGGGTGAGCGACTGCTTGCTCCAGGCGATCAACGACGTGGCGGGCACGCCTCGGGATCTCAGCGGTCGCCTGGGCGCTGTTCACCGGGCGGCGTCCAGCCACGTTCGGCAATTGTTGAGGGCGCAATGGTGAMNTYSLRGLRWFEALSGGVKPLEGLPASLKVADVQLGEQTARLLAVVADPANRFPRARNGEVGLLEGWGLAKAVDDAIAADRNAASKRVLIAIVDVPSQAYGRREEALGIHQALAGAADSYARARLAGHPVIGLLVGKAMSGAFLAHGYQANRLIALRDPGVMVHAMGKASAARVTLRSVEELEALAASVPPMAYDIDSFASLGLLWETLSVEQIEQPTAADLARVSDCLLQAINDVAGTPRDLSGRLGAVHRAASSHVRQLLRAQWPGPT0019620_150DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALONATE_UTILIZATION,PGPT0019620-mdcE-K13933NANA
D1-35_03693624mdcGPhosphoribosyl-dephospho-CoA transferaseATGGTGAGCACGCTCCTGGCCCATGACCTGCTCTGGGGGATGACTGCTTTGCAGTTGCCTGCGGATGCGCCGGGCTGGGCTGTCGAGTCGCTCGACCTCGGGCAACCGGTCGTGGTGCGCCGGGCGCTGTCCTCGCCTGGACACATCGCCGTGGGCTTGCGCGGTCGCTCTCGCGAACAGCGCTACGCCGCATCAATGCCGGTGGCGGCGATCCAGCGTCGGGTGCGCCCGGAGGACCTCTGCCATGTTCAATCCCCGCGCGACCTCCCGGCCTTGCAAGCGCTGGCCGAGTTGCGCCCGCTGCTCGACGCCAGTGGCTGGGCCTGGGGCGTCAGCGGCAGCGCCGGGTTTGAGCTTGCCACGGGCATCGAGGCGCTGCATGAGCGCAGCGACCTGGACTTGATCCTGCGGACGCCGCATCGCCTGGATCGCCGCCAGGCCAGGAACCTGCTGGCGCAGCTGGACGCCTCGGTCTGCGCCGTGGACCTGCAGTTGCAGACGCCCTGCGGCGCCGTCGCCCTGCGCGAGTGGGCGGGTTCGTCGCGTCGGGTCTTGCTCAAGGATGATATCCAGGCACGATTGGTCAGCGATCCATGGCAGCCATCGTGGGAGCAGGTCGCGTGAMVSTLLAHDLLWGMTALQLPADAPGWAVESLDLGQPVVVRRALSSPGHIAVGLRGRSREQRYAASMPVAAIQRRVRPEDLCHVQSPRDLPALQALAELRPLLDASGWAWGVSGSAGFELATGIEALHERSDLDLILRTPHRLDRRQARNLLAQLDASVCAVDLQLQTPCGAVALREWAGSSRRVLLKDDIQARLVSDPWQPSWEQVAPGPT0019625_347DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALONATE_UTILIZATION,PGPT0019625-mdcG-K13934NANA
D1-35_03694921fabD_2COG0331Malonyl CoA-acyl carrier protein transacylaseGTGAGCAGCCTCCTGGTTTTCCCCGGCCAGGGTGCACAGCGCGTGGGCATGCTCCATGGCTTGGCGCCGCAGATTCTGGACGAGGCGAGTGACGTGCTCGGGGAGGATGTCTTGCAGCTCGACACTGCCCAGGCGCTGCGATCGACTCGCGCCGTGCAGCTGTGCCTGTTGATCGCCGGTGTGGCCGCTTCCCGTCGATTGCTGGAACAGGCCCCCGCGCCGGATTACGTGGCGGGACTGTCCATCGGCGCGTACCCGGCGGCGGTCGTGGCCGAGGCGCTGGGGTTTGAGGACGCGTTGCGGCTGGTCAGTCTGCGCGGCGAACTGATGCAGCAGGCGTATCCGCAAGGCTACGGCATGACGGCAATCATCGGCCTGGACCTCGCGGCCGTGGAAACCTTGCTCGCCCAGGTGCACAGCGCAACAACGCCGGTGTACCTGGCCAACATCAACGCCGATAACCAGGTAGTCATCGCCGGCAGTGATGAAGCCATGGGCTACGTCGCCGAACGGGCTCGCAACCAAGGTGCCGGCAAGGCCTGCCGGTTGGCGGTCAGCGTACCGTCCCACTGCCCGCTGCTGGAGGCTCCGGCGCGGACGTTGGCCCAGGCCTTTGCCGAAGTACCCTTGAAAACTCCGGCGCTGGGCTATCTCAGCGGCAGTCGCGCCCGACCGGTGATAAAGGCCGACGCGCTGCGCGACGACCTGGCCTTCAACATGTGCCGCGTCGTCGACTGGCGCGGCACGGTGCAAGGCGCCTACGAGCGTGGCGTGCGTCTGCAGATCGAGTTGCCGCCCGGCGCGGTGTTGACCGGGCTGGCGCGCCGGGTGTTCGAGCAGGGCACCGTCATGGCTTATGACGGCGCGCGGCTCGACACCCTGCAAGCGCTGTTGCAAGAGGAGGGAAGCCGCCGACCCTAGMSSLLVFPGQGAQRVGMLHGLAPQILDEASDVLGEDVLQLDTAQALRSTRAVQLCLLIAGVAASRRLLEQAPAPDYVAGLSIGAYPAAVVAEALGFEDALRLVSLRGELMQQAYPQGYGMTAIIGLDLAAVETLLAQVHSATTPVYLANINADNQVVIAGSDEAMGYVAERARNQGAGKACRLAVSVPSHCPLLEAPARTLAQAFAEVPLKTPALGYLSGSRARPVIKADALRDDLAFNMCRVVDWRGTVQGAYERGVRLQIELPPGAVLTGLARRVFEQGTVMAYDGARLDTLQALLQEEGSRRPPGPT0019630_175DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALONATE_UTILIZATION,PGPT0019630-mdcH-K13935NANA
D1-35_03695393hypothetical proteinATGATTATCTATGGTGTGGCGTTTCTGGCTTTTTGTACCCTGGTGGGCATTTTCATCGGTGAGCTGCTGGGCAAACTGATTGGCGTACCGGCCAACGTTGGCGGCGTCGGCATTGCAATGCTGTTGCTGATCGGCCTGGGCAGCTACCTGAACAAACGCGGCTTGTTCAAGGGCAAGTCCGAAGCTGGCGTGGAGTTCTGGAGCGCCATCTACATTCCGATCGTGGTGGCGATGGCGGCGCAGCAAAACGTCTATGGCGCACTGAAAGGCGGGCCGATGGCGATCCTCGCCGGGACCCTTGCGGTGGTGATTGCCTTTGCGTTGGTGCCGGTGCTGGTACGCATCGGCAACAAAGACCCTCAGGCCGATGTTTCCGTCAAGACGGTCGGGTGAMIIYGVAFLAFCTLVGIFIGELLGKLIGVPANVGGVGIAMLLLIGLGSYLNKRGLFKGKSEAGVEFWSAIYIPIVVAMAAQQNVYGALKGGPMAILAGTLAVVIAFALVPVLVRIGNKDPQADVSVKTVGNANANANANA
D1-35_03696765hypothetical proteinATGTACGAATCCATGATGAAAGTCATCACCGGCTACGGTCTGATCAGCGGGTTTGCCATTGTCGGCATCACCATGTGGGTGTCCTACTGGATCAGCAATACCTTCACCAAAGGCCGCCTGCATGGTTCGGCCATCGCGATCCTGCTGGGGCTGGTGCTCTCGTATATCGGCGGTGCAATGACCGGGGGGCAAAAAGGTGTGGTGGACATTCCACTGCTTTCCGGGATTGGTTTGCTGGGCGGCGCCATGCTGCGGGATTTCGCCATTGTCGCCACGGCGTTCGGCGTGAGTGTCGAGGAGCTCAAGCGCGCCGGTTTCGTCGGGGTGCTGGCGTTGTTCGTTGGAGTCGGCACCTCGTTCATTGCCGGCGTCGGCGTGGCGATGGCCTTCGGTTATACCGATGTGGTGAGCCTGACCACGATCGGTGCCGGAGCGGTCACCTATATCGTCGGGCCGGTGACCGGGGCGGCCATCGGAGCCAGTTCCGAGGTGATGGCATTGTCGATTGCCGCCGGGTTGATCAAGGCGATCCTGGTCATGGTGGCGACGCCGTTCGTGGCGCCATTCATCGGTCTCAACAACCCACGTAGCGCGGTGATCTTTGGTGGGCTGATGGGCACCTCCAGCGGCGTTGCCGGCGGCCTGGCGGCGACGGATCCCAAGCTCGTTCCGTATGGTTGCCTGACGGCGGCGTTCTATACCGCCCTTGGCTGCTTGCTCGGGCCTTCGCTGTTGTTCCTGATCATGCGGGGACTGATGGGGTAGMYESMMKVITGYGLISGFAIVGITMWVSYWISNTFTKGRLHGSAIAILLGLVLSYIGGAMTGGQKGVVDIPLLSGIGLLGGAMLRDFAIVATAFGVSVEELKRAGFVGVLALFVGVGTSFIAGVGVAMAFGYTDVVSLTTIGAGAVTYIVGPVTGAAIGASSEVMALSIAAGLIKAILVMVATPFVAPFIGLNNPRSAVIFGGLMGTSSGVAGGLAATDPKLVPYGCLTAAFYTALGCLLGPSLLFLIMRGLMGNANANANANA
D1-35_03697915gltC_3HTH-type transcriptional regulator GltCATGCTCATCGACGAAGAATTGACCCTGAAGAAACTCGAGGTGTTCCTGGCGTTCATGCGCACCGGCAACCTGGCGCGGGCGGCGGTCGAGTTGCAGACCAGCAATGTCAGCGTGCATCGGGCCATTCACTCGCTGGAGAGCGCGTTGCGCTGTCCGTTGTTCAAGCACGAAGGCCGCAATCTCACGCCGCTGGAAAGCGCCTATGTGCTGGAGGAGCGTGCGCAGAAGCTGATTCAGGACGTGGTCGAAAGCGTACGCCTGACCCGCGAGGCGGCCGGCTTTTCCGCCGAGCGTTTCAAGCTGGGATCCTTGTATTCACTGACCGTCAAGACCGTGCCGCAACTGATCATGGGCCTGAAGATCCGCCGCAGCGAGCTCAACATCGATCTGATCATGGGCTCCAACATCGACCTGTTGTACAAGCTCAAGAACATGGAGGTCGATGCGATCCTGGTGTCGCTGGACGACAGCGTCAACGACCCGGATTGCGAGCAGATCGCGCTGTTTTCCGATGACATTTTCCTCGCCACGCCCGCCGACTCGCCCTTCGCCCAACGCAGCGAAGTCGACTTGGCCGAGGTCCGCGACGAGACCTTCATCACCCTGACCCAGGGCTTCGCCACGCATCAGGACGGTGTACGGGTGTTCAAGCAGGCGGGGTTCGAGCCGAAAGTGGCGATGCAGGTCAACGACATCTTCACCCTGCTGAGCATGGTCAGCTCCGGGGTGGGCTACGCCTTGCTGCCAGGCCGGATTGCGGCGGTGTATGAAAACCGGGTGAAGCTGATCCCGTTGCAGGAAAAGTACCGGTTGCAGCAGCACATCGGCGTGGTGTTCCTCAAGGCCAAGGAGCGCGATCCGAACTTGCTGGCGCTGCTGGCGGAATGCCGGATGTACGCCAATCGCCAGGCTTGAMLIDEELTLKKLEVFLAFMRTGNLARAAVELQTSNVSVHRAIHSLESALRCPLFKHEGRNLTPLESAYVLEERAQKLIQDVVESVRLTREAAGFSAERFKLGSLYSLTVKTVPQLIMGLKIRRSELNIDLIMGSNIDLLYKLKNMEVDAILVSLDDSVNDPDCEQIALFSDDIFLATPADSPFAQRSEVDLAEVRDETFITLTQGFATHQDGVRVFKQAGFEPKVAMQVNDIFTLLSMVSSGVGYALLPGRIAAVYENRVKLIPLQEKYRLQQHIGVVFLKAKERDPNLLALLAECRMYANRQAPGPT0001715_186DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALONATE_UTILIZATION,PGPT0001715-mdcR-K13928NANA
D1-35_03698618hypothetical proteinATGTATCACGGGGAACGGCTCAACGCCTGGACGCACCTGGTGGGCGCGGTCGCCGCGTTTATCGGTGCGGTGTGGCTGCTGGTGATTGCCGGGATGGCCGGCGATCCGTGGAAGATCGTCAGCGTGGCGATCTACGGGTTCACCTTGCTGGTGCTCTACAGCGCATCGACGGTTTATCACAGCGTGCGCGGGCGCAAGAAAGAGATCATGCAGAAGGTCGATCACTTTTCGATCTATCTGCTGATTGCCGGCAGCTACACGCCGTTCTGCCTGGTAACGCTGCGCGGGCCGTGGGGCTGGACGTTGTTCGGGATCGTCTGGGGGCTGGCGGTGATCGGTATCCTGCAGGAAATCAAGCCGCGTTCCGAAGCGCGGATCCTCTCGATCGTCATCTATGCGGTGATGGGCTGGATCGTTCTGGTGGCGGTCAAACCGCTACTGGCGGCGCTGGGCAGCGCCGGGTTTGCCTGGCTGGCCTCGGGAGGCGTGCTGTATACCGTCGGCATCATCTTCTTCGCGCTCGACCATCGCCTGCGCCACGCCCATGGCATCTGGCACCTTTTTGTCATCGCCGGCAGCCTTTTGCATTTCGTGGCGATTCTGTTCTACGTGCTTTGAMYHGERLNAWTHLVGAVAAFIGAVWLLVIAGMAGDPWKIVSVAIYGFTLLVLYSASTVYHSVRGRKKEIMQKVDHFSIYLLIAGSYTPFCLVTLRGPWGWTLFGIVWGLAVIGILQEIKPRSEARILSIVIYAVMGWIVLVAVKPLLAALGSAGFAWLASGGVLYTVGIIFFALDHRLRHAHGIWHLFVIAGSLLHFVAILFYVLNANANANANA
D1-35_03699924hypothetical proteinATGCGCCTTCGTCATATCGAGATTTTCCAGGCGATTCGCCAGACCGGCTCCATCAGCGGCGCCGCCCAGTTGCTGCACGTTTCCCAGCCGGCGGTGACCAAGGTGCTGCAGCATGCCGAGCAGCAATTGGGGTTTGCGTTGTTCCTGCGGGTGCGCGGCAAGTTGCAGGCCACGCCCGAAGCGCTGGAGCTGGAACGCGAGGTCGACAAGGTCAGCGAAAGCCTGCAAGGCGTGCGGCGCCTGGCCCAAAGCCTGCGCCGCGAGCCGGGGCACAGCTTGCGAATCGGCGCCACACCGGCCTTGGCCCTGTCGCTGCTGCCCACGGCTATCCACCAATGGACCCGACGCTACCCGGACATCGTCTGCGAATTGTCGAGCGCCCACAGCCGCGAACTGACGCAAAACCTGCTGATGCGCGAGATCGATGTAGCCCTGAGCTTGCAATTGCCCGATCACCCAGGCCTCAAGGCCGAGCCCCTCGCCAGCGGCGTATTGGTAGCCCTGGCACCGAGCGGTCACTGGCCCGAAGCGGTAATCGGCACGCCTATGCCGTTGCAGGAGCTGGCCGGCGCGCCGTTGATCGGCTTGTCCAGCACCGACCCGCTGTCCGCCAGGCTGGATGGCTACCTCAAGTCAGTGGAGCCGCCGCCCCGAGTTAGCATTGCCGTGCAGACGTATTCACTGGCCCGGGCCATGGTCGAATCCGGCGCAGGGCTGGCGGTCATCGACCCGTTTACCGCCTTGGGGGCTTCACGCGCCCGTACGGCTATCCGGCCATTGTCGCCACCGTTGCCCATTGCCTTGTACGCCGTAACCCGCGCCAATGAAGCCCCCCCCCACACCGTGGGGGCCTTGCTGGAAATTGTCGCCAGCCAGGCCCAGGCGCAACTTGATCGCCTGTTTGCGACCGCTCAAAGCACGTAGMRLRHIEIFQAIRQTGSISGAAQLLHVSQPAVTKVLQHAEQQLGFALFLRVRGKLQATPEALELEREVDKVSESLQGVRRLAQSLRREPGHSLRIGATPALALSLLPTAIHQWTRRYPDIVCELSSAHSRELTQNLLMREIDVALSLQLPDHPGLKAEPLASGVLVALAPSGHWPEAVIGTPMPLQELAGAPLIGLSSTDPLSARLDGYLKSVEPPPRVSIAVQTYSLARAMVESGAGLAVIDPFTALGASRARTAIRPLSPPLPIALYAVTRANEAPPHTVGALLEIVASQAQAQLDRLFATAQSTNANANANANA
D1-35_037001242dadA1_2COG0665D-amino acid dehydrogenase 1ATGGCTCAGCGGGTATGCATCATTGGCGGCGGCGTGGTCGGCCTGGCGACGGCTTACGCGCTGGTCCGCGATGGGATCGACGTCACGCTGGTGGAGGCGCGCGATGCATTGGGCAGCGAGACCAGCTTCGCCAACGGCGGCCAATTATCCTATCGCTACGTCACGCCGCTAGCCGACGCCGGGGTGCCGTGGCAGGCCTTGGGCTGGATGTTGCGCGGCGATTCGCCGCTCAAGCTGCGTCCGCGCCTGGACCCGGCCCAGTGGCGCTGGATGGCAGCGTTCATCGCCGCATGCCGGACTTCGGTCAACCGGCGCAACGGCGCCCATCTGTTGCGCCTGGCGCTGTTGAGCCAGACGACGCTGCGGATCTGGCGCGAAGAGGATCATCTCGATGGCTTCGAGTGGCGGCGCAACGGCAAGCTGGTGACGTTTCGCAGTGCCAGCCATTTTGCGCATGCCCGGCAACGTGTGGCCGACGCTGTTCATCAGCAGGTACTGGGCCCGAACGAATGCACGACGCTGGAACCTGCGCTGGCCGGCGTGCCGTTCGTGGGCGGCATCTACACACCTGATGAGGAAGTCGCCGATTGCCATGGCTTCTGCCTGCAACTCGCGGCGCGGCTGCGCGCTTCGGGGCGCTGCGAATTCCTCTTGGGGCGCGCGGTGACCGCTATCGAGCATGCCGACGGCGCGGTGCACGCCATCAACCTGGGCGAGCAGCGTGTGGAGGTCGAGCACCTGGTAATCGCCGCCGGCCACCGCAGCGTTGCGCTGGCATTGCCAGGCGTGCGGATGCCGCTGTATCCGCTCAAGGGCTACAGCCTGACGGTGCCGATCGACGCCCGGCATCGGGCGCCGGAACTGAGCATCACCGACTACGACCGCAAGGTCGTCTACGCGCGCATCGGTGAGCAGCTGCGGGTGGCGGCCATGGTCGACATCGTCGGCTTCGACCCGGCGCCGGATCCCAGACGCCTGGCTCTGATTCGGCGCCAGGCCATGGAAACATTTCCCATGGCCGGTGATTACGATCGCGCTGTGGAATGGGCGGGCATGCGCCCGGCGACGCCTAGCGGCGTGCCACTGATCGGCGCCAGCCCTTATCGCAACCTGTGGCTCAACCTCGGCCATGGTGCCTTGGGTTTTACCCTGGCCTGCGGCAGCGGTCGCTTGCTCAGTGAAATGATCCGCCAACGCACACCTTCCATCGACCTGCAGGGCCTCACGCCCCGCGCCGCCTGAMAQRVCIIGGGVVGLATAYALVRDGIDVTLVEARDALGSETSFANGGQLSYRYVTPLADAGVPWQALGWMLRGDSPLKLRPRLDPAQWRWMAAFIAACRTSVNRRNGAHLLRLALLSQTTLRIWREEDHLDGFEWRRNGKLVTFRSASHFAHARQRVADAVHQQVLGPNECTTLEPALAGVPFVGGIYTPDEEVADCHGFCLQLAARLRASGRCEFLLGRAVTAIEHADGAVHAINLGEQRVEVEHLVIAAGHRSVALALPGVRMPLYPLKGYSLTVPIDARHRAPELSITDYDRKVVYARIGEQLRVAAMVDIVGFDPAPDPRRLALIRRQAMETFPMAGDYDRAVEWAGMRPATPSGVPLIGASPYRNLWLNLGHGALGFTLACGSGRLLSEMIRQRTPSIDLQGLTPRAAPGPT0020315_3115DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_D-AMINO_ACID_DEGRADATION,PGPT0020315-dadA-K00285NANA
D1-35_03701903gltI_2COG0834Glutamate/aspartate import solute-binding proteinATGCAAAAAATCACGTTGATCGGCTGTACCTTGAGCCTGCTGCTCGGCGCCCAGGCTTTTGCCAATGAAGCGCCTCCGGCCGGCACGCTGGAAAAGATCGCCAGCAACAAAAGCATCACGCTGGGCTATCGTGACGCCTCGGTGCCGTTTTCCTATGTCGGGGACAACAGCGGCAAACCGATGGGGTATTCGGTGGAGCTGGCGGGCAAGATCGTCGAGCGCATCAAGCAGCAACTGGCGCTGCCGCAACTGAGCGTGAAGTACAACCTGGTGACTTCCCAGACACGAATCCCGCTGGTGCAGAACGGCACCGTGGATCTGGAATGCGGCTCCACCGGCGTGACCGCCGAGCGGCAGAAGCAGGTGGCGTTTTCCTACGGGTTCATTTACGTGAAGGGCCAGTTGCTCACGGCCAGGGACAGCGGCATCCGGAGTTTCGCCGACCTGCGTGGCAAGAATGTGGTGACCACCGCCGGCACGACCAACGAGCGGTTCCTGAAGAGCTACAACCAGGACAACAAAGTCGACATGTTCGTCATCAGTGCCAAGGACCATGGCGAAGCCTTCCAGATGCTCGAGACCGGCCGGGCGGCGGCGTTCTACATGGACGATGCGCTGCTCTACGGCGAACGGGCCAAGGCGCGCGATCCGCATAAATGGGTGGTGGTCGGAGAAGAGCAGTCGCGGGAAATCTACAGCTGCATGGTGCGCAAGGACGATCCGCAATTCCTGGCGCTGGTCAACGCGACCCTGGCGGACTTGTACAAGTCAGGGGAAATCAATGCCATCTACGATCGCTGGTTCCAGAAGCCGATCCCGCCCAAGGGCCTGAATCTGGAATTTCCGATGACCAGCGAGTTGAAGGCGATCATCGCCAGGCCGACCAGCGAGCCGGTGCAGTAGMQKITLIGCTLSLLLGAQAFANEAPPAGTLEKIASNKSITLGYRDASVPFSYVGDNSGKPMGYSVELAGKIVERIKQQLALPQLSVKYNLVTSQTRIPLVQNGTVDLECGSTGVTAERQKQVAFSYGFIYVKGQLLTARDSGIRSFADLRGKNVVTTAGTTNERFLKSYNQDNKVDMFVISAKDHGEAFQMLETGRAAAFYMDDALLYGERAKARDPHKWVVVGEEQSREIYSCMVRKDDPQFLALVNATLADLYKSGEINAIYDRWFQKPIPPKGLNLEFPMTSELKAIIARPTSEPVQPGPT0000750_535DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLUTAMATE_TRANSPORT,PGPT0000750-gltI|aatJ-K10001NANA
D1-35_03702720rsmECOG1385Ribosomal RNA small subunit methyltransferase EATGAGACTCTCCCGCTTCTTCATCGACACGCCCCTGAGCCTCGGCGATCACGAGCTGCCCGAAGCCCAGGCCCACTACATCGGCCGGGTGCTGCGCATGGCCGAGGGCGACGCGGTGCAAGTATTCGACGGCTCCGGACAGGAGTTTCGCGGCACCCTGGCCGAGGTCGGCAAAAAGCGCGTGCGCGTGCAGCTCGACGAGCAATTTGCCGGACAGGCCGAGTCGCCCTTGCGCATTCATCTCGGTCAGGGCCTGTCCCGGGGCGAGCGCATGGACTGGGCGATCCAGAAGGCCACGGAACTGGGCGTCAGCGAGATCACCCCGATATTCACCGAGCGCTGTGAAGTGCGCCTCAAGGACGAACGCGCCGACAAGCGTCTGCTGCACTGGCGCCAGGTGGCGATCAGCGCTTGCGAGCAATGCGGGCGTTCCAGTGTGCCGGTGATCCATCCTCCGCTGCTGCTGGTCGACTGGTTGAAACAGACCGACGCCGAGCTGAAACTGGTCCTGCACCCGGTCGCCGAACCGCTGGTCAGTCATGCCAGGCCGTCGACCCTGGCGTTCCTGATCGGCCCCGAGGGCGGGTTGTCGGATGCTGAAGTCGAACAGGCCAGGACCGCCGACTACCACGCCGCCCGCCTCGGTCCCCGCGTGCTGCGTACCGAAACCGCGCCGGTGGTGGCGCTGGCGGTGGCGCAGCAGTTGTGGGGGGATTTCTAAMRLSRFFIDTPLSLGDHELPEAQAHYIGRVLRMAEGDAVQVFDGSGQEFRGTLAEVGKKRVRVQLDEQFAGQAESPLRIHLGQGLSRGERMDWAIQKATELGVSEITPIFTERCEVRLKDERADKRLLHWRQVAISACEQCGRSSVPVIHPPLLLVDWLKQTDAELKLVLHPVAEPLVSHARPSTLAFLIGPEGGLSDAEVEQARTADYHAARLGPRVLRTETAPVVALAVAQQLWGDFNANANANANA
D1-35_037031407bioAAdenosylmethionine-8-amino-7-oxononanoate aminotransferaseATGGGCCTGAATAACCAGTGGATGCAGCGCGATCTTGCCGTGCTATGGCACCCCTGCACCCAGATGAAAGATCACGAACAGCTGCCGCTGATTCCTATCCGGCGCGGCGAAGGCGTGTGGCTTGAGGACTTCGAAGGCAAGCGCTACCTCGATGCGGTGAGTTCCTGGTGGGTCAATGTGTTCGGCCACGCCAACCCGCGCATCAACCAGCGCATCAAGGATCAGGTCGATCAGCTTGAGCATGTGATCCTCGCCGGTTTCAGCCACCAGCCGGTGATCGAGTTGTCCGAACGCCTGGTGAAGATGACGCCCGAAGGCCTGACCCGGTGCTTCTATGCCGATAACGGCTCGTCCTGCATCGAAGTGGCGATGAAGATGAGCTTTCATTACTGGATCAATCGCGGCCGGCCCGACAAGAAACGCTTCGTTACCCTGAGCAACAGCTACCACGGCGAAACCATCGCGGCGATGTCGGTGGGCGATGTACCGCTGTTCACCGAAACCTACAAGGCGTTGTTGCTGGACACGCTCAAGGTGCCGAGCCCCGACTGCTACCACCGCCCCGAAGGCATGGGCTGGGAAGAACATTCGCGAAACATGTTCGCGGCCATGGAGCAAACCCTGGCCGAGCACCACGACACGGTGGCGGCGGTGATCGTCGAACCGCTGATCCAGGGCGCCGGCGGCATGCGCATGTACCACCCGGTGTACCTGAAGCTATTGCGTGAAGCCTGCGACCGCTATGGCGTGCACCTGATCCACGACGAAATCGCGGTCGGCTTCGGCCGCACCGGGACGATGTTTGCCTGCGAACAGGCCGGTATCACGCCAGACTTCCTTTGCCTGTCCAAAGCCCTGACCGGCGGCTACCTGCCGCTGGCGGCGTGCGTGACCACCGATGAGGTCTACAGCGCGTTCTACGACGACTACCCGACCCTGCGCGCCTTCCTGCATTCCCACAGCTACACGGGCAATCCGCTGGCTTGCGCGGCGGCGCTGGCGACCCTGGATATTTTCGAAGACGACAATGTCATCGAAACCAACAAGGCCCTGGCCCAGCGCATGGCCAGCGCCACCGCCCACCTGGTCGACCACCCGAACGTGGCCGAAGTGCGCCAGACCGGCATGGTCCTGGCCATCGAGATGGTCAAGGACAAGGCGAGCAAAACCGCGTACCCATGGCAGGAGCGGCGCGGCCTGACGGTCTTCCAGCATGCCCTGGAGCGCGGCGCCCTGCTGCGGCCGCTGGGCAGCGTTGTATATTTCCTGCCGCCGTATGTCATTACGCCGGAGCAGATCGATTTTCTGGCGGAAGTTGCCAGCGAAGGGATCGATATCGCCACCCGGGACAAGGTCAGCGTGGCGGTGCCGAAGGATTTCCACCCGGGGTATCGCGATCCGGGCTGAMGLNNQWMQRDLAVLWHPCTQMKDHEQLPLIPIRRGEGVWLEDFEGKRYLDAVSSWWVNVFGHANPRINQRIKDQVDQLEHVILAGFSHQPVIELSERLVKMTPEGLTRCFYADNGSSCIEVAMKMSFHYWINRGRPDKKRFVTLSNSYHGETIAAMSVGDVPLFTETYKALLLDTLKVPSPDCYHRPEGMGWEEHSRNMFAAMEQTLAEHHDTVAAVIVEPLIQGAGGMRMYHPVYLKLLREACDRYGVHLIHDEIAVGFGRTGTMFACEQAGITPDFLCLSKALTGGYLPLAACVTTDEVYSAFYDDYPTLRAFLHSHSYTGNPLACAAALATLDIFEDDNVIETNKALAQRMASATAHLVDHPNVAEVRQTGMVLAIEMVKDKASKTAYPWQERRGLTVFQHALERGALLRPLGSVVYFLPPYVITPEQIDFLAEVASEGIDIATRDKVSVAVPKDFHPGYRDPGPGPT0022100_202DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022100-bioA-K00833NANA
D1-35_037041761mnmC_3tRNA 5-methylaminomethyl-2-thiouridine biosynthesis bifunctional protein MnmCATGTCTGCTGGTTGGCTGCGCGCCTGTGCGCTGGTGATGATAGGGCTGTTCAGCGTTTCGGCGCTGGCCAAGGACAAACAACCGACGGCCATCGTCATCGGCGGCGGGCTGGCCGGGCTCACGGCGGCCTACGAGTTACAGAACAAGGGCTGGGCCGTGACCCTGCTGGAAGCCAAACCGAGCCTGGGCGGCCGTTCGGGCATGGCCACCAGCGAGTGGATCGGCAACGATAAGGTCCAGCCGGTACTGAACAAGTACGTTTCGACCTTCAAACTGAGCACCACGCCGGCGCCGGAATTCGTGCGCACCCCCAGCTATCTGATCGACGGCACCTATTTTACTGCCACCGACCTGGCGACCAAGCAGCCAGCCACGGCCGAGGCGCTCAAGCGCTACGAAACCACCCTGGATGATCTGGCCCGTTCCATCGACGACCCACTGAACCCGACGGCTACCAGTACGTTACACGCGCTCGACCAGATCACCGTGTCCAACTGGCTGGACCGCTTGCAATTGCCGGCGACCGCCCGACAGTTGGTCAACCAGGAAATCCGCACGCGCTATGACGAGCCGTCGCGCCTGTCGTTGCTGTATTTCGCCCAGCAGAACCGCGTCTATCGCGGCGTGTCCGACCGTGACCTGCGCGCCTCGCGCCTGCTCGGTGGCAGCCCGGTATTGGCCCAGGCGTTCGTCAAGCAACTGAAAACCATCAAGACGAGCTCGCCGGTGTCGGCCATTTCCCAGGACAAGGACGGCGTCACCGTCAAGGTCGGCAGCGTCGGTTACCAGGCCGACTATGTTGTACTGGCCGTGCCCTTGCGAGCATTGAACAAGATTCAGCTGACCCCGGCCCTGGATGCCCAGCACCTGGGTGCGATCAAAGGCACCAACTACGGCTGGCGCGACCAGATCATGCTCAAGTTCAAGACCCCGGTCTGGGACAGCAAGGCACGCATGTCGGGCGAGATCTACAGCAACGCTGGCCTGGGCATGATGTGGATCGAGCCGGCCATGAAGGGTGGCGCCAACGTTGTCATCAACCTGTCCGGCGACAACGCACGGGTGATGCAGGCCTTCGGCGACAAGCAGATGGTCGACCAGGTGTTGATCCGCCTCCACGCGTTTTATCCACAGGCGCGCGGTGCATTCACCGGTTATGAAATCCGCCGCTACAGCACCGACCCTGCCATGGGCGGCGCGTACCTGGCGTTTGGTCCGGGCCAGATCAGCAAGTACTGGCGCCTGTGGGAAAAACCATTGCAGCGCGTCGCCTTTGCCGGCGAACACACCGACGCGCTGTACCCAGGCACCCTGGAAGGCGCACTGCGCAGCGGCCAGCGCGCCGCCAGCCAGGTTGAAGACCTGGCGGCGGGCAAGTCGTTCGAACCACCGAAGGTCGCCCCGGCCGCAGCAGCTGCCGCCGGAGCGGTGGCGGCGAAGAAAGGCAACTTCTTCAGCAACCTGTTCGGCGGCTCGGATGACGACAAGAAGCCGGAGCCGGCCAAGGCTCCCGAGCCGGTAGCACCGCCTCCAGCGCCGGCACCGGCCCCCGTCCCAGCCCCTGCGCCGGTGGAACCACCCGCGCCGGCGCCAGCGAAGACCGAGCCAGCCAAGAAAGCCACGGCCAAGCCAGCGGCGAAGAAGCCGGCGGCCAAGGCCCCGGCTAAAAAGGCCCCGGCCAAGGCACCAGTGAAAAAGGCTGAGCCAGTGAAGAAACCCGCCGCCAAACCGGCGGCAACTACTGAGACGAAGGCTCAGTAAMSAGWLRACALVMIGLFSVSALAKDKQPTAIVIGGGLAGLTAAYELQNKGWAVTLLEAKPSLGGRSGMATSEWIGNDKVQPVLNKYVSTFKLSTTPAPEFVRTPSYLIDGTYFTATDLATKQPATAEALKRYETTLDDLARSIDDPLNPTATSTLHALDQITVSNWLDRLQLPATARQLVNQEIRTRYDEPSRLSLLYFAQQNRVYRGVSDRDLRASRLLGGSPVLAQAFVKQLKTIKTSSPVSAISQDKDGVTVKVGSVGYQADYVVLAVPLRALNKIQLTPALDAQHLGAIKGTNYGWRDQIMLKFKTPVWDSKARMSGEIYSNAGLGMMWIEPAMKGGANVVINLSGDNARVMQAFGDKQMVDQVLIRLHAFYPQARGAFTGYEIRRYSTDPAMGGAYLAFGPGQISKYWRLWEKPLQRVAFAGEHTDALYPGTLEGALRSGQRAASQVEDLAAGKSFEPPKVAPAAAAAAGAVAAKKGNFFSNLFGGSDDDKKPEPAKAPEPVAPPPAPAPAPVPAPAPVEPPAPAPAKTEPAKKATAKPAAKKPAAKAPAKKAPAKAPVKKAEPVKKPAAKPAATTETKAQPGPT0007641_160DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINE_USAGEPLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007641-aofH-K00274NANA
D1-35_03705162hypothetical proteinATGAAAATACTGATGGCAATGCTCGTATCGGTTTCGCTGTACGGGTGTGTGTATGGTGAATGTCGGGATCCCCTGATGATCCCGATGGTTCCGGAACGGGACCCTCAGTTGGCGTACAAATGCACCTTCGACCCATACCACCCCAAATGCTCAGTGAATTGAMKILMAMLVSVSLYGCVYGECRDPLMIPMVPERDPQLAYKCTFDPYHPKCSVNNANANANANA
D1-35_03706552yceJ_3COG3038Cytochrome b561ATGCAGCTACGCAACTCTTCTTCTCGCTATGGCTGGGTCAGCATCGTTTCGCACTGGGCCGTTGCCTTGGCGGTGTATGGGCTGTTCGCGCTGGGCCTGTGGATGGTCGGGCTGGATTATTACAGCACCTGGCGCAAAGACGCGCCGGACATCCATAAGAGCATCGGCCTGGTGCTGTTGGCGGTGATGGTGCTGCGAGTGATCTGGCGTTTCGTCAGCCCGCCGCCACCGACCCTGGAGACCTATGGCCGCCTTACACGCGTCGGCGCCAGGATTGGCCATAGTGCACTGTATCTCGGGCTGTTCGCCGTGATGATCGCCGGTTACCTGATTTCCACCGCAGACGGTGTCGGGATCTCGGTGTTTGGTTTGTTTGAAGTACCCGCGCTGGTGTCCGGACTGCCCGATCAGGCAGACGTCGCCGGCCAGATCCACTTCTACCTGGCATGGGCGCTGGTAATTTTTTCCGGCCTCCATGCGTTGGCAGCATTGAAGCACCACTTTATCAACCGTGACGCGACCCTCAAGCGCATGCTGGGGCGCCAAGCCTGAMQLRNSSSRYGWVSIVSHWAVALAVYGLFALGLWMVGLDYYSTWRKDAPDIHKSIGLVLLAVMVLRVIWRFVSPPPPTLETYGRLTRVGARIGHSALYLGLFAVMIAGYLISTADGVGISVFGLFEVPALVSGLPDQADVAGQIHFYLAWALVIFSGLHALAALKHHFINRDATLKRMLGRQANANANANANA
D1-35_03707615yceICOG2353Protein YceIATGTTCAACCTCGACTCCAAAGGAATAGAAAGCATGTTGAAAAAGACGCTCGCCGCCCTGGCAATCGGTTCCGCCCTGCTGTCCGCCGGCCAGGCCATGGCCGCAGACTACGTGGTCGACAAGGAAGGCCAGCATGCCTTCGTCGACTTCAAGATCAGCCACCTGGGCTACAGCTACATCACCGGTACCTTCAAGGACATCGACGGCAAGTTCAGCTTCGACGCCGCCAAGCCTGAAGCCAGCAAGATCGAATTCAACGTCAACACCGCCAGCGTGTTCACCAACCACGCCGAACGTGACAAGCACATCGCCAGCGCTGACTTCCTGAACGCCAGCAAATTCGGCAAGGCCACCTTCGTGTCCACCAGTGTCAAGTCCACCGGCGCAAACACCGCCGATGTGACCGGTGACCTGACCCTGCTGGGCGTGACCAAGCCGGTCGTGGTCAAGGCAACCTTCCTGGGCGAAGGCAAGGACCCATGGGGTGGCTACCGTGCCGGCTTCGAAGGCACTACCACGATCAAGCGTTCCGACTTCGGCAAGCAGAAAGACCTGGGTCCGAAATCCGACGTGGTCGAGCTGTACGTGACGTTTGAAGGTGTTCAGCAGAAGTAAMFNLDSKGIESMLKKTLAALAIGSALLSAGQAMAADYVVDKEGQHAFVDFKISHLGYSYITGTFKDIDGKFSFDAAKPEASKIEFNVNTASVFTNHAERDKHIASADFLNASKFGKATFVSTSVKSTGANTADVTGDLTLLGVTKPVVVKATFLGEGKDPWGGYRAGFEGTTTIKRSDFGKQKDLGPKSDVVELYVTFEGVQQKNANANANANA
D1-35_037081875rhlE_2ATP-dependent RNA helicase RhlEATGTCCTTTGCTTCCCTCGGTCTCTCCGAGGCTTTAGTCGGCGCCATCGAAGCCGCCGGCTACACCCAGCCTACCCCGGTGCAACAGCGGGCCATCCCCGCCGTGTTGCAAGGTCGCGACCTGATGGTCGCCGCACAGACAGGTACTGGTAAAACCGGCGGTTTCGCCCTTCCGATCCTGGAGCGGCTGTTCCCCAACGGTCATCCGGACAAATCCCAGCGTCACGGCCCGCGCCAACCCCGCGTGCTGGTCCTGACCCCAACCCGCGAACTGGCGGCCCAGGTCCACGAGAGCTTCAAGGTCTACGCGCGTGACCTGAAGTTCGTCAGCGCCTGCATCTTCGGCGGCGTCGGCATGAACCCGCAGGTCCAGGCCATGGCCCGTGGCGTCGATGTCCTGGTGGCCTGCCCCGGCCGCCTGCTGGACCTGGCCGGCCAGGGCAGCGTCGACTTGTCCCACGTGGAAATCCTCGTGCTGGACGAAGCCGACCGCATGCTCGACATGGGTTTTGTCCATGACGTTAAAAAAGTGCTGGCCCGCCTGCCAGCCAAGCGCCAGAACCTGCTGTTCTCGGCGACGTTCTCCAAGGACATCACTGACCTTGCCGGCAAGCTGCTGCACAACCCGGAACGCATCGAAGTCACGCCGCCGAACACCACGGTCGAGCGCATCGAGCAACGCGTGTTCCGCCTGCCGGCCAGCCACAAGCGTGCCCTGCTGGCCCACCTGATCACCACGGGCGCCTGGGAACAGGTCCTGGTCTTCACCCGCACCAAGCACGGCGCCAATCGCCTGGCCGAATACCTGGACAAGCACGGCCTGCCAGCTGTGGCGATCCACGGCAACAAGAGCCAGAACGCCCGCACCAAGGCCCTGGCCGACTTCAAGGCCGGCGAAGTGCGCATCCTCGTAGCCACCGACATCGCCGCCCGTGGCCTCGATATCGACCAGTTGCCTCACGTGGTCAACTTCGAGCTGCCGAACGTCGATGAAGATTACGTCCACCGTATCGGCCGTACCGGCCGGGCCGGTCGTTCGGGCGAGGCGATTTCCCTGGTCGCGCCGGATGAAGAGAAGTTGCTCAAAAGCATCGAGCGCATGACCAAGCAGAAAATCCCTGACGGCGACCTGATGGGCTTTGATGCCAGCACCATCGAGGCCGAGAAGCCTGAAGTGCGTGAGCGTCCGGATGTGCGCAATCCGCGTAATCCTCGTGGCCCGCGTGGCGACGGCCCGAATGGCGGCGGTGGTGGCGGCGGTCGTAAGGACAAAGGCAAGGACAAGGGCAAGGAAAAATCGGCCAGCAACAGCAACGGTCGCGGCGAACGCCCAGCCCGCGAGCAGAAGCCCCGCGAAGGCACTCCGGCCCGTGAGCAGCAACGCCCTGCCCCGCGCGCCGCGGCCGCCGACCGCGCCCCGGACGAATTCCTCGACGACGATGTCGATAACTTCGGTAACCGCGTGGACTACGTGCCGCAGCAGAAACCGGCCCAGGGTCGCGGTCGCCGTCCGGGCGCCCCGGCAACAGGCGCTGGTGCCGGCGCCCCCCGCGGTGGCCAGCCACAGGGTCGCCAGAACGGACCGCGCAACAGCAACGGCTCGTCCACCGGCACTCCGCCAGGCAAGCGCAGCGGTCCGCGTAATGGCGCCCCACGTGACGGCCAGGCCCGCCGCGAAGAGTCCCGTCCACGCCGCCCGGCACGTGACGATGACCAACCTCGTCAGGAACCTGCCGTGCAGAACCCGCGTGGCAACCAGCCGAAAATCATGCACAAGGAATCGAAGGTTGATCGTTTCCCGACGCCTGAACAGCTGGACCAATTGCCAAGCCGTCCACGTGGCGAAAAGCCGGCCTTGCTGACGCGCAATCGCTGAMSFASLGLSEALVGAIEAAGYTQPTPVQQRAIPAVLQGRDLMVAAQTGTGKTGGFALPILERLFPNGHPDKSQRHGPRQPRVLVLTPTRELAAQVHESFKVYARDLKFVSACIFGGVGMNPQVQAMARGVDVLVACPGRLLDLAGQGSVDLSHVEILVLDEADRMLDMGFVHDVKKVLARLPAKRQNLLFSATFSKDITDLAGKLLHNPERIEVTPPNTTVERIEQRVFRLPASHKRALLAHLITTGAWEQVLVFTRTKHGANRLAEYLDKHGLPAVAIHGNKSQNARTKALADFKAGEVRILVATDIAARGLDIDQLPHVVNFELPNVDEDYVHRIGRTGRAGRSGEAISLVAPDEEKLLKSIERMTKQKIPDGDLMGFDASTIEAEKPEVRERPDVRNPRNPRGPRGDGPNGGGGGGGRKDKGKDKGKEKSASNSNGRGERPAREQKPREGTPAREQQRPAPRAAAADRAPDEFLDDDVDNFGNRVDYVPQQKPAQGRGRRPGAPATGAGAGAPRGGQPQGRQNGPRNSNGSSTGTPPGKRSGPRNGAPRDGQARREESRPRRPARDDDQPRQEPAVQNPRGNQPKIMHKESKVDRFPTPEQLDQLPSRPRGEKPALLTRNRPGPT0013740_103DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927NANA
D1-35_03709777hypothetical proteinATGCCCGTCTTTACCCAACTCCTGACCGTCCTGTTACTCCTGTGCCTGAGCGTTTGCGCCCGGGCCGAGAAGCTGCGCATCGTCACCGAACCCTGGGCGCCCTACGTCTATGAGGAGAACGGCAGGGCCCTGGGCCTGGACTATGAAACCACCGCCATCGTGTTCAAGCGCCTGGGCGTTGATGTCGAATGGCAGTTCCTGCCTTGGAAGCGTTGCCTGGCGATGCTGGAACAGGGGCTGGCAGACGGTGCACTGGATATCTTTCGCAGCGAGGAGCGCGACTCCCTGCTGCTCTACCCGAGCGAACCGCTGTCGGACGTCGAGTTCGTGATGTTCTACGCCAACGCCCGGCCCCATCCGTTTCGCACGCTCGACGAGCTCGAAGGACTGACCGTCGGCACGTCTCCGGGTTATCTGTACAGCCAGGCGTTCAGGGAATCGACCCGGTTCAAGCGGGAAACCGCGCCCACCCATGAAGCCAATTTCGGCAAGTTGCAGTTGGGCCGGATCGACCTGCTCATCACCGACCGCCGAGTGGGCCGGCATGTGCTCAAGGCGCTGCAACTGGGTGACCAGATCAGCGAAAATCCCACGGTCGTGAGCCGTCAAAGCCAATACCTGGCGGTACGGCGCAGCGCCGGCATGGATTTGCTGGTGCAGCGCTTCGGTGCTGAACTCAAGCGTTTCAAGCGCGAACCGGCCTATGCCGAGCTGAGCGCCCGCTATGGTGCAGACCCGGCCGGCAAGGCGGCACCGCAAGACCCGGTACCCCACTGAMPVFTQLLTVLLLLCLSVCARAEKLRIVTEPWAPYVYEENGRALGLDYETTAIVFKRLGVDVEWQFLPWKRCLAMLEQGLADGALDIFRSEERDSLLLYPSEPLSDVEFVMFYANARPHPFRTLDELEGLTVGTSPGYLYSQAFRESTRFKRETAPTHEANFGKLQLGRIDLLITDRRVGRHVLKALQLGDQISENPTVVSRQSQYLAVRRSAGMDLLVQRFGAELKRFKREPAYAELSARYGADPAGKAAPQDPVPHPGPT0020800_11498DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-35_03710846metFCOG06855,10-methylenetetrahydrofolate reductaseATGTCCCAAGAACGTCGCTACAGCTTCGAGTTCTTCCCGACGAAGACCGATGCTGGGCATGAAAAACTGATTGCCACTGCCCGACAGCTGGCAGGCTACAAACCTGATTTTTTCTCCTGCACCTATGGCGCCGGCGGTTCGACCCGTGACCGCACGATGAATACCGTGCTGCAGCTTGAAAGCGAAGTCAAAGTCCCGGCCGCTCCGCACCTGTCCTGCGTGGGCGATAGCAAGGATGACCTGCGTAGCCTGCTGACCCAGTACAAGGCCGCCGGCATCAAGCGTATCGTCGCCCTGCGCGGTGACCTGCCCTCGGGCATGGGCATGGCCAGCGGTGAACTGCGGCACGCCAACGAGCTCGTCGAGTTCATCCGCCAGGAGACCGGCGAGCACTTTCATATTGAAATCGCCGCGTATCCGGAGATGCATCCGCAAGCACGCAATTTCGAAGACGACCTGAGCAATTTCGTGCGCAAGGCCAACGCCGGCGCCAACAGCGCGATTACCCAGTATTTCTTCAACGCCGACAGCTACTTCTACTTCGTCGAGCGTGTGCGCAAGTTGGGTGTCGACATTCCGGTGGTACCGGGCATCATGCCGATCACCAACTACAGCAAACTGGCGCGTTTTTCCGACGCCTGCGGCGCGGAAATCCCGCGCTGGATCCGCAAGCAACTGGAAGCCTACGGCGATGACACGGCCAGCATCCAACGCTTCGGCGAGGAGGTCATCACGCACATGTGTGAACGACTGTTGCAAGGTGGCGCGCCGGGCCTGCACTTCTACACGTTGAACCAGGCCGAGCCGAGCCTCGCTGTGTGGAACAACCTCAAGCTGCCGCGCTAGMSQERRYSFEFFPTKTDAGHEKLIATARQLAGYKPDFFSCTYGAGGSTRDRTMNTVLQLESEVKVPAAPHLSCVGDSKDDLRSLLTQYKAAGIKRIVALRGDLPSGMGMASGELRHANELVEFIRQETGEHFHIEIAAYPEMHPQARNFEDDLSNFVRKANAGANSAITQYFFNADSYFYFVERVRKLGVDIPVVPGIMPITNYSKLARFSDACGAEIPRWIRKQLEAYGDDTASIQRFGEEVITHMCERLLQGGAPGLHFYTLNQAEPSLAVWNNLKLPRPGPT0008160_3558DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008160-metF-K00297NANA
D1-35_037111410ahcYCOG0499AdenosylhomocysteinaseATGAGCGCTGTTATCACGCCTGCAGCTTTTACCGACTACAAAGTCGCTGACATGTCCCTGGCTGCCTGGGGCCGTCGCGAAATCATCATCGCCGAATCCGAAATGCCAGCCCTGATGGGCCTGCGCCGCAAATACTCTGGCGAACAGCCATTGAAGGGCGCAAAAATCCTCGGCTGCATCCACATGACCATCCAGACCGCCGTGCTGATCGAAACCCTGGTTGCCCTGGGTGCCGAAGTGCGCTGGTCGTCCTGCAACATTTTCTCGACCCAGGACCAGGCCGCTGCCGCGATCGCCGCTGCCGGCATCCCGGTTTTTGCCTGGAAAGGCGAGACCGAGCAAGAGTACGAATGGTGCCTGGAGCAGACCATCCTCAAGGATGGCCAGCCATGGGACACCAACATGATTCTTGACGACGGCGGCGACCTGACCGAGCTGCTGCACAAGAAATACCCGGCCGTGCTGGACAAGGTCCACGGCGTGACCGAAGAAACCACCACCGGCGTCCACCGCCTGCTGGACATGCTGGCCAAGGGCGAGCTGAAGATTCCGGCCATCAACGTCAACGACTCGGTGACCAAGAGCAAGAACGACAACAAGTACGGTTGCCGTCACAGCCTCAACGACGCCATCAAGCGCGGCACCGACCACTTGCTGTCCGGCAAGCAGGCGCTGGTGATCGGCTACGGTGACGTGGGCAAGGGTTCGGCCCAGTCCCTGCGTCAGGAAGGCATGATCGTCAAGGTGTCCGAAGTCGATCCGATCTGCGCCATGCAAGCCTGCATGGACGGTTTCGAACTGGTATCGCCGTTCATCGACGGCAACAACGACGGCACCGAAGCCAGCGTCGACAAGGCACTGCTGGGCAAGATCGACCTGATCGTGACCACCACCGGCAACGTCAACGTCTGCGACGCCAACATGCTCAAGGCCCTGAAAAAGCGCGCCGTGGTCTGCAACATCGGTCACTTCGACAATGAAATCGACACCGCTTTCATGCGCAAGAACTGGGCATGGGAAGAAGTGAAGCCACAGGTGCACAAGGTTCACCGCACCGGTACCGGCAGCTTCGACCCGCAGAACGATGACTACCTGATCCTGCTGGCCGAAGGCCGCCTGGTGAACCTGGGCAACGCCACCGGTCACCCAAGCCGCATCATGGACGGTTCGTTCGCCAACCAGGTCCTGGCCCAGATCTTCCTGTTCGGCCAGAAATACGCCGACCTGCCACCGGCGCAGAAAGCCGAGCGCCTGACCGTTGAAGTATTGCCGAAGAAACTCGACGAAGAAGTGGCCCTGGAAATGGTCCGCGGTTTCGGCGGCGTGGTCACCAAGCTGACCAAGCAACAGGCTGACTACATCGGCGTGACCGTCGAAGGCCCGTTCAAGCCGCACGCCTACCGCTACTGAMSAVITPAAFTDYKVADMSLAAWGRREIIIAESEMPALMGLRRKYSGEQPLKGAKILGCIHMTIQTAVLIETLVALGAEVRWSSCNIFSTQDQAAAAIAAAGIPVFAWKGETEQEYEWCLEQTILKDGQPWDTNMILDDGGDLTELLHKKYPAVLDKVHGVTEETTTGVHRLLDMLAKGELKIPAINVNDSVTKSKNDNKYGCRHSLNDAIKRGTDHLLSGKQALVIGYGDVGKGSAQSLRQEGMIVKVSEVDPICAMQACMDGFELVSPFIDGNNDGTEASVDKALLGKIDLIVTTTGNVNVCDANMLKALKKRAVVCNIGHFDNEIDTAFMRKNWAWEEVKPQVHKVHRTGTGSFDPQNDDYLILLAEGRLVNLGNATGHPSRIMDGSFANQVLAQIFLFGQKYADLPPAQKAERLTVEVLPKKLDEEVALEMVRGFGGVVTKLTKQQADYIGVTVEGPFKPHAYRYNANANANANA
D1-35_03713402hypothetical proteinATGAATTTCCACACCCGCAAATGGGTCAAGCCCGAAGACCTCAACCCCAACGGCACGCTGTTCGGTGGCAGCCTGCTGCGCTGGATCGACGAAGAAGCGGCGATCTATGCCATCGTCCAGCTCGGTAACCAGCGTGTGGTCACCAAATACATCTCCGAAATCAACTTTGTCAGCGCCTCGCGCCAGGGCGACATCATCGAACTGGGTATCACCGCCACCGAGTTCGGCCGCACGTCCATCACCCTGACGTGCGAGGTGCGCAACAAGATCACTCGCAAGAGCATCCTGACGGTGGAAAAGATGGTATTCGTCAACCTCGGTGAAGACGGCTTGCCCGCGCCCCATGGCCGGACCGAGATCAAGTACGTCAAGGATCAGTTCAAGGACGATACCGTCGAATAGMNFHTRKWVKPEDLNPNGTLFGGSLLRWIDEEAAIYAIVQLGNQRVVTKYISEINFVSASRQGDIIELGITATEFGRTSITLTCEVRNKITRKSILTVEKMVFVNLGEDGLPAPHGRTEIKYVKDQFKDDTVEPGPT0001830_10DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001830-yciA-K10806NANA
D1-35_03714885yfdCCOG2116Inner membrane protein YfdCATGGACACTCATAAAGACGGCAAGACCCCTGACCTCTCGGCAGAGGAGCAGCACGAGGTCGACCGCAACCAGCCGCCACGGGCGGCGGTATTGCATGAAATCATTCGCACCCAGGGTGATCAGGAGCTGGAGCGCAGTGTCGCCGCCCTGTGGTGGTCGGCCCTGGCGGCCGGTTTGACGATGGGCTTGTCGCTGATGGCGATGGGGCTGCTCAACTCCCGGTTGCCGGACCATGAAGGCTTCAAGGTCATCGCCAGTTTTGGCTACTGCGCCGGCTTCCTGGCCGTGATCCTCGCGCGGCAGCAGTTGTTCACCGAAAACACCCTGACGGCGGTGCTGCCGATCATGAGCAAACCCACGCTGGGCAATTTCGGCCGGTTGTTCCGGTTATGGGGCGTGGTGCTGGTGGGCAACCTGTGCGGCACCTTGCTGGTGGCCTATGTGATGCTGCACCTGCCGATCTTTGACCGGCGCACCGACCTGGCCTTTCTGGACATTGGCCGCAAGGTGATGGAGAACGACGCCGGCCAGATGTTCGCCAAAGGCATCATTTCCGGCTGGATGATCGCAACCATGGTGTGGATGATCCCCTCCATGGAGAACGCCAAGATGTGGATCATTGTCCTCATCACCTACCTCATGGCGCTCGGGGATTTCACCCACATCGTCGTGGGATCGGCCGAGGTGTCTTACCTGGTGTTTGCCGGGCAGCTGTCGTGGGAGGACTTCTGGACGGTGTTCGCCGCGCCGACCCTGGCGGGAAACATCATCGGCGGCAGCTTCATCTTTGCGCTGATCAGCCACGCCCAGGTGCGCAGCGAAACCAATACGCCCCTCAGTCGGCAAGGTCTGCCGCCGCGCCGACGTGACGTTGCCGATAAATGAMDTHKDGKTPDLSAEEQHEVDRNQPPRAAVLHEIIRTQGDQELERSVAALWWSALAAGLTMGLSLMAMGLLNSRLPDHEGFKVIASFGYCAGFLAVILARQQLFTENTLTAVLPIMSKPTLGNFGRLFRLWGVVLVGNLCGTLLVAYVMLHLPIFDRRTDLAFLDIGRKVMENDAGQMFAKGIISGWMIATMVWMIPSMENAKMWIIVLITYLMALGDFTHIVVGSAEVSYLVFAGQLSWEDFWTVFAAPTLAGNIIGGSFIFALISHAQVRSETNTPLSRQGLPPRRRDVADKPGPT0000590_420DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_FORMATE_TRANSPORT,PGPT0000590-yfdC-K21990NANA
D1-35_037151170ydhP_3COG2814Inner membrane transport protein YdhPATGCCACTCGCCTTGCTTGCTTTGGCCGTCGCCGCTTTCGGCATCGGCACGACTGAATTCGTCATCATGGGGCTGTTGCCTGATGTCGCCCGTGACCTGGCCGTGAGCATTCCCCACGCCGGGCTGCTGATTACCGGCTATGCGCTGGGGGTGGTATTCGGCGCACCGATCCTGGCGATCGGCACCGCGAACATGCCGCGCAAGGCCACGCTGCTGGGCATGACGCTGATGTTCATTCTCGGCAACGTGCTCTGCGCCCTCGCGCCGAACTACGTCACGCTGATGGCTGCCCGAGTCATCACCGCGCTCTGTCACGGGGCATTTTTTGGCATCGGGTCGGTGGTGGCCGCCGGGCTGGTAGCACCGAACAAACGGGCCCAGGCGATTGCAATGATGTTCACCGGCCTGACCCTGGCGAATGTGCTGGGCGTGCCGCTGGGCACGGCCTTGGGTCAATACGCCGGCTGGCGATCGACGTTCTGGGCGGTAGCGGTCATCGGCATGATTGCAGCCATCGCCCAATGGGTGTGGCTGCCCAAGGAAATTCCCATGGACAAGGCCAACCTCGCCAGTGAGTTCAAGGTGCTGGGCAAGGCCAATGTGCTGCTGGCGCTGGGCATGAGCGTGCTGGCTTCGACCAGCCTGTTCAGCGTGTTCACTTACATCGCACCGATCCTGCAGGACATCACTGGCGTGAGTCCCCACGGCATCACCGTCATGCTGTTGTTATTCGGCGTGGGCCTGACGGCGGGGAGTTTCCTGGGCGGACGCCTGGCTGACCGGCGCTTGCTGCCGTCCCTTGTGGGCATGGCGCTGGCCGTGGTGCTGGTGCTCGCCGCGTTCAGCCAGACCAGCCAATCGGTGATTCCGGCGGCGATCACCCTGGTGTTGTGGGGCGTCTTTGCGTTCGCCCTGTGCCCGATCCTGCAATTGCTGATCATCGATCAGGCCCACGAAGCCCCCAACCTGGGCTCGACCCTGAACCAGAGCGCCTTCAACCTGGGCAACGCGGCCGGCGCCTGGATCGGCGGCCTGGTGGTCGCCAGCGGCGCCGACCTCGCCGATTTGCCGTGGACCGGCGCCCTGGTCGGCGGGCTCACCGTACTGACCGCGCTTTACTTCATTTATCGGCAACGTCACGTCGGCGCGGCGGCAGACCTTGCCGACTGAMPLALLALAVAAFGIGTTEFVIMGLLPDVARDLAVSIPHAGLLITGYALGVVFGAPILAIGTANMPRKATLLGMTLMFILGNVLCALAPNYVTLMAARVITALCHGAFFGIGSVVAAGLVAPNKRAQAIAMMFTGLTLANVLGVPLGTALGQYAGWRSTFWAVAVIGMIAAIAQWVWLPKEIPMDKANLASEFKVLGKANVLLALGMSVLASTSLFSVFTYIAPILQDITGVSPHGITVMLLLFGVGLTAGSFLGGRLADRRLLPSLVGMALAVVLVLAAFSQTSQSVIPAAITLVLWGVFAFALCPILQLLIIDQAHEAPNLGSTLNQSAFNLGNAAGAWIGGLVVASGADLADLPWTGALVGGLTVLTALYFIYRQRHVGAAADLADPGPT0028991_3377DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0028991-ydhP-K19577NANA
D1-35_03716384hypothetical proteinATGACGGTAGCCCTGTGGTGCGTTTTGATTGCTTTTATCCTGCCTTACCTGTGTATCGGCATCGCCAAGGCCGGCGGCAGATACAGATTGCAAGATAACCACGACCCCCGGGATTTTCTCGACTCGCTCGAAGGCGCTCCCCGCCGTGCCTACGCCGCGCAATTGAACAGCTTTGAAATCGCCCCGTTTTTTGCCGCCGCCGTGATCGTCGCGCATCTGGCCGGCAATGCCGAGCTGGTCACCATCAATGTGCTGGCGGTGCTATTCATCACCAGCCGCCTGCTCTACGTCATTTGCTACCTGGCGGACTGGGCGATCCTGCGTTCGCTGGTGTGGTTCGTGGGGGTAGGGTTGGTACTGAGTTTCTTCTTTGTTTCGGTCTGAMTVALWCVLIAFILPYLCIGIAKAGGRYRLQDNHDPRDFLDSLEGAPRRAYAAQLNSFEIAPFFAAAVIVAHLAGNAELVTINVLAVLFITSRLLYVICYLADWAILRSLVWFVGVGLVLSFFFVSVNANANANANA
D1-35_037171188mltACOG2821Membrane-bound lytic murein transglycosylase AATGAACAGCCGCTTCAAGTCCTGGCGCACGGGCCTGGCGTTGACCTTACCGCTGATTGCACTGCTGGCCGGCTGCAACCGCGGCGAAAAGGTCGAAGAGCCTCAGACTCATGCCCTCGCCACCTACGTCAGCGCGCCCTGGGAGGCACTGCCGTCGGTAGCCGATGAAGACCTGCTGGCCGGCTTCGGCGCCTGGCGCAGCGCCTGCACCCGCCTCAAGGCCGATGCGGCCTGGGGGCCGACCTGCGCGGCGGCGGCCAATGTGCCGCAAACCGCCGCGGCGGTACGCAGCTTCCTGAAACAGAACCTCGACGTCTATGGCCTGCGCTCGGGCGACAACAGCCCCAACGGCCTGATTACCGGCTACTACGAGCCGGTCTATCCCGGCAGCCTCATGCAGACCGCCACGGCGAATATCCCGGTCTACGGTGTGCCTGAGGACATGATCGTCGTGGCGCTGGACAGCCTCTACCCGGAGCTCAAGGGCAAGCGCCTGCGCGGGCGTCTCGAAGGCCGCGTGCTGAAACCCTACGACGACGCCAGCACCATCGAGGCCAACGGCGTGAAGGCGCCGGTCATCGCCTGGCTCACCGACCCGATGAACCTGCAATTCCTGCAGATCCAGGGTTCGGGACGCATCCGGCTCGATGACGGCCGCCAGTTGCGCATCGGTTATGCCGACCAGAATGGCCACCCCTACCGGCCCATCGGCCGCTGGCTGGTGGAACAGGGCGAGCTGAAAAAAGAAGACGTGACCATGGGCACCATCAGTGCCTGGGCCAAGGCCCATCCGGAGCGGATCCCCGAGTTGCTGGGCAGCAACCCCAGCTATGTATTTTTCAACCGCAACCCCGACAGCAACGAAGGCCCGCGAGGCTCGTTGAATGTACCGCTTACCGCCGGCTACAGCGTGGCGGTGGATCGCAAGGTGATTCCGTTGGGCAGCCTGCTGTGGCTGTCGACGACTCGCCCCGATGGCAGCGCCCTGAACCGTCCCGTCGCCGCCCAGGACACGGGGGGTGCGATCTCTGGCGAAGTTCGGGCGGATCTGTTCTGGGGCACCGGGGACGCGGCCGGGCAACTGGCCGGGGACATGAAACAGCAAGGTCAGATCTGGATGTTGTGGCCCAAGGGCATGGCGCTGCCACAAGTGCCACAGGTGGCGAATGCGGTCAGCGCCAATCCTTGAMNSRFKSWRTGLALTLPLIALLAGCNRGEKVEEPQTHALATYVSAPWEALPSVADEDLLAGFGAWRSACTRLKADAAWGPTCAAAANVPQTAAAVRSFLKQNLDVYGLRSGDNSPNGLITGYYEPVYPGSLMQTATANIPVYGVPEDMIVVALDSLYPELKGKRLRGRLEGRVLKPYDDASTIEANGVKAPVIAWLTDPMNLQFLQIQGSGRIRLDDGRQLRIGYADQNGHPYRPIGRWLVEQGELKKEDVTMGTISAWAKAHPERIPELLGSNPSYVFFNRNPDSNEGPRGSLNVPLTAGYSVAVDRKVIPLGSLLWLSTTRPDGSALNRPVAAQDTGGAISGEVRADLFWGTGDAAGQLAGDMKQQGQIWMLWPKGMALPQVPQVANAVSANPPGPT0023780_664DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-MUREIN_TRANSGLYCOSYLASE_ACTIVITY,PGPT0023780-mltA-K08304NANA
D1-35_03718540hypothetical proteinATGCGCCTGGCACCCGTATTGTTGATAGGGCCATTGGTGTTTTCCGACGACCCGGGGATACTAGCGGTCGTTTTCTGTCCAGAGGCCAAAATGTTTGTAAGACGATTTTCCATGGCAGTGCTGGCCTGCCTGATGCTGTCCGCCTGTGGTGGTGTCGATCCCAACTCACCATTGGGCCAGCGCAAGACGATTTTCAAGCAGATGCTCAAGACCAACGAAGAGTTGGGTGGCATGTTGCGTGGTCGTGTTCCGTTCGATGGCCCGCGTTTCGCCGAAGGCGCGGTGCAACTGGATCAACTTTCCCATGAGCCGTGGAAACATTTTCCGCAGGTGCGTGAGCAGGATCACACCAGTGCCCGGGACGAAGTCTGGCAGAAGCAGGCGCGTTTCCAGGAACTGGCCCGCAGTCTCGAAGCGGCCACCGCCGAGTTGGTGACCGCCAGTCGGGTCCAGCCCTACCGGGCCAGTAACCTGGGGCCGGCGGTGCAGAAGGTCGAGGATGCGTGCAGTGCCTGTCATAAGGAATTCCGGGACTATTGAMRLAPVLLIGPLVFSDDPGILAVVFCPEAKMFVRRFSMAVLACLMLSACGGVDPNSPLGQRKTIFKQMLKTNEELGGMLRGRVPFDGPRFAEGAVQLDQLSHEPWKHFPQVREQDHTSARDEVWQKQARFQELARSLEAATAELVTASRVQPYRASNLGPAVQKVEDACSACHKEFRDYNANANANANA
D1-35_03719396yqjCProtein YqjCATGAATTTCCTGTACCCCGTTGCCCTGCTGGCCTTATGCGGTGCCATGGCCACCCCCTTGATGGCGGATGAACAGAGCCCGGAACTGACCGGTTGTGCAGCCAAGCGCCAAGGCATCATCAACCAGATCGAACTGGCCAGGTCCCGAGGCAATCAGGACCAGCAGGCCGGGCTGGAAACAGCCCTGGCCGAAGTCACCACCCACTGCACCGATGCTTCCCTGCGCAAGGAGCGTGAAAACAAGGTGCTGGAGGCCAAGCATGAAGTCAGTCGCCGTCAGGCCGATTTGGAAAAGGCCATGAAAAAAGGCGATGCGGAGAAAATCAACAAGCGCAAGGACAAGCTGGCGGTGTCCCGCAAGGAGCTGCAGGAAGCGGTGGACGAGTTGGATAAATAAMNFLYPVALLALCGAMATPLMADEQSPELTGCAAKRQGIINQIELARSRGNQDQQAGLETALAEVTTHCTDASLRKERENKVLEAKHEVSRRQADLEKAMKKGDAEKINKRKDKLAVSRKELQEAVDELDKNANANANANA
D1-35_037201671ligBCOG0272DNA ligase BATGCTGTCGTTATTGCGCGCACTTGTATGCTTTTTACTGGCCATGCCCGTCATCGCGGCCCCCTGCCCGAGCGGGCCAACCGAACGCGCCCAGGCACAGGTCGACGTCCTCCAGCAACAGATTGACGCATGGGATGACGCCTATCACCGCCTCGGCCGCTCCCTGGTGGCCGATGAGCTTTACGATCAGTCCCGGGCGCAACTGGAACATTGGCGCAACTGCCTTGGCCTCGGGTCGCCAGGCACGCCCTTGCGCTCCGCTGGCGGGAAAGTCCCCCACCCGATCGCTCATACCGGCCTGGATAAACTCAAGGACGCCGATGCCGTGCGCATCTGGTTGAACGGTCGCGACGACGTCTGGGCCCAGCCGAAAGTCGATGGCGTAGCGGTTACCCTGGTTTATCGCGGTGGACACCTGCACCAGGCGATCAGCCGCGGCGATGGCATCCAGGGACATGACTGGACCAACACTGCACGCAAGGTCCGCGATATTCCCCAACGGTTGCGCCTACCTGCGGACCTGCTCGTCCAGGGCGAGCTCTACTGGCGGCTCGACGATCACGTACAGGCCGTCAGCGGCAGCCTTAACGCTCGATCAATCGTGGCGGGGCTGATGGCCCGCAAGAACCTGAGCGCGGACCAGGCGTCTGGCATCGGCCTGTTCGTGTGGGAGTGGCCGGAAGGGCCGGCGACCCTGCCGGAACGGATTGCCGCGCTGAACGAACTGGGTTTCGCCAATGCGACCGCTTATAGCCAGCCCATCCAGGCATTGGCCGATGCGCAACACTGGCGCAACCACTGGTACCGCACGCCGCTGCCGTTCGCCAGCGACGGGGTCGTCTTGCGCCAGAGTCGACGCCCGCCCGCCGACCGCTGGCAAGCCCGGGCGCCCTCCTGGAGCGTGGCCTGGAAATACCCACACGCCCAGGCGCTGGCCAAGGTGCGCGATGTGCGTTTCAAGATCGGCCGCACCGGGCGTATTACGCCAGTGCTGGAGCTTGCGCCGGTGATGCTCGACGACCGCCAGATTCGCCGGGTAAGCGTCAGCTCACTCAGGCGCTGGGAAGGCATGGATATCCGCCCCGGCGACCAGGTCGCCATCAGCCTGGCCGGGTTGACTATTCCGCGGCTCGACAGTGTCGTGCTGCGCAGTGTCGAGCGCCGGAGCCTCGACATCCCCGCCGCTGCCGATCATCACTTCTTGAGCTGCTGGCAACCGACGCCTGGCTGTGAAAGCCAGTTCCTCGCGCGCCTGAACTGGCTCAGCGGCAAGCACGGGCTCGCCCTGCCCCATGTTGGCCCCGGCACCTGGGAGCAACTGCTGGCCGCCGGCCAGCTGGACGGATTGCTGGATTGGTTGACCCTTGATGCCGCCGAGCTTGCTAACATTGCCGGTTTCGGCGAACGCAACAGCGCACGTCTGCTCGCCAGCCTGGACAGCGCCCGGCAGCGCCCCTTCTGTCAATGGCTCAAGGCGCTTGGCGTACCGCCCACCGGAGGGGCAAGGCTCGAGGAGCGCTGGAAGGTCCTGGCTGAACGCGACACTGAACAATGGCAAGCCGAAACGGGTATCGGGCCGGGACGCGCCGCGCAACTGAGCGCTTTCTTTCGCGACCCGCAGGTACTGGCCTTGAGTGAAACATTACGCACCGCAGGGGTCGATGGCTTCTAGMLSLLRALVCFLLAMPVIAAPCPSGPTERAQAQVDVLQQQIDAWDDAYHRLGRSLVADELYDQSRAQLEHWRNCLGLGSPGTPLRSAGGKVPHPIAHTGLDKLKDADAVRIWLNGRDDVWAQPKVDGVAVTLVYRGGHLHQAISRGDGIQGHDWTNTARKVRDIPQRLRLPADLLVQGELYWRLDDHVQAVSGSLNARSIVAGLMARKNLSADQASGIGLFVWEWPEGPATLPERIAALNELGFANATAYSQPIQALADAQHWRNHWYRTPLPFASDGVVLRQSRRPPADRWQARAPSWSVAWKYPHAQALAKVRDVRFKIGRTGRITPVLELAPVMLDDRQIRRVSVSSLRRWEGMDIRPGDQVAISLAGLTIPRLDSVVLRSVERRSLDIPAAADHHFLSCWQPTPGCESQFLARLNWLSGKHGLALPHVGPGTWEQLLAAGQLDGLLDWLTLDAAELANIAGFGERNSARLLASLDSARQRPFCQWLKALGVPPTGGARLEERWKVLAERDTEQWQAETGIGPGRAAQLSAFFRDPQVLALSETLRTAGVDGFNANANANANA
D1-35_03721621rhtB_6COG1280Homoserine/homoserine lactone efflux proteinATGGACCTGACCACGCTCGCGGTCTTTATCCCGGCCTGCTTTGCGCTGAACATGGCGCCGGGCCCGAACAACCTGCTGTCGATCAGCAACGCCTCGCGTTATGGTTTCGTTCGCGCCTGCAGCGGTGGCATCGGCCGCCTGCTGGCGTTTGCGATCATGATCGCCTTGGCGGCGGTGGGGCTGACGGCGGTGTTGCATACCTCGGAGCTGCTGTTCCTGGGCATCAAGCTCGTCGGTGCCGGTTATCTTTTTTATCTCGCTGTGCAGTTGTGGCGTGCGCAACCTGAGACCGCCGGCGAGGCAGAGGCCAGTTCGATGAGCATGGCCAGCCTGGCGCGCCAGGAATTCCTCGTGGCGATCGGCAATCCGAAGGCAATCCTGCTTTTTACCGCTTTCCTGCCACAGTTCGTTGACCGCGCGGGCACCGTCACCCAGCAGTTCGCGGTGCTGGGTGGGCTGTTCCTGGCATTGGAATGCGTTGCCATTGGCTTGTATTGCTACATGGGTATTTATGCCCGGCGGCTGTTCGCCCGGCCGAGTGGCAAGCGGTTGTTCAACCGGATGTGCGCGGGGTTACTGGCGAGCGCGGCTTCGTTTTTGTTGGTGGCGCGGCGGACTTGAMDLTTLAVFIPACFALNMAPGPNNLLSISNASRYGFVRACSGGIGRLLAFAIMIALAAVGLTAVLHTSELLFLGIKLVGAGYLFYLAVQLWRAQPETAGEAEASSMSMASLARQEFLVAIGNPKAILLFTAFLPQFVDRAGTVTQQFAVLGGLFLALECVAIGLYCYMGIYARRLFARPSGKRLFNRMCAGLLASAASFLLVARRTPGPT0021036_932DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QUORUM_SENSING_RELATED_GENESCE-QSR-PUTATIVE_TRANSPORTER,PGPT0021036-rhtB-K05834NANA
D1-35_037221191metKCOG0192S-adenosylmethionine synthaseATGAGCGAATACTCCCTTTTCACCTCCGAGTCCGTGTCTGAAGGGCATCCGGACAAAATCGCCGACCAGATTTCTGATGCGGTGCTGGACGCCATCATTGCTGAAGACAAGTTCGCCCGCGTGGCGTGCGAGACTCTGGTGAAAACGGGCGTGGCGATCATCGCCGGCGAAGTCACCACCTCGGCCTGGGTCGACCTGGAGCAGATCGTTCGCGACGTGATCCTGGGCATCGGCTACAACAGCTCCGACGTCGGCTTCGACGGCGCGACCTGCGGCGTGATGAACATCATCGGCAAGCAGTCCCCGGACATCAACCAGGGCGTTGACCGCGCCAAGCCGGAAGACCAGGGCGCCGGTGACCAGGGCCTGATGTTCGGCTACGCCAGCAACGAAACCGACGTACTGATGCCGGCACCGATCACCTTTTCGCACCAACTGGTCCAGCGCCAGGCTGAAGCGCGCAAATCCGGCCTGCTGCCTTGGCTGCGCCCGGACGCCAAGTCCCAGGTGACCTGCCGTTACGAAGGTGGCAAGGTGGTTGGCATCGACGCGGTCGTGCTGTCGACCCAGCACAACCCCGAAGTGTCCTACAAAGACCTGCGCGAAGGCGTGATGGAGCTGATCGTCAAGCACGTGCTGCCTGCCGAACTGCTGTCCAAGGATACCCAGTTCCACATCAACCCGACCGGCCAGTTCATCATCGGTGGCCCGGTGGGTGACTGTGGCCTGACCGGTCGCAAGATCATCGTCGACAGCTACGGCGGCATGGCCCGTCATGGCGGCGGCGCGTTCTCTGGCAAGGACCCGTCCAAGGTTGACCGCTCGGCCGCCTACGCCGGTCGTTATGTGGCCAAGAACATCGTTGCCGCCGGCCTGGCCGAGCGCTGCGAGATCCAGGTGTCCTACGCCATCGGCGTCGCCCAGCCTACGTCGATTTCGCTGAACACCTTCGGCACCGGCAAGATTGGCGATGACAAGATCATCCAATTGGTCCGTGAAGTGTTCGACCTGCGTCCGTACGCGATCACCACCATGCTTGATCTGCTGCACCCGATGTACCAGGACACCGCAGCCTACGGCCACTTCGGCCGCACGCCGCAGACCAAGACGGTGGGTGACGATACCTTCACCACCTTCACCTGGGAAAAAACCGACCGCGCCGACGCCCTGCGCGCCGCTGCCGGCCTGTAAMSEYSLFTSESVSEGHPDKIADQISDAVLDAIIAEDKFARVACETLVKTGVAIIAGEVTTSAWVDLEQIVRDVILGIGYNSSDVGFDGATCGVMNIIGKQSPDINQGVDRAKPEDQGAGDQGLMFGYASNETDVLMPAPITFSHQLVQRQAEARKSGLLPWLRPDAKSQVTCRYEGGKVVGIDAVVLSTQHNPEVSYKDLREGVMELIVKHVLPAELLSKDTQFHINPTGQFIIGGPVGDCGLTGRKIIVDSYGGMARHGGGAFSGKDPSKVDRSAAYAGRYVAKNIVAAGLAERCEIQVSYAIGVAQPTSISLNTFGTGKIGDDKIIQLVREVFDLRPYAITTMLDLLHPMYQDTAAYGHFGRTPQTKTVGDDTFTTFTWEKTDRADALRAAAGLPGPT0020000_3272DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-AI-2_BIOSYNTHESIS,PGPT0020000-metK-K00789NANA
D1-35_03723996COQ3_1Ubiquinone biosynthesis O-methyltransferase, mitochondrialATGAATTTACGCGTGCCTTCCATTCGCCATGACGATTGCGATGAGCTGGCGGCCCTTTGCAAGGCCGGCGGCGATCCGCTGCGGCTCAATGTATTGCGCGCCCTGGCCAACGACTCGTTCGGCGTTCTGGAACTGGCGCAGATCTTCGGCATCGGCCAGTCCGGCATGAGCCACCATTTGAAGGTGCTGGCCCAGGCCGACCTGGTGGCGACGCGCCGTGAAGGCAACGCGATTTTCTACCGCCGCGCCCTGCCCCACACCGAACTGCTGGGCGGCAAGCTGCACGCAGCGCTGCTTGAAGAGGTGGACGAACTGGACTTGCCGCTGGACGTGCAAGCTCGCATCGCCCAGGTACACGGGCAACGAGCCGCCGCCAGCCAGGATTTTTTCGCCCGGGTGGCGGAGAAATTTCGCGCCCAGCAGGACCTGATCGCAGGACTGCCGCAATACCGTGACAGCGTCGTGGCGCTGCTCGACAAGCTGAGCTTCGAGCCCACCGCCACAGCGATGGAAGTCGGCCCCGGCGACGGTGCATTCCTGCCGGAACTGGCGCGGCGCTTCAGCCAGGTGACCGCGCTGGACAACAGCCCGGCGATGCTCGAACTGGCCCGCCAGGTGTGCGAACGTGAGTCCCTGGCTAATGTCCGCCTGCAACTGGCCGATGCCCTCAACGGTGTGAGCCTGCAGGTCGACTGTGTTGTATTGAACATGGTGCTTCACCATTTTGCCGCGCCGGCCGATGCACTCAAGCACATGGCCAACCTGCTGCAACCGGGCGGTAGTCTGTTGGTGACAGAGTTATGCAGCCACAACCAGAGTTGGGCCAAGGAGGCCTGCGGTGATCTCTGGCTGGGGTTTGAACAGGACGATCTGGCCCGTTGGGCCACCGCTGCGGGCCTCGTGCCCGGGGAAAGCCTCTATGTAGGCTTACGTAATGGTTTCCAGATCCAGGTTCGCCATTTTCAGCGACCGGCTGGCGACACTCACCATCGGTAAMNLRVPSIRHDDCDELAALCKAGGDPLRLNVLRALANDSFGVLELAQIFGIGQSGMSHHLKVLAQADLVATRREGNAIFYRRALPHTELLGGKLHAALLEEVDELDLPLDVQARIAQVHGQRAAASQDFFARVAEKFRAQQDLIAGLPQYRDSVVALLDKLSFEPTATAMEVGPGDGAFLPELARRFSQVTALDNSPAMLELARQVCERESLANVRLQLADALNGVSLQVDCVVLNMVLHHFAAPADALKHMANLLQPGGSLLVTELCSHNQSWAKEACGDLWLGFEQDDLARWATAAGLVPGESLYVGLRNGFQIQVRHFQRPAGDTHHRNANANANANA
D1-35_037241998tktACOG0021Transketolase 1ATGCCCAGCCGTCGTGAGCGTGCCAATGCCATTCGTGCCCTCAGCATGGATGCCGTGCAGAAAGCCAACAGCGGCCATCCCGGTGCCCCCATGGGTATGGCGGATATCGCCGAGGTGCTTTGGCGCGACTACCTCAAGCACAACCCGAGCAACCCATCGTTTGCCGACCGCGACCGCTTCGTGCTGTCCAACGGCCACGGCTCGATGTTGATCTACTCGCTGCTGCACCTGACCGGCTATGACCTGTCGATCGATGACCTGAAGAACTTCCGCCAGCTGCACAGCCGCACCCCGGGCCACCCGGAATACGGCTACACCCCAGGCGTTGAAACCACCACCGGTCCGTTGGGCCAGGGCCTGGCCAACGCCGTGGGCTTCGCTTTGGCGGAAAAAGTCCTGGCGGCGCAGTTCAACCGTCCGGGCCACGACATCGTCGATCACCACACCTACGTGTTCCTGGGTGATGGCTGCATGATGGAAGGCATTTCCCACGAAGTCGCTTCCCTGGCCGGTACCCTGGGCCTGGACAAGCTGATCGCCTTCTACGATGACAACGGCATTTCCATCGACGGTGAAGTCGAAGGCTGGTTCACCGACGACACCCCCAAGCGCTTCGAAGCCTACAACTGGCTGGTGATCCGCAACGTCGACGGTCACGACCCGGAAGAAATCAAGATCGCCATCGAGACTGCGCGCAAGAGCGCCCAGCCGACACTGATCTGCTGCAAGACCACCATCGGTTTCGGTTCGCCGAACAAGCAGGGCAAGGAAGACTGCCACGGCGCGCCACTGGGTGCCGAGGAAATCGCCCTGACCCGCGCCGCGCTGAAGTGGGAACACGGCCCGTTCGAAATCCCGGCCGACATTTATGCCGAGTGGGACGCCAAGGAAAAAGGCCGCGCGGCCGAAGCCGAGTGGGACCAGCGTTTTGCCGCCTACTCCGCCGAATTCCCTGAGCTGGCCAACGAACTGGTACGTCGCCTCAGCGGCGAGTTGCCGGCCGATTTCGCCGAGAAGGCGTCTGCCTACATCGCCGAAGTCGCGGCCAAGGGCGAAACCATCGCCAGCCGCAAGGCCAGCCAGAACACCCTGAACGCCTTCGGCCCTCTGCTGCCAGAGCTGCTGGGCGGTTCGGCCGACCTGGCCGGTTCCAACCTGACCCTGTGGAAAGGCTGCAAGGGCGTAACCGCCGAAGACGCCAGCGGCAACTACATGTACTACGGCGTTCGTGAGTTCGGCATGAGCGCGATCATGAACGGCGTTGCCCTGCACGGTGGCCTGGTGCCTTACGGCGCGACCTTCCTGATGTTCATGGAATACGCCCGCAACGCTGTGCGCATGTCGGCGCTGATGAAAAAACGCATCCTGTACGTGTTCACCCACGACTCCATCGGCCTGGGCGAAGACGGCCCGACTCACCAGCCGATCGAGCAACTGGCGAGCCTGCGCTGCACGCCGAACCTGGACACCTGGCGCCCATGCGACGCCGTGGAGTCTGCTGTGGCCTGGAAACACGCCATCGAGCGCAACGACGGCCCATCGGCGCTGATCTTCTCGCGCCAGAACCTGCAGCACCAGGAACGCGACGCCGGCCAGATCGGCGACATCAGCCGTGGCGGCTACGTGCTCAAGGACTGCATCGGCGAGCCTGAGCTGATCCTGATCGCCACCGGTTCGGAAGTCGGCCTGGCCGTCCAGGCCTTCGACAAGCTGACCGGGCAGGGCCGCAACGTGCGCGTGGTCTCCATGCCTTGCACCAGCGTGTTCGACGCCCAGGATGCCGGCTACAAGCAAGCGGTGTTGCCGTTGCAGGTCAGCGCGCGGATTGCCATCGAAGCCGCTCACGCCGATTACTGGTACAAGTACGTGGGCCTGGAAGGCCGCGTGATCGGCATGACCACCTACGGTGAGTCGGCGCCTGCGTCGGCGCTGTTCGAGGAGTTCGGCTTCACCCTGGAGAACATCCTGGGGCAGGCTGAAGAGCTGCTGGAAGACTGAMPSRRERANAIRALSMDAVQKANSGHPGAPMGMADIAEVLWRDYLKHNPSNPSFADRDRFVLSNGHGSMLIYSLLHLTGYDLSIDDLKNFRQLHSRTPGHPEYGYTPGVETTTGPLGQGLANAVGFALAEKVLAAQFNRPGHDIVDHHTYVFLGDGCMMEGISHEVASLAGTLGLDKLIAFYDDNGISIDGEVEGWFTDDTPKRFEAYNWLVIRNVDGHDPEEIKIAIETARKSAQPTLICCKTTIGFGSPNKQGKEDCHGAPLGAEEIALTRAALKWEHGPFEIPADIYAEWDAKEKGRAAEAEWDQRFAAYSAEFPELANELVRRLSGELPADFAEKASAYIAEVAAKGETIASRKASQNTLNAFGPLLPELLGGSADLAGSNLTLWKGCKGVTAEDASGNYMYYGVREFGMSAIMNGVALHGGLVPYGATFLMFMEYARNAVRMSALMKKRILYVFTHDSIGLGEDGPTHQPIEQLASLRCTPNLDTWRPCDAVESAVAWKHAIERNDGPSALIFSRQNLQHQERDAGQIGDISRGGYVLKDCIGEPELILIATGSEVGLAVQAFDKLTGQGRNVRVVSMPCTSVFDAQDAGYKQAVLPLQVSARIAIEAAHADYWYKYVGLEGRVIGMTTYGESAPASALFEEFGFTLENILGQAEELLEDPGPT0011200_3494DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_PENTOSE_METABOLISM,PGPT0011200-tktA|tktB-K00615NANA
D1-35_037251056epdCOG0057D-erythrose-4-phosphate dehydrogenaseATGCCCCAACCGCGTCCCTACAAAGTTGCACTCAACGGCTACGGCCGTATTGGTCGTTGCGTCTTGCGTGCGTTGTTCGAGCGAGGGGCAAAGGCCGGGTTCGAGATTGTGGCCATCAACGATCTGGCTGACATGGCCAGCATCGAATACCTGACACGCTTTGACTCCACCCACGGCCGGTTTCCCGGCGAAGTGCGGGTCGAGGGCGATTGTCTGCACATTAATGGCGACTGCGTGAAGGTCCTGCGCAGCGCCACGCCCGAAGGCATCGATTGGGCGTCCCTGAACGTCGATCTGGTGCTTGAGTGCTCCGGCGCCTATAACACCCGTGACGATGGCCAGCGGTTCATCGCTGCCGGCGCGCCACGGGTGCTGTTCTCCCAGCCGATGGCCAGCGAGGCCGACGTTGACGCCACCATCGTCTACGGTGTGAACCAGGACTGCCTGACTGGCGAAGAGCTGCTGGTGTCCAACGCGTCCTGCACCACCAACTGCGGCGTGCCGCTGTTGCGCCTGCTGGACCAGGCTATCGGCCTGGAATACGTGTCGATCACCACCATCCACTCGGCGATGAATGATCAGCCGGTGATCGACGCCTATCACCACGAGGATTTGCGCCGAACCCGTTCGGCCTTCCAGTCGGTGATTCCGGTGTCCACTGGTCTGGCGCGCGGCATTGAACGGCTGCTGCCGGAACTTGCCGGGCGAATTCAGGCCAAAGCCGTGCGGGTGCCGACGGTCAACGTGTCCTGCCTCGACATCACGATGCAGACCGTGAGCGATACCGACGCCATCGAGGTCAACCGGATCCTGCGCGAAGCCGCCACCAGCGGCCCGCTCAAAGGCCTTCTGGCCTATACCGAGTTGCCTCACGCCAGTTGTGATTTCAACCACGACCCACATTCGGCCATCGTCGATGCCAGCCAGACCCGCGTTTCCGGGCCCAGGCTTGTGAACATCCTGGCCTGGTTCGACAACGAATGGGGTTTTGCCAATCGTATGCTGGACGTTGCCGAGCATTACCTGCAAACCGCTTCCAATAAACCTGCTCTCTAAMPQPRPYKVALNGYGRIGRCVLRALFERGAKAGFEIVAINDLADMASIEYLTRFDSTHGRFPGEVRVEGDCLHINGDCVKVLRSATPEGIDWASLNVDLVLECSGAYNTRDDGQRFIAAGAPRVLFSQPMASEADVDATIVYGVNQDCLTGEELLVSNASCTTNCGVPLLRLLDQAIGLEYVSITTIHSAMNDQPVIDAYHHEDLRRTRSAFQSVIPVSTGLARGIERLLPELAGRIQAKAVRVPTVNVSCLDITMQTVSDTDAIEVNRILREAATSGPLKGLLAYTELPHASCDFNHDPHSAIVDASQTRVSGPRLVNILAWFDNEWGFANRMLDVAEHYLQTASNKPALPGPT0009145_89DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009145-epd-K03472NANA
D1-35_037261164pgkCOG0126Phosphoglycerate kinaseATGACCGTGTTGAAGATGTCCGACCTCGATCTGCAAGGTAAGCGCGTACTGATTCGCGAAGACCTCAACGTCCCCGTCAAGGACGGTGTTGTCACCAGCGACGCGCGCATCCTGGCCTCGCTGCCGACCATCAAGCTGGCCTTGGAAAAAGGCGCGGCGGTGATGGTCTGCTCGCACCTGGGCCGTCCGACCGAAGGTGAATTCTCGGCCGAGAACAGCCTCAAGCCGGTGGCGGATTACCTGAGCAAGGCCCTGGGCCGCGACGTGCCGTTGATCGCCGATTACCTGGGCGGCGTCGACGTCAAGGCTGGCGATGTCGTGCTGTTCGAAAACGTGCGCTTCAACAAGGGCGAGAAAAAGAACGCCGATGAGCTGGCCCAGCAATACGCCGCCCTGTGCGACGTGTTCGTGATGGACGCCTTCGGCACCGCGCACCGCGCCGAGGGCTCGACCCACGGCGTGGCCAAGTTCGCCAAAGTCGCCGCCGCTGGTCCGTTGCTGGCGGCCGAGCTGGACGCGCTGGGCAAGGCCCTGGGCTCGCCAGCCCAGCCGATGGCCGCCATCGTTGCCGGCTCCAAGGTTTCGACCAAACTGGATGTGCTCAACAGCCTGAGCCAGGTCTGCAACCAGTTGATCGTCGGTGGCGGCATCGCCAACACCTTCCTCGCCGCCGCCGGTCACCCGGTAGGCAAATCCTTGTACGAGCCGGATCTGCTGGACACGGCCCGTGAAATCGCCGCCAAGGTCAGCGTACCGTTGCCCGTGGACGTGGTGGTTGCCAAGGAATTCGCCGAAAGCGCCACCGCCACCGTCAAGCTGATCGACGATGTGGCCGAGGACGACATGATCCTCGATATCGGCCCGCAAACCGCGGCGAACTTCGCCGAACTGCTGAAATCCTCCCAGACTATCCTGTGGAACGGTCCGGTCGGTGTGTTCGAGTTCGACCAGTTTGGCAACGGCACCAAGGTGCTGGCCCAGGCGATCGCCGAGAGCACTGCGTTTTCCATCGCGGGTGGTGGCGACACCCTGGCTGCCATCGATAAATATGGCGTAGCCGAGCAGATCTCCTACATTTCTACCGGTGGTGGCGCGTTCCTCGAATTCGTCGAGGGCAAAGTGCTTCCTGCCGTGGAAGTCCTGGAAAGCCGGGCCAAGGCCTGAMTVLKMSDLDLQGKRVLIREDLNVPVKDGVVTSDARILASLPTIKLALEKGAAVMVCSHLGRPTEGEFSAENSLKPVADYLSKALGRDVPLIADYLGGVDVKAGDVVLFENVRFNKGEKKNADELAQQYAALCDVFVMDAFGTAHRAEGSTHGVAKFAKVAAAGPLLAAELDALGKALGSPAQPMAAIVAGSKVSTKLDVLNSLSQVCNQLIVGGGIANTFLAAAGHPVGKSLYEPDLLDTAREIAAKVSVPLPVDVVVAKEFAESATATVKLIDDVAEDDMILDIGPQTAANFAELLKSSQTILWNGPVGVFEFDQFGNGTKVLAQAIAESTAFSIAGGGDTLAAIDKYGVAEQISYISTGGGAFLEFVEGKVLPAVEVLESRAKAPGPT0018015_5731DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018015-pgk-K00927NANA
D1-35_03727225hypothetical proteinATGGTCAAGACGTTCATGTCGCTGATGGCCGCGACGCTGTTGGTGGCTTGCTCGAGCAGCCCGCAAGCCACCGCGCCGGATACGGCGGCGCCAGTGCCTGAGCAAGGCTGTTATCAGGCTGACTGGCAGGCCGAGACCAACCCGGTACTGAACAAGCGTTCCGGGCCGGACGGCCTGGATAAATACGAGACGCAGGCGCCGGTCAAGGAACATGGTTGCCCTTGAMVKTFMSLMAATLLVACSSSPQATAPDTAAPVPEQGCYQADWQAETNPVLNKRSGPDGLDKYETQAPVKEHGCPNANANANANA
D1-35_03728336hypothetical proteinATGAAAGGCTTTATCGCCGTCGTGGCGTTGGCATTGTTGGCCGGTTGCTCGCAACTGGGTTTTTTGCAGTCGTCCGAGCCTGCTGCAGAGGGCTGGACGAGTTGGACATGTGACAGCGAGGCCAAGGTGCTCTGGCGTTATGCCGATGCAGCGCGCAAGGAAGTCGATGTCCGGCTGGGCGGCGCTGACAAGGTTTATCGCCTCAAGCTCGAGCCCGGCGCCGAAGGTTCGCTGTACAGCGATGACATGCTGGCGTTGCACATCAAGGGCGAGGAAGGCCTGGCGTATTGGGTCGCCACCAATGATCTGATTGGGCGGGGCTGCAAGGCCGATTGAMKGFIAVVALALLAGCSQLGFLQSSEPAAEGWTSWTCDSEAKVLWRYADAARKEVDVRLGGADKVYRLKLEPGAEGSLYSDDMLALHIKGEEGLAYWVATNDLIGRGCKADNANANANANA
D1-35_037291065cbbAFructose-bisphosphate aldolaseATGGCACTTATCAGCATGCGTCAGATGCTGGACCACGCAGCCGAGTTCGGCTACGGCGTCCCAGCCTTTAACGTCAACAACCTTGAGCAGATGCGCGCCATCATGGAAGCCGCTGACAAGACTGACTCCCCGGTGATCGTCCAGGCTTCGGCCGGCGCTCGCAAATACGCCGGCGCGCCGTTCCTGCGTCACCTGATCCTGGCGGCAATCGAAGAATTCCCGCACATCCCGGTGTGCATGCACCAGGACCACGGCACCAGCCCTGACGTCTGCCAGCGCTCCATCCAACTGGGCTTCAGCTCGGTCATGATGGACGGCTCCCTGGGCGAAGACGGCAAGACCCCGACCGACTACGAATACAACGTCCGTGTCACCCAGCAAACCGTCGCCATGGCCCACGCCTGCGGCGTCTCGGTGGAAGGTGAGCTGGGTTGCCTGGGCTCGCTGGAAACCGGCATGGCCGGTGAGGAAGATGGCATCGGCGCCGAAGGCGTGCTGGATCACAGCCAGATGCTGACCGACCCGGAAGAAGCCGCCGACTTCGTCAAGAAAACCCAGGTCGACGCCCTGGCGATCGCCATTGGCACCAGCCACGGCGCCTACAAGTTCACCAAGCCGCCTACCGGCGACGTGCTGGCCATCGACCGCATCAAGGAAATCCACAAGCGCATCCCCAACACTCACTTGGTGATGCACGGTTCTTCCTCGGTACCGCAGGAGTGGCTGGCGATCATCAACCAGTACGGTGGCGACATCAAGGAAACCTACGGTGTGCCGGTCGAGGAAATCGTCGAAGGCATCAAGTACGGCGTGCGCAAGGTCAACATCGACACTGACCTGCGCCTGGCTTCCACCGGTGCCATGCGTCGTCTGATGGCGACCAATCCTAGCGAGTTTGATCCGCGTAAATTCTTCGGTGCGACCGTGACGGCGATGCGTGATGTGTGTATTGCGCGTTATGAGGCGTTTGGTACGGCGGGTAATGCGTCGAAGATCAAGCCGATCTCGCTGGAAGCCATGTATCAGCGGTATTTGAAGGGTGAGTTGAACGCTAAGGTCAACTAAMALISMRQMLDHAAEFGYGVPAFNVNNLEQMRAIMEAADKTDSPVIVQASAGARKYAGAPFLRHLILAAIEEFPHIPVCMHQDHGTSPDVCQRSIQLGFSSVMMDGSLGEDGKTPTDYEYNVRVTQQTVAMAHACGVSVEGELGCLGSLETGMAGEEDGIGAEGVLDHSQMLTDPEEAADFVKKTQVDALAIAIGTSHGAYKFTKPPTGDVLAIDRIKEIHKRIPNTHLVMHGSSSVPQEWLAIINQYGGDIKETYGVPVEEIVEGIKYGVRKVNIDTDLRLASTGAMRRLMATNPSEFDPRKFFGATVTAMRDVCIARYEAFGTAGNASKIKPISLEAMYQRYLKGELNAKVNPGPT0017615_1420DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017615-fbaA|cbbA-K01624NANA
D1-35_03731279hypothetical proteinATGCGTAGCACTCAACAATTCAGCATCACCCTGCCCAACCAAATGGCCGACCTAGTGAAAGCCAAGGTGGCCGCTGGCGAGTACGCCACTGAAAGTGAAGTCATTCGCGATGGTCTGCGCGCGCTACTGGCTCGTGATCGTGCTTTGGAAAACTGGCTTATAGGCCAGGTAGCTCCTGCTTACGATGCCTTAAAAGCTGATCCGTCGCGAGCACTAAGCGCTGATGATGTGCGCTCCCGATTGGCTGCAGAGCACCAGAACCTCACTGCAGAATCCTGAMRSTQQFSITLPNQMADLVKAKVAAGEYATESEVIRDGLRALLARDRALENWLIGQVAPAYDALKADPSRALSADDVRSRLAAEHQNLTAESPGPT0027540_350DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-ParE-ParD|paaAR_TOXIN-ANTITOXIN_SYSTEM,PGPT0027540-antitoxin_parD1_3_4-K07746NANA
D1-35_03732315hypothetical proteinATGGTCTATACCCTCAAGTTTGCACCGGAAGCCCTTGAGCAATTAGCTGCGCTCTATCGCTACATTGCCGCAGCGGCTTCGACGGAAATTGCCCATAGGTATACCGACGCTATCGTGACCTACTGTGAAGACCTTCGGACATTCCCGCACAGAGGGAACCAGAGGGACGATATACGCCCGGGGTTGCGTATAACAAACTACCGCAAACGAACTGTGATCGCCTTTACCGTTGAACCCGAACAGGTTTTCATTTTGGGCGTTTTTTACGGCGGACAGGACTTCAAGGTCGCTTTGCAGATCGAACAGGAAGATTGAMVYTLKFAPEALEQLAALYRYIAAAASTEIAHRYTDAIVTYCEDLRTFPHRGNQRDDIRPGLRITNYRKRTVIAFTVEPEQVFILGVFYGGQDFKVALQIEQEDPGPT0027550_507DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-ParE-ParD|paaAR_TOXIN-ANTITOXIN_SYSTEM,PGPT0027550-toxin_parE1_3_4-K19092NANA
D1-35_03734285hypothetical proteinATGAAAACCGAACAATTGCTTGGCCGCTTTACCCCACTCACCCCAATCGCCACCACCCAACCTATCCTGTTCATCGACAGCACCGCGCCACTGACCGAGCTTCACGCCTGCGCCAGCGAACGCTTGCATGCCACTCTTGATTACCTGACGCTCATGGCCTGCACCACCCTGCGCGATTCGGCTGCCGGGGATCTCAATACCCTCACTAATTTCGCCCGGATTCTGGTTCAGGATGTGGCCGATGTGTTCGGTGTCATTGAGCAACGTGGGCTCGAAGAGCACTGAMKTEQLLGRFTPLTPIATTQPILFIDSTAPLTELHACASERLHATLDYLTLMACTTLRDSAAGDLNTLTNFARILVQDVADVFGVIEQRGLEEHNANANANANA
D1-35_03736669alyA_1Alginate lyaseATGGTCGATCTAGCAACCTGGAACCTGAGCATCCCCGAAGGCAGCCCGCCGAAAACCATCGAAACCCCTCGACTGGTGGATGGATTCAGGGACAAGTACTTCAACTCCGAAGGCAGCACGGTGTATTTCTGGTCGCCGGTGACCGGCACCAAGACCGAAAACGCGATCTACCCACGCAGCGAACTACGTGAGACCTACCGAGACGGCACCCTGCGCAACTGGCTTTACCCAGAGGCCGATAATCAATTGCGCGCAACGCTGGTGGTCAATCAGGTTCCCAGCAGCGGCAAAATCGTGATTGGTCAGATCCATGCCAAGGACAGCAACAAACCGATGGTGAAGCTGGAATACCAATTCAAGGACGCCACCAACACCGGCAACATCGTCGCCAAGGTGCGCATGCGCCCCGATGACAGCAAAAGCCGGGTCATCACGGTAGCGACAGGCGTGAAGCTTGACCGGGCCTTTTCTTATCGGATCCACCTGGATCGCACCGGCGACCTGGGCATCACCGCCGCCGGTAATAGCTGGTACACCACGGTCGGCGCCGCCTGGCGGGTCAAGCCGTTGTATTTCAAGGCCGGGGTGTATGTGCAGGACAACAGTGGCTATACCAGCGAAGGTGGCAAGGTGACGTTCAGCAAATTGGACATCGATCACAACACCTGAMVDLATWNLSIPEGSPPKTIETPRLVDGFRDKYFNSEGSTVYFWSPVTGTKTENAIYPRSELRETYRDGTLRNWLYPEADNQLRATLVVNQVPSSGKIVIGQIHAKDSNKPMVKLEYQFKDATNTGNIVAKVRMRPDDSKSRVITVATGVKLDRAFSYRIHLDRTGDLGITAAGNSWYTTVGAAWRVKPLYFKAGVYVQDNSGYTSEGGKVTFSKLDIDHNTPGPT0019417_602DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERSPLANT_DERIVED_ALGINATE_DEGRADATION,PGPT0019417-putative_alginate_lyase_2-NANANA
D1-35_03737669alyA_2Alginate lyaseATGATCGATCTCGCAACCTGGAACCTGAGCATTCCTGAAGGCGCACCACCGGCGACCATCCAGACTTCGCAACTGGTACAAGGCTTCAAGAACCAGTATTTCAACTCGGAAACCGGCACCGTGTTTTTCTGGGTCCCCGTCACGGGCGCCACGACGGCCAACGCCATTTACCCTCGCAGCGAGCTGCGCGAAACCAACAGCGACGGCACGTTGCGCAATTGGTTGTACCCGGCTGCGGATAACAAGCTGGCCGCCACGTTGACCGTCGGCCAGGTGCCCAGCACCGGCAAGCTGGTGATTGGCCAGATCCATACCAAGGACAGCACCAGCCCCATGGTGAAGCTGGAATACCAGTACAAAACCTACAGCTCCACCGGCAACATCGTCGCCAAGGTGCGCATGCGTCCCGACGACGCCACGGGCCAGGTCATCACCATCGCCACCGGCATCAAGCTCAACCAGCCGTTCTCGTACCTGATCCACCTCAACCGTGCAGGCCTCTTGACCATCAACGGCGCCGGCTATCAGTGGAGTGCCACCGTCAGCAACACCTGGAGCACCAAACCGTTGTACTTCAAGGCAGGCGTCTACGTGCAGGACAACGCTGGTTACGCCACCGAAGGCGCAAAAGCCACGTTCAGCCTGCTGGATATCGATCACAACCTCTAAMIDLATWNLSIPEGAPPATIQTSQLVQGFKNQYFNSETGTVFFWVPVTGATTANAIYPRSELRETNSDGTLRNWLYPAADNKLAATLTVGQVPSTGKLVIGQIHTKDSTSPMVKLEYQYKTYSSTGNIVAKVRMRPDDATGQVITIATGIKLNQPFSYLIHLNRAGLLTINGAGYQWSATVSNTWSTKPLYFKAGVYVQDNAGYATEGAKATFSLLDIDHNLPGPT0019417_611DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERSPLANT_DERIVED_ALGINATE_DEGRADATION,PGPT0019417-putative_alginate_lyase_2-NANANA
D1-35_037382124rcsC_19Sensor histidine kinase RcsCATGGAATGCGCGCAACCCCCGTTTGGCGAAGACAGCTCCGTCCTTTTGATTGTTGATGACTACCCTGAAAACCTGCTCAGCATGCGAGCGTTGTTGCAGCGTCAGGATTGGCAGGTCATGACCGCGTCCTCGGGTGTCGAGGCCCTCAACCTGCTACTCGAACATGACATCGACCTGGTGCTGCTGGATGTGCAGATGCCGGACATGGATGGCTTCGAAGTAGCGCGTCTGATGCGTGGCAGCCAGCGCACGCGGCTCACGCCGATCATCTTCCTGACCGCCAACGAGCAGTCCCAGGACGCGGTGATCAAGGGTTACGCCAGCGGCGCGGTGGATTACCTGTTCAAGCCATTCGACCCGCAGATTCTCAAGCCCAAGGTCCACGCGTTGCTCGAGCACCAGCGCAATCGCCGGGCCTTGCAGCGTTTGAGCCAGGACCTGGAGGCAGCCAGGGCCTTTAATGCCTCGGTGCTGGATAACGCCGCCGAAGGCATCCTGGTGGTGGATGAAGGCGGTTTCATCCGTTTTGCCAACCCTTCGACGTGCCGCTTGCTCAACGCCACTGCGGACCGATTGCAAGGGATGCCCTTCCTGGATTTCCTGCAGAAACCCCATATTCCCGAGTGGATCGATTCGGATATCCATGCCGCCTATCGACGTGGCGAAACCTGGCGCTTGCACGACGCCGTGCTGCGCACCGCGCCCGGCCAGCAAGTGTCGGTGGCCTTGTCCTGTGCCCCCCTGCCTTCTGAACAAAAGGCCATGGTGGTGACGCTTCAGGACATGTCGGTGGTTCGTCATCTGCACCAGCAGCTGGAGTTCCAGGCCGTCACTGATCCCCTGACCGGTTTGCTCAACCGCAGGGGGTTCTATCAGACCGCCGAAAACCTGCTGATGCGCAGCGAACGGCTGGAAAGCAACTGGGTGCTGTTGTACCTGGACCTCGATGGCTTCAAACGGGTCAATGACTCGCTGGGCCACGATGCCGGCGACCGGGTGTTGCGCTGGGTGTCGGAACAGTTGAAGGCCTGCCTGCGCCCGTTCGATATCCTCGCGCGGCTCGGCGGCGATGAGTTCACGGCGCTGCTGGATCTTGAGGTGCCCGAGCAGGCGGCAAAGATTGCCGAGAAACTCATCGAGCGCGTCTCGGTCTGCCAGCAGATCGAAGGCATGGACGTGGCGCTGGGCGCCAGTATCGGCATCGCCACGTACCCGGACTGCGGCTCCAACCTCGACGGGTTGCTTCGCGCGTCCGACATCGCCATGTACGAGGCCAAGCGCGCCGGCCGCCAGCAGTATCGTTTCTACGATCACGAAATGAACGGCCGAGCCCGTTCACGGCTGATGCTTGAGGAAAGCGTACGTTCGGCCATCGAAAACCGCGACTTCAATATGGTCTATCAACCACAGGTCAGCATCCTCGACGGACGGACCCGAGGGTTCGAGGCGCTGCTGCGCTGGCAGCATCCCAGCGTCGGGGACGTACCGCCGGGCTTGTTCCTGCCGTTGCTGGAGGAAGCTCGGTTGATCAGTCGGCTGGGCAGCTGGATTTACCATCGCAGTGCGTCCCAGCGCAAAGTATGGGAGCGGATGTTTCCCGACGACCTGGTGTTGGGCGTGAGCCTGAGCAGTACCCAGTTCGGCATGCCCAACCTGGTGACCGAGTTGCGCCAGGTCCTGGATCGCCATGCGTTGAAGCCGCGGCAGCTGGAGGTCGAGATCACCGAAGACGCGCTGATGCGCAACCCCGACGAAACCCATAAGCAATTGCGCCTGCTGCGCCACCTGGGCGTGCGGGTGGCGCTGGACGACTTCGGTTCGGGGCCTTGCTCGCTGGCGCATCTGCGCGATCTCGAACTCGATACGCTCAAGCTTGATCGGCACTTGATCGCCCGCTTGCCGGACTCGCCCAGGGACGCTGCGCTGGCCGCCTCGGTGATCGACCTGTGCAAGCAATTGGGCTTGCGAGTGATCGCCGAGGGGGTCGAGACGCCGCAGCAGTATCACTGGCTCAAGGCCCATGGCTGTGAATATGTGCAAGGCTTCCTCGTGGCGCGGCCCTTGATGGCCGAGGACACAGATGCCTTCGCGCGACCATTCGACTGGAGCGCGGTGCCGGCCTGAMECAQPPFGEDSSVLLIVDDYPENLLSMRALLQRQDWQVMTASSGVEALNLLLEHDIDLVLLDVQMPDMDGFEVARLMRGSQRTRLTPIIFLTANEQSQDAVIKGYASGAVDYLFKPFDPQILKPKVHALLEHQRNRRALQRLSQDLEAARAFNASVLDNAAEGILVVDEGGFIRFANPSTCRLLNATADRLQGMPFLDFLQKPHIPEWIDSDIHAAYRRGETWRLHDAVLRTAPGQQVSVALSCAPLPSEQKAMVVTLQDMSVVRHLHQQLEFQAVTDPLTGLLNRRGFYQTAENLLMRSERLESNWVLLYLDLDGFKRVNDSLGHDAGDRVLRWVSEQLKACLRPFDILARLGGDEFTALLDLEVPEQAAKIAEKLIERVSVCQQIEGMDVALGASIGIATYPDCGSNLDGLLRASDIAMYEAKRAGRQQYRFYDHEMNGRARSRLMLEESVRSAIENRDFNMVYQPQVSILDGRTRGFEALLRWQHPSVGDVPPGLFLPLLEEARLISRLGSWIYHRSASQRKVWERMFPDDLVLGVSLSSTQFGMPNLVTELRQVLDRHALKPRQLEVEITEDALMRNPDETHKQLRLLRHLGVRVALDDFGSGPCSLAHLRDLELDTLKLDRHLIARLPDSPRDAALAASVIDLCKQLGLRVIAEGVETPQQYHWLKAHGCEYVQGFLVARPLMAEDTDAFARPFDWSAVPAPGPT0023624_2342DIRECT 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
D1-35_03739504ygjPCOG1451UTP pyrophosphataseATGACCGTGCTCAAATACCTCCAGGCGTACCCCGCCGCGCTGCAAGCCCAGGTGCAGCAACTGATTGCCGAGGATCGACTGGGCGATTACCTGCAACAACGTTATCCCGGCCGCCATCCGATCCAGAGCGACAAGGCGTTGTACGGCTATGCGCTGGATCTCAAGCAGCGCTACCTGCGTAACGCGCCGGCCATCGACAAAGTGCTGTTCGACAACCGCCTCGACCTGACCCATCGCGCGCTTGGGCTGCATACGGCGGTGTCGCGGGTACAGGGCGGCAAGCTCAAGGCCAAGAAAGAAATCCGCATTGCTTCTTTGTTCAAGGACGCAGCGCCCCAGTTTCTGGAAATGATCGTGGTGCACGAGTTGGCCCACTTCAAGGAATCGGACCACAACAAGGCTTTCTACCAGCTGTGCGAGCACATGCTGCCGGGCTATCACCAGCTGGAATTCGACCTGCGGGTGTACCTGACCTGGCGGGACCTGCAACAAGACAAGGGATGAMTVLKYLQAYPAALQAQVQQLIAEDRLGDYLQQRYPGRHPIQSDKALYGYALDLKQRYLRNAPAIDKVLFDNRLDLTHRALGLHTAVSRVQGGKLKAKKEIRIASLFKDAAPQFLEMIVVHELAHFKESDHNKAFYQLCEHMLPGYHQLEFDLRVYLTWRDLQQDKGNANANANANA
D1-35_03740297hypothetical proteinATGGACGTCAGCAAGACCAAGAGCAGCTTCTATCGTCGACTGTACGTGGCTTACCTGATCGACAGCGGCCTGGCCAGCAACATTCCCGCGCTCACCGAAGCTACCGGCATGCCTCGGCGCACCGCCCAGGATACCGTCGTGGCGCTGGCGGACCTGGACATCCTCTGTGAATTCGAGCAGCAGGAGGGCGCGCGCAACCATGCCGGGCGGTATCGGATTCGCGATTGGGGGGCGATTGATCGGCGGTGGATCGAGCAGAATCTGCAGCGGATCAAGGCGGTGTTGGAGTATCCCTGAMDVSKTKSSFYRRLYVAYLIDSGLASNIPALTEATGMPRRTAQDTVVALADLDILCEFEQQEGARNHAGRYRIRDWGAIDRRWIEQNLQRIKAVLEYPNANANANANA
D1-35_03741453elaACOG2153Protein ElaAATGGATATCGACTGGGTCTGCAAACATCACACTGACCTGAGCAAGGAACAGCTATACGCCATCCTGAAACTGCGCGCCGAGGTCTTCGTCGTCGAACAGAACTGTGCCTACCCGGACGTCGACGGACTGGACCTGGAAGGCGACACCTGCCATCTGATGGCCTGGCAGGACAACCACCTGGTCGCTTACCTTCGTTTGCTCGATCCGCATTCGCGAAACAGCGATGTGGTGATCGGCCGCGTGGTCATCGCCACCGAGGCGCGAGGGCAAGGGCTGGGGCATACACTGATGGAACAAGCCTTGAAGCAGGCCGAAAAGCACTGGCCCGGCGTGTCGATCTCATTGTCGGCCCAGGCGCATCTGCAGGGGTATTACGGGCGATACGGGTTTGAAGTGGTGGGCGTGGAATATCTCGAGGATGGGATTCCGCACATCGGGATGCATCGGCCCTGAMDIDWVCKHHTDLSKEQLYAILKLRAEVFVVEQNCAYPDVDGLDLEGDTCHLMAWQDNHLVAYLRLLDPHSRNSDVVIGRVVIATEARGQGLGHTLMEQALKQAEKHWPGVSISLSAQAHLQGYYGRYGFEVVGVEYLEDGIPHIGMHRPNANANANANA
D1-35_03742738hypothetical proteinATGCCGCGATTGCATCGAGCTCTTGCTTTGGTCGGGTTGCTGTTGCTGAGCCACAACGCCTGTGCGCAGAAACTGCGTCTGGTCGCCGATGCCTGGCCACCCTTTACCGACTCGACGCTGGTCAATGGCGGCCTTGCGACCGATATCGTCACCACCGCCCTGGCGCGCGCCGGTTATGCCAGTGATTTCGAGCAGGTGCCCTGGGCCCGGGCGATGCTGGGGATCAGCGAAGGGCGGTATGACGTGCTGATCAATGCCTGGTACGCCGAGGAACGCACCCATGTAGGCCAGTTCTCGGCCGAGTACCTGCTCAACCGCGTGCGGTTTATCAAGCGCAAGGACTCGCCCATCGACTTCGACAACCTGCAGCAGTTGTATGCCTATCCCATCGCCGTGGTTCGTGGCTACGCCTATTCCAAGGCGTTCGATGAGGACGAGAAGATGCAGAAAATCCCTGTGCATAATTTTGCGATGGCCGTGCGCATGCTCGCCGCCGACCGAGTGAAGCTGACGCTGGAAGACGAATACGTCGCCCGTTATTACCTGGCCCGCGAATCCGCCAAGGTGCGCAATGCCGTGGAGTTTCTACCCAAGCCGTTGAGTGAAAACAGCCTGCATATCCTGGTCAGCCTGAAGAATCCCGAGCATGAGCAGATCGTCGCCGGGTTTGATCGGGAGATTGCGGCGATGAAGGCGGATGGGAGTTATCAGAAGTTATTGAAGGCGCATGGGATGTAGMPRLHRALALVGLLLLSHNACAQKLRLVADAWPPFTDSTLVNGGLATDIVTTALARAGYASDFEQVPWARAMLGISEGRYDVLINAWYAEERTHVGQFSAEYLLNRVRFIKRKDSPIDFDNLQQLYAYPIAVVRGYAYSKAFDEDEKMQKIPVHNFAMAVRMLAADRVKLTLEDEYVARYYLARESAKVRNAVEFLPKPLSENSLHILVSLKNPEHEQIVAGFDREIAAMKADGSYQKLLKAHGMPGPT0020800_15680DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-35_037432184yccSCOG1289Inner membrane protein YccSATGTCATCGACCTCGTTCAGCCAGTCTCTGCGTCGCCTTTGGGCGTTGGATAAATTCAGCTATAGCGTGCGGGTGTTTATTGCCCTGACCGGCAGCATGGTGCTGTGTTGGTACCTGGATAAGATGGCGCTGCTGATTCCGCTGTTCCTCGGCATCATCGCCAGCGCATTGGCCGAGACCGACGACAGCTGGCAAGGCCGTCTCAACGCGCTGGCCGTGACGCTGGTGTGCTTCAGCATCGCCGCGCTGTCGGTGGAGTTGCTATTTCCCTACCCCATCCTGTTCATCGTCGCCCTGGCCCTGGCGGCCTTCGGTCTGACCATGCTCGGCGCCCTGGGCGAGCGCTATGGCGCGATTGCCTCGGCTACCCTGATTCTTTCGGTCTACACCATGATCGGCGTGGACCAGCGCGGCGGTGCGATCACGGACTTCTGGCATGAGCCGGTGTTGCTGGTGGCCGGCGCCGCCTGGTATGGCCTGCTCTCGGTGTTGTGGCACGCGCTGTTTTCCAACCAGCCGGTGCAGCAGAGCCTGGCGCGCCTGTTCCGCGAACTGGGGCGCTACCTGAAACTCAAGTCATCGCTGCTGGAGCCGATCCGTCAGCTGGATATCGAGGCCCGACGCCTGGAGCTGGCCCAGCAGAATGGCCGGGTGGTGGCGGCGCTCAACAGCGCGAAGGAAATCATCCTGCACCGCGTCGGCAATGGCCGGCCGGGCTCGAAAGTCAGCCGCTACCTGAAGCTGTACTTCCTTGCCCAGGACATCCATGAACGCGCCAGCTCCTCGCACTATCCCTATAACGCCCTGGCCGAGGCGTTCTTTCACAGCGACGTACTGTTCCGCTGCCAGCGCCTGCTGCGCCAGCAAGGCAAGGCTTGCCTGGCACTGGCCGAGTCCATCCAGTTGCGCCAGCCGTTCGTCTACGACGACAGCTTCGCCGAAGCCCTGAACGATTTGCATGCTTCCCTGGAGCACCTGCGCATCCAGAGCAACCCGGCCTGGCGCGGCCTGTTGCGCTCGCTGCGGGCGTTGTCGGTCAACCTCGGCACCATGGACCGCCTGCTCAGCGACGCGAGCAACCCCGACGCCCTCGCCGACGCCACTGACAGCAGCCTGCTGGACCGCTCGCCACGCAACCTCAAGGACGTCTGGGTCCGCCTGCGCACGCAGCTCACGCCGACGTCGCTGCTGTTCCGTCATGCCCTGCGCCTGCCCCTGGCGCTGAGCGTGGGCTACGCGATGGTGCACCTGATCCACCCCTCCCAGGGCTACTGGATCATCCTCACCACACTGTTCGTCTGCCAGCCCAACTACGGCGCCACGCGGCGCAAGCTCGGCCAGCGGATCATCGGCACCGCCATCGGCCTGACGGTGGCCTGGGCGCTGTTCGACCTGTTTCCCAATCCGCTGGTGCAGTCGTGCTTCGCCATTGCCGCCGGGGTGGTGTTCTTTACCAACCGCACCACCCGCTACACCCTGGCGACTGCCGCGATCACCGTCATGGTGCTGTTCTGCTTCAATCAGGTCGGCGACGGCTACGGGCTGCTGCTGCCACGGCTGTTCGATACCTTGCTCGGCAGCCTGATCGCCGGGCTGGCGGTGTTCCTGTTCCTGCCAGACTGGCAGGGCCGGCGACTGAACAAGGTGCTGGCCAACACGCTGACCTGCAACAGCATCTACCTGCGCCAGATCATGCAGCAATACGCCGCGGGCAAAAGCGACGACCTGGCCTATCGCCTGGCCCGGCGCAACGCCCATAACGCCGACGCGGCGCTGTCCACGACGCTGGCGAACATGCTGATGGAGCCGGGCCATTTCCGTAAGGAGGCCGACGTAGGGTTCCGCTTCCTGGTGCTGTCCCACACCCTGCTCAGTTACTTGTCGGGGCTCGGGGCCCACCGGGGCACCGAACTGCCGACTGAGGTGCGCGAGCAGCTGATCGACGGCGCCGGAGCAAGGCTGGCGACCAGCATCGATGAAATTGCCCAGGGCCTGGCGAGCAAACAGCCGATCGCGATCCAGAGCGACGACGAAGAAGCCCTCGCCAGCGAGCTTGAGCTGATGCCCGATGAAATCGACGAAGGCCAGCGGCTGGTGCAGACGCAACTGGCGTTGATCTGCCGGCAGTTGGGGCCGTTGCGGACGCTGGCGGCGCACCTGATCAAGGACACCAGTGAGGCTTGAMSSTSFSQSLRRLWALDKFSYSVRVFIALTGSMVLCWYLDKMALLIPLFLGIIASALAETDDSWQGRLNALAVTLVCFSIAALSVELLFPYPILFIVALALAAFGLTMLGALGERYGAIASATLILSVYTMIGVDQRGGAITDFWHEPVLLVAGAAWYGLLSVLWHALFSNQPVQQSLARLFRELGRYLKLKSSLLEPIRQLDIEARRLELAQQNGRVVAALNSAKEIILHRVGNGRPGSKVSRYLKLYFLAQDIHERASSSHYPYNALAEAFFHSDVLFRCQRLLRQQGKACLALAESIQLRQPFVYDDSFAEALNDLHASLEHLRIQSNPAWRGLLRSLRALSVNLGTMDRLLSDASNPDALADATDSSLLDRSPRNLKDVWVRLRTQLTPTSLLFRHALRLPLALSVGYAMVHLIHPSQGYWIILTTLFVCQPNYGATRRKLGQRIIGTAIGLTVAWALFDLFPNPLVQSCFAIAAGVVFFTNRTTRYTLATAAITVMVLFCFNQVGDGYGLLLPRLFDTLLGSLIAGLAVFLFLPDWQGRRLNKVLANTLTCNSIYLRQIMQQYAAGKSDDLAYRLARRNAHNADAALSTTLANMLMEPGHFRKEADVGFRFLVLSHTLLSYLSGLGAHRGTELPTEVREQLIDGAGARLATSIDEIAQGLASKQPIAIQSDDEEALASELELMPDEIDEGQRLVQTQLALICRQLGPLRTLAAHLIKDTSEANANANANANA
D1-35_037441179COG2081putative proteinTTGCGCTCTACCGAAGTCGTGATCATTGGCGCTGGCGCCGCGGGGTTGATGTGCGCGCTGACCGCCGCCGGGCGCGGGCGGCAGGTGATGTTGCTGGACCACGCCAACAAGGCCGGCAAGAAAATCCTCATGTCGGGCGGTGGACGCTGTAACTTCACCAACATGTACACCGAACCGGGCAACTTCCTCTCGCAGAACCCGCACTTCTGCAAGTCGGCCCTGGCCCGCTATACCCAATGGGATTTCATCGCGTTGGTGGCCAAGCACGGCGTGCCCTATCACGAGAAAAAACTCGGCCAGTTGTTCTGCGATAACAAATCCAGCGACATCCTCGGCCTGCTGCTGGATGAGTGCGACCAGGCCGGCGTCGACCTGCACCTGGACACCTCGATCGAGCAGATCGAGAAGACCGCCGACGGCTACCTGCTGCAAACCAAACTCGGGCCCATCGCTTGCCAATCCCTGGTGATCGCCACGGGCGGGCTGTCGATCCCGACCCTGGGCGCGACTGGCTTCGGCTATCAGGTGGCCAGGCAATTCGGCCACCAGCTGCTGCCGACCCGGGCAGGGCTGGTGCCGTTCACCATCACCGATCAGTTAAAGAGCCTGTGCACCGAACTGTCGGGCACGTCGGTGGACTGTCTGGTGAGCTGCAACGAGCAGAGCTTTCGCGAGAACATCCTGTTCACCCATCGCGGCTTGAGCGGCCCGGCGATCTTGCAGATCTCGTCGTTCTGGGAGCCGGGCGACACGGTGCAGATCAACCTGCTGCCCGACCACGACGTGCCGCAGTGGCTGCAACAGCAACAGGCCGAACGCCCGAACAGCGAACTCAAGACCCTGTTGGGCGAGTTGTTCACCAAGAAAATGGCCAACCTGCTGGCCGACACCTGGTTCGTCTCCAAGCCGATGAAGCAATACACTCACGCGGAACTCGCGGACATCGCCGAGAAGCTGGCGAGCTGGAACATCGTCCCCGCCGGCACCGAAGGCTACCGCACCGCCGAAGTGACCCTGGGCGGCGTCGACACTCGGGAAGTTTCTTCCAAGACCATGGAGTCGCTGAAGAGCCCGGGGCTGTATTTCATTGGCGAAGTGCTCGACGTCACCGGTCACCTGGGCGGCTTCAACTTCCAATGGGCGTGGGCTTCGGGGTATGCGGCGGCGCAGTACGTCTGAMRSTEVVIIGAGAAGLMCALTAAGRGRQVMLLDHANKAGKKILMSGGGRCNFTNMYTEPGNFLSQNPHFCKSALARYTQWDFIALVAKHGVPYHEKKLGQLFCDNKSSDILGLLLDECDQAGVDLHLDTSIEQIEKTADGYLLQTKLGPIACQSLVIATGGLSIPTLGATGFGYQVARQFGHQLLPTRAGLVPFTITDQLKSLCTELSGTSVDCLVSCNEQSFRENILFTHRGLSGPAILQISSFWEPGDTVQINLLPDHDVPQWLQQQQAERPNSELKTLLGELFTKKMANLLADTWFVSKPMKQYTHAELADIAEKLASWNIVPAGTEGYRTAEVTLGGVDTREVSSKTMESLKSPGLYFIGEVLDVTGHLGGFNFQWAWASGYAAAQYVNANANANANA
D1-35_037451386dbpACOG0513ATP-dependent RNA helicase DbpAGTGACCACCATTGCCACCGCTTTTAATACTTTGCCGCTGTCCGCCGCCATGCTGGCTAACCTCGAATCACTCGGTTATGCCCAGATGACGCCGATCCAGGCGCAAAGCTTGCCGGTGATCCTCAAGGGCATGGACCTGATCGCACAGGCCAAGACCGGCAGCGGCAAGACCGCGGCCTTTGGCATCGGCCTGCTGAACCCGATCAACCCGCGCTTCTTTGGCTGTCAGGCCCTGGTGATGTGCCCGACCCGTGAGCTGGCCGACCAAGTCGCCAAGGAAATCCGCCGCCTCGCCCGCGCCGAAGACAACATCAAGGTCCTGACCCTGTGCGGCGGCGTGTCCTTCGGCCCGCAGATCGCCTCCCTCGAACACGGTGCCCACATCATCGTCGGCACGCCGGGACGCATCCAGCAGCACCTGCGCAAGGGTTCGCTGGTGCTCGACGGCCTCAACACGCTGATCCTCGACGAAGCCGACCGCATGCTCGACATGGGCTTCTATGACGCCATCGAAGACATCATCCAGCAGACCCCGGAACGCCGCCAGACGCTGCTGTTTTCGGCCACCTACCCGGTGGGCATCAAGCAACTGTCGTCGAAGTTCATGCGCAATCCGCAGCAGGTCAAGGCCGAGGCGCTGCACTCCGACGCCCAGATCGAGCAGCGCTTCTACGAGATCTCTCCCGAGGAGCGCATGGACGCGGTGGTCAAGGTGCTGGCGCATTTCCGCCCGGCCTCCTGCGTGGCGTTCTGCTTCACCAAGCAGCAGGTCCAGGAAACCGTCGATCACCTGACGTCCAAGGGCATCTCCGCCGTCGGCCTGCACGGTGACCTGGAGCAGCGCGACCGCGACCAGGTCCTGGCGATGTTCGCCAACCGCAGCACCTCGGTATTGGTCGCCACCGACGTGGCGGCCCGTGGCCTGGATATCGATGCGCTGGACATGGTGATCAACGTCGAGCTGGCCCGGGACTCGGAGATTCATATCCACCGCGTCGGCCGCACCGGGCGCGCCGGGGAGAAAGGCATCGCTATCAGCCTGGTGGCGCCGTCCGAAGCCCATCGCGCCCAGGCCATCGAGCAACTGCAGAAGTCGCCGTTGAGCTGGGACCAGTTGGACAACCTCAAGCCCCAGGGCGGCGGTCCGCTGCTGCCGGCCATGAGCACCCTATGCATCGGTGCCGGACGCAAGGACAAGGTGCGCCCCGGCGACATCCTCGGCGCCCTGACCGGCGAGGCCGGCATCCCTGGCGCCCAGGTGGGCAAGATCGCGATTTTCGATTTCCAGGCCTATGTGGCAGTGGAGCGCGGTATCGCCAAACAGGCCTTGCAGCGCCTGAACGATGGCAAGATCAAGGGACGCTCGTTGCGGGTGCGGATCCTGTAAMTTIATAFNTLPLSAAMLANLESLGYAQMTPIQAQSLPVILKGMDLIAQAKTGSGKTAAFGIGLLNPINPRFFGCQALVMCPTRELADQVAKEIRRLARAEDNIKVLTLCGGVSFGPQIASLEHGAHIIVGTPGRIQQHLRKGSLVLDGLNTLILDEADRMLDMGFYDAIEDIIQQTPERRQTLLFSATYPVGIKQLSSKFMRNPQQVKAEALHSDAQIEQRFYEISPEERMDAVVKVLAHFRPASCVAFCFTKQQVQETVDHLTSKGISAVGLHGDLEQRDRDQVLAMFANRSTSVLVATDVAARGLDIDALDMVINVELARDSEIHIHRVGRTGRAGEKGIAISLVAPSEAHRAQAIEQLQKSPLSWDQLDNLKPQGGGPLLPAMSTLCIGAGRKDKVRPGDILGALTGEAGIPGAQVGKIAIFDFQAYVAVERGIAKQALQRLNDGKIKGRSLRVRILPGPT0013740_2932DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927NANA
D1-35_037461428hsrAputative transport protein HsrAATGCCCAACCGCGCCCCGCTCGACGCCGTCACCGCCCGCTGGCTTCCGTGGGTCGTGGCAATCGCTTTCTTCATGCAGTCCCTGGACGGGACCATCCTCAACACTGCCCTGCCTGCCATGGCCAGCGACCTGGCGGAGAACCCGCTGCGCATGCAAGGCGTGATCATCGCCTACATGCTCACGGTGGCCCTGCTGATCCCGGCCTCGGGCTGGATCGCCGACCGCTTTGGCACCAAAAAGATTTTCTTCGGCGCGATCCTGCTGTTCAGCTTCGGCTCGTTGCTGTGCGCGTTGTCCAATTCGTTGAGCATGCTGATCGGCGCCCGGGTCGTCCAGGGCCTGGGTGGCGCGCTGATGCTGCCGGTGGGCAGGCTGGTAGTTCTACGGGCGTACCCGCGTTCGGAGCTGGTGAGGATCATGGGTTTCATCACCATCCCCGGCCTGCTCGGCCCGCTGATCGGCCCGACCATGGGTGGCTGGATGGTCGAGTACCTGACGTGGCACTGGATTTTCATCATCAACCTGCCGGTGGGGGTAATCGGCTGCTATGCCGTCTGGAAATTCATTCCGGACCTGCGCGGCAGCGAGCGCACGCGGTTCGATGGGCTGGGGTTCCTGCTGTTTGGCGCGGCGATGGTCTTGATCACCATTGCCATGGAAGGCCTGGGTGAACTGCATCTTCCGCACCTGCGCGTGATGTTGCTGCTGTTCGGCGGCATGGCCTGCCTCGCGGCCTATTGGTTGCGGGCCGGACACGTGGAAAATGCGCTGTTCCCGCCGTCGCTGTTCAAGACCCGGACCTTTGCCGTGGGCATCCTCGGCAACCTGTTCGCGCGCCTGGGCAGCGGCGCGTTGCCGTTCCTGGTGCCGTTGCTGTTGCAAGTGGCGCTGGGCTATTCGCCGTCCCAGGCGGGCATGAGCATGCTGCCCCTGGCGGCGGCGGCGATGGTCGCCAAATCGGTCGCCCGGCCGTTGATCGAACGCTTCGGCTATCGCATCGTCCTTACCGCCAATACCCTGGCCCTGGGCGTGATGCTGGCGAGCATGGGCCTGGTCACCGAACACACGCCGTACTGGCTGCTGCTGGCGCATCTGGCGGTGCTGGGGGCGATCAATTCGCTGCAATTCACCGCGATGAACACCGTGACCCTGATCGACCTGGACGACGCCAGCGCCAGCAGCGGCAACAGCTTGCTGTCGGTGGTCGCGCAACTGTCCCTGAGCCTCGGCGTGGCCTGCGCCGGCGCGCTCCTCGGCGGCTTTACCGCCCAGGTCGGCAATGACGGCGTGGACACGGTGCTGGGCGCGTTCCAGTTGACCTTCGTGACCGTGGGCATCATGGCGATGCTGGCGGCGACGATTTTTTCCCAGCTGTCCAAGCAGGACGGACGGCGGGTGAAGCGGCCGGATGAGCATATCGAGCATTAGMPNRAPLDAVTARWLPWVVAIAFFMQSLDGTILNTALPAMASDLAENPLRMQGVIIAYMLTVALLIPASGWIADRFGTKKIFFGAILLFSFGSLLCALSNSLSMLIGARVVQGLGGALMLPVGRLVVLRAYPRSELVRIMGFITIPGLLGPLIGPTMGGWMVEYLTWHWIFIINLPVGVIGCYAVWKFIPDLRGSERTRFDGLGFLLFGAAMVLITIAMEGLGELHLPHLRVMLLLFGGMACLAAYWLRAGHVENALFPPSLFKTRTFAVGILGNLFARLGSGALPFLVPLLLQVALGYSPSQAGMSMLPLAAAAMVAKSVARPLIERFGYRIVLTANTLALGVMLASMGLVTEHTPYWLLLAHLAVLGAINSLQFTAMNTVTLIDLDDASASSGNSLLSVVAQLSLSLGVACAGALLGGFTAQVGNDGVDTVLGAFQLTFVTVGIMAMLAATIFSQLSKQDGRRVKRPDEHIEHPGPT0029180_230DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029180-mdtD-K18326NANA
D1-35_037471338hypothetical proteinATGAGCACCGTCACTAATGAGGCCGGGGCGTTCAAGGCGTTGGTCGATTGGCTGCGCAATGCGTTGCGCGAACCCGAACAGTTCACCCTCGGCTATGCCGCCGAGTCTTCGGCTTTCGTGCGCTTCAACCACGGCAAGGTTCGCCAGGCCGGGCAGGTCCAACAGGCCAATATCAACCTCAAGCTGATCAACGACGGCCGCCATGCCGACTTGCAGATCACCTTGTCCGGCGACACCGAGACCGATCTGCAACGCCTGGGCGAAGGCCTGCAACAGCTGCGCGAGACGTTGCCGTTGCTGCCCGCCGATCCCTACTTGATGCTCAACCACAACCACTGGCAGAGCAACAATGTGCAGGATCACCCATTGCCCGAGACGGAGCAGGCGGTCGGCGAAATCACCCGGGCCGCAGAAGGCCTGGACCTGGTGGGGTTCTATGCGGCCGGGCCGATCAGCCGGGGCTTCGCCAGTTCCTCGGGTGCCTTCGGCTGGCATCAGGCCAACAGTTTCAATTTCGACTTCAGCTTGTTCCATGAGAACGGTCAGGCCGTGAAGGCCAGTTATGCAGGCCACGCCTGGAGCAGCGAAGGGTTCGCCCAACGTTTCGAACAGGCACGCGAACAGCTGCAATTCCTCGGCCGACCACTGCGTACGCTGCCGCCCGGTGAATACCGCGCCTACCTGGCGCCAGCCGCGCTGGAAGAAATCATGGGCATGCTCAGTTGGGGCGGGTTCTCGGCCCGTGCAATCGCCAGCAAGCAAAGCCCGCTGCAGAAGTTCTACGCCGGCGAAGCCCACTTCAGCCCCAACGTGTGGTTGACGGAGCAGGTCAGCGGCTCCCTGAGCCCGGCATTTTCCGACGAAGGTTATCCTCGCGATGACCTCGGGCTGATTGCCAAGGGCACGGCCAACGCACGGCTGGTCAATTCCCGCAGCGCCGCCGAATACGGTCTTACCGCCAACGGCGCCAGCAGCTATGAATACCCTACCGCGCTGGAAATGAAAGAGGGTCATCTGGCGCTAAGGCACGTTCTCGAAGAACTCGGCACCGGCTTGTACATCAGCAACCTCTGGTACCTGAACTACTCGGACCAACCGGCGGCGCGCCTGACCGGCATGACCCGTTTCGCCACGTTCTGGGTCGAGGATGGCCAGATCCAGGCACCGGTGAGCACCATGCGTTTCGACGACAGCGTCTACAGCCTGCTCGGCTCGCAACTCGAAGGCCTGACGCGGGAGCGGGAACTTCTGCTTTCGGCCAGTACCTACAGCCAGCGGGCCACGGCTTCGATGCTGCTGCCGGGGGCGTTGGTGAAGAGGCTCACGCTGACGCTATAAMSTVTNEAGAFKALVDWLRNALREPEQFTLGYAAESSAFVRFNHGKVRQAGQVQQANINLKLINDGRHADLQITLSGDTETDLQRLGEGLQQLRETLPLLPADPYLMLNHNHWQSNNVQDHPLPETEQAVGEITRAAEGLDLVGFYAAGPISRGFASSSGAFGWHQANSFNFDFSLFHENGQAVKASYAGHAWSSEGFAQRFEQAREQLQFLGRPLRTLPPGEYRAYLAPAALEEIMGMLSWGGFSARAIASKQSPLQKFYAGEAHFSPNVWLTEQVSGSLSPAFSDEGYPRDDLGLIAKGTANARLVNSRSAAEYGLTANGASSYEYPTALEMKEGHLALRHVLEELGTGLYISNLWYLNYSDQPAARLTGMTRFATFWVEDGQIQAPVSTMRFDDSVYSLLGSQLEGLTRERELLLSASTYSQRATASMLLPGALVKRLTLTLNANANANANA
D1-35_037481443hypothetical proteinATGTTCGATTTCCATCCCCAGCTCAAGCAGCGGTTTGCTGCATTGCGCACGGGCGCTGAATTCTTTTCCCTGCGTTACGTCCGAGAGTCCGGTCAGCACCTGTCGGTGCGCAAGAATGTCGCCGAGCCGCCCAGCCTGAGCCGCGACGAAGGTGCGATGCTCACCGTGCGGGTCAATGGCGTCGAAGCCTATGCGGCCACCAACGATTTGTCCCAGGCCGGCCTGCAAGCGGCGCTCGAACGCGCCGAGCAACAGGCCCGCCGGCTCAAGCCCCACGCTTTGCTCGACTTGCGCGAGCAGCCGGTCTCCAGCGACCGCGCCGATTATTTCTCACCGCACTTCGACCAGGCGTTCCCTCCACTGAGCGATTGCTACCAACTGCTCGGCGACGAATCGGCAGCGGTGCCAACGGACGAGCGCCTGGTGAACTGGCAGGCCAGCATCGGCCTGACCCAGGTCGAACAGATCTACCTCAACAGCGCCGGCGCCGAACTGCGCCAGGCCCAGCGCTTCATCTACCCGGCCCTGGACGTCACCGCCTTCGACGGGCACGACAGCCAGACGCGCACCCTGGGCCGCGAGAACTTCGGTCAGCAGGGCGGCTTCGATGTGATCAACCGCTGCGGCCTGATCGGTGCCGGGCCGAAGATCGCCGACCAAGCCCTGCAATTGCTGATGGCGCCAAACACCCCGCAAGGCCCACGCGACCTGTTGCTGATGCCCGACCAGATGATGCTGCAGATTCACGAATCCATCGGTCACCCGCTGGAACTGGACCGCATCCTCGGCGACGAGCGCAATTACGCCGGCACCAGTTTCGTCAAGACCAGCGATTTCGGACACCTGCAATACGGCTCCAACCTGCTGAACGTGACGTTCGACCCGGACATCCCGGAAGAACTGGCCAGCTACAGCCATGACGACGACGGCAGCGCTGCCAGCAAACAGTTCCTGATCCGCGAAGGCTTGCTGTTGCGCCCACTGGGCGGTGCGCTGTCGCAGTTCCGCGCCGGCCTCGACGGGGTCGCCAACAGCCGCGCCTGCAGTTGGAATCGTCCGCCCATCGACCGCATGGCAAACCTGAACATCGAGCCCGGCGACCAATCCCTGGAGCAACTGATCCAAGGCATCGAGCACGGCGTGCTGATGCGCACCAACCGCTCCTGGTCCATCGATGACGCCCGTAACAAATTCCAGTTTGGCTGCGAATGGGGCCAGTTGATCGAAGACGGCGAGCTCAAGGGCGTGGTGAAAAATCCGAACTACCGGGGCATTTCCGCGCAGTTCTGGAAAAGCTTGAGGGCCGTGGGCGACGCCAGCACTTCCCAGGTCCTCGGCACGCCGAACTGTGGCAAGGGTGAACCGAACCAGGTCATCCGCGTCGGCCATGCTTCGCCGGCCTGCGTGTTCAGCAACGTTGACGTATTTGGGGGAGATGCCTGAMFDFHPQLKQRFAALRTGAEFFSLRYVRESGQHLSVRKNVAEPPSLSRDEGAMLTVRVNGVEAYAATNDLSQAGLQAALERAEQQARRLKPHALLDLREQPVSSDRADYFSPHFDQAFPPLSDCYQLLGDESAAVPTDERLVNWQASIGLTQVEQIYLNSAGAELRQAQRFIYPALDVTAFDGHDSQTRTLGRENFGQQGGFDVINRCGLIGAGPKIADQALQLLMAPNTPQGPRDLLLMPDQMMLQIHESIGHPLELDRILGDERNYAGTSFVKTSDFGHLQYGSNLLNVTFDPDIPEELASYSHDDDGSAASKQFLIREGLLLRPLGGALSQFRAGLDGVANSRACSWNRPPIDRMANLNIEPGDQSLEQLIQGIEHGVLMRTNRSWSIDDARNKFQFGCEWGQLIEDGELKGVVKNPNYRGISAQFWKSLRAVGDASTSQVLGTPNCGKGEPNQVIRVGHASPACVFSNVDVFGGDANANANANANA
D1-35_037491704betACOG2303Oxygen-dependent choline dehydrogenaseATGTCCCAAGAATTCGATTACATCATCATCGGTGCCGGCTCGGCCGGTAACACCCTGGCCACCCGCCTGACCGAAGACGAAGGCGTCACCGTGCTGCTGCTCGAAGCCGGCGGCCCGGACTATCGCCTGGACTTCCGCACGCAAATGCCCGCCGCCCTGGCGTTCCCGCTGCAAGGCCGGCGCTACAACTGGGCCTACGAGACCGACCCGGAGCCGCACATGAACGGCCGCCGCATGGAGTGCGGTCGCGGCAAGGGCCTGGGCGGTTCTTCGCTGATCAACGGCATGTGCTACATCCGCGGCAACGCCCTGGACTATGACAACTGGGCCAAGCTGCCAGGCCTGGAAGACTGGACCTACCTCGACTGCCTGCCGTATTTCCGTAAAGCCGAAACCCGCGACATCGGCCCGAACGACTACCACGGCGGCGACGGTCCGGTCAGCGTGACCACGCCCAAGCCCGGCAACAACCCGTTGTTCCACGCCATGGTCGAAGCCGGCGTGCAAGCCGGTTATCCACGTACCGAAGACCTCAACGGCTACCAGCAGGAAGGCTTCGGTCCGATGGATCGCACCGTGACGCCCAATGGCCGTCGCGCCAGTACCGCGCGCGGTTACCTGGACATCGCCAAGAAGCGCTCCACCCTGACCATCGTCACCCACGCCCTGACCGACAAGATCCTGTTCGAAGGCAAGCGTGCGGTCGGCGTGCGTTACCTGGTGGGCGCCGCTGAAGAGCGCGTCGAAGCGCGGGCCCGCAAGGAAGTGCTGCTGTGCTCCGGCGCCATCGCTTCGCCGCAGATCCTGCAACGCTCCGGCGTCGGTCCGGCAAAACTGCTCGAAAGCCTCGACATCCCGGTGGTCCACGACCTGCCGGGCGTTGGTGAAAACCTCCAGGACCACCTGGAGCTGTACCTGCAATACGCTTGCACCCAGCCGGTTTCGCTGTACCCGTCGCTGCTCTGGTACAACCAGCCGGCCATCGGTGCCGAGTGGCTATTCAACGGCACCGGCATCGGCGCCAGCAACCAGTTCGAGGCCGGCGGTTTCATCCGCACCCGCCCGGACTTCGAATGGCCGAACATCCAGTACCACTTCCTGCCGGTGGCGATCAATTACAACGGCAGTAATGGCGTGAAGGAACACGGCTTCCAGGCGCACATGGGCTCCATGCGTTCGCCGAGCCGTGGCCGTATCCAGGCCAAGTCCAAGGACCCGCGCCAGCACCCGAGCATCCTTTTCAACTACATGGCCACCGAACAGGACTGGCAGGAATTTCGCGATGGTATCCGCCTGACGCGCGAGATCATGCAACAGCCGGCGCTCGACCCGTTCCGCGGCCGCGAGATCAGCCCGGGCATCGAGGTGCAGACCGACGAGCAACTGGACCAGTTCATCCGCGAGCACGCCGAAACCGCGTTCCACCCGTCCTGCTCGTGCAAGATGGGCACCGACGACATGGCGGTGGTCGATGACGAAGGCCGTGTGCATGGCATGCAAGGCCTGCGGGTAGTCGATGCCTCGATCATGCCGATCATCACCACCGGCAACCTGAACGCGCCGACGATCATGATGGCCGAGAAAATCGCCGACAGGATCCGCGGCCGCAAGCCCCTGCCGCGCAGTACCGCGCCGTACTATGTGGCCGGCGATGCGCCGGTGCGTGGCAAGCCTCTGCGTGAAGTGGCGACTGCCGCCCAGTAAMSQEFDYIIIGAGSAGNTLATRLTEDEGVTVLLLEAGGPDYRLDFRTQMPAALAFPLQGRRYNWAYETDPEPHMNGRRMECGRGKGLGGSSLINGMCYIRGNALDYDNWAKLPGLEDWTYLDCLPYFRKAETRDIGPNDYHGGDGPVSVTTPKPGNNPLFHAMVEAGVQAGYPRTEDLNGYQQEGFGPMDRTVTPNGRRASTARGYLDIAKKRSTLTIVTHALTDKILFEGKRAVGVRYLVGAAEERVEARARKEVLLCSGAIASPQILQRSGVGPAKLLESLDIPVVHDLPGVGENLQDHLELYLQYACTQPVSLYPSLLWYNQPAIGAEWLFNGTGIGASNQFEAGGFIRTRPDFEWPNIQYHFLPVAINYNGSNGVKEHGFQAHMGSMRSPSRGRIQAKSKDPRQHPSILFNYMATEQDWQEFRDGIRLTREIMQQPALDPFRGREISPGIEVQTDEQLDQFIREHAETAFHPSCSCKMGTDDMAVVDDEGRVHGMQGLRVVDASIMPIITTGNLNAPTIMMAEKIADRIRGRKPLPRSTAPYYVAGDAPVRGKPLREVATAAQPGPT0013615_1342DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013615-betA|CHDH-K00108NANA
D1-35_037501473betB_1COG1012NAD/NADP-dependent betaine aldehyde dehydrogenaseATGGCCCGTTTCGAACTGCAAAAACTCTACATCGATGGCGCGTACAGCGATGCCAGCGGCGACGCCACTTTCGAAGCCATCAACCCGGCCAACGGTGAAGTACTCGCCCTGGTGCAGCGCGCGACGTTCGAGGACGTCGAGCGCGCCGTGGTCAGCGCCGAAAAGGGCCAGAAAATCTGGGCCGCGATGACCGCCATGCAGCGCTCGCGCATCCTGCGCCGCGCCGTCGACATCCTGCGCGAACGCAACGATGAACTGGCCGCCTTGGAAACCCTGGACACCGGCAAATCCTTCTCCGAAACCAAATACGTCGACATCGTCACTGGTGCCGACGTGCTGGAATATTACGCCGGCCTGGTGCCCGCCATCGAAGGCGAGCAGGTTCCGCTGCGCAGCACTTCGTTCATCTATACCCGTCGCGAGCCCCTGGGCGTGGTCGCTGGTATCGGCGCGTGGAACTACCCGATCCAGATTGCCTTGTGGAAGTCCGCCCCGGCCCTGGCAGCCGGCAACGCGATGATCTTCAAGCCCAGCGAAGTGACCTCGCTGACCACCCTGAAACTGGCCGAGATCTACACCGAGGCCGGTGTTCCAGCGGGCGTGTTCAACGTGCTGACCGGCAGTGGCCGGGAAGTCGGCACCTGGCTGACCGAGCACCCGCGCATCGAGAAAATCTCCTTCACCGGCGGCACCGACACCGGCAAGAAAGTCATGGCCAGCGCTTCGAGTTCTTCGCTCAAGGACGTGACCATGGAGCTGGGCGGTAAGTCGCCGCTGATCATCTTCGACGACGCCGACCTGGATCGCGCCGCCGACACCGCGATGATGGCCAACTTCTACAGCTCCGGCCAGGTCTGCACCAACGGCACCCGCGTGTTCGTGCCGAGCCATCTGAAGGCAGCGTTCGAAGCCAAGATCGCCGAACGCGTGGCGCGCATCCGCATCGGCAATCCGGAAGACGAAAACACCAACTTCGGCCCGCTGGTGAGCTTCGCCCACATGGAAAGCGTGCTGGGCTACATCGAGAAGGGCAAGGCCGAGGGCGCGCGCCTGTTGTGTGGCGGCGGTCGCCTGACCGAGGGCGATCTGGCCAAGGGCGCATTCGTCGCACCGACCGTATTCACCGATTGCACCGATGACATGACCATCGTGCGTGAAGAAATCTTCGGCCCGGTGATGAGCATCCTCACCTACGACACCGAAGAAGAAGTGATCCGCCGCGCCAACGATACTGACTTCGGCCTGGCCGCCGGCGTCGTGACCCGCGACCTGAACCGCGCCCACCGCGTGATCCATCAGCTCGAAGCAGGCATCTGCTGGATCAACGCCTGGGGCGAGTCCGCGGCGGAAATGCCGGTCGGTGGCTACAAGCAATCGGGCGTGGGCCGCGAGAACGGCATCAGCTCGCTGACCAACTACACGCGCATCAAATCGGTACAGGTCGAAATGGGCGATTACACGTCGGTGTTCTAAMARFELQKLYIDGAYSDASGDATFEAINPANGEVLALVQRATFEDVERAVVSAEKGQKIWAAMTAMQRSRILRRAVDILRERNDELAALETLDTGKSFSETKYVDIVTGADVLEYYAGLVPAIEGEQVPLRSTSFIYTRREPLGVVAGIGAWNYPIQIALWKSAPALAAGNAMIFKPSEVTSLTTLKLAEIYTEAGVPAGVFNVLTGSGREVGTWLTEHPRIEKISFTGGTDTGKKVMASASSSSLKDVTMELGGKSPLIIFDDADLDRAADTAMMANFYSSGQVCTNGTRVFVPSHLKAAFEAKIAERVARIRIGNPEDENTNFGPLVSFAHMESVLGYIEKGKAEGARLLCGGGRLTEGDLAKGAFVAPTVFTDCTDDMTIVREEIFGPVMSILTYDTEEEVIRRANDTDFGLAAGVVTRDLNRAHRVIHQLEAGICWINAWGESAAEMPVGGYKQSGVGRENGISSLTNYTRIKSVQVEMGDYTSVFPGPT0007165_1424DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0007165-betB_homologous-K00130NANA
D1-35_03751621betICOG1309HTH-type transcriptional regulator BetIATGCCCAAGGTCGGTATGCAACCCATCCGCCGCCAGCAGTTGATCGAAGCCACTTTGCAGGCTGTCGACCAGGTCGGAATGGGGGACGCCAGCATTGCGCTGATCGCCCGTTTGGCCGGCGTTTCGAACGGCATCATCAGTCACTACTTTCAGGACAAGAATGGCCTGATCGCGGCCACGGCCCAGTACCTGATGAGTGTCTTGAGCGAGAACGTCACCGCGCGGCGTCAAGCGCTGACGGATCCAAGCCCGCGAGCTCACCTGAAGGTGATCATCGAAGGCAATTTCGACGCCAGCCAGGTCAACGGGCCGGCAATGAAAACCTGGCTGGCCTTCTGGGCCACCAGCATGCATCACCCGTCATTGCACAGGTTGCAGCGGATCAACGATCACCGTCTGTATTCCAACCTGTGTTGCCAGTTCCGCCGCGTCTTGCCCGTTGACCAGGCACGCAGCGCGGCACGGGGCCTGGCCGCTCTGATTGACGGTTTGTGGCTGCGCGGGGCGCTGTCGGGAGACGCGTTCGATACCGCCCAGGCACACCAGATCGCTTACGAATACATGGATTTCCAACTGGCCAAGGCAGGAGCGCCAGAGCACACAGAACCGCTCGACTCCTGAMPKVGMQPIRRQQLIEATLQAVDQVGMGDASIALIARLAGVSNGIISHYFQDKNGLIAATAQYLMSVLSENVTARRQALTDPSPRAHLKVIIEGNFDASQVNGPAMKTWLAFWATSMHHPSLHRLQRINDHRLYSNLCCQFRRVLPVDQARSAARGLAALIDGLWLRGALSGDAFDTAQAHQIAYEYMDFQLAKAGAPEHTEPLDSPGPT0013625_303DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013625-betI-K02167NANA
D1-35_037521593betT1COG1292Osmo-independent choline transporter BetT1ATGAGTTCTGCCTTGCTAATAAAGACCCCGCCGCAGAAGGTGACGGTCAACGGTTGGGTGTTCTACACCTCCACCGCGCTGATTCTGTTGTTGACGGCCACCCTGATCATCGCCCCGCAGGAGGCCGGCCGGTTGCTCGGCATTGCCCAGGCGTGGCTATCGCGCAGCTTCGGCTGGTACTACATGGTGGTCATCGCCGCTTACCTGGTCTTTGTGGTCGGCCTGGCGTTTTCTTCCTATGGCAAGCTCAAGCTGGGCAGCAAGGACGACACGCCGGACTTCAGTTATGGCGCCTGGGCCGGGATGCTGTTTTCCTCGGGCATCGGCATTTCGCTGTTGTACTTTGGCGCATCCGAGCCACTGGACCATTTTTTCAACCCGCCCGAAGGCGTCGCCGGTAGCAACCAGGCTGCGCGCCAGGCGGTGCAGCTGACGTTTTTGCATTGGGGCCTGCACGGCTGGGCGATCTACGCCCTTGTGGGCCTGGCCGTGGCCTATTTCGCCTACCGGCACAACCAGCCGCTGGCGCTGCGTTCGGCCTTGTATCCGCTGATGGGCGAACGCTGGGTCAAGGGCGCGGCCGGTCATGCGGTGGATGGCTTCGGCATGTTCGTGACGTTGCTGGGGCTGGTGACCAACCTGGGGATCGGTTCGCTGCAAGTCGCCTCCGGGCTGGAAAACCTGTTTGGCATGGAGCACAGCAACACCAACCTGCTGATCGTGATCATCGTGATGAGCAGCGTGGCGACCATCGCCGCCGTATCCGGCGTGGAGAACGGCATCCGCCGGCTATCCAACCTGAACATCGTGCTGTTCAGCGGTTTGCTGATCTTCGTCTTGCTGTGCGGGCCCACGCTGCACTTGCTCAATGGCTTCGTGCAGAACATTGGCGACTACCTCAACGGCGTTGTGCTCAAGACGTTCGACCTGTACGTGTATGCGGACGACAACGCCAAGTCGGGCCGCTGGATGGGCCTGTGGACGCTGTTCTACTGGGCCTGGTGGATTTCCTGGGCGCCATTTGTCGGCATGTTCATCGCGCGGATTTCCCGTGGCCGCACCGTGCGCGAGCTGGTGGCCGGTGTGCTCCTGATTCCCCTGGGCTTTACCTTGGCCTGGCTGTCGATTTTCGGTAATTCGGCGCTGGATCTGGTGATGAACCACGGTGCGGTGGAGCTGGGCAAGACCGCACTGACGCAGCCGTCGATGTCGATCTATCAGCTGTTGGAATATTACCCGGCGTCGAAAGTGGTGATCGGCGTGTCGATCTTTGTCGGTTTTGTGCTGTTCCTGACTCCGGCGGACTCCGGCGCGGTGATGATGGCCAATCTCTCGTGCACGGGCGGCAATGTCGATGAAGATGCCCCCCACTGGTTGCGGATCTTCTGGTCGGTGGTGATCACGCTGGTGACCATCGGCCTGTTGTTTGCCGGTAACTTCGAGGCGATGCAAACCATGGTCGTGCTGGCCGGGCTGCCGTTCTCGGTGGTGCTGGTATTCTTCATGTTCGGCCTGCACAAGGCCATGCGCGAGGATGTGCGGGTTGAGCAGGAGCGGGCGGAGTTGGCGGGGGTGGGGCGGGTCTATAACTGAMSSALLIKTPPQKVTVNGWVFYTSTALILLLTATLIIAPQEAGRLLGIAQAWLSRSFGWYYMVVIAAYLVFVVGLAFSSYGKLKLGSKDDTPDFSYGAWAGMLFSSGIGISLLYFGASEPLDHFFNPPEGVAGSNQAARQAVQLTFLHWGLHGWAIYALVGLAVAYFAYRHNQPLALRSALYPLMGERWVKGAAGHAVDGFGMFVTLLGLVTNLGIGSLQVASGLENLFGMEHSNTNLLIVIIVMSSVATIAAVSGVENGIRRLSNLNIVLFSGLLIFVLLCGPTLHLLNGFVQNIGDYLNGVVLKTFDLYVYADDNAKSGRWMGLWTLFYWAWWISWAPFVGMFIARISRGRTVRELVAGVLLIPLGFTLAWLSIFGNSALDLVMNHGAVELGKTALTQPSMSIYQLLEYYPASKVVIGVSIFVGFVLFLTPADSGAVMMANLSCTGGNVDEDAPHWLRIFWSVVITLVTIGLLFAGNFEAMQTMVVLAGLPFSVVLVFFMFGLHKAMREDVRVEQERAELAGVGRVYNNANANANANA
D1-35_037531179btuD_8Vitamin B12 import ATP-binding protein BtuDATGAGCATAATCCGCTTCGAAGAGGTCGACGTGATCTTCTCCAAAGATCCACGCGAAGCCCTCAAGCTGCTCGACAAGGGCATGACCCGCAACGAAATCCTGAAGCAGACCGGGCAGATCGTCGGCGTGGAAAAGGCCAGCCTGGATGTCGAAAAAGGCGAGATCTGCGTACTGATGGGCCTCTCCGGCTCCGGCAAGTCGAGCCTGTTGCGCTGCATCAACGGTTTGAACACAGTGAGTCGCGGCAAACTGTTCGTCGAACACGAAGGCCGTCAGATCGACATCGCCTCCTGCACCCCCGCCGAGTTGAAGATGATGCGCACCAAGCGCATCGCCATGGTCTTCCAGAAATTTGCCCTGATGCCCTGGCTGACAGTGCGCGAGAACATCAGCTTCGGCCTGGAAATGCAGGGCCGCCCGGAGAAGGAACGCAAGAAGCTGGTGGATGAAAAGCTGGAGCTGGTGGGCCTGACCCAGTGGCGCAACAAGAAGCCCGACGAGCTGTCCGGCGGCATGCAACAACGGGTCGGCCTGGCCCGCGCCCTGGCGATGGACGCCGATATCCTGCTCATGGACGAACCCTTCTCGGCCCTCGACCCGCTGATCCGCCAAGGCCTGCAGGACGAACTGCTGGAGCTGCAGCGCAAGCTGAGCAAGACCATCGTATTCGTCAGCCATGACCTCGACGAGGCCCTGAAACTGGGCAGCCGCATCGCGATCATGAAAGACGGCCGCATCATCCAGTACAGCAAGCCGGAACAGATCGTGCTGAACCCGGCGGATGACTATGTGCGCACCTTTGTCGCCCATACCAACCCGCTCAACGTGCTCTGCGGCCGCAGCCTGATGCGCACCCTGGACAACTGCAAGCGCATCAACGGTTCCGTGTGCCTGGACCCGGGCGGCGATTCCTGGCTCGACCTGGCCGAAGGCAACACCATCAAGGGCGCCCGCCAGAACGGCGCCGCGCTGGACTTGCAAAACTGGGCACCGGGCCAGGCCGTCGAGGGCCTCGGCCGCCGTCCGACTCTGGTGGACTCCAGCATCGGCATGCGCGACGCCTTGCAGATCCGCTACCAGACCGGCAACAAGCTGGTGCTCCACGATAACCAGAAGGTCGTCGGGATCCTCGGCGACAGCGAGCTGTACCACGCGCTGCTAGGCAAGAACCTGGGCTGAMSIIRFEEVDVIFSKDPREALKLLDKGMTRNEILKQTGQIVGVEKASLDVEKGEICVLMGLSGSGKSSLLRCINGLNTVSRGKLFVEHEGRQIDIASCTPAELKMMRTKRIAMVFQKFALMPWLTVRENISFGLEMQGRPEKERKKLVDEKLELVGLTQWRNKKPDELSGGMQQRVGLARALAMDADILLMDEPFSALDPLIRQGLQDELLELQRKLSKTIVFVSHDLDEALKLGSRIAIMKDGRIIQYSKPEQIVLNPADDYVRTFVAHTNPLNVLCGRSLMRTLDNCKRINGSVCLDPGGDSWLDLAEGNTIKGARQNGAALDLQNWAPGQAVEGLGRRPTLVDSSIGMRDALQIRYQTGNKLVLHDNQKVVGILGDSELYHALLGKNLGPGPT0013630_1422DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013630-gbuA|proV-K02000NANA
D1-35_03754846opuAB_3COG4176Glycine betaine transport system permease protein OpuABATGCTTATTGATCAGAAAATACCCTTGGGCCAGTACATCGCGGGCTTTGTCGAATGGTTGACGCAAAACGGCGCCAACACTTTCGATGCCATTGCGATGTTTCTGGAAACGATGATTCACGGCGTGACGTTTGCGCTGACCTGGTTCAATCCCCTGGCCCTGATCGGCCTCATTGCCCTGCTGGCGCATTTTATCCAGCGCAAATGGGGCCTGACCGTTTTTGTCATCGCCTCGTTCCTGCTGATCCTCAACCTGGGTTACTGGCAGGAAACCATGGAAACCCTCGCCCAGGTGCTGTTCGCGACCCTGGTCTGCGTGCTGATCGGCGTGCCGCTGGGCATTGTTGCCGCGCACAAGCCGATGTTCTACACCATGATGCGTCCGGTGCTCGATCTGATGCAGACCGTACCGACCTTCGTTTACCTCATTCCTACCCTGACCCTCTTCGGTCTGGGTGTGGTCCCGGGCCTGATCTCCACGGTGGTGTTCGCCATTGCCGCGCCCATCCGCCTGACCTACCTGGGCATCCGCGACGTTCCGGACGAACTGATGGACGCCGGCAAAGCCTTCGGCTGCTCCCGTCGCCAACTCCTCTCACGCATTGAATTGCCCCATGCCATGCCGAGCATCGCCGCCGGCATTACCCAATGCATCATGCTGTCGCTGTCGATGGTGGTCATTGCGGCGCTGGTCGGTGCCGACGGCCTGGGCAAACCCGTGGTCAACGCACTGAACACCGCCGATATCGCCCTGGGCTTCGAAGCCGGCCTGGCGATCGTATTGCTGGCGATCATGCTCGACCGAATCTGCAAACAACCCGACGCCAAAGTAGGGGGTGACGCATGAMLIDQKIPLGQYIAGFVEWLTQNGANTFDAIAMFLETMIHGVTFALTWFNPLALIGLIALLAHFIQRKWGLTVFVIASFLLILNLGYWQETMETLAQVLFATLVCVLIGVPLGIVAAHKPMFYTMMRPVLDLMQTVPTFVYLIPTLTLFGLGVVPGLISTVVFAIAAPIRLTYLGIRDVPDELMDAGKAFGCSRRQLLSRIELPHAMPSIAAGITQCIMLSLSMVVIAALVGADGLGKPVVNALNTADIALGFEAGLAIVLLAIMLDRICKQPDAKVGGDAPGPT0013635_2240DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013635-gbuB|proW-K02001NANA
D1-35_03755948hypothetical proteinATGAAAGGTTCCAAGCCGTTGTTGTTGGCCGCCATGCTGAGTCTTCCGATGCTGGCCAACGCTGCAGAGCCCGCTCAGTGCAGCACCGTCAACTTCTCCGATGTCGGCTGGACGGACATCACCGTTACCACCGCTACCACCAGCGTCGTGCTCGACGCCCTCGGCTACAAGACCAAGACCACCATGATCTCCGTACCAGTGACCTACAAATCCCTGGCCGACGGCAAGAACATGGACGTTTTCCTCGGCAACTGGATGCCGACCATGGAAAACGACATCAAGGCCTACCGCGAAGCCGGCACCGTGGAAACCGTGCGCGCCAACCTGGAGAACGCCAAGTACACCCTGGCCGTCCCCGAAGAGCTGTATGAAAAGGGTCTGAAGGATTTCGCCGACATCGCCAAGTTCAAGAAGGAACTGGACGGCAAGATCTACGGCATCGAACCGGGCAACGACGGCAACCGCTTGATCCAGAGCATGATCGACAAGAACGCCTTCGGTCTCAAGGACGCTGGCTTCAAGGTCGTCGAATCCAGCGAAGCCGGCATGCTGTCGCAGGTCGATCGCGCCCAGCGTCGTAACACCGCCGTGGTGTTCCTGGGCTGGGAACCGCACCCGATGAACACCCGCTTCAAGATGAAATACCTCACCGGTGGCGATGAATTCTTCGGTCCGAACTTCGGCCAGGCAACCATCTACACCAACACGCGCAAGGGCTACGCCCAGGAATGCGGCAACGTCGGCCAACTGCTGAAAAACCTGGTCTTCACCCTCGACATGGAAAGCACGCTGATGGGCAACGTGCTGGACGACAAGATGAAGCCTGAAGCCGCCGCCAAGGCCTGGCTGAAGAAAAACCCACAGGTGCTCGACACCTGGCTCGCCGGCGTCACCACCATTGACGGTAAACCTGGCCTGGAGGCCGTGAAAGCCAAGCTCGCGCAGTAAMKGSKPLLLAAMLSLPMLANAAEPAQCSTVNFSDVGWTDITVTTATTSVVLDALGYKTKTTMISVPVTYKSLADGKNMDVFLGNWMPTMENDIKAYREAGTVETVRANLENAKYTLAVPEELYEKGLKDFADIAKFKKELDGKIYGIEPGNDGNRLIQSMIDKNAFGLKDAGFKVVESSEAGMLSQVDRAQRRNTAVVFLGWEPHPMNTRFKMKYLTGGDEFFGPNFGQATIYTNTRKGYAQECGNVGQLLKNLVFTLDMESTLMGNVLDDKMKPEAAAKAWLKKNPQVLDTWLAGVTTIDGKPGLEAVKAKLAQPGPT0013640_2114DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013640-gbuC|proX-K02002NANA
D1-35_037561377sdaB_2COG1760L-serine dehydratase 2ATGGCAATCAGCGTGTTCGACCTGTTCAAGATCGGTATCGGCCCGTCCAGTTCCCATACCGTGGGCCCCATGCGCGCCGCGGCGCTGTTCGTTGAAGCGCTGCGGGCGAAGGCGCTGCTGCACGATGTGCGCCGGGTCGAGGTGCAGTTGTACGGTTCGCTGTCGGCGACCGGCATCGGCCATGGCAGCGACAACGCCACGATCATGGGGCTGATGGGCGAATGGCCTGACGCGATCGACCCGTCGCAGATCGGCACGCGCATCGAACTGCTGCGCGAAACCGGGACCTTATTGCTGGATGGGCGTCTGCCGGTGCCTTTTGTATGGCCGCGCGACATGCGCCTGATCGACGAGAACCTGCCGTTCCACCCTAACGCGATGACCTTGATTGCTGAAGGCGCCAGCGGCGAATTGCACCGCGACACCTACTATTCCATCGGCGGAGGTTTTGTTGTTGACCAGGCCCAGGCTTCCAGCGGCGTGGTGGACCTGGACAGTACCGAACTGCCGTACGATTTTTCCAGCGCCGAAGAACTCCTGGCCCTGTGCCGCACCCACAACCTGCGGGTGGCCGAGTTGATGATGGCGAATGAAAAGGTCTGGCGCTCCGAGGAAGAGATCCGCAGCGGCCTGATGAAACTCTGGCGGGCCATGCAGGATTGTGTTGAGCAAGGCCTCAAGCACGAAGGCATCCTGCCCGGCGGCCTGAACGTGCGGCGGCGGGCGGCCAAGTTGCATCGCAGCCTGCAGGAACTGAACAAACCGAACGTGATCGGCTCGACCTTGAGTGCCATGGAATGGGTCAACCTGTTCGCCCTGGCGGTCAACGAGGAAAATGCCGCCGGCGGGCGCATGGTCACGGCGCCGACCAATGGCGCGGCGGGGATCATTCCGGCGGTGCTGCACTACTTCATGAAATTCAGCGAAGCGGTGACCGACGCCAACGTGGTGGATTATTTCCTCAGCGCAGCGGCGGTGGGGATTTTGTGCAAGAAGAACGCTTCGATCTCCGGCGCCGAAGTCGGCTGCCAGGGCGAAGTCGGCTCGGCCTGCGCCATGGCGGCGGCGGGCCTGGCGGAAATCCTCGGGGCCACGCCGGAGCAATTGTGCAACGCCGCGGAAATCGGCCTGGAGCACAACCTTGGCCTGACGTGCGACCCGGTCGGCGGCCTGGTCCAGGTGCCCTGCATCGAGCGCAACGCGATTGCCGCGGTGAAAGCCATCAACGCCGCCCAAATGGCCCTGCGCGGCGACGGCCAGCACTTCATCTCCCTCGACCGGGTGATCCGCACCATGCGTGACACCGGCGCCGACATGCATGACAAATATAAAGAGACATCGCGGGGCGGGTTGGCGGTGAGTGCGGTGGAGTGTTGAMAISVFDLFKIGIGPSSSHTVGPMRAAALFVEALRAKALLHDVRRVEVQLYGSLSATGIGHGSDNATIMGLMGEWPDAIDPSQIGTRIELLRETGTLLLDGRLPVPFVWPRDMRLIDENLPFHPNAMTLIAEGASGELHRDTYYSIGGGFVVDQAQASSGVVDLDSTELPYDFSSAEELLALCRTHNLRVAELMMANEKVWRSEEEIRSGLMKLWRAMQDCVEQGLKHEGILPGGLNVRRRAAKLHRSLQELNKPNVIGSTLSAMEWVNLFALAVNEENAAGGRMVTAPTNGAAGIIPAVLHYFMKFSEAVTDANVVDYFLSAAAVGILCKKNASISGAEVGCQGEVGSACAMAAAGLAEILGATPEQLCNAAEIGLEHNLGLTCDPVGGLVQVPCIERNAIAAVKAINAAQMALRGDGQHFISLDRVIRTMRDTGADMHDKYKETSRGGLAVSAVECPGPT0001975_1923DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001975-sdaA|sdaB|tdcG-K01752NANA
D1-35_037571104cdhR_10COG4977HTH-type transcriptional regulator CdhRATGACGACGTCCAACTCTGGGGCTCAACCCCAGAACCGTGCGCCTCAATCCATCGGCTTTTTGCTGCTGGACAATTTCACGCTGATTTCCCTGGCGTCCGCGGTGGAACCGCTACGCATGGCCAACCAGCTGTCCGGTCGCGAGTTGTATCGCTGGACCACCCTGACCGTCGATGGCGGGCAGGTCTGGGCCAGTGACGGTCTGCAGATCACGCCTGACGCCTCCATGCACAAAGCGCCGGCCCTCGACACCGTCATCGTCTGCGGCGGCATCGGCATCCAGCGCACCGTTACTCGTGAGCATGTCTCCTGGCTGCAAAGCCAGGCCCGGCAGTCCCGTCGCCTCGGCGCGGTCTGCACCGGCAGTTGGGCCCTGGCCTGTGCCGGCCTGCTGGACGGTTTCGATTGCAGCGTGCACTGGGAATGCCTGGCAGCCATGCAGGAAGCCTTCCCGCGGGTGTCGATGAGCACGCGGCTGTTCACCCTCGACCGCAATCGCTTCACCAGTTCCGGCGGCACCGCGCCACTGGATATGATGCTGCACTTGATCAGCCGCGATCACGGTCGCGAACTGTCGGCAGCAATCTCGGAAATGTTTGTCTATGAGCGCATCCGCAACGAGCAGGATCACCAGCGCGTGCCGCTCAAGCATATGCTCGGCACCAACCAGCCGAAGTTGCAGGAAATCGTCGCACTGATGGAGGCCAACCTCGAAGAGCCGATCGACCTGGACGAGCTGGCGGTGTATGTCGCCGTGTCCCGACGTCAGCTCGAGCGCCTGTTCCAGAAATACCTGCACTGTTCGCCGTCGCGCTACTACCTCAAGCTGCGGCTGATCCGCGCGCGGCAGCTGCTCAAGCAGACGCCGATGTCGATCATCGAAGTGGCCTCGGTGTGCGGCTTCGTCTCCACCCCGCACTTCTCCAAGTGCTACCGCGAATACTTCGGCATTCCACCGCGCGACGAGCGCGTCGGTTCCAACACTACGCAGCAGGTAGCGATGATGCCGTTGCCGCAGGCCCTGGTGCTGTCGCCATTGTCCGGCCCGCTGTCGGCCTTGAGCCAGGCGCGCAACGAGTCGACGTTTGCCAGTGTGAGGCTCTAAMTTSNSGAQPQNRAPQSIGFLLLDNFTLISLASAVEPLRMANQLSGRELYRWTTLTVDGGQVWASDGLQITPDASMHKAPALDTVIVCGGIGIQRTVTREHVSWLQSQARQSRRLGAVCTGSWALACAGLLDGFDCSVHWECLAAMQEAFPRVSMSTRLFTLDRNRFTSSGGTAPLDMMLHLISRDHGRELSAAISEMFVYERIRNEQDHQRVPLKHMLGTNQPKLQEIVALMEANLEEPIDLDELAVYVAVSRRQLERLFQKYLHCSPSRYYLKLRLIRARQLLKQTPMSIIEVASVCGFVSTPHFSKCYREYFGIPPRDERVGSNTTQQVAMMPLPQALVLSPLSGPLSALSQARNESTFASVRLPGPT0021945_104DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARNITHINE_USAGEPLANT_DERIVED_CARNITHINE_DEGRADATION,PGPT0021945-cdhR-K17736NANA
D1-35_03758264hypothetical proteinATGATGTACGCCGATTTGATCGACCAGGAAGACCTGCTGGGCCAGCTCAAGGCCCTGGGGCTGCCGATACCCAGCGGTGCGACCGCCGAGCAGGCCTGTGAATGCGCGGTGCGCGGCCTGGACCGGGCGCGCGCCAATGAACTGCGGCGCATGGTCAAGGACATGTACACCAGCAGCGCGACCATCCTGCCGGCGGTGCGTCAGGCGATCGACCAGCAACTGTTGCCAGCGTTGGCGCAATACCAGCAAAACCATAGCGCCTGAMMYADLIDQEDLLGQLKALGLPIPSGATAEQACECAVRGLDRARANELRRMVKDMYTSSATILPAVRQAIDQQLLPALAQYQQNHSANANANANANA
D1-35_037591164Gamma-butyrobetaine dioxygenaseATGAACATCGCCGCCGCTATTGCCGACTTCCGACGCTACCCTCTTGTCCAGGCATTGAGCGCTGTAACACCCTTGGGCGACCGGGTCCACGTCACGTGGGCCGACGGCCGGATCAGCCCGTTTCACCATCAATGGCTGCGGGACAACTGCCCCTGCGCGCAGTGTGTCTACAGCGTCACCCGCGAGCAGGTCCTGGAGATCGTCGACGTCCCGGAAGACCTGACGCCCGGCGCAATCGACATCGACGGCGCGGGCTGCCTACACGTGGTTTGGCAGGACGGCCATCAGAGCCTTTTCGACCCGGGTTGGTTGCGCGCCCATGCCTATGACGATCAATCCAGGGCCGAGCGACTGGCGGGCAGACCACAACGCCAACTATGGCAGCACGATCTGTCACTGCCAGTGTTCGAATACCAGGCCCTGATGGAGGACGCCGACACCTTGCTGAAATGGCTACTGGCAGTACGCGACATCGGCCTGACCCAGGTACGGGGCGTCCCCACCGAACCCGGCTCGCTGAAACTGATTGCCCAGCGCATTTCCTTTATCCGCGAAAGCAATTTCGGCGTGCTGTTCAACGTGCAGTCCAAGGCCGATGCCGACAGCAACGCCTATACCGCCTTCAATCTGCCGCTGCACAGCGACCTGCCAACACGGGAACTGCAGCCGGGTTTGCAGTTCCTGCATTGCCTGGTGAACGACGCCGACGGTGGCGAGAGCATCTTCGTCGACGGTTTCGCCATCGCCCAGGCGCTGCGCCGGGAAGACGCCGAAGCCTTCGACGCGCTGTGCCAGATCCCGGTGGAGTTTCGCAACAAGGATCGCCACAGCGACTACCGCTGCCTGGCGCCGATCATCGCCCTGGATACGCTGGGGCAGGTCTCGGAGATCCGCATGGCGAATTTCTTGCGCGGACCGTTCGATACGTCGGTGGAGCAGATGCCCAGGCTCTATCAAGCCTATCGCCGCTTCATTGCCCTGACCCGCGAGCCTCGGTTTCGCCTGGTACAGAGGCTTGAACCCGGCCAGCTCTGGTGCTTCGACAACCGTCGCACCCTCCACGCGCGCAATGCGTTCGACCCAGCCTCCGGGGCGCGACACTTCCAGGGGTGTTATGTCGATCGGGATGAATTGCTGTCGCGGATTCTGGTGTTGCAGCGTTAGMNIAAAIADFRRYPLVQALSAVTPLGDRVHVTWADGRISPFHHQWLRDNCPCAQCVYSVTREQVLEIVDVPEDLTPGAIDIDGAGCLHVVWQDGHQSLFDPGWLRAHAYDDQSRAERLAGRPQRQLWQHDLSLPVFEYQALMEDADTLLKWLLAVRDIGLTQVRGVPTEPGSLKLIAQRISFIRESNFGVLFNVQSKADADSNAYTAFNLPLHSDLPTRELQPGLQFLHCLVNDADGGESIFVDGFAIAQALRREDAEAFDALCQIPVEFRNKDRHSDYRCLAPIIALDTLGQVSEIRMANFLRGPFDTSVEQMPRLYQAYRRFIALTREPRFRLVQRLEPGQLWCFDNRRTLHARNAFDPASGARHFQGCYVDRDELLSRILVLQRPGPT0013696_407DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0013696-BBOX1_like-K00471NANA
D1-35_03760477lcdH_1L-carnitine dehydrogenaseATGCCCGCTCTTACCACCTACCAAACCCCCATCCTCCCGGAATGGGTCGACTACAACGGTCACTTGCGCGATGCCTTCTACCTGCTGATCTTCAGCTACGCGACCGACGCGCTGATGGACCAACTCGGCCTGGACAGCCAGAACCGCGAAGCCAGCGGCCATTCGCTATTCACCCTTGAACTGCACCTGAACTACCTCCACGAAGTGAAGCTCGGGGCCGAGGTAGAGGTGCACACACAACTCATCGGCCACGACACCAAACGCCTGCACCTCTACCACAGCCTGCACCTGGTGGGCGGAGACAAAGAGCTGGCCGGCAATGAGCAGATGCTGCTGCACGTCGACCTGGCCGGCCCGCGCTCAGCGCCTTTCACCGAGCAGACCCTGGGCCGACTCAAAGCCCTGATCGACGAACAATCCGACCTGCCGGCTCCGACCTGCATTGGCCGCGTCATCGCCTTGCCGCCCGCCCGATAAMPALTTYQTPILPEWVDYNGHLRDAFYLLIFSYATDALMDQLGLDSQNREASGHSLFTLELHLNYLHEVKLGAEVEVHTQLIGHDTKRLHLYHSLHLVGGDKELAGNEQMLLHVDLAGPRSAPFTEQTLGRLKALIDEQSDLPAPTCIGRVIALPPARPGPT0001850_1387DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0001850-ybgC-K07107NANA
D1-35_03761966lcdH_2COG1250L-carnitine dehydrogenaseATGAGCTTCATCACCAACATCAGAACCTTCGCCGCCCTGGGCAGCGGCGTCATCGGCAGCGGTTGGATCAGCCGCGCCCTGGCCCACGGCCTGGACGTGGTCGCCTGGGACCCGGCGCCGGGTGCCGAAGCGGCCTTGCGCAAACGCGTCGCCAACGCCTGGGGCGCCTTGGAAAAACACGGCCTGGCCCCCGGCGCATCGCAGGATCGCTTGCGCTTTGTTGCGACCGTCGAGGAATGCGTACGCGAGGCCGATTTCATTCAGGAAAGCGCTCCCGAGCGGCTGGAGCTCAAGCTTGAGCTGCACGCCCAGATCAGCGCCGCCGCCAAGCCGGATGCGCTGATCGGCTCGAGCACCTCGGGGCTTTTGCCGAGCGAGTTCTATGCAAACTCCACTCATCCGGAGCGCTGCGTGGTCGGGCATCCATTCAACCCGGTCTACCTGCTGCCCCTGGTGGAAGTGGTCGGTGGCAAGCACACCGCGCCTGAAGCCGTACAAGCGGCGATGGAGGTCTACGAATCCCTTGGCATGCGCCCGCTGCACGTGCGCAAGGAAGTCCCCGGTTTCATCGCCGATCGCCTGCTCGAAGCGCTGTGGCGCGAGGCCCTGCACCTGGTCAACGACGGCGTGGCGACCACCGGCGAAATCGACGATGCCATTCGTTTTGGCGCCGGCCTGCGCTGGTCGTTCATGGGCACTTTCCTGACCTACACCCTGGCCGGCGGCGATGCCGGGATGCGCCATTTCATGGCCCAGTTCGGCCCGGCGCTGCAATTGCCGTGGACCTACCTGCCGGCGCCGGAGCTGACCGAGAAACTGATCGACGATGTGGTGGAAGGGACGAGCGAGCAACTGGGGCGCCACAGCATTTCGGCGCTGGAGCGCTATCGTGATGATTGCCTGATGGCGGTGCTGGAGGCGGTGAAGGCCACCAAGGAAAAGCATGGAATGGCCTTCGCCGAGTAAMSFITNIRTFAALGSGVIGSGWISRALAHGLDVVAWDPAPGAEAALRKRVANAWGALEKHGLAPGASQDRLRFVATVEECVREADFIQESAPERLELKLELHAQISAAAKPDALIGSSTSGLLPSEFYANSTHPERCVVGHPFNPVYLLPLVEVVGGKHTAPEAVQAAMEVYESLGMRPLHVRKEVPGFIADRLLEALWREALHLVNDGVATTGEIDDAIRFGAGLRWSFMGTFLTYTLAGGDAGMRHFMAQFGPALQLPWTYLPAPELTEKLIDDVVEGTSEQLGRHSISALERYRDDCLMAVLEAVKATKEKHGMAFAEPGPT0021955_341DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARNITHINE_USAGEPLANT_DERIVED_CARNITHINE_DEGRADATION,PGPT0021955-lcdH|cdhA-K17735NANA
D1-35_03762888kceCOG32463-keto-5-aminohexanoate cleavage enzymeATGAACCACGACGTCATCATCACCTGCGCACTCACCGGTGCTGGCGACACGACCGCCAGGAGCCCGCACGTGCCGGTCACCCCGAAACAGATCGCCGCTGCGGCCGTCGAAGCGGCCAAGGCCGGCGCCACCGTGGTCCACTGCCATGTGCGCGACCCACAGACCGGCAAATTCAGCCGCGACGTGGCGCTGTACCGCGAAGTGATGGAGCGCATCCGCGAGGCCGACGTCGACATCATCGTCAATCTCACCGCCGGCATGGGCGGCGACCTGGAAATCGGTAGCGGCGAAAAACCCATGGAGTTCGGCCCCAACACCGATCTGGTGGGCCCACTGACCCGCCTGGCCCACGTCGAGGAGCTGTTGCCGGAAATCTGCACGCTGGATTGCGGCACCCTTAACTTCGGCGACGGCGACACCATTTACGTCTCCACCCCGGCGCAACTGCGGGCCGGCGCCAAGCGCATCACCGAGCTGGGGGTCAAGGCCGAGCTGGAGATCTTCGACACCGGGCACCTGTGGTTCGCCAAGCAGATGATCAAGGAAGGCCTGTTGGACAACCCCTTGTTCCAGCTCTGCCTGGGTATCCCGTGGGGCGCGCCGGCGGATACCACCACCATGAAGGCCATGGTCGACAACCTGCCCGCCGACGCGGTGTGGGCCGGCTTCGGTATCGGCCGCATGCAAATGCCGATGGCGGCACAGGCCGTTTTGCTGGGCGGCAACGTGCGGGTCGGGCTGGAAGACAACCTCTGGCTGGACAAAGGCGTACTCGCCACCAATGGACAACTGGTGGAGCGTGCCGGCGAAATCCTCAGCCGCCTCGGCGCGCGCGTGCTTACGCCGGCTGAGGGCCGCAAGAAAATGGGCCTGACCCAGCGCGGCTAAMNHDVIITCALTGAGDTTARSPHVPVTPKQIAAAAVEAAKAGATVVHCHVRDPQTGKFSRDVALYREVMERIREADVDIIVNLTAGMGGDLEIGSGEKPMEFGPNTDLVGPLTRLAHVEELLPEICTLDCGTLNFGDGDTIYVSTPAQLRAGAKRITELGVKAELEIFDTGHLWFAKQMIKEGLLDNPLFQLCLGIPWGAPADTTTMKAMVDNLPADAVWAGFGIGRMQMPMAAQAVLLGGNVRVGLEDNLWLDKGVLATNGQLVERAGEILSRLGARVLTPAEGRKKMGLTQRGPGPT0021956_2DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARNITHINE_USAGEPLANT_DERIVED_CARNITHINE_DEGRADATION,PGPT0021956-cdhC-NANANA
D1-35_03763945hypothetical proteinATGAAACACCTGATCAGCTACTGCGTTCTTGCAATCAGCGCCACGTCTCTCCTGAACCAGACAGCCCTCGCAGCCGAACCCGCTGCCTGCCAGAACGTGCGCCTGGGCGTGGTCAACTGGACCGACGTCATTGCCACCAGCGCCTTGACCCAAGTGATGCTCGATGGCCTCGGTTACAAGACCAAGCAGACCAGCGCCTCCCAGCAGATCATTTTCGCCGGCATCCGCGACCAGCGCCTGGACCTGTTCCTGGGCTACTGGAACCCGCTGATGACCCAGACCATCACCCCGTTCGTCGAGGCGAAGCAGGTCAAGGTGCTGGAGCAGCCGAGCCTGAAGGACGCCCGCGCCACCCTGGCCGTACCCACTTACCTGGCCGACAAGGGCCTGAAGACCTTCGCTGATATCGCCAAATTCGAAAAAGAGCTGGCCGGCAAGATCTACGGCATCGAGCCCGGTTCCGGTGCCAACACTCAGATCAAAGCGATGATCGCCAAGAACCAGTTTGGCCTGGGCAAGTTCCAGCTGGTCGAGTCCAGCGAGGCCGGCATGCTCGCGGCGGTAGACCGCGCCGTGCGGCGCAAGGAAGCCGTGGTGTTCTTCGGCTGGGCGCCGCACCCGATGAACGTCAACGTGCAGATGACCTATCTCACCGGCAGCGAAGACGCCCTCGGCCCGAATGAAGGCATGGCCAGCGTCTGGACCGTCACCGCGCCGGACTACGCCGAGCAATGCCCGAACGTCAGCCGCCTGCTGAGCAACCTGACCTTCAGCGCCGAAGACGAGAGCCGGATGATGCAGCCGCTGCTCGACCACAAGGACCCACTGGAGTCCGCCCGGCAATGGCTGAAGGACCACCCGCAAGACAAGCAGCGCTGGCTCGAAGGCGTGACCACTTTCGACGGCAAGCCGGCCATCGACAACCTGAAACTGACCAGCAACTGAMKHLISYCVLAISATSLLNQTALAAEPAACQNVRLGVVNWTDVIATSALTQVMLDGLGYKTKQTSASQQIIFAGIRDQRLDLFLGYWNPLMTQTITPFVEAKQVKVLEQPSLKDARATLAVPTYLADKGLKTFADIAKFEKELAGKIYGIEPGSGANTQIKAMIAKNQFGLGKFQLVESSEAGMLAAVDRAVRRKEAVVFFGWAPHPMNVNVQMTYLTGSEDALGPNEGMASVWTVTAPDYAEQCPNVSRLLSNLTFSAEDESRMMQPLLDHKDPLESARQWLKDHPQDKQRWLEGVTTFDGKPAIDNLKLTSNPGPT0013640_2453DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013640-gbuC|proX-K02002NANA
D1-35_03764960cdhR_11COG4977HTH-type transcriptional regulator CdhRATGTCCCAGGATTTTTATTTCTTGTTGATGCCGGGTTTCTCGGCCATCGGTTTCATCTCGGCCATCGAGCCCTTGCGGGTCGCCAACCGTTTTCGCGGCGAGCTGTACCGCTGGCATGTACTGAGCGCCGATGGCGGTGCGGTGCTGGCGAGCAACGGCATGTCGGTCAACGCCGACGCCGCGCTGGAGCCGCTGAAGAAGGGTGCGACGCTGTGGGTCGTGGCGGGTTTCGAACCGTTGAAATTTGCCAGCCCGGCGTTGGAGCGCTGGTTGCATCGACTGGACAATGAAGGTGTCATCCTTGGCGGTATCGACACCGGCAGCGTGGTCCTGGCCGAGGCGGGGCTACTGGATGGCCACCGGGTGACGCTGCACTGGGAGGCGATCGAGGCGTTCAAGGAATCTTATCCACAGCTCGGCGTGACCCAGGAACTGTTCGAGATTGACCGCCGTCGCATCACTTGCGCCGGCGGCACCGCCTCCATCGACCTGATGCTCGACCTGATCGGCCAGGCCCACGGCCCGGAGCTGGCGATCCAGGTCAGCGAGCAATTCGTGCTCGGTCGCATTCGTCCGCGCAAGGATCACCAGCGCATGGAAATCGCCACGCGCTATGGCATCCGCAACAAGAAGCTGGTGCAGGTCATCGGCGAGATGGAGACCCATAGCGAACCGCCCTTGAGCACCCTGGCCCTGGCCGAGTCGATCAACGTGACGCGGCGTCAGCTGGAGCGCTTGTTCCGGCTGCACCTGAACGACACCCCGAGCAACTTCTACCTGCGCCTGCGCCTGGAAAAGGCCCGGCAACTGCTGCGTCAGACCGACATGAGCGTGCTGGAGGTGAGCATCGCCTGCGGGTTCGAGTCGCCGTCGTACTTCACCCGCAGCTATCGGGCACGGTTTGCCCGGTGTCCACGGGAGGATCGGCGACGGCAGGGGGATGAGCGGGAGGTGGTTTGAMSQDFYFLLMPGFSAIGFISAIEPLRVANRFRGELYRWHVLSADGGAVLASNGMSVNADAALEPLKKGATLWVVAGFEPLKFASPALERWLHRLDNEGVILGGIDTGSVVLAEAGLLDGHRVTLHWEAIEAFKESYPQLGVTQELFEIDRRRITCAGGTASIDLMLDLIGQAHGPELAIQVSEQFVLGRIRPRKDHQRMEIATRYGIRNKKLVQVIGEMETHSEPPLSTLALAESINVTRRQLERLFRLHLNDTPSNFYLRLRLEKARQLLRQTDMSVLEVSIACGFESPSYFTRSYRARFARCPREDRRRQGDEREVVPGPT0021945_164DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARNITHINE_USAGEPLANT_DERIVED_CARNITHINE_DEGRADATION,PGPT0021945-cdhR-K17736NANA
D1-35_03765417hypothetical proteinATGATCATCTGCGGCATCGAAATCAAAGGCAGCGAAGCGATCATCGCCGTTGCTTCGCTGGACCAGCAGGCGTTGAGCCACGTCGCGCTCAGTACCAAGAAAATCGCCCTTGACGACGATGACGAAGCCGCCAACGTCAAGGCCTTTGCCGCGCAGGTTCGGGCGTTCGTGACGGACAACGGCATCGAACGCATCGCCATCAAGAAGCGCAGCAAGAAAGGCGAATTCGCCGGTGGGCCGACCACCTTCAAGATCGAGGGCATTTTCCAGTTGCTGGAAGGTTGCGAGGTGATGCTGCTGTCGCCGCAGACCATCAACGCGCAGAGCAAGAAACACGACTTCGTCCTGCCGGCGACGCTGAACAAGTATCAGCATGAGGCGTACAAGGCAGCCTGCTCGGCACTGATGAAGAAATAGMIICGIEIKGSEAIIAVASLDQQALSHVALSTKKIALDDDDEAANVKAFAAQVRAFVTDNGIERIAIKKRSKKGEFAGGPTTFKIEGIFQLLEGCEVMLLSPQTINAQSKKHDFVLPATLNKYQHEAYKAACSALMKKNANANANANA
D1-35_03766324hypothetical proteinATGAACGTACCTACTGACATTCAGATCATCAACGACGCAGACGGAAATCCGGCCTTTGTGGTCATTCCGTATGCGCAATACGTTGCGCAGAAATTGGAACCCGATCTGATTCCTCATGAAGTCGTTAGCCGTATCGTCGACGGCGCCACGCCCATACGCGCCTGGCGCGAGCATTTGAACCTGACCCAAGACGAAGTTGCCAAGCGTCTCGGTATTTCCCAACCGGCGTTTGCCCAGCAAGAATCTGTGGCCAAACCTCGCCGAGCTACACGAGAAAAAATTGCCTCTGCCTTTGGCATCCATGCTGATCAACTGGAGCTATAGMNVPTDIQIINDADGNPAFVVIPYAQYVAQKLEPDLIPHEVVSRIVDGATPIRAWREHLNLTQDEVAKRLGISQPAFAQQESVAKPRRATREKIASAFGIHADQLELNANANANANA
D1-35_03767402hypothetical proteinATGAAATCGATTTTCTTCGCCCTGGCACTGATCAGCACCGTCGCCCACGCGACCGAAGACACCGAACCCAACCCCTGCGACGAAGTTGAAAACGACGTCCAGACCCTGGCCTGTTCGGCCTACGGCAAAGCCGCCGCCGAACAACTGCTCAACGAAAACCTGCAAAGCCTCAACGAACGCCTGCAAACCCGCTACGCCAGCGACAAGGCCCAGCTCAACGACATCACCGCCAAGATCAAGGCCGCCCAGCAACTGTGGCAAAAGCAGCGCGAAGCCGACTGCGCGATCGCCGCCTTCCCGGCCAAACCTGGCAGCGACGCCTACAAAATCGCCGAAAACGACTGCATGGCCCAGGTGAGCGATGACCGGTCGGAGTTTTTGGAGTCGATTGGACAGGAATAAMKSIFFALALISTVAHATEDTEPNPCDEVENDVQTLACSAYGKAAAEQLLNENLQSLNERLQTRYASDKAQLNDITAKIKAAQQLWQKQREADCAIAAFPAKPGSDAYKIAENDCMAQVSDDRSEFLESIGQENANANANANA
D1-35_03768978hypothetical proteinATGAGCCCAGCCGAATTGCACGCCGACAGCATCGTTATCGACGGGCTGATCATTGCCAAGTGGAACCGTGACCTGTTCGAAGACATGCGCAAGGGCGGCCTGACCGCAGCCAACTGCACCGTGTCGGTGTGGGAAGGTTTCCAGGCCACCATCAACAACATCGTCGCCAGCCAGAAACTGATCCGCGAAAACAGCGACCTGGTGATCCCGGTGAAGACCACCGCCGACATCCGTCGTGCCAAGGAGCAGGGCAAGACCGGCATCATCTTCGGCTTCCAGAACGCCCATGCCTTCGAGGACCAGCTCGGCTATGTCGAGATCTTCAAGCAGCTGGGCGTCGGCGTGGTGCAGATGTGCTACAACACCCAGAACCTGGTGGGCACCGGCTGCTACGAGCGCGACGGCGGCCTGTCGGGCTTCGGTCGTGAAATCGTCGCCGAGATGAACCGCGTCGGCATCATGTGCGACCTGTCCCACGTTGGTTCCAAGACTTCCGAAGAAGTCATTCTCGAATCGAAGAAGCCGGTCTGCTACTCCCACTGCCTGCCGTCCGGTCTGAAAGAGCACCCACGCAACAAGTCTGACGAGGAACTGAAGTTCATCGCCGACCACGGCGGTTTCGTCGGCGTGACCATGTTCGCGCCGTTCCTGGCCAAGGGCATCGATTCGACCATCGACGACTACGCCGAAGCCATTGAATACACCATGAACATCGTCGGCGAAGACGCCATCGGCATCGGCACTGACTTCACCCAGGGCCATGGCCAGGATTTCTTCGAGATGCTGACCCACGACAAGGGCTATGCCCGTCGTCTGACCAGCTTTGGCAAGATCATCAACCCCCTGGGCATCCGCACCGTGGGCGAGTTCCCGAACCTCACCGAGACGCTGCTCAAGCGCGGTCACCCGGAGCGGGTGGTGCGCAAGATCATGGGCGAGAACTGGGTGAACGTTCTCAAGGACGTCTGGGGCGAATAAMSPAELHADSIVIDGLIIAKWNRDLFEDMRKGGLTAANCTVSVWEGFQATINNIVASQKLIRENSDLVIPVKTTADIRRAKEQGKTGIIFGFQNAHAFEDQLGYVEIFKQLGVGVVQMCYNTQNLVGTGCYERDGGLSGFGREIVAEMNRVGIMCDLSHVGSKTSEEVILESKKPVCYSHCLPSGLKEHPRNKSDEELKFIADHGGFVGVTMFAPFLAKGIDSTIDDYAEAIEYTMNIVGEDAIGIGTDFTQGHGQDFFEMLTHDKGYARRLTSFGKIINPLGIRTVGEFPNLTETLLKRGHPERVVRKIMGENWVNVLKDVWGEPGPT0020950_3009DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_PEPTIDE_METABOLISM,PGPT0020950-acdP-K01273NANA
D1-35_03769531hypothetical proteinATGGCCAAGATCGCCCCGCAACTGCCAATCGAAGTCGACAGCGAAACCGGTGTCTGGACCTCCGACGCCCTGCCGATGCTATACGTGCCGCGGCACTTCTTCGTCAACAACCACATGGGTATCGAGGAAGTGCTGGGCGCCGATGCCTACGCCGAAATCCTCTACAAGGCCGGCTACAAATCCGCCTGGCACTGGTGCGAAAAAGAAGCCGAATGTCACGGCCTGGAAGGCGTCGCGGTGTTCGAGCATTACATGAAGCGCTTGTCCCAGCGTGGCTGGGGCCTGTTCAAGATCCAGGACATCGACCTGGATAAAGGCACCGCTAGCGTCAAGCTCGAGCATTCAGCGTTCGTCTACGTGTACGGCAAGGTCGGGCGCAAGGTCGACTATATGTTCACCGGCTGGTTCGCCGGCGCCATGGATCAGATTCTCGCCGCTCGCGGCAGCCAGATCCGCACCGTGGCCGAGCAGGTCTACGGCGGTTCCGAAGAAGGCCACGACGACGGCCTGTTCATCGTCAAGCCGTTGTAAMAKIAPQLPIEVDSETGVWTSDALPMLYVPRHFFVNNHMGIEEVLGADAYAEILYKAGYKSAWHWCEKEAECHGLEGVAVFEHYMKRLSQRGWGLFKIQDIDLDKGTASVKLEHSAFVYVYGKVGRKVDYMFTGWFAGAMDQILAARGSQIRTVAEQVYGGSEEGHDDGLFIVKPLNANANANANA
D1-35_037702061stcD_2putative N-methylproline demethylaseATGGCTTTTGAAGCAATGTTCCAGCCGATCCAGATCGGCAAGCTGACCATCCGCAACCGCGTGCTCAGCACCGCGCACGCCGAGGTCTACGCCACCGACGGCGGCATGACCACCGACCGCTATGTGAAATATTACGAAGAGAAGGCCAAGGGCGGCATCGGCCTGGCAATCTGCGGCGGCTCGTCCGTGGTTGCCATCGACAGCCCGCAGGAATGGTGGAGTTCGGTGAACCTGTCCACCGACCGCATCATCCCGCACTTCCAGAACCTGGCCGACGCCATGCACAAGCATGGCGCCAAGATCATGATCCAGATTACCCATATGGGTCGTCGCTCGCGCTGGGACGGTTTCAACTGGCCGACCCTGATGTCGCCGTCCGGCGTGCGTGAGCCGGTGCATCGTGCGACCTGCAAGACCATCGAGCCGGAAGAAATCTGGCGGGTGATCGGCAACTACGCCCAGGCCGCGCGCCGGGCCAAGGCCGGTGGCCTGGACGGCGTCGAGCTGTCCGCCGTGCACCAGCACATGATCGACCAGTTCTGGAGCCCGCGGGTCAACAAGCGGACCGACGAGTGGGGCGGCACTTTTGAGGGGCGCATGAAGTTCGGCCTGGAAGTGTTGAAGGCCGTGCGCGCCGAAGTGGGTGACGATTTCTGCGTGGGCATGCGCCTGTGCGGCGACGAATTCCACCCGGACGGCTTGTCCCACGAGGACATGAAGCAGATCGCCAAGTACTACGACGACACCGGCATGCTCGATTTCATCGGTGTGGTGGGCTCGGGTTGCGACACCCACAACACCTTGGCCAACGTCATCCCGAACATGAGTTATCCACCGGAGCCGTTCCTGCACCTGGCCGCCGGTATCAAGGAGGTGGTCAAGGTTCCGGTGCTGCATGCGCAGAACATCAAGGACCCGAACCAGGCCACGCGGATCCTCGAGGGCGGCTACGTCGATATGGTCGGCATGACCCGCGCCCACATCGCCGACCCGCACCTGATCGCCAAGATCAAGATGGGCCAGATCGACCAGATCAAGCAGTGCGTCGGCGCCAACTACTGCATCGACCGCCAGTACCAGGGCCTGGACGTGCTGTGTATCCAGAACGCCGCGACCTCCCGTGAATACATGGGCGTGCCGCACATCATCGAGAAATCCACTGGGCCGAAACGCAAAGTCGTGGTGGTCGGTGCCGGCCCGGCCGGGATGGAAGCGGCGCGCGTGGCCGCCGAGCGTGGGCACGACGTGACGCTGTTCGAGAAGAAAGAGTTCATCGGCGGACAGATCACCACCGCCTCGAAAGCCCCGCAACGGGACCAGATCGCCGGTATCACCCGCTGGTTCCAGCTGGAGCTGGCGCGGTTGAAAGTCGACCTGCGCCTGGGCGTGGCGGCGGATGCGCCAACCATCATGGACTTGCGTCCGGACGTGGTGGTGCTGGCCGTCGGTGGCCACCCGAACGTCGAGCAGAACGAGCACTGGGGCGCCGCCGAAGGGTTGGTGGTCAGCAGCTGGGACGTACTCGACGGCAAGGTTGCACCGGGCAAGAACGTGCTGGTCTACGACACCATCTGCGAGTTCACCGGCATGTCGGTGGCCGACTTCCTCGCCGACAAGGGCAGCCAGGTCGAGATCGTCACCGACGATATCAAGCCAGGCGTGGCCATTGGCGGGACGTCGTTCCCGACCTATTACCGCAGCATGTACCCCAAGGAAGTGATCATGACCGGGGACATGATGCTGGAGAAGGTCTACCGCGAAGGCGACAAGCTGGTAGCGGTGCTGGAGAACGAATATACCGGCGCCAAGGAAGAGCGCGTGGTGGACCAGGTGGTGGTGGAGAACGGCGTGCGGCCGGACGAAGAAATCTACTACGCGCTGAAGGAGGGTTCGCGCAACAAGGGCCAGATCGACGTCGAAGCACTGTTCGCGATCAAGCCGCAACCGTGCCTTGAGCAGAGTGGCGATGGCTACCTGCTGTTCCGCATCGGCGACTGCGTGGCCCAGCGTAATACCCACGCGGCCATCTACGACGCCCTGCGGCTGTGCAAGGATTTCTAAMAFEAMFQPIQIGKLTIRNRVLSTAHAEVYATDGGMTTDRYVKYYEEKAKGGIGLAICGGSSVVAIDSPQEWWSSVNLSTDRIIPHFQNLADAMHKHGAKIMIQITHMGRRSRWDGFNWPTLMSPSGVREPVHRATCKTIEPEEIWRVIGNYAQAARRAKAGGLDGVELSAVHQHMIDQFWSPRVNKRTDEWGGTFEGRMKFGLEVLKAVRAEVGDDFCVGMRLCGDEFHPDGLSHEDMKQIAKYYDDTGMLDFIGVVGSGCDTHNTLANVIPNMSYPPEPFLHLAAGIKEVVKVPVLHAQNIKDPNQATRILEGGYVDMVGMTRAHIADPHLIAKIKMGQIDQIKQCVGANYCIDRQYQGLDVLCIQNAATSREYMGVPHIIEKSTGPKRKVVVVGAGPAGMEAARVAAERGHDVTLFEKKEFIGGQITTASKAPQRDQIAGITRWFQLELARLKVDLRLGVAADAPTIMDLRPDVVVLAVGGHPNVEQNEHWGAAEGLVVSSWDVLDGKVAPGKNVLVYDTICEFTGMSVADFLADKGSQVEIVTDDIKPGVAIGGTSFPTYYRSMYPKEVIMTGDMMLEKVYREGDKLVAVLENEYTGAKEERVVDQVVVENGVRPDEEIYYALKEGSRNKGQIDVEALFAIKPQPCLEQSGDGYLLFRIGDCVAQRNTHAAIYDALRLCKDFPGPT0021970_155DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_STACHYDRINE_USAGEPLANT_DERIVED_STACHYDRINE_DEGRADATION,PGPT0021970-hpbA-K22551NANA
D1-35_037711950fadFCOG0247putative iron-sulfur-binding oxidoreductase FadFATGTTGAACACCCTTCTTCCAATCCTGCTGTTCGCAGCCCTGGGCCTCGCGGTCCTCGGTGCCTTGCGGCGGGTGAACATGTGGCGCCGGGGCCGACCGTCGAAAGTCGACCTGATCGGTGGCATCTTCGCCATGCCCAAGCGCTACATGGTGGACTTGCACCACGTGGTGGCGCGGGACAAATACATCGCCAATACCCACGTCGCCACGGCGGGCGGGTTTGTCCTGGCGGCGGTGCTGGCGATCCTGGTGCACGGTTTCGGCCTGCAGAGCCGTATCCTCGGCTATGCCTTGCTGTTCGCCACATTGCTGATGTTCAGCGGTGCGATCTTCATGGCCCTGCGTCGTCGCAATCCACCTTCGCGGCTGTCGAAGGGCCCCTGGATGCGCCTGCCGAAAAGCCTGTTCGCGTTTTCCATCAGCTTCTTCCTGGTGACCTTGCCGGTGGCCGGGATTCTGCCGGCGGACTTCGGTGGCTGGTTGCTGGTGGCGCTGTTGGGGCTGGGCGTGCTCTGGGGCGTCTCGGAGATGTTCTTCGGCATGACCTGGGGCGGGCCGATGAAGCACGCCTTCGCCGGTGCCCTGCACCTGGCCTGGCACCGCCGTGCAGAACGTTTTGGTGGCGGCCGTTCCACCGGCCTCAAGCCGCTGGACCTGAACGACCCAGCCGCACCGCTGGGTGTGGAGAAACCCAAGGATTTCACCTGGAACCAGTTGCTCGGCTTCGACGCCTGCGTACAGTGCGGCAAGTGCGAAGCGGCCTGCCCGGCGTTCGCCGCCGGCCAGCCGCTGAACCCGAAAAAGCTCATCCAGGACATGGTCGTCGGCCTGGCCGGCGGCACCGATGCGAAGTTCGCCGGCAGTCCTTACCCAGGCAAACCCGTTGGCGAGCACGGCGGTAATCCACACCAGCCGATCGTCAACGGTCTGGTGGACGCCGAGACCCTGTGGTCCTGCACCACTTGCCGGGCGTGTGTCGAGGAGTGCCCGATGATGATCGAGCACGTCGACGCCATCGTCGACATGCGCCGGCACCTGACCCTGGAAAAAGGCGCCACGCCGAACAAGGGCGCCGAGGTGCTGGAAAACCTCATCGCCACCGACAACCCTGGCGGCTTCGCCCCGGGCGGGCGGATGAACTGGGCGGCGGACTTGAACCTTAATCTGCTCAGCGAGAAGAAATCCACCGACGTGCTGTTCTGGGTCGGCGACGGTGCCTTCGACATGCGCAACCAGCGCACCTTGCGCGCCTTCGTCAAAGTCCTCAAGGCGGCGAAGATCGACTTCGCCGTGCTCGGCCTCGAAGAACGCGACAGCGGCGACGTGGCCCGGCGCCTCGGTGATGAAGCGACGTTCCAGCTGTTGGCCAAGCGCAACATCCAGACCCTGGCCAAATACCGCTTCAACCGCATCGTCACCTGCGACCCCCACAGCTTCCACGTGCTGAAAAACGAGTACGGCGCCTTCGATGGCAACTACCTGGTGCAGCACCACAGCACCTATATGGCGGAAATCATCGACGCCGGCGCGCTGAACCTCGGCCAGCACAAGGGCGACAGCGTGACTTATCACGACCCCTGCTACCTGGGCCGCTACAACGGCGAATACGAGGCACCGCGCCAGGTGCTGCGTGCGCTGGGCATCGAGGTCAAGGAGATGCAGCGCTCCGGTTTCCGTTCCCGTTGCTGCGGCGGCGGTGGCGGTGCGCCGATCACCGACATTCCGGGCAAGCAGCGTATTCCTGACATGCGCATGGAAGACATCCGCGAAACCGGCGCCGAACTGGTGGCCGTGGGTTGTCCACAGTGCACCGCGATGCTGGAAGGCGTGGTCGAACCACGACCAATGATCAAGGACATTGCCGAACTGGTGGCCGATGCGCTGCTCGAGGATACGACCCCGAGCAAGCCCGTGGCTCCGGCCAAACGTGAACCTGCGGAGGTGCATTGAMLNTLLPILLFAALGLAVLGALRRVNMWRRGRPSKVDLIGGIFAMPKRYMVDLHHVVARDKYIANTHVATAGGFVLAAVLAILVHGFGLQSRILGYALLFATLLMFSGAIFMALRRRNPPSRLSKGPWMRLPKSLFAFSISFFLVTLPVAGILPADFGGWLLVALLGLGVLWGVSEMFFGMTWGGPMKHAFAGALHLAWHRRAERFGGGRSTGLKPLDLNDPAAPLGVEKPKDFTWNQLLGFDACVQCGKCEAACPAFAAGQPLNPKKLIQDMVVGLAGGTDAKFAGSPYPGKPVGEHGGNPHQPIVNGLVDAETLWSCTTCRACVEECPMMIEHVDAIVDMRRHLTLEKGATPNKGAEVLENLIATDNPGGFAPGGRMNWAADLNLNLLSEKKSTDVLFWVGDGAFDMRNQRTLRAFVKVLKAAKIDFAVLGLEERDSGDVARRLGDEATFQLLAKRNIQTLAKYRFNRIVTCDPHSFHVLKNEYGAFDGNYLVQHHSTYMAEIIDAGALNLGQHKGDSVTYHDPCYLGRYNGEYEAPRQVLRALGIEVKEMQRSGFRSRCCGGGGGAPITDIPGKQRIPDMRMEDIRETGAELVAVGCPQCTAMLEGVVEPRPMIKDIAELVADALLEDTTPSKPVAPAKREPAEVHNANANANANA
D1-35_037721221fixBProtein FixBATGACCGACATCATCCGCCGCGACCCTCGCGCCGAGTGGATCGCCCGTAACCGGCTGCACCCGCTGCACGCGGCCATGCAACCGGTGCAGCACAGCTGGATGGGCCCTAACGGCGTCATTCGCAAGAACGTCCATGGGGTCGGCTTCATCGGCCCCAACGGCATCAAGCGCATCGACCGCAGCGGCGCCCAGCAGGGCGGCGCGACCAAGCGCACCGCGGCCACCGAAGTGCAGCTACCGCTGCATCAGGTGCCGCAACCGGCGTTTTACATCAGTGTGGTCCCGGACATGGTCGGTGGCCGTCTCAGCAGTCACGACCGCGACCTGTTGGGCCTTGCCCATCAATTGGCGGGCGCGGACGGCGCGGTCCTGGCGGTGGTCTTCGGCGAGCATAAAGAGAATGCCTTCGCCACGGCGGGCGTGGACCGCTTGCTGGTGCTTGAGGGCGAGGAATTCAGCGGTTATGCACCGGAACAACGGGTCCAAGGCCTGCGGGCTGTGGATAACCAGTTCAGCCCACGCCATTGGCTGTTGCCTGACAGCCGCAGCGGTGGCGGTGAACTGGGTCGGCGCTTCGCCGCGGCTTTGGGCGAACGCCCGGCCACTCGTGTCTGGCAGGTCAAGGGCGAAGAGTGCATCGGCCGTGCCGGTGCGGGTCTGCAAGACCTGGCTCGGCCGTTGGCGCGACTGATCCTGGCAGCGGCTGAATGCGCCGAGCCGGTTAGCGAGACCCGCCACGAGGTCTTGCCGGTGGAGTTATCCACAAGCGTGGCGCGCAGCTTGTCGCGGATCGAGGATCTTGGTGCGGTGGCGGTGGATCCGGGCGCGATCCCGATGGCCGAGGCCGAGTTCATTTTCTCCGGCGGCAACGGCGTCAAGGACTGGGAGCTTTTCCACAGGACAGCGGCGGCCTTGGGCGCAACCGAAGGTGCTTCGCGGGTGGCGGTGGACGACGGTTACATGGCTCGCGATCGCCAGGTTGGCGCCAGCGGCACCTGGGTCACCGCACGGGTCTACGTGGCCGTGGGGATTTCCGGGGCGATCCAGCACCTGCAAGGCATCGGTGCCTGCGACAAGGTGGTGGCGATCAACCTTGATCCGGGCTGCGACATGATCAAGCGCGCGGACTTGTCGGTGATCGGCGACAGCGCGGCGATTCTCCAGGCCCTGATCGCGGCGGTAGAGGCTTACCGCAACGAAGCCAGGCGTGATGCGGCTTAAMTDIIRRDPRAEWIARNRLHPLHAAMQPVQHSWMGPNGVIRKNVHGVGFIGPNGIKRIDRSGAQQGGATKRTAATEVQLPLHQVPQPAFYISVVPDMVGGRLSSHDRDLLGLAHQLAGADGAVLAVVFGEHKENAFATAGVDRLLVLEGEEFSGYAPEQRVQGLRAVDNQFSPRHWLLPDSRSGGGELGRRFAAALGERPATRVWQVKGEECIGRAGAGLQDLARPLARLILAAAECAEPVSETRHEVLPVELSTSVARSLSRIEDLGAVAVDPGAIPMAEAEFIFSGGNGVKDWELFHRTAAALGATEGASRVAVDDGYMARDRQVGASGTWVTARVYVAVGISGAIQHLQGIGACDKVVAINLDPGCDMIKRADLSVIGDSAAILQALIAAVEAYRNEARRDAAPGPT0001040_263DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0001040-fixB|etfA-K03522NANA
D1-35_03773771hypothetical proteinATGAGTACCCAAGTGATCAGCCTCGTCTCCATCGGCGCCCACCCGACCTCTGGTCGGCCCCGGCGCGCCGAACAGGACGCCCGCGCCGTGGAGCTGGGCCTGCAACTGGCCGGCAATGAACTGCAAGTGCTGCATGCCGGCGACGTGGCCGAACCGGCACTGCGCGCCTACCTGGGCATGGGCCTGGATGAGCTTCACGTGTTGGATAATCCAGAGGGCGCCGATGCGTTGCCGGCGTTGACCGAATATCTGCGAGACGCTGGCGCCCAAGTGGTGCTCACCGGCAGCCAGGCGGAAACCGGTGAAGGCTCGGGCATGCTGCCGTTTCTGTTGGCGGAAAACCTCGGTTGGCCGTTGGTGGTGGGATTGGCCCAGGTCGAATCCATCGACAACGGCGTGGCCCTGGTGCTGCAAGCCTTGCCCCGCGGCCAGCGCCGTCGGCTCAAGGTGCGCCTGCCGTTTCTGGCCACTGTGGATAACGCCGCGCCCAAACCACGGCAGAGCGCCTATGGCCCGGCGCGGCGTGGAGCGTTGCAGGCGGAAGAAGTCGAAGTGGTCGACGACAGCCTGCTGGCGGTGGCAACCCTGCAACCGGCCAAGCCACGGCCCAAGCGCCTGAAGGTCATCAAGGCCAAGAGCGGCGCCGACCGCATGAAAGCCGCCACGGCCAAGGCCAGCGGCGGAGGTGGGCAGGTGCTCAAGGGTGTCACTCCGGAGGCGGGGGCCGAGGCGATTTTGAAGCTGCTGGTGGAGGAAGGGGTAGTTCGCTAGMSTQVISLVSIGAHPTSGRPRRAEQDARAVELGLQLAGNELQVLHAGDVAEPALRAYLGMGLDELHVLDNPEGADALPALTEYLRDAGAQVVLTGSQAETGEGSGMLPFLLAENLGWPLVVGLAQVESIDNGVALVLQALPRGQRRRLKVRLPFLATVDNAAPKPRQSAYGPARRGALQAEEVEVVDDSLLAVATLQPAKPRPKRLKVIKAKSGADRMKAATAKASGGGGQVLKGVTPEAGAEAILKLLVEEGVVRPGPT0001035_2268DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0001035-fixA|etfB-K03521NANA
D1-35_037743453hypothetical proteinATGACACGGATATCGACCCCCATCAGTGAAATCAAGGAACACTACGACGTGATCGTCATCGGTTCCGGCTACGGCGGCGGCATTGCTGCGTCGCGCCTGTCCCGGGCCGGGCGCAAGGTCTGCCTGCTGGAACGTGGCCGGGAAATCCAGCCGGGCGAATACCCCAATACGTTGCTCGCTGCCACCGAGGAGTTGCAGGTGCACGACCCCGACGGCCACATCGGTTCGCGCACCGGGCTGTTCGACCTGCACGTCAACGCCCAGCAGAACGTGGTGGTCGGGTGTGGCCTGGGCGGCACGTCACTGATCAACGCCAACGTCGCCCTGGAAGCAGAGCCCGGCGTGTTCGAGGACCCGCGCTGGCCGCTGGCGATGCGCGAGCACCGCGACACATTGCTCCAGGACGGCTACGCGCGGGCTCGGGAAATGCTCAAGCCCAACCCGTATCCGGCGTCCTCGCCGAACCTGCCCAAGCTCGACGCCCATAAGAAGTCCGCTGATTACCTCAAGCAGGGCGCGCATTTCTACAAGCCGCCGATCAACGTGACTTTCGACAAGTTGCCGAACAACCTCAACCACGTCGGCGTCGAGCAGTTGCCGTGCAATGGCTGTGGCGACTGCGTCTCGGGCTGTAACAACAAGGCCAAGAACACCACGCTGATGAATTATCTGCCGGACGCCTGGAACCATGGCACGGAGATTTTCTGCCAGGCTGAGGTGCGGCACCTGGAGCGCGATGGTGACGGCTGGATCGTGCATTTCCAGTACCTGGACGGTGGTCGCGAAATGTTCTCGGCGCCAACGCTGTTCGTGCGCGCCGATATCGTGGTGGTGTCCGCCGGCACCCTGGGCTCCACCGAGATCATGTTGCGCTCGCGAGACAAGGGCCTGCCGATGTCTGCCCAGTTGGGCGAGAACATGAGTGGCAACGGTGACATCCTCGGCTTCGGCCACAACTGCGACCAGGTCATCAACGGCATCGGTTTTGGCGCTCATTCGGCCAAGGAGCTGGAGCCGGTGGGGCCGTGTATCACCTCGGTGATCGACATGCGCACCGAAGGCGACTGGCGCAGCCGCATGGTTATCGAAGAAGGCTCGATCCCCGGCGCCCTCGGCCGGGCCATGGTGCCGAGCATGGCGGCGTTCGCCGAGATGATCGGCGTGCCCACCGACACCGGCTTCGGTGCCGCCCTAAGGTACAAGGGGCGCGAAGCCGAAAGCTTCCTGCGCGGACCGTACTACGGCGCGCTGCATAACATGCAGACCTACCTGATCATGAGTCATGACAACGGCAAGGGCCGCATGGTCCTCGATAACAAGGACCAGCTGCGCATCGACTGGTCCGGTGTCGGCGAGCAGGAAAACGTCACCCTCGGCAACGAGCGTCTGCACCAGAGCACCAAGGCCTTGGGCGGGATCTGGGTCGAAAACCCGATCTGGACCAAGCTGCTCAAGCACAGCATTGTCTCGGTCCATCCCCTGGGCGGTTGCGTGATGGGCGAGGACGCCGCCCAGGGCGTGGTCAATCACAAGGGGCAGGTGTTCAGTGGCGCCAGCGGCACCGACGTCTACCCAGGCCTGTACGTGACGGACGGCTCGGTGATCCCGACGTCCCTGGCGGTCAATCCGCTGCTGACCATTTCAGCGGTGAGTGAACGCAACATGGGCCTGCTGGCCGCCGATCGCGGTTGGCTGATCGACTACACGCTGCCGTCGGCCCCGCGCAAACCGGTGGCGGCGCCGACCCTCGGCGTGCAGTTCACCGAAACCATGAAGGGCTATTTCTCCAGCGCCTTCACCCAACCCCAGGGCACCGACCTGCCGCTTTACGAGGAAGCTGCCAAGCGCGGCAAGGCTGACAACTCGCCCATCGAATTCACGCTGACCATCACTGCTGCCGACCTTGATCGTTTGATCAAGGAGCCGGAGCACGCTGCGACCCTGGTGGGTACCCTCGACGCCCCCCTGCTGTCGGCGAAGCCGTTGGTCGCCAGCAACGGCGTGTTCAACCTGTTCGAGCAGTATCAGGATCAGGTCGGCGTGCGGCACATGAACTACGACATGAAACTGACCGCCGAAGACGGCAGCGACTATTTCTTCAGTGCGTTCAAGACTGTGCCGGAGGACAACGGCGTGCTGAACATCTGGCACGACACCAGCACCCTCTACGTCACGCTCTATCGCGGGCCGGACAAGAGCGGCGCGGTGCTCGGCGCGGGGATGATGCACATCCTGCCGGCGGATTTCGCCAAGCAGATGACCACCATGAAAGTGCTCAACGCTCGCAACGAGCGTGAGCGGGTGGAGGCGCTTGCGCGATTCGGCAAGTTTTTCGCCGGCATCCTGTGGGAGAGCTACGGCGGGGTGTTCGCCGGCGATGTCTACTTCAATCCGGACGCGCCGTCGCGCTTGAAACGGCCGCTGGATGCACCGGCCCCGGTGGTGCATTTCTTCCAGACCGAAGACCACGTCGAGCTGCGCCTGACGCGCTACCAGGCAGGCAGCAAGGGCCCGGTGATGCTGGTCCATGGCCTGGGCGTGGGCTCGAATATCTTTTCCACCGACACCATCCACACCAACCTGCTGGAGTACCTGTGCAAGCACGAGTACGACGTCTGGCTGCTGGATTTGCGGGTGAGTATCCTGCTGCCGGCCAGCAAAAACGAATGGAACGGCGATCAGGTGGCCCAATACGACTTCAAGGCCGCTATCGGGCAGATCCAGCAGGCGACCTCGGCTCGTGACGTGCAATGCGTAGTGCATTGCTACGGCGCGACGACGTTCTTCATGTCGATGCTGGCGGGCTTGCAGGGCGTGCGCTCGGTGGTCTGCTCGCAGATCGCCGCCGACACGGTGGTCGCCACCGCCACCGGATTGAAGGCCGGTTTGCATTTGCCGGGGATGCTCGATGCCATCGGCATCAAGTCCATGACGGCCTATGCCGACACCAAGGAAAGCTGGTTCAACAAACTCTACGACAAGGCCCTCAACGGCTACGCCCGGATCGAGGCCCAGGGCTACTGCACCAATCCGGTCTGCCACCGCATCACGTTCATGTATGCGTCGCTGTACCGCCACGACACCCTCAATGAAACCCTGCACGACAACCTGCATGAATTGTTCGGCGAGTCGAACATCCAGACCTTCGAGCATCTGGCGCTGATCGTGCGCAAGGGGCACCTGGTGGACTTCAAGGGCAACGACGTCTACATGCCGCATTTCGATCGGTTGAAGTTGCCGATCTGCTTCATCAGCGGCGCCGACAACCAGTGCTACTTGCCGCAGAGCACCCTCAAGACCTACGAACGGTTATGCGAGATGCACGGCCCGCAGTTGTTCAGCCGTCATGAGGTCCCCGGCTACGGCCACATCGACTGCATGTTCGGCAAGGACGCGGTGGTGGATGTGTATCCGATCATCCTCGGGCACCTGGAGAAGACGGCGCTTGGCTGAMTRISTPISEIKEHYDVIVIGSGYGGGIAASRLSRAGRKVCLLERGREIQPGEYPNTLLAATEELQVHDPDGHIGSRTGLFDLHVNAQQNVVVGCGLGGTSLINANVALEAEPGVFEDPRWPLAMREHRDTLLQDGYARAREMLKPNPYPASSPNLPKLDAHKKSADYLKQGAHFYKPPINVTFDKLPNNLNHVGVEQLPCNGCGDCVSGCNNKAKNTTLMNYLPDAWNHGTEIFCQAEVRHLERDGDGWIVHFQYLDGGREMFSAPTLFVRADIVVVSAGTLGSTEIMLRSRDKGLPMSAQLGENMSGNGDILGFGHNCDQVINGIGFGAHSAKELEPVGPCITSVIDMRTEGDWRSRMVIEEGSIPGALGRAMVPSMAAFAEMIGVPTDTGFGAALRYKGREAESFLRGPYYGALHNMQTYLIMSHDNGKGRMVLDNKDQLRIDWSGVGEQENVTLGNERLHQSTKALGGIWVENPIWTKLLKHSIVSVHPLGGCVMGEDAAQGVVNHKGQVFSGASGTDVYPGLYVTDGSVIPTSLAVNPLLTISAVSERNMGLLAADRGWLIDYTLPSAPRKPVAAPTLGVQFTETMKGYFSSAFTQPQGTDLPLYEEAAKRGKADNSPIEFTLTITAADLDRLIKEPEHAATLVGTLDAPLLSAKPLVASNGVFNLFEQYQDQVGVRHMNYDMKLTAEDGSDYFFSAFKTVPEDNGVLNIWHDTSTLYVTLYRGPDKSGAVLGAGMMHILPADFAKQMTTMKVLNARNERERVEALARFGKFFAGILWESYGGVFAGDVYFNPDAPSRLKRPLDAPAPVVHFFQTEDHVELRLTRYQAGSKGPVMLVHGLGVGSNIFSTDTIHTNLLEYLCKHEYDVWLLDLRVSILLPASKNEWNGDQVAQYDFKAAIGQIQQATSARDVQCVVHCYGATTFFMSMLAGLQGVRSVVCSQIAADTVVATATGLKAGLHLPGMLDAIGIKSMTAYADTKESWFNKLYDKALNGYARIEAQGYCTNPVCHRITFMYASLYRHDTLNETLHDNLHELFGESNIQTFEHLALIVRKGHLVDFKGNDVYMPHFDRLKLPICFISGADNQCYLPQSTLKTYERLCEMHGPQLFSRHEVPGYGHIDCMFGKDAVVDVYPIILGHLEKTALGPGPT0006645_39DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STEROID|DERIVATE_DEGRADATIONXENOBIOTIC_CHOLESTEROL_DEGRADATION_,PGPT0006645-choD-K03333NANA
D1-35_037751869hypothetical proteinATGAACACTTGTATCCGCTGGTTCCAACGCATCATCTGGATCGGAATTGTCATGAACATGGTCTTCGCGATCCCGGCGTTGTTCGCGCCGGCGTTGCTGACCTCCATGCTTGGCCTGCCGCCGGTGCTGTCCGATCCCTGGCTGGAAAACGCCGGCATGTTGCTGGTGGGGATCAGCCTGTTCTACATGCCCTCGGGGTTCAACGCGCCGCGTTTCGTGGTGCATTCTTGGTTATGCGTGCTGTCGCGTCTGGTGGCGGTGGTGTTCTGGATCTACCTGATCAACACCAACAACCAGGGCCAACTGTTCGTGCCGATGTTGATGGGCGACCTGAGCATGTTCCTGATCCTGGGCGTGCTGTTGTATTTAGGCAGCCCGGCGGCCAATCGTCCGCTGGCCTTGCTCCGGGCCGGCTGGCGCGAATGGCTTCAAGGCTGGGCACATCGCTGGCAAAGCCATGGCTTCAAGGTAGGCGCGCTGATTGTGCTGCTGGTGCTTGGCTTCATCGGCTACCAGACCTGGTATCAGATGATCCGCGAGGTGCCGCAGCCGGACTTCGCCTCCGACGAAGACCATTACAAATACGCCGCCATCGGCCTGGGTATCGAGGCGCGGATTCCCTACTACTTGTTCGCCGTGCTGCCACAGATGTGCCCGGAAAAACTGCCCAAGCCAGGCGGTTATGAGGTGTTCGGCTTCCTCTATGAAAACGGCAACGACCTGCCCATCGGCATGGCCAAGCGGCAGCTCGGTTACCCCACGGTGGAGCCCAACTGCGCGCTGTGCCACACCGGTTCCTACCGGGCCAATGCCACTGACGTAGCGGTGCCGGTCGCCGCCGCGCCGGCCAATACCCTGCAATTGCAAGCCTTCCAGTGGTTCGCCTACGAGTGTGCCAGCGATCCGAAATTCACCCCGGACGCGGTGATGGCGGCGATCAACGGCAAGTTCCAGCTGGGCTTCTTCGAAAAGCTCTATAACCGCTACCTGATCATTCCGATGGCCAAGAGTGCGCTGCTCAAGCAGAAACAGGCGTACGCCTGGCAGAAGCTGCGTCCGGCCCAGGGACCGGGGCGGACCGACACGTTCAACCCGACCAAGATGGTGGTCTTCGGCTTCCCGGATGACTCGACCATCGGCACCGTGGACTTGCCGCAGGTGTGGAACCAGAAACCCCGCGAGTCCATGTACCTGCACTGGGACGGCAATAACAACAAGATCCACGAACGCAACTACGCCGCCGCCATGGCCGTGGGCGCGACGCCGGAATCGGTGCTGCCGCCGAGCTTCAACCGGGTGACCAACTGGTTGCTGGGCCACAAGCCACCGGCCTGGCCGTTCGCCCTGGATCAGGCGAAAGTCGCCCAGGGCAAACCGATCTGGGAGCAGAACTGTGCCGGTTGCCACGACTTCGGCCGCAGCGACACCGGCCAGGTCACCACCAACATCGACCAGTTGGGCACCGATCCCCATCGGCTGAATTCCTTCACCACCGGGCTGGTGGCGGCGTTCCATGGTTTCAAGAAACCGCCGTTCGACTTTGGCGCCTACCGCAAGACCCAGAGCTACAGCAACACGCCCACCGACGGCATCTGGCTGCGCGCGCCGTACCTGCATAACGGTTCGGTGCCGACCTTGTGGGATTTGCTGCAAACACCCGAGCAGCGCCCGCAGGCGTTCTACACCGGCTCCGACATCTACGACCCGCAGAAGGTTGGTTTCATCACCAGTGGCGCGCAGATGAAGGCGTCGGCTGATTTCAAGTACGACACTCGGCTCGAAGGCAACCACAACGGCGGCCACCTGTACGGCACGCAGCTGTCGGATGTCGAAAAGCGGGCTTTGATCGAATTCATGAAGACCCTGTAGMNTCIRWFQRIIWIGIVMNMVFAIPALFAPALLTSMLGLPPVLSDPWLENAGMLLVGISLFYMPSGFNAPRFVVHSWLCVLSRLVAVVFWIYLINTNNQGQLFVPMLMGDLSMFLILGVLLYLGSPAANRPLALLRAGWREWLQGWAHRWQSHGFKVGALIVLLVLGFIGYQTWYQMIREVPQPDFASDEDHYKYAAIGLGIEARIPYYLFAVLPQMCPEKLPKPGGYEVFGFLYENGNDLPIGMAKRQLGYPTVEPNCALCHTGSYRANATDVAVPVAAAPANTLQLQAFQWFAYECASDPKFTPDAVMAAINGKFQLGFFEKLYNRYLIIPMAKSALLKQKQAYAWQKLRPAQGPGRTDTFNPTKMVVFGFPDDSTIGTVDLPQVWNQKPRESMYLHWDGNNNKIHERNYAAAMAVGATPESVLPPSFNRVTNWLLGHKPPAWPFALDQAKVAQGKPIWEQNCAGCHDFGRSDTGQVTTNIDQLGTDPHRLNSFTTGLVAAFHGFKKPPFDFGAYRKTQSYSNTPTDGIWLRAPYLHNGSVPTLWDLLQTPEQRPQAFYTGSDIYDPQKVGFITSGAQMKASADFKYDTRLEGNHNGGHLYGTQLSDVEKRALIEFMKTLNANANANANA
D1-35_037761245hypothetical proteinATGTCATTACTGCACCATTGGGAACATGAGTTCGACAAGGTCAAGGTCCGTCTGCACGGGTTGGTCACGCGGCTGGAAATGTCCTGGAAAAAACTCGTCAACGACCTGGAGCCCGAGGAGTTCCAGGCCATCGTCAAGCTGCTCGAGCGTGGCCACGCTCAAGCCCGGCATGTCATTGATCATGGTGATTTGCCCGACGATGAACCGGCCGTGCCGTGGGAACTGGCCCACGGCCTGTCGATTCTGAAAATCGGCAACGCCACGCCTTTGCCGCAAAAGGAAGAGGAACTGCCAACCCGAGTGCTCAAGGATGGCACCTTGCTCGGTTGCCGAAAATGGGAGCTGCTGGACCTGTTGTGGAGCGAGGCGCTGCTCAAGTGGATCGAGAACCTGCGTCACCACGCACCGTTCGCGACCACCCCGGCGCTGGTGAAAATGGATAATGACGTGGTGCTGGCCATTGCCGGCGACTGGGGCACCGGCCCGTTCGACAGTCACGCACCCGCCGTGGCCGTCGCCAACCAGATGCAACTGGCCCAGGCCGATTTCACCATCCACTTGGGCGACGTGTATTACGCCGGCACCCATTCCCAGGAAGACGTCGACATGGCCGGCTGGCCCCAGGGCAGGCACGGCTCGTTCACGCTCAATTCCAATCATGAAATGTACAGCGGCGCCCACGGTTATTTCCGGGAGTTGGCCAAGCGCTTTCCGGTGCAGCAGGGCACCAGCTATTTCGCCCTGTACAACGATGACTGGCTGGTGGTTGGCCTGGACAGCGCCTACGCCTCGGACGCGATGAACCTGTACATGGACGGCACCCTCAACACCCAGCAGATCGAGTGGATGAAAAGCCTGCCCAAGGGCAAGAAACTGATGGTGCTCAGTCATCACCAGGGTTTTGATATTTCCGGACACCACAAGACCGCGCTCTACCAACCGGTGTGCGACGCCTTGGGGCGTGAGCCGGATTACTGGTATTGGGGCCATCTGCACAACGGCATCTGCTACGCGCCGCAAGGCGGGCTGCAGGCGCGTTGCGTCGGGCACGGAGCGATTCCCTACGGCACCACCAGCGAGTTGAACGGGCATCCTCGGGTGTTGTGGTCGGAAACACAATTGGCGGGGGACGAGGCGTATCCGGAGCGGGTGTTGAACGGGTATGTGAAGGTGCGGCTGGCGGGGGAGGAGATTGTCGAGACGTTTTATGGGGAGGATGGGTCGGTGCGTTGGTCTTCAAGATAAMSLLHHWEHEFDKVKVRLHGLVTRLEMSWKKLVNDLEPEEFQAIVKLLERGHAQARHVIDHGDLPDDEPAVPWELAHGLSILKIGNATPLPQKEEELPTRVLKDGTLLGCRKWELLDLLWSEALLKWIENLRHHAPFATTPALVKMDNDVVLAIAGDWGTGPFDSHAPAVAVANQMQLAQADFTIHLGDVYYAGTHSQEDVDMAGWPQGRHGSFTLNSNHEMYSGAHGYFRELAKRFPVQQGTSYFALYNDDWLVVGLDSAYASDAMNLYMDGTLNTQQIEWMKSLPKGKKLMVLSHHQGFDISGHHKTALYQPVCDALGREPDYWYWGHLHNGICYAPQGGLQARCVGHGAIPYGTTSELNGHPRVLWSETQLAGDEAYPERVLNGYVKVRLAGEEIVETFYGEDGSVRWSSRNANANANANA
D1-35_037771296Carnitine monooxygenase oxygenase subunitATGGACGTCACCACTACCCTGAGCCTGGGCGATCCGCTGGAACCCGCACGCAAGGCCACCGCGCAAATGCTGCAAGAGCGCGAGCGGACCTTTTCGCTGCCGCAGCCGTTCTACTCCGATGAGCGCCTGTTTGATATCGACATGCAGGAAATCTTTCAGAAAGAATGGTTGATCGCCGGCATGACCTGCGAAATCCCGGCCAAGGGCAACTACCTGACGCTGCAGGTCGGCAAGAACCCGATCATCGTGATTCGCGGCGCCGAAGGCGTGGTGCATGCGTTCCATAACGTCTGCCGCCACCGTGGCTCGCGGTTGTGCACCAGCGACAAGGGCAAGGTCGCCAAGCTGGTCTGCCATTACCACCAATGGACCTACGAACTGGACGGTCGCCTGCTGTTCGCCGGCACCGAGATGGGCGCCGACTTCGACATGAAGCAGTACGGCCTCAAGCCGGTGAACGTGAAGACCGCCGGCGGCTACATCTTCATCAGCCTGGCCGAGAACCCGCCGGCCATCGATGATTTCCTGTCGACCCTGAACCACTACATGGAACCCTACGACATGGAAAACACCAAGGTGGCGGTGCAAACCACCTTGATGGAAAAGGCCAACTGGAAACTGGTGCTGGAAAACAACCGCGAGTGCTACCACTGCAACGCCTCGCACCCCGAACTGCTCAAGACCCTGCTGGAATGGGACGACGTCACCGATCCGCGAGCCGACCAGGCGTTCAAGGACCACGTGGCCGCTTCCGCCGCCGCCTGGGATGCCGAGAAGATCCCTTACGCCCACGCCAGCTTCGGCCTGCGCAACCGCATCGTGCGCATGCCGCTGCTCAAGGGCACCGTGTCGATGACGATGGACGGCAAGCAGGGCTGCGCCAAACTGATGGGCCGCATCAAGAACCCGGACCTGGGCTCGATGCGCATCCTTCATCTGCCGCACTCATGGAACCACTGCATGGGCGACCACATCATCGTCTTCACGGTGTGGCCGATCAGCGCCCAGGAAACCATGGTCACCACCAAATGGCTGGTGCACAAGGACGCGGTCGAAGGCGTGGACTATGACGTAGAGCGCATGCGCCAGGTCTGGGACGCCACCAACGACCAGGACCGTCGCCTGGCCGAAGAAAACCAGCGCGGCATCAACTCCACCGCCTACCAGCCGGGCCCGTACTCGAAAACCTACGAATTCGGCGTGGTTAACTTCGTCGACTGGTACAGCGAGCGCATGCTGAACAACCTCGGGGCCGAGCCGGCGCCGTACCTCAAGGGTGTTCCGGTCCAGGGCTAAMDVTTTLSLGDPLEPARKATAQMLQERERTFSLPQPFYSDERLFDIDMQEIFQKEWLIAGMTCEIPAKGNYLTLQVGKNPIIVIRGAEGVVHAFHNVCRHRGSRLCTSDKGKVAKLVCHYHQWTYELDGRLLFAGTEMGADFDMKQYGLKPVNVKTAGGYIFISLAENPPAIDDFLSTLNHYMEPYDMENTKVAVQTTLMEKANWKLVLENNRECYHCNASHPELLKTLLEWDDVTDPRADQAFKDHVAASAAAWDAEKIPYAHASFGLRNRIVRMPLLKGTVSMTMDGKQGCAKLMGRIKNPDLGSMRILHLPHSWNHCMGDHIIVFTVWPISAQETMVTTKWLVHKDAVEGVDYDVERMRQVWDATNDQDRRLAEENQRGINSTAYQPGPYSKTYEFGVVNFVDWYSERMLNNLGAEPAPYLKGVPVQGPGPT0013680_92DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013680-gbcA-K00479NANA
D1-35_037781101hcrCOG1018NADH oxidoreductase HCRATGTCCAACAATTTCCTGAACCCGGTCACCACCCAGACCTGGGCCAATGGCCGACATATCGTTCGTTGCGTCAAAGTCATCCAGGAAACCTGGGATGTGCGCACCTTTTGCTTCATGGCCGACCAGCCGATCATGTTCTTTTTCAAGCCCGGGCAGTTCGTCACCCTGGAGTTGGAAATCGAAGGCCAGCCGATCATGCGCTCCTACACGATCTCCAGTTCGCCGTCGGTGCCCTACAGCTTCTCGGTGACCATCAAGCGCGTGCCGGGGGGCAAGGTTTCCAACTGGCTGCACGACACGCTGCACGAAGGCCAGGAACTGGCGGTGCACGGGCCGGTGGGGTTGTTCAATGCCATGGATTTCCCGAGCCCGAAGGTCCTGTACCTCAGCGGTGGCGTCGGAATCACGCCATGCATGTCCATGGCCCGCTGGTTCTACGACACCAACGCCAACGTCGACATGACCTTCGTCCACAGCGCCCGCTCGCCCAAGGACATCATCTACCACCGCGAGCTGGAGCACATGGCGTCGCGGATCGATAACTTCAGCTTGCACCTGATTTGCGAAAAGCATGGTTTGGGCGAGCCGTGGGCCGGGTATCGTGGCTACCTGAATCACAAGATGCTGGAACTGATGGTGCCGGATTTCCTTGAGCGCGAAGTGTTCTGCTGCGGCCCGACGCCGTACATGAGCGCGGTCAAGCGTCTGCTGGAAGCGGCCGGCTACGACATGAAGCGCTACCACGAGGAATCCTTCGGCGCCACGCCACCGGAAGCCCGCGCCGACGCGGTGGAGCAGGCCGAACAGGCGGCGGATGCGCCTGAAGTCGACCAGGCGGACCTGCATCAGGTGGAATTCGTCGCGTCGGGCAAGAGCATCGGCGTAGCACCGGGCGAAACCGTCCACGCGGCAGCAGCCAAGCTCGGCCTGATGATTCCCAAGGCGTGCGGCATGGGCATCTGCGGCACTTGCAAGGTTATGAAGCTCGGCGGCGAAGTTGAAATGGAACACAACGGCGGCATCACCGAGGACGACGAGGCCGAGGGTTACATCCTGTCGTGCTGCAGCGTGCCGAAGGGGGATGTGCGGATCGAGTTTTAAMSNNFLNPVTTQTWANGRHIVRCVKVIQETWDVRTFCFMADQPIMFFFKPGQFVTLELEIEGQPIMRSYTISSSPSVPYSFSVTIKRVPGGKVSNWLHDTLHEGQELAVHGPVGLFNAMDFPSPKVLYLSGGVGITPCMSMARWFYDTNANVDMTFVHSARSPKDIIYHRELEHMASRIDNFSLHLICEKHGLGEPWAGYRGYLNHKMLELMVPDFLEREVFCCGPTPYMSAVKRLLEAAGYDMKRYHEESFGATPPEARADAVEQAEQAADAPEVDQADLHQVEFVASGKSIGVAPGETVHAAAAKLGLMIPKACGMGICGTCKVMKLGGEVEMEHNGGITEDDEAEGYILSCCSVPKGDVRIEFPGPT0013685_368DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013685-gbcB-K21832NANA
D1-35_037791041ltaE_2Low specificity L-threonine aldolaseATGACCGACAAGAGCCAACAATTCGCCAGCGACAATTATTCCGGTATTTGCCCCGAAGCCTGGGCGGCCATGGAAGAAGCCAACCAGGGCCACCAGCGCGCCTATGGCGACGATGAATGGACCCACCGCGCGGCGGATGATTTCCGTGCCCTGTTCGAAACCGACTGCGAAGTGTTCTTCGCGTTCAACGGCACTGCGGCCAACTCCCTGGCCCTGTCGTCGCTGTGCCAGAGTTACCACAGCGTGATCTGCTCGGAAACCGCCCACGTCGAAACCGACGAATGCGGCGCGCCGGAGTTCTTCTCCAACGGCTCCAAGCTCTTGGTGGCGCGCACCGAAAACGGCAAGCTGACCCCCGAGTCGATCCGCGAGATCGCCCTCAAGCGCCAGGACATCCATTATCCCAAGCCGCGCGTGGTGACCCTGACCCAGGCCACGGAAGTCGGCAGCGTCTATACCCCGGAAGAAATCCGCGCCATCAGCGTTACCTGCAAGGAACTGGGGCTGAACCTGCACATGGACGGCGCGCGCTTCTCCAACGCCTGCGCCTTCCTCGGCTGCACCCCGGCCGACCTGACCTGGAAGGCCGGCGTCGACGTGCTGTGCTTCGGCGGCACGAAAAACGGCATGGCGGTGGGCGAAGCGATCCTCTTCTTCAACCACGACCTGGCGGAAGATTTCGACTATCGCTGCAAACAGGCCGGCCAGTTGGCCTCGAAGATGCGCTTCCTCTCCGCCCCCTGGGTCGGCCTGCTGCAGAACGACGCCTGGCTCAAGCATGCCCGCCACGCCAACCGTTGCGCGCAATTGCTGGCGCAACTGGTCAGCGACATTCCTGGCGTCGAACTGATGTTCCCGGTCCAGGCCAACGGCGTGTTCCTGCAACTCTCGGAACCGGCCATCGCAGCACTGACCGCCCGGGGCTGGCGCTTCTACACCTTCATCGGCAAAGGCGGCGCACGGTTCATGTGCTCGTGGGATACCGAAGAAGCGCGAGTGCGGGAGTTGGCGGCGGATATTCGGGAAGTGATGGCGGGCTAGMTDKSQQFASDNYSGICPEAWAAMEEANQGHQRAYGDDEWTHRAADDFRALFETDCEVFFAFNGTAANSLALSSLCQSYHSVICSETAHVETDECGAPEFFSNGSKLLVARTENGKLTPESIREIALKRQDIHYPKPRVVTLTQATEVGSVYTPEEIRAISVTCKELGLNLHMDGARFSNACAFLGCTPADLTWKAGVDVLCFGGTKNGMAVGEAILFFNHDLAEDFDYRCKQAGQLASKMRFLSAPWVGLLQNDAWLKHARHANRCAQLLAQLVSDIPGVELMFPVQANGVFLQLSEPAIAALTARGWRFYTFIGKGGARFMCSWDTEEARVRELAADIREVMAGPGPT0020465_1946DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0020465-ltaE-K01620NANA
D1-35_03780705hypothetical proteinATGAGTCAGCGCGACGCTGCGCTGGACCTGCTCAAGTGGCTGGCACTGTTGTCGATGGTCCTCGATCATCTGCGATATGTCGGTTTTTCCGCCGATTGGCTCTATGTGCCGGGGCGCTTGGCGTTTCCCTGGTTCTGCCTGGCGATGGCGGCCAACCTCTCACGCAACGGCGCCAGCTCGCTTCCGTGGCGTTATCTGGGCTGGCTGTTGCTGTTCAGCGCCATCAGTGAAATCCCCTACCGCTTGTTCGTTCCCAACCCCACGACATTGAACGTGATGCCGACGCTGGTGCTGGGATTGTTGCTGGCGCGCTGTTGGCAAACCCCCACCTTGCAGGCGCGATGCCTGGCGGTGGCGGCGCTGCTGCTGGCGGCGCTGTGTTCGTCACAGTTGATGTTCGGGTTCTACGGCGTGCTGCTGCCGTTGGCGATGTTGCTGGTGCATCGCCGGCCTTGGTATTTCGCGTTGCTACCGGGAATGGTCTGCGTGGCGGCCAATCAATGGCGGGTGTTGTATGGCGCGGCATGGCTGGGCGACACGGTGGCGCTCTGGGGGCTGGTGGCTTGTCTGATCGCGCCATGGCTTGGGCTGATGCTGTTGCGCCACGCGGGCTCTTTCCGTCCACCGGCAATGCGGCGCTGGGCATACACGCTGTACCCCGCCCATTTTCTTTTGTTGCTCGCGGTTCGCAACTGGGTGGCTTGAMSQRDAALDLLKWLALLSMVLDHLRYVGFSADWLYVPGRLAFPWFCLAMAANLSRNGASSLPWRYLGWLLLFSAISEIPYRLFVPNPTTLNVMPTLVLGLLLARCWQTPTLQARCLAVAALLLAALCSSQLMFGFYGVLLPLAMLLVHRRPWYFALLPGMVCVAANQWRVLYGAAWLGDTVALWGLVACLIAPWLGLMLLRHAGSFRPPAMRRWAYTLYPAHFLLLLAVRNWVANANANANANA
D1-35_037811254glyA_1COG0112Serine hydroxymethyltransferaseATGTTCAGCAAGCAAGACCAGATCCAGGGTTACGACGATGCACTGCTGGCGGCGATGAATGCCGAGGAGCAACGCCAGGAAGATCACATCGAACTGATCGCGTCGGAGAACTACACCAGCAAGCGCGTGATGCAGGCCCAGGGCAGCGGCCTGACCAACAAGTACGCCGAAGGTTACCCGGGCAAGCGCTACTACGGTGGCTGCGAGCACGTCGACAAGGTCGAAGCCCTGGCCATCGAGCGCGCCAAACAACTGTTCGGCGCCGATTACGCCAACGTCCAGCCGCATTCCGGTTCGTCGGCCAACAGCGCCGTGTACCTGGCCTTGCTGCAAGCCGGCGACACCATCCTGGGCATGAGCCTGGCCCACGGCGGTCACTTGACCCACGGTGCCAAGGTGTCGTCCTCGGGCAAGCTGTACAACGCGGTGCAATACGGAATCGACACCGCTACGGGCCTGATCGACTACGACGAAGTCGAGCGCCTGGCGGTCGAGTGCAAGCCGAAGATGATCGTGGCCGGTTTTTCTGCCTATTCCAAGACCCTGGATTTCCCACGCTTTCGCCAGATCGCCGACAAGGTCGGTGCGCTGCTGTTCGTCGACATGGCCCACGTCGCCGGCCTGGTTGCCGCCGGCCTGTACCCGAACCCGCTGCCGTACGCCGACGTGGTCACCACCACTACCCACAAGACCCTGCGCGGCCCACGCGGCGGCCTGATCCTGGCCAAGGCCAACGAAGAGATCGAGAAAAAGCTCAACGCCGCCGTATTCCCCGGGGCCCAGGGCGGTCCGCTGATGCACGTCATCGCTGGCAAGGCGGTGTGCTTCAAGGAAGCGGCGGAGCCGGGCTTCAAGGCTTACCAGCAGCAAGTGATCGACAACGCCCAGGCCATGGCGGGCGTGTTCATCAAGCGCGGCTACGATGTAGTGTCCGGCGGCACCGACAACCACCTGTTCCTGGTCAGCCTGATCCGCCAGGGCCTGACCGGCAAGGACGCGGATGCCGCCCTGGGCCGCGCCCACATCACCGTGAACAAGAACGCCGTGCCGAACGACCCGCAATCGCCGTTCGTGACCTCGGGCCTGCGCATCGGTACGCCGGCGGTGACCACCCGCGGCTTCAAGGTGACCCAGTGCGTCACGCTGGCCGGCTGGATCTGCGACATCCTCGACAACCTCGGCGACGCCGATGTCGAGGCCAATGTCGCGCAGCAAGTGGCGGCCTTGTGCGCGGACTTCCCGGTTTATCGCTGAMFSKQDQIQGYDDALLAAMNAEEQRQEDHIELIASENYTSKRVMQAQGSGLTNKYAEGYPGKRYYGGCEHVDKVEALAIERAKQLFGADYANVQPHSGSSANSAVYLALLQAGDTILGMSLAHGGHLTHGAKVSSSGKLYNAVQYGIDTATGLIDYDEVERLAVECKPKMIVAGFSAYSKTLDFPRFRQIADKVGALLFVDMAHVAGLVAAGLYPNPLPYADVVTTTTHKTLRGPRGGLILAKANEEIEKKLNAAVFPGAQGGPLMHVIAGKAVCFKEAAEPGFKAYQQQVIDNAQAMAGVFIKRGYDVVSGGTDNHLFLVSLIRQGLTGKDADAALGRAHITVNKNAVPNDPQSPFVTSGLRIGTPAVTTRGFKVTQCVTLAGWICDILDNLGDADVEANVAQQVAALCADFPVYRPGPT0008090_5327DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008090-glyA-K00600NANA
D1-35_037821251soxBSarcosine oxidase subunit betaATGCAACGCTATTCGGGCTTCGGCCTCTTCAAACACTCACTCAGCCATCATGAAAACTGGCAGCGGATGTGGCGCACGCCGACCCCGAAAAAGGTCTACGACGTGGTCATAGTCGGCGGCGGCGGGCATGGTCTGGCGACCGCCTACTACCTGGCCAAGGAGCACGGCATCACCAACGTGGCCGTGGTCGAGAAGGGCTGGCTGGGCGGCGGTAACACCGCGCGCAATACCACCATCGTGCGCTCCAACTACCTGTGGGACGAATCGGCTCACCTGTACGAACACGCGATGAAACTCTGGGAAGGTCTGTCCCAGGACCTGAACTACAACGTGATGTTCTCCCAGCGTGGCGTCTACAACCTGTGCCACACATTGCAGGACATCCGTGATTCCGAGCGCCGCGTCAGCGCCAACCGCCTCAACGGCGTGGACGGCGAGCTGCTCGATGCCAAGCAAGTGGCTGACGAGATTCCGTACCTGGATTGCTCGAAGAACACCCGTTATCCGGTGATGGGCGCCACCGTCCAGCGTCGCGGCGGCGTGGCCCGTCACGATGCCGTGGCCTGGGGCTTTGCCCGGGCGGCGGACGCCTTGGGCGTGGACCTGATCCAGCAGACCGAAGTGATCGGTTTCCGCAAGGAAAACGGCGTGTGCATCGGCGTGGAGACCAACAAGGGCTTCATCGGCGCCAAGCGCGTCGGCGTGGTGACCGCAGGTAATTCCGGGCACATGGCCAAGCTTGCCGGTTTCCGCCTGCCGGTCGAATCCCATCCGCTGCAAGCGCTGGTGTCCGAGCCGATCAAGCCGATTATCGACAGCGTGATCATGTCCAACGCCGTGCACGGCTACATCAGCCAGTCCGACAAGGGCGACCTGGTGATCGGCGCCGGTATCGACGGCTACAACGGCTACGGCCAGCGTGGCTCGTACCCGGTGATCGAGCACACCATCCAGGCCATCGTCGAGATGTTCCCGGTGCTCTCGCGGGTGCGCATGAACCGCCAGTGGGGCGGCATCGTCGACACCACGCCGGACGCCTGCCCGATCATCTCCAAGACGCCAGTGCCGAACATGTTCTTCAACTGCGGTTGGGGCACCGGTGGCTTTAAAGCGACACCTGGCTCGGGCAACGTATTTGCCGCGAGTTTGGCCAAGGGCGAAATGCACCCATTGGCCGCACCTTTCTCCATCGACCGTTTCCACAACGGTGCGTTGATCGATGAACACGGCGCTGCTGCGGTTGCCCACTAAMQRYSGFGLFKHSLSHHENWQRMWRTPTPKKVYDVVIVGGGGHGLATAYYLAKEHGITNVAVVEKGWLGGGNTARNTTIVRSNYLWDESAHLYEHAMKLWEGLSQDLNYNVMFSQRGVYNLCHTLQDIRDSERRVSANRLNGVDGELLDAKQVADEIPYLDCSKNTRYPVMGATVQRRGGVARHDAVAWGFARAADALGVDLIQQTEVIGFRKENGVCIGVETNKGFIGAKRVGVVTAGNSGHMAKLAGFRLPVESHPLQALVSEPIKPIIDSVIMSNAVHGYISQSDKGDLVIGAGIDGYNGYGQRGSYPVIEHTIQAIVEMFPVLSRVRMNRQWGGIVDTTPDACPIISKTPVPNMFFNCGWGTGGFKATPGSGNVFAASLAKGEMHPLAAPFSIDRFHNGALIDEHGAAAVAHPGPT0013510_460DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013510-soxB_-K00303NANA
D1-35_03783330soxDSarcosine oxidase subunit deltaATGTTGCATATCTTCTGTCCTCACTGCTTTGAGCTGCGCTCCGAAGAGGAATTCCATGCATCCGGCCAGGCGCACATCCCGCGTCCGCTGGATCCGAACGCCTGCACCGACGAGGAGTGGGGCGACTACATGTTCTTTCGCGACAACCCTCGCGGCCTGCACCACGAGTTGTGGATCCATGCCGCCGGTTGCCGCCAGTACTTCAACGCGACCCGTGACACCGTGACCTACGAGATCCTCGAAACCTACAAGATCGGTCAAAAGCCGCAATTCACCGACAAGGCTGACAGTCCGAAAGCGGCCGCGCAGGCTCTGGGAGAGAAGGTATGAMLHIFCPHCFELRSEEEFHASGQAHIPRPLDPNACTDEEWGDYMFFRDNPRGLHHELWIHAAGCRQYFNATRDTVTYEILETYKIGQKPQFTDKADSPKAAAQALGEKVPGPT0013520_185DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013520-soxD-K00304NANA
D1-35_037843018soxASarcosine oxidase subunit alphaATGAGCCAGATCAATCGCCTGTCCAACGGCGGACGGATCGACCGCAACAAAGTGCTGACATTCACCTTCAACGGCCAGAGCTACAAAGGCTTCGAAGGCGATTCCCTGGCCGCTGCGCTGCTGGCCAACGGTGTCGACATCATCGGCCGCAGCTTCAAGTATTCTCGTCCGCGCGGCATCTTTGCCGCCGGTGCGGAAGAGCCGAACGCGGTGCTGCAGATCGGCGCCACCGAAGCCACGCAGATCCCGAACGTGCGCGCCACGCAACAGGCGCTGTATCAGGGCCTGGTCGCCACCAGCACCAATGGCTGGCCGAACGTCAACAACGACATGATGGGGATTCTCGGCAAGGTCGGCGGCAAGCTGATGCCGCCGGGCTTCTACTACAAAACCTTCATGTACCCGCAATCGTTCTGGATGACTTACGAGAAGTACATCCGCAAGGCCGCAGGGTTGGGTCGCTCGCCGACCGAGAACGATCCGGACACCTACGACTACATGAACCGTCACTGCGACGTGCTGATCGTCGGCGCTGGCCCTGCTGGCCTGGCCGCTGCATTGGCCGCGGCCCGCAGCGGTGCGCGAGTGATCCTGGCCGATGAGCAAGAAGAGTTCGGCGGCAGCCTGCTCGACTCCCGCGAAAGCCTGGACGGCAAGCCGGCGACCGAGTGGGTCGCGGCGGCGGTGGCTGAACTGCGCTCGATGCCCGAGGTGGTGTTGCTGCCTCGCGCCACGGTGAACGGTTACCACGACCACAACTTCCTGACCATCCACGAGCGCCTCACCGATCACCTCGGTGACCGCGCACCGATCGGCCAGGTGCGCCAGCGCATCAACCGGGTACGCGCCAAGCGCGTGGTGCTGGCGACTGGTGCTTGCGAACGCCCGCTGGTCTACGGCAACAACGATGTGCCGGGCAACATGCTGGCGGGTGCGGTTTCTACCTACATCCGCCGCTACGGCGTGGCACCGGGCAAGAAACTGCTGCTGAGCACCAACAACGACCACGCCTATCGCGTCGCCCTGGACTGGTTCGACGCCGGCCTGCAAGTGGTGGCCGTCGCCGATGCCCGCAGCAACCCGCGTGGTGCGCTGGTGGAAGAAGCCCGCGCCAAAGGCATCCGCATCCTCACCGGCAGCGCCGTGATCGAAGCCCGTGGCAGCAAGCGCGTCACCGGTGCACGTGTCGCCGCGATCGACGTCCGCGCCCACAAGGTCACCAGCCCTGGCGAATGGCTGGACTGCGACCTGGTGGCCAGTTCCGGCGGCTACAGCCCGGTGGTCCACCTGGCTTCGCACTTGGGCGGCAAGCCGATCTGGCGTGAAGACATCCTCGGTTTCGTGCCGGGCGAAGCGCCGCAGAAACGCGTGTGCGTCGGCGGTGTGAATGGCGTCTACGGGCTCGGCGATTCCTTGGCCGACGGTTTTGAAGGCGGCGTGCGCGCGGCCAGCGAAGCCGGCTTCAAGGCTGTGGAGGGCGTGTTGCCCAAGGCCCTGAGCCGTCATGAAGAACCGACCCTGGCGTTGTTCCAGGTGCCGCATGAAAAAACCACCGCACGTGCGCCGAAGCAATTCGTCGACCTGCAGAACGACGTCACCGCCGCCGCCATCGAACTCGCCACCCGCGAAGGCTTCGAGTCGGTGGAACACGTCAAGCGCTACACCGCACTGGGCTTCGGCACCGACCAGGGCAAGCTGGGCAACGTCAACGGCCTGGCCATCGCGGCCCGTTCGCTGAACGTGAGCATCCCGCAGATGGGCACCACCATGTTCCGTCCGAACTACACGCCGGTGACTTTCGGCGCGGTGGCCGGTCGGCACTGCGGGCACATCTTCGAACCGGTGCGCTTCACCGCGCTGCATGCCTGGCATGTGAAAAACGGCGCCGAGTTCGAGGACGTCGGCCAGTGGAAACGTCCCTGGTACTTCCCGAAGAACGGCGAAGACCTGCATGCCGCGGTCAAGCGCGAATGCAAGGCCGTGCGCGACAGCGTCGGCCTGCTGGACGCCTCGACCCTGGGCAAGATCGACATCCAGGGCCCGGATGCCCGTGAGTTCCTCAACCGCATCTACACCAATGCCTGGACCAAGCTCGACGTGGGCAAGGCCCGCTACGGCCTGATGTGCAAGGAAGACGGCATGGTCTTCGACGACGGCGTGACTGCCTGTCTGGCCGACAACCACTTCCTGATGACCACCACCACTGGCGGTGCGGCCCGTGTACTGCAATGGCTGGAGATCTACCAGCAGACCGAATGGCCGGATCTGAAGGTGTATTTCACCTCGGTTACCGACCACTGGGCGACCATGACCCTGTCGGGGCCCAACAGCCGCAAGCTGCTGAGCGAAGTCACCGACATCGACCTGGACAAGGACGGCTTCCCGTTCATGACCTGGAAGGAAGGCCTGGTAGGCGGCGTGCCGGCGCGGGTGTTCCGCATCTCGTTCACCGGTGAGCTGTCGTACGAAATCAACGTGCAGGCCGACTACGCCATGGGCGTGCTCGAACAGATCGTCGAGGCCGGCAAGAAGTACAACCTGACCCCGTATGGCACCGAGACCATGCACGTGTTGCGGGCCGAGAAGGGCTTCATCATCGTCGGCCAGGACACTGACGGCTCGATGACCCCGGACGACCTGAACATGGGCTGGTGCGTCGGCCGGACCAAGCCGTTCTCGTGGATCGGCTGGCGTGGGATGAATCGCGAAGATTGCGTGCGTGAAGAGCGCAAGCAACTGGTGGGTCTCAAGCCGATCGACCCGAATGTCTGGCTGCCGGAAGGCGCGCAGCTGGTGTTCAACCCCAAGCAGGCGATCCCGATGTCGATGGTCGGCCACGTGACCTCCAGCTATGCGCATAACTCCCTGGGCTATTCGTTTGCGATGGGCGTGGTCAAGGGCGGCTTGAAGCGCCTCGGCGAGCGAGTCTTCGCCCCGCTGGCGGATGGTCGGGTGATCGAGGCAGAGATCGTTTCTTCGGTGTTCTTCGATCCGAAGGGGGATCGGCAGAACGTTTAAMSQINRLSNGGRIDRNKVLTFTFNGQSYKGFEGDSLAAALLANGVDIIGRSFKYSRPRGIFAAGAEEPNAVLQIGATEATQIPNVRATQQALYQGLVATSTNGWPNVNNDMMGILGKVGGKLMPPGFYYKTFMYPQSFWMTYEKYIRKAAGLGRSPTENDPDTYDYMNRHCDVLIVGAGPAGLAAALAAARSGARVILADEQEEFGGSLLDSRESLDGKPATEWVAAAVAELRSMPEVVLLPRATVNGYHDHNFLTIHERLTDHLGDRAPIGQVRQRINRVRAKRVVLATGACERPLVYGNNDVPGNMLAGAVSTYIRRYGVAPGKKLLLSTNNDHAYRVALDWFDAGLQVVAVADARSNPRGALVEEARAKGIRILTGSAVIEARGSKRVTGARVAAIDVRAHKVTSPGEWLDCDLVASSGGYSPVVHLASHLGGKPIWREDILGFVPGEAPQKRVCVGGVNGVYGLGDSLADGFEGGVRAASEAGFKAVEGVLPKALSRHEEPTLALFQVPHEKTTARAPKQFVDLQNDVTAAAIELATREGFESVEHVKRYTALGFGTDQGKLGNVNGLAIAARSLNVSIPQMGTTMFRPNYTPVTFGAVAGRHCGHIFEPVRFTALHAWHVKNGAEFEDVGQWKRPWYFPKNGEDLHAAVKRECKAVRDSVGLLDASTLGKIDIQGPDAREFLNRIYTNAWTKLDVGKARYGLMCKEDGMVFDDGVTACLADNHFLMTTTTGGAARVLQWLEIYQQTEWPDLKVYFTSVTDHWATMTLSGPNSRKLLSEVTDIDLDKDGFPFMTWKEGLVGGVPARVFRISFTGELSYEINVQADYAMGVLEQIVEAGKKYNLTPYGTETMHVLRAEKGFIIVGQDTDGSMTPDDLNMGWCVGRTKPFSWIGWRGMNREDCVREERKQLVGLKPIDPNVWLPEGAQLVFNPKQAIPMSMVGHVTSSYAHNSLGYSFAMGVVKGGLKRLGERVFAPLADGRVIEAEIVSSVFFDPKGDRQNVPGPT0013515_145DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0013515-soxA-K00302NANA
D1-35_03785633soxGSarcosine oxidase subunit gammaATGACCGCAGTCAACGTGTACCAACAACGCCCCACCACCGGGGCCAAGGCCGAGTCATCGCTGCACCATGCCGACCTCGCCAGCCTGGCGGGCAAGGGCCGCAAGAACGCCGGCGTGACCGTGCGCGAGAAAAAACTCCTCGGCCACCTGACCATTCGTGGCAATGGCCACGATCCTGCGTTCGCCGCGGGCGTGCACAAGGCCCTGGGCCTGGAGTTGCCGGGTGCGCTGGCTGTCATCGTCAAGGGCGAAACCAGCCTGCAATGGCTGGGGCCGGATGAATGGCTGCTGGTGGTGCCTTCTGGCGAAGAGTTCGTCGCCGAGCAGAAACTGCGCGAAGCCCTGGGCGACCTGCACATCCAGATCGTCAACGTCAGCGGCGGCCAGCAAATCCTCGAACTGTCCGGCCCGAACGTGCGCGACGTGCTGATGAAATCCACCAGCTACGATGTACACCCAAGCAACTTTCCGGTGGGCAAGGCCGTGGGCACGGTGTTCGCCAAGTCGCAACTGGTGATCCGCCACACCGCTGAAGACACCTGGGAACTGGTGATCCGCCGCAGCTTTTCCGATTACTGGTGGCTGTGGTTGCAGGATGCGGCGGCTGAGTATGGGTTGAGCGTGCAGGCGTAAMTAVNVYQQRPTTGAKAESSLHHADLASLAGKGRKNAGVTVREKKLLGHLTIRGNGHDPAFAAGVHKALGLELPGALAVIVKGETSLQWLGPDEWLLVVPSGEEFVAEQKLREALGDLHIQIVNVSGGQQILELSGPNVRDVLMKSTSYDVHPSNFPVGKAVGTVFAKSQLVIRHTAEDTWELVIRRSFSDYWWLWLQDAAAEYGLSVQAPGPT0013525_188DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013525-soxG-K00305NANA
D1-35_03786858purU_2COG0788Formyltetrahydrofolate deformylaseATGAGCCGCGCCCCAGATACATGGATACTGACCGCCGACTGCCCCAGCGTGCTCGGCACGGTGGATGCGGTGACCCGCTTTCTGTTCGAGCAGGGCTGCTACGTCACCGAGCACCATTCCTTCGACGACCGGCTCTCGGCGCGCTTCTTCATTCGCGTGGAGTTTCGCCAGCCTGACGGTTTCGACGAGCAGAGCTTCCGCGCCGGCCTGGCCGAGCGGGCGCAAGCCTTCGGCATGGTCTTCGAACTGACGCCGCCCAACTACCGGCCGAAAGTGGTGATCATGGTCTCCAAGGCCGATCACTGCCTCAACGACTTGCTCTACCGCCAACGCATCGGCCAGTTGTCGATGGACGTGGTGGCCGTGGTCTCCAATCACCCAGACCTCAAGCCGCTCGCCGACTGGCACCAGATTCCCTACTACCATTTCCCCCTGGATCCGAACGACAAGCCGGCCCAGGAGCGGCAGGTGTGGCAGGTGATCGAGGAGACCGGCGCCGAGCTGGTGATTCTTGCCCGCTACATGCAAGTGCTGTCGCCGGAACTGTGCCGCAAGCTCGACGGCAAGGCCATCAACATCCATCACTCATTGCTGCCGGGCTTCAAGGGCGCCAAGCCGTATCACCAGGCCTATAACAAAGGCGTGAAATTGGTGGGCGCCACGGCGCATTACATCAACAACGACCTGGACGAAGGTCCGATCATCGCCCAGGGCGTGGAAGTGGTGGACCACAGCCACTATCCCGAAGACCTGATCGCCAAGGGACGCGACATTGAAGGGCTCACCTTGGCCCGCGCGGTGGGGTACCACATTGAGCGAAGGGTGTTCCTGAACGCCAATCGCACGGTCGTTCTCTAGMSRAPDTWILTADCPSVLGTVDAVTRFLFEQGCYVTEHHSFDDRLSARFFIRVEFRQPDGFDEQSFRAGLAERAQAFGMVFELTPPNYRPKVVIMVSKADHCLNDLLYRQRIGQLSMDVVAVVSNHPDLKPLADWHQIPYYHFPLDPNDKPAQERQVWQVIEETGAELVILARYMQVLSPELCRKLDGKAINIHHSLLPGFKGAKPYHQAYNKGVKLVGATAHYINNDLDEGPIIAQGVEVVDHSHYPEDLIAKGRDIEGLTLARAVGYHIERRVFLNANRTVVLPGPT0008155_2162DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0008155-purU-K01433NANA
D1-35_037871200fdhA_1Glutathione-independent formaldehyde dehydrogenaseATGTCTGGTAATCGTGGTGTCGTGTATCTCGGCAACGGCAAGGTCGAAGTACAGAAAATCGACTATCCCAAAATGCAGGACCCGCGTGGCAGGAAGATCGAGCACGGCGTCATCCTGCGCGTAGTCTCCACCAACATCTGCGGCTCCGACCAACACATGGTGCGCGGCCGTACCACTGCCCAGACCGGCCTGGTCCTGGGTCACGAGATCACCGGTGAAGTGATCGAAAAGGGCAGCGACGTCGAAAACCTGAAAATTGGTGATCTGGTTTCGGTGCCATTCAACGTTGCGTGCGGGCGCTGCCGTTCCTGCAAGGAGCAACACACCGGTGTCTGCCTGACGGTCAACCCGGCCCGTGCCGGCGGTGCCTACGGTTATGTCGACATGGGCGACTGGACCGGCGGCCAGGCTGAATACGTGCTGGTGCCGTACGCCGACTTCAACCTGCTGAAACTGCCGGACCGCGACAAGGCCATGGAGAAAATCCGCGACCTGACCTGCCTGTCCGACATCCTGCCGACCGGCTACCACGGCGCAGTTACCGCTGGTGTCGGCCCTGGCAGCACCGTCTACATTGCCGGCGCCGGCCCGGTTGGCCTCGCGGCTGCCGCCTCCGCCCGCTTGCTGGGTGCTGCGGTAGTGATCATCGGCGACGTCAACTCCATCCGCCTGGCTCACGCCAAGGCCCAAGGCTTTGAAATCGTCGACCTGTCTACAGACACCCCACTGCACGAGCAAATCGCCGCGCTGCTGGGCGAACCAGAAGTGGACTGCGCAGTCGATTGCGTGGGCTTCGAAGCCCGCGGCCACGGCCATGACGGCGTCAAGCACGAAGCCCCGGCCACTGTGCTCAACTCATTGATGGGCGTGGTCCGCGTGGCCGGCAAGATCGGTATTCCCGGCCTCTATGTCACCGAAGACCCGGGCGCAGTTGATGCCGCCGCAAAAATGGGCAGCCTGAGCATTCGCTTCGGCCTGGGCTGGGCCAAATCCCACAGCTTCCACACCGGCCAGACCCCGGTGATGAAGTACAACCGCCAGCTGATGCAGGCGATCATGTGGGACCGCATCAATATTGCTGAAATCGTTGGCGTGCAGGTCATCAGCCTGGATGACGCGCCGAAGGGTTATGGCGAGTTCGATGCCGGTGTGCCGAAGAAGTTTGTGATTGATCCGCATAAGTTGTTCAGTGCGGCGTAAMSGNRGVVYLGNGKVEVQKIDYPKMQDPRGRKIEHGVILRVVSTNICGSDQHMVRGRTTAQTGLVLGHEITGEVIEKGSDVENLKIGDLVSVPFNVACGRCRSCKEQHTGVCLTVNPARAGGAYGYVDMGDWTGGQAEYVLVPYADFNLLKLPDRDKAMEKIRDLTCLSDILPTGYHGAVTAGVGPGSTVYIAGAGPVGLAAAASARLLGAAVVIIGDVNSIRLAHAKAQGFEIVDLSTDTPLHEQIAALLGEPEVDCAVDCVGFEARGHGHDGVKHEAPATVLNSLMGVVRVAGKIGIPGLYVTEDPGAVDAAAKMGSLSIRFGLGWAKSHSFHTGQTPVMKYNRQLMQAIMWDRINIAEIVGVQVISLDDAPKGYGEFDAGVPKKFVIDPHKLFSAAPGPT0002115_250DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_DICHLOROMETHANE_DEGRADATION,PGPT0002115-fdhA-K00148NANA
D1-35_03788381hypothetical proteinATGGTCGACTCCATGCCGAAGAATCAGGGCCCGCTACTCTGCCACTACCACTACGATCCGCTGGACCGCTTGGCCGACTGCATGGTAGCGGACCAGGTCGGCATCCGACGCTTCTACCTGAAAGACCGGCTGAGCACCGAGATTCAGGGGCCGGTCCAACATTCGGTCGTGCAGCACGACGATCAGTTGCTGGCCCAGCAGCAGCGGAAAAATGAAATCAGCACAACCACCTTGCTCGCCACCGATCATCAGCGTTCGGTTTTACAAACGTTCGATGCAGCACAACCTCAGCGCCTTGCCTACACGGCCATGGCCATCGTCCTCAGGAAGTTGGCCCTCCAAGCCTGCTCGGCTTCAACGGCGAACGAGCGGATCCGGTGAMVDSMPKNQGPLLCHYHYDPLDRLADCMVADQVGIRRFYLKDRLSTEIQGPVQHSVVQHDDQLLAQQQRKNEISTTTLLATDHQRSVLQTFDAAQPQRLAYTAMAIVLRKLALQACSASTANERIRNANANANANA
D1-35_03789708Lytic cellulose monooxygenaseATGAAATATTCCAGCCTAGCCCTGAGCTGCATTCTTCTGTCCAGCATCGGTTTGATCAGTTGCACTGATGTCAAAACCCCGTCCAAGAGCCCAGAGATAAAACACGGTACCTCGCAGATGCCGCCGTCTCGCCAGTACTATTGCTGGGATCAGCAGGACTTCAACAATGGCAGCGCAAACATCAAGAACGCTGCGTGCCGGGCAGCCTTTACAGCGGCAGGCGACGCCGACTGGGAACGCGCCCGTCTGTTCAACGACTGGAACGCCTACTCGCAAAACATCCCCGAAGGCACCAAGCCGGAAGACGTCGCTCCCGATGGGAAACTCTGTTCCGCCGGTCAGGATCGCTTCGACAGTATCAACCTCAAAAGCGCTGCCTGGCACACCACTGATCTGGACGTGAAGGACGGCCGCGTGCAGCTCACTTATGTGGCCAGCCAGATGCATGATCCCAGCGAATTCAAGGTTTACCTGACCGACCCGGACAACCTCAACTGGGCCGCGCTGAAGCAGTCTCCTGACGTCAAGGTGAGACTTGCCCCGGACACGAAAGGACCGGGCACCTATTACCTGGACGTTCAATTACCAGCAGGCTATGTCACGGACAGCAAGTCAGTGATCTTCATTATGTGGCAACGCCATGAAGACCCTGCCCGCGAGACATTCTTCAGTTGCAGCGATGTGGTGCTGGTGAACGCGAAAGGTTAGMKYSSLALSCILLSSIGLISCTDVKTPSKSPEIKHGTSQMPPSRQYYCWDQQDFNNGSANIKNAACRAAFTAAGDADWERARLFNDWNAYSQNIPEGTKPEDVAPDGKLCSAGQDRFDSINLKSAAWHTTDLDVKDGRVQLTYVASQMHDPSEFKVYLTDPDNLNWAALKQSPDVKVRLAPDTKGPGTYYLDVQLPAGYVTDSKSVIFIMWQRHEDPARETFFSCSDVVLVNAKGNANANANANA
D1-35_03790579hypothetical proteinATGAACGTACAAATCGGTGGAGGCGCCCTCGCGGTCATTCTGACGGGCATGCTCATCGCCTTCGGCGTCAGCGAGTGCCAGCGCGGCCCGTTGAACCCGGAACTTGCCGACGACGTCAGCGAAGCGCAAAAGACCTGGCTGACCATCGAGCACCGCATCAAGCGTTATGATCCAGCCCTGACGCAGGTCACGCGAGACCAGCAGGCCCTGAGCGTTTTCTACCGCCCCGCCACGCCCATCGAGGCGGGCGAGGATTGGGCGCCGGACATGCTGCGCGTCGTCGGCCACGGCCTGGCGGCGCTGAATGGCGCGCCAGGAGGAAAGGTGTATACCCAAGTGACCGTGAAAGCGCGAATGCTTGCCGATGATGACGTCGAACTGATGTATGACATGCCGGGGTTCGATGCCATCAAGACCCAACAGGATGGCTACTTCAACTTCGCCAGCATGCCGCGCAGCCTGTCATTCAGTCCGGCCGCCCTGGCGCAGATCAAGGACGATTGCCGTGGCATGAACGCGCAGGCGTTCTATTCGCAATTTTGCCAGCGGGTCGGCGAGGCCATAACGAGCCAACCCTGAMNVQIGGGALAVILTGMLIAFGVSECQRGPLNPELADDVSEAQKTWLTIEHRIKRYDPALTQVTRDQQALSVFYRPATPIEAGEDWAPDMLRVVGHGLAALNGAPGGKVYTQVTVKARMLADDDVELMYDMPGFDAIKTQQDGYFNFASMPRSLSFSPAALAQIKDDCRGMNAQAFYSQFCQRVGEAITSQPNANANANANA
D1-35_03791570hypothetical proteinATGAAGGTTTCACGCGGTTTTGCACTGTCTTGCCTGCTCTCGTTGGCAGCCGGCCCGGCCTTCGCACAGTTCAGCCTCGCTGATGCGACAAGCGTGATCTCGGCCATTCAGGGCAACCAGCAGGAGGGGGCGGTAGCGGCTGCGCCGAAAGCCGCCGGGTTGCTCAATACCCTCGGCTCGGAACTCCAGATCACGCCGGAGCAAGCCGTGGGCGGTGCCGGGGCGATGCTCGGACTGGCCAGGAACCAGCTCGGCGAGGCGCAGTTCGCCGAGCTGAGCAAAAGTGTGCCGGGGCTCGATCAGATCGCCGGGAACAGTGCCATCGGTGGCCTTAACGGCCTGGGTGGCTTGCTGGGCGGCGGGTCGGACAAAAACGCCTTGCTCGACGGCTTGCTCGGTAACGTCAAGGACACCGGCGACCTGAACAATGCCTTCAGCGCGCTGGGCATGGACAGCGGCATGATCGGCCAGTTTGCCCCGATCATCTTGCAGTACCTCGGCCAACAGGGCGTCGCCAGTTCGCTGTTGCAGAACCTGGGCGGTATCTGGGGCGCCGGCGCCGGTATCTGAMKVSRGFALSCLLSLAAGPAFAQFSLADATSVISAIQGNQQEGAVAAAPKAAGLLNTLGSELQITPEQAVGGAGAMLGLARNQLGEAQFAELSKSVPGLDQIAGNSAIGGLNGLGGLLGGGSDKNALLDGLLGNVKDTGDLNNAFSALGMDSGMIGQFAPIILQYLGQQGVASSLLQNLGGIWGAGAGINANANANANA
D1-35_03792888yihG_2COG0204putative acyltransferase YihGATGCGCCGCCTGCTCACCGGCTGTTTCGTCACCCTGCTGCTATTGCTCAATACCCTGGTGCTGTTCGGGCCGCTGATGGTGTTTGCATTGCTCAAGCTGGTCCTGCCCGGGCGTCTCCGCGATTACGCCTCGTGGGCGGTGATGTGGATTGCCGAGACCTGGGCCGAGATCGACAAGCTGATATTTGCCTGGTGCATCCCCACCCGCTGGGACATTCGCGGCGGTGAAGGCCTGCGCAGCGACACCTCGTACCTGGTGATCAGCAATCACCAGTCATGGGTGGATATCCCCGCCCTGGTCCAGACCCTCAACCGACGCACGCCGTTCTTCAAATTCTTTCTCAAGAAAGAGCTGATCTGGGTGCCGTTCCTGGGGCTGGCGTGGTGGGCATTGGATTACCCTTTCATGAAGCGCTACACCAAGGCGTTCCTGGCAAAGAATCCGGAGCTGGCCGGCAAGGATCTGGAAATCACCAAGGCCGCCTGCGAGCTGTTCAAGCGTCAGCCAGTCACCGTGGTGAATTATCTCGAAGGCACGCGCTTCACCGCCGCCAAAAGCCAACAGCAGCAATCGCCCTTCAGTCATCTGCTCAAGCCCAAGGCCGGTGGCGTGGCGTTTGTGCTGGCGGCGATGGGCGAGCAGCTGGATGCGATCCTCGACGTGACGGTGGTTTATCCGCAGCAGCGCATCCCCGGGTTCTGGGACTTGATCAGCGGCGCGGTGCCCAGGGTCATCGTCGACATCCAGACCCGCGAACTGGACCCGGCGCTGTGGCAAGGCGATTACGAAAACGACCCAGTGTTTCGCCAGCATGTGCAGGACTGGGTCAACCAGCTCTGGCATGAAAAGGACCAGCGCATTGCTCAGCTGCGCAACGAGAGCGCCTGAMRRLLTGCFVTLLLLLNTLVLFGPLMVFALLKLVLPGRLRDYASWAVMWIAETWAEIDKLIFAWCIPTRWDIRGGEGLRSDTSYLVISNHQSWVDIPALVQTLNRRTPFFKFFLKKELIWVPFLGLAWWALDYPFMKRYTKAFLAKNPELAGKDLEITKAACELFKRQPVTVVNYLEGTRFTAAKSQQQQSPFSHLLKPKAGGVAFVLAAMGEQLDAILDVTVVYPQQRIPGFWDLISGAVPRVIVDIQTRELDPALWQGDYENDPVFRQHVQDWVNQLWHEKDQRIAQLRNESANANANANANA
D1-35_03793507hypothetical proteinATGAAATCCGTTTTAGCCCTGCTTTCCCTGGTGGCCCTCCCCGTGCTTGCCGCCGAACCGACCCTCTATGGGCGCTACGAATACATCGCGCTGCCGGAAATCGGTGGCGAAGTGCTCAAGGCCAAGATGGACACCGGCGCATTGACCGCCTCGCTGTCGGCCAAGGACATCGAGACGTTCACCCGTGACGGCGATGACTGGGTACGTTTCCGCCTGGCGACCAAGGACGCGAGCAACAAGATCTACGAACACAAGATCGCCCGCATCAGCAAGATCAAGACCCGTTCCGAAGAGGACGAGGACGACGACGAAAAGGTCGCCCCCAGCAAGCGTCCGGTGGTGGAACTGGAAATGTGCCTGGGTAACGTCAAGCGCACTGTCGAGGTCAACCTGACCGACCGCAGCAGTTTCAACTACCCGCTGCTGATCGGTGCCAAGGCCTTGCGTGAGTTCGACGCGGCGGTGAACCCGGCGCGGCGGTTTACGGTGGATAAACCGGACTGTTGAMKSVLALLSLVALPVLAAEPTLYGRYEYIALPEIGGEVLKAKMDTGALTASLSAKDIETFTRDGDDWVRFRLATKDASNKIYEHKIARISKIKTRSEEDEDDDEKVAPSKRPVVELEMCLGNVKRTVEVNLTDRSSFNYPLLIGAKALREFDAAVNPARRFTVDKPDCNANANANANA
D1-35_03794681creBCOG0745Transcriptional regulatory protein CreBATGCCTCATATTCTGATTGTCGAAGACGAAGCCGCCATCGCTGATACGCTGGTGTTTGCGCTGCAGGGCGAGGGCTTTGACACCACTTGGTTGAGCCTGGGAGCCGCGGCCCTGGAGCATCAGCAGAAGACTCCGGCGGACCTGATTATTCTCGACGTGGGCCTGCCGGATATCAGCGGTTTCGAGACGTGCAAGAATCTCAGACGTTTCAGCGACGTTCCGGTAATTTTTCTTACGGCTCGGGATGGCGAGATCGACCGGGTGGTTGGCCTGGAGATTGGCGCTGATGATTACGTGGTCAAGCCCTTCAGCCCCCGCGAAGTTGCCGCCAGGGTTCGCGCGATTCTCAAGCGCGTGGCGCCGCGGCCTTTCGCGGAAGCGGGTTCGGCGTTGTTCCAAGTGGACAGCGAGCGCGTGCAGATCAGCTATCGCGGCAAGCCGTTGAACCTCACTCGTCATGAGTTTCGCCTGTTGAACTGCCTGCTGGAGCAGCCTGAGCGGGTCTTCAGTCGCGAGCAATTGCTCGATGCCCTGGGCGTGGCCAGCGATGCCGGCTACGAGCGCAGCATCGACAGCCACATCAAGAGCCTGCGCGCCAAGTTGCGCCTGGTCCGGGCCGAGGCCGAACCGATCCAGACCCACCGGGGCCTTGGCTACAGCTACAGCCCGGGCCACAGCTGAMPHILIVEDEAAIADTLVFALQGEGFDTTWLSLGAAALEHQQKTPADLIILDVGLPDISGFETCKNLRRFSDVPVIFLTARDGEIDRVVGLEIGADDYVVKPFSPREVAARVRAILKRVAPRPFAEAGSALFQVDSERVQISYRGKPLNLTRHEFRLLNCLLEQPERVFSREQLLDALGVASDAGYERSIDSHIKSLRAKLRLVRAEAEPIQTHRGLGYSYSPGHSPGPT0015055_369DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CARBON_STARVATION_RESPONSE,PGPT0015055-creB-K07663NANA
D1-35_037951419creCCOG0642Sensor protein CreCATGTCGCTGGGTATCCGGATTTTCCTGGCCTACGTGCTGTTCATCGGCCTGGCCGGGTATTTCGTGCTTAACACGGTGATGGAAGAGATCCGTCCCGGTGTGCGCCAGTCCACCGAGGAAACCCTGGTGGACACGGCCAACCTGATGGCCGAAATCCTGCGGGACGATTTCAAGGCCGGGACGCTCAGCCAGAACCGCTGGCCGCAATTGCTCAGGTCCTATGGCGAACGCCAGCCGGCGGCGACGATCTGGGGATTGCCAAAAAACCAGGTCAACCATCGCATCTACGTCACCGATGCCAATGGCATCGTCGTGCTCGATTCCAGTGGCGTGGCGGTGGGCCAGGATTATTCGCGGTGGAACGACGTCTACCTGACCCTGCGCGGCCATTACGGCGCTCGTTCGACCCGCAACGATCCGAGCGACCCGGCATCTTCGGTGATGCATGTCGGGGCCCCGATCCGGGACAACGGAAGGATCATCGGCGTGGTCACGGTGGCCAAGCCCAACAGCTCGTTGCAACCTTACATCGACCGCACGGAGCGGCGCCTGCTGGCGTACGGTGCCGGGTTGATCGGCCTGGGCCTGTTGCTGGGCGCCTTGCTGTCCTGGTGGCTCAGCGCGGCTTTGCGTCGGTTGACTCGTTATGCCCAGGCGGTCAGCCAGGGGCGGCGGGTGGAAGTGCCGCATTATCGCGGCGGCGAATTCGAGCAACTGGCGGGCGCCGTCGAACACATGCGCACCCAGCTCGAAGGCAAGGCCTACGTCGAGCGTTATGTGCACACCTTGACTCATGAACTGAAGAGTCCGCTGGCCGCGATTCGCGGCGCCGCCGAGCTGCTGCAGAGCGACATGCCCGCCGCCCAGCACCAGCGCTTTGTCAGCAACATCGACAGCGAAAGCGTGCGCATGCAGCAATTGATCGAGCGCCTGCTCAACCTGGCCCAGGTCGAGCAGCGCCAGGGGTTGGAGGATATTGTCGCGGTGCCGTTGGCGGCGTTGGTCGATGAATTGCTGGAGGCTCGCGGCGGCTGGATCGAAAGCCGTCAATTGCGCATAGAGCGATACATCGCCGCTGATCTGACGCTGACCGGGGAGGCCTTCCTGTTGCGCCAGGCCCTGGGCAACTTGCTGGAAAATGCCTTGGACTTCACCCCTGTCGAAGGCTTGTTGCGCATCAGAGCCGAGCGCCTGGGCAGCCGCGTCGAGATCCGTCTTTTCAACCAGGCCGAGCCGATTCCCGACTACGCACTACCGCGCCTGAGCGAGCGGTTCTATTCCTTGCCGCGCCCTGGCACCGGGCGCAAGAGCACAGGCCTGGGGCTCAACTTTGTCGAGGAAGTGGTGCAGTTGCATGGGGGGGAATTTGGCATCGGTAATGTCGAGGGTGGGGTGGAAGTGGTGCTGCGGTTGCCCTGAMSLGIRIFLAYVLFIGLAGYFVLNTVMEEIRPGVRQSTEETLVDTANLMAEILRDDFKAGTLSQNRWPQLLRSYGERQPAATIWGLPKNQVNHRIYVTDANGIVVLDSSGVAVGQDYSRWNDVYLTLRGHYGARSTRNDPSDPASSVMHVGAPIRDNGRIIGVVTVAKPNSSLQPYIDRTERRLLAYGAGLIGLGLLLGALLSWWLSAALRRLTRYAQAVSQGRRVEVPHYRGGEFEQLAGAVEHMRTQLEGKAYVERYVHTLTHELKSPLAAIRGAAELLQSDMPAAQHQRFVSNIDSESVRMQQLIERLLNLAQVEQRQGLEDIVAVPLAALVDELLEARGGWIESRQLRIERYIAADLTLTGEAFLLRQALGNLLENALDFTPVEGLLRIRAERLGSRVEIRLFNQAEPIPDYALPRLSERFYSLPRPGTGRKSTGLGLNFVEEVVQLHGGEFGIGNVEGGVEVVLRLPPGPT0015045_459DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CARBON_STARVATION_RESPONSE,PGPT0015045-creC-K07641NANA
D1-35_037961374creDCOG4452Inner membrane protein CreDATGAACCGCAGCCTCGCCATAAAACTGGGCATGATCGCCCTCTTGATTCTCTTGCTGATGATCCCGCTGTTGATGATCAACGGCCTTATCGATGAGCGCCAGGAGCTGCGCGATGGGGTGTTGCAGGACATCGCCCGCAGTTCCAGCCACAGCCAGCAGTTGATCGGCCCGATGATCGTGGTGCCGTTTCGCAAGGACGTGAAGGTCTGGAATACCAACGAGAAGACCGGCGTGCGCTTCCTCGAAACCGTCGAGCAAACGGGCGAGTTGTATTTCCTCCCGGAGCAATTTGAGCTCGACGGCCAGATCCGCACCGAAACACGTGCCCGGGGCATCTACGAAGCGCGCTTGTTTCATGCCGACAACCGGATCGATGGCCGCTTCAAAGTGCCGGAACGTTATGGCGTCGCCCCGAAGGATTTCGCCGACTACCGCTTTGACGAGCCGTACCTGAGCGTCGGCATCAGCGATATTCGTGGCATCGAGAATGCATTGACCCTGACGCTGAACCAGCAGACGGTCGATTTCCTTCCCGGTTCGCGGCTTGGCTGGCTGGGGCAGGGCGTACACGTGCCGTTGCCGATGATCACCGCCCAGGGCAGCCCCGAACTGACCTTCGGTTTCGACCTGCGCCTGCAAGGCACCGGCGAGCTGCAGATCCTGCCGGTGGGCAAGTCCACCAAGGTGCACCTGTCCGCCGATTGGCCGCACCCGAGCTTCATCGGCAATTACCTGCCGGTCAATCGCGAGATCAATGAGCAGGGCTTCAATGCCGACTGGCAGACCTCGTTTTTCTCCACCAACCTTTTGGAAACGCTGCAAGCCTGCGATCCCAGCGATGGTTGCGAAGCGTTCCGCAGTCGTGCGTTCGGTGTAAGTTTCGTCGATCCGGTGGACCAGTACCTGAAGAGCGACCGGGCGATCAAATATGCGCTGCTGTTCATCGCGCTGACCTTCGCCGGGTTCTTCCTCTTCGAAGTGCTCAAGAGCCTCGCGGTGCACCCGGTCCAGTACGCATTGGTCGGCGTGGCGCTGGCGTTCTTCTACCTGCTGCTGTTGTCGCTGTCGGAGCACATCGGCTTCACCCTGGCGTACCTGGTATCGGCCAGTGCCTGTGTGGTGCTGATTGGCTTCTACGTCTGCCATGTGCTGCGCAGCGTGAGCCACGGCCTGGGATTTTCAGCGGGGTTGGCGGGTTTGTACGGACTGCTTTATGGCCTGTTGAGCGCCGAAGACTACGCGCTGTTGATGGGCTCGCTGCTGCTGTTCGGCCTGCTGGGCGTGTTCATGGTGCTGACCCGCAAGCTGGATTGGTACGGAGTGGGCGCGAAGCCGGCGGCTGCGATGAGTTTTGATCTGGGAGAGGTGAAATGAMNRSLAIKLGMIALLILLLMIPLLMINGLIDERQELRDGVLQDIARSSSHSQQLIGPMIVVPFRKDVKVWNTNEKTGVRFLETVEQTGELYFLPEQFELDGQIRTETRARGIYEARLFHADNRIDGRFKVPERYGVAPKDFADYRFDEPYLSVGISDIRGIENALTLTLNQQTVDFLPGSRLGWLGQGVHVPLPMITAQGSPELTFGFDLRLQGTGELQILPVGKSTKVHLSADWPHPSFIGNYLPVNREINEQGFNADWQTSFFSTNLLETLQACDPSDGCEAFRSRAFGVSFVDPVDQYLKSDRAIKYALLFIALTFAGFFLFEVLKSLAVHPVQYALVGVALAFFYLLLLSLSEHIGFTLAYLVSASACVVLIGFYVCHVLRSVSHGLGFSAGLAGLYGLLYGLLSAEDYALLMGSLLLFGLLGVFMVLTRKLDWYGVGAKPAAAMSFDLGEVKNANANANANA
D1-35_03797189hypothetical proteinATGAGCCGGTCGTTGGGGTTGCGGGAGGACCAGCGGGTGGGGGAAATGCTGGTGATGCGAATTGTCGGGTTGTTTCCTTTGGATCCGGTGCGCGGCCTTCGCGAGCAGGCTCGCTCCCACAAGAGAGCAACACAATCAAATGTGGGAGCGAGCCTGCTCCGAGCGGCGTTCCGACGAAGAGGCCGGTGAMSRSLGLREDQRVGEMLVMRIVGLFPLDPVRGLREQARSHKRATQSNVGASLLRAAFRRRGRNANANANANA
D1-35_03798630yibF_1COG0625putative GST-like protein YibFATGTCCACCCCCAGCATGACCCTGTTCCACAACCCCGCTTCGCCCTTCGTTCGTAAGGTCCTGGTGCTGCTGCACGAAACCGGACAGCAGGATCGCGTCGCCTTGCAGCTCAGCCAACTCACGCCGGTCAAGCCGGACCAAGCACTGATCCATGACAATCCGTTGAGCAAGATTCCGGCCCTGCGCCTGGCCAACGGGACGGTGATCCACGACAGCCGCGTCATCCTCGACTACCTCGACCACCAACACGTCGGCAACCCGCTGATCCCGCGCGAGGGCGCCGCGCGCTGGCGGCGCCTGACCCTGGCCTCCATGGCCGACGGGATCATGGACGCGGCGGTGATGATCCGCTACGAGACAGCCCTGCGTCCTGTGGAAAAACACTGGGACGAATGGCTCGATGCGCAGCGGGACAAGATTCGTCGCGCCCTCGCCACGCTCGAATCCGAGGCGATTGCAGAACTGGCCAGCCATTTCGACGTCGCGTCCATCAGCGTGGCCTGCGCCCTGGGTTACCTGGACCTGCGCCATGCCGACCTGGAATGGCGCGAGAACAATCCGCAGCTGGCGGCGTGGTTTTCCGAGGTCAGTTTGCGGCCTTCGATGGCCGAGACGGTGCCCCGGGTCTAAMSTPSMTLFHNPASPFVRKVLVLLHETGQQDRVALQLSQLTPVKPDQALIHDNPLSKIPALRLANGTVIHDSRVILDYLDHQHVGNPLIPREGAARWRRLTLASMADGIMDAAVMIRYETALRPVEKHWDEWLDAQRDKIRRALATLESEAIAELASHFDVASISVACALGYLDLRHADLEWRENNPQLAAWFSEVSLRPSMAETVPRVPGPT0013170_20446DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013170-gst-K00799NANA
D1-35_03799180hypothetical proteinGTGAGGCCTCGGCAGTCGAATTTCTGGAAGGTGTTTGGTATTCCCGTAGTGATCGGCGCATTGAGCGCGGCGGGGCTGTTCAGCGCATTGCTCGGTGACGGCGCCTGGGATGCGCTGAGCTGGGTTGGATTGGGAATCCCGACCGTGCTTGGGGCCTGGGGCTTGATCAAACGCGGATAAMRPRQSNFWKVFGIPVVIGALSAAGLFSALLGDGAWDALSWVGLGIPTVLGAWGLIKRGNANANANANA
D1-35_038001131hypothetical proteinATGAAAAGCAAAACCATTCGCCGCTGGTCCTTTGTCCACACCTGGAGCAGCCTGATCTGTACGGTGTTCCTGCTGATGCTGGCAATCACCGGGCTGCCGCTGATTTTCCATCATGAAATCGAGCATCTGTTGGGCGATGCCCCGCAGCTGCGGGAAATGCCGGCCGGCACGCCGCCGTTGGATCTTCAACAACTGGTGGAAAAAGCCAAGGCTCATCGTCCGGGTGAAGTGGTCCAGTATTTCGGCTGGGACGAAGACGACCCCAACGGCGTGATCACCATCATGGCGCCGACACCGGGCACCGAACCCAATTCATCCCATACCTTCATGCTCGACGCGCGCACCGGCGAAGCCCTGGAGATGCCTTCGGCCAACGGCGGTTTCATGATGATCATGCTGCGCCTGCATGTGGACATGTTCGCCGGGCTGCCGGGCAAGTTGCTGCTGGCGTTCATGGGGTTTCTGTTCGTGATTGCCATCGTCTCCGGCGTGGTGCTGTACTTGCCGTTCATGCGGCGCCTGAACTTCGGCACGGTGCGCCAGGACAAATCCACCCGCCTGCGCTGGCTCGACCTGCACAACCTGATCGGCGTCGTCACCCTGGTCTGGGCGCTGACCGTGGGCGTGACCGGCGTGATTGCCGCCTGCGCCGACCTGATCATCGCCGCGTGGCGCAACGACAGCCTCAGCGCGATGGTCGAGCCGTACCGCAACGCCCCGCCACTGACGCAACTGGCCCCGGCGACCCGCCTGCTCGACATTGCCAAGGAAGTCGCGCCGGGCATGGAGCCCAGCTTCATCGCCTTCCCCGGCACGCTGTTTTCCAGCGAGCATCACTACAGCGTGTTCATGAAGGGCGACACCCACCTGACCTCACACCTGCTCACCCCGGTCCTGATCGACGCCAGCACCCTGGACGTCACCGCCGTGGCCGAGCGGCCGTGGTACATGGACATGATGAGCCTGTCCCTGCCGCTGCATTTCGGCGACTACGGTGGCCGGCCAATGCAGATTTTCTGGGCAACCCTGGATGTGCTGACGATCATCGTCCTGGGCAGTGGCGTTTATCTGTGGGTGGTGCGACGTAAAGCCGCCAAGCGCGCGACTGTCGGCGCGGAGGTTGCCCCGTGAMKSKTIRRWSFVHTWSSLICTVFLLMLAITGLPLIFHHEIEHLLGDAPQLREMPAGTPPLDLQQLVEKAKAHRPGEVVQYFGWDEDDPNGVITIMAPTPGTEPNSSHTFMLDARTGEALEMPSANGGFMMIMLRLHVDMFAGLPGKLLLAFMGFLFVIAIVSGVVLYLPFMRRLNFGTVRQDKSTRLRWLDLHNLIGVVTLVWALTVGVTGVIAACADLIIAAWRNDSLSAMVEPYRNAPPLTQLAPATRLLDIAKEVAPGMEPSFIAFPGTLFSSEHHYSVFMKGDTHLTSHLLTPVLIDASTLDVTAVAERPWYMDMMSLSLPLHFGDYGGRPMQIFWATLDVLTIIVLGSGVYLWVVRRKAAKRATVGAEVAPNANANANANA
D1-35_038012439fhuA_2COG1629Ferrichrome outer membrane transporter/phage receptorATGTCCCGCCCGCTAGACACCCTGTTGCGTCCCAGCCTGTTGGCCGTCGCCATCGCCTTCGCCACCCCGCTGGCCAGCGGTCCGCTGCTGGCCGCCGAGCAGGCGTCCAACGTGCGCGCCTACAACCTGCCCGCCGCGCCATTGGCCAGCACCCTGAACCAGATCGCCAGCCAGGCCGGCCTTGCCCTGAGCCTGAACCCGGCGCTGGCTTCGGGTAAAACCTCGGCGCCGGTCCAAGGCCAGTTCGACGCCACCGGTGCGCTGCGTGAAGCCTTGCGCGGCACCGGCCTGCAACTGGAACAAAGCAGCGCCGGCACCTACAGCCTGGTGGCCGTGCCGGAGGGTGTCATGGTGCTGCCGGAAACCAGCGTGATCGGCGCCGGCGTCAGCGAAACCGCCTGGGGCCCGACCGAAGGCTATGCGGTCACCCGCACCGCCGCCGGCACCAAGACCGACACGCCGATCGTCGAACTGCCGCGCTCGGTCTCGGTGGTCACGCGCCAGCAGATGGACGACCGCTCCGTGCTCAACCTCAACGATGCCCTGCGCTACACCGCCGGCGTGCAGAGCAGCGGCTACGGTTCGGATTCGCGCAATGACTGGCTGCTGGTGCGCGGCTTCGTACCGACCCAGTTCCTCGATGGCCTGCCGCTGCCCAAGGGCAACTACATCACACCGAAGATCGAGCCGTGGAACCTCGAGCGCATCGCCGTGCTTCGAGGCCCGGCGTCGTCGGTCTACGGCCAGACGCCACCCGGCGGCATGCTCGACATGGTCAGTCGTCGCCCGCAAGCCGAGAGCAGCAATGAAGTGGAGTTGCAGGCCGGCAGCCACGAGCACAAGCAGATCAACTTCGACAGCACCGGCAAGGTCGACGACGAAGGCCAGTTCCTCTACCGGCTCAGCGGTACCGTGCGCGACAGTAACTCCCAGATCGATCACATCCCGGACAAGCGCTACAACATCGCCCCGAGCCTGACCTGGAACATCAACGACGACACCCGCCTGACATTCCTGTCGCAATACACCCGCGATGACACCGGCATCACCGGGCAATTCCTGCCCCTGCAAGGCACCAAGCTGTCGTCGCCGGCGGGCAAGATTTCCCATCACAAGAACCTCGGTGATCCAGATTGGGAATTCTACGACCGCACCTACTACGCGCTCGGTTATGCCTTTGAACACCGCCTGAACGACACCTGGCAGTTCCGCCAGAACCTGCGCTACACCAAGAGCGACCTGGAAACCCAGGGCATCTCCGCCGGTGGCCAATTCTGGCCAGATGGCCCGGACCAATCGGTGGACGCCGACGGCAACGTCAAGCGCAGCGCCAGCGTGATCGACGAAGACATCAGCCAGTTCGCCGTGGACAACAACTTCCAGGCCGACTTCCAGACGGGTGATCTGAGCCACACCTTGTTACTGGGCCTGGATCACCAGCGCTCGAACAGCAATTCGCGTTGGGATTGGGGTTCGACTGGCGTGCCGACCAGCAATATCAACAACCCGACCTACGGACAGGATTTTTCCAACGTCCAGTACTTCACGATGTATGACTACAACCAGAAGACCAACCAGACCGGCCTGTACTTCCAGGACCAGATTGCCCTGGACAAGTGGCGCCTGACCCTTGGTGGTCGTGAAGACTGGATTCACACCGGCACCGTGTTCCACAACCAGAACAATGTCACCAACACCCAGCGCGACAAGAAATTCAGCGGCAACGCAGCGTTGAGCTACGTCTTCGATAACGGTGTGACGCCCTACGTTTCCTTCGCTCAGTCGTTCCAGGCGGCGGCGGGTTCAACCGTCAACAGCACCGAAGCCTTCAAGCCGACGGAAGGCGAACAGTACGAAGCGGGTATCAAGTACCAGCCACCCGGCACCAAGACCTTGTTAACGGCAGCGGTGTTCGACCTGACCCAGAAAAATAACTCCGTCACCGAAAACAACGTCACCCGCCAGGTCGGTGAGGTCCAGGTGCGCGGCCTTGAGCTGGAAGCCTCGGGCGACGTTACCGACAACCTGAAGCTGGTCGGTTCCTATACCTACAACGACAGCGAAATCACCAAGGGCACCGCGGCCGAAGAAGGCAAGCGCATGGCCCAGGTTCCGCGTAACCAGGCCACCGCATGGGCTGACTACACCTGGCACAACGGCTCGCTGGACGGGTTCGGCGTGGGTGCCGGCGTGCGTTATGTCGGCGACACCTACGGCAACACCACCAACACCGATTGGGGGCATGTCGGCTCCTATACGGTGTATGACGCCTCGGCCCATTACGACCTGGGCCGTTTGAACAAGACCCTCAAGGGCGTCACCGTGGCGGTGGACGCGAAAAACATCTTCAACAAGGAATACCTGTCCACCTGTGACGGCTTCTATTGCTACTACGGAGACCAACGCAACGTCGTCGCCAGCGTGAATTACAAATGGTAAMSRPLDTLLRPSLLAVAIAFATPLASGPLLAAEQASNVRAYNLPAAPLASTLNQIASQAGLALSLNPALASGKTSAPVQGQFDATGALREALRGTGLQLEQSSAGTYSLVAVPEGVMVLPETSVIGAGVSETAWGPTEGYAVTRTAAGTKTDTPIVELPRSVSVVTRQQMDDRSVLNLNDALRYTAGVQSSGYGSDSRNDWLLVRGFVPTQFLDGLPLPKGNYITPKIEPWNLERIAVLRGPASSVYGQTPPGGMLDMVSRRPQAESSNEVELQAGSHEHKQINFDSTGKVDDEGQFLYRLSGTVRDSNSQIDHIPDKRYNIAPSLTWNINDDTRLTFLSQYTRDDTGITGQFLPLQGTKLSSPAGKISHHKNLGDPDWEFYDRTYYALGYAFEHRLNDTWQFRQNLRYTKSDLETQGISAGGQFWPDGPDQSVDADGNVKRSASVIDEDISQFAVDNNFQADFQTGDLSHTLLLGLDHQRSNSNSRWDWGSTGVPTSNINNPTYGQDFSNVQYFTMYDYNQKTNQTGLYFQDQIALDKWRLTLGGREDWIHTGTVFHNQNNVTNTQRDKKFSGNAALSYVFDNGVTPYVSFAQSFQAAAGSTVNSTEAFKPTEGEQYEAGIKYQPPGTKTLLTAAVFDLTQKNNSVTENNVTRQVGEVQVRGLELEASGDVTDNLKLVGSYTYNDSEITKGTAAEEGKRMAQVPRNQATAWADYTWHNGSLDGFGVGAGVRYVGDTYGNTTNTDWGHVGSYTVYDASAHYDLGRLNKTLKGVTVAVDAKNIFNKEYLSTCDGFYCYYGDQRNVVASVNYKWPGPT0003790_9133DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014NANA
D1-35_03802981fecR_5COG3712Protein FecRATGACCATGGCCTCTTCCAAGCCAGTGTCGGCGCGGGTGTTGGACGCGGCCATCGCCTGGCAATTGTCCCTGGACTCAGGCAATGGCAGCCCTCAGGAGCGTGAAGCCTTCGCTCAATGGCACGCCGCCGATGAGGAGCATGCACGCGCCTGGCAACAGCTGGGCATGCTCGACCAGCGTTTCAGCGTCGCCAGCGGCCCGGCGCGTGCGGCGCTGCTGCAATCGCGGGTCAGCATCCGGCGGCGGGTACGCAAGATCGGCAGCGGCCTGGCCAGCGTCGTCGCGGTCATTGGCCTGGCGCTGTTCGCTGGCGAGCGTTACCTGCCGCTGGATTATTGGCTGGCCGACCAGCGCACCGCCACCGGTGAACAGCGCACGTTGCGCCTGGCCGACGGCACCCTGATCAACCTCAACACTCACAGCGCGTTGGATGTGCGTTTCGACGACAAGCAGCGGCGCGTCATCCTGCAGGAAGGCGAGATCCTGGTGGAAACCGGCCACAACGATCCGCGCCCGTTCATCGTCGAGACTCGCGAGGGCAGCATGCGCGCCCTGGGCACGCGCTTTCTGGTCAGGCTCGAAGACGAAGGTACACGCCTGAGCGTATTGAAATCCGCGGTGGCCGCGCATCCGCAAGCGACCGCCGAGGAGCAGATTCTGCGCGAAGGCCAGCAGGTGCTGATGCGCCGCGACGGCCTCGGTCCAACCTTGGCCCTGAGCCCCGGCGCCGATGCCTGGACTCGCGGCATGCTGGTGGTGGACAACGCGCGGCTCGAAGACCTGGTCCGTGAGTTGGCGCGCTATCGGCGCGGCTACCTCGGCGTCGAGCCCAAGGTGGCGGACCTGCGCATTACCGGCAGTTTCCCGCTGCATGACACCAACCTGGCGTTGACCGCTTTGCTGCCGACCTTGCCGGTGCAGGTCGAGCATCACACGCGTTGGTGGGTGGTGGTGGCGCCGCGGGTCGAGGCCAAGCGCTAGMTMASSKPVSARVLDAAIAWQLSLDSGNGSPQEREAFAQWHAADEEHARAWQQLGMLDQRFSVASGPARAALLQSRVSIRRRVRKIGSGLASVVAVIGLALFAGERYLPLDYWLADQRTATGEQRTLRLADGTLINLNTHSALDVRFDDKQRRVILQEGEILVETGHNDPRPFIVETREGSMRALGTRFLVRLEDEGTRLSVLKSAVAAHPQATAEEQILREGQQVLMRRDGLGPTLALSPGADAWTRGMLVVDNARLEDLVRELARYRRGYLGVEPKVADLRITGSFPLHDTNLALTALLPTLPVQVEHHTRWWVVVAPRVEAKRPGPT0003910_4479DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003910-prhR|fecR-K07165NANA
D1-35_03803384fecI_7COG1595putative RNA polymerase sigma factor FecIGTGCGGCTGCTGGGGCGTGACGGGTTGCAGCCACCGCGCGAGCCCCGGGCGTTTCTGCTGGCGATCGCCAAAGGCCTGCTGTTTGATTATTTCCGCAGGGCCGCGCTGGAGCAGGCTTACCTGACCGAACTGATGCTGATTCCCGAGGCTGAGCAACCTTCGATAGAAGAGCAGCAGATGATCCTCGAAGACCTCAGGAACATCGACCGTCTGCTTGGCAAACTGTCGAGCAAGGCGCGTGCGGCCTTCCTCTATAACCGCCTCGACGGCCTCGGCCATGCTGAAATCGCCGAGCGCCTGGGAGTTTCGGTGCCGCGGGTGCGCCAATACCTGGCCCAAGGCGTGCGGCAGTGCTACATCGCCCTTTACGGTGAGCCGACATGAMRLLGRDGLQPPREPRAFLLAIAKGLLFDYFRRAALEQAYLTELMLIPEAEQPSIEEQQMILEDLRNIDRLLGKLSSKARAAFLYNRLDGLGHAEIAERLGVSVPRVRQYLAQGVRQCYIALYGEPTPGPT0003900_412DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003900-prhI|fecI-K23514NANA
D1-35_03804708polC_1COG2176DNA polymerase III PolC-typeGTGAGTCTGTTTTCCTGGTTGCGCCCGGTCCAGCCGATGCTCTCGGACGCATTGCAGCAGCGCCTGAACAATCTGCCCGCCGCCGCGCCATTGACGGAGCGCAGCCTGCGGGAGCAACGGTGGGTGGTGGTCGACCTGGAAACCACCGGCCTCAACCTGAACAAGGATCAGGTGCTGTCCATCGGTGCGGTCGTCATTGAAGACGGCGCCATCGACTTCAGCCAGCAGTTCGAGCGGACCTTGCAATGCGACAAGCAGAAGCTCGGGCCAAGCGTACTGATCCATGGCCTGGCACCCAGTGCCATCGCCGCCGGCAGCGACCCGGCCGAAGCGCTGGTGGCATTCATGGAGTTCGTCGGCGACAGCCCGTTGCTGGCGTTCCATGCGCCGTTCGATTCGCACATGCTCGGACGCGCCATGAAAGATCATCTGGGCTGCCGACTGCTGCATCCGTTCCTGGACGTGGCTGACCTGGCCCCGATGCTTTGCCCGCAAGCCAATCTGCGCAAGTCAGGCCTGGACGAGTGGATCGACTGGTTCAAGCTGCAAGTCTTCGAGCGCCACAACGCCAGCGCCGACGCCCTCGCCACTGCGGAACTGGCGCTGATCCTGTTCAGCCGCGCCCGCCAGCAGGACATCTACAACGCGCTCGACCTGCAACAGCGCCTGGGGCAGTGGAAACGGCGGCAGCAGGCGCCTTCGCTTTAAMSLFSWLRPVQPMLSDALQQRLNNLPAAAPLTERSLREQRWVVVDLETTGLNLNKDQVLSIGAVVIEDGAIDFSQQFERTLQCDKQKLGPSVLIHGLAPSAIAAGSDPAEALVAFMEFVGDSPLLAFHAPFDSHMLGRAMKDHLGCRLLHPFLDVADLAPMLCPQANLRKSGLDEWIDWFKLQVFERHNASADALATAELALILFSRARQQDIYNALDLQQRLGQWKRRQQAPSLNANANANANA
D1-35_038052013hypothetical proteinATGGGCACCCTGCGCTCAGGGGCCGACCATGGGGAACAGATCCGACCACAACAATTCGAAAAAGACTGCGTAATGGTTATGAAAAAAGCGGACGCCTTCATCCAGGCAGGGAAAACCGCGGTGTTGCAGAACATCCAGGGTACGTTGCAGTTTCTTCAGCGTTTCCCCCCGTTCAACCAGATGGAAAATGCCCACCTGGCCTACCTGGTCGAACAATGCCTGCTGCGTTTTTATGCCCCGGGCGAAACCATCATCAAGCCGGCCGACGGTCCGGTTGAGCACTTCTACATCGTCAAGCAAGGCCGGGTAGTGGGCGAGCGACCGCACTCGGCCAAGGGCGGCACCGAGACCACCTTCGAGATCACCACCGGCGAGTGCTTCCCCCTCGCGGCCCTGTTGGGTGAGCGAGCGACCCGCACCGAGCACCGGGCCGGCGAGGACACTTTCTGCCTGCAGTTGAACAAACTGGCCTTCATCAAGCTGTTCGCCCTGTCCGGCCCGTTTCGCGATTTCGCCTTGCGCGGGGTCAGCAGCCTGCTCGATCAGGTCAACCAGCAAGTGCAGCAGAAATCCGCGCAGACCCTGGGCACGCAATATTCCCTCAATACCCGCCTGGGCGAGCTGGCAATGCGTCACCCGGTCAGTTGCAGCCCCGAAACGCCGTTGCGCGAAGCCGTCAAGCTGATGCATGAGCAGCAAGTCGGCAGCATCGTGGTGGTGGACGAACACAAGGCGCCGGTCGGGATCTTCACCCTGCGCGATCTGCGTCAGGTCGTGGCCGACGGTACCGGGGATTTTTCCGGGGCGATCACCATGCACATGACCCAGGCACCGTTTTTCCTGTCGCCTGACCACAGCGCCTTCGATGCGGCCATCGCCATGACCGAGCGCCACATTGCCCACGTCTGCCTGGTCAAGGACCAGCGCTTGTGTGGCGTGGTCTCGGAGCGGGACCTGTTTTCCCTGCAGCGCGTCGACCTGGTGCACCTGGCCCGGACGATCCGCAACGCCCCCAGGATCGAGAACCTGGTGACCTTGCGCGGCGAGATCGGTCAACTGGTGGAACGCATGCTGGCCCATGGTGCGTCATCGACCCAGATCACCCACATCATCACCCTGCTCAACGACCACACCGTATGCCGGGTCATCGAGCTGACCCTCGCCGAGAAGGGCGACCCGGGCGTTGCGTTCAGCTGGCTGTGCTTTGGCAGCGAAGGCCGCCGCGAGCAGACCCTGCACACCGACCAGGACAACGGCATCCTGTTCGAAGCCCGGGACGCTGCCCATGCGGCGCAGATCCGTGGCCTGCTGCTGCCCATCGCCCAGCAGATCAACCAGAGCCTGGCCTTGTGCGGCTTCACGTTGTGCAAGGGCAACATCATGGCCGGCAACCCCGAGTTGTGCCTGTCCCGCGCCGAATGGGCACGCCGCTTCGCGGCCTTTGTCCGTGAGGCCACCCCGGAGAACCTGCTGGGTTCGAGCATCTATTTCGATTTGCGGGTGGTGTGGGGCGACGAGCAAGGCTGCGAGCAGTTGCGCCGGCAGATCCTCGATCAGGTGGCCGACAATCGCCTGTTCCAACGCATGCTGGCCGAGAACGCGCTTCGCCATCGCCCGCCCGTTGGCCGCTTCAGGGATTTTGTGTTGAGCCGCAAGAACGGCGAGAAGGCGACGCTCGACCTCAAAGTACAAGGCCTGACCCCGTTCGTCGACGGCGCCCGCCTGCTCGCGCTGGCCAACGGCATCGAGGCCAACAATACTCTGGAGCGCTTGCGGCAACTGGTCGTCAAGGAGGTGATCGAGCCGCTGGACGGCGCGGCTTATGAAGAGGCCTATCACTTCATCCAGCAGACACGCATGCAACAGCATCAACTGCAAACGCGGGAGAACCAGCCCTATTCCAACCGCGTCGACCCGGACAGCCTCAACCACTTGGACCGGCGCATCCTGCGTGAATCCCTGCGCCAGGCCCAACGCCTGCAGAGCAGCCTGACCGTGAGGTACCAGCTGTGAMGTLRSGADHGEQIRPQQFEKDCVMVMKKADAFIQAGKTAVLQNIQGTLQFLQRFPPFNQMENAHLAYLVEQCLLRFYAPGETIIKPADGPVEHFYIVKQGRVVGERPHSAKGGTETTFEITTGECFPLAALLGERATRTEHRAGEDTFCLQLNKLAFIKLFALSGPFRDFALRGVSSLLDQVNQQVQQKSAQTLGTQYSLNTRLGELAMRHPVSCSPETPLREAVKLMHEQQVGSIVVVDEHKAPVGIFTLRDLRQVVADGTGDFSGAITMHMTQAPFFLSPDHSAFDAAIAMTERHIAHVCLVKDQRLCGVVSERDLFSLQRVDLVHLARTIRNAPRIENLVTLRGEIGQLVERMLAHGASSTQITHIITLLNDHTVCRVIELTLAEKGDPGVAFSWLCFGSEGRREQTLHTDQDNGILFEARDAAHAAQIRGLLLPIAQQINQSLALCGFTLCKGNIMAGNPELCLSRAEWARRFAAFVREATPENLLGSSIYFDLRVVWGDEQGCEQLRRQILDQVADNRLFQRMLAENALRHRPPVGRFRDFVLSRKNGEKATLDLKVQGLTPFVDGARLLALANGIEANNTLERLRQLVVKEVIEPLDGAAYEEAYHFIQQTRMQQHQLQTRENQPYSNRVDPDSLNHLDRRILRESLRQAQRLQSSLTVRYQLNANANANANA
D1-35_03806447atoC_3COG2204Regulatory protein AtoCATGTCCGACCACGATATTTTGAGTGACGCCGAGCGCGAGGCGCTGAGTGCCGTCATGCTGGAACCCGACCTGCCGCCGCAGCGAGTCCTGATAGTCGATGACGACAAGGACGCCCGTGAGCTGCTGTCGGAAATCCTGGCATTGGACGGCATACGCTGCATGACCGCCGCCAGTGGTGAAACCGCACTCAGGATGCTGGAAACCAAGCCCGCCATCGGCCTGCTGATCACCGACCTGCGCATGGGCAATGTCGATGGCCTGGAGCTGGTGCGCCTGGTACGCGAGTCGGAGCGGGCGGCGCTGCCGATCATCATTGTGTCGGGCGATGCCGACGTGAAGGACGCCATCGAGGCGATGCATCTCAGTGTGGTGGATTTCCTGTTAAAGCCGATCGACACCGACAAGCTGCTGGGGCTGGTCAAGCATGAGCTGGGGATGGATCTCTGAMSDHDILSDAEREALSAVMLEPDLPPQRVLIVDDDKDARELLSEILALDGIRCMTAASGETALRMLETKPAIGLLITDLRMGNVDGLELVRLVRESERAALPIIIVSGDADVKDAIEAMHLSVVDFLLKPIDTDKLLGLVKHELGMDLPGPT0015690_1832DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015690-cheY|yneI-K03413NANA
D1-35_03807606leuDCOG00663-isopropylmalate dehydratase small subunitATGCAACCCTTTGACACCGTAACCGGCATCGCCGCCCCGCTGCTGGCCGCCAACATCGACACCGACGTCATCATGCCCAAGCAGTTCCTCAAGGGCATTGACCGCCAGGGGCTGGACCGGGGCCTGTTCTTTGACCTGAGATGGCGCGAGCCCGGCGTTGCCAATCCGGATTTCGTGCTCAATCAACCTGGCTGGCGCGATGCGACGTTCCTGGTGGTGGGCGAAAACTTCGGCTGTGGCTCAAGCCGTGAGCATGCGGTCTGGGGCTTGAAGCAGGTAGGGATCAGGGCGCTGATCGGTACGAGTTTCGCCGGGATCTTCTACGACAATTGCCAGCGAAACGGGGTGCTGCTGCTTGAGCTTGCCGAGGTCCAGTGGAAAAAAATTGCCGAACTCGCTGGCCGTGCGGATACGGCCGCTATCAGCGTCAACCTTCCCGAGCAGCGCATTGAGCTGGCGGACGGCAGCGTTTTGGCGTTCGAGATTGACGGACTGCGCAAGGAGTCGTTGCTGCTGGGGTTGGACGCCATTGGCGCAACGCTCCAGCGTGCCGAGCAGATTCGCCGGTTCGAGCGTCGGCATCTGGCGGAGAATCCTTGGTTGTAGMQPFDTVTGIAAPLLAANIDTDVIMPKQFLKGIDRQGLDRGLFFDLRWREPGVANPDFVLNQPGWRDATFLVVGENFGCGSSREHAVWGLKQVGIRALIGTSFAGIFYDNCQRNGVLLLELAEVQWKKIAELAGRADTAAISVNLPEQRIELADGSVLAFEIDGLRKESLLLGLDAIGATLQRAEQIRRFERRHLAENPWLPGPT0001443_1750DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0001443-leuD-K01704NANA
D1-35_038081422leuC_2COG00653-isopropylmalate dehydratase large subunitATGAATAGCCCGAGAACGCTTTATCAGAAACATATCGACAGCCATACCGTTTGCCCGCTGGATGATCAGGGCCACGTGCTGCTGTACATCGACCGTCAGGTCGCCAACGAATACACCAGCCCGCAAGCGTTCAGCGGCCTGCGCGAAGCCCACCGCAGCGTCTGGCGCCCCAGCGCAACCCTCGCGGTGGTTGACCACGTCAACCCGACCACGCCCGAGCGTATCGCGGCCATGCCGGATGCGGGCGGCGCCCGGCAGGTGTCCTACTTCGCCGAAAACTGCCGAGACTTCGGCATCGAACTGTTGGATGTGCTCGACAAGCGCCAGGGCATCGAGCACGTCGTCGCTCCCGAGCAAGGCTTCATCCTGCCGGGCATGGTCATCGCCGCCGGCGACAGCCATACCACCACCTACGGTGCGCTCGGGGCGTTCGGTTTCGGCATCGGCACTTCTGAAATCGAACATTTGCTGGCCACCCAGACGCTGGTCTACAGGCGTCTGAAAACCCTGCGCGTCACGGTCGATGGCGCCCTCGGCGCGGGCGTCACCGCCAAGGACGTCATCATGGCGCTGATCGAAAAAATCGGCGCCTCGGGCGCTACGGGCTACGCAATTGAATTCACCGGCCCGGTCATCAGCGCACTGAGCGTCGAAGCGCGGATGACCATCTGCAACATGGCCGTGGAAGCGGGTGCGAGAGGCGCCTTCATGGCCCCGGATGACAAGGTCTTTACCTACCTGCAAAGCAAACCCCGTGCGCCTCGGGGCGAGCTGTGGGAACAGGCCGTGGCCAAGTGGCAAGACCTGCGCAGCGATGAGGATGCGGTATTCGATCGGGAAGTGAGCCTCGATGTCGCTGCGCTGGAGCCGATGGTGACCTGGGGCACCAGCCCCGACCAGGCAGCGCCGATTGGCGGCCAGGTACCGGATCCGGCGGCGCAGCCCGACCCGATCCTGCGCCAGGGCCTGCAGCGGGCGCTGGACTACATGGGGCTGACGCCAGGGATGCCCCTTGGCGAAGTGCAGATCAGCCATGCCTTCATCGGCTCCTGCACCAATGCGCGCATCGAAGACCTGCGCGACGCGGCACGGGTCGTTCGCGGCAAGCGGGTCGCGGCCCATGTTCGGGCGATGATCGTGCCCGGCTCCACCGCGGTGCGCGACCAGGCCGAAGAGGAAGGACTGGCTGCGATCTTCCGCGACGCGGGTTTCGAATGGCGCCAGTCCGGCTGCTCGATGTGCCTGGCGATGAACGACGACGTGCTTGCGCCAGGTGATCGCTGCGCATCCAGCACCAATCGCAATTTCGAAGGACGCCAGGGCGCGGGCGCGCGCACTCACCTGATGAGTCCGGCCATGGTGGCCGCCGCCGCGATAACCGGTCACCTGACTGACGTTCGCTCACTGCTCCCGGAGGCCTGAMNSPRTLYQKHIDSHTVCPLDDQGHVLLYIDRQVANEYTSPQAFSGLREAHRSVWRPSATLAVVDHVNPTTPERIAAMPDAGGARQVSYFAENCRDFGIELLDVLDKRQGIEHVVAPEQGFILPGMVIAAGDSHTTTYGALGAFGFGIGTSEIEHLLATQTLVYRRLKTLRVTVDGALGAGVTAKDVIMALIEKIGASGATGYAIEFTGPVISALSVEARMTICNMAVEAGARGAFMAPDDKVFTYLQSKPRAPRGELWEQAVAKWQDLRSDEDAVFDREVSLDVAALEPMVTWGTSPDQAAPIGGQVPDPAAQPDPILRQGLQRALDYMGLTPGMPLGEVQISHAFIGSCTNARIEDLRDAARVVRGKRVAAHVRAMIVPGSTAVRDQAEEEGLAAIFRDAGFEWRQSGCSMCLAMNDDVLAPGDRCASSTNRNFEGRQGAGARTHLMSPAMVAAAAITGHLTDVRSLLPEAPGPT0001442_1435DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_MALATE_UTILIZATION,PGPT0001442-leuC-K01703NANA
D1-35_038091137xylHCOG4214Xylose transport system permease protein XylHATGAATCAGGTCAAACAAGTGTTCACCCGCTACAAAATGCTCGCCCTGGTGATTGCCGTGGCAGTCATCTGGCTGTTCTTCAGCTGGCAGACCGAGGGCGGATTCCTGACTCCGCGCAACCTCTCCAACCTGCTGCGGCAGATGTCCATCACCGGAATCCTGGCCTGCGGCATGGTGCTGGTGATCATCAGCGGTGAGATCGACCTGTCGGTGGGTTCGCTGCTGGGCTTGCTCGGCGGGCTCGCGGCGATTCTCGATGTGGTCTATCACATTCCGCTACTGGCGAACCTGAGCCTGGTCGCCCTGTGCGGGCTGGTCATCGGCCTCGCCAACGGCTACATGACCGCCTACCTGCGCATCCCCTCGTTCATCGTCGGCTTGGGCGGCATGCTGGCGTTTCGCGGAATTCTGCTGGGCATCACCGGCGGCACCACGATCGCCCCGGTATCGCCGGAGCTGGTTTATGTCGGCCAGGGTTATCTGCCCCATGCGGTCGGCACGGGCCTTGGCGTGGTGCTGTTTGCCCTGACGTTGTTCCTGACCTGGAGACAACGCCGCAATCGCGCCTTGCACGGCCTGGCCGCCCATTCATTGGTGCGCGACGTGGTGCGGGTGGTGCTGATCGGCGCAGTGCTCGCCGGCTTCGTCTACACGCTGAACAGCTACGACGGAATTCCGGTTCCGGTGCTGCTGCTGTTGGTCCTGCTGGGGGTGTTCAGCTACGTGACCAGCCAGACCGTGTTCGGCCGGCGTGTCTATTCCGTGGGCAGCAACATGGAAGCCACCCGCCTGTCCGGCATCAACGTGCAAGCGGTGAAACTCTGGATCTTCGGCATCATGGGCGTGATGTGCGCCCTCGCCGGCATGGTCAACACCGCGCGCCTGGCGGCCGGCTCCCCCTCGGCCGGCAACATGGGCGAACTGGACGCCATCGCTGCCTGTTTCATCGGCGGCACCTCCATGCGCGGCGGCTCCGGGACGGTCTACGGTGCGCTGCTCGGCGCGCTGGTCATCACCAGCCTGGACAACGGCATGTCGATGCTCGACGTCGACAGCTACTGGCAGATGATTGTCAAAGGCAGCATTCTGGTCCTGGCCGTCTGGGTAGACGTCAGCACCCGAACTGGACGGCGTTGAMNQVKQVFTRYKMLALVIAVAVIWLFFSWQTEGGFLTPRNLSNLLRQMSITGILACGMVLVIISGEIDLSVGSLLGLLGGLAAILDVVYHIPLLANLSLVALCGLVIGLANGYMTAYLRIPSFIVGLGGMLAFRGILLGITGGTTIAPVSPELVYVGQGYLPHAVGTGLGVVLFALTLFLTWRQRRNRALHGLAAHSLVRDVVRVVLIGAVLAGFVYTLNSYDGIPVPVLLLLVLLGVFSYVTSQTVFGRRVYSVGSNMEATRLSGINVQAVKLWIFGIMGVMCALAGMVNTARLAAGSPSAGNMGELDAIAACFIGGTSMRGGSGTVYGALLGALVITSLDNGMSMLDVDSYWQMIVKGSILVLAVWVDVSTRTGRRPGPT0016655_1003DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_XYLOSE_TRANSPORT_I,PGPT0016655-xylH-K10544NANA
D1-35_038101557xylGCOG1129Xylose import ATP-binding protein XylGATGTCCGAATACCTGTTGCAAATGAACGGCATCGTCAAGACCTTTGGCGGTGTCAAAGCCCTCAACGGCATCGACATCAAGGTCCGGCCCGGGGAATGTGTCGGCCTGTGCGGTGAAAACGGCGCGGGCAAATCCACGTTGATGAAAGTCCTCTCGGCGGTCTACCCCTATGGCACCTGGGAGGGCGAAATCCTCTGGGACGGCCAGCCGCTGAAAGCCCAATCGATCAGCGAAACCGAGGCCGCCGGGATCGTCATCATCCATCAGGAACTGACGCTGGTCCCCGACCTGTCAGTGGCCGAAAATATCTTCATGGGCCACGAGCTGACCCTGCCCGGCGGGCGCATGAACTATCCGGCGATGATCCATCGCGCCGAAGCCCTGATGCGTGAGCTCAAAGTGCCGGACATGAACGTCTCGCTGCCGGTCTCGCAGTACGGCGGTGGCTACCAGCAACTGGTCGAGATCGCCAAGGCGCTGAACAAACAGGCGCGCCTGCTGATCCTCGACGAGCCCTCCTCGGCCCTGACCCGTTCGGAAATCGAGGTGCTGCTGGACATCATCCGCGACCTCAAGGCCAAGGGCGTGGCCTGCGTGTATATCTCCCACAAGCTCGATGAAGTGGCGGCGGTGTGCGACACCATTTCCGTCATCCGCGATGGCAAACACATCGCGACCACCGCCATGGCCGACATGGATATCCCGAAAATCATCACCCAGATGGTCGGACGGGAAATGAGCAACCTCTACCCCACCGAACCCCACGAGATCGGCGAGGTGATTTTCGAGGCGCGCCACATCACCTGCTACGACGTCGACAACCCCAGGCGCAAACGGGTCGACGATATTTCGTTTGCGCTCAAGCGCGGGGAAATCCTCGGCATCGCCGGGCTGGTGGGCGCCGGTCGCACGGAACTGGTGTCGGCCCTGTTCGGCGCCTACCCCGGACGCCATGAAGGTGAGGTCTGGCTGGACGGCCAGCGGATCGACAGCAGCACACCGCTCAAATCGATCCGCGCCGGCCTGTGCATGGTCCCCGAAGACCGCAAGCGCCAAGGCATCATCCCGGACCTGGGTGTCGGCCAGAACATTACCCTGGCGGTGCTGGAGAACTTCTCGAAGATGACCCGGATCGATGCCGAGGCCGAACTGGGCAGCATCGACCGGGAGATCTCGCGCATGCACCTGAAGACCGCAAGCCCGTTCCTGCCGATCACCAGCCTGTCCGGCGGCAACCAGCAGAAAGCCGTGTTGGCGAAGATGCTCCTGACCAAGCCCCGGGTGTTGATTCTCGACGAGCCCACCCGAGGCGTGGATGTGGGTGCCAAGTACGAGATCTACAAGCTGATGGGCGCGCTGGCGGCCGAAGGCGTGTCGATCATCATGGTGTCCTCGGAGCTGGCCGAAGTGCTCGGGGTGTCCGACCGCGTGCTGGTGATTGGCGACGGCCAGTTGCGCGGCGATTTCGTCAATTGTGAACTGACCCAGGAGCAGGTGCTTGCGGCCGCGCTCAGCCATCCCGAAGCCCCTGACAACAATGATCGGAAATCCGCGTAGMSEYLLQMNGIVKTFGGVKALNGIDIKVRPGECVGLCGENGAGKSTLMKVLSAVYPYGTWEGEILWDGQPLKAQSISETEAAGIVIIHQELTLVPDLSVAENIFMGHELTLPGGRMNYPAMIHRAEALMRELKVPDMNVSLPVSQYGGGYQQLVEIAKALNKQARLLILDEPSSALTRSEIEVLLDIIRDLKAKGVACVYISHKLDEVAAVCDTISVIRDGKHIATTAMADMDIPKIITQMVGREMSNLYPTEPHEIGEVIFEARHITCYDVDNPRRKRVDDISFALKRGEILGIAGLVGAGRTELVSALFGAYPGRHEGEVWLDGQRIDSSTPLKSIRAGLCMVPEDRKRQGIIPDLGVGQNITLAVLENFSKMTRIDAEAELGSIDREISRMHLKTASPFLPITSLSGGNQQKAVLAKMLLTKPRVLILDEPTRGVDVGAKYEIYKLMGALAAEGVSIIMVSSELAEVLGVSDRVLVIGDGQLRGDFVNCELTQEQVLAAALSHPEAPDNNDRKSAPGPT0016660_84DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_XYLOSE_TRANSPORT_I,PGPT0016660-xylG-K10545NANA
D1-35_038111002xylFCOG4213D-xylose-binding periplasmic proteinATGAAAACCTTCAAACGTACCTTGCTCGCCGGCGCCCTCGCCCTGCTGTCGCTTCCGGCCATGGCCGACGCGACCCACCCGAAAATCGGTTTTTCCATTGACGACCTGCGCCTGGAGCGCTGGTCGCGCGACCGTGACTACTTTGTCGCGGCGGCGGAAAAACTCGACGCCAAGGTCTACGTGCAATCGGCGGACGCCAACGAGCAGAAGCAGATTTCCCAGATCGAAAACCTCATTTCCCGGGGCGTCGATGTGATCGTCATCGTGCCATTCAACGCTACCGTGCTGACCAACGCCGTCGCCGAAGCCAAGAAGGCCGGGATCAAGGTGGTGTCCTATGACCGGCTGATCCTCAACGCCGACATCGACGCCTACATTTCCTTCGATAACGAAAAAGTCGGCGAGATGCAGGCCGGCGGTGTCCTGAAGGCAGCGCCGAAGGGTAACTACTTCCTGCTGGGCGGCGCCCCTACGGACAACAACGCCAAGATTCTGCGCGAAGGCCAGATGAAGGTGCTGCAACCGGCCATCGACAAGGGCGACATCAAGATTGTCGGCCAGCAATGGGTGAAGGAATGGAACCCCACCGAAGCCCTGAGCATCGTTGAAAACGCCCTGACCCGGAACAACAACAAGATCGATGGCATCGTCGCCTCCAACGACGCCACCGCCGGCGGCGCCATCCAGGCCCTGGCCGCGCAGAAGCTGGCCGGCAAGGTACCGATCTCGGGCCAGGACGCCGACCTGGCGGCGGTCAAGCGCGTGATCGACGGCACGCAGACCATGACGGTCTACAAGCCGCTGAAACTGATCGCCTCCGAAGCCGCCAAGCTCTCGGTGCAATTGGCGCGCAACGAGAAGCCCACCTACAGCTCGCAGTACGACAACGGCAACAAGAAGGTCGACACCATCCTGCTCACGCCCACCGCACTGACCAAGGACAACATCGACCTGCTGGAAAAGGACGGGTTCTACACCAAGGCGCAGATTGCCGGGCAGTGAMKTFKRTLLAGALALLSLPAMADATHPKIGFSIDDLRLERWSRDRDYFVAAAEKLDAKVYVQSADANEQKQISQIENLISRGVDVIVIVPFNATVLTNAVAEAKKAGIKVVSYDRLILNADIDAYISFDNEKVGEMQAGGVLKAAPKGNYFLLGGAPTDNNAKILREGQMKVLQPAIDKGDIKIVGQQWVKEWNPTEALSIVENALTRNNNKIDGIVASNDATAGGAIQALAAQKLAGKVPISGQDADLAAVKRVIDGTQTMTVYKPLKLIASEAAKLSVQLARNEKPTYSSQYDNGNKKVDTILLTPTALTKDNIDLLEKDGFYTKAQIAGQPGPT0016650_1030DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_XYLOSE_TRANSPORT_I,PGPT0016650-xylF-K10543NANA
D1-35_038121317xylACOG2115Xylose isomeraseATGTCGTACTTCCCCGATGTCGAGCCGATTTGTTATGAAGGCCCCGGCAGCGACTCGCCGCTCGCCTTCCGCCATTACGACGCCAACAAGCTGGTGCTCGGCAAACCCATGCGCGAGCACCTGCGCATGGCCGTCTGCTACTGGCATACGTTTGTCTGGCCAGGGTCCGATGTGTTCGGCGCCGGGACCTTCAAGCGCCCGTGGCAGCACGCCGGCGATCCGCTGGAATTGGCGATCGGCAAGGCCGAGGCGGCGTTCGAGTTTTTCTCCAAGCTGGGCATCGACTACTACTGCTTCCATGACACCGACGTCGCGCCGGAAGGACAATCGCTGAAGGAATACCGCAACAACTTCGCGCAGATGGTCGATCACCTTGAGCGCCATCAGGAACAAAGCGGAATCAAGCTGTTGTGGGGCACCGCCAATTGCTTCAGCAACCCGCGTTTTGCCGCAGGCGCCGCCAGCAACCCGGACCCACAGGTCTTCGCCTGCGCCGCCGCCCAGGTGTTCAGCGCCATGAACGCCACTCAGCGTTTGAAGGGCTCCAACTACGTATTGTGGGGCGGCCGTGAAGGCTATGAAACCCTGCTCAATACCGACCTTGCGCGCGAACGCGAACAGTTGGGCCGCTTCATGCGCATGGTGGTCGAGCACAAGCACAAGATCGGCTTCAAGGGCGACCTGCTGATCGAGCCCAAGCCCCAGGAGCCGACCAAGCACCAATACGATTACGACAGCGCCACCGTGTTCGGCTTCCTGCAACAGTTCGGCCTGGAGAACGAAATCAAGGTCAACATCGAGGCCAACCACGCGACCCTGGCCGGGCACAGTTTCCATCATGAAATCGCCACGGCGGTCTCCCTGGGAATCTTCGGCAGCATCGATGCCAACCGTGGCGATCCGCAGAACGGCTGGGACACCGACCAGTTTCCCAACAGCGTCGAGGAAATGACCCTCGCCACCTATGAAATCCTCAAGGCCGGGGGCTTCGGCAACGGAGGGTTCAACTTCGACTCCAAAGTCCGCCGCCAGAGCGTCGACGACGTCGATCTGTTCCACGGTCATGTTGCCGCCATGGACGTGCTCGCCCTGTCCCTGGAGCGCGCGGCGGCCATGGTGCAGAACGATCAACTGCAGAAATTCAAGGACCAGCGCTACGCCGGCTGGCAACAGCCGTTCGGCAAGGCGGTTCTGGCGGGGGACTTCAGTCTCGAATCACTGGCCGAGCATGCATTCACCAACGAGCTGAATCCGCAGGCCGTCAGCGGTCGGCAGGAGATGCTCGAAAACGTCGTCAACCGGTTCATCTACCCCTGAMSYFPDVEPICYEGPGSDSPLAFRHYDANKLVLGKPMREHLRMAVCYWHTFVWPGSDVFGAGTFKRPWQHAGDPLELAIGKAEAAFEFFSKLGIDYYCFHDTDVAPEGQSLKEYRNNFAQMVDHLERHQEQSGIKLLWGTANCFSNPRFAAGAASNPDPQVFACAAAQVFSAMNATQRLKGSNYVLWGGREGYETLLNTDLAREREQLGRFMRMVVEHKHKIGFKGDLLIEPKPQEPTKHQYDYDSATVFGFLQQFGLENEIKVNIEANHATLAGHSFHHEIATAVSLGIFGSIDANRGDPQNGWDTDQFPNSVEEMTLATYEILKAGGFGNGGFNFDSKVRRQSVDDVDLFHGHVAAMDVLALSLERAAAMVQNDQLQKFKDQRYAGWQQPFGKAVLAGDFSLESLAEHAFTNELNPQAVSGRQEMLENVVNRFIYPPGPT0017550_1136DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017550-xylA-K01805NANA
D1-35_038131176xylRXylose operon regulatory proteinATGAAAATCGTCCCGCCCGTTCACCGCATCGCCCTGCTGTTCAACGGCAGCAAGATCTACGACCGCGGCATCATCAGCGGCATCGGCAACTACCTGAGCAGCACGCGCGCGTCCTGGGACCTGTTTCTCGAGGAAGATTTTCACTGCCGGTTGAAAGGGATCGAGCGCTGGCAGGGCGATGGAATCATCGCCGACTTCGATGACCCGCTGATCGGCGAGGCGCTGGCCGGGATCAAGCTGCCCGTGGTGGCGGTGGGGGGCTCGTATCAGGACGAGCGCGCCTATCCGAAGGGCATTCCATATGTCGCTACGGATAATCACGCGCTGATCAAGCTGGCCTACGCGCATCTGATCGAAGCCGGGTTGACACAATTCGCCTGTTTCAGCCTGCCCGAAGCCCAGGCCAATCGCTGGGCCCAGGAACGGGAAAAGGCCTTTCGCCAGTTGATGCAGCGCGATGGCCTGCCGGCGCAGGTGTACCGGGGCATGGGCACCAGCGCGCCGCTTTGGGACAGCGCGGTCGAGCAGCAGATCGCCTGGCTGCAGAGCCTGCCCAAACCCATCGGCATCATCGCGGTCAGCGACGCGCGGGCCCGGCAGTTGTTGCAAGCTTGCCTGACAGCCGGGATCGCCGTGCCGGAGCAAGTCGCGTTGATCGGCATCGACAACGACCCGCTGACCCGCAGCCTGACCCGGGTGCCGCTCAGTTCGGTGGTGCAGGGCACCGAAACCATGGGCCGGACCGCCGCGCGCCTGCTTCACCAGATGCTGCACGGCATGCCTGCCACCGGCACCCAGGTGTTGATCCCGCCCGAGGCGATCAACGTGCAAGCGTCGAGCCTGCACCAGCCACTGGGCAATCCTTACGTCATGCAGGCTTTGTTGTTCATTCGCCAATACGCCTGCCAGGGCATCAAGACCGCGCAAGTGGCGGCGTATGTCGGCGTGTCGCGTTCATCCCTGGAGTCGCATTTTCGCAAGGAGCGTGGTTGCAGTGTTCACGACGAGATCCTGCGCTTCAAGCTGGCGGCGGCGGCCAGCGGGTTGGAGAACACCGAGCTGGCGATTGCCGATATCGCCCGTGATTGCGGTTTCAAGTCGGCGCAGTACCTGCACACGGTGTTTCGCCGCGAATTCGGCTGTACGCCTAGGGGATTTCGCCAATCAGTCGGATAGMKIVPPVHRIALLFNGSKIYDRGIISGIGNYLSSTRASWDLFLEEDFHCRLKGIERWQGDGIIADFDDPLIGEALAGIKLPVVAVGGSYQDERAYPKGIPYVATDNHALIKLAYAHLIEAGLTQFACFSLPEAQANRWAQEREKAFRQLMQRDGLPAQVYRGMGTSAPLWDSAVEQQIAWLQSLPKPIGIIAVSDARARQLLQACLTAGIAVPEQVALIGIDNDPLTRSLTRVPLSSVVQGTETMGRTAARLLHQMLHGMPATGTQVLIPPEAINVQASSLHQPLGNPYVMQALLFIRQYACQGIKTAQVAAYVGVSRSSLESHFRKERGCSVHDEILRFKLAAAASGLENTELAIADIARDCGFKSAQYLHTVFRREFGCTPRGFRQSVGPGPT0017992_210DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-35_03814243hypothetical proteinATGAGAACGTTTGACTTGATTCGCGACGCGGTACTGCCCGACTTCCGTGAGCGGGTGGCTGAGTACCTGGTCCAGTACGAAAGCGTGCTGTTGAGCAATGCCGACATCGCCCCCCAGCTCAAGCGCGACACGGCCAATCAACTGCGCGGTTATCTGCGGGGGTTGAACACTACCCGGGTGTTGGGCATGGCAGACTGGGAGGAACTGGATCGGCGGGTGATGAGTACCTGGCTATCCGACTGAMRTFDLIRDAVLPDFRERVAEYLVQYESVLLSNADIAPQLKRDTANQLRGYLRGLNTTRVLGMADWEELDRRVMSTWLSDNANANANANA
D1-35_03815342hypothetical proteinATGCGCCCTTTATTTCTACTGTCCCTGGCGTTTTCCCCGCTGTTATTGGCGGGATGTGCCTCGGCACCGAACGATCCGACCCTGACCTTGCAGACCAGCAAGACCCCGGCCGAATACGCTGAATGCGTCGTGCCGAAGTTGCAAGGCAGCGCTTTGCACCCGATGGTCTCGCAGAGCCAGCGCAGCTACCGCATCGTCGTGCCGAGCAAGATTTCGGCGGACAACGTGCTGGAAGCCTACAAGGCCGGCAGTGGCGGCAAGGTGTTTGTCTACGAGCGCCACCTGCTGGCGTCCAATCTCCTGCCTTCGAGTTTCGAGCGCGCCGCACAGGAATGCATCTGAMRPLFLLSLAFSPLLLAGCASAPNDPTLTLQTSKTPAEYAECVVPKLQGSALHPMVSQSQRSYRIVVPSKISADNVLEAYKAGSGGKVFVYERHLLASNLLPSSFERAAQECINANANANANA
D1-35_03816378hypothetical proteinATGACCATGCTCCCAGCGTACTCCGCGCCATTCGCCCTGGCGCTTGCAGCCTTTTGCGCACCGGCGCAGGCCGCGACGTGGCAGATCTGCGATATCCAGCTGCACGTCACCGAAGTGGTGAAACGGCCCACGCCGAAGCTCCAGGCCCAAGTCCTGAAGGCGCGCCCGGCCTCGCCCAGTGTGGAATGCCCGGAAGAGGGCGCGATGATCAGCTTCATTCCGGAAACCGCCGACTACCAGGCCACGCTGCCACGCCGCAAATGGCCCGGGAAAGGCCAGGCGATCCGGATCAAGTACCGCTATCTGGATGGAATCTGCAAGGGCGACGGCAACGACTATCCTTGCCGTATCGAGCATTATCCGTTTGTAGCTCGATGAMTMLPAYSAPFALALAAFCAPAQAATWQICDIQLHVTEVVKRPTPKLQAQVLKARPASPSVECPEEGAMISFIPETADYQATLPRRKWPGKGQAIRIKYRYLDGICKGDGNDYPCRIEHYPFVARNANANANANA
D1-35_03817513hypothetical proteinGTGGACAAGGAAGCCATCAGGATTCGTACCCTGCAAGTCGCCGATGCCGAGTCATTGCTGGCGTTTGAAATGGATAATCGCGAGTGGTTCGAGCAGCACATCGATGCGCGCGCGCCGGCGTTTTATTCGTTGCAGGGGGTCAGCGAGCACATCGGCGATTACCAGTCCGGCTTCGCCGCCGGGACCTGGCACCCATTTGTCATCGAGGACGCCGGCGGAATGATCATCGGACGAGCGAACCTCAAGGACATCGACACCAGCGAGCGAACGGCGCAGGTCGGCTATCGAATCGCCCAACACGCTTGTGGCAAGGGACTGGCGACGCTGGCAGTGAAGCACTTGATCGAGCAGGCCCGGTCACACTGGCGACTCGAACGGTTGCTCGCCGAAGTCTATGTACAAAATGCCGGCTCGGTGAAAGTGCTTGATCGTTGTGGTTTTCTGGTGGAGCCTACGCCACCAGAAGCCACCGAGCAGCATCATTGGTATTCGCTTTCAATCCAGCCCCGGTAGMDKEAIRIRTLQVADAESLLAFEMDNREWFEQHIDARAPAFYSLQGVSEHIGDYQSGFAAGTWHPFVIEDAGGMIIGRANLKDIDTSERTAQVGYRIAQHACGKGLATLAVKHLIEQARSHWRLERLLAEVYVQNAGSVKVLDRCGFLVEPTPPEATEQHHWYSLSIQPRNANANANANA
D1-35_038181650mqo_2COG0579Malate:quinone oxidoreductaseATGAACAGAATCATTATCGCGGTCCTGCTGGGCGCTGCGCTCTTATCAGGCGTCAACGGGGCCCGGGCGGCGGAAACGAAGAAGGTCGACGTGCTGCTGGTAGGCGGCGGCATCATGAGTTCGACGCTGGGCATCTGGCTCAACGAGCTTGAGCCTGGCTGGTCGATGGAAATGGTCGAACGCCTGGATGCGGTAGCCGAAGAAAGCTCCAACGGCTGGAACAACGCCGGCACCGGGCATTCGGCACTGGCGGAGCTCAATTACACGCCGATGGATGACCAGGGCAACGTCAACATTTCCAAGGCCATCGAGATCAACGAAGCCTTCCAGATCACCCGCCAGTTCCTGGCCTGGCAGGTGCGCAACAACGTGTTGAAGAATCCGCCTTCATTCATCAATTCCACCCCGCACATGAGTTTTGTCTGGGGTGACGACAACATCAAATTCCTGAAAAAACGCTACGAGGCGCTGCAAGCGAGCCCGCTATTCCGGCCGATGCAATATTCAGAGGACCCGGAGCAGATCAGGAAGTGGGTACCCTTGATGATGGAGGGCCGCGATCCGAACCAGAAGCTCGCGGCCACCTGGACGCCGATCGGCACCGATGTGAATTTTGGCGAAATTACCCGCCAGTACGTCAGCTACTTGCAGAGCCGGCCCAACTTCAGCCTGAAGCTTTCCAGCGAGGTGCGCGACATCACCCGCAACGACGACGGTACCTGGCGCGTGGAATACAAGAACCTCAAGGACGGCGAAACGACCACCACCGACGCCAGGTTCGTATTCATTGGCGCCGGCGGCGGCGCACTGCATCTGCTACAGGAATCGGGTATCCCGGAGGCAGACGACTACGCCGGGTTCCCGGTCGGCGGCTCGTTCCTGGTCGCCGAGAACCCTGGCATTGCCGAGCGACACATGGCCAAGGCGTACGGCATCGCTTCCACCGGCGCGCCACCGATGTCAGTGCCGCATCTGGACACCCGCGTACTGGATGGCAAGCGCGTCATCCTCTTTGGTCCGTTTGCGACCTTCTCCACCAAATTCCTCAAGGAAGGCTCGTACTTCGACCTTTTCACCAGCATGACCCCGCACAATATCTGGCCGATGACCAAAGTAGGCATCGAGCAGTACCCGCTGGTTGAATACCTGGCCGGCCAGCTCATGCTTTCCGACGATGATCGGTTCAAGGCCTTGCAGGAATATTTTCCCCAGGCCAGGAAGGAAGACTGGCGCCTCTGGCAAGCCGGCCAGCGCGTGCAGGTCATCAAGCGCGACGAAGAAAAAGGTGGCGTGCTCAAACTGGGCACCGAAGTAGTGGCCTCCCAGGACGGCAGCATTGCCGGCCTGCTTGGCGCATCCCCTGGTGCCTCGACGGCAGCCCCGATCATGCTGGAAGTGATGCAGCGGGTCTTCAAGGACAAGGTGGCCTCGCCGGCCTGGCAGGAAAAACTGCACCAGATCGTTCCCAGCTATGGCACACGGCTAAACGATGATCCTGATCGTGTCTATGAGGAATGGAAATACACCAGCGATGTGCTAAAACTGGCGCCGCCGCCGGACATCCGTGGAAACGCCGAATCGAAGGCCCCGACCAACAGCGATCCCGTGGGGCAGAAAAACAGCGATTCCGACCCGGATCTGGCGTTGTGAMNRIIIAVLLGAALLSGVNGARAAETKKVDVLLVGGGIMSSTLGIWLNELEPGWSMEMVERLDAVAEESSNGWNNAGTGHSALAELNYTPMDDQGNVNISKAIEINEAFQITRQFLAWQVRNNVLKNPPSFINSTPHMSFVWGDDNIKFLKKRYEALQASPLFRPMQYSEDPEQIRKWVPLMMEGRDPNQKLAATWTPIGTDVNFGEITRQYVSYLQSRPNFSLKLSSEVRDITRNDDGTWRVEYKNLKDGETTTTDARFVFIGAGGGALHLLQESGIPEADDYAGFPVGGSFLVAENPGIAERHMAKAYGIASTGAPPMSVPHLDTRVLDGKRVILFGPFATFSTKFLKEGSYFDLFTSMTPHNIWPMTKVGIEQYPLVEYLAGQLMLSDDDRFKALQEYFPQARKEDWRLWQAGQRVQVIKRDEEKGGVLKLGTEVVASQDGSIAGLLGASPGASTAAPIMLEVMQRVFKDKVASPAWQEKLHQIVPSYGTRLNDDPDRVYEEWKYTSDVLKLAPPPDIRGNAESKAPTNSDPVGQKNSDSDPDLALPGPT0001440_358DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001440-mqo-K00116NANA
D1-35_03819786glpR_2COG1349Glycerol-3-phosphate regulon repressorATGAGTGCTACCCACGAAGTGTTTCCCGGCGAACGCCAACGTTTGATCAGCGAGCGGCTTGCCCTGTATGGCCGGGTCATCGCGGCTGATCTGGCGATTGAATTCAACGTCTCTGAACATTCGATACGCCGAGACCTGGGCACATTGGCGGCGGCGGGCTTGTGCAAGCGCGTCTATGGCGGCGCGATTCGCTTGCCGGCCGCCGAAGCGCCGATCGATGTGCGGATCCACCAGGATCCAGCGCGCAAGGATAATCTTGGCCAGGCGGCAGCCGCGCTGCTTAGCGCAGGCCAGCATGTATTCCTGGATGCCGGCTCGACCAACCTGGCCATTGCCCGTGCCATCGACCCGGGGCTGCAATTGACGCTCAGCACCAACTCCCCGCTGATCGCGGTGGAACTGATGAAGCTGCCCCGCGCCGAGGTCATCCTGCTCGGCGGTCGCATGAACCGCGTCGCGGGCGGGGCCATCGGTCTGGCCGCCGTCCAGCAATTGCGCCAGTTCAATTTCGACTTGTGCTTTGTCGGGGCCTGCGCCATCGACCCGGACAATGGCGTCACCGCGTTTGGCCTGGACGACGCCGAGTTCAAGCGCGCGGTGGTCGCGGCCAGCGGTCAGGTGGTGGTGGCGGTGACCAACCAGAAGCTGTCCAGCGTCGCTCATTATCAAGTGGCCTCTTGTGAAGAGGTGACCACGCTGGTAGTGGAGCAGGATGCGCCGCAAGAGCGACTCGGCCCCTTTTTCGAGCGAATCTCCAAGGTCGTGAGGGCGGTCGAGCAGCAATAAMSATHEVFPGERQRLISERLALYGRVIAADLAIEFNVSEHSIRRDLGTLAAAGLCKRVYGGAIRLPAAEAPIDVRIHQDPARKDNLGQAAAALLSAGQHVFLDAGSTNLAIARAIDPGLQLTLSTNSPLIAVELMKLPRAEVILLGGRMNRVAGGAIGLAAVQQLRQFNFDLCFVGACAIDPDNGVTAFGLDDAEFKRAVVAASGQVVVAVTNQKLSSVAHYQVASCEEVTTLVVEQDAPQERLGPFFERISKVVRAVEQQNANANANANA
D1-35_03820927galGalactose 1-dehydrogenaseATGCAACCGATTCGTCTCGGCCTGGTGGGCTACGGCAAGATCGCCCAGGATCAACACGTTCCCGCCATCCAGGCCAACCCCGCGTTCGAACTGGTAGCGGTCGCCACGCAAGGCAAGCCCTGCGCCGGTGTGGAGAATTTCCAGTCCCTGGGCGAGTTGCTGGAAAACGGCCCGCACGTCGATGCAATTGCCTTTTGCACGCCGCCACAAGGGCGATTCGGTCTGGTCCGGCAGGCGCTGGTGGCCGGCAAGCATGTGCTGGTGGAGAAACCGCCCTGTGCCACCCTGGGCGAAGCGATGGCGCTGGTGGAGCAGGCGAGCGAGCAAGGCGTCAGTGGCCTGTTCGCCTGGCATTCGCGTTACGCTCCGGGCATCGAGCTTGCCCGGGACTGGCTCGCCAGCCGCACGCTGCAAAGCGTCCGGATCGACTGGAAGGAAGACGTGCGCAAATGGCACCCTGGCCAGGCGTGGATCTGGCAACCGGGCGGCCTCGGGGTCTTTGATCCGGGCATCAATGCCCTGTCGATCGTCACCCATCTGCTGCCGCTGTCGCTGTTCGTCGAGTCGGCCGAGCTGCGCGTTCCAGACAATTGCCAGTCACCAATTGCCGCGAGCATCAGGATGTCGGATGCCCGCCATCTCGATATCCGCGCCGAATTCGATTTCGACCACGGTCATGATGAGCTCTGGAGCATCGAGATTCGCTGCGCCGAAGGCGTGTTGCGACTGGACAACGGTGGTGCGTTGTTAAGCATCGACGGCGTGCGCCAGTCGGTGTCGGAGGAGGGCGAGTACGCGGCGGTGTACCGGCACTTCCAGCAGTTGATCGGTAACAAGGCCAGTGACCTGGACCTGCAACCGCTGCGCCTGGTTGCGGACAGCTTTTTCGTCGGCAGCCGGACCTTGGTCGAGCCGTTCTACGACTGAMQPIRLGLVGYGKIAQDQHVPAIQANPAFELVAVATQGKPCAGVENFQSLGELLENGPHVDAIAFCTPPQGRFGLVRQALVAGKHVLVEKPPCATLGEAMALVEQASEQGVSGLFAWHSRYAPGIELARDWLASRTLQSVRIDWKEDVRKWHPGQAWIWQPGGLGVFDPGINALSIVTHLLPLSLFVESAELRVPDNCQSPIAASIRMSDARHLDIRAEFDFDHGHDELWSIEIRCAEGVLRLDNGGALLSIDGVRQSVSEEGEYAAVYRHFQQLIGNKASDLDLQPLRLVADSFFVGSRTLVEPFYDPGPT0002205_209DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-GALACTONIC_ACID_BIOSYNTHESIS,PGPT0002205-gal-K00035NANA
D1-35_03821603sutR_1COG1396HTH-type transcriptional regulator SutRATGCCCCTGAACAGCCCTCTATCGACCGTCCCTGGCGCGGACGCCCACGCGGTGAGCCTGGCCGTTGCGCGCACGCTCAAGCAGGCACGCAAGGCTCAGAAAATCACGCTTGACGAACTGTCCCGGCGCTCGGGCGTGAGCAAAGGGATGGTAGTGGAAATCGAGAAATGCACGGCCAACCCGAGCATCGGCATCCTGTGCAAGATCGCCGCGGCGCTGGGCCTTTCGGTAGCCGATATCGTCAACGTGGCGGAAGCACCTTCGGCCCATGTCATCGACAGCCAGGATATTCCTACACTCTGGACCGGAGAGTTGGGAGGCAGCGCGCGCCTGCTGGCCGGTACGCCAGGCCCGAACATGATCGAGCTGTGGCGCTGGGAAATGTTTCCCGGCGAAACCTTCGCCTCGGCCGGACACCCTCAAGGCACGCTTGAGCTGTTCCATGTAGAAAAAGGCACACTGAAATGTGTGGTGGGAGAAACGGAACTGGTCGTCCCCGCCGGTAGCTCGGCGGTCGCGAAAACCGATGTGGCGCACACGTATTCCAACGCCGGCAAGTCGAAGCTGATCTTCACCATGTCGGTTGCCGAAATACATCAATAGMPLNSPLSTVPGADAHAVSLAVARTLKQARKAQKITLDELSRRSGVSKGMVVEIEKCTANPSIGILCKIAAALGLSVADIVNVAEAPSAHVIDSQDIPTLWTGELGGSARLLAGTPGPNMIELWRWEMFPGETFASAGHPQGTLELFHVEKGTLKCVVGETELVVPAGSSAVAKTDVAHTYSNAGKSKLIFTMSVAEIHQNANANANANA
D1-35_03822693hypothetical proteinATGCTGTCGGTACAGCCGTTGATCGACCAAGCCGTTGCCGAGCTGGCGCCGGGGTTCAGGGCCCTGAGCATCGTCGTGCAGGCTGCGCCGCTCACCGATCCCTACGTCGCCCGCGCGGCGCTGGAGCGAGCCTGTCAATCGGTGCTGGCGGGCGGGCCGGCCTGGGCGGAGGCCCATTTGCAGCAGTGGGCCCAAACGTTCCGACTGTTCGGTGCCAAGCCGCAACGCACGCCTTGTTCAGCCGAAGCGTTGCGCAAGCGGGTATTGCGCGACGGCGGCTTGCCGAGCCTTGATCCGGTCGTTGACCTCTACAACGCCATCAGTCTCGAATATGCGATCCCGGTGGGCGGGGAAAATATCGAGGCGTACGTGGGCTCGCCGCGACTGGTGATTGCCGAGGGTGGCGAACCGTTCGATACGATGAAAGAGGGCGCGCCTGCCCATGAATACCCCGACGCCGGCGAAGTGGTCTGGCGTGACGACCAGGGCGTGACGTGCCGTCGCTGGAACTGGCGCCAGGGCGTCAGGACCCGCCTGGACGCGGATGCCAGGCAGATGTGGTTCATCCTCGAAAGCCTGCCGGCGATGCCGCTCGAAGCGCTGACCGAAGCGGGCGACAGGCTGATAGAAGGCTTGCAGTCGATGATGCCCGGCGTGCAGATCGAGAGCGTGCTGATCGGGCCCGGAAGCTAAMLSVQPLIDQAVAELAPGFRALSIVVQAAPLTDPYVARAALERACQSVLAGGPAWAEAHLQQWAQTFRLFGAKPQRTPCSAEALRKRVLRDGGLPSLDPVVDLYNAISLEYAIPVGGENIEAYVGSPRLVIAEGGEPFDTMKEGAPAHEYPDAGEVVWRDDQGVTCRRWNWRQGVRTRLDADARQMWFILESLPAMPLEALTEAGDRLIEGLQSMMPGVQIESVLIGPGSNANANANANA
D1-35_03823840yghUCOG0625Disulfide-bond oxidoreductase YghUATGAGCCAAGCGTCTTACGTCCCGCCCAAAGTCTGGAAGCACGAAGCCCCCTCGGGCGGCCACTTCGCCAGCATCAACCGCCCTGTCGCCGGGCCGACCCATGAAAAAACCCTGCCGATCGGCGAGCACCCGTTGCAGCTCTATTCGCTGGCAACGCCCAATGGCGTGAAAGTGACCATCCTGCTTGAGGAACTACTGGCGCTCGGGCACACCGGCGCGGAATACGACGCCTGGCTGATTCGCATCGGCGAAGGCGACCAGTTCTCCAGCGGTTTCGTCGAGGTCAATCCGAATTCCAAGATCCCGGCCCTGCTGGACCGCAGCGTCGAACCTGCGATCCGGGTGTTCGAGTCCGGTTCGATCCTGCTGTACCTGGCGGAAAAATTCGCTGCGCTGCTGCCGACCGATCCGGCCGGGCGCACCGAAACCTTGAACTGGCTGTTCTGGCAGATGGGCTCGGCGCCTTACCTGGGTGGCGGCTTCGGACATTTCTACGCCTACGCGCCGGAGAAACTGGAATACCCGATCAATCGCTTCACCATGGAAGCCAAGCGCCAACTGGATGTGCTGGATCGTCGCCTGGCTGAAAACCGTTACCTGGCCGGCGACCAGTACACCATTGCCGACATCGCGGTCTGGCCCTGGTATGGCCAACTGGTGCGGAACAACGTGTACTCGGCGGCCGAGTTCCTGGCAGCCCACGAATACACCCACGTGCAGCGTTGGGCGGAGGAAATCGCCAAGCGTCCAGCCGTGGTGCGCGGACAGCGCGTCAACCGGACCTGGGGCGACGAAACGAGCCAGGTGCCGGAGCGGCATAGCGCGCAAGACCTGGACTGAMSQASYVPPKVWKHEAPSGGHFASINRPVAGPTHEKTLPIGEHPLQLYSLATPNGVKVTILLEELLALGHTGAEYDAWLIRIGEGDQFSSGFVEVNPNSKIPALLDRSVEPAIRVFESGSILLYLAEKFAALLPTDPAGRTETLNWLFWQMGSAPYLGGGFGHFYAYAPEKLEYPINRFTMEAKRQLDVLDRRLAENRYLAGDQYTIADIAVWPWYGQLVRNNVYSAAEFLAAHEYTHVQRWAEEIAKRPAVVRGQRVNRTWGDETSQVPERHSAQDLDPGPT0013045_856DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-GLUTATHION_METABOLISM,PGPT0013045-yghU|yfcG-K11209NANA
D1-35_038242055hmp_2FlavohemoproteinATGAACGAAGCCTCGAAAGTAGCCCCTTCGCCCTGGCATGAAGGCGAGTTGGCCTTGCAGCGCACTGTCGGGGCAGTAGAAATGATGGCGGGTGTCGGCCAGCGGCAACTGGCGCGTAGCTGGATGCCGGATCAGCACCGCGAGTTCTACGCTCAGTTGCCTTTCGTGGTGCTGGGCGCGGTGGATCGCCAGGGTGATGTCTGGGCGACCCTGCGCACCGGGCAGCCCGGCTTCATGAATTCACCGGACCCGGAAACGCTGCACATCCATTTCGACCCGGAGCCCGAAGACCCGGCCGAGCAAGGTATGGGCGAGGGCGATGCCATCGGCATGCTCGGCATCGAGTTGCATACCCGTCGCCGCAACCGCATGAACGGCGTCGTGCGCCGCCGGCTTGAGCGCGGGCTGGAGATCTCGGTGAGCCAGGCCTATGGCAACTGCCCACGCTACATCAACCTGCGCCAGTACCGTTTCGTCGATGAGCAGCCCGCCGAATCGCGCCAACTGGTGGCGGCCGACCCGTTGGTCCGGCAGTTGGTCACCGCGGCCGATTCGTTCTACATCGCCACCTACGTGGTACGCGACGGCGAGCGGCAAGTCGATGCGTCCCATCGCGGCGGCAAGTCAGGTTTTGTGCGCATGGACGAGGACGGCACGCTGACCATTCCGGATTTTTCCGGAAACCTGTTCTTCAATACGCTGGGCAATATCCTGCTGAACCCGCGTGCGGGCCTGGTCTTCGTTGATTTCCAAACGGGCGATTTGTTGCAGATGAGCGGATCGGCGCAAGTGTTGCTGGACGATCCGCAGATCGCCGCGTTCCAGGGCGCCGAGCGGCTGTTGCGTTTTACTCCGCAGCGCATTGTCCATCGTCCGGCGGCGCTGCCGTTGCGCTGGAAGGACCAGGACGAGGGTGACTCGCCCAATTCATTGATGACCGGCAGCTGGGAGCAGACCGCCGAGCGCTTGCAGGCCGAGGCCCTGCGCAGCCAATGGCGGGCGCTGCAGGTCACCCGGGTGGTGGACGAAAGTCACGACATTCGGTCCTTCCACCTGCAAACCAACGACGGCGTCGGTTTACCCCGGTTCGAAGCCGGGCAGCATCTACCCGTACGGATAACGCTGGAAGGACAGCAAGTGCCGTCGATCCGGACCTATAGCGTATCCAGCGCACCGTCGGACGATTTTCTGCGCATCAGTGTCAAGCGTGACGGCGCGGTATCTTCGCACCTGCATGAGCAGATCCAGGCGTCCCACCAGATTGACGCCCGGGCGCCTCAGGGTCATTTCACGGTGAATCCGACTGAGCGCCGGCCTTTGGTACTGTTGGCGGCGGGCGTCGGTATCACACCGCTGTTGTCAATGCTGCGCGAAGTGGTCTACCAGGGGAAACGCATCAGCCGGATGCGCCCGGTCTGGCTGGTGCAAAGCGCTCGCCACGTGGCCGACCTGGCCTTTCGCGAGGAGATCGATGAACTGGTAGCCCGTGCCGGTGACAAGTTGCGAGTGCTGCGCATGGTCAGCCAGCCGCCCACCGACGGGACGGCCGGGCAAGGCTACGACGTGGCCGGCAGAATCGAAGTGACGTTGCTCAAGCAACTGTTACCCCTCGATGATTACGATTACTACCTGTGCGGGCCGGGCAGCTTTACCCAGGCGCTGTACGACGGCTTGCGCAAGCTGCGCATTCCCGATGATCGCATTCACGCCGAAACCTTCGGTCCGTCCACGCTGGTGCGTGACATCGAAGTCAGCGTACCGGCGGCCGAGCAAGTGCCGGCGGCCACCGAAGCGGTAAAGGTGCTGTTCGCCGGTTCGGCCAAGGAGGCCCGCTGGGAACCGGAAAGCGGGACGCTGCTGGAATTGGCCGAGGCGCGGGGTCTGAATCCGGAGTTCAGTTGCCGCGGTGGATCCTGCGGCACCTGCAAGACCCGAATTACCCAGGGTCAGGTGCATTACCTGACCCATCCGGCCGAGCCCGTGGCCCCCGGCGAGGTGCTGATCTGCTGCGCCGTACCGGCCCAGGGCAGCGAGCCTTTGGTGCTGGAGGCCTAGMNEASKVAPSPWHEGELALQRTVGAVEMMAGVGQRQLARSWMPDQHREFYAQLPFVVLGAVDRQGDVWATLRTGQPGFMNSPDPETLHIHFDPEPEDPAEQGMGEGDAIGMLGIELHTRRRNRMNGVVRRRLERGLEISVSQAYGNCPRYINLRQYRFVDEQPAESRQLVAADPLVRQLVTAADSFYIATYVVRDGERQVDASHRGGKSGFVRMDEDGTLTIPDFSGNLFFNTLGNILLNPRAGLVFVDFQTGDLLQMSGSAQVLLDDPQIAAFQGAERLLRFTPQRIVHRPAALPLRWKDQDEGDSPNSLMTGSWEQTAERLQAEALRSQWRALQVTRVVDESHDIRSFHLQTNDGVGLPRFEAGQHLPVRITLEGQQVPSIRTYSVSSAPSDDFLRISVKRDGAVSSHLHEQIQASHQIDARAPQGHFTVNPTERRPLVLLAAGVGITPLLSMLREVVYQGKRISRMRPVWLVQSARHVADLAFREEIDELVARAGDKLRVLRMVSQPPTDGTAGQGYDVAGRIEVTLLKQLLPLDDYDYYLCGPGSFTQALYDGLRKLRIPDDRIHAETFGPSTLVRDIEVSVPAAEQVPAATEAVKVLFAGSAKEARWEPESGTLLELAEARGLNPEFSCRGGSCGTCKTRITQGQVHYLTHPAEPVAPGEVLICCAVPAQGSEPLVLEANANANANANA
D1-35_03825270hypothetical proteinATGCGCATCGTGGGAATTGCTTTAACCATCGCACTGCTGACAGGGTGCGCGACGGCCAACGAAACCTTTGGCACCGGGCAGCTTTGCGGTATTCATCCTTATTGCGGCGTGTCCGTCGACCTCCAGGTGCTCAAGGCGACGACCGAAGATAACGCGACCATCGCGCGCGCACTGGCGCCGTTCGCAGTCATCGATCTACCCCTCAGCTTCGTCGCCGATACGCTGATCCTGCCCTACACCATTTTTCATATGAGACCGGCTGAGGAATAAMRIVGIALTIALLTGCATANETFGTGQLCGIHPYCGVSVDLQVLKATTEDNATIARALAPFAVIDLPLSFVADTLILPYTIFHMRPAEENANANANANA
D1-35_03826963eamA_2COG0697putative amino-acid metabolite efflux pumpATGAACCAGCCCAAATCGATCACTTGCCCTTTGCCGTCCAGCGTTTATTGGCTGATCCCCTTGCCTTTGCTGGAGGCCGCCCTGCTCCTGGCCTGGAGTTCCGGGTTTGTCGGTGCGCGATTCTCCATTGATTACGCGCCGCCACTGCTGGTGGTGTTCTGGCGCTGCCTGGTAGTCACACTGGTGCTGTTTCCTTTTGTCGCCGGGCAGTTGCGGCGAGCCTCGCGGGTCACTTTGTTGAAAAACGCCGGCATCGGCCTGCTCGCGATGGCTGGGTACCTGGCTGGCATCACCCAGGGCATCGCCTTGGGCGTGCCGGCCGGGCTGGCGGCGTTGTTCGCCGATCTGTTGCCGATCGGCCTGGCGTTGCTGGCCGCCGGTGCACTGGGCCAGCGCTTGGCGCCGCGAGTCTGGACCGGATTGATCGTCGGCCTGATCGGCGTTGCGCTTGGCACCCACGGCGCACTGGCTTGGGGCCACGCGCCACTGTGGGCGTACGGGCTGCCATTGCTGGGAATGTTTTCGCTGGCTATCGCGACCCTCTGGCAAAAGCGGCTGCCTGCCTCGCAATCGCTCGGCCTGCTGCCTAACCTCTGGCTGCAATGTTGCGTCTCTGGCCTGGCATTCGCCGTGATCGAGGGCACGCAAGGCAGCCTGGCGCCGATACCGAGTACCGGGTTCGCGCTGAGTGTTTTGTGGACGGCAGGTTTGTCGACAATCGGCGGTTACGGGCTCTATTGGCTGTGTCTGCGCCGGGCGTCCACCACCCGCGTCGCCAGCGTCCTGTACCTGAGCCCACCGATCACGATGCTGTGGGCCTGGACGATGTTCGACGAACCGCTTTCATGGCAGATGGCACTGGGGATGGCGGTGTCCGCCATCGGGATCTGGCTGGTGGTGCGCGAAGAAGCCCGGCAGACGCGGCGGACTGAAAATCGACAGGAGTCATCGCGAGCGCACTGAMNQPKSITCPLPSSVYWLIPLPLLEAALLLAWSSGFVGARFSIDYAPPLLVVFWRCLVVTLVLFPFVAGQLRRASRVTLLKNAGIGLLAMAGYLAGITQGIALGVPAGLAALFADLLPIGLALLAAGALGQRLAPRVWTGLIVGLIGVALGTHGALAWGHAPLWAYGLPLLGMFSLAIATLWQKRLPASQSLGLLPNLWLQCCVSGLAFAVIEGTQGSLAPIPSTGFALSVLWTAGLSTIGGYGLYWLCLRRASTTRVASVLYLSPPITMLWAWTMFDEPLSWQMALGMAVSAIGIWLVVREEARQTRRTENRQESSRAHNANANANANA
D1-35_03827855gltR_2COG0583HTH-type transcriptional regulator GltRATGCCCGCCATATTGGATATCGAGCTGATACGGACCTTTCACGCCGTCGCGCGCATCGGCAAATTCAGCGCCGCAGCCGAGCAGCTGCACAAAAGCCCGGCGGCGGTGAGCGTGCACATCCAGCGATTGGAAGCGGTCGCCGGAGGTCGGCTGCTGAACCGCGACAATCAGGCGGTATCCCTGACCGCGCTGGGCAAACGCTTGCTGCTTTCCACCACCGAGTTGCTCACCACCCACGATCGGGTGCTGGCCGACCTGCACGGCACGCGGCTGGCGGGTCGCATCACGTTAGGCGTGCCGGACGAGTACGCCGACCACGTCATCCGCGACATCCTGCCGACATTCACGGCAGCCTGGCCTAACGTGATCCTCGAACTCAGGACGGCCCCCAGTTATGCCCTGCGTGAGCAGGTGCAGCGCGGGAAACTGCAAGCGGCCGTGCTCGCTCAGCCGATGGATCAGCCAAGGGAGGAAACCGAGGTGTTGACTACCACGACGCCGGTCTGGGTCGGCGCGGTTCACGCGACGGCCAGCCCGGCGCAGCCGCTCGCGTTGGCTGTGCATGCAGCGCAGTGCCCTTATCGGCAAGCCATGATGCAGGCGCTCAGGGAGAGCGGTTACCGGCTGCGCGTAGTTCTGGAAAGCCCGTCCAACCAGGCCGTCAAGGCCTGTGTCGAAGCCGGCCTGGCGATCAGCCTGATCGACCGTGCCCGCGTGACCGAGCACATGCGGATTCTCGATGGCCTGCCGGTGATCCCCGACCATGCAGTGGTGTTCATGCGCTCCCAGGCATCACGCGGCAATGAAGCGGTAGACCTGCTTGGCCAGGCCATGCAGCAGCGTTTTCGACTGTAGMPAILDIELIRTFHAVARIGKFSAAAEQLHKSPAAVSVHIQRLEAVAGGRLLNRDNQAVSLTALGKRLLLSTTELLTTHDRVLADLHGTRLAGRITLGVPDEYADHVIRDILPTFTAAWPNVILELRTAPSYALREQVQRGKLQAAVLAQPMDQPREETEVLTTTTPVWVGAVHATASPAQPLALAVHAAQCPYRQAMMQALRESGYRLRVVLESPSNQAVKACVEAGLAISLIDRARVTEHMRILDGLPVIPDHAVVFMRSQASRGNEAVDLLGQAMQQRFRLNANANANANA
D1-35_03828456hypothetical proteinATGCAAGGCGCACCTCGAAAAATTCTTCAAGCCATCCTCTACGAAGCCGGCGGCGTGCTGTTCGTGGCCCCCGCACTGGCGTTGATCTACCAGCAAGGCATGGGTTATTCGACCCTGCTGTCGTTGCTGATTTCTTTCGTCGCGCTGGCCTGGAACATGCTGTTCAATGGTTTGTTCGAAGCCTGGGAGCGGCGCCAGGACAATCGCCAGCGCAACTGGCGGCGGCGTCTGGGGCATTCGCTGGGATTCGAAGGCGGCCTGACGCTGATCCTCACGCCAGTGATTGCCGCATGGCTGGATATCAGCCTGTGGCAGGCATTGGCGACAAACCTGGGGCTCTTCGTGTTTTTCTTTTTCTACGCCCTGGTTTTTCAGTGGGGATTCGACCGGGTGTTTGATGTTCCGCTCTCGGCGCAGCCCGACCAGGCCTCGACCTGCAAGGCCAACGCCACCTGAMQGAPRKILQAILYEAGGVLFVAPALALIYQQGMGYSTLLSLLISFVALAWNMLFNGLFEAWERRQDNRQRNWRRRLGHSLGFEGGLTLILTPVIAAWLDISLWQALATNLGLFVFFFFYALVFQWGFDRVFDVPLSAQPDQASTCKANATNANANANANA
D1-35_03829885perR_2HTH-type transcriptional regulator PerRATGTTTGCCAGACAGCCCCTGACCGCCTTGCGCGGCTTTGAGTCCGCCGCACGGCTGGGCAGTTTCAAGGCGGCGGCCCAAGAGCTGAGTATCAGCGCCGCGGCGATCTCCCATCAGATCAAGAGCCTCGAAGCGTTTCTGGGTGTGCGGTTGTTCGAACGCTCCAGCCAAAGCGTACGCCTGAGCCCCGATGGCGAGCGGCTTTATCCGCATATCCACCGGGCCTTGGCGGAGATTCAGCATGGCTTGCAGACATTGGCGCCGCCTTGTGTCGCGCAATCACTGGTGGTGAGCACGACGCCGGCCTTCGCCAGCCTGTGGCTGATCCCGCGGCTCGGTGATTTTTATCGAGCGCACCCGGACATCAGCGTCCGACTGCACAGCAGCAATGACCTCGTCGACCTGCAGCGTGACGCCAGCATCGACCTGGCGATTCGCGCTGTGTTCACCTCGGATCCGCAACTGTTCGAGCAGCCATTGCTGGATGAATATTTTGCCGTCTACTGCCACCCCGGCTGGCAGCCGCCCGCAACGGGGACTCCCGTCGAGTTGATCGACGTGCCGTGGCTGAGCAGTTCCGATGTCGCGGTCGATTGGCCGGCCTGGTGCGCCCGGGCCGGCACTTCGGTCTGGCTGGATAATGCCCGCGTGCGAGGCTATGACGAAGAGCAACACGCGCTGCAGGCGGCAATCGTCGGACACGGTCTGGTGCTCGCCAGCCAGGTCCTGGTTGCAGAGGCTGTGGCCCGTGGACAGTTAGTGCCTTATCGGCCGGAGGTTCGCCTGGCGGGTGCGCGCTATACCCTGGTGTGCGTACCGGGACGGGAGCGGCAGCCAGCGGTACGGGCGTTCAGCGAATGGTTGCTGGGGCAGGGCGCCTGCTGAMFARQPLTALRGFESAARLGSFKAAAQELSISAAAISHQIKSLEAFLGVRLFERSSQSVRLSPDGERLYPHIHRALAEIQHGLQTLAPPCVAQSLVVSTTPAFASLWLIPRLGDFYRAHPDISVRLHSSNDLVDLQRDASIDLAIRAVFTSDPQLFEQPLLDEYFAVYCHPGWQPPATGTPVELIDVPWLSSSDVAVDWPAWCARAGTSVWLDNARVRGYDEEQHALQAAIVGHGLVLASQVLVAEAVARGQLVPYRPEVRLAGARYTLVCVPGRERQPAVRAFSEWLLGQGACPGPT0026360_6347DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566NANA
D1-35_03830246hypothetical proteinATGATGACCGTATATTTTGTCGTTATGACGATTTGCAGTGGCTTCGAGGGCTGCGTTGAAGAACGCAGACCGGGGCCGACCTACGCTTCAAGGCAGATCTGCCTGGAGACGACCCGGGAGATGACGCCGCGCAAGGGCGTGAAGTTCAAGTGCCGCAGCGAGCGTTCCAACGTGATTTTCACCGAGGCGCCGCATCCGGAAAGTTACGAGAGTCTCGTCTCGACCAAAGTCCAGGGACAGCCTTGAMMTVYFVVMTICSGFEGCVEERRPGPTYASRQICLETTREMTPRKGVKFKCRSERSNVIFTEAPHPESYESLVSTKVQGQPNANANANANA
D1-35_038311182sotB_3sugar efflux transporterATGAGCGCATTTACCCCCCTGGAACGAGGCTTGTCCAAAACGCTGACGTTATTGTTTTCGGTGACTTGCGCACTGGCCGTTGCCAATGTCTATTTTGCCCAGCCGTTACTCGCCTCCATCGCACAAAGCCTCGGCGTGACGTCCGGATCGATCGGCATCGTGGTGACGGCCACTCAGGCTGGATACGCGCTGGGGTTGCTGTTCATCGTGCCGTTGGGCGACAAGGTCGACAGCAGGCGGCTGATCCTCACGCTCGTGACGTTATCGGTGCTGGCGCTGGCGGCCGTCGGTGCCTCCCGGCACTGGCTGGTCCTGTTGGCAGCCATGAGCCTGACGGGCTTGATGGCGGTGGTCGTGCAGGTACTGGTCGCCTACGCCGCGCTGCTGTCTCCACCGGCCCAACGCGGGCAGGCCGTGGGAGCCCTGACCAGCGCGATTGTGCTGGGCATTCTCATGGCTCGGTTCACTTCAGGGCTGATCGCCGACCTGGCGGGCTGGCGTGCGGTTTATTTCGTTTCGTCAGGACTGATGCTGACGATCGCGGCAGTGTTATGGAAAATAGCTCCACCCGCCAAACCGCTACGTAACCAGCATACCTACCCAGCGCTCATTCGGTCGCTGTTCGAACTGTTCCTGACTGAACCGGTCCTGCGCAGCAGAGGCCTGTTCGCCCTGCTGATCTTCGCGGCTTTTTCCGTGCTATGGACCGCCATGGTATTGCCCCTCAGTGCCGCGCCGCTGTCGCTTTCACACAGCGCTATCGGCCTGTTCGGCCTGGCCGGCGTTGCCGGGGCGCTCGCCGCCAGGAGGGCTGGCCGTTGGGCTGACCGAGGCTGGGGGCGACGGGTGACCGGCCTTTCCCTGGGGCTGCTGGCGCTTTCCTGGGTACCCATCGCCTTTGCCGAGTCGTCGTTGATCGCGCTGGTCGTGGGGGTGATCCTGCTCGATTTCGCCGTGCAGGCGGTGCATGTGACCAACCAGAGTTTTCTTTTCGCCGCGCGGCCCGACGCCCAGAGCCGCATGGTTGGTGCCTACATGTGTTGCTACTCGGTCGGCAGCGCGTTGGGGGCGGCAGCTGCCACTCAGGTGTATGCGCTTTGGGGCTGGCAGGCGGTGAGTTTACTGGGCGCCTCGATCAGCCTCGCGGCGCTGGTTGCATGGTTTTTCTCGGCGCGGAGTTAGMSAFTPLERGLSKTLTLLFSVTCALAVANVYFAQPLLASIAQSLGVTSGSIGIVVTATQAGYALGLLFIVPLGDKVDSRRLILTLVTLSVLALAAVGASRHWLVLLAAMSLTGLMAVVVQVLVAYAALLSPPAQRGQAVGALTSAIVLGILMARFTSGLIADLAGWRAVYFVSSGLMLTIAAVLWKIAPPAKPLRNQHTYPALIRSLFELFLTEPVLRSRGLFALLIFAAFSVLWTAMVLPLSAAPLSLSHSAIGLFGLAGVAGALAARRAGRWADRGWGRRVTGLSLGLLALSWVPIAFAESSLIALVVGVILLDFAVQAVHVTNQSFLFAARPDAQSRMVGAYMCCYSVGSALGAAAATQVYALWGWQAVSLLGASISLAALVAWFFSARSNANANANANA
D1-35_03832459COG1733putative HTH-type transcriptional regulatorATGGTTGAGAACGATGTGTCGCATAACCGCGAATGCCCCGTGGCACGCACGCTGGAAGTCATCGGTGATCGCTGGTCGCTGATGATCATCCGCGACGCCTTCGATGGGCTCCGCCGCTTCAGCGAGTTTCAGAAGAACCTGGGGGTGGCCAAGAACATCCTGGCGTCGCGACTCAAGGCCCTGGTCGAGGTCGGCGTGTTCGAGGTGCGACCCGCCTCGGATGGGAGCGCCTACAAGGAGTACGTCCTGACGGAAAAAGGCCAGGCGACTTTTGCGCTGGTGGTCAGCTTGAGGCAGTGGGGCGAAAGGTTCCTGTTCACCCCGCAGGAAACAAGGTCGCTGTTGGTAGACAACGAGTCGGGGCAGCCGCTGATGCCGATGGAGGTTCGCTCATCGGGCGGCCGGAAACTCGAACCGTGGGATTGTCACCGGGTCAGGCGGGTTGCCGGCGCGTCGTGAMVENDVSHNRECPVARTLEVIGDRWSLMIIRDAFDGLRRFSEFQKNLGVAKNILASRLKALVEVGVFEVRPASDGSAYKEYVLTEKGQATFALVVSLRQWGERFLFTPQETRSLLVDNESGQPLMPMEVRSSGGRKLEPWDCHRVRRVAGASPGPT0028680_3DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-AMINOGLYCOSIDES_RESISTANCE-STREPTOMYCIN|KANAMYCIN|AMIKACIN,PGPT0028680-aadA-K00984NANA
D1-35_03833747hypothetical proteinGTGAAGCATTCGATGCCTGCCGCAGCGCTGCTCTGTCTATTGCTCGGTTCAGGGGCCGCGGCTGAGCCATATCAGGTCGTGACCGAGGAATGGGCACCCTACAACTACGTCGAAAACAGTCAGCTCACCGGTATGACCACGGAAATCGTCCGAGCCATCATGGCCCAGACCGGGGACGACTTCGAAGTCGTGCTGCAGCCCAGCATGCGGGCCACGCAAATATTGCGGACCCGGCCCAAGACCATCATGTACTCGCTGTTCCGCACGCCGGAGCGCGAGCCGTTGTACAAGTGGGTCGGGCCGATCGTCGAAGAATCCATCCACGCCTATCAATTGGCTGACGCGCCGCCGATCACTTCGCTGGAACAACTGCTGCGCGCCCCGCAAATCACCACCCGCCATGCCGGCCTGGTGCCCCAGATGCTGAAATCGCTGGGCTTCAACAACCTGGACAAGAGCGCCACCGAGAGCAAGCTGCTCTACCGCATGTTGCTGGCCGGGCGGACGAATATCATCGTCGGCGATACCGATGCGGGAGTGGCGTATTACAGCCGCCAGTTGAAAATACCCGCCGGAACACTGCGCAGGATTCCCATCGAACTCTACCGCTCCTCGCTGTACATCGCCTTCAGCGTCGACAGCGACGAGCAGGTGATTGCCAAGTGGGCCAGCGCGCTTGAGCAACTGCGCCGGTCCGGTGAACTGGCGCGCATCCAGCAACGCTACGAGCAACCTGCCGGACGCTGAMKHSMPAAALLCLLLGSGAAAEPYQVVTEEWAPYNYVENSQLTGMTTEIVRAIMAQTGDDFEVVLQPSMRATQILRTRPKTIMYSLFRTPEREPLYKWVGPIVEESIHAYQLADAPPITSLEQLLRAPQITTRHAGLVPQMLKSLGFNNLDKSATESKLLYRMLLAGRTNIIVGDTDAGVAYYSRQLKIPAGTLRRIPIELYRSSLYIAFSVDSDEQVIAKWASALEQLRRSGELARIQQRYEQPAGRPGPT0020800_14820DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-35_03834675trmKCOG2384tRNA (adenine(22)-N(1))-methyltransferaseATGCGCCTGGAGCGCGTGGCAGCGCATGTGCCGGCGGGTGCCCGGCTTGCCGATATCGGCTCCGATCACGGCTACCTGCCGGTGGCATTGCTACGTCGTGGTGTGATCAGCGCAGCGGTGGCCGGGGAGGTGGCGTTGACGCCGTTCCGCTCGGCCGAACGCACGGTGCGCGAAAGCGGTCTTGAACAAACGATTGCCGTGCGCCTGGCCAGCGGCCTGGGGGCGATCGAACCCGGCGACGGTATAACGGCGATCAGCCTGTGCGGCATGGGGGGCGAGACGATTCGCGACATTCTCGAGGCCGGCAAGTCCCGCCTGAGCGGTCGGGAACGGCTGATCCTGCAGCCCAACGGCGGCGAGCAGCCATTGCGCCAATGGTTGATGGCCCACGACTACCGCATCCTTCATGAGGAAATGCTGCGGGAGAACCGCTTCTATTACGAAATCATCGTCGCCGAGCGCGATGGGCCGGTGACGTACAGCGCCGAGGAACTGTACTTCGGCCCGCTGCAGATGCAGGCTCGCAGCCCGGTATTCCTGGACAAGTGGCAGCGCATGCTGCGCTTCAAACAAAAAAACCTGGCTAACCTCACCCGGGCGCAGCAGGGCGTGGCGCAGGAAAAGGTGCAGGAGATCGCGCGGCAGATTCGCTGGATCAGCGAATTGTTGGCGTGAMRLERVAAHVPAGARLADIGSDHGYLPVALLRRGVISAAVAGEVALTPFRSAERTVRESGLEQTIAVRLASGLGAIEPGDGITAISLCGMGGETIRDILEAGKSRLSGRERLILQPNGGEQPLRQWLMAHDYRILHEEMLRENRFYYEIIVAERDGPVTYSAEELYFGPLQMQARSPVFLDKWQRMLRFKQKNLANLTRAQQGVAQEKVQEIARQIRWISELLANANANANANA
D1-35_03835702fzlAFtsZ-localized protein AATGACTCTTCCCCACTCCCACCACGACGTTTCCGAACTCCCAATGATGAAAATCCATGACTGGTTTGACGGCCCCTATCCGGCGCGAGTACGCATCGCCCTGGCAGAGAAAGGTCTACTCTCGAAAACCAAATTCGTCTCGGTCAATCTATGGACGGGCGAACACAAGAAGCCGGAGTTCCTCGCGATCAATTATTCGGGAACGCTGCCGGTATTGGAGCTGGAAGACGGCACGCTCATTGCCGAATGCACGGCAATCACGCAGTACCTGGACGCCTTGGTTGGCCTCCCTGCCCTGACCGGTGAAACGCCTCTGGAGAAAGGCCTGATCCAGATGATGACCAAGCGCGCCGAAATAGAATTCCTCGATGCGGTCAGCGTGTACTTCCACCACGCGACGCCGGGGCTAGGGCCGGAAGTCGAGTTGTACCAGAACGCTGAGTGGGGCATGCGCATGCGCGACAAGGCGGTCAGGGGCATGCGTTATTTCAATGACCTGCTGGGCCAACGCCCGTTTGTTGCAGGCGAGCGTTTTTCGATGGCAGACATCGCGGTACTGGGCGGCATGATCTTCGCCTCGCTGGTCAAGTTGCCAGTGCCCGAGGAATGCCAGGCGTTGCTGGCATGGCATTCGAAGATGCAGGCAAGACCCAGCGTCCAGCAGTGGCGAGCGATGGTCGAGCGCGGTGCAGCGCAACGTTGAMTLPHSHHDVSELPMMKIHDWFDGPYPARVRIALAEKGLLSKTKFVSVNLWTGEHKKPEFLAINYSGTLPVLELEDGTLIAECTAITQYLDALVGLPALTGETPLEKGLIQMMTKRAEIEFLDAVSVYFHHATPGLGPEVELYQNAEWGMRMRDKAVRGMRYFNDLLGQRPFVAGERFSMADIAVLGGMIFASLVKLPVPEECQALLAWHSKMQARPSVQQWRAMVERGAAQRPGPT0013170_5073DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013170-gst-K00799NANA
D1-35_03836564hypothetical proteinGTGAGCGAAAACGCTCGGGAAGCCATCCTGGCAGCCGCTAAAAGCGCTGCGCAGACCCATGGCTACAGCGGAATCAACTTTCGAAGCATTGCCGAAGCGGTGGGGATCAAGAACGCGAGTATCTACTACCACTTCCCCAGCAAGGCCGACCTGGGCGCGGCGGTAGCTGAACGCTACTGGCAGGACGCGGCCGCCGTTCTGAAGACGATCCGTGAGGAGAACCCCGATCCCCATGGTTGCTTGCGGCTGTACCCCTCGATCTTTCGCAAGTCACTGGAAGACGGCAACAGACTCTGCCTGTCCAGCTTCATGGCGGCCGAACACGAAGACTTGCCTGAGCCGGTGAAGCGCGAGGTCAAGGCCTTCGCCGACGCCAACGTGGCGTGGCTGGCCGAGGTGCTGGCAGCCGCCGGCACGGGCAGCGTGGAAAAGTGTGAACGCCGCGCCCTGGCCATTTACACCGCTGTCGCCGGTGCCCAGTTGATCGCCCGGACGCGGCTCGACATCAACCTGTTCGACGAACTGATCCTCAGCTACCAGGAAGCCGGACTGATCCCGGCTTGAMSENAREAILAAAKSAAQTHGYSGINFRSIAEAVGIKNASIYYHFPSKADLGAAVAERYWQDAAAVLKTIREENPDPHGCLRLYPSIFRKSLEDGNRLCLSSFMAAEHEDLPEPVKREVKAFADANVAWLAEVLAAAGTGSVEKCERRALAIYTAVAGAQLIARTRLDINLFDELILSYQEAGLIPANANANANANA
D1-35_038372289adiACOG1982Biodegradative arginine decarboxylaseATGACGGAACATCGAAATCTGTTGGGGATGCTGGCCTTGCTGGTCTCCAATGCGCCCGACAAACGCAGCGTATTCGGCCGCGCGCTGATCCAACTGATCAGCGACGTGGAGGACCGCGCCGTCAGCGTGCTGACCTCCGAAACCCTGAGTGATGCCAAGTCGATCCTGAGTTCCGACCCGGCTATTCAATGTGTGTTGCTCAGCTGGGAAATCGACACCAGCGACGACCACCGCGAATGCATCGACCTGCTCACCGCGCTACGCGAGCGCAACACCCGCGTGCCGGTGTTCCTGATCAGCGATCGCAGCACGGCGTCCAACGTGCCGTTGATCGTCATGCAACATGCCGATGACTTCATCTGGTTGCCTGAAGACACCAGCCGTTTCCTCAGCGGGCGGATACTGGCGGCTATCGAGCGCTATCGCCAGGCGGTGCTGCCGCCGATGTTCGGCGCGCTGCTGAAGTTTGCCCGCAGCTACGAATATTCCTGGCACACACCGGGTCATGCGGGCGGCACGGCGTTCTTGAAAAGCACCGCAGGCCGGGCATTCTATGAATTTTTCGGGGAGAACCTGCTGCGTTCGGACCTGTCGATTTCCGTCGGCGAGCTGGGTTCCCTGCTCGACCACAGCGGCCCCATCGGACAGGGCGAGCGTTATGCCGCCAAAGTGTTCGGCGCGCACCGCACCTATTACGTCACCAACGGCTCATCGATGTCCAACCGCGTCATCCTGATGGCCAGTGTGACCCGTGACCAGATCGCATTGTGCGACCGAAACTGCCACAAATCCGCCGAGCATGCGATGACCCTCTCCGGGGCCATTCCGACCTACCTGGTGCCGACCCGCAACCGCTTCGGCATCATCGGCCCGATCCTGCCGCGGACCCTCAGCGCCGAGGGGGTGAAGGCCGCCATCGCGAGCAACCCGCTGGTCAAGAGTCACATCGACCCGACGCCGGTGCATGCGATCATCACCAACTCCACCTATGACGGCCTGACCTACAACGTCACTCGCGTCGAAGAGTTGTTGGGGCAAAGCGTCGACCGCCTGCATTTCGACGAAGCCTGGTATGGCTACGCGCGTTTTAATCCGCTGTACAAGGATCGCTTTGCGATGCATGGCAGCCCGGACGATCACGACCCGTCGAAACCGACCGTGTTCGCCACCCAGTCCACGCATAAGCTGTTGGCGGCGCTGTCCCAGGCCTCGATGATCCATGTGCGCAACGGCCGCAATCCGATCCCCCATGGGCGCTTCAACGAGTCGTACATGATGCACGCCTCGACTTCGCCGAATTACGCAATCATGGCCTCCTGCGACGTCAGCTCGGCGATGATGGAGGCGCCCAGCGGGCAGATCCTCACCAGCGAGGCGATCGAGGAAGCCATCGCTTTCCGTCAGGTCATCTCGCATATGCAGAACGAGATGCGCAGCCATGACGACTGGTTCTTTTCCTGCTGGCAGCCGCCGTCGGTGCAGGTCGACGGGGCATCGATTGCGTTCCACGAAGCCGACCCGGCCAGGCTCAAAATCGATCCAGGCTGCTGGGTCCTGCACCCCAATGAGGTCTGGCACGGCTTCGGTGACATTGAAGACGGCTACTGCATGCTCGACCCGATCAAGGTCTCGATCCTAAGCCCCGGGATGGGCGACGACGGCAACCTGCTGGACTTCGGTATTCCGGCCTGTGTGCTCAGTGCCTACCTGGGCACGCAAGGCATCGTGGTGGAAAAAACCACTGATTTCACCATCCTGTTCCTGTTTTCCATCGGCATCACCAAGGGCAAGTGGGGCACGCTGGTCAACGCGTTGCTCGATTTCAAGCGCGACTACGACGCCAACCTGGAGCTGGAACTCTGCCTTCCCGACCTGTTGAGCGCCAACCAGCAACGTTATTCCGGCATGGGGCTCAAGGACCTCGCCGAGGAAATTTTCGCCGCCATGAAACAAACCAGGACCACTGCCGCCATGGCCCAGGCGTTCGGCACACTGCCTGAGACGCACTTCAGCCCGGTGGAGGCGTACGAGAAACTGGTCAAGAACGAGATCGAGCAAGTCACCCTCGAAGAAGCGGCCGGACGCATCGCCGCGACGGGTATCGTGCCGTATCCACCAGGAATTCCCTTGCTGATGCCGGGAGAGAATGCAGGGCCGTCGGAGGGACCGGTGCTGACCTACCTCAAGGCGCTGGAAAGCTTTGACCGATCGTTCCCCGGGTTCACCCATGACACCCATGGAATTGAAAGCGAAGCGGGCACTTATCGATTGCTGGTGCTGAAACAGTAGMTEHRNLLGMLALLVSNAPDKRSVFGRALIQLISDVEDRAVSVLTSETLSDAKSILSSDPAIQCVLLSWEIDTSDDHRECIDLLTALRERNTRVPVFLISDRSTASNVPLIVMQHADDFIWLPEDTSRFLSGRILAAIERYRQAVLPPMFGALLKFARSYEYSWHTPGHAGGTAFLKSTAGRAFYEFFGENLLRSDLSISVGELGSLLDHSGPIGQGERYAAKVFGAHRTYYVTNGSSMSNRVILMASVTRDQIALCDRNCHKSAEHAMTLSGAIPTYLVPTRNRFGIIGPILPRTLSAEGVKAAIASNPLVKSHIDPTPVHAIITNSTYDGLTYNVTRVEELLGQSVDRLHFDEAWYGYARFNPLYKDRFAMHGSPDDHDPSKPTVFATQSTHKLLAALSQASMIHVRNGRNPIPHGRFNESYMMHASTSPNYAIMASCDVSSAMMEAPSGQILTSEAIEEAIAFRQVISHMQNEMRSHDDWFFSCWQPPSVQVDGASIAFHEADPARLKIDPGCWVLHPNEVWHGFGDIEDGYCMLDPIKVSILSPGMGDDGNLLDFGIPACVLSAYLGTQGIVVEKTTDFTILFLFSIGITKGKWGTLVNALLDFKRDYDANLELELCLPDLLSANQQRYSGMGLKDLAEEIFAAMKQTRTTAAMAQAFGTLPETHFSPVEAYEKLVKNEIEQVTLEEAAGRIAATGIVPYPPGIPLLMPGENAGPSEGPVLTYLKALESFDRSFPGFTHDTHGIESEAGTYRLLVLKQPGPT0012235_380DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ARGININE_DEGRADATION,PGPT0012235-adiA-K01584NANA
D1-35_038381410potE_1COG0531Putrescine transporter PotEATGTCAGTCGCCAAGAAGATGAGTGTGAGCCAGCTGACCATGCTGACCGCCGTCAACATGCTGGGGTCCGGCATCATATTGCTGCCGACCAAACTCGCCGAAGTCGGCGGCATCTCCATCCTGTCCTGGCTGATCACCGCCACGGGCTCGCTGGCATTGGCCTACGCGTTCGCCCGCTGCGGCATGCTCAGCCGCAAGACCGGCGGCATGGGCGGTTACGCCGAATATACCTTCGGCAAATCCGGCAACTACATCACCAACTACACCTACGGCCTTTCGCTGTTGATTGCCAACGTGGCGATCAGCATTACCGCGGTCGGTTATATCCAGACGTTGTTCGATATCAAGCTGGATTCGCTGCAAGTCGGCCTGGCGACCATCGCTTTGTTGTGGCTGACCACCTTCGCCAATTTCGGCGGCGCAGGCATCACCGGCAAGATCGGCGCCGTGACGGTGTGGGGAGTCATTGCCCCGGTGGTGCTGGTTTCCACCGTCGGTTGGTTCTGGTTCGACAGCAGCGTTTATGCCGCCGGCTGGAACCCTCACGACAAGACCTGGTACGAAGCGGCAGGCGCTTCGGTGGCGATCACGCTCTGGGCATTCCTCGGGCTCGAATCGGCCTGCGCCAACGGTGACGCGGTGGAAAATCCCGAGAAGAACGTGCCGATCGCGGTCCTCGGCGGGACCCTCGGCGCCGCGGTGATCTACATCGTTTCCACCAACGTCATCGCCGGTATCGTCGATAACGCCGAGCTGGTCTCCTCCACCGCGCCGTTCGGCCTGGTGTTCGCCAAGATGTTCACGCCGCTGGTGGGTGACATCGTCATGGGCCTGATGGTGCTGGCCTGCATCGGCTCGTTGCTTGGCTGGCAATTCACCGTGGCACAGGTCTTCAAGAGTTCGGCGGATACCGGCTATTTCCTGCCGATCTTCGCCAAGGCCAACAAGCATGGCGTGCCGATCATCAGCATGCTGATCCTGCTGGCGATGCAGACAACCATGGCGCTGCTGACCATCAGCCCGGACCTGGCCAAGCAGTTCGATACGCTGGTGAATCTCGCTGTGGTGACCAACCTGGTGCCCTACATTCTCTCCATGGCGACACTGGTGACCCTGCAAAAGGTTTCGAATGTCCCGGCGAACAAAGCCCTGGTCACCAATATCGTCGCGGGCATCGCCGCGGCCTACAGCTACCTGGCCCTCTACAGCTCGGGCGAACAAGCCTTGATGCTCGGCGGCGTCGCGGTGATCTTCGGCTATACGCTGTTCGGTTTCGTCAACACCCGCCTGATCCGCCTGGAGGCCATGAACAACAGCGTACCGACCCAGACCGTCGCGGCGCAGCACATCGTTGGCGAGCCCATTCCCGTCAACCACCTGAAGGCAGCTAATCTGGAGCCCTTGCCATGAMSVAKKMSVSQLTMLTAVNMLGSGIILLPTKLAEVGGISILSWLITATGSLALAYAFARCGMLSRKTGGMGGYAEYTFGKSGNYITNYTYGLSLLIANVAISITAVGYIQTLFDIKLDSLQVGLATIALLWLTTFANFGGAGITGKIGAVTVWGVIAPVVLVSTVGWFWFDSSVYAAGWNPHDKTWYEAAGASVAITLWAFLGLESACANGDAVENPEKNVPIAVLGGTLGAAVIYIVSTNVIAGIVDNAELVSSTAPFGLVFAKMFTPLVGDIVMGLMVLACIGSLLGWQFTVAQVFKSSADTGYFLPIFAKANKHGVPIISMLILLAMQTTMALLTISPDLAKQFDTLVNLAVVTNLVPYILSMATLVTLQKVSNVPANKALVTNIVAGIAAAYSYLALYSSGEQALMLGGVAVIFGYTLFGFVNTRLIRLEAMNNSVPTQTVAAQHIVGEPIPVNHLKAANLEPLPPGPT0007800_9DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007800-putE-K03756NANA
D1-35_03839996yhdNCOG0667Aldo-keto reductase YhdNATGATCACTCGTCAACTTGGCCACCAGGGTCCACACGTCAGCGCCATCGGCCTGGGCTGCATGGGCATGTCGGATTTCTACACCACGGGCACCGACGAGCGCGAATCCATCGCCACGCTCCACCGCGCCGTCGAGCTGGGCGTGACCCTGTTCGACACGGCCGACATGTACGGCCCGCACACCAACGAAGAACTGCTCGGGCGTGCCTTGCGCGGCAAGCGTGAAGGTATCTACCTGGCGAGCAAGTTCGGCCTGGTGCGCAGCGATGATCCGCATGCCCGGGGCGTCAATGGTCACCCCGAATACGTCCGGCAGTCGATCGATGGCAGCCTCAAGCGCCTGGGTACCGATTACCTCGATCTCTACTATCAGCATCGCATCGACCCACAGGTACCCGTCGAAGAAACCATCGGCGCCATGGCCGAGCTGGTCAAGGCCGGCAAGGTCCGCCACATCGGGATTTCGGAGGCCAGCGCCGAGACCATCCAGCGGGCCCATGCCGTGCATCCGTTGGCAGCGGTGCAAAGCGAATACTCGCTGTGGTCCAGGGAGCCGGAACACAACGGCGTGCTCGACACCTGCCGACGCCTGGGGATCGCTTTTGTCGCTTACAGCCCCCTGGGCCGCGGCTTTCTGACGGGCGAGCTGAAGACCCCTGATGACTTTGCCGCAGACGACTACCGCCGCTTCAACCCGCGTTTCCTCGCCGACAATTTCCAGCGCAACCTGGCCTTGGTCGAACGGGTCAAGGCGTTGGCTGAGCAGAAGCAGATCAGCGCCTCGCAACAGGCCTTGGGCTGGGTCCTGGCCCAGGGCAGCAATGTGATTCCGATCCCGGGCACCAAGCAGCGCAAGTACCTGGAAAGCAACGTCGCCGCCGCCAGCGTCTTCCTGAGCGCCGAGGAGCTGGCTCACCTGGATGCGATTTTCGGCGCCCAAGGCGCGGTGGCCGGCGAACGCTACAGCGCCGAGGTGATGACCTTGCTCGACGGCTGAMITRQLGHQGPHVSAIGLGCMGMSDFYTTGTDERESIATLHRAVELGVTLFDTADMYGPHTNEELLGRALRGKREGIYLASKFGLVRSDDPHARGVNGHPEYVRQSIDGSLKRLGTDYLDLYYQHRIDPQVPVEETIGAMAELVKAGKVRHIGISEASAETIQRAHAVHPLAAVQSEYSLWSREPEHNGVLDTCRRLGIAFVAYSPLGRGFLTGELKTPDDFAADDYRRFNPRFLADNFQRNLALVERVKALAEQKQISASQQALGWVLAQGSNVIPIPGTKQRKYLESNVAAASVFLSAEELAHLDAIFGAQGAVAGERYSAEVMTLLDGPGPT0009140_364DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009140-ydbC-K05275NANA
D1-35_03840924dmlR_19HTH-type transcriptional regulator DmlRATGGATCGATTACAGGCTATGCAGGTGTTCCGGCGCATCGTCGAACTGGGCGGTTTCGGCAAGGCCGCCGACGATCTGGGTTTGCCCCGGGCTACCGTCAGCCTGTTGATCCAGCAACTGGAGGGGCATCTGGGGGTGCAACTGCTACAGCGCACCACGCGGCAGGTGCGCGCAACCCTGGATGGCGAAGCCTATTACCAGCGCTGCGGCCAGTTGCTCGATGAACTGGACGACTTGGAAACCTCGCTGTCCGCGCAACGCAGCCAACCTCGCGGCACCCTGCGCGTGGACATGCCCATCGCCTTCGGCTGCACATGGATCGTGCCGAACCTGGCGGACTTCTATCGGCGCTATCCGCAATTGAAACTGGACCTGGGGTTTCATGACCGGTTGGTTCATCTGCAGCGTGAAGGGGTGGATTGCGCCATCCGGGCCGGCGCCATCAGCGACCAGGCGCTGGTGGCGCGACCGATCGTGCGGTTGTGCCAGGTGACTTGCGCCAGCCCTGGCTACCTGGCTCGTTCAGGTACGCCTGTGGCGCTGGAGGACCTGGCAGAGCACCGGGCCATCGGTTTCGCGTCCGGTAACGGTCGTTATTTCCCGTTCGAATTCGAAGTGGCAGGGCAGGTACGAGAGTTGCAAATGTCATCCGAGCTGACCGTCAACAACGCCGACGGCTACGTAACGGCTTGTGAGGCAGGATTCGGCCTGATCCAGGCGCCGCGTTACCACGTGCAACGGCAACTCGCCGAGGGGCGGTTGGTCGAGGTGCTGAGCGATCATCCGGTGCCGTCATGGCCAATTTCAGTGGTCTACCCGCCTCATCGACAGCTGTCGCCGAGGGTGAGGGTGTTCATCGATTGGCTGATCGAGTTGCTGCATGGCGCGGCGGATGCGGACGAGGCCCTGATGGTGCGGGTTTAAMDRLQAMQVFRRIVELGGFGKAADDLGLPRATVSLLIQQLEGHLGVQLLQRTTRQVRATLDGEAYYQRCGQLLDELDDLETSLSAQRSQPRGTLRVDMPIAFGCTWIVPNLADFYRRYPQLKLDLGFHDRLVHLQREGVDCAIRAGAISDQALVARPIVRLCQVTCASPGYLARSGTPVALEDLAEHRAIGFASGNGRYFPFEFEVAGQVRELQMSSELTVNNADGYVTACEAGFGLIQAPRYHVQRQLAEGRLVEVLSDHPVPSWPISVVYPPHRQLSPRVRVFIDWLIELLHGAADADEALMVRVPGPT0028940_466DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-CHLORAMPHENICOL|TRIMETHOPRIN_EFFLUX_PUMP_BpeEF-OprC,PGPT0028940-bpeT-K18900NANA
D1-35_03841429hypothetical proteinATGACCGTTACCACCCATCCCCTCTACCGAAGCACGCCAGGTCCGCTTCACGCGGTCCTGCTCGCCGGTAGCGTTCCGTTGTTTCTCGGGGCGCTGCTCAATGACATCGCGTACTACAAGACCTACCAGATCCAATGGAGCAATTTCGCCTCCTGGCTGATTGCCGGCGGACTGCTGTTCTGTGGGTTGGCATTGCTGTTTGCGCTGGTCAATCTGATCCGTGCGGAGCGCAAGGGCGGGCGTCCGGTGGTGTATTTCCTGCTATTGCTGGTGACCTGGGTACTCGGGCTGATCAATGCCTTCGAACATGCCAAGGACGCCTGGGCCATCATGCCCCAGGGCCTGGTTCTGTCGGTCGTCGTGACCCTGTTGGCCTGCGCTGCGGCGTGGGTCGGGCTGACCAATCTGCGTTCCGGAGGTGAGCAATGAMTVTTHPLYRSTPGPLHAVLLAGSVPLFLGALLNDIAYYKTYQIQWSNFASWLIAGGLLFCGLALLFALVNLIRAERKGGRPVVYFLLLLVTWVLGLINAFEHAKDAWAIMPQGLVLSVVVTLLACAAAWVGLTNLRSGGEQNANANANANA
D1-35_038421293hypothetical proteinATGAAACCGCGCATCGCATTGACAGCCCTGAGCATGGCGTTGTTGTTGAGCGCCTGTGGAGGAGAAGGGGACGCCACTCAGGCACGCGGTCCGGACCCCAAATTGCCGGAGCCCCAGCGCGGGTTGTTGCCCAGCATGAAAATCGCCGAGCCGGTGCCCTGGGGCGAGCAGAAACCGACGGTACCGCAAGGCTACGACATCACCGCTATCGCCACCGATTTAAAGATTCCGCGCCAGACCCTGGTACTGCCCAACGGCGATATCCTGGTGGCCGAAGGCCGTGGCGGAAACGCTGCGAAGCTCAAGCCCAAGGATGTGATTGCCAGTGTCATCAAGGCCAAGGGCAACACCCAGGTCAAGGGCGGCAATCGCCTGACGCTGTTGCGCGACGCTGACGGTGACGGCACCTACGAGCTCAAGACGGTCTTCGCCGAAAACCTCAACGCACCCTATGGCCTGGCGTTTGCCGATGGCAAGCTGTACGTGGCCAACCAGGATGCACTGGTTCGCTTCGATTATCAGGAAGGCCAGACCAAGGCCAGTGGGGCGCCCACCAAGGTCACCGACCTGCCGTCCGAGATCAACCACCACTGGACCAAGGCGCTGGCCATCAGTCCCGACGGACGCTCGCTGTACGTTGGCATCGGTTCGAACAGCAACGTCACCGAGCGCGGCATGGAAGCCGAAATCGACCGGGCCATGGTCTGGCAGATCGACGCCGAGACAGGCGCCCACAAACCCTATGCGACAGGTCTGCGCAACCCGACGGCGTTGAAGGTCGAGCCTGGCTCCGGACAGTTGTGGGCGGTGGTCAACGAGCGTGACGAGTTGGGTCCCGACCTGGTGCCGGATTACCTGACATCGGTGCGTGAAGGCGCGTTTTATGGCTGGCCCTACAGCTATTGGGGGCAGAACGTCGACCCGCGCGCACAACCGCAGGATCCGCAAAAAGTCGCCGCTGCGGTCAAACCCGACTACAGCCTCGGGTCCCACGTCGCGGCACTCGGTGTCGATTTCTCCATCCCGGCCATGGGCGAGCAATTTGCCGAAGGCGCCTTCGTGGGTGAGCACGGCAGTTGGAACCGCGACCAGCCGGTGGGCTACAAGGTCATTTTCGTGCCGTTTCGCAATGGTCGTCCCGCTGGTGAACCGGTGGACTTCGCCACGGGTTTCCGCGGCGACGATGGCAAGACCCGTGGGCGGCCCGTGGGTGTGACCGTTGATCCGCGCGGTGCGTTGATCATCGCCGATGACCTGGCGAACACCGTGTGGCGGGTGACTCGCAAGCCATGAMKPRIALTALSMALLLSACGGEGDATQARGPDPKLPEPQRGLLPSMKIAEPVPWGEQKPTVPQGYDITAIATDLKIPRQTLVLPNGDILVAEGRGGNAAKLKPKDVIASVIKAKGNTQVKGGNRLTLLRDADGDGTYELKTVFAENLNAPYGLAFADGKLYVANQDALVRFDYQEGQTKASGAPTKVTDLPSEINHHWTKALAISPDGRSLYVGIGSNSNVTERGMEAEIDRAMVWQIDAETGAHKPYATGLRNPTALKVEPGSGQLWAVVNERDELGPDLVPDYLTSVREGAFYGWPYSYWGQNVDPRAQPQDPQKVAAAVKPDYSLGSHVAALGVDFSIPAMGEQFAEGAFVGEHGSWNRDQPVGYKVIFVPFRNGRPAGEPVDFATGFRGDDGKTRGRPVGVTVDPRGALIIADDLANTVWRVTRKPNANANANANA
D1-35_03843765bacC_1Dihydroanticapsin 7-dehydrogenaseATGAGCGATATCAAACACAACATTCCCCACGAAGTTGAAGGCAAGGTCGCCCTGGTCACTGGCGCCGCCAGCGGTATCGGCAAGGCCATTTCCCTGTTGCTACACGCCCGTGGCGCCAAGGTGATCGCCGAGGACATCAACCCCGCCGTCAACGAGCTGGCCCGCCCGGGACTGGTGCCGCTGGTGGCTGACATTACCGAGGACGGCGCCGCCGAGCGCGCGGTGGGCCTGGCGGTCGAGCAGTTCGGCCGGTTGGATATCCTGGTCAATAACGCCGGCATCATCATCAACAAACTCGTGGTCGACATGACGCGCCAGGATTGGGAACGCATCCAGGCCGTCAACGCCACCGCGGCGTTCCTGCACTCACGCGAAGCGGTCAAGGCAATGATGCCCAACAAGTCCGGGGCCATCGTCAACATTGCCTCCTATGCATCCTATTTCGCTTTCCCGACCATCGCCGCCTACACCGCGTCCAAGGGCGCCCTGGCGCAGTTGACCCGCACGCTGGCGCTGGAAGCCATCGAGCATGGCATCCGAGTCAATGCGGTCGGCGTTGGCGATGTGGTCACCAATATCCTCAATGACGTGGTCGAGGACGGCCCGCAGTTTCTCGCCCAGCACGGCGAAGCCGCCCCCATCGGCCGGGCCGCGCAACCTGAAGAAATCGCCGAGGTGGTCGCCTTCCTGGCCTCGGACCGTGCCAGCTTCATGGTCGGCTCGGTGGTCATGGCTGATGGCGGCATGACAGTCACCGCCGGCTGAMSDIKHNIPHEVEGKVALVTGAASGIGKAISLLLHARGAKVIAEDINPAVNELARPGLVPLVADITEDGAAERAVGLAVEQFGRLDILVNNAGIIINKLVVDMTRQDWERIQAVNATAAFLHSREAVKAMMPNKSGAIVNIASYASYFAFPTIAAYTASKGALAQLTRTLALEAIEHGIRVNAVGVGDVVTNILNDVVEDGPQFLAQHGEAAPIGRAAQPEEIAEVVAFLASDRASFMVGSVVMADGGMTVTAGPGPT0014705_1052DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0014705-gdh|ycdF-K00034NANA
D1-35_03844840fabG_83-oxoacyl-[acyl-carrier-protein] reductase FabGATGAGCAATCGTAAAACCTGGCTGGTCACCGGCTGTTCCACTGGTTTTGGTCGATACATTGCCGAGCATCTGCTCAAGCAGGGTGAGCGCGTGGTCGTCACCGCCCGCAAAGTCGAGCAAGTGCAGGACCTGGGCCGCCTCGGCGAAGCTCTGGTGCTGCCGCTCGATGTCACTGACCCACAGCAGGCCCGCGACGCAGTGGCCGCCACCGAGCGAGTCTTTGGTAAGGTCGACGTGTTGATCAACAACGCCGGTATCGGTTACTTCGCCGCCGTCGAGGAGACCGATCCGCAGGCAGCGCGTCGGCTTCTGGAGGTCAACCTGGTCGGTACCGCGAACATGATCCACGCGGTGCTGCCTGGCATGCGCCGGCGGCGGCAGGGGATGATCGTCAACCTGACGTCCATCGGCGGGCTCGCCGGCTTTCCTGCGGTGGGTTATTACTGCGCGAGCAAGTTTGCTGTGGAAGGGCTCAGCGATGCCTTGCGGGCCGAAGTCGAACCGCTCGGCATCCGGGTCATGACCGTGCAACCCAGCGCGTTTCGCACCGAGTGGGCCGGCTCGGCAGCCGAGGTATGCGAGTCGATCGACGACTACGACGCCACCGCAGGCGCCGCACGCCGCGCTTATCACGTCTCGGTCGGCAGGCAGGAAGGCGACCCGGCGCGTGCGGCCGCGGCGATCTATACCGCGGTCAATGCCGAGCAGCCGCCTCAGCGGTTGCTGTTGGGCAATCGCGCGTTCGAAGTGGCGATGGCCAAGCTGTCCGCCATGCAGGAAGAGTTTCGCGCGTGGGAGGCCACGGCGCGTGGAGCTGATTTTCCTGGTCTGGAGCATTGAMSNRKTWLVTGCSTGFGRYIAEHLLKQGERVVVTARKVEQVQDLGRLGEALVLPLDVTDPQQARDAVAATERVFGKVDVLINNAGIGYFAAVEETDPQAARRLLEVNLVGTANMIHAVLPGMRRRRQGMIVNLTSIGGLAGFPAVGYYCASKFAVEGLSDALRAEVEPLGIRVMTVQPSAFRTEWAGSAAEVCESIDDYDATAGAARRAYHVSVGRQEGDPARAAAAIYTAVNAEQPPQRLLLGNRAFEVAMAKLSAMQEEFRAWEATARGADFPGLEHNANANANANA
D1-35_03845951hypothetical proteinATGCCGTCATCAGGACTAGCGACGAACGTCTCTCACCGACCAAGGCTTGCGGATCTCAAACCGCTTGTCCAATCCTTGCGGGCAGCTCCCGCTGCCCTGCGCAGACAGGCGGAACCCAGCGTCACTCCGGCAACACAGCTGGAGAATCGAGAGGGTTATCGCAGCGACTTCCTTGGCGATTTCCTGGTGCCCTGGCCGTCCCTGGATGCAGCCCAGGCAGAGGACGTCCACCCGACGGGCGCAGCCATGAATCGCCTGGATTACACCCATTTCTCCATCATCATGTCTCGAAGTCGACGATTGGCGCTCGTGGCGGGAGTCAATATCGATGGCGCCAGCAGTGTCGAAGTCGATCGCGGGCGCGATGCCTGGGCCTATGACGGGCGACTGCCCAGCGATGCGCAGCTCGGCGAAGAGCTCTATGCCGACAACCTGCTGGATCGCGGCCATCTGGTGAGGCGCCAGGACCCCAACTGGGGCCAGGAGGCGCACACGGCCAACACCGACACCTTCCACTTCACCAACTGCTCGCCACAGATGGCCGCCTTCAACCAGAAAACCTGGCTGGAGCTCGAGGACTATATCCTCGACAACACTCGCCGCTGGAAAGCCCGGGCGACGGTATTCACCGGGCCGTTGCTGCGCGAAGATGATCCGACCTATCGGGGCGTGCAGATCCCCACCGCGTTCTGGAAAGTCGTGGCATTCCTCGGTGACGACGGCAAGCCCTCGGCCAGCGCCTACATGATTGACCAACGCCGGGAACTGGGGAAACTGGAACTCCTGTTCGGAGCGCTCAAGACCTACCGACACAGCGTTGATCAGATCGAAACGCTGACGGGTGTTCGTTTTGGTGATCTGGCCGACTACGACGGTTTCTCGAACGAGGAACGCTTGACCGGAACACGGATTGAAGCGGCCATCCGCGGGCCCGAAGATATCCTTCTGTAAMPSSGLATNVSHRPRLADLKPLVQSLRAAPAALRRQAEPSVTPATQLENREGYRSDFLGDFLVPWPSLDAAQAEDVHPTGAAMNRLDYTHFSIIMSRSRRLALVAGVNIDGASSVEVDRGRDAWAYDGRLPSDAQLGEELYADNLLDRGHLVRRQDPNWGQEAHTANTDTFHFTNCSPQMAAFNQKTWLELEDYILDNTRRWKARATVFTGPLLREDDPTYRGVQIPTAFWKVVAFLGDDGKPSASAYMIDQRRELGKLELLFGALKTYRHSVDQIETLTGVRFGDLADYDGFSNEERLTGTRIEAAIRGPEDILLNANANANANA
D1-35_038461350oprD_5Porin DATGTCGCCCGCATCCACAAACATGATTGTACCCGGGCCAGCACCGGTCGCCCTGAAGCCGATCTGGCTGCTGGCTTTGCTGGCGGGAAGCGCACCCGCACTGGCAGGACAAACCGCCGAGGGTTTCCTGCAAGGGGCGACATTTGAGGTGCTGAGCCGCAACTTCTACCTCAACAATGACTACCGGTCCCCGACCCCGGCGGGCAAGAGCTACAAGGCGGAATGGGCCCAGGGCTTCATCGCCACGTTCGAGTCCGGCTTCACGCCCGGCATCGTCGGTGCAGGCATCGACGCCCATGGGTTCGTCGGTTTGAAACTGGACGGCGGCAAGGGCCACTCGGGGACGGGACTGCTGCCGCTGGACGAAGACGGGCGCAGTGAGGACGAATACTCCAGCGCCGGCGCTGCACTGAAATTCAACACCTCGCGAACCACCTTGGCGCTGGGCGAAATGACCGTCGCGACACCGGTATTCGATACGGCTGACAAGCGCCTGCAACCGGAATACGCCAGCGGCGTGTTGTTGTCGAGCCAGGAAATCGATGAGGTCGATTTGCAGGCGGGTCATTTCAACGCCTTCAAGAATCAGGATGCCTCCACCGCCAAAGGTGATTTCTCCGGTTATGGGGCAAGTACCCGCCACGGCAGTATCGACTTCATCGGTGCCGACCTGTTCAGCGGCCGCACGGTGGGCGGCGCGCTCTATGCTTCCGAGCTGAGCGACACCTGGCGCCAGTACTACGGCAATCTGCATTCGACGCTGGGCCAGCTGTTCCTCGACGGTAACGTCTACTACACCCGCGACCATGGCCAGGCCAGCGCAGGCGCCATCGACAACACGGCCTTCAGCCTGTCCGGCAAATATCGACATGAAGCCCAGGCATTCACCTTGGCGTACCAGAAAATCAACGGCGACACGCCTTTCGATTTCGTTGGTGGTGACTCCATCTACCTGGCCAACTCGATCAAATACGCTGATTTCAATGGCCCGGGCGAACGCTCCTGGCAGGCTCGTTATGACCTCGACCTGGGCACGTTGGGCATCCCCGGCTTGAGTTTCATGGCCCGCTATGTAACCGGCGACGGGATAGATGGCAGCCATGCGCCACGGGGCGGCGCCTACAACCCGTTCGACAGCGACACCGGAACCTACAGCCCGCAGCAGGGGGACGGCGGCCGTCATTGGGAGCGCGACCTGGACCTGCATTACGTCGTGCAATCAGGGCCGGCCAAGGACCTGTCGCTGCAACTGTCCCACGTCACCCACCGCGCCAACAGCGCCCAGGCCGGCGATGACATCGACAGGCTGTACGTCGTCATCCAGTACCCGCTGAAGCTCGGACCGTTCTGAMSPASTNMIVPGPAPVALKPIWLLALLAGSAPALAGQTAEGFLQGATFEVLSRNFYLNNDYRSPTPAGKSYKAEWAQGFIATFESGFTPGIVGAGIDAHGFVGLKLDGGKGHSGTGLLPLDEDGRSEDEYSSAGAALKFNTSRTTLALGEMTVATPVFDTADKRLQPEYASGVLLSSQEIDEVDLQAGHFNAFKNQDASTAKGDFSGYGASTRHGSIDFIGADLFSGRTVGGALYASELSDTWRQYYGNLHSTLGQLFLDGNVYYTRDHGQASAGAIDNTAFSLSGKYRHEAQAFTLAYQKINGDTPFDFVGGDSIYLANSIKYADFNGPGERSWQARYDLDLGTLGIPGLSFMARYVTGDGIDGSHAPRGGAYNPFDSDTGTYSPQQGDGGRHWERDLDLHYVVQSGPAKDLSLQLSHVTHRANSAQAGDDIDRLYVVIQYPLKLGPFPGPT0028135_31DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0028135-oprD-K18093NANA
D1-35_03847693bluFBlue light- and temperature-regulated antirepressor BluFATGGCGTTCCAACCAATCTTCAATGTCCGCACGCGCACAGCCTTTGCCTATGAGGCACTGGTCAGAGGCGTGAACGGCGAATCGGCAGGTTATATCCTCGGGCTGGTGAATGACGGCAACCGTTACCGGTTCGACCAGGCCTGCCGGGTGAAAGCGATTGAGGAGGCTGCCAGGCTGGGTATCCTCGACATTCCCGGTTGCCTGCTGAGCATCAATTTCCTGCCCAACGCCGTGTACCGGGCCGAGACCTGCATACGGGCGACATTGGAAGCTGCGCGTCAAAGCCGCTTTCCGCCGGACAGGCTCATGTTCGAGGTCACGGAAGGCGAAAGGGTGGACGACCCCGAGCACCTCAAGTCGATCTTTCTGGAGTACGAACGTCAGGGTTTCACTACCGCAATCGATGATTTCGGTTCTGGCTACTCGGGGCTCAATCTGCTTGCGCTGTTCCAGCCCCAAGTGCTGAAGATCGACATGGCGTTGACCCGAGGCATCGACCAGGATCCGGTCAGGCGCGCGATTGTCGAGGGGATCATCCTGGTCGCCGGCCGGCTGGGGATTACCGTCATCGCCGAGGGCGTCGAGACGCGAGAAGAAAGCGCGACGCTGCTGGAGTTGGGCATCGAGCTGATGCAGGGGTATCTCTATGCGCGGCCCGAGACGGGGCGGCTTGCGGTGGGCAGGTTCGATTAGMAFQPIFNVRTRTAFAYEALVRGVNGESAGYILGLVNDGNRYRFDQACRVKAIEEAARLGILDIPGCLLSINFLPNAVYRAETCIRATLEAARQSRFPPDRLMFEVTEGERVDDPEHLKSIFLEYERQGFTTAIDDFGSGYSGLNLLALFQPQVLKIDMALTRGIDQDPVRRAIVEGIILVAGRLGITVIAEGVETREESATLLELGIELMQGYLYARPETGRLAVGRFDPGPT0026255_256DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-BF-BLUE_LIGHT|COLD|STARVATION_SIGNALLING,PGPT0026255-bluF|ycgF-K21973NANA
D1-35_038481752QRSL1Glutamyl-tRNA(Gln) amidotransferase subunit A, chloroplastic/mitochondrialATGTTCTTCGTCAGCCGAAGCGGTAACAGCATGATTGAAATCACCGAAGTCTCCATTGCCCAACTCCGGGCCGCGCTGGAATCCGGCCAGACCACGGCGGTCGAGCTGGTCCAGGCCTATCTCGCCCGGATCGACGCCTATGACGGTCCCGACACGCCTACCGCCCTCAACGCGGTGGTGGTTCGCAACCCTTCTGCGCTGGACGAGGCCAAGGCGTCCGATGCCCGTCGGGCCAAGGGCCAGACTCTGGGTCCCCTCGATGGCATTCCCTATACCGCCAAGGACAGTTATCTGGTGAAGGGGCTCACCGCTGCGTCTGGAAGCCCGGCCTTCAAGGACCTGGTTGCCCATCGCGACGCCTTCACCATCGAACGCCTGCGTGCCGCCGGGGCGATCTGCCTGGGCAAGACCAATATGCCGCCGATGGCGAACGGCGGCATGCAGCGCGGTGTTTATGGCCGCGCCGAAAGCCCTTATAACGCGGATTACCTCACCGCGCCTTTTGCCTCCGGTTCGTCGAACGGCGCGGGCACTGCCACCGCTGCCAGTTTCGCCGCCTTCGGCCTCGCTGAAGAAACCTGGTCCAGCGGACGCGGCCCGGCCTCCAACAATGGCTTGTGTGCCTACACGCCCTCGCGCGGGGTGATCTCGGTGCGCGGCAACTGGCCCCTGACGCCGACGATGGACGTTGTCGTGCCCTACGCCAGGACCATGGCCGACCTGCTGGAAGTGCTGGAAGTGGTGGTGGCGAACGACCCCGACCCCCGTGGCGACCTGTGGCGCCTGCAACCCTGGGTGCCGATTCCGTCCGTCGATTCGGTCCGTCCCGCCTCGTACCCGAACCTTGCCGCCAATCCCGAAGCGTTGGCCGGCATCCGTTTCGGCGTGCCGCGCATGTACATCAATGCCGACCCCGAGGCGGGCACCGCTGAAAAGCCAGGCATTGGCGGCCCGACCGGGCAACGAATCATCACTCGCCCGTCGGTGATCGCCCTCTGGGAAGCCGCGCGCCAAACCTTGGAGGCCCAGGGCGCCGAAGTGATCGAGGTGGATTTCCCGCTGGTGTCCAACTGCGAGGGCGATCGCCCTGGCGCGCCGACGGTGTTCACCCGCGGCCTGGTGTCCAAGGAGTTCCTGCACCATGAACTCTGGGACCTGTCGGCCTGGGCGTTCGACGATTTCCTGCGGGCCAACGGCGATCCGAAACTCAATCGCCTGGCCGACGTCGACGGACCGCTGATTTTCCCTCACGACCCGGGCACCCTGCCCAATCGCGAGGATGATCTTGCCGCCGGCATGGACGAATACGTGAAGATGGCCCAGCGCGGCATCACGCCGTGGGATCAAATCCCGACGTTGCCCAATGGCTTGCGCGGCCTCGAAGAGACACGCCGGATCGATCTTGAAGACTGGATGGAGCGGCTCGGGCTGGATGCGGTGATCTTCCCTACCGTGGCGGACGTCGGGCCCGCCGACGCGGACGTCAACCCGGAGTCAGCCGACATTGCCTGGAGCAATGGCGTATGGGTCGCCAACGGCAACCTCGCCATCCGCCACCTCGGCGTGCCAACCGTCACCGTGCCGATGGGCGTCATGGCGGACATCGGCATGCCGGTCGGGCTGACGTTCGCGGGCCGTGCCTATGACGATTCGAAACTGCTGCAGCTGGCCTCGGCATTCGAGTCGACGGGCTCGAAACGGATGATCCCGCCGCGGACTCCGCCGTTGTCTGGTGATCATCCGCGCGCGTGAMFFVSRSGNSMIEITEVSIAQLRAALESGQTTAVELVQAYLARIDAYDGPDTPTALNAVVVRNPSALDEAKASDARRAKGQTLGPLDGIPYTAKDSYLVKGLTAASGSPAFKDLVAHRDAFTIERLRAAGAICLGKTNMPPMANGGMQRGVYGRAESPYNADYLTAPFASGSSNGAGTATAASFAAFGLAEETWSSGRGPASNNGLCAYTPSRGVISVRGNWPLTPTMDVVVPYARTMADLLEVLEVVVANDPDPRGDLWRLQPWVPIPSVDSVRPASYPNLAANPEALAGIRFGVPRMYINADPEAGTAEKPGIGGPTGQRIITRPSVIALWEAARQTLEAQGAEVIEVDFPLVSNCEGDRPGAPTVFTRGLVSKEFLHHELWDLSAWAFDDFLRANGDPKLNRLADVDGPLIFPHDPGTLPNREDDLAAGMDEYVKMAQRGITPWDQIPTLPNGLRGLEETRRIDLEDWMERLGLDAVIFPTVADVGPADADVNPESADIAWSNGVWVANGNLAIRHLGVPTVTVPMGVMADIGMPVGLTFAGRAYDDSKLLQLASAFESTGSKRMIPPRTPPLSGDHPRAPGPT0006115_510DIRECT 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
D1-35_038491005gap3COG0057Glyceraldehyde-3-phosphate dehydrogenase 3ATGACGATCAAAGTAGGCATCAACGGTTTCGGACGCATAGGTCGCCTTGCCTTGCGCGCAGCCTGGGGCTGGCCGGATTTCGAGTTCGTGCAGGTCAACGATCCGGCGGGCGACGCGGCGACCCATGCGCATCTATTGAACTTCGATTCGGTGCACGGCCGCTGGAACCGCCAGGCCGACGCCGATGGCGCCAGCATGATCATCGAGGGGCAGCGCATCAAGGTCACAGCCAACAAAGCGATCGCCGACACCGACTGGTCGGGCTGCGATGTGGTGATCGAGGCCAGCGGCAAGATGAAGACGGTCGCGGTGCTCCAGGCGTATCTCGATCAGGGCGTGAAGCGCGTGGTGGTCAGTGCCCCGGTGAAAGAGCAAGGCGCCTTGAATATCGTCATGGGGGTCAATCACCAGCAGTTCGAGCCGGACCGGCATCGCATCGTGACGGCGGCTTCCTGCACCACCAACTGCCTGGCACCCGTGGTCAAGGTAATCCACGAGAAGCTCGGCATCCGTCACGGCTCGATCACCACGATCCATGACCTGACCAATACCCAGAGCATCCTCGACCAGCCGCACAAGGACCTGCGCCGCGCCCGGGCGTCGGGCATGAGCCTGATTCCCACCAGCACCGGCTCGGCCACCGCTATCGCCGAAATCTTTCCCGAGCTGCGCGGGCGCCTCAATGGCCATGCCGTGCGGGTGCCGTTGGCCAATGCGTCGCTGACCGATTGCGTGTTCGAGGTCGAGCGAGCTACCACGGTGGAGCAAGTGAACGGTTTTCTCAAGGACGCAGCCGAGCACGAGCTCAAGGGCATCCTCGGTTTTGAGGAGCGCCCTCTGGTGTCCATCGACTACCGCACCGATCCGCGCTCGTCGATCATCGATGCGCTGTCGACCCTGGTTGTCAACGGCACCCAGGTCAAGCTTTATGCCTGGTACGACAACGAATGGGGCTACGCCAACCGCACCGTCGAACTGGCCCGGATGGTTGGCCTGGCTGTCTGAMTIKVGINGFGRIGRLALRAAWGWPDFEFVQVNDPAGDAATHAHLLNFDSVHGRWNRQADADGASMIIEGQRIKVTANKAIADTDWSGCDVVIEASGKMKTVAVLQAYLDQGVKRVVVSAPVKEQGALNIVMGVNHQQFEPDRHRIVTAASCTTNCLAPVVKVIHEKLGIRHGSITTIHDLTNTQSILDQPHKDLRRARASGMSLIPTSTGSATAIAEIFPELRGRLNGHAVRVPLANASLTDCVFEVERATTVEQVNGFLKDAAEHELKGILGFEERPLVSIDYRTDPRSSIIDALSTLVVNGTQVKLYAWYDNEWGYANRTVELARMVGLAVPGPT0018000_5699DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0018000-gapA-K00134NANA
D1-35_038501206hypothetical proteinATGAAAGCCTTGTCAGCCTTAGCGCCGCAAGTGCGACAGTACCTGCTCGTCACCGGTAATTACTGGGCTTTTACCTTGACCGACGGCGCCCTGCGGATGCTGGTGGTGCTGCACTTCCACGCGTTGGGCTACAGCCCGTTGCAGATTGCCGCGCTGTTCCTGTTTTACGAACTCTTCGGCGTGGTCACCAACCTGCTGGGCGGCTACCTCGGTGCCCGGCTGGGCCTGAATCGGACGATGAACATCGGCCTGGGCCTGCAAGTGGTGGCGCTGCTGATGCTGACGGTTCCGTCCGCCTGGCTGACCATCGCCTGGGTGATGATGGCCCAGGCGCTTTCGGGAATCGCCAAGGACCTGAACAAGATGAGCGCCAAGAGCTCCATCAAGCTTCTGGTGCCTGACGGTGAGCAGGGCAGGCTTTATCGCTGGATAGCGATCCTCACCGGCTCGAAGAACGCGCTCAAAGGCGTCGGCTTTTTTCTCGGTGGGGCGTTGCTCGCATGGATCGGTTTCCAGGGCGCATTGTTGGCGATGGCCGCCGTGTTGGCACTGATCTGGGGCGGTAGCCTGATCCTGCTGAAGAAGGACCTGGGCAAGGCCAAGGCCAAGCCCAGATTTCGCGACATCCTTTCCAAGAGCCGGGCGATCAATATTTTGTCGGCCGCGCGAATGTTCCTGTTCGGCGCCCGGGATGTCTGGTTCGTGGTGGCCCTGCCGGTCTACCTGAGCAGTGTCTACGGCTGGAATTTCTCGACCGTGGGCGGATTTCTCGCCGCGTGGGTCATCGGCTACGGCATCGTGCAATCCCTGGCGCCGAACATCACCGGCAAGAAACGCGGGCAGGTGCCGGATGGGCGCGCCGCGTTCCTCTGGGCGCTGGCGTTGGCGGGCTTGCCGGCGGCGATGGCCCTGGGGCTGTCACAACAGGCGATGCTGTTGGGCGGGCTGATGGTCTTTGGCGGGCTGTTCGCGGTGAATTCTTCCCTGCACAGTTATCTGATCGTGTCGTACGCCAAGGAGGACGGCGTGTCGCTGGACGTGGGTTTCTATTACATGTCCAACGCCATCGGCCGGCTGGCCGGGACGCTGCTTTCAGGTTGGGTCTACCAAGGGTACGGGCTGGCGGCATGCCTGTGGATTTCCAGTGCATTCGTGTTGCTCGCTGCCCTGATTTCGTTGGCGTTGCCTCGTCACGCAACGCACTGAMKALSALAPQVRQYLLVTGNYWAFTLTDGALRMLVVLHFHALGYSPLQIAALFLFYELFGVVTNLLGGYLGARLGLNRTMNIGLGLQVVALLMLTVPSAWLTIAWVMMAQALSGIAKDLNKMSAKSSIKLLVPDGEQGRLYRWIAILTGSKNALKGVGFFLGGALLAWIGFQGALLAMAAVLALIWGGSLILLKKDLGKAKAKPRFRDILSKSRAINILSAARMFLFGARDVWFVVALPVYLSSVYGWNFSTVGGFLAAWVIGYGIVQSLAPNITGKKRGQVPDGRAAFLWALALAGLPAAMALGLSQQAMLLGGLMVFGGLFAVNSSLHSYLIVSYAKEDGVSLDVGFYYMSNAIGRLAGTLLSGWVYQGYGLAACLWISSAFVLLAALISLALPRHATHPGPT0004756_41DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ARSENIC_RESISTANCEARSENIC_RESISTANCE-ARSENIC_TRANSPORT,PGPT0004756-arsJ-NANANA
D1-35_03851732mngRCOG2188Mannosyl-D-glycerate transport/metabolism system repressor MngRATGAACGCCCTGTCCAGCGACGCCCGCCTGCCGCTTTATCAACGTTTGCGTGACCAGCTGGCGGAGCAGATCGCCAACAATCGCTGGCGTCCGGGGGAGGCGATTCCGACCGAGGCAGCGTTGTCAGCCGAATACCAGCTGTCCACCGGAACCGTGCGCAAGGCAATTGATGCCTTGGTCAGCGAGGGCATCCTGGAGCGCCAGCAAGGGCGGGGCACCTTCATTCGTCGTCCGCAGTTCCAGTCATCGTTGTTTCGTTTCTTTCGCTTTCAGTCGGCGTCCGGTGAACGCCGGGTTCCGCAGAGTCGCATCCTGTCTGTCGAGCCGGTGGCGGCGCCATCGGCGGTCGCGCAGGCCTTGGGGTTGCCGGTCGATGCGCCGGTGATCCGCATCGTCCGGGTGCGTCTGCTGGAAGTCGAGCCGGTGCTCGCCGAAGAAATCTGGCTGCCACGTGGCCGATTCCAGCCGTTGCTGGAGATCGACCTGAACCAGAAAGGGCCGTTGCTCTATCCCATCTACGAGGAAATCTGCGGGCAGGTGGTTGCCTATGCGCAGGAAACCCTCACGGCCGAATCGGTCAACGAGGTGCATGCGCGCCTGTTGCAGGTTCCGGTCCACAGCCCGGTGGTGGTGATCGAGCGCCTGGCCCGCGATTACGCCGGCAACCCGCTGGAATGGCGCCGTTCGCGCGGGCATGCCGAGCATTTCCGCTACAGCGTCGAAATCCGCTGAMNALSSDARLPLYQRLRDQLAEQIANNRWRPGEAIPTEAALSAEYQLSTGTVRKAIDALVSEGILERQQGRGTFIRRPQFQSSLFRFFRFQSASGERRVPQSRILSVEPVAAPSAVAQALGLPVDAPVIRIVRVRLLEVEPVLAEEIWLPRGRFQPLLEIDLNQKGPLLYPIYEEICGQVVAYAQETLTAESVNEVHARLLQVPVHSPVVVIERLARDYAGNPLEWRRSRGHAEHFRYSVEIRNANANANANA
D1-35_038521290naiP_2Putative niacin/nicotinamide transporter NaiPATGTTCAGTTGGTATCGCCAGATCACTTCGCGGGAGCGCAAGACGTTTTGGGCGTGTTTTGGCGGCTGGTCGCTCGACGCGCTGGAGGTCCAGATGTTCGGCCTGGCGATACCGGCGTTGATCGCCGCGTTCGCCTTGTCCAAGGGCGATGCGGGGCTGATCAGCGGCGTTACGCTGGTGACCTCGGCCCTGGGTGGCTGGGTCGGCGGGACGCTATCCGACCGTTATGGCCGGGTGCGCACGCTGCAATGGATGATCCTGTGGTTCTCGTTCTTCACCTTCCTGTCGGCGTTCGTCACGGGCTTTCACCAACTGTTGATCGTCAAGGCATTGCAGGGCTTTGGCATTGGCGGAGAGTGGGCCGCCGGCGCGGTGCTGATGGCCGAGACGATCAATCCGAAATACCGCGGCAAGGTCATGGGCACGGTCCAGAGCGCCTGGGCGGTGGGTTGGGGGCTGGCTGTCGGGGTCTTTACGCTGATCTACTCCCTGGTGCCGCAGGACATGGCCTGGCGGGTGATGTTCATCGTCGGCCTGCTGCCGTCGTTCCTGATCATCTGGGTGCGCCGCAACGTCGAGGAGCCGGACAGTTTCCAGCGGCTGCAAAAGGAACAGGCGATTCCGCAGAGCTTCTTCAAGTCCCTGGGCGGCATCTTTCGCCCGGAACTGATTCGCGTGACCCTGTTCGGCGGTTTGCTCGGGTTGGGTGCCCACGGCGGTTATCACGCGGTGATGACCTGGCTGCCGACCTTCCTCAAGACCGAGCGCAACCTGTCGGTGCTCAATTCCGGCGGCTACCTGGCGGTGATCATCTTTGCCTTCTGGTGCGGTTGTGTCGTCAGTGGCTTGCTGATCGATCGCATCGGCCGGCGCAAGAACATCCTGTTGTTCGCGCTGTGCTGTGTGGTGACCGTGCAGTGCTACGTCTTCCTGCCGCTGAGCAATACGCAGATGTTGTTCCTGGGCTTCCCGCTCGGCTTTTTCGCAGCCGGCATTCCGGCCAGCCTCGGGGCGTTCTTCAACGAGTTGTACCCGGCGGATGTACGCGGTGCCGGCGTCGGTTTCTGCTACAACTTCGGCCGGGTGCTGTCGGCGGTATTCCCGTTCCTGGTGGGGCACATGAGCGATTCCATGTCCCTGGGATCAGCCATCGGCATTGATGCGGGCATCGCCTACGGCGTGGCTGTGCTCGCGGCGCTTTGCCTGCCGGAAACCCGCGGCCGTAGCCTTGAGGCATCTGCGTCACCGGCGCCCGCCGTGGCATCTGCCAGCGAGAGCGCCCGCGCCTGAMFSWYRQITSRERKTFWACFGGWSLDALEVQMFGLAIPALIAAFALSKGDAGLISGVTLVTSALGGWVGGTLSDRYGRVRTLQWMILWFSFFTFLSAFVTGFHQLLIVKALQGFGIGGEWAAGAVLMAETINPKYRGKVMGTVQSAWAVGWGLAVGVFTLIYSLVPQDMAWRVMFIVGLLPSFLIIWVRRNVEEPDSFQRLQKEQAIPQSFFKSLGGIFRPELIRVTLFGGLLGLGAHGGYHAVMTWLPTFLKTERNLSVLNSGGYLAVIIFAFWCGCVVSGLLIDRIGRRKNILLFALCCVVTVQCYVFLPLSNTQMLFLGFPLGFFAAGIPASLGAFFNELYPADVRGAGVGFCYNFGRVLSAVFPFLVGHMSDSMSLGSAIGIDAGIAYGVAVLAALCLPETRGRSLEASASPAPAVASASESARANANANANANA
D1-35_038538074-sulfomuconolactone hydrolaseATGACCGGCATCGACTGCCATGCCCACGTGTTCAGCCGTGAGCTGGAGCTGGCTGCCGTGCGGCGTTACACACCGGACTATGACGCTACGCTTGCGCAATACCTGAACCATCTGCAGACCCATGGCTTGAGCCATGGTGTTCTGGTTCAGCCGAGCTTTCTCGGCACCGATAACCGCTACCTGCTCGCCGCGCTGGAACAGGCGCCGGAGCAACTGCGCGGGGTCGTGGTGGTGGAACCGGATATCAGCCGAGTCGAGCTGGAGGAGATGGCGCGGCTGGGCGTGGTCGGCGTTCGCTTGAACCTGATGGGCACGGCCTCGCCCGACTTTCGCGAAACCCTGTGGAAAGACTTCCTTGGCCACCTTGCCGAATTGGATTGGCATGTCGAATTGCATGCCCCGGTAGAACAACTGCCGGGACTGATTCGCCAGTTGATGCCGTTCGGCGTGCGCTTGGTGGTCGACCACTTCGGTCGCCCCGATGCGCGTTCGGGCCTTGATCAACCGGGATATCCCGAGCTGATGACGCTGGGCGCCAGTGGGCAAGTCTGGATGAAAGTTTCCGGCATCTATCGGCTGGCGGGCACCAAGCAGCAGAATCTGGCATTCGCCAGGTCCGCATTGGGCCTGCTGGAGCAGAGTTTCGGCGCCCATCGCCTGGTATGGGGCAGTGATTGGCCGCATACACAACACGAGGCAGTCATCGGCTTCGATACGGTGATGCGCCAGTTACAGGATTTGCAGATTTCTTTGCCGTTTATGCGCGCGCTTATGGTAGAAACGCCCCGCGCGTTGTTCCGATTTTGAMTGIDCHAHVFSRELELAAVRRYTPDYDATLAQYLNHLQTHGLSHGVLVQPSFLGTDNRYLLAALEQAPEQLRGVVVVEPDISRVELEEMARLGVVGVRLNLMGTASPDFRETLWKDFLGHLAELDWHVELHAPVEQLPGLIRQLMPFGVRLVVDHFGRPDARSGLDQPGYPELMTLGASGQVWMKVSGIYRLAGTKQQNLAFARSALGLLEQSFGAHRLVWGSDWPHTQHEAVIGFDTVMRQLQDLQISLPFMRALMVETPRALFRFNANANANANA
D1-35_038542184hypothetical proteinATGTCGAATATTGAAGCGTTTCCCAGGGAGACGCGTACACCGAGCGAATATGAAGGGCTCGTGGCGATGGGCGCAAACGCGCTCGACGCCATTCCTGGCGCGGTGTATCTGTGTGATCACAACGGCTGGCTGGTCCGCTACAACAGCGAGGCGGCCACGTTGTGGGGACGAGCGCCGGTATTAGGGGAGGGCGGCGACCGTTTTTGCGGTTCCTATCGCCTGTTCCTGGCCGACGGTACGCCGTTGGCATTGGAAGACTGCCCGATGGCCTGGGCGCTGGAGTCGGGTACGGCGACGCGCAACCAGGAAGTGTTTATCGAGCGTCCGGACGGCTCGCGGATCGTCGCGCTGGTGAACATCCGGGCCCTGAGGGATGAGCAGGGCACTATCCAAGGGGCGATCAACTGCTTCCAGGATGTCTCGGCGCACCACGCGATGGCCGACGAGCTACGGCGCAAGAATGCCGACCTGGAAGACTTCTTCGAAAACAGTGCGGTCGGCCTGCACATCGTCAGCGGCGAAGGCACCATTGTGCGTGCCAACAAGGCTGAGTTGGCCTTGCTCGGTTATTCGGCGCAGGAGTACATCGGCCGCCACATCACCGAGTTCCATGTCGATGAGCCGGTCATCGGCGACATCCTGAGCAAATTGAGCAACGGCGAATGCCTGGAAGACTATCCGGCTCGCCTTCGAGCCAAGGATGGTTCGATCAAGCATGTCACCATCACCTCCAACGGGCGATTCGAGGACGGCAAGCTTTTCAACACCCGGTGCTTCACCGTGGACGTGACCTCGGTCCATGCGGCCGAGACGGCACGCCAGGAGAGCGACGACCGGTTGTCCGCAACCTACGAGGCGGCGACGATCGGCATTGCCGAAGCCGGGGCGGATGGCCGTCTGTTGCGGGTCAACGATGCGCTCTGCAACATGCTCGGGCGCTCGCGCGAAGAACTGCTGAACATGACTTTCCTGGGGTATACCCACTCCGACAGCACCGACGAAGACGCCGCGCTGTATGCGCGCCAAGTGGCCGGCGAGCTGGATAACTACGTGCTGCGCAAACGCGCCTTCAAGCCTGACGGAGAAACCGTCTACCTGGACATCCACAGCTCATCGGTCCGGGACTCCCAAGGCGTGTTTCGTTATGGCGTGCGGGTTATCCAGGATGTCACGCAGGCGCGGCGCATGGAAAACCAGATCCTCGAAAGCGAACGGCACATGCGCAACCTGCTCGAGGCGCTGCCCGCGGCGGTCTATACCACGGACGCGCAAGGCCGGATCAATTTTTTCAACCGGGCAGCGGTCGAGTTGTCGGGGCGTACGCCTGAACTGGGCGACCTTTGGTGCGTGACCTGGAAACTGTTCACCACCGATGGCAATTTCCTGCCCCACGACCAGTGCCCGATGGCGGTGGCCTTGAAGGAAAACCGGCCGATACGCGGGGTCGAGGCAGTCGCGGAGCGTCCCGACGGCAGCCGGGTCCCGTTCGCGCCTTATCCCACGCCGCTGCACGACGCGCAGGGCAACCTGGTCGGCGCCATCAACATGCTGGTGGACATCTCCGAGCGCAAGCAGGCCGAAGACCGGCAGAAAACCCTGATCGACGAGCTCAACCACCGGGTCAAGAATACCCTGGCCACGGTGCAATCCCTGGCAGCCCAGACCGCCCGCAATGCGGTGGATGCAAAGGATGGTTACAACCGTTTCGAAGCCCGGCTTCTCGCGTTGTCCCGCGCCCACGATCTGTTGACGAGGCGCCATTGGGGCCAGACCCCGCTGGCCTCCCTGGCCCGGGAAGTGTTGGTGCCGATATTCGGGGCCGACCCTGGCCGTATCACCTTGGAGGGTGATGCCATCGACGTCGATACCCGGGTCGCGCTCGGCCTGACCATGACCCTCAACGAACTGGCGATCAATGCGCTCAAGTACGGCGCGATGTCGGTCGAGACGGGCAGGCTTTCGCTGAACTGGAACGTCCAGCCGCAATCGAACGGCACCTTGCTGACCTTGGATTGGCGCGAGCAGGGCGGCCCCCCGGTGTTTCCGCCGGAACGGGAAGGGCTCGGTTCGCGGTTGATGAAGCGCTGTATCGAGCGCGATCTTGGCGGAATTTTTGTCCTGACTTTTGCACCTGAGGGCGTTCTCTGTCGCTTCTCGTTCATGGTCGTTGAGCAATCTGCATGAMSNIEAFPRETRTPSEYEGLVAMGANALDAIPGAVYLCDHNGWLVRYNSEAATLWGRAPVLGEGGDRFCGSYRLFLADGTPLALEDCPMAWALESGTATRNQEVFIERPDGSRIVALVNIRALRDEQGTIQGAINCFQDVSAHHAMADELRRKNADLEDFFENSAVGLHIVSGEGTIVRANKAELALLGYSAQEYIGRHITEFHVDEPVIGDILSKLSNGECLEDYPARLRAKDGSIKHVTITSNGRFEDGKLFNTRCFTVDVTSVHAAETARQESDDRLSATYEAATIGIAEAGADGRLLRVNDALCNMLGRSREELLNMTFLGYTHSDSTDEDAALYARQVAGELDNYVLRKRAFKPDGETVYLDIHSSSVRDSQGVFRYGVRVIQDVTQARRMENQILESERHMRNLLEALPAAVYTTDAQGRINFFNRAAVELSGRTPELGDLWCVTWKLFTTDGNFLPHDQCPMAVALKENRPIRGVEAVAERPDGSRVPFAPYPTPLHDAQGNLVGAINMLVDISERKQAEDRQKTLIDELNHRVKNTLATVQSLAAQTARNAVDAKDGYNRFEARLLALSRAHDLLTRRHWGQTPLASLAREVLVPIFGADPGRITLEGDAIDVDTRVALGLTMTLNELAINALKYGAMSVETGRLSLNWNVQPQSNGTLLTLDWREQGGPPVFPPEREGLGSRLMKRCIERDLGGIFVLTFAPEGVLCRFSFMVVEQSANANANANANA
D1-35_03855363hypothetical proteinATGACCCGGTTTGCTGGTATCAGGGTTCTGCTTGTCGAGGACGAAGGCGCGGTCGCCATGTTGATCGAGGAAATGCTCGAAGAGCTGGGCTGCACGGTGGTGGCGTCAGTCCCACGACTCGCCCAGGCTCGGGAAAAAGCGGACACCCTGGAGGTTGACCTGGCAATTCTGGACGTCAATCTGGCTGGTGAACGAGTGTTCCCGGTGGCTGATATCCTGCGTGCACGTAACGTTCCTTTCCTGTTCAGCACCGGATACGGCGTCAGCGGCCTGCCCGCTGACTTCGCCCAGTGTCCGGTTCTGCACAAGCCCTTTTCCGAAAACGAATTGCAGCTGAAGATAGCGCTGACGCTGAAAAGTTGAMTRFAGIRVLLVEDEGAVAMLIEEMLEELGCTVVASVPRLAQAREKADTLEVDLAILDVNLAGERVFPVADILRARNVPFLFSTGYGVSGLPADFAQCPVLHKPFSENELQLKIALTLKSNANANANANA
D1-35_03856444hitCOG0537Protein hitATGAGCTTGTACGGCCAATACGATCCGCAGAACATCTTTGCGCTGATTCTTCGCGGCGAAGCGCCCTGCTATAAAATCTACGAAGACACTGATGTACTGGCCTTCCTCGATATTTTTCCGCAGTCGCGCGGTCATGTGCTCGTCATCCCGAAGGCGGCCCAGGCGCGCAATATTCTCGATGTCGACCCCGCGGTGCTGGGCAAGATGATGTCGGCGGCGCAACGCCTCACTCGGATCCTCGTCGACGAGCTGCAGCCGGATGGCGTGCAGATCGCGCAGTTCAACGGCGCGCCCGCCGGGCAAACGGTCTTCCATATCCACGTCCACATCATCCCGCGCTGGGACGGCGCCGCGCCTGAGGCTCATGGACAGGGCAAGGCCGATCCGCAGGAGCTTGAAGCGTTGCAGGCGCGGCTGGTGGAGCGTATTCGTTCGCAAGAGTGAMSLYGQYDPQNIFALILRGEAPCYKIYEDTDVLAFLDIFPQSRGHVLVIPKAAQARNILDVDPAVLGKMMSAAQRLTRILVDELQPDGVQIAQFNGAPAGQTVFHIHVHIIPRWDGAAPEAHGQGKADPQELEALQARLVERIRSQENANANANANA
D1-35_03857519hypothetical proteinATGAAATTGCGCCTGCTGACCGCTGCCTTGTTTTTCATCTGCACCCTGGCTCAAGCCGCAGAACCGAAACCCATTCCGCAAGCCTTGGAGGCACAGATCGGGCATCTGGTGGCGCTGCTCAAGGACAGCTATGCCACCGGCTACCCCGACGCGGCGCTGGTGCAAACGCTCGATACCGGCGAGGACAGCCAGGTCACGCTCGCGGTCTTCACTATCGAGGGCTTTGGGATGGGCAACAATTACAGTCAGTACCTGGCGGCCTTTACCCCTGAGGAGAACGAAGAGGGCGTGCCGCATTACAGCCTGCTGGATGTGATGCGAATCGGCGGAGACAGCTGGCGAGCGATCGATAAGATGGACGCCAGGCTGGTCAGCGACCCGGCGGGTGAGCAGACCCTGATCGACATCGCGGCAATGGAAAACACCGACGACGATGCGCCGAACTTCCCTAGCAGAGCGGCAGTTATTCATCTGTCCTTGGCTGGTGCACAATCCCTGCGGTTGGTAGAGATAAAGTAGMKLRLLTAALFFICTLAQAAEPKPIPQALEAQIGHLVALLKDSYATGYPDAALVQTLDTGEDSQVTLAVFTIEGFGMGNNYSQYLAAFTPEENEEGVPHYSLLDVMRIGGDSWRAIDKMDARLVSDPAGEQTLIDIAAMENTDDDAPNFPSRAAVIHLSLAGAQSLRLVEIKNANANANANA
D1-35_03858870robCOG2207Right origin-binding proteinGTGCCTGAGCTACCAAACGATTACGCCTACAAAAAACGCTTCGACGCTGTACTGGCGTATATCGATGCCAATCTGGAAGATGATCTGTCGGTGAGGACGTTAAGTCATGTGGCGAACTTCTCGGCGTTTCACTTCCATCGCCAGTTCACGGCGTTCATGGGCGTGCCTGTTTCGCGCTACGTCCAGCTGATGCGGCTACGACGCGCGGCACATCGCCTGGTCGCAGTTGCCGATTATTCGGTACTGGACGCCGCGCTGGATGCGGGCTTCAGGAGCCCCGAGGCGTTCTCCAGGGCGTTCAGCCGGGCGTTCGGCGCCGCGCCAAGCGCGTTCAGGAAGAATGCAAACTGGCAGGTCTGGAACACGGTATTTGCCGTCCCACATTTTTCCAGGACTCTTCTCATGCAAGTACGCATTATCGAACTCACTGAAATCAACGTAGCGGCCCTTGAGCACCGCGGGCCGCCCGGGCTCGTCAATGCGAGCGTCCGCCAGTTCATCGAGTGGCGGATGCGCAGCGGGCAGTCGCCGGTGGCATCAAGCCGCACGTTCGGTATTCCTTATGGCAATCCCGATACGACACCTGCGCACGCCTTCCGATTTGCGATCTGCGGTGAGATTCACGAAGACGTGACGCCGAATGAGTTCGGCGTAGGCCCACTCGTCATTCCCGGCGGCCGCTACGTCGTGGTACGCCATGCGGGGTCGCCCGATCATATCGGCGAGACGATCTACCCGATCTACCGCGACTGGCTCCCCGCGAGCGGTGAGGAGCTGCGTGATCAGCCACTGTTTTTCCACTACCTGAGCGCCTATCCCGAGACGCCACAGGATCAATGGCAAACCGATGTGTATGTCCCGCTGCAATAGMPELPNDYAYKKRFDAVLAYIDANLEDDLSVRTLSHVANFSAFHFHRQFTAFMGVPVSRYVQLMRLRRAAHRLVAVADYSVLDAALDAGFRSPEAFSRAFSRAFGAAPSAFRKNANWQVWNTVFAVPHFSRTLLMQVRIIELTEINVAALEHRGPPGLVNASVRQFIEWRMRSGQSPVASSRTFGIPYGNPDTTPAHAFRFAICGEIHEDVTPNEFGVGPLVIPGGRYVVVRHAGSPDHIGETIYPIYRDWLPASGEELRDQPLFFHYLSAYPETPQDQWQTDVYVPLQNANANANANA
D1-35_038591164hypothetical proteinATGAAGGCAAGCACCTTTTATCTTGCGTTATGCGCGGCGGCGCCTTTTGCCGACGCCGCCGGCCCGGAAAGCGCCAGCGAGTCGCGCAATTCACAACAGATCAGCCGGGCGGGCAGCCAGGCTTCCGCCGCAGGACCGGCGGACTATTTCACCGGACAGGTGCGTGTGGACCCGCTGTTCCCAGCGACGGAAGACATCAACGTGTCTGGCGCCTACGTCACTTTCGAACCGGGCGCGCGCTCGGCCTGGCATACCCATCCCGCCGGTCAGCGATTGGTAGTGGTCTCCGGCGTGGGCCTGACGCAGGAATGGGGCAAGCCGGTGCAGCAAATCCATCCCGGCGACGTGGTAGTTTGTCCTGCGGGCGTCAAGCACTGGCATGGCGCGGCGCCGGACAGCGCCATGACTCATCTGGCCGTGACCGGCACGGTGGAGGGCAAGAATGTGCAGTGGTTGGAGAAGGTCAGCGAGGAGCAATACGGCGCCGGTGGAACGCTGACATCATCGGCCAAGCCAGATGCTGCGGCGGTTTCACAAACCCTGTCGGCCAAACAGCGAGCCATTCCGCTGATCGCCGCCGCCATGGCCACAAGCAACATGCCGGCTCTCGATAGCGCCTTGAATAAAGGGCTGGATGCGGGTCTCAGCGTCAGCGAGGCGAAGGAAATCCTGGTGCAGCTCTACGCTTACAGCGGGTTTCCCCGCAGCCTCAACGCGCTGGGCGAATTGATGAAAGTCGTGGAGGCCCGAAAGCAACGCGGCGTGCAGGATGCTCCGGGGCGCGAGCCGACTCGCCCGATCCCTACCGGCGATGCATTACTGGTGGCGGGCAAGGCCAACCAGACACGGATCGCCGGCGCGCCTGTCCAAGGGCCGCTGTTCGACTTCGTCCCGGTCATCAACCAATATCTGCAGACGCACCTGTTCGGCGATATTTTCGAGCGCGACAACCTGGACTGGCAAAGCCGGGAGCTGGCGACGGTCGCCGCTCTGGCGGTGACCCCAGGGGTGGAGTCACAACTGCGTTCACACGTGGCTGCGAGCTTGCGGGTCGGATTGAGCGCTGCGCAATTGCGCCAATTGATCCAGCTGCTGGACGAGCAGGGCGAGGCCGCTGCGGCCAAGCGTGCCGCTGAGGCACTGGATGCCAGTCAGTCTTCGTAAMKASTFYLALCAAAPFADAAGPESASESRNSQQISRAGSQASAAGPADYFTGQVRVDPLFPATEDINVSGAYVTFEPGARSAWHTHPAGQRLVVVSGVGLTQEWGKPVQQIHPGDVVVCPAGVKHWHGAAPDSAMTHLAVTGTVEGKNVQWLEKVSEEQYGAGGTLTSSAKPDAAAVSQTLSAKQRAIPLIAAAMATSNMPALDSALNKGLDAGLSVSEAKEILVQLYAYSGFPRSLNALGELMKVVEARKQRGVQDAPGREPTRPIPTGDALLVAGKANQTRIAGAPVQGPLFDFVPVINQYLQTHLFGDIFERDNLDWQSRELATVAALAVTPGVESQLRSHVAASLRVGLSAAQLRQLIQLLDEQGEAAAAKRAAEALDASQSSPGPT0005005_46DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005005-pcaC-K01607NANA
D1-35_03860894pgrR_7HTH-type transcriptional regulator PgrRATGACCACCGAACGCTACGACCAACTCGCCATCTTCTCAGTCGTGGCCCAGGAGCGCAGTTTCACTCGGGCGGCGGCCAGGCTTGGCATGTCGCAACCGGCACTGAGTCGGGCGATGCGACAACTGGAAGAACGGCTGGGAGTCCGGCTGTTGTCGCGTACCACGCGAAGTGTTGCCCCGACCCAAGCGGGCGAACGCCTGTTGCAGGTGGTTGCGCCGCGGTTTGAAGAGATCGATCAGGAGATGGCGATGCTCAGTGAGTTTCGCGACAAACCGGCCGGAAAATTGCGCATCACCGCTGGCGAGCATTCTGCAATCACCGTGCTCCAGCCGGTTCTCGCCAAGTTGCTCCCTGACAATCCCGACCTGAACATCGAGATCATCGTCGACTACGCTTTTACCGACATCGTCGCTGAGGGGTTCGATGCCGGCGTGCGGCTGGGCCCGCAGGTCGCCAAGGACATGATCGCCATGCGCATTGGCCCCGACATGCGCATGGCGGTCGTCGGCTCGCCGGCGTACTTCGCCCAACATCCCAAGCCGCTGATTCCAAACGACCTGACGGCGCACAACTGCATCAACTTGCGCATGCCGACTCATGGTGGCCTGTATGTCTGGGAATTTGAAAAAAGCGGTCAGGAACTGCAAGTCCGGGTAGAAGGCCAACTGGTTTTCAACACGATTGCCATGCGCCTGGAGGCGGCGCTCCAGGGCTTGGGGTTGGCCTTCATGCCGGAAGATCTGGTGCAGGAAGCTGTCGCGCAAGGCCGGCTGATCCGGGTACTGGACGATTGGTGCGAGCCGTTTTCCGGCTATCATCTGTACTACCCGAGTCGCCGCCAGACCTCTCCGGCCTTCACGCTGCTGCGCGAAGCCTTGCGTTACGAAGACTGAMTTERYDQLAIFSVVAQERSFTRAAARLGMSQPALSRAMRQLEERLGVRLLSRTTRSVAPTQAGERLLQVVAPRFEEIDQEMAMLSEFRDKPAGKLRITAGEHSAITVLQPVLAKLLPDNPDLNIEIIVDYAFTDIVAEGFDAGVRLGPQVAKDMIAMRIGPDMRMAVVGSPAYFAQHPKPLIPNDLTAHNCINLRMPTHGGLYVWEFEKSGQELQVRVEGQLVFNTIAMRLEAALQGLGLAFMPEDLVQEAVAQGRLIRVLDDWCEPFSGYHLYYPSRRQTSPAFTLLREALRYEDNANANANANA
D1-35_03861294hypothetical proteinATGGATGAACACCAGGAAGCCATCAAGAACAAGATCCGCGCCGCAGTAGAAACCAGCGATTCTGACGAGATCACCTATCGCTCTGAGTGGCTCGGTTACATGCCCTTCCCGGTTTTTCGATGGGTTGAACATCAAGGAAAGGATTTTTCCGGCGACTTTCCTGCCGATTGGACCCTTGAGCATCTGGCCAGTCTTGAGCGCGCGGGGTTCCTTGAAATGCTTGAGACCTACGAGAACCCGGAAGACCCGTTTGATCGGGACAACAGGTATCGCGTCTGGATTGGGCGCGAGTAGMDEHQEAIKNKIRAAVETSDSDEITYRSEWLGYMPFPVFRWVEHQGKDFSGDFPADWTLEHLASLERAGFLEMLETYENPEDPFDRDNRYRVWIGRENANANANANA
D1-35_03862483nuoE_2COG1905NADH-quinone oxidoreductase subunit EATGCCTGATGAGACGCTTCACCTGCCTCTGATTCACAGCGTGCTGGCGCGCAAGAAGGACACCCCCGGTGCCTTGTTGCCCATCCTTCATGCCATCCAGGAAGGTTGCGGGTACGTTCCCGACGCCGCCGTCCCTGAAATCGCCCATGCCCTCAATCTCAGCCAGGCTGAAGTGCGCGGGGTAATCAGCTTCTACCATGACTTTCGCACCACGCCGCCGGCGCGCCATACCCTGCGCCTGTGCCGGGCGGAGTCGTGCCAGAGCATGGGGGCCGAAGGCCTGGCTGCGCAGTTGCGCGAACAACTGGCGCTTGACGATCACGGCACCAGTGCCGACGGGGCGATCAGCCTGCGGCCGGTCTATTGCCTGGGCGCCTGTGTGTGCTCGCCGGCCCTGGAGCTGGACGGGGAGTTGCACGCACGGCTGACCCCCGAACGCCTGCGCCAGTTGGTGAACGGTTGCCTGGAGGATGGCCCATGCTGAMPDETLHLPLIHSVLARKKDTPGALLPILHAIQEGCGYVPDAAVPEIAHALNLSQAEVRGVISFYHDFRTTPPARHTLRLCRAESCQSMGAEGLAAQLREQLALDDHGTSADGAISLRPVYCLGACVCSPALELDGELHARLTPERLRQLVNGCLEDGPCPGPT0019670_1594DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_FORMATE_UTILIZATION,PGPT0019670-fdoI|fdsG-K00127NANA
D1-35_038631560hypothetical proteinATGCTGACCCTCTGCATTCCCCGTGATTCAGTGGCCCGCGCCGTCGGTGCGGACAAGGTGGCGGATGCGCTGGTGCGCGAGGCCGAGCGTCGGCAATTGCCGCTTGAGGTGCTGCGCACCAGCTCTCGCGGGCTGTATTGGCTGGAACCCCTGGTAGAGCTTGAAACGCCCGAAGGGCGGTTGGGGTTTGGCCCGGTCACCGCGCAAGATGTGCCAGGCCTGCTCGATGCGCTTGGCCACGACCCGGGCGGTCATCCTTCGGCCTTGGGACTGGTGGAGAACATTGCGTATCTGAAAAGCCAGCAGCGCCTGTTGTTTGCGCGTGCCGGCATCACCCGGCCCTTGTCCCTCGGGGACTATCGGGCTCAGGGCGGATTCCTCGGCCTGGCCCGGGCGATCCGGATGGACGGCGCCGAGGTGGTTGCCCAAGTGCTGGATTCCGGCTTGCGCGGCCGGGGCGGCGCGGCGTTCCCGGCGGGCATCAAGTGGCGCACCGTGCGCGACGCGCAGGGCCCGCAAAAATACGTGGTCTGCAATGCCGACGAAGGCGACTCCGGTACGTTCGCCGACCGCATGTTGATGGAAGGCGATCCGTTCCTGCTGATCGAAGGCATGGTCATCGCCGGGATCTCGGTGGGCGCCACCATGGGCTACATCTATGTGCGCTCGGAATACCCGGACGCCGTCAGCACGCTGAACGAAGCGCTGCACATCGCCCGCGAAGCCGGTTACCTGGGCGCCGATGTCGGCGGCAGTGGCCGCGCCTTCGAGCTGGAAGTGCGAGTGGGCGCCGGCGCTTACATCTGTGGCGAAGAAACAGCGCTGCTGGAATCCCTTGAAGGCAAGCGCGGGATGGTGCGTGCCAAGCCGCCGCTGCCGGCGTTGCAGGGCCTGTTCGGCTTGCCGACGCTGGTTCATAACGTGGTGACCCTGGCCTCGGTGCCGTTGATTCTGGAGAAGGGCGCGCAGTTCTACCGGGACTTCGGCATGGGCCGTTCACTGGGCACCATGCCGTTCCAGCTGGCCGGCAACGTTCGTCGCGGCGGGCTGGTGGAGCGGGCATTTGGCCTGAGCCTGCGCGAGTTGGTGGAGGAGTATGGCGGCGGCACCGCCAGCGGTCGGCCGTTGAAGGCCGCGCAAGTCGGTGGCCCGCTGGGCGCGTGGGTACCCCCCGCGCAGTTCGACACACCGCTGGACTACGAAGCGTTCGCCGCCATGGGCGCGATGCTCGGCCACGGTGGCGTGGTGGTTGCCGACGACAGCCTGGACATGGCCCGGATGGCCCGGTTCGCCTTGCAATTCTGCGCCGAGGAATCCTGCGGCAAATGCACGCCGTGTCGCATCGGCTCGACCCGTGGCGTCGAGGTGGTGGATCGCTTGATCGCCAGCACCGATGCCAGTGCCCGCCAGGAACAGGCGGCGCTGTTGCAAGACCTTTGCGACACCCTGCAATACGGCTCGCTCTGTGCCCTCGGTGGGATGACGTCCTACCCCGTCGCCAGCGCCCTCAAGTACTTCCCCGCCGACTTCGGTCTGGCGACCACGGAGGCCGACCAATGAMLTLCIPRDSVARAVGADKVADALVREAERRQLPLEVLRTSSRGLYWLEPLVELETPEGRLGFGPVTAQDVPGLLDALGHDPGGHPSALGLVENIAYLKSQQRLLFARAGITRPLSLGDYRAQGGFLGLARAIRMDGAEVVAQVLDSGLRGRGGAAFPAGIKWRTVRDAQGPQKYVVCNADEGDSGTFADRMLMEGDPFLLIEGMVIAGISVGATMGYIYVRSEYPDAVSTLNEALHIAREAGYLGADVGGSGRAFELEVRVGAGAYICGEETALLESLEGKRGMVRAKPPLPALQGLFGLPTLVHNVVTLASVPLILEKGAQFYRDFGMGRSLGTMPFQLAGNVRRGGLVERAFGLSLRELVEEYGGGTASGRPLKAAQVGGPLGAWVPPAQFDTPLDYEAFAAMGAMLGHGGVVVADDSLDMARMARFALQFCAEESCGKCTPCRIGSTRGVEVVDRLIASTDASARQEQAALLQDLCDTLQYGSLCALGGMTSYPVASALKYFPADFGLATTEADQPGPT0019665_359DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_FORMATE_UTILIZATION,PGPT0019665-fdoH|fdsB-K00124NANA
D1-35_038642877Putative formate dehydrogenaseATGATCAACATCTTCGATCCAGCCAGCGACATCGACCTGGGCACCCCGGCCCGAGTAAGCGACGTGCAGGTCAGCCTGACCATCGATGGCCGTGAAATCAGCGTTCCCTCCGGCACGTCGGTGATGCGCGCGGCGGCCTTGCTCGGTACCACCATCCCGAAACTGTGCGCCACCGACAGCATGGAAGCCTTCGGCTCCTGCCGTATGTGCCTGGTGGAGATCGACGGGATGCGCGGTTACCCGGCCTCGTGCACCACGCCGGTGACCGACGGCATGGTGGTCCGCACCCAGACCTCAAAGCTCGCCACGCTGCGTCGCAACGTGATGGAACTGTACATCTCCGATCACCCGCTGGACTGCCTGACATGCCCGGCCAACGGCAACTGCGAGTTGCAGACCGTGGCCGGGCAGGTGGGCTTGCGGGAGGTGCGCTACGGCTACGAAGGCGCCAATCACCTGGCCGAAGCCAAGGACGTGTCCAACCCTTATTTCGACTACGACCCGAGCAAGTGCATCGTTTGCAGCCGCTGCGTGCGTGCCTGCGAGGAAATCCAGGGCACCTTCGCCCTGACCATCAGCGGACGCGGCTTTGATTCCCGTGTCGAAGCGGCCGGCGGTGACAACTTCCTCGACTCCGAATGCGTGTCCTGCGGCGCCTGCGTCCAGGCCTGCCCGACAGCGACGCTGATCGACAAGAGCGTCGTCGAAATCGGCCAGCCGGAGCGCAGCGTCGTCACCACCTGCGCCTATTGCGGCGTGGGCTGCTCGTTCCGCGCCGAGATGAAAGGCGAACAATTGGTGCGCATGGTCCCGGACAAGAACGGCCAGGCCAACCACGGCCACTCGTGCGTCAAGGGCCGCTTCGCCTGGGGCTACGCGACGCACCCGGACCGCATCACCAAGCCGATGATCCGCAAGCACATCAACGACCCGTGGCAGGAAGTCAGCTGGGAGGAGGCGGTCACCTACGCCGCCAGCGAACTGCGGCGCATCCAGCTCAAGTACGGGCGTGATTCCATCGGCGGTATCACCTCCAGCCGCTGCACCAACGAAGAAACCTACCTGGTGCAGAAGCTGGTGCGCACGGCGTTCGGCAACAACAACGTCGACACCTGCGCGCGGGTCTGCCATTCGCCGACTGGTTATGGCCTCAAGCAAACGCTGGGCGAATCGGCCGGCACGCAGAATTTCGACTCGGTAATGAAAGCTGACGTGATCATGGTGATGGGCGCCAACCCCACCGATGCGCACCCGGTGTTCGGCTCCCAGCTCAAGCGCCGCCTGCGCCAGGGCGCGCGGCTGATTGTCATCGACCCGCGGCGCATCGACCTGGTGGATTCGCCTCACGCCCGTGCCGAGCTGCATCTGCAGTTGCGTCCGGGCACCAACGTGGCGATGCTCAACGCGTTGGCCCACGTGATTGTCACCGAGGGGCTGGTTGACGAGTCTTTCGTCAAAGAGCGTTGCGAGGCGACAGATTTCGCCCGTTGGCGCGACTTCGTCAGCTTGCCGGAAAATGCGCCCGAGATCCTCGGCCCGGTGTGCGGCGTGCCCGCCGAGCAGATCCGCGCCGCCGCGCGGCTCTACGCCACCGGCGGCAACGCGGCCATCTACTACGGCCTCGGTGTGACCGAACACAGCCAGGGCAGCACCTCGGTGATGGGCATCGCCAACCTTGCCATGGCCACCGGCAATATCGGCCGCGAGGGCGTCGGGGTGAACCCGCTGCGTGGGCAGAACAACGTCCAGGGTTCCTGCGACATGGGCTCGTTCCCCCATGAGCTGCCGGGCTATCGGCACATCTCCAATGAAGCGGTGCGGGCCCAGTTCGAGCAGGCCTGGAACGTGACGTTGCAACCCGACCCGGGCCTGCGCATCCCGAACATGTTCGAGGCAGCGCTGGACGGCACTTTCAAGGCGCTTTACTGCCAGGGCGAGGACATCGCCCAGAGCGATCCCAATACCCAGCATGTGACTGCGGCGCTGACTGCTTTGGAGTGCGTGATCGTGCAGGACATCTTCCTCAACGAAACGGCCAAGTTTGCCCATGTGTTCCTGCCGGGCAGCTCGTTCCTCGAGAAGGACGGTACCTTCACCAACGCCGAGCGCCGTATCTCCCGCGTTCGCAAGGTCATGGACCCGCTGGCCGGCAAGGCCGACTGGGAAGCCACCATCGCCTTGGCCGATGCCCTGGGCTACAAGATGCACTATAACCATCCCTCGGAAATCATGGATGAAATCGCCCGCCTGACGCCGACCTTCAGTCGTGTCAGCTACGCCGAGCTGGAGCGTCACGGCAGCCTGCAATGGCCGTGCAACGATGCCGCGCCGGACGGCACGCCGACCATGCACATCGACCAATTCGTGCGCGGCAAAGGGCGCTTCATGCTCACCGGCTATGTGCCCACCGAGGAGAAGGTCAATGGCCGTTATCCGCTGCTGCTGACCACCGGACGGATCCTCAGCCAGTACAACGTCGGCGCCCAGACCCGGCGCACCGACAACGTGGCGTGGCACGAGGAGGATCGCCTGGAAATCCACCCGACCGACGCCGAGAATCGTGGCATCGCCGAGGACGATTGGGTCGGTATCAGCAGTCGCGCCGGGCAGACGGTGCTGCGCGCCAAGGTCACCGAGCGGGTGGCGCCGGGGGTGGTCTACACCACGTTCCACTTCCCTGAATCCGGGGCCAACGTGATCACCACCGACAACTCGGACTGGGCCACCAACTGCCCGGAATACAAAGTCACGGCGGTAGAAATCGTGCGGGTCACCCAGCCTTCGGAATGGCAGAAGCGTTATCAGGCCTTCAGCGACGAACAGCGGCGCCTGCTGAAGGAACGTCGTCACGCCGAGAAAGCCGAGGTGCGCCGATGAMINIFDPASDIDLGTPARVSDVQVSLTIDGREISVPSGTSVMRAAALLGTTIPKLCATDSMEAFGSCRMCLVEIDGMRGYPASCTTPVTDGMVVRTQTSKLATLRRNVMELYISDHPLDCLTCPANGNCELQTVAGQVGLREVRYGYEGANHLAEAKDVSNPYFDYDPSKCIVCSRCVRACEEIQGTFALTISGRGFDSRVEAAGGDNFLDSECVSCGACVQACPTATLIDKSVVEIGQPERSVVTTCAYCGVGCSFRAEMKGEQLVRMVPDKNGQANHGHSCVKGRFAWGYATHPDRITKPMIRKHINDPWQEVSWEEAVTYAASELRRIQLKYGRDSIGGITSSRCTNEETYLVQKLVRTAFGNNNVDTCARVCHSPTGYGLKQTLGESAGTQNFDSVMKADVIMVMGANPTDAHPVFGSQLKRRLRQGARLIVIDPRRIDLVDSPHARAELHLQLRPGTNVAMLNALAHVIVTEGLVDESFVKERCEATDFARWRDFVSLPENAPEILGPVCGVPAEQIRAAARLYATGGNAAIYYGLGVTEHSQGSTSVMGIANLAMATGNIGREGVGVNPLRGQNNVQGSCDMGSFPHELPGYRHISNEAVRAQFEQAWNVTLQPDPGLRIPNMFEAALDGTFKALYCQGEDIAQSDPNTQHVTAALTALECVIVQDIFLNETAKFAHVFLPGSSFLEKDGTFTNAERRISRVRKVMDPLAGKADWEATIALADALGYKMHYNHPSEIMDEIARLTPTFSRVSYAELERHGSLQWPCNDAAPDGTPTMHIDQFVRGKGRFMLTGYVPTEEKVNGRYPLLLTTGRILSQYNVGAQTRRTDNVAWHEEDRLEIHPTDAENRGIAEDDWVGISSRAGQTVLRAKVTERVAPGVVYTTFHFPESGANVITTDNSDWATNCPEYKVTAVEIVRVTQPSEWQKRYQAFSDEQRRLLKERRHAEKAEVRRPGPT0019635_1727DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_FORMATE_UTILIZATION,PGPT0019635-fdoG|fdhF|fdwA-K00123NANA
D1-35_03865222hypothetical proteinATGAGCTCGCAGAACCTGATCAAGATGGCCAACGAGATTGCCCGCTACTTCGCCACGGAGCCTGATCAGTCGCTGGCGGTGAGCGGCATCCGCCAGCACATCAAGAACTTCTGGACGCCGGGCATGCGCAGGGATTTGCAGGGTTGGGAGGAGAAGCATCCGGATGCGGTTTTGCATCCGTTGGTGTTGGCGGTGTTGGAGGAGCCTGAAGCCATGAACTGAMSSQNLIKMANEIARYFATEPDQSLAVSGIRQHIKNFWTPGMRRDLQGWEEKHPDAVLHPLVLAVLEEPEAMNPGPT0019675_468DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_FORMATE_UTILIZATION,PGPT0019675-fdsD-K00126NANA
D1-35_03867321pchB_2COG1605Isochorismate pyruvate lyaseATGGAAGTCGACAACCAGCTGTCCCCCGCGCAATGCACCGGCATGGAAGACATCCGCCGCGAAATCGATGCCCTGGACCAGACTGTCATCAAACTCTTGGGCAAGCGCTTTCAATACGTATTGGCGGCATCGAAGTTCAAGACTTCGGCGACCTCGGTCCGCGCCCCGGAGCGTTTCCAGGCGATGCTGGCAATTAGGCGGCAATGGGCCGAGGCCGAGGACCTCAGCCCGGATGCCATCGAAAAGATGTACAGCGACCTGGTCAATCACTTCATCTCTGAAGAGATGAAACACTGGGCGGCGCAACAATCCAAAGCCTGAMEVDNQLSPAQCTGMEDIRREIDALDQTVIKLLGKRFQYVLAASKFKTSATSVRAPERFQAMLAIRRQWAEAEDLSPDAIEKMYSDLVNHFISEEMKHWAAQQSKAPGPT0003065_159DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_AQUIRED_RESISTANCE|SARSAR-SALICYLIC_ACID_METABOLISMSAR-SALICYLIC_ACID_BIOSYNTHESIS,PGPT0003065-pchB|pmsB-K04782NANA
D1-35_03868282hypothetical proteinATGACAACGAATCAAGCATCTTCCCGCTACACCCCCCTCACCCCGATTGCAACCACCTACCCTGTCCTGCTGATCGACACGCACGCGCCACTGCCCGAACTCCACGCCTGTGTCAGCGAGCGGCTGCACGCCACGCTCGATTACCTGACGCTGGTGGCTTGCTCCAGCCTGCGGGACTCATCCACCAGTGATATCAACACTCTGACCAACGTTGCCCGGATCCTCGTGCAGGACGTGGCCGACGTGTTCGGCGTCATTGAACGACGCGGTCTGAAAGGTTGAMTTNQASSRYTPLTPIATTYPVLLIDTHAPLPELHACVSERLHATLDYLTLVACSSLRDSSTSDINTLTNVARILVQDVADVFGVIERRGLKGNANANANANA
D1-35_038701395hypothetical proteinATGAAACAGCACCAATATGGAGAGGACCACCGCGCCAACGACGTAGTATTCAATAGAAAGCGGGATGTCGACGTAGCGAGGGGAGAAAGTAATGAATACGGCACTGAGGAGAAGCGTAAGCGCAGAATTGCGGAGCTTTTTGTTCACGTTATCGCAACCATGGAATTGGCCGACGATATTACATCGCCACCACCCGACTGGACACCCCTATCCAAGGCTGATGAGTCAATCCAAACCATGACACAGGGTATAACCATGCGCATCGAGCCTTTTACCATTTACATTCCCGAACGGACTCTTGATGACCTGCGCCATCGCCTGCAAAACACTCGGCTACCGGTGCCACTGGCCAGCCAGGGCTGGAGCGAAGGCATACACATGGACGTGCTTGGGGAACTTCTTACCCAGTGGTCGACAACCTTCGACTGGCGCGCCCAGGAAGCCGCGCTCAATCGCCTGCCACAATTTGTCGCCACCCTGAGCGGCCAGCAGGTTCATTTCGTCCATCAGCGCGGCGTCGGGCCCAATCCGATGCCGCTTGTGCTCACCCACGGCTGGCCCGGGTCGTTCATCGAGATGCAGCGCATCATCGAACTGCTGACGGATCCGGCCAGCCATGGCGGTGATCCAGCCGATGCGTTCGATGTGGTGGTGCCGTCCTTGCCCGGCTATACCTTTTCCGCGCCGTTCAAACAGGCGGGTTGCGGGCCTTTCGAGGCGGCGGGTTTGTGGAGCGAGCTGATGACGGGGCTCGGCTATGAGCGGTTCGGAGCCCAGGGCGGCGATGTCGGCGCGGCCGTATCCACCTGGTTGGGCGTGCGTTTCCCCGAGCGTCTGACCGGCATCCACCTCAACTACATTCCCGGCGCCTACCGCCCGCCACTTGGCGAAACCGACCCACCTTTGAGCGAAGAAGAAACCGCTTACCTGCAACGCGCCGCTGCCTTCAGCGAGGCCGAAGGCGCCTATGCGCACATCCAGCGGACCAAACCGCAAACCCTGGCCGTGGGCCTGAGCGACTCTCCGGCGGGGTTGCTGGCCTGGATGGGGGAAAAAATCCTGTCGTGGTGCGATACGAGCCCCGCCATCAGTCATGAATGGCTGCTGACCAATGTGACGCTCTACTGGCTGACGAACTGCATCGGTTCGTCGTTTCGCCCGTATGTGGAAGGCAGCAAGCGGCCCTTGCTGTTCAACAGCGGCGAGCGGGTGAAGCCGCCGCTTGGGGTCGCGTTGTTTCCCAGGGAACTGCCGCTGCCGCCACGCAGTTGGGTGGAGCGTGGCTATAACATCAAGCGCTGGACGCAGATGCCGCGCGGTGGTCACTTTGCTGCGTTGGAGCAGCCGGAGTTGCTGGCGGAGGATATTCGGGCGTTTTTTCGGGATTTGCGCTGAMKQHQYGEDHRANDVVFNRKRDVDVARGESNEYGTEEKRKRRIAELFVHVIATMELADDITSPPPDWTPLSKADESIQTMTQGITMRIEPFTIYIPERTLDDLRHRLQNTRLPVPLASQGWSEGIHMDVLGELLTQWSTTFDWRAQEAALNRLPQFVATLSGQQVHFVHQRGVGPNPMPLVLTHGWPGSFIEMQRIIELLTDPASHGGDPADAFDVVVPSLPGYTFSAPFKQAGCGPFEAAGLWSELMTGLGYERFGAQGGDVGAAVSTWLGVRFPERLTGIHLNYIPGAYRPPLGETDPPLSEEETAYLQRAAAFSEAEGAYAHIQRTKPQTLAVGLSDSPAGLLAWMGEKILSWCDTSPAISHEWLLTNVTLYWLTNCIGSSFRPYVEGSKRPLLFNSGERVKPPLGVALFPRELPLPPRSWVERGYNIKRWTQMPRGGHFAALEQPELLAEDIRAFFRDLRNANANANANA
D1-35_03871618hypothetical proteinATGGCCGGTATCCCTGACGTGGCGGCAGCCTTTGGTAGTTTCATGCGCTCATGGGAAGCTGATCGCAAACACCTGCCTTGCGCTGTCAGCGCCCTGGCCAACGGATTCGAAGGTTGGTTGAAGTTCGAGTTCTACTTCTGGTTGATCCATTCCTGCGGGCTGCGCGGTCCCGACAGCGAGCTGGCGGACGTCGGAGTCGAGTACAAGGTCGCGCTCGATCAACACTGGCCGCAAATGGATATTGTCAGCAAGCAATGTGACCTGTGGATCCGCGACAGCGATGGGCAGCGCTTCCACTTCATCGAACTCAAGACGCCTTTTGCCAACGGCAATCAGGGCAAGCTGTTCAACAGCGCGGCCATGGATTACTGGTACATGACCCGGCTCAAGGTCCAGGCGGAGAGGGTTGCCACGGGTAGCGTGATCATCCTTGGGGTGAATTTTGACAAGGCACGCTGGGAGGCGCATCTGCGAGGAGTCGAAGAGTACGCCGGCTACGTTGGGCATTCATCCCGGACATCCGGCACGATTCCCGGGATAGACGCGTTGAGGTGGGCAGTGTTGACCATGCGATACCCACCTTTGGCTGAAATTCCTACGTCCGGTGCTATCGCCTAGMAGIPDVAAAFGSFMRSWEADRKHLPCAVSALANGFEGWLKFEFYFWLIHSCGLRGPDSELADVGVEYKVALDQHWPQMDIVSKQCDLWIRDSDGQRFHFIELKTPFANGNQGKLFNSAAMDYWYMTRLKVQAERVATGSVIILGVNFDKARWEAHLRGVEEYAGYVGHSSRTSGTIPGIDALRWAVLTMRYPPLAEIPTSGAIANANANANANA
D1-35_038721245soxC_3Dibenzothiophene desulfurization enzyme CATGACCGCACAGCAACAATACCTGCCGCATGTCCTTTCCACCGGCACCCATTATGAAGGCCTGGCCGAGCGCTTCCGGCCGATTTTCGCGCGTATCCAGGCCGGGGCGCTGGAACGCGAACAGACCCGCAGCCTGCCTTTCGAACAGGTGAAATGGCTCAAGGAAGCGGGTTTTGGCGCCGTAAGGGTGCCGGTCGAATATGGTGGCGCCGGCGCCTCGCTGCCGCAATTGTTGCAACTGCTGATCGAACTGGCCGAAGCCGACTCCAACCTGCCCCAGGCGCTGCGCGGGCACTTCGCCTTTGTCGAGGATCGCCTCAACGCCCATGCCACCCGCCCGCAGGACGTCTGGTTCAAGCGCTTCGTCGACGGTGACCTGGTGGGCAACGCCTGGACCGAAATCGGCGCGGTAAAACTTGGCCAGGTCATCACCCGGGTTTCCCGCCAGGGTGACCAATGGGTGGTCAACGGCACCAAGTACTACAGCACCGGCAGCATCTTTGCCGACTGGATCGACCTGTATGCCCAACGCGACGACACCGGCGCCGACGTGATCGCCGCCGTCAGCGTTCATCAGCCGGGCGTCAGGCAAAGCGATGACTGGGATGGTTTCGGTCAACGGACCACGGGCAGCGGCACGTCAGTATTCGAGAACGCCGTGGTAGAAGACGAAAACCTCATCGACTTTTCCACCCGCTTCAAATATCAGACCGCGTTTTACCAGTTGGTATTGCTCGCCGTGCAGACCGGCGCCGGGCGCGCCGCCGTCCGCGACATCAGCGAACAGGTGCGCCAGCGCACGCGGGTGTTCAGCACCGGCAACGCCAGTGAAGTGAGCCAGGATGTGCAAGTCCAGCAAGTGATCGGCAGGGCCTCGGCCCAGGTCTACGCCGCCGAAGCCACCACCCTGCGCGCCGCCGATGCCTCGCAGCGGGCCTATCAAAGTCGCTTCGACCTGGACGCCGAGAAGGAACACACCGCCAACCTCCTCGCCGAACTGGAATCGGCCCAGGCCCAGGTGGTGGTCGCCGACCTGACACTGCGCGCCACCAGCGACCTGTTCAACGCCCTCGGCGCCTCCGCCACCAGCACCAGCAAAGCCCTCGACCGCCACTGGCGTAACGCCCGGACGGCGGCTTCGCACAACCCGCTGATCTACAAGGAACGCATCATCGGCGACTGGGAGATCAACGGGACGGAGCCGCCGTATGTCTGGCAGATTGGTGGGGGGTCTAAGCAGCGCTAGMTAQQQYLPHVLSTGTHYEGLAERFRPIFARIQAGALEREQTRSLPFEQVKWLKEAGFGAVRVPVEYGGAGASLPQLLQLLIELAEADSNLPQALRGHFAFVEDRLNAHATRPQDVWFKRFVDGDLVGNAWTEIGAVKLGQVITRVSRQGDQWVVNGTKYYSTGSIFADWIDLYAQRDDTGADVIAAVSVHQPGVRQSDDWDGFGQRTTGSGTSVFENAVVEDENLIDFSTRFKYQTAFYQLVLLAVQTGAGRAAVRDISEQVRQRTRVFSTGNASEVSQDVQVQQVIGRASAQVYAAEATTLRAADASQRAYQSRFDLDAEKEHTANLLAELESAQAQVVVADLTLRATSDLFNALGASATSTSKALDRHWRNARTAASHNPLIYKERIIGDWEINGTEPPYVWQIGGGSKQRNANANANANA
D1-35_038731098sfnGFMNH(2)-dependent dimethylsulfone monooxygenaseATGAGCCAGGACACGATCAAGTTTGCCTACTGGGTGCCCAATGTCAGCGGCGGGCTGGTGGTCAGCAAAATCCCGCAGCGCACCGACTGGGGGATCGATTACAACCGCAAGCTGGCGCAGATCGCCGAGGATGCCGGCTTCGACTATGCCCTGACCCAGATCCGTTTTACCGCCGGTTATGGCGCCGAATACCAGCACGAATCGGTGGCGTTCAGTCACGCGTTGCTGGCGGCCACCACGCGCCTGAAAGTCATCGCGGCGGTCTTGCCAGGGCCGTGGACGCCTTCGGTGCTGGGCAAGCAGATCGCAACCATCGATCAGCTCACTGGCGGCCGCGTGGCGATCAACGTGGTGTCCGGCTGGTTCAAGGGCGAGTTCACCGCCATCGGCGAGCCGTGGCTGGAGCACGATGAACGCTATCGCCGTTCCGAGGAATTCATCACCACGCTCAAGGGCATCTGGACCACCGACAACTACACCTTCGCCGGTGATTTCTATCGCTTTCGCGACTACACGCTCAAGCCCAAGCCGCTGCAGCAGCATCCGGAAATTTTCCAGGGCGGCAGCTCACGGGCGGCGCGGGACATGGCTGCGCGGGTCTCCGACTGGTACTTCACCAACGGCAACACAGTGGAAGGGGTCAAGGCTCAGGTCGATGACCTGCGGACCAAAGCGGCGGCCAACAACCACAAGGTGAAGGTCGGCGTGAACGCCTTCATCATTGCCCGCGATACCGAGGAAGAGGCCCGCGCGGTGCTGGCCCAGATCATCGACCAGGCCGACCCGGAAGCCGTCAACGCTTTTGGCGACGCGGCAAAACAGGCCGGCAAGGCCAGCCCCGAAGGCGAGGGTAACTGGGCCAAGTCCAGCTTCGAAGACCTGGTGCAATACAACGACGGTTTCAAGACCAACCTGATCGGCACACCCCAGCAGATTGCCGAGCGCATCGTCGCCTTGAAAGCCGTGGGAGTGGACCTGGTACTGGCCGCGTTCCTGCATTTCCAGGAGGAAGTCGAGTATTTCGGTAAGCGGGTCCTGCCGCTGGTGCGTGAGCTGGAGCAGGGGAAAGTGACGGTCAAGACAGCGGCGGTCGCTTAGMSQDTIKFAYWVPNVSGGLVVSKIPQRTDWGIDYNRKLAQIAEDAGFDYALTQIRFTAGYGAEYQHESVAFSHALLAATTRLKVIAAVLPGPWTPSVLGKQIATIDQLTGGRVAINVVSGWFKGEFTAIGEPWLEHDERYRRSEEFITTLKGIWTTDNYTFAGDFYRFRDYTLKPKPLQQHPEIFQGGSSRAARDMAARVSDWYFTNGNTVEGVKAQVDDLRTKAAANNHKVKVGVNAFIIARDTEEEARAVLAQIIDQADPEAVNAFGDAAKQAGKASPEGEGNWAKSSFEDLVQYNDGFKTNLIGTPQQIAERIVALKAVGVDLVLAAFLHFQEEVEYFGKRVLPLVRELEQGKVTVKTAAVAPGPT0002830_502DIRECT EFFECTBIO-FERTILIZATIONSULFUR_ASSIMILATION|MINERALIZATIONS-ASSSIMILATION-SULFUR_METABOLISMS-METABOLISM-SULFONE_DEGRADATION,PGPT0002830-sfnG-K17228NANA
D1-35_038741167hypothetical proteinATGGGCACGCTCACTGAAACCTTCGACACGTTGCCCCATTGGCTGCATCGACAGGCGCTGGGGCACGGTACGGACGTCGCCCTGCGCCACAAGCACCTGGGTGTCTGGCAGGTGCGGACCTGGCGGCAGCTGGCCGATGAGGTGCAGCGCCTGGCGAGTGCCCTGCAAGCTCGGGGATTCTCGGTGAGCGCGACCCTGACGATCATCAGTCGCCCGACACCACAGGCGATCGTGGCGGCGTTGGCGGCGCAATGGCTGGGTGGTGCGGCGAGCCTGTTCGATCCGTTGGACGGAGTCGCGGGGCAGGTCGAACTGCTCGGCGAATTGCAGCCGGATTTTGTGCTGGCCGAGGGGCACGAAGAATTGTCGCGTCTAGGCGCGGCGCAGTTGGCCCCCCGCGTGGTGATCTATCTGGACAAGCGCGGACTGTCAGGCTCGGTCGCGTTTGATCAGGCGCTGGATTACGCCACGTTGATCGAGGCGAGGACGCTCGATGAACGCGTCCCGCTGGCACATGCGCAGCAAACGGCGTTCGTTTTCTATCGCCGGGGGCCACAAGCCATCGAGCAACAATGCATCAGCCACGCCGAGCTGTTGCAACACGGGCAGCAACTGGTACAGCGCGAAGGACTGCGACGGCAGGAGGAAGCGTTGGCGGCGCGCGGTTTCGCCTCGGGCGGCCAGGCGCGGTATCTGCTCGCGCCCTGGCTGATCGCCGGTTTCCGCTTGAACTTCCCGGAAAACCTGGCGACCCGTGACCGCGACCGACGTGAGCTGGGCCCGACGCTGGTGGCCGGCACCCCGGAAACCTACGAGCGTCTGCACGGCTATGTGCTGGAGCGCCTGCCGGCACCGGGCGATGGGGCACGCAGACTGGTGGATTGGGCCCTGGCGGCACGTCCGGGGCCGTTGCGAAGGTTCATCGGTCATTGGCTGGTGCGCCGGCCTCTGCGCGACGTGCTTGGGTTTTCACGAATCCATGCACCGCTGCTGGTGGGTGATGCGCTAAAGCCTGAGACCCAGGCATTTTTTGACACCTTGGGTATCAACGTCCGCCAGTGGGAGGGTGCGGCCCATTGGGAGGTGCCGACGATTTCATTGGCCCCCACTACCAATGAACGGGACGAACGCCAATCACAACGCGCCTGGAAGGAGGCGACCACATGAMGTLTETFDTLPHWLHRQALGHGTDVALRHKHLGVWQVRTWRQLADEVQRLASALQARGFSVSATLTIISRPTPQAIVAALAAQWLGGAASLFDPLDGVAGQVELLGELQPDFVLAEGHEELSRLGAAQLAPRVVIYLDKRGLSGSVAFDQALDYATLIEARTLDERVPLAHAQQTAFVFYRRGPQAIEQQCISHAELLQHGQQLVQREGLRRQEEALAARGFASGGQARYLLAPWLIAGFRLNFPENLATRDRDRRELGPTLVAGTPETYERLHGYVLERLPAPGDGARRLVDWALAARPGPLRRFIGHWLVRRPLRDVLGFSRIHAPLLVGDALKPETQAFFDTLGINVRQWEGAAHWEVPTISLAPTTNERDERQSQRAWKEATTPGPT0008380_16270DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897NANA
D1-35_03875783cysA_1COG1118Sulfate/thiosulfate import ATP-binding protein CysAATGACCCGAACGGCCGCCACGCAGCTCCTCGAGCTGGACAACATTTCGCTGTCGTTCAAAGGCGTCAAAGCGATCACCGACATCAGCTTCAGCGTTGCCGCCGGCGAGATCTGCGCCTTGATCGGCCCCAACGGCGCCGGCAAGAGTTCATTGCTCAACATCATCAGCGGGGTCTACCAACCCCAGCAAGGGCGCATACGTTTCGACAATCGCGAGCGCCGCGGCATGCGCGCCCACGACGTGGCGGTGCGGGGCGTCGCCCGGACGTTCCAGAACATCGCGCTGTTCAAGGGCATGAGCGTGCTCGACAACGTGCTCACCGGGCGCAACCTCAAGCGTCGCAGCACCTGGATTGAGCAGGTGTTGCGTATCGGGCGGGCCGGTAAGGAGGACGACAGCCAGCGCGAAGCGGCCGAGCGGGTCATCGAGTTCTTGCGTTTGCAGCCGTGGCGCGACGCATGGGTGGGCACCTTGCCTTACGGTTTGCAGAAGCGCGTGGAGCTGGCCCGCGCCCTGGCGGCGGAGCCGCGGTTGTTGCTCCTCGACGAGCCCATGGCGGGCATGAACGCCGAGGAGAAACAGCTGATGAGCCGATTCATTGTCGACATCAACCGTGAGCTGGGCACCACGGTGGTGTTGATTGAGCACGACATCGGCGTGGTCATGGACATCAGCGATCACGTGGTGGTGCTCGATTACGGTCGCAAGATCGGCGACGGCGCCCCGGATGTGGTACGGCAGAACCCCGAGGTCATTTCGGCTTACCTCGGCACTCGACACTGAMTRTAATQLLELDNISLSFKGVKAITDISFSVAAGEICALIGPNGAGKSSLLNIISGVYQPQQGRIRFDNRERRGMRAHDVAVRGVARTFQNIALFKGMSVLDNVLTGRNLKRRSTWIEQVLRIGRAGKEDDSQREAAERVIEFLRLQPWRDAWVGTLPYGLQKRVELARALAAEPRLLLLDEPMAGMNAEEKQLMSRFIVDINRELGTTVVLIEHDIGVVMDISDHVVVLDYGRKIGDGAPDVVRQNPEVISAYLGTRHPGPT0020780_4364DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020780-livG-K01995NANA
D1-35_03876882livH_3COG0559High-affinity branched-chain amino acid transport system permease protein LivHATGGAATTTTTCTTTGAAGTATTGATTGGCGGGCTGCTGGCCGGGGTGATGTACGCCTTGGTGGCCATCGGTTTTGTGCTGATCTACAAGGCCTCCGGGGTGTTCAACTTCGCCCAGGGCGCGATGGTGCTGTTCTCGGCGCTGACCTTCGTCAGCCTGCTGGAGCGCGGCGTGCCGTTCTGGCTGGCGTTTCTCATCAGCCTGGTGGCGATGCTGCTGATCGCCGTGGCAGTGGAGCGTGTGGTGTTGCGCCCGTTGGTCAATCGATCGCCGATCACGCTGTTCATGGCCACCCTTGGGCTTTCCTATGTCATCGAAGGTTTCGCCCAGGCGTTGTGGGGTGCCCAGGTGCATGGCCTGGACTTGGGCATCAGTGATGAACCGCTGGAGCTGGGCGGGATGCTGTTGTCGCAGTTCGACATTTTCGCCGCGCTGACCGCCGCGTCACTGGTGGCGCTGCTGTCCTGGCTGTTCAACAAGACCCGCTTGGGCCTGGCGCTACGAGCCGTGGCGGATGACCCGCTGGCGGCGCTGGCCGTGGGTATTCGCTTGCAGCGGGTCTGGGTCGTGGTGTGGACGGTGGCGGGGTTCGTCGGGCTGGTCGCCGGCCTGCTCTGGGGCGCTCGCCTGGGCGTGCAGTTCTCGTTGTCGCTGGTGGTGCTCAAGGCCTTGCCGGTGTTGATCATTGGCGGGTTCACCTCGATCAGCGGGGCGATTGTCGGCGGGCTGATCATCGGCGCTTCGGAAAAATTGGCGGAGGTATATCTCGGGCCGTTCATCGGCAGTGGCATCGAAAACTGGTTTCCCTACGCGCTGGCGCTGCTGTTCCTGCTGGTGCGTCCGGCCGGGCTGTTTGGCGAACGCGCCATCGAACGGGTCTAGMEFFFEVLIGGLLAGVMYALVAIGFVLIYKASGVFNFAQGAMVLFSALTFVSLLERGVPFWLAFLISLVAMLLIAVAVERVVLRPLVNRSPITLFMATLGLSYVIEGFAQALWGAQVHGLDLGISDEPLELGGMLLSQFDIFAALTAASLVALLSWLFNKTRLGLALRAVADDPLAALAVGIRLQRVWVVVWTVAGFVGLVAGLLWGARLGVQFSLSLVVLKALPVLIIGGFTSISGAIVGGLIIGASEKLAEVYLGPFIGSGIENWFPYALALLFLLVRPAGLFGERAIERVPGPT0020770_6605DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020770-livH-K01997NANA
D1-35_038771068hypothetical proteinATGTTTTATCGAGAAGCAGGTCAGTTCAACACCCGTTATGCCGAGGACCGCCGGGTCTTTGCCTTGCGCCAGGATCGCCACGGGCTGGCGGCGCTGCTGCTGGTTGCATTCGTCGTGGTGCCATGGCTGGGCAATGACTACTGGCTCAGCGCGATATTGATTCCGTTTCTGGTGCTGTCCCTGGCCGGGTTGGGGCTCAATCTGCTCACCGGTTACGCCGGGCAGTTGTCCCTGGGTTCTGCGGCGTTCATGGCCGTGGGGGCGTTCGCCACCTACAACCTTGAAGTGCGTGTCGGCGGTTTGCCGTTGTTGTTCAGCATTGCCTTGGGCGGGCTGACGGCGGCGCTGGTGTCGCTCCTGTTCGGCCTGCCGAGCCTGCGCATCAAGGGCTTCTATCTGCTGGTCTCGACATTGGCGGCGCAGTTCTTCGTGACCTGGACGCTGACCCGCTTCGGCTGGTTTTCCAACGACAGCGCGTCGGGGGTGGTCAGCGCGCCGCGCCTGGATATTTTCGGCGTGAACCTGGACGCGCCGGCCGGCCGTTATCTGTTGACCCTGACGGTGGTGGTGGCGCTGTTCTGGCTGGGCAAGAACCTGGTGCGCAGCGAATTGGGCCGCCAGTGGATGGCCGTGCGCGACATGGACACGGCCGCGGCGGTGATCGGCATTCCTCTGGCGAAAACCAAGCTGCTGGCCTTTGCCATCAGCGGCTTTTACCTCGGCGTGACCGGCGCGCTCTGGGCCTTCGCCTATCTGGGCACCGTCGAACCCCATGGCTTCGATCTCAATCGCTCATTCCAGATCCTGTTCATCATCATTATCGGCGGGCTCGGCAGCTTGCTGGGCAACTTCCTCGGGGCGGCCTTCATCGTGCTGTTTCCGGTGCTGCTTTCCAACCTGGTGTCGCTGCTGCCCGGCGGGCTGATCGATGCCGGTCAGGTGGAAAACCTGCAAAAAATGTTTTTCGGCGCGCTCATCATCCTGTTCCTGATCAAGGAACCGGAGGGCCTTGCGCGCCTCTGGCAACGACTTCGCCAGCGTGCGCGGCTGTGGCCGCTGCGCTACTGAMFYREAGQFNTRYAEDRRVFALRQDRHGLAALLLVAFVVVPWLGNDYWLSAILIPFLVLSLAGLGLNLLTGYAGQLSLGSAAFMAVGAFATYNLEVRVGGLPLLFSIALGGLTAALVSLLFGLPSLRIKGFYLLVSTLAAQFFVTWTLTRFGWFSNDSASGVVSAPRLDIFGVNLDAPAGRYLLTLTVVVALFWLGKNLVRSELGRQWMAVRDMDTAAAVIGIPLAKTKLLAFAISGFYLGVTGALWAFAYLGTVEPHGFDLNRSFQILFIIIIGGLGSLLGNFLGAAFIVLFPVLLSNLVSLLPGGLIDAGQVENLQKMFFGALIILFLIKEPEGLARLWQRLRQRARLWPLRYPGPT0020775_4641DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020775-livM-K01998NANA
D1-35_038781326hypothetical proteinATGTTCAAACGATCATTCGCCAGCACCCTCGCACTGGCCCTGAGCCTCACCGCCGCCGCGTTCACCGTGCAGGCGGACAACGAGCAATATTTCCCGCTGCAAAGCTATCGCGTCGGTCCCTATGCGGCCGGCGGTACGGGTTTTTTTGGTGGCTTCATCGACTACCTCAAGTACGTCAACGCCAACGGCGGCGTGAACGGGGTGAAGCTGACGTGGAGCGAATGCGAAACCGAGTACGTGGTAGAGAAGGGCGTCGAGTGCTACGAGCGCCTGAAGAAAGGTTTGAATGGCGCACCGGCGGCTGCGACCAACCCGCTGTCAGTGGGCATCGCCTACGCCACGTTGGAGCGCTCCACCGCCGACAAACTGCCGCTGATCACCATCAACCACGGCCGCACCGACTCCACCGATGGCAGCGTGTTTCCCTATGTCTTCCCGCTGCAATTGAACCCGTACTCCGAGGTGTCGGCGATCATCAACTACATCGGCCAGCGCGCCGGTGGGCTGGACAAACTCAGGGGCCTGAAGATCGTCACCCTGTACCACGGCTCGCCGTACGGCAAGGAAACCAACGAGGTGTTGCAGACCCTGGCGGATAAATACGGTTTTGCGCTGACCTTGCTCGAAGTGCCGCATCCGGGCAACGAGCAACAGTCGCAGTGGTTGAATATCCGTCGGGAAAAACCCGACTGGGTAATCCTGCGCGGCTGGGGCGTGATGAACCCGGTGGCGCTGAAAACCGCGCAGAAGGTCGGGTTCCCGGCCGATCACATCATCGGCAACATCTGGAGCAACTCCGAGGATGACGCCGCGCCGGCCGGTGCTGCGGCCAAGGGTTTCATCGCGATCACCACGCACCCGTCGGGCACCGGTTTCCCGGTGCTGCAAGGCATCAAGAAGGACGTGGTCGACGCCGGCCATGGCGACCTGGCGGACCCCAAGCGTTTCGGCACGGTGTATTACAACCTGGGCGTGGTCAACGGCATCCTCAACGTCGAGGCGCTGCGCATTGCCCAGCAGAAGTTCGGCCAGCAACCGTTGACCGGCGAGCAGGTTCGGTGGGGCTTCGAGAATCTCAAGCTCGATGATGCACGTCTCAAGGAGCTGGGGGCGCTGGGGTTGGTGCAGCCGTTGCAATTGTCCTGCTCGGACCACGAGGGCGGCGGCGCGGTGCGCTTCCAGCAGTGGGACGGCACGCAGTGGAAGCTGATCAGTGACTGGGTGCAGGCCGACCGCGCGTTGCTGCGGCCGATCATCGAAGCGTCTTCGCAGCAATACGCCAAGGACAAAGGCATCACGCCGCGCGATTGCAGCAAGGAATCCTGAMFKRSFASTLALALSLTAAAFTVQADNEQYFPLQSYRVGPYAAGGTGFFGGFIDYLKYVNANGGVNGVKLTWSECETEYVVEKGVECYERLKKGLNGAPAAATNPLSVGIAYATLERSTADKLPLITINHGRTDSTDGSVFPYVFPLQLNPYSEVSAIINYIGQRAGGLDKLRGLKIVTLYHGSPYGKETNEVLQTLADKYGFALTLLEVPHPGNEQQSQWLNIRREKPDWVILRGWGVMNPVALKTAQKVGFPADHIIGNIWSNSEDDAAPAGAAAKGFIAITTHPSGTGFPVLQGIKKDVVDAGHGDLADPKRFGTVYYNLGVVNGILNVEALRIAQQKFGQQPLTGEQVRWGFENLKLDDARLKELGALGLVQPLQLSCSDHEGGGAVRFQQWDGTQWKLISDWVQADRALLRPIIEASSQQYAKDKGITPRDCSKESPGPT0020765_981DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020765-livK-K01999NANA
D1-35_038791104sfnR_2COG1221Sigma54-dependent transcriptional activator SfnRATGCAGCTTCTTACGCTTCCTCCCTCCCCCGGCCTGGCTACCTCGATCCGCGCCACGGCCCAAGTGTTCGCCGATCCCAGCTCCCAGGCACTGCTGACGCACTTGCAGCAAGTCGCGCCCAGTGACGCCAGCGTGTTGATCATTGGCCAGACCGGTACTGGCAAGGAGCTGGTCGCCCGCCACGTCCATAACCTCAGTGCTCGACGCGACAAACCGTTCGTGGCGGTGAACTGCGGGGCGTTTTCCGAGACGCTGGTGGAGGCCGAATTGTTCGGCCATGAAAAAGGCGCGTTCACCGGCGCCTTGACCGCCAAGGCCGGGTGGTTCGAAGAAGCCGACGGCGGCACGCTGTTCCTCGATGAAATCGGTGACCTGCCATTGCCGATCCAGGTCAAGCTTCTGCGCGTTCTACAAGAGCGTGAAGTGGTCCGCCTCGGCTCGCGCAAGCCCATCAGGATCAATGTGCGGGTGCTGGCGGCCACCAACGTGCAACTGGAAAAAGCCATCAACGCCGGGCATTTTCGCGAAGACCTGTATTACCGACTGAGTGTGGTCAGCCTGGTGCTCAAGCCGTTGCGCGAGCGTCCCGGCGACATCCTCCCGCTGATTCGCCATTTCATCGCTGAGTACAGCCGCAGGCTCGGTCATGGCGAGGTGACGCTGGATGCCCAGGCCCAGCGCAAACTGCTCGACTACTCGTGGCCGGGAAATATTCGCGAACTGGAAAACGTCATCCATCACACCTTGCTGATCTGCCGCAACAAGGTGATCGGCGTGCAGGATCTGCACCTGTCGAACTTTCGCATCGAGCGCCAGGACGCGTCCCATGACAACACGCCGCAAACCACCGAGGCACTGCTGGAAAAGGCCTTCGAGCAATTGCTTGAGCAAGCGCACGGCGATGTCTATGAAAAAGTCGAAGCGGCCCTGCTGCGCACCGCCTACCGCTACGCCAGTTGCAACCAGGTCCACACCGCAAGCCTGTTGGGCCTGAGCCGCAACGTCACCCGCAGCCTGCTGATCCGGATCGGCGAGCTGGTGGTCAACAAACGGCGCCCGGCGCTGAGTACGCGTGATGGTCGGGTGGTCAACCTTTCAACCTGAMQLLTLPPSPGLATSIRATAQVFADPSSQALLTHLQQVAPSDASVLIIGQTGTGKELVARHVHNLSARRDKPFVAVNCGAFSETLVEAELFGHEKGAFTGALTAKAGWFEEADGGTLFLDEIGDLPLPIQVKLLRVLQEREVVRLGSRKPIRINVRVLAATNVQLEKAINAGHFREDLYYRLSVVSLVLKPLRERPGDILPLIRHFIAEYSRRLGHGEVTLDAQAQRKLLDYSWPGNIRELENVIHHTLLICRNKVIGVQDLHLSNFRIERQDASHDNTPQTTEALLEKAFEQLLEQAHGDVYEKVEAALLRTAYRYASCNQVHTASLLGLSRNVTRSLLIRIGELVVNKRRPALSTRDGRVVNLSTPGPT0030455_28DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_REGULATION,PGPT0030455-sfa3-K11917NANA
D1-35_038801401bauDCOG1113putative GABA permeaseATGACCAGCCCGAGCTTCAAGGATTCGAACGGCCACTTGGCGCAGGGCTTCAAGCCTCGTCACGTCACCATGCTTTCAATCGCCGGGATCATCGGCGCCGGCCTGTTTGTCGGCTCGGGCCATGCGATCGCCGCTGCCGGTCCGGCCGTCATGTTGGCCTATCTTTTTTCCGGTCTGCTGGTGGTGCTCGTCATGCGCATGCTTGGCGAAATGGCGGTAGCCCGGCCAGACACCGGCTCGTTCTCCACCTACGCCGACCAGGCGATCGGGCGCTGGGCAGGCTTCACCATCGGTTGGTTGTACTGGTGGTTCTGGGTGCTGGTGATTCCCATCGAGGCGCTCGCCGCGGGTCATGTACTCAACCAGTGGTTTCCCTCCGTTGATGCCTGGCTGTTTGCCTCGGTGTCGATCATTGCCCTGGCCGTGACCAATCTGTTCAGCGTGTCCAAATACGGCGAGTTCGAGTTCTGGTTCGCCATGGCCAAGGTGATCGCGATCATCGGTTTCATCTCCCTGGGATTCGCCGTGCTGATGGGCTGGATTCCCGAGCGCGAAGCCAGCGGCTTGAGTCGCTTGATGGAGGAACACGGCGGGTTCGCGCCCAATGGCTTGTCCGCCGTGGTCGGGGCCTTCATCACCATCATGTTCAGTTTCATTGGTACGGAGGCGGTGACGATTGCCGCCGCCGAATCCAGCAACCCGGCACAGAACATCGCCAAGGCCACGCGCTCGGTGATCTGGCGCATCGGCGTGTTTTATCTGCTGTCGATCTTCGTGGTGATTTCCGTGGTGCCCTGGGACGATCCGCTCCTGGCCTCGGTGGGCTCCTACCAGCGGGCGCTGGAGTTGATGAACATTCCCCACGCCAAATTCATGGTGGACGTGGTGGTATTGATTGCCGTGGCCAGTTGCATGAACTCCTCCATCTACATTGCTTCACGCATGCTCTATTCCCTAGGCCGGCGTGGTGATGCGCCGAGGGTGGTGGAAGTGACTTCGTCCGCTGGCGTGCCCCGGGCAGCGGTGATAGCCAGTACGGTACTGGGCTTGGGCATCACCTTGTTCAGCTACTTCATGCCGGCCGGGTTGTTCCAGTTCCTGCTCGCCAGCTCCGGCGCCATCGCCTTGCTGGTGTACCTGGCGGTCGCCGTGTCCCAGTTGCGTATGCGCCGCAAGCTGCTTCGCCAAGGCGTCGAGCTGGGCTTTCGCATGTGGCTGTTTCCCTGGCTCACCTGGGCGGTGATCGTGTTTATCTGCGCGGCCCTGGCGGTGATGATGGTGACTCCCGAGCACCGCGGCGAAGTGAGCACCACCCTAGGCCTGGCCTTGGTCATTTCCTTTGTCGGCCTGGTGACTTCGCGGCAATCTCCGCAGCCTGAAGAGGCGGTTTCCCTCGGCTAGMTSPSFKDSNGHLAQGFKPRHVTMLSIAGIIGAGLFVGSGHAIAAAGPAVMLAYLFSGLLVVLVMRMLGEMAVARPDTGSFSTYADQAIGRWAGFTIGWLYWWFWVLVIPIEALAAGHVLNQWFPSVDAWLFASVSIIALAVTNLFSVSKYGEFEFWFAMAKVIAIIGFISLGFAVLMGWIPEREASGLSRLMEEHGGFAPNGLSAVVGAFITIMFSFIGTEAVTIAAAESSNPAQNIAKATRSVIWRIGVFYLLSIFVVISVVPWDDPLLASVGSYQRALELMNIPHAKFMVDVVVLIAVASCMNSSIYIASRMLYSLGRRGDAPRVVEVTSSAGVPRAAVIASTVLGLGITLFSYFMPAGLFQFLLASSGAIALLVYLAVAVSQLRMRRKLLRQGVELGFRMWLFPWLTWAVIVFICAALAVMMVTPEHRGEVSTTLGLALVISFVGLVTSRQSPQPEEAVSLGPGPT0007665_500DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSINSECTICIDAL_COMPOUNDSINSECTICIDAL-GAMMA-AMINOBUTYRIC_ACID_BIOSYNTHESIS,PGPT0007665-gabP-K11735NANA
D1-35_038811722prsD_3Type I secretion system ATP-binding protein PrsDATGGGTTTTTTTCTTGATCCGCGGCATGACATCGACGCCGCTTTGTTGAGTTATCGCCGGGTATTCTGGTCCCTGGCCCTCTTCAGCGGCGTGATCAATCTGCTGGTGCTGGTGCCATCGCTGTACATGATGCAGGTCTACGATCGGGTCCTCACCAGTCGCAACGAAACCACGCTGTTCATGCTCACCTTGATCGCTCTCGGGCTGTTCATGTTCAGTGCGTTGATCGAGTGGGTGCGTGGCGAAGTGATGATCCGCATGAGCGCCGGGCTGGACGATGCCTTGGGCGAGCGGATTTTCGATGCAGCGTTCGCCCGCAGCCTGCGCGAGCACAACGCCAACCCGGCGCAGGTGCTGAGTGACCTGGCCACCTTGCGCCAACTGATTACCGGCCAGGGGCTGATCGCCTTGCTCGATGCACCGTGGTTGCCGATTTTCCTGCTGGTGGCGTTCATCATCCACCCCTGGTTCGGCGTGCTGACCCTGATCCTCGCAGCGTTGCTGGTCGGCCTGGCACTGTGGGGCGAGCTGGCGACCCGCACGCGCCTGGGGGAGGCCAATCGGCTGGGCGTGCAATCGTCGATCTACGTCAACAGCACCCTGCAAAATGCCGAGGTCATCCAGGCCCTGGGCATGCTCGGGCCGCTGCGCCAGCGCTGGAGCCTGCTGCAGCAACGGATCATCGCGGCGCAGGCGCATGCCAGTGATCGCGGTGCGCGTATCACCTCGGCGACCCGTTTCGTGCGGATTTCCGGCCAGTCCCTGGCCTTGGGGCTGGGGGCGCTGCTGGTACTCGAAGGGCAATTGTCGGCGGGCATGATGATTGCCATGTCGTTGTTGCTGGGGCGTGCCCTGGCGCCGGTGGAAATTGCCATTGGTTCGTGGAAGCAATTCAACGCCGGTCGCCAGAGTTACCAGCGTCTGAGCCAGTTGCTCGCGCAACATCCTCGCGATCGCCTGCGTATGCCATTGCCACCGCCAACGGGCGCGGTGCGCCTGGAGCAGCTCTACGTCGGGCCACCCGCTGCGACGCAGCCGCTCCTGCGTGGCATCAATTTCAGCCTGGACAAGGGCGAGGTACTGGCGGTGGTCGGGCCCAGCGCCAGCGGCAAATCGACCTTGGCTCGGGCATTGGTTGGCGTGTGGCCGGCCATGGGTGGCTCGGTGCGGCTGGACGATGCCGAGATCAGCCAGTGGTCCCATGACGCCTTGGGCCCGTACCTCGGTTATCTGCCGCAGGACATCGAACTGTTCGATGGCAGTGTCGCTGACAATATCGCCCGTTTCGGCGAGCAGGACGCCGACAAGATCATCGCCGCCAGCCGTCACGCGGGCATTCACGAAATGATCCTGAGATTCCCCAAGGGCTACGACACGCCGCTGGGCCCCGGCGGGCTTGGCCTGTCCGGCGGACAGAAGCAGCGCCTGGGCCTGGCCCGTGCGCTTTATGGCAGCCCTTCGCTGATCGTCCTCGACGAGCCCAATTCCAACCTCGACGAAGCCGGCGAACTCGCGCTGGTGCAGGCCATCGGTGTGCTCAAGGCCGCCGGCAGCACGGTGGTGTTGATCACCCACCGGCCCAACGTTCTGGCGGTAGTGGATCACATCCTGGTGCTGAAGGACGGTACCCAGCAGGCGTTCGGCCCGCGCGACCGGGTGCTCAAGGCGCTGATGCCAGGCCCAAGGCCGACGGCCGTGCGGGAGGCGGGTAAAGATGCGTGAMGFFLDPRHDIDAALLSYRRVFWSLALFSGVINLLVLVPSLYMMQVYDRVLTSRNETTLFMLTLIALGLFMFSALIEWVRGEVMIRMSAGLDDALGERIFDAAFARSLREHNANPAQVLSDLATLRQLITGQGLIALLDAPWLPIFLLVAFIIHPWFGVLTLILAALLVGLALWGELATRTRLGEANRLGVQSSIYVNSTLQNAEVIQALGMLGPLRQRWSLLQQRIIAAQAHASDRGARITSATRFVRISGQSLALGLGALLVLEGQLSAGMMIAMSLLLGRALAPVEIAIGSWKQFNAGRQSYQRLSQLLAQHPRDRLRMPLPPPTGAVRLEQLYVGPPAATQPLLRGINFSLDKGEVLAVVGPSASGKSTLARALVGVWPAMGGSVRLDDAEISQWSHDALGPYLGYLPQDIELFDGSVADNIARFGEQDADKIIAASRHAGIHEMILRFPKGYDTPLGPGGLGLSGGQKQRLGLARALYGSPSLIVLDEPNSNLDEAGELALVQAIGVLKAAGSTVVLITHRPNVLAVVDHILVLKDGTQQAFGPRDRVLKALMPGPRPTAVREAGKDAPGPT0029385_1043DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_I_SECRETION_SYSTEMSCE-TSS1-HEMOPHORE|METALLOPROTEASE_TRANSPORT,PGPT0029385-hasD|prtD|-K12536NANA
D1-35_038821371prsE_5Type I secretion system membrane fusion protein PrsEATGCGTGATTTGAAACCGGCGACGCCGGCCCACGGCGACCACGGCTTGAGCGTGCTCAGCAGCAACACGCTACCCAACGCCAGTACCGATGCCGGCGGCGCGGCGCGCTACGGCGTGGCCTTCCTGGCCCTGACCTTGGGCGGTTTCCTGCTTTGGGCGTGCCTGGCGCCGCTCGACCAGGGTGTGGTCGGCAGCGGCACCGTGGTGGTGGCGGGCGAGCGCAAGGCAGTGCAATCGCTGGTGGGCGGGGTCGTGGAAAAGCTGCTGGTCAGCGACGGCGACCGCGTCAGCCAGGGCCAGTTGCTGGTGCAGCTCAACACGGTGCAGGCCCAAGCGCAGTTGGACGTGACCCTGGGCAAGCTGCTTAATGACCGCAGCATCGAGGCGCGCTTGATGGCCGAGCGCCTCGGCGCCGATGAAATCCACTGGCCGGCGCAATTGCTGGAGCGCGCCGAGGAGCCGCGCGTCAAGGCGGCCATGGCGCTGCAGAAGCAACTGTTCCTGACACGCCGTGCCGAACTGGGCAGCCGCCTGCAGATCATCGAACATGAAGTCGGCGCCTTGCAGCAACAGTTGCAGGGCTATGAAGGGGTCAAGCGCAACTACGACGCGCAGATGCGTTTTCAGCAGCAAGAGCTTGAAGGTTTGCGCGAATTGGCTCGGGAAGGCTACGTGCCGCGCAACAAACTCTTCGAGGCCGAGCGCAACGCGGCGCAACTGGCCGGGCAGATCGCTTCCGGCATTGGCGATGTAGGCCGCACGCGCCAGGCAATCAACGAAAGCCGGCTCAAGGCCTTGCAGGCGCAGCAGGAATTCCGGCGCGATGCCGAAACCCAACTCAGCGAGGTCTCGGCCGAGGCCGCCGGTTATGCCGATCAGATCCGCGCCTTGCAGTTTGAGGTGGATAACGGGGCGATCCGCGCGCCGGTGGCGGGGCAGGTCATGGACGTGTCGATCCATACGGTCGGCGGCGTCGCCCAGGCCGGGCAGACGCTGATGCAGGTGGTGCCGCTGGATGCGCCGATGGCGATCACCGCGCGTTTTGATCCGCTGATGGCCAACAAGCTGAGCCCAGGGCTGCCGGTGCACGTGCATTTCACTGCGTTGCAACGGGTGGACACGCCGACGGTAACCGGCACGATCACCACCGTGTCGGCGGACCAGTTGATCGACCAGCAGACCCACCAGCCATATTTCTCCGCCAAGGTCGAGATTCCCGCCGACACCGTCGTTTCGCTGCAGAGCGCCGGGCTGCAGGTGCGCCCCGGCATGCTTGCCGACGTCACCGTGGTGACCGGTGAACGGACCTTGATGAATTACCTGATGAAACCCTTGCGCGAACGCTTGCTGGCGGCCTTCAAAGAGGAATGAMRDLKPATPAHGDHGLSVLSSNTLPNASTDAGGAARYGVAFLALTLGGFLLWACLAPLDQGVVGSGTVVVAGERKAVQSLVGGVVEKLLVSDGDRVSQGQLLVQLNTVQAQAQLDVTLGKLLNDRSIEARLMAERLGADEIHWPAQLLERAEEPRVKAAMALQKQLFLTRRAELGSRLQIIEHEVGALQQQLQGYEGVKRNYDAQMRFQQQELEGLRELAREGYVPRNKLFEAERNAAQLAGQIASGIGDVGRTRQAINESRLKALQAQQEFRRDAETQLSEVSAEAAGYADQIRALQFEVDNGAIRAPVAGQVMDVSIHTVGGVAQAGQTLMQVVPLDAPMAITARFDPLMANKLSPGLPVHVHFTALQRVDTPTVTGTITTVSADQLIDQQTHQPYFSAKVEIPADTVVSLQSAGLQVRPGMLADVTVVTGERTLMNYLMKPLRERLLAAFKEEPGPT0029390_231DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_I_SECRETION_SYSTEMSCE-TSS1-HEMOPHORE|METALLOPROTEASE_TRANSPORT,PGPT0029390-hasE|prtE-K12537NANA
D1-35_038831350tolC_2COG1538Outer membrane protein TolCATGACCGACCGTTGCCGTTATGGCGTCCGTGTGCTGTTGAGCCTGTGCACCAGTTGGGCGGTGATCGGCCCCGTCTGGGCGGCGGAGGGCGGGCTGAGCCTGATCGCCGCTTACGATGCCTCGCGCCTCAACGATCCGACCTTGCAGGCGGCGACCCATGCCTACGACGCGTCGCGGCAGGAGGAGGCGATCGGCCGTGGCGGTCTTTATCCGCAAGTGTCGCTGTCGTCGCGTTATGGCTATGGCGGGCGTACCGATGGCGGCGACGACAGCAGTTACGTCAACAGCAACGATTACCAGGCGAACAGTGTGACCCTGGCCGCGCAGCAGGCGCTCTATGACAAGGGGCGTTGGGCGGCTTATCAGGAAGGCAAGGCGCGGGGGGCGCTGGGTAGCCAGCAATTCGATGTGGCCGGCCAGACCCTGTTCGATCGGGTCGCCAAGGGCTATTTCGACGTGGCCCGGGCCGAGAACGAACTCAAGCTGATCGCCCAGCAGAAAACCGCTATCAGTGGCTTGGTCCTCCAGAGCAAAAAGCTCTATGAGGGCGGCCAGGGAGCGATCACCGATATCGACGAGGCCCAGGCCCGGCTCGATCTGGTCGAGGCTCAGGAAACCGAAGCCCAGGCCCGCCGCGTGGCTGCGCTGCGAGCACTGTCGGGGCGGGCCAGCGTGCCGATCGACGACATCCAGGCGATGCGCGAAGAACTCCCCGCCGGCAGCCCGATCCCGCCGGAGCAGGATCTGCCGTATTGGACAACGATTGCCCGTGAGGCCAGTCCGGAGCTGGCGGCGCGGTTGGCGGCGGTAAAAGTCGCCGAGGCCCAGGCCGACAGCCAGCGCGCCGGGCATTATCCGACGTTGTCGCTCACCACTCAGTTGACCCGTCGGGAAACCCGCCAGTACCAGGAGCTCGACCCGCGCCAGGACACTTACTACGTCGGGGTGCAACTGGATATCCCGTTGTATCGCGGCGGCGCGGTGCGTGCATCGGTGGCCAAGGCCGAGGCCCAGCTGGCCGGGGCCCAGTCCGATTACGATGTGCAGCGTCAGGAGCTGGCCGAGGCTATCGAAACCGACTATCTGGGCGTGGTGGCGGGCTTCGCCAAGAGCAAGGCGATGCTACGGGCGGTGGAATCCAACCAGCGGGCGCTGACGTCGACCGAGAAGGGTTTCCAGGGCGGCGTGCGCTCGACGGTCGACATCCTCGATGCCCAGCAACGCCTGTTCCAGGCACGCCGCGACCTGCTCGATACCAAGCTGGACATGCTCGAAAGTTATGTAAGCCTGCACACCCACACTGGCCAGATGAACCGCGCGGTGCTGGAACAGGTGCAAAGCCTGTTCTAAMTDRCRYGVRVLLSLCTSWAVIGPVWAAEGGLSLIAAYDASRLNDPTLQAATHAYDASRQEEAIGRGGLYPQVSLSSRYGYGGRTDGGDDSSYVNSNDYQANSVTLAAQQALYDKGRWAAYQEGKARGALGSQQFDVAGQTLFDRVAKGYFDVARAENELKLIAQQKTAISGLVLQSKKLYEGGQGAITDIDEAQARLDLVEAQETEAQARRVAALRALSGRASVPIDDIQAMREELPAGSPIPPEQDLPYWTTIAREASPELAARLAAVKVAEAQADSQRAGHYPTLSLTTQLTRRETRQYQELDPRQDTYYVGVQLDIPLYRGGAVRASVAKAEAQLAGAQSDYDVQRQELAEAIETDYLGVVAGFAKSKAMLRAVESNQRALTSTEKGFQGGVRSTVDILDAQQRLFQARRDLLDTKLDMLESYVSLHTHTGQMNRAVLEQVQSLFPGPT0029395_168DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_I_SECRETION_SYSTEMSCE-TSS1-HEMOPHORE|METALLOPROTEASE_TRANSPORT,PGPT0029395-hasF|prtF-K12538NANA
D1-35_038845613hypothetical proteinATGATTTTCAACGTACAAGATTTTGGCGCCAAAGGAGATGGCGTCACCGACGACACGGCGGCCATTCAAAGCGCGATCGATGCGGCAGCGGCCGCGGGCGGTGGCCAGGTGTACATGCCCACCGGCACCTACATCGTTTCGGGAGGCGAGGAACCCTCCGATGGCTGCCTGATGCTCAAAAGCAACGTCTACCTGTACGGCGACGGCATGGGCGACACCACGGTCAAGCTGGCCGACGGATCGGACACCAAGATCACCGGCATCATCCGCTCGGCCTATGGCGAGGAAACCCACGACTTCGGCGTCAGCAACCTCACCATCGACGGTAACCGCGACGCCACCACCGGCAAGGTGGATGGCTGGTTCAACGGTTATATTCCCGGCGAGGAAGGCTACGACTCCAACGTCACCCTCGACAGCGTCGAGATCAAGGACTGCTCCGGGTACGGCTTCGACCCGCATGAGCAGACCGTCAACATGGTCATCAAGAACAGTGTGTCCCACGGCAACGGCCTGGATGGCTTCGTCGCCGACTTCCTCAGCGACAGCACCTTCGAAAACAATATTGCCTACGACAACGACCGCCACGGTTTCAACGTCGTCACCAGCACCCACGATTTCACCATGACCAACAACGTCGCCTACAACAACGGCGGCAACGGCATCGTCGTGCAGCGCGGCAGCGAAGATATCCCCTCTCCCAGCAACATCACCATCACCGGTGGCGAGGTCTACGGCAACGGCGCCGAAGGCGTGCTGGTCAAGCTGTCCAGCGACGTGACCGTCACCGGCGTGGATATCCATGACAACGCCAGCGCCGGGATCCGCATCTACGGCAGCAACCATGTCGAGGTCATCGACAACACCCTCAACAACAACTCGTTGGGCGGCGCGGTGCCGGAAATCATCATCCAGTCCTACGACGACACCCTCGGTGTGTCCGGCAAGTACTTCAACGGCAGCGACAACCTGATCCAGGGCAACGTCATCAGCGGCAGCAACCTGTCCACCTACGGCGTCGCCGAGCGCAACGAAGACGGCACCGATCGCAACGCGATCATCGCCAACACCATCAGCCACACCAGCAAGGGCGCCACGCTGGTCTATGGCGATGGCAGCTATGTCAGCGCCACCGTGCCGATGACCACCGTGCAAGGCACGGCGGGCAACGACGTCCTCATGGGCACCGCCGCCAGCGAAATTTTCTACGGTGCGGCCGGCAACGACACCATCAATGGCGCGGCCGGGAGCGATATCCTGGTGGGCGGCGCGGGCGTCGACAAACTCACTGGCGGCACGGGCGCCGACACATTCCGCTTCACCAGCCAGTCCGACAGCTATCGCAATGCAACGGCGAGCTTCGACGACACCATCACCGATTTCGACGTGACCCAGGACAAGATCGATCTTGCCGGCCTCGGCTTCACCGGCCTGGGCAATGGCCGTGGCGGCACCCTGCAAGTCAGCTACAACGCCAGCAGCGACCGCACCTACATCAAGGACTACGACGCCGATGCCAGCGGCAATCGCTTCGAACTGATTCTCTCGGGCAACCTGGCGAGCACCCTGACGGCGAGCAACTTCATCTTCAATCGGGTCATCACCGGCACCACCGGCAGCGACTCTTTGTTGGGCAGCGACGCCGCCGATACCTTGCTCGGCCTGGCCGGCAACGACAGCCTCAGCGGTGGCGCGGGCGACGACAAGCTCGACGGTGGCGCCGGCATGGACACCCTCACGGGCGGCGCCGGGGCGGACACCTTCGTGTTCGCCAACCGGCTGGACAGCTACCGCAACTACAACACCGGTGGCGCCAACCTGGGCGATTTGATCACCGACTTCAACATCGCTGCCGACAAGATCGATCTCTCCGCCATGGGCTTCACCGGCCTGGGCGACGGCAAGAACAATACCGTCTACCTGGTGCTCAACAGCGCCGGCACCAAGACCTACATCAAATCCCTGGAGGCCGATGCCAACGGCAACCGCTTCGAAGTGGCACTGGACGGCAATTACCTCAACACCCTGACCAGCGCCAACTTCGTCTTCGCGACAACATCGCCGACCAACCAGGCACCGGTGCTAGCCACGCCATTGCTGGACCAGAACGCCAGCGAAAAGACGCCCTTCAGCTACGTGGTGCCGGCCACCAGTTTCACCGATCCGGACAATGACAGCCTCAGCTACACCGCCAAGCTGGCCGATGGTAGCGCCCTGCCCAGCTGGCTGACGTTCGACGCCGCCACCCGCACCTTCAGCGGCACGCCACCCGACACGGCATCGGGCACTTACTCGATCCAGGTCACCGCGACCGACGGCAGCAACGCCACCGTCAGTGACAGCTTTACCCTGGCGGTGCAGGACGTGCCCGGCTCGGTGGTGATCAACGGCACGCCAAACAACGACACGCTGACCGGCACCGTCGCCAACGAACAGATTTTCGGTGGCGCGGGCAACGACACCCTCAATGGCGCAGCGGGCAACGACATCCTGGTGGGCGGCACGGGCGTGGACAAACTCACCGGCGGCACGGGCGCCGATGTGTTTCGCTACACCTCCAAGCTCGACAGCTACCGCACCGGTTCCACCAGCGCCAGTGACCAGATCCTCGATTTCGACGTGGCCGCCGACAAGATCGATGTCGCGGCGCTGGGCTACACCGGTCTGGGCAACGGGCTCAACGGCACGCTGCAAGTCAGTTACAGCTCGTCAACCAACCGCACGTACCTGAAGGACCTCACGGTCGATGCCAACGGCAACCGCTTTGAAATCTCCCTGGCGGGAAATTTCGTCAGCAGCCTGACCGCCAATCACTTTGTCTTTGCCGACCAGAACACCCCGACCAACGTGGCGCCGGTGGTAGTCACTCCGCTACTCGACCAGAACGCCAGCGAAAGCACGCCGTTCAGCTATACGGTGGCCAACAACAGCTTCAGCGACGCCAACCAGGACGTGCTGACCTACACCGCGACCCTGGCCAATGGCAGCGCCCTGCCCTCGTGGCTGAGCTTCAACGCCAGCACGCTGACTTTCAGCGGCACGCCCACCAGCACTGCGTCCGGCAACTACGACGTGCTGGTCAAGGCCACCGATCCGTCCGGCGCATCGGTCAGCGACAGCTTTGCCCTGGTGGTCGCCGATGCGCCCGCCAACACCATCACCGGCACGGCCAATGCCGAAAGCCTCAACGGTACGGCAGGCGCCGACCTGATCCTCGGCCTGGGTGGCAACGACACCATCAAGGCTGGGACCGGTGCCGACATCATCGACGGTGGCGCCGGAAGGGACTCGCTGTATGGTGACGCCGGCGCCGACACGTTCCGCTACAGCAACCTGTCCGACAGCTACCGGGACTACGACACCGGTGGCGTCACGGCCACGGACACGATCTATGACTTCACCGTCGGCGTCGACAAGATCGACGTCTCCGGGCTGGGTTTCCTCGGCCTCGGCGACGGCAGCAACGGCACGCTCTACATGACGTTGAATGCGGCCGGCGACAAGACGTATGTCAAGTCCAGCCAGGCTGATGCCGATGGCAACCGTTTCGAGATCGCCCTGAACGGCAACTACCTCAACACCCTGACCGCCAGTGATTTCGTCTTCGGCGAACGCGCCCAGCAAGACATCCTCTATCTGCCGACGCTCGGCCAATCCAACGCACGCCTGCTGCGCATGAGCGAGGATGACGATCAGTCCGGCACCTCAATGCTGGTCAATGACCTGAACAAGTACACCACCTATGACGTGCGCAGCCAGTTCAGCGACGCCGACGGCAACGGCATTGACATTGCGGTGGGTGGCAGCACGGTCAACGGCTTGTCGACCCTCGGCGCCGAGGAGCTGAAGTTGTGCTGGTGGCTGACCGACACCAACCAACCCGGCCCGGCATTGCTGCGCGCCGTGACGCTGTTGCGCGACCAGCTCACCGAACTCAAGGCCATCGACAACGTGACCATGGGTATCATCTGGGGCCAGGGCGAGGAAGCCGCCCAGGAGATCGCCCGCTCCACCGACAAGGCAGCGGCTGCGGCGGCCTACAAGGCGTCGACGCTGAAGGTCTTCGATTACCTGCACGCCCAACTCGGCAATTTCAACGTGTACCTGATGGAAACCGGTCACTACGAGCAGGACGCCGCGCGCGCCCGTGGTTACTCGGAGGAGAAGATTGCTTCCATCGTCGAGGGTGTGGGCTACGTCCGCGCCGTCCAGGAAGCCATCGCCGCCGAGCGCGCCGATGTGAAACTGGCGGTGGACTACAACGACCTGCCCTTGCGTTATGAAGTCGATCCGTTGGTGTATCCCGACGATGTCTGGCACCTGCACGAGGAGTCAGCGGAAATCGTCGGGCAGCGCCTGGCGGACTACATCGCCAATGACCTTGGCTTCCAGGGCAACCCCAACGACAACAACAGCGTGCAGGATATTTTCGACGGCGCGCAGAATGAGGGCGGGAAAATTTCCGGCACCGACCAGGCCGACACCCTGGTAGGCAGTTCCGGCAACGACATACTGGACGGGGACCTGGGTGCCGACTCGTTGACCGGCGGCGATGGTAACGACATCTACGTCGTCGACAACGCGTTCGACAGCGTGGTGGAAACCAATACCTCGACTTCGCAGATCGATACGGTACAGGCCTCGGTCAGTTGGACCCTGGGCGCCAACCTGGAAAACCTGGTGCTGACCGGCGTGTCGGACATCGACGGCACCGGTAACGAACGGCGCAACTTCATCACCGGTAACGCCGCCAACAACGTGCTCAATGGCGCGGTGGGAGCGGACAGCATGAGCGGCGGCGACGGCAACGACACCTACTACGTCGACAACGCCAGCGATACCGTGATCGAGACCAGCAGCAACCCGGTGTCCGGCGGCATCGACGCCGTCCACAGCAGCCTCGCTACCTACACCTTGGGCAACAACGTGGAGAATCTGTACGTCGACAGCGCCGGGGCCGCCAACGGGATCGGTAATGCGCTGAACAACACGCTGTTCGCCGGCGTGGGCGACAACGTCCTGGACGGACGCGATGGCAACGACACCGTCTCCTACGACCGGGCCCTGGCCGGGGTGACCGTGAACCTGTCGACATCCGCACAGCAGAACACCGTCGGTTCCGGGCTCGACACGCTGAAGTTCATCGAGAACCTGACGGGCAGTGCCTACGCGGATACGCTGTCGGGCAACAGTGCCGGGAACATCCTCAACGGCGGTGCCGGCAATGACACGCTGGTGGGCGGCTCGGGCGATGACCGGCTGATCGGCGGCGCCGGCACTGATAACCTCACCGGCGGCACTGGCGCAGATACCTACGCGTTTACTGCGCTGTCGGACATGGGCGTCGGCGCCGCGCGGGATGTGATCAACGGCTTCAAGACGGCTGAGCTGGATAAACTGGACTTCACCGGCCTGGACGCCAACCCGCTGACCGCCAGCATCGATGCCTTTACCTTCATCGGCAGCAACGCCTTCGACGCCAGCAACGCGACCGGCCAACTGCGTTTTGTCGATGGCATCCTCTACGGCAGCGTCAATGCCGACGCCACCGCCGAGTTCGAGTTCGAACTGGTGGGCGTCAAGGAGCTGCACGCCAGCGACTTCACCGCCTGAMIFNVQDFGAKGDGVTDDTAAIQSAIDAAAAAGGGQVYMPTGTYIVSGGEEPSDGCLMLKSNVYLYGDGMGDTTVKLADGSDTKITGIIRSAYGEETHDFGVSNLTIDGNRDATTGKVDGWFNGYIPGEEGYDSNVTLDSVEIKDCSGYGFDPHEQTVNMVIKNSVSHGNGLDGFVADFLSDSTFENNIAYDNDRHGFNVVTSTHDFTMTNNVAYNNGGNGIVVQRGSEDIPSPSNITITGGEVYGNGAEGVLVKLSSDVTVTGVDIHDNASAGIRIYGSNHVEVIDNTLNNNSLGGAVPEIIIQSYDDTLGVSGKYFNGSDNLIQGNVISGSNLSTYGVAERNEDGTDRNAIIANTISHTSKGATLVYGDGSYVSATVPMTTVQGTAGNDVLMGTAASEIFYGAAGNDTINGAAGSDILVGGAGVDKLTGGTGADTFRFTSQSDSYRNATASFDDTITDFDVTQDKIDLAGLGFTGLGNGRGGTLQVSYNASSDRTYIKDYDADASGNRFELILSGNLASTLTASNFIFNRVITGTTGSDSLLGSDAADTLLGLAGNDSLSGGAGDDKLDGGAGMDTLTGGAGADTFVFANRLDSYRNYNTGGANLGDLITDFNIAADKIDLSAMGFTGLGDGKNNTVYLVLNSAGTKTYIKSLEADANGNRFEVALDGNYLNTLTSANFVFATTSPTNQAPVLATPLLDQNASEKTPFSYVVPATSFTDPDNDSLSYTAKLADGSALPSWLTFDAATRTFSGTPPDTASGTYSIQVTATDGSNATVSDSFTLAVQDVPGSVVINGTPNNDTLTGTVANEQIFGGAGNDTLNGAAGNDILVGGTGVDKLTGGTGADVFRYTSKLDSYRTGSTSASDQILDFDVAADKIDVAALGYTGLGNGLNGTLQVSYSSSTNRTYLKDLTVDANGNRFEISLAGNFVSSLTANHFVFADQNTPTNVAPVVVTPLLDQNASESTPFSYTVANNSFSDANQDVLTYTATLANGSALPSWLSFNASTLTFSGTPTSTASGNYDVLVKATDPSGASVSDSFALVVADAPANTITGTANAESLNGTAGADLILGLGGNDTIKAGTGADIIDGGAGRDSLYGDAGADTFRYSNLSDSYRDYDTGGVTATDTIYDFTVGVDKIDVSGLGFLGLGDGSNGTLYMTLNAAGDKTYVKSSQADADGNRFEIALNGNYLNTLTASDFVFGERAQQDILYLPTLGQSNARLLRMSEDDDQSGTSMLVNDLNKYTTYDVRSQFSDADGNGIDIAVGGSTVNGLSTLGAEELKLCWWLTDTNQPGPALLRAVTLLRDQLTELKAIDNVTMGIIWGQGEEAAQEIARSTDKAAAAAAYKASTLKVFDYLHAQLGNFNVYLMETGHYEQDAARARGYSEEKIASIVEGVGYVRAVQEAIAAERADVKLAVDYNDLPLRYEVDPLVYPDDVWHLHEESAEIVGQRLADYIANDLGFQGNPNDNNSVQDIFDGAQNEGGKISGTDQADTLVGSSGNDILDGDLGADSLTGGDGNDIYVVDNAFDSVVETNTSTSQIDTVQASVSWTLGANLENLVLTGVSDIDGTGNERRNFITGNAANNVLNGAVGADSMSGGDGNDTYYVDNASDTVIETSSNPVSGGIDAVHSSLATYTLGNNVENLYVDSAGAANGIGNALNNTLFAGVGDNVLDGRDGNDTVSYDRALAGVTVNLSTSAQQNTVGSGLDTLKFIENLTGSAYADTLSGNSAGNILNGGAGNDTLVGGSGDDRLIGGAGTDNLTGGTGADTYAFTALSDMGVGAARDVINGFKTAELDKLDFTGLDANPLTASIDAFTFIGSNAFDASNATGQLRFVDGILYGSVNADATAEFEFELVGVKELHASDFTANANANANANA
D1-35_038852658uvrA_1COG0178UvrABC system protein AATGCCCCCACGCTCCGCCCCTGCTTCAACTGCGGCTTTGCCCGAAGGCACCGGTTTTGTCCGGGTGCGTGGCGCCCGCGAACACAACCTCAAGAACGTCGATGTGGACATCCCCCGCGATGCCCTGGTGGTGTTCACCGGCGTGTCGGGTTCCGGCAAGTCATCGCTGGCCTTCTCCACGGTTTATGCCGAAGCCCAGCGCCGCTATTTCGAGTCGGTCGCGCCGTACGCGCGGCGTTTGATCGACCAGGTGGGCGTGCCGGACGTGGACAGCATCGAGGGCCTGCCGCCGGCGGTTGCCTTGCAACAGCAACGCGGCACGCCCAGCGCACGTTCCTCGGTGGGCAGCGTCACCACGCTGTCGAGCCTGATCCGCATGCTCTACTCCCGCGCCGGCAGCTACCCGGCGGACCAGCCGATGCTGTACGCCGAGGACTTCTCGCCCAACACCCCGCAGGGCGCCTGCCCGGAGTGCCATGGCCTGGGACGGGTCCATGAGGTGACCGAGGCGTCCATGGTGCCCGATCCGTCGCTGACCATCCGCGAGCGCGCCGTGGCGGCCTGGCCCATGGCCTGGCAAGGCCAGAACCTTCGCGACATCCTGGTGACCTTGGGTTATGACGTCGACGTTCCCTGGCGCGACCTGCCGAAAAAGCAGCGCGACTGGATTCTGTTTACCGAAGAGACCCCCACCGTCCCGGTATATGCAGGGCTGACCCCAGCCCAGACCCGCGAAGCGCTCAAGCGCAAGCTCGAACCCAGCTATCAAGGCACCTTCAGCGGTGCCCGACGCTATCTGTTGCACACCTTCATGCATTCGCAAAGCGCGCAGATGCGCAAGCGCGTGGCGCAATACATGCGCGCCAGCCCCTGCCCGATGTGCGAAGGCAAGCGCCTCAAGCGTCAGGCATTGACCGTCACCTTCGCGGGCCTGGACATAGCGCAGTTGTCCAACCTGGCGCTGCTGGAACTGGCCGAAGTGCTCAAGACCGTCGCGGCCCCCGACTATCTGGAGCAACCCGAAGAGCCGGGCGACGTGCTCACCCACAGCCAGACCCGAGAGGCCCGCGAGCAACGCGCCGCCCGCGGCGACAACCCGCACGCCGGCGGACCGGATGCGCGCCACACGCCGAACCTGTCCCTCGAGAAGCGCCTGGCGGCCCAACGCATCGCCGCCGAATTGTTGGAGCGGATCGTCACGCTGATTGACCTGGGCCTTGGCTACCTGGCCCTGGAGCGCAGCACGCCGACCCTGTCCTCCGGCGAATTGCAGCGCCTGCGCCTGGCCACCCAGCTCAATTCCCAGCTGTTCGGGGTCATCTATGTCCTGGACGAACCTTCCGCCGGCCTGCACCCGGCCGACAGCGAGGCGCTGTTCGGCGCCTTGCAACGCCTGAAGGCCGCGGGCAATTCCGTGTTCGTCGTCGAACACGACCTCGACACCATGCGTCGCGCCGACTGGCTGATCGACGTCGGCCCGGACGCCGGTGAGCAAGGCGGCAAGGTCCTCTACAGCGGACCACCCGATGGCCTCGGTCAAGTGCCCGAGTCCCGGACCCGCGCCTACCTGTTCGCCGAAGACCGCGCCACCGCGCGCATCCCCCGTGAACCTGAGGATTGGCTGCGCCTGGAAGGCATCACCCGCAACAACCTCGACAACCTGAGCGCAGCGTTTCCACTCGGTTGCTTCACGGCGGTGACCGGCATTTCCGGGTCAGGCAAGTCCAGCCTGGTCAGCCAGGCCCTGCTGGACCTGGTCGGTGCCCATCTGGGCCAGGCCAGCCCCAACGCGGAAGCCGAGGAGCAGAGCCTGGAAGACGAACCGGTGCAAACCAGTGGCGGCCGGGTCAGCGCCGGGCTCGACGCAATCAAACGACTGGTGCAAGTCGACCAGAAACCCATCGGCCGCACGCCGCGCTCCAACCTCGCCACCTACACGGGGCTGTTCGATCACGTACGCAAACTGTTCGCCGCCACCGAACAGGCGCAGGCGCTGGGATTCGATGCCGGACGGTTTTCCTTCAACGTCGCCAAGGGTCGTTGTGAAACCTGTGAAGGCGAAGGCTTCGTCAGCGTCGAGCTGTTGTTCATGCCCAGCGTCTATGCGCCCTGCCCGACCTGTCATGGGGCCCGCTACAACCCGCAGACCCTGGAGGTGACCTGGCAGGGGCTGGACATTTCCCAAGTGCTGCAACTGACGGTGAACCAGGCTCTAGAAGTGTTCGCCGAACAAGCGTCGGCCAGGCGCTCGTTGCAAGTCTTGCAAGACATCGGCCTGGGTTATCTGCGCCTTGGCCAACCGGCCACCGAGCTGTCCGGCGGCGAGGCGCAGCGGATCAAGCTGGCGACCGAGCTGCAACGCAAGGCTCGGGGCGCGACCCTTTACGTATTGGATGAGCCTACCAACGGTCTGCACCCCCAGGACGTGGATCGCCTGCTGGTGCAGTTGAATCGCCTTGTGGACGAAGGCCATACGGTGGTTGTGGTGGAACACGACATGCGCGTGGTGGCGCAGAGCGACTGGGTCATCGACATCGGCCCGGGAGCCGGGACACAGGGCGGGAACGTGGTGGTGTGCGGTGCGCCAGAGGTCGTTGCAGACTGTGACGAAAGCCGCACCGCGCCGTTCCTGAAAAGAGCTTTGCAACCCGCACGATGAMPPRSAPASTAALPEGTGFVRVRGAREHNLKNVDVDIPRDALVVFTGVSGSGKSSLAFSTVYAEAQRRYFESVAPYARRLIDQVGVPDVDSIEGLPPAVALQQQRGTPSARSSVGSVTTLSSLIRMLYSRAGSYPADQPMLYAEDFSPNTPQGACPECHGLGRVHEVTEASMVPDPSLTIRERAVAAWPMAWQGQNLRDILVTLGYDVDVPWRDLPKKQRDWILFTEETPTVPVYAGLTPAQTREALKRKLEPSYQGTFSGARRYLLHTFMHSQSAQMRKRVAQYMRASPCPMCEGKRLKRQALTVTFAGLDIAQLSNLALLELAEVLKTVAAPDYLEQPEEPGDVLTHSQTREAREQRAARGDNPHAGGPDARHTPNLSLEKRLAAQRIAAELLERIVTLIDLGLGYLALERSTPTLSSGELQRLRLATQLNSQLFGVIYVLDEPSAGLHPADSEALFGALQRLKAAGNSVFVVEHDLDTMRRADWLIDVGPDAGEQGGKVLYSGPPDGLGQVPESRTRAYLFAEDRATARIPREPEDWLRLEGITRNNLDNLSAAFPLGCFTAVTGISGSGKSSLVSQALLDLVGAHLGQASPNAEAEEQSLEDEPVQTSGGRVSAGLDAIKRLVQVDQKPIGRTPRSNLATYTGLFDHVRKLFAATEQAQALGFDAGRFSFNVAKGRCETCEGEGFVSVELLFMPSVYAPCPTCHGARYNPQTLEVTWQGLDISQVLQLTVNQALEVFAEQASARRSLQVLQDIGLGYLRLGQPATELSGGEAQRIKLATELQRKARGATLYVLDEPTNGLHPQDVDRLLVQLNRLVDEGHTVVVVEHDMRVVAQSDWVIDIGPGAGTQGGNVVVCGAPEVVADCDESRTAPFLKRALQPARPGPT0014915_6088DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014915-uvrA-K03701NANA
D1-35_038861623hypothetical proteinATGACCAGACTCACCATTGCCCAGCGAATCGTCATGGGTTTTTCCATTGCGCCCATCGCTTTGATCGCCGTGGCGTTGTACGCCTTGTACGACCTGCGGATATTGCGCGACCAGGCCGAAGTGGTCGCCCAGCGAGACTGGCCGAAAATCGCCCCGATCATGGCCATCGCCACGGGGGTGCGGGATAACGCCAGCCACATTCGCGAACTGTTGATCGACAGGAACGATCCCCTGGCCCAGACGTCCATCGACAACACGCGGCAACGCATCGACAAAGCGCTGGCAACGCTCGGGCCGTTGCTTGATCGAAGGCCCGAAGGCAAGGCGGCTTTAGCGGCCCTGAAAAAGAATGGCGAGGTCTACCAGGCCGCTTTTTCGCAAATGCAGGGCTTGATTCACCGGAACGTGCCCCATGAGGCGGTGCTGCAGCTGGAGCAATCCGTAACCCCGGCGGAGCAGGCGATGTACCAGAGCCTGGACGGACTGATGGCGATGCAGGACCGTCTTTTTGACGAGCGTGAGCGCGGGGCCCAGACACGCTACCAGGACGCGCAACTGCATTTGCTGATGATGGTGCTGGCGTGCCTGGCCCTGGTGGCGACGGTCGCGGTGCTGGTGACCCGCAGCGTTACCCGGCCACTGGGCGGTGAGCCCGGTGATGCGGCGCGGATGCTGGGCCATATCGCCCAAGGCGACCTGACCATCAAGGTGCCCGTGGGGGCGGGCTCGGGCGACAGCATGATGAGTAACATGCACGAGATGCAGCAGAGCCTCCACTCCATGGTCCGGCAGATCGCGACCTCGGTGGATCGGGTCGCCAGTTCCTCCGAGGAGTTGAGCGCCGTGAGCAGCCAGACCAGCAGTTCCTTGCAACTGCAGGGAATTGAAATCGAACAGGCGGCGGCAGCCGTGAACCAGATGACCGCCGCGGTGGACGATGTGGCGCGCAATGCCATGAGCACCAGCGAAGCATCGCGGATTTCCGAGCAGACGGCCCTGGATGGTCGTGAGCAGGTCCAGGAGACGGTAGCGTCCATTTCCGTGCTGGCCGACGGTGTGAGCGAAGCCGCGGAGCGTATTCAGCAACTGGCCGGGCGGGTCCAGGACATCAGTTCGGTGCTTGACGTGATCCGCAGCATCGCCGAGCAGACCAACCTGCTGGCCTTGAATGCCGCCATCGAAGCGGCCCGGGCAGGCGATGCCGGCCGCGGCTTCGCGGTCGTCGCCGATGAGGTAAGGGCGCTGGCCCACCGCACCCAGGAGTCAACCCGGGAAATTGAGGAAATGATCGGCACGATCCGCCGCGAAAGCGGGGACGCGGTAACCGCGATGCAAAGCAGCAGTGAACTGGTACAGGCAACGTTGCAAGTAGCCCGGCGCTCCGGCGAAGCCTTGGACGCGATTGCCTGCTCAATCTCGCAGATCAACGAGCGCAACCTGATGATTGCCAGTGCCACCGAACAACAGGCACTGGTGGCCCGGGAGGTGGACCGCAACCTGGTCAGCATCCGCAACCTGTCCGAGCAGGTCTTGCAGGGAGCCCAGCATACCGATACGGCGGGGCAGGACCTGGCACACATGGCAGAGTCGCTGCATCAGACGGTGGCGCGGTTCAAGGTGTAGMTRLTIAQRIVMGFSIAPIALIAVALYALYDLRILRDQAEVVAQRDWPKIAPIMAIATGVRDNASHIRELLIDRNDPLAQTSIDNTRQRIDKALATLGPLLDRRPEGKAALAALKKNGEVYQAAFSQMQGLIHRNVPHEAVLQLEQSVTPAEQAMYQSLDGLMAMQDRLFDERERGAQTRYQDAQLHLLMMVLACLALVATVAVLVTRSVTRPLGGEPGDAARMLGHIAQGDLTIKVPVGAGSGDSMMSNMHEMQQSLHSMVRQIATSVDRVASSSEELSAVSSQTSSSLQLQGIEIEQAAAAVNQMTAAVDDVARNAMSTSEASRISEQTALDGREQVQETVASISVLADGVSEAAERIQQLAGRVQDISSVLDVIRSIAEQTNLLALNAAIEAARAGDAGRGFAVVADEVRALAHRTQESTREIEEMIGTIRRESGDAVTAMQSSSELVQATLQVARRSGEALDAIACSISQINERNLMIASATEQQALVAREVDRNLVSIRNLSEQVLQGAQHTDTAGQDLAHMAESLHQTVARFKVPGPT0015710_21689DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_038871740dapE_3Succinyl-diaminopimelate desuccinylaseATGAACTTCCCGTTCAAGCGTCTCGCTATCGCCACCCTCGTCCTGTCCAGCCTGTCGTCTTTCTCGATGTCGGCCTACGCCAACATTTCCGCGCAACAGAGCGCGACCCTGGTCAAAAATTTCACTGATAGCTCGGTCAACGATTTCCGCCAGTTCCTCGCAAGCGTCGCCAATATCGAAGTGGCAAAAACCGCCAACCTCGGCCCGGCCATCAGCGCCTTCCAGGGCAACAAGACCCTGTCGGCGGAACAGCAGAACGAAATTCATCGCCTGCTGGGTATCTACGCCCGGGTAAAGTACGGCAAAGCCGCCACCGAAACCTTGCGCCAATTGGTGGAAATCCCGACCTATCGCAAGGACGGCGTTGCCCAGCATGAAAATCCTGAATTTCTCAAGATCGCCGACAAGATCAAGAGCCTGGCCGAGTCATTCAACCTGAACTTTCGCAACATCGACAACCGCGTCTACGAGATATCCCTCGAAGGCTCGGGTGACGAAGTGGTGGGCATTCACGCCCATGCCGATGTAGTGCCGGTCACGCCGGAAAACTGGGTGCTCAAGGATGGCACCAAGCTTGATCCCTTCAAGGTCACCCTGGTGGGTGATCGCATGTATGGCCGCGGCACCGAAGACGACAAGAACGGCATCGTCGTGGCGCTCTACGCCATGAAGATCATCAAGGAAGAAAAACTGCCACTGGCGCGCAACTTCAAGCTGCTGGTCGATACCACCGAGGAAACCACCGGCGACGCCATTCCTTATTACTTCGAGCGTAACCCGACCCCGAACTACAACCTGGCGCTGGACGGCAGCTACCCGGTGGTGATTGCCGAGAAAGGCTATGGCACGGTCATGGCGAATTTCCCGCGCCGGGCGGCACAGGGTCAAGGTGCCGAGATCACGGCGTTGACGGGCGGCATGGCGACCAACCAGATCCCGTCGACTTCGGTGGCAACCTTTACCACGGAAAAGCCCGCCGAGCTGGCTGCCAGCCTGGTCAAGGCGGGCACCGACTTTGCCAAGGCCAATGGCGGCGACTTTCAAGTGGCCAGCGAGGTCGTCGATAACACAGTCAAGCTGACCTTCACCGGCGTTTCGGCACACTCCTCCGAGCCCGAGTCAGGCGTCAACCCGGTCGCCAGGATGCTGGTATTCATCAATGGCCTGAACGGCACCGTTGGACTCAAGCACAATCACATCACCGACGCCGCGCGCTATGCCGCCGACAACTGGGGTCTGGATTACCTGGGGAAAAAACTCGGTATCGGTTTTTCCGACGCGTTCATGGGTCCGCTGACCGCCTCGCTGACCTACGTCGGTATGGATGACAAGGCCTTCAAGCTCGCGGTCAACCTGCGGGTGCCCGTGGGCAAGCCGACGCAAGCGCTGAAGACTGAAATTGACGACAGACTTTCGGCCTGGGCGAAGAAATCCAAGGTTGCCGTGGCCTTCGAAAACTCCATCGATGAGCCGATGTACCGCAATCCCGAAGGTGAATGGGTCAAGGCGCTGCTCGCCGTTGCCACCGAGAATCTCGGCATGGAACACAAGTTCGGCACGTCTGCCGGCGCCACCTCGGTTCATGATCTGCCCAACGGCGTGCAGTTCGGCCTGGCCATGCCCGACGTCAAGTACACCGGGCACAACGATAACGAGTTCAAGACCGTTGAGCAGTTCCTGCTGGACCTGCAGGTCGTGACCGAGATGATGGGGCGGATCGGGCAGTTGCCGAAGCTCTGAMNFPFKRLAIATLVLSSLSSFSMSAYANISAQQSATLVKNFTDSSVNDFRQFLASVANIEVAKTANLGPAISAFQGNKTLSAEQQNEIHRLLGIYARVKYGKAATETLRQLVEIPTYRKDGVAQHENPEFLKIADKIKSLAESFNLNFRNIDNRVYEISLEGSGDEVVGIHAHADVVPVTPENWVLKDGTKLDPFKVTLVGDRMYGRGTEDDKNGIVVALYAMKIIKEEKLPLARNFKLLVDTTEETTGDAIPYYFERNPTPNYNLALDGSYPVVIAEKGYGTVMANFPRRAAQGQGAEITALTGGMATNQIPSTSVATFTTEKPAELAASLVKAGTDFAKANGGDFQVASEVVDNTVKLTFTGVSAHSSEPESGVNPVARMLVFINGLNGTVGLKHNHITDAARYAADNWGLDYLGKKLGIGFSDAFMGPLTASLTYVGMDDKAFKLAVNLRVPVGKPTQALKTEIDDRLSAWAKKSKVAVAFENSIDEPMYRNPEGEWVKALLAVATENLGMEHKFGTSAGATSVHDLPNGVQFGLAMPDVKYTGHNDNEFKTVEQFLLDLQVVTEMMGRIGQLPKLNANANANANA
D1-35_038882004rlhACOG082623S rRNA 5-hydroxycytidine synthaseATGTCCTTGCCTAAACATCATCTGGAATTGCTCAGCCCCGCCCGCGACGTAACCATCGCCCGCGAGGCCATTCTGCATGGCGCCGATGCCGTGTACATCGGTGGCCCGAGTTTCGGCGCGCGTCACAACGCCTGCAACGAGGTGAGCGATATCGCCGGGCTGGTGGAATTCGCCCATCGCTACCACGCCCGGGTGTTCACCACGATCAACACGATCCTGCACGACAACGAGCTGGAGCCGGCCCGCCAGTTGATCCATCAGCTCTACGACGCCGGCGTCGATGCGCTGATCGTCCAGGACCTGGGCGTCATGGAGCTGGACATTCCGCCGATCGAGCTGCACGCCAGCACCCAGACCGACATCCGCACCCTGGCCCGGGCAAAGTTTCTCGACCAGGCCGGTTTCTCGCAGCTGGTATTGGCCCGCGAGCTGAACCTGCAGGAAATCCGCGCCATTGCCGACGAGACCGATGCGGCCATCGAGTTCTTCATTCACGGCGCGCTGTGCGTGGCGTTTTCCGGCCAGTGCAACATTTCCCATGCCCAGAACGGGCGCAGCGCCAACCGTGGCGATTGCTCCCAGGCCTGCCGCCTGCCCTACACCCTCAAGGATGACCAGGGCCGGGTTGTCGCCTATGAAAAACACCTGCTGTCGATGAAGGACAACAACCAGAGCGCGAACATCCGCGCCCTGGTCGAAGCGGGCGTGCGCTCGTTCAAGATCGAAGGTCGCTACAAGGACATGGGCTATGTGAAGAACATCACCGCCTACTATCGCCAGCGCCTCGACGATGTCCTCGAAGACCGCCCAGACCTGGCCCGCGCCTCCAGCGGCCGCACCGCGCATTTCTTCGTGCCGGACCCGGACAAGACCTTCCACCGTGGCAGCACCGACTACTTCGTCAGCGAGCGCAAGATCGACATCGGCGCCTTCGACTCCCCGACGTTCACCGGCGTGCCGGTGGGCGTGGTGGAAAAAGTCGGCAAGCGCGACCTGCAAGTGGTGACCTTTGATCCGCTGTCCAATGGTGACGGCCTCAACGTGCTGGTCAAGCGCGAAGTGGTTGGCTTCCGGGCCAACATCGCCGAACCCAAGGGCGAATTCCTCGACGAGGACGGCAAGCAGCGCTACCGCTACCGCGTCGAACCCAACGAGATGCCGGCCGGCCTGTATCAGTTGCGCCCCAACCATGCGCTGAGCCGCAACCTCGATCACAACTGGCAGCAAGCCCTGCTCAAGACCTCCGCCGAGCGTCGCGTCGGCCTGGCCTGGGTCGCTCGCCTGAGCGAGGAACGCCTGGAGTTGACCGCCACCAGCGAAGAAGGCATCAGCGCCAGCGTCGCCCTGGACGGTCCCTTCGGCCTGGCGAACAAACCGGAGCAGGCCCTGGAGCAGTTGCAAGACCTGCTCGGCCAGTTGGGCACCACCGAATACCACGCCACATCGATCAAACTGGATGCGCCCCAGGCTTATTTCATTCCCAACTCCCAGCTCAAGGCGTTGCGCCGCGAAGTCATCGAAGCTTTGACCGTAGCGCGTGTCGCGGCGCACCCACGGGGCGGACGCAAGGCCGAGACCACGCCGCCGCCGGTATACCCGGAGTCGCATTTGTCATTCCTGGCCAACGTCTACAACCAGAAGGCCCGGGACTTCTACCACCGCCACGGGGTCAAGCTGATCGACGCGGCGTTCGAAGCCCATGAGGAAACCGGCGAAGTCCCGGTGATGATCACCAAGCACTGCCTGCGGTTTTCCTTCAACCTTTGCCCCAAGCAGGCCAAGGGCGTCACCGGCGTACGCACCAAGGTTGCGCCGATGCAGTTGATCCATGGTGATGAAGTGCTGACGCTGAAGTTCGACTGCAAACCCTGCGAGATGCATGTGGTGGGCAAGATCAAGGGGCACATCCTTGACCTGCCGTTGCCCGGTAGCACGGCGCAGCCGGTGGTCGGTCATATCAGTCCGGAGGACTTGCTCAAGACGATCCCGCGTGGAGCGCATTGAMSLPKHHLELLSPARDVTIAREAILHGADAVYIGGPSFGARHNACNEVSDIAGLVEFAHRYHARVFTTINTILHDNELEPARQLIHQLYDAGVDALIVQDLGVMELDIPPIELHASTQTDIRTLARAKFLDQAGFSQLVLARELNLQEIRAIADETDAAIEFFIHGALCVAFSGQCNISHAQNGRSANRGDCSQACRLPYTLKDDQGRVVAYEKHLLSMKDNNQSANIRALVEAGVRSFKIEGRYKDMGYVKNITAYYRQRLDDVLEDRPDLARASSGRTAHFFVPDPDKTFHRGSTDYFVSERKIDIGAFDSPTFTGVPVGVVEKVGKRDLQVVTFDPLSNGDGLNVLVKREVVGFRANIAEPKGEFLDEDGKQRYRYRVEPNEMPAGLYQLRPNHALSRNLDHNWQQALLKTSAERRVGLAWVARLSEERLELTATSEEGISASVALDGPFGLANKPEQALEQLQDLLGQLGTTEYHATSIKLDAPQAYFIPNSQLKALRREVIEALTVARVAAHPRGGRKAETTPPPVYPESHLSFLANVYNQKARDFYHRHGVKLIDAAFEAHEETGEVPVMITKHCLRFSFNLCPKQAKGVTGVRTKVAPMQLIHGDEVLTLKFDCKPCEMHVVGKIKGHILDLPLPGSTAQPVVGHISPEDLLKTIPRGAHNANANANANA
D1-35_038891569hypothetical proteinATGCTCGGACGCAAACGGCCGGAGCCCAGGATTGAAAGCCCCGATCAAGCCTTTTCCCCGCAAGCTGTGCGGGCCGGGGCTGCATTTCGGCTGACCGTGAGTTTCATGCTCGTGGTGATCGTGGCTTTCCTGGCGGTCGAAGGCTGGCGCACCTGGCGAGACTATCGGGCGGCTTTTGCGTCTGCCCGCGATTCGGTGACGAACCTGGCGCGGGCGACGGCCCAACACGCCGAAGACACCATCCGACAAGTGGACGTGGTCACTGCCGCCCTCGGCGAACGCGTGGAAGGCGACGGCCTGCAGAACATGGACATCCCGCGCATTCATCGGCTGCTGGTGCAGCAGGCCGCGATCATGCCGCAGTTGCACGGACTGTTCATCTACGGCCCGGACGGCCAATGGCTGGTGACGGACAAGGAAGTGATTCCGGAAATGGCGAACAACGCCGACCGCGACTACTTCCAGTACCACCGCACCCACGAGGATCGAGGCGTACGTATTGGCGATGTGGTCAAGAGCCGATCCACCAACGACCTGATCATCCCCATCTCCCGCCGCTTGAACAACCCCGATGGCTCGTTCGCCGGGGTGATGCTCGGGACGGTCAAGGTCAGTTATTTCGTCGACTACTACGGCGACTTCAAGATCGACGGCAAAGGCGCGCTGGTCCTGGCCAAGCGCAGCGGTACGATCCTAGTCCGCCGGCCTTTCGTCGCGGCGGTGATCGGCAAGAGCCTCGTCAACAGCGTGATCTTCCGGGAGCATCTGCCGACTTCCAACCAGGGCGTCGCCGAAGCCAGGGCCGTCGTCGACGACACCGAGCGTCTGTATGGCTACCGGGCCCTGACCACCTACCCGCTGGTGGTGGAAGCCGGCCTGTCGCGGGAATCGATCATTGCCCCGTGGCGTCGTGACCTGCTCAAGACCGGCCTGGTACTGGTATTCCTGATCGCGATTCTGGTCGGCTTCGGGCTCATCGTCCTGAGCCAGTTGCGCTACCGCATGACCATGGAAACGCAGATTCGCAGCGCCCACCAGGCCATGCGCGACATGGCGTTGACCGACAGCCTGACCGGGCTGGGCAATCGCCGGCGGCTGGACATTGCCTTGGCCGACGAGCTGCGCCTGGCCAAGCGCCAAGGCTCGTCCCTGGCCCTGATCATGCTCGACGTCGATTACTTCAAACGCTACAACGACAAATACGGCCATGCCGCTGGCGACGATTGCTTGCGGGCGATTGCCGGCGCGATCGGACAGACCATCAAGCGACCGGGAGACCTGGCCGTCCGCTACGGCGGTGAAGAATTCACCGTGCTGCTACCGAACACGGACAGCGCAGGTGCGGCCAAAGTGGCGCAGCAAATCCTTGAATCCGTCAGGGCCTTGAACATTGAGCACGGCGACCACCCGCTGGGGATCGTGACGATCAGTGCCGGCATCACCACCTGCCAGCCGAGCAGCGAGGACGTCAGCCCTGCGATGCTGATCAAGGCCGCCGACGCCTTCCTGTACCTGGCGAAGAACACCGGGCGAAACCGCTGGTGCAGCGCCGGCGCCTCCCAGGCCTGAMLGRKRPEPRIESPDQAFSPQAVRAGAAFRLTVSFMLVVIVAFLAVEGWRTWRDYRAAFASARDSVTNLARATAQHAEDTIRQVDVVTAALGERVEGDGLQNMDIPRIHRLLVQQAAIMPQLHGLFIYGPDGQWLVTDKEVIPEMANNADRDYFQYHRTHEDRGVRIGDVVKSRSTNDLIIPISRRLNNPDGSFAGVMLGTVKVSYFVDYYGDFKIDGKGALVLAKRSGTILVRRPFVAAVIGKSLVNSVIFREHLPTSNQGVAEARAVVDDTERLYGYRALTTYPLVVEAGLSRESIIAPWRRDLLKTGLVLVFLIAILVGFGLIVLSQLRYRMTMETQIRSAHQAMRDMALTDSLTGLGNRRRLDIALADELRLAKRQGSSLALIMLDVDYFKRYNDKYGHAAGDDCLRAIAGAIGQTIKRPGDLAVRYGGEEFTVLLPNTDSAGAAKVAQQILESVRALNIEHGDHPLGIVTISAGITTCQPSSEDVSPAMLIKAADAFLYLAKNTGRNRWCSAGASQANANANANANA
D1-35_03890459hypothetical proteinATGAAAGTGGGCGTGATTTCAGATACCCATGGCCTGCTGCGCCCCGAAGCAATGGCCGCGCTGCAAGGCTGCGAGCGGATTATTCATGCCGGTGATATCGGCAGCCCGGAGATCCTCGAGACGTTGGCCGCCATTGGCGAGCTGCACGTAGTGCGGGGCAACAACGACCTCGGCGCCGATTGGGCAGGGGATATCGCCGACAGCCTGCAATTCGAAATCGGCGGGTGGCAGGTGCTGTTGGTCCACGACATTGCCGATGTGCCGGCGCTGCTCGATGCCGATGTGAGGCTGGTGATCACCGGCCATTCGCACAAACCCTTGATCGAATGGCGCGGCGAGCGGCTTTACCTCAACCCTGGCAGCGCCGGCCGGCGGCGGTTCAAGCTGCCGGTGACGCTGGCGTTGCTGGAGGTAAGCGAACAGGCGATCAAGCCGCGTATCGTGCCGTTGCTCGCCTGAMKVGVISDTHGLLRPEAMAALQGCERIIHAGDIGSPEILETLAAIGELHVVRGNNDLGADWAGDIADSLQFEIGGWQVLLVHDIADVPALLDADVRLVITGHSHKPLIEWRGERLYLNPGSAGRRRFKLPVTLALLEVSEQAIKPRIVPLLANANANANANA
D1-35_03891903hypothetical proteinATGAAAATCGCCCTCGATCCCTACATGCACCGTCACCTGAGCCTGCCGGAGCTGTGTCGCAAGACCGCCGAGCTCGGCTTCGAATACCTTGAACTGTCGCCCCGGGAAGACTTCCTGCCGTGGTGGGTCCGCCCACGCGCCCACAAGGAACGCATCGCCGAATTCAAGAAAGCCTTGCGCGACCATGATCTGCAACTGGCTTCGCTGCTGCCGATGTACCGCTGGGCCAGCCCTCACGAGGATGAGCGCCGGGCCGCAGTGAACTACTGGAAGGAAGCGATCCAGGTCGCCGTGGAGATGGGGTGCACGACGATGAACTCGGAGTTCGGGCGCGGACCGTCGCCGGATCGCGGGCACAAGGTCAGTTGTTGCGGCGGCGTACACAGCCATGAGTCCAGCGAAGCGGCCTGGTGGCGCTCCATGGAAGAATTGGTGCCGATCCTGGAATCGGAGGGGGTCACATTGAACGTCGAGCCTCATCCGGAAGACTGGTGCGAGACGCTGCAACCGGCCCTGGACATGCTCAAGACCCTCGGCTCGGACAACGTCAAGTTCCTCTATTGCACGCCGCACACGTTCTATTTCGGCGACGACATGAAAGCCATGATCGCCGAAGCCGGATCGATGATCGCCCATGTCCACATCGCTGATACCTACAACCACAAGGCTTCGTCGGGGCTGCGCTACATCGTCAACCCGCCCGGGGCGAAAGTGACCGTGCACCAGCACATGGACATGCACCAGGGCGAGATCGACTGGGACCTGTTTTTCGGCGAGTTGGCCAAGACCGGCTTCGATGGCATCGTCACAGCGTGCGTGTTCGGCTGGGAAGAACGCGCGGATGACTCGGGGCGATTCATGCGCCAGGAAATCCAGGCGTACGTGGACAAGTACTTCAAGTAGMKIALDPYMHRHLSLPELCRKTAELGFEYLELSPREDFLPWWVRPRAHKERIAEFKKALRDHDLQLASLLPMYRWASPHEDERRAAVNYWKEAIQVAVEMGCTTMNSEFGRGPSPDRGHKVSCCGGVHSHESSEAAWWRSMEELVPILESEGVTLNVEPHPEDWCETLQPALDMLKTLGSDNVKFLYCTPHTFYFGDDMKAMIAEAGSMIAHVHIADTYNHKASSGLRYIVNPPGAKVTVHQHMDMHQGEIDWDLFFGELAKTGFDGIVTACVFGWEERADDSGRFMRQEIQAYVDKYFKPGPT0020845_104DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0020845-iolH-K06605NANA
D1-35_038921170iolG_1Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGATCAACGGCAGCAAAACCCTTGCACGGCCTATCCGCTGGGCCATGGTCGGCGGCGGCGAGCACAGCCAGATCGGCTACATCCACCGCTCGGCCGCCCTGCGTGATCGCCACTTCGAGCTGGTTGCCGCCGCGCTGGACATCGACCCCGACCGTGGCCGGGCCTTTGGCGAACAGTTGGGCATCGACCCCACGCGCTGCTACGCCGACTACCTGAGCCTGTTCGAACTTGAGGCGCAACGGCCCGATGGCATCCAGGCGGTATCGATCGCCACGCCCAACGGCACCCATTACGCCATCACCCGCGCCGCGCTTGAAGCCGGTTTGCATGTGGTCTGCGAGAAACCGCTGTGCTTTACCCTGGAAGAAGCCGAAGCGTTGCGAACCCTGGCGCGATCCAGAGGACGCATCGTCGGCCTCACCTATGGCTACGCCGGGCACCAGTTGATCGAACAGGCCCGGGCGCTGATCGCCGCACAGGAACTGGGTGAGATTCGCATGGTGCACATGCAGTTCGCCCACGGTTTTCACAGCGCACCGGTGGAGGCGCAGAACCCGGCGACCCAGTGGCGCGTCGACCCGCGCCAGGCCGGGCCCAGCTATGTGCTGGGGGATGTCGGCACTCATCCGCTGTACCTGGCGAAAGTGATGCTGCCCGAGCTCAGGATCAAGCGCCTGATGTGCAGCCGGCAAAGCTTTGTCGCCAGCCGCGCGCCGCTGGAAGACAACGCCTACACCTTGATGGAATACGAAGGCGGCGCCATGGGCATGGTCTGGTCAAGCGCGGTCAATGCCGGTTCCATGCACGGCCAGAAGATTCGCGTGATCGGCTCGCGGGCAAGCCTGGAATGGTGGGATGAGCGCCCCAACCAGCTCAGCTTCGAAGTCCAGGGCCAACCCGTGCAAACCCTGGAGCGCGGCATGGGCTACCTGCACCCCGATGCCCTGCTGGATGACCGTATCGGCGGTGGCCATCCCGAAGGGTTGTTCGAGGCCTGGTCGAACCTTTATCGGCGGTTCGCCCTGGCCATGGACGCCGCCGACCGTGGCGACGCCGAGGCGCTCGCCGCCCTGCGCTACCCCGGCATCGACGCCGGCGTGGACGGCGTGCGTTGGGTCGAACGCTGCGTGGAATCAGCCAACCAGGATTCAGCCTGGGTTGCCTATTAAMINGSKTLARPIRWAMVGGGEHSQIGYIHRSAALRDRHFELVAAALDIDPDRGRAFGEQLGIDPTRCYADYLSLFELEAQRPDGIQAVSIATPNGTHYAITRAALEAGLHVVCEKPLCFTLEEAEALRTLARSRGRIVGLTYGYAGHQLIEQARALIAAQELGEIRMVHMQFAHGFHSAPVEAQNPATQWRVDPRQAGPSYVLGDVGTHPLYLAKVMLPELRIKRLMCSRQSFVASRAPLEDNAYTLMEYEGGAMGMVWSSAVNAGSMHGQKIRVIGSRASLEWWDERPNQLSFEVQGQPVQTLERGMGYLHPDALLDDRIGGGHPEGLFEAWSNLYRRFALAMDAADRGDAEALAALRYPGIDAGVDGVRWVERCVESANQDSAWVAYNANANANANA
D1-35_03893924iolE_2COG1082Inosose dehydrataseATGACGATCCACATCTGCACCGCGCCTTGCTGCTGGGGCGTCGACGACGTCAGCAACCCGTTCCTGCCGCCATGGCAACGCGTGCTCGAAGAGGCCGCCAAGGCCGGTTATCGAGGTATCGAGCTTGGACCCTACGGATTTCTGCCGCTGGACGCCGGCATCCTCGAACCAGCCTTGTCCAAGACTGGCCTGCAAGTGGTCGCGGGAACGATTTTCGATGACCTGGTGAGCCCGGCCAACCTGCCCGAACTGCTGCGCCAGACCCACGGCATCTGCGCGCTGCTCAAACAATTGCCGCCAATGAAGCAGCAAGCGGGCCAGCGCTTTGCCGGTCCCTACCTGGTGATCATCGATTGGGGCCACGACGCGCGCGACTACGCCGCCGGCCACTCGGACCGCGCGCCCCGCCTGGACGATGCCCGCTGGAGCGCGATGATGACGCACATTCGCGCCATCGCCGAGGTCGCCTGGCACACCTACGGCATCCGTGCCGTCATCCATCCTCACGCTGGCGGCCATATCGAATTTGCCGATGAACTGGCGCGCCTGGTGGATGACATCCCCCACGAGGTCGCCGGCCTGTGCCTGGACACCGGCCATCTCTATTACGCCGGCATGGACCCGGTCGCATCGCTGCGCACCTACGCCCATCGCCTGGACTACCTGCACTTCAAGGATATCGACCCGACGGTTTTCGATCAGGTGCTGAACGAACACATCCGTTTTTTTGCCGCCTGCGCCCGTGGCGTGATGTGCCCCATCGGGCGTGGCGTCATCGATTACCCGGCGTTGCACAGCCTGGTGCAAGAGCTGGGTTACCACGGCTGCATCACCGTCGAACAGGAACGCGACCCGCGCGACGCCGCGGCCAGCCTGGACGACGTGGCAGCCAGTCGCGCCTATCTCGCCAACATCGGCTTCTGAMTIHICTAPCCWGVDDVSNPFLPPWQRVLEEAAKAGYRGIELGPYGFLPLDAGILEPALSKTGLQVVAGTIFDDLVSPANLPELLRQTHGICALLKQLPPMKQQAGQRFAGPYLVIIDWGHDARDYAAGHSDRAPRLDDARWSAMMTHIRAIAEVAWHTYGIRAVIHPHAGGHIEFADELARLVDDIPHEVAGLCLDTGHLYYAGMDPVASLRTYAHRLDYLHFKDIDPTVFDQVLNEHIRFFAACARGVMCPIGRGVIDYPALHSLVQELGYHGCITVEQERDPRDAAASLDDVAASRAYLANIGFPGPT0016785_366DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISMCE-BACTERIAL_FITNESS-RHIZOPINE_CATABOLISM,PGPT0016785-mocC-K03335NANA
D1-35_038941056hypothetical proteinATGTCAGAAAATCCACGGCGCAAACTGCGTCCCACCATGGCCGATGTCGCTCGCGAAGCCGGGGTCAGCCTGTCTACCGTCGACCGGGTGCTGAATCTGCGTGCCGATGTGCGGGCCGATACCGCCCAACGCATCGCCACCGCCGCCGCACGACTGGGCTTCCATGCCAAGGGCGTGATCGAACAGCGTGTGCTCAACGACCGTCCCACGTTGCGTCTGGGGTTCTTGTTGCAAAAAAGCGGCGTGCCGTTTTACCAGGGGCTGGCTCACGCGCTGTCAAACGCCGCCGCGACTTGCACCCGCGCGCGGATTCGCGTGGTCATCGGTTATCTCGACGATCTTGACCCGGTCAACGTGGCGCAACGCATCCTGGCGCTGCGCGATCAGGTGGACGGCCTGGGGGTGGTGGCAGTCGACCATCCTCGGGTACGCGAGGCCGTTGGCCAGCTGCGCGAGACGGGCATTGCGGTGGTTGCGCTGCTGTCGGAATTGTCGAGTACCGCCGGCACCGGTTATGCCGGTCTCGATAACCGCCTCACGGGCCGTACGGCGGGCTGGTTCATCAGCCGCCTCGCCAGGCAGCCCGGACCGGCGGTGGTCATGCTCAGCAGCCAGCGCTTCCAGTGCCAGGAACTCTGCGAGCTGAGCTTTCGCAGCTATCTGGTGGAGCATTCCAGCGAATGGGAACTGCTGGCCTCGCGCCTGACCCTGGAAGACGATGAGTTCGCCTATGGCAACACCCTCGACTTGCTCACGGCTGAGCCCGATCTGGCGGGGCTTTATGTGGCGGGCGGCGGCATTGCCGGAGTGCTGCGGGCTTTGCGCAGCTTCCAGGCACAGCAACAGCGCCTGCCCATCGTGGTGTGTCATGACCTCACGCCGCTCACGCGCGAAGCGTTGAAAACCGGCTTGGTCCAGGCAGTGTTGTCCCACCCGGTGGTGACGCTGGCCGAACAGGCTGTCGATGCCTTGGTCGAGGCCGCAACGACCGCGCCGACAGGGCCGGTGACCAGGAGAGTGGTTCCGCTTCAGGTTGATGTGCAGGAAAGCGTTTAGMSENPRRKLRPTMADVAREAGVSLSTVDRVLNLRADVRADTAQRIATAAARLGFHAKGVIEQRVLNDRPTLRLGFLLQKSGVPFYQGLAHALSNAAATCTRARIRVVIGYLDDLDPVNVAQRILALRDQVDGLGVVAVDHPRVREAVGQLRETGIAVVALLSELSSTAGTGYAGLDNRLTGRTAGWFISRLARQPGPAVVMLSSQRFQCQELCELSFRSYLVEHSSEWELLASRLTLEDDEFAYGNTLDLLTAEPDLAGLYVAGGGIAGVLRALRSFQAQQQRLPIVVCHDLTPLTREALKTGLVQAVLSHPVVTLAEQAVDALVEAATTAPTGPVTRRVVPLQVDVQESVPGPT0017992_3118DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017992-lacI|galR-K02529NANA
D1-35_03895567hypothetical proteinATGCACAGCTTTTTCGCAGCCGACAGAGGGCTGCTCGCTATCGTCAGTCTCGCCTTGGCGTTGTGCGCCAACCACGCCGCTGCGGATTGGCGGGCTGAGTTGCCCCAAGCCCGTCTGGTCGGTGAGGCGGAGTTTCGCTGGTATGGTTTTGATCTCTATCAGGCCCGGCTCTGGAGCGCGGCGCCTACTCCGAGCCTGGACACTCCTTTTGCCTTGGAACTGGTTTACCGACGCACGATCCCCCGGCACGCCTTGGTTGAAACCAGTCTCGAAGAAATCCAGCGCGTCAGCGCTACGCCCTTCGGGGCGCAGCGCATGGACGCCTGGGCGGCGCATATGCGGCGGGCCTTTGTCGACGTCAAGCCTGGCACCCGAATCACCGGGCTGAACCTGCCTGGAAAAGGGGCACGCTTTTATGTCGATGGGCGCCTATCTCAAGAGGTCAACGATCCGCTGTTTGCCCGACATTTTTTTGCCATCTGGCTTGATCCTCGTACCCGTAAACCCGAACTGCGTCAGCGTTTGCTCGGGCTTGATCCAACCCGCGCCAGGAGCAGTACGCCATGAMHSFFAADRGLLAIVSLALALCANHAAADWRAELPQARLVGEAEFRWYGFDLYQARLWSAAPTPSLDTPFALELVYRRTIPRHALVETSLEEIQRVSATPFGAQRMDAWAAHMRRAFVDVKPGTRITGLNLPGKGARFYVDGRLSQEVNDPLFARHFFAIWLDPRTRKPELRQRLLGLDPTRARSSTPPGPT0019995_42DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_FLAVONOID_UTILIZATIONPLANT_DERIVED_DIHYDROFLAVONE_REDUCTION,PGPT0019995-CHI_like-NANANA
D1-35_03896306hypothetical proteinATGACCCTGAAGGATCTGGTTGCGCTGGCTGTGGAGGGGCGAGTCGTCGGGCTGGAGCTGCTGTCGCTGGAGGGCGGCATCTACCTGCTGCGAGCTCAGCTGGATGGACAAACACGCACATTGCTCGATGAGTCGGGACGTACGTTGCATGTGCGCTCCACGACGCATCTGCGCGAGCTGCTGCGTGACGTTCCACGCTTGCCTTGCATGCTGGTGCAGCAGGTCGTCCATGATGAAATGTGCGGCCAGCGTGAAGAGCCAATCGCGCCGTTACGGTTGCCGATTTTCCTCGATGAGCCTTGGTAAMTLKDLVALAVEGRVVGLELLSLEGGIYLLRAQLDGQTRTLLDESGRTLHVRSTTHLRELLRDVPRLPCMLVQQVVHDEMCGQREEPIAPLRLPIFLDEPWNANANANANA
D1-35_03897492hypothetical proteinATGAAGAGCCGCAGCTGGCTGATAGGCAATGCGCTCTGGCTGCAATTGGGCTGGTGGGGCTGTGTATTGGGTGCGCAACAGCCTGCATGGCTGCTGGCGGTCGTCGCCGGGTTAGGCGTCCATCTGGGGTTGTGTCCCGATCCGAAAAGCGAGTGCCAGGCGCTGTTGCGTGTCGGGGCAAGCGGGATGCTGTTGGACGGGAGCCTCGGCGCCCTGGGCCTGTTCGGGTTCGACGAGAGCCCCTTGCCCTTGTGGCTGGCCCTGCTCTGGCTGGTCTTCGCCACGGGTTTGCGGCATAGCCTGGCCTGGGCAGGCAGCCCCGTCTGGCGTGGCGCCCTGGCCGGCATGCTTGGTGGCCCTCTCGCCTATTGTGCCGGCGCTCCGCTGGCTGGCGTGACGCTGCCGCTGGGCGTAACCGGCACCGCGTTGATCCTGGCACCGTTATGGGCGATGTGGCTGCCATTGGCCGTGCGTCTGGCCGACCCGCGCTGAMKSRSWLIGNALWLQLGWWGCVLGAQQPAWLLAVVAGLGVHLGLCPDPKSECQALLRVGASGMLLDGSLGALGLFGFDESPLPLWLALLWLVFATGLRHSLAWAGSPVWRGALAGMLGGPLAYCAGAPLAGVTLPLGVTGTALILAPLWAMWLPLAVRLADPRNANANANANA
D1-35_038981269hypothetical proteinATGTCCGAACCCACCCTGAGCGTCACTAAGGCCGGCGGTACCTGCCCATTGAGCGGCGGTCTGTTCAAACAGGCCGTACTCGCGCAACTGCGCCGTTTGCGTCATGGCCACCTGCGCCTGATGCTGGAGGGCGAGCCCCTGAGCTTCGGCGACGCGACCAGCCCATTGGTGGCCGACATCGAGATACTCGACAATGCCGTTTGGGGCATGGTCGCTGGCAACGGTTCGATCGGTGCCGCCGAGGCTTACATTCAAGGTTACTGGCGCAGCAATGACTTGACTGCCGTCACTCGCCTGTTCGTCGCCAATCTCAGCGTGCTCGACGCGATGGACAGCGGCCTCGCTCGCCTGGGGCGGCCGTTGCTGCGCGGATTGCACTGGCTCAACCGCAACAGTCGCAAAGGCTCGCTGCGCAACATCATGGCCCACTACGACTTGGGCAACAGCCTGTTCGAACGCTTGCTCGACCCGACCATGATGTATTCGGCGGCCATGTTCGAAAATCCCGACCAGAGCCTAGAACAGGCGCAGATCAACAAACTCCAACGCATTTGTCGCAAGCTCGACCTGCGCCCAGGTGACCATCTGTTGGAGATCGGCACCGGTTGGGGCAGCCTGGCTATCCATGCCGCCACCCAATACGGCTGTCGGGTCACCACCACGACGCTTTCCGAGGAGCAATACGCGCACACGTGCCAACGTGTCGAGGCGCTCGGCCTGCAACAACGCATCGAAGTGCTGCGCAAGGACTACCGCGACCTGGAGGGACGCTTCGACAAACTGGTGTCGATCGAAATGATCGAAGCGGTCGGCCATCGCTACCTGCCCGAATACTTCCGCTGCTGCGCCGCGCTGCTCAAGGACGACGGGTTGATGCTGTTGCAAGCCATCACCATCCGTGACCAACGCTACGAGCAGGCCCGCCGCTCGGTGGATTTCATCCAGCGCCACATCTTTCCAGGGGGCGCGTTGCCCTCGCTGTCGGTGTTGTTGCAGACCGCCAGCTCCCAGACGCCGCTCAACCTGTTGCACCTGGAGGACTTCGGCGAGCACTACGCGCGCACGCTACGGCACTGGCACGACAACTTCCGGCAATCGCGCCAGGCCTTGCTGGAGCTGGGCTATGACGATACGTTCCAGCGCCTTTGGGAATTCTACCTGTGCTACTGCGAAGGCGGATTCCAGGAGCGTGCGATCGGTGTCGCGCAACTGCTGTTCGCTGCGCCAGCGGCGCGCCCGGTGCCCTTGCAGGAACACCTGCAAGGATGAMSEPTLSVTKAGGTCPLSGGLFKQAVLAQLRRLRHGHLRLMLEGEPLSFGDATSPLVADIEILDNAVWGMVAGNGSIGAAEAYIQGYWRSNDLTAVTRLFVANLSVLDAMDSGLARLGRPLLRGLHWLNRNSRKGSLRNIMAHYDLGNSLFERLLDPTMMYSAAMFENPDQSLEQAQINKLQRICRKLDLRPGDHLLEIGTGWGSLAIHAATQYGCRVTTTTLSEEQYAHTCQRVEALGLQQRIEVLRKDYRDLEGRFDKLVSIEMIEAVGHRYLPEYFRCCAALLKDDGLMLLQAITIRDQRYEQARRSVDFIQRHIFPGGALPSLSVLLQTASSQTPLNLLHLEDFGEHYARTLRHWHDNFRQSRQALLELGYDDTFQRLWEFYLCYCEGGFQERAIGVAQLLFAAPAARPVPLQEHLQGPGPT0007680_1555DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-PHOSPHOLIPID_PRODUCTIONPLANT_SIGNAL-PHOSPOLIPID_METABOLISMPLANT_SIGNAL-CYCLOPROPANE-FATTY-ACYL-PHOSPHOLIPID_BIOSYNTHESIS,PGPT0007680-cfa-K00574NANA
D1-35_03899816hypothetical proteinTTGAACAGCAGTTTGTGTCACGGCTGGATCGGCCACCGACGCCAGACGCCACGGGTGCACGCGTTTCGCTACCCGATCGGCATGCTTTACCTGGACCTCGCCGAGCAGGAACAGGTGCTCGGCCTGTCGCGTTTGCTGCGCCCGTGGCGCATGGCCCCGTTGTGCTGGCGAGAACGTGATTACCTGCCGGCCCTGACCCGTGAAGGTATTCCGCTGATCCAAGCGGTGCGGACGATCGTCGAGCAGGCTCTGGGATCAGCTCCCCAAGGCGCGATCCACCTGCTGACCCAACCGCGCAGCTGGGGCCTGTCGTTCAACCCGGTGAGTTTCTATTTCTGCCACGAAGCCGACGGGCGCCTGGTGGCAATTCTCTGCGAAGTGCGCAACACCCCCTGGCGCGAGCGCCACCATTATGTGTTGCCGGCAAGCCCTGGCGAGCCCCATGCGTTCCAGGTCGCCAAGGCGTTCCATGTCTCACCCTTCCTGCCACGGGACATGGATTACCGCATGCGCTTTTTGATCCAGGACACCCGCATCCGCGTACGCATGGAGAACTGGCGTGCCGGCCACAAGGTGTTCGAGGCCGACCTTGCCTTGCAACGTGCGCCCCTGGACGCACCGGCATTGCGTCGTTATTTCCTGGCCTTCCCGTGGATGAGCCTGCGCACCGTTAGCGCCATTTACTGGCAGGCGCTGCGCCTGCTTTTCAAACGCACGCCCCTGCACGACCACCAGGCCAGCCATGGCGACCTGAGTGTCGGCGAACCTGTCCATGAGGATCCTGACGATGTCCGAACCCACCCTGAGCGTCACTAAMNSSLCHGWIGHRRQTPRVHAFRYPIGMLYLDLAEQEQVLGLSRLLRPWRMAPLCWRERDYLPALTREGIPLIQAVRTIVEQALGSAPQGAIHLLTQPRSWGLSFNPVSFYFCHEADGRLVAILCEVRNTPWRERHHYVLPASPGEPHAFQVAKAFHVSPFLPRDMDYRMRFLIQDTRIRVRMENWRAGHKVFEADLALQRAPLDAPALRRYFLAFPWMSLRTVSAIYWQALRLLFKRTPLHDHQASHGDLSVGEPVHEDPDDVRTHPERHNANANANANA
D1-35_039001248hypothetical proteinATGCGCATCGCAATTATCGGCAGCGGTATCTCGGGCCTCACCTGCGCCTATCTGTTGTCTCGCCAGCATCAGGTCAGCCTGTTCGAAGCCGACAACCGGATCGGCGGGCATACCCATACGGTGGATGTCGAATGGGCAGGCCAACGCTACGGCGTGGACACCGGCTTCATCGTGTACAACGACTGGACCTACCCCAACTTCATTCGCCTGATGGACCAGTTGGGCGTGGCTTCGCGCCCGACGGAGATGAGCTTTTCGGTGCACGACCCGGCCAGCGGCCTGGAATACAAGGGCCACACCCTGGGCAGCCTGTTCGCCCAACGACGCAACCTGCTGTCGCCGGGGTTCTGGGGCATGCTCCTGGATATCCTCAGGTTCAACCGGCAGGCGACCGCAGACCTGCTGGCGCAGCGCATCGATGCCTCGACCCGGCTGGGAGATTACCTGCACGCCCAAGGTTACGGCCGACGTTTCATCGAGCAATACATCCTACCCATGGGGTCGGCGATCTGGTCGATGTCACCGGCTGGGATGATGGAATTCCCGCTGCAGTTTTTCCTGCGTTTCTGTCACAACCACGGCCTGCTGTCGGTTGATCAGCGTCCGCAATGGCGGGTGATCGAAGGCGGATCGCGCGGCTACATCGAGCCGTTGTGCGCGGGTTTGCGCGAGCATATCTACCTCGATTGCCCGGTGCGCCGGGTAAGCCGCGACGCCGATGGGGTCACCGTGCACAGCCGTCGTGGTATCGAGCGGTTCGACAAGGTGGTATTCGCCTGCCACAGCGACCAGGCCCTGGCTTTGCTGGAAACGCCCAGCGTCGCTGAAGCCGAGGTGCTCGGTGCGCTGGCCTACGCCCGCAACGAGGTGCTGCTGCATACCGATACCCGCCTGTTGCCGCAGCGCCGGAAGGCTTGGGCGAGCTGGAACTATCGGCTTGGCGGCCCGCCCGAGACGCCGGCCGCGCTGACCTACAACATGAACATCCTCCAGGGCCTGGATGCCCCCGTGACGTTTTGCGTGAGCCTCAACCAAAGCGAGTCGGTGGACCCGACCCAGGTACTCGCGCGCTTCGACTACGCCCATCCCCAATACAGCCTCGCCGGCGTGGCCGCACAGGCACGCCAGGGCGATCTGCAAGGACGCCAGCACAGCTATTTCTGCGGTGCCTACTGGGCCAACGGTTTTCATGAGGATGGCGTGGTCAGTGCGCTTGCCGTGGCGCGGCATTTCGGAGAAACCCTTTGAMRIAIIGSGISGLTCAYLLSRQHQVSLFEADNRIGGHTHTVDVEWAGQRYGVDTGFIVYNDWTYPNFIRLMDQLGVASRPTEMSFSVHDPASGLEYKGHTLGSLFAQRRNLLSPGFWGMLLDILRFNRQATADLLAQRIDASTRLGDYLHAQGYGRRFIEQYILPMGSAIWSMSPAGMMEFPLQFFLRFCHNHGLLSVDQRPQWRVIEGGSRGYIEPLCAGLREHIYLDCPVRRVSRDADGVTVHSRRGIERFDKVVFACHSDQALALLETPSVAEAEVLGALAYARNEVLLHTDTRLLPQRRKAWASWNYRLGGPPETPAALTYNMNILQGLDAPVTFCVSLNQSESVDPTQVLARFDYAHPQYSLAGVAAQARQGDLQGRQHSYFCGAYWANGFHEDGVVSALAVARHFGETLPGPT0007680_7DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-PHOSPHOLIPID_PRODUCTIONPLANT_SIGNAL-PHOSPOLIPID_METABOLISMPLANT_SIGNAL-CYCLOPROPANE-FATTY-ACYL-PHOSPHOLIPID_BIOSYNTHESIS,PGPT0007680-cfa-K00574NANA
D1-35_03901756hcaB_33-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenaseATGAGCCGCATCTGGCTGACCGGCGCCAGCAGCGGCATCGGTGCCGAACTGGCGAAGGTGTTGCTTGAACAAGGTCATCGCCTGGCGTTGAGCGCGCGGCAAGCCGGCCCGCTGCAAGCATTGGCCGACCGTTATCAGGATCAGGTCCTGGTGCTCCCGGGCGACTTGACCGACCGGGATCAGGTAGTCGCGATCATCCAGCACATCGACCGGGAATGGGGCGCCCTCGATCAGGTGATTCTCAACGCCGGCACCTGCGAATACCTGGAGCCGGGACACTTCGACGCGCGCCTGGTGGAACGGGTGCTCAATACCAACCTGCTGGGCACCTACCACTGCCTGGAAGCCGCCCTGCCCTTGTTGCGTCGAGGCCAGAACCCGCATCTGGTCGCGGTGTGCAGCGCAGTGACCTGGCTGGCCCTGCCGCGCGCCGGTGCCTACGGCGCATCCAAGGCCGCGTTGCGCTACCTGTTTGAATCGTTGCGCATCGACCTGGCCGCCGAGGGCATCGACGTCACGCTGGTGAGCCCCGGATTCGTTGATACGCCGCTGACCCAGCGCAATGATTTCGCGATGCCCATGCGCTGGCCGGCCGAACGCGCGGCCCGGCACATCGCACGGCGACTGCCTGCCCGCCCTCTGGAAATCGCGTTTCCGGGGTTGTTCATCGTGATCATGCGGCTGCTCGGGCATCTGCCCGCACGCTGGCGGCTGGCGCTCGGCCGGCGCCTGGCGCGCAAATCCGGGGAGGCTTGAMSRIWLTGASSGIGAELAKVLLEQGHRLALSARQAGPLQALADRYQDQVLVLPGDLTDRDQVVAIIQHIDREWGALDQVILNAGTCEYLEPGHFDARLVERVLNTNLLGTYHCLEAALPLLRRGQNPHLVAVCSAVTWLALPRAGAYGASKAALRYLFESLRIDLAAEGIDVTLVSPGFVDTPLTQRNDFAMPMRWPAERAARHIARRLPARPLEIAFPGLFIVIMRLLGHLPARWRLALGRRLARKSGEANANANANANA
D1-35_03902423hypothetical proteinATGTCCGCATTCCTCAAGGGTTTCGCCCACGCCTTCGCCGCGCTGGACGCCAGTCGCCTGGACCAGCTCGACAGGCTCTACAGCGCCGACGTGCTGTTCCAGGATCCGTTGCACCGGATCGAAGGCCTGCCTGCCCTGCGCGAATATTTCGCCCAGCTCTACGCCAATGTCAGCGATCTGCACTACGAGTTCCAAGGGTATGACGAAATCGCTCCCGGCGAAGGTTACCTGCGCTGGACCCTGCGCTTTCGGCACCCACGTTTGAACGCCGGCGCGCCGGTCGAATTGCCCGGCTGCAGCTACCTGCGCTGGAATGATCGGGTCTATTCACACCGGGACTTCTTTGATGCCGGCGCCCTGCTCTACGAGCACTTGCCCGTGTTCGGGCCGCTCATTCGCTGGCTCAAGCGGAGGCTGGCATGAMSAFLKGFAHAFAALDASRLDQLDRLYSADVLFQDPLHRIEGLPALREYFAQLYANVSDLHYEFQGYDEIAPGEGYLRWTLRFRHPRLNAGAPVELPGCSYLRWNDRVYSHRDFFDAGALLYEHLPVFGPLIRWLKRRLANANANANANA
D1-35_039031305hypothetical proteinATGCCCGTTGAAACCCTACTTATCGATACGCTTGTAATAGGCGCCGGCCAGGCCGGTGTCGCCATGAGTGAACATTTGAGCCGCCAGGGCGTGCCGCATCTGGTGGTGGAGCGCAACCGCATTGCCGAAGCCTGGCGCACGGCGCGCTGGGATTCGCTGGTTGCCAATGGCCCGGCCTGGCATGACCGCTTTCCAGGACTGGAATTCGAAGGGCTCGATCCGGACGCCTTTGCTTCCAAGGACCAGGTGGCCGAGTACTTCGAAGCCTATGCACGCAAATTCGACGCACCGATCCGCACCGGCGTGGAGGTGCGCAACGTCGAGCGCAATGCCGGTCGCCCGGGCTTCGCCATTGAAACGTCGAACGGCCGGATCGAGGCTACCAACGTGGTGGTCGCCACCGGGCCATTTCAGCGGCCCGTCATCCCGCCCATCGCGCCTGACATGGCTGCGGTGACGCAGATTCATTCGGCGCAATATCGCAACCCCGCGCAGTTGGCCGAGGGCGCCGTGCTGGTGGTCGGCGCCGGGTCGTCGGGGGTGCAGATCGCCGATGAATTGCAGCGCGCCGGCAAGCGGGTCTACCTCTCGGTGGGCGCCCATGATCGTCCGCCGCGGGCCTATCGCAACCGCGATTTCTGCTGGTGGCTGGGGGTGCTGGGCGAGTGGGACGCCGAAGCGGTCAAGCCAGGCAAGGAGCACGTGACCATTGCCGTGAGTGGCGCGCGGGGTGGGCACACCGTGGATTTCCGGCGGCTGGCCCATGAGGGCATCACGCTGGTGGGACTGACCCGGGCGTTCAACGGCAGCACGGTGAGTTTCGAACCCAACCTCAATGAAAACATTGCCCGTGGCGATGAAAACTACCTGGCATTGCTTGACGCCGCCGATGCCTACATCGCGCGCAACGGCCTGAATCTGCCGCCCGAGCCCGAGGCACGTCGGCTATTGCCCGACCCGGAATGCATGACCCAGCCGATCCTGGAACTGGATCTGACCGAGGCGGGCATCAGCACCATCATCTGGGCCACCGGGTATTCGGTGGATTACAGCTGGCTGAAAGTCGATGCGTTCAAAGCCAACGGCAAGCCACGGCATCAGCGCGGGGTCTGCAGCGAGCCGGGCCTCTATTTTGTCGGCCTGCCATGGCTGTCGCGGCGGGGCTCGGCGTTCATCTGGGGCGTGTGGCACGACGCCCGGCACATCAGCGACCACATCATCAAGCAGCGCACGTATCTCGATTACCGGGATGCCTCCCAGCGCCAGTCGCAACCTTCGAAAACCAGCCTCATGGGAGTCCGCTGAMPVETLLIDTLVIGAGQAGVAMSEHLSRQGVPHLVVERNRIAEAWRTARWDSLVANGPAWHDRFPGLEFEGLDPDAFASKDQVAEYFEAYARKFDAPIRTGVEVRNVERNAGRPGFAIETSNGRIEATNVVVATGPFQRPVIPPIAPDMAAVTQIHSAQYRNPAQLAEGAVLVVGAGSSGVQIADELQRAGKRVYLSVGAHDRPPRAYRNRDFCWWLGVLGEWDAEAVKPGKEHVTIAVSGARGGHTVDFRRLAHEGITLVGLTRAFNGSTVSFEPNLNENIARGDENYLALLDAADAYIARNGLNLPPEPEARRLLPDPECMTQPILELDLTEAGISTIIWATGYSVDYSWLKVDAFKANGKPRHQRGVCSEPGLYFVGLPWLSRRGSAFIWGVWHDARHISDHIIKQRTYLDYRDASQRQSQPSKTSLMGVRPGPT0013865_455DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0013865-czcO|noxC|yrdP|trkA|hapE-K07222NANA
D1-35_03904411hypothetical proteinATGCCTACTCATACTCGCATCCGCATGTTCAACACCAAAGACACCTATCCGAACCAGACGCTGGACAACGACCTGTGCCAGGCGGTTCGCGCCGGCAATACCGTGTACGTGCGCGGTCAGGTCGGCACCGACTTCAACGGTCAAATGGTGGGCCTCGGCGACCCACGGGCCCAGGCCGAACAGGCCATGCGCAACGTCAAGCAACTGCTGGAGGAAGCCGGCAGCGACCTGAGCCATATCGTCAAGACAACCACCTACCTGATCGACCCGCGCTACCGCGAGCCGGTGTACCAGGAGGTCGGCAAATGGCTCAAGGGCGTATTCCCGATTTCCACCGGGCTGGTGGTCAGCGCCCTCGGCCAGCCGCAGTGGCTGATGGAAATCGACGTGATTGCGGTCATTCCCGAATAAMPTHTRIRMFNTKDTYPNQTLDNDLCQAVRAGNTVYVRGQVGTDFNGQMVGLGDPRAQAEQAMRNVKQLLEEAGSDLSHIVKTTTYLIDPRYREPVYQEVGKWLKGVFPISTGLVVSALGQPQWLMEIDVIAVIPEPGPT0020030_989DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020030-ridA|tdcF-K09022NANA
D1-35_03905675hypothetical proteinATGACGTTTTCCATCGTCGGACGCTGCGCCGAGACTGGCCAGCTGGGCATCGCCATCAGCTCATCGAGCATCGCCGTCGGCGCCCGTTGCCCCTGGCTGCGGGCCGGTGCCGGTGCCGTGTCGAGCCAGAACATCACCTTGCCGGCCCTGGGGCCGCTGATTCTTGATGAACTGGCCGCCGGCCAGACGGCGCAAGAGGCGCTGGATCATGCCTTGGCGCGTAACGGCTATAGCGAATATCGCCAGGTCGCGGTGGTGGATGCCCACGGACGTACGGCGGTCTTCAGCGGTCGCCACGCGTTGGGTATTCACGGCGCCCAGCCAGGTGAGCAGTGTGTGGCGGCCGGCAATCTGCTGGCGAGCGACGGAGTCATCGCGGCCATGGTCGCGGCGTTCGAGCAGGGCGAGGGCAGTCTCGCGTCACGCCTGCTTGGGGCGTTGCAGGCTGGGCAGGCCGCGGGTGGAGAGGCCGGTGCGGTGCATTCGGCAGCGCTGTCGGTGGTGGATGACCTGACCTGGCCCATCGTCGATCTGCGGGTGGACTGGGCCGACGAGAATCCCATCGGCGAACTGGAAAAACTCTGGCTCGCCTATCAACCGCAACTGCAGGACTACCTGACCCGCGCGCTCAACCCGACCCTGGCGCCGAGCTACGGGGTGCCGGGCGATGAGTGAMTFSIVGRCAETGQLGIAISSSSIAVGARCPWLRAGAGAVSSQNITLPALGPLILDELAAGQTAQEALDHALARNGYSEYRQVAVVDAHGRTAVFSGRHALGIHGAQPGEQCVAAGNLLASDGVIAAMVAAFEQGEGSLASRLLGALQAGQAAGGEAGAVHSAALSVVDDLTWPIVDLRVDWADENPIGELEKLWLAYQPQLQDYLTRALNPTLAPSYGVPGDENANANANANA
D1-35_039061170argE_2COG0624Acetylornithine deacetylaseATGAGTGAGTTGCGCAGTCGCGCACTGCTCGCCGAGCTGGTGGGCTTTGCCACGGTCAGTCGTGATTCGAACCTGGCGCTGATCGAGTTCGTGGGCGATTACCTGCAAGGCCTGGGGGTAAGCAGCGAGCTGATCTACAACGCCGAGCGCACCAAGGCCAACCTGTTGGCAAGCATCGGCCCGTCGGTGCCTGGCGGTGTGATGTTGTCCGGGCATACCGACGTGGTGCCGGTGGACGGCCAGGCCTGGACGGTTGATCCGTTCTGCCTGAGCGAGATGGACGGCAAGCTGTTCGGGCGCGGTACGGCGGACATGAAAGGCTACCTGGCCTCGGTGCTGGCGGCGGTGCCGACATTCCTGTCCAGCCCGCTCAGACGCCCGCTGCACCTGGCGTTTTCCTATGACGAAGAAGTTGGGTGCCTGGGCGTGCGCAGTCTGCTGGAGGTGCTGCCGCAACGCATCCCGCAACCGGCCTTGTGCCTGATCGGTGAGCCCACCGAGCTGCAACCGGTGCTCGGTCATAAAGGCAAATTGGCGATGCGCTGCCACGTCCGAGGCGCACCGTGTCACTCGGCCTACGCGCCTTATGGAGTCAACGCCATCGAGCAGGCGGCGCGCCTGATCGGTCGCCTGGGAGAGATCGGTGCGGAGCTGGCCGAACCGTCGCGACACGATGGGCGCTTTGATCCGGCTTACTCGACCGTGCAGGTCGGCGTGATCCAGGGCGGGACCGCACTGAACATCGTTCCGGCCGACTGCCGCTTCGATTTCGAGGTGCGCGCCTTGCCGGATTTTGCCCCGCAGGGGGTGGTCGAGAAATTGCAGGATTACGCCGAACAGGCGCTGCTGCCGAGGATGCGCGCGGTTAGCGCCGACACCGCGATTCGTTTCGAACACCTGTCCGCCTACCCGGGCCTGGCGACTGCGCCGGACAGCGAAGCCGCGCGTCTCATAGCCCGGCTGTGCGGCAGCGAGGCCTTCGGCACCGTGGCGTTCGGCACCGAAGGTGGGCTGTTTGATCAGGCCGGTATCCCGACGGTGGTTTGCGGGCCCGGCAGCATGGACCAGGGGCACAAGCCCGACGAATACGTGAGCGTTGAGCAAATGGCTGCCTGCGACCGGTTGATGGACCGCCTGGCGAAGCATTTGAGCGAACCCGATGGCCTGTGAMSELRSRALLAELVGFATVSRDSNLALIEFVGDYLQGLGVSSELIYNAERTKANLLASIGPSVPGGVMLSGHTDVVPVDGQAWTVDPFCLSEMDGKLFGRGTADMKGYLASVLAAVPTFLSSPLRRPLHLAFSYDEEVGCLGVRSLLEVLPQRIPQPALCLIGEPTELQPVLGHKGKLAMRCHVRGAPCHSAYAPYGVNAIEQAARLIGRLGEIGAELAEPSRHDGRFDPAYSTVQVGVIQGGTALNIVPADCRFDFEVRALPDFAPQGVVEKLQDYAEQALLPRMRAVSADTAIRFEHLSAYPGLATAPDSEAARLIARLCGSEAFGTVAFGTEGGLFDQAGIPTVVCGPGSMDQGHKPDEYVSVEQMAACDRLMDRLAKHLSEPDGLPGPT0014254_1675DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014254-argE-K01438NANA
D1-35_039071041hypothetical proteinATGTCCATATCCTTGCGTTGCAACATTGCGTGTGCCCTGGCGTTGCTGAGCAGCAGCGTACTGGCCGCGCCACCAAGCCTGACCGTGATCTCATTCGGCGGCGCCACCAAGTTGGCCCAGGACAAGGCCTACTTCCAACCCTTCAACGCCAGCGGTGCAGGAAGCATCGTCGCCGGCGAATATAACGGCGAGCTGTCGAAGATCAAGGCCATGGTCGCGGCCGGGCACACCAGTTGGGATGTGGTCGAGGTGGAAAGTCCCGAGCTGCTGCGCGGTTGTGAGGAAGGTCTGTTCGAAAAACTCGACCCGGCGGCGATTGGAAAAGCTGCGGATTTTGTTCCGGGTGCGCTTACCGAATGCGGCGTGGCGACATATGTCTGGTCGATGGTTCTGGCCTACGACCAGAGCAAACTCGCCAAGGCGCCCCAATCCTGGGCGGATTTCTGGAACGTGAGCGACTACCCGGGTAAACGCGGATTGCGCAAGGGTGCCAAGTACACCCTGGAAATCGCCTTGCTGGCGGATGGCGTCAAGGCCGAGGATCTGTACAAGGTGTTGAACACCCCTGAAGGGGTGACACGTGCTTTCGCCAAGCTCGATCAGATCAAGCCGAACATCCAGTGGTGGGAGGCGGGTGCGCAGCCGGCGCAATGGCTGGTGGCCGGGGACGTTGCCATGAGCGCCGCCTACAACGGGCGCATCGCCTCGGCACAGAAGGAAGGCATGAAACTGAGCATCGTCTGGCCACAAAGCCTGTATGACCCAGAGTACTGGGCGGTGGTCAAAGGTACGCCGAACAAGGCCCTGGCCGAGAAATTCATTGCCTTTGCCAGCCAGCCGCAGACGCAGAAAGTCTTCTCGGAAAACATTCCCTACGGACCGGTGCATCGCCAGACGTTGGCCTTGCTGCCCGCCGAAATACGCGAGCAACTGCCCACCGCCGAGGCCAACCTGGCGCAAGCGCGAGCGGTGGATGCCGAGTTCTGGGTGGACCACGGTGAAGAGCTTGAGCAACGCTTCAATGCCTGGGCGGCTCGCTAGMSISLRCNIACALALLSSSVLAAPPSLTVISFGGATKLAQDKAYFQPFNASGAGSIVAGEYNGELSKIKAMVAAGHTSWDVVEVESPELLRGCEEGLFEKLDPAAIGKAADFVPGALTECGVATYVWSMVLAYDQSKLAKAPQSWADFWNVSDYPGKRGLRKGAKYTLEIALLADGVKAEDLYKVLNTPEGVTRAFAKLDQIKPNIQWWEAGAQPAQWLVAGDVAMSAAYNGRIASAQKEGMKLSIVWPQSLYDPEYWAVVKGTPNKALAEKFIAFASQPQTQKVFSENIPYGPVHRQTLALLPAEIREQLPTAEANLAQARAVDAEFWVDHGEELEQRFNAWAARPGPT0007855_4051DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007855-ABC_SP_S|ydcS-K02055NANA
D1-35_03908912cysB_2HTH-type transcriptional regulator CysBGTGGCGTCCTACTCCCTGCGTCAGTTGAAGTACTTCGTGACCACCGTGGAATGCGGCAGCGTCGCCGAAGCCTCGCGCAAGCTGTACATCGCCCAGCCATCGATTGCCACGGCGGTAAAAGGCCTGGAGGACAGTTTCGGCGTGCAATTGCTGATCCGCCATCACGCCCAGGGCGTCTCGCTGACGCCCGCCGGTGCGCGTTTCTATCGCAAGGCCCAGGAACTGCTGCGCATGGCCCGGGAATTCGAACAGAACGCGCTGGCGGACAACGACGTCGTCAGCGGGCAGATCGACATCGGCTGCTTCGAGACCGTCGCCCCGCTCTACTTGCCACGGCTGATCGCCGGGTTCCGAGAGCGTTTTCCCGGGGTGGAAATTCGCGTACAGGATGGCGAACAGCAGGAGCTGGTCCAGGGCCTGACGGGGGGACGTTTCGACCTGGCGATTTTTTATGAGCACGATCTCGACAGCACCATCGAAACCGAAGCGCTCACCGCGCCGCAGCGGCCCTATGCATTGCTGCCGGAGGGGCATCGTTTCGCCGATCAGGGCCAGGTGTCATTGCGGGACCTGGCGCTCGAACCGATGATCCTTTTGGACGTGCAGCCCAGCCGGACCTATTTCGTGAGTATTTTCGAAGAACTGGGCCTGACGCCGAACATTGTCTTCAGTTCGCCCTCCATCGAGATGGTGCGCGGCATGGTCGGTCAGGGATTCGGCTTCGCCGTGCTGGTTACGCGGCCGCAATCGAGCTGCACCTACGACGGGCAGCGAGTGGTGTGCGTCAACATCGCCGAAGACGTGACAGGTTCAGCGCTGGTGGCCGGCTGGCTCAAGCGCGCGCACTTGACCAAGCCGGCGCAGCTGTTCGTGGATTATTGCAAGGAGCAGTTCGGCGAGTGGCTGGCGTAGMASYSLRQLKYFVTTVECGSVAEASRKLYIAQPSIATAVKGLEDSFGVQLLIRHHAQGVSLTPAGARFYRKAQELLRMAREFEQNALADNDVVSGQIDIGCFETVAPLYLPRLIAGFRERFPGVEIRVQDGEQQELVQGLTGGRFDLAIFYEHDLDSTIETEALTAPQRPYALLPEGHRFADQGQVSLRDLALEPMILLDVQPSRTYFVSIFEELGLTPNIVFSSPSIEMVRGMVGQGFGFAVLVTRPQSSCTYDGQRVVCVNIAEDVTGSALVAGWLKRAHLTKPAQLFVDYCKEQFGEWLANANANANANA
D1-35_039091203NADH dehydrogenase-like proteinATGAAACAGCACATCTTGATTGTCGGCGCCGGTTTCGGCGGCGTATGGAGCGCACTCAGCGCCGCCCGCCTGCTCGACCAGCATGATCGCAACGACGTACAGATCAGCGTCCTGGCCCCCCAGGCGGAACTGCGCATCCGCCCGCGGTTCTACGAGCCGAACGTCCATACCATGATGGCGCCGTTGGGCGCGCTGTTCGATGCGGTCGGCGTGAACTTCGTCCAAGGCGTGGCCGAGAACATCGATGTCAGCCGCAAGCAGATCAGCTACCGCGACGTGTCCGGCAGCCTCGCGACGCTGGGCTACGACCGACTGGTACTGGCCGCGGGCAGCAAGCTGGTTCGCCCTGACCTGCAAGGCATGCTTGAACACGCATTCGATGTCGATGAGATCGAACAGGCAACACGCCTCGAAGCCCACCTCAATTCGCTCGGGAACCTGCCGGACAGTCCCGCACGCAATACCGTCGTCGTCGCAGGCGGTGGTTTCACCGGCATCGAAACCGCCACCGAAATGCCCGCCCGTCTGCGCGCCGTCCTCGGCAGCGACGCCGATGTCCGTGTGATCGTGGTCGACCGCGGGCCGAAAATCGGTGCGGCACTGGGTGAGGGAATCAGCCCTTCGATCATCGAAGCGTCCGAGCACCTGGGCATCGAGTGGATCCTCAATGCCTCGGTCGAATCGGTGGATGCCGGCGGTGTCACCCTCTCGGATGGCCAGCGCATCGAGTCCAGCACCGTTATCTGGACCGTAGGCTTTCGCGCGAGCCCTCTCACCGAACAGGTGCCCGCAACCCGCGACCGCCAGGGCCGGCTGCATGTCGACGGGCATTTGAAGGTGCTCGGGCAGAACGATATCTACGCCAGCGGCGACGTGGCCTATGCCGCCACCGACGACTTGGGCAACTACGCGGTCATGTCCTGCCAGCATGCCATCGCCCTGGGTCGTTATGCGGGCAACAACGTTGCCGCCGACCTGCTCGGCGTCGCGCCGATGACCTACAGCCAGCCCAAGTACGTGACGTGCCTGGACCTGGGCGCCTGGGGCGCGGTGTACACCGAAGGTTGGGACCGCCAGCTCAAATTGGTTGGCGAGGAAGCCAAGGAGCTCAAGACCCAGATCAATTCGGTCTGGATCTACCCGCCCGCCGCCGATCGGGCAACCGCCCTGGCCGCAGCCGATCCATCGATTCCCGTAGCCTGAMKQHILIVGAGFGGVWSALSAARLLDQHDRNDVQISVLAPQAELRIRPRFYEPNVHTMMAPLGALFDAVGVNFVQGVAENIDVSRKQISYRDVSGSLATLGYDRLVLAAGSKLVRPDLQGMLEHAFDVDEIEQATRLEAHLNSLGNLPDSPARNTVVVAGGGFTGIETATEMPARLRAVLGSDADVRVIVVDRGPKIGAALGEGISPSIIEASEHLGIEWILNASVESVDAGGVTLSDGQRIESSTVIWTVGFRASPLTEQVPATRDRQGRLHVDGHLKVLGQNDIYASGDVAYAATDDLGNYAVMSCQHAIALGRYAGNNVAADLLGVAPMTYSQPKYVTCLDLGAWGAVYTEGWDRQLKLVGEEAKELKTQINSVWIYPPAADRATALAAADPSIPVAPGPT0004020_4863DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0004020-ndh-K03885NANA
D1-35_03911375tmoTResponse regulator protein TmoTATGTCCGACACTGCACTTATTGCTGTTATCGATGACGATGAATCGGTTCGAGTTGCATTGGATGGTTTGCTGCGCTCTCACGGGTATCGCGTCAGGACTTATGCCAGTGCCGTCGCCTTCCTGTCTTCAGCCGGGTTTGAAAACACCGCGTGCGTGCTGTCGGACATACAAATGCCGGGCATGACGGGCATTCAGTTGTGCGATGAGCTCTATGCCCGAGGGATCGACATTCCGCTTGTTTTCATCACGGGCCTGCCTGTTGTGCCCGCGCTGGCCATACCGGGGGGTTGCGGTCCCGTGGCGGTTTTCCCCAAGCCGTTCAGGTGTGGGGAGTTGGTTGCTTGCATTGAGTCGATTCTTGAACGGTCGGTTTAGMSDTALIAVIDDDESVRVALDGLLRSHGYRVRTYASAVAFLSSAGFENTACVLSDIQMPGMTGIQLCDELYARGIDIPLVFITGLPVVPALAIPGGCGPVAVFPKPFRCGELVACIESILERSVPGPT0000145_572DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0000145-fixJ-K14987NANA
D1-35_03912651todTResponse regulator protein TodTATGAACCCAAGCCACGCCATGCCCCCTGCCCTCGCCCATGAACCGATTGTCTACGTGGTCGACGACGACGCATCGTTACGCGAAGCCCTTCGCAGTCTGCTGCGGTCCATTGGCCTGTTGGTCGAACTGTTCGACTCGGTGACGGACTTCATGGGCCATCCACGTCCCGACGCACCCAGTTGCCTGTTGCTCGATGTGCGCCTTCGCGGCACCAGCGGGCTGGACTTCCAACAGCAGTTGGCGAATGCCGGAATTCATCTGCCGATCGTATTCATGACCGGGTATGGCGACATTGCCATGACCGTGCGGGCCATGAAGGCTGGCGCGGTGGATTTCCTGACCAAGCCGTTTCGCGAACAGGACCTGATCGATGCGGTGTCCGCCGCCCATCAGCGCGACCGACTGCGCCGCGAAGCCGAGCGTGGCCAGCAGGCGCTTCAGGACCGTTACGCCACGTTGACCGCCCGGGAGCGCCAGGTGATGGCACTGGCAGCGTCGGGCCTGATGAACAAGCAGATCGCCGGGCAAATAGGCTTGAGCGAGATCACCGTCAAGATCCACCGAGGCCAGGCCATGCGCAAGATGGCTGCGCGTTCGTTTGCCGACCTGGTGTGCATGGCCCAGGCCCTGGAACCGGGCCGTGATCGTTGAMNPSHAMPPALAHEPIVYVVDDDASLREALRSLLRSIGLLVELFDSVTDFMGHPRPDAPSCLLLDVRLRGTSGLDFQQQLANAGIHLPIVFMTGYGDIAMTVRAMKAGAVDFLTKPFREQDLIDAVSAAHQRDRLRREAERGQQALQDRYATLTARERQVMALAASGLMNKQIAGQIGLSEITVKIHRGQAMRKMAARSFADLVCMAQALEPGRDRPGPT0015288_16DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULE_REGULATION,PGPT0015288-nodW-NANANA
D1-35_039131071sasA_16Adaptive-response sensory-kinase SasAATGGGCATCAGCCCTCACCCGCTGGTCGACGCCCTGGGCTGGGCGGTCGGCCTGGTCGTGGCCTGCGGGATTGTCATCATCAATTCCGAAACCCATTCCGACTTGGCGCCGACGCTGCTGTACGTCACCTTGTTGCTGATGGCGGCCAACCTGTTTTCAATCAACCTGGTGATCACCGTTGCGCTGATGTGCATGTTCCTGCTGACGGCGATGTTCCTTTACAACGGCGGTTACCACCGCTGGGAATCGATCACCGGGTTCTTCCGTTGCCTGACGGCCCTGTCGGCCATCGCGTTTCTCGCACTGCGCAGCAAGCATGCCTCGGACCGCCTGCGGCATAACCAGGCCTACCTGATCGAAGCCCAGGCGCAGTTGGCCCATGCCACGCGGCTGACGTACCTGGGGGAAATGGCCGCCTCCATCGCCCATGAAGTGAACCAGCCGTTGACGGCCATTACCAGCAGCGGCGAAGCCTGTCGCCGCTGGCTGGACCGTCCGGTGCCCGACCTCAAGGAGGCCCTCGACTCGCTGGACCGGATCGTCGCCAACGCGTGCCGCGCCAGTGAAGTCATCAATCGGACCCGAGCGATGGCGCGCAAATGCGACCCTCTGCGCCGGCCCGAACGACTGGACGAAATCGTCAGCGAAACACTGGATCTGGTGCGCCACCAGCTGGCTCAGCACCAAGTCAGCCTGAAAGTAGACCTGACGGCGGCAAGCCTCGTCGACGCCGATCGGGTCCAGCTGCAGCAGGTGATCATCAACCTGGTCTCCAACGCTTGCCACGCCATGGAAACGCTCCCGGTGCGCGACCGAATCCTTTACGTGCGCACCTGGACGCACGCGCACGAGGTGCTGCTGGCGGTGACGGACCGGGGAATCGGCATCACGGCCGAGACACTGCCCTCATTGTTCAACCCGTTTTTTACCACCAGGGAAAACGGCCTTGGCATAGGCCTGTCGATCTGTCGCTCGATCATCGATTTCCATGACGGCAGGATCTGGGCTACCAGCGAGGCAGGCCAAGGCACCTCGTTCACCTTTTCGTTGCCGTTGTTAGCCAAAGCCTGAMGISPHPLVDALGWAVGLVVACGIVIINSETHSDLAPTLLYVTLLLMAANLFSINLVITVALMCMFLLTAMFLYNGGYHRWESITGFFRCLTALSAIAFLALRSKHASDRLRHNQAYLIEAQAQLAHATRLTYLGEMAASIAHEVNQPLTAITSSGEACRRWLDRPVPDLKEALDSLDRIVANACRASEVINRTRAMARKCDPLRRPERLDEIVSETLDLVRHQLAQHQVSLKVDLTAASLVDADRVQLQQVIINLVSNACHAMETLPVRDRILYVRTWTHAHEVLLAVTDRGIGITAETLPSLFNPFFTTRENGLGIGLSICRSIIDFHDGRIWATSEAGQGTSFTFSLPLLAKAPGPT0000140_605DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONNITROGEN_REGULATING_FUNCTIONS,PGPT0000140-fixL-K14986NANA
D1-35_039141020rhaS_9HTH-type transcriptional activator RhaSATGAACGAGATGACCTGTGACATCCGCATTGCCGCCGAGTCCGTATCCCGACCGCGCGCGCTGGTGTTCCTCGCCTATCCGCAGATGGGCCTGCTCGACCTGACCGGCGCCCAGACGGTGTTCTGGGCGGCCACCAAAGCCATGACCGAACGTGGCCTGCCCGGCTACCGGATGCACACCGCCAGCCTTGAAGGCGGCCTGATGCAGACCGCCGAAGGGCTGGTCGTGCAAACCTGCGCCCTGGGTGAGTTCGACAACGCCGTCATCGACACGCTGATCGTGCCTGGCGCGCCGAACATCCGCCAGGCGATGATCGACTGCGTCGAGCTGGTGGACTGGCTGCGCGCGGCCTCGACCAAGGCCCGCCGCACCGCTTCGGTGTGCAGCGGGACCTTCCTCATGGCCCAGGCCGGCTTGCTCGACGGCCGCCGCGCCGCCACGCACTGGGCCATGTGCGAAATGCTCAAGAGTGGCTTCCCCTTGATCGAAGTGGACCTCGACGCGATTTTTATCCAGCAGGACAGCGTCTGGACCTCGGCGGGCGTCAGCGCCGGCATCGACATGGCCCTGGCCTTGGTGGAAGCCGATTGTGGTCGCGATGTCGCGCTGCAGGTGGCCCGGGAACTGGTGGTGTTTCTCAAGCGCCCCGGTGGGCAGGCGCAGTTCAGCCAGTTGCTGCTGGCACAGACCCAGGACAGCGCCGGATTCGATGAACTGCACGCCTGGCTCGCCGAGCACCTGGATGAGGCCGACCTGAGCATCGAGCGCCTGGCCCGGCAAGCGCGCATGAGCCCGCGCAACTTCGCCCGGGTCTACAAGCGCCAGACCGGACGCACCCCGGCCAAGGCCGTCGAGATGTTCCGGCTCGAAGCGGCCAGACGACTGCTGGAGGACTCCGAGCGCAACATCGATCAGATTGCCCGTTCGTGCGGCTTCGGCGACGAAGAACGGATGCGTTACACCTTCCAACGCCACCTCTCGATTTCACCACGGGACTATCGCAACCGGTTCTCCCGCTGAMNEMTCDIRIAAESVSRPRALVFLAYPQMGLLDLTGAQTVFWAATKAMTERGLPGYRMHTASLEGGLMQTAEGLVVQTCALGEFDNAVIDTLIVPGAPNIRQAMIDCVELVDWLRAASTKARRTASVCSGTFLMAQAGLLDGRRAATHWAMCEMLKSGFPLIEVDLDAIFIQQDSVWTSAGVSAGIDMALALVEADCGRDVALQVARELVVFLKRPGGQAQFSQLLLAQTQDSAGFDELHAWLAEHLDEADLSIERLARQARMSPRNFARVYKRQTGRTPAKAVEMFRLEAARRLLEDSERNIDQIARSCGFGDEERMRYTFQRHLSISPRDYRNRFSRNANANANANA
D1-35_039151002hypothetical proteinATGACGTTCAAGCGTCCCGTACTTTTTCTTTCCCTGGCGGCGAGCCTGCTGGTCGGGCCGCAGGCGCATGCCGAAGGCAAGATCAGCATCGCCCAGCAATTCGGCATCGGTTATCTGATCCTGGACGTCGTGCGTGACCAGCAGCTCATCGAGAAACATGGCAAGGCCCAGGGCCTGGACATCAAGGTGGATTGGAACAGCATCTCCGGCGCCACCGCCATGAACGAAGCGTTGCTGACCGGCGCCCTCGACGTGGTGTCGGCCGGGGTGCCGCCGATGCTGACGATCTGGGATCGGACCCGGGGCAAGCAGAACGTCAAGGCCATCGCCTCGCTGGGCTCGATGCCCAACTACCTGTTGACCAACAACCCCGGGATCAAGACGCTCAAGGACTTCACCGACAAGGATCGGATCGCGGTTCCGGCGGCGGGTGTCGGCTTCCAGTCGCGCACATTGCAGATCGAGACGGCCAAGGTGTTCGGCGATGAGCACTACAAGAAATTCGACGACATCTCGGTCAGCCTCCCGCACCCGGACGCCACGGCCGCGTTGATCGCGGGCAAGTCGGAAATCAATTCGCACTTTTCCAGCCCGCCGTTCCAGTACCAGGCGTTGCAGAACCCCAACGTGCACAAAGTCCTCAGCTCCTATGAGGTGCTCGGCGGGCCGGCCACGTTCAACGTGCTCTACACCACGGAGAAATTCCACGACGAAAACCCGAAGACCTACAAGGCGTTCTACGCCGCGCTGGTCGAAGCCCAGAACATCATCAAGGCCGACAAACCTGCCGCCGCCCAGACGTATATCCGGGTAGAGCAATCCAAGCTGCCATTGGCCCTGGTGGAGAAGATCGTCAGCGACCCGGAAATCGATTTCACCGTGGTCCCGCAACGCACCTATATCTACGCCGACAAACTGCATGAGCTGGGTGTATTGAAGAACAAGGCCGACAGCTGGAAGGACTACTTCTTTGAAGAAGCCCACGGCGGCGCAGGCAGCTGAMTFKRPVLFLSLAASLLVGPQAHAEGKISIAQQFGIGYLILDVVRDQQLIEKHGKAQGLDIKVDWNSISGATAMNEALLTGALDVVSAGVPPMLTIWDRTRGKQNVKAIASLGSMPNYLLTNNPGIKTLKDFTDKDRIAVPAAGVGFQSRTLQIETAKVFGDEHYKKFDDISVSLPHPDATAALIAGKSEINSHFSSPPFQYQALQNPNVHKVLSSYEVLGGPATFNVLYTTEKFHDENPKTYKAFYAALVEAQNIIKADKPAAAQTYIRVEQSKLPLALVEKIVSDPEIDFTVVPQRTYIYADKLHELGVLKNKADSWKDYFFEEAHGGAGSPGPT0001135_4702DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-RELATED_FUNCTIONSN-AQUISITION-NitT|TauT_FAMILY_TRANSPORTER,PGPT0001135-ABC_SN_S-K02051NANA
D1-35_03916972hypothetical proteinATGAACGACGACATGGCGGACGGGTTGCCGACGCGGCCGATCAATCGGTTCCGCACCGGCGACATCGACGAGCACGCGCGGAACATGGGCGGCTGGCAGGTGAGCTACGACCAACTGACGCCAGGACGCTTCGAAGGCGAGTTGATCGAGTTCCGTGCAGATTGGATGCAACTGGTGCGCGACCGCTCTAATCAGGCCATGACCAAGCGCGGCATGGCATGGGAGGGCGCGATTACCTTCAGCGTACCGTTGCGCGCTGACGGGCCGGTGTTCTGCTGCGGGCACCCGATTGTCGAGCCGAGCCTGATGGTCGCCCACGGCCGCAACCTGCCGGACCTGCGCACACCCCAGCACTTGGACCTGCTCGGCGTCGCCGTCAAGGAGCAAGCCCTGGAGCACCTGCTGGAGCGCCAGGGCAGCGACTTTCGAATTACCGATCTTCCCAAGTGTTACCGTCTCGGCGATTCGACCTTGCCCGCTGAGCTGGCGGCGCTCTTCGACGAACTCGAAGGGGGCGGCCAGGGGCATGAGTCATTGTTGGGCTTCGAGTCGATCCGCCGTGGCCTGCGCGATACGGTGATGCTGCACCTGCTGGAGCTGGTGGCGCCCGACCAGGCGCCGCCGCTGACCCCGACGGCCCGCAAGCGCATGGTCGACCGGGCCCGGGAATATGCCCTGGCCCATGTCGACGAGCCGCTGTCGATCCTCGACCTGTGCAACCACATTGGCGCCAGCCGGCGTAAATTGCAGTACTGCTTCCAGGAAACCCTGGGCATCAACCCGGTGGCCTATTTAAGGGCGCTGCGCCTCAATGCCGTGCGCCGGGAGCTGCGCGCTGGCGACCAGGCCAGGGGCGTGCAGGAGGTGGCGGCACGCTGGGGCTTCTGGCACCTGAGCCGTTTCTCCAGCGACTATCGGACCCTGTTCGGCGAAACCCCTTCACAAACCCTGCGGCGCACGCATCTGTGCTGAMNDDMADGLPTRPINRFRTGDIDEHARNMGGWQVSYDQLTPGRFEGELIEFRADWMQLVRDRSNQAMTKRGMAWEGAITFSVPLRADGPVFCCGHPIVEPSLMVAHGRNLPDLRTPQHLDLLGVAVKEQALEHLLERQGSDFRITDLPKCYRLGDSTLPAELAALFDELEGGGQGHESLLGFESIRRGLRDTVMLHLLELVAPDQAPPLTPTARKRMVDRAREYALAHVDEPLSILDLCNHIGASRRKLQYCFQETLGINPVAYLRALRLNAVRRELRAGDQARGVQEVAARWGFWHLSRFSSDYRTLFGETPSQTLRRTHLCPGPT0000623_270DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-ETHANOLAMINE_USAGEN-AQUISITION-ETHANOLAMINE_DEGRADATION,PGPT0000623-eutR|yfeG-K04033NANA
D1-35_03917933hypothetical proteinATGAATCAGAATAAAAAGAAAAACCTGCGGCATTTTACGTGGCTCACCCTGGGGCTTTTCGGCGCCTGCGCCGTGGCCAACGCTACCGAGAACGGTGCGCCGACCACTGCGTTCGGCGTCTACGACTTCGGTGCCGGCATGATGCCGCCGGCCACGCCCTTCGGGACGGTCGGGCTGCGTACTGCGTTCTATTCGGCCAATGTGCAGAAAGACCGTCATGGTCGCTCGGTGGACAACAACCTGTCCCTCGATGTGCTGTCGATCGGCGTCGCCTACATGCACATGACCGATTACACCGTGCTCGGCGCCAAGTACGGCTATGGCGCGGTAGTGCCGTTCTTCCAGATGGACGCCTCGGTAAGGGTGCAGACGCCGGTCGGTCCGCTGAACCTCGAAGCCGATCCGTTTCGCATGGCCGACATCCAGGTATTGCCCGTCATCCTGCAATGGACGTTGTCGCCAAACCTGTTCGTCAACGCGCAATTCCAGATCCAGACCCCGACGGGCGATTACGACGAGGACCGGCTGATCTCGCCGGGCCTGAACCACTGGACGTTCTCGCCGATCCTCAACGCGACCTATATCTCAGACACCGGCTTCGAGGTGTCCTCCAGCTTCGAAGTCGATGTGAACACTCGCAACCCTGCCACCGACTACAAAAGCGGCGTCGAGTATCGCCATGAATTCGCCGTCGGCCAGCATGTCGGCCCCTGGACGCTGGGTGTGGGCGGCTACTACTACCGCCAGTTCACCGACGACGATGCTCCGGGGCTGGAGTCGGGCAATCGCGCCCGGGTGCTCGCGGTCGGGCCGGCGGTGAGTTATTTCAAGCCCGGCGTGCCGCCGATCTGGCTGCACGTCTACAAGGAATTCGACGCGCGAAACCGCGCCGAGGGCTACACCACGGCCCTGCGCATTTCTCACAGTTTCTAGMNQNKKKNLRHFTWLTLGLFGACAVANATENGAPTTAFGVYDFGAGMMPPATPFGTVGLRTAFYSANVQKDRHGRSVDNNLSLDVLSIGVAYMHMTDYTVLGAKYGYGAVVPFFQMDASVRVQTPVGPLNLEADPFRMADIQVLPVILQWTLSPNLFVNAQFQIQTPTGDYDEDRLISPGLNHWTFSPILNATYISDTGFEVSSSFEVDVNTRNPATDYKSGVEYRHEFAVGQHVGPWTLGVGGYYYRQFTDDDAPGLESGNRARVLAVGPAVSYFKPGVPPIWLHVYKEFDARNRAEGYTTALRISHSFNANANANANA
D1-35_039181251hypothetical proteinATGAACTCATCAAACTCCATTTCAACGGCGTCGCCGCGTCAGGCAGTTGGCCGGCGTGAAGGGTTGGTGCTGATGCTCGGCAGCAGCCTGACCATCATGGGCTCGGTAATGGTCACGCCGATTCTTCCCAGGCTGGCCGCCGAGTTCGGCCCCGTCGAGCCTCGCGCCGATTTGTTGGTGCCGCTGGCAATCACCGGGCCCGCGTTGGCGATTGCCCTCTGCGCGCCGTTGGCCGGCTGGTTGGCCGACCGGGTCGGGCGCAAGGCCTTGCTGGTGATCGCCACCTTGCTCTATGCGGTGCTCGGCGCGTTGCCGGCGCTGCTCGACAACTTGCCGGCGATTGTCGGCGCGCGCTTGCTGTTTGGCTGCGCGGAGGCGGCGGTGATGACCTGCTGCGCGACTTTGATTGCCGACTATTGGCACGGCGAGGAACGCTTGCGCTACGTCAACCGCCAAGTGGTGACGATAGGCCTGGTGGGGGCGCTGTTTTTTGTCGTCGGGGGTGCGCTTGGAGAGCACTCGTGGCGCTCGCCGTTCCTTCTTTACCTGCTGCCGTTGTTGTTGGTGCCCGCCATGATGAAAGTCTTGTGGGAACCGCCGGTGAGCAAGCTGCAAACGGCCGAGCGCCTCGATGAGTCGGCACCGACCAAGGTCGCGGTGCCGCAACTGCTGGTTGGCTATCTGATGATTGTGTGCGGCATGGTCCTGACCATTGTCATGCCGATCCAGGCGCCGACGTTGCTGGTCAGCCTTGGCGTGACCTCCAGCACCCTGATCGGCCTGGCGGCGGGGTTGAGCCTGTTGGCAACGCTCGTCGGCTCGTTGACCTGGCCGTTGCTGCGCCGCCGCTTCGGCATCGCCGGTTGCAACGCCCTGTTGCTCACGTTGATGGGGCTTGGGCTGTGCCTGCTGGTTCGAGCGCAAAGCTACAACGCGGTGCTGCTGGCCGTATTCGTCCAGGGGCTGGGTGCCGGGCTGCTGGTGCCGAACGTAATGGCGCCGGTGATGAACGCCTTGACCGCCAGCACCCGCGGGCGGGGCCTGGGCGGCTTCACCTCGTTTCTCTATTTCGGCCAGTTCATCAGCCCGTTGGTGGTGGCTGCCGTGGGTGTATTTACCGGGGACCTTCGTCAATCGATCCAATGGCTGGCCTTCGCCAGCCTTGCGGCGGCGCTGCTATGGGTGGCCGTCGGTTTGCGCACGCGTGGCCACGGCCGGGCGAACGTCGCCGGATCACGTCAATCGTCATGAMNSSNSISTASPRQAVGRREGLVLMLGSSLTIMGSVMVTPILPRLAAEFGPVEPRADLLVPLAITGPALAIALCAPLAGWLADRVGRKALLVIATLLYAVLGALPALLDNLPAIVGARLLFGCAEAAVMTCCATLIADYWHGEERLRYVNRQVVTIGLVGALFFVVGGALGEHSWRSPFLLYLLPLLLVPAMMKVLWEPPVSKLQTAERLDESAPTKVAVPQLLVGYLMIVCGMVLTIVMPIQAPTLLVSLGVTSSTLIGLAAGLSLLATLVGSLTWPLLRRRFGIAGCNALLLTLMGLGLCLLVRAQSYNAVLLAVFVQGLGAGLLVPNVMAPVMNALTASTRGRGLGGFTSFLYFGQFISPLVVAAVGVFTGDLRQSIQWLAFASLAAALLWVAVGLRTRGHGRANVAGSRQSSNANANANANA
D1-35_039191458nylA6-aminohexanoate-cyclic-dimer hydrolaseATGAGTCTGCAAGACATACATCAATTGATGGACACCCAAGACGCCGTTGCACTGGCCGAGTGGGTCAGGCGTGGCGAGGTCCAGCCCGGGGAACTGCTGGAGGCGGGCATCGAACGTCTGGAACAGGTCGAGCCACAGCTCAATGCCGTGGCGGAACGGCTGTACGAGTCGGCGCGGGAGGCGGTGTGTGGACCGCAAGTCCGGCAGGGACTGTTGGCGGGCGTTCCAACCTTGATCAAGGATTTGTTTTCGCCGGTCCAGGGGGCAGCGATGACCAACGGCTCCCGTTCGCTGGGGGCCTGCCGCGCAGACTTCGAATCGGAAGTGGTGACACGCCTGAGGCAGGCTGGATGCGTGATGATGGGCACCAGCACTTCGCCTGAGTTTGGCACGTCCTATTCCACCGAATCGACACGTTTTGGCGCCACGCGAAACCCTTGGAACACCGAGCGCAGCGCGGGCGGCTCCAGCGGTGGCGCGGCGGCGCTGGTGGCGGCCCGGGTGGTGCCGTTCGCCCATGGCAACGATGGCGGCGGTTCGTTGCGGGTGCCGGCGTCCTGCTGTGGGGTGTTCGGCTTCAAGCCCAGCCGCGGCCTGATGCCGTCAGGTCCGATAATGGGCGAGGGCTGGGCAGGAATGGGCACGCCCCACGTTATCACCTTGTCGGTGCGTGACAGCGCCGCGCTGCTGGACGCCACCGCCGGAATCGACTTGGGAGCGCCGTATGCCGCGCCGGTCCAGGTCCAGCCTTATGTGACGGCGCTGCTGCGTGATCCGAAGCCGTTGCGTATTGCCTTGGTCGAACAGCTCGGCCCCTGGGCCACCTCCCAGCAAAGCGTGCAGGCGGTGAACGAGGCCGCGAGGTTGTGTGAAGCCTTGGGCCACCGCGTCGAACCGGTGAAACTGCCGGTGGTGCTGCCTGATTTTTATGATCAGGTTTTCACCATCATTGGCGCAAGCACGCGCCGTTACGTCGACCTGCTGGGCCAGATGCGTGGGTCTGCGGTGCAGGCGGAGGAACTGGAAGTGCGCACCCGGATCATCCTGCGGGACAAAGGCAACGTCAGCGGCGCCCAGTACGTCGGCGCGGTGGAATGGATTCATGCGCTGGGCCGCCAGTTGGCGGTGTTCATGCAGGATTACGACGTGATCCTTTCTCCGGTCCTGACCCGCGAACCGGTGATGATTGGCGAGCTCAACGTTGACGACGTCTGCATGAGCCTTGAAGCGCTCATCGAGCGATTCCACAGCTACTCGCCGTTCACGGCGCTGTTCAATGCCAGCGGCCAGCCGGCGATGTCGGTACCGTTGTCCTGGAGCGCAAACGGCCTGCCGCTGGGCGCGCATTTTGCCGGGCGGTTCGGCGAAGAAAGCACCTTGCTGGCCCTGGCCGCCCAACTGGAACGCGCCCAGCCGTGGCGCGGGCGTGTACCGCCGGTCAATGCTCACCGCAGATGAMSLQDIHQLMDTQDAVALAEWVRRGEVQPGELLEAGIERLEQVEPQLNAVAERLYESAREAVCGPQVRQGLLAGVPTLIKDLFSPVQGAAMTNGSRSLGACRADFESEVVTRLRQAGCVMMGTSTSPEFGTSYSTESTRFGATRNPWNTERSAGGSSGGAAALVAARVVPFAHGNDGGGSLRVPASCCGVFGFKPSRGLMPSGPIMGEGWAGMGTPHVITLSVRDSAALLDATAGIDLGAPYAAPVQVQPYVTALLRDPKPLRIALVEQLGPWATSQQSVQAVNEAARLCEALGHRVEPVKLPVVLPDFYDQVFTIIGASTRRYVDLLGQMRGSAVQAEELEVRTRIILRDKGNVSGAQYVGAVEWIHALGRQLAVFMQDYDVILSPVLTREPVMIGELNVDDVCMSLEALIERFHSYSPFTALFNASGQPAMSVPLSWSANGLPLGAHFAGRFGEESTLLALAAQLERAQPWRGRVPPVNAHRRPGPT0006115_3837DIRECT 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
D1-35_039201488feaBCOG1012Phenylacetaldehyde dehydrogenaseATGAGCGATATTGCCCTGCTGCCCGAGGTCCAAGCCTTCCTTGGCCGACACCACGCGCTGTTCATCGACGGTGCTTATGTCGAAAGCCAGAGCCGACAGACCCTGGACGTGATCAACCCAGCCACGGGCCAGGTCATCGCCCAGGTCTGCGACGCCGGTCCTGGCGATATCGATGCGGCGGTCGAGTCGTCCCGGCGCGGTTTCAAGCAATGGTCCCAGGCCGCCCCGGCGGTTCGCGGGCATGTATTGCTGAAACTGGCGGACCTGATGGAGCAACACCGCGAGGAGCTGGCACAGATCGAAACCTGCCAATCCGGCAAGATCATCCATATCTCCCGCGCCTTCGAAGTCGACCAGGCTGCGCACTTCTTGCGTTACTACGCCGGCTGGGCGACCAAGATCAGCGGCCAGACCATCACCCCGTCGCTGCCCTCCTTCGCCGGCGAACGCTACACGGCGTTCACCCTGCGCGAACCGGTGGGCGTGGTGGTCGGCATCGTGCCGTGGAATTTTTCGACGATGATCGCCATCTGGAAACTCGCCTCGGCGTTGGTGACCGGTTGCAGCATTATCATCAAGCCCAGCGAGTTCACTCCGCTGAGTATCCTGCGCATCGCTGAACTGGCCATGGAAGCGGGCCTGCCGGCAGGCGCGTTGAACGTGGTGACGGGTAGCGGTCTGGTGGGCAAGGGCTTGATCGAGCATCCAGGCACCAACAAGGTATCGTTCACCGGCTCGGTGCCTACCGGCATCGCCGTGGGCCAGGCGGCGATGGGCGCCGGACTGACCCGGGCGACACTGGAACTGGGTGGCAAGAACGCTGCGGGATTCCTGCCAGATGTGGATCCCGAGGTGGCGGTCAATGGCATCATCGAGGCAGGTTTCCTGCACTCCGGGCAGATTTGCGCGGCGGCAGAGCGGTTCTTTGTCCACCGCTCGCAGATCGAACCGATCATGCGCAAGCTCGCCGAACGCCTGAGTCAGCTCAGCATCGGCTCACCGCTGGATGAAGCCACGCAATTCGGTCCGGTGACCAACCGTCAGCATCAGCAGAAACTCGGCGAGTATTTCGCCAGGGCGCGGGCACAGAACAACACGATTGTTCACGGCGGCAAGCTGATCGACAGGCCTGGCTGCTATGTCGAGCCGACCATCATCCTCGCCAACCATCGAGATGATGCGCTGCTCAATGAAGAAACCTTCGGCCCGATCGCCACCTTCCTGCCCTACGACACCGAGGAGGAACTGCTCGACCTGATGAACGACTCGCCCTACGGGCTGAGCGCCAGCCTTTGGACCAACGACCTGGGCAAGGCCCTGCGCATGGTGCCCGCCATTGAAGCCGGCACCGTCTGGGTGAACATGCACACCCTGCTCGACCCCGCCGTGCCATTCGGCGGGAGCAAGTCTTCGGGTATCGGCAGGGAGTTCGGCAGCGCGTTCATCGATGACTACACCGAGCTGAAGTCGGTGATGATTCGGTATTGAMSDIALLPEVQAFLGRHHALFIDGAYVESQSRQTLDVINPATGQVIAQVCDAGPGDIDAAVESSRRGFKQWSQAAPAVRGHVLLKLADLMEQHREELAQIETCQSGKIIHISRAFEVDQAAHFLRYYAGWATKISGQTITPSLPSFAGERYTAFTLREPVGVVVGIVPWNFSTMIAIWKLASALVTGCSIIIKPSEFTPLSILRIAELAMEAGLPAGALNVVTGSGLVGKGLIEHPGTNKVSFTGSVPTGIAVGQAAMGAGLTRATLELGGKNAAGFLPDVDPEVAVNGIIEAGFLHSGQICAAAERFFVHRSQIEPIMRKLAERLSQLSIGSPLDEATQFGPVTNRQHQQKLGEYFARARAQNNTIVHGGKLIDRPGCYVEPTIILANHRDDALLNEETFGPIATFLPYDTEEELLDLMNDSPYGLSASLWTNDLGKALRMVPAIEAGTVWVNMHTLLDPAVPFGGSKSSGIGREFGSAFIDDYTELKSVMIRYPGPT0006035_657DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_LIGNIN_DEGRADATION|LIGNINASESPLANT_LIGNIN_DEGRADATION-DEHYDROGENASE_ACTIVITY,PGPT0006035-feaB-K00146NANA
D1-35_03921972hypothetical proteinATGTTTCTCCAGACCGGCAAGCAGAAATTGGCGTTGATCGAGCAGGTGCGGCGGGTACTGGCTGGCGAAGCCGATGACGCGCCTGCGCTCGTGGCCTATCCGCAACTGCGGGCCAGTCTTGAACAACACGCCCGGCAAACAGCGGATGCGGCTGAACGTTTACGCCAGGCCGAGGGCCAAGTGAACGAGCAGGCATCAAGACACCGGCAAATCGACCAGGCGTATGCGTTGGCTCGCCAACAACTGGCTCAGGCAGGAGAGCGTGAGCAAGGGCTTCAGGCACGGCTTGAGCAGCTTGAGCGTCAATCCCGACAGCACTTTCAGGAGGCGCAGATCTGGGAGCTGCTGCAATCGACCCTGACCGAAGGCTGCTGGGACATCACCGTGGTCAACGGCGATTTGCAGCACCCGGCCAGCGGCATGCGCTTTTCCAGTCAGTTCCGCTCATTGCTGGGGTACGGGCCGGACGAGTTGCCGGACGGCTGGGACGCCCAGGTCGGCATCACCCATCCCGATGACCTGCCGAAGATCATGGCGATCTTTGACCGGGAGATTCCTGGCAGCCAAGGCAGTGGCGAATACGTCTTCGAATATCGGATGCGACACAAGAGTCGCGATTATATCTGGTGCCGCGAGCGTGGCCGCGCCGTGCGCGACGCCCAAGGGCGACTGGTCCGGGTGCTGGGCGCGGTGCGGGACATCAGTGATGAGCGTTCGGCCCAGTCTACCCACCAGCGCATGCTGGAGCAGAACCAGGTCACTTACGCGCAGATCGCCACGGTGGTGGGCGTGATCAAGGGCATTGCTGACCAGACCAACCTGCTGGCGTTGAACGCGGCGATTGAAGCGGCCAGGGCGGGCGAGGTCGGGCGCGGCTTTTCGGTGGTGGCCGACGAGGTGCGCAAGCTGGCGGAAAGTACCCGCCAGGCCACGCACCAGATCCAGACCATGTTGCATCAGCACAAGGGCTGAMFLQTGKQKLALIEQVRRVLAGEADDAPALVAYPQLRASLEQHARQTADAAERLRQAEGQVNEQASRHRQIDQAYALARQQLAQAGEREQGLQARLEQLERQSRQHFQEAQIWELLQSTLTEGCWDITVVNGDLQHPASGMRFSSQFRSLLGYGPDELPDGWDAQVGITHPDDLPKIMAIFDREIPGSQGSGEYVFEYRMRHKSRDYIWCRERGRAVRDAQGRLVRVLGAVRDISDERSAQSTHQRMLEQNQVTYAQIATVVGVIKGIADQTNLLALNAAIEAARAGEVGRGFSVVADEVRKLAESTRQATHQIQTMLHQHKGNANANANANA
D1-35_039221368hypothetical proteinATGCGCGCTCCGCTGTCCTATCGCACTGGGGAAAACACCATGGAGCACACTCGTCAATCACGCCTGCCACGCCAGGCCATCGGCCTGGGCATCGCCTTGCTGGCGGCAGGCTCATCGGCCCAGGCCATTGAGCTTTATGCCGACGATGACACCACCGTCAGCGGCAACTTCCTCGCGGTCTACGGTCTGTTCAACAGCCGCAAGAACTACGACGGCAGCGCCGGCGGTTCGAGCTGGCGCGAAGGTTTCATCAAGTATGGCCTGAGTATCGAGCAGACACTCGACGGCCGCGGGAACCTCTACGGGACCGCCAACCTACTCAGCTCCGGCACCTGGGGCGATGGCGATGCGGCGGGCCTGAGCGACGGTTCCGAACGCACCACGAAATTCGACGAGGCCTTCGCCGGTTGGCGCTCCGGCGATCTGTTCCCGCTGTTGGGCAAGGATGGCGTCGACCTGTCCTTCGGTCGCCAGGTGATTACCCTTGGCGACGGTTTCATCATCAACGACGACGGCCTTAACGTCGGCAAGGGCGTGGCCGATGGCGAACTCAATCGCGGCGGAGCCTATTACCTCGCCGCCCGGCACGCCTTCGACAAGACCGCGGTGCTGCGCCTGGGCGACAAGGACGGCGTGCATGGGAGCCTGTTGTGGTTCAAGTCCGACAATCGCGCCCAAGCCAACACCGAGATGGCCGCCGGCACCCTGGAATACACCGCAGCACCCGGCACCCTCGGGCTGACCTACATCCATGGCATCGACGTGGATGAGCACTACGCCAGTGACTTGCAGAAACAACGCGACGGCATGGACATCTACAGCCTGCGCGGCGCGGGCGATGCCGGTATCGAAAACGCGCACTTCTCCTTCGAATACGCCTGGCAAGACAAGGACGCCGGCCCTCAGAAAGCCTGGTACACCGAAGCCGGTTATACCTTCGCCGAGCTGCCCTGGAGCCCCGACCTGACCTATCGCTACAGCCGTTATTCGAAAAACTGGGACTCGATGTTCACCGGCACGAGCCGAGGTTATGGCACCTGGTTCCAAGGCGAAGTGGCGGGCAATTACGCCGGCCCGTTCAACAGCAACACAGCCATCCAGCACGTCGGCCTCAAGCTCAAGCCAACCGAGACCGTGACGATCGGCGCATTGTTTTTCGACTACAAGACCTTGCACACCGCTCAAGCGCTGAACCTCGACGGTCGTGAGCTGGACCTGTACGTCGAATGGGCAGCCAATGAGCACCTGATCATCACGCCGCTGCTGGGCCTGTACAAGCCAGAGAAAGACGCCAGCAACGGAGGCAACCAGGTGGGCGGCAACGGCACCAATGTGTACAGCCAGTTGGTGGTGGCGGTTCCGCTCTGAMRAPLSYRTGENTMEHTRQSRLPRQAIGLGIALLAAGSSAQAIELYADDDTTVSGNFLAVYGLFNSRKNYDGSAGGSSWREGFIKYGLSIEQTLDGRGNLYGTANLLSSGTWGDGDAAGLSDGSERTTKFDEAFAGWRSGDLFPLLGKDGVDLSFGRQVITLGDGFIINDDGLNVGKGVADGELNRGGAYYLAARHAFDKTAVLRLGDKDGVHGSLLWFKSDNRAQANTEMAAGTLEYTAAPGTLGLTYIHGIDVDEHYASDLQKQRDGMDIYSLRGAGDAGIENAHFSFEYAWQDKDAGPQKAWYTEAGYTFAELPWSPDLTYRYSRYSKNWDSMFTGTSRGYGTWFQGEVAGNYAGPFNSNTAIQHVGLKLKPTETVTIGALFFDYKTLHTAQALNLDGRELDLYVEWAANEHLIITPLLGLYKPEKDASNGGNQVGGNGTNVYSQLVVAVPLNANANANANA
D1-35_039231500yhdG_3COG0531putative amino acid permease YhdGATGTCGATCAATGACAGGCTCACCGAGCATCTGAACCGGGGTACGGTGGGTTTTCCCACTGCGTTGGCCAGCACCATTGGCCTGATCATGGCCAGCCCGGTCATCCTGACCGCCACCATGGGGTTCGGCATCGGTGGCAGCGCCTTCGCCATGGCGATGCTGATCGCGGTGGTGATGATGCTGGCCCAGGCAACGACGTTCGCCGAAGCCGCATCGATCTTGCCGACCACCGGCTCGGTCTACGATTACATCAACTGCGGCATGGGGCGCTTCTTCGCGATTACCGGCACTTTGTCGGCGTACCTGATTGTCCATGTGTTTGCCGGAACGGCGGAAACCATCCTGGCCGGGGTCATGGCCCTGGTGAACTTCGAACACCTCAATACCCTGGTCGAATCGGCCGGTGGTTCCTGGCTGCTGGGCGTGGGTTTCGTGGTGGTGTTTGGTGTACTCAACGCATTCGGCGTCAGTGCTTTCGGCCGGGCCGAAATCATCCTGACCTTCGGCATGTGGACGACCCTGATGGTGTTCGGCGTGTTGGGGCTGATCGCCGCGCCGGCGGTAGAACTCGAGGGCTGGTTCGGCGCGTCCGTGGTCGGGACCGACCTGGTCACGGTGCTGTCGCTGGTGGGCATGGCAATGTTCATGTTCGTCGGATGCGAATTTGTCACGCCACTGGCGCCGGACCTGCGCCAGTCAGCCAGGACCATGCCGAGGGCAATGATGCTGGGCCTGTTCAGCGTCGCGGCCTGCATGTTCATCTATGGCGCGGCGATGAAGCGCCAGGTGGAAAACGTGCTGCTCGATGCCACCAGCGGCGTGCACCTGCTGGACACGCCCATGGCGATTCCGCGCTTCGCCGAGCAGGTCATGGGCGACATCGGGCCGATGTGGCTGGGGATCGGCTTCCTGTTTGCCGGCGCCGCGACCATCAATACGCTGATGGCCGGGGTGCCGCGTATTCTCTACGGTATGGCGGTGGATGGCGCGCTGCCCAAGGTCTTCACCTACCTGCATCCCCGTTTCAAGACGCCGCTGCTGTGCATCCTGGTGGCAATGCTGATCCCTTGCCTGCATGCGCTGTGGCTCGGCGGTAACACCGATAACATCATGCATCTGGTACTGGCGGCGGTGTGCGCCTGGAGTTTTGCCTATCTGCTGGTGACGATTTCGGTGATCAGCCTGCGCGTCCGCCGTCCCGATCTGCCCCGGGCCTACCGCTCGCCGTTTTTCCCGCTGCCACAGATCCTGTCCAGCGTCGGCATCGTCCTGGGCATGTGGTTCATCACGCCGCCGGGCATGAATCCGGCGGACATTTATGTGCCTTTCGCCGTGATGCTTGGCGGTACCGCGGCCTACGCCCTGTTCTGGACCCTGGTGGTGCAGAAGGTCAATCCATTCAAGCCGGCGACCGTCGAAGACGTGCTGGCCAAGGAGTTTTCCCATGAGCCAGGGCAACCTGTCGGCGGGTTTATCGAGCCTGCTGCAAAAGCTGTCTGAMSINDRLTEHLNRGTVGFPTALASTIGLIMASPVILTATMGFGIGGSAFAMAMLIAVVMMLAQATTFAEAASILPTTGSVYDYINCGMGRFFAITGTLSAYLIVHVFAGTAETILAGVMALVNFEHLNTLVESAGGSWLLGVGFVVVFGVLNAFGVSAFGRAEIILTFGMWTTLMVFGVLGLIAAPAVELEGWFGASVVGTDLVTVLSLVGMAMFMFVGCEFVTPLAPDLRQSARTMPRAMMLGLFSVAACMFIYGAAMKRQVENVLLDATSGVHLLDTPMAIPRFAEQVMGDIGPMWLGIGFLFAGAATINTLMAGVPRILYGMAVDGALPKVFTYLHPRFKTPLLCILVAMLIPCLHALWLGGNTDNIMHLVLAAVCAWSFAYLLVTISVISLRVRRPDLPRAYRSPFFPLPQILSSVGIVLGMWFITPPGMNPADIYVPFAVMLGGTAAYALFWTLVVQKVNPFKPATVEDVLAKEFSHEPGQPVGGFIEPAAKAVNANANANANA
D1-35_03924621hypothetical proteinATGAGCCAGGGCAACCTGTCGGCGGGTTTATCGAGCCTGCTGCAAAAGCTGTCTGAGCTGTTCAGCGCCCGTCGCGCCCCGGCCGGTTATCGACCCGGGGTAACGCTGGAGCATTTGCGACGCAACCTCGCACTGGCGCGGTTTGCGGTGTCGATGCCGGGGGCGGCGACGATGGTCACCGACGATGGCGGCCTGCAACTGGAGATCGTCGAACGCACCGAGTCGCAGTTGCTGATGCATGTGGTAACGACCGAGTTCGTGTTGCACGTGCCTGCGTCGAGAGAGGGCAGCGCGCGCCTGCAATTGCACCATGGCGGAGCCATTCGGCGCAGCGGCATTCGTTGCCGCCAGTTGAAAGGAGATGCCGCGTTGTCGGTTCGGCTGCGGACGGCCATCGAAGGTGATCGTGCGCTTTACGCCGCCCTGATGCCGCTGGACTTCAAGCGCCTGGACATCGAGCTGCAAGGCCGGCAATGGTCTGTGCGACTGGAGCATGTGGGCGGCAGCGAAGTGGTCAACCGGATGCCCTCGTTCCGCCGCTACATCGCGCTGAGCCCGTTGCAGCGCGATGCCTTGTTCGCAACGCTGGATGGGCTGCGGAGGGTACTTTCGACGTTCTGAMSQGNLSAGLSSLLQKLSELFSARRAPAGYRPGVTLEHLRRNLALARFAVSMPGAATMVTDDGGLQLEIVERTESQLLMHVVTTEFVLHVPASREGSARLQLHHGGAIRRSGIRCRQLKGDAALSVRLRTAIEGDRALYAALMPLDFKRLDIELQGRQWSVRLEHVGGSEVVNRMPSFRRYIALSPLQRDALFATLDGLRRVLSTFNANANANANA
D1-35_03925963feaR_1COG2207Transcriptional activator FeaRATGAGCATGCAACAGGCTGGGCAAGGCGGGCTGGACACCTGGAATCGGGACCTGCGCGCGACATGCGGCCATTTCGAGACGGAGCTGGCCTTCAATCGCGCGTTGTTCATTGGCGAAGTGTCGACCTTTCAGCGCGGCGGCCTCTCACTCGCCAACCTGCGCACCAATGCCGGTTCCATCAGGCGCCAGCTATGCAAACCGGATCACGATGATGACCAGGACTGTTTCCTGGTCAGCCAGCGCAGCGGTTATTCGCGTATCACCCAAAATGGCACGAGCATCCAGCTGGCTCCCGGCGAGCTGTTGCTGATGGATTCGGTGGGTTCCCTTGAAATCAGCCCGTTCGGCCTGATCGAGCATGCCGTGTTGTCGTTATCTCGGCGGGACGTCGCCAGGCGACTGGGCGGCGACAGCAAGACCTTCGGCAAGATTTCTTCAAGCAAGGCTTGCGGAAGAATGCTGCATGTATTGGTGGACCAGCTCTGCAAGGACACCCCGGAGGGCGAAAGCAGCGCCGGGGAGGGCGAAGCCCTGCAGAACGCCTTTGTCTCGCTGTTGGGATCGGCGCTGGAGCATGAAACCGACCTGTGCGGCGACAGCGTCGGATTGCAAGGCAGTCATCTGCGCAGCTACGTACAGAAAGTCATTGATGAATGCCTGACCCAACCCGGTCTCAGCCCGGTCGGCCTGGCCAACCGCTTGAACATCTCGGTGCGACACCTGTACCGCTTGTTCGAAGAGCAGGATGACAGCGTGTGCCGCTACATCCAGCGCGCCCGCCTCAAGCGCAGCGCCGATGACTTGGCCAATCCTTTCTTGCGGGATGAGTCGATCACCTCGATTGCCTACAAATGGGGCTTCACCGATTCGGCGCACTTCAGCCGTTCGTTCAAGAAACAATTCGAACAGTCGCCCAAGGCGTTCCGCTCCAGCCAGTTGCAGCAGGCGCAAGGGGTGGCTTGAMSMQQAGQGGLDTWNRDLRATCGHFETELAFNRALFIGEVSTFQRGGLSLANLRTNAGSIRRQLCKPDHDDDQDCFLVSQRSGYSRITQNGTSIQLAPGELLLMDSVGSLEISPFGLIEHAVLSLSRRDVARRLGGDSKTFGKISSSKACGRMLHVLVDQLCKDTPEGESSAGEGEALQNAFVSLLGSALEHETDLCGDSVGLQGSHLRSYVQKVIDECLTQPGLSPVGLANRLNISVRHLYRLFEEQDDSVCRYIQRARLKRSADDLANPFLRDESITSIAYKWGFTDSAHFSRSFKKQFEQSPKAFRSSQLQQAQGVANANANANANA
D1-35_03926768bacC_2Dihydroanticapsin 7-dehydrogenaseATGCCTGATGATCTGGATTTCTCCGGCAAGACGGTGCTGGTGACCGGCGGCGCGCAAGGCATCGGCCGGGCCATCGTCGAAGGGTTTGCCTGGCGTGGGGCGCGAGTGGTCATTGCCGACCTGGACCTGGCGGGGGCCGAGGCTGTATCCAGCGACCTGCGCGCCAGCGCTTACCCGGTGGATGCCATGGGCGTCGACCTGGCCGACGCCACGGCCATTACGCAGATGATCGCCAAGCTGGAACAACGCACCGGCAGGCTGGATGTGCTGGTGCACAACGCCGGCTATTTCCCTCTGACGCCCTTCGCCGAAATCACGCCAGCGGTGCTGGAGCGAACGCTGGCGGTGAATTTGTCAGCGTTGTTCTGGCTGACCCAGGCCGCGCTGCCGATGTTCCGTCGCCAGGGTCAGGGCTGCGTGCTGGTGACCTCTTCGGTGACCGGCCCGCGCGTAGCCTACCCGGGCCTCAGCCACTATGCGGCGTCCAAGGCCGGGGTCAACGGCTTCATCCGCAATGCGGCGCTGGAGCTGGCGGCGGAAAATATCCGCGTCAATGGTGTCGAGCCGGGGATGATCGCAACACCAGCCATGGCCAACCTGGGGGACGCCCAAGTCAACCACGACATCGCCCGCCGAGTACCGCTGGGGCGACTCGGCAAACCGTCGGACATCGCCGGAGCCATGCTGTTCCTGGCCTCGGACCTGGCCGCCTACATCACCGGCCAGACCCTGATCGTCGATGGCGGCTCAACCTTGCCGGAGGTTTGAMPDDLDFSGKTVLVTGGAQGIGRAIVEGFAWRGARVVIADLDLAGAEAVSSDLRASAYPVDAMGVDLADATAITQMIAKLEQRTGRLDVLVHNAGYFPLTPFAEITPAVLERTLAVNLSALFWLTQAALPMFRRQGQGCVLVTSSVTGPRVAYPGLSHYAASKAGVNGFIRNAALELAAENIRVNGVEPGMIATPAMANLGDAQVNHDIARRVPLGRLGKPSDIAGAMLFLASDLAAYITGQTLIVDGGSTLPEVPGPT0003180_7502DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-35_03927801ucpA_2Oxidoreductase UcpAATGCCTGAGCCAAGCACTGTGGTGATCACGGGTGCCGGCACCGGCATCGGTGCCGCTTGCGCCCGCCTGTACGCCGCCGAGGGCGCCAACCTGGTGCTGATCGGCCGGCGCCGCGAGCCGCTGGGGCAACTGTCAGAGGAAATCGGCGGCCTGGTGCTGGTGGGCGACGCGGCGTGCCCGGCGACGTGGGACGGCTTCGTCGCACAGATACGCCAACGCCTCGGCCGACTTGACGTGCTGCTGGCTTGCGCCGGCGGGCTGGGCCAGGGCAGCGCCACCGGCACCAGCCCGTCGGCGTGGGAAGCGGCGCTACGCAGCAACCTGGACAGCGCCTTTTACAGCGCTCGTGCCTGCCTGCCGCTGCTGATGGAGAGCGCCGGCAATATCGTGTTGGTCGCCTCCATCGCCTCCCTGGCAGCCGGACCGCAGGTCTGCGGCTACACCACCGCCAAACACGCGCTGCTCGGCCTCAATCGCTCGCTGGCGCGGGACTACGGACCACGCGGTGTGCGCGTCAACGCGGTTTGCCCTGGTTGGGTACGCACGCCGATGGCCGATGAAGAGATGCAGGCCTTGATGCAGTTCCACGGTGAGAATCTGCAACAGGCCTATGCCCGGGTCTGCGCCGATGTGCCATTGGGCAGGGCCGCGAGCGCCGAGGAAATCGCCCGGGTTTGTCGTTTCCTGGCCTCGCCGGATGCTTCGATCATCACCGGCGCGACGCTGGTGGCCGATGGCGGATCCAGCATCGTCGATGTGCCGACGCTGGCCTTCAGCCGAATGGAGCACGCAAATGCCTGAMPEPSTVVITGAGTGIGAACARLYAAEGANLVLIGRRREPLGQLSEEIGGLVLVGDAACPATWDGFVAQIRQRLGRLDVLLACAGGLGQGSATGTSPSAWEAALRSNLDSAFYSARACLPLLMESAGNIVLVASIASLAAGPQVCGYTTAKHALLGLNRSLARDYGPRGVRVNAVCPGWVRTPMADEEMQALMQFHGENLQQAYARVCADVPLGRAASAEEIARVCRFLASPDASIITGATLVADGGSSIVDVPTLAFSRMEHANAPGPT0008190_155DIRECT 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
D1-35_03928822moaF_1Protein MoaFATGAGTACTTCTTCAGACTGGATCACCGTCGGCGCCCTGGCCGATGGCTTTGCCCCCGAAGCCTTCATCCTGCCGAACCTCGCCGACCTGGACGGCAAGACCTTTACCCTGCACTTCGCCAATGGCTGGCAGATCGAACATCGCTTCGAACAGGACGCGCTGAGCTGGAAAGCAGCCGACGGGCATTCCACCGGCACCGCGCCGTATCGAGCCACGTCGGTGCGTCCAGGCCTGTACCTCGTCGACTTCATCAAGCGTGAAGGTGGCCAGACGTGGTCGGTGAGCCTGGTGCTCGATACCGTCAGCGCCGCGTTCACCGCCGTGATCGGGCGCATGCCCGCCGAGGCGCAAACGCGCGAGGGCCTCTACAGCCGCGCATTGGCCGGCAAACCATTGACCTCGGTGGAAGTCGAGTTCCTCCATGGCACGCTGGATCGTTCATGGCAACCGGGCCTCTGCCCTCACGCACCGACGAGCGAACTGGTGGGGCTGCGCAACCTGTATCGCTACAGCCCGAGTGAAGTCTACGAACACATCTACCTCAACCAGCGGTTTTATTCCTGGCAGTGCCTCAAGGGCGTTGAACAAGGCCTGTGCGACACCGACCGCTGCGACACCTACAAGATTGCCGATCAGCTGTACCTGTTCGTCTGGCGGGAGAAGATCATCCCGACCCTGGGCCTGGTGCTGATCGACCTGCAGCAGCACCGTAGTGACGGCAAGATTTTCGGTTACGCCGGCGCATCCTTCGACGAGTTCTCGAACTTCCCGGTCAGCTCCTATTGCCAGGTACTCAACCAGACGGAGTACCCCGATGCCTGAMSTSSDWITVGALADGFAPEAFILPNLADLDGKTFTLHFANGWQIEHRFEQDALSWKAADGHSTGTAPYRATSVRPGLYLVDFIKREGGQTWSVSLVLDTVSAAFTAVIGRMPAEAQTREGLYSRALAGKPLTSVEVEFLHGTLDRSWQPGLCPHAPTSELVGLRNLYRYSPSEVYEHIYLNQRFYSWQCLKGVEQGLCDTDRCDTYKIADQLYLFVWREKIIPTLGLVLIDLQQHRSDGKIFGYAGASFDEFSNFPVSSYCQVLNQTEYPDANANANANANA
D1-35_03929657hypothetical proteinATGAATGTCATCGCTGCACAAGACATCGCAAGTCATTGCCTGAACGCCTTCACGCAACTCATTCCCGCCAGCCGGGCGGCGTTCTATCGCGTAGACCGGCATTTGCAAGCCTACGACTTCAGCTTGCACGGCATGAGTGGCGAGATGCACCAGGACTATCTCGACCATTACTGCGCGTTCGATCCGCTGCGCCCGCGAAACTGTCTCTCCAGTCCGAGCGTCGTCCCGCTGAGCCTGGCCATGGCCCGCCAGCCGGTCCGCGACAATCATTGCTACCAGCGTTTCCTGCAGCGCTATGGCGTGGTGGATGTCGTGGAAGTGTTCGTCCACCGCGCCGGCCAGCCGCAAGCGGCGATTTCAATGCTGCGCACCGCCGAACAAGGCGCGTTCACCGGCCAGCAATTGAGCCAGCTCAGCGCGCTGCAAACGTTGCTGCACCTGGCGGTGGCCCAGTTGCCCAGCGCGGACGACGGTCTCAGCCAGCTAACGCCCAAGGAGCGGCAGATTGCGCTGTTGCTGCGCGAGGGCGCCAGTAACAAACAACTGGCCCGAGCACTCGGCATCGGCCTGCCGACAGTCAAGACCCACCTGATCAACCTGTTCCGCAAGACCGGCGTAAGCAATCGTACCGAGCTGGTCAGCAGCCTTTTCCTGTAGMNVIAAQDIASHCLNAFTQLIPASRAAFYRVDRHLQAYDFSLHGMSGEMHQDYLDHYCAFDPLRPRNCLSSPSVVPLSLAMARQPVRDNHCYQRFLQRYGVVDVVEVFVHRAGQPQAAISMLRTAEQGAFTGQQLSQLSALQTLLHLAVAQLPSADDGLSQLTPKERQIALLLREGASNKQLARALGIGLPTVKTHLINLFRKTGVSNRTELVSSLFLNANANANANA
D1-35_03930366hypothetical proteinATGCCGCTTACCACCCTCGAAAAAAACATCCAACTGTCCGACCTGGACGCCTGGGGCACCGTTGCCGACCTCGGTTCGCAGATTCTCGAAGGCGAAGTCAAAGCCTTCGGCAAGATGACCTTCGGTGCGCCCACCGACCCGGTCAGCAGCGCCTACTTCGGCACCACACAAGGCAAGTTCCGCATGGTCTATCCGTTCGCCGAACAGGCCACCGTGGTCACCGGCGAAGTGGTCCTCACCGACGAAGCCACCGGCCAGAGCACTCGCTACAAGGCCGGCGACAGCTGGTTCGTGACCAAGGGCACGCCCGTCCTGTGGGAAGTGGTCAGCGAAAGTTTCGTGAAACACTACTTCGCGGTAGCCTGAMPLTTLEKNIQLSDLDAWGTVADLGSQILEGEVKAFGKMTFGAPTDPVSSAYFGTTQGKFRMVYPFAEQATVVTGEVVLTDEATGQSTRYKAGDSWFVTKGTPVLWEVVSESFVKHYFAVANANANANANA
D1-35_039311299puuB_4Gamma-glutamylputrescine oxidoreductaseATGATCAATATCGAAACGCCCACCTATTACACGGCCACCAAGAAATACAACCTCAGTTTTGCGACCCTGGAACAGGACGTGGAAGCCGACGTTGTGGTCATCGGTGGCGGTTTCTCCGGCATCAACACCGCGTTGGAGCTGGCGGAGAAAGGCATTACCAACATCGTGGTGCTGGAGGCGCGTTACCTGGGCTTCGGCGGCACCGGACGCAACGGCGGCCAGATCATGGCCGGCATTGGTCATGACCTGGAAAAGATCAAGAAGGACGTCGGTGAAGAGGGTCTGCGCCAGGTCTTCGAAATCAGCGACCTGGGCGCCGACATCATCAAGGACCGCATCGCCAAGTACGATATCGATGCGGACTTCTGCCATGGCTATGGCTACATGGGTTTCAACGCCCGCCAGGAAAAGACCCTGCGGGCCTGGGAAAAAGATTTCAAGTCGATCAACAGCAAGCACGAGATCCGCTTTCTCGGCGGCTCCGACGTCCGGCAGATCATTGGGTCCAACGCGTACGGCAGCGCATTGCTGCACATGGGCGGTGGGCATGTGCACTCGCTGAACCTGCTGTTGGGCGAAGCCAAGGCGCTCGTCAGCCACGGCGTGCGGATCTTCGAGAACAGCCCGGCGCTGGAGGTCAGTTATGGCGAACGCATCACCGTGCGCACCGGCCGTGGCTCGGTCAGGGCCAGCAAGCTGTTGTGGGCCTGCGACAGCTTCCTGAACAAGCTGGAGCCGGAGCTGCATCGCTCGACCATCAACACCTACGCGTTCCAAATGATGACCGAGCCACTGTCGGATGAGCTGATCCAGCGCATCAGCCCGATTCGCGGCGCCTACAGCGACATCCGGCCGGTGATCGACTACTACCGCGTCACCAACGAGAACCGCCTGCTGTTCGGCGCGGCAACCCCGTTGGTCGAGCATATCCCGCAGGATCTGAAGGCGTGGAACCGGCGCCTGATGCTGAAGATTTTCCCTTACCTGAAGGATGTGAAGATCGACCTGGCCTGGGGCGGCCCCATGGCCTGCAGTCCAAACCTGTTCCCCCAGGTCGGCACCCTGCCCGGCCGCAGCAATGCGTTTTTCGTCCAGGGCTACTCGGGTTTCGGCGTCACGCCGAGCCACATCATCTGCAAGGTGCTGGCCGAAGGCATGAGCGAAGGCTCGGCGCGCTACGACCTGGTCAGCTCGATCAACCGTCCGACCATCATCGGCAAGGACGCGATCCGTCCGCTATTGCTGACCGCCGGCAAGTCCTGGCATCAGTTGTCGGGTTACTGGAATGGGCGCCGTTGAMINIETPTYYTATKKYNLSFATLEQDVEADVVVIGGGFSGINTALELAEKGITNIVVLEARYLGFGGTGRNGGQIMAGIGHDLEKIKKDVGEEGLRQVFEISDLGADIIKDRIAKYDIDADFCHGYGYMGFNARQEKTLRAWEKDFKSINSKHEIRFLGGSDVRQIIGSNAYGSALLHMGGGHVHSLNLLLGEAKALVSHGVRIFENSPALEVSYGERITVRTGRGSVRASKLLWACDSFLNKLEPELHRSTINTYAFQMMTEPLSDELIQRISPIRGAYSDIRPVIDYYRVTNENRLLFGAATPLVEHIPQDLKAWNRRLMLKIFPYLKDVKIDLAWGGPMACSPNLFPQVGTLPGRSNAFFVQGYSGFGVTPSHIICKVLAEGMSEGSARYDLVSSINRPTIIGKDAIRPLLLTAGKSWHQLSGYWNGRRPGPT0007637_908DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINE_USAGEPLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007637-puuB|ordL-K09471NANA
D1-35_039321170C2-hpahp-hydroxyphenylacetate 3-hydroxylase, oxygenase componentATGAAAAAGCCAAACCCGCTGCTCGAAGACCTCAAGCCAATCCTGCCGGCCATCGCCGCCAACGCCTTCCAGGCCGAGAAGGACCGTACCGTTCCCGCCGAGAATATTGCCCTGCTCAAGAGCATAGGCATGCACCGGGCCTTCCAGCCGAAAAAATACGGTGGCATGGAGATTTCCTTGCCGCAATTCGCCGATTGCATCGCCCTGCTGGCCGGCGCTTGCGCAAGCACCGCCTGGGCTATGAGCCTGTTGTGCACCCACAGTCATCAGTTGGCATTGTTTCCGGCCCAGACCCAGGAGGAGGTCTGGGGTGACGACCCCGACGCCACCGCCAGCAGCAGCATCGCGCCTTTCGGCCGCACCGAGGAAGTCGAGGGCGGCGTGACGTTCAGCGGCGAAATGGGCTGGAGTAGCGGTTGCGACCACGCCGAATGGGCCATTGTCGGTTTCCGCCGAAAGAATGCCGAAGGCACCCAGGATTATTGCTTTGCGGTGTTGCCTCGTCGCGATTATGAGATCCGCGATGACTGGTACGCGGTCGGCATGCGCGGCAGCGGCAGCAAGACCCTTATCATCAATAACGCCTTTGTGCCGGAACACCGGATCCAGAAAGCCAAGGACATGATGGAAGGCAAGTCCGGCGGCTTTGGCCTGTACCCCGACAGCAAGATTTTCTATGCGCCGTATCGTCCGTATTTCGCCAGCGGCTTTTCCACCGTCAGCCTGGGCGTCGCCGAACGCATGCTGGAGGTCTTTCGCGAGAAGACCCGGACCCGCGTGCGGGCCTACACCGGTGCCGCGGTCGGCGCCGCCACGCCAGCGCTGATGCGCCTGGCCGAGTCCACCCACCAAGTGGCCGCGGCTCGGGCTTTTCTCGAAAAAACCTGGGAAGACCACGCCGAGCACAGCGAGCGGCATCAATACCCGAGCCGCGAGACCCTGGCGTTCTGGCGGACCAATCAGGGTTATGCGACCAAGATGTGCATCCAGGCGGTGGACCGCCTGATGGAAGCCGCGGGCGGCGGCGCGTGGTTCGAAACCAATGAACTGCAACGGCTGTTTCGCGATGCGCACCTGACCGGCGCCCATGCCTACACCGACTATGACGTCTGTGCGCAGATCCTGGGCCGGGAATTGATGGGCCTGGAGCCCGATCCCAGCATGGTTTGAMKKPNPLLEDLKPILPAIAANAFQAEKDRTVPAENIALLKSIGMHRAFQPKKYGGMEISLPQFADCIALLAGACASTAWAMSLLCTHSHQLALFPAQTQEEVWGDDPDATASSSIAPFGRTEEVEGGVTFSGEMGWSSGCDHAEWAIVGFRRKNAEGTQDYCFAVLPRRDYEIRDDWYAVGMRGSGSKTLIINNAFVPEHRIQKAKDMMEGKSGGFGLYPDSKIFYAPYRPYFASGFSTVSLGVAERMLEVFREKTRTRVRAYTGAAVGAATPALMRLAESTHQVAAARAFLEKTWEDHAEHSERHQYPSRETLAFWRTNQGYATKMCIQAVDRLMEAAGGGAWFETNELQRLFRDAHLTGAHAYTDYDVCAQILGRELMGLEPDPSMVNANANANANA
D1-35_03933942C1-hpahp-hydroxyphenylacetate 3-hydroxylase, reductase componentATGTCCGATATCTGTGAAACTGCTTTCGACACCCGCGCGTACCGCCGGGCCCTGGGCAACTTTGCCACCGGCGTGACCGTGGTCACCGCCGCGACCGAGGATGGGCGCAAGGTCGGCGTGACAGCCAACAGCTTCAATTCGGTATCCCTCGACCCGCCGCTGATTCTCTGGAGCATCGACAAGCGTTCCAGCAGCCACGGTGTATTCGAAGCCGCGAGCCATTTCGCCGTCAACGTGCTGGCCGCCGACCAGATCGACCTGTCGAACAACTTCGCCCGGCCCAAGGATGATCGCTTCGCCGAAATCCAGTTCGAGGCCGGCGAAGGGGGCGCGCCGGTGTTCGTCGATTGCTCGGCGCGTTTCCATTGCGAGAAGTTCCAGCAGGTCGATGGCGGTGATCATTGGATCATGATCGGCAAAGTCGTCGCGTTCGATGATTTCGGGCGCTCGCCGTTGCTCTACCATCAGGGCGCCTATTCGATGGTCCTGCCGCATACGCGCATGACCCAGCACGGCGAAGGCCAGCCGCCGAGCAGTCATTTCCAGGGTCGCTTGAGCCATAACCTGTATTACCTGATGACCCAGGCGCTGCGGGCCTACCAGGCCAGTTACCAGCCGCGCCAGTTGTCCACCGGACTGCGCACCAGCGAGGCGCGGATGTTGATGGTGCTGGAGAACGACGCCGGCCTGAACATGGCCGATCTGCAGCGCGAAGTCGCGATGCCGGTGCGTGAGATCGAAGAAGCGGTGGCCAATTTGCGGCGCAAGGGGCTGGTTACCGATGAAGGCGATCGGGTGCGCCTTACCGTCAAGGGCATCGATGAAACCGAAGGCCTCTGGGCAATTGCCAAGGAGCAGCAGGACAAGGTGTTCGGCCAGTTCAGCGATGAGCAACTCGAGAGTTTCAAGACGGTGCTCAAGGGCATCATCAAGGGCGCCTGAMSDICETAFDTRAYRRALGNFATGVTVVTAATEDGRKVGVTANSFNSVSLDPPLILWSIDKRSSSHGVFEAASHFAVNVLAADQIDLSNNFARPKDDRFAEIQFEAGEGGAPVFVDCSARFHCEKFQQVDGGDHWIMIGKVVAFDDFGRSPLLYHQGAYSMVLPHTRMTQHGEGQPPSSHFQGRLSHNLYYLMTQALRAYQASYQPRQLSTGLRTSEARMLMVLENDAGLNMADLQREVAMPVREIEEAVANLRRKGLVTDEGDRVRLTVKGIDETEGLWAIAKEQQDKVFGQFSDEQLESFKTVLKGIIKGAPGPT0008700_48DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008700-C1_hpah-K23470NANA
D1-35_03934405hypothetical proteinATGAAAACCCTCTACTTGATCGCTGCCCTTGGCCTGCTTCCCGTCGCTCCGCTCTACGCTCATGAAACCGCGCCTTCGGAAAAAATCCAGGTGCTGCAAGAGAAACTGCTGAAAAACCTGCCCGACAAAAAAGCCATGATGCTGACCGTCGACTATGCGCCGGGCCAGTCTTCCATCGCCCACAAGCATGACGGCACGGCCATGGCCTATGTGCTTGAGGGCGCCATTACCTCTCAGGTCAAGGGCGAACCGGCGATCACCTACAAGGCCGGTGAGTTCTGGTACGAAGCCGCCGGCTCCGAGCACCTGGTGTCGAAGAACGCCAGCGCCACCCAACCGGCGAAGCTGTTGGTATTCATGGTGATGGGCAAGGACGAAGCGGTGCTGATCCCGTTGAAAGACTGAMKTLYLIAALGLLPVAPLYAHETAPSEKIQVLQEKLLKNLPDKKAMMLTVDYAPGQSSIAHKHDGTAMAYVLEGAITSQVKGEPAITYKAGEFWYEAAGSEHLVSKNASATQPAKLLVFMVMGKDEAVLIPLKDNANANANANA
D1-35_03935294hypothetical proteinATGTCTCGCCAAGTGATCAACACCGTACAGGTGCAAGCCGCCGCCGGACGCTCGGAAGAACTCGGCCGGCAGTTGCAGCAAATCGTCGAAACCCTGCGCGCCTTGCCAGGCTGCGATGCTTACATGGTCGATCGTTGCCCGGAGCACAACGACCGCTGGAACGTCAGCGCCCGCTGGCAATCGGAGGCGGCCATGCAGGCCCATTTCAATTGTCCCGAAGTCCAGGGGTTCATCAGCCTGATCGAAAGCCGCCTGGCTCGCAGCGTCGACTTCAACAGTTTTCCGCTGGTGTGAMSRQVINTVQVQAAAGRSEELGRQLQQIVETLRALPGCDAYMVDRCPEHNDRWNVSARWQSEAAMQAHFNCPEVQGFISLIESRLARSVDFNSFPLVNANANANANA
D1-35_039361434gabR_1COG1167HTH-type transcriptional regulatory protein GabRATGGAACTTCATGTCGTCATCAACGGCCGCAAGGACCTGACGGGCCAGTTGTACCGACAACTTCGCAGCGCCATCGAAGGTGGTCGCCTGGCGGCCGGCACGCAGCTGCCGCCCAGCCGTCTGCTGGCCGAGCAACTTTGCATCTCGCGCAAGACGGTCTCCGACACCTACGCCCAGCTGACCTACGAAAACTTCCTCACCGGCGTCATTGGCAAGGGCACCTATGTCAACGCCCGACCGGCCAACATCGTGCGCAAGCAAAGCCACCGCGAGCTCGCCGGGGCGGACGTCGTCGAGACCTGGCGCAACATGCCGGACCTGCTGCGTCACCCGCACCCCGAAAGTGCGTTGCGCTATGACTTCATCGGCGGCGCTACCGGCAAGGGCCAGTTTCCCCTGGATGACTGGCGCCGGTGTACGGCCCATGCCTTGCGCCAGATCGCCAACGCCAAGGGTTTCTACAGCCAGCCCGAAGGGTTGGCGGCGCTGCGCAATGCCATCGCCCGGCATATCGCATTCTCTCGTGGGGTCAACTGCCAGGACGAGGACGTGGTGGTGTGCAACGGCGCGCAGCAGGCGCTGGATCTGATTTCACGGGTGCTGACCCGCCCCGGCAGCCTGGTGGCCATGGAGGATCCCGGGTACCCGCCGGCACGCCTGCTGTTTGGTTCCCATGGTGCGACGGTGGCCGGGGTGCCGGTGGATGAGCAAGGCATGCGCGTGGACTTGATTCCCGACGGCACACGGCTGATCTACGTGACACCCTCCCACCAGTTCCCCCTGGGCATGCCCATGAGCCAGCCCCGGCGCGAGGCCTTGCTGTCGCGGGCCTATGAACTGGGGGCGATCATCATCGAAGACGACTACGACAGTGAATTTCGCTATGAAGGCCGGCCCACCGACTCGCTGCAAAGCATGGATGAGCGCGGGATCGTCGCCTACGTCGGGACGTTCTCCAAGACCTTGTTGCCGGAGCTTCGGCTCGGTTATGCAATCCTGCCACCGGCGATCCTCGAAGCGGTGATCCTCGCCAAGCGCCTCACCGACCAGCACACCTCCACCCTGCCCCAATGGGCGCTGGCCAAATTCATTGCCGAGGGCTGCCTGCTCAAGCACATCCGCCGTTGCCACGCCCTGTACGCAGGCCGGCGCGAGCGAATCCTGGCCCGCATGGGCGCCGATCTGGCGCCTTGGTTCGAGGCCGTGCCGACCACCGCGGGTTTCCATATGGCCGTGTTGTGCAAGGTTCCAATCGACCTGCCGCTGGTGATCGAGCTGGCGAAAAAAGCCGAGGTCGGGCTCTACAGCCTCGACGGTTTTTTTCATGCCGCACCGGTACGCTCCGGCCTGATGCTAGGCTTTGGCGCCATCGAACTGCTCGACATCGACGTCGCCCTCGACCGTTTGCGCGACATTCTCCAGCAGGTCGCCTGAMELHVVINGRKDLTGQLYRQLRSAIEGGRLAAGTQLPPSRLLAEQLCISRKTVSDTYAQLTYENFLTGVIGKGTYVNARPANIVRKQSHRELAGADVVETWRNMPDLLRHPHPESALRYDFIGGATGKGQFPLDDWRRCTAHALRQIANAKGFYSQPEGLAALRNAIARHIAFSRGVNCQDEDVVVCNGAQQALDLISRVLTRPGSLVAMEDPGYPPARLLFGSHGATVAGVPVDEQGMRVDLIPDGTRLIYVTPSHQFPLGMPMSQPRREALLSRAYELGAIIIEDDYDSEFRYEGRPTDSLQSMDERGIVAYVGTFSKTLLPELRLGYAILPPAILEAVILAKRLTDQHTSTLPQWALAKFIAEGCLLKHIRRCHALYAGRRERILARMGADLAPWFEAVPTTAGFHMAVLCKVPIDLPLVIELAKKAEVGLYSLDGFFHAAPVRSGLMLGFGAIELLDIDVALDRLRDILQQVAPGPT0016790_3223DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0016790-mocR-K00375NANA
D1-35_03937441hypothetical proteinATGAGCCCGCGTCTGGATTACTACAGTGCGTCCCCCGCGGCGATGAGAGCCATGATTGGCCTGGAGGCGCTGACCAGCCGGCTGAGTATAGAACCGGCGCTATTGCAACTGATCAGGATCCGCGCCTCGCAGCTCAACGGCTGCGCGTTCTGTACCGACATGCACTCGGTGGATGCCCGTCGCCAGGGCGAGACCGAGCGGCGCCTCTACGCGGTGGCGGTGTGGCGCGACAGCGGGTTTTTCAACCCGCGCGAACGAGCTGGCCTGGCCTGGACCGAAGCCGTCACGCTGCTGGCCGAAAGCCAAGTGCCAGACGACGTCTACGCCCTGGCCCGCGCCAGTTTCAGCGAAGGAGAATTGGTGGACCTGACCCTCGCGATCAGCACCATCAACAGCTGGAACCGCCTCGCGGTGAGCTTTCGCCAGAGCCCCGGGGGTTAAMSPRLDYYSASPAAMRAMIGLEALTSRLSIEPALLQLIRIRASQLNGCAFCTDMHSVDARRQGETERRLYAVAVWRDSGFFNPRERAGLAWTEAVTLLAESQVPDDVYALARASFSEGELVDLTLAISTINSWNRLAVSFRQSPGGNANANANANA
D1-35_039382574hypothetical proteinATGATTGAAGATGCTGGCAATGGCTCCTCCGTGATTTCCGGCGAGCGGCCAACCCGAAGTTTCACCCGCCGCACTTTCCCGGCCATCATGCTGTTGCTGTTCATCATGTCCGCTTTGGCCATCGCGGTGCTGCTCAACGTTACCCAGACCCAGGACGAGCAAGCCCGAGAACAAAGCGTGTTTTTTGCCCAGCGGGCCATCGAAGGCATGCGCACGGGCATCGGTCGTGATCTGAGCGACTACTCCAAATGGAGCGACGCTTATCGCCATCTGCACGTAAAGGTCGACAAAGACTGGGCCTACGACCAGGAAAATGTCGGCAGCAGCGTGTTTTCACTCTATGGCTACCAGGCCGTGTTCGTCATTTCTCCAGCCGGCAAGACGGTTTATTCGGTCATCGATGGCGAGATGAGCCAAGTGGCGGCCGACACGTGGTTGACAGGTGACCTGCGCGCACTCGCCAGCAAGGCCAGGGCGGCGGAAAACCGCGATGAAGTGATCGTCGAGCTGTTGCATCACGAGGACGCGCCCGCCTTCGTCGCCGTCTCGGCGATTACCACCGGCACGGACAACAGCGTGGCCGAAATTCCGGGGCCGCCCAGCCTGCTGTTATTTGTCAAAGTCCTGGATCGTGGCGCGCTGCAAAGCCTGTCCCGGGACTTCGCCCTGCCCGACGCGCATATTGCCCGCACGCCAGGTCCCAAGGACACCGCCCAAGTCTTGCTCAACGACCTGACCCGCGAAGCTTTGGCCTGGCGCCCGGCGACCCCCGGCAAGGACCTGCGCAAAGTGCTGCTGCCCTTGCTCGCGCTCGCATTGCTGTTTCTTGCCGTCATGGCCCTGGCGGTGTTGCGTCATGCGCTGATCATGCTCCGCGCCCAGGAGCAGCAGTACGCCAGCCTCCTCGCACACCGCAAGGCGTTGGAGCGCAGCGAGGAGCGCTTCCGGGACATCGCCGAGGTCTCGTCCGACTGGCTGTGGGAGGTCGACTCGAACGGAACATTGACCTATCTGTCGGAACGCTTCGAACAGGTCACGGGCTTCAACCCCAGCGAGTGGCTGGGCAAGCCGTTGCACCGACTGTTGCATCCACACAGCGGATCGATCTCGATTTCCCATTGGCTGCTCGCCGGTGCCAACAGCGCCTCCTCTGCGCCGCTCCTTTGCGAATACACCGCGCGCAACCAGCGCATACGCACCTGCAAACTCTCGGTACGGGCCATTGAAGCCGGCGCCCTGGGTTTTCGTGGCACCGCCACCGACATTACCGAAGAGTTGCGGGCGCTGGCGCAGATCAAGCACCTGTCGCTGCACGATCCGCTGACCGGGCTGGCCAACCGCAACCGCCTGTTCGATTGCCTCAGCCAACACCTCGACCAGGCGCGAGATACGCCACTGGCGATACTGAACCTGGACATGGACCGGTTCAAACCGGTCAACGACTCCCTGGGCCATGCCGTCGGCGACAAGGTGCTGAAGGAAGTTGCCCATATCCTGCAACAGAACGTGCGCGGCAGCGACCTGGTGGCGCGCCTGGGTGGCGATGAATTCGTCATCATCCTGCCGAACCCGGGCGGCGCTGGTGATCTCGACCAATTGTGCTCGCGCCTGATCGAATGCATGCAACGGCCCATGCACCTGGACGGCAATACGCTGTACCTGGGCGTGAGTATCGGGGTTGCCTGGTCGCAGCCCGCTGAGCAGCGTGCCGAAGAGCTGTTGCGCCAGGCCGACATCGCCCTGTACGCGGCCAAGGCCGCGGGACGCAATACCTGGCGCGTATACGAAGAGGCCATGGGCAATGTGGCCCGCGACCGTCGACGCTATGAGCAGCAGCTGCGCGATGCGATGCAGCAGGGCCAGCTCGAATTGCGTTACCTGCCCCGTTTCGATGTGGGCGCCGAGCAGCTGTATGGTTTTGAAGCCCAGGCCTTCTGGCACCATCCTGAGCGCGGTGAGCTGGGCGGGATCGACTTCATCCCGGTCGCCGAAGCATCCGGCCAACTGGAGGACCTGGGCAGCTGGATGCTGATCAACGCCTGTGACGAGGCGATGAGCTGGCCCACCCCGCTCAACGTGTCCATCGCCGTTTCGCCTCGCTGGTTCAGCAGCAGTTTCCTGTTCAATCAGGTGCACAAGGCTCTGGAAACAAGCGGCCTGCCCGCCCAACGGTTGACTCTGGAAGTGGCCGAAGGCGTCCTGCTGACTGACCATAAGACGCTCGCCAGGACCCTTCATGCCTTGAAGGCGCTGGGCGTGCGGATCAATATCGACAAGTTCGGCACCAACATAGCGTCCCTCCGGGAAGTGCTTGACCAGCCATTCGACGGCATCCGCTTCGATCGTAATATCCTGGCGCAACTGGGCCTGGAACATGACCAGGAAGGCGTGCTGGCGATGATTCGGTTGAGTCGCAGCGTCGGGTTGATGGTGACGGCCGAAGGTATCGAGAACGCCGTGCAGTTCAGCCAATTGCGCAGCGTGGCTTGCGATCATGTGCAAGGCCCGTATTTCGGCGCAGCCCTGGCCCGCTCGGAAATGGCCTCATTCTTTACCACGCCTCGCTGGCTGTAGMIEDAGNGSSVISGERPTRSFTRRTFPAIMLLLFIMSALAIAVLLNVTQTQDEQAREQSVFFAQRAIEGMRTGIGRDLSDYSKWSDAYRHLHVKVDKDWAYDQENVGSSVFSLYGYQAVFVISPAGKTVYSVIDGEMSQVAADTWLTGDLRALASKARAAENRDEVIVELLHHEDAPAFVAVSAITTGTDNSVAEIPGPPSLLLFVKVLDRGALQSLSRDFALPDAHIARTPGPKDTAQVLLNDLTREALAWRPATPGKDLRKVLLPLLALALLFLAVMALAVLRHALIMLRAQEQQYASLLAHRKALERSEERFRDIAEVSSDWLWEVDSNGTLTYLSERFEQVTGFNPSEWLGKPLHRLLHPHSGSISISHWLLAGANSASSAPLLCEYTARNQRIRTCKLSVRAIEAGALGFRGTATDITEELRALAQIKHLSLHDPLTGLANRNRLFDCLSQHLDQARDTPLAILNLDMDRFKPVNDSLGHAVGDKVLKEVAHILQQNVRGSDLVARLGGDEFVIILPNPGGAGDLDQLCSRLIECMQRPMHLDGNTLYLGVSIGVAWSQPAEQRAEELLRQADIALYAAKAAGRNTWRVYEEAMGNVARDRRRYEQQLRDAMQQGQLELRYLPRFDVGAEQLYGFEAQAFWHHPERGELGGIDFIPVAEASGQLEDLGSWMLINACDEAMSWPTPLNVSIAVSPRWFSSSFLFNQVHKALETSGLPAQRLTLEVAEGVLLTDHKTLARTLHALKALGVRINIDKFGTNIASLREVLDQPFDGIRFDRNILAQLGLEHDQEGVLAMIRLSRSVGLMVTAEGIENAVQFSQLRSVACDHVQGPYFGAALARSEMASFFTTPRWLPGPT0023624_1257DIRECT 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
D1-35_03939675yjdFCOG3647Inner membrane protein YjdFATGCCGATCCGAGCAAGCCGTTACGAGCTGATCCTGCTGGGAAGTTTTATCGCCCTATGGACGGGGCTGGCTATCGCGCCGGTCAAGCGCAGCGACTGGCTGGCGGAAAATCTGCTGGTGTTTGCGCTGCTGATCGTCCTGGTGGCGGTCCATCGGCGGTTCAGCTTCTCGCGTCTGTCGGCGACGCTGGTGTTCGTATTCCTCTGCATCCATGAGGTCGGCGCCCACTACACCTACGCAAAAGTCCCCTACAACCAGTGGTGGCAAGCCCTGACCGGTGGCCAGCCGCTGGACCAGCTCCTGGGTTTCCAACGCAACCAGTTCGATCGCCTGGTGCACTTCAGCTATGGCCTGCTGCTGGCCTATCCGGTACGCGAGGCGCTGCTGCGGGTAATCCCGGCCCGTGGTTTCGCGGGTTATTTTCTGGCGTGGAACCTGATCCTGTCGTCATCGGCCATCTATGAGCTGATCGAATGGATCGGCGGCGCCTATATGGGCGGCGATACCGCCAAGGCCTTCGTCGGCGCGCAACAGGACCCGTGGGACTCGCAAAAGGACATGGCGCTGGCGGGCTTGGCCGCGTGCTTGACGTTGGTGGCCGCCGCCGCGGTCAACTATTTCCAGCAACGGGACTTTGCCCTGGAATGGGCACTGCGCAAGAAAGCCAGCACGTGAMPIRASRYELILLGSFIALWTGLAIAPVKRSDWLAENLLVFALLIVLVAVHRRFSFSRLSATLVFVFLCIHEVGAHYTYAKVPYNQWWQALTGGQPLDQLLGFQRNQFDRLVHFSYGLLLAYPVREALLRVIPARGFAGYFLAWNLILSSSAIYELIEWIGGAYMGGDTAKAFVGAQQDPWDSQKDMALAGLAACLTLVAAAAVNYFQQRDFALEWALRKKASTNANANANANA
D1-35_039401800ydaPCOG0028Putative thiamine pyrophosphate-containing protein YdaPATGAGCATGACCGTCGGCGATTTTCTGGTTGAGCGCCTTTACGAGTGGGGGGTTCGCCGTATCTACGGCTACCCGGGCGATGGCATCAACGGCGTGTTTGGCGCCTTGAACCGGGCCAAGGGCAAGATCCAGTTCATTCAGGCGCGTCACGAGGAAATGGCCGCGTTCATGGCCTGCGCCCATGCCAAGTTCACCGGCGAGCTGGGGGTCTGTATCGCCACTTCGGGGCCAGGGGCGTCGCACCTGATCACCGGCCTGTATGACGCGCGAATGGACCATATGCCGGTCCTGGCCATCTGCGGCCAACAAGCGCGAAATGCGCTTGGCGGCCATTACCAGCAGGAACTCGACCTGGTCAGCCTGTTCAAGGATGTAGCCGGCGCGTTCGTCCAGCAGGCCAGCGCACCGGCGCAGGTGCGCCATCTGCTCGACCGCGCCGTGCGCACGGCGGTGGGCGAGCGCCGGGTCACCGCGCTGATCCTGCCCAACGACTTGCAAGACCTGGATTACACGGCGCCGCCCCATAAGCACGGCACGTTGCATTCTGGCGTCGGTTATCGCAAACCCAAGGTCGTGCCTTACGAGGAAGACCTGCAGCGGGCCGCCGAAGTCCTCAACGCTGGCAAGAAGGTCGCCATCCTGGTGGGCGCCGGGGCGCTGCACGCCACGGATGAAGTGATTGCCATCGCTGACAAGCTCGGTGCCGGCGTCGCCAAGGCCTTGCTCGGCAAAGCCGCGGTGCCCGACGAGTTGCCGTGGGTCACCGGCGCCATCGGCCTGTTGGGCACCGAACCCAGTGACAACCTCATGGCCGGTTGCGACACGCTGCTGATGATCGGGTCCGGCTTCCCCTATGCCGAGTTTCTGCCCCGAGAGGGCCATGCGCGTGGCGTGCAGATCGACCTGCAGCCCGACATGCTCAGCCTGCGCTACCCCATGGAAGTCAACCTGCAGGGTGACAGCGCCGACACCCTGCGAGCCTTGTTGCCGCTGATCGAAGAAAAGACCGACCGCGCCTGGCGCAAGAAAATCGAACACTGGCGTGCGGACTGGGACAAGACCCTGGAAAAACGCGCGCTGGTCTCGACCAAGCCGATCAATCCGCAACGGGTCACGTTCGAACTGTCGCCACGGTTGCCGGACCGCGCCATCATCACCTGTGATTCCGGCTCCTGCGCCAACTGGTATGCCCGGGACCTGCAGATCCGTCGGGGCATGCTGTGTTCGCTGTCCGGTGGCCTCGCCTCCATGGGCGCCGCCGTGCCCTACGCCATTGCGGCCAAGTTCTGCCATCCGGATCGGCCGGTCATCGCCCTGGTGGGCGACGGTGCCATGCAGATGAACAACATGGCCGAGCTGATTACCGTCGCCAAGTATTGGCGCAGCTGGACGGACAGCACCTGGATCTGCGCGGTCTTCAATAATCAGGATTTGAACCAGGTGACCTGGGAACAGCGGGTCATGGAGGGCGATCCGAAATTCGAGGCCTCGCAGAACATTCCTGACGTGCCCTACCACCTGTTCGCCGAATCCATTGGCCTCAAGGGCATCCTCGTCGATCAGGAAAGCGACGTGGCCAGCGCCTGGGAACAGGCACTTGCCGCCGAACGCCCGGTGCTGATCGAGTTCCGCACCGATCCCGACGTGCCGCCGCTGCCGCCACATATCAAGCTGGAACAGGCGAAAAAATTTGCCTCGACCCTGCTCCAGGGCGACCCGAACGAACGGGGCATCGTGGTCGAGACCGCCAAACAGGTGCTGGGCGCACTGCTGCCCGGCCAGCGCAAGGATAAAGAGTAAMSMTVGDFLVERLYEWGVRRIYGYPGDGINGVFGALNRAKGKIQFIQARHEEMAAFMACAHAKFTGELGVCIATSGPGASHLITGLYDARMDHMPVLAICGQQARNALGGHYQQELDLVSLFKDVAGAFVQQASAPAQVRHLLDRAVRTAVGERRVTALILPNDLQDLDYTAPPHKHGTLHSGVGYRKPKVVPYEEDLQRAAEVLNAGKKVAILVGAGALHATDEVIAIADKLGAGVAKALLGKAAVPDELPWVTGAIGLLGTEPSDNLMAGCDTLLMIGSGFPYAEFLPREGHARGVQIDLQPDMLSLRYPMEVNLQGDSADTLRALLPLIEEKTDRAWRKKIEHWRADWDKTLEKRALVSTKPINPQRVTFELSPRLPDRAIITCDSGSCANWYARDLQIRRGMLCSLSGGLASMGAAVPYAIAAKFCHPDRPVIALVGDGAMQMNNMAELITVAKYWRSWTDSTWICAVFNNQDLNQVTWEQRVMEGDPKFEASQNIPDVPYHLFAESIGLKGILVDQESDVASAWEQALAAERPVLIEFRTDPDVPPLPPHIKLEQAKKFASTLLQGDPNERGIVVETAKQVLGALLPGQRKDKEPGPT0001371_225DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-ACETIC_ACID_BIOSYNTHESIS,PGPT0001371-poxB-K00156NANA
D1-35_03941519hypothetical proteinATGTACGCGTCTTTTTCGAAAGCCTTGAACGGCCTGCACCTTAACCTCGACCACGCCGGCTCATGGCTCGCACCGCTGGGGCTGCGCCTGTTCCTGGCCTGGGAGTTCTTCGAGTCGGGCCTGGAAAAATGGCACGGCCAGAACTGGTTCGCGGAAATCCAGGCGGCCTTCCCGTTCCCTTTCAACCATGTGCCGGCCAGTTGGAACTGGGAACTGTCGATGTGGGCGGAGCTGATCTGCGCCATCGCCCTGCTGGTGGGCCTGGGCACACGTGTTTCGGCGCTGGTGCTGATGATCGTCACGGTGGTCGCGACGGCGGCCGTGCACTGGCCGGCGGATTGGTCGAGCCTGAGCGAACTGGCCCAGGGATACGCCATCACCAACAAAGGCTTTGGCAACTTCAAGCTGCCATTGATTTACCTGGTGGCGCTGCTGCCGTTGCTGTTGCAGGGCGCCGGGAAAATGAGTGTGGATGCCTTGCTGAAGACGCTGCAATCGGTAAAAAAATCGAAACCTTGAMYASFSKALNGLHLNLDHAGSWLAPLGLRLFLAWEFFESGLEKWHGQNWFAEIQAAFPFPFNHVPASWNWELSMWAELICAIALLVGLGTRVSALVLMIVTVVATAAVHWPADWSSLSELAQGYAITNKGFGNFKLPLIYLVALLPLLLQGAGKMSVDALLKTLQSVKKSKPPGPT0028505_1342DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROQUINONE-DERIVATE_RESISTANCE,PGPT0028505-catD-K15977NANA
D1-35_03942639hypothetical proteinATGCCTGCCACCACCGCAACGCCACCTGCTTTCCGTTTCCAGGGCTGGTCGCTGTTCAGCCTGATCGCCGCCCTGGTGCTGTTGATGACCGCGCTGATCCTGGCACTCAACCCGGACCTCACCGAAGGCGTTCGCAGCGCCATTCGCGCCACCGCCCGGTCATCCTTTGCCCTGTTCCTGCTGGCCTTCACCGCTTCGGCATTCGCCGTGCTGGTGCCCTCGCCCTTGAGCAAATCCCTGGTGCGCGAACGGCGCTTCATCGGCTTGGCCTTTGCCTTTTCGCACCTGGTGCACGCGGTGTTGATCTATTGGTACGGCCAGCTCAACACCGAGTTCTGGCCCGGCCGCACGACCGTCGGCAATCTGCCCGGCAGTGTGGGTTATGTGTTCATCCTGCTGCTGGCCCTGACCTCGTTCAAAAGCACCACGCGGCTGATCGGCGCCACCGCCTGGAAACGCCTGCACACCACCGGCATGTGGGTGTTGGCGGCGATCTTTGCCTACTCCAACTTCAAGCGCATTCCGATGAGCGCCTGGTACGTGCTGCCCTTCGGCCTGATCTGCGCCGCCACGGCGGTCCGCCTGGTGGGCAAGCTCGCCCAGGCCAACAAGCGCCACGCCCTGCAACGTGCGGCCTGAMPATTATPPAFRFQGWSLFSLIAALVLLMTALILALNPDLTEGVRSAIRATARSSFALFLLAFTASAFAVLVPSPLSKSLVRERRFIGLAFAFSHLVHAVLIYWYGQLNTEFWPGRTTVGNLPGSVGYVFILLLALTSFKSTTRLIGATAWKRLHTTGMWVLAAIFAYSNFKRIPMSAWYVLPFGLICAATAVRLVGKLAQANKRHALQRAANANANANANA
D1-35_039431323rcsC_20Sensor histidine kinase RcsCATGAAGCTGTCGCTGCGCTGGCCTCGTACCCTCGCCTCGCGCTTGTCGTTGATCTTCCTGATCGGCCTGGTCCTGGCCCAAGGCCTGTCGTTTGGCGTCCAGTATTACGAACGCTACGAGAGCGCGAAGAACACCATGCTCGGCAACCTCGAGACCGACGTCTCGACGTCCGTCGCCATCCTCGATCGCCTGCCGGCCGCCGAGCGTGAGGCCTGGCTGCCGAAACTGGCCCGGCGCAACTATGGCTACGTGCTCGACGAAGGCGAACCTGGCATGCCGATGTTGCCCGACAACGCACCGATATCGGTCAGTTCGATCCAGCAGGCCCTGGGCGAAGCCTATGCGCTGACCTATAACCAGATCCCAGGCCCGAAGATGCATTACCAGGCGCACCTGCGCCTGAAAGACGGCAACCCGCTGACCATCGATGTGCGTCCGGCCATGGCACCGCTTTCGCCCTGGCTGCCCGCGGTGCTGCTCGGGCAACTGGCGCTGTTGATCGGCTGCACGTGGCTGGCCGTGCGCATCGCCGTCAGCCCGCTGACCCGGCTGGCCCAGGCCGTGGAAACCCTCGACCCCAACGCCCACGGCGTGCGCCTGGACGAAAAAGGCCCGACCGAAGTGGTACACGCGGCAAAGGCGTTCAATGCCATGCAGGACCGCATTGCCGCCTACCTCAAGGAGCGCATGCAACTGCTGGCGGCGATTTCCCATGACTTGCAGACGCCCATCACCCGCATGAAACTGCGCGCCGAATTCATGGACGACGGCATCGAAAAGGACAAACTGTGCAGCGATCTGAGCGAGATGGAACACCTCGTGCGTGAGGGCGTGGCCTACGCTCGCAGCATCCATGGCGCCACCGAGGCCAGTTGCCGGATCAGCCTGGATGCGTTTCTCGACAGTTTGGTGTTCGACTACCAGGACACCGGCCAGGACGTACAGTTGTCGGGCAAGAACGCCGCCGTAATCGACACCCGTCCCCATGCGCTGCGGCGGGTGTTGGTCAATCTGGTGGACAACGCGCTGAAATTCGGCGGCGCGGCGCAGATCCAGGTCCAGCCTGCCACCCATGGGCAACTGGCGATCCAGGTGCTGGATCGCGGGCCCGGCATCAGCGAGGCAGAACTGGCCGAAGTGCTCAAGCCGTTCTACCGGGTGGAGAGCTCGCGCAATCGGGAAACCGGCGGCACGGGCCTGGGACTGGCCATTGCCCAACAATTGGCGAGTGCCATGGGCGGCTCGCTGACCTTGAGCAATCGCGATGGCGGCGGGTTGTGTGCCGAGTTGCGGTTGGCTTGCAATACCCCATCCGGAAGCTGAMKLSLRWPRTLASRLSLIFLIGLVLAQGLSFGVQYYERYESAKNTMLGNLETDVSTSVAILDRLPAAEREAWLPKLARRNYGYVLDEGEPGMPMLPDNAPISVSSIQQALGEAYALTYNQIPGPKMHYQAHLRLKDGNPLTIDVRPAMAPLSPWLPAVLLGQLALLIGCTWLAVRIAVSPLTRLAQAVETLDPNAHGVRLDEKGPTEVVHAAKAFNAMQDRIAAYLKERMQLLAAISHDLQTPITRMKLRAEFMDDGIEKDKLCSDLSEMEHLVREGVAYARSIHGATEASCRISLDAFLDSLVFDYQDTGQDVQLSGKNAAVIDTRPHALRRVLVNLVDNALKFGGAAQIQVQPATHGQLAIQVLDRGPGISEAELAEVLKPFYRVESSRNRETGGTGLGLAIAQQLASAMGGSLTLSNRDGGGLCAELRLACNTPSGSNANANANANA
D1-35_03944741ompR_7Transcriptional regulatory protein OmpRATGGATCATGTCGATCATGTGTTGATCGTCGATGACGATCGCGAGATTCGAGAGCTGGTGGGCAACTACCTGAAAAAGAACGGCCTGCGCACCACCGTGGTCGCCGATGGCCGGCAGATGCGGGCCTTCCTGGAAACCACCCCGGTGGACCTGATCGTGCTGGATATCATGATGCCCGGCGATGATGGCCTGGTGTTGTGTCGGGAACTGCGCGCCGGCAAGCACAAGGCGACGCCGGTGCTGATGCTCACCGCCCGCAACGACGAAACCGACCGCATCATCGGCCTGGAAATGGGCGCCGACGACTATCTGGTCAAGCCTTTCGCCGCTCGCGAGCTGCTCGCCCGAATCAACGCCGTGCTGCGCCGCACCCGGATGTTGCCGCCCAATCTGGTGGTCACCGAGAGCGGACGCCTGCTGGCGTTCGGTCGCTGGCGGCTGGACACCACCGCCCGCCACCTGCTGGACAGCGACGGCACCATGGTTGCCCTGAGCGGCGCGGAGTACCGTCTGTTGCGGGTGTTCCTCGATCATCCGCAGCGCGTGCTCAACCGCGACCAGTTGCTGAACCTGACCCAAGGCCGTGACGCCGATCTGTTCGATCGCTCCATCGATCTGTTGGTCAGCCGCCTGCGCCAGCGCCTGCTGGATGATGCCCGTGAGCCGGCCTACATCAAGACCGTACGCAGCGAAGGCTACGTGTTCTCGCTGCCGGTGGAGATCCTCGAGGCGTCGGTATGAMDHVDHVLIVDDDREIRELVGNYLKKNGLRTTVVADGRQMRAFLETTPVDLIVLDIMMPGDDGLVLCRELRAGKHKATPVLMLTARNDETDRIIGLEMGADDYLVKPFAARELLARINAVLRRTRMLPPNLVVTESGRLLAFGRWRLDTTARHLLDSDGTMVALSGAEYRLLRVFLDHPQRVLNRDQLLNLTQGRDADLFDRSIDLLVSRLRQRLLDDAREPAYIKTVRSEGYVFSLPVEILEASVPGPT0004100_30DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-CUS_TRANSPORT_SYSTEM,PGPT0004100-cusS|copS|silS-K02484NANA
D1-35_03945264hypothetical proteinATGAACACCAAAGCCATCTACGCCGCCTGCCTGTTTGCCGCGCTGAACATCTGCACCTTGTCGGCCCGGGCCGAAAGCAACGTTCAGCCGCAGACCTATAGCTACGGCAGCCACCTGGACGTGCGCAAAGTGCTGTCCCTGACCGAAGACCCGCAACCGGCCTGTGGCGTGGTCATTGCCCACATGACGTATCTGGATTCCGCGGGGCACGAGCAGGCGCTGGACTATCGCAAGTTTTCTGATCACTGCACCAACCAGAACTGAMNTKAIYAACLFAALNICTLSARAESNVQPQTYSYGSHLDVRKVLSLTEDPQPACGVVIAHMTYLDSAGHEQALDYRKFSDHCTNQNNANANANANA
D1-35_039461212dipZCOG0785Protein DipZATGCTTCTGATCGCTTTTCTCGGCGGGGTCCTGACGATCCTCAGCCCTTGCATCCTGCCCGTGGTGCCATTCCTGTTCGCCCGCGCCAATCAATCGCGCGGCTCGGTGCTGCTGACTCTGGCCGGCATGGTGCTGACCTTCGCCCTGGTGTCGAGCCTGGCGGTGGTCAGCAGCGAGTGGGTCATCCGCGCCAGCAGCGTCGGCCGGCAAGTCGCCCTGGTGGTGATGGTGCTGTTTGCCTTGTCGCTGATGTTCAGCCGGGTCGGCACCTGGCTCGCACGACCGCTGGTCAGCCTGGGCAATCGCCTCGACGCCGGAGCTGGACGGATGGCTGGGCCGCTGGCGTCGCTGCTGATCGGCGTCGCCACGGGGCTGCTCTGGGCGCCGTGCGCCGGGCCGATCCTCGGAGTGATCCTGACCGGGGCGATGCTGCAAGGTGCCAGCGCGCAAACCAGCCTGCTGTTGCTTGCCTACGGCCTGGGCAGCGCCTTGTCGCTGGGTACGCTGATTCTGGCCGGGCGTGGCCTGATCGGTCGGCTGAAACCGTCGTTGCCAATCACCGCGTGGCTGCGTCGGGCGACGGGCGGGCTGGTGTTGCTGGCGGCCGTGGCGATCGGCAGCGGGGCAGATGACCGGTTGTTGGCGGCGACGTCCTCCGAACAGTCCGCCAGCCTGGAAAAAAGCCTGCTGGAGAACGTGCCCAAGGCCATCGATTACGTGGTCAGCAAGGCTGACGCCAGCAGCCTGCCGCCCCTGGATGCCCAAGGCGCGATGCCTTCGCTGGCAGGCGCGGTGCAATGGCTCAACTCGCCACCGCTGAACAGCGAGTCACTGCGGGGCAAAGTGGTGCTGGTGGATTTCTGGACCTACGATTGCATCAACTGCCAGCACACACTGCCGTACGTGCATGGTTGGGCGAAGAAATACGAGAAGGACGGGCTGGTGGTGATCGGCGTGCATACGCCGGAATACGGCTACGAGAAGATCATCGATAACGTCCGCGAACAGGTGCGCAAGCTCGACATCCATTACCCGGTGGCCATCGACAACCAGTATTCGATCTGGCGCGCCTTCAACAACCAGTACTGGCCGGCCCATTACTTCATCGATGCCAAGGGGCAGGTGCGCTACAGCCACTTTGGCGAAGGGCGTTATGCAGAGCAGGAGCAAGTGATTCAACAACTGCTGCAAGAAGCGAAGGCCAGCAACTGAMLLIAFLGGVLTILSPCILPVVPFLFARANQSRGSVLLTLAGMVLTFALVSSLAVVSSEWVIRASSVGRQVALVVMVLFALSLMFSRVGTWLARPLVSLGNRLDAGAGRMAGPLASLLIGVATGLLWAPCAGPILGVILTGAMLQGASAQTSLLLLAYGLGSALSLGTLILAGRGLIGRLKPSLPITAWLRRATGGLVLLAAVAIGSGADDRLLAATSSEQSASLEKSLLENVPKAIDYVVSKADASSLPPLDAQGAMPSLAGAVQWLNSPPLNSESLRGKVVLVDFWTYDCINCQHTLPYVHGWAKKYEKDGLVVIGVHTPEYGYEKIIDNVREQVRKLDIHYPVAIDNQYSIWRAFNNQYWPAHYFIDAKGQVRYSHFGEGRYAEQEQVIQQLLQEAKASNNANANANANA
D1-35_03947330hypothetical proteinATGCGCGTTTCTATATGGATCGCGGCGGCCATGTTGCTGACCGCTGTCTCGCTTGAAGCCCAGGCCAGGGCGCTTACCTCTAACCAGAAGTCGGTGTGTCGCTGGGGTTCGGACATTGCGGCGGGCGCCCAGGCGTCGAAGCTGTCCGGTGTCAGCCTGTATGGGGCGCGCAAGAAGCTGCAGGTGCGCAAGTTTGCGCGGCCATGGATGCGCATGACTGCCTTGGGCATTACCGAGCAGACCTACAACAGCGCATCGCGGCTCAAGCCTGCCGCCGTCAAGCAGACCTATTACGAACAATGCGTGCGTCACGAACTGGCCCGACGATAAMRVSIWIAAAMLLTAVSLEAQARALTSNQKSVCRWGSDIAAGAQASKLSGVSLYGARKKLQVRKFARPWMRMTALGITEQTYNSASRLKPAAVKQTYYEQCVRHELARRNANANANANA
D1-35_039481866acoR_4COG3284Acetoin catabolism regulatory proteinATGCTTTCCGCTCACTCCCGGGCGCATGTGGATTGCGTCAGCCGCGTGCTGAAGAACGCCGCGCAGCTGCCGCAACTGCCGGTGCCGGACCTGATCTTCGACTCCTGGCGCCGCTCCATGGAGCAACATCACCTGGACCCAGGCTCATTGCAGGGCCCGCGCATCCTTTCCCACGAAGTGCTCAAGCAATGTCGCGAGCGCTCGGAACTGTTCCTCAACATCGCCAGCGATGAAGTGGCGCGCCTGCATGGCCGGGTGCGTGATGCCGACTATTGCGTGCTGCTGACCGATGCCCAGGGCCAGACCATCGACTATCGGGTGGAAACCACCCTGCGCAACGACTGCCGCAAAGCCGGGTTGTACCTGGGCACCTGTTGGTCGGAGGGTGAAGAAGGCACTTGCGGCGTGGCGGCCGTGCTCACCGCCAGGACGGCGGTGACGGTACACAAGCGCGACCATTTTCGCGCCGCGTTCATCGGCCTGACCTGCTCCGCCGCGCCGGTCTTCGATCCGCAAGGAGAACTGCTCGGGGTACTGGACGTTTCGGCGGTGCGTTCGCCGGACGATCGACGTTCTCAGCATCTGATCCGGCAAATGGTGGTGCAAAGCGCACGGGAGATCGAACAGGCGTTTTTCATGAGCAGTGCCCAGGGCTACTGGGTCTTGCGCGCCCATCGCAACGCCGGCTACGTCGACAGCCAGCCGGATTTCCTGTTCGCCTGGGATGACGATGGTTGCCTGCAAGCGCTTAACCCGGCGGCGCGCCATTACTTGCTGGAGCGCTACGGCCAGATGCCCCGGCATATCAGCCAGGTCTTCGACCCGCAGCTGTTGCACCGCGCCCGTGACGAAAGCCTCTATCCGCTCGACCCGTTCCTGCACGGCCGCCTGAGCGCGCCGCGACGCCGGGCGACCCCACGCAAGCGCGCCACGATGACCTCGACCGAGCTCGATCCACGCCTGGCCGACAGCCTGAGCCTGGCGGTGCGGGTCAAGGATCGCAACCTGCCGGTGCTGATCCAGGGCGAGACCGGATCCGGCAAAGAAGTCTTCGCCCGCCAGTTGCATCAGGCCAGCCAGCGTCGAGACCGACCTTTCGTGGCCCTGAACTGCGCGGCGATTCCGGAAAGCCTGATCGAAAGCGAATTGTTCGGTTATGTCGCCGGCGCCTTTACCGGCGCTTCGGCCAAAGGCATGCAGGGCCTGCTGCAACAAGCCGATGGCGGCACACTGTTTCTCGACGAAATCGGCGACATGCCCCTGACCCTGCAGACCCGCCTGTTGCGGGTACTGGCCGAAGGCGAAGTGGCGCCGCTGGGGGCCGCGCGGCGCAAGGCGGTGGACATCCAGGTGATCTGCGCTACCCACCGTGACCTGGAAACCCTGGTGGCAGCCGGCGAGTTTCGCGAGGATCTGTACTTCCGCCTCGGCGGTGCCCGGTTTCAATTGCCGCCGTTACGCGAGCGCACCGACCGGCTGGCGTTGATCAACCGCATCCTCGAGGAAGAATCGACCCTGTGCGGGGGCGCGGTGCAACTGAGTGGCCCAGCGCTGGAATGCCTGCTCGGTTACCACTGGCCGGGCAATGTGCGCCAGTTGCGACATGTACTGCGTTATGCCTGTGCGGTCTGCGAAGGGAGCGTGGTCCAGCTCAGTCATTTACCGGAGTCACTGCACGGCAGCGAAACCGCTGTTCGGGGGCCAGAACCCAGCGCCAGCCCGGAACGCCAGGCGCTGCTCGATGCCCTGGTGCGTCACCGCTGGAAACCCACCCCGGCGGCCCGGGCCCTGGGTATTTCCCGTGCGACGCTGTATCGCCGGGTGCATCAGCATGGCATCGAAATGCCCGGCAGGAGCCCCGGCTGAMLSAHSRAHVDCVSRVLKNAAQLPQLPVPDLIFDSWRRSMEQHHLDPGSLQGPRILSHEVLKQCRERSELFLNIASDEVARLHGRVRDADYCVLLTDAQGQTIDYRVETTLRNDCRKAGLYLGTCWSEGEEGTCGVAAVLTARTAVTVHKRDHFRAAFIGLTCSAAPVFDPQGELLGVLDVSAVRSPDDRRSQHLIRQMVVQSAREIEQAFFMSSAQGYWVLRAHRNAGYVDSQPDFLFAWDDDGCLQALNPAARHYLLERYGQMPRHISQVFDPQLLHRARDESLYPLDPFLHGRLSAPRRRATPRKRATMTSTELDPRLADSLSLAVRVKDRNLPVLIQGETGSGKEVFARQLHQASQRRDRPFVALNCAAIPESLIESELFGYVAGAFTGASAKGMQGLLQQADGGTLFLDEIGDMPLTLQTRLLRVLAEGEVAPLGAARRKAVDIQVICATHRDLETLVAAGEFREDLYFRLGGARFQLPPLRERTDRLALINRILEEESTLCGGAVQLSGPALECLLGYHWPGNVRQLRHVLRYACAVCEGSVVQLSHLPESLHGSETAVRGPEPSASPERQALLDALVRHRWKPTPAARALGISRATLYRRVHQHGIEMPGRSPGPGPT0001030_1519DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0001030-acoR-K21405NANA
D1-35_039491074hypothetical proteinATGAGTCGCCGTCCGCTCACCGTCGGCATCATCGCCAACCCCGCCTCGGGCCGTGACGTACGCCGTCTGACCGCCAACGCCGGGCTGTTTTCCAGTACCGACAAAGTCTCGGTGATCCAGCGCCTGCTGGCCGCGTTCGGCGCCACCGGCATCGAACGGGTGCTGATGCCGACCGACATGATCGGCATGGCCGCCGCCGTGCTGAAGAACAGCCACAGTCGTCAGGCCCGTAGCAGCCGTTGGCCGGCCCTGGAGTTTCTCGACCTGACCCTGCGCCAGACCGTCGAAGACACCCGCCGGGCCGCGCGCCTGATGGCCGAGCGCGAAGTGGCGCTGATCGCGGTGCTCGGCGGCGACGGTACCCACAAGGCAGTGGCCGCCGAAGTCGGTGATATTCCATTACTGACCCTTTCCACCGGCACCAACAACGCCTTCCCGGAGCTGCGCGAGGCCACCAGTGCCGGGCTGGCCGGCGGGTTGTACGCCAGCGGGCGGATTCCAGACCTGATCGGCTTGCGTCGCAACAAACGCCTGCTGGTCTGCGACGCCGGGCGTGGCTTGCGGGAAGTTGCGCTGGTGGATGTCGCCGTGTCGCCGCTGCGCTTTGTCGGCGCCCGGGCCATCAGCCGGGCGCAGGATCTGGCCGAAGTCTTCGTGACCTTTGCCGAACCGCAATCCATTGGCCTGTCGGCGCTGTGCGGCTTGTGGTTGCCGGTGTCCCGCCAGGCCCCGGGCGGCGCCTGGATGCGCCTGGACCCGCAATCGCCCGAAGCGCTGCTGGTGCCACTGGCCCCCGGTCTGCTGCAGGGCTGTGGCGTGCTTGCCGCCGGCCCTTTGGAGCCAGGCGTTGCCCACGGCTTGTCGCTGTCCAGCGGCACGCTGGCCCTGGACGGCGAGCGGGAAATCGAATTCAACGTCCATGACCGACCCACGATCACCCTCGATGCCGGCGGCCCGCTGAGCATCGACGTCAACGCGGTGCTCAGCTACGCCGCGCAACAACGCTTGTTGGCCATCGGTCGCGAGCACCCGCAACACCCCTTGAACCTTCAAGAAGACACCCCTGGAGAATAAMSRRPLTVGIIANPASGRDVRRLTANAGLFSSTDKVSVIQRLLAAFGATGIERVLMPTDMIGMAAAVLKNSHSRQARSSRWPALEFLDLTLRQTVEDTRRAARLMAEREVALIAVLGGDGTHKAVAAEVGDIPLLTLSTGTNNAFPELREATSAGLAGGLYASGRIPDLIGLRRNKRLLVCDAGRGLREVALVDVAVSPLRFVGARAISRAQDLAEVFVTFAEPQSIGLSALCGLWLPVSRQAPGGAWMRLDPQSPEALLVPLAPGLLQGCGVLAAGPLEPGVAHGLSLSSGTLALDGEREIEFNVHDRPTITLDAGGPLSIDVNAVLSYAAQQRLLAIGREHPQHPLNLQEDTPGEPGPT0013490_1102DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013490-ppnK-K00858NANA
D1-35_03950978acoACOG1071Acetoin:2,6-dichlorophenolindophenol oxidoreductase subunit alphaATGTCGACACCGCTCACCCACGATCAATTGCTGCACGCCTATCAAGTGATGCGCACCATCCGCGCCTTCGAAGAGCGCTTGCACGTGGAGTTCGCCACCGGCGAGATCCCCGGTTTTGTTCACCTTTATGCAGGCGAAGAGGCTTCGGCCGCTGGCGTCATGGCCCATCTGGGCGATGACGATTGCATCGCCTCCAACCACCGGGGCCATGGCCATTGCATTGCCAAGGGCGTCGATGTCTACGGGATGATGGCCGAGATCTACGGCAAGAAAACCGGCGTCTGCCAAGGCAAGGGCGGCTCGATGCACATTGCCGATTTCGAGAAAGGCATGCTCGGTGCCAACGGCATCGTCGGCGCCGGTGCGCCGCTGGTGGTCGGCGCCGCCCTGGCGGCCCGGCTCAAGGGCACCGACAGCGTCGCCGTGGTGTTTTTCGGCGACGGCGGCTCCAACGAAGGCGCGGTTTTCGAAGCCATGAACATGGCCTCGGTGTGGAACCTGCCGTGTCTGTTCATCGCGGAAAACAATGGCTACGCCGAAGCCACCGCGTCGAACTGGTCGGTGGCCTGCGATCACATCGCCGACCGCGCCGCCGGCTTCGGCATGCCCGGGGTGACGGTCGACGGCTTTGACTTCTTCGCCGTGCATGAAGCGGCCGGTGCCGCCGTCGAGCGCGCCCGGGCCGGGGAAGGGCCGTCGCTGATCGAGGTCAAGCTGACCCGCTACTACGGCCACTTCGAGGGCGACGCCCAGACCTATCGAGCGCCGGATGAGGTCAAGCATTTTCGCGAGAACCAGGACTGCCTGATGCAGTTCCGCGAGCGCACCACGCGGGCCGGTCTGCTCACGGTCGAGCAGTTGGACCAGGTCGACAAGGAAGTCGAGCTGCTGATCGAAAACGCCGTGTACAAGGCCAAGTCCGATCCCAAGCCCGCGGCTGCCGACCTGCTGACCGACGTCTACGTCAGCTATCCCTGAMSTPLTHDQLLHAYQVMRTIRAFEERLHVEFATGEIPGFVHLYAGEEASAAGVMAHLGDDDCIASNHRGHGHCIAKGVDVYGMMAEIYGKKTGVCQGKGGSMHIADFEKGMLGANGIVGAGAPLVVGAALAARLKGTDSVAVVFFGDGGSNEGAVFEAMNMASVWNLPCLFIAENNGYAEATASNWSVACDHIADRAAGFGMPGVTVDGFDFFAVHEAAGAAVERARAGEGPSLIEVKLTRYYGHFEGDAQTYRAPDEVKHFRENQDCLMQFRERTTRAGLLTVEQLDQVDKEVELLIENAVYKAKSDPKPAAADLLTDVYVSYPPGPT0008230_706DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0008230-acoA-K21416NANA
D1-35_039511017acoBCOG0022Acetoin:2,6-dichlorophenolindophenol oxidoreductase subunit betaATGGCGAGAAAAATCAGCTATCAGCAGGCAATCAACGAAGCCCTGGCCCAGGAAATGCGCCGCGACTCCAGCGTGTTCATCATGGGCGAGGACGTCGCTGGCGGCGCCGGTGCACCCGGTGAAAACGACGCCTGGGGCGGCGTGCTCGGCGTCACCAAGGGGCTTTACGACCAGTTTCCCGGACGCGTGCTGGATACGCCGCTCTCCGAGATCGGCTACGTCGGCGCGGCGGTCGGCGCGGCCACCTGCGGTGTGCGCCCGGTGTGCGAGCTGATGTTCGTCGACTTCGCCGGGTGCTGCCTGGACCAGATCCTCAACCAGGCGGCGAAATTTCGCTACATGTTCGGCGGCAAGGCCTCCACGCCCCTGGTAATCCGCACCATGGTCGGGGCGGGCCTGCGCGCCGCCGCCCAGCACTCGCAGATGCTCACGTCCTTATGGACGCACATTCCCGGGCTGAAAGTGGTGTGCCCGTCATCGCCGTACGACGCCAAGGGCCTGCTGATCCAGGCGATTCGCGACAACGACCCGGTGATCTTCTGCGAGCACAAGTTGCTCTACAGCATGCAAGGCGAGGTGCCGGAGGAGCTCTACACCGTGCCGTTCGGCGAAGCCAACTTCCTGCGCGACGGCAAGGACATCACGCTGGTGTCCTATGGCCGGCTGGTCAACACCGCGCTGGACGCGGCGCGCAACCTCGCCGGGCGCGGCATCGATTGCGAGGTGATCGACCTGCGCACCACCAGCCCGATGGACGAGGACAGCATCCTCGAAAGTGTCGAGAAGACCGGCCGCCTGGTGGTGATCGACGAGGCCAACCCGCGCTGCTCGATGGCCACCGATATCTCGGCGCTGGTCGCGCAAAAAGCCTTCGGTGCGCTCAAGGCGCCGATTGAAATGGTCACCGCGCCACATACCCCGGTGCCGTTCTCCGATTCCCTGGAAGACCTGTACATCCCCGACGCGGCGAAGATCGAACAAGCCGTGCTCAACGTGATCGAGTGGAGCAAGCGCTGAMARKISYQQAINEALAQEMRRDSSVFIMGEDVAGGAGAPGENDAWGGVLGVTKGLYDQFPGRVLDTPLSEIGYVGAAVGAATCGVRPVCELMFVDFAGCCLDQILNQAAKFRYMFGGKASTPLVIRTMVGAGLRAAAQHSQMLTSLWTHIPGLKVVCPSSPYDAKGLLIQAIRDNDPVIFCEHKLLYSMQGEVPEELYTVPFGEANFLRDGKDITLVSYGRLVNTALDAARNLAGRGIDCEVIDLRTTSPMDEDSILESVEKTGRLVVIDEANPRCSMATDISALVAQKAFGALKAPIEMVTAPHTPVPFSDSLEDLYIPDAAKIEQAVLNVIEWSKRPGPT0008235_470DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0008235-acoB-K21417NANA
D1-35_039521113acoCDihydrolipoyllysine-residue acetyltransferase component of acetoin cleaving systemATGAGCCAGATTTTTACCCTGACCATGCCCAAGTGGGGCCTGTCGATGACCGAGGGCCGGGTCGATGCCTGGCTCAAGGAAGAGGGGCAGGCCATCACCAAGGGCGATGAAGTGATGGACGTCGAGACCGACAAGATCTCCAGCAGCGTGGAGGCGCCGTTTTCCGGCATCCTGCGTCGGCAGGTCGCCCGTCAGGACGAAACCCTGCCGGTCGGCGCCTTGCTCGGTGTCGTCGTCGAAGGCGAGGCCAGCGACGCCGAGATCGATGCGGTTATCGAGCAGTTCCAATCCAATTTCGTCCCGGGCGACGCCGCCGATGAGGACAGCGGTCCGAAACCGCAGAAAATCGAGTTGGACGGGCGGGTGATCCGTTACTTCGAGCGCGGTGAGGGCGCTACGCCCCTGGTGCTGATACATGGTTTTGGCGGCGACCTGAACAACTGGCTGTTCAACCATGAAGCCCTGGCCGCCGGACGGCGGGTCATTGCCCTGGACCTGCCGGGCCATGGTGAATCGGCGAAAACCCTGCAACGCGGCGATCTCGATGAATTGAGTGGCGTGGTGCTGGCCTTGCTCGATCACCTGGATATCAACGCGGCTCACCTGGTGGGGCATTCGATGGGCGGGGCGGTGGCGTTGAATGTCGCACGACTGATGCCGCAACGCTTGCGCTCGCTGACCCTGATCGGCAGCGCCGGCCTGGGCGCGGAGATCAATGGCAGCTACCTGCAGGGCTTCGTCGACGCCGCCAACCGCAATGCCCTCAAGCCGCAGCTCGTGCAACTGTTCTCGAATGCCGAGCTGGTCAACCGCCAGATGCTCGACGACATGCTCAAGTACAAGCGCCTCGAAGGCGTGGACGCGGCCCTGCGCCAACTGGCCGAGAGTGTTTTCAAGGACGGCCGCCAACAGGTGGACCTGCGCGAAGTGGTCCAGGCCGGCCACGTTTCGACCCTGGTGATCTGGGGCAGTGACGACGCGATCATCCCGGCGGCTCATGCCGACGGCTTGGCGGCGCGGGTCGAGGTGCTGCCAGGCCAGGGGCATATGGTGCAGATGGAGGCAGCCGAGCAGGTCAATCGATTGATCCTGGATTTCATTCAGCAGCACTGAMSQIFTLTMPKWGLSMTEGRVDAWLKEEGQAITKGDEVMDVETDKISSSVEAPFSGILRRQVARQDETLPVGALLGVVVEGEASDAEIDAVIEQFQSNFVPGDAADEDSGPKPQKIELDGRVIRYFERGEGATPLVLIHGFGGDLNNWLFNHEALAAGRRVIALDLPGHGESAKTLQRGDLDELSGVVLALLDHLDINAAHLVGHSMGGAVALNVARLMPQRLRSLTLIGSAGLGAEINGSYLQGFVDAANRNALKPQLVQLFSNAELVNRQMLDDMLKYKRLEGVDAALRQLAESVFKDGRQQVDLREVVQAGHVSTLVIWGSDDAIIPAAHADGLAARVEVLPGQGHMVQMEAAEQVNRLILDFIQQHPGPT0001390_6374DIRECT 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
D1-35_039531095ydjJCOG1063putative zinc-type alcohol dehydrogenase-like protein YdjJATGAACGTTTCAATCAAGCCGACCCGCAGCATGCGCGCCGCCGTCTGGCATGGCCGCAACGACATCCGCGTCGAAGACGTGCCGCTGCCTGTTCCACCGCCTGCCGGTTGGGTGCAGATCCGCGTGCAATGGTGCGGCATCTGCGGCTCGGACCTGCATGAATACGTGGCTGGGCCAGTGTTCATCCCGGTGGACGCGCCGCACCCGCTGACCGGCATCAAGGGCCAGTGCATCCTCGGTCATGAATTCTGCGGTGAAATCGTCGAATTGGGCGCCGACGTCGAAGGCTTCAGCGTCGGCGAGCCGGTGGCGGCCGATGCCTGCCAGCATTGCGGCACCTGTTATTACTGCACTCATGGGCTGTACAACATCTGCGAGAACCTGGCGTTCACCGGATTGATGAACAACGGCGCGTTCGCTGAATTGGTCAACGTCCCGGCCAACCTGCTCTACAAGCTACCGGCGGACTTCCCCGCCGAGGCCGGCGCGCTGATCGAGCCGCTGGCGGTGGGCATGCACGCGGTGAAGAAGGCCGGCAGCCTGCTGGGTCAGAACGTGGTGGTGGTCGGCGCCGGCACCATCGGCCTGTGCACCATCATGTGCGCCAAGGCCGCCGGCGCGGCCCAGGTGATTGCCCTGGAAATGTCCGGCGCGCGCAAGGCCAAGGCCCTGGAAGTCGGCGCCAGCCACGTCATCGATCCCAACCAGTGCGATGCCCTGGCCGAAGTAAGCCGCCTGACCGGCGGCCTGGGGGCTGACGTCAGTTTCGAATGCATCGGCAACAAGCACACCGCCAAGTTCGCCATCGACCTGATCCGCAAGGCCGGCAAATGCGTGTTGGTGGGCATATTCGAAGAACCGAGCGAGTTCAACTTCTTCGAGCTGGTGTCCACCGAGAAACAGGTGCTTGGCGCGCTGGCCTATAACGGCGAGTTCGCCGACGTGATCGCCTTCATCGCCGACGGGCGCCTGGACATTTCACCGCTGGTAACCGGGCGCATCCAGCTGGAGCAGATCGTCGGGCAGGGTTTCGAGGAATTGGTCAATAACAAGGAGCATAACGTCAAGATCATCGTGTCTCCGGCACGGATCTGAMNVSIKPTRSMRAAVWHGRNDIRVEDVPLPVPPPAGWVQIRVQWCGICGSDLHEYVAGPVFIPVDAPHPLTGIKGQCILGHEFCGEIVELGADVEGFSVGEPVAADACQHCGTCYYCTHGLYNICENLAFTGLMNNGAFAELVNVPANLLYKLPADFPAEAGALIEPLAVGMHAVKKAGSLLGQNVVVVGAGTIGLCTIMCAKAAGAAQVIALEMSGARKAKALEVGASHVIDPNQCDALAEVSRLTGGLGADVSFECIGNKHTAKFAIDLIRKAGKCVLVGIFEEPSEFNFFELVSTEKQVLGALAYNGEFADVIAFIADGRLDISPLVTGRIQLEQIVGQGFEELVNNKEHNVKIIVSPARIPGPT0008200_103DIRECT 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
D1-35_03954501hypothetical proteinATGCAGGCCACGGGGCCGGCCGCGCAAGGCTGGATGGACCGGCTGGCCGACTCGTCGCTGGCATTGGCCATGCGCGACGAGCTATGGCTGTACCCGCTGGTGGAGGTGCTGCACATCATCGGCTTTTCGGTGCTGGTGGGCGCGGTGGTGATGTTCGACTTGCGCGTCCTCGGCCTGTCCAAGGCCATCGCCGTGACCGCCCTCGCCCGGCACCTGCTGACCTGGGCCGTTGCGGCCCTGCTGCTGATCGTACCGGCCGGGCTGATGATGTTCAGCGCGCACCCGCAGGATTTCGCCGGCAATAACGTCTTTATCCTCAAGCTCGGTCTGATTGCGGCGGCGGGCATCAACGCCATGCTGTTTCATGCTGGAACCTACCGTTCGGTCGAACAATGGAATACCGGCCAGAAGGCCCCCGGGCTGGCGCGTGTCCAGGCACTGGTATCGATCGCGCTATGGATCACGGTGATTCTCTGCGGTCGACTGCTGGCCTACACCTGAMQATGPAAQGWMDRLADSSLALAMRDELWLYPLVEVLHIIGFSVLVGAVVMFDLRVLGLSKAIAVTALARHLLTWAVAALLLIVPAGLMMFSAHPQDFAGNNVFILKLGLIAAAGINAMLFHAGTYRSVEQWNTGQKAPGLARVQALVSIALWITVILCGRLLAYTNANANANANA
D1-35_03955351hypothetical proteinATGAACTTCACCCTTCGCTGCATTGGTTTATCGTCGTTGCTGGTCGCCACGGCGGCGTTTGCCCACCATGGCTGGAGCGAATACGACGCCAGCAACCCCTTGACGCTGGAAGGCACGATAAAGCAATCCGGGTATTCCCATCCCCACGGCACCGTGCGCCTGCAAACCACCGACAAGACCTGGACCGTAGTGCTGGCGCCGCCCTCACGCATGGAAAGCCGCGGGCTGACCAAGGACATGCTCAAGGCGGGTAACTCAGCCACCGTGGTCGGCTATGCCAACCGCAACAAACCCGATGAACTGCGCGCCGAGCGCATCACCATTGATGACAAGACCACCGAGTTGCGCTGAMNFTLRCIGLSSLLVATAAFAHHGWSEYDASNPLTLEGTIKQSGYSHPHGTVRLQTTDKTWTVVLAPPSRMESRGLTKDMLKAGNSATVVGYANRNKPDELRAERITIDDKTTELRNANANANANA
D1-35_03956555hypothetical proteinATGAACTATTTCCTGGCCCAGGCCCTGAACAACCAATGGGCCAACCACCGGCTGCTGGGCGCCTGCACGCAACTGAACACGGCCGAATACGAAGCCTACCGCACCAGCTTTTTCCCCTCCATCCAAGCCACGCTGTGCCACATCCTTGAGGTTGACCGTTATTACCTGACTGCCCTGGAAGGCGATGTTGACGGCCAGGAACGGGATTTCTACCAGACCCTGGCTTTCGCTGAGCTCAAGGAAAACCAGGGCAAGACCGACCAGCGGCTGGTGGCTTTCTGCGAAACCCTGCGGGAAACGGACCTTGCCCGCTCCATCGACCTGGTGCGCTCCGACGGCAGGGTATGCGAGCGGATCGACCGGTTGCTGTTGCACCTGTTCGAGCACCAGATCCACCACCGCGGCCAAGTCCATACCATGCTCAGCGCCACCCACGTCGAGCCGCCGCAACTCGATGAATTCTTTCTCGACTGCGACCGACGTTTCCGCGAGGTCGAGGAACAGCTGCTCCAACTCGACGGGCAGCGGGTCTGGAGCGAATATCATCCCAATTGAMNYFLAQALNNQWANHRLLGACTQLNTAEYEAYRTSFFPSIQATLCHILEVDRYYLTALEGDVDGQERDFYQTLAFAELKENQGKTDQRLVAFCETLRETDLARSIDLVRSDGRVCERIDRLLLHLFEHQIHHRGQVHTMLSATHVEPPQLDEFFLDCDRRFREVEEQLLQLDGQRVWSEYHPNNANANANANA
D1-35_03957918dapA_4COG03294-hydroxy-tetrahydrodipicolinate synthaseATGAGCAAACGCATCAACTGGAGCGGCGTATTCCCCGCTGTCACCACCCAATTCAACGACGACTTTTCGATCAACCTGGAAAAAACCCACCAAGTCATTTCCAACGTCATCCGCGATGGCGTTTCCGGCCTGGTGGTCTGTGGATCCGTGGGGGAAAACACCTCCCTGAGCGCCGAGGAAAAAATCGCCGTGACCGAAGTGGCGGTGGACGCCTCCCGTGGCAGGGTGCCGGTGATATGCGGCGTGGCCGAGTTCACCAGCGTGCAGGCCGCCAAGGTCGCCAACGCAGTGCGCAAGGTCGGTGTCGACGGGGTCATGCTGATGCCGGCGCTGGTCTACGGCTCCAAGCCGTTCGAGACCGCCGAACATTTCCGCTACGTGGCCCGGCATGCCGACGTGCCGCTGATGGTCTACAACAACCCGCCGATCTACAAGAACGATGTCACCCCGGACATCCTGATTTCCCTGGCCGACTGCGACAACGTGGTGTGTTTCAAGGATTCCTCCGGCGACACCCGCCGCTTCATCGATGTGCGCAACGAAGTCGGTGATCGCTTCGTGCTGTTTGCCGGTCTCGATGACGTGGTCCTGGAAAGCCTCGCCGTCGGCGCCGAGGGCTGGGTCTCGGGCATGTCCAACGTGTTCCCGAAAGAAGGCGAAACCATCTTCCGCCTGGCCCGCGCCGGACGGTTCGCCGAAGCCATGCCGATCTACGAATGGCTGATGCCGATCCTGCACCTGGACGCCCGCGCCGACCTGGTCCAATGCATCAAGCTGTGCGAAGCCATCGCCGGTCGCGGCAGCGCCCTCACCCGCCCACCGCGCCTGGCCTTGCCGGAAGAAGACCGCGTGTACGTGGAGCAGATCATGGCCAAGGCCCTGGCCAATCGGCCGGCGTTGCCGGATGTGGGGCTGTAAMSKRINWSGVFPAVTTQFNDDFSINLEKTHQVISNVIRDGVSGLVVCGSVGENTSLSAEEKIAVTEVAVDASRGRVPVICGVAEFTSVQAAKVANAVRKVGVDGVMLMPALVYGSKPFETAEHFRYVARHADVPLMVYNNPPIYKNDVTPDILISLADCDNVVCFKDSSGDTRRFIDVRNEVGDRFVLFAGLDDVVLESLAVGAEGWVSGMSNVFPKEGETIFRLARAGRFAEAMPIYEWLMPILHLDARADLVQCIKLCEAIAGRGSALTRPPRLALPEEDRVYVEQIMAKALANRPALPDVGLPGPT0002080_3671DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISMCE-BACTERIAL_FITNESS-RHIZOPINE_BIOSYNTHESIS,PGPT0002080-dapA|mosA-K01714NANA
D1-35_039581029COG3938putative trans-3-hydroxy-L-proline dehydrataseATGCGCTCATCAAAAATCATCCATGTAGTCAGCTGCCACGCCGAAGGCGAAGTCGGCGATGTGATCGTCGGCGGCGTCGCGCCGCCACCCGGCGCCACCGTTTGGGAACAGTCACGCTGGATCGCCCAGGACCAGACCCTGCGCAACTTCGTCCTCAACGAACCCCGGGGCGGTGTGTTTCGCCACGTCAATCTGCTGGTGCCGGCCAAGGACCCGCGGGCGCAAATGGCCTGGATCATCATGGAGCCGGCCGACACGCCGCCGATGTCCGGCTCCAACTCGCTGTGCGTCGCCACCGTGCTGCTGGACAGCGGCATCCTGCCGATGAGCGAACCCCAGACGCGGTTGGTGCTGGAAGCACCGGGTGGCCTGATCGAAGCCGTGGCCGACTGCCGCGACGGCAAGGTGCAGCGGGTCGAGATCAAGAATGTGCCCTCGTTCGCCGACCGCCTCGATGCCTGGATCGAAGTCGAAGGCCTGGGTTCGCTGCAAGTGGACACGGCCTACGGCGGCGATAGCTTCGTCATCGTCGACGCCCAGCGCCTGGGCTTCGCCATCCGGCCTGACGAGGCGGCCGAGCTGGTGGCCGTGGGGCTGAAAATCACCCGCGCGGCGAACGAGCAATTGGGCTTCGTGCACCCGTTGAACGCCGACTGGTCGCACATATCTTTCTGCCAGATCGCCGCACCCCTTGTGACGGAAAACGGCATCGCCACCGGCGCCAACGCCGTCGTCATCCAGCCCGGCAAGATCGACCGCTCCCCCACTGGCACCGGCTGCTCGGCGCGCATGGCGGTGCTGCACGCCAAAGGCTTGATGCAACTGGGCGAGCGGTTTATCGGCCGCTCGATCATCGGCTCCGAATTTCATTGCCGGATCGATTCACTGACCGACGTGGCCGGACGCCCGGCGATCTACCCGTGCATCGCCGGACGGGCGTGGATTACCGGTACCCACCAGTTGTTGCTCGACCCAAGCGATCCGTGGCCGCAGGGCTATCGGCTTTCGGATACCTGGCCGGGGGCATGAMRSSKIIHVVSCHAEGEVGDVIVGGVAPPPGATVWEQSRWIAQDQTLRNFVLNEPRGGVFRHVNLLVPAKDPRAQMAWIIMEPADTPPMSGSNSLCVATVLLDSGILPMSEPQTRLVLEAPGGLIEAVADCRDGKVQRVEIKNVPSFADRLDAWIEVEGLGSLQVDTAYGGDSFVIVDAQRLGFAIRPDEAAELVAVGLKITRAANEQLGFVHPLNADWSHISFCQIAAPLVTENGIATGANAVVIQPGKIDRSPTGTGCSARMAVLHAKGLMQLGERFIGRSIIGSEFHCRIDSLTDVAGRPAIYPCIAGRAWITGTHQLLLDPSDPWPQGYRLSDTWPGAPGPT0014240_180DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_PROLINE_DEGRADATION,PGPT0014240-prdF-K01777NANA
D1-35_03959723glnQ_7Glutamine transport ATP-binding protein GlnQATGATTGAGATCGAAAACGTGCACAAATCATTCGGCAACCTGGAAGTGGTCAAGGGCGTCAGCCTGACGGTGGACAAGGGCGAAGTCGTCTCGATCATCGGCGGCTCCGGCTCCGGCAAGTCCACCCTGCTGATGTGCATCAACGGCCTGGAGCCAATCCAGAAAGGCAGCATCCGCGTGGATGGCGTGGAGGTCCACGACAGCGCTACCGATCTCAATCGCTTGCGGCAGAAGATCGGCATCGTCTTCCAGCAATGGAACGCCTTTCCCCACCTCACCGTACTGGAAAACGTCATGCTCGCGCCGCGCAAGGTCTTGGGCAAGAGCAAACAGGACGCCGAAGCGCTGGCGGTGCGCCAGCTTGAGCACGTCGGCCTGGGCGACAAGCTCAAGGCCTTCCCCGGCAAGCTGTCCGGCGGCCAGCAACAGCGCATGGCCATCGCCCGGGCGTTGGCGATGTCACCCGACTACATGCTGTTCGACGAAGCCACCTCGGCGCTGGACCCGCAACTGGTGGGTGAGGTGCTGGACACCATGCGCATGCTCGCCGAGGACGGCATGACCATGGTGCTGGTGACGCACGAGATCCGCTTCGCCCGCGACGTCTCCGACCGGGTGGCGTTCTTTTGCAATGGTCGGGTCCACGAAATCGGCCCGCCGGACCAGGTGATCGGCAATCCGCAGCAGCCGGAGACGGCGGCGTTTCTGAAATCGGTGAAATAGMIEIENVHKSFGNLEVVKGVSLTVDKGEVVSIIGGSGSGKSTLLMCINGLEPIQKGSIRVDGVEVHDSATDLNRLRQKIGIVFQQWNAFPHLTVLENVMLAPRKVLGKSKQDAEALAVRQLEHVGLGDKLKAFPGKLSGGQQQRMAIARALAMSPDYMLFDEATSALDPQLVGEVLDTMRMLAEDGMTMVLVTHEIRFARDVSDRVAFFCNGRVHEIGPPDQVIGNPQQPETAAFLKSVKPGPT0014280_32DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0014280-lhpO-K23064NANA
D1-35_03960651artQ_2COG0765Arginine transport system permease protein ArtQATGTTTTCTACAAGCCTTACCGTTAATGACGTGCTGTACCTGCTTGAGGGGGCCTGGGTCACGGTGCAATTGACCGCGTGGTCGATCCTGCTGGGCACCGTCGCCGGGTTGCTGTTCGGCTTGCTACGGGCGTTGCTGCCCCGCGCCAGCCTGCCGTTGGCCTGGGTATTGGACGTGTTTCGCAGTGTGCCGTTGCTGATCCAGTTCGTGCTGTTCAATTCCCTCAAGAGCATCGTCGGCCTGGACCTCAGTGCTTTCGCCGTCGGTTGTATCGTGCTCGGCGTCTACGCCGCCGCGTATTTCACCGAGATCGTCCGCGGTGGCGTGCTGGCGGTGCCGCTGAGCACCCGGCGGGCCAGTCGTTCCCTGGGCCTGAGCTACGTGCAGGACTTGCGCTTCATCGTCCTGCCGATCGCCACGCGGGTGGCCTTCCCTGGCTGGTTAAACCTGGTGCTGGGGGTGATGAAAGACACCGCCCTGGTGATGTGGATCGGCATCGTCGAATTGCTCCGCGCCTCGCAGACCATTGTCACGCGGATTCAAGAACCCCTGCTGGTGCTGTGCATCGCGGGCCTCATCTACTACGTCATGAGCCTGGTGGTCGCCCGCCTCGGCGCGCGCCTGGAAAGAAGGTGGCAGGAAAATGATTGAMFSTSLTVNDVLYLLEGAWVTVQLTAWSILLGTVAGLLFGLLRALLPRASLPLAWVLDVFRSVPLLIQFVLFNSLKSIVGLDLSAFAVGCIVLGVYAAAYFTEIVRGGVLAVPLSTRRASRSLGLSYVQDLRFIVLPIATRVAFPGWLNLVLGVMKDTALVMWIGIVELLRASQTIVTRIQEPLLVLCIAGLIYYVMSLVVARLGARLERRWQENDPGPT0014275_83DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0014275-lhpM-K23063NANA
D1-35_03961666occM_3Octopine transport system permease protein OccMATGTTTGACTACAGCTTCCAATGGCGCCCGGCCCTGCGCGCGCTGCCCGATATGCTCGCCGGCGCCTGGGTGACCTTCGAAACGGCCGCGCTGTCGATGATTTTCGGCGTGCTGATCGCCCTGCTCCTGACGGTAATGCGCCAGGCCCGTCATCCGTTGTTGCGCGGCGTTGGCAACGGTTGGGTATCGATCGCCCGCAACACGCCGTCGTTGTTCCAGATCTACATCCTCTATTTCGGTCTCGGCTCTCTCGGCCTGCACGTCAGTTCATGGTTCGCCTTGCTGGCCGGTATCACCTTCAACAACGCCGGCTATCTGGCCGAGAACTTTCGCGGCGGACTCAAGGCGGTGCCGGGCACGCAGATGCGCGCCGCCCGTTCCCTGGGCATGAGCGCGTTCCAGGCCTACCGGATGATCATCGTCCCGCAATTGCTGCGCATCGTCTTCTACCCCCTGACCAACCAGATGGTCTGGGCGGTGCTGATGACATCCCTGGGCGTGGTGGTCGGCTTGAACAACGACCTCACCGGCGTGACCCAGGAATACAACGTCAAGACCTTCCGCACCTTCGAATACTTCGCCCTCGCGGCGCTGCTGTACTACCTGATCGCCAAGCTGATCGTCGGGCTGGCCCGGCTGTTGTCCTGGCGGCTGTTTCGTTATTGAMFDYSFQWRPALRALPDMLAGAWVTFETAALSMIFGVLIALLLTVMRQARHPLLRGVGNGWVSIARNTPSLFQIYILYFGLGSLGLHVSSWFALLAGITFNNAGYLAENFRGGLKAVPGTQMRAARSLGMSAFQAYRMIIVPQLLRIVFYPLTNQMVWAVLMTSLGVVVGLNNDLTGVTQEYNVKTFRTFEYFALAALLYYLIAKLIVGLARLLSWRLFRYPGPT0014270_25DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0014270-lhpN-K23062NANA
D1-35_039621779hypothetical proteinATGCCGAGCACGCCTATCCGCCTGCAGGGCCGCAGCCTGGTCGAGGGTGCCGTCGAGGGCAGCCTGTTGTTCGCCGATGTCGGCCTGAGCTTTTGGGGCGGGGTTGATCCGGCCACGGGCGAAGTCATCGACCGACACCACCCGCTCAGTGGCGAGCGCCTGGCCGGGCGCGTGCTGGCGATTCCCAGCGGGCGTGGCTCTTGCACCGGCAGCAGCGTGTTGATGGAACTCATCAGCAACGGTAATGCACCGGCGGCACTGGTGCTGGCCGAAGCCGATGAAATCCTGACCCTGGGGGTGCTTGTCGCCGAGGTGGTTTTCCAGCGCTCGCTACCGGTGCTGTGCATCGGCAGCGAGGCATTCAGCACTTTGCGCGGCCAGGGCTTCGGGCGTGTCGAGGGCAACCGCCTGACCTTGTCCGGGCGTCGGCCCAACGACCAATGGCGTGGGGAAAATACTTGCGCGCAGCCGTTCCGGCCCTCCACTGTCCGCTTGAACGAACGGGACCAGGCGCTGCTTGACGGGGTCCATGGCAAGGCTGCCCAGGTGGCGATGCAAATCGTCTTGCGCATGGCCGACATCCAGGGCGCCGGACAATTGCTGGACATCACCCAAGCCCACATCGACGGCTGCATTTATACCGGCCCGGCCAGCCTGCGTTTTGCCGAACAACTGGTGCAGTGGGGCGCGAAGGTTTGCGTGCCCACCACCCTCAATTCGATTTCCGTGGACCAGCGCCGCTGGCGTGAGCTCGGCGTCGATCCGGCCCTGGGCGAGCCGGCCAGTGCCTTGGGCGACGCCTACATGGCGATGGGCGCGCAATTGAGTTTCACCTGTGCACCCTACCTGCTCGACACCGCGCCGACGGCGGGTGAACAGATCGTCTGGGCCGAGTCCAACGCGGTGGTCTATGCCAACAGCGTGCTTGGTGCGCGGACGCAGAAGTACCCGGACTTCCTCGATATCTGCATTGCCTTGTGTGGCCGAGCGCCGCTGGCCGGTTGTCATCTCGATGACCAGCGCAAGGCCGGCCTGATCGTCGAGGTGCCGAGGATCGAATCAGCGGATGACAGCTTCTACCCGCTGCTCGGCTATCACATTGGCAGCCTCACGGGGCGGCGTATCCCGCTGATCCGAGGCCTGGAAGACGCCGCGCCGACCCTGGACGACCTGAAAGCCTTCGGCGCCGCGTTCGCCACCACCAGCGCGGCGCCGTTGTTCCACATCGCCGGGGTGACGCCGGAGGCCATGGACCCGGCCCAGGTGCTGGATCACGACGCCGTGTTATCGGTGAAAACCGTGGACGCGACGGGACTGCTCGCCAGTTGGCGCGAACTCAACAGCGCCCGGCACCGCCATGTGGATGTGGTTTCCCTGGGTAACCCGCACTTCTCCCTGAGCGAATTCGCCACCCTGGCGAACCTTTGTGCGGGACGAACCAGGCACCCCGATGTGGTAGTGGCGATCACCTGCGGTCGCGCCGTGCTGGAGCAGGCTCGCCAGGCCGGTTACCTGGAGCCCATCGAGGCTTTCGGCGCGACGCTGGTCACCGACACCTGCTGGTGCATGCTGGGTGAACCGGTGATCCCTCCGGCCGCCACGACCCTGATGACCAATTCCGGCAAGTACGCCCACTACGCACCCGGCCTGGTGGGGCGCAGCGTGCACTTCGCCAGCCTCGGGGATTGCGTCGAGGCCGCCTGTACCGCCACGGCCAGCGGCCAGCCGCCGCAGTGGTTGCAACCTATCGCACGCAAGGGAAACCCGAGCCATGTTTGAMPSTPIRLQGRSLVEGAVEGSLLFADVGLSFWGGVDPATGEVIDRHHPLSGERLAGRVLAIPSGRGSCTGSSVLMELISNGNAPAALVLAEADEILTLGVLVAEVVFQRSLPVLCIGSEAFSTLRGQGFGRVEGNRLTLSGRRPNDQWRGENTCAQPFRPSTVRLNERDQALLDGVHGKAAQVAMQIVLRMADIQGAGQLLDITQAHIDGCIYTGPASLRFAEQLVQWGAKVCVPTTLNSISVDQRRWRELGVDPALGEPASALGDAYMAMGAQLSFTCAPYLLDTAPTAGEQIVWAESNAVVYANSVLGARTQKYPDFLDICIALCGRAPLAGCHLDDQRKAGLIVEVPRIESADDSFYPLLGYHIGSLTGRRIPLIRGLEDAAPTLDDLKAFGAAFATTSAAPLFHIAGVTPEAMDPAQVLDHDAVLSVKTVDATGLLASWRELNSARHRHVDVVSLGNPHFSLSEFATLANLCAGRTRHPDVVVAITCGRAVLEQARQAGYLEPIEAFGATLVTDTCWCMLGEPVIPPAATTLMTNSGKYAHYAPGLVGRSVHFASLGDCVEAACTATASGQPPQWLQPIARKGNPSHVNANANANANA
D1-35_03963819COG0834putative amino-acid ABC transporter-binding proteinATGAAAAACCCTGCATTGGCCGTAGCCCTCGGCGTGGTCCTGTTTCCCCTGCTTACCCTTCCCGCCCATGCCGACAAACTCGACGACATCATCGGCTCGGGGAAACTGCGTTGCGCCGTGACACTGGACTTCCCACCGATGGGCTTTCGTGATGAAAGCAACAAACCGGCAGGATTCGACGTGGACTATTGCCACGATCTGGCGAAGGTTCTCGGCGTCGACGCGGAGGTTGTAGAAACGCCATTCTCCGACCGAATCCCCGCGCTGCTCTCGGGCCGCGCCGATGTCATCGTCGCCTCCACTTCCGACACCCTGGAGCGGGCCAAGACCGTCGGCCTGACCGTGCCCTACTTCGCGTTCCAGATGGTCGTGCTGACCCGCGACGACACGGGCATCAACGGCTACGCCGACCTCAAGGGCAAGAAGCTCGGCAACACCAGCAGCACCTATGAAGCCATCGCCCTGGAGAAAGACCAGAAGAGCTGGGGCAGCGGCAGTTTCCGTGCCTATCAATCGCAGAACGACACACTGCTGGCCGTCGCCCAGGGCCACATCGATGCCACCGTGGTGACCAACACCGTCGCTGCCGCGACCATCAAATCGGGCAAGTACAAGGGCCTGAAAATCGCCGGAGACGCGCCTTACGTCATCGACTACGTATCCCTCGGCGCCAAACGCAACGAATACGGCCTGCTCAATTACCTCAACCTGTTCGTCAACCAGCAGGTGCGGACCGGCCGCTACAAGGAGCTCTTCGTGAAGTGGGTCGGCACCGAAATCCCGCCGGCCAACCTGACCGTGCCGCAGGTTTATTACTGAMKNPALAVALGVVLFPLLTLPAHADKLDDIIGSGKLRCAVTLDFPPMGFRDESNKPAGFDVDYCHDLAKVLGVDAEVVETPFSDRIPALLSGRADVIVASTSDTLERAKTVGLTVPYFAFQMVVLTRDDTGINGYADLKGKKLGNTSSTYEAIALEKDQKSWGSGSFRAYQSQNDTLLAVAQGHIDATVVTNTVAAATIKSGKYKGLKIAGDAPYVIDYVSLGAKRNEYGLLNYLNLFVNQQVRTGRYKELFVKWVGTEIPPANLTVPQVYYPGPT0014265_35DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0014265-lhpP-K23061NANA
D1-35_03964750rhaS_10HTH-type transcriptional activator RhaSATGTACCCCTCACTCGCCTCCCTGCCCCCCTGCGACCTCGACACCCTGCTCCAGAGCCTGCAACCCATCGCGCCGCTGCTCGACACCCTCATCGACACAGTGTTCTTCATCAAGGACAACCTGGCCCGCTATGCCTTCGTCAACCAGACCCTGGCCCGACGCTGCGGCTTCAAGGAGCGCAACGACCTGCTCGGCCTCACCGCCGAACAGGTATTCCCGGAACGCTTCGGCCCGCTGTACACCGAACAGGACCGCCGAGTGCTCGCCAGCGGAAGAGAACTGGCCGACCAACTCGAACTGCACCTGTATTACGGCAACCAGCCAGTGTGGTGCCTGACCCACAAACTGGCCCTGCACGACCTCACTGGCCGGATCGTCGGCCTGGCCGGAATCTCCCGTGACCTGCAACTGCCACAATCGAGCCACCCGGCGTTCCAGAAGCTGGCGGCGGTGGATGCGCACATCAAGCGCCACTTCGCCCGTACCATCAGCCTGGCCGAGCTGACCGCCATCGCCGGGTTGTCGGTTGCGCAACTGGAGCGACACTGCAAGCGCATCTTCCAGCTCACGCCCCGACAGATGATTCACAAGGCGCGCCTGGAAGAAGCCTCGCGCTTGCTGCTGGAGCAGGACCTGCCCATCACCGAGATCGCCCTGCGCTGCGGCTACACCGATCACAGCGCGTTCAGTCGCCAGTTCCGCGCCCTGACCAGCCTGTCTCCCAGCCAATATCGGGAAAACCAGCGCTGAMYPSLASLPPCDLDTLLQSLQPIAPLLDTLIDTVFFIKDNLARYAFVNQTLARRCGFKERNDLLGLTAEQVFPERFGPLYTEQDRRVLASGRELADQLELHLYYGNQPVWCLTHKLALHDLTGRIVGLAGISRDLQLPQSSHPAFQKLAAVDAHIKRHFARTISLAELTAIAGLSVAQLERHCKRIFQLTPRQMIHKARLEEASRLLLEQDLPITEIALRCGYTDHSAFSRQFRALTSLSPSQYRENQRNANANANANA
D1-35_03965642dctD_4C4-dicarboxylate transport transcriptional regulatory protein DctDATGCCACTCAGCCTGCAAGCCAAGTTGCTGCGTGTCCTTGAGGTGCGAGCCATCGAGCGTTTGGGCTCTACCACGGTCATTCCACTGGATATCTGTGTGATTGCCTCGGCCCAGCGGCCCTTGGCCGAGTTGGTGGAGCGGGGTGAGTTCAGGCGCGATCTGTATTTTCGCCTCAATGTGCTGACGATCCAGTTGCCAGCGCTACGTGACCATCGCGAAGACATCGTTCCACTGTTTTCCCAGTTCGTGAACGCAGCTGGGCAAGACCTGGGGTGCGCACCGAAACCCATATCTCCCGAGCTCATGCAGACACTGCTGAGCCATCCCTGGCCGGGCAATATCCGTGAACTGAAATCGGCGGCCAAGCGATATGTCCTGGGGCTGGCGTCGATAACCCTAGGCTCAGGCACGGAGATCGAGGGGCGCACGCTCAAGGCGCAAATGCGTGCTATCGAACGCATCCTTATCCAGGAAGCCCTCAAGCGTCACGGGCACTCGATTGATGCGGCGAGTGTGGAATTGGGCATACCCCGTAGAACCCTTTATCACCGGATCAAATCGTTGGATGTATTCGGCAAGGCATCTTTGCTTGAAAAAAATCTGGAACCTGATTCGGAGAACTTTCCACCCATTATTACCTAGMPLSLQAKLLRVLEVRAIERLGSTTVIPLDICVIASAQRPLAELVERGEFRRDLYFRLNVLTIQLPALRDHREDIVPLFSQFVNAAGQDLGCAPKPISPELMQTLLSHPWPGNIRELKSAAKRYVLGLASITLGSGTEIEGRTLKAQMRAIERILIQEALKRHGHSIDAASVELGIPRRTLYHRIKSLDVFGKASLLEKNLEPDSENFPPIITPGPT0017310_1124DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017310-dctD-K10126NANA
D1-35_03966351hypothetical proteinATGGTCGGAAAAATCTCGTCTAGTAATCCTTTTGCGAACATTACCGATGCCGCAATTGCGGGCACCAATGCATTTCAAGGTACCAAGCAAGCAGTCAATGATGTTAAAGGCAACGCTGCGCAGCAATCTCAAGCGACGCGTATGTCTGGCGGGGGTGATGCCGCGTCTGCACAAGTGGCGGCAATGGAAAGCATGGACAAAAAACAGGCTCAGATGATTGCGCTGCAGAATAAGGCGGCTGAGCAGAACCTGATGCAGAATACCATGGCCTCTATTGCCGGGGCTCAAGCCGATACGGCGAACAAGTCTATTTCGAACGTCGCCCAGACGATGAAAGGCATTAGCTATTAAMVGKISSSNPFANITDAAIAGTNAFQGTKQAVNDVKGNAAQQSQATRMSGGGDAASAQVAAMESMDKKQAQMIALQNKAAEQNLMQNTMASIAGAQADTANKSISNVAQTMKGISYNANANANANA
D1-35_03967741hypothetical proteinATGATGTCCGGCGGCAAGCCAGACTTTGACAGCCCCTTGGGCAAGATGGTCAAGGACAAACTGTCCGAGAAGGGCGGGATGGGTCTAATGGGTATGGCATCGAATCCTCAAGAGACCTTGAAGAACGCCCTGATGGACGTTGTTAAAGACAAGATGGGTAGCAACTTCATTGCCAATGCCGGAGGCCGGGACAGTAAAGACCTCATGGGGCAAGTGGTGGGCGGCTTGGCTCAGTCCGCGTTGAATAACGCACTGGAACGCAAAGGCGACGGGACGACCTTTTCCAAGGCTGACAAGCCACTGCTTCAGCAAGTGGCTGATTATATGGACAAGAACAAGGCCACCTTTGGAGCGCCAGATTCCGGTTCCTGGAGTAAAGAGCTGGATGAGGACAACTATCTGTCAACGGGGGAAACCGCCAAATTCAAACAGGCGATTGAACAAGTGGCTCAGCACACGGGAGGCTCGGGGAGCAGAACTGATTATCCCGGGGTGACGGCGGGAGGACAAGGTGGCTTGGGCAGCAGTCCTGCGCCAACGAGTGGGGGCATGAGTGATATTGAGCAAGTGCGCCAGATGATAAAAGGTAGCGAAGGCATGGAGGGTTTTCAACAAGGATTGCAGCTAGGGTTGGGAATCGCTTCCGACTCGCCGTCCGGCCTCGCGATGAATCAAGGCGAACACACCGCTGCCCATGCCGCGCAGAACGTCCTCGACGTGATGCGCGCCAGCGTAACTTAAMMSGGKPDFDSPLGKMVKDKLSEKGGMGLMGMASNPQETLKNALMDVVKDKMGSNFIANAGGRDSKDLMGQVVGGLAQSALNNALERKGDGTTFSKADKPLLQQVADYMDKNKATFGAPDSGSWSKELDEDNYLSTGETAKFKQAIEQVAQHTGGSGSRTDYPGVTAGGQGGLGSSPAPTSGGMSDIEQVRQMIKGSEGMEGFQQGLQLGLGIASDSPSGLAMNQGEHTAAHAAQNVLDVMRASVTNANANANANA
D1-35_03968357hypothetical proteinGTGACCATTTCCAATGTGAATTCATTCAGGGGCGTCGCCCCAGAACATGAGCTGGAGATGGTTTCCGCTCCCGCCCAGGCCGATGTAGATCTGTTTGACAATGCCATGCGCGGCAATCATGAACCTGCTGGCCTGGCAAGTAGCCTGATGGGTGCCATTTCGGATCGCCTCGCCGGCCAAGCCGAACTCTCGCATCAGGCTGAGCGCGCAATGAAGTCCGCGTCGGTTTCCACGGATCCGATGGATATATTGAAGATGAGTGGAACCCTTTCCCAATATTCATTGCAAACGGCACTCACCACCAAGGTAGTGAGCAAAGGCGCACAAGTGCTCGATAAACTGACCAATCTGCAATAGMTISNVNSFRGVAPEHELEMVSAPAQADVDLFDNAMRGNHEPAGLASSLMGAISDRLAGQAELSHQAERAMKSASVSTDPMDILKMSGTLSQYSLQTALTTKVVSKGAQVLDKLTNLQNANANANANA
D1-35_03969804hypothetical proteinGTGAAAGTACCCGGCTTATTAACCGTTCTGGCGTTGCTCGCGCTCGCCGGATGCAGCGACGACACCGTGCTGTTCAGTGGCATGACTGAGCAGCACTCCAACTCAGTGATCGCCAAGTTGGCCCAGGAGCACATCGCGGCCCGTAAGGAGATGGAAAAAGCCGGCGTCACCGTAATCGTTGCCAACGGTGATGTGAACCGCGCGGTGAGGGTGCTTGATGCAGCAGGTCTGCCGCATCAGACACGGACCAGCCTGGGAGAGATATTCAAGAAGGAAGGGGTCATCTCTACGCCTCTGGAAGAGCGTGCCCGCTATATCCATGCGCTGTCGCAGGAGTTGGAGTCGACGTTGTCCCAGATCGACGGGGTCATCGTCGCTCGCGTGCATGTCGTCTTGCCGGAGCGTATCGCGCCGGGCGAGCCGGTTCAGCCGGCTTCCGCCTCGGTGTTCATCAAGTATGCGGCGTCGACGCTGGATCCGGACAGTGTCCGCGGGCGTATTCAACAGATGGTTGCCAGCAGCATTCCTGGGATGAGTCAGGACAGCAGCGCGGCAAAGAAATTTTCGATTGTATTCGTGCCGGCGGTGGAGTTTCAGGATCCGGAACATCTGGTGCCTTTCGGTCCGTTTCTGATTGACAGCGAGGATGCCGGATTCTGGTGGGTGATGGTCGTCACCTTGCCGCTGTGCCTGGTGTCCATCGCGGGGGGCGGGGTCCTGATGTTGCGTCCGGACTGGCGCCAGGCATTGTTTGCGCGCTTGCGCGCCAAGCGTCGGCCAACCGGTTTGCCCGCACAGCTATGAMKVPGLLTVLALLALAGCSDDTVLFSGMTEQHSNSVIAKLAQEHIAARKEMEKAGVTVIVANGDVNRAVRVLDAAGLPHQTRTSLGEIFKKEGVISTPLEERARYIHALSQELESTLSQIDGVIVARVHVVLPERIAPGEPVQPASASVFIKYAASTLDPDSVRGRIQQMVASSIPGMSQDSSAAKKFSIVFVPAVEFQDPEHLVPFGPFLIDSEDAGFWWVMVVTLPLCLVSIAGGGVLMLRPDWRQALFARLRAKRRPTGLPAQLPGPT0029650_217DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-TYPE_III_SECRETION_CORE_APPARATUS,PGPT0029650-yscJ|sctJ|hrcJ|ssaJ-K03222NANA
D1-35_03970579hypothetical proteinATGTTAGTTCGCCGAAATTTGTCCTTGGGCGATCACCCCCTGGGGAGCGAGTTGATCGTTCGTCAAGAACGGTTCGCCGACTACCGGACAGCCATTGATGTGCTGTCGCAGGCACGGGCCGACGCGGATGCATTGGTGCTGCAGGCGGAAAACCTGCGGCAGGAATATCTGGATCAAGCGCTCGCTGAGTTCTGGGGCCAGGCCAGTTGTTTTCTGCAAGCGCTTGAGGCAGAACGTCAGCAATGCAGGAACAGTGTGATTGATGTTTGCCGGGAATTATTGAACATTGTCATTGACCGGCTGTTCGATGAGTTCCAGCCCCAGGAGCGTGCCAGAATCTTGCTGGAGCACCTGGCGGCTTCCCGTGCATACCCCACCGGTAGCGCCACCTTGAGGTGCCATCCAGAGCTTTTCAGCGAAGTGCAGGCTTGGCTTGCAGCCGACAACGCTTCGGCTCTTTGGCAACTGAGAGAGGACATTACGATGCCGCTCCAGTCCATTCGTCTGAGCACCGACGCCGGCGAGTACGACGTTGATTGGATCGGTCTACAACGCTCATTCCGGGCCACGGCAATTTAAMLVRRNLSLGDHPLGSELIVRQERFADYRTAIDVLSQARADADALVLQAENLRQEYLDQALAEFWGQASCFLQALEAERQQCRNSVIDVCRELLNIVIDRLFDEFQPQERARILLEHLAASRAYPTGSATLRCHPELFSEVQAWLAADNASALWQLREDITMPLQSIRLSTDAGEYDVDWIGLQRSFRATAIPGPT0029655_381DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-TYPE_III_SECRETION_CORE_APPARATUS,PGPT0029655-yscL|sctL-K03223NANA
D1-35_03971225hypothetical proteinATGATCAACTTTAAATCCGTCCAGAACCAGTTGGAGAACAATTTCTCCAACGCCCATGAAACGGCGAATGATGCAGCATTGGCTGCTGCTGAGAGCGGCAACCCTGAAGACATGAGGGCTTTCGCTCAAGCGAGCCAATCAGTGGCCACCGCGACCGTTGTCATGAGCGAGGGTATGCGTGCTCATCACGGCATGACCAAAGCGATCATTGATGGAATTCAGTGAMINFKSVQNQLENNFSNAHETANDAALAAAESGNPEDMRAFAQASQSVATATVVMSEGMRAHHGMTKAIIDGIQNANANANANA
D1-35_03972426hypothetical proteinATGGAATTCAGTGAGTTCAGCGCGGGACTGACCCGGTGGCTCGATGACCGTTCGGTCGCACCTCTGGATTGCTGGGTTGACGGTGCGAACGTGCAGCTTGCCTGGGTTGAAGAAGGAGTGCGCTGCAGCATCGACGTATTGGATCCGTTTGACGCCAGCGCGCCAGATCGATTGATGGGCATCCTGGCACAGGGTGGCGCAAGCGTTGCGTGCCGTTGTCCGGGGGCGTTGGGTACCGACCCGCAAAGCCAGTGTTTGGTGCTGGTGTACTGGATGTCACCGCCCGGTTCGGTCGAGGCCTTGCTGGGAGTGCTAGAGACCCTGGCCAATCAGCGCGCAGCCATGCTTAGCCTGATGCATAAAACCTTATTTGACTCGCCTTCGGCCGAGTCCCGTCTAGCAACTAATTGGCACACTGGAGTGTGAMEFSEFSAGLTRWLDDRSVAPLDCWVDGANVQLAWVEEGVRCSIDVLDPFDASAPDRLMGILAQGGASVACRCPGALGTDPQSQCLVLVYWMSPPGSVEALLGVLETLANQRAAMLSLMHKTLFDSPSAESRLATNWHTGVNANANANANA
D1-35_039732079sctC_2Type 3 secretion system secretinATGCATAAGGCCTACCGGTGGTTACCGTGGCTGTTATTGGGACTGAGCGCCCCGGCGCTCGCGGCGATACCGCCAGAGTGGAAACAAACGGCCTATGCGTTCGACGCGCAACAGAGCGAGCTTTCCAGTGTTCTTGAAGCATTTTCCCGAGAGTTTGGCGTCAGCCTTGAAATGGATCCCGTCGAAGGGGTCGTTGAGGGGCGTATCCGCGCGGACAGCCCGCAGGCGTTTCTGGATCGATTGGGCCAACAGCATCAATTTCAGTGGTTCGTCTACAACAACACGCTGTACGTCAGCGCGGCCCGTGACCAGATAACCGAGCGAATCGAGGTATCCCCGGACGCCGTTGATGACCTCAAAGGCGCACTGACTGAACTCGGCTTGCTCGATTCACGATTTGGCTGGGGTGTCCTGCCGGATGAGGGCGTGGTGTTGGTCAGCGGGCCCGCGCGGTATGTTCAGTTCATTCGCGACTACAGCAGTAACGTCGACAAACCCGAGGAAAAGCAGGATGTCGTGGTGTTGCCCTTGCGTTACGCAAACGCCGCTGATCGCACCATCAGTTACCGTGATGAACAGCTGACCGTTTCAGGGGTAGCCACGATCCTCAAGGAGTTGCTGGATAGCCGCCCGCAAGGCGGATCAGGTAGCGTCTTCAATGTGTTGCAAGGCGCGGGACTGGGCGCTGGGGCAAGCAGCGGAAGCAGCTTTGCAGGTACTCCGAGTTTGCTGGGCGGCTTGGCCGATGATCAGTTGCAGCAAACCCTGGATCGCGTGATTGCCGGCGCCGGCGGCGCTCAGAACAAGGGCGGCTCCGCTGGCAGGTCGCGGATACGGGTCGCAGCCGACGTCCGCAACAATGCGGTGCTGATCTACGATTCGCCCAAACGCCGCGCCTTGTACGAGAATCTGGTCAAGCAGCTTGATGTGCCGCGCAACCTGATCGAAATCGACGCAGTGATCTACGACATCGACCGCGACGAGTTGGCCGAGTTGTCCAGTAACTGGAATGTCTGGGCCGGAGGGACCAATGTCAGGGGATCCTTGCTTGAATCCGGCAGCTCCACGCTGTCGGCCGAAAACGCCGGGCGATTCGCCCTGGCGGTCCGTACGCTTGAAGCCAAGGGGGCGGCGACGGTGATCAGCAATCCTTCGATCCTCACCTTGGAGAACCAGCCCGCTGTCATCGATTTCAGCCGGACCGAGTTCCTCACCGCGACCGGAGAGCGGGTCGCCGATATCCAGCCGATTACTGCCGGAACCAGCCTGCAAGTGGTGCCGCGCTCGATGCAGCACAACGGCAAGACGCAGGTGCAGTTGATCCTTGATATCGAGGACGGGCAAATCGAAGCATCACTGCTTGATGGCACCAAACCCAGCGTGCGAAACGGCAGTGTCAGCACTCAGGCGGTCATCGCCGAGCGTGGATCGTTGGTCGTCGGTGGTTTCCATTCTCTGCAATCGAGCGACAGGGTCAGCAAAATCCCTTGGCTCGGTGACATTCCGCTGATCGGAAAATTGCTGTTCACCTCCAGCAGCCGCAGCACCAGCAAGATTGAACGCTTGTTCATTCTGACGCCTCGGTTGGTGGGCAACCAGGTTGACCCGGCACGTTATGTCGAAAGCGGCAACCCGGAAGATATCGACTCCGCCGGCCAGCGGATCAATGGGCGCCATGGCGACGGGCAACCCACCCGAGTTGAGATTCAGCGCGCGTTCACTCAGTTGTTGAGTGACGTGCAACCGACTGGCTTTACGCCGAGTAACGAGCCTTTGTTCACGCCGTCGACTTTATGCGCGACGCAGCAGGGCCTGGTCATCGATGCCGATCGCAGCCAGTGGTATGGGCGCAATGCCTGGAGTATCGGCGTGGTGGTCGCGCGTAATACTGGCGATAAACCGCTGCGCATCGATGAAAGCAATTGTGGCGGGCGCTGGGTCCTGGGTGTCAGTGCATGGCCTCGCGCCTGGTTGCAGCCTGGGGAACAGAGCGAAGTATATGTCGCGTTGCGTAATCCCCAGTCGCTCAGGAGCAACGCGCCCCTTCGCGACTCGTTACTCAAGGAGACTACCCAATGAMHKAYRWLPWLLLGLSAPALAAIPPEWKQTAYAFDAQQSELSSVLEAFSREFGVSLEMDPVEGVVEGRIRADSPQAFLDRLGQQHQFQWFVYNNTLYVSAARDQITERIEVSPDAVDDLKGALTELGLLDSRFGWGVLPDEGVVLVSGPARYVQFIRDYSSNVDKPEEKQDVVVLPLRYANAADRTISYRDEQLTVSGVATILKELLDSRPQGGSGSVFNVLQGAGLGAGASSGSSFAGTPSLLGGLADDQLQQTLDRVIAGAGGAQNKGGSAGRSRIRVAADVRNNAVLIYDSPKRRALYENLVKQLDVPRNLIEIDAVIYDIDRDELAELSSNWNVWAGGTNVRGSLLESGSSTLSAENAGRFALAVRTLEAKGAATVISNPSILTLENQPAVIDFSRTEFLTATGERVADIQPITAGTSLQVVPRSMQHNGKTQVQLILDIEDGQIEASLLDGTKPSVRNGSVSTQAVIAERGSLVVGGFHSLQSSDRVSKIPWLGDIPLIGKLLFTSSSRSTSKIERLFILTPRLVGNQVDPARYVESGNPEDIDSAGQRINGRHGDGQPTRVEIQRAFTQLLSDVQPTGFTPSNEPLFTPSTLCATQQGLVIDADRSQWYGRNAWSIGVVVARNTGDKPLRIDESNCGGRWVLGVSAWPRAWLQPGEQSEVYVALRNPQSLRSNAPLRDSLLKETTQPGPT0029635_81DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-TYPE_III_SECRETION_CORE_APPARATUS,PGPT0029635-yscC|sctC|ssaC-K03219NANA
D1-35_03974210hypothetical proteinATGAGCAAGATGAACTGGGCTGGGTGCGGCCTTCTGTGTGTGGTGCTCTCCGGTTGCTCGACAGCGTCGGGCGGCTGTTCGGGACCGTCCTGCGACCGGCCGGACTCCAATAGCCGGGAACTGGTGATCTGGTGGCCAGCGGACATGCGTACTGGCTTGGAGAATCCGCGGGAGACCACGGACTATACTATCGTGCCACTGCGGGATTGAMSKMNWAGCGLLCVVLSGCSTASGGCSGPSCDRPDSNSRELVIWWPADMRTGLENPRETTDYTIVPLRDNANANANANA
D1-35_03975348hypothetical proteinATGATGCAGGTGTCGGGGAAAGCGGAATTCTACGAACAGGTTGCTGCTGGACAAACAGCGATATGGCCGGTAGCGGCGGGGGTTTCTTTCGTGAGTCGCCATGAGCACCATGATTGGGGCATCGCCTTGCACATCGACAGTCGCGCGCTGGAGCCCCAGCAATTGCGTGAGGCGCTGGAGCGGCGCTTCACGCAGTCCTACCTGTTCCCAGACTACTTTCTGTTCCTCGATGCCCACCGCGATTTCGTCGTGTGGCATGCGGTGCCGTCGTCTACCCAAGGTCGCGCGGTGCTCGATGATATCTGCCGACATCAGTTGTTGTTGGCAGGCTTGAGCCCGTTGGACTGAMMQVSGKAEFYEQVAAGQTAIWPVAAGVSFVSRHEHHDWGIALHIDSRALEPQQLREALERRFTQSYLFPDYFLFLDAHRDFVVWHAVPSSTQGRAVLDDICRHQLLLAGLSPLDNANANANANA
D1-35_039761422hypothetical proteinATGGACCCGATAGCACCGAACCTGGGACGTACCCTGCCGGATGCTCAAGTCGAGCTTCGGCACCGCCATCGCGGCGCTGATTTGAATGCCTTGGAGCGTGGCGAGGCACCTGATCACCTGCCTGCCTTCACTTCGCGTGCCCGCGCACATGTGGCGGGGCTGAGCCAGGCCTTCCATCGCGATTACCTGGCGCCGGCAGGCAGAGCCACGGGCGCGCTATGGGAAAGCGCCAAGGAACACAGCGCGGCGGTGGGCAACAGCGTTGGACGAGGGGCAAAACTTGCATTGAGCGACAGCCTGGCCAATCTGCCCTCCTCGCGTACGACGCTTGCCGCTGCGGGCCATACGGTCCAACAGATGGTCAACTGCGGAGCACCTACCTATCTACGCGAGTTGGCATTCATGCATGCCTACAGTGCGCTGAACGAGGGCCTGGCGAAAAAAAGCCCAGGGGCAATGCTGGCTTTGCAGGCCGCCGTGTCATTGACGACCATTGCCACCCAGCTCTATGTGCGCCAACCGCGCCTGGATCGTCTCGCGGCCGACTCCAGCGATGCGGTACGCGGGCACTTCGCCCTCAGCGAAGCGAAATGGAACGCTCTGCCCCCCGATAAACAGGACGCGCTGCGGGGACAGATGAAGCGCGATTCGCGCAACATCACGCGCAACCAGGTCGTCGCGGAAGCGCTTTACCTGGGCATGGGCGCCATGGGCGTTGCGCGTGGTGATGGTGCGCTGAGCGCGAGGGTTCTGGCGACCCAGTTACGCGACGTGACCTATGCCCTTTCTCGCGAAACCATGCAGGCCACCTTCAGCATGACCGCGCCTCAGGACAACACCAAGACTTACGGGGTCGACGAGGACAATATGCCAACGCTCGGCTGGGCCTACGGTGCGATGACCCTGAGCATGGGTTTCATGCTTGACTCGATCAGCGAACAGGTTCTACCGCCAGGCCAGACACTGACGAGTCCGGCACTGCTCGGGCCCGATCAGCAACCGTTGCTGGGCGAGGCACTGGCCTCCTCCATCCAGTCACTGGCCGGCACCCGAGCGGCGTTCAACACGGTAGTGGCAGCCCTGGACAATCATCTGCAACGGCATTTCGACACGCGCCAGGTCGGCACCAACCAGGAGTTGAAGCCGAACCTGCCGCTCAAGGACTATGGTCGGGTTCTCGATCAATCGCCGGCCCGTGTTGCCTGGGTCAGCCTTGCTGGCGCAATCAATATGGCCACCGGCGAAGCACTGCGCGACAAGGTCCCGCCCGCTCTTTCCGGTTTTCTCGGCAATCTGGGGACCGCTGCGGCCATGGGGCTGGCCTATCGCACGGTCAACCAAACGTTTCAGTCCCACGCTAGTGTGCGCAAGGCCGTCGACAAACAGTCGACGACAGCTGCCGCCGGGCAACAGCCAGCCTGAMDPIAPNLGRTLPDAQVELRHRHRGADLNALERGEAPDHLPAFTSRARAHVAGLSQAFHRDYLAPAGRATGALWESAKEHSAAVGNSVGRGAKLALSDSLANLPSSRTTLAAAGHTVQQMVNCGAPTYLRELAFMHAYSALNEGLAKKSPGAMLALQAAVSLTTIATQLYVRQPRLDRLAADSSDAVRGHFALSEAKWNALPPDKQDALRGQMKRDSRNITRNQVVAEALYLGMGAMGVARGDGALSARVLATQLRDVTYALSRETMQATFSMTAPQDNTKTYGVDEDNMPTLGWAYGAMTLSMGFMLDSISEQVLPPGQTLTSPALLGPDQQPLLGEALASSIQSLAGTRAAFNTVVAALDNHLQRHFDTRQVGTNQELKPNLPLKDYGRVLDQSPARVAWVSLAGAINMATGEALRDKVPPALSGFLGNLGTAAAMGLAYRTVNQTFQSHASVRKAVDKQSTTAAAGQQPANANANANANA
D1-35_03977948hypothetical proteinATGCATTCGTTCAGCTCGCGGTCCCGATCTTCGGGATCAATCCCGCCCCCAGAGCAAACGAGCACATGGTTGTCCGAGGCTGCGGAGCGGCTCGGCATCCCCTCTGCCCAGGCACGAACATTCGCCCGCAGCACCCAACTGTCATTGCCGGGGATGACCTTGCAATTGTCACTCTGGCAGACGTCTCCGGCTCAACAATGGGTAGCGTTTGGCCTGCTGTCACGGCCAGGCGGGTTGCCGGTTGAAGCCTGGAGCGAGTTGCTGCTGCGGTCCAATTGCGCCATATCGGCGATGAACACTAGCAGCGTGAGCCTGAACGACAGCGGTGACGCCTTGCTCGTACTGCGCCTCACCTCACAACCGCACCACCAGCGCGAGATGCTTGCCGATGAGCTGAGCGATCTGTTGTCCATCGCCGAAAGCCTCGTGGCGGGCGCTACCGCACTGCAAGGTAACAAGAGCGGGGCAACTGCACCCGTCAGCACGATGCCCAAGCAAAATGAGCGCTCCGCGCAACAGGCGCAGGCGGCGATGAATCGGCAATGGCATCGTCCAGTGCTGATCGCTGCGCTGCAACATTTGGGTGTCGCCGTCCCACCCGTCGAGCAGATCAAGACTGTCGGTGTCATCCAGGCCAACGGCCGTGTCTATGAAGTGATCGCTGACAGTGATCACCAACACCTGCTCGTCAGTACACCGCTGCCCACCTCACTGATCACGGCGACCCAACGCGAACGCGCACTACTGGCCAACCTACACCTGATGATGCTGACGCAATGTGCCGTGGTTCTCGCGCCGCACGGCAGCGCGTTACAGGCGCGCTGGAACAGCGCGGGGCTGGACGGTCAGGCCTTCGCCGAATGGCTGCTGGATTTCGGCCAACTGGCGGAAAGCTTCCGGCAGACCTCGGCCATTGGTACATCAAGGAATCTCGCATGGACCCGATAGMHSFSSRSRSSGSIPPPEQTSTWLSEAAERLGIPSAQARTFARSTQLSLPGMTLQLSLWQTSPAQQWVAFGLLSRPGGLPVEAWSELLLRSNCAISAMNTSSVSLNDSGDALLVLRLTSQPHHQREMLADELSDLLSIAESLVAGATALQGNKSGATAPVSTMPKQNERSAQQAQAAMNRQWHRPVLIAALQHLGVAVPPVEQIKTVGVIQANGRVYEVIADSDHQHLLVSTPLPTSLITATQRERALLANLHLMMLTQCAVVLAPHGSALQARWNSAGLDGQAFAEWLLDFGQLAESFRQTSAIGTSRNLAWTRNANANANANA
D1-35_039781077yscUYop proteins translocation protein UGTGAGCGAAAAAACCGAAAAGGCAACGCCCAAGAAAGAGCGCGACGCGAGGGAAAAAGGCCAGGTTGGGCAGAGCCAGGACCTGGCCAAACTGCTGGTGCTGATGGTGGTCAGCGAAGTCTGTCTGGGCATGGCCGAAGAAAGCATGACGCGCCTGCAGCACCTCACCGAATTACCCTTGCGACGATTGAACGAACCCTTCACCAGCACGGCCGTCGAGCTCGGCGGCACAGCATTGTGGACGCTGATTTCCTTCATTGTGGCCAGCGTCGGCGTGGCGATCCTGATACGCCTGGCCGGCACCTGGATGCAGATCGGTTTTCTCTTTGCCCCCAAGGCCCTCGAGGTCGACCTCGGCAAGCTCAATCCAGTCGGCCAGATCAAGCAGATGTTCTCTAAACAGAATCTGATGAACCTGTTGCTGAGCATCCTCAAGGCACTGGCCATTGCGATCATTCTGTATGTCTCGATCATGCCCATCCTGGGCAAGCTGGTGCTGTTGGCCGACACCGATCTCGTTACCTACTGGCGCTCGTTGCTGGAGGTATTTCAGAGCATCTTGCGCAACACCCTTGGGCTGTTGCTGGTAATCGGGATGGTCGACTTTGCCCTGCAAAAATATTTCCACGCCAAGAAGTTGCGCATGAGTCACGAAGACATCAAGCAGGAATACAAGCAGTCCGAAGGCGATCCGCATGTGAAGGGTCATCGCCGTCAGCTGGCGCACGAATTACTCAACTCCGAACCCAGCACCGCCCCCCGGCCGGTCGAGGACGCCGACCTGTTGCTGATCAATCCAACCCACTACGCCGTGGCGCTGTTCTATCGGCCAGGCCAGACCCCTTTGCCGCTGATCCATTGCAAAGGACAAGACGATGAAGCACTGGCGCTGATCAAGCGCGCCCAGATCGCCAGGATTCCGGTGGTCCAGTGTGTCTGGCTGGCGCGCGCGTTGTACACCGTTCGTACGGGTCGACATATACCGCGGGAAACCCTGCTGGAGGTCGCGCACATTTACCAGGTCATTCGCCAGCTTGATGAGGTGACAGAGGAAATCATCCAGCTCGAAACCCACTGAMSEKTEKATPKKERDAREKGQVGQSQDLAKLLVLMVVSEVCLGMAEESMTRLQHLTELPLRRLNEPFTSTAVELGGTALWTLISFIVASVGVAILIRLAGTWMQIGFLFAPKALEVDLGKLNPVGQIKQMFSKQNLMNLLLSILKALAIAIILYVSIMPILGKLVLLADTDLVTYWRSLLEVFQSILRNTLGLLLVIGMVDFALQKYFHAKKLRMSHEDIKQEYKQSEGDPHVKGHRRQLAHELLNSEPSTAPRPVEDADLLLINPTHYAVALFYRPGQTPLPLIHCKGQDDEALALIKRAQIARIPVVQCVWLARALYTVRTGRHIPRETLLEVAHIYQVIRQLDEVTEEIIQLETHPGPT0029685_185DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-TYPE_III_SECRETION_CORE_APPARATUS,PGPT0029685-yscU|sctU|hrcU|ssaU-K03229NANA
D1-35_03979795hypothetical proteinATGCCGTTCAATGCCGAGTATCTGTTCGAACTGATGCTCGGTATCGCTTTAGCCATGGCCCGGATCCTGCCGTGCATGATGCTGGTACCGGCATTTTGCTTCAAATACCTCAAAGGGCCGCTACGTTATGCCGTGACCTGTGCGGTTGCGATGGTTCCGGCGCCGAGCATCGGTCGGGTGCTGTCCGGACAACATGATAACTGGCTGATGATCGGTGGCTTGTTGCTCAAGGAAATGGTCCTGGGCGTGCTGTTGGGGTTACTGCTGTATATGCCGTTCTGGATGTTCGCGACGGTCGGCGCGTTGCTCGACAGCCAGCGCGGTGCACTCAGCGGCGGCCAGATCAACCCTTCCCTCGGGCCCGACGCGACACCGCTGGGCGAGCTGCTGCAGGAAGTGCTGATCATGCTGGTCATCCTCTCCGGCGGCCTGTCGCTGATCACCCAGGTTATCTGGGACAGCTACATCATCTGGCCGCCCACCGCATGGCTGCCGATCATGACGGTGGAGGGGCTGGACATATTGCTTGGCGAACTGAACAGGACCATCCAGCACGCATTGTTGTATGCGGCGCCGTTCATAGGGCTGTTGCTGCTGGTCGAGGCCGCTTTCGCCATCGTCGGTCTTTATGCCCAGCAATTGAATGTTTCGATTCTGGCGATGCCGGCCAAGAGCGTCATCGGACTGCTGTTTCTGCTGGTGTATCTGCCCACGCTCCTGGACCTGGGTAACGCCGAGCTTGAGCGCTGGTTCGATCTGAAATTTCTGCTGAGCCTGCTGGTAAAAGTCCCGTGAMPFNAEYLFELMLGIALAMARILPCMMLVPAFCFKYLKGPLRYAVTCAVAMVPAPSIGRVLSGQHDNWLMIGGLLLKEMVLGVLLGLLLYMPFWMFATVGALLDSQRGALSGGQINPSLGPDATPLGELLQEVLIMLVILSGGLSLITQVIWDSYIIWPPTAWLPIMTVEGLDILLGELNRTIQHALLYAAPFIGLLLLVEAAFAIVGLYAQQLNVSILAMPAKSVIGLLFLLVYLPTLLDLGNAELERWFDLKFLLSLLVKVPPGPT0029680_321DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-TYPE_III_SECRETION_CORE_APPARATUS,PGPT0029680-yscT|sctT|hrcT|ssaT-K03228NANA
D1-35_03980267hypothetical proteinGTGGAAGCGTTGGAGTTGTTCAAGCAGGGCATGTACCTGGTGGTAATTCTTACGGCGCCGCCGCTGATTGTCGCGGTGCTGGTGGGCGTATTGACGTCCCTCGTGCAAGCCTTGATGCAGATCCAGGACCAGACGCTGCCCTTTGGTATCAAGCTGGTTGCCGTGGGCGTGACCCTGGCGGCAACCGGCCGCTGGATCGGTGTCGAATTGATCCTGTTCATCAATATGGCATTCGACCTGATCGCTCGCACCGGAGGCGCCGTTTGAMEALELFKQGMYLVVILTAPPLIVAVLVGVLTSLVQALMQIQDQTLPFGIKLVAVGVTLAATGRWIGVELILFINMAFDLIARTGGAVPGPT0029675_168DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-TYPE_III_SECRETION_CORE_APPARATUS,PGPT0029675-yscS|sctS|hrcS|ssaS-K03227NANA
D1-35_03981654spaPCOG4790Surface presentation of antigens protein SpaPATGATTCTGGATGGCATGAATCCGATCATGCTCGTGCTGTTTCTGGGTGCGCTGTCGCTGATCCCCTTGTTTTTGATTGTCTGCACCGCATTCCTGAAAATTTCCATGGTCCTGCTGATCACGCGCAATGCCATCGGCGTGCAACAGGTTCCGCCCAATATGGCGCTGTACGGCATTGCCCTGGCGGCGACGATGTTCGTGATGGCTCCGGTGGCGTATGAAATCCAGCAACGGGTTGCCGACAACCCTTTGCAGTTTGGCACCGCCGAACAACTTCAGGCCAGCGTAGACACGGTCATCGCGCCACTGCAAAACTTCATGAGCCGCAACACCGACCCGGACGTCCTGGCTCATCTGGTCGAGAACACCCACCGTATGTGGCCTCCCGAACTGGCCGAAAAAGCCAGCAGCAAGGACCTGCTGCTGGCGATTCCGGCGTTCGTATTGTCGGAACTGCAGGCCGGGTTCGAGATCGGCTTTCTGATTTACATTCCGTTCATCGTCATTGATCTGATCGTCTCCAACCTGCTCCTTGCGCTTGGCATGCAAATGGTCTCGCCCATGACCATTTCGTTGCCGCTCAAACTGCTGCTGTTCGTCCTCGTCCAGGGCTGGACGCGATTACTCGACAGTCTGTTCTATTCCTATCTGTGAMILDGMNPIMLVLFLGALSLIPLFLIVCTAFLKISMVLLITRNAIGVQQVPPNMALYGIALAATMFVMAPVAYEIQQRVADNPLQFGTAEQLQASVDTVIAPLQNFMSRNTDPDVLAHLVENTHRMWPPELAEKASSKDLLLAIPAFVLSELQAGFEIGFLIYIPFIVIDLIVSNLLLALGMQMVSPMTISLPLKLLLFVLVQGWTRLLDSLFYSYLPGPT0029670_255DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-TYPE_III_SECRETION_CORE_APPARATUS,PGPT0029670-yscR|sctR|hrcR|ssaR-K03226NANA
D1-35_03982381hrcQbType III secretion protein HrcQbATGAGCAATGACCGGCAGGATGAAGATCCGTTGTACGAATTCGACAATAACGATGAGGTGCCAGCCCAAGAGGCAAATGGCAAACAGCAGGAACAGCCAGGGCTGGCGCTCGCAAGCGACGAGCCCGCGCAAGACGCCGCGCCGCAGCAGCCATCTCCCCTGTCCGGCCTTACCCTGGCGTTGACCGTGCGGTGTGGCGAAGTGCGGCTGAGTCTCGAAGCGCTCGGTCGGCTGGCGGCCGGTAGCGTGGTCGATGTAACCGGCATGGCGCCGGGCGCCGCGACCTTGTGCCATGAAGACCGGGTGGTCGCCTACGGTGAGCTGGTGGACGTGGATGGACGCTTGGGCATGCAGATCACTCGCTTGGTATTTGATCAATGAMSNDRQDEDPLYEFDNNDEVPAQEANGKQQEQPGLALASDEPAQDAAPQQPSPLSGLTLALTVRCGEVRLSLEALGRLAAGSVVDVTGMAPGAATLCHEDRVVAYGELVDVDGRLGMQITRLVFDQPGPT0029665_635DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-TYPE_III_SECRETION_CORE_APPARATUS,PGPT0029665-yscQ|sctQ|hrcQ|ssaQ|spaO-K03225NANA
D1-35_03983723hrcQaType III secretion protein hrcQaATGAAAAAACTCAGCCTGCGGCGCCTGTCCAGCACAGCCTCAACGGCCTCCCTGGCGTTGGGGCGCGGCCGTTTTCTGGAGTTCACCAGCGGTGCTGAACAGATACGCATGACGCTCGGCCCGCTGGCACCTTGGGGCGTCGTGGCCGGCGAGCGCCACACAGGTTTTTCCAGCCGACACGGTCCCTTGTTGTTATCCAACGCCAACGCCCTGCTGAGCCTGTGCGGAGAAGTTCCGGTTCTTGCCACCGAGCCGCCGCAAGCCTGGTATTGGCAGTTGATCAATCAACAGCTGGCTCCCGGGCTGTGCGACCTGCTCGCCCCGTTGGAGCCACTGGCCGACGAGCCACTGCTCGACGATCGTCAGCAGTGCCGGGTGTTGATAGAGCGCGGCGCCGAAACGGCTTATGGGGTGCTAAGCCTCGGTGCGGCAACCCTGTTGCAGGTGCTCGATAACGGACCTTGGCGATTCATCGAACACGTCGTGCCAGAGCATTGGGCCCTGTCTCATCCGGTCATCGTTGGCCGCATGGACTTGCTGGCCAATGAGCTGCGCTCGCTACGTCCGGGCGATGTGCTGCTGCCCACCGACGCGGTCTTCGACATCCAGGGTCGGGGAAACCTGCAGTTGGGCCACCAGCGGTGGTCGGTGTGTACCGAAGACCGGAATGATCACTTACAGCTCAGGCTGATTCACGAGGAAGGTTCCATCAATGAGCAATGAMKKLSLRRLSSTASTASLALGRGRFLEFTSGAEQIRMTLGPLAPWGVVAGERHTGFSSRHGPLLLSNANALLSLCGEVPVLATEPPQAWYWQLINQQLAPGLCDLLAPLEPLADEPLLDDRQQCRVLIERGAETAYGVLSLGAATLLQVLDNGPWRFIEHVVPEHWALSHPVIVGRMDLLANELRSLRPGDVLLPTDAVFDIQGRGNLQLGHQRWSVCTEDRNDHLQLRLIHEEGSINEQPGPT0029665_613DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-TYPE_III_SECRETION_CORE_APPARATUS,PGPT0029665-yscQ|sctQ|hrcQ|ssaQ|spaO-K03225NANA
D1-35_03984561hypothetical proteinATGACCACTCCAATCAAGCAATCGCTGCCCCAGCGCCCCGCTGCGCCGACACCTTCCGCGGCGGCCACGAGACCCAGTGCCGCGGCATCCTCGACGCCGCCGGGCAGGGCTGCAGAGACCCAGCGCAACCGTACGGGCGATCCCGGTTCTGCCAGCGACGGCACCAGGCAGCTGAGTGCCGACGCGATGTTGTTCATGCAGATGCTTGTACCGCCGCCGCCCGCCTACTCGGGTGACCAGGGCAACTCGGGTAATGGTTCGAGTTCGTTCTCGATGTTTGCTCCGCTCGACGGGATACCAACGCAGCTGATTGATGAACTGGCCGTGCAGCTGCCGCAACACGGCAATCGCCCTTTCAGCGCCACCTTACTCATGCCCAACCTGGGTAAGGTGCAGATCCGTGCCCAGAAACGGGACAGCCATTGGGACATCGAGCTGGGCCTGGAACGGGCTGACGTGCTGGAGCGACTGAGCAAGCACCATGGCGCCTGTCAGCAAGCGTTCGCCCAGGCGTTGGAGCACGACGTCGAGCTGCGGCTACGGCCGACGGGGCATGCATGAMTTPIKQSLPQRPAAPTPSAAATRPSAAASSTPPGRAAETQRNRTGDPGSASDGTRQLSADAMLFMQMLVPPPPAYSGDQGNSGNGSSSFSMFAPLDGIPTQLIDELAVQLPQHGNRPFSATLLMPNLGKVQIRAQKRDSHWDIELGLERADVLERLSKHHGACQQAFAQALEHDVELRLRPTGHANANANANANA
D1-35_03985444hypothetical proteinTTGGACGAAGACCTCGATATGGACCCGGAGCGCCAGGCGCTGGAGCGTGTCATTGGCCTGCTCGGCCCCTTGCGCCAGCACCGCCAGGCCAGTGCCGAGCGTGCCCGCGGGCGCCTTGCGCGGGAGCTGGCGAAGTTGCGCGAGCAACTGCTGGCGAGCGAAAGCTCAATGGACCAGGAACGTACCAATCAGAAGCGCAAGCGGCGCGCCTTAGCCGATACCCACCTGCAAACCACCCTGGAGCTGGCGGATATCGACCGCTGGCACGAAAAGGAGCGGCGCATGCTCGATCGCCTGGCACAGATCCGCCAGGACGTCAGCCAGTTGCGTTTGCATATCGAAACGCAGGAGCAGTCGTTGCAACAAGCACAACTGGACGTCAAGGCGCGACAACGTGCGGTGGAAAAACTGGCCTGCATGAGCGAGACACTCAGTGAGGAATAGMDEDLDMDPERQALERVIGLLGPLRQHRQASAERARGRLARELAKLREQLLASESSMDQERTNQKRKRRALADTHLQTTLELADIDRWHEKERRMLDRLAQIRQDVSQLRLHIETQEQSLQQAQLDVKARQRAVEKLACMSETLSEENANANANANA
D1-35_039861350hrcNCOG1157Type III secretion ATP synthase HrcNGTGACCGATGCGCTTGAACAATGGGCCCGACAACAGCGTGCGCGACTGGCCAGTTGCTCGGCGGTGCGAATCAGCGGCAAGGTTTCGGCCGTGAGCGGGATCCTGCTGGAGTGCCAGGTACCTGCGGCCAAGATTGGCGATCTATGCGAGGTCAGCAAGGCGGACGGCAGCTCGATGCTGGCGGAAATCGTCGGCTTTACCGACCAGTGCACGCTGCTCAGCGCCCTTGGCACACCCGCCGGCATTCAAGTCGGAGCACGCATCCAACCACTTGGAATGGCGCATCGCATAGGCGTCGATGATCAGCTGCTCGGCAGCGTGCTCGACGGTTTTGGCCGACCATTGCTGGGCGATGGCGTCGGCGCTTTTGCCGATATCCATGACTGTCGCAGCACCACCGCGGTGATTGCCGATGCTCTGCCGCCGATGCAGAAACCACGCATCAGCAACCCGCTGCCCACCGGTATCCGCGCCATCGACAGCGCGATTCTGCTGGGCGAAGGGCAGCGCGTCGGCTTGTTCGCCGGCGCCGGCTGCGGCAAGACCACGCTGCTGGCAGAGATGGCCAGGAACATGGATTGCGAAGTCATCGTTTTCGGCCTCATCGGCGAACGGGGACGCGAACTGCGCGAGTTCCTCGATCATGAACTGGATGATGAACTACGCCAACGCTCGGTACTGATCTGCGCCACCTCGGATCGCTCCAGCATGGAGCGTGCGCGTGCCGCGTTCACCGCGACCGCCATCGCCGAAGCCTACCGTCAGCGCGGCATGAAAGTGCTGTTGCTGATTGACTCGCTCACCCGTTTTGCCCGCGCTCAACGGGAGATCGGCATCGCCGCCGGGGAACCGATCGGACGTGGCGGCCTGCCTCCCTCGGTGTACACCCTGTTGCCGCAGCTCGTCGAGCGCGCCGGCATGAGCGAGAACGGCTCGATCACCGCCATCTACACCGTGCTGATCGAGGCTGACTCGATGAACGACCCCATCGCCGACGAAGTCAGGTCGCTACTGGACGGGCACATCGTGCTGTCACGCAAGTTGGCCGAGCGCGGACACTATCCGGCCATTGACGTACCCGCGAGCATCAGTCGGATCCTCGGCAACGTCACCAGTCGCGAGCATGTCCGGGCCAATAACCGTTTGCGCCAACTAATGGCAGCGTACAAGCAGGTGGAAATGCTCTTGCGCCTGGGCGAATACCAGGCCGGCGCCGACCCGGTCACGGATCTGGCGGTGCAACTGAACGACAGCATCAACCGCTTCCTGCGCCAGGACCTTCGCGGGCCAGTAGCGCTTGATGAGACGCTAGCCCAGCTCAATCACATTACCTCGCAACTGGCGGACTGAMTDALEQWARQQRARLASCSAVRISGKVSAVSGILLECQVPAAKIGDLCEVSKADGSSMLAEIVGFTDQCTLLSALGTPAGIQVGARIQPLGMAHRIGVDDQLLGSVLDGFGRPLLGDGVGAFADIHDCRSTTAVIADALPPMQKPRISNPLPTGIRAIDSAILLGEGQRVGLFAGAGCGKTTLLAEMARNMDCEVIVFGLIGERGRELREFLDHELDDELRQRSVLICATSDRSSMERARAAFTATAIAEAYRQRGMKVLLLIDSLTRFARAQREIGIAAGEPIGRGGLPPSVYTLLPQLVERAGMSENGSITAIYTVLIEADSMNDPIADEVRSLLDGHIVLSRKLAERGHYPAIDVPASISRILGNVTSREHVRANNRLRQLMAAYKQVEMLLRLGEYQAGADPVTDLAVQLNDSINRFLRQDLRGPVALDETLAQLNHITSQLADPGPT0029660_194DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-TYPE_III_SECRETION_CORE_APPARATUS,PGPT0029660-yscN|sctN|hrcN|ssaN-K03224NANA
D1-35_03987978hypothetical proteinATGCTGAGTGCCTTCGCGATGTTTGAACTACGAGTATTGAACGGTCTGCACCAGGGCGCCGCATTGCCGTTGGTGGGTGACCAATGGGTGATTGGTGCCAATGACGAGCATGATCTGGCGTTATACGACCCGGGCATCGCCGCGCTCCATTGTCGGTTGAGCAGAACCGAGGAAGGCTGGAACCTGGCCGCCGAACAGATGCCCATCAACGATGACGAAGGTCGTGGGTCAAACGCTATCACGTTGACGCCGAATCAACCGTTCGCCCTCGCAAACGTCTGGCTGTGCGTGGCGCCCGCCGAAGAGCCTTGGCCTGACGTACCCGCGCTGGCGACGCCTGCGAATGCCAATGGCCAGGCGCCTCAGTCGTTATCGCCTTCCGCGCGCAAATCGATGCCCGGCGTGATCTCCTTGAAGCTGATATCAGCAGTAATCGCTGGTGTGGTCGTAGGTCTGGTCGGTGGCGCCTGGGGCCTTAGCCAATCCGAGGTGCCATCGGGCGCTGTCAAAGTTGCCCCGGCCCAGACGCCGAAAAATCCGACGCAGTCCTCTCCGGCGGCCGTTCCCGCCCGATCCGCCGACAGCACAAGCCTGAAGAATCGCGAGCAGATCCGCCGGCTCCTGACCACACAATTGGCGGAGCGGCTGCTCACGGAGGTTACCGTCGAAGAGCTTGACGAAGGCCTGGTGCTCAAAGGCAACCTCAAGGAGGAGGCGCTGGAGGTCTATCAGCGCATGCTCCAGAGTTTCAAAGAGCGCTACCCCACGACGGTTCCCCTGATCGATCACGTCGGCATTGTCGGGACCAACTTGCCGTTCACCCTTGTGCAAATCATCGCTGGCAACAACGCTCACCTGGTGACCGCCGACGGCCTGCAGATTTATGTTGGCGATGTGGTGCAGGGGCTGCGCCTGGTGCGGATAGAGGAGCACAAGATCATCTTCGATGGCGACCAGCATATCGAGGTGAGCTGGTGAMLSAFAMFELRVLNGLHQGAALPLVGDQWVIGANDEHDLALYDPGIAALHCRLSRTEEGWNLAAEQMPINDDEGRGSNAITLTPNQPFALANVWLCVAPAEEPWPDVPALATPANANGQAPQSLSPSARKSMPGVISLKLISAVIAGVVVGLVGGAWGLSQSEVPSGAVKVAPAQTPKNPTQSSPAAVPARSADSTSLKNREQIRRLLTTQLAERLLTEVTVEELDEGLVLKGNLKEEALEVYQRMLQSFKERYPTTVPLIDHVGIVGTNLPFTLVQIIAGNNAHLVTADGLQIYVGDVVQGLRLVRIEEHKIIFDGDQHIEVSWPGPT0029640_267DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-TYPE_III_SECRETION_CORE_APPARATUS,PGPT0029640-yscD|sctD|ssaD-K03220NANA
D1-35_039882100ssaVCOG4789Secretion system apparatus protein SsaVATGAACCTGATTATCGATCTGTTGAACCGGCTGGCCCTCGCGGCGATGCGCCGCTCGGAAGTCGTCGGTGCGTTTATCGTGCTGGCCATCGTCTTCATGATGATCACCCCGATACCCACCTGGCTGGTGGACATCCTGATCGCTGTGAATATCTGCATCTCCTGCCTGTTGATCATGTTGGCCATGCAACTGCCCCGGCCACTCGCCTTCTCGACGTTCCCTTCGGTACTGCTGATCACGACCATGTTTCGCCTGGCGCTGTCGATTGCTACCACGCGCCTGATTCTGCTGGATCAGGACGCCGGTCACATCGTCGAGGCGTTCGGGCAGTTCGTGGTGGGCGGTAACCTGGCGGTCGGCATGGTGATTTTCATGATCCTGACGGTGGTGAACTTCATGGTCATCACCAAGGGCTCGGAACGGGTGGCTGAAGTAGGCGCACGTTTCACGCTTGACGCCATGCCGGGTAAACAGATGTCGATCGACAGCGACCTGAGAGCCAACCTCATCAGCGTGCACGAGGCCAAACGCAGGCGTTCGGAGCTGGGCAAGGAAAGCCAGCTGTTTGGCGCGATGGACGGCGCAATGAAGTTCGTCAACGGCGATGCCATTGCCAGCCTGATCATCGTCGCGATCAACATGATCGGCGGCATCACCATCGGCGTGGTGCAACATGGCATGACCGCTGGCGATGCAGTGCAGCTGTATACGGTTCTGACGATCGGCGACGGCCTCATTGCGCAAATCCCGGCGCTGCTGATTTCCGTGACGGCCGGCATGATCATCACCCGCGTGCCGAACGAAGATGCCGCCGGGCCGGCCAATATCGGTCGTGAAATTGCCGAACAGATCACCAGCCAGCCCAAGGCCTGGATCATCGCCTCGGCGGCAATGCTCGGCTTCGCCGCCATGCCTGGGATGCCGACCATGGTGTTCATCACGATCGCCATCATTTGTTGCGGCGGCGGCTTGTTGCAGATCAATCGCGCCAAACCCAAGGGTACGCAAGATCAAGCCGCCCCGACGACCCCGGAAAACAACGGACAGGAAGACCTGCGAATGTTCCTGCCCAGCCGCCAGTTTGTCCTGCAATTTCATCCCAGCCAGAGCGTTGAGCGGATCGAGGCACTGGTCAGCGAGATTCGTCAGCGCCGCAACCGTCTGGTGGTGAATTTTGGGCTCACACTGCCGTCGTTCATCATTGAATACCAGGCGCATCTGGAGCCGGATGAATTTCGCTTTACGGTGTACGAGGTTCCTGTACTCAAGGCCACATTCAACGAGGCATTGGTAGCTATCGATGGCTCTTCACAGGTCATTGACGACGATCAGCAATACAGCAAAGGCAGTTCGGAACGGCAGGAAGGCCAATGGATCTGGGTACCCGCCGATGCGGAGCTGCTGAGCAACAGCAATGCGCAACCCATCAGCCCCAGTACCCTGATCATCGAACGCATGGAGCGCGCGCTGCAGGTTTGCGGCCCGCAGTTCATCGGGTTGCAGGAAACCAAAGCGATCCTCGGTTGGCTGGAAACAGAGCAACCGGAATTGGCGCAGGAGCTGCAGCGCGTCATGCCGCTGGCGCGTTTTTCTCAAGTGCTGCAGCGGCTGGCTTCCGAATGCGTGCCCCTGCGCGGCATCCGGGTGATTGCCGAAACCTTGATCGAACATGGGCAACATGAGCGCGATGTCCTGGCACTCACCGATTATGTCCGCATCTCGCTCAAGTCACTTATCTACAACCAGTATTGCAGCCAGGAAGGACTGCTCGTCTGGCTCTTCACCCCCGAGAGCGAAGGCATCCTGCGTGACAGCCTGCGTCAAACGCAAACCGAGACGTTTTTTGCCCTGAACAGCGAATCCAGCCTGATGCTGGTCCAGCAATTGCGCATGGCTTTCCCACAGCGATCGTCTGAACGCGCAGTGATGCTGGTCGCCCAGGATCTGCGCGCCCCGCTACGGACGTTATTGCAGGACGAGTTCCATCACGTGCCGGTGCTCTCCTTTGCCGAGATCACTAATGCTTCCGAGGTAAAGGTCCTCGGCCGTTTCGATCTGGAAAACGAATTCCTGCCCTTGGAAGACGACTATGCGGCTTGAMNLIIDLLNRLALAAMRRSEVVGAFIVLAIVFMMITPIPTWLVDILIAVNICISCLLIMLAMQLPRPLAFSTFPSVLLITTMFRLALSIATTRLILLDQDAGHIVEAFGQFVVGGNLAVGMVIFMILTVVNFMVITKGSERVAEVGARFTLDAMPGKQMSIDSDLRANLISVHEAKRRRSELGKESQLFGAMDGAMKFVNGDAIASLIIVAINMIGGITIGVVQHGMTAGDAVQLYTVLTIGDGLIAQIPALLISVTAGMIITRVPNEDAAGPANIGREIAEQITSQPKAWIIASAAMLGFAAMPGMPTMVFITIAIICCGGGLLQINRAKPKGTQDQAAPTTPENNGQEDLRMFLPSRQFVLQFHPSQSVERIEALVSEIRQRRNRLVVNFGLTLPSFIIEYQAHLEPDEFRFTVYEVPVLKATFNEALVAIDGSSQVIDDDQQYSKGSSERQEGQWIWVPADAELLSNSNAQPISPSTLIIERMERALQVCGPQFIGLQETKAILGWLETEQPELAQELQRVMPLARFSQVLQRLASECVPLRGIRVIAETLIEHGQHERDVLALTDYVRISLKSLIYNQYCSQEGLLVWLFTPESEGILRDSLRQTQTETFFALNSESSLMLVQQLRMAFPQRSSERAVMLVAQDLRAPLRTLLQDEFHHVPVLSFAEITNASEVKVLGRFDLENEFLPLEDDYAAPGPT0029690_219DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-TYPE_III_SECRETION_CORE_APPARATUS,PGPT0029690-yscV|sctV|hrcV|ssaV|invA|rhcV-K03230NANA
D1-35_039891113hypothetical proteinATGAAAATCCCCGGCTTTACCCCAGTCGCGATTCATCCGGTCAATCCGGCGAGCGCTCGACCGGCGCTATCCGCTCCACAGACGGCATCGCACATCGCCAAAGACCAGGGCACCACGCCGCAGCAGGTCGCGCGATTCACCTCGGCGCTGATCCAGCAAAGCAAAGAGCTCAGCCAGCGTGAACTGGTCATCGGCAGTACCGCCTTGCAGTCGAAGGCGATGAAGCTCGGCGAGCTTTACCAGATGCTGATGGGCAGTCATGACAAAAGGCTGGATGAAGCAGTGCGTACGCTGCGTCAGACCTTGAAACGGCAACGCCCCGATGAGTCGCAGCTTGCTCGGGTGCTCGCCTTCGCGAGCGGGGACCCGGCCAAAGCACACGTCATGCTGCAGGCCGCAATGAAACAAGCGCATCACGAAGGTGCCAGCGATGAGCACCAGGCGCTGTCGGGGCACGCCAGCGCGCTCCGACAGCGACATGGCAACAGAGCCCGCGCGGGCGTCAATACTGCGCGGGCCTTTTCCAGATCCGGGCTGGATGCCCAACGACGCAAGAACCTGCGGGAACTGTATTACAACGCCGTCGTGGGTCAGCCCACCATATCCAGCCTCATCGACACACTATTGAGTCAAGAGGATGGCGAAGCGCAATTCGAGCCAACCTTGCGCGATCTGCGCCGAGCCATCGCCGACGACCTGGCCGCGGCCAATCCCTCTGGCCCTCGCCAGCAATTACGCATTTTGATGCATGGCGTGAATACCGCCCGGCATGTGTCGACTTTGCTTAAAAGCTGCGAACACCTTCTGGGACGCATGCGCGACAAGAACCCGCAACTGCAAGTGAGCGCGCCAACCTTCCTCAAACACTTGCTGGTGCTCTCGGGCAAGGGCATGAACCTGCAGGAAACCTTGCAGCTCACGCAGTTTATCGGTGGTGCCCAACTCAAGCACCAGCTGTCATTTCTCAACGGCCTGCGCCCAATGCTCCAGCAGTTGCCTGTCTTGCTGTGGCAGGACCTCAAGTCCCGGCAGAACGCGCTGGGGAACCTGTTATTGCTGATGGCCGAGCTCACTCAGCAAGAGCAAAACCAGCTCAAGGGGAACCCGGCCTGAMKIPGFTPVAIHPVNPASARPALSAPQTASHIAKDQGTTPQQVARFTSALIQQSKELSQRELVIGSTALQSKAMKLGELYQMLMGSHDKRLDEAVRTLRQTLKRQRPDESQLARVLAFASGDPAKAHVMLQAAMKQAHHEGASDEHQALSGHASALRQRHGNRARAGVNTARAFSRSGLDAQRRKNLRELYYNAVVGQPTISSLIDTLLSQEDGEAQFEPTLRDLRRAIADDLAAANPSGPRQQLRILMHGVNTARHVSTLLKSCEHLLGRMRDKNPQLQVSAPTFLKHLLVLSGKGMNLQETLQLTQFIGGAQLKHQLSFLNGLRPMLQQLPVLLWQDLKSRQNALGNLLLLMAELTQQEQNQLKGNPAPGPT0029715_100DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_III_SECRETION_SYSTEMSCE-TYPE_III_SECRETION_CORE_APPARATUS,PGPT0029715-yscW|sctW-K04058NANA
D1-35_03990471rpoE_1ECF RNA polymerase sigma-E factorATGGTGCAAAAGGTGCGGTTGTTTATCAGGGCCAAGGTCGCGAACCCTGATGATGCGGAGGATCTGCTCCAGGCGACCTTTCTCGAAGCGCTGCGTAACGAGCACAAGTTTCGGCACGATTCGCTGTTGCTGACCTGGCTCTGCGGCATTGCACTCAACCTCATTCGCAGCCATTTCAGACGTCTCTACAACCAGCCGTTTCATGACGACCTGCAGGAATGCGGCGTATTGGAGATGGCCGACAGCCGCGACATTGTGTCCGAGGTCAGTGGCTTCCGTCAGCTGGCGCGAGTCTTTCGCGCAATGGAAACCTTGCCGCCGAATATGGAGGAGGTGATCCGGGTCGCGATGGAAATGGAGGGTAATTATCTGGAAACCGCCGCTCGGCTGGACATACCGATTGGCACGGTGCGTTCGCGCCTTTCGCGCGCTCGCGAGCAACTCAAACGGCGAGTCTCCAGCGAATACTGAMVQKVRLFIRAKVANPDDAEDLLQATFLEALRNEHKFRHDSLLLTWLCGIALNLIRSHFRRLYNQPFHDDLQECGVLEMADSRDIVSEVSGFRQLARVFRAMETLPPNMEEVIRVAMEMEGNYLETAARLDIPIGTVRSRLSRAREQLKRRVSSEYNANANANANA
D1-35_03991921hypothetical proteinTTGAGCCTGTCTATCTCTCCCACTCGTAACTCCACCCCTGAAGCGCTGCTTGTACCCGAAAACAGCAGTGAGCGGTTTGCCCGGCACCCCGGCTCGAATCCTGCGGTCACTGGCGATATGTTTGCGACTCGCCCTGAGCGGCCGATCAACTTCGGTCAGCCTTCGCAGGTGGCGGATCAGCCCATACCTGCACAAAAGAAGAGTGAGGCCGAGCAAGCCGACCTGATGATGCAACTGATGGAAGTCATCATGCAGGCCATCATGCAATGGCTTCATTCCTCGATGAATAGACAGGAAGGATCTGATGGCGGCGGGGCATCCCAGCCGGGACCTCAACCCCACAATACGTTGATGGCGCAACCGAGTGGTGGCGGTGGTGGTGCGCCTGGCGGGCCGATCAACAATGCGCAGGCCGGTGGTGTGGCAGGCAGTCCGGCATTGCGCGGGCAGGATGGGTTGCACTTGCCCGCTCAATTGGAGCCGTATCGCCAGGATATCGTCGACGCGTCCAATGCTACAGGCGTCCCCGGCAACGTGATTGCAGCACAGATCTGGGCGGAGTCCAGAGGCAACCTGAACTCCAGCAGCACCAACGTCAACGGCAAGACCGACGCCGGCTTGATGCAAGTCAACGCTGACACTTTCGCTCAATTGAAGAGGGAAAATCCGGCGCTGCTGGGCAATGCCGACGTCAACAACCCCCGCGACAACATCATGGCGGGAGCCCTCTATCTGCGCGACCAGACCCAGGCGTTTGGCGGCGACCTCGGCGCCGGGCTGCGCGCCTATAACTCTGGTCCTGACAAGGTCAATCGAAACGACCTGGCTGATACCGGAGGGGTAGGCGATCCCGGTTACCCGGCCAACGTACTGAAGTTCGCCGAGATCATCGCGAGCGGCAAAGGTCAGCTGCCCGGCTGAMSLSISPTRNSTPEALLVPENSSERFARHPGSNPAVTGDMFATRPERPINFGQPSQVADQPIPAQKKSEAEQADLMMQLMEVIMQAIMQWLHSSMNRQEGSDGGGASQPGPQPHNTLMAQPSGGGGGAPGGPINNAQAGGVAGSPALRGQDGLHLPAQLEPYRQDIVDASNATGVPGNVIAAQIWAESRGNLNSSSTNVNGKTDAGLMQVNADTFAQLKRENPALLGNADVNNPRDNIMAGALYLRDQTQAFGGDLGAGLRAYNSGPDKVNRNDLADTGGVGDPGYPANVLKFAEIIASGKGQLPGNANANANANA
D1-35_039921359hypothetical proteinATGGGTATCAATAGCGTCCCATTGCGCAGATTACAGAACCATCCCATTGATGATGCGCAATCAACGAATCTGGAGCGAACGGGGGAGGTGCTGTCTGTTAATGGCGACAACTCTCAAGAATTGGCCGCGTTGAAAAGCAAACTGGACGCTCTGTTCGAACCCCACAGGACGGCTGAGAACCATGCGCAAATGGACGCCTTGATTCATGATCGCGCCGTTGAGTTGAAGGAAATGGGCGAGACGCCGGAGACGCTTGAGGCGCTGCTAGAAAAAGCGGCGCGCATGGATCGTGTAACGGCTCCGGTGCAAGGGGCGGTGGCTTCCGCACCCTTTGCTGCGGCCTCGGTTATTTTGGACAAAGTGCCCGCGGTGACAGCTCATGTTGCGCATAGTCCAGCCTTGACCGGCTTCGTGGCGGGCTCGTTTTCCGGTGCGATGGACGCGGTGGGCGGTGGTCTGCTGGCGAGAGCGACGCATGACACTTATTGGCTGAAACCGCCAGCGGAAAAATTGGAACCGGTGATGCAACAAGCCCTGACTTTCAGGAAAGAGGAAACCAGGGGGGGTAACGCTAAAGAGTCTGCGCTGTCCTGGCAGACGTTCAGTGTCCGCAATGCTGTGCGCCTCGGGGTGGCCGGCGCCATGAATGCAACCGTCGGACCGAAGGCTGCCGCCGCGGTTGATACGGCTATCGCCTCAGCAGGAGCTTTGGCGGCCGGCGCAGGTTATGCCCACCTGATGAATAAAAACGACTTGAACGCTCATCGCGCCGGGCCGGCCTATCTTTTGGGTCGAACCGACTGGAAAGATCAATATCAGGCATTGAAGGAGAGTACGACCTTGAGCCCGATCGCAAACGGGGCCAAACGCCTCGCCGCAATGCCTCTGAACCTCCTGACCGATGCGACGAGGTCTTTAAGCGGCGCGTTATCCTTTTCCAGCATGGTGTCTAACGCAGGTGTATTGGGCGGCGGTTTTGCTGTGACCTCGCTGGCTCGCGATGCGGCCAGGAATCTGGCATCCCAGAATGGCTTGGGGCCAGGAGAGGTCGCTGTGGTGGATCATACGGTCAACCTTGCCATGTCAGCGCTTACCTTTGGTTCTTATGGGGTGGCCAGTGTTGCGACCGAGCCCCTCAGCGACGCGGCCGTCAAAGTGTTGCAGGAGGACGTTCCGGCGAAAGCGCAGCAGGCTACTGATGCAACTCTTGAGGCTGGCAAGGCGGCGGTACATATGGTGCGCGAGCAGGCACCCGTGCTGGCGCGAAGCGTCGCCGCCACCGCAAGAGATATGACGGACCGTGTGCTGGAGCATCGCAGACTCAGGACCGGAGGGGACACGACCGAGAGTCCCGTCTGAMGINSVPLRRLQNHPIDDAQSTNLERTGEVLSVNGDNSQELAALKSKLDALFEPHRTAENHAQMDALIHDRAVELKEMGETPETLEALLEKAARMDRVTAPVQGAVASAPFAAASVILDKVPAVTAHVAHSPALTGFVAGSFSGAMDAVGGGLLARATHDTYWLKPPAEKLEPVMQQALTFRKEETRGGNAKESALSWQTFSVRNAVRLGVAGAMNATVGPKAAAAVDTAIASAGALAAGAGYAHLMNKNDLNAHRAGPAYLLGRTDWKDQYQALKESTTLSPIANGAKRLAAMPLNLLTDATRSLSGALSFSSMVSNAGVLGGGFAVTSLARDAARNLASQNGLGPGEVAVVDHTVNLAMSALTFGSYGVASVATEPLSDAAVKVLQEDVPAKAQQATDATLEAGKAAVHMVREQAPVLARSVAATARDMTDRVLEHRRLRTGGDTTESPVNANANANANA
D1-35_039931701hypothetical proteinATGCCTGATCGTAAAGCCAGCCTTCTTTTCGCCGCAGCCACCGCCACTGCCGTCATGGCCGTCACCGCGGCGGTGGGGCCCATCACGTTGTTCTGGACCAACGAGACGCGTCTGGAGCGAAACGTGGTCGAGTCGCAGATCGAGTGTATCCGCAACGTTCAGGGGTTGCTGGTCGATGCCGAGACCGGTGAGCGTGGCTACGCCTTGACGGAAAAGGACGACTTTCTACAGCCGTACTATGTCGCCGTGTCTCGACTGTCTGCTGCCCTCAAAAGCCTGCGAAGTGCCTATCAAGGCGATCCGGCCGAAGAGATTGCGCGTGTCGAAGCGTTCATCCGACGTGCCGAACTGAAAATGGTCCACCTGGACAGGGTCGTGAAGCTGGTCAGCCATAGTGGCAATGATGCGGCCGAGGCCGAGATCGCCGCTGGCGGCGGCAAGGACCTGATGGACACGGTGCGCACCCTCAGTGCGGAGCTTATTGCTGACGAAACCGAAGAGCTCGTGGCGCTCGAACGCCAGCTGTTGAGCAACATTCGCTGGGCGGTGGCGATTTCCATCCTCAGTTTTATGGTCACTTTGGGTTTGGGGCGTTTTATCTACCTGTCCATGCGCAGCAGTGTCCGCCGTCAATCGGAGTCTGCCGCGGCGGCCAACCTGGCCAGCGATCAATTTGGCCTGAGCCTGGCGCGTTTGAAACGTCGCAATGGCGAGATTGGCCTTCTCGCGGAAATGGCGAGGTTGATGCAGACGGAACTGTCGCTGAAGGAAACGCTCCAGCTGGCCAGCACTTACTGCCAGCGATTGATACCTGCCAGCGAAGGGGAGTTCTTCCTCTATCGCAACTCGGCTGATGTCCTGCAACACGCCGCTGCGTGGGGGCAGGCTGAGGAAAAAGGCTCCGATGCAATACTCAACCCCAAGGATTGCTGGGCGATCCGGCGTGGACGCTGGCATTTGTCGGTGCACAACCACGATCTTTGCTGCCCTCATTACCCAGCAGCGTCCGGCACTGACCCGGTGGCTGACTGTTGTCTTCCGTTGATGGCTTACGGTGAAATCCTCGGCCTGTTGCATATCCGTCAAGTCGGCTTGCGCGACCTGTCCGAGGAGGGCCTGCAGATCGCTGAAGCCGTGGCTGAACAAACGGCGCTGGCATTGGCGAATGGTCGCATGCGCCAGGTACTGGAAACCCAGTCCATAAAGGATCCGCTGACCGGGCTGTACAACCGCCGCTTTATGGACGAGACGCTCAACCGCGAGCTGGCGCGCTCCGAGCGCAACGGGTCGTGCCTGAGTGTCGTGATGATCGACCTCGATAACTTCAAGCAATTGAACGACTCTTATGGCCACTCGGCAGGCGACGCGGTGCTTCGTGCGGCCTCGACCTTGATGGTGCAATCGCTGAGAGCGTCAGACATTGCTTGTCGATTTGGCGGAGAAGAGCTGATTGTCATCCTGCCGGAGTGTTCATCCGAAGGCGCCGCTTTACGCGCTGAGGCCATACGAGCGGCGTTGGAAGAAATGACGCTGACCGATCACGGCCAGACGCTCACGGTGACCGCTTCTTTTGGCGTGTCTTCCACAGAGACCAGCGGAATTGATCAAGGCGCTCTTTTAAAGGCGGCCGACTCGGCGCTTTACGCAGCCAAGCGATCAGGAAAAAACCGAGTTGAATCCTGGCCTGTACGGAAAAGATGAMPDRKASLLFAAATATAVMAVTAAVGPITLFWTNETRLERNVVESQIECIRNVQGLLVDAETGERGYALTEKDDFLQPYYVAVSRLSAALKSLRSAYQGDPAEEIARVEAFIRRAELKMVHLDRVVKLVSHSGNDAAEAEIAAGGGKDLMDTVRTLSAELIADETEELVALERQLLSNIRWAVAISILSFMVTLGLGRFIYLSMRSSVRRQSESAAAANLASDQFGLSLARLKRRNGEIGLLAEMARLMQTELSLKETLQLASTYCQRLIPASEGEFFLYRNSADVLQHAAAWGQAEEKGSDAILNPKDCWAIRRGRWHLSVHNHDLCCPHYPAASGTDPVADCCLPLMAYGEILGLLHIRQVGLRDLSEEGLQIAEAVAEQTALALANGRMRQVLETQSIKDPLTGLYNRRFMDETLNRELARSERNGSCLSVVMIDLDNFKQLNDSYGHSAGDAVLRAASTLMVQSLRASDIACRFGGEELIVILPECSSEGAALRAEAIRAALEEMTLTDHGQTLTVTASFGVSSTETSGIDQGALLKAADSALYAAKRSGKNRVESWPVRKRNANANANANA
D1-35_03994744hypothetical proteinATGAACCACCCCGACGGGCACGACAGCGCACTTGACCACTTCATCTGGCCGTTGACGCCAGGTGGCATTCTGGACCGCAGAGACCTGTTGCTTCGCCTGGGCGCTGAACAGCGACTCATGGCCGCCCAGGACCCTACGTGCAGGCGCGATCAACGTGACTACCTGCTTTCACTGATCGATTCGGCCTCGACACTGAACCATGGCGCTGAGCAAGGTTCAGGCTTCGATGCCCAGCGAATGCGTAACGTCATCACCGAAGCCGCCACAAAAAGCCATTGGGGCAAGGGCAAGCCTTCGGAAGGTCGCCGAACGCAGGGCATCGCCGCCCACTACGATGCGCAGAGCTACATGGCCGCGGTACTCGATGTCGAGCTGAGCGACGAGGGTCGCCTGATTGTGCATGACACCGTGTTTGTCGCGGACCTGGGCGCTGTAGAAAACCCCGGCCGCCTGCGCGCTCAGCTGGAAGGCGCGTGCCTGATGGGCGTGGCGTTCGTGGCATCTTCCGAATTTGGCGCGACGGCGACTGACCTGTGCCCGGCCATCGCCCAGCGGCCCCGCTGGCCACTCGTCTCATGGTTGCCAGGGCACATCGCGGTACACCTGATCAACCCAACGGCTGCGCTCCAAGGTTTCCAGCCCAGCCTGATGAGCTACGTACCGGTCGTCCGGGCCTTGTGTAATGCGATGATCAAATTGGCAAACGCTCCAGCGAATATTCGGCCGGCGTCCTTCGCAAGCTAGMNHPDGHDSALDHFIWPLTPGGILDRRDLLLRLGAEQRLMAAQDPTCRRDQRDYLLSLIDSASTLNHGAEQGSGFDAQRMRNVITEAATKSHWGKGKPSEGRRTQGIAAHYDAQSYMAAVLDVELSDEGRLIVHDTVFVADLGAVENPGRLRAQLEGACLMGVAFVASSEFGATATDLCPAIAQRPRWPLVSWLPGHIAVHLINPTAALQGFQPSLMSYVPVVRALCNAMIKLANAPANIRPASFASNANANANANA
D1-35_03995918COG2326Polyphosphate:ADP phosphotransferaseATGTCCTCGACAGACGACACCTTGATACAGCGCATCCACCGTGAACTGCTCGATCACAGCGATGAAGAACTGGAGTTGGAGCTGGCCGAAGACGGACACGACCTGGATGCCCTGTTCGATGGACAGGCTCCAGAAGGATCAGAAAAAGAAGCCCGGAGAATCTATTTCAGCGAACTGTTCCGCCTGCAAGGCGAACTGGTGAAGTTGCAAAGCTGGGTGGTCAAGACGGGCCACAAGGTCGTGATCCTCTTCGAAGGGCGCGACGCTGCCGGCAAAGGCGGAGTCATCAAACGTATCACCCAGCGCCTCAACCCTCGGGTCTGCCGGGTGGCCGCCCTGCCCGCCCCGAACGACCGCGAACGCACCCAATGGTATTTCCAGCGCTACGTTTCACATTTGCCGGCCGCCGGTGAAATCGTCCTGTTCGATCGCAGCTGGTACAACCGCGCCGGCGTCGAACAGGTCATGGGCTTTTGCAACGACGATCAATACGAAGAGTTCTTCCGGACCGTGCCCGAGTTCGAGCGCATGCTGGCCCGCTCAGGCATCCAGCTGATCAAGTACTGGTTCTCCATTTCCGACCAGGAGCAGCACCTGCGCTTTCTCAGCCGTATCCACGACCCGCTCAAGCAATGGAAACTGAGCCCCATGGACCTGGAGTCCCGGCGGCGCTGGGAGGCGTACACAAAGGCCAAGGAGATCATGCTTGAACGCACCCATATCGCCGAGGCGCCATGGTGGGTCGTGCAAGCCGACGACAAGAAAAAAGCGCGACTCAACTGTATTCACCACCTGCTCGGCCAGATGCCCTATGAAGAAGTCGAGCTCCCGGCGATCGAGCTACCGGAACGCGTCAGGCAGGAAGACTACTTCCGCAGTCCGACGCCGCCGGAAATCGTCGTTCCTCAGGTTTATTGAMSSTDDTLIQRIHRELLDHSDEELELELAEDGHDLDALFDGQAPEGSEKEARRIYFSELFRLQGELVKLQSWVVKTGHKVVILFEGRDAAGKGGVIKRITQRLNPRVCRVAALPAPNDRERTQWYFQRYVSHLPAAGEIVLFDRSWYNRAGVEQVMGFCNDDQYEEFFRTVPEFERMLARSGIQLIKYWFSISDQEQHLRFLSRIHDPLKQWKLSPMDLESRRRWEAYTKAKEIMLERTHIAEAPWWVVQADDKKKARLNCIHHLLGQMPYEEVELPAIELPERVRQEDYFRSPTPPEIVVPQVYPGPT0002690_818DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002690-ppk2-K22468NANA
D1-35_039961032pstS_1COG0226Phosphate-binding protein PstSATGAAAAGTTTGATGAAGTCTGCTGCGCTCGCCGTTACGGTTTCTCTTTGTGCCACCTCGGCGTCCTTCGCTGCAGAGAATGTCCGTCTGACGGGGTCCGGGGCGAGTTTTCCAGCTCCGATCTACCTGACCTGGTTCAAGGATTTCAGCAAGAAATCGGACGGTGTCACCGTGGATTACCAATCCAAGGGCAGCGGTGCGGGCGTACAGGACTTTCTGAACAAGACCGTTGATTTCGCCGCCAGTGACTCGGCGATGAAAGAAGAAGACATCGCCAAGGTTGCCGAAGGCGTGCAGTTGTTGCCGATGACCGCCGGTGAAATCGTGCTGGCCTACAACCTGCCGGGCAATCCCAAGGGCCTCAAGCTGCCACGCGATGTGTACTCGAACATCTTCCTGGGCAAGATCACCAGATGGAACGATCCGCAGATCGTTGCCGCCAACCCGGACCTGAAACTCACCGATACGCCGATCACCGTCGTTGTACGTGCGGACTCCAGCGGTACCACCGCGGTGTTCACCAAGCACCTGGCAACCATCAACCCGGAGTTCAAGACGGCGCTGGGCGAGGGCAACACCGTCAACTGGCCGGCCAGTGACAAGTTCATCAAGTCGCCGAAAAACGATGGCGTGACCGCGACTGTGCGTCAGACCCCGGGCGCGATTGGCTATATCGAATACGGCTTCGCCAAGCTCGCCAAAGTCGACTTCGCCCAACTGCAGAACAAGGCCGGCAAGTACGTCGTGCCGAACGCCGAGAGCGGTGCAGAGGCCCTGGCGGCGGTGAAGATGCCGGAAAACCTGGTGGCCTGGCTGCCGGATCCGGACGGCGCCAAGTCCTACCCGATCACGTCCTACACCTGGATGATCTTCCGCAAGGACAACGGCAACCCGGCCAAGGCCAAGGCCATGCGTGAAATGGTCGAATACAGCCTGACCGAGGGGCAGAAGATTGCCGATTCGATGGGTTACATCCCATTGCCGGCGTCGGTCGTCGAGCAGGTTCGCAAGGCATCCGCCAACATTCAGTAAMKSLMKSAALAVTVSLCATSASFAAENVRLTGSGASFPAPIYLTWFKDFSKKSDGVTVDYQSKGSGAGVQDFLNKTVDFAASDSAMKEEDIAKVAEGVQLLPMTAGEIVLAYNLPGNPKGLKLPRDVYSNIFLGKITRWNDPQIVAANPDLKLTDTPITVVVRADSSGTTAVFTKHLATINPEFKTALGEGNTVNWPASDKFIKSPKNDGVTATVRQTPGAIGYIEYGFAKLAKVDFAQLQNKAGKYVVPNAESGAEALAAVKMPENLVAWLPDPDGAKSYPITSYTWMIFRKDNGNPAKAKAMREMVEYSLTEGQKIADSMGYIPLPASVVEQVRKASANIQPGPT0002625_3631DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002625-pstS|phoS-K02040NANA
D1-35_03997966pstCCOG0573Phosphate transport system permease protein PstCATGAACAAACCTTTTGTCGTACCGGTTAATCCGGACTCTGCCTGCCAGCCACCCTCGACGAAGGATTTCCTGGTTGATCGCACTTTCCGTGCGCTAGCGCGCATCGGCGTGGTGCTGATTCTGGCGCTGGTATTTGCGCTGGTGTTCGAGGTGGGACGCAAGGCAATTCCCGGCATGGAGAAACACGGTTTCGACGTGCTCCTGGGCAGCGTCTGGGACGTCAACCAAGGCAAATACGGCATCCTGCCGGCTATCTGGGGCACGCTTTACAGCGCCTTGATCGCGTTGCTGATCGCTGGGTTTTTCGGCGTCAGCATGGCGATTTTCCTGACCCAGGATTTCCTGCCGCCCAAGCTCGCCGCCATTTTCCGCACCATCGTCGAACTGCTCGCGGCCATCCCCAGTGTGGTTTATGGCCTGTGGGGGATCTACGTGGTCATCCCGGCGATCCGACCGTTGACAACCTGGCTGAACAGCGAACTCGGCTGGATACCTTTTTTCGGCACGTCCCTGAGCGGGCCAGGGCTGCTGCCGGCGGCGCTGGTGCTTGCGATCATGATTCTGCCAACCATCGCAGCCGTTTCGCAGGATGCGCTCACCGGCGTACCGATGAAAACCAAGCAGGCCGCCTACGGCATGGGGACGACTCACTGGGAAGCGATTCTCAAGGTGATGGTGCCTTCCGCCGCCACCGGCATCTTCGGCTCCCTGGTGCTGGGCCTCGGGCGTGCCCTGGGCGAGACGATGGCGCTGGCCATGCTGGTCGGCAACGCCAACAACATTTCCCTCTCGCTGTTTGCTCCGGCCAACACGCTTGCTGCCCTGCTGGCGTTGAACTTCCCCGAGGCCGGGCCGAACGAGATCGAGGTGTTGATGTATGCCGCCCTGGTATTGATGTTGATTACGCTGATCGTGAACATTTTTGGTTCGATGATCATGATGTATGCCCAACGGGGTAACAAGTGAMNKPFVVPVNPDSACQPPSTKDFLVDRTFRALARIGVVLILALVFALVFEVGRKAIPGMEKHGFDVLLGSVWDVNQGKYGILPAIWGTLYSALIALLIAGFFGVSMAIFLTQDFLPPKLAAIFRTIVELLAAIPSVVYGLWGIYVVIPAIRPLTTWLNSELGWIPFFGTSLSGPGLLPAALVLAIMILPTIAAVSQDALTGVPMKTKQAAYGMGTTHWEAILKVMVPSAATGIFGSLVLGLGRALGETMALAMLVGNANNISLSLFAPANTLAALLALNFPEAGPNEIEVLMYAALVLMLITLIVNIFGSMIMMYAQRGNKPGPT0002620_2681DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002620-pstC|phoW-K02037NANA
D1-35_03998912pstACOG0581Phosphate transport system permease protein PstAATGACAGACCTCACTGCAGCAACAGACTTGACCGCGCCAGCGGGCGCGATGCCCAGCTTGCAGCGCAAGTTCGAAGGCCGCGCGTTGCGCAGCCTGATCCTGACCACCCTGGTCTGGACCGGCGCGCTGCTCGCCAGCGTGCCGCTGATTTCCGTGCTCTACATGCTGATCACCCGTGGTGGCGCGCGCCTGAACCTGGAAGTCTTTACCGAACTGCCACCGACCGGCTTCGAGATGGGTGGCGGCTTCGGCAACGCCATGGCCGGTACCTTCGTGATGGTCGGTATCGCGGCAGCCATCGCGGTGCCGATCGGCATCATGGCCGCCGTCTTCCTGGCGGAGCTGGGGCCGGACAGCAAATTGGGCAACGCCGCGCGGTTTGCGGCGAAGATGCTCACCGGCCTGCCGTCGATCCTGGCCGGGGTATTTGCCTACGCCCTGGTGGTGATGACCACCGGTACTTATTCGGCGCCGGCGGGCGGCGTGGCACTGGCCGTGCTGATGCTGCCGATCGTCGTGCTGACGGCGGAAGAGTCGATGCGCATGGTGCCCAAGATCATGAAGGATGCTGCCTATGGCATGGGCTGCACCCGCTCCCAGGTGATCTGGAAAATCGTCTTGCCGACCGGCATGCCGGCCATCCTCACCGGCGTCATGCTGGCCGTGGCACGTGCCGCGGGCGAGACCGCGCCGCTGCTGTTTACCGCGCTGTTCAGCAACTACTGGATTTACCACCAGGGCAATCTCGAGGTCATGAACCCGACGGCCTCGCTGGCGGTGCTGATCTACAACTTCTCCGGGATGCCTTTCGACAACCAGCTCGAGCTCGCATGGGCGGCCTCACTGGTGCTGGTGATGATCGTGCTGTTCGTGAACATCATCAGCCGTATTTTCGGCAAGCCCAAGTATTAAMTDLTAATDLTAPAGAMPSLQRKFEGRALRSLILTTLVWTGALLASVPLISVLYMLITRGGARLNLEVFTELPPTGFEMGGGFGNAMAGTFVMVGIAAAIAVPIGIMAAVFLAELGPDSKLGNAARFAAKMLTGLPSILAGVFAYALVVMTTGTYSAPAGGVALAVLMLPIVVLTAEESMRMVPKIMKDAAYGMGCTRSQVIWKIVLPTGMPAILTGVMLAVARAAGETAPLLFTALFSNYWIYHQGNLEVMNPTASLAVLIYNFSGMPFDNQLELAWAASLVLVMIVLFVNIISRIFGKPKYPGPT0002610_2524DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002610-pstA-K02038NANA
D1-35_03999762pstB3COG1117Phosphate import ATP-binding protein PstB 3ATGGACTGCAAACTGGACAAGATTTTTTATGGCAACTTCATGGCGGTCCGTGACAGCCATGTGCCGATCGAGAAAAACAAGATCACCGGGTTCATCGGTCCTTCCGGCTGTGGCAAGAGCACCGTGCTGCGCAGCCTCAACCGGATGAACGACCTGGTGAAAGGGTTCCGTTTCGAAGGCCACGTGCATTTCCTCGGACAGGACGTCTACGGCAAGGGTGTTGACCCGGTGGTCGTGCGCCGTTACATCGGCATGGTATTCCAGCAGCCGAACCCGTTTTCGATGAGCATTTTCGACAACGTCGCGTTCGGCCTGCGCCTCAACCGCTACAAGGGCGACATCGGTGACCGGGTCAAGCATGCGCTGCAAGGCGCCGCGCTGTGGGACGAAGTCAAGGACAAGCTCAAGGTCAGCGGCCTGTCGCTCTCCGGCGGCCAGCAACAGCGCCTGTGCATTGCCCGCGCCATCGCTACCGAGCCGGAAGTGCTGCTGTTGGATGAACCGTGTTCGGCACTCGACCCGATCGCTACCCGGCGGGTCGAGGAGCTGATGGTCGAGTTGAAGAAGGACTACACCATCGCCCTGGTGACCCACAACATGCAGCAGGCCATCCGCGTGGCTGACACCACGGCGTTTTTCTCGGTGGATATTTCCCAGGGCACGCGCACCGGTTATCTGGTCGAGATGGGCCCGACGACGCAGATTTTCGACAACCCGCGTGAACAGATGACCGGCGATTACATCAGCGGCAAGTTCAGCTAAMDCKLDKIFYGNFMAVRDSHVPIEKNKITGFIGPSGCGKSTVLRSLNRMNDLVKGFRFEGHVHFLGQDVYGKGVDPVVVRRYIGMVFQQPNPFSMSIFDNVAFGLRLNRYKGDIGDRVKHALQGAALWDEVKDKLKVSGLSLSGGQQQRLCIARAIATEPEVLLLDEPCSALDPIATRRVEELMVELKKDYTIALVTHNMQQAIRVADTTAFFSVDISQGTRTGYLVEMGPTTQIFDNPREQMTGDYISGKFSPGPT0002615_4314DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002615-pstB|phoT-K02036NANA
D1-35_04000699hypothetical proteinATGCCTGCTACGCATCGCCTTGATTTGCCAGCGATTGAACGCGCACTACGGGAAGTGCAGGACCGCTTCGCCCAGCTCAGCCGGCACTTCACCGAGCCGCGTGACCCGTTGACCGATGAAGTGCTGCAGAATGTGCTTGAAGGTTATGCGTTGGTTGACGAATATGTTGCCCGCGGCGTCGACCTGTTCGATCTGCAGCAACTGAACCTGATGCTGGAGATCAACGCCACGGTGCTCTGCGGCCGGGATCCGGCGCGCCGGTTGGAATACGCCCATCACCTGGCAGCGACCGAGGCGCATTTCTTCAACAATGTTGAAGGAGGCATCAAGGATTTGTACAACTGGTATTGTGCCTATCGCAGCGAGTCGGTGTGGAAGCGCGCGGCAGGCGTCTATGTACGGATTCTCAGCAAGCCGCAGTTGTTCATCGAAGGTAACAACCGCAGTGGGTCGCTTATTGTCAGCTATCTGCTGATGCGCGCGGGCTTGCCGCCGTTTGTGCTGACACTGGAAAATGCCGAAGGCTATTTCAACCCGTCTTCGGTGATACGCAACTCTGCCAAGCATGGCGTCAAGGCGTTGTACGAATTGCCCAAGATCAAGAAAAAATACGCAGCGTTTTTAGAAGAACAGGCACCCGATCCAATGAAGTTTTTTCTCAAAGGCGAGTCTTTGCCGCTTTCCCAAGGTGGCCATTGAMPATHRLDLPAIERALREVQDRFAQLSRHFTEPRDPLTDEVLQNVLEGYALVDEYVARGVDLFDLQQLNLMLEINATVLCGRDPARRLEYAHHLAATEAHFFNNVEGGIKDLYNWYCAYRSESVWKRAAGVYVRILSKPQLFIEGNNRSGSLIVSYLLMRAGLPPFVLTLENAEGYFNPSSVIRNSAKHGVKALYELPKIKKKYAAFLEEQAPDPMKFFLKGESLPLSQGGHNANANANANA
D1-35_04001621hypothetical proteinATGGACGTCAAATGCAGAACATTCAGCAGCCGGGTAGGGCAGGCCATCCGCGGCACATTGCCGACGCAGCTGTTCAAGCGCCAGCGCATACGGATTTCGTTTGATATCGATGACACGCTCGCCTGCCAACTCCACCACTGCGAAGTCGAGCAAAGCCGGCTGCCGGCCTGCATTCACCGTTGGCTGGGTGAGCCGCTGCGCCGGGGCACCCGCTCGCTGATCCGGGAATTGCGTCGCCAGGACTGCAGCATCTGGGTCTACACCTCGTCCGGCCGCACGCCGTCCTATATCCGCCGTTGGCTGCTGCTGTACGGCATCCGCGTCGACGGTGTGGTCAACAGCGTCCTGCACAACCGTGCCCTGATGGTGCATGGGCTGGAGAACTCACCCTCCAAGTACCCGCCGGCGTTCGATATCGACTTGCACGTTGATGATTCGGAAGGCGTGCAGCTCGAAGGCGATGACCATGGCTTTCGTGTTGTCGTGGTGCATCCGGAGGACGAGGGCTGGGCGCAGAAGGTGCTGGAGGCGGTCGCCGTTGTCCAGGCGCAGCTTGAGTGGCAGCAGATGTTCAGGCCCAAAGGAGCCGCGCAACAACGCGCGGAAGCTTCTTTGTCTTGAMDVKCRTFSSRVGQAIRGTLPTQLFKRQRIRISFDIDDTLACQLHHCEVEQSRLPACIHRWLGEPLRRGTRSLIRELRRQDCSIWVYTSSGRTPSYIRRWLLLYGIRVDGVVNSVLHNRALMVHGLENSPSKYPPAFDIDLHVDDSEGVQLEGDDHGFRVVVVHPEDEGWAQKVLEAVAVVQAQLEWQQMFRPKGAAQQRAEASLSNANANANANA
D1-35_040021011ppsCPhthiocerol synthesis polyketide synthase type I PpsCATGAAAGCCTGGCTATTAAAAGACTTCGGACTCGACAATCTGCAACTGGAAGAGACGGCTACACCACGCCCGGGGCCCGGCGAATTGCTGGTCAAGGTTGGCGCTGTCTCGCTCAATTTTCGCGACAAGGCCATCGTTGACGGCATTTATGAGCCGCATAAGGTGCCCAAGCCCCTCATTCCCGTAAGTGATGCGGCCGGAACAGTGGTCGCAATTGGCGATGGTGTGACGCGCTTCAAGATCGGTGATCGGGTCAACTCGCACCTGTACTCCCGTTGGCTGGATGGCGAGCCCGGACCCAATGAGCCGGATTACTGTTTTGGATCACCATTGTCCGGTGGCTTGGCCGAGTACATGATCATCCATCAGGAAAGCGCCGTGGGTGCGCCTGACAACATGAGCGATGAAGAGGCCGCTACGCTGCCGATTGCCGCGCTCACGGCATGGTATTCACTGGTGGACTTCGGGCAGATTGAGCCTGGACAAACCGTATTGGTCCAAGGCACTGGCGGTGTGTCCATATTTGCCGTGCAGATCGCAACTGCGCTCGGCGCCAAGGTGATCGCAACGTCGAGCACCGACGAAAATCTGCAAGCCGTGAAGGGATTGGGGGCCATAGCGGGCGTGAACTACAGGACTACGCCAAACTGGGCAGACGAAGTGCTGAAGCTGACCGAGGGTAAAGGCGTGGATCTGCTGCTGGATGTAGCCGGAGGCAGCGGCATCAATCAATCGATCGCAGCGACCAAGGCATCCGGGCGTATTGCGCAGATCGGCTTTTTGACCGGCCAGACTGCGGAACTCGAACTGATGCCTCTTATCTTTCGCCAGACAACCATTCGCGGTATTGCGGTGGCGCCGCGCTCATCGTTCGAGCGGATGAATGCATTTCTCAACCAACACAGGATTCGCCCAGTGATCGATCAGGTGTATCCGTTCGAGAAAGCCCGGGAAGCTTACGAGCACCTGGCAAAAGGAGCATTTGGAAAGGTTGTAATCAAGATCGCCTGAMKAWLLKDFGLDNLQLEETATPRPGPGELLVKVGAVSLNFRDKAIVDGIYEPHKVPKPLIPVSDAAGTVVAIGDGVTRFKIGDRVNSHLYSRWLDGEPGPNEPDYCFGSPLSGGLAEYMIIHQESAVGAPDNMSDEEAATLPIAALTAWYSLVDFGQIEPGQTVLVQGTGGVSIFAVQIATALGAKVIATSSTDENLQAVKGLGAIAGVNYRTTPNWADEVLKLTEGKGVDLLLDVAGGSGINQSIAATKASGRIAQIGFLTGQTAELELMPLIFRQTTIRGIAVAPRSSFERMNAFLNQHRIRPVIDQVYPFEKAREAYEHLAKGAFGKVVIKIAPGPT0006375_1223DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006375-EC_1_1_1_1|adh-K00001NANA
D1-35_04003915dmlR_20HTH-type transcriptional regulator DmlRATGGAACTGCTGCAATCAATGCGTCTATTCGCCAGGCTTGCCGAACTCGGCAGCTTCACAAAAACTGCCGAGTCGCTGGATATAGGGCGGCCGCAGGTCACCCGTTCCATTCAGGAGCTGGAGACATCATTGGGTGTGCGCCTTTTCCAGCGCACGACCAGAAAGGTGGCGCTCACCGCCGAGGGCGAACGATTCTATGGGCGGGTACAGGAGATTCTTGCGGACATTTCTGCCGCAACTTCGATGTTCGACCGCACCGGGGCAACGCTTACGGGCCGACTTCGCGTCGATATCCCGACCGCTTTCGCGCAAATGGATTTCATCAGAAGCCTGAAAGCGTTCACCAGCACCTTCCCAGGCATCAACGTGATACTGGGCGTGACCGACCGAGCCGTTGACTTGATAGGAGAGGGCATAGACTGTGCGTTGCGCATAGGCGATTTACCGGACTCGACATTAGTCGCTCGCCCCGTTGCATGGGCGACGATGGTGACGTGCGCGGCGCCCGAATATCTCGCCAGGCACGGCGAACCCCAGACACTCGGCGACCTGGTCTCCCATCGAGGGGTGAACTTCTTGTCCGGTCAGAGCAACAGGCCGTTGTCCTGGCATTTCTTGGTGGAAGGCCAGGATCGAGCGTTCGTAAGTAACCCCGCCATCACCGTCACTGAATCGAATGCGTACGTGCAGTGCGGTGTGTCGGGCTTCGGAATAATCCAGGCGCCAGGCATCGCTGTGGCCGGGTATCTGGAAAGCGGCGCTTTGGTGGAGATTCTGAGACCCTTTCGACCAGCTCCTCGCCCAGTGTCGTTGCTATACCCAAGCCGGACGCACCTGGCGCCGCAAGTGCAGGTTCTTCTCGAATGGCTGCAAGAGCACTTTGTTCAGCTTCATCCCGAGTGGCTGGAACGATAGMELLQSMRLFARLAELGSFTKTAESLDIGRPQVTRSIQELETSLGVRLFQRTTRKVALTAEGERFYGRVQEILADISAATSMFDRTGATLTGRLRVDIPTAFAQMDFIRSLKAFTSTFPGINVILGVTDRAVDLIGEGIDCALRIGDLPDSTLVARPVAWATMVTCAAPEYLARHGEPQTLGDLVSHRGVNFLSGQSNRPLSWHFLVEGQDRAFVSNPAITVTESNAYVQCGVSGFGIIQAPGIAVAGYLESGALVEILRPFRPAPRPVSLLYPSRTHLAPQVQVLLEWLQEHFVQLHPEWLERPGPT0028940_472DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-CHLORAMPHENICOL|TRIMETHOPRIN_EFFLUX_PUMP_BpeEF-OprC,PGPT0028940-bpeT-K18900NANA
D1-35_04004735hypothetical proteinATGAAGATCGGAATTATCGGCGCGGGCAACATTGGAGCCACCCTTGCCCGCAAGCTCGCTGCGTGCGGCCATGAAATCAAGCTGGCGAACTCGAAGGGTCCTGAAAGCCTACAGAAACTCGCCAGCGAAATCGGTGTAAAGGCAGTGACCAGGGAAGAGGCTGTGTCTGGGGTGGACGCGGTTATCCTCTCGATCCCGTTCGCAAAACACCCCGAACTCGGGCAGGCATTCAGTAACGTCCCTGAAAAGACCGTCGTCATCGACACCTCCAATTACTATCCAGGCCGTGACGGGGCGATCAAGGACGTCGATGCCGGCAAGCCCGAGAGCATCTGGGTCAGCGAACAGCTTGGCCGCCCGGTCATCAAGGCCTGGAACGCCCTGCTCGCCGCCACGCTTGCCGATAAGGGCCAGCCAGCCGGGTCCTCAACACGCATAGCGTTACCTGTCGCAGGGAGCGATCCCGCCGCTTTGGCGGTTGCGCAGGATCTCGTCGAGGACACCGGCTTTAGCGCATTTGCCGCTGGCAACCTTGAAGACTCTTGGCGTCAGCAACCAGGTACACCGGCTTACTGCACCGAGTTGACATTGCCGGCGTTGAAATTGGCCCTGGACGCGGCTGACAAGACTCGGGCGGCGCAAAACCGCGACGCATTGATCGCCAGGTTCATGGCGCCCGGCAGTCAGCTTTCACATGAGCAAATCGTTGCCTTGAATCGCGCCATGACAGCCTGAMKIGIIGAGNIGATLARKLAACGHEIKLANSKGPESLQKLASEIGVKAVTREEAVSGVDAVILSIPFAKHPELGQAFSNVPEKTVVIDTSNYYPGRDGAIKDVDAGKPESIWVSEQLGRPVIKAWNALLAATLADKGQPAGSSTRIALPVAGSDPAALAVAQDLVEDTGFSAFAAGNLEDSWRQQPGTPAYCTELTLPALKLALDAADKTRAAQNRDALIARFMAPGSQLSHEQIVALNRAMTANANANANANA
D1-35_04005759hcaB_43-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenaseATGAACCGCACTGGCAACACGATCCTGGTCACTGGCGGCTCTTCAGGCATAGGCCTTGGCCTTGCGCTCAGGCTTCACGAGGCGGGAAACAAAGTGATTATCGCGGGACGTCGCAAGGCGCTGCTCGACAAAGTCGTGTCGGAACATCCGGGTATCGAATCGATATTGCTGGATGTCTGCGATCCACAATCCATCCTGCATGCCAGCGAAACCCTTGCGATCAGCCATCCGAACCTGAACGTCCTGATCAACAACGCAGGCATCATGCAATGGGAGGACCTGACTGCGCCGGACAATCTGAGTACCGCCGAAGATATCGTGACCACCAACCTGCTCGGCACGATTCGCATGGTGTACGCGTTTACGCCGCATCTGATCAAACAGCCCAGCGCAACGATTGTGAATGTCAGCTCCGCCCTGGCATTCGTCCCGCTGCCGGCGACGCCGACCTACAGCGCAACCAAAGCGGCCGTGCACTCCTTTACTCAAAGTCTTCGAGTACAGCTGGAGGCGTCTTCGGTCGAAGTCATCGAGCTTGCGCCGCCGGGTGTGCGTACCACTTTGCTTGGGCAGGAAAACGACGAACACGCCATGCCCCTGGAGCAGTTCCTGGATGGAATCTTCGAACTCCTCGCCATCACCCCGACGCCACAGGAACTTGTCGTCGAGCGCGCCAAGCCATTACGGTTTGCCGAAGCGGATGGTACACATGACGAGGTTCTGAAAATGCTGGCGGGATACAAAGCGCCAGCTGAATGAMNRTGNTILVTGGSSGIGLGLALRLHEAGNKVIIAGRRKALLDKVVSEHPGIESILLDVCDPQSILHASETLAISHPNLNVLINNAGIMQWEDLTAPDNLSTAEDIVTTNLLGTIRMVYAFTPHLIKQPSATIVNVSSALAFVPLPATPTYSATKAAVHSFTQSLRVQLEASSVEVIELAPPGVRTTLLGQENDEHAMPLEQFLDGIFELLAITPTPQELVVERAKPLRFAEADGTHDEVLKMLAGYKAPAEPGPT0013220_422DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0013220-dltE-K14189NANA
D1-35_04006591hypothetical proteinATGCCTGACGAACTGGTGATGCGTGCTGACGCCAAGAAAAACCGTGAACGGATACTGGAGGTCGCCGTAACAGAGCTGACCCTCGATCCCGCGGTCCCGCTGAGCACGATTGCGAAGAAAGCCGGGGTAGGCCAGGGCACGTTCTATCGCCACTTCGCCACCCGGGAAAAATTGGTATTCGAGGTCTATCAATTCGAAATGCAGCAGGTGGCTTCGTTGGCGGAACAACTGCTCGCCACGAAACCGCCGAAGGAAGCCCTCCGGGAATGGATGGACTGCCTCGCCGAATATGCGATGACCAAGGCCGGACTTGCGAGTGCGATACGCCAGGCCGCTTCTGCCTATGAGTTTCCGGGGAAGTCGGGATACGCGCCGATGCTGGCGGCGGCAGAATTGCTCTTGAGGGCTAACGAAAAGGCTGGAACGATTCGTAGCGGAGTGACCAGCGACGACTTTTTCCTGGCCACTGCCGGAATCTGGCAAATGGATTGCCAGAGCGAATGGCATCCACGTTTCTCCAGGTTGATGGATCTGGTCATGGATGGCCTGTGCGCGGGCAGCCCTGAAAGCCTGAAGAGGGACAACGACTAGMPDELVMRADAKKNRERILEVAVTELTLDPAVPLSTIAKKAGVGQGTFYRHFATREKLVFEVYQFEMQQVASLAEQLLATKPPKEALREWMDCLAEYAMTKAGLASAIRQAASAYEFPGKSGYAPMLAAAELLLRANEKAGTIRSGVTSDDFFLATAGIWQMDCQSEWHPRFSRLMDLVMDGLCAGSPESLKRDNDNANANANANA
D1-35_040071161nemA_2COG1902N-ethylmaleimide reductaseATGAAATACAGCTCGCTGTTCGAACACACCTCGCTAGGCCCACTGACGCTGAAAAATCGCATCGTCATGCCGCCCCTGACCCGTCAACGCAGCGGCCAGCCCGGTGACGTGCCCACAGCCCTCATGGCCCGCTATTACCAACAGCGCGCGAGTGCCGGCCTGATCATCAGCGAAGGCACCCAAATCGAACCCCGTGGCAAGGGTTATGCCTGGACGCCGGGCATTTACAGCCAGGCGCAGATCGATGGCTGGCGCACCGTCACCGAGGCGGTTCACGCTGAGGGCGGGGTAATTTTTGCCCAGCTCTGGCATGTCGGTCGCGTGTCACACAGCGCACTGCAACCGGAAAACGCCGCCCCTGTCGCACCGTCGGCGATCCAGGCGAAAAAGGTCAAAGCCTTTATCGAAACCGGTCCCGGCACCGGCACGCTGATCGAACCCTCCACTCCGCGCGAGCTGAGCGTCGCCGAGATCAAGGCGCTGGTCGAACTCTATGCCCAGGCCGCACGCAACGCCCTGGCGGCCGGTTTCGATGGCATCGAGATCCACGCGGCCAACGGTTATCTGGTCAATCAGTTCATTTCCGCCCATGCCAACCAGCGCACCGATGACTACGGCGGCTCGCTGCACAATCGCCTGCGTTTCCTGCGCGAAGTGGTCCGGGCCGTCAGCGCCGTGGTCGGGCCCGACCGTGTGGGCGTGCGCTTCACGCCGCTGTTCACCAGCACCGAAGAAGACCGCGTGTACATCGGCTTCGTCGAGGACGACCCGCACCAGACCTACATCGAAGCCATCAAGGTGCTTGAGCAGGCAGGCATCGCCTATCTGTCCATCGCCGAAGCCGACTGGCCGAATGCGCCGGACCTGCCCGAGGCGTTTCGGCGCGAGGTGCGAAGCACCTTCACCGGCCGCATCATCTATGCCGGGTTGTACACCGCTGACCGCGCGGCGCGCCTGATCGAGTCGGGCCTGGCCGACCTGGTCGCATTCGGCCGGCCGTTTATCGCCAACCCCGACCTGCCCCAGCGTATCGCCAATGGTTGGCCGCTCAACGCTCTTGATGCCACCGGACTGTACGGCGGTAATGAACAAGGATTCACCGATTACCCGCGGTATTCCCCATCCACAGTTGAGCGCGAGGAAACAATTCCCACGTACTGAMKYSSLFEHTSLGPLTLKNRIVMPPLTRQRSGQPGDVPTALMARYYQQRASAGLIISEGTQIEPRGKGYAWTPGIYSQAQIDGWRTVTEAVHAEGGVIFAQLWHVGRVSHSALQPENAAPVAPSAIQAKKVKAFIETGPGTGTLIEPSTPRELSVAEIKALVELYAQAARNALAAGFDGIEIHAANGYLVNQFISAHANQRTDDYGGSLHNRLRFLREVVRAVSAVVGPDRVGVRFTPLFTSTEEDRVYIGFVEDDPHQTYIEAIKVLEQAGIAYLSIAEADWPNAPDLPEAFRREVRSTFTGRIIYAGLYTADRAARLIESGLADLVAFGRPFIANPDLPQRIANGWPLNALDATGLYGGNEQGFTDYPRYSPSTVEREETIPTYPGPT0005930_115DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_TOLULENE|DERIVATE_DEGRADATIONXENOBIOTIC_NITROTOLULENE_DEGRADATION,PGPT0005930-nemA-K10680NANA
D1-35_04008684hypothetical proteinATGAAAGTTCTCATGGTACTGACCTCGCACGACACCCTCGGCAACACCGGCCGCAAGACCGGCTTCTGGCTCGAAGAGCTGGCGGCGCCCTACTACGCTTTCCTCGACGCCAAGGCCGAGATCGTTCTGGCGTCGCCTGAGGGTGGGCAGCCACCGCTTGATCCGAAGAGTAACGAGCCGTCCTTTCAGACTGACCTGACCCGCCGTTTCGAAGCCGATCCTGAAGCGACCGCCTTGCTTGCCAGCACCGTGCGCCTGGACAGTGTCTCGCCAGACGATTTCGATGCGGTTTTCTACCCAGGCGGCCACGGCCCGCTGTGGGACCTGGCCGAAGATCCGGTCTCGATCCGCTTGATCGAGTCTTTCCAGGCCGCCGGCAAGCCTGTCGCCTTGGTGTGCCACGCGCCTGGCGTGCTGCGCCACGTGAAAAAGCCTGACGGTACTCCGCTGGTCCAGGGCAAAAAAGTTGCCGGTTTCACCAATACCGAAGAAGCCGCGGTAGGCCTGACCGATGTCGTGCCGTTCCTGGTCGAGGACATGCTCAAGGTCAACGGCGGCCTGTATTCGAAAGGCGCCGACTGGTCCTCCTACGTGGTGCGTGACGGTCTGCTGATCACCGGTCAGAACCCGGGTTCGTCAAGCGAAGCCGCGCAGGTCCTTATCGATCTGCTGAACGAGGCTTGAMKVLMVLTSHDTLGNTGRKTGFWLEELAAPYYAFLDAKAEIVLASPEGGQPPLDPKSNEPSFQTDLTRRFEADPEATALLASTVRLDSVSPDDFDAVFYPGGHGPLWDLAEDPVSIRLIESFQAAGKPVALVCHAPGVLRHVKKPDGTPLVQGKKVAGFTNTEEAAVGLTDVVPFLVEDMLKVNGGLYSKGADWSSYVVRDGLLITGQNPGSSSEAAQVLIDLLNEANANANANANA
D1-35_04009603nemRHTH-type transcriptional repressor NemRATGAGCAGCCCAAAGACCCGCGAAACCTCCGACGTCCGCCAGGAAATCCTTGATGTAGGCCAACGAATCATGGCCGCCAAAGGCTATTCCGCCGTGGGCCTGAATGAAATCCTGGCCACTGCGGGTGTGCCAAAAGGATCCTTCTACCACTACTTCGGCTCAAAAGACGCCTTCGGCGAGGCATTGCTTGAAAGCTATTTCGCGAGCTATCTGGCGGAGCTGGACGAGGTTCTCGCGCTGCCTGGCCTGACGATGGCTCAGCGTCTGATGAAGTACTGGGACATCTGGCAACAGACTCAATCGTTCCAGGATTGCCAGGGCAAATGCCTGGCGGTGAAGCTGGGCGTGGAAGTCGCCGACCTTTCAGAGGCGATGCGCGCGGTGCTCAAGCGCGGCACAGCGGGTATCACCGACCGCCTGGCCGTGGCGATCGAGAGCGGAATCGCCGAAGGCTCCCTGGAGTCCGTTGCCGAGCCTCATGCGGTCGCGCAAAGTCTCTATCAGCTGTGGGTCGGTGCCAGTGTCATGGTCAAGATCACCAAGAGTGTCCAGCCTTTCGAGACGGCAATGGCGACGACTCGCCAGATTCTCAGCCTTACCTGAMSSPKTRETSDVRQEILDVGQRIMAAKGYSAVGLNEILATAGVPKGSFYHYFGSKDAFGEALLESYFASYLAELDEVLALPGLTMAQRLMKYWDIWQQTQSFQDCQGKCLAVKLGVEVADLSEAMRAVLKRGTAGITDRLAVAIESGIAEGSLESVAEPHAVAQSLYQLWVGASVMVKITKSVQPFETAMATTRQILSLTNANANANANA
D1-35_04010651comRHTH-type transcriptional repressor ComRATGGCTCAGATGGGACGGCCGCGCACGTTTGACCGTGACGCGGCAATCACGCAGGCGCTGCATCTGTTCTGGGAGCATGGCTATGATGCGACGTCGCTCAGCCAGCTCAAGGCCAACATCGGTGGCGGCATCACCGCACCGAGCTTTTATGCAGCGTTTGGCTCCAAGCAGGCGTTGTTCAACGAAGTGATGGAACGCTACCTGACTACCCATGGCAGGGTGATGGAGAGCCTGTTCGACACCACCCTGCCCCCCAGGGAGGCGATCGAATGCACGCTGCGCCGCTCGGCGAAAATGCAATGCGAGACAGACCATCCCAAAGGCTGCCTGGTGTCACTGGGTTATCTGAGTGCCTGCTCGGAAGAAAGCAAAGCCATCTCCCGGCCGCTCGCTGAGGCAAGAACCGCCAACCGTGCCGGAATCAAGGCCTGTGTAGATCGCGCCATCGCCGCCGGAGAGCTGCCGGCAACAGTGGCCTCGGAAGCGCTGGCCGCGGTGTTCGACAGTTTCCTGTTGGGCCTGTCGGTATTGGCGCGGGACGGCGCCTCCCTTGAGACCTTGGACGCCGCGGTTACGCAGGTCATGACGGTCTGGGACGCGCAACGCATGGGCCGTCCGATGGCGGCAAACGATCAAGCGGATGAGCAATAGMAQMGRPRTFDRDAAITQALHLFWEHGYDATSLSQLKANIGGGITAPSFYAAFGSKQALFNEVMERYLTTHGRVMESLFDTTLPPREAIECTLRRSAKMQCETDHPKGCLVSLGYLSACSEESKAISRPLAEARTANRAGIKACVDRAIAAGELPATVASEALAAVFDSFLLGLSVLARDGASLETLDAAVTQVMTVWDAQRMGRPMAANDQADEQPGPT0004136_310DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE_MEDIATION,PGPT0004136-comR|ycfQ-K22041NANA
D1-35_040111206nepI_3COG2814Purine ribonucleoside efflux pump NepIATGGTCACCAACGAACGACAGGGCGCGAAGCTGCCCTATGGAGCACTGCTGGCGCTGGCAATGACCGGATTCATCTGCATCGTGACGGAGACGCTGCCGGCAGGTCTGCTGCCTGAGATTGGCGATGGCCTGGGCGTCTCACCATCCCTGGCCGGGCAGATGGTAACGGTGTATGCGCTCGGCTCACTACTGGCAGCCATCCCGCTGACCATCGCTACCCAAACCTGGCGCCGCAGGACGGTGCTGCTTCTCACCGTGGTCGGTTTCCTGGTGTTCAATTCCATTACCGCGCTGTCTTCCGTTTACTGGCTGACTCTGATCGCACGTTTTTTTGCCGGTGTTTCGGCGGGGTTGGCCTGGAGCCTCATCGCGGGTTACGCACGGCGCATGGTCGTCCCGGCCTTGCAGGGGCGCGCCTTGGCGGTAGCGATGGTCGGCACGCCCATCGCGTTGTCGCTGGGCGTGCCCCTGGGAACCTGGCTTGGCGGGGCGATAGGGTGGCGCATGTCGTTTGGTCTGATGTCCGGATTGACCCTGGTGTTGATCGCTTGGGTGCTGATCAAAGTGCCGGATTACCCAGGTCAATCCTCCTCCCAGCGTCTGGGCTTGCGTCAGGTCTTGTTCACGCCTGGCGTGCGCGCCGTGCTCGGCGTTGTGCTGACCTGGATGCTGGCCCACAACCTTCTCTATACGTACATCGCGCCATTTGTCTCCGGCGCAGGGCTGGGCCGGCATGTCGATGTGGTCCTGCTGGTCTTCGGTGTCGCGGCGCTGGCTGGCATCTGGATCTCCGGGCGGCTGGTCGATCGCCATCTGCGAGCGGCGGTATTGACCAGCCTCGCTACGTTCGCCGCCGTATCGGTCTTCCTCGGAATATTTTCAGCTTGCGCCGCAGCGATCTATCTCGGCGTTTTCATCTGGGGCCTGACCTTCGGCGGCGCCGCAACGTTGCTGCAAACGGCCTTGGCCGACGCAGCAGGCGAGGGCGCCGACGTTGCGCTGTCGATGAACGTGGTGGTGTGGAACAGCGCAATCGCCGGCGGCGGGTTATTGGGCGGGGTGTTGCTTGGCCAATGGGGCGTCAGCACTTTTCCCTGGGTGCTGTTGGTGTTGCTGCTCGCCAGCCTGGCGCTCGCGCTCCGAGCGCGGGTGCATGGCTTTCCGCAGGGCGAAAGATATGCCGGTCATGGCGCAGCCGCGCATTGAMVTNERQGAKLPYGALLALAMTGFICIVTETLPAGLLPEIGDGLGVSPSLAGQMVTVYALGSLLAAIPLTIATQTWRRRTVLLLTVVGFLVFNSITALSSVYWLTLIARFFAGVSAGLAWSLIAGYARRMVVPALQGRALAVAMVGTPIALSLGVPLGTWLGGAIGWRMSFGLMSGLTLVLIAWVLIKVPDYPGQSSSQRLGLRQVLFTPGVRAVLGVVLTWMLAHNLLYTYIAPFVSGAGLGRHVDVVLLVFGVAALAGIWISGRLVDRHLRAAVLTSLATFAAVSVFLGIFSACAAAIYLGVFIWGLTFGGAATLLQTALADAAGEGADVALSMNVVVWNSAIAGGGLLGGVLLGQWGVSTFPWVLLVLLLASLALALRARVHGFPQGERYAGHGAAAHNANANANANA
D1-35_04012813moaF_2Protein MoaFGTGAGCTATCAGATCGAACAAGAACTGAAGAACCAACCATTCGTGCCTGAAGAGCAATGGCCGACGCTTGAGGAAATGGCCGACGGTTTTAATGAGTACAAATACGCTCCGTCCCTATTTCTGGCAGGAAAAAAAGCCAACCTTCGCTTTGCCAACGGTTGGCTGATCGAGCACCATTTTGTTGATGGGAATACGTTGACCTGGACCATCCTGGAGGGCGAAGGCACCGGTGAATCCGAAACAGAAACCTACGAAGCGGTGGAGGTTCGCCCCGGTATCTTTTTCATCGACTTCCTCAAGCCCGAACACCAGGAGTCGGCCACCCTGGTCTGGAAATACGAAACCGGTGATGTACTGGCGGCTGTCTCCCTTTTTTATGACAGAGGAGGGGAAAAACGTACGCGTACAGATTTCGTGACTGCCGTGGTCGATGGCGAGCCTGGGGGCGCGCCCATCGTTCAAGGGGCCGGCCTGGTCGGTAAGCGCGTGCTGTACCGCTACAGCGCGGACGATTGGTATGAGCACGTCTACTTCGGCGCGCAAACCATGGCCTGGCACTGCGTGAACGGGGCTGAGAAAGGTCTGGCCGACGTCGAGCGGTGCGCTTATTTCGATGTCGCCGATGACCTCTACGTGTTGTTCTGGACCGAAACGGTCATGCCTGTGGAGTCGGTTATCGTCGTGGACCTTGCGCAGATGCGCTCCGTGGGTCGGTTCTTCTGTTGGGACCCGAAGCCAAGGAAACTGATTCACCTCACCTTTGGATCAAAAGCGACTGTGCTGAACGAAACGTCTTATCCCGTCGCCTTTTGAMSYQIEQELKNQPFVPEEQWPTLEEMADGFNEYKYAPSLFLAGKKANLRFANGWLIEHHFVDGNTLTWTILEGEGTGESETETYEAVEVRPGIFFIDFLKPEHQESATLVWKYETGDVLAAVSLFYDRGGEKRTRTDFVTAVVDGEPGGAPIVQGAGLVGKRVLYRYSADDWYEHVYFGAQTMAWHCVNGAEKGLADVERCAYFDVADDLYVLFWTETVMPVESVIVVDLAQMRSVGRFFCWDPKPRKLIHLTFGSKATVLNETSYPVAFNANANANANA
D1-35_04013966feaR_2COG2207Transcriptional activator FeaRATGTACAACACTTGGCAAACAGAACCGCTCTATACGGGCGCCCAGGGCTTCGAGGCCTGGCAACACGACCTCGGTCAGAAATGCGGAACCTTTCACGCCGAGCCGCCTTCCGGGCCCGGCCTCGCGAGCTTTACCGGCGCGATGAAAAATCTGACGGGCACAGATTCCGCGTTGGATGGCTCGCGCATCATCAGCAATTGCCAGCACTTGCACCGCGCCCGCAGCGATATTCGGGCCGATGACAAAGATTTTTTCTACCTGGTGCTGCAAGTCGGTGGTAGCGCATTGATGTGCCAGGCTGACAATCGCGCCCGCCTGGACAAGGGCGACCTAGTGTTGCTGGACATCACGCAGCCTTGCGATTTTTACTTCGATGCCCTGAGCGACCAGATGTCGCTGATCATTCCCCGCCAAGCGCTGCACCAACGCTTGGGGCAGAGGCAATTGATATTCAACCGTCCCTTGGTTGCCAGCAGCGCTTTGGGGGGCATGGCCGGCCTGATGACCCAACGGCTATTCGATTCTTCGAACCTGCTACCGCAAGAGAGTGCGGCATTGTTCGACGCATTGCTGATGCTGTTGCGCCCTGGGGTGAGCAGTGCAATCGAGGGCGGAGACTCCAGCGGCCAGGCGCAGAAACTGATCAAGGCAAAAATCCTGATCGAACGGCATCTTTGCGATAGCGAGTTGTGTGCCGAGCGTCTGGCAGAAGCCATCGGTACATCGGTCAGAAACCTGCATCGGCTCTTCGCCCAGCAAGGCACCACCATCGGCCGGCACATATTGGAACAGCGACTGCAACGCTGTGCCGAGACCATCAGCCAGGCAGCCGCCCATGAAAAAATCACCGCCATCGCCTACGCCTGGGGCTTCAATGATGTGAGCCATTTTTCCAAGGCGTTCAAGCTGCGATTCGGCATTTCTCCCCGCGACTATCGCCATCAGTTTTCAACCGAATGCAATTGAMYNTWQTEPLYTGAQGFEAWQHDLGQKCGTFHAEPPSGPGLASFTGAMKNLTGTDSALDGSRIISNCQHLHRARSDIRADDKDFFYLVLQVGGSALMCQADNRARLDKGDLVLLDITQPCDFYFDALSDQMSLIIPRQALHQRLGQRQLIFNRPLVASSALGGMAGLMTQRLFDSSNLLPQESAALFDALLMLLRPGVSSAIEGGDSSGQAQKLIKAKILIERHLCDSELCAERLAEAIGTSVRNLHRLFAQQGTTIGRHILEQRLQRCAETISQAAAHEKITAIAYAWGFNDVSHFSKAFKLRFGISPRDYRHQFSTECNNANANANANA
D1-35_040141440hypothetical proteinGTGGATACAACCAATAACAATACCTGTGCCTCGGCTTCGCACCTGCAGAAAACCTTGCGCTGGAGCGATGCATTCGCACTGTCAATGGCGGTGTCAGGCTCGATCTTCGCTTCTTTCGGCTTCGCCCTCGGTGCACTCGGTCCGGTAGCCGCGCTAATGCTCTGGGTGGGCTCGGCAGCCATCGGGGCCTGTCAGAACTGGATTTTCCTGGAAGTCAGCGCAATGTTTCCGGATAAACCTGGCGGCATCGCAATGATCGCGGCCGAAGGATGGCGCAAACGCTGTGCCTGGGTCGGTCCCTTGGCCGCCTTTGGTTACTGGCTTGGCTGGTCGGCGGTGTTGTCGATCATTGGCGTGAGCGCCGGAGCGTTGATTCAGGCGCAGTGGTTTCCCTCGCAAATCTGGAGCTTCGATACAGGTCTGGCCAACATTGGCCTGGCCCAGATGATCGGAGCGGGTTTGATCGTGCTTTTCTGGCAATTCAATCGTCGCGGCATCCATCTGGCCGCATCGGTCTCCAAATACATGGGGGCGCTGCTGCTGGTGCCGATCCTGGTGTTGGCAGTGGCGCCTTTGCTGGCTCATGGCTGGAGCATGGAGCGCTTCGCATCGGCCTGGCAGGCGCGCGAGGCGTTCGGTTGGGAGTCGTTGCGCACCGCGTTGGTCTGGATGTTCCTGGTCAGCTGGAGCGCCTATGGCACCGAAATGTGCGCAGCCTTCGGGCCCGAATATCGCAGCGAGCGGGACATGCGCCTGGCGTTGATGAGTTCAGGTGGCTACACCGTGCTGGTGTTTGCCGCAGTAGCTTTCGGCCTGGGCGGCTTGGTGGATCCGCAAGCGGCCCTGGAGAACCCCAGCGGTTTCTACATTGCGGCCTTCAACGCGGTGCTGGGCACGGGCTGGAGCAGCTTTTTCGTGATCGCGTTGCTGGTGGGGCTGTTCATGGGGTTGAACGCGGCATTGGCCGATGGCTCGCGGGCGTTGTACGGCACGGCGCTGGAAGGACTGACCATCAAACAACTGGGTGTGCTCAACAAACACCAGGTACCTGGACGTTGCATGAGCGTGGCGGTGGCGGTGAACCTGGCGATGATCTTTTTCCTGTCATCGCCCTTGGCAATTCTGGTGACGGCCAATATTGGTTATCTGACCGCCATCTTCTTCGCGCTTTCGGGCTTCATCTTGCTGCGCAAGGACGCACCGTTGCACCCGCGTCCGGTGCGTCTGGGACGCGGCTGGCTGCCGGTGGCCTGGCTGCTGAGCGTGTTCACTGGCGTAGTGGTCGGGGTCGGGGCCGCATCTGCCGAGCTGGCCGGTTATGGCGGAGCGAAGGAGGTGCTGATCGCCTTGGGCATCCTGATGTTTTCACTGCTGCTGTATGCCTATCGACGACTCGTGCAAGACCGCGCCCCGGCCTTGCCATCGGTCTCCCCACACTGAMDTTNNNTCASASHLQKTLRWSDAFALSMAVSGSIFASFGFALGALGPVAALMLWVGSAAIGACQNWIFLEVSAMFPDKPGGIAMIAAEGWRKRCAWVGPLAAFGYWLGWSAVLSIIGVSAGALIQAQWFPSQIWSFDTGLANIGLAQMIGAGLIVLFWQFNRRGIHLAASVSKYMGALLLVPILVLAVAPLLAHGWSMERFASAWQAREAFGWESLRTALVWMFLVSWSAYGTEMCAAFGPEYRSERDMRLALMSSGGYTVLVFAAVAFGLGGLVDPQAALENPSGFYIAAFNAVLGTGWSSFFVIALLVGLFMGLNAALADGSRALYGTALEGLTIKQLGVLNKHQVPGRCMSVAVAVNLAMIFFLSSPLAILVTANIGYLTAIFFALSGFILLRKDAPLHPRPVRLGRGWLPVAWLLSVFTGVVVGVGAASAELAGYGGAKEVLIALGILMFSLLLYAYRRLVQDRAPALPSVSPHNANANANANA
D1-35_040151302puuB_5Gamma-glutamylputrescine oxidoreductaseATGCTGTCCGTTGAAACACCAACGACCTATTACACCGCCACTCGCAAATATGACTTGAAGTTCAATGACCTGGAGCACGATGTCGAGGCCGAAGTCGTCGTTATCGGAGGTGGATTTTCCGGTATCAACACTGCGTTGGAACTCGCCGAGCGCGGATTCACCGACGTGGTAGTGCTGGAAGCCCGTTACCTGGGTTTCGGCGGCTCGGGGCGCAATGGCGGTCATGTGATGGCCGGGATCGGACACGATCTGGAGAAGATTCGCAAAAGCGTCGGCGAGGAGGGGCTCAAAGCGATTTTCGAGATCAGCGACCTGGGCGCCTCGATTATCCAGAACCGCATCCAGCGTTATCAAATTGATGCGGATTTCTGCCACGGCTATGGCTATCTCGGTTTCAACAAGCGCCAGGGTCGGCTGCTACAAGCATGGGAAAAAGAATACAAACAGCTCAATCCGGATCACGAAATTGCCTATCTGGAGGGCGCCGAGGTCCAAAGCATCGTCGGCTCGGACGTATACAGCTGCGCCTTGAAGCACATGGGCAACGGCCATATCCATTCGTTGAACATGCTCCTGGGGTCGGCCAAGGCCTTGGTGGGCCTGGGTGGACGCATTTATGAAAACACCCCCGTGCTGGAGGTGACCTATGGCGACACCATTAACTTGCGTACGGCGAAAGGTTCGGTTCGGGCGAAGAAGATCCTCTGGTCCTGCGGCGCGTTTCTGGACCGGCTCGAGCCTGAATTGCACAAGACGATGGTGAGCACTTACGCCTTCCAATTGGTGACGGAGCCGCTTCCCCCTGCGCTGATCGAACAGATCAGTCCGATACGAGGTGCCTTCAGCGATATTCGTCCGGTGATCGAGTACTACCGGGTGACCAATGAAAACCGTCTGCTCTTCGGTTCGGCGACGCGCCTGCTCGAGTACATTCCCAACGATCTGAAGGCGTGGAACCGAAATCTGATGCTCCAGGTTTTCCCCTACCTCGATCACGTGAAAATCGACCTGGCCTGGGGCGGGCCGATGGAGTGCAGCGCCAATCTGTTCCCACAGATCGGTACCTTGCCCGGGCGCGACAACGCCTATTTCGTCCAGGGTTACTCGGGCTTCGGCGTGACGCCGAGTCATGTGGTCAGCCGTGTCATTGCCGATGGCATGACCGGCGGTTCACGGCATTGGGATGTGATGAGTGCGATCCCGCGTACGCGGATTCCCGGCAAGGATCATTGGCGCAACCTGATCTGCACCCTTGGAAAGGCCAGCCACCAGCTGGCGGGCTACCGCAACGGTCGCCGCTGAMLSVETPTTYYTATRKYDLKFNDLEHDVEAEVVVIGGGFSGINTALELAERGFTDVVVLEARYLGFGGSGRNGGHVMAGIGHDLEKIRKSVGEEGLKAIFEISDLGASIIQNRIQRYQIDADFCHGYGYLGFNKRQGRLLQAWEKEYKQLNPDHEIAYLEGAEVQSIVGSDVYSCALKHMGNGHIHSLNMLLGSAKALVGLGGRIYENTPVLEVTYGDTINLRTAKGSVRAKKILWSCGAFLDRLEPELHKTMVSTYAFQLVTEPLPPALIEQISPIRGAFSDIRPVIEYYRVTNENRLLFGSATRLLEYIPNDLKAWNRNLMLQVFPYLDHVKIDLAWGGPMECSANLFPQIGTLPGRDNAYFVQGYSGFGVTPSHVVSRVIADGMTGGSRHWDVMSAIPRTRIPGKDHWRNLICTLGKASHQLAGYRNGRRPGPT0007637_849DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINE_USAGEPLANT_DERIVED_PUTRESCINE_DEGRADATION,PGPT0007637-puuB|ordL-K09471NANA
D1-35_040161317hypothetical proteinATGCTCGCCTGTAAAAAAACAATAATCGCGCTTTCGTTCGCCTGCGTCTGTGTTCCAGCAGCAGCGCAGCCGCTGTACAAGGATGAAGCCACGGAAGTCGATGCGCGCTTGCTCGCGTTGGCTGGCGCCTTCCATAGCCGGGAAAACTACTCGCAATCGGGAACACGTAGAGAGGGGGCCAGCCGGTGGCAAGAGGCGGTCCTGCAATACGGTTTCGACCTGCGCCATAGTCTCGACGCCGGGTCGCAACTGTACGGTTCATTGAATTGGGTAAGCTCCGCCACCTTTGGCGATGGCGACCCGGCCGGCTGGTCTTCAGGTGATGAGCGCACCACGAAAATCGAGGACGCTTTCGTGGGTTGGCGCTCCGGCACACGGTTCGATGTCATGGACGAGAACGGCGTGGACATATCGTTCGGGCGGCAAAACATCGTGATCGGCGACGGCTTTCTGGTCAGTGGCGATGCCTTGAATCTCGGCAAGGAGTTTGTCGACGGCAAAGCCAATCGGGGCGGGGGATACTACCTGACCGGTCGCAAGGCTTTTGATCGCACGGCCGTACTGCGCCTGGGTGGCCAGCAAGGCTGGCGGGGTGATCTTATGTGGCTCAAGTCCGACAACCCGGCCCAGGCCAGGCCGGAATTGGCACTGGGTACGCTGGAGCATGTCAGCGAGCAGGGCACCCTGGGCCTGACTTATCTGAAAGTCACCGATACCGACCAGGCAATGGCGGACCTGTTGTTTCCCGAGCGCAAGGGTATGCAGCTCTACAGCGTTCGCGGACAGGGTAATGCAGGGGTTTCCGGGCTGTTCCTGGCCGGTGAGTACGCTTGGGAGCAGAAAGATAACGCCAGGGAGAACGCCTGGTATCTTGAAGCCGGTTGGACGTTTGACGATGTTCCCGGCACGCCTTCGATCAACTACCGATACAGTCGTTTCTCCGAAGGCTACGACCCGCTTTTCTATGGCAATGGCCGCGCGCTCGGTACCTGGTTCCAAGGTGAAGTCGCTGCCAACTATGCGGGCCCGTTCAACAGCAACGCCACTGTGCAGCATGTGGGATTGAAACTCGCTCCCGCCGAGGATCTCAAGCTAGGCATCTTGCTTTACACCTTCCGCACCCTCGACGCGAGCCGTAACCAACTGGATGCCGACGAGGCGGACCTCTACGCCGAATGGTCGATTGACCCGCATTGGACCCTCATGCCCCTGGTGGGCCTCTATAAGCCGAAGCAAAGTGCCGCAAATGGCGGGACACAAGTCGGCAACAGCACCACCAATCTCTACGGGCAGGTTTTGGTGGCGTGGTCGTTCTAGMLACKKTIIALSFACVCVPAAAQPLYKDEATEVDARLLALAGAFHSRENYSQSGTRREGASRWQEAVLQYGFDLRHSLDAGSQLYGSLNWVSSATFGDGDPAGWSSGDERTTKIEDAFVGWRSGTRFDVMDENGVDISFGRQNIVIGDGFLVSGDALNLGKEFVDGKANRGGGYYLTGRKAFDRTAVLRLGGQQGWRGDLMWLKSDNPAQARPELALGTLEHVSEQGTLGLTYLKVTDTDQAMADLLFPERKGMQLYSVRGQGNAGVSGLFLAGEYAWEQKDNARENAWYLEAGWTFDDVPGTPSINYRYSRFSEGYDPLFYGNGRALGTWFQGEVAANYAGPFNSNATVQHVGLKLAPAEDLKLGILLYTFRTLDASRNQLDADEADLYAEWSIDPHWTLMPLVGLYKPKQSAANGGTQVGNSTTNLYGQVLVAWSFNANANANANA
D1-35_040171173fdhA_2Glutathione-independent formaldehyde dehydrogenaseATGAAAGCGTTACGCTGGCATGGAAAAAAAGATATCCGCTGTGATGACCATCTCCCCGACCCGACGATAGAACATCCGCGAGACGCGATTATCAAAGTCACTTCGTGCGCCATTTGCGGCTCGGACCTGCACTTGTATGACGGTTTCATGCCCGGTATGAAGCATGGCGACATCATGGGTCACGAGTTCATGGGCGAAGTGGTGGAAGTTGGTTCGGCCAACAAGAAGTTGAAGATTGGTGATCGGGTGGTGGTCCCCTTCACCATTTGCTGCGGTGAATGCGATCAATGCCGGCGGGGTAATTTCTCTGTGTGCGAGCGCAGCAACCGCAACAAGGACCTGGCCGACAAGGCCTTCGGCCATACCACGGCGGGCTTGTTTGGCTATACCCACCTTACCGGTGGCTACCCCGGCGGCCAGGCCGAATACGTGCGCGTGCCTTACGCGGACTTCACCCCGGTGGTCATCCCGGATGGCCTTACCGACGAGCAAGTGCTGTTCCTTGGCGACATCTTTCCCACCGGTTGGCAGGCCGCCGTGCAATGCGATATCCAGCCAACCGACACCGTCGCGATCTGGGGCGCCGGCCCGGTCGGCCAGTTCACGGTGCGCAGCGCGGTGATCCTCGGGGCCAGGCAGGTGGTATGCATCGACAACGTGCCCGAGCGCCTGGCCATGGCCAAGGCCGGTGGCGCCATCACCATCAATTTTGATGAAGAAAGCGTGCTGGACCGCCTGGCCGAGCTGACGGGAGGCAAGGGGCCGGAGAAATGCATCGACGCGGTAGGCATGGAGTCCCACGCAACCCGTTCATTCGACTCCATCTATGATCGGGTCAAGCAAGCGGTAATGCTCGAGTCGGACCGCCCCCACGTGCTGCGGGAAATGATGTACGTCTGCCGCCCCGCTGGCACGTTGTCGATCCCCGGCGTCTATGGCGGCTTGATCGACAAGATTCCGTTCGGCGCCGCCATGAACAAGGGCCTGACCTTCAAGATGGGCCAGACCCATGTGAACCGCTGGACCGATGATCTGCTCCAGCGCATCCAGGAGGGGCAGATCGACCCAAGTTTCGTCATCACTCACACCGTGAGCCTTCAGGACGGCCCGCAGATGTACAAGACTTTCCGGGACAAGAAAGACGGCTGCGTGAAGGTGGTGCTGAAGCCTTGAMKALRWHGKKDIRCDDHLPDPTIEHPRDAIIKVTSCAICGSDLHLYDGFMPGMKHGDIMGHEFMGEVVEVGSANKKLKIGDRVVVPFTICCGECDQCRRGNFSVCERSNRNKDLADKAFGHTTAGLFGYTHLTGGYPGGQAEYVRVPYADFTPVVIPDGLTDEQVLFLGDIFPTGWQAAVQCDIQPTDTVAIWGAGPVGQFTVRSAVILGARQVVCIDNVPERLAMAKAGGAITINFDEESVLDRLAELTGGKGPEKCIDAVGMESHATRSFDSIYDRVKQAVMLESDRPHVLREMMYVCRPAGTLSIPGVYGGLIDKIPFGAAMNKGLTFKMGQTHVNRWTDDLLQRIQEGQIDPSFVITHTVSLQDGPQMYKTFRDKKDGCVKVVLKPPGPT0006355_391DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0006355-frmA|ADH5|adhC-K00121NANA
D1-35_040182007hypothetical proteinATGACCAGCTCAAACATCAGCGTTGGCGCGGCGCTACGTGCCGGTACCGGCAAAACCTTCGTGGACCTGGACGGTTATAACGACACCGCCAAGATAGCCGTGGGGCCGGACGGCAAGATCTGGCTTGCCGGGATGACCTGGGTGGAAACTGGTCAGTGGGAGTACGAAGGCTACAGGACTTCTTTGGTACGCCTTAACGCCGACGGCACGCTCGACAGCACTTTCAGCGACGATGGTAAAACCCTGCTGCCTCGCGACATCTACCCGGGCGAAGGTTATAGCGCAGCCGTACAGGCCGACGGAAAGTACCTGATCGTCTATCCACATTTTTCTGCGCCGAGCATCGTCATGATCCGCCTGAACACCGACGGTTCGGTGGATCAGAGCTTCGGCGTCAATGGAACGGCCACCGCTCCGGCAGCATGGGGTGATTCCGCCAGCGCGACCGTACAGCCTGACGGCAAGATCCTCGTGGCGAATCATGACTCTTATGACCAGATTTTTTCCGTCAATCGTTTCAACCCCGACGGTACGGTCGATTCCAGTTTCAACGGCGGCAGCGCCGTGGAGTTCACTGTTCCGGGCCTCAGCACATTGGAAGGCTTTGGCCTGACGCTGCAGGCCGATGGAAAAATCCTCGTGCCCGGCTACAACGGCGCGTTTGTGGTCGCGCGGTTGAATCCTGACGGGTCCCTCGACACAGGTTTTGGCACCGACGGCACGGCCGACATTGAAGTAGCTGGCATGGCGAAATCGATTACCGTGCAGGCCGACGGCAAGATACTGGTAGCGGGTTACAACGAGGAGGAGGGAACCGGATTCGACTTCAAGATCATCAGGCTGAACCAGGACGGAACCTTCGACGCAGGTTTTGGCAACAATGGGATCGCTGTACTCGACCTGGCCGGCGGCAGGGATACGGCCCGGGACATCACCGTGCTTGCGGACGGCAAGATCCTGGTAGCCGGGCAGAGCAATTATTTTGGTAACGATGACTTCAGCATCATCAGGCTGAATCCTGACGGAACCCTGGACACCACCTTCGGCGCGCTGGCCGGTGTGTTGCCGCAAATTGAAGGAAGCGCGGGCGCCGATGTTCTTTATGGCTCCTACGTCCCGGAACTGCTCACCGGTCATGAGGGCAATGATGTGCTCGATGGAGGAGGGCAGCGCGATGTTCTCCATGGCGGCGCCGGCGCCGATGTGTTCCGAATCAACTCCATCGGTGACAGCTACCGCACCGACTCTCAGGCCGTCAGCGATCGCATCGTTGATTTCGATCCGGGCCAGGACCTTATCGACCTGTCCGCCTTGGGCTTCAGCGGACTGGGCAATGGGCTCGACGGAACCCTGGCGGTCTCTGTCAATGACAGCGGTACCCGCACTTATCTTAAAAGCTTTGAAGCGGACGGGCAGGGCCATCGTTTCGAACTGGCACTCAACGGCGATCTCTCTCAAGTTCTCAACGAAACCAACGTAGTGCTGAGTCGCACGCTGATCCAGGGAACGGAGTCGGCCGATCGCCTGAAGGGCTCGGCGGCGGGCGACGTGCTCATCGCCGGCGGCGGCGACGATGTCGTCTCGGGCGGCTTTGGGCACGATGTTCTTGATGGAGGATCGGGGCGAGACGTGCTGACAGGAAGTGAGGGGGCCGATGTGTTCCGCTATGGATCCCTGGAGGACAGCTTCCGTACGGCGGATGGAAATTTCCAGGACCGGATTGTCGACTTCGACCCGGATACCGACAAGATAGACGTCTCTGCGTTAGGCTTCACCGGGCTAGGGAACGGCTACAACGCGACGCTGACGGCCGTGCTGAGTGAGGATGGCCAGCGAACCTTCCTGAAAAGCTACAGCGCCGATGAACAGGGGCGTCGGTTCGAAATCACGTTGCAAGGCGATGTGGTGGCGCAACTTGGAGACGATGATTTTATCTTCGCTTCGGGTGATGAGCCTTTTACCGAGCTGCAGCTTCTTGGGGTCGCTGCGCCTGAGCAGCTTGGGTGAMTSSNISVGAALRAGTGKTFVDLDGYNDTAKIAVGPDGKIWLAGMTWVETGQWEYEGYRTSLVRLNADGTLDSTFSDDGKTLLPRDIYPGEGYSAAVQADGKYLIVYPHFSAPSIVMIRLNTDGSVDQSFGVNGTATAPAAWGDSASATVQPDGKILVANHDSYDQIFSVNRFNPDGTVDSSFNGGSAVEFTVPGLSTLEGFGLTLQADGKILVPGYNGAFVVARLNPDGSLDTGFGTDGTADIEVAGMAKSITVQADGKILVAGYNEEEGTGFDFKIIRLNQDGTFDAGFGNNGIAVLDLAGGRDTARDITVLADGKILVAGQSNYFGNDDFSIIRLNPDGTLDTTFGALAGVLPQIEGSAGADVLYGSYVPELLTGHEGNDVLDGGGQRDVLHGGAGADVFRINSIGDSYRTDSQAVSDRIVDFDPGQDLIDLSALGFSGLGNGLDGTLAVSVNDSGTRTYLKSFEADGQGHRFELALNGDLSQVLNETNVVLSRTLIQGTESADRLKGSAAGDVLIAGGGDDVVSGGFGHDVLDGGSGRDVLTGSEGADVFRYGSLEDSFRTADGNFQDRIVDFDPDTDKIDVSALGFTGLGNGYNATLTAVLSEDGQRTFLKSYSADEQGRRFEITLQGDVVAQLGDDDFIFASGDEPFTELQLLGVAAPEQLGPGPT0027825_384DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0027825-prtC-K01406NANA
D1-35_040191170hypothetical proteinATGCCCTCGAACCGAACTGCCGTACCCGCTTTGGCACTGGCACTGGCATTGGCGATTGCCATGCCCATGACAGAAAGCCTGGCTGCGCCTGTCAATAATGCCTCCGCGACCAAACCGATGCTGGCGCCTGTGCAAATGGCACACACCTTTGCACAGGTGCGCAAAGGCAATGTCGTCAGTACGCTCCTTGTGACCGCGCTGTCTGAAACCAGCGTGACGGCAATTGACCTGAGCGAGCTGTCCGGTCTTCATAGCGCTGATGCATTCGACGTCATCAGCCGTTTCAGCCTCGCGCGCCTCGACGCGCTTGCAGGCCAGCCGTCACGCACGCAAGTGCATCCGCTTGCCCGGCTGATGGGTGTAGGCCCACGGGGTGTGGCACATATCGCGGCCGGCACGAATTATCCAGAGCATGGCAAGGAGGTCGGCGTAGACGAGGCCTTCCTGTTCCCCAAGATATCGCCCGCCAGCGGCCCTGTTTCAAAAATCATTGCCGCAACGGATGCCTTGATGGACTACGAGGTTGAAGTGTGCGCGCGGTTCGACCGCGAGCTGAGATCCGCAGCGGATTTCGACGAGGCACGTAAGGGCTTCTTTATCTGCGGGGACTTCAGTGACCGAGCGGCCCTGGTCAGAAATATCAATTTGAAGGACATCACTTCTGGAGACGGTTTCCCTGATGCGAAGAGCGGAAACGACCGTTTTCCCGTTGGTCCGTTTCTGGTGGTGCCCAAGGATTGGAAAACCTTTCTCGCCGCTGTCGTTATTGAAACTTATGTCGATGGCGAACGACGTCAGCAAGCGAACGCAGGCGACATGATCAAGGACCTTCGCCTTATTGTGCGAGAAACGCTCGAACAAGCAACCACCCGTACCTGGTCGTATCAGGGCGGCCGCATTCCCATGGTCAACCGCCAGGCAATCGACACAGGCAGCGCTGTACTTACCGGGACCGGTGACGGAGTGGTGTTCAAGGAGCCAGGCCCCGAGGTTATCGACGAGCTCATGGGAGCACGCAGCCGGGATCAGCAACTCAGCGTGATCGAAGCCTATCTGGCGGCAGAGCAGAAAAAAGGCATCTATCTGCGCCCGGGCAACACCGTGCGGTATTCGAGTAATTATCTTGGCTCGATCGAGACCGAGGTGGTTTCCGTCAGCTCCGCTAAATAAMPSNRTAVPALALALALAIAMPMTESLAAPVNNASATKPMLAPVQMAHTFAQVRKGNVVSTLLVTALSETSVTAIDLSELSGLHSADAFDVISRFSLARLDALAGQPSRTQVHPLARLMGVGPRGVAHIAAGTNYPEHGKEVGVDEAFLFPKISPASGPVSKIIAATDALMDYEVEVCARFDRELRSAADFDEARKGFFICGDFSDRAALVRNINLKDITSGDGFPDAKSGNDRFPVGPFLVVPKDWKTFLAAVVIETYVDGERRQQANAGDMIKDLRLIVRETLEQATTRTWSYQGGRIPMVNRQAIDTGSAVLTGTGDGVVFKEPGPEVIDELMGARSRDQQLSVIEAYLAAEQKKGIYLRPGNTVRYSSNYLGSIETEVVSVSSAKNANANANANA
D1-35_04020807mipA_1COG3713MltA-interacting proteinATGAAACCTTCTCTGATTTTCTCCGCCATCCTTTGTGCCACTTCCGGCTTCGCCAACGCTGAGATTGCTGATGATGACGCGAATCCCACCCGCAAAACACCGCAATCCCGCTGGGGCCTCGGACTGGGAACCGCAATATCAAGCGGCGTTTATGCCGGTGAGGGCGTGCAGCTAACGCCTTTCCCTCTCTTCAGCTACGAAGGTGAGCGGTTTTTCTGGCGTGGAATAGCCGGCGGCGCGCATCTGTTCGAGCGTGACGGTTTCGCAATCGATGCGACATTGTCTGCACGCATGGATGGAATCGATCGATCAGATTTCGGCAGACGCGAACTCGCAGACCGTGGCGTTGACCGCTCATTGCTCGATGACCGTGACGATGCAATCGACATGGGGATCGCGGCCACGTGGACCGGGGACCTGGGGCAACTGGAGCTCGCCGTCAAAAGCGACATCAGCGACGCCAGCGATGGCTATGAAGCTGGGTTGAAGTACGGCTACCCCATTCAGTGGGGGCGAAGCAGAATCACCCCTAGCGTCGGCATTTCCTACTTGTCTGAAAAACTGGCGAACTATTATTACGGTACGCTTCCTGGAGAAGTCGACCGAGGCGTTGTCGATTACCGGCCCGGCAGTGCGACGGTGCAACGCGTCGGTCTGGATTTTGCTCGACCATTCGCAGAGCGCTGGGTGTTCATCGCAAATGCTACGTATGAACACCTCCCGGTGAAAATCACCGACAGCCCGTTGGTAGACGAAGACACAAACGGCGCGATGTCCGCGTTTATCGGGATATCGAGAAGTTTTTGAMKPSLIFSAILCATSGFANAEIADDDANPTRKTPQSRWGLGLGTAISSGVYAGEGVQLTPFPLFSYEGERFFWRGIAGGAHLFERDGFAIDATLSARMDGIDRSDFGRRELADRGVDRSLLDDRDDAIDMGIAATWTGDLGQLELAVKSDISDASDGYEAGLKYGYPIQWGRSRITPSVGISYLSEKLANYYYGTLPGEVDRGVVDYRPGSATVQRVGLDFARPFAERWVFIANATYEHLPVKITDSPLVDEDTNGAMSAFIGISRSFNANANANANA
D1-35_04021714czcR_4Transcriptional activator protein CzcRATGAGCATGGACAATAGGGTCAAACAGGCCTTGAGCGTTCTCATCATTGAAGACAACGCGGCCTTGGCTGCCAACATCTATGATTATCTTCACGCTTGTGGACATCATCCCGATGCGGCGCCCGATGGCGAGACGGGCCTCAGTCTCCTGGCGAGCAACCGATACGATGTGATCGTGCTCGACTGGATGATGCCGCGCATGGACGGCATGACAATGCTGGCGAAGCTTCGCAATCAATTGAAGTCTCGCATCCCGGTAATATTGATCACCGCCAAGGATCAAGTCGCAGACAAGATTCAAGGGTTTCTTACGGGCGCGGATGATTACGTTGTCAAGCCGGTCGCGCTTGCGGAGCTTGAAATAAGATTGAGAGTCGTCACTCAGCGCATGAGTGGCGCGCATCTCGAGTCGCAGGTACTGCAAGTGGCCGACTTGCGATTTGACCTGGACACCTTGCAGGTGACGAGGGCTGGTAAAACGCTCGCGATGACGCCCGTTCGCCGAACACTGCTTGCTTTGCTGATGCGCAGGTCACCAGGCCTGGTACGCCGAGATGAGCTTGAAACGCTGATCTGGGATGACCGCGTTCCGGACAATGACGCCCTGCGTTCACATATGTATATGTTGCGCAAGGCCGTGGATGGAGGCGCGTCACACAAGCTGATCAAAACCGTGGCGGGTAGCGGTTACCGTCTGCAAGCCGCCGATGAATGAMSMDNRVKQALSVLIIEDNAALAANIYDYLHACGHHPDAAPDGETGLSLLASNRYDVIVLDWMMPRMDGMTMLAKLRNQLKSRIPVILITAKDQVADKIQGFLTGADDYVVKPVALAELEIRLRVVTQRMSGAHLESQVLQVADLRFDLDTLQVTRAGKTLAMTPVRRTLLALLMRRSPGLVRRDELETLIWDDRVPDNDALRSHMYMLRKAVDGGASHKLIKTVAGSGYRLQAADEPGPT0004105_1053DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0004105-cusR|copR|silR-K07665NANA
D1-35_040221350hypothetical proteinATGGCAGCCAGTAGCTTGAGTCGCAGGATCAGCGTGATTTTCATCTTGTTCGGCCTCACATTGGCTGCAGGACTGACCATCCAGGGCAACTTGAGCCAGCAAATGGTCGTTCATCCCATCTGGCGCGAGCTTTTGCAGTCCAGTACGGACCAGTACCTGTCTGATGGAAGATCAACTGCGGAAAAAGATCTTTCATCCGCCGGGATAATTCGGGGTTGGCGTCTGAACGGATATGCTCCGCCACCCGATATGCCCCCGTACTTCGCGTCGCTCGACCCTGGCTACCACGATGAACATCAGATGGATTCCTATGACACCGACCGTAGCCATGCTGTGCTCGTAACACCGCTTGGGAACGAGCGTATTGTCATGTCCGTGGACATAACCGACCTGGAAAACCATCAAAACATGACAGCGCTGCTGAGCGTGCTCATGGCGCTATTGAGCAGTTTGATGATCCTGGGCGCGATTGTCTGGGTCTACCGCACGCTGAGGCGACCCCTCCAGCTACTGGCCCAACGGATGGATGAGCTGGACCCGGAGCAACCGGCCCTGCGCCTTGCAACCGACTTCGACTTGAGTGAATTGCACGACATAGCGGTCATTGTGAACCGTCACCTTGACCGGGTAGGACGATTCATAGAACGGGAACGCAGCCTGTTGGACCTGGCCAGCCATGAATTCCGTACGCCTGTCTCAGTGATTGCAGGCGCCGTCGACGTTATCAAATTGTATAAGTTGCCAGCGGAAACAGACCGACCTTTGGCGCGCATCGAGTCGACAATAGGCAATCTGATGGAAATCATGTCGGCCTTATTATTCCTGTCCAGGGAGCCCGATGCGAAGGCTGCCGCCGAGACCACACGGCTCGACGCGATAATCGTGGCCTTGGTTGACGATCATGCGCATCTGCTGAACGGGACGGGGGCGGCATTTGTGATCGAAGAATTTCATCCTGCGACAGTTGCCTGCCCCGAGGCGATGGTCAGGATCGTCGTCAGCAATTTGCTGCGCAATGCGACAGAGCACGGTAATGCAGGGCCCATCAGAATCTGCCTGGCGGACGGCAGATTGAGCATACGCAACAGCTCGGGAGGCTTTGACGTGGTCGAGGCCGCTCGACGCCATACCATGGCGTTGAGGGATTCAAGCAAGCAGGGCGGGGGACAAGGTCTGGGGCTGTTCATCACCCGGCGAATTTGCGAGCGATTTGGATGGACCCTGATACTCTCGTCGGCGGTTGAAGGTGAGATTCTGGCGCAATTGCACTTCGGCCAGGCGGCCCCATACGATGACCGGGCCGAGGCCTCGGGCCAGTCGTACCGAGCGCCTCCCGGCAGCCTACGCTGAMAASSLSRRISVIFILFGLTLAAGLTIQGNLSQQMVVHPIWRELLQSSTDQYLSDGRSTAEKDLSSAGIIRGWRLNGYAPPPDMPPYFASLDPGYHDEHQMDSYDTDRSHAVLVTPLGNERIVMSVDITDLENHQNMTALLSVLMALLSSLMILGAIVWVYRTLRRPLQLLAQRMDELDPEQPALRLATDFDLSELHDIAVIVNRHLDRVGRFIERERSLLDLASHEFRTPVSVIAGAVDVIKLYKLPAETDRPLARIESTIGNLMEIMSALLFLSREPDAKAAAETTRLDAIIVALVDDHAHLLNGTGAAFVIEEFHPATVACPEAMVRIVVSNLLRNATEHGNAGPIRICLADGRLSIRNSSGGFDVVEAARRHTMALRDSSKQGGGQGLGLFITRRICERFGWTLILSSAVEGEILAQLHFGQAAPYDDRAEASGQSYRAPPGSLRNANANANANA
D1-35_04023456hypothetical proteinATGGATTGCATCATCCGCAAGGCAACGAGTACCGACGCCACAGCAATAAGCCTGGTGGTCGTGGCGGCGCTGCGCGAGTCCAACGTTCAAGATTATTCGCCAGAGATCATCGAGCAGGTGCAGCAGAACTTTTCACCCGCAGCGATCCTGAACTTTCTCGGCCAGCGAGAGGTATATGTCGCAAGCAGTGACGGTGAGGTTGTCGCAACAGCGAGTCTTGATGGAAACGTCATCCGAAGCGTGTTCGTTGCGCCTGCCTGTCAGGGCAGAGGCATAGGGCATCAGCTGATGGCAACGATTGAGGCGGGGGCCGTGCGCGGTGGTGTGGAGCGGCTACGAGTTCCTTCCTCGATCACCGCGCAAGGCTTTTATTCTTCTCTGGGTTTCGAAAAAGTCCGGGACGAGTTTCACGGCGCGGAGCGCACGATCATCATGGAAAAAAAACTGGGCAGCTAAMDCIIRKATSTDATAISLVVVAALRESNVQDYSPEIIEQVQQNFSPAAILNFLGQREVYVASSDGEVVATASLDGNVIRSVFVAPACQGRGIGHQLMATIEAGAVRGGVERLRVPSSITAQGFYSSLGFEKVRDEFHGAERTIIMEKKLGSNANANANANA
D1-35_040241854btuD_9Vitamin B12 import ATP-binding protein BtuDATGCTTCACGCATTCGAACAACGGCTCGACCCTTTTCCGCCTGACGAAGTCCCACCGCCACCAGACGGCCTGGCGCGTTTTTTGTGGGCCTGCACGCGGGGCGCCCGCGGCTACATCCTCGCTTTCGCGCTGCTCAGTGCCGCCGTGTCGATCTACGAAGCCTGGCTGTTTTCGTTTCTCGGACAGGTCGTCGACCTGCTCTCGACCTGGCAGGCCGGCGGCGATGCGGCGGGGCAGGAGAGTCGAGTGCTGTGGGGCATCGGCATCATGCTGGTGACCAGCATCGGCCTGGTCGCGTTGCGCACGATGGTGCAGCACCAGGTACTGGCGATCAACCTGCCGTTGCGGCTGCGCTGGGATTTTCACCGACTGATGCTGCGACAGAGCCTTTCATTTTTCTCGGATGAGTTCTCCGGCCGGGTCACCACCAAGGTGATGCAAACGGCGCTGTCGGTGCGCGAGGTGCTGTTCACCCTCATCGAGATCGTCCCCGGGATCGGCGTGTATTTCATCGCGATCATCGCCCTGGCCGGCGGCTTTGACCTGAAGCTGATGTTGCCTTTCATTGCCTGGGTAGTGTTGTTCGGCCTGGCCATGCGCTACTTCGTGCCGCGCCTGGAGAAAGTGGGGCAGGAGCAGGCCAACGCGCGGTCATCAATGACCGGGCGGGTCTCGGACGCCTATACCAACATCACCACCGTGAAGCTGTTCTCCCACTCGAAACGCGAAGCACACTTCGCCCGCGCGGCCATGGAAGACTTCAAGCAAACCGGCTTTCGCCAGATGCGCCTGGTCAGCCAGTTCGAAATCGTCAATCAGGCACTGGTGGTTGCCTTGATCCTCGGGGCCGGCGGTTACGCCCTGTGGTTATGGCATCAAGGCGAAGTAGGCACCGGCGCCGTGGCGGCAATCACCGCCATGGCGTTGCGTATCAACGGGATGTCGCACTGGATCATGTGGCAAATGACCTCGCTGTTCGAAAACATCGGCACTCTGCAGGACGGCATGGAAACCTTGACGCGGGGGCCCAAGGTTCAGGATGCGCCGGACGCCGGCGTGCTGGTTACTACCGGTGGTGCGGTGACCTTCGACAATGTCAGCTTCAATTACAACGGCGAACGCCAGGTGCTCGATGGCCTGAGCCTGAACATCCGGCCGGGAGAAAAAATCGGCCTGGTAGGTCGCTCCGGTGCCGGCAAATCCACGCTGATCAACCTGCTGCTGCGCTTCTATGACGTGGACAGCGGTGAGATTCGAATCGACGGGCAGAACATCGCGCATGTCACGCAAGACAGCCTGCGCAGCGCCATCGGCATGGTCACTCAGGACACGTCCCTGTTGCACCGGTCGATCCGCGACAATATTGCCTACGGCCGCCCCGACGCCACCGATGAGGAAATACGCAGTGCCGCAGCCAGCGCCCAGGCCGATGGGTTCATCAATCAACTGAGCGACAAGCAAGGCCATAGTGGTTACGACACCCTGGTGGGGGAGCGCGGCATCAAGCTTTCGGGCGGCCAGCGCCAGCGCATCGCCATCGCCCGGGTCATGCTCAAGAACGCCCCGATCCTATTACTGGACGAGGCCACCAGCGCACTCGATTCGGAAGTCGAAGTGGCCATCCAGGAAAGCCTCGATGAAATGATGCAGGGCAAGACCGTGATCGCCATCGCCCATCGGCTGTCCACGATCGCGGCGATGGACAGGCTCATCGTCATGGATGAAGGGCGGATCATCGAACAAGGCACCCACGCCGAATTGCTCGGGAAGAACGGCACCTACGCGCGATTGTGGCATCACCAGAGCGGCGGCTTTCTGGGGGAGGATCAGGGCGTGGTCGAGGCGGTGGAGTAGMLHAFEQRLDPFPPDEVPPPPDGLARFLWACTRGARGYILAFALLSAAVSIYEAWLFSFLGQVVDLLSTWQAGGDAAGQESRVLWGIGIMLVTSIGLVALRTMVQHQVLAINLPLRLRWDFHRLMLRQSLSFFSDEFSGRVTTKVMQTALSVREVLFTLIEIVPGIGVYFIAIIALAGGFDLKLMLPFIAWVVLFGLAMRYFVPRLEKVGQEQANARSSMTGRVSDAYTNITTVKLFSHSKREAHFARAAMEDFKQTGFRQMRLVSQFEIVNQALVVALILGAGGYALWLWHQGEVGTGAVAAITAMALRINGMSHWIMWQMTSLFENIGTLQDGMETLTRGPKVQDAPDAGVLVTTGGAVTFDNVSFNYNGERQVLDGLSLNIRPGEKIGLVGRSGAGKSTLINLLLRFYDVDSGEIRIDGQNIAHVTQDSLRSAIGMVTQDTSLLHRSIRDNIAYGRPDATDEEIRSAAASAQADGFINQLSDKQGHSGYDTLVGERGIKLSGGQRQRIAIARVMLKNAPILLLDEATSALDSEVEVAIQESLDEMMQGKTVIAIAHRLSTIAAMDRLIVMDEGRIIEQGTHAELLGKNGTYARLWHHQSGGFLGEDQGVVEAVEPGPT0029145_509DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029145-vcaM-K18893NANA
D1-35_040251227mdtHMultidrug resistance protein MdtHATGAACGGCATTATCGGGATCACGTTTGATCTGAATAAGGATATTTGCACCACCGTGGCCACTTACTCACTCGTTATTCGGCGCCTGATGATTGTTTCCCTGACCATCGTGGTCAGTCGCGCCATTACCAGCCCGTTGCTCACGTTATTCTTGAGCAACAAGCTGGGCCTCAACCAACAGGACGTCGGTCTGCTGCTCGGCATCGCGGTGTTCATCGCCACCTTGCTGGCCCTCTATGGCGGCTATGTCATCGACCGCCTGGAGAAGCGCCGACTGCTGATCCTGGCGATGCTTTCCAGCGCCGTCGGTTTCGTACTGCTGACCTTTGCCGAAAACCTCTACCTGACCACGCTGACCGTGGTGATCACCGAGACAGCGTCAGCGCTGTTCCTGATCGGCTCCAAAGCCATCCTCAGCGAGAACCTGCCCATCGGCCAGCGCGCCAAGGCTTTTTCCCTGCGCTACACGCTGACCAATATCGGCTACGCCACCGGCCCGATGCTCGGCGTGGTGATTGCCGGTGTCTACCCGATCGCCCCATTCCTCATTGCAGGCGGCATCGCGTTTTTCAGCATCTTCCTGATGACCGGCATCCCCAGGGCAGCGACACCGGCCATTGGCCCAGCGCCAAGCTTTCTCAAAACGCTGATCACCCTGAAAAACGACCGCACGCTGATCATGTTCACGTGCGGCTGCCTCTTGAGCACGGTGGTGCACGGACGTTTCACGCTTTACCTGTCGCAATACCTGCTGGTGACCCATGACTCCAGGCGCGCGCTGGAAATCATGGCCGCCCTGCTCGCCTGCAACGCGATCACCGTGATCCTGCTGCAGTACCAGATCGGCCGGTTCCTGGATCGCGAAAAGCTGCGCTACTGGATTGCCGCAGGCACCAGCCTGTTCATTGTCGGCCTGATCGGCTTCAGCCTGGCGGACGACATGCTGAGCTGGTGCGTGGCGATGTTCATTTTCACCCTCGGGGAGATGATCATCTACCCGGCCGAATTCCTCTTCGTCGATACCCTGGCCCCGGAAGAGCTGCGCGGTAGCTATTACGGCGCGCAAAACCTGGCAGCCCTTGGTGGTGCCCTGAGCCCGGTGATCTGCGGGTACCTGCTGCTGCAAACCCCGGCACCGACGATGTTCTACGCCTTGAGTGCACTGACCGCCATGGGTGGATTCTTGTGTTTCATGAGCGGTCGTCGGGTGGCTGGCGTGCAGAAGTGAMNGIIGITFDLNKDICTTVATYSLVIRRLMIVSLTIVVSRAITSPLLTLFLSNKLGLNQQDVGLLLGIAVFIATLLALYGGYVIDRLEKRRLLILAMLSSAVGFVLLTFAENLYLTTLTVVITETASALFLIGSKAILSENLPIGQRAKAFSLRYTLTNIGYATGPMLGVVIAGVYPIAPFLIAGGIAFFSIFLMTGIPRAATPAIGPAPSFLKTLITLKNDRTLIMFTCGCLLSTVVHGRFTLYLSQYLLVTHDSRRALEIMAALLACNAITVILLQYQIGRFLDREKLRYWIAAGTSLFIVGLIGFSLADDMLSWCVAMFIFTLGEMIIYPAEFLFVDTLAPEELRGSYYGAQNLAALGGALSPVICGYLLLQTPAPTMFYALSALTAMGGFLCFMSGRRVAGVQKNANANANANA
D1-35_04026885hypothetical proteinATGGCTGACTCCCCTATCTGGCCGAAAGGCTATCGCTGCGCGGTGGTACTGACTGTCGATTACAACGACATCCACGGCATCCTCACCCAGGCCCCGGAGGTCGCCGGGCGCGACAAGACGCTGTCGGTATGGCGCTACGGCACCCAACGTGGCGTCGAGCGAATGCTCGGCCTGTTCAAGCAGCTCGGGGTGTCCGCCAGCTGGTTTGTCCCCGGTATCGTTGCCGAGGAAAACCCCGCGCACATTCAGGCGATCCAGGCCGACGGCCATGAAATCGCCTGCGCTGGCTATCGCCATCAGGACTACGACAGACTGGACCTGGCCGCCCAAAGCGACGATATCGCCAAGGGCTGCGAGACCCTGGCCCGGCTGACCGGCCAGCGCCCGACCGGCTTTCGAATCCCGGCGGGCAACGGTGCTCCGGGCTTCATCGAAGCCTTGAGGGATCAGGGCATTCGCTGGTCGTCGTCGTGGCGCGGCGATGACCTGCCATTCGCTCACCCGACCGTACCGAGCGTCATTGAAGTACCGCTGCACTATGAGCTGGAGGACGAGCCTTACTTCGCCTTCAACTTGAGCCCGGCAGTGCCACCCGCGCAATCGCGGATCGCGTCCTATAGCCACACCTTGGGCAACCTGCAGATGGACTTCGCCGGCTTTCACCGGTTCGGCCTCTGCTACGTGCTGCGCCTGCACCCGGAAATCATCGCCACGCCGGGACGGATAGGCGTGTTGCGCGAACTGATCGAGGGCATCCAACGGCACAATGACGTATGGATCGCCACCGGCGCCGAGGTCGCGCAATGGTGGTCAGACACCGCGGGGCCAGTCGCCGAGGATCATCCCGCAGCGGTTTATGAACGGCATTATCGGGATCACGTTTGAMADSPIWPKGYRCAVVLTVDYNDIHGILTQAPEVAGRDKTLSVWRYGTQRGVERMLGLFKQLGVSASWFVPGIVAEENPAHIQAIQADGHEIACAGYRHQDYDRLDLAAQSDDIAKGCETLARLTGQRPTGFRIPAGNGAPGFIEALRDQGIRWSSSWRGDDLPFAHPTVPSVIEVPLHYELEDEPYFAFNLSPAVPPAQSRIASYSHTLGNLQMDFAGFHRFGLCYVLRLHPEIIATPGRIGVLRELIEGIQRHNDVWIATGAEVAQWWSDTAGPVAEDHPAAVYERHYRDHVPGPT0012156_353DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSFUNGICIDAL_COMPOUNDS|ANTIBIOTICSFUNGICIDAL-CHITINOLYTIC_ACTIVITIES,PGPT0012156-chitin_deacetylase-NANANA
D1-35_04027849pgdAPeptidoglycan deacetylaseATGTCTTCCTCACACCTACCCACCTGGCCCGGCCCGCACAAGGCTTGTCTGGCCCTGGCCTTCGACCTCGATGGTCCGACCGGTGATGCCATGCTCAACGGCTCGATCTGGCGCAAGCCCGAGTACTTCGGTTTCGGCGGCTATGGCCCTTATCGGGCGCTGCCGCGGCTGCTCGACCTGCTCGACGAGTTCCAGATTCCGACGACATTCTTCGTCCCGGCCTGGGTCGTGGAGAACTGGCCGAGACAGTGCCAGGCGATCATCGAGCGCGGGCATGAGGTGGCTTATCACGGCTACAGGCACGAGTCCTTTTATGCCCTGACGCTGGATCAGCAAAAGGACGTGATGAATATCTGCCGCGAGGTGTTCTGGAAGCATCTGAACATCCGCGCCGAAGGCTTTCGTACGCCGTCCGGCGACTGGCGCGCCGAAACCCCGGCGATGCTGGTGGAAGCCGGCGTGCGCTATTCCAGCAGCATGCGCGGCGATGACCGGCCATACCTGGTGAACGTGCCGGGGTTCGACACGCCACTGGTGGAAATTCCCGGTCGCTGGGAAATGGACGACTACGCCTCTCTCGCCTATACCCGTGCGCCGAACTTCCCTTCCGGGCTGGACCGCACGGCCAGCTACGCGCTGACCCTGGATAACTGGTGCCGCGAATACGACGGCGCAATGGACGAGGGATTATGCTTGACCACCCTCTTCCACCCCAAGATTACCGGTAAGCCGGGACGCATCCTGCTACTGGAAAAACTCTTCGAGCACATGCGCACGCGCGACGACGTGTGGTTCGCCACCTGCCGCGACGTTGCCCAGTGGTGGCTGAAGGAGCATCACCATGGCTGAMSSSHLPTWPGPHKACLALAFDLDGPTGDAMLNGSIWRKPEYFGFGGYGPYRALPRLLDLLDEFQIPTTFFVPAWVVENWPRQCQAIIERGHEVAYHGYRHESFYALTLDQQKDVMNICREVFWKHLNIRAEGFRTPSGDWRAETPAMLVEAGVRYSSSMRGDDRPYLVNVPGFDTPLVEIPGRWEMDDYASLAYTRAPNFPSGLDRTASYALTLDNWCREYDGAMDEGLCLTTLFHPKITGKPGRILLLEKLFEHMRTRDDVWFATCRDVAQWWLKEHHHGPGPT0018645_2567DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_HYDROLASE_ACTIVITY,PGPT0018645-pda|pgdA-K22278NANA
D1-35_04028825fliY_2COG0834L-cystine-binding protein FliYATGAAGAACTTCGTTATTCCAGCAGTACTCGCAGGCGTTATGGCATCCGGTTTTTCCTTCGCCGCCCAATTGCCGGCCAGCATCAAGGCCAAGGGCGAAATCGTCGTAGCGATCATGCCGAACTACCCGCCGATGGATTTCAAGGACCCGGCCACCAACACCCTCACCGGCTTTGACTACGACCTGGGCAATGCTCTGGCCGAACGCCTGGGCGTGAAGATCAAATGGCAGGAGACCGGCTTCGAGCAAATGATCAATGCGTTGACCACCGACCGCGTGGACATGGTGCTGTCGGGCATGACCGACACCGCCGAACGTCAGGCCAGCGTGACCTTCGTCGACTATTTCACCAGCGGGCCGCAGTTCTACACCTTGCAGAAAAACAAGGACACCAACGCGATCATCGACCTGTGTGGCAAGAAGGTCGGCACCAGCCGCCGCACCACTTTCCCGACGGAGATCGCCGAGTGGAGCAAAGCCAACTGTGAAGCCGCCGGCAAGCCTGCGATCAACGTGGTCGGCACCGAGGGTTCGGCCGATGCCCGGGCGCAACTGCGCCAGAGCCGCATCGATGCGGCCATGCAGGGCAGCGAAACCCTGCCCTACCTCAAGACCCAGGAAAAGGACATGTACAAGACCGTGGGCCTGCCGATCTCCGAGCAGTTCACCGGTATGGGCGTGAGCAAGAAAAAACCTGAGCTCAGTGAAGCGGTGAAGGTTGCGCTGCAGAGCATGATCGATGACGGCAGCTACCAGGCGATCCTCAAGAAATGGGACCTGGAACTGGGTGCGATCAAGACCGTGACCATTAACGCCGGGAAGTAAMKNFVIPAVLAGVMASGFSFAAQLPASIKAKGEIVVAIMPNYPPMDFKDPATNTLTGFDYDLGNALAERLGVKIKWQETGFEQMINALTTDRVDMVLSGMTDTAERQASVTFVDYFTSGPQFYTLQKNKDTNAIIDLCGKKVGTSRRTTFPTEIAEWSKANCEAAGKPAINVVGTEGSADARAQLRQSRIDAAMQGSETLPYLKTQEKDMYKTVGLPISEQFTGMGVSKKKPELSEAVKVALQSMIDDGSYQAILKKWDLELGAIKTVTINAGKPGPT0020800_7729DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-35_04029765glnQ_8Glutamine transport ATP-binding protein GlnQATGAGAAGCATCGTCAAGGCCGTGAGCCTGAACAAATACTACGACCAGTTCCACGCCCTGAAGGACATCAACATCGAGGTCGAGCAAGGCGAAGTGCTGTGCATTATCGGCCCGTCCGGCTCGGGCAAGAGCACCTTGCTGCGCTGCGTCAACCAGCTGGAAAAAATCGACAAGGGCGGCCTGTGGGTCGATGGCGAGCTGGTGGGTTACCGGATCGTCGGCAACAAGCTGCACGAACTCAACGAAACGCAGATCGCCCGCCAGCGCCTGGCCACCGGCATGGTGTTCCAACGGTTCAACCTGTTCCCGCACATGACCGTGTTGCAAAACATCATCGAAGGCCCATGCCAGGTGCTCAAGCGTTCACCTAAAGAGGCGCACGAAGAAGCCCTGGAGCTGCTTGCCCGCGTCGGCCTGGCCGACAAGCACCACAGCTACCCGATCGAGCTGTCGGGTGGTCAGCAGCAACGTGTCGCCATTGCCCGTGCGTTGGCCATGCGCCCCAAGCTGATGCTGTTCGATGAACCCACTTCGGCACTCGACCCGGAACTGGTCGGTGAGGTGCTGTCGGTGATGCGCGATCTCGCGCAGACCGGCATGACCATGATCGTCGTCACCCATGAACTGGGCTTCGCCCGCGAGGTTTCCAACCGCATGGTGTTCATGGACGGCGGGCAGATCGTGGAGGCTGGAAGCCCCGAAGAAATACTAATAAGTCCGCAAAACCCTCGCACCCAGAGCTTCATTTCTGCCGTTCGAACCTAGMRSIVKAVSLNKYYDQFHALKDINIEVEQGEVLCIIGPSGSGKSTLLRCVNQLEKIDKGGLWVDGELVGYRIVGNKLHELNETQIARQRLATGMVFQRFNLFPHMTVLQNIIEGPCQVLKRSPKEAHEEALELLARVGLADKHHSYPIELSGGQQQRVAIARALAMRPKLMLFDEPTSALDPELVGEVLSVMRDLAQTGMTMIVVTHELGFAREVSNRMVFMDGGQIVEAGSPEEILISPQNPRTQSFISAVRTPGPT0020790_2598DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020790-ABC_PA_A-K02028NANA
D1-35_04030879hypothetical proteinATGAGCCAGACACAGGCAGAACGACTCCAGGCGGAGCGCAAGCTGGCGGAAAACCAGTTCGACATTACCCAGTACGATCATGTGCCCCGGCGTTATTACGGGCGGATCTTCTTCGCCACGGTGATCGTCATCGCACTCATCGGCCTGGTGCGCGCCTTCGCCGAAGGCAAGATCGAATGGTCGTACATCGGCCAGTTCCTCACCTCCGAGGCGATCATGTGGGGGCTGCTCAACACCATCGTCATGGCGGTGCTGGCGATGGCGCTGGGTATCGTGTTCGGCGTGATCACCGCGATCATGCGCATGTCGGCCAACCCGATCCTGCGCTACGTGGCGCTGACCTACACCTGGCTGTTTCGCGGTACGCCGCTGATTCTGCAGTTGCTGTTGTGGTTCAACCTGGCGCTGATCTTCCCCACCATCGGCATTCCCGGCGTGTTCGAAATGGACACCGTGAGCCTGATGACTCCGTTCGTGGCGGCGTTGTTTGGCCTGAGCATCAACCAGGGCGCCTACACCGCCGAAGTGGTCCGCGCCGGCCTGCTCTCGGTGGACACCGGGCAGTACGAAGCCGCCAAGTCGATCGGCATGCCGCGCCTGCAAGCGTTGCGCCGGATCATCCTGCCCCAGGCCATGCGGATCATCATCCCACCGGTGGGCAACGAGTTCATCGGCATGGTGAAGATGACCTCGCTGGCGAGCGTGATCCAGTACTCGGAACTGCTCTACAACGCCCAGAACATCTACTACGCCAACGCCCGCGTGATGGAGCTGCTGATCGTCGCCGGGATCTGGTACCTGGCCACGGTCACCGTCCTGTCCTTTGGCCAAAGCCGGCTGGAGCGTCGTTTCGCTCGCGGCGCCGGCAAGCGTTCTTGAMSQTQAERLQAERKLAENQFDITQYDHVPRRYYGRIFFATVIVIALIGLVRAFAEGKIEWSYIGQFLTSEAIMWGLLNTIVMAVLAMALGIVFGVITAIMRMSANPILRYVALTYTWLFRGTPLILQLLLWFNLALIFPTIGIPGVFEMDTVSLMTPFVAALFGLSINQGAYTAEVVRAGLLSVDTGQYEAAKSIGMPRLQALRRIILPQAMRIIIPPVGNEFIGMVKMTSLASVIQYSELLYNAQNIYYANARVMELLIVAGIWYLATVTVLSFGQSRLERRFARGAGKRSPGPT0020795_2133DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
D1-35_040311428argH_2COG0165Argininosuccinate lyaseATGTCCCAACCCACCGACCGTCTCTGGGGGGCGCGTTTCAAAAGCGGCCCTTCCGAAGCCTTGGCGGCCCTCTCCCGTTGCCCTGAACGCTACTTTCGGCTCACGCCGTACGACCTCGCCGGTTCCAAGGCCCATGCTCGGGAATTACAGCGTGCCGGACTGCTGAACGAGCAAGAAACCCTGACCATGCTCGACGCGTTGGAGCGCATCGGCACGGACTACCGCGCCGGCATCATCGCCCCGACCCTGGATGATGAAGACGTCCACACGTTCATCGAGCGGCTGCTGACCGAACGCCTCGGTGCACTCGGTGGCAAGCTGCGGGCCGGGCGTTCGCGCAACGACCAGACGGCTAACGATCTGCGGCTGTTCCTGCGGGACCACGTACGTACCCTGGCCGTTGAAGTGCTGGGCTTGCAGCAAGCGCTGGTGAACCAGGCCGAGCAGCACATCGAGAGCATCTGCCCCGGATTTACTCACCTGCAGCAGGCACAGCCGATCGTGTTTGCCCATCACCTGCTGGCCCATGCCCAATCGATGCTGCGCGACGTGCAGCGCCTGGTGGACTGGGACGCGCGCACTTCGCTGTCACCACTCGGTGCGGCGGCCATGGCCGGTTCGGCGATCGCTCGTTTACCTCAGCAATCGGCAAAGGAGATGGGCTACAGCGGTGTTTGCGAGAACTCCATCGACGCCGTGGCCAGCCGCGATCACGTCGCCGAGTTCCTGTTCATCGCCAGCATGCTCGGCATCAACATTTCGCGCCTCGCCGAAGAATTCTGCCTGTGGTCGTCGCGGCAGTTTCGCTGGATCGCGCTGGACGATGCCTACGCCACCGGCAGTTCGATCATGCCGCAGAAAAAGAATCCTGACATCGCCGAACTGGCACGGGGCAAGGCCGGTCGCCTGATCGGCAACCTGACCGGGCTGCTGTCCACGCTCAAATCCTTGCCACTGTCCTACAACCGCGACCTGAGCGAAGACAAGCACGGCGTGCTCGACAGCGTCGACACCTTGCTGCTGGTGCTGCCGGCCATGGCTGGGATGGTGGCAACGATGAAGGTCGACGTTGAAGAGTTGCGTCGCCAGGCACCGCTGGGCTTTACCCTTGCCACCGAAGTCGCCGACTGGCTCGCGGTGCGCGGCGTGCCGTTCAAGGAGGCTCACGAGATCACCGGTGCGTTGGTCCAGGCTTGCGAGAAACACGCTATCGAACTGTGGGAAGCCTCCCCGGCACTGCTGGCGGAAATCGACCCGCGCCTTACCCCCGAAGTACGCGAAAGCCTGACCCTGGAAGCTGCCATCGCCGCCCGCAGCGGCTGGGGTGGCACCGCGCCAGAACGGGTGCGTGAACAGCTTGGTCGGCTGAAAAGCGCCCTCGCCGCCCAGCAAACGTGGACCGAGGAATACCACGGGTTCCGCCTTTAGMSQPTDRLWGARFKSGPSEALAALSRCPERYFRLTPYDLAGSKAHARELQRAGLLNEQETLTMLDALERIGTDYRAGIIAPTLDDEDVHTFIERLLTERLGALGGKLRAGRSRNDQTANDLRLFLRDHVRTLAVEVLGLQQALVNQAEQHIESICPGFTHLQQAQPIVFAHHLLAHAQSMLRDVQRLVDWDARTSLSPLGAAAMAGSAIARLPQQSAKEMGYSGVCENSIDAVASRDHVAEFLFIASMLGINISRLAEEFCLWSSRQFRWIALDDAYATGSSIMPQKKNPDIAELARGKAGRLIGNLTGLLSTLKSLPLSYNRDLSEDKHGVLDSVDTLLLVLPAMAGMVATMKVDVEELRRQAPLGFTLATEVADWLAVRGVPFKEAHEITGALVQACEKHAIELWEASPALLAEIDPRLTPEVRESLTLEAAIAARSGWGGTAPERVREQLGRLKSALAAQQTWTEEYHGFRLPGPT0014242_81DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014242-argHA-K14681NANA
D1-35_04032966hypothetical proteinATGGAAACCCCACTTTCCAATTCCGGAAACCCGCCGCCGAAAATGCCGCAACGGGCACCGTTAGCCCTCAGCGGGCTGGACTTCAAACTGCTCAAAGTGTTCAAGGCCGTGGTCGAGGCAGGGGGCTTCAGTGCCGCCCAAAATGAGCTGAATGTGGGATTGGCTGCCATCAGCAAACAGATTTCTGACCTGGAAATCCGCATCGGCATGCGCCTGTGCACACGCGGGCGCGAGGGCTTTCACCTGACGGAAGAGGGGCGCCTGGTGTATCAGGCGTCAATCGATTTATTTGCCTCGGTCGACAACTTTCGCGATCGCCTTAGTTCAGCGCAAAACGAACTTGTCGGTGACCTGGGCGTGGGCGTTATCGATAATACGATCTCTGACGTAAACTCCCCGTTAGTTGCCGCGCTCAGGCGCATGAACGAACAATCGCCGAAGGTCAGGTTTCAACTTCAGGCCAGCCAACTCGACGAGGTTGAAAGAGGCGTCGTCGAGGGGCGGCTAGTGGCGGGAATCGTGCCGATCTATCAAAAACGCGAGGAGTTCGACTACTACGAGCTGTACGAAGAACGCTCGGAAGTCTATTGCGCCCTCGGCCACCCGTTATTCAGCATGGCGGAGGCGGACATGGGCGAGGATGTGCTCAAGGCCCACGAGTGCATCAACCATCGTTACGCGATTCATCGCGACAAACTGAAGTTTGCTCACTACGACAGTTTTTCTGCCTCGGCCACCCAAGTGGAAGCCGTTGCGCTGCTGATCAAAACGGGGCGTTTCCTGGGATTCCTGCCCCAGCATTACGCCGCGCCGATGGTGGCGCGGGGCGAGTTTCGCGCGGTACGGCCGGACCTGATCAACATCGTCACCCCGTTCAGTCTGATCCTGCGTCACAACACGGTGCGCAGTCCGCTGGTCAAGGCGTTTGCCCAAGCACTGGGCGTGGATTTGAAGGCTCCGGTCTGAMETPLSNSGNPPPKMPQRAPLALSGLDFKLLKVFKAVVEAGGFSAAQNELNVGLAAISKQISDLEIRIGMRLCTRGREGFHLTEEGRLVYQASIDLFASVDNFRDRLSSAQNELVGDLGVGVIDNTISDVNSPLVAALRRMNEQSPKVRFQLQASQLDEVERGVVEGRLVAGIVPIYQKREEFDYYELYEERSEVYCALGHPLFSMAEADMGEDVLKAHECINHRYAIHRDKLKFAHYDSFSASATQVEAVALLIKTGRFLGFLPQHYAAPMVARGEFRAVRPDLINIVTPFSLILRHNTVRSPLVKAFAQALGVDLKAPVPGPT0003120_86DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-ACINETOBACTIN_METABOLISM,PGPT0003120-bauR-K21699NANA
D1-35_040331251putative MFS-type transporterGTGACTGCTCATCTGGATCGCCGCAACAACCTGTCGCTGGACAGCCTCAACTTCTTTCTCGCCGACGTGCGCGACGGTCTCGGGCCGTATCTGGCGATTTACTTGCTGGCGGTGCATCAATGGGACCCGGCGAGCATCGGCGTGGTGATGACGATTGCTGGCGTCGCGGCCCTGATCACGCAGACGCCCGCTGGAGCGCTGGTGGACAGCAGCCGTGCCAAGCGCGCGCTGATTGTGATCGCCGCGCTGGTCGTGACCGCCAGTTGCCTGGTGTTGCCTTTCGTCTCGTCATTCAGCCTGGTGGCGCTTACGCAGGCCCTGAGTGCGGTGGCCGCATCGATTTTTGCCCCGGCCATTTCGGCAATTACCCTGGGCATCACCGGTCCTCGCGCTTTCACGCGGCGAACCGGGCGCAACGAAACTTTCAACCATGCCGGCAACGCCTGCGCGGCGTTGCTGGCCGGTTTGTCTGCTTACCTGTTCGGTCCGGTGGCGGTGTTTTACCTGATGGCGGTCATGGCGCTGGCAAGCGTGTGTGCCGTGGCGTTCGTCTCGGCTGAAGCGATCGACCATGATTTGGCTCGCGGTCTCGAACCTCGTGGCCCCGATCACCCTCAGCCCTCCGGGTTTGCCGTGTTGCTCAGCCACCGACCGTTGTTGATGTTTGCGGTTTGCTGCGCGCTGTTCCACCTGGCGAATGCCGCCATGCTGCCGCTGGTGAGCCAAAAGCTTGCGCAAGCCAATCTGCACATGGCCACCCCGCTCACCTCCGCCTGCATCGTCGCGGCGCAGCTGGTCATGGTGCCGATGGCGCTGTTGGCTGGCGCCAAAGCCGATCAGTGGGGGCGCAAGCCGCTGCTGTTGGCGGGTTTTCTGATCCTGCCGTTGCGCGGTCTGCTCTACACCTTGTCGGATGATCCGTACTGGTTGGTCGCGATACAGCTGCTCGACGGTGTCGGCGCCGGTCTTTTCGGCGCGTTGTTCCCGGTCATGGTCAAGGATCTAACGCTCGGTTCCGGCCATTTCAATATCAGCCTCGGCGCACTCACAACGGTGTTTGGCCTCGGTGCGGCGTTGAGCAATGGTCTGTCGGGATTTGTGGTTGAAGCGGCGGGATACGATGCGGCATTCCTGACACTTGCTGGAGTCGCCGGAGCGGCATTTTTGCTGTTATGGGTTGGGGTTCCGGAAACCATGCAGCGTTCAGAAGGCATCAAAGTTGATCGAGTCGAGATGAGCCCAGGCGCCTAGMTAHLDRRNNLSLDSLNFFLADVRDGLGPYLAIYLLAVHQWDPASIGVVMTIAGVAALITQTPAGALVDSSRAKRALIVIAALVVTASCLVLPFVSSFSLVALTQALSAVAASIFAPAISAITLGITGPRAFTRRTGRNETFNHAGNACAALLAGLSAYLFGPVAVFYLMAVMALASVCAVAFVSAEAIDHDLARGLEPRGPDHPQPSGFAVLLSHRPLLMFAVCCALFHLANAAMLPLVSQKLAQANLHMATPLTSACIVAAQLVMVPMALLAGAKADQWGRKPLLLAGFLILPLRGLLYTLSDDPYWLVAIQLLDGVGAGLFGALFPVMVKDLTLGSGHFNISLGALTTVFGLGAALSNGLSGFVVEAAGYDAAFLTLAGVAGAAFLLLWVGVPETMQRSEGIKVDRVEMSPGANANANANANA
D1-35_04034648hypothetical proteinATGCCTAAGCGTGGCAGAACATCATATTTTACCAATCGTGGAAAGCATTTTGGAAATCTCTGGGCTGTATACAGCTTTAGGGCCAAAGATGTGTTATTGCTTTCCACTGACAGGCAGCTGGCGCACTGGCTTTTATACTTAGAGTTCTCGTCTTCCATTGCAAGCTTTAGTTTTAAGAGTGGGACTAAGGAGTTTTCTGAAAAACCAAACTATATCTTGAATTATCATGCTGAGGTTTTGCCCTTAGAGGGTTGTAATGAGCTGCATTATCTACAAGTGGAAGGGAACACGGAGTCTTGCGCAGAAAAAATTCTTGTGGCGAGAAAATATAAATATAATTACCGCGAGTTCAATGATGAAGATTGGCTCCCACGCCGAGACAAAATACTCCCGCTTCTTAAAGTCGCTAGTTATCTAGCAGGAAGCCGAAGTCTATACATCCCGCCAACACTGCTGGAAAAAGCGCTCCATTACATTCTAACACTCCGTTCGGGGACCTTACGCGGTTTTTTATCAGCGCTAGCGGATTATGAAAAAAATCTAATCTTGGTGGTTTTTTCGCGAGCCTATTCGGAGCGTTTGATCTCAGTCGACTTTGAATTGAGCTTTTTCAGCCAAGACACGCACTGGAGGTTAAATGAAATCTAAMPKRGRTSYFTNRGKHFGNLWAVYSFRAKDVLLLSTDRQLAHWLLYLEFSSSIASFSFKSGTKEFSEKPNYILNYHAEVLPLEGCNELHYLQVEGNTESCAEKILVARKYKYNYREFNDEDWLPRRDKILPLLKVASYLAGSRSLYIPPTLLEKALHYILTLRSGTLRGFLSALADYEKNLILVVFSRAYSERLISVDFELSFFSQDTHWRLNEINANANANANA
D1-35_040351593hypothetical proteinATGAAATCTAAAATCACACAAGAAAGAATTTCCTTCGTTGGATTCCAGAAAGTAGACGCCTCCGCTATGGACGACGATGACCGAGCTCTATTTCTAAGGAGAAAAAAGGCGATCGATATGAGACTGGAAGGCTACACGGGTAGAGAAATTCGAAACCAAACCGGCATAAGTGAGAGCGAGGTTACGCGTTTATTCAAGCGTTATACATTAATGTTAGTGGAAGGGCTATTTGTCGGAGAGGCGGGTTTGATACCGCACTCGCGTGTCAGCTGCAATGTCAGACAAAAAGCACTACCGGTTAAACATACCGAAGGGCAGGGAGGGCTTTCCGGCGCCTTGGGGTATACGCTGAAAAAACACCCACGAATAGCTGTTGAATTTGAACGGCAGGTATTTCGCGAGGAATTTAAATTTGGTCACGGGGCTCATTACGATAAAAAACATCTTTGCGCGGTTTTTTATTCCATTTGTAGAAATGAAGGCGTACAGGAAGACGAGTGGCCACTCAATCAACCGCGCGGGGCACGGAGGACGATAACAAAACTCATTAATGAAATTCTGGCGAGCGACTTTAAAAGAGCATCTCTTGCCACTGGGGGAAGGCTTGCATTAACCCACTCCAAGGTGGGTACGGGACACGCTCGGCTTTTTGATAACTATGATGTCTTTGACCTAATTGAGATTGACTCGTATCATGTAGATTCTTTTTTTTTACTTAATATCACGGGTGACAGGCGCAGCCGAACGAAAGACGTCATTAGTCGCATTTGGATGATTGCGGCCGTATGTAGAAGAAGTAACGCGGTACTCGCTATAAAATTCATTTTTTCCAGTGAAATAAGAGCTCAAGACTTAGTCGATCTGATTTGCGAAGCTTATTCGGGTGGCTGGAAACCTCGTCAAACATTGAGCGTACTTGATTTAAAATATTCGAACGCTGCTGGAATGCCGGGGCACTCGTTTCCTGCTCTAAAAAACCATATCTGGGGAGCGGTATGCTTGGATAATGCGATGCAGCATCATGCTAATCAAGTATATGAGTTAGCGTTGCATGCGGTCGGATTTGGCATAAATTTTGGTCCTCTTGAGCAGCCAGCGCGAAGGTCTAAGGTTGAAGCGCTCTTCAAGCGTATTTCATCAAGGGTAATGCATCAAATTGAATCCACAACCGGATCTTCGCCTGGAGATGGGCGTGCAGAATCGCCAGAACAAGCCGCAATCTATTATCAGATTGATGTTGATGATGCACTGGAAGTGATGGACGTCTACGCAGCTAATTACAATGGTACTCCCCAAGGAGGATTGAACAAAGGTAACAGCCCCTTGGAGATACTATCTGATTATTGTAGCGATCTGAACGTGCTGTTGCCCGCTTCCTCTGAGGTATATCTGAATAACATCGCATTGGGCAGCACTAACCGAAAGGCACGGGTGACGGGTAACATAGAGAAAGGTATTAGACCTCGAATCAAACTCGACCAAGCTATTTATACCAGCCCAGATTTAGCAAAATCCCGCGGGACTTATAGGAAAAATATTGACGATTCGGATAGCACCCAACGACTATCGGTACGTAGAAGCCTATCTACCTGAMKSKITQERISFVGFQKVDASAMDDDDRALFLRRKKAIDMRLEGYTGREIRNQTGISESEVTRLFKRYTLMLVEGLFVGEAGLIPHSRVSCNVRQKALPVKHTEGQGGLSGALGYTLKKHPRIAVEFERQVFREEFKFGHGAHYDKKHLCAVFYSICRNEGVQEDEWPLNQPRGARRTITKLINEILASDFKRASLATGGRLALTHSKVGTGHARLFDNYDVFDLIEIDSYHVDSFFLLNITGDRRSRTKDVISRIWMIAAVCRRSNAVLAIKFIFSSEIRAQDLVDLICEAYSGGWKPRQTLSVLDLKYSNAAGMPGHSFPALKNHIWGAVCLDNAMQHHANQVYELALHAVGFGINFGPLEQPARRSKVEALFKRISSRVMHQIESTTGSSPGDGRAESPEQAAIYYQIDVDDALEVMDVYAANYNGTPQGGLNKGNSPLEILSDYCSDLNVLLPASSEVYLNNIALGSTNRKARVTGNIEKGIRPRIKLDQAIYTSPDLAKSRGTYRKNIDDSDSTQRLSVRRSLSTNANANANANA
D1-35_04036201hypothetical proteinATGGAAGGCGAAAACCCTGTTATTGCGTGGCAAAGGCATATGCAAATGAATGCCAGTCCTAAAACAAATCGTGAACTGCAGCGGCTCAAGGAGGAAACCAAAGGGCATCTTAGGGAAGAGCCGTTATATTTGGTAGAGGAGGAGATGCCACACACACAGGTAATGAATGAGCGATGGAAAGATCTTGGTATTCTTAAATAGMEGENPVIAWQRHMQMNASPKTNRELQRLKEETKGHLREEPLYLVEEEMPHTQVMNERWKDLGILKNANANANANA
D1-35_04037945hypothetical proteinATGGATCATTCTCACCCAATTTTGAGTAGAGAGTACAGGCTGAACACACCTGCTTTGCTTGCAGTGGTTCAAAACGCCTGTTTCAAGGTGCTCATGCGGAAAACAGGTGTTGTTTATACCGGAGAGCCAAGAGTTGGTAAAACTGTGTGTTGTGAAGCGCTCCTTGAAGAAATACCCAAGCGGTTTCCGAATATCTACGTTTTTATGATACCCGCGACGAACAAGGATGCGTCATCGCCTCGCTACTCCTCAATCGTGCATCAGCTTATTGAACAGGAAGGTATTACTCCCAAAGCGCGAGCTACATTTATTCAGCGTCAATCAATGTTGGTAGAGCGACTTAAGACTAGAGCCGAGGCGCGACACGCGAAGCAAATAGTGCTACTTATTGATGAGCTTTCAAGATTATCGATCGGTGACTTTAAGCAACTTGCTGATATCTACAATAAGCTTCGGGCTGACAAATTCACACTGACCGTTATATCGTTTGCAATGCCATCCATAGAAAAAGTTGCAGAAGATTTTCTTCGCAACGATGACAGGCATATAATTGGGAGATTTTTGTCCGATATCCGTCCTTTATATGGCGTAACAACAGCGGCGCAACTTACGCAGATAATGCGTCTCTATGATGACAACCTAGAGGAAAAACCTTTTAGTCATGGCTTCACAAGAAATGTGCTTCCGAAGGCTTATGCGGATGGCTTTAGAATTACAAACCTTGCGAGCGATGTATGGCGGGAAATGTCTCGCGTTTCCTCTGGAAATTATGTGAATAACTTGCCGATGGAGCACGTTGCGCAAGTTATTGCTTATCTATTCGTGATCTTGGGGTGTGACGACTCTTGCTCTCTTGTGGTGCCTCCGGATCTAGTTGAAGAAGCAGTGCGTGAAAGTAACTTCAAGGAGTTCTGCAGAAAAATTACTGACTGGAAGGGGGGGTGAMDHSHPILSREYRLNTPALLAVVQNACFKVLMRKTGVVYTGEPRVGKTVCCEALLEEIPKRFPNIYVFMIPATNKDASSPRYSSIVHQLIEQEGITPKARATFIQRQSMLVERLKTRAEARHAKQIVLLIDELSRLSIGDFKQLADIYNKLRADKFTLTVISFAMPSIEKVAEDFLRNDDRHIIGRFLSDIRPLYGVTTAAQLTQIMRLYDDNLEEKPFSHGFTRNVLPKAYADGFRITNLASDVWREMSRVSSGNYVNNLPMEHVAQVIAYLFVILGCDDSCSLVVPPDLVEEAVRESNFKEFCRKITDWKGGNANANANANA
D1-35_040381356hypothetical proteinATGAGAACCTTATTCTATCCCGAGTGTGGTCCAATGCCTTACGAGTCTATTCTGTCCATCTACTTGAAACTCTCCCACAGTAATTTTATAGAGTTAGCCGACCTTCGAAGGAACCTTGGTGGGCTTTGGACAAATGGCGAAAGCGGCCGCCTGCTCATCAATTATAAGATAGAAGAATGTCTAGAGAGGGAAATTCACGAGATTGCGCATCACCTGCCATGGAAGTATGCGCCTGCGATCGCACTGAGTAGTCCAGCATCTGCGCTAAGATTCTGCGCTGAATGCGTGAAATTTGGTTACCACTCCGTGTTTAATTCGATCCAATTTCATCGCATGTGTCCTTTACATAAACGAGCGCTAAGCTTGGCATGCGTTACCTGCCGACAGCGTTTCCTGAAAGGATTTACCACTTGTCAAACCATACCTAATACAATTGGGATCTGCAGCACCTGCGGATTTCAAGATATGGGACTTCGCGATGAAATAAAAAAGCGTCGCGCACCTGGACTTGCGATTGCGTTAGAGCATTTCGGAAGAGCCCAAGCTCGATGGTATCAAGAAATTTACAGTTTCCATGCCCGTGAGCCTGGCTATAGCGAACTTTATTATCAGTCAGAGTTGGGGCGTGCTGAGCTTTCAGGGCCGTGTGAACGTTTCTTCAATATGCATAGTCCGGAAAAACTCTCGGGTCGTCAATACATCTCGCCTCCGATCACTTGTGTTGGAAGCTTCAGGACCTACCTGCATTGTCGTTTATATATGGCCGCTTCAAGATTTGCTTTGGGAGACCATCTGAGATTGCACTCGCAAATTGAAATATTGATTCGCGTAAAAGAACGGTACTTGGGGAAACACGCCGATTGTTGTCGCGATATGTGTAAGATAGCAGACTATCCTGATGGAAAGTTAGTTATAAGACCAATGTGCTCTGTAGCGACGGCTTATATTCTTCTTTGCATGAAGGCTCGCTATAATGTTTGGCCGTCCCCTGGAAGTATTTGTCAAGATTTTTCGTTGTTGGCGTCCTTAGGCAGTTCCGCGCCCTCTTTTGTATCTTGCTGGACCTATCGTGAGGCGGTACTGGTATTTTTTACAATCTTAGCGCGCTTAGAGTACTACGTTTCTGAGGGGGCCAACTTTTTTGTAATCTGTAGATCTGAAACGGTCTATTTCCCAAGCCGGCGCGGCTTGACCGTCTTGAGGAAAGCCTCGTACAAATTCCGTTTTAGCTGTCGGATCCCCTCTGAGAAACTTTTAATAGCTCGCGATGGATTGGGGGGAGCTCTGATGATCATATGCACTCCGCAACGAGACCACGCTGACCCTCACTCTAAGTTAAAAACGCTTGTCGTTTAGMRTLFYPECGPMPYESILSIYLKLSHSNFIELADLRRNLGGLWTNGESGRLLINYKIEECLEREIHEIAHHLPWKYAPAIALSSPASALRFCAECVKFGYHSVFNSIQFHRMCPLHKRALSLACVTCRQRFLKGFTTCQTIPNTIGICSTCGFQDMGLRDEIKKRRAPGLAIALEHFGRAQARWYQEIYSFHAREPGYSELYYQSELGRAELSGPCERFFNMHSPEKLSGRQYISPPITCVGSFRTYLHCRLYMAASRFALGDHLRLHSQIEILIRVKERYLGKHADCCRDMCKIADYPDGKLVIRPMCSVATAYILLCMKARYNVWPSPGSICQDFSLLASLGSSAPSFVSCWTYREAVLVFFTILARLEYYVSEGANFFVICRSETVYFPSRRGLTVLRKASYKFRFSCRIPSEKLLIARDGLGGALMIICTPQRDHADPHSKLKTLVVNANANANANA
D1-35_04039801hypothetical proteinATGCCAAACTGTGAATACTGCCGTCAACCAGGCCCCTTAACGAAGGAGCATTTATGGCCAACCTCCCTGCACAGGCGGCTCCATGCTGTCAACCAGCAGACAAAAAACATTTTCTGGCTAAGCAGGCTACAGCGCGAAATTTCAAACGAACCACAAATACGTGATGTATGCGCGTATTGCAACAATGTCACGCTTTCCACGCTCGACGATTATATGTGCAGGCTTTTCGACTCTGCTTTCACCAGGATCGTGGAGCGCTACGCAGAGGTCGTATTCGAATACGACTACCACCTTCTCAAAAGGTGGCTACTGAAAATGAGTTACAATTCCGCACGGATACACAATTCACCTGACCGCGGCGCCCTTAAATGCGTTCTTCCGTATATTTTAGGCGCTGACCTTCGAATGGGCCGCTCAATACAACTTTTCGTCCGCCTCGTACATCCTCAAGTAATTTCTGAGAGCGAGACTAGCAAGGATGGCGACCCGCAAACGAAGGTCGTGATTGACCCGTCAATACATAGATTGGGGCATGTGATATTTCGAGCCCATGGAATTGGGCAAAAGACCCTTAGGGCGATTCATCTACGCTCCTATACTTTCTACCTTGCATACTGGCAGCCCGGAAATGGGCGGGCAGAGCAACAAGATTTCGCGGAGATATTCAAACAAGGGATGCCTGGCGTACAACTCCTTCGCCCCTCCGACGAAAAGATCAAACTTTTCTGCGATGGCATCGGTGCGTGGGATTCACTTAAGGATGCCCGTAATGCCCGTTTTTCCTCTGCGGTTGATGCATAAMPNCEYCRQPGPLTKEHLWPTSLHRRLHAVNQQTKNIFWLSRLQREISNEPQIRDVCAYCNNVTLSTLDDYMCRLFDSAFTRIVERYAEVVFEYDYHLLKRWLLKMSYNSARIHNSPDRGALKCVLPYILGADLRMGRSIQLFVRLVHPQVISESETSKDGDPQTKVVIDPSIHRLGHVIFRAHGIGQKTLRAIHLRSYTFYLAYWQPGNGRAEQQDFAEIFKQGMPGVQLLRPSDEKIKLFCDGIGAWDSLKDARNARFSSAVDANANANANANA
D1-35_040401122xerC_2Tyrosine recombinase XerCTTGAACGTATTGAATATTACAGATCAATTGACCTTGGTCGACGAAACGCCGTTGGACCTGCAATCCTTGGCGCTCCACGCTCAGGAAGCAGCGGCGGCGTTTATTGCCGCCGGCACCGCGGCAAATACTGTACGCAGTTACCGCAGCGCCCTCGCCTACTGGTCGGCTTGGTTGCAGCTGCGTTTTGGCCAGGCGTTGGGCGATGCGCCCCTTCCCCCAACTGTAGCCGTGCAGTTTGTCCTCGATCACCTAGCACGGCCGTTGGCAGGTGGCGGCTGGGCGCACCTATTGCCGCCCGGCATCGACGCCGCCTTGGTCACCGCCCGGGTCAAGAGCAAGCTGGGACCACTGGCGTTCAATACCGTCAGTCACCGCTTGGCGGTACTCGGTAAATGGCACCGAATCAATGAGTGGGACAGCCCGACCGAAGCGCCGGCTTTAAAAACACTGCTGCGCGAAGCACGCAAGGCACAATCGCGCCAGGGCGTGAACGTGCGTAAGAAAACCGCGATCGTGCTCGAGCCATTGCAGGCGCTGCTCGCCACCTGTGACGACGGCGTGCGCGGGGTTCGTGATCGCGCGCTGCTCCTGCTGACCTGGAGCGGCGGCGGTCGTCGGCGCTCGGAAGTGGTTGGACTGCAAGTGGACGATGTTCGCCGACTGGATGCCGACACTTGGATGTATGCCTTGGGCACCACCAAGACCGTTACCGGTGGCGTACGCCGTGAGAAGCCGCTGCGCGGGCCGGCGGCAATCGCATTGGCCGCTTGGTTGGCGGCGGCACCCGCAAGCAGTGGACCGCTATTCCGTCGCCTGCACAAAGGCAACAAGGTGGGCGCTACAGCGCTGTCGGCCGATCAGGTCGCGCGCATCGTCCAGCGCCGAGCCAAAATGGCCGGACTGGAGGGGGACTGGGCTGCGCATAGCTTGCGTTCTGGCTTTGTAACCGAAGCCGGACGGCAGGGAGTGCCGCTCGGCGAGGTGATGGCCATGACTGAGCACCGTAGCGTCGGCTCGGTAATGGGCTATTTTCAGGCAGGCTCGTTGTTGGGCAGCCGAGCCACTGAGTTGATACCTGCTGTCGCCCCGACAGAAGAGATTGGGATAACTGGGAAAAATTAAMNVLNITDQLTLVDETPLDLQSLALHAQEAAAAFIAAGTAANTVRSYRSALAYWSAWLQLRFGQALGDAPLPPTVAVQFVLDHLARPLAGGGWAHLLPPGIDAALVTARVKSKLGPLAFNTVSHRLAVLGKWHRINEWDSPTEAPALKTLLREARKAQSRQGVNVRKKTAIVLEPLQALLATCDDGVRGVRDRALLLLTWSGGGRRRSEVVGLQVDDVRRLDADTWMYALGTTKTVTGGVRREKPLRGPAAIALAAWLAAAPASSGPLFRRLHKGNKVGATALSADQVARIVQRRAKMAGLEGDWAAHSLRSGFVTEAGRQGVPLGEVMAMTEHRSVGSVMGYFQAGSLLGSRATELIPAVAPTEEIGITGKNNANANANANA
D1-35_04041876hypothetical proteinATGGCAGTAGGGGTGCCGGAAAACGACGTGTTTGCCGCGGCGGATGCCGTCTTGGCGCGCGGTGAACGCCCGACGGTCGAACGTGTGCGCCTGGAACTGGGACGCGGCAGCCCTGCGCGAGTCGGCGGTTTGCTTGACCATTGGTGGGCGCGCCTTGCTGAACGGCTGAACGGCGAGACCCGCCTGCCGGCACTTCCCGGCGAGGTGTCGCAGGCCTTTGTCGCGGTATGGCAGCAGGCGATTCAACTGGCGCAGGGCGTCGTCGAACGGGGTTTGACCGAGCAGCGGCAAGTGCTCGATGCTGAACGTGAACGGATTGCGGCGGCGGAAGATCAAGCGCGTCAGGACATGGCCAAAGCGCGCCAGCAAGTTTCCGACGCCGTCGCTGGGCGTCAGGCTATGGAGCTACGTTTGGCTGACTTGGAACTTCTTCTTTCTCAACGTCAGAGGCAGATCGAGGATCTGCAGCAGCAACGGGAGAGCTTGGTGCACGAGCGCCGCGAAGCCCAGCAGTACAATCAGGTATTGCAGCAGGAACTACAGGCGTTGCGACTCACGGTCGAGCAGGAGCGAATCACACAGGAGAACTATTTGCGTGGATTTGAAGATCGGGCTCACAGAGAGGTTGATCGGGCCCGGGAAGAGGGCAAAGCCGCAGTAAGCCAATTCAAAGTAGCGAGTCGAAAAAATGACGACCTACAACGAAAACTGGAGTCGGCCCAGGACGAGCTCAGTCAAGCAATGCAGCGCGCCGCGGCACAACTCGCGCGGGCTGAAACCTTGGAGCAGCAGTTGAAACAGCTGCGGCAGCTGCCCGAGGCCAAGCGCAAACCGCGAGTTAGAAGAAAATCTGCATCAAGCAGTCCAAAAGACTGAMAVGVPENDVFAAADAVLARGERPTVERVRLELGRGSPARVGGLLDHWWARLAERLNGETRLPALPGEVSQAFVAVWQQAIQLAQGVVERGLTEQRQVLDAERERIAAAEDQARQDMAKARQQVSDAVAGRQAMELRLADLELLLSQRQRQIEDLQQQRESLVHERREAQQYNQVLQQELQALRLTVEQERITQENYLRGFEDRAHREVDRAREEGKAAVSQFKVASRKNDDLQRKLESAQDELSQAMQRAAAQLARAETLEQQLKQLRQLPEAKRKPRVRRKSASSSPKDNANANANANA
D1-35_04042213hypothetical proteinATGATCGTCACTGAAAGAGATCGTAACATCCTTGCCCAGACCCTGTGGGGTGAGGCTCGCGGCGAAAGCCTGGCCGGCCAGATCGCTGTGGCTTGTGCGATTCGCAACCGAGTGTTTGACGGCAAGACCAACTCTTGGTGGGGGGAGGGATACGCCGGCGTGCGCCAGAAGCCGTACCAGTTCAGCTGCTGGAACAAGGGAGACTTTGTCTGAMIVTERDRNILAQTLWGEARGESLAGQIAVACAIRNRVFDGKTNSWWGEGYAGVRQKPYQFSCWNKGDFVNANANANANA
D1-35_04043909hypothetical proteinATGATGAGTTTCAGGGGCTATAACTTCGGTGGCATCGGGGTATACGTATTCTTTATCATTTCAGGATTCGTTATTGCCATGCAAACAGAGAAAAAACCTTTGCAGTTTTTATTGCATCGAGCATTCAGAATATATCCCGCTTACTTTTCAGCCGTCGCACTGTCATTCGTTATTTTATACCTATTCTCTACTCAAACACCAAGCCTCAACACTGACTCACTTTCGATGCTATTAATTCCAACAGGAACACTCAACAGCTCATTTCAGATTCCTTACTGGACATTAATCTACGAAATTTTCTTTTATTCACTAATACTTTTGTTGATGGTTATTTTGAAAGGTAGGCAATCTCTGATAGATGGATCTATTTTGATTTGGCTTGCTGTCGTGATTTTCACCACCCAAATGGGACTAAAGCTAGACATACACGCGCCCTCGCTCAAAGACATTATTTTTTCACCCATGAATATCTATTTCATGTGCGGATATTTTCTTTCTAGAGTACTATTGTCAAACGATAATAAAATAGCTTTCTCGGGCCTATTGATAATTGCCGCCTCAGGAAGCTTTTTCCTATCAGTGCGGTATCAAGCAACTGTGTGCGCACTTGGTGTTTGTGCAATTGTTTTCTTTGCAAAATCGAAACCTTTCAAGAAGGCAATCAACAAACTTGGCGACTACTCTTATGGAATTTACTTAATTCATCTTCCTATGATCTATTGTATTTTCCTAGCAATGAGAGGTGCTGGCGCGAATTTTTCAATATCACTTTCAATGATGGTTTTGATTGCCTTGCCTATATCCATAGGATTCGGGAAATTAGAGCATATGATTTACAACCTGAAAATACGCCCAGCACTTAACTCATTCATAGCCGACAACAAATTTAACGCCATCAAGTCAGGATAAMMSFRGYNFGGIGVYVFFIISGFVIAMQTEKKPLQFLLHRAFRIYPAYFSAVALSFVILYLFSTQTPSLNTDSLSMLLIPTGTLNSSFQIPYWTLIYEIFFYSLILLLMVILKGRQSLIDGSILIWLAVVIFTTQMGLKLDIHAPSLKDIIFSPMNIYFMCGYFLSRVLLSNDNKIAFSGLLIIAASGSFFLSVRYQATVCALGVCAIVFFAKSKPFKKAINKLGDYSYGIYLIHLPMIYCIFLAMRGAGANFSISLSMMVLIALPISIGFGKLEHMIYNLKIRPALNSFIADNKFNAIKSGPGPT0026580_440DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-SUCCINOGLYCAN_METABOLIC_PATHWAY,PGPT0026580-exoZ-K16568NANA
D1-35_04044525hypothetical proteinATGTCTGTCGCTAAGGATATCTCTAAGCGTATCAAACACATGCAGAAGGGCAAGCCATTTACTAACGCAGTGTTCGCAGAGGTGGGATCCCGTACCTCAGTTGATAAAGCGCTGTCACGGTTGGTGCAGAGCGGCATTTTAGAGCGCATTGCTCGCGGCATCTATATGCGCCCTAAAATTAGCGCGTACACTGGTAAGAAGGTTCGAGCGAATCCAATAGCAGTCATGGAGGCAGTCGCAAGGAGCAGGGGCGAGATCATCCAGGTCCATGGTGTAGAAGCTGCTCGCAGGCTAGGAATTAGCACTCAAATGCAGGTTCTACCGACCTATTATACCAGCGGATCGACACGTGAAATTAAGATTGCTAACGCGGTGGTGCGGTTGCGTCATTCATCTTGGCAACGTCTCCAGCAAGCTGGTAGCCAAGCAGGCCTAGCTTTGACCTACGCCGGTTCGATTCCGACCTCGGCCTCCACTATCAAAAACCCCGTAGATCAACGATCTACGGGGTTTTTTGTTGTCTGAMSVAKDISKRIKHMQKGKPFTNAVFAEVGSRTSVDKALSRLVQSGILERIARGIYMRPKISAYTGKKVRANPIAVMEAVARSRGEIIQVHGVEAARRLGISTQMQVLPTYYTSGSTREIKIANAVVRLRHSSWQRLQQAGSQAGLALTYAGSIPTSASTIKNPVDQRSTGFFVVNANANANANA
D1-35_04045474hypothetical proteinATGGCAGACCCTTTTACAGAGGCAGAGAAACCGACACCTTTGGCCCGGAAACCAACGGAATACCTAACCCGGGTCAGCATTGAAAATCTTAGCCCGCTCGGCGTTTTCTTGCTTGCTAAGGAGGGTTTCGCGTTGAGCGACGTTTACTCAATGGTTTCGCTTTCCGAGCTTTACTTGTCATGGAACGTCATCAAGCGGATCGTTGGTAAGCCTAGCCGAACGATGCAAGGTAAAAACGATAAAACCACGACTGGTCGACTTGGCGTTTTTGAGAGTGCGATAGCCTTTCAATACGCAAAGGTTCTCGAACACGCAATGACTGTTTTTGGCACCCTGCGACTTGCCGAGGAGTGGCTTGCCAAGCCCTGTAGATATTTGGACGGTAACATCCCCCTTGATCTGGTGGGTAACCCACTCGGATTTCAAGCTGTCGAAGACTACCTAGAACGAGTCGAACTGGGGGTCTATCAATAAMADPFTEAEKPTPLARKPTEYLTRVSIENLSPLGVFLLAKEGFALSDVYSMVSLSELYLSWNVIKRIVGKPSRTMQGKNDKTTTGRLGVFESAIAFQYAKVLEHAMTVFGTLRLAEEWLAKPCRYLDGNIPLDLVGNPLGFQAVEDYLERVELGVYQNANANANANA
D1-35_04046714hypothetical proteinATGATAAATCCTAAATCAAATGTGCTCACATTAGAAAAAGTCATGTGCGCTGTTGCCGATTTAAAAAAACAAGGCCTTAAAATAACCATCAAGGCTGTACGAAATCAGACGGGTTATGGTTCATACACGACCATTTCAAAGTTTCTTAGAGAAGCGTCTTTGGTAGAGAAGGAAAATCTCTCTCCTAGTGAACGGCTCGCTCAGTTTCCAGATCAGATCAGAACAGCATTTCTGTCGGTTTACAAAGAACTAATCAAAGCTGCAAATGCTGAAGCAAACAAAAAACTCAACGAAATTCAGGAGATTGAAGAAAGACTTCGAAGCAGATGGGCAGCGAACATCAAGGAGAAAATTAGAGCGCTTCGAAGTCTGGAGATCGAAACAAATGCCTGCGCCGAACTCAGAGCTGAGCTGACACGAGCGACTCAAAACAACTTGCAAAATCAGGAGGTCATAACGAACCTTACCGCACGACTGGTTAAAGCGGAGTGTGAAAATGTGCAGCTGTTAGAACTAACGGAAAAGATGAAGAATGATATAAAACAACGTGAGAGGCACATTGAGTATTTCGAAAAGCAGGTACTTCAGCAAAGACACGCAGATAACCAGATGCATCTGCTTAAGGTTGCAAAACTCGAGCAAAACTTGATGAGTAGTCAGGCTCGCGTATTGGAGCTGTCGGTGGCATTAGTGGGGAAATCCGAAGACGGTTAAMINPKSNVLTLEKVMCAVADLKKQGLKITIKAVRNQTGYGSYTTISKFLREASLVEKENLSPSERLAQFPDQIRTAFLSVYKELIKAANAEANKKLNEIQEIEERLRSRWAANIKEKIRALRSLEIETNACAELRAELTRATQNNLQNQEVITNLTARLVKAECENVQLLELTEKMKNDIKQRERHIEYFEKQVLQQRHADNQMHLLKVAKLEQNLMSSQARVLELSVALVGKSEDGNANANANANA
D1-35_04047597hypothetical proteinGTGATTAAAAAAAGATTAGGTCGCGAGGAAAGCCAGCAAATAACACGAGACAAGTTATTTGATACCGCCACTGACCTCATGATCAAAAAAGGCTTTCACGCCGCCAGTGTCAATATTATCTCTGAAGAGGCAGGTTATTCGAAAGGTGCGTTCTTTTCCAACTTCTCAAGCAAGTCGGAACTGCTCCTGCAACTGACCCAGCGTTTCAAACGGGTTGAAATAGACCGCTTGGGCGAGACGTTGGCCGCGGGTTATACCGCAGAGCAACTCGCGCACGGATTGAACGCCTACATCGATACACTTAAAAACAATACGAACTGCGCCATCCTCGACGCCGAAATGCAACTGATCGCGTTACGCGATGAAGCGTTCGCAAAGCATTACTACGATCTGCATGAAGAAAACAGCGAGGCGCTGGGCAAGCTGATCACTATCATTTTCAACCATGCCGGCAAGAAACCTCCGTTGGCATACGCAGCACTCGCGAAGACTTTCACGGCGCTGTCGGAGGGTTTGATATTGCAAGGACATAAAGATCCAGCGGCGGAAATCAAACTGGTGCTCAATTCGCTCATTGAAACGGCGGAGCCATTGTAGMIKKRLGREESQQITRDKLFDTATDLMIKKGFHAASVNIISEEAGYSKGAFFSNFSSKSELLLQLTQRFKRVEIDRLGETLAAGYTAEQLAHGLNAYIDTLKNNTNCAILDAEMQLIALRDEAFAKHYYDLHEENSEALGKLITIIFNHAGKKPPLAYAALAKTFTALSEGLILQGHKDPAAEIKLVLNSLIETAEPLNANANANANA
D1-35_040481017auaHAurachin B dehydrogenaseATGGAATATGCCTTTGTTACAGGTGCTACAGGCCTGCTTGGGAACAATGTCGTCCATGCACTTTTAAAACGAGACATCAAAGTAAAGGCGCTGGTACGTTCCATTGAAAAAGCCAAGAAGCAATTCGACGGTTTGCCCGTCGAACTTGTCCAGGGCGATATGCTTGATGTTGATGCATTCAGCCATGCCTTTGAAGGCTGTGATGCCTTGTTTCATACAGCGGCCTATTTTCGCGACAGCTATAAAGGCGGAAAACATTGGCAAAAGCTCTACGATACCAATGTAACCGGCACCGAGCGGTTGTTGCAGGCCGCCTATGCCGCGGGCATTCGCCGTGCGGTCCACACTTCCTCCATCGCGGTCCTCAAGGGAAACCGCGATCAGGTAATCGACGAGACCATGTCGCGCGACGAGTCCGAGGCAGACGATTACTACTTGAGCAAGATCCTGTCTGAACAGAAGGTTCAGGAGTTCTTGTCGCTGCATCCGGACATGTTCGTGGCGATGGTTTTACCCGGTTGGATGTTTGGCCCAGGCGACATCGGTCCTACCTCGTCAGGTCAGTTCCTGCTGGATTTCGTAGGAAAAAAGTTGCCGGGGGTTCTTCCCGGGAGTTTTTCAGTCGTGGACGCCCGTGACGTGGCGGAACATCAAATCGCAGCGATAACACGTGGCCGATCGGGAGAGCGTTATCTGGCTGCCGGCAATCATATGGACATGAAGACTATCTTTCGGGCATTGGCCAACGTCAGCGGGATAAAGGCACCGGAACGGCCTGTTCCGTTGTTCATGCTGCGTCTTATTGCTTTTGCCTATGAAATTTATTACCGGGTTACTAAAAAGCCGGTGCTTATCAGTACTTCCACGGTCAAGCTCATTGAGCAGGAACAAGGGAGGACTCACTTCAGCCACAGCAAAAGTTCAAGTGAACTGAAATGCGCGTTCCGCCCGGTTACTGAAACCCTGACCGATACGCTGGACTGGTATCGGAACAATAACTACATAAAGCTCAACTGAMEYAFVTGATGLLGNNVVHALLKRDIKVKALVRSIEKAKKQFDGLPVELVQGDMLDVDAFSHAFEGCDALFHTAAYFRDSYKGGKHWQKLYDTNVTGTERLLQAAYAAGIRRAVHTSSIAVLKGNRDQVIDETMSRDESEADDYYLSKILSEQKVQEFLSLHPDMFVAMVLPGWMFGPGDIGPTSSGQFLLDFVGKKLPGVLPGSFSVVDARDVAEHQIAAITRGRSGERYLAAGNHMDMKTIFRALANVSGIKAPERPVPLFMLRLIAFAYEIYYRVTKKPVLISTSTVKLIEQEQGRTHFSHSKSSSELKCAFRPVTETLTDTLDWYRNNNYIKLNNANANANANA
D1-35_040491506lcfB_1COG0318Long-chain-fatty-acid--CoA ligaseATGAAAAGCCCTACCTGTAAAGAAGGTTTCCTGCATCGCTTTGTTGGTTTTTCGGATTTGCACCCCGACGCCATCGCTATCAGGAATCTAGATGCGGAAGAAACCTTCACGTACCGCGACTTGCTGAACAAGGCCGAAGCGTGCAACGGTTTGCTCCATGCCCTTGGGGTGTCGTCCGCAGAGAAAGTTGCGCTTGTCTTACCCAATGGGGTGGATTTCATCGCGTATTATCTGGCGATCATTGGCCATGGTGCTATCCCCGTCATCCTCAACCACAAGCTGACGACGTACGAACTGAGCAACGTGCTGGGCCTCGCCGGGCCCGCATTGACCGTCACGACCGATTCGTTGTTCGAGCAACACCGCGAAGTCTTTCAGTCGGTCCGTTGCCTCGTCGTCCGCACCGCCGATGAGCAGCCGTTGTCGTTGCCCGAACACGCAACGGCAGCCTCTGATCTTCCGCATCAGCTCTGGCCCTTGTCGCTGCCTGAAGGCAACCCGGTCGTTTCGGTACAGTTCACGTATCGGGGCGTTGGCATGCCGCTGGCTGTTTCTCATCGTTATCTGGACCTGACGCAGTCAAGCGATGGCTTGCACGAGCAGTTCCACCCTCAAGGCCTTGGGTCGGTCCACTTGGTGACCCTGCCGCTGTACGCGATCTTCGGCCTGTCCGTGATGATGGTTTTCCCGCTCAGCATCGGCGCTACGCTGCTGATGACCAACAGCCTGCTCAACAGGGACCTGGCGCAAGTCTTGTCCGAGCACCAGGTGTCCTTTGCCTGCCTGGTGCCGGATGTCATCCGCTACTTCAATACCCGACTGGCCAAACGCAAGGGCCCACGGCTGCCGCTGCATCCGCAACTGATGATTTATTCCGGCGGCAGCCATCTGCCGGCGGATGAAGCGCAAAAGCTTGGCGATTTGCTGGGGTGCGGCCCTGTATTGCAAGGCTACGGACTGACGGAAAGCATGCCGGTGATTGTCCAGAGTTCGGTCGGCGAGGTGCATCGCGGTGCGATGGGCCAACCGATCAGTGGTGTCGAGTTGCGAATTGTCGATGGTCAGGGCCGCGACGTGGCCGTGGGGCGTATCGGCGAGCTGCTGGTACGCGGCCCGATGGTTATCCCGGGCTATGACGATGCGCCGCAGATAAATGCCCGGTTTTTCCGTGACGGCTGGTTCCACACCGGCGACCTGGTCTGGCAGGACGACGACGGGCACGTATTTTTCTACTGCCAGCGCCTGCGCATCTCGAAAATCAAAGCGCAGATGATCGACCTGGAAGAAATCGAGTCCATTGCCCTCAAGCATCCCGGTGCAGTGCGGGCAAAGGCCTACATCGTCCCGGACCATAAAGCCATCAACGTACTGCACTTGTCTGTGGAAGGTAGCGCAGACCTTAGCCAGAACAGCGTATCCACCCTGCTCGCCCGTTACCTTTCCGCCTTCAAACTACCCAGGAACATCGAGATTGTCCCGCTCAAGGAAGAGATTCATGCACGCTGAMKSPTCKEGFLHRFVGFSDLHPDAIAIRNLDAEETFTYRDLLNKAEACNGLLHALGVSSAEKVALVLPNGVDFIAYYLAIIGHGAIPVILNHKLTTYELSNVLGLAGPALTVTTDSLFEQHREVFQSVRCLVVRTADEQPLSLPEHATAASDLPHQLWPLSLPEGNPVVSVQFTYRGVGMPLAVSHRYLDLTQSSDGLHEQFHPQGLGSVHLVTLPLYAIFGLSVMMVFPLSIGATLLMTNSLLNRDLAQVLSEHQVSFACLVPDVIRYFNTRLAKRKGPRLPLHPQLMIYSGGSHLPADEAQKLGDLLGCGPVLQGYGLTESMPVIVQSSVGEVHRGAMGQPISGVELRIVDGQGRDVAVGRIGELLVRGPMVIPGYDDAPQINARFFRDGWFHTGDLVWQDDDGHVFFYCQRLRISKIKAQMIDLEEIESIALKHPGAVRAKAYIVPDHKAINVLHLSVEGSADLSQNSVSTLLARYLSAFKLPRNIEIVPLKEEIHARPGPT0008380_14400DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897NANA
D1-35_04050612hypothetical proteinATGCACGCTGATCACACGCGACCGGTGCTGGCCGTTTTCGATTTCGACGGCACATTGACCGACAGGCATACCTTCTGGCGCTACATGCGTTTTATCGTCGGAACCCGGCCCTTCTGGCTCAGGATCATCCCCCTGCTGCCAAAAATGCTCAGCGTGATCCTGGGAATCACACCGCTGATGCAGGCGCGACTGGCGTTTATCGCCTGCTATCTGGGAGGCCTGAGCGTCGAGCAGGAGCGCGAACATGCCAGGTACTTCATCAGTGAACAGCTGCCGCTCTGGCTCAGGCCCGAAGCGCTGCGTCGGCTGAAGTGGCATCAATCCATGGGACACGTCACGGCGCTGGTCAGCAATTCGCCGGAGAACTACCTGATCCCGTGGGGGCAGGCAGTTGGTTTCGACTACGTGTGCGGCACCCGCCTGGCGACGGCCCGGAACAAGCTGACCGGGGGCATATCGGGAGCCAACTGTGTCGATGGGGAGAAAGTCAGGCGCCTCAAAGGCTGCGTCGGCAACCTTGAAGATTTCTACGTCTATGCCTATGGCGACTCGTCAGGCGACGAGGCCCTGCTCAGCGTTGCCAACTCTCCCTTCTATAGAAACTGGTACTGAMHADHTRPVLAVFDFDGTLTDRHTFWRYMRFIVGTRPFWLRIIPLLPKMLSVILGITPLMQARLAFIACYLGGLSVEQEREHARYFISEQLPLWLRPEALRRLKWHQSMGHVTALVSNSPENYLIPWGQAVGFDYVCGTRLATARNKLTGGISGANCVDGEKVRRLKGCVGNLEDFYVYAYGDSSGDEALLSVANSPFYRNWYPGPT0007720_580DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHATASE_ACTIVITY,PGPT0007720-pgpC-K18697NANA
D1-35_040511782mhpA_13-(3-hydroxy-phenyl)propionate/3-hydroxycinnamic acid hydroxylaseATGAATACTCTGAGCACTTTTGTCCCCGCGCATTACAAACAGCCGGGCAAGGCGCCGGCGGTAATGATCGTAGGCGCCGGCCCTATCGGCTTGTCGCTGGCGATCATGTTGCAGAAATGGGGCGTCGCTTTTCGTATCATCGAGAAAAACGCCGGTCCCTCCACCGCGACCAAGGCGATGGCGATCCATTCCAGGACCCTGGAAATCTTCCGCGACCTCGGCGTCGCCGACCAGGCCATCAACGATGGTTTTACCATCAATCAGTTTTCGGTGCAGTCCAACGCCCGGCGGGTACTGAATTACAACTTTTCCTGCCTGGATGCTACCTATCCCCTGCTCCTCAGCCTGCCGCAGCCGCAAACGGAAAAGATCCTGCTGGAACGATTGACTGAGCTGGGCGTGGAAGTCGAATGGAACACCGAGCTGGTGGACATCGAGAACCAGCCCGAGTCCGTACGGGTCACGCTGCGTCATGGCGACGGTCGCGAGGAATCCTGCGCCAGCCGCTGGGCAGTGGCCTGTGACGGTGCTCGCAGCAACATCCGAAAACGCCTGGAGATGACTTTCGAGGGATCGTCCTACGATCGTTTTTTCATGCTCGCCGACGCTGACATCGAGTGGTCCGGCAGCAAGGACGAAGGCGCTTTTTTTCTTGGCGCGCAGGATGGGTACGTGGCGGTTGCGCCGATCAGCGCACAATCGCGTTATCGGCTGTTCATCGAGATGCCCTACGACTTGCCACCGGAAGGCGAGCGCCCCTCCTTGAGCCTGGAGAACTTCCAGCGGCTGTGCGAGGGACGTGGGCAGAACATGACCCTGTCGAACATCTCCTCCACCACCATTGCCTCTTTCCAGCATCGCCGGGTGCAGTCATTGCAGCAGGGCTCGGTGTTCCTGGTCGGCGATTCTGCGCATATCGGCAGCCCGATCGGCGGCCAATGGATGAACCTGGGAATTTCCGAGGCCTACAACCTGGCGTGGAAGATCGCCTATGTCGATCAAGGCCTGGCGGATCCGTCACTGCTCGACAGCTATAACGAGGAACGTTATCCGGTGGCCCTGGAAGTCGAGAAGACCGCGCATCGGTTGACCGGGTTGATCACCGTAAGGCAACGGGCCCTGGTGTGGCTGCGAGATAACGTCCTGCCACTGCTGAGCAGCAGGCCCAAGGTCCAGCGCAAACTGCCCTCGATGATCTCCGGCCATCAGTACCACTACGCCAAAAGTGACTGCATCCAGGAGGCGCTGACGAAAAAGCAGCGCCGCAACTGGGCCAGGAAAGGAGCCCGGACGGCGTTCCAGCCGCCGGTGCCTCGCGCGGGGCAACTGGCACCCGATGTCGAGCTTTGGCAACAGCAAGGGGCGCTGCCGGCGCGCTTGATCGACCTGTTCCACGGGACGTACACGTTGTTGATCTTCACCGCGGCGGATCAATTTTCTCCCATCTTGCCAGGCCACTATGCACTGGCCGAGTCAGTAGAAAAAGATTATCCGGGCATCAAGGCCTACTGCGTGGTCGACGCCCTCAACAGCGCGGAACTGCCGGCATGGCACTCGACATTGCTCGACCCCGACTGGAGGCTGCACAAGCGTTATCACGCCAGCGAAGGCACGCTGATGCTGATTCGTCCTGACGGGTACATCGCGTTCCAGGGCGCCGACGCGATGACACTCGTGACGTACCTGAGCGTGAGGTCCGGATTGCTCAAGGCCCCAAGGGAAACCGCCTCCCCGACAAGCGAGGCAGTGCAAATCCAGCGGCCAGTCGCAACCGCTCACTGAMNTLSTFVPAHYKQPGKAPAVMIVGAGPIGLSLAIMLQKWGVAFRIIEKNAGPSTATKAMAIHSRTLEIFRDLGVADQAINDGFTINQFSVQSNARRVLNYNFSCLDATYPLLLSLPQPQTEKILLERLTELGVEVEWNTELVDIENQPESVRVTLRHGDGREESCASRWAVACDGARSNIRKRLEMTFEGSSYDRFFMLADADIEWSGSKDEGAFFLGAQDGYVAVAPISAQSRYRLFIEMPYDLPPEGERPSLSLENFQRLCEGRGQNMTLSNISSTTIASFQHRRVQSLQQGSVFLVGDSAHIGSPIGGQWMNLGISEAYNLAWKIAYVDQGLADPSLLDSYNEERYPVALEVEKTAHRLTGLITVRQRALVWLRDNVLPLLSSRPKVQRKLPSMISGHQYHYAKSDCIQEALTKKQRRNWARKGARTAFQPPVPRAGQLAPDVELWQQQGALPARLIDLFHGTYTLLIFTAADQFSPILPGHYALAESVEKDYPGIKAYCVVDALNSAELPAWHSTLLDPDWRLHKRYHASEGTLMLIRPDGYIAFQGADAMTLVTYLSVRSGLLKAPRETASPTSEAVQIQRPVATAHNANANANANA
D1-35_04052834hypothetical proteinATGCGCTTGCAACTCAATGAAGTTGTGCAGGAATTCATCGTGTCCAACGGGAAAATAGCCCATAGCTATTTCTCCCTTTCGGAAAAAATCATCGATTCACTTTGCGAATCCAACATGGCGAAGGAATCCATCCTGATGCGCCTGCTGGAACAGGCTGAATCGGTCACCGCCCATTATTTCAATGCCCACCAGCAGGTGCTGGAAGGCGTCTATGCCCATGGCATCGAGGCGGCTGCTGGTAGAAGCGTCGCAACGCTGGAGCCCGTGCCTGCACACTCGACCGTGTTGGCCGCCGCCCCCTCGACGGAGGAACCTGTCGCCCTCAGCTATGAGCAATGGTTGCGCGCCGAGATCAGTTCGGTCACCGGTTTCAAGAACGAGCAAATCGACTTCGAACGAAGTTTCGAAAGCCTGGGCATCGACTCGCTAGGGCTGGTTGATATTTTCGAGTCGTTGGCCCAGCACTTCCCGGACAAGAAAGAACAGACCTCGGAACTCTTCGATGCCCTGACCCCTACGGCCCTGCTGGCCAGGCTTGAAACCGATCCGAAGCCGCCTGCCGCACCTTCCGAGGCGCCGCTGCCTGGCTCCGCCGATGCGCAGACGCAGCTCGGCGCGGTGCTGTTCAACGCTCTCTCACCGCTGGTTTCGGACGCACCGCAGTCACTGGACGTCAACACGCCTTTTACCGATTTGGGACTCAACGGTTTCGACCGGCAAGCCCTTTGCCAATCAATGGCACAAGAGTGCCCCGTCAGCGAGTTTGCTGGTGAGGCATTGATGTCGCGTCGTACCCCGGAAGACGCACTGGCGCTTCTGGCAAGAATGGGCTGAMRLQLNEVVQEFIVSNGKIAHSYFSLSEKIIDSLCESNMAKESILMRLLEQAESVTAHYFNAHQQVLEGVYAHGIEAAAGRSVATLEPVPAHSTVLAAAPSTEEPVALSYEQWLRAEISSVTGFKNEQIDFERSFESLGIDSLGLVDIFESLAQHFPDKKEQTSELFDALTPTALLARLETDPKPPAAPSEAPLPGSADAQTQLGAVLFNALSPLVSDAPQSLDVNTPFTDLGLNGFDRQALCQSMAQECPVSEFAGEALMSRRTPEDALALLARMGNANANANANA
D1-35_040533414hypothetical proteinATGAGTGGCGCGGTAACGACAGCGGGCGAGTTGTGCTTCAGCGCAATGGCCGGCGAATTTCCAGGGGCGTCGTCCACCGACGCACTTTGGCACTTGCTCTCGCAGGGCGGCATAGCGCCCATCCAGGCAATGCCGGCGCGCTGGGGGTTGCAGAAGGCGTCGATATTTTCGAGCAAGGCCGGCGAAAAGGATCGTGTCTACCTGGACAGCGCATTCTGCCTTTCAGATGACCCATCGATGCCTTCCCGTTATGAAGGTCGGCAAGTCGCGATCGGCAAGAACGTGCTCCGGACGCTTTTTGCCGAACTCGCGGCGCAAGGCACGGTATTGAATACCGAGCGAACCGCATTGGTGGTCGCGACGTCCTGGAGCGATGAAAGTTATTTCGCCACGGCAGTGCCCGGCGGTACCGACACGCCATCCGGTTTCACGCCCGGTGAACAGGTGGCCGGGCTGGCGCGCGCTTTTGCCTTGGGAGGCCCGGCCTTATCGGTGGACACCGCTTGCAGTTCGTTCCCCTATGCCATCGACATGGCCAAGGCTCTGCTCAACAGTGGCCAGGCGGACAAGGCGATCATCATGGCGCTCAACACCGTTCTGCCCCCGGCATTGTTCCTCGGTTTCTCCCAACTGACGGCTTTTTCCGCCCGGGCCAGCATGCAGGCGTTCGGCGAGGATGCCGACGGTATTGTCCCGGGCGAATGCGCCACGGCGTTTCTGGTCGAGCCCGTGGCCGATGCCCTGAACGCCCGACGCCGGCCGCTGGGCGTGCTGAGAGGGTTGGGGCTTTCCGCCGATGGTGCCGAAGGGTCGGTGTTTGCACCGGGCAGGCAGGCCCAGTATCGCGCCTATCAACGGGCTTACATGGACCTTGATCCAGGCCGCGTGGATTACATCGAAACCCACGGCACCGGCACCCCGTTAGGGGATGCGACCGAACTGGCCTCGCTGAACAGCTTCTTCGCTGCCCATCGCAGCGCCGACGAAAAAATCGCCATCGGTTCGATCAAGGCTGTCATCGGTCATCCCCTGGCTGCGGCGGGAGGCGCTTCGCTGGCCAAGGCGTTGATGATCCTGCGCCACAAGGGCATCCCACCCCAGCCGGACTACCGTCCCAGCCTGAAAGTCGACGACACCTGCCTGCGCCTGGCGACACAGCGAGTCCAGCCACTGGAGGATCGTCAATCGCCGATCCGCATAGGCATTTCCAGCTTCGGCTTCGGTGGCGCCAACGCCCATCTGGTGGTGGATGAATATGTGCCCGATGGCCTCCCTGCCCCCACGCCGGTGGCTTCAGGCGTGCAGATCCTGGACCTCGCGATAGTCGAGGCGGAAGCCGCACTGGGCGGTTGCGATTCACTGCACTCGTTCAAACGGCGGCTTGAGCAACCGGCTACTCGACCGGTCACTTTCCCTTACGGGCGTTTCGTCGATGGCAAGGGGCCCTCGGCCGGGCCGTTGTCGGGGAGATTCCTCGCCCAGGACCGCGTCATCGATATCGACGGTTTTGGCATGGGGCCAAAGCCCCTGGCCTACGTCGATCCCTTCAAACTGTTGATCACCGACCGCGTCAATCACCTGTTGCGGCGCCTGCCGGGCGTTGCCGGATCGGCCGGTACGGCAATGGTCATGTGCTGCAACATGGGCGGGGAGCGGTTCAGCAACGCCTACAGCAGTGCCGAGCAATTCTATTCACGGGCCCAAGGCAGCCCGCCGGGCGTGGAAGTGACCGACGTGGCAACCATGTTGCCGAACATGTTGTCCGGCTACCCGGCGCAGATTTTCGATTTCAAGGGTTTTCATCAGACCCTGGCCGGCTCACCAGGGCTGTTCTGGCAAACCCTGCTGGCATCCCGGCAATGGTTCGACGACGGCATCACGACGCTGCTGCTCGGAGCCGGCCGCTTCATCAGCGGCGAAATCGAGGTCGATCGTGCTCGCCGCAGCGCTACGCCGCAAGGTGAAGGGCTCGGGCTGCTTGCGCTGCGTCCTTATCGAGCGGGTTCAACGGACACGCCCCTGCTGGTGATTCGCGCAGCGGTCCTCGCCCATGCCGCGGCTTCGCTGGACGAAGCGTGCCGATTGGCCGGCAAGGAGCGCGCCCAGTACGCGGCAGTAGAGGTTTGTGAGTTGCAGCCTGATAACGTCCCGGTGGACGGGTCGTTGCAGGAGATGACCGGTTTTCTGGCTGAAGCCTGCGGCATCGAAACGCTCTTGTCGGTGACGATGAACTCCGCGGTTCACACGGTGATCGAGGTGCGTGAGGCCGGCAAGGTTGTGATGTGGCTGTTCACTGAAAAACTGCGCGAATGGAACCCCGCGACGGCGAGCCCCGCCCCTGCGATCAGACACCCGTTCACGTTGCGCTTTGCCCACGAGCCCCATGAGCTGCAGCAGGTCATCACGCCGGTGCATGCCGGCGAAATCGTCCGCGAGCCACAACACGACGGTGTCGATGTGTTGCAACTCAGCGACATGCTGACCAGCACGGTTCTGGCCGGGTTGCGGGTGCGAGTCCGGGCCATGGAGGGGCTGTTCGCCCTGCACCGGGGGGCTCGTACCCAGCGCCCGGCGCCCTGGCAGCGTCGAGCGGAACACGTGGTGATTTCCCACATCCAGCGCGAGCCGCGTTCGCTGCGGGCACGGCTGGTGGTAGACGAAGGTCACCCGTATTTCTTCGACCATCCGCTGGATCACATCCCCGGCATCCTGTTGCTCGAAGGGGTGATGCAACTGGTCGAACTGGCCATGCCCCCGCTGAATGGTCGCGTCGCCTACGTGAAGACGCTCAGCATCAAGTTCCAGCAATACGTCCAGAAGGAGGACGTGATCGACCTGCTTCTGGAGCAAGGCCGCGATGGCCAGGAATTTCAGGCAACCGTCACGCAGGCTGGAAAAGTCATGTGCACCTGCGTTCTGGGCATGGCCTACAGCTCGGCCTTCGAGACCTCGCCGGCGGCTGAGTTCACGGCCGCGCGCTGTGTCGACAAGGCCCTGCTGCACAAGGCCCGGGAGGAAAATGTCATCGTCAGCGCCATGAGCAGCCTCGCCCAGGGGCTGAGCGTGGATACGGTCAGCCTGCCGGATGGGCATTTTTTCCACGAGGGCGATCCCGAGCATTTCTCGATGGTGTATTTCCTCGAGGTTGCCCGCCAGTGCTACATGCAGATTGCCCACGGTCATCTGCGTATTCCGCTCAAGACCCCGATGAATCTGCTGGCCCTGAGTTTCACCCTGGACCGGCCAATTCCGAGGAACAGCCCGTTGTCACTCGCTCCGCAAGCGAGCCTCGGGACGCAGCTTCAATCATTCAAGACCAACCGTATCCATATCGACCTGTTCAACCGGGGCGAAAAGATCGGCCAAGCCAATATCACCGCTCAAGTATTGAGCCAGGCCGCGCCTGCTGCCTGAMSGAVTTAGELCFSAMAGEFPGASSTDALWHLLSQGGIAPIQAMPARWGLQKASIFSSKAGEKDRVYLDSAFCLSDDPSMPSRYEGRQVAIGKNVLRTLFAELAAQGTVLNTERTALVVATSWSDESYFATAVPGGTDTPSGFTPGEQVAGLARAFALGGPALSVDTACSSFPYAIDMAKALLNSGQADKAIIMALNTVLPPALFLGFSQLTAFSARASMQAFGEDADGIVPGECATAFLVEPVADALNARRRPLGVLRGLGLSADGAEGSVFAPGRQAQYRAYQRAYMDLDPGRVDYIETHGTGTPLGDATELASLNSFFAAHRSADEKIAIGSIKAVIGHPLAAAGGASLAKALMILRHKGIPPQPDYRPSLKVDDTCLRLATQRVQPLEDRQSPIRIGISSFGFGGANAHLVVDEYVPDGLPAPTPVASGVQILDLAIVEAEAALGGCDSLHSFKRRLEQPATRPVTFPYGRFVDGKGPSAGPLSGRFLAQDRVIDIDGFGMGPKPLAYVDPFKLLITDRVNHLLRRLPGVAGSAGTAMVMCCNMGGERFSNAYSSAEQFYSRAQGSPPGVEVTDVATMLPNMLSGYPAQIFDFKGFHQTLAGSPGLFWQTLLASRQWFDDGITTLLLGAGRFISGEIEVDRARRSATPQGEGLGLLALRPYRAGSTDTPLLVIRAAVLAHAAASLDEACRLAGKERAQYAAVEVCELQPDNVPVDGSLQEMTGFLAEACGIETLLSVTMNSAVHTVIEVREAGKVVMWLFTEKLREWNPATASPAPAIRHPFTLRFAHEPHELQQVITPVHAGEIVREPQHDGVDVLQLSDMLTSTVLAGLRVRVRAMEGLFALHRGARTQRPAPWQRRAEHVVISHIQREPRSLRARLVVDEGHPYFFDHPLDHIPGILLLEGVMQLVELAMPPLNGRVAYVKTLSIKFQQYVQKEDVIDLLLEQGRDGQEFQATVTQAGKVMCTCVLGMAYSSAFETSPAAEFTAARCVDKALLHKAREENVIVSAMSSLAQGLSVDTVSLPDGHFFHEGDPEHFSMVYFLEVARQCYMQIAHGHLRIPLKTPMNLLALSFTLDRPIPRNSPLSLAPQASLGTQLQSFKTNRIHIDLFNRGEKIGQANITAQVLSQAAPAANANANANANA
D1-35_04054477hypothetical proteinGTGAACGATGTCAAGGTTCAACTCATAGTCAAATCACCACCGTCGGAAATCTGGAAGATCTGGAGCAATTTCCAGGAAGCCCCGCTCTGGGATACCGACGTCAGCCATTGCCAACTCGAGGGCCCGTTCCAGGCGGGAACCGCGGGTCAGTGTGTGCTAAGGAATGGCTTGAAAATGCCATTGAGGCTGCTGGCCGTGGAACCGCAGGAAAGCTATCGCAACAGCGCGAGACTGCTTTGGATACGGCTCGAATTCGACCACCGGATGCGCAGGCTGTCTCCGGACGAAACCCAGGTCATCCATAGCGCCAGGATCTCCGGCCCGTTGAGCTTCGTGTACCGCGGCCTGCTGCGCAAAATGCTGACGACGGTAATGACCACGGCGCTGGGCAATCTCAGAGCCCTTGCCGAACAACGCGCCAACGCTGTCGACGCCCCGGAGCGCGACAAAGCGCAAGCACATCTGCACCTCGTATGAMNDVKVQLIVKSPPSEIWKIWSNFQEAPLWDTDVSHCQLEGPFQAGTAGQCVLRNGLKMPLRLLAVEPQESYRNSARLLWIRLEFDHRMRRLSPDETQVIHSARISGPLSFVYRGLLRKMLTTVMTTALGNLRALAEQRANAVDAPERDKAQAHLHLVNANANANANA
D1-35_04055699hypothetical proteinATGAACTTACTGAAAAACACTCAATACCTGGTGATGGGCATCATCGGCATGGGCGCTGTCGCCCCGACGTCCACCTTCGCCGACACGCTGGGCCCCTACGCCAGCCTCATGGGCGGCCTGAACTGGGTATCGGCGCAGGACCTCAACCAGAACAACCTGGATTTCGTCGAGATGGAATTCAACCAGCCGCTCCATTCCGGCTACGCCACCGGCCTGGCGTTAGGCTGGCGTTTCCCGGTCGGGCTGCGCCCGGAGGTGGAACTCGGTTATCGCGAAAATACCCTGACCCAGTTCAACAACCGGGTCTATGAGGGCGGCGGGAGCATCGATGGCGAAGGCGAAGAGAAAGCGGCCAGCCTGATGGTCAACCTCTGGTACGACGTCTTGAACCTGCCCGCGCCTTTCAACCGGTTTACCCCTTACCTGGGCGGCGGCCTGGGTTACGCCACCCTCACGGTCAGCGGTCTGGAAGCCGGTGGCGTGGAGTTCGGCGGTACTCACCGCGACACCGTCTCGGCCTACCAACTGGGTGCCGGGGTGGGTTATGAGCTGAACGAAAACTGGTCGATGTCCCTGGATTACCGCTGCCTGAAAACGCGCGAGGCGCACTTCGGCGACATCGAACGGCTGCCCCAAGGCGATGTCAGCACCGAATATGAAGCCCAATCGGTGATGCTGGGCCTGCGTTACTGGCTCTGAMNLLKNTQYLVMGIIGMGAVAPTSTFADTLGPYASLMGGLNWVSAQDLNQNNLDFVEMEFNQPLHSGYATGLALGWRFPVGLRPEVELGYRENTLTQFNNRVYEGGGSIDGEGEEKAASLMVNLWYDVLNLPAPFNRFTPYLGGGLGYATLTVSGLEAGGVEFGGTHRDTVSAYQLGAGVGYELNENWSMSLDYRCLKTREAHFGDIERLPQGDVSTEYEAQSVMLGLRYWLNANANANANA
D1-35_040561158hypothetical proteinATGTCTGAGCACAACTGTGACCTGCTGATTGTCGGCGCCGGCATTCTCGGCCTGGCCCACGCCTGGGCTGGCGCCAGGCGCGGCCTCAAGGTCAAGGTGTTCGAGCGTAGCCATACGCCCCTGGGCGCCTCGGTACGCAACTTCGGCCAGGCCCTGGTCGGCGGCCAGGCGCCGGGTGTCATGCTCGACCTGGCACGCCAGGCGAACGGTTTGTGGAAAACGCTGGGCCAGGCTGCCGGGCTGCACATGCATCAGCAAGGCTCGCTGCTGTTCGCCCGTACGGAAGCCGAAGAAGCGCTGCTCGAAGCGTTCCTGAGCGGGCGGGGCGCAGCATTGGGTTATCGCACCGAGCTGTTGCGTGGCGAGGCGTTGGCGGCGCTTTACGATGGCCGTTTTGCCCATCACCGCGCGGCATTGCTCGGCCTCGACGATCAACAGTTGTATTCCCGCGAGGCACTGCCGCAGATCGTCGATTACCTGGCCCGGGCATTGGGCGTCGAATTCCATTTTTCGACGCTGGTCCGCGATGTCGAACCCCACCGTGCGCTCACCAGCGCCGGACGCTTTACCGCGCGGCACATTGTGGTGTGCTCGGGCCATGACTATCAGACGCTGCTGGCCGAGCAAATCGCCGGGCTCAACCCGCAAGTGTGCGGCTTGCAAATGCTCCGCGTACGGCCGCGCCAGCCCCTGGCGTTACGCCACGCGTTGCTCACGGGGCTGAGCTGCGTGCACTACGGCGCCTTTGCCGACCTGCCTGAAGCGCAGGCCATCCGCACGCAGATCCGCACGCACCAGCCAGAGCTCGAAGCCCATGGCATCCATCTGCTCATCAGTCCAACCCCCCACGGTGACCTGATCATCGGCGATTCCCATGTCTACGGCAGCGACATTTCACCGTTCAACGCCGAGCAGGTGGACCGCATCCTGATTGACCTGGCGCAGCACACCCTGGGCGGCGAGATCGATGTACTGGAACGCTGGCAGGGTGTATATGGCGCGCGGGGGCCGGGACCGTTCAGCGTGATTTCGGCTGCGCAAGGCGTCACCGCAGTGCTGATGCATACCGGCTTGGGCATGAGCGTGGGACTGGCGCTGGGCGAACGGACGATCGCCGCAGCGCTGGGGGAGGGGCCGTGGCAAAGCTCGGCGGCTTGAMSEHNCDLLIVGAGILGLAHAWAGARRGLKVKVFERSHTPLGASVRNFGQALVGGQAPGVMLDLARQANGLWKTLGQAAGLHMHQQGSLLFARTEAEEALLEAFLSGRGAALGYRTELLRGEALAALYDGRFAHHRAALLGLDDQQLYSREALPQIVDYLARALGVEFHFSTLVRDVEPHRALTSAGRFTARHIVVCSGHDYQTLLAEQIAGLNPQVCGLQMLRVRPRQPLALRHALLTGLSCVHYGAFADLPEAQAIRTQIRTHQPELEAHGIHLLISPTPHGDLIIGDSHVYGSDISPFNAEQVDRILIDLAQHTLGGEIDVLERWQGVYGARGPGPFSVISAAQGVTAVLMHTGLGMSVGLALGERTIAAALGEGPWQSSAAPGPT0020390_173DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_PROLINE_DEGRADATION,PGPT0020390-lhpB2-K21061NANA
D1-35_040571020COG1840putative proteinATGTCCAAACGCACTGCCTGGGCCGCCGGCCTGCTTGCCGCCTGTGTTCTGCAAGCCCATGCCAATACCGAACTGACCGTCTACACGGCCCTCGAAGTCGAGCAGCTCAAGGCCTACAAACAGGCCTTCGAGCAGCAAAACCCGGACATCGAGATCAAGTGGGTGCGCGATTCCACCGGCATCGTCACCGCCAAGCTGCTGGCGGAAAAGGATCGCCCCCAAGCCGATGCGGTCTGGGGTCTGGCAGGCTCGAGCCTGGCGATTCTCAAGCAGCAGGGCCTGCTGGACGCCTACAGCCCGGCGAACCTCGGCCAGATTTCCACCCAATACCGCGACGCCGACACGCCACCCACCTGGGTCGGCATGGACGTCTGGGCCGCCGCCATCTGCTTCAATACGGTGGAAGCGCAAAAGCTCGGCCTGCCCAAGCCCACCCGCTGGGAAGACCTTGCCAACCCCGTGTACCAAGGCAAGATCGTCATGCCCAATCCGGCGTCGTCCGGCACCGGTTACCTGGACGTCAGTGCCTGGCTGCAGACCTTCGGCGAGACCAAGGGCTGGGCCTACATGGACAAGTTGCACGCCAATATCGGCCAGTACACACACTCCGGCTCCAAGCCCTGCAAGCTGGCCGCCGCCGGCGAGTTCCCCATCGGTATTTCGTTCGAATACCCAGCCATCCAGCTCAAGCGCAAAGGCGCGCCGCTGGACATCGTCCTGCCTGCCGAAGGCCTGGGCTGGGAAATCGAAGCCACCGCCATTATCAAAGGCACGCCGAAGCTGGCGGCTGCCAGAAAACTCGCGGACTTCTCCGCCAGCTCCGAGGCGATGCAGTTATACAAAGCGAACTTCGCGGTCCTGGCGCAACCGGGCATCGCCGAACGCCTGCCGGAGCTGCCGACGGACTACGAACAACGCTTGATCCGCAATGATTTCGCCTGGGCGTCGGAGAACCGCGACAAGGTGCTGGCCGAGTGGCGCAAGCGTTACGACGGCAAGTCCGAGCCGGTCGCCAAATAAMSKRTAWAAGLLAACVLQAHANTELTVYTALEVEQLKAYKQAFEQQNPDIEIKWVRDSTGIVTAKLLAEKDRPQADAVWGLAGSSLAILKQQGLLDAYSPANLGQISTQYRDADTPPTWVGMDVWAAAICFNTVEAQKLGLPKPTRWEDLANPVYQGKIVMPNPASSGTGYLDVSAWLQTFGETKGWAYMDKLHANIGQYTHSGSKPCKLAAAGEFPIGISFEYPAIQLKRKGAPLDIVLPAEGLGWEIEATAIIKGTPKLAAARKLADFSASSEAMQLYKANFAVLAQPGIAERLPELPTDYEQRLIRNDFAWASENRDKVLAEWRKRYDGKSEPVAKPGPT0003725_3583DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003725-afuA|fbpA-K02012NANA
D1-35_04058828phnX_2COG0637Phosphonoacetaldehyde hydrolaseATGCACTACCAAACACCAACTCACCTGCAGGCAGCGATTCTCGATTGGGCCGGAACCGTGGTGGACTTCGGTTCGTTCGCGCCGACGCGGATTTTCGTCGAAGCCTTCGCCAGCTTCGACATCGAGATCAGCCTGGAGGAGGCCCGTGGCCCGATGGGCATGGGCAAATGGGACCACATCCGCACCTTGTGCAATCAACCGGGCGTGGCCGAACGGTTTGTGCGCCGCTTCGGGCGTGCACCGAGCGATGACGACGTGACGGCTATCTATGAGCGCTTCATGCCGCTGCAGATCGCCAAGGTCGCCGACCACTCGGACCTGATCCCCGGCGCTCTGGAGAGCATCGCCGCACTGCGCCAGCGCGGCCTCAGGATTGGCAGTTGCTCCGGCTATCCCCGACAGGTCATGGACAAAGTCGTCGAACTGGCCGCCACCAAGGGCTACAGCCCCGACCATGTGGTCGCCACCGACGACGTGCCCAAGGGCCGGCCAAGCCCTGCGCAGGCCTTGGCCAACGTGATCGCCCTGGGCCTGGACGATGTCGCCGCCTGCGTGAAAGTCGATGACACCGAGCCCGGCATCCTCGAAGGCCGCAGGGCAGGGATGTGGACCGTGGCATTGAGGTTTTCCGGCAATTTTCTCGGCCTCGACTGGGAGCAGTTCCAGGCTCTGTCGGCGCCGCAGTTGGCGGCCGAGCGCGAGCGCATCGACGGCTTGTTTGCCGCAAGCCGTCCGCATTACCTGATCGACACGATTGCCGAACTGCCCGCCGTGATCGACCACATCAACACGCAACTGGCCCGCGGCGTATTGCCGTCCCATTCCTGAMHYQTPTHLQAAILDWAGTVVDFGSFAPTRIFVEAFASFDIEISLEEARGPMGMGKWDHIRTLCNQPGVAERFVRRFGRAPSDDDVTAIYERFMPLQIAKVADHSDLIPGALESIAALRQRGLRIGSCSGYPRQVMDKVVELAATKGYSPDHVVATDDVPKGRPSPAQALANVIALGLDDVAACVKVDDTEPGILEGRRAGMWTVALRFSGNFLGLDWEQFQALSAPQLAAERERIDGLFAASRPHYLIDTIAELPAVIDHINTQLARGVLPSHSPGPT0002490_164DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-OTHER_ACID_METABOLISMP-SOLUBILISATION-PHOSPHONATE_DEGRADATION,PGPT0002490-phnX-K05306NANA
D1-35_040591716hypothetical proteinATGCAAAACACGATGATTCTCAAGCCGACCGCAGTGCAGGTACCTCAGGTGCCCGGTGACCTGGCAGACCGATTGTTCATACGCGGCGGTCAGTGGCTGCTGCTGGTGTTGCTGGCGCTGGCAGTATTGCTGCCATTGCTCGCCATGCTGTGGCGCGCCTTCAGCGGTGATGCCAGCCAGGGTGGCGGCGTGCAAGCGGCGCTGACGCTGCTGGCCAGTGCCAATTTCCGCTGGCTGCTGGGCAACAGCCTGACGGTTTCAATGACCGTCGCGCTTATCGTCGTGCCGCTGGCCTATGCGTTCGCCTACGCATTGCAGCGCACCTGCATCGTGGCAAAGCCGCTGTGGCGGGGCATTTCGCTGCTGCCGCTGCTGGCGCCGTCGATGCTGCCTGGCATTGCGCTGATCTATCTGTTCGGCAACCAGGGGCTGCTGCGCGATTTCAGCGCCGGCAACATCTATGGTTTCTGGGGCATTGTCCTGGGGCAGGCGATCTACACCTTTCCCCACGCCATGATGGTGCTGATGTCGGCGCTGGCGCTGGCGGATGCGCGGCTGTTCGACGCGGCCTCAAGCATGGGCGCCTCGCCATGGCGGGCATTTCGCACCATCACCTGGCCCGGCAGCCGGCAAGGGGTGTTCGCGGCTTTCTGCCTGGTGTTCACCTTGTGCATCACCGACTTCGGCGTGCCGGTCACGGTCGGAGGCGACTATCAGGTGCTGGCGCTGGAAGCCTACAAGTCTGTCGTTGGCCAGCAGCAGTTTGGTCGCGGCGCGCTGATCGGCATGATTCTGCTGCTGCCCGCATTGCTCAGTTTCGCCGTGGACATGTGGCTGCGCCGTACTCAACGCGAAGCCATGGGCGGCCGCGCCCAAGTGTATCACCCGCAACCGTCGCGGGGGCGGGATGCAGCCTTCCTGAGCATAACGGCACTGATCGGCGGCGTTCTGCTCGGCGTGTTCGGCATGGCAGTGTACGCATCGCTCGTGCAGTTCTGGCCGTACGACTTGTCCCTGTCCCTGGACAACTATGCCTTCTCCGAACTGCCCGGCGGTTGGCTGGCCTATCGCAACAGCCTGCTGCTGGCGGTGTGCAGTGCGGTGTTCGGCAGCCTGGCGATCTTCACCGGTGCCTACCTGATCGAGAAGACCCGGCAGAGCGCATTGACGCGCGCCCTGCGGCTGCTCAGCTTCGTCCCGATGGCTGTGCCCGGGCTGGTGCTGGGCCTGGGCTACGTGTTCTTTTTCAATCTGCCGGGCAATCCGCTCGGCAGCCTCTACGGCAGCCTGGCCTTGCTGGTGGTCTGTACGGTCGCGCACTTCCTGACCACCGCGCATATGACGGCCAGTACCGCCTTGCGCCAGCTCGACGATGAGTTCGAGGCCGCCGCCCTGGCGCTGAAAGTCCCGCTGGTTCGCCACTTCCTGCGGGTGACGCTGCCCATTTGCCTGCCGGCGTTGCTCGACATCGTTCGTTATCTGTTCGTGTCGGCGATGACCACGGTCTCAGCGGCGATTTTTCTCTACAGCCCTGACAGCGTCCTGGCTGCGGTGGCCGTGCTGAACATGGACGACGCCGGCAACGTCGGCGGGGCCGCCGCGATGGCGACTCTGATCCTGCTGACCTCGGCCAGCGTATCGCTGCTGCTGGCGATGCTGTCGCGCCGCCTGCTGCGCCGCTCCCAGGCCTGGCGCCAGCCGGCGCCGGGTCTTTGAMQNTMILKPTAVQVPQVPGDLADRLFIRGGQWLLLVLLALAVLLPLLAMLWRAFSGDASQGGGVQAALTLLASANFRWLLGNSLTVSMTVALIVVPLAYAFAYALQRTCIVAKPLWRGISLLPLLAPSMLPGIALIYLFGNQGLLRDFSAGNIYGFWGIVLGQAIYTFPHAMMVLMSALALADARLFDAASSMGASPWRAFRTITWPGSRQGVFAAFCLVFTLCITDFGVPVTVGGDYQVLALEAYKSVVGQQQFGRGALIGMILLLPALLSFAVDMWLRRTQREAMGGRAQVYHPQPSRGRDAAFLSITALIGGVLLGVFGMAVYASLVQFWPYDLSLSLDNYAFSELPGGWLAYRNSLLLAVCSAVFGSLAIFTGAYLIEKTRQSALTRALRLLSFVPMAVPGLVLGLGYVFFFNLPGNPLGSLYGSLALLVVCTVAHFLTTAHMTASTALRQLDDEFEAAALALKVPLVRHFLRVTLPICLPALLDIVRYLFVSAMTTVSAAIFLYSPDSVLAAVAVLNMDDAGNVGGAAAMATLILLTSASVSLLLAMLSRRLLRRSQAWRQPAPGLPGPT0003730_1651DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003730-afuB|fbpB-K02011NANA
D1-35_040601053cysA_2COG1118Sulfate/thiosulfate import ATP-binding protein CysAATGACAAGAACACCTTCCGTAGACCTGCAGATACGCGACATCCATAAAGGCTTCGGCGCCTTCAAGGCGTTGGATGGGGTATCGCTGGAAATCGCCGCCGGTGAGCTGGTGTGCCTGCTTGGGCCTTCCGGCTGCGGCAAGACCACCTTGTTGCGCTGCATAGCCGGCCTGGAACGGCAAGACCGCGGCACGATCATGATCGGCGCGCGGGATGTTTCCGCCCTGGCACCGCAGGCTCGCGACTACGGCATTCTGTTCCAGTCCTATGCGCTGTTTCCCAACCTGACCGTGGAGCAGAACATCGGCTACGGATTGGCGGGCAACCACCGCGAGACGATCCGCAGCCGGGTCGGCGAGATGCTGGAACTGGTCGGGCTGCGTGGCAGCGAGAAAAAATATCCCGGCCAGCTCTCCGGCGGCCAGCAGCAGCGGGTGGCGTTGGCTCGCGCCCTGGCTCCGGCGCCCTCGCTGTTACTGCTCGATGAACCGATGTCGGCCCTCGATGCCCGGGTGCGCGAGCACCTGTGCGGCGAGTTGCGTCAGCTGCAGAAACGCCTGGGCATTACCACGTTGATGGTCACCCACAACCAGGACGAGGCGATGCTGATGGCCGATCGCATCGCGGTGATCAATCAGGGCCGCGTCGAACAGTTCGCCAGTGCGCAACAGATCTACCGCGCGCCGGCGAGCGCCTTTGTGGCTGATTTCGTCGGCCAGGGCAACTGGCTGCCTTTCGAGCGCGGGCACGACGGACAGGTTCGCGTCGGCGGGCTCAGCCTCAGCGTGGAGGCCGCTGACGTGGGGCGCAGCGGTCGACTCTTCTGCCGTCCGGAAGCCATACGGATCAATCCGTCGACGCCCGAAGCCAACCTGTTCGATGCGCAGTTGCGCGAACTAACCTACCTCGGCAACCGTTGTCGCCTGAGCTTCGAGCTGGACGCATTGCCCGGCCACACCCTGCTCGCCGAGTTGGAGCCGCAGGCCATGCCTGGGCTGCCCCAGGCGCGGCTGAAAATCGCGCTGCCGGCCCACAGCCTACAGGTGTTCAATTGAMTRTPSVDLQIRDIHKGFGAFKALDGVSLEIAAGELVCLLGPSGCGKTTLLRCIAGLERQDRGTIMIGARDVSALAPQARDYGILFQSYALFPNLTVEQNIGYGLAGNHRETIRSRVGEMLELVGLRGSEKKYPGQLSGGQQQRVALARALAPAPSLLLLDEPMSALDARVREHLCGELRQLQKRLGITTLMVTHNQDEAMLMADRIAVINQGRVEQFASAQQIYRAPASAFVADFVGQGNWLPFERGHDGQVRVGGLSLSVEAADVGRSGRLFCRPEAIRINPSTPEANLFDAQLRELTYLGNRCRLSFELDALPGHTLLAELEPQAMPGLPQARLKIALPAHSLQVFNPGPT0003735_3287DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003735-afuC|fbpC-K02010NANA
D1-35_04061864cmpR_3COG0583HTH-type transcriptional activator CmpRATGCTCAGCGCCGAGCTGAAGTCTTTCCACATGGTCGCTCGCCTGGCCAGCGTCACCCAGGCAGCCAAGAAGCTCGGGCTCAGCCAGCCGACGGTGACCACGCAGATCCGCAGCCTGGAAGCCCAGTACGGCGTTGAATTGTTTTATCGCGGCGGGCGCCGCCTGACACTCAGTGACCAGGGCGCGCAGCTGTTGCCGATGGTGCAGAAACTGCTGCAGCAGGAGGCCGACATCGAGTTTTTCCTGCGCAACAGCGGCCAGGTGCAAGGCACGTTGCGCATCGGTGCCACCGCGCCGTATTACGTGCTGGATATCATCAAGGCTTTTCGCGAGCAGTTTGCGCTGTGCGAAGTGACCCTGGAAATCGGCAACTCACTGCAGGTCATCGAGGCGCTGGAGGAATATCGCGTGGACTTGGCCGCGTCCTCGCAACTGGTCGAGGATGCGCGCCTGACCCGGCTGGTGCTGGGGCACGATCCGCTGGTGCTGGCGGTACATCGCGAGCACCCATTGGCCAGCCACGACCGAGTCGCGCCGAGCGCCCTGGCCGGGCATTGCCTGCTGATGCGCGAAACCGGTTCCACCACCCGCGCGCTCACCACAACGCTGCTGCGCGAGGCCGGGGTGGCGACCGGGCCGCTGCTGGAGATCGGCAGTCGCGAGTCGATTCGCGAAGCGGTCCTGCGCAACATCGGCATCAGCATCATCGCCCGTCACGAGGTGCCGGAGAATCCACAGCTCAAGGTGGTCGAGCTGGAAGGCGCGCCGCTGATCGCCGAGTATCTGTACTGCCTCAAGGAGCGCCGCCAGGCCCGGCTGCCGTCGGCATTCCTCGGCCTGGCACGAGAGACCAGCGCATCCTGAMLSAELKSFHMVARLASVTQAAKKLGLSQPTVTTQIRSLEAQYGVELFYRGGRRLTLSDQGAQLLPMVQKLLQQEADIEFFLRNSGQVQGTLRIGATAPYYVLDIIKAFREQFALCEVTLEIGNSLQVIEALEEYRVDLAASSQLVEDARLTRLVLGHDPLVLAVHREHPLASHDRVAPSALAGHCLLMRETGSTTRALTTTLLREAGVATGPLLEIGSRESIREAVLRNIGISIIARHEVPENPQLKVVELEGAPLIAEYLYCLKERRQARLPSAFLGLARETSASPGPT0001160_1427DIRECT EFFECTBIO-FERTILIZATIONCARBON_DIOXID_FIXATIONCO2_FIXATION-RuBisCoCO2_FIXATION-RuBisCo_BIOSYNTHESIS_REGULATION,PGPT0001160-cbbR|cmpR|ndhR-K21703NANA
D1-35_04062852phnD1COG3221putative ABC transporter phosphite binding protein PhnD1ATGCTCAAGCGTACCCTGGCACTGGCCGTCGGTTTGACCCTGTCCCTGAGCTCCCTTCTGACGCAGGCGGCCGACACCTTGAAGGTCAGCGCGATCCCCGATGAAGCGCCGACCGAACTGCTGCGCAAGTTCAAGCCGCTGGGGGCGTACCTGGAGCAGAAAATCGGCATGAAAGTCGAGTTCGTACCGGTGAGCGATTACCCCGCCGTGGTCGAGGCGCTGGCCACCGACCGGATCGACCTGGCCTGGCTGGGCGGTTTCACCTTCGTGCAGGCCCGCCTGAAGACGGGTAACGCCATTCCGCTGGTGCAGCGCGAACAGGATGCCCAGTTCACCAGTAAATTCATCACCGCCGACCCTGCAGTCACATCCCTGGCCGACCTCAAGGGCAAAAGCTTTGCCTTCGGTTCGATCTCTTCCACCTCGGGCAGCCTGATGCCGCGTTATTTCATGCTCAAGGACGGCATCAAGCCGGAAACCTATTTCAGCCGCGTCGGCTACTCGGGCGCCCATGATGCGACGGCGGCCTGGGTCCAGGCGGGCAAGGTCGATGCCGGCGTGCTCAACGCCAGCGTCTGGGACAAACTGGTGGCGGCCGGCAAGGTCGACACTAGCAAGGTCAAGGTGTTCGCGACTACCCCGGCCTACTTCGATTACAACTGGACCGTGCGCGGCACGCTCGACCCGGCGCTGGCGGCGAAGATCAAGGCGGCGTTCCTGGACCTCGATCCGGCGAACCCGAAGGACAAGGAAATCCTTGATCTGCAGGCCGCCAGCCGCTTCATCGAGACCAAGCCCGAGAACTACAAAGGCATCGAAGAAGCCGCACGCGCCGCCGAACTGCTGAAATGAMLKRTLALAVGLTLSLSSLLTQAADTLKVSAIPDEAPTELLRKFKPLGAYLEQKIGMKVEFVPVSDYPAVVEALATDRIDLAWLGGFTFVQARLKTGNAIPLVQREQDAQFTSKFITADPAVTSLADLKGKSFAFGSISSTSGSLMPRYFMLKDGIKPETYFSRVGYSGAHDATAAWVQAGKVDAGVLNASVWDKLVAAGKVDTSKVKVFATTPAYFDYNWTVRGTLDPALAAKIKAAFLDLDPANPKDKEILDLQAASRFIETKPENYKGIEEAARAAELLKPGPT0002525_2741DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-OTHER_ACID_METABOLISMP-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002525-phnD-K02044NANA
D1-35_04063798btuD_10Vitamin B12 import ATP-binding protein BtuDATGACATTACGTCTGACCCGAGCCAGCGTCATCCACGCCAACGGTGCGCAGGCGCTGCGTGGCGTGGATCTGCACATTGGCGCGGGGGAACGGGTCGCCATCATCGGCCCGTCCGGCGCGGGCAAGTCGAGCCTGCTCAATGTGCTCGCAACCGCCCTGCGGCCGGGCGCTGGCGAGGTGCAGGTACTGGGCGAGCCAGTCTGGCAATTGTCCGCGCGCCGGCGGCAGCGTCTGCGCGCACGCATCGGCCTGGTCCACCAGGCGCCTCCCCTGCCGCCGCGCCTACGGGTGGTCACCGCAGTGCTGGCCGGCAAGCTCGGCCAGTGGAGCCTGGGCAAGAGCCTGCTGAACCTGCTGCACCCGCTGGACATTCCCGGGGCTCGGGCGGCGTTGGCCCGGCTGGACCTGGGCGACAAGCTGTTCGCGCAATGCCAGCAGTTGTCCGGCGGGCAGCTGCAACGTGTCGGCATTGCCCGCGTGTTGTACCAGGCGCCCGAGGTATTGCTTGCGGACGAGCCGGTATCGGCGATGGACCCGGTGTTGGCCGAGCACACACTTGCGGTGCTCTGCCAGCATGCCCGGGAGCACCGCGTGACCCTGGTCACCAGCCTGCACGCGGTGGAGCTGGCGCTGGCGCATTTTTCCCGGATCATCGGTCTGCGTGACGGACAGATTCTGTTCGACTTGCCGACCGAAGCGGTCGACCGCCAACTGCTCGACACGCTTTATGCCAACGAGCAATTGGAGTCCATGTCGAGCCCTCCACTCCCTACGAGCGTGCAGATTCCGCGATGCTGAMTLRLTRASVIHANGAQALRGVDLHIGAGERVAIIGPSGAGKSSLLNVLATALRPGAGEVQVLGEPVWQLSARRRQRLRARIGLVHQAPPLPPRLRVVTAVLAGKLGQWSLGKSLLNLLHPLDIPGARAALARLDLGDKLFAQCQQLSGGQLQRVGIARVLYQAPEVLLADEPVSAMDPVLAEHTLAVLCQHAREHRVTLVTSLHAVELALAHFSRIIGLRDGQILFDLPTEAVDRQLLDTLYANEQLESMSSPPLPTSVQIPRCPGPT0002520_1128DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-OTHER_ACID_METABOLISMP-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002520-phnC-K02041NANA
D1-35_04064828hypothetical proteinATGCTGAAGCGTGACGCCCGGGACCCCGCCAGCCGCCCTCGCCTGCTCCTGACCCTGTTGGCCCTGGCCCTGCTGTGGCCGGGCATTCGGTTCAGCGAGGTCGACCTCGGCGTGCTGCTGGCCAGCGACAGCCAGAGTGAGATGGGCCGGTTCGTCGCGGCGTTCTGGCCACCGGCCCATGACGAAACGTTTGTCGACCTGCTACTGCAAGCCACCCTGCAGACGTTGGCGATTGCCACCGCCGGCATGGCCCTGGCGCTGCTGGTGGCGGTCCCCGCGAGCCTGCTGGCCAGTCGCGCATTGTCGTTGTCGGCCGCCTACCGCTCCGGCAGGCCTGGCAATCTCGGTCAATGGTTGCGTTGGCCAATACGCGGCCTGTTGATCTTCCTGCGCAGCGTGCCGGAAATCGTCTGGGCCTTGCTCTTCGTGCGCGCTGTCGGCCTGGGTCCGACGGCCGGGGTGCTGGCCATCGCCATCACGTACAGCGGCATGCTGGGCAAGGTCTATGCGGAAATCTTCGAATCGGTCGACCAGCGCCCGGCACACGCATTGATGCAGGCCGGCAGCGGCCGGCTCGCGGCGTTCTGCTACGGGATCCTGCCCAACGTCGCCGCCGAGCTGCTGTCGTACACCGTGTACCGCTGGGAATGCGCCATCCGCGCGTCAGTGGTGATGGGTTTTGTCGGCGCGGGTGGCCTGGGCCAGCAGATGGACCTGTCGTTGCGCATGTTCGCCGGCGGTGAAGTGGCCAGCCTGTTGCTGACCTTCCTGGTGCTGGTGATGTTCGCCGATCAGCTCAGCCGCCTGCTGCGCTGGAGACTGGCATGAMLKRDARDPASRPRLLLTLLALALLWPGIRFSEVDLGVLLASDSQSEMGRFVAAFWPPAHDETFVDLLLQATLQTLAIATAGMALALLVAVPASLLASRALSLSAAYRSGRPGNLGQWLRWPIRGLLIFLRSVPEIVWALLFVRAVGLGPTAGVLAIAITYSGMLGKVYAEIFESVDQRPAHALMQAGSGRLAAFCYGILPNVAAELLSYTVYRWECAIRASVVMGFVGAGGLGQQMDLSLRMFAGGEVASLLLTFLVLVMFADQLSRLLRWRLAPGPT0002530_1674DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-OTHER_ACID_METABOLISMP-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002530-phnE-K02042NANA
D1-35_04065768hypothetical proteinATGAGTCGGCTGTTCAACGCGCTATTGCTGCTGTGCATCGGTGCGGCTGTCGTCGCTTCGTTCGGCTATCTGGGCATCGACCTGGGCGCGTTGGGAGACAGTGCGAGCCTCAAGCAGATGACCGCTTATGCGCAACGCTTCCTCAGTCCGGACCTGAGCCCGGCGTACCTCAAGGCGATCGGCCACGGCGCGCTGGAAACCATCGCCATGTCCGCCATCGGCACGTTGCTCGCGGCGGTGTTGGGGCTGGCACTGGCACTGCCGGCCGCCGGGCGCCTTGGCTGGCCGTTGCAAAGCGCCTCGCGCCTGGTGTTGAACGCGTTGCGCGCGGTTCCGGAACTGGTGTGGGCGGCGCTGATGGTGTTTGCCGCCGGGCTCGGCCCCAATGCCGGTACGCTGGCGCTGACCCTGCACACCATCGGCGTGCTCGGCCGGCTATTTGCCGAGGCGCTGGAAAACACCCCCTCGCAACCCGCCGATGCGATCCGTTTGCAAGGTGGCAGCGCGCTCGCGGCTTTCTGCTACGGCACCCTGCCCAACCTGATGCCGCAGCTCCTCGCCTACACCCTCTACCGCTGGGAAAACAATATCCGCATGGCCAGTGTGCTGGGCTTCGTCGGCGCCGGCGGCCTGGGCCAGATGCTCTATGTCAGCCTCAGCCTGTTCCAGGAAGCCCAAGGCAGCACGGTGATCCTGGCCATGCTGTTGCTGGTGTTCATTGTCGATACCCTGAGCAGTTGGAGCCGCCAGCGCTGGGTCAAGGCCTGAMSRLFNALLLLCIGAAVVASFGYLGIDLGALGDSASLKQMTAYAQRFLSPDLSPAYLKAIGHGALETIAMSAIGTLLAAVLGLALALPAAGRLGWPLQSASRLVLNALRAVPELVWAALMVFAAGLGPNAGTLALTLHTIGVLGRLFAEALENTPSQPADAIRLQGGSALAAFCYGTLPNLMPQLLAYTLYRWENNIRMASVLGFVGAGGLGQMLYVSLSLFQEAQGSTVILAMLLLVFIVDTLSSWSRQRWVKAPGPT0002530_3122DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-OTHER_ACID_METABOLISMP-SOLUBILISATION-PHOSPHONATE_TRANSPORT,PGPT0002530-phnE-K02042NANA
D1-35_040661242nicP_4Porin-like protein NicPATGTACCGTTTCATCGCTAATCACTTCAACCGTAAACCCGTGGGCACTTTGCTCGGCCTCGGTCTGATGAGCGCGTCGAGTGCTCACGCCGATTTCATCAGCGACAGCAAAGCCAGCCTGGAAGCCCGCAACTTCTATTTCAACCGCGATTTTCGGCAGGAGGGCGCGCGGGACAAGGCCGAGGAGTGGACGCAAGGCTTTCTGTTGCGCATCGAGTCGGGCTACACCGCCGGGACCTTGGGTTTCGGGCTGGATGCGTTGGCCATGGCCGGTTTCAAACTGGATTCGGGCGGCGGCACGGCAGGCACCAATTTGCTGCCGGCAGACTCGTCCGGGGGTTCCCAGGACCGCTACGGCGAACTTGGCCTGACCGCGAAGGCACGCTTGTCCAACAGCACCCTGAAAGTGGGCACCCTGCAAATCAAGGACCCGGTGGTCAATTCCAACGATACGCGCCTGCTCCCCGGGACCTTCAAGGGCGGGCTGTTGAGCGTGCAGGAAGTCGACCGCCTGAAGCTGACCGCCGGGCAGCTTACACAGATCAATTTCGTCGATTCCACCCACTATCAGGACATGACGGCCAACCGCATTGGAGGCATCAGCGACCGCTTCCAGTTCGCCGGAGCGGACTACCAGTTCCTGCCGAATCTCACGGCGCAATACCGCTACGGCAAACTGGAGGACATCTACCAACAGAACTACCTGGGCTTGGTCCATAGCCTGGACCTGGGCGCGGGCCAATCATTGAAAAGCGACGTGCGTTATGCCCGCAGCACCGAAGACGGCAGCTTCCGCGCTATCGACAACCAGGCGTTCGGCGCGATGTTCACCTATAGCCTCGATGGGCACGCGCTGGGCCTGGGTTACCAACGCATGAGCGGCGACGACCCATTTCCCTACATCTCGCGCAGCGATCCGTATCTGGTCAACTTCGTCCAGATCGGTGATTTTGCCAATGTCGACGAGCGCTCCTGGCAGGCCCGTTACGACTACAACTTTGCCGGCCTCGGCGTGCCGGGATTGACGTTCATGACTCGCTACATCCGTGGCGACAACGTGCAACGCAGCGCGCCGGGTGAAGGCAAGGAATGGGAGCGCAACAGCGATATCGCCTACGTGATCCAGGACGGCACGTTGAAGGGGCTGGGGCTCAAATGGCGCAATGCCTCGGTGCGCTCGAACTTTGGCAATGACCTGGACGAAAATCGCCTGATCGTCAGTTACACGATGGCGCTGTGGTGAMYRFIANHFNRKPVGTLLGLGLMSASSAHADFISDSKASLEARNFYFNRDFRQEGARDKAEEWTQGFLLRIESGYTAGTLGFGLDALAMAGFKLDSGGGTAGTNLLPADSSGGSQDRYGELGLTAKARLSNSTLKVGTLQIKDPVVNSNDTRLLPGTFKGGLLSVQEVDRLKLTAGQLTQINFVDSTHYQDMTANRIGGISDRFQFAGADYQFLPNLTAQYRYGKLEDIYQQNYLGLVHSLDLGAGQSLKSDVRYARSTEDGSFRAIDNQAFGAMFTYSLDGHALGLGYQRMSGDDPFPYISRSDPYLVNFVQIGDFANVDERSWQARYDYNFAGLGVPGLTFMTRYIRGDNVQRSAPGEGKEWERNSDIAYVIQDGTLKGLGLKWRNASVRSNFGNDLDENRLIVSYTMALWPGPT0005395_50DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_BENZOATE|DERIVATE_DEGRADATIONXENOBIOTIC_BENZOATE-DEGREDATION-BENZOATE_TRANSPORT,PGPT0005395-benP-K21758NANA
D1-35_04067804COG4336Putative hydro-lyaseATGCCGCCGTCCGCCCTGACATTCGAACAACTGCAGCAGTGTTCACCCCAGGCCCTGCGCCAGAACATCGCGGCCGGTCGCTACCACGGCCACACCAGCGGCCTGGGCCAGGGCCGGGTGCAAGCCAACATCGTGATCCTGCCGGGTGACTGGGCCGACGAATTCCTGCGCTACTGCACGCTCAACCGCCAGGCGTGTCCGGTGCTGGACGTGAGCGAACCGGGGGATCCGTTCCTGCGCAACCTCGGCGCGCCCATCGATATCCGCCACGAAGTACCGCGCTATCGGGTCTTTCGTCACGGCGAGTTGAGCGAAGAGCCGATGGACATCGAACACCTGTGGCAGGACGACATGGTGACCTTCGCCCTCGGCTGCTCGTTCTCGTTCGAGCAACCCTTGCTGGAGGCCGGTATACGCCTGAGGCACATTGACCTGGGGCGCAACGTTGCCATGTTCCGCACCAACATCGACACGCGCCCCACCGCGCGCCTGTCTGGCAAAATGGTCGTGAGCATGCGCCCGATGAAGGCCGCCGCGGCGATCCAGGCGATCCAGATCACCGGACGCATGCCCAGCGTCCATGGCGCCCCGGTCCACATCGGTGATCCGTCGCTGATCGGCATTGATTCCCTGGACAGGCCGGACTATGGCGACGCGGTGCCGGTGGAAGCCGACGAGGTCCCGGTGTTCTGGGCCTGTGGCGTGACGCCGCAATCGGTGGTGCAGGCTTCGCGACCGCCGCTGTGCATCACCCACGCACCGGGTTGTATGCTGGTGACCGACGTTTTGAACAGCGCGTTGTGAMPPSALTFEQLQQCSPQALRQNIAAGRYHGHTSGLGQGRVQANIVILPGDWADEFLRYCTLNRQACPVLDVSEPGDPFLRNLGAPIDIRHEVPRYRVFRHGELSEEPMDIEHLWQDDMVTFALGCSFSFEQPLLEAGIRLRHIDLGRNVAMFRTNIDTRPTARLSGKMVVSMRPMKAAAAIQAIQITGRMPSVHGAPVHIGDPSLIGIDSLDRPDYGDAVPVEADEVPVFWACGVTPQSVVQASRPPLCITHAPGCMLVTDVLNSALNANANANANA
D1-35_04068549hypothetical proteinATGAACAGCCCGCAGCGATCAATCGAACATTACATCCGCGCCAAGGACGGCAACCGCCCTCACCTGCTGGACCAGGCCTTCATCCAGGGCGCAGTCCTGAACATGGTGGTCCGCACCGGCTCCATCGCCTTCCCGGAGCATGTCGAAGGTCGTGGCGCGATGGGTGACGTGCTGGTGAGCCGGTTCAACCAGGCGTTCGAAAACGTCTACACGTTCTGCCTGGGCAGCCCTCCTCACGCCAACGTGCGCACCTACGAGTGCAAATGGTTGGTCGCGATGTCGGACAAACACAACGGTGAGGTCAGGGTCGGTTGTGGCCGCTACGACTGGCGATTCAGCGCCGAGTCCGGGCTGTCCGAGGGGCTCACGATAACCATCGAACACATGAAGACCCTGCCGCCAGCCGAGCTTACGGAAGTCATGGCCTGGGTGTCGGGTCTGGAATATCCGTGGTGCGACGCCGCTGCGGTCCTCGGCGAGGTGCCGGATTCAAGGGCGCTTGAAGACGTGGTCCAATACCTCTCGTCCAGGAATTGCAGGACCGGTTGAMNSPQRSIEHYIRAKDGNRPHLLDQAFIQGAVLNMVVRTGSIAFPEHVEGRGAMGDVLVSRFNQAFENVYTFCLGSPPHANVRTYECKWLVAMSDKHNGEVRVGCGRYDWRFSAESGLSEGLTITIEHMKTLPPAELTEVMAWVSGLEYPWCDAAAVLGEVPDSRALEDVVQYLSSRNCRTGNANANANANA
D1-35_04069942gltR_3COG0583HTH-type transcriptional regulator GltRATGAATATCAAGTTTCTGGAAACCTTCGTCTGGGTCGCCCGCCTGAAGAGCTTTCGCCTCACGGCGGAAAAGCTGTTCACCACCCAGGCGTCGATTTCCAGCCGGATTGCAGCTCTGGAAGACGAGTTGGGCGTGCGTCTGTTCGTGCGTGATTCCAAGGGCGTGTCATTGACTTCCGAAGGCCAGCGGGTGCTGGAGTACGCCGAGCGCATCATGGACACCATGCACAGCATGAAAGCCGTGATCAAGGACCCGCGCCAGGTACGCGGGCGGATTCGCATCGGCGCGATGGACACGGTGATCCATACCTGGCTCAGCCCGTTGGTCACGCGCCTGATGGAATGCTACCCGGCGCTGGAAATCGAATTGTCGGCCGACACCGCGAGCAACCTGTGCACGCAACTGGAGAAAGGCTACCAGGACATCATTTTCCAGACCGACATCCTGCGCCTCGACAGCGTGCGCAATGCGCTCCTGACGCGTTATCCGATGCACTGGGTGGTGCGCAGCGGCTCATCCTTTGACCGCCACTACGCATCGCTGGACGAACTGTCCCAGGAGCGCATCGTGACCTTCTCGCGCAACTCCCGGCCCCACCAGGACCTCCTGAACATGCTGCACTCGGCCAATATCGTCTCGCCGCGGATCAATTGCGTGAACTCCGCCTCGGCGATCACCCGCCTGGTTCGTGACGGCTTTGGTATCGGCGCCATGCCGGCGGCGCTGGTGGTAGGCGAATTGAACCAGGGCAGCTTGACGCTGGTGGACGGCGTGCCGTTGCCGTCGGTGATGGACATCGTCGCCAGTTGGCGGACCGGCGCCGGCATGGAGCGGGTCGAAGACATCGTCAGCCTGACGCGGGAAGTGGTGGACGACTACGTGGGGCAACTGCCGGCGCCGTACCGGTTGGTGGCAAGCGAGGCCCCGGCGAACTGTCAGTGAMNIKFLETFVWVARLKSFRLTAEKLFTTQASISSRIAALEDELGVRLFVRDSKGVSLTSEGQRVLEYAERIMDTMHSMKAVIKDPRQVRGRIRIGAMDTVIHTWLSPLVTRLMECYPALEIELSADTASNLCTQLEKGYQDIIFQTDILRLDSVRNALLTRYPMHWVVRSGSSFDRHYASLDELSQERIVTFSRNSRPHQDLLNMLHSANIVSPRINCVNSASAITRLVRDGFGIGAMPAALVVGELNQGSLTLVDGVPLPSVMDIVASWRTGAGMERVEDIVSLTREVVDDYVGQLPAPYRLVASEAPANCQNANANANANA
D1-35_04070708hypothetical proteinATGTTTGCTCGCTGGTTCCCCGCTGCTATCAATACCCGCCCCACCGAATGGAGTCGCGCCGCCATCGGCATGGCCCTTGGAACAATGTTCAGTGTCTGGCTCTGTGGCCAGGTATTCGGTCTTGAAGTGGCGCAACACCTGATCGGCCCGCTCGGCGCCTCGGCCGTGCTGTTGTTTGCGGTGTCATCGGGTGCCCTGGCCCAGCCCTGGTCGATCTTCGGTGGTTATCTGTGCGCGTCGGTCGTGGCGTTGCTGGTCGCCCATGTGCTCGGCCGCACGCTGGGTAGCGCATGCCTGGCGGCCGGCATGGCGCTGGTGCTGATGTGCTGGCTGCGTTGCCTGCATCCACCGGCCGGCGCCCTGGCGGCGACGCTGGTGCTGGCGGACGCATCCATCGTCGCCCTCGACTGGCAGGCGCTTGGCGCCGCCATGCTGGCCGGCTCCGGCCTGCTCGTCTTCGCGCTGGCCTACAACAACTTCACGCGGGTGCGCTATCCCAAGCGAGCCAGCGAGCCGGCAGCGGTGATTCCCGCCGACCATCCCCCCATCGATCGCCAGGCGATCACCGCCGAAGACTTGAAACTTGCGCTTGAGGAAATGGAAGCATTCTTCGACGTAACCCCCGAAGATCTCGAACAATTGATCCACGCAAGCGAGCGGCATGCCAAGCGTCGCAGCATCACGGAGGTGCTGTCGGGTCGCGGCTGAMFARWFPAAINTRPTEWSRAAIGMALGTMFSVWLCGQVFGLEVAQHLIGPLGASAVLLFAVSSGALAQPWSIFGGYLCASVVALLVAHVLGRTLGSACLAAGMALVLMCWLRCLHPPAGALAATLVLADASIVALDWQALGAAMLAGSGLLVFALAYNNFTRVRYPKRASEPAAVIPADHPPIDRQAITAEDLKLALEEMEAFFDVTPEDLEQLIHASERHAKRRSITEVLSGRGNANANANANA
D1-35_040711107menB_21,4-dihydroxy-2-naphthoyl-CoA synthaseATGACAGTTCAGGTTTCATCCCAAGCTGCGGGCAGCATCGAAACCGCGCCCTACGAGGTGTTGGTCGACGTTCGCAACCACATCGGCCACCTGACCCTGAACCGCCCCGCCGGCCTGAATGCCCTGACCCTGGGCATGGTGCGCAGCTTGCAGCAGCAACTCGATAGCTGGGCCACCGATTCGCAGATCCGCGCCGTTGTCTTGCGCGGTGCCGGCGACAAGGCGTTTTGTGCGGGCGGCGATATCCGCTCGCTGTACGACAGCCACAAGCAGGGCGACACCCTGCACGAAGACTTCTTCGTCGAGGAATATGCACTCGACCTGACCATCCACCATTACCGCAAACCGATCCTCGCCTTGATGGACGGCTTCGTGCTGGGCGGCGGCATGGGTCTGGTGCAAGGCGCCGATCTGCGGGTGGTGACCGAGCGTAGCCGACTGGGCATGCCCGAGGTCGGCATTGGCTATTTCCCGGATGTCGGCGGCAGCTATTTCCTGCCGCGCATTCCCGGTGAACTGGGTATCTACCTGGGCGTCAGCGGGGTGCAGATCCGCGCTGCCGACGCGCTGTACTGCGGGCTGGCCGACTGGTATCTCGACAGCCAGAAAATCACCCAGCTCGATGAACGTCTCGACCGCCTGGACTGGCGCGATTCACCGCTCAAGGACCTGCAAAGCCTGCTGGCGAAAATGGCGGTCCAACAGTTGCCTGCCCCGCCCCTGGCCGACTTGCGGCCGGTGATCGATCATTTCTTCGCCCTGCCGGATGTACCAAGCATGGTCGAGCAGTTGCGCCAGGTCACGGTCGCCAACAGCCACGAATGGGCGCTGAAGACCGCCGAGCTGCTGGAAACCCGCTCACCCCTGGCGATGGCGGTGACCCTCGAAATGCTGCGACGCGGCCGGCACCTGAGCCTGGAAGACTGTTTTGCCCTGGAGCTGCACCTGGACCGGCAATGGTTCACGCGCGGCGACCTGATCGAAGGCGTACGTGCCCTGCTGATCGATAAAGACAAGAACCCACGCTGGAACCCACCGACCCTGGAGGCGCTGGACGCCGACCATGTGGCGAGTTTTTTCGACGGCTTCGACTACCACGGGAACTGAMTVQVSSQAAGSIETAPYEVLVDVRNHIGHLTLNRPAGLNALTLGMVRSLQQQLDSWATDSQIRAVVLRGAGDKAFCAGGDIRSLYDSHKQGDTLHEDFFVEEYALDLTIHHYRKPILALMDGFVLGGGMGLVQGADLRVVTERSRLGMPEVGIGYFPDVGGSYFLPRIPGELGIYLGVSGVQIRAADALYCGLADWYLDSQKITQLDERLDRLDWRDSPLKDLQSLLAKMAVQQLPAPPLADLRPVIDHFFALPDVPSMVEQLRQVTVANSHEWALKTAELLETRSPLAMAVTLEMLRRGRHLSLEDCFALELHLDRQWFTRGDLIEGVRALLIDKDKNPRWNPPTLEALDADHVASFFDGFDYHGNPGPT0001860_827DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0001860-paaF|echA-K01692NANA
D1-35_040721152mmgC_3COG1960Acyl-CoA dehydrogenaseATGCACGACCTTGAGCTGACCGAGGAACAAGTGATGATCCGCGACATGGCCCGTGATTTCGCCCGCGGTGAAATCGCGCCCCACGCCCAGGCCTGGGAAAAAGCCGGCTGGATCGACGATGGGCTGGTGGCAAAAATGGGCGAGCTGGGCCTGCTGGGCATGGTGGTGCCCGAGGAATGGGGCGGTACCTATGTCGACTACGTGGCCTATGCCCTGGCGGTGGAGGAAATCTCGGCAGGTGACGGTGCTACTGGAGCACTGATGAGCATCCACAACTCCGTAGGTTGCGGGCCGGTGCTGAATTTCGGCAGCGATGAGCAGAAACAGACCTGGCTGGCGGATCTCGCCAGCGGCCAGGCCATCGGCTGCTTCTGCCTGACCGAACCACAGGCCGGCTCCGAGGCGCACAACCTGCGTACGCGGGCGGAACTGAAAGATGGTCAATGGGTAATCAACGGCGCGAAGCAGTTCGTCAGCAATGGCAAGCGCGCCAAGCTGGCGATCGTGTTTGCCGTGACGGATGCGGACCTTGGCAAAAAAGGCATTTCGGCGTTCCTGGTGCCCACCGACACGCCCGGTTTCATCGTTGACCGCACCGAACACAAGATGGGCATTCGTGCCTCGGACACCTGTGCCGTCACGCTGAGCAACTGCACCATTCCTGAAGCCAACCTGCTGGGCGCACGGGGCAAGGGCCTGGCCATCGCCCTGTCCAACCTCGAAGGCGGGCGCATCGGCATCGCCGCCCAGGCCCTGGGCATCGCCCGTGCGGCATTCGAAGCGGCCCTGGCCTATTCCCGGGATCGGGTGCAGTTCGACAAACCGATCATCGAACACCAGAGCATCGCCAATCTGCTGGCCGACATGCACACCCGCCTGAACGCCGCTCGCCTGCTGATCCTGCATGCCGCGCGGCTGCGCAGCGCCGGCAAGCCATGCCTGTCGGAAGCATCGCAAGCCAAGCTGTTCGCCTCGGAAATGGCCGAGAAGGTCTGCTCCTCGGCGATTCAGATCCATGGCGGCTATGGCTATCTTGAGGATTACCCGGTGGAGCGCTATTACCGCGACGCGCGGATCACCCAGATCTACGAAGGGTCGAGCGAGATTCAGCGGATGGTGATTGCTCGGGAGCTCAGGCACTACCTGGTGTAAMHDLELTEEQVMIRDMARDFARGEIAPHAQAWEKAGWIDDGLVAKMGELGLLGMVVPEEWGGTYVDYVAYALAVEEISAGDGATGALMSIHNSVGCGPVLNFGSDEQKQTWLADLASGQAIGCFCLTEPQAGSEAHNLRTRAELKDGQWVINGAKQFVSNGKRAKLAIVFAVTDADLGKKGISAFLVPTDTPGFIVDRTEHKMGIRASDTCAVTLSNCTIPEANLLGARGKGLAIALSNLEGGRIGIAAQALGIARAAFEAALAYSRDRVQFDKPIIEHQSIANLLADMHTRLNAARLLILHAARLRSAGKPCLSEASQAKLFASEMAEKVCSSAIQIHGGYGYLEDYPVERYYRDARITQIYEGSSEIQRMVIARELRHYLVPGPT0002285_885DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0002285-bcd-K00248NANA
D1-35_04073774echA8COG1024putative enoyl-CoA hydratase echA8ATGAGCTACGAAACGATTTTATTGGAGATCAAGGACCGTGTTGGCCTGATCACTCTCAACCGTCCCCAGGCGCTGAACGCCCTGAATGCGCAGATCGTCAGCGAGCTGAACCAGGCACTGGATCGCCTGGAGGCGGATCCGAAGATCGGCTGCATCGTCCTGACCGGCTCGAAAAAAGCCTTTGCCGCCGGCGCCGATATCAAGGAGATGGCCGAACTGACCTATCCGCAGATCTACCTGGACGATCTGTTCAGCGACAGCGACCGGGTTGCCAATCGCCGCAAGCCGATCATCGCGGCGGTGAACGGTTTTGCCTTGGGCGGCGGCTGCGAACTGGCCCTGATGTGCGACTTCATCCTGGCCGGTGACAACGCCAGGTTCGGCCAGCCGGAAATCAATCTCGGCGTGCTGCCGGGCATGGGCGGCACCCAACGCCTGACCCGTGCGGTGGGCAAGGCCAAGGCCATGGAAATGTGCCTGACCGGACGTTTCATCGATGCGGTGGAAGCCGAGCGTTGCGGCATCGTGGCGCGCATCGTTCCGGCTGACGAGTTGCTGGACGAAGCCCTCAAAACCGCGGCCTTGATCGCCTCCAAATCGGTGCCCATCAGCATGATGATCAAGGAGAGCGTCAACCGAGCCTTTGAAGTCAGCCTGTCCGAGGGTGTGCGTTTTGAACGCCGGGTATTCCACGCGGCGTTCGCCACGCTGGATCAGAAAGAAGGCATGGCGGCGTTCGTGGCCAAACGCGCGGCGGAGTTTCAAGACAAGTAAMSYETILLEIKDRVGLITLNRPQALNALNAQIVSELNQALDRLEADPKIGCIVLTGSKKAFAAGADIKEMAELTYPQIYLDDLFSDSDRVANRRKPIIAAVNGFALGGGCELALMCDFILAGDNARFGQPEINLGVLPGMGGTQRLTRAVGKAKAMEMCLTGRFIDAVEAERCGIVARIVPADELLDEALKTAALIASKSVPISMMIKESVNRAFEVSLSEGVRFERRVFHAAFATLDQKEGMAAFVAKRAAEFQDKPGPT0001860_5800DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0001860-paaF|echA-K01692NANA
D1-35_040741128mmgC_4COG1960Acyl-CoA dehydrogenaseATGCTTGCGACTGAAGAACAGACCCAGATCCGCGACATGGCCCGGCAATTCGCCCAGGAGCGCCTGAAGCCGTTCGCCGCCGAATGGGACCGTGAGCACCGCTTCCCCAAGGAGGCCATCGCTGAAATGGCCGAACTGGGCTTTTTCGGCATGCTGGTGCCGGAGCAGTGGGGCGGCTGTGACACCGGTTACCTGGCCTATGCGATGACCCTGGAGGAAATCGCTGCCGGCGACGGTGCCTGCTCCACCATCATGAGCGTGCACAACTCGGTGGGCTGCGTGCCGATCCTCAAGTTCGGCACCGACGAGCAAAAGGCCCGTTTCCTCACGCCGCTGGCCAGTGGCGCGATGCTCGGCGCTTTTGCCCTGACCGAGCCCCAGGCTGGCTCCGACGCCAGCAGCCTGAAGATGCGGGCGCGGCTGGAGGGCGATCATTACGTGCTCAACGGGTGCAAACAGTTCATCACGTCCGGGCAGAACGCCGGGGTGGTGATCGTGTTTGCCGTCACCGATCCGAGCGCCGGCAAGCGTGGCATCAGTGCGTTCATCGTGCCCACCGATTCGCCGGGCTACAGCGTCGCGCGGGTCGAGGACAAACTCGGCCAGCATGCTTCCGATACCTGCCAGATCCTTTTCGAGGATGTGAAGGTGCCGGTGGCCAATCGTCTCGGTGAGGAGGGTGACGGCTACAGGATCGCCCTGGCGAACCTCGAAGGCGGGCGAGTCGGCATCGCGGCGCAGTCGGTGGGCATGGCCCGCGCGGCGTTCGAAGCCGCTCGCGACTATGCCCGTGAACGGCAGAGCTTCGGCAAGCCGATCATCGAGCATCAGGCCGTGGCGTTCCGCCTGGCCGACATGGCGACCCAGATCGCCGTGGCGCGGCAGATGGTGCACTACGCCGCCGCGCTGCGCGATGCCGGCCAGCCGGCGCTGGTAGAAGCGTCCATGGCCAAGCTGTTCGCCTCGGAAATGGCCGAGAAGGTCTGTTCCATGGCCTTGCAAACCCTCGGTGGCTACGGTTACCTCAACGATTTCCCGCTGGAGCGCATCTACCGCGACGTGCGGGTCTGTCAGATCTACGAAGGCACCAGCGACATTCAGCGCATGGTCATTTCGCGCAACCTTTGAMLATEEQTQIRDMARQFAQERLKPFAAEWDREHRFPKEAIAEMAELGFFGMLVPEQWGGCDTGYLAYAMTLEEIAAGDGACSTIMSVHNSVGCVPILKFGTDEQKARFLTPLASGAMLGAFALTEPQAGSDASSLKMRARLEGDHYVLNGCKQFITSGQNAGVVIVFAVTDPSAGKRGISAFIVPTDSPGYSVARVEDKLGQHASDTCQILFEDVKVPVANRLGEEGDGYRIALANLEGGRVGIAAQSVGMARAAFEAARDYARERQSFGKPIIEHQAVAFRLADMATQIAVARQMVHYAAALRDAGQPALVEASMAKLFASEMAEKVCSMALQTLGGYGYLNDFPLERIYRDVRVCQIYEGTSDIQRMVISRNLPGPT0002285_1171DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0002285-bcd-K00248NANA
D1-35_040751188thlA_2COG0183Acetyl-CoA acetyltransferaseATGTCCAACGATCCGATTGTCATTGTCAGCGCCGTCCGCACCCCGATGGGCGGCTTCCAGGGCGAACTGAAAAGCCTCAGCGCGCCGCAGCTGGGTTCCGCCGCCATCAAGGCCGCCGTGGAGCGGGCCGGCATTTCGCCACAGACGGTTGAAGAAGTGCTGTTCGGTTGCGTGCTTGCCGCAGGCCAGGGCCAGGCACCGGCACGCCAGGCGGCGCTGGGCGCCGGGCTCGACAAATCGACCCGCTGCACCACGCTCAACAAGATGTGCGGTTCAGGCATGGAAGCGGCAATCCTCGCCCACGACATGCTCGTCGCCGGCAGCGCCGAGGTGGTGATGGCTGGCGGAATGGAAAGCATGTCCAACGCGCCGTACCTGCTCGATCGTGCCCGCAGCGGCTTGCGCATGGGCCATGGCAAGGTGCTTGACCATATGTTCCTCGACGGCCTCGAAGACGCCTACGACAAGGGCCGCCTGATGGGCACTTTTGCCGAAGACTGCGCCGAGACCAACGGCTACAGCCGTGAAGCTCAGGATGCCTTCGCCATCGCGTCCACCACCCGTGCCCAGCAGGCGATCAAGGATGGCAGCTTTGACGCCGAGATCGTGCCGGTGCAGGTCATGGTCGGCAAGGAACAGGTCACCATCCGTCACGACGAGCAGCCGCCCAAGGCGCGGATCGACAAGATCGCCACGCTCAAGCCGGCGTTCCGCGACGGTGGTACGGTGACGGCGGCCAACGCCAGCTCGATTTCCGATGGCGCCGCCGCCCTGGTGCTGATGCGCCAGAGCCAGGCGCAGCAGCGCGGTCTGAAACCGCTGGCGGTGATTCACGGCCACGCCGCGTTCGCCGACGCCCCGGGCCTGTTTCCCACGGCACCGATTGGTGCGGTGAAAAAACTGATGAGCAAGACCGGCTGGTCGCTGGACGAGGTCGATCTGTTCGAAGTCAACGAAGCTTTCGCCGTGGTCGGCCTGGTGACCATGGACAAGCTGGAAATTCCCCACGACAAGGTCAACGTCCACGGCGGCGCCTGTGCCCTTGGCCACCCGATCGGCGCATCCGGCGCGCGAATCCTCGTGACGCTGCTCTCGGCCCTGCGCCAGAAAGGCCTCAAGCGCGGCGTCGCGGCGATCTGCATCGGCGGCGGCGAAGCCACCGCCATGGCCGTCGAATGCCTGTACTGAMSNDPIVIVSAVRTPMGGFQGELKSLSAPQLGSAAIKAAVERAGISPQTVEEVLFGCVLAAGQGQAPARQAALGAGLDKSTRCTTLNKMCGSGMEAAILAHDMLVAGSAEVVMAGGMESMSNAPYLLDRARSGLRMGHGKVLDHMFLDGLEDAYDKGRLMGTFAEDCAETNGYSREAQDAFAIASTTRAQQAIKDGSFDAEIVPVQVMVGKEQVTIRHDEQPPKARIDKIATLKPAFRDGGTVTAANASSISDGAAALVLMRQSQAQQRGLKPLAVIHGHAAFADAPGLFPTAPIGAVKKLMSKTGWSLDEVDLFEVNEAFAVVGLVTMDKLEIPHDKVNVHGGACALGHPIGASGARILVTLLSALRQKGLKRGVAAICIGGGEATAMAVECLYPGPT0008320_6858DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626NANA
D1-35_04076762putative oxidoreductaseATGCAGATCGACAACAAGATTTTCCTCGTCAGCGGCGGTGCTTCCGGCCTCGGCGCGGCCACCGGCGAAATGCTCGTCAAGGCCGGCACCAAGGTGATGCTGGTCGACCTCAACGCCGATGCGGTGGCCGCCCAGGCGCAAAAGCTCGGTTGCCGGAGCGTGGTCGCCGACATCAGTAACGAAGCGGCCGCAGAAGCGGCAGTCAAGGCCACGGTGGATGCGTTCGGCGGCTTGAACGGTCTGGTCAATTGCGCCGGTATCGTGCGCGGCGAGAAGATCCTCGGCAAGAACGGCCCGCACGCACTCGAAAGCTTCAGCCAGGTGATCAACGTCAACCTGATCGGCAGCTTCAACCTGCTGCGCTTGGCTGCAGCGGCCATCGCCGAAACCGAGGCCAATGCCGACGGCGAACGCGGGGTGATCATCAATACCGCCTCGGTAGCAGCTTTCGACGGTCAGATCGGCCAGGCCGCCTACGCGGCGTCCAAGGGCGCGATTGCCAGCCTGACCCTGCCAGCCGCCCGTGAACTGGCGCGCTTCGGTATCCGCGTAATGACCATCGCGCCAGGGATCTTCGAAACCCCGATGATGGCCGGCATGACGCCGGAAGTACGTGACTCCCTGGCCGCCGGCGTGCCGTTCCCGCCGCGCCTGGGCAAACCCGCCGAGTACGCCGCGCTGGTCCGGCATATCATTGAAAACAGCATGCTCAACGGCGAGGTGATCCGTCTCGACGGCGCCTTGCGCATGGCCGCCAAATAGMQIDNKIFLVSGGASGLGAATGEMLVKAGTKVMLVDLNADAVAAQAQKLGCRSVVADISNEAAAEAAVKATVDAFGGLNGLVNCAGIVRGEKILGKNGPHALESFSQVINVNLIGSFNLLRLAAAAIAETEANADGERGVIINTASVAAFDGQIGQAAYAASKGAIASLTLPAARELARFGIRVMTIAPGIFETPMMAGMTPEVRDSLAAGVPFPPRLGKPAEYAALVRHIIENSMLNGEVIRLDGALRMAAKPGPT0002265_65DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ACETATE_UTILIZATION,PGPT0002265-acs-K01895NANA
D1-35_040771665acsA_2COG0365Acetyl-coenzyme A synthetaseATGCGCGATTATTCGTCCGCCACGTCGCAGTTCGATTACCTGCACACCGCCAATGCCGCTTTGCACGGTTCGCTCGAGGCGCTCAACGCCTGCGTGGAATGTTGCGACCGGCATGCCTTGCCGGGGCGCATTGCCTTGTTCTGGGAGGGGCGTGACGGCAGCGATGCGACGTGGACTTACCGTGGCCTGCAGGACAACGCGGCGCGTTTCGCCAACTTCCTGCGCGCCCAAGGTGTTGGCAAGGGTGACAAGGTCGCCGGCCTGCTGCCGCGCAATGCCGAACTGCTGATCGTGGTGCTCGCCACCTGGCGTATCGGCGCGGTCTACCAGCCCCTGTTCACCGCATTCGGACCCAAGGCCATCGAGCACCGCCTCGGCAGTTCCGGCGCGCGTGTGGTGGTCACCGACGCCAACAACCGGCCCAAGCTCAACGAAGTGCTCGGGTGCCCCACCATCGTTACGGTCGGCGGGGCGAAGGGCCAGGGCATCGTCCGCGGCGACTACAGTTTCTGGGCCGAACTGGCCAACCATTCCGACCAGTGCGAACCGCTGATGCTGACCGGCGAAGATCCGTTCCTGCTGATGTTCACCTCAGGCACCACCGGGCCGGCCAAGGCACTGTCGGTTCCGCTCAAGGCCATCGTCGCATTCCAGAGCTACATGCGTGACGCCGTGGACTTGCGCCCCGAAGACGCGTTCTGGAACGTCGCTGACCCGGGCTGGGCCTACGGCATCTATTTCGGCGTGACCGGGCCTCTGGCGCTTGGGCATCCGATCACTTTCTACGATGGCCCCTTCACGTTGGAAAGCACCTGCCGGGTGATCAACAAATACGGCATCAGCAACCTGGCGGGCTCACCAACGGCCTACCGTTTGCTGATCGCTGGCGGCGAGCAGTTCGCCCGCTCGATCCAGGGCAAGCTGCGCATCGTCAGCAGCGCCGGCGAGCCGCTGAACCCGGAAGTGATCCGCTGGTTTGCCGAGAACCTGAACGTGGTGATCCATGACCATTACGGCCAGACCGAGCTGGGCATGGTGCTGTGCAACCACCACGGCCTCGACCACCCGGTGCATTTGGGCGCGGCCGGTTTTGCCTCGCCGGGCCACCGCATCGTGGTGCTGGATGAAAATCAACGGGAGTTGGGGGTAGGGCAGCCAGGCATTCTTGCCGTCGATCGCAGCCAGTCGCCGATGTGCTGGTTCGCCGGTTACGAAGGCGGGCCGACCAAGGCGTTCGTCGGCGATTATTACTTGAGTGGCGATACCGTCGAATCCAACCCCGACGGCAGCATCAGCTTCGTCGGCCGCAGCGATGACGTGATCACCACGTCCGGCTATCGCGTTGGCCCGTTCGACGTGGAAAGCGCGCTGATCGAGCACCCGGCCGTGGTGGAAGCCGCGGTCATCGGCAAACCCGACCCTGAGCGCACCGAGCTGGTGAAAGCTTTTGTGGTGCTCAGCGCTCAGTACCGCGCAGCGCCGGAGCTGGCCGAAGAATTGCGCCAGCATGTGCGCAAGCGCCTGGCGGCCCATGCGTACCCCCGTGAAATCGAATTTGTCAGCGACTTGCCGAAGACCCCCAGCGGTAAGTTGCAGCGCTTTATCTTGCGCAACCAGGAGATCGCCAAGGCTCAAGAGGCCGTGGCGCAGAACGTTTCAGCTTGAMRDYSSATSQFDYLHTANAALHGSLEALNACVECCDRHALPGRIALFWEGRDGSDATWTYRGLQDNAARFANFLRAQGVGKGDKVAGLLPRNAELLIVVLATWRIGAVYQPLFTAFGPKAIEHRLGSSGARVVVTDANNRPKLNEVLGCPTIVTVGGAKGQGIVRGDYSFWAELANHSDQCEPLMLTGEDPFLLMFTSGTTGPAKALSVPLKAIVAFQSYMRDAVDLRPEDAFWNVADPGWAYGIYFGVTGPLALGHPITFYDGPFTLESTCRVINKYGISNLAGSPTAYRLLIAGGEQFARSIQGKLRIVSSAGEPLNPEVIRWFAENLNVVIHDHYGQTELGMVLCNHHGLDHPVHLGAAGFASPGHRIVVLDENQRELGVGQPGILAVDRSQSPMCWFAGYEGGPTKAFVGDYYLSGDTVESNPDGSISFVGRSDDVITTSGYRVGPFDVESALIEHPAVVEAAVIGKPDPERTELVKAFVVLSAQYRAAPELAEELRQHVRKRLAAHAYPREIEFVSDLPKTPSGKLQRFILRNQEIAKAQEAVAQNVSAPGPT0002265_6695DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ACETATE_UTILIZATION,PGPT0002265-acs-K01895NANA
D1-35_040781017putative HTH-type transcriptional regulatorATGTCGGAAAAAGACACCATCTCCATCCAGCTGGTGCGCGAGGCGCTGCTGCAAAGCTGCGCCCCTGGAGCCGCTACCGAAGAAGTCCTGAGCAAGGTCGGTATCGACCCTGCATGGCTCGACGAGCCCCAGGCGCGCGTGCCGGCCCACGCCTATGCGCGACTCTGGCGCCTGCTGGCAAGGCGGCTGGATGACGAGTTCTTCGGCATGGACCCGCGCAAGCTCAAGTCCGGCAGCCTGGCCTTCCTGTGCCAGTGCGCCATGGCCCAGCCGACGTTGGCGACCGGGTTGACGGCGGGTCTGGGTTTCCTCTCCTTGATGCTTGAACACCTGCCGGCGCAGTGGGTTCGCCAGCAAAGCCTGGCGGAAATCGTCCTGCTCGAAGACGACCAGGACCCGCGCCGGGCCTTTACCTATTTCACCTATTGGATGATCGTCCATGGCGTGGCCTGCTGGCTCGCCGGGCGGCGCATTCCAATCCTGTCCGTCGAGTTGCGTTGCCCGGCGCCGGATTTCTGCGATGACTACCGCGTGATGTTCTCGCAGAACCTGCGCTTCGACCGGCCCCGTACGCGGATGATCTTCTCCGCCGACTGCCTGGACCTGCCCATCCGCCGCAGTCCGGAGGAGCTCAAGCGCTTTCTGGCCCAGGCCCCGGCGAACATCCTGGTCAAATACCGCGACCCGCAAAGCCTCGCCAGCCGTATCCGCCATGATCTGCGCCAGCTGCCCGCCGAGCAGTGGCCGGAAACCGAGGCCCTGGCGCAACAACTCTGCGTTTCCGCATCGACCCTGCGCCGCCGCCTGGCGGATGAGGGCCAGACTTACCAGGGCCTGAAAGACAGTGTGCGCAAGGAGCTGGCGATCGCCTGGCTGGCCGAACCCTCCATCAGCTTCGTCGAGATCGCCGCGCGGCTGGGTTTTGCCGATGCCAGCTCGTTCTACAAGGCGTTTCGCAAGTGGTCCGGGTCCAATCCCGGGCACTATCGCAGCCTGATTCTCAACGAGGCTGACTGAMSEKDTISIQLVREALLQSCAPGAATEEVLSKVGIDPAWLDEPQARVPAHAYARLWRLLARRLDDEFFGMDPRKLKSGSLAFLCQCAMAQPTLATGLTAGLGFLSLMLEHLPAQWVRQQSLAEIVLLEDDQDPRRAFTYFTYWMIVHGVACWLAGRRIPILSVELRCPAPDFCDDYRVMFSQNLRFDRPRTRMIFSADCLDLPIRRSPEELKRFLAQAPANILVKYRDPQSLASRIRHDLRQLPAEQWPETEALAQQLCVSASTLRRRLADEGQTYQGLKDSVRKELAIAWLAEPSISFVEIAARLGFADASSFYKAFRKWSGSNPGHYRSLILNEADNANANANANA
D1-35_040791344pssACOG1502CDP-diacylglycerol--serine O-phosphatidyltransferaseATGCCGTCGCTTTTCAAACGCTCCCTGCTGCCCAAGCTGCGCAGCTTTCCACTCACCGCCGAGGCTGTGACCATCCTCGACGGCGCCGCCGAGTTTCGCCGTTGCCTGCTGGAGAAAATTGCCCAGGCGACCCAGCGCATCTACATCGTCGCGCTCTACTTGCAAGAGGACGAGGCCGGCCAGGAAATCCTTGATGCCTTGCATGCCGCCAAAGCCGCGCGCCCCGAGCTGGACATCGCCGTGGTGGTGGACTGGCTACGGGCCCAGCGCGGCCTGATCGGCGCCAAGAAGCAGCCGGGCAACTCGGCGTGGTACCAGCAGCAGACCCGCGTCCATGACAGCGAAGTGCCGATCTACGGCGTGCCGGTGCAGACTCGCGAGCTGTTCGGCGTGCTGCACTTGAAAGGATTTGTGATCGATGATTGTGTGCTCTACAGCGGCGCGAGCCTGAACAACGTCTACCTGCACAAGTTCGACAAATACCGCTACGACCGATATCACCTGCTACAGAACAGCGCGCTGGCCGACTCGATGCATCATCTGGTGCAACATGGCCTGATCGCATCCAGGGCGGTGCATCGCCTTGACCTGCCGAACCTGCCCAGCACCCGCAGCTTGCGCAAGGACATCGGCGACCTGCGCAGCCGCCTCAAATATGCAACCTATGACACTACCGCCGGCAGCCTCGATAAAGACGGCCTGTCGGTGAGCCCGCTGCTGGGCGTCGGCAAGAATAATCCGCTGAGCAAGGCGATCAGCGAGCTGATCGCCAGCAGCCGTCAGCAACTGACCATCTGCACGCCCTATTTCAACCTGCCGCTGGCCGTGACCCGGGACATCAACCGTGCCCTGGCGCGCGGGGTACGGATCGACATCATCGTCGGCGACAAGACCGCCAACGATTTTTATATCCCGCCCAGCGAGCCGTTCAAGATCATTGCGGCGTTGCCCTATCTGTACGAGATCAGCCTGCGCCGCTTCGCCAAGCGGCATCAGCGCTACATCGACAGCGGCCAGTTGAACCTGCGTTTGTGGCGCGACGGCGATAACACCTACCACCTCAAAGGCATGTGGGTCGACGAGCGCTACACCTTGCTCACCGGCAACAACCTCAACCCGCGGGCGTTTCGCCTGGATCTGGAAAACGCCCTGTTGCTCGACGATCCCAAAGGGGAGTTGCTGGGGCCGCGGCAGGCTGAGCTGGAGCGGATCTATCAACACACCCGGCGGATCGAACGCTACCTGGACCTGGAGACCCTGCCGGACTATCCCGCCGCGGTGAGCAAGTTCCTGAAACGGGTCAGCCGGGTGCGAATAGAGCGACTGCTTTACCGGATCCTGTGAMPSLFKRSLLPKLRSFPLTAEAVTILDGAAEFRRCLLEKIAQATQRIYIVALYLQEDEAGQEILDALHAAKAARPELDIAVVVDWLRAQRGLIGAKKQPGNSAWYQQQTRVHDSEVPIYGVPVQTRELFGVLHLKGFVIDDCVLYSGASLNNVYLHKFDKYRYDRYHLLQNSALADSMHHLVQHGLIASRAVHRLDLPNLPSTRSLRKDIGDLRSRLKYATYDTTAGSLDKDGLSVSPLLGVGKNNPLSKAISELIASSRQQLTICTPYFNLPLAVTRDINRALARGVRIDIIVGDKTANDFYIPPSEPFKIIAALPYLYEISLRRFAKRHQRYIDSGQLNLRLWRDGDNTYHLKGMWVDERYTLLTGNNLNPRAFRLDLENALLLDDPKGELLGPRQAELERIYQHTRRIERYLDLETLPDYPAAVSKFLKRVSRVRIERLLYRILPGPT0007690_420DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-PSS-RELATED_EXOPOLYSACCHARIDE_METABOLISMCE-EPS-PSS-RELATED_EXOPOLYSACCHARIDE_BIOSYNTHESIS,PGPT0007690-pssA-K00998NANA
D1-35_04080567hypothetical proteinATGAACGAAATCACTAGCAATGAAACACGCGACATCATCCTCGATGTCGCCGAAAAGTTGATCTACAAAAGTGGCATCGCCGCCACCGGCATGGACCTTTTGGTGAAAACCGCCGGCGTCTCGAGGAAAAGCATCTACCGCTACTTCGCCAACAAGGAGGACCTGGTTGTCGCCGCCCTCAAGCGCCGCGATGAACGCTGGATGCACTGGTTCTGCAGCGAAGTGGACAAGGCGCCGACGCCGCTCGCGCGGTTGCTGAACCTGTTTCCGGTGCTCAAGGGCTGGTTCGACAGCGAAGGTTTTCGCGGTTGCGCCTTCATCAACACCAGCGGCGAAACCGGCGACCCGCAGGACCCGGTCCGCCAGGTTGCAAAGATGCACAAACAGAAGCTGCTCGACTATGTAACCCGCCTGTGCAGCGATCAAGGCATCGAGCAACCGCAAGTGCTGGCGGGGAAGCTGCTTATCCTGATCGATGGGGCCATCACCGTTGCACTGGTCATGGGCGATCACAATGCAGCCGATCAGGCACAGCACGTTCTGAAAACCCTGCTGGCTATCGAATAAMNEITSNETRDIILDVAEKLIYKSGIAATGMDLLVKTAGVSRKSIYRYFANKEDLVVAALKRRDERWMHWFCSEVDKAPTPLARLLNLFPVLKGWFDSEGFRGCAFINTSGETGDPQDPVRQVAKMHKQKLLDYVTRLCSDQGIEQPQVLAGKLLILIDGAITVALVMGDHNAADQAQHVLKTLLAIENANANANANA
D1-35_04081480hypothetical proteinATGTCGTCCTCTGCTGAAGTTCGCCCGCCGCTGCCGCCGTTCACCCGTGAAACAGCGATCGAGAAAGTTCGCCTGGCCGAAGACGGCTGGAACTCTCGTGATCCGCAGAAGGTATCGTTGGCCTACACCCTCGACACCCAGTGGCGTAACCGCGCCGAGTTCGTCCATAGCCGGGAAGAAGCCAAGGCCTTCCTGGCCCGCAAATGGGCCAAGGAGCTGGACTACCGGCTGATCAAGGAACTCTGGGCGTTCACCGACAACCGCATCGCCGTGCGTTATGCCTATGAATGGCACGACGACTCAGGCAACTGGTTCCGCTCCTACGGCAACGAAAACTGGGAGTTCGACGAGAATGGCTTGATGTTCAATCGCTACGCCTGCATCAACGACCTGCCGATCAAGGAAAGCGAGCGTAAATTCCATTGGCCGCTGGGTCGTCGTCCGGATGATCATCCGGGGCTGTCCGAATTGGGGCTGTAAMSSSAEVRPPLPPFTRETAIEKVRLAEDGWNSRDPQKVSLAYTLDTQWRNRAEFVHSREEAKAFLARKWAKELDYRLIKELWAFTDNRIAVRYAYEWHDDSGNWFRSYGNENWEFDENGLMFNRYACINDLPIKESERKFHWPLGRRPDDHPGLSELGLNANANANANA
D1-35_040821071ysdCCOG1363Putative aminopeptidase YsdCATGCAACCCGATCCGTCCACCTTACCGCTGCTGGAAGAATTGCTGATGGCCCGTGGGCCCGGCGGGCAGGAGCATGAAGTGCGCGACATCTGCCTGCGGGAACTGCGGCCGCATTGCGACGAGACCCGGGTCGACCCGGCCGGTAATGTCATCGGCCTGATCAAGGGCACACACCCGAGCGGCGAGGCGAACCAGCCCATCCGGATCATGGCGCACCTGGACGAAATCGCCATGCTGGTCAAACGCATCGAGCCGGACGGCACATTGCGCGTGGTGGCCCTGGGCGGCGCCAATCCGATCAATTTCGGGGTGTGCCCAGTGGACATTCTCGGCGACCGGGATTTCATTCCCGGCGTACTGTCGTTCGGATCGATGCACAGCACCGGTGAAACCCATCAGGGCGCCGATGTGCTGTCGGGGAGCGTCAATTGGGGCGATGTCCATGTGATCACCCGGTGCTCCGGTGAGCAACTGCAAACGCACGGCGTGCGGCCCGGTACCCGGGTAGTGCTGAGTCAGCATTGGCGACGTCCGTTCCGGGTCGGCGATGCCATCGCGGCGCATTTCCTCGACGACCGCGCGCCGATGGTCGCGACATTGCAAGCCGCAAGGTTATTGGCTGAGCGCCGCGAAGAACTGGCAAACGACGTTTATCTCGTCTTCACCACGCAAGAGGAAGAGTCCAATGCCGGAGCGCTTTATGCCGCCAGCCATCTGCCGGGGGATGCCACGGTAGCGGTTGAGGTGGGCCCGATCATTTCCGAGTACGCTACCCGACTGAGCGTCGATCCGATCATCAACACTGGCGATAAAAACGGTTGCTACAACCGCGAGATCGTCGACCAGCTGTACCAGGCCGGCAAACGTCGCGGGTTGACGCCTCAGTTCGCGCTGCTGGTGGATTTTGCCAGTGACGCCAGCGCAATCATGAGCAGCGGCATGTCGGCCCAGGGTGGCTGCATCGCCATTCCGACTGAAAACACCCACGGTTACGAGCTGATTCTGGAAGGAAGTATCGAGGCCTGCGCGGTAACGTTGCTGGAATTCCTGCTGGATCGCGGCCACGACTGAMQPDPSTLPLLEELLMARGPGGQEHEVRDICLRELRPHCDETRVDPAGNVIGLIKGTHPSGEANQPIRIMAHLDEIAMLVKRIEPDGTLRVVALGGANPINFGVCPVDILGDRDFIPGVLSFGSMHSTGETHQGADVLSGSVNWGDVHVITRCSGEQLQTHGVRPGTRVVLSQHWRRPFRVGDAIAAHFLDDRAPMVATLQAARLLAERREELANDVYLVFTTQEEESNAGALYAASHLPGDATVAVEVGPIISEYATRLSVDPIINTGDKNGCYNREIVDQLYQAGKRRGLTPQFALLVDFASDASAIMSSGMSAQGGCIAIPTENTHGYELILEGSIEACAVTLLEFLLDRGHDNANANANANA
D1-35_04083402hypothetical proteinATGACCGCGTCGATGCCGATCCGTCCCCCCTGCCCGCCCGGCGTCTGTGATTGCGGGCGTGATGCGTTGCTGCAAACGCCAGGCAGCGATTTGCGCATCCTTTGCCTGAATCGCCAGGAAGAAAAACGCCTGCTTGAGCGACTGGAAAACATCCAGAGCCTGGACGAGCTTGAACGCTTGCAGCAGCGGCTGTATGAGAACCTCGGCGTACGGGTGACCATCGAGCCGGGTTACAACGAAGTGCGGACCATGCGCGGCATTGCTATCGAATTCCAGGAGCAGCCAGGCCTGTGCCGCAAGATCCGCCAGTCGATTCCGGCGGCGATCCGTCGGGGGTTGGAGAAACGCCCTGAAATCGCCTGGCGGCTGCTGGATGCCCACGACTTGTTTCGCGACGGCTGAMTASMPIRPPCPPGVCDCGRDALLQTPGSDLRILCLNRQEEKRLLERLENIQSLDELERLQQRLYENLGVRVTIEPGYNEVRTMRGIAIEFQEQPGLCRKIRQSIPAAIRRGLEKRPEIAWRLLDAHDLFRDGNANANANANA
D1-35_040842424fcuA_2Ferrichrome receptor FcuAATGCCCGCAGCAGTATCTTTACGTTTTCGTCCGGCCCTTGCTGGCTGGCGCCCGTTGCTGAACCTGAGCCTCATGCTGAGCCTGAGCTCCGGTGCGTTTTTCATCTCGCCCAGCCAGGCCGAGGAAAGCGCCCGGCGCAGCTATCAGGTTCCCGCCGGCAGCCTCGGCGCCGCGCTGACCCGGTTCGCCGGCCAGGCTGGCGTCAACCTCTCGGTGGACCCGGCCCTGGTGAGCGGTCGCAACAGTGCCGGGCTCGCTGGCGAGTTTGGCGTGGAGGAGGGATTTGCCCGGCTGCTGCAGGGTTCTGGCCTGCAGCTGCAGCCAGTAGGGGAACAGGCCTACATGCTCACTCCTGCGGCGCAAGGCAGCAGCCTGCAACTGGCGCCGACCTCGATTTTCGGCGCCACCGGCGCGACGCAAGGCGATCCCTACGCAGGGGGACAGGTGGCACGGCGTGGATCCCAGGGCTTGCTCGGCTCCCGTGACTTCATGGAAACGCCGTTCAGCATGACCACCTACACGGGGGAGACGGTCAAGAATCTGCAAGCCCGGACCCTCGGTGACCTGGTCGCCAGCGACCCCTCGGTGCGCGCCACCAACCCGGCGGGCGGGCGTTATGAGCAATTCACCATTCGTGGCTTGAGCCTGTTCAACAGTGACGTGGCCTACAACGGCCTTTATGGCGTGCTGCCGACTTATACAATCGACATGGAGATGGCCGATCGCGTCGACATCCTCAAGGGCCCGACCCAACTGATCAACGGGATCTCGCCACGAGGCAGCGTCGGCGGCGGGATCAACGTAGTGCCCAAGCGGGCCACCGACAAGCCGATCACGTCCCTGACCGGCAGCTATGCCTCCGACAGCCAGCCCGGCGCTGCCGTGGATGTCGGCCGCCGTTTTGGCGAGGACAACCAGTTTGGCGTGCGCTTCAACGGCGTCAAGCAGGCCGGCGATACCGACTGGGATCATCAGCGCGTGGATCGCCAGATGGCCGTGCTGGGCCTGGACTTTCGTGGCGAGCGCCTGCGTCTTTCTACCGATATAGGCCACACCGAGCGTGACACCGACGCACCGCAGGAGCGCGTCCAGGTCGGCGCCGCCGCGCCGGTACCGCATGCCAGCGATGTGCGACGCAATTACGCGCAGCATTGGAGCAAGGCGCGTACCGAGGACACCTTCGGCGCTGTGAACGGCGAATTCGACGTCAGCGATTCGGTCGTGCTCTACGGCGGTGTCGGGGCGCGTAAAAGCAACCACGACTTTCTGCGGCACAACGTGTCGGTCACTAATGCGGCCGGCGATTTCACCGTGTCGCCCCGCGACTTTACCCGGGACGAGAATGTGCGGACGGCCAATGCCGGGGTGCGCAACTGGTTCCAGACCGGCCCGGTGAGCCACGAGCTGAACCTGGCGGCCAGTTATTTCTACATGGATTTCGAGAACGGCGGCGCCCGTTATGCCAACGGGCGCAGCAACCTCTATGACCCGGTGCCGACACCGACGCCGAACACCCCCACACGGCCGGACCCGAAGGTCTACACCGAGAACCACTTCAGCGGCGTGGCGCTGTCCGACACCCTGGGGTTCTTCGATGACCGCCTGCTGCTGACCCTGGGCGCCCGCTGGCAGCGGGTGGAAGTTGACGACTGGTCCGATGGGATCAAGGGTCCCACCGCCTATGACGAGGAAAAAGTCTCGCCGTCGGGCGGCATCCTGTTCAAGGCCACCGACAAGCTGTCCCTCTATGCCAACTATATGGAAGGCTTGAGCCAGGGCAAGATCGCGCCGACGTCCTCGGACAACAGCGATGAAATCTTCCCGCCGTTCATCAGCCGCCAGGTCGAGGTCGGCGCCAAGTACGATGCCGGCGCGCTGGCCGTTACCGCCGCCGTGTTCCGGATCAAGCAACCGGCCTATGCCACCGACGCCACGACCAACGTCTTCGGGCCGAACGGCAAGCGCGAGAACACCGGCGCGGAAGTCAGCGTATTCGGTGAACCGGTCAAGGGATTGCGCCTGCTCGGTGGCGTGATGTACATCGACAGCGAACTGACCGACACCACCAACCCTGCGTTTGACGGCAACCGCGCGCCGGCGACACCGGAGTACAACGTCAACCTGGGCGCCGAATGGGATGTGCCGACTGTGCAGGGGTTGACCCTGACCAGCCGCGGCATCTATTCCAGCTCGCAGTACCTGGACCCGTCCAATACCAAGGAAATCGATTCCTGGGAGCGGTTCGACGTTGGTGCGCGGTATGCCTTCAAGGTCGATGACAAGCACATCACCTTGCGCGCCAATATCGAGAACGTGGCGGACAAGCGCTATTGGAGTTCGGCCGGGGCTTCGGACGACAGCGAGCCGGGGCTGACCCTGGCGACGCCGCGCACTTACCTGGTGTCGGCGACTGTCGATTTCTGAMPAAVSLRFRPALAGWRPLLNLSLMLSLSSGAFFISPSQAEESARRSYQVPAGSLGAALTRFAGQAGVNLSVDPALVSGRNSAGLAGEFGVEEGFARLLQGSGLQLQPVGEQAYMLTPAAQGSSLQLAPTSIFGATGATQGDPYAGGQVARRGSQGLLGSRDFMETPFSMTTYTGETVKNLQARTLGDLVASDPSVRATNPAGGRYEQFTIRGLSLFNSDVAYNGLYGVLPTYTIDMEMADRVDILKGPTQLINGISPRGSVGGGINVVPKRATDKPITSLTGSYASDSQPGAAVDVGRRFGEDNQFGVRFNGVKQAGDTDWDHQRVDRQMAVLGLDFRGERLRLSTDIGHTERDTDAPQERVQVGAAAPVPHASDVRRNYAQHWSKARTEDTFGAVNGEFDVSDSVVLYGGVGARKSNHDFLRHNVSVTNAAGDFTVSPRDFTRDENVRTANAGVRNWFQTGPVSHELNLAASYFYMDFENGGARYANGRSNLYDPVPTPTPNTPTRPDPKVYTENHFSGVALSDTLGFFDDRLLLTLGARWQRVEVDDWSDGIKGPTAYDEEKVSPSGGILFKATDKLSLYANYMEGLSQGKIAPTSSDNSDEIFPPFISRQVEVGAKYDAGALAVTAAVFRIKQPAYATDATTNVFGPNGKRENTGAEVSVFGEPVKGLRLLGGVMYIDSELTDTTNPAFDGNRAPATPEYNVNLGAEWDVPTVQGLTLTSRGIYSSSQYLDPSNTKEIDSWERFDVGARYAFKVDDKHITLRANIENVADKRYWSSAGASDDSEPGLTLATPRTYLVSATVDFPGPT0003790_9386DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014NANA
D1-35_04085942fecR_6COG3712Protein FecRATGCGCCAGGCTCCGTCGGCCGAAGCCCGTGAAGTCGCCCGGGCGGCGGCCCGCTGGCTGGCGCTGATCGAGTCAGGCGCCGATGAATTCGATCATGGCGCGCTGCAGCGCTGGCGCGAAAGCAAGGCCGAGCATGAAGCGGCCTGGCAAAAAGCCCAGCGCCTGCGCCAGCGGTTTGCCGAGGTGCCGTCATCGTTGGGCCTGGCCACCCTGGATCGTCCCGCACTGTCCCGTCGCAGCGTACTCAAGCGCGCGTTGGGTGTCGCCGCGCTGGTACCGACCGCGTGGTTGCTGGGACGTGAACTGCCGCTGGACGCCTGGCGCGCCGACCTGCACACCGCCACCGGGGAACGCCGTCGGTGGACGCTGGCCGGTGGCAACGTTTTGCAGTTGAACACCGATAGCGCTGTCGACCTTGACCTTGAGGCGCGCCGCCTGATGCTGCTGCGCGGCGAGATCGCGCTGAAAGTCGTCGACGTCCCCTTGGCGGTCCAGCTGCCCTACGGTGAGGTGAGCGTCGGCCGAGGCGAAGTCTGTATTCGGCTGGATCAACGCAACTGCCGGGTTTCGGTAGTCAGCGGCGCGGTGCAACTGCAACCTGCGCAAGGGCCAGCGCTGAGGCTCGAAGAAGGCCAACAGGTCGACCTGAGTGCAACTGGCGCGGCTGCGACCAGCACCTTCGACGCCGGGCAGATGGGCTGGCGTGAAGGCGTGCTCGTGGCGCAGAACCAGCCGCTGGGGGATTTCCTTCGGGAGCTGGACCGCTATCGCCCCGGCGTGTTGCGCTGGGACGAAGGGCTGGAAGCGCTCCGCGTCACCGGCAGCTTCCGCCTGGAAAACACCGACCGGATCCTCGCGCTGCTCTCGGCCAGCCTGCCGCTTGAGGTGCACATGCGTACCCGCTACTGGGTCACCTTGACGCCGCGAAAAAATATCGCCTGAMRQAPSAEAREVARAAARWLALIESGADEFDHGALQRWRESKAEHEAAWQKAQRLRQRFAEVPSSLGLATLDRPALSRRSVLKRALGVAALVPTAWLLGRELPLDAWRADLHTATGERRRWTLAGGNVLQLNTDSAVDLDLEARRLMLLRGEIALKVVDVPLAVQLPYGEVSVGRGEVCIRLDQRNCRVSVVSGAVQLQPAQGPALRLEEGQQVDLSATGAAATSTFDAGQMGWREGVLVAQNQPLGDFLRELDRYRPGVLRWDEGLEALRVTGSFRLENTDRILALLSASLPLEVHMRTRYWVTLTPRKNIAPGPT0003910_5842DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003910-prhR|fecR-K07165NANA
D1-35_04086510fecI_8COG1595putative RNA polymerase sigma factor FecIATGCTTGATGCAGCTAAGCCGGCGGAGCACGCCCTCGACGCGTTATACCGTGATCATGGCGGTTGGCTGGAAGGCTGGCTGCGACGGCGCATGGGCAATGCCTGGGATGCCGCCGACCTGCGCCAGGATACGTTCCTGCGCGTACTGTCCAGCGCCCAGTCGCTGGCCGACCTGCATGAACCGCGCGCCTACCTGTTGACGGTGGGCAAGCGCTTGTTGAGCAATTTCTACACGCGCCGCCATCTGGAACAGGCTTATCTCGACGCGTTGGCCAGCCTGCCCGCCGAATGCGTGCCGTCTCCAGAGCAGCGGTGGCTGCTGCTGGAAACCCTGCAGGCCCTGGACGAGTTGCTCGATGGCCTGCCGCCGGTGGTGCGTCGGGCGTTCCTGTGGAGCCAGCTCGAAGGCCTCGGTTATCGCGAGATCGCCGAGCGCCTGCAAGTCTCCGAACGCACCGTGAAGCGTTATATGGCCCAGGCCTACGAACATTGCCTGTTGGTGGACTTCTGAMLDAAKPAEHALDALYRDHGGWLEGWLRRRMGNAWDAADLRQDTFLRVLSSAQSLADLHEPRAYLLTVGKRLLSNFYTRRHLEQAYLDALASLPAECVPSPEQRWLLLETLQALDELLDGLPPVVRRAFLWSQLEGLGYREIAERLQVSERTVKRYMAQAYEHCLLVDFPGPT0003900_86DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003900-prhI|fecI-K23514NANA
D1-35_04087522hypothetical proteinATGAAAATGAAAACCTGTGCCATTGCCGCTTTTCTCCTGCTGGGCGCACCCCTTGCCCAAGCGCTGGAGACCACGCCGTTTGTCTACAGCACCGTGGCCGAGCAGCCGCAGAACGTCAACGACCGTGAAATCGCCGGGCTGTTCGACCGCTGGAACGCTGCGTTGAAGACCGGCAGCGCCGTCGCGGTCACCAGCCTGTACGCCCCGGATGCGATTCTGCAACCGACCGTCTCTAACAAGGTGCGCAGTACCCCGGCGCAGATCCAGGACTATTTCGTGCACTTCCTGGCGGCCAAGCCGGTCGGGGTGATCAACTACCGGGAAATCCGTCACCTGGGGCCTGACGCGGCGATGGACAGCGGAGTCTATACCTTTACGCTGACCCAGGCCGACGGTTCCAAGCGGGAAGTGCAGGCGCGCTACACCTTCCTTTACGAGCGACTCGACGGTCAGTGGAAAATCATCAACCATCACTCGTCGGCCATGCCGGAAGTACCGAAGACCCTGCAGGCCAGCCACTGAMKMKTCAIAAFLLLGAPLAQALETTPFVYSTVAEQPQNVNDREIAGLFDRWNAALKTGSAVAVTSLYAPDAILQPTVSNKVRSTPAQIQDYFVHFLAAKPVGVINYREIRHLGPDAAMDSGVYTFTLTQADGSKREVQARYTFLYERLDGQWKIINHHSSAMPEVPKTLQASHNANANANANA
D1-35_040881185hypothetical proteinATGCAAAGCCCACCCCATGACCCTGGCAGCGCCTTGGCGATCCGCACCCAGTACCGCCAGTCGCAAAGCCGGGCGGCGCGCCTGGGCCTGTTGTTGGGCACCGGGCACGAACTGACCCGCCTGCCGTTGGCGCAGATGCGCCAACGCGCGGTGGAACGTGCGTGCGCGTTCGTCGCCATGGATCACGGTCTGTTGCTGGAATGGACCGCTGACAGCCAGTTGCAGACCGTCGCCAGCCACGGCAGCGGCGAGCGCCTCGAGCTGCTCGCCGAGCTGGCCCAACCGCCCTCGCCCGCTTCGCAGTGGATGGATCGCCCCGGCACGCCGTTGCCGCAGATCCTGCGGATCCCTCTGCGCGGGTCCGACGGCGTTGCGTTCGGCGCGCTGCTATTGGGCAACAGCGTGCCCTTGGGCGCCCCTGACAATGAAGACATCGAATCGCTGCAATTGCTGGCCACGCTGTTGGCGGCGCACCTGGAGAACAGCCGCCTGCTGCAAACGCTCCAGGCCCGCGAGCGGACCATGTCCGAGCTGGTCCATCGCTTGTTCAGCGCCCAGGAGGACGAGCGCAAGCGCGTCGCCTATGACCTGCACGATGGCCTCGCGCAGAACCTCGCCGGCTTGCATCAACGCCTCCAGGGCTTCGCCGGTCGCTGCCCGCCTTTGCCGGCGGCGCTGGCCGATGAACTGCGGGGCATTCTCGAACTGGCCCAGGGCTGCGTCGGCGAAGGTCGGCAACTGATCGGCGGCCTGCGTCCGCATGTGCTCGATGATTTCGGCTTGTACAAAGCCGTCGACAAGGAGGCGGATCGTCTGCGTGACGCCGGGCTCCGGGTCGATTGGGTCGAGCACAGCATTGCGCGCCTGCCGGGTAATACCGAGATTGCGTTGTTTCGCATCGCCCAGGAAGGCATCAACAACATTCTCAAGCACGCCCAGGCCAATCAGGTTTCCCTCGGGCTGGCGGTGCGAGACGGCCAGGCTTGGCTGCGGGTCCAGGACGATGGCTGCGGCTTCGCCCTGGAACAACCCATCGAGACCAATGGCACCCGCCACCTCGGCCTGGCCGCCATGCAGGAGCGCGCGAGCCTGCTGGGTGGCCAGTTGAACTGTCGTAGTGCACCCGACCGCGGCACTCGACTGCTGGCCAGCGTGCCGTTGCCAGCCCACGGAGCACAGCCATGAMQSPPHDPGSALAIRTQYRQSQSRAARLGLLLGTGHELTRLPLAQMRQRAVERACAFVAMDHGLLLEWTADSQLQTVASHGSGERLELLAELAQPPSPASQWMDRPGTPLPQILRIPLRGSDGVAFGALLLGNSVPLGAPDNEDIESLQLLATLLAAHLENSRLLQTLQARERTMSELVHRLFSAQEDERKRVAYDLHDGLAQNLAGLHQRLQGFAGRCPPLPAALADELRGILELAQGCVGEGRQLIGGLRPHVLDDFGLYKAVDKEADRLRDAGLRVDWVEHSIARLPGNTEIALFRIAQEGINNILKHAQANQVSLGLAVRDGQAWLRVQDDGCGFALEQPIETNGTRHLGLAAMQERASLLGGQLNCRSAPDRGTRLLASVPLPAHGAQPNANANANANA
D1-35_04089669liaRCOG2197Transcriptional regulatory protein LiaRATGAGTCGTCCCTTGCGCCTGCTGTTGGCCGATGACCACGAAGTGACCCGCACCGGGTTCATTTCCATGCTCGCCGGTACCGAAGGGTTCGAAGTCGTCGGCCAGGCCTGCGACGGCCAGGAAGCGCTCGACCTGTGCGAGCGGCTACAGCCGGACATCGCCATCCTCGATATCCGCATGCCCGTGCTCAACGGCCTCGGCGCGGCGCGCATCCTGCAACAACGCCAGCCGCAGATCAAAGTGATGATCTTCACCATGGACGACAGCCCCGACCACCTCGAAGCGGCCATCGGTGCGGGCGCCGTCGGCTATCTGCTCAAGGATGCCAGCCGCGAGGAAATGCTCCAGGCCCTCAGGCGGGTCGCCCAGGGAGAAGAGGCACTGAACAGTTCGGTCAGCGCCCGCCTGTTGCGCCGCATGGCCGAACGCAGCGCCAACGGTGCAACGCCCGTCCAGGCCCTGACCGCGCGCGAACGCCAGGTACTCGGGCTGGTGGCCGGTGGGTTCAGTAATCGCGAGATCGGCGAAAAGCTCGGCATCGCCCCCGGCACGGCCAAAGCGCATGTGGAGCGGGTCATCGGCAAGCTCGGCGCCGCCGACCGGACCCAGGCGGCGGTGCGCGGCGTTGCCCTGGGCCTGGTGGCGCAACCCAGCGGACAATGGCCATGAMSRPLRLLLADDHEVTRTGFISMLAGTEGFEVVGQACDGQEALDLCERLQPDIAILDIRMPVLNGLGAARILQQRQPQIKVMIFTMDDSPDHLEAAIGAGAVGYLLKDASREEMLQALRRVAQGEEALNSSVSARLLRRMAERSANGATPVQALTARERQVLGLVAGGFSNREIGEKLGIAPGTAKAHVERVIGKLGAADRTQAAVRGVALGLVAQPSGQWPNANANANANA
D1-35_040902313rcsC_21Sensor histidine kinase RcsCATGAGGTTTCTGGCCGCCCGGAGATGGGCCGACTTGCCGTTGCGGGGCAAGGCGCTGGTGGTGATCTCGCTGCCGTTGGTGGTCCTGCTGCTGTCGCTGGTGCTGATCTACATCACCGAACGCCAGACGGCCCGTGCCGAAGAGGATGTGCGCCGGGTGCTGCTGGTCCAGGGCGACATCCAGGCCGTGCACACCTTGCTGGCCGAGGCCGCGGCCAGCGTGCGCGGTTACCTGCTGACCCGGCGTGAAGATTTCCTGCCCGGCTACGAACAGGCCACCCCGAGGATCCAGGCTGCATTGCAACGCCTGGATCACAATATCCGTGACGCGAGGATGCGCGAGCACCTCAAGACCATTACCCCGCTGATTACCGAAAAGCTTGCCGGGTTGCAGGCGTTGCGCACCGGCAAGGCCGACGACACCGCGGCCATCACCGCGATCCTGATCGAAAACAAACAGGTGCTCGACGTACTGCGCGAGCAGATCAGCGCCATGCGCATCCGCGAGGATGCCCTGCTCGCCGACCGCAGCGCCGCCGCGTCGGCAACGCGTATGCGGCTGCTGTTCGCGACGTTGCTGGCGGCGGTGTGCGGGCTGTTCGGGGCCATCGTCGCGGTGCTGTTCCTGTCCAAGGGCATTGTCGCCCGGGTCCAGCAGGTGCAAGGCAACGCCCAGCGCCTGGCGCTGGGCCAGCCATTGTTGCCGCAACCGCCGGAGAAAGACGAAATCGGCCAGTTGGGCACTCGCCTGGTGGAAGCCGGGCAGTTGCTCGCCGAACGCGAGCGCGCCCTGCGCGATAACGAGGAACGCCTGCGGCTGATCATCGATGGCGTCAAGGACTACGGCATTTTCGCCCTCGACGCCAAGGGCCATGTGATCACCTGGAATGCCGGGGCCGAGCGGATCAAGGGCTATACCGAACAGGAGGTACTCGGCCGGCATTTCTCGCTGTTCTACCTGGCCGAAGAGTGCCCGGCCCACCCCGAAATGGCCCTGCGCGAGGCCACCCGCGACGGCCATTACATGGAAGAAGGCTGGCGTTGCCGCAAGGACGGCAGTCGCTTCTGGGCCAGCGTGGTCATCACCACTCAATACGACAGCACCGGCGCGCTGCGTGGTTTCTCCAAGATCACCCGCGACATCACCGACCGGCGCACCGCTGAAATCGCCCTGCGTACCGCCCGTGAGGAAGCGGAAAGCGCGAGCCGGGCCAAGAGCGAATTTCTTTCGCGCATGAGTCATGAGTTGCGCACGCCGCTGAACGCCATCCTCGGCTTCGCGCAATTGCTGGACATGGACTCGGTCGCCGGCCAGCGCCCGCAGGTCAGCCACATCCTGCGCGCCGGCCAGCATTTGCTCGCGTTGATCAACGAAGTGCTCGACATCGCCCGGATCGAAGCCGGCCGGCTGCCCCTGAACATCGAGCCAATTGCCCTGCCGACCGTGCTGCACGAAGCCTTGACGCTGGTGTCGCCGATGGCCGCGGATTCAGGAATTCATCTGGCCGCCCTGCCCGCGCTGCCCGAAGGCAGTGGCGTGCTTGCCGATCGCCAACGCTTGGTCCAGGTATTGCTCAACCTGCTCTCCAACGCCATCAAGTACAACCGGCCCGGCGGTGAGGTGCGCATCGAAGTGAACGTCGAGGGCCATCAGGTGGGCATTGCCGTCAGCGACACCGGGCACGGCATCGCCCCCGAACAGTTGGACCAGTTGTTCAAGCCGTTCGAACGCCTGGGCGCCGACCCGCAGGTCGAAGGCACAGGCCTGGGACTCTCCCTGAGCAAAAGCCTGCTCGAGATGATGCAGGGTAGCCTTCAGGTACTTAGCGAACCGGGACAAGGCTGCTGCTTCACCTTGCGCTTGCCCGCTGCCCAGGTGTCCGGCGCCCAGCTGCCGCCATTGGCGGCGTTGGAAACCACCCGCCCGCGCACCGAGTTCGACGGCAAGGTCCTGTGCATCGAAGACAACCTGTCGAGCCTCGCCTTGATCGAAACCCTGATGCAGCGTCGCCCGGGCATCCAGCTGCTATCGAGCATGCAAGGCCAGTTGGGCCTGGACCTGGCGCGCCAGCACGCGCCGCAGCTGATCCTGCTCGACGTGACATTGCCGGACCTGGAGGGGCTGGAAGTCCTGCGTCGGTTGCGCCAGTCTGCGGCGACCGCGTCCACGCCCGTGCTGATGATCACCGCGGATGCCAGCGACCTCACTCACCGCGCCCTGCGCGAGGCCGGCGCCACGGCGATCCTGACCAAGCCCATTCATATCCAGGCCTTCCTCGGCCACCTTGAACGTTATTTACCGGAGTCCGCATGAMRFLAARRWADLPLRGKALVVISLPLVVLLLSLVLIYITERQTARAEEDVRRVLLVQGDIQAVHTLLAEAAASVRGYLLTRREDFLPGYEQATPRIQAALQRLDHNIRDARMREHLKTITPLITEKLAGLQALRTGKADDTAAITAILIENKQVLDVLREQISAMRIREDALLADRSAAASATRMRLLFATLLAAVCGLFGAIVAVLFLSKGIVARVQQVQGNAQRLALGQPLLPQPPEKDEIGQLGTRLVEAGQLLAERERALRDNEERLRLIIDGVKDYGIFALDAKGHVITWNAGAERIKGYTEQEVLGRHFSLFYLAEECPAHPEMALREATRDGHYMEEGWRCRKDGSRFWASVVITTQYDSTGALRGFSKITRDITDRRTAEIALRTAREEAESASRAKSEFLSRMSHELRTPLNAILGFAQLLDMDSVAGQRPQVSHILRAGQHLLALINEVLDIARIEAGRLPLNIEPIALPTVLHEALTLVSPMAADSGIHLAALPALPEGSGVLADRQRLVQVLLNLLSNAIKYNRPGGEVRIEVNVEGHQVGIAVSDTGHGIAPEQLDQLFKPFERLGADPQVEGTGLGLSLSKSLLEMMQGSLQVLSEPGQGCCFTLRLPAAQVSGAQLPPLAALETTRPRTEFDGKVLCIEDNLSSLALIETLMQRRPGIQLLSSMQGQLGLDLARQHAPQLILLDVTLPDLEGLEVLRRLRQSAATASTPVLMITADASDLTHRALREAGATAILTKPIHIQAFLGHLERYLPESANANANANANA
D1-35_04091483cheB_5Protein-glutamate methylesterase/protein-glutamine glutaminaseATGAATCGCGATCTGCGCATCCTGATTATCGACGATCAGCGCCCCAACCTTGAGTTGATGGAACAACTGCTGGCCCGTGAAGGGCTGCACAACGTGCTGAGCAGCACCGAGCCGTTGCGCACACTCGACCTGTTCAACAGTTTTGAGCCGGACCTGGTCATCCTCGACCTGCACATGCCGGCCTTCGACGGGTTTGCCGTGCTGGAGCAGCTCAACCGGCGCATCCCGGCCAATGACTACCTGCCGATCCTGGTGCTGACCGCCGACGCCACGCGCGACACCCGCCTGCGGGCCCTGGCGTTAGGCGCCCGGGACTTCATCAGCAAGCCCCTCGACGCCCTGGAAACCATGCTGCGGGTCTGGAATCTGCTGGAAACCCGAGCCCTGTACAAATCGCTGCGTACATTGATTCCCGCCGAGCAGATCGAATTGTTGCGCCAGCATCGAGGGACGGCTGACCAGCGCATCGAGCCGTCAGCGTAGMNRDLRILIIDDQRPNLELMEQLLAREGLHNVLSSTEPLRTLDLFNSFEPDLVILDLHMPAFDGFAVLEQLNRRIPANDYLPILVLTADATRDTRLRALALGARDFISKPLDALETMLRVWNLLETRALYKSLRTLIPAEQIELLRQHRGTADQRIEPSAPGPT0015900_1812PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-CELL_FATE_CONTROLPUTATIVE-CELL_FATE_CONTROL-1,PGPT0015900-pleD-K02488
D1-35_04092441IMPDH_2Inosine-5'-monophosphate dehydrogenaseATGAAAACCGCCGCTCAACTGGTAAAGCTCAAGAGTGTGCAGAACCGGCAGGTCCACAGCATCGCGCCGGACCAGACCGTGCTTGAAGCGCTGCAGATCATGGCCGAGAAAAACGTCGGCGCGCTGCCGGTGATCGAGGCCGGCGAGGTGGTGGGGGTGTTCAGCGAACGGGACTATGCCCGCAAGATGGTGCTCAAGGGGCGTTCGTCAGTGGGCACCACGGTACGCACCATCATGAGCGCGCCGGTCATCACCGCCGACAGCCAGCAGAGCATCGAACGCTGCATGGAAGTCATGACCGAGAGCCACCTGCGCCATCTGCCGGTGCTGGACGACGGCCAGTTGATCGGCCTGCTGTCCATCGGCGACCTGGTGAAGGAAGCGCTGGTCGAGCAGGCGGACCTGATCCGCCAGCTGGAGCATTACATCCGCGGCCACTGAMKTAAQLVKLKSVQNRQVHSIAPDQTVLEALQIMAEKNVGALPVIEAGEVVGVFSERDYARKMVLKGRSSVGTTVRTIMSAPVITADSQQSIERCMEVMTESHLRHLPVLDDGQLIGLLSIGDLVKEALVEQADLIRQLEHYIRGHNANANANANA
D1-35_04093372nirDCOG2146Nitrite reductase (NADH) small subunitATGAGCCAGTCAAACGTCGTTCGTATCGCTCAAGAACCCGTCCAATGGCGCGCCCTGTGCAGCCGCGAGGACCTGGTGCCCAATTCCGGCGTGGTTGCCTGGCATGACGGCCGCCAAGTGGCGCTGCTCTACCTGCCGGAGCATACGGACAAGCCGCTGTACGCCGTCGACAACCGCGACCCCAAGTCCGGCGCGAACGTCATCGGTCGTGGTCTGCTGGGCAGCATCAAGGGCGAACTGGTGATCGCCTCGCCGATGTACAAGCAGCATTTTCGCCTGGAAGACGGCCATTGCCTGGAATATCCCGAACAGCGCCTGCGGGTCTGGCCGGTGCGGTTGAACGGGGATGTGGTGGAGATTGGCGAGGACTGAMSQSNVVRIAQEPVQWRALCSREDLVPNSGVVAWHDGRQVALLYLPEHTDKPLYAVDNRDPKSGANVIGRGLLGSIKGELVIASPMYKQHFRLEDGHCLEYPEQRLRVWPVRLNGDVVEIGEDPGPT0000455_252DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000455-nirD-K00363NANA
D1-35_040942562nasD_2COG1251Nitrite reductase [NAD(P)H]ATGAATTCCAACGTTGCTTCCCTGAACAAGCTGCAAACGCTGATCGTGATCGGCAATGGCATGGTCGGCCATCACTGCGTCGAGCAACTGATCGAGCGCGGTGCCCTCAATCATTACCGCGTGCATGTGTTCAGCGAAGAGCCGATGCGTGCCTATGACCGTGTGCATTTGTCCGAGTATTTCTCGGGCCGCGATGCCGAGTCGCTGGCCCTGGGCGAAGCCTCGTTGTACCAGACGCCCGGCGTCACGCTGCACTTGGGCGTGCCGGTGCTGGAAATCGATCGCCAGGCGCGCCAGGTTGTCACCGCCGCCGAGCGCCTCAGCTACGACAAGCTGGTGCTCGCCACCGGTTCGTACCCGTTCGTGCCGCCGATCCAGGGCGCCGAAGGTGATTCGTGCCTGGTCTACCGCACCCTTGAAGACCTCGACGCCATCCGCGCCGCCGCGAACAATGCCCGGCGTGGCGTGGTCGTCGGTGGTGGCCTGCTGGGCCTGGAAGCGGCCAATGCCCTCAAGACCCTTGGCCTGGAAGCTCACGTGGTGGAATTTGCCCCACGGCTGATGCCGGTGCAACTGGACGAGCAGGGCGGTCTGGCCCTCAAGGCGCGCATCGAAAAACTCGGTGTCGGCGTGCACCTGTCCAAGGGCACCCAATCCATCAGCGCCGGTGAGCAATACCGTTACCGGATGAACTTCGCCACCGACGACTTCCTGGAAACCGACCTGATCGTGTTTTCCGCCGGTATCCGCGCCCAGGATGCCCTGGCTCGCCAGTGCGACTTGCAGATCGGCCCGCGCGGTGGCGTGGTGATTGACGACCATTGCCAGAGCAGCGACCCGGACATCTATGCCATCGGCGAATGCGCCGCCTGGAATGGCAGCATCTTCGGCCTGGTCGCGCCGGGCTACCAGATGGCCCGCAATGTCGCGGCGCGCCTGTGCGGCGAGGCTGGCGAGGCGTTCACCGGCGCGGACATGTCCACCAAGCTCAAGCTGTTGGGCGTGGACGTCGGTTCCATCGGCGACGCCCATGGCAACACGCCGGGTGCGCGCAGCTTCCAATTCATCGACGAAACCAGCGCCAGCTATCGGCGCCTGGTAGTGGACGCCGACGGCAAGCGCGTGATCGGCGCGGTGCTGGTGGGCGACAACAGCTATTACGACACCCTGCTGCAATACATGCAGAACGGCATCGCCTTGCCCAAGGACGCCGCCAGCCTGATCCTGCCATCGTCCGAGGGCGCTCCGACACTGGGCCCGGCGGCGCTGCCCGAAGCGGCGACCATCTGCTCGTGCCACAACGTCACCAAGGGCTCGATCTGCGCGGCCATCGACGGCGGCTGCAGCGATCTCGGCCAGCTCAAGTGCGATACCAAGGCCGGTACCGGTTGCGGCGGCTGCGCGGCCCTGGTCAAGCAGGTATTCGAGCACGAGCTGATCGCCCGTGGCGTCAGCGTCGACAAGAGCCTGTGCGAACACTTCGCCTATACCCGCCAGGAGCTCTACGCACTGGTGCGGGTGGAAGGGACTATCAGTTTCGAAGAGCTGCTGGCCAAACACGGTCGCGGCCATACCGGTTGCGACCTGTGCAAGCCGGCGGTGGGTTCGATCCTGGCGTCGTGCTGGAACCAGCCGATCATGGACGCGCACCTGGTGCCGTTGCAGGACACCAACGACACCTTCATGGCGAACATGCAGAAAAACGGCACCTACTCGGTGGTGCCGCGCATCGCCGGCGGTGAGATCACCGCGGACAAACTGATCGCCATTGGCGTGGTCGCGAAGAAATATGACCTCTACACCAAGATCACCGGCGGCCAGCGCATCGACCTGTTCGGCGCGCAGTTGCACCAGTTGCCGGACATCTGGGCCGAGCTGATCGAAGCCGGTTTCGAGACCGGCCACGCCTACGGCAAATCGACGCGTACGGTGAAGTCCTGCGTCGGCAGCACCTGGTGCCGCTACGGCGTGCAGGACAGCGTGCAGATGGCCCTGACCATCGAGGACCGTTACAAGGGCCTGCGCTCGCCGCACAAGCTCAAGTTCGCGGTGTCCGGTTGCACCCGTGAATGCGCCGAGGCGCAGAGCAAGGACGTGGGTGTGATCGCCACGGAGAAGGGCTGGAACCTCTACGTGGCCGGCAACGGCGGCATGCGTCCACGCCACGCCGAGCTGTTCGCCACCGACCTGGATGACGCCACGCTGATCCGCTACATCGACCGGTTCCTGATGTTCTACATCCGCACCGCGGACAAGTTGCAACGCACCTCGGTCTGGCGCGAGAGCCTGGAAGGCGGCCTGGACTACCTCAAGGACGTGATCATCCACGACAGCCTGGGCCTGGGCGCCGAGCTCGAAGCGCAGATGCAACTGGTGGTCGACCGCTACGAGTGCGAATGGGCCAACGCCTTGAAGGATCCGGAAAAACTCAAGCGCTTTCGCACCTTCGTCAACGACAAGCGCGACGATCCTGACGTCCACTTTGTCCGCGAACGCGGCCAGCGCCGGCCGGTGCATGCCGGCGAACTTCACCTGATTCCCGTCACCGAGGAGGTACTCTGAMNSNVASLNKLQTLIVIGNGMVGHHCVEQLIERGALNHYRVHVFSEEPMRAYDRVHLSEYFSGRDAESLALGEASLYQTPGVTLHLGVPVLEIDRQARQVVTAAERLSYDKLVLATGSYPFVPPIQGAEGDSCLVYRTLEDLDAIRAAANNARRGVVVGGGLLGLEAANALKTLGLEAHVVEFAPRLMPVQLDEQGGLALKARIEKLGVGVHLSKGTQSISAGEQYRYRMNFATDDFLETDLIVFSAGIRAQDALARQCDLQIGPRGGVVIDDHCQSSDPDIYAIGECAAWNGSIFGLVAPGYQMARNVAARLCGEAGEAFTGADMSTKLKLLGVDVGSIGDAHGNTPGARSFQFIDETSASYRRLVVDADGKRVIGAVLVGDNSYYDTLLQYMQNGIALPKDAASLILPSSEGAPTLGPAALPEAATICSCHNVTKGSICAAIDGGCSDLGQLKCDTKAGTGCGGCAALVKQVFEHELIARGVSVDKSLCEHFAYTRQELYALVRVEGTISFEELLAKHGRGHTGCDLCKPAVGSILASCWNQPIMDAHLVPLQDTNDTFMANMQKNGTYSVVPRIAGGEITADKLIAIGVVAKKYDLYTKITGGQRIDLFGAQLHQLPDIWAELIEAGFETGHAYGKSTRTVKSCVGSTWCRYGVQDSVQMALTIEDRYKGLRSPHKLKFAVSGCTRECAEAQSKDVGVIATEKGWNLYVAGNGGMRPRHAELFATDLDDATLIRYIDRFLMFYIRTADKLQRTSVWRESLEGGLDYLKDVIIHDSLGLGAELEAQMQLVVDRYECEWANALKDPEKLKRFRTFVNDKRDDPDVHFVRERGQRRPVHAGELHLIPVTEEVLPGPT0000450_641DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-DENITRIFICATION|NITRATE_USAGEDENITRIFICATION-NITRATE_REDUCTION,PGPT0000450-nirB-K00362NANA
D1-35_04095984hypothetical proteinATGGATGAGCGAAACCCACCTGTCGTTGTGATCTGCGGCGCCACTGCCGGCGTCGGCCGCGCGACCGCCCAGCGGTTTGCCGCGTCCGGCTACCGCGTCGGGCTGTTGGCCCGGGGCGAACAAGCGTTGGCGGCGACGCAAGAAGAACTCAAGCAGCTGGGCGCGACGAGCCTGGCGATCAGCGTCGATGTCGCGGACGCCGAGGCGGTATTCGAGGCGGCGCAACGGATGGAGCGCGAGCTGGGGCCCGTCGGCGTCTGGATCAATTGCGCGATGGTCACGGTGTTGTCGCCAATCCGCCAGTTGACCGCTGAAGAAATCCACCGGGTCACCAAGGTCACGTACCTGGGCACGGTGCATGGCACGCTCGCGGCGCTGGACCTGATGGGGCGGCGCAATCGCGGGGTGATCATCCAGGTCGGCTCGGCGCTGGCCTACCGGGCCATTCCGCTGCAGGCGGCCTATTGCGCGGCCAAGTTCGCGGTGCGTGGTTTCACCGATTCCTTGCGCTGCGAACTGCTCCACGAACACAGCGATATCAAGGTCTGCATGGTGCAACTGCCGGCGATCAACACGCCACAGTTCGATTGGGCCCGCAACAAGCTCGCCAAGCGTCCGCAACCGGTGCCACCGATCCACGACCCGGACGTTGCCGCCCGGGCGATTTTCAGCGTGGTGAAGCGTACTCCCCGGGAGTTGTGGTTGGGCGTGGCCTCGCTCAAGGCGATCGTCGGCACTTGCCTGATGCCGGGCCTGCTCGATCGTCTGTTGGCCCGCAGCGCTTACGCCGGGCAAATGACCGACGAAGACGACGACAGCCAGCGCCCGGACAATCTGTTCGAACCGCAGGAGCCCTTGCATCGTACCCGCGGGCGGTTCAATGGCCGCTCGAAGGATTCAGCGCTGGCTTTCAGCTCGACCCAGGTGTCCGCGTTGCTGCTGGCCACCGGTGGGTTGCTGGCTGTGGTGCTGCTACTGTTTTGAMDERNPPVVVICGATAGVGRATAQRFAASGYRVGLLARGEQALAATQEELKQLGATSLAISVDVADAEAVFEAAQRMERELGPVGVWINCAMVTVLSPIRQLTAEEIHRVTKVTYLGTVHGTLAALDLMGRRNRGVIIQVGSALAYRAIPLQAAYCAAKFAVRGFTDSLRCELLHEHSDIKVCMVQLPAINTPQFDWARNKLAKRPQPVPPIHDPDVAARAIFSVVKRTPRELWLGVASLKAIVGTCLMPGLLDRLLARSAYAGQMTDEDDDSQRPDNLFEPQEPLHRTRGRFNGRSKDSALAFSSTQVSALLLATGGLLAVVLLLFNANANANANA
D1-35_040961608treSCOG0366Trehalose synthase/amylase TreSATGAAAGCCAACTGGCACCGAAATACCTTGATCTACCAGATCGACCCCTCGCTGTTCTACGACAGCAACGGCGATGGCCGTGGCGACCTGAAGGGCATCATTCGTCAGCTCGATTATCTGCAAGCGCTGGGCGTCGGCGCACTCTGGCTGATGCCTTTGTACCGGTCTCCGTTCAAGGACGCCGGTTACGACGTCAGCGATTTCATGGCGCTGGACCCGCGCTTTGGCAGCGAAGAGGACTTGCGCCAGTTGATCGTCCAGGCCGGGGAGCGTGGCATCCGGGTCATCCTCGAACTGGTGGTGCAGCACACCAGCGACCAGCATCCCTGGTTCCTGCGGGCGCGGCGCGACAAGGACAGCGTCTATCGGAATTATTACCTGTGGTCCGACACGCCGGTGGACGACGGCAACCAACCGATCTTCCCGTCGGTGGAAGACAGCATCTGGCAGTGGGACGAACAGGCCGGGCAGTACTTTCGGCATCTGTTCTATCGCCATGAGCCGGATCTCAATCTGGCGAACCCGCGGGTGGTCGAAGAGATCGAGCGGATCATGGATCACTGGCTTGAACTGGGGATCGCCGGTTTTCGTCTCGATGCCGCTTCGCACCTGGTTGAGCAGGCCGGTGGCGGCGATGAAGAGCAGGGCGTGTGGTTATTGGAACGGCTGTTCAAGCACATGACCCGCATCAACCCGGAAGGCGTGCTGATGGGCGAAGTGGATGTCGAGCCCGAGCGCTACAGCCATTACTTCGGCACCGGCGAACGCCTGGGCCTGGTGCTGGATTTCTGGGTCAATAATCATCTGTTCCTGGCCTTGGCCCGAGGCGAAGCCGAGCCTCTGCAACGGGCCATTGCCCGCCGCCCGGCACCGCCTGACGGCGCCAATTATGCGGTGTGGCTGCGCAACCATGACGAGCTCGACCTCGAACGCTTGACCGAGCAGGAGCGTGAGGAGGTGATGCAGGCCTTCGCCCCGGACCAGAACATGCGCCTGTATGGCCGCGGCATCCGCCGGCGCCTGGCGCCGATGCTCGACGGTGATGTGCATCGCCAGGCGCTGGCCCAGGCGCTGCTGCTGTCACTGCCCGGAACACCCATCGTGCGCTACGGCGAAGAAATCGGCATGGGCGATGACCTGTCCCGTCCCGAACGCCTGTCGGTGCGCACGCCCATGCAATGGAGCGATGAAGCCAACGCCGGCTTTTCAACCGCCCAGCGCCTCGCCGCGCCGGTGATCGATGAAGGACCGTTTGCCTACACGCAGTTGAACGTCGAGGGCCAACAGGACGATCCCGATTCGCTGCTGGCTCGGACTCGCCGGCTGCTGCTGGCGCGCAGGCGCTTGCGCGAGGTTGGCGACGGCAAGGCGCAACTGCTGACGGTCGACCATCGTGCAGTCTTCGCCATCGCCCATGAGTGCGAAGCGACCTCGGTGATGCTGGCGAACCTCAGCCCCAAGACAGTCACGGTGCAGTTGCGGGAAGTGGATTTGCAGGGGTTCGAGGAAGTCCTTTCGGACCGCCCGTATCCGGCCTCGACCGCAGCCAGCCTGACATTGCATGGATACGGTTACCGCTGGTTCCGGCGCACCGGCTCAAAACAGTAGMKANWHRNTLIYQIDPSLFYDSNGDGRGDLKGIIRQLDYLQALGVGALWLMPLYRSPFKDAGYDVSDFMALDPRFGSEEDLRQLIVQAGERGIRVILELVVQHTSDQHPWFLRARRDKDSVYRNYYLWSDTPVDDGNQPIFPSVEDSIWQWDEQAGQYFRHLFYRHEPDLNLANPRVVEEIERIMDHWLELGIAGFRLDAASHLVEQAGGGDEEQGVWLLERLFKHMTRINPEGVLMGEVDVEPERYSHYFGTGERLGLVLDFWVNNHLFLALARGEAEPLQRAIARRPAPPDGANYAVWLRNHDELDLERLTEQEREEVMQAFAPDQNMRLYGRGIRRRLAPMLDGDVHRQALAQALLLSLPGTPIVRYGEEIGMGDDLSRPERLSVRTPMQWSDEANAGFSTAQRLAAPVIDEGPFAYTQLNVEGQQDDPDSLLARTRRLLLARRRLREVGDGKAQLLTVDHRAVFAIAHECEATSVMLANLSPKTVTVQLREVDLQGFEEVLSDRPYPASTAASLTLHGYGYRWFRRTGSKQPGPT0014120_1363DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-AMYLASE,PGPT0014120-treS-K05343NANA
D1-35_040971527malLCOG0366Oligo-1,6-glucosidase 1ATGCCCAACTCCTTCCCTTCGCCCTGGTGGAAGAACGCCGTGATCTACCAGGTTTACCCTCGCTCCTTCGCCGATGCCAACGGCGATGGCGTCGGCGATCTTCCCGGTTTGACAGCACGCCTGGACCATCTGCAACGCCTTGGCATCGATGCGTTGTGGCTCTCGCCAGTGTTTCGCTCGCCCATGTGCGACGCAGGCTACGACATTTGCGACTACACCGACGTCGATCCGCTGTTCGGCAACCTGGCCGACCTCGATGCGTTGATCGCCAAGGCTCACGAACGGGGCTTGAAGGTCTTGCTCGACTTTGTCCCGAACCACACTTCCGACCAGCATCCCTGGTTCATCGAGTCGCGCTCCAGCCGCGACAACCCCAAGCGCGACTGGTACATCTGGCGTGACCAGCCGAACAACTGGCGAGCCTCGATTGACGGCGGCAGCGCCTGGACCTGGGACGAAACCAGCCAGCAGTACTACCTGCACTTCTTCCTGCCCGAGCAACCGGATCTGAACTGGCATAACCCGCAAGTCGTCGCGGCCATGCATCAAGTGCTGCACTTCTGGCTGGAGCGTGGCGTGGACGGGTTTCGCGTCGACGTGGTGCATTGCGTCGGCAAGGACCAGAGCTTTGCCGATGACCCGCGCTGCATGGCCGGTGAAACCATGGTCAAGATCAACGATCAGCCCTACAGCCATGAAGTGCTCCGCGGGCTGCGGCGCCTGGTGGACAGCTACCCCGGTGAGCGGGTGCTGATCGGCGAGGTGAACATCCGTTCCACGGCCCAGGTGGCGGCCTATTACGGCGCCAGTGACGAACTGCACATGTCGTTCAACTTCCCGCCGCTGGATGCACCGTGGGACCCGGTGGTGTTCCGTATGTGCGTACGCGAGGTGGAAAACGACCTCGGCCCGTTGCAGGCCTGGCCGACCTGGGTGCTGTCCAACCATGACAACAGCCGCCACCGCAGTCGCTACGGCGGCTCATTGCGCCGGGCACGGGCTGCGGCGGTGATGCTGCTGACGCTGCGCGGCACGCCGTTCATCTATCAGGGCGAGGAGCTGGGCCTGGAGGATACTCAAGTGACCGCCCAGACCCGCGTCGACCCCGGCGGACGGGACGGCAGCCGGGCGCCGATCCCCTGGACGGAACAGGCGCCTCACGGTTGGTCGGGTCGGGCGCCATGGCTGCCTTTCGCTGCGGATGCCGGCCGGTTGTCGGTGGAGACCCAAGAGCGCGACGCCGATTCCGTGCTGGCGCTTTACCGACGGTTGCTGGCGTGTCGGCGCAATAGCCTGGCGCTGCGCCTGGGCGGCTGGGAGGAACTGCCCTCGCACCCGCAGGTGCTGGCTTATCGTCGCTCTTGCGAGGGCGACGAACGCCTGGTCTGCATCAATTTCGCCGACAGCGAGCACACCTTTCCGCTGGCCGACCCCTGGCGAGTTGAAATCGCCAGCGATGGCGCGGATGAAGGCCAGCCGTTCAGCGGGCGTCTGGCTGCCGAACAGGCCCTGATCCTGTGTCGATAAMPNSFPSPWWKNAVIYQVYPRSFADANGDGVGDLPGLTARLDHLQRLGIDALWLSPVFRSPMCDAGYDICDYTDVDPLFGNLADLDALIAKAHERGLKVLLDFVPNHTSDQHPWFIESRSSRDNPKRDWYIWRDQPNNWRASIDGGSAWTWDETSQQYYLHFFLPEQPDLNWHNPQVVAAMHQVLHFWLERGVDGFRVDVVHCVGKDQSFADDPRCMAGETMVKINDQPYSHEVLRGLRRLVDSYPGERVLIGEVNIRSTAQVAAYYGASDELHMSFNFPPLDAPWDPVVFRMCVREVENDLGPLQAWPTWVLSNHDNSRHRSRYGGSLRRARAAAVMLLTLRGTPFIYQGEELGLEDTQVTAQTRVDPGGRDGSRAPIPWTEQAPHGWSGRAPWLPFAADAGRLSVETQERDADSVLALYRRLLACRRNSLALRLGGWEELPSHPQVLAYRRSCEGDERLVCINFADSEHTFPLADPWRVEIASDGADEGQPFSGRLAAEQALILCRPGPT0018560_5604DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187NANA
D1-35_04098630hypothetical proteinATGTCAAGCACAGATGAAAATGCACCGCCCATTGCCGCGCCTCGTCGCCGACTGTCCCGCGCCGATCGGCAACGGCAATTGCTGGATGTCGCCTGGCGCCTGGTTCGGGAGGAGGGCAGCGAAGCGTTGACCCTGGCCCGGCTGGCCGACCAGGCAGGCGTCACCAAACCCATCGTCTACGACCATTTCATTACCCGGTCAGGGCTGCTTTCGGCGCTCTACCAGGATTTCGATGCGCGCCAGACGGCGCTCATGGACGCTGCACTCGACGCCAGCGAACCCACGTTGCAGAGCCGTTCGCGGGTGATTGCCGAAGCGTTCGTCGAATGCGTCCTGCTTCAGGGGCGTGAGATCCCGGGCGTCAGTGCGGCGCTCTCCAGTTCACCTGAACTGGAGAGCATCAAAAGGGAGTACGAAAGGCTGTTCCTGGATAAATGCCGGGCGGTGCTGGAGCCGTTCGCCGATAACCGGGGCCTGTCCCAAGCGAGCCTGCGCGCGATGCTCGGGGCGGCGGAAGCGTTGTCCGATGCGGCGGCCAACGGCGAGATCAGCGCGGACGAGGCCAAGCAGGAGCTGTTCGTCAGCATTGTGGCGATGGTCAACCGGGCCGCTGGCATCGCCTCCAACTGAMSSTDENAPPIAAPRRRLSRADRQRQLLDVAWRLVREEGSEALTLARLADQAGVTKPIVYDHFITRSGLLSALYQDFDARQTALMDAALDASEPTLQSRSRVIAEAFVECVLLQGREIPGVSAALSSSPELESIKREYERLFLDKCRAVLEPFADNRGLSQASLRAMLGAAEALSDAAANGEISADEAKQELFVSIVAMVNRAAGIASNNANANANANA
D1-35_04099633kefF_3Glutathione-regulated potassium-efflux system ancillary protein KefFATGCACGCCCTTATCGTGGTTGCTCATCATGACCCCCGCTCTCTGACCCATGCGCTTGCCCAGGCCATTGGCAATGGAATTCTCCAGGCCAATCCCAGCGATACCTTCGAAATCGCCGACCTGGCCGCTGAAGGCTTCGATCCACGCTTCGGCTTTGCCGACCATGCCGTCCACCACCGTGAGGCCTTGCCACCTGCCGACGTGCTGACCGAGCAGGCCAGGATCGAACGGGCCGACGCCCTGGTGCTGGTCTACCCGATCTATTGGTGGTCGATGCCGGCGTTGCTCAAGGGCTGGATTGATCGGGTGTTCTCCAATGGCTGGGCGTTCGACTTCAAGCTCGACGAGTTCTTTGTGCAGAAACTGCAGCATTTGCGGGTCCATCTGGTCGCCCTCGGTGGAGCCGACGCCGACAGTTTCCAACGCCACGGCTACGACCAGGCGATGGTCACGCAGATCGACCATGGGATCTTCGGCTACTGCGGTGCCCGCGTGGTGAGCTCCGAGCGCTTGCTGGACTCGGAAACCCTTGATCCGAACGTACATCTGCAAACGGCCCGAGCCCTCGGCCAGCGGGTGTTCTCGGCCATCGAGCAGACCACGCCCGTAGGCGCCAGCGCCGCGTGTGCATGAMHALIVVAHHDPRSLTHALAQAIGNGILQANPSDTFEIADLAAEGFDPRFGFADHAVHHREALPPADVLTEQARIERADALVLVYPIYWWSMPALLKGWIDRVFSNGWAFDFKLDEFFVQKLQHLRVHLVALGGADADSFQRHGYDQAMVTQIDHGIFGYCGARVVSSERLLDSETLDPNVHLQTARALGQRVFSAIEQTTPVGASAACAPGPT0009455_1041DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_K_METABOLISMPLANT_VITAMIN_K_BIOSYNTHESIS,PGPT0009455-kefF|nqo|ywrO-K00355NANA
D1-35_041001563hypothetical proteinTTGTTCAAAAAGTCCGCATGTTACCTGAGCCTTTTATTGCTCGTTGCGCCATTGGTCGCCACGGCCGAGGACGGCGATCCGGCTCAGGCGCAAACCACACTGGCGCAACTGTCGGTCAATTGCCCCGAATTGGCCGGTGGCGTCGACTTTCCGACGGTCATGAGCCTGCAGGCCTTGTACCAGCAAAACGCAGGCCAGGCGATCTGGGCGGACGACGGGCGGTTACAGGCGTTGCAAGCCCAGCTACAGCAACTGGCCGATGACGGACTCGATCCGGCCCGCTACGACCTGCCGGGCGATGGCCGTTACGTCAACGTGGCCTGTACCGACATCGCCATCAGCCAACGCTACCTGCAAGCGCTGCATGAGCTGCGTTTCGGCTACCTGCCGCAGAACCGCCTGGAGCCGATTTGGAAGGCCAATCCGCAGTTGCCGGACCGTCAGGCCATGGTGCTGCACTTCGCCGTCGCCGGCTTGCGCGACCCCGCCCAGGCGTTCGAACAGGCGCGGCCGCCCTTGGACCTGTATCGCAACCTGCGCGAACTCTACGCCCGGCAACGGCAACAACCGCTGGCTGACTGGCAGTCAGTGCCGGCCGGCCCATTGCTGCAACCCGACAAACGTGACGCCCGCGTGCCCGCACTGGCCCGGCGCCTGTTCAACGAAGGCTACCTGAGCGTGCCTCCGCTGGAAGCCGATGAGCACTACAGCCCGAGCCTCGTGGAGGCGATGAAAAGCTTCCAGCTCCACCATTCACTGCAAGCCGATGGGGTAGTGGGGCCGTGGACGGTTACCGAGCTGAACGTCAGCCCGGCCATGCGCCGCGAGCAATTGCGGATCAACCTGGAGCGCATGCGTTGGTTGGCTCAGGACCTGGAGCCCGACAGCGTGCTGGTCAACGTGGCGGCGGCGCAGCTGACGGTCTACCAGGCTGGCGCCCCGGTATGGCAGACCCGGACCCAGGTTGGCCGCGCCGAACGCCAGACACCGCTGATCAAGTCGCGTATCACCCGACTGACGCTGAACCCGACGTGGACCATTCCGCCGACGATCATGCGCGAGGACAAACTTCCCGAGATCCGCCGCGACCCGGAGTTTCTCACCCGGCACAACCTCAAGGTGATCGATCGCGATGGATTGCCCCTGGCGGTGGAAAATATCGACTGGGATCACCCTGGCAATCTGATGCTGCGCCAGGACGCCGGCTCGAAAAACCCCTTGGGTAAATTGGTCGTGCGCTTCCCCAACCCGTTTTCGGTATACCTGCACGACACGCCCAGCCAGGCACTTTTCAGCAAAGGCCCGCGGGCGTTCAGCTCAGGCTGCGTACGCATCGAGCAAGTCATGCACCTGCGCGATCTGCTGGTGACCCCGGCCGAACGCACGCGCACCGACACCTTGCTGGCAAGCGAGTTGACCCATGAATTCAGGCTGGCCAAGCCGATGCCGATCCTGCTTGGATACTGGACAGTGCAAGCGGACAGCCAGGGGCGGGCGGTGTATATCCCGGATATCTACCAGCGCGATGTGTCCCTGTCTGCCGCCGACCGTCGAGCACTCTGAMFKKSACYLSLLLLVAPLVATAEDGDPAQAQTTLAQLSVNCPELAGGVDFPTVMSLQALYQQNAGQAIWADDGRLQALQAQLQQLADDGLDPARYDLPGDGRYVNVACTDIAISQRYLQALHELRFGYLPQNRLEPIWKANPQLPDRQAMVLHFAVAGLRDPAQAFEQARPPLDLYRNLRELYARQRQQPLADWQSVPAGPLLQPDKRDARVPALARRLFNEGYLSVPPLEADEHYSPSLVEAMKSFQLHHSLQADGVVGPWTVTELNVSPAMRREQLRINLERMRWLAQDLEPDSVLVNVAAAQLTVYQAGAPVWQTRTQVGRAERQTPLIKSRITRLTLNPTWTIPPTIMREDKLPEIRRDPEFLTRHNLKVIDRDGLPLAVENIDWDHPGNLMLRQDAGSKNPLGKLVVRFPNPFSVYLHDTPSQALFSKGPRAFSSGCVRIEQVMHLRDLLVTPAERTRTDTLLASELTHEFRLAKPMPILLGYWTVQADSQGRAVYIPDIYQRDVSLSAADRRALPGPT0023755_1264DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-L|D_TRANSPEPTIDASE_ACTIVITY,PGPT0023755-ycbB-K21470NANA
D1-35_04101777hypothetical proteinATGCAGACAAACGAAACCGGACGGGATGCCGCAAACGAACGCCACCGCAAGCTGCCTTCACCTGTATCGGCCTTCTTGCGCCGATTCTGCCTGGTCGTGACTGGCCTTGGCATCCTGTGCAGCCCGGCGCTGGCCGAAAAACTCAACACCCAGCCTCTTTACAACAGCCTCGCCCACGCCGCGCCGGAACTCAATCCCCAAGCGCTGAAAAGTGCCCTGAGTGCGATGCAGTGCGCAGTTGCCAACGGTGCTCGACAGGCTCGCCACCTGGCGGTGATCGATTATTCGCAACCTTCGACGGCCCGGCGCTTGTGGATCTTCGACCTGCGCCAGAAAAAGCTGGTCCTGCGTGATCTCGTGGCCCACGGGCAGAAATCCGGGGAAAACTTCGCCACCCAGTTTTCCAACCGACTGGGCAGCTATCAATCCAGCCTGGGACTGTTCCGCACCCAGGAAAGTTATCAGGGCGCCCATGGTTATTCGCTGCGCATGGACGGCCTGGAGCCCGGATTCAATGACCAGGCGCGCGACCGCGCGATCGTCATCCACGCCGCTGATTACGTGAACCCGCTCTGGAGCGTGCGCCAGGGCCGCATCGGCCGCAGCCAGGGCTGCCCGGCCGTGCGCCCGCAAGTAGCGCGCCAGGTGATCGACAAGCTCAAGGGCGGGCAGTTCATGTTTTCCTGGTACCCGGATCCGGCGTGGCTCAAGCGTTCGGCCTATCTCAATTGCCAGGCGCAGCAGGTGGCGAGCATCCTCGCGACCAGCGGGGGCTGAMQTNETGRDAANERHRKLPSPVSAFLRRFCLVVTGLGILCSPALAEKLNTQPLYNSLAHAAPELNPQALKSALSAMQCAVANGARQARHLAVIDYSQPSTARRLWIFDLRQKKLVLRDLVAHGQKSGENFATQFSNRLGSYQSSLGLFRTQESYQGAHGYSLRMDGLEPGFNDQARDRAIVIHAADYVNPLWSVRQGRIGRSQGCPAVRPQVARQVIDKLKGGQFMFSWYPDPAWLKRSAYLNCQAQQVASILATSGGNANANANANA
D1-35_04102954rlmL_2Ribosomal RNA large subunit methyltransferase K/LATGAACCCTCAAGCCCTTCAAACATTGCAGAGCCTTTTGCTGACGGCGCTGGAATCGGCGCCCGACGAAACCCGTCGCCTGTTCCATGGCCGCGGGCGCTGCTGGCCGGGGCTGGAACAGATCACCGTCGACTGGCTGCAAGGCGTGGTGTTGGTCTCGCTGTTCAAGGAACCCGATCCTACGCAACTCGATGACCTGTTCGCCATGCTGCGCACCCTCGCCTCCTTGCCCGCCTGGCAACACAGCGGCGCCCACACCCTCGCGGTGCAACATCGGTACCTGCCCGACAGCCTGACCCAATGGTTGGTGGGCGAACCGATCGATGAATGGACCCTGACCGAAGGCGGCCTGCGTTATCGGATCGACCTGGGCAAAAAGCAGAACAACGGCCTCTTTCTCGATATGCGCTATGGCCGCGACTGGGTGCGCGCTCACGCCCAAGGCAAGCGCGTGCTCAACCTGTTCGCCTATACCTGCGGTTTCTCGGTGGCGGCCATCGCCGGCGGTGCCCGCCACGTGGTCAACCTGGACATGTCCCGCGCAGCCCTGAGCCGTGGTCGTGACAATCATCGCCTGAACGGCCATGACCTGGGCCAAGTGAGCTTTCTGGGGCACGACCTGTTCAAATCCTGGGGCAAGGTGATCAACAGCGGGCCCTATGACCTGGTCATCATCGACCCGCCCACGTTCCAGAAAGGCAGCTTCCTGCTGACCAAGGATTATCAGCGAGTGCTGCGCCGCCTGCCGGAGTTGCTGACCGCCGCTGGTACGGTCCTGGCGTGTAGCAACGACCCGGCGACCGGCCCCGGCTTCCTCATCGAAGGCGTCATGCGCGAGGCGCCTGGCCTGACGTTCGAAGAGCGGTTGGCAAACCCTCCGGAGTTTCCAGATGCGGACCCCGCCTGTGGCTTGAAGGCCTTGGTGTTCAGGCGTGACGACTCGGCCATCGGCTGAMNPQALQTLQSLLLTALESAPDETRRLFHGRGRCWPGLEQITVDWLQGVVLVSLFKEPDPTQLDDLFAMLRTLASLPAWQHSGAHTLAVQHRYLPDSLTQWLVGEPIDEWTLTEGGLRYRIDLGKKQNNGLFLDMRYGRDWVRAHAQGKRVLNLFAYTCGFSVAAIAGGARHVVNLDMSRAALSRGRDNHRLNGHDLGQVSFLGHDLFKSWGKVINSGPYDLVIIDPPTFQKGSFLLTKDYQRVLRRLPELLTAAGTVLACSNDPATGPGFLIEGVMREAPGLTFEERLANPPEFPDADPACGLKALVFRRDDSAIGNANANANANA
D1-35_041031452stpMultidrug resistance protein StpATGTCGCAATCACATCCCTCTCACCCGCGCCAGCGCTGGCGCGCATTGATCGTCTTGTGCCTGGGCGTGCTGATGATCGTGCTCGACGGTACGGTGGTGAATGTCGCCCTGCCCTCGATCAAGGACAACCTGCAGTTCAACGACACGGCACTGGCCTGGGTCGTCAATGCCTACTTACTGACCTTCGGCGGTTTCCTGCTGCTCGGCGGTCGCCTGGGCGACCTCTATGGCCATCGCCGCCTGTTCACCTTGGGATTGGCGGCGTTCACCCTCGCGTCGCTGGCCTGTGGACTGGCGTCATCGCAGTCATGGTTGATCATTGCCCGGGCTGTTCAAGGCCTTGGCGGCGCGGTGGTCACGGCGGTGGCCTTGTCGTTGATCATGGACCTGTTCACGGAACCCGGCGAGCGTGCCCGGGCGATGGGCGTGTACAGTTTCGTCTGCGCTGCAGGCGGCAGTATCGGTGTGCTGTTGGGTGGTTTGCTGACCGATCTGCTGAGTTGGCACTGGATCTTCCTGGTCAACCTGCCTGTCGGCCTGATCGTCCTCGGCCTGTCCCTTAAATTGCTGCCCGCCATGCGCGCGCAAAGCAGTGGGCAACTGGACGTCACCGGCGCAGTAACCGCCACCCTGTCGTTGATGATCGCCGTATACGCCGTGGTCAACGGCAATGAGCAGGGCTGGACTTCCCTCCACACGCTGGGCCTGCTGGCAGCCTCGGCCTTGTTGATGCTGGGCTTCATCATGCTCGAACGGCGGATTGCCCATCCGTTGATCCCGATGGGCCTGTTTCGCCTGCATAACCTGCGCATCGCCAATCTGCTCGCCGTGCTCTGGGCCGCGTCGATGTTCGCCTGGTTTTTCCTGTCGGCGCTCTACATGCAATTGGTGCTGGGCTATACGCCGATGCAAGTGGGATTGGCCTTCCTGCCAGCCAACGTGATCATGGCGATTTTTTCCCTGGGTCTGTCCGCGCGGCTGGTGATGCGCTACGGCACACGAACGCCGTTGGCGGCAGGCCTGTTGCTCGCCGCCATCGGCCTGGCACTGTTTGCACGGGCTCCGCTGGACGGCCAGTTCGTCGGCGACGTTCTGCCGGGCATGTTGCTGCTGGGGTTGGGCGCGGGGATGGCGTTCAATCCGATGTTGCTCGCGGCGATGAGCGACGTGGAACCCAAGGATTCCGGCCTGGCGTCAGGCGTCGTCAATACGTCGTTCATGATGGGCGGCTCGGTGGGCCTGGCGGTGCTGGCGAGTATTGCCGCGTACCGGACCAAGACGGCTGCGTCCGATCTCGCGCCGCTGGTTGCGCTCAATAACGGGTATCAGCTGGCGTTTCTGATCGGCGCAGCGTTCGCGCTGACCGCGGCCGTACTGGCGGGACTGCTGCTGCGAAGCACCGCGACGGGACAGCAGGCGAAGGTCGACTCCGCAGCCCATCCTGCCCCTTGAMSQSHPSHPRQRWRALIVLCLGVLMIVLDGTVVNVALPSIKDNLQFNDTALAWVVNAYLLTFGGFLLLGGRLGDLYGHRRLFTLGLAAFTLASLACGLASSQSWLIIARAVQGLGGAVVTAVALSLIMDLFTEPGERARAMGVYSFVCAAGGSIGVLLGGLLTDLLSWHWIFLVNLPVGLIVLGLSLKLLPAMRAQSSGQLDVTGAVTATLSLMIAVYAVVNGNEQGWTSLHTLGLLAASALLMLGFIMLERRIAHPLIPMGLFRLHNLRIANLLAVLWAASMFAWFFLSALYMQLVLGYTPMQVGLAFLPANVIMAIFSLGLSARLVMRYGTRTPLAAGLLLAAIGLALFARAPLDGQFVGDVLPGMLLLGLGAGMAFNPMLLAAMSDVEPKDSGLASGVVNTSFMMGGSVGLAVLASIAAYRTKTAASDLAPLVALNNGYQLAFLIGAAFALTAAVLAGLLLRSTATGQQAKVDSAAHPAPNANANANANA
D1-35_04104327yhjQCOG1145putative cysteine-rich protein YhjQATGAACAGCCGTTATCAAACCTGCATCGACGAGTGCCTGGCCTGCGCCATGGCCTGCGAGGCCTGCGCCAGTGCGTGCCTGCAAGAGCAAAACGTCCAGATGATGGCGCGTTGCATCGAGCTGGACCGCGACTGCGCCGACTTGTGCCGTCTCGCGGCAACGCTGATGCAGCGCGACAGCCGGGTGGCGACGGATCTTTGTATCGTCTGCGCGAGCATCTGCCGTGCGTGTGGCGAAGAATGCGCGAAGCACGAAGCGGGTCATTGTCAGGATTGCGCCAAGGCCTGCCAGTCTTGCGCCGAGGCCTGTGAGCGGATGGCCGCCTGAMNSRYQTCIDECLACAMACEACASACLQEQNVQMMARCIELDRDCADLCRLAATLMQRDSRVATDLCIVCASICRACGEECAKHEAGHCQDCAKACQSCAEACERMAANANANANANA
D1-35_04105603hypothetical proteinATGGATCAGTTGTTGCCGTTTGCCTTGTTTGCGTTTGTCGCCTCCATCACCCCGGGTCCGACCAATATCCTGGTGCTGAGCCATAGCTCGCGCTTCGGCCTGGCGACCACCTGGCCGATCATCCTCGGCGCCTGCGCGGCTGCCGCGTTACTGGTGTTGTTGGTGGGCACCGGGCTGGGCGACGTGCTGGCGCGACATGCGGCGATCCAAACGGCGCTGTCCTGGGCCGGCATCGCCTGGCTGAGCTGGATGGCCTGGCAGATTTTCAGCGCGCCGGCCGAGGCCATCGATCCAGACCGACCGGTCGAAGGCCCACGGCTCGGCCTGGCGGGCGCCGCCGGGTTGCAACTGGTGAACCCGAAGACCTGGATGATGGCCCTGGCGGTGGTCAGCGTATTCGCCGGCGCCGAGGCAGACCGTACGGTGCGGGTGTTCTGGCTGTCCCTGGCGTTCTTTGCCATCTCCATTCCCTGCATGACCGCCTGGGCCTACCTGGGGCGTGGCGCGGCTAAGTTCTGCCGTTCCGCCGTGGCGATGGGGCGCTTCAATCGCGTCATGGCCGTGTTGCTACTGGTGTCGGCGTGGTTGACGCTGGTGGTCTGAMDQLLPFALFAFVASITPGPTNILVLSHSSRFGLATTWPIILGACAAAALLVLLVGTGLGDVLARHAAIQTALSWAGIAWLSWMAWQIFSAPAEAIDPDRPVEGPRLGLAGAAGLQLVNPKTWMMALAVVSVFAGAEADRTVRVFWLSLAFFAISIPCMTAWAYLGRGAAKFCRSAVAMGRFNRVMAVLLLVSAWLTLVVNANANANANA
D1-35_04106837rhaS_11HTH-type transcriptional activator RhaSATGACAGCGCGCAACTGGATCGATCTCAAGCAGGACGCCACGTCCGGCATCGAGACCGTGCGCGCGCATTTCGAGGGGCACGCCTACGATCCGCACTGGCACGATGCCTATCTGGTGGGCGTGACGGAGCAGGGCGTGCAGCAGTTCCATTGCCGTCAGCAGCAACACAACAGCACGCCGGGCAAAGTGTTCCTGCTTGAACCGGGGGAGTTGCATGACGGTAACGCGCCGCACGAAAACGGGTTTACCTATCGCACCTTGTACCTGGAGCCGCAATGGCTGGAGCGCGAACTGCGCTCGTTGTTCGAGGATGCGCCAGACAACGCGCAACTGGGCTTTGCCGTCACGCTGAACGATGACGCGCGGCTGGCAAGGGCTACCGCTGCGGCTTTCCAGAGCCTGCACGAACAGGACATCCTGATCGTCCGCCAGACCGCCCTCGACACGCTGCTGTCGAACCTCACTCAACACCTGCATTGGCGAACACGGATCAATCCCGACCCGCGTCTGCCACTGGTCGCCCAGCAGGCCCGGGATTATTTGCACGGCCACCTGAGCGAGGACATCAGCCTGGACGACCTGGCGCGCGTCACCGGCGTCGATCGTTTTCGCCTGAGTCGTGCGTTCAAGGCGGCCTTCGGCCTGGCGCCCCACGCGTATCTGATCCAGCTGCGCCTGGCCCGGGCGCGGCGTCTGCTGGCCCGTGGCGAAAGCGCCGTGGCGGTGGCCGCCATGCTCGGCTTTGCCGACCAGAGTCACCTCGGCCGCTGGTTCCAGCGCGCCTATCGAATGAGCCCGGTGGACTACCGCAAGCGCTGCTCAATTGTTCCAGACTGAMTARNWIDLKQDATSGIETVRAHFEGHAYDPHWHDAYLVGVTEQGVQQFHCRQQQHNSTPGKVFLLEPGELHDGNAPHENGFTYRTLYLEPQWLERELRSLFEDAPDNAQLGFAVTLNDDARLARATAAAFQSLHEQDILIVRQTALDTLLSNLTQHLHWRTRINPDPRLPLVAQQARDYLHGHLSEDISLDDLARVTGVDRFRLSRAFKAAFGLAPHAYLIQLRLARARRLLARGESAVAVAAMLGFADQSHLGRWFQRAYRMSPVDYRKRCSIVPDNANANANANA
D1-35_04107426hypothetical proteinATGAAAACCAAAGCGGTACTCACCGAACAGGACGTTGCCCAGTTGCTGGTAGCAGCCAAAGAGCTGGCCCACCAGCGTCAATGGGCCGTATCGGTCTGTGTGGTCGACGATGGCGGGCATCCCTTGGGGCTGTTGCGCCTGGACGGCGCCTCGCCCTTGTCAGCCTACATCGCCACCGAAAAAGCCCGCACCGCCGCCATGGGCCGGCGGGACAGCAAGGTTTTTGAAGACATGATCAATGGTGGCCGCATCGCCTTCCTCAGCGCGCCGCACTTGCAAGGCATGCTCGAGGGTGGCGTGGCGATCCGTCACGACGGTCAGTGCATCGGCGCCATCGGCGTGTCCGGGGTCAAGGCCGAGGAAGATGCGGAACTGGCGCGATTGGCGGTGGAGACGGTGTTGCCGGTGATCACGCCGGATGCCTGAMKTKAVLTEQDVAQLLVAAKELAHQRQWAVSVCVVDDGGHPLGLLRLDGASPLSAYIATEKARTAAMGRRDSKVFEDMINGGRIAFLSAPHLQGMLEGGVAIRHDGQCIGAIGVSGVKAEEDAELARLAVETVLPVITPDANANANANANA
D1-35_04108783argT_5COG0834Lysine/arginine/ornithine-binding periplasmic proteinATGAACGTTAAACGCATTGCACTCAAGCTGGGCTTCGTCTCGCTGCTGGCATTCGGCGCCAATCTGCACGCCGCCGAAACCTCGCTGCGCATCGGCATCGAGGCGGCATACCCACCCTTCGCCTCGAAAACCCCGGACAACGCCATCGTCGGCTTCGACTATGACATCGGCCAGGCGCTTTGCGCCGAGATGAAGGTTCGTTGCGTCTGGCAGGAGCAGGAGTTCGACGGCTTGATCCCGGCACTCAAGGTGAAAAAAGTCGACGCGGTGATTTCTTCCATGTCGATCACCCCGGAGCGGATGAAGTCGGTGGACTTCACCGACCGTTATTATCGGATTCCGGCGCGGCTGGTATTTCGCAAGGGCAGTGGCATCCAGGATATTCCCGCGCAGCTCAAAGGCAAGCGGATCGGCGTGCAGCGGGCGACCAACTTCGATCGTTACGTTACCGACAAATTTGCCCCGGCCGGGGCCGAGGTGATCCGTTATGGCTCGCAAAACGAAGTCTTCCTCGACCTGCTGGGCGGACGCCTGGACGCGACGATGGCCAGTTCGGTGGCCATCGACGAAAGCCTGCTCAAGCGTCCTGAAGGCAAGGATTTCGAATTTGTTGGCCCAAACTTCGTCGAAGAACAATACTTCGGCACGGGCATTGGAATCGCCGTGCGCAAGAATGATCCGCTGGCGGGCCGTTTCAACCAGGCGCTGGCGACCCTTCGCGCCAACGGCACCTACGAGCGGATTCGCCAGAAGTACTTCGATTTTGATATCTATGGCGAATGAMNVKRIALKLGFVSLLAFGANLHAAETSLRIGIEAAYPPFASKTPDNAIVGFDYDIGQALCAEMKVRCVWQEQEFDGLIPALKVKKVDAVISSMSITPERMKSVDFTDRYYRIPARLVFRKGSGIQDIPAQLKGKRIGVQRATNFDRYVTDKFAPAGAEVIRYGSQNEVFLDLLGGRLDATMASSVAIDESLLKRPEGKDFEFVGPNFVEEQYFGTGIGIAVRKNDPLAGRFNQALATLRANGTYERIRQKYFDFDIYGEPGPT0020680_108DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ARGININE_TRANSPORT,PGPT0020680-aotJ-K10022NANA
D1-35_04109351rutC_2Putative aminoacrylate peracid reductase RutCATGACCATTCAACGTATCGAAAGCAACCCGCGCCTGAGCCGCAGCGTCGTGCACAACGGCGTGGCCTGGCTCAGCGGCATCGTCGCCGCCGATTGCAACCAGGACATCCAGGGCCAGACCCGCCAGGTGCTGCAGCGGATCGACGAATTGCTCGCCGCGTCGGGCAGCGACAAGCGCCGCCTGCTCAGCGTGCAGATCTGGATGAAAGACATGGGCCGCGATTTCGCTGCGATGAACGCAATCTGGAGCGACTGGGTCGACGCCGCGCACACCCCGGCGCGAGCCACCGCACAGGTGGCGTTCGATGACCCGCAGATCCTGCTGGAACTGATCGTGACCGCGGCGGTGTAGMTIQRIESNPRLSRSVVHNGVAWLSGIVAADCNQDIQGQTRQVLQRIDELLAASGSDKRRLLSVQIWMKDMGRDFAAMNAIWSDWVDAAHTPARATAQVAFDDPQILLELIVTAAVPGPT0020030_15DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_METHIONINE_DEGRADATION,PGPT0020030-ridA|tdcF-K09022NANA
D1-35_041101374hcnB_3Hydrogen cyanide synthase subunit HcnBATGAGTAAAGCCGTGATCGACTTGATCATCATCGGTGCCGGACCGGCCGGCATGAGCGCCGCCATCGAGGCCAGGGACCATGGATTGTCGGTCGTGGTGCTGGATGAGCAGGCCAGTCCTGGCGGGCAGATTTATCGCCAGGTGCTTCAAGCCGATGCCCGCAGCCGCGCGGTGCTGGGCGAAGACTACAGCGCCGGTGCGCAGCTGGCGGCGGATTTTCTCCAATGCGGAGCTCGTTACCTGCCCAACGCGGCGATCTGGCAAGTCACCCCCCAGCGTGAGGTGCACTACCTGAACGACGGCTGCGCAGAGGTTTTGCGCGGGCGCAATCTGCTGATCGCCACGGGCGCCTTCGAACGGCCGATACCAATTCCCGGCTGGACCTTGCCTGGGGTCATGACGGCCGGTGCGGGGCAGATCCTGCTCAAGAGCGCGGCGCTGGTACCGGCTGGGCCGGTGGTCCTGGCGGGTTGCGGTCCGCTGTTGTACCTGCTGGCGGCGCAGTACCTGCGCGCCGGCATTGCCGTCGAGGCGCTGGTCGATACCAGCCACCGTCGCGAGCTGCTGCGGGCCTGGCGACTGATTCCCGGTGCGTTGCGCGGCTGGCGCGACTTGTTCAAGGGCGTGGGGCTGCTGGCCGAGTTGAAGCGTGGCGGCATCCGCCACTTTCGCGGTGCCGGCAACCTGCGTGTCGAGGGTGAGGACTGCGCCAGTGCACTGAGCTTCGATTGTGGAGGGCAGCACTTGCGAGTGCCCGCCGGATTGATTTTATTGCACCAGGGTGTGGTTCCGCACACGCAGATCAGTTGGTCGTTGCGCCTGGAGCATGACTGGAGCGAGGCGCAGCTGTGCTGGATTCCACGGCGCGATGGCTTCGGCCAAACCAGCGCACCGGGCATTTTCATCGCCGGTGACGGCGCTGCGATTGGCGGCGCGCAGGTGGCGCGCCTGGAAGGGCGACTCGCTGCGATGGCGATTGCCGGTGTTTCCCGTGGAGCACGCGGCCTTGAGAAAGGCCTGCGTCGTGCTCGTGCTGCGCGGCCCTTGATCGATGCGTTGTATCGCCCCCCGGCAGAAAGTTGCGTCCCACCCGACGACGTCATCGTGTGTCGCTGCGAAGAAGTCACGGCTGGCGCTATCCGCCGCTACGTCGACCTCGGTTGCCTGGGTCCCAACCAGACCAAAGCCTTCAGCCGTTGCGGCATGGGCCCGTGCCAAGGGCGCCAATGCGGCTTGAGCGTCACCCAGATCATCTCCGCCCAGCGCCGCGTGTCGCCCGCTGAAGTCGGTTACTACCGCATCCGTCCCCCCCTCAAACCCATCACGCTGGCCCAACTGGCCGGCGAACGTCACTGCGTCGAGGAACCGTCATGAMSKAVIDLIIIGAGPAGMSAAIEARDHGLSVVVLDEQASPGGQIYRQVLQADARSRAVLGEDYSAGAQLAADFLQCGARYLPNAAIWQVTPQREVHYLNDGCAEVLRGRNLLIATGAFERPIPIPGWTLPGVMTAGAGQILLKSAALVPAGPVVLAGCGPLLYLLAAQYLRAGIAVEALVDTSHRRELLRAWRLIPGALRGWRDLFKGVGLLAELKRGGIRHFRGAGNLRVEGEDCASALSFDCGGQHLRVPAGLILLHQGVVPHTQISWSLRLEHDWSEAQLCWIPRRDGFGQTSAPGIFIAGDGAAIGGAQVARLEGRLAAMAIAGVSRGARGLEKGLRRARAARPLIDALYRPPAESCVPPDDVIVCRCEEVTAGAIRRYVDLGCLGPNQTKAFSRCGMGPCQGRQCGLSVTQIISAQRRVSPAEVGYYRIRPPLKPITLAQLAGERHCVEEPSNANANANANA
D1-35_04111330hypothetical proteinATGTCGGCTGAAAGCCTGTTCCGGCCTTTGGCCGTCTCGCAGAACCAGGTACTGATCGAGTTCGACGGCAAGCCCTTGAGCGTGCCGGGTAATGTCTGCCTTGCGGCGGCGCTGCTCGCCAGCGGAGTTCGGCAAAGCCGTGAAAGCGCTGTCAGCGGCAGGCCCGCTGCGCCGTACTGCCTGATGGGCGTGTGCTTCGAATGCCTGGTGCAAGTGGACGGCCAGGCCAACGTCCAGTCGTGCCTGGTGGCGGTGCGCCCGGGCATGCGTGTGCAACGCCAACGCGGCGCCGTCAGCCTGGCGCCGAACGAGGAGGGGACCGATGAGTAAMSAESLFRPLAVSQNQVLIEFDGKPLSVPGNVCLAAALLASGVRQSRESAVSGRPAAPYCLMGVCFECLVQVDGQANVQSCLVAVRPGMRVQRQRGAVSLAPNEEGTDEPGPT0020400_52DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0020400-lhpD-K22550NANA
D1-35_041121125hcnC_1Hydrogen cyanide synthase subunit HcnCATGCAAAAAACTGATGTGATCATCGTAGGTGGCGGCCTGGTGGGTATGTCCATTGCCTATGGCCTGGCCCTGCTCGGGCGCCAGGTGAGCGTGCTCGACGAGGGCGACGACGCGATTCGCGCCGCCCATGGCAACTTCGGTTTGCTCTGGGTCCAGGGCAAGGGCTACGGAATGAGCCCGTATGCACAATGGACCCGTGATTCGGTGGCGCTGTGGCCGCGCTTCGCCGAAGCGCTGCAAGCCGACACGGGTATCGATATCCATCTGCGCCAGCAGGGCGGTTTCCAGTTGTGCCTGAGCGAAGCGGAAATGGCCGAGGAAGCCGCGCGCCTGGCCTGGCTGCGCGAGGCCCTCGACGGTGATTATCCCTATGAGCTGCTGGACAGAGCACAACTGCGCGGCCGTCTGCCGGGTGTCGGCCCCGACGTGGTGGGCGGCTGTTTCTCGCCCATGGATGGTCACGTCAACCCGCTCAAGCTGTTGCGTTCGCTGTATGCGGCCTGCAAAGCGCGTGGCGTGACGTTGATCAATGGTCACCGCGTCGAGGCCATCGAACCGCACGCCACGGGTTTGCAACTGCGCGCCGCCGATCAGCGCTGGTCTGCCGCTCAGGTTGTCCTGGCCGCGGGCCTGGGCAATCGGGGATTGGGCGAAAGGGTCGGATTGGACGTGCCCGTGCAACCCAATCGCGGGCAGATCCTGGTGACCGAACGACTCAAGCCGTTTCTCCATTACCCCACGACGTATGTGCGCCAGACCGACGAGGGCACCGTGCAACTGGGCGATTCCCATGAGTCGGCCGGCTTCGACGACAGCACCGGCAGCCAGGTCATGGCCGCGATCGCCCGACGCGCCGTGCAGTGTTTCCCACTGCTGGGTGACGTACGCCTGGTGCGGGCCTGGGGCGCGTTGCGGGTGATGAGCGCCGACGGGTTTCCGATTTACGAAATGCCCCAGGGCTGCCCGGGCCTGGCGGTCGTCAGTTGCCACAGCGGCGTGACCTTGGCCGCTGTTCACGCCCTGCGCCTGGCCCCGTGGATTGCCGGCGAGTTCGATGACCCAGCCGTCAAGCCATTCGGCCTGCAGCGCTTCAATTCGCCAACCGAGGTGCGTCATGTCGGCTGAMQKTDVIIVGGGLVGMSIAYGLALLGRQVSVLDEGDDAIRAAHGNFGLLWVQGKGYGMSPYAQWTRDSVALWPRFAEALQADTGIDIHLRQQGGFQLCLSEAEMAEEAARLAWLREALDGDYPYELLDRAQLRGRLPGVGPDVVGGCFSPMDGHVNPLKLLRSLYAACKARGVTLINGHRVEAIEPHATGLQLRAADQRWSAAQVVLAAGLGNRGLGERVGLDVPVQPNRGQILVTERLKPFLHYPTTYVRQTDEGTVQLGDSHESAGFDDSTGSQVMAAIARRAVQCFPLLGDVRLVRAWGALRVMSADGFPIYEMPQGCPGLAVVSCHSGVTLAAVHALRLAPWIAGEFDDPAVKPFGLQRFNSPTEVRHVGNANANANANA
D1-35_04113906occROctopine catabolism/uptake operon regulatory protein OccRATGAACCTCCGCCAGCTGGAAGCGTTTCGCGCGGTGATCCTCGGCCAGACGGTGACCCGCGCCGCCGAAATGCTGCACATCTCGCAACCCGCCGCGACCCGGTTGATTGCCAGCCTGGAAGAAGACATCGGCTTCAGCCTGTTCGACCGTATCAAGGGCCGGCTGCAACCGACCGCCGAGGCGATGACGCTGTATCAGGAGGTGCAGCGCTCGCTGCTGGGGGTGGAGCGGATCGCGCGCACGGCCCAGGACATCCGCAACCTCAAGCGCGGTTCGCTGCACATTGCCTGCGCGCCGGCCATGGGTTTGTCGTTCCTGCCGCGGGCGATTGCCGCGTTCATGGCCGAGCATGAGCAGGTGCAGATCTCGCTGGTGGTGCATTCCTCGCGGGAAGTCGTCGACCTGGTGGTAGGCCAGCGCTGTGACCTGGGCCTGATCGTCCTGCCCAATACCTACCCGAGTCCCCGCGCCGAAAAGCTGCTGGCTACGCGCATGCTCTGCGCCCTGCCCGCCGGCCATCGGCTACAGGACCGCGCGTCCATCAAGCCGGAAGACCTGCAGGGCGAACGGTTCATTTCCTATCCGCAATCCATCGGCTCCCGGCAACACATCGACGCCATTTTCGCCGCTCACGGCGTCGAGCGTGAGCTGCGCCTGGAAACCCAATTGTCCCAACCGATGTGCACTTTTGTTGAGCAAGGCCTGGGCGTCGCCCTGGTAGACGCCATCAGTGCCGTTGAATACCGCGGCAACGGCATCGTCTTCCGTGCCTTCGAACCGGCCATTGAAATGGACTTCAGCATGCTGCTGCCAATCCATGGACCGCTGTCGAAACTGCAGGCGCGCTTCCTCGAACACATGCAGCGATTCATCGAGGCGCAAGTGCCGGCGGCCTATCGGTTTTAAMNLRQLEAFRAVILGQTVTRAAEMLHISQPAATRLIASLEEDIGFSLFDRIKGRLQPTAEAMTLYQEVQRSLLGVERIARTAQDIRNLKRGSLHIACAPAMGLSFLPRAIAAFMAEHEQVQISLVVHSSREVVDLVVGQRCDLGLIVLPNTYPSPRAEKLLATRMLCALPAGHRLQDRASIKPEDLQGERFISYPQSIGSRQHIDAIFAAHGVERELRLETQLSQPMCTFVEQGLGVALVDAISAVEYRGNGIVFRAFEPAIEMDFSMLLPIHGPLSKLQARFLEHMQRFIEAQVPAAYRFNANANANANA
D1-35_041141086tsaM1Toluene-4-sulfonate monooxygenase system iron-sulfur subunit TsaM1ATGTACCCCAAGAACGCCTGGTACGTTGCCTGCACCCCGGACGAGATTGCCGACAAGCCGCTGGGCCGACAGATCTGTGGCGAGAAAATGGTTTTCTACCGCGGGCAAGCCGGCAAAGTCGCCGCCGTCGAGGACTTCTGTCCCCATCGAGGCGCACCGCTCTCGCTCGGTTATGTCGAGAATGGCAACTTGGTGTGTGGCTACCATGGGCTGGTCATGGGGGACGACGGCAAGACTGTCGAGATGCCCGGGCAACGGGTTCGGGGATTTCCTTGCAACAAGACCTTTGCCGTGCAGGAGCGCTACGGGTTTATCTGGGTCTGGCCGGGTGAGCAGGCATTGGCCGACCCCTCGCTGATCCACCCTCTGGAATGGGCGGAGAATCAGGAATGGGCGTATGGCGGCGGGCTCTTCCATATCCAGTGCGACTATCGCCTGATGATCGACAACCTGATGGACCTGACCCACGAAACCTACGTGCATGCCTCGAGCATCGGCCAGAAGGAAATCGATGAGGCACCGCCAGTGACCACGGTCGAAGGCGACGAGGTGGTCACCGCCCGCCACATGGAAAATATCATGGCTCCGCCCTTCTGGCGCATGGCGCTGCGCGGCAACAACCTGGCCGACGACGTACCGGTGGATCGCTGGCAGATCTGCCGATTCACCCCGCCCAGCCACGTAATGATCGAAGTCGGCGTGGCCCATGCCGGCCACGGTGGCTATCACGCCGCGCCGCAATGCAAGGCGTCGAGCATCGTCGTTGATTTCATCACGCCGGAAACCGAGACCTCCATCTGGTACTTCTGGGGCATGGCCCGCCACTTCCAGCCTCAGGACGAAGCGCTGACCGCGAGTATTCGCGAGGGCCAGGGCAAGATCTTCAGCGAAGACCTGGAGATGCTCGAACGCCAGCAGCGCAACCTGCTGGACCATCCGCAACGCAATCTGCTCAAGCTCAACATTGATGCCGGCGGCGTGCAGTCGCGTCGGGTACTGGAACGCTGGATCGCCCGCGAGCGTGAGCAACAGGCCGCCCTGATCGCCAGTACCCGGCAGCCGCAACACGCGGAGCAACGGCCATGAMYPKNAWYVACTPDEIADKPLGRQICGEKMVFYRGQAGKVAAVEDFCPHRGAPLSLGYVENGNLVCGYHGLVMGDDGKTVEMPGQRVRGFPCNKTFAVQERYGFIWVWPGEQALADPSLIHPLEWAENQEWAYGGGLFHIQCDYRLMIDNLMDLTHETYVHASSIGQKEIDEAPPVTTVEGDEVVTARHMENIMAPPFWRMALRGNNLADDVPVDRWQICRFTPPSHVMIEVGVAHAGHGGYHAAPQCKASSIVVDFITPETETSIWYFWGMARHFQPQDEALTASIREGQGKIFSEDLEMLERQQRNLLDHPQRNLLKLNIDAGGVQSRRVLERWIAREREQQAALIASTRQPQHAEQRPPGPT0005490_29DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005490-vanA-K03862NANA
D1-35_04115951pht2Phthalate 4,5-dioxygenase oxygenase reductase subunitATGATCGAAGTCCAGGTCGCGGCACGCACTATTGAAACCCCGGACATCTGCAGCTACGAGCTGACCAGCATCGACGGTCAGCCATTGCCGGCGTTTACCGCCGGCGCCCATATCGACGTGCATTTGCCCGATGGGCTGGTTCGCCAGTACTCGCTGTGCAACCACCCGGAGGAACGGCATCGCTACCTCATCGGCGTGCTCAGGGATCCCTCGTCACGAGGTGGCTCACGCAGCCTGCATGAACAAATCCAGCCGGGCGCACGGCTGCTGATCAGCGAACCGCGCAACCTGTTTGCCCTGGCCCCTGCGGCCCAGGGCAGCCTGCTGTTCGCCGGCGGCATCGGCATCACGCCGATCCTGTGCATGGCCGAGCACCTCGCCCAGAGCGGCGCTGCGTTCGCATTGCACTACTGTGCCCGGTCCCGGGACCGCGCCGCTTTTGTCCAACGCCTGGAGCAGTCGCCTTACGCCGACCGGGTATTCCTGCATTTCGATGAAGAACCCGCCACGGCACTGGATGCCGTTCGGGTACTGGCTTCGCCCAGCGCCGACCTGCACTTGTATGTCTGTGGTCCTGGCGGGTTCATGCAGCACATCCTCGACACCGCCAAGGCCCAGGGCTGGCAGGAAGCCAATCTGCACCGGGAATACTTCGCCGCGGCGCCGATCGACACCGCAGGCGATGGCCGCTTCTCGGTGAAGCTTGCCAGCAGCGGTCAGGTTTTCGAGGTGCCGGCGGACCGCAGCGTGGTCCAGGTGTTGGAAAGCCATGGCATCGAGGTTCCGATTTCCTGCGAGCAAGGCGTCTGCGGCACCTGCCTGACCCGCGTGCTGGAAGGCGTGCCGGACCATCGGGACATGTTCCTGACCGAAGCCGAGCAAGCCTGCAACGACCAGTTCACGCCGTGCTGTTCGAGGTCGAGGACGCCGTTGTTGGTGCTGGATCTCTGAMIEVQVAARTIETPDICSYELTSIDGQPLPAFTAGAHIDVHLPDGLVRQYSLCNHPEERHRYLIGVLRDPSSRGGSRSLHEQIQPGARLLISEPRNLFALAPAAQGSLLFAGGIGITPILCMAEHLAQSGAAFALHYCARSRDRAAFVQRLEQSPYADRVFLHFDEEPATALDAVRVLASPSADLHLYVCGPGGFMQHILDTAKAQGWQEANLHREYFAAAPIDTAGDGRFSVKLASSGQVFEVPADRSVVQVLESHGIEVPISCEQGVCGTCLTRVLEGVPDHRDMFLTEAEQACNDQFTPCCSRSRTPLLVLDLPGPT0005495_220DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-HYDROXYCINNAMIC_ACID_RESISTANCE,PGPT0005495-vanB-K03863NANA
D1-35_041161362hypothetical proteinATGCTGCTCAAACACAAGATCGTCGCTCTCGGGATCCTGCCGCTGGTCCTGGCGATTGCCGTTATTGGTGCCTTGGTCATCTCGCTCAATCGCCAGTTGGGTGACCAACAGGCGCAGCTGATCGAAGACAGTATCCTGGCCAGTAAACGCGCCGAGCTGAAGAACTACGTAGAGATGGCGCAGAGCCTGATCGCCCCGTTGTACAACGACGGCCAGGGAGATGCGCGGGCACAACAGCAGGTGCTGGAAGAACTGCGCAAGCTCAGCTTTGGCATCAACGGTTATTTTTTCGTCTACGACCGCCAGGGTCGCAGCCTGATGCATGCCCGCCAGTCGGAGCTGGTGGGGCAATATCTCTGGGACATGAAGGATCCTCAAGGCCTGCCCGTCATCCAGGCCTTGCTCAAGAGCGCCGAATCAGGCGAAGGCTTTCAGCGCTATGCCTGGAACAAGCCCTCCTCCGGCCAGGTAACCGACAAGCTCGCCTACGTCGTGATGCTTGATCGTTGGGGCTGGATGCTGGGCACCGGGATCTACCTGGAAGACGTCGAACGCGCCACCCAGCAGGCTCGCGCCGAAGTGGCCCAGGGCATCCACACCACCATGCAGGCCATCGCCGCCATCGCGTTGGTCGCGGTGCTGCTGGTGTTTGCCGGCGGCATCACCCTCAATGTCAGCGAGCATCGCCTGGCCGACAAGAAACTGCAGCGCTTGAACCAGCGTATCGTCAGCTTGCAGGAGGAAGAGCGCTCGCGGGTGTCTCGCGAACTCCACGACGGCATCAGCCAGCTGTTGGTTTCGATCAAGTTCCAGTTCGAACTGGCCAGCCATGTGATCGAGAACGGCCAGGAAAATGGCCTCGGCATCTTGAAGAATGCGACCGATCGACTGGGCGAAGCGATCGGTGAAATCCGTAGCATTTCCCATGATTTGCGTTCCTCGTTGCTCGATACCCTGGGCCTGCCCGCCGCCATCGGCCAGCTCGCGGCGGAATTCGAACAGCGCAGTGGCCTGGAAGTGTCCTACCGAAGCAACGAATTCGACTGTCGCCTGGAAAACGGCGCCCCGGTCTCGCTGTTCCGGATTGCCCAGGAGGCGCTGACCAACATCGAGCGACACGCCGGGGCGAAACGAGTCGCCATCACCCTGTTCGGTTCGGGCCAATCCCTGCGCCTGACCGTGGTGGATGACGGGATGGGCTTCAACGTCCCGCAGGTCGAGCGTGGTCACACCGGCATCGGCCTGCGTAATATCCGCGAACGGGTCGAGCATTTTGGCGGGCGGCTGGAAATGACCTCGGTTCCGGGACGAAGCGAACTGGATATCCTGTTGCCCATGACCCTGTCGGCCACGGAAAGTTGAMLLKHKIVALGILPLVLAIAVIGALVISLNRQLGDQQAQLIEDSILASKRAELKNYVEMAQSLIAPLYNDGQGDARAQQQVLEELRKLSFGINGYFFVYDRQGRSLMHARQSELVGQYLWDMKDPQGLPVIQALLKSAESGEGFQRYAWNKPSSGQVTDKLAYVVMLDRWGWMLGTGIYLEDVERATQQARAEVAQGIHTTMQAIAAIALVAVLLVFAGGITLNVSEHRLADKKLQRLNQRIVSLQEEERSRVSRELHDGISQLLVSIKFQFELASHVIENGQENGLGILKNATDRLGEAIGEIRSISHDLRSSLLDTLGLPAAIGQLAAEFEQRSGLEVSYRSNEFDCRLENGAPVSLFRIAQEALTNIERHAGAKRVAITLFGSGQSLRLTVVDDGMGFNVPQVERGHTGIGLRNIRERVEHFGGRLEMTSVPGRSELDILLPMTLSATESNANANANANA
D1-35_04117633nreCCOG2197Oxygen regulatory protein NreCATGACCCTGCCCCCCGCCATACGCGTCGCCCTGGTCGACGATCACTCGCTGGTTCGTGATGGTATTCGCGCGCTGCTGTCCGTCATGTCTCGCCTGGACGTGGTCGGCGAAGCGGAGAACGGCGCGCAGGCGATCGACATGGTCGGGCGCTGCCAGCCGGACCTGCTGCTGATGGACATCGGCCTGAAGGACATGAACGGCCTCGAGCTGACCCGGCTGCTGGGCAAGCAATACCCCGGCTTGAAGATCCTCATCCTGAGCATGTACGACAATCATGAGTACATCAGTGAATCCGTGCGCGCCGGTGCCAGCGGTTACGTGCTGAAGAATTCACCTTCCAAAGAGATCATTGCCGCCATCGAAGCCATCATCGGCGGCGGCACCTTCTACAGCGCCGAGATCGCCCAGCGCCTCGCCACCGACCCGAACACCGACAGCGAACTGACGCCGCGCGAGAGCCAGGTCCTGGCGAAAATGGTCGAGGGGCTCAACAACAAGGAAATGGCCCGTGAACTGGACATCAGCGTACGTACCGTCGAAACCCACCGCCTGAGCATCCGCCGCAAACTCAATATCGACAAGCCTGCGGCGCTGGTGAAATACGCGATCGATCACGGACTTGTTTCCCGCTAGMTLPPAIRVALVDDHSLVRDGIRALLSVMSRLDVVGEAENGAQAIDMVGRCQPDLLLMDIGLKDMNGLELTRLLGKQYPGLKILILSMYDNHEYISESVRAGASGYVLKNSPSKEIIAAIEAIIGGGTFYSAEIAQRLATDPNTDSELTPRESQVLAKMVEGLNNKEMARELDISVRTVETHRLSIRRKLNIDKPAALVKYAIDHGLVSRPGPT0000550_1101DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-REGULATIONN-AQUISITION-NITRATE|NITRITE_SENSING,PGPT0000550-narL-K07684NANA
D1-35_041181224yfcJputative MFS-type transporter YfcJATGACTCAAGAAAAACTTCATCTCGGCGCCGCATCGGCGCTCGGGGCAACCGTCGAGGCCAATCCGGCGCTCAAGCTGTTGCCGCTCACACTGACCGTGTTTGTCGGTTTCCTCACCATCGGCATGCAATTGCCGGTCTTGCCGCTGCACCTGCATGACACGCTGGGCATGGGCACGCTGGTGATTGGCCTGGTGGTCGGGGCACAGTTCGCCGCGGCGCTGCTGTCACGGGCCTGGGCCGGCAACTTTGCCGACCTGCGTGGCGGCAAGCGCGCGGTCATGGCCGGGCTGGTAACGGCCGCCGTTTCCGGGCTGGTCTATCTGCTTTCCCTGGCGTTCGTTGCCGAGCCGGTTACGTCGGTCTGGCTTTTGTCGGGCGGCCGCGTGCTGCTGGCGATCGGGGAAAGCCTCATCGTCACCGGAGCGATGGGCTGGGGCATCGGCCTGGTGGGGCCGCAGCATGCCGGCAAGGTCATGGCCTGGAACGGCATCGCCATGTACGGCGCCTACGCACTGGGTGCGCCGCTCGGTGTTGCGTTGAATGCCGGTTGGGGCTTCGTGGGCATCGTCCTGGCCTCGATGTTCGTGCCGCTGCTGGCCTTGGCGATTGTCGCCGGCGTGCGCGCCGTCGCCCCTACGGCGACCCGGCGTACACCGTTCTACAAGATGCTCGGCGCCGTCTGGGTTCCTGGCTTGGGGTTGGCGTTCTGCAGCGTCGGTTTTGGTGTTCTCACGGCGTTTATCGCCCTGTTGTTCGCGGCCCGGGAGTGGGGCAACGCTTCGTTGGCATTCACCGCGTTCGGCGTGGCGTTCATCGGTGCGCGGCTGCTGTTCGGGCACCTTCCGGACAAGATTGGTGGCGCCCGTGTGGCACTGGTCTGTGTGTTGATCGAAAGCGTTGGGCTGCTGCTGATCTGGAGCGCCGACAGCGCGACCAGCGCCTACCTGGGGGCGGCACTCACCGGTTTCGGTTATTCCCTGGCGTTTCCCGGTTTTGGCGTGGAGGCGGTGCGGCGCGCACCACCACAGGCTCGCGGTCTCGCCATGGGCGCCTATGTCGCCTTTCTCGATATTGCCCTGGGCATCACCAGCCCGCTGGCCGGCCTGCTGGCGAGTGGCTGGGGCATTGGTGCGGTTTACCTGGGCGGCGCCATCGCCGTGGCGCTGTCGTTTGTAGTGGCTTTGGTGTTGCTCGGAAGGCAGCCAGGCAAGCTCCCTCGCTAGMTQEKLHLGAASALGATVEANPALKLLPLTLTVFVGFLTIGMQLPVLPLHLHDTLGMGTLVIGLVVGAQFAAALLSRAWAGNFADLRGGKRAVMAGLVTAAVSGLVYLLSLAFVAEPVTSVWLLSGGRVLLAIGESLIVTGAMGWGIGLVGPQHAGKVMAWNGIAMYGAYALGAPLGVALNAGWGFVGIVLASMFVPLLALAIVAGVRAVAPTATRRTPFYKMLGAVWVPGLGLAFCSVGFGVLTAFIALLFAAREWGNASLAFTAFGVAFIGARLLFGHLPDKIGGARVALVCVLIESVGLLLIWSADSATSAYLGAALTGFGYSLAFPGFGVEAVRRAPPQARGLAMGAYVAFLDIALGITSPLAGLLASGWGIGAVYLGGAIAVALSFVVALVLLGRQPGKLPRNANANANANA
D1-35_04119654slmA_2Nucleoid occlusion factor SlmAATGTCCGAACGCCCAAGCCCTCAGATTTCCTCGCGCAAACAGCCGAAACAGGCCCGCTCCACCGAACTCGTGGCGGCCGTCCTGGAGGCGGCTGTTCAGGTTCTGGCAAGCCACGGCGCCCCGCGTTTCACCGTGGCTCGTGTGGCGGAGCGGGCGGGAGTCAGCGTCGGGTCGGTGTATCAATACTTCCCGAACAAGGCGGCGATCCTGTTCCGGTTGCAGAGTGACGAGTGGCAACAAACCACCGCCATGCTGCGGGACATCCTCGAGGACCAGTGCAAGTCGCCTCTGCAGCGATTGAGGGATCTGGTGCAGACGTTCATCCAGTCCGAATGCGACGAGGCGCAGATACGCATCGCCCTCAATGACGCCGCCCCGCTCTACCGCGATGCCCCCGAACATCAGACGGCGCGAATCTCGGTGCAGCAATCGGTGGACGCTTTCATGCAACAAGTGCTGCCGGAAGCCAGCACGCAGAGCCGCGCCCTGGCCGGTGACCTGATCATCACCACCCTCGGTTCCGTGGGTAAGCGATTTTCGGCAACGCCACGCTCCGGCGAGGAAATCCGAGCCTATGCCGATGCCATGGCCGATATGTTCTGTGCCTATCTGGAGAGTCTGCGGCAGAAAGCCGTCGAGATCGCGCCAGGCTGAMSERPSPQISSRKQPKQARSTELVAAVLEAAVQVLASHGAPRFTVARVAERAGVSVGSVYQYFPNKAAILFRLQSDEWQQTTAMLRDILEDQCKSPLQRLRDLVQTFIQSECDEAQIRIALNDAAPLYRDAPEHQTARISVQQSVDAFMQQVLPEASTQSRALAGDLIITTLGSVGKRFSATPRSGEEIRAYADAMADMFCAYLESLRQKAVEIAPGNANANANANA
D1-35_04120792pheCCyclohexadienyl dehydrataseATGAAAACCATAACAAGCACGATGACGTTCTGTGGCCTGCTGGCGTTCTGCGGCAGCGCCCTGGCCGAGCCAACCCCTTCGCATCTGGACAAGGTCCTGCAACAAGGTGAACTGCGGGTGTGCACGACGGGCGACTACAAGCCCTATACCTACAAGGCCGCATCGGGTGAATACGAGGGCATCGACATCGACATGGCCCGTTCCCTCGCCAGCAGCCTCGGCGTCAAGGTGCAATGGGTCCAGACCACCTGGAAAACCCTGATGCCAGACATGTTGGCCGGCAAATGTGACATCGGCATGGGCGGGATTTCGGTGACCCTGGAACGGCAGAAAAAAGCCTATTTCAGCAGCACCCTGGACGTTGACGGCAAGATCCCCCTGGTGCGTTGCGAAGACCAGTCGCGCTACCAGACCATCGAGCAGATGAACCAGCCTTCGGTGCGTCTTGTCGAGCCGGCCGGCGGCACCAACGAAGCCTTCGTGCGGGCATTCCTGCCCAAGGGCCAGCTGGCGTTCCATGACAACGTGACCATCTTCCAGGAGCTCCTGGAAAAACGCGCCGACGTGATGATCACCGATGCCTCCGAAGCGCTCTACCAGCAGAAACTCAAACCGGGCCTGTGCGCCGTCAACCCGACCCAGTACCTGCAATACGGCGAGAAGGCCTACCTGCTGCCGCGCGATGACCACACCTGGAAAATGTACGTTGACCAGTGGCTGCACCTGAGCAAGGCCAATGGCAGCTACCAGAAAGTGATCGGACAGTGGCTGGCCGTCCCCGGCGCCCAGTGAMKTITSTMTFCGLLAFCGSALAEPTPSHLDKVLQQGELRVCTTGDYKPYTYKAASGEYEGIDIDMARSLASSLGVKVQWVQTTWKTLMPDMLAGKCDIGMGGISVTLERQKKAYFSSTLDVDGKIPLVRCEDQSRYQTIEQMNQPSVRLVEPAGGTNEAFVRAFLPKGQLAFHDNVTIFQELLEKRADVMITDASEALYQQKLKPGLCAVNPTQYLQYGEKAYLLPRDDHTWKMYVDQWLHLSKANGSYQKVIGQWLAVPGAQNANANANANA
D1-35_04121177hypothetical proteinATGCAGATCCTGAGTCCAACCCAACAACTGTGGGATCTGTGGCACATGCAGATCCTGAGTCCAACCCAACAACTGTGGGATCTGTGGCACATGCAGATCCCGAGTCCAACCCAAAACCACTGTGGGAGCGAGCTTGCTCGCGATGGCGTCCGCTCAGTCGACATCATCATCGACTGAMQILSPTQQLWDLWHMQILSPTQQLWDLWHMQIPSPTQNHCGSELARDGVRSVDIIIDNANANANANA
D1-35_041221020hypothetical proteinATGCAAAAACTGATGAAAACCTTGCTGGCTGGGGCTTGCGCAACAGGCTTGCTGCTCGGCAGCGTGGCCGGCCACGCCGCTGAGATCCGCGAGCGCACCCTGCGTTTTGCCTTCCAGAACGTCAAGGAACATCCGCAAGGGCAGGGCGCGCAGAAGTTTGCCGACCTGCTCAGTGAAAAGAGCGGCGGCAAGCTCAAGGTTCGTCTGTTCCCTGGCGGAACCCTGGGCGGCGATGTGCAGACCGTCTCGGCCCTGCAAGGCGGCACGCTGGATATCACGGTGCTGAACTCCGGCATCCTCGCTGCCCAGGCCGCGGATTTCGCCATGCTCGATTTCCCGTTCCTGTTCAACAACGCCGAGGAAGCCCACGCGGTGATAGACGGGCCGGTCGGCCAGAAACTCGCGGCGCAGTTGGACAGCAAGGGCCTGGTCGGCCTGGGTTACTGGGACCTGGGGTTTCGTCACCTGACCAACAGCAAGCATCCGGTGGCGAAACTTGAAGACATGCAGGGCTTGAAGGTTCGTGTCATCCAGTCGCCGATCTATCTGGAAACCTTCAGTGCCCTGGGCGCCAACCCGGTGCCGATGGCTTTCCCGGAGGTCTATACCGGCCTGGAGCAACACACTATTGATGGTCAGGAAAACCCGTTCACGGTGATCGAAGGCAACAAATTCTACGAGGTGCAGAAGTACCTTTCGGTGACGGGCCACATCTTCAATCCGCAGTCGTTGATCATCAGCCAGAAAACCTGGAACCGCCTCAACGACGATGAAAAGGCGCTGATCCGCGAGGCCGCGAGCGAGGCGCAGAAGTTCCAGCGTGAAGTCACCGCGGCGAGCATGGACAAGGCCAAGGCGACGCTGGCGGGCGCCATGACCGTCAACGAAATCACCCCGGCCGAGAAAGATCGTTTCCGCGAACGCGTGCAGCCGGTGATCGATAAATTCGCCAAATCCCTGGACGGTGAGCTGGTGAAGATGATGTACGCCGAAATCGCCAAGGTGCGGGCGGGGCAGTGAMQKLMKTLLAGACATGLLLGSVAGHAAEIRERTLRFAFQNVKEHPQGQGAQKFADLLSEKSGGKLKVRLFPGGTLGGDVQTVSALQGGTLDITVLNSGILAAQAADFAMLDFPFLFNNAEEAHAVIDGPVGQKLAAQLDSKGLVGLGYWDLGFRHLTNSKHPVAKLEDMQGLKVRVIQSPIYLETFSALGANPVPMAFPEVYTGLEQHTIDGQENPFTVIEGNKFYEVQKYLSVTGHIFNPQSLIISQKTWNRLNDDEKALIREAASEAQKFQREVTAASMDKAKATLAGAMTVNEITPAEKDRFRERVQPVIDKFAKSLDGELVKMMYAEIAKVRAGQNANANANANA
D1-35_041231281siaMCOG1593Sialic acid TRAP transporter large permease protein SiaMATGACCTTGGCCATTTTCCTCGGGTCGTTGATGGGCAGCATGGCGCTGGGTATGCCGATTGCCTTTGCCTTGCTGGTGGTCAGCGTCGCGCTGATGTTCTACCTGGACCTGTTCGATGCCCAGATCATCGCGCAGAACCTGCTCAATGGCGCTGATAGCTTTCCGTTGATGGCCGTGCCGTTCTTCATGCTGGCCGGCGAAGTCATGAATGTCGGCGGCCTGTCCAAGCGCATCGTCAACATCGCCATGGCGCTGGTGGGGCACAAGCGCGGAGGCCTGGGTTATGTCGCGATCATCGCCTCCTGCCTGTTGGCCTCGCTTTCCGGTTCGGCGGTGGCTGATGCCGCGGCGCTGGCAGCGCTGCTGGTGCCGATGATGGTGCTGGCCGGGCACAACCGAGGGCGTTCGGCCGGGCTGATCGCCGCTGGCAGCACCATCGCGCCGGTCATTCCGCCGAGCATAGGTTTCATCGTTTTTGGCGTGGCCTCCGGGGTATCGATCTCCAAGCTGTTCCTGGCCGGAATTGTGCCCGGGCTCATGCTCGGTGTCGGGCTCGCCATCGCCTGGTGGTTCATCTCCCGCCGCGAGAATGTCGAGACGGCGCCCAAGCGCTCCCGTACCGAGGTGCTGCGCACATTGCTGGACGGCAGTTGGGCGATGGGCCTGCCGCTGATCATCATCCTCGGCCTCAAGTTTGGCATCTTCACCCCCACGGAAGCGGCGGTGGTCGCGGCGGTCTATTCGCTGTTCGTGTCGTTGGTGATCTACCGGGAAATGAAGATCAGCCAGCTGTACGAAGTGATCCTGTCATCGGCCAGGACCACCTCGGTGGTGATGTTGCTGGTGGCGGCCGCGATGGTCTCGTCTTGGCTGGTGACCATCGCCGACCTGCCGGGCCAGTTGGCCGACCTGCTGGCGCCGTTCATGGACAACCAGACCCTCCTGCTGCTGGTGATGATGGCGCTGATCATCCTGGTCGGCACGGTGATGGACATGACCCCGACCATCCTCATCCTCACGCCGGTGCTGATGCCCGCGGTGATCCAGGCGGGCATCGACCCGGTGTACTTCGGCGTGCTGTTTCTGATCAACACCGCGATTGGCCTGATCACGCCGCCGGTGGGCACGGTGCTCAACGTGGTCTGTGGCGTGGCGAAGCTGGAATTCGAGGAAATCGTGCGTGGCGTGTGGCCGTTCATGCTTGCGCAATTTGCGGTGCTGTTCCTGCTGGTGCTGTTCCCTCAGCTCGTCCTGGGACCGTTGAAGTTCTTCACCGGTTGAMTLAIFLGSLMGSMALGMPIAFALLVVSVALMFYLDLFDAQIIAQNLLNGADSFPLMAVPFFMLAGEVMNVGGLSKRIVNIAMALVGHKRGGLGYVAIIASCLLASLSGSAVADAAALAALLVPMMVLAGHNRGRSAGLIAAGSTIAPVIPPSIGFIVFGVASGVSISKLFLAGIVPGLMLGVGLAIAWWFISRRENVETAPKRSRTEVLRTLLDGSWAMGLPLIIILGLKFGIFTPTEAAVVAAVYSLFVSLVIYREMKISQLYEVILSSARTTSVVMLLVAAAMVSSWLVTIADLPGQLADLLAPFMDNQTLLLLVMMALIILVGTVMDMTPTILILTPVLMPAVIQAGIDPVYFGVLFLINTAIGLITPPVGTVLNVVCGVAKLEFEEIVRGVWPFMLAQFAVLFLLVLFPQLVLGPLKFFTGPGPT0017335_2575DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017335-dctM-K11690NANA
D1-35_04124546hypothetical proteinATGACAAAAGTCGTCGATTTGTATTTCAAGCTGCTGAAGCTGCTGATTGTCCTGTGCATGGTCGCGATGATCGTGCTGGTGTTCGGCAACGTCGTGCTGCGCTATGCGTTCAACTCCGGCATCAGCGTTTCGGAAGAACTGTCGCGCTGGTTCTTCGTCTGGATGATTTTCCTCGGCGCCCTGGTGGCGCTCAAGGACCGCGCCCATCTGGGCATGAACAGCCTGGTCAAGCGCTTGCCGCCCGCCGGCAAGCGTGCCTGCCTGGTCATCAGCCACTTGCTGATGCTGTATATCTGCGGCTTGATCGTCAGCGGCAGCTGGCAACAGGCAGTGATCAACCTGGACGTGGTCGCGCCGGCTTCAGGCCTGTCGATGGCGCTGTTCTACGCCGCCGGCCTGGTGTTCGGCGTCAGCGCCACCGCCATTCTGCTGTATGAACTGTACCTGGCGCTGTTCGGCAAACTCGCGGATGACGAGCTGGTGATGGTCGAGGCCAGCGATGCTTCGGCAATCAACCACGACACCCTCAAAGGTAGCCGCCCATGAMTKVVDLYFKLLKLLIVLCMVAMIVLVFGNVVLRYAFNSGISVSEELSRWFFVWMIFLGALVALKDRAHLGMNSLVKRLPPAGKRACLVISHLLMLYICGLIVSGSWQQAVINLDVVAPASGLSMALFYAAGLVFGVSATAILLYELYLALFGKLADDELVMVEASDASAINHDTLKGSRPNANANANANA
D1-35_04125216hypothetical proteinATGTTCAATTTCTCGAAACTTTCATCCCTCGCAATCGCCCTGACGCTGGTTGGCGGTGTCGGCTTGTCGACGGCGGCCTCGGCCAAGAGCTCCCCTTCCCATGGCCATGCTGCGCAGCAGCTGGCTGAGGGTGGCTCTGATCGTCTGATTCAGAATCGCGTGGCCGAAGGCGGGGCTGATCGGTTGCAGGAGCTGCGTGAACGCAGCACCGCATGAMFNFSKLSSLAIALTLVGGVGLSTAASAKSSPSHGHAAQQLAEGGSDRLIQNRVAEGGADRLQELRERSTANANANANANA
D1-35_04126423farR_1HTH-type transcriptional regulator FarRATGGCCAACCCGAGACCCTCACTGACGCTGACTCTGCTGCAAGCCCGCGAAGCGGCGATGGCTTTTTTTCGTCCGGCGCTGAACCAGCATGATCTTACGGAGCAGCAGTGGCGAGTGATCCGCATTCTGCACCAGCAGGGTGAGTTGGAGAGCCACCAGCTCGCCCATCAGGCCTGCATCCTCAAGCCCAGCATGACCGGCGTGCTCACTCGCCTGGAGCGCGACGGGCTGGTGCGGCGGCAGAAATCCAGCCAGGACCAGCGTCGGGTTTTCGTTGGCCTGACCGAGCGCGGCCAGCAGTGTTTCGTGTCCATGAGCGAAGGCATGGAAAGCAACTACCGGCGGATCGAGGAACAGTTCGGCGAAGAAAAAATGCAGCAGCTGCTGGGTTTGCTCAATGAATTGAAAAACATCAAGCCTTGAMANPRPSLTLTLLQAREAAMAFFRPALNQHDLTEQQWRVIRILHQQGELESHQLAHQACILKPSMTGVLTRLERDGLVRRQKSSQDQRRVFVGLTERGQQCFVSMSEGMESNYRRIEEQFGEEKMQQLLGLLNELKNIKPNANANANANA
D1-35_04127912hypothetical proteinATGACCGACCGGCAGCCGATCCCGAACATCAACATTGGCCAGGTGTACGACCAGCGCTACAGCGATGCCGAAGTGCATTACGACCGGCTCGCCAACCTGGCCGGCTTTTTTGGGCGCAACATGCCGGTCCATCGGCATGACCGGTTCTTCCAGGTTCACTACGTCAAGAGCGGCACCGTGCGGGTGTATCTGGATGATCGGCAGTACGTCGAATCAGGGCCGATGTTTTTTCTCACGCCGCCGACCATTCCCCACGCTTTTGTTACCGAAGCCGACAGCGACGGACACGTACTGACGGTGCGTCAGCAACTGGTGTGGCAATTGATCGATGCCGATCCGAGCCTGGCGCCGGCGGGCGTGCAGATGCCGGCGTCCTGCGTCGCGCTGGCGCAGTTGGGGCCGGAGCAGACGGGGGAGGTGCGGCGGCTGGACTGCCTGTTCGAGGAATTGAGCGAAGAGGTGACGGCCGGGCGGCCGGGGCGCAGCGCGGCGCTGGACGGCTTGACGCGGCTGATCATGATCAGCCTGCTGCGGCTGTGCTCCAACTCCCTGGAAGCCAGGCCGGCGCGGCATGAAGACCTGAAGATCTTCCACCGTTTTAATGAGTTGATCGAAGCGCATTATTTCCAGCACTGGCCCCTGTCGCGTTATACCGCGGACATTGGCGTGACCGAGGCGCGCCTCAACGACGTGTGTCGACGAATCGCCGACCTGCCTTCCAAGCGCTTGATCATGGAGCGTCTGATGCAGGAGGCCAAGCGGCTGCTGTTGTTCACCGGCAGCTCTGCCAATGAAATCTGCTACCAGCTCGGCTTCAAGGACCCCGCGTATTTCAGCCGGTTTTTCCAGCGTTACGCCAGGCTGACACCGGGGGAGTATCGGCAGCGGCAGTCGGGCATGTTGTTCAAATAGMTDRQPIPNINIGQVYDQRYSDAEVHYDRLANLAGFFGRNMPVHRHDRFFQVHYVKSGTVRVYLDDRQYVESGPMFFLTPPTIPHAFVTEADSDGHVLTVRQQLVWQLIDADPSLAPAGVQMPASCVALAQLGPEQTGEVRRLDCLFEELSEEVTAGRPGRSAALDGLTRLIMISLLRLCSNSLEARPARHEDLKIFHRFNELIEAHYFQHWPLSRYTADIGVTEARLNDVCRRIADLPSKRLIMERLMQEAKRLLLFTGSSANEICYQLGFKDPAYFSRFFQRYARLTPGEYRQRQSGMLFKNANANANANA
D1-35_04128678hpcE_1COG0179Homoprotocatechuate catabolism bifunctional isomerase/decarboxylaseATGAGCCGTGCCCTGCATGACGTCGCGACCGGCACCCTGTTCGGGGTCGCGCTGAACTACCAGGGGCTGCTGAAGCAGCGCCTCGCCGAGTTCGAGCAAGCGCCTTACCAGAAGCCGCCGCTCAAGCCCGTGCTGTTCATCAAGACGCCGAACACCCGCAACCAGCACGAGGCCGAAGTGATTCATCCAGGCCAGGGCGAGCGCCTGCAACCCGGGCCGGCGTTGGGTGTGGTGATGGGCAAGTCCGCCAGCCGCGTCAGCGCCGACGAGGCGTTGAACTACGTGGCTGGCTACACCGTGGTCAATGAATTCAGCCTGCCGGAGGACAGCTACTACCGTCCCGCCGTCAAGGCCAAGTGCCGGGATGGCTTTTGCACCATCGGTCCCGACCTGGTGCCCAGCGCCAACGTTGCCGACCCCCACAGCCTGGCGGTCACGCTGTACGTCAACGGCGAGGTTCGCCAGCAGAACAACACGGCCAATTTCGTTCGCGACATCCCCCGCTTGATCGCCGAGATCAGCGAGTTCATGACCCTGCATGCCGGCGATGTCTTGATCACCGGCACGCCCGAGGGCCGGGTCGATGTACTGCCCGGCGATCGCGTCGAAGTGGACATCAGCGGCATTGGCCGACTCGTCAATACCATCGTGGCCGAGGAAACAGGAGCCGCCTCATGAMSRALHDVATGTLFGVALNYQGLLKQRLAEFEQAPYQKPPLKPVLFIKTPNTRNQHEAEVIHPGQGERLQPGPALGVVMGKSASRVSADEALNYVAGYTVVNEFSLPEDSYYRPAVKAKCRDGFCTIGPDLVPSANVADPHSLAVTLYVNGEVRQQNNTANFVRDIPRLIAEISEFMTLHAGDVLITGTPEGRVDVLPGDRVEVDISGIGRLVNTIVAEETGAASNANANANANA
D1-35_04129771hpcE_2COG0179Homoprotocatechuate catabolism bifunctional isomerase/decarboxylaseATGAAACGCGCACGCATTCACTTTGAAGGCCGGGTCCACGCCGTCACGGTCGAGAACGATAACGCCGTGCGCCTGGCCGACGGTCGGCTGCTGGCCGAAAACCAGGTGCAGTGGCTGCCACCGGCCACCGGCAGCATGTTCGCCCTGGGCCTGAACTATGCCGATCACGCTGCGGAGTTGGCGTTCAAGCCGCCGACCGAACCGCTGGCCTTCATCAAGTCCCCCGGCACCTACACCGGCCACAACCAGATCACCTGGCGCCCCGACAACGTTGCCTACATGCACTACGAGTGCGAGCTGGTGGCGGTCATCGGCAAACCGGCGCGCAACGTCAAGCGTGAGGACGCGCTGGGCTACCTGGCCGGCTACACCGTCTGCAACGACTACGCGATCCGCGACTACCTGGAAAACTACTACCGCCCCAACCTGCGGGTGAAGAACCGCGACGCCACGACACCGGTCGGCCCGTACATCGTTGACGTTGCCGACGTTGCCGACCCTGGCAACCTGACCTTGCGCACCTGGATCAATGGCGAGTTGCGCCAGCAAGGCAGCACCAAGGACATGATCTTCGATATTCCCTACCTCATCGAATACCTGTCCAGCTTCATGACCCTGCAACCCGGCGACATGATCGCCACCGGCACGCCCGAAGGCCTGGCCGATGTGGTGCCGGGCGATGAAGTGGTCGTGGAAGTGGAAGGCGTCGGTCGCCTGGTCAACACAATCGTCAGCGAAGCCGAGTTCTTCGCGTCCCGGAAAGAGGCTTGAMKRARIHFEGRVHAVTVENDNAVRLADGRLLAENQVQWLPPATGSMFALGLNYADHAAELAFKPPTEPLAFIKSPGTYTGHNQITWRPDNVAYMHYECELVAVIGKPARNVKREDALGYLAGYTVCNDYAIRDYLENYYRPNLRVKNRDATTPVGPYIVDVADVADPGNLTLRTWINGELRQQGSTKDMIFDIPYLIEYLSSFMTLQPGDMIATGTPEGLADVVPGDEVVVEVEGVGRLVNTIVSEAEFFASRKEAPGPT0001630_42DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001630-hpaF-K16164NANA
D1-35_041301461betB_2COG1012NAD/NADP-dependent betaine aldehyde dehydrogenaseATGATCAAACACTGGATCGATGGCCGTGAGGTCGAGAGCAAAGACGTCTTCGTCAACTACAACCCCGCCACCGGCGAGGCCATTGGCGAAGTCGCCAGCGGCGGCGCCGAGGAAGTCGCCCAGGCTGTCGCGGCGGCCAAGGCAGCGTTTCCGAAATGGGCCAACACCCCGGCGAAAGAACGGGCCCGGCTGATGCGCAAACTCGGCGAGCTGATCGAACAGAACGTGCCGAAACTGGCCGAACTGGAAACCCTCGACACCGGCTTGCCGATCCACCAGACCAGGAACGTGCTGATCCCAAGGGCTTCTCACAACTTCGATTTCTTCGCCGAAGTCTGCACCCGAATGGACGGTCACACCTACCCGGTCGACGACCAGATGCTCAACTACACCCTGTACCAGCCGGTGGGTGTCTGCGCCTTGGTCTCGCCGTGGAACGTGCCGTTCATGACCGCGACCTGGAAGACCGCGCCGTGCCTGGCACTGGGCAATACCGCCGTGCTGAAAATGTCCGAGCTGTCGCCGCTGACCGCCAACGAACTCGGGCGCCTGGCCGTCGAGGCCGGCATTCCCAACGGGGTGCTCAACGTGATCCAGGGCTACGGCGCCACGGCCGGCGATGCGTTGGTGCGTCACCCGGACGTGCGGGCGATTTCTTTCACCGGCGGCACCGCCACCGGCAAGAAAATCATGCAGACCGCTGGCCTTAAAAAGTACTCGATGGAACTGGGCGGCAAGTCACCGGTACTGATTTTCGAAGACGCCGATCTTGACCGTGCCCTCGACGCGGCACTGTTCACCATCTTCTCGTTGAACGGCGAGCGCTGCACCGCCGGCAGCCGGATCTTCATCCAGGAAAGTGTCTACCCACAATTCGTAGCCGAGTTCGCCGCCCGCGCCAGACGCCTGATCGTCGGCGACCCGCAGGACCCCAAGACCCAGGTCGGCTCGATGATCACCCAGGCCCATTACGACAAGGTCACCGGCTACATCAGGATCGGTCTCGAAGAAGGCGCCACCCTGCTCGCCGGTGGCCTGGAGCGTCCGGCCAACCTGCCGGCGCATCTGAGTTGCGGCCAGTTCATCCAGCCGACGGTGTTCGCCGACGTGAACAACAACATGCGCATCGCCCAGGAAGAAATCTTCGGCCCGGTGGTGTGCCTGATTCCGTTCAAGGACGAGGCCGAAGCCTTGCGGTTGGCCAACGCTACCGAATATGGCCTGGCGTCCTATATCTGGACCCAGGACATCGGCAAGGCCCATCGCCTGGCTCATGGCATCGAGGCCGGCATGGTGTTCATCAACAGCCAGAACGTGCGCGACCTGCGCCAGCCTTTCGGTGGCGTAAAGGGTTCCGGAACCGGCCGCGAAGGCGGACAGTACAGCTTCGAAGTCTTCGCCGAGATCAAGAACGTGTGCATCTCCATGGGCAGCCATCACATTCCGCGCTGGGGGGTATGAMIKHWIDGREVESKDVFVNYNPATGEAIGEVASGGAEEVAQAVAAAKAAFPKWANTPAKERARLMRKLGELIEQNVPKLAELETLDTGLPIHQTRNVLIPRASHNFDFFAEVCTRMDGHTYPVDDQMLNYTLYQPVGVCALVSPWNVPFMTATWKTAPCLALGNTAVLKMSELSPLTANELGRLAVEAGIPNGVLNVIQGYGATAGDALVRHPDVRAISFTGGTATGKKIMQTAGLKKYSMELGGKSPVLIFEDADLDRALDAALFTIFSLNGERCTAGSRIFIQESVYPQFVAEFAARARRLIVGDPQDPKTQVGSMITQAHYDKVTGYIRIGLEEGATLLAGGLERPANLPAHLSCGQFIQPTVFADVNNNMRIAQEEIFGPVVCLIPFKDEAEALRLANATEYGLASYIWTQDIGKAHRLAHGIEAGMVFINSQNVRDLRQPFGGVKGSGTGREGGQYSFEVFAEIKNVCISMGSHHIPRWGVPGPT0005060_448DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_CATECHOL_DERIVATE_UTILIZATION,PGPT0005060-dmpC|xylG|praB-K10217NANA
D1-35_04131858hpcBCOG33843,4-dihydroxyphenylacetate 2,3-dioxygenaseATGGGCGAAGTCGTCCTGGCTGCGAAGATCTGCCACGTTCCGTCGATGTACCTGTCCGAGCTGCCCGGCAAGCATCACGGCTGCCGCGCGGCAGCGATCGCCGGGCACAAGGAAATCGGCCGCCGCGCCCGTGAACTCGGCGCCGATACCGCCGTGGTGTTCGACGTGCACTGGCTGGTCAACAGCGCTTATCACGTCAACAGCGGCGAGCATTTCAAAGGCATCTACACCAGCAACGAACTGCCGCACTTCATCAAAAACATGGAGTACGAATACCCGGGTTGCCCGGAGCTGGGCGAGTTGATCGCCGCCGAGGCCAACGCCGCCGATATCAGGACCTTGGCCCACAACATCCCCAGCCTCGAGCTGGAATACGGCACCTTGGTGCCGATGCGCTACATGCACATGGATGTACCGGCGGAGCAGAAATTCAACGTGGTGTCGATTGCCGCCTGGTGCGCCTGGCACCGCCTGCAGGACAGTTTCACCTTCGGCGCCGCCGTGCGCCGGGCCATCGAGAAGAGCGACCGCAAGGTCCTGGTCCTGGCCTCCGGCTCGCTGTCCCACCGTTTCTCCGACGACCGCAACGCCGAAGCCAATATCCACAACTGGACGCGGGAATTCGACAAGCAGGTCGATCTGCACGTCGTGAAGTTGTGGCGCGAAGGCCGCTGGAAAGAGTTCTGCGCCATGCTGCCGGACTACGCCGAACATTGCTTCGGCGAAGGCAAGATGCACGACACGGCGATGCTGCTGGGGCTGCTCGGCGGGCCGGACTACGCCAAACCCGCCGAAATCATCACCGAGCCCTTCGGCAGCTCCGGCACCGGCCAGATCAACGCGATTTTTCCAGTCTGAMGEVVLAAKICHVPSMYLSELPGKHHGCRAAAIAGHKEIGRRARELGADTAVVFDVHWLVNSAYHVNSGEHFKGIYTSNELPHFIKNMEYEYPGCPELGELIAAEANAADIRTLAHNIPSLELEYGTLVPMRYMHMDVPAEQKFNVVSIAAWCAWHRLQDSFTFGAAVRRAIEKSDRKVLVLASGSLSHRFSDDRNAEANIHNWTREFDKQVDLHVVKLWREGRWKEFCAMLPDYAEHCFGEGKMHDTAMLLGLLGGPDYAKPAEIITEPFGSSGTGQINAIFPVNANANANANA
D1-35_04132393hpcD5-carboxymethyl-2-hydroxymuconate Delta-isomeraseATGCCCCATTTCATCGCCGAGTACACCGATAACATCGAGCAGCAGGCCGACCTGCCCGGCCTGTTTGAAAAGGTCCACGTCTTGCTGGGCGACAGCGGCGTGTTTCCCTTGGGCGGCATCCGCAGCCGTGGCGTGCGCCTGGACACCTGGCGCATGGCAGACGGCAGGCACGATTACGCCTTTGTCCATATGACGCTCAAGGTCGGCCATGGTCGCGACCTGGCTACCCGGCAAAAGGTCGCGGAAAAACTCTTCGAACTGATCACCACGCACTTCGCCGACTTGCAGGCCCAACGCCTGCTGGCGTTGTCATTCGAGATGATCGAGCTGCACGAGCAGCTCAACTTCAAGGCCAACAACGTCCACGCCTTTCTCAAGGGCCAGCCCAGCTAGMPHFIAEYTDNIEQQADLPGLFEKVHVLLGDSGVFPLGGIRSRGVRLDTWRMADGRHDYAFVHMTLKVGHGRDLATRQKVAEKLFELITTHFADLQAQRLLALSFEMIELHEQLNFKANNVHAFLKGQPSNANANANANA
D1-35_041331305nicT_3Putative metabolite transport protein NicTATGAGCACAGCCAATACTGCCGACACCGCCGGCACCCTCGCGCACGACCGCACCCATGCCAGCATCACCTGGCGGCTTATGCCGCTGTTGCTGGTCTGCTACCTCTTTGCCCACCTGGACCGCATCAACATCGGCTTCGCCAAGATGCAGATGAGCGCCGACCTGCAATTCAGCGACACGGTCTATGGCTTCGGCGCCGGTCTGTTCTTCATCGCCTATGCGCTGTTCGGCGTGCCGAGCAACATGGCCCTGGACCGGGTCGGCCCACGTCGCTGGATCGCCACGCTGATGGTGGTCTGGGGCGCGTTGTCGACCGGCATGTTCCTCATCGAAAGCGCCAGCGGGTTCTACGTGTTGCGCTTCTTGCTGGGCGTCGCCGAGGCCGGGTTTTTCCCAGGCATCCTGGTCTTCCTCAACCGCTGGTACCCGGCGCGGCGCCGGGCCCAGGTCACGGCGCTGTTTGCCATTGCCGTGCCGATGGCGGGCGTGATCGGCGGGCCGTTGTCAGGCGGCATATTGGAACATTTCCATGACTTCGGCGGCCTGCGCGGCTGGCAATGGATGTTCATCATCGAAGGCTTGCCGGTGATCCTGCTCGGCCTGGTGGTGCTCAAGTGCCTGCCCGACAGCTTCGAGACGGTCAACTGGCTCAGCGCCGACGCCAAGCAGCAACTGCGCGAGCAACTGAGCCACGAAGAACAGCGCAAATCCATCACCTCGTTCTCGGCCATTCTCGGCAACCCGCAGGTCTGGCTGCTGGTGGCGGTGTATTTCGCGGTGATGCTGGCGGTCAACACCCTGGCGTTCTGGATGCCCACCCTGATCCATGGCGCCGGCATCGGCAGCGATGGCAAGGTCGGGCTGCTCAGCGCCGTGCCTTACCTGGCTGGCTGTTTCTTCATGATCGGTTGCGGACGCTCGTCCGATCACCACCGCGAACGCCGCTGGCACCTGTGCGTGCCGCTGTTGATGGCGGCGGCCGGCATTGCCGTCGCCGGGCTTTCCCCGGCCAATCCGACCCTGGTGCTGGGCGGCCTGATCCTCGCCGGCATGGGCGCCAGTGCCGCGTTGCCGATGTTCTGGCAACTGCCACCGGCGTTCCTGTCCAACAGCACCCAGGCCGCCGGCATCGCACTGATCAGTTCCTTCGGCAGCATCGCTTCGTTCTTCGCGCCCTACCTGATCGGTTGGATGCGCGACACCACCCAGAGCGCCAGCCTGGCCCTTTACGTCCTGGCACTGCTCATCGCCCTGGGTGGCCTGTTGGTGCTGCGCACCCGGGCAGCCATCGTCAATCCACAATAGMSTANTADTAGTLAHDRTHASITWRLMPLLLVCYLFAHLDRINIGFAKMQMSADLQFSDTVYGFGAGLFFIAYALFGVPSNMALDRVGPRRWIATLMVVWGALSTGMFLIESASGFYVLRFLLGVAEAGFFPGILVFLNRWYPARRRAQVTALFAIAVPMAGVIGGPLSGGILEHFHDFGGLRGWQWMFIIEGLPVILLGLVVLKCLPDSFETVNWLSADAKQQLREQLSHEEQRKSITSFSAILGNPQVWLLVAVYFAVMLAVNTLAFWMPTLIHGAGIGSDGKVGLLSAVPYLAGCFFMIGCGRSSDHHRERRWHLCVPLLMAAAGIAVAGLSPANPTLVLGGLILAGMGASAALPMFWQLPPAFLSNSTQAAGIALISSFGSIASFFAPYLIGWMRDTTQSASLALYVLALLIALGGLLVLRTRAAIVNPQPGPT0002325_481DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-ORGANIC_ACID_METABOLISMP-SOLUBILISATION-TARTARIC_ACID_TRANSPORT,PGPT0002325-ttuB-K13021NANA
D1-35_04134804hpcG2-oxo-hept-4-ene-1,7-dioate hydrataseATGCTCGATCAAAGCCTCATCCAGCAAGCCGCCGCGCGCCTTGACCAAGCCGAACGCTCCCGTGAACAGGTGCGGCAATTTTCCCTCGATCATCCAGGCATCACCATCGATGACGCCTACGCCATCCAGCGCGCCTGGGTCGCGCAAAAAATCAACGACGGGCGCAAGCTGGTCGGTCACAAGATCGGCCTGACTTCCCGCGCAATGCAGGTCTCGTCGAATATCACCGAACCGGATTATGGCGCGCTGCTGGACGACATGTTTTTCGATGAAGGCAGCGATATTCCGTTCGAACGCTTCATCGTGCCGCGCGTGGAAGTCGAGCTGGCGTTCATTCTCGGCAAGCCGCTCAAAGGCCCGAACGTGACGCTGTTCGACGTGCTTGATGCCACCGAATGGGTGATTCCGGCGCTGGAAATCATCGATGCGCGTATCCAGCAGATCGACCCGCAGACCAAGGTCACCCGCAAGGTCTTCGATACCATCTCCGACAACGCCGCCAATGCCGGCGTGGTCATGGGCGGCCGTGCCGTGCGGCCCACCGAGATCGACCTGCGCAAAGTGCCGGCAGTGCTCTATCGCAACGGCGTGATCGAGGAGTCCGGCGTGTCGGCGGCGGTGCTCAATCACCCGGCCAAGGGCGTGGCCTGGCTGGCGAACAAACTGGCGGCCTACGACGTCACGCTGCAGCCGGGCCAGATCATCCTGGGCGGCTCTTTCACCCGCCCGGTGGCGGCCAATCCGGGCGATACCTTCCATGTCGATTACGACATGCTCGGCTCCATCGCCTGCCGTTTCGTCTGAMLDQSLIQQAAARLDQAERSREQVRQFSLDHPGITIDDAYAIQRAWVAQKINDGRKLVGHKIGLTSRAMQVSSNITEPDYGALLDDMFFDEGSDIPFERFIVPRVEVELAFILGKPLKGPNVTLFDVLDATEWVIPALEIIDARIQQIDPQTKVTRKVFDTISDNAANAGVVMGGRAVRPTEIDLRKVPAVLYRNGVIEESGVSAAVLNHPAKGVAWLANKLAAYDVTLQPGQIILGGSFTRPVAANPGDTFHVDYDMLGSIACRFVPGPT0005055_1DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_CATECHOL_DERIVATE_UTILIZATION,PGPT0005055-dmpB|xylE-K00446NANA
D1-35_04135798hpcHCOG38364-hydroxy-2-oxo-heptane-1,7-dioate aldolaseATGGACATGCCCGTCAATACCTTCAAGCAACGCCTGCGCAGCGGTGAAGCACAAATCGGCCTGTGGCTGGGCCTGGCCGACGCCTACTGCGCGGAGCTGGCGGCCAATGCCGGATTCGACTGGTTGCTGATCGACGGTGAACACGCGCCCAACGATCTGCGCACCCTGCTTGGCCAGCTCCAGGCCATCGCGCCCTACCCCGGCCAACCGGTGATTCGCCCGGTGATCGGCGACACGGCGCTGATCAAGCAACTGCTCGATATCGGCGCGCAAACGCTACTGGTGCCAATGGTGGAAAGCGCCGCCCAAGCCAGCGAACTGGTGCGCGCCATGCATTACCCGCCGCACGGTGTACGCGGCGTCGGCAGCGCACTGGCCCGGGCCTCGCGCTGGAACAGCATTGCCGGCTACCTCGACCACGCCGATGAGCAGATGTGCCTGCTGGTGCAGATCGAAAGCTGCGAGGGACTCGCCAACCTGGACGCCATCGCCGCCGTCGAGGGCGTCGACGGGGTGTTCATCGGCCCGGCGGACTTGAGCGCATCGATGGGCCATCGCGGCAATCCCGGCCACCCGCAAGTGCAAGCCGCCATCGAGGACGCCATCGCGCGTATTCGCCAGGCGGGCAAAGCGGCCGGGATCCTCAGCGCCGACGAGACACTCGCCCGACGCTACATCGAACTCGGCGCAGCCTTTGTCGCCGTGGGCGTGGACACGACGGTGCTGATGCGCGGGTTACAAACCTTGGCCGCGACGTTCAAGAACACTCCAAAACCATCGACCGGTGGCGTCTACTGAMDMPVNTFKQRLRSGEAQIGLWLGLADAYCAELAANAGFDWLLIDGEHAPNDLRTLLGQLQAIAPYPGQPVIRPVIGDTALIKQLLDIGAQTLLVPMVESAAQASELVRAMHYPPHGVRGVGSALARASRWNSIAGYLDHADEQMCLLVQIESCEGLANLDAIAAVEGVDGVFIGPADLSASMGHRGNPGHPQVQAAIEDAIARIRQAGKAAGILSADETLARRYIELGAAFVAVGVDTTVLMRGLQTLAATFKNTPKPSTGGVYPGPT0001575_749DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-SUCCINIC_ACID_ACID_BIOSYNTHESIS,PGPT0001575-hpaI|hpcH-K02510NANA
D1-35_04136423farR_2HTH-type transcriptional regulator FarRATGCCCAAACCCCGGCAATCCCTGACCTTGACCCTGCTGCAGGCCCGTGAAGCGGCCATGGCTTTTTTCCGTCCATCGTTGAACCAACATGGGTTGACCGAGCAACAGTGGCGGGTCATCCGCATCCTCAGCCAGCATGACGAGCTGGAAATCAATCGCCTGGCCGAACTGGCTTGTATCCTCAAGCCGAGCATGACCGGCGTGCTGGTACGCATGGAAGCAGCGGGCATGGTCGTGCGGCGCAAGGCCGAACAGGACCAGCGCCGCGTGCTGGTGCGGCTGGCACCCCAGGGCCAGGCATGCTTCGACTCGATGAGCCAGAGCATGGAGGAAAACTACCAGCGTCTGCAGGGGCGGTTGGGGGAGGAGAAATTGCAGACGTTGTTGGGGTTGCTTGATGACCTCAAGACAATCAAACGCTAGMPKPRQSLTLTLLQAREAAMAFFRPSLNQHGLTEQQWRVIRILSQHDELEINRLAELACILKPSMTGVLVRMEAAGMVVRRKAEQDQRRVLVRLAPQGQACFDSMSQSMEENYQRLQGRLGEEKLQTLLGLLDDLKTIKRNANANANANA
D1-35_041374869gdhBCOG2902NAD-specific glutamate dehydrogenaseATGGCGTTCTTCACCGCAGCCAGCAAAGCCGACTTCCAGCACCAACTGCAAGCGGCACTGGCGCAGCACATCAGTGAACAGGCACTGCCACAAGTGGCGCTGTTCGCTGAACAATTCTTCGGCATCATTTCCCTCGATGAACTCACCCAGCGCCGGTTGTCCGACCTCGCCGGCTGCACCCTGTCCGCCTGGCGCCTGCTTGAGCGCTTCGATCACGCGCAACCGCAGGTGCGTGTCTACAACCCCGATTATGAACGTCACGGCTGGCAGTCGACCCACACCGCCGTCGAAGTGCTGCACCACGACCTGCCATTTCTGGTGGACTCGGTCCGCACCGAGCTGAACCGTCGCGGCTACAGCATCCATACCCTGCAAACCACCGTCCTGAGCGTGCGTCGCGGCAGCAAGGGCGAGTTGCTGGAAATCCTGCCCAAAGGCACCCAGGGCGACGACGTGCTGCAAGAGTCGTTGATGTACCTGGAGATCGACCGCTGCGCCAATGCCGCTGAACTCAATGTCCTGAGCAAGGAACTTGAGCAGGTGCTGGGCGAAGTGCGCGTGGCCGTGGCCGATTTCGAGCCGATGAAAGCCAAGGTCCGGGAAATCCTCGCGAGCCTGGACAACAGCGCCTACACCACCGATGCCGACGAAAAAGCCGAAATCAAGAGCTTCCTGGAATGGCTGGTGGGCAACCACTTCACCTTCCTCGGCTATGAAGAGTTCGTGGTTCGCGATGAAGCCGACGGCGGCCACATCGAATACGATCCTGAATCGTTCCTCGGCCTGACCAAATTGCTGCGCGCCGGCCTGACCGCCGAAGACCTGCGCATCGAAGACTACGCGGTCAATTACCTGCGCGAACCGACCGTGTTGTCGTTCGCCAAGGCCGCGCACCCAAGCCGCGTGCACCGTCCGGCCTACCCGGACTACGTGTCGATCCGTGAAATCGACGCCAACGGCAAGGTCATCAAGGAATGCCGTTTCATGGGCCTGTACACCTCTTCGGTGTACGGCGAAAGCGTGCGGGTCATTCCGTATATCCGTCGCAAGGTCGAGGAAATCGAACGTCGTTCGGGCTTCCAGGCCAAGGCGCACCTGGGCAAGGAACTGGCCCAGGTGGTCGAAGTGCTGCCCCGTGACGACCTGTTCCAGACCCCGGTGGACGAGCTGTTCAGCACGGTGATGTCCATCGTCCAGATCCAGGAACGCAACAAGATCCGCGTGTTCCTGCGCAAGGACCCGTACGGTCGTTTCTGCTACTGCCTGGCCTATGTGCCGCGTGACATCTACTCCACCGAAGTGCGCCAGAAGATCCAGCAAGTGCTGATGGATCGCCTGAAAGCCTCGGACTGCGAGTTCTGGACGTTCTTCTCTGAATCCGTACTGGCTCGCGTGCAACTGATCCTGCGCGTGGACCCGAAAAACCGTCTCGACATCGACCCGGTCCTGCTGGAAAAAGAAGTCGTGCAGGCCTGCCGCAGCTGGAAGGACGACTACGCCAGCCTGGTGATCGAGAGCTTCGGCGAAGCCCAGGGCACCAACGTGCTGTCGGATTTCCCGAAAGGCTTCCCGGCCGGCTACCGCGAGCGTTTTGCCGCGCACTCGGCCGTAGTGGACATGCAACACCTGCTGAGCCTGAATGAAACCAATCCGCTGGTGATGAGCTTCTACCAGCCGTTGGGCCAGGTGTCCGGCCAGCGTGAGCTGCACTGCAAGCTGTATCACGCCGACACGCCGCTGGCGCTGTCCGACGTGCTGCCGATCCTGGAGAACCTCGGCCTGCGCGTGCTGGGCGAGTTCCCGTATCGCCTGCGCCACACCAACGGCCGCGAGTTCTGGATTCACGATTTCGCGTTCACCGCCGCCGAAGGCCTCGACCTCGACATCCAGCAACTCAACGACACCCTGCAGGACGCCTTTGTCCACATCGTCCGTGGCGATGCCGAGAACGACGCGTTCAACCGCCTGGTGCTGACCGCCGGCCTGCCATGGCGCGACGTGGCGTTGCTGCGTGCCTACGCCCGTTACCTGAAGCAGATCCGCCTGGGCTTCGACCTCGGCTACATCGCCAGCACCCTGAACAACCACACCGATATCGCTCGCGAGCTGACCCGGTTGTTCAAGACGCGTTTCTACCTGGCGCGCAAGCTCAGCGGCGATGACCTGGAAGACAAGCAACAGCGTCTGGAACAGGCGATCCTCACGGCCCTCGACGATGTGCAGGTGCTCAATGAAGACCGCATCCTGCGTCGTTACCTGGACCTGATCAAGGCGACCCTGCGGACCAACTTCTACCAGACCGACGCCAACGGCCATAACAAGTCGTACTTCAGCTTCAAGTTCAACCCGCACCTGATTCCGGAACTGCCAAAGCCGGTGCCCAAGTTCGAGATCTTCGTCTACTCGCCACGGGTCGAAGGCGTGCACCTGCGCTTCGGCAACGTCGCTCGCGGTGGCCTGCGCTGGTCCGACCGCGAGGAAGACTACCGCACCGAAGTACTCGGCCTGGTAAAAGCCCAGCAAGTGAAGAACTCGGTGATCGTGCCGGTGGGCGCCAAGGGCGGTTTCCTGCCGCGTCGCCTGCCATTGGGCGGCAGCCGGGACGAGATCGCGGCCGAGGGCATCGCCTGCTACCGCATCTTCATCTCGGGTCTGCTGGACATCACCGACAACCTGAAGGACGGCGCCCTGGTGCCGCCGGTCAACGTCGTGCGGCATGACGATGATGACCCGTACCTGGTGGTGGCGGCCGACAAAGGCACCGCGACCTTCTCCGACATCGCCAACGGCATCGCCATCGACTACGGCTTCTGGCTGGGTGACGCGTTCGCCTCCGGCGGTTCGGCCGGCTACGACCACAAGAAAATGGGCATCACCGCCAAAGGCGCGTGGGTTGGCGTACAGCGTCACTTCCGCGAGCGCGGCATCAACGTACAGGAAGACAGCATCACCGTGGTGGGCGTCGGCGACATGGCCGGCGACGTGTTCGGCAACGGCTTGCTGATGTCCGACAAGCTGCAACTGGTCGCGGCCTTCAACCACCTGCACATCTTCATCGACCCGAACCCGGAGCCGGCCAGCAGTTTCGCCGAGCGCAAGCGTCTGTTCGATCTGCCGCGTTCGGCCTGGACCGACTACGACGCCAGCATCATGTCCGAAGGCGGCGGTATCTTCTCGCGCAGCGCGAAGAGCATCGCGATTTCGCCGCAGATGAAAGAGCGCTTCGACATCAGGGCCGACAAGCTGACCCCGACCGAGCTGCTGAACGCCTTGCTCAAGGCGCCGGTAGACCTGTTGTGGAACGGCGGTATCGGCACCTACGTCAAGGCCAGCACCGAAAGCCACGCCGATGTCGGCGACAAGGCCAACGATGCGCTGCGCGTGAACGGTAACGAGCTGCGCTGCAAGGTGGTGGGCGAGGGCGGCAACCTGGGCATGACCCAGCTCGGCCGCGTCGAGTTCGGCCTGCATGGCGGCGCCACCAACACCGACTTCATCGACAACGCCGGTGGCGTGGACTGCTCCGACCACGAAGTGAACATCAAGATCCTGCTCAACGAAGTGGTGCAGGCCGGCGACATGACCGACAAGCAACGCAACCAGTTGCTGGCGAGCATGACCGACGAAGTCGGCGGCCTGGTGTTGGGCAACAACTACAAGCAGACCCAGGCCCTGTCCCTGGCGGCGCGTCGCGCCTTTGTGCGGATCGCCGAATACAAGCGTCTGATGAACGACCTGGAAGCTCGCGGCAAGCTGGACCGTGCCATCGAGTTCCTGCCGACCGAAGACCAACTGGCCGAACGTGTCGCGGCAGGCCAGGGCCTGACCCGTGCCGAGCTTTCGGTACTGATCTCCTACAGCAAGATCGACCTCAAGGAAGCGCTGCTCAATTCCCTGGTGCCGGACGATGACTACCTGACCCGCGACATGGAGACGGCTTTCCCGCCAACGCTGGTGAGCAAGTTCTCCGAGGCCATGCGTCGCCATCGCCTGAAACGCGAAATCGTCAGCACCCAGATCGCCAACGATCTGGTCAACCACATGGGCATCACGTTCGTCCAGCGGTTGAAAGAGTCGACCGGCATGAGCCCGGCGAACGTGGCCGGTGCTTATGTAATCGTTCGGGACATCTTCCATCTCCCGCACTGGTTCCGTCAGATCGAAGCCCTGGACCACCAGGTTTCCGCCGACGTGCAACTGGAGCTGATGGACGAGCTGATGCGCCTGGGCCGTCGCGCCACGCGCTGGTTCCTGCGCAGCCGCCGCAACGAGCAGAATGCTGCTCGTGACGTCGCTCACTTCGGTCCGCACCTGGCGGCGTTGGGCCTCAAGCTCGACGAACTGCTGGAAGGCCCGACCCGCGAAGGCTGGCAGACCCGCTACCAGGCCTACGTGGCCGCCGGCGTGCCGGAGTTGCTGGCGCGCATGGTTGCCGGCACCACGCACCTGTACACCTTGCTGCCGATCATCGAGGCGTCCGACGTCACCGGCCAGAACGCCGCCGATGTGGCCAAGGCCTACTTCGCCGTGGGCAGTGCGCTGGACATCACCTGGTACCTGCAACAGATCAGCGCCTTGCCGGTTGAAAACAACTGGCAGGCCCTGGCCCGTGAAGCGTTCCGCGATGACATCGACTGGCAGCAGCGGGCGATCACCATCTCGGTCCTGCAGGAAGGCGACGGTAGCCAGGACGTGGAAACCCGTCTGGCGCTGTGGCTGGAGCAGCACCGCGAGATGGTCGAGCGCTGGCGCGCCATGCTGGTGGACATCCGTGCCGCCAGTGGTACCGACTACGCCATGTACGCAGTCGCCAACCGCGAACTGCTCGACCTGGCGCTGAGCGGTCAGGCGGTGGTCACGGCCAACTGAMAFFTAASKADFQHQLQAALAQHISEQALPQVALFAEQFFGIISLDELTQRRLSDLAGCTLSAWRLLERFDHAQPQVRVYNPDYERHGWQSTHTAVEVLHHDLPFLVDSVRTELNRRGYSIHTLQTTVLSVRRGSKGELLEILPKGTQGDDVLQESLMYLEIDRCANAAELNVLSKELEQVLGEVRVAVADFEPMKAKVREILASLDNSAYTTDADEKAEIKSFLEWLVGNHFTFLGYEEFVVRDEADGGHIEYDPESFLGLTKLLRAGLTAEDLRIEDYAVNYLREPTVLSFAKAAHPSRVHRPAYPDYVSIREIDANGKVIKECRFMGLYTSSVYGESVRVIPYIRRKVEEIERRSGFQAKAHLGKELAQVVEVLPRDDLFQTPVDELFSTVMSIVQIQERNKIRVFLRKDPYGRFCYCLAYVPRDIYSTEVRQKIQQVLMDRLKASDCEFWTFFSESVLARVQLILRVDPKNRLDIDPVLLEKEVVQACRSWKDDYASLVIESFGEAQGTNVLSDFPKGFPAGYRERFAAHSAVVDMQHLLSLNETNPLVMSFYQPLGQVSGQRELHCKLYHADTPLALSDVLPILENLGLRVLGEFPYRLRHTNGREFWIHDFAFTAAEGLDLDIQQLNDTLQDAFVHIVRGDAENDAFNRLVLTAGLPWRDVALLRAYARYLKQIRLGFDLGYIASTLNNHTDIARELTRLFKTRFYLARKLSGDDLEDKQQRLEQAILTALDDVQVLNEDRILRRYLDLIKATLRTNFYQTDANGHNKSYFSFKFNPHLIPELPKPVPKFEIFVYSPRVEGVHLRFGNVARGGLRWSDREEDYRTEVLGLVKAQQVKNSVIVPVGAKGGFLPRRLPLGGSRDEIAAEGIACYRIFISGLLDITDNLKDGALVPPVNVVRHDDDDPYLVVAADKGTATFSDIANGIAIDYGFWLGDAFASGGSAGYDHKKMGITAKGAWVGVQRHFRERGINVQEDSITVVGVGDMAGDVFGNGLLMSDKLQLVAAFNHLHIFIDPNPEPASSFAERKRLFDLPRSAWTDYDASIMSEGGGIFSRSAKSIAISPQMKERFDIRADKLTPTELLNALLKAPVDLLWNGGIGTYVKASTESHADVGDKANDALRVNGNELRCKVVGEGGNLGMTQLGRVEFGLHGGATNTDFIDNAGGVDCSDHEVNIKILLNEVVQAGDMTDKQRNQLLASMTDEVGGLVLGNNYKQTQALSLAARRAFVRIAEYKRLMNDLEARGKLDRAIEFLPTEDQLAERVAAGQGLTRAELSVLISYSKIDLKEALLNSLVPDDDYLTRDMETAFPPTLVSKFSEAMRRHRLKREIVSTQIANDLVNHMGITFVQRLKESTGMSPANVAGAYVIVRDIFHLPHWFRQIEALDHQVSADVQLELMDELMRLGRRATRWFLRSRRNEQNAARDVAHFGPHLAALGLKLDELLEGPTREGWQTRYQAYVAAGVPELLARMVAGTTHLYTLLPIIEASDVTGQNAADVAKAYFAVGSALDITWYLQQISALPVENNWQALAREAFRDDIDWQQRAITISVLQEGDGSQDVETRLALWLEQHREMVERWRAMLVDIRAASGTDYAMYAVANRELLDLALSGQAVVTANPGPT0014290_497DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014290-gdhB-K15371NANA
D1-35_04138354hypothetical proteinATGCAAATGACCACCGCCCTGCTGATCGCCAACCCGTGCGACGAAGAAGAGGACAACATGGCCATGCTGTGCTGCCACAGCAACCAGGGCGACATGTTCCTGATGACCCGCTATCCCGACGAAGACGAACTGGAGATCACCCTCGACGGCGAGCCTTCGACACTGGAAGGCGTCAAGGTCACCCTCAGCCCAACCTTGTTGAAAATCGAAATCGCCGCCGCGGATGCCGATGCACTCAACGGTGATGACGTGCTGGAGATAACCTACGACGCAAACGTGACGGATCTGGCGGAAGTGGAACTGACGTTGCAGAACATTCTCAAGGGAACCGGTACTTACCTCAGCCAGCTCTGAMQMTTALLIANPCDEEEDNMAMLCCHSNQGDMFLMTRYPDEDELEITLDGEPSTLEGVKVTLSPTLLKIEIAAADADALNGDDVLEITYDANVTDLAEVELTLQNILKGTGTYLSQLNANANANANA
D1-35_041392154hypothetical proteinATGAACCTTACCCAGCCTCGTTTGAGATTGCTGTCGATATTGAGTGTGATCGTATTGGTGATAGGCGGTATGTCCTACGCCCTGTTTCGTCACAGCGGCGCGCCGCAAGACGAAGGTTTTGTCGCCGGGGAAATCAACGAAGGGGGCCTGGAAGACATCGGCACGCTGGCGTTGCCCGAGGTGGAAAAGCGCCTCAACTATTTGCTTCAGGACACCGGGCAAACCCTGCGGTCCCTGGAGTTGGTCAGTGATGCGCAACTGAGCTTGTCCATCGAAACGAGCGAGTCTGCCGGCGAGCAGTCGTTGCAATACGAGCCGCTGTTTGTCCCGTTCACCAGCGCGCAGCTGAAAGCTGAACTGGCGACGATCCAAGGCCTGCGTTTTGCCCAGAGGCTGTTTGCCGATGGCTCCGAAGCAAGGCTCGACACCAGCAGCCTCGATCCGCTCTGGAAGCGCGCCGGCACCCCGGACGAGCCCGTGGCCGAGCGGTACCTGCCGCAACGCCTGCGCTTTCGTGATGGCAGCGAAAAAGCCTTCGCCGAACTCAAGGCACCCCCCGAAATTGAGTCTGACGACATGATCGCGTCCCATGACGCCTTCCTGATCGATGTCAACAAGCCATTGGCGAGTATCGGCCTGACGGTTGCTTACCGCAGCTATCCGGCGTTCAGGAAAGTGCAACTGGACAAGGATCAGCCGAAAGTAACGCTGGACGACGGCCAATCCTTCCAGCTCACCGCCTTGGGCGACGCGAGCGCCTCCGTGCGCTTGAGCACGCCGAAGTCGTCGACCTTCGTCGTGCAGGGCCTGGACGGGACGGGCAAGGCGCTCTACAGCAACGGCAGCAGTTCGCGGACGTTTCCCTCCGAGAGCGATATCGCAGCGTTGCAGGATTATTACCAAGCGCTGCAGCAGACCAAGGATGATCTCAAGCAACTCAAGACCGGCCAGGCGGTGCAACAACAGCTGGAGCGCCTGACCGAAGCGCTTGTCGCCCAGGTGGGGCCGTTGAAAAACACCGAGGTCGGGTACCAGTTCGAGGCCACCCCGCAACGTATCGTCATTCATGTGCTCGAGCCGCTGGAAGACAACAGCGTTGAATTCGGCCAGGTCGACAACGTCCTTGCGCCACAGGCGCGTTACATCGCTCTTGACCGGGGCACCGAGCGCTACGGTTTCATCGATGAGGCCGGCCAGTGGCTGACCAAGCCCCGTTGGGTACAGATACAGGACAGCCTGATGGCGGATGCCTACACGCTGTTTTCAGCCGCTAAGCCCAGCGACCCGGAGTCGGACGGGCAGGCGTTGCGCAGCCAGTTCGCCTATTTCCCCGCGGGCGGCAACAAGCTCGTCGATCTGCCATTCGAGTACATCGCCGAGGCATTGAGCGATGGCCTGCTGCTGGTGGAGCGAGAAACCAACGGCCCTTACGGGCTCTACGATGCCAGGAAGCATCGTTTCATCTTGCCGATGAAATTCGTCAACCCCACCGTGGCCGGCAAGGTGTTCATTGCCCGTCTCGGCAAGCGCACCGATCTCATGGAAGGCCTGTACGGCGCCTATTCCCTGGAGGGTAAGGAAATCCTGCCAGCGCAGTTTTCCGGCATCGAGCACAGCGAGGGTTACCTCTACGCCAGTTCCGCCGATCGGACCCGGCAGGATGTCTACAACCTGGACGGCAAGCGGATCAACCCCGAGGGATACAACACGTCAGGTCGCTTCGTGGGACAGCAACCGCTGCTCGTGCAGGAGGTTAAAAGCAAGAAGTTCGCGTTTATCAATCGCCAGGGCGCGCGATTGCCTATCAAGTTGCCCTATGACGAGGTGGAGCCGTTTTCCAACGGCATGGCGGTGGTCGGGCGCGATGGCAGCTACGGCGCCATCGACCTGGCCGGCAGGCTGAAGGTGCCGCTGGAGTATGACCGGCTCAACGCCTTCCAGACCCGCTACGCAGCCGCCACCCGGGCCGGTGGTGGTTCTGCCCTGGTGTTGATCAGTCAAGACAACAAACTGTTCAAGAAACTGGGCTCCTACACCAGCATGAAGGTGCCGGATAACGGCAATGAGGCCCGTTATTATGTAAGGGGACCGGGTGATAGCGATGAGTATCTGGTGTATGACGCGGATGGCAATCTGGTGAAGGAGGGTGGGTAAMNLTQPRLRLLSILSVIVLVIGGMSYALFRHSGAPQDEGFVAGEINEGGLEDIGTLALPEVEKRLNYLLQDTGQTLRSLELVSDAQLSLSIETSESAGEQSLQYEPLFVPFTSAQLKAELATIQGLRFAQRLFADGSEARLDTSSLDPLWKRAGTPDEPVAERYLPQRLRFRDGSEKAFAELKAPPEIESDDMIASHDAFLIDVNKPLASIGLTVAYRSYPAFRKVQLDKDQPKVTLDDGQSFQLTALGDASASVRLSTPKSSTFVVQGLDGTGKALYSNGSSSRTFPSESDIAALQDYYQALQQTKDDLKQLKTGQAVQQQLERLTEALVAQVGPLKNTEVGYQFEATPQRIVIHVLEPLEDNSVEFGQVDNVLAPQARYIALDRGTERYGFIDEAGQWLTKPRWVQIQDSLMADAYTLFSAAKPSDPESDGQALRSQFAYFPAGGNKLVDLPFEYIAEALSDGLLLVERETNGPYGLYDARKHRFILPMKFVNPTVAGKVFIARLGKRTDLMEGLYGAYSLEGKEILPAQFSGIEHSEGYLYASSADRTRQDVYNLDGKRINPEGYNTSGRFVGQQPLLVQEVKSKKFAFINRQGARLPIKLPYDEVEPFSNGMAVVGRDGSYGAIDLAGRLKVPLEYDRLNAFQTRYAAATRAGGGSALVLISQDNKLFKKLGSYTSMKVPDNGNEARYYVRGPGDSDEYLVYDADGNLVKEGGNANANANANA
D1-35_041401026kdgR_3COG1609HTH-type transcriptional regulator KdgRGTGACTTCTTTCTCCGCCGCCCAGCGCAGCCGCGTGACCATGCTTGATGTCGCCGAGCGCGCCGGGGTCTCCAAGGCCAGTGTCTCGCGCTTCATTGGCGAAGACCGCGCCCTGCTTTCCGAAGCCATCGCCCGGCGCATCGAGCAGGCGATCGACGAGCTGGGCTACCGGCCCAACCAGATGGCCCGCGGCCTCAAGCGCGGCCGCACCCGCCTGATCGGCATGCTCGTGGCCGATATCCGCAACCCTTATTCGATTGCCGTGATGCATGGCGTGGAAACCGCTTGCCGTCGCCACGGCTACAGCCTGGTGGTGTGCAACACCGACCGCGATGACGAGCAGGAACGCCAGCACCTGGCGCTGTTGCGCGCCTACAACATCGAAGGGCTGATCGTGAACACCCTGGGTCATCACCGCGACGAGCTGTTCGAGCTGCGCAGCGAAATGCCCATGGTGCTGGTAGATCGCAAGGTCGACCGGCTCGACACCGACCTGGTCGGGCTGGACAATCCGGCGGCCGTCGAGATGGCCCTCGATCACCTTGACCAGCGAGGCTACCGCGACCTGCTGCTGGTGACCGAGCCATTCGATGGCACGAGTTCGCGGATCGAACGGGTCGAGAGTTTCAAGACCGGCATCCAACGGCGTCCAGCCCTGGCCGGGGCCGTGGTGGAAACCGGCGATCAACTCCTTGCGCGCATCAAGACCTTTCTCGCCCAGCCGGACCGGGGCCCCAAGGCGCTGTTCTGCGCCAACGGCATCGCCGCGCTGGCCGCCACTCAGGTACTGCGCGACCTCGGTTGCCATTTGTTCAACGACATCGGCCTGATCGCCCTGGATGACCTGGACTGGTACCCGTTGGTGGGCAGCGGCATCACCGCCCTCGCCCAACCCACCGCCGAAATCGGCGCCCGTGCATTCGAATGCCTGCTCAAGCGCTTGCGCGGTGACAACGGGCCGGTGCAGACCCTGGATTTTGCGGCGCGGTTGATTGAGCGCGGGTCGACACGGGGAAACTTGCGGTGAMTSFSAAQRSRVTMLDVAERAGVSKASVSRFIGEDRALLSEAIARRIEQAIDELGYRPNQMARGLKRGRTRLIGMLVADIRNPYSIAVMHGVETACRRHGYSLVVCNTDRDDEQERQHLALLRAYNIEGLIVNTLGHHRDELFELRSEMPMVLVDRKVDRLDTDLVGLDNPAAVEMALDHLDQRGYRDLLLVTEPFDGTSSRIERVESFKTGIQRRPALAGAVVETGDQLLARIKTFLAQPDRGPKALFCANGIAALAATQVLRDLGCHLFNDIGLIALDDLDWYPLVGSGITALAQPTAEIGARAFECLLKRLRGDNGPVQTLDFAARLIERGSTRGNLRNANANANANA
D1-35_04141783hypothetical proteinATGACCAGACCACACGTTTCCATCAGCCTATCCAGCTTCGGCGCCGACCTCGTGCGCCAACGCGGCCAAGGCAGCTTCGTCGAACTGCTGGCCGCCGCCGGTGCCTCGCGCATCGAATGGCGCGAGGAACTGTTCACCCACGAACAGCCCGACGAGCTGGCTGCTGGCGCCCGGGCTCAAGGGCTGGCAAGCATTTATTCATCGCCACTCGAACTCTGGCTGCCCGGCCAACCCAGGCCCAATCCCGCTCTGCTGGTCGCCTTGCAACGTTGCGAGGCGTTCGGCTCGTCCTGGCTGAAAGTGTCCCTCGGCCACTTCACCGATTCCCATGATCTCTCGGCCCTGGCGCCAATATTGGCGACAAGCCCGTTGCAACTGCTGGTGGAAAACGACCAGACCCTGCAGGGCGGACGGATCGAACCCCTGCAGCGTTTTTTCACGGCAGTTGAAGCACAGGGGTTGCCCGTCGCCATGACCTTCGACATTGGCAACTGGCAGTGGCAGGACCAATCGGCCACCGTGGCGGCGCGCCAACTCGGACGGCATGTGGCGTATGTGCACTGCAAGGCCGTGGCCCGACGTGACGACGGCAAGCTGATCGCCGTGCCCCCGGCGCTGGCAGACCTGCACCTGTGGGAACAATTGCTCAAGCACATGCCCGTCGGGGTGATGCGCGCCGCCGAGTATCCGCTGCAAGGCGACGACCTGGCGCAACTGACCGCTGAACATGTCGCCACCCTGTCCCGCCTCGGGCAATCGCGTCGGGAGAGTGCTCATGCCTGAMTRPHVSISLSSFGADLVRQRGQGSFVELLAAAGASRIEWREELFTHEQPDELAAGARAQGLASIYSSPLELWLPGQPRPNPALLVALQRCEAFGSSWLKVSLGHFTDSHDLSALAPILATSPLQLLVENDQTLQGGRIEPLQRFFTAVEAQGLPVAMTFDIGNWQWQDQSATVAARQLGRHVAYVHCKAVARRDDGKLIAVPPALADLHLWEQLLKHMPVGVMRAAEYPLQGDDLAQLTAEHVATLSRLGQSRRESAHAPGPT0018060_3DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018060-kdgK-K00874NANA
D1-35_04142981kdgK_2COG05242-dehydro-3-deoxygluconokinaseATGCCTGAGTTCGATGTATTGTCGTTCGGCGAAACCATGGCGATGCTGGTGGCCGACCAGAGCGGCGACCTGGCCAGCGTCGACCAGTTTCACAAACGCATCGCCGGGGCCGACAGCAATGTCGCCATCGGCTTGGCGCGGCTGGGTTTCCAGGTGGCCTGGCTCAGCCGGGTCGGCGCCGACTCCCTGGGACGCTTCGTGGTGCAGACGCTGGAGAGAGAAGGCCTGGATTGCCGCCACGTGGCGGTCGATCCGGCGCACCCCACCGGATTCCAGTTCAAGTCCCGCACCGATGACGGCAGCGATCCGCAGGTCGAGTACTTCCGTCGCGGCTCGGCGGCCAGTCACTTGTCGATCGATTCCATCGCACCGCCCCTGCTCCGCGCCCGTCATCTGCACGCTACCGGCATCGTCCCCGCGCTGTCGGACACAGCCCGAGCAATGTCCTTCGAATTGATGAGCCGCATGCGCGAGGCCGGCCGCAGCCTGTCGTTCGACCCCAACCTGCGCCCGAGCCTGTGGGCCAGCGAAGCGTTGATGATCAGCGAGATCAACCGCCATGCCGCCCTCGCCCACTGGGTCTTGCCGGGCCTCGGCGAAGGTCGGTTGCTGACCGGTTTTGACGACCCGGCCGACATTGCTGCCTTTTACCTGGACCAAGGTGCCGAAGTCGTGGTGATCAAGCTTGGCCCGGACGGCGCCTACTACCGCACCCAGCTGGGCCAGGGATTTGTCGCCGGCGTGCCGGTGTCCAGAGTAGTGGACACCGTCGGTGCCGGCGATGGTTTTGCCGTCGGCCTGATCAGCGCGTTGCTCGAAGGCCGCGACGTCAGCGAGGCGGTACAGCGCGCCAACTGGATCGGCAGCCGCGCGGTGCAGAGCCGCGGGGATATGGAAGGCTTGCCGACACGCCAAGAATTACTGGCCGAATTTGAAACTGCCGATCGCGAGCAGGCTCGCTCCCACAAGGGCCGCCGCTGAMPEFDVLSFGETMAMLVADQSGDLASVDQFHKRIAGADSNVAIGLARLGFQVAWLSRVGADSLGRFVVQTLEREGLDCRHVAVDPAHPTGFQFKSRTDDGSDPQVEYFRRGSAASHLSIDSIAPPLLRARHLHATGIVPALSDTARAMSFELMSRMREAGRSLSFDPNLRPSLWASEALMISEINRHAALAHWVLPGLGEGRLLTGFDDPADIAAFYLDQGAEVVVIKLGPDGAYYRTQLGQGFVAGVPVSRVVDTVGAGDGFAVGLISALLEGRDVSEAVQRANWIGSRAVQSRGDMEGLPTRQELLAEFETADREQARSHKGRRPGPT0018060_1473DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018060-kdgK-K00874NANA
D1-35_041431299ttuB_2Putative tartrate transporterATGCAAACGCTCAACCTCGCCACCCGCCGCTGGTGGTACATCATGCCCATCGTGTTCATCACCTACAGCCTGGCCTACCTCGACCGCGCCAACTATGGCTTCGCCGCCGCGTCGGGCATGGCCGAGGACCTGATGATCACCCCTGGGCTGTCCTCGTTGCTCGGCGCACTGTTTTTCCTCGGCTATTTTTTCTTCCAGGTGCCGGGAGCGATATACGCGCAAAAGCACAGCGTCAAGAAGCTGATCTTCGTCAGCCTGATCCTCTGGGGCTCGCTGGCGACCCTCACCGGGGTGGTGTCCAACGCGTACTGGCTGATCGTGATCCGCTTCATGCTCGGCGTGGTGGAAGCCGCCGTGATGCCGGCGATGCTGGTCTATCTGTGTCACTGGTTCACTCGGGCCGAACGCTCGCGCGCCAACACTTTCCTGATCCTCGGCAACCCGGTGACCATGTTGTGGATGTCAGTGGTCTCAGGCTATCTGGTGGAGCAATTCGACTGGCGCTGGATGTTCATCATCGAGGGGCTGCCGGCGGTGCTCTGGGCCTTTGTCTGGTGGCGCCTGGCCGATGATCGCCCGGCCCAGGCCAAGTGGCTCAGCGACCAGGAAAAACAAGACCTGGAAACCGTGCTGGCGGCCGAACAGGTCGGCATCAAGGCAGTGAAAAACTATGCCGAGGCCTTCCGCTCGCCCAAGGTGATCATCCTGGCCCTGCAGTTTTTCTGCTGGAGCATCGGCGTCTACGGGTTTGTGCTGTGGTTGCCGTCGATCCTCAAGGCCGGCCTGAAAATGAACATGGTCGAGGCCGGGTGGCTGTCATCGCTGCCTTATCTGGCGGCGGTAATCGCCATGCTGATCGTCTCCTGGGCGTCGGACAAGGTGCAGAAGCGCAAGCGTTTTGTCTGGCCGCCGCTGCTGATCGCCTCCATCGCCTTCTACGCCTCCTATTTGCTCGGGGCGGAACATTTCTGGTGGTCCTACGCCTTGCTGGTGCTTGCCGGCGCGTGCATGTACGCGCCCTACGGTCCGTTTTTCGCCATCGTTCCGGAAATCCTCCCGGCCAACGTCGCCGGCGGCGCCATGGCGCTGATCAACAGCATGGGCGCGCTGGGCTCGTTCGGCGGCTCGTACCTGGTGGGCTACCTCAATGGCTCCACCGGCTCCACCGGCATGTCCTTCCTGCTGATGAGTGGCGCGTTGCTGCTGTCGGTGGTGCTGACCCTAGCCCTCAAGCCCGGCGCCAGTGACCGGGTCGTGTCCAAAACCGCGACGCCAAACCCGGCGCCAGCACGTTCCTGAMQTLNLATRRWWYIMPIVFITYSLAYLDRANYGFAAASGMAEDLMITPGLSSLLGALFFLGYFFFQVPGAIYAQKHSVKKLIFVSLILWGSLATLTGVVSNAYWLIVIRFMLGVVEAAVMPAMLVYLCHWFTRAERSRANTFLILGNPVTMLWMSVVSGYLVEQFDWRWMFIIEGLPAVLWAFVWWRLADDRPAQAKWLSDQEKQDLETVLAAEQVGIKAVKNYAEAFRSPKVIILALQFFCWSIGVYGFVLWLPSILKAGLKMNMVEAGWLSSLPYLAAVIAMLIVSWASDKVQKRKRFVWPPLLIASIAFYASYLLGAEHFWWSYALLVLAGACMYAPYGPFFAIVPEILPANVAGGAMALINSMGALGSFGGSYLVGYLNGSTGSTGMSFLLMSGALLLSVVLTLALKPGASDRVVSKTATPNPAPARSNANANANANA
D1-35_04144978ghrB_3COG1052Glyoxylate/hydroxypyruvate reductase BATGAAAAAACACGTGGTGTTGTACAAAACGCTGTCAGCGCAACTGATGGAGCGCCTGCAAGCGCAGGCCCAGGTCACCCTCATCGAACGCCTCGACGCCCAGGGTCTTGCGCAATTGCGCGAGGCCCTGCCCAGTGCGCATGGCTTGCTCGGCGCGAGCCTGAGGCTCGATGCGCCGCTGCTGGACCTGGCGCCTGACCTTGAGGCCATCGCCAGCGTTTCGGTCGGGGTCGACAACTACGACATCGATTACCTGAGCGAACGCCGGATCCTGCTCACCAACACGCCGGATGTACTGACCGAAACCACCGCCGATACCGGGTTCGCCTTGATCCTGGCTACGGCCCGACGCGTCGTCGAACTGGCCAATCTGGTTCGGGCCGGCCAATGGCAGCAAAGTATCGGCCCGCGGCATTTCGGCAGCGATGTCCATGGCAAGACCCTGGGCATCGTCGGCATGGGCCGCATTGGCGAAGCCCTGGCCCAGCGCGGCCACTTCGGCTTTGGCATGCCGGTGCTCTATCACAGTCACTCGCCCAAGCCTGCGGTGGAACAACGTTTTAATGCGCGCTACTGCGACCTCGATACACTGCTGCACGAAGCCGATTTCATCTGCCTGACCTTGCCCCTGACAGCTGAGACCCAAGGGCTTATCGATGCGCAGGCATTTGCACGGATGCGGCCCGAAAGCATCTTCATCAATATTTCCCGGGGCAAGGTCGTGGACGAAGCGGCGATGATCGAAGCCCTGCGCAGCGGGCAGATCCGTGGCGCCGGGCTGGATGTGTTCGAACACGAGCCCTTGAGCCCGGACTCGCCACTGTTGCAGATGGACAACGTGGTCGCGACGCCGCACATGGGCTCGGCGACCCACGAGACACGCGAGGCCATGGCGCGCTGCGCCGTGGACAACCTGCTGGCGGCGTTGGCGGGTGAGCGGCCGATGAATCTGGTGAATCCGGGGGTTTGGAAAGGCTGAMKKHVVLYKTLSAQLMERLQAQAQVTLIERLDAQGLAQLREALPSAHGLLGASLRLDAPLLDLAPDLEAIASVSVGVDNYDIDYLSERRILLTNTPDVLTETTADTGFALILATARRVVELANLVRAGQWQQSIGPRHFGSDVHGKTLGIVGMGRIGEALAQRGHFGFGMPVLYHSHSPKPAVEQRFNARYCDLDTLLHEADFICLTLPLTAETQGLIDAQAFARMRPESIFINISRGKVVDEAAMIEALRSGQIRGAGLDVFEHEPLSPDSPLLQMDNVVATPHMGSATHETREAMARCAVDNLLAALAGERPMNLVNPGVWKGPGPT0001310_692DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-METHYLGLYOXAL_DETOXIFICATION,PGPT0001310-ghrB-K00090NANA
D1-35_041451443atm1COG5265ATM1-type heavy metal exporterATGGCCGCGTCTATTGAGTGGCTGACAAACCTGATGCGAAAGGAGTTTGCTCGATTCAACTCATGGCGAATAGGCCACTTCATAAAATCAGTCGAGCGTGGGATTAACGCTAACGAGCAACTATTGACATTTTTTGTCACCGTGGGACTGCCGTTGTGCCTGGAATTCCTGATTGTTGGCGGTGCGTTTTTTTACATGGGTGGCAGTGAAGTTTTTGCGGGAATGACCGGTTTAGGAATCATCTATCTAGCTGCTACCCACAGGATTATCAGATGGCGCAGAAAACACATTGATGCCGTCAACGAGCAGGAAGATGAATTGAGCGCTCATTTGTACAACACCCTCAACGCCGGCAAAGCAATAAAGCTGGAAAATGCCGAGCCCACCGCGATACAACCGTTAAACGAGGCTTTTAAAGGCTACGCCGACGCTGCGGTGGGCGCGGCAACCTCGGGTGGTTTTCTGAGTGCCGCCAAGATTCTGTTCGTTAGCCTCTCCACGGGTGGATTGCTGGGATGGGGGGTTATTGATCAGCTTTCGATCCAGCCCAGTATCAGTGTCGGTCAACTGGTCGCCGTTTTTTCAATCGCCGGCAGCTATTTATTGAATATCGCAGCGTTGACGGAGGGCTATCGAGTAACGGATCAGTTTCTTGCCGATCAGCGTCGACTTCAGAGCCTGCTTTCGCTCCCGAACTTTGACCATTGCGATCGGAAATCGGAGGTCTCTTTTCGGGAGTCATCGACACTGACTCTGCTGCCATGCGGACTCACCGAAAACGACGACGTACGCCTGTCGATTACGCAAGCGCTGACTTTCATTCAGAATCAATCAGTGGCAATCATCGGTCAGAGCGGTGCAGGCAAGTCTACGTTATTGGAAGTTCTTGCCGGTCTGGACCTGGAAACGCGAAATCAGCTCAGTATCGATGGCACCCCGATTTCCCTATTGAACCCTCGCGTTCATTTGAATGCGTTGAGGTACTGCCCTCAACAACCGCGTTTTTTGGAAGGTCCCTTTGAACGCTCCGTTCTATTCGGCGCTAAATCGTCGCCTCGCCTCGACCGGGCAATACGGCGACTGCAGCTACAAACAATCGTTTCTGACCGGACCATCGGTGAGCACGCATCGAATATTTCCGGAGGTGAAGCCAAGCGTTTGTCGCTGCTGCGTCTTATCAACAAGCCTGGACGATTCAACTTGTTCGACGAGCCTAGTGCATCAATCGAGCCCGGGCTGACCAATGCCTTATGGGACCTGCTGTTTGATATTTTCTCAAAACGCGGCTTGATCTGTGTCACCCATGATCTTGATCATCTGTTGCGCTTTGATCGGGTGATTGTCCTGCACAACGGTGCAATCGTTGACGACGGACACTGGCGGGAGCTGGTCAACAGGCCAGCAATCAAATTGTTGCTTGATGACATCAAGACCGGACCCTAGMAASIEWLTNLMRKEFARFNSWRIGHFIKSVERGINANEQLLTFFVTVGLPLCLEFLIVGGAFFYMGGSEVFAGMTGLGIIYLAATHRIIRWRRKHIDAVNEQEDELSAHLYNTLNAGKAIKLENAEPTAIQPLNEAFKGYADAAVGAATSGGFLSAAKILFVSLSTGGLLGWGVIDQLSIQPSISVGQLVAVFSIAGSYLLNIAALTEGYRVTDQFLADQRRLQSLLSLPNFDHCDRKSEVSFRESSTLTLLPCGLTENDDVRLSITQALTFIQNQSVAIIGQSGAGKSTLLEVLAGLDLETRNQLSIDGTPISLLNPRVHLNALRYCPQQPRFLEGPFERSVLFGAKSSPRLDRAIRRLQLQTIVSDRTIGEHASNISGGEAKRLSLLRLINKPGRFNLFDEPSASIEPGLTNALWDLLFDIFSKRGLICVTHDLDHLLRFDRVIVLHNGAIVDDGHWRELVNRPAIKLLLDDIKTGPNANANANANA
D1-35_04146960hypothetical proteinATGGAACATCGTGAAGCGCTGCTGGCGCTGCGAACCTTTCTTTCAACGCAGATTCTCGGCCAGGAAAAACTCATCGAGCGCCTGCTCATCGCCCTGCTCGCCGACGGCCACATGCTGGTGGAAGGCGCGCCCGGGCTGGCCAAGACCAAAGCGATCAAAGAGCTGGCCGAGGGCATCGAAGCGCAGTTCCATCGCATCCAGTTCACCCCCGACCTGTTGCCCGCCGACATCACCGGCACCGAGATCTATCGCCCGGAAACCGGCAGCTTCGTGTTCCAGCAAGGGCCGATCTTCCACAACCTGGTGCTGGCGGACGAAATCAACCGTGCCCCGGCCAAGGTCCAGTCGGCCCTTCTCGAAGCGATGGCCGAGCGGCAGGTCAGCGTCGGGCGCAGTACTTATGAGCTGTCGCCACTGTTCCTGGTGATGGCCACGCAGAACCCGATCGAGCAGGAAGGCACCTACCCGCTGCCCGAAGCACAGCTCGACCGGTTCCTGATGCACGTCAAGATCGGGTTTCCGGACGCCGCGGTCGAGCGCCGGATCCTGCAGCAGGCACGCGGTGAGGCGTTGAATGGCGAAACCAAGCCTGAACGTCGCGTCAGCCAGCAGGCAATTTTTTCGGCGCGCAAGGAGATCCTCGGGCTGTACATGGCCGACGCCGTGGAGGAGTACCTGGTGCAACTGATCATGGCCACTCGCAACCCGGCCAAGTTCGACCCGGAGATGGCCGAGTGGATCGCCTACGGTGCCAGCCCGCGGGGCTCGATTGCCCTGGACCGCTGCGCCCGGGCCCACGCCTGGCTGGCCGGACGCGACTTCGTCAGCCCGGAAGACATCCAGGCCGTGCTGTTCGACGTGCTGCGCCATCGCATCATCCTGTCGTTCGAAGCCGAAGCCGCCGGCATCGACCAGGACCGGGTCGTGCAGCGGATTCTCGACGTCGTCGCTGTCGCTTGAMEHREALLALRTFLSTQILGQEKLIERLLIALLADGHMLVEGAPGLAKTKAIKELAEGIEAQFHRIQFTPDLLPADITGTEIYRPETGSFVFQQGPIFHNLVLADEINRAPAKVQSALLEAMAERQVSVGRSTYELSPLFLVMATQNPIEQEGTYPLPEAQLDRFLMHVKIGFPDAAVERRILQQARGEALNGETKPERRVSQQAIFSARKEILGLYMADAVEEYLVQLIMATRNPAKFDPEMAEWIAYGASPRGSIALDRCARAHAWLAGRDFVSPEDIQAVLFDVLRHRIILSFEAEAAGIDQDRVVQRILDVVAVANANANANANA
D1-35_04147945hypothetical proteinATGAATAACCCACTGGCGCCCGTCCCGGGCATCCGCGTCAGCCTCTCGGAGCTGATCGAGATGCGCCATCGCGTGCGCGAAGTGCAGTTGTTCTCCACCCCTGGCCAGCGCAGCCCGCTGATCGGCCTGCACCATTCCAAGCTGCGCGGGCGCGGAGTGGACTTCGATCAGGTGCGGGTCTACCAGGCCGGCGACGACGTGAGGACCATCGACTGGCGCGTCACCGCCCGAACCCAGGAGCCCCACACCAAACTGTTCCATGAAGAACGCGAACGGCCGATCTTCATCATGATCGAGCAAAGCCACCGCCTGTTCTTCGGTTCCGGGCAGGTCTTCAAGTCGGTACTCGCCGCCCAGGCCGCCAGCCTGATCGGCTGGGCCGCGCTGGGGCACAATGACCGGGTCGGCGGCCTGGTGTTCGGCAATAACAGCCACTACGAGGTCAAGCCTCGGCGCAGCAAACAAAGCCTGCTGCAACTGCTCAACCGCCTGGTGCGCGTCAATCAGTCGTTGCACACCGAAGGCGAGTCGGACCGCGACTCCTTTGGTGTCGCCTTGCGCCGGGCCAGGGAAGTCCTGCGGCCCGGCAGCCTGGCGATCGTGATCTGTGACGAGCGCGCCCTCTCCGACGGTGCCGAGCAGCAGTTGAGCCTGCTGTCGCGTCATTGCGACCTGCTGCTGCTGCCGCTGTCCGACCCGCTGGACCACGCCCTGCCCGCCGCCGGCCTGCTGCGGTTTGCCCAGCGCGGTGAGCAATTGGAGCTCGACACGCTGAACCTGGAACTGCGCCAGACCTACCGCGCCCAGGCCGAGGCGCGCCTGGAGCGCTGGGAAATGCTGGCGCAGAAGCTGCGGATCCTGATGCTGCCCTTGAGCACTCAAGGCGACATGGTCGAACAACTGCGCGAGTACCTGAACCCCAAGCGCCCGGGGAAAACCCGATGAMNNPLAPVPGIRVSLSELIEMRHRVREVQLFSTPGQRSPLIGLHHSKLRGRGVDFDQVRVYQAGDDVRTIDWRVTARTQEPHTKLFHEERERPIFIMIEQSHRLFFGSGQVFKSVLAAQAASLIGWAALGHNDRVGGLVFGNNSHYEVKPRRSKQSLLQLLNRLVRVNQSLHTEGESDRDSFGVALRRAREVLRPGSLAIVICDERALSDGAEQQLSLLSRHCDLLLLPLSDPLDHALPAAGLLRFAQRGEQLELDTLNLELRQTYRAQAEARLERWEMLAQKLRILMLPLSTQGDMVEQLREYLNPKRPGKTRNANANANANA
D1-35_04148495hypothetical proteinATGAGCAGCCTCGATCAGTTGCAACCACTGATGGCGCCACCGACCATCGGCTTCTGGCCGCCCGCGCCGGGCTGGTGGTTGCTGCTGGTATTACTGCCATTGCTGGGCCTGGGCCTGTGGCACTTGCGCCGGTTCATTCCCGCCAAGCGCACCCAGGACCGCGCCGAGCAACCCCTGGATCCGGTGCGCCTGGCCGCGCTGGCCGAGCTGGCGCGGTTGCCCAAGCCCTACGACGGCGCGCCGGCCGGGGCCTGGCTGCAACAACTCAACGGGCTGCTCAAGCGCCTGTGCCGCAACCATTATCCCTACAGCCAGAGCCATACTCTCAACGGGCGCAAATGGCTGGCCTTCCTCGACAACCGCTGCCCGGCCGCCGGCCTGACCCGCTGGATGATCCTTGTAGAAGGTGCCTACAAGCCCGAATGCAAGCTTGACGACAAAGCCATCGCCGGCCTGACGCAAGCGGTCGAGACGTGGATTCGCAAACATGTTTGAMSSLDQLQPLMAPPTIGFWPPAPGWWLLLVLLPLLGLGLWHLRRFIPAKRTQDRAEQPLDPVRLAALAELARLPKPYDGAPAGAWLQQLNGLLKRLCRNHYPYSQSHTLNGRKWLAFLDNRCPAAGLTRWMILVEGAYKPECKLDDKAIAGLTQAVETWIRKHVNANANANANA
D1-35_041491080hypothetical proteinATGTTTGAGTTCGCCTGGCCGTGGATTTTCGCCCTGCTGCCGCTGCCCTGGCTGATGCGCATGGTGCTGCCTGCAGCAGACAGTGGCGAACCGGCACTCAAAGTGAGTTTCCTCGAGGACCTCGAAGGGCTGGTCGGGCGCCGGGCCCGGGCCAATCTGCCGACATGGCGCCAGCAGGCGCCTTTCATCCTGCTTTGGTTGTTGCTGCTGATCGCCGCCGCCCGCCCGCAGTGGCTGGGCGAGCCGTTGCCGATTGCCGCCAGCGGTCGCGACCTGCTGGTGGCGGTGGATGTCTCCGGGTCCATGGATTTTCCTGACATGCAGTGGAAAGACGAGGACATCAGTCGCCTGGCGCTGGTCCAGCACATGCTCGGGGATTTTCTCGAAGGTCGGGAAGGTGACCGGGTCGGCCTGATTCTGTTTGGCAGCCAGGCCTACCTGCAGGCGCCGCTGACCTTCGACCGCCGCACCGTACGCCACTGGCTCGACGAGGCGCGCATCGGCATCGCCGGCAAGAACACGGCGATCGGCGATGCGATTGGCCTGGCCCTCAAACGCCTGCGGCAACGCCCGGCCAACAGCCGCGTGCTGATCCTGGTCACCGATGGCGCCAATAACGGCGGCGAAATCGACCCGCTGACTGCCGCCCAGCTGGCTGCCGACGAAAGCGTGAAAATCTACCCGATCGGCGTGGGTGCCGATCCGGAGCAAAGTGGCACGGCGGGATTTCTCGGCGTCAACCCCAGCCTGGATCTCGACGAAGCGACACTCAGGGAAATCGCTCAGATCACCGGCGGCCGGTATTTCCGCGCCCAGGATGGCGAGCAGTTGCTGGCGATCAAGACCACCCTCGACCAACTCGAACCGGTGACCCAGCAGCCGACCCAGGCCCGTCCCGCCCAGGCGCTTTATCATTGGCCGCTGGCCGTTGCCTTGCTGTTGAGCATGTTGCTGGTGGTTCGTGAGCGCTGGCCGGACAACCCCTTGCAACGCCTGTTCACCCAGCCGCTGTTTCAACCCTCGCAAACCTCTGAATGGCGCCAGCGGCTCAAGCGCCTGCGACTGCGGAGGCGCCGATGAMFEFAWPWIFALLPLPWLMRMVLPAADSGEPALKVSFLEDLEGLVGRRARANLPTWRQQAPFILLWLLLLIAAARPQWLGEPLPIAASGRDLLVAVDVSGSMDFPDMQWKDEDISRLALVQHMLGDFLEGREGDRVGLILFGSQAYLQAPLTFDRRTVRHWLDEARIGIAGKNTAIGDAIGLALKRLRQRPANSRVLILVTDGANNGGEIDPLTAAQLAADESVKIYPIGVGADPEQSGTAGFLGVNPSLDLDEATLREIAQITGGRYFRAQDGEQLLAIKTTLDQLEPVTQQPTQARPAQALYHWPLAVALLLSMLLVVRERWPDNPLQRLFTQPLFQPSQTSEWRQRLKRLRLRRRRPGPT0014015_4036DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-CHLORIDE_TRANSPORT,PGPT0014015-yfbK-K07114NANA
D1-35_041501734hypothetical proteinATGATCGCGCTCTGGCCGCATTGGCTGCGTCCCGCTTTTATCTTGCTGCTGCCCCTGTTGGGCTGGCTGCTCTGGCAACTGTGGCACCGACAGAAACGCGTGGGCCGCTGGCAGATGATCCTGCCGCCGGCATTCCATGCCGTGCTGCTCACCGGTGGCAGTGGTCGCGAAAGCAAGCTGCCGTGGATCGCCCTCGGGCTGGGCTGGCTGCTGGTGGTGCTGGCCTTGCTCGGCCCCAGCTGGACGCGGGTCGAACAGACCAGCCAGAAACCCGCCGATCCGCTGGTGGTTATTCTCGAACTGACGCCAGAGATGCTCGCCACCGACGTCCCGCCCACGCGCCTGGAACAGGCCCGGCGCAAAGTGCTCGACGTGCTGCAGAACCGCAGCGACGCGCAGACCGCAATCATCGTCTATGCCGGCAGCGCTCATACGCTGGTGCCGCTGTCCGACGACCTGGCCACCAGCGCCAACCTGCTCGAAGCCCTGGCGCCATCGATCATGCCGCAAGGCGGCCACCGTGCCGACCTGGCCGTCAACAAGGCCATGGCGTTGCTGGACCAGGCCGGGCTCGGCCACGGCCGGATCCTGTTGATCGGTTCATCCCTGAACGAGCAGGAACGCCTTGGCATAAGCCAGGTGCTCGACGGTTCCGCCACTCGTTTGCTGATGCTCGGCATCGGTACGCGTGAAGGTGCGCCCGTGGCCCAGGAAGACGGCAGTTACCTGAAGGATGCCCAAGGCGCGATCCTGGTGCCGCGCCTGGACAGCCCAAGCCTCAAGTCATTTCTCGATGAGCTGGACGGCCGTTACCGTCCCGCGCATCTGGACGACAGCGACCTGCGCGGCCTGGGCCTGCTGGACGGTCCGCGCCGCCTGCGCAGCGATGGCCAGAAACTGCGCCTGGACACCTGGGCCGACCAGGGTTATTGGCTGCTGTTGCCGCTCCTGCTGCTGGCCGCCTGCGCCGGGCGTCGGGGCTGGCTGTTCTGCCTGCCGCTGCTGTTTGCGCTGCCGCAGACCAGCCATGCCTTCGAATTCGAGGACCTGTGGCTGCGCCCCGATCAACAGGGCCAGCACCTGCTCAAGCAGAAACGCCCGGCCGAGGCCGCCACTCGCTTCGAGGACAGCCAATGGCAAGGTGTCGCCCTCTACGAGGCCGGCCAGTACAGCGAGGCCGCCCGGCGTTTCGCTGAAAGCAACGATGCCCGCGCGCATTACAATCGCGGCAATGCGCTGGCCCGCAGCGGCGAACTGGAGGCCGCGATCGATGCCTATGAGCAAGCGCTGGAATTGCAGCCGGACCTGCGCCCGGCGCAGACCAACAAGGCCTTGGTGGAAAGCCTGCTGAAAGAGCAGGCTGCGCCACCGGACACCGCCAAGCCCGACGAAAACCAGGACCCCGCGCCCACCGAGCAATCGCCGGATAGCGATACCCCGAATCAGTCGTCCGAGCCGGGCCAGCCTTCTTCCGAGGCGCCAGCGACGCCGGAGCAATCCCCGGCGTCCCAGGTGCCACCGACCCGCGCCGAGGACGTGCCCGGCAGCGAACTGCCCGACGAGCAGACCACCACCCCGCCGCTGCGCCCGGCCGCGGGCCAGCGCAATGCCGAAGAGCAGCGCCAGGCACTGGAACAATGGCTGCGCCAGATCCCGGACAACCCGGGCGAACTGCTCAGGCGAAAATTCTGGTATGAACAGCAAAGCCACCAGGCTCAGGAAAAACACCAATGAMIALWPHWLRPAFILLLPLLGWLLWQLWHRQKRVGRWQMILPPAFHAVLLTGGSGRESKLPWIALGLGWLLVVLALLGPSWTRVEQTSQKPADPLVVILELTPEMLATDVPPTRLEQARRKVLDVLQNRSDAQTAIIVYAGSAHTLVPLSDDLATSANLLEALAPSIMPQGGHRADLAVNKAMALLDQAGLGHGRILLIGSSLNEQERLGISQVLDGSATRLLMLGIGTREGAPVAQEDGSYLKDAQGAILVPRLDSPSLKSFLDELDGRYRPAHLDDSDLRGLGLLDGPRRLRSDGQKLRLDTWADQGYWLLLPLLLLAACAGRRGWLFCLPLLFALPQTSHAFEFEDLWLRPDQQGQHLLKQKRPAEAATRFEDSQWQGVALYEAGQYSEAARRFAESNDARAHYNRGNALARSGELEAAIDAYEQALELQPDLRPAQTNKALVESLLKEQAAPPDTAKPDENQDPAPTEQSPDSDTPNQSSEPGQPSSEAPATPEQSPASQVPPTRAEDVPGSELPDEQTTTPPLRPAAGQRNAEEQRQALEQWLRQIPDNPGELLRRKFWYEQQSHQAQEKHQPGPT0014015_1835DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-CHLORIDE_TRANSPORT,PGPT0014015-yfbK-K07114NANA
D1-35_041511638hypothetical proteinATGACCCGCTTCACCGCCTATCTCCTCGTCTTGCTGCTCTGGGCTGCTGGGTCCCAGGCCGCGCAGCTGACTGCCAGCGTGGACCGCAGTCGCCTGAACTCCGGGGAGACCGTCGAGCTGACGCTGGAGTCCAACGATGCCACGCTGTTCGGCAAACCTGACCTGAGCCCGCTCCAGGCACTGTTTGATGTGCGCGGTACCCGCCAGGTCAACCAGTTGACCACCCTTGACGGCGAGAATCGCGCCACTACCCGCTGGATCGTCACGCTGCTGCCGCGTCAGAGCGGCACGGTGGTGATCCCGCCGCTGCAACTGGGCGAAGTCAGCAGCCAGCCGATCACTTTGCAGGTGATCGAAAGCGAAACCCGCAACGCCTCTGGCACCCTCGCGCCGGTGTTCATCGAAGCCAGCCTCGACCAGCGCGAGGTGTATGTGCAGGCCCAGGCCATCCTGACGCTGCGCATCTACCATTCGGTGTCGCTGTACGACGACAGCAGCCTGACACCGCTGCATATTCCCGATGCGCGCACCGAGCAACTGGGCGAATCGCGCACCTACGAAAAAGTCATCAACGATGTGCGCCACGGCGTCATCGAGTTGCGTTACGGCATCTACCCGCAGCGCAGCGGCGAACTGGCGATCCCGGCCCAGACCTTCAGCGCCACGCTGGTTGAACCCACGGCCCAGGGCACCGCAGCACCGGGCGCCAAACCCGGCCAGTTGATGCGCGTCAGTTCCACGCAACTGCAACTGACCGTCAAGCCCAAGCCCGCCAGTTACCCGGCCGACCTCCCCTGGCTGCCGGCGCGCAGCTTGTCCTTGAGCGAAAGCTGGAGCCCGGAACCGACTCACAGCCAGGTCGGCGATTCGCTCACCCGCAGCCTGACCCTGGAGGCGGAAGGCTTGACCAGCGCCCAGTTGCCGCCGCTTCCGCCTACCGAAATCAATGGCCTGCGGCGCTACCCCGACCAGCCGGTGCTGAGCAGCCGCAGCAGCGAGCGCGGCCTGGTTGGCAGCCGCGAGGACCGCGAAGCCCTGGTGCCCAATCGTAGCGGCACCATCGAGCTGCCGCCCGTGGAAGTGGTCTGGTGGAACACCCTGGAAGACCACCTGGACCGCACCAGCCTGCCGGCCCGGACCCTGCAAGTGGCGAACAACCCGAGCCTGATGGTCGACACACCGGCAGGCACCACTCAGATCGTCACCACTGTCGACAGCGAAACCCTCTGGTACTGGCAACTCAGTACGTTGATCCTGGCCTGCACGACGTTGCTCGGCTTCGGCCTGTGGTGGCGCGCGCGTTGGCAACCGGCGATCCTGCGCTCGGCCCAGGCCGGGCCGAGCCCACGCACACTGCTGGATGACCTCAAGCGCGCCTGCCTGGCCAACGACTCGCACGCCACCCGCCAGGCGCTGGATGCCTGGGCTCGACAGCAACCGGAAACCTTGGCCGACATGGCGGCGCGTTTCGTGCCACTGTCCGACGCCCTCGACGGCTTGAACGGCGCCCTCTACAGCGAAACCGGCCAGTATTGGCAAGGGGAAGACCTGTGGCGGGCGATCCGGACCATTCCGCCTCTGGAAGGAACGCCGGACGCTGCCAGTGATTCGAGCCTGCCGCCGCTCTATCCCAAATAAMTRFTAYLLVLLLWAAGSQAAQLTASVDRSRLNSGETVELTLESNDATLFGKPDLSPLQALFDVRGTRQVNQLTTLDGENRATTRWIVTLLPRQSGTVVIPPLQLGEVSSQPITLQVIESETRNASGTLAPVFIEASLDQREVYVQAQAILTLRIYHSVSLYDDSSLTPLHIPDARTEQLGESRTYEKVINDVRHGVIELRYGIYPQRSGELAIPAQTFSATLVEPTAQGTAAPGAKPGQLMRVSSTQLQLTVKPKPASYPADLPWLPARSLSLSESWSPEPTHSQVGDSLTRSLTLEAEGLTSAQLPPLPPTEINGLRRYPDQPVLSSRSSERGLVGSREDREALVPNRSGTIELPPVEVVWWNTLEDHLDRTSLPARTLQVANNPSLMVDTPAGTTQIVTTVDSETLWYWQLSTLILACTTLLGFGLWWRARWQPAILRSAQAGPSPRTLLDDLKRACLANDSHATRQALDAWARQQPETLADMAARFVPLSDALDGLNGALYSETGQYWQGEDLWRAIRTIPPLEGTPDAASDSSLPPLYPKNANANANANA
D1-35_041521245sbcDCOG0420Nuclease SbcCD subunit DTTGCGTCTGTTTCACACCTCCGACTGGCACCTGGGGCAAAACCTCCACGGCCAGGATCGCGACTTCGAACACGCCTGTTTCCTCGACTGGCTGCTGCGTCAACTGGGCAGCGAAAAGCCCGATGTGCTGCTGATTGCCGGCGATATCTTTGACACCGTCAACCCGCCGGTCAAAGCCCAGGAGCGGCTGTACGACTTCATCGTCAGCGCCCACGAACAAAACGCCAACCTGACCATCGTCATGATTGCCGGCAACCACGACTCCGGCTCACGCATCGAACTGCCGGCGCCGTTGATGCGGCGCTTGCGCACCCATGCCCTGGGCCGGGTGCTGTGGCTGGATGATGGACAACTGGACGTCGAGCGTCTGTTGCTGCCATTGCCCGACGCCAAGGGCAAGGTCCGCGCCTGGTGCCTGGCGCTGCCGTTCCTGCGGCCGGCGGAAGTCACCGGCGCGCAGTTGGGGGATGATTACCTGCGCGGCATCGGCCAGGTCCATGAATGGCTGATCGCCGCTGCCAATGACAAACGCAAGAAAGGCCAGGCACTGATCGCCGTCAGCCATGCGCACATGGCCGGCGGCTCGGTATCGGAGGACTCCGAGCGCAGCCTGATCATCGGCAATGCCGAAGCGCTGCCCGCCAGCCTCTTCGGCCCGAGCATCAGCTACGTTGCCCTCGGCCACCTGCACAAGCCGCAGAAGGTCAACGGTGAAGAGCGCATCCGCTACAGCGGCTCGCCGATCCCGCTGTCGTTCTCCGAGATCGGCTATCAGCACCAGATCCTCGACGTCACCCTGGACGGCGAAACCCTGGTAAACGTCGAGCCCCGGCTGATTCCCCGCGCCGTCAACCTGCAGCGCCTGGGCCCGGCGCCGCTGGCCGATATCCTCCGGCAACTGAAGGACCTGCCGGACATCGACCTGCTGGCGGACGTGCAGCGCCAGCCCTGGCTGGAGGTTCGAGTGCGCCTCGACGAGCCGCAGCCCGACTTGCGCCATCAAGTGGAGACGGCATTGCAAGGCAAAGCCGTGCGGCTGGTGCGCATCGCCGCCGAGTACGCCGGCAACGGCAGCTCCAGCGGCGTCGAGGACGGCACCGCGCTGGTCGAACTGGACCAGTTGAGCCCGCAGGAATTGTTCAGCCGTGCCTGGCAGGACACCTACGGCAACGAAGTGGACGAACAGACCCTCAAGGATTTTGCCGTGCTGTTGCAAGACGTGCAGATGGAGAGCGAGCAGCCATGAMRLFHTSDWHLGQNLHGQDRDFEHACFLDWLLRQLGSEKPDVLLIAGDIFDTVNPPVKAQERLYDFIVSAHEQNANLTIVMIAGNHDSGSRIELPAPLMRRLRTHALGRVLWLDDGQLDVERLLLPLPDAKGKVRAWCLALPFLRPAEVTGAQLGDDYLRGIGQVHEWLIAAANDKRKKGQALIAVSHAHMAGGSVSEDSERSLIIGNAEALPASLFGPSISYVALGHLHKPQKVNGEERIRYSGSPIPLSFSEIGYQHQILDVTLDGETLVNVEPRLIPRAVNLQRLGPAPLADILRQLKDLPDIDLLADVQRQPWLEVRVRLDEPQPDLRHQVETALQGKAVRLVRIAAEYAGNGSSSGVEDGTALVELDQLSPQELFSRAWQDTYGNEVDEQTLKDFAVLLQDVQMESEQPNANANANANA
D1-35_041533642hypothetical proteinATGAAGATCCTCGCGATTCGCCTGAAGAACCTCGCCTCCCTCGCTGGGCCATTTGAAATCGATTTCACCGCCGAGCCGTTGGCCAGCGCCGGCCTGTTCGCCATCACCGGCCCCACCGGCGCCGGCAAGAGCACGCTGCTGGATGCCTTGTGCCTGGCGCTTTTTGGTGCGGTGCCGCGCCTGAACAACACCGGTCGTGACGCCAAGGTACCGGACGCCGACGGCGAGATCGCCACGGGCGATCCGCGCACGCTGCTGCGCCGTGGCACCGGCGACGGTTATGCCGAAGTGGATTTTCGCGGTATCGACGGGCGCCGCTACCGGGCTCGCTGGGAGGCCAATCGCGCCCGGGAAAAAGCCGGCGGCAAATTGCAGGCCAGCCGCCAGAGCCTGCGCGACCTGGACAATGACCAACTGCTGGCCAGCCAGAAAGGCGAATACAAGACCCAGCTCGAAGCCGCCTTGGGCCTGAACTTCGAGCAGTTCACCCGCGCCGTGCTGCTGGCCCAGAGCGAGTTCAGCGCCTTTCTCAAGGCCGACGACAACGACCGCAGCGAGTTGTTGGAAAAGCTCACCGACACGGCCCTGTATACGCGTCTGGGCCGCCGCGCCTTCGACAAGGCCAAGCAGGCCAGGGAAACCCACAAGCAGTTGCAAGACCAGGCCACCGGCGTCACGCCGCTGGCCGCCGAAGCCCGCGCCGAGCTGGACCAACGCTTCAACGACGCCCAGCAACTGCTCAAGACCCAGCAGGCACAGCTCAAGCAATTGGAACAGCAGCACACCTGGCTCAGGGACCTGCGCCAGTTGCAGGACGAACAGGCCAGCGCCGCTGAACAACTGCAACAGGCACAGGCCGATTGGGCTGCGCTGGCCGACGAACGCCTGAAACTGACACGCCTGGAACAACTGACGCCCCAGCGGCACCAGTTCATCCGCCAGGCGGAATTGAACCGCCAGCTGGAGCCGCTGGCAGTCAGGATCCAGCAACTGACCCAGCAGCAAGTCGAATTGCATGAGCAACAGGCCGAACTGGAGAAAGGCCTGGGCGTGGCGCAATTGGCCTTGGCCGCCGCCCGCCAGCAGAGCGCCGACAACGCACCGCTGCTACGCCAGGCATTCGATGAACAGAGCAGCCTCGCCCGCCTGGCCAGGGAAACCGGCCAAGGTGCCGAACAGTTGCAACAGGTCCAACAGGCTTGCACCGACGGCCAGCGCAGCATCGACACCCTGCTCGAACAGCAACGGCAGGTTGATGAGCGCCTGCAAAGGATCGCCGGCGAACTGGAACAAAGTACCGATCTCGCACCGCTGGGCGATGCCTGGTCCGCCTACCGCGATCGCCTGCAACAGTTGATGTTGATCGGCAACCGGCTGAACAAGGGCCAGGACGAACTCGCGCTGCTGGAACAAAGCGCCACTCGCGCCGCCGATGACCTGGCAACCCGCCGGCAAAACCTCGAAGTGCTCTACAAGGAAGCCGGGGCCGAACCGCAAGCGGTGGCGGAACAGATCCAGTTGCTCGGCAACCTGCTGCAAGACAATCGCAAGCAACTGCGCGCTTTCGAAGAACTGACCCGGCTTTGGGCCAGCCAGCAAGAGCTGGACAAACGCAGCGCGGAGCTGGAGCGACGCCAGCAGCAAGCCTTGCAGGAGCGCGACCGGCTGGTGCGCGAAGGCGGCGAAGCCAAGGCCGAGCTGACCATTGCCGAACAGACCCTGACTGTCACCCGTGAACTGCTGGAACGCCAGCGCCTGGCTCGCAGCGAAAGCGTCGAGCAACTGCGCGAACAGTTGCAGGACAACCAGCCGTGCCCCGTCTGCGGCAGCGTCGAGCACCCGTACCATCAGCCCGAAGCGCTGCTGCAAAGCCTCGGCCGATTCGATGAAAGCGAAGAGGCCAATGCGCGCAGAGTCGTCGACCTGCTCAATGAAAAAGTCATCGATCTGCGAGCGCAATACAGTGGGGTCATTGCCCAGCTCAAGGAATTCAAACAGCAACAGGAACAACTCGCCGCCCAGCAACAAGGCCTCGCGCCAAGCCTCGAAGCCCATCCGTTGTCGGAACAGTTGCTGAGTCAGGCTCCAGACCAGCGCGACGCCTGGCTGGCCCAGCAAAACAGCCAGTTGAACCTGCGCATCAGCCAGGACGAACAACGCCAGGCCGCCCTGCTCACCCTGCAACAGGACGCCACGCGCCTGGCGCAGCAACTGCGCGAAGCGGAAACCGCCAGCCAGCAGGCGTCACTGCACCTGGGCAACCAGCAACAGGAAATGGCCCGCGACCGCCAGCGCCTGGAGGAAGAGCTCGGGCATTTCAGTGCGCTGCTGCCGGCCGATACCCTGCAGGCCCTGCGCAGCGATCCCGCCGCGACGTTCATGCGACTCGACCAGCGGATCACCCAGCGCCTGGCGCAACTGGAACAGCAACGCGAAGAACTCGGCGAACAACTTCAACGCCAGCAAGCCCTGGAGAAAGAGCAGGACCGCCAGCAGACCCGTGTGCAACAACTCGAAGCGGCGCAGCAGCAATTCAACGCACTGAATGAGCAACAGCAGACCTGCCAACAAAAGCTCACGCAACTGCTGGGCGAACATTCCAGTGCCGAACAATGGCAGCAACAGCTCGACCAGGCCCTGGAACAGGCCCGCCATGCCGAGGCAGCGGCCGGTCAGCAGTTACAGGAGTTGCGCAATACCCTCGTGCAACTGGCTGCCGAGCTCCAGGCCCGGCATGAGCAGGCCCAGTTGCTTGAGGCCGAACAGCAGACGCTCGCCGCCGGCATCGCCCAATGGCGCGCTTCTCATCCGGAACTCGACGACGCCGCGCTCGATGCCCTGCTCGGCCTCGACGAGCAACAGGTCAGTCAACTGCGGCAACGCCTGCTCACCAGCGAAAAAGCCATCGAGCAGGCCCGCGTCCTGCTCACCGAACGCGAGCAGCGCCTGCACAACCACCAGGCCCAACACAACGGCAATTTGCCGCCTGAGGAACTGACCCAAGCCTTGGCGGTGCTGCAGGAGCAGTTTGCCGCCAGCGAACAACGCTGCGCCGAGTTGCGTGCGGAACAGGCTGATGACCAGCGTCGGCAGCATGCCAACCAGGCCCTGGCCCGACAGATCGAGCAGGCCTATGCCGAATACCAGCGCTGGGCGCGCCTCGACGCCTTGATTGGCTCGGCCACCGGCGACCGCTTCCGCAAACTGGCCCAGGCGTACAACCTTGACTTGCTGGTCCACCATGCCAACGCCCAGTTGCGCCAACTGGTTCGCCGTTACCGGCTCAAGCGCGGCGGCAGCATGCTTGGCCTGCTGGTGATGGACACGGAAATGGGCGATGAACTGCGCTCGGTGCATTCGTTGTCCGGCGGCGAGACCTTCCTGGTCTCCCTTGCCCTGGCGCTGGGCCTGGCTTCGATGGCGTCCAGCACGCTGAGAATCGAATCGTTGTTCATCGACGAAGGCTTCGGCAGCCTCGACCCCGAATCGCTGCAACTGGCGATGGACGCCCTCGACGGCTTGCAGGCCCAGGGGCGCAAGGTCGCGGTCATCTCCCATGTGCAGGAAATGCACGAGCGGATCCCGGTGCAGATCCAGGTCCGTCGCCAGGGCAATGGGCTTAGCACGCTGGAGGTGAAATGAMKILAIRLKNLASLAGPFEIDFTAEPLASAGLFAITGPTGAGKSTLLDALCLALFGAVPRLNNTGRDAKVPDADGEIATGDPRTLLRRGTGDGYAEVDFRGIDGRRYRARWEANRAREKAGGKLQASRQSLRDLDNDQLLASQKGEYKTQLEAALGLNFEQFTRAVLLAQSEFSAFLKADDNDRSELLEKLTDTALYTRLGRRAFDKAKQARETHKQLQDQATGVTPLAAEARAELDQRFNDAQQLLKTQQAQLKQLEQQHTWLRDLRQLQDEQASAAEQLQQAQADWAALADERLKLTRLEQLTPQRHQFIRQAELNRQLEPLAVRIQQLTQQQVELHEQQAELEKGLGVAQLALAAARQQSADNAPLLRQAFDEQSSLARLARETGQGAEQLQQVQQACTDGQRSIDTLLEQQRQVDERLQRIAGELEQSTDLAPLGDAWSAYRDRLQQLMLIGNRLNKGQDELALLEQSATRAADDLATRRQNLEVLYKEAGAEPQAVAEQIQLLGNLLQDNRKQLRAFEELTRLWASQQELDKRSAELERRQQQALQERDRLVREGGEAKAELTIAEQTLTVTRELLERQRLARSESVEQLREQLQDNQPCPVCGSVEHPYHQPEALLQSLGRFDESEEANARRVVDLLNEKVIDLRAQYSGVIAQLKEFKQQQEQLAAQQQGLAPSLEAHPLSEQLLSQAPDQRDAWLAQQNSQLNLRISQDEQRQAALLTLQQDATRLAQQLREAETASQQASLHLGNQQQEMARDRQRLEEELGHFSALLPADTLQALRSDPAATFMRLDQRITQRLAQLEQQREELGEQLQRQQALEKEQDRQQTRVQQLEAAQQQFNALNEQQQTCQQKLTQLLGEHSSAEQWQQQLDQALEQARHAEAAAGQQLQELRNTLVQLAAELQARHEQAQLLEAEQQTLAAGIAQWRASHPELDDAALDALLGLDEQQVSQLRQRLLTSEKAIEQARVLLTEREQRLHNHQAQHNGNLPPEELTQALAVLQEQFAASEQRCAELRAEQADDQRRQHANQALARQIEQAYAEYQRWARLDALIGSATGDRFRKLAQAYNLDLLVHHANAQLRQLVRRYRLKRGGSMLGLLVMDTEMGDELRSVHSLSGGETFLVSLALALGLASMASSTLRIESLFIDEGFGSLDPESLQLAMDALDGLQAQGRKVAVISHVQEMHERIPVQIQVRRQGNGLSTLEVKNANANANANA
D1-35_04154603hypothetical proteinATGAGCCGCGCCACGCTGTACTCCTTCCGTCGCTGCCCCTATGCCATGCGCGCACGCATGGCGTTGCGTTACAGCGCGGTCGAACTGACGATCGTCGAAGTCGGCCTGAAGGCCAAGCCCGCCGAGATGCTTGCACTCTCGAGCAAAGGCACGGTGCCGGTGTTGCAGGTCGATGGCCGGGTGATCGATGAAAGCCTGGAGATCATCAACTGGGCCTTGGCCCAACACGATCCGCAGGACTGGCAGCTACGGGACGATGCCAAGGCCCAGGCGTTGACGGCAGCGTTGATCGAGGAAAACGACCAGGTATTCAAGCTTCACCTGAACCGCTACAAATACCCGGAGCGGCATCCCGAATACACGCAGGAACACTACCGCAGCGAAGGCGAAGTTTTTCTGCGCAAACTGGAAGGACTGCTTGAAACCCGTCCGTTCCTGGCGGCGGAGCATCAGAGCCTGGCCGACGTGGCGGTGATGCCCTTCATACGCCAGTTCGCCCATGTCGATCGCGACTGGTTTGCCCAGGCGCCCTATCCGCGGCTGCAAGGTTGGTTGCAGAAATTCCTGGATTCCGAGCTGTTCGTAGCGATCATGGCCAAGTGAMSRATLYSFRRCPYAMRARMALRYSAVELTIVEVGLKAKPAEMLALSSKGTVPVLQVDGRVIDESLEIINWALAQHDPQDWQLRDDAKAQALTAALIEENDQVFKLHLNRYKYPERHPEYTQEHYRSEGEVFLRKLEGLLETRPFLAAEHQSLADVAVMPFIRQFAHVDRDWFAQAPYPRLQGWLQKFLDSELFVAIMAKPGPT0013170_21123DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013170-gst-K00799NANA
D1-35_04155186hypothetical proteinATGGCCCGCGCAATCCTTTCTTCCGCCAGACACGGCGCTTACATCGCCATCGGCCTTTACGTCGCATTGGTGCTGGTGGTCAGCGTCGGCGCCCAATACCAAGGCTTCGTTGATGCATCGCTGCATGCGTCGGTTTCCACTGTCGCCGCCGAACGCGGCGCAGGCAAAGGGGCTGTCGGCGCATGAMARAILSSARHGAYIAIGLYVALVLVVSVGAQYQGFVDASLHASVSTVAAERGAGKGAVGANANANANANA
D1-35_04156126hypothetical proteinATGGCGATGCGTCTGGCAGTGATGCTGCTGTTTCTCTACTCCACTCCGATTGTCTCGGCGGCCCAGCCAATTCCTGGAGAGCTGGAAGTGGCTCGCGAGCGATTGTTGAGCTTGGTCAACGACTGAMAMRLAVMLLFLYSTPIVSAAQPIPGELEVARERLLSLVNDNANANANANA
D1-35_04157180hypothetical proteinATGAATCTGAATCTCTTCTCCGTTATTGCCGCTTCCGCTATCTCTGCTACCGTGGCATTGCCAGCCAGTGCCAGCATCGAAATCAGCGACAAGAAAAACCGCACCCAGAGCTACACTGAGAAATACCTGCAACAGAGCGCCAACTTCTACGCCGCACTGGATCACAAGACCCAACACTGAMNLNLFSVIAASAISATVALPASASIEISDKKNRTQSYTEKYLQQSANFYAALDHKTQHNANANANANA
D1-35_041581176pgl_26-phosphogluconolactonaseATGAAGATGCGTAGTTTCTGGCCATTGCTGATGGCCGGCAGCGTGGGCGCCATGGGCGTCCAGGCAGAAACCACCGAGCACTATCAATTGCTGGTGGGCTCCTACACTGCGGACCAGAGCCAGGGCATCTACCGCATGCAGTTCGACAGCCGGACCGGCCAGCTCGACGCCAAGCCATTGCAGGTGATCAAGACGGACAACCCGTCCTGGTTGACCCTTTCCAAGGACCTGAGCCGGCTGTTCGTGGTCAACGAAAACGGCCCGGGCCAGAAAGACCCGGTGGGCAAGGTCAGCAGTTACGCCGTTAACCCCAAGACCCATGAACTGAGCCTGATCAATCAGGTCCAGTCCCTGGGCAACGAGCCGACTCATTCCAGCCTGAGCCATGACGGCCAGCATCTGCTGGTGAGTAATTATTCCGTTCTGGAAAACCCGGGCGGCACCTTGGTCGTGCTGCCAGTGGGGGCGGATGGCAAGCTCGCGCCGGTGGTGCAGTCGGGCAGTCATCAGCCGAGTCGGGTCAACCCTGAGCGGCAGAAGTCGGGGCATGTGCATTCGGCGGTGCCTTCGCCGGACGGCAAGTATGTGTTTGCCAACGACCTGGGGGCGGACAAGGTATTCGTCTACCGCTACGACCCGAAAGCCAACCCCGAGCTGCCGCTGACGCCTGCCGATCCGGCATTCGTGCAGTTGCCGCCGGGCAGCGGGCCGCGTCACCTGCTGTTCAGCAACGATGGCAAGCACGCCTGGCTGACCATGGAGATGACCGCCCAGGTTGCGGTGTTCGACTACCAGGATGGCCGCCTTACCCAGCGTCAACTGGTCGACCTCGCCGCCGGCAAGCCCCAGCCGGGTAAAGCGGCGGCAGCGCTGCATGCGTCCAGGGACGGCAAGTTCCTGTACGTCAGCAATCGGGGCACCACCAACGAACTGGTGGTGTTTGCCATCGACCCGGCGGCTGGCACGCTGAAAGAACTTCAGCGGCGCTCTGTCGAGGGCGACCATCCTCGGGAATTCAGCCTCGACCCGAGTGAAAAATTTGTCCTGGTGGCCAACCAGAAGAGCAACCAGATCGTCATCATCGAGCGTGATCCGAACACCGGCCTGCTGGGTAAAACCGTCCAGAAGCTGGCGATGGATGCGCCGAGCGACTTGAAATTCATGGTTCGTCAATAAMKMRSFWPLLMAGSVGAMGVQAETTEHYQLLVGSYTADQSQGIYRMQFDSRTGQLDAKPLQVIKTDNPSWLTLSKDLSRLFVVNENGPGQKDPVGKVSSYAVNPKTHELSLINQVQSLGNEPTHSSLSHDGQHLLVSNYSVLENPGGTLVVLPVGADGKLAPVVQSGSHQPSRVNPERQKSGHVHSAVPSPDGKYVFANDLGADKVFVYRYDPKANPELPLTPADPAFVQLPPGSGPRHLLFSNDGKHAWLTMEMTAQVAVFDYQDGRLTQRQLVDLAAGKPQPGKAAAALHASRDGKFLYVSNRGTTNELVVFAIDPAAGTLKELQRRSVEGDHPREFSLDPSEKFVLVANQKSNQIVIIERDPNTGLLGKTVQKLAMDAPSDLKFMVRQPGPT0014975_440DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLUCONATE_METABOLISM,PGPT0014975-ykgB|pgl-K07404NANA
D1-35_04159297hypothetical proteinATGACTGCCCCGACCGACACTCTGCTGCAAGCCCTCGAACACTGCGACATGCTGATCATCGACGGGCTGCACGCTTTCGATTTTTCCCTCGACGAGCAGGACCAACTGCACGTCGAATGCATGAACGGCCGTACCCTCGAGCATTGGCGCTTCACGCCGGCACAGATGCAGGCCGCGACCTTCGACACAGCTTCGAAACATTGGGTCATCACCAGTGATTCGGGCGATCACCATCTGGAATGCGTGGAGGCGACCAGCGGCCACGACGACGAGGACTCCGAGCATGAAGATGCGTAGMTAPTDTLLQALEHCDMLIIDGLHAFDFSLDEQDQLHVECMNGRTLEHWRFTPAQMQAATFDTASKHWVITSDSGDHHLECVEATSGHDDEDSEHEDANANANANANA
D1-35_041601581Alpha-ketoglutaric semialdehyde dehydrogenaseATGAATCAGATCCTTGGCCACAACTACATCGGTGGCGCCCGCAGCGCGGCCGGCCAGACTCGCCTGCAAAGTTTCGACGCCAGCACCGGCGAGGCCTTGCCGCATGATTTCGTCCAGGCCACGGCGGAAGAAGTCGACGCCGCCGCCAAGGCCGCCGCGGCGGCTTATCCAACCTACCGCAGCCTGAGCGCGGCGCGCCGGGCCGAATTTCTCGATGCCATCGCCGATGAGCTGGACGCCTTGGGTGATGAGTTCGTCGCCGTGGTCTGCCGCGAAACCGCATTGCCGGCCGCACGGATCCAGGGCGAGCGCGGCCGCACCAGCGGGCAGATGCGCCTGTTCGCCAAGGTCTTGCGCCGTGGCGATTTCTACGGCGCGCGCATCGACCGGGCCTTGCCGGAGCGTACGCCGCTGCCGCGCCCGGACCTGCGCCAGTACCGCATTGGTCTCGGTCCGGTGGCCGTGTTTGGCGCCAGCAATTTCCCATTGGCATTCTCCACCGCTGGCGGTGACACCGCTGCCGCGCTGGCCGCCGGTTGCCCGGTGGTATTCAAGGCCCACAGTGGCCACATGGCCACCGCCGAGCATGTGGCCGATGCGATCATTCGCGCGGCTGAAAAGACTTCGATGCCGGCCGGTGTGTTCAACATGATCTACGGCGGTGGCGTCGGCGAATGGCTGGTCAAGCATCCGGCGATCCAGGCCGTCGGCTTCACCGGTTCCCTGAAAGGCGGGCGTGCCCTGTGCGACATGGCGGCCGCGCGGCCCCAGCCGATTCCGGTCTTCGCCGAGATGTCGAGCATCAATCCGGTGATCGTCCTCCCGCAAGCTTTGCAAGCGCGCGCCGAGAGTGTCGCTCGCGACCTGACCGCCTCGGTGGTGCAAGGCTGCGGTCAGTTCTGCACCAACCCTGGCCTGGTGATCGGTATCCGCTCACCTGAGTTCACTGCCTTCACCCAGCAGGTGGCTGCGCTGATCGGCGACCAGGCGCCGCAAACCATGCTCAATGCCGGCACGCTGCAAAGCTACGGCAAAGGCCTGCAAAAATTGCTGGCCCACCCAGGCATCGAACACCTCGCCGGTCGCGAGCAGCAAGGCAACCAGGCGCAACCGCAATTGTTCAAGGCTGACGCCAGCCTATTGATCAACGGTGACGAGGCGTTGCAGGAAGAGGTCTTCGGCCCGACCACGGTGTTTGTCGAAGTGGCGGACCAGGCGCAATTGAGCGCTGCGCTGCATGGCCTGCACGGCCAGCTCACCGCCACGATCATTGGCGAACCGGCGGACTTCGAACGGTTCGGTGAACTGACGCCGTTGCTGGAGCAGAAAGTCGGCCGCATCTTGCTCAACGGTTATCCAACTGGTGTGGAGGTTTGCGATTCGATGGTCCATGGCGGGCCTTACCCGGCGACGTCCGATGCGCGTGGCACTTCGGTCGGCACGCTGGCGATCGATCGGTTCCTGCGTCCGGTGTGCTTCCAGAACTACCCCGACAACCTGTTGCCAGAGCCGTTGAAGAACGCCAACCCGCTGGGGATCCTGCGATTGGTAGATGGCGTGCCGGGGCGCGAGGCGCTCTGAMNQILGHNYIGGARSAAGQTRLQSFDASTGEALPHDFVQATAEEVDAAAKAAAAAYPTYRSLSAARRAEFLDAIADELDALGDEFVAVVCRETALPAARIQGERGRTSGQMRLFAKVLRRGDFYGARIDRALPERTPLPRPDLRQYRIGLGPVAVFGASNFPLAFSTAGGDTAAALAAGCPVVFKAHSGHMATAEHVADAIIRAAEKTSMPAGVFNMIYGGGVGEWLVKHPAIQAVGFTGSLKGGRALCDMAAARPQPIPVFAEMSSINPVIVLPQALQARAESVARDLTASVVQGCGQFCTNPGLVIGIRSPEFTAFTQQVAALIGDQAPQTMLNAGTLQSYGKGLQKLLAHPGIEHLAGREQQGNQAQPQLFKADASLLINGDEALQEEVFGPTTVFVEVADQAQLSAALHGLHGQLTATIIGEPADFERFGELTPLLEQKVGRILLNGYPTGVEVCDSMVHGGPYPATSDARGTSVGTLAIDRFLRPVCFQNYPDNLLPEPLKNANPLGILRLVDGVPGREALPGPT0018165_511DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLACTURONATE|GLUCURONATE_DEGRADATION,PGPT0018165-aldH-K13877NANA
D1-35_04161993hypothetical proteinATGCGTTTAGTTCAGTTCGAATTGAGTAACGGCGAACGCCGCGTCGGTGTAGTTGACGGCGAGCAGGTGCGCGAAGTGCAGGGCGCCACGACGGTGCGCGACCTGGCGCTGGCCGCCATCGAGGCGGGCGTCAAGCTTGAGCAACAGGTCGACGGCCTGGGCCTGGGAGCGAGCCATGACTATGCGCAACTGCTGAGCGAATTGCGCATCCTGCCGCCGCTGGATCACCCGGACCCGGCGCACCTGCTGGTCAGCGGTACCGGCCTGACTCACCTGGGCAGCGCCTCGGCCCGGGACAAGATGCACCAACAGGCTGGCGACGAGAGCGCCATGACCGACACCATGCGCATCTTCAAATGGGGCGTGGAGGGCGGCAAACCCGCCGCCGGGCAGGCTGGCGTTCAGCCGGAATGGTTCTACAAGGGCGACGGCAGCATCGTCGTCCGTCCCGGCCATCCGTTCCCGCTGCCGCCCTTTGCCGAAGACGCTGGCGAGGAGCCGGAAATCAGCGGCCTGTATGTCATCGGTCACGACGGCAAGCCATATCGGCTGGGCTTTGCGGTGGGCAACGAATTTTCCGATCACGTCATGGAACGCAAGAATTATCTGTACCTGGCCCATTCGAAACTGCGCAGTTGCAGCTTCGGCCCGGAACTTCGCGTGGGCGAACTGCCTCAACATCTGTCCGGGACCAGTCGTATCCTGCGCAACGGCGAAGTGCTGTGGCAGAACGAATTCCTCAGCGGCGAGGCGAACATGTGCCACAGCCTCGAGAACCTCGAGTTCCACCATTTCAAGTACAGTCAGTTCCTGCGCCCCGGGGACGTGCACGTTCACTTCTTCGGCACCGCGACGCTGTCGTTCGCCGACGGCATCCGCACCCAGCCGGGGGACGTGTTCGAAATCAGCCAGGCCGAATTCGGCGCACCGCTGATCAACGGCATTGCTCCGGTAGACGCGGTGTTCAACCCAGGTACTATCGGCACACTTTAAMRLVQFELSNGERRVGVVDGEQVREVQGATTVRDLALAAIEAGVKLEQQVDGLGLGASHDYAQLLSELRILPPLDHPDPAHLLVSGTGLTHLGSASARDKMHQQAGDESAMTDTMRIFKWGVEGGKPAAGQAGVQPEWFYKGDGSIVVRPGHPFPLPPFAEDAGEEPEISGLYVIGHDGKPYRLGFAVGNEFSDHVMERKNYLYLAHSKLRSCSFGPELRVGELPQHLSGTSRILRNGEVLWQNEFLSGEANMCHSLENLEFHHFKYSQFLRPGDVHVHFFGTATLSFADGIRTQPGDVFEISQAEFGAPLINGIAPVDAVFNPGTIGTLPGPT0017806_1DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_LYXONATE_DEGRADATION,PGPT0017806-2_keto3_deoxy_L_lyxonate_dehydratase-NANANA
D1-35_041621323abaQ_2Quinolone resistance transporterATGAGCCAGGAATTGCGGCTTATACGTCGCATCACACTCAAACTGATTCCCTTCCTGATCCTGCTTTACCTGATCGCGTACGTGGATCGCTCCGCCGTGGGCTTTGCCAAGCTGCACATGGGCGCGGACATCGGCATCGGCGACGCCGCCTACGGCCTCGGCGCTGGCCTGTTCTTCATCGGTTATTTCCTCCTGGAGATTCCCAGCAACCTGATGCTGGAACGCTTCGGTGCGCGGCGCTGGTTTGCCCGGATCATGATCACCTGGGGCGCAATCACCATCGGCATGGCTTTTGTGCAGGGGCCCTATAGTTTCTACGTGATGCGCTTTCTGCTGGGCGCGGCCGAAGCCGGGTTCTTTCCGGGCGTGCTGTATTACATCACTCAGTGGTTCCCGGTGCGCCATCGCGGCAAGATCCTCGGGCTGTTCATTCTTTCCCAACCCATTGCGATGATGATCACCGGTCCCGTTTCCGGTGGCTTGCTGGGCATGGACGGCATCCTCGGCCTGCACGGCTGGCAGTGGTTGTTCATCGTCATCGGCCTGCCGGCGGTGCTGTTGACCTGGCCGGTGCTGCGTTATCTGCCGGACGGCCCGCAACAGGTCAAATGGATGGACCAGTCCGAGAAGGACTGGTTGACCGGTGAGCTGAAAAAGGACCTGGAAGAATACGGCCAGACCCGTCATGGCAACCCGCTGCATGCGCTCAAGGACAAGCGCGTCCTGCTGTTGGCGCTGTTCTACCTGCCGGTGACCCTGAGTATCTACGGCCTGGGGCTGTGGCTGCCGACGCTGATCAAACAGTTCGGAGGCAGTGACCTGGTGACCGGCTTTGTCTCTTCCGTGCCTTATATCTTTGGCATCATCGGTCTGCTGATCATTCCTCGCAGCTCCGACCGCCTGAACGACCGCTACGGTCACCTGGCCGTGTTGTATGTATTGGGCGCCATCGGTCTGTTCCTCAGCGCCTGGTTGACCGTGCCGGTGCTGCAACTGGCGGCGTTGTGCCTGGTGGCGTTTGCACTGTTTTCCTGCACGGCGGTGTTCTGGACTTTGCCGGGACGGTTCTTCGCCGGTGCCAGCGCGGCGGCGGGCATTGCCTTGATCAACTCGGTAGGCAACCTGGGCGGCTACATCGGCCCGTTCGTGATCGGCGCCTTGAAGGAATACACCGGTAACCTGGCGTCCGGGCTGTACTTCCTGTCGTGCGTGATGGTGTTCGGCCTGGTATTGACCGGGGTGGTCTATCGCTTGCTCGAACGCAAGCACGTGTTGCCGGCTGACCAGTTCGCGGCGAGCGCCCGCGGGGCGACGCGTAGCTGAMSQELRLIRRITLKLIPFLILLYLIAYVDRSAVGFAKLHMGADIGIGDAAYGLGAGLFFIGYFLLEIPSNLMLERFGARRWFARIMITWGAITIGMAFVQGPYSFYVMRFLLGAAEAGFFPGVLYYITQWFPVRHRGKILGLFILSQPIAMMITGPVSGGLLGMDGILGLHGWQWLFIVIGLPAVLLTWPVLRYLPDGPQQVKWMDQSEKDWLTGELKKDLEEYGQTRHGNPLHALKDKRVLLLALFYLPVTLSIYGLGLWLPTLIKQFGGSDLVTGFVSSVPYIFGIIGLLIIPRSSDRLNDRYGHLAVLYVLGAIGLFLSAWLTVPVLQLAALCLVAFALFSCTAVFWTLPGRFFAGASAAAGIALINSVGNLGGYIGPFVIGALKEYTGNLASGLYFLSCVMVFGLVLTGVVYRLLERKHVLPADQFAASARGATRSPGPT0002325_611DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-ORGANIC_ACID_METABOLISMP-SOLUBILISATION-TARTARIC_ACID_TRANSPORT,PGPT0002325-ttuB-K13021NANA
D1-35_041631737araC_1L-arabonate dehydrataseATGTCTGATAAGAAACCCTCCCTGCGCTCGGCCCAATGGTTTGGCACCGCCGACAAAAACGGCTTCATGTACCGCAGCTGGATGAAAAATCAGGGCATCGCCGACCACCAGTTCCATGGCAAGCCGATCATCGGTATCTGCAATACCTGGTCGGAGCTGACACCGTGCAACGCGCATTTCCGGCAGATCGCCGAGCACGTCAAGCGCGGCGTGATCGAGGCCGGGGGCTTTCCGGTGGAATTCCCGGTGTTCTCCAACGGCGAATCGAACCTGCGCCCCACCGCCATGCTGACCCGCAACCTGGCGAGCATGGACGTGGAAGAGGCGATTCGCGGCAACCCGATTGATGGCGTGGTACTGCTCACCGGTTGCGACAAGACCACCCCGGCCCTGCTGATGGGCGCCGCCAGTTGCGACGTGCCGGCCATCGTCGTCACCGGCGGGCCGATGCTCAACGGCAAGCACAAGGGCCAGGACATCGGCTCAGGCACCGTGGTCTGGCAGCTGAGCGAACAGGTCAAGGCCGGCACCATCACCATCGATGACTTCCTCGCGGCCGAGGGCGGCATGTCCCGCTCGGCCGGTACCTGCAACACCATGGGCACGGCGTCGACCATGGCCTGCATGGCCGAGGCGCTTGGCACTTCGCTGCCGCATAACGCGGCGATCCCGGCGGTGGATGCGCGCCGTTATGTGTTGGCGCACATGTCCGGCATGCGCGCCGTGGAAATGGTCCGCGAAGACCTGAAGCTGTCGAAGATCCTGACCAAGGAAGCCTTCGAAAACGCGATCCGCGTCAACGCCGCCATCGGCGGTTCGACCAACGCGGTGATTCACCTCAAGGCCATCGCCGGGCGCATCGGCGTGCAACTGGACCTGGACGACTGGACCCGCATCGGTCGCGGCATGCCGACCATCGTCGACCTGCAACCGTCCGGACGCTTCCTGATGGAAGAGTTCTACTACGCCGGCGGCCTGCCTGCCGTGCTGCGTCGCCTCGGCGAAGCCAATCTGATCCCCCACCCGAACGCACTGACGGTGAACGGCAAGAGCCTCGGCGAAAACACCAAGGACGCGCCGATCTACGGCCAGGACGAAGTCATTCGCACCCTGGACAACCCGATCCGCGCCGACGGCGGCATCTGCGTACTGCGCGGCAACCTGGCGCCATTGGGCGCAGTGCTCAAGCCGTCCGCGGCCACCGCCGAACTGATGCAGCATCGCGGTCGCGCGGTGGTGTTCGAGAACTTCGACGAGTACAAGGCGCGGATCAACGATCCGGAGCTCGACGTGGATGCCGACTCGATCCTGGTCATGAAGAACTGCGGGCCGAAGGGTTATCCGGGCATGGCCGAAGTCGGCAACATGGGCTTGCCAGCCAAACTGCTGGCCCAGGGCGTGACGGACATGGTGCGTATTTCCGACGCACGCATGAGCGGCACCGCCTACGGCACCGTGGTGCTGCATGTGGCACCGGAAGCGGCGGCCGGCGGGCCTTTGGCCGCGGTGAAAGAAGGTGACTGGATCGAACTCGATTGCGCCAGCGGCCGCCTGCACCTGGACATCCCCGACGCCGAACTCGCCGCGCGCCTGGCCGACCTGGCGCCACCGCAGCAATTGCTGGTCGGTGGCTACCGCCAGCTGTACATCGACCATGTGCTGCAAGCCGACCAGGGTTGCGACTTCGACTTCCTGGTGGGCTGCCGCGGCGCCGAGGTGCCGCGTCACTCCCATTGAMSDKKPSLRSAQWFGTADKNGFMYRSWMKNQGIADHQFHGKPIIGICNTWSELTPCNAHFRQIAEHVKRGVIEAGGFPVEFPVFSNGESNLRPTAMLTRNLASMDVEEAIRGNPIDGVVLLTGCDKTTPALLMGAASCDVPAIVVTGGPMLNGKHKGQDIGSGTVVWQLSEQVKAGTITIDDFLAAEGGMSRSAGTCNTMGTASTMACMAEALGTSLPHNAAIPAVDARRYVLAHMSGMRAVEMVREDLKLSKILTKEAFENAIRVNAAIGGSTNAVIHLKAIAGRIGVQLDLDDWTRIGRGMPTIVDLQPSGRFLMEEFYYAGGLPAVLRRLGEANLIPHPNALTVNGKSLGENTKDAPIYGQDEVIRTLDNPIRADGGICVLRGNLAPLGAVLKPSAATAELMQHRGRAVVFENFDEYKARINDPELDVDADSILVMKNCGPKGYPGMAEVGNMGLPAKLLAQGVTDMVRISDARMSGTAYGTVVLHVAPEAAAGGPLAAVKEGDWIELDCASGRLHLDIPDAELAARLADLAPPQQLLVGGYRQLYIDHVLQADQGCDFDFLVGCRGAEVPRHSHPGPT0017465_291DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_ARABINOSE_METABOLISM,PGPT0017465-araC-K13875NANA
D1-35_04164720lutR_4COG2186HTH-type transcriptional regulator LutRATGGATTACCGCAAACCCTCCGACCGCAAGAGCATGCACGCGCGCATCGTCCAGGAACTGGGCATGCAGATCGTCTCTGGCCGCTTCAAGCCCGACGACAAACTGCCCGCCGAAGCCTTGCTGTGCGAAGAATATGCCGTCAGCCGCCCGGTGCTGCGCGAAGCCACGCGCGTGCTGGTCGCCAAGGGCCTGGTGTATTCGCGGCCGCGAGTGGGCACGGTGGTCAAGCCGCGTCGGGAATGGCACATGCTCGACCCCGATGTGCTGCACTGGCTGATGCAGAGCAGCCCACAGAACGAGTTCTTCGGACTGCTCACCAGCGTGCGCAGCATCATCGAGCCGGCCGCCGCCGCCCTCGCCGCGCAATTCGCCACCGACGCCGACATCGCCGCCATCAGCGAAGCCTACCAGCGCATGGAAGCCGCCCCGACCCCGGAAGCCCTCCTGCAACCGGACCTGGACTTTCACAGCCGCATCGCCGACGCCACCCACAACGACCTGCTCGCCAACCTGTGCAACATGCTGTCGGTGGCCATCGCCGAAGCCCTCAAGCACTCCAACCAACGGCCCAACCTGCACGAGCTGGCGATGCCACGGCACAAGGCGATCCTCACCGCCATCGAGAACCGCGATGCCCTCGGCGCCCGCCATGCCACGCTGGTGCAACTGGATGACGCCCGCAGTGCGCTGAATGTCGTGCTGGGCAGCGATCCCGCCTGAMDYRKPSDRKSMHARIVQELGMQIVSGRFKPDDKLPAEALLCEEYAVSRPVLREATRVLVAKGLVYSRPRVGTVVKPRREWHMLDPDVLHWLMQSSPQNEFFGLLTSVRSIIEPAAAALAAQFATDADIAAISEAYQRMEAAPTPEALLQPDLDFHSRIADATHNDLLANLCNMLSVAIAEALKHSNQRPNLHELAMPRHKAILTAIENRDALGARHATLVQLDDARSALNVVLGSDPAPGPT0018085_149DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTONATE_DEGRADATION,PGPT0018085-dgoR-K19776NANA
D1-35_041654668hypothetical proteinATGGCATCGCCTTCCCCGGCTGACAACGCCAACACACAGGCACAGAACGTCAGCCTGCAATTTGCCGGTCGACCCACCTTCGAGCAGGTTGTATCGAGCACGTTTCAGCAAGCTATTCGAAAGGAATACCCTTGGAATGCGCTCAACCTGTCCAAGGTGCTGTTGGCAACTCCCGACAGGGCCTCTAAAAGCTGGACGACTACCCGCCTCATGACGCTCGTCCTCGATTACCTGGCTACCGGCACGCCCATCGACTTCAAGGAGTGGAGCGAGCATGGCTGTTTCCTTTCCGAAACGATGCCGCACCGTCTCAAGCTGGACGCGCAGGACATGCTCACGCTGGAAAAGCTGCTACTTGAACTGCCTTGGACAGTACCGATCGGATTCGAGGATGCGCTGGTCCGCTACTGGAATGCCGACATTGACCCCCATCAAGGCACCAGCCGCTGGAACTGGCTCAGCGGTGCACTGCGAAACCTGTTGCAGACCCGTGGCTTGCAGCAACCAGGGCTCAGCGACCCGGCACGTGAGATGCTCGACCAGATCACCCGCCGGCCTGTCAGCAAGCAACACTTGCGCGCCGACGGTCAGTCCAGCGTCTACGCCTACAGCCTGGAAAGCACGCTCGTTAAAGCCGCTTCCCGTTCGGTCATATACGGTAGCGAGATTCTACTGACGCGCACCACCGAAGGTGGGACCCTCCTGCTGCTGTGCAGCCCTGGCAGCGCCGTCAAACCCTTTGAATCGCTGGAGGACTTTCACCGTCACTGGAGTGAACTCATCGCCAGCCGGTACCTTGTCGACACCGTCACTTGCACACGCACCGAGATCGCTGGCAACGTGTTCGAGACCCAGGCAGCACTGATCCTGGAGCAACAGCTGGCCGACCTCCGGGCGGTGGAATTGCCTTCCCGCGTCGGCTCGCAGCACCTGCGTGCGCTGTATCACGAACTGAGCGACCCGGCCCGCTACCTGCGTGACACCCCGTACCCCTCTCCTCAGATGTCGAAGCTCATTGCGCCGCTGGTGCCCGAATGGTTGAAGGAAGCGTCCGTTGTCGACCAGACCAGGCACCAGCATTACTGCCTGGCGTTGGCCAGCGCCAAGAAACGCAGTCCAGGCCAAACCTTCCTCAGCGATATCGAGAATATCCACTCCTTCACGTCCCAAGCCCTGCTTGAGCGCATGGGTCGAACAAACGATAGCTCGTCGACCCAGGCCCAACCCTCCCGCTACAACCCCGACGACGTGCTACTGACTTTCACCGTGGCGGCGGGCCTCCCCGGTACGATCGGGATTGTCGAGAAAAAATCGATGAAACTGAGCGAACTGGCCATCCGCAATCTCGTCGCCCGCCCCAGTGGAAACCCGATCCTCAGCCATCGCCTGGGCCTGACCCTGCCCGAATGGTTGACCCCGGACTACATCACCCGCCAGGGCGGGCTGATTGAACAGGTCGACATCGGCACCGCCTACCCCCGATATCTGCAGCACAAGCTGTTTGACGATTTGCCTACCCTGCGTCAACAGAGATTCGCCGACCAGGTCCCGACAGAGCTGCTTCTCGAAGCGCTCAAGCAAAAGCTCGACCACCAGAACAGCATGACCCGTCAAGGCCTGGACCTTCTCGAAGCCGTCCTTCAAGCCGATGTCGAGGAACAACAGGTCGACGGTCGTCCGGTGGTGATTCGTCCCCTGGCCTTTCTGCGTAAGCCGAAGGCGCGACCTGATGTTGTGACGAATATGTTCATCATCGAACCGCAAGCCGTCGAAACGGGACCACACCTGCTGTATCGCCCGCTTCACTCGCCCTCGTTGATTGAGTTCCCGACACGCCAGGCGCTGTTGACTGCCATTGGCCTGGACGGCGAACTGCAGACCAGCGTCTTGACCTGGTTATCGGATACCGCGCGTCCGGTGTACGCCAATGGGGGGTTCCTGGAGCCACACATTGTGCGCTTTCTTCCAGGCGATGAATTCGCCCCTTTCGAAAAGCCGACCCCGGCGACACTCGCAATCGAGGGTGACAACGACGAGTTGTTGCAATTCCTGCACAACGGCAAGCTGATGGAGTATCTCTACGGCAGTAATGCGCGGGCCTTGGTTGCCCAGGCCAACAGGGCTTCGGTCTCCAACGCCGAAAGCCGTTGGGCGACCCTTCTCGAGGGCGGCGGCCTGTTGTTCAACACACTGTTGGTGCCGATCCTGCGCGGCCCATTGATAAGCGTCGGCTGGTTATGGAACGTGATCGCCGTCGCCGGGCAAGACATCCCGGCCATGCAGAGCGAGGATCCGACTACGCGGGAGCTCGCTACCGTCGACTTTCTCTTGAACTTCGCCATGCTCGGACATCAGGCGTTGTCCCTCGACGAGCCTGTTCGCAAGCCACTGCCCCACGAACTGGAAGACCAGGCGATGCGTGCGCCTGCGCCACGCATCGTTCCCGAGCAATGGCCCAAGCCGGCCCTGCCAGACGTCATCGAAGGCCCCGTCTACCTGCCCGGGGAACACGCCCAAGCTGCTTTTGAGCACCTCGACTTCAGTTTCGCCAGCGCCCGTCGGCGCCTGACGCTGGAGCAACGCACCCGCTTGCAGCGCCTGACAGTGCAGCGTCCCGCAGTGATGCCCGCTGCCCTTCCCTCTGGCCCTTATACCGGCCTTTATCTGATCAATAAAAAATGGCATGCCGTGGTTGAGGGCGAGTTGTATCAAGTCGACACATGGAACAGCACCGTACAGATCGTCGACCCGCACGACCCGGCACGCAGGGGGCCGGCGCTAATATCGGACGGCCACGGCAGCTGGTCCTTGGACCTGGGCCTGGGCCTGCGTGGCGGGATGCCGCCCAAGCGCGTGGAGGAACAACGTCGCTTCAACGAAAAAAGAAAAGCGGAAATCGCGGCGGAAACCAGGGAGTTCTTCGAAAAAAGTGCCGAGCGGAAAAAGAAGCTGGATATCACCCACGACCTGCTGAGCTTATTGGAGATCGGTACGCCACCTGATGAGAAGCGGATGGCCCCCATACGTAAAAGCTTTCATGAACAGTTAAAGGAGCAGGCCGAAGCCGATCTGAAGATACTGGGGAACGAGCTCGAATCCATCAAGCTGAATAGCCCAATTTCCCGCGGGAATATTTACCAGATCACTGAATCGTTGATCGAATGTTGTCGTACAGCCATTGCCGTTGTCGTAAAGGATATACAAGCTCTGAATGCTGCCCATTCCTCATTCGTGGGACCGTCTGCGTCTGACATTCTGGAGGCAGTTGAACATGATCCGCAGGGCTATTTGAGGTTCGCCGCGCAGTTATTTGAGCTCAATGAGCGCTCGATCCATTGGCTGGAGCTTGAACACCGCACGCTTGATACGTTATTGAACCGGGGCAGCAAGGGCCGGGAAATGTTCGATCGCCTGACCCATGACCGACCGGTGGCGAAAACCGCTTCGTTGGCTGGCCAAGAGCTCCAGACGACGTTGGCCACAGTGCTCGCTTCGCGCGGCGAGAGCGAGTCGAGGGAGCACCTGCGAACCATCAGCAAGCCGCTAAAGGAACAAATACAATCTCACGCTACGTTGTGGACGTACGACTTCTCGGAACGGCTCGAGGTATTGGAGAGCTTGTCCGAACACTATGGCAAGGCGCTGGATGCCCTACAGATCGTGAAAGTACTTCACGCCGATGAGATGGACCTGCCTTATTTCGACAAGCTGGTCACCTTGGTCGAAGAATTGTATGAGGAGGTCTCCCAGGAACTGGCCACGGAAATAAAACCCGAACCGAAACCGCGCGCGCGCGCTTCCAAACGCACCGGAACATCCGCCGGACGCCCTCAGAAAAAAGTGATCCGAACCCGCCACAATGGTGTATTGGTTGGCGACCTGAGACCTGCCGGTACAACCTTGGAGATTGATGTCGTCGAGCTGCGCTCCGAAAACGATAACCAGTTGCTAGGCACCTATTCCCGTCATGAAGACGCCTGGGACCTCGTCAAGGAAGAGCGACCGGCCGCGCCGCTGAAAACGAGACCTGTCAGTGAAATCAAAGGCGCCGCACGAAAACTGCTCGGACAACTGGAAAGACTTCTGAAAAGGGCAAAAAGCTATAAAGCCCAGTGCCGTTACCCGCAGGAAATCGAGGAGGTCATGAACAACGAGGCGGATCGTTTTCGCAAAATTGCCGAGGAGCTTGAACAAGCCGTCAAGGCTTCCCCAACAGAGCCCGGCCCGCGAGACCAGACCTTAATCGAGGAACTGACAAAGGCCGCCACCCGCCTTGCAGCACAGGGCGGCTACCTGCGCACCGAGCTGAGCCTGAAACTGCCACCCACCGACGGCAATCTCCGCTATCTGTTTGCAAAAGAATTGATCCAGGTCAGCAAGTACGGCGACCGCACAGCCATGAGCGGAGTCCGCAAGGACTTCATTCAGGAATATGCAATCAACGACCGTAACGGCTTCCCCCTCTGGTATGCCCATTTTCACTATGAAAAGGCCGACACCCCGAAAGCCGACTACAGCGTTGCACACGTGAAAACCAAGGAGCAACGGAAGGAAAGCTACTATTCAATGCTGTCCAAAGCTGAAGGCCCCTACGCCGTCGTGAACGTGCATCGCGGCCAGATCGGCAAACCTCTGGCACAACGCTGGTTCTTGCCCCTGGACCACTAAMASPSPADNANTQAQNVSLQFAGRPTFEQVVSSTFQQAIRKEYPWNALNLSKVLLATPDRASKSWTTTRLMTLVLDYLATGTPIDFKEWSEHGCFLSETMPHRLKLDAQDMLTLEKLLLELPWTVPIGFEDALVRYWNADIDPHQGTSRWNWLSGALRNLLQTRGLQQPGLSDPAREMLDQITRRPVSKQHLRADGQSSVYAYSLESTLVKAASRSVIYGSEILLTRTTEGGTLLLLCSPGSAVKPFESLEDFHRHWSELIASRYLVDTVTCTRTEIAGNVFETQAALILEQQLADLRAVELPSRVGSQHLRALYHELSDPARYLRDTPYPSPQMSKLIAPLVPEWLKEASVVDQTRHQHYCLALASAKKRSPGQTFLSDIENIHSFTSQALLERMGRTNDSSSTQAQPSRYNPDDVLLTFTVAAGLPGTIGIVEKKSMKLSELAIRNLVARPSGNPILSHRLGLTLPEWLTPDYITRQGGLIEQVDIGTAYPRYLQHKLFDDLPTLRQQRFADQVPTELLLEALKQKLDHQNSMTRQGLDLLEAVLQADVEEQQVDGRPVVIRPLAFLRKPKARPDVVTNMFIIEPQAVETGPHLLYRPLHSPSLIEFPTRQALLTAIGLDGELQTSVLTWLSDTARPVYANGGFLEPHIVRFLPGDEFAPFEKPTPATLAIEGDNDELLQFLHNGKLMEYLYGSNARALVAQANRASVSNAESRWATLLEGGGLLFNTLLVPILRGPLISVGWLWNVIAVAGQDIPAMQSEDPTTRELATVDFLLNFAMLGHQALSLDEPVRKPLPHELEDQAMRAPAPRIVPEQWPKPALPDVIEGPVYLPGEHAQAAFEHLDFSFASARRRLTLEQRTRLQRLTVQRPAVMPAALPSGPYTGLYLINKKWHAVVEGELYQVDTWNSTVQIVDPHDPARRGPALISDGHGSWSLDLGLGLRGGMPPKRVEEQRRFNEKRKAEIAAETREFFEKSAERKKKLDITHDLLSLLEIGTPPDEKRMAPIRKSFHEQLKEQAEADLKILGNELESIKLNSPISRGNIYQITESLIECCRTAIAVVVKDIQALNAAHSSFVGPSASDILEAVEHDPQGYLRFAAQLFELNERSIHWLELEHRTLDTLLNRGSKGREMFDRLTHDRPVAKTASLAGQELQTTLATVLASRGESESREHLRTISKPLKEQIQSHATLWTYDFSERLEVLESLSEHYGKALDALQIVKVLHADEMDLPYFDKLVTLVEELYEEVSQELATEIKPEPKPRARASKRTGTSAGRPQKKVIRTRHNGVLVGDLRPAGTTLEIDVVELRSENDNQLLGTYSRHEDAWDLVKEERPAAPLKTRPVSEIKGAARKLLGQLERLLKRAKSYKAQCRYPQEIEEVMNNEADRFRKIAEELEQAVKASPTEPGPRDQTLIEELTKAATRLAAQGGYLRTELSLKLPPTDGNLRYLFAKELIQVSKYGDRTAMSGVRKDFIQEYAINDRNGFPLWYAHFHYEKADTPKADYSVAHVKTKEQRKESYYSMLSKAEGPYAVVNVHRGQIGKPLAQRWFLPLDHNANANANANA
D1-35_041662376hypothetical proteinATGAGCAGTCATCACCAAGACAAGGCGACGTTCCTCGAGCGCCTGATTTTCAACAACCGCCCGGCAGTGATCATCATTTGCCTGCTGGTCAGCATTTTCCTGTTCTGGCAGGCCACGCTGATCCGGCCGTCCACCAGTTTCGAAAAAATGATTCCCCTCGAGCATCCGTTCATCGAGAAGATGCTCGAACACCGCAATGACCTGGCGAACCTGGGCAACACGGTACGGATTTCCGTGGAAGCTACCAACGGCGATATTTTCTCCAAGGAGTACATGGAGACCCTGCGCCAGATCCACGACGAGGTCTTCTACATCTCCGGCGTCGACCGCTCCGGCCTGAAGTCGCTGTGGAGCCCGAGCGTGCGCTGGACCGAAGTGACGGAGGAGGGCTTCGCCGGTGGCGAGGTAATCCCGCAGAGTTACAACGGTTCGGCCGACAGCCTCGACCTGCTGCGCAACAACGTGCTCAAGTCCGGCCAGGTCGGGCGCCTGGTGGCGAACGATTTCAAATCGAGCATCATCGATATCCCGCTGCTGGAGTCCTATCCCGACCCGCAAGACCAAGGCAAATTGCTCGCCCTCGATTATCGGAAATTTTCCCACGAGCTTGAAGACAAGATCCGCAACAAGTTCGAAGCGCAGAACCCGAATGTGCAGATTCACATCGTCGGCTTCGCCAAGAAAGTTGGCGACCTGATCGATGGCCTGGTCATGGTGGTGCTGTTCTTCGGCGTCGCCTTCGTCATCACCCTGATCCTGCTGTACTGGTTCACCAACTGCATGCGCAGCACCGTTGCGGTATTGAGCACCACCCTGGTGGCGGTGGTCTGGCAACTGGGGCTGATGCACGCGGCCGGTTTCGGCCTGGATCCATATTCGATGCTGGTGCCGTTCCTGATCTTCGCCATCGGCATTTCCCACGGCGTACAGAAAATCAACGGCATCGCCTTGCAGTCCAGCGAGGCGGACAACGCCTTGACGGCGGCGCGGCGCACCTTCCGCCAGTTATTCCTGCCGGGGATGATCGCGATCCTGGCCGATGCCGTCGGCTTCATTACCTTGCTGATCATCGACATCGGCGTGATTCGCGAACTGGCCATCGGCGCGTCCATCGGCGTGGCGGTGATTGTGTTCACCAACCTGATCCTGCTGCCGGTGGCGATTTCCTACGTTGGTATCAGCAAGCGCGCGGTCGAGCGCAGCAAGAAAGACGCGACCCGCGAACATCCGTTCTGGCGCCTGCTGTCGAACTTTGCCAGCGCCAAGGTCGCGCCGGTATCGATTGCCCTGGCCGTGCTCGCCTTTGGCGGCGGCCTCTGGTACAGCCAGAACCTGAAGATCGGCGACCTCGACCAGGGCGCGCCGGAACTGCGTCCGGACTCGCGCTACAACCAGGACAACAACTTCATCATCAGCAACTATTCCACCAGCTCCGATGTGCTGGTGGTGATGGTCAAGACCAAGGCCGAAGGCTGTTCGCGCTACGAAGCCATGGCGCCCATCGACGAGCTGATGTGGAAGATGCAGAACACCGAGGGCGTGCAGTCGGCGATTTCCCTGGTGACCGTGTCCAAGCAGATGATCAAGGGCATGAACGAGGGCAACCTGAAATGGGAAACCCTGTCGCGCAACCCTGATGTACTGAACAGCTCCATTGCCCGGGCCGACGGCCTTTACAACAACAGCTGTTCCCTGGCGCCGGTGCTGGTGTTCCTCAACGACCACAAGGCCGAGACGCTCGACCGCGCCGTGACGGCGGTGCAGGACTTCGCCAAGGAGCACAACCGCGATGGCCTGGAGTTCATCCTCGCCGCCGGTAACGCCGGGATCGAGGCGGCCACTAACGAAGTGATCAAGGAATCGGAACTGACCATCCTGATCCTCGTGTATATCTGCGTGGCGACGATGTGCATGATCACCTTCCGTTCCTGGGCAGCGACGCTGTGCATCGTCCTGCCACTGGTGCTGACCTCGGTGCTGGGCAACGCGCTGATGGCGTTCATGGGCATCGGCGTGAAGGTCGCGACACTGCCGGTGGTAGCCCTCGGCGTAGGGATCGGCGTGGACTACGGCATCTACATCTACAGCCGCCTGGAAAGTTTCCTGCGGGCCGGGTTGCCGTTGCAAGAGGCGTATTACCAAACGCTGAAATCCACTGGCAAGGCGGTGCTGTTTACCGGCTTGTGCCTGGCCATCGGCGTCTGCACCTGGATCTTCTCGGCGATCAAGTTCCAGGCGGACATGGGCCTGATGCTGACGTTCATGTTGTTGTGGAACATGTTCGGCGCGCTGTGGCTGCTGCCCGCGCTCGCGCGTTTCCTGATCAAGCCGGAGAAGCTGGCGGGGCAGAAGGGCAATTCGTTGTTTGCCCACTGAMSSHHQDKATFLERLIFNNRPAVIIICLLVSIFLFWQATLIRPSTSFEKMIPLEHPFIEKMLEHRNDLANLGNTVRISVEATNGDIFSKEYMETLRQIHDEVFYISGVDRSGLKSLWSPSVRWTEVTEEGFAGGEVIPQSYNGSADSLDLLRNNVLKSGQVGRLVANDFKSSIIDIPLLESYPDPQDQGKLLALDYRKFSHELEDKIRNKFEAQNPNVQIHIVGFAKKVGDLIDGLVMVVLFFGVAFVITLILLYWFTNCMRSTVAVLSTTLVAVVWQLGLMHAAGFGLDPYSMLVPFLIFAIGISHGVQKINGIALQSSEADNALTAARRTFRQLFLPGMIAILADAVGFITLLIIDIGVIRELAIGASIGVAVIVFTNLILLPVAISYVGISKRAVERSKKDATREHPFWRLLSNFASAKVAPVSIALAVLAFGGGLWYSQNLKIGDLDQGAPELRPDSRYNQDNNFIISNYSTSSDVLVVMVKTKAEGCSRYEAMAPIDELMWKMQNTEGVQSAISLVTVSKQMIKGMNEGNLKWETLSRNPDVLNSSIARADGLYNNSCSLAPVLVFLNDHKAETLDRAVTAVQDFAKEHNRDGLEFILAAGNAGIEAATNEVIKESELTILILVYICVATMCMITFRSWAATLCIVLPLVLTSVLGNALMAFMGIGVKVATLPVVALGVGIGVDYGIYIYSRLESFLRAGLPLQEAYYQTLKSTGKAVLFTGLCLAIGVCTWIFSAIKFQADMGLMLTFMLLWNMFGALWLLPALARFLIKPEKLAGQKGNSLFAHNANANANANA
D1-35_041671053hcf136_2Ycf48-like proteinATGAGTGAGCCTGTGATGGCTGTGGGCCGCTGCCGCCCGCCAGTGCTGCGCAGAGTTGCGCTGCTGGTCTCGGCGCTCTCGCTGCTGGGCTCTGCCGTTTTGTCGGCGCCGGTGCTGGCGGTTGCAGCGTCGACGGCCGATGTCATCTATTCCGTCGAATCGGCCAAGGCCAGCAAAACCCTCATGCTCGATGTGGTCCACGCCGGCCAGCGCCTGGTCGCGGTCGGTGACCGTGGGCATATCGTCTTTTCCGATGACCAGGGCAAATCCTGGACCCAGGCCAAGGTGCCGACCCGCCAACTGCTCACTGCGGTCTTCTTTGTCGATGACAAGCACGGTTGGGCCGTGGGGCACGACGCGCAGATCCTCGCCAGCGAGGACGGCGGCACCACCTGGACCAAGCAGTTCGAAGACCTCACCCGTGAAGCACCGCTGCTCGACGTCTGGTTCAAGGACGCCAGCAATGGCCTGGCCGTGGGCGCCTACGGTGCGCTGTACGCGACCACCGATGGCGGCAAGCACTGGGAGCAGGCCAGCGACCGCCTCGAGAATGAAGACCAATATCACCTCAACGCTATCGCCGCGGTAAAAGATGCCGGGCTGTTCATCGTCGGCGAGGCCGGCAGCATGTTCCGCTCCGCCGACTGGGGGCAGACCTGGGAAAAACTCGAAGGTCCGTACGAAGGCTCGCTGTTCGGCGCCATCGGCACCGCCCAGCCTTCGACCCTGTTGGCCTACGGCCTGCGCGGCAATCTCTATCGCTCCACGGATTTCGGCGACAGCTGGGAGCAGGTCGAGCTGAAGGCGGCCCGTGGCGCGCTGGAATTCGGCTTGTCGGGGGCGACGCTGTTGCCGGATGGCTCGATCGTGATCGTCGGCAACGGCGGCAGCGTGATTCGCAGCACCGATGATGGCGTGACCTTCAGCGTGTTCAACCGTCCGGATCGCATTTCCGTGGCGGCCGTCACGGCGGCGGGCAACGGCAACCTGATCCTGGCGGGACAGGGTGGCGTACGCGCTACCACGCCCACTGGCGCCGAACTGAGCAAATGAMSEPVMAVGRCRPPVLRRVALLVSALSLLGSAVLSAPVLAVAASTADVIYSVESAKASKTLMLDVVHAGQRLVAVGDRGHIVFSDDQGKSWTQAKVPTRQLLTAVFFVDDKHGWAVGHDAQILASEDGGTTWTKQFEDLTREAPLLDVWFKDASNGLAVGAYGALYATTDGGKHWEQASDRLENEDQYHLNAIAAVKDAGLFIVGEAGSMFRSADWGQTWEKLEGPYEGSLFGAIGTAQPSTLLAYGLRGNLYRSTDFGDSWEQVELKAARGALEFGLSGATLLPDGSIVIVGNGGSVIRSTDDGVTFSVFNRPDRISVAAVTAAGNGNLILAGQGGVRATTPTGAELSKNANANANANA
D1-35_041682658pepNCOG0308Aminopeptidase NATGCGCACCGAACAACCGAAGATGATCTACCTGAAGGACTATCAGGCGCCCGAATACCTGATCGACGAGACGCACCTGACCTTCGAGTTGTTCGAGGACCACAGCCTGGTCCATGCGCAACTGGTGCTGCGCCGCAACCCCGAGCGCGGCGCCGGATTGCCGCCGCTGGTGCTCGATGGCCAGCAGCTGGAATTGCTCTCGATCAAGCTCGACGACGCCGACCTGGGGCAGGGCGACTACCAGCTGGATGACAGCCACCTGACCTTGCAGCCCAAGGCCCAGGCGTTCACCGTCGATACCACCGTGCGCATCCATCCGGAAACCAACACGGCCCTGGAAGGCCTGTACAAATCCGGCAGCATGTTCTGCACCCAGTGCGAGGCCGAAGGCTTTCGCAAGATCACCTATTACCTCGACCGCCCGGACGTGATGAGCAAGTTCACCACCACCGTGGTCGCCGAACAGCACAGCTACCCGGTGCTGCTCTCCAACGGCAACCCGATTGCCAGCGGCCCTGGGGAAGACGGCCGGCATTGGGCGACCTGGGAAGACCCGTTCAAGAAGCCGGCCTACCTGTTCGCCCTGGTGGCCGGTGACCTGTGGTGCGTCGAAGACACCTTCACCACCATGACCGAGCGCAACGTGGCGCTGCGCATCTACGTCGAGCCGGAAAACATCGACAAGTGCCAGCACGCCATGACCAGCCTGAAGAAGTCGATGCGCTGGGACGAAGAGGTGTACGGGCGCGAATACGACCTGGACATCTTCATGATTGTCGCGGTCAACGATTTCAACATGGGCGCGATGGAGAACAAGGGCCTCAACATCTTCAACTCCAGCGCCGTACTGGCCCGCGCCGAAACCGCCACCGACGCCGCGCACCAGCGAGTCGAGGCGATCGTCGCCCACGAATACTTCCATAACTGGTCGGGCAACCGCGTGACCTGCCGCGACTGGTTCCAGCTGTCGCTCAAGGAAGGCTTCACGGTGTTCCGCGACGCTGGGTTCTCGGCGGACATGAACTCGGCCACGGTCAAGCGCATCCAGGACGTGGCGTACCTGCGTACCCACCAGTTCGCTGAAGACGCCGGCCCAATGGCTCACCCGGTGCGCCCGGACAGCTTCATCGAGATTTCCAACTTCTACACCCTGACCGTGTACGAAAAGGGCTCGGAAGTCGTCGGCATGATCCATACCCTGTTGGGCGCCGAAGGCTTCCGCAAGGGCAGCGACCTGTACTTCGAGCGCCACGATGGCCAGGCCGTGACCTGCGACGATTTCATCAAGGCCATGGAGGATGCCAATGGCGTCGACCTGAGCCAGTTCAAACGCTGGTACAGCCAGGCCGGTACGCCACGGCTGGCGGTGAGCGAGTCCTACGACGCTGCGGCGAAGACTTACAGCCTGACGTTCCGCCAGAGCTGCCCGCCGACGCCGGACAAGGCCGAGAAACTGCCCTTCGTGATTCCGGTCGAGTTGGGCCTGCTGGACAGCAATGGCGCCGAAATTCCACTGCGCCTGAGCGGCGAAGCGGCGGCGAGTGGCACGACCCGGGTGATCTCGGTGACCGAGGCCGAGCAGACCTTTACCTTCGTCGATATCGCTGAAAAGCCCCTGCCTTCGTTGCTGCGCGGCTTCTCGGCGCCGGTGAAGCTGAGCTTCCCGTACGACCGTGATCAACTGATGTTCCTCATGCAACACGACAGCGACGGCTTCAACCGTTGGGACGCCGGCCAGCAATTGTCGGTGCAGGTCTTGCAGGAACTGGTCGGCCAGCACCAGAAAGGCGAAAGCCTGGTGCTCGACCCTCGGCTGGTCAGCGCCTTGCGCAGCGTGCTGTCGGATGAATCCCTGGATCAGGCGATGGTCGCGGAAATGCTCTCGCTGCCAAGCGAAGCCTACCTGACCGAAATCAGCGAAGTGGCGGACGTCGAGGCGATCCACGCCGCCCGCGAATTCGCTCGTCGGCAGTTGGCCGAAAACCTGTTCGAAGCGCTGTGGCTGCGCTACGAGGCCAACCGCGACCTGTCCCGGCGCACGCCGTACGTGGCCGAGGCCGAGCACTTCGCGCGGCGTGCGTTGCAGAACATCGCGCTGTCCTACCTGATGCTGACCGACAAGCCCGAAGTGTTGAGCGCCACGCTTGAACAGTTCGACACCGCCGACAACATGACCGAGCGCCTCACGGCGCTTGCGGTGCTGGTCAACTCGCCGTTCGAGACCGAAAAGTCCAAGGCCCTGGAAGTGTTCGCGGAGAACTTCAAGGGCAACCCGCTGGTCATGGACCAATGGTTCAGCGTCCAGGCCGGTAGCCCGCTGCCGGGCGGGCTGGCGCGGGTCAAGGCGTTGATGGAGCACCCGGCGTTCAACATCAAGAACCCGAACAAGGTGCGGGCACTGGTCGGCGCGTTCGCCGGGCAGAACCTGATCAACTTCCACGCCGCCGACGGTTCCGGTTATCGCTTCCTGGCGGACCTGGTGATCCAGCTCAACGCCTTCAACCCGCAGATCGCCTCGCGGCAACTGGCGCCATTGACCCGCTGGCGCAAATACGACAGCGCCCGCCAGGCCCTGATGAAGGGCGAGCTGGAGCGCATCCTGGCGTCCGGTGGGCTGTCGGCCGATGTGTTTGAAGTGGTGAGCAAGAGCCTGGCTTGAMRTEQPKMIYLKDYQAPEYLIDETHLTFELFEDHSLVHAQLVLRRNPERGAGLPPLVLDGQQLELLSIKLDDADLGQGDYQLDDSHLTLQPKAQAFTVDTTVRIHPETNTALEGLYKSGSMFCTQCEAEGFRKITYYLDRPDVMSKFTTTVVAEQHSYPVLLSNGNPIASGPGEDGRHWATWEDPFKKPAYLFALVAGDLWCVEDTFTTMTERNVALRIYVEPENIDKCQHAMTSLKKSMRWDEEVYGREYDLDIFMIVAVNDFNMGAMENKGLNIFNSSAVLARAETATDAAHQRVEAIVAHEYFHNWSGNRVTCRDWFQLSLKEGFTVFRDAGFSADMNSATVKRIQDVAYLRTHQFAEDAGPMAHPVRPDSFIEISNFYTLTVYEKGSEVVGMIHTLLGAEGFRKGSDLYFERHDGQAVTCDDFIKAMEDANGVDLSQFKRWYSQAGTPRLAVSESYDAAAKTYSLTFRQSCPPTPDKAEKLPFVIPVELGLLDSNGAEIPLRLSGEAAASGTTRVISVTEAEQTFTFVDIAEKPLPSLLRGFSAPVKLSFPYDRDQLMFLMQHDSDGFNRWDAGQQLSVQVLQELVGQHQKGESLVLDPRLVSALRSVLSDESLDQAMVAEMLSLPSEAYLTEISEVADVEAIHAAREFARRQLAENLFEALWLRYEANRDLSRRTPYVAEAEHFARRALQNIALSYLMLTDKPEVLSATLEQFDTADNMTERLTALAVLVNSPFETEKSKALEVFAENFKGNPLVMDQWFSVQAGSPLPGGLARVKALMEHPAFNIKNPNKVRALVGAFAGQNLINFHAADGSGYRFLADLVIQLNAFNPQIASRQLAPLTRWRKYDSARQALMKGELERILASGGLSADVFEVVSKSLANANANANANA
D1-35_04169831hypothetical proteinTTGATCGAGATTGGCCGCGGTGCAATCAGCAAGATGTCGGCACGCCTTGACGGGCCGACCGTTGAATACGCCTTTCGCCTGGGCGATGTCGAGGTGCCGGTCAACCCGTTGATCGGCAGCAGGGTTCGCCTGGAATACCTCGGTGCGATTCACTGTACCCATTGCGGACGGCGGACCAAGACCAGTTTCAGCCAGGGTTATTGCTACCCCTGCATGACCAGACTGGCCCAATGCGACCTCTGCATCATGAGCCCCGAGCGTTGCCATTTCGAGGCGGGTACCTGTCGCGACCCGGCCTGGGGCGAGCAGTTCTGCATGACCGATCATGTGGTCTACCTGGCCAACTCATCGGGCGTGAAAGTCGGCATCACCCGCGCCACGCAACTGCCGACCCGCTGGCTCGACCAGGGCGCGAGCCAGGCGCTGCCGATCCTGCGGGTCGCCACCCGCCAGCAGTCGGGTTTCGTCGAGGACCTGTTCCGCAGCCAGGTGGCGGACAAGACCAACTGGCGCGCCTTGCTCAAGGGCGACGCTGCGACGGTGGACTTGCGGCAAATTCGTGATTCACTGTTTGAAAGCTGCGCCCAGGGCCTGCAGGGTTTGCAGGAACGATTCGGCTTGCAGGCGATCCAGACCATAGCGGACGTCGAACCGATCGAGATCCGTTATCCGGTGCAGCAGTACCCGGCGAAGATCGTCAGCTTCAATCTGGACAAGGACCCGATCGCCGAAGGCACGCTGCTGGGAATCAAGGGCCAATACCTGATTTTCGACGCCGGCGTGATCAATATTCGTAAATACACGGCCTACCAGCTCGCCGTGCATCAGTAGMIEIGRGAISKMSARLDGPTVEYAFRLGDVEVPVNPLIGSRVRLEYLGAIHCTHCGRRTKTSFSQGYCYPCMTRLAQCDLCIMSPERCHFEAGTCRDPAWGEQFCMTDHVVYLANSSGVKVGITRATQLPTRWLDQGASQALPILRVATRQQSGFVEDLFRSQVADKTNWRALLKGDAATVDLRQIRDSLFESCAQGLQGLQERFGLQAIQTIADVEPIEIRYPVQQYPAKIVSFNLDKDPIAEGTLLGIKGQYLIFDAGVINIRKYTAYQLAVHQNANANANANA
D1-35_04170261hypothetical proteinATGTCTTCCTTCAACGAAATGATCAACAACATCACCCCCGACATCTACCGCAGCCTGAAACTGGCCGTGGAAATCGGTAAATGGGCCGACGGCAACAAGCTCACCGCCGAGCAACGCGAGTTGTCGCTGCAAGCGATGATCGCCTGGGAAATCCAGAACCTGCCCGAAGAAGAGCGCACCGGCTATATGGGTCCGCAGGAGTGCCAGTCGAAAGCCACCGTCGTGCCGAATATCCTGTTCAAGTCGGACGCCATCCATTGAMSSFNEMINNITPDIYRSLKLAVEIGKWADGNKLTAEQRELSLQAMIAWEIQNLPEEERTGYMGPQECQSKATVVPNILFKSDAIHNANANANANA
D1-35_04171873glpGCOG0705Rhomboid protease GlpGATGAGCGTCGTCGCCGTCCTGCGCCTGCCCCTGGCAGTGGACCTGAGCGGTTTCGTCAAGCTGCTGCAGCGCATGCAGGTGCCTCATCGCGTCAGCGAAGAGGCGGGCGAGCAGGTGCTCTGGGTGCCGGATGAAATCAGCGAAAACGTGCGTTCGTTGTACGAGCGTTTTCCCGCCGGCGATCCCGAGCAACAGCTGGAATTGCCTGACACCGGCAGCACGTCCCGGCGGGCAGGGTTCGTCCAGCAACTGGCCCGCAGTCCGGTGACGGCCCTGATATTGCTGCTGAGCCTGATCGTCAGTGCCGTGACCCTGCTAGGGGAAAATCTTCAAACCCTGCGCTGGTTGACCTTCCTCGAGTTTCGCGTCGTCGGCGACTACATCCAGTTCACGCCGTTGGCCGACAGCCTCGCGGCGGGGCAGTGGTGGCGGCTGGTGACGCCGATGCTGGTTCACTTCGGCTTCCTGCACATCGCCATGAATGGCATGTGGTACTGGGAACTGGGACGCCGGATCGAAGCGCGCCAGGGCGGGATCAATCTGCTGGGGCTGACGCTGCTGTTCAGCCTCGTGTCCAATTTCGCCCAGTACCTGTTCAGCGGCGCGACCCTGTTCGGCGGGCTTTCCGGGGTGTTGTACGGCCTGCTGGGCCATTGCTGGATCTACCAGTTGCTCGCGCCGAACCCGGCCTATCACTTGCCCCGTGGGGTGCTGGTGATGATGCTGGTGTGGTTGCTGCTGTGCCTGTCCGGGCTGGTTTCGCTGATCGGTTTCGGCGAGATCGCCAACGCGGCCCACGTCGGCGGGCTGCTCGTCGGCTGCTTCACGGGCTTGTTGGGCGGGCTGTTCGCTCGCCGTAAAATGGCCCTTTGAMSVVAVLRLPLAVDLSGFVKLLQRMQVPHRVSEEAGEQVLWVPDEISENVRSLYERFPAGDPEQQLELPDTGSTSRRAGFVQQLARSPVTALILLLSLIVSAVTLLGENLQTLRWLTFLEFRVVGDYIQFTPLADSLAAGQWWRLVTPMLVHFGFLHIAMNGMWYWELGRRIEARQGGINLLGLTLLFSLVSNFAQYLFSGATLFGGLSGVLYGLLGHCWIYQLLAPNPAYHLPRGVLVMMLVWLLLCLSGLVSLIGFGEIANAAHVGGLLVGCFTGLLGGLFARRKMALNANANANANA
D1-35_04172972apaH_1Bis(5'-nucleosyl)-tetraphosphatase, symmetricalATGCTCGATCCCGCGCGCAGTTACGATCTGATCGGCGATGTGCACGGATGCGCCTTGACCCTGGAACACCTGCTCGACCGACTCGGTTACCGCAAGCAGGCCGGGGTCTGGCGACATCCTTCGCGCATGGCGGTGTTCCTCGGCGACATCATCGACCGGGGCCCGCGGATTCGCGAGGCGCTGCACATCGTCCACGACATGGTCGTGGCCGGCCAGGCGCTGTGCATCATGGGCAACCACGAGTTCAATGCCCTGGGCTGGAGCACCCCGGCATTGCCGGGCAGCGGCCAGCGCTACGTGCGCGAACACACGCCGCGCCATGCCCGCTTGCTCAACGAAACCCTGACCCAGTTCGATCAGCACCCGGGTGAATGGCGTGATTTCCTCAAGTGGTTCTACGAGCTGCCGCTGTTTGTCGACGCCGGGCGCTTCCGGGTCGTCCACGCCTGCTGGGACGCCGGCCTGATCGAGCCATTGCGCGGCTTGTTCCCGGAAGGCTGCATCGACGAGCATTTTCTCCAGGCTTCGGCCGAATCGGGCAGTTTTGCCTGCACAGTGTTCGATCGCCTGTTGCGCGGCACCGACATGCGCCTGCCCCATGGCATGACCCTGACGGGCGGCGACGGCCTGACCCGCGCGTTCTTTCGCACCAAATTCTGGGAAGACAACCCGCAGACCTACGGCGACATCGTCTTCCAGCCCGACGCATTGCCGGAGCCGGTGGCCCGCACACCGTTGTCACCGGACGAAAAAAACAACCTGCTGCGGTATGGCGTCGATGAGCCGATGTTGTTCGTCGGCCACTATTGGCGCAGCGGCAAACCGGCGCCGATCCGCCCGAACCTGGCCTGCCTGGACTACAGCGCGGTGCTCTACGGCAAGCTGGTCGCCTATCGACTCGACCAGGAAACCCGTCTGGACCCGCACAAGTTCGTCTGGGTCGATGTCGAGCGGCCGGAGATGGGGCGATGAMLDPARSYDLIGDVHGCALTLEHLLDRLGYRKQAGVWRHPSRMAVFLGDIIDRGPRIREALHIVHDMVVAGQALCIMGNHEFNALGWSTPALPGSGQRYVREHTPRHARLLNETLTQFDQHPGEWRDFLKWFYELPLFVDAGRFRVVHACWDAGLIEPLRGLFPEGCIDEHFLQASAESGSFACTVFDRLLRGTDMRLPHGMTLTGGDGLTRAFFRTKFWEDNPQTYGDIVFQPDALPEPVARTPLSPDEKNNLLRYGVDEPMLFVGHYWRSGKPAPIRPNLACLDYSAVLYGKLVAYRLDQETRLDPHKFVWVDVERPEMGRNANANANANA
D1-35_04173891nadKCOG0061NAD kinaseATGGAGCAATTTCGCAATATCGGCATCATCGGTCGCCTGGGCAGTTCCCAGGTGTTGGACACCGTTCGCCGTCTCAAGCGCTTCCTCCTGGAGCGGCACCTGCACGTGATCCTCGAAGATACCATCGCCGAAGTGCTGCCGGGCCACGGGCTGCAGACGTCGTCGCGCAAGATGCTCGGCGAAGTCTGCGACATGGTCATCGTGGTCGGTGGTGACGGCAGCCTGCTGGGCGCCGCCCGGGCCCTGGCGCGGCACAACATCCCGGTGCTGGGGATCAACCGTGGCAGCCTGGGCTTCCTCACCGATATCCGCCCTGACGAGCTGGAGATCAAGGTCGCCGAGGTGCTGGACGGCCATTACCTGGTGGAAAACCGCTTCCTGCTGCAAGCCGAGGTGCGCCGTCACGCCGAGGCCATCGGCCAGGGCGATGCGCTCAACGACGTGGTGCTGCACCCTGGAAAATCCACGCGCATGATCGAATTCGAGCTGTACATCGACGGCCAGTTCGTCTGCAGCCAGAAGGCCGACGGCTTGATCGTCGCCACCCCGACCGGTTCCACGGCCTACGCGCTGTCGGCCGGTGGCCCGATCATGCATCCCAAGCTCGACGCTATTGTGATTGTGCCCATGTACCCCCATACCTTGTCTGGGCGACCCATCGTGGTCGATGGCAACAGTGAGCTGAAAATCGTCGTGTCCAAGGATATGCAGATCTACCCGCAAGTGTCCTGTGACGGCCAGAACCATTTCACCTGCGCGCCGGGTGACACCATCACCGTCAGCAAGAAGGCGCAAAAGCTGCGCCTGATCCATCCGCTGGATCACAACTACTACGAAGTCTGCCGGACCAAGCTCGGCTGGGGCAGTCGTTTGGGGGGTGGAGGCGACTGAMEQFRNIGIIGRLGSSQVLDTVRRLKRFLLERHLHVILEDTIAEVLPGHGLQTSSRKMLGEVCDMVIVVGGDGSLLGAARALARHNIPVLGINRGSLGFLTDIRPDELEIKVAEVLDGHYLVENRFLLQAEVRRHAEAIGQGDALNDVVLHPGKSTRMIEFELYIDGQFVCSQKADGLIVATPTGSTAYALSAGGPIMHPKLDAIVIVPMYPHTLSGRPIVVDGNSELKIVVSKDMQIYPQVSCDGQNHFTCAPGDTITVSKKAQKLRLIHPLDHNYYEVCRTKLGWGSRLGGGGDPGPT0013490_2833DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013490-ppnK-K00858NANA
D1-35_04174951hypothetical proteinATGATCCTGTTTCCCGAATTGCTCGACCTGCCCCGCCGCCTGCGCCATCCCGAAGTACGGGACCTGGCGTGGGTGATCGTCGCCCCGCCGATGCTCATCGACACGCCCTGGCCCCAGCGTCATCCGCTAGCGGGCAGCGGCTGGGTGCAGCAGCCCCATCGCCTGGAACACTGGTTGCGCGAACTGGACCGCGACAGCTATCCGTTGTTGCAGTGCCTGTCCCAGGGGCGCACGCGGCGCCTGGGACTGTATTACGAAAGGCTCTGGCAATTTGCCGTGCAGCATGCGCCGGGCATCGAACTGATCGCGGCGAACCTGCCAATCCGGCGCGACGGCCATACGCTGGGCGAATTGGACCTGTTGCTACGCGATAATGAAGGCGTGCATCACCTGGAGCTGGCGATCAAGTTGTACCTGGGCCCGCAGCAAGGCAACGGGCGAGATACCGCGCAATGGCTTGGGCCCGGCTGCCATGACCGACTCGACCGCAAGCTGACGCATCTGCATGAGCACCAACTGCCGATCTCGGCACGCCCGGAAAGTCGCGAGGCCTTGGCAGCGCTGGGCATCGAGTCGTTTCGCTCACACCTTTGGCTCGGCGGCTATCTGCTCTATCCCTGGCCGGGCGAGGCCGAACCGCCGAGCGGTGCGCACCCCCGGCATTTACGCGGCTGCTGGTTGCACCAGCGGGACTGGCCCGGATTCGTCACCCAGCGCCCGCCAGGGCACTGGCAGCCCCTGCCCCGCGCGGCCTGGCTGGCCCCGGCCCATTACCCGGTTGACCAGGTCTGGACTGCCGGACAACTGGAGGCCTGGCGAACCGCCCTTGATCCCATGGCGCCGGCGCAACTGATGGTGCGCCTGACCGAAAATGCCGAGGGCGAATGGGAAGAAGCCGAGCGGGCGTTCCTGGTGGCGGATCTTTGGCCGGATGTGCCGGGTAATGGTTGAMILFPELLDLPRRLRHPEVRDLAWVIVAPPMLIDTPWPQRHPLAGSGWVQQPHRLEHWLRELDRDSYPLLQCLSQGRTRRLGLYYERLWQFAVQHAPGIELIAANLPIRRDGHTLGELDLLLRDNEGVHHLELAIKLYLGPQQGNGRDTAQWLGPGCHDRLDRKLTHLHEHQLPISARPESREALAALGIESFRSHLWLGGYLLYPWPGEAEPPSGAHPRHLRGCWLHQRDWPGFVTQRPPGHWQPLPRAAWLAPAHYPVDQVWTAGQLEAWRTALDPMAPAQLMVRLTENAEGEWEEAERAFLVADLWPDVPGNGNANANANANA
D1-35_041751284arsBCOG1055Arsenical pump membrane proteinATGCTCATCGCGTCATTGATTTTCCTGCTGACCATAACGCTGGTGATCTGGCAGCCCAAGGGGTTGGGCGTCGGCTGGAGTGCCACCCTTGGTGCACTGTTGGCCTTGCTGAGCGGCGTGGTACAGGTCGGGGACATTGCCCTGGTGTGGCAGATCATCTGGAATGCCACCGGTACGTTCGTCGCGTTGATCATCATCAGCCTGTTGCTGGACGAGGCCGGGTTCTTTGCCTGGGCCGCGTTGCATGTGGCCCGTTGGGGGCGAGGCAGCGGCCGCAAGCTGTTTGCGTTCATGGTGTTGCTCGGGGCGCTGGTCTCGGCATTGTTCGCCAACGACGGAGCGGCGCTGATCCTGACGCCTATCGTGATTTCCATGTTGCTGGCCCTGCGGTTCTCGCCGGCGGCGACCCTGGCGTTCGTGATGGGCGCCGGTTTCATCGCCGATACCGCCAGCCTGCCTCTGGTGGTATCGAACCTGGTGAACATCGTTTCCGCGGATTTCTTCGGCATCGGCTTCAACCGCTACGCGTCGGTCATGGTGCCGGTGAACCTGGTCAGCGTTGCGGCCAGCCTGGCGATACTGCTGTGGATGTTTCGTCGCGATATCCCGCGCGACTATGACCCGCAGCAGCTGGACGACCCGGCAAGCGCCATCCACGATACGGCAACTTTTTATGCCGGTTGGGTGGTGTTGGCGATCCTTTTGCTGGGCTGCTTTGCCCTGGAGCCGCTGGGCATTCCCATCAGCGCGATTTCGGCGGTCTGCGCTGCACTGCTGTTGGCGGTGGCGGCTCGAGGGCACAAGATCTCCACGCGCAAGGCGATGAAAGAAGCGCCCTGGCAGATCGTGATCTTTTCCCTCGGCATGTACCTGGTGGTCTATGGCCTGCGCAACGCCGGCCTCACCGGCTACCTCGCCGCCTGGCTCGATGGCTTCGCCGGTTATGGGGTGTGGGGCGCGGCCATGGGGACCGGGCTGTTGACCGCGCTGCTTTCATCGGTGATGAACAATCTGCCGACGGTGCTGATCGGCGCGTTGTCCATCGATGCCAGCCAGGCCACTGGCGTGGTCAAGGAGGCGATGATCTACGCCAACGTCATCGGCAGTGACCTCGGGCCGAAAATCACGCCGATCGGCAGCCTGGCAACCTTGCTTTGGCTGCATGTGCTGGCGCGCAAGGATATCCGCATCGGTTGGGGTTATTACTTCAAGGTCGGGATTGTGCTGACGGTGCCGGTGTTGCTGGTGACGTTGGCGGCGCTGGCGGTGCGGTTGTCGCTCTAGMLIASLIFLLTITLVIWQPKGLGVGWSATLGALLALLSGVVQVGDIALVWQIIWNATGTFVALIIISLLLDEAGFFAWAALHVARWGRGSGRKLFAFMVLLGALVSALFANDGAALILTPIVISMLLALRFSPAATLAFVMGAGFIADTASLPLVVSNLVNIVSADFFGIGFNRYASVMVPVNLVSVAASLAILLWMFRRDIPRDYDPQQLDDPASAIHDTATFYAGWVVLAILLLGCFALEPLGIPISAISAVCAALLLAVAARGHKISTRKAMKEAPWQIVIFSLGMYLVVYGLRNAGLTGYLAAWLDGFAGYGVWGAAMGTGLLTALLSSVMNNLPTVLIGALSIDASQATGVVKEAMIYANVIGSDLGPKITPIGSLATLLWLHVLARKDIRIGWGYYFKVGIVLTVPVLLVTLAALAVRLSLPGPT0004710_1005DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE_SYSTEM,PGPT0004710-arsB|arsenical_pump_membrane_protein-K03893NANA
D1-35_04176558chrRCOG0431Quinone reductaseATGAGTAATGTCTACACAGTGGCGGTTTTAGTGGGCAGCCTGCGCAAGGCGTCGATCAACCGAAAGGTCGCGTTGGCCCTGGCGGACCTGGCGCCGTCCAACCTGAAACTGGAAATCGTCGAAATCGGCGAACTGCCGCTCTATAACGAAGACATCGACGTCTCGCCGCCGGCGGCCTATACCGCGTTTCGCCAGAAGGTCGGCGCGGCGGATGCGTTGTTGTTCGTGACACCGGAATACAACCGCTCGGTGCCGGCCCCGTTGAAGAATGCCATTGATGTCGGCTCGCGCCCCTACGGTCAGAGTTGCCTGAGCGGCAAGCCGGGCGCAGTGATCAGCGCCTCACCCGGCGCCATCGGCGGTTTTGGCGCCAACCACCATTTGCGCCAATCCCTGGTTTTCCTCGACGTGCCTTGCATGCAACAGCCGGAAGCCTACCTGAGCGGTGCGGGAACGGCGTTCGACGAGGCGGGCAACCTGTCGGAATCGGTGCGGCCGTTTTTGCAGAAGTTCATCGATGCCTATGGCAAGTGGGTGGAGCAGCATAAGAAGGTTTGAMSNVYTVAVLVGSLRKASINRKVALALADLAPSNLKLEIVEIGELPLYNEDIDVSPPAAYTAFRQKVGAADALLFVTPEYNRSVPAPLKNAIDVGSRPYGQSCLSGKPGAVISASPGAIGGFGANHHLRQSLVFLDVPCMQQPEAYLSGAGTAFDEAGNLSESVRPFLQKFIDAYGKWVEQHKKVPGPT0004195_1504DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_SUPEROXIDE_ANION_RADICALS,PGPT0004195-chrR-K19784NANA
D1-35_04177261hypothetical proteinATGGCAGCAGTACTTGTCGGACAATTTCATGCACGGGACGCCGAAGGTCGCGTCTATTCGGTGCATGAATTCCAAGAATCAGACCCGTCACAAGACGGCATTGGCAAGGATGTCATCACTTATAAGCTGGCCATTGGAGATCGGGTCAGCAAAGTCGACGAGGACACGTTCATCCTGGTGCAAACCGGCATCCACCTGACCCGCGAGCCTGAAACGCCACGGCAGCCTCAGGCGCCAGTCGAAACGCAGATCGCTCTATAAMAAVLVGQFHARDAEGRVYSVHEFQESDPSQDGIGKDVITYKLAIGDRVSKVDEDTFILVQTGIHLTREPETPRQPQAPVETQIALNANANANANA
D1-35_04178894hypothetical proteinATGCGTTTACGCCACATCGAAGTGATCCAGGCGCTGCTGCAGACTGGCCACCTGGGTACCGCGGCCGAATGGCTGCAATTGCCGGTGGCCGAAGTCGAGTCGATCCTGCGCGATGCGGAGGCCCAACTCGGTTTCATGCTGTTCGCCAGCGTGCGCGGACGCTTGCAGGCGACGCGGGAAACCCTGGAATTACGCGAAGGCATCACGCGGCTGTACGACACCCTCGAACCGATACAGCGAATGGCCGCCAGCCTGAAGCATTATCAGGCGCCGCCCCTGCGCATCATCTGCACCCCACCACTGGCCCAACAGCTGTTACCCCTGAGCATTGCCGCCCTGCGTCGGCGCCATCCGGATGCGCCGTGCACCCTGCTCAGCCAGCCGACCCGGGAAATCGTCAAAAGCCTGCTGCTGCGTGAAAGCGACTTGGGCCTGAGCCTGCACGACCCAGAACATCCCGACATCGATTGCCAGATGATCGCCCAAGGCAAACTGCAGCTGCTGGCGCCCCATGGCTGGCTGCAACCACGACAGAAATACGTGTCGGTTCAGGATCTGGCGGGCCAGTCGCTGGTCGGCCTGGAGGGGCATGATCCGCTGAGCCCGGCGTTCGACCACAAGCTTGGCGCACTGCGCCCGGCGCCGGTGGTGCAGATACGCGTGCAGACTCATCAGATGATGCGGGCAATGGTCGAGGCCGGCGAAGGCCTGGCGATTGTCGACCCGTTTACCGCCTCGGGGGCCAGAGGCGGCGACCTGGACATCTGTCCGGTATCGCCGGCCGTGCCCATCTGCCTCTATGCATTGAGCCTGAACGGTGCCACGCCTTCACCGGCGGTCCAGTCGTTGCTGGAACGGATCACGGAACAAGCCGAGGCGTTGCTGAACCACTGAMRLRHIEVIQALLQTGHLGTAAEWLQLPVAEVESILRDAEAQLGFMLFASVRGRLQATRETLELREGITRLYDTLEPIQRMAASLKHYQAPPLRIICTPPLAQQLLPLSIAALRRRHPDAPCTLLSQPTREIVKSLLLRESDLGLSLHDPEHPDIDCQMIAQGKLQLLAPHGWLQPRQKYVSVQDLAGQSLVGLEGHDPLSPAFDHKLGALRPAPVVQIRVQTHQMMRAMVEAGEGLAIVDPFTASGARGGDLDICPVSPAVPICLYALSLNGATPSPAVQSLLERITEQAEALLNHNANANANANA
D1-35_04179615hypothetical proteinATGCAACCGGTCATGAATCCCAAGCACCCCGGCCTGTCGGTGCGCGTCGCCGATGACGGCTTCGCCGCTTATATCTGGGGCAGCGATTTCAGTTTCGAAGTCAGCGTCTATGGCACGGCGCAGATCGGCCGGCCGGTGAGCCAGTGGCCGGTGACGCCGATCGTTCCCTACCGCAAGTGCTACGGCATCGACCCTGAAGAGTTCGGCAGTTTTCGCGATGCCCCGGACAGCGAAATCTTCATGGCCTACCTGGACGACCAACCGGTCGGCCATCTGGTCGTCAGCACCAATTGGAACGGGTATGCCCATATCGACGAGCTGGCGGTGCATGCCCCGGCTCGCCGGCATGGGGTGGCCAAGGCCTTGCTCGATGTGGCCCAGTTCTGGAGCCGCAAGAAAAAACTGCCGGGCATCATGCTGGAAACCCAGAACAACAACCTGGGCGCATGCCGGCTTTACGAGCGCTGCGGCTATGTGCTCGGCGGCATCGATCACCTGCGCTATCGCGGCATTGACCGGCACACCGCCGAGGTGGCGCTGTTCTGGTACCGGTTGTTCGACGATCCACTGGGCATGACGGTCAGTGGTTCAGCAACGCCTCGGCTTGTTCCGTGAMQPVMNPKHPGLSVRVADDGFAAYIWGSDFSFEVSVYGTAQIGRPVSQWPVTPIVPYRKCYGIDPEEFGSFRDAPDSEIFMAYLDDQPVGHLVVSTNWNGYAHIDELAVHAPARRHGVAKALLDVAQFWSRKKKLPGIMLETQNNNLGACRLYERCGYVLGGIDHLRYRGIDRHTAEVALFWYRLFDDPLGMTVSGSATPRLVPPGPT0028670_36DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-AMINOGLYCOSIDES_RESISTANCE-STREPTOMYCIN|KANAMYCIN|AMIKACIN,PGPT0028670-sat4-K19273NANA
D1-35_04180762dnaQCOG0847DNA polymerase III subunit epsilonATGGCCAACAGATCTGTAGTACTGGATACCGAAACCACCGGCATGCCGGTGACCGACGGTCACCGGATTATCGAAATCGGCTGTGTCGAGCTGATTGGTCGACGCCTGACCGGTCGTCATTTCCACGTTTACCTGCAACCGGACCGCGAAAGCGACGAGGGTGCCATTGGCGTGCACGGCATCACCAACGAATTCCTGGTGGGCAAGCCGCGTTTCGCCGAGGTAGCCGATGAGTTCTTCGAATTCATCCAGGGCGCGCAGTTGATCATCCATAACGCGGCGTTCGACGTCGGGTTCATCAACAACGAATTCGCCCTGATGGGCCAGCACGACCGGGCCGACATCACCCGGCATTGCACTATCCTCGATACCTTGATGATGGCGCGGGAGCGGCATCCGGGCCAGCGCAACAGCCTTGATGCCTTGTGCAAGCGCTACGGGGTCGACAACTCCGGTCGTGAGCTGCACGGCGCCTTGCTCGACTCCGAGATCCTCGCCGACGTCTACCTGACCATGACTGGCGGTCAGACCAGCCTGTCCCTGGCCGGCAATGCGTCTGACGGCAATGGCACCGGCGAAGGTTCGGGTAACCAGGCGAGCGAGATCCGGCGTTTGCCGGCAGACCGCAAGCCGGCCCGGATCATCCGAGCCAGCGAAAGCGACCTGGCCGAACATGCCGCGCGTCTGGAAGCCATCGCCAAGTCCGCCGGTGCCCCGGCATTGTGGACGCAATTGGTCGAGGCGCAGGCTGCCGCGAGTTGAMANRSVVLDTETTGMPVTDGHRIIEIGCVELIGRRLTGRHFHVYLQPDRESDEGAIGVHGITNEFLVGKPRFAEVADEFFEFIQGAQLIIHNAAFDVGFINNEFALMGQHDRADITRHCTILDTLMMARERHPGQRNSLDALCKRYGVDNSGRELHGALLDSEILADVYLTMTGGQTSLSLAGNASDGNGTGEGSGNQASEIRRLPADRKPARIIRASESDLAEHAARLEAIAKSAGAPALWTQLVEAQAAASNANANANANA
D1-35_04181453rnhACOG0328Ribonuclease HIATGAGCGATAGCGTAGAACTTTTCACTGATGGCGCCTGCAAGGGCAATCCGGGCCCGGGTGGCTGGGGTGCGTTGCTGGTGTGCAAGGGCGTGGAAAAGGAACTCTGGGGCGGCGAAGCCAATACCACCAACAATCGCATGGAACTGATGGGCGCCATTCGCGGCCTGGAAGAACTCAAGCGGCCATGTGATGTGCTGCTGGTAACCGACTCGCAGTATGTAATGAAAGGCATCAACGAGTGGATGGCCAACTGGAAGAAGCGCGGCTGGAAAACGGCGGCGAAGGAACCGGTCAAGAACGCTGATCTCTGGAAGCTGCTGGACGAGCAGGTCAACCGCCACAACGTCACCTGGAAATGGGTGCGCGGGCACATCGGCCACCACGGCAACGAGCGGGCCGACCAGTTGGCCAATCGTGGAGTGGATGAGGTACGGGGGTATAAGCAGGCTTGAMSDSVELFTDGACKGNPGPGGWGALLVCKGVEKELWGGEANTTNNRMELMGAIRGLEELKRPCDVLLVTDSQYVMKGINEWMANWKKRGWKTAAKEPVKNADLWKLLDEQVNRHNVTWKWVRGHIGHHGNERADQLANRGVDEVRGYKQAPGPT0003760_50DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
D1-35_04182759hypothetical proteinATGACCGATGAAGCGTTCGCTCAGGCTGATCCTGAATGGCTGGCATTGATCAGTTCCGCCCGTGAATGGCTGTCCGGCCCTGTCGGGCAATTCCTGCTGGAAGAAGAACGGCGCATGCTCGAAGACGAGTTGGGCCGGTTCTTCGGCGGCTACCTGGTGCATTACGGCCCCTCGGCGCAGACCCCACCGTCGGCCCCGCAGGTGCAGCGCAACGTACGCCTGGGCGCGCCGTTGCCTGGCGTGGAAATCGTCTGCGAGGAGCAGGCCTGGCCGTTGAGCGAGCATGCCGCCGACGTGGTGGTCATGCAGCACGGCCTGGATTTCTGCCTGTCGCCCCATGGCCTGTTGCGCGAGGCCGCCAGCAGCGTGCGTCCAGGTGGCCATTTGTTGATTGTCGGCATCAACCCCTGGAGCAGTTGGGGGCTGCGTCATATATTCGCCGGCGACGCGCTGCGCCAGGCCCGTTGCATCTCGGCATCGCGAGTGGGCGACTGGCTCAACCTGCTCGGCTTCGCGCTGGAGAAACGCCGCTTCGGGTGCTATCGTCCGCCGCTTGCGTCGCCCAAGTGGCAGGCCCGTCTGGCCGGATGGGAGCGCAAGGCCGGTGACTGGCAATTGTCCGGCGGCGGCTTCTATCTGCTGGTGGCGCGCAAGATCGTGGTCGGCTTGCGCCCGGTACGCCAGGCGCGGCGCGAGCCGGTGGGCAAGCTGATTCCCTTGCCGATGGCCAAGGTCAATCGCCGTCACATCGAGCCGTAAMTDEAFAQADPEWLALISSAREWLSGPVGQFLLEEERRMLEDELGRFFGGYLVHYGPSAQTPPSAPQVQRNVRLGAPLPGVEIVCEEQAWPLSEHAADVVVMQHGLDFCLSPHGLLREAASSVRPGGHLLIVGINPWSSWGLRHIFAGDALRQARCISASRVGDWLNLLGFALEKRRFGCYRPPLASPKWQARLAGWERKAGDWQLSGGGFYLLVARKIVVGLRPVRQARREPVGKLIPLPMAKVNRRHIEPNANANANANA
D1-35_04183768gloB_2COG0491Hydroxyacylglutathione hydrolase GloBATGATACAGATCAGTGCCCTGCCCGCGTTTACCGATAACTACATCTGGTTGTTACAGGATCACTCGACCCAGCGCTGCGCCGTGGTCGACCCGGGCGACGCCGCCCCCGTACGGGCCTGGCTCGACGCCCATCCGGGCTGGGTCCTGAGCGACATCCTGGTCACTCATCACCACCATGACCATGTCGGCGGTGTCGCGGCGCTGAAAAGCGCGACAAACGCCACCGTCTACGGGCCGGCCAGCGAAAACATCCCGGCGCGGGACATCGCCCTGGAGGACAACGCCAAGGTCAACGTGCTGGGCCTGGACTTCGATATTCACGCCGTGCCCGGACACACCCTTGGGCATATCGCCTACTACCATCGCGGCCTGCTGTTCTGCGGCGACACGCTGTTCGCCGCCGGTTGCGGCCGGCTCTTCGAGGGCACGCCCGAACAGATGCACCACTCCTTGAGCCGCCTCGCCGCACTGCCCGACGATACGCTCGTCTACTGCACTCATGAATATACCCTGAGCAACCTGAAGTTTGCCGTCGCGGTCGAGCCGGCCAATCTGGACATTGCCGCGCGTCTGGAGAAAGTCACCGAGCAGCGCAGCCAGGGCGTCATCACCCTGCCGTCGACCCTGGCCCTGGAAAAGCTCACCAATCCGTTTTTGCGCACCGCTGAAACATCCGTTAAAGAAAAAGCAGACGAACGGAACGGCCAGCGTAACCAGACGGGGAGTGAGGTTTTTGCGGCCTTGAGGGCCTGGAAAGATAAGTTCTAAMIQISALPAFTDNYIWLLQDHSTQRCAVVDPGDAAPVRAWLDAHPGWVLSDILVTHHHHDHVGGVAALKSATNATVYGPASENIPARDIALEDNAKVNVLGLDFDIHAVPGHTLGHIAYYHRGLLFCGDTLFAAGCGRLFEGTPEQMHHSLSRLAALPDDTLVYCTHEYTLSNLKFAVAVEPANLDIAARLEKVTEQRSQGVITLPSTLALEKLTNPFLRTAETSVKEKADERNGQRNQTGSEVFAALRAWKDKFPGPT0001770_3495DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-LACTIC_ACID_BIOSYNTHESIS,PGPT0001770-gloB|gloC-K01069NANA
D1-35_041841458mltDCOG0741Membrane-bound lytic murein transglycosylase DATGTCGTCATCTATTCGCAGGTCCGTCCAGTCAGACACATTGACCCGCTTGGCTCAAGCCATCGCGGTGGCTGTGTCCGCCACGCTGGCCGGCTGCCAGAGCACCAGCCAGGTGCCGCAGGCCGATGTCGCGCATACGCCGAATATCGCCGCGCGAGCCAAGCAAAAACCCGTCTGGCTGACGGAAAAACCCAGCCCGCAAGTGCCCCAGGACGTCTGGGAACGCATGCGCCAGGGCTTCCAGCTGCAGGAAACCGCCGGGGTCAACCCGCGCATCGAGCAGCAGCGCCTGTGGTTCGCCAGCAATCCGTCCTTCCTGGAAAACGCCGGCGAGCGCGGCAGCCTGTACATCCACTACATCGTCGAGCGCCTGGAAGAGCGCAACATGCCGCTGGAGCTGGCGCTGTTGCCGGTGATCGAAAGCGCCTACAACCCGATGGCCTATTCCCGCGCCAACGCGGTGGGCCTGTGGCAGTTCATCCCCTCCACCGGGCGTTATTTCAACCTGCGCCAGACGCGTTTCTACGACGGACGTCGCGACATCACTGCGTCGACCACGGCCGCCATGGATTACCTGACGCGCCTGCATGACATGTTCAATGGCGACTGGCTGTTGGCGCTGGCGGCCTACAACGCCGGTGAAGGCACGGTCAGCCGGGCCATCGAGCGCAACGAAAAGCTCGGCCTGCCCACCGACTACTGGAACCTGCCTCTGCCCAGCGAAACCCAGGCCTACGTGCCGAAGCTGCTGGCGCTGTCCCAAGTGGTACTGGCCCCCGATGCCTACGGCGTGAACCTCAACCCGATCGCCAACGAACCCTACTTCCAGGTCGTCGAGATCAACCAGCGCATGGACCTTTCAAAAGTCGCAGCGGTGGCGAACATCGACGAAGACGAGCTGTTCCAGCTCAACCCGGCGTTCAAGCAACGCACCACCGTCGACGGCCCACAACACCTGCTCGTCCCGACCTCCAAGGCACAGTTGCTGACCGCCAGCCTGTCAACCATGCGCCCGGAAGAATTGATCAGCCCGCGCTCGCTCAAGCCGGTCTTCGAAAACGCCGATGACAGCGAAGTGGAAGGTGTACGGCGCAGCTACCGGGTCAAGCGCGGCGACAACCTGGCCCAGATCGCCAAGGCCAACAACGTCCAGACCAAGGACCTGCAACGCTGGAACAAGCTCAGCGGCAACAAGCTCAAGGTCGGCCAGACCCTGGTCATGCAAGACGTCAAGGCCACCAAGGCAACCAAGGCCAGCGGCAAACGCATCAACACTGTCGTAGCCGCCAAGAGCAACGAACAGAAAAAGCAGACCCAATACAAGGTCAAGCAAGGCGACTCGCTTTATGTCGTTGCCAAGCGCTTCAACGTCGAAATGCAGCACCTCAAGCGCTGGAACCCGCGCATGGGCAAGGCGCTCAAGCCTGGACAGATGCTGACGGTCTATTCCCCACACTGAMSSSIRRSVQSDTLTRLAQAIAVAVSATLAGCQSTSQVPQADVAHTPNIAARAKQKPVWLTEKPSPQVPQDVWERMRQGFQLQETAGVNPRIEQQRLWFASNPSFLENAGERGSLYIHYIVERLEERNMPLELALLPVIESAYNPMAYSRANAVGLWQFIPSTGRYFNLRQTRFYDGRRDITASTTAAMDYLTRLHDMFNGDWLLALAAYNAGEGTVSRAIERNEKLGLPTDYWNLPLPSETQAYVPKLLALSQVVLAPDAYGVNLNPIANEPYFQVVEINQRMDLSKVAAVANIDEDELFQLNPAFKQRTTVDGPQHLLVPTSKAQLLTASLSTMRPEELISPRSLKPVFENADDSEVEGVRRSYRVKRGDNLAQIAKANNVQTKDLQRWNKLSGNKLKVGQTLVMQDVKATKATKASGKRINTVVAAKSNEQKKQTQYKVKQGDSLYVVAKRFNVEMQHLKRWNPRMGKALKPGQMLTVYSPHPGPT0023795_1221DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-MUREIN_TRANSGLYCOSYLASE_ACTIVITY,PGPT0023795-mltD|dniR-K08307NANA
D1-35_041851833hypothetical proteinTTGATACGTCCCCCCCTCCTGTTCCTGATCAGCCTGGCCTTGAGCTCCCCCGCCGGCGCCACCATCAGCGAAAGCCATGGCTATGCGCAGTTCGGCACGCTCAAGTACCCGGCCAGATTCACCCACTTCGACTGGGTCAACCCGCAAGCGCCCAAGGGCGGCACCTTGCGGGTCATGGCATTTGGCACCTTCGACACACTCAATCCGTATACCTTCAAGGGCAGCAGCCCGGTTTCCACGGCAAATTTCCTGCAATACGGCATCAATGAATTGAACGAGCCGTTGATGGTTGGCACCGGCCAGTACGCACCGTCCGGCGACGAACCGACGTCGAGCTACGGCTTGATCGCCCGATCCGTGGAATACAGCGAGGATCGTAGCTGGGTGGTGTTCAACCTGCGGCCAGAGGCGCGGTTCCATGACGGCGTGCCGATCACCGCTTATGACGTGGCGTTTTCCTACAGGACGCTGCTCAAGGAAGGTCATCCGCAATACCGCACCAACCTGCAGGAAGTGCTGCGGGTCGATATCCTCAATCCGCTGAAAATCCGCTTTGTCTTCAAGCGTGCGGGCAATCCCTTGCTGATCCTGCGCCTGGGGGAACTGCCGGTGCTGCCCCAGCACTACTGGAAAGACCGCGACTTCAAGGCGACCACCTTCGAGCCTCCCCTGGGCAGTGGCCCTTATCGCATCACCAAGGTGCAGCCCGGTCGCCAGCTGGTCTTCGAACGGGTCAAGGACTACTGGGGCAAGGACCTGCCGGTCAATCGCGGCAAATACAACTACGACCGCATGGTCGTCGAGTTCTACCGCGACAGCGAGGTGGCCTTCGAAGCGTTCAAGGCCGGTGAATTCGATATCTACATCGAACACCAGGCCAAGAACTGGGCCAACGGCTACAACTTCCCGGCGATCAACCGTGGCGATGTGATCAAGGCGCAGATTCCCCATCAGATTCCGACCCAGACCCAGGGCCTGTTCATGAACACGCGGCGCAGCACCTTCGCCGAGGTCAAGGTGCGCGAAGCCCTGGGATTGATGTTCGATTTCGAATGGACCAACCGCACGCTGTTCAGCGGTGCCTACAAACGCACACTCAGCTATTACCCCAACAGTGAGTTTTCGGCCACGGGCCTGCCCGTGGGCCACGAATGGCTGCTGCTCAAGCCCTATCGCGAACAATTGCCGCCCCGGTTGCTGACCGAACCCTTCAGCCTGCCTCGCACCGACGGTCGCGGCGTTCCGCGCGAGACACTGCGCAAGGCCCTGGGCCTGTTGAAAGAAGCCGGATGGACCCTCCACGGCCAGTACTTGCTGAACGCCGACAAGCAGCCCCTACGCTTTGAAATCCTGTTGGTGAACCCGAACCTGGAGCGCATCCTCCAGCCCTACGTCGAGAACCTCGCCAGCATCGGCGTCCAGGCCCGTCTGCGCACGGTGGACCGCGCCCAGTACAAGCAGCGCCTGGACCAGTTCGATTTCGACATGATCCTGCTGACCCTGAGCCAGACCCTCAGCCCGGGCCTTGAGCAATGGCAGTATTTCCACTCCAGCCAGGTCGGGATCAAGGGCAGTAAAAACTATGCGGGCATCGCCAACCCCGTGGTCGATCACCTGCTGGAGAAGCTGCTCGCCGCCCAGACTCGCGACGAACAGGTCGCCGCCGGCAAGGCCCTGGACCGCGTGCTGCTATGGCAGCATTACTGCATTCCCAACTGGTATCTCAATTATCATCGCCTGGCGTACCGCAACCGGTTCGCCTTCGTCACTACGCCGCCCTACACCCTGGGCCTGAGCGCATGGTGGCTGAAATCTTCGGAGAAAGATCAATGAMIRPPLLFLISLALSSPAGATISESHGYAQFGTLKYPARFTHFDWVNPQAPKGGTLRVMAFGTFDTLNPYTFKGSSPVSTANFLQYGINELNEPLMVGTGQYAPSGDEPTSSYGLIARSVEYSEDRSWVVFNLRPEARFHDGVPITAYDVAFSYRTLLKEGHPQYRTNLQEVLRVDILNPLKIRFVFKRAGNPLLILRLGELPVLPQHYWKDRDFKATTFEPPLGSGPYRITKVQPGRQLVFERVKDYWGKDLPVNRGKYNYDRMVVEFYRDSEVAFEAFKAGEFDIYIEHQAKNWANGYNFPAINRGDVIKAQIPHQIPTQTQGLFMNTRRSTFAEVKVREALGLMFDFEWTNRTLFSGAYKRTLSYYPNSEFSATGLPVGHEWLLLKPYREQLPPRLLTEPFSLPRTDGRGVPRETLRKALGLLKEAGWTLHGQYLLNADKQPLRFEILLVNPNLERILQPYVENLASIGVQARLRTVDRAQYKQRLDQFDFDMILLTLSQTLSPGLEQWQYFHSSQVGIKGSKNYAGIANPVVDHLLEKLLAAQTRDEQVAAGKALDRVLLWQHYCIPNWYLNYHRLAYRNRFAFVTTPPYTLGLSAWWLKSSEKDQPGPT0011625_1035DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-SIDEROMYCINS|MICROCINS,PGPT0011625-yejA-K13893NANA
D1-35_041861854appA_2Oligopeptide-binding protein AppAATGAAGCCTTTACGCGCCCTGCTCCTGCAGGCCAGCGGCCTGTTATTCGCAGGGCTGGCCTGTGCCGCGCCGCAACACGCCTTGACGTTGTATAACGAGCCGCCGAAGTACCCGGCCGACTTCAAGCATTTCGACTACGTGAACCCGGATGCCCCCAAGGGCGGGATATTCCGTCAGGGCGGGTTCGGCGGCTTCGACAGCCTCAACCCGTTTATCAGCAAGGGCGTACCGGCCGAGGATATCGGCCTGATCTACGACACCCTGGCCAAGCAAGGCCTCGACGAGCCCTTTACCGAGTACGGCCTGATCGCCGAAAAGATCGAGAAGGCCCCGGACAATGGCTGGGTGCGCTTCTACCTGCGCCCCGAAGCCCGCTTCAACGACGGCCATCCGGTGCGCGCCGAAGACGTCGTGTTCAGCTTCGAGACCCTGACCAGGGACGGCGCACCGATGTTCCGCGGTTATTACAACGACGTCGCCGAAGTCGTCGCCGAGACGCCACTCAAGGTCCTGTTCAAGTTCAAGCACACCAATAACCGCGAACTGCCGCTGATCCTCGGCCAATTGCCGGTATTGCCCAAGCACTGGTGGGCCAACCGCGACTTCAACAAGGGCAACCTGGAGATCCCTCTCGGCAGCGGCCCCTACCGGGTCACCGAAGTGAAGGCGGGGCGTTCGATCCGCTACGAGCGCGTCAAGGATTACTGGGGCAAGGACCTGGCGGTCAACCGCGGCTTCTACAATTTCGACGTACTGACCACGGATTACTACCGCGACAACACCGTGGCGGTAGAGGCATTGAAAGCCGGGCAATTCGATTTCTGGCTGGAGATGGCTGCCAAGAACTGGGCCAACGCCTACAACATTCCCGCCGTCAGCGAAGGCCGCCTGATCAAGGAACAGATCCCCAACGGCAACCCCACCGGCATGCAGGGTTTTGTCTACAACCTGCGCCGCCCGATCTTCCAGGACGTGCGGGTGCGCCAGGCGTTGAGCCTGTTGCTGGACTTCGAATGGACCAACAAGCAGTTGTTCCACGGTGCCTACGCCCGCACCCGCAGCTATTTCGAGAACTCGGAAATGGCCGCGACCGGCCTGCCCGGCGAAGACGAATTGAAGATTCTCGAACCGCTGCGCGGCAAGATTCCCGAACAGGTTTTCAGCGAAACCTTCCAGCCGACGGTCTGCGATGGCAGCGGCATGATCCGCGACCAGCAGCGCAAGGCCTATCAATTGTTGCAAGAGGCCGGCTGGCGCATCGTCGACGACAAGATGGTCGACGCCCAGGGCAAACCGGTGGTGCTGGAATTCCTCCTGGCCCAGACCGAATTCGAGCGGGTGCTGCTGCCCTTCAAGCGCAACCTGAGCGACCTCGGCATCGAGCTGGTGATTCGCCGCGTCGACGTGTCCCAGTACATCAACCGCGTGCGCTCCCGGGACTTCGATCTGGTGGTGGGCAGCTTCCCGCAGTCCAGCTCGCCGGGTAACGAGCAGCGCGAGTTCTGGATGTCGGCTGCCGCGGACAAGCCTGGCAGCCGCAATACCATGGGCCTGAAGGACCCGGCCGTCGACCAGTTGGTGGAACAGTTGATCAACGCCGATTCGCGCAAAAGCCTGGTAGCCCATGCCCGGGCGCTGGACCGGGTGCTGCAGTGGGGCTACTACGTGATCCCCAACTGGCACATCAAGACCTGGCGCGTGGCCTACTGGAACCACATAGGCCACCCTGAAATCACCCCGACCTACGACATCGGCACTACCACGTGGTGGGTCAAACCGGACATCAAGCCGGCCGAAGAAGTGGAAAAACAAGTGATCGAGCAGCAAGTCGCCGCCCCTGTGAGCGTGGAGTAAMKPLRALLLQASGLLFAGLACAAPQHALTLYNEPPKYPADFKHFDYVNPDAPKGGIFRQGGFGGFDSLNPFISKGVPAEDIGLIYDTLAKQGLDEPFTEYGLIAEKIEKAPDNGWVRFYLRPEARFNDGHPVRAEDVVFSFETLTRDGAPMFRGYYNDVAEVVAETPLKVLFKFKHTNNRELPLILGQLPVLPKHWWANRDFNKGNLEIPLGSGPYRVTEVKAGRSIRYERVKDYWGKDLAVNRGFYNFDVLTTDYYRDNTVAVEALKAGQFDFWLEMAAKNWANAYNIPAVSEGRLIKEQIPNGNPTGMQGFVYNLRRPIFQDVRVRQALSLLLDFEWTNKQLFHGAYARTRSYFENSEMAATGLPGEDELKILEPLRGKIPEQVFSETFQPTVCDGSGMIRDQQRKAYQLLQEAGWRIVDDKMVDAQGKPVVLEFLLAQTEFERVLLPFKRNLSDLGIELVIRRVDVSQYINRVRSRDFDLVVGSFPQSSSPGNEQREFWMSAAADKPGSRNTMGLKDPAVDQLVEQLINADSRKSLVAHARALDRVLQWGYYVIPNWHIKTWRVAYWNHIGHPEITPTYDIGTTTWWVKPDIKPAEEVEKQVIEQQVAAPVSVEPGPT0011625_687DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-SIDEROMYCINS|MICROCINS,PGPT0011625-yejA-K13893NANA
D1-35_041871074yejB_2COG4174Inner membrane ABC transporter permease protein YejBATGCTGGCTTATATTTTTCGGCGCCTGCTGCTCATCATCCCGACCCTGTTCGGCATCCTGCTGATCAACTTCGTGATCATCCAGGCCGCGCCCGGTGGGCCGGTGGAACAGATGATCGCCAAGCTCGAAGGTTTCGAAGGCGCTACCAGCCGCATCGCCGGCGGCGGCGCGGAAGTGTCAGTGGCCGGCTCCTCCTACCGCGGCGCCCAAGGCCTGGATCCGGCACTGGTCAAGGAAATCGAGCGCATGTACGGGTTCGACAAGTCGGCCCCCGAACGCCTGTGGATCATGATCAAGAACTACGCCCGCCTGGACTTTGGCGACAGCTTTTTCCGCGACGCCAAGGTCATCGACCTGATCAAGGAAAAGATGCCGGTGTCGATCTCCCTCGGGCTGTGGAGCACGCTGATCATGTACCTGGTGTCGATCCCGCTGGGGATTGCCAAGGCCACGCGGCACGGCAGCCATTTCGACGTGTGGACCAGCTCGGCGATCATCATCGGCTACGCGATCCCGTCGTTCCTGTTCGCCATCCTGCTGATCGTGGTGTTTGCCGGCGGCAGCTATTTCGACTGGTTTCCATTACGGGGCCTGACGTCGAACAATTTCGAGGAGCTGAGCCTGGGCGGCAAGATCCTCGATTATTTCTGGCACCTGGCCTTGCCCGTCACCGCCCTGGTGATCGGCAACTTTGCCACCATGACGCTGCTGACCAAGAACAGTTTCCTCGATGAAATCAACAAGCAGTACGTGGTCACCGCCAAGGCCAAGGGGCTGACGCGCAACCGGGTGCTCTACGGGCATGTATTTCGCAACGCCATGCTGCTGGTGATTGCCGGTTTCCCTTCGGCGTTCATCGGGATCTTCTTTACCGGCTCGCTGCTGGTGGAAGTGATCTTCTCCCTCGACGGCCTCGGGTTGATGAGCTTCGAAGCCGCCATCAACCGTGATTACCCGGTGGTCTTCGGCACACTGTTCATCTTTACCCTGCTGGGGCTGGTAGTGAAACTGATCGGCGACCTGACCTATACCTTCGTCGATCCGCGTATCGACTTCGAAAGCCGGGAGCATTGAMLAYIFRRLLLIIPTLFGILLINFVIIQAAPGGPVEQMIAKLEGFEGATSRIAGGGAEVSVAGSSYRGAQGLDPALVKEIERMYGFDKSAPERLWIMIKNYARLDFGDSFFRDAKVIDLIKEKMPVSISLGLWSTLIMYLVSIPLGIAKATRHGSHFDVWTSSAIIIGYAIPSFLFAILLIVVFAGGSYFDWFPLRGLTSNNFEELSLGGKILDYFWHLALPVTALVIGNFATMTLLTKNSFLDEINKQYVVTAKAKGLTRNRVLYGHVFRNAMLLVIAGFPSAFIGIFFTGSLLVEVIFSLDGLGLMSFEAAINRDYPVVFGTLFIFTLLGLVVKLIGDLTYTFVDPRIDFESREHPGPT0011630_782DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-SIDEROMYCINS|MICROCINS,PGPT0011630-yejB-K13894NANA
D1-35_041881020yejE_2COG4239Inner membrane ABC transporter permease protein YejEATGAACCTCTCTCCTCTCAATCGTCGCCGTTTCGAACTGTTCAAGGCCAACAAGCGTGGCTGGTGGTCGTTGTGGCTGTTTCTGTTCTTGTTCGTGCTCAGCCTGGGCGCCGAGCTTATTGCCAACGACAAGCCACTGGTGGTGCACTACGACGGCGGCTGGTACTTCCCGGCCCTGAAGCGTTACCCGGAAACGACGTTCGGCGGCGAATTCCCGTTGGAGGCCAACTACAAGAGCCCGTATATCCGCGAGTTGCTCGCCGCCAAGGACGCCTGGGTCGTGTGGGCACCGATTCCATTCAGCTACCAGAGCATCAATTACGACTTGAAGGTCCCGGCCCCGGCACCGCCCTCGTCGGTGAACTGGCTGGGCACCGATGACCAGGGCCGCGACGTGCTGGCGCGGGTCATCTATGGCTTTCGCATCTCGGTGCTGTTCGCGCTCACGCTGACGGTGCTCAGCTCGATCATCGGGGTGATCGCCGGTGCGTTGCAGGGCTTCTATGGCGGCTGGGTAGACCTGGCCGGCCAGCGTTTCCTGGAAATCTGGTCCGGGCTGCCGGTGCTCTATCTGCTGATCATTCTCGCCAGCTTCGTCCAGCCGAACTTCTGGTGGCTGCTGGGCATCATGTTGCTGTTTTCCTGGATGAGCCTGGTGGATGTGGTGCGCGCCGAGTTCCTGCGCGGGCGCAACCTCGAATACGTGCGCGCCGCGCGAGCGCTGGGCATGCAAAATGGCGCGATCATGTTCCGCCACATCCTGCCCAACGCCATGGTCTCGACCATGACCTTCATGCCGTTCATCCTCACCGGCGCCATCGGCACCCTCACCGCCCTGGATTTTCTCGGTTTCGGCCTGCCGGCCGGAGCACCATCCCTCGGCGAGCTGGTGGCCCAGGGCAAGTCCAATCTGCAGGCGCCCTGGCTGGGCATCAGCGCATTCGCCGTGCTGGCGATCATGCTGAGCCTGTTGGTGTTCATCGGCGAGTCCGCTCGCGATGCCTTCGATCCGAGGAAGTGAMNLSPLNRRRFELFKANKRGWWSLWLFLFLFVLSLGAELIANDKPLVVHYDGGWYFPALKRYPETTFGGEFPLEANYKSPYIRELLAAKDAWVVWAPIPFSYQSINYDLKVPAPAPPSSVNWLGTDDQGRDVLARVIYGFRISVLFALTLTVLSSIIGVIAGALQGFYGGWVDLAGQRFLEIWSGLPVLYLLIILASFVQPNFWWLLGIMLLFSWMSLVDVVRAEFLRGRNLEYVRAARALGMQNGAIMFRHILPNAMVSTMTFMPFILTGAIGTLTALDFLGFGLPAGAPSLGELVAQGKSNLQAPWLGISAFAVLAIMLSLLVFIGESARDAFDPRKPGPT0011635_1275DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-SIDEROMYCINS|MICROCINS,PGPT0011635-yejE-K13895NANA
D1-35_041891611yejF_2COG4172putative ABC transporter ATP-binding protein YejFATGAACCAGGACAATCTGATCGAAGTACGCGACCTGGCGGTGGAATTCATCGTTGGCGAACGCCGCCAGCGCGTGGTCGAGGGCGTCAGCTTCGACATCAAGCGCGGCGAAACCCTCGCGCTGGTGGGTGAAAGCGGCTCGGGCAAGTCGGTGACGGCCCATTCGATCCTGCGCTTGCTGCCCTACCCGCTGGCCCACCACCCGACCGGGACCATCCAGTACGCCGGCCAGAATCTGCTGGGCCTCAAGGAAAAGACCATCCGCCATATCCGTGGCAATCGGATCGCGATGATTTTCCAGGAGCCGATGACTTCCCTGAACCCGCTGCACTGCATTGAAAAACAGCTCAATGAAGTGCTCGGCATCCACAAGGGCCTGACCGGCAAGGTCGCCACCCGTCGCTCCCTTGAGCTGCTGGAACTGGTCGGCATCCCCGAACCGCACAAACGGCTCAAGGCGTTGCCCCACGAACTGTCCGGTGGCCAGCGTCAGCGGGTGATGATCGCGATGGCCCTGGCCAACGAGCCGGAACTGCTGATAGCCGACGAACCGACCACCGCGCTGGACGTCACCGTGCAGCTGAAAATCCTCGATCTGCTCAAGGATTTGCAGGCGCGCCTGGGCATGTCGCTGCTGCTGATCAGCCACGATTTGAACCTGGTGCGAAGAATTGCGCATCGCGTATGTGTCATGCAGCGCGGTTGCATCGTCGAACAGGCATCGTGCGCAGAGTTGTTCCGCGCGCCGCAACATCCGTACACTCGGGAATTGCTGGCCGCCGAGCCCAGCGGCAACCCGGCGACCAACGTGGTCGGCCCGCCGCTGCTGGAGGTCGAGGACCTGAAAGTCTGGTTCCCGATCAAGAAAGGCCTGTTCAAGCGCACGACGGATTACATCAAGGCGGTGGACGGAATCCGCTTCAGCCTGCCCCAGGGCCAGACCCTGGGCATCGTCGGCGAGAGCGGTTCCGGCAAGTCCACGCTGGGGCTGGCGATCTTGCGGTTGATCGGCAGCCAGGGCGGGATCCGCTTCGAGGGCAAGCAGCTCGATAGCCTGTCGCAACAGCAAGTCCGGCCGTTGCGCCGGGAGATGCAAGTGGTGTTTCAGGACCCGTTTGGCAGCCTGAGCCCGCGGATGTGTGTGAGCCAGATCGTCGGCGAAGGACTGCGGATCCACAAGATCGGCACCGAAGCCGAACAGGAACAAGCGATAATCGCGGCATTAAAGGAGGTAGGCCTGGACCCGGAAACCCGGAACCGCTACCCCCACGAATTTTCCGGAGGGCAACGGCAGCGCATCGCCATTGCCCGGGCCCTGGTGCTCAAGCCGGCGTTGATTCTGCTGGACGAACCAACGTCGGCCCTGGACCGTACCGTGCAACGCCAGGTGGTGGAGCTGTTGCGGTCATTGCAAACCAAGTACAACCTGACGTACCTGTTTATCAGCCATGACCTGGCTGTCGTCAAAGCGCTGAGCCACCAGTTGATGGTGGTCAAGCATGGCCAAGTGGTCGAACAAGGTGATGCCCGCAGCATATTCGCCGCGCCGCAACACCCCTATACACAGCAGTTGCTGGAGGCCGCTTTCCTGGCCCCGACAACTGCCGAATAAMNQDNLIEVRDLAVEFIVGERRQRVVEGVSFDIKRGETLALVGESGSGKSVTAHSILRLLPYPLAHHPTGTIQYAGQNLLGLKEKTIRHIRGNRIAMIFQEPMTSLNPLHCIEKQLNEVLGIHKGLTGKVATRRSLELLELVGIPEPHKRLKALPHELSGGQRQRVMIAMALANEPELLIADEPTTALDVTVQLKILDLLKDLQARLGMSLLLISHDLNLVRRIAHRVCVMQRGCIVEQASCAELFRAPQHPYTRELLAAEPSGNPATNVVGPPLLEVEDLKVWFPIKKGLFKRTTDYIKAVDGIRFSLPQGQTLGIVGESGSGKSTLGLAILRLIGSQGGIRFEGKQLDSLSQQQVRPLRREMQVVFQDPFGSLSPRMCVSQIVGEGLRIHKIGTEAEQEQAIIAALKEVGLDPETRNRYPHEFSGGQRQRIAIARALVLKPALILLDEPTSALDRTVQRQVVELLRSLQTKYNLTYLFISHDLAVVKALSHQLMVVKHGQVVEQGDARSIFAAPQHPYTQQLLEAAFLAPTTAEPGPT0011640_671DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-SIDEROMYCINS|MICROCINS,PGPT0011640-yejF-K13896NANA
D1-35_04190795fabICOG0623Enoyl-[acyl-carrier-protein] reductase [NADH] FabIATGGGTTTTCTCGCCGGTAAGCGCGTACTGATCGTCGGTGTCGCCAGCAAGCTGTCCATCGCATCCGGCATCGCTGCCGCCATGCATCGCGAGGGCGCTGAGCTTGCCTTCACTTATCAGAACGACAAACTCAAGGGTCGTGTCGAAGAGTTCGCGCAAGGCTGGGGTTCGAGCCCTGAGCTGTGCTTCCCGTGCGACGTCGCCAGCGATGAAGAAATCGCCAAGGTCTTCGAAGAACTGAGCAAGAAGTGGGATGGCCTGGACTGCATCGTGCACTCCGTGGGCTTCGCCCCGGGCGACCAACTGGATGGCGACTTCACCGAAGCCACCACCCGTGAAGGTTTCCGCATTGCCCACGACATCAGCGCCTACAGCTTCGTGGCCCTGGCCAAGGCCGGTCGCGAGATGATGAAAGGCCGCAACGGCAGCCTGCTGACCCTGTCGTACCTGGGCGCCGAGCGCACCATGCCGAACTACAACGTCATGGGCATGGCCAAGGCCTCCCTGGAAGCTGGCGTTCGCTACCTGGCCGGCTCCCTGGGCCCGGACGGCACCCGCGTGAACTGCGTATCTGCCGGCCCGATCCGCACCCTCGCCGCTTCCGGCATCAAGAACTTCCGCAAGATGCTGGCCGCCAACGAAGCGCAAACCCCGCTGCGTCGCAACGTCACCATCGAAGAAGTCGGCAACGCCGGCGCCTTCCTGTGCTCGGACCTCGCGTCGGGCATCAGCGGTGAAATCATGTACGTGGACGGCGGCTTCAACACCACCGCCATGGGCAACATCGAAGAGTAAMGFLAGKRVLIVGVASKLSIASGIAAAMHREGAELAFTYQNDKLKGRVEEFAQGWGSSPELCFPCDVASDEEIAKVFEELSKKWDGLDCIVHSVGFAPGDQLDGDFTEATTREGFRIAHDISAYSFVALAKAGREMMKGRNGSLLTLSYLGAERTMPNYNVMGMAKASLEAGVRYLAGSLGPDGTRVNCVSAGPIRTLAASGIKNFRKMLAANEAQTPLRRNVTIEEVGNAGAFLCSDLASGISGEIMYVDGGFNTTAMGNIEEPGPT0008370_1809DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008370-fabI-K00208NANA
D1-35_04191414hypothetical proteinATGATACGCAGCGAGAAAAGACTGGGCGCCGCTATCCTTTGCCTATTGGCGGCCTGTGCACTGCTGTTTTTCTTTGCCGCAGACAGCGTGGTGGAGAATCCCGCAGATCTCACCGACACCCGGGGTGTTCCCGCTGTTTCGATCTACCTGGTCTTGCTGATGATATTGGCTTCGGCATCATTGGCCCTGACCGGAATAGGCAGTATCGCCCAGCGGTTTCTCAGGCGCCGGTCTTTCAGACTGCGTATCAGCGTGTATGTGCTTGCCAATATTCCCCTTGTTTTAACGTCGCTCCTGGGGGTGTTGGTCTCCTTGGCCTACCTGTATGACGCCGTGTCCGGATTAATAGCGGCGTTGTTGTTCCTGCTCGCCTTTGCCTTCGTGTTGTTGGCCATCCCCCCAAAGCCGCAATAAMIRSEKRLGAAILCLLAACALLFFFAADSVVENPADLTDTRGVPAVSIYLVLLMILASASLALTGIGSIAQRFLRRRSFRLRISVYVLANIPLVLTSLLGVLVSLAYLYDAVSGLIAALLFLLAFAFVLLAIPPKPQNANANANANA
D1-35_04192825hypothetical proteinATGAATAACGAATTGCCCCTGACATTTGTTTATCCCGAAGAATTTGGCACGTCACGCGGAAGTGGAAGGGGGCTCCCATTCCCTGCGCCGCTGGCGATGATTGGAAAAATGATCCAAGAGCGCAACGTGGCTTACGAACGGGGTCATTGGCCTCAGATGCTTGGACGTCATCTCGTAGCCATGCGCAATAATCGACCGGTTCGTTATGGCTTGGACGGCTTCATCATTGGTGATTTGAAGGTTGCCCATGGTTCTGATCTGTTAATGCTGAAGAGTCCCGGGCTTGGCACTGCAGACGCTTGGAAGCTGGGAGTTAAAGAAGGAACCAAGATAACTGCCATTGAACAGCTGGCGGTCGAGCAAGAGTTTTCCGGAGGCGTTTTCACGCCCTTCAAAGCTATCGGTCATTGGTTACTTGGCAAGGGCAAACCTGCAAGCGTTCGACTCGACAGAATTGGAATCAGCCCAGCACCGAACAAGATTCCCGACCTGATGGCGATTATCAATACCGCGGGAATAGGGGTAACCAGTGTCAATATGAGAGTTCCCTATTCCACGGCTCAGGATTCGAATATCGCAAGGATCTACCTTGGAAACATCACGCTTCAAATAACCGGTCAGGTGATCCGTAACACCTCAGGTAGCCTGTCGTTTACAGGGACTGCCAAGGGTTTTTCGGATCGTTATGACGCAAATGCCAGCAATCATCGTTCGGTATTTGATGAAAAAGCGACCACGGCACTGCATCAAGTGGGGCGCGTTGCCCGAGCGCAGGACTATGAAATACGAATTACCGGCGAGCTTCCGATCAATTTTTCAAGGTGAMNNELPLTFVYPEEFGTSRGSGRGLPFPAPLAMIGKMIQERNVAYERGHWPQMLGRHLVAMRNNRPVRYGLDGFIIGDLKVAHGSDLLMLKSPGLGTADAWKLGVKEGTKITAIEQLAVEQEFSGGVFTPFKAIGHWLLGKGKPASVRLDRIGISPAPNKIPDLMAIINTAGIGVTSVNMRVPYSTAQDSNIARIYLGNITLQITGQVIRNTSGSLSFTGTAKGFSDRYDANASNHRSVFDEKATTALHQVGRVARAQDYEIRITGELPINFSRNANANANANA
D1-35_04193972hypothetical proteinATGCTTGCGCCAGGCAAACCTGACAACGAAGCCGTTCGCCTCAAACAATTGCAGTCGCTCAAGCTGCTCGATACCCCTCCCGAGGAGCGGTTTGACCGCCTGACCCGTCTTGCCCGGCGTCTGTTCAACGTGCCGATCGCCCTGGTGTCGCTGGTGGACGCCAATCGGCAATGGTTCAAGTCAAGCGCCGGCCTGGAAGCCAGTGAGACCCCGCGCGAGGTGTCGTTCTGCGGGCATGCGATCTTGCAGGACGAGATCCTGGAGATTTGCGACGCGGAACAGGACGTGCGGTTCCACGATAATCCGTTGGTCAAGGGCCAACCTGGCATCCGCTTCTATGCGGGGCATCCGCTGGGGCTGGATGATGGCAGCAAGATGGGCACCCTGTGCTTGTTGGACACCCGGCCGCGCACCCTCAACGACGACGAACGCGAGCTGCTGCGCGATCTGGCGAGCATGGCCGAGCAGGAGCTGGTTGCCGTGCAGATGGCCAGCATGGATGAATTGACGCTGCTGTCCAATCGGCGCGGCTTCATGACGCTGGCCCAGCACGCGCTGAGTGTCTGCAGCCGTCTTTCGCGGCCGGCGACACTGCTGTTTTTCGATCTCAACGACTTCAAGCCGATCAACGATCGCTTCGGGCACGCGGAAGGCGACGGCGCGCTGAAGACGTTCGCCGACGTATTGCGCATTGCCTTTCGTGAAAGCGACGTGATCGGTCGCATGGGCGGAGACGAGTTCGTCGCCCTGCTCACCGGCGCCTCCCATGTCGAGACGACGGCGATCATGGCACGGCTCAGGGAAATGCTCGACGAGCGCAACATAACGTTGCAGCGCGGCTATGACATCGATTTCAGCGTGGGCCAGATCGAATACGACCCCGAGCGACATGAGTCGATCGACAGCCTGCTGGCAGAGGCGGATGCGGCGATGTATGCGCAGAAGCAGGGACGGCGCAATAGCCCAAACTGAMLAPGKPDNEAVRLKQLQSLKLLDTPPEERFDRLTRLARRLFNVPIALVSLVDANRQWFKSSAGLEASETPREVSFCGHAILQDEILEICDAEQDVRFHDNPLVKGQPGIRFYAGHPLGLDDGSKMGTLCLLDTRPRTLNDDERELLRDLASMAEQELVAVQMASMDELTLLSNRRGFMTLAQHALSVCSRLSRPATLLFFDLNDFKPINDRFGHAEGDGALKTFADVLRIAFRESDVIGRMGGDEFVALLTGASHVETTAIMARLREMLDERNITLQRGYDIDFSVGQIEYDPERHESIDSLLAEADAAMYAQKQGRRNSPNPGPT0026010_930DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0026010-mucR-K21023NANA
D1-35_04194825rhaS_12HTH-type transcriptional activator RhaSATGAAGCCCGCCAACCACGACGCCGCCCCACGCTTCTGGCGCGACGCGGCGCTGCCTTTCATCGAGGCCCGGGCCATCGCCGATGGCCGCAAGGTCTGTTATTCGCGGCATTCCCATGATCACTTTTCCATCGGCGCGATCACCGCCGGACGCAGCACCTACCTGCACGAACAATCGCGGTTCCAGGTCCAGAGCGGCACGGTAGTGCTGATGAATCCCGGCGACGTCCATGCTTGCAATCCGATCGACGATCAGCCCTGGTCTTATGTGATGCTGTATGTCGATACCCAATGGCTGCGGGATCTACAACGCCGTATCGGCTTTGACCCCTCGCTGGACTTCCAGGCATTCGGCACAACCCATAGCCGTGATGTCGCGCTTTTCTCCGGCCTGTGCGGGCTCTACGAAACGCTGGTGGCTGAACATATCGATACCAGTGGCAAGCAAGTCGCCGCCGAAGTGTTTTTCACCGATCTCCAGCATCGACTCAACCCGGCCGGACGCCCGGAGCGTGGCAGCCACCCGGCGCTGATGCGGGCGGCGCAGTTCATTCACGACCATTGCACCGAAGCCCTCAAGCTTGAGGATATCTGTGCCTTCGCGCAGCTTTCGCCATCCTATTTGAGCCGGGCTTTCAAGCGCCACTACGGCATGACACCGCACGCCTTCCTGATCAACCGGCGCATCCAGTTCGCCCGCCGTCAACTGCGCGAGGGCAAGCTGATTGCCGATGTGGCGCTGGACAGCGGGTTTGCCGATCAGGCGCACTTCCAACGGGCGTTCAAGCAACACCTGGCGGCTACCCCCGGGCAGTATCGCGGCTGAMKPANHDAAPRFWRDAALPFIEARAIADGRKVCYSRHSHDHFSIGAITAGRSTYLHEQSRFQVQSGTVVLMNPGDVHACNPIDDQPWSYVMLYVDTQWLRDLQRRIGFDPSLDFQAFGTTHSRDVALFSGLCGLYETLVAEHIDTSGKQVAAEVFFTDLQHRLNPAGRPERGSHPALMRAAQFIHDHCTEALKLEDICAFAQLSPSYLSRAFKRHYGMTPHAFLINRRIQFARRQLREGKLIADVALDSGFADQAHFQRAFKQHLAATPGQYRGNANANANANA
D1-35_04195588eamB_2COG1280Cysteine/O-acetylserine efflux proteinATGAGCTTGATATTTTCCATGGCCACCTTTGCCCTGGTGGCTTCCATTACTCCGGGCCCGGTCAATATCGTCGCCCTCAGCTCTGGTGCCCGATATGGATTTCGCGCAACCTTGCGCCATGTCGCCGGCGCCACCCTCGGGTTCGTCCTGCTGCTGGTCTTGATGGGATTGGGGTTGCATGAAGTATTGCAACGCTGGCCTGGGCTCACGCGTGTGGTGCAACTGGCTGGCGTGGCGTTCCTCTTGTACATGGCCTGGAAACTGGCGGTGGACAACGGCGAGCTGGGTGACCGGGACGAGGGGCGCGCGCCTTCGATGTTCCATGGCGCGTTGATGCAGTGGCTCAACCCCAAGGCGTGGCTGGCTTGCGTGGCGGGGATGGGCGCCTTCGTGGCCGACGGCGAGGCGCGGCTGGTGTGGCAGTTTGCGGCGATCTACCTGGTCATCTGCTATGTCTCGGTGGGTTGCTGGGCCTATGCGGGCAGCTTTCTGCGCACGTGGCTGGGTAACCCGGCGACCATGCGCCTGTTCAATCGATTGATGGCGGCGTTGTTGGTGGCGAGCGCGGTGTATCTGTTGTTGCCTTGAMSLIFSMATFALVASITPGPVNIVALSSGARYGFRATLRHVAGATLGFVLLLVLMGLGLHEVLQRWPGLTRVVQLAGVAFLLYMAWKLAVDNGELGDRDEGRAPSMFHGALMQWLNPKAWLACVAGMGAFVADGEARLVWQFAAIYLVICYVSVGCWAYAGSFLRTWLGNPATMRLFNRLMAALLVASAVYLLLPNANANANANA
D1-35_041961455trkI_2COG0168Trk system potassium uptake protein TrkIATGTCTATAGCGGTTCTGCGTCTCATCGGTTTTATCCTCGGGATTTTCCTGATCACCCTTGCGATCAGCATGGCGATTCCGCTGTTTACGCTGATGTTCTACGAGCGCAACGATGACTTGTCGGCATTTCTATGGTCGAGCCTGATCACCTTCGTGTGCGGTGTGGCACTGGTGGCCCGTGGAAGGCCGGACCACGTCCAGATGCGCCCCAGGGAAATGTACCTGCTCACCACCGCCAGTTGGGTAATTGTCTGCGCATTCGCCGCCCTGCCGATGGTGTTCATCCAGCACATCAGCTACACCGATGCATTTTTCGAGACCATGTCAGGCATCACCACCACCGGCTCGACCATCCTGACCGGGTTGGATAGCGCATCGCCCGGCCTGTTGATCTGGCGGTCGATGCTGCACTGGCTCGGCGGAATCGGCTTTATCGGCATGGCCGTGGCGGTCCTGCCGCTGCTGCGGGTCGGCGGCATGCGGCTGTTCCAGACCGAATCTTCGGACTGGTCGGAGAAAGTCACGCCGCGCTCTCACGTCGCGGCCAATTACATCCTGTGGATCTACATCGGCTTGACCGCTCTCTCGACGTTGGGGCTGTGGCTTGCGGGGATGACGCCTTTCGAAGCGATCAACCATGCGATGTCGCTGATTTCCACCGGAGGCTTTTCCACCTCCGATGCGTCCCTGGCGCACTGGCCGCAACCGGCGGTTCATTGGGTGTCAGTGGTCGTCATGATGGCCGGATCGCTGCCCTTCACGCTGTATGTCGCGACATTGCGGGGCCATCGGCGCGCCCTGCTCAAGGACCAGCAAGTCAGGGGCTTCATCGGTTTCCTGGTCGTTACATGGCTGCTGGTGGGTACCTGGCTGAGCCTTAACAGCGATCACGCGTGGTGGGACGCGGTCCGTATCGTGGCGGTCAACGTTACCTCTGTCGTCACGACCACTGGCGTGGCGCTGGGTGACTACACGCTGTGGGGCAGCTTTGCCCTGCTGCTGTTCTTCTACCTGACGTTCGTCGGCGGCTGTTCGGGATCCACGGCCGGGGGCCTGAAGATTTTTCGCTTTCAAGTCGCCAGGGTGCTGCTGATGGGCAGTTTGAAGCAGCTGATCCATCCCCGGGCGGTGATCCAGAAGAAATACAACAACCATCCCATCGACGAGGAAATCGTTCGCTCGCTGCTGACGTTCTCGTTCTTCTTCACCATCACGATCGGCGCCATCGCCCTGGGTCTGGCCCTGATCGGCCTGGACTGGACGACCGCCTTGACCGGTGCCGCCACTGCCGTCTGCAACGTGGGTCCGGGCTTGGGCAACATCATCGGCCCGGCCGGCAACTTCTCGACCTTGCCGGATGCGGCAAAATGGCTGCTGACCATCGGCATGCTGCTGGGACGGCTGGAAATCCTGACGGTGCTGGTGCTGTTCACGCCGGTGTTCTGGAAGTACTGAMSIAVLRLIGFILGIFLITLAISMAIPLFTLMFYERNDDLSAFLWSSLITFVCGVALVARGRPDHVQMRPREMYLLTTASWVIVCAFAALPMVFIQHISYTDAFFETMSGITTTGSTILTGLDSASPGLLIWRSMLHWLGGIGFIGMAVAVLPLLRVGGMRLFQTESSDWSEKVTPRSHVAANYILWIYIGLTALSTLGLWLAGMTPFEAINHAMSLISTGGFSTSDASLAHWPQPAVHWVSVVVMMAGSLPFTLYVATLRGHRRALLKDQQVRGFIGFLVVTWLLVGTWLSLNSDHAWWDAVRIVAVNVTSVVTTTGVALGDYTLWGSFALLLFFYLTFVGGCSGSTAGGLKIFRFQVARVLLMGSLKQLIHPRAVIQKKYNNHPIDEEIVRSLLTFSFFFTITIGAIALGLALIGLDWTTALTGAATAVCNVGPGLGNIIGPAGNFSTLPDAAKWLLTIGMLLGRLEILTVLVLFTPVFWKYPGPT0002735_1708DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-POTASSIUM_TRANSPORT,PGPT0002735-trkG|trkH|ktrB-K03498NANA
D1-35_04197492hypothetical proteinATGTCCAAACACAAGAAATCCCTCATCGCCGTAGCTGTCTGTGCCTTGGCGCTCGGCGCCTCGGCTTTGTTGCCTGCCGACCTGTCACCTATCGGTTCGAGCTATGCCGCAGGCGGTGGCAACGGCGGTGGCGGCGGTAATGGAGGCGGTGGCGGCAATGGCGGAGGGAATGGCGGCGGCCACGGTGGCGGCGTGGGCGGCGGACAAGGCAATGGCCACGGTGGCAAGTCCAGCGACTCCAGCGGCCACGGCAAAGGACTGGCCAGTGATCACGCCGGTACCCGGACTCGCGATCATGGCCTGAGCGGCAAGCACACCGGCACCACCCGCACCGGTCGCACCAGCAAGGCGTCGGCGACGTCCGCCATTGCCAAGGACCGTGATACTCGCGGCTTGACCAAGGCCTCGGCGATTTCCGCCGCTACGCCGGGCACCCATAACACCAAGGGCTTGAGCAACGCGACCCGTTCATCGATGAAGAACGACCGCTGAMSKHKKSLIAVAVCALALGASALLPADLSPIGSSYAAGGGNGGGGGNGGGGGNGGGNGGGHGGGVGGGQGNGHGGKSSDSSGHGKGLASDHAGTRTRDHGLSGKHTGTTRTGRTSKASATSAIAKDRDTRGLTKASAISAATPGTHNTKGLSNATRSSMKNDRNANANANANA
D1-35_041981032ada_2COG0350Bifunctional transcriptional activator/DNA repair enzyme AdaATGCTTGAACGAGACACCACCTACGAGGGGGTCTTCTTCACCGCGGTCAAGACCACCGGTATTTTCTGTCGCCCCAGCTGCACGGCACGCAAGCCAAAGCCGGAGAACGTCGAGTTCTTTGCCCACGCCGACGAGGCGATGTCGGCCGGTTATCGGGCCTGCCTGCGTTGCAAGCCGCTGGATGCCGCCGCCATTGCCCCGGACTGGATCCAGGCATCGCTCAAAGCCGTCGACGCCGAACCAGACCTGCGCTGGACCGACGCCCTGCTGCTGGAACAAGGCATCGAACCGCTGAAACTGCGCCGCTGGTTCAAACAGCATTTCGGCATGACCTTCCACGCCTACCTGCGCACCCGGCGCCTGGGCATCGCCCTGGGCGGAATCAAGGAAGGCGCCTCGATCGATAACGCCGCGTTCGACTCCGGCTATGAGTCCCTGAGCGGATTTCGTGATGCCTTCGTCAAATCCTTCCACATCACACCAGGCCGCGCCGGCCTCAGCGAACCCTTGCTGTTTACCCGCCTGACCACGCCATTGGGGCCGATGCTGGCCATGGCCGAACGTCGCGGCCTGGTATTGCTGGAGTTTCTTGATCGCCCGGCCTTGACCAGGGAGCTGGAGGAACTGCAGCAACGCTACGGCTACACGGTTGCGCCGGGCCACAATGCGCATCTGCAACAGATCGAAAGCGAGCTGGCCGACTATTTCGCCGGCAAGCTCACGGTTTTCAACGTCCCGTTGCACATGCCTGGCAGCGCCTTCGCGGCCAGGGTCTGGGCCGAGCTGCAGAAAATCCCCTACGGCGAAACCCGCAGCTACGGCGTCGTCGCCAACGCACTGGGCAGCCCTGGCGCCAGCCGCGCCGTGGGCCTGGCCAATGGACAGAACCGCCTGGCCATCGTCATTCCTTGTCACCGGGTGATTGGGGCGGATGGCTCTTTGACCGGCTATGGCGGCGGTCAGCCGCGCAAGGCGTTTCTATTACGGTTGGAGCGAGCCGCGGTGCAGGTTTCGTTGCCTTTGGCGTTTTGAMLERDTTYEGVFFTAVKTTGIFCRPSCTARKPKPENVEFFAHADEAMSAGYRACLRCKPLDAAAIAPDWIQASLKAVDAEPDLRWTDALLLEQGIEPLKLRRWFKQHFGMTFHAYLRTRRLGIALGGIKEGASIDNAAFDSGYESLSGFRDAFVKSFHITPGRAGLSEPLLFTRLTTPLGPMLAMAERRGLVLLEFLDRPALTRELEELQQRYGYTVAPGHNAHLQQIESELADYFAGKLTVFNVPLHMPGSAFAARVWAELQKIPYGETRSYGVVANALGSPGASRAVGLANGQNRLAIVIPCHRVIGADGSLTGYGGGQPRKAFLLRLERAAVQVSLPLAFNANANANANA
D1-35_04199615alkACOG0122DNA-3-methyladenine glycosylaseATGGCGGCGCCTTATCAGCAAGCGAGCACTTTCCTGGCAGGCCTGGACGAAGACTGGCGGCGCCATATCGAGTCGATCGGTCCTTGCCTTCTGCAACCCAAACCGGCCCGGGATCCGTATGAGGCGCTGATGCGGGCGATTGCCTATCAGCAACTGCACGCCAAGGCCGGGGATGCGATCATTGGCCGGCTGCTCGGGCTGTACCCATCGGGGACGTTTCCCGGGCCTGAGCAAATACTGGCAACTGATGCAGCGCAATTGCGCGGTTGTGGATTTTCAGCCAGCAAGATCGCCACTCTCCTGGGTATCGCCCAGGCCACGCTGGACGGCATCGTGCCGGATTACGCCACGGCGCAGGCCATGGACGATGAAGCACTGATCAAGCGCCTGGTCACCCTGCGCGGCGTCGGACGCTGGACCGTGGAGATGCTGTTGATCTATAGCCTGGAACGGCTGGATATCCTGCCTGCGGATGATTTTGGGGTTCGCGAGGGTTATCGGCGGCTCAAGGCGCTGGAAACCCAACCGAGCTCCAGACAGATGAGCGAAATCGGCCGGGCCTGGAGCCCTTATCGGACGGTGGCGGCGTGGTACCTGTGGCGGGTGCCCAAGTGAMAAPYQQASTFLAGLDEDWRRHIESIGPCLLQPKPARDPYEALMRAIAYQQLHAKAGDAIIGRLLGLYPSGTFPGPEQILATDAAQLRGCGFSASKIATLLGIAQATLDGIVPDYATAQAMDDEALIKRLVTLRGVGRWTVEMLLIYSLERLDILPADDFGVREGYRRLKALETQPSSRQMSEIGRAWSPYRTVAAWYLWRVPKNANANANANA
D1-35_04200489hypothetical proteinATGCACCTCGAAGGATCCTGCCACTGCGGCGCCGTGTCGTTCAGCCTGGACAGCAGTCACCCCTACCCTTACCAACGTTGCTACTGCTCGATCTGCCGCAAGACCCAGGGCGGCGGTGGTTTTGCGATCAACCTGGGGGGAGACGCCACGAGCCTGAAGGTGCAGGGTCGCAAGCACATCTCGATCTACCATGCGCGGCTCAAGGACGAGGACGACAAACGCGCCCATCGCAGCAGCGCCGAGCGGCATTTCTGCTCGCTGTGCGGCTCGGGATTATGGTTGTTCAGCCCTGAATGGCCGGAATTGATCCACCCTTTCGCCTCAGCCATCGACACGCCGCTGCCGGTGCCGACAGAACGCACCCATCTGATGCTGGGCTCCAAGGCGCCATGGGTCGAGGTCGAGGCGCGCTCGGGCGACCAGCAGTTCGACGTGTATCCCGAAGAATCGATTGCCCAGTGGCATGAACGCCTGGGTTTGACCCTTTGAMHLEGSCHCGAVSFSLDSSHPYPYQRCYCSICRKTQGGGGFAINLGGDATSLKVQGRKHISIYHARLKDEDDKRAHRSSAERHFCSLCGSGLWLFSPEWPELIHPFASAIDTPLPVPTERTHLMLGSKAPWVEVEARSGDQQFDVYPEESIAQWHERLGLTLNANANANANA
D1-35_04201606hypothetical proteinATGATCCTTCCCGAAATCCACGAATTCCTCGGCTGCCGCACCCCCGATGTCTGGGTCCAGGCGGCGCTGGCCGACCAGGAAACGTTGCTGATCGACCACAAGAACTGTGAATTCAAGGCTGCCAGCACTGCCTTGAGCCTGATCGCCAAATATCACTCCCATGTCGACCTGATCAATATGATGTCGCGCCTGGCCCGGGAAGAACTGGTGCATCACGAGCAGGTCATGCGCCTGATGAAAAAACGCAAGGTCGCCCTGCGCCAGCTCTCCGCCGGGCGCTACGCTTCGGGCCTGCGTAAAGTGGTGCGCAGCCACGAACCGGTGAAACTGGTGGACACCCTGGTGGTCGGCGCTTTTATCGAAGCCCGCAGTTGTGAGCGCTTCGAGGCCCTGGTGCCGCATCTGGACGAGGAGCTGGGCAAGTTCTATTTCGGCCTGCTGAAAAGCGAGGCCCGACATTTTCAGGGTTACCTGAAACTGGCCTACCAGTATGGCGACGCCAAGGATATTGCCCAGGTCATTGAGAGGGTCCGCGAGGCGGAGCGCGAGTTGATCGAATCAGTGGACGTGGAGTTTCGGTTTCATAGTGGTGTGCCTGCGCTTTAGMILPEIHEFLGCRTPDVWVQAALADQETLLIDHKNCEFKAASTALSLIAKYHSHVDLINMMSRLAREELVHHEQVMRLMKKRKVALRQLSAGRYASGLRKVVRSHEPVKLVDTLVVGAFIEARSCERFEALVPHLDEELGKFYFGLLKSEARHFQGYLKLAYQYGDAKDIAQVIERVREAERELIESVDVEFRFHSGVPALPGPT0007220_725DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007220-miaE-K06169NANA
D1-35_04202864uspECOG0589Universal stress protein EATGCAAGCCATTCGCAGCATCCTCGTGGTCATCGAACCCGAACATTCGGAAAGCCTGGCACTCAAGCGCGCCAAACTGATCGCCGGCGTGACCCAGGCCCATTTGCACTTGCTGGTCTGCGACAAACACCATGACCATGCCGGGATGCTCAGCGTCCTGAAGGCCGCACTGGCGGCCGACGGCTACAGCGTGACCACCGAGCAGGCGTGGAACGAAAGTCTCTACGAAACCATCATCGACGTGCAGCAGGCCGAAGGCTGTGGCCTGGTCATCAAGCAGCACTTCCCCGACAGCCCCTTGAAAAAAGCCCTGCTGACCCCGGCCGACTGGAAACTGCTGCGCCATTGCCCGACCCCGGTGCTGCTGGTCAAGACATCGGGATCCTGGAAAGACCGGGTGATCCTGGCCGCGGTCGACGTGGGCAATGCCGATGGCGAGCACCGCCACCTGCACTCGACGATTATCGACCATGGCTACGACATCGCCCTCCTCGCCAAGGCGCACCTGCATGTCATCAGCGCCCACCCGTCGCCGATGCTCTCGTCCGCCGACCCGACCTACCAGCTCAAGGAAACCATCGAGGCGCGCTACCGTGAGCAATGCCGGGCGTTCCAGGCCGAATTCGACATTGATGACGAGCACCTGCATATCCAGGAAGGCCCGGCGGATGTCTTGATTCCATACATGGCCCACAAGCTCCAGGCCGCTGTCACCGTGATCGGCACCGTGGCCCGCTCGGGTTTGTCAGGGGTGCTGATCGGCAACACCGCCGAAGCCGTGCTCGATACGCTGGAAAGCGATGTGCTGGTGCTCAAGCCGCAGGAGGTGGAGGATCATCTGGTGGAGATGGCGGCAAAAGAATAAMQAIRSILVVIEPEHSESLALKRAKLIAGVTQAHLHLLVCDKHHDHAGMLSVLKAALAADGYSVTTEQAWNESLYETIIDVQQAEGCGLVIKQHFPDSPLKKALLTPADWKLLRHCPTPVLLVKTSGSWKDRVILAAVDVGNADGEHRHLHSTIIDHGYDIALLAKAHLHVISAHPSPMLSSADPTYQLKETIEARYREQCRAFQAEFDIDDEHLHIQEGPADVLIPYMAHKLQAAVTVIGTVARSGLSGVLIGNTAEAVLDTLESDVLVLKPQEVEDHLVEMAAKEPGPT0014995_873DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0014995-uspE-K14055NANA
D1-35_04203471hypothetical proteinATGCCCAACCAGCTCATCAAGACCCCCTGCGTCGGCCTCTGTTCCACTGTCTACGGTGACCTGGTGTGCCGTGGCTGCAAGCGGTTCCACCATGAAGTGATTCACTGGAACGGCTACAACGAAGAGGAAAAGCGCGCGGTGTGGTTGCGGCTCGAGCAGCTGCTGGTGCAGGTGATGGTGGCCAAGCTGGAGGTTTTCGACCCGCAGCTGCTGCGCCAGCAACTGGAATCGCGCAAGATCCGCTTCGTGCCGCATCAGTCGGAATATTGCTGGGCCTATCAGTTGATCGCCCGGGGCGCACGGGTGATCAATAACCTGGAAGCGTACGGCATGGTGCTGCTGCCGGAATTTCGCGACTGGGAACTGCCCGACCTGCGCGATGCCATTGATCGGGAATTTTTCCTCCTGTCCGAAGCGCATTACCAGCGCTACATCGCGCCGGGGTTCTTGAAGGATGCGATTGGCGGCTGAMPNQLIKTPCVGLCSTVYGDLVCRGCKRFHHEVIHWNGYNEEEKRAVWLRLEQLLVQVMVAKLEVFDPQLLRQQLESRKIRFVPHQSEYCWAYQLIARGARVINNLEAYGMVLLPEFRDWELPDLRDAIDREFFLLSEAHYQRYIAPGFLKDAIGGPGPT0013210_132DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013210-ydhL-K06938NANA
D1-35_042042670acnBCOG1049Aconitate hydratase BATGAGTGCCGTGAGTTTCTGGATGAGCGTCCCGGACACCCATTTGGGACCACTGATGAGGGTAATAACTGTGCTTGAAGCCTACCGCAAACATATCGAAGAGCGCGCAGCACTGGGTATCGTTCCCCAGCCGCTTAACGCCGAACAAACCGCAGGCCTGATCGAGCTGCTGAAGAATCCCCCGGCTGGCGAAGAAGCTTTCCTCGTTGACCTGATCACCAATCGCGTTCCGCCTGGAGTCGACGAAGCCGCCTACGTCAAGGCCGGTTTCCTGTCCGCCCTGGCCAAGGGCGAAGCCCAATCCCCTCTGATCGACAAGAAGCGCGCTGTAGAACTGCTCGGCACCATGCAGGGCGGCTACAACATCGTGACCCTGGTAGACCTGCTGGACGACGCCGAACTGGCCCCGGTCGCCGCCGAAGAACTCAAGCACACGCTGCTGATGTTCGATGCCTTCCACGATGTGGCGGAAAAAGCCAAGAACGGCAACGTCCACGCCAAGGCCGTACTGCAATCCTGGGCCGACGGCGAGTGGTTCAAGAACCGCCCGGTGCTGGCCGACAAGATCAGCCTGCGGGTCTTCAAGGTCACCGGCGAAACCAACACCGACGACCTGTCCCCTGCCCCTGACGCCTGGTCCCGCCCGGACATCCCGCTGCACGCCCTGGCCATGCTGAAAATGGCTCGCGACGGCATCGTGCCCGATGAGCAAGGCAAGACCGGCCCGATGAAGCAGATCGAAGAGATGCGTGGCCAAGGTTTCCCGATCGCCTACGTCGGTGACGTGGTCGGTACCGGCTCCTCGCGTAAATCCGCCACCAACTCGGTGCTGTGGTTCTTCGGCGACGACGTCCCGTATGTGCCGAACAAGCGCGCCGGTGGTTTCTGCTTCGGCAGCAAGATCGCGCCGATTTTCTACAACACCATGGAAGACGCCGGCGCCCTGCCGATCGAATTCGATGTGTCGAACATGCACATGGGCGACGTGATCGACCTGTACCCGCATGCCGGCAAAGTCTGCAAGCACGGCACCGATGAAGTCCTGACCACCTTCGAAATGAAGACCCCGGTCCTGCTTGACGAAGTCCGTGCCGGCGGTCGTATTCCGCTGATCATCGGCCGTGGCCTGACCGAAAAAGCCCGCGCCGAGCTGGGCCTGCCGCCTTCGGACCTGTTCAAGAAGCCTGAAGCGCCGGCCGAAAGCACCAAGGGCTTCACCCTGGCGCAGAAAATGGTCGGCAAGGCTTGCGGCGTGACCGGCGTTCGCCCGGGCACCTACTGCGAGCCGAAGATGACCACCGTCGGCTCCCAGGACACCACCGGTCCGATGACCCGTGACGAACTGAAAGACCTGGCGTGCCTGGGCTTCTCGACCGACCTGGTGATGCAGTCCTTCTGCCACACCGCGGCGTATCCGAAGCCGATCGACGTGACCACCCACCACACCCTGCCAGACTTCATCATGACCCGTGGCGGCGTGTCCCTGCGTCCGGGCGACGGCATCATCCACAGCTGGCTGAACCGCATGCTGCTGCCGGACACCGTCGGCACCGGTGGTGACTCCCACACCCGTTTCCCGATCGGCATCTCGTTCCCGGCCGGTTCCGGCCTGGTCGCCTTCGCCGCCGCCACCGGCGTGATGCCGCTGGACATGCCCGAGTCGATCCTGGTGCGTTTCAAGGGCAAGCTGCAACCGGGCGTCACCCTGCGTGACCTGGTCCATGCGATCCCTTACTACGCGATCCAGAAAGGCTTGTTGACTGTCGAGAAGAAAGGCAAGAAAAACGCCTTCTCCGGCCGCATCCTGGAAATCGAAGGCCTGGAAACCCTGACCGTCGAGCAGGCTTTCGAACTGTCCGATGCCTCGGCAGAACGTTCGGCCGCAGGTTGCACCATCAAGCTGTCCAAGGAATCGATTGCCGAGTACCTGAAGTCGAACATCACCCTGCTGCGCTGGATGATCGGCGAAGGCTACGGCGATGCCCGCACCCTGGAGCGTCGTGCCCAGGCGATGGAAGCCTGGCTGGCCAACCCGGAACTGCTGGAAGCCGACAAGGACGCCGAGTACGCGGAAATCATCGAAATCGACCTGGCCGACGTCAAGGAGCCTGTGCTCTGCGCGCCGAACGACCCGGACGACGCCCGCCTGCTTTCCAGCGTTGCTGGCGAGAAGATCGACGAAGTGTTCATCGGTTCCTGCATGACCAACATCGGTCACTTCCGCGCTGCCGGCAAGTTGCTCGATCAGGTCAAGGGTCAGCTGCCAACCCGTCTGTGGCTGTCGCCGCCGACCAAGATGGACGCTCACCAGCTCACCGAAGAAGGCTACTACGGCATCTACGGCAAGGCCGGTGCACGGATGGAAATGCCGGGCTGCTCGCTGTGCATGGGTAACCAGGCACGCGTGGAACCGAACTCCACCGTGGTCTCCACTTCGACCCGTAACTTCCCGAACCGTCTGGGTGACGGCGCGAATGTCTACCTGGCTTCGGCTGAGCTGGCATCCGTGGCGTCGATCCTGGGTCGCCTGCCGACCGTCGAGGAGTACATGGAATACGCCGGCAAGATCGACAGCATGGCAGCGGACGTATACCGCTACCTGAGCTTCGACCAGATCGCCGAGTTCCGTGAAGCGGCTGCCAACGCCAACATCCCGGTCGTTCAAGCGTAAMSAVSFWMSVPDTHLGPLMRVITVLEAYRKHIEERAALGIVPQPLNAEQTAGLIELLKNPPAGEEAFLVDLITNRVPPGVDEAAYVKAGFLSALAKGEAQSPLIDKKRAVELLGTMQGGYNIVTLVDLLDDAELAPVAAEELKHTLLMFDAFHDVAEKAKNGNVHAKAVLQSWADGEWFKNRPVLADKISLRVFKVTGETNTDDLSPAPDAWSRPDIPLHALAMLKMARDGIVPDEQGKTGPMKQIEEMRGQGFPIAYVGDVVGTGSSRKSATNSVLWFFGDDVPYVPNKRAGGFCFGSKIAPIFYNTMEDAGALPIEFDVSNMHMGDVIDLYPHAGKVCKHGTDEVLTTFEMKTPVLLDEVRAGGRIPLIIGRGLTEKARAELGLPPSDLFKKPEAPAESTKGFTLAQKMVGKACGVTGVRPGTYCEPKMTTVGSQDTTGPMTRDELKDLACLGFSTDLVMQSFCHTAAYPKPIDVTTHHTLPDFIMTRGGVSLRPGDGIIHSWLNRMLLPDTVGTGGDSHTRFPIGISFPAGSGLVAFAAATGVMPLDMPESILVRFKGKLQPGVTLRDLVHAIPYYAIQKGLLTVEKKGKKNAFSGRILEIEGLETLTVEQAFELSDASAERSAAGCTIKLSKESIAEYLKSNITLLRWMIGEGYGDARTLERRAQAMEAWLANPELLEADKDAEYAEIIEIDLADVKEPVLCAPNDPDDARLLSSVAGEKIDEVFIGSCMTNIGHFRAAGKLLDQVKGQLPTRLWLSPPTKMDAHQLTEEGYYGIYGKAGARMEMPGCSLCMGNQARVEPNSTVVSTSTRNFPNRLGDGANVYLASAELASVASILGRLPTVEEYMEYAGKIDSMAADVYRYLSFDQIAEFREAAANANIPVVQAPGPT0001470_231DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001470-acnB-K01682NANA
D1-35_042051281sdaCCOG0814Serine transporterATGAATGATCAGGCCAACAGCGTTGAAGAGCGCTTTGAAACGACAGCCCCCGCCACCCTCGGCGAATGGAGCCGCCATGACACGACCTGGATGCTGGGCCTGTTTGGCACCGCCATCGGTGCCGGCACATTGTTCCTGCCGATCAATGCCGGCCTCGGTGGTTTCTGGCCGCTGCTGATCCTGGCTGTGCTGGCGTTTCCCATGACCTTCTACGCCCATCGTGGACTGACCCGCTTCGTGTTGTCCGGCCGCGACGGCGCGGACATCACCGAGGTCGTGGAAGAGCATTTCGGTATCAAGGCCGGCGCGTTGATCACGCTGTTGTACTTCTTCGCCATTTTCCCGATCCTGCTGATCTACAGCGTGGCGTTGACCAATACGGTGGGCAGTTTCCTGGAGCATCAGGTGCAGATCCAGCCGCCGCCCCGGGCCGTGTTGTCACTGGTGCTGATCCTCGGTCTGCTGGCAGTGGTGCGCTGCGGCGAACAAGCGATCGTCAAGGCCATGAGCCTGATGGTCTACCCGTTCATCGTGGCGCTGCTGTTCCTGGCGGTGTTCCTGATCCCGCACTGGAACGGCGGCATCCTCACCACGGCGTCCACGGTGCCTGAACCTTCGGCCCTGCTGCACACCTTGTGGCTGGCGATTCCGGTGATGGTCTTCTCGTTCAACCATTCGCCGATCATCTCGGCATTCGCGGTGGACCAGAAGCGTCGCTACGGTGCCAACGCCGAGGAACGCAGTGCACAGATCCTGTCGCGTGCCCATGTGCTGATGGTGGTGATGGTGCTGTTCTTCGTGTTCAGTTGCGTGCTGACCTTGTCCCCGGCGCAACTGGCCGAGGCCAAGGCGCAGAACCTGTCGATCCTGTCGTACCTGGCGAACCATTTCAGCAACCCGACCATCGCCTTCGCGGCACCGTTGATTGCCTTCGTGGCGATCTCCAAGTCGTTCCTGGGGCACTACATCGGCGCCAGCGAGGGCCTCAAGGGCCTGGTCGTCAAGAGCGGCCGCCGCCCGGCACCCAATACCCTCGATCGGCTGACCGCAGCGTTCATGTTGGTGGTGTGCTGGATTGTCGCCACCCTCAATCCGAGCATCCTTGGCATGATCGAAACCCTGGGCGGCCCGGTCATCGCGGCCATCCCGTTCCTGATGCCGATGTACGCCATCCGCAAAGTCCCGGCCATGGCCCGCTATCGTGGCCAGGCGTCGAATGTCTTTGTGGTGTCGGTGGGCTTGGTGGCGATCACTGCGTTGGTCTATTCCCTCATGGCCTGAMNDQANSVEERFETTAPATLGEWSRHDTTWMLGLFGTAIGAGTLFLPINAGLGGFWPLLILAVLAFPMTFYAHRGLTRFVLSGRDGADITEVVEEHFGIKAGALITLLYFFAIFPILLIYSVALTNTVGSFLEHQVQIQPPPRAVLSLVLILGLLAVVRCGEQAIVKAMSLMVYPFIVALLFLAVFLIPHWNGGILTTASTVPEPSALLHTLWLAIPVMVFSFNHSPIISAFAVDQKRRYGANAEERSAQILSRAHVLMVVMVLFFVFSCVLTLSPAQLAEAKAQNLSILSYLANHFSNPTIAFAAPLIAFVAISKSFLGHYIGASEGLKGLVVKSGRRPAPNTLDRLTAAFMLVVCWIVATLNPSILGMIETLGGPVIAAIPFLMPMYAIRKVPAMARYRGQASNVFVVSVGLVAITALVYSLMAPGPT0011650_602DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-BACTERIOCINS|COLICINS,PGPT0011650-sadC|dcrA-K03837NANA
D1-35_04206954COG10522-ketogluconate reductaseATGACCGCAACCGTTCTGGTACTGGTTGAAACCGTCAACGAATACTTGCCGATTCTCGAACGCCAGGGCTATCACCTGGAACTCGCGCCCACGCCCGCCGAACGCAAGGCAGCGGTTTTCGAACACGGTGAACGGTTCAGCGCGGTGTTGACCCGCGGCCCCTTGGGCTTGACTGCCGAGGAAATGGCCGCCCTGCCCAACCTGAAGATCATCTGCGTGATCGGCGCCGGTTATGAACAAGTGGACCTGCAAGCCGCCAGCGACCGAGGCATCGTTGTCACCAACGGTGCCGGGGTCAACGCTTCATCGGTGGCCGACCATGCCATGGCGCTGTTATTGGCCTTGGTGCGCGATGTGCCTCGATCCGACGCAGCCCTGCGCCGGGGCGAATGGCCGCGAAGCACGCGCCCTTCCCTCGCTGGCAAGCACTTGGGCGTGCTGGGACTCGGCGCCGTGGGCATGGCGATTGCCAAGCGGGCCGCCCTCGGTTTCGACATGAACATCAGCTACCACAATCGCCGCGTACGCAGCGACGTGCCCTACGCCTTCTGCGCAACGCCCACCGAACTGGCCCGGGTCTCGGATTTTCTGATTATCGCCACGCCCGGAGGGCTGGACACCCGCCAGTTGATAAACAAGCAAGCCCTCGACGCCCTGGGTCCCAACGGATTCCTGGTCAACATTGCCCGGGGCAGCGTGGTCGCCACGACCGAGCTCATCTACGCCCTCGAACATCGGCGAATTGCCGGGGCTGCGCTGGATGTATTCGACCATGAACCCGAAGTACCCGACGCCCTGAAGCATTTGTCCAACGTCGTGCTGACACCTCACGTGGCTGGCCTGTCGCCGGAAGCGACACGCGCCATGGTGGAGTTGGTCGGCGATAACCTGAACGCGTTTTTTTCCGGCAAACCGGTGCTGACGCCAGTGGAGCTACCCGACGCGCAGCATTAGMTATVLVLVETVNEYLPILERQGYHLELAPTPAERKAAVFEHGERFSAVLTRGPLGLTAEEMAALPNLKIICVIGAGYEQVDLQAASDRGIVVTNGAGVNASSVADHAMALLLALVRDVPRSDAALRRGEWPRSTRPSLAGKHLGVLGLGAVGMAIAKRAALGFDMNISYHNRRVRSDVPYAFCATPTELARVSDFLIIATPGGLDTRQLINKQALDALGPNGFLVNIARGSVVATTELIYALEHRRIAGAALDVFDHEPEVPDALKHLSNVVLTPHVAGLSPEATRAMVELVGDNLNAFFSGKPVLTPVELPDAQHPGPT0009155_7457DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009155-serA-K00058NANA
D1-35_042071083hypothetical proteinGTGAGTTTGCCGATAACACCGTTGCCCGAATTGGTCAGCCAACTGCTCGAACCGATCAGCGCCGAGTCGCCCTGTGGTCAGGATCTGCGTTACGAAACGGAGTACGACCAGCTACGCGAATTGCGTCGGGAAGACGACACCAGCCTGCCCACCGGCGTGTGGCAGTCCTCCATCAAGCGCGCGCTTTGGCCGGACCTGGAGCGGCTCGCGACCACGTTGCTGCTTGAGCGCAGCAAGGACCTGATGGTCAGCGCCTGGCTGGGGGAGGCCTGGCTGCACCTGGCCGGGCTGGAAGGTTTGCCCGGCAGCCTGGCACTGGTGGCGGGGCTGTGCGAGCGCTATCCGGAACATCTGCACCCCCTTGCCGAGGATGGCGATCAATCGTGGCGGGTGATTCCGCTGGAATGGCTGGCCCGTCGCTACAGCGAAGTGCTGCTGACGCGGGTGCCGTTGCTTGATGGCCGTGACCCAGCCTTCGCGGGTTTCAGCCTGGACGATTGGCAGCGCCTGCAGCGCCAGCAAGTGCTGGGCAACGACAGCAAGAACGCCAAGGCCTCGGCGGAGGCGGCGCGCAACGAACAAAAGAAACTCAGCGAACTGATTCGCAACACCCCGTTGTCCTTCTGGTTGCACCGCCAGGGCAGCCTGATGTTAAGCCTGCAACACTTGCAACGGCTCGAAGCCTGGAGCGACGCCTACCTGGGTCATCTGGCGCCGGGCTACAAATCCTTGCAGGACGTGATGCAAGCCATGTTGGCATTGGTAGAGGAGTTCATCGCGATGCATCCACAGCAACCCGCCGTCGTGCCCGCGCAGACGCCCAAGGTGACAACGACGCCGACCTCCCAGCCGACGGCGGCACCTGCCCAGGACTTCCAGGAACCGGCCAATCGTGAAGAGGCGTATCGACAGCTGCTGGTCATCGCTGGTTACCTGGCGCGCACCGAGCCCCACAGTCCCGTGCCTTATCTGATCCGGCGCGGTGTGGAGTGGGGCAACAAGCCGCTGAGCGAGCTGCTGGGAGAACTGATCAGTGCCGATGCCGAGTCCCGACGGCTGTGGACGTTACTCGGGGTCCTCTAAMSLPITPLPELVSQLLEPISAESPCGQDLRYETEYDQLRELRREDDTSLPTGVWQSSIKRALWPDLERLATTLLLERSKDLMVSAWLGEAWLHLAGLEGLPGSLALVAGLCERYPEHLHPLAEDGDQSWRVIPLEWLARRYSEVLLTRVPLLDGRDPAFAGFSLDDWQRLQRQQVLGNDSKNAKASAEAARNEQKKLSELIRNTPLSFWLHRQGSLMLSLQHLQRLEAWSDAYLGHLAPGYKSLQDVMQAMLALVEEFIAMHPQQPAVVPAQTPKVTTTPTSQPTAAPAQDFQEPANREEAYRQLLVIAGYLARTEPHSPVPYLIRRGVEWGNKPLSELLGELISADAESRRLWTLLGVLPGPT0025910_474DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025910-impA-K11902NANA
D1-35_042083825hypothetical proteinATGAACACCCTGAGCATCGTCGCCTTGGTGCTGCTCGCCATTGTCGTGGTGCTGGTGATCGCGGCAGCGGTCTGGTGGTTGCGAACCCAGGGCGGCGCGGCGGTTCGCAATTTCTACGGGGCGGTGCGCCAGATGGAGCAGGAGCAGGGCACCCGCGACCGCTATCAGACGCCTTGGCTGATGATGCTCGGCAACGAAACCGACGGCGCCCAGCTGTGCAGCCAATGGCGTTTGCAACCCACGGACAAGGCGGGCTGGTTCGGGCGCTGGTTTTGCGATGCCGAAGGCGCCGTACTGGTAGTGCCCCAGGCGTTGTTCCTGCCCGATGAAGGCATGAACCGGCAACGGGGCAACTGGTGGCGACTGCTGGGCCTGCTGTTGCGGCTGCGCAGCAAGCGGCCATTGGACGGGGTGATCTGGACAGTACCGTTCAGCAAGTTCGATGACATCGAGCACACCACTGAGCTGAGCCTCAAGGTCCGACGGGTTTTTATCGATTTGCTGCAACGGTTTGGCCTGAGCCTGCCGGTTTACGTGGTGATAACCGGGATGGAAGAGTTGCCCGGGTTCCAGGAATTGGTCAGCGCGCTGCCTGCCAAGGCGCGGGACTCGATGCTGGGTTGGTCGTCGCCTTATTTGCCGGATGCGGCGTGGCAGTCGCACTGGAGTGACCAGGCGCTGGATGAGATCAACGCCGCGCTGGCGCAATCGATCATCGAGATCGGTGCGTTGTCGGGACAGCTGAGCACCGATCTTTATGGCCTGCCGGAACGCTTCGAAGGCTTGCGACGAACCTTGCAGATCTTGTTGGAGCCGGTATTCCAGGGCAACGCCCAAGGCGAAGCGCCGCGATTTCGCGGCGTGTACTTCACCGCCAGTCAGGCACCGGCCGTCAGCGGCGACAGTTTGGCCGCCCATCACAATGGCCAGCGGCAAACGGTGTTTGCCCGGCAATTGTGGTCGCGACGTCTTATGGCCGAACGCGGCCTGGCCCAGCCGGTGCCTCGCTTGCTGCGCGTGCGCCAACGCGGTCATCGGCTGGCCGGCGCGGTGGCGTTGGTGGTGGGCCTGGTCTGGTTGGGAGGCATGGTCTGGGTCTGGCGCGATTCGGTGGAAAACGCCGAGGGACTGTCGCGGTTGGTCCTCAGTGCCCACAAGAACCACATTGTCATTGACCCGGACCAGCCGCAACTGGAGCCGACCCGGCATAACGTGCAGAACTACTGGAACGTCTTGGAGAAAGCCCCGCGCTGGCGTTATGTCTCGGTCGTCTTCCCCACCTCCTGGTTTTCCTCCGTGGACACGCAGCTGGAGGATGGCTTGCGCCTGACCGCCCGGCACCATTGGATACTACCGCTGCGAGACTTGCTCGATTCCGACCTGGAACAGCTCAAGTCCATCCGCAACACCGAGCGCCGGGGCAACGTCGAGAACGACGATCCGGCGCAGTGGCAAAGCTACCTGAAGGCCAAGGCGCTGGTGGATCTGGCGGCACGCCTCGAGCAGCACAACCAGATGTTCAGCCAAGTGGTGAACGACCCCAAGGCGCCACTGGACGAACTGGTGCAGTTGAGCAACGCCGCGTTGTCCTTGGGCCTGAACACCGGGACTTTGAGTCGCCCACAGTTTTACAACCGGGTCCTGTTCGATGCGCGAAACAGTGATTTGCAAGGGCTGGACCTGAACGCCGCGCGCCCTGTGATTACCGATAATTTCACCGGCCTGATGCAACGCTGGCTGGACCATTACTTCCTGGCGGACAACTTCGTTCGCCAGGCCGGTTATCTCAAGTTGCACCTGCAAGGACTGGAGGCAGGCAGCGGCAACTCCTTGAGTGAGCTGGAAGACCTGATGGCGCTGATCGATGACCTGCAGACGCTGGTCAGCCTGACTAACTCCGCCTGGGGGCGGGGCAAGGGCCAGGACCTCGTGCCTGGCTACACCCAGATGCTGGACAAGGTCAGCCACAGCACTTTGCTTGGCCCGGATATCACACAGGACTTGGAGAGCCAGGCGGCGAAGTTGCAGCAAAGTTTTCGCGACCAGTGGATCGTCCAGAGTGGTTCCCGGGACAATCTGCTGGTGCAGCAGGGCAGTGGCTTGCTGGTGTTGCAGGACCATGTCACGGCGTTGGACGGCGCGGTGCAAGCGCTGTTCAAACGGGATTTCGTGGCGCTGGCGATGCAGAAGGATCCGTCGCCCGGCAATCCGGATTCAATAGGCCAGGGCGGTGGCAGTGATGATTTCAGCGTCGCCCTGAATTATTTCGCCAGCTACAAGAGCTATGCCAGCGAAGAGCTGTCGCGGATCCCGCCGGATTACCGTGACGCGCTGATGCAGGCCGCCGAAAACGCCGCGGCACGGGCCATGTGGTTGAGCCTGGATGAAAGCGACGAGCCGTCGCCGGGCCTGGGCTTCAACGTACAGACCGCCCAAGCCGTGGCGCTGCAGAAAGCCTTCATGGTCGTGCACCGGGGCGACCTGGCGATACGTTTCCAGCGCCTGCTCAATCGCCGGGCATTGGCGCAGATCAACAATGGCCTGGCCGAAATCGATGCCCAGCCGTTATTCAGCCAGCGCGCCGATATCGAGCGTTGGGACGGTTCGAAGAACTTCGGCTTGCAGCTGTATGGCGCCAACGATCCACAGGAACTGAAGCTGAACCTGAACCAGCAATTCAGTGCCATGCTGCAGATCGCCGAACAGCGCATGCCTGCCCTGGAATGGCTGATCGTCCAGCAGGACGACCTGTCCGCCCTGGAGCATGACCAGGTGGCGCGGTTCATGGCCCTCAACGACGAACTGCTCAAGTACAAGAATCAGAACCCGGCCAGTTCGGCTGCCCAGTTGGAGCAATTGGTAAGTCGGGATTTCAATGCGATGGACACCGCGTCCTGCGCGCAGATCTTGCAGACCTCCAGCCTGTCCGGTGGGCGCGGCGACCTGGCTCGGCGCACCGTCGCATTGCAGCAGGGGGCGCTGCAGCGTTGCCTGTACCTGCAACAGAACCAGGCGGCAATGGCCTGGAATGACCTGGCCAATTATTTCAACCAGTACCTGGCGGGACGCTTCCCGTTTTCCCAGGACGTGCGGGCCAGTGATGCCGACCCGGCACGGGTCCGGCACCTGTTGGAATTGATCGAGACACGCGTGCCCCTGGCCCAGGCCGGGCTGACGCTGAGCCAGACGCCGGAGCGGTTGGCGGCCGAGGATTTCCTCAACCGCTTGAAGCAGGCCGGTGTCTGGCTCGGGCCGCTGTTCGTGCGGGACAAGAGCGGCATCCTGGGCGTGGAGATGGACGTGCGCTGGCGCACCGACCGCGAGGAAGAGCGCGGCGCCGACCAGGTCATCGCCTGGAGCCTGGACGCCGGCAACCAGCAGATCAACTACCCCGGTGAGGGCCAGCAGAACCTGCGCTGGATGGTCGGCCAGCCCGTGCGCCTGACCTTGCGTTGGGCCCGCAACGGCTACCAGCGCCCGGCCAACGATCCGTTGCAACCGAACCTGGTGGTGCGCGACCTCGAAGCCGGCTGGGAATACCAAGGGCCATGGTCGTTGCTGCGCCTGATGCGTTCGCTGGGCTCGGCCCAACGCCAGCCGAATGTCGACTACACCGATTTTCCCCTGGCCCTGCAACTGCCGGTGACCGCCCAGACCCAAGCCCGCACGGCGCAACAGACCTTGATGTTCGTGCGCCTGTCGTTGATGAGCCAGGGTTCCAAATTGCCGCTGTCGATCCCGCCGCTGCCGACACAGGCGCCGCGGTCACCTTTCCTCGCGCCTGCGTCGAGGCCTGCCATTGCCACCCGTGAGGAGGGCCTGTGAMNTLSIVALVLLAIVVVLVIAAAVWWLRTQGGAAVRNFYGAVRQMEQEQGTRDRYQTPWLMMLGNETDGAQLCSQWRLQPTDKAGWFGRWFCDAEGAVLVVPQALFLPDEGMNRQRGNWWRLLGLLLRLRSKRPLDGVIWTVPFSKFDDIEHTTELSLKVRRVFIDLLQRFGLSLPVYVVITGMEELPGFQELVSALPAKARDSMLGWSSPYLPDAAWQSHWSDQALDEINAALAQSIIEIGALSGQLSTDLYGLPERFEGLRRTLQILLEPVFQGNAQGEAPRFRGVYFTASQAPAVSGDSLAAHHNGQRQTVFARQLWSRRLMAERGLAQPVPRLLRVRQRGHRLAGAVALVVGLVWLGGMVWVWRDSVENAEGLSRLVLSAHKNHIVIDPDQPQLEPTRHNVQNYWNVLEKAPRWRYVSVVFPTSWFSSVDTQLEDGLRLTARHHWILPLRDLLDSDLEQLKSIRNTERRGNVENDDPAQWQSYLKAKALVDLAARLEQHNQMFSQVVNDPKAPLDELVQLSNAALSLGLNTGTLSRPQFYNRVLFDARNSDLQGLDLNAARPVITDNFTGLMQRWLDHYFLADNFVRQAGYLKLHLQGLEAGSGNSLSELEDLMALIDDLQTLVSLTNSAWGRGKGQDLVPGYTQMLDKVSHSTLLGPDITQDLESQAAKLQQSFRDQWIVQSGSRDNLLVQQGSGLLVLQDHVTALDGAVQALFKRDFVALAMQKDPSPGNPDSIGQGGGSDDFSVALNYFASYKSYASEELSRIPPDYRDALMQAAENAAARAMWLSLDESDEPSPGLGFNVQTAQAVALQKAFMVVHRGDLAIRFQRLLNRRALAQINNGLAEIDAQPLFSQRADIERWDGSKNFGLQLYGANDPQELKLNLNQQFSAMLQIAEQRMPALEWLIVQQDDLSALEHDQVARFMALNDELLKYKNQNPASSAAQLEQLVSRDFNAMDTASCAQILQTSSLSGGRGDLARRTVALQQGALQRCLYLQQNQAAMAWNDLANYFNQYLAGRFPFSQDVRASDADPARVRHLLELIETRVPLAQAGLTLSQTPERLAAEDFLNRLKQAGVWLGPLFVRDKSGILGVEMDVRWRTDREEERGADQVIAWSLDAGNQQINYPGEGQQNLRWMVGQPVRLTLRWARNGYQRPANDPLQPNLVVRDLEAGWEYQGPWSLLRLMRSLGSAQRQPNVDYTDFPLALQLPVTAQTQARTAQQTLMFVRLSLMSQGSKLPLSIPPLPTQAPRSPFLAPASRPAIATREEGLPGPT0025960_319DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025960-impL|vasK|icmF-K11891NANA
D1-35_04209762hypothetical proteinATGCCTGACGGAAGTGGCGGGGTGGTTCGGAGTCTGCACGAGGCGCCGCTGAGCAGTGCGTTTCGTCAAGCCTGGTTGAAGTGGTCCCAGGAATGGCAAGACTTGCCCAAGGACAGCGACCCTGCGGTGCTGGTCAATCGGGTCGTGGAGTTTTCCGGTCGCGGCGCCCAGCGTCTCTGGCGGGTGGCCTATGCCACCGTCGGCGATGCCGCTTCCGAGCAGGTCAAGGCGCTGGTCTATGCATTCGTCGCGCTGGTGGACGAGACCTTGCTGTTCAGCACCTGGCCCGGCCAACTGGCTTGGCAGCAGCATCCCCTGGAGTCACGCATGTACGCCAGCCGCCAGGCCGGCGAGCGCTTGCCCGCGGCGATCAAGAAACTGCTGGATGAGCAGATGCCGGGCACTCGGGACCTGGCGAATGTCTACCTGCAATGCCTGATCCTGGGATTCCAAGGGCGCTTGCGCGGCGAGCCTGGCCAGATCCAGCACGAAAAATGGCGCGTGGCGTTGTTCACCTTTGCCTGGCAGCACGAACCCGATTACGTCGACGTCAGCCAGCGCCTGGCGATGTCTGCGGCGGCGACGCCCGCGCGTATGCCCGCGCAGCAATCCTTGCCGGACGGCTTTCGCCTGGGGTTGGCGATCGTGGCGATGGTGCTGTTGTTGACTGGCCTGGGGCAGGTCTTCTGGCGTGACATCCGCCTGGAGCTCGAACCGGTGTTGCAATTGAACGAGTCGTCAGTCCAGGAGCAGGATTCATGAMPDGSGGVVRSLHEAPLSSAFRQAWLKWSQEWQDLPKDSDPAVLVNRVVEFSGRGAQRLWRVAYATVGDAASEQVKALVYAFVALVDETLLFSTWPGQLAWQQHPLESRMYASRQAGERLPAAIKKLLDEQMPGTRDLANVYLQCLILGFQGRLRGEPGQIQHEKWRVALFTFAWQHEPDYVDVSQRLAMSAAATPARMPAQQSLPDGFRLGLAIVAMVLLLTGLGQVFWRDIRLELEPVLQLNESSVQEQDSPGPT0025955_1140DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025955-impK|ompA|vasF|dotU-K11892NANA
D1-35_042101332hypothetical proteinATGAGCCTGTTACCTGACGCGGTGTGCTGGCACGAGGGCATGCAACTGTTGCCCCAGCATTTTCAGTTGCAAGGACTGCGCGCCGAGGCCCTCGCCGCGCATTTTGCCGGGGCTTGCAACCCTTGGTTCTGGGGCGTCAGCCAGTTGGAAGTCGATCCTTCGGCCCTGAGTGCCGGCCAGGTACGCCTGTTGCAATTGCAAGGCACCTTGCCGGACGGCTTGCCGGTCAATCTGCTGGCCGGTGTCGGGCCAGCCCTGGAACTGGACGTCAGCGAGGCGATCGACAAGACCGACGACGCCACCGTGACCGTGTACCTGGCGGTCAGCCCGCTGTGGCGTGCCGGGCAGTTGCTGCCGCTCAAGGGACGTTTGCAATCGGTGGTCGGCGAGGCTTTGCCAGACCTCACCAGCGGCGAGTTTCCCGAGTCGATCACCGTCTGGCGACCCAACCCGAGGTTGTGCACGCAATTGAGCAAGGCTGATTCGATCTGCTTGCCATTGCTGCGCATCCGCAAGGAAGGCGGCGGTTTCTGGCGCGTGCCGTATACGCCGCCAACGCCGATCCTGCTGCCGGAGTCGGCCCTTGGTCGGCGGGTGGCCGGGGTGTGCGCGAGGGCCAGGGAAAAGTGCATGTTTCTCGCCGGTCGCTTGCGTCAGGCCCAGGCGGCTGGCAACCAGGACGATGCCATGGAGATCCGTCGGCAATTGACGGCCCTGTGGGCGCGCTTGCCGGAACTTGAAGGGATGCTGAATACCCGGGTGGCGACGCCCCAGGCGCTCTACGGTTTGCTGCTGGGGCTGGCCGGGAGCTGGTCGGCGCTGGACCCGTTGGCGGGCGTCCCGGCTTTTGCGCCGTTGGATTTTCTCGAGTTGCAGCGCGGCTACGAGCCGCTGCTCGACTGGCTGGAAACCACCCTGGAATTGGTCCGCGCCGGCTACCGCAGCCTGGCATTCGAGCGCAACGAGCAGGTCTTCTCGATCCAGTTGCCTGACGACCAGCCCAATCAACGCCTGGTGATCGGTTTGCGCATGCCCAACGGCGCCGGCGAACAAGCGGCGGCCGAATGGTTGCGCGGCGCGATCATCGCGTCGGCGCCCCACATTGCGCTGCTGAGCCGCCAGCGCATGAGTGGTTTGCCGCACCAGGCCATGAGCCGCAACGAGCAGGTGGCCTACAGCGTCGGTGACGACACCCGTTTGTTTGTGGTGGCCGCGAGCGGGCAATGGTTCGACGGGCAATTGCCGCTGCACATCGTGGCGCCGGCCTCAGCCCAGGCCAGCAGCCCGTGGCAAGTGGTGTTGTTCGTGGCGCAAGCCAGTGAAAATGCCTGAMSLLPDAVCWHEGMQLLPQHFQLQGLRAEALAAHFAGACNPWFWGVSQLEVDPSALSAGQVRLLQLQGTLPDGLPVNLLAGVGPALELDVSEAIDKTDDATVTVYLAVSPLWRAGQLLPLKGRLQSVVGEALPDLTSGEFPESITVWRPNPRLCTQLSKADSICLPLLRIRKEGGGFWRVPYTPPTPILLPESALGRRVAGVCARAREKCMFLAGRLRQAQAAGNQDDAMEIRRQLTALWARLPELEGMLNTRVATPQALYGLLLGLAGSWSALDPLAGVPAFAPLDFLELQRGYEPLLDWLETTLELVRAGYRSLAFERNEQVFSIQLPDDQPNQRLVIGLRMPNGAGEQAAAEWLRGAIIASAPHIALLSRQRMSGLPHQAMSRNEQVAYSVGDDTRLFVVAASGQWFDGQLPLHIVAPASAQASSPWQVVLFVAQASENAPGPT0025950_1298DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025950-impJ|vasE-K11893NANA
D1-35_04211459hypothetical proteinTTGCGTGCGTTTTTTCATGGATTTTTTTTCAGCCTGGCGCTCAGCGGGTGCTCGTTGTTTGCCCCCAGCGTCGACCTCGACAGCCTGACCCTGGACGTCGCGCCCCGGGCCAACGACGACACGCCGATCGCCGTGGATTTCATTGCGGTAAACGACCCGGACCTGCTCAAGCAACTCTCGGGCATCACCGCTAGCCAGTGGTTTGCCGAGCGCGAACAGTTCCAGCGCGACTATCGTCAGCTCATGTCGGTGTGGGGGCTGGAGCTGGTCCCGGGGCAATTCATCGACCGCCAACCCTTCCCGCTGGAGGGCCGGCGCGCCGCTGGACTTTTGGTCTTCGCCAGCTATAACACTCCGGGAGCCCACCGGCTTCGGCTGGACGATCAGCACGAGGCCTGGCTGAAGTTCGAAAGTCGCGAGATGACCCTCGTGAATGATGATCGGCACAAGCAGCCTTGAMRAFFHGFFFSLALSGCSLFAPSVDLDSLTLDVAPRANDDTPIAVDFIAVNDPDLLKQLSGITASQWFAEREQFQRDYRQLMSVWGLELVPGQFIDRQPFPLEGRRAAGLLVFASYNTPGAHRLRLDDQHEAWLKFESREMTLVNDDRHKQPPGPT0030445_59DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0030445-lip3-K11918NANA
D1-35_04212561hypothetical proteinATGGCAGAAAGTACCCAGCACAAGCTCGACAGAGTCCGTCCTCCCCGCGTCCAGATCACCTATGACGTGGAAATCGGCAACGCCATCGAGAAAAAAGAACTGCCACTGGTCGTCGGCATTCTGGCCGACCTCTCGGGCAAGCCACTGGAGCCGCTGCCCAAGCTCAACGAGCGGCGCTTCACCGAGATCGATCGGGATAATTTCAACGAGGTGCTCGCCTCCATCTCCCCCCGCGCCACGCTGCAGGTGAACAACACCCTCAGCGGCGACGACAGCAAGCTCAATATCGAACTCAACTTCCGGCACATCGACGATTTCGACCCGGTAAAGGTCGTCGAGCAGGTCACGCCGCTGCGCCGCTTGTTCGAAGCCCGGCAGCGCCTGCGGGACCTGTTGACCAAGCTCGACGGCAACGATGACCTGGACAAGCTGCTGCGTGACGTGATCGCCAACACCGAAGGCCTGCAGGAGATCAAGTCGGCCCGGCCCCAGGACGCGACGCAAGAACTGCCCACCGTAGCCGCCAACGATGACCCTGCCCCGGCCGAACCACAGGCCTGAMAESTQHKLDRVRPPRVQITYDVEIGNAIEKKELPLVVGILADLSGKPLEPLPKLNERRFTEIDRDNFNEVLASISPRATLQVNNTLSGDDSKLNIELNFRHIDDFDPVKVVEQVTPLRRLFEARQRLRDLLTKLDGNDDLDKLLRDVIANTEGLQEIKSARPQDATQELPTVAANDDPAPAEPQAPGPT0025915_85DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025915-impB-K11901NANA
D1-35_042131482hypothetical proteinATGCCTGCTTCATCCAGCGCTCAAACCAGCGAGAGCACGACCCAGACCCTGTCCTTGCTGGACAAGATCATCGCCGAAGGCCGCATGGCCCACGACGACAGCCAGCAAGACTACGCCCGCGACATGCTGGCGGAGTTCGCCACCCAGGTCCTCGACGAAGGCATGGCCATCGACAAGGACACCGTGGCCATGATCAACGACCGCATCAGCCAGATCGACGAGCTGATCAGCGCCCAGCTCAACGAAGTCCTGCACCATCCCGACCTGCAAAAACTCGAGGCCTCCTGGCGCGGCCTGCACCTGCTGGTGCAAAACACCGAAACCAGTACCCGGCTCAAGTTGCGCCTGCTCAACGTCACCCAGAAAGAACTGCAGAACGACCTGGAGAAAGCCGTCGAATTCGACCAGAGCGCGTTGTTCAAGAAGATCTACGAGGAAGAGTACGGCACCTTCGGCGGGCACCCGTTCAGCCTCCTGGTGGGCGACTACACCTTTGGCCGGCATCCGCAGGACATCGGCCTGCTGGAAAAACTCTCGAACGTCGCCGCCGCCGCGCACGCGCCGTTCATTGCCGCCGCCAGCCCGCGGCTGTTCGACATGACCAGCTTCACCGAACTGGCGATCCCCCGGGACCTGTCGAAAATTTTCGAAAGCCAGGAGCTGATCAAGTGGCGCGCCTTCCGCGAAAGCGAAGATTCGCGTTATGTGTCCCTGGTGTTGCCGCAGTTCCTGCTGCGCCTGCCGTACGGCCCGGACACCCTGCCGGTGGAAGGCATCAATTACGTCGAGGACGTCAACGGCACCGACCACAGCAAATACCTGTGGGGTAACGCCGCCTGGGCACTGTCGCAACGCATCACCGAGGCCTTTGCCAAATACGGTTGGTGCGCGGCGATTCGCGGGGCCGAGGGCGGTGGTGCGGTCGAAGGCCTGCCGGCCCATACCTTCCGCACCAGCTCCGGGGACCTGTCGCTCAAATGCCCGACCGAGGTGGCGATCACCGACCGTCGCGAGAAAGAACTCAATGACCTCGGCTTCATCGCCCTGTGCCACAAGAAAAACAGTGACGTGGCGGTGTTCTTCGGTGGCCAGAGCACCAACAAGGCCAAGGTCTACAACACCAACGAGGCCAACGCCAACGCACGGATCTCGGCGATGTTGCCGTATGTGCTGGCGGCCTCGCGTTTCGCCCATTACCTGAAGGTGATCATGCGCGACAAGGTCGGCAGCTTCATGACCCGCGACAACGTGCAGACCTACCTCAACAACTGGATCGCCGACTACGTGCTGATCAACGACAACGCGCCGCAGGAGATCAAGGCGCAGTACCCGTTGCGCGAGGCCCGGGTGGACGTGACCGAGGTGGCTGGCAAGCCCGGGGCCTATAAAGCGACGGTGTTCCTGCGGCCGCACTTCCAACTGGAGGAACTGACCGCCTCGATCCGCCTGGTGGCGACGCTGCCGCCGCCGGTAGCTGCCTGAMPASSSAQTSESTTQTLSLLDKIIAEGRMAHDDSQQDYARDMLAEFATQVLDEGMAIDKDTVAMINDRISQIDELISAQLNEVLHHPDLQKLEASWRGLHLLVQNTETSTRLKLRLLNVTQKELQNDLEKAVEFDQSALFKKIYEEEYGTFGGHPFSLLVGDYTFGRHPQDIGLLEKLSNVAAAAHAPFIAAASPRLFDMTSFTELAIPRDLSKIFESQELIKWRAFRESEDSRYVSLVLPQFLLRLPYGPDTLPVEGINYVEDVNGTDHSKYLWGNAAWALSQRITEAFAKYGWCAAIRGAEGGGAVEGLPAHTFRTSSGDLSLKCPTEVAITDRREKELNDLGFIALCHKKNSDVAVFFGGQSTNKAKVYNTNEANANARISAMLPYVLAASRFAHYLKVIMRDKVGSFMTRDNVQTYLNNWIADYVLINDNAPQEIKAQYPLREARVDVTEVAGKPGAYKATVFLRPHFQLEELTASIRLVATLPPPVAAPGPT0025920_1210DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025920-impC-K11900NANA
D1-35_04214498hcp1_2COG3157Protein hcp1ATGGACGCAATCATTCTCGACCTCGGCGGCGACATCAAGGGCGACAGCCTGCTGGAGGGTTTCACGGACAAGATCGAGGTCATGTCCTACAGCCACAACGTGGCGATGCAGGTCACCAACGACGTCAGCAACTCGGAGCGCACCTCCGGCCGCCCGCACATCGGCGAGTTCACCCTGACCAAATTCATCGACAGCTCAACTCCGTCGCTCAATGAATATTGCTGCGCCGGTAAGCCGATCCCGCAAGCCGTCGTCACCATCGGCCGCAACGCCGCCGAAGGCAGCGGCCAGATCATGCCGTTCATCGTCTACACCCTGACCAACGTCGTGCTGTCCAACGTCAGTGTCAGCGGTGGTACCGGTGGCAAACCGGTGGAAACCCTGTCGCTGAACTTCACCAAGATCAAATGGGAGCTCACCGCCCAGAAAGATGACGGCACCAAGGAAGGCACGGCCGGCACGACCTGGGATTTGGCCGCCAACAAAATGACCAAGTAAMDAIILDLGGDIKGDSLLEGFTDKIEVMSYSHNVAMQVTNDVSNSERTSGRPHIGEFTLTKFIDSSTPSLNEYCCAGKPIPQAVVTIGRNAAEGSGQIMPFIVYTLTNVVLSNVSVSGGTGGKPVETLSLNFTKIKWELTAQKDDGTKEGTAGTTWDLAANKMTKPGPT0025980_646DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_PROTEINS,PGPT0025980-hcp-K11903NANA
D1-35_04215444hypothetical proteinATGGCTGGCTTCGGGCTGCGCCCGCCCCTGTTCGAACGTTTGGCAAGCCCGGCAGACGATGCCGGGCGGGTGTTCGATCGACAGGCATTGCAGGACTCGGTACATGCCGAACTGTCACGCCTGTTCAATACCCGGCGCGGCCTACGGGCGCTGACCGAACCACCGAGCATCCTGGACTACGGCATCGCCGACTGGACCGCGCTGCAACAGCAGCGCAGCGATGACCGTCGTCAACTGACCCGGGAAATTCGCCAGGCCATCACCCACTTCGAACCGCGCCTGCGCCTGGGCGAGGTAGAAGTCTGCCCGGTGCCGGGCCATCCGCAGCAACTGTGCATACGGCTGTCGGGCGAACTGCGTGGCGACCCGCACCCATGGCCCGTGGCGTTTGTAATCGAGCACGCCGGCGACGGCCTTGAGGTGCGCCATGAGCGACTCGATTGAMAGFGLRPPLFERLASPADDAGRVFDRQALQDSVHAELSRLFNTRRGLRALTEPPSILDYGIADWTALQQQRSDDRRQLTREIRQAITHFEPRLRLGEVEVCPVPGHPQQLCIRLSGELRGDPHPWPVAFVIEHAGDGLEVRHERLDPGPT0030415_5DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_RELATED_PROTEINS,PGPT0030415-hsiF3-K11919NANA
D1-35_042161791hypothetical proteinATGAGCGACTCGATTGACCCGCAACTGTTGGATTACTACCAACGCGAATTGACTTGGCTGCGCCATGCCGGGAGCCTTTTCGCCGAGCGTTACCCCAAGGTTGCCCGGCGCCTGGAATTGTCCCCCGGTGAATGTCCCGATCCCCACGTCGAACGACTATTGGAAGGCTTCGCGCTGCTGGCCGCGCGCTTGCAACGCCGGCTGGATGACGACTACGCCGAATTCAGTGATGCCCTGCTCGAACAACTTTACCCGTTGGCCATGCGACCCTTGCCATCGTGCGCCATCGTGCAGTTCGAGCCCGACCCGAGCAAAGGCAACTTGAACGAGGGCTATCCCCTGCCCCGCGACACGCCATTGTTCGTCACCACGGACAAAGGCCAGAGCATTCATTTCCGCACCACTGCTGCCGTGCATCTATGGCCACTGCAAGTGAGCGAAGCGTTGCTGCTGGGCAGTGACGAGGCCCAGGCGTTGACCGGAGTAGTCCAGGCCCGCTCGGCCTTGCGCCTGGAGTTGCGTTGCCTGGGAAAAAGCCAATGGTCGACGCTGGGCATCGATTCGCTGCGGGTACACCTGGCGGCGTCACCGATGATCAACGCCGGGCTGTACGATTTGCTTGGCGCTCACGCCATCAAGGTCCTGGCTGGCGCGCCGGGCAGCGTGCCGGAACCGTTGGCGGGTTTGCCACGCATCGTCGGTTTCGCCAGCGACCAAGCCTTGCTGCCGGACGAGGACGGCGTGCACCCAGGCATGCGCCTGTTGGCGGAGTATTTCGCCTTTCCGGACAAATTCGGCTTTTTCGACCTGCCGCTGGCCGGCGCCCACAGCGACGACGCTTCTTTATACCTGTACATCGCGTTCGACCGGGCACCAACCAGCCGCTTGCCGCTCCAGGCCAGCGACATCGCCCTGGGCTGCGCTCCGGTGATCAATCTGTTTCCCCGGACCTCCGAGCCGCTGCGCCCGGACGGCACTCGCAGCGAGTATCGGCTGGTGGCCGACAGTCACCGGGAAAACAGCGTCGAGATCCACAGCATCCGGGGCATGCGCGCCATGACCGAACAAGGAGTGCGCAAAGTGCCGGCCTATTACGGCAGCCAGCATGGCAGCGACGAGCCCTGTTATTGGCATGCGCGACGGGTCAGCGGCATGAGCCCGAACCGACTGGGCACTGACGTGATGGTCAGCCTGGTGGACACCCGCTTCGACCCACTGGCCGAATCCCGGGATTACAGCCTCACCGCCGAACTGCTGTGCACCAACCGCCACCTGGCCCAGAGCCTGCCGGCCGGCACGCCATTGGGTTTCGAGCGCCCCGGACCGGTGGCCTGGGCGCGCCTGCGCAATCCTCCCAGCCCGCAGAGCCTGCCGCGCCTGGATGGCGAGTCGCGCTGGCGACTGGTGTCGCAACTGACCCTCAATCATCTGTCACTGGTGGAAGGTCCCCAGGCGCTTGACGCATTGCGCGAGATTCTCGAATTGCACAACCTGCGGGACGAGGCCAGCGCGCGCCGCCAGATCGAAGGCGTATCCGGACTGACCTGTGAACGGGTCATCGCCCATGTTGGCGAGGATGCCTGGCGCGGGTGGCGCAACGGCTTGGAGGTGCGCCTGCAACTGGATCCGCATCACTTCGTCGGCAGCAGCGCCGTGCTGTTCTCCGGCGTGCTGGCGCAATTCTTTTCTCTGTATGCCACCGCCAATCGATTTGTGCGCACCGTGCTGGTCCAGTCCGACAAGGAGGTGAAGACATGGCAACCCCAAGCCGGCAAACCCCTCGCGCTCTGAMSDSIDPQLLDYYQRELTWLRHAGSLFAERYPKVARRLELSPGECPDPHVERLLEGFALLAARLQRRLDDDYAEFSDALLEQLYPLAMRPLPSCAIVQFEPDPSKGNLNEGYPLPRDTPLFVTTDKGQSIHFRTTAAVHLWPLQVSEALLLGSDEAQALTGVVQARSALRLELRCLGKSQWSTLGIDSLRVHLAASPMINAGLYDLLGAHAIKVLAGAPGSVPEPLAGLPRIVGFASDQALLPDEDGVHPGMRLLAEYFAFPDKFGFFDLPLAGAHSDDASLYLYIAFDRAPTSRLPLQASDIALGCAPVINLFPRTSEPLRPDGTRSEYRLVADSHRENSVEIHSIRGMRAMTEQGVRKVPAYYGSQHGSDEPCYWHARRVSGMSPNRLGTDVMVSLVDTRFDPLAESRDYSLTAELLCTNRHLAQSLPAGTPLGFERPGPVAWARLRNPPSPQSLPRLDGESRWRLVSQLTLNHLSLVEGPQALDALREILELHNLRDEASARRQIEGVSGLTCERVIAHVGEDAWRGWRNGLEVRLQLDPHHFVGSSAVLFSGVLAQFFSLYATANRFVRTVLVQSDKEVKTWQPQAGKPLALPGPT0025935_1101DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025935-impG|vasA-K11896NANA
D1-35_042171026hypothetical proteinATGGCAACCCCAAGCCGGCAAACCCCTCGCGCTCTGAACCTGGGCGAGCGACTGCGGCGCGACCCACAACGCTTCGAATGGCTCCAGGCCCTGTTGCTGCTGGAACGCGAACATCCCCAGGCCGAGCCCCTGGGCAGCGGCACCGCGCCACAGGCCGAGGCCGTGCGTCTACGTGGACCGCTGACGCCACTGTTCGCCGCCAGCGAGGTCGAAAGCCTGGGCCAGGAACCCGGCCTGCCGCCGACCCTGACCACGCCGATCTTTGGCCTCGGCGGCCCGGACGGCCCGCTGCCCTACGCCTACCAGGAATGGCTGCAACAACGGGCGCGGGCGAAGGATCATGCCCCGGCGGAATTCCTCGACCTGTTCCAGCACCGCCTGCTCAGCCTGCTGTACAAGGTGATGCGCAAGCATCGCGTCGCCCTCGGTTTCACGCCCCCTGGCGCGTCCGCTGTACACGCACAACTGCGCGCGTTGACCGGCCTGCTGCCCAAGGCCTTGCAGGAACGCCAGGCCGCCCCCGACTCGGCGGTCCTGGCCTGCGCCGCGCTGTATGCCGATGGTCGGCGTTCCCTGGCCGGGTTTGCGGCGATTGTCCGTGAACAGTTCGGCTTGCCCGTCGAGCTGAACGCCTATGAAGGTGGCTGGCGTGAAATCCCGCCGGCCAGCCGCAGTTGCTTGCAGCCGGACGGACGCAACCTGCGCCTGGGCCGCAACGCAGTCGCCGGTACTCGGGTCTGGGACGAACATGCCGGCGTGCGCCTGACGCTGGGACCGCTGAGCGCGCCCCAAGCCAGCGGCTTGCTGCCCACTGGCGAAATCCATCCGCTGCTCGCCAGCCTTTGTGCGCTGTATTTCGGCCCAGACCTGGATTGCACATTGGTCCTGCTGGTTCGTGGCGCCGGCCCGTTGCAGTTGAGTCGCCAGACTGCGCCACGGCTGAATTGGAACGGTGGCCTGCAACGCCAGCCGAGCCTGGCCGTGCAACGCATCGAAACCCGCCTTCGCCAGCCGGAGATCGCCTGAMATPSRQTPRALNLGERLRRDPQRFEWLQALLLLEREHPQAEPLGSGTAPQAEAVRLRGPLTPLFAASEVESLGQEPGLPPTLTTPIFGLGGPDGPLPYAYQEWLQQRARAKDHAPAEFLDLFQHRLLSLLYKVMRKHRVALGFTPPGASAVHAQLRALTGLLPKALQERQAAPDSAVLACAALYADGRRSLAGFAAIVREQFGLPVELNAYEGGWREIPPASRSCLQPDGRNLRLGRNAVAGTRVWDEHAGVRLTLGPLSAPQASGLLPTGEIHPLLASLCALYFGPDLDCTLVLLVRGAGPLQLSRQTAPRLNWNGGLQRQPSLAVQRIETRLRQPEIAPGPT0025940_1048DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025940-impH|vasB-K11895NANA
D1-35_042182544clpV1_2COG0542Protein ClpV1ATGGAACTGGCCAGCCTGATCGGACGCCTCAATCCGGACAATCGCCGAGCCCTGGAACGGGCCGCGCAACGCTGCCTGCAACGCAGCCACCACTACGTCGAAATCGAACACCTGCTGTTGGAACTGCTCGACATCGAAGGCGGTGACTTCGCCTGCCTGCTGCCGCGTTTCGGCCTGGAGCGTGACGCGGTGGCCGCCGAAACCAATAAGGCCCTGGACCTGTTCAAATCCGGCAGCACCCGCACGCCCGCCCTGTCGGCACAAACCATCGGCCTGCTGGAGGACGCCGTGGTCCAGGCCAGCGTGTTGGGCCTGGACAGCATTCGCTCCGGGCTATTGTTGCTGGCGTTGTTGGACCGTGACGAACGTCGCAGCCTGCTGCTCAACAGCGCCTCGTCCCTGCTGCGCATTCCCCGCGATGCCCTGCGCGCCCATCTGTTGGAATGGACCGAAAGCTCCCGCGAGCATGTCGGCGGCGTGCGCCCGGCCAAACCCGGCGAAGCACCACCGAAACAGGACCCGGTGCTGGACCAGTACACCCAGGACCTGACCGCCGATGCCCGGGACGGCCGCATCGACCCTATCGTCGGCCGTGACGGCGAGATCCGCCAGTGCATCGATATCCTGCTCCGACGCCGGCAGAACAACCCGATCCTGGTGGGCGCACCGGGCGTCGGCAAGACTGCTGTAGTGGAAGGCCTCGCCCTGCGCATCGCCGCCGGGGATGTGCCGCCGTCCTTGCAGGAAGTCACCCTGCGCGTGCTTGACCTGGGCCTGTTGCAGGCCGGCGCGGGCGTCAAGGGCGAGTTCGAACAGCGCCTCAAGGGCGTGATCGACGCGGTACGCAGCGCGGAAAAACCGATCATCCTGTTCATCGACGAAGCCCATACGTTGATCGGCGCCGGTGGTGCGGAAGGCGGCAGCGACGCGGCCAACCTGCTCAAGCCAGCCCTGGCCCGGGGCGAATTGCGTACCCTGGCCGCCACCACCTGGCTGGAATACAAGAAATACTTCGAGAAGGACCCGGCCCTGGCTCGGCGGTTCCAGTTGGTGCAGGTCGAGGAGCCGGACGAGCTCACCGCCGTGGAAATGCTCCGGGGCGTGGCGAGCAAACTGGAGCAGCACCACGGCGTGCAAGTGTTGGACGCGGCCATCCACGAGGCGGTGAAGCTGTCCCACCGCTACATCTCCGGACGACAGTTGCCGGACAAAGCCATCAGTGTGCTCGACACCGCCTGCGCCCGGGTCGCCCTCGGCCAGCACGACGTACCACCGCCGCTGGAAAGCCTGCGCCATCGCGAGAACAGCCTCAAGGATGAAGTCGAACGGCTACGCCGGGAACAAGCCACCGGGCTGGATCATCGCGAGCGCATCACCTTGCTGGAAAGCGAATCGAGCAGCAACGTGCAGGCCATCCGCGAGCTGGAAACCCGCTGGGGCGAAGAGCGCGAAGCCGTGCGCGAACTGCTCGACACCCGCCGCGAACTGCTCGCCTTGAGCGAACGTGCCGACAGCGAAAAAGCCGACACCGAAATCGATAACCGCATCGACCACCTCGCCGCCGAACTGCTGCGCCTGGAAGCCGGCCTCGATGCCATTCGCCAGGACGATCCGCTGGTGCCCGAACAGGTCGACAGCAAGACCGTCGCCGCGGTGATTGCCGGTTGGACTGGCATCCCGGTTGGCAAGATGCTCGCCGATGAAGCCCACGCCGTGCGCACCCTCGGCCAACGCATGGGGCAGCGAGTCATGGGCCAGGGCACCGCACTGAATACCATCGCCCAACGCCTGCAAGCCTACCGCGCCGGTCTCACCGACCCGCAGAAACCGGTCGGCGTGTTCCTGCTGGTGGGCCCCACGGGCGTGGGCAAGACCGAAACCGCCTACGCCTTGGCCGACGCCTTGTACGGCGGCGAACGCAACCTGATCAGCATCAACCTCTCCGAATACCAGGAAGCCCACACCGTCAGCCAACTCAAGGGCGCCCCGCCCGGCTACGTCGGCTACGGCAGCGGCGGCGTGCTCACCGAAGCAGTCCGCCGAAAACCCTATTCCGTGGTGTTGCTGGATGAAATTGAAAAGGCCCACCCGGACGTGCTCGAAGCCTTCTACAACGTCTTCGACAAAGGCCTGATGGAAGACGGTACCGGCCTGGTGGTGGACTTCAAGAACACCGTGATGCTGGCCACCAGCAACGTTGGCGCCGAACTGCTGCTGGACACACCGACCGCGCAATTGGGCAGCGACGCCTTCAACGAAGCCTTGCATAACGTCCTGCTGCAAGCGTTCCGCCCGGCGTTTCTGGCGCGCATGACGGTGGTGGCGTACCGGCCGCTGGATGAAGCGACGCTGGAAGGGATTGTGTTGGCGAAGTTGGAGAAATTGCGCGGGCGCTACAAGGCCGCGACTGGCAAGCAATTCGAATTCGATGCGGGAATCGTCAAGGCTGTGTTGGCCAAGTGCAGCGCGGCGGGGGCACGGGATGTCGAGAATGTGTTGATGACGCAGGTGACGGGGAAGTTGGCGGAGTGGGTGTTGGAGTAAMELASLIGRLNPDNRRALERAAQRCLQRSHHYVEIEHLLLELLDIEGGDFACLLPRFGLERDAVAAETNKALDLFKSGSTRTPALSAQTIGLLEDAVVQASVLGLDSIRSGLLLLALLDRDERRSLLLNSASSLLRIPRDALRAHLLEWTESSREHVGGVRPAKPGEAPPKQDPVLDQYTQDLTADARDGRIDPIVGRDGEIRQCIDILLRRRQNNPILVGAPGVGKTAVVEGLALRIAAGDVPPSLQEVTLRVLDLGLLQAGAGVKGEFEQRLKGVIDAVRSAEKPIILFIDEAHTLIGAGGAEGGSDAANLLKPALARGELRTLAATTWLEYKKYFEKDPALARRFQLVQVEEPDELTAVEMLRGVASKLEQHHGVQVLDAAIHEAVKLSHRYISGRQLPDKAISVLDTACARVALGQHDVPPPLESLRHRENSLKDEVERLRREQATGLDHRERITLLESESSSNVQAIRELETRWGEEREAVRELLDTRRELLALSERADSEKADTEIDNRIDHLAAELLRLEAGLDAIRQDDPLVPEQVDSKTVAAVIAGWTGIPVGKMLADEAHAVRTLGQRMGQRVMGQGTALNTIAQRLQAYRAGLTDPQKPVGVFLLVGPTGVGKTETAYALADALYGGERNLISINLSEYQEAHTVSQLKGAPPGYVGYGSGGVLTEAVRRKPYSVVLLDEIEKAHPDVLEAFYNVFDKGLMEDGTGLVVDFKNTVMLATSNVGAELLLDTPTAQLGSDAFNEALHNVLLQAFRPAFLARMTVVAYRPLDEATLEGIVLAKLEKLRGRYKAATGKQFEFDAGIVKAVLAKCSAAGARDVENVLMTQVTGKLAEWVLEPGPT0025985_1512DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025985-vasG|clpV-K11907NANA
D1-35_042191047hypothetical proteinATGATGGCCAACACAGTATTTGCTAACGCGGCAGAAGCCGAAGTCAGTTTAAGAGCCAACAACTTTCGCTTTACCAAATTCGCAAACGGCGAGCGTAAAACGGCTCCGGCGCCGCTGGATGATGCTCTTTTCTATACTGCCTACTCAAATATCGCGGCTTTCCTTTGCAATGACCTTCATTTCCAAACCAGTCTGACCGAGGTCTCTGCAAAGATCTGGGAACATTATCGAAGACTAACCCCGATGACGCCGAACAAGTTTACCCGGGCAATGGGGCTGGTCGCCGCCCAGTATGGATTTCAGTACCACGAAGGTTTACGTAACGATACCTCGGAGCGAGGGCTGCCCATCGCCGTGCGCCTGATCGGGGGCGATCGCTTCCTTGGCCAACTGCTACGCGCCAGTCTGTTCTGGAAAGACAGTATGGATGGCCGACATGGCGAACATACCCACAGCCTGCAATGGCTGGCCATTGCCAACGGTCTATTGGGCACAGTGGCGGAGATCCCACGCCTGTATAGCTACACCGCCGATTATCGAGCACCTTCGCAAAACGATAAGCCGGGTAAGCCGTCCCTGTTTCTCTGGCAATGGCTGGCTGATTGCTTTCCAACTGACTTGAATGGATATGCCACCGAGAAGTTCATTAACGATGAAACCCTCGAATCGCAAAGCTACCGGGCGCCGCAAGTCATCAGTGATTACTTGTTCGGGAAACATCCCAGGACCGAACAGCCGATTCCAGGGCATTTTGTTTCCAATTACTTATTTCACCGTTATAGAAATCGGGAATGGCTGCAGACCAAGGAACAGTTCAACGCCGCCAGCGGAGAAAACGAGACAGTCATCACGAAGTGGTTTACCGGTTCCATACAGACTGATGCCAAAGCTAGCGCACCGGCTCATCGGTGGGGGCCAGCCTACAAAAATGACGCGCGCCTAGTTCGTAATGCCGCAGCGGAAATAGACAAATTAAAAGAAAAAAAGCCACAGGCCATCAATAGTTTTTTTCATGGGAAGCCGGGAAAGCTCTGGTTTGGTAGTTAAMMANTVFANAAEAEVSLRANNFRFTKFANGERKTAPAPLDDALFYTAYSNIAAFLCNDLHFQTSLTEVSAKIWEHYRRLTPMTPNKFTRAMGLVAAQYGFQYHEGLRNDTSERGLPIAVRLIGGDRFLGQLLRASLFWKDSMDGRHGEHTHSLQWLAIANGLLGTVAEIPRLYSYTADYRAPSQNDKPGKPSLFLWQWLADCFPTDLNGYATEKFINDETLESQSYRAPQVISDYLFGKHPRTEQPIPGHFVSNYLFHRYRNREWLQTKEQFNAASGENETVITKWFTGSIQTDAKASAPAHRWGPAYKNDARLVRNAAAEIDKLKEKKPQAINSFFHGKPGKLWFGSNANANANANA
D1-35_042202010hypothetical proteinATGCCCCGTACCGTCGACATCAACACCACCCTCTCCCTCACCTCCACCTCGCTGTCGGCGCTGTACCCTGACTCACTGTCCGGCGAAGAACGCCTCAATGCCTTGGGCTCGCACATCCTCAACGGCATCAACGACGGCGCCTCGCTGGACCTCACCACGGCCGTCGCCAGCCATGTAACCACAACGCTGCATAAGGACGCCCTGCTGCGCCCGCAGGATGGATTGGTGGCCGAGATTCGCCAATTACCAGCCGACGCCACCGCCGAGCGCTATCAACTTTTACTGAGACCGTGGCTTTGGTGGTTGAGCCTTGCCAGCAACAACCGGGTGTTCCAGAACCTCGCCACCTCGGACATCGTCACCACGATTTTCAAGGCCCACGGTTTCACCGATTTCCAGCTCAAGCTCAGCGGCAGCTACACGCCGCGCGAGTACTGCGTGCAATACGGCGAAACCGACCTGGCATTCATTTCCCGCCTGCTGGAAGAAGACGGGATCTTCTGGTTCTTCAGCCACGAACAAGGCAAGCACACGCTGATACTGGCCGACAGCAACGACGCCTTCGCACCCATACCCAATGGGCCGACGGTGAATTATCTCGGGCAGAAACTGGGCGAGCGCGAACTGCACGGCATCCGCTCAGGGCAGGTATGCCTGCAAGCGGTGGCCGGCGTTTACCAGGCCACCGATTATGAGTTCACCACGCCGACCACCTCACTCTTCAGCCAGGCTGAAGCCGTGGCCGGGCCGAGTTTGATGTACGCACATCCCGGCGGCTATACCGCCAAGGCCCAGGGCGATGCGCTGACCAAACAGCGGGTGGACGGCCTGCGCAGCCAGGAGAAACGCTTTGTCGGCGAAAGCGACTGCCGCTGGCTGATCCCGGGCTATTGGTTCACCCTCGCCGGCCATGAAGACACGACGCTGAATATCGATTGGGTAGTGACGTCGGTCAGCCATGAAGCCAGCCACGACAGTTACCGCAACCGCTTCGAAGCGATCCCCAAGACCACCGCCTACCGACCGGCTCGCATCACGCCAAAACCGCGCATGCACACCCAGACGGCCGTGGTGGTGGGCAAGGCCGGCGAAGAAATCTGGACCGATGAATACGGCCGGATCAAATTGCAGTTCCCCTGGGACCGCACCGGCAAGAACGACGAGACCTCCTCCTGCTGGGTGCGCGTGGTCCTGCCCTGGAGCGGCAAGGGCTTTGGCATGCAGTTTGTGCCGCGCATCGGCCAGGAAGTCATCGTCACCTTCATCGACGGCGACCCGGATCGGCCGTTGGTCACCGGTTGCGTCTACAACGGCGACAATGCCCTGCCCTATGCGCTGCCAGCGAACCAGACCCAGTCCGGGATCAAGACCAACTCGTCCAAGGGCGGCGGCGGTTTCAACGAGTTGCGCTTCGAAGACAAGAAAGACGCCGAGGAGATGTTTCTCCAGGCGCAAAAGGACTTCAACATCAACGTGCTCAACGACACCACCGCCACCGTCGGCCACGATGAAACCCTCACGGTGCAGAACGCCCGCACGCGCACGGTGAAGGACGGCGACGAAACCGTCACCCTTGAGAAAGGCAGGCGCAGCGTGACCATCCAGACCGGCAGCGACAGTCTCGACGTGAAGGACACCCGCACCGTCACCGTGGGCTCGGACCAGACCCACAGCACCGGCGGCAATTACGATCACAAGGTCACCGGCAATTACAGCCTGACGGTGGACGGCAACCTGACCATCAAGGTCAGCGGCACCCTGACCCTGCAAAGCGGCGGCAGCTTCGCCATCAAGAGCGGCGCGGACCTGGCCGCCCAGGCCAGCACGTCCATCAGCCAGAAGGCCGGCACCGCCTTGAGCAATCAGGCGGGTACTTCGCTGGAAAACAAGGCCGGCACCACCCTGACCAACGATGCTGGCATCAGCCTGGTGAACAAGGCGGCCGCCGAACAGACCGTGGACGGCGGCGGCATGCTGACCATCAAGGGCGGCCTGGTGAAGGTCAACTGAMPRTVDINTTLSLTSTSLSALYPDSLSGEERLNALGSHILNGINDGASLDLTTAVASHVTTTLHKDALLRPQDGLVAEIRQLPADATAERYQLLLRPWLWWLSLASNNRVFQNLATSDIVTTIFKAHGFTDFQLKLSGSYTPREYCVQYGETDLAFISRLLEEDGIFWFFSHEQGKHTLILADSNDAFAPIPNGPTVNYLGQKLGERELHGIRSGQVCLQAVAGVYQATDYEFTTPTTSLFSQAEAVAGPSLMYAHPGGYTAKAQGDALTKQRVDGLRSQEKRFVGESDCRWLIPGYWFTLAGHEDTTLNIDWVVTSVSHEASHDSYRNRFEAIPKTTAYRPARITPKPRMHTQTAVVVGKAGEEIWTDEYGRIKLQFPWDRTGKNDETSSCWVRVVLPWSGKGFGMQFVPRIGQEVIVTFIDGDPDRPLVTGCVYNGDNALPYALPANQTQSGIKTNSSKGGGGFNELRFEDKKDAEEMFLQAQKDFNINVLNDTTATVGHDETLTVQNARTRTVKDGDETVTLEKGRRSVTIQTGSDSLDVKDTRTVTVGSDQTHSTGGNYDHKVTGNYSLTVDGNLTIKVSGTLTLQSGGSFAIKSGADLAAQASTSISQKAGTALSNQAGTSLENKAGTTLTNDAGISLVNKAAAEQTVDGGGMLTIKGGLVKVNPGPT0030410_3452DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_PROTEINS,PGPT0030410-vgrG-K11904NANA
D1-35_04221543hypothetical proteinATGGCCTCGAAAAAACTGGACGTCGAGCGTGGTGACAGTCAACTGAATGGGCGACTGATCGATGGCAAGCTCGACGGCCCCTTGCAGATTGAAGAAGCGCAGCGCCCACAAGCGAAACTCAACTACAGCCAGGGTGAACTGGAAGGCACCAGCACGTTGTATCACCCCAATGGCAAGGTCTCGGCCGTGTTGCCGTTCGTCAAAGGCAAACTCCAGGGAATGGCAAGCTTCTACGCGGCCGAAGGCGGCTTGCAACGCCAGGCCAGTTACTGCCGCGGGTTGTTGCACGGTGAGGCGAACAATTATTTTCCCGACGGGAAACTGGCCGAAGCCGAGTTCTATCGCGACGGCGTGCGTGACGGCCATTATCGGCGCCTGCACCCCAACGGCAGCCCGGCAGTCGAGGCCCGCTACCTCAACGGCCAACTGCTGGAACCGGCCCAGGCCTACGCCGAAGACGGCCGGCCACTGGACGCCGAGGGCAAGCCGATCTCCCGGGTGCGCTGGTGGTTCAGGCGCTGGAATGATCCGGCGCAGGCCTGAMASKKLDVERGDSQLNGRLIDGKLDGPLQIEEAQRPQAKLNYSQGELEGTSTLYHPNGKVSAVLPFVKGKLQGMASFYAAEGGLQRQASYCRGLLHGEANNYFPDGKLAEAEFYRDGVRDGHYRRLHPNGSPAVEARYLNGQLLEPAQAYAEDGRPLDAEGKPISRVRWWFRRWNDPAQANANANANANA
D1-35_04222396hypothetical proteinATGGGATGTCCGCAAGTCTGTGGCACCGCGACCCTGCAATGCAGCTTCGGCGTGGCGCCGGCGGTGCTCAATGTGCTGCCGGCCAATCGCCTGCTGACCGGCGGGATGCCGGCGGCCAATATCATGGATCATATTCCCTTGGTGAACATCACCACGTTCGGCATGTGCCAGAGCCTGGCGAATCCGACAGTGGCCGCGGCCACTGCGGCGGCGTTGGGCGTGCTGACGCCCATGCCATGCATTCCGGCCACCGCGACCCCGTGGATCCCCGGCGGCGCACCGACCCTGTTGCTCGGCAACATGCCGGCTATCGACGCCAACAGCACGTTGATGTGTACCTGGGCCGGGGTGATCAAGATCGTCGTGCCGGGGCAGGTGCAGATGTTGATTCCTTGAMGCPQVCGTATLQCSFGVAPAVLNVLPANRLLTGGMPAANIMDHIPLVNITTFGMCQSLANPTVAAATAAALGVLTPMPCIPATATPWIPGGAPTLLLGNMPAIDANSTLMCTWAGVIKIVVPGQVQMLIPNANANANANA
D1-35_042231068hypothetical proteinATGGCAGTGACTGATCAGTCCACCCGCGTGCGCGACGGTGAAGAACTCGATGCCAACCTGATCGACCCGTACCTCAAGGCCCACATTCCTGGCTTGACCGGCACGCCGGTGATCAGCCAGTTTCCCGGTGGCGCGTCGAACCTGACGTACCTGCTGGAATATCCCGAGCAGGAGTTCGTCCTGCGGCGTCCGCCGTTCGGCCACAAGGCCAAGTCGGCCCACGACATGGGCCGTGAGTTCCGCATCCTCAATCAGTTGCGCGAAGGTTTCCCGTACTGCCCCAAAGCCTACGTCCACTGCACTGACGAATCGGTGATGGGCGCCGAGTTCTACGTGATGGAACGGGTCAAGGGCATCATCCTGCGCTCCGAATTGCCGCCGGAACTGGGTTTCGATGCAGCCCGCACCGAAGCCCTGTGCAAGAGTTTCATCGACCGGCTCGTCGAACTGCACCGTGTTGACTACACCGCCTGCGGCCTGGCCGACCTGGGCAAGCCCGAAGGCTACGTGGCCCGGCAGATCCGTGGCTGGAGCGAGCGCTACGAAAAAGCCCTGACCCCGGATGCGCCCAAGTGGGAGACGGTCAAGGCATGGCTCAACGACAAGATGCCTGCCGACCATCCAACGTCGAGCATCGTCCACAACGACTACCGCTTCGACAACGTGATCCTCGACCCGGACAACCCGATGCAGATCATCGGGGTGCTGGACTGGGAGCTGACCACCCTTGGCGACCCGTTGATGGATTTGGGCAACAGCCTCGCCTACTGGATCGAGGCCGGCGATCCGGCACCGGTGCAATTGATGCGCCGTCAGCCAAGCCACGCGCCGGGCATGCTGACTCGCCGCGAATTCGTCGATCACTACGCCGAGCGCGCCGGGATCCGCATCGACAACTTCGACTTCTACTACACCTACGGGCTGTTCCGCCTGGCCGGCATTGTCCAGCAGATCTACTACCGCTTCTTCCATGGCCAGACCCAGGACAAACGCTTCGCGCAGTTCGTTCAGATGAACAAACTGCTGGAGCAGATGAGCCTGCAGGTCATCAGCAAATCCACGCTCTGAMAVTDQSTRVRDGEELDANLIDPYLKAHIPGLTGTPVISQFPGGASNLTYLLEYPEQEFVLRRPPFGHKAKSAHDMGREFRILNQLREGFPYCPKAYVHCTDESVMGAEFYVMERVKGIILRSELPPELGFDAARTEALCKSFIDRLVELHRVDYTACGLADLGKPEGYVARQIRGWSERYEKALTPDAPKWETVKAWLNDKMPADHPTSSIVHNDYRFDNVILDPDNPMQIIGVLDWELTTLGDPLMDLGNSLAYWIEAGDPAPVQLMRRQPSHAPGMLTRREFVDHYAERAGIRIDNFDFYYTYGLFRLAGIVQQIYYRFFHGQTQDKRFAQFVQMNKLLEQMSLQVISKSTLNANANANANA
D1-35_04224768fabG_93-oxoacyl-[acyl-carrier-protein] reductase FabGATGTCCAAGACCCAGTTGTTCGACCTCGACGGTAAGATCGCTTTCGTTTCCGGCGCCAGCCGCGGCATCGGCGAAGCCATCGCCAAACTGCTGGCCCAGCAAGGCGCCCACGTGATCGTTTCGAGCCGCAAGCTCGACGGCTGCCAGCATGTCGCCGATGCGATCATCGCCGCTGGCGGCAAGGCCACCGCGATCGCTTGCCACATCGGCGAAATGGAGCAGATCAGCCAGGTATTCGCCGGCATCCGCGAGCAATTCGGGCGCCTGGACATCCTGGTGAACAACGCCGCCACCAACCCGCAATTCTGCAACGTGCTGGACACCGACCTGGGCGCGTTCCAGAAAACCGTCGATGTGAACATCCGCGGCTACTTCTTCATGTCGGTGGAAGCCGGCAAGCTGATGCGCGAGAACGGCGGCGGCAGCATCATCAATGTCGCGTCGATCAATGGCATCTCGCCGGGCATTTTCCAGGGCATCTATTCGGTGACCAAGGCTGCGGTGATCAACATGACCAAGGTCTTTGCCAAGGAGTGCGCGCAGTTCGGCATCCGTTGCAATGCCCTGCTGCCGGGCCTGACCGACACCAAGTTCGCCTCGGCGCTGGTCAAGAACGACGCCATCCTGAAGACCGCCCTGGCGCAGATCCCCCTCAAGCGCGTGGCCGACCCGAGCGAAATGGCCGGCGCGGTGTTGTACTTGGCCAGCGATGCGTCGAGCTACACCACGGGCGTGGCGTTGAATGTGGATGGTGGGTTCTTGTCCTGAMSKTQLFDLDGKIAFVSGASRGIGEAIAKLLAQQGAHVIVSSRKLDGCQHVADAIIAAGGKATAIACHIGEMEQISQVFAGIREQFGRLDILVNNAATNPQFCNVLDTDLGAFQKTVDVNIRGYFFMSVEAGKLMRENGGGSIINVASINGISPGIFQGIYSVTKAAVINMTKVFAKECAQFGIRCNALLPGLTDTKFASALVKNDAILKTALAQIPLKRVADPSEMAGAVLYLASDASSYTTGVALNVDGGFLSPGPT0030550_180PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-LIPID_METABOLISM|OXIDOREDUCTASEPUTATIVE-BILE_ACID_BIOSYNTHESIS,PGPT0030550-hdhA-K00076
D1-35_042251116iolG_2Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGCGCGAACTCGGCATCGGTCTGATTGGCACCGGCTTCATGGGCCGTGCCCATGCTTTGGCATTCCATAACGCCAAGGCGGTGTTCGACCTTCCCCTGAATTTGAAACTGGCGGCCCTGGCCGACGCCGATCCGCTACGTGCGCGCCAATGTGCACAGAGTTGGGGCTTCGAGACGGCTCACAGCGACTGGCAACAACTGATCGACGACCCGAACGTCCAGTTGATCGCCATTACCACGCCCAACCATCTGCACTTTCCGATGGCCATGGCCGCGTTGGCGGCGGGCAAGCCGGTCTATTGCGAAAAACCACTGGCGGTCTCCCTGGAACAGGCCGAGCGGATGCGCCAGGCCGCCAAGGCGGCCGGGGTGGTGACACGCGTCGGCTACAACTATCAGCACAACCCGATCATCAGGTTGGCGCGGGAAATGATCCAGCGCGGCGAGCTGGGGCAGATCGTCAGCTTCCAGGGCGAATTCAGCGAGGACTTCATGGCCGACCCGACCTCCCCATGGTCCTGGCGCTGCGAAGCCGAGCATGCCGGCGGCGCCCTGGCTGACCTGGGCAGTCATTTGCTGGCCATGGCTCGTTACCTGCTGGGCGCTGTCGATTCGGTGTGTGCCGACAGCCAGACCGTCCACAACCGACGTCCGGCCAGCGCCGGCGCGATCGAACAGCGGGTCATTGCAGTTGACGACCAGGTCCAGGCGCTGCTGCGCTTCACCAGCGGCGCCCGGGGCTCGGTGAGCAGCAGTTGGCTCAAGCACGGCTACAAGAACCACTTGAGCTTCGAGATCAGCGGCACCCTCGGGACGCTGGCCTTCGATCAGGAACGACTGAATGAATTGCGCCTGTGCCGCGCCGGCCAGGCAGGTTTCCAGCGACTATTGGCCGGCCCCGACCTGCCGGGCTACGCCGCCTTCAGCCCGGCGGCCGGGCACCAGCTGGGGTACAACGAACTGAAGACATTGGAAGTCCAGGAGCTGGTCATGGCCCTCGCGGGCGATGGCGGCAACGGGACGGATTTCGAAGAAGCCTGGGAAGTCGAGCGCCTGGCGGCGGCGATTCGCACAGCGGCGCGGGAGGAGCGCTGGGTGAAGGTCAGGGAGCTCTAAMRELGIGLIGTGFMGRAHALAFHNAKAVFDLPLNLKLAALADADPLRARQCAQSWGFETAHSDWQQLIDDPNVQLIAITTPNHLHFPMAMAALAAGKPVYCEKPLAVSLEQAERMRQAAKAAGVVTRVGYNYQHNPIIRLAREMIQRGELGQIVSFQGEFSEDFMADPTSPWSWRCEAEHAGGALADLGSHLLAMARYLLGAVDSVCADSQTVHNRRPASAGAIEQRVIAVDDQVQALLRFTSGARGSVSSSWLKHGYKNHLSFEISGTLGTLAFDQERLNELRLCRAGQAGFQRLLAGPDLPGYAAFSPAAGHQLGYNELKTLEVQELVMALAGDGGNGTDFEEAWEVERLAAAIRTAAREERWVKVRELNANANANANA
D1-35_042261440hypothetical proteinATGACTGACGTGCCAACCTCGATTCCCCGTTCCGCCGATGTCCTGATCATCGGCGGTGGCCTGAGCGGTGCCATGTTGGCGGCGCAACTGCTGCGCCTGCCAGGCCAACGCGAAGTGTTGATTGTCGAGCCGCGCAGCGAGTTGGGCCGGGGCGAGGCCTACAGCGCGGTGGAGCTGGGCCACACCTTGAACGGTAACGCGGCGCGCATGAGTGTCGACCCGGACAACGCCGACGATTTGACCCAATGGCTCACCACGTTCATCGAAGCCGGCGGCTGGCCCGAGTCGGATCAGCAACACGTGCCGATCAGCGAGCTGTTTCCGCCCCGAGGAATGTTTGGCCTCTACGTACAGCAACGTCTAGCCGAAGCTCGCGAATCGGGCGCACAGAACGGTTCGACCGCCGAGCATGTGCGCGGGGAAGCCGTGGACCTGCGGCTTGCCGACGGTGGCGTGATGGTGACGCTGGGCGACGGCCAGGTCTTGCATGGCCGTTTTGCGGTGCTGGCCACCGGCATGTTCCCGGCGGCGCGCACCCCGCAGACCGAGTCCAGCGGCTTGAACGCCGCAGCCCTCGATCCTTGGGATGTGGCCGTGATGCGCCATCTCGATCCGCAGTCCACGGTACTGATCATTGGCTCGGGACTGACCATGGTCGATGCCGTGGTGTCTTTGGAGCAGGCCGGGCACCGTGGGCCGATCGAAGTGTTTTCCCGCCATGGCCTGTTGCCTCACGTGCGTCGCCAGCCACCGGCCTGGGTGGATTTCCTCGCCGAAGATCACAACTTGCGTTCGCCATTGCAGTTGATGCGTGCGCTGCGCGAGCAGTGCCGTAAAGCCGAGGCCGAGGGGATCGATTGGCAGGCGCCGCTGGATACCGTGCGCGCGCACATCGGGCGTTTGTGGAACCAGGCCAGCGACGTGCAACGTCGACAGTTCGTCCGGCATGTGCGGCCGTGGTGGGAAAGCCACCACCATCGCTCGCCGCCGTTGAGCGCGGAACTGGTGGCGCGTCTGCATGGGGAAGGGCGGTTGCGGATTCAGGCGGCGTCGTACAAGGGGCTGGTATCGGCTGGCGAAGGATCAGTGGCAATCAACATTCGCCGACGGGGCGAGGCTGGACTGGAAGTGGTGCAGGGCGCCGCGTTGATCAACTCCAGTGGTATCGAATACGATTGGCGCCGGGTTGCGCGACCGTTGCCGCAGCAGTTGCTGGCACGAGGTCTGGTCCTGCCCGGTCCCTTGGCACTGGGCATCGCCGCGCGTGCAGATGGCGCGGTGTTGGACGCCCTTGGCGAGCCGGCCAGTCGCCTGTTTGCCATGGGCCCGCCATTGCGCGGGGTGTGGTGGGAAAGCACCGCCGTGACGGATGTCGCGAGCCAGGCCAAGACGCTGGCCGCGCGCTTGATTGAGTTACAAACCCAAAAAAATTCAGACTGAMTDVPTSIPRSADVLIIGGGLSGAMLAAQLLRLPGQREVLIVEPRSELGRGEAYSAVELGHTLNGNAARMSVDPDNADDLTQWLTTFIEAGGWPESDQQHVPISELFPPRGMFGLYVQQRLAEARESGAQNGSTAEHVRGEAVDLRLADGGVMVTLGDGQVLHGRFAVLATGMFPAARTPQTESSGLNAAALDPWDVAVMRHLDPQSTVLIIGSGLTMVDAVVSLEQAGHRGPIEVFSRHGLLPHVRRQPPAWVDFLAEDHNLRSPLQLMRALREQCRKAEAEGIDWQAPLDTVRAHIGRLWNQASDVQRRQFVRHVRPWWESHHHRSPPLSAELVARLHGEGRLRIQAASYKGLVSAGEGSVAINIRRRGEAGLEVVQGAALINSSGIEYDWRRVARPLPQQLLARGLVLPGPLALGIAARADGAVLDALGEPASRLFAMGPPLRGVWWESTAVTDVASQAKTLAARLIELQTQKNSDNANANANANA
D1-35_04227576sutR_2COG1396HTH-type transcriptional regulator SutRATGAGCAATATAGTGCACAAAGATAATGGCCAGCGGGCATCGGTCCTGCAACACGTCAGCCAGAACGTCCGTCGCCTGAGGCATGCCGCGCAGCTCAGCCAGACGGCGCTGGCCGAGCTGTCCGGGGTCAGCCGGCGGATGCTGGTCGCCATCGAAGCTGGCGAAAAAAATGTCAGCCTGACCACTCTGGACCGTGTCGCCGAAGCGTTGGATGTGGCCTTCAGCGATTTGATCCAGGCTCCGGATGCCCGCGACCCGAGCCGTATCAATGAGCTGGCCTGGGCCGGCGTGATTCCAGGCAGCAAAGCCGTATTGTTGGCCAAGGCCACCGCCAACCGCGAAGTGGAACTTTGGGAATGGCGCCTGGAGCCCGGCGAGCATTATGTCTCGGAGCCTGACGCGGACGGCTGGAGCGAGCAGCTTTATGTATTCGAAGGTTGTTTGACGCTACTGCTGGGCAGCGAGGAGCGTCGAATCGAGGCCGGTGAATTTTTCATGTTTGCCAGCAACCAGCCCCATGCCTATCGCAACAACGATTTGGTGGCGGCGCGGTTTGTGCGCAATGTGGTGATCTGAMSNIVHKDNGQRASVLQHVSQNVRRLRHAAQLSQTALAELSGVSRRMLVAIEAGEKNVSLTTLDRVAEALDVAFSDLIQAPDARDPSRINELAWAGVIPGSKAVLLAKATANREVELWEWRLEPGEHYVSEPDADGWSEQLYVFEGCLTLLLGSEERRIEAGEFFMFASNQPHAYRNNDLVAARFVRNVVINANANANANA
D1-35_04228933hypothetical proteinATGGCATTGGTGAACTCCCCGCAAGCTTCCTCCCGTTTCTCACGGTTCAGCAAGGCCGAATGCGTGCTGGTGCTGATCACGATGATCTGGGGCGGGACATTCCTGCTGGTCCAGCACGCGATGACCGTCAGCGGACCGATGTTCTTCGTAGGCTTGCGCTTTGCCGCTGCGGCGGCATTCGTTGCGCTGTTCTCCTGGCGGCACCTGCGCGACCTGACCTGGTTCGAACTCAAGGCCGGAGCCTTCATCGGTGTGGCGATCATGCTCGGCTATGGCCTGCAGACGGTCGGCCTGCAAACCATCCCCAGCAGCCAATCGGCCTTCATCACCGCCCTCTACGTACCCTTCGTGCCGTTGTTGCAATGGCTGGTGCTGGGCCGCCGACCAGGGTTGATGCCGAGCATCGGGATCATGCTCGCGTTCACCGGGCTGATGCTGGTGTCCGGCCCGGCCGGCGCGTCGCTGAATTTCAGTCCGGGGGAAATCGCCACCCTGATCAGCGCCATCGCGATCGCCGCCGAGATCATACTGATCAGCGCTTATGCCGGCCAGGTGGATGTGCGCCGGGTCACGGTCGTGCAACTGGCCAGTACCGCCGTGCTGGCGTTTCTGATGGTGGTGCCGACCCGGGAAGTGATTCCCGGTTTTTCCTGGCTGCTGCTGATCAGCGCCGTAGGCCTGGGCGCCGCCAGCGCGGCGATCCAGGTGGCAATGAACTGGGCCCAGAAAAGCGTCTCGCCGACCCGCGCCACGCTGATCTATGCCGGCGAACCGGTGTGGGCGGGTATTGCCGGGCGCCTGGCCGGCGAACGGTTGCCGGCGATCGCCCTGGTGGGCGCCGGGTTGATTGTGGCGGCGGTGATCGTCAGTGAGCTGAAGACTCGAAGCAAAGCCGGTGTCGAAGTGGACAAGGTGCTTGAGCGCGAGCAGTAAMALVNSPQASSRFSRFSKAECVLVLITMIWGGTFLLVQHAMTVSGPMFFVGLRFAAAAAFVALFSWRHLRDLTWFELKAGAFIGVAIMLGYGLQTVGLQTIPSSQSAFITALYVPFVPLLQWLVLGRRPGLMPSIGIMLAFTGLMLVSGPAGASLNFSPGEIATLISAIAIAAEIILISAYAGQVDVRRVTVVQLASTAVLAFLMVVPTREVIPGFSWLLLISAVGLGAASAAIQVAMNWAQKSVSPTRATLIYAGEPVWAGIAGRLAGERLPAIALVGAGLIVAAVIVSELKTRSKAGVEVDKVLEREQNANANANANA
D1-35_042291500hypothetical proteinATGGAACTTAAACCCAAGCTCCAGGATTACACTGAAACCGAGTTTCAGGCGCTCGTAGGAAAAATCTGGAATGTCGACATGGGCAAAGAAGAGCATGACCGACTGATCAACCACTTCGACCGAATCGTCGGGCACCCCAAAGGTGCGGACCTGTTGTTTTACCCCGAAGACACCGAGAATACGAACGCCCCGGAAACGATTGTCCACTTCGTAAAACAGTGGCATTTCAAAAAGAACGTTATTCCCTTCAAGGGCGGGGTACTGCCTGCCCCGGCCAAGCCCGCACCCCGCTTGAGCATGGCGCAACACGCGACGGCAAGGGCCAAGCGCGAGCTTGCCAATGCACAGCGGTTGGCCTCGGACATCACCGCCGCAGAGCAGACGGTTGAAAAGGCCTTTACCCAGCTGCAGCTTATTACCCAGCAACGACAAAACCAACCCGATGCAGAGCAGACGCTGGACGCACTCAAGCAGGCGATGCGGCGACTGGAGCAGGCACAACACGAAGTGGTCATCGCCGTTCACACGTTTGAGCGCTATAAAATGCGTGTCGAGTTCGCCTTGAGTGGCGCCCAGCGTGATCTCACCTATAACAAAGCCGACCAAGCGCTCTGGCAAGCGAATGCACGGCAGGCCACCGCCAATCATGACCGTTATCTTGCGCGTTTGTCCTCTATCGCTCAGCGCAATGCCGTTCTTCATGCCGCCGCTGAAGCGGTACTGGAGCGTTCCTCGCAGCAACTCATGCGGTTACGCGGGCAGGACAACGGCTCGGTGTTGTTTCGTATGTCCGCGATCCAGGATATGAGGCGTCCGAATCTGCTGCTAAGCGACGCGCCGCCGCTAAGAACCAGTCAACAGGTGGACTTGCAAAAATCCATTCGTTCAGCTGTCGCCGAGTTCAATTGGCTGATGACGCATCCAGAACAGGCACACACCGGGCAATATGCCGGAGTCCTTAGTTTTGATCTTGTCAGTCGAACCAAAGAAGTGCGTTTTGGCCTGTGTGTTGCGCTGGCCGAGATGTCTGCAATCGAACAAGACTGGCAGGCTCTCGCCGCACGGAAGGGCGAGGTGGAGTTGCCGTTGCGAATGGGCACGGCAATGATCGCGACAAAACCCGGCAGCCATTTCAGGGGCCTGAAAGAAATACGTGAGCTTTTTCAGATATACATCACGCCTGCCACCGGTGTGTTGCCGTCCAAGGTGCGCGTGAGGTTGGCGGTTTGGGATGGAGCTGGACGGTTTTTTCGCTTGACCACGGACGGCCCGCAACCACGAGTGCTCGAATGGACCTTCGCAGACTCCATGGAGGCGTCGATGGCATCCGAGCAAAATCGACTCGATTCTGCCGGTTTTATTCACTCATCGCCGGTACCGACGTTGGAATCCTTCGACTCCATTGGAGAGGTTGGATTTGATGACTACGTCGTGGTATTTCCCCAAGACTCGGGATTGGAGCCGCTCTATGCTGTGTTCAACGAGCGTCGCGACTCGTGAMELKPKLQDYTETEFQALVGKIWNVDMGKEEHDRLINHFDRIVGHPKGADLLFYPEDTENTNAPETIVHFVKQWHFKKNVIPFKGGVLPAPAKPAPRLSMAQHATARAKRELANAQRLASDITAAEQTVEKAFTQLQLITQQRQNQPDAEQTLDALKQAMRRLEQAQHEVVIAVHTFERYKMRVEFALSGAQRDLTYNKADQALWQANARQATANHDRYLARLSSIAQRNAVLHAAAEAVLERSSQQLMRLRGQDNGSVLFRMSAIQDMRRPNLLLSDAPPLRTSQQVDLQKSIRSAVAEFNWLMTHPEQAHTGQYAGVLSFDLVSRTKEVRFGLCVALAEMSAIEQDWQALAARKGEVELPLRMGTAMIATKPGSHFRGLKEIRELFQIYITPATGVLPSKVRVRLAVWDGAGRFFRLTTDGPQPRVLEWTFADSMEASMASEQNRLDSAGFIHSSPVPTLESFDSIGEVGFDDYVVVFPQDSGLEPLYAVFNERRDSNANANANANA
D1-35_04230276imm_3Colicin-E7 immunity proteinATGATCTTTAAAGAAGCGCTGGAAGATTATACCGAGCTGGAATTTTTATCCTTTCTCGGGGAGCTATTCCATCATACGAGTGATCTTAAAGGGCAGGAGCTGGGGAAGTATCTGGATAAACTGGTTGATCATTTCGAACTTATTACAGAACACCCCGACGGTTCAGATGTTCTCTTCTACCCAAAGGAGGGCCAGGAAGACAGCCCCGAAGGCATCCTGAAAGAAGTCAAGGAATGGCGCGCCCGCAATAACAGACCCGGCTTCAAACCGGAATAGMIFKEALEDYTELEFLSFLGELFHHTSDLKGQELGKYLDKLVDHFELITEHPDGSDVLFYPKEGQEDSPEGILKEVKEWRARNNRPGFKPENANANANANA
D1-35_042312577hypothetical proteinATGGCAAAGCGAACATTCAGCGATGGATCAGATGGAACGGTAGTCATCAGACCGGGGCGCCCCTCATCGGGCGGCGGTTCCGGCGGAGGGTATGGCGGCGGCTTCGGAGGAAACCGCGTCGGAGCAACAGGCGGTCCCAAGCGTTCAGCCAGGGGGATGAAAAAGCGGCGGCAAGCGACGCTCAAGCGCCAGGCCGAGGAAGCGAATGCCGCTGCAAAAGTGAAAGCAGACTCTGTGAAAGCCAAGGCTGCGGCTGCCGCAAACGCCAATGAGCAGGCACGCCAACAAGCACTGGCGACCATGGTGCAACGCCACACCTCCACCCGGGCCGAGGTGGATCGAAACTTCGCGAATAAAAAGCAACAACTCGAGACGTCGCTTCAAAAGGAAATTTCGGCAGCAAAACGGCCACCCGCCTCGAACTCGACCGAGCGTTGGCAGCTTTACACCATCACCAGAGAAAAAAGCGAAATCGACGGGCTGATCGCCCGCAAGACCCAGGAACTCAACGCCAGGAAACTCGCTGCCCGCGTCTTTGATGGACAGGATCCGCTCATACGTTCGGTGAACGACTACCGCACGCGACTGGATCAGTTCGGCGCCGCGCTCGATGACGGTCATCGACTCTGGGAGCAGAGTTACACCGCGGCCCAAGAGGCGCGGCTGCTGTCCGAGCTGATCAGGGCCTTGAGCGAAAAATCCGGCACGCTGGCCCGATACCATGCCGAACAGACGGTGGTGTGGCGTGAACGGGAAGCTGTCTGGGAGCGCCAGCGTCAATACGCCGAACAACGGGCGGCGCGGATCCGCTTCAAACAGCAAGTTGATGAAAGCACGCGGCTGGAGAGGTTCCGGCAAGTCCATACCCTGAGCATACCTGCGCCTTCGTTGACTGCGGGCGGCATGGTACTGACCCGTGACGCCGTGTTCGTCGGCCAGCAAGCCGCAGCGGTGTTGGAACAGGCTGTCGCCACTTCCGTCGAAACGCTCAAGGACTACGGGCGGATCCTCGCCAGAACGGGGCCGGTCTTCGTCACGGCGATGGTTTACTCACCAACGCTGGGCGACGGCGAACTGACTTCAGAACAACGCAGCCGCCTGTTCCAAGGCGTCGGCGTACCGGCGCAAGCGCTCGGTCTCACCGACGGACCCGCGCTGCAATCGATTGCTGATGCAGGCGGTTCGGTTGAGTTGGCGTACCGGCTCAAGCCGCAAGTTGTGGCTGAAGGCACAGCGCTTAACATTGCCAGCACCGGCGACACCATCGGCGCTCATGTTCCCGTCATCAACGCGCAATTTGATCCGCTGACCGGCCTCTACAACGCAGAAGTCCCCGGCTCACCGACCCGACACCTGCAATTTACCGCCGATGCCGCCAGCCAGGCGATGCCTGCAAGCCAACCGGTTCTGACGGCGATGGCGCCTCAGGTGGAGACCTTGCCAGCGGGCGTGGACCTGCGCATTCAAGACTGCATCGTCTGCGTTCCCGGTTTGCCACCGACCTATTTCTCATTCGATTTGCCGCCGCTGGGCTCGGGCATCGTCACGGGCGCCGGCAAGCCGGCTGCGAATGATTGGTGGAGCACGGCCAGCCAGCCCCAAGGCGCGGCCATTCCCGAGCAAGTCGGTCATCAGATGCGGGCGCAGCCAATAAAGTCCTTCAGTGCCTTCGACCAGGCACTGTGGCGCGCCCTCGCCGAGCACCCAACGCTGTCGGTGTCGGGCAACGCCGACGAAATCAACAAAAAACGCATCGAACGCGGCTTTGCCCCCTATGCGCCGAAAAGCACGTGGGTCGGCGAGCGTCGCGAATTCGAACTGCGTTATCAGAACCGGGCCGAGCTGGGTGAAAACCCTTTCAATCTCGACCGCATCAGCATCGCCACGCCAAACAGCCTGCTGGGCAGGCCGGGCATCGTACCGGCTGTCATCCCCTGGCCCGCGCCTCCAATCGGCAAAGGGACCCGGACACCCCTGGTCCCGCCGGGCATCGAACAGCTTGGTCCGACCACCTCACCGATTACACCGCCACTCTCGTCGGTATATCCCGGCAATCCTGTCATCCCGGTCCTACCGGAAAACGAGACGTTTCCGGCTGTTGATCCGGGGCAAGTCGGTGCCAATATTCCTGGGTATCCGGGCGATATGGAGCTGCCTTCGCCGGATGCGCTGTTTTATGACCGGCGGGATGATCGTGGCGTGGCGCTCGGGTTTGGGCAGCCAGTCTCAGGCATTTGGTTGGGGGAGGCGGCGAGGACAACCGGCGCACCTATTCCTGATCGGATTGCGGATCAGTTGAGGGGGAGGGAGTTTGCGAACTTTCATCGGTTCAGGGAGGCAGTTTGGAAGGCCGTGGCGGCGGATGTGGAGCTGGGTCAGCAATTTACCGGCATCAATTTGGATAGGATGCGAAATGGCCAGTCACCATACTCCATAAGAAAGGACCAAGTAGGAGGACGAAAAGTATTTGAACTCCATCATGAGATTGAAATTTCAAAAGGTGGTGATGTGTATAACGTGGACAACATTCGTGTACTTACGCCCAAGCGTCACATCCAACACCACAGGGAGGGTTAAMAKRTFSDGSDGTVVIRPGRPSSGGGSGGGYGGGFGGNRVGATGGPKRSARGMKKRRQATLKRQAEEANAAAKVKADSVKAKAAAAANANEQARQQALATMVQRHTSTRAEVDRNFANKKQQLETSLQKEISAAKRPPASNSTERWQLYTITREKSEIDGLIARKTQELNARKLAARVFDGQDPLIRSVNDYRTRLDQFGAALDDGHRLWEQSYTAAQEARLLSELIRALSEKSGTLARYHAEQTVVWREREAVWERQRQYAEQRAARIRFKQQVDESTRLERFRQVHTLSIPAPSLTAGGMVLTRDAVFVGQQAAAVLEQAVATSVETLKDYGRILARTGPVFVTAMVYSPTLGDGELTSEQRSRLFQGVGVPAQALGLTDGPALQSIADAGGSVELAYRLKPQVVAEGTALNIASTGDTIGAHVPVINAQFDPLTGLYNAEVPGSPTRHLQFTADAASQAMPASQPVLTAMAPQVETLPAGVDLRIQDCIVCVPGLPPTYFSFDLPPLGSGIVTGAGKPAANDWWSTASQPQGAAIPEQVGHQMRAQPIKSFSAFDQALWRALAEHPTLSVSGNADEINKKRIERGFAPYAPKSTWVGERREFELRYQNRAELGENPFNLDRISIATPNSLLGRPGIVPAVIPWPAPPIGKGTRTPLVPPGIEQLGPTTSPITPPLSSVYPGNPVIPVLPENETFPAVDPGQVGANIPGYPGDMELPSPDALFYDRRDDRGVALGFGQPVSGIWLGEAARTTGAPIPDRIADQLRGREFANFHRFREAVWKAVAADVELGQQFTGINLDRMRNGQSPYSIRKDQVGGRKVFELHHEIEISKGGDVYNVDNIRVLTPKRHIQHHREGNANANANANA
D1-35_042322925ndhBNAD(P)H-quinone oxidoreductase subunit 2, chloroplasticATGTCACTGATAGTTCTATTGCTTTTGCCCTTTATCGGCAGCTGTGTCGCGGCGCTGTTACCGCATAACGCCCGTAACGCCGAATCGCTGCTGGCCGGCCTCGTAGCCCTGGCCGGCGCTGTTCAGGTGGCCTTGTGGTACCCGCAGATCGCCGATGGCGGCGTAATCCGTGAACAATATGATTGGCTGCCAAGCCTCGGCCTGAATTTCGTGCTGCGCCTGGACGGTTTTGCCTGGCTGTTCTCGTTGCTGGTGCTGGGCATCGGCACGCTGGTGTCGTTGTATGCCCGCTATTACATGTCGCCGGAAGATCCGGTGCCGCGTTTCTTCGCGTTTTTCCTCGCGTTCATGGGCGCGATGCTCGGGCTGGTGATCTCCGGCAACCTGATCCAGATGGTGTTCTTCTGGGAACTGACCAGTCTGTTCTCGTTCTTGCTGATCGGCTATTGGCATCACCGCGCCGACGCCCGACGCGGCGCCTACATGGCGTTGATGGTGACCGGTGCCGGCGGGCTGTGCCTGTTGGCCGGTGTGATGCTGCTCGGCCATGTGGTGGGCAGCTATGACCTGGACAGGGTCCTGGCCGCCGGCAACCTGATTCGTGACCACGCCCTCTACCCCGTCCTGCTGCCGCTGATCCTGATCGGCGCCTTGAGCAAAAGTGCTCAGTTCCCCTTCCACTTCTGGCTTCCCCACGCCATGGCCGCACCCACACCGGTGTCGGCGTACCTGCACTCGGCAACCATGGTCAAGGCCGGTGTCTTCCTGTTGGCGCGGCTGTGGCCGTCATTATCGGGCAGCGAGCAATGGTTCTATATCGTCGGCGGCGCGGGGGCCTGCACCCTGGTGCTGGGCGCCTACTGCGCGATGTTCCAGAACGACCTCAAGGGCCTGCTCGCCTATTCGACCATCAGCCACCTCGGGCTGATCACCCTGCTGCTGGGTCTCAACAGTCCGCTGGCGGCGGTGGCGGCGGTGTTTCATATCCTCAACCACGCCACGTTCAAGGCCTCGCTGTTCATGGCCGCCGGAATCATCGACCACGAAAGTGGCACGCGGGATATCCGCAGGCTCAGCGGCCTGGTGCGACTGATTCCGTTCACCGCCACCCTGGCGATGGTCGCCAGCGCGGCGATGGCCGGGGTGCCGTTGCTCAATGGTTTCCTGTCCAAGGAGATGTTCTTCGCCGAGACGGTATTTATCTCGGCCACCGCCTGGGTCGAACTGGCGTTGCCGATCATCGCCACCATCGCCGGCACCTTCAGCGTCGCCTACTCCCTGCGCTTTACCGTGGACGTGTTCTTCGGCCCCACCGCCAGCGACCTGCCTCATACGCCCCATGAACCGCCACGCTGGATGCGCGCGCCGGTCGAGGTGCTGGTATTCACCTGCCTGCTGGTGGGGATTTTCCCGGCCCAGGTGGTCGGCTCGTTGCTGGCTGCCGCCGCACTCCCCGTGGTGGGCGGCCCGCTGCCCGAATACAGCCTGGCGATCTGGCATGGGCTGAACGCGCCCATGCTCATGAGCCTGGTGGCGATGGCCGCGGGCATCGTCCTGTACCTGCTGCTGCGCAAGCAATTCAAGCAAGGCCAAATCAAGCATCCGCCGCTGATCGGCCGCCTCAGCGGCAAGCGCTTGTTCGAACGCTGCCTGGTGCTGATGATGCGCCACGGCCGCCGGCTGGAGCGCAAGATCAGCACTCGGCGCCTGCAGGCGCAACTGTTCCTGCTGGTACTGGCGGCGCTCCTGGCCGGGTTGATCCCGATGCTGCACAGCACGCTGGTCTGGGGCGACCGGCCGAAGATTCCCGGCTCCGTGGTGTTCGTCACCCTGTGGGTACTGGCGATCACCTGCGCCCTGGGCGCGGCCTGGCAAGCCAAGTATCACCGTCTCGCGGCGCTGACGATGGTCAGCGTCTGCGGCCTGATGACCTGCGTGACCTTCGTCTGGTTCTCGGCACCGGACCTGGCCTTGACGCAACTGGTGGTGGAGGTGGTCACCACGGTGCTGATCCTGCTGGGGCTGCGCTGGTTGCCCCGACGGATCGAGGACGTATCGCCCCGGCCCAACAGCGAACGGCGCGCGCGCATCCGGCGCCTGCGGGACCTGCTGCTGTCCGGCGCGGTGGGCGGCGGCATGGCGCTGCTGTCCTATGCCATGCTGACGCGCCAGACCCCCAACGACATTTCCTCGTTCTACCTCAGCCGCGCGCTGCCTGAGGGCGGCGGCAGCAATGTGGTGAACGTCATGCTGGTGGACTTCCGCGGCTTCGACACCCTGGGGGAAATCACCGTGCTGGCGGCTGTGGCCCTGGCGGTGTTCGCCCTGCTGCGGCGCTTCCGTCCACCGAAGGAAAGCATGCAACTGCCGGCGCAACAACGCCTGCTGGCGCCGGACGTGGTCACCGACCTGGTCAACCCGCGCCACGCCAGCGATACCGCGCTGGGCTTCATGATGGTGCCGTCGGTGCTGGTTCGCCTGTTGCTGCCGATTGCCCTGGTGGTGTCGTTCTATCTGTTCATGCGCGGCCACAATCAACCCGGCGGCGGTTTCGTGGCCGGGCTGGTGATGTCGGTGGCGTTCATCCTGCAATACATGGTCGCCGGCACCCAGTGGGTCGAAGCGCAGATGAGCCTGCGACCGCTGCGCTGGATGGGCACCGGGCTGCTGTTCGCCAGCGCCACGGGGTTGGGGGCGCTGGCGGCGGGTTATCCGTTCCTGACCACGCACACCTGGCATTTCGAATTGCCGCTGCTGGGGGATATTCACCTGGCCAGCGCGCTGTTCTTCGACATCGGCGTCTATGCCGTGGTGGTCGGTTCGACCCTGCTGATTCTCACTGCCCTGGCCCACCAGTCAGTGCGCGCCCACAAGCCGGGCCTGCACGCCAAACCCGTCGCCCCTCTCAAAGGAGCCAACGCCTGAMSLIVLLLLPFIGSCVAALLPHNARNAESLLAGLVALAGAVQVALWYPQIADGGVIREQYDWLPSLGLNFVLRLDGFAWLFSLLVLGIGTLVSLYARYYMSPEDPVPRFFAFFLAFMGAMLGLVISGNLIQMVFFWELTSLFSFLLIGYWHHRADARRGAYMALMVTGAGGLCLLAGVMLLGHVVGSYDLDRVLAAGNLIRDHALYPVLLPLILIGALSKSAQFPFHFWLPHAMAAPTPVSAYLHSATMVKAGVFLLARLWPSLSGSEQWFYIVGGAGACTLVLGAYCAMFQNDLKGLLAYSTISHLGLITLLLGLNSPLAAVAAVFHILNHATFKASLFMAAGIIDHESGTRDIRRLSGLVRLIPFTATLAMVASAAMAGVPLLNGFLSKEMFFAETVFISATAWVELALPIIATIAGTFSVAYSLRFTVDVFFGPTASDLPHTPHEPPRWMRAPVEVLVFTCLLVGIFPAQVVGSLLAAAALPVVGGPLPEYSLAIWHGLNAPMLMSLVAMAAGIVLYLLLRKQFKQGQIKHPPLIGRLSGKRLFERCLVLMMRHGRRLERKISTRRLQAQLFLLVLAALLAGLIPMLHSTLVWGDRPKIPGSVVFVTLWVLAITCALGAAWQAKYHRLAALTMVSVCGLMTCVTFVWFSAPDLALTQLVVEVVTTVLILLGLRWLPRRIEDVSPRPNSERRARIRRLRDLLLSGAVGGGMALLSYAMLTRQTPNDISSFYLSRALPEGGGSNVVNVMLVDFRGFDTLGEITVLAAVALAVFALLRRFRPPKESMQLPAQQRLLAPDVVTDLVNPRHASDTALGFMMVPSVLVRLLLPIALVVSFYLFMRGHNQPGGGFVAGLVMSVAFILQYMVAGTQWVEAQMSLRPLRWMGTGLLFASATGLGALAAGYPFLTTHTWHFELPLLGDIHLASALFFDIGVYAVVVGSTLLILTALAHQSVRAHKPGLHAKPVAPLKGANAPGPT0013830_138DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013830-phaA-K05559NANA
D1-35_04233345mnhC1COG1006Na(+)/H(+) antiporter subunit C1ATGGAAGAAGTCATCGCAATCGCAATCGGCGTACTGGCCGCCTCCGGCGTCTGGCTGGTGCTACGGCCGCGGACCTTTCAAGTGGTCATGGGCCTGTGCCTGCTGTCGTATGGCGTCAACCTGTTCATCTTCAGCATGGGCAGCCTGTTCATCGGCAAGGAGCCGATCATCAAGGACGGCGTACCCCAGGACCTGCTGCACTACACCGATCCGTTGCCCCAGGCCCTGGTACTGACCGCCATCGTGATCAGCTTCGCCATGACTGCCTTGTTCCTGGTAGTCCTGCTCGCGTCCCGGGGCCTGACCGGCACCGACCATGTGGACGGCCGGGAGCCGAAGGAATGAMEEVIAIAIGVLAASGVWLVLRPRTFQVVMGLCLLSYGVNLFIFSMGSLFIGKEPIIKDGVPQDLLHYTDPLPQALVLTAIVISFAMTALFLVVLLASRGLTGTDHVDGREPKEPGPT0013835_402DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013835-phaC-K05560NANA
D1-35_042341686mrpDCOG0651Na(+)/H(+) antiporter subunit DATGACGTTGACGCCACACTTGATCGCCGCGCCCATCCTGCTTCCGTTGCTGACCGCCGCGGTGATGCTGATGCTCGGCGAGAAGCACCGCCCGCTCAAGGCGCGGATCAATCTGTTCTCCAGCCTGCTGGGCCTGGGCATCGCCGTGCTGTTGTTGCACTGGACCCAGGAGCAGGCGCTGCCCGCTTCCATTGGCGTCTATCTGCCCGGTAACTGGCAGGCGCCGTTCGGCATCGTGCTGGTGGTCGATCGCCTGTCAGCGCTGATGCTGGTGCTGACCGGCATCATCGGCGTCTGCGCGCTGCTGTTCGCCATGGCCCGTTGGGACCGGGCCGGGGCGAGTTTCCATGCGTTGTTCCAGATCCAGCTGATGGGGCTTTATGGGGCCTTCCTCACGGCGGACCTGTTCAATCTGTTCGTATTTTTCGAGGTGCTGCTGGCGGCGTCCTACGGCTTGATGTTGCATGGATCGGGCCGGGCGCGGGTGTCGTCCGGGCTGCACTACATTTCCATCAACCTGCTGGCCTCGTCGCTGTTCCTGATTGGCGCAGCCCTGATCTACGGCGTCACCGGGACCCTGAACATGGCCGACCTGGCCCTGAAGGTGCCCCTCGTGCCGGAAGCCGACCGCGGCCTGCTGCACGCCGGCGCGGCGATCCTTGCGGTGGCGTTCCTGGCCAAGGCCGGCATGTGGCCGCTGAATTTCTGGCTGGTGCCGGCCTACAGTGCAGCCAGTGCGCCGGTGGCGGCACTGTTTGCGATCATGACCAAGGTCGGCGTCTACACCATCCTGCGGCTGTGGACCTTGCTGTTTTCCGGGCAGGCCGGCGCCTCGGCCTATTTTGGCGCTGACTGGCTGGTCTACGGCGGCCTGGCAACTATCGCCTGCGCGGCCATCGCCATCCTCGCGGCCCAGCGCCTGGAGCGCATGGCCAGCCTGAGCATCCTGGTCTCGGCCGGCATCCTGCTCTCAGCCATCGGTTTTGCCCAGCCAAACCTGGTGGGGGCGGCACTGTTTTACCTGGTGAGCTCGACCCTGGCGCTGTGCGCGCTGTTCTTGCTGGCCGAGTTGATCGAGCGTTCACGCTCGGCCAATGATCTGCCGCTGGAAGACGATCTCGACAGCCTGCCGCGCCCACTGGAATCGCTGCAGCCGCCCAAAGGCATCAACCTCGACGACGAACAGAAAGCCGTAGTCGGCCAAGTGATCCCCTGGACCATGGCCTTCCTCGGCCTGAGCTTCATCGCCTGTGCGCTGCTGATTATCGGCATGCCACCGCTTTCGGGCTTCATCGCAAAACTCGGGCTGCTCAACGCGTTGCTCAACCCCCAAGGGCTCGGAGCAAGTACCGACACGCCCGTCTCTGCCGCCGCCTGGGGCCTGTTGGCGCTGTTGATCCTGTCCGGGCTCGCCGCGCTGATCGCCTTCTCGCGCCTGGGCATCCAGCGCTTCTGGACGCCACAGGAGCGGCCGTCGCCACTGTTGCGGCCGTTCGAATGCGTGCCGATCATCGCGCTGCTCGGCCTCGGAATCGCCCTGACCTTCAAGGCCGAGCCGCTGCTGCGCTACACCCAGTCCGCCGCCGACGCGCTGAACACACCTGAACATTATGTGATGGCGGTGCTTGCCACCCGCGCCGTCCCCAACCCACAAGCCGACACCGAAGTGCAGGCGGTGCAACCATGAMTLTPHLIAAPILLPLLTAAVMLMLGEKHRPLKARINLFSSLLGLGIAVLLLHWTQEQALPASIGVYLPGNWQAPFGIVLVVDRLSALMLVLTGIIGVCALLFAMARWDRAGASFHALFQIQLMGLYGAFLTADLFNLFVFFEVLLAASYGLMLHGSGRARVSSGLHYISINLLASSLFLIGAALIYGVTGTLNMADLALKVPLVPEADRGLLHAGAAILAVAFLAKAGMWPLNFWLVPAYSAASAPVAALFAIMTKVGVYTILRLWTLLFSGQAGASAYFGADWLVYGGLATIACAAIAILAAQRLERMASLSILVSAGILLSAIGFAQPNLVGAALFYLVSSTLALCALFLLAELIERSRSANDLPLEDDLDSLPRPLESLQPPKGINLDDEQKAVVGQVIPWTMAFLGLSFIACALLIIGMPPLSGFIAKLGLLNALLNPQGLGASTDTPVSAAAWGLLALLILSGLAALIAFSRLGIQRFWTPQERPSPLLRPFECVPIIALLGLGIALTFKAEPLLRYTQSAADALNTPEHYVMAVLATRAVPNPQADTEVQAVQPPGPT0013840_106DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013840-phaD-K05561NANA
D1-35_04235489hypothetical proteinATGAAGCGGCTGTTTCCCGCACCCTGGTTGTCGCTGGCGTTGTGGCTGCTCTGGCTGCTGTTGAACCTGTCCGTCAGCGCCGGCCATCTGCTGCTGGGCGCGGCGCTGGGCTTCCTGGCGCCATTGATGATGCGTCCGCTGCGGCCGCGGCCCATTCGCATCCGCCGGCCCTGGGTCATGCTGCGGCTGTTCCTGCTGGTGGGGCGCGATGTGCTGGTATCCAACCTGGCCGTCGCCTGGGGCGTACTGAATGCCGGACGCCGCCCGCCTCGCTCGCGTTTCGTCAAGGTGCCGCTGGACCTGCACGACGCCAATGGCCTGGCGGTGCTTTCAATGATCACCACGGTGATTCCCGGGACGGTCTGGTCGGAGCTGGCGCTGGACCGCAGCATCCTGTTGATGCACGTGTTCGATCTGGAGGACGAAGGCGCATTCATAGCGCACTTCAAGGCCACCTACGAGCGCCCGTTGATGGAGATTTTCGAATGAMKRLFPAPWLSLALWLLWLLLNLSVSAGHLLLGAALGFLAPLMMRPLRPRPIRIRRPWVMLRLFLLVGRDVLVSNLAVAWGVLNAGRRPPRSRFVKVPLDLHDANGLAVLSMITTVIPGTVWSELALDRSILLMHVFDLEDEGAFIAHFKATYERPLMEIFEPGPT0013845_519DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013845-phaE-K05562NANA
D1-35_04236279hypothetical proteinATGAGCCCGTTGCTGTCCAATGCCATCCTGCTGGGCCTGTTCCTGTTCTCCCTGACCATGGTCCTGACCCTGGTGCGCCTGTTCAAAGGCCCCTCGGCGCAGGACCGGGTCCTGGCCCTCGACTACCTGTACATCGTCGCGATGCTGATGATGCTGGTGCTGGGCATCCGTTATGCCAGTGACACCTACTTCGAGGCCGCGCTGCTGATCGCCCTGTTCGGCTTTGTCGGCTCGTTTGCCCTGGCCAAGTTCCTCTTGCGTGGCGAGGTGATCGAATGAMSPLLSNAILLGLFLFSLTMVLTLVRLFKGPSAQDRVLALDYLYIVAMLMMLVLGIRYASDTYFEAALLIALFGFVGSFALAKFLLRGEVIEPGPT0013850_242DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013850-phaF-K05563NANA
D1-35_04237360hypothetical proteinATGAATGTCGAGCTGTCGATGTGGGTGGAAATTTCGGTGGCGATCCTGCTGGTGGCCAGCAGCGTGTTCGCCCTGCTCGGGGCAATCGGCCTGGTGCGGTTGAAGGATTATTTCCAGCGCATGCACCCCCCTGCCCTGGCGTCGACGCTGGGTGCCTGGTGCGTTGCCCTTGCCTCGATCATCTACTTTTCCGCGATCAAGTCCGGGCCGGTGCTGCATGCGTGGTTGATACCGATCCTGCTGTCCATCACGGTGCCGGTGACCACCCTGCTGCTGGCCCGGGCGGCATTGTTCCGCAAGCGTATGGCCGGCGATGACGTACCGGCGGAGGTAAGTAGTCGCGGGAATGAGCCCAATTAGMNVELSMWVEISVAILLVASSVFALLGAIGLVRLKDYFQRMHPPALASTLGAWCVALASIIYFSAIKSGPVLHAWLIPILLSITVPVTTLLLARAALFRKRMAGDDVPAEVSSRGNEPNPGPT0013855_490DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013855-phaG-K05564NANA
D1-35_04238438hypothetical proteinATGACGCTTTTATTGGCTCGGTCGCTGGTCGCAGTGTTTGCGACCATCAGCTTGTTTCATTTGTATTGGGCCCTGGGTGGGCGCTGGGCAGCCCTGGCGGTGGTACCGCAGGTTCCGGTGAAGCAGGGCGACACGCTGCGACCGGCGTTCAACCCGTCGGGATGGCTGACGCTGCTGGTGGCCCTTGCGCTGTTGATGATTGCGCTGCTGGTGTGCCTGCGGGTCGGGCTGATTTCGCCGCCCGTCACTCATCGCGCCTTGCAATGGCTGATCAGTGCCATTGCCTTGCTGATGTTCGCCCGGGCCATTGGCGAGTCGAACCTGGTGGGCTTCTTCAAGGAGGTCAAGGGCTCGACGTTTGCCCGGCTCGACACCTGGGTCTATTCGCCGTTGTGTGTCGTGCTGGGCGCGGGGTTGCTGACGGTGGCGTGGGCTTGAMTLLLARSLVAVFATISLFHLYWALGGRWAALAVVPQVPVKQGDTLRPAFNPSGWLTLLVALALLMIALLVCLRVGLISPPVTHRALQWLISAIALLMFARAIGESNLVGFFKEVKGSTFARLDTWVYSPLCVVLGAGLLTVAWANANANANANA
D1-35_042391017hypothetical proteinATGAAACGAGTTCGACAGTGGCTGGCTGCGTGCGCCACCACCCTCGCTGTGTTGGTTTCGCCACTTCCGGCATCCGCTGCTGCTTCGGCGCCGATCCACTTTGCCGACCTGAACTGGGAAAGTGGCAGCCTGATCACCGACATCCTGCGGATCATCGTCGAAAAAGGCTACGGGTTATCGACCGACACGTTACCGGGCACCACCATTACCCTGGAAACCGCCCTGGCCAACAACGATATCCAGGTGATCGGTGAAGAGTGGGCGGGGCGCAGCCCGGTGTGGGTCAAGGCCGAGGCCGAGGGCAAGGTGGTTGCCCTGGGCGATACGGTCAAGGGCGCGACCGAAGGTTGGTGGGTGCCGGAATACGTCATCAAGGGCGACCCGGCCAAGGGGATCAAGCCGCTCGCGCCGGACCTGCGCAGCGTCGAGGACCTGGCGCGCTACAAACATGTGTTCAAGGATCCTGAAAGCCCCGACAAGGGGCGCTTCCTCAACAGCCCCATCGGCTGGACGTCCGAAGTCGTCAACAAGCAGAAACTCAAGGCTTATGGTCTTTCCGACAGCTACGTGAATTTCCGCAGCGGTTCCGGGGCCGCGCTTGATGCGGAAATTACTTCTTCGATCCGCCGTGGCAAGCCGATCCTGTTTTACTACTGGTCGCCCACGCCGTTGCTGGGGCGTTTCAAACTGGTGCAACTGCAAGAACCACCATTCGATGCCGAGGCCTGGAAGACTCTGACCGACGCCGACAATCCGAATCCGAAACCGACTCGCTCCCTGGCCTCGAAGCTGTCGATCGGTGTGTCCGTGCCGTTCCAGAAGCAGCATCCGGACATCGCCGAGTTCTTCGGCAAGGTCGACCTGCCCATCGAGCCGCTGAACAAGGCCCTGGCCGACATGAGCGAGAAACGCACGCCGCCCCGCGAAGCCGCCGAGGCGTTCCTCAAGGCCCACCCACAGGTCTGGCAGGCCTGGTTGCCCAAGGACGTCGCCGACAAAGTCGCGGCGGGGCTGTAGMKRVRQWLAACATTLAVLVSPLPASAAASAPIHFADLNWESGSLITDILRIIVEKGYGLSTDTLPGTTITLETALANNDIQVIGEEWAGRSPVWVKAEAEGKVVALGDTVKGATEGWWVPEYVIKGDPAKGIKPLAPDLRSVEDLARYKHVFKDPESPDKGRFLNSPIGWTSEVVNKQKLKAYGLSDSYVNFRSGSGAALDAEITSSIRRGKPILFYYWSPTPLLGRFKLVQLQEPPFDAEAWKTLTDADNPNPKPTRSLASKLSIGVSVPFQKQHPDIAEFFGKVDLPIEPLNKALADMSEKRTPPREAAEAFLKAHPQVWQAWLPKDVADKVAAGLPGPT0013640_758DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013640-gbuC|proX-K02002NANA
D1-35_04240471hypothetical proteinTTGGCAGTAAGTAATCTCGACATGCACGCGTTATTTGTACTGGGTGACCTTCGGGCAAAGCTGGTCAAGCAATTCCAGTCACGTTTTGTCTACATCACCGAACAAACCGCCGAGGGCATCTATGTTGCCGAACTCGATACGGAATCGGCGCTGGTGGTTGATGACAAGCCTCGGCTTGAACTCAAGGTCGGTGATCATTTTCGCGCGGCGGTATTGCCAAGTCGCGAGGGTGGCAAGTTTGAAATCCGTTTTCGTGAAATCAAGTTGACGGTCTATGGCCTCGGTGACTATGCCTTCGTCACGACTGCCGATGGCCATGCGATTCTGTTCAAGGAAGGCCACAGCGTGTTGACCGTCTTCGCGGCCCACGAACAGTTGCAGGAAGGTTTGACCAAGACGCTGAAAGCGGTCACCGCCAAGGCCGCCAAATGGCGCAAGGGCGAACTCGTGACGTTCAAGGCCAGCGAATAGMAVSNLDMHALFVLGDLRAKLVKQFQSRFVYITEQTAEGIYVAELDTESALVVDDKPRLELKVGDHFRAAVLPSREGGKFEIRFREIKLTVYGLGDYAFVTTADGHAILFKEGHSVLTVFAAHEQLQEGLTKTLKAVTAKAAKWRKGELVTFKASENANANANANA
D1-35_04241261hypothetical proteinATGGGTACTTCCCCAACGTTGCTCCGCCCCCTTGATTCGCGTATTGCCCAAGCATATGAGCGCCCTGGTGCCGAGAACCACCTCGCAACGGCCCTGATCCTGCCGCGATACCGAGTCGTCCTGGCCGGGACGTGTTTTTTCCATATCGAAGAAACGGCGACTGGACGCGTAAGAGGTTTCCGCGCCGATCATAACGAAGCCTGCTACCTGGCCAGGCGCCTCGAACAGAACGCTTGCGTTTTATCCGCACCCCGTCCATGAMGTSPTLLRPLDSRIAQAYERPGAENHLATALILPRYRVVLAGTCFFHIEETATGRVRGFRADHNEACYLARRLEQNACVLSAPRPNANANANANA
D1-35_04242231hypothetical proteinGTGACGGAATTGGATATCGGCGAATTTTTCATCCGGGGCGAAGCCAGAGAGGTCGAAGGCGAGTTCCAGGCCGTCATTGTGATGCGCGCCAAATCACCTTCCAACGCTGTCACTTACCACCAGGTGGAGAAGGATCGCTGGTTCAAGACTACGGAAATTGCTGCCGAAGCCGCCAGGGATGCGGCAAAGGCATTGAAGCTCGCCGTGGATGAAGGTGCGTTGAAAGCTTGAMTELDIGEFFIRGEAREVEGEFQAVIVMRAKSPSNAVTYHQVEKDRWFKTTEIAAEAARDAAKALKLAVDEGALKANANANANANA
D1-35_04243237hypothetical proteinATGGAACAACCATCACACGAGCTCAAAACCCTGTTTGATCAATTGGGCCTGCCTTCGGAAGGCAGTGCCATCGACGACTTCATCATGGCACACCCGCTGGATCCGAACACCAAATTGGTCGATGCGCCTTTCTGGTCGGACCAGCAAAGAGACCTGCTGCGCGAATGGCTAGTCGCCGACGGTGAGGAAGCAGTGCTGGTGGATCAACTGAATGTGCGCTTGCACGACGGCAAGTAAMEQPSHELKTLFDQLGLPSEGSAIDDFIMAHPLDPNTKLVDAPFWSDQQRDLLREWLVADGEEAVLVDQLNVRLHDGKNANANANANA
D1-35_042441617hypothetical proteinATGGCGACAGACGGATCTCTGGCGGCGGCAGCGTCGGCCTCGGTGCCCGCGGCGGGTGGCACGGCGCGCTGGGTTGCGCCGACCTTGCAAAGCGTCGCGCTGGTTTTGCTGCTTTGCGGCATGACATTGGGCGGTTGGTCGTTGTACCTGGGCCTGCCGCTGGCGCTGCTCATCGTCTGGTTGCCACGTCTGCGCTCGCGCCTGGCCAGTACTCCCGCGCCGGCGGCGAGCGACAGCCTGGCCGAGCTGACCCGCGATCTTTCCTACACCACCAGCCATAACGCTCTGTCGGCGGCGGGGGTGGCCTATTCGGTCAAGCAATTGGCCGGCAAGGTCCAGTCGCAGCTGGGCGCCGCGGCGCAGATCGTCAGCAATGCCGAGGCGATGATCGCGACCGAGCAGGCCACCTCGCAGCTCAGCCAGCAGGCGCTGGGCGCGGCCAGCGAGGCCCATCGCAGCAGTGTCGCCGGGCGCAGCGAACTGGTGGAATCCATCAGCCGCATGCATCAGCTCAGCCAACGCGCCAATGACAGCCGTGAGTTGATCGAAGCGCTGAGCGTGCGCAGCGACGAAATCCAGCGCGTGAGCCTGGTGATTCAATCGATCGCCAGCCAGACCAACCTGTTGGCGCTCAATGCCGCCATCGAAGCGGCCCGGGCCGGTGAGCATGGCCGCGGATTCGCGGTAGTGGCAGACGAGGTCCGCGGCCTGGCCGGGCGCACGGCCGCGGCAACCGGCGAGGTCGGGGTGATGGTGGCGGACATCCAGCAGCGCACTGCGCAGGTGGTTGAACAGATCCGACAACTGGCCGGCGACCTGGACAGCGGCGTGCAGCAGGTCGAGCACACCGGCCAACACCTGGAGAACATTGCCCGGCTCGCGGCCGGTGTCGAAACCCAGGTCAGCGCCATCGCCCAAGGCACCGATACCAACCGCGAGCAGCTCGACAGTCTGTTCCATGCCATCGAGCAGATGCGCAGCGACCTGGCGATCAGCGATCAACAGACCCAGCGCCTGGCCGAGGCGGCCGTACAGATGGAAGGCCAGGCCGAAACCATCAGCGAGCGTTTGGCCGAGGTGGGCCTCGATGATTACCACCAGCGGGTCTATGACCTGGCCCGCGAAGGCGCGAGCCGGATTGCCGCGCAGTTCGAAGCGGATGTCGATCAGGGGCGTATCAGCCTCGAAGACCTGTTCGACCGCAACTACCAGCCCATCCCCAATACCCACCCGGCCAAGTTCCAGACCCGTTTTGACCGCTACACCGATCAGGTACTGCCGGCTATACAGGAACCGCTACTCGCCCGGCATGAAGGCCTGGTGTTTGCGATTGCCTGTACCCAGCAAGGCTATGTGCCGACCCACAACAACGCCTTCTGCCAGCCGCTGACCGGTGATCCTCAGGTGGACACGCTGAGCAACCGCACCAAGCGCAAGTTTTCCGATCGAACCGGGATTCGCTGCGGCAGCCACCAACAGCCGGTGTTGCTGCAAACCTATACGCGTGACACCGGGGAACTGATGCATGACCTGTCGGTGCCGATCATGCTCAAGGGGCGTCACTGGGGAGGATTGCGGTTGGGTTACAAACCCGAGAAGCCGCGCCAGGGGCGTTGAMATDGSLAAAASASVPAAGGTARWVAPTLQSVALVLLLCGMTLGGWSLYLGLPLALLIVWLPRLRSRLASTPAPAASDSLAELTRDLSYTTSHNALSAAGVAYSVKQLAGKVQSQLGAAAQIVSNAEAMIATEQATSQLSQQALGAASEAHRSSVAGRSELVESISRMHQLSQRANDSRELIEALSVRSDEIQRVSLVIQSIASQTNLLALNAAIEAARAGEHGRGFAVVADEVRGLAGRTAAATGEVGVMVADIQQRTAQVVEQIRQLAGDLDSGVQQVEHTGQHLENIARLAAGVETQVSAIAQGTDTNREQLDSLFHAIEQMRSDLAISDQQTQRLAEAAVQMEGQAETISERLAEVGLDDYHQRVYDLAREGASRIAAQFEADVDQGRISLEDLFDRNYQPIPNTHPAKFQTRFDRYTDQVLPAIQEPLLARHEGLVFAIACTQQGYVPTHNNAFCQPLTGDPQVDTLSNRTKRKFSDRTGIRCGSHQQPVLLQTYTRDTGELMHDLSVPIMLKGRHWGGLRLGYKPEKPRQGRPGPT0015710_22565DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_04245405dksA_1COG1734RNA polymerase-binding transcription factor DksAATGACAAAGGAAAAGTTGCTGGCCATGCCGGCGGATGACTACATGAATGCCGAGCAACTGGCTTACTTCACCAAGCTGTTGCAGAACATGAAGGTCGAAACCCACGAGCGCATCGAACAGAACCGAATCGCCATTGAGAGCCTGGACACCCCGGCCGACCCGGCGGACGCCGCTTCCGTGGAAGAAGAGCGCACCTGGCTGGTCAACGCCATCGATCGCGACCAACGCATGCTGCCGCAACTGGAGCAGGCCCTGGACCGCATCAACGACCAAAGCTTCGGCTGGTGCGACGACAGCGGCGAGCCGATCGGCCTCAAGCGCCTGCTGATCAGCCCGACCACCAAGTACTGCATCGAAGCCCAGGAACGTCACGAACAGATCGACAAGCACCAGCGTCAGGCCTGAMTKEKLLAMPADDYMNAEQLAYFTKLLQNMKVETHERIEQNRIAIESLDTPADPADAASVEEERTWLVNAIDRDQRMLPQLEQALDRINDQSFGWCDDSGEPIGLKRLLISPTTKYCIEAQERHEQIDKHQRQAPGPT0014560_2062DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-cAMP|CRP_SIGNALLING_PATHWAY,PGPT0014560-dks-K06204NANA
D1-35_042461023rbsC_2COG1172Ribose import permease protein RbsCATGAACGCGATACTGGAAAACAAACCCGCGGCCGCACCGGCCAGGACGCGTCGACGGTTGCCGACGGAACTGAGCATTTTCCTGGTGCTGATCGGCATCGGGCTGGTGTTCGAGATGTTCGGCTGGATCATGCGCGACCAGAGCTTCCTGATGAATTCGCAGCGCCTGGTGCTGATGATCCTGCAGGTGTCGATCATCGGCCTGCTGGCCATCGGCGTGACCCAGGTGATCATCACCACTGGCATCGACCTGTCATCCGGCTCGGTACTGGCGCTGTCGGCGATGATTGCCGCCAGCCTGGCCCAGACTTCGGATTTCGCCCGGGCGGTGTTTCCCTCGCTGACCGACTTGCCGGTGTGGATCCCGGTGGTGGCGGGGCTGGGGGTCGGTTTGCTGGCCGGCGCAATCAACGGCAGCATCATCGCCCTTACCGGCATCCCGCCGTTCATCGCCACCCTCGGCATGATGGTCTCGGCGCGAGGCCTGGCGCGGTACTACACTGAAGGCCAGCCGGTGAGCATGCTGTCTGATTCCTATACGGCCATCGGTCATGGCGCGATGCCGGTGATCATCTTCCTGGTGGTGGCGGTGATCTTTCACATTGCCTTGCGCTACACCAAGTACGGCAAATACACCTACGCCATCGGCGGCAACATGCAGGCGGCGCGGACCTCGGGCATCAACGTCAAGCGTCATCTGGTGATCGTCTACAGCATCGCCGGGCTGCTGGCGGGACTCGCCGGCGTGGTGGCTTCGGCGCGTGCGGCGACCGGGCAGGCGGGCATGGGCATGTCCTATGAGCTGGACGCGATTGCCGCGGCGGTGATCGGCGGCACCAGCCTGGCCGGCGGGGTGGGGCGCATCACCGGGACGGTGATCGGCGCGCTGATCCTCGGGGTGATGGCCAGCGGCTTCACCTTTGTCGGTGTCGACGCCTATATCCAAGACATCATCAAGGGGCTGATCATCGTGGTCGCTGTGGTCATCGACCAATACCGCAACAAGCGCAAACTCAAGCGCTAGMNAILENKPAAAPARTRRRLPTELSIFLVLIGIGLVFEMFGWIMRDQSFLMNSQRLVLMILQVSIIGLLAIGVTQVIITTGIDLSSGSVLALSAMIAASLAQTSDFARAVFPSLTDLPVWIPVVAGLGVGLLAGAINGSIIALTGIPPFIATLGMMVSARGLARYYTEGQPVSMLSDSYTAIGHGAMPVIIFLVVAVIFHIALRYTKYGKYTYAIGGNMQAARTSGINVKRHLVIVYSIAGLLAGLAGVVASARAATGQAGMGMSYELDAIAAAVIGGTSLAGGVGRITGTVIGALILGVMASGFTFVGVDAYIQDIIKGLIIVVAVVIDQYRNKRKLKRPGPT0016800_202DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_lNOSITOL_TRANSPORT_1,PGPT0016800-rbsC|mglC-K17214NANA
D1-35_042471554rbsACOG1129Ribose import ATP-binding protein RbsAATGTTCGCATCAGCGACTGCTACGAGCGCCCCGGCGGCGACTTTCCAGCCGGGCGCATTACCTGACGAACCGTACCTGCTGGAAGTCGTCAACGTCAGCAAGGGTTTTCCCGGCGTGGTGGCCCTGTCCGACGTGCAACTGCGGGTGCGCCCCGGCTCGGTGCTGGCCTTGATGGGCGAAAACGGCGCAGGCAAATCCACGCTGATGAAAATCATCGCCGGCATCTACCAGCCGGATGCCGGTGAACTGCGCCTGCGCGGCAAGCCGATCACGTTCGACACCCCGCTGGCGGCCTTGCAGGCCGGGATCGCGATGATCCACCAGGAACTGAACCTGATGCCGCACATGAGCATCGCCGAGAACATCTGGATCGGCCGTGAGCAGCTCAACGGCCTGCACATGATCGACCACGGTGAGATGCACCGCTGCACCGCGCGCTTGCTGGAGCGCCTGCGAATCAAGCTCGACCCCGAGGAGCAGGTGGGCAACCTGAGCATCGCCGAGCGGCAGATGGTGGAGATCGCCAAGGCCGTTTCGTATGACTCGGACATCCTGATCATGGACGAACCGACCTCGGCCATCACCGAGACGGAAGTCGCGCATCTGTTTTCGATCATCGCCGACCTCAAGGCCCAGGGTAAGGGCATCATCTATATCACCCACAAGATGAATGAAGTGTTCGCCATCGCCGATGAGGTGGCGGTGTTCCGTGACGGTGCCTACATCGGTCTGCAACGGGCCGACAGCATGGACGGCGACAGCCTGATCTCGATGATGGTCGGGCGCGAGTTGAGCCAGTTGTTTCCCGAGCGGGACAAGCCCATCGGCGATCAGGTGCTGTCGGTACGCGACCTGAGCCTGGACGGTATATTCAAAGGCGTGTCGTTCGACCTGCATGCTGGCGAGATCCTCGGCATCGCCGGGTTGATGGGCTCGGGCCGGACCAATGTCGCCGAGGCGATCTTTGGCGTGACCCCGGCCACCGGCGGCGAGATCCTGCTGGACGGCGAGCCGGTGCGCATCACTGATCCGCACATGGCGATCGAGAAGGGCTTCGCCCTGTTGACCGAAGACCGCAAGCTCAGCGGCCTGTTTCCCTGCCTGTCGGTGCTGGAAAACATGGAGATGGCGGTGTTGCCCCATTACGTCGGCAACGGCTTCATCCAGCAAAAAGCCCTGCGCGCGCTGTGCGAAGAAATGTGCAAGAAACTGCGGGTCAAGACGCCGTCCCTCGAGCAGTGCATCGACACCTTGTCCGGCGGCAACCAGCAGAAAGCGTTGCTGGCCCGCTGGCTGATGACCAACCCGCGCATCCTGATCCTCGACGAGCCGACCCGCGGTATCGATGTTGGCGCCAAGGCGGAAATCTACCGACTCATTTCCTACCTCGCCAGCGAAGGCATGGCGGTCATCATGATTTCCTCGGAGCTGCCCGAAGTGCTCGGCATGAGCGACCGGGTCATGGTGATGCACGAAGGTGACCTGATGGGCACCCTCGACCGTAGCGAAGCGACCCAGGAACGAGTCATGCAACTGGCGTCGGGCCTGTCCTGAMFASATATSAPAATFQPGALPDEPYLLEVVNVSKGFPGVVALSDVQLRVRPGSVLALMGENGAGKSTLMKIIAGIYQPDAGELRLRGKPITFDTPLAALQAGIAMIHQELNLMPHMSIAENIWIGREQLNGLHMIDHGEMHRCTARLLERLRIKLDPEEQVGNLSIAERQMVEIAKAVSYDSDILIMDEPTSAITETEVAHLFSIIADLKAQGKGIIYITHKMNEVFAIADEVAVFRDGAYIGLQRADSMDGDSLISMMVGRELSQLFPERDKPIGDQVLSVRDLSLDGIFKGVSFDLHAGEILGIAGLMGSGRTNVAEAIFGVTPATGGEILLDGEPVRITDPHMAIEKGFALLTEDRKLSGLFPCLSVLENMEMAVLPHYVGNGFIQQKALRALCEEMCKKLRVKTPSLEQCIDTLSGGNQQKALLARWLMTNPRILILDEPTRGIDVGAKAEIYRLISYLASEGMAVIMISSELPEVLGMSDRVMVMHEGDLMGTLDRSEATQERVMQLASGLSPGPT0016795_83DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_lNOSITOL_TRANSPORT_1,PGPT0016795-rbsA|mglA-K17215NANA
D1-35_04248924xypACOG1879Xylitol-binding proteinATGAAGACCAAGACCCGTATTGCCTCGCTGGCCCTGTCGTTGATGTTCGCCAGCGGCGTTGCCCTGGCGGACCTGAAGATCGGCGTCAGCATGTCCCAGTTCGATGACACCTGGTTGACCTACCTGCGCGAATCCATGGACAAGAAAGCCAAGTCCCTGCCGGACGGCGTCACCCTGCAATTCGAAGATGCGCGCAGTGACGTGGTCAAGCAGCTCAGCCAGGTGGAAAGCTTCATCAGCCAGAAGGTCGACGCGCTCATCGTCAACCCCGTTGACACCGCCGCGACCCAGCGCATCACCAAGGCCGCGGTGGCCGCGGGCATCCCGCTGGTGTACGTCAACCGCCGCCCGGACGATCTGAAGTTGCCGGAAGGGGTGGTCACCGTGGCCTCCGATGACCTGGAAGCCGGGCGCATGCAGATGCAATACCTGGCCGACAAGATGGGCGGCAAGGGCGACATCGTGATCCTGCTGGGCGACCTGGCCAACAACTCCACCACCAACCGCACCAAGGGCGTCAAGGAAGTGCTGGCCAAGTACCCGGGCATCAAGATCGAACAGGAACAGACCGGCATCTGGTCGCGGGACAAGGGCATGACCCTGGTCAATGACTGGCTGACCCAGGGCCGCGAGTTCCAGGCTGTGGTGTCCAACAACGACGAGATGGCCATCGGCGCCGCCATGGCCCTCAAGCAAGCGGGCACCAAGAAGGGCAGTGTCCTGATAGCTGGAGTCGACGGTACGCCGGACGGCTTGAACGCCATCAAGAAAGGCGACATGGCGGTCTCGGTGTTCCAGGACGCCAAGGGCCAGGCCGATGGCTCCATCGACACGGCGGTGAAAATGGCCAAGGGCGAGAAGATGCAATCCGTCGTGGTGCCGTATCGCCTGATCACGCCGGAGAACGTCGATCAGTTCAAGTGAMKTKTRIASLALSLMFASGVALADLKIGVSMSQFDDTWLTYLRESMDKKAKSLPDGVTLQFEDARSDVVKQLSQVESFISQKVDALIVNPVDTAATQRITKAAVAAGIPLVYVNRRPDDLKLPEGVVTVASDDLEAGRMQMQYLADKMGGKGDIVILLGDLANNSTTNRTKGVKEVLAKYPGIKIEQEQTGIWSRDKGMTLVNDWLTQGREFQAVVSNNDEMAIGAAMALKQAGTKKGSVLIAGVDGTPDGLNAIKKGDMAVSVFQDAKGQADGSIDTAVKMAKGEKMQSVVVPYRLITPENVDQFKPGPT0016780_497DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISMCE-BACTERIAL_FITNESS-RHIZOPINE_TRANSPORT,PGPT0016780-rbsB|mocB|mglB-K17213NANA
D1-35_04249201hypothetical proteinATGAACGACGAACTAAACAAAAACAAGAAACACAGCCAGGTACCGTCGATGAAAACCTTCAACCGCTCTGCGTTTCACCTGCCACTGCCCTTGCGCCTGTCCGCAATCCTTCCTTTTTTCGAATCCCTGTGCATCCAGCGCAAGGGCGCCTTGGTGTGCTGCATGCCCGGCGCACCGATCGTGCGTTTGCCGCGTTCCTGAMNDELNKNKKHSQVPSMKTFNRSAFHLPLPLRLSAILPFFESLCIQRKGALVCCMPGAPIVRLPRSNANANANANA
D1-35_042501053iolWCOG0673scyllo-inositol 2-dehydrogenase (NADP(+)) IolWATGCGAATCGGATTAGTAGGCTACGGCAAGGGCGGGCGTTTTTTCCATGCGCCGCTGATCAGCAGCCTGCCGGGGGCTACTTTCGTCGGCGTGGTAACCCGCTCCGCCGAGCGGCGCCAGCAGTTGGCAAGCGAGCATCCGCAGGCCCAAGCGTTCGACAGCCTTGCGCAACTGGTGGCGGCCGGCGTCGATGCGGTGGTGGTGTCCACGCCGCTGGAAGCGCGTCCGGCGCTGGTACTGGAAGCCATCGAGCACGGCGTGGGGGTGGTCAGCGATAAGCCTTTTGCCCTAGACGCCGCACAGGCCGAAACGATGGTGCTGGCCGCCGAACGGCGCAATGTGCCGTTGAGCGTGTACCAGAACCGGCGCTGGGATTCGGATTTCCTGACCGTGCGCAAGTTGCTCGGATCCGGCGCACTGGGGCAGGTGACTCGCTTTGAATCCAGCGTCGAACGTTACTCACCGACCTCGGTGGGAAAAGGCAGCGGCGGCGGATTCCTGCGGGACCTGGGCAGCCATCTGGTGGACCAGGCATTGCAATTGTTTGGTCCGGTGCTGCGGGTTTACGCCGAGCTGGATTATCGACAGCCGGACCAGGCCTACGACAACGGCTTCTTCATGTCGCTGGCCCACGCCAATGGCGTCGTGTCGCACTTGCGCGGCAGTTGCCTGCAGGACGCGCCGCGCCCACGCTTTCGGGTCAGTGGCAGCGAAGGCTGCTATACCGTCGAAGGCCTCGATGGGCAGGAAGCCCAGGCGTTGGCGGGATTGAGCCCGGCCACCGCAGGCGAGCGCTGGGGCGCCGAGGAGCACCGGCGCTGGGGCTGGTTCGAACACGGTGCCGAGCGCGAGCGCGTGGCCTCGGAACGCGGTTGCTGGCTGGCGTTCTACCAGAGTCTCCAGGCCGCCTTGCAGGGCGACGGGCCGCTGCCGGTCGCCGCTCGCGACGCCTTGGCCACGACCCGTGTCCTGGACGCTGCAAGGCAAAGCGCGGAGCAGGGCAACGTGGTGTATTTATCCACGCCCGTTGGTCATGGAACAAAAAACGAATAAMRIGLVGYGKGGRFFHAPLISSLPGATFVGVVTRSAERRQQLASEHPQAQAFDSLAQLVAAGVDAVVVSTPLEARPALVLEAIEHGVGVVSDKPFALDAAQAETMVLAAERRNVPLSVYQNRRWDSDFLTVRKLLGSGALGQVTRFESSVERYSPTSVGKGSGGGFLRDLGSHLVDQALQLFGPVLRVYAELDYRQPDQAYDNGFFMSLAHANGVVSHLRGSCLQDAPRPRFRVSGSEGCYTVEGLDGQEAQALAGLSPATAGERWGAEEHRRWGWFEHGAERERVASERGCWLAFYQSLQAALQGDGPLPVAARDALATTRVLDAARQSAEQGNVVYLSTPVGHGTKNEPGPT0018530_311DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0018530-iolW-K16044NANA
D1-35_04251660pqiA_2COG2995Intermembrane transport protein PqiAATGCCCGATCCGTCAGACATCGATAGGTTGTCAGATCTACCCTTGGACGGTCTGGTGGCGTGTCATGAATGCGACTTGTTGATGCGCAAGCCACAGCTGGCCCACGGCGAAAAAGCCGAATGCCCCCGCTGTGGATACGAACTTTATGCCCACCGACATAACGTGGTCGAACGTAGCCTCGCCCTGGTAGTTGCCGCTTTGCTGTTGTTTGTGCCGGCGAACTTTTTACCCATCATGCAGCTCAATCTGCTCGGACAGTCGTCCCAGGACACCGTCTGGAGTGGCGTGGTCGGGCTGTTCAATACCGGTATGCACGGTGTATCGGTGGTGGTGTTCCTGTGCAGCATGGGGATTCCGCTGCTCAAGTTGCTCTGTCAGCTGATTGTGCTGCTGACCATTCGCTGGAACGTCGGGCGAAGTTACGGCTTGTTGTTGTACCGCACTTACCATCACTTAAGGGATTGGGGGATGCTCGAGGTCTATTTCATGGGCGTGCTGGTTGCCATCGTCAAACTTGCCGACATGGCGGCTATTACCGTGGGCCTGGGCCTGGTGTGTTTTGTCAGCTTGTTGCTGGTTCAGGTCTGGCTGGAAGTGGTGATGTCACCGCATCAGATCTGGCAGGCGCTGTCAGGAGAGGATTCTCATGCGGGCGATTGAMPDPSDIDRLSDLPLDGLVACHECDLLMRKPQLAHGEKAECPRCGYELYAHRHNVVERSLALVVAALLLFVPANFLPIMQLNLLGQSSQDTVWSGVVGLFNTGMHGVSVVVFLCSMGIPLLKLLCQLIVLLTIRWNVGRSYGLLLYRTYHHLRDWGMLEVYFMGVLVAIVKLADMAAITVGLGLVCFVSLLLVQVWLEVVMSPHQIWQALSGEDSHAGDNANANANANA
D1-35_04252624pqiA_3COG2995Intermembrane transport protein PqiAATGCGGGCGATTGATGCGGGCATTCTGATCTGCGTCGAATGTCACGAGTTGAATCGGCAGGATGCAGGCGCTGACAAACAGACCTGCTCCCGTTGTGGCGCACGCATCCATCCCCGTCGTCCGAACAGCCTCATGCGGACCTGGGCATTATTGATCACGGCCGCGATTCTCTATATTCCGGCCAATATGCTGCCGATCATGACCATCAATTCGCTGGGCCAGGGATCGCCCAGCACCATAATGGCCGGCGTCATCGAGCTGGTTCAGCACGGCATGATCCCTATTGCCGCGGTGGTGTTTGTTGCCAGTATCGTCGTGCCCACTTTCAAGCTGGTGGGGCTCGCCTTGTTGTTGTTTTCGGTGCAACGGCACCAGCCAATGTCCGCGCGTCAGCGCATCCTCATGTATCGCTTCATTGAGTTCATCGGCCGCTGGTCGATGCTGGACATTTTCGTAATCGCAATTCTGGTGGCGGTGGTCAATTTCGGGCGGCTTGCCAGTGTTGAAGCCGGTCTCGGTGCCATCGCCTTTGCCAGCGTAGTGATTTTGACAATGATTGCCGCAGTTACCTTCGATCCCCGACTGATTTGGGATAACACGGAGTCGGATGACGACCATGACTGAMRAIDAGILICVECHELNRQDAGADKQTCSRCGARIHPRRPNSLMRTWALLITAAILYIPANMLPIMTINSLGQGSPSTIMAGVIELVQHGMIPIAAVVFVASIVVPTFKLVGLALLLFSVQRHQPMSARQRILMYRFIEFIGRWSMLDIFVIAILVAVVNFGRLASVEAGLGAIAFASVVILTMIAAVTFDPRLIWDNTESDDDHDNANANANANA
D1-35_042532304yebTCOG3008Intermembrane transport protein YebTATGACTGATTTGCCTACTGCTAAAACCCGACCGGCTTCGAACTGGTCGGCCATCTGGGTCTTGCCGTTGATTGCCTTGATCATTGGCGGTTGGCTCGGCTGGCGGGCTTATAACGAGACCGGGATCGAGATCAGCGTACGTTTTGAAAGCGGTGAGGGCATTCAGGTCAACAAGACCGAGATCGTCTATAAAGGCATGACGGTGGGCAAGGTAAAGGACCTTACGCTTGATGACGAGGGTAGCTCGAAAGGCGTTATCGCGACCGTCGAAATGAACAAGGACGTCGAGCAATACCTCAAGACCGGCACACGTTTCTGGCTGGTCAAGCCGAGTGTGAGCCTGGCCGGGATCACCGGACTGGAGACGCTGGTATCAGGCAATTACGTGGCCATAAGCCCGGGGGAAGGCGAGTCGACACGCAAGTTCAAGGCCTTGGCCGAAGAGCCGCCGCTATCGGACGCCAAACCAGGTTTGCACCTGACGATCAAGGCTGAGCGCCTGGGTTCCCTGGACCGTGGCAGCCCGGTTTTCTACAAACAGATTCAAGTTGGCCAAGTGAAAAGTTATTCCCTGTCCGAAGATCAGCGCACAGTCGAGGTCAAGGTCTTCATCGAGCCGACCTACGCCAGCCTGGTTCGCAAACACACACGATTCTGGAACGCCAGCGGCATCAGCATCGATGCCAACCTATCGGGCGTCAAAGTACGCAGTGAATCACTGGCCAGTATCGTGGCCGGCGGTATCGCGTTCGCCACGCCGGAAAACCGCAAGGACAGCCCGCCCACGGACCCAAGCCTGCCGTTTCGTCTGTACGAAGACTTCGATGCAGCCGCCGCCGGGATCCGGGTAAAGGTCAAGCTCAGCGATTTCGAAGGGTTACAGGCGGGGCGCACGCCGGTCATGTACAAAGGTATCCAGGTTGGTAGCCTGAAGACGTTGAAGGTCGACCCCGACTTGTCCAGCGCCAGCGCCGAGCTGACCCTTGATCCTTTGGCCGAGGACTACCTGGTGACCGGCACTCAGTTCTGGGTCGTCAAGCCATCGATTTCCCTCGCGGGTATCACCGGCCTCGAAGCGCTGGTCAAGGGTAACTACATCGCCGTGCGCCCGGGCGACAAGGGCGCGGCGCCGCAGCGCGAATTCGAAGCCAGGGCGAAGGCTCCGCCATTGGACCTGCGTTCCCCTGGCCTGCACCTGGTGCTGCTGACTGAGAATCTGGGATCGCTGGAAGTCGGCAGTCCGATTCTCTACAAGCAGGTCAAGGTCGGCTCGGTGCAGAGCTACCAATTCTCCCGCAAGAAAAAACAGTTGATCATCGGTGTGCACATCGAGAAGGAATACGAAGGGCTGGTGAACGGTTCGACGCGATTCTGGAACGCCAGCGGCGTCACCCTCACGGGCGGTCTGACTGGCGGAATACAGGTCAAGAGCGAGTCCCTGCAGAGCCTGATGGCCGGCGGGATCGCCTTCGAGACGCCGGAGCCGAATGTACCGTTGAAAAGACGCATCCCTCGGTTTCGCCTGCATGAAGACCGCGAAGCGGCACAGCAGAACGGCACGGTCGTGACGATCAAGGTCGATCGCGCCGACGGCTTGCGCAGCGGTACGCCGATCCGTTTCAAGGGGCTGGATGTGGGCAAGATCGAGAACGTCGATCTCAGCGCCGACATGCAGTCGGTGCTGGTCACCGCGCGTATCACCGAAGTGCCGGAGCGTATCGCCCGCGTCGGGACCCAGTTCTGGGTGGTCAAGCCAGAGCTGGGGTTGATGAAGACGTCGAACCTGGAAACCCTGGTGACCGGTCAATACATTGAAGTGCAGCCCGCTGTGAAAAGCCAGGGTCCACAGAAAAGCTTTGTTGCGTTGGCCGAACCACCCGAAAGCGCGGTTCCGGAGGCTGGTTTGAGCCTGGTATTGAGTGCGGCGCGCCGTGGTTCGTTGAAGATTGGCGTGCCGGTGACCTATCGCGAGGTGACGGTGGGTAAAGTCACGGGATATGAATTGGGCCAGACGGCGGACCGGGTGCTGGTCCATATCCTGATCGAGCCCAAGTATGCGCCGTTGGTGCGCAGTGGTACTCGCTTCTGGAACAGCAGCGGTTTTGGCCTGGACTTCGGCCTGTTCAAGGGCGCGACGGTGCGGACCGAGTCGTTGGAGACACTGATCCAGGGCGGTATCGCTTTTGCGACACCGGACGGCGAGCGGATGGGCAACCCGGCGCGACCGCAGCAGACGTTCCCGCTGTTCGACAAGTTTGAAGATGAGTGGCTGACCTGGGCGCCGAAGATCGCGCTCGGCAAGTGAMTDLPTAKTRPASNWSAIWVLPLIALIIGGWLGWRAYNETGIEISVRFESGEGIQVNKTEIVYKGMTVGKVKDLTLDDEGSSKGVIATVEMNKDVEQYLKTGTRFWLVKPSVSLAGITGLETLVSGNYVAISPGEGESTRKFKALAEEPPLSDAKPGLHLTIKAERLGSLDRGSPVFYKQIQVGQVKSYSLSEDQRTVEVKVFIEPTYASLVRKHTRFWNASGISIDANLSGVKVRSESLASIVAGGIAFATPENRKDSPPTDPSLPFRLYEDFDAAAAGIRVKVKLSDFEGLQAGRTPVMYKGIQVGSLKTLKVDPDLSSASAELTLDPLAEDYLVTGTQFWVVKPSISLAGITGLEALVKGNYIAVRPGDKGAAPQREFEARAKAPPLDLRSPGLHLVLLTENLGSLEVGSPILYKQVKVGSVQSYQFSRKKKQLIIGVHIEKEYEGLVNGSTRFWNASGVTLTGGLTGGIQVKSESLQSLMAGGIAFETPEPNVPLKRRIPRFRLHEDREAAQQNGTVVTIKVDRADGLRSGTPIRFKGLDVGKIENVDLSADMQSVLVTARITEVPERIARVGTQFWVVKPELGLMKTSNLETLVTGQYIEVQPAVKSQGPQKSFVALAEPPESAVPEAGLSLVLSAARRGSLKIGVPVTYREVTVGKVTGYELGQTADRVLVHILIEPKYAPLVRSGTRFWNSSGFGLDFGLFKGATVRTESLETLIQGGIAFATPDGERMGNPARPQQTFPLFDKFEDEWLTWAPKIALGKPGPT0014520_21DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_HERBICIDIAL_STRESSHERBICIDIAL_STRESS-PARAQUAT_STRESS_REDUCTION,PGPT0014520-pqiB-K06192NANA
D1-35_042542841hypothetical proteinATGAGCAAGGAACGCTACGGCATCCGCCGCTTTGCCCTTTTGAACACCGCCGGCTATAGCCTCGGCCTGTTCCCGCTGGAAGAACCGTTATCGGTTTACGGCGCGAACAACCTGGGTAAATCCGCCTCGATCAACGCCCTGCAGTTCCCGATCCTGGCGCGCATGTCGGACATGAGCTTTGGCAAGTACAGCCTGGAGCAATCCCGGCGTTTCTACTTCGCCTCGGACACCAGCTACATCCTCGTGGAAGTTGCCCTGCCCCACGGCCCGCACGTGATTGGCGTGGTCGGTCGCGGCCCTGGCGGCGGTTTCGGCCATCAGTTCTTTGCCTACGCCGGCAAACTGGACCTGGCCCACTATCAGAAAGATGACACCTGCCTGCGCCAGAAAGAGCTGTTCACCAACCTGGAGCGCGAAGGCCTGAAGGCCTACGAACTCAAGCCGGATGAACTGCGTCGTCTGCTGGTCGGCGGACACACCTCGATCCCCCTGGACCTGACGCTGATCCCGCTGCGCTCCACCAGCGAGCAAAGCCTCAAGACCTTCCGCGCGTTGTTCATCAACCTGCTGCACATGCGCGAAATCACCGCCGCCAAGCTCAAGCAACTGTTCCTCGATGCCTTCGAGCACAGCCTGCGCTCCGGCAGCGTGGACTACATAGCCGCGTGCGAAGAAGCCTTCCGCGACGTGCGACGCATGGAACAGGACTACAACTCCCTGGTGGCGGCCGGCCCGTTGGTGGAAGCCTTGGCCAACGGCGTGAAGCAGCGCGATATCCTGCGCGGCAAACTGCATCGCCTGTCGCCATTGCTCGACTCGCTGCTGGGCACCTGGTCGGACTATGCGAGTGCGCGCAAGGAAGAGCTGACCATCCAGGCCGAGCACTACCGCAACGAGCAGGATTCGCTGCAGAACGACCAGCGCGGCGGCACCCAGGAGCTGATGCGCCTGGAGCGTGAAATCAGCGGCATCCAGCGCTGGCTCGGCGAACTGTCGGTGCTCAAGCATCGCTTTGCCCTGGTGGACGACGTCAAGGTCCTGGAGCAGCAGCTTCTCGCCGCCAAAGACGCCCACGACGAACTGGCCGGCGCTCTGGCTCAGTCCCGGCAGTTCAGCGCCGAAGACCTGGAAGAGCGCCTGCGGGATCTGGAAAAACGCCTGAAGTCGGTCAAGCAGCAACTCGATCACGCCGACAACAACAGCTACGCCCGCCTGCGCGAAGAGTTCTCCCAGCAGGACGTCGAGCGCCTGATGCGCCTGTTCAACAGCGCTTTGTTCAGCCTGCCGCTGGGCGAACACGGGATCGCGCTGGACGAGAATGGCGAGTGGGTCAAATCCATGGAGCTGATTCTCGACGGCTTCAGGGGCGAGCGCTTCGAAGTGCCCGGCCTGTCCATCGACCTGTCCCACATCGAACCGCCGGCCCTGCAAGCGCTTGCCGACCGCGCCGCGCTGCGCGATCAGAAAGAGCGTCTGGAAAAAGAGCTCAAGCAGCTCAAGACCCAACAAGCCGTGGCCGCCGACCGTGCCGCGAGCAAGACCCAGACCGAAGCGCTGTACCAGCAGGTCCTGGATGCACAGAAAGCCCTGGAAGACTTCCGCCGCACCCAGACCTTGAGCGCCGAGGAAGGCGAGAAACTCGAGCAACTGGCGCAGATGGAAGCCGCCCAGGACGAACTCAAGCGCTCCAGCGATGCCTTCACCGAGCGGGTCCAGCAATTGTCCGCCAAGTTGCAACTGGTGGGCCGGCAGATCGCCGACATGGAAGCCAAGCAACGCACCCTCGACGATGCCCTGCGCCGTCGCCAGTTGCTGCCGGCGGACCTGCCATTCGGCACGCCGTTCATGGACCCGGTCGACGACTCCATGGACAACCTGTTACCGCTGCTCAACGATTATCAGGACAGTTGGCAGGGCCTGTTACGGGTCGATGGCCAGATCGAAGCGCTGTACGCCCAGGTGCGCCTCAAGGGCGTGGCCAAGTTCGACAGCGAAGACGACATGGAGCGCCGTCTGCAACTGCTGATCAACGCCTATGCCCACCGCACCGATGAAGCCCTGACCCTGGGCAAGGCGCGTCGTGCGGCCGTCACCGACATCGCCCGGACCTTGCGCAACATCCGCAGCGACTACGACAGCCTCGAACACCAGTTGGCGCTGTTCAACCGCGAGATCAACAAGCGCCAGGTGTCCAACCTGCAAAGCTTCCGCATCGTCCTGGCGCCGAACAAGGAAGCGCTCAAGCACATCGACCAGATCATCCACAGCGCCGGCCAGTACGAGGAAGGCGAGACGCTGTCGGTGTTCGACCTGAGCCAGAGCGCCGAGCAGGACAACAAGAACGAAGAAGCCAAGGAATACCTGGCGCGGCTGGTGGCGGCAAACCACAACCAGCTCGGCCTCAAGGACCTGTTCGAACTGGCGTTCGAGATCACCAAGGTCAACGGCCAGCCGGTGATCCACACCGACATCGACGGCGCGGCGTCCAACGGCACCACCATGACCATCAAGGCGCTGACCAACATGTACTTGTTGCTGCACCTGATGGACCGCGAACAGGCTGGTCGCGTGCGCCTGCCGTACTACCTGGACGAAGCGGCGGACATCGACGAAAAGAACCAGGCAGCGCTGCTGGAAACCAGCTTGCAACTGGGCTTCGTGCCGATCCTCGCCAGTGTGAAGCCGCAGGTCTGCGCCAGTGTCGCCATCGACCTGGAAGGCGGCAGCGGCCCGAACGGCATCTACATCGACGAGGCGGACTGGAAGTACATACGTCGTCACGATGCGGTGAAAGCCACGGTGAACGTCCAGGCCGATGAGCCGGAGCTGGATCCGGTCTGAMSKERYGIRRFALLNTAGYSLGLFPLEEPLSVYGANNLGKSASINALQFPILARMSDMSFGKYSLEQSRRFYFASDTSYILVEVALPHGPHVIGVVGRGPGGGFGHQFFAYAGKLDLAHYQKDDTCLRQKELFTNLEREGLKAYELKPDELRRLLVGGHTSIPLDLTLIPLRSTSEQSLKTFRALFINLLHMREITAAKLKQLFLDAFEHSLRSGSVDYIAACEEAFRDVRRMEQDYNSLVAAGPLVEALANGVKQRDILRGKLHRLSPLLDSLLGTWSDYASARKEELTIQAEHYRNEQDSLQNDQRGGTQELMRLEREISGIQRWLGELSVLKHRFALVDDVKVLEQQLLAAKDAHDELAGALAQSRQFSAEDLEERLRDLEKRLKSVKQQLDHADNNSYARLREEFSQQDVERLMRLFNSALFSLPLGEHGIALDENGEWVKSMELILDGFRGERFEVPGLSIDLSHIEPPALQALADRAALRDQKERLEKELKQLKTQQAVAADRAASKTQTEALYQQVLDAQKALEDFRRTQTLSAEEGEKLEQLAQMEAAQDELKRSSDAFTERVQQLSAKLQLVGRQIADMEAKQRTLDDALRRRQLLPADLPFGTPFMDPVDDSMDNLLPLLNDYQDSWQGLLRVDGQIEALYAQVRLKGVAKFDSEDDMERRLQLLINAYAHRTDEALTLGKARRAAVTDIARTLRNIRSDYDSLEHQLALFNREINKRQVSNLQSFRIVLAPNKEALKHIDQIIHSAGQYEEGETLSVFDLSQSAEQDNKNEEAKEYLARLVAANHNQLGLKDLFELAFEITKVNGQPVIHTDIDGAASNGTTMTIKALTNMYLLLHLMDREQAGRVRLPYYLDEAADIDEKNQAALLETSLQLGFVPILASVKPQVCASVAIDLEGGSGPNGIYIDEADWKYIRRHDAVKATVNVQADEPELDPVNANANANANA
D1-35_04255702hypothetical proteinATGCATCTTGATCTATCCGAACTGTCCCAGCTGGCGCCGATCTTTCGCGAGCTGTTCAAGGGTTACCACGTCAGCCGCCGCGACCCGGAGCTTTACGCGCAACTGTCGAACTTCCAGGACCAGTACCGCACGCTGTTCAAGGCCCTGGGCTTCGAACTGGTGTGCGATACCCGCGGCTTCTATTACTTCGTACCCGACCTGGCCGCCGCCGCGGTGAACAAGACCGCCCAGCGCCTGGCCCTGTTCACCTTCATCCTCGTCGAACACCTGGCCGATCAGGGTCGCGACCCGATCGCCGTGCTCGACGGTGGCAGCCTCGGCCGCGATGAGTTGCCGTCGTTGCTGGAAAAATACCGCGACCTGTTCATCCAGGCCGAAGTACAGACCCAGGAAGAGCTGGAAGAAAAAATCATGCGCCGCATGACCCAGCTGGGTTTTGCCAGCGAAGAAAACGGCGTGTACCGCTTCCTGCCACCGATGCATCGTTTTCTCGACGTCTGCCTGTCGGTCCAGCAGGACCGCGACCTGGCCGCCAGCCTGCACAGCGTGCTGCCGTTGCCGGCGCCGGTACTGATCGACGAAGACAGCGACGAAAAACTGCTGCAGACCGATGACCCGCTGGACCTCAGTGAATTCGACGGTGAAAGTGAAGAAGACGCACTGGCCCGTGCCATTGCCGAAGAACAGGAGACCGACGCATGAMHLDLSELSQLAPIFRELFKGYHVSRRDPELYAQLSNFQDQYRTLFKALGFELVCDTRGFYYFVPDLAAAAVNKTAQRLALFTFILVEHLADQGRDPIAVLDGGSLGRDELPSLLEKYRDLFIQAEVQTQEELEEKIMRRMTQLGFASEENGVYRFLPPMHRFLDVCLSVQQDRDLAASLHSVLPLPAPVLIDEDSDEKLLQTDDPLDLSEFDGESEEDALARAIAEEQETDANANANANANA
D1-35_042561281hypothetical proteinATGATCGAACCCAAGCGCGTCTTGCGCGCCCTTGCTGAACACTGGGCATTGCTGGAACCTTTGTGCGAGCACTTCGACCAGGGCACCCTGAGCCTCAACGAACTGCGTTCACAACTGGCCGCCCAACAACTGGACAGCACGCCCCAGGACATTACCCACCTGCTGGACGTATGGATCCGCCTGGACATCCTCGTGCCGGTGGCGAAAAGCCCCAACCGTTTCGAGCTCAACGCCCAGATCCACGACTTCCTCGCCTACCTTCGCCGCGAACACCGCCTGGGCCTGTGCCTGGAAATCGAAGCCTACCTGCGCCACCTCGAGCGCCTGGCCGGTTACATCCAGGACGCTTTCGAGGTGCGCGACGGCAACGACCTGGCCCGCCAGTTGCGCTTGCTGGACATGCGCGTGCGCGACGTCCTGAAGAAGCTCGCCAACGATGAGCAGGCACTGGTGGCCGTGGCCGAACGGGCCAAGACCAGCGATCGACAAATTCCGCTGCGCCAGCGCTACGCCGAAGTACTGGCGACCTGGGACGAATACGTCGAACCGATGATCCAGCTGGTGAACGCCGACGGCGCCTTCGAGCAAGGCGTGCGCAAGGTCGAGAACGTGCTGTTGCGCATGCTCACCGAACAACAGCGCCTCGGCCACCTCGTCGACGACGACATGCTGCTGCGTACCCACGCACGCATCCTCGAAATGCAGACCAGCGCCCAATTGACCCTGCGCCACGCCCGGGAACTGCTCCTGCCGCTGCGTGAAGAGGCCCGCCGGCATAACGCCGTGACCCGTGGCGCGGCGCTGGCCCTGGCGGCCATTCGCCGCAAGGGCATCGATGCCGTGCCGCAAGCCGCCATGCCGCTGTTCACCCGGCCGCAAAGTACGTTTTTGGGCAGTGCCAGCCAGGTCGAAGCCTATGTCTATGCCCTGGCCCGTTTCGAGCCCAAACCGGCGCGCTTTCCCAAGTCCCACAAGACCCACAAGGGCGGTGAGGCACCACGGGCGCCGCGCACCGTACGCGAGATGGTCGAGCGTTGCGAAGACGCCCTGCCGATGCCGGACCTGATGAGCTGGCTGCTGGAGCAGGAACCGGACGGCGCCACCGACGAATTGCTGTACTGGTTCTCGCGCCTGTCGCGGGAAAAACGATTCAAGCGCGAGCGTCTGGAACGCCGCGATTATCACACCCACGAGCATCAGGTCAGCCTGCGCTCCTTCGCCCTGCTCTCGGCCGGCGACACCGCCGCCGAGGATTCTGCGAGCATCCCCCATGCATCTTGAMIEPKRVLRALAEHWALLEPLCEHFDQGTLSLNELRSQLAAQQLDSTPQDITHLLDVWIRLDILVPVAKSPNRFELNAQIHDFLAYLRREHRLGLCLEIEAYLRHLERLAGYIQDAFEVRDGNDLARQLRLLDMRVRDVLKKLANDEQALVAVAERAKTSDRQIPLRQRYAEVLATWDEYVEPMIQLVNADGAFEQGVRKVENVLLRMLTEQQRLGHLVDDDMLLRTHARILEMQTSAQLTLRHARELLLPLREEARRHNAVTRGAALALAAIRRKGIDAVPQAAMPLFTRPQSTFLGSASQVEAYVYALARFEPKPARFPKSHKTHKGGEAPRAPRTVREMVERCEDALPMPDLMSWLLEQEPDGATDELLYWFSRLSREKRFKRERLERRDYHTHEHQVSLRSFALLSAGDTAAEDSASIPHASNANANANANA
D1-35_04257786hypothetical proteinTTGCTTATCGAGTCCCGCCGCCGCGCCTATCTGACCGCCATGCAGGTGGTCAACTGGCTGCCGCGTACCGAATTGCCATTTGCCGCCCCGTCGCGGCCCGAGCTGCTGGAAGCGCCTGAGCCGATGGAGGTCGCGCCGCCCCAGGCCGCGCCCGTCGCCAAGACCGTTGCCGAACCGTTGGCGCCCGCTGTCGAACGGCCGAAAGTCGAAGTCCCGCGTCCGAGCCTGGCCTCGACCCGGACCAACGCCAAACCGGTGGAAGAGGTCGACGAAGCGCCGGCCCCGGTGAAGGTTGCACAGGTGCCGCCGCCACGTTTCGCCCTGCAACTGCTGCGAGCCGGGCGTTGCCTGCTGCTGGTGGAGTTACCCACCGGCGAACCCTTCCAGAGCCGCGATCCAGCCTATTTGCTGCTCAAGGACATGCTGCGTGCCGCCGGCCTGCCGGACAGCCCGCAAATCATCGGCGAGCCGGTGCGCTGGCCATTGTTGTCGCGCGGCACGATGGACCAGGGGCCGGAGGCGGCGCGGGATTTTGTCCAGGGATTTGTTTCGGCGCGTCTGGAAGATGAACCGTGCGTGTGTCTGTGGCTGATCGGCCTGCCGGCAGTGAGGTTCGCCGGCGAGGCGGATGCCGAAGCGTTCAACCGTGAATTGCAGGTCGAAGGCCTGGGCTCGGCGTGGGCGTTGCCTGGACTGGAATCGTTAATGGAAACGCCACGGCACAAGGCTGACGTCTGGCAAGCCATGCGCCGGCTGATGGCGCGCTGGAAAGAATCGAATGAGTGAMLIESRRRAYLTAMQVVNWLPRTELPFAAPSRPELLEAPEPMEVAPPQAAPVAKTVAEPLAPAVERPKVEVPRPSLASTRTNAKPVEEVDEAPAPVKVAQVPPPRFALQLLRAGRCLLLVELPTGEPFQSRDPAYLLLKDMLRAAGLPDSPQIIGEPVRWPLLSRGTMDQGPEAARDFVQGFVSARLEDEPCVCLWLIGLPAVRFAGEADAEAFNRELQVEGLGSAWALPGLESLMETPRHKADVWQAMRRLMARWKESNENANANANANA
D1-35_04258453rimICOG0456[Ribosomal protein S18]-alanine N-acetyltransferaseATGAGTGACGCTGTATCGTTCCGCCCGATGACCGAGGCGGACCTCGACGCTGTACTGAAGATCGAATACGCGGCCTACAGCCATCCCTGGACCCGCGGGATATTTCTCGACGGGCTGGGCAAATACCAGATCTGGCTGATGTTCGAAGGCCAGCAGCAAGTCGGCCATGGCGTGGTGCAGATCATCCTCGATGAAGCGCACCTGCTCAATATCACCGTCAAGCCGGAAAATCAGGGGCGCGGCCTGGGTTTGCGGCTCTTGGAACACTTGATGTCGATTGCCTACAAGGCGGAGGCACGCGAATGCTTCCTGGAAGTGCGCGACAGCAATCGCACGGCGTTCCGGTTGTATGAGCGTTACGGTTTCAACGAGATTGGCCGGCGGCGGGATTACTACCCGGCGGTGGGCGGGCGTGAAGATGCGGTGGTCATGGCCTGTACCTTGGTGGACTGAMSDAVSFRPMTEADLDAVLKIEYAAYSHPWTRGIFLDGLGKYQIWLMFEGQQQVGHGVVQIILDEAHLLNITVKPENQGRGLGLRLLEHLMSIAYKAEARECFLEVRDSNRTAFRLYERYGFNEIGRRRDYYPAVGGREDAVVMACTLVDNANANANANA
D1-35_04259405hypothetical proteinATGAATGATTCACGACGTCCCTACGATGCGGTGCAACCGGAACCCATCGACGACAACGAAGACCGCATGGGCTCGATGCGTGAGCTGGAATTCGATGACGATGAATACGAGGCCAGGATCGGCGACGAGCTGCCCGAAAACGAACGCGAACAACTGATACCGGACGAACGTGTGCGTGAAGCAGGCATGACGGGGGCCTCGATGGATGACCGTCAGCCGACCGACGATGATCTGAGCCCCGAGACCCTGATCCGTGATGATGGCGCCAGGGACGCCCTGGAGGCCGGTGAAGGTGAACAGGCCGATTGGGACCTGAGCGTCGTGGATGAAAATGATATCGGCGGCGGCGACGGCCTGGACGAAGCGGAAATGGCTGATATCGACCCGTTGGATGGCAAGCGCTGAMNDSRRPYDAVQPEPIDDNEDRMGSMRELEFDDDEYEARIGDELPENEREQLIPDERVREAGMTGASMDDRQPTDDDLSPETLIRDDGARDALEAGEGEQADWDLSVVDENDIGGGDGLDEAEMADIDPLDGKRNANANANANA
D1-35_04260645canCOG0288Carbonic anhydrase 2ATGAATGAATTACAAGATCTGATTGATAACAACGCGCGCTGGGCCGATGCGATCAAGCAGGAGGATCCTGACTTCTTCGCCAAGCTGGCTCGTCAGCAAACCCCCGAATACCTGTGGATCGGCTGCTCCGACGCGCGAGTGCCGGCCAACGAAATCGTCGGCATGTTGCCAGGTGATCTGTTTGTGCACCGTAACGTGGCCAACGTGGTGTTGCACACCGACCTGAACTGCCTTTCGGTGATCCAGTACGCGGTGGACGTGCTCAAGGTCAAGCACATCCTGGTCACCGGCCATTACGGCTGCGGCGGCGTGCGTGCCTCGATGCAGGACCGCCAGCTCGGCCTGATCGACGGCTGGCTGCGCTCGATTCGCGACTTGTACTACGAGCACCGCGAAGCGTTGGCCAAATTGCCGACCGAAGAGGAACGGGTCGACCGCCTGTGTGAACTCAACGTGATCCAGCAGGTGGCGAACGTCGGTCACACCAGCATCGTCCAGAATGCCTGGCACCGCGGGCAGAAACTGTCCATTCATGGTTGCATCTATGGGATCAAGGACGGGCGCTGGAAAAGCCTGGACACCACGATCAGCGGTTTCGAGCAGTTGCCACCGCAGTATCGCTTGCGTCCTGTAGACGCGCCCTGAMNELQDLIDNNARWADAIKQEDPDFFAKLARQQTPEYLWIGCSDARVPANEIVGMLPGDLFVHRNVANVVLHTDLNCLSVIQYAVDVLKVKHILVTGHYGCGGVRASMQDRQLGLIDGWLRSIRDLYYEHREALAKLPTEEERVDRLCELNVIQQVANVGHTSIVQNAWHRGQKLSIHGCIYGIKDGRWKSLDTTISGFEQLPPQYRLRPVDAPPGPT0002415_4369DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONK-SOLUBILISATION-OTHER_ACID_METABOLISMSK-SOLUBILISATION-CARBONIC_ACID_BIOSYNTHESIS,PGPT0002415-cynT|can-K01673NANA
D1-35_042611161hypothetical proteinATGTCCAAACTCGCCGTATTCTCTCTCGCCGCCCTGGCCTTCAGTGCCGCCGCCCATGCCGCCGACATCGATGTACAACTGGGCAGTACCGAACGTGTCACCCGTCTCTTCGCCTACCCTAACAACTGCAACGTCATCTGTTTTCGCAACTGGACGCTGGAGCAGACCGTCGAGCATTACCTGACCCAAAGCGTACAGCGCGACGGCTACGGCGCGGCCAAGGTCAGCGTCAAACGCGATAACGACATCGTCTACGCGAACATCAGCGGGGTGCCGAAAAGCTACGGCCAACCGCTGGCCGCGCTGCTCAACGCCGGAGACCTGGCGTACAACGGCGCGACGAAACTCAACAATGACAAAAAGTGGGCCTACAACTGGTACCTGTTCCTGCCCTTGGGCATGGCCCTGGAAAACCGCAAGAGCGTCGAGTTGCTGCACTTCCCGCCGGATTACTCGCTGACCCAGGCCCAGGATTACCTCGAATCGGCCACTACCGACCGCTGGGCCACGCTGCTGACCGCCAATGGCATTGCCGCCGACCAGACGCCGGCCTACCAGACGATCATCGACATCGCGCCGATCGCCGCCCCGTCCAACGCCGGCCAGGCACTGGAAGGCGTCTACGATTATTTTAACGACTACCAGACCACCATGGTCAAGCAGGTCAGCCAGAACGCAAGCGGCAATGCACTGCCGATGGTGGCCTTCGGCGCTCCGGTTCGGAACTGGATCAAGACCCAATACGGCCCGACCGTGAATGTGCTCGGCCTGGCGACCATCACACCGACAGAAGGCGTCAAGGTTCCGGTACTCGGCTCCAATCACCCCAGCTATATCTGGTACGCCGCCGACCCTGAAAGCTATGACGGTGACCAGGCCAAGGCAGATGCCGCGGGCTTGAAAGTCATGGGACAGGACCTGAGCGCCGCATGCTGGCAAGCCGGGATGGGCAGCAAGCCCGATACCGATCCGACCCAGCAACTGAGCCAATGCACGCAGACCTGGCAGGTTACCCAGAAAGAGAAGACCTGCGAGTTGTTCTATACCTCGATTCGCAAACTGACGCCGGCCGAAGCGGCGACAAAATGCGCGGCGCCGGCGATCAAGTCGCAACTTCAGCAATTGAAGGTGCCTATGCCGCTGCCAGCTGAATCAGTCTGAMSKLAVFSLAALAFSAAAHAADIDVQLGSTERVTRLFAYPNNCNVICFRNWTLEQTVEHYLTQSVQRDGYGAAKVSVKRDNDIVYANISGVPKSYGQPLAALLNAGDLAYNGATKLNNDKKWAYNWYLFLPLGMALENRKSVELLHFPPDYSLTQAQDYLESATTDRWATLLTANGIAADQTPAYQTIIDIAPIAAPSNAGQALEGVYDYFNDYQTTMVKQVSQNASGNALPMVAFGAPVRNWIKTQYGPTVNVLGLATITPTEGVKVPVLGSNHPSYIWYAADPESYDGDQAKADAAGLKVMGQDLSAACWQAGMGSKPDTDPTQQLSQCTQTWQVTQKEKTCELFYTSIRKLTPAEAATKCAAPAIKSQLQQLKVPMPLPAESVNANANANANA
D1-35_042621419atoECOG2031Putative short-chain fatty acid transporterGTGACCACTGACATTGAAGACAGCCGCTCCGCCCGCTTCGCATTGCGCTGCTCCAGTTTCGCCGAGCGCTGGTTTCCCGACTCCTGGGTCTTCGCCGCGCTGGCGGTGCTGGTGGTCGCAATCGCCACGCAGTTCATCGGCGCTACGCCCACGGCAGCGGCGATGGCGTTTGGCGATGGCTTCTGGAGCCTGATTCCGTTCACGATGCAAATGGCCTTCGTGGTGATTGGCGGTTACGTGGTCGCCAGTTCGCCGCCCGCCGTCAAGCTGATCGATCGCCTGGCACGGATTCCAAAAAACGGCCGCAGTGCGGTAGCTTGGGTGGCCTTGATTTCCATGGTCGCATCGCTGCTCAACTGGGGCCTGTCGCTGGTGTTCGGCGGCCTGCTGGTGCGGGCACTCGCCCGGCGCAGCGACTTGAAAATGGATTATCGCGCCGCCGGTGCCGCCGCCTATCTGGGCCTGGGCGCGGTGTGGGCGCTGGGATTGTCTTCGTCGGCCGCGCAACTGCAGGCCAACCCGGCCAGCCTGCCGCCATCGATCCTGTCCATCACGGGCGTCATTCCGTTCACCCAGACCATTTTCCTCTGGCAGTCCGGGGTGATGTTGCTGGCGCTGATCGTGATTTCGCTGATCGTCGCCTACGCCACCGCTCCAGGGCCCAACAGCGCCCGTGATGCCGCCGCCTGCGGGATCGATCCGAGCTTCAGCATGCCGGCATTGCAGCCTCGCACCCGTCCGGGAGAATGGCTGGAACACAGCCCGCTGTTGACCATCGCCCTGGTGCTGCTGGCTGCCGGCTGGCTGTTCCACGAGTTTTCGACCAAGCCTGCGATCAGTGCCATTTCCGGGCTGAACACCTACAACTTCCTGTTCATCATGCTCGGCGCATTGTTGCACTGGCGCCCGCGCAGCTTCCTCGACGCCGTGGCCCGCGCGGTGCCGACCACAACCGGGGTGTTGATCCAGTTTCCGCTGTACGGTTCGATCGCCGCGCTGCTGACCACGGTCAAGGGCAGCGACGCGCAGACGCTGGCCCACCATATCTCGACCTTTTTCGTACAGATCGCGTCGCATGACACCTACGCCTTGTTGATGGGCGTCTATTCGGCGGTGCTGGGCTTCTTCATTCCCTCGGGCGGGGGCAAGTGGATCATCGAAGCGCCCTACGTCATGCAGGTGGCCAATGACCTGAACTATCACCTGGGCTGGGCGGTGCAGATCTATAACGCCGCCGAGGCGCTGCCGAACCTGATCAATCCGTTCTACATGCTGCCGCTGCTGGGTGTCCTGGGGCTGAAGGCCAGGGATCTGATCGGTTTTTCGTTTGTACAGTTGCTGGTGCACACCCCTCTGGTGCTGGTACTGCTCTGGGCGCTGGGGACCACGCTGACCTATTTGCCGCCCGTGATGCCATAAMTTDIEDSRSARFALRCSSFAERWFPDSWVFAALAVLVVAIATQFIGATPTAAAMAFGDGFWSLIPFTMQMAFVVIGGYVVASSPPAVKLIDRLARIPKNGRSAVAWVALISMVASLLNWGLSLVFGGLLVRALARRSDLKMDYRAAGAAAYLGLGAVWALGLSSSAAQLQANPASLPPSILSITGVIPFTQTIFLWQSGVMLLALIVISLIVAYATAPGPNSARDAAACGIDPSFSMPALQPRTRPGEWLEHSPLLTIALVLLAAGWLFHEFSTKPAISAISGLNTYNFLFIMLGALLHWRPRSFLDAVARAVPTTTGVLIQFPLYGSIAALLTTVKGSDAQTLAHHISTFFVQIASHDTYALLMGVYSAVLGFFIPSGGGKWIIEAPYVMQVANDLNYHLGWAVQIYNAAEALPNLINPFYMLPLLGVLGLKARDLIGFSFVQLLVHTPLVLVLLWALGTTLTYLPPVMPPGPT0021760_208DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0021760-atoE-K02106NANA
D1-35_042631317bdlA_2COG0840Biofilm dispersion protein BdlAATGTTCAACACCCGCCTCAAGCAGGAGCTGCTGGCTCTTCGCCAAGAACTCTCGAGCATCATGCAAGTCAAGGAAAGCCTGGATCGAGAGATGCTGGCGCTGACCCTCGATGCCGAAGGACGGGTGCAATCGGTCAATCAGAACTTTCTCGATGAGATGCACTACAAGAGCCAAGACTTGATTGGCCGCGCTGTCGAGGACCTGGTGCCGGCCTACCTGAGGTCCAACGAATTCCAGATTCGTTTCAAGACCGCGCTGACCCGCGGTGAGCACTTCTCCGGTGCCGTTCGCCTGGTACGAGGCAACGGCGACGAGGCCTGGCTACGCTCGATCCTCCAGCCGGTACGGGATGCCAATGGGCGAATCCGCTATTTCTCGATGTACTCCAGTGACCTGACCCGCACCATCGAAAATTCCCGCGAGCATGAAAACCTGATCGGCGCCCTGGTGCGTTCGACAGCGGTGATCGAGTTCGACCTGGGCGGCCACGTCCTGACAGCGAACGATCGTTTTCTCAATGCCATGGGCTACAACCTTGCGCAGATCAAGGGCAAGCACCACCGCACGTTTTGCGAGCCCGAGGAGTACAACAGCGCGGCCTACCAGAACTTCTGGAAACGCCTGAACAACGGGGAGTTCGTCGCCGGCCGCTTCAAGCGCCTCGACAGCAATGGCCGTGAGGTGTGGCTGGAGGCTTCCTACAATCCGGTACTTGACGCCAACGAGCGCCTTTACAAAGTGGTCAAGTTCGCGACCAATATCACCGATCAGGTCAACCAGGAAAAAGCCGTCGCCGAAGCCGCCAGCATCGCCTACAGCACGTCATTGCAGACCGATAGCAGCGCCCAGCGCGGAACCACCGTCGTGACCCAGGCGGTGGACGTGATGCGTGACCTGGCCCGACACATGCAAACCGCCGGTCAAGGTATCGAGGCCCTGAACGAGCAATCCCTGGTCATCGGGACCATCGTCAAGACCATCAGCGGCATCGCCGAACAGACCAACCTGCTGGCGCTCAACGCGGCCATCGAGGCTGCTCGGGCCGGTGAGCAGGGACGCGGTTTCGCAGTGGTCGCCGATGAGGTCCGGCAACTGGCTTCGCGAACCAGCCAGGCGACCGACGAGATCATTGGCGTGGTCCGCCAGAACCAGGACATGGCCCGCAATGCCGTGGCGCTGATGACCGATGGCCAGCATCAGGCTGAACAGGGCCTGGCCCTGGCAGCCGAGGCGGGAACGGTCATCGTCGAGATCCAGGACGGGGCGAAAAAGGTGGTGGATGCGGTGAGCCAGTTCGCCAATCAGCTGTCGACTTGAMFNTRLKQELLALRQELSSIMQVKESLDREMLALTLDAEGRVQSVNQNFLDEMHYKSQDLIGRAVEDLVPAYLRSNEFQIRFKTALTRGEHFSGAVRLVRGNGDEAWLRSILQPVRDANGRIRYFSMYSSDLTRTIENSREHENLIGALVRSTAVIEFDLGGHVLTANDRFLNAMGYNLAQIKGKHHRTFCEPEEYNSAAYQNFWKRLNNGEFVAGRFKRLDSNGREVWLEASYNPVLDANERLYKVVKFATNITDQVNQEKAVAEAASIAYSTSLQTDSSAQRGTTVVTQAVDVMRDLARHMQTAGQGIEALNEQSLVIGTIVKTISGIAEQTNLLALNAAIEAARAGEQGRGFAVVADEVRQLASRTSQATDEIIGVVRQNQDMARNAVALMTDGQHQAEQGLALAAEAGTVIVEIQDGAKKVVDAVSQFANQLSTPGPT0015710_26706DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_042641845ggt_2COG0405Glutathione hydrolase proenzymeGTGCTTTCAGACCTCAAACCGAATCTTCATCGCCTGTCAGCCGTTTCGCTGCTGGCCGTCGCCCTGACACTTGTTGCCTGTAAGACGCCGCCCGCCTCCACGACTGCCCCGCAATTGCCCACCGCTCCGGAAATCGCTTCCGGCTACCGCACCGACCTGCAGACTCGCCACGCCGACCGGCACATGGCCGCTGCGGCCAATCCTCTGGCGGCCGAGGCCGGACGGGAAATGCTCCGGCGTGGAGGCTCGGCCATCGACGCGGCGATTGCGATGCAGGCAGTGCTGACGCTGGTGGAACCGCAGTCTTCCGGCATCGGTGGTGGCGCGTTCATTGTGCTGTGGGACGGCAAGGCGGTGCGCACCTACGACGGTCGCGAAACGGCACCGGCCGGCGCCAGCGAAAAACTCTTCATCCAGGCCGACGGCAAACCCATGCCGTTCACCGCCGCGCAGATTGGCGGCCGTTCGGTAGGCACGCCTGGCGTGTTGCGCGCGCTGGAACTGGCTCATCGCAAACACGGTCGCCTGGAATGGTCGACGCTGTTCGAGCCGGCCATCAAACTGGCGGAACAGGGCTTCAGGATTTCCCCCCGGCTGCACTCGATGATCGCCGCCGATACAGCCTTGCCCAGCTCGCCCGAGATGGCCGCCTATTTCCTCAACGCCGATGGCAGCCCGAAAGCGGTGGGCACGCTGCTGAAAAATCCTGCCTTGGCCGGCGTACTTTCGCGTATTGCCCACGAAGGTCCCAGCGCGTTGTATGAAGGGCCGGTGGCTGCGGAGATCGTCGCCAAGGTGCAAGGCCATGGCAATCCCGGCAGCCTTTCGCTGAGCGACCTCAAGGGTTACGCCGCCCGGGAACGCGCGCCGTTGTGCACCGACTACAAGCGCTGGCAAGTCTGTGGCATGGCGCCACCGTCGTCCGGCGGGATCGCCGTCGCGCAGATCCTCGGGACATTGCAGGCCCTGGAACATCGCGACAGCCGCTCGGCCCTCGCGCCGTTGAAACCGCTACCGTCAGACAAGCCCGCGGGTCTCGAGCCGGCGCCGCAAGCGGTGCACCTGATTTCCGAGGCTGAACGCCTGGCCTACGCCGACCGCGCCCAGTATGTCGCCGATGCGGACTTTGTCCCGGTGCCGCTCAAGGGCCTGGTCGATCCGGCTTATCTGGCCAGTCGCGCGAACCTGATCGGCCCACGCAGCATGGGTATTGCCAAGCCCGGCACACCGCCGGGTATCCAGGTGGCCTACGCACCGGACCGCTCGCCCCTGCGCATTTCCACCTCGCAAGTGGTGGCGGTGGATGACCAGGGTGGCGCCGTGTCGATGACCACCACGGTGGAGTCGGCCTTCGGTTCGCACTTGATGGTGCAGGGCTTCATGCTCAACAACCAGATGACCGATTTCTCGTTCATACCCGAAGAGAACGGACAGAAAGTCGCCAACCGCGTCGAACCCGGCAAACGTCCGCGATCGTCCATGGCGCCAACGCTGATCTTCGATCGCCAGAGTGGCGAATTCCTCGCCGCAATTGGTTCGCCGGGCGGATCGCAGATCATCGAATACGTCGCCAAGTCGGTGATCGGCCTGCTGGACTGGAACCTGGACCCGCAAGCCGCCATCAACCTGCCCAACTTCGGCAGCCGCAACGGCGCCACCGAACTGGAGCAGGGCCAGTTCAGCCCGACGCTGATCCAGGCGCTGAAAGACCAGGGCCACACGGTGAGCGAGATCGACATGACCAGCGGCACCCAGGCCATCGTTCGGGTGCGCAATGCGCAAGGCAAGGCTTCACTGGCTGGCGGGGCGGATCCGCGGCGTGAGGGAGAGGCGCTGGGGGATTGAMLSDLKPNLHRLSAVSLLAVALTLVACKTPPASTTAPQLPTAPEIASGYRTDLQTRHADRHMAAAANPLAAEAGREMLRRGGSAIDAAIAMQAVLTLVEPQSSGIGGGAFIVLWDGKAVRTYDGRETAPAGASEKLFIQADGKPMPFTAAQIGGRSVGTPGVLRALELAHRKHGRLEWSTLFEPAIKLAEQGFRISPRLHSMIAADTALPSSPEMAAYFLNADGSPKAVGTLLKNPALAGVLSRIAHEGPSALYEGPVAAEIVAKVQGHGNPGSLSLSDLKGYAARERAPLCTDYKRWQVCGMAPPSSGGIAVAQILGTLQALEHRDSRSALAPLKPLPSDKPAGLEPAPQAVHLISEAERLAYADRAQYVADADFVPVPLKGLVDPAYLASRANLIGPRSMGIAKPGTPPGIQVAYAPDRSPLRISTSQVVAVDDQGGAVSMTTTVESAFGSHLMVQGFMLNNQMTDFSFIPEENGQKVANRVEPGKRPRSSMAPTLIFDRQSGEFLAAIGSPGGSQIIEYVAKSVIGLLDWNLDPQAAINLPNFGSRNGATELEQGQFSPTLIQALKDQGHTVSEIDMTSGTQAIVRVRNAQGKASLAGGADPRREGEALGDPGPT0002935_713DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_TAURINE_UTILIZATION,PGPT0002935-ggt-K00681NANA
D1-35_04265801hypothetical proteinATGACACTTTCGCTGGATGACATCGCGTGGCACCGCTCGGTCGGGCAACTGATCGACGCCTTGGACAAGCCCAATTTCTGGACGCAGCTGGTACGGCTGCTGGATCAGTACGTGCCCTTTGACAGTTGGGTGGCGCTGCTTTTCAGTGCCGACCAGCGCCCACAAGTGTTCGCCGAGTGCCCGGGCGCGGACGGCAGCCCCGATCAGTTGTTCCAGGATTACCTGCGCGGTTTGTATCTGCTCGATCCGTTCTACATCGCCTGTCGCGAGCAGTCGCGCACCGGGCTGTATCGCCTCTCGGAAGTCGCACCGGAACATTTCGAGCTGACCGAGTATTACCAACGCTACTTTCGGCTGAACGTGGTATCCGATGAAATCCAGTTCAATTGCCAGCTCGAAGGCGACCGCACGCTGTGCCTGTCGTTGGGCAGCAAGCAGCGCTTCAGTGGCGAGCAGATTGCGCTGCTGTCACTGATCCAGCCCTGGGTACTCGGCCTGTTGCGCCAGCGTCTGCCTTATGAAATCAATGAGGTCGTGGCCCTCGCGCCAGCACCGTCGCAAGTCGACTGGCGAGTGCAGCTGGAAGCGTCAGTGCAGCAGCTCAAAGGCGCGCAATTGACGGCGCGGGAATTGGATGTCGGGCGCTTGATGCTCAGTGGCTGCTCCAGCAAGGAAGTCGCCCGCAAGCTGGAAATTTCTGTCGAGACCGTGAAAGTCCATAAGAAGCACATGTACAGCAAACTGGGGATCAAGTCCCAGTCCGAGCTGTTTTCCATTTTTCTCCAGGCGCAGAATGCCTGAMTLSLDDIAWHRSVGQLIDALDKPNFWTQLVRLLDQYVPFDSWVALLFSADQRPQVFAECPGADGSPDQLFQDYLRGLYLLDPFYIACREQSRTGLYRLSEVAPEHFELTEYYQRYFRLNVVSDEIQFNCQLEGDRTLCLSLGSKQRFSGEQIALLSLIQPWVLGLLRQRLPYEINEVVALAPAPSQVDWRVQLEASVQQLKGAQLTARELDVGRLMLSGCSSKEVARKLEISVETVKVHKKHMYSKLGIKSQSELFSIFLQAQNANANANANANA
D1-35_04266822ramA_1(R)-stereoselective amidaseATGAAAGTTGAACTTGCCCAGTTGGCGGGTCGTGATAACGCCACGGCCTACAACCTCGAACGCGCGCTCAAGGCGATTGTCGCGTGTGCCGCCGATACGCAGATGATCGTGTTCCCCGAAACCCACCTGATGGGTTTTCCGTCGCTTGAGACGGTGGCAGAAACCGCCGAACCGCTGGACGGACCGACCGTCAGCGCGGTGCTCGCTGCGGCTCGGGAACATGACGTTGCCGTGGTGATCGGCGTGGCCGAGAACGACCGCGGCCGCTTTTACAACACCACGCTGCTGGTCACGCCACAAGGCATTGCGCTGAGATATCGCAAGACACACCTGTGGGCGTCGGATCGCGGGGTGTTCGAGGCCGGCGACCGTTACGCCACGTGTGAATGGAAGGGTGTGCGGGTCGGCCTGCTGATTTGCTACGACATCGAATTCCCGGAAACCGCCCGGGCCCTGGCGCAACTGGGGACCGAACTGCTGATCGTCACCAACGGCAACATGGATCCCTACGGCCCGACCCACCGCACCGCGATCATGGCCCGCGCCCAGGAAAACCAGGCGTTTGCGCTGATGGTCAATCGGGTGGAGGAGGGCGACGGCGGGTTGGTGTTTGCAGGCGGCAGTGCGTTGGTGGACCCGCTGGGCAAATTGTTGTTCGAGGCCGGGCGGGAGGAAGGGCAGTTTGTGGTGGAGCTGGACCTGAACCAGCTGGCGGCGGCGCGGCATGATTATCGGTATCTGGATGATCAGCGCCTGAAGTTGCCGGGGGAAATTGTCGAGCATGCCTGTGGGTTGCGCGAGCTGCTGATTCCTGCGCGTTGAMKVELAQLAGRDNATAYNLERALKAIVACAADTQMIVFPETHLMGFPSLETVAETAEPLDGPTVSAVLAAAREHDVAVVIGVAENDRGRFYNTTLLVTPQGIALRYRKTHLWASDRGVFEAGDRYATCEWKGVRVGLLICYDIEFPETARALAQLGTELLIVTNGNMDPYGPTHRTAIMARAQENQAFALMVNRVEEGDGGLVFAGGSALVDPLGKLLFEAGREEGQFVVELDLNQLAAARHDYRYLDDQRLKLPGEIVEHACGLRELLIPARNANANANANA
D1-35_042671326puuPCOG0531Putrescine importer PuuPATGGCTCGTTTACAACGCACCCTGTCATTGGGGTCGGTGGTGCTGTTCGGCATCGCTTATATGACACCGATCATTGTCCTCGGTACCTTCGGCATCCTCGCTCAATCCACCGCCGGCATGGTCCCCGCCGCTTATCTTGCGGCACTGGTGGCGATGTTTTTCACCGCGATGAGCTACGGCCGCATGGCCGCAGCGTTTCCCGTCGCCGGTTCGGCCTACAGCTACGTGCGCAAGGCGATCAGCCCGAAACTCGGGTTCATCGCCGGTTGGGGGGTGCTGCTCGATTATCTGTTCCTGCCCATGGCGATCTGGCTGATCGGCGCGGCCTACCTCCATTCCGCATTCCCGGCGGTGCCGCAGTGGATCTGGGTGCTGCTGTTCATCGGCATAACCAGTGCGATCAATATCGTCGGTCTGAAACTGGCCAACGGTATCAACGCGTTATTGATGCTGGTGCAGTTCCTGGTACTGATCGCCTTCGTTGCGCTGTGCTTCCATTACATCGGCGGTGATGCGAGCACACCGTTGTGGTCGGTCAAGCCGTTCTTCAACGGTGACATGCAGATGCCGCTGATCATGAGCGGTGCGGCCATTGCCTGTTATTCATTCCTCGGGTTCGACGCGGTCAGCACCTTGACCGAAGAAACCCGCGACCCACGCCGGACCATTCCGCGCGCGATCATGCTGATCACCCTGATTGGCGGATTGATCTTCGTCAGCGTGTCGTATTTCGTGCAGGTCGCGCATCCGTCCTTCCAGTTCGACAGCGTCGATGCGGCGGCCTATGAAATTGCCCGCAATATCGGTGGCGACCTGTTCGTGTCGATCTTCCTGATCGGCCTGATCGTTGGCCAGTTCGCGTCGGGTCTGTCGGCTCAGGCCAGCGGCTCGCGCCTGCTATTCGCCATGGGCCGTGACGGTGTGCTGCCAAAATCCTTCTTCGGTACCTTGCATGAGCGTTTCGGGACGCCGATCAACAGCATCCTGTTGTGCGCAGTGGTCGCGTTGCTGGCGCTGAAACTGGACGTCACCACCTCCACCTCGTTCATCAACTTCGGCGCGTTCCTGGCGTTCAGCCTGGTGAACCTGTCAGTGATCTTTCACTACTGGATCGGCGCAGAAAAGAAGGGCCCGCGTGAATTCGTATTGTTCCTGCTGTTCCCGTTCATAGGGCTGGCAGCGGATGTGTGGCTGATGGTCAGCCTCGATCACCTGGCAATCTATCTTGGCCTGAGTTGGCTGGCGATCGGCGTGGTGTACCTGGCGGTGCTGACGGGCGGCTTCCAGCGCCAGCCACCGGAGATGGATTTCCAGGAGACTGCATAAMARLQRTLSLGSVVLFGIAYMTPIIVLGTFGILAQSTAGMVPAAYLAALVAMFFTAMSYGRMAAAFPVAGSAYSYVRKAISPKLGFIAGWGVLLDYLFLPMAIWLIGAAYLHSAFPAVPQWIWVLLFIGITSAINIVGLKLANGINALLMLVQFLVLIAFVALCFHYIGGDASTPLWSVKPFFNGDMQMPLIMSGAAIACYSFLGFDAVSTLTEETRDPRRTIPRAIMLITLIGGLIFVSVSYFVQVAHPSFQFDSVDAAAYEIARNIGGDLFVSIFLIGLIVGQFASGLSAQASGSRLLFAMGRDGVLPKSFFGTLHERFGTPINSILLCAVVALLALKLDVTTSTSFINFGAFLAFSLVNLSVIFHYWIGAEKKGPREFVLFLLFPFIGLAADVWLMVSLDHLAIYLGLSWLAIGVVYLAVLTGGFQRQPPEMDFQETAPGPT0007795_498DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007795-puuP-K14052NANA
D1-35_04268699hypothetical proteinATGAGCACAATTGAGAACATTTTTGAGCCATCCAGGTTGCTACTAGTGTGGCATCACTCACAGCCTGGTGCTCCTCGCCATCGCAGAGTGGTGGGGGAATTGGTTCGTCAGGGAGAAGATGCATCCTTTCGATACCTCAAGGACACAGATGACTTCCAGGCAGCACTGGAGGAGGGTTTTTACGAATTTCCTGCATTTGCTGACAACGTAAGCAGTGAGCGCCAATCAGGCGCGTTAGACGTGTTCATGCGCCGTCTACCTCCACGCAAGCGGGAAGACTTCCGTGAGTATCTTGCTCAATACGCCTTGCCAGCCAATTTTTCCGGTTCAACATTTTCGTTGCTGGGATACACCGGTGCGAGGTTGGCAAGCGATACCTTTGAGCTGTGCCCGGATTTGAGTGATGCCAAGGCTCCACTGGATTTCGTTATTGAAGCGTCCGGAACGCAGTATCACACTACCGCAGAAAATATATTTTCTGAGGATGATGAGGTTTTTTTTGAGCCAGACCCTCAAAACCCTCACGACAGTAAAGCGATAAAGATCATTCATAAAGGCGTCGTTGTCGGCTTTGTGAATAAAGCTTTATCGATAAGCTTTCATCGGTTACTTGAAACGGGAACTGTCGAAGGAAGCGTTCTTCGGTTCACAGAGCGAAAAGGAAAGTCGCGGCTATTGATTTTAGTCCGATACCTTTAAMSTIENIFEPSRLLLVWHHSQPGAPRHRRVVGELVRQGEDASFRYLKDTDDFQAALEEGFYEFPAFADNVSSERQSGALDVFMRRLPPRKREDFREYLAQYALPANFSGSTFSLLGYTGARLASDTFELCPDLSDAKAPLDFVIEASGTQYHTTAENIFSEDDEVFFEPDPQNPHDSKAIKIIHKGVVVGFVNKALSISFHRLLETGTVEGSVLRFTERKGKSRLLILVRYLNANANANANA
D1-35_04269966hypothetical proteinATGCAAACAGAATTCATAAATATCAGCGATTGGCCAGACGACGATGAGTTTTCTTCTGCCTATCCCGAAGGCGCAAGGCCTAAACGCACCCTTTTCTCGCCCACGAATCCGACACAGCCCTTTATCGAGCCGGATTGGCGGCATATGTTTAAGCGCTCAGCAGCCAGATATCCTGAACAATTTTGGGCAGAAATTATCGCTTACGAAATATCTGTGTTACTCAAAGTGCCGGCGCCACCATGTTATGCCGCCTTTGATCCTGCCACAGGCCAATGCGGTGCTCTTAGTGCGTGGTTTTATAAAGAGGGAGAAGAGTCTTTCTATTCCGCCGGTAATTTCTTCCACAAGCTTATCAAGACATTTGATAGAGAAAAAGGAACGCAACACAATATTGTGGATTCAGACGAGTTCAACAACAAAGTGCTTGGCAAAAATCAGATTTATGAGTTTTGGAGCATGATGCTTTTTGACGTGCTCCTAGGAAATACCGATCGTCATCAAGACAACTGGGGACACCTACTCAAAGCCGTTCGTGTCAGTAAGAGTGTTGCTCGTCGTAGAGGTGAGCCCTTTGATGTGAAGTGGCGTTTCGCTCCTTGGTTCGATAATGGAACTAGCCTGGGACACGAGCTTCTAAATGAAAAGTTCACACAGTGGAACGACGCTACGCTGGACCGGTACATCCTGCGGGGCAGGCACCACATGAGGTACTCAAGGACGAACCTTGAGCGTATGGGCCACATAGCTTCACTGAGTTTCATAAAGAGCCACGCCGGTGTGAGAGCCCTGCTGCTGAAGCGTCTCAAAGAGTTTGATCTAAAGGCGCTTGCAGTCGTGCTCCACAGGCTTGTTGACCTACCCGCTCCCCCAGGTGGTAATCTCACCAAGGATCGAGCAGATTTTATTCTCCGGCTGACGCACCGTCGTGCTCAGCTAGCCATGGAAACCTTAAATGAGCACAATTGAMQTEFINISDWPDDDEFSSAYPEGARPKRTLFSPTNPTQPFIEPDWRHMFKRSAARYPEQFWAEIIAYEISVLLKVPAPPCYAAFDPATGQCGALSAWFYKEGEESFYSAGNFFHKLIKTFDREKGTQHNIVDSDEFNNKVLGKNQIYEFWSMMLFDVLLGNTDRHQDNWGHLLKAVRVSKSVARRRGEPFDVKWRFAPWFDNGTSLGHELLNEKFTQWNDATLDRYILRGRHHMRYSRTNLERMGHIASLSFIKSHAGVRALLLKRLKEFDLKALAVVLHRLVDLPAPPGGNLTKDRADFILRLTHRRAQLAMETLNEHNNANANANANA
D1-35_04270198hypothetical proteinATGCTACCAATGTATGACCAGCACCTTATGGATGTGTTTGATATCCTCACCGGAGCTGACTACGAAGTTACTGGTAACAGAAAGGTAGGCGGCAGAGACCAGAACTGCGATCGCAAACAGGAATTTTGTCAGGAAGGAGCCAAGCTGAACGATGCAAACAGAATTCATAAATATCAGCGATTGGCCAGACGACGATGAMLPMYDQHLMDVFDILTGADYEVTGNRKVGGRDQNCDRKQEFCQEGAKLNDANRIHKYQRLARRRNANANANANA
D1-35_04271201hypothetical proteinGTGTCCGTTATTGACTGTGATTATCTGCCCACCGACAAGGTGGTGTTTCCGCCGGAGCTCGCGCTGCTGATCGTCAGGAAGGCCAGCGCAATGGCGGCAGCATTCGAGGAGCAAGCGCTCAACCAGCTCACCAAGGACGCCCGGCGCGCCCTTTCGCGGGGAGCTGAGCCAAGACGAGTCATCAGGGAAATGCGCTTATAAMSVIDCDYLPTDKVVFPPELALLIVRKASAMAAAFEEQALNQLTKDARRALSRGAEPRRVIREMRLNANANANANA
D1-35_04272225hypothetical proteinATGACGGACACCAAACTGATTGCCAGCCTGTTCGACCGCTTCAATCAAAACCAGCTCGCATTGGGCGCCGCAGTGGAGGAGCTTTCCAACTGGGTCGAGCAGCGCGGATCAGCAGACATTGCCAACAACGCGCGCGGCGCGCTGGAAACGCTAGACGAGAACCTGGTGTTCATTCGCCAGGGCATTGCTGAGTTGGCCGTCGCGGGCAGTCTGGGCCAATCGTGAMTDTKLIASLFDRFNQNQLALGAAVEELSNWVEQRGSADIANNARGALETLDENLVFIRQGIAELAVAGSLGQSNANANANANA
D1-35_04273150hypothetical proteinATGCTGGCGCGCATCATGCGTGCCGGCCAGTCGACCCCGCGCCGTGGGTTTGGTCTGGGTCTGGCCAGGTTGCCAGTGGAAAGCACTGCCAAACCCCGGAAACCTCAGTGGAAATTAGCTAATGACATCTTAAGGATTCTCAGAATGTAAMLARIMRAGQSTPRRGFGLGLARLPVESTAKPRKPQWKLANDILRILRMNANANANANA
D1-35_04274975hypothetical proteinATGATCCAATTTCTGGATACACAGAGTCATGTGCGGCCGCTAGATGGTCATGTAGATCAACCACCAAACGTGAAGATGGCGGACTACTTGTTTTTCAATGGCCGGGCCGTAACCGAGCTCAAGACCCTCGAAATTGATCCGAAGGAAAAAATTTTCAGCCTGGCCAAACCGGCAATGGATTCGGAAGATTTCCCCCTGATCTATGGCAAGTATGACTTGGAAGCCGCGATCAAGACGATGCCCGGTGGTGAGGCAATCATGAGCAAAATCTTCGCGAATGCTACTAGGATGGTGGAGGGTGTATGCCGGCAGGCTCGTGATCAGATCAAGTCAACGAAAGACCACCTTAAACTCGATCCAGAAACCCCCGGGATTCTGCTCGTGCTGAATGAAACCGTTGAGAGCATCCCGGTTAGTCAACTGGTCGATAGATTCAGTTACTGGCTTGAGGGCGGTAGCGCAAAGCAATTGAGCCGCTTTTCGCAGATCGATTTTGTAGTACTAATCCAGACTACCTATCGCGTCAAAGCCCAACAGGGCCAGATGGTGCCGGCTTTCATTATCTACAACGAATGCAATGCCCACCGCCATCACTTAGTGGAAAAGGACATACACGCCTTTCTTGAATCATGGGCTCGGTCGCAAGGGCACCATTATGAAACTACTGGAAATGTTCAGGGCTTGAAGTTCGAGGCGGACGTGCCTACGCCCCCGCCGCCACAAACCAGACAAGAATACGTTGAGCATCATTATCGGCTAAATCGGTATCTCCAAAAGCTCACGGACGAAGAGCTCATACAGCATGGCTGCAAAGTTATTGACCAGGTTACTTCAATTGTTTTGATCGGCGCCCCGAGGATTTCCGAGGCGACGGAGATGCTATACATGGCCCATTTTACTGAGTTACTCGAAGAGTGCCGGCTGAGAAGCTTTGATCTTAAAAGGGTAACCAGCAGGATGCGAGCACAGAGGTAAMIQFLDTQSHVRPLDGHVDQPPNVKMADYLFFNGRAVTELKTLEIDPKEKIFSLAKPAMDSEDFPLIYGKYDLEAAIKTMPGGEAIMSKIFANATRMVEGVCRQARDQIKSTKDHLKLDPETPGILLVLNETVESIPVSQLVDRFSYWLEGGSAKQLSRFSQIDFVVLIQTTYRVKAQQGQMVPAFIIYNECNAHRHHLVEKDIHAFLESWARSQGHHYETTGNVQGLKFEADVPTPPPPQTRQEYVEHHYRLNRYLQKLTDEELIQHGCKVIDQVTSIVLIGAPRISEATEMLYMAHFTELLEECRLRSFDLKRVTSRMRAQRNANANANANA
D1-35_04275219hypothetical proteinATGACGGCAAGTCAGAGGTTGCACGACAGGGTCTTGTTGTACGCCTGCAAAGAGATTCACAACATTTTGTTCGGGGGAGCTTCGTACGCTGCTCAGTATCCACGACTGCTGCAGATGGTGTGCGGCTGTATCGACAGCGGCATCATCACGCAGGACGAGGGAGATATGATTCGAGGAGAGGCCAAGATGGCGCTCGACAATGCTTTTCGGGCCTGCTGAMTASQRLHDRVLLYACKEIHNILFGGASYAAQYPRLLQMVCGCIDSGIITQDEGDMIRGEAKMALDNAFRACNANANANANA
D1-35_04276300hypothetical proteinATGGCTCACACCATGAACCCCAAGCGATATTACCGAGCTCTGCAACGCGGGAATGACGCCTTCATCGAAGGACACTTCTACAACGGACGATTCTACGAAGGCAATAATCTCGTCGGGCAGATCGACGATGATGGCGCCTTCCGTTATTTCGAGAGCAAGGACGACGGTCGGCCAACCTTCCCGGAGCACATCGCGGGTTATGTCGAAGGTCTGGTGCTGACGCTGAAGGACGGATCACTCTTTGACCTGATCGAGGTGAAATCTAAATCGAGCAGCAAGCCGCCGGCCGGCCAACCTTGAMAHTMNPKRYYRALQRGNDAFIEGHFYNGRFYEGNNLVGQIDDDGAFRYFESKDDGRPTFPEHIAGYVEGLVLTLKDGSLFDLIEVKSKSSSKPPAGQPNANANANANA
D1-35_04277435hypothetical proteinATGCACAGGATTTTTCTCGCGTTCATCGCCGCCGGCGTGCTGGCCGCCTGCTCCAGTACACCGGTCGACCAAGCGTCGGCGAAGAAAGTGCCAGCAGCCAGAACGTTTGCGTTTCAGTCAGACGTTCCGGGCGGCGCCAAGCTGGTGGTGAGTCGAGATAGTGGCTTTTGGGCGTCCGGTGGATGCTATGCAACGGTGTTGGTCGATGGCAGGAAAGCCGCGCGTATCGACACAGGCGAGATCGTGGCGTTTCAGGTCAAGCCTGGTCGCCACATCATCGGTATAGCGGGTGACGACGACGGTAACGGCGTATGCGCGCTACAGATCGGCCAGCCGGTGAAGGAGACGGCCACACAGGTCGGCGCCGGGGATGTTCAGAAGTTCAGGGTGTCCGGTACGCAAAACGGTACCGATATTCGTCCCAGCTCCTTCTGAMHRIFLAFIAAGVLAACSSTPVDQASAKKVPAARTFAFQSDVPGGAKLVVSRDSGFWASGGCYATVLVDGRKAARIDTGEIVAFQVKPGRHIIGIAGDDDGNGVCALQIGQPVKETATQVGAGDVQKFRVSGTQNGTDIRPSSFNANANANANA
D1-35_04278585hypothetical proteinATGGCAATGGCAACCGACTACGGCAACAAAACCTTGATCCTACTGGGCGGCAGCGCTGGCAAGCTCTTTGGCCGCAAACACCTCTACGAACTATCAACGGGGGATGTCCGCGAGGCGGTTAAGGCGGTAGACGTGAATCACCCGGGATTTGCCAAATACCTTGCCAACGCAAAGGCCCGCGGCCTGGAGTTCGCCATTTTTCGAAACCGGCGCAATATCGGCGAGAAGGAGCTCGGGATGGGGCGAGCAAACGAGATCCGCATCGTCCCAGTCATTCATGGGAGTAAGCGGGCGGGACTATTGCAGACAGTGTTGGGGGCGGTGCTGATCGTGCTCAGTCCGTTCACGAACGGCGCCACACTCGCGCCGGGCATAGCGCTCGCCGCCGGCGGCGTGATCCAGATGCTCAGCCCGCAGGCCTCAGGCCTAAGGCAGAGCGCCGGACCAGAAAACGCCCCGTCCTACGCCTTCGGCAGCGCGAAGAACACCACGGCGAGCGGCAACCCGGTACCGATCTGCATCGGAGAACGTCGGTGGGGCGGGATGATCATCTCTGCCTCGATCTACGCCGAAGACAAAATGTAGMAMATDYGNKTLILLGGSAGKLFGRKHLYELSTGDVREAVKAVDVNHPGFAKYLANAKARGLEFAIFRNRRNIGEKELGMGRANEIRIVPVIHGSKRAGLLQTVLGAVLIVLSPFTNGATLAPGIALAAGGVIQMLSPQASGLRQSAGPENAPSYAFGSAKNTTASGNPVPICIGERRWGGMIISASIYAEDKMNANANANANA
D1-35_04279351hypothetical proteinATGTCACATCACATACACTTCGCCGAAGCGTGCAAGGCCACTGACTTCACAACTGACCCCGGCACTATCGGCGGCTACATCGTCTGGACCGTACAGCATGTGCGAGACGGACAGCGGGTTGAAATTGAAGGGCCGTTCTTCACTGAGGAAGAGGCCAGGATCTCCGCCGAACTGATGCGCATCGAGTACCGAGGAGCCCGAGCCTACCAATCGACTCATTGCTCAGCCTGGAATCCCGACGTGAAACGCGAGATCGCGATTCGAAACGACGCTATGGCCGCTCGAATGCTTCTTGCCGGACAGCTCGGCATGGAAATTCCCAAACACAGCGCCCAAGGCGCCCAGGAGTAAMSHHIHFAEACKATDFTTDPGTIGGYIVWTVQHVRDGQRVEIEGPFFTEEEARISAELMRIEYRGARAYQSTHCSAWNPDVKREIAIRNDAMAARMLLAGQLGMEIPKHSAQGAQENANANANANA
D1-35_04280606hypothetical proteinATGAAGACCAATGTCGTTATCGCCCTGCTGGATATTGCACAGCAGCCGGGCGCCAGCATGAGTACGAGCCTGATCACTACTCGCCGGATCTGCCGAATCTTCGGACAGAGGGCGGACACCATCCGAAGCGAGCGCCGGGATATACGGCGGGAGGCCGGGAAACTTCGCGCCTTCCTACCCTTCACCACCAGCAGGATCGACGAACTCCAGCAGCAGGCCATGGAGCATCGGAGGGCCGAGTGGGACGACTTACGCAAGGTGCTCGGCGCCTTTGGCCGATCGCTGATGCTGGATACCGAAGGCCTGATGGATGGCCTGGGATTCGACCGGGTGTGCGATCTGCTGGCGGTGAACACCGTGGAGCGTGAAGCGGCGAGGAAAGACGGCGTGAACGGTTTGGCGGAGCTGGTGTTCGCCTGTTCCCTGGAGGACAGCGCCGCACGTCGCGGGCAGGAATGGAACGACGCGCCTTTGTTCAACGCCTGTCAGATCGCGACCGCCAACTTCATCAGGGACTGCCCCGAGCACTTGCTCCCCGATCCGTTCGCGCCTGGCGCACCGTTTGGCCCAAAGCTTCCGCCCACCCTGAGCATCGTTGGCAAGTAGMKTNVVIALLDIAQQPGASMSTSLITTRRICRIFGQRADTIRSERRDIRREAGKLRAFLPFTTSRIDELQQQAMEHRRAEWDDLRKVLGAFGRSLMLDTEGLMDGLGFDRVCDLLAVNTVEREAARKDGVNGLAELVFACSLEDSAARRGQEWNDAPLFNACQIATANFIRDCPEHLLPDPFAPGAPFGPKLPPTLSIVGKNANANANANA
D1-35_04281312hypothetical proteinATGAGTCTCCTTTCCGGCCTGCTCGATCACATGCCGCCGATCATCGCTGGCATCACCGCGGAGACCTCCCGCCGACCTGCGCCTCGTCCATCGCTGGCGCTGGTCGCACAAGCAGAACGCCACCCCCAGTTTGTGACTGCGCCTCATGCAAGCGCCGCCACGGCAACGCCCGAGTGGCGGCTGGCCCGCGACGCATACCTCAACCACATCATGGCCTGCCGGTCCTGCTACGCGCCCACCGCCCGCTATTGCAGCGTCGGCGCCGGCTTGCGCGCCAGTTATGACCGCACGCCCATGGAGACACAGCCATGAMSLLSGLLDHMPPIIAGITAETSRRPAPRPSLALVAQAERHPQFVTAPHASAATATPEWRLARDAYLNHIMACRSCYAPTARYCSVGAGLRASYDRTPMETQPNANANANANA
D1-35_042821803hypothetical proteinATGGCCAAGCCTGACACCAACGTGATCAACCTTCGGCCCGAAGCCGCCACCATTGCCCCTGATCGGCCGTGCTGGGCGGTGTACGAGCACTGGGTTACCAACGAGAACGGTCGAAAGCTGCGCCCGGGCGTGTACTGGCACAGCTTCAAGCGCACCGCCGCCGATCAGGACGACGCGGAGAATGACGCCGCCGACCGCCCAATCACCGACGAATGGATCTCCAGCCCCGTCACGGTCGTGGCGCGCACCACCAACAGCGATGACGGCAGCGAGGGGCGGCTGCTCCGCCTGGCCACCGAGGGTGGCATCAAGGAATGGATCATCGCCATGGAGGTGTTCGGTGGCAGCGGCGAGGATGCCCGGCGGGCATTGTTTGGCATGGGCGTCATCATCGCGCTCAAGAAGCGCGGCACGTTCATGGAGTATCTGCTCGACCAGCACCCCGCCGAGGTATTCGCCACCACCAGCCGGCCGGGCTGGCATGAGTCGGGAGCGTTCGTGCTGCCCGGGCGGACGATCGGCACGGCCAACGTGCGGTATCAGGCCAGCAACAAGGCGCAAGTCCTGTTCAGTCAGCGCGGCGAGCTGGCGCGGTGGCAGGCCGAGGTGGCAGCCAAATGCGCGGGTAATCCGGTGCTGACGTTAGCGATCGGCTGCTCCCTCGCCGGGCCGCTGCTGAGTCTGGTCGGCGTGCTGGGCGGCGGCGTCCACCTGGTGGGCGACAGCTCAAGCGGCAAGTCGCTGGCTCAACTGATCGGCTCGTCGGTGTGGGGCGATCCTGGAGTGTTCGCCGCCAGTTGGGACATGACCAAGGGCGGCCTTGAGATCGAGGCATCGAGCCGTAACGACACCATCCTGCCGCTGGACGAAATCAAACGCGCCGATCCCAAGCGGGTACAGGAAATGGCCTACTCCCTCGCCAATGGCCAGGGCAAAGGCACCATGACCCGCGAGCGCGAGGCCCGGGGCAAACTGAGCTGGCGCCTGCTCACTCTCTCCAGTGGCGAGCGCTCCCTCTCCGAGCACGCCGCCATATCCGGTAATGCCGCCCACGCTGGCGCCGAGCTGCGCATGGTCGACGTGAATGCTGGTACCCGTACCCATCGGGCCTTTGACGAATTGCACGGCCTGGAGGGCGCGGACTTTCACCGGCAGCTCACCGTCGCGGTGGGCGCCCACCATGGCCACCTGGGGCCGGCCTTCGTCGAGCGCCTGGTCGCGGACGACGACAAGCCCGGCTTGCTCAGTGACTTTGACGGCATCCGCGCTCAGTTCGTCGAGGACAACGCCCAGGCCGGTCGTGTGGCTGACCGGTTCGCCGTGATTGCGCTGGCGGGCGAGATGGCCATCGCCTACGGACTGCTCCCGTGGGAGCCCGGTACCGCCCTCGCCGACTGCCGCCTGCTTTACGGCGAATGGCTTTCCCGTGTCGGCGGAGGGAATGCCGAGGACCGCCAGATCCTGGCCGGCATCATCGACTTTATCGACAAGCACGGCAGCAGCCGTTTCTCGGACGTGGACGCACCCGAGGCGGACGCCAAGGTGTTCAACCGCGCCGGGTACTGGGAGGTGGTCGCCAACAAGCGACTGTTCCTGTTCAACAAGTCCGCGCTCATCGAAGCCGCGCACGGGTTCGGCCTCACCCGCGTCATCAAGGCGCTGGAGGTTGGCGGAGCCCTGGCCAAGCGCGACACCGACCGGGAAAGCCGCAAAACCAAAAAGTACCGCATCCCCGCCGGCGGATCGGCACGGCTGTACGTCATCGACCCGGAAGCCCTGGACAGCGAAGGCGGTGCCGCATGAMAKPDTNVINLRPEAATIAPDRPCWAVYEHWVTNENGRKLRPGVYWHSFKRTAADQDDAENDAADRPITDEWISSPVTVVARTTNSDDGSEGRLLRLATEGGIKEWIIAMEVFGGSGEDARRALFGMGVIIALKKRGTFMEYLLDQHPAEVFATTSRPGWHESGAFVLPGRTIGTANVRYQASNKAQVLFSQRGELARWQAEVAAKCAGNPVLTLAIGCSLAGPLLSLVGVLGGGVHLVGDSSSGKSLAQLIGSSVWGDPGVFAASWDMTKGGLEIEASSRNDTILPLDEIKRADPKRVQEMAYSLANGQGKGTMTREREARGKLSWRLLTLSSGERSLSEHAAISGNAAHAGAELRMVDVNAGTRTHRAFDELHGLEGADFHRQLTVAVGAHHGHLGPAFVERLVADDDKPGLLSDFDGIRAQFVEDNAQAGRVADRFAVIALAGEMAIAYGLLPWEPGTALADCRLLYGEWLSRVGGGNAEDRQILAGIIDFIDKHGSSRFSDVDAPEADAKVFNRAGYWEVVANKRLFLFNKSALIEAAHGFGLTRVIKALEVGGALAKRDTDRESRKTKKYRIPAGGSARLYVIDPEALDSEGGAANANANANANA
D1-35_04283882traCDNA primase TraCATGACTGACGCTACGGTCCTTTTCCGTGACGCGCTCCAGGCCGTCTATGGCCCGCTCGACTGGATGCCAGAACCTGACGGCCTCATCCATCGGTTCCGGGTACCGGAGGACAAACCGGGCTCCCTCAACGGCTGGTATGTGCTGTATCTAGATGGCATCGCGTCCGGCGCGTTCGGCAGTTGGAAAGCCGGCGGCGCCAGCACCTGGTGTAGCCGCGAACCAGTGGACGCCCGCGAAGCTGCGCAGATCCGCGAGCGGGTTGACCAGGCCCGGCGCCAGCGCGAAGCCGAACAGCGCCGGCGCCAGCAGCAGGCCGCCGAGAAGGCCAACCACTGGTGGCGCAATGCGCGCCGTGCCGCGCCTGATCATCCCTACCTCGCAGCCAAGGGCGTTCGCTCCCACAGCTTGCGCCAGCGTGGGGCTGATCTTCTCGTCCCGCTCTACCTCGATGGTCGCATGGTCAACCTGCAGAAAATCAGCCCGGACGGAGCCAAGCGCTTCCTACCCGGTGGCCGCGTGAAGGGCACGTATTCGCCGCTGGGCATCATCGAGCCCGGTTCCGTGCTGTGCATCTGCGAAGGATGGGCGACGGCCGCCAGCCTCCACCAGCACGGCGGCTATGTCGTTGCGGCAGCCATGAACGCGGGCAACCTGATCCCGGCAGCGATGGGCCTCCGCGCTCGCTACCCGGGCCAGCCCATCGTCATTGCCGGCGACGACGACCGACTCACCGATGGCAACCCAGGTCGCGCAGCGGCGAACGCAGCCGCGGCGGCAGTGGGTGGCCAGGTAGCTTTCCCTGAGTGGCCGGAAGGCGCGCCCGACGACCTCACCGACTTCAACGACCTCGCAAATTGGGAGCTCGCCAATGGCCAAGCCTGAMTDATVLFRDALQAVYGPLDWMPEPDGLIHRFRVPEDKPGSLNGWYVLYLDGIASGAFGSWKAGGASTWCSREPVDAREAAQIRERVDQARRQREAEQRRRQQQAAEKANHWWRNARRAAPDHPYLAAKGVRSHSLRQRGADLLVPLYLDGRMVNLQKISPDGAKRFLPGGRVKGTYSPLGIIEPGSVLCICEGWATAASLHQHGGYVVAAAMNAGNLIPAAMGLRARYPGQPIVIAGDDDRLTDGNPGRAAANAAAAAVGGQVAFPEWPEGAPDDLTDFNDLANWELANGQANANANANANA
D1-35_04284225hypothetical proteinGTGGGTGATGTGATTCCGTTCGACCCACTCACCAGCATCATGCGTGACGATGAGGCGCCTCACATCGACCCGTACAGCTTCGCCTTGCTGGTCGGCGTCTTCAACGACCTGACGGCATTTCGTGACAACGAGCCAAACCGTGACCGCGCCGCACTGATGCGCAAGACGACCACCAAGCTCAACGCAGTGCTGGCGCGGTTTGAGCCGCCACAGGGGGCCGCATGAMGDVIPFDPLTSIMRDDEAPHIDPYSFALLVGVFNDLTAFRDNEPNRDRAALMRKTTTKLNAVLARFEPPQGAANANANANANA
D1-35_04285288hypothetical proteinATGAAAATTCAAAACGGCGCATTTGCGTCGAGGGGATCGGCTTGCCCGAAGAAAGCCAACGAGCTGTTTTACGTGACCCACCAAAAGGCGCCTAAAGCGCTGCTGGGCCCGTTCCTGAGCAAAGCCGACGCCGAGTGCGGGCGCGTGGTTATGCGCAGCGCCGACGCCCAGGTCACGGCCTGCCTGGTCGACTCCATCGACGACATCACGCACTGGCACGCCGTAAACAACGGCCGTGTTTGCCGGGTCTTCGCTGGCGCTGATCGCCAGGAGGTGAGCCGTGGGTGAMKIQNGAFASRGSACPKKANELFYVTHQKAPKALLGPFLSKADAECGRVVMRSADAQVTACLVDSIDDITHWHAVNNGRVCRVFAGADRQEVSRGNANANANANA
D1-35_04286291hypothetical proteinATGACCGTGCCCTATTACAGCGTTTGTCTGCCGTTGCCTGGCTACCCGCAAGGCAACCGGTTCCCATACGGCATTTGCGGACCGTTCATGGATGCTCACGAAGCTGAGGACGCCATGGTCGCGCTTCAAACAATCCTCCCCGGGCGGGAGCTGGCGATCATCTGCGGACGACAAGCGGATGACGCTCCGTGGCTACTCGTTGACCAGGAGAAGGCGCGGGCGAAGCTCAGAGAAAAAACGAAGTCTCGTTATGAAACTGGCTCTGCCAAACAAATAACCGAACAGGCTTAAMTVPYYSVCLPLPGYPQGNRFPYGICGPFMDAHEAEDAMVALQTILPGRELAIICGRQADDAPWLLVDQEKARAKLREKTKSRYETGSAKQITEQANANANANANA
D1-35_04287216hypothetical proteinATGACCAGCGCACTCCCAAGCAATACAGGCGTCGTCGACGATCTGCGCGATGCGCAAGAGATCCTGGTGCTGTTGGCGATGTCGCTGGCGCTGATCGCCTCGCCCTCTACCCACGTTCTTGTGGCCCGCGTGTTGGCTGTGTTCGCGCAGCACACCGCCATGGCCTGGGCCGAACTTCTGGATGATGCAATTGCTGAACAAGGGGGTGATGTATGAMTSALPSNTGVVDDLRDAQEILVLLAMSLALIASPSTHVLVARVLAVFAQHTAMAWAELLDDAIAEQGGDVNANANANANA
D1-35_04288261hypothetical proteinATGAATACCAAGCCGCAAGCCGCAGATTACAAAGAAATCGCCGACGAGGCCGTATTCCAACTGGAGTGCGGAAACGAGTTCGGCAACTGGATGTTTTCGCTGATGACGGCCATCCGTGACGACCACAAACACTCGGGCGGCCTGAACGCCACCGGTCTGGCTGCCCTTGGCGTTTATCTGTCCGAGAGCCACCTCGAAGTGTCCGAGCAGACCCTTGAGGTCCTCAATGCCAACCTGTCGAGCCTCGGAGGTGAGGCATGAMNTKPQAADYKEIADEAVFQLECGNEFGNWMFSLMTAIRDDHKHSGGLNATGLAALGVYLSESHLEVSEQTLEVLNANLSSLGGEANANANANANA
D1-35_04289315hypothetical proteinATGAACCGCGAGCTGCGAATCGTCGGCGCCGATCCAATCGAGGGGCAAGTCCTGGGCGAGGCTGTCATTGATGCTCGGGACATGTGCTCCATGAATTTCGCCCGTGAAGAATTCAACAAGCTTGAGCGGATTCTGTGGCCGCTGATCGAGCCGCTGCTGTGCCAGCAGGAGAGCGGGCCGGCTAGCGATGTCGCTCGCCACCTTGAGCAGATCCGGATTTTCAGCGGCAATTTCTGCTGGCGCCATCGCCACTTGGGGGCCTCGCACGGCGTGGTGGGTAACCGCGCCGAAATGGGCGAAGGGGGTGCGCGATGAMNRELRIVGADPIEGQVLGEAVIDARDMCSMNFAREEFNKLERILWPLIEPLLCQQESGPASDVARHLEQIRIFSGNFCWRHRHLGASHGVVGNRAEMGEGGARNANANANANA
D1-35_04290159hypothetical proteinATGACCGCCATGTTCCCTAACGCAATCCGCGCTTTGGCCCACCGCCGTATGGCCCTGAGCGCCCTCCGGGCAAACTCCTCCCTTTCCGTGCGCTTGAAGCGTTACAACCATCACTCCGAAATCGCCCGCAAACTGGAAAACGCCGGGGGTGCGCAATGAMTAMFPNAIRALAHRRMALSALRANSSLSVRLKRYNHHSEIARKLENAGGAQNANANANANA
D1-35_04291231hypothetical proteinATGCAACACGCCCTCAATCCGTCTGTGCTCTCTGTAGAGCTTCAAAAAGCCTACTGCGTCGAGCTGCTCAAAACCCTGCTCCGTTATTCAAGCCAACCAGAGCTCAGTCGCATCACCACCGCCATTGAGATAGAGGTGGCCAGGATTTTGGCCAACCGCTTTGTCCCTGGCCTGAATGACGCGACCTATGACGTCTACCGTCGCTTCTGGCTCAAAGGGGGTGACGTATGAMQHALNPSVLSVELQKAYCVELLKTLLRYSSQPELSRITTAIEIEVARILANRFVPGLNDATYDVYRRFWLKGGDVNANANANANA
D1-35_04293681hypothetical proteinATGAGCGCCCGCATCATCCCCTTCGACTACCAGGGCCAGGCCGTCAGCTTTAATGCCGAGGGTTGGCTCCACGCCACAGTGATCGCTGAACGCTTCGGCAAGCGACTGGACCATTGGCTCGATAACGCCGAGACACTCGAGTACCTCCGCGCACTGGATGAGATTCAGCATCCCACAGCGGGGCCATCCAAAATCGTGAATACCCGGAAATCCGGGTATTTGAAATCCCGCCGCGGTAACGCCGGGGGCACCTGGTTACATCCCAAATTGGCGGTAGCGTTCGCCCGTTGGTGCGATGCCAAATTCTCTGTCTGGTGTGACATGCAGATCGAGGCGCTCATTCACGGGAGTCAGGACTGGCAGCAGGCTCGTCACCAGTCGGCTATCGGCTACCGCGGCTTGTGTGAAGCGCTGGCAATCGCCCACGAGGAGCGCGGCACGGCTCCTCAGCGCCACCACTTCATCAACGAAGCCAAGCTAATCAACCAGGTAATCACTGGTCAGTTTGCCGGCCGCAATCGCGATGAACTCAACGCGCATGAGTTGTTGTTGGTCACGCTGATCGAGATCCGCGACGTGTTGCTGATCGGCCAGGGCAAAGACTTCGCAGCCCGGAAAGCGTCCCTACTCCGCTACGTCCAAAGCCTGACGGCCAAGCACCTTCGGAGTGACGCCGCATGAMSARIIPFDYQGQAVSFNAEGWLHATVIAERFGKRLDHWLDNAETLEYLRALDEIQHPTAGPSKIVNTRKSGYLKSRRGNAGGTWLHPKLAVAFARWCDAKFSVWCDMQIEALIHGSQDWQQARHQSAIGYRGLCEALAIAHEERGTAPQRHHFINEAKLINQVITGQFAGRNRDELNAHELLLVTLIEIRDVLLIGQGKDFAARKASLLRYVQSLTAKHLRSDAANANANANANA
D1-35_04294300hypothetical proteinATGAACAAAAAAAAGGCCGACCAACAGGCCAGCCACGAAAATACTCGCGTCGAGAATACCAGCGGAACGGCACAACGCGCTCGCCTTTTGGAGCGCCTGCACGCTGGCCCGATTGACACCTTCACCGCTATCCGCGAACTGAACATCGTCCGCCCTGGTGCCCGCATCAATGAACTGCGCAGCCTGGGCCATAAGATCCTGACCCAACGCCTTACCTTGACCGACGATCAAGGCCGCACTCACCAAGGCATGGCGCTCTACTACCTCAGCACCAACCCACCAGCGGAGGTGAAGGCATGAMNKKKADQQASHENTRVENTSGTAQRARLLERLHAGPIDTFTAIRELNIVRPGARINELRSLGHKILTQRLTLTDDQGRTHQGMALYYLSTNPPAEVKANANANANANA
D1-35_04295270hypothetical proteinATGCACACCATCCACACACCGCACCACCCCTCTGCTGCCGCCGCGCAGAACTTCGACCCGGCGATCACCCTGATTCGCATGCCGGATCTGGAGGCCATCACCGGCCTCGCCCGCCCCACGGTGTACAAACGCCTCAAAGATGATCCGACGTTTCCCCGCCCGGTGCCGCTGAGCAACAGCAAGTCGCGTGGTTCGCCGGTGGGCTTCGTGCTGGCCGAGGTCCAGGCTTGGGTGCGCCAGCGCATCGCCCTGCGCGAGGTGGCCGCCTAAMHTIHTPHHPSAAAAQNFDPAITLIRMPDLEAITGLARPTVYKRLKDDPTFPRPVPLSNSKSRGSPVGFVLAEVQAWVRQRIALREVAANANANANANA
D1-35_04296870hypothetical proteinGTGAGAATCATCCCAACGTCAACACAGTTCGATGCCCTGGAAAGAGCAGTCGATGAGTTTGTTGGCCTGCTAGATAAAAGGTTCGGCGAGATAACGAAGGACATTAGCAACGAGCCAGGCTTTCGCCTGACGGAGCCAATGATTTCCGAACTTGCCGAAAACCTCAAAACAGCGAGATTTGAAGCTTTTCAGTCATGCTTCGATGATGAAAATGAGGTCGCATATGCTTGGCTCAATAGCGAACCATCCTTTCAAATCGCTCTGCATAAGCTCGGTTTCACTGCCTCGGGCGATAAAAACCCTTACGAAAAAATCATTGAAGAACGCCAACGCACACGGACAAAGTGGCGGTCCCAATTTATAAAGGACAGCGCTCTTCGGCACGCTACATTGCATGTAATTTATATGGGTGGGGTTGCAAAAGCGTCGAGCGGTTTCATCACAGGTGAACGTAGAAAAGCTGCGCTTGAGGGGCCGAAAGCGATTCAACGAATGCTCGATCTGATGGAAGAGATTGAAGAGATTCGGAAAAATACCGATTTTTTAGGCCGCCCGGTCAGCATCGGCGGCCGTTTTTGGGAGATGGCCAAATCCAATATGGAAGGGTCGCTAGAGCACCTTTTCTCTACGACCAAGAGAGATGATAAGGATCTTGCCACGCGTCTGATGGCCTCTGAATTGATTCGCCTTCACCTCAAACTGTTCTCTGCACCCCATAAAAACTCGATATATCACCTAATGGGACTTCCCTTTATTGACAGACCAATCGAGATGAAGACCATCGAGCGGCTTGTTACATTGGAAAAGGCTCGAACAGAAAAATTGGGCTCGTCAAAACTGAGCATTTTTGGCAGAGAGATTATCTGCTAGMRIIPTSTQFDALERAVDEFVGLLDKRFGEITKDISNEPGFRLTEPMISELAENLKTARFEAFQSCFDDENEVAYAWLNSEPSFQIALHKLGFTASGDKNPYEKIIEERQRTRTKWRSQFIKDSALRHATLHVIYMGGVAKASSGFITGERRKAALEGPKAIQRMLDLMEEIEEIRKNTDFLGRPVSIGGRFWEMAKSNMEGSLEHLFSTTKRDDKDLATRLMASELIRLHLKLFSAPHKNSIYHLMGLPFIDRPIEMKTIERLVTLEKARTEKLGSSKLSIFGREIICNANANANANA
D1-35_042971242intSCOG0582Prophage integrase IntSATGAAGCGATCCGAGATAAAGCGCCGCCCCCTTTCCGATACCGCACTGGCTGGCCTCGAGCCTGATGCCAAGGAGTATCGCGAACTGGATGGCAGCGGCCTTTATTTCCGTGTGAAGCCCGATGGCCAAAAGTCGTGGCAGTACCGCTACAAGAAGCCGGACGGTAAATGGTCCTGGCTTGGGCTTGGTGGCTACCCAGAAGTGAGCGGGTCAATGGCCAGGCAGAAAGCATCCGAATTGCGAAACGATGCCGCCGATGGCAAAAACCCTATCGTCACGAAGCAGGCGCGCAAGAAGGCTGAGCGGGACACCGCTGGCGAGACATTCGAGCCATTGGCGCGGGAGTGGTACGCGTCACGCCTGGCCAACTGGGACGCAGGCACGGCGAAGCGGATCATCGGCGCCCTGGAGCGTCATGTTTTCCCGGTTTTCGGCAAGCGCCAGTTCGTCGACATCACTCCACTTGAATGGATGGAGTTCCTCCGCAGCATGGAGCAGCAGGGAATCCTCGAGCAGATGAGCCGGGTGCGCTCCTACTGCCGCGACGTGTACGACTTGGCCCGGGTTACCGGCCGGGCGACGCACAATCCGCTGGAAGGCCTGCAAAAGTATCTCAAGTCAGGAAAGGTAGAGAACTATGCCCATGTCCCCCAGGAAGAACTCCCCGGCCTGATCCGCGCCATCGCGGCATATCCTCACGCCCACGACGTTCGCCTCGGCCTGCGCCTGCTGAGCCTGTTCGCCGTGCGCCCCAGTGAGCTGCGCGAGGCCCAGTGGTCAGAGTTCGACTTCGATAAGAATATCTGGACGGTGCCGGTTGATCGCAAGGGCCGGAAAAAAGGGCTGGAACATCTGGTGCCCCTCTCCACTCAGGCGATTGAGGCGCTGGAAGAGTTGCGCCATTACACCGGTGGCAATCCCCTGCTCTTCCCAGGGCGCAGTGACCGCACGAAGCCCCGCAGCGACACCGTATTCCTTATGGCGCTGCGTCGGATGGGGTATGAGGGACGCCAAACCGGGCACGGGTTCCGACACATCGCGTCGACGGTCCTCAATGAAAACGGGTTCGACGAGAACCACATCGAGGCCCAGCTTTCGCACAAGAAGCCTGGAGTCGCTGGCGTGTACAACAAGGCGAAGTATCTGCCGCAGCGCACGGTGATGATGCAATGGTATGCGAATTATCTCGACGGCTTGGCGGGCGGCGTCATTATCCAGGGTAATTTCGGCAAGCGTGCCTAAMKRSEIKRRPLSDTALAGLEPDAKEYRELDGSGLYFRVKPDGQKSWQYRYKKPDGKWSWLGLGGYPEVSGSMARQKASELRNDAADGKNPIVTKQARKKAERDTAGETFEPLAREWYASRLANWDAGTAKRIIGALERHVFPVFGKRQFVDITPLEWMEFLRSMEQQGILEQMSRVRSYCRDVYDLARVTGRATHNPLEGLQKYLKSGKVENYAHVPQEELPGLIRAIAAYPHAHDVRLGLRLLSLFAVRPSELREAQWSEFDFDKNIWTVPVDRKGRKKGLEHLVPLSTQAIEALEELRHYTGGNPLLFPGRSDRTKPRSDTVFLMALRRMGYEGRQTGHGFRHIASTVLNENGFDENHIEAQLSHKKPGVAGVYNKAKYLPQRTVMMQWYANYLDGLAGGVIIQGNFGKRANANANANANA
D1-35_042992058hypothetical proteinATGCAGGCTTTTTTATCACCGGGCATCCGGTTGCTCGGGCATTTTGGTTTCGCCCGTAAATTCCAATTGTTGTTCCTGTTGTTCATCCTGCCGCTCATGGGCAGCCTGTGGCTGATCGGCCAGGATTACCGGGACAAGCTCAACCTGATTTCCGGGGAACGTGCCGGGGTGCGTCAGTTGCTGGCGCTGGACAACCTGGACAACCTGCTCGCCGCCCAGCGCAATCGCGCGGCGCGCTGGAGAGCAACGGAAACCAACCGCCAACCGACCCCGGCGACACTGGCCGCCATGGCCGCGTTCGATGCCGTGCAACCGGCGCTCAACCAGGCCGCCGGCGACCTCGGCGCGACCCTGCAAGCCGAAGGCGCGGAGGCCGACACCCTCGCCCGCTATCAGACATTGCAAACCAGCCTCAACGGCCTGGATTCCAAAAGCCTCGGCACGGTCGGTTGGTGGCCGGACGGCTATGATCGTTTCACCGCGGCCCTCGGCGCGCTGCAAGCGTTGCGTGAACAGATCGTCATGGACAATCGCCTGACGCTCGCCTCCTGGCTGGAAACCTATTTGCTGACCCAGATCTCGACCCAGCAGACACCCGACCTGATCGAACGTGTCGGCCGCCTGGCCAGCGTTGGCCAGGCCTCGGTGGTATCAGGCCAGTTCACTTTGCAGAGCCGCCTGCAACTGCGCGACTTGCGCAGCCGCATCGGCGATGCCCGGGACCAGTTGGTCAAGACCGGTGCGCTGCTGGAAACGCGCCTGCCCAGCGAGCTGCAAACCTGGGCCGGCCAGTTCCAGGGCAGCCTGAAAAACCTCGACGGCGGTTTGAAAATCCTCGATGACGGCGTGTTCGGCGGCGCCATCAATCTCAAGCCGGAAGGCTTCGAGAAACAGATGGATGCCCTCCTCCTCGATCTGGCGACCCTGCGCCAACAATCATTGACCGCTCTGGATAACCGGCTGGAGCACTATCACAGCTCGGCGATCCGCCAATTCACCTTCGTGGCCACCGTGCTGGGCTGCCTGCTGCTGGCCGCGCTGTATCTGTTCATCTGCCTGCAGACCTCGATCCGGCGCAGCGCCAGCGGCATCACCGTGCTGGCCGAAGCCCTGCGTGACGGGAACCTGAGCGTGCAAGTGCCGGTGCAGGGCCGCGACGAACTGGCGGCGATCAGCACCGCTCTCAACGTCGCCGTGGTCCAATTGCGCAACAGCCTGCTGGGCGTCGACCACGAGACCCTGCAACTGAGCGATGCCGTGCGCACCCTCAACACCCATTCCAGCGGAGCCTTGGGCGAGGTCGAGGCACAACAGATACAGATCAGCCAGATCGCCGCTGCCGCTACGCAACTGGCGGCAACGTCCCAAGGCGTCGCGAGAAGTTGTGAACAGGCCTCCGACAGCGCCCAACAGACCCGCCAGATCGCCGCCGACAGCAGTCGCGACAGTCAACGCACCACGGCGAGCATCCAGCAACTCAACCAGCGTCTCAACGAAACCGCCGCGGCGCTGGGCCGGGTCAGCGAGCAGGGCCAGCAGATCCAATTGGTGGTCGACACCATTCGTGGCGTGGCCGAGCAGACCAACCTGCTGGCGCTCAACGCCGCCATCGAGGCCGCCCGCGCCGGCGAACAAGGCCGCGGGTTTGCCGTGGTTGCCGATGAAGTGCGCAGCCTGTCGCAGCGCACCCAGTCCTCGACACAGCAGATTGCCGGCACCGTCGACAGCCTGCGCGCCACGGTCAACGAGGCCGTCAGCCTGATGGAAGCCGCCTGCGGCCAGGCCCAGACCGACGCCCAGGCCGTCACCGGGCTTGGCGAACGACTGGGCGAAATCGCCAGCGCCGTGCAAAGCGTCACCGATACCCTGGCGCAAATCGCCACCGCGGTTGACGAACAGGCCAGCACCGCCGACGAAGTCAGCGGCAATATCCAACAGGTGGATCAGGCCGCCATGCGCTTGCTGGAAGGTGCCCGCGCCGTGAACCTGGCGGCGGACACATTGAGCCAAGGCAGCCAGGCCTTGAGCGCGAACACGGGGAGATTTCAACTCGGCTGAMQAFLSPGIRLLGHFGFARKFQLLFLLFILPLMGSLWLIGQDYRDKLNLISGERAGVRQLLALDNLDNLLAAQRNRAARWRATETNRQPTPATLAAMAAFDAVQPALNQAAGDLGATLQAEGAEADTLARYQTLQTSLNGLDSKSLGTVGWWPDGYDRFTAALGALQALREQIVMDNRLTLASWLETYLLTQISTQQTPDLIERVGRLASVGQASVVSGQFTLQSRLQLRDLRSRIGDARDQLVKTGALLETRLPSELQTWAGQFQGSLKNLDGGLKILDDGVFGGAINLKPEGFEKQMDALLLDLATLRQQSLTALDNRLEHYHSSAIRQFTFVATVLGCLLLAALYLFICLQTSIRRSASGITVLAEALRDGNLSVQVPVQGRDELAAISTALNVAVVQLRNSLLGVDHETLQLSDAVRTLNTHSSGALGEVEAQQIQISQIAAAATQLAATSQGVARSCEQASDSAQQTRQIAADSSRDSQRTTASIQQLNQRLNETAAALGRVSEQGQQIQLVVDTIRGVAEQTNLLALNAAIEAARAGEQGRGFAVVADEVRSLSQRTQSSTQQIAGTVDSLRATVNEAVSLMEAACGQAQTDAQAVTGLGERLGEIASAVQSVTDTLAQIATAVDEQASTADEVSGNIQQVDQAAMRLLEGARAVNLAADTLSQGSQALSANTGRFQLGNANANANANA
D1-35_043001218fsrFosmidomycin resistance proteinATGGCTATCAGCAATACCCAGGCCGACACGACGTCGCCAGCCGCTACGCCTCAAAGCAGCCCGTTAGTCATGCGCATCATTGGTGCGGTGGCGCTTGCCCATCTGATCAATGACCTGATCCAGGCCGTGCTGCCGTCAATCTATCCGATGCTCAAGGAAAGCTACGGCCTGACGTTTACCCAGGTCGGCCTGATCACGCTGACCTTCCAGCTCACGGCCTCGCTGCTGCAGCCCTGGGTGGGTTACCACACTGATCGACACCCCAAGCCCTGGCTTTTGCCGTCAGGAACAATCTGCACCTTGGTCGGTATCGTGATGATGTCGATGGTCGGCAGTTTTGCCTTGATCCTGCTGGCGGCCGGGTTGATCGGGATCGGCTCCTCGACCTTCCACCCCGAGGCGTCGCGCGTGGCACGCCTGGCCTCCGGCGGCCGCTACGGCCTGGCGCAATCGACGTTCCAGGTGGGCGGCAACGCCGGCTCCGCCTTCGGGCCGTTGCTGGCGGCGGCGATCATCATTCCCTACGGGCAGGGCAACGTGGCCTGGTTTGGCTTGTTCGCGCTGTTCGCCTTGTTCGTGCTGTACCGCATCAGCCGCTGGTACGCCAATCACCTGAACCTGTTCAAGCTCAAGCAAGGCCAGGCGGCGACCCACGGCTTATCCAGGGGCCGGGTCTTGAGCGCCTTGGTGGTGCTGGGGTTGCTGGTGTTTTCCAAGTATTTCTACATGGCCAGTTTTACCAGCTACTTCACTTTCTACCTGATCGAGAAATTCGACCTGTCGGTGGCGTCTTCCCAGTTGCACCTGTTCCTCTTTCTTGGCGCGGTAGCGGCCGGAACGTTTTTTGGCGGACCGATCGGTGACCGGATCGGACGCAAGGCGGTGATCTGGTTCTCGATCCTCGGCGTGGCGCCATTCACGCTGATCCTGCCTCACGTTGATCTGCTGTGGACCAGTATCCTCAGCGTGGTGATCGGCTTCATCCTGGCCTCGGCATTCTCCGCCATCGTGGTGTATGCCCAGGAACTGGTGCCGGGAAATGTCGGGATGATTGCCGGCGTGTTCTTCGGCCTGATGTTCGGTTTCGGCGGGATTGGTGCCGCGCTGCTGGGGCACCTGGCAGACATCCGGGGCATCGAATATGTGTACTGGTTGTGTTCGTTCCTGCCGCTGCTTGGGGTGCTGGCGATTTTCCTGCCGAGGACCAAAAAGGCCTGAMAISNTQADTTSPAATPQSSPLVMRIIGAVALAHLINDLIQAVLPSIYPMLKESYGLTFTQVGLITLTFQLTASLLQPWVGYHTDRHPKPWLLPSGTICTLVGIVMMSMVGSFALILLAAGLIGIGSSTFHPEASRVARLASGGRYGLAQSTFQVGGNAGSAFGPLLAAAIIIPYGQGNVAWFGLFALFALFVLYRISRWYANHLNLFKLKQGQAATHGLSRGRVLSALVVLGLLVFSKYFYMASFTSYFTFYLIEKFDLSVASSQLHLFLFLGAVAAGTFFGGPIGDRIGRKAVIWFSILGVAPFTLILPHVDLLWTSILSVVIGFILASAFSAIVVYAQELVPGNVGMIAGVFFGLMFGFGGIGAALLGHLADIRGIEYVYWLCSFLPLLGVLAIFLPRTKKANANANANANA
D1-35_04301444hypothetical proteinATGGCTGGACACGCCCCTTCACGCCTTGGACAAACACTGCTGGGCCTGCTCTTCGCCCTGATTGGCATTGTTTTGTTGGGCGGCACCGTTCTTCTCATCCTTGAACGCCACGAATTTCTCGCCCGAGCGCAGATCGCCGATGGCATCGTCAGTCGGTTGAATGCCGGTGGTTCTCACCCCGAAGTCGCGTTCACTACCGGCAAAGGTGAAAAAATTTCCTACCCCCAGGGTGGCTTCATCTTCGGCTATGAGCCGGGGCAGCCGGTGCGAGTGTATTACTTGCCCGAGCAGCCGGCCGACAACCCCCTCATCGTTGATCGAGGCGCCCTGTGGGGGACGCCTGTGATGCTGGGGGCAATGGGGCTGTTCTTCACGCTGGTCGGCTCGCTGAAAGCCATCCGCCAGCGCGGTCGCGGTGCGGTTCATTCACTTAAAGGACTTTGAMAGHAPSRLGQTLLGLLFALIGIVLLGGTVLLILERHEFLARAQIADGIVSRLNAGGSHPEVAFTTGKGEKISYPQGGFIFGYEPGQPVRVYYLPEQPADNPLIVDRGALWGTPVMLGAMGLFFTLVGSLKAIRQRGRGAVHSLKGLNANANANANA
D1-35_04302588hypothetical proteinATGAGCTATAACATCCCGATCCCGGTCAACAAAAGTCGCTGGACATATCAGACCGCCAGCGGTGGCGGTCTGACCGTGGTCATGGTGGCGGGCAGTGGCGGTTCGATCATCCTGCGTTCGCCCCAGGGCGAGGACATCAGTTACCGCTATGGCGGCGTCGGTGTAGGTGCGGGAATTGGCGCGCGATTGCCGCGCTTTGGCAAGATCAATATCCAGATCAAGGGCAAGAGCGTATCGGGTGCGGGTGCGGCGGAGTCTTTTTTCAGCATTGGCCGGGTGTTTGTCAGCGACGCCCTGGCCGATCGCGACCTCACCAGCGACGATATCACGGGGCCTTGCATGTATACCGAGGCGGGCTTCGGCTTGGTGGGAGGCGTTTCGGGCACTGCTCTGCTGTTCGGGCTCGATCCGAAGCTGTTGGCATTGTCGGTGGCCCTGAGCTCCAACCCGGCGACCTCGCTCATTGCGTCCGCCACCGTCAGCCGCCGATTGGCCATGTCAGCCAAGGGAGCGCTGCTCATGGGGGGCTTGAACGCTGGCCTGCAGGCCGGTGGTGGCGCTGCGATCTATATGGGCTATCTTTTTTAGMSYNIPIPVNKSRWTYQTASGGGLTVVMVAGSGGSIILRSPQGEDISYRYGGVGVGAGIGARLPRFGKINIQIKGKSVSGAGAAESFFSIGRVFVSDALADRDLTSDDITGPCMYTEAGFGLVGGVSGTALLFGLDPKLLALSVALSSNPATSLIASATVSRRLAMSAKGALLMGGLNAGLQAGGGAAIYMGYLFNANANANANA
D1-35_043032076hypothetical proteinATGGCAACTACCGATAGCACGGGAACCAGTTCCCATATCGTGAGAACGGGCCCGGGCACTGTCCAGGTCGACCTCACCGGCCATTCCGATGACAACCAGAGCATCATTATCCAGTCGGACGGCAAGATACTGATTGGCGGTTATACCGAATACCTGGCATGGGGTTACCCCGGCGCGCCAGGCGAGGAAAGCTACGGCTACGAACAGAACCATTCGGTTGTCCGCCTGAACGCGGATGGCAGCCTGGACACCGGCTTCCACGACGGCGGCGTCGACATTGTTCCTGCCACGATAGCCCCGTCGTCCCGCTACGAGCTGACGGCGGTGCAGGCCGATGGCAAGGTACTTGTCGCTGTCGCGCTGAACACCGGCATACAGGTGGAGCGCTTCAACAGCGACGGGACACGCGATGCAGCCTTTGGTCAGAACGGCGCCGTGACGGTCGCCATTAGCCATGACTTCAAGGACATCGACCTGACAGCCAACACGGACGGCACCTTCCAGGTCAGCGCGCGCGGGTTCGACCAGGCCACTATCACCAAGGTCGGCGATGACGGCACCTTCGTCGACGGCTTTGGCAGCGAGGGCGTGCTGACCGTCAACATTGCCGAAGACCTGTATTTCAACGGAGCAATCTCTACTGCGGTGCAGGCCGATGGAGGTGTCGTGGTCGGGGCTGCCTACAATGCCGCCGGGGCGGGTGATCCGACGTTCGCGTTACAGCGCTACAACCCCGACGGTCAATTGGACACCCGTTTTGGTGACAACGGTGTCCTGCACTTGAGCGCTGCGATGGGTTTTGGCGAAGACTCGACGGTCACTATTCAGGCTGACGGCAAGATCGTTGTCATGGGCCACGCTCAGGGCGGTACCTTGGCCACCATCGCGCGGCTTAACGCTGACGGGTCCTTCGACAGCCACTTTGGCGATAACGGCAGGGTGACCTTCGAGGCCGACACGCCAGTGGCATTGACGGTACAGGCAGATGGCAGGATCCTGGCCGCCGGCACGAGCAACGGCGATTTCAATGTCATCCGCTTGAACGCCGATGGCAGTCTGGACAGCAGTTTCGGCAGCCAGGATGGCAAGCTCCATGTGGATGGGTACGCCGGTGAGGAAATCCTGCGGGGGACCGCTGCCGCCGAAATCATCCACGGCCTGGCCGGCGACGATGTGCTCCAGGGCAATGGCGGGCGTGACGTTCTGCAAGGTGGCGCTGGCGCGGACATCTTCCGCTTTACCGAACTGGGCGACAGTTTCCGCACGGCTGCGCTGAACAATAGCGACCGGGTCCGGGACTTCGATGTCTCACAGGACCGCATCGACCTGATTGGCCTGGGCTTCACCGGGATTGGCGACGGCCATGACGGCACCTTGGCCATCCAGGCCAGCGCGGACGGCACCCGCACGTACCTCAAGAGCTACGACGCCGATGCCGCCGGGCAACGCTTTGAACTGTCCCTGGACGGCAATCTGGTAGGGCAACTGAACAGCACCAATCTGGTGTTTACCGCGCCCACCGTCGAAGGTACGTCTGCCAACGATACGATCACCGGTTCGGCCTTGTCAGAGATCATCCGTGGCCTGGACGGCAATGACCGTATCAACGGCGGCGCCGGAGCAGACGTCATCATCGGTGGCGCGGGCGCCGACCGTCTCAACGGCGGAGACAGGACCGACATTTCGTTGTGGACGGACAATCGGGAAAACGCCGACGTATTCCGCTATCTCTCCACCGAAGACAGCTACCGTACCGACAGCCAGAGCTTTGCCGACCTTATCGAAGGCTTTACCGTTGACGACAAGATCGATGTATCGGCACTGGGCTATACCGGCTTCGGAGAGGGGACGGACACGACGCTGAAGTTGGTTTACAACGAGGCATTGGACCGCACTTACCTGAAGGATGCGGAAGCGGACGCGCAAGGCCATGCGTTCCAGATTGCGCTGGCTGGGGACTGGCGGGAAAGCCTTGGCGAAGACAACATGGTCTTTGCTCCCGCTGCGGCTCCCGACGCCGAATTAGGCCTGATCGGGGTGGTGCCAGACGTCGATCAATGGCATTTGTTGAGTTGAMATTDSTGTSSHIVRTGPGTVQVDLTGHSDDNQSIIIQSDGKILIGGYTEYLAWGYPGAPGEESYGYEQNHSVVRLNADGSLDTGFHDGGVDIVPATIAPSSRYELTAVQADGKVLVAVALNTGIQVERFNSDGTRDAAFGQNGAVTVAISHDFKDIDLTANTDGTFQVSARGFDQATITKVGDDGTFVDGFGSEGVLTVNIAEDLYFNGAISTAVQADGGVVVGAAYNAAGAGDPTFALQRYNPDGQLDTRFGDNGVLHLSAAMGFGEDSTVTIQADGKIVVMGHAQGGTLATIARLNADGSFDSHFGDNGRVTFEADTPVALTVQADGRILAAGTSNGDFNVIRLNADGSLDSSFGSQDGKLHVDGYAGEEILRGTAAAEIIHGLAGDDVLQGNGGRDVLQGGAGADIFRFTELGDSFRTAALNNSDRVRDFDVSQDRIDLIGLGFTGIGDGHDGTLAIQASADGTRTYLKSYDADAAGQRFELSLDGNLVGQLNSTNLVFTAPTVEGTSANDTITGSALSEIIRGLDGNDRINGGAGADVIIGGAGADRLNGGDRTDISLWTDNRENADVFRYLSTEDSYRTDSQSFADLIEGFTVDDKIDVSALGYTGFGEGTDTTLKLVYNEALDRTYLKDAEADAQGHAFQIALAGDWRESLGEDNMVFAPAAAPDAELGLIGVVPDVDQWHLLSPGPT0027825_330DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0027825-prtC-K01406NANA
D1-35_043041101ychFCOG0012Ribosome-binding ATPase YchFATGGGATTCAATTGCGGCATCGTCGGCCTGCCTAACGTCGGCAAGTCCACCCTGTTCAACGCCCTGACCAAATCCGGGATCGCGGCCGAGAACTTCCCCTTCTGCACCATCGAGCCGAACAGCGGCATCGTGCCGATGCCCGACCCGCGCCTGGAAGCTCTGGCAGCCATCGTCAACCCCAAGCGCATCCTGCCGACCACCATGGAATTCGTCGATATCGCCGGCCTGGTGGCGGGCGCCTCGAAAGGTGAAGGCCTGGGCAACAAGTTCCTGGCGAACATCCGTGAAACCGATGCAATCGCCCACGTGGTGCGCTGCTTTGAAGACGAAAACGTGATTCACGTTTCCAACAGCGTCGACCCGAAACGCGACATCGAAATCATCGACCTGGAACTGATCTTTGCCGACCTCGACAGTTGCGAAAAACAACTGCAGAAAGTCGCTCGCAACGCCAAGGGTGGCGACAAGGACGCAGTAGTCCAGAAGGGCCTGCTTGAGCAGTTGATCGCCCACTTCACTGAAGGCAAACCTGCCCGCAGCCTGATGAAGAACATGAGCACCGATGAAAAACTGGTAATCAAGGGCTTCCACCTGCTGACCACAAAGCCGGTCATGTACATCGCCAACGTCGCTGAAGACGGTTTCGAGAACAACCCGCATCTGGACGTGGTCAAGGCCATCGCGGAAGAAGAAGGTGCCATGGTCGTTCCGGTCTGCAACAAGATCGAAGCGGAAATCGCCGAGCTGGACGACGGTGAAGAGAAGGATATGTTCCTCGAGGCCCTGGGCCTGGAAGAGCCTGGCCTGAACCGCGTGATCCGCGCCGGCTACGAAATGCTTCACCTGCAGACCTACTTCACCGCCGGTGTCGAAGAAGTCCGCGCCTGGACCGTTCGTGTTGGCGCGACCGCCCCGCAAGCCGCCGGCGTGATCCACACCGACTTCGAAAAAGGCTTCATCCGCGCCGAAGTCATCGCCTACTCGGATTTCATCCAGTACAAGGGCGAAGCCGGTGCCAAGGAAGCCGGCAAATGGCGTCTGGAAGGCAAGGAATACATCGTCAAGGATGGCGACGTGATGCACTTCCGCTTCAACGTTTGAMGFNCGIVGLPNVGKSTLFNALTKSGIAAENFPFCTIEPNSGIVPMPDPRLEALAAIVNPKRILPTTMEFVDIAGLVAGASKGEGLGNKFLANIRETDAIAHVVRCFEDENVIHVSNSVDPKRDIEIIDLELIFADLDSCEKQLQKVARNAKGGDKDAVVQKGLLEQLIAHFTEGKPARSLMKNMSTDEKLVIKGFHLLTTKPVMYIANVAEDGFENNPHLDVVKAIAEEEGAMVVPVCNKIEAEIAELDDGEEKDMFLEALGLEEPGLNRVIRAGYEMLHLQTYFTAGVEEVRAWTVRVGATAPQAAGVIHTDFEKGFIRAEVIAYSDFIQYKGEAGAKEAGKWRLEGKEYIVKDGDVMHFRFNVNANANANANA
D1-35_04305585pthCOG0193Peptidyl-tRNA hydrolaseGTGACTGCCATCAAACTGATCGTTGGCCTGGGAAATCCAGGCGCTGAATACGAACAGACCCGGCATAACGCAGGGGCCCTTTTTGTTGAGCGCATCGCGCACGCCCAAGGCGTCAGCCTGGCTGCCGATCGCAAATATTTCGGCCTGACCGGGCGCTTCTCGCATCAAGGTCAGGATGTTCGCCTGTTGATTCCCACCACCTACATGAACCGCAGCGGTCAGGCCGTGGCGGCATTGGCCGGTTTCTTTCGCATCAAGCCTGAAGAAATCCTGGTGGCCCACGACGAACTCGATCTGCCTCCGGGCGTTGCCAAGCTCAAGCAGGGCGGCGGCCATGGCGGTCACAACGGGTTGCGCGACATCATCGCGCAACTGGGCAATCAGAATACGTTCTACCGCCTGCGGCTCGGCATCGGCCACCCGGGCGTTGCCAGTATGGTTTCAAACTTTGTCCTGGGTCGCGCGCCTCGCGCCGAACAGGAAAAACTCGATGCCAGCATCGATTTTGCCCTCGGCGTGCTGCCGGATATCCTCGCCGGTGAATGGAACCGTGCGATGAAAAACCTGCACAGCCAGAAGGCTTGAMTAIKLIVGLGNPGAEYEQTRHNAGALFVERIAHAQGVSLAADRKYFGLTGRFSHQGQDVRLLIPTTYMNRSGQAVAALAGFFRIKPEEILVAHDELDLPPGVAKLKQGGGHGGHNGLRDIIAQLGNQNTFYRLRLGIGHPGVASMVSNFVLGRAPRAEQEKLDASIDFALGVLPDILAGEWNRAMKNLHSQKANANANANANA
D1-35_04306603rplY50S ribosomal protein L25ATGAACGATTTTACTCTGAATGCTGAAGTGCGTTCCGACCTGGGGAAAGGTGCGAGCCGCCGCCTGCGTCGTCTCGCAAGCCTGGTTCCAGCTGTAGTCTACGGTGGCGACAAAGCCCCTGAGTCCATCAGCATGCTGGCCAAAGAAGTTGCCAAACTGCTCGAAAACGAAGCGGCCTACAGCCACATCATCGAGCTGAACGTTGGTGGCACCAAGCAAAACGTCGTGATCAAAGCCCTGCAGCGTCACCCGGCCAAAGGCCACGTGATGCACGCTGACTTCGTCCGCGTTGTTGCCGGTCAGAAGCTGACTGCTGTTGTTCCAGTGCACTTCATCAACGAAGCTGCTCCGGTCAAGAAAGGCGGCGAGATCTCGCACGTGACTTCCGAGCTGGAAGTTTCCTGCCTGCCGAAAGACCTGCCTGAATTCATCGAAGTCGACCTGGCTGACGCCGAAATCGGCACGATCATTCACCTGTCCGACCTCAAGGCCCCTAAAGGCGTTGAGTTTGTTGCCCTGGCTCACGGTGATGACAAGGCTGTTGCCAACGTCCACGCTCCACGTGTTGCTCCAGAAGCTACTGAAGAAGGCGCTGCAGAGTAAMNDFTLNAEVRSDLGKGASRRLRRLASLVPAVVYGGDKAPESISMLAKEVAKLLENEAAYSHIIELNVGGTKQNVVIKALQRHPAKGHVMHADFVRVVAGQKLTAVVPVHFINEAAPVKKGGEISHVTSELEVSCLPKDLPEFIEVDLADAEIGTIIHLSDLKAPKGVEFVALAHGDDKAVANVHAPRVAPEATEEGAAENANANANANA
D1-35_04307933prsCOG0462Ribose-phosphate pyrophosphokinaseATGATGGTCTTTACGGGGAACGCTAACCCCGATCTGGCTCGGCGTGTAGTACGTCAGCTGCATATCCCTCTCGGTGACATTTCTGTCGGTAAGTTCTCCGACGGCGAAATCACTGCCGAGATCAATGAAAACGTTCGCGGTAAAGACGTCTTCATTATTCAGCCGACTTGCGCTCCGACCAACGATAACCTGATGGAACTCGTCGTGATGGCTGATGCCTTCCGCCGCTCCTCGGCTACTCGTATTACTGCTGTTATTCCTTACTTTGGTTATGCCCGTCAGGATCGCCGTCCGCGTTCCGCACGTGTGGCTATCAGCGCGAAAGTCGTCGCCGATATGCTCACCGTGGTCGGCATCGATCGTGTACTCACGGTCGATCTGCATGCTGACCAGATCCAGGGCTTCTTCGATATTCCCGTGGACAACATCTACGGCTCCCCGGTCCTGGTGGATGACATTGAAGATCAGCGCTTCGAAAACCTTATGATCGTGTCCCCGGATATCGGCGGCGTCGTGCGTGCACGGGCTGTTGCCAAATCCCTGGGCGTGGATCTGGGTATCATCGACAAACGCCGTGAGAAGGCCAATCACTCCGAAGTGATGCACATCATCGGCGACGTCGAAGGGCGCACCTGTATTCTGGTCGATGACATGGTCGATACCGCCGGCACCCTGTGCCACGCGGCCAAGGCCCTGAAAGAGCATGGCGCTGCCAAGGTCTTTGCCTACTGCACACACCCTGTGCTGTCGGGTCGAGCGATCGAAAATATTGAAAATTCCGTGCTGGACGAGCTGGTGGTAACCAATACCATCCCGCTGTCCGCCGCAGCACAAGCCTGTGCGCGTATCCGTCAACTGGATATCGCGCCGGTAGTTGCCGAGGCGGTTCGCCGCATCAGCAATGAAGAATCGATCAGTGCGATGTTCCGTTAAMMVFTGNANPDLARRVVRQLHIPLGDISVGKFSDGEITAEINENVRGKDVFIIQPTCAPTNDNLMELVVMADAFRRSSATRITAVIPYFGYARQDRRPRSARVAISAKVVADMLTVVGIDRVLTVDLHADQIQGFFDIPVDNIYGSPVLVDDIEDQRFENLMIVSPDIGGVVRARAVAKSLGVDLGIIDKRREKANHSEVMHIIGDVEGRTCILVDDMVDTAGTLCHAAKALKEHGAAKVFAYCTHPVLSGRAIENIENSVLDELVVTNTIPLSAAAQACARIRQLDIAPVVAEAVRRISNEESISAMFRPGPT0021480_5018DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021480-prsA-K00948NANA
D1-35_04309852ispECOG19474-diphosphocytidyl-2-C-methyl-D-erythritol kinaseATGAGCGCAACACGCCTGACGCTGCCCTCCCCGGCCAAGCTCAACCTGATGCTGCATATCGTTGGCCGGCGTCCGGACGGTTACCACGAATTGCAGACGATTTTTCAGTTCCTCGACTACGGCGACGAGATCACCTTTGCCGTACGCGATGACGGCGTGATCCATCTTCACACCGAGTTCGACGGCGTACCCCATGACAGCAACCTGATCGTCAAGGCCGCGAAAAAACTCCAGGAGCAATCCGGTTGTTCGCTGGGCATCGACATCTGGATCGAAAAAATCCTGCCCATGGGCGGCGGTATCGGTGGCGGCAGTTCGAATGCGGCGACGACTCTGCTGGGCCTAAACCATTTGTGGCAGCTTGGCTGGGACCTGGATCGCCTGGCAGCGCTGGGCCTGACACTGGGCGCCGACGTACCGGTTTTCGTGCGTGGCCACGCGGCTTTTGCCGAGGGCGTCGGGGAAAAACTCACCCCGGTGGAACCCGAAGAACCCTGGTATCTGGTACTGGTGCCGCAAGTATCTGTAAGTACAGCAGAAATTTTTTCAGATCCGCTGTTGACACGTAACTCGGAGCCCATTAAAGTGCGCCCCGTTCCCAAGGGAAACAGTCGAAATGACTGCTTACCGGTGGTAGCAAGGCGTTATCCAGATGTTCGTAACGCTTTGAATTTGTTAGGTAAATTTACCGAAGCAAAACTCACCGGAACTGGAAGTTGTGTGTTTGGGGGCTTCCCAAGCAAAGCTGAAGCTGATAAAGTCTCGGCCCTTCTGACAGAGACCCTTACAGGGTTTGTAGCAAAGGGAAGCAACGTTTCGATGTTGCATCGCAAGCTGCAAAGTCTGCTCTAAMSATRLTLPSPAKLNLMLHIVGRRPDGYHELQTIFQFLDYGDEITFAVRDDGVIHLHTEFDGVPHDSNLIVKAAKKLQEQSGCSLGIDIWIEKILPMGGGIGGGSSNAATTLLGLNHLWQLGWDLDRLAALGLTLGADVPVFVRGHAAFAEGVGEKLTPVEPEEPWYLVLVPQVSVSTAEIFSDPLLTRNSEPIKVRPVPKGNSRNDCLPVVARRYPDVRNALNLLGKFTEAKLTGTGSCVFGGFPSKAEADKVSALLTETLTGFVAKGSNVSMLHRKLQSLLPGPT0007605_3464DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007605-ispE-K00919NANA
D1-35_04310618lolBCOG3017Outer-membrane lipoprotein LolBATGTTTTTGCGCCACTTCATCGTCTTCAGCTTTATCGCCCTGCTCGCCGGTTGCGCGGGCTTCGGCGCCCGTGAATCCGTCCAGGGCCAAGGCAACCAGGCCCAGTGGCGCGTGCACAAGGAACAACTGAGCGGCCTCGACGGCTGGCAGATCGACGGCAAGATCGGCATTCGCGCGCCTAAAGACTCGGGCAGCGGCACCTTGTTCTGGTTGCAGCGCCAGGATTACTACGACATTCGCCTTTCCGGCCCGCTGGGTCGTGGCGCGGCACGGCTGACCGGCAGGCCAGGCCAGGTTTCGCTGGAAGTCGCCAACCAGGGACGCTACGAGGCGCCCAGCCCCGAGGCGTTGCTGGAAGAACAGCTGGGCTGGAAACTGCCGGTATCGCACCTTACCTGGTGGGTCCGCGGCCTTCCGGCGCCGGACAGCAAAAGCCGCCTGACCCTGGATGCCGACAGTCGCCTGTCCAATCTGGAACAGGACGACTGGCAGATCGAATACCTCAGCTATGCCCAGCAGAACGGTTACTGGTTGCCCGAGCGCATCAAGCTGCACGGCAGCAACCTCGACGTCACGCTGGTCATCAAGCAATGGCAGCCGCGCAAGCTGGGGCAATGAMFLRHFIVFSFIALLAGCAGFGARESVQGQGNQAQWRVHKEQLSGLDGWQIDGKIGIRAPKDSGSGTLFWLQRQDYYDIRLSGPLGRGAARLTGRPGQVSLEVANQGRYEAPSPEALLEEQLGWKLPVSHLTWWVRGLPAPDSKSRLTLDADSRLSNLEQDDWQIEYLSYAQQNGYWLPERIKLHGSNLDVTLVIKQWQPRKLGQPGPT0024480_718DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINSCE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024480-lolB-K02494NANA
D1-35_043111725bepA_3Beta-barrel assembly-enhancing proteaseATGAATAGATCTTTCGCGTTGCTCCTCGCTTTTGCCTTCCTCGGCGGCTGCCAGTCCATGGCCCCCGTCTCGACGGACGGTACGCCACCGGTCGAAGACAGCACCCCGGCCCCCGAAAAGCCCAAGGTCTACGGATCGTTCAGCGAAGAAACCATCTTCAGCCTGTTGAGCGCCGAACTCGCCGGCCAGCGCAATCGCTTCGATATTGCCCTGGACAACTACGTGACCCAGGCCGTCAACACCCAGGACCCGGGCATCTCCGAGCGGGCCTTTCGCATCGCCGAATACCTGGGGGCCGACCAGCCCGCGCTGGATACGGCGCTGATCTGGGCCAGGAACGCACCCGACGATCTCGAAGCGCAACGCGCCGCCGCCGTGCAACTGGCGCGCGCCGGCCGTTACGACGACTCCATGATGTATATGGAGAAAGTCCTGCTGGGCAAGGGCGATACCCATTTCGATTTCCTCGCGCTGTCTGCGGCCGATACCGACCAGGAAACCCGCGACGGCCTGATGAAGAGTTTCGACCGTCTGCTGCAGCGTCACCCAAACAACGGGCAGCTGATTTTTGGCAAGGCCTTGCTCTTGCAACAGAACGGCGACTCCCAAGGCGCCCTCACGCTGCTGGAAGACAACCCGCCGGAACCCGGCGAAGTGGCGCCTATCCTGCTGCGCGCCCGCCTCTTGCAAAGCATGAATCGCGGCGATGAAGCCCTGCCGCTGATGGAAAAAAGCATCAAGAAATACCCGGACGACAAACGCCTGCGCCTCACCTATGCACGCATGCTGGTGGAAAACAACCGCATGGACGACGCCAAGGTCGAGTTCTCCAGCCTGGTCCAGCAGTACCCTGAAGACGACGACCTGCGCTATTCCCTGGCGTTGGTCTGCCTGGAAGCCAAGGCCTGGGAAGAAGCCAAGGGCTATCTGGAAGACCTGATCGCCCGCGAAAGCCACGTCGATTCGGCCCACCTGAACCTGGGGCGCATCGCCGAAGAACGCAACGACCCCGAAAGCGCGCTGATCGAGTACGCCCAGGTCGGCCCGGGCAACGACTACCTGCCCGCGCAGTTGCGCCAGGCCGACATCCTGATCGGCAATGGTCGGGCGGCCGAGGCCCAGAGTCGCCTGGCCATCCAGCGCGACACCCAGCCGGACTACGGCATCCAGCTCTACCTGATCGAGGCCGAGACCCTGGCGGCGAACAACCAGAGCGACAAGGCCTGGGCCGTGCTGCAACAAGCCTTGAAGCAATACCCGGACGACCTGAACCTGTTGTATACCCGATCCATGCTGGCGGAAAAACGCAATGACCTGGCCCAGATGGAAAAGGACCTGCGTCTGATCATCCAGCGTGATCCCGACAACGCCATGGCGCTCAACGCCCTCGGCTACACCTTGTCGGATCGCACCACCCGCTACGATGAAGCCAAGGTGCTGATCGAGAAAGCCCATCAGATCAATCCGGAAGACCCTGCCGTGCTCGACAGCCTTGGCTGGGTGAATTTCCGCCTGGGCAATCTCGACGAAGCCGAACGCCTGTTGCGCCAGGCCCTGGAGCGCTTCCCCGACCAGGAAGTAGCCGCTCACCTGGGTGAAGTCCTGTGGGCCAACGGCAAACAGCGCGAGGCCCGGCAGATCTGGAGCAAATTCCTCAAGGAACAGCCCGACAGCCCGATTCTGCGCAGCACCATCAAACGCCTGACCGGATCAGAGACTCTTTAAMNRSFALLLAFAFLGGCQSMAPVSTDGTPPVEDSTPAPEKPKVYGSFSEETIFSLLSAELAGQRNRFDIALDNYVTQAVNTQDPGISERAFRIAEYLGADQPALDTALIWARNAPDDLEAQRAAAVQLARAGRYDDSMMYMEKVLLGKGDTHFDFLALSAADTDQETRDGLMKSFDRLLQRHPNNGQLIFGKALLLQQNGDSQGALTLLEDNPPEPGEVAPILLRARLLQSMNRGDEALPLMEKSIKKYPDDKRLRLTYARMLVENNRMDDAKVEFSSLVQQYPEDDDLRYSLALVCLEAKAWEEAKGYLEDLIARESHVDSAHLNLGRIAEERNDPESALIEYAQVGPGNDYLPAQLRQADILIGNGRAAEAQSRLAIQRDTQPDYGIQLYLIEAETLAANNQSDKAWAVLQQALKQYPDDLNLLYTRSMLAEKRNDLAQMEKDLRLIIQRDPDNAMALNALGYTLSDRTTRYDEAKVLIEKAHQINPEDPAVLDSLGWVNFRLGNLDEAERLLRQALERFPDQEVAAHLGEVLWANGKQREARQIWSKFLKEQPDSPILRSTIKRLTGSETLNANANANANA
D1-35_043121287hemACOG0373Glutamyl-tRNA reductaseATGGCCTTCCTTGCACTTGGTATCAACCACAAGACTGCTTCAGTAGACGTCCGCGAGCGCGTGGCCTTTACGCCTGAGCAGCTGGTGGAGGCCCTGCAGCAACTCTGCCGACTCACCGACAGCCGAGAAGCCGCGATTCTCTCCACCTGCAATCGCAGTGAGCTTTATATAGAGCAGGATCACGTTTCGGCCGATTCGGTGCTGCGCTGGCTGGCCCAATACCATGATCTGAGCCTTGAAGAGCTGCGCGCCAGTGCCTATGTGCATGAGGACGATGCGGCAGTTCGTCACATGATGCGCGTCGCCTCCGGGCTCGATTCGCTGGTGCTGGGCGAACCGCAGATTCTCGGCCAGATGAAATCGGCCTACGCCGTGGCCCGCGAGGCCGGGACAGTTGGCCCGCTGCTGGGGCGTCTGTTCCAGGCCACCTTCAATGCCGCCAAGCAAGTACGCACCGACACTGCCATTGGCGAAAACCCGGTGTCCGTGGCGTTCGCCGCCGTCAGCCTGGCGAAACAGATTTTCAGTGATTTGCAACGCAGCCAGGCGCTGTTGATCGGCGCGGGCGAGACCATCACCCTGGTCGCCCGGCACCTGCACGACCTCGGCGTGAAGCGCATCGTGGTCGCCAACCGTACGCTGGAACGCGCCAGCACCCTGGCCGAGCAGTTCGGCGCTCATGCAGTGCTGCTCTCGGACATTCCCGCCGAGCTGGTGCACAGCGACATCGTCATCAGTTCCACCGCCAGCCAACTGCCGATCCTCGGCAAGGGCGCGGTGGAAAGCGCCCTGAAGCTGCGCAAGCACAAGCCGATCTTCATGGTCGATATCGCCGTTCCCCGTGACATCGAACCGGAAGTGGGCGAACTCGACGACGTTTACCTCTACAGTGTCGATGACCTGCACGAAGTCGTCGCCGAGAACCTCAAGAGCCGGCAAGGCGCGGCCCAGGCGGCGGAGGAAATGATCACCGTCGGCGCCGAGGACTTCATGGTGCGCCTGCGCGAGCTGGCGGCGGTGGATGTGCTCAAGGCGTATCGTCAGCAAAGCGAGCGGCTACGCGACGAAGAATTGCAAAAGGCCCAGCGCCTGCTGGCCAATGGCGGCAGCGCCGAAGAGGTGTTGGTGCAACTGGCGCGTGGCCTGACCAACAAATTGCTTCACGCGCCCAGTGTCCAGCTCAAGAAGCTGACCGCCGAAGGCCGCCTCGATGCGCTGGCCATGGCCCAGGAACTTTTCGCCCTCGGTGAAGCTTCACCGGATGGCTTATCGGATAAGAAACCGTAAMAFLALGINHKTASVDVRERVAFTPEQLVEALQQLCRLTDSREAAILSTCNRSELYIEQDHVSADSVLRWLAQYHDLSLEELRASAYVHEDDAAVRHMMRVASGLDSLVLGEPQILGQMKSAYAVAREAGTVGPLLGRLFQATFNAAKQVRTDTAIGENPVSVAFAAVSLAKQIFSDLQRSQALLIGAGETITLVARHLHDLGVKRIVVANRTLERASTLAEQFGAHAVLLSDIPAELVHSDIVISSTASQLPILGKGAVESALKLRKHKPIFMVDIAVPRDIEPEVGELDDVYLYSVDDLHEVVAENLKSRQGAAQAAEEMITVGAEDFMVRLRELAAVDVLKAYRQQSERLRDEELQKAQRLLANGGSAEEVLVQLARGLTNKLLHAPSVQLKKLTAEGRLDALAMAQELFALGEASPDGLSDKKPPGPT0003650_2055DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003650-hemA-K02492NANA
D1-35_043131083prfACOG0216Peptide chain release factor RF1ATGAAAGCGTCACTGCTCAATAAGCTGGATATTCTCCAGGACCGTTTCGAGGAACTGACCGCCTTGCTGGGCGATGGCGAAGTCATTTCCGACCAGAACAAATTTCGCACCTACTCCAAGGAGTACGCGGAAGTCGAGCCGATCGTTGCGACCTACAAGCAGTTGCTCAAGGTGCAGAGCGACCTTGAGGGCGCCCAGGCGCTGCTCAAGGACAGCGACCCGGACCTGCGCGAGATGGCCGTGGAAGAAGTTCGCGAAGCCAAGGAGCAACTGGTCGAGCTGGAAAGCGACCTGCAACGCATGCTGTTGCCCAAGGACCCGAACGACGGGCGCAACGTGTTCCTCGAAATCCGCGCCGGCACTGGCGGCGACGAGGCGGCGATCTTTTCCGGTGACCTGTTCCGCATGTATTCGCGCTACGCCGAGCGTCGCGGCTGGCGGGTCGAGATCCTCTCGGAAAACGAAGGCGAACACGGCGGCTATAAAGAAGTCATCGCCCGGGTCGAGGGCGATAACGTCTATGGCAAGTTGAAGTTCGAGTCCGGCGCCCACCGCGTACAACGCGTGCCGGCCACCGAATCTCAGGGGCGCATCCATACGTCCGCCTGCACCGTGGCGGTCTTGCCCGAGCCGGACGAACAGGAGGCCATCGAGATCAACCCGGCGGACCTGCGCGTCGACACCTACCGGTCCTCCGGCGCGGGCGGCCAGCACGTGAACAAGACCGACTCGGCGATCCGCATCACTCACTTGCCTTCGGGCATCGTGGTGGAGTGCCAGGAAGAGCGCTCCCAGCACAAGAACCGCGCGCGGGCGATGGCCTGGTTGTCGGCCAAGCTCAACGACCAGCAGACCAGCGCCGCCGCCAATGCCATCGCCAGCGAACGCAAGTTGCTGGTGGGCTCGGGCGACCGTTCCGAGCGGATCCGTACCTACAACTTTGCCCAGGGCCGGGTCACCGACCACCGTGTCAACCTGACCCTGTATTCCCTCGACGAAATTCTTGCAGGTGGTGTCGACGCCGTCATCGAGCCCTTGCTCGCTGAATACCAGGCTGACCAGCTGGCCGCGATTGGCGAGTAAMKASLLNKLDILQDRFEELTALLGDGEVISDQNKFRTYSKEYAEVEPIVATYKQLLKVQSDLEGAQALLKDSDPDLREMAVEEVREAKEQLVELESDLQRMLLPKDPNDGRNVFLEIRAGTGGDEAAIFSGDLFRMYSRYAERRGWRVEILSENEGEHGGYKEVIARVEGDNVYGKLKFESGAHRVQRVPATESQGRIHTSACTVAVLPEPDEQEAIEINPADLRVDTYRSSGAGGQHVNKTDSAIRITHLPSGIVVECQEERSQHKNRARAMAWLSAKLNDQQTSAAANAIASERKLLVGSGDRSERIRTYNFAQGRVTDHRVNLTLYSLDEILAGGVDAVIEPLLAEYQADQLAAIGENANANANANA
D1-35_04314831prmC_1COG2890Release factor glutamine methyltransferaseATGACCATCATCGCCAGCTTGCTTCGCGCCGCGCAATTGCCGGATTCGCCCAGCCCACGACTGGACGCCGAGCTGTTGCTGGCCGCCGCCCTGGGCAAGTCCCGCAGCTTCCTGCACACCTGGCCCGAGCGAATCGTGCCGAGCGAGGCGGCGCTGTTGTTTTCCGAATACTTGCGTCGCCGTCGCTCCGGCGAGCCGGTGGCTTATATTCTCGGGCAGCAGGGTTTCTGGAAACTCGATCTGGAAGTCGCGCCCCATACGCTGATCCCGCGGCCCGACACCGAACTGTTGGTCGAGACCGCACTGGCATTGTTGCCAGCCACGCCCGCCCGGGTCCTCGACCTTGGCACCGGCAGCGGCGCGATTGCCCTGGCGCTGGCCAGCGAGCGTCCGGCCTGGAATGTCACGGCGGTCGACCGGGTGCTGGAAGCCGTGGCCCTGGCCGAGCGCAATCGCCAGCGCCTGGGCCTGCGCAATGTCACGGTGCTCAGCAGTCACTGGTTCAGCGCCCTGGAAGGCGAGCGTTTCGACCTGATCATCAGCAACCCGCCTTATATAGCCGCCAGCGATCCGCACCTGGCCGAGGGCGATGTGCGCTTCGAGCCGGCCAGTGCGCTGGTGGCGGGGCCGGACGGTCTCGACGACTTGCGTGCAATCATCGCCCAGGCCCCCGATCATCTCGGGGCAGGCGGCTGGCTGATGCTGGAGCACGGTTATGACCAGGCCGAGGCGGTGCGTGGTCTGTTGCAAAAGCAAGGGTTTGCCGAAGTCCACAGTCGCAAGGATCTGGGTAATCACGAACGCATCAGCCTGGGACGCCTGCCGTGCTGAMTIIASLLRAAQLPDSPSPRLDAELLLAAALGKSRSFLHTWPERIVPSEAALLFSEYLRRRRSGEPVAYILGQQGFWKLDLEVAPHTLIPRPDTELLVETALALLPATPARVLDLGTGSGAIALALASERPAWNVTAVDRVLEAVALAERNRQRLGLRNVTVLSSHWFSALEGERFDLIISNPPYIAASDPHLAEGDVRFEPASALVAGPDGLDDLRAIIAQAPDHLGAGGWLMLEHGYDQAEAVRGLLQKQGFAEVHSRKDLGNHERISLGRLPCNANANANANA
D1-35_04315756moeBCOG0476Molybdopterin-synthase adenylyltransferaseGTGCTGAATGATCAAGAACTGCTGCGCTACAGTCGCCAGATTCTGTTGCAGCACATCGACATCGATGGGCAGCTGCGCCTCAAGCAGGGCCGCGTATTGATCATCGGCCTCGGTGGCCTGGGCGCCCCGGTGGCGTTGTACCTGGCCGCCGCCGGCGTCGGCGAGTTGCACCTGGCGGATTTCGACACGGTCGACCTGACCAACCTTCAGCGACAGATCATTCACGACACCGACAGCGTCGGCCTGAGCAAGGTCGATTCGGCGGTGCGTCGCCTGGCCGCCATCAATCCCGAGGTTCGCCTGGTTTCCCATTCGACCGCCATGGATGAAGACTCCCTGGCCGGCGCGGTGGCGGCGGTGGATGTGGTGCTCGACTGTTCCGACAACTTTGCTACCCGCGAAGCGGTGAATGCGGCGTGTGTCACCGCCGCCAAGCCCCTGGTCAGCGGCGCAGCGATTCGCCTGGAAGGGCAACTGTCGGTATTCGACCCACGTCGCCCCGAAAGTCCTTGTTACCACTGCCTTTACGGGCATGGCAGCGAAGCCGAGCTGACCTGCAGCGAAGCCGGTGTGCTTGGGCCGCTGGTGGGTTTGGTAGGCAGTCTCCAGGCGCTGGAAGCCTTGAAGTTGCTGGCGGGTTTCGGTGAGCCCCTGGTGGGGCGCCTGCTGCTGATCGATGCCCTGGGCACGCGTTTTCGCGAACTACGCGTCAAGCGCGATCCGCGCTGCGGTGTCTGCGGTAACCGGCATGCGTGAMLNDQELLRYSRQILLQHIDIDGQLRLKQGRVLIIGLGGLGAPVALYLAAAGVGELHLADFDTVDLTNLQRQIIHDTDSVGLSKVDSAVRRLAAINPEVRLVSHSTAMDEDSLAGAVAAVDVVLDCSDNFATREAVNAACVTAAKPLVSGAAIRLEGQLSVFDPRRPESPCYHCLYGHGSEAELTCSEAGVLGPLVGLVGSLQALEALKLLAGFGEPLVGRLLLIDALGTRFRELRVKRDPRCGVCGNRHAPGPT0008935_729DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008935-thiF-K03148NANA
D1-35_04316792murICOG0796Glutamate racemaseATGCGTGAGGCGCCGGTCGGTGTGTTCGACTCGGGTGTCGGCGGGCTGTCGGTGCTGGGGGAAATCCGTCGGCTGTTGCCCAATGAGTCGCTGCTGTACGTTGGCGACTGCGGGCATATTCCGTATGGCGAAAAAAGCCCGGAATTCATCCGGCAGCGCTGCGCGGTCATTGCCGACTTTTTCCAGCGCGAGGGCTCCAAGGCGCTCGTGGTGGCCTGCAACACCGCGACAGTCGCCGGGGTGGCTGACCTGCGTCGCGACTACCCCGATTGGCCCATCGTTGGTATGGAGCCGGCGGTCAAGCCGGCTGCCGCCGCGACGCGAAGCGGCATCGTTGGCGTGCTGGCAACGACTGGCACCTTGCAGAGCGCCAAATTTGCCGCGTTGCTCGACCGCTTCGCCACGGATGTCCGCGTGATCACGCAGCCCTGTCCGGGACTGGTGGAATTGATCGAGGCGGGCGACCTGCACAGTTCGGCCTTGCACCAACTGCTACAAGGCTACGTCAACCCGTTGCTGGCGGCTGGCTGCGACACACTGATCCTTGGCTGTACGCACTATCCATTCCTCAAGCCGTTGCTCAAACAGATGATTCCGGCCCATATCAGTCTGATCGATACGGGCGCCGCCGTGGCCCGGCAACTCCAGCGCTTGTTGGCGGAGCGGGCGCTACTGGCTGACGGGCCTGCCAGCGAAACTCAATTCTGGAGTAGCGCTGATCCGATACATTTAAGAAATATCCTACCGATGCTATGGAATTCGTCTGGCATTGTGCGAAGCTTCGTTCTGTAAMREAPVGVFDSGVGGLSVLGEIRRLLPNESLLYVGDCGHIPYGEKSPEFIRQRCAVIADFFQREGSKALVVACNTATVAGVADLRRDYPDWPIVGMEPAVKPAAAATRSGIVGVLATTGTLQSAKFAALLDRFATDVRVITQPCPGLVELIEAGDLHSSALHQLLQGYVNPLLAAGCDTLILGCTHYPFLKPLLKQMIPAHISLIDTGAAVARQLQRLLAERALLADGPASETQFWSSADPIHLRNILPMLWNSSGIVRSFVLPGPT0020200_3595DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_RELATED_RACEMASES,PGPT0020200-murI-K01776NANA
D1-35_04317519pagLLipid A deacylase PagLATGAAGCGTTTATTCTGCTTTGCCGCATTTGCGGCTGCGTTGCTGGGGCACACTTACACCGCACAGGCGGCGGGCGTGGAATTCGGGGTTGGCCAGACCGGCGACTCGACCATGACCTATCGCCTGGGCATGCAGTTCGATTGGGACAAGAGCTGGCTGCAGAGCGACGTGGGTCGCCTGACCGGTTACTGGAGCGGTGCCTATACGTACTGGGAGGGGGACGAAACTTCGAGCAACCACAGCCTGTCGTTCTCGCCAGTCCTGGTGTATGAGTTTGCCGGTCAGAACGTGAAGCCTTACATCGAGGCAGGCGTCGGTGTTGCGCTGTTTGAAAACACTGAAATCGAAAGCAACAAGCTCGGCACAGCGTTCCAGTTCGAAGACCGCATCGGCTTTGGCCTGCGCTTCAATGGCGGGCATGAAGTCGGCATCCGTGCCACTCACTATTCCAACGCCGGGATCAAGTCGACCAACGACGGTGTGGAAAGCTACGCATTGCATTACACAATGCCGCTGTAAMKRLFCFAAFAAALLGHTYTAQAAGVEFGVGQTGDSTMTYRLGMQFDWDKSWLQSDVGRLTGYWSGAYTYWEGDETSSNHSLSFSPVLVYEFAGQNVKPYIEAGVGVALFENTEIESNKLGTAFQFEDRIGFGLRFNGGHEVGIRATHYSNAGIKSTNDGVESYALHYTMPLPGPT0022415_600DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LIPID_A_METABOLISM,PGPT0022415-pagL-K12976NANA
D1-35_04318306hypothetical proteinATGAAGACCATCCCGCTGCACGAAATCCCCGCCCCGGCCGTCACGTGTTCAACGTGTGCGGCGTGCTGCTGCCAACTGGAAGTCATGTTGATCACCGACACCGGCGTGCCCGAGCGTTTCATCGACACGGATGACTGGGGTGGAGAAGTGATGCTGCGTCTTGACGACGGCTGGTGCGCGGCGCTGGATCGCGACACCATGCGGTGCACGATCTACGAAAGGCGTCCGCTCATCTGCCGGGAGTTCGAGATGGGTGCGCCGGAGTGCCTGGAAGAGCGCCAGGGCATTGCAACGGCATATAGATAGMKTIPLHEIPAPAVTCSTCAACCCQLEVMLITDTGVPERFIDTDDWGGEVMLRLDDGWCAALDRDTMRCTIYERRPLICREFEMGAPECLEERQGIATAYRNANANANANA
D1-35_04319765hypothetical proteinATGGGTTCGACACCGCCACGGCGATACTGGCTGACCGGCGCCGGTAACGGAATTGGCGCCTCTTTGGCCGAATCGATACTGCGTACCGGCGCCCATCTGGCTGTCAGCTCACGCTTGCCGTGCGATGCGCTTTTGGCAAGATATCCAGGACAGGTCCTGATCGTGGCCGGCAATCTGACCGACAGCCAGGCCGTACGCGAGGTGGGCGAGCGAATCGCCCAGGAATGGGGCTCCCTGGATACCGTGATCATCAACGCCGGAACCGCCGAATACATCAGCGGACAACCCGTCAACCCATCGATCATCGAACACATCGTGCGCAGCAACCTGCTGGCCGCCAGCCTGTGTATCGAGGCGGCCGCGCCATTGCTGCGCGCCGGCAACGGGACCCATCTGGTGGGCATCGCCAGTCCGCTGACCTATCTGCCGCCCTCGCAATTCGAGGCCGGGGACCAAGGGATGCGCTTTTTATTCGAATCGGCTCGCGGCAAACTGGCCCGCGATGGCATCGACGTGACCATCGTGCACCCAGGGTTCGATAACTCATCGCCGGCCATCGACGATGGCTTGCCTCCTTCGATTCGCTGGTCTGCTGAAACGGCGGCCCAGCACATCCTGACCCAACTGATCGAACGTCCCCTTGAAGTGATCCTGCCCGCCATGACCATGAACCTGCTTTGGCCACTGCCATCGACCGACACGGTGCTGGCGGGCGCGCATTCACGTTCGGACAGTTACCAGTGCCCGATCAAGGGACACCCCTGAMGSTPPRRYWLTGAGNGIGASLAESILRTGAHLAVSSRLPCDALLARYPGQVLIVAGNLTDSQAVREVGERIAQEWGSLDTVIINAGTAEYISGQPVNPSIIEHIVRSNLLAASLCIEAAAPLLRAGNGTHLVGIASPLTYLPPSQFEAGDQGMRFLFESARGKLARDGIDVTIVHPGFDNSSPAIDDGLPPSIRWSAETAAQHILTQLIERPLEVILPAMTMNLLWPLPSTDTVLAGAHSRSDSYQCPIKGHPNANANANANA
D1-35_043201434phrBCOG0415Deoxyribodipyrimidine photo-lyaseATGCAAATGATCTGGCTGCGCAGCGACTTGCGCCTGCACGACAACACCGCCCTGGCGGCCGCCGCTGCCCGGGGGCCCTGCGTAGCGGTCTACCTGCCGAGCCCGAAGCAATGGGCGGCCCATGACGATGCACCCTGCAAGATCGATTTCTGGTTGCGCAACCTCGCGGCATTGAGCACTGCCCTGGCGGAACTGAACATCCCATTGCTGATCCGCAACACGGAGTATTGGAATCAGGCCCCGCAAGTGCTGGTCACTTTATGTCGCGAGCTGGGCATCGGTGCCGTACACGTCAACGAGGAATACGGCCTGAATGAAACCCGGCGCGACGCCGACGTCGCCCGGGCGCTAAAGGTTGAGGGCGTGGAATTTCACAGCCATCTCGACCAGCTCCTGTTCAAGCCCGGCAGCGTCCTGACCAAGACCGGCAGTTATTTCAAGGTGTTCAGCCAATTTCGCAAGGTCTGCTATAGCCGTCTGCATTTTTCGTTACCGAGCCTGGTGCCCGCGCCTGTCCGGCAGGCGCCTACCGCCATCGCCAGCGATCCGCTGCCGACGCAGATCGAAGGGTTCAATCCGCCAAATGCGGCGCTGCGCGATCTCTGGCCCGCCGGCGAAAGCGAAGCCCGGCGCCGGCTCGAGTCGTTCGTCGAGCAACACATCGATTACTACCAGAGCGAACGGGATTTTCCGGCCAGACCCGGGACCAGCCAGCTGTCGGCCTATCTGGTGGCCGGCGTGGTTTCACCGCGCCAGTGCCTGCACGCCGCGCTACAGGCCAATCAGGGCGAGTTCGAAAGCGGAAACGTCGGAACCGTGACCTGGATTAACGAACTGCTCTGGCGCGAGTTTTATAAACACGTTCTGGTGGGATTCCCCCGCGTATCGCGCCACCGCGCGTTCCGCCCGGAAACCGAGGCCCTGGCCTGGCGCAACGACCACCAGGCACTGGCGGCGTGGAAAGAAGCCCGTACCGGCTTGCCGATCATTGACGCGGCCATGCGCCAATTGCTTGAGACCGGCTGGATGCATAACCGCCTACGGATGGTGGTGGCGATGTTCCTGACCAAGAACCTGTTGATCGATTGGCGAGAGGGCGAACGCTTTTTCATGCAGCACCTGATCGACGGTGACCTGGCGGCAAACAATGGCGGCTGGCAGTGGAGCGCCTCGACCGGCACGGACTCGGCGCCCTGGTTCCGGATTTTCAACCCGTTGAGCCAATCGGAAAAATTCGACCGCGAGGGCTTGTTCATCAAACGCTGGCTACCCGAACTGAACGATCTCGATAAGCCGGATGTCCATAACCCGAATACCCGTGGCGATTTGTTTGGCGCGGTGGACTACCCCGCTCCGATCGTCGACCTCAGCCAGTCCAGGGCCCGCGCCCTGGCAGCGTTCAGAAACCTGCCGTCACGGCAGGACGCCGGTTGAMQMIWLRSDLRLHDNTALAAAAARGPCVAVYLPSPKQWAAHDDAPCKIDFWLRNLAALSTALAELNIPLLIRNTEYWNQAPQVLVTLCRELGIGAVHVNEEYGLNETRRDADVARALKVEGVEFHSHLDQLLFKPGSVLTKTGSYFKVFSQFRKVCYSRLHFSLPSLVPAPVRQAPTAIASDPLPTQIEGFNPPNAALRDLWPAGESEARRRLESFVEQHIDYYQSERDFPARPGTSQLSAYLVAGVVSPRQCLHAALQANQGEFESGNVGTVTWINELLWREFYKHVLVGFPRVSRHRAFRPETEALAWRNDHQALAAWKEARTGLPIIDAAMRQLLETGWMHNRLRMVVAMFLTKNLLIDWREGERFFMQHLIDGDLAANNGGWQWSASTGTDSAPWFRIFNPLSQSEKFDREGLFIKRWLPELNDLDKPDVHNPNTRGDLFGAVDYPAPIVDLSQSRARALAAFRNLPSRQDAGNANANANANA
D1-35_04321939hypothetical proteinATGAAGAACGAGCTCGACTCCAGCGCCAGCGAAGACCTGGGCGCCGATTTCGCCAAGGCCCTCGCGCAGGGCTGGCTGCCCATCCGCGAAGTCGCCCGGCAAACCGGCGTCAATGCCGTCACGCTGCGAGCCTGGGAGCGGCGCTACGGGTTGATCGTGCCGCACCGTACGCCCAAGGGCCATCGCTTGTTCAATCGCGAACATGTGCAGCGGATCCTGAGCATCCTCACCTGGATCGATCGTGGCGTGGCAGTGAGCAAGATAAAACCGTTGCTCGACACACCGCAGCCGTCAGGCGAACCGTTGGAAGACGACTGGCAACGTCAGCGCCATGCCCTGATGCTGGCGGTGACGCAACTGGCCGAGCGTCAGGTCGATGAGTCGGTGAACCAGGCCATGGCGCTGTATCCGCCTTGGACTGTTTGTGAACAGTTGCTCCTGCCCTTGCTGGGCGAGTTGCAATTGCGCTGGCAGAGCCAGTTCGGCGCGCAGCTGGAAAAGGTCTTCCTGTACTCCTGGCTGCGCAGCAAATTCGGCAGCCGGATCTACCACAACAACCGCCAGTTGCGCGGCGCACCGCTGTTGATGATCAACCAGTCCGAGGTGCCGCAGGAGCCCCAGTTGTGGCTCACCGCCTGGCTGGCAAGCAGCGCCGACTGTCCCGTGGAGGTGTTCGACGGGCCGCTCCCGGCCGGTGAGCTGGCGTTGGCGGTCGAACGGCTCAAGGCCCGCGGCGTGCTGCTGTATTCGAGCCAGGCACTGAATCTGTCGCAATTGCCCAGGCTGCTGAGCGGGCTCGACTGCCCGATCATCATCGCCGGCCCCGCCGCCTCGATTCACCAGGCCAAGCTGTCCGCAAGCGCGGCAATGAGCAACGTCAGCTGGGCCGAAGACCCGCTATCGGCTTATCGCGAACTGAGCCGCAGAGAACTTCTTTAGMKNELDSSASEDLGADFAKALAQGWLPIREVARQTGVNAVTLRAWERRYGLIVPHRTPKGHRLFNREHVQRILSILTWIDRGVAVSKIKPLLDTPQPSGEPLEDDWQRQRHALMLAVTQLAERQVDESVNQAMALYPPWTVCEQLLLPLLGELQLRWQSQFGAQLEKVFLYSWLRSKFGSRIYHNNRQLRGAPLLMINQSEVPQEPQLWLTAWLASSADCPVEVFDGPLPAGELALAVERLKARGVLLYSSQALNLSQLPRLLSGLDCPIIIAGPAASIHQAKLSASAAMSNVSWAEDPLSAYRELSRRELLNANANANANA
D1-35_04322981hypothetical proteinATGCCCAACGAAGCTATCGCCAAACCGAAAATTGCCATCAGCGCCTGCCTGATGGGTGCCGAAGTGCGCTTCAATGGTGGTCACAAGCAATCGCCGTTGTGCAGCCGCACGCTGGTCGAGTACTTTGATTTCGTGCCGGTGTGTCCGGAAGTTGCCATTGGCCTGGGCGTCCCGCGCGAGCCGATCCGGCTGGTTGGCAATCCCGCGCGCCCCGACGCGGTCGGCACGGTGAAGCGAGACCTCGACGTGACCCAGCCATTGGTCGATTACGGACAACAAATGGCCGCTGAGCTGGATGACATCTGCGGCTATATCTTCATGCAGAAGTCGCCGTCCTGCGGGCTGGAGCGGGTCAAGGTCTACGACCACAACGGTGTCCCGCAGGACGGCGGCGGACGTGGTGTCTACGCCCAGGCCTTTTGCGAGCGTCACCCCGATCTGCCGGTGGAAGAAGACGGCCGCCTCAACGATCCGGTACTGCGGGAGAACTTTCTGACCCGTGTATTCGCCTATGCCGCCTGGCAACCGCTGCGCCGCCGGGGGCTGACCCGACGCGACCTGATTGAATTTCACTCACGCTACAAGTACCTGTTGATGGCCCACAACCCTGAGCAATACAAGGCGTTGGGCAACATGTTGGGCAACATGGGCAACATGGGCAACATGGGCAAGGCTGATCCGGCCGAACTGGGCCAGCGTTATTTCAGCGCGCTGATGGCGGCCTTGAAGAAATGCGCCACCCGACGCACGCACACCAACGTCCTGCAGCACCTCAGCGGTTACCTCAAGCGCGCCATCGATGCCGATGACAAGCAGGAGGTGCAGCACCTGATCGGGCAGTACCGTCTTGGTATCGTGCCACTGGTGGTGCCGCTGACGTTGCTCAAGCATCATCTGCGTCAGCACCCCGACCCCTATCTCGCCCAACAGGTCTACCTGCAACCGCACCCAGAGAACCTCAGCTTGCGAAACGCCATTTGAMPNEAIAKPKIAISACLMGAEVRFNGGHKQSPLCSRTLVEYFDFVPVCPEVAIGLGVPREPIRLVGNPARPDAVGTVKRDLDVTQPLVDYGQQMAAELDDICGYIFMQKSPSCGLERVKVYDHNGVPQDGGGRGVYAQAFCERHPDLPVEEDGRLNDPVLRENFLTRVFAYAAWQPLRRRGLTRRDLIEFHSRYKYLLMAHNPEQYKALGNMLGNMGNMGNMGKADPAELGQRYFSALMAALKKCATRRTHTNVLQHLSGYLKRAIDADDKQEVQHLIGQYRLGIVPLVVPLTLLKHHLRQHPDPYLAQQVYLQPHPENLSLRNAINANANANANA
D1-35_04323987COG3380RenalaseATGACTGTACCCATCGCAATCATCGGCACCGGCATCGCCGGACTTTCAGCCGCCCAGGCCCTGACGGAGGCCGGGCATGTCGTTCAACTCTTCGATAAAAGCCATGGCAGCGGCGGCCGCATGTCGAGCAAGCGCAGCGACGCTGGCGCGCTGGACATGGGCGCACAATATTTCACCGCCCGGGATCGGCGCTTCGTCACGGAAGTCCAGCGCTGGCAAGCCAACGGCTGGGCGGCGGAATGGAACCCGCAGCTCTATCACTTCCAGGACGGGCAGATGAGCCCCTCGCCGGACGAGCAGACCCGCTGGGTCGGTACCCCGCGCATGAGCGCGATTACCCGCGCCCTGCTCGGCGAGCTGCAGGTGCAGTTCTCCTGCCGCATCACCGAGGTCTTTCGTGGCCAGGAACACTGGCACCTGCAGGACGCCGAAGGGGTTACCCACGGCCCGTTCGGCCAGGTCGTGATTGCCACGCCCGCGCCTCAGGCCACGGCATTGCTCGCCGCCGTGCCGAAACTGGCCGGCGTCGCCGCCGGGGTGAAGATGGACCCCACCTGGGCAGTGGCGCTGGCCTTTGAACAACCCCTGGATACGCCCATGGAGGGCTGCTTCGTCCAGGACAGCCCCCTCGACTGGCTGGCCCGCAACCGCAGTAAACCAGGGCGCGATGCCAAGCTCGACACCTGGGTGCTGCATGCAACCAGCGACTGGAGCCGCCAGCACATCGACATGCCCAAGGAAGCGGTGATCGAGCATTTGCACGGCGCCTTCGCAGAACTGCTGCACAGCGCGATGCCCGCGCCGAGCTTCAGCGTGGCCCATCGCTGGCTCTACGCCCGTCCCGCCGGCAGCCACGAATGGGGCGCCCTGGCCGATGCCGACCTGGGCTTGTATGTGTGCGGAGACTGGTGCCTGTCCGGCCGGGTCGAAGGAGCATGGCTCAGTGGCCAGGATGCCGCCCGTCGCTTGCACGCCAGCCTTCAGTGAMTVPIAIIGTGIAGLSAAQALTEAGHVVQLFDKSHGSGGRMSSKRSDAGALDMGAQYFTARDRRFVTEVQRWQANGWAAEWNPQLYHFQDGQMSPSPDEQTRWVGTPRMSAITRALLGELQVQFSCRITEVFRGQEHWHLQDAEGVTHGPFGQVVIATPAPQATALLAAVPKLAGVAAGVKMDPTWAVALAFEQPLDTPMEGCFVQDSPLDWLARNRSKPGRDAKLDTWVLHATSDWSRQHIDMPKEAVIEHLHGAFAELLHSAMPAPSFSVAHRWLYARPAGSHEWGALADADLGLYVCGDWCLSGRVEGAWLSGQDAARRLHASLQNANANANANA
D1-35_04324900Epimerase family proteinATGCACATATTGCTGACCGGCGGTACTGGTTTGATCGGACGTCAACTCTGCCGGCACTGGCTGGAGCAGGGACATCGCCTGACGGTCTGGAGTCGTCGGCCCGAACAGGTGGCGAAAATCTGTGGCGCGCAGGTGCGCGGTGTCGCCAGCCTCGATGAGCTTGGCGAGCCGGTGGACGCGGTCGTCAACCTTGCCGGCGCGCCTATTGGCGACCGGCCCTGGAGCCATAAACGCAAGATGCTGCTGTGGAGCAGCCGCGTCACGCTGACCGAGGATCTGCTGGCCTGGCTGGAGCGTTGCGAACAGAAACCGCGGGTGCTGATTTCCGGCTCTGCGGTGGGCTGGTATGGCGACGGCGGCGAGCGGGAGTTGACCGAAGAATCCGGGCCGGTCAGCGAAGACTTCGCCAGCCAGTTGTGCATCGCCTGGGAAGAAACCGCGCAACGTGCAGAAGCCCTGGGCATACGCGTGGTGCTGGTTCGCACCGGCCTGGTCCTGTCTGCCGAGGGCGGCTTTTTGTCGCGGCTGTTGCTGCCGTTCAAACTGGCAATGGGCGGGCGTATCGGCAGCGGGCGGCAGTGGATGCCCTGGATCCATATCGACGATCAAATCGCCCTGATTGATTTTCTTCTGCACCGCAGCGATGCCAGCGGTCCTTATAATGCCTGCGCACCGAACCCGGTGCGCAACCGCGATTTCGCCAAGGCCCTGGGGCACGTGCTGCATCGCCCGGCCGTGGTGCCGATGCCGGAGCTTGCGTTGAAAATCGCATTGGGGGAGTTGTCATTGCTGTTGCTGGGAGGCCAGCGCGCCACGCCCACCCGATTGCAGGCGGCGGGGTTTTCATTCCGGTTCACTGAGTTGTCTGCGGCCCTGGAAGATTTGTCGGGTCGCCTTTGAMHILLTGGTGLIGRQLCRHWLEQGHRLTVWSRRPEQVAKICGAQVRGVASLDELGEPVDAVVNLAGAPIGDRPWSHKRKMLLWSSRVTLTEDLLAWLERCEQKPRVLISGSAVGWYGDGGERELTEESGPVSEDFASQLCIAWEETAQRAEALGIRVVLVRTGLVLSAEGGFLSRLLLPFKLAMGGRIGSGRQWMPWIHIDDQIALIDFLLHRSDASGPYNACAPNPVRNRDFAKALGHVLHRPAVVPMPELALKIALGELSLLLLGGQRATPTRLQAAGFSFRFTELSAALEDLSGRLPGPT0014730_2445DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSLOW_TEMPERATURE_TOLERANCELOW_TEMPERATURE-RELATED_ENZYMES,PGPT0014730-yfhF-K07071NANA
D1-35_043251026hemHCOG0276FerrochelataseATGACCGATCACGCGTTGCTTCTGGTGAATCTGGGTTCGCCTGCCTCCACCTCGGTGGCCGATGTACGCCGCTACCTCAACCAATTTCTGATGGACCCCTACGTCATCGACCTGCCATGGCCGGTGCGGCGGCTGCTGGTGTCGCTGATCCTGGTCAAGCGCCCCGAGCAATCGGCCCACGCCTATGCCTCGATCTGGTGGGAAGAGGGCTCGCCACTGGTGGTCCTCAGTCGCCGCCTGCAACAGGCCATGAAAGCGCAATGGACCCAGGGCCCGGTGGAGCTGGCAATGCGTTATGGCGAGCCATCGATCGAATCGACCCTGGTGCGCCTGGCAAGCCAGGGGCACACGAAAATCACCCTGGCGCCGCTGTATCCGCAGTTCGCCGACAGCACCGTGACCACGGTCATCGAAGAAGCAAAGCGGGTAGTGCGTGAGAAAAAGCTCAAGGTGCAGTTCTCGATTCTCCAGCCCTTCTATGACCAGCCGGAATATATCGATGCCTTGGTTGCCAGCGCCAAGCCGTACCTGATGCAGGATTACGATCATCTGTTGCTGAGTTTCCATGGCCTGCCGGAACGGCACCTGACCAAGCTCGACCCTACGGGCTATCACTGCTTCAAGGACGCCGATTGCTGCCGGAACGCGCCGCCGGAAGTCATGGCCACGTGTTACCGCGCCCAGTGTATTCGTACCGCCGAGCTGTTCGCCCGGCAGATGGGGCTGGCGGATGGCAAATGGTCGGTGTCGTTCCAGTCGCGACTGGGACGGGCCAAGTGGATCGAACCTTATACCGAGGCGCGCCTGGACGAACTGGCCAAAAGCGGGGTGAAGAAAGTACTGGTGATGTGCCCGGCATTCGTTGCCGATTGCATCGAGACGCTGGAAGAAATCGGCGACCGCGGGCGCGAGCAGTTTCGCGAAGCGGGAGGGGAGGAGTTGGTACTGGTGCCGTGTCTCAATGACGATCCGCAGTGGGCGAAGGTGTTGAGCACCCTTTGCGAGCGGGCGCCGCTGGCGTTGTAGMTDHALLLVNLGSPASTSVADVRRYLNQFLMDPYVIDLPWPVRRLLVSLILVKRPEQSAHAYASIWWEEGSPLVVLSRRLQQAMKAQWTQGPVELAMRYGEPSIESTLVRLASQGHTKITLAPLYPQFADSTVTTVIEEAKRVVREKKLKVQFSILQPFYDQPEYIDALVASAKPYLMQDYDHLLLSFHGLPERHLTKLDPTGYHCFKDADCCRNAPPEVMATCYRAQCIRTAELFARQMGLADGKWSVSFQSRLGRAKWIEPYTEARLDELAKSGVKKVLVMCPAFVADCIETLEEIGDRGREQFREAGGEELVLVPCLNDDPQWAKVLSTLCERAPLALPGPT0008485_2872DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008485-hemH|ywfI-K01772NANA
D1-35_043261275uraACOG2233Uracil permeaseATGCAGGACGAATTCAACGATCCGCTCTGGCGTCAGGTGCTGTCCGGCGCGCAGATGCTGTTCGTCGCCTTCGGCGCGCTGGTGCTGATGCCGCTGATCACCGGCCTGGACCCGAACGTGGCGCTGTTCACCGCGGGCCTGGGGACGATCCTGTTCCAGATCGTTACCGGGCGTCAGGTGCCGGTGTTCCTGGCGTCGAGTTTTGCCTTCATCACGCCGATCATTCTTGCCAAAGGCCAGTTCGGCCTGGCGGCGACCATGGGCGGCGTGATGGCGGCCGGTTTCGTCTATACGTTCCTGGGCCTGGCGGTGAAGATCAAGGGCACCGGCTTCATTGACCGGCTGCTGCCACCGGTGGTGATCGGCCCGGTGATCATTTCCATCGGCCTGGCAATGGCGCCAATCGCCGCCAACATGGCGATGGGCAAGGCCGGCGACGGCACCGAGCTGATTCACTATCAGACGGCGATGCTGATCTCGATGCCGGCGTTGCTCACTACCCTGATCGTCGCCGTGTTCGGCAAAGGCATTTTCCGCCTGGTGCCGATCATCTCCGGCGTATTGGTGGGTTTTGCCATGGCCTTCTTCTTCGGCGTCGTCGACACCGCAAAAATCGCCGCCGCCCCCTGGTTCGCCCTGCCGGCCTTCACCGCGCCGGAGTTCAACTGGCAAGCGATCCTGTTCATCGTGCCCGTAGCCCTGGCGCCAGCGATCGAACACATCGGCGGGGTAATTGCCGTGGGTAGCGTGACCGGTCGCGACTACCTGAAAAAACCCGGCCTGCACCGCACCTTGTTCGGTGACGGCATCGCCACCACCGCAGCCGGCCTGTTTGGCGGCCCACCCAACACCACCTATGCCGAAGTGACTGGCGCGGTGATGCTGACCAAGAACTACAACCCGAAGATCATGACCTGGGCCTCGATCTTCGCCATCAGCCTGGCGTTCGTCGGCAAGTTCGGCGCACTGCTGCAAAGCATTCCGGTGCCGGTGATGGGCGGGATCCTGTGCCTGTTGTTCGGTTCGATCGCGGCGGTGGGCATGAACACACTGATCCGCCACAAGATCGACCTGGGCGAAGCACGCAACCTGGTGATCGTTTCGGTGACGCTGGTGTTCGGCATCGGCGGCGTACTGGTCGGCACCGGTACCGGCCCGGACGACTTCGGCCTCAAGGGCATCGCGCTGTGCGCCGTGGTGGCGATCGCGTTGAACCTGATCTTGCCGGGCAACGATGGCTGGAAGCAGAAAAAGGCGGATGAGCCACTGATTTGAMQDEFNDPLWRQVLSGAQMLFVAFGALVLMPLITGLDPNVALFTAGLGTILFQIVTGRQVPVFLASSFAFITPIILAKGQFGLAATMGGVMAAGFVYTFLGLAVKIKGTGFIDRLLPPVVIGPVIISIGLAMAPIAANMAMGKAGDGTELIHYQTAMLISMPALLTTLIVAVFGKGIFRLVPIISGVLVGFAMAFFFGVVDTAKIAAAPWFALPAFTAPEFNWQAILFIVPVALAPAIEHIGGVIAVGSVTGRDYLKKPGLHRTLFGDGIATTAAGLFGGPPNTTYAEVTGAVMLTKNYNPKIMTWASIFAISLAFVGKFGALLQSIPVPVMGGILCLLFGSIAAVGMNTLIRHKIDLGEARNLVIVSVTLVFGIGGVLVGTGTGPDDFGLKGIALCAVVAIALNLILPGNDGWKQKKADEPLINANANANANA
D1-35_04327639uppCOG0035Uracil phosphoribosyltransferaseATGCCCATCCTCGAGATCCGCCACCCGCTGATCAGACATAAACTCGGCCTGATGCGCCGCGCCGACATCAGCACGAAGAACTTCCGCGAGCTCGCCCAGGAAGTCGGTGCCCTGCTCACCTACGAAGCCACCAAGGACCTGCCGCTGGAGTCCTACGAGATCGCCGGTTGGGCGGGCACGGTGCAGGTGGAAAAAATCGCCGGCAAGAAGATTACCGTGGTGCCGATCCTGCGTGCCGGTATCGGCATGCTCGAAGGCGTCCTGAGCCTGATTCCGGGTGCCAAGGTCAGCGCCGTCGGCGTGGCCCGCAACGAGGAAACCCTGCAGGCCCATACCTACCTGGAAAAACTGGTGCCGGAGATCGACGAGCGCCTGGCGATGATCATCGACCCGATGCTCGCCACCGGCAGCTCCATGGTTGCCACCATCGACCTGCTGAAAAAAGCCGGTTGCCGGGACATCCGCGCCATGGTCCTGGTCGCCGCGCCCGAAGGCATCCAGGCCGTGGAAGATGCCCACCCCGACGTGACCATCTACACCGCCTCCATTGACCAGAAACTCAACGAACACGGCTACATCATTCCGGGCCTGGGCGATGCCGGCGACAAGATCTTCGGCACCAAGCAGAAGGACGCCTGAMPILEIRHPLIRHKLGLMRRADISTKNFRELAQEVGALLTYEATKDLPLESYEIAGWAGTVQVEKIAGKKITVVPILRAGIGMLEGVLSLIPGAKVSAVGVARNEETLQAHTYLEKLVPEIDERLAMIIDPMLATGSSMVATIDLLKKAGCRDIRAMVLVAAPEGIQAVEDAHPDVTIYTASIDQKLNEHGYIIPGLGDAGDKIFGTKQKDAPGPT0021240_1595DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021240-upp-K00761NANA
D1-35_04328558hptHypoxanthine-guanine phosphoribosyltransferaseATGTCCGCTGATCTCGAGCATATCCGTCAAGTCATGCGAGAGGCTGACTGCCTGTACACCGAAGCTGAAGTCGAAGCGGCCATTGTCCGTGTCGGTGCGCAAATCAACGATCAGTTGGCTGACCGCAACCCGGTGGTGTTCTGCGTGATGAACGGCGGGCTGATTTTCTCCGGCAAGCTGCTGACCTGCCTGAACTTCCCGTTGGAAGCTTCCTACCTGCACGCCACCCGCTATCGCAACGAAACCAGCGGCGGCGACCTGTTCTGGAAAGCCAAGCCGGAAGTCTCGTTCATCGACCGCGACGTGCTGATCATCGACGATATCCTCGATGAAGGTCACACCCTGGGCGCGATCATCGACTTCTGCAAACACGCTGGCGCCCGTGCCGTACATACCGCCGTGCTGATCGACAAGGACCACGACCGCAAGGCCCGTCCCGACCTGAAGGCCGACTTCGTCGGTTTGCCGTGCATCGATCGCTACATCTTTGGCTACGGCATGGACTACAAAGGCTACTGGCGTAACGCCAATGGTATTTTTGCCGTCAAGGGGATGTAAMSADLEHIRQVMREADCLYTEAEVEAAIVRVGAQINDQLADRNPVVFCVMNGGLIFSGKLLTCLNFPLEASYLHATRYRNETSGGDLFWKAKPEVSFIDRDVLIIDDILDEGHTLGAIIDFCKHAGARAVHTAVLIDKDHDRKARPDLKADFVGLPCIDRYIFGYGMDYKGYWRNANGIFAVKGMPGPT0007295_1123DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0007295-hprT|hpt-K00760NANA
D1-35_043291740dauA_2COG0659C4-dicarboxylic acid transporter DauAATGGCCTTCTCCGCCCCACCGCTGTTCGCCGCCTGGCGCCAAGCCTGGCGTGCCGGTTACACCCTTGAGCGCCTGCGCGGCGACCTGGTAGCCGGGCTTACGGTCGGCATCATCGCCATCCCGCTGGCCATGGCCCTGGCAATCGCCGTTGGCGTGCCGCCACAACACGGTCTTTACACCGTGCTGGTGGCCGCCCCCTTGATTGCCCTGACCGGCGGCTCGCGATTCAACGTGAGCGGGCCGACGGCCGCATTCGTTGTCATCCTGCTGCCCATCACTCAGCAATACGGCCTGGGCGGCCTGCTGCTGTGCACAATGCTTGCCGGCCTGATCCTGATTGCCCTGGGGCTGATGCGCGCCGGGCGCTTGATCCAGTTCATCCCTTATCCGGTGATCCTCGGTTTCACCGCCGGGATCGGCGTGGTGATCGCGACGCTGCAATTGAAGGACCTGTTGGGCCTGAGCACTGCGGGCCAGGCCACGCATTACATCGAACAGCTGGGCGAATTGATCGTGGCGCTGCCCGGCGCACGGCTTGGCGACGCCATTATCGGCGGGGCATGCCTGGCCGTATTGATTGCCTGGCCGCGCTGGGTGCCACGCGTCCCGGGCCATCTGGTCGCGCTGCTGATCGGCGCGTTGCTGGGGCTGGCCATCGAGCGCGCCGGGCTGCCGGTCGCAACGCTGGGCGAACGCTTCAGCTACGTCGTCGATGGCATTGTCTACCCTGGCATCCCGCCTTTCCTGCCGCGCTTCGACTGGCCCTGGAACCTGCCGAATGGCCAGGGCGGTGCGTTGATACTTTCCTATGACCTGTTCCGCCAATTACTGGGCCCAGCCTTCGCCATCGCCATGCTCGGCGCCATCGAGTCATTGCTCTGCGCGGTGGTGGCGGATGGCATGACCGGGAGCAGGCACGACCCCAACGCCGAATTGATCGGCCAGGGCCTGGGCAACCTCGTGGCGCCGTCGTTCGGCGGCATCACCGCCACCGCCGCAATTGCCCGCAGCGCGACCAACGTGCGCAGCGGCGCGTCATCGCCCCTGGCGGCGATCATTCACAGCCTGGTGGTGCTGGTGGCGATTGTGTTGCTCGCGCCGCTGTTCAGTTACTTGCCGATGGCGGCGCTGGCGGCGTTGCTGGTGATGGTCGCCTGGAACATGAGCGAGGCCGGGCATGTGCTGCATACCCTGCGCATCGCCCCGCGCAGCGATGTGCTGGTGCTGCTGAGCTGCCTGGGCCTGACGGTGCTGTTCGACATGGTCCTGGCCGTCGCCGTCGGCCTGTTGCTGGCCGCCGGGCTGTTCATCAAGCGCATGAGCGAACTGACCGACAGCGCTGAACTGCCACGCCATTCCCACCAGGCCTTGCTGGACATGCCCGAGCATGTTCGCTGCTATGCCATTCGCGGGCCGCTGTTCTTCGGTGCGGCGGAGAAGGCCCTGGATGTATTGCGCCGGTTCGACCCGGGTGTCCGGGTGGTGGTCGTGGACATGAGCGCCGTGCCGATGCTGGACATGACGGCCCTGGCCGCGCTGGAAAATATCCTCAGGGACTATCGAAAGCAGGGCATCGGCCTGATCCTGGTCGCGACCGCACCGAGGGTACGCCTGAAACTGCGCCGCGCCGGGGTCCATCGCGAGCAGCGGCAGTTGGCGTATGTGCAGACGCTGGAACAGGCGCGGAGCAAAAGTGAGCGCTGGCTGGCCGCGAGCGTAGCGCACTCAAGGCTGGTTTGAMAFSAPPLFAAWRQAWRAGYTLERLRGDLVAGLTVGIIAIPLAMALAIAVGVPPQHGLYTVLVAAPLIALTGGSRFNVSGPTAAFVVILLPITQQYGLGGLLLCTMLAGLILIALGLMRAGRLIQFIPYPVILGFTAGIGVVIATLQLKDLLGLSTAGQATHYIEQLGELIVALPGARLGDAIIGGACLAVLIAWPRWVPRVPGHLVALLIGALLGLAIERAGLPVATLGERFSYVVDGIVYPGIPPFLPRFDWPWNLPNGQGGALILSYDLFRQLLGPAFAIAMLGAIESLLCAVVADGMTGSRHDPNAELIGQGLGNLVAPSFGGITATAAIARSATNVRSGASSPLAAIIHSLVVLVAIVLLAPLFSYLPMAALAALLVMVAWNMSEAGHVLHTLRIAPRSDVLVLLSCLGLTVLFDMVLAVAVGLLLAAGLFIKRMSELTDSAELPRHSHQALLDMPEHVRCYAIRGPLFFGAAEKALDVLRRFDPGVRVVVVDMSAVPMLDMTALAALENILRDYRKQGIGLILVATAPRVRLKLRRAGVHREQRQLAYVQTLEQARSKSERWLAASVAHSRLVPGPT0003020_1232DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SULFATE|THIOSULFATE_TRANSPORT,PGPT0003020-TC_SULP-K03321NANA
D1-35_04330486hypothetical proteinATGCGTGTATCGATCCGCCGCTGCGCCACTTTGCTGCTGCTATCCAGCCTGCCGTTGCTGGCGGTGGCCGCGCCGATGCACAGCCAGTTCCTGCCCCCCGATGACCTGGTGGCGCGTCAGGAACAGCCCGAACAGCAGCAGTTGCTGCAAGTCACCGAGTATTCGGTGGTGCTGGGCAACCAGCGCCCATCCAACCAGCAGCCGATCCCGGTCACTTCGCCGCTGATGGTGCGGCTCAAGGGCAAGCCCCTGAACAAGGGAGCCATCATCAGCCAGGTGATCCTCAATTTTGATGGCGAAAGCAAAAGCCTGAAGAAACCGGTATTCGATGAGGCGAGCAAGACCCTGACGCTGTCTTATCCACAGGCCCAGTACCGGGTGGTGATCGATCTGTTGCGCAACGACACGGTCTACGTGCAGTTCCTCAGCTACGCCAACGGCCATATCTGGGCCGACCTGCACACTGGCGCCGCACGCCCGCGTTGAMRVSIRRCATLLLLSSLPLLAVAAPMHSQFLPPDDLVARQEQPEQQQLLQVTEYSVVLGNQRPSNQQPIPVTSPLMVRLKGKPLNKGAIISQVILNFDGESKSLKKPVFDEASKTLTLSYPQAQYRVVIDLLRNDTVYVQFLSYANGHIWADLHTGAARPRNANANANANA
D1-35_04331288hypothetical proteinATGCGTAAAGACAAGAAACAAGTGATTGGTGACGAGATTGGCGACGAACAGATCAAGCTGTTCCTCAATTTCGAGCCCGTCGATGCCACTTCGCCGTCGCTGCACAAACTGATCAAGGCCTACCGTGGGCTGCGTGTCGACGATTTCGAGCGCTTCCTGGGGTTTTTCGTCGAGGCGGGTTACGACCTGAATGGCAAGGACGAACAGGGTAACGATTTCGTTGCGTTGATCCATGATCAGCGCAATGCAGAGGAATATATTGAGTTGATCAAGAAAGCTCGCGGTTGAMRKDKKQVIGDEIGDEQIKLFLNFEPVDATSPSLHKLIKAYRGLRVDDFERFLGFFVEAGYDLNGKDEQGNDFVALIHDQRNAEEYIELIKKARGNANANANANA
D1-35_043321509mqo_3COG0579Malate:quinone oxidoreductaseATGGCGCATAACGAAGCAGTCGACGTAGTTCTGGTAGGGGCCGGCATCATGAGTGCCACCCTGGCCGTGCTGCTCAAGGAGCTCGACCCGGCGATTTCGCTGGAAGTCGTCGAGCTGATGGATTCGGGTGCCGCGGAGAGTTCCAATCCCTGGAACAACGCCGGTACCGGCCACGCCGGGCTGTGTGAGCTGAACTACACACCCCAGGCCGCCGATGGCAGTGTCGACATCAAGAAAGCCGTGCACATCAACACCCAGTTCGAGGTGTCGAAGCAGTTCTGGACGTACCTGACCAAAAAAGGCACGTTCGGCTCGTCGAAATCCTTCATCGCCCCGGTGCCGCACCTGAGCTTCGTGCAAGGCGAGAAAGGCGTGGAATTCCTCAGGAAGCGCTTCGAGCTGATGCGCCAGCACCACGCGTTCGCCGACATGGAATACACCGAAGACCGCGACCAGATGGCCGAGTGGATGCCGCTGATGATGCCAGGCCGCCCGGCTGACGAAGTCATCGCCGCGACCCGCGTCATGAACGGTACCGACGTCAACTTCGGCGCCCTGACCAACCAGTTGCTCAAGCACCTGGGCAGCGCGCCGGACACCCAGATCAAATATTGCAAGCGCGTCACCGGCCTCAAGCGCAAGGGCGATGGCTGGACCGTGAGCATCAAAGACGTCAACTCCGGCAGCACCCGTGAAGTCGACGCCAAATTCGTCTTCCTCGGTGCCGGCGGCGCCGCGTTGCCGCTGCTGCAAGCTTCGGGCATTGAAGAGAGCAAGGGCTTCGGCGGTTTCCCGGTCAGCGGCCAGTGGCTGCGTTGCGACAACCCGGAAGTGGTCAAGCATCACCAGGCCAAGGTCTACAGCCAGGCCGCGGTGGGCTCGCCGCCGATGTCGGTGCCGCACCTCGATACTCGCGTGGTCGATGGCAAGAAATCCCTGCTGTTCGGGCCATACGCCGGCTTCACCACCAAGTTCCTCAAGCACGGCTCGCTGATGGACCTGCCGTTGTCGGTACGCGCCGGCAACATCGGCCCGATGCTGGCCGTGGCCCGGGACAACATGGACCTGACCAGGTACCTGATCAGCGAAGTGATGCAGTCCATGGAGCAGCGCCTGGAATCCCTGCGGCGCTTCTACCCCGAGGCGAAAGCCGAGGACTGGCGCCTGGAAGTGGCTGGCCAGCGCGTGCAGATCATCAAGAAAGACCCGAAGAAAGGCGGCATCCTGCAATTCGGTACCGAATTGGTGGCGGCCAAGGACGGCACTCTCGCCGCCTTGCTCGGCGCTTCACCAGGCGCTTCGGTCACCGTGTCGATCATGCTCGAACTGATCGAGCGCTGCTTCCCGGAAAAAGCCAAGGGAGAGTGGGCCGCCAAGCTCGCGGAAATCTTCCCGGCCCGGGAGAAGGTGCTGGAAACCGATGCGGCGCTGTATCGCAAGGTCAACGCGCAGAACAACATCGCGCTGGAACTGGTTGAAGCAAGCAGCGAAACCCAAAGCTACGCTTGAMAHNEAVDVVLVGAGIMSATLAVLLKELDPAISLEVVELMDSGAAESSNPWNNAGTGHAGLCELNYTPQAADGSVDIKKAVHINTQFEVSKQFWTYLTKKGTFGSSKSFIAPVPHLSFVQGEKGVEFLRKRFELMRQHHAFADMEYTEDRDQMAEWMPLMMPGRPADEVIAATRVMNGTDVNFGALTNQLLKHLGSAPDTQIKYCKRVTGLKRKGDGWTVSIKDVNSGSTREVDAKFVFLGAGGAALPLLQASGIEESKGFGGFPVSGQWLRCDNPEVVKHHQAKVYSQAAVGSPPMSVPHLDTRVVDGKKSLLFGPYAGFTTKFLKHGSLMDLPLSVRAGNIGPMLAVARDNMDLTRYLISEVMQSMEQRLESLRRFYPEAKAEDWRLEVAGQRVQIIKKDPKKGGILQFGTELVAAKDGTLAALLGASPGASVTVSIMLELIERCFPEKAKGEWAAKLAEIFPAREKVLETDAALYRKVNAQNNIALELVEASSETQSYAPGPT0001440_909DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001440-mqo-K00116NANA
D1-35_04333234hypothetical proteinATGCGTTTTCTCATCTCCCTGTTTACCCCGCGCCCGCATCACCGCTGCTTCGCCCTGCTCGACCGCACTGGTCGTTGCCAGGCATTCAAGCAATGCAGCCTGCAGCCCATGGGCGATGGCTGGGTCGAAATCGAAGAGATCCGTCTCAATTGGCTGCATCAGCCGTTGCCCGCCAGCGCCCTGGTACAGGCGCCCCGCGCTCGTGCACGCAGCCGCCAGTTGTTGGCCGTCTGAMRFLISLFTPRPHHRCFALLDRTGRCQAFKQCSLQPMGDGWVEIEEIRLNWLHQPLPASALVQAPRARARSRQLLAVNANANANANA
D1-35_04334585hypothetical proteinATGTTGCAACGCCTGTTGTTCGGTTTGATCGCCGTGACCAGTCTGACCCTTGTCGGCTGTGCCCACAGCCCGCAACAACTTAACCCGGAGCCCAAGCTCAACGCCCAGCTGGCGCCGGTGGGTCGCGGCCAGCCGGTGGTGGTGCGGGTCGTGGACGGCCGCCCGTCGCCAACCCTCGGCACGCGTGGTGGTCTGTACCCTGAAACCAGCGTGATCACGGTGCAGGGCGCACAGGTCCTGCCAAAATTGCAGGCCCAGGCTGAAGCGGCCGTGCGTCTGCTGGGCTTCACCCCGACGCAGAACGCAATGAACGCCCCGCAACTGACCTTGACCCTGGCCGAACTGAAATACCAGTCGCCCAAGGAAGGCATGTACGTGACCGAAGCCACCATCGGCGCGACGTTCCGTTCCGACGTGCAGAACGCCAACCGCCGCTACAGCGGTCGTTACGGTGCGTCGCTGGATCAACGCTTCGGCATGGCGCCCAACCAGGACACCAACACCAAGCTGGTCAGCGACGTGTTGAGCGATGCCCTGACCCGTCTGTTCAAGGACCCGACCATTGGTCAGGTGTTGGCGGAGTAAMLQRLLFGLIAVTSLTLVGCAHSPQQLNPEPKLNAQLAPVGRGQPVVVRVVDGRPSPTLGTRGGLYPETSVITVQGAQVLPKLQAQAEAAVRLLGFTPTQNAMNAPQLTLTLAELKYQSPKEGMYVTEATIGATFRSDVQNANRRYSGRYGASLDQRFGMAPNQDTNTKLVSDVLSDALTRLFKDPTIGQVLAEPGPT0024500_191DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINSCE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024500-yajG-K07286NANA
D1-35_04335207hypothetical proteinATGCTGCACGCCGAAAACCAGGATCGTCTCTACCTGATCAGCCCGAGCGATGAACAACAGAACCTTGTCGGCAGTCTGTCCTTCAATGTCCAGGATCGTCATTGGCTGGTGTACTGCGCCCTCGGCGGCCATCAACATGCGGACCTCCCGGAGACAGACCTGCTGACCGGGATCAGCGTGCTGGAGCTCTATTCCCAGGCTGCGTGAMLHAENQDRLYLISPSDEQQNLVGSLSFNVQDRHWLVYCALGGHQHADLPETDLLTGISVLELYSQAANANANANANA
D1-35_04336282hypothetical proteinATGTCGTTGCAACTGTTCTCGCTGTTCGCTGCCCACCCCGCCAAACTGATCAACCTGCTCGCGCTGCTGTTTGCCTGTCCGGGTGGCTGGGTGCTGCACGCGACGCGACGCCGCGAACTGCGCGCGCGGGCCTGTCTTGCGGAACGCAGCAGCGAAGGCAATGAACGATTCGAAGCGCTGCTGGACCTGGCGACGCAACGCATGAACCGGTTTTTCTACCGTTTCGGCTTCGCTTGCCTGGGGTTGGCGCTGCTGATGTCGTGGATCAGCACGCAGTTCTGAMSLQLFSLFAAHPAKLINLLALLFACPGGWVLHATRRRELRARACLAERSSEGNERFEALLDLATQRMNRFFYRFGFACLGLALLMSWISTQFNANANANANA
D1-35_043371164hypothetical proteinATGGGCGAATTCGATGCCATCCGACCTTACAACGACAGCGAAGTCCCAGCGGTGCTGGCACGGCTGCTCAGCGACAAGGCGTTTCTAGATATCCTCACCCACTTCCGCTTCCCGCGCCTGGCCGGCGCTTTCGGCTGGATGCTCAAACCTCTTATAGCGCAGAAGTTGCGTCGAGAGTTCGCCGGTGTGACCTCCGTTGCCACGTTGCAGGACAAAGTCGAGTTCTACGTCGACCACACCATCGAGCGTGCCACCGATGGCGTGACCTACACCGGGGTCGAGCAATTCAAGTCCGGCAATGCCTACCTGTTCCTCGCCAACCACCGCGACATCGTGATGGACCCGGCCTTCGTCAACTATGCCGTGTACCACGCCGGCCTGCCGACGCCGCGCATCGCGATTGGCGACAACCTGCTGCAAAAGCCCTTCGTCAGCGACCTGATGCGCCTGAACAAGAGCTTCATCGTGCACCGCTCCATCACCGGACGCCGGGAAAAAATGGCGGCGTACCAGTTGCTGTCGGCCTACATCAACCACTCGATCCGCAACGATTGCGCCTCGATCTGGATTGCCCAGGCCGAGGGCCGGGCGAAGGACGGTGATGACCGGACCGAGTCGGCGATCCTGAAGATGTTCCACATGAGCCGCAAGGACGAGCCGTTCGGCGAGGTCATCCGCTCGTTGAACCTGACGCCGGTGTCGATCAGCTACGAATATGACCCGTGCGACCAGGCCAAGGCCCGCGAGCTGTACATCCGCGCCACCACCGGCACGTACACGAAGGCGCCGGGCGAGGACGACGTCAGCATTGCCAAAGGCATCACCGGTTACAAGGGCCGGGTCCACGTGAACTTTGCCGCGCCGATCACCGAACTGTTCGAGGACACCAAACAACTGGCCATGGAGATGGACCGGCAGATACTCGGCGGCTATCGCCTGTTCCCGGTGCATTACCTGGCCTACGCGCAATGGGCCGATGCCGACCCGCAGTTGCAGGTTCCGACGGCGGCCGAGGTGTTCGGTGCCGAAGAACTGGCCAAGGCTGAAGAAGAATGGCAGCGCCGGCTGGAAGCCTGCCCGGAGGAACACCGACCGTTTCTGGTGCTGCAATACGCGACACCGGTGCGTAACCAGTATCGGGTCAGGGCGGGGCTGGCGCTTTAAMGEFDAIRPYNDSEVPAVLARLLSDKAFLDILTHFRFPRLAGAFGWMLKPLIAQKLRREFAGVTSVATLQDKVEFYVDHTIERATDGVTYTGVEQFKSGNAYLFLANHRDIVMDPAFVNYAVYHAGLPTPRIAIGDNLLQKPFVSDLMRLNKSFIVHRSITGRREKMAAYQLLSAYINHSIRNDCASIWIAQAEGRAKDGDDRTESAILKMFHMSRKDEPFGEVIRSLNLTPVSISYEYDPCDQAKARELYIRATTGTYTKAPGEDDVSIAKGITGYKGRVHVNFAAPITELFEDTKQLAMEMDRQILGGYRLFPVHYLAYAQWADADPQLQVPTAAEVFGAEELAKAEEEWQRRLEACPEEHRPFLVLQYATPVRNQYRVRAGLALNANANANANA
D1-35_04338183hypothetical proteinATGCTGGAAGCTGCTCTTTATGAATGTCCGTATTGTGGGGAGGAGGTAGAGACTTCCGTGGATTTGTCCGGCGGCGACCAGACCTACATCGAAGACTGCCAGGTCTGTTGCCGACCGATTACTTTCGTCCTGCAGGTCCACGAAGACGAATGGCACCTCGAGGTCTTCAGCGAAAACGAATGAMLEAALYECPYCGEEVETSVDLSGGDQTYIEDCQVCCRPITFVLQVHEDEWHLEVFSENENANANANANA
D1-35_04339261hypothetical proteinATGCAGCGAATCTACGAGCTGGAAAACCTGATGGAAGGCGAATTGCTCCAGGGCATGCTCGCCAGCGAAGGCATCACGGCGCACCTGGTGGGCCGCGATCTGGTGGGCGGCGCGGGTGAGCTGCCAATGTACGGCCTGCTGGGGCTGGCGGTGGAGGACGAACAGGCGCAGTACGCCCGGGAGCTGATCGCCGCCTACAATGCCGCGATGCCGGTGCCGGGCGATGAGCCTGACAGTTACCCCGGTACGCTGGTCTGTTAGMQRIYELENLMEGELLQGMLASEGITAHLVGRDLVGGAGELPMYGLLGLAVEDEQAQYARELIAAYNAAMPVPGDEPDSYPGTLVCNANANANANA
D1-35_04340624yedK_4COG2135SOS response-associated protein YedKATGTGTGGACGTTATGCCCTGTTTCGCTGGAACCCCGCTTTCGCGGCCTTGCCCGGCTTCCCCGCCGACCAGAAGGCCCAATGGAATATCTCGCCCAATGACTCGGTCCTGATGCTGCGCGCCGGCGCCGATGGACAGCGCGAACTGGCACGGGCGCGTTGGGGCCTGACGCCGCCGTGGCTGACCGATCTGTCCCGCACCCCGGCGCACGCCCGCGCCGAAACCGTGGCCGAGCAACCGATGTTCCGCGAAGCCCTGCGTTTGCGTCGTTGCCTGCTGCCCGCCAATGGTTTTTACGAGTGGCGCGGCGGCACGCGCAAGCGCCCGTACTGGCTGACGCCGGGGGAGGGCTCATCGCTGTTCTTTGCGGCGATCTGGGAAGCGTACCCGGTGCAGGAACAAGTGTGGCTGAGCACGGCGGTCATCACCCAGCCGGCGGCCGGTCAGCGCCGACCGTTGATTCTGGATGAAGAGGGCCAGCGCCTGTGGCTCGACCCCGAGACGCCCTTGCATGCCTTGCAAGGGTTGCTGGCGAGCGAGCCAGGGCAACTGCGCGAGCGGGTTCTGGCGAACATGGTCAACGACCCGAAACTCAATGGGCCGGAATGTCTGACCCCGGCCTGAMCGRYALFRWNPAFAALPGFPADQKAQWNISPNDSVLMLRAGADGQRELARARWGLTPPWLTDLSRTPAHARAETVAEQPMFREALRLRRCLLPANGFYEWRGGTRKRPYWLTPGEGSSLFFAAIWEAYPVQEQVWLSTAVITQPAAGQRRPLILDEEGQRLWLDPETPLHALQGLLASEPGQLRERVLANMVNDPKLNGPECLTPANANANANANA
D1-35_043412139mcpU_1COG0840Methyl-accepting chemotaxis protein McpUATGAAATTCAGATCGATCCAGTTTTCCGTTGCCGCCCTGGCTGGTGCCATCGTGCTCAGCGTGGTCGGCGCCCTGGTGCTGTACGCATTGTTCGCCGGCGCCCGCACCCAGGACATGGTGCAACAGCGGACCAAGGCGCAGTTCGAACAACTCATCGAGCAACGCCTCAGTGCGCTGGCCCGCACCCAGGCCAGCCTGATCCAGCGCGAACTCGAAGCGCCGCTGCTGCTCGCTCGTGGGCTGGCCACCAGCAACGCCTTGATGGGCATGAACGGAACGGACGGCAACCCGCAACTGAACATCCCGCGCGAGCAGATGATCAGCCTGCTGCGTGAAACCGTGGTGCGCAACCCGAAGATTCTCGGTGCCTACATCGCCTGGGAACCGAACGCCATCGACCACGACGACGCCCGCTATGTAGACAGCCAGGTGCTGGGCATGGAAACCAACGGGCGCTTCCTGCCGTGGTGGTTTCGCAATCAGGACGGCACCCTGGGCCTGGAAAAACTCGCCGACGTGACGGACCAGAAACTGCTGTCCACCGGCATTCGGGCCAGTGAATATTACCTGTGCTCCCAGGACAGCAAAAAAGCCTGCGTGATCGATCCCGCGCCGTATCGCGTCGGCGACACCATGACCATGCTCGCCTCGTTCATCGAGCCGATCCTGATCGATGGCAAGTTCCAGGGCATCGTCGGCGCCGACCTGTCGGTGAATTTCATCCAGGACATGCTCGTCGCCGCCGACGCCAAGCTGTACGACGGCGCCGGGGAAATGGCCCTGCTCGCCAGCAACAACCGGCTGGTGGCCTTCACCAAGGACCCAGGCAAGCTCGGCGAGAAAGCCAGCGACCTGCTGGACGCCAACGAACTGGATAACCTGACTAGGCTCGGCATTGGTGAAGTGCGTTACGACATCGATGAAGAACACGGCCACATCGAGGTGTACATGCCTTTCGGTATCGGCCAGACCGAGGCGCGCTGGACGTTGATGTTGCAATTGCCGCTGAATGCCGTGATGGCGGATCTGCAAGCCTTGCAGAAAGACCTCGATGACCAGCGCGAAACCGACATCTTCGGCATGGCCATGGTCGGCCTGGCGATTGCCGCGATCGGCCTGCTGGTGATCTGGCTGGTGGGCCACGGTATCGCCCGGCCGCTCAAGCAAATGGTGGCGATGCTCGACGACATTGCCCAGGGCGAAGGCGACCTGACCCGCCGGCTGACCAGCGACCGCGCCGATGAGTTGGGGGCCATCGCCAAGGGCTTCAACACGTTCCTGAGCAAATTGCAGGGGATGATTACCCAGGTAGTGACCTCGGTGCAGAGCGTCAGCGATTCGTCGGAGCACACCGCCGACATCGCGATCCGCACCAACCAGGGCGTACACAAGCAGATGTCGGAAATCGATCAGGTTGCCACCGCCGTGCACGAGATGACCGCCACCGCCCAGGACGTGGCGCGGAATGCGAGCCAGGCAGCCCAAGCCGCCAGCCACGCCGACCAGGCCGCCAGCCAGGGCATGCAGATTGTCCGCGACACCTCCACGTCCATCGGTGCCTTGGCGGTGGAGATCGGCAAGGCCGTGGGCGTGGTGCAGACGTTGGCCAAGGACAGCGAAAACATCAACGCGATTCTCACCGCCATCCGCGGGATCGCCGAGCAGACCAACCTGCTGGCGCTCAACGCGGCCATCGAGGCTGCACGGGCCGGTGAGCAGGGTCGCGGTTTTGCCGTGGTCGCCGATGAAGTGCGCAACCTGGCGCAGAAGACCCAGCAGGCCACCGAAGAAATCCAGTCGATGATCCAGCAGCTGCAGCAGGGTACGCGGGACGTGGTGCGTGTGATGGAAGACAGCCGGCAGCGTACCGATGAAAGTGTGCAACACGCGGCAAAAGCGGCTCAGGCCCTGGAGACGATCACCCAGGCCGTGTCGGTGATCAGCGACATGAACACCCAGATCGCCAGCGCTGCCGAGGAACAAAGCGCGGTGGCCGATGACATCAACCGTAACGTGATCAACATCGGCCAGGTGGCAAACGAAGTGGCAAGCGGCGCCGACGAATCCAGCGCGGCCAGTGCCGGGCTGACCAGGCTGGCGGAGCAGCAGCGGCGGTTGATCAATCAGTTCAGGGTTTGAMKFRSIQFSVAALAGAIVLSVVGALVLYALFAGARTQDMVQQRTKAQFEQLIEQRLSALARTQASLIQRELEAPLLLARGLATSNALMGMNGTDGNPQLNIPREQMISLLRETVVRNPKILGAYIAWEPNAIDHDDARYVDSQVLGMETNGRFLPWWFRNQDGTLGLEKLADVTDQKLLSTGIRASEYYLCSQDSKKACVIDPAPYRVGDTMTMLASFIEPILIDGKFQGIVGADLSVNFIQDMLVAADAKLYDGAGEMALLASNNRLVAFTKDPGKLGEKASDLLDANELDNLTRLGIGEVRYDIDEEHGHIEVYMPFGIGQTEARWTLMLQLPLNAVMADLQALQKDLDDQRETDIFGMAMVGLAIAAIGLLVIWLVGHGIARPLKQMVAMLDDIAQGEGDLTRRLTSDRADELGAIAKGFNTFLSKLQGMITQVVTSVQSVSDSSEHTADIAIRTNQGVHKQMSEIDQVATAVHEMTATAQDVARNASQAAQAASHADQAASQGMQIVRDTSTSIGALAVEIGKAVGVVQTLAKDSENINAILTAIRGIAEQTNLLALNAAIEAARAGEQGRGFAVVADEVRNLAQKTQQATEEIQSMIQQLQQGTRDVVRVMEDSRQRTDESVQHAAKAAQALETITQAVSVISDMNTQIASAAEEQSAVADDINRNVINIGQVANEVASGADESSAASAGLTRLAEQQRRLINQFRVPGPT0015710_3309DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_04342816loiPCOG0501Metalloprotease LoiPATGAACAAGACTTTGATGGTGAGCGCTCTGGGCGCGGCTCTGCTGCTCGCCGGTTGCCAATCGGTCAATACCACCAGCGGCGGAGCCGTGGGGGTGGAACGCAAGCAGTACATGTTCAGCATGCTGTCGACCGCTGAGGTCAACCAGATGTATGCGCAGTCCTATCAGAAGACGTTGGGTGAGGCGAGCTCCCAAGGTGCCCTGGACAAGACCAGCAGCGATGCCAAGCGCTTGCAGGTCATTGCCGACCGTCTGATTGCCCAGGCGCCTGTGTTCCGCCCGGACTCGGCGCAATGGAACTGGGAGGTGAACCTGATCAAGAGTGATGAGCTCAACGCCAACTGCGGTCCTGGCGGCAAGATCATGTTCTATACCGGCCTGATCGATCAGTTGAAGCTGACCGACGCTGAGATCGCCGCGATCATGGGCCATGAAATCGCCCACGCCTTGCGCGAGCACGGCCGTGAAGCGATGTCCAAGGCCTATGGCATCGAAATGGCCAAGCAGGGCGCCGGTGCCATATTCGGCCTGGGCCAGGACAGCCTGGCGCTGGCCGACACCGTGGCCAACTACGGCATGACCTTGCCCAACAGCCGTGGCAACGAGAACGAAGCCGACCTGATCGGCCTCGAGCTGGCCGCCCGGGCCGGCTACGACCCGAACGCGGCGATCACCCTGTGGAACAAGATGGCCAAGGCTTCGGAAGGGGCACCACCGGAATTCATGAGCACCCACCCCTCGTCGACCAGCCGGATCGCCTCGTTGCAGGCGGCAATTCCGAAGGTGATGCCGCTTTACCAGCAGGCCAGGAAGTAAMNKTLMVSALGAALLLAGCQSVNTTSGGAVGVERKQYMFSMLSTAEVNQMYAQSYQKTLGEASSQGALDKTSSDAKRLQVIADRLIAQAPVFRPDSAQWNWEVNLIKSDELNANCGPGGKIMFYTGLIDQLKLTDAEIAAIMGHEIAHALREHGREAMSKAYGIEMAKQGAGAIFGLGQDSLALADTVANYGMTLPNSRGNENEADLIGLELAARAGYDPNAAITLWNKMAKASEGAPPEFMSTHPSSTSRIASLQAAIPKVMPLYQQARKNANANANANA
D1-35_04343585mneAPutative manganese exporterATGCTGGACTCTTTCCTGGTACCCACCGCCATCGTTGCGCTGGCCGAAATCGGCGACAAGACGCAATTGCTCGCGCTCATCCTCGCCGCACGCTTTCGCAAACCCTGGCCGATCATTGCCGGCATCGTCGCCGCAACCCTGGCCAACCATGCGGCGGCCGGCGCGGTAGGTGCCTGGGTCAGCGGGTTCTTCTCCGACTCGGTGTTGCACTGGATCCTCGCGGCGAGCTTTGCCGCCACCGCGCTGTGGACCCTGGTGCCGGACAAGCTGGACGACGAGGAAGCCAATACGGCTCGCAGGTTCGGACCTTTCCTGACCACGCTGATCGCGTTTTTCCTGGCGGAAATCGGTGACAAGACCCAGATCGCCACGGTGATGCTTGCCGCGCAGTACCCAGAGTTGTGGCTGGTGATCATCGGCACCACCGTGGGTATGTTGATCGCTAACGTGCCGGTGGTACTGGCGGGCAATTTCGCCGCCGAGAAACTGCCGCTCGCCCTCATCCGCCGCCTGGCCGCCTCGGCGTTTTTCATCCTGGCGATCGTCGCGGTGTACAAGGCAATGCAGAGTAGTGGGTGGGTTTGAMLDSFLVPTAIVALAEIGDKTQLLALILAARFRKPWPIIAGIVAATLANHAAAGAVGAWVSGFFSDSVLHWILAASFAATALWTLVPDKLDDEEANTARRFGPFLTTLIAFFLAEIGDKTQIATVMLAAQYPELWLVIIGTTVGMLIANVPVVLAGNFAAEKLPLALIRRLAASAFFILAIVAVYKAMQSSGWVPGPT0013980_1276DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013980-TMEM165|gdt1-K23541NANA
D1-35_04345999rsmCCOG2813Ribosomal RNA small subunit methyltransferase CATGGATCCGCGCAGTGAAGTACTGCTTCGTCAGCCCGAATTGTTCCAGGGCCCGGTCCTGCTGGCCGGCCTGCCCGCCGACGATCTGCTCGGCCGTTTGCCCGAGGCCCACGGCTGGTGCTGGCATGCCGGCGACCAGGCCGCGCTGGATGCGCGCTTTGCGCAACGTAGCCACTTTGGCGTGAACGTACCCGAGCGGGAATTCGAAACGGCCGTGGTGTTCCTGCCCAAGGCCAAGGACCTCACCGACTACATTCTCAACGCCGTGGCCGCGCGCCTGGCCGGTCGCGAGGTGTACCTGGTGGGGGAAAAGCGCAGCGGCATCGAAGGTGCTTCCAAGCAGCTCAACCCGTTCGGCAAGCCACGCAAGCTCGACAGCGCGCGGCATTGCCAACTGTGGCAAGTCACCGTCGCCAACGCCCCGCAGGCCAAGCCGCTGGAAAGCCTGGCGCAGACCTACGAGCTGCCCCTGGCCGAAGGCCCGTTGAAAGTGATCAGCCTGCCGGGAGTGTTCAGCCATGGTCGGCTGGATCGCGGCAGCGCGTTGCTGTTGGAGCACCTGGACAAGCTGCCCAGCGGCCATCTGCTGGATTTCGGTTGTGGTGCCGGTGTACTGGGCGCGGCGGTCAAGCGCCGCTACCCGCACAATACCGTCACCCTGCTGGACGTGGATGCCTTTGCCGCCGCCAGCAGTCGCCTGACCCTGGCCGCCAACGGGCTCGAAGCCGAAGTGTTGACCGGTGATGGAATCGATGCCGCGCCCATGGGCCTGAACGCAATCCTGAGCAATCCACCCTTCCATGTCGGCGTGCACACCGATTATCACGCCACGGAAAACCTGCTGCGAAAAGCGGCCAAACATCTGAAAAACGGCGGCGAACTGCGCTTGGTCGCGAACAGTTTCCTCAAGTACCAGCCGCTGATCGAGGAGCATCTGGGCACATGCACGATCAAGGCCGAAGGCCAGGGTTTTCGCATCTACCGAGCCAAGCGTGGCTAAMDPRSEVLLRQPELFQGPVLLAGLPADDLLGRLPEAHGWCWHAGDQAALDARFAQRSHFGVNVPEREFETAVVFLPKAKDLTDYILNAVAARLAGREVYLVGEKRSGIEGASKQLNPFGKPRKLDSARHCQLWQVTVANAPQAKPLESLAQTYELPLAEGPLKVISLPGVFSHGRLDRGSALLLEHLDKLPSGHLLDFGCGAGVLGAAVKRRYPHNTVTLLDVDAFAAASSRLTLAANGLEAEVLTGDGIDAAPMGLNAILSNPPFHVGVHTDYHATENLLRKAAKHLKNGGELRLVANSFLKYQPLIEEHLGTCTIKAEGQGFRIYRAKRGNANANANANA
D1-35_04346966COG1052Putative 2-hydroxyacid dehydrogenaseATGACGAACACCGCCCGCGCCGTTTTTCTCGACCACCCTTCCCTGGACCTCGGCGACCTGGACCTGGGCCCGTTGCGCGATTGCTTCGGCGAACTGCAATTGTTCGCCGGGACCCGCCAGGACGAGGTGACCGAGCGACTCAAGGGGGCGACGGTGGCGATCACCAACAAGGTAGTGATCGACGCGGCAGCCATGGCCGCCAGCCCTGAATTGAAGCTGATCCTGATCAGCGCTACCGGCACCAATAACGTCGACCTCGCCGCTGCCCGCCACCACGGCATCACCGTGTGCAATTGCCAAGGCTACGGCACGCCGTCGGTGGCCCAGCACACGATCATGCTGTTGCTGAACCTGGCGACGCGCCTCGCCGACTACCAGAAAGCCGTGGCTGAAGGTCGCTGGCAACAGGCTTCGCAGTTCTGCCTGCTGGATTATCCGATTGTCGAGCTGCAAGGCAAGACCCTGGGTTTGCTCGGCCATGGCGAACTGGGCGGCGCCGTCGCCCGGCTGGCGCAAGCCTTTGGCATGCATGTGCTGCTGGGGCAGATTCCCGGGCGTCCGGCACGGCCGGATCGCTTGCCGCTGGATGAGCTGTTACCGCAGATCGATGCCCTGACCCTGCACTGCCCGCTCAACGAGCACACCCGCCACTTCATCGGCGCGCGCGAACTGGCGCTGCTCAAGCCCGGCACGTTCGTGGTCAACACCGCCCGTGGCGGCCTGATTGACGAACAGGCCCTGGCCGACGCCTTGCGCAGCGGTCACCTGGGCGGCGCGGCCAGCGACGTGCTGAGCGTGGAGCCGCCGACCCAAGGCAATCCCTTGCTGGCCGGCGACATTCCGCGGCTGATCATCACCCCGCACAACGCCTGGGGCAGCCGCGAGGCGCGGCAGCGGATCGTCGGCCAACTGACGGAAAACGCCCAAGGCTATTTCAGCGGTACAGCGCGCCGGGTCGTCAGTTGAMTNTARAVFLDHPSLDLGDLDLGPLRDCFGELQLFAGTRQDEVTERLKGATVAITNKVVIDAAAMAASPELKLILISATGTNNVDLAAARHHGITVCNCQGYGTPSVAQHTIMLLLNLATRLADYQKAVAEGRWQQASQFCLLDYPIVELQGKTLGLLGHGELGGAVARLAQAFGMHVLLGQIPGRPARPDRLPLDELLPQIDALTLHCPLNEHTRHFIGARELALLKPGTFVVNTARGGLIDEQALADALRSGHLGGAASDVLSVEPPTQGNPLLAGDIPRLIITPHNAWGSREARQRIVGQLTENAQGYFSGTARRVVSNANANANANA
D1-35_04347630rhtCCOG1280Threonine efflux proteinATGTACCTCACCGAATTCCTCACCGTCGCCCTGATCCACCTGCTGGCGGTCGCCAGCCCCGGTCCGGACTTTGCCGTGGTGGTGCGCGAAAGCGTAACCCATGGCCGACGTGCCGGGACCTGGACGGCGCTGGGCGTAGGCACGGCGATTTTCCTGCATGTGGGGTATTCGTTGCTGGGCATCGGCCTGATCGTGTCGCAATCGATCGTGCTGTTCAACGCGCTGAAGTGGGCCGCGGCCGCGTACCTGCTGTACATCGGCTTCAAGGCCCTGCGTGCGCAACCGGCCAAGGCTTCCGGAGAAAACCTGCACAAGGAGGCTGGCGAGCGTACCGCTCGCGGTGCGTTCACCGCAGGTTTTGTCACTAATGGCCTGAACCCCAAGGCAACGCTGTTCTTCCTGTCGCTGTTCACCGTGGTGATCAATCCCCATACGCCGGTGGCGATCCAGGCCGGCTACGGCGTGTACCTGGCGATCGCCACGGCGGCGTGGTTCTGCATGGTGGCGATGCTGTTCAGCCAGGCGCGGGTGCGTGCCGGTTTCGCCCGCATGGGCCACTGGTTCGACCGGACCATGGGCGCCGTGCTGGTGGCCATTGGCGTGAAACTGGCCTTCACCGAGGCGCACTGAMYLTEFLTVALIHLLAVASPGPDFAVVVRESVTHGRRAGTWTALGVGTAIFLHVGYSLLGIGLIVSQSIVLFNALKWAAAAYLLYIGFKALRAQPAKASGENLHKEAGERTARGAFTAGFVTNGLNPKATLFFLSLFTVVINPHTPVAIQAGYGVYLAIATAAWFCMVAMLFSQARVRAGFARMGHWFDRTMGAVLVAIGVKLAFTEAHNANANANANA
D1-35_043481683COG0318Long-chain-fatty-acid--CoA ligaseATGTTGCAGACTCGCGTTATCCCTCCAGCCGAAGGCGCCTACCAATACCCGTTGCTGATCAAACGGCTGCTGATGTCCGGTGCGCGTTACGAGAAAACCCGCGAGATCGTCTACCGCGACCAGTTGCGCTACAGCTATCCGACGCTGATCGAGCGCGTCGCGCGGCTGGCCAACGTGCTGACCGAGGCCGGAGTGAAGGCCGGTGACACCGTTGCGGTGATGGACTGGGACAGCCATCGCTACCTGGAATGCATGTTCGCGATCCCGATGATCGGCGCGGTGATCCACACCATCAATGTGCGCCTGTCACCGGAGCAGATCCTCTACACCATGAACCACGCCGAGGACCGCTTCGTGCTGGTCAACAGCGAGTTCGTCGGCCTCTACCAGGCGATCGCCGGCCAGCTGACCACGGTAAAGAAGACGCTGCTGCTGACCGACCTGGCGGACAAGACCGCTGACCTGCCGGACCTCGTGGGCGAGTACGAGCAACTGCTGGCCGCCGCCAGCCCGACTCATGATTTCCAGGATTTCGACGAGAACTCCGTCGCCACCACGTTCTACACCACCGGCACCACGGGCAATCCCAAGGGCGTGTACTTCACCCATCGGCAACTGGTGCTGCACACCCTGGGCGTGTCGACCATCATGGGCTCCATCGACAGCGTGCGGCTGTTGGGCACCAACGATGTGTACATGCCGATCACGCCGATGTTTCACGTACATGCCTGGGGCCTGCCGTACGTGGCGACCATGCTCGGGCTCAAGCAGGTCTACCCCGGGCGTTACGATCCAGAGTTCCTGGTCGAGCTGTGGCGCAAGGAAAAGGTCACCTTTTCCCATTGCGTGCCGACCATCCTGCAGATGGTCCTCAACGCCAAGGGCGCCCAGCAAACCGATTTCGGCGGCTGGAAAATCGTCATTGGCGGCAGCGCCCTCAACCGCAGCCTGTACGAGGCGGCCAAGGCCAAGGGCATCCAGCTCACCGCCGCCTACGGCATGTCCGAAACCGGGCCGCTGGTATCCTGCGCGCACCTCAACGACGAGCTGATGGCCGGCGGTGAAGACGAACGCATCACCTACCGGATCAAGGCCGGCGTGCCGGGGCCGCTGGTGGAAGCAGCGATCGTCGACGGCGAGGGCTGTTTCCTGCCCGCGGACGGCGAGACCCAAGGCGAACTGGTGCTGCGCGCGCCGTGGCTCACCGAAGGTTATTTCAACGAACCGCAGAAAGGCGCCGAGCTCTGGAAGGGCGGCTGGCTGCACACCGGCGACGTCGCCACGCTCGACGGCATGGGCTTCATCGATATCCGCGACCGGATCAAGGACGTGATCAAGACCGGCGGCGAATGGATCTCGTCCCTGGACCTGGAAGACCTCATCAGCCGTCATGCGGCGGTACGCGAAGTAGCAGTGGTCGGCATCCCCGATCCGCAGTGGGGCGAGCGCCCGTTCGCCTTGCTGGTCATTCGCGAAGGGCACCAGCTCGGGGCTCGCGAGCTCAAGGAACACCTCAAGCCATTTGTCGAGCTGGGGCACCTGAGCAAGTGGGCGATCCCGAGCCAGATCGCCCTTGTTACGGAAATTCCCAAGACCAGCGTTGGCAAGCTCGACAAGAAGCGCATCCGCGTCGACATCAGCGAATGGCAGAGCAACAACAGCACCTTCCTCTCGACGCTCTGAMLQTRVIPPAEGAYQYPLLIKRLLMSGARYEKTREIVYRDQLRYSYPTLIERVARLANVLTEAGVKAGDTVAVMDWDSHRYLECMFAIPMIGAVIHTINVRLSPEQILYTMNHAEDRFVLVNSEFVGLYQAIAGQLTTVKKTLLLTDLADKTADLPDLVGEYEQLLAAASPTHDFQDFDENSVATTFYTTGTTGNPKGVYFTHRQLVLHTLGVSTIMGSIDSVRLLGTNDVYMPITPMFHVHAWGLPYVATMLGLKQVYPGRYDPEFLVELWRKEKVTFSHCVPTILQMVLNAKGAQQTDFGGWKIVIGGSALNRSLYEAAKAKGIQLTAAYGMSETGPLVSCAHLNDELMAGGEDERITYRIKAGVPGPLVEAAIVDGEGCFLPADGETQGELVLRAPWLTEGYFNEPQKGAELWKGGWLHTGDVATLDGMGFIDIRDRIKDVIKTGGEWISSLDLEDLISRHAAVREVAVVGIPDPQWGERPFALLVIREGHQLGARELKEHLKPFVELGHLSKWAIPSQIALVTEIPKTSVGKLDKKRIRVDISEWQSNNSTFLSTLPGPT0002895_322DIRECT EFFECTBIO-FERTILIZATIONSULFUR_ASSIMILATION|MINERALIZATIONS-ASSSIMILATION-SULFUR_METABOLISMS-METABOLISM-DMS_DEGRADATION,PGPT0002895-dmdB-K20034NANA
D1-35_043491857hypothetical proteinATGACCTCAGCAAACACTTTCTGGCGCCGGGCAAAACTGCCTCTGGCCGTCAGTCTTGCCTCTTCGCTCGCCGGCCCGGCATTCGGCGTCAGCTTCAACATCGGTGAAATCGAAGGCCAGTTCGACTCGGCCCTGTCGGTCGGCGCAAGCTGGTCCACGGCCAAGGCCAACCGCGACCTGATCGGCGTCAACAACGGTGGCAAGGGCCTGTCCCAGACCTCCGACGACGGTCACTTGAACTTCAAGCGCGGGGAGACCTTCTCGAAGATCTTCAAGGGTATCCATGACCTGGAGCTGAAGTACGGCGACACCGGTGTGTTTGTACGTGGCAAGTACTGGTACGACTTCGAACTCAAGGACGAAAACCGCCTGTACAAGGACATCAGCGACAGCAACCGCAAGGAAGGCGCCAAGTCCTCCGGCGGGCAGATTCTCGATGCGTTCGTCTACCACAACTACGATATCGCCGATCAGCCGGGCTCGGTCCGCCTCGGCAAGCAAGTGGTCAGCTGGGGTGAAAGTACCTTTATCCAGGGCGGTATCAACGCCATCAACCCGGTCGACGTGTCCGCGTTCCGTCGCCCCGGTGCCGAGGTCAAGGAAGGGTTGATCCCGGTCAACATGTTCTACGTGTCCCAGAGCCTGACCGACAACCTGTCGGCCGAAGCGTTCTACCAACTGGAATGGGACCAGACTGTCGTCGACAACTGCGGCACGTTCTTCTCGCAACCGGACGTCATCGCCGACGGTTGTGACGACAATCTGCGCGTCTTGAACAAACGTTCGCGGATTCCGGGCGCAGCCTTGCCGACCCTGACGGCGTTGGGCGTCAATGTGAACGAGGAGGGCGTGCTGGTTCGCCGTGGTCCCGACCGTGATGCCCGTGACAGCGGCCAATGGGGCCTGTCGTTCAAATACAATTTCGAGCCGCTGGACACCGAGTTCGGCGCCTACTTCATGAACTACCACAGCCGGGCGCCAATCTTCAGCGCCACGGGCGCCGCGTCACGTTTCTATACCCAGCCGCTGGGGCCGTTGGCCGCATTGCGTCCGGTGATCGTGGCGGGTAACTCGAACTACTTCGTCGAGTACCCGGAAGACATCCGGCTCTATGGCCTGAGCTTTTCCACCACGCTGCCCACCGGCACCGCGTGGAGTGGTGAGCTGAGCTATCGGCCGAACGCTCCGGTACAACTGAGCACCACCGACATCCTGTTCGCCGGTGTCACGCCAATTCCGGGCTTTGGTAACGCCTCCGTACTGGACGGCGCGCCGGGCCAGGACCTGCATGGCTATCGCCGCAAGGAAATCACCCAGTTCCAGACCACCTTCACGCACTTTCTCGACCAGGTCATGGGCGCCAGCCGCCTGACCCTCGTCGGTGAGTTGGGCGTGACCCACGTTGGCGGCCTGGAAAGCCGCTCCGAAGCGCGCTACGGCCGTGATCCGGTGTTCGGCCCGGGCGAACTGCCCAACGGCTTCTGCAATACCCTCAACACCTCGACTGCGGCAGGTGGCGGCCAGACCATCAGCGGGGTGAACAGCAACTGCAACAACGACGGCTTCACCACGTCGACCTCGTGGGGCTACCGCGCTCGCGCCATCTGGGAATACCCGGATGTCTTCGCCGGTGTGAACCTCAAGCCCAACGTGGCCTGGTCCCATGACGTCAAGGGTTACTCGCCAGGTCCTGGCGCCAACTTCGAGGAAGGCCGCAAAGCCGTCAGCCTCGGGCTGGATGCCGAGTACCAGAACACTTACAACGCGAGCCTGGCCTACACCAACTTCTTTGGTGGCGACTTCAGCACCGTGGATGATCGCGACTTCCTGGCGCTCAGCGTCGGCGTGAACTTCTAAMTSANTFWRRAKLPLAVSLASSLAGPAFGVSFNIGEIEGQFDSALSVGASWSTAKANRDLIGVNNGGKGLSQTSDDGHLNFKRGETFSKIFKGIHDLELKYGDTGVFVRGKYWYDFELKDENRLYKDISDSNRKEGAKSSGGQILDAFVYHNYDIADQPGSVRLGKQVVSWGESTFIQGGINAINPVDVSAFRRPGAEVKEGLIPVNMFYVSQSLTDNLSAEAFYQLEWDQTVVDNCGTFFSQPDVIADGCDDNLRVLNKRSRIPGAALPTLTALGVNVNEEGVLVRRGPDRDARDSGQWGLSFKYNFEPLDTEFGAYFMNYHSRAPIFSATGAASRFYTQPLGPLAALRPVIVAGNSNYFVEYPEDIRLYGLSFSTTLPTGTAWSGELSYRPNAPVQLSTTDILFAGVTPIPGFGNASVLDGAPGQDLHGYRRKEITQFQTTFTHFLDQVMGASRLTLVGELGVTHVGGLESRSEARYGRDPVFGPGELPNGFCNTLNTSTAAGGGQTISGVNSNCNNDGFTTSTSWGYRARAIWEYPDVFAGVNLKPNVAWSHDVKGYSPGPGANFEEGRKAVSLGLDAEYQNTYNASLAYTNFFGGDFSTVDDRDFLALSVGVNFNANANANANA
D1-35_043501365putative proteinATGAAAATAACCAAGAATCTGTTGCAAGTCGGTGTGCTGGGGCTGTCGCTATTGGCGGCCAGCGTCATGGCCGCCGTGCCTGCCGCCGAAGCCGACAAACTGGGCAAGAGCCTGACGCCGATGGGCGCCGAAATGGCCGGCAACGCCGATGGTTCGATTTCCGCCTGGAAACCCATGGCCAAGAACGCCGGCAGCGTCGACGGCAAAGGCTTCCTCTCCGACCCGTACGCCAGTGAGAAGCCGCTGTTCACCATCACCGCGCAGAACGTCGAGCAGTACAAGGCCAAGCTTGCGCCCGGCCAGTACGCGATGTTCAAGCGTTACCCCGAAACCTTCAAAATGCCGGTCTACCCGACCCATCGCGGCGCTACCGTGCCGGACGAAGTGTTTGCTTCCATCAAGAAAAACGCGGTCAACACCAAACTGGTCTCCGGCGGCAACGGTCTGGAGAATTTCGAGACGGCTGTGCCGTTCCCGATTCCCCAGAGCGGCGTCGAGGTGATCTGGAACCACATCACCCGCTATCGCGGCGGCAGCGTGACGCGCCTGGTGACCCAGGCCACGCCGCAGCCCAACGGCTCCTACAGCCTGGTGTACTTCCGTGACCAGTTCGTGTTCCGCGACAAGATGAAGGATTTCGATCCGGCCAACCCTGGCAACATCCTGTTCTACTTCAAGCAGCAAGTGACCGCTCCGGCGCGTCTGGCTGGCGGCGTGTTGCTCGTCCACGAAACCCTCGACCAGGTGAAGGAACCGCGTTCGGCGTGGGTCTACAACGCCGGCCAGCGCCGTGTGCGTCGCGCCCCGCAAGTGTCCTATGACGGCCCGGGTACCGCCGCCGATGGCTTGCGTACCTCCGACAACCTGGACATGTACAACGGTGCGCCGGACCGCTACGACTGGAAGCTTGAAGGCAAAAAAGAGCTGTACATCGCCTCCAACAGCCACAAGATCGATTCGCCGCAGCTCAAGTACGCGGACATCATCAAGGCCGGCCACATCAACCAGGACCTGACGCGCTACGAGCTGCGTCGTGTCTGGCACGTGACCGCGACCCTGAAGGAAGGCCAGCGCCACATCTACGCCAAGCGTGACTTCTACATCGACGAAGACACCTGGCAAGCCGCGGTCATCGACCACTACGACGGCCGTGGCCAACTGTGGCGCGTAGCCGAGGCCCATGCCGAGAACTACTACGACAAGCAAGTGCCGTGGTATGCCCTGGAAACCATCTACGACCTGCAGTCCGGTCGCTACCTGGCCCTGGGCATGAAGAACGAAGAAAAATCGGCCTATGACTTCGGCTTCACCGCCAGCACCGCCGACTTCACGCCTAACGCCCTGCGTCAGGACGGCATTCGCTAAMKITKNLLQVGVLGLSLLAASVMAAVPAAEADKLGKSLTPMGAEMAGNADGSISAWKPMAKNAGSVDGKGFLSDPYASEKPLFTITAQNVEQYKAKLAPGQYAMFKRYPETFKMPVYPTHRGATVPDEVFASIKKNAVNTKLVSGGNGLENFETAVPFPIPQSGVEVIWNHITRYRGGSVTRLVTQATPQPNGSYSLVYFRDQFVFRDKMKDFDPANPGNILFYFKQQVTAPARLAGGVLLVHETLDQVKEPRSAWVYNAGQRRVRRAPQVSYDGPGTAADGLRTSDNLDMYNGAPDRYDWKLEGKKELYIASNSHKIDSPQLKYADIIKAGHINQDLTRYELRRVWHVTATLKEGQRHIYAKRDFYIDEDTWQAAVIDHYDGRGQLWRVAEAHAENYYDKQVPWYALETIYDLQSGRYLALGMKNEEKSAYDFGFTASTADFTPNALRQDGIRNANANANANA
D1-35_043512736malT_2COG2909HTH-type transcriptional regulator MalTATGACTGATTTGTCTTCACCTGCGGATTCTGCCCGCGCAGCCATCGCGGTACAGGACGGGCGTTTCTACCGCCCGCCCTTGCCCGACGGCCACGTCCCGCGGCCGCGGTTGTGCGAGCGTCTGAGCGCTGGGCTCGGCGGTCGCTTGCTGCTGGTGAGTGCACCGGCGGGGTTTGGCAAAAGCTCCCTGGCGGTGGAGTTCTGCCAGAGCCTGCCGGCCCATTGGCGGAGTCTCTGGTTGGGGCTCAGTGCCCGGGACAACGATCCGGGCCGCTTTCTGGAGCGGCTGCTCGAAGGGCTCCAGGCCTTTTATGCGCAGTTGGGCGGACGGGCGTTGGGCCTGCTGAAGATGCGCCAGCGGCACCAGCCCTTTGCTTTCGAGGAGTGGCTCGACGGCTTGCTGGATGAACTGTCCAGCCACCTCTCCTCCCGCGCCCCGCTATTGCTGGTACTCGACGATTACCACCTGGCCCAGAGCCCGGTGCTGGATCGTTGCCTGCAGTTTTTCCTCAATCACTTGCCCGAAGGGTTGCTGGTGCTGGTCACCAGCCGCCAGCGTCCGGACTGGCACCTGGCGCGCCTGCGCCTGTCGCGGCAATTGCTCGAACTCAACGAGCAGGACCTGCGCCTGACCCATGACGAAGCGTTGACCTTGCTCCAGCACCACAGCAGCTCGCTGCGTGGCGAGGCACTGGAGAGCCTGATCCAGCGCAGCGAAGGCTGGGTCGCCGGGCTGCGTTTCTGGCTGCTGGCCGCTTCCGAGGCCGGTAGCGAAGGCCGGCTGCCCCAGGCCCTGCATGGCGGTGAAGGGCTGATTCGCGATTATCTGCTCGAAGAAGTCATCGATTGCCTGCCGCCCGAGGTGCAGGCGTTTCTCTACGACACCGCGCCACAGGAGCGCTTTTGCAGCGAACTGTGCGATGCGGTGCGCGACGCCCATGACAGTCACGAAATTCTTCAGTACCTGGCCGCCCACCAGGTTTTTCTGGTGCCGCTGGACGAGCATGGCCACTGGTATCGCTACCACCACCTGTTTTCCGACCTGTTGCGCAGCCGCCCCAGCGCGCCGGCCATGGTGCCGGCCGCGACTCTGCACTTGCGCGCCTGTCGCTGGTTCAATGCCCAGGGTCTCATCGACGAAGCCGTGGAGCAGGCGTTGCGTGCCGGGCACCTGGACGTGGCGGCGAACCTGGTGCAGAACCTTTCGGAAGAACAACTGCTGGCCGAGCAGAACGTCGGCATGTTGCTGCGCTGGAAAATGGACCTGCCTGATAGCCTGCTCATCAGCACCCCACGGCTGATCGTGCTCTACAGCTGGGCGTTGGGCCTGGCCAGCCAACTGGATGCCGCCGAGGAACTAGCCGCCCACTTGAGTCGCTTCCTGCCGGCGCCGTCGGCCACCGCGCAAAAATCCATGCTCGCCCAGTGGCTGGCCCTGAGCGGCATCGTCGCCCGCGGGCGTGGCGACCGAGAGGCCACGCTGCGCTATTGCACCGAAGCCCTGGAAAGCCTGCCGCAGAAACGCTATGGCCAGCGCCTGATGTGCTTGTCCACCCTGTCGAACCTGGCGATTGCCGACGGTGACCTGTGGCGCGCCCGCGCACTGAACCGCGACTCCCTCGAACTGGCGCAGCGGGTCGGCAATCCGTTGTTCGAGGCGCTGGCCCATTACGACCGTGCGCGGGTGTTGCAGGCGCGAGGGGAGATCCTGCGCGCACTCGATGAAGTGAAGCAGGGGCTGCAGCGGCTGCATGGATTGTCGCCGCAACGGCTGTATGCGGTGCGCGCGCGATTGGTGCTGTACGAAGGTTTCCTGTTGACGCTGCGCATGCAGTCCCAGGCCGGATTGACACGGTTGCAGGCCGGCCTGACCGAAGCCCGGGCTTGTCGCGATATCAGTGTGTTGATCGGCCACTGCGTGATTGCCCGGGTCGAAGGCTATAACGGCGAATTCGCCCGGGCCTTCGCCGAGCTGGCCGAGGCCGAGCGCCTGATGCACATCTGGGATGTACCACCGGTTTACTACCTGGCGATGATCACCCTGGTCAAATGCGAGCTCTGGCTGGCCCAGGGCCGTACCGAGCTGGCCGAAGCCTGGCTGGCGCGGCTGGGCCAGACCTACACCGGCGAACGGGCCGCCGCGCCGCCGGAGTTCCACCCGCAGTTGCCGTTGCATGTCGAGCTGCAGCAGGCATTGCTGGAATCCATAAAGGGCCAACCGATGCAGGCCGAGGGGCGCCTCGATGCCTTGCTTGAGCACGCACAGCAAACCGGGCGGCAGATGCTCAGTGTGATGGTGCTCAACCAGAAGGTGGCCTTGCTGCTGCGCCTGGGCCGCGAGCCCGAGGCCCGCAGCACCCTGGCCCAGGCGTTCGATGCCGCCATCGGCGGCGTGTTGCAGCCTTTCGAATGGTTGTTGCGAGAGCATCGTGAATGGCTGCGCGAACAGTTGCTGCACGCGCCGCCCAGTGACGTGCGCCAGCACTTGCTCGAATGCTTGCCGTCGACCGCGACGCCAGCGATCGAACCCTCGGTCCCGGTCGAAACCCTCAGCAGCCGCGAGAGGGCAGTGCTGCAACTGATCGCCCAGGGATGTTCCAATCAGGAAATCAGCGAGCAGTTGTTCATCTCGCTGCACACGGTAAAAACCCATGCCAGCCACATCAACAGCAAACTCGGCGTCGAACGCCGCACCCAGGCCGTGGCGCGGGCGAAGGCCTTGGGGTTGTTGGGCTGAMTDLSSPADSARAAIAVQDGRFYRPPLPDGHVPRPRLCERLSAGLGGRLLLVSAPAGFGKSSLAVEFCQSLPAHWRSLWLGLSARDNDPGRFLERLLEGLQAFYAQLGGRALGLLKMRQRHQPFAFEEWLDGLLDELSSHLSSRAPLLLVLDDYHLAQSPVLDRCLQFFLNHLPEGLLVLVTSRQRPDWHLARLRLSRQLLELNEQDLRLTHDEALTLLQHHSSSLRGEALESLIQRSEGWVAGLRFWLLAASEAGSEGRLPQALHGGEGLIRDYLLEEVIDCLPPEVQAFLYDTAPQERFCSELCDAVRDAHDSHEILQYLAAHQVFLVPLDEHGHWYRYHHLFSDLLRSRPSAPAMVPAATLHLRACRWFNAQGLIDEAVEQALRAGHLDVAANLVQNLSEEQLLAEQNVGMLLRWKMDLPDSLLISTPRLIVLYSWALGLASQLDAAEELAAHLSRFLPAPSATAQKSMLAQWLALSGIVARGRGDREATLRYCTEALESLPQKRYGQRLMCLSTLSNLAIADGDLWRARALNRDSLELAQRVGNPLFEALAHYDRARVLQARGEILRALDEVKQGLQRLHGLSPQRLYAVRARLVLYEGFLLTLRMQSQAGLTRLQAGLTEARACRDISVLIGHCVIARVEGYNGEFARAFAELAEAERLMHIWDVPPVYYLAMITLVKCELWLAQGRTELAEAWLARLGQTYTGERAAAPPEFHPQLPLHVELQQALLESIKGQPMQAEGRLDALLEHAQQTGRQMLSVMVLNQKVALLLRLGREPEARSTLAQAFDAAIGGVLQPFEWLLREHREWLREQLLHAPPSDVRQHLLECLPSTATPAIEPSVPVETLSSRERAVLQLIAQGCSNQEISEQLFISLHTVKTHASHINSKLGVERRTQAVARAKALGLLGPGPT0018616_495DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_COMPLEX_SUGAR_UTILIZATIONPLANT_DERIVED_MALTOSE_DEGRADATION,PGPT0018616-malT-K03556NANA
D1-35_04352501ogtCOG0350Methylated-DNA--protein-cysteine methyltransferaseATGCCGCCCCTGTACCAAACCATCCAATCCCCCGTAGGCGAGTTGATCCTTGTCGCCCGCGGCACGAAGCTGGCGGCCATCCTGTGGGAGAACGAGCGGCTCAATCGGGTGCGCCTGGGACCGTTGGAGCAGGACAGTGATCATCCGACCCTCAAGGAAACCGAGCGTCAACTGCTGGAATATTTTTCTGGCCAACGCCGCCGTTTCGAGCTTGAACTGGATTTTGTCGGCACCGATTTTCAAGTGCGGGTCTGGCAGGCTCTGCTGACTATCCCGTTCGGCGAAACCCGCAGCTATCGCGACATAGCCATCCAGATCGGCCAACCGACCGCGACGCGCGCGGTCGGCGCCGCCAACGGACGCAACCCGATCTCGATCATCGCGCCCTGCCATCGGGTCATCGGCACCTCCGGCAGCCTCACCGGTTTCGCCGGCGGCCTTGCCGCCAAACAGTTCCTGCTGAGCCTCGAAGGCCAACAGAGCCTGCAACTGGCGTTCTGAMPPLYQTIQSPVGELILVARGTKLAAILWENERLNRVRLGPLEQDSDHPTLKETERQLLEYFSGQRRRFELELDFVGTDFQVRVWQALLTIPFGETRSYRDIAIQIGQPTATRAVGAANGRNPISIIAPCHRVIGTSGSLTGFAGGLAAKQFLLSLEGQQSLQLAFNANANANANA
D1-35_043531908hypothetical proteinATGTTGCCGGCCCCTTCCGATACCCCGATCCCCCTCCCCCCCGTCCTTGTCGGCCCGCTCTTGCGACGACTGGAGCCGACGCGGCTGGTGATGTGGCTGGTGGGGACGCGAGCGTTGGCGTTGACGCTGAGTATCGACGGCGTCGGCGACCTGGCGCTGGATGCGTCGCGCTGCACCGTGGTGCCGGTGGGGCAACGAGCGTTTGTGCATTTGATTGATGTGACACTCGATACGCCCTTGCCCCAGGACGTGGCGATTGACTACGACCTGCTGGTGGACGGCGTCCCCATTGCCGAATGGGCGCCGTATCTGTTGTACGGCGACGCAAAGCGTCCGAACTTCATGCTGCATTCGCGCATAGAACAGCTGGTCCACGGCTCTTGTCGTAAACCCCATTTCCCGGCCAATGATGGTCTGCTCTGTGTCGACCGCTTGTTGGCGGAGTCTGCGGAGCAGCGTCCGGCATTGCTGATGATGAGCGGCGACCAGGTGTACGCCGACGATGTCGCCGGGCCGATGTTGCGGGCGATTCATGCCCTGATCGAGCGCCTGGGCCTGTTCGAGGAGTGTCTGGAAGGTGCGGTGGTGGAGGACAGCGCCAGACTCTACCAACACCCGGCCAGTTACTATCACCGCGCGGATCTGTTACCGGCGCTTGAGAGCAACGAAACCCTGCGCGAACGTTTTTTCGGCGGGGCGCGCAAGCCGATCTTCACCAGCAGCAGCGCCGACAACCATCTGGTGACCTTCGCCGAGGTCATGGCGATGTATCTGCTGGTGTGGTCGCCCGTACCGTGGACCCTGATCGATCCGCAACCGCCTGAATTGACCGCCGAACGGCGCCAGCGCTACGACCTCGAACAACAGCGCATCGAGGCATTCAAGACCGGGCTGGATGGCGTGGCACGGGTGTTCGCCCATCTGTCGTGCCTGATGATTTTCGATGATCACGACATCACCGATGACTGGAACCTGTCCGCGCAATGGGAGGAAACGGCCTACGGCCATCCCTTCTCCAAACGCATCATTGGCAACGCGTTGATCGCCTATCTGCTCTGCCAGGGCTGGGGCAACAACCCGGATGCCTTTGGTGAAGTGATCGAGCAGACCGTGGCCTTGAGCGACACCGCCCGGGACCGCTACATCGACAGCGGGCCCCAGGATGCGTTGATCGACACCCTGCTCGGTTTCCAGCAATGGCACTACGTGTTGCCGAGCACGCCGGCGCTGGTGGTGCTCGACACCCGCACCCGCCGCTGGCGCAGCGAGAATAGCCTCAAGCAGCCGTCGGGCCTGCTGGACTGGGAAGCCCTGAGCGAACTGCAGCAGGAACTGCTGGACCATCCCTCGGCGATCATCGTCTCGCCGGCGCCGATCTTTGGCGTCAAGCTGATCGAGACCGTGCAGCGGCTGTTCAGCTGGTGCGGCTACCCGCTGTTGGTGGATGCGGAGAACTGGATGGCCCACCGTGGCGCGGCCCAGGTGATCCTGAATATTTTCCGCCACTCGCGCACGCCGGGAAGCTACGTGGTGTTGTCCGGCGATGTGCATTATTCCTTCGTCTACGAGGTGCTGATCCCACACCGCAAGGGCGGCCCACGTGTCTGGCAGATCACCAGCAGCGGTATCAAGAACGAGTTCCCGCCGGCGCTGCTGGAATGGTTCGATCGGCTGAACCGCTGGCTCTATTCTCCACGCTCGCCCTTGAACTGGTTCACCAAGCGCCGCAGCATGCGCATCGTCCCCCATGTCCCGGAACATGCCGAAGCCGGGGAACGGCTGTGGAACTCGGCGGGGATCGGCCAGGTGTTTTTCAACGAACAGGGGCAACCGGCGCAGATCTATCAGCACAACGCCAACGGCAAGCCGCCCACGCGCATGCTGGCGCCGAAGTCGCCCTTGAGCTGAMLPAPSDTPIPLPPVLVGPLLRRLEPTRLVMWLVGTRALALTLSIDGVGDLALDASRCTVVPVGQRAFVHLIDVTLDTPLPQDVAIDYDLLVDGVPIAEWAPYLLYGDAKRPNFMLHSRIEQLVHGSCRKPHFPANDGLLCVDRLLAESAEQRPALLMMSGDQVYADDVAGPMLRAIHALIERLGLFEECLEGAVVEDSARLYQHPASYYHRADLLPALESNETLRERFFGGARKPIFTSSSADNHLVTFAEVMAMYLLVWSPVPWTLIDPQPPELTAERRQRYDLEQQRIEAFKTGLDGVARVFAHLSCLMIFDDHDITDDWNLSAQWEETAYGHPFSKRIIGNALIAYLLCQGWGNNPDAFGEVIEQTVALSDTARDRYIDSGPQDALIDTLLGFQQWHYVLPSTPALVVLDTRTRRWRSENSLKQPSGLLDWEALSELQQELLDHPSAIIVSPAPIFGVKLIETVQRLFSWCGYPLLVDAENWMAHRGAAQVILNIFRHSRTPGSYVVLSGDVHYSFVYEVLIPHRKGGPRVWQITSSGIKNEFPPALLEWFDRLNRWLYSPRSPLNWFTKRRSMRIVPHVPEHAEAGERLWNSAGIGQVFFNEQGQPAQIYQHNANGKPPTRMLAPKSPLSNANANANANA
D1-35_043541284dctM_2COG1593C4-dicarboxylate TRAP transporter large permease protein DctMATGACCATTGCCTTCCTGTTCATCGCGCTGTTCGTGCTGATGTTCATCGGCGTGCCTATCGCCATTTCCCTCGGGCTGGCCGGTTCGCTGACGATCATTTTCTTCAGCCCCGACTCCGTACGCTCCCTGGCAATCAAGCTGTTCGAGACATCCGAACACTACACCCTACTGGCGATTCCGTTCTTCCTGCTGGCCGGTGCGTTCATGACCACGGGTGGCGTGGCGCGACGGTTGATCGACTTTGCCAACGCCTGCGTCGGACACATCCGCGGTGGCCTGGCGATTGCGGCAGTGCTGGCGTGCATGCTGTTTGCCGCACTGTCCGGTTCCAGTCCCGCGACGGTGGCAGCGGTGGGTTCGATTGCCATCGCCGGCATGGTGCGCTCAGGTTATCCCCAGGCGTTTGGTGCCGGTATCGTCTGCAACGCCGGGACCCTGGGCATCCTGATTCCGCCGTCGATCGTCATGGTGGTCTATGCCGCCGCGACCGAAACCTCGGTAGGCAAACTGTTCATGGCCGGTGTGATACCAGGCCTGTTGCTCGGCACAGCGTTGATGGTGGCGATCTACATCGTCGCCGTGAAGAAAAACCTGCCGGCAATGCCCCGAGCCACGTTTCGCGAATGGCTGACCACGGCCCGCAAAGCCATTTGGGGCTTGCTGCTGATGGTCATCATCCTCGGCGGGATCTATTCCGGGATGTTCACCCCGACAGAAGCAGCGGCGGTGGCGGCAGTGTATTCGGCGTTTATCGCGTTGTTCGTCTACAAGGACCTGACGTTCCGCGAAACCCCCAAGGTGCTGCTGGAGTCGGCCAAGCTGAGCATCATGCTGATGTTCATCATCGCCAACGCCATGCTCTTCGCCCACGTGCTGACCACCGAGCAACTGCCGCAGCAGATCACTGCGTGGGTGATCGAGGCCGGGCTGACGCCAGTAACCTTCCTGCTGGTGGTCAACATCGTGCTGCTGATTGCCGGTGCGTTCATGGAACCGTCGGCGATCATCCTGATTCTGGCGCCGATCCTGTTCCCTATCGCCATGAAGCTGGGCATCGACCCGATCCACTTGGGCATCATCATGGTGGTGAACCTGGAGATCGGCCTGATCACGCCGCCGGTGGGCTTGAATCTGTTCGTCACCTCGGCGGTGACCGGCATGTCGCTGACGGCGACCATCCGCGCGGCCATGCCGTGGCTGATGATTCTGCTGGCGTTCCTGGTGCTGATTACCTATGTACCGTGGATCTCGCTCGCGCTGCCTAACTGGTTGGGGATGAGCTGAMTIAFLFIALFVLMFIGVPIAISLGLAGSLTIIFFSPDSVRSLAIKLFETSEHYTLLAIPFFLLAGAFMTTGGVARRLIDFANACVGHIRGGLAIAAVLACMLFAALSGSSPATVAAVGSIAIAGMVRSGYPQAFGAGIVCNAGTLGILIPPSIVMVVYAAATETSVGKLFMAGVIPGLLLGTALMVAIYIVAVKKNLPAMPRATFREWLTTARKAIWGLLLMVIILGGIYSGMFTPTEAAAVAAVYSAFIALFVYKDLTFRETPKVLLESAKLSIMLMFIIANAMLFAHVLTTEQLPQQITAWVIEAGLTPVTFLLVVNIVLLIAGAFMEPSAIILILAPILFPIAMKLGIDPIHLGIIMVVNLEIGLITPPVGLNLFVTSAVTGMSLTATIRAAMPWLMILLAFLVLITYVPWISLALPNWLGMSPGPT0017335_2313DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017335-dctM-K11690NANA
D1-35_04355633dctQCOG3090C4-dicarboxylate TRAP transporter small permease protein DctQATGAACGCCCTTCGGCGCACCTGGGAACATTTCGAGGAAGGTTTCATTGCCTTCCTTCTGGCCGCCATGACGTTGGTCACTTTCGTCTACGTGGTCCTCAACAACCTTTATGCAGTGTTCTACAGCCTTGGCGACAACTGGCCAGCCGCCAGCGAACCGATGTTCGCCATTGGCGACGGCATCATGGGCATGGCCCAGGCCATGACCTGGAGCAGTGCGCTGACCAAGGCGCTGTTTGGCTGGCTGATTTTCTTTGGCCTGTCGTATGGCGTGCGCACGGCCGGCCACATCGGCGTCGACGCGTTGGTGAAACTGGCGAGCAAACCGCTGCAGCGCATTATCGGCGTGATCGCCTGCCTGTGCTGCCTGGCCTACGCCGGGTTGCTGGCCGTGGCGAGTTACGAATGGATCAATACCTTGATGATTGCCCAGATCGGCGCGGAAGACCTCGGCCATTTCGGCATCATGCAATGGCACGTAGGGCTGATCGTGCCGGTAGGATTCGCCCTGGTGTTTATCCGTTTCGCGGAAATCCTGGTGCGCATCCTGATGAACCGTCAGACGGGCCTGGGTCTTGCCGATGAAGCGGCCGAAGCGATCAAACTGACCGAGATCGAGGAAGACAAGCCATGAMNALRRTWEHFEEGFIAFLLAAMTLVTFVYVVLNNLYAVFYSLGDNWPAASEPMFAIGDGIMGMAQAMTWSSALTKALFGWLIFFGLSYGVRTAGHIGVDALVKLASKPLQRIIGVIACLCCLAYAGLLAVASYEWINTLMIAQIGAEDLGHFGIMQWHVGLIVPVGFALVFIRFAEILVRILMNRQTGLGLADEAAEAIKLTEIEEDKPPGPT0017330_272DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017330-dctQ-K11689NANA
D1-35_04356996dctP_1COG1638C4-dicarboxylate-binding periplasmic protein DctPATGTTTAAACCTATGTGGAAAGCACTCGTCTGCACACTGGCCCTCAGCGCGTTGAGCAGCGCCATGGCGGCCGATCCGGTGGTTATCAAGTTCTCGCACGTGGTGGCCGAACAAACCCCCAAAGGCCAAGGCGCGTTGCTCTTCAAAAAGTTGGTGGAAGAGCGATTGCCGGGCAAGGTTAAGGTCGAGGTGTACCCCAACTCGTCGTTATTCGGCGATGGCAAGGAAATGGAAGCCCTGCTCCTGGGTGACGTGCAAATGATCGCGCCATCGCTCGCCAAGTTCGAGCAATACACCAAGACGGTGCAGTTGTTCGACCTGCCGTTCCTGTTTGATGACATCTCTGCCGTGGACCGTTTCCAACTGAGCCCTGAAGGTCAGAAACTGCTCAAGTCAATGGAAAGCAAGAACATCACCGGCCTGGCCTATTGGCACAACGGCATGAAGCAACTCTCTGCCAACAAACCACTGCGCGAACCCAAGGATGCCCGTGGCTTGAAGTTCCGCGTGCAGGCGTCTGCCGTGCTCGAAGAACAGTTCAAGGCCGTCAATGCCAACCCGCGCAAGATGAGTTTCGCCGAGGTGTACCAAGGCCTGCAGACCGGCGTGGTCAACGGTGCGGAAAACCCCTACTCGAACATCTACAGCCAGAAAATGCATGAAGTGCAGAAGTACATCACCGAGTCCAACCATGGCTTGCTCGACTACATGCTGATCACCAACACCAAGTTCTGGAATGGCCTGCAGCCGGACGTACGCAGCGAACTGGACAAGATCCTTGTGGAAGTCACCGCCCATGTGAACAAGGAAGCGGCGCAACTGAACCAGAACGACAAGCAGCGCATCCTCGACGCCAAGACCACCGAGATCATTACCCTCACGCCTGAAGAACGCAACGCATGGCGCGACAAGATGAAACCGGTCTGGAAGAAGTTCGAAGGTGACATCGGCGCTGACCTGATCCAAGCCGCCGAAGCCTCCAACAAGGCTCAGTAAMFKPMWKALVCTLALSALSSAMAADPVVIKFSHVVAEQTPKGQGALLFKKLVEERLPGKVKVEVYPNSSLFGDGKEMEALLLGDVQMIAPSLAKFEQYTKTVQLFDLPFLFDDISAVDRFQLSPEGQKLLKSMESKNITGLAYWHNGMKQLSANKPLREPKDARGLKFRVQASAVLEEQFKAVNANPRKMSFAEVYQGLQTGVVNGAENPYSNIYSQKMHEVQKYITESNHGLLDYMLITNTKFWNGLQPDVRSELDKILVEVTAHVNKEAAQLNQNDKQRILDAKTTEIITLTPEERNAWRDKMKPVWKKFEGDIGADLIQAAEASNKAQPGPT0017325_698DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017325-dctP-K11688NANA
D1-35_04357996dctP_2COG1638C4-dicarboxylate-binding periplasmic protein DctPATGCTCGAACCTTTATGGAAAGCGCTCATCTGCACTCTGGTTTTCAGCGCACTGGGCAGCGCCTACGCAGCCGACCCCCTCGTGATCAGGTTTTCCCATGTGGTGGGCGAACAGACGCCCAAGGGCCAGGGCGCCCTGATGTTCAAGAAGCTGGTGGAGGAGCGGTTGCCGGGCAAGGTAACTGTGGAGGTGTATCCCAACTCCACACTGTATGGCGACGACAAGGAAATGGAAGCGTTGCTGCTGGGAGACGTGCAGATCATCGCGCGGTCACTGGCCAAGTTCGAGCAGTACACCCGCAAGGTGCAGTTGTTCGACTTGCCGTTCCTGTTCGATGACATTGCCGCGGTGGACCGTTTCCAACAGAGCCCCGAGGGCCAGCAACTGCTCAAGTCCATGGAGAGCAAGAACATCACCGGCCTGGCCTATTGGCACAACGGCATGAAGCAGCTTTCGGCGAACAAACCCCTGCGCACGCCCGAAGATGCGCGCGGCCTGGTCTTCCGTGTGCAAACTTCCGCGGTGCTGGAGGAGCAGTTCAAGGCGGTGAGTGCCAAAGGCCAACCGATGATTTTCTCGGTGGTGTATCAGGGCTTGCGTACGGGCCTGGTCAACGGCACGGAAAATACCTATTCAAATTTTTACAACCAGAAACTGCATGAGGTACAGAAATACGTTACCGAGTCCAACCACGGCATCCTCGACTACATGCTGATCACCACATCGGATTTCTGGAACGGCCTGCCGCCGGATATCCGCGGTGAGCTGGAAAAGATCGTGGTCGAATCCACCGCTCATGCCAACAAGGAAGCGGAGCGATTCAACCAGCAGGACAAACAGCACGTCCTGGACGCCAAGACCACCGAGATCATGACCCTCACGCCGCAAGAGCGAGATGCCTGGCGAGAGAAAATGAAACCGGTATGGGCGAAGTTCGAAAAGGATATCGGCCCGGAGCTGATCAAAGCCGCCGAAGCGTCCAACAAGACGCAGTAAMLEPLWKALICTLVFSALGSAYAADPLVIRFSHVVGEQTPKGQGALMFKKLVEERLPGKVTVEVYPNSTLYGDDKEMEALLLGDVQIIARSLAKFEQYTRKVQLFDLPFLFDDIAAVDRFQQSPEGQQLLKSMESKNITGLAYWHNGMKQLSANKPLRTPEDARGLVFRVQTSAVLEEQFKAVSAKGQPMIFSVVYQGLRTGLVNGTENTYSNFYNQKLHEVQKYVTESNHGILDYMLITTSDFWNGLPPDIRGELEKIVVESTAHANKEAERFNQQDKQHVLDAKTTEIMTLTPQERDAWREKMKPVWAKFEKDIGPELIKAAEASNKTQPGPT0017325_728DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017325-dctP-K11688NANA
D1-35_04358486hypothetical proteinATGCGGGCTGCCGGAAAGTTGCGGATCCTGGAGGAGAACCAGCCGCGCCTGTCAGGCTTGGCCTCCGGGATCACTGGACAGGACGTTTCAAAAAACTCAACAAGGGACTCAACGATGATCGATTTCAACAACAAAGGCTTCTTCAAGCTCAAGCAAAACAATGAATACGCCGAACGCGTCTCGGATCTGTTGCTGGACGGTGAACAGGTGATCGACGCCTACAAGTCGATGCGTGATGGCGTGGTGTTCACCAACAAACGCATCATCGCGGTAAACGTGCAGGGCATTACCGGCAGCAAGAAGGATTTCACCTCGCTGCCCTACAAGAATATCGTTGCGTACTCGGTGGAAACCTCCGGCACCTTCGACCTGGATTCCGAACTGGAGATTTATTTTTCGTCCCTGGGCAAGGTGAAGTTTGAGTTCTCCGGCAAGACCGGCATCGTCGAAATCTCCAAGGTCATTTCCAGGCACCTTTTGGTCTGAMRAAGKLRILEENQPRLSGLASGITGQDVSKNSTRDSTMIDFNNKGFFKLKQNNEYAERVSDLLLDGEQVIDAYKSMRDGVVFTNKRIIAVNVQGITGSKKDFTSLPYKNIVAYSVETSGTFDLDSELEIYFSSLGKVKFEFSGKTGIVEISKVISRHLLVNANANANANA
D1-35_04359417hypothetical proteinATGAAAAATTTCACCATCGAGCGCATCGACCACGTCGTACTGCGCGTGACGAACATCGAGCGCAGCCTGACCTTCTACACCTCGGTGCTCGGTTGCGAACTGAAGAAGCGGCGGGACGATCTGGGATTGGTCCACCTCGGCGCCGGGGCGTCGATGATCGATCTGGTGGATGTCGAAGGACCGCTCGGCCGTCAGGGTGGCGCGGCGTCGGGCAGGCAGGGGCACAACGTCGATCACTTCTGCCTGCGCGTCGAACCGTTTGACGAACAAGCCCTGCTCGCTCATCTGGGCGCTGCCGGGCTGGAGGTCGAGAAGGCACAGATGCGCTATGGCGCGGAGGGGCAAGGCTGGTCAATCTATTGCTTCGACCCGGATGGCAACCAGATCGAGTTGAAGGGACCGGCGCTGGAGCCTTGAMKNFTIERIDHVVLRVTNIERSLTFYTSVLGCELKKRRDDLGLVHLGAGASMIDLVDVEGPLGRQGGAASGRQGHNVDHFCLRVEPFDEQALLAHLGAAGLEVEKAQMRYGAEGQGWSIYCFDPDGNQIELKGPALEPNANANANANA
D1-35_043601155gciCOG4948D-galactarolactone cycloisomeraseATGAGAATCACAGGCGTTCACGTCGAAATCTTTTCCACCCCGTCGCGTCGCGCCCAGGACAGCGCCGGTCACGCCCATCCAGGCGACGAAGTCATGATCAAGATGGCCCTGCTGCGCATCAGCTGCGACGATGGCTCGGAGGGTTACGCCTTCGGTACGCCCGAGTTGATTCGTCCACACATCATCGAATCGTTCGTGCGCAAGGTGCTGATCGGCCGCGACCCGATGGACCGTGAGAGCATCTGGCAGGACCTGGCGCACTGGCAGCGCGGCAGCGCCGGCCAGTTCACCGACCGCGCGCTGGCGCTGGTTGAGCAAGCCTTGTGGGATCTGGCCGGGCGCAAGCTGAAGTTGCCGGTGCACAAGCTCATCGGCGGTTACCGTGACAAAGTCCTGGCCTACGGCTCGACCATGTGCGGCGATGATTTGCCGGGCGGTCTGTCGACGCCGGATGAGTACGGCCAGTTCGCCGAAAAGCTCGTCAAGCGCGGCTACAAGGCAATCAAGCTGCACACCTGGATGCCGCCGATTTCCTTCGCGCCGAATCCGCAAATGGACATCCAGGCCTGCGCGGCAGTGCGCGAGGCGGTCGGTCCGGACATCGCCCTGATGCTCGATGGCTACCACTGGTACAGCCGTATGGATGCGCTGACCATTGGCAAGGCCCTGGAAAAACTCAATTTCGCCTGGTTCGAAGAACCGATGATGGAAGACTCCGCCGAGTCATACGCCTGGCTGGCCGCCAATCTGGACATCCCGGTGCTGGGCCCGGAAAGCATTGCCGGAAAATTCCACAGCCGCGCCAGTTGGGTGACGCAGAAGTCCTGTGACATCCTGCGCGCCGGCGTGGCTGGCGTCGGCGGTATCGGCCCTTGCCTCAAAGTGGCGCACCTGGCCGAGTCGTTCGGCATGGATTGCGAGGTCCACGGCAACGGCGCGGCGAACCTGGCGGTGGTGGGCGCGATCAGCAACTGCCGGTGGTACGAGCGCGGCCTGCTGCACCCGTTCCTCGATTACGAGGAAGTGCCGGCGCACCTCAACAGTATTATCGACCCGATGGATGCCGACGGTTACGTGCATCTGTCTGATCGGCCGGGGTTGGGCGAGGACATCAACTTCGCGTATATCGAAGCCAACACCTTGTCTCGACACTGAMRITGVHVEIFSTPSRRAQDSAGHAHPGDEVMIKMALLRISCDDGSEGYAFGTPELIRPHIIESFVRKVLIGRDPMDRESIWQDLAHWQRGSAGQFTDRALALVEQALWDLAGRKLKLPVHKLIGGYRDKVLAYGSTMCGDDLPGGLSTPDEYGQFAEKLVKRGYKAIKLHTWMPPISFAPNPQMDIQACAAVREAVGPDIALMLDGYHWYSRMDALTIGKALEKLNFAWFEEPMMEDSAESYAWLAANLDIPVLGPESIAGKFHSRASWVTQKSCDILRAGVAGVGGIGPCLKVAHLAESFGMDCEVHGNGAANLAVVGAISNCRWYERGLLHPFLDYEEVPAHLNSIIDPMDADGYVHLSDRPGLGEDINFAYIEANTLSRHNANANANANA
D1-35_043611623ddpACOG0747putative D,D-dipeptide-binding periplasmic protein DdpAATGAAACTCTGGCCCAAGCGCCTGACCAGGCTGCTGTGTGTCATCGTGGCCCTGTGCGCAGTGCAGGTGCCCGTCAGCCTGGCCCAAGGCGAAACGCCCGCCGACCAATTGGTGGTGGGCATGAGCATGATCAACCTGCTGTCGCTGGACCCGGCGGCCGCGACCGGCCTGGAAGTTGCCGAGGTCAACGCCAATGTCTACGACATGCTCCTGGAGCAGGACGCGGCGCAGCCGGACACGCTGGTGCCGGCCCTGGCGAAAAGCTGGGAAGTCAGCCCGGACCGCATGCGTCTCACCTTCCAGTTGCGTGACGACGTCCGTTTTCACTCCGGTGCGCCGCTTACTGCGCAAGATGTCGCCTGGTCCTTGCAACGTGTGGTCACCCTCAACCGCGCCCTGGCGTCCACCTGGAAAGCCTACGGTTTCAGCGCCGACAACGTCGCCCGGCTGATGCGCGCCGAAGGGCCCCACACCTTCGTCATGGAGCTGCCACGCGTCACCGACCCGCTGTTGGTGCTCAACACCCTGGCCACCTCGCCGAGTGCGTTCATCATCGACCGCTCGGTGGCCTTGCAGCATCAGGTCGGTGACGACCAGGGCGCGGCCTGGCTGGCGACGCACACCGCCGGGTCCGGTGCGTTCAAGCTGGATATCTGGCGCGCCAACGACGTGATCCTGATGAGCCGCAACGAGGACTACTGGCGCGGCGCGCCGAAGTTGCGCCGGGTGATCATGCGCAACATGACCGAGTCCCAGGCCCTGCGCCTGATGGTCGAGCGCGGTGACCTGGATGTCGCCCGCGGCATGGCGGCGACCGACATCAAGGCGCTGGGCAAGGTGGATGCGGTGCGCATCCAGAGCATCGCCCGCGGCACGCTGTACTACGTGGCGATGAGCATGCAGCAGCCGCTGTTCCAAGACATCCGGGTGCGCCAGGCGATCCGTCTGCTGATCGACTACCAAGGCATCAACGACGTGGTGATGCCGCACTACGGCGTGATCAACCAGCGCCCGATGCAGCTGGGCTTGCCGGCACGCCTGGACGATCCGGGTTATCGCCTGGACGTGGCCGAGGCTCGCCGCCTGCTGGCAGAAGCCGGTCACGCCGAGGGCTTCAAGGTGAGCATCCGTTCGCTGACCGACCCGCCCTTCATCAACATCGCCACCAGCCTGCAAGCGACGCTGGCCCAGGCGGGCATCCAGGCGACGATCATCACCGGCACCGGCAACCAGATCTACGGGGCGATGCGCGACCGCCAGTTCGACATCCTCGTGGGGCGTGGCGGTGGTGGGGCGGAGCGCCATCCGCATTCGAGCCTGCGGGCCCTGGTGTACAACCCGGACAACCGCAGCGAAGCCAAATTGAGCAACTTCCAGGGCTGGCGCACCTCGTTCTTCAACCCGCAGCTCAATCAGTTGATCGAACAGGCCGAGCGCGAGCGCGACCCCGAACGGCAGCGGCAGATGTATGCCCAGATCCAGACCCTCTACGACCAACAGGCCGGGGCAATCATGCCGGTCTCGCAAATGGTGGACGAGGTGGTGATTCACGCCGACGTACGCAACTACATCGGCCACACCGCCGCCACCACGCGTCTTCGCGACGTCTACAAGCAGCGCTGAMKLWPKRLTRLLCVIVALCAVQVPVSLAQGETPADQLVVGMSMINLLSLDPAAATGLEVAEVNANVYDMLLEQDAAQPDTLVPALAKSWEVSPDRMRLTFQLRDDVRFHSGAPLTAQDVAWSLQRVVTLNRALASTWKAYGFSADNVARLMRAEGPHTFVMELPRVTDPLLVLNTLATSPSAFIIDRSVALQHQVGDDQGAAWLATHTAGSGAFKLDIWRANDVILMSRNEDYWRGAPKLRRVIMRNMTESQALRLMVERGDLDVARGMAATDIKALGKVDAVRIQSIARGTLYYVAMSMQQPLFQDIRVRQAIRLLIDYQGINDVVMPHYGVINQRPMQLGLPARLDDPGYRLDVAEARRLLAEAGHAEGFKVSIRSLTDPPFINIATSLQATLAQAGIQATIITGTGNQIYGAMRDRQFDILVGRGGGGAERHPHSSLRALVYNPDNRSEAKLSNFQGWRTSFFNPQLNQLIEQAERERDPERQRQMYAQIQTLYDQQAGAIMPVSQMVDEVVIHADVRNYIGHTAATTRLRDVYKQRPGPT0004430_8153DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004430-ddpA|ABC_PE_S-K02035NANA
D1-35_043621038dppB_2COG0601Dipeptide transport system permease protein DppBATGTCGACTGCATCCTTTTCAATCTGGACAACCCGGGCCGCTTCGGCGACCCGGCGCGGCGGTTCGGTGGCGGTGACGCTGCTGGGGTTGCTGCTGCTGACCTTTTTTATCGGCCGGGTGATGCCGCTGGACCCGGTGCTGGCAATCGTTGGCCCGGACGCCGACGCCTCGGCCTACGCCCAGGTCTATCAGGAGCTGGGCCTGGACAAACCACTGTGGAGCCAGTTCGCGATTTACCTCGGCGACCTGCTCCACGGCGACTTCGGCATGGCCTTGCTGACCGGAAACCCGGTCATCAGCGACATCGCCCGGGTGTTTCCGGCCACCTTGGAACTGGCGACCCTGGCCATTCTGTTCGGCGTGCTGGCGGGCCTGCCGCTGGGTGTCTACGCGGCGACTCATCAGGGCCGCGCCGGTGACCACGTCGCGCGGTTGATCACGCTGTTCGGCTATTCCACGCCAATCTTCTGGATCGGCATGATGGCCTTCCTGGTGTTCTACGCCTGGTTGGGCTGGGCCGGTGGCGTCGGGCGAATCGGCCTGGCCTACGACGGGCTGATTCCGACGCACACCGGGCTGCTGTTGATCGACACCGCCTGGTCCGGCGATTGGGAAGCCTTTCGCAGTGCGCTGCGGCACATCCTGCTGCCGGCGGTGATCCTCAGTTTCAACTCGGTCGCCTACATCAGCCGCATGACTCGCAGCTTCATGCTCGAGCAACTGTCCCAGGAGTACATCATCACTGCCCGGGTCAAGGGTCTGTCCCAACGCAAGATTGTCTGGGGTCACGCCTTCGGCAACATCCGCGTGCAGCTGTTGACCATCGTCGCGCTGGCCTACGGCGGGCTGCTGGAGGGCGCGGTGCTGATCGAAACCGTGTTCGCCTGGCCGGGTTTCGGCCAGTACCTGACCAGCAGTCTGTTGCTCGGCGACATGAACGCAGTGATGGCCTGCGTGCTGCTGATCGGCCTCATCTTCGTGACGCTGAACCTGATCAGCGATGCGCTGTACAAGCTCTTCGACCCGAGGACTCGCTAAMSTASFSIWTTRAASATRRGGSVAVTLLGLLLLTFFIGRVMPLDPVLAIVGPDADASAYAQVYQELGLDKPLWSQFAIYLGDLLHGDFGMALLTGNPVISDIARVFPATLELATLAILFGVLAGLPLGVYAATHQGRAGDHVARLITLFGYSTPIFWIGMMAFLVFYAWLGWAGGVGRIGLAYDGLIPTHTGLLLIDTAWSGDWEAFRSALRHILLPAVILSFNSVAYISRMTRSFMLEQLSQEYIITARVKGLSQRKIVWGHAFGNIRVQLLTIVALAYGGLLEGAVLIETVFAWPGFGQYLTSSLLLGDMNAVMACVLLIGLIFVTLNLISDALYKLFDPRTRPGPT0004445_1927DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004445-ddpB|appB-K02033NANA
D1-35_04363909ddpC_1COG1173putative D,D-dipeptide transport system permease protein DdpCATGAGTCTGCCCCTTGCTTCGAGCGCAGCCGGCGATACCACGCTGCCCGCTTCGAGTACGGCAGCGCTGGTCGCCAGCGCCGCCCGGCTGCTGCGCTTTCTGCTGCGCAACCCGATGACGTTCGCCGGCCTGGTTGTCGTCGCGACCTTGATGGTGGTCGCGGCGTTCGCGCCATGGATCGCCGGTCACGACCCGTTGCTGCAGAACCTCGCCGGTGCGTTGCAAGCGCCCAGCAGCGCGCACTGGTTCGGCACCGATGAATACGGTCGCGATGTGTTCGCCCGGTTGGTGTACGGCTCGCGCATCACCTTGTACATCGTCTTGCTGGTGACGGTGATTGTCGGTCCCATTGGCCTGTTGGTCGGGACCATCTCCGGTTACTTCGGCGGCTGGGTCGACAGCCTGTTCATGCGCATCACCGACATCTTCATCTCGTTTCCGAGCCTGGTGCTGGCGCTGGCCTTCATCGCGGCGCTTGGCCCGGGCCTGGAGCACGCGGTGATTGCCATCGCGCTGACGGCCTGGCCGCCGATCGCCCGATTGGCTCGCGCAGAAACCCTGCCGCTGCGCAACGTCGACTTTGTCGTCGCGGTGCAGCTCCAAGGCGCGTCGAGTGCCCGGATCATCCTGCGTCATATCATCCCGATGTGCCTGTCGTCGGTGATCATCCGCCTGACCATGAACATGGCAAGCATCATCCTCACCGCCGCCGCCCTGGGCTTTCTCGGCCTCGGCGCCCAGGCACCGCTGCCGGAGTGGGGCGCGATGATCTCCACCGGCCGGCGCTACATGCTCGAAAGCTGGTGGCTGGTGGCGGCGCCGGGTGCGGCGATCATGCTGGTCAGCCTGGCCTTCAACCTGTTGGGCGACGGCTTGCGCGACGTCCTCGACCCCCGCAGCCAATCCTGAMSLPLASSAAGDTTLPASSTAALVASAARLLRFLLRNPMTFAGLVVVATLMVVAAFAPWIAGHDPLLQNLAGALQAPSSAHWFGTDEYGRDVFARLVYGSRITLYIVLLVTVIVGPIGLLVGTISGYFGGWVDSLFMRITDIFISFPSLVLALAFIAALGPGLEHAVIAIALTAWPPIARLARAETLPLRNVDFVVAVQLQGASSARIILRHIIPMCLSSVIIRLTMNMASIILTAAALGFLGLGAQAPLPEWGAMISTGRRYMLESWWLVAAPGAAIMLVSLAFNLLGDGLRDVLDPRSQSPGPT0004450_6791DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004450-ddpC|appC-K02034NANA
D1-35_04364840oppD_2COG0444Oligopeptide transport ATP-binding protein OppDATGACTGAGATAAAACTGGCCGTGCAGGATTTGTGCGTGGAGTTTCGCAACGCCGGCAAAACCTCCCTGGCGGTGCGTGATGTGTCGTTCACCCTGGGGCGGGAAAAACTCGCCATCGTCGGTGAATCCGGCTCGGGCAAATCCACCGTCGGCCGCAGCCTGTTGCGCTTGCATCCGCCGACGGCGCGGGTCACCGCCAAGACCCTGCGTTTTGCCGACATCGATTTGCTGAAGGCCAGCGAAAAGCAGATCCAGGCGATTCGTGGCGCGCGCATGTCGATGATCATGCAGGATCCGAAATACTCGTTGAACCCGGTGGTGCGAGTCGGCGAGCAAATCGCCGAAGCCTATCTCGCCCATCACAAGGTGCCCCATCGCGAAGCCCGCGAGCGGGCGCTGGACATGCTCGGCAAGGTGCACATCCGTGATCCTCGAAGGGTCTATGACCTGTACCCCCATGAAGTCTCGGGTGGCATGGGCCAGCGGATCATGATCGCCATGATGGTGATTACCGATCCTCAGGTGATCATCGCCGACGAGCCGACCTCGGCGCTGGACGTGTCGGTGCGCCGGCAGGTGCTCAACGTATTGGAGGAGTTGGTCAGCGAGCGTGACCTGGGACTGATCTTCATCAGCCATGACCTGAACCTGGTGCGGCATTTCTGTGATCGCGTGCTGGTGATGTATGCCGGCCGGGTGGTCGAGTCGATTGCCGCCGCTGACCTGGATAACGCCACCCATCCCTACACCCGAGGCCTGTTGGCCGCGTTGCCAAGCCTGGATCACCCGCGCGCCACGCTGCCGGTGCTGCAGCGCGACCCACGTTGGTTGAACGCTTGAMTEIKLAVQDLCVEFRNAGKTSLAVRDVSFTLGREKLAIVGESGSGKSTVGRSLLRLHPPTARVTAKTLRFADIDLLKASEKQIQAIRGARMSMIMQDPKYSLNPVVRVGEQIAEAYLAHHKVPHREARERALDMLGKVHIRDPRRVYDLYPHEVSGGMGQRIMIAMMVITDPQVIIADEPTSALDVSVRRQVLNVLEELVSERDLGLIFISHDLNLVRHFCDRVLVMYAGRVVESIAAADLDNATHPYTRGLLAALPSLDHPRATLPVLQRDPRWLNAPGPT0004435_13395DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031NANA
D1-35_04365768oppFCOG4608Oligopeptide transport ATP-binding protein OppFATGAACATGATCGAAATCGCCGGCCTGAACCTCAGTTTCGGCACCGGTGCGGCACTGAACGCGGTGTTGCACGACGTCGACCTGAGCGTTGGCGAAGGCGAGGCATTCGGCCTGGTGGGGGAGTCCGGTTCGGGCAAGACCACCGTGCTGCGTTGCCTGGCCGGACAGTACCAGCACTGGACGGGACGGTTGCAAATCGCCGGGAGGGCGGTGACGCGCAAGCTGCCGCTGGACCACTACCGCACCGTGCAGATGGTTTTCCAGGATCCCTACGCTTCATTGCATCCGCGCTACACCATCGACGCCGCGTTGCAGGAACCGCTGCGCATCCACGGCATCGACGGGCGCGGGCAAAAGGTCAGCGAGATCCTGCGCAAGGTCGGCTTGAACGACAGCTTCCGCTTTCGTTATCCGCATCAATTGTCCGGCGGCCAGCGCCAGCGCGTGGCGATTGCCCGGGCGCTGATCCTGCGGCCGCGGGTATTGCTGCTGGACGAGCCAACCTCGGCACTGGACGTCTCGGTGCAGGCGGAAATTCTCAATCTGCTGGCTGATCTGCGTCGTCAGGAAGGTCTGACCTACCTGATGGTGACCCACGACCTCGCCGTCGTTGCGCACTTGTGTGATCGGCTGGCGGTGATGCAACAGGGCCGGGTGGTGGAAACCCTCGACAGCCAGCTGCTGGCGAGCGATGGCGCCGCCCACGAGTACACCCGTTTGCTGGTGCAAGCCAGTCGCGACATACAGCGAATACCCATCGCCGTATGAMNMIEIAGLNLSFGTGAALNAVLHDVDLSVGEGEAFGLVGESGSGKTTVLRCLAGQYQHWTGRLQIAGRAVTRKLPLDHYRTVQMVFQDPYASLHPRYTIDAALQEPLRIHGIDGRGQKVSEILRKVGLNDSFRFRYPHQLSGGQRQRVAIARALILRPRVLLLDEPTSALDVSVQAEILNLLADLRRQEGLTYLMVTHDLAVVAHLCDRLAVMQQGRVVETLDSQLLASDGAAHEYTRLLVQASRDIQRIPIAVPGPT0004440_9363DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004440-ddpF-K02032NANA
D1-35_04366723kdgMOligogalacturonate-specific porin KdgMATGAAAAAGATATTCACCGTTTTGTCGATCGCTTCATTGTTCACTTCGTTTGTCGTTCAGGCCGATACCGGTTACATAAACGTTCGCCATCAATACGCCGAAAAGACCCGCATGCACGCCGACCGCGCCAAGTTCGGCATCAGGCTGGATAACGGTGTGGGCCTGGAAGGCGAACTCAAATACAAGACCGCCGGGGATCGGGAAGATGTCGCCTTCGACAACACTGTCGGCAGCGGCCATGAGTTCACCGTCAACTACCAGCACAAGATCGACGACCGCTGGACGCTGACGCCTTCGTTCGCCATGGAAAGCGACGAGGAGTCCACCACCTACAAGATGGGCTTGCGCCTGGGCTACAAGATCACCAAGGAACTGAGCATCGCCGGGCGTTACCGTTACGACGCCAGCAAACTGGACCGCGACAAGGTGGATCACGACGTGCCGGACAATGGCCAGGACGACCAGACGATCCATCGCTACGACGTCTACATCAACTATGCGAACCAGGGGCCGTGGGCCTATGAATACCAACTGACTTACTTCGATGCCGATTACATTCGTTACAACGGCGGTACTGACGACTATGAGCAGAATGCCGTGGTCAAGTACAAGTGGGATAAGCGTTGGGCACCGTTCTTTGAGGTCGGTGACATCAAGGTCAATTCGGTGGACAGCGATCGGCAGTTGCGCTTGCGGGTGGGTATTCAATACAACTTTTTCTGAMKKIFTVLSIASLFTSFVVQADTGYINVRHQYAEKTRMHADRAKFGIRLDNGVGLEGELKYKTAGDREDVAFDNTVGSGHEFTVNYQHKIDDRWTLTPSFAMESDEESTTYKMGLRLGYKITKELSIAGRYRYDASKLDRDKVDHDVPDNGQDDQTIHRYDVYINYANQGPWAYEYQLTYFDADYIRYNGGTDDYEQNAVVKYKWDKRWAPFFEVGDIKVNSVDSDRQLRLRVGIQYNFFPGPT0017275_135DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_OLIGOGALACTURONATE_TRANSPORT,PGPT0017275-kdgM|kdgN|nanC|ompL-K22110NANA
D1-35_04367744lutR_5COG2186HTH-type transcriptional regulator LutRATGACGGACCAAGCGTTATCTCCATTGAACAAGCCGCGCCGCCTCGCCGAAACACTGGTCGACCGTTTTGCCCAGCGCATGCGCGACGGCATTCTGAAATGCGGCGAAAAGCTCCCCACCGAAGTGCACATCATGGAAGCCGAGGGCGTCAGCCGTTCGGTGGTGCGCGAGGCGCTGTCGCGCCTGCAGGCGGCGGGGTTGGTCGAGACCCGCCATGGCGTCGGTACGTTTGTCCTGGATATGCCGGCACCGGAGGGGTTCACCCTCGGGCCGGCGACGATTGCGACGTTGTCGGACGTACTCAATTTGCTGGAGTTTCGCCTGAGCCTGGAAGTGCAGGCCGCCGGCATGGCCGCCGAACGCGCCACGCCCGAAGCCCTGGCCGAACTGGCCCAGGCGCTGGAGGCGTTGCTGCAAGGGCCGGAAAAATCCGGCACCACGATCAACGCCGATTTCCAGTTCCATCTGAAAATCGCCAAGGCGGCCGGCAATTACTACCTGATCGACATCATGAAGCACCTGGGTACAAAGCTGATCCCGCGCACCCGGATGAACTCCGCCTACTCCGGGCAAAGTGATCGCAGCGCCTACCTGCAGGGGATCAACGCCGAACACCAGCAAATTTTCGATGCCATCGCCAGCCGCAATGCCGACGCGGCGCGGGCGGCCATGTACCTGCACTTGAGCAACAGCCGCATGCGCCTGTGTGAAACCCAACAACGCCAGGCGTTCTACAACGAATAAMTDQALSPLNKPRRLAETLVDRFAQRMRDGILKCGEKLPTEVHIMEAEGVSRSVVREALSRLQAAGLVETRHGVGTFVLDMPAPEGFTLGPATIATLSDVLNLLEFRLSLEVQAAGMAAERATPEALAELAQALEALLQGPEKSGTTINADFQFHLKIAKAAGNYYLIDIMKHLGTKLIPRTRMNSAYSGQSDRSAYLQGINAEHQQIFDAIASRNADAARAAMYLHLSNSRMRLCETQQRQAFYNENANANANANA
D1-35_04368714lutR_6COG2186HTH-type transcriptional regulator LutRATGGAGCGTGTCACAACCGATCGACGCCTGAGCATGACTCAGCAACTGGTGGTCGACCTGACGCAGCAGATACTCGCAGGCGAGCTGCCGGCGGGCAGCAAACTACCGACCGAACAGGTGATCATCAAAGAGCGTGGCGTCAGTCGGACCGTGGTCCGCGAAGCCATGTCGCGGCTCCAGGCCGAAGGCTTGGTCGAGACGCGCCATGGCATCGGCACCTTCGTCGTCGACACCGCGCGCCCGGGTGATTTCCAGGGCGGCAAGCACATCAAGGGCGGCGCCCATGACGCGCTGGCCGTCATCGAACTGCGCCTGAGCCTGGAAGTGGAAGCGGCCGGCATCGCTGCGCAACGCGCCACGCCGGAGCAGTTGCTGGCAATGCGCGAAGCGCTGGATGCGGCGAATGCCGTCGACGCAACGGACGACAACAGCGCCCGGACGGATTTCGAATTTCATCGGCAGATTGCCCAATGCACCGGCAACAACTTTTTTATCGACGCGATGGCGCACGTCGGCAATACCCTGATCGCCGTGGTCCAGCAGGCGGTGCCAGCGATGGCAACTGAAAATCGAGCATTGGTGGTGCGTGAACGCGAGCAGATCTACGCGGCATTGGCGCGACGGGACGGCGAAGCGGCGCGGGCGTCGATGCGGTTGCATCTGATCAACATGCAGCAGCGGGTCCGAGGCGCGGTAGAACTGGCGAAGCAATAAMERVTTDRRLSMTQQLVVDLTQQILAGELPAGSKLPTEQVIIKERGVSRTVVREAMSRLQAEGLVETRHGIGTFVVDTARPGDFQGGKHIKGGAHDALAVIELRLSLEVEAAGIAAQRATPEQLLAMREALDAANAVDATDDNSARTDFEFHRQIAQCTGNNFFIDAMAHVGNTLIAVVQQAVPAMATENRALVVREREQIYAALARRDGEAARASMRLHLINMQQRVRGAVELAKQNANANANANA
D1-35_043691050hypothetical proteinATGCTCGCCCTGCCTCGCTGTCCTACCCCGTTGCTAGCATTGTCCGCGTTGTTTGTATTGCTCGGCGGTTGCAGCGTCAATGGCAGTTACCCCGATGCCATCGAACCGGACGCCGCCAAGTTGAGGTTCGTCGCCAATACCAGCAACGCCACGCTGGACTATTTCGACGCGGCCCATTGCGACGGACAAACCACGGGCATCCTCAACAATATGCTGTTGAGCGATACCGCGCGGCGGGTGGGGATGAGCGTTCCGGCGCCCAAGGATGCCAGGGGTTATCTGGAGGTCAAGCTCAAGCCCGGTGAGCAGATTCACCTGCGCACCAACATGAACAGCGGTTATGCCGTGTGTGGCAAGGGCTTCAACTTTACACCCGAGGCCAATGCCGAGTACGAGGTGACGTTCAAGTCCGAGAAGAACTTCTGCCTGACTCAGTTGCAACGTTTGCAAAGGGTCGACGGCAAGGACGTGCGCACACCGATCCCGATCCTGAAAAAAGACTTTCCCGCCTGCTCCGGCCGCAATGCGCTGTTCCCCAAGACCTACCCGGACACACCCCATCGCCTGGAATTGATGAGCCGGGTCATCGATAAAAGCCTGGTCGTCACGGTGAAGACGGATCCGGCCAAGGAAAAAGTCGAAAGTTATCCGCCAGAGAAACTGGACACCCTGATCAGCGAACGCAAGGCCAAGCTCGGTTTCGACCTGCCAGCTGACTACTGGACGCTGTACCGGGAAAATCTGAAGACGTTTGGCGATGACATGGCGCAGAACAAGACGCACTCGATGGAACGTTTCAAGGAGGAATACCAGACGCGTCTACGACAGCTGAAGGACGAGCAGTTGGAGCAATGGGCGTTACCCAAAACCGCCAATGCCAAGCCGGAGAAAGCCGAGATCGACCTGGACGTTGCGATGATGGTGGAGTACTTCCGGATCGGGAATGGGGTGACGGTCGAAGCGGTAACTCGTCACCTGGAAAGGATGGCGCAGATGGACGAGCATTACGGGGTATGTGCGCGGTTTGCGGAGTGCTGGAAGCGCAATTAGMLALPRCPTPLLALSALFVLLGGCSVNGSYPDAIEPDAAKLRFVANTSNATLDYFDAAHCDGQTTGILNNMLLSDTARRVGMSVPAPKDARGYLEVKLKPGEQIHLRTNMNSGYAVCGKGFNFTPEANAEYEVTFKSEKNFCLTQLQRLQRVDGKDVRTPIPILKKDFPACSGRNALFPKTYPDTPHRLELMSRVIDKSLVVTVKTDPAKEKVESYPPEKLDTLISERKAKLGFDLPADYWTLYRENLKTFGDDMAQNKTHSMERFKEEYQTRLRQLKDEQLEQWALPKTANAKPEKAEIDLDVAMMVEYFRIGNGVTVEAVTRHLERMAQMDEHYGVCARFAECWKRNNANANANANA
D1-35_043702670aceE_3COG2609Pyruvate dehydrogenase E1 componentATGGCACAACAATCCATGTTTCTCGACGAGGATCCACAAGAGACTCGCGAATGGCTCGAATCCATTGAATCGGTGGCGAGTGTCGAAGGGCGCTCTCGTGCCCACTACCTGATCGATCAGATGCTTGATTTCGACGCCAACCGCCACGGTGATTTCTACGGGCGCGTGACGACGCCCTACGTCAATACCATCCCGGCCGACCGCCAGCAGCCCTACCCCGGCGACCTGGCCGTGGAGCGCCGGATCAATGCCTATATCCGCTGGAACGCGCTGGCCATGGTGCTGCGCGCCGGCAAACATTCGAACGTCGGCGGGCACATCGCCTCCTACGCGTCGGCGGCGGTTTTGTATGACGTTGGCTTCGAGCATTTTTTCCGTGGTCGCACCGAGCAGTTCGCCGGTGACATGGTGTACATCCAGGGCCATTCGTCACCGGGCATCTATGCACGCGCCTATCTGGAAGGACGCCTGAGCGAAGAACAGTTGGATAACTTTCGCCGCGAGACCGACCGCGACGGCGTTTCGTCCTATCCGCATCCACGGCTGATGCCTGACTTCTGGCAGTTCCCGACGGTGTCCATGGGGCTGGGCCCTATTACGGCCGCGTATCAGGCCCGGTTCATGCGCTACCTGGAAGATCGCGGCCTGAAGGAGCACCAGGGCCGCAAGGTCTGGGCGTTTCTCGGCGATGGTGAAATGGACCAGCCGGAATCCCTGGCGGCGATTTCCCTGGCGGGCCGGGAGAAGCTCGACAACATCATCTTTGTCGTCAACTGCAACCTGCAACGCCTGGACGGCCCGGTGCGTGGCAACAGCAAGGTGATCCAGGAATTCGAAAGCCTGTACCGGGCGGCCGGCTGGAATGTGATCAAGGTGATCTGGGGCAGCGGCTGGGATGCCCTGCTCGAGAAGGACAAGAGCGGCCTGCTGCGCCAGCGGATGATGGAGTGCGTGGACGGCGATTATCAGAACTACAAATCCCAGAACGGCGCCTATGTGCGCGAGCACTTCTTCGGCAAGTATCCAGAGCTGCTGGAGCTGGTCAGCGACCTGAGCGACGACGATATCTGGAAGCTGTCTCGCGGCGGCCACGACCCGGAAAAAGTCCACAACGCCTATGCCGCTGCCATGCGTCACACCGGCGGGCCGACCGTGATCCTGGCCAAGACCGTGAAGGGTTTCGGCATGGGCGAAGCCGGTGAAGGCCAGAACATCAACCACCAGCTCAAGAAAATGGGTGACAACGCGGTCAAGGCGTTCCGTGATCGGTTCGGTCTGGAACTCAGCGATGACCAGCTGGGCGACATGCCTTACCTCAAGCCGGCCGCGGACAGCGTCGAGGCGATGTACCTGCAAGCCAGGCGCAGCCAGTTGGGCGGCTATATCCCGGCCCGTTTTAATGCCGTGGCGCCATTACAGGTCCCGCCCTTGTCGGCGCTGGATACACAACTCAAGGGCACTGGCGAACGGGCGATCTCTACCACCATGGCGTTCGTGCGCATCCTCGGCACACTGCTCAAGGATCCGAATATCGGCAAGCTGATCGTGCCCATTGTCCCGGACGAATCACGGACCTTCGGCATGGAAAGCCTGTTCCGCCAGATCGGTATCCATTCCCATGTCGGCCAGCTGTATACGCCGCAAGACGCCGGCCAGTTGAGCTATTACAAGGAAGCCCGAGACGGCCAGATCATGCAGGAGGGGCTGAACGAGTCCGGCGGGATTTCTTCATGGATCGCCGCGAGTACGTCCTACAGCACCCACGGCGTGATGACGGTGCCCTTCTACATCTTTTATTCGATGTTCGGCTTCCAGCGCGTCGGCGACCTCGCCTGGGCCGCCGGTGACGCCCGGGCTCGCGGCTTCCTGCTCGGCGCCACCTCCGGCAGGACCACGCTGATGGGCGAAGGCCTGCAACATGACGACGGCCACAGCCATGTGCTGTCCTCGACCATCCCCTGCTGCGTGTCCTACGACCCGACCTACGCCTATGAATTGGCCGTGATCATCCAGGACGGCATGCGGCGGATGTATGCCGAAAACGAAGACATCTTCTATTACATCACCGTACTCAACGAAAACTACGCCCACCCTGCAATGCCCGAAGGTGTCGAGCAAGGCATTCTCAAGGGCATGTACCGGCTCTCGGCGCCTGAAAAGCCTGTCGAAGGCAAGCATGTCCAACTGATGGGCTGCGGTTCGATTCTTCAGGAAGTGGTCGCGGCGGCGCAGTTGCTGGAACAGGACTTTGGCGTCAGCAGCGAAGTCTGGAGCGTAACCAGCCTGACCGAACTGCGTCGCGACGGCCAGGAAGCCGAACGCTGGAACCTGCTGCATCCCGAGCACGCGCCGCGTATCGGTTATGTGGAAAGTTGCCTGCAGGACAAACAGGGGCCGGTGGTGGTCGCGACTGACTATATGAAGATATTCGCCGACCAGATCCGCCCGTTCGCACCCAATCGACGCTTCGTAGCCCTCGGCACCGACGGTTTCGGCCAATCGGATACCCGTGAGTCATTGCGCAGGTTTTTCGAAGTGGATCGTCACTTCATCGCACTGGCGGCGTTGAAGGCCTTGGCCGATGACGGGAAAATCCCAAGGGAAAAAGTAACCGAGGCGATCAGGCTCTATGGTATTGATCCGCAGAAGCAGAACCCTGCGAAGGTTTGAMAQQSMFLDEDPQETREWLESIESVASVEGRSRAHYLIDQMLDFDANRHGDFYGRVTTPYVNTIPADRQQPYPGDLAVERRINAYIRWNALAMVLRAGKHSNVGGHIASYASAAVLYDVGFEHFFRGRTEQFAGDMVYIQGHSSPGIYARAYLEGRLSEEQLDNFRRETDRDGVSSYPHPRLMPDFWQFPTVSMGLGPITAAYQARFMRYLEDRGLKEHQGRKVWAFLGDGEMDQPESLAAISLAGREKLDNIIFVVNCNLQRLDGPVRGNSKVIQEFESLYRAAGWNVIKVIWGSGWDALLEKDKSGLLRQRMMECVDGDYQNYKSQNGAYVREHFFGKYPELLELVSDLSDDDIWKLSRGGHDPEKVHNAYAAAMRHTGGPTVILAKTVKGFGMGEAGEGQNINHQLKKMGDNAVKAFRDRFGLELSDDQLGDMPYLKPAADSVEAMYLQARRSQLGGYIPARFNAVAPLQVPPLSALDTQLKGTGERAISTTMAFVRILGTLLKDPNIGKLIVPIVPDESRTFGMESLFRQIGIHSHVGQLYTPQDAGQLSYYKEARDGQIMQEGLNESGGISSWIAASTSYSTHGVMTVPFYIFYSMFGFQRVGDLAWAAGDARARGFLLGATSGRTTLMGEGLQHDDGHSHVLSSTIPCCVSYDPTYAYELAVIIQDGMRRMYAENEDIFYYITVLNENYAHPAMPEGVEQGILKGMYRLSAPEKPVEGKHVQLMGCGSILQEVVAAAQLLEQDFGVSSEVWSVTSLTELRRDGQEAERWNLLHPEHAPRIGYVESCLQDKQGPVVVATDYMKIFADQIRPFAPNRRFVALGTDGFGQSDTRESLRRFFEVDRHFIALAALKALADDGKIPREKVTEAIRLYGIDPQKQNPAKVPGPT0001385_1763DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001385-aceE-K00163NANA
D1-35_04371453hypothetical proteinATGTCATCCAGCGAGCCGGATACCTGGTTCAGATTCGTCAGGGCCCACCGTTGCCTGATCCGCGAAATCGAGCGTCGGCTGGCGTCCGCCGGGCTGCCGGCCTACGCCTGGTACGACGCGTTATGGGGCCTTGAAAGCGGCCCCGACGGCGCCCGGCGGATGAGCGAACTGGCCGATGTCATGGCCATCGAGCGCTACAACCTCACCCGCCTGGTGGACCGCCTGGAGGCGGAAGGCCTGGTCACCCGCAGCCGCGCCAGTGATGACGGCCGAGGTGCGTACGCCGCCATCACCGAGAGCGGGAAAGTGCTGCGCAAGAAAATGTGGAAAATCTACGAAGAGGCGGTGGACGAATTGTTCCTGGCGCAGTTCGACGACGACCAGCAGCGAGTCTTCAGCGAAGCGTTGGAGCGCGCGGCCACAGCGGCGCGCAGCAGTGGTCGAGGGAAATAGMSSSEPDTWFRFVRAHRCLIREIERRLASAGLPAYAWYDALWGLESGPDGARRMSELADVMAIERYNLTRLVDRLEAEGLVTRSRASDDGRGAYAAITESGKVLRKKMWKIYEEAVDELFLAQFDDDQQRVFSEALERAATAARSSGRGKNANANANANA
D1-35_04372720hypothetical proteinATGATCAAATGGTTCAAGACCCTCACCCGAACGGATGTCATTGCAACACTCGCCTTGGTCGTCTCCATCGCGTCCGCCTACTTCAGCTACCAGCAATACCAGGACGGCATCGCCAGTCGCAAGACACCGATCATTGTCCGTGTCGGTGCTGAACACGACAAAATCTCGTTCTTCAAGCCCCACGCCGACTTCCCGGTACTCTTCAAACAGCGTTACAAGATCATCCTCACCAACAACAGCTTCAATCCGGAAAGCGTCATTGACTGGCGAATATGGGAGCGCCGGGAGGAGGGCGGCGGGCAGTACATCGGCATGAAATCCAAGCTGCTCGATTCCACGGGAATGCCGATGACCTTGCCATTCCTGATCGCTGCGAAAGAGAGCAAAGTGCTCTTCCTCGACGTTGGCCAGAAAGTCACGCCAGAGGCGTGGGCGGCGGTGGGACCCGCGGTGAGTCTCGGAAAAGAACTGGACTGGTTCGACGCAGACAGGATTTTTGCCGACGCGGGTTATCCACAGTTCGGCCAGCTTGCGCCGGGAGAAAGCTCCCGGTATCAGGACCTGCAAGTCAACCGCTGGACCAAGGGCCCCGCGTACCAGGAATTCCAGTTGAACTTCACCAAGGCCGATGGCTACGAAGTGGCTGCGCAGTTATCGCTAAATGTCAGTGATGTTTATCCACAGGGGGGAGGCGGTGCGGTAGTGGTGGGCAAAAGCTGAMIKWFKTLTRTDVIATLALVVSIASAYFSYQQYQDGIASRKTPIIVRVGAEHDKISFFKPHADFPVLFKQRYKIILTNNSFNPESVIDWRIWERREEGGGQYIGMKSKLLDSTGMPMTLPFLIAAKESKVLFLDVGQKVTPEAWAAVGPAVSLGKELDWFDADRIFADAGYPQFGQLAPGESSRYQDLQVNRWTKGPAYQEFQLNFTKADGYEVAAQLSLNVSDVYPQGGGGAVVVGKSNANANANANA
D1-35_043731548hypothetical proteinGTGTGCAGCTGGGATACGCAGAGAAACCACAAGGAAACAGGCGTGATGGCAGCTCGTTTTGATCCATTGGTTCATATCGATTGGAAAACACCGGGCAGCGACTTGCTCGGGCTGTTGCAGCATTACTATCCCGACGTCGGTGTGTTTGCCGGCCCGGAATTCGAGGCGTTGTTGGATGAGCTGTCCAACGAGATGCCCGAGGTCTGCTTCGAGGCGTTGGCACCGGTGTTGGCGGGTCAGGGTTATGACTTGTGGAACCTGGATGCCGGTGGCGACGACTATCGGCCGGTGATTTTTCCTTCCGATCAGCGTGAGACGTTTGCCCAGCATTGGCAAAGCCCTCGCGGGGAGCCCAGCTTCACGGCGACGTTGATCGAGCCACCTGCGGTAAAAGCGCGCAAACCGGCCAAACCCAAGCGCGGCAAAGTCAAGTGGTTGCAGGAAGTCCATGACTATCCAGGCCCCACCTATGTGCATGAATACAACTACCGCAACGGCTGGGCCGCGATTACCGAGCAGGACGAAGACCGTTGGCTGTGCTTTCTGATCGACTACAACCAATGGCCGCCTGCCGAACAGGAGATGCTCGAACAGCGCGCTGACGGCGTGGACGGCGCCGATCTGCGGCTGATCGACGCCAACGCCCAGCGCAGCCTGTGGAGGCGCCAGGTCAAACACGGCGATTACAGTGCGGATGATCGGTTCAAATACGAGGTCCTCCGGGGCGACGTCATCGAAGAGTTCGGCCCTGCCGGAATGCAATGGCAAGCATTCGAAGAGCCTTGTGTCGTGGTGGACGAGGAGATTTTCGAACGTCAGCGCATTTACCAGCCCGAGCATCTGACGCGAATCTGGCGGATCACGGCGGACAGCAGCGAGGTGATCTTCGAGGATTCGGAGGAGCTGACAATCCTGCCCATCGGCCCCCGTCGCTTGCTGTTCATGCAGCACAACGGCAAGCGCTGCTGGGTCTGGAACCTGGACCCGCCGCACCGGGCCGTCCCCGCCAAACCGATGCCAGCCGAAGCCTACAAGCTGCGGCCAGCCACGGCGTATCTGGGCGGTGACGAGATTTTGCTGTTCAGCGAAGGCGCGCGGCAGAACCTCGAGCACGCGGGGTATCAGGAGACAGTGTTGCTGGCGTGGCGCTTCAACTTCATCACCGGCGCCAAGACCCAGGCGACGCTGGACGGCTTCGGAAGTGAGCTGCGCCAGGACACCCGCCTGCTGGTCACCCAGCCCAAGCAGGTGATCACGTTGCGCACGTTTCATGGCCAACTTCACGTCGCGCGTGGGCATGGCGACTGGTGGGTGTGGAGCTACCGCGCCAACACTTTCGGCACACACACGCTGGCGTGGTTCTGGAACCAACGGAGCAACCAGGTGCTGAAGCTGACGTCCAAGGACCTGCCGCGGATCAAGCCGGAGATTCGTTATGTGCCGGCGCAGGATCGGTATCTGGCGTTCGAGACGGAGTTTGTGGCGCGCTTGCCGGTATTCAGCGACATGGTCGAGGCCAAGGGTTGCGAAGTGTTGAGCTTCGAGTGAMCSWDTQRNHKETGVMAARFDPLVHIDWKTPGSDLLGLLQHYYPDVGVFAGPEFEALLDELSNEMPEVCFEALAPVLAGQGYDLWNLDAGGDDYRPVIFPSDQRETFAQHWQSPRGEPSFTATLIEPPAVKARKPAKPKRGKVKWLQEVHDYPGPTYVHEYNYRNGWAAITEQDEDRWLCFLIDYNQWPPAEQEMLEQRADGVDGADLRLIDANAQRSLWRRQVKHGDYSADDRFKYEVLRGDVIEEFGPAGMQWQAFEEPCVVVDEEIFERQRIYQPEHLTRIWRITADSSEVIFEDSEELTILPIGPRRLLFMQHNGKRCWVWNLDPPHRAVPAKPMPAEAYKLRPATAYLGGDEILLFSEGARQNLEHAGYQETVLLAWRFNFITGAKTQATLDGFGSELRQDTRLLVTQPKQVITLRTFHGQLHVARGHGDWWVWSYRANTFGTHTLAWFWNQRSNQVLKLTSKDLPRIKPEIRYVPAQDRYLAFETEFVARLPVFSDMVEAKGCEVLSFENANANANANA
D1-35_04374405hypothetical proteinATGATCCGATGCAAGCGCGCCTACGAAACCGCCAGTGCCGAGGACGGCGTGCGGGTTCTGGTTGATCGCCTGTGGCCGCGTAATTGCCGCAAGGATGCGCTGGCGATCGATACATGGCTGCCAGAAGTTGGGCCTTCTCATGAGTTGCGCAAGGCGTTCAAGGCGGGGGCGGTTTCGTTTGCCGAGTTCGATGTGGCGTATCGACAAGAGCTGGCGGCCCGGCCGGAACATTGGTGGAAGTTGGTGGATATCGCGAGGGACGGGAAGCTGACGTTGATCTATGCGGCCAAGTCGCCGGTTGAGAATAATGCAGTGGTGTTGGCGCGGTGGCTGGAGGACGAGATGGAGAAGCGGGCGGATTCGAGTTCGCCGGTTTGTTATCTGGGGGAGTTTCCGGAGCTTTGAMIRCKRAYETASAEDGVRVLVDRLWPRNCRKDALAIDTWLPEVGPSHELRKAFKAGAVSFAEFDVAYRQELAARPEHWWKLVDIARDGKLTLIYAAKSPVENNAVVLARWLEDEMEKRADSSSPVCYLGEFPELPGPT0014885_18DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014885-yxlJ|aag-K03652NANA
D1-35_043757635hypothetical proteinATGAACAGAGTTTACCGAGTCGTCTGGAATGCCGTGATGGGCGCATGGCAGGTGGCATCCGAGTTGGTCAAGAGCCACGGCAAGGACAAAAGCCGTACCTCGCTCAGCCTCGTCATCGGCGTGGGCGGCGGACTTTTCGCCTCGGTAGCGGCGGCGGGAGCGTTACCCACCGGAGGGAACATTGTCGCGGGTAACGGCAACATTCAGCAGAATGGCAACAACATGGCCATTCATCAGGGCAGCGACAAGCTCGCGATCGACTGGCAGGGCTTTTCCATCGGCAAAGGCAACACCGTCGAATTCGTCCAGCCTGGCAAGGCGTCGGTCGCCTTGAACCGTGTGCTGGGCTCGGATGTATCGGTAATCCAGGGCGCGCTGAAAGCCAACGGCCAGGTGTTCCTGGTCAACCCCAACGGCGTACTGTTTACCCCCGGCGCACAGGTTGATGTGGGCGGCCTGGTGGCCTCCACGCTCAACTTGAGCACCGAAGATTTTCTCGCAGGCAACTACCGTTTCAGTGGCAAAAGCGCCGCGTCGGTGGTCAACCAGGGCAACATCAATGCAGCGCAGGGCGGCACCATTGCCTTGATCGCCGCAAAAATCGTCAACGAAGGCAATATCACCGCGCACAAGGGCAATGTCCTGCTCGGCGCCGGCAGTGTCGTGACGCTCGACCTGGGCGGGCCGGTGCAACTGGAAGTGAAAGAAGGCGCGCTTCAAGCGTTGATCGAAAACGGCGGCGCCATTCGTGCCGATGCCGGCCGCATCCTGCTGACCGCCCGTGCGGCGGAAACCCTCGCAAGCACCGTCATCAACAACACCGGGTTGATCGAAGCACGCTCCCTGGACATCGGTGAAAACGGCCTGGTCACGCTGATGGGGGACCATGGCGATGTGCAAGTCGCTGGGCGTATCGATGTGTCCTCCGACACCGCCAAGGGCGGCAAGATCGTCGTGACTGGCGAGCGCGTGGCGATCAAGGCAGGCGCCGTGCTCGACGCCACCGGCGCCAAGGGTGGCGGCGAAATCAATGTGGGCGGCAGTTGGCAAGGCAAGGACCCGTCGATCAAACAGGCCAGCCAGACCACCATCGCCGCAGGTGCCGTGCTTGACGCATCGGCCACCGACAACGGCAAGGGCGGTACCGTGGTGGCCTGGTCGGATGTCAAGAAAGCGGGCAGCGTGACCCGCGTGGACGGCACCCTGAAAGCCACCGGCGGCGCCAAGGGCGGCGACGGCGGCAAGATCGAGACCAGCGGTGCGAAGCTGGCGGTGAGCAAGGCGGCCGATGCTTCGGCTAAAAACGGCAAGGGCGGCTTGTGGTTGCTCGACCCGGACAGCGTCACGGTGGGGCCGGGTAACGGAGGGTTGACCGGCGGCGCCAACGGGACAGAAGCCACGGTTGGCTTCAACGCGATCGATACGGCCCTGGCCGGTGGCACCGACGTGGCGATCAAGGCCGACAACAGCATCCACTGGAATGGCGACTACACCCCGTCGAGCATCAGCGGTGAGCGGACGCTGACCTTGCAGTCCGGACACAACGACGGCGGAACCGGCCGCTACGTCTTCGGCAATATTTTCCTCAACGGTGATATCGACGCCAGTGGCGCCGGCAATGGCAACAGCCTCGCGTTGATCCTCAACGGCAAGATCGCGCTCAACACCGATGTGAGCTTGAAGAGCAACGGCGGCAATGTCGTGTTTGCCGGCGTGGTGGACTCCGACGCGGTGGCCAACAACCGCCAACTGCGTGTCGATGCCGGTTCAGGTTCGATCATCTTCAGTGACATGGTCGGCGGTAACAGCGCGTTGGGCTCGCTGTACGCGACCACCAGCGGCGCCGGCAAAACCTATATCAACGGCGCGAAAGTCTTCACCAGCGGCGAGCAGGTCTACACCGGCGCCGTCGAGCTGGGCACTTCGCAGTTCCTGAACGCCGACTTCGAAAACGGCCTGGTCGGCTGGCAGACGTCCATCGCCCAGTTCTTCACCGGCGTCACCGTGGTCGACGGCGTGGTATCGCCAGATGACCCGACGCTCCCGACCACCTCGCCAACCAACGGCAATGCGCCGAGTGTTTCGCCTGGCGACCAGGGCGACATGAACTACAAACCGCTCACCCCGGTTGCCGCCGCTGGCCAGGGCAAGGACGGCGGCGCTGCGCTGCTGCTGGGTACCGAGAACAATTCCAACTGCCTCAACGCGCCCGCCGGTTGCATCATGCGCGGCCCTTCGGTCGTGAGCGAGGGCACGGTTTCGCTGGCGGCAGGGGAAGCGGTCAGTTTTGATTACAAACCGGTCGCTGGCGGTGACACCTACGATGTCTTCGGCTATCTGTTGAACGTCAACACCGGCGAATACCAGATCATCCTGAACGAAACGGGTAACGGTACCGGCGCGGTGAATTGGCAAACCCGCACGGCAACGGCTGATAGGGCCGGCACATACAAGTTCGTCTTCGTTTCCGGCAGCTTCGACCAGACCGCCGGCAAGCAGGTCGGTGGCTCGCTGTACGTCGACAACATCAAGACCAACACCTCGGGCAGCAAGGGCCTGCAGGGCAGTTCGATCACGTTCAACGGCAGCCTCAACAGCACCGATAACAACCTGGCCATCAAGGCGGACGATATCAACTTCAACGGTGGGGTTGGCAGCGTCACCGGCAACGGCAGCATCACCCTTGAAACCAACACCCCGAACAAGAACATTGCCGTGGGCGGCAGCACCGGCGATGCCCCCGGAGCGTTGGAGCTGACCGGCACCGACATCGGCGCGCTGAGCGACGGGTTCACTTCCGTCAAGATCGGTGGCGCGGACATGACCGGTGACATCAACGTCATCGAGCAAACCCGCTTCAACGACAGCCTGATCCTCGATGCCGGTACCGGCAATATCCACATCAATGACCAACTGACCGTGGCGGATGCACCGGGCACCGGTAACGACGACAGCAAACCGGCTCCGGTCCTGGCGTTGCAAAGCAATGGCGGCAAGATCGACCAGACCGCTGGCGGCGCCATTATTGCCGATGGCCTGGTGCTGTTGGGTAACAGTGCCGTGCATGACCTGGACAACGCCGGCAACGACGTCAATACCATCGCCAGCAACACCGGCACGGTCAGCTTTGCCGATGTCGATGACCTGACCGTTGGCGTTGTGACCATTCCCGACAGCCAGACTCCGGCAAACCCGCAAGGCGTAACGGTTGCCGGCATGACCCAGACCGGTGACCTGAACCTTGTCTCCGACACCCTCACCGTCGGCCAGGCCTTGGTCACCCAGGGCGATACGAGCCTGACCGCCGACGAAATCGATCTCGCCGCGAGCGTCGCCGGTGGCGGCAGCCTCACCCTGCAGCAGAAGACCGATGGGTTGGATATCCACCTGGGCGGCAGCGACGATCCTGAAGTCACCGGGCCTAACGATCCGCTGGTGCTGTCTGACGCCGACCTGGCCAATATCCAGGATGGCTTCGACAAGGTCGTCATCGGTAACGACAAGACGCGCAACATCACCGTCGACGATGAAGGCGCGACCTTCAAGGACGACCTGGCCCTGGTCGCCAACGGCGTCCTGGACCTGCTGGGCAATCTGGCGCTCAAGGACCCCGAAGGCAACGATGAAGACGGCGCCACCGGCAAGGGCCTGACCCTTAGCGTCGACGCGGGCAAAGGCGCGACCCAGGCAACTGGCGCGACCATCACTGCGGACGAACTGGCCTTGCGCGGCGAAGGTGACTTCAACCTGGGCAAGGGCGGGCATGACGTGAGCGTCATCGCCGCCGATGTCGGCAGCCTGAAATTCGCCGGCAACGGCGACCTGACGGTGGGCGTCGTGGACGGTACCGTGGGGATTACCTCCGATGAGGCGGTCACCCTGAAAACCGATCACGACCTGACGCTGGCCAAAGGCATCACCATCGAAAACGGCCCACGGGATGACGCCAACAATGGCGAAACCCGTGCCGACGACATCATCACTCTGGAAGTAGGGGGCAACACCACCCAGTCCAGCGACGTCGGGGCCAAGCTGGATGCCAGTGGCCTGGTGCTGCTGGGCGGCAACTACGCGTTGAACAATTCGGGCAACCTGATCGGCGATATCGCCAGCGAGGCGGGCAAAGTCCGCTTCAACAACAGCGGCGACCTCAAGGTGGGCACGCTGACCGCGACCCATGCCGACGGCACGCAAACCAGCCTCACCGGCGTGAACAACACGGGTGATGTCAGCATCGGCACCCAAGGCAATCTGGCAATCAACGAAGTGCTCGCCACCAGCGGCAACGTGTTCCTCAACGTCGACGGAAAGACCACGCAGGACAGCAACGGCAACATCAGTGCCGACGGCCTCGCCCTCAACGGCGGCGACTTCGAGTTGCGCAACAACGGCAACGTAGTGGGCGATATCGCCAGCGAGGCGGGCAAGGTCGCCTTCAACAACACCGGCAACCTGAAGGTCGGCACGCTGACTGAAACCGACGGCAGCGGCAACGTGGTCAAGACCACGACTGGCGTGAACAACACTGGCGATGTGAGCATCGGTACCCAAGGTGATCTGGCGATCAATGAAGGGCTGGTGACCAGCGGCAATGTGTTCCTGAACATCGGCGGCAAGACCACCCAGGATGCCAACGGCAACATCACCGCCGACGGTCTCGCGCTTAACGGCGGCGATTTCGAGTTGCGCAACAACGGCAACGTGGTCGGTGATATCGCCAGTGAGGCGGGCAAGGTTGCGTTTAACAACACCGGCAGCCTGAAGGTCGGCACGCTGACTGAAACCGATGGCAATGGCAACCTGGTCAAGACCACCACCGGCGTGAACAACACTGGCGACGTGAGCATCGGTACCCAAGGTGATCTGGCGATCAATGAAGGGCTGGCCACCAGCGGCAATGTGTTCCTGAACATCGGCGGCAAGACCACCCAGGACGGCAACGGCAATATCACTGCCGATGGCCTGGCGCTTAACGGCGGCGATTTCGAGTTGCGCAACAACGGCAACGTAGTGGGTGATATCGCCAGCGAGGCGGGCAAGGTTGCGTTCAACAACACCGGCAACCTGAAGGTCGGCACGCTGACTGAAACCGACGGCAACGGCAACGTGGTCAAGACCACGACTGGCGTGAACAACACTGGCGACGTGAGCATCGGTACCCAAGGCGATCTGGCGATCAACGAAGGGCTCGCCACCAGCGGCAATGTGTTCCTCAACGTCGCTGGCAAGACCACACAGGATGCCAACGGCAACATCACCGCCGACGGTCTCGCGCTTAACGATGGCGATTTTGAGTTGCGCAACAACGGCAACGTGGTCGGTGATATCGCCAGTGAGGCGGGCAAGGTTGCGTTCAACAACACCGGCAACCTGAAGGTCGGCACGCTGACTGAAACCGACGGCAACGGCAACGTAATCAAGACCACCACCGGCGTGGACAACAGCGGCGACGTCAGCATCGGCACCGACGGCAACCTGGCGATCAACGAAGGGCTGGCGACCAGCGGCAACGTGTTCCTCAACGTCGACGGCAAGACCACTCAGGATGCCAACGGCAATATCACCGCTGGTGGCCTGGCCCTCAACGGCGGCGACTTCGAGTTGCGCAACAACGGCAACGTGGTCGGTGATATCGCCAGTGAGGCGGGCAAGGTTGCGTTCAACAACACCGGCAACCTGAAGGTCGGCACGCTGACTGAAACCGACGGCAACGGCAACGTGGTCAAGACCACGACTGGCGTGAACAACACTGGCGATGTGAGCATCGGTACCCAAGGTGATCTGGCGATTAACGAAGGGCTGGTGACCAGCGGCAACGTGTTCCTGAATGTCGATGGCAAAACCACTCAGGACAGCAACGGCAACATCACCGCTGACGGCTTGGCCCTTAACGGCGGCGACTTCGAGTTGCGCAACAACGGCAACGTAGTGGGTGATATCGCCAGCGAGGCGGGCAAGGTTGCGTTCAACAACACCGGCAACCTGAAGGTCGGCACGCTGACTGAAACCGATGGCGGCGGCAACGTGGTCAAGACCACGACTGGCGTGAACAACACTGGCGACGTGAGCATCGGTACCCAAGGTGATCTGGCGATCAATGAAGGGCTGGTGACCAGCGGCAATGTGTTCCTGAACATCGGCGGCAAGACCACCCAGGACGGCAACGGCAATATCACTGCCGATGGCCTGGCGCTTAACGGCGGCGACTTCGAGTTGCGCAACAACGGCAACATCGTGGGCGACATCGCCAGCGAGGCGGGCAAGGTCGCCTTCAACAACACCGGCAACCTGAAGGTCGGCACGCTGACCGAAACCGATGGCAACGGCAACGTGGTCAAGACCACCACCGGCGTGAATAACACCGGCGACGTCAGCATCGGCACCGACGGCGATCTGGCGATCAACGAGGAGCTCGCCACCAGCGGCAACGTGTTCCTCAACATCGGCGGCAAGACCACCCAGGACGGCAACGGCAACATCACCGCCGACGGCCTGGCCCTCAAGGGTGGTGATTTCGACCTGCGCAATGCCAGCAACTGGGTCGGCGATATCGCCAGCCGAGCGAAGGACGTCAACTTCGTCAACCGCAGCGACGTCACCGTCGGCAGGTTGACCGAGACGGCACTGGACGGCACCCAGCTGGACCAGATCGTCGGCATCGGCAACACCGGCAAGGTCCAGGTCGTAACGACGACCGGCAACATCACCCTGGCCGAGAACGTCAGCACCACCAGTAACGCTTCCGATGCGATCGTGCTCAACGCCGGTCAATCGGCTTCGGCGGGCGTGGCCGCGGGCGGTGATGTGAAGGCTAATGCCGGCGTGACCGTGTCCACCGGCGTTGGTGGTCGGGCGGTGATCTACACCGGCAGCCTGGCCGGTAGCACCCGGATGGTCGATGTGCTCGGCAGTGGCAGCGGCAATTTCCGCTACAACAGCGACGAGCAGCAGAGCAACTTCGGCAGGGCGTTGGGCAACAGCGGCGTGCATGCCGTGTACCGCGAGCAACCGACCCTGGTGGTTTCCACCAACGGTACGACCACCCAGACCAAGGTGTTCGACGGCAGCACCACCTTCGACGGCGGCGGTATCGGCGGTTATGACGCCAACGGTCTGTGGAACGGCGACACCAAGCAGATGCTCGGCAACCCGCTGTACTCGGTGTGGACTTCCGGCCCAGGCTCGCACCTGATCAACATCGGTGGGCTGGCAGACCTGGGTTACCTGATCGTCAGCAATCCGGCCAACGCCAACCTCACCGTGACCTCGTCCATTGACTATGAGGCCGTCCGGCAGAGCGTCGCCGATGCAACCCGCGTTGGCGCGCAGCAGAATTCGCCGCATGCCCCGGAGCTCGATCCGGCCCAGCCGAAACCGGCTGACTGGTCTGACTACGGCGTTGAGGACGGCGGTCTCCTGCTGGTGGACCAGGGCGACACTCGGGCGAACGGCAATGCGGGCGACAGCGATTCGGCCGCCCAGGCCGAGGACACCGCCAGCGAGCGGGAACTGGCCGGGAACGTCTGCTCCGACGGCGGGGTATCCGCCGGCGGCGCGTGTGCGGCCTATCCGCCGCAGACCGTGTTCGTCGTGCGTGGCGGTGTGCGCTTGCCAAGCCTGGCCATGCGTCCCTGAMNRVYRVVWNAVMGAWQVASELVKSHGKDKSRTSLSLVIGVGGGLFASVAAAGALPTGGNIVAGNGNIQQNGNNMAIHQGSDKLAIDWQGFSIGKGNTVEFVQPGKASVALNRVLGSDVSVIQGALKANGQVFLVNPNGVLFTPGAQVDVGGLVASTLNLSTEDFLAGNYRFSGKSAASVVNQGNINAAQGGTIALIAAKIVNEGNITAHKGNVLLGAGSVVTLDLGGPVQLEVKEGALQALIENGGAIRADAGRILLTARAAETLASTVINNTGLIEARSLDIGENGLVTLMGDHGDVQVAGRIDVSSDTAKGGKIVVTGERVAIKAGAVLDATGAKGGGEINVGGSWQGKDPSIKQASQTTIAAGAVLDASATDNGKGGTVVAWSDVKKAGSVTRVDGTLKATGGAKGGDGGKIETSGAKLAVSKAADASAKNGKGGLWLLDPDSVTVGPGNGGLTGGANGTEATVGFNAIDTALAGGTDVAIKADNSIHWNGDYTPSSISGERTLTLQSGHNDGGTGRYVFGNIFLNGDIDASGAGNGNSLALILNGKIALNTDVSLKSNGGNVVFAGVVDSDAVANNRQLRVDAGSGSIIFSDMVGGNSALGSLYATTSGAGKTYINGAKVFTSGEQVYTGAVELGTSQFLNADFENGLVGWQTSIAQFFTGVTVVDGVVSPDDPTLPTTSPTNGNAPSVSPGDQGDMNYKPLTPVAAAGQGKDGGAALLLGTENNSNCLNAPAGCIMRGPSVVSEGTVSLAAGEAVSFDYKPVAGGDTYDVFGYLLNVNTGEYQIILNETGNGTGAVNWQTRTATADRAGTYKFVFVSGSFDQTAGKQVGGSLYVDNIKTNTSGSKGLQGSSITFNGSLNSTDNNLAIKADDINFNGGVGSVTGNGSITLETNTPNKNIAVGGSTGDAPGALELTGTDIGALSDGFTSVKIGGADMTGDINVIEQTRFNDSLILDAGTGNIHINDQLTVADAPGTGNDDSKPAPVLALQSNGGKIDQTAGGAIIADGLVLLGNSAVHDLDNAGNDVNTIASNTGTVSFADVDDLTVGVVTIPDSQTPANPQGVTVAGMTQTGDLNLVSDTLTVGQALVTQGDTSLTADEIDLAASVAGGGSLTLQQKTDGLDIHLGGSDDPEVTGPNDPLVLSDADLANIQDGFDKVVIGNDKTRNITVDDEGATFKDDLALVANGVLDLLGNLALKDPEGNDEDGATGKGLTLSVDAGKGATQATGATITADELALRGEGDFNLGKGGHDVSVIAADVGSLKFAGNGDLTVGVVDGTVGITSDEAVTLKTDHDLTLAKGITIENGPRDDANNGETRADDIITLEVGGNTTQSSDVGAKLDASGLVLLGGNYALNNSGNLIGDIASEAGKVRFNNSGDLKVGTLTATHADGTQTSLTGVNNTGDVSIGTQGNLAINEVLATSGNVFLNVDGKTTQDSNGNISADGLALNGGDFELRNNGNVVGDIASEAGKVAFNNTGNLKVGTLTETDGSGNVVKTTTGVNNTGDVSIGTQGDLAINEGLVTSGNVFLNIGGKTTQDANGNITADGLALNGGDFELRNNGNVVGDIASEAGKVAFNNTGSLKVGTLTETDGNGNLVKTTTGVNNTGDVSIGTQGDLAINEGLATSGNVFLNIGGKTTQDGNGNITADGLALNGGDFELRNNGNVVGDIASEAGKVAFNNTGNLKVGTLTETDGNGNVVKTTTGVNNTGDVSIGTQGDLAINEGLATSGNVFLNVAGKTTQDANGNITADGLALNDGDFELRNNGNVVGDIASEAGKVAFNNTGNLKVGTLTETDGNGNVIKTTTGVDNSGDVSIGTDGNLAINEGLATSGNVFLNVDGKTTQDANGNITAGGLALNGGDFELRNNGNVVGDIASEAGKVAFNNTGNLKVGTLTETDGNGNVVKTTTGVNNTGDVSIGTQGDLAINEGLVTSGNVFLNVDGKTTQDSNGNITADGLALNGGDFELRNNGNVVGDIASEAGKVAFNNTGNLKVGTLTETDGGGNVVKTTTGVNNTGDVSIGTQGDLAINEGLVTSGNVFLNIGGKTTQDGNGNITADGLALNGGDFELRNNGNIVGDIASEAGKVAFNNTGNLKVGTLTETDGNGNVVKTTTGVNNTGDVSIGTDGDLAINEELATSGNVFLNIGGKTTQDGNGNITADGLALKGGDFDLRNASNWVGDIASRAKDVNFVNRSDVTVGRLTETALDGTQLDQIVGIGNTGKVQVVTTTGNITLAENVSTTSNASDAIVLNAGQSASAGVAAGGDVKANAGVTVSTGVGGRAVIYTGSLAGSTRMVDVLGSGSGNFRYNSDEQQSNFGRALGNSGVHAVYREQPTLVVSTNGTTTQTKVFDGSTTFDGGGIGGYDANGLWNGDTKQMLGNPLYSVWTSGPGSHLINIGGLADLGYLIVSNPANANLTVTSSIDYEAVRQSVADATRVGAQQNSPHAPELDPAQPKPADWSDYGVEDGGLLLVDQGDTRANGNAGDSDSAAQAEDTASERELAGNVCSDGGVSAGGACAAYPPQTVFVVRGGVRLPSLAMRPNANANANANA
D1-35_043761665hxuBCOG2831Heme/hemopexin transporter protein HuxBATGCATAACAAACTGATGTCCTGCGCCGCCGGTCTGGCGTTGTTGTCCACTTCCCCGGCCTGGGCGGCGACCCTGCCGGCACGCCCGATCCCCGACGCCGGTCGCATCCTGCAGGAACTGCCGATTCCGCAGCAGGAGCTGCCGCAAAGCATTCGCCTGGATGTCGAGGCACCACAGCCGACACAGGAAAAAGTCGGCGGCGCCAAAGTCCAGCTCAACGCCGTGCGCTTCACCGACAACACCCGCATCGACGAGGCCAGACTGCAACGCGTCGTCGCCCCGGCCATCGGTCAGGCCCTTGATCTGGACGCGCTGCGCGAAGTGGCCCGGCAGGTCACGCTTTACTACCGCGAGCAAGGCTACCCCTTCGCCCGCGCCTACCTGCCGGCACAACGCATGGAAAAAGGCGAGCTGACCATCGCCGTGATCGAGGGCCGCTATGGCAAAGTCACCGCCGTCAACGACGATGCAAAACTGGCCACCCAGGCGCAGCCGTTCCTGGATGACTTGCAGCCGGGCGACGTGATCGAGCGTGAGCGCCTGGAGCGCAGCATATTGGTGCTCTCCGACTTGCCGGGCGTGGCAGTTCGTCCGGTCATCCGTCCGGGTGAAGCACTTGGCACCGGTGACCTCAATGCCCAGGTGAGCAAAACCGAGGCCTTCGAGGGCAAGGCCACGCTGGACAACCACGGCAACCGTTATTCGGGGCGCAATCGCCTGACGGTACAAGGCGACTGGAACAGCCCGCTGATGTTGGGCGATCGCCTCAGCGCCGCAGTGATGGCCACCGATGAAGACCTGTATTTCGGCAGCCTCGGCTACTCGATGCCACTGGGCACCTCTGGCCTGCGTGGCAACGTCGGTTACGCCCAGAGCTCTTATGACCTGGGCGCCGAATTCGCCGACCTGGGGGCGACCGGTACCGCCGAAGTCAGCAGCATCGGCCTGAGCTATCCACTGCTGCGCAGCAACCAGGCGAACCTCATGCTGGCCGGGCAGTACCAGCACAAGGACCTTGAAGACAAATACGAAGTGCTCGGCCTGAGCTTTGAAAAAAGCAGCAACTCGCTGCCCATCAGCCTGCAGTTTGACGTCAGGGACAGCTTGCTCGGCGGCGGCATCACCTACGGCGGCGCGACGCTGACCTACGGTGACCTGAAGCTGGATTCGGCCCTGCGCGAAGGCGACCGTCAGACCGCCCAGACCGAGGGCGACTTCAGCAAAGTGAATGTCGACCTCGCCCGCCTGCAAGCGCTGCCGGCCAACTTCACGCTCTTCGCCCGTTTCCTTGGCCAGTGGAGCAACGACAACCTCGACTCCTCCGAAGATTTCAGCCTCGGCGGCATCGATGGCGTACGTGCTTATCCACAAAGCGAAGGCTCGGGCGACGAAGGCATGCTGACCCAGATCGAGCTTCGCTACCCGATCGACAAGCTCACGCCTTACCTGTTCTGGGACGCCGGCAAGGTGCGCATCAACCACAACGAGTGGGCCGATGAGGAAAACAACCGCAGCATCTCCGGCGGCGGTGTCGGTTTGCGCGCTCAATACGGCCAGCTGTCGTTCGACGCAACGGTCGCATGGCGCCACTCCGGCGGCGAAGCGCAAAGCGATACACGCCAGGAAAACCCGCAACTGCTCGCTCAGATCGGCTACTCGTTCTGAMHNKLMSCAAGLALLSTSPAWAATLPARPIPDAGRILQELPIPQQELPQSIRLDVEAPQPTQEKVGGAKVQLNAVRFTDNTRIDEARLQRVVAPAIGQALDLDALREVARQVTLYYREQGYPFARAYLPAQRMEKGELTIAVIEGRYGKVTAVNDDAKLATQAQPFLDDLQPGDVIERERLERSILVLSDLPGVAVRPVIRPGEALGTGDLNAQVSKTEAFEGKATLDNHGNRYSGRNRLTVQGDWNSPLMLGDRLSAAVMATDEDLYFGSLGYSMPLGTSGLRGNVGYAQSSYDLGAEFADLGATGTAEVSSIGLSYPLLRSNQANLMLAGQYQHKDLEDKYEVLGLSFEKSSNSLPISLQFDVRDSLLGGGITYGGATLTYGDLKLDSALREGDRQTAQTEGDFSKVNVDLARLQALPANFTLFARFLGQWSNDNLDSSEDFSLGGIDGVRAYPQSEGSGDEGMLTQIELRYPIDKLTPYLFWDAGKVRINHNEWADEENNRSISGGGVGLRAQYGQLSFDATVAWRHSGGEAQSDTRQENPQLLAQIGYSFPGPT0003648_78DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-HEMOPHORES-HEME|HEMIN_TRANSPORT,PGPT0003648-hxuB-NANANA
D1-35_04377837rhaR_3HTH-type transcriptional activator RhaRATGGACAACGGACGATACGAAAGGCCGGCAGCGGCGGCGGGGGGCTCGGCGGCGTCCGACGCGTTGCCGCATATCCTGCTGATCGACGATGTCCCTGAAGACATCCGCGCCACGCTCATCCTGTTGAAGACCCAGCCCTGGCGCATCTCCCTGGCCAGCGATGCCTATCAAGGCTATCAACGGGCACTCGCCCTGCGCCCGGACCTGATCGTGCTGGATGTGCACATGCCGCAAATGGATGGCTTCAGCCTGTGCCGGCTGTTGCGCGAGGCACCGGCCACACGGCAGACGCCGATCCTGTTCCTGTCATCGGCGAATACTTCATTGGAGCGCCTCGAAGGGCTGACGGTCGGCGCGGTCGATTACATCCCCAAATCCTGTGCCCCCGAAGAAGTGCTGGCGCGGATCAAGATCCACCTGCAACTGACCTGGCGCGCGCCACCGGCACTCCACCAAAGGCCGGCCGATCCGGAACCGCAAGGCGATGAAATCGTGCTGCGCGCGGCGATGCGCCTGATCGAAAACCAATTGGACGACATGCCGTCCCTCGGCATCCTCGCGCAAAAAGTCGGCACCCATGAAAAACGCCTCTCGGCGATTTTTCGCGAACACCTGGGGATGACCGTGTTCGCCTACATCCGCGACGCCCGCTTGCGGCGTGGCCAGGATCTGCTCGCCGAAAGCGCCATGAGCGTGCAAGACGTCGCCGAACTGGTGGGTTTTCGCAACGCCTGCAATTTCACCACGGCGTTCCGCCAGCGAATCGGCATGACGCCTAGTCAGTTTCGCCAGCAGACCCTGGGCACCAGCGAAATCGAGTCGGCCGGGCGCGCCTGAMDNGRYERPAAAAGGSAASDALPHILLIDDVPEDIRATLILLKTQPWRISLASDAYQGYQRALALRPDLIVLDVHMPQMDGFSLCRLLREAPATRQTPILFLSSANTSLERLEGLTVGAVDYIPKSCAPEEVLARIKIHLQLTWRAPPALHQRPADPEPQGDEIVLRAAMRLIENQLDDMPSLGILAQKVGTHEKRLSAIFREHLGMTVFAYIRDARLRRGQDLLAESAMSVQDVAELVGFRNACNFTTAFRQRIGMTPSQFRQQTLGTSEIESAGRANANANANANA
D1-35_043782388rcsC_22Sensor histidine kinase RcsCATGCGGCTACTACAGTTTTTCTTGCTGACGATAACGATGTTATCCACAGGCCTGCTGCGCGCGGCGCCTGTGGATATCTGCCGGGCTGACCAACTGGACCTGATGCCCTCGGCGCAGATTTTCGAAGACGCCCAGGCCAATCTGAGCCTGGAACGCGTCGCTCAACTGCCCGAAAACGATTTCAAAGCTGCAACCGCGCACTGGCCGACCCAGGGCTATAGCCGGTCCGCGTTCTGGTTGAAATGGCAGTTCACCAATTCGAGCGCTGAGGCGTGCTCGCGCATGCTGGTCGTCGGGGCGCCGCGCCTGGAAGACATTCGCGTCTATCAGCCGGGGCATGACGCCCATGCCGGCGGCGCCTATCCCTTGGCCGAATGGCCGCAGCCAGCGGCGCGTCAGCCGGCATTCCCGGTAACGTTGGCGGCAGGGCAGAGCACCACGGTGTTGGTCCGGGTGACGAGCAACTTCCAGATGCTGCTTCAGCCGGAACTGTGGTCCGAACCGGCGCTGCTGCGCAGTCAGCAACAGACGTACCTGAGCGACGGGCTCACCCTCGGCATCGTCCTGCTGGTCGTCCCGTTCGGCCTGATCGTCGGCTGGATCCTCCGTTCGCGACTGCTCAGCGTGAACGCCGGCGCGGTCCTCAGCTACATCCTGCTGACATGCATCCTCAACGGCTACCTGATCTACTGGCCGAGCGCGCTGGGTTGGACGCGTGAGCTGCTGACCTGCGCCAGCGCGATCTCTTTCGTCCTGTTCCTGGCCTACTTCCGCGTGCTGCTGCAGGTATCCCAACTGCCCAGGATCATCGCTTGGAGCTATTGGGTGCCGCTGTTGGGCTGCATCTTCGGCCGGCTCTGGTGGCTCAAGGTCGATCCGGTCCAGGGCGCGCTGTTAGTCCAGATAGCCCTGTTCAGTTTTTATGGCGTGCTGCTCGTCACGCTGTTCATGGCCTGGCGCGCACGCCTGAGCTACACCTGGATGGCCTGGCTGGTGCCGGCGCTATTGCTTGGGCAACTGCTGATGCGGATCTTTTTCCCTCAGGAACAATTGCCCTGGCAGTCGCCGCAAAGCAAGTACAGCTTGTCGTCGACCCTGGCCGGCGTGGTCCTGCTGGTGTGTACGTTGCTCATGGAAGTCGCCCGTAGCCGCAACCGCGAGAAGCACGCCCTGTCCACCCTCGAACAACAACGCCAGGCCGAACACGAACGGCTGGAAAGCACCGTGGCGCTGCGCACCTCGCAACTGCGTGAATCGCTGGCGGCCCGCAGCGCGTTGATGGCACGGATCAGCCACGACCTGCGTTCGCCGCTGGTGCGCATCATCGATTACGCACGCCTGCTGCACGCCGGGCCCAACCGCGACTATCAAGCGACGATCGAGCGCAACGCCCGCCAGCAACTGGAGCTGATCGACGAAATGCTCGAGTTTTCCCGTGGCGAGCTGGAGCAGATGCAACTGACCCTCGCACCGGGCTACCTGTACGGCTTTCTCCACGAAATCGCAGATGAGGCGGGTTTCCTCGCCGCGCGCCAGGGCAATACTTTCGAGGCGAACTTGGCCGATGACCTGCCGCCGCTGGTGGAAGCCGACTTCAAACGCCTTCGGCAGGTATTGATGAACCTGCTGGCGAACGCGGCGAAATTCACCCGCGATGGCCAGATCCGCTTCGAAGTGAGCGCAGGTCCAGGCGCCAGCGCCGGCACCGTGGAACTGCACTTCAACGTGATCGACAGCGGCATCGGCATCGACCCGCAGGAGTTCGAACAACTGCTGCAACCGTTCCGCCGCGGCCGCAATGCGCAGCGCTACGAAGGCAGCGGGCTCGGCCTGTCCATCGTCACGCAATTGCTCGAACGCATGGACAGTCGCCTCGAACCCCAGGCCACCGGGCAGGGCAGCCACTTCAGTTTTCGCCTGCAACTCAAATGCGCCGAGGAACACGACCTCGAAAACGGCATCGTCGACAACAACGCCGCGCCGTTTGATGGCCAGGGCAAGCACGTGCTGCTGGTGGATGACATCGAGCAGAACAGCGAGTGGCTCTACGATCTGCTGGCCGGCTACGGCTTTGACGTGAGCATCGCGACCAACGGCGAAGCGGCCTTGGCCTGCCTGGCGGAACAACCGGTCGACCTGCTGATCAGCGACCAGATGATGCCCGGCATGGACGGTTGGGAACTGCTGCGACAAGTGCGCAAGCGCTGGCGCCATCTGCCCGTGATGCTTTATTCGGCGGTGCCGCCACGCAGGCCGCAAGGTTATCCAGAGGATCTGAAGTTCAATGCGGTATTGCTCAAACCCGCCGACAGCCGCGAACTGCTGGCGTGGGTCAAGGCACTGGCCTGCCCGGACACGGCGCGGCGCGCGTTGGCTCGGGAGTTCTAGMRLLQFFLLTITMLSTGLLRAAPVDICRADQLDLMPSAQIFEDAQANLSLERVAQLPENDFKAATAHWPTQGYSRSAFWLKWQFTNSSAEACSRMLVVGAPRLEDIRVYQPGHDAHAGGAYPLAEWPQPAARQPAFPVTLAAGQSTTVLVRVTSNFQMLLQPELWSEPALLRSQQQTYLSDGLTLGIVLLVVPFGLIVGWILRSRLLSVNAGAVLSYILLTCILNGYLIYWPSALGWTRELLTCASAISFVLFLAYFRVLLQVSQLPRIIAWSYWVPLLGCIFGRLWWLKVDPVQGALLVQIALFSFYGVLLVTLFMAWRARLSYTWMAWLVPALLLGQLLMRIFFPQEQLPWQSPQSKYSLSSTLAGVVLLVCTLLMEVARSRNREKHALSTLEQQRQAEHERLESTVALRTSQLRESLAARSALMARISHDLRSPLVRIIDYARLLHAGPNRDYQATIERNARQQLELIDEMLEFSRGELEQMQLTLAPGYLYGFLHEIADEAGFLAARQGNTFEANLADDLPPLVEADFKRLRQVLMNLLANAAKFTRDGQIRFEVSAGPGASAGTVELHFNVIDSGIGIDPQEFEQLLQPFRRGRNAQRYEGSGLGLSIVTQLLERMDSRLEPQATGQGSHFSFRLQLKCAEEHDLENGIVDNNAAPFDGQGKHVLLVDDIEQNSEWLYDLLAGYGFDVSIATNGEAALACLAEQPVDLLISDQMMPGMDGWELLRQVRKRWRHLPVMLYSAVPPRRPQGYPEDLKFNAVLLKPADSRELLAWVKALACPDTARRALAREFPGPT0025890_174DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-Gac|Rsm_PATHWAY,PGPT0025890-ladF-K20971NANA
D1-35_043792352fyuACOG1629Pesticin receptorATGCCGGGTTTGAGTTACCGGTTGCTCCTGATCGGCAGTCTTTCGGCATGGCCCTGGGCATCGGTGACTGCCGACGAAGAGTCGCCCAGCGCCCTCACGCTCGACGAAACCACGGTGACCGCCCGACGCCGCGAAGAAGACCTGCAAGACGTGCCCATCCCGATCAACGTCCTCTACGGCGAGCAACTCGACGAAGCCGGCCTGCACTCGCTTCGAGACATTCAACAGCGCGTGCCCGGCCTGATCGTCTCCGGCCATGACGCCCGCTACGCCGGTTTCGGCCTGCGCGGCTTCGGCGCTACCGCCTACAACGATGGCCTGGAAGGCAGCGTCGGCACCTATGTCGATGGCGTCTACCAGGCGCGCCAGGGCATGGCCTTCACCGAGCTGATGGACATCGAGCGCATCGAAGTCCTGCGCGGGCCGCAAGGCACTTTGTTCGGCAAGAACACCACCGCCGGCGCCCTGAACATCATCACCCGCCAGCCGACCTTCCAGCCCGAAGCCAACCTGGAAGCCAGCTATGGCGAGCGCGGTTTGCGTGAGTTTCGCGGGACGATTTCCGGGCCGCTGCAGGACGACGTGCTGGCCGGCCGACTCAACGTTTTCGACAGCGCCACCGAGGGCAGCGTCGAAAACCTGCAAGACGGCAGCCGCCTCGGCGATGCCGACAGCCAAGGCCTGCGCGGCCAACTGTTGTGGACGCCGAACACCGATTTCAGTGCTCGCCTGATCGCCGACTACGCCGAGCAAAACGAAGCCGGCAACGTCCTGTTGGCCAATCACTACAGCCAGCAAACCCGCAAGCGCGCCCAGTTCGTCGGTTATCCGCTGGCGGAGCCCGACCCTTACAAACGCGAGACCCGCATCGACGCGCCGGGCCGTCCGCGAACCCTGCAGAACGGCGTGTCACTGGAATTGAATTGGGACCTCGACGAGGCGATGCGCTTCACCAGCATCACCGCTTATCGCGACTGGGACTACCGCGCGACCCGCGACGGCGACAGCACCGCGCTGGCGGTGGCCCAGTCCGAAACCGAGCTCGGCCATCGGCAGTTCAGCCAGGAATGGCGCCTGTCCGGCACGGCCGGTTCGTCCGTCGACTATGTCGCCGGCCTCTACTATCTGCGCCAGCAGCTTGACCGTGAGATCGATGCCGAATTCGGCAAGGACGCCGCGCCCTGGTTCGTTGGCGATCAACTCGACCAACTGAAAAAACTCTTCGGCATCAATTTCACCGATCCGAGGCAGGTGCCTTCGATGCTGCTCAATGGCGCCCGACAACATTTCGACGGCGAGCAGAAGGGCGACAGCCGAGCGATTTTCGGCCAGCTCTCCTGGCGCCCGATCGACCCGCTGGAACTCACCGGCGGCCTGCGCTACAGCCATGAGCGCAAGGACGGCTGGATCTCCCGCGACGTCAGCAACCTCGCCCCGCTGACCGGCTTGCCGCCGGTGTTCCAGGCTGGTGGACAATTGCTGCGCGACATCGCCCTCGGCCGTGGTTATTACCGCGAGGACTCGATCGAAGAACACAACGTCTCCAGCCTCGCCAGCGCCAGCTACCGTTTCAGCGAAGCGGTGATGGGCTACGTCAGCTGGTCGCGGGGCTACAAGGCCGGCGGCATCAACTTCGACGTGGTCGGCCCGTTCACCGCGCCGACCTTCGAGCCGGAGCGGGCCACGTCCCTGGAACTGGGCGTGAAAACGCGCTTCTGGAACGAGCGCGCGTTGCTCGACCTTGCCGTCTACCAGACCGACGTCGACAACTACCAGGCGCTCACCTACAGCCCGCCGACCTCGCTGTTCGCGCCGCCGCTGCGGGACAACCTGATCAACGTCGGCAAAGTCCGCCTGCGCGGCATCGAACTGGATTCCGCCTGGCAACTCACCTCGCAACTCACCGGGCGCCTCGGCCTGGCCTGGAGCGATGCGCGCTACCGCAGCTTCCCCAACGCGCCGTGCCCGCCGGCCTCGGGCCAATGGACCTGCGACCTCAGCGGCGACCGCCTCTACAACGCGCCGGAATGGAACCTCAGCAGCGGCCTCGACCACAGCCATCCGCTGCCCTATGGATTGGAAGCTTTCAGCGGCATCGACTACAGCTTTCGCACCGGCTACTACGGCACCCTCGAAGGTGGCGAAGGCAGCTATCAACCGAGCTACGGCCTGACCAACCTGCGCCTCGGCCTGCGCAGCCAGGACCGCGCCTGGGAAGTGGAAGGCTGGATGCGCAACGTCTTCGACCGTAACTACATCACCGCCGTGTATTCACTGCTCGGCGCCGGTGACTACGGCGTCATGACCGGCAGCGAACGCACCCTCGGCACCACCGTCAGACTTCGCTATTGAMPGLSYRLLLIGSLSAWPWASVTADEESPSALTLDETTVTARRREEDLQDVPIPINVLYGEQLDEAGLHSLRDIQQRVPGLIVSGHDARYAGFGLRGFGATAYNDGLEGSVGTYVDGVYQARQGMAFTELMDIERIEVLRGPQGTLFGKNTTAGALNIITRQPTFQPEANLEASYGERGLREFRGTISGPLQDDVLAGRLNVFDSATEGSVENLQDGSRLGDADSQGLRGQLLWTPNTDFSARLIADYAEQNEAGNVLLANHYSQQTRKRAQFVGYPLAEPDPYKRETRIDAPGRPRTLQNGVSLELNWDLDEAMRFTSITAYRDWDYRATRDGDSTALAVAQSETELGHRQFSQEWRLSGTAGSSVDYVAGLYYLRQQLDREIDAEFGKDAAPWFVGDQLDQLKKLFGINFTDPRQVPSMLLNGARQHFDGEQKGDSRAIFGQLSWRPIDPLELTGGLRYSHERKDGWISRDVSNLAPLTGLPPVFQAGGQLLRDIALGRGYYREDSIEEHNVSSLASASYRFSEAVMGYVSWSRGYKAGGINFDVVGPFTAPTFEPERATSLELGVKTRFWNERALLDLAVYQTDVDNYQALTYSPPTSLFAPPLRDNLINVGKVRLRGIELDSAWQLTSQLTGRLGLAWSDARYRSFPNAPCPPASGQWTCDLSGDRLYNAPEWNLSSGLDHSHPLPYGLEAFSGIDYSFRTGYYGTLEGGEGSYQPSYGLTNLRLGLRSQDRAWEVEGWMRNVFDRNYITAVYSLLGAGDYGVMTGSERTLGTTVRLRYPGPT0003790_12758DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014NANA
D1-35_043801086hypothetical proteinATGAACCTACGCACTTTCATTCGCAGCTATTGCCTCAACTCCAGGCTCGCTACGAATGCGCTGACCCGCCTGCATAAATCCCTTTCTTCCCTGGCCGCCTATCTGGCGCAGCAGGGTTTTGATTCCAGGACTTGGCCCGCGCCCCGTGACGAAGGCGCGCTGGACCGTTACCTCAGCGACGTTTGCCCGGAGCTGGCCGCGACGGTGTTCAGCCATGCCCGCGACGGGGTGATCATGGTCGATGCGTTCGGTCGGATCATCGGCGTGAACGAGGCATTTACGCGGCTTACCGGTTATGGGCAGGACGAGGTGCTGGGGCGGGAGTTGAATTCTCATCGCATGGTGCGGCGGCTCGCGGCGTTTTATGCGCCGATGAAAAATGCGCTGGATTTCCACGGGCATTGGTCCGGTGAGATTCAAAGCAGCCACAAGGATGGCCGGGAGATGACGTCGCGGATCAGTATCAGTGCGGTGCATGACCGTCACGGCAACGTTCAGCACTACGTGGCGCTGTGCAGCGACATGACGCAGATGAAGCAGCGCTTGCAGTTGCTGGAGCGGGATGCGCGGTATGACGCGCTCACGCAGTTACCCAATCGCTTGTTGCTGGCCGAGCGGATGCGTCAGGCGCTGGGCAAGGCGCGCCTGCATCAGCAGAAGGTGGCGATCGCGTTTATCGACCTGGATGGGTTCAAGGCACTGAACGACAGTTATGGCCATGACTGGGGCGATCGGGTGTTGCAGATTGTCGCGGCGCGGATCAACGCGACGCTGCGTGAAGGCGACACGTTGGCGCGCCTCGGCGGTGATGAGTTTGTCGCCGGGCTGGTGGGCTTGCGGGAGGTGGAGGACAGCGAGCCGTTGCTCAAGCGGATGCTGGCGGCGGCGAATGCGCCGATCCTGATTGGTGCGCAGACGGTGGAGATTGCCGCGAGTATCGGCGTGGCGTTTTACCCTGAGCATGGGCTGGAGGTCGATGCGCTGATCAGCAAGGCGGATCAGGCGATGTACCTGTCGAAGAAGGCCGGCGGCAATCGTCTGGCGTTCTGCCCGACGCGGTTCATTTCGGTCAATAGCGAAGTCTGAMNLRTFIRSYCLNSRLATNALTRLHKSLSSLAAYLAQQGFDSRTWPAPRDEGALDRYLSDVCPELAATVFSHARDGVIMVDAFGRIIGVNEAFTRLTGYGQDEVLGRELNSHRMVRRLAAFYAPMKNALDFHGHWSGEIQSSHKDGREMTSRISISAVHDRHGNVQHYVALCSDMTQMKQRLQLLERDARYDALTQLPNRLLLAERMRQALGKARLHQQKVAIAFIDLDGFKALNDSYGHDWGDRVLQIVAARINATLREGDTLARLGGDEFVAGLVGLREVEDSEPLLKRMLAAANAPILIGAQTVEIAASIGVAFYPEHGLEVDALISKADQAMYLSKKAGGNRLAFCPTRFISVNSEVPGPT0026010_3816DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0026010-mucR-K21023NANA
D1-35_04381282rof_1COG4568Protein rofATGGATACCTATAAACCGCTGCACTGCGACCTGCATGACTATCTGGAAATCGCTTGCCTGTGCGGCTACATGCTGGATATCGAGCTGATCGACGGCCAGCACCTGACGGCCCGCGCGATCACCACACGAACCGCCAGCACACGGGAGGAATTTCTCGAAGTCGAAACCGCTGACGGTCGCCATGAGATTCGCCTCGATCACTTGTTGGCGATCACACCGCTGGATAAGCACGCCAGGTTTGGCCGGGTAGTGCTGGCGGCGGGTGGTCACGCCGCCCTTTGAMDTYKPLHCDLHDYLEIACLCGYMLDIELIDGQHLTARAITTRTASTREEFLEVETADGRHEIRLDHLLAITPLDKHARFGRVVLAAGGHAALNANANANANA
D1-35_04382294rof_2COG4568Protein rofATGGATACCTACAAACCGCTGCACTGCGACCTGCATGACTACCTGGAAATCGCCTGCCTGTGCGGCTACACGCTGGACATCGAGCTGACTGACGGCCAATGCCTGACCGCCCGCGCGATCACCACGCGGACCGCCTGCACGGGGGAGGAGTTTCTCGAAGTTGAAACTGTTGATGTCCGTCAGGAGATCCGCCTCGATCGCTTGCTGGCGATTACGCCGCTGAACAGCAACGCCAGGTTCGGCCGAGTTGTGCTGGCGGTGGGTGGACAGGAAAGTCGTTCGTATGATGGATAAMDTYKPLHCDLHDYLEIACLCGYTLDIELTDGQCLTARAITTRTACTGEEFLEVETVDVRQEIRLDRLLAITPLNSNARFGRVVLAVGGQESRSYDGNANANANANA
D1-35_04383261hypothetical proteinATGACCATCAAAGTCTATGACACACATGTCCGCACCCAAAGCGGGCGATACCTGCATTTTGACGTGCTGATCGACCGCAACGACCTGGATTTTGCCCAATCCTGCGCGCGACGTTTCCTGGCCGAACAGGGCATCGAAGATCAGGACGTTACCTTGAACGACTGCCGTTTCTGCCACGTCGAGCCGAGCAACCCCGAGATAGTCGAGGCCATCAACCGGCAGGGCTTTTTCATTCTCAAGCTGCAAGGCTGCGAGGCGTGAMTIKVYDTHVRTQSGRYLHFDVLIDRNDLDFAQSCARRFLAEQGIEDQDVTLNDCRFCHVEPSNPEIVEAINRQGFFILKLQGCEANANANANANA
D1-35_04384888dapA_54-hydroxy-tetrahydrodipicolinate synthaseATGTCTACCCCGAACATCCACGGCATCATCGGTTACACCATCACCCCTTTCTCTGCCGACGGCCAGGGCTTGGACCTGGACGCCTTGGGCAGGTCCATCGACCGCCTGATCGAAAGCGGCGTGCATGCTATCGCACCCTTGGGCAGCACCGGCGAAGGGGCCTACCTCAGCGATGCGGAATGGGACCAGGTCAGCGAGTTCAGCATCGCCCACGTCGCCGGCCGAGTGCCGACCGTGGTCAGCGTATCTGACCTGACCACCGCCAAAGCAGTGCGCCGCGCGCGTTTTGCCCAGGATCACGGCGCCGATGTGGTGATGGTTTTGCCAGCCTCTTACTGGAAATTGAGTGAGGCGCAGATCCTCACGCATTATCAGACCATCGGCGCCAGCATCGACGTGCCCATCATGCTCTACAACAACCCGGCCACCAGCGGCATCGACATGTCCGTGGAGCTGATCCTGCGGATTTTCAACGCGGTGGATAACGTCACCATGGTCAAGGAGAGCACCGGCGATATCCAGCGCATGCACCAGCTGCATCTGCTGGGCGAAGGCCATGTACCGTTCTACAACGGCTGCAATCCACTGGCGCTGGAAGCCTTCGCGGCTGGCGCCAGAGGCTGGTGCACCGCTGCGCCGAACCTCATCCCGCAGCTCAACCTCGACCTGTACGAAGCCGTGCTGGCCAACGACCTGAACAAAGCCCGGGCGCTGTTCTACCGACAATTGCCACTGCTGGACTTCATTCTCAAAGGAGGCTTGCCCGCCACCATCAAGGCCGGTTTGCGCACCCTCGGCCTGGAAGTCGGCGACCCGCGCTTGCCGGTCTTCGCGCTCGACGATGCGGGCAACAGCCGATTGAACGCGATGCTGAACCAGCTGCGCTGAMSTPNIHGIIGYTITPFSADGQGLDLDALGRSIDRLIESGVHAIAPLGSTGEGAYLSDAEWDQVSEFSIAHVAGRVPTVVSVSDLTTAKAVRRARFAQDHGADVVMVLPASYWKLSEAQILTHYQTIGASIDVPIMLYNNPATSGIDMSVELILRIFNAVDNVTMVKESTGDIQRMHQLHLLGEGHVPFYNGCNPLALEAFAAGARGWCTAAPNLIPQLNLDLYEAVLANDLNKARALFYRQLPLLDFILKGGLPATIKAGLRTLGLEVGDPRLPVFALDDAGNSRLNAMLNQLRPGPT0002080_5830DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISMCE-BACTERIAL_FITNESS-RHIZOPINE_BIOSYNTHESIS,PGPT0002080-dapA|mosA-K01714NANA
D1-35_04385783cloR4-hydroxy-3-prenylphenylpyruvate oxygenase/4-hydroxy-3-prenylbenzoate synthaseATGAGCAAGACCCTGGCGACACCAAAGGACCAATTGGTCCAGCATGCTGTTAACCAGATGCAGAAATCACTGCCGGATAATACGTGGACTGTACGACAAAAGCTGGCTCTGACCTGCCGCATCCTGTTCGAGAACGGCCACGACTCAGGCCTCGCCGGGCAGATCACCGCGCGCGGGCCGCAACCCGGCACTTACTACACCCAACAATTGGGTTTGGGATTCGACGAGATTACCGCCGGCAACTTGCTGTTGATCAACGAGGACCTGGAGGTGCTGGAAGGCCATGGCATACCCAACCCGGCGAACCGCTTCCACAGCTGGGTCTACCGCGCCCGGCCGGATGTGAATTGCATCATCCACACCCACCCGACCCACATCGCCGCGCTGTCGATGTTGGAGGTCCCGTTGCAGATTTCCCACATGGACCTCTGCCCGCTGTACGAAGACTGTGCGTTCCTGGAAGGCTGGCCGGGCGTGCCGGTGGGTAACGAGGAAGGCGACTTGATCGCCGGCGCCCTGGGCGACAAACGCGCCATCCTGCTTTCCCACCATGGCCAGTTGTCGACCGGCGAGACCGTGGAAGAAGCCTGCAACATCGCCCAACTGATCGAGCGCGCGGCGAAACTGCAACTGCTCGCCATGGCCGCCGGCGAGGTGAAACCGATCCTGCCGCACCTGGGTCGCGAAGCCCACGACTGGATCGCCCGCCCCAAGCGTCACGCCGCCGCCTTCAACTACTACGCCCGGCAGAACTTGCGCCAACACGCCGATTGCCTGAACTGAMSKTLATPKDQLVQHAVNQMQKSLPDNTWTVRQKLALTCRILFENGHDSGLAGQITARGPQPGTYYTQQLGLGFDEITAGNLLLINEDLEVLEGHGIPNPANRFHSWVYRARPDVNCIIHTHPTHIAALSMLEVPLQISHMDLCPLYEDCAFLEGWPGVPVGNEEGDLIAGALGDKRAILLSHHGQLSTGETVEEACNIAQLIERAAKLQLLAMAAGEVKPILPHLGREAHDWIARPKRHAAAFNYYARQNLRQHADCLNPGPT0017430_319DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_FUCOSE_DEGRADATION,PGPT0017430-fucA-K01628NANA
D1-35_04386552sutR_3COG1396HTH-type transcriptional regulator SutRATGTCCATTCGCTTGAAACTGCTCAGAAAAAAACTCGGCGTGACGCTGGACGTCCTGGCCGAAAAAACCGGGATGACCAAGAGCTACCTGTCCAAGGTGGAACGGGGTCTGAGCACGCCCTCCATCGCCACGGCGCTCAAGCTGTCCAAGGCGTTGAACGTGAAAGTCGAGGAATTGTTTTCCGAGGAAAACGTCCCGCTCGACAGCTACAGCCTGGTGCGGTGTGAAGATCGCCAATCGCTTGCGGCGAACCCTGGCAGCTCTGAATACGCGGTGTTGGCCCATCAGGTTTCCGAGCGAACCTTGCTGCCCTTCATCCTCTATCCCCCGGCCGAATTCGCGGCGCATCATGCGTTCAAGGAACACACGGGTGAGGAGTTCCTGTTTGTTCACGAAGGCCAGGTGGAAGTGGACTTCATGAACGAGCGCGTGCTGCTGAATCGCGGTGACGCCTTGCATTTCAATGCCCAGAAACCCCATCGCCTGCGTTCGGTTGGCGACGTCCAGGCCCAATTGCTGGTTGTTGTGCACAGTGCCGAAGCGGCGGAGTAGMSIRLKLLRKKLGVTLDVLAEKTGMTKSYLSKVERGLSTPSIATALKLSKALNVKVEELFSEENVPLDSYSLVRCEDRQSLAANPGSSEYAVLAHQVSERTLLPFILYPPAEFAAHHAFKEHTGEEFLFVHEGQVEVDFMNERVLLNRGDALHFNAQKPHRLRSVGDVQAQLLVVVHSAEAAENANANANANA
D1-35_04387534hypothetical proteinATGACTCGTATCAACATTCAGCCACAACAAGCGCCCGCCGCCAGCCAACCAATGCTGGCCCAGATTCAACAGGCCTTTGGCGCAACGCCCAACATGTTCAAGGGCGTAGCCAATTCTCCGGCCGCGCTGCAAAGCATGTGGGCGGCCTTCGGCGCCCTGGGCCAAGGCACGTTGGGTGCCCGGCTTGGCGAGCAGATTGCGGTAGCCGTGGCCAACCGCAACCGCTGTGAATACTGCCTTGCCGCGCACACGGCCCTGGGCCAAAAGGCCGGTGTGTCTGCGACCGACATGGCCGCCGCCCAGCGCGGAGAATCCAGCGACCCCAAGACGGCAGCGGCCCTGGCGTTCGCCCTGATAGTGGTCGAGCAGCGCGCACAGGTGACTGACGCCGACGTGCAGCGCCTGCGGGACAACGGTTTTGGCGATGAACAGATTGTCGAGATCATCGCTCATGTCGCGTTGAACCTGTTCACCAACTACATCAACGTCGCGTTGGACATTCCTGTCGACTTTCCCAAGGTCGCCCTGAAATAAMTRINIQPQQAPAASQPMLAQIQQAFGATPNMFKGVANSPAALQSMWAAFGALGQGTLGARLGEQIAVAVANRNRCEYCLAAHTALGQKAGVSATDMAAAQRGESSDPKTAAALAFALIVVEQRAQVTDADVQRLRDNGFGDEQIVEIIAHVALNLFTNYINVALDIPVDFPKVALKNANANANANA
D1-35_04388753hypothetical proteinATGAAACTCTCTCGATCTCCCCTCTTTTGCGCTTCGTTGTTGCTTGGCTTGAGCGCCAGCGTCAGCGCGCACGAGGCCGCACATCAAGACGGCATAACCAGCAAACCGGCGAAGGCTGTGAAGGCGCCTTTCGATATCGTCCACACGAGCATCACCACTGAAGGGAATGTGGCGATTTTCCACATGGCCGTTTCCGGCAAGGCCGGCACCGTACGCCCTGCCGCCAGGGGCAAGCTGGCCGGCAGCAGCGTGTTCTCGTATGTCTGGCCAACCAGCCTGGACCCTTCGGTGATCGGTTTCGAGCCGAAGTCCGGAATCCTGGCCTTCGCCGTCACGTCACACCCCGACTTCGACGATACCCCGCTGTTCGACGAGAACCGCGACGGGCGCCTGGATAACGATGGTGATCTTTGGCATTCGCATTGGGTGGTGCTGCAGCCCGACCCGGCCTGTGGGAAAGATGCGCTGAAAGTCGTCGACATTCCCGCAGGGGCCAAGCCTCGCGTGCCCAAGACCTGGCCAGGGTTGCCGATCCTGATCGACAGCCCGGGGTGGACCCCGACGATCAATCAGAAAACCGTCGAGGTGCGCGTGCCGTTTGACGACATCGGCCCGGTCGAGGCCGGCGCGTTCGATGGCGTCACGGCCGCCCTGCGCGTGAACGCGAGCGTGCACAACCCGCTGCTGTGTGTCGCCGACGTGTTCAAGGTGGCCTCGGGCGACCTGTCCCTGCCCGGCAAGGTCAAGCACTGAMKLSRSPLFCASLLLGLSASVSAHEAAHQDGITSKPAKAVKAPFDIVHTSITTEGNVAIFHMAVSGKAGTVRPAARGKLAGSSVFSYVWPTSLDPSVIGFEPKSGILAFAVTSHPDFDDTPLFDENRDGRLDNDGDLWHSHWVVLQPDPACGKDALKVVDIPAGAKPRVPKTWPGLPILIDSPGWTPTINQKTVEVRVPFDDIGPVEAGAFDGVTAALRVNASVHNPLLCVADVFKVASGDLSLPGKVKHNANANANANA
D1-35_04389885rclR_2COG2207RCS-specific HTH-type transcriptional activator RclRATGCAAACACTTCCAACCCTGGACCGGCTCTCCGGCATCCTCGACCACTTCCGCGTGCAAGCGCAGTTGCACCACACCGGCGCCCTGTGTGGTGTAAATCGCTTTGATGCCGGCGAGGGGTTCGGCTACCTGCACGTGCTTCGTCGCGGTCAGCTGAAAGTCAGCCACCCCGGTGGGCAAGGCTTGCCCTCGATGAGCTTCGAAGAACCGTCGCTGCTGTTTTATCCCTGCCCGATCACCCATCAATTCCATAACTCCCCGGCGGAAGGCTCCGACTTCACCTGTGCGCGACTGATGTTCGAGGGCGGCGCACGCAACCCCCTGGCGCGGGCACTGCCGCCCTTGATCGCGTTGCCGCTGGCCCAGGTACCGGGCCTGCACGCCGCGCTGGAGCTGCTGTTCGCCGAGACCGACCACGTGCGCTGCGGCCAGCGAATGCTCGCCGACCGATTGTTCGAAGTCGTGGTGCTGCAACTGCTGCGCTGGCTGCTTGATCACCAGCAGGAAGCCGGTATCCGCCCGGGTCTCATCGCCGGGCTGTCAAACCCGCGACTGGCGCGAGTGCTCGTCGCCATTCACGAAGACCCGGGCGCCGCGTGGACGCTGGAGCGCATGGCCGAACAGGCCTGCCTGTCGCGCACCGCATTCGCCAACACGTTCCGCGACATCGTCGGCCAAACCCCCGCCGACTACCTCACCACCTGGCGCATCGCCCTGGCCCAGAGCCGCTTGCGCCAAGGCGAATCCATCAAGAGCCTGACCGAAGAGCTTGGCTACACCACCCCATCGGCACTTTCACGGGCGTTCACAGCCAAGGTCGGAGTGTCCCCTCGGGATTGGTTGGCGCAGATAGCCACAGGCCAGAAAGCTGGTTCTGGCTTATGAMQTLPTLDRLSGILDHFRVQAQLHHTGALCGVNRFDAGEGFGYLHVLRRGQLKVSHPGGQGLPSMSFEEPSLLFYPCPITHQFHNSPAEGSDFTCARLMFEGGARNPLARALPPLIALPLAQVPGLHAALELLFAETDHVRCGQRMLADRLFEVVVLQLLRWLLDHQQEAGIRPGLIAGLSNPRLARVLVAIHEDPGAAWTLERMAEQACLSRTAFANTFRDIVGQTPADYLTTWRIALAQSRLRQGESIKSLTEELGYTTPSALSRAFTAKVGVSPRDWLAQIATGQKAGSGLNANANANANA
D1-35_04391360hypothetical proteinATGGTCAAAATTACACCGAACCCTCCAGCGCCAGACGATTCCGTATCCCGCGCTCAATCCGCCCGCAACAAAAAACTCGAAGACGCCACCAACCGCGCGTTGAATTTCTACCTGAAACCCAAGCCCGAGGGTGAAGCGCCCGACAACGCCAGCACGCTGTTTCGTATTGATCCTGATGTTGATAGCGAGTGCTTGCTCGCGAACCTGAGCGAAAGCCTCGCTTCGGCGAATGCGATGATCAGTGATTTGGCATTTGATCTGGAAGGTTCCCGGCGGCATGTTGCGTTGGGGATTTTGCAATTGATTGAGTTGAGCGAGCTGTTGGCGAATCGCGCGTTGGATATTGTTGAGGCGCGGTAGMVKITPNPPAPDDSVSRAQSARNKKLEDATNRALNFYLKPKPEGEAPDNASTLFRIDPDVDSECLLANLSESLASANAMISDLAFDLEGSRRHVALGILQLIELSELLANRALDIVEARNANANANANA
D1-35_04392234hypothetical proteinATGAACAAATATGGCCTATATGCACTGGCGTACGCAGTGTTCCTGTTGTTGTTTTTCTATATGAAAGCTTACGGCCTCAGGAAATGGCTAGGCATTGCTCTAATCGTTCTAGGGTTTGCGAGTATTTTTGCGCTGCCGTCTCTGATCTCCGGTATTGACCTCGGAATTGTCTCTACCAGTGCAATTGGCGTCGGAGCGGCACTGTTTTTCAGCAGGGCCAGGTATACGGTGTGAMNKYGLYALAYAVFLLLFFYMKAYGLRKWLGIALIVLGFASIFALPSLISGIDLGIVSTSAIGVGAALFFSRARYTVNANANANANA
D1-35_04393696hypothetical proteinATGAAAAAGCTGTTTCTCGCGTTACTTTCGGTCGCCCTGCTTTCCGGATGTGTCACCAAGTCGTTGAGTGTCGAAGACCGCCATCAGATCAAAACCATCAAGATCCTTCCGGTGTACTTTGCGGTGCAGAACTTCAAGTACACCAGCATGACCCAGGCCTGGGGAGCAGGCTTGGGTGCCGGAGCAGGTGCCGCAACCGGAATGGCGGCCGGAGCATCCAGCTCCGCCACCAGCGCATTGACCGGCGCCGGCTCGGTCGCGGGCACCAAGGCGGCAGACGGCGCGACGGTGGATATTTCCCAAGCGATTCTGAACAACATGCAGGCCCACGGTATCGATGTGGGCAAGCTGGTGCGTGAAAGCTTTGAAAGGCGCATCAAGCAAGAAGGGCTGTTCACCCTTGTCGCCGAAGGCGAGAAAGCGGACGCCGACGTTGAGATCATGGTCATGCAGTGGGGGCTGAGCCTGAAAAACTACAGCACCGTGCTTTACCCGGTCATCGGCGTGAACGGATTAATGAAGCGCGGCGGTACATCGGTTTGGCGCAACTTCAATACCATATCGCCCTTCAATGAAAGCAATACCCTCGCCTACACCCCTGAACAGTACGCCACCGATCCCGAAGTACTGCGCGCGGCATTTTCCCGGGTGTCCGATCTGGCAGTCGGCAAGCTGATTGAAGACTTGAAACAATAAMKKLFLALLSVALLSGCVTKSLSVEDRHQIKTIKILPVYFAVQNFKYTSMTQAWGAGLGAGAGAATGMAAGASSSATSALTGAGSVAGTKAADGATVDISQAILNNMQAHGIDVGKLVRESFERRIKQEGLFTLVAEGEKADADVEIMVMQWGLSLKNYSTVLYPVIGVNGLMKRGGTSVWRNFNTISPFNESNTLAYTPEQYATDPEVLRAAFSRVSDLAVGKLIEDLKQNANANANANA
D1-35_04395360hypothetical proteinATGGCAAAAGTCACCCCAAACCCACCTGCGGCAGACGAATCCGTATCCCGCGCCGAATCCGCCCGCAACAAGAAACTCGAAGACGCCACCAACCGTGCGTTGAATTTCTACCTGAAACCCAAGCCTGAGGGCGAAACGTCCGAGAATTCCAGCACGCTGTTTCGTATTGATCCTGATGTGGATACGGAGTGTTTGCTTGCGAATCTGAGCGAGAGCCTGGCTTCGGCGAATGCGATGATCAGTGATTTGGCTTTTGATCTGGAAGGGTCAAGGCGGCATGTTGCGTTGGGGATTTTGCAGGTGATCGAGTTGAGTGAGCTGTTGGCGAATCGGGCTTTGGATATTGTTGAGGGGAGATAAMAKVTPNPPAADESVSRAESARNKKLEDATNRALNFYLKPKPEGETSENSSTLFRIDPDVDTECLLANLSESLASANAMISDLAFDLEGSRRHVALGILQVIELSELLANRALDIVEGRNANANANANA
D1-35_04396732hypothetical proteinATGAGAACAGTTCTGATGCTGATCGGTTTGGTGTTTGCTACTCAGACGGTTGCAGACGATTGGGGAAGCTTCTCTGACCCGTTGGAGGTCGAGTTTTTACCGACCAAGCATGACGCTAGGTTACTGCGAGATTTCACCTACACTGGGCCAAGCCCCCAGAGACGCTTTTGGATCGCACCCAAAAATACAGTTTCAGATGGGGCTTCGATTCCCAAAGTTGCTTGGTCCGTTATTGGCGGCCCATTTGATGGCCAATATCGTAAGGCTGCGATAATTCATGACGTGGCTTGCGTTGAAAAGACACGAAGCTGGAAGGAAACGCATCTGGCCTTTTACACTGCGATGAGAGCAGCCGGCGTAGATGCTACGACCGCGAAAATTATGTATGCGGCGGTTTACCACTTTGGCCCTCGCTGGGCAGAGCCAAAGCGAGTTCTATTGCCACGCACCAATCTAAAGCTAGTTTCGTATTCCCTTGATGAGATCAATGCTGGTCTTCCGCCAGGAAAGCAAGCTGTGCTTCTGGATGAGGGGCGCGTGATCGATAGAACAATATCAACTGGTCTGTTTGAAACGGAACAGCGTCAGGAGGTTGTTGGCGCAGTAATAGAGGTGCGTGAGCTACAGCCTGATCTATCCGTAGAGGCTTTCGAACAGATGTCACGCAAGATAAAAGAAAAGGATCTGAGTTTGTCGGAAATTGAGATGCTGTCAGCAACGACGGAAAAGTGAMRTVLMLIGLVFATQTVADDWGSFSDPLEVEFLPTKHDARLLRDFTYTGPSPQRRFWIAPKNTVSDGASIPKVAWSVIGGPFDGQYRKAAIIHDVACVEKTRSWKETHLAFYTAMRAAGVDATTAKIMYAAVYHFGPRWAEPKRVLLPRTNLKLVSYSLDEINAGLPPGKQAVLLDEGRVIDRTISTGLFETEQRQEVVGAVIEVRELQPDLSVEAFEQMSRKIKEKDLSLSEIEMLSATTEKNANANANANA
D1-35_04397339hypothetical proteinATGTACTCCTGCATCCTGACTAGGCATTACGATGGTCATGTCCGACAACGTCAGCTACGGCAAATTCTCTCTGTGCCTGAGCCTTGGGTTGTCCCGTTCGTGGTGCAGCTAACCGGCGAGTACGTAATCGAAATACTCGATACCTGCGACGCTCACCTGCAAGCGCTCGATCCGGACCTGTACGGAGCGTTCATCAGGGGCAACCCAGAGTACTTCAAAGCCCTACAGGATCGGATGATCAGTTACTGGGATTGCTACTACCGACACCTGTATAGGCACAGGCAAGACTATGTGGGGTTTCGGTTATTCGAGCACTTTCGTAAACTCGCAAAGGGATAGMYSCILTRHYDGHVRQRQLRQILSVPEPWVVPFVVQLTGEYVIEILDTCDAHLQALDPDLYGAFIRGNPEYFKALQDRMISYWDCYYRHLYRHRQDYVGFRLFEHFRKLAKGNANANANANA
D1-35_04398393IS66 family transposase ISPa75GTGCTTTATGACTTCAGTCCCAGCCGTGCAGGGGAGCATGCGCGCAACTTTCTTGGGCAGTGGAACGGCAAGCTGGTATGCGACGATTTCGCTGGCTACAAGGCCGGTTTCGAGAAAGGCATCACCGAAATTAGCTGCGTGGCTCACGCCCGTCGCAAGTTTTTCGATCTGCACGTGGCGAACAAAAGCCAGCTGGCTGAACAAGCGCTGTACTCGATTGGCGGCTTGTACGAAGTCGAACGCCAAACTCGAGACATGAGCGATGAGGATCGTTGGCGAATACGCCAGGAAAAGGCAGCCCCGATCATCAAAACGCAGCATAACTGGATGCTGACCCAACGCGATCTCGTGCCCAATGGATCAGCAACGGCCAAAGCTCTGGTACAGCCTTAAMLYDFSPSRAGEHARNFLGQWNGKLVCDDFAGYKAGFEKGITEISCVAHARRKFFDLHVANKSQLAEQALYSIGGLYEVERQTRDMSDEDRWRIRQEKAAPIIKTQHNWMLTQRDLVPNGSATAKALVQPPGPT0030625_1632DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030625-tnpB-K07484NANA
D1-35_04399324IS66 family transposase ISPpu14ATGGATCAGCAACGGCCAAAGCTCTGGTACAGCCTTAAACGCTGGGTAGCGTTGACGCGCTACTTGGAAGACGGGGCCGTGACCATCGACAATAATCAAGTCGAGAACCAAATCCGACCATGGGCACTTGGGCGCTCCAACTGGCTGTTCGCCGGGTCGCTTCGCAGTGGCAAACGGGCGGCGGCGATCATGAGTCTGATCCAGTTGGCACGCATGAACGGGCATGATCCGTACGCCTATCTGAAAGATGTGCTGACACGGCTGCCGACACAGCGGGCGAGCGAGATTGGTCGATTGTTACCCGATCACTGGCGACCGACGTAGMDQQRPKLWYSLKRWVALTRYLEDGAVTIDNNQVENQIRPWALGRSNWLFAGSLRSGKRAAAIMSLIQLARMNGHDPYAYLKDVLTRLPTQRASEIGRLLPDHWRPTPGPT0030625_3532DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030625-tnpB-K07484NANA
D1-35_04400165hypothetical proteinATGCTAGTTTCCGCTGCTGACGCGTTTTTTACAGAGCAACTTTGCGTCCGGGCTGAGGTGACTAGCAGTGACCACCGAATACCGGCTCACACTTTTTATCAGCAGCAAGGTTACGCGGTCGACGAGCGTAGGTTTGTCAAACGGTATGATTTTTCCGGGGCATAGMLVSAADAFFTEQLCVRAEVTSSDHRIPAHTFYQQQGYAVDERRFVKRYDFSGANANANANANA
D1-35_04401330hypothetical proteinATGGAATTGCTGCTGGAAACGGTCGCTCTTTACTCGCTCAAGCTGGCTTATGAGACGGAGGGTCACAGCCCGATTTTGCGGGATGATCCGTTGATGGGGGGTTGTGATCGGGAGGTATTTGGGTTGTTGGTGAGGCGGGGGGATTTGGTTGGGATTCAGGCCGAAATCAGTCGATGCCTGGATTTAGCGCTAGGAGCGGTTGGTGGGGTGGGTACGGCGTTGGGGCGGGAGTTGAATCGTCTGGCTGAAAATCTCCAAACCGTGCCAACGGTGGCACAATTGGATACGTCGCTTGTCGCGCTTAGAGACTATTTGAAGAATATTCAGTGAMELLLETVALYSLKLAYETEGHSPILRDDPLMGGCDREVFGLLVRRGDLVGIQAEISRCLDLALGAVGGVGTALGRELNRLAENLQTVPTVAQLDTSLVALRDYLKNIQNANANANANA
D1-35_044031050queACOG0809S-adenosylmethionine:tRNA ribosyltransferase-isomeraseATGCGTGTTGCTGACTTTACCTTCGAACTCCCGGATTCGCTGATCGCTCGCCACCCTCTGGCCGAGCGTCGCGCCAGTCGACTGTTGACCTTGGACGGGGTCAGCGGTGCCATGGCTCACCGTCAATTCACTGATTTGCTTGAGCATTTGCGCCCGGGCGATTTGATGGTGTTCAACAATACCCGAGTCATTCCGGCGCGGTTGTTTGGCCAGAAGGCCTCCGGCGGCAAGCTGGAGATTCTGGTGGAGCGGGTGCTGGACGGGCATCGGGTGCTGGCCCATGTGCGGTCGAGCAAGTCGCCCAAGCCGGGCTCGTCGATTTTGATCGACGGCGGCGGTCAGGCGCGGATGGTGGCGCGGCATGATGCGTTGTTCGAGCTGGAGTTTGCCGAAGAAGTGTTGCCGCTGCTCGACCGTGTCGGGCACATGCCGTTGCCTCCTTATATAGACCGCCCGGACGAAGGTTCGGACCGCGAGCGTTATCAGACCGTGTACGCCGAGCGCCTGGGGGCGGTGGCGGCGCCGACGGCGGGGCTGCATTTTGATCAGCCGTTGCTGGAGGCGATTGCCGCCAAGGGCGTGGAGACGGCGTTCGTGACGCTGCACGTCGGCGCCGGCACGTTCCAGCCGGTGCGCGTGGAGCGCATCGAAGACCACCACATGCACAACGAATGGCTGGAAGTCAGCCAGGAAGTGGTCGATGCCGTGGCGGCATGCCGCGCCCGCGGTGGGCGGGTGGTGGCGGTGGGGACCACCAGCGTGCGTTCCCTGGAAAGCGCCGCGCGCGATGGCGTGCTCAAGCCGTTCAGTGGCGACACCGATATTTTTATCTACCCGGGCCGGCCGTTTCATGTGGTCGATGCCCTGGTGACCAACTTTCATTTGCCCGAATCCACGCTGTTGATGCTGGTTTCGGCGTTCGCCGGTTATCCCGAGACCATGGCCGCCTACAAGGCCGCCGTCGAGCATGGATACCGCTTTTTCAGCTACGGTGATGCGATGTTCATCACCCGTAACCCCGCGCCACGCGGGCCCGAGGAAACCGTATGAMRVADFTFELPDSLIARHPLAERRASRLLTLDGVSGAMAHRQFTDLLEHLRPGDLMVFNNTRVIPARLFGQKASGGKLEILVERVLDGHRVLAHVRSSKSPKPGSSILIDGGGQARMVARHDALFELEFAEEVLPLLDRVGHMPLPPYIDRPDEGSDRERYQTVYAERLGAVAAPTAGLHFDQPLLEAIAAKGVETAFVTLHVGAGTFQPVRVERIEDHHMHNEWLEVSQEVVDAVAACRARGGRVVAVGTTSVRSLESAARDGVLKPFSGDTDIFIYPGRPFHVVDALVTNFHLPESTLLMLVSAFAGYPETMAAYKAAVEHGYRFFSYGDAMFITRNPAPRGPEETVPGPT0023660_2119DIRECT EFFECTCOLONIZING_PLANT_SYSTEMOTHER_COLONIZATION_RELATED_PROTEINSCOLONIZATION-HOST_INVASION_FACTORSHOST_INVASION-SAM|QUEUOSINE|LIPID_METABOLISM,PGPT0023660-queA-K07568NANA
D1-35_044041134tgtCOG0343Queuine tRNA-ribosyltransferaseATGAGTCGCACCTGTCGCATGTCCTTCGAGTTGCTTGCTACCGATGGCAAGGCTCGTCGCGGTCGTCTGACCTTCCCCCGCGGTACGGTGGAAACCCCCGCGTTCATGCCGGTGGGCACCTACGGCACGGTCAAGGGCATGCTGCCGCGTGACATCGTTGCCACGGGCGCGGAGATCATTCTCGGCAACACCTTCCACCTGTGGCTGCGTCCGGGCATGGAAGTGATCAAGGCCCACGGCGACCTGCACGATTTCATGCAGTGGAAAGGCCCGATTCTGACCGACTCCGGCGGTTTCCAGGTGTTCAGCCTCGGCGCCATGCGCAAGATCAAGGAGGAGGGCGTGACCTTCGCCTCGCCGGTCGACGGCTCCAAGGTGTTCATGGGCCCGGAAGAGTCGATGCAGGTGCAGCGCGACCTGGGCTCGGACATCGTGATGATCTTCGACGAATGCACGCCGTACCCGGCCGATGAAGACGTGGCGCGGGTGTCGATGGAGCTGTCGTTGCGCTGGGCCCAGCGCTCGAAGAATGCCCACGGCGAAAACACGGCGGCGCTGTTCGGCATCGTGCAGGGCGGCATGCACCAGGATTTGCGCATGCGCTCGCTGGAAGGCCTCGACAAGATCGGCTTCGACGGCCTGGCGATTGGCGGCCTGTCGGTGGGCGAACCGAAGCACGAGATGATCAAGGTGCTCGATTACCTGCCAGGCCAGATGCCCGCTGACAAACCTCGTTACCTTATGGGCGTTGGCAAACCGGAAGATCTGGTTGAGGGTGTGCGCCGCGGGGTGGACATGTTCGATTGCGTGATGCCAACCCGTAATGCCCGCAATGGGCATCTGTTCATCGACACTGGTGTGCTGAAGATCCGTAACGCGTTCCATCGCCATGATGATTCGCCGCTCGATCCGACGTGCGATTGCTATACCTGCCAGAACTTCTCCCGCGCTTATCTGCATCATTTGGACAAGTGCGGCGAAATGCTCGGCAGCATGCTCAATACCATCCACAATTTGCGCCATTATCAGGTGCTTATGGCTGGTTTGCGCGAGGCTATCCAACAGGGTACATTGGCCGCCTTTGTCGAGGCCTTCTATGCCAAGCGCGGGTTGCCTGTTCCGCCTTTGGACTGAMSRTCRMSFELLATDGKARRGRLTFPRGTVETPAFMPVGTYGTVKGMLPRDIVATGAEIILGNTFHLWLRPGMEVIKAHGDLHDFMQWKGPILTDSGGFQVFSLGAMRKIKEEGVTFASPVDGSKVFMGPEESMQVQRDLGSDIVMIFDECTPYPADEDVARVSMELSLRWAQRSKNAHGENTAALFGIVQGGMHQDLRMRSLEGLDKIGFDGLAIGGLSVGEPKHEMIKVLDYLPGQMPADKPRYLMGVGKPEDLVEGVRRGVDMFDCVMPTRNARNGHLFIDTGVLKIRNAFHRHDDSPLDPTCDCYTCQNFSRAYLHHLDKCGEMLGSMLNTIHNLRHYQVLMAGLREAIQQGTLAAFVEAFYAKRGLPVPPLDNANANANANA
D1-35_04405339yajCCOG1862Sec translocon accessory complex subunit YajCATGAGCTTTTTTATCTCTAATGCCATGGCTGACGCGGCTGCACCTGCTGCTGCCAGCCCTATGGGTGGCGGTTTCGAGTGGATTTTCCTGGTCGGCTTCCTGGTCATCTTCTACCTGATGATCTGGCGTCCACAGGCCAAGCGCGCCAAAGAGCAGAAGAACCTGCTCGGCAGCTTGCAGAAAGGTGATGAAGTGGTCACCACCGGCGGCATCGCCGGCAAGATCACCAAAGTGGCGGATGACTTCGTGGTTCTGGAAGTGTCCGACACTGTTGAAATGAAGTTTCAGAAGGGCGCCATCGCGGCCACGCTGCCAAAAGGCACGCTGAAAGCGATCTAAMSFFISNAMADAAAPAAASPMGGGFEWIFLVGFLVIFYLMIWRPQAKRAKEQKNLLGSLQKGDEVVTTGGIAGKITKVADDFVVLEVSDTVEMKFQKGAIAATLPKGTLKAIPGPT0025730_1696DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025730-yajC-K03210NANA
D1-35_044061869secDCOG0342Protein translocase subunit SecDATGCTGAACAAATACCCTCTGTGGAAATACCTACTGATCCTGGCGGTGCTGGCGGTCGGTGTGATTTATTCCGCTCCCAATCTCTACCCGGATGACCCGGCCATTCAGGTCAGCGGCGCCAGCACGGCGCTGCAGGTCACCCAGGCCGATCTGGACCGCGCGAGCGCTGCGCTCAAGGCGTCCAATATCGAGGTCAAGGCTGCGTCCATCGCCGAAAACGGCAAGGGCGGCCTGTTGCGCCTGGTCAAGTCTGAAGACCAGTTGCCGGCCAAGGATGTGGTACGCAAGGCGTTGGGCGACGATTACGTTGTGGCCCTGAACCTGGCCCAGACCACCCCGCAGTGGCTGCGCAATCTTGGCGCCCACCCGATGAAGCTGGGCCTGGACTTGTCCGGCGGTGTGCACTTCCTGCTGGAAGTGGACATGGAAAAAGCCCTCGATGCGCGACTGAAAGTCTACGAAGGCGACGTCAAGAGCCTGCTGCGTAAAGAGCGCGTTCGCTATCGCAGCCTGCCGCAGTTCGAAGGTGCCATTCAGCTGGGCTTCAGCGATGAAGATGCCCGCGAACAGGCCCGTGCCCTGATCCGCAAGAATTTCAACGATTTCGACATTGTGCCGGCCGATCTCAATGGTCAGGCGGTGCTGCGTCTGGCGATGACCCCGGCCAAGCTGGCGGAAATCCGCGAATACTCCATCAAGCAGAACTTGACCACGGTGCGTAACCGCGTCAACGAGCTGGGTGTGGCCGAGCCGATCGTCCAGCGCCAGGGCGCCAACCGTATCGTGGTTGAGCTCCCGGGTGTGCAGGACACTGCCGAAGCCAAGCGTATCCTCGGCAAGACCGCCAACCTGGAGTTCCGCCTGGCCGCTGAGCCGGGTGCTTCCAAGGCGACTTCCGAGAGCTTCGAGTTCCGCGAAGGCGGTCGTCCGGTGGCGCAGATCGAGCGCGGCCTGATCATCACCGGTGACCAGGTCACCGACGCCCAGGCGGGCTTCGACGAGCAAGGTCGTCCACAGGTGAACATCCGTCTCGACGGCCACGGCGGCGAACTGATGAGCCGCGCCACGCGCAGCAACGTCGGGCGCAGCATGGCGGTGATCTTCATCGAGCAGAAGCCGACCACCACCTACACCAAACAGGTGGTCAACGGCGTCGAGAAAGACGTACCGGTCCAGACCTTCAAGGAAGAGAAGAAGATCATCAGCCTGGCGACCATCCAGTCGCCACTGGGCAGCCAGTTCCGCATCACCGGCCTGAACGGCCAGGGCGAATCCTCGGAGCTGGCCCTGCTGCTGCGTGCCGGTGGCCTGGCCGCGCCGATGTACTTCGCTGAAGAACGCACCATCGGCCCGAGCCTGGGTGCCGACAACATCACCAAGGGCGTCGATGCCTCCCTGTGGGGCATGCTGTTCGTGTCGCTGTTCATCATCGCCATCTACCGCTTCTTCGGCCTGATCGCCACGGTTGCGCTGGCGGTGAACATGGTGCTGTTGCTGGCCCTGATGTCGTTGCTGGGCGCCACGCTGACCCTGCCGGGTATCGCCGGTATCGTCTTGACGATGGGTATGGCGGTGGACGCCAACGTGCTGATCTTCTCGCGGATACGTGAAGAGATTGCCGCGGGCATGTCGATCCAACGGGCAATCAACGAAGGCTTCGGCCGGGCATTCACCGCGATTCTCGACTCCAACCTGACCACGTTGCTGGTCGGCGGGATTCTCTTTGCCATGGGCACCGGCCCGGTCAAGGGCTTCGCAGTGACCATGTCCCTCGGGATCTTTACCTCGATGTTCACAGCCATCATGGTGACCCGCGCAATGGTCAACCTGATCTTTGGCGGTCGTGACTTCAAGAAGTTGTGGATTTAAMLNKYPLWKYLLILAVLAVGVIYSAPNLYPDDPAIQVSGASTALQVTQADLDRASAALKASNIEVKAASIAENGKGGLLRLVKSEDQLPAKDVVRKALGDDYVVALNLAQTTPQWLRNLGAHPMKLGLDLSGGVHFLLEVDMEKALDARLKVYEGDVKSLLRKERVRYRSLPQFEGAIQLGFSDEDAREQARALIRKNFNDFDIVPADLNGQAVLRLAMTPAKLAEIREYSIKQNLTTVRNRVNELGVAEPIVQRQGANRIVVELPGVQDTAEAKRILGKTANLEFRLAAEPGASKATSESFEFREGGRPVAQIERGLIITGDQVTDAQAGFDEQGRPQVNIRLDGHGGELMSRATRSNVGRSMAVIFIEQKPTTTYTKQVVNGVEKDVPVQTFKEEKKIISLATIQSPLGSQFRITGLNGQGESSELALLLRAGGLAAPMYFAEERTIGPSLGADNITKGVDASLWGMLFVSLFIIAIYRFFGLIATVALAVNMVLLLALMSLLGATLTLPGIAGIVLTMGMAVDANVLIFSRIREEIAAGMSIQRAINEGFGRAFTAILDSNLTTLLVGGILFAMGTGPVKGFAVTMSLGIFTSMFTAIMVTRAMVNLIFGGRDFKKLWIPGPT0029260_721DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0029260-secD-K03072NANA
D1-35_04407915secFCOG0341Protein translocase subunit SecFATGTTACGTACAATCAACTTCATGGGCGTTCGCAACATTGCGTTCGGCGTCACATTGTTCCTCACGGCACTGGCGTTGTTCAGCTGGGCCACCAAGGGCCTGAACTACGGCCTGGACTTCACCGGCGGTACGCTCATCGAGCTGACCTACGAGCGTCCGGCCGACGTCACCAAGGTGCGTGAGCAACTGGCGAGCTCGGGCTACAGCGATGCCGTGGTGCAGAGCTTTGGCGCCACCACCGATTTGCTGGTGCGTATGCCGGGTGAAGACCCGCAACTGGGCCACCAGGTCGCCGAGGCCTTGCAGAAGGCCGGTGGCGATAACCCGGCCCAGGTCAAGCGCGTCGAGTTCGTCGGCCCGCAGGTGGGTGAGGAGCTGCGCGACCAGGGCGGCCTCGGCATGCTGTTGGCGCTGGGCGGCGTGATGCTCTACCTGGCTTTCCGCTTCCAGTGGAAGTTCGCGGTCGGCGCGATTGTCTCGCTGATCCACGACGTGATCGTGACCGTGGGTATCCTGTCGTTCTTCCAGATCACCTTCGACCTGACGGTGCTGGCGGCGGTGCTGGCGATCATCGGTTACTCGCTCAACGACACCATCGTGGTGTTCGACCGGGTGCGCGAAAACTTCCGTGTGCTGCGCAAGGCCTCGTTGATCGAGAACATCAACATCTCGACCACCCAGACCCTGCTGCGGACCATGGCGACGTCGATCTCCACCTTGCTGGCGATTGTCGCGCTGCTGGTGTTTGGCGGCGACAACCTGTTCGGCTTCTCCATCGCGCTGTTCATCGGTGTGATGGCGGGTACCTACTCGTCGATCTATATCGCCAACGTGGTGCTGATCTGGCTGAACCTCAGCTCCGAGGATCTGATTCCTCCGGCGGCCACCGAGACCGAGGTGGACGACCGCCCGTAAMLRTINFMGVRNIAFGVTLFLTALALFSWATKGLNYGLDFTGGTLIELTYERPADVTKVREQLASSGYSDAVVQSFGATTDLLVRMPGEDPQLGHQVAEALQKAGGDNPAQVKRVEFVGPQVGEELRDQGGLGMLLALGGVMLYLAFRFQWKFAVGAIVSLIHDVIVTVGILSFFQITFDLTVLAAVLAIIGYSLNDTIVVFDRVRENFRVLRKASLIENINISTTQTLLRTMATSISTLLAIVALLVFGGDNLFGFSIALFIGVMAGTYSSIYIANVVLIWLNLSSEDLIPPAATETEVDDRPPGPT0029265_3045DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0029265-secF-K03074NANA
D1-35_04408549hypothetical proteinGTGAACAAATCGATGCTGGTTGGTGCGGTATTGGGTGCTGTCGGTGTAACAGCCGGTGGTGCGGTCGCCACCTACAGCTTGGTAAAAAGTGGCCCTGAGTATGCGCAAGTACTGGCCGTGGAACCGGTCAAGACCCAAATCAAGACCCCGCGTGAAGTGTGCAAGGACGTGACAGTGACCCGGCAGAAGCCGGTTCAGGATCAACATCAGATCGCCGGCACCGTGCTCGGCGCCGTGGCCGGTGGCCTGTTGGGTAACCAGATCGGCGGCGGCAACGGCAAGAAGATTGCCACCGTGGCGGGTGCGGCCGGCGGCGGTTATGCCGGTAACAAGATTCAGGAAGGCATGCAGGAACGCGACACGTACACCACTACCCAGACTCGCTGCAACACCGTCAATGACATCAGCGACAAGGTTGTAGGCTACGACGTTCGCTACATGCTCGACGGCAAGGAAGGCAAAGTCCGTATGGACCGCGACCCGGGCAACCAGATTCCGGTCAGCAAGGAAGGCCAACTGATCCTGGGCCAGAACGAACCGGCCCAGTAAMNKSMLVGAVLGAVGVTAGGAVATYSLVKSGPEYAQVLAVEPVKTQIKTPREVCKDVTVTRQKPVQDQHQIAGTVLGAVAGGLLGNQIGGGNGKKIATVAGAAGGGYAGNKIQEGMQERDTYTTTQTRCNTVNDISDKVVGYDVRYMLDGKEGKVRMDRDPGNQIPVSKEGQLILGQNEPAQNANANANANA
D1-35_044091221uctCAcetyl-CoA:oxalate CoA-transferaseATGGGCGCGCTTTCGCATCTGCGGGTGTTGGATTTATCGAGGGTTCTGGCTGGGCCTTGGGCCGGGCAGATCCTCGCGGACCTGGGGGCGGAGGTCATAAAGGTCGAGCGTCCGGGTAACGGTGACGATACGCGTGCCTGGGGGCCGCCCTTTCTGAAAGACGCTTATGGCGAGAATACGACCGAGGCGGCTTATTACCTGTCGGCCAATCGCAACAAGCAATCGGTCACGATTGATTTCACGCGCCCCGAAGGGCAAAAGCTGATCCGGGAACTGGCGGCCAAGTCCGACATCCTGATCGAGAACTTCAAGGTGGGTGGCCTTGCGGCCTATGGTCTGGATTACGACTCGCTAAAAGCAATCAACCCGGAACTGATCTATTGCTCCATCACCGGGTTTGGCCAAACGGGCCCTTACGCCAAGCGTGCCGGTTACGACTTCATGATCCAAGGGTTGGGCGGCTTGATGAGTCTGACTGGCCGGCCGGAAGGGGATGAGGGGGCTGGGCCGGTGAAGGTCGGTGTTGCTCTGACCGATATTCTTACCGGCCTGTATTCGACCGTTGCCATTCTGGCCGCGTTGGCTCATCGCGATCATTCGGGCGGCGGGCAACATATCGATATGGCATTGCTGGATGTCCAGGTGGCTTGTCTGGCCAACCAGGCGATGAATTACTTGACTACTGGCAGCGCGCCGAAGCGGCTGGGCAATGCGCATCCGAATATCGTCCCTTATCAGGATTTTCCTACGGCTGACGGTGACTTCATCCTTACGGTGGGCAATGACGGTCAGTTCAGGAGGTTTGCCGAGGTCGCCGGTCAACCGCAGTGGGCCGATGACCCGAGGTTCGCGACAAACAAGATGCGTGTGGCGAACCGGGCGGCGTTGATTCCGATGATTCGCCAGGCGACGGTGTTCAAGACAACTGCCGAATGGGTCATACAGTTGGAACAGGCCGGTGTGCCGTGTGGGCCGATCAATGATCTGGCTCAGGTGTTTGCCGATCCTCAGGTGCAGGCTCGCGGGCTGGCAATCGAGTTGCCTCATGCGTTGGCGGGTAAGGTGCCACAGGTAGCCAGCCCGATTCGCCTGTCCGAAACTCCGATCGAGTACAGGAGCGCGCCGCCATTATTGGGAGAGCATACGCTGGAGGTGCTGCAGCGGGTGTTGGGGCTGGACTCGGAGGCGGTCACGGCTCTGAGGGACTCTGGGGTTCTTTAGMGALSHLRVLDLSRVLAGPWAGQILADLGAEVIKVERPGNGDDTRAWGPPFLKDAYGENTTEAAYYLSANRNKQSVTIDFTRPEGQKLIRELAAKSDILIENFKVGGLAAYGLDYDSLKAINPELIYCSITGFGQTGPYAKRAGYDFMIQGLGGLMSLTGRPEGDEGAGPVKVGVALTDILTGLYSTVAILAALAHRDHSGGGQHIDMALLDVQVACLANQAMNYLTTGSAPKRLGNAHPNIVPYQDFPTADGDFILTVGNDGQFRRFAEVAGQPQWADDPRFATNKMRVANRAALIPMIRQATVFKTTAEWVIQLEQAGVPCGPINDLAQVFADPQVQARGLAIELPHALAGKVPQVASPIRLSETPIEYRSAPPLLGEHTLEVLQRVLGLDSEAVTALRDSGVLPGPT0002130_442DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0002130-frc|yfdW-K07749NANA
D1-35_044101182mmgC_5COG1960Acyl-CoA dehydrogenaseATGGCCAGTAAGGCGAGCTTCAGCTGGATCGATCCCTTGTTGCTGGACCAGCAACTCACCGAAGAAGAACGCATGATTCGCGACACTGCCGAGCAGTTCGCTCAGCAGAAGCTGGCGCCGCGCGTACTGGAGGCGTTCCGTCATGAAAAGACTGACCCGGCGATCTTTCGTGAAATGGGCGAAGTGGGCCTCCTGGGCGCCACCATTCCCGAGCAATACGGCGGCAGCGGCCTGAATTACGTCAGCTACGGCCTCGTCGCCAGGGAAGTGGAGCGTGTGGACTCCGGCTACCGGTCGATGATGAGCGTGCAGTCCTCACTGGTCATGGTGCCGATCAACGAATTCGGCACCGAGGCGCAGAAACAGAAGTATCTGCCGAAGCTGGCTTCAGGCGAATGGATAGGCTGCTTTGGCCTGACCGAGCCGAACCATGGTTCCGACCCGGGCGCGATGATCACTCGGGCGCGCAAGGTTGAAGGCGGCTACAGCTTGACCGGCAGCAAGATGTGGATCACCAACAGTCCGATCGCGGATGTGTTTGTCGTTTGGGCGAAGGACGACGCCGGCGATATCCGAGGCTTCGTGCTGGAGAAGGGCTGGAAGGGCCTGACTGCTCCGGCGATTCACGGCAAGGTCGGGCTGCGTGCTTCGATTACCGGCGAGATCGTCATGGACAGCGTATTCGTGCCGGAAGAAAACATCTTTCCGGACGTGCGTGGCTTGAAAGGGCCGTTCACCTGTCTGAACTCGGCTCGCTACGGCATTTCCTGGGGCGCCCTGGGGGCTGCCGAGTTTTGCTGGCACACCGCCCGACAATACACGCTCGACCGGCAGCAGTTCGGTCGCCCGTTGGCTGCCAATCAATTGATCCAGAAGAAACTGGCCGATATGCAGACTGAAATCACCCTCGCGCTTCAAGGATGTCTGCGTCTTGGGCGTATGAAAGATGAAGGCACGGCTGCGGTAGAGATCACCTCGATCATGAAGCGCAACTCTTGCGGTAAGTCCTTGGATATCGCACGCATGGCGCGGGACATGCTGGGCGGCAATGGCATCTCCGACGAGTTCGGCATTGCTCGTCATTTAGTGAACCTTGAGGTGGTGAACACCTACGAGGGTACGCACGATGTTCATGCGTTGATCCTTGGCCGCGCGCAAACCGGCATTCAAGCGTTCTATTAAMASKASFSWIDPLLLDQQLTEEERMIRDTAEQFAQQKLAPRVLEAFRHEKTDPAIFREMGEVGLLGATIPEQYGGSGLNYVSYGLVAREVERVDSGYRSMMSVQSSLVMVPINEFGTEAQKQKYLPKLASGEWIGCFGLTEPNHGSDPGAMITRARKVEGGYSLTGSKMWITNSPIADVFVVWAKDDAGDIRGFVLEKGWKGLTAPAIHGKVGLRASITGEIVMDSVFVPEENIFPDVRGLKGPFTCLNSARYGISWGALGAAEFCWHTARQYTLDRQQFGRPLAANQLIQKKLADMQTEITLALQGCLRLGRMKDEGTAAVEITSIMKRNSCGKSLDIARMARDMLGGNGISDEFGIARHLVNLEVVNTYEGTHDVHALILGRAQTGIQAFYPGPT0021815_2019DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0021815-GCDH|gcdH-K00252NANA
D1-35_04411900gcvA_7Glycine cleavage system transcriptional activatorATGCGTCGTAAAATCCCAAGCACCGCCGCCCTGATCAGCTTCGAGGCTGCCGCACGCCACGAAAGCTTCACCAAGGCGGCACTGGAGCTCTCTCTCACCCAAGGCGCTATCTGCCGACAGATTGCCAGCCTGGAGGACTTCCTTGGCGTGGAGCTTTTCCGACGCTCAAGACGCGGCGTCAAGCTGACTGAAGCGGGGCTTTCATATAGCCGTCGAATCGCCACGCAACTGGATGCCGTCGAGCGCGATACCCTTTCAGTGATGGGGCACACCGGCGCGAACGTTATCGAACTCGCCGTCGTGCCCACCTTCGGCACTCAATGGCTGTTGCCACGCCTCAAGGAGTTCCAGCGGCAGCACCCTGAGGTGACGGTCAATCTCACCAACCGCACGCGCCCTTTCCTGTTCGCCGATACGGATTTCGATGCAGCCATCTACTTCGGCGACGCGGACTGGTCCGGTACCGAATCTCACAAATTAATGGGCGAACAGCCGTTGCCGGTATGCAGCCCCTCCTTGCTGGGCAACCGCAAAACTCTGACGCCAGAGGCAATCGCCGAGCTCCCCCTGCTCCAGCAGACAACCCGCCCATACGCGTGGCGCCAGTGGTTCAACTCACAAGACCTTAATATCGCGCGCGACCTGACAGGTCCGCGCTATGAACTATTCTCCATGCTTGCCCAAGCCGCCATGCACGATATGGGTGTTGCCTTGATCCCGCCCTTCCTGATCCAGCGCGAACTGGCGGAGAAGCGCCTGGTCATTGCCAACCCCAATGCCCTGTCGAGCCTCAAGGCGTATTACCTGATGATCCCGGAACGGAAGGTGGAATCGGCCTCGCTGCGGGCATTTCGCGATTGGCTGGTCACCGAAGCTAGAAACTATGACGTTGAAAATTAAMRRKIPSTAALISFEAAARHESFTKAALELSLTQGAICRQIASLEDFLGVELFRRSRRGVKLTEAGLSYSRRIATQLDAVERDTLSVMGHTGANVIELAVVPTFGTQWLLPRLKEFQRQHPEVTVNLTNRTRPFLFADTDFDAAIYFGDADWSGTESHKLMGEQPLPVCSPSLLGNRKTLTPEAIAELPLLQQTTRPYAWRQWFNSQDLNIARDLTGPRYELFSMLAQAAMHDMGVALIPPFLIQRELAEKRLVIANPNALSSLKAYYLMIPERKVESASLRAFRDWLVTEARNYDVENPGPT0026360_3476DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566NANA
D1-35_044121122pntAACOG3288NAD(P) transhydrogenase subunit alpha part 1GTGCACATTGGTGTTCCTCTCGAAACCCAGACGGGTGAAACACGGGTTGCTGCTACCCCGGAAACCATCAAGAAGCTGGTCGGCCAAGGCCATAAAGTCACTGTTGAAAGCGGCGCCGGCATCAAGGCCAGCGTTATTGACAGTGCCTATGAGGCAGCGGGCGCAACCATTGGCAGCGCCAGTGATGCATTCGGGGCCGAACTGATCCTCAAGGTGGTCGCCCCCAGCGACAGCGAGCTGACGCTGATCAAGAGCGGCACCGTTCTGGTGGGCATGCTCAACCCGTTCAACAACGAAACCATCGCCAAGCTGGCCGAACGCGGCATCACCGCATTCGCCCTTGAGGCCGCGCCGCGTACCTCCCGCGCTCAAAGCCTGGACGTGCTGTCGTCTCAAGCGAATATCGCCGGCTATAAAGCCGTGTTGCTGGCCGCCCATCACTATCCGCGCTTCATGCCGATGCTGATGACCGCCGCAGGCACCGTGAAAGCGGCGCGCGTGCTGATTCTCGGCGCGGGCGTGGCCGGACTCCAGGCGATTGCCACGGCCAAGCGCCTGGGCGCTGTGATCGAGGCATCGGACGTGCGTCCCGCAGTGAAAGAGCAAATCGAATCCCTCGGCGCCAAGTTCGTCGACGTGCCTTACGAGACCGACGAAGAGCGTGAATGCGCCGTCGGCGTGGGTGGTTACGCCCGGCCCATGCCTGCCAGCTGGATGCAGCGCCAGGCCCAAGCCGTGCACGAGCGCGCCAAGCAGGCGGACATCGTCATCACCACCGCATTGATTCCGGGCCGCAAGGCACCGACTTTGCTGAGCGCCGAAACCGTCGCGCAGATGAAACCGGGCTCGGTGGTCATCGACCTCGCAGCAGCACAGGGCGGTAACTGTCCGCTGACCGTGGCCGATCAGGTGGTGGTCGAAAACGGCGTGACCATTTGCGGCCCGACCAATCTGGCCGGTGAAGTCGCGGCCGATGCTTCGGCGCTGTACGCCCGTAACCTGCTGGACTTCCTGAAGCTGGTCTTCACCAAGGAAGGTCAGTTCGACGTGAACCTGGAAGACGACATCGTCGCCGCGTGCCTGATGTGCCGCGACGGCCAAGTCATCCGCAAAAACGCCTAAMHIGVPLETQTGETRVAATPETIKKLVGQGHKVTVESGAGIKASVIDSAYEAAGATIGSASDAFGAELILKVVAPSDSELTLIKSGTVLVGMLNPFNNETIAKLAERGITAFALEAAPRTSRAQSLDVLSSQANIAGYKAVLLAAHHYPRFMPMLMTAAGTVKAARVLILGAGVAGLQAIATAKRLGAVIEASDVRPAVKEQIESLGAKFVDVPYETDEERECAVGVGGYARPMPASWMQRQAQAVHERAKQADIVITTALIPGRKAPTLLSAETVAQMKPGSVVIDLAAAQGGNCPLTVADQVVVENGVTICGPTNLAGEVAADASALYARNLLDFLKLVFTKEGQFDVNLEDDIVAACLMCRDGQVIRKNAPGPT0013500_2135DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013500-pntA-K00324NANA
D1-35_04413324pntACOG3288NAD(P) transhydrogenase subunit alphaATGGAAGAGCTTATCTCCCCCGGTATCTACAACCTGATCATCTTCGTGCTGGCGATTTATGTCGGTTACCACGTGGTCTGGAACGTTACACCCGCGCTGCACACGCCGTTGATGGCGGTGACCAACGCCATCTCGGCAATCGTGATTGTCGGCGCCATGCTCGCCGCCGCCCTGACTGTAACGCCGCTGGGCAAGACCATGGGCACCCTCGCCGTAGCCCTGGCCGCGGTCAACGTGTTCGGCGGCTTCCTGGTGACGCGCCGCATGCTTGAGATGTTCAAGAAAAAAGCCCCGAAAGCCGTAAAAGAAGAGGCGCCCAAGTAAMEELISPGIYNLIIFVLAIYVGYHVVWNVTPALHTPLMAVTNAISAIVIVGAMLAAALTVTPLGKTMGTLAVALAAVNVFGGFLVTRRMLEMFKKKAPKAVKEEAPKPGPT0013500_3143DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013500-pntA-K00324NANA
D1-35_044141437pntBCOG1282NAD(P) transhydrogenase subunit betaATGAGCATGAACCTGGTAACGACGCTCTACCTGATTGCGTCGATCTGTTTCATCCAGGCCCTCAAAGGCCTTTCGCATCCCACCACCTCCCGCCGAGGCAACCTGTTCGGCATGCTCGGCATGGCGCTGGCAGTGCTCACTACCGTGGGTCTCATCTATAAGCTGGGGGCAGAGCTGGCCACTGCCGGCATTGGCTACGTCATCGTCGGCCTGCTGGTTGGTGGTACCGCCGGCTCGATCATGGCCAAGCGCGTCGAGATGACCAAGATGCCGGAGCTGGTAGCGTTCATGCACAGCATGATCGGCCTGGCGGCGGTGTTCATTGCCATCGCGGCGGTAGTCGAGCCGCAATCGCTGGGTATCGTCAAGCAACTGGGCGATTCGATCCCGGCCGGTAACCGTCTGGAGCTGTTCCTCGGCGCGGCCATCGGTGCAATCACCTTCTCCGGTTCGGTGATCGCTTTCGGCAAGTTGTCGGGCAAGTACAAGTTCCGCCTGTTCCAAGGCGCACCGGTACAGTTTGGTGGCCAGCACAAGCTCAACCTGATCCTGGGCCTGGCAACGCTGGGCCTGGGCCTGACCTTCATGTTCACCGGCAACCTCGGCGCGTTCGCCTTGATGTTGGCCTTGGCCTTCGTGCTGGGTGTGCTGATCATCATCCCGATCGGCGGCGCGGACATGCCGGTGGTGGTCTCGATGCTCAACAGTTATTCGGGCTGGGCGGCCGCCGGTATCGGCTTCTCGCTGAACAACTCGATGCTGATCATTGCCGGCTCCCTGGTAGGTTCGAGCGGTGCGATCCTGTCTTACATCATGTGCAAGGCGATGAACCGTTCGTTCTTCAACGTGCTGCTCGGTGGCTTCGGCAACGCCGCAGATGCGGCTGGCCCGGCAGGCTCGAAAGAAGCCCGCCCGGTGAAATCCGGTTCGGCAGATGACGCGACCTTCCTGCTGACCAACGCCGACACAGTGATCATCGTGCCGGGCTACGGCCTGGCGGTGGCACGGGCGCAGCATGCGTTGAAAGAGCTGACCGAGAAGCTGACCCACCATGGCGTGACCGTCAAATATGCGATCCACCCGGTGGCCGGTCGCATGCCCGGGCACATGAACGTCCTGCTGGCCGAGGCCGAAGTACCTTACGACCAGGTGTTCGAGATGGAGGACATCAACTCCGAGTTCGGCCAGGCCGACGTGGTGCTGGTGCTGGGCGCCAACGATGTGGTCAACCCGGCGGCGAAGAACGATCCCAAGTCGCCGATCGCCGGCATGCCGATCCTCGAAGCGTTCAAGGCCAAGACCATCATCGTCAACAAGCGCTCGATGGCCAGCGGCTATGCCGGCCTGGACAACGAGCTGTTCTACCTCGACAAGACCATGATGGTGTTCGGCGACGCCAAGAAGGTCATTGAGGACATGGTCAAGGCCGTGGAATAAMSMNLVTTLYLIASICFIQALKGLSHPTTSRRGNLFGMLGMALAVLTTVGLIYKLGAELATAGIGYVIVGLLVGGTAGSIMAKRVEMTKMPELVAFMHSMIGLAAVFIAIAAVVEPQSLGIVKQLGDSIPAGNRLELFLGAAIGAITFSGSVIAFGKLSGKYKFRLFQGAPVQFGGQHKLNLILGLATLGLGLTFMFTGNLGAFALMLALAFVLGVLIIIPIGGADMPVVVSMLNSYSGWAAAGIGFSLNNSMLIIAGSLVGSSGAILSYIMCKAMNRSFFNVLLGGFGNAADAAGPAGSKEARPVKSGSADDATFLLTNADTVIIVPGYGLAVARAQHALKELTEKLTHHGVTVKYAIHPVAGRMPGHMNVLLAEAEVPYDQVFEMEDINSEFGQADVVLVLGANDVVNPAAKNDPKSPIAGMPILEAFKAKTIIVNKRSMASGYAGLDNELFYLDKTMMVFGDAKKVIEDMVKAVEPGPT0013505_695DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013505-pntB-K00325NANA
D1-35_044151494cat1COG0427Succinyl-CoA:coenzyme A transferaseATGTACCGTGACCGCATCCGCCTGCCTTCGTTGTTGGACAAAGTGATGAGCGCTGCCGAGGCAGCCTTGCTGATCGAGGACGGGATGACCGTTGGCATGAGTGGCTTCACCCGCGCCGGAGAAGCCAAGGCGGTACCTCATGCACTGGCCGAACGGGCCAAGCTCATGCCGTTGAAAATCAGCCTGATGACCGGAGCGAGCCTGGGCAACGATCTCGATAAGGAGCTCACGGAGGCAGGCGTGCTCGCGCGACGCATGCCCTTCCAGGTGGACAGCACCCTGCGCAAGGCCATCAACGCTGGCGAGGTCATGTTCATCGACCAGCATCTATCGGAGACCGTTGAACAGATGCGCAACGCGCAGCTCAAGCTGCCCGATATCGCCGTGATCGAAGCCGTGGCTATTACCGAACAAGGTCATATCGTGCCCACCACATCAGTGGGCAATTCGGCCAGTTTTGCGATTTTCGCCAGACAAGTGATCGTCGAGATCAATATGGCCCACAACCCGAATCTGGAAGGGCTCCACGACATCTATATCCCGAGCTACCGCCCAACCCGCACACCCATTCCCCTGGTGAAGGTCGAGGACCGCATCGGTAGCCCTGCCATTCCAATCCCCGCGGAAAAAATTGCCGCCATTGTCATCACCCATCAAGCGGACTCACCCTCCACCGTCCTGCCACCTGACAGCGATACACAGGCTATTGCCGATCACTTGGTCGATTTTTTCAAGCAAGAGGTGGCAGCCGGACGGATGACCAACAAGCTCGGCCCGTTGCAGGCCGGAATCGGTAATATCGCCAACGCCGTGATGTGCGGCTTGATCGACTCCCCGTTCGAAGAACTGACCATGTATTCCGAGGTGCTGCAAGACTCGACCTTCGACCTGATCGATGCAGGCAAGCTGAGTTTCGCTTCTGGCAGTTCCATTACCTTGTCGGCTCGACGCAATGCCGATGTCTTCGGCAACCTGGAAAGGTACAAGGACAAGTTGGTCCTGCGCCCGCAGGAAATCTCCAACCATCCAGAAGTTGTGCGCCGCCTGGGCATCATCGGCATCAACACAGCGTTGGAATTCGATCTGTACGGCAACGTCAACTCAACCCATGTGTGCGGCACGCGGATGATGAACGGCATTGGCGGATCAGGCGACTTCGCCCGGAATGCGCACCTGGCGGTGTTCGTTACCAAATCCATCGCCAAGGGCGGTGCCATTTCCAGCGTCGTGCCGATGGTCAGCCATGTGGACCATACCGAGCACGATGTCGACATCCTGGTAACAGAGATCGGCCTGGCCGACCTGCGGGGCCTCGCACCACGGGAGCGAGCGAGGGTCATCATCGACAACTGCGTACACCCTATCTATCGCCAGGCGCTCAGCGACTATTTTGAAGCCGCTTGTAAGCTGGGCGGACATACGCCGCATATCCTGAAGGATGCACTCAGTTGGCACCTCAACCTCGAGGAAACCGGACGCATGTTGGCGATTTGAMYRDRIRLPSLLDKVMSAAEAALLIEDGMTVGMSGFTRAGEAKAVPHALAERAKLMPLKISLMTGASLGNDLDKELTEAGVLARRMPFQVDSTLRKAINAGEVMFIDQHLSETVEQMRNAQLKLPDIAVIEAVAITEQGHIVPTTSVGNSASFAIFARQVIVEINMAHNPNLEGLHDIYIPSYRPTRTPIPLVKVEDRIGSPAIPIPAEKIAAIVITHQADSPSTVLPPDSDTQAIADHLVDFFKQEVAAGRMTNKLGPLQAGIGNIANAVMCGLIDSPFEELTMYSEVLQDSTFDLIDAGKLSFASGSSITLSARRNADVFGNLERYKDKLVLRPQEISNHPEVVRRLGIIGINTALEFDLYGNVNSTHVCGTRMMNGIGGSGDFARNAHLAVFVTKSIAKGGAISSVVPMVSHVDHTEHDVDILVTEIGLADLRGLAPRERARVIIDNCVHPIYRQALSDYFEAACKLGGHTPHILKDALSWHLNLEETGRMLAIPGPT0001545_892DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001545-aarC|cat1-K18118NANA
D1-35_04416216hypothetical proteinATGGAACGTACACTCAGTTCCGAGCTGTTTTTCGAACACAAAGCTGAAAAAAACCAGGCTTCCCTGCCTCTTCGCGTTATCGCCAACCTGATGTTGTGGCAGCGCCGCATTGCCAGCCGCCATCAACTGGCTCGTCTGGATTCGCGTCTGCTGGCTGACGCCGGTATCAGCGAAGCACAACGCTACGAAGAGCTGAGCAAGCCGTTCTGGCGCTAAMERTLSSELFFEHKAEKNQASLPLRVIANLMLWQRRIASRHQLARLDSRLLADAGISEAQRYEELSKPFWRNANANANANA
D1-35_04417318hypothetical proteinATGATCCGTCTTCGCCTGCTCAGCACAGCTGTCCTGCTGGCCGTAGCCGCCCATTCCAACGCCAGCAGCTTTATCGTCACGACTGACTCCATCGTCGGCGCACTAAAAGCCACTTCCGACGTAACCTCCGACGCCACCTCTTCACTGCGGGACAACAAGATTGTTCAAGCTGCCCGTGATGATGCCGCCAGCTTCGTGGCTAGCGAAGGGGCCATCCGTGGCGTGAAGCTGGAAAGCGCGCTGGATTTCATTCGCCAGCAGGCTCCCCAGCTCAACGCCACCGATGCGCAGTTGGCACAGGCCATCCTGGTTATTTGAMIRLRLLSTAVLLAVAAHSNASSFIVTTDSIVGALKATSDVTSDATSSLRDNKIVQAARDDAASFVASEGAIRGVKLESALDFIRQQAPQLNATDAQLAQAILVINANANANANA
D1-35_04418306hypothetical proteinATGCGTTTTTCAAATCTGTACCGAGTCTTTTTCTTCGCAGCTTTCTGCTGGTCTGTTCCGGCCCAAGCCTTTGACGTGTCCACCCAACAGCTGGTGGCCAGCGCTTATGCCACAAGCCTCGTGACCTCGGCGCCCTTCGACAATAAACTGGTCGTCGCCGCTCGCGATGACGCCGCAACATTCATTGCCAGCGATGGACAGTTGCGAGGCGCACAGTTGGAATCGGCCTTGGCTTACCTGCGCCGGAGCCAGCCAAAACTTCACGCCAGCGACCTTGAACTGGCACAGGCAATTCTCGTCCAATAGMRFSNLYRVFFFAAFCWSVPAQAFDVSTQQLVASAYATSLVTSAPFDNKLVVAARDDAATFIASDGQLRGAQLESALAYLRRSQPKLHASDLELAQAILVQNANANANANA
D1-35_04419321hypothetical proteinATGCGTAGCCCGCTGATTGCTGCCGCCCTTGGCCTGCTGGTGTTGGCCGATGTGGCCCAGGCACATACCTTGGTAGCCACCAGTAACATCATCGTTCGCGCTTCCCAGCGCTCGATCGATTTCACCTCTGACACCACTACCTCCATCCGTGATTCGAAAATCGTCCGTGAAGCCCACGATGACGCGGCCAGCTTCGTCGCCAGCAACGGCGAAATTCGTGGCGCTCATCTCGAGGCCGCTTTCGAAACCTTGCGTACCCGCGTACCGGAAGCTCGCGACGCCAGTGATCAGGTTCTCGCCGAAGCCATCCTCGCATTGTGAMRSPLIAAALGLLVLADVAQAHTLVATSNIIVRASQRSIDFTSDTTTSIRDSKIVREAHDDAASFVASNGEIRGAHLEAAFETLRTRVPEARDASDQVLAEAILALNANANANANA
D1-35_044201962hypothetical proteinGTGAGGCGACTCGCCGCCTGGCTGACGGCCGGGGTCGTGCTGCTTATCGGCAGCACTGCCCAGGCCGGCCTGCAGCTACACCTCAATAGCGACGGCTTGAGCCCGGCGCAACAGCAGGCCAGTCAGGCATTGCTCGATGAAGCCATGCAAGCATTACCTCCGCGCTTCATCGAGCGATTGGACCGGCGCATCGATGTCGGCTGGACCGACCAGATGCCGGAAAACGCCTACGGCCAGGCTTCGCTGGTGTCACAGCTGGACCTCAACCGTAACCTGCTCGACAGCCTCACCGACGGCAGCGCCGCCAGGCAAAAGACCCAGCGGCCGCACGGCACGGTGCGACGAGAGATGCTCGCCACGGTCCTCCACGAACTGACTCATATCTATGATCGCTCGCGTCTATGGCCGGATGCCGAACGTGCGCTGATCCAGCGCTGTACTCGACGCAACAGCAGTGCAGGGTTGATCGGGCTCCCGGATGAATGCCGGGGCGAGAACGACCGCCGCTTCACCCTCAGCGATGATCCACGCTTGCTCGACTTGGCCGGTTGGCCGCAATACGTCGGCCGCCGCGGCGAACGGGAACAGCATAACCGCCAGGTCGCCCGCAGCCCGGACCTCTACGAGACGAGCAGTCCCAAGGAGTTCGTCGCGGTGAACATGGAGTATTTCCTCCTGGACCCGAGCTATGCATGCCGGCGCCCCGCCCTGTATCGCTATTATCAGGAACACTTCGGCTGGGCGCCTGCCGCCAAGGACACCTGCGCCCAGTCCTTCGCTTTTCTCAACGCCGGCAACGATTTTGCCAAGACGCCGCTGGGCAAGGTCGATCCGGAGCGCGTCTACGCCATCGATTACCTGCTGGCCGAAGCCAACCAGAACTGGGTCAGTCGCTGGGGCCACAGCATGCTCCGGCTGGTGATCTGCGCACCAGGCCGACCACGTGGGCCGGATTGCCGGTTGGACCTGGATCAGCATCTGGTGTTGTCTTACCGTGCGTTTGTAGGTGATGTACAGCTGTCGAGCTGGGACGGACTGGTGGGCAAATACCCATCGCGCCTGTTTGTGCTGCCGCTGGCCCAGGTAATCGATGAATACACCAAGACTGAACTGCGCAGCCTGGCATCAGTTCCGCTGAACTTGTCTCGTGCCGAGATCGAGGAGACCGTCGAACGTGCCGCCGAAATGCATTGGAGCTACGACGGAAACTACTACTTCCTCTCCAATAACTGCGCAGTTGAAAGCCTGAAGCTGCTGCGCAGCGGCAGTAACAACGAGCAGCTCAAAGGCCTGGACAGCATCATGCCCAACGGCTTGCTGGAAATCCTCAAGGGTCGAGGCCTGGCGGATACCAGCGTACTGGATGATCCCAAGGAGGCACTGCGCCTCGGTTACCGTTTTGACTCGTTCCGCGACCGCTACCAGGCGATGTTCGAAGTCCTGAAAAAGCATCTGCCCATCAAACAGCAAACCGTTGAAGACTGGCTGGCCCTGGACGCCACTGAACGCCGCGCCTGGTTCGAGCAGGCAGACCTGCGCACCAGCGCGGCGCTGCTTCTATTGGAGCAGGCGAGTTTCCGCCGGCAATTGCTGCTCGCTCAGGATGAGGTCAAGCAGCGCTACCTCAATGCCCGCGAATTGCAGAACGGCGGTATGGAACGGGCAAACGCGACGCTGCAGCAGATTCTCGCCAACAGCGGTTTCCTGAGCCGCCCGGCCGAATTGCTGGGCAGCGGCGGCTATGGTCTGCCGCAACCCAGCGAGTGGCAACGACTGGAATCGGAAAGCAGCCTGCGCCAGAAGCAACTGCAAACGCTCACAGGCGACCTGGATAAGGAGGTTCGAGCGTTGCTGGAGCCGAGCCGCGCAGCTGAAATTGCTGCAAGCGAGGCCAACGTGAAGGTAATCGGCGAACATCTGCGCAAGCTGCACAAGGCCGGGGGCGGGTTGGAGTTGCCCTGAMRRLAAWLTAGVVLLIGSTAQAGLQLHLNSDGLSPAQQQASQALLDEAMQALPPRFIERLDRRIDVGWTDQMPENAYGQASLVSQLDLNRNLLDSLTDGSAARQKTQRPHGTVRREMLATVLHELTHIYDRSRLWPDAERALIQRCTRRNSSAGLIGLPDECRGENDRRFTLSDDPRLLDLAGWPQYVGRRGEREQHNRQVARSPDLYETSSPKEFVAVNMEYFLLDPSYACRRPALYRYYQEHFGWAPAAKDTCAQSFAFLNAGNDFAKTPLGKVDPERVYAIDYLLAEANQNWVSRWGHSMLRLVICAPGRPRGPDCRLDLDQHLVLSYRAFVGDVQLSSWDGLVGKYPSRLFVLPLAQVIDEYTKTELRSLASVPLNLSRAEIEETVERAAEMHWSYDGNYYFLSNNCAVESLKLLRSGSNNEQLKGLDSIMPNGLLEILKGRGLADTSVLDDPKEALRLGYRFDSFRDRYQAMFEVLKKHLPIKQQTVEDWLALDATERRAWFEQADLRTSAALLLLEQASFRRQLLLAQDEVKQRYLNARELQNGGMERANATLQQILANSGFLSRPAELLGSGGYGLPQPSEWQRLESESSLRQKQLQTLTGDLDKEVRALLEPSRAAEIAASEANVKVIGEHLRKLHKAGGGLELPNANANANANA
D1-35_04421813trpACOG0159Tryptophan synthase alpha chainATGAGCCGCCTGCAAACCCGTTTTGCCGAACTCAAGGAACAGAACCGCGCCGCGCTGGTGACCTTTGTCACCGCCGGTGATCCGGACTACGACACTTCGCTGGCGATCCTCAAGGGCCTGCCTGGCGCCGGCGCGGACGTGATCGAGCTGGGCATGCCGTTCACCGATCCGATGGCTGACGGCCCGGCAATCCAGCTGGCGAATATCCGCGCCCTGGGGGCCCAGCAGAACCTGGCGAAAACCCTGCAGATGGTGCGTGAGTTCCGCAAGGACAACACCGAGACACCGCTGGTATTGATGGGGTATTTCAACCCGATCCATCGTTATGGTGTGCAGCGTTTCATCGGCGAGGCGCTGGACTCCGGCGTCGATGGCCTGATCGTGGTGGACATGCCGCCCGAGCACAACAGCGAACTGTGCGAACCGGCCCAGGCTGTCGGCCTGGACTTTATCCGCCTGACTACGCCAACCACTGACGACGTGCGCTTGCCTACCGTGCTCAACGGCAGTTCCGGCTTTGTCTACTACGTGTCAGTTGCCGGTGTGACCGGTGCCGGCGCCGCAACGCTGGAACATGTGGAAGAGGCCGTGGCGCGTTTGCGTCGCCATACCGATCTGCCGATCAGTATCGGTTTCGGTATCCGCACGCCTGAACAGGCGGCAGCTATCGCGCGGCTGGCCGATGGGGTAGTGGTTGGCTCGGCGCTGATCGACCATATCGCCCGTGCCGACACGTCGGAGCAGGCGATCGATGGCGTGTTGAGCTTGTGTGCTGCCTTGGCTGACGGCGTGCGCAAGGCGCGCCTGGGCTGAMSRLQTRFAELKEQNRAALVTFVTAGDPDYDTSLAILKGLPGAGADVIELGMPFTDPMADGPAIQLANIRALGAQQNLAKTLQMVREFRKDNTETPLVLMGYFNPIHRYGVQRFIGEALDSGVDGLIVVDMPPEHNSELCEPAQAVGLDFIRLTTPTTDDVRLPTVLNGSSGFVYYVSVAGVTGAGAATLEHVEEAVARLRRHTDLPISIGFGIRTPEQAAAIARLADGVVVGSALIDHIARADTSEQAIDGVLSLCAALADGVRKARLGPGPT0007070_1670DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007070-trpA-K01695NANA
D1-35_044221233trpBCOG0133Tryptophan synthase beta chainATGACCCAGCCTACGACCTCTTTCAACCTGCGCAGCGGCCCCGATGCCAACGGCCTGTTTGGCGCGTTCGGCGGCCGCTACGTGGCCGAAACGCTGATGCCGTTGATCCTTGATCTGGCCCGTGAATACGAAGTGGCGAAGGAAGATCCTGCGTTCATTGAGGAACTGGCCTATTTCCAACGGGATTATGTCGGTCGTCCGAGCCCGCTGTATTTCGCCGAGCGCCTGACCGAGTACTGCGGCGGCGCGAAGATCTACCTCAAGCGTGAAGAGCTGAACCACACCGGCGCCCACAAGATCAACAACTGCATCGGCCAGATCCTGCTGGCGCGGCGCATGGGCAAAAAACGCATCATCGCCGAGACCGGCGCTGGCATGCACGGCGTGGCGACTGCCACCGTGGCTGCGCGTTTTGGCCTTGAGTGTGTGATCTATATGGGCACCACCGACATCGAGCGCCAGCAGGCCAACGTGTTCCGGATGAAACTGCTCGGCGCCGAAGTGATCCCGGTGGTTGCTGGCACCGGCACCCTCAAGGATGCGATGAATGAGGCGCTGCGCGATTGGGTGACCAACGTCGACAGCACCTTCTATCTGATCGGCACCGTGGCCGGGCCGCACCCTTACCCAGCGATGGTCCGCGATTTCCAGGCGGTGATCGGCAAGGAAACCCGCGATCAGTTGCAAGCCCAGGAAGGCCGGCTGCCGGATAGCCTGGTGGCATGCATCGGTGGCGGCTCCAACGCCATGGGCCTGTTCCATCCGTTCCTGGATGACAAGAGCGTCGACATCATCGGCGTTGAAGCGGCTGGTTATGGCATCGAGACCGGCAAGCACGCCGCGAGCCTGAACGGTGGCGTTCCGGGTGTGCTGCACGGTAACCGTACGTTCCTGCTGCAGGACGACGACGGTCAGATCATCGACGCCCATTCCATATCCGCAGGTCTCGATTATCCGGGGATCGGTCCGGAACACGCCTGGTTGCATGACATCGGTCGGGTCCAGTACACCTCGGTCACCGACGCCGAAGCTTTGGAAGCTTTCCATAAATGCTGCCGTCTTGAAGGGATCATTCCTGCGCTGGAAAGCGCCCACGCCTTGGCTGAAGTGTTCAAGCGCGCACCGAACCTGCCCAAGGATCACCTGATGGTGGTCAACCTGTCCGGCCGCGGCGACAAAGACATGCAAACCGTGATGCACCATATGGAACAGTCCCAGCAGGAGAAACATTGAMTQPTTSFNLRSGPDANGLFGAFGGRYVAETLMPLILDLAREYEVAKEDPAFIEELAYFQRDYVGRPSPLYFAERLTEYCGGAKIYLKREELNHTGAHKINNCIGQILLARRMGKKRIIAETGAGMHGVATATVAARFGLECVIYMGTTDIERQQANVFRMKLLGAEVIPVVAGTGTLKDAMNEALRDWVTNVDSTFYLIGTVAGPHPYPAMVRDFQAVIGKETRDQLQAQEGRLPDSLVACIGGGSNAMGLFHPFLDDKSVDIIGVEAAGYGIETGKHAASLNGGVPGVLHGNRTFLLQDDDGQIIDAHSISAGLDYPGIGPEHAWLHDIGRVQYTSVTDAEALEAFHKCCRLEGIIPALESAHALAEVFKRAPNLPKDHLMVVNLSGRGDKDMQTVMHHMEQSQQEKHPGPT0007075_1537DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007075-trpB-K01696NANA
D1-35_04423918trpIHTH-type transcriptional regulator TrpIATGAGCCACGACCTCCCGCCGCTAAACGCCTTGCGTGCCTTCGAGGCCACCGCCCGCCTGAACAGCGTAAGCCAGGCGGCGGAGCAGCTGCACGTCACCCACGGTGCCGTCAGCCGGCAATTGAAATTGCTCGAAGAGCACTTGGGTGTCAGCCTGTTCATCAAGGATGGCCGTGGCCTGAAACTCACAGATGCAGGTTTGCGTCTGCGTGACGCCAGTGCCGACGCATTCGAACGCCTGCGCACGGTTTGCGCGGAGCTGACGCAAAGCACTGCGGACGCGCCGTTCGTGCTGGGCTGCTCGGGCAGCCTGCTGGCGCGCTGGTTCATACCCCGCCTGGGCAGGCTCAACGCTGATCTTCCCGACTTGCGCCTGCACCTGTCCGCCGGCGAAGGCGACCTGGACCCGAGGCGACCTGGACTGGACGCCCTGCTGGTATTCGCCGAACCGCCCTGGCCAGCCGACATGCAAGTGTATGAACTGGCCAGCGAGCGAATCGGCCCGGTGATCAGCCCGCGCTACGCCGGATTCGCCCAACTGCGGGACGCACCGGCCAGCACACTGTTGGGCGAGCCGCTATTGCATACCACCTCTCGCCCACAGGCCTGGCCAACCTGGGCACGGCAAAATGCCTTGGAACCCCAGTCACTAAGATTCGGGCAAGGTTTTGAGCATCTGTATTATTTACTCGAGGCCGCGGTAGCCGGGCTTGGCGTGGCAATCGCACCGGAACCGCTAGTAGCCGAGGACGTTCGTGCCGGACGCCTGGTCGCGCCGTGGGGCTTCAGTGAAACTCCGGCGCGGCTGGCGTTGTGGTTGCCCAAGCGCGCCGCGGATGGACGCGCCCGGCAATTGGCACAGTGGCTCAGGCATGAGCTGAGCCCACCCATTCAGTCACCGCGCTTGCACAACAAATAAMSHDLPPLNALRAFEATARLNSVSQAAEQLHVTHGAVSRQLKLLEEHLGVSLFIKDGRGLKLTDAGLRLRDASADAFERLRTVCAELTQSTADAPFVLGCSGSLLARWFIPRLGRLNADLPDLRLHLSAGEGDLDPRRPGLDALLVFAEPPWPADMQVYELASERIGPVISPRYAGFAQLRDAPASTLLGEPLLHTTSRPQAWPTWARQNALEPQSLRFGQGFEHLYYLLEAAVAGLGVAIAPEPLVAEDVRAGRLVAPWGFSETPARLALWLPKRAADGRARQLAQWLRHELSPPIQSPRLHNKPGPT0026360_2372DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566NANA
D1-35_04424327yqjD_2COG4575putative protein YqjDATGGCCAGCACTTCGTTACGTAAAGCCTCGTTGCAAAGCATGGAAGCGGAGATCGAGAGTCTGCTCAAGTCCTTGGAAAGCCTGAAGGACGACGCTTCGGACGAGTCGCGCAAAACCCTCAAGTCGCTCAAGGCCAATGCCGAAAGCGCACTGAAACACTCTCGGCATCTGCTCAGCGATGCGTATGAAGAGGTCAAGGTGAAAACCCGTGAAACCGGGATCGCCACCCGTGATTATGCTCAAGAACACCCCTGGACCACGGCCGGTGTCGCGGTTGGGGCGCTTGGTTTGCTGGCCGCTTATTTGTTGTGCAAGCGCGGTGACTGAMASTSLRKASLQSMEAEIESLLKSLESLKDDASDESRKTLKSLKANAESALKHSRHLLSDAYEEVKVKTRETGIATRDYAQEHPWTTAGVAVGALGLLAAYLLCKRGDNANANANANA
D1-35_04425216COG3360DodecinATGAGTGATCATCACACGTACAAAAAGGTCGAACTGGTCGGCTCGTCTCCCACCAGCATTGAAGACGCCATCAACAATGCCCTGGCGGAGGCCAGCAAAAGCCTCAAGCACCTGGAATGGTTCGAGGTCACCGAAACCCGCGGTCACATCGAAAACGGCCGTGCCGCGCACTTCCAGGTGACCATCAAGGTCGGGTTCCGGATCGCCAATAGCTGAMSDHHTYKKVELVGSSPTSIEDAINNALAEASKSLKHLEWFEVTETRGHIENGRAAHFQVTIKVGFRIANSNANANANANA
D1-35_04426225hypothetical proteinATGAAGAAGTTGATGGTGGCCCTGGGTCTGCTGAGCCTTGCGGGTAGCGCGTTTGCGGCCGGCAAGCCCTGCGAAGAGCTGAAAAGCGAAATCGCGGCGAAGCTTGATGCCAAAGGTGTATCGGGTTATTCGCTGGAAGTTGTCGATAAAGGCGCAGCGGCTGACGCAAAAGTCGTCGGCACCTGCGAAGGCGGTTCAAAGGAAATCGTCTACAAACGCGGCTGAMKKLMVALGLLSLAGSAFAAGKPCEELKSEIAAKLDAKGVSGYSLEVVDKGAAADAKVVGTCEGGSKEIVYKRGNANANANANA
D1-35_044271002hypothetical proteinATGAAACAGCTGTCCGAAGTCAAATTTTCAACCCTCGACCTTGTCCCCGTTCGTGCCGACGGCAACGCTGCCCAGTCCTTGCGCAACTCCCTCGACCTGGCGCAACACGTGGAAAAATACGGCTACACCCGCTTCTGGGTAGCGGAACACCACAATATGGATGGCATCGCCAGCTCCGCGACGGCGGTGTTGCTGGGCTATCTGGCGGGCGGCACATCGACCATTCGTGTCGGCTCCGGCGGGGTGATGCTGCCGAATCATGCGCCTCTGGTCATTGCCGAGCAGTTCGGCACGTTGGAGAGCCTGTTTCCGGGCCGGATCGATCTCGGGCTGGGCCGCGCACCCGGCTCCGACCAGATGACCGCCCGGGCGCTGCGCCGTGAACGCTCCGGCAGTGCCGATGATTTCCCTGACGATGTGGCTGAACTGATGCGTTACCTCGGCCCGCGAACCCCGGACCAGCGGATCATTGCCATGCCGGGCACGGGGACCAACGTGCCGGTGTGGCTGCTGGGTTCGAGCCTGTTCAGTGCACAACTGGCCGGAGAGCGCGGGTTGCCCTACGCCTTCGCCTCGCATTTCGCACCGCGTTTCATGCATGAAGCGATTCGCGTCTATCGCAATCATTTCAAACCGTCTGCGGTGCTGGACAAACCTTACGTCATGCTCGGCGTACCGCTGGTGGCGGCGGATACCGATGAGCAGGCCGATTACCTGGCGACTTCGGTATACCAGCGCATCCTGGCGTTGATGCGCGGCCAAAGTCTGGTACAGCGCCCGCCAGTGGAAACCATGAATGGCCTGTGGCTGCCCCATGAGAAAGAAGCGGTCGGTGACTTCCTTGGCTTGGCGATGATCGGTGGGCCGCAGAAAATCCGCGCCAGGCTGGAGGTGCTGATCGAGCAAACCCAGGCCGACGAGCTGATTTTTACCAGCGATTTGTACGAGCACACCGACCGGCTGCACTCCTATGAGCTGCTGGCGCAAGTCATGAAAGGCTGAMKQLSEVKFSTLDLVPVRADGNAAQSLRNSLDLAQHVEKYGYTRFWVAEHHNMDGIASSATAVLLGYLAGGTSTIRVGSGGVMLPNHAPLVIAEQFGTLESLFPGRIDLGLGRAPGSDQMTARALRRERSGSADDFPDDVAELMRYLGPRTPDQRIIAMPGTGTNVPVWLLGSSLFSAQLAGERGLPYAFASHFAPRFMHEAIRVYRNHFKPSAVLDKPYVMLGVPLVAADTDEQADYLATSVYQRILALMRGQSLVQRPPVETMNGLWLPHEKEAVGDFLGLAMIGGPQKIRARLEVLIEQTQADELIFTSDLYEHTDRLHSYELLAQVMKGPGPT0030680_2DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030680-putative_transposase-K07496NANA
D1-35_04428432osmCCOG1764Peroxiredoxin OsmCATGGCTATCGTCAAGAAAGCATCGGCTCACTGGGAAGGTGACCTGAAGACCGGAATCGGCTCCATCTCCACGGAAACCGGCGTGTTGCGCGAAGCGCCCTATGGTTTCAAGGCCCGTTTTGAAGGCGGCAAAGGCACCAACCCCGAAGAATTGATCGGCGCGGCCCATGCGGGCTGTTTTTCCATGGCGTTTTCGATGATTCTCGGCGATGCCGGGCTCAAGGCCGACAGCATCGACACCAACGCCGAAGTGACGCTGGACCAGGTTGATGGCGGCTTTGCGATTACCGCGGTGAAACTGATCCTCAAGGCCAAGATTCCGGGCGCCACCCAAGCGCAATTCGAGGAATTGAGCAACAAAGCCAAGGAGGGTTGCCCGGTTTCCAAGGTGCTCAACGCCAAAATCACCCTGGAGGCCTCGCTGGTAAATTGAMAIVKKASAHWEGDLKTGIGSISTETGVLREAPYGFKARFEGGKGTNPEELIGAAHAGCFSMAFSMILGDAGLKADSIDTNAEVTLDQVDGGFAITAVKLILKAKIPGATQAQFEELSNKAKEGCPVSKVLNAKITLEASLVNPGPT0013160_972DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013160-ohrB|osmC|ohr|ykzA-K04063NANA
D1-35_04429234hypothetical proteinATGAAACGATTCGCCCTGGCAGTCATCGGTTGCGCATTGGCCACATCGGCCCTCGCGGCACCCAAGCCCTGTGAAGACCTCAAGAGCGAGATCGAAGCCAAGATCCAGGCCCAAGGCGTGGCCTCCTACACGCTTGAAATCGTCACCAATGAAGAAGTCCATGACCAGAACATGGTGGTGGGCTCCTGCGAGAACGGCACCAAAAAAATCATCTACCAGAAGAACGACCGCTAGMKRFALAVIGCALATSALAAPKPCEDLKSEIEAKIQAQGVASYTLEIVTNEEVHDQNMVVGSCENGTKKIIYQKNDRNANANANANA
D1-35_04430429hypothetical proteinATGCGCCTACCCACGCTGTTGTTGGCTCTCGCCACGTTGAGCGGATGTGCAACGAGCCCATTGCCTGAAATGGACCCGAACATGGCCTGGGTCGATTTCGCCACGCCAATGCCGGGCGGCAAATTGCTGATGGCTGAAAGCCTGGACGGCCAGCGACTGCGGGACGGGCGATTTTTCCAGGTCTCGCCGGGTAGTCATGAATTGAAGGTGCGCTTCGACTTCGAGGTGTTCGGCGCTGGCGGTGGGCTGGGCATGATGAGCGAGCCGAAAGAACGGCTGTGCTACCTCATCGTACGCTACGACCATTTCGAGGCCGGCCAGCGTTATCGCCTGGAGGCTCGCAACCTGGCTTACTCCCCAAGCGCCCGGCTCTATAACGCCAAGCGTGAAATCGTCGCCGAGGATCGGCAGGCCAATTGCCTGATGTAGMRLPTLLLALATLSGCATSPLPEMDPNMAWVDFATPMPGGKLLMAESLDGQRLRDGRFFQVSPGSHELKVRFDFEVFGAGGGLGMMSEPKERLCYLIVRYDHFEAGQRYRLEARNLAYSPSARLYNAKREIVAEDRQANCLMNANANANANA
D1-35_04431414hypothetical proteinATGCGCGTGTTGATGCTGACTTGTGGCCTGTCGCTGCTGACCGGTTGTGCCGGTTTGCCTGATCCCGATCCCTCTCAAGCGTGGATCGACCTGGGAAATCATCGGGACACGGCTTTGCAAGCGCTGGAAGTCGATGACAAAGCCTCCATCGACCGTCGTTATTTCGAAGTGCAGCCCGGCAGCCATGAGCTGACGGTGCGTTATCAATTTGCCGTGGAACCGGGCAACATCGGCCCGGATGCCGAACCGTTGTGGCGTGATTGCCGGTTGAACGTGAAATTCAAGGATTTCAATGCGGGCCGGCGCTACCAGCTGCAGGCCGGCAGTATCGGCTTCCGTCCGTGGGCCAAGCTTTATGACGAGCAACGAAAGGTGGTGGGCCAAGGCACGCCGGCGGGCTGCCAGCAAAGCTGAMRVLMLTCGLSLLTGCAGLPDPDPSQAWIDLGNHRDTALQALEVDDKASIDRRYFEVQPGSHELTVRYQFAVEPGNIGPDAEPLWRDCRLNVKFKDFNAGRRYQLQAGSIGFRPWAKLYDEQRKVVGQGTPAGCQQSNANANANANA
D1-35_044321077hypothetical proteinGTGCTTTTGTTACTCAACGGTTGTTCCAGCCTCGGTTACTACAGCCAGCTCGCCAGTGGGCAGATACGACTGCTGCAAGCTCGAGAGCCGATCGACCGGGTCATCGCCGACCCCGCCCGTGATCCAAAATTGCGCGCGCATCTGGCCCAGGCGCGCGAAGCCCGGACGTTCGCCAGCGCCCACCTGCACCTGCCCGACAACCAAAGCTATCGCCTGTACGCGGACATTGGCCGTCCCTTTGTCGTCTGGAATGTCTTCGCCACCGCGGAATTTTCCCTGGCCCCGCAAACCCACTGCTTCCCCATTGCCGGTTGTGTGGCGTATCGCGGCTACTACAGCCACAGTGCCGCCCGAGGCGAGGCAGCGATGCAGCGCTTGCGCGGCATGGATGTCTCGATTGGTGGCGTAGAGGCTTATTCGACACTGGGCTGGTTCAATGACCCGATCCTCAGTTCGATGCTGCATTGGGGCGACGAGCGCTTGGCGACGCTGATCTTTCATGAACTGGCGCACCAGCGCTTCTACGTGAAAGACGACACCGAATTCAATGAATCCTTTGCCACCTTCGTCGAGCAGGAAGGCACCCGCCAATGGCGCGCCCAACGCGGACTGATACCGGACAATGGCAACAAGGTGCGCCAACGCGAGCAATTCATCCAACTGATCCTCGACACCCGCCAGCGGCTCGAAGCCCTTTACGCCCTCCCCCTGCCGGCCGAACAGATGCGCCAGCGCAAGGCCGCGGAATTCGAACGCCTGCGTGCCGACTATGAACACTTGCGCGACACCCAATGGGCCGGCGACAAGCGCTACGACGCCTGGGTCTACGCACCACTGAACAACGCCCGATTGTTGCCCTTCGGCCTGTATGACCAATGGGTGCCGGCGTTCGCGACGTTGTTCAGGCGTGAGGGCGAAGATTGGGTCAGGTTTTATGCCGCCGTGGAGAAGCTGGGTCGGTTGGCGGTGGATGAGCGAAAGGCAGCGTTGAAAGCATTGGCAGCATCGCCAACGGCGAGCCTTCTCACCACCAGAATGAGCCACCTGCCATCAGCGCCCGCAACTGCGTCACACTGAMLLLLNGCSSLGYYSQLASGQIRLLQAREPIDRVIADPARDPKLRAHLAQAREARTFASAHLHLPDNQSYRLYADIGRPFVVWNVFATAEFSLAPQTHCFPIAGCVAYRGYYSHSAARGEAAMQRLRGMDVSIGGVEAYSTLGWFNDPILSSMLHWGDERLATLIFHELAHQRFYVKDDTEFNESFATFVEQEGTRQWRAQRGLIPDNGNKVRQREQFIQLILDTRQRLEALYALPLPAEQMRQRKAAEFERLRADYEHLRDTQWAGDKRYDAWVYAPLNNARLLPFGLYDQWVPAFATLFRREGEDWVRFYAAVEKLGRLAVDERKAALKALAASPTASLLTTRMSHLPSAPATASHNANANANANA
D1-35_04433852pknBCOG0515Serine/threonine-protein kinase PknBATGCCAAAGATACTTGCCGGTCGCTATTGTCTCGAACGATTGCTCGGTGCCGGTGCCGGTGGCATGGGGGTGGTCTATCGGGCCCGCGACCTCCTCCATGAACAGTACGGCGATCCGGATCCTTACGTTGCGGTAAAAATGCTCAGCGAGGAACTCGGTGATGCCCCGGACGCGGGTGCGCTGCTTTATAGCGAGTTTGCCCTGAGCCGGCGCTTGAGCCATCCGAACGTGCTGCGCCCATACACGTTTGAAGTCGACGCTGCCCAGCGACGGGTTTTCATCACAATGGAGCTGATGCGCGGCTTGACCCTGGACAAGTTACTCTGCGAATCCCCCCTCGGTTTGCCCTGGCCCGAGTTGCAACCGATCGCAATTCCACTGCTTGACGCCATCGCACATACCCATGGCCGAGGCGTAGTGCATGGTGACATCAAACCGAGCAATGTCATGCTGAGTGCAGAAGGTGTGCGTTTGTTTGACTTCGGCCTGGGCCTGACTGAGGAGGGCCCCTTGAAAGGCTTGCCTTCGCTGAACCGCCAACGTCTCGGCGCCTGGACGCCGGCCTACGCCGCCCCAGAATTGCTGGAGGGAAGCCCCCTGTCTGCATGCACCGATCTCTATAGCCTGGCTTGCGTGCTGTACGAACTGGCGAGCGGCAGACACCCATATCGGCGTCTACCTTCAACCCAAGCTCGCGATACCGGGCTGGAGCGTGAGCTCAAGGCTCCGCGCAACTTGCCCAGGCGTTACTGGACAGCATTGCGCACGGCGCTGGCCCTAGATCCTGAGCGGCGCAGTATCAGTGTGACGCAGTTGCGGGCGCTGATGGCAGGTGGCTCATTCTGGTGGTGAMPKILAGRYCLERLLGAGAGGMGVVYRARDLLHEQYGDPDPYVAVKMLSEELGDAPDAGALLYSEFALSRRLSHPNVLRPYTFEVDAAQRRVFITMELMRGLTLDKLLCESPLGLPWPELQPIAIPLLDAIAHTHGRGVVHGDIKPSNVMLSAEGVRLFDFGLGLTEEGPLKGLPSLNRQRLGAWTPAYAAPELLEGSPLSACTDLYSLACVLYELASGRHPYRRLPSTQARDTGLERELKAPRNLPRRYWTALRTALALDPERRSISVTQLRALMAGGSFWWPGPT0030450_50DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0030450-stk1-K11916NANA
D1-35_04434729prpC_3COG0631Protein phosphatase PrpCATGCTTCACTCCGGCAGGTGGCGCAGCGCTGCGCGTACCGATCCCGGCAAGGTTCGCTCGCGTAACGAGGATGCCTCCCTGGAATGTCCGGAGCAGGGAATCTGGGCCGTTGCCGACGGAATGGGCGGCCACTCGGGCGGCGATATGGCCAGCCAACTGGTAGTTGCCAACCTCGCGGAGCTGCCCATTCATCGAGATATCGATGAGCGTTCGAGAGCGGTGCGCCAGTGCCTGCGCTGGACCAATCGAAGACTGAGTCAGGAATTGACAGTTACTGCTGAAAATCCGCTCGGCATCATGGGAAGCACCGTCGTGGTGCTGTTACTAGAAGGCAAACGTGCCGCTTGTATCTGGGCTGGCGACAGCCGCTGCTACCTATGGCGTGATCGGCAGCTGTATCAATTGTCCAAGGATCATTCCCTGCGCCAGCAACTGATCGACGAGCATCAGGCCAGTCTCGAGGAGGCAGATGCTCACCCCGCGGCGAAGGCGCTGACCCGTGCAGTAGGCGCCTCGCACGAACTGACGTTGGAAATCCTGGAGTTGGACGTTCATTACGGTGATACGTTTTTGTTGTGCAGCGACGGTTTGTATCAGGACCTTGGCGGAAAAGCGCTCGGTGATGCGATGAGCCTGGCTTCCCCGAGCAGAGCATTGGAACATCTTTTCGCAGGGGTTTTGAGCGGTCGGGCGAGGGACAACCTGACGGCGGTGGTGATACGTAAGTGAMLHSGRWRSAARTDPGKVRSRNEDASLECPEQGIWAVADGMGGHSGGDMASQLVVANLAELPIHRDIDERSRAVRQCLRWTNRRLSQELTVTAENPLGIMGSTVVVLLLEGKRAACIWAGDSRCYLWRDRQLYQLSKDHSLRQQLIDEHQASLEEADAHPAAKALTRAVGASHELTLEILELDVHYGDTFLLCSDGLYQDLGGKALGDAMSLASPSRALEHLFAGVLSGRARDNLTAVVIRKPGPT0002605_80DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_REGULATION,PGPT0002605-stp1|pppA-K11915NANA
D1-35_044353489hypothetical proteinATGAAATCGCTTTTCAGGAAAATGGGCGCCTGGTTGCGTCGGACTTGGGTCTGGACGCTGTCTTTGGTGCTTTTTATCGGATTGCTGGTGTGGTTTGTCGGACCGTTGCTGGCTGTTGCCGATTACAAGTTCTGGGCGAGCCCGACGGCACGTCTGCTGACGATCAGCGCGATGTTTCTGGCATGGGGACTGGGCATGGTTTTCTACTCTGAGCGCGTCTCGGAAAGCGAGAAGAAAGCCGAAGCCAATTCGCCACGTACGTTCAGTCGGACCAGGATAGACGATCAGCGCCGCGAGCTGCGCTCGCGCTTCAAGAAGGCTTTGGAAACGTTAAAGACCTCAAGCCTGTATTCCGGCCACGGCGAGTACTGGCGTGATGATTTACCCTGGTATTTGATAATGGGCCCTGCTGCCAGCGGAAAGACCAGCCTGCTGGCCTGTTCGGGTCTCGAATTTGCGTTCGACAGGTTTGAGCGTGATCCCTCGGAAGACGCTTGCGGTACACAACATTGCGATTGGTATTTTGCCCAACAGGCTGTGCTGGTCGATACGCCGGGACGCTACCTGACCCAGGCGGATCCAGATGTCGATGCTGATGCCTGGAGCGGGTTGCTCGAATGGCTGCGCAAGCGTCGCCATCATTGTCCATTGAATGGCGTGCTGTTGACGGTGCCTGTCGAGGTGCTGCTGGGAAGCGAGGATGAGGTTGCCCGGCTTGCCAGTCATATCCGGGCCCGTCTGCAGGATATCCAGCGCCAACTGCGCGCCGACATGCCGGTCTACCTCGTGCTGAGCAAGGCGGACTGCGTGCCTGGCTTTAACGAATTCTTCGACTCGATGACCCGGGAGGAGAGCGACCAGGTACTGGGCGCGAGTTTTGGTCGGGGCCCGCACGGTAACGATGTGACCGTATCGCGAACCGAATTCGAGTCTCTACTGCACAGGCTCAACAGTCAGTTGCTCACGCGTCTGCATCAGGAGCGAGATGCCGGACGTCGTGGTCTCATCCTGGATTTTCCCCAGCAACTGGCGCAGATGGGCACGCATCTCTGTCTGCTGCTCGAGCAAGTCTCCAATGGCAAGGCGTCCGCAATTCGGGGCTTTTACTTGACCTGCGCCTCGCGGCCTGGCGCTGCGGCTGCCAGCCCCGGCGATGCGAGCCCTGGCACTCGCCGCGAGCTTTCGCGGTCCTCTCGCGAAGGTATCAACTCCCGATTTATCCACCACTTGCTGACGCGGGTCATTTTTCCCGAAGCCGATCTGGCCCGCTTGGGGCGGAGCGAACATAGGCGTATCCGTTGGAACCAGCGTATGGTTTATTTCGCAGCGCTGGCGACCGTTGGATTGTTCGGGCTGCTGTGGGCACAGGGTTTTTCGGCCAACCACGAACGTCTGGAACATTTGTGGATGTTGGGCCAACGTTGGGAACAACTGCGCTTGGCGCCGATGGCCAGCGACGACTCGATTGCGCTGCTCGATTCGCTTGATGTCCGCTTCGAGGCCACTCAGGTCTTTGCTCCGGAAAAAGCGGTGCCACTGCATGAACGCATTCGTTTATATCAGGGGGATGCAACCAGCCCCATGGTGGTTGGCGCCTATGAACACGAATTGCAATCGCGACTCCTGCCTCGGGTCGCGAAAATGCTTGAGGAGCATATTCAGGGCAATCTGGGTGACCGTGAACGTTTGCTCAACAGTCTGCGCGCGTATTTGATGCTGGCCAGGCCCGAGCGACGCGACGCGGCATGGCTCAAGGATCGGCTTGCCCGCGATTGGTCGCTGCGTTATCCCGGCAATCCAGCGATCCAGAACGGCTTGAACACTCACTTCGAGCGTCTATTGGACGTGCCTCTCGCCTATGAGGTGGACGAGTCATTGGTGGCCCAGGCGCGGAAAATCCTGCGCGGTGAGTCCCTGGCGGACGTTGTTTACCGAATGCTTCGCGAGCAGGCCAACCCGCTGCCGCCATACAGTCTCAGCCAACATCTGGGCCCGCAGGGTGCGTTGCTGGTCGGCACTGACCAGATCATTCCGGGCTTCTATACCCGTCAAGGTTATGAGCAGTACTTTTCAGTCCAAGGCACGACGCTGATTACCGGACTACTACAGGACAACTGGGTGCTGGGCGAAGGTGCGAATCCCAGCGGCATGGACATGCGTCGTCTCATGAGCGAACTGGAGCAATTGTACTTTCGTGACTATGCCGAACGCTGGAGCGAGGCGATCGGGCGGGTCGGCTTGCGAAGGGCTGATAGCACCAGTGAAGCCGCCGGGCAATTGGCAGAGCTGACGTCGGCGTATTCGCCTCTGGTGCAATTGCTGGTGCAGGTGCGTGAGCACACGCGCATCCAAGGCATTGCCGAACGTATGGATGAAGCGACGCAAACGATCGGAAACAGCAGCAGTACCGTTTTGCATACGGTCGCCCTCGCTGGCAAAGCCGCCAGCTCCGTGGCAGCGAGGCTGCCGGAAGTCGGGCAGAAATCCTTACAACGGCGTTTTGAGCCATTGCACCGTCTGCTGGACGCTGAAGGTGGCCCCGCAGGCGACCTGATCCTGGCGTTGCGCGCTCTTGATGACGTCGACTCGCAGTTGGCCACTCTGACCCGCGCGAGTGCACCGGAGCAAGCCGCCTTCGAATTGGCGAGACATCGCATGGGTGTTCAGCAAGATGCGCTGAGCAATTTGCGTAGCGCGTCGGCACGCTTGCCGCGCCCGCTCAGTGGATGGCTCAACGGGCTTGCAGAGGATAGCTGGCGCCTGGTGCTCGATGATTCATATCGATACCTGAACCAGCGCTACCAGAGCGAGCTCTACACGTTCTACGCAAAGGCAATCAACAAGCGGTATCCGTTCAATGCCCACAGCGCCAGCGATGTCGCGATCAATGACTTCCGGGAGTTTTTCAAGGACCAAGGCATAGTCGATCGGTTCTTCGAGCGTTACATGCGGCCGTTCGTCAGTGGTCATTCGGGGCACTACCGTCTGCGCAGTGTCGATGGCCAGAGCCTGCCCATGTCCAGGGTCTATCTGGAGCAAATGGCAACGACACATACCATTCGCCAGAGCTTCTTTGCGGAAGATCCTGTCGAGCCAAAAGTCCAATTCAAGCTCGAACCCTACACGCTCGACCCGGCGGTCAGCCGATCCGAATTACGCCTGGGCGACCAGACGCTGGAGTACCGGCATGGGCCGATACAGCCTGTCGCTTTCACCTGGCCAATCGAGGCGCAGGACGGTCGAGCGGCCTTGGTACTGGACAGGATTGTCGGCGGGCAGGGGGTTGGCATCGAGAAGAGCACCGGGCCCTGGTCGCTGTTTCGTTTATTCGACTTGATGCAGATGGAATACCTGGTCGGTCGCGATGTGCGTGTGCTCAAGGCTGATCTCGGTGGCCTGCGGGCCAACTATCTATTGATGAGCCAGCGCACGCCGAACCCTTTCGACATGAGCACCTTGCGTACCTTCCGGATGCCGGTACAGCTCTGAMKSLFRKMGAWLRRTWVWTLSLVLFIGLLVWFVGPLLAVADYKFWASPTARLLTISAMFLAWGLGMVFYSERVSESEKKAEANSPRTFSRTRIDDQRRELRSRFKKALETLKTSSLYSGHGEYWRDDLPWYLIMGPAASGKTSLLACSGLEFAFDRFERDPSEDACGTQHCDWYFAQQAVLVDTPGRYLTQADPDVDADAWSGLLEWLRKRRHHCPLNGVLLTVPVEVLLGSEDEVARLASHIRARLQDIQRQLRADMPVYLVLSKADCVPGFNEFFDSMTREESDQVLGASFGRGPHGNDVTVSRTEFESLLHRLNSQLLTRLHQERDAGRRGLILDFPQQLAQMGTHLCLLLEQVSNGKASAIRGFYLTCASRPGAAAASPGDASPGTRRELSRSSREGINSRFIHHLLTRVIFPEADLARLGRSEHRRIRWNQRMVYFAALATVGLFGLLWAQGFSANHERLEHLWMLGQRWEQLRLAPMASDDSIALLDSLDVRFEATQVFAPEKAVPLHERIRLYQGDATSPMVVGAYEHELQSRLLPRVAKMLEEHIQGNLGDRERLLNSLRAYLMLARPERRDAAWLKDRLARDWSLRYPGNPAIQNGLNTHFERLLDVPLAYEVDESLVAQARKILRGESLADVVYRMLREQANPLPPYSLSQHLGPQGALLVGTDQIIPGFYTRQGYEQYFSVQGTTLITGLLQDNWVLGEGANPSGMDMRRLMSELEQLYFRDYAERWSEAIGRVGLRRADSTSEAAGQLAELTSAYSPLVQLLVQVREHTRIQGIAERMDEATQTIGNSSSTVLHTVALAGKAASSVAARLPEVGQKSLQRRFEPLHRLLDAEGGPAGDLILALRALDDVDSQLATLTRASAPEQAAFELARHRMGVQQDALSNLRSASARLPRPLSGWLNGLAEDSWRLVLDDSYRYLNQRYQSELYTFYAKAINKRYPFNAHSASDVAINDFREFFKDQGIVDRFFERYMRPFVSGHSGHYRLRSVDGQSLPMSRVYLEQMATTHTIRQSFFAEDPVEPKVQFKLEPYTLDPAVSRSELRLGDQTLEYRHGPIQPVAFTWPIEAQDGRAALVLDRIVGGQGVGIEKSTGPWSLFRLFDLMQMEYLVGRDVRVLKADLGGLRANYLLMSQRTPNPFDMSTLRTFRMPVQLPGPT0025960_1274DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025960-impL|vasK|icmF-K11891NANA
D1-35_04436864hypothetical proteinATGGATATGGAAAGTCCTCAGGACGAAACAACCGTTCTGCTCGATGCTGAGGGAAAGCGTCCGGCCTCGGGTCCTTTGACCGATGCCGTGACGCCGCCGCGCGTAGAACATCTGCACGAGCGGATGATCTATGCCGCTCGTCAACCGCATTCGCAAATGTTCGTTGCCAGCCTCAATCCGTTGGTGACGGCAGCGTCCGGGCTGTTATCCCGGGTGGTGCTGCTCAGGCAGGGCCGCGACCGCGGAGATCTGAATATGCTCAAACAGGAGCTGGCCCTCGACTTGAAAGACTTCGAAGCCCATGCATTGAGGTTGAACGTAGTGGAAAGCCAGCTGATCGCCGCCCGCTATGTGTTATGCACGGTGCTCGATGAAGCGGTGGTGGCTGCGCCTGGGGGGCAGGGAAGCAACTGGTCACAAATCAGCCTGCTGAGCAGTTTTCACAACGAGACTTTCGGCGGCGAAAAAGTTTTCCAGTTGCTTGATCGCTTATCGAAAGACCCCGTCAAGCATTTGCATATGCTTGAGCTCTCATACCTGTGCCTGTCCCTGGGCTTTGAAGGCAAATATGGAATGCATGCCCGTGGCGGATTTGAGCTCGAAGGCGTGCGCGATGCTCTCTACCGGTCGATCCGGCACGTTCGCGGCGACCCCCCTCGGCAGTTTTCCCATGTTGGGGACGGTTTTGTTACTCCTCGCCGCGCCCCGGTGCGCATTGTCCCCGCCTGGATGGTGATGGTCTTCGCCCTGGTCAGTCTGGGAGCGATGTATTCGGGCTTCGCCTGGGTCCTGCAGGAGCAACGCCAAAGCGCATTGCAACCCTATCAATTGCCAGAGCCGGTTATCGCTCAGCCGCTGCCGTAGMDMESPQDETTVLLDAEGKRPASGPLTDAVTPPRVEHLHERMIYAARQPHSQMFVASLNPLVTAASGLLSRVVLLRQGRDRGDLNMLKQELALDLKDFEAHALRLNVVESQLIAARYVLCTVLDEAVVAAPGGQGSNWSQISLLSSFHNETFGGEKVFQLLDRLSKDPVKHLHMLELSYLCLSLGFEGKYGMHARGGFELEGVRDALYRSIRHVRGDPPRQFSHVGDGFVTPRRAPVRIVPAWMVMVFALVSLGAMYSGFAWVLQEQRQSALQPYQLPEPVIAQPLPPGPT0025955_767DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025955-impK|ompA|vasF|dotU-K11892NANA
D1-35_044371332hypothetical proteinATGAATCACGATAAAGTCATCTGGCAGGAAGGCATGCTGCTGCGGCCGCAACATCTGCAGCACAACGACCGCTATTTCGATCACCAGTTGAAGGTCCGCACGCGGCTATTGAGCGGCTACACCTGGGGCTTCCTGGCGCTGGAAATCGATGCGCAGTTCCTCAACATGGGACGACTGGTCGTCAACAGAGCCTCCGGTGTCCTGCCGGACGGTAGCTTGTTCGAGTTGGACGGCAGCGCTGAACCGCTCGTCCTGGAAGTCCCGTCCAATATCTGCAATACGCCGATCTACCTCGCGCTGCCACTAGTAACGGGCAATCACATCGAGTCTCGTCGTCCAGAGCAGTCGGATGTGCTGGCGCGCTACATCACCTATGACGCACAAGTGTCTGATTCAAACGCTGCGGATTCCTCCAGCAGCCAGATCAGCTGTGGCCGCCTGGATTTTCGTCTTCTGCTGGGTGAGCAGCAGGGCGATCAGGTTTTTGTGAAACTGAAACTCTGTGAAGTGCTTGATACCACGCCCGACGGTGCGATCACGCTCGATTCGGATTTCGTGCCTACGTTTATCCAGGTCAAGTCGTCCGCTTACCTGTTGTCGTGTCTCAAGGAAGTGATCGGCATGCTGGGCCACCGGGGCGAAAGCCTCGCCGAGCGAATTCGCTCCTACGGAAAGTCGGGCGGGGCACAAGTCGGCGATTTCATGATGTTGCAATTGATCAACCGCACCGAGTTGTTGCTGCGGCATCAACTGGAACTGGAGCTGGCTCAACCCGAAACGCTATACCGGATGCTGTTGGCCCTGCTGGGAGAGTTGGCGACATTTTCCACTGACAGCAAGCGACCGCCCCTCGACAATCGGTATCAGCACAGCAACCAGGGCGAGTGCTTCCGAAGCCTGATGCAGTCAATCCGTCAGGTACTGTCGATGGTACTTGAGCAGCACGCCATCGAACTGCAATTGCAGGCTCGCCAGTACGGCATCCTTGTTTCTCAAGTGAACGATCTTTCGCTGTTGGACTCGGCTTCATTCGTATTGGCCGCGAGCGCCGACTGTGACGGTGAAGAGCTGCGTCGTCGCTTGCCGTCGCATCTGAAGATCGGTTCGGTCGAGCAGATTCGCCAACTGGTCAATCTGCATCTGCCGGGCATCAGGATCAGGCCGTTACCCGTAGTGCCGCGGCAGATTGCGTTCCATGCCAACAAAGCCTATTTCATCCTCGAACCCAGTGCTGAAGATTTAGCTCAAGTGAAGCGCTCAGCTGGCTTTGCCTTCCATGTCTCTGGAGAGTTTTCCGAGCTTGAACTGAATTTTTGGGCGATCAGGAACTGAMNHDKVIWQEGMLLRPQHLQHNDRYFDHQLKVRTRLLSGYTWGFLALEIDAQFLNMGRLVVNRASGVLPDGSLFELDGSAEPLVLEVPSNICNTPIYLALPLVTGNHIESRRPEQSDVLARYITYDAQVSDSNAADSSSSQISCGRLDFRLLLGEQQGDQVFVKLKLCEVLDTTPDGAITLDSDFVPTFIQVKSSAYLLSCLKEVIGMLGHRGESLAERIRSYGKSGGAQVGDFMMLQLINRTELLLRHQLELELAQPETLYRMLLALLGELATFSTDSKRPPLDNRYQHSNQGECFRSLMQSIRQVLSMVLEQHAIELQLQARQYGILVSQVNDLSLLDSASFVLAASADCDGEELRRRLPSHLKIGSVEQIRQLVNLHLPGIRIRPLPVVPRQIAFHANKAYFILEPSAEDLAQVKRSAGFAFHVSGEFSELELNFWAIRNPGPT0025950_1358DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025950-impJ|vasE-K11893NANA
D1-35_04438516hypothetical proteinATGTCTCGCAGCACCGTGCCTTTATTCAAGCCTTTGATGTTGGCGTTCGTAACCTCGACGCTCATGACCGGCTGCGCCTCGCTGTCACCGTTTTCGACGATGACCAAGCTCAACCTCACCCTGATCGCCGGCAATCAGCTCAACCCGGATCTCAACGGACGGCCATCTCCCGTGGTGGTGCGCTTGCTTGAGCTCAAGCATCCAGTGGCTTTTGAGAACGCGGACTTCTTCAGCCTTTACGAGCGTGCCAGGGAAACTCTTTCACCTGACCTGATCGCCAGCGAAGAGCTGGAGTTGCGTCCCGGCGAAACCGTCAGGCTCCGGCTCGACATTGCAGGGGGCGGTCGTTATGTCGGGATACTCGCGGCATACCGTGATCTGCCGCAAGCAAAGTGGCGCTACACGCTGCCGATCATTGCGGGGCGAGTGACTGACGCGAGCCTGACGCTTGATCAGGATGGGATCGCCACTCGTCTTGGAAAGCCGGCAGGGTGGGTGATCGATGAATCACGATAAMSRSTVPLFKPLMLAFVTSTLMTGCASLSPFSTMTKLNLTLIAGNQLNPDLNGRPSPVVVRLLELKHPVAFENADFFSLYERARETLSPDLIASEELELRPGETVRLRLDIAGGGRYVGILAAYRDLPQAKWRYTLPIIAGRVTDASLTLDQDGIATRLGKPAGWVIDESRPGPT0030425_831DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0030425-vasD|lip-K11906NANA
D1-35_044391188hypothetical proteinATGGAACTCGTTTTAGAAATGCTCACTGCCAGGCAGTTCATCACCCCGGATCTCTGCCGGAAGATTTTCGGGCCGTCCGGCGGTGTGATTGGGCGGGGGGATGATTGCGACTGGATCATTCCGGACTGCGAGCGCCTCCTGTCCAAGCGTCACGCACGAGTGAGTTTCGAGGAGGGCAGGTTTTTTCTGACCGATACCAGTGGCAACGGCATATCCCATCGTAAAAGCGGCATGCGATTACCCAAGGGGCAGCCAGTGCACATCGAGGATGGGGATGTGTATGTGATGGGCGACTGCACTGTCCAGGCGCGGCTGGTAGAGGGGGCGGCGAGCCGCGTTGCAGACCGCTGCCGTTCAGTACCGGTCGACGGCTTCATACCGGACGACGCGTTCTTCAATCTTGATCCGCTGAAAACCCTCGTTCAACAGGAACGGGCATATTGTGGGATTGATGAGCTGATCAACCCCGGTGCGGCGGCCACGTTCGGGTCCAGTTGCCCGGACCATGGGCGTGTGGATACGGAGAGCCTTCTGCTTCCTGAACTGGTCGAAGCACCGCGCGAACCCGAGCTACACCTGTCGTCAGAACCCGCTGCGCTGGTAAGCCAGGATTTCTGGAGACGCTTCGGCGTTGCGCTGGGCATGGATCTCGACAATTTGGACAACGAAGGCCGGGAGGCCCTGGCGATTGATGTTGCTCGGTTGTTCCAGCAAAGCATTCGAGGGCTGCAACAGAGCGTGCGAACCCGTAGGGAGTTGAAAAGCGAATTGCGCCTGGCGCCAACGCAGATTCAACGCGACCAGAAAAATCCATTGAAGTACACCGATGACGCCCTGCAGATGTTATTGCAACCGAGATCGCCAGGAATGTTGTCGGCGACCGATGCCATCGCTAGCGCATTCAGCGATCTTCAGGCTCATCAAGTGGCGTTGCTCGCCGCCAGTCGCGCCACCTTGCGCGCAACGCTGGAGCATTTTTCACCTCGGCAATTGATCCTTCGACTGGAACGAGAGCAACGACTGCTGATCAGCACACATGGTCGCTACTGGCGAGCATATGGTCGTTATCACCAGGCGCTTTGCCTGGACGACGACTGGACCGAGCGACTGCTGGCCCGGGATTTCGCCAAGGCTTATGAGGAGCAGGTTCGCCTGATCTCCACCCTGCAAAACGACTCTCATGGATGAMELVLEMLTARQFITPDLCRKIFGPSGGVIGRGDDCDWIIPDCERLLSKRHARVSFEEGRFFLTDTSGNGISHRKSGMRLPKGQPVHIEDGDVYVMGDCTVQARLVEGAASRVADRCRSVPVDGFIPDDAFFNLDPLKTLVQQERAYCGIDELINPGAAATFGSSCPDHGRVDTESLLLPELVEAPREPELHLSSEPAALVSQDFWRRFGVALGMDLDNLDNEGREALAIDVARLFQQSIRGLQQSVRTRRELKSELRLAPTQIQRDQKNPLKYTDDALQMLLQPRSPGMLSATDAIASAFSDLQAHQVALLAASRATLRATLEHFSPRQLILRLEREQRLLISTHGRYWRAYGRYHQALCLDDDWTERLLARDFAKAYEEQVRLISTLQNDSHGPGPT0025945_302DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025945-impI|vasC-K11894NANA
D1-35_04440141hypothetical proteinATGCCTGTTCGTGCCTGTCAGACCGTTCTGCTTGTTTTCATCGTGTTGTTCGGCCTTGGCGCCTGCAGCGGCAATTATAAATTCGACGATAAAGATTATCGCCCATTAGGTGATCCACAAGCGGTCAGTCGTGGCCAGTGAMPVRACQTVLLVFIVLFGLGACSGNYKFDDKDYRPLGDPQAVSRGQNANANANANA
D1-35_044411527norR_3Anaerobic nitric oxide reductase transcription regulator NorRATGAGCGCAATGTTCACGCAGGTACCGCAGCCGCTGGCTTATGCAGAAGCCCTTTTGGCCGAGTTTTCAACCCTGTCGCGATCTGGCGACGACGTATCACTGCTTGGGGATTTCATCAGGGGCATCGCACGGCTCAGTACGTGTGAGGTGGCGCAACTATACCTTCTGGATACCACGCACGCCCGGTTGGAAATGTACGCTGAATGTCTCGAAGAGCAGCTGCAATTTCCTGATCGGGCAAGCGTGTCCTGCGACTATAACGATGAACAACTGTTGCATTACGTCCTGCGCCAGAATCGTGTGGTATGCCTGGGCGCGTTGAGTGACAGCTTGCACGATACGGCGTTCCTGCCGGTTCGTGCCGCGCCTTGGCAATCACTGCTCTGCGTGCCGCTTGTCGACATGCGAGGCGCCACCGCCGGACTGTTGCTCTGCGCCAGCGTCAAGCATCTCGACTTGAAGGGGTTCGCTGAGTCCTTCGGGCATCTGGGGATGTTTGCGCTCAGGCAGATGCACCTGCTGCAGTGCAGGCAACTTCCTGCCGACGGCCTCCGGCAAGTTGCCATTACCCTGCCAAGTGCCAACCGCTATGGTTTGATCGGCAAGAGCGACGCGATGCGTCAGACCTGCCTGTTGGTCAGCAAGGTAATCAACAGCCCATACACCGTGCTGTTGTGTGGCGAGACCGGGACTGGCAAGGAAGTGGTTGCCCAGGCCCTTCATGATCATGGTCCGCGCCGCACGGAGGCATTCATTGTTCAGAACTGTGCCGCGGTTCCCGAGCATTTGCTGGAAAGTGAGTTGTTCGGTTATCGCAAGGGGGCTTTCACGGGTGCCGATCGGGATCGCCCCGGGCTGTTCGATGCGGCTGACAGAGGCACGTTGTTGCTCGATGAAATCGGTGACATGCCATTGTCTCTCCAGTCCAAGCTGCTACGGGTATTGCAGGAAGGCGAGATTCGTCCGCTGGGGTCCAACCATACCCACAAGATCGATGTTCGCATCATTGCCGCTACCCATCGGGACCTGAAGCAATTGATGAACGAGGGCAAGTTTCGCGAAGACTTGTATTACCGCCTCGCACAGTTTCCGATCCAGTTGCCCGCGCTACGTCAGCGCGGCCCCGACATCATTGAACTGGCGCGACACTTCACTGACAAGGCCTGCGCACTCCTGCAACGAGACGTTCCGCGCTGGTCCGACGCAGCGCTGGTTCACCTGGCGGCCTATGATTTTCCAGGCAACGTACGCGAGCTCAAAGGCATCGTGGAAAGAGCCGTGCTGCTGTGCGATGGCGCCGAACTGCTGGAAGAGCATTTTTCCCTGCACATCAAAGATCTGTCCGAAGAGGGCCACGTTAGCCTGCGTGAACGGATGGAGCAAATCGAGCGCAGTTTGGTAATTGATTGCCTGCGCAAGAACCTCGGTAACCAGACGCTCACTGCCTGTGAGCTCGGCTTGCCCCGTCGGACACTGATCTATCGTATGCACCGGCTGAAAATCAGCCGTCGGGATGTTGAAGTATGAMSAMFTQVPQPLAYAEALLAEFSTLSRSGDDVSLLGDFIRGIARLSTCEVAQLYLLDTTHARLEMYAECLEEQLQFPDRASVSCDYNDEQLLHYVLRQNRVVCLGALSDSLHDTAFLPVRAAPWQSLLCVPLVDMRGATAGLLLCASVKHLDLKGFAESFGHLGMFALRQMHLLQCRQLPADGLRQVAITLPSANRYGLIGKSDAMRQTCLLVSKVINSPYTVLLCGETGTGKEVVAQALHDHGPRRTEAFIVQNCAAVPEHLLESELFGYRKGAFTGADRDRPGLFDAADRGTLLLDEIGDMPLSLQSKLLRVLQEGEIRPLGSNHTHKIDVRIIAATHRDLKQLMNEGKFREDLYYRLAQFPIQLPALRQRGPDIIELARHFTDKACALLQRDVPRWSDAALVHLAAYDFPGNVRELKGIVERAVLLCDGAELLEEHFSLHIKDLSEEGHVSLRERMEQIERSLVIDCLRKNLGNQTLTACELGLPRRTLIYRMHRLKISRRDVEVPGPT0030460_53DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_REGULATION,PGPT0030460-sfa2-K11914NANA
D1-35_044422583clpV1_3COG0542Protein ClpV1ATGATCAATGTGGATCTTCAGCAACTTATCCAAGCGCTGGACGCAGATACCCGGGGCGATCTGGAGCGCTCGGCGCAGCGATGTGCGGATCGTGGCGCAGACAAGATCCTGGTGGATGATCTGTTGCTGAGCCTGCTGGAACGTAGCCAGAGCTTGCTTGTGCGTGCCTTGCTGGATGCCGGGATAAGTCCAGGCCAGTTGAGCTCGGTTCTTCAACCTCGGGCTGAACACGGCGCTTCACGTAATCCGGTATTTGCCCTTGAGCTGGTGCAATGGCTGCAGGATGCGTTGTTGGTGGCGAATCTCGAGCTAGGTCAAGGCAGTGTCACGGAGGCCGCGTTGATCCTGGCGTTGTTACGCAACCCCATTCGTCATGCAGGCACTCGGTACCAGCCGTTGCTCGCCCGGTTGAGCATCGAGCGGCTGATGGATTTCGCCCTGTCCCTACAGTCCCAGACGAACGACAGTCAACCCGCCATGCCGGGCGATTCGTTACTGGAGCGCTTCACTCATAACCTGACCCGGCAGGCTCGTGACGGCAAGCTTGATCCGGTGCTATGCCGGGACGGCGAAATCCGGCAAATGATCGATATCCTTTCGCGTCGCCGCAAGAACAATCCGATCGTTGTCGGTGAAGCCGGGGTCGGCAAGACTGCCATCGTCGAGGGGCTGGCGTTGCGCATCGCCGCAGGGGAAGTGCCGTCAGGGCTTGAAGGGGTACAAATCCTTTCGCTGGACATGGGGCTGCTGCAGGCCGGAGCCAGCATCAAAGGGGAATTCGAACGTCGCCTCAAAGGGGTGATCGACGGCGTAAAGTCTTCATCCACTCCCATTATTCTGTTCATTGACGAGGCCCATGCATTGGTCGGCGCAGGTGGAAGCGCCGGCGGTTCAGACGCGGCCAACCTGCTCAAGCCGGCGCTGGCCCGAGGTGAATTGCGCACAATTGCGGCCACGACATGGGCCGAGTACAAGAAATACTTCGAAAACGACGCGGCCCTCGCACGTCGTTTCCAGCCAGTGCAACTACACGAGCCGACCGTCAGTGATGCGGTGACAATCCTGCGTGGGTTGGCCCGGGTTTATGAGCGGAGTCATGGCATCTATCTGCGTGATGATGCGGTGGTCGCCGCGGCGCGGTTGTCAGCTCGCTATCTGGCCGGTCGTCAATTGCCGGACAAGGCCGTCGATGTGCTGGATACCGCCTGTGCTCGGGTGCGTATCAGCCTGGCTGCAGCGCCGCGAAGCCTTGAGCGCCTGCGTGGAGAACTGGCCGAAGGCGAGCGACAACGTCAGGCGTTGTGTCGTGATGCACAGGCCGGGTTGCCGATCGATCACCAGGCATTGGCGACACTTGAGGTGAACCTGGAAGCTATTGAAGAAAAGCGCCAGGTTCTGGAGTCTCGTTGGGTCGAGCAACGAGTGCTTGCCGAACGCCTGTTAACACTACGCCAGCAATTGGTCGGAGCGCGGGAGGATGGGTCGCAGGTCATGGAAGTCGAGACGCTGGAAGCGGCGTTGGACGAAACCCACCATGCGCTGCTAATCGCCCAGGCCGATGAGCGCCTGGTCAGCTTTGAAGTGTGTCCACGCCTGGTAGCTGAAGTAATCAACGCATGGACTGGCGTGCCGTTGTCGCAGCTGGCATGCGAGCACAACAGCCGGATCACCCGTTTCGCGGATGACTTGGGCGCGCGCATCAGGGGGCAGGAACCAGCCGTGCAGGCCCTTGATCGCGCGATGCGGGCGGCCGCTGCTGGCTTGAACAAGGTCGATGCTCCTGCGGGTGTGTTTTTGCTGGTGGGCCCGAGCGGTGTCGGCAAGACCGAAACGGCGTTGGCCCTGGCGGATTTGCTATACGGCGGAGACCGTTTTATCACGACGCTCCACATGGGCGAATTCCAGGAGAAACATACCGTTTCCCGACTGATCGGCGCGCCACCGGGTTATGTCGGGTTCGGCGAGGGGGGCATGCTCACCGAAGCCGTCAGGCATAAGCCCTATTCTGTTGTGTTGCTCGACGAGGTTGAGAAAGCTGATCCGGATGTGCTGAATCTGTTCTATCAGATTTTCGACAAGGGCCTGGCCAATGACGGCGAAGGACGGGAGATCGATTTTCGCAACACGCTGATTCTGATGACGTCGAATCTGGGCAGTGAATGCATCAGTCAATTGTGCCAAAACAACACGCGGCCAAGCGCTGAACATCTCGAAGAAGCTATCCGTCCGTTGCTCAGTCAGCATTTCAAACCTGCATTGCTGGCGCGGATGTGTGTGGTGCCGTACTTCCCGGTAAGTGGTGCGGTGTTGCGTGAGCTCGTGGAGATAAAAATGGCTCGCTTGGGCGAGCGGCTGAAACGTCGTCAGTTGGGATTCACTTATTGCGCGCAGCTTGTGGACCAGCTGGTCGAGCGTTGTGACCGCAGCGACAGCGGCGCGCGGCTTATCGATCACTTGCTCGATCTTCATCTGATGCCGCGATTGGCCGACCGCTTGCTCATGGCGATGGCGAACAATGAACAGCTGCGGCATGTCCACGCCACGCTTGATGATCAAGCCAGCGTAGTGTGCGAGTTCACTTGAMINVDLQQLIQALDADTRGDLERSAQRCADRGADKILVDDLLLSLLERSQSLLVRALLDAGISPGQLSSVLQPRAEHGASRNPVFALELVQWLQDALLVANLELGQGSVTEAALILALLRNPIRHAGTRYQPLLARLSIERLMDFALSLQSQTNDSQPAMPGDSLLERFTHNLTRQARDGKLDPVLCRDGEIRQMIDILSRRRKNNPIVVGEAGVGKTAIVEGLALRIAAGEVPSGLEGVQILSLDMGLLQAGASIKGEFERRLKGVIDGVKSSSTPIILFIDEAHALVGAGGSAGGSDAANLLKPALARGELRTIAATTWAEYKKYFENDAALARRFQPVQLHEPTVSDAVTILRGLARVYERSHGIYLRDDAVVAAARLSARYLAGRQLPDKAVDVLDTACARVRISLAAAPRSLERLRGELAEGERQRQALCRDAQAGLPIDHQALATLEVNLEAIEEKRQVLESRWVEQRVLAERLLTLRQQLVGAREDGSQVMEVETLEAALDETHHALLIAQADERLVSFEVCPRLVAEVINAWTGVPLSQLACEHNSRITRFADDLGARIRGQEPAVQALDRAMRAAAAGLNKVDAPAGVFLLVGPSGVGKTETALALADLLYGGDRFITTLHMGEFQEKHTVSRLIGAPPGYVGFGEGGMLTEAVRHKPYSVVLLDEVEKADPDVLNLFYQIFDKGLANDGEGREIDFRNTLILMTSNLGSECISQLCQNNTRPSAEHLEEAIRPLLSQHFKPALLARMCVVPYFPVSGAVLRELVEIKMARLGERLKRRQLGFTYCAQLVDQLVERCDRSDSGARLIDHLLDLHLMPRLADRLLMAMANNEQLRHVHATLDDQASVVCEFTPGPT0025985_1433DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025985-vasG|clpV-K11907NANA
D1-35_044431020hypothetical proteinATGGACACCCCGTATGGGCCAGCAGCCGCTTCTATGAGCGCGCTGACGAGAGGTATACGCGAGTATTCGTTGTTCCAGGCGATCTTACTGGTGATCGAGCGGCTGCGCGGCGCCCATCCCGGGCTGGATGACGAAGCACTGTATGACCAGTTGGAGTTCCAGGCCAACCCGAGCCTGGGGTTTCCGGCCAGTGATATCGAGCGCGTGGAATTTTTCCAGGAGCATGGGCAGGTGCGGGCTCGCCTGAGTATCAACCTGATCGGCCTGGTGGGAACAGGATCACCGGTACCGGCGTTTTATGGCGAGCAGGCGTTGGGAGACGGCGATGGCAATCCGACTCGCCAGTTCCTCGACGTGTTCCACCATCGCCTTCAGCGGTTGATGCTGCCGATATGGCGAAAATATCGTTACTACCAGAGTTTCCAGACTGGCGCTAGGGACCCGTTTTCGGAGCAACTGTTCGCGCTGATCGGTCTGGGAGGCGAAGAAATTCGCAAGGCTACTCAACTGAACTGGAAACGCCTGCTGCCCTACCTGGGCCTGTTGAGTCTCCGAGCCCATTCGGCAGCCTTGATCGAAGCGGTGCTGCGTTATTACTTCAAGCACGCCGAGCTAAGCCTGGAACAGTGCGTAGAGCGCCGGGTCGAGATTCTCGCCGAGCAGCGCAATCGACTTGGAGGCGCCAATAGCCTGTTGAGCGAAGACCTTGTGCTGGGCGAAAGGGTTCGTGATCGCAGCGGCAAGTTCCGGATCCATATTCGCGAACTGGACTGGCAACGTCTGCACGAATTTCTGCCAATCGGTGTTGGCTACCAACCTCTTTGCACACTGGTGCGCTTCACCCTGCGTGATCCCCTCGAATATGACATTCGCCTGGTCTTGCGCCAGCAGGAAATACATGAGCTGCGTATTGGAGAACAGAACACTTGCCGCCTGGGATGGACCAGTTGGCTGGGGCTTGAACACGCCGACGGCGTGGTGTCCCTCGGCAGCAGCATTCATCAGGAACGAGTGAAATGAMDTPYGPAAASMSALTRGIREYSLFQAILLVIERLRGAHPGLDDEALYDQLEFQANPSLGFPASDIERVEFFQEHGQVRARLSINLIGLVGTGSPVPAFYGEQALGDGDGNPTRQFLDVFHHRLQRLMLPIWRKYRYYQSFQTGARDPFSEQLFALIGLGGEEIRKATQLNWKRLLPYLGLLSLRAHSAALIEAVLRYYFKHAELSLEQCVERRVEILAEQRNRLGGANSLLSEDLVLGERVRDRSGKFRIHIRELDWQRLHEFLPIGVGYQPLCTLVRFTLRDPLEYDIRLVLRQQEIHELRIGEQNTCRLGWTSWLGLEHADGVVSLGSSIHQERVKPGPT0025940_1282DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025940-impH|vasB-K11895NANA
D1-35_044441788hypothetical proteinATGTCATTCAATCAGTATTACCAGAGCGAGTTGAGCGCGCTTCGCCAGTTGGGCCAGCGTTTTGCCGAGCGCAATCCTGCGCTGGCACCGTTCCTCGGCCAGGCTGGGCGCGACCCTGATGTTGAACGGTTGCTGGAGGGCGTCGCGTTCCTGACAGGGCGTTTGCGGCAGAAGCTCGATGACGAACTGCCGGAGTTGAGCCATTCGTTGATGCAACTGCTTTGGCCCAACTACATGAGGCCGCTACCGTCCTTCGGTATCTTGCAGTTTGATCCGCTACAGCGGGCTGGTCCCGCATTGCAGGTCGAGCGCGATACGCCGGTGGAGAGCAAGCCGATCAAAGAGGTGATCTGTCGTTTTCGAACCTGTTACCCGACCGAGGTATTGTCGCTGGATCTGACTGGGCTCGGTTACTCGGTAAAGGGAAACGGCTCGTTATTGAGCCTGCGTCTGCAGATGACTTGCGATGGCCACCTGGGAGAATTGCAGCTAAGCCGTTTGCGCCTGCATCTGACCGGCGAGCGTTATATCAGCCAGATGCTCTACCTCAATCTGATGCGCAACCTGGAACATGTCGAGCTGATCCCGTTGGGCGGTGATGGCGGTCCCGTAACCGCTGCGAATGGTGATCCCCTGACGTTCAGGATCGCCGCCAGCCAAGTCCGGCCGGTGGGGTTCGCCGACGAGCACGCGCTGGTCCCTTATCCGTTGAACACCTTTCGCGGCTATCGCTACCTGCAAGAATATTTCGCGTTCCAGGAAAAATTCCTGTTCATCGACGTCAATGGCCTCGATGTACTCAACACGTTGCCGCAAGACATCCTGAAACAGATGCGAGGGCTGGACCTGCGTTTCGACATCGGCAAGAGCGGTAATCAGCGGTTACGTCCGACGCTGGATAACGTGAAGCTTTATTGCACGCCCATCGTCAATCTGTTCAAACATGACGCGCAGCCGATTCGCCTGGATGGGAAGCAGGATGAATACCTGCTCTTGCCGGCCCGATACGACCCTGAACACTGCGGCGTGTTTTCCGTCGAAAGCGTTACTGGCTGGAACCCCGGTGGGCTGGGTTACCAAGCCTACGTTCCTTTCGAATCCTTCGAACACGATTCCAGTTTCGACGTACCTGGCAATCGCGGTTATTACAGCGTTCGCCAACGGCCCTCGTTGCTTCACGGTGGCTTTGACACTTGCCTGGGATTCGGCATCCGGCCCAACCCGACCCACGAGACGCTGTCGATCGAGTTGATGTGCACCAATCGGAACCTGCCGCGCCAGCTCAATCCGGGTGATATCAATCAACCGGGCGACAAGAGCCCGGCGTCGCTTGGTTTCCGCAATATCGGTCCGGTTACGCCGAGTTACGCGCCTCCGTTGGATCGTGACTTCCTCTGGAAGCTCATCAGCAACATGTCGCTCAACTACCTGTCGCTGGTGGACGTCAATGCGCTGAAAGTAATACTCGAGACCTACGACTTTCCGCGTTACCACGACGAACAGACCGAAAAGGTCAGCAAGCTTCTGCTGAGCGGCCTGAAGGCGATTGAACACCACCATGTTGATCGACTGCATCACGGCTTGCCCGTTCGCGGCATATGTACAGAGCTGACGATCAATCCTCAGGGCTATATCGGCGAAGGTGATTTGTACGTCTTCGCGTCCGTCCTCAACGAGTTTTTCGCGCTCTACGCCAGCCTCAACTCGTATCACCAGTTGCGGGTAAACAGTACGCAGGGAGAGGTGTACCAATGGACACCCCGTATGGGCCAGCAGCCGCTTCTATGAMSFNQYYQSELSALRQLGQRFAERNPALAPFLGQAGRDPDVERLLEGVAFLTGRLRQKLDDELPELSHSLMQLLWPNYMRPLPSFGILQFDPLQRAGPALQVERDTPVESKPIKEVICRFRTCYPTEVLSLDLTGLGYSVKGNGSLLSLRLQMTCDGHLGELQLSRLRLHLTGERYISQMLYLNLMRNLEHVELIPLGGDGGPVTAANGDPLTFRIAASQVRPVGFADEHALVPYPLNTFRGYRYLQEYFAFQEKFLFIDVNGLDVLNTLPQDILKQMRGLDLRFDIGKSGNQRLRPTLDNVKLYCTPIVNLFKHDAQPIRLDGKQDEYLLLPARYDPEHCGVFSVESVTGWNPGGLGYQAYVPFESFEHDSSFDVPGNRGYYSVRQRPSLLHGGFDTCLGFGIRPNPTHETLSIELMCTNRNLPRQLNPGDINQPGDKSPASLGFRNIGPVTPSYAPPLDRDFLWKLISNMSLNYLSLVDVNALKVILETYDFPRYHDEQTEKVSKLLLSGLKAIEHHHVDRLHHGLPVRGICTELTINPQGYIGEGDLYVFASVLNEFFALYASLNSYHQLRVNSTQGEVYQWTPRMGQQPLLPGPT0025935_1145DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025935-impG|vasA-K11896NANA
D1-35_04445414hypothetical proteinATGACTGGATACGGCAGCCTTTTCGAACGCTTGAATGGCGATACCGAAGCACGCTCGGGATTGAGTCGCGATGCCTGCGCCGGAGCGTCCGTGGCTGCCCATCTGGCAAAAATGCTTTGCACCCGAGCGGGCAGCGCACAAACCGCAGCCGATTACGGATTGCCCGACCTCAACGATATGCGGCTGAGTTTGCACGACGCCCGTGGTCAGGCCTGTCGTGCGATCCAGGCCTCTATCGAGGCTTACGAGCCGCGCCTGAGGAATGTCTGTGTCGTTTCAGCGCCCAATGACGCCGACCAGCTCCGCCTGTCTTTTCGCATTGACGCCTTTCTGGAAGTGGAAGGCTTCAGGGGAGCGGTGAATTTCTCCGCATGCCTGGACGGCAATGGCCAGATCAAGGTCATTCAAGGATAGMTGYGSLFERLNGDTEARSGLSRDACAGASVAAHLAKMLCTRAGSAQTAADYGLPDLNDMRLSLHDARGQACRAIQASIEAYEPRLRNVCVVSAPNDADQLRLSFRIDAFLEVEGFRGAVNFSACLDGNGQIKVIQGPGPT0030405_452DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_PROTEINS,PGPT0030405-tssE-K11905NANA
D1-35_044461470hypothetical proteinATGAATAATCACGCAGCGCAGCACCGAGATAGCGGCGAGTACAGCATTCTCGAAAGCATCATCGCTCAAACGCGCCTGACGCCTGAAGACGACGCCTATGACATTGCCAAGCGAGGCGTGTCGGCATTCATCGAAGAGCTTCTCAAGCCGCAGAACAGCGGCGAGCCAGTCAAGAAGGCCATGGTTGACCGCATGATCGCCGAGATCGACTCCAAGCTCAGCCGCCAGGTGGACGAGATCCTCCATCACGCCGATTTCCAGGCATTGGAGTCGGCGTGGCGTGGCCTGCAGCTATTGGTTGATCGCACGGATTTTCGCGAGAACATCAAGATTGAGATGCTCAGTATTTCCAAAGACGATTTGCTGGATGATTTCGAAGACTCGCCGGAAGTCATGCAGTCGGGTTTGTACAAACACATCTACACCGCCGAATACGGTCAGTTCGGCGGCCAGCCGGTCGGGGCGATCATCGCGAACTATTTCCTGTCTCCCGGATCCCCCGATGTGAAGCTGATGCAGTACGTAGCCAGCGTGGCGTGCATGTCCCATGCGCCCTTCATCGCTGCGGCCGGTCCAGGATTTTTTGGTCTGGAAAGCTTCACTGGCCTGCCAGACCTCAAGGATCTCAAAGGGCATTTTGAAGGTCCGCAATTCGCCAAATGGCAAAGTTTTCGTCAATCGGAAGACGCACGTTATATAGGCCTTACCGTGCCGCGGTTCCTTTTGCGTACACCCTATGATCCGCAGGAAAACCCGGTCAAATCGTTCGTCTACAAGGAAACCGTTGCCAATGACCATGAGCATTATTTGTGGGGCAACACGGCGTACGCATTCGGCACTCGGCTCACCGATAGCTTTGCCAGGTTCCGCTGGTGCCCGAACATCGTCGGCCCCCAGAGCGGCGGCGCGGTTGAAGATCTGCCATTGCACCACTTTGAAAGCATGGGCGAGATCGAAACCAAGATCCCTACCGAAGTGCTGGTTTCCGACCGTCGCGAATACGAGCTGGCCGAAGAAGGCTTCATCTCACTGACCATGCGTAAAGGTAGTGATAACGCTGCGTTCTTCTCCGCCAGTTCCGTGCAGAAACCGAAATTCTTTGGCATCAGTGCCGAAGGCAAGGCGAGCGAGTTGAACTACAAGCTCGGTACGCAACTGCCTTACATGATGATCGTCAACCGCCTGGCTCATTACTTGAAGGTGCTGCAGCGTGAGCAGCTCGGCTCGTGGAAAGAACGCACCGACCTTGAGCTGGAGCTGAACAAGTGGATCCGCCAATACGTCGCCGACCAGGAGAACCCGAGCTCCGAAGTCCGTGGCCGGCGGCCGTTGCGTGCGGCCCAGGTCATCGTTACAGACGTGGAGGGTGAGCCGGGCTGGTATCGCGTCAGCCTGAATGTCCGCCCACACTTCAAGTACATGGGCGCCGATTTCACCCTGTCGCTGGTCGGCAAGCTGGACAAAGAGTAAMNNHAAQHRDSGEYSILESIIAQTRLTPEDDAYDIAKRGVSAFIEELLKPQNSGEPVKKAMVDRMIAEIDSKLSRQVDEILHHADFQALESAWRGLQLLVDRTDFRENIKIEMLSISKDDLLDDFEDSPEVMQSGLYKHIYTAEYGQFGGQPVGAIIANYFLSPGSPDVKLMQYVASVACMSHAPFIAAAGPGFFGLESFTGLPDLKDLKGHFEGPQFAKWQSFRQSEDARYIGLTVPRFLLRTPYDPQENPVKSFVYKETVANDHEHYLWGNTAYAFGTRLTDSFARFRWCPNIVGPQSGGAVEDLPLHHFESMGEIETKIPTEVLVSDRREYELAEEGFISLTMRKGSDNAAFFSASSVQKPKFFGISAEGKASELNYKLGTQLPYMMIVNRLAHYLKVLQREQLGSWKERTDLELELNKWIRQYVADQENPSSEVRGRRPLRAAQVIVTDVEGEPGWYRVSLNVRPHFKYMGADFTLSLVGKLDKEPGPT0025920_1427DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025920-impC-K11900NANA
D1-35_04447504hypothetical proteinATGGCCAAAGAAGGCTCTGTCGCCCCCAAGGAACGCATCAACGTCACCTTCAAGCCTGCTATCGGAGGGGGCCAGGAAGAGATCGAACTGCCCCTCAAACTGTTGGCAATCGGTGACTACATCCATCGCAAGGACGAACGCAAGATCGAAGACCGCAAACCGATCAGCATCGACAGGATGACCTTCGACGAAGTATTGGCCAAGCAAGAGCTGAGCCTGCTCCTGAGCGTACCGAACCGCCTCCAGCAAGAGAGCGATACCGACGAGCTCGCCGTACAACTGCGCTTGCGTTCGATGAAGGATTTCAACCCGGCGAACCTGGTCGACCAAGTGCCCGAACTCAAGAAGTTGATGGAGCTGCGAGATGCGCTGGTGGCACTCAAAGGGCCGTTGGGCAACGCACCGGCGTTTCGCAAGGCCATCGAAGGCGTGCTTGCCGACGATACATCCCGCAATCGCGTGCTGGATGAACTGGGCCTGGCTGCCTCAGCCCCGGACGTTTGAMAKEGSVAPKERINVTFKPAIGGGQEEIELPLKLLAIGDYIHRKDERKIEDRKPISIDRMTFDEVLAKQELSLLLSVPNRLQQESDTDELAVQLRLRSMKDFNPANLVDQVPELKKLMELRDALVALKGPLGNAPAFRKAIEGVLADDTSRNRVLDELGLAASAPDVPGPT0025915_992DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0025915-impB-K11901NANA
D1-35_044481557hypothetical proteinATGTCTTACTCTGAAAAACTCTCTGCCCATTATCTGGTCCTTGCCAGTTGTCCCGTTTCCAGCGAAAACTTCGCGGGGGTAGATGTGCGTTTTTCAGATGAATATGAAGTTTTGGAACGCGAGCTCGGCAAAGCCCAGTCGATGCATGAGAACGGCCAGATCGACTGGCTGAAGGTCCTTGAAAAAAGTGAAGCCCTGCTGCGTACCCAGTCAAAAGATTTGCGAGTGGCCGCCTGGCTGACCTGGGCGTTGTACCAGCGTGAGTCGTTCCAAGGGTTGCTAGCCGGCCTCGGGCTTTTGCGACACCTGTGCAAGAACCATTGGCTTGAGCTCCACCCGGTCAAGACCCGAACCCGTGCCGCCAGTTTTCATTGGTTGGTGCCTCGCCTGGAGCAGGCGTTAAGTGAAGATGTCGCGATAGGCAAGCAACTGCCGTTGTTCCGTCATCTGGCAGAACAACTTGAAGACCTTGATGCCGTCTTCACCACTCATCTCGGCAATGACGCGCCTTTGGTATTGCCGCTGTGCCGACGTCTCAAGGGCATGATCCAGCGTGTGACCAGTGGCCAGCCGCAGCCTGGATCTGTCGGGACGATGGTGGCTCAAGTAAAGCAAGCCGCTACCCAACTGCTCGCTTCCGGTGCTCCGATCGAAAACGAAAGGGATGCCCACAAGGTGTTGCGGGCTCAGCAGGAGAGCGCTCGTACGTTATGCGCCTGGTGGCTCAAGCAAAAAGTGACGGATGCGCGCGCGCTGCGCCTCAACCGCACCTTGCTCTGGTTGGGCATCGACGCGGTGCCGGAGCGCAATGCCGAACAGGTTACCCAGCTACGCAGGCTTCCGGTGGATAAGCTCAAGGCTTATCAGGACAGACGCGAGCGGGGCGAGTACGCGGACCTGCTGGTAGAGATCGAGACCAGCCTGACAAAGGCGCCGTTCTGGTTCGACGGTCAGCGGCTCGCATGGGAGTGTCTTCAAGGGTTGAATGCCGAATCGGCCATGCGCGAGGTAGAGGTCCATTTCGCATTATTCATCCATCGCCTTCCGGGCGTCGTCGAGCTGCGCTGGCACGACGGCGAGCCGTTCGCCGACCCGGCCACCCGGGCCTGGATCGCTGCGCAGGTCATGCCTCGCCTGGAACGCCCCAACACTGCGCCACGAGTCGAGACCATCGATAACCAGGCGCCTTGGGAGCTGGCCCTGGAAGAAGCCGGATCAATACTGACCGTGGACGGCCTCAAGCCTGCCGTTCAGTTTCTCAGGCAAGGGATGCAAACCGCTGAGGGTGCGCGGGCGCTTTTCCTTTGGCGATTCTCATTGGCTCGCTTGTGCTTCTCGGCCAAGAAATACGAGCTTGCCAAGGTCCAGCTCGAAGCGCTGAACCAGGCGTTGCAAGACGCGGGCTTGAATGCCTGGGAGCCCGATCTCGAGCTACAGGTCCTGCATCTGCTGCATCACTGCTGTGAGTTATTGCCCCAGAACCACCTCGTTCGCGAGCGCAAGGATGAAACCTACCGCAGGTTGTGTCATCTCGACCTGGAACGGGTCATCGAATAGMSYSEKLSAHYLVLASCPVSSENFAGVDVRFSDEYEVLERELGKAQSMHENGQIDWLKVLEKSEALLRTQSKDLRVAAWLTWALYQRESFQGLLAGLGLLRHLCKNHWLELHPVKTRTRAASFHWLVPRLEQALSEDVAIGKQLPLFRHLAEQLEDLDAVFTTHLGNDAPLVLPLCRRLKGMIQRVTSGQPQPGSVGTMVAQVKQAATQLLASGAPIENERDAHKVLRAQQESARTLCAWWLKQKVTDARALRLNRTLLWLGIDAVPERNAEQVTQLRRLPVDKLKAYQDRRERGEYADLLVEIETSLTKAPFWFDGQRLAWECLQGLNAESAMREVEVHFALFIHRLPGVVELRWHDGEPFADPATRAWIAAQVMPRLERPNTAPRVETIDNQAPWELALEEAGSILTVDGLKPAVQFLRQGMQTAEGARALFLWRFSLARLCFSAKKYELAKVQLEALNQALQDAGLNAWEPDLELQVLHLLHHCCELLPQNHLVRERKDETYRRLCHLDLERVIEPGPT0030430_351DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_SYSTEM_BIOSYNTHESIS,PGPT0030430-vasJ-K11910NANA
D1-35_044492064vgrG1_5COG3501Actin cross-linking toxin VgrG1ATGCCCACTCATCACGCGTTTCCAACGTTTCACCTTGATATCGAGGACTTCGGGCGTGATCTTCAGGTACTGAAATTCGAAGGTCGCGAAGCAATCAGTACCCCTTATCTGTTCGATATAGAACTGGTCAGCGAACGAAAGAATCTGGACCTCGAGAAACTCTTGCACAAGCAGGCGTTTCTTGGGTTTAACGCAAAGGACTGTGGCGTCCATGGACAGATCCACCGTGTAACTCAACGCGACTCCGCAAAACGCCTGGCTCATTACAACGTGCAACTGACGCCCAGGCTGGCTTATTTGCAGTACCGCACCAATCAACGCATCTTTCAGCAAATCACTGTTCCCGAGATCATTTCTTCAATTCTCAAGGAATATGGAATACTGGCTGACGCCTATAGCTTCCGACTGGGTACGAGCTATTCACCGCGTGACTACTGTGTCCAGTACCACGAATCGGACTTGGCTTTCATCGCGCGCCTGTGTCAGGAAGAAGGCCTGCACTACCATTTCCAGCATAGTAAGTCGGGCCATCACCTGGTGTTTGGCGATGACCAGACCGTATTCCAGAGGCTTGATCGTCCCACGGCTTATAAACAAGGCAACGGCCTGCTGGGCGAGGAGCCGGTTGTACAACGTTTCGATGTGCGGCTGGAAACCCGGGCCAGCAGGGTTACTCGTCGTGATTATGATTTTGAGAAATCAACGTTCACCCTCGAACAGGACTACCAGCCAGCGATCAACAAAATCCGACCGGACCTGGAGGCTTATGACTACCCCGGGGGTTTCATCCAACAGGAGCATGGGAAGCGATTGACCCGGCGGGCCTTTGAAAGCCATCGCGCCGACTATCGCAGGGCCGAGGGTACAAGTGATCAGCCAGAATTGGTGTCCGGCCATTTCCTGATGTTAAGTGAGCACCCGCGCCCGGAGTTGAACGACTTGTGGCTGTTGACCGAGTTGCATCATGAAGGCAGCCAGTCGCAAGTGCTGGAGGAAGGCCTGGACGACGACATCGGACGCCCTGAGAGCGAAGGCTACCGGAACAGCTTTGTCGCCACGCCGTGGGATTCGATTTTTCGCTCACCACGGGCTCATGAAAAACCGCGAATGTCCGGAAGCCAGACGGCTATCGTTACCGGTCCGCAAGGCGAAGAAATCCATTGCGACGCGTACGGCCGGGTCAAGGTCAGGTTCTTCTGGGATCGCGCCGGCGATACCAGTGAAAACAGCAGCTGCTGGCTGCGGGTGGCGTCCAATTGGGCCGGGAACGGCTTCGGCGCAGTCACCATCCCCAGGGTAGGCATGGAAGTACTGGTGACCTTCCTGGAAGGCGATCCAGACAAACCTCTGATCAGCGGTTGCCTGGTCAACAGCAGCAACGCCGCGCCCTATCAGTTGCCCGCACAAAAGACCCGAACGGTGTTTCGTTCCCGCAGCTCACCGGGTGGCCGAGGTTTCAATGAGCTACAGCTGGAAGACCGCGCGGGGCAGGAGCTGATTTACCTCCGAGCCCAGCGCGACATGGAGCAGAAGATCGAGCATGACAGCCGACTGGAGATCGGCAATGAACGTCGAGAAAACATCAAGGGCAACAGCACCACGGTGCTGCAAGCCAGTGAACACCGGACCATCGCTGCCGATCGCACGGTCCAGGTAAAAGCCAACGACTACCTGCACGTTGCCAATCGCCATACCCACGCGGACCAGGCGCTGGTCGTCGAGGCCGGCCAGCAGGTGCATATAAAAGCCGGTGCTCATCTGGTCCTGGAAGCGGGAGCGACGCTCAGCCTGAGTGCCGGAGGCGAGCATATCGTGATCGGCCATGGCGGCATTTTCAGCAGTAGCGCAATCCAATTGGGTGGCGCCCCGCTTCCCGGTGCACGTGCCGCAGCATTCGATCCAGGGTCGATCGACCCGTTGGCTACGCTGCTCAACCTGCCGCCCACGCTTGCGCCCACCCAACGCGCCCTGATGACAACCAGCAAGGTCGCCGGAGCGGATTTCTGCCCCCTTTGCGAAGCCTGCCGCGAGGGCGCATGCCCGATGGAGCCCATAGCCGCATGAMPTHHAFPTFHLDIEDFGRDLQVLKFEGREAISTPYLFDIELVSERKNLDLEKLLHKQAFLGFNAKDCGVHGQIHRVTQRDSAKRLAHYNVQLTPRLAYLQYRTNQRIFQQITVPEIISSILKEYGILADAYSFRLGTSYSPRDYCVQYHESDLAFIARLCQEEGLHYHFQHSKSGHHLVFGDDQTVFQRLDRPTAYKQGNGLLGEEPVVQRFDVRLETRASRVTRRDYDFEKSTFTLEQDYQPAINKIRPDLEAYDYPGGFIQQEHGKRLTRRAFESHRADYRRAEGTSDQPELVSGHFLMLSEHPRPELNDLWLLTELHHEGSQSQVLEEGLDDDIGRPESEGYRNSFVATPWDSIFRSPRAHEKPRMSGSQTAIVTGPQGEEIHCDAYGRVKVRFFWDRAGDTSENSSCWLRVASNWAGNGFGAVTIPRVGMEVLVTFLEGDPDKPLISGCLVNSSNAAPYQLPAQKTRTVFRSRSSPGGRGFNELQLEDRAGQELIYLRAQRDMEQKIEHDSRLEIGNERRENIKGNSTTVLQASEHRTIAADRTVQVKANDYLHVANRHTHADQALVVEAGQQVHIKAGAHLVLEAGATLSLSAGGEHIVIGHGGIFSSSAIQLGGAPLPGARAAAFDPGSIDPLATLLNLPPTLAPTQRALMTTSKVAGADFCPLCEACREGACPMEPIAAPGPT0030410_3173DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_PROTEINS,PGPT0030410-vgrG-K11904NANA
D1-35_04450852hypothetical proteinATGAACGATACCCAACCTCGGCAGTGGCTGCTTGAACACCTCCGCCTCGGCCATGCCCTGTGTGTGATCCTGGATGCGGACGGCGAACAACCGATGCTCCAGGCCCTGATCAAGAACAGTCGACCCGATCAATATCTGAGCGTCTACAGCAAAACCCTGATTGCCGATCTCAGCGAGGTCGGGCCGTTTGTCTTCACCTTCGATAACCCCAACGATAAAAATCTCCAGGAGTTGCTCAATCGACCGGACAGTCATTGGGGTTGGCTCGCCAGCCTCCCCAAGGGCCACCTCCCCCAGTTAGTCGGGCACTGGCGCGAACGATTGATTGTTGGGGAGCGTCCTCATCAAGCGGTGTATCGCTTCCACGACAACCGGGTATTGGCCCGGGCGCTTGCGTATCTGCCAGTCGAAGCGCATGCCGCCTATCTCGGTCCGGCCAATAGCGTGTGCTATTGGCAAGGTGACCGCTGGGAACACATCGACAATCCCTCCCCCGGGACACATCCGGTGCCAGAGGTGCTGCTTTGGTTGCAAGTCCCCATACCCGAACAGCAAGCACGAGCAACGCGCCGGATCAATGCCCGACGCTTTTTATTGGCCGAGCACCTGGACGCCTACGCGAAGCTCGCCGAACACGAGGACCCGGACGCCTGGTTGCATGCCACCCTCGACCAGGCCGAAGCATGGAACTGGTTGGCGCCCGAACAACTGGCTTTTTTCCTGGCCCAGCGCCTGAAAACGCCAACACGGACGCCGACGCAGTGGCAAGCACGCCAAGGCGAGAGCCCTGAGGAGCATTTTGAACGGGTGCGGTTGATGGTGGACTTCTGGCAAGGAGAAGCATCGCCATGAMNDTQPRQWLLEHLRLGHALCVILDADGEQPMLQALIKNSRPDQYLSVYSKTLIADLSEVGPFVFTFDNPNDKNLQELLNRPDSHWGWLASLPKGHLPQLVGHWRERLIVGERPHQAVYRFHDNRVLARALAYLPVEAHAAYLGPANSVCYWQGDRWEHIDNPSPGTHPVPEVLLWLQVPIPEQQARATRRINARRFLLAEHLDAYAKLAEHEDPDAWLHATLDQAEAWNWLAPEQLAFFLAQRLKTPTRTPTQWQARQGESPEEHFERVRLMVDFWQGEASPNANANANANA
D1-35_04451762hypothetical proteinATGACACGGGTCTTACGGGGCACATGCCTGGGCTGCTGCATGGCAATCACTGCGGGATGTGCCGACAGACAACCAGACACATTTACTTTTACGGGTGATTTGCCGCCTGGCTTTGCCTATGAGGCGGCGGTGTATTACGTCCCCGCTCCTGGGGAAACCTGCACCGTCGAGAAAAAATACAACAAGGCACCGGTGTTCAAGAGCAAGGACAAACCCATTGCCGAAATTCTTATCCGTAGAACTCGCAGCGGCTGTCCGCTGGTGATCAGTCGTATCGAGCTTGGAATTAGCTCTATCTACGGCCCGCATTGGCTCGATTCCAGTCGAGATACTGCCAACGTGGTTATACGTGATGAGCTGGAGGAGCAATACAAGGGCACCTTCAGCAAGACGGGGGAGAGCATCTTCCACGGCCAATGCCAGTGGCTGTTCCGCACCTCGGGGGCCAAACGACGCATCGTAAAAATCCTCGATTGCAAAAAAACCAACCCAAAGGGCGACGTTGGAAACGGTCGGCCTTTTTCGGCGTTCACGCTTGATCAACTGCCGGGGAAAACGGTGAGGATGAAGATCAAGATGGCAGACGAGGAAAGACCTTACATGAAGGACACATGGGTCAAGTTCGCCAATGGCTGGAAACGCTGCATGGGAGACAATTTCGAAGATCGATACGCTTTTTGTCTCGGCAATTACAAGGATTTCAGTGGATTTCATATGCCGGACGGCGAGCCATGCACCATTTACCCAAGTTGTACCGAATAAMTRVLRGTCLGCCMAITAGCADRQPDTFTFTGDLPPGFAYEAAVYYVPAPGETCTVEKKYNKAPVFKSKDKPIAEILIRRTRSGCPLVISRIELGISSIYGPHWLDSSRDTANVVIRDELEEQYKGTFSKTGESIFHGQCQWLFRTSGAKRRIVKILDCKKTNPKGDVGNGRPFSAFTLDQLPGKTVRMKIKMADEERPYMKDTWVKFANGWKRCMGDNFEDRYAFCLGNYKDFSGFHMPDGEPCTIYPSCTENANANANANA
D1-35_044522184hypothetical proteinATGATGTTGTCGAAAACGGCTTCGGAGTCACGCCTTAGGAGTCGCATGCTCGACTGCCCTGCGGGCGGTAAATGGACCAGCTTTCAATTGGTGGATGAATTGGGTTCTGGCGAGCCTTACGCATGGCTGGCCTATGTTGTCACCGACTCGGAAGGGCAAACGTACCGCGGCGATCTCGATGCCACGGGAAGGGGCAAGGTCAGCAATCATTTCGCCGGGCCGATCGCCTTGACCTTGGATCAGGAATATCAGGGCCAGGAACGGTTATACATAGAGCTCCAGAGCAGAGATAGCTACCCGCTCAAAATCACCGAACTCCAAGTTCGCGCCGAACAAACCCCCTACCTGAACGACAACGCCACCAGCACCCGAGAGAACCCCGCCCAAGCCTGCGCCGGTCAGTTCTTCCAGGTGGAGGTGCGCGACCTAGTCAAGCATGTCGCCCATCTGCCGCCGCGGGTGTACCGACATTACCCAACCAACCAGGGGCCGGCACGGCTCATGGGAAAGTTTGGCGAGACTGGCGTAGCGTTGATGCCTCAACTGCATACCGTGTTGGAAGTGCGCCCGCTGCGGGCCTTGCGGCCCATGCTGTCCATCACTCCGCAATTCTGCGCGCTCAACCTGTACCAGTTGGCGCTCATGGCGACCTTGAGTTACTGCCCCTTCGGCCAGAAGCCCGGCGAGGCTCCAATACACTTATCGGTGAGTTTCCCCAAGCAACCGAGCGTGGGCAACTGGTTCGGCGTTGCCTTGGCCAAGTCCGAGGAGCTTTGGAAGGTTGACCCGGGACAGGTAAAACACCATTACCCCTTGTATGAGGATGTGCCCTACTCCAAGCGACTGGAAATCGTCCCGTTCGACCCTGCTCTGTACCCTATGAACAATCCGGAACTGGGTGTGAAGCAGGAGCATCCCGCCAAGGTCCATTTTCTCGATGACACTGCAAAAGAAGAAAGCACCGATACCCAAGCTTTCATCACTCACAACGACGAAATAATTCTGATCGCAGTGCGCGGCACAGCGCAGATGCTTGCCGATGGCCTGCGTGACGCCGACGCGCTCCAGGTTCCCTTTGAGGAAGGTGGCGGTAAGGTGCACCAGGGGTTTTACGGAGCAGCCAAAAAAGCTGCTGCCTTCGTAATTGATTACCTGGAAAGGTTTCATGCCGGTCAGAAACTGCTGATCTGTGGCCATAGCCTGGGCGGCGCCGTGGCATTGCTGCTCGCAGAAATGCTACGTCTGAGGGAAGGATTCAGCTACGACATCCAACTCTACACCTACGGTGCCCCTCGCGCCGCCGACGCCGTCTTCGTCGAAAATGCCGCCCCCCTGGTGCATTACCGCATGGTCAATCACAACGACCCGATACCCAGCGTACCGGGCAGTTGGATGGACACCAAGGCGAGTGTCTATGGCACGGGTTTCGCGCTGATGTTCGCCAACGTGCCGGCCGGCTTCTCAGTGTTCGTGGCTGGCATCTACAACTGGACGGGGGAGTCCTATGAACACCACGGCACCTTGCGCCATTTCCTGCCCGTGGAGTTCGGTCGTCAGGAGCGGTCGACGATCCTCTGGACGCCAGGCTGCGACACCCTCACGCAACATGCCGCTTGCGAGCTGGCCTTGGAGCAGAGACGTGGCCTGCCGGACCGGGCGAAGTTCACCGCCCAGCTCTTTCAGGCCGGTAACCACCTCATGACCTCCAGCTATCTTCCTGCGTGCTGGGCAACCCTGCGCCGCTGGCAGGAGGCTTTGGAGTCGAAGAGCCCTCTGGTGACACAGCGTGAGTACGAATGCATCGAAAATGCGCTGGAACAGATCACTCGGCAGTTGCGTAACGAAAGCAGACAGTTGATCGGGCGTCCAGATGGCTACGAGCGCACCCACCAACCGATCATTGATGCCCTCGCCCGTGAGGTTGACAAGGTGCACGCCACACGTGCTCGCCTGAGAGGGCTGCACACGACGTTGGTCAGCGACCAAGACGTTTACGGCAGCCTGTCCAAATACCCTGAGCAACTGGCGCAACACCTGACCCGCTGGCAGGCCCATCCGGAAAATCGCGTGGCTGAACAACTGGCCATGGCGCCTGCGGCCGGCACCGATATCGAGCTGGTCCATGGTGCTCATGGGTACGTCATCGGTAAGCCTTATACGCTGGATATCGATGCGATCATTTGAMMLSKTASESRLRSRMLDCPAGGKWTSFQLVDELGSGEPYAWLAYVVTDSEGQTYRGDLDATGRGKVSNHFAGPIALTLDQEYQGQERLYIELQSRDSYPLKITELQVRAEQTPYLNDNATSTRENPAQACAGQFFQVEVRDLVKHVAHLPPRVYRHYPTNQGPARLMGKFGETGVALMPQLHTVLEVRPLRALRPMLSITPQFCALNLYQLALMATLSYCPFGQKPGEAPIHLSVSFPKQPSVGNWFGVALAKSEELWKVDPGQVKHHYPLYEDVPYSKRLEIVPFDPALYPMNNPELGVKQEHPAKVHFLDDTAKEESTDTQAFITHNDEIILIAVRGTAQMLADGLRDADALQVPFEEGGGKVHQGFYGAAKKAAAFVIDYLERFHAGQKLLICGHSLGGAVALLLAEMLRLREGFSYDIQLYTYGAPRAADAVFVENAAPLVHYRMVNHNDPIPSVPGSWMDTKASVYGTGFALMFANVPAGFSVFVAGIYNWTGESYEHHGTLRHFLPVEFGRQERSTILWTPGCDTLTQHAACELALEQRRGLPDRAKFTAQLFQAGNHLMTSSYLPACWATLRRWQEALESKSPLVTQREYECIENALEQITRQLRNESRQLIGRPDGYERTHQPIIDALAREVDKVHATRARLRGLHTTLVSDQDVYGSLSKYPEQLAQHLTRWQAHPENRVAEQLAMAPAAGTDIELVHGAHGYVIGKPYTLDIDAIINANANANANA
D1-35_044534407rhsACOG3209putative deoxyribonuclease RhsAATGTCTGATGCGCTCTGGGCCGCCCGCCTGGGCGACGCGCTGGACCACACCTCAATGATGGCCGACATACTTGGCGGCGTACTGGAGGTGGCGGCGAACATTGCGATCACCGCCCTGGCGACCGCCGCGGTGGTCGCGGCCACGGGCATTACCGTGGTTACCGGCGGGCTGGGTTGCTTCGTGCTCGGTCTGGTGGTGGGCACCGTGGTTGGCCTGGCGATGAGCAAGACCGGAGCCGACAAGGGCCTGAGCAATATATGCGAGGGCATCGGCAACGCCCTTTTCCCGCCCACGGTGCAGGCCAACATCCTCACCGGCTCCGACGATACCTTCACTAACAACATTCGCGCGGCCCGTGCGGCCGGGGCAATCGAGTCTCACGTTGCCGCCGCCGGTACGGAGCTCGAAGCCCCTGAGCCTGAAGAAGAGCCCAGCTACCTGGACATGGCCGGGGCTTTCTTTTCGCAGATGTGGCGCCCCACGGTCGCCACGCCCGCGCCGGGCGCGGTGCCCAAGCCGGAAGACCTGGTGCTGTGTACCAAGCACCCGCCAATGCCACCGCAGTTCATGGCCGAGGGCTCGGACAAGGTCACCATCAACGGCCAGCCCGCCGTGCGCAGCGGCGACCGTAGTACTTGCGATGCCAAGGTCGTGTCGTCCGGGCTGATTTCGCCCAACGTCACCATTGGTGGTGGCTCGGTGGTGGTGCGCGAGATCCGCAGCGGCAAGACGCCGGGCGTGGGGCTGGCGGTCACGGCACTGCTGATGCTCAAGGGCGGCAAGGGCAAGTTCTTCAGCAAGTTGCCCTGCATGCTGGTGGGCGGCGCGGTGTCCATGGCCGCGAGCAGCGCGGCCAATGCCGCGGCCAACGCCGCCATGGGCTCGTCGAACCCGGTGCATGCTGCCACGGGGGCCAAGGTGCTGGGCGGCGATGCAGAACTGGACTTCGTGTTGCCTGGCATCCTGCCGATTGACTGGCAGCGTTTCTACAACAGCCGTGACGAACGCCGCGACGGATTGTTCGGCGCCGGCTGGAGCGTTTCCTACGAGGTTCAGGTCGACATCCTGCCCCACCCCGACGGCGGCGAGACCCTGCTGTATACCGACGAACAGGCCCGCCCCATCGACATGGGTTCGATCCCGTTGGGCGGCGCGGTGTTCAGCCCCGGCGACGGCCTCGCAGTGCGGCGCCATGTGAGCGGACAACTGCTGATCGAAAGCGACGACGGCTTGTACCGTTTGTTCGAACCGACGCCTGGAAACTCATCGCGGCTGCGCTTGAGCCAGTTGGGTGACCGCAACGACAATCGCATCCATCTCGACTATGACGAAGCTGGCCGCCTGGTGCGGCTGCGCGATACGTTTGATTTGCTCCAGGTCGAGCTGACTCGTGAAAACGAACGCGTCAGTCGGATCGAACGCCTCTACCCCGACCAGCAGCGCGAAGTGCTGGTCAGCTACGCCTACGATGCGGCGGGCAATCTCACCGCAGTGCGCGACGCTGGCGGCCAGGTGCAGCGGCGGTTCAGCTACGACGCCGGGCAGCGGATGGTCGAACATCAACTGCCTGCCGGCCTGCGCTGCTTCTACGAATGGGCCTTGATCGAAAACCAGGAGTGGCGCGTGGTCCGCCACTGGACTGACGAAGGCGACGCCTACCAGTTCGACTACGACCTCACGGCCGGCATAACGCGTATCACCGACAGCCTGCAACGCATCAGCATCCGGCATTGGAACAGCCAGCACCAGATCACCCGGTTCGCCGACAATCTCGGCCAGACCTGGTCGTTCGAGTGGAACGACGAACGCCAGTTGCTCAGCGCCACCGACCCGCAAGGCGGCCAGTACCATTTCAGTTACGACGAGGCCGGCAACCTGATCGGCGAAACCGACCCACTGGGCCGCAGCGAGTCTACCCTCTGGCTCGAGCATTGGGCGCTGCCACTGGTGGAAACCGATGCCGCCGGCAACAGCTGGAAATACCGCTACGATCAGCGCGGCAACTGTGTCGCCGAAACCGACCCGCTGGGCCAGGTCACCCGCTACCGTTACGACACCCACGGCCAGGTGGTGGAAATCATCGACGCCACCGGCAAGAGCAAGAAGCTGCGCTGGAACCCGTTCGGGCAACTGGTGGAACACATCGACTGCTCGGGCTACCCGACGCGTTTCAGTTATGACCCGCGCGGCTATCTGCAGACCCTCACCGACGCCCTCGGCGAGCGCACCCGATTCAGTTACGACGCCCAAGGGCGCCTGCTCGGCAGCCAGTTGCCGGATGGTCGCACCGAGCACTACCAGCGCGACAGCGCCGGCCAGCTCACCGGCCACACCGACCCGGCCGGGCACACCACGCATTACCAGCACAACCGCCGCGGCCAGGTGCGCCAACGCATCGACGCCCAGGGCCGGCAGGTGCAGTTTGCCTACGACAGCTTCGGCCGGCTGCAAGCGCTGATCAACGAGAACGGCGAAAGCTATCGGTTCGCCTGGGATGCCGCGGATCGGCTGGTCGAACAGCAGGACCTGGATGGCAGCGCCAAGCGCTACGCTTATGACCGGCTGGACAACGTTGCGCGGGTGACGGCTGTTCCGGCGGCTCACGGCAGCGGCCTGGCGCAGGTTCCCGAAACATCACCGGCGCCTGTCGTCCACCGTCTGGAACGCGACGCCGCGGGCCGGTTGATCGCCAAAGTCACCGATGATGGCCGCACCGAATATACCTATGATCCGCTGGACCAGCTCACCGCCGTTACCTTCACTGACCTGCAAGGCGCCGCGCAGTCCCTGAGTTTCGCCTACGATGCCCTCGGCCAGCTGCTCGCCGAAAACAGCGCCGCCGGCAGCCTCCGGCACCACTACGATGAACTCGGCAACCTGATCCAGAGCCAACTGCCCGATGGCCGCTGGGTCAATCGGCTGTACTACGGCAGCGGTCACCTGCACCAGATCAACCTCGACGGCCAGGTCATCAGCGATTTCGAACGCGATCGCCTGCATCGCGAGGTGCTGCGCACCCAAGGGCAAATCAGCACCCGCAGCGAATACGACCGCAGCGGCCGCCTGCGCGCCCGTCAACGTCGTCACAGCAGTCAGCCCGCGCTGCTGCCGGCGGCGGTGCAGAAACACTTTGAATACGACCCCGCCGACAACCTGATTGGCAAGCTCGACCAGCAACCCGCCACTCAGCAGCGCCAGTTGCTGCACTACGACGCCACCGGTCGCATCATCGCCAGCCAGGACAGCCTGCACGGCCAGCGCGAGACCTTTGCCTACGACGCCGCCGCCAACCTGCTGGACGGCCCGGCGCCCGGCGCCGGACTGGTGGTGCACAACAAGCTGCTGACCTATCAGGACAAGCGCTACCGCTACGACGCTTTCGGCCGGCTGATCGAGAAACGCAGCGCCACCCGCGGCCTGCAACGCTTCGCCTACGATGCCGAAAGCCGTTTGATCGAAGTGCGCAACGACAACGGCAGCGTAGTCAGGATGACTTACGACCCGCTGGGCCGGCGCATCGAAAAAGCCGAGCACGACAGCCACGGCTACCCGCTGGGCGAAACCCGCTTCACCTGGGACGGGCTGCGCCTGCTGCAGGAACATCGCCACCAGCAAACCAGCCTCTATCTTTACGAAGACGACGGCTACGAACCGCTGGCCCGCGTCGACGGCAGCGCCCCGCTGCAAAAGATCCGCTACTACCACAACGACCTCAACGGCTTGCCGGAGCAACTTACCGAAGCCGATGGGCACTCCGTCTGGCAGGCCACGTATCGGGTGTGGGGCAACACGCTTGAGGAGGTTCGCGAACCGTATTACATCGAAGAGCAGAACCTGCGGTTCCAGGGGCAGTACCTGGACCGGGAAACCGGGCTGCATTTCAATACGTTCAGGTTTTATGATCCGGATATAGGGCGGTTTACCACGCCGGATCCGATCGGGTGGCTGGGAGGATTGAACCTCTACCAATATGCACCAAACCCCCTGACCTGGATCGATCCATGGGGATGGGCTTGCCGAAGCGCAGTCAGTGGCAATAAAGGCCGAACCAAGGCGATCAACGATCTCAAACGCAACAAGTTCAAGATCGTCGCGGAGGAAGTCACCATGAAGGTCAACGGTAAACGTATTCGCGCCGACTTTGTCGCCAGAGACCAACGTGGAAAACTGCACGTATTTGAAGTCAAGCACGGCACCGGGAAACTGACCCCCAACCAGACCGATTCAAAAGCCTTTGACATGACCAAGCCGGCCAACACTACGCAACATCTGGGTGGGGGCACGATCAAACCGTCCGCCGGCACGAAGGGATCGTTCAAGGTTGATACCAAAGGCAAGCCTGGCGTACCGCTAGGCGGCAAAGGCGCACAGCACAATGCCACCTTCAATCTTTTAATTTACAAGTGAMSDALWAARLGDALDHTSMMADILGGVLEVAANIAITALATAAVVAATGITVVTGGLGCFVLGLVVGTVVGLAMSKTGADKGLSNICEGIGNALFPPTVQANILTGSDDTFTNNIRAARAAGAIESHVAAAGTELEAPEPEEEPSYLDMAGAFFSQMWRPTVATPAPGAVPKPEDLVLCTKHPPMPPQFMAEGSDKVTINGQPAVRSGDRSTCDAKVVSSGLISPNVTIGGGSVVVREIRSGKTPGVGLAVTALLMLKGGKGKFFSKLPCMLVGGAVSMAASSAANAAANAAMGSSNPVHAATGAKVLGGDAELDFVLPGILPIDWQRFYNSRDERRDGLFGAGWSVSYEVQVDILPHPDGGETLLYTDEQARPIDMGSIPLGGAVFSPGDGLAVRRHVSGQLLIESDDGLYRLFEPTPGNSSRLRLSQLGDRNDNRIHLDYDEAGRLVRLRDTFDLLQVELTRENERVSRIERLYPDQQREVLVSYAYDAAGNLTAVRDAGGQVQRRFSYDAGQRMVEHQLPAGLRCFYEWALIENQEWRVVRHWTDEGDAYQFDYDLTAGITRITDSLQRISIRHWNSQHQITRFADNLGQTWSFEWNDERQLLSATDPQGGQYHFSYDEAGNLIGETDPLGRSESTLWLEHWALPLVETDAAGNSWKYRYDQRGNCVAETDPLGQVTRYRYDTHGQVVEIIDATGKSKKLRWNPFGQLVEHIDCSGYPTRFSYDPRGYLQTLTDALGERTRFSYDAQGRLLGSQLPDGRTEHYQRDSAGQLTGHTDPAGHTTHYQHNRRGQVRQRIDAQGRQVQFAYDSFGRLQALINENGESYRFAWDAADRLVEQQDLDGSAKRYAYDRLDNVARVTAVPAAHGSGLAQVPETSPAPVVHRLERDAAGRLIAKVTDDGRTEYTYDPLDQLTAVTFTDLQGAAQSLSFAYDALGQLLAENSAAGSLRHHYDELGNLIQSQLPDGRWVNRLYYGSGHLHQINLDGQVISDFERDRLHREVLRTQGQISTRSEYDRSGRLRARQRRHSSQPALLPAAVQKHFEYDPADNLIGKLDQQPATQQRQLLHYDATGRIIASQDSLHGQRETFAYDAAANLLDGPAPGAGLVVHNKLLTYQDKRYRYDAFGRLIEKRSATRGLQRFAYDAESRLIEVRNDNGSVVRMTYDPLGRRIEKAEHDSHGYPLGETRFTWDGLRLLQEHRHQQTSLYLYEDDGYEPLARVDGSAPLQKIRYYHNDLNGLPEQLTEADGHSVWQATYRVWGNTLEEVREPYYIEEQNLRFQGQYLDRETGLHFNTFRFYDPDIGRFTTPDPIGWLGGLNLYQYAPNPLTWIDPWGWACRSAVSGNKGRTKAINDLKRNKFKIVAEEVTMKVNGKRIRADFVARDQRGKLHVFEVKHGTGKLTPNQTDSKAFDMTKPANTTQHLGGGTIKPSAGTKGSFKVDTKGKPGVPLGGKGAQHNATFNLLIYKNANANANANA
D1-35_04454618hypothetical proteinATGAGCCAAGAAATTCGCAAAAATGTGGAAGTGGAGTTACTGGCGACGCTGAAAAACAAAACGTCACCACACCTGGATCTGAAGGCCAGCAAAAATAAAATTGGTCTGTTCAAAGCCAAAGAAAAGCTTGGGGAAATCTACATTCAGCACCTGACCAAAGCCGATGGTTATTACGCTGGGTTGGAGATCCATGCATGCGAGGCTTTCAGCTTCTGCAAAGAGCAATCGCCGCCCTACCAGAGTCGGTTGTTGAACGCGTCATTTTTGTCGAAGAGTTCCTTGTCGGAAGAGACGAAACAATTCGGTGACGAACTGGGAGGCATCATCAGAACCCCGTCTCCCCAGGCCCTCAGCGCAACCGTCAACAAAATAAGCGAACGGCTCGAAAAGTTTTACCTGTCCAAGGCAGAGCACTGCATTCTCGGCATGCCTGCATTGATTGATGATGTATTGGCCGAGCCTGACAACTACGCATTCCCGTTCCTGACGATTCTCTTTGCAGCGCAAAAAAACGGTCTGGGTCTGGATTCAGATGTGCTCAAGAAAGCTCTGGCGACCAAATCAATATTCGGAAACAAGCAGTTCGACCTGGCGCTTGCGAACAAACTGCTGGGCTAGMSQEIRKNVEVELLATLKNKTSPHLDLKASKNKIGLFKAKEKLGEIYIQHLTKADGYYAGLEIHACEAFSFCKEQSPPYQSRLLNASFLSKSSLSEETKQFGDELGGIIRTPSPQALSATVNKISERLEKFYLSKAEHCILGMPALIDDVLAEPDNYAFPFLTILFAAQKNGLGLDSDVLKKALATKSIFGNKQFDLALANKLLGNANANANANA
D1-35_04455276hupB_2COG0776DNA-binding protein HU-betaATGCGTAAACCAGAACTCGCCGCCGCCATTGCGGAAAAAGCGGACCTCACCAAAGAACAAGCCAACCGCGTCCTCAACGCTGTTCTCGAAGAAATCACCAGCGCCCTGCATCGCAAGGACAGCGTTACTCTGGTCGGCTTCGGCACCTTCCTGCAACGCCACCGCGGCGCCCGCACCGGCAAGAACCCACAAACCGGCGAGCCGGTAAAAATCAAGGCCAGCAACACGGTTGCGTTCAAGCCAGGCAAATTCCTGAAGGACAGCGTTAACCCATAAMRKPELAAAIAEKADLTKEQANRVLNAVLEEITSALHRKDSVTLVGFGTFLQRHRGARTGKNPQTGEPVKIKASNTVAFKPGKFLKDSVNPNANANANANA
D1-35_044561149alkTCOG1251Rubredoxin-NAD(+) reductaseATGAGCGCACCTGTCGTCATCGTCGGTACCGGCCTGGCTGGCTATAACCTGGCCCGGGAATTTCGCAAGCTCGACAGCGAAACCCCGTTGCTGCTGATTACCGCGGACGACGGCCGCTCCTACTCCAAGCCGATGCTCTCCACGGGGTTCGGCAAGAACAAGGACGCCGATGGCTTGAGCATGTCCGAGCCGGGCGCCATGGCCGAGCAGTTGAAGGCCGAAGTGCGCACCCACACGCGCATCAGCGGCATCGACCCGGGCCACAAACGCCTGTGGATTGGCGAGGAAGCGGTAAGTTATCGCGATCTGGTCCTGGCCTGGGGCGCTGAAACCGTGCGCGTGCCGGTGCAGGGCGATGCGGCGGACCTGATCTTCCCGATCAACGATCTCGAAGACTACGCACGTTTTCGGGCCGCCGCCGCTGGCAAGCGCCGGGTGCTGCTGCTCGGTGCCGGCCTGATCGGCTGCGAATTCGCCAACGACCTGGTCCTCGGCGGCTACGAAGTGGAACTGGTGGCCCCCTGCGAGCAAGTCATGCCGACGCTGCTGCATCCGGCCGCTGCCGCAGCCGTCCAGGCCGGGCTGGAAAGCCTCGGCGCACATTTCCACTTGGGGCCGGTGCTCAACCGTCTGCAACGTGTGGCCGACGGATTGGAGGCGCATCTGTCGGATGGCCAGGTGATTCCCTGCGATCTGGTGGTCTCGGCCATCGGCCTGCGCCCACGCATCGACCTGGCGGCTGCCGCCGGGCTGGTGGTCAATCGCGGCGTGGTGGTTGATCGTCAGCTGAAAACTTCCCACGCCAATATCTACGCTTTAGGCGATTGTGCCGAAGTCGATGGCTTGAACCTGCTCTACGTCATGCCGCTGATGAGCTGCGCCCGCGCCCTGGCCCAGACCCTGGCTGGCAACCCGACCGCTGTCAGCTACGGTGCCATGCCGATCACTGTGAAGACCCCGGTCTGCCCGCTGGTGGTATCGCCGCCACCACGGGGCAGCGAAGGCGCGTGGAGCGTCGAAGGGGAGGGCGCCGACATCAAGGCCCTGTGCCGCGACGCCCATGGCAATCTGTTGGGCTACGCCCTGACCGGTACGGCGGTGATGGAGAAACTGGCGCTGAACAAGCAGCTTCCGGCACTACTGGCGTAAMSAPVVIVGTGLAGYNLAREFRKLDSETPLLLITADDGRSYSKPMLSTGFGKNKDADGLSMSEPGAMAEQLKAEVRTHTRISGIDPGHKRLWIGEEAVSYRDLVLAWGAETVRVPVQGDAADLIFPINDLEDYARFRAAAAGKRRVLLLGAGLIGCEFANDLVLGGYEVELVAPCEQVMPTLLHPAAAAAVQAGLESLGAHFHLGPVLNRLQRVADGLEAHLSDGQVIPCDLVVSAIGLRPRIDLAAAAGLVVNRGVVVDRQLKTSHANIYALGDCAEVDGLNLLYVMPLMSCARALAQTLAGNPTAVSYGAMPITVKTPVCPLVVSPPPRGSEGAWSVEGEGADIKALCRDAHGNLLGYALTGTAVMEKLALNKQLPALLAPGPT0021900_344DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0021900-rubB|alkT-K05297NANA
D1-35_04457168rubA1COG1773Rubredoxin-1ATGAAAAAGTGGCAATGTATCGTCTGTGGCCTGATCTACAACGAAGCTGACGGCTGGCCCGACGATGGCATCGCGCCCGGCACCCGCTGGGAAGATGTGCCGGCGGACTGGCTGTGCCCGGACTGCGGCGTCGGCAAAATGGATTTCGAAATGATCGAAATCAACTGAMKKWQCIVCGLIYNEADGWPDDGIAPGTRWEDVPADWLCPDCGVGKMDFEMIEINPGPT0021900_23DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0021900-rubB|alkT-K05297NANA
D1-35_04458723ubiCChorismate pyruvate-lyaseATGTCAGGCCTTGGCCGGTATTTTCCGGCTCAGGGCCGTTTTGTACTGATCGGTCGCGACAGATGCAAGCGGGATCGGCGCAGCGGCGCCCTGGCTCGGCCAAAATCGCCGACCGGCATGGTAAGCTCGCGGCCTCATTCGCTGCCATTCAAGACCCTTGTGCCGCCTACAAATTCGATATTTCCTACACTTCGATGGCTTCCCCAGCACCTGCTGTCGCCCCGTCCCGATGCCTGCGTGCTCGACTGGTTGTTCGACCAGGGCTCCCTGACCCGGCGCCTTACAGGCCTGTCGGATGACCACTTCAGCGTGACACCGCTGCTGGAGGGCTGGCAGCCGTTGCGCGCCGACGAGTGTGCCGCGCTGGACCTGGCCGAGGGCAGCGAAGGCTGGGTGCGCGAAGTCTACCTGCGCGGCCATGATCAACCATGGGTGTTCGCCCGCAGCGTGGCGGCACGCAGCGCGTTGCAGGGCGACGGTTTGCAGATGGACGCACTGGGCAGCCGCTCCTTGGGCGAGCTGCTTTTTTGTGACCAGGCATTCCAGCGCCGGGCGATCGAGGTGTGCCATTACCCGAGCGAATGGTTGCCACCCGAGGTTCGCGCCCACGCGTTGTGGGGCCGTCGCTCGCGTTTCGATCGCGGTGCGTTGAGCGTGCTGGTGGCGGAGATTTTCCTGCCGCCGCTGTGGACCGTCGCTCGCGCCTATTCGGAGAATTGCTGAMSGLGRYFPAQGRFVLIGRDRCKRDRRSGALARPKSPTGMVSSRPHSLPFKTLVPPTNSIFPTLRWLPQHLLSPRPDACVLDWLFDQGSLTRRLTGLSDDHFSVTPLLEGWQPLRADECAALDLAEGSEGWVREVYLRGHDQPWVFARSVAARSALQGDGLQMDALGSRSLGELLFCDQAFQRRAIEVCHYPSEWLPPEVRAHALWGRRSRFDRGALSVLVAEIFLPPLWTVARAYSENCPGPT0009525_201DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009525-ubiC-K03181NANA
D1-35_04459891ubiACOG03824-hydroxybenzoate octaprenyltransferaseATGTACGTGCAACTGCTCAAATCCTTGAACCGCCTCAATCCGCGGGCCTGGGACTTCGTGCAACTGACCCGCATGGACAAGCCCATCGGCATCTACCTGTTGCTGTGGCCGACATTGTGGGCGCTGTGGATTGCCGGCGAAGGCTCGCCGTCCTTGGCCAACATCGTGATTTTTGTGTTGGGCGTAGTGCTGACCCGTGCCGGCGGTTGCGTGATCAACGACTGGGCCGACCGCAAGGTCGACGGCCACGTCAAACGCACCGAGCAGCGCCCGCTGGTGAGCGGCAAGATCAGCTCGAAGGAAGCCCTGGTGTTCTTCGCGGTCTTGATGAGCGTGAGTTTCCTGCTGGTGCTGTGCACCAATGCGCCGACGATTCTGTTGTCCTTGGGCGGACTGGCGCTGGCGTTCAGTTACCCGTTCATGAAGCGCTACACCTATTACCCGCAAGTGGTGCTGGGCGCGGCGTTTTCCTGGGGCATGCCGATGGCTTTCACCGCCGAAACCGGCCATCTGCCGGCCGCCGCATGGCTGCTGTACATTGCCAACCTGCTGTGGACGGTGGGCTACGACACTTACTACGCGATGACCGACCGGGACGACGACCTGAAGATTGGCGTGAAATCCACGGCGATCCTGTTTGGCGATGCCGATCGGGTGATCATCCTGACGCTGCAAGGCCTGGCCTTGGGCTGCCTGCTGCTGGCCGGGGCTCAGTTCAAGCTGGGAGGCTGGTTCCATCTCGGTCTCGTGGCCGCCGCCGCGTGCTTTGCCTGGGAGTTCTGGTACACCCGCGGAAGGGACCGGATGCGTTGTTTCAAGGCGTTCCTGCACAACCACTGGGCCGGGTTGGCGATTTTTGTCGGGATTGTGCTGGATTACGGGTTGCGGTGAMYVQLLKSLNRLNPRAWDFVQLTRMDKPIGIYLLLWPTLWALWIAGEGSPSLANIVIFVLGVVLTRAGGCVINDWADRKVDGHVKRTEQRPLVSGKISSKEALVFFAVLMSVSFLLVLCTNAPTILLSLGGLALAFSYPFMKRYTYYPQVVLGAAFSWGMPMAFTAETGHLPAAAWLLYIANLLWTVGYDTYYAMTDRDDDLKIGVKSTAILFGDADRVIILTLQGLALGCLLLAGAQFKLGGWFHLGLVAAAACFAWEFWYTRGRDRMRCFKAFLHNHWAGLAIFVGIVLDYGLRPGPT0009515_1213DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009515-ubiA-K03179NANA
D1-35_04460384hypothetical proteinATGGCTTATTACACTCGATCCCTCAAGGCGTTGGGGCTGGTAGCTGCGCTGGCGCTGCCGGGAATGGCGCTTGCGGCTGGCGAACCGGCAATGGTCAAGGATGGCGTGCTGGTCGATCATAAGGGCATGACGTTGTACACCTATGACAAGGACGACGGCGGCAAGTCGATGTGCAACGATAAATGCGCCGAAAACTGGCCACCACTCAAGGCTGAAAGCACCGCGACTCCTTCAGGCGAATGGACCGTGATCACGCGTGATGATGGCGCGTCACAGTGGGCCTATGACGGCGATCCGTTGTACACCTTCGTCGGCGACAAGAAGGCGGGTGACAAGACCGGCGACGGCAAGGGCGGCGTCTGGAAGATCGCCAAGCCCGACTGAMAYYTRSLKALGLVAALALPGMALAAGEPAMVKDGVLVDHKGMTLYTYDKDDGGKSMCNDKCAENWPPLKAESTATPSGEWTVITRDDGASQWAYDGDPLYTFVGDKKAGDKTGDGKGGVWKIAKPDNANANANANA
D1-35_04461690phoBCOG0745Phosphate regulon transcriptional regulatory protein PhoBATGGTTGGCAGGAGCATTCTGATCGTCGACGACGAGGCGCCCATCCGCGAGATGATCGCCGTTGCGTTGGAGATGGCCGGCTATGACTGCATGGAAGCAGAAAACTCTCAACAGGCCCACGCCATCATCGTCGATCGCAAGCCCGACCTGATCCTGCTGGACTGGATGCTGCCAGGCACCTCCGGCATCGAGCTGGCCCGACGTCTCAAGCGCGATGAGCTGACGGGTGACATCCCGATCATCATGCTCACCGCCAAGGGCGAAGAAGACAACAAGATCCAGGGCCTGGAAGTCGGTGCCGACGATTACATCACCAAGCCGTTTTCCCCTCGGGAGCTGGTGGCGCGCCTCAAGGCCGTGCTGCGTCGTGCCGGGCCGACCGATGGCGAAGCGCCGATCGAAGTTGGCGGCCTGCTGCTGGACCCGATCAGCCACCGCGTGACCATCGACGGCAAGCCCGCCGAGATGGGCCCGACCGAATATCGCCTGTTGCAGTTCTTCATGACGCACCAGGAGCGCGCCTACACCCGTGGGCAACTGCTGGATCAGGTCTGGGGCGGCAACGTGTACGTCGAGGAGCGCACCGTGGATGTGCACATCCGGCGCTTGCGCAAAGCCCTCGGCGACGCCTATGAGAATCTGGTACAAACCGTGCGCGGCACCGGTTATCGTTTTTCGACAAAGGCCTGAMVGRSILIVDDEAPIREMIAVALEMAGYDCMEAENSQQAHAIIVDRKPDLILLDWMLPGTSGIELARRLKRDELTGDIPIIMLTAKGEEDNKIQGLEVGADDYITKPFSPRELVARLKAVLRRAGPTDGEAPIEVGGLLLDPISHRVTIDGKPAEMGPTEYRLLQFFMTHQERAYTRGQLLDQVWGGNVYVEERTVDVHIRRLRKALGDAYENLVQTVRGTGYRFSTKAPGPT0002660_1206DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCAN_METABOLISMCE-EPS-GALACTOGLUCAN_METABOLIC_PATHWAY,PGPT0002660-phoB-K07657NANA
D1-35_044621323phoRPhosphate regulon sensor protein PhoRGTGAATCAAAACTGGCATGGCACCCTGATCCGCCACATGTTGTTGCTGGTGACCGGTTGCCTGTTGATCGGCCTGATCACCGGCTACTACGGCTGGAGCCTGGCCGTGGGCCTGGCGCTTTACCTGGCCTGGACCCTCAAGCAATTGCTGCGCCTGCACGAGTGGCTGCGCCTGCACCAACCCGACGAGGCCCCGCCCGACGGCTACGGCTTGTGGGGCGAGGTGTTCGACAGCATCTACCACCTGCAACGGCGCGACCAGCGCGTTCGCGGCCGCCTGCAGGCGGTGATCGACCGCGTCCAGGAATCCACCGCCGCGCTGAAAGACGCGGTGATCATGCTCGACAGCGACGGCAACCTCGAATGGTGGAACCGCGCCGCAGAAACCCTGCTGGGCCTCAAGACGCCACAGGACAGCGGCCAGCCAGTGACCAACCTGGTGCGCCATCCGCGCTTCAAGGAATATTTCGAGCAAGACAATTACGCCGAACCGCTGGAAATCCCGTCGCCCACCAATGATCGGCTGCGCATCCAGCTGTACATCACCCGCTATGGCAACAACGAGCACCTGATGCTGGTGCGCGACGTGACGCGTATTCATCAACTGGAACAGATGCGCAAGGATTTCATCGCCAACGTATCCCATGAACTGCGTACGCCATTGACGGTGATCTGCGGTTACCTGGAGACCCTGCTCGACAATGTCGAAGAGGTGAACCCGCGCTGGACCCGTGCCTTGCAGCAGATGCAGCAGCAGGGCGGACGCATGCAGACACTGCTCAACGATCTGCTGTTGCTGGCGAAGCTGGAAGCCACCGACTATCCCTCGGACAACCAGCCGGTGCCCATCGAGGACCTGTTGCAAGTCATTGCCGAAGATGCGCAGGAGTTGTCCGGCCCCAAGCAGCAGTCCATCACGCTTGAAGCAGACCCGACCGTACAACTCAAGGGCAGCGAGGCGGAACTGCGCAGCGCGTTTTCCAACCTGGTGTTCAACGCGGTCAAATACACGCCTGAACAAGGGCGGATCCATGTGCGCTGGTGGGGCGATGAACAAGGCGCACACCTGAGCGTGCGCGATTCCGGCATCGGCATCGACAGCAAGCACCTGCCGCGCCTGACCGAGCGTTTCTACCGGGTCGACTCCAGCCGCAACTCCAACACTGGCGGAACCGGGCTCGGTCTGGCAATCGTCAAGCATGTGCTGCTGCGCCATCGTGGACGCATGGAAATCAGCAGCGTGCCCGGCCATGGCAGTACGTTTACCTGCCATTTCACCCCGGCGCAGGTGGTCCGCGGACGGCACTCCAGCCACGACGAATGAMNQNWHGTLIRHMLLLVTGCLLIGLITGYYGWSLAVGLALYLAWTLKQLLRLHEWLRLHQPDEAPPDGYGLWGEVFDSIYHLQRRDQRVRGRLQAVIDRVQESTAALKDAVIMLDSDGNLEWWNRAAETLLGLKTPQDSGQPVTNLVRHPRFKEYFEQDNYAEPLEIPSPTNDRLRIQLYITRYGNNEHLMLVRDVTRIHQLEQMRKDFIANVSHELRTPLTVICGYLETLLDNVEEVNPRWTRALQQMQQQGGRMQTLLNDLLLLAKLEATDYPSDNQPVPIEDLLQVIAEDAQELSGPKQQSITLEADPTVQLKGSEAELRSAFSNLVFNAVKYTPEQGRIHVRWWGDEQGAHLSVRDSGIGIDSKHLPRLTERFYRVDSSRNSNTGGTGLGLAIVKHVLLRHRGRMEISSVPGHGSTFTCHFTPAQVVRGRHSSHDEPGPT0002705_2473DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATE_METABOLISMP-SOLUBILISATION-PHOSPAHTE_HOMEOSTASIS|REGULATION,PGPT0002705-phoR-K07636NANA
D1-35_044631341hypothetical proteinATGGACCCTTCCCCTGGCTTGTCCCTCGCTACACTCTTCGCCGAATTCGGCATGATTCTTTTTGCTCTGATCCTGGTCTTGCTCAACGGTTTTTTCGTTGCGGCCGAATTTGCCATGGTCAAGCTGCGCTCGACCCGGGTCGAGGCCATTGCCGAACAGAACGGCTGGCGCGGGCACATCCTGCGCACCGTCCACAGCCAGCTCGACGCCTATCTCTCGGCCTGCCAGTTGGGTATCACCCTCGCCTCCCTGGGGCTGGGATGGGTCGGCGAGCCGGCGTTCGCGCATATTCTCGAGCCGCTGCTGGGCGCGGTCGGCGTCCAGTCGCCGGAAGTGATCAAGGGTGTGTCGTTCTTCACCGCGTTCTTCATCATTTCCTACCTGCACATCGTGGTCGGCGAGCTGGCGCCCAAATCCTGGGCGATCCGCAAACCGGAACTGCTGTCGCTTTGGACGGCCGTGCCGCTGTACCTGTTCTACTGGGCCATGTACCCGGCGATCTACCTGCTCAATGCCAGCGCCAACGCGATCCTGCGTATCGCCGGCCAGGGTGAGCCCGGCCCGCATCATGAACACCATTACAGCCGCGAGGAGTTGAAGCTGATCCTGCACTCCAGCCGTGGCCAGGACCCGAGCGACCAAGGCATGCGCGTGCTGGCCTCCGCCGTGGAAATGGGCGAGCTGGAGGTGGTGGACTGGGCCAACTCCCGGGAAGACCTGGTAACGCTGGAATTCAATGCCCCGCTCAAGGAAATCCTGGCGATGTTCCGTCGCCACAAGTTCAGCCGGTATCCGGTGTACGACAGCGAGCGCCAGGAATTCGTCGGCCTGCTGCACATCAAGGACCTGCTGCTGGAACTGGCGGCCCTGGACCACATCCCCGAATCGTTCAACCTGGCGGAACTGACCCGCCCGCTGGAGCGAGTATCGAGGCACATGCCGTTGTCGCAGCTGCTGGAGCAGTTCCGCAAGGGCGGGTCGCACTTCGCCGTGGTCGAAGAAGCCGACGGCAATATCATCGGCTACCTGACCATGGAAGACGTTCTGGAAGTGCTGGTGGGCGATATCCAGGACGAACACCGCAAGGCCGAGCGCGGCATCCTCGCCTATCAGCCGGGCAAGCTACTGGTGCGCGGCGACACCCCGCTGTTCAAGGTGGAGCGCCTGCTGGGCATCGACCTGGACCACATCGAAGCGGAAACCCTGGCAGGGTTGGTCTACGAAACCCTGAAACGGGTGCCGGAAGAGGAAGAAGTGCTGGAAGTCGAAGGCCTGCGGATCATCATCAAGAAGATGAAAGGGCCGAAGATCATTCTGGCGAAGGTGTTGATGCTCGGTTGAMDPSPGLSLATLFAEFGMILFALILVLLNGFFVAAEFAMVKLRSTRVEAIAEQNGWRGHILRTVHSQLDAYLSACQLGITLASLGLGWVGEPAFAHILEPLLGAVGVQSPEVIKGVSFFTAFFIISYLHIVVGELAPKSWAIRKPELLSLWTAVPLYLFYWAMYPAIYLLNASANAILRIAGQGEPGPHHEHHYSREELKLILHSSRGQDPSDQGMRVLASAVEMGELEVVDWANSREDLVTLEFNAPLKEILAMFRRHKFSRYPVYDSERQEFVGLLHIKDLLLELAALDHIPESFNLAELTRPLERVSRHMPLSQLLEQFRKGGSHFAVVEEADGNIIGYLTMEDVLEVLVGDIQDEHRKAERGILAYQPGKLLVRGDTPLFKVERLLGIDLDHIEAETLAGLVYETLKRVPEEEEVLEVEGLRIIIKKMKGPKIILAKVLMLGNANANANANA
D1-35_04464897hypothetical proteinATGCTCGTGCCGTTGCTGTTCGCCTGTGGTCTTGTCCTGGCCGCCACCCCGGCCTTGGCCATGACCATCTACAAATCCACCGACGCCAATGGCGTGGTCTCCTACAGTGACCGCCCCAGCAAAGGCTCCCAGGTGTTCGTATTTCGTGATCGCATGGTCGAGCGCCTGGAGCGCCAGGTGTTTCTCGACATCAGGAAGCAGAAGGGCGCGGACGCGGTGTACGTGCGCAACGACCTCTATGCCCCGGTGGAAATCGAGCTGAGCTTCGCCGGGTTGCGCAACGTCAGCGGGGCGCCGAGCCGGCCGATCCGCCGCGTGCTGCCGGCGCGCAGCAATCTGCGCCTGGCGCTGCTGACGGCCACTCGGCCCGGCAGGCCTCTGGCTTATACCCCAAGGTTCGAATACTCCCTGGGCGACCCCGCAGGCACGGCGCAAGCTTATCGCTATCCGTTGCCCTGGCGTGGCGGGCCTTTCCGGTTGAGCCAGGGCGCCAACGGCCAATACAGCCATTACGGCCCGAAGAACCGCTACGCCATGGACATCGCGATGCCCGAAGGCACGCCGATCATCGCGGCGCGGGGCGGCGTGGTGGTCAAGACCGAGAACGAGCAGACCGGGCGCGGCACCGATCCTGCCGGCAACTTTGTGCGCGTGTTGCACGATGACGGGACCATGGGAGTCTACCTGCACCTGCAGAAGGGCTCGGTGAGCGTCCAGGAGGGGCAACGGGTCGTGGTGGGCACGCCGCTGGCGCTATCAGGCAACACCGGTAACAGCTCCGGCCCGCACCTGCACTTCGTGGTACAGCGCAACACCGGGCTGGGGTTGGTGTCGATTCCCTATCAGTTCAACCAGCCGGTGGGTGACTTGCCCAACTTTGCGTTGGGCAAGCAGTAGMLVPLLFACGLVLAATPALAMTIYKSTDANGVVSYSDRPSKGSQVFVFRDRMVERLERQVFLDIRKQKGADAVYVRNDLYAPVEIELSFAGLRNVSGAPSRPIRRVLPARSNLRLALLTATRPGRPLAYTPRFEYSLGDPAGTAQAYRYPLPWRGGPFRLSQGANGQYSHYGPKNRYAMDIAMPEGTPIIAARGGVVVKTENEQTGRGTDPAGNFVRVLHDDGTMGVYLHLQKGSVSVQEGQRVVVGTPLALSGNTGNSSGPHLHFVVQRNTGLGLVSIPYQFNQPVGDLPNFALGKQNANANANANA
D1-35_04465954cheB_6Protein-glutamate methylesterase/protein-glutamine glutaminaseATGAGTAAGGTCAGTGTGTTGGTCGTGGACGATGCTTCGTTCATTCGTGACTTGGTGAAGAAGTGCCTGCGCAACTACTTCCCAGGCATCCGCATCGAAGACGCGGTGAACGGCAAGAAAGCCCAGGCCCTGCTGGCCCGTGAAGCGTTCGACCTGGTGCTGTGCGACTGGGAAATGCCAGAAATGTCCGGCCTGGAATTGCTGACCTGGTGCCGCCAGCAGGACAATCTCAAGGGCATGCCTTTTGTGATGGTGACCAGCCGTGGCGACAAGGAGAACGTGGTCCAGGCGATCCAGGCCGGCGTTTCCGGCTACGTCAGCAAACCCTTCACCAACGAACAGTTGCTGACCAAGGTCAAGCAGGCCTTGAACAAGGTCGGCAAGCTCGACACGTTGATGAACAGCGCCCCGACCAAGATGAATTCGGCGTTCGGCAATGATTCGCTCAGTGCCCTGACCGGCGGCAAGGCCGCTCCGGTTGCCGCGGCTGCGCCAGCGGCGAACCCGTTTGCCAAGCCCGCTGCCGCGCCTGCACCCGCTGCGGCTGCCGCTCCGGCGGCACGTGGCTTGCTCAACAGCCCGCCCGTCAAGGCACCTGCCGCGTCCGCACCCACTGCCAATCGCGGCCAAGGCCAGTTGCGCCTGTCCAGCGGCACCCAGCAATGCGTGATCAAGGCCTTGAGCCTCAAGGAAGCGTTGCTGGTGGTCAAGCGCACCGACATCCTGCCGCAAGTGCTGGAGAGCTCGGTGCTGGACATGGAACAGGGCGACAACGCCGAAACCGCTCGTCTGAACGGCTACCTGCATGCCATCGTCGCCCATGAGCAAACCCCTGACAGCGAATGGCTGCAACTGACCTTCCGCTTCGTCGACAAAGACCCGCAGAAACTCGACTACATCTCCCGCCTGATCGCCCGCGGCACGGCGCAGAAGCACTTCGTACCGGGCGCCTGAMSKVSVLVVDDASFIRDLVKKCLRNYFPGIRIEDAVNGKKAQALLAREAFDLVLCDWEMPEMSGLELLTWCRQQDNLKGMPFVMVTSRGDKENVVQAIQAGVSGYVSKPFTNEQLLTKVKQALNKVGKLDTLMNSAPTKMNSAFGNDSLSALTGGKAAPVAAAAPAANPFAKPAAAPAPAAAAAPAARGLLNSPPVKAPAASAPTANRGQGQLRLSSGTQQCVIKALSLKEALLVVKRTDILPQVLESSVLDMEQGDNAETARLNGYLHAIVAHEQTPDSEWLQLTFRFVDKDPQKLDYISRLIARGTAQKHFVPGANANANANANA
D1-35_04466762phoUCOG0704Phosphate-specific transport system accessory protein PhoUATGATTAGTAAAGAAGGCCTCACCCACCACATTTCCGCGCAGTTCAACGCCGAGCTGGAAGAGGTGCGCAGCCACCTGCTGGCCATGGGCGGGCTGGTGGAAAAGCAGGTCAACGACGCGGTGACCGCGCTGATCGAGGCCGACTCCGGCCTGGCCCAGCAAGTGCGCGAGATTGATGACCAGATCAACCAGATGGAACGCAACATCGACGAAGAATGCCTGCGCATCCTGGCCCGTCGTCAGCCTGCGGCTTCCGACCTGCGCCTGATCATCAGCATCTCCAAGTCGGTGATCGACCTTGAGCGGATCGGCGACGAAGCCACCAAGATCGCTCGTCGCGCCATCCAGTTGTGCGAAGAAGGTGAAGCGCCGCGCGGCTACGTCGAGGTTCGCCACATTGGTGACCAAGTGCGCAACATGGTACGCGATGCGCTGGACGCCTTCGCCCGTTTCGACGCCGACCTGGCGCTGTCGGTGGCCCAGTACGACAAGATCATCGACCGCGAGTACAAGACCGCCCTGCGCGAGCTGGCGACCTACATGATGGAGGACCCGCGTTCGATTTCCCGGGTGTTGAGCATCATCTGGGTGCTGCGTTCGTTGGAGCGTATCGGCGATCATGCACGCAACATCTCGGAACTGGTGATCTACCTCGTGCGTGGCACCGATGTCCGGCACATGGGGCTCAAGCGGATGAAGGAAGAAGTTGAGGGCACCCCGTCCGAAACCGCTAATGTTCCCGGTCAAACTGACGATAAGTAAMISKEGLTHHISAQFNAELEEVRSHLLAMGGLVEKQVNDAVTALIEADSGLAQQVREIDDQINQMERNIDEECLRILARRQPAASDLRLIISISKSVIDLERIGDEATKIARRAIQLCEEGEAPRGYVEVRHIGDQVRNMVRDALDAFARFDADLALSVAQYDKIIDREYKTALRELATYMMEDPRSISRVLSIIWVLRSLERIGDHARNISELVIYLVRGTDVRHMGLKRMKEEVEGTPSETANVPGQTDDKPGPT0002630_152DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ARSENIC_RESISTANCEARSENIC_RESISTANCE-PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002630-phoU|phoY-K02039NANA
D1-35_04467834pstBCOG1117Phosphate import ATP-binding protein PstBATGCAACACGAAGCACCTACACACGGCATCAACATGTCGGCCCTGGGCCGCGACAAGCAGAGCCTGAACCTGGCTCAGGAAACCGTCGCCATCGAAGTGCCCGGCCTGAACCTGTTCTACGGTCAGAAACAGGCGCTGTACGATGTCAGCCTGAACATCCCGAAACAGCGCGTCACCGCGTTCATCGGTCCGTCGGGCTGCGGCAAGTCGACCTTGCTGCGCACCTTCAACCGCATGAACGATCTGGTGGACGGCTGCCGCGTCGAAGGCGAAATCAACCTCTACGGCAACAACATCTACCGCAAGGGCGAAGACGTTGCCGAACTGCGTCGTCGCGTGGGCATGGTGTTCCAGAAGCCCAACCCGTTCCCCAAGACCATCTACGAGAACGTCGTCTATGGCCTGCGGATCCAGGGCATCAACAAGAAGCGCGTACTCGATGAAGCCGTGGAGTGGGCACTCAAGGGCGCGGCGCTGTGGGATGAGGTCAAGGACCGCCTGCACGAATCGGCGCTGGGCCTGTCCGGTGGGCAGCAGCAGCGTCTGGTGATCGCCCGCACCATCGCCGTGGAGCCGGAAGTGCTGCTGCTCGACGAACCTTGCTCGGCACTCGACCCGATCTCGACGCTGAAAGTCGAGGAACTGATCTACGAGCTCAAGTCCAAGTTCACCATCGTCATCGTGACCCACAACATGCAGCAGGCGGCGCGGGTGTCCGACTACACCGCGTTCATGTACATGGGCAAGCTGGTGGAATTCGGCGACACCGATACCCTGTTTACCAATCCGGCCATGAAGCAGACCGAGGACTACATCACCGGTCGTTACGGCTAGMQHEAPTHGINMSALGRDKQSLNLAQETVAIEVPGLNLFYGQKQALYDVSLNIPKQRVTAFIGPSGCGKSTLLRTFNRMNDLVDGCRVEGEINLYGNNIYRKGEDVAELRRRVGMVFQKPNPFPKTIYENVVYGLRIQGINKKRVLDEAVEWALKGAALWDEVKDRLHESALGLSGGQQQRLVIARTIAVEPEVLLLDEPCSALDPISTLKVEELIYELKSKFTIVIVTHNMQQAARVSDYTAFMYMGKLVEFGDTDTLFTNPAMKQTEDYITGRYGPGPT0002615_940DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002615-pstB|phoT-K02036NANA
D1-35_044681671hypothetical proteinGTGAAACAGAACTCCCTGAAAGGATGGTTCAAGAGCGGCGCCCCGGGCGTCTGGATCAGCGGTGGCGCGGTGTCCATCGCGGTCATCATGACCATTGGCCTGTTGGCGGTGATTGCCGTGCGCGGCCTGGGCCACTTCTGGCCGGCCGACCTGATCCACGCCAGCTACAACGTACCGGGCATGCCGGCGCACCTGGTGGTCGGCGAAGTCGTACAGAAAGAAGAAGTGCCTCGCGAGCGCCTGAAAAGCGCTGGCCTGCCGGTGCCGGACGAAGGCCCGGAGTTCATGACCCGCGAACTGGTCAAGGTCGGTAACCGGGATCTCAACGGCACCGATTTCACCTGGATCGTCGGCGACTGGCTGAGCAACCAGACGACCCCGCCGGAGCTGATGGCTCTGGAGCGACGTGAGTGGGGCAACTTCTACGGCTACCTGGTCAACGTCAAGGAACAAGGCAAGGTCATCGCCGAGGGCGAAGCCGCCTGGCCGCAGTTGCAGGCGCGTATCGAGCGGGTCAATCAACTGGCCGACGAACTCAAGACTCTGGAAAAAGTCGACATCGGCGCGATCAACGCCGGCCTCGAGCGCATCCGCCTGCACGGTCGCAAGCTGGAGCTGGACGGCAAGCTCGACGCCGCCGCCCAGGCTGACCTGGAAAGCGAACGCGCCGAACTGAACGCCCGCTACAAGGACATCGAAGCGCGCCTGACCGACCTGCATGCGCAGTTCAACCGCGACAGCCTGACGGCCCGCGATGCCAACGGCAAGGAAGTGGAAATCGAGATCGGCAAAGTGGTGCACGCCTACCAGCCAAACGGCATGGGCACGTTCACCAAGATGGGTTTCTACTTCAGCAAGGTCTGGGAGTTCCTCAGCGACGATCCGCGTGAAGCCAACACTGAAGGTGGGATCTTCCCGGCTATTTTCGGCACCGTGATGATGACCCTGATCATGGCGATGATCGTCACGCCGTTCGGCGTGCTGGCAGCGGTCTACCTGCGTGAATACGCGCGCCAGGGGCCGATGACCCGCCTGATCCGCATCGCGGTGAACAACCTCGCAGGCGTTCCGGCCATCGTCTACGGCGTGTTCGGGCTGGGTTTTTTCGTCTATGTGCTGGGCGGCTCGGTTGACCGGCTATTCTTCCCCGAGGCTTTGCCGGCACCGACCTTCGGCACGCCGGGCCTGCTCTGGGCTTCCTTGACGCTGGCGCTGCTGGCCGTACCGGTGGTGATCGTGGCCACCGAGGAAGGCCTGGCGCGGATTCCGCGGACCGTGCGCGAAGGCTCCCTGGCACTCGGTGCAACCAAGGCCGAAACACTGTGGAAAATCGTCCTGCCGATGGCGAGCCCGGCGATGATGACCGGCATGATCCTCGCCGTGGCCCGTGCCGCCGGCGAGGTAGCGCCGCTGATGCTGGTGGGCGTGGTGAAACTGGCGCCGTCGCTGCCGCTGGATGGCAACTACCCGTACCTGCACTTGGACCAGAAAATCATGCACCTGGGCTTCCATATCTATGACGTCGGCTTCCAGAGCCCGAACGTCGAAGCAGCCCGGCCATTGGTCTACGCCACGGCGTTGCTGCTGGTGCTGGTGATCGCGACCCTGAACCTGTCGGCGGTGTGGATCCGTAACCACCTGCGTGAGAAGTACAAGGCACTGGATAGTTGAMKQNSLKGWFKSGAPGVWISGGAVSIAVIMTIGLLAVIAVRGLGHFWPADLIHASYNVPGMPAHLVVGEVVQKEEVPRERLKSAGLPVPDEGPEFMTRELVKVGNRDLNGTDFTWIVGDWLSNQTTPPELMALERREWGNFYGYLVNVKEQGKVIAEGEAAWPQLQARIERVNQLADELKTLEKVDIGAINAGLERIRLHGRKLELDGKLDAAAQADLESERAELNARYKDIEARLTDLHAQFNRDSLTARDANGKEVEIEIGKVVHAYQPNGMGTFTKMGFYFSKVWEFLSDDPREANTEGGIFPAIFGTVMMTLIMAMIVTPFGVLAAVYLREYARQGPMTRLIRIAVNNLAGVPAIVYGVFGLGFFVYVLGGSVDRLFFPEALPAPTFGTPGLLWASLTLALLAVPVVIVATEEGLARIPRTVREGSLALGATKAETLWKIVLPMASPAMMTGMILAVARAAGEVAPLMLVGVVKLAPSLPLDGNYPYLHLDQKIMHLGFHIYDVGFQSPNVEAARPLVYATALLLVLVIATLNLSAVWIRNHLREKYKALDSPGPT0002610_287DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002610-pstA-K02038NANA
D1-35_044692286hypothetical proteinATGAATGATCTGGCCAACTCCACAATGACTACGACTTCCCCTCCCAAGCGCATTGACTTCAATACGCCTGAGCTGCAACGCAAGCGCCGCATCCGCGCGCTCAAGGATCGCCTCACCCGTTGGTACGTGCTGGTTGGCGGCCTCGCCGTCCTCGCCGCCATTACTTTGATTTTTTTCTTCCTGGCCTACGTGGTACTGCCGCTGTTCCAAGGCGCGGACCTGACCGCCAAGGACTCGATTACCCCTGCCTGGATGCAAGACGCCGGCAAGCCGCTGATGATCGCCATCGAAGAACAGAACCAGGTGGCGATGCGGGTTTCCGACAAGGGCGTGGCGCTGTTCTACAACCTCGACAGCGGTGCCGAACTGCGGCGTGTCGACCTGCCGATCCCGGCCGGCGCCACTGTGACGTCCATCGGTGAAGATCAGCCCGGCAGCCCGCTGGTGGCGATCGGCTTGTCCAATGGCCAGGCCCTGGTGTTCCGCCACACTTATAAAGTCAGCTACCCCGACGGCAAGAAAACCATCTCTCCGGCCATCGAATACCCTTACGGTGAAGCGCCGGTCGCGTTGAACGAACAGGGCGCGGCCCTGGAGCATGTCAGCCTCAACGCGACCGATTCGACGTTGCTGCTGGCTGGCTCCAGCGGCGCGCAGCTCTATGTGCTGTCGCTCACCAGCGAAGAAAACATGATGACCGGTGAAATCACCAGCGAGCAGACGCGTATCGATCTGCCGCAGATGACCGAGCCGGTAAAAAACATTTTCGTCGACCCGCGCCAGCAGTGGCTGTATGTGGTCAACGGGCGCGCCCAGGCCGATGTGTTCAGCCTGCGGGACAAGAGCCTCAACGGTCGCTACAAGCTGCTCGAGAACGCTGACGCCCAGGTCACCGCCGTTGCCCAGTTGGTCGGTGGCATATCGCTGATCATCGGTGATTCCAAGGGCGGCCTGGCCCAGTGGTTCATGGCTCGCGATCCGGACGGCGAGCTGCGTTTCAAACAGATTCGTACCTTCCAGATGGGCAGCGCACCCATCGTCGAGATCAGCGCCGAAGAGCGTCGCAAGGGCTTCGTTGCGCTCGACGCCGCCGGCAAGCTCGGCGTGTTCCACAGTACTGCCCACCGCACCTTGCTGGTTGATCAGGTAGTCGATGGCCAAGGCCTGTTCGGCATGTCGCCACGGGCCAACCGCCTGATCGTGGAGCAGGGCGGCAAGCTGCAACCGCTGGTCCTGGAAAACCCACACCCGGAAGTCTCGTGGAGCGCCTTGTGGAGCAAGGTCTGGTACGAAAACTACGATGAGCCCAAGTACGTCTGGCAATCGACTGCCGCCAACACCGACTTCGAACCCAAGCTGAGCCTGTCGCCGCTGACCTTCGGCACCCTGAAAGCGGCGTTCTACGCGATGCTTCTGGCCGCGCCGCTGGCGGTTGCCGCAGCGATCTACACCGCCTACTTCATGGCGCCGGGCATGCGCCGCAAGGTCAAGCCGGTGATCGAGCTGATGGAAGCGATGCCGACGGTGATCCTCGGTTTCTTCGCCGGTCTGTTCCTGGCGCCGTACGTCGAAGGGCATCTGCCGGGCATCTTCAGCCTGCTGATGTTGCTGCCGATCGGTATCCTGGTCGCCGGTTTCGCTTTCAGCCGCCTGCCGGAATCCATTCGCCTGCGAGTGCCGGACGGCTGGGAAAGCGCCTTGCTGATCCCGGTGATCCTGTTCGTCGGCTGGCTCTCGCTATACATGAGCCCGTACATGGAAGCCTGGTTCTTCGGCGGCGACATGCGCATGTGGATCTCCCATGACCTGGGCATCACCTACGACCAGCGCAACGCCCTGGTGGTCGGCCTGGCGATGGGCTTCGCGGTCATCCCGAACATTTACTCCATTGCCGAAGACGCCGTGTTCAGTGTGCCTCGCGGCCTGACCCTCGGCTCGCTGGCCCTGGGCGCTACCCCATGGCAGACCATGACCCGCGTGGTCATCCTCACCGCCAGCCCGGGCATCTTCTCGGCGCTGATGATCGGTATGGGCCGGGCGGTGGGCGAGACGATGATCGTGCTGATGGCAACCGGCAACACCCCGGTGATGGAAATGAACCTGTTCGAAGGCCTGCGCACCCTGGCGGCCAACGTCGCGGTGGAGATGCCTGAGTCGGAAGTCGGCGGCAGCCATTACCGCGTGCTGTTCCTGTCGGCCTTGGTGCTGCTGTTGTTCACCTTCGTCATGAACACCCTCGCCGAGCTGATCCGTCAGCGTCTGCGCAAGAAATATTCGTCGCTTTAAMNDLANSTMTTTSPPKRIDFNTPELQRKRRIRALKDRLTRWYVLVGGLAVLAAITLIFFFLAYVVLPLFQGADLTAKDSITPAWMQDAGKPLMIAIEEQNQVAMRVSDKGVALFYNLDSGAELRRVDLPIPAGATVTSIGEDQPGSPLVAIGLSNGQALVFRHTYKVSYPDGKKTISPAIEYPYGEAPVALNEQGAALEHVSLNATDSTLLLAGSSGAQLYVLSLTSEENMMTGEITSEQTRIDLPQMTEPVKNIFVDPRQQWLYVVNGRAQADVFSLRDKSLNGRYKLLENADAQVTAVAQLVGGISLIIGDSKGGLAQWFMARDPDGELRFKQIRTFQMGSAPIVEISAEERRKGFVALDAAGKLGVFHSTAHRTLLVDQVVDGQGLFGMSPRANRLIVEQGGKLQPLVLENPHPEVSWSALWSKVWYENYDEPKYVWQSTAANTDFEPKLSLSPLTFGTLKAAFYAMLLAAPLAVAAAIYTAYFMAPGMRRKVKPVIELMEAMPTVILGFFAGLFLAPYVEGHLPGIFSLLMLLPIGILVAGFAFSRLPESIRLRVPDGWESALLIPVILFVGWLSLYMSPYMEAWFFGGDMRMWISHDLGITYDQRNALVVGLAMGFAVIPNIYSIAEDAVFSVPRGLTLGSLALGATPWQTMTRVVILTASPGIFSALMIGMGRAVGETMIVLMATGNTPVMEMNLFEGLRTLAANVAVEMPESEVGGSHYRVLFLSALVLLLFTFVMNTLAELIRQRLRKKYSSLPGPT0002620_40DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002620-pstC|phoW-K02037NANA
D1-35_04470999pstS_2COG0226Phosphate-binding protein PstSATGAAACTGAAGCGTTTGATGGCGGCAATGACGTTTGTCGCTGCTGGCGTCGCGACTGCCAACGCGGTTGCCGCTGTTGACCCTGCGATCCCGAGCTACACCAAGACCACTGGTGTGTCGGGCAACCTGTCCAGCGTCGGCTCCGATACCCTGGCTAACCTGATGACCTTGTGGGCCGAGAACTACAAGAAGGAATACCCGAACGTCAACATCCAGATCCAGGCCGCCGGTTCCTCCACCGCGCCGCCCGCACTCACCGAAGGCACCGCCAACCTGGGCCCGATGAGCCGCAAGATGAAGGACAACGAGCTGCAAGCCTTCGAACAGAAGTACGGCTACAAGCCGACCGCTATTCCGGTTGCCGTGGATGCCCTGGCGGTATTCGTGCACAAGGACAACCCGATCAAGCACCTGACCATGGCTCAGGTCGATGCGATTTTCTCCTCGACTCGCCTGTGCGGCGCCAAGGCTGACGTCAAGACCTGGGGCGACCTGGGCGTGACCGGCGACCTGGCCAACAAGCCAGTCCAGCTGTTTGGCCGCAACTCGGTGTCCGGCACCTACGGCTACTTCAAGGAAGAAGCCCTGTGCAAAGGCGACTACAAGCCAAATGTCAACGAACAACCAGGTTCGGCTTCGGTTGTGCAGTCGATCAGCAGCTCGCTTAACGGCATCGGCTACTCGGGTATCGGCTACAAGACCGCCAGCGTGAAAACCGTTGCCCTGGCCAAGAAGGAAGGCGGTGAGTTCGTCGAGGACACCGAAGAAAACGCCCTGAACGGCAAGTATCCGCTGTCGCGTTTCCTCTACGTCTACGTCAACAAGGCACCGAACAAGCCTCTGGCCCCGCTGGAAGCCGAGTTCGTCAAGCTGATCCTGTCCAAGCAAGGCCAGGAAGTCGTGGTCAAGGACGGCTACATCCCGGTTCCAGCCAAAGTCGCCGCCAAGGCACTGGCTGACCTGGGTCTGCAGGAAGGCGGCAACGTCGCCAAGCAGTAAMKLKRLMAAMTFVAAGVATANAVAAVDPAIPSYTKTTGVSGNLSSVGSDTLANLMTLWAENYKKEYPNVNIQIQAAGSSTAPPALTEGTANLGPMSRKMKDNELQAFEQKYGYKPTAIPVAVDALAVFVHKDNPIKHLTMAQVDAIFSSTRLCGAKADVKTWGDLGVTGDLANKPVQLFGRNSVSGTYGYFKEEALCKGDYKPNVNEQPGSASVVQSISSSLNGIGYSGIGYKTASVKTVALAKKEGGEFVEDTEENALNGKYPLSRFLYVYVNKAPNKPLAPLEAEFVKLILSKQGQEVVVKDGYIPVPAKVAAKALADLGLQEGGNVAKQPGPT0002625_4355DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002625-pstS|phoS-K02040NANA
D1-35_044711299abaFFosfomycin resistance protein AbaFATGACCACTGCGCCTTCGAGCACGGCGACACCCGCACAACCCGCCCGTCCGCTGACCCGTAACGACTACAAGACCCTGTCGCTTTCTGCCTTGGGCGGTGCGCTGGAATTCTACGATTTCATCATTTTCGTGTTCTTTGCCACCGTGGTCGGCAAATTGTTCTTCCCCGCCGAGATGCCCGAGTGGCTGCGCCTGATGCAGACGTTCGGCATCTTTGCCGCCGGTTACCTGGCCCGGCCGCTGGGCGGGATCATCATGGCCCACTTCGGCGACCTGCTGGGACGCAAGAAGATGTTCACCCTGAGCATCTTCATGATGGCCGTGCCGACCCTGATCATGGGTCTGCTGCCCACTTACGCGCAGATCGGCATGTGGGCGCCGATTCTGTTGCTGTTGATGCGGGTAATCCAGGGCGCCGCGATTGGCGGCGAAGTGCCAGGCGCCTGGGTATTCGTTTCCGAACACGTGCCGGCGCGCCACATCGGCTATGCCTGCGGCACGCTGACCTGCGGCCTGACGGCGGGGATTTTGCTGGGTTCGCTGGTCGCCACGGCCATCAACAGCATTTATACGCCGGTGGAAGTAGCGGATTACGCCTGGCGGATCCCGTTCCTGCTGGGCGGCGTGTTCGGCCTGTTTTCGGTGTACCTGCGCCGCTGGCTCCATGAAACCCCGGTATTTGCCGAGCTGCAATTGCGCAAGGCCCTGGCCCAAGAAGTGCCGTTGCGCGCGGTGCTGCGTGATCATCGCGGCGCCATCGCCATTTCGATGCTGCTGACCTGGCTGTTGTCGGCGGGCGTCATCGTGGTGATCCTGATGACCCCAACCGTGCTGCAGACCGTGTACCACTTCAGCCCGACCACCGCGTTGCAGGCCAATAGCCTGGCGATCGTATTCCTCAGTTTCGGCTGTATCGGCGCGGGTGTGCTGGCTGACCGCTTCGGCGCCGGCCGGGTGTTCGTTTTTGGTAGTGGCTTGCTGATGATCACCTTCTGGACCTTCTACCACAGCCTGTTCGAGCACCCCGAGTGGTTGTTCCCGCTCTACGCCTTGAGCGGCTTGTTGGTGGGTACCATCGGCGCGGTGCCCTACGTCATGGTCAATGCTTTCCCGGCCGTGGTGCGCTTCAGCGGACTGTCGTTCTCCTACAACCTGGCCTACGCGATCTTCGGCGGGCTGACCCCGATGATCGTGACCCTGCTGTTGAAAGAGAGTCCGATGGGGCCGGCGTACTACGTAGCGATTATCTGCGGGATCGGGATGTTGATTGGTGGGTATCTCTGGAAGAAGGGCCGCTAGMTTAPSSTATPAQPARPLTRNDYKTLSLSALGGALEFYDFIIFVFFATVVGKLFFPAEMPEWLRLMQTFGIFAAGYLARPLGGIIMAHFGDLLGRKKMFTLSIFMMAVPTLIMGLLPTYAQIGMWAPILLLLMRVIQGAAIGGEVPGAWVFVSEHVPARHIGYACGTLTCGLTAGILLGSLVATAINSIYTPVEVADYAWRIPFLLGGVFGLFSVYLRRWLHETPVFAELQLRKALAQEVPLRAVLRDHRGAIAISMLLTWLLSAGVIVVILMTPTVLQTVYHFSPTTALQANSLAIVFLSFGCIGAGVLADRFGAGRVFVFGSGLLMITFWTFYHSLFEHPEWLFPLYALSGLLVGTIGAVPYVMVNAFPAVVRFSGLSFSYNLAYAIFGGLTPMIVTLLLKESPMGPAYYVAIICGIGMLIGGYLWKKGRPGPT0013645_1649DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_PROLINE_TRANSPORT,PGPT0013645-proP-K03762NANA
D1-35_04472405COG1607putative acyl-CoA thioester hydrolaseATGATAGAGCTCGAACAAGAAGATCCAATCCCGCAGGGCGATCTGGCCCTGCAAATCACCGCGCTTCCCCGAGAGACCAACGGCTTCGGGGATATTTTCGGCGGTTGGCTGGTGTCCCAGATGGACCTGGCCGGCACCGCGATGGCCAGCAAGGTTGCCGGCGGCCGCGTGGCTACCGTGGCGATCGATCGCATGGCGTTCCTGGTGCCGGTGGCAGTGGGTGCGCAATTGTCGTTCTACACCCAGGCCCTGGAAATCGGCCGGAGCTCGATCCAGATGATGGTCGAGGTCTGGAGTGACGACCCATTGTCCAGCGAATGGCGCAAGGTCACCGAAGCGGTGTTCGTGTTCGTCGCCATCGATGGCAGTGGTCGTACCCGCTCGGTTCCACCTCGGGCGCGTTAAMIELEQEDPIPQGDLALQITALPRETNGFGDIFGGWLVSQMDLAGTAMASKVAGGRVATVAIDRMAFLVPVAVGAQLSFYTQALEIGRSSIQMMVEVWSDDPLSSEWRKVTEAVFVFVAIDGSGRTRSVPPRARPGPT0001830_309DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001830-yciA-K10806NANA
D1-35_04473900yeaD_2COG0676Putative glucose-6-phosphate 1-epimeraseATGCCAACGCCTAACGTCGAAGCCGTCAAACTGGATGAACTGAACGGTTGGCGCATCCGCCACGGTCAGGCCGAGTTGCTCGTGGCCCAGCAAGGCGCGCACGTTCTCAGCTATCAGGTGGACGGCCAGCCGCCGCTGATCTGGCTCAACGACCAGGCGACGTTCAAGACCGGCAAGAGCATCCGTGCCGGCGTACCGGTGTGCTGGCCGTGGTTCGGCAACCTGACGCGCAACCCCGACAGCGTCCAGGCCATGCGCGTCAGCAACGAACCGGCCACCGCTCACGGCCTGGTACGGGCAATGGATTGGGAACTCAAGGGCATCGAAGCCGAGGGTGAAAGCCTGAAGATCGAATTCGTGCTGCCCTATCCCGAAAACGGTTTGTCCGGCTGGCCCCATCAGGTCGACCTGACCTTGACCATGGTCATGGACGAGCAACTGCATATCCATCTGACCAGCCATAACCGTGGCAGCGAAACCGTCAGCCTGAGCCAGGCGCTGCACAGCTATTTCGCGGTCAGCGACGTGCGCAACGTGCATGTCGACGGAGTGGATGGCTTGCGCTACGTCGAGACCCTGGATGACTGGAACGTCCATACCCAGGCCGGCGAGCTGCATTTTGCCGGCGAAACCGACCGGATCTATCTCGATACGCCGCCGACGCTGAGCATCGTCGACGCGCATTGGCAGCGACGCATCGAATTGACCGCTACCGGTTCACGTTCGGCGGTGATCTGGAACCCCTGGACCGAACGCGCCAAGGCCTTCAGCGACATGGCCGATGATGGCTGGCAACGCATGCTCTGCATCGAGACGGCCAATGTGATGGATGATGTGGTGACGTTGTTGCCAGATGCCAGCCATACGCTGGGCGTGAGCATTCGCAGCAAACCGCTCTAAMPTPNVEAVKLDELNGWRIRHGQAELLVAQQGAHVLSYQVDGQPPLIWLNDQATFKTGKSIRAGVPVCWPWFGNLTRNPDSVQAMRVSNEPATAHGLVRAMDWELKGIEAEGESLKIEFVLPYPENGLSGWPHQVDLTLTMVMDEQLHIHLTSHNRGSETVSLSQALHSYFAVSDVRNVHVDGVDGLRYVETLDDWNVHTQAGELHFAGETDRIYLDTPPTLSIVDAHWQRRIELTATGSRSAVIWNPWTERAKAFSDMADDGWQRMLCIETANVMDDVVTLLPDASHTLGVSIRSKPLNANANANANA
D1-35_04474576hypothetical proteinATGCCCGGCGTCGTATTTTCCCTTATGCCGAGCCCTTTCATGCGCCGTCTACTGCTGACCTTCCTTCTGCTGGGCACTGGCCTGGCCCACGCCGCCGAGCTGCCCGAAACCGACTGGCTCGAACTGATGCCCAAGTCGGACCAGAAGGCCCTCGAGGCCATGCCCGAGATCGATCACAACTCCCCCGAAGCCAACGGCACCTTCACCGAAAAGGGTGGCCTGAAGCAGAGCAAAGGCTTGCCGGCGGTGATGTATTCGACCAAGACCGTGGCGTCAATGAACGACAAGCACATCCGCATCGGCGGATACCCGGTGCCGCTGGAAACCGACGCCAAGGGCCGCAGCACGCTGTTTTTCCTGGTGCCTTACCCGGGGGCCTGCATCCATGTCCCGCCACCGCCGCCCAATCAATTGGTGCTGGTGCGTTATCCCAAAGGCCTGAAGCTGGATGATATCTACACGCCGCTGTGGGTCACCGGCACGCTGAAGATCGAAAAGGTCGACAACGACCTGGCGAGCGCGGCGTATGCGATGGAGGCGCAGAAGGTGCGGGTGGTGCAGGAGGCGGATTTGTAGMPGVVFSLMPSPFMRRLLLTFLLLGTGLAHAAELPETDWLELMPKSDQKALEAMPEIDHNSPEANGTFTEKGGLKQSKGLPAVMYSTKTVASMNDKHIRIGGYPVPLETDAKGRSTLFFLVPYPGACIHVPPPPPNQLVLVRYPKGLKLDDIYTPLWVTGTLKIEKVDNDLASAAYAMEAQKVRVVQEADLNANANANANA
D1-35_04475246hypothetical proteinATGGGAATCATCGGAACCATTTTTATCGGCCTGATCGTTGGCCTGCTCGCGCGTTTCCTGAAGCCTGGCGATGACAGCATGGGCTGGATCATGACCATCCTGCTGGGTATCGGCGGTTCGCTGGCAGCCACTTACGGCGGCCAGGCCCTGGGCATCTATCAGGCAGGCGAAGGCGCTGGTTTCCTCGGTGCCCTGGTGGGCGCGGTGGTGCTGCTGGTGATCTACGGCCTGATCAAAAGGAACTGAMGIIGTIFIGLIVGLLARFLKPGDDSMGWIMTILLGIGGSLAATYGGQALGIYQAGEGAGFLGALVGAVVLLVIYGLIKRNNANANANANA
D1-35_044761086purKCOG0026N5-carboxyaminoimidazole ribonucleotide synthaseATGAAGATCGGTGTAATCGGTGGCGGCCAGTTGGGTCGCATGTTGGCCCTGGCGGGTACGCCGTTGGGGATGAACTTCGCTTTCCTGGATCCGGCGCCGGACGCCTGTGCCGCGGCGCTGGGTGAACACCTGCGTGCCGATTACGGCGATCAGGACCATCTGCGCCAGCTGGCCGATGAAGTCGACCTGGTGACCTTCGAGTTCGAAAGCGTCCCGGCCGAGACCGTTGCCTTCCTGTCCCAGTTCGTCCCGGTCTTCCCGAGCGCCGAAGCCTTGCGCATCGCCCGCGATCGATGGTTCGAAAAGAACATGTTCAAGGACCTGGGCATTCCGACCCCGGCCTTCGCCGACATTCAGTCCCAGGCCGACCTGGAAGCCGCCGTTGCGTCCATCGGCCTGCCGGCCGTGCTCAAGACCCGCACCCTGGGTTACGACGGCAAGGGCCAGAAGGTCCTGCGCAACCCGGAAGACGTCGCCGGCACATTCGCCGAGCTGGGCAGCGTCGGCTGCCTGCTGGAAGGCTTCGTGCCTTTCACCGGCGAAGTCTCGCTGATCGCCGTGCGTGCCCGTGACGGTGAAATCCGTTTCTACCCGCTGGTGCACAACACCCATAAGGACGGCATCCTCAAGCTGTCCGTCGCCAGCACCGACCACCCGCTGCAAGCCCTGGCTGAAGACTACTCCAGCCGGGTACTCAAGCAGCTCGATTATGTCGGCGTCATGGCGTTCGAGTTCTTTGAAGTGGATGGCGGCCTCAAGGCCAATGAAATCGCCCCGCGCGTGCACAACTCCGGGCACTGGACCACCGAAGGCGCCGAGTGCAGCCAGTTCGAAAACCACCTGCGGGCGGTCGCCGGGCTGCCGCTGGGGTCGACGGCCAAGGTCGGCGAAAGCGCGATGCTGAACTTCATCGGCAAGGTGCCGGACACCGAGAAGGTCCTGGCGATCGCCGACTGCCACCTGCATCACTACGGCAAGGCGTTCAAGGTCGGGCGCAAGGTTGGTCACGCCAACCTGCGTTGCGCCGACCGGGCCACGCTGGCCCAGCAGATCATCAAGGTCGAGACGCTGATCGCCGAGCAATAAMKIGVIGGGQLGRMLALAGTPLGMNFAFLDPAPDACAAALGEHLRADYGDQDHLRQLADEVDLVTFEFESVPAETVAFLSQFVPVFPSAEALRIARDRWFEKNMFKDLGIPTPAFADIQSQADLEAAVASIGLPAVLKTRTLGYDGKGQKVLRNPEDVAGTFAELGSVGCLLEGFVPFTGEVSLIAVRARDGEIRFYPLVHNTHKDGILKLSVASTDHPLQALAEDYSSRVLKQLDYVGVMAFEFFEVDGGLKANEIAPRVHNSGHWTTEGAECSQFENHLRAVAGLPLGSTAKVGESAMLNFIGKVPDTEKVLAIADCHLHHYGKAFKVGRKVGHANLRCADRATLAQQIIKVETLIAEQPGPT0021550_3367DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021550-purK-K01589NANA
D1-35_04477492purECOG0041N5-carboxyaminoimidazole ribonucleotide mutaseATGAGTGCACTGGTTGGCGTGATCATGGGCTCCAAGTCCGATTGGTCCACCCTTAGCCACACCGCCGATATGCTGGAAAAGCTCGGCATCCCCTACGAGGTGAAAGTGGTGTCCGCCCACCGCACCCCGGACCTGCTGTTCCAGTACGCCGAAGAAGCCGAGGCGCGTGGCATCGAAGTGATCATCGCCGGCGCCGGCGGCGCGGCTCACCTGCCAGGCATGTGCGCGGCCAAGACGCACTTGCCGGTACTGGGCGTGCCGGTACAGTCATCGATGCTCTCGGGCGTCGATTCGTTGCTGTCGATCGTGCAGATGCCCGCCGGCATCCCGGTTGCCACCCTGGCCATCGGCAAGGCCGGCGCGATCAACGCAGCCCTGTTGTCGGCGAGTATCCTGGGCGCCAAGCATCCGCAGTTTCATACCGTGCTGAAAAAATTCCGCGCTGAGCAGACAGACAGCGTCCTGGACAATCCAGACCCACGCATTGCCTGAMSALVGVIMGSKSDWSTLSHTADMLEKLGIPYEVKVVSAHRTPDLLFQYAEEAEARGIEVIIAGAGGAAHLPGMCAAKTHLPVLGVPVQSSMLSGVDSLLSIVQMPAGIPVATLAIGKAGAINAALLSASILGAKHPQFHTVLKKFRAEQTDSVLDNPDPRIAPGPT0021545_2795DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021545-purE-K01588NANA
D1-35_04478570hypothetical proteinATGCCAAAACCTATCGTGATCCTAGTTATCCAACACGACGATCTAAAAGACTACAGTGTGAGCCAATTCTATCCCGATTATTTTTCCTGGTTTAACACCGAGCTGGAAAGAGTTGCACATCGTAAAGTCCAGATTACAGTCCATCCCGTGGGTACTTACCCCGCGCTCTCGGGATTCAATTACAAGCATGTAGACGAAGTAAAAACCATCCGGGAATGGCGGCGACTGGTGGCGGAACTGCACATCGAGACGGTGCAGAACCGCGGCCTTGAGCCGTCCCTCACCAAGATCCTGTTGCTGACTCGGGACAATCTCAACAGCAAAGTTGCCGGTATCGCGGACGTCAAGGGCTACGCGGCCATTGCTTCAATTACTAAATTCCGGACACCGGCCCATGAAATAGGCCATATGCTGGGCGCGACCCATGATGACGGTGCGATCGAATATGATGGCTGGTGGCATAATTCGATCATGTTCGGCGACGACTTCCAGGATTTTCGTGGCAATACTTACCGCTTTACCGAAAAGAACCGGGCAAACATCCGTAGCTACGTAGACTCCTTCGACTGAMPKPIVILVIQHDDLKDYSVSQFYPDYFSWFNTELERVAHRKVQITVHPVGTYPALSGFNYKHVDEVKTIREWRRLVAELHIETVQNRGLEPSLTKILLLTRDNLNSKVAGIADVKGYAAIASITKFRTPAHEIGHMLGATHDDGAIEYDGWWHNSIMFGDDFQDFRGNTYRFTEKNRANIRSYVDSFDNANANANANA
D1-35_04479912yjiE_1HTH-type transcriptional regulator YjiEATGAATCTTGAAAGCAAATGGCTAGAGGACTTCAGTGCCTTGGCCGCGACGCGCAGTTTTTCCCAGGCGGCCGAGCGCCGCTTTGTGACGCAACCAGCGTTCAGCCGGCGGATCCGCAGCCTGGAGGCGGCGCTGGGGCTGACCCTGGTCAACCGCTCCCGCACGCCGATCGAACTGACTGCGGCGGGACAGTTGTTCCTGGTAACGGCGCGCACGGTGGTCGAGCAGTTGGGCGAAGTGCTGCGGCACTTGCACCACCTGGAGGGCGGGCAGGGCGAAGTTATCCAGGTAGCGGCGGCACATTCCCTGGCGCTGGGTTTCTTTCCGCGCTGGATCGCCCAGTTGCGCAACGAAGGCATGAACATCGCCACGCGGCTGGTGGCGACCAATGTCGGTGATGCGGTGCATGCCCTGCGTGAAGGGGGCTGCGACTTGATGCTGGCCTTCTACGACCCGGATTCGGCGATGCAGATGGACCCGGAGATCTTCCCATCGTTGCACCTGGGCCAGACCGAAATGCTCCCCGTCTGCGCGGCCGATGCCGACCGCAAGCCGTTGTTCGACCTGGAGGGCGAGACCAGCGTGCCCCTGCTGGCCTACAGCGCCGGCGCTTTTCTGGGCCGTTCGGTGAACCAGTTGTTGCGCCAGCGGGCCCTGCGTTTCACCACGGTCTACGAGACGGCCATGGCTGACAGCCTGAAAAGCATGGCCCTGGAAGGCCTGGGCATCGCCTGGGTGCCGCACCTGAGTGTGCGCAACGAACTGGCCCGGGGCGAGCTGGTGATATGCGGCGGGGCGCAATGGCACGTGCCGCTGGAAATCCGCCTGTACCGCTGCGCCCTGGTGCGCAAGGCCAATGTGCGGTTGTTGTGGCGCAAGCTTGAGGGTGGGGCGGCCAGCCCTGCGGCTTGAMNLESKWLEDFSALAATRSFSQAAERRFVTQPAFSRRIRSLEAALGLTLVNRSRTPIELTAAGQLFLVTARTVVEQLGEVLRHLHHLEGGQGEVIQVAAAHSLALGFFPRWIAQLRNEGMNIATRLVATNVGDAVHALREGGCDLMLAFYDPDSAMQMDPEIFPSLHLGQTEMLPVCAADADRKPLFDLEGETSVPLLAYSAGAFLGRSVNQLLRQRALRFTTVYETAMADSLKSMALEGLGIAWVPHLSVRNELARGELVICGGAQWHVPLEIRLYRCALVRKANVRLLWRKLEGGAASPAANANANANANA
D1-35_044801425aspACOG1027Aspartate ammonia-lyaseATGTCCTCCGCTGCATCATTCCGCACAGAAAAAGACCTGCTTGGCGTACTCGAAGTACCGGCGCAAGCGTATTACGGCATCCAGACCCTGCGAGCGATCAACAACTTTCGTCTCTCCGGCGTCCCGATCTCGCATTACCCGAAACTGGTGGTCGGTCTGGCAATGGTCAAGCAAGCCGCCGCTGACGCCAACCGTGAGTTGGGCCAGCTCAGCGAAGCCAAGCACGCCGCCATCAGCGAAGCCTGTGCACGATTGATCCGCGGCGATTTCCACGACGAATTCGTGGTGGACATGATCCAGGGCGGCGCCGGCACGTCGACCAACATGAATGCCAACGAAGTCATCGCCAACATCGCGCTGGAGGCCATGGGTCACCAGAAGGGCGAATACCAGTATCTGCATCCGAACAACGACGTGAACATGGCGCAGTCGACCAACGACGCCTACCCGACCGCGATCCGCCTGGGTCTGCTGCTGGGCCACGACGCGTTGCTGGCCAGCCTCGACAGCCTGATCCAGGCGTTCGCCGCCAAGGGCGAGGAATTCAGCCACGTACTTAAAATGGGCCGTACCCAACTGCAAGACGCCGTGCCGATGACGTTGGGCCAGGAATTCCGCGCGTTCGCCACCACCTTGAGCGAAGACCTGGCGCGTCTGAAAACCCTGGCGCCTGAATTGCTCACCGAAGTGAACCTGGGCGGCACCGCCATCGGTACCGGCATCAACGCCGATCCGCGTTACCAGGCCCTGGCCGTACAACGCCTGGCGACCATCAGCGGCCAACCGCTGGTTCCGGCCGCCGACCTGATCGAAGCGACCTCCGACATGGGCGCCTTCGTGCTGTTCTCCGGCATGCTCAAGCGCACCGCGGTCAAGCTGTCGAAGATCTGCAACGACTTGCGCCTGCTGTCCAGCGGCCCACGCACCGGCATCAACGAAATCAACCTGCCGGCCCGCCAGCCAGGCAGTTCGATCATGCCTGGCAAGGTCAACCCGGTGATCCCTGAAGCGGTGAACCAGGTCGCGTTCCAGATCATCGGCAACGACCTGGCGCTGACCATGGCGGCCGAAGGCGGCCAACTGCAACTGAACGTGATGGAGCCGCTGATCGCCTTCAAGATCTTCGACTCGATCCGCCTGCTGCAACGGGCCATGGACATGCTGCGCGAGCACTGCATCGTCGGCATCACCGCCAACGAAGCGCGCTGCCGCGAACTGGTCGAGCACTCGATCGGCCTGGTTACCGCCCTGAACCCGTACATCGGCTATGAAAACGCCACCCGCATCGCCCGCGTTGCCCTGGAAAGCGGCCGCGGCGTGCTGGAACTGGTGCGCGAGGAAGGCTTGCTCGACGACGCCATGCTCGACGACATCCTGCGCCCGGAAAACATGATTGCTCCGCGTCTGGTCCCACTGAAGGCTTGAMSSAASFRTEKDLLGVLEVPAQAYYGIQTLRAINNFRLSGVPISHYPKLVVGLAMVKQAAADANRELGQLSEAKHAAISEACARLIRGDFHDEFVVDMIQGGAGTSTNMNANEVIANIALEAMGHQKGEYQYLHPNNDVNMAQSTNDAYPTAIRLGLLLGHDALLASLDSLIQAFAAKGEEFSHVLKMGRTQLQDAVPMTLGQEFRAFATTLSEDLARLKTLAPELLTEVNLGGTAIGTGINADPRYQALAVQRLATISGQPLVPAADLIEATSDMGAFVLFSGMLKRTAVKLSKICNDLRLLSSGPRTGINEINLPARQPGSSIMPGKVNPVIPEAVNQVAFQIIGNDLALTMAAEGGQLQLNVMEPLIAFKIFDSIRLLQRAMDMLREHCIVGITANEARCRELVEHSIGLVTALNPYIGYENATRIARVALESGRGVLELVREEGLLDDAMLDDILRPENMIAPRLVPLKAPGPT0020125_1138DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0020125-aspA-K01744NANA
D1-35_044811452alsTCOG1115Amino-acid carrier protein AlsTATGCTCGAAGTCATCAACGACTTCCTCTCAGGGAAAGTGCTGATCGTGCTCATTGTCGGGCTCGGTGGCTACTTCACGATCCGCTCGCGTTTCGTCCAGTTCCGTCATTTCTTTCATATGTTCTCGGTGTTCCGGGACAGCCTGAAAAGCAGCACTGACCAGCTCAGCTCCTTCCAGGCCCTGATGCTCAGCCTTGCCGGCCGTGTCGGCGCGGGCAACATCGCCGGTGTCGGCATCGCCGTGACCCTCGGCGGGCCTGGTGCAGTGTTCTGGATGTGGGTGACCGCGCTGGTCGGCATGTCCAGCAGCTTCTTCGAGTGCTCCCTCGGCCAGCTCTACAAGCGCTGCGATTCCGAAGGCCAGTTCCGTGGTGGTCCGTCCTACTACATCCAGCACGGCCTGCAGAAACGCTGGCTGGGCATGATCATGGCGTTCCTGCTGCTGATCACCTTCGGCTTCGCCTTCAACGGCCTGCAAGCCCACGCCGTCACTCACTCCCTGAATAACGCCTTCGGCCTCGATACCACCTACACCGGCCTCGGCCTGGCGGTGCTGCTGGGCCTGGTATTCATCGGCGGGATCAAGCGAATCGCCAAGGTTGCGGACCTGCTGGTACCGGTCAAGACCCTGGCATACATCGCCGTGACGCTTTACGTGATCGTGCTGCAATTCGAACATGTACCAGGCATGCTGGCGACGATCGTCAGGAGCGCCTTCGGTCTGGACCAGGCCTTTGGCGGCCTGATCGGCAGCGCCATCGTCATGGGCGTCAAGCGTGGCGTGTTCGCCAACGAAGCCGGCCTGGGCAGTGCGCCTAACGTGGCCGCCGTGGCGTCGGTGGAGCACCCGGTCGCCCAAGGCGTGGTCCAGGCGTTCAGCGTTTTCCTCGACACGTTCGTGATCTGCACCTGCACCGCGCTGCTGATCCTGCTGTCGGGTTTCTACACCCCAGGCTTCGAAGGCGACGGCATTGCCCTGACCCAGAACTCCCTGGCGGCCGTGGTCGGCGACTGGGGCCGGATATTCATCTCAGTGGCCCTGTCGTTGTTCGTGTTCACCTCGATCCTCTACAACTATTATCTGGGCGAAAACAACCTGCGCTTCATGCTAGGTGAAAACCGCAAGGCGCTGATGGCCTATCGCGCCTTGGTCCTGGGACTGATTTTCTGGGGCGCCATCGAGAACCTCGGCACCGTGTTCGCGTTCGCCGATATCACCATGACGCTGCTGGCGTTCGTGAACCTGATCGCGCTGTTCCTGCTGTTCAAGGTCGGCATGCGCATCCTGCGCGACTATGACGACCAGCGTTCGGCTGGTATCAAGGTTCCGGTCTTCGATTCCAGCAAATTCCCCGACCTGGACCTGGACCGCAAGGCCTGGCCAGCGAACCCGTCGACCCCCGCCGCTGAATCCGGCAACGCCCCCGCGAGCCTGGCCGCAGCGCAACGCTGAMLEVINDFLSGKVLIVLIVGLGGYFTIRSRFVQFRHFFHMFSVFRDSLKSSTDQLSSFQALMLSLAGRVGAGNIAGVGIAVTLGGPGAVFWMWVTALVGMSSSFFECSLGQLYKRCDSEGQFRGGPSYYIQHGLQKRWLGMIMAFLLLITFGFAFNGLQAHAVTHSLNNAFGLDTTYTGLGLAVLLGLVFIGGIKRIAKVADLLVPVKTLAYIAVTLYVIVLQFEHVPGMLATIVRSAFGLDQAFGGLIGSAIVMGVKRGVFANEAGLGSAPNVAAVASVEHPVAQGVVQAFSVFLDTFVICTCTALLILLSGFYTPGFEGDGIALTQNSLAAVVGDWGRIFISVALSLFVFTSILYNYYLGENNLRFMLGENRKALMAYRALVLGLIFWGAIENLGTVFAFADITMTLLAFVNLIALFLLFKVGMRILRDYDDQRSAGIKVPVFDSSKFPDLDLDRKAWPANPSTPAAESGNAPASLAAAQRPGPT0014405_1766DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_GLYCINE_TRANSPORT,PGPT0014405-yflA|TC_AGCS-K03310NANA
D1-35_044821005ansACOG0252L-asparaginase 1ATGAATGCCTCGACCTATCCCGCCGCCCAGCACGTCATGGTGCTCTACACCGGCGGCACCATCGGTATGCAGGCCAGCGCCAACGGCCTGGCGCCGGCATCCGGTTTCGAAGCGCGGATGCGCGACTACCTGCACAGCCAGCCCGAACTGGTTATCCCGCAATGGCGTTTCCGGGAGATGTCGCCGCTGATCGACAGCGCCAACATGACCCCGGCCTACTGGCAGCAACTGCGCGAAGCGGTGGTCGACGCCGTCGACGTACAGGGCTGTGACAGTGTGCTGATCCTGCACGGTACCGACACACTGGCCTACAGCGCCGCCGCCATGAGTTTCCAGTTGCTCGGCTTGCACGCGCGGGTTTGCTTCACCGGTTCGATGCTGCCGGCCGGCGTGACCGACAGCGACGCCTGGGAAAACCTCAGCGGCGCCCTGGTCGCCCTCGGCCAGGGCCTGGCGCCGGGCGTCCACCTGTATTTCCACGGTGAACTGCTGGCGCCGACCCGCTGCGCCAAGGTGCGCAGCTTTGGTCGCCATCCGTTCAAGCGCCTGGAGCGCCAGGGCGGCGGCATCAAGGCCACTTCGCTGCCGGCGCAGTTGAATTACAACCAGCCGAAACAGTTGGCAAATGTCGTGGTGCTGCCATTGTTCCCTGGCATTGGCGCCGAGGTTATCGATGGCTTGCTGGGCAGCGGCATCCAGGGCCTGGTGCTGGAGTGCTACGGCAGCGGCACCGGTCCGAGCGACAACCCGGCCTTCCTCGCCAGCCTGGAACGGGCGCGGGACAACGGCGTGGTGGTCGTGGCGGTCACACAATGCCATGAAGGCGGCGTCGAGCTGGACATCTACGAAGCGGGCAGTCGCTTGCGCGGCGTCGGCGTGCTGTCCGGCGGCGGCATGACCCGCGAGGCCGCGTTCGGCAAGTTGCAGGCGTTGATCGGTGCGGGCTTGCCGGTGGATGAGGTTCGGCGGCTGGTTGAGCTGGATCTATGTGGCGAGCTGATCTGAMNASTYPAAQHVMVLYTGGTIGMQASANGLAPASGFEARMRDYLHSQPELVIPQWRFREMSPLIDSANMTPAYWQQLREAVVDAVDVQGCDSVLILHGTDTLAYSAAAMSFQLLGLHARVCFTGSMLPAGVTDSDAWENLSGALVALGQGLAPGVHLYFHGELLAPTRCAKVRSFGRHPFKRLERQGGGIKATSLPAQLNYNQPKQLANVVVLPLFPGIGAEVIDGLLGSGIQGLVLECYGSGTGPSDNPAFLASLERARDNGVVVVAVTQCHEGGVELDIYEAGSRLRGVGVLSGGGMTREAAFGKLQALIGAGLPVDEVRRLVELDLCGELIPGPT0020180_2297DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARAGINE_DEGRADATION,PGPT0020180-EC_3_5_1_1|ansA|ansB-K01424NANA
D1-35_04483993putative HTH-type transcriptional regulatorATGCTGCATTCCCACCTCACCACGCTCAACGCGGTCTCCCTGGTGCTCAACGCGTTCAGGAACGAAGGCTTGCCCAGTGAAGCGCTATTGGCCGGCAGCGGCATCAGCATGGCGCACCTGAGCCGGGCCGACACACGCATCACCACCAACCAGGAGATGCAGGTCTGCGCCAACGCCGTGGCGCTCAAACGTGACATAGGCCTGGAATTGGGCCGCAACATGCACGTTTCGTCCTACGGCATGCTCGGCTATGCCCTGCTCACCAGCGCCACCTTAGGTGACGCTTTACGCCTGGCGCTGCGTTACCCGGCGCTATTGGGAACACTCTTTGAGCTGACACTGGAAGACGACGGCGAGCACATCTGGCTCAGCGCCAGCGACTATCGGGAAAACCCGGCCCTGGCGGTGTTCAATGCCGAGTTCTGCATGGTCTCGCTGAGGGTCATCTGCAACGACCTGCTCGGTCATGCGCTCCCCTTGCGCGCGACGCGTTTCGAACACTCGGCACCGGATTATCAGGCACGTTATGAGGCCCTGTTCGAGTGCCCTGTGCGTTTTGACAGTATCGACAACGCGTTCGCCTTCGATCGTCACTGGCTCGCGCAGCCCTTGCCACTGGCTGACCCCATCACTCATCACGCCATGGCCGAACGCTGCCGCCGCCAGAACACCGAGTTCACTGGCAGGCAGGCCTGGCTGGGACGCATCCGCCACTCGCTCGCCGCACAACTGGATGCCCCGCCAGGCCTGGAAGGCTTGGCCGAACAGATGAACTGCTCGGCGCGCACCCTGCGCCGGCATCTCAAGGACCTGGGCTGCAGCTACCAGGAATTGCTCGATGAACTGCGCTTCGAACGGGCCAAGCAGATGCTCGGTGAAGATCAATTGCCGATCTACCGGATCGCCGAAATGCTCGGCTTCAGCGAAACAGCCAGCTTCCGCCACGCATTCGTACGCTGGAGCGGCGTGGCGCCGAGTCAGTTCAGGCCATGAMLHSHLTTLNAVSLVLNAFRNEGLPSEALLAGSGISMAHLSRADTRITTNQEMQVCANAVALKRDIGLELGRNMHVSSYGMLGYALLTSATLGDALRLALRYPALLGTLFELTLEDDGEHIWLSASDYRENPALAVFNAEFCMVSLRVICNDLLGHALPLRATRFEHSAPDYQARYEALFECPVRFDSIDNAFAFDRHWLAQPLPLADPITHHAMAERCRRQNTEFTGRQAWLGRIRHSLAAQLDAPPGLEGLAEQMNCSARTLRRHLKDLGCSYQELLDELRFERAKQMLGEDQLPIYRIAEMLGFSETASFRHAFVRWSGVAPSQFRPNANANANANA
D1-35_044841032aphACOG0123Acetylpolyamine amidohydrolase 1ATGCTGACGATTTATTCCGACGATCACCACCTGCACCATGGACGTTGCGAGTTGATGGACGGGCAGCTGATGCCCTGCTTCGAAATGCCCTCCCGCGCCGATCATGTGCTGGAGCGGGTCAAGGCTAGGGCGTTGGGGCCGGTGGAGGCGCCACGGGATTTCGGCCTGGGGCCGATCCAGCGCATCCACAGTCCGCAATACCTTGAATTCTTCGAGAGTGCCTGGGACCGCTGGAGCGAATTCAACCGCGACGGCGACCTGCTGCCCTATACCTGGCCGGCGCGCACCCTGCGTACCGTTATCCCGACGAGCCTGCACGGTCAACTCGGCTATTACAGTTTCGACGGCGGCGCCCCGATTACCGCCGGCACCTGGCAGGCCGCCTACAGCGCAGCCCAGGTCGCCCTCACCGCCCAGGCCGAAATCCAGCGCGGTGCCCGCAGTGCCTTCGCGTTGTGTCGGCCACCGGGGCACCACGCCGCCAGCGACTTGATGGGCGGTTATTGCTACCTCAACAACGCGGCGATCGCCGCCCAGGCTTTCCTTGACCAGGGCCACCGGAAGGTCGCGATCCTCGATGTCGACTACCACCATGGCAACGGCACCCAATCGATTTTCTACCAACGCAGCGATGTCCTGTTCGCCTCGATTCATGGCCATCCTGAAGCCGAATTTCCGTTCTTCCTGGGCTACGCCGACGAGCGCGGCGAAGGTGCCGGCACGGGATTCAATTTCAACTACCCGCTGCCCGCCGGTTCCGGTTGGGACAGCTGGAGCGCCGCCCTCGAACAGGCCTGCGGCGAGGTCCTGGACTATGACGCCGATGTCATCGTCGTCTCCCTGGGCGTGGACACCTTCAAGGACGACCCGATCTCTCAGTTCAAGCTCGACAGCCCGGATTACCTGGCGATGGGCAAACGCATCGCGGCGCTCGGCAAACCGACGCTGTTCGTGATGGAGGGTGGTTATGCGGTGACCGAAATCGGCATCAACGCGGTGAACGTTCTCGAAGGTTTTCAAAGCGCCCAATGAMLTIYSDDHHLHHGRCELMDGQLMPCFEMPSRADHVLERVKARALGPVEAPRDFGLGPIQRIHSPQYLEFFESAWDRWSEFNRDGDLLPYTWPARTLRTVIPTSLHGQLGYYSFDGGAPITAGTWQAAYSAAQVALTAQAEIQRGARSAFALCRPPGHHAASDLMGGYCYLNNAAIAAQAFLDQGHRKVAILDVDYHHGNGTQSIFYQRSDVLFASIHGHPEAEFPFFLGYADERGEGAGTGFNFNYPLPAGSGWDSWSAALEQACGEVLDYDADVIVVSLGVDTFKDDPISQFKLDSPDYLAMGKRIAALGKPTLFVMEGGYAVTEIGINAVNVLEGFQSAQNANANANANA
D1-35_044851101spuD_2COG0687Putrescine-binding periplasmic protein SpuDATGAAAAGACTCAAGCGTCTGATGGCTCCAGCCCTCTGCGCCACGCTGCTGTGCGGCGCGGTCCAGGCCGAGGAGCGCACCCTGCGTGTCTACAACTGGTTCGACTACATCACGCCCAAGGCCCTGGAAGACTTCAAGGCGCAGCACAGCCAGGTCAAACTGGTCTACGACATCTTCGACACCAACGAAGCCCTGGAGGCCAAGCTGCTCACCGGTAACGCCGGCTACGACGTGGTGGTGCCGTCCAATGTGTTCCTGGCCAAGCAGATCGAGGCCGGCGTATTTCAGCCTCTGGACCGCAGCAAATTGCCGAACTGGAACCACCTCGATCCCAAACTGATGAAGCTGATCGAAGCCAACGATCCGGGCAACAAATTTGCGGTGCCCTATATGTACGGCACCATCCTGATCGGTTTCAACCCGGCCAAGATCAAGGCCGCGCTGGGCGACAATGCGCCGGTGGACAGTTGGGACCTGATCTTCAAGGAAGAAAACATCAGCAAGCTCAAGCAGTGCGGCGTGGCCCTGCTCGATTCGCCTTCGGAAATCCTGCCCTTGGCCCTGCAGCACCTGGGCCTGGATCCCAACAGCAAGAAACCGGCGGACTATGCCAAGGCCGAAGCGCTGCTGATGAAGATCCGCCCGCATATCACGTATTTTCACTCATCCAAATACATGGCCGACATCGCCAACGGCGACATCTGCGTAGCGGTCGGCTACTCCGGCAGCTTCTCCCAGGCCGCCAACCGCGCCAAGGAGGCCAAGAACGGCGTGACCGTGGACATGCGCCTGCCCAAGGAAGGCGCGCCGATCTGGTTCGACATGCTGGCCATTCCCAAGGGCGCGAAGAACCCGGACGACGCCTACGCCTTCATCGACTATCTGTTGCAGCCGAAGGTGATCGCGCCCGTCAGTGACTTTGTCGGCTACCCGAACCCGAACAAGGACGCCACCGACATGGTCGATCCGGCAATCCGCAACAATCCCAACCTGTATCCGACCGAGGCGGCAATGGCAACGCTGTACACGTTGCAACCCTTGCCGAGGGATGCCGAGCGGGCGCGGACGAGGGCCTGGACGAGGATAAAGTCAGGCCAGTAAMKRLKRLMAPALCATLLCGAVQAEERTLRVYNWFDYITPKALEDFKAQHSQVKLVYDIFDTNEALEAKLLTGNAGYDVVVPSNVFLAKQIEAGVFQPLDRSKLPNWNHLDPKLMKLIEANDPGNKFAVPYMYGTILIGFNPAKIKAALGDNAPVDSWDLIFKEENISKLKQCGVALLDSPSEILPLALQHLGLDPNSKKPADYAKAEALLMKIRPHITYFHSSKYMADIANGDICVAVGYSGSFSQAANRAKEAKNGVTVDMRLPKEGAPIWFDMLAIPKGAKNPDDAYAFIDYLLQPKVIAPVSDFVGYPNPNKDATDMVDPAIRNNPNLYPTEAAMATLYTLQPLPRDAERARTRAWTRIKSGQPGPT0007805_981DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007805-potF-K11073NANA
D1-35_044864608hypothetical proteinATGACACAACCTCCATCCAGCAATCCCGCTTCTGAGATCGATCTCCAAAGAGCCGTATTCAGTCAACTACTCATGGGCCCCTCCTATATAGAGGTAGCCGCCGTCCTTCTACGCGATGCTCTAAAAAAGCAATATCCGACGCTGGACCTTGATCCGAACACAACGGTAATCGGCGAACCGGCGTGGGACATCATTGATGGCGAAATCGTGGAGCTTCCCACACGCTATGAAACACTCAGCGATAGGTTGGCGGAGCAGGTCATCAATAGCGATCCGGTGTTGCTGATCGATGGCTTGCATTTCCTCAGTCGACTACCGCTGAGCAGGCCCGATGTGCATTTACCGGTCCGCATCGAGCAGATCGGGTGTCTTATCAATGAATTGACACCGGCCATCTTTGCGGCGGGCCAGGAACAGCAGTTGAAATTCTGGAACGCGTTATCCGACAGTTCCGGCCCGCGCTGGCACTATTTGTCCGAAACCCTGCAAAACATCTGGAACGTCACAGAAGTCAACGGCTGGACTGAGACTGAATGCGACATGGCCAGAGAACTGTTCCTTCACCCCACCTCGCAGGATCGCGAAAATAACAGCCGTTATGGGGCCCAGGCATACCTGATCGATATCAACGCGATTACCGATTATGGAACCGGACGCCACAGGGCAAACGCACTGGTGGTACTGACCGGCACGATTGACGGCGCAGAAGTCATTCTTGCGCATTCAATGCTCAATGGTTATGAAAAGTTTGACTCCCGCTCCGCACTCGAACAATCGCTTGCGGACCATGCCTACCCCAGGCCCGACTATAAGATGCAGTGGCGCTTCTTTGAGCCCTCCGAGAACATTTTTGCTTATGCAGCCTGCGCAATAATTTCGTCGCAGATCGAAATTATCGGCGACCCGGGTATAGCGAAAATGTCGCCCCCTGACGAAACTGAATCGCCGGACGGGAGTCGTTCCGTTGATCTGGAGTGGTTCAAAAACAAGTTACCCGACTGGCTGACGACCGCTTCCGCATCCGACCAGAATATGTTTGCCGAACACCTGAAAAAACTCTCGGAACTGAATGGCTCGCAGGCTGGCAAGACCTACCTGGATGATATCCCCCCCATCAAGAGCTTCGTATTGAGTGCTCTGAAAACACGGATGCAATCACAACACGCCGACGCCTCGACACTGGATCTGGAAACCATTGAAATCCAGATAAGCAACGTTGTCGTCTGGGGTAGTTTTGTCGTCCCCGGAAAGATCGAAACCACTCGATTCAGCCTCGTCGAATTGGCACTGCAAAATCTGATCGCCGTTCCCTTGGGCGATAAAATCGTCCGGTCGCTCGATGGCAAAGAATTGCCTGACTGGATGACGGTTGCTTTCATCGAGAATGTGATCACCACAATCGACATCGGTCGCACTTACCCCCAGTGGGTCAAAAGCAAGTTACTTGACGATCCGCTAGAATCCAAACGCCGCGAACATTTGTACACTTCCCAACTCCGGGTACAGCTCCCCATGCTTGCATTGGAAAGCCAACTCCGTGGACAAGGCGGCATTGATGAACGCGGTTATAGTTATGTCGCGGCACTGATGAACCCCGACGAGGCCGATCGCAAAGTGGACGGACAGCCCATCGTCCTGCGACAACTGGCTTTCGTACCCGAGCTGCAACTGGGCAATACCCAGGACATCGTGGCCAACATGTTTGTAATCGGTCCGCAAGATTCAAATGCCGGGCCTTGCCTGCTCTACCGTCCCCTGCTTGAGCCACAGCTGTGCCAGTACCCGTCATTCAGCAACTTGCTATATGACATCAGGCAAACCGCCTCCCTGCGTCAATCCGTACTCGCCTGGCTGCCCAAGGAAGTGCATAACAGCTACAGCCGGTACATTTTCCCAGGGCCGCTGCCTTCACCCTGGAGCATCGTGGAGTTCGTGACGAACCCTTTGGCGGCGATCTCCAACAGCGGCCCCATCAGCTTGAGCAACGAGACCTTGGGGTCGGATTTCCTGCCCTTGTTATACAAAGCCAACGCCACGGCCCTGGTGGAGCTTGCCGATCGCCAATCGGTCTCCAACAGCGAAAGCCGCTGGGAAAGCTTCAGGCAGGCAGGCTGGGTGATTTTCAACTTGGCACTGCCCTACTTGGGCACTACCGTAGGCAATGCGTTCTGGCTGTGGCAAATCCTTGATGATCTGGAGACATTGTCGCAGAGCGACGAAACGGTTGGCGCCCAAGCCAGATGGCAAGTCATTACCGACTTGCTGTGCAATATCGCACTGGCGACTACTACTTTCAGCCTCGACCGCGCCAGGACAGCCGGGCGCGAACATCCGACAGAAGCTTCTGAACTGGTTCGTGAACTCGAGAGCCTGGCCAAACCAAAACCCGAACTCATTATTGAAAAGCTCGCACCGGTGAAGCAAAAACTCGCGGCCATCGAGCACTATGACACTTTGCGAACCAGCGGCGCCCTGATCAGCCAATCGCGAGAAAGCGCCAGGCTTCTGGAACCCCTGAGTGTCGGAAAACCGCAAAACCCAGGGCAACCCAAGAGCGGGGGCCCGCTCAAAGGGCTTTACGAGCAAGGCGGGAAGCTTTATGTGGAATTGGCAGGTAAATGGTTCCAGGTACTCGCGGATGAAGAACAAGTCGCCATCGTCGATGGGAATGACCACACCCGAGCGGGACCTCTCCTGATGAGTGACACGCAAGGCCAGTGGAACGTTGATACCCGCTTGCGTCTACGCGGAGCAGGATCGGCAAGCATCGTACGAAAGATAAACGCCGAGGCGAGCCGTCGCAACGTTAAAGCGTACGAAGAGCTGAACCGGCTCGAAGTCCGCAGGCTGGAAAACCAGAAATTGCTGGCAATGCATTCGAAGCGGTTGAAGGAAGCCTCGGGCCCGTCCAGGGATGCCAGCCGCGAGGTGTATTTGAGCGCATTGAAGACGCAGCGTGAGAGTTATGACGAAGCGTTGCAGTTGCTGCTTGACTGGCCCATTTCTCAGTCCAGGCCGGACTCTACCCGAACCAGGCTCGGTTACCTCAACGCGCAAATCAATTTCACGTTCGCAGAGATAGACACGCTGGGAGAACGATTTACCCCAGTGATGCAAGCCGCCACGGAAATGATTACCTCCGGGGTCAAGATCCTGGAGCAACAACATGCGAATACAGCCTATAGCTTGCTCCAGCTCGGCAACGAGATGATCGAACGCTTGGACTACATGGAAACTCGCTTTTCCAGGCTCAAGGAGCTGGGCAGAGAGGGATTCGAGTTTGTCCGACAACACCGAAAAATGATGCCTGTTTATAAAAGCGACGATCTTCGGCTGTACCAGTTGGACATGTATCGCCACCTCTGCCTGTCGCTCGACAGTGTTAACACCGTACCTGAAGCCTGGGCGGATATTAACCAGATGGTTGATAACTCCACGGTTGCGTTCCAAAGCCTGCGCGACGCAATTGACGAGCGCAGCGTGATCCGCCTGGATGAGCAAATCAATGCACTCGGCAGCCTGACCGAACAATTCACGGCCATTGAAGACCACGTCAAGTATGTGGCTGATGAATACCGGGAACATGCCCGGTTGGCCCAACTCAACCGACTCAAAAACCAGGTCAGCGCCATGAAGAAAAGGGCCTTGCGCCATTTGGCGCTTGCCCTCGACGAAAGAAGCACCCGGCGCAGTACACCTGCTCCCTACCAGGAACGTCCGCGGCCCAGGAGGAAGTTCATCAGGGCACGCTTCTGGGGTCTTGTGAGCGTCGAACCCCGCCTATCGGAGCTGTATGAAGAAACCGATTGGGCCGACGTGAAAAAACCGTTCTCGGATGAAATCATTGTCACGTTCCACCATAAAAAAACCGGAGAATGGGTACAACACATCAATCCCGACGCGCCGCCACAACCCACCCCAACGCTGACCAGCTGCATTACCAAGGGCCAAGCCCTTATTGATGGATTGCCTGCGTTCAAGGCGCAAGTGGAAGAAAGCAAAAAACAGTCAGATCGTACTCCGGCGGGTGTCGGGATGGTGATCAATGCACACGCTCGCAGGATGGATACAATCAGCGTCGCAATCAAAACGGTGCTCGACCAAGTGCAAAGCGCCGGTACAAACGAAACGACTGAAATTTCTCCAGCGGAAAAAACCCAACGGCGAACAGCTGAGTCCCTGCGGGTAGAACTTGAAAAAGAAACCCTGGCCCTTTATGCGCTGGGATTTGATACCGAGCAGCAAGCCATCAAGCAAAGCCCACCGACCATGAGTAATGTCCTCTGGCTCAAAGAGCGAAACCAGATTGTCATTACAGGAAAGAAGAAACGTCAGAGAATCAAGAGTGCCCGCTATCTGGACAGGTACGAAATCAGGGACCGAACCGACAGGAAAACCCTATGGTTCGCAGATTTCCATTACTCCAGAAACTGGACACCTGAACATGCGTTTCTCAGCGGCCATTTGAAGACCCCTGAACAAGTTGCGTCGGGAAAACCCGTCGTCCCTCCTCAACGGCTTAGCCAAAGCCAATTGATCGATCTTTACCGCAGTGAGATCGACGTGGAACAGGCCAAGGCGGTGTTCTTTCCAGCGGTACGGTCTTAAMTQPPSSNPASEIDLQRAVFSQLLMGPSYIEVAAVLLRDALKKQYPTLDLDPNTTVIGEPAWDIIDGEIVELPTRYETLSDRLAEQVINSDPVLLIDGLHFLSRLPLSRPDVHLPVRIEQIGCLINELTPAIFAAGQEQQLKFWNALSDSSGPRWHYLSETLQNIWNVTEVNGWTETECDMARELFLHPTSQDRENNSRYGAQAYLIDINAITDYGTGRHRANALVVLTGTIDGAEVILAHSMLNGYEKFDSRSALEQSLADHAYPRPDYKMQWRFFEPSENIFAYAACAIISSQIEIIGDPGIAKMSPPDETESPDGSRSVDLEWFKNKLPDWLTTASASDQNMFAEHLKKLSELNGSQAGKTYLDDIPPIKSFVLSALKTRMQSQHADASTLDLETIEIQISNVVVWGSFVVPGKIETTRFSLVELALQNLIAVPLGDKIVRSLDGKELPDWMTVAFIENVITTIDIGRTYPQWVKSKLLDDPLESKRREHLYTSQLRVQLPMLALESQLRGQGGIDERGYSYVAALMNPDEADRKVDGQPIVLRQLAFVPELQLGNTQDIVANMFVIGPQDSNAGPCLLYRPLLEPQLCQYPSFSNLLYDIRQTASLRQSVLAWLPKEVHNSYSRYIFPGPLPSPWSIVEFVTNPLAAISNSGPISLSNETLGSDFLPLLYKANATALVELADRQSVSNSESRWESFRQAGWVIFNLALPYLGTTVGNAFWLWQILDDLETLSQSDETVGAQARWQVITDLLCNIALATTTFSLDRARTAGREHPTEASELVRELESLAKPKPELIIEKLAPVKQKLAAIEHYDTLRTSGALISQSRESARLLEPLSVGKPQNPGQPKSGGPLKGLYEQGGKLYVELAGKWFQVLADEEQVAIVDGNDHTRAGPLLMSDTQGQWNVDTRLRLRGAGSASIVRKINAEASRRNVKAYEELNRLEVRRLENQKLLAMHSKRLKEASGPSRDASREVYLSALKTQRESYDEALQLLLDWPISQSRPDSTRTRLGYLNAQINFTFAEIDTLGERFTPVMQAATEMITSGVKILEQQHANTAYSLLQLGNEMIERLDYMETRFSRLKELGREGFEFVRQHRKMMPVYKSDDLRLYQLDMYRHLCLSLDSVNTVPEAWADINQMVDNSTVAFQSLRDAIDERSVIRLDEQINALGSLTEQFTAIEDHVKYVADEYREHARLAQLNRLKNQVSAMKKRALRHLALALDERSTRRSTPAPYQERPRPRRKFIRARFWGLVSVEPRLSELYEETDWADVKKPFSDEIIVTFHHKKTGEWVQHINPDAPPQPTPTLTSCITKGQALIDGLPAFKAQVEESKKQSDRTPAGVGMVINAHARRMDTISVAIKTVLDQVQSAGTNETTEISPAEKTQRRTAESLRVELEKETLALYALGFDTEQQAIKQSPPTMSNVLWLKERNQIVITGKKKRQRIKSARYLDRYEIRDRTDRKTLWFADFHYSRNWTPEHAFLSGHLKTPEQVASGKPVVPPQRLSQSQLIDLYRSEIDVEQAKAVFFPAVRSNANANANANA
D1-35_044871551gabR_2COG1167HTH-type transcriptional regulatory protein GabRATGCCCGATGCCGTACCGCCATTGTCTTTCAACCCCGCCGGCATCGAGCTGGACCGCCGCCATGGGCTCAGTCGCCAGCTCTATCAGGCCTTGCGTGGGCGAGTACTGGACGGACGCCTGGCCAGCGGCACACGATTGCCGGCCAGCCGCGACCTGGCGGCGGCGTTGTCGATTTCCCGCAACAGCGTGGTACGCGCCTACGACCAGCTGTATGCCGAAGGCTTCATAGAAGGGCGAGTGGGTGACGGCACCTACGTGGCGAAACTTTCACCGCTGGCAATGCCGTCGGGAAAATTATCCACAAAACCATCCACAGGGTTTTCAACAGGCTTACCCACAGCCTTATCCACAGTTCAGCTTGATTCCCCTGTGTTTTCATCCAGCAAAGTTATCCACAGCAACGCGCTCGAACGGGTCGAAAAGCACCATTTGGCCCAGCCCCCGAGCGGACCGCCAAGAGCATTTCGGGTCGGCGTTCCGGCGTTCGATCTGTTTCCTTTCGACGTGTGGGCCAAGCTGAACGCGGCGTTCTGGCGAAAACCGGACCTGCAGCAGTTGTGCTACGGCGATGCCCAAGGCGATGCGCGCCTGCGCGGCCTGGTCGCGGCCTACCTGCGTAGTTCACGGGGTTTGCACTGCTCGGCTGAGCAAATTGTGATCACCAGTGGCGCGCAACAGGCGATCAGCCTTTGTGCACAGTTGCTGGTGGACCCTGGCGACATCGTCGCGGTGGAAAATCCCGGCTATCGCGCCGCGGGGCATGCGTTTGCCGTGGCCGGTGGCGATGTGCGGGGCGTGCCGGTGGACAGCGACGGGCTCGATTGTGCAGCGCTGGCTGCACTGGACCACTGTCGGCTGGCTTACGTGACGCCATCCCATCAATATCCGACCGGAGTAGTCATGAGCCTGGCGCGGCGGCTGGAACTGCTGGCCTGGGCCGGGCGCAACGATGGCTGGATCGTCGAAGACGACTATGACGGCGAGTACCGCTACAGCGGCGCGCCGCTGGCGCCCTTGGCTGCGCTGGATCGTGGAGGCCGTGTCTTGTATGTCGGGACGTTCGGCAAGGTTGCGTTCCCGGCGTTGCGCCTGGGTTACCTGGTGCTGCCGCCCGGCCTGGTCGATGCCTTCGCCCGCCGTCGGGCGGTGGATGTGCGCCATTCTGAAGTCAGCACTCAAGCGGTGATGGCCGAGTTCATGGCCGCTGGACATTTCCAACGGCACATCAGGCGCATGCGTCGGGCCGCTCTGGCCCGCCGCGATGCGCTTCTGGCGGGCTGGCCGGAGGCTGTCGCAGGCGTTGGCGCGATGCCCACCGTGGTCGCCGGGCTGCATGTCACGGTTCCAGTGCAGAGCATCGAGCGCGAGCGTGAACTGATTGCCCAGGCCACTTGCGTCGGCGTCGAAATCAACGGATTGAGCAGTTATTGGTTGCCCGCCACGGCGCCGTCCCAAATCCGGGCAGGCATGGTGCTGGGGTTCGCCGCCGTGCCGTCTGCAGCGATAGACACTGCTCTGGCAAGCTTGGCAAAAGCCTGGGGAATCCGCTGAMPDAVPPLSFNPAGIELDRRHGLSRQLYQALRGRVLDGRLASGTRLPASRDLAAALSISRNSVVRAYDQLYAEGFIEGRVGDGTYVAKLSPLAMPSGKLSTKPSTGFSTGLPTALSTVQLDSPVFSSSKVIHSNALERVEKHHLAQPPSGPPRAFRVGVPAFDLFPFDVWAKLNAAFWRKPDLQQLCYGDAQGDARLRGLVAAYLRSSRGLHCSAEQIVITSGAQQAISLCAQLLVDPGDIVAVENPGYRAAGHAFAVAGGDVRGVPVDSDGLDCAALAALDHCRLAYVTPSHQYPTGVVMSLARRLELLAWAGRNDGWIVEDDYDGEYRYSGAPLAPLAALDRGGRVLYVGTFGKVAFPALRLGYLVLPPGLVDAFARRRAVDVRHSEVSTQAVMAEFMAAGHFQRHIRRMRRAALARRDALLAGWPEAVAGVGAMPTVVAGLHVTVPVQSIERERELIAQATCVGVEINGLSSYWLPATAPSQIRAGMVLGFAAVPSAAIDTALASLAKAWGIRPGPT0016790_353DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0016790-mocR-K00375NANA
D1-35_04488642paiBCOG2808Protease synthase and sporulation protein PAI 2ATGTACAACCCAAAAGCCTTTGCTGTGGAAGACGTGCCTCACTTGCATCGCATGATGGATGACTGTCGCCTCGCCGTATTGGTTACCCACGGCGAACACGGCTTGCAGGCCAGCCACCTGCCGCTGTTGCTGGACACACGACAGGGACCGAACGGAACCCTCCATGGGCACATGGCTCGCGCCAATCCGCAGTGGCGTGACCTGGAAGCCGGTGCCGAAGCGCTGGTGGTATTTGCAGGCGTCGACGCTTACGTCAGCCCGGGTTTCTATCCGGGCAAGGCCGAGCACGGCAAGGTCGTGCCCACCTGGAATTACCTCGCCGTCCACGCCTATGGCAACGCCGAGGTGTTCGGCGATCCTCAACGGCTGCGCAACCTGGTCGGCGAGCTCACCCACCGCCATGAAAGCGGTCGGGCCCAGCCATGGAAAATCGACGACGCCCCGGCGGAATATATCGACAGCATGCTCAAGGCCATCGTCGGCTTCGCGCTGCCCATCCAGCGTCTGGAAGGCAAGCGCAAGCTCAGCCAGAACCGCAGCCCCGCGGATGCCGCCGGGGTTCGCAACGGGCTCGCCATGAGCCCCGACCCGCAGGGCCAGGCACTCGCACGCCTGATGCCTGAACAATCGCCTCAGGAGTGAMYNPKAFAVEDVPHLHRMMDDCRLAVLVTHGEHGLQASHLPLLLDTRQGPNGTLHGHMARANPQWRDLEAGAEALVVFAGVDAYVSPGFYPGKAEHGKVVPTWNYLAVHAYGNAEVFGDPQRLRNLVGELTHRHESGRAQPWKIDDAPAEYIDSMLKAIVGFALPIQRLEGKRKLSQNRSPADAAGVRNGLAMSPDPQGQALARLMPEQSPQEPGPT0014760_523DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-ENVELOPE_REMODELLING_REGULATIONCE-ENVELOPE_REMODELLING_REGULATION_FACTOR,PGPT0014760-paiB|yumE-K07734NANA
D1-35_04489447hypothetical proteinATGAGCCAGCTCGAAATCCGCCTTGTCACCGCCGCCGACCACGCTGCCTGGCTACCGCTATGGCAGGCCTACCTGCGGTTCTACAACACCGAACTGCCAGACGCGGTGAGCCAGAGCACCTGGCAACGCTTGCTCGACGACCGTGAGCCCACCCATGGCGCGCTCGCCTGGGATGGCGACACGGCGGTGGGCCTGGTGCATTTCATCTATCACCGTTCCAACTGGAGCATCGAGAACTCCTGCTATCTTCAGGATCTGCTGGTGGCAGAACACTGCCGAGGCAAGGGCGCAGGTCGCCAACTCATCGAATTTGTCTACGCCACCGCCAAGGCCGACGGATGTTGCAAAGTGCACTGGCTGACCCACGAGACCAACGCGACCGCGATCCAGCTCTACGAGCGCATCGCCGAACGCCCTGGCTACATTCAATTTCGCAAAGCCCTCTAAMSQLEIRLVTAADHAAWLPLWQAYLRFYNTELPDAVSQSTWQRLLDDREPTHGALAWDGDTAVGLVHFIYHRSNWSIENSCYLQDLLVAEHCRGKGAGRQLIEFVYATAKADGCCKVHWLTHETNATAIQLYERIAERPGYIQFRKALNANANANANA
D1-35_04490672hypothetical proteinATGTCGACTTCGCTCGCTGATTGGAAAGGTATCCCGGCGCCGTTTACGCGCTTGCTCGAAGGACGCTTCATCCGCCTGGAAAAACTCGACCCGGCGCGTCACGCCGACGGATTGTGGCAAGCCCTCGAAGGTCCCGGCGCCGACCCGAAGCTCTGGGACTACCTGCCCTACGGCCCGTTCAAGGAGCGCAGCGGGTTCGATGCCTGGCTGAACAACCATGCGGTCAACGTCGATCCATATTTTTTCAGCGTGATCGACCGCGCCAGTGGCGAAGTGCAAGGCATCCTCAGCCTGATGTCCATCGTGCCGGCCCAAGGCCGTATCGAGATTGGCCACGTCACCTTCGGCGCGCCGATGCAGCGCTCGCCGAAAAGCACCGAGGCGGTGTACCTGCTGGCGAAAGAGTGTTTCGCCCTGGGCTATCGACGCCTGGAATGGAAATGCAACAACGCCAACGCCCGTTCCCGGTATGCCGCCGAGCGGCTGGGGTTCACGTTTGAAGGCGTATTCCGCCAACATATGGTGGTCAAGGGGCAGAACCGCGACACCGCATGGTATTCGATGCTGGACTCGGAATGGCCGGTGATCGGCGCAGCCTTCGAGCGCTGGTTGAGTGAGGAAAACCAGAGCGCGGATGGCCAGGTGCGCAGTCTCGCACAGTGCCGAGCCTGAMSTSLADWKGIPAPFTRLLEGRFIRLEKLDPARHADGLWQALEGPGADPKLWDYLPYGPFKERSGFDAWLNNHAVNVDPYFFSVIDRASGEVQGILSLMSIVPAQGRIEIGHVTFGAPMQRSPKSTEAVYLLAKECFALGYRRLEWKCNNANARSRYAAERLGFTFEGVFRQHMVVKGQNRDTAWYSMLDSEWPVIGAAFERWLSEENQSADGQVRSLAQCRANANANANANA
D1-35_04491900yitJCOG0646Bifunctional homocysteine S-methyltransferase/5,10-methylenetetrahydrofolate reductaseATGGCCGCAGCAAGGACAACTATTCTCGACGGCGGCATGGGCCGTGAGCTACAACGCCGTGGTGCGCCGTTTCGACAGCCCGAGTGGTCGGCCCTGGCCCTGAGCGAAGCGCCCCAGGCTGTGGAGGCGGTGCATGCGGCTTATATCGCCAGCGGCGCCGATGTGATTACCAGCAACAGCTACGCCGTGGTGCCCTTTCATATCGGCGAAGCGCGCTTTGCCGAGGAAGGCCAGGCGTTGGCGGCATTGGCGGGGGAATTGGCCAGGCGGGCGGTGCAGGCTTCAGGCAAAGCGGTGCGGGTGGCCGGATCGCTCCCTCCGCTGTTCGGTTCCTACCGTCCCGATCTGTTCGACGCCTCCCGCGCCAGCGAGCTGCTGGCGCCATTGGTTGCGGGCCTGACACCCCATGTCGACCTGTGGCTGGCCGAGACCCAGAGTTCGATCGTCGAGGCGCGAGCCATTCACGCCGGACTGCCGAAGGACGGCAAGCCGTTCTGGCTGTCGTTTACCTTGAAAGACGAAGACACCGATGAAGTGCCGCGCCTGCGCTCCGGCGAGCCGGTGGCGGACGCCGCGGCAGTGGCGGCGGAGCTGGGGGTCGAGACGCTGCTGTTCAATTGCAGCCAGCCCGAGGTGATCGGCGCTGCGATCGACGCGGCGCGCGAAACCTTCGAGCGCCTGGGCGTGAAAATCCACATCGGTGCCTACGCCAACGCCTTCCCACCGCAGCCCAAGGAAGCGACAGCCAATGACGGGTTGGACCCGCTGCGCGAAGACCTCGATCCGCCGGGCTATCTGCGGTGGGCGGCGGACTGGCGCAAGCGGGGGGCCAGTCACTTGGGCGGCTGTTGCGGCATCGGGCCGGAGCACATTGCGGTGTTGGCACAGCAACTGCGCTGAMAAARTTILDGGMGRELQRRGAPFRQPEWSALALSEAPQAVEAVHAAYIASGADVITSNSYAVVPFHIGEARFAEEGQALAALAGELARRAVQASGKAVRVAGSLPPLFGSYRPDLFDASRASELLAPLVAGLTPHVDLWLAETQSSIVEARAIHAGLPKDGKPFWLSFTLKDEDTDEVPRLRSGEPVADAAAVAAELGVETLLFNCSQPEVIGAAIDAARETFERLGVKIHIGAYANAFPPQPKEATANDGLDPLREDLDPPGYLRWAADWRKRGASHLGGCCGIGPEHIAVLAQQLRNANANANANA
D1-35_04492822fliY_3COG0834L-cystine-binding protein FliYGTGAAATTACCTTTACCGCTTGCCCTGGGCTTGACGCTGCTGGCCGCTTCCTCATCGATCCTTGCCGGCACCACGCTGGATCGTATCGAGGAGAAAAAAGAACTGGTCGGCGTGTTGATGGAAAGCTACCCGCCCTTCTCTTTTCTCAATGACCAGAACCAGCTCGACGGTTTCGACGTGGACGTCGCCAAGGCCGTCGCGCAAAAGCTTGGGGTCAAGCTGCGCTTGGAAACGCCCTCGTGGGATGTGATCGCGGCCGGCCACTGGAGTGGCCGCTACGACATCTGCATTTGCTCGATGACACCGAGCAAGGCCCGCGCCGAAGTGTTCGATTTTCCGGTGCGGTACTACGCCTCGCCAGCGGTGATCGTGGTCAACGCCAAGGACGACAGCATCCATGGCGCCAAGGACCTGAGCGGCAAGAAAGTCGGCCTCACCAGCGCCTCCAGCTACGAAAGCTACCTGAACAAGAACCTGGTGATCGAAGGCGCCGAGGATACCCAGCTGAGCTACCCGTTCGAGGACGTGCAAATCGCGCCATACGATACCGACAACGTGGCGTTCCAGGACCTGGGCCTCGGCGCCGGGGTTCGGCTGGATGCGGTGCTGACCAACCTGGTGACCGCGCAGCCACGCCTGACCGAAGACAAGCGCTTCAAACTGGCGGGCGAGCCACTGTATTCAGAGCCTAATTCGGTTGCCATCGAGAAAGGCGACGCCGAGTGGAACAGCAAGGTGCGTGAAGTCTTTGCCCAACTGAAGCAGGACGGCACCCTGAGCAAGCTCTCGCAAAAATGGATCGGTGCCGACATCAGCCAATGAMKLPLPLALGLTLLAASSSILAGTTLDRIEEKKELVGVLMESYPPFSFLNDQNQLDGFDVDVAKAVAQKLGVKLRLETPSWDVIAAGHWSGRYDICICSMTPSKARAEVFDFPVRYYASPAVIVVNAKDDSIHGAKDLSGKKVGLTSASSYESYLNKNLVIEGAEDTQLSYPFEDVQIAPYDTDNVAFQDLGLGAGVRLDAVLTNLVTAQPRLTEDKRFKLAGEPLYSEPNSVAIEKGDAEWNSKVREVFAQLKQDGTLSKLSQKWIGADISQPGPT0020800_8200DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-35_04493837hypothetical proteinATGAGTTCTTTTCCGCCCCCTATCCAGCCGCCTCCACCGGTGGCTGAGTCGCGCCTGCACAAAATCTTCGGTTTTCGCACACGGCTGTATCTGACCTGGGCCGCGATGCTGGTGCTGTTCGCCAGTTTTTTCCTGAGTTTCGACCTGAAGTTCTCGATCATCCTCGACAAACTGCCGAACCTGCTGGGCGTGCACCTGGCGCCCAACGGCTTTTTGCAGGGCGCGGTGCTGACACTGTTCCTGTGCCTGTGCTCCATCGTCGCCTCGTCACTGCTGGGTTTCATCGCCGCGCTGGCACGCCTGTCCAGCAGCGCGGTGGCGTTCGGCATCGCCAGCTTCTATGCGTCGTTCTTTCGTGGCACGCCGCTGTTGATCCAGATCCTGCTGATCTACCTGGGCCTGCCGCAACTGGGCGTGGTCCCGGGCGCCATCGCTGCGGGAATCATCGCCCTGTCACTCAACTACGGCGCCTACTTGAGCGAAATCTTCCGTGCCGGGATTCTCGGCGTGCCTCACGGCCAACGGGAAGCCTCCCTCGCCCTGGGCATGGGCGAAACCGTAATCTTCTGGCGCGTTACCCTGCCCCAGGCCATGCGTACCATCATCCCGCCGACCACCAACCAGTTCATCTCGATGCTCAAGGATTCTTCGCTGATCTCGGTGATGGGGGTCTGGGAGGTGATGTTTCTGGCGCAGTCCTATGGTCGTTCCAGCTATCGGTATATGGAGATGCTGACTACGGCGGCGGTTATTTACTGGCTGATGTCCATTGCGTTGGAGCTGATTCAGGCGCGGATGGAGCGGCATTATGGGAAGGCTTATCTGCATAATCGCTGAMSSFPPPIQPPPPVAESRLHKIFGFRTRLYLTWAAMLVLFASFFLSFDLKFSIILDKLPNLLGVHLAPNGFLQGAVLTLFLCLCSIVASSLLGFIAALARLSSSAVAFGIASFYASFFRGTPLLIQILLIYLGLPQLGVVPGAIAAGIIALSLNYGAYLSEIFRAGILGVPHGQREASLALGMGETVIFWRVTLPQAMRTIIPPTTNQFISMLKDSSLISVMGVWEVMFLAQSYGRSSYRYMEMLTTAAVIYWLMSIALELIQARMERHYGKAYLHNRPGPT0020795_2585DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
D1-35_04495321hypothetical proteinATGACCAAGTATCACCCCCTTCAAGCCAATACCAGCGGCGGCCCCACACTGTTTATCGACACAGAAGCTGGGGCCTCCGATCTTCTGGAAACCGCTGCGCACCGCATCAAAGCCGCTCGCGACTTACTTAACAGTGTTTCCTGTCTCTGCATGAAAAACGCCGAGGGTTATGACCTGGAGCATTTCGCCAACGCCGCACATCTGTTGTTACAGGACGGATGTGATGCATTGGAAGTGTTGGGGTGGAGTATCGGTGGAAGTGATATCCAATCCTCACCTGCTAGCGATTCTGCTGTACATCAGGCAGATCTTCCCGTCTAAMTKYHPLQANTSGGPTLFIDTEAGASDLLETAAHRIKAARDLLNSVSCLCMKNAEGYDLEHFANAAHLLLQDGCDALEVLGWSIGGSDIQSSPASDSAVHQADLPVNANANANANA
D1-35_044972136hypothetical proteinATGCCTACCAAACATCTATTCCTGCCCCAACATCTCGCACTGGCGATCGCCTTGGCACTGGGTTGTGTCGAGTCTTCGATAGCTCAGTCAGTTGCCGGGGAAACCCGCCCCTTGGAAACAACAACCGAGATGCAGGCTCGTCTCAAGGCGTTCATGGCACCAACAGCGGATACGAAACGCGACAACGTGACGACCGTTCGCGAAGACGCCTTATTGAAGGACGACAGCAACGATCTGGTGATGGTCAGCAAGCAAGGCAGACTCTTCGGGCTCACCGACGGCGGCGGCGGAGCCAACGTCTTGCAGCTGGATACCCAGGGAAGCGAATTAGGCGAGATACGCAATTTCCAGGATCTGTATTTGAAGCAAGGCGAGTGGTCGAACGGCGGTCGTATCGACGCAAACAGCCTGGTCGACTCGAAGGCCAAATTGCTGAACAGCGGCCACATCAACGGCGCGGTGCACGTTCTTGGCGAACTCACCAACCAAGGCACTGTCACCGGGCCTGTCTTCGTAGGAAAAAAGGCCCGCTTCAGCGGCAGCGGGACGGTCGATGCGCTGGACGTGGCGGGCACCCTGGAAGTCGGCCCCGCAATGGGCGCCCCTTCGGTGACCAATGATCTGAAGTTTTCCAAGAGCGCGACGCTGGTTTACGCAATCGACGCCGAGAAAGGCAGCAGCACAATCAAGGTTGGCGGCACCGCTACGTTGGGCAATGCGACTCTGAAAATCGCTTCCGTACCGGGAGAGTTTATCGACACAAACAGACGCATCGTGATCGAGGCGGAGAAGATTGAAGGGACATTCGGCAAGGTCGTCGATGAACTCGCCTTTTTGACGGCTACACCTGACTACACGCTGGAAAACCAGGTAGGGCTTACCTTCAAGCGCAACGGTGTCCCACTGGGAGAGGCAGCTTCCTCCGCCAACGCGCTCGAATTCGTGGACGCCATTCAACAGCAGCCGGTCAGCCCTGCGCAGCCCGAACCCGGCATCGCGGCACCGGTTGCGCACTCGCCTGCCGTCGAGCCGCAACCCAGTCATCCAACGTCAGAGCCCGCCGCACCACCCGCGGTTGTAAGCGCCGAGGCCAAGCCCGCAGCCAAGCCAGAACTGGTCAAACCTGCCCCCAAACCCAACACTGCCATCAACGCCCTGCTTGGCACCAACATGGCCACGGCCGCCGACGCCATCGACCAACTGAGCGGTCATGACACGGCAAACCTTGGCAACGCCACCCTTAGCAGCGTCGCGCCAGTCAGCAGCGGCATGCTCTGGGCCATGGGCCGGCGAAACCCGGCGAGTGGGCACGGCAACGGCCAGGTCTGGGTCCAGGCCATCGGCAACAGTGGCAGCCTCGCCAAGCAAGCGGGCGGCGTTGCCATGAAGCATTCGACACAAGGTTTGATGCTGGGAACCGACTGGGCTGTCAGCTCCGATTGGCGGCTGGGCCTTATCGGCAGCACAACCCGGACGCGGCTCGACGGCGGTCAGTTCGACGGAGCTCTCGACAGTTGGCTAGTGGGCGCGTATGCCTTGCGCCAGGACGGGCCGCTGGCGCTGCGCCTGGGCGTTGTCCATGGCAATCATGACGGCAGTACCAAGCGCCACGTTGCCTTCAATGGGTTCAGGGATCGTCTGAAAGGTCGCTACGATGCGACGACACAGCAGGTCTTCGGGCAACTTGGCTACCAGCTGGATATCGGTCGTTTCGAACTCGAGCCCTATGCCCAACTGGGTTACCAACGTTATCAACGTGACGCCTTCACGGAGAAAGGCGGCGATGCGGCATTGCAGTACAACGGCCAGGCCCAGGAACACTTCAGCAGCGACCTGGGCCTGCGCCTCGCCCGTCCCCTCCTGCTTGATCGCGGCATGCGCGTGACGCCGCGTCTGGACATCGGCTGGAAGCACTTGTATGGGGACGTCCAGGGTAGCTCCCATCAGCGCCTGGTCAGGGGAAGCAGCACTTATCACATCAAAGGTGGCGAACTGGACCGCGACAGCCTGCTTCTGCAGGCAGGGCTGGACCTGGCGATTTCGCCACGTCATACGCTGGGGTTGAGCTACAGCGGCGAAACAGGGCAGGACAACCGCAACGGTGCGCTGGCGGGACAGTGGCGGATGACGTTCTGAMPTKHLFLPQHLALAIALALGCVESSIAQSVAGETRPLETTTEMQARLKAFMAPTADTKRDNVTTVREDALLKDDSNDLVMVSKQGRLFGLTDGGGGANVLQLDTQGSELGEIRNFQDLYLKQGEWSNGGRIDANSLVDSKAKLLNSGHINGAVHVLGELTNQGTVTGPVFVGKKARFSGSGTVDALDVAGTLEVGPAMGAPSVTNDLKFSKSATLVYAIDAEKGSSTIKVGGTATLGNATLKIASVPGEFIDTNRRIVIEAEKIEGTFGKVVDELAFLTATPDYTLENQVGLTFKRNGVPLGEAASSANALEFVDAIQQQPVSPAQPEPGIAAPVAHSPAVEPQPSHPTSEPAAPPAVVSAEAKPAAKPELVKPAPKPNTAINALLGTNMATAADAIDQLSGHDTANLGNATLSSVAPVSSGMLWAMGRRNPASGHGNGQVWVQAIGNSGSLAKQAGGVAMKHSTQGLMLGTDWAVSSDWRLGLIGSTTRTRLDGGQFDGALDSWLVGAYALRQDGPLALRLGVVHGNHDGSTKRHVAFNGFRDRLKGRYDATTQQVFGQLGYQLDIGRFELEPYAQLGYQRYQRDAFTEKGGDAALQYNGQAQEHFSSDLGLRLARPLLLDRGMRVTPRLDIGWKHLYGDVQGSSHQRLVRGSSTYHIKGGELDRDSLLLQAGLDLAISPRHTLGLSYSGETGQDNRNGALAGQWRMTFPGPT0030315_491DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_V_SECRETION_SYSTEMSCE-T5a_AUTOTRANSPORTER_SECRETION,PGPT0030315-ssp|pspB|pspA|ssph1|ssph2-K12685NANA
D1-35_044981809oadACOG0511Oxaloacetate decarboxylase alpha chainATGTCCAAGAAGATCCACGTTACCGACACAATCCTGCGCGACGCCCACCAATCGCTGCTCGCCACCCGCATGCGTACCGAAGACATGCTGCCGATCTGCGACAAGCTCGACAAAGTCGGCTACTGGTCGCTGGAAGTCTGGGGCGGCGCCACCTTCGACGCCTGCGTGCGCTTCCTGAAAGAAGATCCGTGGGAGCGTCTGCGCCAACTGCGCGCAGCGCTGCCCAACACGCGCTTGCAGATGCTGCTGCGCGGCCAGAACCTGCTCGGCTATCGCCATTACAGCGATGATGTGGTCAAGGCGTTTGTCGCCAAGGCCGCGGTCAACGGTATTGATGTGTTCCGTATTTTCGATGCGATGAACGACGTGCGTAACCTGCGCGTCGCCATCGAAGCAGTGAAGGCTGCCGGCAAGCATGCCCAAGGCACTATCGCCTACACCACCAGCCCAGTGCACACCATCGAAGCCTTCGTGGCGCAGGCCAAGCAGATGGAGGCCATGGGGTGCGACTCGGTGGCGATCAAGGACATGGCCGGCCTGCTGACTCCTTATGCCACTGGCGAACTGGTCAAGGCGCTGAAGGCCGAGCAATCCTTGCCGGTATTCATCCACTCCCATGACACCGCCGGCCTCGCCGCGATGTGCCAGCTCAAGGCTGTCGAGAACGGCGCCGACCATATCGACACGGCGATCTCCAGCTTCGCCTGGGGTACCAGCCATCCGGGTACCGAATCGATGGTAGCCGCCCTCAAGGGCAGCGAGTTCGACACCGGCCTGGACCTGGAACTGCTGCAGGAAATCGGTCTGTATTTCTACGCCGTGCGCAAGAAGTACCACCAGTTCGAAAGCGAATTCACCGCGGTGGATACCCGCGTCCAGGTCAACCAGGTACCAGGCGGAATGATTTCCAACCTGGCCAACCAGTTGAAAGAGCAGGGCGCACTGAACCGCATGAACGAAGTACTGGCGGAAATCCCGCGGGTGCGCGAAGACCTCGGCTTCCCGCCGCTGGTAACCCCGACCTCGCAGATCGTCGGCACCCAGGCATTCTTCAACGTGTTGGCCGGTGAGCGCTACAAGACCATCACCAACGAGGTGAAGCTCTATCTGCAGGGCGGCTACGGCAAGGCGCCAGGTGCGGTGAACGAGAAGCTGCGCCGCCAGGCCATCGGCAGTGAAGACGTGATTGACGTCCGTCCCGCCGACCTGCTCAAGCCGGAGATGACCCGGCTGCGTGGCGAAATCGGCGCCTTGGCCAAATCCGAGGAAGACGTGCTGACCTATGCGATGTTCCCGGACATCGGTCGCAAGTTTCTCGAGGAGCGCGAAGCCGGCACCTTGACCCCGGAAGTGCTGTTGCCTATCCCCGAAGCGGGCAGTGTGAGCTCTGCAGGCGGCGAGGGTGTGCCGACCGAGTTCGTCATTGATGTCCACGGCGAAACCTACCGCGTCGACATTACCGGCGTGGGCGTCAAGGCCGAGGGCAAGCGTCATTTCTATCTGTCCATCGACGGCATGCCGGAAGAGGTCGTGTTCGAACCGCTCAACGAATTTGTCGGCGGCGGCAGCAGCAAGCGCAAGCAAGCCACTGCGCCAGGCCACGTCAGCACCACCATGCCGGGCAACATCGTCGATGTGCTGGTCAAGGAGGGCGATGTGGTGAAAGCCGGCCAAGCCGTGTTGATTACCGAAGCCATGAAAATGGAGACCGAAGTCCAGGCGGCCATCCCGGGCAAGGTCACGGCCATTCATGTCGCCAAGGGCGACCGGGTCAATCCGGGCGAGATCCTGGTCGAAATCGAAGGCTGAMSKKIHVTDTILRDAHQSLLATRMRTEDMLPICDKLDKVGYWSLEVWGGATFDACVRFLKEDPWERLRQLRAALPNTRLQMLLRGQNLLGYRHYSDDVVKAFVAKAAVNGIDVFRIFDAMNDVRNLRVAIEAVKAAGKHAQGTIAYTTSPVHTIEAFVAQAKQMEAMGCDSVAIKDMAGLLTPYATGELVKALKAEQSLPVFIHSHDTAGLAAMCQLKAVENGADHIDTAISSFAWGTSHPGTESMVAALKGSEFDTGLDLELLQEIGLYFYAVRKKYHQFESEFTAVDTRVQVNQVPGGMISNLANQLKEQGALNRMNEVLAEIPRVREDLGFPPLVTPTSQIVGTQAFFNVLAGERYKTITNEVKLYLQGGYGKAPGAVNEKLRRQAIGSEDVIDVRPADLLKPEMTRLRGEIGALAKSEEDVLTYAMFPDIGRKFLEEREAGTLTPEVLLPIPEAGSVSSAGGEGVPTEFVIDVHGETYRVDITGVGVKAEGKRHFYLSIDGMPEEVVFEPLNEFVGGGSSKRKQATAPGHVSTTMPGNIVDVLVKEGDVVKAGQAVLITEAMKMETEVQAAIPGKVTAIHVAKGDRVNPGEILVEIEGPGPT0001430_254DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001430-pycB-K01960NANA
D1-35_044991416cfiBCOG04392-oxoglutarate carboxylase small subunitTTGATAACAAAGATCCTGATCGCCAACCGCGGTGAGATTGCCGTCCGAATCGTGCGCGCCTGCGCCGAAATGGGCATTCGCTCGGTCGCGGTCTATTCCGACGCCGACCGCCATGCCTTGCATGTCAAGCGTGCGGACGAGGCCCACAGCATCGGCGCCGATCCGCTGGCCGGCTACCTCAATCCGCGCAAACTGGTGAACCTGGCGGTGGAAACCGGCTGCGACGCGTTGCACCCCGGCTACGGCTTCCTCTCGGAAAACGCCGAACTGGCGGACATCTGCGCCGAGCGCGGGATCAAATTCATTGGCCCGTCGGCGGAAGTCATTCGCCGCATGGGTGACAAGACCGAAGCGCGCCGCAGCATGATCAAGGCCGGCGTGCCGGTGACTCCAGGTACCGAAGGCAACGTGGCGGGTATCGAAGAGGCCCTGACCGAAGGTGATCGGATCGGTTACCCGGTGATGCTCAAGGCCACGTCCGGCGGTGGTGGCCGTGGTATCCGTCGCTGCAATAGTCGCGAAGAGCTCGAGCAGGCCTTCCCGCGAGTCATCTCCGAAGCCACCAAGGCGTTCGGTTCGGCGGAAGTGTTCCTGGAAAAATGCATCGTCAATCCCAAGCACATTGAAGCGCAGATTCTCGGTGACAGTTTCGGCAACGTGGTGCATCTGTTCGAACGGGATTGCTCGATCCAGCGCCGTAACCAGAAGCTGATCGAAATCGCCCCGAGTCCGCAACTGACGCCTGAACAGCGCGCCTACATCGGCGACCTCTCAGTGCGCGCCGCCAAGGCCGTGGGCTACGAAAATGCCGGCACCGTGGAGTTCCTGCTCGCCGAGGGCGAGGTGTACTTCATGGAGATGAACACCCGGGTGCAGGTGGAACACACCATCACCGAAGAAATCACCGGTATCGACATCGTTCGCGAGCAGATCCGCATCGCCTCCGGGCTGCCATTGTCGGTCAAGCAGGAAGACATCCAGCACCGGGGCTTTGCGTTGCAGTTCCGCATCAACGCCGAAGACCCGAAAAACAACTTCCTGCCCAGCTTCGGCAAGATCACCCGCTATTACGCACCGGGTGGCCCGGGGGTGCGCACCGACACAGCAATCTATACCGGCTACACCATTCCGCCGTTCTACGATTCGATGTGCCTGAAACTGGTGGTCTGGGCGCTGACCTGGGAAGAAGCGATGGACCGTGGCCTGCGAGCCCTGGATGACATGCGCCTGCAGGGGGTCAAGACCACCGCCGCGTATTACCAGGAGATCCTGCGCAATCCGGAATTCCGCAGCGGCCAGTTCAACACCAGCTTTGTTGAAAGCCATCCCGAACTGACCAATTACTCGATCAAGCGCAAACCCGAAGAGCTGGCCCTGGCCATCGCCGCCGCCATCGCCGCCCACGCAGGCCTGTAAMITKILIANRGEIAVRIVRACAEMGIRSVAVYSDADRHALHVKRADEAHSIGADPLAGYLNPRKLVNLAVETGCDALHPGYGFLSENAELADICAERGIKFIGPSAEVIRRMGDKTEARRSMIKAGVPVTPGTEGNVAGIEEALTEGDRIGYPVMLKATSGGGGRGIRRCNSREELEQAFPRVISEATKAFGSAEVFLEKCIVNPKHIEAQILGDSFGNVVHLFERDCSIQRRNQKLIEIAPSPQLTPEQRAYIGDLSVRAAKAVGYENAGTVEFLLAEGEVYFMEMNTRVQVEHTITEEITGIDIVREQIRIASGLPLSVKQEDIQHRGFALQFRINAEDPKNNFLPSFGKITRYYAPGGPGVRTDTAIYTGYTIPPFYDSMCLKLVVWALTWEEAMDRGLRALDDMRLQGVKTTAAYYQEILRNPEFRSGQFNTSFVESHPELTNYSIKRKPEELALAIAAAIAAHAGLPGPT0001425_415DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001425-pycA-K01959NANA
D1-35_04500963cmpR_4COG0583HTH-type transcriptional activator CmpRATGCGTAAGTCATTGATGCGTATGACGTTGCGTCAGTTGCAGATTTTCAATGAGGTGTGCGACCTAAGGTCATACAGCCGCGCGGCTGATGAAATGTCTCTCACACAACCGGCCGTTAGCCTACAGATTCGATCCCTTGAAGAGCTGATTGGCCAGCCGCTGTTTGAGTACGTCGGAAAAAAACTCTACATGACCGAAGCGGCCGAAGCCCTGCAACGCGCCAGTCGGGATATCTTCGGGCGGCTGGAGAACCTCGACATGCAGCTTTCGGACATGCAGGGTTCGCTGCAGGGGCAATTGAAGCTGGCGGTAGAGTCCAGTGCCAAATATTTCGTCCCGCATCTGTTCGCCGCGTTCAAGCGCCAACATCCCGAGGTCAATCTGAACCTCACCGTGGTCAATCGCGGCCAGGTGATCCGGCGCCTCTCGGACAACCGTGACGATCTGGTGATCATGTCGATGGTGCCCCAGGACATGGGCCTGGAATTCCTGCCATTTCTCAACAACCCGATCGTTGCCGTGGCGCCACCCGACCATCCGCTTTGCCACATCGGCCCGCTGCGCCTGCAGGACCTGGAACCTTATACGCTGCTGTTGCGCGAGCCCGGTTCGGGCACGCGGCTGGCGTGCGAGGAGTATTTCAAGGAGAAGCGGGTGCATTTCACCCAGACGCTGGAAGTGGCGTCGGCGGAGGCCCAGCGCGAGTGCGTGGTGGCCGGGCTGGGCGTGGCACTGTTGACGCGCCACGCCGTAAGCCGCGAGCTAAGCTCCGGCGCACTCATCGAGTTGCCGGTTGAGGAGTTGCCGCTGTACCGCAGCTGGTGCCTGGTGCAGGCCAGGGCAAAGCGTCTGTCACCGGTGGCTCATGCCTTCCTGGCATTCGTGCGCGGCGAGCGCGCCCAGATTATCGGCCTGGTTGAGCGTTTCGACGGGAAGCCGCCGGCGCTGCCTGCCAGTAATTGAMRKSLMRMTLRQLQIFNEVCDLRSYSRAADEMSLTQPAVSLQIRSLEELIGQPLFEYVGKKLYMTEAAEALQRASRDIFGRLENLDMQLSDMQGSLQGQLKLAVESSAKYFVPHLFAAFKRQHPEVNLNLTVVNRGQVIRRLSDNRDDLVIMSMVPQDMGLEFLPFLNNPIVAVAPPDHPLCHIGPLRLQDLEPYTLLLREPGSGTRLACEEYFKEKRVHFTQTLEVASAEAQRECVVAGLGVALLTRHAVSRELSSGALIELPVEELPLYRSWCLVQARAKRLSPVAHAFLAFVRGERAQIIGLVERFDGKPPALPASNPGPT0001160_217DIRECT EFFECTBIO-FERTILIZATIONCARBON_DIOXID_FIXATIONCO2_FIXATION-RuBisCoCO2_FIXATION-RuBisCo_BIOSYNTHESIS_REGULATION,PGPT0001160-cbbR|cmpR|ndhR-K21703NANA
D1-35_04501210hypothetical proteinATGACCCAGTCCTACGAAGACCGCAGCGCCGCCAAAACCCGTCGCCAACAGGAAGACCAACGCCGCATGGCGTTCCGCCGTGCAATCGAAGATCGCTATGAGCAACGGCAGCTTCTGGCAGAAATCAGCGAATTTCCTGACGCCGTAGAGTTCAATTACTGGCAGGCAGCGCCGGCGGCTTCCCGTCGAAACGCTCAACCAGGCCGATAAMTQSYEDRSAAKTRRQQEDQRRMAFRRAIEDRYEQRQLLAEISEFPDAVEFNYWQAAPAASRRNAQPGRNANANANANA
D1-35_04502867hexR_3COG1737HTH-type transcriptional regulator HexRTTGAACCTGTTGCAACACATCGCCCAGTCGCGCCATCTGCTACGCAAGTCGGAACTGAAGGTCGCCGATCATGTACTGCTTGATCCTGCGGCAGTGATGCACAGTTCCATGGCCGATCTGGCCCATAGCGTCGGCATCAGCGAGCCGACCATCGTGCGTTTTTGCCGCGCGATTGGTTGTTCGGGTTTCCAGGACCTGAAACTCAAATTGGCGCAGAGCTTGGCGGCGGGTGCGAGTTTTGGCCAATTCGCGATTCATGAAGACGATTCGGTCGCCGATTACAGCTTGAAAATCTTCGACACGACCCTGCACACCCTGATGGAAGTTCGCGAGAAGCTCGATCCGGTGGCGTTGCAGAAAGCGGTTACGGCCATGTCCCAGGCCCAACGTGTCGAGTTCTATGGTTTTGGTGCTTCTGGCGCGGTCGCCGCCGATGCCCAGCACAAGTTCTTCCGTCTGTTGCTCACGGCGGCGGCCTATTCCGATCCACATATGCAGGCAATGTCGGCGGTGACGTTGAAGCCTACCGACGTGGCGATCTGTATTTCCCAGTCGGGTCGCTCCAAGGACTTGTTGATCACTGCGAACCTGGTACGTGAAAGCGGTGCCTCGCTGATCACCTTGTGCCCGAGCCAGACGCCATTGGCTGAATTGTCGACGGTGAATCTGGCGATCGACGTGCATGAAGACACGGAAATCTACACGCCATTGACCTCGCGCATCGCGCATCTGGTGGTCATTGATGTGTTGGCCATGGGCGTTGCCATGGCGCGCGGCCCGAGCCTGGTCAATCACCTCAAGAGTGTGAAGCGCAGCCTTCGCAGCTTGCGGTTGTCGCCCAAGTCGGTGAAGGCGCTGGATGACTGAMNLLQHIAQSRHLLRKSELKVADHVLLDPAAVMHSSMADLAHSVGISEPTIVRFCRAIGCSGFQDLKLKLAQSLAAGASFGQFAIHEDDSVADYSLKIFDTTLHTLMEVREKLDPVALQKAVTAMSQAQRVEFYGFGASGAVAADAQHKFFRLLLTAAAYSDPHMQAMSAVTLKPTDVAICISQSGRSKDLLITANLVRESGASLITLCPSQTPLAELSTVNLAIDVHEDTEIYTPLTSRIAHLVVIDVLAMGVAMARGPSLVNHLKSVKRSLRSLRLSPKSVKALDDPGPT0017985_592DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATE_UTILIZATION_REGULATION,PGPT0017985-hexR|yebK-K19337NANA
D1-35_045032877hypothetical proteinATGACCTCCAGTTCCGATCTGGCGGGGCCCTGCGTGGAGCCGCGCCTCATCTGCAAGCAGTACGCCACGGAAATGGCCGTCGAACGCACCAGGCTGTTATATCAGGGTTCGCTGCTGCCCACGCTGTTCATGCTGCTCAACGGGCTGGTGTGCGCGGCGCTCTTATGGACGCCGTCGCGCTACTTCCTGGTCAGCGTCTGGTTGGTCTGGTTGCTGTCGCTGGTGGCGTTGCGGGTGATTCAGGTGGCTGCGTTCGATTCGGCGATACCAAGCCGCCAGGCCCACCCGATCTGGTTGCGCATGTTCCTGCTGGGCTCGGCCATGACCGGCTTGACGTTGGCCGGTGCCGGTATCGCCCTGGTCCCGGCGGACAGCTTCCAGCAACAGGCCTGGGTATTCGGCCTGATCGGCGCGGCCACGCTGTCGGCGAGTGTCGCCTATGCCGTGAGCCTTGCGGCGTTCCTGTCCTTTACTTTGCCCTGCCTGTTGCCGGCCATCGGTTATCTTTTCTGGGGCGGCGACGAGCAGCAGCGTGGCTGGGGCTGGCTTGGGCTGGTGGTGCTGGTTTCGCTGAGTGTGGTGGCCTGGCAGGTCAATCGGCTGATACAGAACGGCATGCTGCGCCGGTTCCAGAACCAGGCACTGATCGAGCACCTGCAGCAAGCACAAGCCCGCGGCGCCCAGCTTAACGAGGCATTGGCCCGGGAGGTCGAACAACGCCGTTCTGCAGAAGCCCAGCTGCGTACGGCGCAGGTTGGCCTGGAGGCGCGGGTCGCACAGCGCAGCCTTGAACTGGAGGCGGCCAGCCAGGCGCTGAGTAAAAGCGAAGCACGCCTGGCACTGGCGCTCAAGGCCAGTGAGCTGGGGTTGTGGGACTGGAACCTGCAGACTGATGAAGTCCATCACACCCAACTCAAGGAGCTGTTTGGCCTGGAACCCGAGTACATAACGGCCATGCTCAGTCATCTCACCCCGCGCCTGCATCCGCAGGATTTACCCGCGCTGAAGCGTGCCTTGGTCGAGCACCTGAAAGGCCGCAGCGAGGATTACCAGATCGAATACCGCGTCCGTCATGGCGATGGCCATTGGGTCTGGATCGAAGACCGTGGCCGGGCAGTGGAACGCAGCGCCACGGGTCGGGTGTTGCGCATGGTCGGCACCCGGCGAGACATCAGTGCCAGCAAAGAGCTTGAACAACAGCGACAACTGGCGGCCACGGTCTTTGAAGCGGCCAGCGAAGGCATTGTGATTTTCGACCCCAACTACGCGTTGCTGGCCGCCAACCAGGCGTTCGCGCGGGTTACCGGCTTCGATATCGCCGACATGCTGGGGCGCAGCGTGGTCGACCTGCCCTGCAGTCGCGATGCACGCCGGCACTATCCGATCATTCGCCAAGCCCTCAAGCAGCATGGCACCTGGCAAGGCGAGCTGGTGGAAGCGCGGGCCAACGGTGAACTCTACCCGCAGTGGTTGCAGTTGAATGTGGTGCGTGATCTGCGAGGGAAAGTCAGCCATGTAGTGGGCTTCTTCGCCGATCTCTCGGCCCGCCGCGAATCCGAGGAGCGGATGCGCTACCTCACTCATTACGACGAACTGACCGGATTGGCCAACCGTTCGCTGTTCCGCGAGCGCCTGCACGAGGCCCATCAACGGGTTCGCCAGGGCGGGCACCGCAGCCTGGCACTGCTGCACATCAACCTCGATCGCTTCAAGTTGCTCAACGACAGCCTCGGCCACGACATCGCCGATCAGTTGCTGCAGAAAATGGCTCGCCGCCTGATCAATGCGTTGCCGGAAGCCGACACCATTGCCAGGCTGTCCGGAGATGAGTTCGCCGTGTTGTTCGACGCCTATGGCAACCTTTCCAGCCTGGCGAGGGTAGCGACCCGGCTATCAGCCAAGCTGCGGCTGCCGCTGACGATCGAGGGACATGAGCTGGTGGTCAGCGCTTCGATCGGCATCAGCCTGTTGCCCGACAACGCTCGGGAAATCTCCACGTTGGTCAGCCAGGCGAACATGGCGATGCAACACGCCAAGCACCTGGGCGGCAATAGCTTCCAGTTTTATACCGACAGCCTTCAGGCCAGCACGCTGGAACGTCTGCAATTGGAGAACCAATTGCGCAAGGCGCTTGAGGAACAGCAACTGAGCGTTTTCTACCAGCCCAAACTGTGCCTGGCGACCGGCCGCCTGAACGCAGCCGAGGCGCTGGTGCGCTGGGACCATCCGACCATGGGCCAGATTCCACCCGCTGACTTCATCGGCTTGGCCGAGGAGACCGGGCTGATCGGACCCATTGGCGAATTCGTGCTCCGCCAGGCCTGCTGGCAGGCGTGCGAATGGCAGCGCCAGGGGCTTGCGCCTATCAGGGTGTCAGTCAATCTCTCGGTGCATCAGTTGCGCCAGGGCAAACTGGTCAGTCTTGTACGCCAAGTGTTGGAGGAGACCGGCCTGGCCCCGCAATACCTGGAGCTGGAGCTGACCGAGAGCCAGTTGCTCGACAGCGTCGAACACATCATCGCTACGTTCCAGCAGCTGCGTGATCTTGGGGTCAAGCTGGCGATCGATGACTTTGGCACCGGCTATTCTTCGCTGAGCTATCTCAAGCGTATTCCGGTGGATTACGTGAAGATCGACCAGGCATTTGTTCGTGGCCTGGCGGAGGGCGGGGAGGACGCAGCCATTACCCGGGCAATCATCGCCATGGCTCATGGGCTGTCGCTCAAGGTAGTGGCCGAAGGTGTCGAGCGGCAGGAGCAGCTGGATTTCCTGAAAAACGAGCAATGCGACGAGGTTCAAGGCTATCTCATCAGCCGACCGGTGGGAGCCGAAGGCCTGGCCCGTCTGATGCTCGAGCAGAATAAGCCTGCTTTGTAGMTSSSDLAGPCVEPRLICKQYATEMAVERTRLLYQGSLLPTLFMLLNGLVCAALLWTPSRYFLVSVWLVWLLSLVALRVIQVAAFDSAIPSRQAHPIWLRMFLLGSAMTGLTLAGAGIALVPADSFQQQAWVFGLIGAATLSASVAYAVSLAAFLSFTLPCLLPAIGYLFWGGDEQQRGWGWLGLVVLVSLSVVAWQVNRLIQNGMLRRFQNQALIEHLQQAQARGAQLNEALAREVEQRRSAEAQLRTAQVGLEARVAQRSLELEAASQALSKSEARLALALKASELGLWDWNLQTDEVHHTQLKELFGLEPEYITAMLSHLTPRLHPQDLPALKRALVEHLKGRSEDYQIEYRVRHGDGHWVWIEDRGRAVERSATGRVLRMVGTRRDISASKELEQQRQLAATVFEAASEGIVIFDPNYALLAANQAFARVTGFDIADMLGRSVVDLPCSRDARRHYPIIRQALKQHGTWQGELVEARANGELYPQWLQLNVVRDLRGKVSHVVGFFADLSARRESEERMRYLTHYDELTGLANRSLFRERLHEAHQRVRQGGHRSLALLHINLDRFKLLNDSLGHDIADQLLQKMARRLINALPEADTIARLSGDEFAVLFDAYGNLSSLARVATRLSAKLRLPLTIEGHELVVSASIGISLLPDNAREISTLVSQANMAMQHAKHLGGNSFQFYTDSLQASTLERLQLENQLRKALEEQQLSVFYQPKLCLATGRLNAAEALVRWDHPTMGQIPPADFIGLAEETGLIGPIGEFVLRQACWQACEWQRQGLAPIRVSVNLSVHQLRQGKLVSLVRQVLEETGLAPQYLELELTESQLLDSVEHIIATFQQLRDLGVKLAIDDFGTGYSSLSYLKRIPVDYVKIDQAFVRGLAEGGEDAAITRAIIAMAHGLSLKVVAEGVERQEQLDFLKNEQCDEVQGYLISRPVGAEGLARLMLEQNKPALPGPT0023624_589DIRECT 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
D1-35_045042181uvrDCOG0210DNA helicase IIATGCGCGATGATCTCTCCCTTCTGCTGAATTCCCTGAACGACGCCCAACGCCAGGCAGTTGCTGCCTCCGTCGGTCGTCAATTGGTCCTGGCCGGTGCCGGCTCCGGCAAGACCCGAGTGCTGGTGCACCGTATCGCCTGGTTGATCCAGGTCGAGAACGCCTCGCCCCATTCGATCCTGTCGGTGACCTTCACCAACAAGGCCGCTGCCGAGATGCGCCATCGCATCGAGCAGTTGATGGGCCTCAACCCGGCCGGCATGTGGGTCGGCACGTTCCACGGCCTGGCGCACCGCCTGTTGCGGGCCCATTGGCAGGAGGCCGGCCTGAGCCAGACCTTCCAGATCCTCGACAGCGATGACCAGCAGCGCCTGGTCAAGCGGGTCATCCGTGAACTGGGCCTGGACGAACAGCGCTGGCCCGCCCGTCAGGCCCAATGGTTCATCAACGGCCAGAAAGACGAAGGCTTGCGCCCGCAGCACATCCAGGCCAGTGGCGACCTGTTCCTGGCGACCATGCGCAGCATCTACGAAGCCTATGAAGCGGCATGCCAACGCGCCGGAGTCATCGACTTTTCCGAGCTGCTGCTGCGAGCCCTGGACCTGTGGCGCGACCACCCGGGCCTGCTGGCGCATTATCAGAAACGCTTCCGGCATGTGCTGGTGGACGAATTCCAGGACACCAACGCTGTTCAGTACGCCTGGTTGCGCCTGCTGGCCAAGGGTGGCGACAGCCTGATGGTGGTAGGTGACGACGACCAGTCGATCTACGGCTGGCGCGGCGCCAAGATCGAAAACATTCATCAGTACTCGGCGGATTTCCCCGACGCTGAGGTCATCCGCCTGGAGCAGAACTACCGCTCCACCGCCGGTATCCTCAAGGCCGCCAACGCGTTGATCGCCAACAATACCGGGCGCCTGGGCAAGGAATTGTGGACCGACGGCGGCGAAGGCGAGGCGATCAATCTGTACGCCGCTTTCAATGAACACGATGAGGCCCGCTATGTAGTGGAGACCATCGAGAGCGCGTTGAAAACCGGCCTGGCTCGCAGCGATATCGCCATTCTCTATCGCTCCAACGCGCAATCGCGGGTGTTGGAAGAAGCGCTGCTGCGCGAACGGATCCCTTACCGAATCTATGGCGGCCAACGCTTCTTCGAGCGCGCGGAAATCAAGAACGCCATGGCCTACCTTCGCCTGATCGAAGGACGCGGCAACGACGCGGCCCTGGAGCGGGTGATCAACGTGCCGACCCGAGGCATCGGCGAGAAAACCGTCGAGGCGATTCGCGACCATGCGCGCCATAGCCACGTGTCAATGTGGGAAGCCATGCGCCAGCTGGTCGACAACAAAGGCGTTACCGGGCGCGCCGCCGGTGCGCTGAAAGCGTTCATCGACCTCATCGAAGACCTCGCCGCCAAATGCGCCGAGATGCCGCTGCACCTGATGACCCAGACCGTCATCGAGCAGTCCGGCCTGATCGCCTACCACGAGGCGGAAAAAGGCGAGAAAGGCCAGGCGCGAGTAGAAAACCTCGAGGAACTGGTCAGCGCCGCGCGCAACTTCGAAAACACCGAAGAAGACCAAGACCTGTCCCCGTTGTCGGCTTTCCTCGGTCATGCCTCCCTGGAAGCCGGCGATACCCAGGCCGACGAGCATGAAGACAGCATTCAACTGATGACGCTGCACAGCGCCAAGGGTCTGGAGTTTCCGTATGTGTTTCTGGTGGGTATGGAGGAAGGCCTGTTCCCCCACAAGATGAGCCTGGAGGAGCCGGGACGCCTCGAAGAGGAACGTCGCCTGGCCTACGTCGGCATCACCCGCGCGATGCAGAACCTGGTGCTGACCTACGCTGAAACCCGTCGCCTGTATGGCAGCGAGACCTACAACAAAGTGTCACGCTTCGTACGCGAAGTGCCGAAAGGTCTTATCCAGGAAGTACGCCTGTCCAACAGCGTCAGCCGACCGTTTGGCGGCAACCAGCAAGGCACCAGCAGCCTGTTTGGCGGTAGCGACATTCCAGAAACCGGCTTCAGCCTCGGCCAGGCTGTGCGGCATTCGGTGTTTGGCGACGGCGTGATCCTCAATTTCGAAGGCGCCGGTGCCCAGGCCCGGGTCCAGGTCAACTTCAGCGAAGGCAGCAAATGGCTGATGCTGGGGTATGCGAAGCTGGAAGCGATCTAAMRDDLSLLLNSLNDAQRQAVAASVGRQLVLAGAGSGKTRVLVHRIAWLIQVENASPHSILSVTFTNKAAAEMRHRIEQLMGLNPAGMWVGTFHGLAHRLLRAHWQEAGLSQTFQILDSDDQQRLVKRVIRELGLDEQRWPARQAQWFINGQKDEGLRPQHIQASGDLFLATMRSIYEAYEAACQRAGVIDFSELLLRALDLWRDHPGLLAHYQKRFRHVLVDEFQDTNAVQYAWLRLLAKGGDSLMVVGDDDQSIYGWRGAKIENIHQYSADFPDAEVIRLEQNYRSTAGILKAANALIANNTGRLGKELWTDGGEGEAINLYAAFNEHDEARYVVETIESALKTGLARSDIAILYRSNAQSRVLEEALLRERIPYRIYGGQRFFERAEIKNAMAYLRLIEGRGNDAALERVINVPTRGIGEKTVEAIRDHARHSHVSMWEAMRQLVDNKGVTGRAAGALKAFIDLIEDLAAKCAEMPLHLMTQTVIEQSGLIAYHEAEKGEKGQARVENLEELVSAARNFENTEEDQDLSPLSAFLGHASLEAGDTQADEHEDSIQLMTLHSAKGLEFPYVFLVGMEEGLFPHKMSLEEPGRLEEERRLAYVGITRAMQNLVLTYAETRRLYGSETYNKVSRFVREVPKGLIQEVRLSNSVSRPFGGNQQGTSSLFGGSDIPETGFSLGQAVRHSVFGDGVILNFEGAGAQARVQVNFSEGSKWLMLGYAKLEAINANANANANA
D1-35_04505876hypothetical proteinATGAAACGTTTTCTTAGCATCGCCATGGCGTTGTGCATCGGCCTGACGATGGCCATCGACGCCAATGCCGCCAAGCGTTTTGGCGGTGGTAAAAGTTCGGGCGCCGCCCCGACTCACCAGACCAGCCAGATGGCGCCGTCCTCTGCCGCCGGTTCAACCGCTGCCACCGCAGGCGCTGCCGGTGCGGCTGGCGCTGCCACCAAGGCCAGCGGTGCTTCGCGCTGGCTCGGCCCACTGGCCGGCATCGCCGCCGGTGGCCTGCTCGCCTCCATGTTCATGGGCGACGGCTTCCAGGGCATGCAGATCTTCGACATCCTGATCATGGCGGTCATCGCCTTCCTGGTCTTCCGCTTCATTGCCGCCCGTCGTCGCAAGCAGCAGGAGCAACTCGCTCCGGCCGGTCACGCGCCAATGCAACGTGAAGTGTTCAACCAACAGCCTGCCAGCGGCTCGATCTTCGGTGGCTCAGCCGCTCCAGTGGCCGCCCGCCCGGTGATCAACGCACCCGCCTGGTTCAACGAACAGCGCTTCATCGAAGCCGCTCGCAGCCACTTCATGTCCTTGCAGCAGCATTGGGACTCGAACGAAATGGACAAGATCGCCGAGTTCGTAACCCCGCAACTGCTGGAGTTCCTCAAGCGTGAACGTGCCGAACTGGGCGACGGCTACCAGTCCACCTACATCGACAACCTGCAGGTGCAGCTGGACGGCGTCGACGATCGGGCAGACAAGACCATCGCCACCCTGACCTTTGTCGGCGTGTCGAAGGACTCTCGCTTCGACCAGGGCGAAGCGTTCAGCGAAAGCTGGAACATGGAACGTGCCCAAGGCGAGAACCAGCCTTGGCTGGTTGCAGGTATCCGCCAGAACGGTTGAMKRFLSIAMALCIGLTMAIDANAAKRFGGGKSSGAAPTHQTSQMAPSSAAGSTAATAGAAGAAGAATKASGASRWLGPLAGIAAGGLLASMFMGDGFQGMQIFDILIMAVIAFLVFRFIAARRRKQQEQLAPAGHAPMQREVFNQQPASGSIFGGSAAPVAARPVINAPAWFNEQRFIEAARSHFMSLQQHWDSNEMDKIAEFVTPQLLEFLKRERAELGDGYQSTYIDNLQVQLDGVDDRADKTIATLTFVGVSKDSRFDQGEAFSESWNMERAQGENQPWLVAGIRQNGNANANANANA
D1-35_04506408hypothetical proteinGTGGAAGAAATCATCGAACAACTGCGTGAAGCCAACGAACCTGTACCGGTTCCACTGGAGTTGCCTGACGAAGACTTGCTGGTAGAGATCGAGGAGCAACTGTTCATCGATATCCCGTTCGTCTTCAGGGAGTTTTTGCTGACTGTCAGCGACGTAGTCTATGGCAGCCTGGAGCCGGTGACCGTTACCGATCCGCAATCCCATACCTACTTGCCCGACGTGGCAGCCAATGCCTGGGATGCGGGTGTCGATCGCAGCCTGATCCCGATCTGCCAGGACGGCGACGATTATTATTGCGTCGAAGAAGACGGCACGGTGGTGCTGTGGCAGGCCGAGGAAGAGCTGATTGCCGAGGAAACCTGGGAATCGGTCTGGCACTGGGCACGGGATGTCTGGCTGGAAAGCTGAMEEIIEQLREANEPVPVPLELPDEDLLVEIEEQLFIDIPFVFREFLLTVSDVVYGSLEPVTVTDPQSHTYLPDVAANAWDAGVDRSLIPICQDGDDYYCVEEDGTVVLWQAEEELIAEETWESVWHWARDVWLESNANANANANA
D1-35_045071764kefBGlutathione-regulated potassium-efflux system protein KefBATGCATGCCATCAGCTTCATTCAGGACCTGGCGATCATCATGCTGGTGGCGGGGCTGGTAACGGTACTCTTTCATCGTTTCAAGCAGCCGGTAGTGCTGGGCTATATCGTCGCCGGCTTCATCATTGGCCCGCATACGCCACCGTTCGGTTTCATCCACGACGAAGAAACCATCAAGACCCTGGCCGAGCTCGGGGTGATCTTCCTCATGTTCTGCCTTGGGCTGGAATTCAGCCTGCGCAAACTGTTCAAGGTTGGCGCCACGGCGTTCATCGCAGCATTCCTCGAAATTGTCCTGATGATCTGGATCGGCTATGAAATCGGCCGCTGGTTCGACTGGAATACCATGGACTCGCTGTTTCTCGGCGCGATCCTGGCCATCTCCTCGACCACGATCATCGTCAAGGCGCTCAATGACCTGAAAATGAAAAACGAGCGCTTTGCGCAGCTGATTTTTGGGGTACTCATCGTCGAAGATATCCTCGGCATCGGCATCATCGCCTTGCTCTCGAGCATCGCCGTCAGCGGCACGGTGAGTTCCGGCGAGGTGTTCTCCACGGTCGGCAAGTTATCGTTGTTCATGATCGTGGCGTTGGTCATCGGTATCCTGCTGGTGCCCAGATTGCTGGCGTACGTAGCGAAATTCGACAGTAACGAGATGCTGCTGATCACGGTGTTGGGACTTTGCTTCGGCTTCTGCCTGCTGGTAGTGAAGCTTGAATACAGCATGGTGCTGGGGGCATTCCTGATCGGTGCGATCATGGCCGAGTCCCGGCAGTTGCTGAAAATCGAACGTTTGGTAGAGCCGGTGCGCGACTTGTTCAGCGCGATATTTTTCGTGGCGATCGGGCTCATGCTCGATCCGGCGATCTTGCTTCAATACGCCTGGCCGATTGCCGTGATCACCTGCGCAGTCGTGCTGGGCAAGATGCTCTCTTGTGGTCTTGGCGCCTTTATCGCTGGCAATGACGGACGCACCTCCCTGCGAGTCGGGATGGGACTTTCACAGATCGGCGAATTTTCGTTCATCATCGCTTCGCTGGGCATGACCTTGCAGGTTACCAGCGATTTTCTTTATCCGGTGGCGGTGGCTGTGTCGGTACTGACCACGCTGCTGACGCCTTACTTGATCCGGGCCGCGGATCCGCTGTCAGTCAGGCTGGCTTCGGCAATGCCGCAACGGCTGACGCGCGTGCTGGGCATGTATGGCGAATGGTTGCGCAGTATTCAGCCACAGGGCGAGAGCGCCCTGGTGGCCGCCATGATCAGGCGAATCCTGCTGCAGGTCGGCATCAACCTGGCATTGGTCATCGCGATTTTTGTTTCGGGCGGCTATTTCGCCGAGCGGATGTCGGTTTACCTGCAAGCCTGGATCAGCGATCCGAGCTGGCAAAAAGCATTGATCTGGGGTGGGGCGCTGCTGTTGTCGCTACCGTTCCTGATCGCTGCGTACCGCAAGCTCAAGGCGCTTTCGATGCTGCTGGCGGAGTTGGGTGTCACGCCGGAGATGGCTGGCCGCCACACGCAGCGCGTGCGTCGGGTCATCGCCGAAGTGATCCCGATCCTGTCGCTGCTGGTGATTTTCCTGCTGCTGGCAGCCTTGTCGGCCAGTATCCTGCCGACCAACAAGTTGCTGGTATTGATTGCCGTGGTGGCGACTGCGGTGGCGGCGCTGCTCTGGCGCTGGTTCGTCCGCCTGCATACGCGGATGCAGGTGGCCTTGCTCGATACGCTGGACAATCACAAGGAGTCGTCCGGGCATTGAMHAISFIQDLAIIMLVAGLVTVLFHRFKQPVVLGYIVAGFIIGPHTPPFGFIHDEETIKTLAELGVIFLMFCLGLEFSLRKLFKVGATAFIAAFLEIVLMIWIGYEIGRWFDWNTMDSLFLGAILAISSTTIIVKALNDLKMKNERFAQLIFGVLIVEDILGIGIIALLSSIAVSGTVSSGEVFSTVGKLSLFMIVALVIGILLVPRLLAYVAKFDSNEMLLITVLGLCFGFCLLVVKLEYSMVLGAFLIGAIMAESRQLLKIERLVEPVRDLFSAIFFVAIGLMLDPAILLQYAWPIAVITCAVVLGKMLSCGLGAFIAGNDGRTSLRVGMGLSQIGEFSFIIASLGMTLQVTSDFLYPVAVAVSVLTTLLTPYLIRAADPLSVRLASAMPQRLTRVLGMYGEWLRSIQPQGESALVAAMIRRILLQVGINLALVIAIFVSGGYFAERMSVYLQAWISDPSWQKALIWGGALLLSLPFLIAAYRKLKALSMLLAELGVTPEMAGRHTQRVRRVIAEVIPILSLLVIFLLLAALSASILPTNKLLVLIAVVATAVAALLWRWFVRLHTRMQVALLDTLDNHKESSGHPGPT0014395_1937DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0014395-ybaL|TC_KEF-K03455NANA
D1-35_04508486hypothetical proteinATGGAACCCGGAAACGCCCAGCTGTCGATGACGGTGTTGATGACCCCCGATATGGCCAACTTCTCTGGCAATGTCCATGGCGGCACCTTGCTCAAATACCTCGATGAAGTTGCCTATGCCTGCGCCAGCCGTTACGCCGGGCGCTACGTGGTGACGCTTTCGGTCGACCAGGTCATCTTTCGTGAGCCGATCCACGTCGGCGAGCTGGTGACGTTCCTGGCGTCGGTGAACTACACCGGCAACACGTCGATGGAAGTTGGCATCAAGGTCGTGACCGAGAACATTCGTGAACGCTCGGTGCGCCATACCAACAGCTGCTTTTTCACCATGGTGGCCGTGGATGACCAACGCAAACCTGCGCCCGTCCCGCCATTGCACCCGCAGAACAGTGAGGAGAAGCGCCGCTACGAACAAGCCCAGCAGCGTCGGCAGATCCGCCAGGAGCTGGAACGGCGCTATCAGGAAATCAAGGCGGACGGGCCGTAAMEPGNAQLSMTVLMTPDMANFSGNVHGGTLLKYLDEVAYACASRYAGRYVVTLSVDQVIFREPIHVGELVTFLASVNYTGNTSMEVGIKVVTENIRERSVRHTNSCFFTMVAVDDQRKPAPVPPLHPQNSEEKRRYEQAQQRRQIRQELERRYQEIKADGPNANANANANA
D1-35_04509873pdxYCOG2240Pyridoxal kinase PdxYATGAAACGTACGCCTCATCTGCTTGCCATCCAGTCCCATGTGATATTTGGTCACGCCGGCAACAGTGCTGCCGTGTTTCCAATGCAGCGGGTCGGCGTCAACGTATGGCCGCTCAATACCGTGCAGTTTTCCAATCACACCCAATACGGGCAGTGGGCCGGAGAAGTGTTGGCGCCTGCTCAGATTCCACTTCTCGTTGAGGGGATCGCGGCCATTGGCGAGCTGGGCAATTGCGACGCGGTGCTGTCCGGTTATCTGGGCAGCGCGGCCCAGGGGCAGGCGATCCTGGCGGGCGTGGCGCGGATCAAGGCTTGCAACCCCAAGGCGCTGTATCTGTGTGACCCGGTCATGGGGCATCCGGAGAAGGGCTGCATCGTGGCGCCCGAGGTGAGCGAGTTTCTGCTGGAAGAGGCCGCTGCCGTAGCGGACATCATGTGTCCGAACCAGTTGGAACTGGACAGTTTTGCCGGGCGCAAGGCGCAATCATTGTTCGATTGCCTGGCCATGGCACGTGGGCTGTTGGCTCGTGGACCGAAGGTGGTGCTGGTCAAACACCTGGCTTACCCCGGCAAGCCCGACGACAGCTTCGAGATGTTGCTGGTCACGGCTGACGGGGGCTGGCACTTGCGTCGTCCATTGCTGGCGTTTCCCCGTCAGCCGGTAGGGGTAGGTGACCTGACCTCGGGGATGTTCCTGGCGCGGATACTGTTGGGCGACAGCCTGGTGGCAGCATTCGAATTCACCGCTTCGGCGGTACACGAAGTGCTGCTGGAAACCCAGGCGTGTGCCAGCTACGAGCTGCAACTGATCCGTGCCCAGGATCGTATCGCCCACCCGCGCGTGCGCTTCGAGGCCACGCCGATCAGCCTTTGAMKRTPHLLAIQSHVIFGHAGNSAAVFPMQRVGVNVWPLNTVQFSNHTQYGQWAGEVLAPAQIPLLVEGIAAIGELGNCDAVLSGYLGSAAQGQAILAGVARIKACNPKALYLCDPVMGHPEKGCIVAPEVSEFLLEEAAAVADIMCPNQLELDSFAGRKAQSLFDCLAMARGLLARGPKVVLVKHLAYPGKPDDSFEMLLVTADGGWHLRRPLLAFPRQPVGVGDLTSGMFLARILLGDSLVAAFEFTASAVHEVLLETQACASYELQLIRAQDRIAHPRVRFEATPISLPGPT0009125_1027DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009125-pdxK|pdxY-K00868NANA
D1-35_04510423hypothetical proteinATGCTGACCCTTGGAAACATTTTCGTGCTGATGCTGCTGGCTACCGGTGGCGCCTGGCTGTGGCACAACCACGGCTTGCGCGAACGGGCTCTGGCGAGGGTCATACAACACTGCGCCAATCTCAAGATCGAGCTGCTGGATGGCAACGTGGCGCTGCGCAAGATCGGGTTTGTGAAAGACGGCAGCGGGCGACGGCGCCTGGCACGTGTCTATAACTTCGAATTCACAGTGACGGGCGAGACGCGTCATACCGGCACCATCACTCAATTCGGCGCCCACAGTGCAAACATCGAACTGGCACCCTATCCGATGCCGTTCGAAGAAACCGCGCAGGCGCCCATCGAACCGGTCCAGACCCGGCCCCGGGCCGAGGTTATCGAGCTGAGCCAGTGGCGTCAGGAACATAATAAATGGAAGCCCTGAMLTLGNIFVLMLLATGGAWLWHNHGLRERALARVIQHCANLKIELLDGNVALRKIGFVKDGSGRRRLARVYNFEFTVTGETRHTGTITQFGAHSANIELAPYPMPFEETAQAPIEPVQTRPRAEVIELSQWRQEHNKWKPNANANANANA
D1-35_04511981yeiRCOG0523Zinc-binding GTPase YeiRATGTTGCAGAACATACCCACCCATGTGATTGCCGGCCCTTTGGGAGCAGGCAAGACCAGCCTGATCAGGCAATTGCTGGCTCAGCGTCCGGCTGATGAGCGGTGGGCCGTGCTAATCAACGAGTTCGGCCAGATCGGCCTGGATGCCGCGCTGCTGACCCAGGCCGCCGATGGTATCGCATTGGGCGAAGTGGCCGGGGGCTGTTTGTGTTGCGTCAATGGAGCGCCGTTTCAGATCGGCCTTGGCCGTTTATTGCGCAAGGCGCGGCCGCACCGTCTGTTCATCGAACCCTCCGGGCTGGGTCATCCGGCGCAGCTCTTGCGACAGCTGAACGAAGCGCCCTGGCTTGGCGTGCTGGCGATCCAGCCTTGTGTGTTGGTCCTGGATGCCCAGGCAATGGCGAACGGCAAGCCGTTGCCCGATGCGCAACGACAGGTCCTGGCTGACGCCGGCTTGCTGGTGCTGAACAAGTCCGAAGACCTTAACGACGCCGATCGCGTGGGCATTACTTCCCAATTGCCCGAGATTGCGCTGTATTGGACCCATCAGGCTGCGTTGCCGATTGATCGGCTGCCCGGCCTGGCGAATCGCGGCGACGGAGCTGCGGATAACTTGGCTGTGGATAACTTGAATGTGCCCAAGAGCCTGGGGCAGATACCGGCCATCTGGAGTGACCCGACGTTGCCGATCTGTCTGCATCAGCAGCAGGGCGAAAGCTGGAGCATCGGTTGGCGCTGGCATCCGGACCAACGATTCGACGTCGGGCAGCTGTCTCGATGGCTGCACGGCAAAGACTGGAAACGCGCGAAGATGGTTATCCACAGCGAGGGCGGTTGGGTTTCCGCCAATGCGTTGGACGCAGGGCCGCTGGAGTGGCAAGCGAGCGAATGGCGACAGGATTCGCGAATCGAACTGATCTTCGCCGAACCCCAAGACGTGGGAATCCTTCAAGCGGGCCTGGCGAGCTGCCGCCACCCTTAAMLQNIPTHVIAGPLGAGKTSLIRQLLAQRPADERWAVLINEFGQIGLDAALLTQAADGIALGEVAGGCLCCVNGAPFQIGLGRLLRKARPHRLFIEPSGLGHPAQLLRQLNEAPWLGVLAIQPCVLVLDAQAMANGKPLPDAQRQVLADAGLLVLNKSEDLNDADRVGITSQLPEIALYWTHQAALPIDRLPGLANRGDGAADNLAVDNLNVPKSLGQIPAIWSDPTLPICLHQQQGESWSIGWRWHPDQRFDVGQLSRWLHGKDWKRAKMVIHSEGGWVSANALDAGPLEWQASEWRQDSRIELIFAEPQDVGILQAGLASCRHPNANANANANA
D1-35_04512354hypothetical proteinATGCGAATGATCGGTTGGCTGTTACTGCTGCTGACCTCGAACCAGGCTTTGGCCCAGGCGTGTGTAGTGCACAGCCAGGCGGAACGGCTCGATGTCAGAGTCTGCCAGCAGAACCGCAATATTCCGCAAAAACTGTTCGCCGACGGCTTCTGCCAACCCAGCCTGGCCGGACAGAAAGTCGACGTGCAGTATGTCGATCAATGCCCTGGCGGCGCATTTGGCATTTGCAGCAACGCCCAGGTCGCCAATATGCCTTATCGCCAGGATATTCACTATTACGGCGTAGCCACCGATGCGGCTTACCTGAAACCCTTTTGCGAAAGCCAAAGCCAGGGACACTGGCTCAAGCCTTAGMRMIGWLLLLLTSNQALAQACVVHSQAERLDVRVCQQNRNIPQKLFADGFCQPSLAGQKVDVQYVDQCPGGAFGICSNAQVANMPYRQDIHYYGVATDAAYLKPFCESQSQGHWLKPNANANANANA
D1-35_04513642hypothetical proteinATGCTGGCGCCTCGTCTGAAGCAGCTGCGTCAGGTCCACGGAGATACGCCGCTTACCTTCGCGCAGATTCTGGATGACGACACCAACCTGGCCGTGTGGCAGCGTCACCTCCCGGCACATATCGGCGATTTTGCGGCGATGCTGCTTTCGATGGGCCAACCCCTGGCCGAGTCGATGGTGCTTGAGTTGCCGGGCGAGGATACGCAGCCGGTGTTGCATGGCCTTGCCTCGGGTTTCGGCGATCTGCACGGATATGAAGGGTTCGTCGCGGATGTCGCCTGGCTGGTCAGTGCGTTTGCCTGTCTCCTCGGTGCCCGGCGCGTCGGTCTGCGCTTACGAGCGTTGGATAATGCAATGTGCCCACGTTTTCACGTCGACCATGTGCCGGTGCGGCTGATCACCACCTATGCCGGCGTCGGCAGCCAATGGCTCATGGAAGGCGTCATGGACCGTCGACGATTGGCCCAGCCTGAAGCAGAGCCTGCCGACGCGAGTCTCATTCAGCAGATGCGCAGTGGCGATGTGGCGCTGCTCAAAGGTGAAAAGTGGCAAGGCAATGAAGGTCACGGGCTGATCCACCGCTCACCGCAATTGGCGCCCGGCGAACGGCGTTTGATCCTTTCGCTGGATTGGCTGGCCTAAMLAPRLKQLRQVHGDTPLTFAQILDDDTNLAVWQRHLPAHIGDFAAMLLSMGQPLAESMVLELPGEDTQPVLHGLASGFGDLHGYEGFVADVAWLVSAFACLLGARRVGLRLRALDNAMCPRFHVDHVPVRLITTYAGVGSQWLMEGVMDRRRLAQPEAEPADASLIQQMRSGDVALLKGEKWQGNEGHGLIHRSPQLAPGERRLILSLDWLANANANANANA
D1-35_045141209yciCCOG0523Putative metal chaperone YciCATGCCCAACCGTCTCCCCGTTACCGTGCTGTCCGGATTTCTCGGGGCTGGTAAAAGCACCTTGCTCAATCATGTGTTGCGTAATCGCGACAACCTTCGCGTTGCCGTCATCGTCAACGATATGAGCGAGATCAACATCGATGGTAGCGAAGTGCAGCGAGATGTCACCCTCAATCGCGCCGAAGAACGGTTGGTCGAAATGAGTAATGGCTGCATTTGCTGCACGCTGCGCGAGGATCTCTTGGAGGAAGTGGGCAAGCTTGCCAGGGAAGGCCGCTTCGATTATCTGCTGATCGAATCCACGGGCATTTCGGAGCCGATGCCGGTCGCCGAAACCTTCACCTTTCTTGATGAAGAAGGGCGCAGCCTGGCGGACGTTGCGAGGCTCGACACGATGGTGACAGTGGTCGATGGCGTGAATTTCCTCAAGGATTACCAGGCCGCGGAAAACCTTTCCACCAGGGGCGAAACCCTCGGAGAAGAAGATGAGCGCTCGATAACCGATTTGCTGATCGAGCAGATCGAGTTCGCCGACGTGATCCTGATCAGCAAGATTGATCTCATAAGCCGCTCCGAACGAGAAGAGTTGAGCGCAATTCTGTCGCGCCTGAATGCCCAGGCGCAGGTTATTCCCATGGTCATGGGGCAGGTACCGCTGGGGCAGATCCTTGATACGGGCCGCTTCGATTTTGAACGCGCGGCGCAGGCGCCCGGTTGGCTGCGGGAGTTGCGCGGCGAGCATGTGCCCGAAACCTTGGAGTACGGCATCGCATCGACTGCTTACCGCGCCCGTCGCCCTTTTCATCCCCAACGATTCTTCAACTTTATCGACCGCCCATGGACCAATGGAACACTCCTGCGCTCCAAAGGTTTTTTTTGGCTCGCCAGCAAACATGAGGAAGCCGGCAGTTGGTCTCAGGCCGGCGGGTTGATGCGTCACGGCTTCGCCGGGCGCTGGTGGCGGTTCGTGCCGAAAAGCCAGTGGCCGCAGGATGAGGAGAGCATCGCCGCGATCATGAAAAACTGGCTGGCGACCTCCGGTGATTGCCGCCAGGAGCTGGTATTCATTGGTCAGAATATAGACTTCGCGCTGCTCGCCACCGAACTGGACGCTTGCCTGCTAACAGACGCGGAGATGAGCCTGGGCATCGAGCGCTGGCGGCAGTTGCCAGACCCGTTCGGCCCGTGGCATGACGAGGTTGCGGCGTGAMPNRLPVTVLSGFLGAGKSTLLNHVLRNRDNLRVAVIVNDMSEINIDGSEVQRDVTLNRAEERLVEMSNGCICCTLREDLLEEVGKLAREGRFDYLLIESTGISEPMPVAETFTFLDEEGRSLADVARLDTMVTVVDGVNFLKDYQAAENLSTRGETLGEEDERSITDLLIEQIEFADVILISKIDLISRSEREELSAILSRLNAQAQVIPMVMGQVPLGQILDTGRFDFERAAQAPGWLRELRGEHVPETLEYGIASTAYRARRPFHPQRFFNFIDRPWTNGTLLRSKGFFWLASKHEEAGSWSQAGGLMRHGFAGRWWRFVPKSQWPQDEESIAAIMKNWLATSGDCRQELVFIGQNIDFALLATELDACLLTDAEMSLGIERWRQLPDPFGPWHDEVAANANANANANA
D1-35_04515897folE2GTP cyclohydrolase FolE2ATGAACGCGTTAACTCTGCCGGACATTGCGGCGCAGGCGTCTCGTCAAGCCATGCCGTTGGATTGGGTGGGCATGTGCGGCATCGCCGTGCCGGTGCTGTTGGATGGCCAGCGTTTGAGCGCCTCTGCCGATGCGGGCGTCAGTCTCGATGATGGCGAAGCGCGTGGCATCCATATGTCGCGCTTGTATGTGGCACTCGAAAAGCTTGAATACACCGCGCTTTCTCCGGACCTGTTACGCCGGATCCTGCAAGAGTTTCTGGATAGTCATGAGGGTTTGTCCCGGAGTGCTTCACTGACCCTGCGCACCGATCTGATGTACAAGCGCCCCGCTTTGATCAGCCCACTCGCCGGCTGGAAGCGTTATCCCATCGTTATCGAAGCCCGCCTTAAACACTCAGTGTTCCACGTGGAACTTCAAATCGAAATTCCTTACTCGTCTACTTGCCCTTGTTCGGCAGCGCTGGCGCGGCAATTGATCCAGCAGAAATTCCTCGACGATTTCGCGAATACAAATCTGGAGCACGCTGAAGTTCTCGCGTGGCTAGGTTCTCAGAAAGGTATCGTGGCCACCCCTCATAGCCAGCGCAGCGTAGCCATCCTGAACCTGCGCTTGGACGCGAAGCTCAATGAGTTTCCGGTGTTGCCGCTGATCAACGAGGCGGAGGCGGCGCTCGGCACCGCTGTCCAAACTGCCGTCAAACGCGTCGATGAACAAGCCTTCGCGCTCGCCAATGGGCAGAACCTGATGTTCTGCGAAGATGCCGCGCGGCGCTTGAATATAGCGCTGAGGCCGCTGCCCTGGATTTCCTCTCTTGACGTACGAGTCGTTCATGCGGAAAGCCTGCACGCCCACGATGCCGTCGCCCAAAGCCATTGGCAACGGGAGGAATCATGAMNALTLPDIAAQASRQAMPLDWVGMCGIAVPVLLDGQRLSASADAGVSLDDGEARGIHMSRLYVALEKLEYTALSPDLLRRILQEFLDSHEGLSRSASLTLRTDLMYKRPALISPLAGWKRYPIVIEARLKHSVFHVELQIEIPYSSTCPCSAALARQLIQQKFLDDFANTNLEHAEVLAWLGSQKGIVATPHSQRSVAILNLRLDAKLNEFPVLPLINEAEAALGTAVQTAVKRVDEQAFALANGQNLMFCEDAARRLNIALRPLPWISSLDVRVVHAESLHAHDAVAQSHWQREESPGPT0007880_447DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007880-folE2-K09007NANA
D1-35_04516669scaC_2COG1121Manganese import ATP-binding protein ScaCATGATTCGTTGCCAGGGATTGAGTTGGGGTATCCCCGGGCACCCTCTCACTCCACCTCTGCACATGGAGCGCCCGGAGGGCAGCCTGACCGCAATCATTGGCGCCAACGGATCAGGGAAAAGCAGCCTGCTGAAAGTTATCGCCGGGTTACAGAAGCCACTGACGGGGAAGGTCTCGCTCAACGTTCAACGGCGCGGCGGCGTGTCGTTCCTGCCTCAACAGCAGCACCTGGATCGGCAATTTCCCATCAGTCTGCAGGAATTGGTGGCAGCAGGTTCCTGGGGTAATCGACAGGAACCTGCCGCACGCAACCAACGACTCAAGGCGGTTCTCGACGACTGGGCCTTGAGCGGTCTGGAACACCGTCCGCTGATGGCGTTATCGGGTGGCGAGTTGCAACGGGCCCTGCTCGCGCGACTGAGCCTGACCGAAGCGCCACTCCTGTTGCTGGACGAACCCCACGCAGCCCTTGATGAAAAAGGCCAGGCACTGCTGTGGGACAACATTCAGCGATGGCATCGCGAAGGGCGCACCCTGGTGGTGGTTTGTCACGATTTGGCTGCGGTGCATCAACACATTCCCCATACCTTGCTGATCAATCCGTCCGGCTGCGTATTGGGTCGCAGCGCCGAATTGATCGCCCCGACGCCTTACACACAGGTCGCTTGAMIRCQGLSWGIPGHPLTPPLHMERPEGSLTAIIGANGSGKSSLLKVIAGLQKPLTGKVSLNVQRRGGVSFLPQQQHLDRQFPISLQELVAAGSWGNRQEPAARNQRLKAVLDDWALSGLEHRPLMALSGGELQRALLARLSLTEAPLLLLDEPHAALDEKGQALLWDNIQRWHREGRTLVVVCHDLAAVHQHIPHTLLINPSGCVLGRSAELIAPTPYTQVAPGPT0004265_1460DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_MANGANESE_RESISTANCEMANGANESE_RESISTANCE-MANGANESE_TRANSPORT,PGPT0004265-ABC_ZM_A-K02074NANA
D1-35_04517867mntCCOG1108Manganese transport system membrane protein MntCATGCTTACCGCCACCCACTTCTGGCAGCCCTTCCAGGAATTTGTCTTCATGCGCCGGGCCTTGTTGGGCGGATTGGTGTTGGCATGCAGCACGGCTCCGCTAGGCGTGTTCCTGATTTTGCGGCGCATGAGTCTGATCGGAGATGCGGTAGCTCACGGCATCTTGCCGGGCGCGGCCCTGGGTTTCTGGTTCGCCGGTCTGAGCCTGCCAGCCTTGACGGTGGGTGGCCTGGGCGCCGGCTTGAGCATGGCCGGGCTGGCGGCGTGGGTCACCCGCCGCACCGGCCTGCGGGAAGATGCCAGCCTGGCGGCGGTCTACCCCATCTCCCTCGCCGCCGGGGTGTTGATCCTCGGTATGGCCGGTAAACGCCTGGACCTGCTGCACCTGTTATTCGGCTCGGCGTTGGCGGTGGACGGCCCGACACTCACCGGCATGCTCTGGGTTTCGGCGGCCAGTCTGGTGGCGATGGCGTTGATTTACCACCCGCTGTTACTCGACACCCTGGACCCACTGTTTCTGCAAACCGTCAGCCGTCTGGGTCCACTGGCCCACGGCGTATTCCTGACCCTGGTGGTGCTGAACCTGGTCATCGGCTTCCAGGCCATCGGCGCGTTGATGGTGGTCGGCCTGATGATGTTGCCGGCGGCCGCGTCGAGATTCTGGAGTCGTCGCCTGCCGATGTTGATGCTGGTCGCTGCATTGCTCGGTTGTCTCTCGGTGTGGCTGGGCCTGCTGTTGTCCTTCTATTTTTCGCTGCCCAGCGGGCCGGCCATCGTCCTGGTGGCGGGCGCGTCATATCTGTTGTCCGTGGTATTCGGTCCGGTGCACGGCTTGCTGCGCCGCCCGCCCCTGCTTACATCCCAATGAMLTATHFWQPFQEFVFMRRALLGGLVLACSTAPLGVFLILRRMSLIGDAVAHGILPGAALGFWFAGLSLPALTVGGLGAGLSMAGLAAWVTRRTGLREDASLAAVYPISLAAGVLILGMAGKRLDLLHLLFGSALAVDGPTLTGMLWVSAASLVAMALIYHPLLLDTLDPLFLQTVSRLGPLAHGVFLTLVVLNLVIGFQAIGALMVVGLMMLPAAASRFWSRRLPMLMLVAALLGCLSVWLGLLLSFYFSLPSGPAIVLVAGASYLLSVVFGPVHGLLRRPPLLTSQPGPT0004270_755DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_MANGANESE_RESISTANCEMANGANESE_RESISTANCE-MANGANESE_TRANSPORT,PGPT0004270-ABC_ZM_P-K02075NANA
D1-35_04518876COG0803putative periplasmic iron-binding proteinATGCGCGCCCTGCTCCTGATATTCAGCTTGATGCTGTCCATGTCCCTGTCTGCTGCTGAAAAACTCAAGGTGGTGACGAGCTTCAGCATCCTTGCCGACATGACCCGACAAGTCGGCGGCGAGCATGTCCAGATCACCAACATGGTAGGGCCTGACGCTGACGCACATACCTATGAACCCACGCCGGACGACGCCAAGGCATTGCTCGGGGCGAAACTGATCATCAAGAACGGGTTGGGCTTCGAGCCGTGGCTGGATCGCCTGGTGACCAGCACCGAAACCGGTGCCCCGGTCATCAGTGCCAGCCGCGGCGTGATTCCACGCTCGCTGGAAGAAGATGGCGAGACCATTCCCGACCCGCACGCCTGGCATAACCTCGCCAACGCCGTGCTTTATGTCGGCAACATCACCAAGGCATTGGAGGCGGCCGACCCGGCGAACAAGGCCGACTACGAACGTAACAGCCAGGCGTACCTGAAGAAGATTTATGCACTACTCGCCGAAGCCAAGGCGAAGTTCGCTGCGTTGCCACCGGGCAATCGCAAAATCGTCACGTCCCATGATGCGTTCGGTTACCTGGGCCAGGCTTATGGTATCGAGTTTTTGGCGCCGCAAGGGTTGTCTACTGAGCGTGAACCGTCAGCCGCGGAAGTCGCTGCGTTGATCACCCAGATTCGTCAGGCAAAAGTCAAAGCCGTGTTCATGGAAAACATCAAGGACGCGCGCCTGCTCAAGCAGATCGCCGACGAAAGCGGCGCGCACATCGGTGGCACGCTGTACTCCGATGCCCTCGCCGCCAGCGGACCGGCCAGCACCTTTACCGGTCTCTTCGAATACAACCTCAACACACTCTACGAGGCACTGGGGCGGCCCTGAMRALLLIFSLMLSMSLSAAEKLKVVTSFSILADMTRQVGGEHVQITNMVGPDADAHTYEPTPDDAKALLGAKLIIKNGLGFEPWLDRLVTSTETGAPVISASRGVIPRSLEEDGETIPDPHAWHNLANAVLYVGNITKALEAADPANKADYERNSQAYLKKIYALLAEAKAKFAALPPGNRKIVTSHDAFGYLGQAYGIEFLAPQGLSTEREPSAAEVAALITQIRQAKVKAVFMENIKDARLLKQIADESGAHIGGTLYSDALAASGPASTFTGLFEYNLNTLYEALGRPPGPT0004275_1908DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_MANGANESE_RESISTANCEMANGANESE_RESISTANCE-MANGANESE_TRANSPORT,PGPT0004275-ABC_ZM_S-K02077NANA
D1-35_04519522hypothetical proteinATGAATGTTCGTCTGCTGGGTTTGGCCTTGGCCGTTGGCTTGTCGGTTCCTGTGGCGGCTCAGGCGCAGATGCTTCAACCAGGCTTGTGGGAATTGACGACCAGCAACATGAAAGTCGACAACCAGAACCTGCCGGACCTGCAATTGATCCTTGGTCAATTGCAGAACCAGATGACGCCTGAACAGCGGGCAATGCTCGAAAAGCAGGGCATCACCATGGGGGGCAAGGGGATTCGGGTGTGCCTGACTCCGGCACAGGTGCAGACCAATGACATCCCGCTGCAAGATCCGCAATCAGGCTGCAAGCAGCAGATCACCGAGCGTACCGGCAACCAGTGGAAATTCCGCTTCAGTTGCCCGAAAGCCCAGGGCAACGGTATCGCGACATTCCAGAGCGATCGCGAATTCACCACCAAGGTCAATGGCACGTTCAACGCCACGGGTATCCAGCAGAACGGCAGCCTGGACACCCGCGCCGTATGGCTGGGGCAGGATTGCGGGACGGTCAAGCCAAGGGCTTGAMNVRLLGLALAVGLSVPVAAQAQMLQPGLWELTTSNMKVDNQNLPDLQLILGQLQNQMTPEQRAMLEKQGITMGGKGIRVCLTPAQVQTNDIPLQDPQSGCKQQITERTGNQWKFRFSCPKAQGNGIATFQSDREFTTKVNGTFNATGIQQNGSLDTRAVWLGQDCGTVKPRANANANANANA
D1-35_045201440clsA_2COG1502Major cardiolipin synthase ClsAATGGATTTTTTTGGCCCGCATGTTTTCGGTTACCTGATCGCGCTGCTCCATACCCTCGGCTCCATCGCCGCCGTCCATGCGGTGCTGACGGTGCGTACCGCCCAGGGCTCGATTGCCTGGGCCCTGTCGCTGGTATTCATCCCCTACCTGACGTTGATTCCTTACCTGGTCTTCGGCCGCAGCACCTTCGACGGCTACATCAAGGCACGTCGACAAGCCAACGAGGAAATGCGCAAGGCGATCTCCGAGCTCAACTGGCGCCCCTGGGTCGAAGAAGCGCTGGCCGCTCGCGCGTCCCAGGCCTACGCCTCGTTACGAGCCATGCCGAAGTTGGGACGCACGCCGTGTCTGGCAAACAATCAGGTGCGTCTGCTGGTTGATGGCCCAGCTACGTTCGAAGCGATTTTCCAGGCCATCGAGAGTGCTCGCGAAGCGGTTCTGGTGCAGTTCTTCATCATCCACGACGACCGGCTCGGTCAGCGCTTGCATGCGTTGCTGCTGAAGAAAGCCGCTGAAGGTGTGGCGGTGTACCTGCTTTACGACCGTATCGGTAGCCATTCCCTGCCCCATCGTTATGTCCAGGCGTTGCGCGACGGTGGCGTTCACGTCAAAGCGTTTGCCACTCGCAGCGGTTGGCTCAACCGGTTCCAGGTCAACTTTCGCAACCACCGCAAGATCGTCGCCGTGGACGGCGTCCTGGGGTTCGTCGGCGGGCACAACGTGGGCGATGAATACCTGGGGGAAAAACCACCCCTCGCACCGTGGCGCGACACTCATGTAGAGGTACGCGGCCCAGTGGTAGCGAGCATGCAGGAGTCCTTCGCCGAGGATTGGTTCTGGGCGGCGCGTTCCCTGCCGCCGCTGATTCTGCCGGACGCTTATCCGGACGATGGAGTGCTCTGCCAACTGCTAGCCAGCGGTCCCGCCGATGCCTACGAAACCTGCTCGCTGTTCTTCGTCGAAGCCGTTCATGCGGCAAGCGAACGCATCTGGATAACCACGCCGTATTTCATTCCCGACGAAGCGGTTTTCGCGGCTTTGCGCCTGGCCGTGCTGCGTGGCGTGGACGTGCGCATCCTGCTGCCGTCGCGACCGGACCACCGGATCGTCTACGCTGCGTCCAGTCTCTATGCGTTCGAAGCGGTGCGCGCCGGCGTGCGGGTGTTTCGTTATGAGCCGGGTTTCCTGCACCAGAAAGTGGTGCTGATCGATCGGGAAATCAGCGCCATCGGCAGCGCGAACCTGGACAACCGTTCGTTCCGGCTGAACTTCGAAGTCATGCTGCTGACCGTCGACATGGCCTTTGCCAGCGAAGTCGAGCAGATGCTCGAAAAGGACTTCGCCCAGGCCCACGAAGTGGCCAAACGGGAAAGCCGGGAAACCCACCGCCTGCAAAAGGTCGGAATGCGGATCGCCCGGCTGATTTCGCCGATTCTTTAAMDFFGPHVFGYLIALLHTLGSIAAVHAVLTVRTAQGSIAWALSLVFIPYLTLIPYLVFGRSTFDGYIKARRQANEEMRKAISELNWRPWVEEALAARASQAYASLRAMPKLGRTPCLANNQVRLLVDGPATFEAIFQAIESAREAVLVQFFIIHDDRLGQRLHALLLKKAAEGVAVYLLYDRIGSHSLPHRYVQALRDGGVHVKAFATRSGWLNRFQVNFRNHRKIVAVDGVLGFVGGHNVGDEYLGEKPPLAPWRDTHVEVRGPVVASMQESFAEDWFWAARSLPPLILPDAYPDDGVLCQLLASGPADAYETCSLFFVEAVHAASERIWITTPYFIPDEAVFAALRLAVLRGVDVRILLPSRPDHRIVYAASSLYAFEAVRAGVRVFRYEPGFLHQKVVLIDREISAIGSANLDNRSFRLNFEVMLLTVDMAFASEVEQMLEKDFAQAHEVAKRESRETHRLQKVGMRIARLISPILPGPT0007725_2848DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QUORUM_SENSING_RELATED_GENESCE-QSR-CARDIOLIPIN_SYNTHESIS,PGPT0007725-clsA_B|ybhO|ywiE-K06131NANA
D1-35_045211188COQ3_2Ubiquinone biosynthesis O-methyltransferase, mitochondrialATGCTGGCTCAACTTCCACCGGCCTTGCAGAATTTGCACCTGCCGCTTCGGTTGCGGCTCTGGGACGGCCATGAATTCACGCTGGGTGCCGATCCCAGCGTCACGATTGTGGTAAAGGACCCACAAATGGTCGCGCAATTCACCCATCCCAGCCTGGATGCCCTGGGAGCGGCGTTTGTCGAAGGCAAACTCGAACTGGAGGGCTCGATCAACGAAGTCATCCGGGTGTGTGACGAGCTGAGCCAGGCTCTGGTGGACGAAGACGAGAGCCATCTGCCGGTGCGTGCGGTGCATGACAAGGAAACCGACGCCAAGGCCATCTCCTATCATTACGATCTGTCCAACGCGTTTTATCAACTCTGGCTCGACAGCGACATGGTGTATTCCTGTGCGTATTTCGAGACCGGCAGTGAAACCCTCGAGCAAGCGCAACAAGCCAAATTCCGCCATCTGTGCCGCAAGCTACGCCTGCAACCCGGCGATTACCTGCTGGACGTCGGATGCGGCTGGGGTGGTCTTGCGCGCTTTGCCGCACGGGAATTCGGCGCCAAGGTCTTCGGCATTACCCTGAGCAAGGCGCAGCTTGCGTTGGCGCGGGAGCGGGTAAAGGCCGAAGGCCTTGAGGACCAGGTAGAGCTGCAACTTCTGGACTACCGGGACCTGCCCCAGGATGGCCGATTCGACAAAGTGGTCAGCGTCGGCATGTTCGAACACGTCGGGCATGCCAACCTGGCGCAGTACTGCAAGACGCTGAACGGCGCGGTGCGTGAGGGTGGGTTGGTGATGAATCACGGGATTACCGCCAAGCACACCGACGGGCGTCCGGTAGGTCGCGGCGCGGGTGAGTTTATCGAAAAGTATGTATTCCCGAACGGTGAGTTGCCTCATCTGTCGATGATTTCCGCCGAGATCAGCGAAGCGGGGCTGGAAATTGTCGATGTGGAAAGCCTGCGCATGCATTACGCGCGCACTCTCGACCATTGGAGCGAGCGCCTTGAGGACAATCTCGAAGCCGCTTCCAGGGAAGTGCCGGAACAGGCGCTGCGGATCTGGCGTCTTTACCTGGCCGGCTGCGCCTATGCATTCGCCAAGGGCTGGATAAACCTGCATCAGATCCTCGCGGTGAAGGCCCACGCCGATGGTAGCCATGAGCTGCCCTGGACCCGCGACGACATCTACACGCCTTAAMLAQLPPALQNLHLPLRLRLWDGHEFTLGADPSVTIVVKDPQMVAQFTHPSLDALGAAFVEGKLELEGSINEVIRVCDELSQALVDEDESHLPVRAVHDKETDAKAISYHYDLSNAFYQLWLDSDMVYSCAYFETGSETLEQAQQAKFRHLCRKLRLQPGDYLLDVGCGWGGLARFAAREFGAKVFGITLSKAQLALARERVKAEGLEDQVELQLLDYRDLPQDGRFDKVVSVGMFEHVGHANLAQYCKTLNGAVREGGLVMNHGITAKHTDGRPVGRGAGEFIEKYVFPNGELPHLSMISAEISEAGLEIVDVESLRMHYARTLDHWSERLEDNLEAASREVPEQALRIWRLYLAGCAYAFAKGWINLHQILAVKAHADGSHELPWTRDDIYTPPGPT0007680_3403DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-PHOSPHOLIPID_PRODUCTIONPLANT_SIGNAL-PHOSPOLIPID_METABOLISMPLANT_SIGNAL-CYCLOPROPANE-FATTY-ACYL-PHOSPHOLIPID_BIOSYNTHESIS,PGPT0007680-cfa-K00574NANA
D1-35_045221911cadA_2Cadmium-transporting ATPaseATGACCGCGCAGAGTATCAACATGCCGATGCTGTCCACCGCCGAGCAACGCTCGGCCGCTCGACAACTGACCCTGGCGATGCTCGCCCTCGGCTTGCTTGCCCTGGGCCTGGCCTGGCGCGTCTGGTTGCCGGAGCAGGGTACCGTCAGCCAACTGCTGTTGGGGTTTGCCTCGCTGTTGGTCGCGGTGCCGGTGATGCGCTCGGCCTGGTACAGCCTGCGTTATCCAAGCCTGCATGGGATTACCGATCAATTGATCGCCCTGGCGATGCTGGGGGCCTGGGCTACCGGCGACCTGCTGACGGCGGCGCTGTTGCCGATCATCATGATTTTCGGCCATGTGCTGGAAGAGCGCAGCGTCATCGGGTCCCAGGAAGCGATCGATGCCCTTGGCCAACTGACCCGCAGCCAGGGCCGCAAAGTGCAGGCTGATGGCTCGATCATCGAAGTGGACAACGCTACGTTGCGACCCGGCGATGTAGTGGAAGTCCGCGCCGGCGACCGGGTGCCCGCCGATGGTCGGGTGTTGTCCGGCCAAGCGAGCCTCGACACCGCGCCCATTACGGGTGAGTCGGTGCCATTGGAGGCGGTGGCGGGTGTTGAAGTCTTTGGCGGCGCGATCAACCTTGACGGTCTGTTGCGCCTGGAAGTGACCCGCACCGGCGATGAATCGACGCTGGGCAAAGTCATCGCGCTGATGCAGAACGCCGAGCGCTCGAAACCGCCAATCACTCGTTTGCTTGAACGCTACGCCGGAAGTTATCTGGTGCTGGTGTTGTTGCTGGCGGCGGTTACCTGGTTTGTCACCAATGACGCCCAGGCGATGTTGGCGGTATTGGTGGCGGCGTGTCCCTGTGCCTTGGTGTTGTCAGCCCCAGCGACGGCCATCGCCGGGATTGCGGTGGCGGCGCGCCACGGCATCCTGATTCGAAGCTCAGCTTTTCTCGAGGAGCTGGCGGACCTCACCTCGTTGGTCATCGACAAGACCGGGACCCTGACCTACGGCACCCTGCGTCTGCAATCGATCGAAAGTACCGAGGACGACCCTGCCGCATTGCTGCCATTGGCCGCGAGCCTCGGATCGGCCAGCAGTCATCCGGTCAGTCGTGCCTTGGCGGGGCTGGTGACAGCGCAAGATTATCTGCCGCTGACCGATATTCACGAGCGCCAGGGCCTCGGGGTAGTTGCCATGACAGGGCTGGGGGAGGCCGCCCTTGGCCGACCCGAATTGTTTGCCCGGTTGGGCATCGAGACACCGACGGTTCCCAGTCATGACGGCCCGATCGCCGGCCTGGCACTGGACGGGCAGTTTCGCGCCTGGCTGCTGCTGGCCGACAGCGTCAAGCCGGAAGCGCGGGTGGCCATGACCGAATTGCGGGCGCTGGGGTTGGGACGCCAGTTATTGCTGACGGGGGATCGCCAGAGCGTGGCCGCCGCCCTGGCGCACGATGTCGGTATCAGCGAGCTGCAGGCACAGGCGCTGCCGGAGGATAAGCTTGACCGGGTCATGGTCGAAATCGACCAGGGTTTCCGTCCGATGGTGGTGGGTGACGGGATCAACGATTCGCTGGCGCTGAAAGCCGGTGTGGTGGGCGTGGCGATGGGCGCGGGCGGTGCCGATATCGCCCTGGCGTCGGCGGATATCGTGCTGATCGGGAGTGATCTGCGACGTCTCGGAACTTGCGTGCGGTTGAGTCGCCAGTGCCGACGCACGTTGCAGGTCAACGTGATCATCGGCCTGGGCTGGACGCTGGCCATCGTCGCTTTCGCCGCGTTCGGCTGGCTCGGAGCAGCGGGGGCGATGATCGCCGCGTTGCTGCATAACCTGAGCACATTGCTGGTGCTGGGCAATGCGGGACGACTGCTGCGGTTTCACGAGCCCTTGGCGAAGATCCAGGCGAGTAGCCGCTGAMTAQSINMPMLSTAEQRSAARQLTLAMLALGLLALGLAWRVWLPEQGTVSQLLLGFASLLVAVPVMRSAWYSLRYPSLHGITDQLIALAMLGAWATGDLLTAALLPIIMIFGHVLEERSVIGSQEAIDALGQLTRSQGRKVQADGSIIEVDNATLRPGDVVEVRAGDRVPADGRVLSGQASLDTAPITGESVPLEAVAGVEVFGGAINLDGLLRLEVTRTGDESTLGKVIALMQNAERSKPPITRLLERYAGSYLVLVLLLAAVTWFVTNDAQAMLAVLVAACPCALVLSAPATAIAGIAVAARHGILIRSSAFLEELADLTSLVIDKTGTLTYGTLRLQSIESTEDDPAALLPLAASLGSASSHPVSRALAGLVTAQDYLPLTDIHERQGLGVVAMTGLGEAALGRPELFARLGIETPTVPSHDGPIAGLALDGQFRAWLLLADSVKPEARVAMTELRALGLGRQLLLTGDRQSVAAALAHDVGISELQAQALPEDKLDRVMVEIDQGFRPMVVGDGINDSLALKAGVVGVAMGAGGADIALASADIVLIGSDLRRLGTCVRLSRQCRRTLQVNVIIGLGWTLAIVAFAAFGWLGAAGAMIAALLHNLSTLLVLGNAGRLLRFHEPLAKIQASSRPGPT0004200_3143DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_LEAD_RESISTANCELEAD_RESISTANCE-PBR_TRANSPORT_SYSTEM,PGPT0004200-zntA|cadA-K01534NANA
D1-35_045231053hypothetical proteinATGAGCGTGGTTCCACGTGGAACAAATGAGTTATCCAGCCCGTGGATTCAGGCCGGGCGTCTGGCGTTCCTCGCGCTTTATGCTGTGACTGTCCTGGCGGCGTTGGCCTGGGCATTTTCCAATGTGCGGCAAATTGATCCGCAGAGCCGGGCGGTGGTTTTGCACTTTGGTGCGTTGGACCGAATCCAGAACGCCGGTCTGTTATTGGCGTGGCCGCGTCCCGTGGAACAAGTGATTTTGCTGCCGGCGGCAGACCGGGTGCTGGAGCGCCGGGTGGAAAGTCTGCTGCGTTCGGATGCGGCCTTGCAGGCTGATCGCGTCGCCAGTTTTGCCACGCCGGTCAGCGATGAACTCGCGGGCTCCGGTTATCTGTTGACCGGCGATGCGGGCGTGGTGCAACTGGATGTGCGGCTCTTTTACAAGGTCATCGAGCCTTATGCGTTTGTCCTCCAAGGCGAACATGTATTGCCAGCGTTGGACCGGTTGGCGACGAGAAGTGCCGTGGCGCTTGCCGCGGCGCGAGACCTGGACACCATTCTGGTGGCCCGCCCCGAACTGATGGGTAGCGATACCCAGGCCGCGGAGCGACGTGAACGCTTGCGTGGCGACCTGGTGCAGGGCATCAATCGGCGCCTGGCTGACCTGACCGCGACAGGGCAGGGCTTGGGGATCGAAGTGGTGCGGGTCGACGTGCAATCGAGCCTGCCGGGGCCGGCGGTGAGCGCATTCAATGCGGTGCTGACGGCCAGCCAGCAGGCCGACAAAGCGGTCGCCAACGCCCGAACCGAGGCGGAGAAACAGACCCAGGCTGCCCGCGAGGAAGCCGACCGTGCGTTACAAGTCGCCCATGCCCAGGCCAGCGAACGACTTGCCAAGGCGTCGACCGATACAGCCTCGGTGTCGGGGCTGGCGAAAACCCAGGACAGCGATCCGCAGCTGCTGCAGCGTCTGTACCGCGAACGCATGCCCGGGATTCTTGGTCGGGCTGGTTCCGTCACCACGGTCGACCCGAAAGACGATTCTCGTCTGATCATCCAGGGAGGCGGGCAATGAMSVVPRGTNELSSPWIQAGRLAFLALYAVTVLAALAWAFSNVRQIDPQSRAVVLHFGALDRIQNAGLLLAWPRPVEQVILLPAADRVLERRVESLLRSDAALQADRVASFATPVSDELAGSGYLLTGDAGVVQLDVRLFYKVIEPYAFVLQGEHVLPALDRLATRSAVALAAARDLDTILVARPELMGSDTQAAERRERLRGDLVQGINRRLADLTATGQGLGIEVVRVDVQSSLPGPAVSAFNAVLTASQQADKAVANARTEAEKQTQAAREEADRALQVAHAQASERLAKASTDTASVSGLAKTQDSDPQLLQRLYRERMPGILGRAGSVTTVDPKDDSRLIIQGGGQNANANANANA
D1-35_045241038hypothetical proteinTTGAGCCAGTCCTCTTCCCATGGTCATCACGACCATGCCGGTCACGATCACGGTCATGCCGGGCATCATCACGGACATCACCACCATCATGGCGATCCGCAGCAAGCCGGCCCGTTTCCGTGGCGGCGGATGTGCTGGGCCGCGCTGCTGGTGGCGTTTGCCGTTGCGGCCGCCAGCCTGGTACAGGTGCGTTCGGGGGAGGCCACTGTCATTACCCGTTTCGGCAACCCGGCGCGGGTACTTTTGCAACCCGGCCTGGGCTGGCGCTGGCCGGCACCTTTCGAGGCGGCGATCCCGGTAGACCTGAGGTTGCGCACCACCTCCAGCGGATTGCAAGACGTCGGTACGCGCGACGGTCTGCGGGTCATCGTCCAGGCCTATGTGGCGTGGCAGGTCCAAGGTGACCCGGACCATGTGCAGCGCTTCATGCGCGCCGTGCAGAACCAGCCGGACGAAGCCGCGCGGCAGATTCGCACCTTCGTCGGCTCGGCGCTGGAAACAACGGCGGCCAGTTTTGATTTGGCAAACCTGGTCAATACCGACGCCAGTCAGGTGCATATCGCCGATTTCGAAGCCCAGTTGCGTCAGCAGATTGAGCAACAATTGCTCGCCACTTATGGCGTTCGGGTTTTGCAGGTGGGTATCGAACGTCTGACGCTGCCCTCGGTGACGCTCACCGCGACCGTGGACCGCATGCGTGCCGAGCGTGAAACCATCGCCACGGAGCGCACAGCCATCGGCAAACGCGAAGCGGCGCAGATTCGCTCGGCGGCCGAACGCGATGCGCGGATCATGCAAGCTGATGCCACGGTTAAAGCAGCCAGTATCGAAGCGCAGTCCCGCGTCGAAGCAGCTGAAATCTACGGCAAGGCCTATGCCGGTTCGCCGCAGCTTTATAATTTGCTGCGCTCGCTGGACACCTTGAACACCATTGTCGGCCCCGGCACCAAACTGATCTTGCGCACTGATGCGGCACCGTTTCGCGTTCTGGTGGATGGTCCACCCGCCCTGGAGCCTAAAGGTGGAACACAACCATGAMSQSSSHGHHDHAGHDHGHAGHHHGHHHHHGDPQQAGPFPWRRMCWAALLVAFAVAAASLVQVRSGEATVITRFGNPARVLLQPGLGWRWPAPFEAAIPVDLRLRTTSSGLQDVGTRDGLRVIVQAYVAWQVQGDPDHVQRFMRAVQNQPDEAARQIRTFVGSALETTAASFDLANLVNTDASQVHIADFEAQLRQQIEQQLLATYGVRVLQVGIERLTLPSVTLTATVDRMRAERETIATERTAIGKREAAQIRSAAERDARIMQADATVKAASIEAQSRVEAAEIYGKAYAGSPQLYNLLRSLDTLNTIVGPGTKLILRTDAAPFRVLVDGPPALEPKGGTQPNANANANANA
D1-35_045251959hypothetical proteinATGCAAGTCGATCTGGAAATAGACGGGGCACACGTGGCCGACTGGCCGCGCTTCCAGCGCGCCGCATTCCAAGGGCTGCGCTTGAAGCGGATCGCGCTCGTACTGGGCGGCCTCGCGGGGCTGGGGCTGGTGTCGGCGTTTTTCATCGGGCTTTTTTCGCCACAATCGATATGGTCGGCGTTGCTGGTGAGCCAAGGCGCGGCTTTATCGGTGCTGGTGGCCGGATTGCAATCGGCCTGGTGGATCACGCAATGGCGTAGCAAGGCCCTGCTGCCGATGGTGGATATCCTGCCGGTCGAAGACGAGCCTGTTGATAACTCGGGTTGGTACGAGCGCCTGCTTGAGCGGATCAGCGCGCGCTGGATCGGTCTGCTGCAGCAAATCGGCGGACCGCTTCTGTGGCTTGCCGGCTGGGCGCTGCTGTCGTTGCTGGTTCTGGAGAAAACCTGGGACTTGGCGTTGCCTGCCGCTTCGCTTGGCGTGGCGGCCAGCGTCGGCGCGGTGCTTTCGTTAGTGCTGGCGTTCGGGTTGCTGGTGCTCGAGCGCCAACTGGCTCAACAGTCGCCGATCGAATGGCCCGAAGCCGCGCCGCTGGCGCAACTGACACGGGTGCCGATCATCGTGCTGGTACTGGCTGCCGTGTGTCTGCTCTTCGCCGGGGAGGCGTCCCTCTGGCCGGTACGCCTGGCGGTGCTGATCGGATTGTTGCCGGGCCTGGTGGCGGTGGAGTTGTTGCTACGCGCGCTGCTGGCGTTATTCAGCCCGCGCCGGAACACCTTGGAACCGGCGCTTCTGGGACGCAGTGTGGTCGCCGATCTGCTGCGCTGGCCGCCGCGACCGCTGTTGGCCTTGCAGCATGAGTTGCACAATCGTTTTGGCATCGACCTGCGCCAGATCTGGGCGTTCAGCTACATGCGCCGGGCATTTGTTCCGGTGCTGGCATTGGTGGCGCTGGTCGGGTGGCTGCTGACCGGCGTGCATGAGGTGCCGCTGCAAGGGCGCGGCATCTATGAACGTTTCGGCAAGCCGGTACAGGTCTTTGGTCCGGGCCTCCACGCGGGTTTGCCATGGCCGTGGGGCAGGGTATTGAGCGTCGAGAACGGTGTCGTCCACGAGTTGGCTACCAGCGGCGACGGCAAGACGGCCTCGGTCGCGGAACCGGCAGAGGGACCGGCTCCGGCTATCGCCAATCGGTTGTGGGATGCCAGCCACGTGAATGACAAATCCCAGGTCATCGCCAGCCGTCGCGCGGATCAGCAGAGCTTCCAGATCGTCAACATGGACGTACGCTTCGTCTATCGCATCGGCCTGACGGATGCAGCGGCGCTGGCGGCGACTTACCACAGTGCGGATGTGCCGACGCTGATTCGCAGCACGGCCAGCCGCGTCCTGGTGCATGAATTTGCCTCGCGCACGCTGGATGGCTTGCTGGGCGCGGACCGTGTCAGCCTGGCGGAGGAAATCGGTCGCGCTGTACAGGCCGATCTGCAATCGCTCGACAGTGGCGTAGAGATTCTTGCGACAGTGGTCGAGGCGATCCATCCGCCGGCCGGCGCAGCCAATGCCTACCACGGTGTGCAAGCGGCGCAGATCGGTGCCCAGGCGTTAATCGCCCGCGAGCGTGGCGCCGCTGCGCAGCAGGTCAACCAGGCGCAACTGCAAGCAAGCACCGCCAACGACCAGGCCCAAGCCACGGCGCGAGAAATCAACGCCACTGCCCAAGCCGCCGACCTGCGCTTTCGCGCCGAACGCCAAGCCTACGCGACGGCTGGCCATGCCTTCGTGCTGGAGCAATACCTCGGTCAACTGAGCCAGGGCCTCGGCAGCGCCAGCTTGCTGATCCTTGACCATCGCCTGGGCGGCAACGCCAACGCCCCGACCATTGACCTGCGCACTTTCACGCTGCCGGCGGATCCCGCATCGCCAAACCAACCTGTCCAGCCAGGAGCTGCCCATTGAMQVDLEIDGAHVADWPRFQRAAFQGLRLKRIALVLGGLAGLGLVSAFFIGLFSPQSIWSALLVSQGAALSVLVAGLQSAWWITQWRSKALLPMVDILPVEDEPVDNSGWYERLLERISARWIGLLQQIGGPLLWLAGWALLSLLVLEKTWDLALPAASLGVAASVGAVLSLVLAFGLLVLERQLAQQSPIEWPEAAPLAQLTRVPIIVLVLAAVCLLFAGEASLWPVRLAVLIGLLPGLVAVELLLRALLALFSPRRNTLEPALLGRSVVADLLRWPPRPLLALQHELHNRFGIDLRQIWAFSYMRRAFVPVLALVALVGWLLTGVHEVPLQGRGIYERFGKPVQVFGPGLHAGLPWPWGRVLSVENGVVHELATSGDGKTASVAEPAEGPAPAIANRLWDASHVNDKSQVIASRRADQQSFQIVNMDVRFVYRIGLTDAAALAATYHSADVPTLIRSTASRVLVHEFASRTLDGLLGADRVSLAEEIGRAVQADLQSLDSGVEILATVVEAIHPPAGAANAYHGVQAAQIGAQALIARERGAAAQQVNQAQLQASTANDQAQATAREINATAQAADLRFRAERQAYATAGHAFVLEQYLGQLSQGLGSASLLILDHRLGGNANAPTIDLRTFTLPADPASPNQPVQPGAAHNANANANANA
D1-35_045261401lpd3COG1249Dihydrolipoyl dehydrogenase 3ATGAGCAATTACGACGTGATCATTCTGGGCGGCGGCCCCGGCGGTTATAACGCAGCGATCCGGGCCGGACAGTTGGGGTTGAAGGCGGCCTGCGTGGAAGGCCGTGCCACCCTCGGCGGCACTTGCCTGAACGTCGGTTGCATGCCTTCCAAGGCGTTGCTGCACGCCTCCGAACTGTACGAAGCAGCCAAGGGCGCGGAATTCGCCCAGCTGGGCATCAACGTCAGCCCCACCCTCGACCTCGCACAAATGATGAAACAAAAGGATGAAAGCGTCGCGGGCCTGACCAAGGGCATCGAGTTTCTGTTTCGCAAAAACAAGGTTGACTGGATCAAGGGCTGGGGCCATATCGACGGCCCCGGCAAAGTCACCGTCACCGGTGAGGACGGTGGCAAGACCGAACTGAGTGCCAAGGACATCGTCATCGCCACCGGCTCCGAGCCGACGCCACTGGCGGGGGTCGACATCGATAACCGGCGCATTCTCGATTCCACCGGTGCGTTGTCCCTGAGCGAAGTGCCTCGGCACCTGGTGGTGATCGGCGCTGGCGTCATCGGCCTTGAACTCGGTTCAGTCTGGCGGCGCCTGGGTGCCGAGGTCACCGTCGTGGAATACCTCGATCGCATTTGTCCAGGCGTCGACGGCGAAGCCGGCAAGACCCTGCAGCGGGCCCTGGCCAAGCAGGGCATCCAGTTCAAGCTGAGCGCCAAGGTGACCCGCGCCGTTTCCTCGGCGAGCGGCGTGCAACTGCAAATTGAACCCGCGGCCGGAGGCGAGGCGCAAACCCTGGACGCTGACTACGTACTGGTTGCCATCGGCCGTCGGCCTTATACCCAAGGCCTGGGGCTGGAAAATGCAGGATTGGCGACCGACCAACGCGGCATGCTCGCCAACCAGCGCCACCGCACCAAAGCGCCCGGCTTCTGGGTGATCGGCGACGTGACGTCCGGACCGATGCTTGCGCACAAGGCCGAAGACGAGGCCATGGCCTGCATCGAACAGATTGTTGGCAAGGCCGGCGAGGTCAATTACGACTTGATCCCCAACGTCATCTATACCCGCCCTGAACTGGCCAGCGTCGGCAGGACCGAAGAGCAGCTCAAGGCCGAAGGCCGCGCCTACAAGGTCGGGAAATTTCCGTTCACCGCCAACAGCCGGGCGAAGATCAATCATGAAACCGAGGGGTTCGCCAAGGTATTGGCTGACGAGCGCACCGACGAAATTCTCGGCGTGCATCTGGTAGGCCCGAGCGTCAGCGAGATGATCGGAGAGTACTGCGTAGCGATGGAATTCGGTGCCTCGGCCGAGGACATCGCTCTGATCTGCCACCCTCACCCCACTCGCTCGGAGGCGTTGCGCCAAGCAGCGATGAACGTGGAGGGGATGGCGACGCAGATGTAGMSNYDVIILGGGPGGYNAAIRAGQLGLKAACVEGRATLGGTCLNVGCMPSKALLHASELYEAAKGAEFAQLGINVSPTLDLAQMMKQKDESVAGLTKGIEFLFRKNKVDWIKGWGHIDGPGKVTVTGEDGGKTELSAKDIVIATGSEPTPLAGVDIDNRRILDSTGALSLSEVPRHLVVIGAGVIGLELGSVWRRLGAEVTVVEYLDRICPGVDGEAGKTLQRALAKQGIQFKLSAKVTRAVSSASGVQLQIEPAAGGEAQTLDADYVLVAIGRRPYTQGLGLENAGLATDQRGMLANQRHRTKAPGFWVIGDVTSGPMLAHKAEDEAMACIEQIVGKAGEVNYDLIPNVIYTRPELASVGRTEEQLKAEGRAYKVGKFPFTANSRAKINHETEGFAKVLADERTDEILGVHLVGPSVSEMIGEYCVAMEFGASAEDIALICHPHPTRSEALRQAAMNVEGMATQMPGPT0001380_6296DIRECT 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
D1-35_045272151hypothetical proteinATGTCTACCCGTAAGTGGCCTCGTCGCCTGCTGTGCCTGAGCCTCGGTTTACCGCTGTGCCAGGCATTGGCCTGCGGGCCGGATTTTCCGATGCGCCTGCTGGATAACCGGGCCCAATCGCTGGCGGAGCTGCCCGAGGGCAGCTTTCGCTTCGAGGTCAGTCGTCTCGGCCAGGCCATCGCCGGATTGAAGCCGGCTACGGAGGCGACACGCAACCCTGACTACAGCTACGACGATGTGGCTTCCTACGTGGACCAACGCAACAAGGCCGAACAGCTTGGCCTGACCCCACCGCAGCAAGCCGTTGTGGAGCGCTTGCGGGCAATCAGCGATATCGAGCAGATCGCCGCCGAAGCGGCCAACCTGCCCGCCGAGCTGCGGCTGTACGCAATCGGAGCGGCAGCGTTCAACGCTGGCGATCATCTGCGCGCAGCCGAATCATTCCAGCAACTGCTGGCGCTGCCGGCCGACGAGCGCCGGATGCGCAGTACCTGGGCGGCGTACTCCCTGGGGCGGGCGCTGTTCGCCATGAGCACCGAGGCTGGCCGTGGCCAACCGGCTGCCTTGCGGGATCAGGCACGGCAGGCGTTCCGCCAGGCTCGCGAATTGACTATCGCCGGCTTCAGCGACCCCTTGGAGCTGGGCGTCGCCAGTCTGGGCGAAGAAGCCAGGGTGGCCTACACCGCCGATGACTGGGACAGCGCCATCGGACTGTATGCGACCCAGAATCTGCAAGGCTCCCCGGTTGGCTACAGTTCGCTGCTGCAGTTGGCGGGCGGCCTCAGCGTCGAGTCGGAGGAGCGCCTGGGCGAATTGCTCAAGGCCAAGGCCGTGCAGCGCCTGGTGACTGCTTATCTGCTCAGCCGCGTCGGCTGGTGGGACGGCGAAGAACCCTCCGGCGAGAAAACCCTCCTCAAGCTGTTGCAAGCCAGCGCCCAGGGCAACCTCGATGATGCCGACCGCTTGGCGGCAGTGAGTTATCAACACGCTGACTACGACAGCGCGAAAGCATTTGCACAAAAGGCCGGCGACAGCGGACTGGCGTGGTGGGTAAGGGCCAAGCTCGCGCTGCGCGAAGGCGACAAATCCGCTGCGGCCGCCGCCTATGCCAAGGCCGCCCAGGCCTTTCCGAAGGACGAATCCTGGGGCGACCGCCGTACGCCGGATTGGGACTACGAGACGGTACAACCCAAGTGCCGGATCGAAGGCGAAAGCGCGATCCTGGCCTTGCAGAGAGGCGACTACCTGCAGGCTTTCGATCAGCTTTATCGCGGCCAGAACAACTATTGGTACGACGCCGCAACGGTCGCCGAGCGTGTGCTGACCGTCGAGGAGCTCAAGCAGTACGTCGACGCCCAGGTTCCGGCACCGCCGCCGTTGAGCCAGGAAGATCGAGACAACTACGTACAGTTGTCGGTGGCGGCGAACCTGCGCAACCTGCTGGGGCGTCGTTTGCTGCGCGAAGGACGCTACGACGAGGCGCCGGCTTATTTCGACAATCCCGAGCTGCAGAACAAGGCCCGCACCTATGGGCAGTTGCGCCAGGATGCGGAATCCAAATGGTGGCCGACCAGCCGGGCCGAGGCGTATTTCAAGGCGTCGGTGATCGCACGCAGATCAGGAATGCAATTGCTGGGCTACGAAATGGCGCCGGATTACGCCAGCCTGGACGGCAACTACAGTTTTGAGCCGGTGGAGCTGAAGGTCGGACCGCTGGTGGCCGACGGCGAGGTCCAGCGCCAGCAGGCCAGTGCCGCCCAACCGGACATGCGTTACCACTACCGTTTTGTCGCCACGGCGCTGGCCAGCCAGGCCGCCGATCATCTGCCGCACACCAGCCAGGCGTTTGCGGCGGTGCTGTGCAGGGCGGTGGGGTACAACTCAAGCCTGGAAGAACAAAGCGCGCTGTATCAGCGTTATGTGAAGGACGGCCCCTACGTGGAATGGGCCTGGGATTTCGGCCGTCAGTGCGAGGAACCGGCATTCGACCAGGCGGACAAGCGCTATGTCACTCAGGCCCTGACGCCGATTCGCTCGGCGCTGCGGCCGTTCAAGACAGGGTTGGAAGTGGGTGGCGCGGTGCTGGTGGTGGCCGTGGTGCTGGCGCTGATCAGTCGGCGCAAGCGCAAGGCTCGCATGGCAGCGAGCTGAMSTRKWPRRLLCLSLGLPLCQALACGPDFPMRLLDNRAQSLAELPEGSFRFEVSRLGQAIAGLKPATEATRNPDYSYDDVASYVDQRNKAEQLGLTPPQQAVVERLRAISDIEQIAAEAANLPAELRLYAIGAAAFNAGDHLRAAESFQQLLALPADERRMRSTWAAYSLGRALFAMSTEAGRGQPAALRDQARQAFRQARELTIAGFSDPLELGVASLGEEARVAYTADDWDSAIGLYATQNLQGSPVGYSSLLQLAGGLSVESEERLGELLKAKAVQRLVTAYLLSRVGWWDGEEPSGEKTLLKLLQASAQGNLDDADRLAAVSYQHADYDSAKAFAQKAGDSGLAWWVRAKLALREGDKSAAAAAYAKAAQAFPKDESWGDRRTPDWDYETVQPKCRIEGESAILALQRGDYLQAFDQLYRGQNNYWYDAATVAERVLTVEELKQYVDAQVPAPPPLSQEDRDNYVQLSVAANLRNLLGRRLLREGRYDEAPAYFDNPELQNKARTYGQLRQDAESKWWPTSRAEAYFKASVIARRSGMQLLGYEMAPDYASLDGNYSFEPVELKVGPLVADGEVQRQQASAAQPDMRYHYRFVATALASQAADHLPHTSQAFAAVLCRAVGYNSSLEEQSALYQRYVKDGPYVEWAWDFGRQCEEPAFDQADKRYVTQALTPIRSALRPFKTGLEVGGAVLVVAVVLALISRRKRKARMAASNANANANANA
D1-35_045281194hypothetical proteinATGACTTTTATCCACAGGCTGACGCTGACCTTCGCCGCGTTGTTTTTGAGCGGCTGCGACCAGCCCCCTCTGCCTGCCCTCGATCAGCAACTTTATATCTGGCAACGCCAGTGGACGCCGGCCCATGAACTGGCGCTGAGCCAGAGCCATGCGGACTTTTCCAGCCTCCGGGTGCTGGCGCTGCAAGCCTTCCCGGGCGCCGGCTGGAGCCACGCGCGGATCGATCCGGCATTGCTCAAGGCTGACGGTCGGCCGTTGATAGCGGTGATTCGCCTGGATGGCCAGCTCAAATCCCTCGATCAGGACGAAATAATCTCGCGGATCCAGCAGTTGCTGGCCGACTGGCAAACCCTGGACCTGGCGCCGATGGGCATCGAAATCGACCACGATGCCGGTAACGCAAGGCTGCCAGCCTATCGGAACTTCCTTGTCCGCTTGCGGCAGGCCTTGCCGGCCGCCTTGCAGCTCAGCATCACCGCGCTGCCGGCCTGGCTCGACAGCCCCGAGTTGCCCGGTCTGTTAAAGGTTGTGGACAGCAGCGTCCTGCAGGTACACGCGGTCAGCGATCCGCGTCAGGGGCTTTTCGATCCCAGCCAGGCTCAACGTTGGGCCCAGCGCTGGGGCGACCTCACCACACGCCCGTTCTACCTGGCCTTGCCGGCCTATGGCGTGGCGCTGCTGACCGAAGAAAACGGCGCACCGGTGGTGGAAAGCGAAGTGCCCATCGACCGCGGCGGCGAGCGCCGGGAGTTGCTCGCCGATCCACGACAAGTGGCCGGGCTTGTCGCGCAACTGCGCGCCGAGCCGCCAGAGCATCTGGCCGGATTGATCTGGTTTCGCCTGCCGCTGGCGGGGGACCGGCGCGCCTGGAGCCTGGCCACTCTTGGCGCGGTGGCGCGTGGTGATCGCCTGGACAGTCATTTGACTCTGCGCCTGCAAGAGCAGGGCGGACTCTATGACATCCGGCTGGTGAACCAGGGCAATCTCGACAGCCCCTGGCCGCAGCGGCTGACACTCGCCGTGGGCGGGTGTGATGGCGTCGATGCCTTGGCCGGTTATACGTTGCAACAAACCCCTGGACTGCTTACCTTCACCCGCATCCAGGAAGGCCGCTTGGCTGCCGGTGCCCAACGGGCAATCGGCTGGGCGCGCTGTACAAAAATCGACCAAGGAGGAATGAATGTCTACCCGTAAMTFIHRLTLTFAALFLSGCDQPPLPALDQQLYIWQRQWTPAHELALSQSHADFSSLRVLALQAFPGAGWSHARIDPALLKADGRPLIAVIRLDGQLKSLDQDEIISRIQQLLADWQTLDLAPMGIEIDHDAGNARLPAYRNFLVRLRQALPAALQLSITALPAWLDSPELPGLLKVVDSSVLQVHAVSDPRQGLFDPSQAQRWAQRWGDLTTRPFYLALPAYGVALLTEENGAPVVESEVPIDRGGERRELLADPRQVAGLVAQLRAEPPEHLAGLIWFRLPLAGDRRAWSLATLGAVARGDRLDSHLTLRLQEQGGLYDIRLVNQGNLDSPWPQRLTLAVGGCDGVDALAGYTLQQTPGLLTFTRIQEGRLAAGAQRAIGWARCTKIDQGGMNVYPNANANANANA
D1-35_04529627yfcG_2COG0625Disulfide-bond oxidoreductase YfcGATGAACCCTATCAAGCTCTATCACTTCCCACTGTCCGGCCATGCGCACCGTGTCCAGCTGATGCTTTCCTTGCTTGAGTTGCCGGTCGAGGTCAATTTTGTCGACCTGGCCAAGGGCGCGCACAAACAAGCGGATTTCCTCGCAATCAACCCGTTCGGCCAAGTACCGGTGATCGATGATAACGGTGTGGTACTGGCCGACTCCAACGCCATTCTGGTGTACCTGGCAAACAAGTACGGCGACGGCCGCTGGCTGCCAACGGACCCGGTCGGCGCCGCTCGCGTCCAGCGCTGGTTGTCGGTAGCGGCCGGGCCATTGCATGCCGGACCGGCCACCGCGCGCCTGATCACCGTGTTCGGTGCTTCTCATAACGCCGAGGATGTGATCGCACGTTCCCACAACCTGCTCAAAGTCATCGACCAGGAACTGAGCAACAGTGCCTATCTGGTCGGTGACATTCCGACCATCGCCGACATCGCAGGCTACAGCTATATCGCCCATGCGCCAGAAGGCAACGTTTCGCTGCAGGACTATGCCCATGTGCGCGCGTGGCTGGCGCGGATCGAAGCCTTGCCTGGGTTCGTGGGGATGCCGCGTACCGTTGTCGGCTTGCAAAAAGAGGCCTGAMNPIKLYHFPLSGHAHRVQLMLSLLELPVEVNFVDLAKGAHKQADFLAINPFGQVPVIDDNGVVLADSNAILVYLANKYGDGRWLPTDPVGAARVQRWLSVAAGPLHAGPATARLITVFGASHNAEDVIARSHNLLKVIDQELSNSAYLVGDIPTIADIAGYSYIAHAPEGNVSLQDYAHVRAWLARIEALPGFVGMPRTVVGLQKEAPGPT0013170_17204DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013170-gst-K00799NANA
D1-35_04530903dmlR_21HTH-type transcriptional regulator DmlRATGGACAGGTTTCAGGAAATGCAGGTGTTTGTCGCCGTCGCCCAGGACTGCGGATTTTCAGCGGCTGCCCGGCGCCTGGGCTTGTCGGCGGCGAGCGTGACACGCGCCGTGGCGGCACTGGAACAGCGTATCGGTACGCCGCTGCTGGTTCGTACCACCCGCAACGTTTACCTGAGCGAAGCGGGCCAGCGCTTTCTTGAGGACTGTCGGCGGATCCTCGGCGATTTGCAGGAGGCCGAGGATTCGGCGGCCGGCAGCCACGCCCAGCCCCGCGGACAACTGACGATTACCGCGCCCGTGCTGTTCGGCCAGTTGTTCGTCATGCCGGTGCTGGTGGATTACCTGGGGCGATTTTCCGAAGTTTGCGTCAACGCCTTGCTGCTGGATCGCACCGTCAGCATGGTCGAGGAGGGCATTGATGTCGCGGTGCGCATCGGCGAGTTGCCCGACAGCAGCCTGCATGCCGTGCGTGTCGGCGAGGTGCGGCGCGTGGTGTGCGGTTCTCCGGAATTCTTCGACCAGCATGGCCGACCCGAGCATCCGCAGGATCTGGAGCGGATGCCCGTGGTGTCGTCATCAGCCATCGGCCAGGTCAGGAACTGGACGTTCATCGAGGCCGGTCAGCCGTTGTCGGTCCGGCCCACGCCCCGGCTCGTGGTCACGGCCAACCAGGCTGCCATCGGCGCGGCGTGCCAGGGGTTGGGGATGACCCGGGTCCTGTCCTATCAGGTTGCGAACAATATCGCGGCCGGCGAGCTGGAAATCGTCCTGGCCGATTTTGAGCTGCCGCCATTGCCAATCCACGTGGTGTATCAGGGCGGGCGCAATGCGCCGGCGCGGGTTCGCAGTTTTGTCGACTTCATGGTGAGTGCAATACGAGAACATCCAGCCTTGAAGAACTGAMDRFQEMQVFVAVAQDCGFSAAARRLGLSAASVTRAVAALEQRIGTPLLVRTTRNVYLSEAGQRFLEDCRRILGDLQEAEDSAAGSHAQPRGQLTITAPVLFGQLFVMPVLVDYLGRFSEVCVNALLLDRTVSMVEEGIDVAVRIGELPDSSLHAVRVGEVRRVVCGSPEFFDQHGRPEHPQDLERMPVVSSSAIGQVRNWTFIEAGQPLSVRPTPRLVVTANQAAIGAACQGLGMTRVLSYQVANNIAAGELEIVLADFELPPLPIHVVYQGGRNAPARVRSFVDFMVSAIREHPALKNNANANANANA
D1-35_045312214mdoB_2Phosphoglycerol transferase IGTGAATTTTCTTTACCGAGCTCTCACCCACCCCCACGCTGCCATCTGCGCCCTGGCCGGATACGTGCTCCTGGTCCCCATGGGCCTGCGCCTCCTGCTCGGCTGGTCCGACCCGCTGGGCTATCTGTCGGACATGGCCATCGGCAGCTTGTTGATCGTGCTCTTGCATCGACGCCCCTGGTGGCTGGCATTGCCGGTTTTGCTGGCCTGGTGTGCGCTGACCCTGGTCAGCATCGAATTGGTCAATGCCGTCGGAAGGATGCCCAGCCCGGCGGACATTCAATACCTGGTCGATCCGCAATTCGTCGAGAACTCCACCAGCGGCGGCTTTGCGCATCCCTGGCTCGCCGCGATCATGCTGGCAGCCCTGACACTCTGGCTGGCCAACCGATGGGCCAATCGGAGCCGCCAGGCACCTCCCTTGCCCCGCCACGCCTGGGCGATCCCCGTGGTGTTTTTCCTGGCCCACGGCACGGCGCAAACCTGGCGGCCCAGCGAGGCAGACCAGTGGAATCTGTTCAACCTGCCTCATCAGCTGATGACGGCTGGCGTCGCCGCCGGCCAGGAGCACTTCGAACAATGGCTCGCAGGTGATACGCCGGACCAGGCGCCACCGATGCACGGGCTTACCCGGCTCGATCTGGATGGGCAGAAACTGCTCACCGAGCCGGGTAGCGCGCGCAATGTGCTGATCATCGCCCTGGAGGGCATTCCCGGTGCCTATCTGGAAACCAACCGCCAAGCGCTGAAAAGCAGTTATCAGGAAAACCTGATGCCGCGCCTCAGCACCTGGGCCGAGCGCGGCATGAACACGCCCGACTACGTGTTGCACAGCCACCAGACCATCCGTGGCCTGTACGCAATGCTCTGCGGTGACTACGACAAGCTCGACGATGGCACGCCCAAGGGCGTCGAAATGCTCAACCAGCGCCAACGCAACCAGGCCTGCCTGCCGGCCCAATTGCGCAAGCACGGCTTCTCGACTCATTTCCTGCAGGGTGCCGGCCTGCGGTTCATGGCCAAGGACCGGATCATGCCGCATATCGGCTTCGACACGACCCTGGGCATGGAGTGGTTCACCCGACCGGCCTACCTCGAGTTTCCCTGGGGCAAGGACGACAAGACCTTTTTCGAAGGCGCGCTGGACTACGTCGGACAACTGCAACAGGCAGACAAACCCTGGATGCTCACCCTGCTGACCGTGGGCACGCATCAGCCGTACTCGGCGCCAGATGACTACCTGGAGCGCTACGACACCGCCAAACAGGCCGCCGTCGGTTATCTGGACGACGCGCTGGACAGCTTCCTGACAAACCTCGAACGCCAGGGCATCCTGGAAAATACCCTGGTGGTCATCACCTCGGACGAATCCCATGGCATCGACGATGTGCGCCTGGCATCGTCCTGGGGCTTCAACCTGACGCTGGCACCGGAGCCGTTGCCGCGAACCAAGCAAGGCGTCCATGGCCACGTCGACCTGAGCGCGTCGATCCTCGATTACTTCGGATACGCAGTGCCCACCTCGTTATCCGGCCGCTCTCTGTTCCGGGACTACGCGGCGGGCCGGGAAATCATGTCGTTCACCAACGGCAAGCTGCGCTACCACGATGGCAAAGGCACCTTTACCGAATGCGATTTCCAGCAGCGCTGCCGGTATTACGCCAGCGAAGGCTTCATCGCCGACCGCGCCACGTACCTGGGTCAATACAGCGGCCAGCGCGCGAGGCTGATCAGCGCCCGGGCTACCGCCCTGGACCAGACACTGCTGAGTTCATCGGTGAACCAGCATTACCAGTTCGGCAGCGCCGAGAAAATCACCCTTCCCGCCCAGGTCTCCAACGACTGGACCGACAACCTGATCGGCGCCCAATACCTGGAAATGCCCAAGGGCACCCGCACCCGCGTCAGCCTGACCATTCGCGCCGTGGAAAACGATCACGCCGCCTACATTTCCCTCAAGGCCAAGGAGTTCGAGCAGGACGTGACGATGGACTTGCCCACCGACGTGACGGTAACCGCCGATCAACCGCTGGTGATGGACATTCATTTCGACAACCCGCAACCGCGCAAGGCGTTTTCCTTCCACTTGCTCGGCCATGGCACAGGCGCGATCGAAATCAGCGACTTCAGCGTCGTCACCGAACTGCTGGAGCAGACCGACCAGCCGGAGTACCTGGACGATATGCAGGACGACAGCGAGGCACAGTCCAGCTGAMNFLYRALTHPHAAICALAGYVLLVPMGLRLLLGWSDPLGYLSDMAIGSLLIVLLHRRPWWLALPVLLAWCALTLVSIELVNAVGRMPSPADIQYLVDPQFVENSTSGGFAHPWLAAIMLAALTLWLANRWANRSRQAPPLPRHAWAIPVVFFLAHGTAQTWRPSEADQWNLFNLPHQLMTAGVAAGQEHFEQWLAGDTPDQAPPMHGLTRLDLDGQKLLTEPGSARNVLIIALEGIPGAYLETNRQALKSSYQENLMPRLSTWAERGMNTPDYVLHSHQTIRGLYAMLCGDYDKLDDGTPKGVEMLNQRQRNQACLPAQLRKHGFSTHFLQGAGLRFMAKDRIMPHIGFDTTLGMEWFTRPAYLEFPWGKDDKTFFEGALDYVGQLQQADKPWMLTLLTVGTHQPYSAPDDYLERYDTAKQAAVGYLDDALDSFLTNLERQGILENTLVVITSDESHGIDDVRLASSWGFNLTLAPEPLPRTKQGVHGHVDLSASILDYFGYAVPTSLSGRSLFRDYAAGREIMSFTNGKLRYHDGKGTFTECDFQQRCRYYASEGFIADRATYLGQYSGQRARLISARATALDQTLLSSSVNQHYQFGSAEKITLPAQVSNDWTDNLIGAQYLEMPKGTRTRVSLTIRAVENDHAAYISLKAKEFEQDVTMDLPTDVTVTADQPLVMDIHFDNPQPRKAFSFHLLGHGTGAIEISDFSVVTELLEQTDQPEYLDDMQDDSEAQSSNANANANANA
D1-35_04532597nudKGDP-mannose pyrophosphatase NudKATGACACAGCCAATCAGCACGCAAGACCGTGTGCGCATCAAGAATGTCGAAGTTCTCTCGGACAACTGGTACATCCTGCGCAAGACTACCTACGATTACCTCGGCCGCAACGGCCAATGGCGCGAGCTGACGCGCGAAACCTATGACCGTGGCAACGGTGCGACCATCCTGCTCTACAGCAAGGCAAAGCAAACCGTAGTGCTGACCCGGCAATTCCGCTTCCCGGCGTTCGTCAACGGGCACGACGGCCTGTTGATCGAAACCTGCGCCGGCCTGTTGGACAACGACGACCCGCACACCTGTATCCGCAAGGAAACCCAGGAGGAAACCGGCTATATCGTGCGGGACGTGCGCAAGGTGTTCGAGGCGTTCATGAGCCCAGGGTCGGTGACCGAGCGTGTGCATTTTTTCGTCGGTGAGTATTCCGATGAGGACAAACAGCACGAAGGCGGCGGGCTTGAGGCGGAGGGCGAGGAAATCGAGGTGCTGGAGATGCCTCTCGATCAAGCCTTGGGCATGATCGAAACCGGCGAGATCTGCGACGGCAAGACCATCATGTTGCTGCAGTACGCCAAGTTGCATCGGTTGCTGGATTGAMTQPISTQDRVRIKNVEVLSDNWYILRKTTYDYLGRNGQWRELTRETYDRGNGATILLYSKAKQTVVLTRQFRFPAFVNGHDGLLIETCAGLLDNDDPHTCIRKETQEETGYIVRDVRKVFEAFMSPGSVTERVHFFVGEYSDEDKQHEGGGLEAEGEEIEVLEMPLDQALGMIETGEICDGKTIMLLQYAKLHRLLDPGPT0017890_153DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0017890-nudK-K12945NANA
D1-35_04533834nadE_2COG0171NH(3)-dependent NAD(+) synthetaseATGACTTCGCTTCAGCAAGAGAGCATTGCCCGGGAGCTGGGCATCGACCGTCGACTGCAACAGGGCGGCGAAGCCGCCGAGATTGCTCGCCGCGTCGAGTTTATAAAGCAGGTGCTGCGTGAGTCGGGTTGCAAGTCCCTGGTGCTGGGGATCAGTGGCGGCGTCGACTCCCTTACTGCCGGCCGTCTTTGCCAGTTGGCAGTGGAGCAACTGCGCAATGAAGACTACACGGCGCGGTTTATTGCGGTCCGGTTGCCGTACAAGGCCCAGGCGGACGAGCGAGACGCCCAAGCGTCCTTGGACTTCATCCGGCCGGACTCGATCACCACCAGCAACATCGGTGCTTGTGTTGACGGGCTGATGGGTCATATCGCTGTCGACGGCTTGCAGCCTTCGGCCGAACTCATCGACTTCGCCAAAGGCAATGCCAAAGCCCGGGCACGGATGCTGGCACAATACGCCATTGCCAATCTCAGCAACGGGCTGGTGGTTGGCACCGATCACGGGGCAGAGGCGGTGATGGGATTTTTCACCAAGTTCGGCGACGGTGCCTGCGATTTGGCACCGCTGTCCGGGTTGACCAAAACCCACGTGCGATTGTTGGCCGACGCGATGGGTGCCCCCGCTTACTTGGTGCGCAAGGCACCGACCGCCGATCTGGAAGACCTGGCACCTGGCAAGTTGGATGAAGTGGCATATGGATGCAGCTACGAGGAAATCGATGCGTACCTGATGGGTGAAGCGGTGTCTCCCAAGGCCCGAGAAATTATTGAACGCGCTTACCAGAAAACGGCTCATAAACGCGCATTGCCACGCGTCCCGGCATCACGTTGAMTSLQQESIARELGIDRRLQQGGEAAEIARRVEFIKQVLRESGCKSLVLGISGGVDSLTAGRLCQLAVEQLRNEDYTARFIAVRLPYKAQADERDAQASLDFIRPDSITTSNIGACVDGLMGHIAVDGLQPSAELIDFAKGNAKARARMLAQYAIANLSNGLVVGTDHGAEAVMGFFTKFGDGACDLAPLSGLTKTHVRLLADAMGAPAYLVRKAPTADLEDLAPGKLDEVAYGCSYEEIDAYLMGEAVSPKAREIIERAYQKTAHKRALPRVPASRPGPT0013445_1021DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013445-nadE-K01916NANA
D1-35_045341230pncB2_1COG1488Nicotinate phosphoribosyltransferase 2ATGGACAGCGCATTCGACCCAAGCAGCGGCACTATCCAGAGTCTTCTGGACACCGACTACTACACCTTCACCATGATGCAGGCGGTCTTGCACCAGCACCCGAATGTCGAGGTGGAATACCAGTTCATCGTGCGTTCCAAGGAGCGGCTCGCTCACTTGATTCCAGACATCCGTGTCGAACTGGAGAAGCTCGCCGGGTTGCAACTACGCGAAGGAGAGCAGCGGTTTCTGTTCAACAAGCGTTTCCGTGAATACCTGACACCGGATTTCGAACAGTTTCTCGGCCTGTTTCGCTTCAACCTGCGCTACATCCACGTTTCGGAAGTCGACGGCCAACTGCACATTCGTGTCCGTGGGCCGATGCTGCACTGCATCATGTTCGAACAACCGGTATTGGCGATGGTCAGCGAGCTGCGCAATCGTGAGAAGTACCCGGAAGTCGAGTTGGCCGACGTTACTCGCAAGCTGTACCAGAAGTTTGAATGGCTGGAGAAAAATGCCAGTCGTGAAGAACTTGCCGAGTTTCGTGTCTCGGACTTCTCCACCCGCCGGCGGCTGTCATTCAGGGCCCAGCGTGAAGTAGTAAATGTCATGCGCAGCGATTTCCCCGGGGTCTTTGTCGGTACCAGTAACGCTCACCTGGCGTACGAATTCGATCTCCCCTTGATCGGCACAATGGCGCACCAATGGCTGATGGTTCACCAGCAACTTGGTCGATTGCGCGAAAGCCAGAACGCGGCATTGGAGAACTGGGTGCACGAGTATCGCGGCCGGCTCGGTATCGCGCTGACGGACTGCATCAGTACGGATTTCTTCCTCAAGGATTTCGACCTGTACTTTGCCAAACTCTATGACGGTCTGCGGCAGGATTCCGGTGACCCGATCGTCTGGGCTGACAAGGTGCTGGGGCGTTACCAGGAACTGGGCGTCGATGCGCGCACCAAGGACCTGATGTTCTCCGATGGCCTCAATTTCGAAAAATGCCTGCCGATCCTGCGCCACGTTCGTGGCAAGGCGAAATTCGGCTTCGGCATGGGCACCAGCCTGGCCTGCGACGTCGACGGCGTCGAACCGCTGAGCATCGTCATGAAACTGGTGCGGGTGCATGGCGAGCCCGTCGTCAAGTTTTCCGACGATCCGATCAAGAACGTGTGTGAAGACGCCTCATTTTTGCGCTACGCCGCTCAAGTGTTCAACGTCGCCCTGGTCAATCCACAAATGGGAGCCTGAMDSAFDPSSGTIQSLLDTDYYTFTMMQAVLHQHPNVEVEYQFIVRSKERLAHLIPDIRVELEKLAGLQLREGEQRFLFNKRFREYLTPDFEQFLGLFRFNLRYIHVSEVDGQLHIRVRGPMLHCIMFEQPVLAMVSELRNREKYPEVELADVTRKLYQKFEWLEKNASREELAEFRVSDFSTRRRLSFRAQREVVNVMRSDFPGVFVGTSNAHLAYEFDLPLIGTMAHQWLMVHQQLGRLRESQNAALENWVHEYRGRLGIALTDCISTDFFLKDFDLYFAKLYDGLRQDSGDPIVWADKVLGRYQELGVDARTKDLMFSDGLNFEKCLPILRHVRGKAKFGFGMGTSLACDVDGVEPLSIVMKLVRVHGEPVVKFSDDPIKNVCEDASFLRYAAQVFNVALVNPQMGAPGPT0013375_3305DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013375-pncB-K00763NANA
D1-35_04535648pncA_1COG1335NicotinamidaseATGAACAGCCTGACCCGGAAAACAGCTTCCTTCGATGTTGATGCGCAAAAGAGCTTTACGCCGCTGTGCCCTGATGAGCTTCCGGTGCCGGGCGGTGATGAGATTGCCGGTGAGCTGAATTTCATCGCGTCCCTGGCCAGCCTTCGCATCGGCAGCAAGGATGCCCATTCGCCCCTGGCCCCGTGGGTGGTCTCCGATCATTCGAAAATGTTCGTGCCGACCGGGCTCGAGCACGCCGACATCACCTGGGTCAGCCACTGCGTTCCCGGCACCGAAGGTTTCGCCCTGCTGGATCAACTGCCGGCCCCATACGATTACGACTATTTCGTCTGGAAGGGCGTCGAGCCGGATCTGCACCCCTATGGCGCCTGCTACCACGACTTGCACGGCAAGCTTTCCACTGGCGTGATCGAGTACCTGAAAGGGTTGAAAGTGGAGCAGGTAATTGTCGGCGGGCTGGCGCTGGATTTCTGCGTCAAGACCACCGCTCTGCAACTGGCCTCCGCTGGCTTCAAGGTCATCGTTCACCTCCCGGCTTGCCGGGCCATCAGTGAAACGGGGGCCAACCAAGCCATTCAAGACCTCGAGCAAGCGGGCGTCGCGGTTACCGCCACTCGCGAAGAAACCATCCGCTTGGCAAACGCATAAMNSLTRKTASFDVDAQKSFTPLCPDELPVPGGDEIAGELNFIASLASLRIGSKDAHSPLAPWVVSDHSKMFVPTGLEHADITWVSHCVPGTEGFALLDQLPAPYDYDYFVWKGVEPDLHPYGACYHDLHGKLSTGVIEYLKGLKVEQVIVGGLALDFCVKTTALQLASAGFKVIVHLPACRAISETGANQAIQDLEQAGVAVTATREETIRLANAPGPT0013470_380DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013470-pncA-K08281NANA
D1-35_04536132hypothetical proteinATGATGTACTTTCATGACAAGCCCTTCTCGAAAGATAATTTTCCACAGGTTTGTTTCATCGGCCGACTATTATTGGAAGCCAATCAGGTTTACATGAAGGATTTTTACTATAAAGTACATGTCGTGTACTAAMMYFHDKPFSKDNFPQVCFIGRLLLEANQVYMKDFYYKVHVVYNANANANANA
D1-35_04537558nadD_1nicotinate-nucleotide adenylyltransferaseATGTTCGAAATAGCCGTCTATGGTGGTGCTTTTAATCCCCCTCATGCCGGTCACGCCCAGGTGATGATCGAGGCCTCGAACCAGGCCAGGCGCATGTTGGTCGCCCCTAGCTTCCGGCATCCCTACGGCAAACAGATGGTCGACTATGACGTTCGCCTGAACTGGCTGGAATCGATCGTCGAACACGTCCAGCCCCTGTGCTACGCCGAAGTGCGCGCGAGCCGGGTTGAGCAGGTCGTGGCCCGTGGCGTTGAAGGCGCCATCTACAGCTATACCCTGCTCGCCCATCTCGCCGATAGCCTGGCCCTGGACGGCAAGCGGATCGCGTTGGTGGTGGGCGAGGATGTCGCGGATTTGCTGCCGACTTTCTATCGCGGCCAGGAACTGCTTGAGCGTTTTTCCATCCTTCGCGTGAGCGAAAAGATCCACGTGCGCAGCACATCGGTTCGCGAACGACTGGCCTTGGGCAAGCCGCTGCCCAGCCACTGGATAGCTCCCGGCATGAACCCGTTAAACTATGACCTTTACGCTAACCACGGAAATCGACATGCCCACTAGMFEIAVYGGAFNPPHAGHAQVMIEASNQARRMLVAPSFRHPYGKQMVDYDVRLNWLESIVEHVQPLCYAEVRASRVEQVVARGVEGAIYSYTLLAHLADSLALDGKRIALVVGEDVADLLPTFYRGQELLERFSILRVSEKIHVRSTSVRERLALGKPLPSHWIAPGMNPLNYDLYANHGNRHAHPGPT0013435_4446DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013435-nadD-K00969NANA
D1-35_04538708hypothetical proteinATGCCCACTAGCACAGCCACCGCGCGCGGTTATCTGCATACCATCGACCTCTGCGTGCTGCGCTTCTGCCGGGAGACCCAGGCGCTGGAAATCCTCCTGAACCGACGGGAAGCCGAGCCGTTCGCCGGCCATTGGGCGTTGCCCGGGATCGTGGTCAATGGCGATGTCGAAGATCTCACGCTGAACGACGCCGTGGAGCGCCTGCGCAATTCAAACAAGGTAGGCATGCCGCTGGCCTGGATCGAACAGGTCGGCACCGTCGGCGACGCGTTCCGCGACCCACGCTGCTGGTCATCCTCGACGTTCTACCTGGCGATTGCCAACGAGGCGGTCCTGCTCGCCGAGCATCAGGGATTTTTCCCCCTCAAGGATGTCGCTGATGCCTCGATCAAACTTCCTTTCGATCACAACAGCCTGGTGGCGGCGGTCCAGGAACGGTTGTTGTCCAAAGCCCTCTACAGCAGCCTGCCGCTGATGTTCCTGGGCCCGGAATTCAGCGCGCCGGAAGCGGTGGATATTTTCTCCGTGGTGCTCGGTCGTCCGGTGCTCAAGACCAGCATGCGCCAGCGTCTGCTGAAGATGACCGAGGCCGGTTATTTGCAGGAAACCGGTCGTAAAAAAGCCGGCGACGGCGGCCGACCGCAACGCACGGTGGAAAATCTCAAACCGGCCAGCGTCTATCTTTTTGATCGGTGTTTCCTGGAGTGAMPTSTATARGYLHTIDLCVLRFCRETQALEILLNRREAEPFAGHWALPGIVVNGDVEDLTLNDAVERLRNSNKVGMPLAWIEQVGTVGDAFRDPRCWSSSTFYLAIANEAVLLAEHQGFFPLKDVADASIKLPFDHNSLVAAVQERLLSKALYSSLPLMFLGPEFSAPEAVDIFSVVLGRPVLKTSMRQRLLKMTEAGYLQETGRKKAGDGGRPQRTVENLKPASVYLFDRCFLENANANANANA
D1-35_045391431COG0277putative FAD-linked oxidoreductaseATGGCGTTGAGCCCTGAGTTTATCCACAGCATCGAGCACGTCGTGGGCGCTGCGGGCGTGGTACGGGATCCGGCGCTCATGGCCAGCTATCTGACAGACTGGCGTAACGCCTATCAAGGCCAGGCCGCGCTCGTGGTCAGGCCCGCGACCACCGAGGAGGTGGCGGCAGTGGTGCGGCTTTGCCACGACGCCAGGGTGGCGCTGGTGCCCCAGGGCGGCAATACCGGTTTGTGCGGTGGCTCGATTCCGGATGCTTCCGGCAGGCAGATGGTGTTGTCTTTGACCCGGATGAAGCGTATCCGTGAAATCGACCTTGCCAATGAAACCATCACGGTCGAGGCCGGGGTGATCCTGCAGCAACTCCAGGAGGTCGCCAGCCAGGCGGGGCGCTTGTTCCCGCTATCGCTGGGGGCGGAGGGCAGTTGCACGGTGGGTGGCAATCTGGCGACGAACGCTGGCGGCACGGCGGTGCTGCGCTACGGCAACATGCGTGAGCTGACGCTCGGGCTTGAGGTGGTATTGCCGGACGGACGAATCTGGAACGGTTTGCGGGGGTTGCGCAAGGACAACACCGGTTACGATCTCAAGCATTTGTTCATCGGCTCGGAAGGCACGCTGGGCATCATCACTGCGGCGGTGCTGAAGCTGTTTCCGGCAACCTGCAGCACGGCGACAGCCTGGGTTGCGCTGCCTTCGCCACAAGCGGCGGTGGATTTGATCGGTCATGTCCGCAGCCTGTGCGCCGACCGCCTGACGGGCTTCGAGATGATGTCGCGCCAGAGCCTGGATTTCGTCTTGGATCATGTGGCGGGTTGCAGCGATCCGCTGGAGACGAAACATCCCTGGTACGCGTTGATTGAATTGCGCGACACGGTGCCCGATGCGCCGTTGACGCTGCTGCTTGAAAACGGCCTGGCCCATGCCTTCGAGCAAGGTTGGGTCATTGATGCGGTATTGGCCAGCAGCCAGGCGCAGGCCGCCGCGCTGTGGGCGCTGCGCGAAGGAATTTCCGAGGCGCAGAATCACGAAGGCCCCAGCCTCAAGCATGACATCAGCGTGCCTGTCAGTCGGATTCCGGAGTTCATCGAGCGCACCGACAAAGCCCTGCAACAGGACTTTCCAGGCGTGCGCATCGTTTCCTATGGGCACATGGGCGACGGGAATCTGCACTACAACATCAGCAAGCCGATTAGCGATGCGGACGCTTCGTTCAAGGCCCGCGAACACGCGATCATGCAAGTCATCTACCGGATGACGAGCACCTTCAATGGCAGCATCAGTGCTGAACATGGGCTGGGGCAAGCCAAACCCCATGCCGCAGCCCAGTTCAAGGACCCGCTGGAGATCGAGTTGATGCGGGCCATTAAACATACGCTGGACCCGGCGGGTCTGATGAACCCTGGCAAGGTCTTTACCGCCTGGCTGGAGTGAMALSPEFIHSIEHVVGAAGVVRDPALMASYLTDWRNAYQGQAALVVRPATTEEVAAVVRLCHDARVALVPQGGNTGLCGGSIPDASGRQMVLSLTRMKRIREIDLANETITVEAGVILQQLQEVASQAGRLFPLSLGAEGSCTVGGNLATNAGGTAVLRYGNMRELTLGLEVVLPDGRIWNGLRGLRKDNTGYDLKHLFIGSEGTLGIITAAVLKLFPATCSTATAWVALPSPQAAVDLIGHVRSLCADRLTGFEMMSRQSLDFVLDHVAGCSDPLETKHPWYALIELRDTVPDAPLTLLLENGLAHAFEQGWVIDAVLASSQAQAAALWALREGISEAQNHEGPSLKHDISVPVSRIPEFIERTDKALQQDFPGVRIVSYGHMGDGNLHYNISKPISDADASFKAREHAIMQVIYRMTSTFNGSISAEHGLGQAKPHAAAQFKDPLEIELMRAIKHTLDPAGLMNPGKVFTAWLEPGPT0001440_1DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001440-mqo-K00116NANA
D1-35_045401158COG4948L-talarate/galactarate dehydrataseATGCAAGACACGCCTCAACTGCCTTCCGCCGATGACGACCGCATTGCCTGGGTGCGCGTGGCCTCGGTATTCCTGCCGCTGGCCAACCCCATCAGCGACGCCAAGGTACTGACCGGTCGGCAGAAGCCAATGACCGAAATCGCCATGCTGTTTGTCGAAATCGAAACCAGGGACGGCCACCGTGGCCTGGGTTTCAGCTATTCCAAGCGCGCCGGCGGCCCCGGGCAATTTGCCCATGCCAGGGAAATCGCTCCTGGCCTCATCGGCGAAAACCCCAGCGACATTTCCAAATTGTGGGACAAGCTCTGCTGGGCGGGTGCCTCGGTGGGGCGCAGCGGCCTGGCGACCCAGGCGATCGGTGCATTCGATGTCGCCCTGTGGGACTTGAAAGCCAAGCGGGCCAATCTTTCCCTGGCGCGTTTGCTCGGCGCTCATCGCGATTCTGTCCAGTGCTACAACACGTCGGGGGGATTCCTGCACACGCCGCTTGATCAATTGATGATCAATACTGACATCTCCCGGGAAAAGGGTATCGGCGGGATCAAGCTCAAAGTCGGCCAGCCTGACCAGGCGCTGGATCTGCACCGGGTCAGCACCATCCGCAAACACCTGGGGGATAGCTTCCCCTTGATGGTCGATGCCAATCAGCAATGGGACCGACCCAACGCCCAGCGCATGTGCCGCCAGTTGGAACAATACAACCTGGTCTGGATCGAGGAGCCGCTGGATTGCTATGACGCCGAAGGCCACGCCGCGCTGGCGCAGCAATTCGACACGCCGATCGCCACCGGTGAAATGCTCACCAGCGTTGCCGAGCACTGGGAATTCATCAAGTTGCGCGCTGCCGATTACCTGATGCCTGATGCGCCGCGTGTCGGCGGCATCACGCCTTACCTGAAAGTCCAGGCAGCAGCCGAACAAGCAGGGCTGATGATCGCGCCGCACTTTGCCATGGAACTGCACATCCATCTGGCCGCCACTTACAGCCGCGAGCCTTGGGTGGAACATTTCGAATGGCTGGAGCCATTGTTCAATGAACGCATGGAAACCCGTGACGGAAGAATGCTGGTGCCCACCCGGCCTGGCCTTGGGTTGTCCTTGAGCGAACGCGTGGCGGGATGGACGGCCGACCAGGTCGAGATCGGGCGGCGCCCGTGAMQDTPQLPSADDDRIAWVRVASVFLPLANPISDAKVLTGRQKPMTEIAMLFVEIETRDGHRGLGFSYSKRAGGPGQFAHAREIAPGLIGENPSDISKLWDKLCWAGASVGRSGLATQAIGAFDVALWDLKAKRANLSLARLLGAHRDSVQCYNTSGGFLHTPLDQLMINTDISREKGIGGIKLKVGQPDQALDLHRVSTIRKHLGDSFPLMVDANQQWDRPNAQRMCRQLEQYNLVWIEEPLDCYDAEGHAALAQQFDTPIATGEMLTSVAEHWEFIKLRAADYLMPDAPRVGGITPYLKVQAAAEQAGLMIAPHFAMELHIHLAATYSREPWVEHFEWLEPLFNERMETRDGRMLVPTRPGLGLSLSERVAGWTADQVEIGRRPPGPT0018185_119DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_TALARATE_DEGRADATION,PGPT0018185-talrD_galrD-K20023NANA
D1-35_045411521hypothetical proteinATGATTGAGCTCATGCAAACAGGCTTCGCAGCCGTACTGACACCCTACGTCTTTCTGCTGATCACCCTCGGCGTTGCGGTGGGGATCGTTTTTGGAGCGGTGCCTGGTCTTTCGGCCACCATGGCGATCGCTTTGTGCTTGCCGCTGACTTATTCGATGGGACCCGGTCCTGGCCTGGCGCTGCTGGTGGCGCTTTTCGTTGGCGCCACCTCGGGAGGGCTGATATCGGCGATATTGCTCAACATACCGGGAACGCCGGCCTCCATCGCGACGACGTTCGATGGCTGGCCGCTGATGAAACAAGGCCATGGCGTGAAGGCCCTTGGGATTGGCGTGGTGTTCTCGTTCCTCGGCACGATCTTCAGTATCGCCGCGCTGATGTTCATCGCTCCGATCCTGGCGGAACTGGCCCTGAGCTTTGGCCCGCACGAATACTTCTCCATCGCGATCTTTTCTCTGACGCTGATTGCCACGCTGTCCACCGGCTCGCTGGTCAAAGGCTTGTTTGCCGGTGCCTTGGGCTTTGCCTTTTCCACGGTGGGGATCGCTCCGGTCGAGGCTATTCGCCGCTTTACCTTTGACCTGCCGAGCCTCAATGGCGGCTTCGCCATGCTCACCGTGATGATCGGTATGTTTGCGGTCTCCGAGGTGCTGAAGTTCGCTGAAAGCGCGCGCCTGAGTCACCGGGCCAAACCCCAGCACGTCAGCATGAAAGGCGTTAAAGGTTTTGGTTTTTCGATGAAGGAATTTGTCGGCCAACTGCCCAACGCCACTCGTTCATCCCTGATCGGCCTGGGCATCGGCATCTTGCCTGGCATCGGTGCCGGTACGTCGAATATCGTCTCTTACATCGTGGCGAAGAAACGCTCGAAGACACCGGAAGAGTTCGGCAAGGGCAAGATTGACGGCGTGGTCGCCAGCGAGACGGCAAACAACGCTGGCATCGGCGGCGCGATGATTCCTCTGCTGACGCTCGGCATTCCCGGCGATACCACTACGGCAGTGATGCTCGGTGGTTTCATGATCCACGGCATCCAGCCCGGACCGTTGCTGTTCATCAGCCAGGCACCCTTGGTCTACACGATCTTCGCCGCGCTGATCCTCGCTTCCGTGCTGATGCTGGTGCTGGAATTCTACGGCCTGCGCATGTTCATCAAGTTGTTGGCGGTGCCCAAGCACATTCTGCTGCCGATCATCCTGGTGCTTTGCGTCGTCGGCGCCTTTGGCTTGAACAGCCGGATCTTCGACGTCTGGGCGGTGCTGCTGTTTGGCTTGCTGGGGTATGGGTTCGTCAAGGCCGGTTTGCCGATTGCACCGTTCATCATCGGTTTCATCCTCGGTCCGATGGCTGAAACCAACTTGCGTCGCGGCTTGATGCTGTCCGATGGCAATTTCGGCGGCTTCCTGACCAATCCCATCTCGGCGGGCTTCCTCATCCTGGCCGCCGCGTCCATCTCCTGGCACCTGGTGACGGTCATTCGCAACCGCAAAAGTGCGGCCATCGAATTGATGCGCAGCTAGMIELMQTGFAAVLTPYVFLLITLGVAVGIVFGAVPGLSATMAIALCLPLTYSMGPGPGLALLVALFVGATSGGLISAILLNIPGTPASIATTFDGWPLMKQGHGVKALGIGVVFSFLGTIFSIAALMFIAPILAELALSFGPHEYFSIAIFSLTLIATLSTGSLVKGLFAGALGFAFSTVGIAPVEAIRRFTFDLPSLNGGFAMLTVMIGMFAVSEVLKFAESARLSHRAKPQHVSMKGVKGFGFSMKEFVGQLPNATRSSLIGLGIGILPGIGAGTSNIVSYIVAKKRSKTPEEFGKGKIDGVVASETANNAGIGGAMIPLLTLGIPGDTTTAVMLGGFMIHGIQPGPLLFISQAPLVYTIFAALILASVLMLVLEFYGLRMFIKLLAVPKHILLPIILVLCVVGAFGLNSRIFDVWAVLLFGLLGYGFVKAGLPIAPFIIGFILGPMAETNLRRGLMLSDGNFGGFLTNPISAGFLILAAASISWHLVTVIRNRKSAAIELMRSPGPT0017350_1130DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017350-tctA-K07793NANA
D1-35_04542474hypothetical proteinATGGATTCCTATAAAAGAAACGAGTTGATCGCCGGCCTGGCGATGCTCGGCGCCGGCATCGCTTACCTGATACTGACCATGAACCTGCCGCGTCGCGGGACGGTCGATGCCGCGTTTGTCCCTTGGGTACTCGCCGTCGCGCTGTGTCTGTTGGGCGCATTGCAATTGTGGGCGTGGCGCAAGCTGCCGGATAAAAGTGCCGAACCTTCGGAAAAGCCAGAGGCGATCGATTACCCAACGGTCATCAAATCCGTGGCCTTGGTGCTGCTTTACACAGCGCTGATGCAGCCGGTGGGTTTTCTAATCACGACTGCGCTCTATCTCTATGCCCAGTTCATCGTATTGACCCCGGCGGACGAAAAGGTCAAGCACCTGCGTTACACCCTGATCGCGGTCGTTTCGGCTGTGCTGATTTTTTACATCTTTCGTCATGGCTTCGACTTGCTCCTGCCTGTCGGTTTATTGGATTTCTAGMDSYKRNELIAGLAMLGAGIAYLILTMNLPRRGTVDAAFVPWVLAVALCLLGALQLWAWRKLPDKSAEPSEKPEAIDYPTVIKSVALVLLYTALMQPVGFLITTALYLYAQFIVLTPADEKVKHLRYTLIAVVSAVLIFYIFRHGFDLLLPVGLLDFPGPT0017355_1508DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017355-tctB-K07794NANA
D1-35_04543972hypothetical proteinATGAAGAAAACACTCTGCGCCTCTTTGATCGCCTCGTTTCTGAGCTTGGCCGCTGGCACAGCGATGGCTGCCGATGCCAGCGATTGGCCAAGCCGTCCGGTACAGGTCGTGGTGATTGCCAACGCCGGTGGTGACACCGATTTCAACGCACGGATGATGGCCAAGTACTTCACCAAGGTCACTGGCAAGACCATGGTCGTCACCAACATGGCCGGTGGGGGCGGCACCATCGCCGCCGATGCGGTCAAGAGCGCAGCGCCGGATGGCAATACCATCCTCTTCACCCACACCGGCCAGTTGATCGTCAACGAAGTCGCGGGGCTGTCGGAGGACCGCTTTGATGCGTTCGATATTTCCTGCATCGCTGGCGTCGACAAAGGGGCGGTGTTCGTCTCGGCAAAAAGCTCGGGCATCGACAGCCTCGACCAACTGATTGAAAAAGCCAAGGCCAAGCCCGGCACCATCACTTACGGCACCGAGATGGGCAACTTCTCGCACCTGCAAGGCTTGATGTTCGAGAAGCTCGCCGGGGTGAAACTGAAAATGGTCGACAGCGGCACCGTCTCGGAAAAAATCGTTGCCTTGCTGGGCAAACGTATCGACCTCGGCGCCATCAGCTATGGCTCGGTCCAGGATTACATTTCCAGCGGCAAGATGACTGCCCTGGGCCAGCCGAACGCCGAACGCAACGCGCTGCTGGGCGACGTCAAGACCTTCAAGGAGCAAGGCGTGGACCTGGTCCTGGACAAGCCTTACGTCGTCGCCTTCCCGAAAGGCACGGACCCGGCCATCGTCAAGAAAATGGCCGACACCATGAAGAAGATCACCGAAGAGCCTGAATATGCCGAGGAGCTGAAGAAGTCCTTCAAGCAGCCGGTCAGCTTCCAGGGCCCCGAAGAAGCCGTCGCCACGTTGAATAAAACCCGGGACAGCTTCATGCAGTTCAAGGACGAGATGCGTAAAGCAAAATAAMKKTLCASLIASFLSLAAGTAMAADASDWPSRPVQVVVIANAGGDTDFNARMMAKYFTKVTGKTMVVTNMAGGGGTIAADAVKSAAPDGNTILFTHTGQLIVNEVAGLSEDRFDAFDISCIAGVDKGAVFVSAKSSGIDSLDQLIEKAKAKPGTITYGTEMGNFSHLQGLMFEKLAGVKLKMVDSGTVSEKIVALLGKRIDLGAISYGSVQDYISSGKMTALGQPNAERNALLGDVKTFKEQGVDLVLDKPYVVAFPKGTDPAIVKKMADTMKKITEEPEYAEELKKSFKQPVSFQGPEEAVATLNKTRDSFMQFKDEMRKAKPGPT0017360_2386DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_TRICARBOXYLATE_TRANSPORT,PGPT0017360-tctC-K07795NANA
D1-35_045441833glmSCOG0449Glutamine--fructose-6-phosphate aminotransferase [isomerizing]ATGTGTGGAATTGTCGGCGCCGTTGCTGAACGCAACATCACGGCCATCTTGCTTGAAGGCCTCAAGCGTCTTGAATATCGCGGCTACGACAGTGCCGGCGTGGCGGTCTTCACCAACGACGAGAAGCTTGAGCGCGTGCGTCGTCCGGGCAAGGTCAGTGAACTGGAACGGGCGCTGGACGCCGAGCCGCTGATCGGTCGCCTGGGCATCGCCCATACCCGTTGGGCCACCCATGGTGCGCCGTGCGAGCGTAACGCCCATCCACATTTCTCCGGCGACCTGGCGGTGGTGCACAACGGCATCATCGAAAACTATGAGGCGTTGCGCGAACAGCTCAAGGCGCTTGGTTATGTCTTTACTTCGGACACCGACACCGAAGTCATTGCCCATTTGCTCACCCACAAGCTCAAGGACCTGGCTGACCTGACCGTGGCGCTCAAGGCCACGGTCAAGGAACTGCATGGTGCCTATGGCCTGGCGGTAATCAGCGCGAAACAACCGGATCGGCTGGTGGCGGCCCGCAGTGGCAGCCCGCTGGTGATTGGCCTGGGCCTGGGGGAAAACTTCCTGGCTTCCGACCAGTTGGCGCTGCGTCAGGTGACTGACCGCTTCATGTATCTGGAAGAGGGCGATATCGCCGAGATTCGCCGTGACAGCGTGCAAGTCTGGAACCTTGAGGGGAAAGAAGTCGAGCGCGAGGTGGTCCAGTATCGTGACGGTGCCGAAGCCGCTGACAAAGGTGAGTTCCGCCATTACATGCTCAAGGAAATCCACGAGCAACCGGCCGTTGTGCAGCGCACGCTTGAAGGCCGCCTGAGTCACGAGCAGGTGCTGGTTCAGGCCTTTGGTCCGCAGGCCGCCGAGTTGTTCGCCAAGGTGCGCAACGTGCAGATCGTGGCGTGTGGCACCAGCTATCACGCCGGCATGGTCGCCCGTTACTGGCTCGAAGAGCTGGCGGGTATCCCGTGCCAGGTCGAAGTTGCCAGCGAGTTCCGCTATCGCAAGGTAGTCGTGCAGCCGGACACTCTGTTCGTGACTATTTCCCAGTCCGGCGAAACCGCAGACACCCTGGCAGCGCTGCGTAACGCCAAGGAACTGGGCTTTCTCGCCAGCCTGGCGATCTGCAACGTCGGCATCAGCTCGTTGGTGCGCGAATCCGACCTGACCCTGCTGACCCAGGCTGGTCGCGAGATCGGCGTGGCGTCGACCAAAGCGTTCACCACGCAACTGGTCGGCCTGCTGCTGCTAACCCTGTCCCTGGGGCAGGTACGCGGTACGCTCCAAGAGGGCGTCGAGGCCCGGCTGGTAGAAGAGCTGCGCCGCCTGCCGGCCCGCCTGGGTGAAGCCCTGGCCATGGATAGCACCGTGGAAAAGATCGCCGAACTGTTCGCCGAGAAGAACCATACCTTGTTCCTGGGCCGTGGTGCGCAATTCCCAGTGGCGATGGAAGGGGCCTTGAAGCTCAAGGAAATCTCCTACATTCACGCCGAAGCCTACCCGGCCGGCGAACTCAAGCACGGCCCGTTGGCGCTTGTGGATAACGACATGCCGGTGGTCACCGTGGCGCCGAACAACGAGCTGCTGGAAAAGCTCAAGTCCAACCTGCAGGAAGTGCGCGCCCGTGGCGGCCAGTTGGTAGTCTTCGCCGATGAGAAGGCTGGCATGACCAACGGTGAGGGCACCCACGTGGTGCATATGCCGCACATCCACGACATCCTTTCGCCGATCCTTTACACCATCCCGCTGCAACTGCTGTCGTACTACGTCGCCGTGCTCAAGGGCACCGACGTGGACCAGCCGCGTAACCTGGCGAAATCGGTCACGGTCGAGTAAMCGIVGAVAERNITAILLEGLKRLEYRGYDSAGVAVFTNDEKLERVRRPGKVSELERALDAEPLIGRLGIAHTRWATHGAPCERNAHPHFSGDLAVVHNGIIENYEALREQLKALGYVFTSDTDTEVIAHLLTHKLKDLADLTVALKATVKELHGAYGLAVISAKQPDRLVAARSGSPLVIGLGLGENFLASDQLALRQVTDRFMYLEEGDIAEIRRDSVQVWNLEGKEVEREVVQYRDGAEAADKGEFRHYMLKEIHEQPAVVQRTLEGRLSHEQVLVQAFGPQAAELFAKVRNVQIVACGTSYHAGMVARYWLEELAGIPCQVEVASEFRYRKVVVQPDTLFVTISQSGETADTLAALRNAKELGFLASLAICNVGISSLVRESDLTLLTQAGREIGVASTKAFTTQLVGLLLLTLSLGQVRGTLQEGVEARLVEELRRLPARLGEALAMDSTVEKIAELFAEKNHTLFLGRGAQFPVAMEGALKLKEISYIHAEAYPAGELKHGPLALVDNDMPVVTVAPNNELLEKLKSNLQEVRARGGQLVVFADEKAGMTNGEGTHVVHMPHIHDILSPILYTIPLQLLSYYVAVLKGTDVDQPRNLAKSVTVEPGPT0017630_2981DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULATION_METABOLISM,PGPT0017630-glmS|nodM-K00820NANA
D1-35_04545777srlRCOG1349Glucitol operon repressorATGTCCAAGCGCAATACACCACAACGCCGCCACAACATTCTCGCTTTGCTCCAGGAGCAGGGCGAGGTGAGCGTGGATGAGCTGGCCAAGCGCTTCGAAACCTCGGAAGTTACGATTCGCAAGGATCTCGCCGCGTTGGAGACCAATGGCCTGTTACTGCGCCGCTACGGTGGCGCGGTGCCGATGCCGCAGGAACTGGTCGCCGACAGTGCGCAAAGCGTTTCCAAATACAAACAAGCCATCGCCCGTGCCGCCGTGAAGCGGATCCGCGAGCATGCGCGCATCATCATTGACAGCGGCAGTACCACGGCGGCGATGATTCCCGAGCTTGGCCAGCAACCGGGGCTGGTGGTCATGACCAACTCCCTGCATGTGGCCAATGCGCTGAGCGAACTGGAGCATGAGCCCGTGCTGCTGATGACCGGTGGTACCTGGGATCCTCATTCCGAGTCGTTCCAGGGCCAAGTCGCCGAGCAGGTGCTGCGCTCCTATGACTTCGACCAGCTGTTCATCGGCGCCGACGGCATCGATCTGGTTCGAGGTACCACCACTTTCAACGAACTGTTGGGCCTGAGCCGTGTGATGGCCGAGGTTGCCCGCGAAGTGATCGTGATGGTGGAGGCCGACAAGATCGGCCGCAAGATCCCCAATCTGGAACTGCCGTGGAGCAGCGTCCATACCCTCATTACCGATGATCGCCTGCCCGTGGAGGCACGCGACCAGATTCAGGCCCGCGGCATCAATCTGATCTGCGCACCTGTCAGCCAGGAGAAATAAMSKRNTPQRRHNILALLQEQGEVSVDELAKRFETSEVTIRKDLAALETNGLLLRRYGGAVPMPQELVADSAQSVSKYKQAIARAAVKRIREHARIIIDSGSTTAAMIPELGQQPGLVVMTNSLHVANALSELEHEPVLLMTGGTWDPHSESFQGQVAEQVLRSYDFDQLFIGADGIDLVRGTTTFNELLGLSRVMAEVAREVIVMVEADKIGRKIPNLELPWSSVHTLITDDRLPVEARDQIQARGINLICAPVSQEKPGPT0017955_577DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-HEXOSES_UTILIZATIONPLANT_DERIVED_TAGATOSE_DEGRADATION,PGPT0017955-agaR-K02081NANA
D1-35_04546957birACOG0340Bifunctional ligase/repressor BirAATGCTCACGTTGCTAAAACTTCTGAAGGACGGCCGTTTCCATTCGGGCCAGGCGCTGGGTGCTGGGTTAGGTATCAGTCGTAGTGCGGTATGGAAACAATTGCAGCACCTGGAGGCGGAGTTAGGCTTGTCTGTGCATAAGGTTCGAGGCAAGGGGTATCGCCTGGCGAAGCCGCTGTTGCTTTTGGATGCGGCCGAAATCCGCGCGGCAGAAGGCTGTGAGTGGCCTGTTCACCTGTTTGATTCGATTGACTCCACTAATGCCGAAGCGCTGCGGTCCATCGGGCGTGGCGTGGAAGCGCCATTCCTTGTTCTGGCCGAGCGGCAGATAGCCGGTCGGGGACGTCGCGGCCGCAAATGGGTCAGCCCATTCGCCGAAAACCTCTATTACAGCCTGGTGCTGCGCATTGACGGTGGCATGCGGCAGATTGAGGGGCTTAGTCTTGTCGTCGGGCTCGCTGTCATGCATTCGTTGCGTGACATGGGAGTCGTTGAGGCAGGGTTGAAGTGGCCTAACGATGTGTTGGTAGGTGAAAAGAAAATCGCCGGCATACTGCTTGAGTTGGTAGGCGACCCTGCGGATGTTTGTCACGTTGTCCTGGGTGTCGGGGTAAACGTGAATATGCAATCGACTGATGAAGTTGATCAGCAGTGGACGTCCATGAGTCTTGAAGCGGGTCGTGATTTTGACCGGAACGAGTTGGTGGCGCGAATGAGTGGAAAGCTTCAGGGGTATCTGGAGCTGCATCATGCGTCGGGATTTGCAGCGATCCAGTCGGAGTGGGAGCAATACCATTTGTGGCAGGGGCGGGCTGTGTCGCTGATTGCCGGTATCAATCGGATTGACGGCGTGGTGATGGGCATTGATCGCCAAGGTGCGCTGCGTTTGAAGGTGGATGGTGTGGAAAAGATATTCAGTGGTGGCGAGCTCAGCTTGAGGTTGCGTGATGATTCTTGAMLTLLKLLKDGRFHSGQALGAGLGISRSAVWKQLQHLEAELGLSVHKVRGKGYRLAKPLLLLDAAEIRAAEGCEWPVHLFDSIDSTNAEALRSIGRGVEAPFLVLAERQIAGRGRRGRKWVSPFAENLYYSLVLRIDGGMRQIEGLSLVVGLAVMHSLRDMGVVEAGLKWPNDVLVGEKKIAGILLELVGDPADVCHVVLGVGVNVNMQSTDEVDQQWTSMSLEAGRDFDRNELVARMSGKLQGYLELHHASGFAAIQSEWEQYHLWQGRAVSLIAGINRIDGVVMGIDRQGALRLKVDGVEKIFSGGELSLRLRDDSPGPT0022055_1830DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022055-birA|bpr-K03524NANA
D1-35_04547750coaXCOG1521Type III pantothenate kinaseATGATTCTTGAGCTTGATTGCGGCAATAGTTTTATCAAGTGGCGCGTTGTTCGTGCAGATGGCGTCACCCCTGTCGGCGGTGGGGTAGTCGGCTCGGATAGCGATTTGCTTGCGAGCCTGACAGGCTCAGATAAATTTCAGCTGAAAAAATGCCGTCTTGTCAGCGTCAGGACTTCTGAGGAGACCGATTTGTTGGTCGCCTCCCTGGTAGAGACATTTGGCGTCTCCGTGGCTCGCGCAACACCTACCCAAGAGATGGCGGGCGTTACAAACGGTTATGAAGACTATGAGCGCTTGGGGCTTGATCGATGGCTGGCTTTGCTCGGTGGGTACCACCTGGCTTCGGGCGCATGCCTGGTTCTGGATTTTGGTACGGCAATCACGGCAGATTTCGTAGCGCCTGACGGGCAGCACTTGGGAGGGTTCATCTGCCCTGGTATGCCTCTGATGCGTAACCAGTTACGTACCCATACCCGGCGAATCCGCTATGACGATACTGCTGCAGAACGGGCTCACGAGAGTCTTGCTCCTGGCAGGGCAACGGTCGAGGCGGTGGAGCGTGGTTGTATGCTGATGTTGAGAGGCTTCGTGCTGACTCAGCTCGAATTGGCGCGGCAATATTGGGGAGAGGATTTCGAGGTGTTTCTAACGGGAGGGGATGCCGATCTGGTTTCCGGGGTTGTTCCAGATGCCAAGGTCGTGCCTGACCTGGTTTTTGTTGGTTTGGCGATGGCTTGTCCTTTGTCTTGAMILELDCGNSFIKWRVVRADGVTPVGGGVVGSDSDLLASLTGSDKFQLKKCRLVSVRTSEETDLLVASLVETFGVSVARATPTQEMAGVTNGYEDYERLGLDRWLALLGGYHLASGACLVLDFGTAITADFVAPDGQHLGGFICPGMPLMRNQLRTHTRRIRYDDTAAERAHESLAPGRATVEAVERGCMLMLRGFVLTQLELARQYWGEDFEVFLTGGDADLVSGVVPDAKVVPDLVFVGLAMACPLSPGPT0008780_2390DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008780-coaX-K03525NANA
D1-35_04548456hypothetical proteinATGCGGTGGCTATTTTTGTTGTTGCTGGTTCTAAATGGCTTCTATTACATCTGGCATCAGCAAGAGGTCCCGCTTCGCGCCAAGGATGTCACTCCGCTGAGCCTGTATCGAGGTTCGCAGCAAGACATTCATCTCCTGAGCGAGACGGCGGATGCGCTAGTCAGGCGTGAGCCGGGTAAATCGAGTGAAGGGCAAAAGAACTGCAACTACCTGGGTGGCTTCGTTCGCCCGGAGCTGGCCAGGCAACTGGAGCAGCGACTGGTTTCTTCGGGGGTTGCGGGCCGTACCGTTACGTTTAGCTCGCCAGCGTCTCCAGAGTCTGGTGGATTCTGGGTCCAGGTTCCACCGGACAGCGCGGCGAAGATGAATGAGGTGCTGCTTCAAAACCTTTCCAAAGAATTCAATGAGTTAAAACATAAAATAATGCCTTGCGAAGGGGTTGCGCCTGCTGGGTAGMRWLFLLLLVLNGFYYIWHQQEVPLRAKDVTPLSLYRGSQQDIHLLSETADALVRREPGKSSEGQKNCNYLGGFVRPELARQLEQRLVSSGVAGRTVTFSSPASPESGGFWVQVPPDSAAKMNEVLLQNLSKEFNELKHKIMPCEGVAPAGNANANANANA
D1-35_045521194tufA_1COG0050Elongation factor Tu-AATGGCTAAGGAAAAGTTCGAACGTAATAAGCCGCACGTCAACGTTGGTACCATCGGTCACGTCGACCACGGTAAAACCACGCTGACCGCTGCTCTGACCCGTGTCTGCTCCGAAGTTTTCGGTTCGGCCAAGGTTGACTTCGACAAGATCGACAGCGCCCCGGAAGAAAAAGCTCGTGGTATCACCATCAACACCGCTCACGTTGAATACGATTCGGCCGTGCGTCACTACGCACACGTTGACTGCCCAGGTCACGCCGACTACGTAAAAAACATGATCACCGGTGCTGCTCAGATGGACGGCGCGATCCTGGTTTGCTCGGCCGCCGATGGTCCGATGCCGCAAACCCGTGAGCACATCCTGCTGTCCCGTCAGGTAGGCGTTCCGTACATCGTTGTCTTCCTGAACAAGGCTGACATGGTTGACGACGCTGAGCTGCTGGAACTGGTTGAGATGGAAGTGCGCGACCTGTTGAGCACTTACGACTTCCCAGGTGATGACACTCCAATCATCATCGGTTCGGCTTTGATGGCTCTGAACGGCCAAGACGACAACGAAATGGGCACCACTGCGGTGAAGAAGCTGGTTGAGACTCTGGACAGCTACATCCCAGAGCCTGAGCGTGCTATCGACAAGCCGTTCCTGATGCCAATCGAAGACGTATTCTCGATCTCCGGTCGCGGTACTGTTGTGACTGGTCGTGTTGAGCGTGGCATCGTCCGTATCCAGGAAGAGGTTGAGATCGTCGGTCTGCGCGACACTCAGAAAACTACCTGCACCGGCGTTGAAATGTTCCGCAAGCTGCTCGACGAAGGTCGTGCTGGCGAGAACTGCGGCGTGCTGCTGCGCGGCACCAAGCGTGACGACGTTGAGCGTGGCCAGGTTCTGGTCAAGCCAGGTACTGTCAAGCCGCACACCAAGTTCACCGCAGAAGTTTACGTTCTGAGCAAGGAAGAAGGCGGCCGTCATACTCCGTTCTTCAAAGGCTACCGTCCACAGTTTTACTTCCGTACAACTGACGTGACTGGTAACTGCGAGCTGCCAGAAGGCGTTGAAATGGTAATGCCAGGTGACAACATCCAGATGACTGTCACTCTGATCAAGACCATCGCGATGGAAGACGGTCTGCGTTTCGCTATCCGTGAAGGCGGTCGTACCGTCGGCGCCGGCGTCGTAGCCAAAGTCATCGAGTAAMAKEKFERNKPHVNVGTIGHVDHGKTTLTAALTRVCSEVFGSAKVDFDKIDSAPEEKARGITINTAHVEYDSAVRHYAHVDCPGHADYVKNMITGAAQMDGAILVCSAADGPMPQTREHILLSRQVGVPYIVVFLNKADMVDDAELLELVEMEVRDLLSTYDFPGDDTPIIIGSALMALNGQDDNEMGTTAVKKLVETLDSYIPEPERAIDKPFLMPIEDVFSISGRGTVVTGRVERGIVRIQEEVEIVGLRDTQKTTCTGVEMFRKLLDEGRAGENCGVLLRGTKRDDVERGQVLVKPGTVKPHTKFTAEVYVLSKEEGGRHTPFFKGYRPQFYFRTTDVTGNCELPEGVEMVMPGDNIQMTVTLIKTIAMEDGLRFAIREGGRTVGAGVVAKVIEPGPT0015245_1782DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONTRIGGERED_IMMUNITYPAMP|EFFECTOR_TRIGGERED_IMMUNITY|PTIPTI-BACTERIAL_EF-TU,PGPT0015245-elf18|tuf|tufA-K02358NANA
D1-35_04554369secECOG0690Protein translocase subunit SecEATGACTCCTAAAGCTGAAGCTCAAGGCTCTCGCTTCGATCTGCTCAAGTGGCTAGTGGTAGTCGCTTTGGTGGTTGTTGGCGTTGTTGGCAATCAGTATTTTTCTGCTTCGCCGATCCTGTACCGCGTACTTGCATTACTCGCTATTGCTGCTGTTGCTGCCTTTGTAGGCCTGCAAACAGCCAAGGGCAAGTCTTTCTTTGTACTCGCTAAGGAAGCTCGCACCGAGATTCGTAAAGTCGTATGGCCGACTCGCCAAGAAACCACGCAGACCACATTGATCGTTGTGGCTGTTGTTCTGGTAATGGCGTTGCTGTTGTGGGGGCTTGATTCCCTGCTCGGCTGGCTTGTTTCCTTGATTGTTGGCTAAMTPKAEAQGSRFDLLKWLVVVALVVVGVVGNQYFSASPILYRVLALLAIAAVAAFVGLQTAKGKSFFVLAKEARTEIRKVVWPTRQETTQTTLIVVAVVLVMALLLWGLDSLLGWLVSLIVGPGPT0025715_1300DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025715-secE-K03073NANA
D1-35_04555534nusGCOG0250Transcription termination/antitermination protein NusGGTGGCTAAGCGTTGGTACGTTGTGCATGCTTACTCGGGTTACGAGAAGCATGTCATGCGCTCGCTGATAGAGCGCGTAAAGCTGGCTGGCATGGAAGATGGCTTTGGCGAGATTCTGGTCCCCACTGAAGAAGTGGTGGAGATGCGTAACGGCCAGAAGCGCAAAAGTGAACGCAAGTTCTTTCCAGGCTATGTGCTGGTACAGATGGATATGAACGAAGGGACTTGGCACTTGGTCAAGGATACCCCTCGGGTGATGGGCTTCATCGGCGGAACCGCCGATAAGCCTGCGCCGATCACTGACAAAGAGGCAGAAGCAATTCTGCGTCGCGTCGCTGATGGTAGCGACAAACCGAAGCCGAAGACGTTGTTTGAACCAGGTGAAGTTGTACGGGTCACTGATGGTCCATTCGCCGATTTCAACGGTACGGTCGAAGAAGTTAACTACGAAAAGAGCCGGATCCAAGTGGCAGTGCTCATTTTCGGTCGCTCTACTCCGGTAGAGTTGGAGTTCAGTCAGGTCGAAAAGGTCTGAMAKRWYVVHAYSGYEKHVMRSLIERVKLAGMEDGFGEILVPTEEVVEMRNGQKRKSERKFFPGYVLVQMDMNEGTWHLVKDTPRVMGFIGGTADKPAPITDKEAEAILRRVADGSDKPKPKTLFEPGEVVRVTDGPFADFNGTVEEVNYEKSRIQVAVLIFGRSTPVELEFSQVEKVNANANANANA
D1-35_04556432rplKCOG008050S ribosomal protein L11ATGGCCAAGAAGATTACCGCTTACATCAAGCTGCAAGTGAAGGCCGCTCAGGCTAACCCAAGCCCACCCGTTGGTCCTGCACTGGGTCAGCACGGCGTGAACATCATGGAATTCTGCAAGGCTTTCAACGCCCGTACCCAGGGCCTTGAGCCGGGTCTGCCGACTCCAGTGATCATCACTGTCTACAGCGACCGTAGCTTCACTTTCGAAACAAAAAGCACCCCTGCTTCGGTTCTGCTGAAGAAGGCTGCAGGTTTGACCAGCGGTTCCGCTCGTCCAAACACCGTTAAGGTTGGCACCGTTACCCGTGCTCAGCTGGAAGAAATCGCGAAAACCAAAAACGCGGATCTGACTGCAGCTGATATGGATGCAGCCGTGCGTACTATCGCCGGTTCTGCTCGTAGCATGGGCCTTAACGTGGAGGGTGTGTAAMAKKITAYIKLQVKAAQANPSPPVGPALGQHGVNIMEFCKAFNARTQGLEPGLPTPVIITVYSDRSFTFETKSTPASVLLKKAAGLTSGSARPNTVKVGTVTRAQLEEIAKTKNADLTAADMDAAVRTIAGSARSMGLNVEGVNANANANANA
D1-35_04557696rplACOG008150S ribosomal protein L1ATGGCTAAGCTGACCAAGCGTCAAAAGGCTATCGCCGGCAAAATCGAAGCAGGCAAGGCCTACAACTTTGTAGACGCCGCCGCTCTGCTGGCCGAGCTGTCGACTGTCAAGTTCAGCGAGTCGTTCGACGTTGCTGTAAATCTGGGCGTTGACCCACGTAAATCCGACCAGGTCGTTCGTAGCGCTACCGTGCTGCCACACGGCACTGGCAAGACCGTACGTGTTGCCGTGTTCACCCAGGGCCCTGCAGCTGAAGCTGCTCTGGCTGCTGGCGCTGATCGCGTAGGCATGGACGACTTGGCTGCTGAAATGAAAGGCGGCGACCTGAACTATGACGTCGTGATCGCATCCCCGGATGCCATGCGTGTTGTAGGTCAGTTGGGTCAGATCCTCGGTCCACGTGGCCTGATGCCTAACCCTAAGGTTGGTACCGTGACTCCAGACGTAGCCACCGCGGTTAAAAACGCCAAGGCTGGTCAGGTTCGTTATCGCACCGACAAAAACGGCATCATCCACACTTCCGTTGGCAAGATCGGCTTCGACGCCGTCAAGCTGAAGGAAAACGTTGAAGCCCTGATCGCTGATCTGAAGCGTATCAAGCCAGCTTCTTCGAAAGGTATCTACGTCAAGCGCGTTACCCTGAGCACCACTATGGGCCCAGGTCTGATCATCGATCAGAGCTCGCTCGACGCGTAAMAKLTKRQKAIAGKIEAGKAYNFVDAAALLAELSTVKFSESFDVAVNLGVDPRKSDQVVRSATVLPHGTGKTVRVAVFTQGPAAEAALAAGADRVGMDDLAAEMKGGDLNYDVVIASPDAMRVVGQLGQILGPRGLMPNPKVGTVTPDVATAVKNAKAGQVRYRTDKNGIIHTSVGKIGFDAVKLKENVEALIADLKRIKPASSKGIYVKRVTLSTTMGPGLIIDQSSLDANANANANANA
D1-35_04559501rplJCOG024450S ribosomal protein L10GTGGCAATTAATCTCGAAGACAAGAAGGCCATCGTCGCTGAAGTCAACGAGGCTGCCAAAGTCGCTCTGTCCGCTGTCGTGGCTGATGCCCGTGGCGTAACAGTAGGCGCAATGACCGGACTCCGTAAAGAGGCCCGTGAAGCTGGCGTTTATGTACGTGTCGTACGTAACACCCTGCTCAAGCGCGCTGTTGCTGACACTGAATACAGTGTTCTCAACGACGTGTTCACCGGCCCGACCCTGATCGCGTTCTCCAAAGATCATCCAGGCGCTGCTGCCCGTTTGTTCAAGGAATTCGCCAAGGGTCAGGACAAGTTCGAGATCAAGGCAGCTGCGTTCGAGGGCAAGTTCCTCGCAGCTAATCAGATCGATGTACTGGCAACACTGCCGACCCGCGACGAAGCCATTTCGCAGTTGATGAGCGTGATTCAAGGCGCCACCAGCAAGCTGGCTCGTACTCTGGCTGCAGTTCGCGAGCAAAAAGAAGCTGCCGCAGCCTAAMAINLEDKKAIVAEVNEAAKVALSAVVADARGVTVGAMTGLRKEAREAGVYVRVVRNTLLKRAVADTEYSVLNDVFTGPTLIAFSKDHPGAAARLFKEFAKGQDKFEIKAAAFEGKFLAANQIDVLATLPTRDEAISQLMSVIQGATSKLARTLAAVREQKEAAAANANANANANA
D1-35_04560366rplL50S ribosomal protein L7/L12ATGTCTATCTCCCAAGACGATATCCTCAACGCCGTAGCTGAAATGTCGGTTCTGCAGGTTGTTGAGCTGATCAAAGCTTTCGAAGAAAAATTCGGCGTTTCCGCTGCTGCTGCTTCCGCTGGTCCAGCTGCTGCTGCCGCTGTTGTTGAAGAGCAAACCGAATTCAACGTCATGCTGACCGAAGCTGGCGAGAAGAAAGTTAACGTGATCAAGGCAGTACGTGAACTGACCGGTCTGGGCTTGAAAGAAGCCAAGGCTGTAGTTGACGGCGCTCCTGCCATGGTTCTGGAAGCTGTTGCCAAAGACGCAGCTGACAAAGCCAAAGCAGTACTGGAAGAAGCAGGCGCTAAAGTCGAGCTGAAGTAAMSISQDDILNAVAEMSVLQVVELIKAFEEKFGVSAAAASAGPAAAAAVVEEQTEFNVMLTEAGEKKVNVIKAVRELTGLGLKEAKAVVDGAPAMVLEAVAKDAADKAKAVLEEAGAKVELKNANANANANA
D1-35_045624074rpoBCOG0085DNA-directed RNA polymerase subunit betaATGGCTTACTCATATACTGAGAAAAAACGTATCCGCAAGGACTTTAGCAAGTTGCCGGACGTCATGGATGTGCCGTACCTCCTGGCCATCCAGCTGGATTCGTATCGTGAATTCTTGCAAGCGGGAGCGACTAAAGATCAGTTCCGCGACGTGGGCCTGCATGCGGCCTTCAAATCCGTTTTCCCGATCATCAGCTACTCCGGCAATGCTGCGCTGGAGTACGTCGGTTATCGCCTGGGCGAACCGGCATTTGATGTCAAAGAATGCGTATTGCGCGGTGTGACTTACGCCGTACCTTTGCGGGTAAAAGTGCGCCTGATCATTTTCGACAAAGAATCGTCGAACAAAGCGATCAAGGACATCAAAGAGCAAGAAGTCTACATGGGTGAAATCCCCCTGATGACTGAGAACGGTACCTTCGTAATCAACGGTACCGAGCGTGTAATCGTTTCCCAGCTGCACCGTTCTCCGGGCGTGTTCTTCGACCACGACCGTGGCAAGACGCACAGCTCCGGCAAACTGCTCTACTCCGCGCGCATCATTCCTTACCGCGGTTCGTGGCTGGACTTCGAGTTCGACCCGAAAGACTGCGTATTCGTGCGTATCGACCGTCGTCGCAAGCTGCCTGCATCGGTATTGCTGCGCGCGCTCGGCTATACCACCGAGGAAGTGCTGGACGCGTTCTACACCACCAACGTCTTCCATGTGCAGGGTGAAAACCTGAGCCTGGAGCTGGTGCCTCAGCGCCTGCGCGGTGAAATCGCCGTCCTGGATATCCAGGATGACAAGGGCAAGGTTATTGTCGAGCAAGGTCGTCGTATCACCGCTCGCCACATCAACCAGCTGGAAAAAGCCGGGATCAAAGAGCTGCAGGTGCCGATGGACTACGTCCTGGGTCGCACCACCGCCAAGGTCATCGTGCATCCGGCCACTGGCGAGATCATTGCCGAGTGCAATACCGAGCTGACCACCGAGATCCTGGCGAAAATCGCCAAGGCTCAGGTTGTTCGCATCGAGACTCTGTACACCAACGATATCGACTGCGGTCCGTTCATCTCCGATACGCTGAAGATCGACTCCACCGGCAACCAACTGGAAGCCCTGGTCGAGATCTATCGCATGATGCGTCCTGGCGAGCCGCCAACCAAGGATGCCGCCGAGACCCTGTTCAACAACCTGTTCTTCAGCCCTGAGCGCTATGACCTGTCTGCGGTCGGCCGGATGAAGTTCAACCGTCGTATCGGTCGTACCGAGATTGAAGGTTCGGGCGTGCTGAACAAGGACGACATCGTTGCGGTGCTCAAGACCCTGGTCGACATCCGTAACGGCAAAGGCATCGTCGATGACATCGACCACCTGGGTAACCGTCGTGTCCGCTGCGTAGGCGAGATGGCCGAGAACCAGTTCCGTGTTGGCCTGGTGCGTGTCGAGCGCGCGGTCAAGGAACGTCTGTCGATGGCTGAAAGCGAAGGCCTGATGCCGCAAGACCTGATCAACGCCAAGCCAGTGGCTGCGGCGGTGAAGGAGTTCTTCGGTTCGAGCCAGCTGTCGCAGTTCATGGACCAGAACAACCCGCTGTCCGAGATCACCCACAAGCGTCGTGTCTCCGCACTCGGCCCAGGCGGTCTGACTCGTGAGCGTGCAGGCTTCGAGGTTCGTGACGTACACCCGACTCACTACGGTCGCGTATGCCCGATCGAAACGCCGGAAGGTCCGAACATCGGTCTGATCAACTCCCTGGCTGCCTATGCGCGCACCAACCAGTACGGTTTCCTTGAGAGCCCGTACCGTGTGGTGAAAGACGCCCTGGTTACCGACGAGATCGTATTCCTGTCCGCCATCGAAGAAGCTGATCATGTGATCGCCCAGGCTTCGGCCACGATGAACGACAAGAAAGTCCTGACCGACGAGCTGGTAGCTGTTCGTCACTTGAACGAGTTCACCGTCAAGGCGCCGGAAGACGTCACCCTGATGGACGTATCGCCCAAGCAGGTAGTTTCGGTTGCTGCGTCGCTGATCCCGTTCCTCGAGCACGACGACGCCAACCGTGCGTTGATGGGTTCGAACATGCAGCGTCAAGCTGTACCGACCCTGCGTGCCGACAAGCCGCTGGTAGGTACCGGCATGGAGCGCAACGTTGCCCGTGACTCCGGCGTTTGCGTCGTGGCTCGTCGTGGTGGCGTGATCGACTCCGTCGATGCCAGCCGTATCGTGGTTCGTGTTGCCGATGACGAAGTTGAAACTGGCGAAGCCGGTGTCGACATTTACAACCTGACCAAGTACACCCGCTCCAACCAGAACACCTGCATCAACCAGCGTCCGCTGGTGAGCAAGGGTGATCGGGTTCAGCGCAGCGACATCATGGCCGACGGCCCGTCCACCGACATGGGTGAACTGGCACTGGGTCAGAACATGCGCATCGCGTTCATGGCATGGAACGGCTTCAACTTCGAAGACTCCATCTGCCTGTCCGAGCGTGTGGTTCAGGAAGACCGCTTCACCACGATCCACATTCAGGAACTGACCTGTGTGGCCCGTGACACCAAGCTTGGCCCGGAAGAAATCACTGCGGACATCCCGAACGTGGGTGAGGCTGCACTGAACAAGCTGGACGAAGCCGGTATCGTTTACGTAGGTGCCGAAGTAGGCGCAGGCGACATCCTGGTCGGCAAGGTCACTCCGAAAGGCGAGACCCAACTGACTCCGGAAGAGAAACTGCTGCGTGCCATCTTCGGTGAAAAAGCCAGCGACGTGAAAGACACCTCCCTGCGTGTGCCTACCGGCACCAAGGGTACCGTCATCGACGTACAGGTCTTCACCCGTGACGGTGTCGAGCGTGATGCTCGTGCGTTGTCCATCGAGAAGACTCAGCTCGACGAGATCCGCAAGGATCTGAACGAAGAGTTCCGTATCGTTGAAGGCGCGACTTTCGAACGTCTGCGTTCCGCTCTGGTAGGCCACAAGGCCGAAGGCGGCGCAGGCCTGAAGAAAGGTCAGGAAATCACCGACGAAGTTCTCGACGGTCTTGAGCATGGTCAGTGGTTCAAACTGCGCATGGCTGAAGACGCTCTGAACGAGCAGCTCGAGAAGGCCCAGGCCTACATCGTTGATCGCCGCCGTCTGCTGGACGACAAGTTCGAAGACAAGAAGCGCAAACTGCAGCAGGGCGATGACCTGGCTCCAGGCGTGCTGAAGATCGTCAAGGTTTACCTGGCAATCCGTCGTCGTATCCAGCCGGGCGACAAGATGGCCGGTCGTCACGGTAACAAAGGTGTGGTCTCCGTGATCATGCCGGTTGAAGACATGCCGCACGATGCCAATGGCACCCCGGTCGATGTGGTCCTCAACCCGCTGGGCGTACCTTCGCGTATGAACGTCGGTCAGATCCTCGAAACCCACCTGGGCCTTGCGGCCAAAGGTCTGGGCGAGAAGATCAACCGCATGATCGAAGAGCAGCGCAAGGTCGCCGACCTGCGTAAGTTCCTGCACGAGATCTACAACGAGATCGGCGGGCGCAACGAAGAGCTGGACACTTTCTCCGACCAGGAAATCCTGGACCTGGCGAAGAACCTGCGCGGCGGCGTTCCAATGGCTACCCCGGTGTTCGACGGTGCCAAGGAAAGCGAAATCAAGGCCATGCTGAAACTGGCAGACCTGCCGGAAAGCGGCCAGATGCAGCTGTTCGACGGCCGTACCGGCAACAAGTTCGAGCGTCCGGTTACCGTTGGCTACATGTACATGCTGAAGCTGAACCACTTGGTAGACGACAAGATGCACGCTCGTTCTACCGGTTCTTACAGCCTGGTTACCCAGCAGCCGCTGGGTGGTAAGGCGCAGTTCGGTGGTCAGCGTTTCGGGGAGATGGAGGTCTGGGCACTGGAAGCGTACGGTGCTGCTTACACTCTGCAAGAAATGCTCACAGTGAAGTCGGACGATGTGAACGGCCGGACCAAGATGTACAAGAACATCGTGGACGGCGATCACCGTATGGAGCCGGGCATGCCCGAGTCCTTCAACGTGTTGATCAAGGAAATTCGTTCCCTCGGCATCGATATCGATCTGGAAACCGAATAAMAYSYTEKKRIRKDFSKLPDVMDVPYLLAIQLDSYREFLQAGATKDQFRDVGLHAAFKSVFPIISYSGNAALEYVGYRLGEPAFDVKECVLRGVTYAVPLRVKVRLIIFDKESSNKAIKDIKEQEVYMGEIPLMTENGTFVINGTERVIVSQLHRSPGVFFDHDRGKTHSSGKLLYSARIIPYRGSWLDFEFDPKDCVFVRIDRRRKLPASVLLRALGYTTEEVLDAFYTTNVFHVQGENLSLELVPQRLRGEIAVLDIQDDKGKVIVEQGRRITARHINQLEKAGIKELQVPMDYVLGRTTAKVIVHPATGEIIAECNTELTTEILAKIAKAQVVRIETLYTNDIDCGPFISDTLKIDSTGNQLEALVEIYRMMRPGEPPTKDAAETLFNNLFFSPERYDLSAVGRMKFNRRIGRTEIEGSGVLNKDDIVAVLKTLVDIRNGKGIVDDIDHLGNRRVRCVGEMAENQFRVGLVRVERAVKERLSMAESEGLMPQDLINAKPVAAAVKEFFGSSQLSQFMDQNNPLSEITHKRRVSALGPGGLTRERAGFEVRDVHPTHYGRVCPIETPEGPNIGLINSLAAYARTNQYGFLESPYRVVKDALVTDEIVFLSAIEEADHVIAQASATMNDKKVLTDELVAVRHLNEFTVKAPEDVTLMDVSPKQVVSVAASLIPFLEHDDANRALMGSNMQRQAVPTLRADKPLVGTGMERNVARDSGVCVVARRGGVIDSVDASRIVVRVADDEVETGEAGVDIYNLTKYTRSNQNTCINQRPLVSKGDRVQRSDIMADGPSTDMGELALGQNMRIAFMAWNGFNFEDSICLSERVVQEDRFTTIHIQELTCVARDTKLGPEEITADIPNVGEAALNKLDEAGIVYVGAEVGAGDILVGKVTPKGETQLTPEEKLLRAIFGEKASDVKDTSLRVPTGTKGTVIDVQVFTRDGVERDARALSIEKTQLDEIRKDLNEEFRIVEGATFERLRSALVGHKAEGGAGLKKGQEITDEVLDGLEHGQWFKLRMAEDALNEQLEKAQAYIVDRRRLLDDKFEDKKRKLQQGDDLAPGVLKIVKVYLAIRRRIQPGDKMAGRHGNKGVVSVIMPVEDMPHDANGTPVDVVLNPLGVPSRMNVGQILETHLGLAAKGLGEKINRMIEEQRKVADLRKFLHEIYNEIGGRNEELDTFSDQEILDLAKNLRGGVPMATPVFDGAKESEIKAMLKLADLPESGQMQLFDGRTGNKFERPVTVGYMYMLKLNHLVDDKMHARSTGSYSLVTQQPLGGKAQFGGQRFGEMEVWALEAYGAAYTLQEMLTVKSDDVNGRTKMYKNIVDGDHRMEPGMPESFNVLIKEIRSLGIDIDLETENANANANANA
D1-35_045634200rpoCCOG0086DNA-directed RNA polymerase subunit beta'TTGAAAGACCTACTGAATTTGCTGAAAAACCAGGGTCAAGTCGAAGAGTTCGACGCCATCCGTATTGGATTGGCCTCGCCTGAGATGATCCGTTCGTGGTCGTTCGGTGAAGTTAAAAAGCCGGAAACCATCAACTACCGTACGTTCAAACCCGAGCGTGACGGCCTGTTCTGCGCCAAGATCTTTGGCCCGGTAAAGGATTACGAGTGCCTGTGCGGTAAGTACAAGCGCTTGAAGCATCGCGGCGTGATCTGCGAGAAGTGCGGCGTTGAAGTTGCGCTGGCAAAAGTTCGTCGTGAGCGCATGGCGCACATCGAGCTGGCTTCGCCGGTTGCCCACATCTGGTTCCTGAAATCGCTGCCGTCCCGTATCGGCTTGCTGATGGACATGACCCTGCGTGATATCGAGCGCGTTCTCTACTTCGAGAGCTATGTCGTTATCGATCCAGGCATGACCACCCTTGAAAAAGGTCAGCTGCTCAACGACGAGCAGTACTTCGAAGCGCTGGAAGAGTTCGGCGACGATTTCGATGCCCGCATGGGTGCCGAAGCTGTCCGCGAGCTTCTGCACGCTATCGACCTGGAGCACGAGATTGGTCGTCTGCGCGAAGAGATTCCGCAAACCAACTCCGAAACCAAGATCAAGAAGCTGTCCAAGCGTCTGAAGTTGATGGAAGCCTTCCAGGGTTCCGGCAACCTGCCAGAGTGGATGGTGCTGACCGTTCTGCCGGTTCTGCCGCCAGATCTGCGTCCACTGGTCCCGCTGGATGGCGGTCGTTTCGCGACTTCCGACCTCAACGATCTGTATCGTCGAGTGATCAACCGTAACAACCGCTTGAAGCGCCTGCTCGATCTGTCCGCTCCGGACATCATCGTGCGCAACGAAAAGCGTATGTTGCAGGAAGCGGTCGATGCACTGCTCGACAACGGTCGTCGTGGTCGCGCTATCACCGGTTCGAACAAGCGTCCTCTGAAATCCCTGGCTGACATGATCAAGGGTAAGCAAGGTCGTTTCCGCCAGAACTTGCTCGGTAAGCGTGTTGACTACTCGGGTCGTTCGGTAATTACCGTAGGTCCGACCCTGCGTCTGCACCAGTGCGGTCTGCCTAAGAAAATGGCACTGGAACTGTTCAAGCCGTTCATTTTCGGCAAGCTGGAAATGCGTGGTCTCGCTACCACCATCAAAGCCGCCAAGAAAATGGTCGAGCGCGAGCTGCCAGAGGTCTGGGACGTTCTTGCCGAAGTGATTCGCGAACACCCGGTGCTGCTCAACCGTGCACCGACCCTTCACCGTCTGGGTATCCAGGCGTTTGAACCGGTACTGATCGAAGGCAAGGCTATCCAGCTGCACCCTCTGGTCTGTGCTGCGTACAACGCCGACTTCGACGGCGACCAGATGGCCGTGCACGTACCGCTGACGCTGGAAGCCCAGCTCGAAGCGCGTGCGTTGATGATGTCGACCAACAACATCCTGTCGCCAGCCAACGGTGAGCCAATCATCGTTCCGTCGCAGGACGTTGTATTGGGTCTGTACTACATGACTCGTGAAGCGATCAACGCCAAGGGCGAAGGTCGTGTTTTCGCGGACCTGCAGGAAGTTGACCGGGTGTTCCGTGCTGGCGAAGCCGCACTGCACGCCAAGGTGAAGGTGCGGATCAACGAGACCGTTAACGATCGTGATGGTGGCAGCGTCAAGAACACTCGCATCGTCGACACCACTGTTGGCCGTGCGCTGTTGTTCCAGGTTGTTCCACCTGGTCTGTCGTTTGACGTCGTCAACCTGCCGATGAAGAAAAAGGCGATCTCCAAGCTGATCAACCAGTGCTACCGCGTGGTTGGTCTGAAAGAGACCGTGATCTTCGCTGACCAGCTGATGTACACCGGTTTTGCCTATTCGACCATCTCCGGCGTTTCCATCGGTGTTAACGACTTCGTTATCCCTGATGAAAAAGCCCGCATCATCGGTGCTGCCACCGAGGAAGTGAAAGAGATCGAGAGCCAGTACGCGTCCGGCCTGGTAACCCAGGGCGAGAAGTACAACAAGGTAATCGACCTCTGGTCGAAGGCGAACGACGAAGTATCCAAGGCGATGATGGCCAACCTCTCGAAAGAGAAGGTCATCGACCGCCACGGCAACGAAGTCGATCAGGAATCGTTCAACTCGATGTACATGATGGCCGACTCGGGCGCACGGGGTTCTGCTGCGCAGATCCGTCAGCTCGCCGGTATGCGTGGCCTGATGGCCAAGCCGGACGGCTCCATCATCGAGACGCCGATTACCGCGAATTTCCGTGAAGGTTTGAGCGTACTTCAGTACTTCATCTCCACTCACGGTGCTCGTAAGGGTCTTGCGGATACCGCGTTGAAAACCGCGAACTCCGGTTACCTGACTCGTCGTCTGGTAGACGTGGCGCAGGATCTGGTTGTGACCGAGATCGATTGCGGCACCGAACACGGCCTGGTCATGACGCCGCACATTGAAGGCGGTGACGTTGTCGAGCCGCTGGGTGAGCGTGTATTGGGTCGTGTCATTGCCCGTGACGTGTTCAAGCCGGGTACCGAGGACGTCATCGTTCCTGCGGGCACCCTGGTTGACGAGAAGTGGGTCGAGTTCATCGAGCTCAACAGCATCGACGAAGTGATCGTACGTTCGCCGATCAGCTGCGAAACCCGCTACGGCATCTGCGCCAAGTGCTACGGCCGCGATCTGGCTCGTGGTCACCAGGTGAACATCGGTGAAGCGGTCGGCGTTATTGCTGCCCAGTCCATCGGTGAGCCGGGTACCCAGCTGACCATGCGTACGTTCCACATCGGTGGTGCGGCAAGCCGGACCTCCGCGGCCGACAGCGTTCAGGTGAAGAATGGCGGTACTGTCCGTCTGCACAACCTGAAGCACGTTGAGCGTGTCGACGGTCACCTGGTGGCTGTGTCCCGTTCCGGTGAGCTGGCGATTGCCGACGACTTCGGTCGTGAGCGCGAGCGCTACAAGCTGCCGTACGGTGCGGTGATTTCGGTGAAGGAAGGCGACAAGGTCGACGCTGGCGCTATCGTGGCCAAGTGGGATCCGCACACTCACCCGATCGTTACCGAAATGAAAGGTACCGTGACCTACGTGGGCATGGAAGAAGGCATCACCATCAAGCGTCAGACTGACGAATTGACCGGTATGACCAACATTGAAGTACTCGACGCCAAAGATCGTCCAGCTGCCGGCAAGGACATCCGTCCAGCCGTGAAGATGGTCGACGACAACGGTAAGGATCTGTTGCTGCCAGGCACTGACGTAATCGCTCAGTACTTCCTGCCAGCCAACGCCTTGGTCGGTGTGGCGGACGGCGCGCGGATCGCGATCGGTGATGTTATCGCTCGTATTCCGCAAGAAACTTCGAAAACCCGTGACATCACTGGTGGTCTGCCGCGTGTTGCCGACCTGTTCGAAGCCCGTCGTCCGAAAGAAGCCTCGATTCTGGCTGAAGTCAGCGGCACCATCGCGTTCGGTAAAGAGACCAAGGGCAAGCGCCGTCTGGTCATCACCCCGAACGACGGTAGCGATCCGTACGAAGAACTGATTCCGAAGTGGCGTCACCTGAACGTCTTCGAAGGCGAACAGGTAAACCGCGGCGAAGTTATCTCCGACGGTCCGAGCGATCCACACGACATCCTGCGTCTGCTGGGTGTGAGTGCGCTGGCCAAGTACATCGTGAACGAGATCCAGGACGTTTATCGTCTGCAAGGCGTGAAGATCAACGACAAGCACATCGAGACCATCCTGCGTCAGATGCTGCGTAAAGTTGAGATCTCCGAGTCCGGCGATTCCAGCTTCATCAAGGGCGACCAGATGGAACTGACTCACGTACTGGTGGAGAACGAGCGCCTGGCGAACGAGGACAAGTTCCTTGCCAAGTTCACTCGCGTACTGCTGGGTATCACCAAGGCGTCGTTGTCCACCGAATCGTTCATCTCGGCGGCTTCCTTCCAGGAAACCACGCGGGTACTGACCGAAGCGGCGGTAACCGGCAAGCGCGACTACCTGCGCGGCCTGAAAGAAAACGTGGTCGTGGGTCGTCTGATCCCGGCCGGTACCGGCTTGGCCTACCACAGCGAGCGCAAGCGCCGCCGTGAAGCAGACAAGCCGTTGCGCGTAAGCGCCAGTGAAGTGGAAGCTGCACTGACCGAAGCACTGAACTCGAGCGGTAACTGAMKDLLNLLKNQGQVEEFDAIRIGLASPEMIRSWSFGEVKKPETINYRTFKPERDGLFCAKIFGPVKDYECLCGKYKRLKHRGVICEKCGVEVALAKVRRERMAHIELASPVAHIWFLKSLPSRIGLLMDMTLRDIERVLYFESYVVIDPGMTTLEKGQLLNDEQYFEALEEFGDDFDARMGAEAVRELLHAIDLEHEIGRLREEIPQTNSETKIKKLSKRLKLMEAFQGSGNLPEWMVLTVLPVLPPDLRPLVPLDGGRFATSDLNDLYRRVINRNNRLKRLLDLSAPDIIVRNEKRMLQEAVDALLDNGRRGRAITGSNKRPLKSLADMIKGKQGRFRQNLLGKRVDYSGRSVITVGPTLRLHQCGLPKKMALELFKPFIFGKLEMRGLATTIKAAKKMVERELPEVWDVLAEVIREHPVLLNRAPTLHRLGIQAFEPVLIEGKAIQLHPLVCAAYNADFDGDQMAVHVPLTLEAQLEARALMMSTNNILSPANGEPIIVPSQDVVLGLYYMTREAINAKGEGRVFADLQEVDRVFRAGEAALHAKVKVRINETVNDRDGGSVKNTRIVDTTVGRALLFQVVPPGLSFDVVNLPMKKKAISKLINQCYRVVGLKETVIFADQLMYTGFAYSTISGVSIGVNDFVIPDEKARIIGAATEEVKEIESQYASGLVTQGEKYNKVIDLWSKANDEVSKAMMANLSKEKVIDRHGNEVDQESFNSMYMMADSGARGSAAQIRQLAGMRGLMAKPDGSIIETPITANFREGLSVLQYFISTHGARKGLADTALKTANSGYLTRRLVDVAQDLVVTEIDCGTEHGLVMTPHIEGGDVVEPLGERVLGRVIARDVFKPGTEDVIVPAGTLVDEKWVEFIELNSIDEVIVRSPISCETRYGICAKCYGRDLARGHQVNIGEAVGVIAAQSIGEPGTQLTMRTFHIGGAASRTSAADSVQVKNGGTVRLHNLKHVERVDGHLVAVSRSGELAIADDFGRERERYKLPYGAVISVKEGDKVDAGAIVAKWDPHTHPIVTEMKGTVTYVGMEEGITIKRQTDELTGMTNIEVLDAKDRPAAGKDIRPAVKMVDDNGKDLLLPGTDVIAQYFLPANALVGVADGARIAIGDVIARIPQETSKTRDITGGLPRVADLFEARRPKEASILAEVSGTIAFGKETKGKRRLVITPNDGSDPYEELIPKWRHLNVFEGEQVNRGEVISDGPSDPHDILRLLGVSALAKYIVNEIQDVYRLQGVKINDKHIETILRQMLRKVEISESGDSSFIKGDQMELTHVLVENERLANEDKFLAKFTRVLLGITKASLSTESFISAASFQETTRVLTEAAVTGKRDYLRGLKENVVVGRLIPAGTGLAYHSERKRRREADKPLRVSASEVEAALTEALNSSGNNANANANANA
D1-35_04565372rpsLCOG004830S ribosomal protein S12ATGGCAACTATCAACCAGCTGGTACGTCAGCCGCGTAAGCGTATCGTCGAGAAATCCGACGTGCCTGCGCTGCAGAACTGCCCGCAACGTCGTGGCGTATGCACCCGTGTGTATACCACCACGCCGAAAAAACCTAACTCGGCACTGCGTAAAGTATGCCGTGTGCGCCTGACCAACGGTTTCGAGGTTTCCTCGTACATCGGCGGTGAAGGCCACAACCTGCAAGAGCACAGCGTGGTACTGATCCGCGGCGGTCGTGTAAAAGACTTGCCAGGTGTTCGTTACCACACCGTCCGCGGTTCTTTGGATACTTCCGGCGTCAAAGGTCGTAACCAGGGTCGTTCGAAGTACGGTACCAAGCGTCCGAAGTAAMATINQLVRQPRKRIVEKSDVPALQNCPQRRGVCTRVYTTTPKKPNSALRKVCRVRLTNGFEVSSYIGGEGHNLQEHSVVLIRGGRVKDLPGVRYHTVRGSLDTSGVKGRNQGRSKYGTKRPKNANANANANA
D1-35_04566471rpsGCOG004930S ribosomal protein S7ATGCCAAGACGTCGCGTAGCAGCCAAACGTGAGATTCTGGACGATCCGAAATACGGAAGCCAGATCCTCGCCAAGTTCATGAACCACGTTATGGAGAGCGGCAAGAAAGCCGTTGCCGAGCGTATTGTTTATGGCGCACTGGACAAAGTTAAGGAACGCAAGAACAGCGATCCCCTGGAAATCTTCGAGAAAGCTCTCGACGCCATCGCTCCGCTGGTCGAAGTGAAGTCGCGCCGTGTAGGCGGTGCTACTTACCAGGTTCCGGTCGAAGTTCGTCCTTCCCGTCGTAACGCCCTGGCAATGCGCTGGCTGGTAGACTTCGCCCGCAAGCGCGGCGAGAAGTCCATGGCTCTGCGTTTGGCTGGTGAACTGTTGGACGCTGCTGAAGGTAAAGGTGCTGCAGTTAAGAAGCGTGAAGACGTGCACCGTATGGCTGAAGCCAACAAGGCTTTCTCGCACTACCGCTTCTAAMPRRRVAAKREILDDPKYGSQILAKFMNHVMESGKKAVAERIVYGALDKVKERKNSDPLEIFEKALDAIAPLVEVKSRRVGGATYQVPVEVRPSRRNALAMRWLVDFARKRGEKSMALRLAGELLDAAEGKGAAVKKREDVHRMAEANKAFSHYRFNANANANANA
D1-35_045672106fusACOG0480Elongation factor G 1ATGGCTCGTACTACACCGATTAATCGCTACCGTAACATCGGTATCGTTGCTCACGTGGATGCTGGTAAGACCACCACCACCGAGCGCGTCCTTTTTTACACCGGCAAAAGTCACAAAATGGGCGAGGTGCATGACGGCGCCGCGACCACAGACTGGATGGTGCAGGAGCAGGAGCGTGGTATTACCATTACTTCTGCTGCTATCACCGCCTTCTGGAAAGGTTCCGAGAAGCAGTACCCGCACGAGCATCGCTTCAACGTAATCGATACCCCGGGCCACGTAGACTTCACCATTGAAGTTGAACGTTCCCTGCGTGTACTCGACGGCGCGGTCGTTGTGTTCTGCGGTACTTCGGGTGTTGAGCCTCAGTCGGAAACCGTATGGCGTCAGGCCAACAAATACGGCGTTCCACGTCTTGTTTACGTAAACAAGATGGACCGTGCTGGTGCCAACTTCCTGCGCGTGATCGCTCAGATCAAGCAGCGTCTGGGTCACACTCCGGTGCCGATCCAGTTGGCTATCGGTTCCGAAGACAACTTCCAGGGTCAGATCGATCTGATCAACATGCAAGCTGTCTACTGGAACGATTCCGACAAGGGCATGGTTCCTGTTCGCAAGGACATTCCTGCTGAATTGCTGGAAGAAGCCGAGAAGTGGCGCGGCAACATGGTCGAGGCTGCGGCCGAAGCCAACGAAGAGCTGATGAACAAGTACCTCGAGGGTGAAGAACTCACCAACGAGGAAATCAAGGCCGCTCTGCGTCAGCGTACTATCGCTGGTGAGATCGTTCTGGCTGTTTGTGGTTCTTCCTTCAAGAACAAGGGTGTTCCCCTGGTTCTCGACGCCGTTATCGATTTCCTGCCTGCTCCAACCGACATTCCCGCTATCAAGGGTTCCAACCCGGATAACGAGGAAGAGGAAATGGAGCGTCACGCAAGTGACGACGAGCCGTTCGCGGCTTTGGCATTCAAGATCGCTACCGACCCATTCGTGGGTACCTTGACCTTTGTTCGGGTTTACTCGGGCGTGTTGGCCTCCGGCGACGGCGTGATCAACTCGGTCAAAGGCAAGAAAGAGCGTGTGGGTCGTATGGTGCAGATGCACGCAAACGCCCGTGAAGAAATCAAGGAAGTACGCGCTGGTGACATCGCGGCCTTGATCGGCATGAAGGACGTCACCACTGGCGAAACCTTGTGCAACGCTGACAAGCCAATCATCCTGGTTCGCATGGACTTCCCGGAGCCGGTTATTTCGGTTGCCGTTGAGCCCAAGACCAAGGATGACCAGGAAAAAATGGGTATCGCTCTGGGCAAACTTGCTCAGGAAGACCCGTCTTTCCGCGTCAAGACTGATGAAGAGACTGGTCAGACGATCATCTCCGGCATGGGCGAGCTGCACCTGGACATCCTGGTTGACCGGATGCGCCGTGAGTTCAACGTCGAAGCCAACATCGGCAAGCCTCAGGTTTCCTATCGTGAGCGCATCACGAAGAACTGTGAAATCGAAGGCAAGTTCGTTCGCCAATCCGGCGGTCGTGGCCAGTTCGGTCACTGCTGGATCCGTTTTGCACCGGCTGACGAAGGTCAGGAAGGTCTGCAATTCGTGAACGAAGTCGTAGGTGGTGTTGTTCCTAAGGAATACATCCCGGCGATCCAGAAGGGTATCGAAGAGCAGATGAAGAACGGCGTTGTTGCCGGCTATCCGCTGATCGGCCTGAAGGCAACAGTGTTTGATGGTTCTTACCACGACGTCGACTCCAACGAGATGGCGTTCAAGGTGGCTGCTTCCATGGCAACCAAGCAACTGGCCCAGAAGGGCGGTGGTGAGTTGCTCGAGCCGATCATGGCAGTAGAAGTCGTTACGCCTGAAGACTACATGGGTGATGTCATGGGCGACCTTAACCGTCGTCGTGGCATGATTCTGGGTATGGAAGATACGGTTTCCGGCAAGGTTATCCGCGCCGAGGTTCCGTTGGGTGAAATGTTCGGTTACGCGACCGACGTTCGTTCCATGTCTCAGGGTCGCGCAAGCTACTCTATGGAATTCAAAAAATACAATACAGCTCCGTCGCATATCGTCGAGACTGTTACTAAAAAGCAAGGCTGAMARTTPINRYRNIGIVAHVDAGKTTTTERVLFYTGKSHKMGEVHDGAATTDWMVQEQERGITITSAAITAFWKGSEKQYPHEHRFNVIDTPGHVDFTIEVERSLRVLDGAVVVFCGTSGVEPQSETVWRQANKYGVPRLVYVNKMDRAGANFLRVIAQIKQRLGHTPVPIQLAIGSEDNFQGQIDLINMQAVYWNDSDKGMVPVRKDIPAELLEEAEKWRGNMVEAAAEANEELMNKYLEGEELTNEEIKAALRQRTIAGEIVLAVCGSSFKNKGVPLVLDAVIDFLPAPTDIPAIKGSNPDNEEEEMERHASDDEPFAALAFKIATDPFVGTLTFVRVYSGVLASGDGVINSVKGKKERVGRMVQMHANAREEIKEVRAGDIAALIGMKDVTTGETLCNADKPIILVRMDFPEPVISVAVEPKTKDDQEKMGIALGKLAQEDPSFRVKTDEETGQTIISGMGELHLDILVDRMRREFNVEANIGKPQVSYRERITKNCEIEGKFVRQSGGRGQFGHCWIRFAPADEGQEGLQFVNEVVGGVVPKEYIPAIQKGIEEQMKNGVVAGYPLIGLKATVFDGSYHDVDSNEMAFKVAASMATKQLAQKGGGELLEPIMAVEVVTPEDYMGDVMGDLNRRRGMILGMEDTVSGKVIRAEVPLGEMFGYATDVRSMSQGRASYSMEFKKYNTAPSHIVETVTKKQGNANANANANA
D1-35_045681194tufA_2COG0050Elongation factor Tu-AGTGGCTAAAGAAAAATTTGATCGTTCCCTACCGCACGTCAACGTTGGCACCATTGGTCACGTTGACCACGGTAAAACCACTCTGACCGCTGCTCTGACTCGCGTCTGCTCCGAAGTTTTCGGTTCGGCCGTTGTTGCTTTCGACAAAATCGACAGCGCTCCGGAAGAAAAGGCTCGTGGTATCACCATCAACACCGCGCACGTTGAGTACAACTCTTCGATTCGTCACTACGCTCACGTTGACTGCCCAGGTCACGCTGACTATGTGAAGAACATGATCACCGGTGCTGCCCAGATGGACGGCGCGATCCTGGTTTGCTCGGCCGCCGATGGTCCGATGCCACAAACCCGTGAGCACATCCTGCTGTCCCGTCAGGTAGGCGTTCCGTACATCGTTGTCTTCCTGAACAAGGCTGACATGGTTGACGACGCTGAGCTGCTGGAACTGGTTGAGATGGAAGTGCGCGATCTGCTGAGCACTTACGACTTCCCAGGTGATGACACCCCAATCATCATCGGTTCGGCTCTGATGGCTCTGAACGGCCAGGACGACAACGAAATGGGTACCACCGCTGTGAAGCGTCTGGTAGAAACTCTGGACAGCTACATCCCAGAGCCAGTTCGTGTTATCGACAAGCCGTTCCTGATGCCTATCGAAGACGTATTCTCGATCTCCGGTCGCGGTACTGTTGTGACTGGTCGTATCGAGCGCGGTATCGTCAAGGTTCAGGATCCGCTGGAAATCGTAGGTCTGCGTGACACCACCGTCACCACCTGCACCGGTGTTGAAATGTTCCGTAAGCTGCTCGACGAAGGTCGTGCTGGCGAGAACTGCGGCGTTCTGCTGCGTGGTACCAAGCGTGACGACGTTGAGCGTGGCCAGGTTCTGGTTAAGCCGGGTTCGGTCAAGCCGCACACCAAGTTCGAAGCTGAAGTGTACGTTCTGAGCAAAGAAGAAGGCGGTCGTCACACTCCGTTCTTCAAAGGCTACCGTCCACAGTTCTACTTCCGGACCACTGACGTGACCGGTAACTGCGAGCTGCCGGAAGGCGTTGAAATGGTAATGCCAGGCGATAACATCAAAATGGTTGTCACCCTGATCAAAACCATCGCAATGGAAGACGGTCTGCGTTTCGCTATCCGTGAAGGCGGTCGTACCGTCGGCGCTGGCGTCGTAGCCAAAATCATCGAGTAAMAKEKFDRSLPHVNVGTIGHVDHGKTTLTAALTRVCSEVFGSAVVAFDKIDSAPEEKARGITINTAHVEYNSSIRHYAHVDCPGHADYVKNMITGAAQMDGAILVCSAADGPMPQTREHILLSRQVGVPYIVVFLNKADMVDDAELLELVEMEVRDLLSTYDFPGDDTPIIIGSALMALNGQDDNEMGTTAVKRLVETLDSYIPEPVRVIDKPFLMPIEDVFSISGRGTVVTGRIERGIVKVQDPLEIVGLRDTTVTTCTGVEMFRKLLDEGRAGENCGVLLRGTKRDDVERGQVLVKPGSVKPHTKFEAEVYVLSKEEGGRHTPFFKGYRPQFYFRTTDVTGNCELPEGVEMVMPGDNIKMVVTLIKTIAMEDGLRFAIREGGRTVGAGVVAKIIEPGPT0015245_1779DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONTRIGGERED_IMMUNITYPAMP|EFFECTOR_TRIGGERED_IMMUNITY|PTIPTI-BACTERIAL_EF-TU,PGPT0015245-elf18|tuf|tufA-K02358NANA
D1-35_04569312rpsJCOG005130S ribosomal protein S10ATGCAAAATCAGCAAATCCGTATCAGGTTGAAGGCTTTTGACCATCGCCTGATCGACCAATCCACCCAGGAAATCGTGGAAACCGCGAAACGTACTGGTGCTCAAGTGCGTGGTCCAATTCCACTGCCTACCCGTAAAGAGCGGTTCACCGTTCTGGTCTCCCCGCACGTCAACAAAGACGCGCGTGACCAGTACGAGATCCGTACTCATAAGCGCGTTCTGGACATCGTCCAGCCAACGGATAAAACCGTTGATGCTCTTATGAAGCTCGATCTTGCGGCCGGTGTGGAAGTGCAGATCAGCCTCGGCTAAMQNQQIRIRLKAFDHRLIDQSTQEIVETAKRTGAQVRGPIPLPTRKERFTVLVSPHVNKDARDQYEIRTHKRVLDIVQPTDKTVDALMKLDLAAGVEVQISLGPGPT0015245_5632DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONTRIGGERED_IMMUNITYPAMP|EFFECTOR_TRIGGERED_IMMUNITY|PTIPTI-BACTERIAL_EF-TU,PGPT0015245-elf18|tuf|tufA-K02358NANA
D1-35_04570636rplCCOG008750S ribosomal protein L3ATGACTATTGGTGTAGTCGGTCGTAAATGCGGTATGACCCGTATTTTCACCGAAGAAGGTGTCTCCATTCCGGTCACGGTCATTGAGATCGAGCCGAATCGCGTCACCCAGTTCAAAACTGAAGAGATCGATGGCTATCGTGCAGTGCAAGTCACTGTCGGCGAGCGTCGTGCTTCGCGTGTAACAGCTGCTCAAGCTGGCCACTTCGCCAAGGCGAACGTTGCCGCTGGTCGTACCGTAATGGAATTCCGCCTTGAAGAAGGCGATTACCAGGCCGGCGATCTGATCAACGCTGAAATCTTCGCCGCTGGCCAACTGGTTGATGTAACCGGTCAGTCCAAGGGTAAAGGCTTCCAGGGTACGATCAAGCGTTGGAACTTCCGCGGGCAAGATAACACCCACGGTAACTCCGTATCCCACCGCGTTCCAGGCTCTATCGGCCAGTGCCAGACTCCTGGTCGTGTATTCAAGGGCAAAAAAATGTCCGGTCATATGGGCGCCGAGCGCGTGACCGTGCAGTCCCTCGAAGTAGTGCGCGTGGACGCTGAACGCAATCTGTTGTTGGTCAAGGGCGCTGTTCCTGGCGCTACTGGCGGCAACTTGGTTGTACGTCCAGCAGCCAAGGCTCGCGGTTAAMTIGVVGRKCGMTRIFTEEGVSIPVTVIEIEPNRVTQFKTEEIDGYRAVQVTVGERRASRVTAAQAGHFAKANVAAGRTVMEFRLEEGDYQAGDLINAEIFAAGQLVDVTGQSKGKGFQGTIKRWNFRGQDNTHGNSVSHRVPGSIGQCQTPGRVFKGKKMSGHMGAERVTVQSLEVVRVDAERNLLLVKGAVPGATGGNLVVRPAAKARGNANANANANA
D1-35_04571603rplDCOG008850S ribosomal protein L4ATGCAATTAAATGTAAATGACGCTCAAGCGATCGAAGTTTCCGAACTGACATTTGGCGGCGAATTCAACGAGACGCTGGTTCACCAAGCAGTCGTGGCCTACATGGCCGGCGGCCGTCAAGGTAGCAAGCAGCAAAAGACCCGTTCCGACGTTTCTGGTGGCGGTAAGCGCCCATGGCGTCAGAAAGGTACTGGCCGTGCTCGTGCCGGTACTATCCGTAGCCCAATCTGGCGTGGCGGCGGTACCACTTTCGCAGCTCGTCCTCAGGATCACTCCCAGAAGCTGAACAAGAAGATGTATCGCGCAGCAATGCGTTCCATCCTTGCTGAGCTGGTGCGTACTGATCGTCTGGTCGTGGTTCAGGACTTCGCTGTTGAAGCACCGAAAACCAAAGATCTGCTGAACAAGCTGAATGGCATGGGCCTGACTGACGTCCTGATCGTGTCTGACGCTGTTGATCAGAACCTGTACCTGGCTGCTCGCAACCTGCCACACGTCGATGTCCGTGACGTGCAGGGTTCCGATCCGGTCAGTCTGATCGCATACGACAAGGTGTTGATCACCGTGTCGGCCGTGAAGAAATTCGAGGAGCTGCTGGGATGAMQLNVNDAQAIEVSELTFGGEFNETLVHQAVVAYMAGGRQGSKQQKTRSDVSGGGKRPWRQKGTGRARAGTIRSPIWRGGGTTFAARPQDHSQKLNKKMYRAAMRSILAELVRTDRLVVVQDFAVEAPKTKDLLNKLNGMGLTDVLIVSDAVDQNLYLAARNLPHVDVRDVQGSDPVSLIAYDKVLITVSAVKKFEELLGNANANANANA
D1-35_04572300rplWCOG008950S ribosomal protein L23ATGAACCAGGAACGCGTATTTAAAGTTCTGCTTGGCCCGCACGTTTCCGAGAAGGCTACGGTTCTGGCAGACAAGAAAGGCCAGTTCGTTTTCAAGGTTGCAACCGATGCAACCAAGCTGGAAATCAAGAAGGCCGTCGAAAGCCTGTTCAGCGTGAAAGTAGAGCGCGTTACTACCCTGAACGTTCTGGGTAAGAGCAAGCGCACTGCTCGCGGTCTGGGCAAGCGTAATGACTGGAAGAAGGCAGTTATCTCCCTTCAGCCAGGCCAAGATCTCGATTTCAGCAGCAGTGCTGAGTAAMNQERVFKVLLGPHVSEKATVLADKKGQFVFKVATDATKLEIKKAVESLFSVKVERVTTLNVLGKSKRTARGLGKRNDWKKAVISLQPGQDLDFSSSAENANANANANA
D1-35_04573825rplBCOG009050S ribosomal protein L2ATGGCAATCGTTAAATGCAAACCGACTTCCCCTGGCCGCCGTTTTGTGGTCAAGGTGGTCAACCAGGAGCTGCATAAAGGCGCTCCTCACGCACCGCTGCTCGAGAAAAAATCGAAGTCTGGTGGTCGTAACAACAATGGCCGTATTACCACTCGTCACATTGGTGGTGGTCATAAGCAGCATTATCGTCTGGTCGACTTCCGTCGCAACGACAAGGATGGCATCGCTGCCACCGTCGAGCGTATCGAATACGATCCAAACCGTACTGCTCACATCGCTCTGCTGCTGTACGCAGATGGCGAGCGTCGCTACATCATCGCCCCTAAAGGCGTGAGTGCTGGCGACCAGCTGATCGCAGGTGCTCTGGCACCGATCAAGCCGGGCAACGCTCTGCAACTGCGCAACATTCCAGTTGGTAGCACCGTACACGGCATCGAATTGAAGCCAGGTAAAGGCGCGCAAATCGCTCGTTCCGCTGGTGCTTCGGCTCAGCTGATCGCTCGTGAAGGTGTCTACGTGACCCTGCGTCTGCGTTCTGGTGAGATGCGTAAAGTCCTGGCTGAATGCCGTGCGACCCTGGGCGAAGTCTCGAACTCCGAGCACAGCCTGCGTTCGTTGGGTAAAGCTGGTGCCAAGCGCTGGCGTGGCGTTCGCCCAACCGTTCGTGGTGTTGCCATGAACCCGGTTGACCACCCACATGGTGGTGGTGAAGGTCGTACCTCTGGTGGTCGTCATCCGGTATCGCCATGGGGCTTCCCGACTAAGGGCGCGAAGACTCGTGGTAATAAGCGTACCGACAAAATGATCGTCCGTCGTCGCAAGTAAMAIVKCKPTSPGRRFVVKVVNQELHKGAPHAPLLEKKSKSGGRNNNGRITTRHIGGGHKQHYRLVDFRRNDKDGIAATVERIEYDPNRTAHIALLLYADGERRYIIAPKGVSAGDQLIAGALAPIKPGNALQLRNIPVGSTVHGIELKPGKGAQIARSAGASAQLIAREGVYVTLRLRSGEMRKVLAECRATLGEVSNSEHSLRSLGKAGAKRWRGVRPTVRGVAMNPVDHPHGGGEGRTSGGRHPVSPWGFPTKGAKTRGNKRTDKMIVRRRKNANANANANA
D1-35_04574276rpsSCOG018530S ribosomal protein S19GTGCCACGTTCTCTGAAAAAAGGTCCTTTTATTGATCTTCACCTACTGAAGAAGATCGAAGTGGCGGCGGAAAAGAACGATCGCAAACCAGTTAAGACCTGGTCGCGTCGTTCGATGATCCTGCCACAGATGGTCGGTCTGACCATCGCTGTACACAACGGTCGCCAGCACGTCCCAGTTCTCGTGAACGAAGACATGGTCGGCCACAAACTGGGCGAGTTCGCCGGTACCCGCACATATCGTGGGCACGTGGCTGACAAGAAAGCCAAGCGTTAAMPRSLKKGPFIDLHLLKKIEVAAEKNDRKPVKTWSRRSMILPQMVGLTIAVHNGRQHVPVLVNEDMVGHKLGEFAGTRTYRGHVADKKAKRNANANANANA
D1-35_04575333rplVCOG009150S ribosomal protein L22ATGGAAGTAGCCGCTAAGTTGTCGGGCGCTCGAATCTCCGCCCAGAAAGCCCGCTTGGTCGCCGACCAGATCCGCGGGAAGAAGGTGGGCGAAGCGCTCAACCTGTTGGCTTTCAGCAGTAAGAAAGCCGCCGAGATCATGAAAAAAGTGCTGGAGTCGGCCGTAGCCAACGCCGAGCATAACGAAGGCGCAGACGTTGATGACCTGAAGGTCAGCACCGTTTTCGTCAACGAAGGGCGTTCGCTGAAGCGCATCATGCCACGTGCCAAAGGCCGTGCTGATCGCATCGTCAAGCGGTCTTGCCATATCACTGTCAAGGTTGCTGACAAGTAAMEVAAKLSGARISAQKARLVADQIRGKKVGEALNLLAFSSKKAAEIMKKVLESAVANAEHNEGADVDDLKVSTVFVNEGRSLKRIMPRAKGRADRIVKRSCHITVKVADKNANANANANA
D1-35_04576687rpsCCOG009230S ribosomal protein S3ATGGGTCAGAAAGTACATCCCATTGGCATTCGCCTGGGAATCGTCAAGGAGCACACCTCCGTCTGGTACGCAGACGGTCGGACTTATGCGGACTACTTGTTCGCTGATCTGAAGGTGCGTGAGTATCTCCAAGACAAACTAAAAAGCGCGTCCGTCAGCCGTATCGATATCCATCGTCCGGCTCAGACTGCACGTATCACCATCCACACCGCTCGTCCAGGTATCGTTATCGGGAAGAAAGGTGAAGATGTTGAGAAACTGCGTCAGGACCTGACCAAGCAAATGGGTGTGCCTGTGCACATCAATATCGAAGAGATCCGCAAGCCGGAGCTCGACGGTATGCTGGTTGCGCAGAGCGTAGCTCAGCAGCTGGAGCGTCGCGTAATGTTCCGTCGCGCTATGAAGCGCGCTGTACAGAACGCCATGCGCATTGGTGCCAAAGGCATCAAAATCCAAGTGAGCGGTCGTCTCGGCGGTGCTGAAATCGCACGTACTGAATGGTATCGCGAAGGTCGTGTGCCATTGCACACCCTGCGTGCCGACATCGACTATGCCAACTACGAAGCTCACACCACTTACGGTGTGATCGGTGTAAAGGTTTGGATCTTCAAAGGCGAAGTAATTGGTGGTCGCCAAGAAGAACTGAAACCACAAGCACCAGCGCCTCGTAAAAAAGCTGCTAAGTAAMGQKVHPIGIRLGIVKEHTSVWYADGRTYADYLFADLKVREYLQDKLKSASVSRIDIHRPAQTARITIHTARPGIVIGKKGEDVEKLRQDLTKQMGVPVHINIEEIRKPELDGMLVAQSVAQQLERRVMFRRAMKRAVQNAMRIGAKGIKIQVSGRLGGAEIARTEWYREGRVPLHTLRADIDYANYEAHTTYGVIGVKVWIFKGEVIGGRQEELKPQAPAPRKKAAKNANANANANA
D1-35_04577414rplPCOG019750S ribosomal protein L16ATGTTGCAACCAAAGCGTACGAAGTTCCGCAAGCAGATGACCGGTCACAACCGTGGCCTGGCATTGCGCGGTAGCAAAGTCAGCTTCGGCGAGTTCGCGCTGAAGTCTGTTGCTCGTGGTCGTCTCACCGCTCGTCAGATCGAGTCAGCGCGTCGTGCTCTGACCCGTCACGTAAAACGTGGCGGCAAGATCTGGATCCGTGTATTCCCGGACAAGCCTGTCACCAAGAAGCCACTCGAAGTTCGGATGGGTAAAGGTAAGGGTAACGTGGAGTACTGGGTTGCCCAGATTCAGCCAGGCAAAGTCCTGTATGAAATCGAGGGTGTTTCTGAAGAGCTGGCGCGTGAGGCTTTCGCCCTGGCTGCTGCAAAGCTGCCGCTCGCCACCTCCTTTGTTAAACGGACGGTGATGTGAMLQPKRTKFRKQMTGHNRGLALRGSKVSFGEFALKSVARGRLTARQIESARRALTRHVKRGGKIWIRVFPDKPVTKKPLEVRMGKGKGNVEYWVAQIQPGKVLYEIEGVSEELAREAFALAAAKLPLATSFVKRTVMNANANANANA
D1-35_04578192rpmCCOG025550S ribosomal protein L29ATGAAAGCGAATGAACTTCGTGAAAAATCAGCACAGCAGCTGAACGAGCAACTGCTCGGCCTGCTGCGCGACCAGTTCAATCTGCGTATGCAGAAGGCAACTGGCCAGTTGGGGCAGTCTCATCTGCTCTCGCAAGTTAAGCGTGACATCGCTCGCGTGAAAACTGTGCTCAACCAGCAGGCAGGTAAGTAAMKANELREKSAQQLNEQLLGLLRDQFNLRMQKATGQLGQSHLLSQVKRDIARVKTVLNQQAGKNANANANANA
D1-35_04579267rpsQCOG018630S ribosomal protein S17ATGGCTGAAGCCGAAAAAACTGTCCGTACGCTGACTGGCCGTGTTGTCAGCGACAAGATGGACAAAACCATCACCGTTCTGATCGAGCGTCGCGTTAAGCACCCGATCTACGGTAAATACGTTAAGCGTTCGACTAAGCTGCACGCGCACGACGAAACCAATCAGTGCCACATCGGCGACAAAGTCACTATTCGTGAAACTCGTCCGATGGCCAAGACCAAGTCTTGGGCGCTGGTTGATGTTCTCGAACGCGCTGTGGAAGTCTAAMAEAEKTVRTLTGRVVSDKMDKTITVLIERRVKHPIYGKYVKRSTKLHAHDETNQCHIGDKVTIRETRPMAKTKSWALVDVLERAVEVNANANANANA
D1-35_04580369rplNCOG009350S ribosomal protein L14ATGATTCAGACTCAATCCATGCTCGATGTGGCCGATAACAGCGGCGCTCGCCGTGTTATGTGCATCAAGGTGCTGGGTGGCTCCCATCGTCGTTACGCTGGTATCGGTGACATCATCAAAGTTACCGTCAAGGAAGCAATTCCTCGCGGTAAGGTGAAGAAAGGTCAAGTGATGACTGCTGTTGTAGTCCGCACTCGCCATGGTGTTCGTCGTGCTGACGGCTCCATCATCCGCTTTGATGGCAACGCTGCTGTTCTGCTGAACAACAAGCAAGAGCCAATCGGCACCCGTATCTTTGGGCCAGTGACCCGTGAACTTCGTACTGAGAAGTTCATGAAGATCGTCTCGCTCGCCCCAGAAGTGCTGTAAMIQTQSMLDVADNSGARRVMCIKVLGGSHRRYAGIGDIIKVTVKEAIPRGKVKKGQVMTAVVVRTRHGVRRADGSIIRFDGNAAVLLNNKQEPIGTRIFGPVTRELRTEKFMKIVSLAPEVLNANANANANA
D1-35_04581315rplXCOG019850S ribosomal protein L24ATGCAAAAGATTCGTCGTGACGACGAGATCATCGTGATCGCCGGCAAAGACAAAGGTAAGCGCGGTAAGGTGCTTAAGGTTCTCGCTAACAACCGTCTGGTTATTGGCGGTCTGAACCTGGTCAAGCGTCATACCAAGCCTAACCCGATGTCGGGCGTGCAGGGCGGTATCGTCGAAAAAGAAGCTCCACTGGATGCTTCTAACGTCGCCATTTTCAACGGCGAAACCAACAAGGCTGACCGCGTTGGTTTCAAAGTAGAAGACGGCAAGAAAATTCGTGTCTTCAAGTCGACCCAAAAAGCGGTTGATGCTTGAMQKIRRDDEIIVIAGKDKGKRGKVLKVLANNRLVIGGLNLVKRHTKPNPMSGVQGGIVEKEAPLDASNVAIFNGETNKADRVGFKVEDGKKIRVFKSTQKAVDANANANANANA
D1-35_04582540rplECOG009450S ribosomal protein L5ATGGCACGACTAAAAGAGATTTACCGGAAGGAAATCGCACCGAAGCTTAAGGAAGAACTTAAGCTTTCGAACGTGATGGAAGTTCCGCGCGTTACCAAAATCACCCTGAACATGGGTCTGGGCGAAGCGATCGGCGACAAAAAAGTCATCGAGCACGCTGTAGCTGACCTGGAAAAGATCACCGGTCAGAAAGTCGTTGTGACTTACGCTCGGAAATCCATCGCTGGCTTCAAAGTCCGTGAAGGTTGGCCGATCGGCGTCAAGGTGACCCTGCGCCGTGAGCGTATGTACGAGTTCCTGGATCGTCTGCTGTCGATCTCCCTGCCTCGGGTTCGCGACTTCCGCGGCCTGAATGCCAAGTCCTTCGATGGTCGTGGCAACTACAGCATGGGCGTGAAAGAGCAGATCATCTTCCCGGAAATCGATTACGACAAGATCGACGCTCTCCGCGGTCTGGACATTACCCTGACCACCACTGCTCGGACGGATGAAGAAGGTCGCGCACTGCTGCGTGCTTTCAAATTCCCGTTCCGCAACTGAMARLKEIYRKEIAPKLKEELKLSNVMEVPRVTKITLNMGLGEAIGDKKVIEHAVADLEKITGQKVVVTYARKSIAGFKVREGWPIGVKVTLRRERMYEFLDRLLSISLPRVRDFRGLNAKSFDGRGNYSMGVKEQIIFPEIDYDKIDALRGLDITLTTTARTDEEGRALLRAFKFPFRNNANANANANA
D1-35_04583306rpsNCOG019930S ribosomal protein S14ATGGCCAAGAAGAGCATGAAGAACCGTGAGCTGAAGCGTCAGCTCACCGTTGCCAAGTACGCCACCAAGCGTGCAGCGCTGAAAGCTATCATCGTTGATCTGAACGCAAGTCCAGAAGCGCGTTGGGAAGCTACCGTAGCACTGCAGAAGCAGCCACGTGACGCCAGCGCTTCGCGCATGCGTAACCGCTGCCGCCTGACTGGTCGTCCGCACGGCGTGTACCGCAAGTTCGGCCTCGGCCGTAACATGCTGCGTCAAGCTGCAATGCGTGGTGACGTTCCAGGTCTGGTCAAGGCCAGCTGGTAAMAKKSMKNRELKRQLTVAKYATKRAALKAIIVDLNASPEARWEATVALQKQPRDASASRMRNRCRLTGRPHGVYRKFGLGRNMLRQAAMRGDVPGLVKASWNANANANANA
D1-35_04584393rpsHCOG009630S ribosomal protein S8ATGAGTATGCAGGACCCGTTAGCGGACATGCTAACTCGTATCCGTAATGCCCAGATGGCTGAAAAGTCCGTCGTAAGCATGCCATCTTCTACGTTGAAGGTAGCTGTTGCCAAAGTCCTGAAGGACGAAGGTTACATTGCGGGTTATCAGATCAGCAGCGAAATCAAGCCTCTGCTGTCCATCGAGCTTAAGTACTTCGAAGGCCGTCCGGTCATCGAGGAAGTGAAGCGCGTTAGCCGTCCAGGCCTGCGTCAGTACAAGTCCGTCGATGATCTGCCAAAAGTTCGTGGCGGTCTCGGTGTGTCTATCGTCTCCACCAACAAAGGTGTGATGACGGATCGTGCTGCGCGCGCTGCCGGTGTCGGCGGCGAAGTTCTTTGCACTGTGTTCTAAMSMQDPLADMLTRIRNAQMAEKSVVSMPSSTLKVAVAKVLKDEGYIAGYQISSEIKPLLSIELKYFEGRPVIEEVKRVSRPGLRQYKSVDDLPKVRGGLGVSIVSTNKGVMTDRAARAAGVGGEVLCTVFNANANANANA
D1-35_04585534rplFCOG009750S ribosomal protein L6ATGTCACGCGTCGCTAAGAACCCCGTTAAGCTGCCAGCCGGTGTCGAAGTCAAATTCGCAGGCCAACAGCTTTCGGTGAAGGGTGCCAAGGGCACTCTGCAACTGAACATCCATTCGTCCGTTGAGATCGTTGAAGAAGCTGGTGAGCTGCGTTTCGCTGCTCGCAATGGCGATCAACAGACTCGCGCAATGGCTGGTACCACTCGTGCGTTGGTAAACAACATGGTCCAAGGCGTAAGCCAAGGCTTCGAGCGCAAGCTCCAGCTGGTCGGTGTTGGTTACAAAGCGCAAGCAAAAGGCACAGTGCTGAACCTGGCTCTTGGCTTCTCGCACCCAGTGGATTATGAACTGCCGGAAGGCATCACCGCTGAGACTCCTAGCCAGACCGATATCCTGATCAAGGGCATCGACAAGCAGCTGGTAGGTCAAGTGGCCGCCGAGATCCGCGACTTCCGTCCACCAGAGCCGTACAAAGGCAAAGGTGTGCGCTACGCGGACGAAGTCGTCCGTCGTAAAGAAGCCAAGAAGAAGTAGMSRVAKNPVKLPAGVEVKFAGQQLSVKGAKGTLQLNIHSSVEIVEEAGELRFAARNGDQQTRAMAGTTRALVNNMVQGVSQGFERKLQLVGVGYKAQAKGTVLNLALGFSHPVDYELPEGITAETPSQTDILIKGIDKQLVGQVAAEIRDFRPPEPYKGKGVRYADEVVRRKEAKKKNANANANANA
D1-35_04586351rplRCOG025650S ribosomal protein L18ATGACCGACAAAAAAGTTACTCGACTGCGTCGCGCTCGCAAAGCACGCCTGAAAATGCACGAACTCGAAGTCGTGCGTCTCTGCGTGTTCCGCTCGTCGCAGCACATCTACGCCCAGGTCATTTCGGCCGACGGCAACAAAGTCCTGGCAAGTGCCTCGACTTTGGATAAAGAACTGCGTGATGGCGCCACTGGCAACATCGACGCGGCCACTAAGGTTGGCCAGCTGGTCGCTACGCGTGCTAAAGCCGCTGGCGTCTCGCAGGTGGCTTTCGACCGCTCTGGCTTCAAGTACCACGGCCGCGTCAAGGCGCTGGCTGATGCTGCTCGTGAAGCTGGGCTGGAGTTCTAAMTDKKVTRLRRARKARLKMHELEVVRLCVFRSSQHIYAQVISADGNKVLASASTLDKELRDGATGNIDAATKVGQLVATRAKAAGVSQVAFDRSGFKYHGRVKALADAAREAGLEFNANANANANA
D1-35_04587501rpsECOG009830S ribosomal protein S5ATGTCAAATAACGACCAAAAGCGCGACGAAGGCTACATCGAGAAGCTGGTTCAAGTTAACCGCGTAGCCAAAACCGTTAAAGGCGGCCGTATCTTCACTTTCACCGCGTTGACCGTGGTAGGTGATGGTAAAGGGCGTGTTGGCTTCGGCCGTGGCAAGTCGCGTGAAGTGCCTGCTGCGATCCAGAAGGCAATGGAAGCTGCTCGCCGCAACATGATCCAGGTTGATCTGAACGGCACCACCCTGCAGTACGCAATGAAGTCTGCCCATGGCGCTTCGAAGGTGTACATGCAGCCTGCTTCTGAAGGTACCGGTATCATCGCTGGCGGCGCTATGCGTGCTGTCCTCGAAGTTGCTGGCGTTCAGAACGTTCTGGCCAAGTGCTACGGCTCGACTAACCCGGTAAACGTGGTTCACGCCACCTTCAAGGGTTTGAAAGCAATGCAGTCTCCTGAATCCATTGCCGCCAAGCGTGGCAAAAGCGTCAAGGAGATCTTCTGAMSNNDQKRDEGYIEKLVQVNRVAKTVKGGRIFTFTALTVVGDGKGRVGFGRGKSREVPAAIQKAMEAARRNMIQVDLNGTTLQYAMKSAHGASKVYMQPASEGTGIIAGGAMRAVLEVAGVQNVLAKCYGSTNPVNVVHATFKGLKAMQSPESIAAKRGKSVKEIFNANANANANA
D1-35_04588177rpmDCOG184150S ribosomal protein L30ATGGCTACCGTAAAAGTTACGCTGATCAAAAGCATGACCGGCCGCATCCCTAACCACAAACTGTGCGTTAAGGGTCTGGGTCTGCGTCGCATCGGTCACACTGTAGAAGTCCAGGATACTCCCGAGAATCGCGGGATGATCAACAAGGCTTACTACATGCTGCGTGTCGAGGGTTAAMATVKVTLIKSMTGRIPNHKLCVKGLGLRRIGHTVEVQDTPENRGMINKAYYMLRVEGNANANANANA
D1-35_04589438rplOCOG020050S ribosomal protein L15ATGAAACTCAATGATCTGAGTCCAGCGCCGGGTTCCCGTCGCGAAAAGCATCGTCCGGGCCGTGGTATCGGTAGTGGTTTGGGCAAGACCGGTGGCCGTGGCCACAAGGGTCAGACCTCTCGCTCCGGTGGCACCATTGCTCCAGGCTTTGAAGGCGGTCAACAGCCGCTGCATCGTCGCCTGCCGAAGTTCGGTTTCGTTTCCCTGAAAGCCATGGACCGCGCAGAAGTGCGTCTGTCCGAGCTGGCCAAAGTGGATGGCGATATCGTCACCGTGCAGTCCCTGAAGGATGCCAACGTGATCAACCAGAACGTACAGCGTGTGAAAATCATGCTGTCGGGCGAAGTTGCTCGTGCTGTCACCATCGGAAAGGGAATCGGCGCCACCAAAGGTGCGCGTGCGGCTATCGAAGCAGCTGGCGGCAAGTTCGAGGAATAAMKLNDLSPAPGSRREKHRPGRGIGSGLGKTGGRGHKGQTSRSGGTIAPGFEGGQQPLHRRLPKFGFVSLKAMDRAEVRLSELAKVDGDIVTVQSLKDANVINQNVQRVKIMLSGEVARAVTIGKGIGATKGARAAIEAAGGKFEENANANANANA
D1-35_045901329secYCOG0201Protein translocase subunit SecYATGGCTAAGCAAGGTGCTCTCTCTGCGCTCGGCAAAGGCGGTATGTCTGAACTCTGGGCTCGTCTGCGTTTTCTGTTCCTGGCGATTATCGTCTACCGAATAGGCGCACACATCCCGGTTCCAGGTATCAACCCGGACCGACTCGCGGACCTGTTTCGACAGAATGAGGGGACCATTCTTAGCTTGTTCAACATGTTTTCCGGCGGCGCGCTGGAGCGGATGAGCATCTTTGCACTGGGGATCATGCCGTACATTTCGGCATCGATCATCATGCAGCTGATGTCCGCTGTCAGCCCGCAGCTGGAGCAGTTGAAGAAGGAAGGTGAAGCTGGCCGTCGCAAGATCAGCCAGTACACCCGCTACCTCACTGTCGTCCTCGCTCTCGTCCAGGCTGTTGGCATGTCCATCGGTCTGGCGGGGCAGGGCGTAGCGTTCACTGGTGACTTTGGCTTCCATTTCGTCGCGGTAACCACTTTTGTGGCGGGTGCGATGTTCATGATGTGGCTGGGTGAGCAGATTACTGAGCGTGGTGTTGGCAACGGTATCTCGATGTTGATCTTCGCAGGTATCGTCGCCGGTCTTCCGAGAGCGATCGGGCAGTCTTTCGAGTCTGCGCGTCAGGGTGATATCAACATCTTCGCCCTGGTTGCCATCGGTTTGCTGGCAGTAGCGATTATCGGTTTCGTGGTGTTCATTGAGCGTGGCCAGCGTCGTATCGCTGTTCACTACGCCAAGCGTCAGCAGGGCCGCAAGGTTTTTGCTGCGCAGACCAGCCACTTGCCGTTGAAGGTGAACATGGCCGGCGTTATCCCGGCCATTTTCGCGAGCAGCATCTTGCTGTTCCCGGCTTCGTTGGGTGCCTGGTTCGGCCAGTCTGAAGGTATGGGCTGGTTGCAGGACATCTCGCAGTCGATCGCTCCTGGTCAGCCGTTGAATATTCTGCTGTTTAGTGCAGGGATTATTTTCTTCTGCTTCTTCTATACGGCGTTGATGTTCAATCCGAAAGACGTAGCGGAAAACCTGAAGAAGTCCGGTGCCTTTATTCCGGGTATCCGTCCGGGCGAGCAGTCGGCGCGCTACATTGATGGCGTTCTGACGCGTTTGACCTTGTTCGGTGCTCTTTACATGACGGCCGTGTGCTTGCTTCCCCAGTTCCTGGTGGTTGCGGCAAACGTTCCGTTCTACCTTGGCGGGACCTCGTTGCTGATCGTGGTCGTGGTTGTGATGGACTTCATGTCCCAAGTACAATCGCACCTCGTTTCGCACCAGTACGAATCCCTGATGAAGAAAGCCAACCTGAAGGGCTACGGCAGCGGCATGTTGCGCTGAMAKQGALSALGKGGMSELWARLRFLFLAIIVYRIGAHIPVPGINPDRLADLFRQNEGTILSLFNMFSGGALERMSIFALGIMPYISASIIMQLMSAVSPQLEQLKKEGEAGRRKISQYTRYLTVVLALVQAVGMSIGLAGQGVAFTGDFGFHFVAVTTFVAGAMFMMWLGEQITERGVGNGISMLIFAGIVAGLPRAIGQSFESARQGDINIFALVAIGLLAVAIIGFVVFIERGQRRIAVHYAKRQQGRKVFAAQTSHLPLKVNMAGVIPAIFASSILLFPASLGAWFGQSEGMGWLQDISQSIAPGQPLNILLFSAGIIFFCFFYTALMFNPKDVAENLKKSGAFIPGIRPGEQSARYIDGVLTRLTLFGALYMTAVCLLPQFLVVAANVPFYLGGTSLLIVVVVVMDFMSQVQSHLVSHQYESLMKKANLKGYGSGMLRPGPT0025725_2230DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-SEC-SECRETION_PATHWAYCE-SEC-SRP_CORE_COMPONENTS,PGPT0025725-secY-K03076NANA
D1-35_04592357rpsMCOG009930S ribosomal protein S13ATGGCCCGTATTGCAGGCGTCAACATTCCAGATAACAAGCATACTGTTATCTCGCTGACCTACATCTATGGTGTTGGTCGCACTACTGCACAGAAAATTTGTGCAGAGACTGGGGTCAACCCAGCAGCAAAGATCAAGGATCTGAGCGACGAGCAAATTGAACAGCTGCGTGGCGAAGTGGCGAAGTTCACCACTGAAGGTGACCTGCGTCGCGAAATCAACATGAAAATCAAGCGCTTGATGGACCTCGGTTGCTATCGCGGTCTGCGTCATCGTCGTGGTCTGCCAGTACGCGGTCAGCGTACCAAGACCAACGCGCGTACCCGTAAAGGTCCGCGTAAGCCGATCCGCAAGTAAMARIAGVNIPDNKHTVISLTYIYGVGRTTAQKICAETGVNPAAKIKDLSDEQIEQLRGEVAKFTTEGDLRREINMKIKRLMDLGCYRGLRHRRGLPVRGQRTKTNARTRKGPRKPIRKNANANANANA
D1-35_04593390rpsKCOG010030S ribosomal protein S11ATGGCAAAACCTGCTGCTCGTCCTCGTAAAAAAGTTAAAAAGACAGTGGTTGATGGCATCGCCCACATCCATGCATCTTTTAACAACACCATCGTGACCATTACCGACCGTCAAGGTAACGCTCTTTCCTGGGCTACCTCCGGTGGTTCGGGTTTCCGCGGTTCCCGCAAGTCCACTCCGTTCGCTGCTCAAGTAGCTGCTGAGCGTGCTGGTCAAGCTGCGCTGGAATACGGCCTGAAAAACCTCGACGTCAACGTCAAAGGTCCAGGTCCAGGTCGTGAATCCGCAGTCCGCGCTTTGAACGGCTGTGGCTACAAGATCGCCAGCATCACCGACGTGACGCCAATCCCGCACAACGGGTGCCGTCCGCCGAAGAAGCGCCGCGTGTAAMAKPAARPRKKVKKTVVDGIAHIHASFNNTIVTITDRQGNALSWATSGGSGFRGSRKSTPFAAQVAAERAGQAALEYGLKNLDVNVKGPGPGRESAVRALNGCGYKIASITDVTPIPHNGCRPPKKRRVNANANANANA
D1-35_04594621rpsDCOG052230S ribosomal protein S4ATGGCTCGTTACATTGGTCCAAAATGCAAACTCGCTCGTCGCGAAGGCACCGATCTCTTCCTGAAGAGCGGCGTGCGCGCGATCGAATCGAAGTGCAACATTGAAGCAGCACCTGGTATCCACGGCCAACGCCGCGGTCGCCAGTCCGATTACGGCACCCAACTGCGTGAAAAGCAGAAGGTCCGTCGTATCTACGGCGTTCTCGAGCGTCAATTCAGCGGCTACTACAAAGAAGCTGCTGGCAAGAAAGGCGCAACCGGCGAAAACCTGTTGCAGCTGCTCGAATGCCGTCTGGACAACGTTGTATACCGTATGGGTTTCGGTTCTACTCGTGCCGAATCCCGTCAGCTGGTATCGCACAAGTCGATCAGCGTTAACGGCCAGACCGTGAACGTTCCGTCCTACCAGGTTCGTGCTGGTGACGTGGTTGCTGTTCGCGAGAAAGCAAAAAACCAACTTCGCATTGTCCAAGCTCTCGATCTGTGTGCCCAACGTGGCCGCGTAGAATGGGTAGAAGTAGACACTGAGAAGAAGTCGGGCGTTTTCAAGAACGTTCCTGCTCGCAGTGATCTGTCCGCCGACATCAACGAAAGCCTGATTGTCGAGCTCTACTCCAAGTAAMARYIGPKCKLARREGTDLFLKSGVRAIESKCNIEAAPGIHGQRRGRQSDYGTQLREKQKVRRIYGVLERQFSGYYKEAAGKKGATGENLLQLLECRLDNVVYRMGFGSTRAESRQLVSHKSISVNGQTVNVPSYQVRAGDVVAVREKAKNQLRIVQALDLCAQRGRVEWVEVDTEKKSGVFKNVPARSDLSADINESLIVELYSKNANANANANA
D1-35_045951002rpoADNA-directed RNA polymerase subunit alphaATGCAGATTTCGGTAAATGAGTTCCTGACACCCCGCCATATTGATGTGCAGGTTGTCAGTCCAACCCGCGCCAAGATCACACTCGAGCCTCTCGAGCGTGGTTTCGGCCACACCCTGGGCAACGCGCTGCGCCGCATCCTGTTGTCCTCAATGCCCGGCTGTGCAGTAGTCGAGGCCGAGATTGACGGTGTGCTCCACGAGTACAGCGCCATCGAAGGTGTACAGGAAGACGTAATTGAAATCCTGTTGAACCTTAAAGGTCTGGCTATCAAGCTGCACGGTCGTGACGAAGTTACGCTGACCTTGTCGAAGAAGGGTTCGGGGGTGGTTACCGCTGCCGATATTCAGCTGGATCATGATGTCGAGATCGTTAACCCCGATCACGTAATCGCTAACCTGGCGTCTAACGGCGCCCTGAACATGAAGCTCACCGTAGCTCGTGGTCGTGGTTATGAACCGGCAGACTCGCGTCAGAGCGATGAAGACGAAAGCCGCAGCATCGGTCGCTTGCAGCTTGACTCTTCGTTCAGCCCGGTTCGCCGTATCGCATACGTGGTGGAAAACGCCCGTGTCGAACAGCGTACCAACCTGGACAAGCTGGTTATTGATCTGGAAACCAACGGTACCCTGGATCCTGAAGAGGCTATCCGCCGCGCTGCAACCATCCTGCAACAGCAGTTGGCTGCGTTCGTCGACCTCAAGGGTGACAGTGAGCCAGTGGTTATCGAGCAGGAAGACGAGATCGATCCGATCCTGCTTCGCCCGGTTGACGATCTGGAACTGACTGTACGTTCGGCTAACTGCCTTAAGGCGGAAAACATCTACTACATCGGTGACCTGATTCAGCGTACCGAAGTAGAGCTGTTGAAGACTCCGAACCTTGGCAAGAAATCCTTGACTGAAATCAAGGACGTTCTGGCCTCCCGCGGTCTGTCCCTCGGCATGCGCCTCGACAACTGGCCGCCTGCAAGTCTTAAGAAGGACGACAAGGCGACTGCCTGAMQISVNEFLTPRHIDVQVVSPTRAKITLEPLERGFGHTLGNALRRILLSSMPGCAVVEAEIDGVLHEYSAIEGVQEDVIEILLNLKGLAIKLHGRDEVTLTLSKKGSGVVTAADIQLDHDVEIVNPDHVIANLASNGALNMKLTVARGRGYEPADSRQSDEDESRSIGRLQLDSSFSPVRRIAYVVENARVEQRTNLDKLVIDLETNGTLDPEEAIRRAATILQQQLAAFVDLKGDSEPVVIEQEDEIDPILLRPVDDLELTVRSANCLKAENIYYIGDLIQRTEVELLKTPNLGKKSLTEIKDVLASRGLSLGMRLDNWPPASLKKDDKATANANANANANA
D1-35_04596387rplQCOG020350S ribosomal protein L17ATGCGTCATCGTAAAAGTGGTCGTCACCTGAGCCGCACCAGCTCGCACCGCAAGGCCATGTTCCAAAACATGGCGGTGTCGCTGTTCGAGCACGAGCTGATCAAAACTACACTGCCGAAAGCCAAAGAACTGCGCCGCGTTGCCGAGCCGCTGATCACTCTGGCCAAGACAGACAGCCTGGCTAACCGCCGTCTGGCTTTCGACCGTACTCGTTCGAAAGCTATCGTTGGTAAGCTCTTCAACGACCTGGGCAAGCGTTACGCTACCCGTGAGGGTGGCTACCTGCGCATCCTCAAGTGCGGTTTCCGCGCTGGCGACAACGCGCCTATGGCGTACGTCGAGTTGGTTGATCGTGCTACTGCCGGCGAAGCTGTAAGCGCCGAGTAAMRHRKSGRHLSRTSSHRKAMFQNMAVSLFEHELIKTTLPKAKELRRVAEPLITLAKTDSLANRRLAFDRTRSKAIVGKLFNDLGKRYATREGGYLRILKCGFRAGDNAPMAYVELVDRATAGEAVSAENANANANANA
D1-35_045971449catCatalaseATGAGCCAGACCAAAACGCTTACGACCGCCAGTGGCGCTCCTGTCGCCGATAACCAGAACTCTCGCTCCGCCGGTCCACGTGGCCCGCTGCTGCTCGACGATTTCCACCTGATCGAGAAGCTTGCTCATTTCAATCGCGAAAACATTCCAGAGCGTCGTGTGCATGCCAAGGGCTCAGGCGCTTACGGTACCTTCACCGTAACTCGCGACATCACTCAATACACCAGCGCCAAGTTGTTCGAGTCGGTTGGCAAGCAGACGCCGACTTTCCTGCGCTTCTCTACCGTGGGTGGCGAGCGCGGCTCCGCCGATACCGAGCGCGATCCACGCGGTTTTGCCCTGAAGTTCTACACCGAAGAAGGTAACTGGGACATCGTCGGCAACAACACACCGGTGTTTTTCATCCGCGACCCACTGAAGTTTCCAGACTTCATTCACACCCAGAAGCGCCTGCCACAAAGCAACCTCAAAAGTGCCCAGATGATGTGGGACTTCTGGTCGCACTCGCCCGAAGCGTTGCACCAGGTCACCATTCTGTTCTCTGACCGGGGGATTCCTGACGGCTATCGTCACATGCACGGTTTCGGCAGTCACACCTACAGCCTGATCAATGCTCTGGGTGAGCGTCACTGGGTGAAATGGCACTACAAGACCAAGCAAGGCATCAAGAACCTCGCGCCGGCCGAAGCTGCACGCCTGGCGGGCACCGATCCGGATTATGCCCAGCGCGACCTGTTCAAGGCGATCGAGCGCGGTGACTTCCCGAAATGGAGCGTCTGCATCCAGATCATGACCGAGGCACAGGCCGCGGCCCATTACGAAAACCCGTTCGATGTGACCAAGACCTGGTCGCAGAAAGAGTTTCCGCTGATCGAAGTCGGCGAGCTGGAGCTCAACCGCAACCCGCTGAACTACTTCGCCGAAGTGGAGCAAGCGGCATTCGGGCCTAGCAACATGGTGCCGGGTGTGGGTCTCTCGCCTGATCGCATGCTGCAGGGTCGTGTGTTTGCCTATGCCGATGCACACCGCTACCGCGTAGGTACCAACCATCAGCAGTTGCCGGTGAACGCGCCGCGCAGCCCGGTCAATACCTACCAGCGCGACGGCGCCATGGCGTTCGGCAGCAATGGCGGCGCAGCTCCGAACTATGAGCCGAACAGCTTCGTGGAGGCGCCGAAGCAGGCGCCGCGTTATGCGGAGCCGGCGCTGGCCCTCAGCGGTGCGGCGGATCGGTATGATCATCGCGAGGATACCGACTACTACAGCCATGCCGGTGCGCTGTTCCGCTTGATGAACGATGAGCAGAAAGCGCTGTTGATCAGCAATATCGCCGGTGCTATGGCGGGGGTCTCGGCGGATGTTGTCGATCGCCAGTTGCAGCATTTCTTCAAGGCAGACGCTGCTTATGGAGAAGGTATCGCAAAAGCTTTGGGCGTACAGCTTAACTAAMSQTKTLTTASGAPVADNQNSRSAGPRGPLLLDDFHLIEKLAHFNRENIPERRVHAKGSGAYGTFTVTRDITQYTSAKLFESVGKQTPTFLRFSTVGGERGSADTERDPRGFALKFYTEEGNWDIVGNNTPVFFIRDPLKFPDFIHTQKRLPQSNLKSAQMMWDFWSHSPEALHQVTILFSDRGIPDGYRHMHGFGSHTYSLINALGERHWVKWHYKTKQGIKNLAPAEAARLAGTDPDYAQRDLFKAIERGDFPKWSVCIQIMTEAQAAAHYENPFDVTKTWSQKEFPLIEVGELELNRNPLNYFAEVEQAAFGPSNMVPGVGLSPDRMLQGRVFAYADAHRYRVGTNHQQLPVNAPRSPVNTYQRDGAMAFGSNGGAAPNYEPNSFVEAPKQAPRYAEPALALSGAADRYDHREDTDYYSHAGALFRLMNDEQKALLISNIAGAMAGVSADVVDRQLQHFFKADAAYGEGIAKALGVQLNPGPT0014380_4962DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0014380-katE|CAT|catB|srpA-K03781NANA
D1-35_04598465bfr_2COG2193BacterioferritinATGCAAGGTCACCCAGACGTAATCGATTACCTCAACACGTTGCTGACAGGCGAACTGGCAGCCCGTGATCAATATTTCATCCACTCGCGGATGTACGAGGATTGGGGTTTTACCGAGCTCTACGAACGTATCAACCACGAGATGGAAGAAGAAGCGCAGCACGCCGATGCGTTGATGCGCCGGATCCTGATGCTCGAAGGCACGCCACGCATGCGCCCGGACGACCTTGACATCGGTACCACCGTACCTGACATGCTCGCCGCCGACCTGCGTCTGGAATACAAAGTCCGCGCGGCGCTGTGCAAAGGCATCGAGCTGTGCGAACAGCACAACGACTACGTCACTCGCGAGATCCTGCGGGTGCAGCTCAACGATACTGAAGAAGACCACACTTACTGGCTTGAAAAGCAGTTGGGTCTGATCAAGTTGATCGGGCTGGAGAATTACCTGCAATCGCAGTTCTGAMQGHPDVIDYLNTLLTGELAARDQYFIHSRMYEDWGFTELYERINHEMEEEAQHADALMRRILMLEGTPRMRPDDLDIGTTVPDMLAADLRLEYKVRAALCKGIELCEQHNDYVTREILRVQLNDTEEDHTYWLEKQLGLIKLIGLENYLQSQFPGPT0003965_2644DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-RELATED_PROTEINS_FERRITIN,PGPT0003965-bfr-K03594NANA
D1-35_045992835uvrA_2COG0178UvrABC system protein ATTGGACAAGATCCTGATTCGTGGGGCCCGTACCCACAACCTGAAGAACATCGACCTGACCCTGCCTCGGGACAAGCTGATCGTCATCACCGGCCTGTCCGGATCCGGCAAATCATCCCTGGCCTTCGACACCTTGTACGCCGAAGGCCAGCGCCGCTATGTCGAATCGCTGTCGGCCTACGCCCGGCAGTTCCTGTCGATGATGGAAAAACCCGACGTCGATACCATCGAAGGCCTGTCGCCAGCGATCTCCATCGAACAGAAGTCGACGTCCCATAACCCGCGGTCGACGGTCGGCACCATTACCGAGATCTACGACTACCTGCGCTTGCTGTATGCGCGAGTCGGTATCCCCCGCTGCCCTGATCACGACACCCCACTGGAAGCCCAGACCGTCAGCCAGATGGTCGACCTGGTGCTCGCCCAGCCGGAAGGCAGCAAGCTGATGCTGCTCGCACCGGTGATTCGCGAGCGCAAGGGTGAACACCTGATGGTCTTCGAAGAATTGCGCGCCCAGGGCTTCGTACGCGCCCGGGTCAACGGCAAGCTGTGCGAGCTCGACGAGCTGCCGAAGCTGGATAAACAGAAGAAGCACTCGATCGATGTGGTGGTAGACCGCTTCAAGGTCCGCGCCGACCTGCAGCAGCGCCTGGCCGAATCCTTCGAGACCGCACTGAAGCTGGCCGACGGCATCGCCCTGGTGGCGCCGATGGACGACGAACCCGGTGAAGAGATTATCTTCTCGGCACGCTTCGCCTGCCCGATCTGCGGCCACGCCATCAGCGAGCTGGAACCCAAGCTGTTTTCCTTCAACAACCCGGCCGGCGCCTGCCCTACCTGCGACGGCCTGGGGGTCAAGCAGTTCTTCGACACCAAGCGGCTGGTCAACGGCGAGCTGACCCTGGCCGAAGGCGCGATTCGTGGCTGGGACAGGCGCAACGTCTATTACTTCCAAATGCTCGGGTCGCTGGCGGCCCATTACAAGTTCAGCCTGGACAAACCATTCAACGAGCTGCCCGCGGACCAGCAGAAATTCATCCTGCATGGCAGCGGCACGCAGAACGTCGATTTCAAATACCTGAACGACCGTGGTGATATCGTCAAGCGCTCCCACCCGTTCGAAGGCATCGTGCCTAACCTGGAACGGCGCTACCGCGAGACCGAATCGGCCAGCGTGCGCGAAGAACTTGCCAAGTTCCTCAGCACCCAGCCCTGCCCGGACTGCCGCGGCACCCGTTTGCGCCGGGAGGCGCGGCACGTGTGGGTGGGTGAGAAAACCCTGCCGGCGGTGACCAGCCTGCCGATCGGCGATGCCACTGACTATTTCGGTGGCTTGAAGCTCACCGGCCGTCGTGGCGAAATCGCCGACAAGATCCTCAAGGAGATCCGCGAGCGCTTGCAGTTCCTGGTGAACGTCGGCCTGGACTACCTGACCCTCGACCGCAGCGCGGATACCCTGTCCGGCGGTGAGGCCCAGCGTATCCGTCTGGCCAGCCAGATCGGTGCCGGGCTCGTGGGTGTCATGTACATCCTCGACGAACCGTCCATTGGCTTGCACCAGCGGGACAACGACCGGTTGCTCGGCACGCTGAAACACCTGCGCGACATCGGCAATACGGTGATCGTGGTCGAGCACGATGAAGACGCGATTCGCCTCGCCGATTACGTCGTGGATATCGGCCCGGGCGCGGGGGTGCACGGCGGACACATCGTCGCCCAGGGCACCGCCGCCGAAGTCATGGCGCACCCCGACTCGCTGACCGGCAAATACCTGTCGGGCCGGGTGAAGATCAAGGTGCCGGCCAAGCGTACCCCACGCAATAAAAAGCTGTCGTTGACCCTCAAGGGCGCACGCGGCAACAACCTGCGCAACGTCGACCTGGAAATCCCGATCGGCCTGCTGACCTGCGTTACCGGTGTTTCCGGCTCCGGCAAGTCGACGCTGATCAACAACACGCTGTTTCCCCTCAGTGCCACCGCGCTGAACGGTGCCACCACCCTGGAAGCCGCCGCGCACGACAGCATCAAGGGCCTGGAGCATCTGGATAAAGTTGTCGACATCGACCAGAGCCCGATCGGCCGGACGCCGCGCTCCAACCCGGCGACCTATACAGGGTTGTTCACGCCGATCCGCGAACTGTTCGCCGGCGTACCGGAATCACGCTCGCGGGGCTACGGCCCGGGCCGCTTCTCGTTCAACGTCAAGGGCGGGCGCTGCGAAGCCTGCCAGGGCGATGGCCTGATCAAGGTGGAGATGCATTTCCTGCCCGACATCTATGTGCCGTGCGACGTGTGCAAGAGCAAGCGCTATAACCGTGAAACGCTGGAGATCAAGTACAAGGGCAAGAACATCCACGAAACCCTCGAAATGACGATCGAGGAGGCCCGAGCGTTCTTCGACGCAGTACCGGCATTGGCGCGCAAGCTCCAGACATTGATGGATGTAGGGCTTTCGTACATCAAGCTCGGGCAGTCGGCGACGACCTTGTCCGGCGGCGAGGCGCAGCGGGTCAAGCTGTCCCGTGAACTGTCCAAGCGCGATACCGGCAAGACCCTGTATATCCTCGACGAGCCGACCACAGGCCTGCACTTCGCCGATATCCAGCAATTGCTCGATGTATTGCATCGCCTTCGCGACCACGGCAACACCGTTGTGGTCATCGAGCACAACCTGGATGTGATCAAGACGGCTGACTGGCTGGTAGACCTCGGGCCGGAAGGCGGCTCCAAGGGCGGCCAGATCATCGCCGTAGGTACGCCGGAGCAAGTGGCGGAAATGAAGCAGTCTCACACCGGCTATTACCTCAAGCCGTTGCTGGAGCGTGATCGGGACTGAMDKILIRGARTHNLKNIDLTLPRDKLIVITGLSGSGKSSLAFDTLYAEGQRRYVESLSAYARQFLSMMEKPDVDTIEGLSPAISIEQKSTSHNPRSTVGTITEIYDYLRLLYARVGIPRCPDHDTPLEAQTVSQMVDLVLAQPEGSKLMLLAPVIRERKGEHLMVFEELRAQGFVRARVNGKLCELDELPKLDKQKKHSIDVVVDRFKVRADLQQRLAESFETALKLADGIALVAPMDDEPGEEIIFSARFACPICGHAISELEPKLFSFNNPAGACPTCDGLGVKQFFDTKRLVNGELTLAEGAIRGWDRRNVYYFQMLGSLAAHYKFSLDKPFNELPADQQKFILHGSGTQNVDFKYLNDRGDIVKRSHPFEGIVPNLERRYRETESASVREELAKFLSTQPCPDCRGTRLRREARHVWVGEKTLPAVTSLPIGDATDYFGGLKLTGRRGEIADKILKEIRERLQFLVNVGLDYLTLDRSADTLSGGEAQRIRLASQIGAGLVGVMYILDEPSIGLHQRDNDRLLGTLKHLRDIGNTVIVVEHDEDAIRLADYVVDIGPGAGVHGGHIVAQGTAAEVMAHPDSLTGKYLSGRVKIKVPAKRTPRNKKLSLTLKGARGNNLRNVDLEIPIGLLTCVTGVSGSGKSTLINNTLFPLSATALNGATTLEAAAHDSIKGLEHLDKVVDIDQSPIGRTPRSNPATYTGLFTPIRELFAGVPESRSRGYGPGRFSFNVKGGRCEACQGDGLIKVEMHFLPDIYVPCDVCKSKRYNRETLEIKYKGKNIHETLEMTIEEARAFFDAVPALARKLQTLMDVGLSYIKLGQSATTLSGGEAQRVKLSRELSKRDTGKTLYILDEPTTGLHFADIQQLLDVLHRLRDHGNTVVVIEHNLDVIKTADWLVDLGPEGGSKGGQIIAVGTPEQVAEMKQSHTGYYLKPLLERDRDPGPT0014915_4128DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014915-uvrA-K03701NANA
D1-35_046001398yajRCOG0477Inner membrane transport protein YajRATGCAAGATCCCCACAGCGAACGCATGAGTAGCGGCGAGACCCGCGCGGCAGGCGGTCTGGCCCTGGTGTTCGCCTTCCGCATGCTCGGCATGTTCATGGTGTTGCCGGTACTGGCGACCTATGGCATGGACCTGGCGGGCGCGACCCCGGCCCTCATCGGGCTCGCCATCGGCGCCTACGGCCTGACCCAGGCGATTTTCCAGATTCCCTTCGGGATCATTTCCGACCGGATCGGCCGGCGCCCGGTGATTTACCTGGGGCTCATCGTGTTCGCCCTCGGCAGCGTGCTGGCGGCGAATGCCGATTCGATCTGGGGCGTGATCGCCGGACGGATCCTACAAGGAGCGGGCGCCATTTCCGCTGCCGTCATGGCGTTGCTGTCGGACCTGACCCGCGAGCAACATCGCACGAAAGCCATGGCGATGATCGGCATGACGATTGGTCTGTCGTTCGCCGTCGCCATGGTTGTAGGACCGTTGTTGACCCGTGCCTTTGGGTTGTCGGGGTTGTTCCTGGCGACCGGTGCCATGGCACTGGTGGGCATCCTCATCGTCGCGTTGATCGTGCCGCGCTCCACCGGGCCGTTGCAGCACCGTGAATCCGGGGTGGCCCGCCAGGCGCTGGTGCCGACGCTAAAGCATCCTGACCTGCTGCGCCTGGACCTGGGCATCTTCGTGCTGCATGCCATGTTGATGTCCAGCTTCGTGGCCTTGCCGCTGGCGCTGGTGGAAAAGGCCGGCCTGCCCAAGGAGCAGCACTGGTGGGTCTATCTGACGGCACTGGTCATTTCGTTCTTCGCCATGATTCCGTTCATTATCTATGGCGAGAAGCGACGCAAAATGAAACGAGTTTTGCTCGGCGCCGTCGTGACGCTCATGCTCACTGAGCTATTCTTCTGGCAGTTCGGCGACAGCTTGCGCGCCCTGGTGATTGGCACGGTGGTGTTCTTCACCGCGTTCAACCTGTTGGAGGCGTCACTGCCGTCGCTGATCAGCAAGGTGTCACCGGCGGGCGGCAAGGGCACGGCGATGGGGGTTTATTCAACCAGCCAGTTCCTCGGTTCGGCATTGGGCGGGATCCTCGGCGGCTGGCTGTTCCAGCATGGCGGTTTGTCGGTTGTGTTCCTGGGATGTGCCGCGCTGGCTGCACTTTGGCTGGTTTTTGCTGTTACCATGCGCGAACCTCCGTATGTGACGAGCCTGCGCTTGCCGTTGTCGCCCGAAGCCATCCGCGAAGCAGGCCTGGCCGAGCGCCTCAGGGCCGTCGTTGGAGTAACCGATGCAGTGGTGGTCGCCGACGAGGCGGCCGTTTATATCAAACTGGACACCGAATTATTGGATCGTGCGACGCTTGAGCGCCTGGTGAACAACCCGGCCCCGGCAGCGTGCGAAGCCTAGMQDPHSERMSSGETRAAGGLALVFAFRMLGMFMVLPVLATYGMDLAGATPALIGLAIGAYGLTQAIFQIPFGIISDRIGRRPVIYLGLIVFALGSVLAANADSIWGVIAGRILQGAGAISAAVMALLSDLTREQHRTKAMAMIGMTIGLSFAVAMVVGPLLTRAFGLSGLFLATGAMALVGILIVALIVPRSTGPLQHRESGVARQALVPTLKHPDLLRLDLGIFVLHAMLMSSFVALPLALVEKAGLPKEQHWWVYLTALVISFFAMIPFIIYGEKRRKMKRVLLGAVVTLMLTELFFWQFGDSLRALVIGTVVFFTAFNLLEASLPSLISKVSPAGGKGTAMGVYSTSQFLGSALGGILGGWLFQHGGLSVVFLGCAALAALWLVFAVTMREPPYVTSLRLPLSPEAIREAGLAERLRAVVGVTDAVVVADEAAVYIKLDTELLDRATLERLVNNPAPAACEANANANANANA
D1-35_04601516ssbCOG0629Single-stranded DNA-binding proteinATGGCCCGTGGGGTTAACAAAGTCATATTGGTCGGTACTTGCGGCCAGGATCCAGAAGTTCGCTACCTGCCTAACGGCAACGCCGTGACTAACCTGAGCCTGGCGACCAGCGAACAATGGACCGACAAGCAGACCGGCCAGAAGGTCGAGAAGACCGAATGGCACCGCGTGTCGATGTTCGGCAAAGTGGCGGAGATTGCCGGCGAATACCTGCGCAAGGGTTCGCAGGTCTACATCGAAGGCAAGCTGCAGACCCGCGAGTGGGAAAAAGACGGCATCAAGCGTTACACCACCGAAATCGTGGTCGACATGCAAGGCACCATGCAGTTGCTCGGTGGCCGTCCGCAAGGTGACCAGCAGCAGGGTGGCAACAACTACCAGCAAGCGGCCCCGCGTCAGCAGGCGCCTCGTCCGCAGTCGGCGCCACAGCCACAGCGCGAGCGCCCAGCTCCGCAACAGGCCGCACCGCAACCGGCTCCGGATTTCGACAGCTTTGATGACGATATTCCGTTCTGAMARGVNKVILVGTCGQDPEVRYLPNGNAVTNLSLATSEQWTDKQTGQKVEKTEWHRVSMFGKVAEIAGEYLRKGSQVYIEGKLQTREWEKDGIKRYTTEIVVDMQGTMQLLGGRPQGDQQQGGNNYQQAAPRQQAPRPQSAPQPQRERPAPQQAAPQPAPDFDSFDDDIPFNANANANANA
D1-35_046021068ccpACOG1609Catabolite control protein AGTGGGAAAGTTACGCATTGCTGAAATTGCGGCACAGACGGGCCTGTCCATCGCGACGGTGTCGCGGGTGCTTGCTGGCAAATCCAACACCCGCCCCGCCACGAGAGAAAAAGTGCTGGCGGCGGCTCGTCAGCAGGGCGTGATGGAAGGCCTCGCCAATGGTCGCTTCCTGCTCAACGGGCTGACCATCTTCGCGCCCTCGCGGGCCTTCAACGTACGCTCGGATATCTTCTACTACAAAGTTATCCAGGGCATCACGCAGGCGGTCGCGCAACATGATGTTCGAGTTCGCTATTGCGAGCTTGAAGAGGTTGATAGCGACGCATTGCTGTTTTTACAGAAGATGAATCAGAAGGACACCGGTGCGGCGATCCTGATTGGTATTGATGATCCGCACATACACCAACTCGCGGCCGACCTCAGCAAGCCGACGGTACTGATCAACTGCATTGATCGCAGCATGCGCTTGCCCTCGATATCGCCCGACCACTTCTTGATCGGTCATTATTCGATAAATTATCTGTTTCAGATGGGGCACCGAAATGTACTGACCCTCCAGTGTCTCAGGCGGTACACGATGGATCTGCGGATACGTGGAATTCGTGATGCATGGAAGGAGCAAAATCTCGAATTCATCGAAACAAAACACCTGATGGTTGCCGAAGGTTTCGGCAGTGCTGAATCTGAAGCGCGGGTAGCGGCCTTCCTGGAAAACTGCGCACCCGACGACCGACCGACTGCCATCCTGGCCGGGGGCGACTTCATGGCAGCCGGCGCGGTTAAAGCGCTGCAGAATGCCGGCTTGAGGGTTCCTCAGGATGTTTCAGTGATGAGCATGGACGGGTTCAACCTGGCGGACATCAACGATATACCGCTCACCACGCTTCACGTGCCCCGCGGTGAACTGGGCGCGGAAGCGATAAGGATCTTGAGACAGCAGCTTTTCGAACCGCGATCGCCTTGTGGCAATCTTCTTCTCGGTGGACACCTGATAACCGGCAGTTCGGTGCGGCGCATCAAGCACAGCGCCAAGCAAACGCCGGTCTATCAGACGATTATCTATGACTGAMGKLRIAEIAAQTGLSIATVSRVLAGKSNTRPATREKVLAAARQQGVMEGLANGRFLLNGLTIFAPSRAFNVRSDIFYYKVIQGITQAVAQHDVRVRYCELEEVDSDALLFLQKMNQKDTGAAILIGIDDPHIHQLAADLSKPTVLINCIDRSMRLPSISPDHFLIGHYSINYLFQMGHRNVLTLQCLRRYTMDLRIRGIRDAWKEQNLEFIETKHLMVAEGFGSAESEARVAAFLENCAPDDRPTAILAGGDFMAAGAVKALQNAGLRVPQDVSVMSMDGFNLADINDIPLTTLHVPRGELGAEAIRILRQQLFEPRSPCGNLLLGGHLITGSSVRRIKHSAKQTPVYQTIIYDPGPT0014791_15DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_FACILITATING_PROTEINSESSILE_ROOT_COLONIZATION,PGPT0014791-ccpA-NANANA
D1-35_046031317exuT_1Hexuronate transporterATGACTATCGATATCGAACGCAATGCTCGACTTTCGGCCAAGCTAAAATTCATCCCGCATCTGCGATGGTGGATGCTTTCCCTGTTTTTGCTCGGCGTCACCGTCAACTATATAACCCGCAATTCACTGGGTATCTTGGCGCCGGAACTGAAAACCACGTTCAGCATGTCGACGGAACAGTACTCGTGGGTCGTCGCCTCGTTTCAACTTGCCTACACAGTTTTCCAACCCGTCTGCGGCTGGCTGATCGATGCGATCGGGCTCAAGCTCGGCTTCGTCATATGCGCCGTCGTATGGTCAGTGATGTGCCTTCTTCATGCCGGGGCAGCGAGTTGGGTACATCTGGCGATTCTGCGTTTTTTCATGGGCGCTTCGGAGGCAGCGGCTACACCCGCCAATGCCAAGGCGATAGGGGACTGGTTTCCCAAAAAAGAACGCCCTATCGCTGCGGGATGGGCGGGGGTTGGTTTTTCTCTGGGGGCGATGCTCGCCCCTCCCATCATCTATCTGGCTCATGTAAGCCTGGGCTGGCAGGGCGCATTCCTGATTTCCGGCGGGATCGGCCTGATATGGGCCGCCGTCTGGGGATGGCTCTACCACGCTCCCACTATTCATCCGCGCTTATCGCCCGATGAGTTGAAGCATATCCAACAAGACGGCGAAAAAATCGGCCAGCAAATGCCTTTTTTCAAAGCGTTGAAAAAGATTGGTCGGGACAAGCGATTTTACGGTATCGCGCTTCCCGCCTTCATGGCAGAGCCGGCATGGGCAGTCATGAGTTTCTGGGTGCCGCTGTATCTGGCCAACGAAAGAGGAATGGACCTCAAGCAAATCGTACTGTTTGCCTGGGTTCCGTTTCTGGCGGCGGATCTGGGCAGTGTCGCCAGCGGTTACCTGTCACGCGCTTACCATCGTTTTTTCAAATGCACCCGTGTGAATTCGATTGTCGCCAGTTCAATCACCGGCGCGTTCCTGATGTTTTCGTTAGCCGTGATGACCCAGGTGGAAGACCCCTATGTAGCGATTGCGCTTATTTCAGTCGGCGGTTTTGGCCACCAGATTATCTCCTGCATGTTAAGTGCACTGGTCGTCGAAACGTTTGATCGGGATGAGCTGGCGACTGTGAACGGAATGCGAGGCTCATGTGCCTGGATTGCCAGCTTCATTTTTTCGCTGATCATCGGTGTCAGCGTGGACAAGATAGGATTCAACCCATTGTTCATTGCGATGGGGCTCTTTGATTTTATAGGTGCGTTTTTCATGATTTTGTTTATCGCCGACAGAGCGTCCAAACCTGAAGCGGTGCGTGCCCAATGAMTIDIERNARLSAKLKFIPHLRWWMLSLFLLGVTVNYITRNSLGILAPELKTTFSMSTEQYSWVVASFQLAYTVFQPVCGWLIDAIGLKLGFVICAVVWSVMCLLHAGAASWVHLAILRFFMGASEAAATPANAKAIGDWFPKKERPIAAGWAGVGFSLGAMLAPPIIYLAHVSLGWQGAFLISGGIGLIWAAVWGWLYHAPTIHPRLSPDELKHIQQDGEKIGQQMPFFKALKKIGRDKRFYGIALPAFMAEPAWAVMSFWVPLYLANERGMDLKQIVLFAWVPFLAADLGSVASGYLSRAYHRFFKCTRVNSIVASSITGAFLMFSLAVMTQVEDPYVAIALISVGGFGHQIISCMLSALVVETFDRDELATVNGMRGSCAWIASFIFSLIIGVSVDKIGFNPLFIAMGLFDFIGAFFMILFIADRASKPEAVRAQPGPT0017205_445DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_HEXURONATE_TRANSPORT,PGPT0017205-exuT-K08191NANA
D1-35_046042388hypothetical proteinATGAAGTCACTTAAAGTCTGGGAATTACAGGCCCAGGAAAAAGGCTACATCGAGCTTCTGGTCGAGGGCCGACATCTCTTCAGAATTCATATCCTCGAAGACGGTTTGGCGCGTGTACTGCTCATGCGTGCAGGCGCGTTGGCACTGGATCGGACCTGGAGCATCGCGCCCCGGGAGGATGTCGCCTGGGAGGGCCGGGCCCGCGAGTCGTTGGCGGATTTTTCTTTGCCCGCGTACCGGGTCGAAGAATTTCAGGACCGGTTGGTACTCACGACCAGAAAACTCCGCATCACGGTAAATCGTCCGCTGTGGTTGCAATGGGAATACCACGATGGCCAGGACTGGAGGCCGTTGGTTTCGGATCGGCCCACCGGTGCCTATTCGCTTGATGCTCATGGTGAAGGCCTGGAGCATTACCAGCTTCGCGCGCCGGAACATCGCTATTACGGGCTCGGCGAAAAGACCGGCGATTTGAATCGCGCCGGCAAACGCTTTGAAATGCGTAACCTGGATGCAATGGGATATGACGCTGCGAGCACTGACCCGCTGTACAAACATATCCCCTTTGTCATCACGCACCAGGAGCACGCCAGCTTCGGGATGTTCTATGACAACCTGAACACCAGCCTCTTTGATCTGGGGAACGAGCTGGATAATTATCACCGGCCCTACCGTCGGTACAAAGCGGATGCCGGTGACCTCGATTACTGGGTACTTGCAGGCCCGCGCATACTGGATGTGACGAAGGCTTTTGTTCGTCTGACCGGACGCACTCTGTTTCTGCCTAAATGGAGCCTGGGCTACAGCGGCTCGACGATGCACTACACCGATGCCGAAAATGCCCAGGAACAATTGCTGGATTTTCTTGATCTGTGCCGTCGGCACGATATCCCTTGTGACTCTTTTCAACTGTCATCCGGGTACACGTCCATTGGCGAAAAACGTTATGTTTTCAACTGGAACCGTGAAAAGGTCCCAGACCCCAAGGCGCTTGCCCAGGCCTACCGTGATGCCGGCGTCAGGCTGGTTGCCAACATCAAGCCTTGTCTCTTGCAGGACCATCCGCGCTACGCCGAGGTAGCCAGGCGAAAGATGTTCATCGGCGACTCTGAACACGACATGCCAGAGCGCTCTGTCTTCTGGGACGATGAGGGCTCTCATCTGGACTTCACCAACCCGGACGCTGTCAGCTGGTGGCAGTCGAATGTCACAACACAGCTGTTGGAGCTGGGTATTGAATGCACGTGGAACGATAACAATGAGTTCGAGGTGTGGGACGGTGAGGCACGCTGCCACGGCTTCGGGCGCGAAATAGCAATCAAACATATCCGGCCTGTCATGGCATTGCTGATGATGAGAGCGTCTTTAGAGGCACAACAGCGGTTTTCGCCATCGGAACGGCCCTATCTCATCTCACGCTCAGGTTGCGCCGGCATGCAGCGCTACGTTCAGACTTGGAGCGGTGATAACCGAACCAACTGGAAAACCCTCCGCTACAACACCCGCATGGGCCTGGGCATGAGCCTGTCGGGGTTGTACAACGTCGGGCACGATGTAGGTGGGTTCTCGGGTAACAAGCCGGATCCGGAGTTGTTTGTCCGTTGGGTCCAGAATGGTGTGATGCATCCGCGCTTCACCATTCACTCCTGGAACGACGATGGCACCGTCAATGAGCCATGGATGCACCCAACGGTCACCGATGCGGTCCGTGACGCCATCGGGCTCCGATACAGATTGATGCCTTACTTCTATACCTTGCTGTGGCAAGCCAGTAACGAAGATGAGCCCATCTTGCGACCTACGTTTCTTGACCACGAGCATGACCTTGAAACGTTCGAGGAAAACGACGAGTTCCTTCTTGGCCGAGATGTCCTCGTCGCCAGCGTGGTAGAGGAAGGCGCCCGCGAGCGCGAGGTGTGGTTACCCCTGAATGCGACGGGATGGTGCGACTGGCATACCGGTGACTGGTACGAAGGTGGCCAATCCGTTGTTCTGGATGCGCCTTTGGAACGTTTGCCCTTGTTGGTGCGAGGGGGCGCTGCGATACCGATCGGTGAATGCCACAAGCTTAACGATCCCTCTCTTGATCGGCGTCGCGAGCTGGTGATTTTTCCTGCGCCTTCAGGTGCCTCCAGCGGCGTGCTGTTTGAAGATGACGGCATCAGTCATGACTGGAAAAACGGCAACTGCGTTGTCATCAAATGGACCCTTGAATATGGCCTGGACTTCATTGATTTGACGATCGCTAAAACAGGGGACTTTTGTCCGGCGTGGGAGCAGCTTGAGGTGTCCTTGAAGATTACGGATGCGCGAGCCTTGAGAATCAATGGCCGTAGTGGGTGCGCTTTGAAGTTGGCGGATATTCCGGAGCATGGACAACTTCATTGAMKSLKVWELQAQEKGYIELLVEGRHLFRIHILEDGLARVLLMRAGALALDRTWSIAPREDVAWEGRARESLADFSLPAYRVEEFQDRLVLTTRKLRITVNRPLWLQWEYHDGQDWRPLVSDRPTGAYSLDAHGEGLEHYQLRAPEHRYYGLGEKTGDLNRAGKRFEMRNLDAMGYDAASTDPLYKHIPFVITHQEHASFGMFYDNLNTSLFDLGNELDNYHRPYRRYKADAGDLDYWVLAGPRILDVTKAFVRLTGRTLFLPKWSLGYSGSTMHYTDAENAQEQLLDFLDLCRRHDIPCDSFQLSSGYTSIGEKRYVFNWNREKVPDPKALAQAYRDAGVRLVANIKPCLLQDHPRYAEVARRKMFIGDSEHDMPERSVFWDDEGSHLDFTNPDAVSWWQSNVTTQLLELGIECTWNDNNEFEVWDGEARCHGFGREIAIKHIRPVMALLMMRASLEAQQRFSPSERPYLISRSGCAGMQRYVQTWSGDNRTNWKTLRYNTRMGLGMSLSGLYNVGHDVGGFSGNKPDPELFVRWVQNGVMHPRFTIHSWNDDGTVNEPWMHPTVTDAVRDAIGLRYRLMPYFYTLLWQASNEDEPILRPTFLDHEHDLETFEENDEFLLGRDVLVASVVEEGAREREVWLPLNATGWCDWHTGDWYEGGQSVVLDAPLERLPLLVRGGAAIPIGECHKLNDPSLDRRRELVIFPAPSGASSGVLFEDDGISHDWKNGNCVVIKWTLEYGLDFIDLTIAKTGDFCPAWEQLEVSLKITDARALRINGRSGCALKLADIPEHGQLHPGPT0018560_1023DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-GLUCOSIDASE,PGPT0018560-malz-K01187NANA
D1-35_04605495hypothetical proteinATGATCTACGTCGCGGCAATCTTGCTGGCCCTGCCTGCCTACTGGCTGGCAGTGTTCACCCTGATGCTGTTCAAGGTCGAAGGCCTGTCGTCGATTCACAAGCAGATCATTATGGAACCGCTGATTATCGCGCTCATGTTCATCAGTGCGTTCGCGGCCGTCTGTACGATCAACTGGCTCGTCTCCGGGCCCAAGGTGCTTGGCTTCTGTTTTGACGAACGCCAGCAACGCCTCACCTTCACCCAGCGCCGTCCTGCCCGGGAAACCACCGAGAAATGCGTGCCCTATAGCGACATCCATTACATCAAGCCCTACACCTTGAGCACTTTCGCCAATGTGAACCACTTTGATGTCGGCTACACCGGAGCCGATGGCAAGCCGATTTCGCTTCGGTTTTGGGTGGACATCACGGTGGCGGAAATGGAGTTCCATGCCACATGGTTGACGCAGTCGATTGGGGAGAGGATGCAGGAGTTATTGAATCTGGACTTGTGAMIYVAAILLALPAYWLAVFTLMLFKVEGLSSIHKQIIMEPLIIALMFISAFAAVCTINWLVSGPKVLGFCFDERQQRLTFTQRRPARETTEKCVPYSDIHYIKPYTLSTFANVNHFDVGYTGADGKPISLRFWVDITVAEMEFHATWLTQSIGERMQELLNLDLNANANANANA
D1-35_04606558pncA_2COG1335NicotinamidaseATGTCCAAGCAAGCGCTCATCGTCGTAGATATCCAGAACGACTACTTCCCCCAGGGAAAATGGCCTTTGGTCGGTGCAGAGACCGCCGCCGATAACGCCGCCAGGTTGATCGAGGCGTTTCGCCAGGCCGGAAACCAGGTCGTGCACATCCGTCACGAATTCACCTCCGACGAAGCGCCATTTTTTACGCCCGGCTCTGAAGGTGCGCAGTTGCATCCCAAGGTACTCAACCGCGCCGATGAACCGGTCGTGCTCAAGCACTTCGTCAATTCGTTTCGCGAAACCGAGCTGCAAGCTGTCCTTGAACGCCACGGCATCGAGCGGTTGGTGGTGGTCGGTAGCATGAGCCACATGTGCATCGACGGCATTACCCGCGCTGCCGCTGACATGGGCTATGAGGTCACGGTGGTGCATGATGCCTGTGCCAGCCGCGACCTGGAATTCAACGGCCTCGTCGTCCCTGCGGCCCATGTCCACGCTGCGTTCATGTCGGCGCTGGGGTTTGCCTATGCGAATGTGGTGAGTACCGAGCAATTCCTGAGCGGCAGCCAGGCGTAGMSKQALIVVDIQNDYFPQGKWPLVGAETAADNAARLIEAFRQAGNQVVHIRHEFTSDEAPFFTPGSEGAQLHPKVLNRADEPVVLKHFVNSFRETELQAVLERHGIERLVVVGSMSHMCIDGITRAAADMGYEVTVVHDACASRDLEFNGLVVPAAHVHAAFMSALGFAYANVVSTEQFLSGSQANANANANANA
D1-35_046072463fhuA_3COG1629Ferrichrome outer membrane transporter/phage receptorGTGCCCGTCCAAGCCCCTCTCCATTTCTTGCGCAACGGTTTGTTCCTCGGTGCCCTGGCTGCAACGCCAATGTTCTGCGCAACAGCCCAGGCTGAGCCCGCCAACATCGATGATGTTCGCCAGTACGATATCGCCGCGGGCCAGCTCGACCAGGCGTTGAACCAATTCGCCAGGACAGCCGGTGTGTTGCTGTCGGTGGACGCGCAACTGACCACCGGCAAGAGCACGCCGGGGCTGCACGGGCAATTCAACATTCCCGGGGCGCTGCAGCGTCTATTGGCGGGCTCGGGCTTGCAGGCCGTCAACAGCGGCAACGCCTGGTCTCTGCAACTAGCACCCGACAGCGCAACCTTGCAACTGGACGCCACACTGATCGGTGCCCGCAACGTTGGCGAAAACCCCTGGGGCCCCGTCGATGGCATCGTCGCCACGCGCAGCGCCACGGGCAGCAAGAGCGACAGCGCCCTGGTGGAGGTGCCGCAAACCATCAACGTGGTCACGGCTGACGAGATCAAGGCCCGAGGCGCCCAGACCGTCACCCAAGCTTTGCGCTACACACCTGGCATCACTGGCGGCGGCTTCTCCGATCGGGTGAAAATTTTCGACGAGCCGACATCTCGCGGCATATCCCCAGTCCCTTTGTATCTGGACGGCCTGCACTTGCCATACGGCGGGGGCAGCACAGGCGGCGCGCTGCAGATCGAACCGTACTCGCTGGAGCGCATTGAAGTGCTCAAAGGACCGGCCTCGGTGCTGTACGGTCAGAACCAGCCTGGCGGCATCGTCAACATGGTCAGCAAGCGGCCAACCCTCGAACCCGTCCACGAAGTGGTGTTGAAGGCGGGCAGCTACGACCAGATGGGTGTCGGCGTGGATATCGGCGGGCCCCTGGATGAACAAGGCACGCTGCTGTATCGCTTGACCGGGCTGGTCAACGACAGCAATTCGAGCATTGACTATGCCCAGCAGAAACGCCAGTTCCTCGCGCCGAGCCTGACCTGGCTACCTAACGAAGACACCAGCCTGACCCTGTTCGCTCAGTACCAACGCGATGACGCGGTTCCGGAAGCACAGGGATTGCCCGCCCTGGGGACGGTATTCAACAACCCCAACGGCAGGATTTCGCGGGACCTTTTCCTGGGCGAGCCCGGCGTGAATGACTACAAGCGCAACCAATATGCCCTGGGCTATGAGCTGAGCCATCGCCTGAACGATGTCTGGACCTTGAAGCAGAACGCTCGTTATGCCGTGGTGGACGACCATTACACCGCCCCGCTGCATGGCTATCGCTTCGTCAACAACCCCGTCACCGGCGCCGACGACAAACGCTACATGACCCGCTACGGCGTCGACTGGTCGCAGACCAACAAGGTCTTCGGTGTGGACAATATCGCCCAGGCCGAATTTGACAGCGGCCCCCTGAAACACACCCTGATCACCGGCCTGGACTACTACCGGTTCAACTCAAAATTCAAAGGGCTGTACGACTACAACCCGCCGATCATCGACATCTTCAACCCGGTCCATGGCCAACCTCTCAATTTCGGCAATCTGTACCGATGGGACAACACCATCACCCAGACCGGCCTGTACATGCAGGACCAGATCAAGCTCGACCAATGGGTGCTGGTGCTGGGTGGCCGCTATGACTGGACCGAAGTGGACAACAAGGAACCGGTCAGCGGCGCCCACAGCAACGTCCGCGACAGTGCCTTCACCGGGCGCGCCGGCCTGGTATACCTGTTCGACAACGGCCTGGCTCCGTTCATCAGCTATGCCGAGTCATTCCAGCCGGTGAGCGGCCGTGATGTGTCCGGCAAACCGTTCGAGGCCACCACCGGCAAGCAGTATGAGATAGGCCTCAAGTTCCAGCCGCCAGGACAGCAGAGTTTTGTGCAGTTATCCGTTTATCAACTGGACCAGGAGAACATGCTGACCACCGACCTGGACAATCCGGGCTTCAACGGCCAGACCGGTGCCGTGCGCTCGACGGGTATCGAACTGGAAGGCAAGGCCAGCCTGAACAAGTCACTGGACGTCATCGCTTCGGTCTCGCGCAACGATATTGAATACACCAAGGATAATGATGGCCGCCAAGGCAACCATTTGGCCGGCATCTCGCCGCTGACCGCCTCCGCCTGGGTCAACTACACGTTCCTGGGCAGCACTCCGCTGGCCGGATTTGGCGCCGGGCTCGGTGTTCGTTATGTGCGCAGCAGTCCCGGAACCGAATACCCGGGCACAGCCACCGCGCCCTCCTTCGACGTGCCGTCCTTTACTGTTTATGACGCTCGCCTGTCCTACGACCTCGGCCAATCGCCACTCGGCCTCAAGGGTGTGAAAGTCGACATGAACGTGGAAAACCTCGACGACAAGAAGTACGTGGCACGCTGTACCAGCAACTGGGACTGCTACTACGGCGATGGTCGAACCATGACGACAAGCCTGACGTATAACTGGTGAMPVQAPLHFLRNGLFLGALAATPMFCATAQAEPANIDDVRQYDIAAGQLDQALNQFARTAGVLLSVDAQLTTGKSTPGLHGQFNIPGALQRLLAGSGLQAVNSGNAWSLQLAPDSATLQLDATLIGARNVGENPWGPVDGIVATRSATGSKSDSALVEVPQTINVVTADEIKARGAQTVTQALRYTPGITGGGFSDRVKIFDEPTSRGISPVPLYLDGLHLPYGGGSTGGALQIEPYSLERIEVLKGPASVLYGQNQPGGIVNMVSKRPTLEPVHEVVLKAGSYDQMGVGVDIGGPLDEQGTLLYRLTGLVNDSNSSIDYAQQKRQFLAPSLTWLPNEDTSLTLFAQYQRDDAVPEAQGLPALGTVFNNPNGRISRDLFLGEPGVNDYKRNQYALGYELSHRLNDVWTLKQNARYAVVDDHYTAPLHGYRFVNNPVTGADDKRYMTRYGVDWSQTNKVFGVDNIAQAEFDSGPLKHTLITGLDYYRFNSKFKGLYDYNPPIIDIFNPVHGQPLNFGNLYRWDNTITQTGLYMQDQIKLDQWVLVLGGRYDWTEVDNKEPVSGAHSNVRDSAFTGRAGLVYLFDNGLAPFISYAESFQPVSGRDVSGKPFEATTGKQYEIGLKFQPPGQQSFVQLSVYQLDQENMLTTDLDNPGFNGQTGAVRSTGIELEGKASLNKSLDVIASVSRNDIEYTKDNDGRQGNHLAGISPLTASAWVNYTFLGSTPLAGFGAGLGVRYVRSSPGTEYPGTATAPSFDVPSFTVYDARLSYDLGQSPLGLKGVKVDMNVENLDDKKYVARCTSNWDCYYGDGRTMTTSLTYNWPGPT0003790_8268DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014NANA
D1-35_04608966fecR_7COG3712Protein FecRATGAATCGCCGCGCCGAGCGTCCGGTTTCCCCGGCCGTCGTCGAACAGGCGAGCGAGTGGCTGATGCTGCATTGGGGCGGCGAGATGACTGACGCTCAACAGCGGGCGTTTGTCCTGTGGCAGCGCGCCGATGCCGAACATGCCAGGGCCTGGCAGCGCTTGCAGGATCTGCAGCAGACCTTGGGGCGCGTCCCGCGCGACTGCGCTCAGGCCGTGCTCAAGGATGCGCCGCAGCGCTCGCGGCGAGACATGCTCAAGTTGCTTTCGCTGATGCTGGTCACTGGCGCAACCGGTTATTCGCTGCACAGCCAGAAACCCTGGCGCGGCGCATTGGCCGATCAACACACGGCGGTCGGCGAAATCCGTCGGCTGACGCTGGAGGACGGCACGCGCCTGGACCTGGATACCGACAGTGCCGTGGACGTGCGTTTTTCTGCCAGTCATCGACGCATTCGTTTGATCAAGGGGGCCATCCTGCTGGAGACCGGGCACAACCCCGAGTACCTCCAGCGGCCGTTGATCGTGCAGACCGGGGCAGGCGAGATACAGGCGCTGGGCACGCGCTTCTGCGTGGCCGAGGCCCAGCAAGGCATCCGGGTCGACCTTTACACGGGATTGCTGGAAGTACGGCCTATCGCCGCAGCGGCCCAAAGGCTGGTGGAAGGCCAGAGCCTCTGGTTCGACCAGGACCGACTCGGTGTCGTCACCGCCACTGACCCAAACGCCGGCGCCTGGAGCGAGGGCCACCTGATCGCCGAGCGCCAGCCGCTGGGTCAGTTTCTGTCGCAACTGAGCCGCTACCGGCCCGGCATCCTGCGCTGCGATCCGGCCGCCGCACCGTTGCTCATCACCGGTGTATTTCCTCTGGCCGACACCGACGCCATCCTGGCGGCGCTGGCCCGCTCGCTGCCCGTGCGTGTCCACCAGGCAACGCGTTATTGGGTCACGGTAAAGCGTCTCACGTGAMNRRAERPVSPAVVEQASEWLMLHWGGEMTDAQQRAFVLWQRADAEHARAWQRLQDLQQTLGRVPRDCAQAVLKDAPQRSRRDMLKLLSLMLVTGATGYSLHSQKPWRGALADQHTAVGEIRRLTLEDGTRLDLDTDSAVDVRFSASHRRIRLIKGAILLETGHNPEYLQRPLIVQTGAGEIQALGTRFCVAEAQQGIRVDLYTGLLEVRPIAAAAQRLVEGQSLWFDQDRLGVVTATDPNAGAWSEGHLIAERQPLGQFLSQLSRYRPGILRCDPAAAPLLITGVFPLADTDAILAALARSLPVRVHQATRYWVTVKRLTPGPT0003910_5313DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003910-prhR|fecR-K07165NANA
D1-35_04609510fecI_9COG1595putative RNA polymerase sigma factor FecIATGTCAGCAACTTCCAATGGCAACGCTCAACTGCACGAACTCTACCGCGATCATCACGGCTGGCTGCACGCCTGGTTGCGTCGAAAGCTGGGCAACCATGACCACGCGGCGGACATCGCGCAAGACACATTCCTGCGCCTGCTGGTTTCCGGACGTATTCCCGGGGTAGTGGAGGGTCGCAGTTACCTGACCCAGATCGCCCGCAACCTGGTGATCGATCAGTGGCGTCGACAGCGAATCGAACGGGCCTACCTGGAAAGTATCGCTCATTTGCCCGAACCCCAGACGCCTTGCCTGGAGACACGAGCAATCATTCTCGAAACGCTTCAGAAAATCGACGCGATGCTCGACCGCATGCCAGGCAATGTGCGGACGGCCTTCCTGCTGTCGCAATTCGAAGGCCTGGGCTATGCGCAAATTGCCGAACGCCTGCAAGTCACCGTCAGCTCCGTACAAAAATACATGACCCGCGCCATCCTGGCCTGCTACCAGACGGTCTACGAAGAATGAMSATSNGNAQLHELYRDHHGWLHAWLRRKLGNHDHAADIAQDTFLRLLVSGRIPGVVEGRSYLTQIARNLVIDQWRRQRIERAYLESIAHLPEPQTPCLETRAIILETLQKIDAMLDRMPGNVRTAFLLSQFEGLGYAQIAERLQVTVSSVQKYMTRAILACYQTVYEEPGPT0003900_290DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003900-prhI|fecI-K23514NANA
D1-35_04610993rhaS_13HTH-type transcriptional activator RhaSATGGCGCAGGAAAGGGCATTCGTCGAACTCGGCGTGCTGATCTACCCCGGCGCGCAAATGGCCGCGGTGCATGGTTTGACCGATCTGTTTGCCGTGGCGGATGGCATTGCGGCGGAGCATGCCAGTGTGCAGCTGCCGCGGCTACGCGTGAGCCACTGGCAAACGGCGGGCGGAGAAATGCCGTCGCGGGTGTTTGCCAGTGATACCGGTCCGCACGCGCCACTGGTCGCCTTGTTGATCCCACCGTCCATTGCCGGCTTCAATGAAGCTGTCGCAACACCGACGCTGATGGATTGGCTCCGGGCGCAACACGCTAGCGGCACGGTACTGGGCGGGGTTTGCGTCGGCTCCATCCTGCTGGCCGAAAGCGGTTTGCTGGATGGGCGTAGTGCCACGACCCACTGGACCTCGGCCAAGAGCTTTGCGGCACGTTATCCGAAGATCAAGCTCAACGCCGATAAACCCATTGTCGACGACGGCGACCTGATCACCACCGCCGGGCTCATGGCCTGGTCGGAGCTCGGGCTGCGGCTGGTGGACCGCTTGCTCGGCCCCGGCATTGCCACACGCACCGCGCAGTTTCTGGTGATCGAGCACAGCGACAGCGCGAGCCAGTGCGGCAGTAATTTCGCGCCGATCCTCGGGCATGGCGATGGAGCGATTCTGAAAGTGCAGCACTGGTTGCAACGCAGCGGCGCGGTGGATGTTTCCCTTGGCACGATGGCCGAACAGGCCGGGCTGGAAGAGCGCACGTTCTTGCGCCGGTTTCGCGCGGCTACCGGCCTCAAGCCCACCGAATACTGTCAACACCTGCGGGTCGGCAAGGCCCGGGAAATGCTGGAGTACACCAACGGTACCATCGACCACATTGCCTGGACCGTCGGTTATCAGGATCCGGGCGCCTTTCGAGCGACGTTCAAGAAAATCACCGGGCTGGCGCCGAGTGATTACCGGGCAAGGTTCGGGGTGAACCCGAGTGCTGCCAAAAGCTGAMAQERAFVELGVLIYPGAQMAAVHGLTDLFAVADGIAAEHASVQLPRLRVSHWQTAGGEMPSRVFASDTGPHAPLVALLIPPSIAGFNEAVATPTLMDWLRAQHASGTVLGGVCVGSILLAESGLLDGRSATTHWTSAKSFAARYPKIKLNADKPIVDDGDLITTAGLMAWSELGLRLVDRLLGPGIATRTAQFLVIEHSDSASQCGSNFAPILGHGDGAILKVQHWLQRSGAVDVSLGTMAEQAGLEERTFLRRFRAATGLKPTEYCQHLRVGKAREMLEYTNGTIDHIAWTVGYQDPGAFRATFKKITGLAPSDYRARFGVNPSAAKSNANANANANA
D1-35_046111110hypothetical proteinATGACCCAGATCCATCGTGACAAATGTGTAGTGGCCCACTCGGTCAATCCCCAGGCACCCCTGCATGAAGTCGAGACCAATCGGGCGCTGGCGCGCTGGCTGGCGAATATCCTTGGCCTGGAGTTCGGCGGCAGTTACGACAGCCAGCAACACGCCGGGCGGGATCTGTACCTGTTGCCTACGCAAACCCTGATCGGTCCCGAGGCTGCGTTGCGCCTGGGCGTCAAGGGACCGGACGATCTTTGGGGCGGTTACGTCGACCACGATTTCATCTGCACCAAGGCGATTGCCCATGGTCTGTTGAATAAGGATGCGGTCGCGCCGAAGGGCTGGTCACCGCTGTTCGCCAAGCTGACCCGGGGCGTTGTGCTCGATGGCATCAGCGTGTTTTCGCTCAAGGATGCGCGCCAGGCCGCCGAGCACTTGCTCTACGCCGGGCCGATTCGCTTCAAGCCAATCCATGCTTGCGCCGGACGTGGCCAGCGAGTCATCCGGAGCATCGGGCAATTCGATGAGATCGTCGCGGCTCCAGACGCCCAGGCGTTGTTCAGCGAGGGAATCGTGCTGGAACAGAATCTCAGTGAGGTCAAGACCCAGAGCGTCGGCCAAAGCTTTATCAACGGCAAGGTCTTGAGCTACTGCGGCGTGCAGCACCTGACCCACGACAACGAAGGGGAAGAGGTCTACGGCGGCTCCGACCTGCTGGTGGCGCAAGGGGGCTACATCGAGCTTCTCGGCCTGGAATTGCCGGACGATGTGCGCGAAGCGGTCCGGCTGGCGCAGGTATTCGATGACGCCGCCAACCAGGCTTTCCCCACGTTCTTTGCTTCGCGGCGCAACTACGACATTGCCCAAGGGACGGATACCGGGGGCCAGCCTCGCGGTGGCGTGCTGGAGCAGTCCTGGCGAATGGGCGGCGCCAGCAGCGCTGAACTGGCTGCCTTGCAGGTGTTCGTCGAGGACCCATCGATCCGCGCGGTTCGGGTGTCCTCAGTCGAAACCTACACCGACCAACCGCTGCCGCCCGGCGCCACGGAGGTTTATCGCGGCGCTGCGGAAAATGGTGATTTCCTACTCAAATACGTAACGGTTCAATCCTATGACGGCTAGMTQIHRDKCVVAHSVNPQAPLHEVETNRALARWLANILGLEFGGSYDSQQHAGRDLYLLPTQTLIGPEAALRLGVKGPDDLWGGYVDHDFICTKAIAHGLLNKDAVAPKGWSPLFAKLTRGVVLDGISVFSLKDARQAAEHLLYAGPIRFKPIHACAGRGQRVIRSIGQFDEIVAAPDAQALFSEGIVLEQNLSEVKTQSVGQSFINGKVLSYCGVQHLTHDNEGEEVYGGSDLLVAQGGYIELLGLELPDDVREAVRLAQVFDDAANQAFPTFFASRRNYDIAQGTDTGGQPRGGVLEQSWRMGGASSAELAALQVFVEDPSIRAVRVSSVETYTDQPLPPGATEVYRGAAENGDFLLKYVTVQSYDGNANANANANA
D1-35_04612759hypothetical proteinATGACGGCTAGAAGCGAAACCATCCAGATTGCGATTGATGATGAACACATGAATGGAACCTTCCTCAGCCCCAAGTCGAAGGTCCCCGGTGTGTTGTTCGTACACGGTTGGGGCGGCAGCCAGGAGCGAGATCTCGAGCGGGCCAAAGGCATTGCCGGCCTGGGCTGCGTGTGCCTGACCTTCGACTTGCGCGGCCACACCGGTGGTGCCGGGATTCCACTGTCGCGGGTCACGCGCGAGGACAACCTGCGGGACTTGCTGGCGGCCTATGACCGGTTGCTCGCCCACCCGGCCCTGGACACCTCGGCGATCGCGGTGGTCGGTACCAGCTACGGTGGTTACCTGGCCTCGATCCTTACCTCATTGCGACCGGTGCGCTGGCTGGCCCTGCGGGTGCCGGCGCTGTACCGCGACGAGCAGTGGCACACGCCCAAGCGCGACCTCGACAAGGCTGACTTGCTCGATTACCGCAGCACCCTGGTGCACGCCGATACCAACCGGGCCTTGCACGCCTGCGCGCAATTCACCGGCGATGTGTTGCTGGTGGAGTCGGAGACGGACGATCATGTGCCCCACGCCACGATCATGAGCTACCGGGCCGCCTGCCAGCAGACTCACTCGTTGACTCATCGGATCATCGATGGCGCCGACCATTCCCTGAGTGACCCCGTGTCACAGCAGGCCTACACCTCGATCCTGGTGAGCTGGATCACGGAGATGGTGGTGGGCGAGCGGTTGAGCATCATTCAGGAGCGGTAGMTARSETIQIAIDDEHMNGTFLSPKSKVPGVLFVHGWGGSQERDLERAKGIAGLGCVCLTFDLRGHTGGAGIPLSRVTREDNLRDLLAAYDRLLAHPALDTSAIAVVGTSYGGYLASILTSLRPVRWLALRVPALYRDEQWHTPKRDLDKADLLDYRSTLVHADTNRALHACAQFTGDVLLVESETDDHVPHATIMSYRAACQQTHSLTHRIIDGADHSLSDPVSQQAYTSILVSWITEMVVGERLSIIQERNANANANANA
D1-35_046131002ybhNCOG0392Inner membrane protein YbhNATGAACCACTCTGAAGCGCAGACCGCGCCGGGAGACGCCCAGGCGCCGGAACAGGCCAAGCCCAAGTCGCGCTGGAGCCGCTGGAAACGCCCGCTGACGCTGGCTTTTTTCCTGCTGCTGATTGTGCTGTTCACCGCGTTGGCGCGCCGCATCGACTGGTCCGAAGTATTCGCCACCCTGGCGGATTTCAAGCTGCGCACGCTGCTGATCGCCGCCGCGCTGACGATCACCAGTTTCATCACCTACGCCTGCTTCGACTTGATCGGTCGCACCTACATCCGGCAGAAACTCGGCTGGCGGCAGATCCTGCCGGTGGGAGTGATCAGTTACGCCTTCAACCTGAATCTCAGTGCCTGGGTCGGCGGCATCGCCATGCGCTATCGGCTGTATTCGCGGCTCGGCGTCAGCACTGGCAACATCGCCAAGATCCTCGGCCTGAGCCTGGCCACCAACTGGTTCGGCTACATGACCCTGGCCGGCGTAGTGTTCAGCAGCGGCCTGGTGACCATGCCGCCGGGTTGGAAACTGAGCAGCAACGCGCTGCAAGGCGTCGGCGTGCTGCTGTTGCTGGCCAGTGGCGGTTACCTGGCGGCCTGCCGTTTCTCCAGGCGCCGGGCCTGGACGATTCGCGGTATGGAAATCAATCTGCCGTCCCTGCGCATGGCCGTCCTGCAATTGGCACTGGGCGCGCTGAACTGGTCGCTGATGGCGGCGGTGATCTTTACCTTGCTGCCGAGCAAACTGGACTATCCCGTGGTGCTGGGGGTGTTATTGATCAGCAGCATCGCCGGGGTGATTACCCATATCCCCGCGGGGCTCGGAGTGCTGGAAGCGGTGTTCGTCGCGCTGCTGCAGCATGAAGTGTCGCGAGGCAGCCTGATCGCGGGACTGATTGCCTACCGGGCGATCTACTTCATCCTGCCATTGCTGATTACCGTGGTGATGTATCTGGTGATCGAGGCGAAGGCCAAGGCGTTGCGGGTCAAGCCTGGGCTCAAGTGAMNHSEAQTAPGDAQAPEQAKPKSRWSRWKRPLTLAFFLLLIVLFTALARRIDWSEVFATLADFKLRTLLIAAALTITSFITYACFDLIGRTYIRQKLGWRQILPVGVISYAFNLNLSAWVGGIAMRYRLYSRLGVSTGNIAKILGLSLATNWFGYMTLAGVVFSSGLVTMPPGWKLSSNALQGVGVLLLLASGGYLAACRFSRRRAWTIRGMEINLPSLRMAVLQLALGALNWSLMAAVIFTLLPSKLDYPVVLGVLLISSIAGVITHIPAGLGVLEAVFVALLQHEVSRGSLIAGLIAYRAIYFILPLLITVVMYLVIEAKAKALRVKPGLKNANANANANA
D1-35_046141299clsBCOG1502Cardiolipin synthase BATGAGCGCGACGATGAACAAGGCAACGGTGGAAAAGATCGAGGTCCCGCCGACCGAGAGCAACCCGGCGCTGAACGATATCGAATACGGCTGGCACGGCAACAACCGTGTCACGCTGCTGGAAAATGGCGAGGAATATTTCCCACGGGTTTTCGAGGCAATTCGCCGTGCCCAGGAAGAAATTCTCCTGGAGACTTTCATTCTGTTCGAGGACAAGGTCGGCTTTGAACTGCGCGACCTGCTGGTGGATGCGGCCAAGCGTGGAGTGCGTATTACCGTCAATCTCGACGGTTTCGGTTGTGGCGAACTGACCACCGAGTTTCTCGCGTCGTTGAGCGAGGCCGGGGTGCGCCTGCAGATGTTCGACCCGGCTCCGAGGCACCTGGGCATCCGCACCAACTGGTTCCGCCGCCTGCACCGCAAGATCGTCGTGGTGGACGGTGTGATCGCGTTTATCGGCGGGATCAATTTCTCCGCCGACCACCTGGGCGACTTCGGTCCCGAGGCCAAGCAGGATTACTCCGTGGAGATCAAGGGCCCGGCGGTGGTGGATATCCATCATTTTGCGCTGCTCCAGACCGGGCGGCCGGGCCGGGCCAAATACTGGTGGCAACGCCGCCGCAGCCGTCGCACCGAATTGGCGTTCAATGATCATGACGGCCAGGTGCGCCTGGTCTATCGCGACAACCATGAGCACCAGACCGACATCGAGGAGGTCTACCTGCAAGTGCTGCGCAGCGCCCAGCGGCGGGTAGTGATCGCCAATGCCTATTTCTTCCCCGGCTACCGGTTGCTGCGCGAGATCCGCAACGCCGCCCGGCGTGGCGTGGAGGTGCGGCTGATCCTGCAGGGGCAACCGGACATGATGATCGCCAAGCTTGCCGCGCGGATGCTCTACGACTATCTGCTCAAGGCCGGCGTGACGATCTATGAATATTGCGAGCGGCCGCTGCACGGCAAGGTCGCCCTGGTGGATGAGGACTGGAGTACCGTCGGCTCGAGCAACCTCGACCCGTTGAGCCTGTCCCTGAACCTGGAAGCCAACGTGCTGATCCGCGACCGTGCGTTCAACCGCGAGCTGTTCGAGCGCCTCGATCACTTGAGCCGCACCCATTGCACCATCATGCCCGAGAACCACGCACCGCGCGGGCTGCTCTGGCGCATGACCATCGGTTTCATGGTGTTCCACTTCCTGCGTCACTTCCCGGCCTGGGCCGGATGGCTGCCGGCCCATAAACCGCGTCTGAAACCTTTTTCACCGCCGACGGCGGTCCGGAGCGAACCCCATGAACCACTCTGAMSATMNKATVEKIEVPPTESNPALNDIEYGWHGNNRVTLLENGEEYFPRVFEAIRRAQEEILLETFILFEDKVGFELRDLLVDAAKRGVRITVNLDGFGCGELTTEFLASLSEAGVRLQMFDPAPRHLGIRTNWFRRLHRKIVVVDGVIAFIGGINFSADHLGDFGPEAKQDYSVEIKGPAVVDIHHFALLQTGRPGRAKYWWQRRRSRRTELAFNDHDGQVRLVYRDNHEHQTDIEEVYLQVLRSAQRRVVIANAYFFPGYRLLREIRNAARRGVEVRLILQGQPDMMIAKLAARMLYDYLLKAGVTIYEYCERPLHGKVALVDEDWSTVGSSNLDPLSLSLNLEANVLIRDRAFNRELFERLDHLSRTHCTIMPENHAPRGLLWRMTIGFMVFHFLRHFPAWAGWLPAHKPRLKPFSPPTAVRSEPHEPLPGPT0007725_3863DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QUORUM_SENSING_RELATED_GENESCE-QSR-CARDIOLIPIN_SYNTHESIS,PGPT0007725-clsA_B|ybhO|ywiE-K06131NANA
D1-35_04615813hypothetical proteinATGACTACGCCAGAATCCAGCGAAGCCACCCGTGACCCGACCCAGCAATCGTTGCGGGATTTCGAACGGGTCAGCCGCTTCACCGTCCTGACGGTCAATACACACAAGGGGTTCACCGCCCTGAACCGGCGTTTCATCCTGCCGGAACTGCGCGAAGCCGTGCGCAGCGTTTCCGCCGACGTGGTGTTCCTGCAAGAAGTGCATGGCACCCACGAGCACCACCCCCAGCGCTACAGCAACTGGCCAAGCATCCCGCAATACGAGTTTCTCGCTGACACCCTCTGGCCGCAGTTCGCCTATGGGCGCAACGCGGTGTACCCGGCGGGCGACCATGGCAACGCGTTGCTGTCGAAATTCCAGATCATTCGCCACGAGAACCTCGACGTCTCCATCAGCGGCCACGAGAGCCGCGGCATGCTCCACAGCGTGCTGCGTCTGCCGGGTGGCGAAGGCCAGGACGTGCATGCGATCTGTGTGCACCTGGGGTTGCGCGAAGGTCATCGCGTCGAGCAACTGAAACTGCTTTGCCAGCGCCTAAGTGAGCTGCCGCCTGAAGCGCCAGTGATTGTCGCCGGTGACTTCAACGATTGGCGCGGCAAGGCCAATGACCTGCTCGCCCCCTGCGGCCTGCGGGAAGTCTTCGCCGAACAATGGGGCAAGCCGGCCCGCAGCTTTCCGGCACGCCTGCCGATCCTGCGCCTGGACCGCATCTACGTGCGCAACCTCAAGGCCCATCACGCCAAAGTATTGAATGTACGTCCCTGGTCGCACCTTTCCGACCACGCACCGCTGTCGGTGGAGATCGAATTATGAMTTPESSEATRDPTQQSLRDFERVSRFTVLTVNTHKGFTALNRRFILPELREAVRSVSADVVFLQEVHGTHEHHPQRYSNWPSIPQYEFLADTLWPQFAYGRNAVYPAGDHGNALLSKFQIIRHENLDVSISGHESRGMLHSVLRLPGGEGQDVHAICVHLGLREGHRVEQLKLLCQRLSELPPEAPVIVAGDFNDWRGKANDLLAPCGLREVFAEQWGKPARSFPARLPILRLDRIYVRNLKAHHAKVLNVRPWSHLSDHAPLSVEIELNANANANANA
D1-35_04616927hypothetical proteinATGACGGCGATCCACATTGGCATTTCCGGTTGGCGCTACACGCCTTGGCGGGGGGATTTCTACCCCAAGGGGCTGGCTCAGAAGCGGGAACTGCAATTCGCCTCTCGCGCGGTCAACAGCATCGAAATCAATGGATCGTTCTACGCCCTGCAACGTCCCGAACGGTATGCCCAGTGGTACGCCGAGACGCCGGACGACTTCGTCTTCAGCGTCAAGGCGCCAAGGTTCATCACTCACATCAAGCGCCTGCGGGACATCCACAAGCCGCTGGCGAACTTCTTCGCCTCCGGGGTGCTGGAACTCAAGGAAAAACTCGGGGCTATCCTCTGGCAGTTTCCGCCGAGCTTCAAATTCGACCCCGAGCTCTTCGAAGAATTTCTCAAGCAATTGCCCCACGACACCGAAGCCGCCGCCGCGCTGGCACGCGAGCATGAACCACGCCTGGACGGCCATGCCAGCACAACGACCGACAAGAAGCGTGCGCTGCGCCATGCCGTCGAAATCCGTCATGAGAGCTTTATCGATCCACGCTTCGTCGCCCTGCTCAAACGTTACGACGTCGCCCTGGTGGTGGCGGATACCGCTGGAAAATGGCCGTATCGCGAGGACGTCACCAGCGATTTCGTCTATCTGCGCCTGCACGGCGCCGAAGAGCTATACGCCAGCGGCTATACCGACGAGGCGCTGAAGCGCTGGGGCGATCGGATCGAAGCCTGGAGCCACGGCACTCAGCCGAGTGACGCCCACCTGATCGATCCGAAAAAGAAACCCCGGGCGCGCAAGAGCCGGGAAGTGTTCTGCTATTTCGACAACGACATCAAAGTCCGCGCGCCGTATGACGCGCGCCACCTGCTGGAGCGCTTCGACCTGGACAAGCATCTCGCCACCGCTCCCGGCGTGCGCCCGGCCGAAGGGGTATTGCCATGAMTAIHIGISGWRYTPWRGDFYPKGLAQKRELQFASRAVNSIEINGSFYALQRPERYAQWYAETPDDFVFSVKAPRFITHIKRLRDIHKPLANFFASGVLELKEKLGAILWQFPPSFKFDPELFEEFLKQLPHDTEAAAALAREHEPRLDGHASTTTDKKRALRHAVEIRHESFIDPRFVALLKRYDVALVVADTAGKWPYREDVTSDFVYLRLHGAEELYASGYTDEALKRWGDRIEAWSHGTQPSDAHLIDPKKKPRARKSREVFCYFDNDIKVRAPYDARHLLERFDLDKHLATAPGVRPAEGVLPNANANANANA
D1-35_046172088hypothetical proteinTTGTCTCGATTGAGCACCGTATTGCTGTTGGTCCTGCTGACGCTGACCGGCACCAGCGCCTACGGGACCGCTGCTGTCCCTGGCGCCTCCAATCCCAGTGAGGCCCCGGCCGAGCCCGAACCGCTGGTGCAGGGCGGTTTGCTGGGCGCGATCAGTTCGAGCATCGATGACGTCCAGGACAAGCTCGACCTTAACCAGAGCCTGGTGGACGCCTGGCGCCTGCGGGCGGACCGGGCGGCGGACGAAGTCGATCGCCTGGTGGACCAGACGTCCCGTTCCACATGGCGCGTGGCGGGGGATTTCCTGCTGCTCTCGGGCGTATGGCTGGGGACGTTTGCGCTGATATGGACCGCCGCGCGATTGCTGGTGCGCCGCTTGCGCCGGCGCCGCTGGCTACGCACCCGCCAGCGGGTGCTGGACGTGCTCGGCTATGTGCTGCCCTATACCTTGCCGGCTGTGGCCTGTCTGCCGCTCACCCTTTACGTCAGCCACTTCCTGCAAGTCTCGGTCGGTCGCGCCCTGGCGCTGTGTTTCGCCTACGCCACCAGCAGCGGTATTTTTTCCACGTCGGTGCTGCTCTGCGTGATCGTGATGTTCAACGCCGGGCACAAACGGCGAGCGGTGGCGATGCTTCGTCGTTTCACCCCGCGGCCGTTGTTCCTGATCGGCTTTCTGGCCGCCCTCAGCGATGCACTGACCAGCCCGCAGATCGCCCGGCAACTGGGCGGCAATATCACCAGCAGCGTTGCGGTGTTCACCGGGCTGTCGGCGTCGATGATCTTTGGCTGGCTGGTGATCCATATGCGCCGGCCGGTGGCCCACCTGATCCGCAACCGACCGTTGGCCCAGCGCTTGAAACAGCCGGCGTTGCAGGAGTCCTTGCGGATTTTTTCCGGTCTCTGGTACTGGCCGATCCTGCTGATGGTGCTGGTGTCGGCGGTGAGCCTGATCGGCGTCGGCGAAGACAACCAGAAAGCCCTGCGTTGCGCCCTGTTCACCACCATCCTGTTGATCGCGATGGTGTTCCTCAGCACCATATTCCAACACGTCTTCAAGTCGCCCAAGGCCGAAGCCATCCAGCGTAACAGCGCCTACAAGGGACGACTGTTGAGCTTGCTGCACGCCTTGGTGCGCATCGTCATGGCGGTGGCGTTCATTGAAATCCTCGGGCGGATCTGGGGGATTTCCCTGTTCGAATTCGCTTCGCGCAACGCCGTGGGCCGGGCGATCAGTGACTCCTTGAGCCGCATCGGCCTGATCTTCCTGATGACCTGGCTGACCTGGGTGGTGCTCGACACGGCGATCCAGGAGGCTCTCAAGCCGCCGCTCAACAAGCGCGGCGCCCGCCAACCCAGCACGCGAGTCAAGACCATCCTGCCGCTGCTGCGCAACGCCGCCAAGATCATCCTGGTGGTGATCTGCGCGATCACCACCATGGCCAACCTGGGCATCAACGTCGCGCCGTTGCTGGCCGGTGCCGGGGTGGTGGGGCTGGCGATCGGTTTCGGTTCGCAGCAACTGGTACAGGACGTGATCACCGGGTTGTTCATCATCATTGAAGACACGCTGTCCATCGGTGACTGGGTGGTACTCAGCTCGGGCCACGCAGGCACTGTCGAAGGCCTGACCATCCGCACCCTGCGTCTGCGCGACGGCAAGGGGTTTGTGCATTCGGTGCCGTTTGGGCAGATCAAGGCCGTGACCAACCAGTCCCGGCAATTCGCCTTTGCGTTTTTCTCGGTGCAGTTCACCTACGACACCGATGTGGACCGTGCCATTGAATTGATCCGCGAGGCTGGCGATTCGATTTCCGAAGACCCGTTCCTCAAGTTCAACCTGCAAGGGCCGCTGGATGTGTTCGGCGTGGACAAGATGGACCTCAACGGGCTGGTGCTCACCGCCCAGTTCCGCACTGTGTCAGGCGGGCAATATGCGGTGAGCCGGGCGTTCAACCAGCGGCTCAAGAATCTTGTGGATAACGAGCCGTCGGTGCATTTTGCGCAGACTTATCCACAGCAGGTGGTGATGCCGAAGCGGTTGGCCGAGGAGCCGAAGGCAGGGAATGAACAGCCTGATCAAGCTCAATGAMSRLSTVLLLVLLTLTGTSAYGTAAVPGASNPSEAPAEPEPLVQGGLLGAISSSIDDVQDKLDLNQSLVDAWRLRADRAADEVDRLVDQTSRSTWRVAGDFLLLSGVWLGTFALIWTAARLLVRRLRRRRWLRTRQRVLDVLGYVLPYTLPAVACLPLTLYVSHFLQVSVGRALALCFAYATSSGIFSTSVLLCVIVMFNAGHKRRAVAMLRRFTPRPLFLIGFLAALSDALTSPQIARQLGGNITSSVAVFTGLSASMIFGWLVIHMRRPVAHLIRNRPLAQRLKQPALQESLRIFSGLWYWPILLMVLVSAVSLIGVGEDNQKALRCALFTTILLIAMVFLSTIFQHVFKSPKAEAIQRNSAYKGRLLSLLHALVRIVMAVAFIEILGRIWGISLFEFASRNAVGRAISDSLSRIGLIFLMTWLTWVVLDTAIQEALKPPLNKRGARQPSTRVKTILPLLRNAAKIILVVICAITTMANLGINVAPLLAGAGVVGLAIGFGSQQLVQDVITGLFIIIEDTLSIGDWVVLSSGHAGTVEGLTIRTLRLRDGKGFVHSVPFGQIKAVTNQSRQFAFAFFSVQFTYDTDVDRAIELIREAGDSISEDPFLKFNLQGPLDVFGVDKMDLNGLVLTAQFRTVSGGQYAVSRAFNQRLKNLVDNEPSVHFAQTYPQQVVMPKRLAEEPKAGNEQPDQAQPGPT0013695_932DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-MECHANOSENSITIVE_ION_CHANNEL,PGPT0013695-ykuT|ybiO-K22044NANA
D1-35_046184314srmBATP-dependent RNA helicase SrmBATGAATCTGCCCCTTCCAGCCGACCACGCCATGGCAGGCTTTCACCCCGCCGTTCGCGCCTGGTTCAGCCAGACATTCCCGGCGGTCACCGCCGCCCAGGCCCGGGCGTGGCCGTTGATCAGCCAACGACGTTCGGTGCTGGTCGCGGCGCCCACCGGCTCGGGCAAGACCTTGACGGCGTTTCTCGCGGTGCTCGATGACCTGGTGCATCGCGGCCTGGAGCAAGGCGGTCTACCGGACCAGACCCTGGTGGTCTACGTCTCGCCGCTCAAGGCGTTGAGCAACGATATCCGCATCAATCTGCAAAATCCCCTGGCCGGCATCACCGAGCAGTTGCAACGAATGGGCTTGCCGCCGTTGCCCATCACCACGGCGGTGCGCACCGGCGACACACCGCAAAAAGATCGCACGGCGATGCGCAAGACCGCGCCGCACATCCTGGTGACCACGCCCGAATCGCTCTACGTGCTGCTCGGTTCCGATTCCGGCCGGCAGATGCTCGCCAGCACGCGCACGGTGATCATTGATGAAATCCACGCCATCGCCGCGAGCAAACGCGGCAGCCACCTGGCCTTGAGCCTGGAGCGACTGCAAGCGCTGTGCGCCGAACCGCTGGTGCGCATCGGACTGTCCGCCACGCAAAAACCCATCGAAGCGGTGTCGCGCTTTCTCGTCGGCCAGGGACGCACCTGTGAAATCGTCGACATCGGCCACGCCCGCCCACGGGACCTGGACATCGAAGTGCCGCCCGTGCCGCTTTCGGCGGTGATGGCCAACGATGTCTGGGAACTGGTCTACAACCGGCTCGCCGAACTGGCCCGGCAACACCGGACCACGCTGGTGTTCGTCAATACCCGGCGCCTGGCCGAGCGCCTGAGCCGGCATTTGAGCGAGCGCCTGGGCAAGGAGGCGGTGGCGGCCCATCACGGCAGCCTGGCCAAGGAATTTCGCCTCGACGCCGAACAACGCCTCAAGCGCGGCGAACTGCAGGTATTGATCGCCACCGCGTCCCTGGAGCTGGGCATCGACATCGGCGATGTCGACCTGGTCTGCCAGATCGCCTCGCCCCGTTCGATCTCGGCGTTCCTGCAAAGGGTCGGACGCTCCGGCCACCAGGTCGGCGGCACGCCAAAGGGGCGTCTGTTCGCCACCACTCGCGACGACCTGATCGAGTGCGTCGCCCTGCTCGACTGCGTGCGCCGTGGCGAGCTGGACATCCTGCACATCCCCGAGGCGCCGCTGGATGTGCTGGCGCAGCAGATCGTCGCCGAGGTCAGTTGCCAGGAATGGCACGAACAGGCGCTGCTGGAGATGTTCCGCCGTGCCTCGCCCTACGCCGAACTCGACGAAAATCACTACCAGGCGCTGTTGCAGATGCTCGCCGAGGGCGTCAATGGCCGCCAGGGTGTGCGCAGCGCGTACCTGCATCGCGACGCGGTCAGTCGGACCTTGCGCGGGCGCCGAGGCAGCAAGCTCACCGCCGTGACCAGCGGCGGCACGATTCCGGACAATGCCGACTACAGCGTGCTGCTCGAACCCCAGGGCCTGAACATCGGCAGCGTCAACGAAGATTTCGCGGTCGAGAGCATTGCCGGCGACGTGTTCCAGTTGGGCAATACCTCGTACCGGATCATCCGCGTCGAAAGTGGCCGCGTGCGGGTCGAGGACGCCCAGGGTCAACCGCCGACCATCCCGTTCTGGCTCGGCGAAGCCCCAGGGCGCAGCGCCGAGCTGTCCGAGGCCGTGGCCCGCCTCCAAGCCCGCCTGGATGAACTGCTCGGCGCCACACCGGGCAATCTGCAACCGGCCCTCGACTGGCTGACCGGGACCCTGCAACTGAACCTCGCCAGCGCCGAGCAACTGCTCGATTACCTCGCTCCGGCGCGCCTGGCCTTCGGCGCCCTGCCGTCCCAGGACACGCTGCTGATGGAGCGCTTTTTCGACGAATCCGGCGGTACGCAACTGATCATCCACACGCCGTTCGGCAGCCGCATCAACCGCGCCTGGGGCCTGGCCCTGCGCAAGCGTTTCTGCCGTACCTTCAATTTCGAATTGCAGGCCGCCGCCAGCGAAGACGCCATCGTGCTCTCGTTATCCACCAGCCACAGCTTCGAGCTGGACGAGGTCTGGCGTTACCTCAACAGCCACAGCGCCGAACAGATCCTGATCCAGGCGGTGCTGGATGCGCCGTTGTTCGGGGTGCGCTGGCGCTGGAACGCCGGCGTGGCCCTGGCGTTGCCGCGTTACGCCGGTGGGCGCAAGGTCGCGCCGCAGATCCAGCGCATGAAGAGCGAAGACCTGATCGCCAGCGTTTTTCCCGACCAGATCGCGTGCCTGGAAAATCTCGCCGGCGAGCGAGAGATTCCCGACCATCCGCTGGTGGAACAGACTCTCGACGATTGCCTGCACGAAGCCATGGACAGCGAAGGCTGGCTGGCCCTGTTGCGACGCATGGAAGCGGGCGAGATCCGCCTGGTCAGCCGCGACCTGCCGGCGCCCTCGCCCCTGGCGGCGGAAATTCTCAGTGCCCGGCCCTACACCTTTCTCGACGACGCGCCCCTGGAAGAACGCCGCACCCAAGCGGTGATCAATCGCCGCTGGAGCGATCCGCAATCCACCGATGACCTCGGCGCGCTGGACGCCGAAGCCATTCAGGCGGTGCGGGAAGAGGCCTGGCCGACGCCGAGCAATATCGATGAAATCCATGAAGCGCTGATGAGCCTGGCGTGCATCGCCGACAGCGAAGCCGACGCCGAGCCGTCGTGGCTGGAGGGCTTGCGGACCCTGGCCGAGCGCGGTCGCGCCAGCCATGTGCGGATCAGCGAGGAGCGTGGTTTGTGGGTACCGCTGGAACGGCTGACGTGCCTGCAAGCAATTTATCCACAGGCCCGATGGCAGCCGCCGCTGACGCCACTGCCGGGGTTTGATGAGCAGTGGGACAGCGACGACGCCGTGGTCGAGGTGCTGCGGGCGCGACTCAGCGCCTTCGGCCCGCAGCCGCTGACGGCGATCGCCTATCCGCTGGGGTTGTCACCCGCGCAAGCGACCCAGGCCCTGGCCCAACTGGAGCAACAAGGGTATGTGCTGCGCGGTCGGTTTACGCCGGGCACCGGGCAGGAAGAATGGTGCGAGCGGCACCTGCTGGCGCGGATCCACCGCTACACCGTCAAGCGCCTGCGCCGGGAAATCGAGCCGGTGACGCTGCAGGATTTCATGCGATTCCTCTTCGACTGGCAGCACCTGTCGCCATCCGCCCAAGGCCGGGGCAACGCCGTATTGCCATCGATCGTCAGCCAGTTCGAAGGTTATCCGGCGGCCGCCTCGGCCTGGGACAGCGACCTGTTGCCGGCGCGGATCAAGGATTATTCAGCGAGCTGGCTCGACGAACTGTGTCGCAGCGGCAAGTTTGTCTGGACGCGCCTGAGCGCCCGCCAGAAGCTGTCCGCCAGCGCCTTGCGCAGCACGCCGATCGTCTTGCTGCCGCGCCGCCAGGTCGGGCTCTGGAGCAGCCTAGCCGAGCAGACGCCGCTCGACGAGTTGTCGCCGAGGACGCAAAAAGTCCACCAGGCCCTCAGCGAGCACGGCGCATTGTTTTTCGATGAGTTGCTGCACGAAGCCCATCTGCTGCGCAGCGAACTGGAAAGCGCCTTGCAGGAACTGGTGGGCGCCGGGCTGGTGAACGCCGACAGCTTCGCCGGGCTGCGAGCCTTGATCACTCCCGCCAGCAAGCGCCAGGCCCGCAGCAGCCGGCGCGGGCGTGGAGCGTTTGTCGGCGGCATGGACGACGCCGGGCGCTGGGCCTTGTTGCGCCGCAGTTCGCCTGCTGCGCAACCGGGTAACCGCCCGGCGCCGACTGCGCCCGAGACCTTGGAACACATCGCCATGACCCTGCTGCGCCGTTACGGCGTGGTGTTCTGGCGTCTGCTGGAGCGCGAGGCCGATTGGCTACCGAGCTGGCGCGAGTTACTGCGCACTTTCCATCGCCTGGAGGCACGCGGCGAGATTCGCGGCGGGCGGTTTGTCAGCGGGCTGGCCGGCGAGCAATTTGCCTTGCCCGAAGCCATTCCCCTGCTGCGCGAAACGCGGCGCCGTCCCAGCGATGGCAGCCTGATCGCGGTGTGTGGGGTGGATCCGCTGAACCTCGCCGGGACCTTGCTGCCGGGAGCGAAAGTGCCGGCGCTGGCGAGTAATCGACTGGTATATCGCGATGGGTTGCCGGTGGCGGCGCTGATTGCCGGCAAGCCGCAGTTCTGGGTGGAGCTGGATGCTCAAGGGATGGCTGAGGCCAGGAGCAAGCTCATCCAGAAAAGTTGAMNLPLPADHAMAGFHPAVRAWFSQTFPAVTAAQARAWPLISQRRSVLVAAPTGSGKTLTAFLAVLDDLVHRGLEQGGLPDQTLVVYVSPLKALSNDIRINLQNPLAGITEQLQRMGLPPLPITTAVRTGDTPQKDRTAMRKTAPHILVTTPESLYVLLGSDSGRQMLASTRTVIIDEIHAIAASKRGSHLALSLERLQALCAEPLVRIGLSATQKPIEAVSRFLVGQGRTCEIVDIGHARPRDLDIEVPPVPLSAVMANDVWELVYNRLAELARQHRTTLVFVNTRRLAERLSRHLSERLGKEAVAAHHGSLAKEFRLDAEQRLKRGELQVLIATASLELGIDIGDVDLVCQIASPRSISAFLQRVGRSGHQVGGTPKGRLFATTRDDLIECVALLDCVRRGELDILHIPEAPLDVLAQQIVAEVSCQEWHEQALLEMFRRASPYAELDENHYQALLQMLAEGVNGRQGVRSAYLHRDAVSRTLRGRRGSKLTAVTSGGTIPDNADYSVLLEPQGLNIGSVNEDFAVESIAGDVFQLGNTSYRIIRVESGRVRVEDAQGQPPTIPFWLGEAPGRSAELSEAVARLQARLDELLGATPGNLQPALDWLTGTLQLNLASAEQLLDYLAPARLAFGALPSQDTLLMERFFDESGGTQLIIHTPFGSRINRAWGLALRKRFCRTFNFELQAAASEDAIVLSLSTSHSFELDEVWRYLNSHSAEQILIQAVLDAPLFGVRWRWNAGVALALPRYAGGRKVAPQIQRMKSEDLIASVFPDQIACLENLAGEREIPDHPLVEQTLDDCLHEAMDSEGWLALLRRMEAGEIRLVSRDLPAPSPLAAEILSARPYTFLDDAPLEERRTQAVINRRWSDPQSTDDLGALDAEAIQAVREEAWPTPSNIDEIHEALMSLACIADSEADAEPSWLEGLRTLAERGRASHVRISEERGLWVPLERLTCLQAIYPQARWQPPLTPLPGFDEQWDSDDAVVEVLRARLSAFGPQPLTAIAYPLGLSPAQATQALAQLEQQGYVLRGRFTPGTGQEEWCERHLLARIHRYTVKRLRREIEPVTLQDFMRFLFDWQHLSPSAQGRGNAVLPSIVSQFEGYPAAASAWDSDLLPARIKDYSASWLDELCRSGKFVWTRLSARQKLSASALRSTPIVLLPRRQVGLWSSLAEQTPLDELSPRTQKVHQALSEHGALFFDELLHEAHLLRSELESALQELVGAGLVNADSFAGLRALITPASKRQARSSRRGRGAFVGGMDDAGRWALLRRSSPAAQPGNRPAPTAPETLEHIAMTLLRRYGVVFWRLLEREADWLPSWRELLRTFHRLEARGEIRGGRFVSGLAGEQFALPEAIPLLRETRRRPSDGSLIAVCGVDPLNLAGTLLPGAKVPALASNRLVYRDGLPVAALIAGKPQFWVELDAQGMAEARSKLIQKSNANANANANA
D1-35_04619870rmlDdTDP-4-dehydrorhamnose reductaseATGTTACTGGGCGGCGGAAATGCCCTTGGGCAGGCGCTGATTCGCCTCGGTGCAGAAGAAGACATCGGTTTTCTTGCCCCCCGCCCGCCCGAAGATGGCTGGGATGCCGCGAGCCTGACGCAGTTGCTCGACGACACCCGGCCGGACGCCTTGATCAACCTGGCGTACTACTTCGACTGGTTCCAGGCCGAGACCGTCAGCGAGCAGCGCCTGGCGAGCCAGGAGCGGGCGGTCGAGCGCCTGGCCGAACTGTGCCAGCATCACAACATCGTCCTGGTGCAACCCTCGAGTTACCGTGTATTCGACGGCTCGCGCGCCACCGCCTACAGCGAAAAAGACGAGCCGGTGCCCCTGGGCTTGCGTGGCCAGGCACTGTGGCGCATCGAGCAAAGCGTGCGCGCCACCTGTCCGCAGCATGTGCTGCTGCGTTTTGGCTGGCTGTTGGACGACAGCGCCGATGGCATCCTCGGACGGTTCCTGGCCCGGGCCGAGCAGCCCGAAGAGCTGCTGCTGGCCGACGACCGCCGGGGTAATCCGACACCGGTCGACGATGCGGCGCGGGTAATCATTTCGGTGCTCAAACAACTCGATTGCGCGGCGCCGCTGTGGGGCACGTACCATTACGCCGGACACGAGGCGACGACGCCGCTGGCGCTGGGCCAGGCAATTCTTACCGAAGCCCGCGCCCTGCACCCGCTGGCCATCGAGTCACCCACGCCCCAGGCCCACGCCGCGCGGCCGGACGCCGCCGAAGAACCGCAGCACGCGGTACTGGCCTGCAAGAAAATTCTGCACACTTTCGGGATCAAGCCACGCGCCTGGCGCGCCGCACTCCCGGGCTTACTGGATAGGTTTTATCGCCATGGCTAAMLLGGGNALGQALIRLGAEEDIGFLAPRPPEDGWDAASLTQLLDDTRPDALINLAYYFDWFQAETVSEQRLASQERAVERLAELCQHHNIVLVQPSSYRVFDGSRATAYSEKDEPVPLGLRGQALWRIEQSVRATCPQHVLLRFGWLLDDSADGILGRFLARAEQPEELLLADDRRGNPTPVDDAARVIISVLKQLDCAAPLWGTYHYAGHEATTPLALGQAILTEARALHPLAIESPTPQAHAARPDAAEEPQHAVLACKKILHTFGIKPRAWRAALPGLLDRFYRHGPGPT0022630_2031DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-PUTATIVE_TRYLOSE_DERIVATES_MODIFICATION,PGPT0022630-rfbD|rmlD-K00067NANA
D1-35_04620930COG1088UDP-glucose 4-epimeraseATGGCTAAAGGCCCTGTTTTAATCACCGGCGGCGCCGGTTTCATCGGTTCGCACTTGACCGACGCGTTGCTCGCCAACGGCCATTCGGTGCGCATTCTCGATGACTTGTCCACCGGCAAGCGCAGCAACCTGCCGCTGGACAACCCGGCAGTCGAACTGATCGAAGGCGACGTCGCCGATGCGGCGCTGGTCGCCCGGGCCATGGCCGGGTGCAGCGCGGTGGCGCACCTGGCGGCGGTGGCCTCGGTGCAAGCCTCGGTGGACGACCCGGTACGTACCCACCAGAGCAATTTCATCGGCACCCTGAATGTCTGCGAGGCCATGCGCCAGGCGGGCGTGAAACGGGTGCTGTTCGCTTCCAGCGCCGCGGTCTATGGCAACAATGGTGAAGGCCAGTCCATCGACGAAGACACCTCCAAGGCGCCGCTTACGCCCTACGCTTCGGACAAGCTGGCGAGCGAGTTCTACCTCGACTTCTACCGGCGCCAGCACGATCTCGAACCGGTGATGTTCCGCTTCTTCAACATCTACGGTCCACGCCAGGATCCGTCCTCGCCGTACTCGGGGGTCATCAGCATTTTCAGCGAGCGGGCCCAGAAAGGCTTGCCGATCAGCGTGTTCGGCGACGGCGAGCAGACCCGGGATTTCGTCTACGTGGAAGACCTGGTACAGGTGCTGGTGCAGGCCATCGAGAAACCTGAAGTGCAAGCGGGCGCGGTGAATGTCGGCTGGAACCAGGCCACCACGCTCAAGCAGATGCTCCAGGCCCTGGCCGACGTGGTCGGGGATTTGCCCGCGATCAGCTACGGCCCGGCGCGCTCCGGCGACATTCGCCATTCGCGGGCTGATAACCGTCGGTTGCTGAAGCGTTTCGACTTGCCGGCGCAAACGCCGATGAGCGTGGGCCTGGCGCGGTTACTCGGGCGCTGAMAKGPVLITGGAGFIGSHLTDALLANGHSVRILDDLSTGKRSNLPLDNPAVELIEGDVADAALVARAMAGCSAVAHLAAVASVQASVDDPVRTHQSNFIGTLNVCEAMRQAGVKRVLFASSAAVYGNNGEGQSIDEDTSKAPLTPYASDKLASEFYLDFYRRQHDLEPVMFRFFNIYGPRQDPSSPYSGVISIFSERAQKGLPISVFGDGEQTRDFVYVEDLVQVLVQAIEKPEVQAGAVNVGWNQATTLKQMLQALADVVGDLPAISYGPARSGDIRHSRADNRRLLKRFDLPAQTPMSVGLARLLGRNANANANANA
D1-35_04621699ompWCOG3047Outer membrane protein WATGCAAAAGTCTCTGCTCAGCGCTTCCCTCGTCGCCCTCGCGCTCGCGGCACCACTCGCCCAGGCCCATACCGCCGGCGATATCATCGTTCGCGCCGGCGCCATCACCGTCAATCCGGATGCCGACAGTTCCAGCGTCAAGGTCGACCGTGGCCCGCTGGCCGGTGCCGACCTGGGCGGCAAGGCGACCATGAGCAGCGACACTCAGTTGGGCCTGAACTTCGCCTACATGCTCACCGACAATTGGGGGATCGAGCTGCTGGCGGCCTCGCCATTCGAGCACGACGTGAAAATCAAAGGCACCGCCCTGGGCGCGGCCAACGGCAAGCTCGGCACACTCAAGCACTTGCCGCCGACCCTGAGCCTGGTCTACTACCCGCTCGACGCCAAGTCGGCCTTCCAGCCTTACGTCGGCGCCGGCATCAACTACACCTGGATCTATGACGAACACGTCGGCAGCGACGCCAGCGCCAACGGTTTCAGCAACTTCCGGGCGAGCAACAGCTGGGGCATGGCGTGGCAAGTCGGCGCCGACTACATGCTGACGGACAACATCATGATCAACGGCCAGGTCCGCTACATCGACATCGACACCACCGCCTATGTCGACAACAACGCGGTGGCCGGCGGAACGCGGGCCAAGGTTGACGTGGACGTGGATCCGTTCGTCTACATGGTGGGGTTGGGTTACAAGTTCTGAMQKSLLSASLVALALAAPLAQAHTAGDIIVRAGAITVNPDADSSSVKVDRGPLAGADLGGKATMSSDTQLGLNFAYMLTDNWGIELLAASPFEHDVKIKGTALGAANGKLGTLKHLPPTLSLVYYPLDAKSAFQPYVGAGINYTWIYDEHVGSDASANGFSNFRASNSWGMAWQVGADYMLTDNIMINGQVRYIDIDTTAYVDNNAVAGGTRAKVDVDVDPFVYMVGLGYKFPGPT0022210_529DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINSOTHER_INTEGRAL_MEMBRANE_REMODELLING__PROTEINS,PGPT0022210-ompW|yciD-K07275NANA
D1-35_04622519hypothetical proteinATGCCCCGCGCCCTGCTTGCGCTGTTGATGCTGGTCAGCCTGCCATTGTGGGCGGCCGAGCCGAGAGACCTGGCCTGGTCGGAAATGATCCCGCCGGACGCGCCGCCGGAAGTGCCGAACATGACGCCCCTGCATGACCTGTCGAAAATGAGCGACGCCCTGGCCGCCGAATCCGCGCCGGCGGCCCGGCAGGACATGCCCAACGCCCCGGTGGTCAAGGCCCTGGACGGCCAGCAGATTCGCTTGCCGGGTTATATCGTGCCGCTGGAGGTCAGCGAGGAAGGCCGCACGACCGACTTCCTGCTGGTGCCGTATTTCGGCGCCTGCATCCACGTGCCGCCCCCGCCGTCGAACCAGATCGTGCATGTGAAAAGCGAAGTCGGGGTCAAGCTCGACGAGCTTTATCAACCGTACTGGGTGGAAGGGCCGATGCAGGTCAAGCCATCCACCAGTGAACTGGCCGATGCCGGGTATCAGATGGAGGCGCAGAAGATTTACGTGTATGAGCTGCCGGAGTGAMPRALLALLMLVSLPLWAAEPRDLAWSEMIPPDAPPEVPNMTPLHDLSKMSDALAAESAPAARQDMPNAPVVKALDGQQIRLPGYIVPLEVSEEGRTTDFLLVPYFGACIHVPPPPSNQIVHVKSEVGVKLDELYQPYWVEGPMQVKPSTSELADAGYQMEAQKIYVYELPENANANANANA
D1-35_046231266hypothetical proteinATGTATTTGTTCCGTCTAGCCATGGCCAGCCTGGCGAACCGCCGCTTCACGGCGATCCTCACCGCTTTTGCCATTGCCCTTTCCGTTTGCCTGCTGCTGGCCGTGGAGCGCGTGCGTACCGAGGCGCGGGCCAGTTTCGCCAGCACCATCAGCGGCACCGACCTGATTGTCGGCGCTCGCTCCGGTTCGGTGAACCTGCTGTTGTACTCGGTGTTTCGCATCGGCAACGCCACCAATAACATTCGCTGGGACAGCTTCGAGCAGTTCGCCAGCAATCCGAAAGTGAAATGGGCGATCCCCATGTCCCTTGGCGATTCCCATCGCGGTTATCGAGTGATGGGCACCACCGAGGCCTACTTCGAGCATTACCAGTACGGTCGCCGGCAGCATCTGGAACTGGCGGACGGCCGGGCATTCGTCAGCGATCCGTTCGAAGTGGTGCTCGGCGCGGAAGTGGCCGAGGCGCTGCATTACAAACTCGGCGAAAAGCTGGTGTTGGCCCACGGCGTGGCGGCCATCAGCCTGGTCAAGCACGACGACAAACCGTTCACCGTGGTCGGGATTCTCAAGCGCACCGGCACGCCAGTGGACCGCACGCTGCACATCAGCCTCGGCGGCATGGAGGCGATCCATATCGACTGGAAAAATGGCGTGCCGGCCCAGGGCAACGGCCGTATCAGCGCCGACCAGGCCCGCAATATGGACCTTACGCCCAAGGCGATCACCGCCTTCATGCTGGGCCTCAACAGCAAGATTTCCACGTTTGCGCTGCAACGGGAAATCAACGAATTCCGTGGCGAGCCGCTGCTGGCGATCCTGCCCGGTGTGGCGCTGCAAGAGTTGTGGAGCCTGATGGGCACGGCGGAAAAAGCCTTGTTCGTGATTTCACTGTTCGTGGTGCTGACCGGCTTGATCGGCATGCTCACGGCAATCCTCACCAGCCTCAACGAGCGCCGCCGGGAAATGGCGATCCTGCGCTCGGTGGGCGCGCGGCCGTGGCACATCGCGACGCTGCTGGTGCTCGAAGCCTTTGCGCTGGCGCTGGCCGGGGTCATCTCCGGGCTGGCCTTGCTGTACATCGGCATCGCCGTTGCCCAGGGTTACGTGCAGTCGGCCTACGGCCTGTATCTGCCGCTGGGCTGGCCGAGCGAGTATGAATGGACGCTGCTGGCTGGCATTCTGGTCGCCGCCTTGCTGATGGGCAGCGTGCCGGCCTGGCGCGCCTATCGCCAATCGCTGGCCGATGGCCTGTCGATCCGTTTATGAMYLFRLAMASLANRRFTAILTAFAIALSVCLLLAVERVRTEARASFASTISGTDLIVGARSGSVNLLLYSVFRIGNATNNIRWDSFEQFASNPKVKWAIPMSLGDSHRGYRVMGTTEAYFEHYQYGRRQHLELADGRAFVSDPFEVVLGAEVAEALHYKLGEKLVLAHGVAAISLVKHDDKPFTVVGILKRTGTPVDRTLHISLGGMEAIHIDWKNGVPAQGNGRISADQARNMDLTPKAITAFMLGLNSKISTFALQREINEFRGEPLLAILPGVALQELWSLMGTAEKALFVISLFVVLTGLIGMLTAILTSLNERRREMAILRSVGARPWHIATLLVLEAFALALAGVISGLALLYIGIAVAQGYVQSAYGLYLPLGWPSEYEWTLLAGILVAALLMGSVPAWRAYRQSLADGLSIRLPGPT0013350_14028DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013350-ABC_CD_P-K02004NANA
D1-35_04624711COG1136putative ABC transporter ATP-binding proteinATGACCCAAGCACTCATCGAACTGTCCGACCTGGGCTTCAGCTGGCCCGGGCATCCGCTCTTGCTGGATATCCCGGCGTTTCGCCTGGAGGCCGGTGAAACTCTGTTTCTCAAGGGCCCCAGCGGCAGCGGCAAGACCACGTTGCTGGGGCTGCTGGGCGGTGTGCAGACACCGGATCGCGGCAGCATCCGCCTGCTCGGTCAGGAACTCAGCGAACTGGGCGCCGGCCGCCGCGACCGCTTTCGCGTGGACCATACCGGCTACATTTTCCAGCAGTTCAACCTGCTGCCATTTCTCTCGGTGCGCGAAAACGTCGAGCTGCCCTGCCATTTCTCGACATTACGCGCGCAACGGGCGAAGCAACGCCATGGCAGCGTCGATCAAGCCGCCGCCACGCTGCTGGCTCACCTCGGGCTGAGCGATTCGAGCCTGCTGGATCGCCGCGCCGACTCATTGTCCATCGGCCAGCAACAACGGGTCGCCGCCGCCCGCGCGCTGATCGGCCAACCGGAACTGGTGATTGCCGACGAGCCGACCTCGGCGCTGGATTACGACGCCCGGGAAAACTTCCTGCGGCTGCTTTTCGCCGAATGCCGCGAAGCCGGTTCGAGCCTGCTGTTTGTCAGCCACGACCAGAGCCTGGCGCCGCTGTTCGATCGTCACCTCTCGCTGGCCGATCTCAATCGCGCCGCCACGCCACTCGAGGTCTGAMTQALIELSDLGFSWPGHPLLLDIPAFRLEAGETLFLKGPSGSGKTTLLGLLGGVQTPDRGSIRLLGQELSELGAGRRDRFRVDHTGYIFQQFNLLPFLSVRENVELPCHFSTLRAQRAKQRHGSVDQAAATLLAHLGLSDSSLLDRRADSLSIGQQQRVAAARALIGQPELVIADEPTSALDYDARENFLRLLFAECREAGSSLLFVSHDQSLAPLFDRHLSLADLNRAATPLEVPGPT0013345_7838DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0013345-ABC_CD_A-K02003NANA
D1-35_04625585hypothetical proteinATGCGTCGTCTGCTTCTCGCTTTGCCGTTCGCCCTGCTGCCGTTGGCTGTCGCTCACGCGGCCGTCGAGCATGATCACGACCATGACCATGAGCACGGCAGCCTCGGCGCCCATGAACACGGCGTCGCTCGGCTGAACGCCGCGCTGGACGGCCAGACCCTGGAACTGGAGCTGGAGAGCCCGGCGATGAACCTGGTCGGCTTCGAACACGCCGCCACCAGCGATGCCGACAAGGCCAAGGTCGCCGCCGTGCGGGCGCAGCTGGATAAACCCCTGGCGCTGTTCAACCTGCCGGCCGCGGCCAAGTGCACCGTGGCCCATCAGGAGCTGGAGAGCCCGCTTTTCGGCGATGAGCCGGACCATGAAGACCACGACGAAGACGGCGACGAGCATCACGACGAGCACAGCGAGATCCATGCCCACTACCAGTTCACCTGCGCCGCTCCGGGCGCCTTGAAGAACCTGGACCTGGCGACCCTGTTCAAAACCTTCCCGGCCACCCAGAAAATTCAGGTACAACTGATCGGCCCGAGCGGTCAGCAAGGCGTTGAAGTGACGGCAAAGGCCCCTGCACTGAAATTCTGAMRRLLLALPFALLPLAVAHAAVEHDHDHDHEHGSLGAHEHGVARLNAALDGQTLELELESPAMNLVGFEHAATSDADKAKVAAVRAQLDKPLALFNLPAAAKCTVAHQELESPLFGDEPDHEDHDEDGDEHHDEHSEIHAHYQFTCAAPGALKNLDLATLFKTFPATQKIQVQLIGPSGQQGVEVTAKAPALKFNANANANANA
D1-35_04626348hypothetical proteinATGTTGCGGATACGCGGAACCGTCGGCGAGTGGCCGGTGGACTTGACGATCGAGATGGATGAAGGCGACTGGGCGCAGCTCGGCGCGCAGCTGCAGGTGGCCAAGTCCGAGGTTGCGACGACACCGTCGGCCAGGCCGGCGAGTCAGGACGATGCCCAATGGCAGATCGCCAAGGAACTGCTGCGCAAGGCCGGGCAATTGACCGGCCCGGACTTGCTGGAGCAGCTGGAAGGCCTGACCGGCAGCGCTTCGTCCGGCAAGCGGCTGTTGGTGCGTCTGCGCCACAGCGCCGAGGTCAAGGTGCTGAGCGGCGGGGATACGCCGCTCTACAGCTGGGTCGGTCAGTAAMLRIRGTVGEWPVDLTIEMDEGDWAQLGAQLQVAKSEVATTPSARPASQDDAQWQIAKELLRKAGQLTGPDLLEQLEGLTGSASSGKRLLVRLRHSAEVKVLSGGDTPLYSWVGQNANANANANA
D1-35_04627873cnoXCOG3118ChaperedoxinATGACCCAGGACACGCCGTACATCTTCGACGCCACCACTGCCGATTTCGACCAGTCGGTAATCGCCAACTCCTTCCACAAACCGGTGCTGGTGGATTTCTGGGCCGAGTGGTGTGCGCCGTGCAAGGCGCTGATGCCGATGCTGCAAGGCATCGCCGAGAGCTACCAGGGTGAACTGCTGCTGGCCAAGGTCAACTGCGACATCGAGCAGGACATCGTCGCCCGCTTCGGCATTCGCAGCCTGCCCACCGTTGTGTTGTTCAAGGACGGCCAGCCGGTCGACGGCTTTGCCGGTGCCCAGCCGGAATCGGCGGTGCGGGCAATGCTCGAACCCCATGTGCAGATGCCGCCGCCAGCCGCCGCCGATCCGCTGGAACAAGCCCAGGCGCTGTTCGACGACGGTCGTTTCGCCGACGCCGAAGCCCTGCTCAAGGCACTGCTGGTGGAAGACAACAGCAACGCCAAGGCGCTGATCCTCTATGCCCGCTGCCTGACCGAGCGCGGCGAGCTGGACGAAGCGCAGACAGTTCTGGATGCCGTGAAAAGTGACGAACACAAGGCCGCACTGGCCGGTGCCAAGGCGCAGATCCAGTTCCTCGGCCTGGCCAAGGACCTGCCGGACGCCGCCGACCTGAAGGCGCGCCTGGCGAAAGACCCACAAGATGATGAAGCGGTGTATCAACTGGCGATCCAGCAACTGGCGCGCCAGCAGTACGAACCCGCCCTCGATGCGCTGCTCAAGCTGTTCATCCGCAATCGCAGCTACAGCGAAGGCCTGCCGCACAAGACCTTGCTCCAAGTGTTCGAGCTGCTGGGCAATGACCACCCGCTGGTGACGACCTATCGCCGCAAGCTGTTCGCCGCGCTTTACTGAMTQDTPYIFDATTADFDQSVIANSFHKPVLVDFWAEWCAPCKALMPMLQGIAESYQGELLLAKVNCDIEQDIVARFGIRSLPTVVLFKDGQPVDGFAGAQPESAVRAMLEPHVQMPPPAAADPLEQAQALFDDGRFADAEALLKALLVEDNSNAKALILYARCLTERGELDEAQTVLDAVKSDEHKAALAGAKAQIQFLGLAKDLPDAADLKARLAKDPQDDEAVYQLAIQQLARQQYEPALDALLKLFIRNRSYSEGLPHKTLLQVFELLGNDHPLVTTYRRKLFAALYNANANANANA
D1-35_04628657hypothetical proteinATGAAGGCACCGCAGCACCTGCAAGGTGCCTTGGTCGAGCTGCTGGGCGATGCGCGCCTGGTGTCCTGTGCGCTATCCGGCACCGACCTGGCGTTGTGGCTGATCGACGGCGAGAACATGGACCGGGCCTTCAGCCCGGAGGAAACCCGCCGCATCCTCCACGAACCGCCTTACTGGAGTTTCTGCTGGGCCAGCGGCCTGGCGCTGGCCCGCTACCTGGCCGAACACCCGCAGTGGGTCGAGGGCAAGCGGGTACTGGATTTCGGCGCCGGCTCCGGCGTGGCGGGTATCGCGGCGATCAAGGCCGGGGCGCGCGAAGTGGTGGCCTGCGACCTGGATCCGTTGGCGCTTGCCGCGTCAAGGGCCAACGCCGCGCTTAACGGCGTAGAGCTGAATTATTCAGCGGACTTTTTCGCCGAAGCCGATCGCTTCGACCTGATCCTGGTCGCCGATGTGCTTTATGACCGGGCCAACCTGCCGTTGCTCGACCAGTTCCTCAGCCGTGGCCGCGAGGCGCTGGTGGCGGACTCCCGGGTGCGCGATTTCCAGCATCCGCTGTATCGCCGTATTGAAATGCTCGAAGCCATGACTCTGCCGGACCTGGCCGAGCCGGAGGAGTTTCGGCATGTGAGCCTGTACCACGCGCGGCGCGACTGAMKAPQHLQGALVELLGDARLVSCALSGTDLALWLIDGENMDRAFSPEETRRILHEPPYWSFCWASGLALARYLAEHPQWVEGKRVLDFGAGSGVAGIAAIKAGAREVVACDLDPLALAASRANAALNGVELNYSADFFAEADRFDLILVADVLYDRANLPLLDQFLSRGREALVADSRVRDFQHPLYRRIEMLEAMTLPDLAEPEEFRHVSLYHARRDNANANANANA
D1-35_04629471hypothetical proteinATGCCGCTACGATCGCTCGTTTTGCTCAGTCTCTTCAGCCTGCTGATGGCGTGCAGCAGCGACGCCCCCAAGCCCGCTGCCCCCGCCCCGGCCCCGGCCCCAGCGCCGAAACAGGCCCAGGAAAAGGCCCGGCAGGCCACCGAGCTTGGCCCGCTGCCGGCCCATCAGCGCGAATTGAGCGGCACCCTGCAAGGCGTACCGGCCGGCGCCGAAGTCGAACTGGCGCTACTGGTGATCGATGACAAGGACCGCCCGCAACAACTGCTCGCCAGCTCCAGCCTGATCGGCACCAACCAGGCGCTGCCCTTTCGCCTGCGCTTCAATCCGGAAGCGTTCCCGGTCGGCGCCCGTGTCGAGTTGCGCGGCCGCGCCAGCCAGTCCGGCCAACTGATCCTGCATCTGCCGGAACAACGCATCACGCAACCGACCACCCAGGCGCTGGGCGTCCTGCAATTCGTCAAAGCTCCATGAMPLRSLVLLSLFSLLMACSSDAPKPAAPAPAPAPAPKQAQEKARQATELGPLPAHQRELSGTLQGVPAGAEVELALLVIDDKDRPQQLLASSSLIGTNQALPFRLRFNPEAFPVGARVELRGRASQSGQLILHLPEQRITQPTTQALGVLQFVKAPNANANANANA
D1-35_04630465nrdRCOG1327Transcriptional repressor NrdRATGCACTGTCCCTTCTGCGGTGCCAACGACACCAAAGTCATCGACTCGCGACTGGTCGCCGAGGGCGAACAGGTCCGCCGCCGCCGCGAATGCCTGGCCTGCGGCGAGCGTTTCACGACGTTCGAGACCGCTGAACTGGTGTTGCCGCGCCTGATCAAGACCGACGGCAGCCGCCAGCCGTTCGATGAAGAAAAACTGCGCGCCGGCATGCAGCGCGCCCTGGAAAAACGCCCGGTGAGCGTCGAGCGTCTGGAAGCGGCGCTGGTGCACATCAAGCACAAGCTGCGCGCGACGGGCGAGCGTGAGGTCAAGTCCCTCGTCGTCGGCGAGTTGGTCATGGCCGAGCTGCAAAAGCTCGATGAAGTGGCCTATATCCGCTTCGCCTCGGTGTACCGGCGTTTCCAGGACCTCAACGAGTTCCGCGAGGAAATCGACCGCCTGGCCCGCGAACCGGTGAAAGAATGAMHCPFCGANDTKVIDSRLVAEGEQVRRRRECLACGERFTTFETAELVLPRLIKTDGSRQPFDEEKLRAGMQRALEKRPVSVERLEAALVHIKHKLRATGEREVKSLVVGELVMAELQKLDEVAYIRFASVYRRFQDLNEFREEIDRLAREPVKENANANANANA
D1-35_046311134ribDCOG0117Riboflavin biosynthesis protein RibDATGACCGGCGCGGCGCAGCAGGCCGTCCTCGACGCCCACTACATGGCCCGCGCCCTGGAACTGGCGCGGCGCGGTCACTACAGCACCCACCCCAACCCCCGGGTCGGTTGCGTGATCGTGCGCGACGGGCTGGTGGTCGGCGAAGGCTGGCACATCCGTGCGGGCGAACCCCATGCCGAAGTCCATGCCCTGCGCGCCGCTGCTGACAAGGCCCGGGGCGCGACGGCCTACGTGACCCTCGAACCTTGCAGCCACCATGGGCGCACGCCGCCCTGCGCCGATGCGCTGGTCAATGCCGGCGTGGCGCGGGTGGTCGCGGCAATGCAGGACCCCAATCCGGAAGTCGCCGGGCGCGGCCTGCAGCGTCTCGCCCAGGCCGGCATCGCCACACAAAGCGGCGTGCTCGAAGGCGAAGCGCGCAAGCTCAACGAAGGGTTTCTCAAGCGCATGGAGCACGGCCTGCCGTTCGTGCGGGTCAAGCTTGCCATGAGCCTGGATGGCCGTACCGCCATGGAAAGCGGCGAGAGCCAATGGATTACCGGCCCGGCCGCTCGCTCAGCGGTGCAACGCCTGCGCGCCCAGGCCAGCGTGGTGCTGACCGGCGCCGATACGGTACTGGCGGACAACGCCCGGCTGACCGTGCGTGCCGATGAGCTTGGGCTGGACGCCGAGCAGACCGCGTTGGCCATGAGCCGTCCGGCGCTGCGGGTGCTGGTGGACGGTCGTCTGCGGGTGCCGCTGGATGCGCCGTTCTTCAGAGCGGGCCCGGCGCTTGTCGCTACCTGCATGGCGGTTGAGGAACAGTACGCCAACGGCCCTGAATGCATGATCGTCGCCGGGGAAGATGGCCAGGTCGATCTGCATCGCCTGCTGCTGGAGCTGGCGGCCCGTGGCGTCAATGAAGTGCTGGTGGAAGCCGGCCCGCGCCTGGCGGGTGCTTTCGCCCGGCAGGGGTTGGTCGACGAATTCCAGATTTTCATCGCCGGCAAGTTCCTCGGATCCACGGCGCGGCCATTGCTCGATTGGCCGCTGGCGCAGATGAAAGACGCGCCGCAGCTTCAAATCACCGACATTCGCGCCGTGGGCGATGACTGGCGAGTCATCGCCGTCCCCGCTCCGCAGGCCAGCGTATAAMTGAAQQAVLDAHYMARALELARRGHYSTHPNPRVGCVIVRDGLVVGEGWHIRAGEPHAEVHALRAAADKARGATAYVTLEPCSHHGRTPPCADALVNAGVARVVAAMQDPNPEVAGRGLQRLAQAGIATQSGVLEGEARKLNEGFLKRMEHGLPFVRVKLAMSLDGRTAMESGESQWITGPAARSAVQRLRAQASVVLTGADTVLADNARLTVRADELGLDAEQTALAMSRPALRVLVDGRLRVPLDAPFFRAGPALVATCMAVEEQYANGPECMIVAGEDGQVDLHRLLLELAARGVNEVLVEAGPRLAGAFARQGLVDEFQIFIAGKFLGSTARPLLDWPLAQMKDAPQLQITDIRAVGDDWRVIAVPAPQASVPGPT0008555_1020DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008555-ribD-K11752NANA
D1-35_04632663ribERiboflavin synthaseATGTTTACCGGCATCATCGAATCCATCGGCAGCATCCGTGCACTCACTCCCAAGGGCGGCGATGTGCGGGTCCACGTCGAAACCGGCAAGCTCGACCTGAGCGACGTCAAGCTGGGCGACAGCATCGCCGTGAACGGCGTCTGCCTGACCGCCGTGGAACTGCCGGGCAATGGTTTCCTGGCGGACGTCAGCCGGGAAACCCTCGACTGCACCGCGATGAACGACCTCAAGAGCGGCAGCCCGGTCAACCTGGAAAAAGCCCTGACCCCGACTACCCGCCTGGGTGGGCACCTGGTCAGCGGTCATGTCGATGGCGTCGGTGAAGTGGTGTCGCGTACCGATAACGCCCGGGCCGTGGAGTTTCGTATCCGCGCTCCGAAAGAACTCGCCAAGTACATCGCCCACAAGGGCTCGATCACGGTCGACGGCACCAGCCTGACCGTCAACGCGGTGGATGGTGCCGAATTCCTGCTGACTATCATCCCGCACACGCTGAGCGAAACCATCATGGCCTCGTACCGGCCTGGTCGCCGGGTCAACCTGGAGGTCGACCTGCTGGCCCGTTACCTGGAGCGCCTGCTGCTGGGCGACAAGGCTGCCGAACCTGCGGCCGGTAACATCACTGAAAGCTTTCTGGCCGCCAACGGCTACCTCAAATCCTGAMFTGIIESIGSIRALTPKGGDVRVHVETGKLDLSDVKLGDSIAVNGVCLTAVELPGNGFLADVSRETLDCTAMNDLKSGSPVNLEKALTPTTRLGGHLVSGHVDGVGEVVSRTDNARAVEFRIRAPKELAKYIAHKGSITVDGTSLTVNAVDGAEFLLTIIPHTLSETIMASYRPGRRVNLEVDLLARYLERLLLGDKAAEPAAGNITESFLAANGYLKSPGPT0008610_929DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008610-ribE|RIB5|ribC-K00793NANA
D1-35_046331092ribBA_2COG0108Riboflavin biosynthesis protein RibBAGTGGCGCTCAATAGCATCGAAGAACTGGTTGAAGACATCCGCCAAGGCAAGATGGTCATCCTCATGGATGACGAAGACCGCGAGAACGAAGGCGACCTGATCATGGCCGCCGAATGCTGCAAGGCCGAACACATCAATTTCATGGCCAAGCACGCCCGTGGCCTGATCTGCATGCCGATGACCCGTGAGCGCTGCGAGCTGCTGAAGCTGCCGTTGATGGCGCCACGCAACGGTTCCGGGTTCGGCACCAAGTTCACCGTGTCCATCGAGGCCGCCGAGGGCGTGACCACCGGTATTTCCGCCGCGGACCGGGCGCGTACCGTGCAGGCCGCTGCGGCCGCCGACGCCAGGGCCGAAGACATCGTCAGCCCCGGTCACATCTTCCCGCTGATGGCCCAGGCCGGCGGCACCCTGGCCCGCGCCGGCCACACCGAAGCGGCGTGCGACCTCGCGCGTATGGCCGGTTTCGAGCCCGCCGGCGTCATCTGCGAAGTGATGAACGACGACGGCACCATGTCCCGTCGCGCCGAGCTTGAGGCTTTCGCTGCCGAGCACGACATCAAGATCGGCACCATTGCCGATCTGATCCACTACCGGATGATCCACGAGCGTACCGTTCAGCGGATTGCCGAGCAGCCGCTGGACAGCGAACTGGGCCAGTTCAACCTGGTGACCTACCGCGATTCGGTGGAAGGCGACGTGCACATGGCGCTGACCCTGGGAACCGTGTGCGCCGAAGAACCGACTCTGGTTCGCGTGCACAACATGGACCCACTGCGTGACCTGCTAATGGTCAAGCAGCCGGGCCGCTGGAGCCTGCGCGCGGCCATGGCCGCGGTAGCCGAGGCCGGCAGCGGCGTGGTGCTGTTGCTCGGGCACCCGCTCGATGGCGATGTGCTGCTGGCGCACATTCGCGAAACCACCGAACATCAACCGGTGAAAAAACCGACCACCTACAGCATCGTCGGGGCCGGTTCGCAGATCCTGCGCGACCTGGGCGTACGCAAAATGCGCCTGATGAGCGCACCGATGAAATTTAATGCGATATCCGGTTTCGATCTGGAAGTTGTAGAATACGTGCCCTCCGAATAAMALNSIEELVEDIRQGKMVILMDDEDRENEGDLIMAAECCKAEHINFMAKHARGLICMPMTRERCELLKLPLMAPRNGSGFGTKFTVSIEAAEGVTTGISAADRARTVQAAAAADARAEDIVSPGHIFPLMAQAGGTLARAGHTEAACDLARMAGFEPAGVICEVMNDDGTMSRRAELEAFAAEHDIKIGTIADLIHYRMIHERTVQRIAEQPLDSELGQFNLVTYRDSVEGDVHMALTLGTVCAEEPTLVRVHNMDPLRDLLMVKQPGRWSLRAAMAAVAEAGSGVVLLLGHPLDGDVLLAHIRETTEHQPVKKPTTYSIVGAGSQILRDLGVRKMRLMSAPMKFNAISGFDLEVVEYVPSEPGPT0007990_4057DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0007990-ribBA-K14652NANA
D1-35_04634477ribH_26,7-dimethyl-8-ribityllumazine synthaseATGACCCTGAAGACCATCGAAGGTACCTTCATCGCCCCCAAGGGCCGCTACGCGCTGGTAGTCGGCCGTTTCAACAGCTTTGTGGTTGAGAGCCTGGTCGACGGTGCGGTCGATGCCCTGGTTCGCCATGGCGTGAGCGAAGGCGACATCACCATTATCCGTGCCCCTGGCGCCTTCGAAATTCCGCTGGTTGCGCAGAAAGTCGCACAAAAAGGCGAATTTGCGGCGATCATCGCCCTCGGCGCGGTCATTCGTGGCGGTACTCCACACTTCGAATACGTGGCCGGCGAATGCACCAAGGGCCTGGCCCAGGTGTCCATGGAATTCGGCGTACCGGTTGCCTTCGGCGTGCTGACCGTTGATTCCATCGAACAAGCCATCGAACGTTCCGGCACCAAGGCCGGTAACAAAGGTGCCGAAGCTGCCCTGTCCGCCCTGGAAATGGTCAGCCTGCTGGCGCAGTTGGAGGCCAAGTGAMTLKTIEGTFIAPKGRYALVVGRFNSFVVESLVDGAVDALVRHGVSEGDITIIRAPGAFEIPLVAQKVAQKGEFAAIIALGAVIRGGTPHFEYVAGECTKGLAQVSMEFGVPVAFGVLTVDSIEQAIERSGTKAGNKGAEAALSALEMVSLLAQLEAKPGPT0008605_2064DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008605-ribH|RIB4-K00794NANA
D1-35_04635501nusBTranscription antitermination protein NusBGTGATTAGCGACGAAAGCGATCGTTTCAATCCGCGCGAGCCGAAACCGGCCGACGCCGGCAAGCCTTCGAAGAGCGTCAAGCGCCGCGAAGCCCGTCAGCTCGCGACCCAGGCCCTGTACCAATGGCACATGGCCAAGCAGTCGCTGAACGAGATCGAAGCGCAGTTTCGCGTCGATAACGACTTCAGCGATGTCGATGGCGCGTATTTCCGCGAGATCCTGCATGGCGTCCCGGCCCACAAGACCGAAATCGATACGGCCCTGGCACCTTGCCTGGACCTGACGATCGATGAATTGGACCCGGTTGAGCTGGCTGTGTTGCGCCTGTCCACCTGGGAACTGATGCAGCGCGTCGACGTACCGTACCGCGTGGTGATCAACGAAGGGATCGAGCTGGCGAAAGTCTTCGGTTCCACCGATGGCCACAAGTTCGTCAACGGCGTACTCGACAAGCTCGCCCCGCGTCTGCGTGAAGCCGAAGTGAAGGCGTTCAAGCGCTGAMISDESDRFNPREPKPADAGKPSKSVKRREARQLATQALYQWHMAKQSLNEIEAQFRVDNDFSDVDGAYFREILHGVPAHKTEIDTALAPCLDLTIDELDPVELAVLRLSTWELMQRVDVPYRVVINEGIELAKVFGSTDGHKFVNGVLDKLAPRLREAEVKAFKRPGPT0009010_3DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0009010-thiL-K00946NANA
D1-35_04636963thiLCOG0611Thiamine-monophosphate kinaseATGGGCGAATTTGAGCTGATCCGTCACTACTTTGCCGCCGCTGCCTGTGCGCAAGGCGGCGAGGGCGTTGCGCTCGGAATCGGCGACGATTGCGCCCTGCTGGCCGTTCCTCCCGGAGAACAGCTCGCGGTATCCACCGACACGCTCGTGGCCGGTGTGCATTTTCCGGACCCTTGCGACCCGTTCCTGCTCGGCCAGCGCTCGCTGGCCGTGGCGGTCAGCGACCTGGCCGCCATGGGCGCCAGTCCTCTCGCCTTTACCCTCGCCCTGACCTTGCCGACGGTGGCCGCCGATTGGCTGCAGGCGTATGCCCGTGGCCTGAACCAGATGGCCCAGGCTTGTGGTGTAGCACTGGTGGGGGGCGATACCACCCACGGGCCGTTGAGCCTGACCATGACCGTGTTCGGCCGCGTGCCGTGCGGCCAGGCGCTGACCCGCAGCGGCGCGCAACCCGGCGATCTGCTTTGCGTCGGTGGTGACCTGGGCAATGCGGCTGGCGCGTTGCCGCTGGTTCTCGGCGAGCGCAGTGCCGAGCCTGCTATCGCCGAGCCGCTGCTGGCTCACTACTGGTCGCCACAACCGCAGATCGGCCTTGGCCTGGCTCTACGGGGCAAGGCCAGCGCGGCAATGGACATTTCCGATGGGTTGTTGGCGGACTGCGGGCATATCGCGCTGGCATCCGGCGTGGCGTTACGGGTTGAACGGGACCGGTTGCCGTTGTCCAACGCTCTGTTGGCGTTTGGCCTGCCGCAGGCACAACATGCCGCCCTGAGTGGCGGCGACGACTATGTGTTGCTGTTCACCCTGCCGCCGGTCCGATTGTCGGCACTTCTCGCCGAAGGCTGGCCGATTCATGTGGTCGGCAGTGTCACGGCGGGGCAGGGCGTCATGCTGGTCGACAGTCTTGGACAGGACATCACCCCGCCAATCCGGGGCTATCAACATTTTCGGGAGACACCGTGAMGEFELIRHYFAAAACAQGGEGVALGIGDDCALLAVPPGEQLAVSTDTLVAGVHFPDPCDPFLLGQRSLAVAVSDLAAMGASPLAFTLALTLPTVAADWLQAYARGLNQMAQACGVALVGGDTTHGPLSLTMTVFGRVPCGQALTRSGAQPGDLLCVGGDLGNAAGALPLVLGERSAEPAIAEPLLAHYWSPQPQIGLGLALRGKASAAMDISDGLLADCGHIALASGVALRVERDRLPLSNALLAFGLPQAQHAALSGGDDYVLLFTLPPVRLSALLAEGWPIHVVGSVTAGQGVMLVDSLGQDITPPIRGYQHFRETPPGPT0009010_2580DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0009010-thiL-K00946NANA
D1-35_04637504pgpACOG1267Phosphatidylglycerophosphatase AGTGACAGATCATCCCAACCAGGTTCCGGCAGAATTCGTTCCGCCCTCGGTCTGGCGCAATCCCTGGCATTTCATGGCGTTTGGCTTCGGTTCGGGCACGTTGCCCAAAGCGCCAGGCACATGGGGCTCGCTGGTTGCGCTACCCTTCATACCGTTGTGGCAGATGTTGCCGGATTGGGGCTACTGGCTGATGCTCGGCATCACCATGCTGTTCGGCTTCTGGCTGTGCGGCAAAGTGGCGGATGATTTGCGGGTGCACGACCATGAAGGCATCGTCTGGGACGAGATGGTCGGCATGTGGATTACCCTGTGGCTGGTACCGGAAGGCTGGTATTGGTTGTTGACGGGTTTCCTGGTGTTCCGCTTCTTCGATATCCTCAAGCCGTGGCCGATCCGCTGGATCGATCGGCATGTACACGGCGGGGTAGGCATCATGCTCGATGACGTATTGGCCGGCGTGTTCGCCTGGCTGGCAATGCAAGGGTTGGTGTGGTGTTTTACCTGAMTDHPNQVPAEFVPPSVWRNPWHFMAFGFGSGTLPKAPGTWGSLVALPFIPLWQMLPDWGYWLMLGITMLFGFWLCGKVADDLRVHDHEGIVWDEMVGMWITLWLVPEGWYWLLTGFLVFRFFDILKPWPIRWIDRHVHGGVGIMLDDVLAGVFAWLAMQGLVWCFTPGPT0007710_660DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHATASE_ACTIVITY,PGPT0007710-pgpA-K01095NANA
D1-35_04638759hypothetical proteinATGGGCGTAAGCCGCACACTGTTGCTGTTGTTGTGTCTCGGGGCGTTGCTCGGTGTTCGCGTGGCCGAGTCGGCGCCGTTGCCCGGCAAGATCCGCGCGGCCAGCGAGGAGTGGGCCGACTACACCCAGGCGGATGGCCAGGGCATGGCCTGGGATATCCTGCGCGAGGTGTTCGAACCCGAAGGCGTCAAGCTGGAAACCCGCAGCGTGCCTTACACCCGTTCGATCGGCCTGGTGCAGCGTGGCGAAGTCGACGTGCAGGTCGGTGCCTATCGCGACGAATCCGAGGGGGTGCTCTACCCCAATTGGCACTACGACGTCGATCACATCTATGCGTTGGGCCTGGCGTCAAAGCCCTCTCCCACGTTGGCCACGGTGGGTAATTACCGGCTGGTGTGGATGCGCGGGTACGAATACAACAATTATCTGCCGAACATCCGGCGCTTCAATGAAATCCACCGCTCCGTGGGGATCCTGCCGATGCTGGTCCACGACCGTGCCGATTTTTATATCGATGCGTTGATGGAAATCCAGGATGTGCTCGCCAAGGCCGACGACCCCCAGCAGTTCAAGCTCTCTGCGCTGATCAACCTGCCGCTGTACCTGGGCTTTGCCGACACCGAAAACGGACGTGCCTTGCGTGCACTGTTCGACCGGCGCATGGACGTGCTGGTGAAAAGCGGCCAATTGAAGCCGATTTTCGAACGTTGGAAGCAGCCCTATCCCTTCGACGAGAGTGGCAAGCCACCAAAGCCGTGAMGVSRTLLLLLCLGALLGVRVAESAPLPGKIRAASEEWADYTQADGQGMAWDILREVFEPEGVKLETRSVPYTRSIGLVQRGEVDVQVGAYRDESEGVLYPNWHYDVDHIYALGLASKPSPTLATVGNYRLVWMRGYEYNNYLPNIRRFNEIHRSVGILPMLVHDRADFYIDALMEIQDVLAKADDPQQFKLSALINLPLYLGFADTENGRALRALFDRRMDVLVKSGQLKPIFERWKQPYPFDESGKPPKPPGPT0020800_13887DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-35_04639618Riboflavin biosynthesis proteinGTGCCTGTCGTTTTTGTTGCCGCTTCCAAGCTGCCAACACCCTTTGCGCAATTCACCATGCATGGTTTTCTCGATGAAGCCACCGGCCGCGAGCACGTCGTGCTCAGCCTGGGTGATTTCGCCGACGGCGCTCCGGTACTCGGTCGCCTGCACTCCGAATGCCTGACGGGCGATGCCTTGTTCAGCCAGCGCTGCGACTGCGGCTCGCAACTCGAAGCGGCCCTGCAGGCCATTGCTCGCGAGGGCCGTGGCGTACTGCTGTACCTGCGCCAGGAAGGCCGCGGCATCGGCCTGTTGAACAAGATCCGTGCCTACGAGCTGCAAGACGGCGGCGCCGATACTGTCGAAGCCAACGAGCGCCTCGGGTTTGCCGCCGACTTGCGTGACTACAGCATTTGCCAACCGATGCTCGAACACCTGGGCATCAAGTCCTTGCGACTGATGACCAACAACCCGCGCAAGGTCAAGGCATTGACCGACATGGGCGTAGTGGTGGCGGAGCGCGTGCCGCTGCATACCGGGCACAACCCGCACAACAAGCTTTACCTGGCAACCAAGGCCAGCAAGCTCGACCACATGATGGGCAACGAGCACCAGGGCGAGGTCGACCGGGCGTGAMPVVFVAASKLPTPFAQFTMHGFLDEATGREHVVLSLGDFADGAPVLGRLHSECLTGDALFSQRCDCGSQLEAALQAIAREGRGVLLYLRQEGRGIGLLNKIRAYELQDGGADTVEANERLGFAADLRDYSICQPMLEHLGIKSLRLMTNNPRKVKALTDMGVVVAERVPLHTGHNPHNKLYLATKASKLDHMMGNEHQGEVDRAPGPT0007985_1232DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0007985-ribA-K01497NANA
D1-35_04640420hypothetical proteinGTGACGCGTGGTCAGGTTCGGCGGCGGCTGGCCGTCAGTTGGTGGCAATACCTGGCGCTGGCGTTGCTGCCGCTGTTCGTGATCAACGCGGTGTTCGGCCAGGGCGAAGCGATTCTGCCGGTATTGGCGATGCCGTTGTTTATCGCCGGCGTGGCGTCGATGTTTGTCAGCCTGCGATTTTTCGGCAGTTATAAAAACGCCTTGGTCGCCACGCAGAAATCCCTCGATACACCGGAAGAACCCCAAGCCTGGATCACTCTCGCGGCTCGGCGTCGCGCAGCGTTTCTGGCGGCAGGCCTGCCGGCGTGGGTTGGTGCGCTGGCGGTGTTTGTCGGGTTGGAAGCTGTACCGCTGATGCTGCTGGCGTTATCCACTGCGGTGCTGTTCTACCTGTATCGCATCCCACGCCAGCTCGGCTGAMTRGQVRRRLAVSWWQYLALALLPLFVINAVFGQGEAILPVLAMPLFIAGVASMFVSLRFFGSYKNALVATQKSLDTPEEPQAWITLAARRRAAFLAAGLPAWVGALAVFVGLEAVPLMLLALSTAVLFYLYRIPRQLGNANANANANA
D1-35_04641786btuF_1COG0614Vitamin B12-binding proteinATGCGTCTCTGGCTGGCGGTTCTGTTGCTGGCCGCCAGCGCTTCGACGACGGCGGCCAATCGTGTCGTCAGCCTGGCGCCGTCGCTCTCTGAAATTGTCGTTGAACTAGGCTCCGCCGACCTGCTGGTGGGTGTGCTGGACGGTGGCGATCGTCCACCGGTCCTGAAGGACCTGCCGTCGGTGGGCCGTTATGGCCAGCTGGATATGGAGCGCTTGCTTAGCCTCCAGCCCGATCTGCTCCTGCTCTGGCCCGGCAGTATCGGCCCGGCCCAGCGCGAACAGCTCAAGGGCCTGGGCATTCCGATTTATATCGCCGAGTCCCACAGCCTCGACCAGCTCCTCCACCAAATCGAAGACATCGCCGCCCAGCTCGGCCGCCCGGAGCGGGGCGTGCAACGGGCAGCGCAATTGCGCTTGCGCCTGGAGACGCTGCGCCAACGCTACCGACGGGAGACGCCGTTGCCGGTGTTCTATCAGGTCTGGGATCGGCCGCTGTACACCGTGGGCGGCCGACAGATCATCAGTGATGCGTTGTCAGTGTGCGGCGCGCGCAACGTCTTTGCAGACCTGGACCTGCCGGCGCCGCAAGTGAGCGTGGAGTCGGTATTGCAGCGCCAACCGCAGGTGGTCCTGGCTACGGAGCAGGCGCAGCTTGACGCCTGGAAAGCCTGGCCGGTGGCGCAGGGGCGGTTGTTGCTGGTCAACGATAAAGGTCTGGAGCGGGCCAGCGGGCAGATGATCGAGGCGACGGCGCGGTTGTGTGAGTTGATTGCGCCAGACCGTTAGMRLWLAVLLLAASASTTAANRVVSLAPSLSEIVVELGSADLLVGVLDGGDRPPVLKDLPSVGRYGQLDMERLLSLQPDLLLLWPGSIGPAQREQLKGLGIPIYIAESHSLDQLLHQIEDIAAQLGRPERGVQRAAQLRLRLETLRQRYRRETPLPVFYQVWDRPLYTVGGRQIISDALSVCGARNVFADLDLPAPQVSVESVLQRQPQVVLATEQAQLDAWKAWPVAQGRLLLVNDKGLERASGQMIEATARLCELIAPDRPGPT0004685_581DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_TRANSPORT,PGPT0004685-btuF-K06858NANA
D1-35_046421881btuB_2COG4206Vitamin B12 transporter BtuBATGAAACGCCGCCTCACCCTAGCCCTCGCCCTGCTCCCGACCTTCAACCTGCTCGCCGAGACCTTCGAACGCGACCAGGCCCTCAAGCTGCCTGACATCCTGATCAGCGCCAATCGCCAGGTCGAGGCGCGCAATGACAGCAGCGCCGCCAACACAATCTTCACCCGCGACGACATCGAACGCCTGCAACCGGCCAGTGTCACCGACCTGCTCAGCCGCGTGCCCGGCGTACAGGTGGCACCGCTGGGCGGGCGCGGCAGCCTGCCGGGGATCTACATTCGCGGCACCAAGTCGGCCCAGAGCCTGGTGCTGGTGGACGGCCAGCGCATCGGCAACGCGACCTCCGGCGACAGCAATCTGCAACGCTTGAATATCAACCAGATCGAACGGGTGGAAGTGCTGCGCGGTTCGCGCTCGGTGATCTACGGCGCCGATGCGGTGGGCGGGGTCATTCAGATTTTCACCCGTCGAGGCGCCCAACAAGGCCTGCAGCCACGCCTGCATATGGGCGTCGGCAATCATCAGACCTGGGAGCGCAGCCTCGGTCTGTCCGGTGGCGACGAGCAGACCCGTTTCAACCTGGGCGCCAGCCTCGACGAAAGCGAGGGGAGCAATCGGACCCATGAGTCCTACGCCAGCGACCGCGACGCCGATGCCAACCGCAACCAGTCCTTCAGTCTCAGCCTGAGCCATGCAGCCAGCGACGACCTGGAAGTTGGCCTGAACCTGCTGGATAACCGTGGCAAAAGCGAATACGACAACCCGTTCGGCCGCTTCGACCCCAACACCTTCGAATCGCTGCCCCAGCAGCCCTACAGTGAATTTGCGGTCAGCAGTTTCAGCGGTTATGTCGATGGGCGGATCAACGACGCGTGGAAATCTCGCCTCGAGCTGGGCCACAGCGAGAACCGGGAAAAAACGTACGACAAGCTCAGCGATGTCCGGGAGGTGTTCAACACTTATCGCGACTCGCTGACCTGGCAGAACGACGTGACCCTGGACGAACGCAACAGCCTGATCCTCGGCGGCGACTGGTACCAGGACCGCGTCAACAGCACCACGCCGTTCGATGAAGACAGCCGCTGGAATCGTGCGGCATTCATCCAGCACCGATTCCAGGCCGAAACGTTCTCGACCGAGCTGGGCCTGCGCCGCGACCAGAACCAGCAGTTCGGCGGCCAGAACAGCTGGAGCGGCACCCTTACCCTGCCGGTCAACCCAACCAACGACGTGTTGCTGACCTACAGCGAAAGCTTCCGCGCGCCGACCTTCAACGATCTTTACTACCCGGACTTCAGCAACCCGGACCTGAAACCCGAGACGGCCAGAAGCTACGAATTGCAATGGCGCAGCCAACTGAGCGACAGCGCTCGCCTGGAAGCGTCCCTGTACCGCACGAACCTGGAAGACGCGATCATCTTCGGCAGCAATTCACGGCCGCAAAACGTCGCTTCGGCGCGGATCAACGGTTTCGAAATGGCCTACCGACAGGAACTGTTCGGCTGGCAGGGCAACCTCGGCCTGGCGATCATCGACCCGCGCGACCGCGACAGCGGCCACACCCTGGCACGCCGCGCCCGCCGCACGTTGAGCCTGGACCTGGACCGGCAATTCGATCGCCTCGGCCTCGGCGCGAGCTGGCAAGCGGTGAGCAGCAGTTACGACGACGAAAACAACCGCAACGCCCTGGGCGGCTATGCGCTGCTCGGAGTGCGCGGCAGTTTGGCGTTGAGCCGGGAAGTGAAGCTTGAGATGAAGGTCGATAACCTGCTGGACCAGAATTACAGCCGGGCGCTGTATAGCCATGACGGGGAACAGTATGGGTATCGGGAGGAAGGGCGGGCGTGGTTGTTTGGGGTGACCTGGACGCCTTCCCTCTGAMKRRLTLALALLPTFNLLAETFERDQALKLPDILISANRQVEARNDSSAANTIFTRDDIERLQPASVTDLLSRVPGVQVAPLGGRGSLPGIYIRGTKSAQSLVLVDGQRIGNATSGDSNLQRLNINQIERVEVLRGSRSVIYGADAVGGVIQIFTRRGAQQGLQPRLHMGVGNHQTWERSLGLSGGDEQTRFNLGASLDESEGSNRTHESYASDRDADANRNQSFSLSLSHAASDDLEVGLNLLDNRGKSEYDNPFGRFDPNTFESLPQQPYSEFAVSSFSGYVDGRINDAWKSRLELGHSENREKTYDKLSDVREVFNTYRDSLTWQNDVTLDERNSLILGGDWYQDRVNSTTPFDEDSRWNRAAFIQHRFQAETFSTELGLRRDQNQQFGGQNSWSGTLTLPVNPTNDVLLTYSESFRAPTFNDLYYPDFSNPDLKPETARSYELQWRSQLSDSARLEASLYRTNLEDAIIFGSNSRPQNVASARINGFEMAYRQELFGWQGNLGLAIIDPRDRDSGHTLARRARRTLSLDLDRQFDRLGLGASWQAVSSSYDDENNRNALGGYALLGVRGSLALSREVKLEMKVDNLLDQNYSRALYSHDGEQYGYREEGRAWLFGVTWTPSLPGPT0003740_1364DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-VITAMIN_B12_RELATED_FERROUS_UPTAKE,PGPT0003740-butB-K16092NANA
D1-35_046431899dxsCOG11541-deoxy-D-xylulose-5-phosphate synthaseATGCCCACGACGTTCCAAGAGATTCCCCGCACACGCCCGTCCACGCCCTTGCTGGACCGCGCCAACACGCCGGACGGCTTGCGTCGGCTGGGTGAAGCCGAGCTGGAAACCCTGGCCGATGAGTTGCGCCTGGAATTGCTCTACACGGTCGGCCAGACCGGTGGGCATTTCGGCGCTGGCCTGGGCGTCATCGAGCTGACCATCGCCCTGCATTACGTCTTCGACACTCCGGACGATCGCCTGGTGTGGGACGTTGGCCATCAGGCCTACCCGCATAAAATCCTCACCGGCCGCCGCGACCGCATGGGCACGCTGCGCCAGAAGAACGGCATCGCGGCTTTTCCGCGCCGTTCCGAGAGCGAGTACGACACCTTTGGCGTCGGTCATTCCAGCACCTCCATCAGCGCTGCCCTTGGCATGGCCATTGCCGCCCGCCTGCAGAACAGCGAACGCAAGGCGATCGCCGTGATCGGCGATGGTGCGTTGACGGCGGGCATGGCCTTCGAGGCGCTGAACCACGCCCCTGAAGTCGACGCCAACATGCTGGTGATCCTCAACGACAACGACATGTCGATCTCGCGCAATGTCGGCGGCTTGTCCAACTACCTGGCGAAGATCCTCTCCAGCCGCACCTATGCGAGCATGCGCGAAGGCAGCAAGAAGGTCTTGTCGCGCCTGCCCGGCGCCTGGGAAATCGCCCGCCGTACCGAAGAATATGCCAAGGGCATGCTGGTCCCCGGCACGCTGTTCGAAGAGCTGGGCTGGAACTACATCGGCCCCATCGACGGCCACGATCTGCCGACGCTGATCGCCACCCTGCGCAACATGCGCGATCTCAAGGGGCCGCAGTTCCTGCACGTGGTCACCAAGAAAGGCAAAGGCTTCGCTCCGGCGGAAGTCGACCCGATCGGCTATCACGCGATCACCAAGCTCGAACCCCTGGATGCCCCCGCCGCCGCGCCGAAAAAGGCCGGCGGACCGAAGTATTCCGGCGTGTTCGGCCAATGGCTGTGCGACATGGCCGACGCCGACCCGCGCCTGGTGGGCATTACCCCGGCGATGAAGGAAGGTTCGGACCTGGTGGCGTTCAGCGAACGTTACCCGCAGCGTTATTTCGACGTGGCAATTGCCGAACAGCATGCCGTTACGCTCGCCGCCGGCATGGCCTGCGAAGGCGCCAAACCGGTGGTGGCGATCTACTCGACGTTCCTGCAACGCGGCTATGACCAACTGGTGCATGACGTCGCCGTGCAGAACCTCGACGTGCTGTTCGCCATTGACCGGGCGGGCCTGGTGGGCGAAGACGGTCCGACCCATGCCGGCAGCTTCGACCTGTCCTACCTGCGCTGCATCCCCGGCATGCTGGTGATGACGCCGAGCGACGAGAACGAATTGCGCAAGATGCTCACCACCGGCCACCTGTTCAACGGTCCGGCGGCGGTGCGCTACCCGCGTGGCACCGGCCCGAATGCAACGATCGAAAGCGACCTGGAGCCGATCGAGATCGGCAAAGGCGTGATCCGCCGCCACGGCAAGCAAACCGCCCTGCTGGTGTTTGGTGTACAGCTGGCGGAAGCCTTGAAGGTCGCCGAAAAACTCGACGCCACCGTGGTGGACATGCGTTTCGTCAAACCGCTGGACGAAGCCCTGGTGCGCGAGATGGCCGGCAGCCACGAACTGCTGGTGACCATCGAGGAGAACGCCATCATGGGCGGCGCCGGCGCGGCGGTCAGCGAGTTTCTGGCCCGGGAAAACATCCTCAAGTCGGTGCTGCACCTGGGGTTGCCGGACATCTACGTCGAGCACGCCAAGCCGGCGCAGATGCTCGCCGAATGCGGGCTGGACGAGGTGGGGATCGAAGCGGCGGTGCGGCTGCGGTTGCAGTTGCTGGGCTTGTAAMPTTFQEIPRTRPSTPLLDRANTPDGLRRLGEAELETLADELRLELLYTVGQTGGHFGAGLGVIELTIALHYVFDTPDDRLVWDVGHQAYPHKILTGRRDRMGTLRQKNGIAAFPRRSESEYDTFGVGHSSTSISAALGMAIAARLQNSERKAIAVIGDGALTAGMAFEALNHAPEVDANMLVILNDNDMSISRNVGGLSNYLAKILSSRTYASMREGSKKVLSRLPGAWEIARRTEEYAKGMLVPGTLFEELGWNYIGPIDGHDLPTLIATLRNMRDLKGPQFLHVVTKKGKGFAPAEVDPIGYHAITKLEPLDAPAAAPKKAGGPKYSGVFGQWLCDMADADPRLVGITPAMKEGSDLVAFSERYPQRYFDVAIAEQHAVTLAAGMACEGAKPVVAIYSTFLQRGYDQLVHDVAVQNLDVLFAIDRAGLVGEDGPTHAGSFDLSYLRCIPGMLVMTPSDENELRKMLTTGHLFNGPAAVRYPRGTGPNATIESDLEPIEIGKGVIRRHGKQTALLVFGVQLAEALKVAEKLDATVVDMRFVKPLDEALVREMAGSHELLVTIEENAIMGGAGAAVSEFLARENILKSVLHLGLPDIYVEHAKPAQMLAECGLDEVGIEAAVRLRLQLLGLPGPT0008960_2872DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008960-dxs-K01662NANA
D1-35_04644888ispACOG0142Farnesyl diphosphate synthaseATGATCGGCGCGTATCAGGCCAGCAGTCAGGCCCGGGTCAATGCCGCGCTGGACAGCTTGTTCGCCGCCCCGAGCGCTGAACTGACGCGGCTGTACGAAGCCATGCGCTATAGCGTGATGAACGGCGGCAAGCGCGTGCGTCCGTTGCTCGCCTATGCCGCGTGCGAAGCCCTTGGCGGCGCTGCCGAGCAGGCCAACGGCGCGGCCTGCGCGGTGGAACTGATCCACGCCTATTCGCTGGTGCACGACGACTTGCCGGCCATGGACGATGACGACCTGCGTCGCGGCCAGCCGACCACGCACAAGAAATTCGACGAAGCCTGCGCGATCCTCGCGGGCGACGGTTTGCAAAGCCTGGCTTTCAGCGCCCTGCTGGACCCGGCCCTTAGCAATTGCCCGGCAGAGGTTCGCCTGGACATGATCAGCGCCCTGGCACAAGCGGCAGGCCCGGCTGGCATGGTCGGCGGCCAGGCCATCGACCTCGGTTCGGTGGGCTTGAAACTCGACCAGGACGCCCTGGAATACATGCATCGGCACAAGACCGGCGCGCTGATCGAAGCCAGCGTCCGGCTCGGCGCCCTGGCCAGCGGCCGGGCCACGCCTGAACAGCTGCAAGCCTTGCAGACCTACGCCCGGGCCATCGGCCTGGCCTTCCAGGTGCAGGACGACATCCTCGACGTCGAAAGCGATACCCAGACTCTCGGCAAACGCCAGGGCGCCGATATCGCCCGTGACAAGCCGACCTACCCGGCCCTGCTCGGACTCGAGGCCGCCAAGGCCTACGCGCTGGAGCTGCGCGACCAGGCCCTGGACGCGCTGCGACCCTTTGACGCGGCCGCCGAACCGTTGCGCGAGCTGGCGCGTTATATCGTCGAACGACGCAGCTGAMIGAYQASSQARVNAALDSLFAAPSAELTRLYEAMRYSVMNGGKRVRPLLAYAACEALGGAAEQANGAACAVELIHAYSLVHDDLPAMDDDDLRRGQPTTHKKFDEACAILAGDGLQSLAFSALLDPALSNCPAEVRLDMISALAQAAGPAGMVGGQAIDLGSVGLKLDQDALEYMHRHKTGALIEASVRLGALASGRATPEQLQALQTYARAIGLAFQVQDDILDVESDTQTLGKRQGADIARDKPTYPALLGLEAAKAYALELRDQALDALRPFDAAAEPLRELARYIVERRSPGPT0007560_1948DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-CAROTENOID_BIOSYNTHESIS,PGPT0007560-crtE|ispA-K13789NANA
D1-35_04645243xseBCOG1722Exodeoxyribonuclease 7 small subunitATGGCCCGCAAGAAAGCTGCACTGGATTTCGAACAATCTCTGGCCGACCTGCAAGCGCTGGTCGAACGCCTGGAGAACGGCGAACTGTCGCTGGAAGACTCGCTAACCGCTTTCGAGCAGGGTATCGGCTTGACTCGCGACTGCCAGGCGGCGCTGGCCCAGGCCGAGCAGAAAGTGCAACTGCTGCTGGAACGCGACGGCGAGCTGACCGAAGAACCGTTCGACGCGGAACAGCCTGAATGAMARKKAALDFEQSLADLQALVERLENGELSLEDSLTAFEQGIGLTRDCQAALAQAEQKVQLLLERDGELTEEPFDAEQPENANANANANA
D1-35_046461137hypothetical proteinATGGCAGCTCATTGGATCTGGCAGCAGGCCGAATGGCCCGACTTTCACTGGCAAGCTGAAGCATTGGCGCCGGCGCTAAGGGAATGCGTAAAGGCGCAAGGTCGGTTGCTGGGCATGACGGGCGCGGTCACGGCGTCAATCAGCGTGCAGAACGAACTTGATGCCTTGTTGCAAAACATCGTGTCCTCTTCAGCTATCGAAGGAGAACAGTTGAATGTCGGCTCGGTGCGCTCGTCCCTGGCCCGCCGCCTGGGCCTGGAACACGCCGATGACACTTCGGTCACTCAGCGCAGCGAAGGCTTGGCGAAGCTGCTGTTGGATGCGACTCGGCATTTCAACCAGCCCTTGACTGTCGAACGCTTGCTGGAATGGCATGAGTGGTTATTTCCTGATCAAACCAGCGACCTTGCCCATCGACGGATCCGCGTAGGTGCACTGCGCGGTGACGAACCGATGCAAGTGCTTTCGGGAAGGCTGGAGCGGCCTACCGTGCATTTCGAAGCGCCGCCTCGAAATGGACTTGAGCAACAATTGCAACAGTTCATCGACTGGTTCGAAGCCAGCCGTCATCAGTCCAGCATCGATCCGCTGCTACGTGCCGGCATCGCTCATTTCTGGTTTGTCACCCTGCACCCATTCGACGATGGCAATGGCCGCCTGACCCGCACCCTGACCGATCTTGCACTGGCCCAGGGCGAGGCCCAGGCGATCCGTTTCCACGCGATGTCGGTGAGCATTCTGGATGATCGCGTCGGTTATTACCGAATTCTGGAAAACAGCCAGAGGGCCACGCTGGATATCACCGACTGGTTGACCTGGTTCCTGCAAACGCTTTTGCGCAGCCTGCAGAAGGCAATGACCAATATCGAAAGTGTTCTGGGCAAGACGCGTTTCTGGCAAGTCCATCGCGACTCGGCGCTCTCACCGGAACAGATCAAAGCGCTGGACCGATTGCTCGACGGTGGTGAAAAGGGGTTCGAGCAGGGCATCAGCGCAGCTCAGTACCAAGCCGTGGCCAAGGTCTCCAAGGCAACGGCCACGCGACACCTGACGGAGCTGTTGGAGAAGGGCTGCCTGGAGCGGATGCCCGGCGGGGGACGCAGCACCCGTTATCGCATCAATTATCCCGCTGGATAGMAAHWIWQQAEWPDFHWQAEALAPALRECVKAQGRLLGMTGAVTASISVQNELDALLQNIVSSSAIEGEQLNVGSVRSSLARRLGLEHADDTSVTQRSEGLAKLLLDATRHFNQPLTVERLLEWHEWLFPDQTSDLAHRRIRVGALRGDEPMQVLSGRLERPTVHFEAPPRNGLEQQLQQFIDWFEASRHQSSIDPLLRAGIAHFWFVTLHPFDDGNGRLTRTLTDLALAQGEAQAIRFHAMSVSILDDRVGYYRILENSQRATLDITDWLTWFLQTLLRSLQKAMTNIESVLGKTRFWQVHRDSALSPEQIKALDRLLDGGEKGFEQGISAAQYQAVAKVSKATATRHLTELLEKGCLERMPGGGRSTRYRINYPAGNANANANANA
D1-35_04647789hypothetical proteinGTGCGTTTTCTTTTTTTATCGATCGTGCTGCTCGGTGCGCCGTTGGCGTGGGCCGGGCCTTCGGCCGAGTTGTCGGAGCCGGTCGGTGGCTGGCGTTATAGCGGCTTGCTCGATCGCACGGAAAACCCTCAGGTCGCCTATCCGACACCGCCCATTGACCGAGGCATCCAGCGCAATCGCACGATGATCGAAGGTCGGATCAAGGACATGGGCACGGCGCGCCAGCCCCACAGCCTGGCAGTCAACGGCAACCCGTTGAACCTCTATACCGACGACGAGGGGCGTTTTGCCCGGCCGTATGCCTTTGGCGCCGGCTCCAACAGCGTCGAGGTGCGCAGCTCCGAAGGACAGTCCCTCAAGCGCGTGCAGTTTTATGAAGCCAACAACCTGCGCACCCCGGCGCAAATTCGCGTGGTGCTGGGCTGGGACGACCCCAAGGCCGAACTCGACCTGCATATCGTCACACCCGATGGCCAGCATGCATTCTTCGGCCAGCCGGCGCTGAGCAATGGCGGCGGCCTCGACCCGGACGGCGTCGATGGCCCCGGCCCCGAGATGTTCACCATGACCGCGCCGATGCACGGTACCTACCTGGTCTACGTGAACTATTGGGGCAACTACGGCAGCGGCGGCTACAACTTCGATGAAACGAGCAACCAGAACGAGGTGATCACCTCGCAGATCAACCTGGTGCTCAACGAAAACACCGTCGATGAAAAACGCGAGACCTTTGTCGTGCCCCTGCGCGCCATTGGCGATCTGTTGCTGGTCAAGACTTTCAATTACTAAMRFLFLSIVLLGAPLAWAGPSAELSEPVGGWRYSGLLDRTENPQVAYPTPPIDRGIQRNRTMIEGRIKDMGTARQPHSLAVNGNPLNLYTDDEGRFARPYAFGAGSNSVEVRSSEGQSLKRVQFYEANNLRTPAQIRVVLGWDDPKAELDLHIVTPDGQHAFFGQPALSNGGGLDPDGVDGPGPEMFTMTAPMHGTYLVYVNYWGNYGSGGYNFDETSNQNEVITSQINLVLNENTVDEKRETFVVPLRAIGDLLLVKTFNYNANANANANA
D1-35_046481710hypothetical proteinATGAGCGACAACACTGCTTCCCCGACCACGCCGACCCCTGTCGCCAAACCAGTGCGCCGCTGGCCGGCGATACTGATCGGGCTATGCCTGGTGACCGGCGTGGCCGCCGGGTTGGGCTGGTTCATGACCAAGCCCAAGGCGCCGCCCACGGAGCTGGCGTTGGAAAAGCTCGGCGTGAGCCGTCCCGACGGTCTGCTCGAGGCGCACTCCTTGAGCCAATTGCCCAAGGACCTGCTGGCCGTGCCGTTCCTCAAGGCCACGCTCACCGAGGATTTCGTCTTCTATTACGAGGCCCACGCCGACCGCCTCGGCCTGATCGGCAGCCTGCGCCGGATCATCTACGAGCATGACCTCAAGCTGCAGGACAGCCTGATCGAGCAGCTTTTCGACCAGCCAGCCGACGTCGCGCTGTGGCGCGGTGCGGACGGCCGACTCAAGGATTTCCTGCTGGTGATGGACCGTGGCGGATTGGCGAAGGTGCTGGAGCCGTTGGCGAAAGTCGCCCTGGACGACACCCAGTTGAGCAAGCTCGGCGACCTGAAGGTGGGCGGCGATGAAGTCGCGCTCTATCAACTGAGTTATAACGCCAGCAAATCCCTGGTTTTCGCGTCCCATGGCGACAAGCTGGTGGTGCTGTCCAACCCGACCAAGCTCTACGACCAGGGCAGTGGCCCTACCGACGAACCGGGCATGATCTCGACCCAGGCCCTCGAAGCGTTGCTGGCCGGTGAGAAACTCTTCCCGGAAGCCTTCGGCCTGCCGCCCAAGGCGCCGCAGGTCAAGCAGCGCATCTCGGTCAACGCCAGCGTGCTCGCCATGGGTTACCAGCGTTTCATTCCGAACTTCGCCGGCTTGCGTTTCGACATGGACGACAAGGGCTGGCACAGCTTCCTGGCCATGGACGAATTGGAGAACCAGCCGGACTTGGATTTCAAGCCCATCTGGCAAGCCATGCCGATGGGCGCCAGCGCCTGCGTAGCCTTGCCCCTGGCCGCCGAGCAGCAGAAGCCCCTGCTGGTGAAACTCGGCGCCGACGAAAAAGCCGCCCAGGCCATGGTTGATCACGTGGCGGGTGCGGCGGGCCTGTGCTGGTACGCCGAGTCGCGCCTGTACACCCCGCTGCTGGTGGCAAGCCTGAACGAAGACGACGGCAAGCTCGACGCCGACCTGGGCAAGCTGTTCGGTTCGATGGTGGGCGCCTATGAAAACAATGTCGCCGAACATGCGTTCCCGGTTGTAGAGAAGCAGCAAGGCGCGATGCACCAATGGCAACGCCAGGTCAGCTCCAACTTCGGCCCCTACCTGGCCAAGGACGCTGAGCAGCCCGAGTCGATCACCGGCAAGGCGTTCATGCGGGTCAGCCTGGCGCGCCACGGTTCGACCCTGCTGTTCTCCCTTGACGACAAACTGGTCGACAAGGCCCTCGGCACCCTCGACAAACGCTTCCCGCCCATGGCCGATGTAGTGCCCAAGGACCAATTGATGCCGGTCTACTTTGGCCCGGACTCCATGGCGCAACTGATGCAGCGCGAAACCCTCGACAGCCTGCCCCAGGACATGGAACCGGTGTTCTATAACGCCGCGCAAACCTACCTGATTCCGAAACTGCGCACCCTCGGCGGCTACGGCAAATATGCGCTGACCTTGCCTGCAGGCAGCGAGCCGGACGGCCATTGGCAATGGTTGCCGCTGGAATGGAAAGCGCTGTGAMSDNTASPTTPTPVAKPVRRWPAILIGLCLVTGVAAGLGWFMTKPKAPPTELALEKLGVSRPDGLLEAHSLSQLPKDLLAVPFLKATLTEDFVFYYEAHADRLGLIGSLRRIIYEHDLKLQDSLIEQLFDQPADVALWRGADGRLKDFLLVMDRGGLAKVLEPLAKVALDDTQLSKLGDLKVGGDEVALYQLSYNASKSLVFASHGDKLVVLSNPTKLYDQGSGPTDEPGMISTQALEALLAGEKLFPEAFGLPPKAPQVKQRISVNASVLAMGYQRFIPNFAGLRFDMDDKGWHSFLAMDELENQPDLDFKPIWQAMPMGASACVALPLAAEQQKPLLVKLGADEKAAQAMVDHVAGAAGLCWYAESRLYTPLLVASLNEDDGKLDADLGKLFGSMVGAYENNVAEHAFPVVEKQQGAMHQWQRQVSSNFGPYLAKDAEQPESITGKAFMRVSLARHGSTLLFSLDDKLVDKALGTLDKRFPPMADVVPKDQLMPVYFGPDSMAQLMQRETLDSLPQDMEPVFYNAAQTYLIPKLRTLGGYGKYALTLPAGSEPDGHWQWLPLEWKALNANANANANA
D1-35_04649648hypothetical proteinGTGACAGGACTGATCCGCATTCCCGGATTGGTGCTGCTGCTGGCATTGCTGCTCGGCGCGCGGGCGTTCGCCGATGAGGCGCCGCCGCTGGATGGGCAACAATCCCAGGTATTTCGGGCCTGGTTCGTGCGCATCGCCCAGGAGCAACTGAGCAAAGGCCCGAGCCCGCGTTGGTACCAGCAGGACTGCGCCGGACTGGTGCGTTTCGCTGCCAACGAAGCGCTGAAAGTCCATGACCAGAAATGGTTGCGCAGCAATGGCCTGTCCAACCGCTACCTGCCGCCGGAGCTGCCGCTGAGCGATGCGCAACGGCGCCTCGCCCAGCAATGGCAACAGGGCGGCGGCAAGGTCGGGCCCTATGTCAACGCGATCAAGCTGATCCAGTTCAACAGCCGTCTGGTGGGCCGCGATGTCACCCAGGCCCGGCCCGGCGACCTGATGTTCTTCGACCAGGGCGACGACCAGCACCTGATGATCTGGATGGGCCGCTACATCGCCTATCACACCGGCACTACCACCCCCACTGACAACGGCATGCGTTCCGCAAGCCTGCAACAACTCATGAACTGGAAGGACACCCGATGGATACCCGACGCAGCCAACCCCAACTTCATCGGCGTCTATCGACTCAACTTTCTCACCCAATGAMTGLIRIPGLVLLLALLLGARAFADEAPPLDGQQSQVFRAWFVRIAQEQLSKGPSPRWYQQDCAGLVRFAANEALKVHDQKWLRSNGLSNRYLPPELPLSDAQRRLAQQWQQGGGKVGPYVNAIKLIQFNSRLVGRDVTQARPGDLMFFDQGDDQHLMIWMGRYIAYHTGTTTPTDNGMRSASLQQLMNWKDTRWIPDAANPNFIGVYRLNFLTQNANANANANA
D1-35_046504569hypothetical proteinATGACCGGTGCCCGCATGCTGCGCTTGTGTTCGAAACTGCCCCTGCTGTTTGCCCTGTTGCTGGCACCTCTCGTGAATGCCGAAGACACCGTGGAGCCCAGCGGCTACACGCCGGTGTCCGGTGAAAGCTTCTTCCTGCTAGCCGACAGCAGTTTCGCCAGCGACGAGCAGGCGATGGTCCGTCTCGAAGCGCCGGGTCGCGACTACCGCCGGTTCCGCATGGAGCCCTACGGCGGCGCCGATATCCGCGTCTATCGCATCGAAAAGCCACTGGAGTTCCTCAAGCGCCAGAAGAACCTGCATCGCGTGGTCAGCGACGGCCAGTTCAAGGGCGAAGGCTTGTCCAATACCCTCGCGTACCTGTGGGACAACTGGTATCGCAAGTCCCGCCGGGTGATGCAGCGGGCGTTCTCCTACGAGTCCCGCCAGCAAGTCACTGAAGAAGTGCCGGAGCTGAAGGTCGGCAATGCCCTGATCGCGCCGACCCCGTACGACGCTCCAGCGCAATTCGCCTTGATCCCCGGCTTGCCGGTGGTCAGCCAGTTCCGCTATCCGCTGTGGCAGGCCAAACCGATCCAGCCACCGGCCGGCGTCGACCTGGCCGGTTCGTCCAGCGACTTTGTCAGCGTCGCGCCGGGCAATGTCTACGTGCCGCTGGGCCAGTTGAAGCCGGGCCTGTACCTGGTGGAAGCGCTGATCGGCAAGTACCGGGCGACGACGATGGTCTTTGTCTCCAACACCGTGGCCGTGAGCAAGATTGCCGGCGACGAATTGCTGGTCTGGGCCGCGCGCAAGCATGAGGGCCGTTCGGTGCCCAAGGTCAACGTGCTGTGGACCGACGGCCTGGGCGTGATGAGCAGCGGTGCCACCGATGAAGACGGCCTGCTGCGCCTCAAGCACGTCAGCCCGGAGCGTTCGTTCGTCATTGGCGAGGACGAAGAGGGCGGGGTGTTCGTCTCGGAAAACTTTTACTACGACAGCGAAATCTACGACACCAAGCTTTACGCGTTCACTGACCGGCCGCTGTACCGGCCGGGGGATTGGGTGTCACTGAAGATCGTTGGCCGGGAGTTCAAGAACGCCCGCGACTCGGTGCAACCGACCGCCGCCGACGTCAACGTCAGCGTGCTGGACGCGACCGGCACTGCGCTGCAAACCCTGGCCCTGAAACTCGACTCCAAGGCCGGCACCCAGGGCCGTTTCCAATTGCCGGAAAATGCCGTGGCCGGTGGTTATGAGTTGCGCTTCAGCTACAAGGATCAGCTCTACAGCAGCGCCTTTCGCGTGGCTGAATACGTCAAGCCGCATTTCGAAATCGCCCTGAACCTCGCCAAGCAGGATTACCGCACCGGCGAGCCGGTCAAGGGCAATCTGGTGTTGCTGTACCCGGACGGCAAGCCCGTGGCGGACGCCAAGGTCAGCCTGAGTCTGCGCGCCCAGCAACTGTCGATGGTAGATAACGAGCTGCAATACCTGGGGCAATTCCCGGTGGAGCTGACCAGCAGCGAAGTGACCACCGACGCCAAGGGCAACGCGGTCCTCGACCTGCCGGCCGCCGACAAGCCAAGCCGCTACACACTTACTGTATTCGCCAGCGATGGCGCGGCCTATCGGGTCAAGACCAGCAAGGAAATCCTCATCGATCGTGGCGCGGCGAATTTCCGCCTGGGCGCTCCCCAGCGGTTCAGCGCCGTCGGCCAGAAAGTGTCGTTCAGCTACGCCAACGAAGGCGGCAACGAGCAGGCCAAGGCCGTGACCCCGGGCAGCTACGCCTGGGTACGCCTGGAAGACCAGAGCACCGGCGAAGGCAAGCTGGCGGCCAAGGACAAGGGTTTCAGCCTGTCCTTCGAGCGTCCTGGCACCTACAACCTGACGCTCAAGGACGACCACGGCCGGGTCATTGGCGCGGTCGCGCATGCGGTAACCGGTGAAGGTATCAAGGCCGTGCCGGGCACGGTCGAGATCGTCTTCGACAAGCCTGAATACAAGACCAGTGACGAAGCCCTGGCCTTGATCACTTTCCCGGAACCGGTCAGCGACGCGCTGCTGTCCCTGGAGCGGGACAAGGTCGAGGCTACCGCGCTACTGACCAAGGGCGCCGACTGGCTGAAGATGGAAAAGCTCAGCGACACCCAATACCGCGCGCGCATTGCCGTGAAAGACAACTTTGCGCCGAACCTGACCTTCTCGGTGCTGTACACCAAGGGCGGCCAGTACAGCTTCCAGAACGCCGGCATCAAGGTGGTTGCGCCGCAGATCGACGTGGCCATCACCACCGATAAAGCCACGTATCGCCCGGGCGACACCGTAACCGTGGACTTGGGCACCCAGTTCGCCGGCAAGGCGATCCCGGCGCACCTGACCGTCAGCGTCGTCGATGAAATGGTCTATGCCCTGCAACCGGAAGTGGCGCCCACCATCGACCAGTTCTTCTATCACCCACGCCGCAACAACGTGCGCACCAGCGCCAGCCTGTCATTCATCAGCTACGACGTGGCGCTGCCGGGCAGCCCTGGCGCACCGGGCAAGGCCAACCGCAGCGAGCGTGGCGTCAAGGTGCTGGAACGGCCGCGTCGCGAAGACGTCGACACCGCCGCATGGCAACCGGAGCTGGTCACCGACGCCAACGGCAAGGCCCGCTTTACCTTCAAGATGCCGGACTCCCTGACCCGCTGGCGCATCACCGCCAAGGCAATCGCTGACGACGGCCAGGTGGGGCAGAAGAAGCAGTTCATCGCCTCGGAAAAACCGCTGTACCTGAAGTGGAGCGGCCCGACCCGCTTCCGCGTGGGCGACAAGCCGCAACTGGGCCTGTTCGTCTTCAGCCAGTCGGAAAAACCGCTCAAGGCCGAACTGTTGATCCGCTACGCCGGCGCCGAACAGCGTGTGGTCGCGGACCTGAAAAATGGCATCAACTACGTCGCGCTGCCGACCATGGAGCTGAGCAACGGCGACTTGACCGTGCAGTTGCAACTCAATGGCGAAACCCAGGACGCCCTGGCCATGCACCTCAATGCCAGCGGCAACGGTTGGCAAGTCACCCAGAGCCAGCGCCTCGACGTCATGAGTGACGCCACGCCACTGAACCTGCCGGCCGACGCCAGTGACATTCGCCTGCGCCTGGATGACAGCCCGCAAGCGCTGTTCCGTTCGGCCCTGGACGACCTGTTGAGCTACCCGTACGGCGGCGTCGAACAGACCGCCAGCCGCTTGTTGCCGTTGAGTATTGCCTACCCGTCCCTGGCGTCGAACCCGCAGATCCGCGACCGCTTGCGTTTGATCATGCAGAACAGTCGCTTGCGCCTGGTGCAGATGGCCGGCCCGTCGGCGAGCTTCACCTGGTGGGGCCAGGATGGCGAGCCGGATGCATTCCTCACCGCCTACGCTTATTACGCCGACTGGCACGCCAGCAAGGCCCTGGACCTGAACCTGCCGCCGGAACACTGGCAGCGAGTGCTGGAGGTCTATGCCAAGCAGGCCGGTGAGACGCCATTGCTGCAACGTGCCCTGATCCTGTCGTTCGCCAAACAGATGCAACTGCCGGTGAACACCTTGATCAGCGGTCTGATGGACGACCTGGCGAAGGCCAGCGAAGACAGCACCGAGAGCGTGCTGGACAGTGGCGAGGACAGCCTCGTCATGTACGCGCCGGATTCAGCCCTCGGCCTGGCCAGCGCCCGTGTCCTGACGGCATCGCTGGCCAAGCAGGTAAAAGTGCCAATGCCGGCGGCCTTCAGTCGCCAGGCAGACGCCGCGCAACAGCAGTTGGAACTCAGCTCCCAGCCGTTCGTCGAGGCCTTGCTCTTGTCGATGCAGAGCTTCGATCAGGCGCGCGCCGCCGCGTTGCTGCAGCGCGTGTTGCCACAGCAATCCACGCTGGAACGTGCCCTGGCCCTGACTTGGTTGCAGCGCAGTATCGAACAGGCACCGGCGGCCACAACCCTGGAACCGGCCGAAGGCTGGGCAGCCAAGCAGGGCGCGACCGGTGAAACCTACTGGCAGTGGCAGGGCGCGCAGCTACCAACGATGCTGACCCTGACCAGTGCCCAGGCGCGTCCGGTGCAGGCGTCATTGAGCTTCCAGAGCCAGCAAGCGCCAATTGCGCCGATGGCCGTGTCCATCACCCGCCGCCTGTCGCGCCTCGTCCCGGGCGACGAAGCGTTTACCTTCAAGCTCGAAGCCGTCGGCAACAAGCCGTTGTCCAGCGACAGCCTCTATCTGGATGAAGTGATCATCAACAGCAAGGCCTCGACGCCGCTGCGCTACGGCATGCTCGAAGTGCCGCTGCCGCCGGGCGCTGATGTGGAGCGCACCACGTGGGGCATCCAGTTGCTGGGCAAGGCCGACAGCGAACCGACGTCCCTGGAAAAGGCCCGTTTCGAGCCGGGCCAGATGGCTTACGCGGTCCCGGTGGATGCCCTTAGTGGCGAACTGCGCCTGCGGCACCTGGTGCGTTTCTCCCAGAAGGGCCAGTTCACCCTGCCGCCGGTGCGTTTCACCCAGGTGTATGCGCCGCAAAACCAGGCTCGCGAACAGAAACCGGCGCTCGGTCAGGTGACGGTCAACTGAMTGARMLRLCSKLPLLFALLLAPLVNAEDTVEPSGYTPVSGESFFLLADSSFASDEQAMVRLEAPGRDYRRFRMEPYGGADIRVYRIEKPLEFLKRQKNLHRVVSDGQFKGEGLSNTLAYLWDNWYRKSRRVMQRAFSYESRQQVTEEVPELKVGNALIAPTPYDAPAQFALIPGLPVVSQFRYPLWQAKPIQPPAGVDLAGSSSDFVSVAPGNVYVPLGQLKPGLYLVEALIGKYRATTMVFVSNTVAVSKIAGDELLVWAARKHEGRSVPKVNVLWTDGLGVMSSGATDEDGLLRLKHVSPERSFVIGEDEEGGVFVSENFYYDSEIYDTKLYAFTDRPLYRPGDWVSLKIVGREFKNARDSVQPTAADVNVSVLDATGTALQTLALKLDSKAGTQGRFQLPENAVAGGYELRFSYKDQLYSSAFRVAEYVKPHFEIALNLAKQDYRTGEPVKGNLVLLYPDGKPVADAKVSLSLRAQQLSMVDNELQYLGQFPVELTSSEVTTDAKGNAVLDLPAADKPSRYTLTVFASDGAAYRVKTSKEILIDRGAANFRLGAPQRFSAVGQKVSFSYANEGGNEQAKAVTPGSYAWVRLEDQSTGEGKLAAKDKGFSLSFERPGTYNLTLKDDHGRVIGAVAHAVTGEGIKAVPGTVEIVFDKPEYKTSDEALALITFPEPVSDALLSLERDKVEATALLTKGADWLKMEKLSDTQYRARIAVKDNFAPNLTFSVLYTKGGQYSFQNAGIKVVAPQIDVAITTDKATYRPGDTVTVDLGTQFAGKAIPAHLTVSVVDEMVYALQPEVAPTIDQFFYHPRRNNVRTSASLSFISYDVALPGSPGAPGKANRSERGVKVLERPRREDVDTAAWQPELVTDANGKARFTFKMPDSLTRWRITAKAIADDGQVGQKKQFIASEKPLYLKWSGPTRFRVGDKPQLGLFVFSQSEKPLKAELLIRYAGAEQRVVADLKNGINYVALPTMELSNGDLTVQLQLNGETQDALAMHLNASGNGWQVTQSQRLDVMSDATPLNLPADASDIRLRLDDSPQALFRSALDDLLSYPYGGVEQTASRLLPLSIAYPSLASNPQIRDRLRLIMQNSRLRLVQMAGPSASFTWWGQDGEPDAFLTAYAYYADWHASKALDLNLPPEHWQRVLEVYAKQAGETPLLQRALILSFAKQMQLPVNTLISGLMDDLAKASEDSTESVLDSGEDSLVMYAPDSALGLASARVLTASLAKQVKVPMPAAFSRQADAAQQQLELSSQPFVEALLLSMQSFDQARAAALLQRVLPQQSTLERALALTWLQRSIEQAPAATTLEPAEGWAAKQGATGETYWQWQGAQLPTMLTLTSAQARPVQASLSFQSQQAPIAPMAVSITRRLSRLVPGDEAFTFKLEAVGNKPLSSDSLYLDEVIINSKASTPLRYGMLEVPLPPGADVERTTWGIQLLGKADSEPTSLEKARFEPGQMAYAVPVDALSGELRLRHLVRFSQKGQFTLPPVRFTQVYAPQNQAREQKPALGQVTVNNANANANANA
D1-35_046511551hypothetical proteinTTGCGCCTGGCTTTCGACGGTCAGCTGCTGCGAGTGAGCCAGACCCAGGTGCTGGACCGCCAGCCGTTGCCGGACGCGTTGACGGCACCGTTGGGCAGCCTGTGGAAGCTCTTCGTCTACGCCTGGCTGGTGGACACCGATGCTCGCGAGCCGGTCTATGAGTGTCGCGGCGAATCGAAAGAAGAAGTCTATTGCTGCACTGCCGGGCAGAGCATCGGCCGTGATCAGGCGCTGGTGAAGTCCTGCGGCTTGTACTTCGAACCGCAACGGCTCGGGCTTTCGGCGCCGGACTGGCGAGATTACTGGCAAGCGCGCCGGGCGCCGAACTGGTTGCTGGACTTGCCGACCTTGCAGCCGCAAACCCAGGTACCCGTTGCAGAACTGCTCAAGGCGCTGGCCACGTTGCCGGCCCAGGATCAGGCCCGGCAGGTATTACTCGACGTGGTACTCGGCGCTGCGGATGGGCGATTGGTCGGTCAATTGGGTGGTCGCCTGCGGGTCAAGACCTGGAGCTGGCTGGGTGACCGGGGCCCAGCGTCGCGCCAGGGCGGTTTCGCCGGTTGGCTGGCCGATGGCACGCCCGTCTGGGCCGGTGGGCGCGGTACCAGCCAGCAGGTGCTGAAGAAGTATGGCGATGGCTTGGCCACGGCATTGCCGTCGCGCTGGCCGGCGGAAACCGGGCGTTGCGTGGAAGTAGGCCTGTTTGCCCGTTATCCGTTGCAGCGGGTCATGGCTGGCGACCGTCCTGCCACGCCGGGTCAGCTGCGCGGCGATTACCGTGTCGAGTTCATCAATGGCAACCAATTGGATATCCACAGCGACGGCGAGCTGTTCCTGCTGCCTGGCAAGCTGGTCGCACGACTGGATCGGGAAGAATACGTCGCCCGGGTCCTGCAACGCGAAGCCAAGGCCGAACCGGTCGAAGCGGCCAAGGCATTGGCCGTGGCGATTCGCACCTACCTGCTGCAAAACGCCGGGCGCAATGGTGATTGCCTGAGCATCGATGACAGCAGTCACCGCCAGCGCGTCGCCCCGCGTCCGGCGGCGCCTGAAACCCGCGCGATTGCCGCGTGGACCACTGATCTGGTCCTGGCCGGCACTGACGTCACTTACCACTCCGATCAACCGGGCCCGGACAAATTGTCCTGGGCCCAAGCCGTTGAACAAGCCAACGGCGGCCAACGCTACGACGCCATCCTGCTGCATGCGTATCCGCGTGCCAGCCTCAGCCGCTGGGACAACCCGGTAGCGTCCTGCGAAGCGTTGCCCGCGGCCCAGGACTGGTTGCTGAAGCAGCGCCGTGGCTGGCGTCAGCGCCTGGAAAGCGAAGTGGGCTACAACGAAATCAGCGCTTTCGCGGTCTGCCGCGTCGCCTTCGGCCGGCCGTATGTCGACCGCGAGCGCCAGCGCATCTACGTACGTGGCGTGCTGTCGCTGCAAGACCGCCTCGACCTCACACATGAATACCTGCACCTGGCCTTTGAGGCTCACCCCAACGGCCAGGACGAAACCTATATCGAAGGGCTCGCCCGTCACCTCTTGCTGGAATAGMRLAFDGQLLRVSQTQVLDRQPLPDALTAPLGSLWKLFVYAWLVDTDAREPVYECRGESKEEVYCCTAGQSIGRDQALVKSCGLYFEPQRLGLSAPDWRDYWQARRAPNWLLDLPTLQPQTQVPVAELLKALATLPAQDQARQVLLDVVLGAADGRLVGQLGGRLRVKTWSWLGDRGPASRQGGFAGWLADGTPVWAGGRGTSQQVLKKYGDGLATALPSRWPAETGRCVEVGLFARYPLQRVMAGDRPATPGQLRGDYRVEFINGNQLDIHSDGELFLLPGKLVARLDREEYVARVLQREAKAEPVEAAKALAVAIRTYLLQNAGRNGDCLSIDDSSHRQRVAPRPAAPETRAIAAWTTDLVLAGTDVTYHSDQPGPDKLSWAQAVEQANGGQRYDAILLHAYPRASLSRWDNPVASCEALPAAQDWLLKQRRGWRQRLESEVGYNEISAFAVCRVAFGRPYVDRERQRIYVRGVLSLQDRLDLTHEYLHLAFEAHPNGQDETYIEGLARHLLLENANANANANA
D1-35_04652834hypothetical proteinATGACACTCCGTTATCCACAGGTCTTGTTGTTGCTTTGTGCCTTGACCGCGTTGCCACCGGCCATGGCTGCCGACCCCATCAAGCTCGACACTCCCGTCGGCGGCTGGCGCAGCGGTGCGCCGGGGGGCGAGGGCGAAAGCTTCAGCCAGACCGTCAACTACCCGGCCTCGTCGGTCAATACGCCCCCGGGCCAGGCCGACACCGCGCGCATCAGCGGCCAGATCAAAGGCGCGCCCAAGGACAGCAATGCACCAGGACAATTGATCGTCAACGGCGTAAGCCTGCCGCTGAAAACAGATGAAGAAGGCCGTTTCGACCGACCGTTCTCATTCCCCAATGGCAGCAACAGCGTTGAAGTGCGCAGCGCCGATGGTCAGCAGCGCCACCGCACGCAGTTCCTCAACACCACCGGCGGCGCCACCCCGGCCAAGCTGCGGGTCCTGCTGACTTGGGATAGCGACGGCACCGACCTCGACCTGCACCTGGTGACGCCCGATGGCGCCCACATCTGGTACGGCGACCGCGCCGTCGCCAACGGCGCCGCGCTCGACGTCGACGTCACCACCGGCTACGGCCCGGAAATCTTCGCCATGCCCGCGCCGATCAAAGGCCAGTACCTGGTATACGTGAATTATTACGGCGGCGGCTACCGCAGTGACGAGGATGAGGAGGGCGACGGCGAGCAGGTGGAGCAGGCGCAACAGGCCCTGACCACGGCGCAGGTAACGGTGATTACTGAAGAGGGCACACCGAGCGAGAAAATGGAAACGTTTGTGGTGCCGATGCGGGCGGTCGGGGAGCTGACATTGATCAAGAGCTTCAGCTATCCGTGAMTLRYPQVLLLLCALTALPPAMAADPIKLDTPVGGWRSGAPGGEGESFSQTVNYPASSVNTPPGQADTARISGQIKGAPKDSNAPGQLIVNGVSLPLKTDEEGRFDRPFSFPNGSNSVEVRSADGQQRHRTQFLNTTGGATPAKLRVLLTWDSDGTDLDLHLVTPDGAHIWYGDRAVANGAALDVDVTTGYGPEIFAMPAPIKGQYLVYVNYYGGGYRSDEDEEGDGEQVEQAQQALTTAQVTVITEEGTPSEKMETFVVPMRAVGELTLIKSFSYPNANANANANA
D1-35_04653582hypothetical proteinATGAAGCAGATGCGCGCGGGCCTGAGTGCCGCAGGCTATGTAAAACACGAGACTTGGGTGCTTCCCGAAAATCGAGGCCTGCTCAAGCAAATGGAGAAACAGCTACGCCAACCGATTCTGGCTGGCTCATTCATGTCGGAGAATTACATGAGCGCAGGTAATAACTGGAACATCGACCGTCTCTACAGCGCCCTTCAGGCCCTGGACGAAGTGGTCGCGAACGACATCACCCTGAGCCTCGTCCAAGGCTCCGAATCCAGCATCAAGCTGGAAATGAATGAATTCGGCGGCTTGCCGATCTACATCGCCGTGGTCGGCGATCAGGTCATCGTCGACACCGTCCTGGTGGATGTCGAGTCGATCAACGACGTAGCGGCCTTCAACGACGCCGTGTTGCGCAGCCGGGAAATGTTTCCGCTGTCGTCCATCGGCATCGAGACCATGCCCAACGGCCAGGTCGTCTACAACATGTTCGGTGCGTTGAGCTCCGACTCCAGCCTGACCAACATCGTCACCGAGGTGAAAACCCTCGTTGACAATGTGCAGCGTGCCAGCGAAGCCTTCGAACGCTTCTTCATTTAAMKQMRAGLSAAGYVKHETWVLPENRGLLKQMEKQLRQPILAGSFMSENYMSAGNNWNIDRLYSALQALDEVVANDITLSLVQGSESSIKLEMNEFGGLPIYIAVVGDQVIVDTVLVDVESINDVAAFNDAVLRSREMFPLSSIGIETMPNGQVVYNMFGALSSDSSLTNIVTEVKTLVDNVQRASEAFERFFINANANANANA
D1-35_04654699hypothetical proteinATGACTCAGTCCATCTGGAGCAAATTGTTCACCGCGCTGCGAGGCGGTGCCAATGAAGTCGGCGAATCGATCGTCGATCAACAGGCCCTGCGCATCCTCGACCAGGAAATTCGCGACGCCGACACCGCGCTGGCCAACGCCAAGCGCGAGCTGGTCACGATCATGGCCAAGCACAAGCTGGCGACCGATCGCGTCGGCGAATACAACGCCAAGATCAAGGACCTGGAAGCCAAGGCCCTGGCCGCGATCCAGGCCAACCGCGAGGATCTGGCACTGGAGGTGGCCGAAGCCATTTCGACCCTGACCAACGAACTGGACGCCGAGCAAAAGCACGCAACCGAATTCGGCGGTTACGCGGAAAACATGCGCAAGGACATCACCAAGGCCGAAAGCCGCATCAAGAGCCTGCGTCAGCAAGTGGACATGGCCAAGGCCCGGGAAAGCGTGCAGAAGGCCCAGGTCAGTGCTTCGATTGCCAGCGGCGGCGCCAATGGCAAGCTGGAAACAGCGGTCGGTACACTCAATCGCCTGCAAGCCAAGCAACAGCAGCGGGCCGCTGAACTGCAAGCCCAGGACGAACTGGCCGAGGCTTCGACCGGCTCCGACCTGGAGCGCAAGCTGCGTGACGCCGGCATCACGCCGAACGAAGGCAGCGCCAACGCGATCCTGGAACGCTTGAAGAAAAAATCGGCTGAATAAMTQSIWSKLFTALRGGANEVGESIVDQQALRILDQEIRDADTALANAKRELVTIMAKHKLATDRVGEYNAKIKDLEAKALAAIQANREDLALEVAEAISTLTNELDAEQKHATEFGGYAENMRKDITKAESRIKSLRQQVDMAKARESVQKAQVSASIASGGANGKLETAVGTLNRLQAKQQQRAAELQAQDELAEASTGSDLERKLRDAGITPNEGSANAILERLKKKSAENANANANANA
D1-35_046551035hypothetical proteinATGTCGATTTTCCTTCTGTTGCGCGCGTACGCTTCGTCGTTCTTCCATCGATTCGGCTGGGCCGGCCTGGCCATTGCGCTGGGCGTGCACCTGTCCACGGCCTGGATCGGCCTGGTATTGCTGGGCGAGCAGCACCTTATCGCCGCCGCCACGTTCACCTACTTCTATCTCACCACCACGCTCACCGTCGGCTATGGCGATCTCGCGCCGCAGACTGCGGCGGGACGGGTGTTCGTGGCTACCTGGGTGATGCTCGGGGGCATTGCGCTGCTGACGGCAGCCATCGGCAAAACCACCAGCAGCGTCATCGATGTATGGAGAAAAGGCATGAAAGGCAAAGGCGATTTCACCGGCCAGGTCGGCCACACGGTTCTCATCGGGTGGGAGGGCGCCTCCAGCGAGCGGGTCATTGAATTATTGCTGCAGGACGAAACGTCCAATGACAACCTGATCGTCATCTGCGATTGCGATCTCGAAGAAAACCCCATGCCCGGCAAGGCCTCGTTCATCAAGGGCGACAGCCTGTCCTCGGTCGCCCTGTTGCAGCGCGCCGGCGTACCCGGCGCCGAGCGCGTGCTGGTGCGAACCCATTCCGACGACCTGACGCTGGCCACGGTGCTGGCGGTCAATCGGCTGGGGCCCGTCGGGCATGTGGTCGCCCACTTCAATGACAGCGAAATTGCCGCCCTCGCCAGCGCCTATGCGCCGAGCCTGGAATGCACCTCCAGCATGGCCATCGAAATGCTCGTGCGGGCCTCCCAGGACCCGGGCTCGTCAGTGGTCATCAATGAATTGCTCTGTGTCGGCGAAGGCGCCACCCAATACCTGATGAAATTGCCCGATGCGTTTGAAGCGACGTTCGGCGACCTCTACGGCCGAATGAAAGAGCAGCACAACGCTACGCTGATCGGCTACCGCGCCAAGGGTGCCCGACACCCATCGATCAATCCGCCTGGCACCACGCGCATCGCGGGTGGAGAACTCTTCTACATCGCGTCCGCGCGGCTCAAGGAAATTGCCCATGGGGTGGTTTAAMSIFLLLRAYASSFFHRFGWAGLAIALGVHLSTAWIGLVLLGEQHLIAAATFTYFYLTTTLTVGYGDLAPQTAAGRVFVATWVMLGGIALLTAAIGKTTSSVIDVWRKGMKGKGDFTGQVGHTVLIGWEGASSERVIELLLQDETSNDNLIVICDCDLEENPMPGKASFIKGDSLSSVALLQRAGVPGAERVLVRTHSDDLTLATVLAVNRLGPVGHVVAHFNDSEIAALASAYAPSLECTSSMAIEMLVRASQDPGSSVVINELLCVGEGATQYLMKLPDAFEATFGDLYGRMKEQHNATLIGYRAKGARHPSINPPGTTRIAGGELFYIASARLKEIAHGVVPGPT0002715_1782DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-POTASSIUM_TRANSPORT,PGPT0002715-kch|trkA|mthK|pch-K10716NANA
D1-35_04656663hypothetical proteinATGGGGTGGTTTAAACAGTTGATGGGGCTTGAGGCCCCGAACGCGAACAAGACAGCCAGCCATGACTCGCCCGTCAGCGGTCCGCTGGGCCTGGCCTCCGGCAAGCAGGTCATGTTCGATGCCACGCTCAAGTTGTTGCTCGACGGCAACAGCACCGTGGTCATCCCCGGCTCCCAACAGATCTGGAGCCTGGGCATCGTCGACCTCGGGCAGTCGAACTGGCTGTCGCGCTGCTACATGAACGACGAAGACTACTGGCTGCAAGTTCACACCAGCGGCGACGTCGCCGGGCAGGTCGAGTCGGTGATCCTGTTCAATTACCTCAGCTACGTCACGATCAACAGCGAAGCGGAGTTGCGTCGGCTGGCTGGCCCGGAAAGCCTGATCGGCCTGCCGACCTACACCCACGACGGTGTCGAATACACCCGTGAATGGGGCTCCGAAGCTGGCCAGACAGAGCTGGTGGCGTTGAGCGAGCGCGTGAGCAATCCGCAAGAATCCTACAGCGTCGAGCACCGCTCGATGCTGTACGCCCGCGAAACCGGCCTGACCGATCGCCGGGAATTCCTGCTGTTCTCTGTCGAAGAGGACGCCGAAGGCACCGTCAGCCTGAGCACTTCGCTGGGTATTTCGCTGTACACCACTGACCTGAACACTCTTTGAMGWFKQLMGLEAPNANKTASHDSPVSGPLGLASGKQVMFDATLKLLLDGNSTVVIPGSQQIWSLGIVDLGQSNWLSRCYMNDEDYWLQVHTSGDVAGQVESVILFNYLSYVTINSEAELRRLAGPESLIGLPTYTHDGVEYTREWGSEAGQTELVALSERVSNPQESYSVEHRSMLYARETGLTDRREFLLFSVEEDAEGTVSLSTSLGISLYTTDLNTLNANANANANA
D1-35_04657429hypothetical proteinATGCTTGAAGCGCTCTCCATTTCCCTGAACAAGGCTGCCGTGTTCGGCTTCGTCCTGTACATCCTCGGCGCGGCCGTGCTGTTCGCGCTGTTTCAGTTCATCTACATCCATGTCACGCCGCACAAAGAGTTCGAGCTGATCCGCTCGGGCAACGTGGCCGCGGCGATCGCCCTGAGCGGTGCCCTGGTTGGTTTCGCCATTCCTGCGAGTAACGTGATCGCCTACTCGATCAGCCTGCTGGATTTCGTTGTCTGGGCGGTGATCGCCGCAGCCGTCCAGTTGCTGGCCTTCCTGGTGACCAGCCTGGTGCTCAAGGGCGCCTCCGCGCGTATCAAGAATGGTGAGATCGCCGCCGGTATTTACATCGCCGCCGTGGCCATCAGCGTCGGCATGCTGAACGCCGCGTGCATGACGCCTTCCACGAACTGAMLEALSISLNKAAVFGFVLYILGAAVLFALFQFIYIHVTPHKEFELIRSGNVAAAIALSGALVGFAIPASNVIAYSISLLDFVVWAVIAAAVQLLAFLVTSLVLKGASARIKNGEIAAGIYIAAVAISVGMLNAACMTPSTNNANANANANA
D1-35_04658702hypothetical proteinATGAAACGAAGCAAGTACGTCCAGCTTTCGCTGGCTGCGTCGGTCGCCCTGGCGATATCCGGTTGCGGGCCAACGGAAAAAACCTACAAGTTGCAAAAGAAGTACAACTTCCAGTCCGTCCAGCAATGTGTCGATGAAAAGCTGCCAGTGGACATTTGCGCCGACGCCTACATGACCGCCATGGCCGAGCATCGTCGCATCGCGCCGACGTACGCCAGCCAGGCCGATTGCGATGCCGACTTCGTCCCCGATTGGTGCCAGCAGGACTCGTCCGGCCAGTTCATTCCCAAGCTGGGCGGTTTCGAGCTGAGCGCCGATGGCGAAGTCACCCAATCCCAGGTCGACGCCGCCAGGGCCCAATTGCCCGCTTCGGAAGCGAACGTCGGTGGTTCAGGCTTCGGCAACCTGCTGACGGGCATGCTGATCGGCAACATGTTGAGCAGCAACCGCAACAGCTATTACTCCGAGCCGGTCTACCGTTACCGCGATGATCGCGGCAGCTTCGGGTCCTCGACCCTCAGCCAGCGTGTCTCCAGGGGCTCGACTTTTACCAAGTCCAACCAGGCACGGTACGGCAGCTACACCGACACCATCAAGACCAGCAAGCCGATGTCCGTTGCTTCCTCCACGTCTCGCGGTGGTTTCGGCAGCAGTTCCAGCGCCCGCAGCGGTTGGGGCGGATCGAGCAGCTCCGGCGGTTGAMKRSKYVQLSLAASVALAISGCGPTEKTYKLQKKYNFQSVQQCVDEKLPVDICADAYMTAMAEHRRIAPTYASQADCDADFVPDWCQQDSSGQFIPKLGGFELSADGEVTQSQVDAARAQLPASEANVGGSGFGNLLTGMLIGNMLSSNRNSYYSEPVYRYRDDRGSFGSSTLSQRVSRGSTFTKSNQARYGSYTDTIKTSKPMSVASSTSRGGFGSSSSARSGWGGSSSSGGNANANANANA
D1-35_046591158yjfCCOG0754Putative acid--amine ligase YjfCATGAAGAAGATCCAGTGCGCAGAACGTCCTGACTGGAAGCAGACGGCCGAGCAGCTCGGCTTTCTGTTCCACACCATCGACGACGAGCCCTATTGGGACGAAAGCGCGTACTACCAGTTCAGCCTCAAGCAGATCGAGGATGACCTGGAAGACCCGACGACCGAGATCCATGAGATGTGCATGGACCTTGTGGCCCGCGTGGTCCAGAGCGAAGAATTGCTGGAGCGCCTGAGCATTCCCGCGCCGTTCTTCGACCTGGTTCGCACTTCATGGCTTGAAGGCCACCCGCACCTGTACGGGCGTATGGATTTCTCCTACAACGGCAGCGGCCCCGCCAAGCTGCTGGAGCTCAACTACGACACGCCGACCAGCCTCTACGAGGCGGCGGCGTTCCAGTGGGGCTGGCTGGAGCAATGCATCGAGCGCGGCGTGCTGCCGGCCCATGCCGACCAGTTCAACAGCATCGATACCAAGCTGCACCAGGCCTTTGCCCAGTTGCAGCTCAAGGAACCGTTTTATTTCGCCTCGATGAAAGGTTCGGTGGAAGACAAGGGCACCACGGACTACTTGCGCCTGATTGCGGAAAAAGTCGGCATCGAATCGCGGCACATCGATATCGAAGACATTGGCCTCAACAGTGACGGGCGTTTCGTCGACCTGGAGGAGCGCTGGATTCCACACCTGTTCAAGCTGCACGCCTGGGAGTTCATCTTCCACGAGCCGTTTGGCGCTGCGATTGCCCAATGCGATACGCAGTTTTTCGAGCCGGCCTGGAAGTCGATCATCTCCAACAAGGGCATTCTGCCGCTGCTGTGGGAATTCAACAAAGGCCACCCGAACCTGCTCGCGGCCCACCTGGATACCGACACGAGCAAAGCCGTGCCCAAGGGCTGGGTGCGCAAGCCGTTCTTTTCCCGGGAAGGCGCCAATATCGAGTTGCAGACTGCTGACGGCTTGATCGTCAAGGAAGATGGCCCTTATACCGACGCACCGTTCATCCTCCAGGAATTCGCGCCATTGCCACGCTTTGGCGACAGCTACACCCTGATCGGCTCTTGGGTCATCGGCGACCAGGCGGCCGGCATCGGCGTGCGCGAAGACGACAGCCTGATCACCAAGGATTCCAGCCGGTTCCTGCCGCATCTGATTCTCGACTGAMKKIQCAERPDWKQTAEQLGFLFHTIDDEPYWDESAYYQFSLKQIEDDLEDPTTEIHEMCMDLVARVVQSEELLERLSIPAPFFDLVRTSWLEGHPHLYGRMDFSYNGSGPAKLLELNYDTPTSLYEAAAFQWGWLEQCIERGVLPAHADQFNSIDTKLHQAFAQLQLKEPFYFASMKGSVEDKGTTDYLRLIAEKVGIESRHIDIEDIGLNSDGRFVDLEERWIPHLFKLHAWEFIFHEPFGAAIAQCDTQFFEPAWKSIISNKGILPLLWEFNKGHPNLLAAHLDTDTSKAVPKGWVRKPFFSREGANIELQTADGLIVKEDGPYTDAPFILQEFAPLPRFGDSYTLIGSWVIGDQAAGIGVREDDSLITKDSSRFLPHLILDNANANANANA
D1-35_04660933hypothetical proteinATGGATCGATATACCCTGATGTTGTTTAGCGGGATCGGCGCGATTCTGCTGCTGGCTTCGCTGGTCGGTTTCATACTCAAGCTGCGGACCAAAGGCGCACCGAACTCGGTCATCGAGAACCTCAATGCGCGGATCAATGCCTGGTGGATCATGGTGCTGGTGATCGGCATCGCGTTCTGGCTGGGCAACGCGGCGGTGATCCTGTTGTTCTACGCCGTGTCGTTCTACGCGCTGCGGGAATTTCTCACGCTGACGCCCACCCGGCGCAGCGATTACCCAGCCTTGGTGGCGGCGTTCTACCTGGCGCTGCCGCTGCAATACTTGCTGATCTATTACGACTGGTACGGGCTGTTTTCGATCTTCATTCCGGTGTACGTGTTCCTGCTGCTGCCGATCCTCGCGTCCCTTGGCGGCGACAGCACGCACTTCCTGGAACGCGCCTCCAAAGTCCAGTGGGGCTTGATGATCGCGGTGTTCTGCATCTCCTTTGTACCGGCGTTGCTGACCTTGGACATTGCCGGTTTCGAAGGGCGCAACCTGCTCTTGATCGCCTATCTGGTAATCGTGGTGCAACTGTCGGATGTGTTGCAGTACGTGTGCGGCAAGTTGTTCGGCAAGCACAAGATCGCGCCGAACCTGTCACCGTCGAAAACCGTCGAAGGCTTTGTCGGTGGCATTTTCCTGGCCTCGCTGATTGGCGGCGCGTTGTGGTGGATCACCCCGTTCAATCCATGGCAGTCGTTCCTCATTGCCTTGCTGATCAACCTGCTGGGGTTTGCTGGCGGCATCGTCATGTCGGCGATCAAGCGCGACCGAGGCGTCAAGGATTGGGGGCACATGATCGAAGGCCACGGCGGCATGCTCGACCGCTTGGATTCGGTGTGCTTCGCCGCACCAATCTTCTTTCATCTGGTTCGGTACTGGTGGACTTGAMDRYTLMLFSGIGAILLLASLVGFILKLRTKGAPNSVIENLNARINAWWIMVLVIGIAFWLGNAAVILLFYAVSFYALREFLTLTPTRRSDYPALVAAFYLALPLQYLLIYYDWYGLFSIFIPVYVFLLLPILASLGGDSTHFLERASKVQWGLMIAVFCISFVPALLTLDIAGFEGRNLLLIAYLVIVVQLSDVLQYVCGKLFGKHKIAPNLSPSKTVEGFVGGIFLASLIGGALWWITPFNPWQSFLIALLINLLGFAGGIVMSAIKRDRGVKDWGHMIEGHGGMLDRLDSVCFAAPIFFHLVRYWWTPGPT0007685_1749DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_CYTIDYLYLTRANSFERASE_ACTIVITY,PGPT0007685-cdsA|ynbB-K00981NANA
D1-35_04661621hypothetical proteinATGTTCGAACCCGTGGTCGCCAACCTCATCACCTCCGCCGCGCGGATGGTCACCGGTGCTCGCAGCCTGTGGCTCGGCTGCGCGCCCACGCCGGTGCAGCGGATCTATTTCGCCAACCACAGCAGCCACGGCGACTTCGTGCTGCTCTGGGCCTCGCTACCGCCGGCGCTGCGCAAACTGACTCGGCCCGTCGCTGGCGCCGACTATTGGCAAACCAGCCCGATGCGCCGCTACATCATCAACCGGGTGTTCAACGGCGTGCTGGTGGATCGCGAGCGCAAGGACCCTTCCTACAGCCCATTGCAGCCAATGCTCGATGCGCTGGAGAACGGCGACTCGCTGATCATCTTCCCCGAGGGCACGCGTAACCCGGATGAAGGCCTGCTGCCGTTCAAGAGCGGGATCTACCACCTGATGAAAAGCCACCCCGGGGTCGAGGTGATCCCGGTGTGGATCGCCAACCTCAACCGCGTCATGCCCAAGGGCCGCGTATTGCCCTTACCGCTGCTGTGCACCACCAGTTTCGGCGCGCCGCTGTGCATCGAAGAAGGCGAAAGCAAAGAGCAATTCCTTGAACGCAGCCGCGCCGCACTGCTGGCGCTGGCCCCGGAGCACGTCTGAMFEPVVANLITSAARMVTGARSLWLGCAPTPVQRIYFANHSSHGDFVLLWASLPPALRKLTRPVAGADYWQTSPMRRYIINRVFNGVLVDRERKDPSYSPLQPMLDALENGDSLIIFPEGTRNPDEGLLPFKSGIYHLMKSHPGVEVIPVWIANLNRVMPKGRVLPLPLLCTTSFGAPLCIEEGESKEQFLERSRAALLALAPEHVPGPT0007685_27DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_CYTIDYLYLTRANSFERASE_ACTIVITY,PGPT0007685-cdsA|ynbB-K00981NANA
D1-35_04662471hypothetical proteinATGGTCATGAGCAGTGACATGGAACTGCACACCGTGGCGAGCCTGCTGCGCCGCGGTCATTCGCTTGACCAGCTCTCCACCGGACTGACCTTGCTCGCGGCGCTGATCGGCCTGGGCCAATGGCTGGTCGGTAGCGTCGATCCGTGGCTGCTGTTGCTGAGCTTCGGCGTGTTCGTCCTCGGCCTGCAGGAAAAATATCTGGCGTTTCGCGTGGCCTTTGATGCCGATCTGTTTCAGATCGTCGCGGATGCCGACAAGCCGCTTACCGAACGCACCCAGGCGCTGGACGCCGCCCTCGCCAACCTCGGCCTGCAACCGGTCGAGCGTGGCGGGCGGTCATGGCCCGAGCGCAGCCACGGTTCCATGCGCCTGCTTCGCCGCCAAGCCTGGCTGGTGGCGACGCAAGCGCTGTTGACGGTGAGCTTCGTATTGGCGAGCCCCTGGCTGGTTTACTCGGGTCTGGGTGTTTAAMVMSSDMELHTVASLLRRGHSLDQLSTGLTLLAALIGLGQWLVGSVDPWLLLLSFGVFVLGLQEKYLAFRVAFDADLFQIVADADKPLTERTQALDAALANLGLQPVERGGRSWPERSHGSMRLLRRQAWLVATQALLTVSFVLASPWLVYSGLGVNANANANANA
D1-35_046631338ynbDCOG0671putative protein YnbDATGAGCGCGGTCATTGCTCCGGTCCGCGAACCCGCGCTGCTGAAACCGGCGGTGCTCTGGCTGCTGTTGCTGGCACCGCTGTTCTTCAGCACCTACGGCTTCGCCACCTGGGTAACGTCCCAGCGTGACGATGTCGGCACGCTGGTGTTCGCTTGGGAAAGCCACATGCCGTTCCTGGCCTGGACCATCGTGCCGTACTGGTCGATCGACTTGTTGTACGGCCTGTCCCTGCTGCTGCCCAACAGCCGCGACGAACTCAAGCGCCACGCCCTGCGCCTGCTCACGGCTCAGGTGATAGCCGTCAGTTGCTTCCTGCTCTGGCCGCTGACGTTCACCTTTCCGCGGCCGGAAATGGACGGGGTGTTCGGCTGGATGTTCGACGTGCTGGCCGGCTTCGACAAGCCATTCAACCAGGCGCCGTCCCTGCACATCGCGCTGCTGGTGGTGCTCTGGGTCTGCTATCAACGTCACCTGCAAGGCTTCTGGCGCTGGTTGATGCACGGCTGGTTCGCCTTGATTGGCGTGTCGGTACTGACCACTTACCAACACCATTTTGTCGATGTCCCCACCGGTGCGTTGGCCGGTTGGTTGTGCGTCTGGCTGTGGCCGTTGGACCGACCGAGTCCACTGCGAAGTGCACGCCTGACGCGCGACCCGGCGCGCCTGCGACTGGCCTTGCGTTATGGCGTGGGCGCCGCAGTGTTCTTCACGTTGGCGTTCGCCTTCGGCGGCGCGTGGCTCTGGCTGATCTGGCCGGCGGTCGCGGTGCTCATGGTGGCGTTGAATTACCTGGCGTTTGGCGCCAGTGGCTTCCAGAAGCGTGAAGATGGCCGGCTGAGCCCGGCGGTGCGCTGGTTACTGGCGCCCTATCTGGCCGCGGCGTGGATCAATTCCCGCGTGTGGACGCGCAAGCATCCGCAGCCGGATCAGGTGGCGGATGACGTCTGGCTCGGGCGGATTCCTACGTCGGCGTCGCTTAAAAGCAGCCCGTTTACTGGCGTGCTCGACCTCTGCGCCGAGTTGTCGATGGACAGCACCGCAATCGCCTATCGCAGCTTGCCGGTGCTCGACCTGACGGCACCGACCGCCGAGCAGTGCCTGAACGCGGCGCAGATGATTGAGCAACTGCGTCAGCACGGGCCGGTCCTGGTCTGCTGCGCACTGGGTTATTCGCGCAGTGCCACCGCCGCGGCGGCATGGTTGCTGGACAGCGGTCGCGCCGACAGTGTCGACGCGGCCATCGCCCAGATTCGCCAAGCCCGGCCGGGTATCGTGTTGCACCCAGCCCATCGCCAGGCCTTGGAGCAACTATCCAAGGGATTCGGGGCATGGTCATGAMSAVIAPVREPALLKPAVLWLLLLAPLFFSTYGFATWVTSQRDDVGTLVFAWESHMPFLAWTIVPYWSIDLLYGLSLLLPNSRDELKRHALRLLTAQVIAVSCFLLWPLTFTFPRPEMDGVFGWMFDVLAGFDKPFNQAPSLHIALLVVLWVCYQRHLQGFWRWLMHGWFALIGVSVLTTYQHHFVDVPTGALAGWLCVWLWPLDRPSPLRSARLTRDPARLRLALRYGVGAAVFFTLAFAFGGAWLWLIWPAVAVLMVALNYLAFGASGFQKREDGRLSPAVRWLLAPYLAAAWINSRVWTRKHPQPDQVADDVWLGRIPTSASLKSSPFTGVLDLCAELSMDSTAIAYRSLPVLDLTAPTAEQCLNAAQMIEQLRQHGPVLVCCALGYSRSATAAAAWLLDSGRADSVDAAIAQIRQARPGIVLHPAHRQALEQLSKGFGAWSNANANANANA
D1-35_046641758ynbCCOG2267putative protein YnbCATGCGCGAAGCCCAGGAACTGACGTTCACCACCCACGATGGCGTGGAGTTGTTCTACCGGCACTGGCCGGCTGTCGAGGCCGCGACGGGTGAACCCCGTCAGGCTGTGTTGTTGTTTCACCGCGGCCATGAACACTCCGGGCGCATCGCGCATCTGGTGGATGAGCTGGATCTGCCCGGGTTCGAGTTTTTCGCCTGGGACGCACGCGGCCACGGCCAGTCGCCTGGCGAACGCGGCGACAGCCCGAGTTTTGCCACCAGCGCGCGGGATGTGCAGACCTTTTGTGACCACATCGGCGCAACGCACCAGATCGATGAACAGAACATCGCCGTGGTGGCGCAAAGCGTCGGTGCAGTGATCGCATCCACCTGGGTCCACGATTACGCACCGCGCATTCGCTCGCTGGTGCTGGCGTCGCCGGCCTTCAAGGTCAAGCTCTACGTGCCGTTTGCCCGTCCGGGCCTGGCATTGATGCGCAAGTTCCGTGGCAACTTTTTCGTCAACAGCTACGTCAAGGCGAAGTTCCTCAGTCATGACCCGGAGCGGGTGGCGTCCTACGACAGCGATCCGCTGATCACCAAGGCCATTTCGGTGAATGTGCTACTGGGCCTGTACGAAGCCGCCGATCGGGTTGTCGCCGACGCGCAGGCAATCCAGGTGCCGACGCAGCTGTTGATCTCCGGTTCGGACTTTGTGGTGCATCGCAAACCCCAGGAGCAGTTCTTCGAGCGGCTGGGCAGCCTGCACAAGGAAAAACACATCCTGCCGGGTTTCTTCCACGACACCCTCGGCGAGAAAAATCGCGCCCCGGCGATTGCCAGTGCCCGACGTTTTATCCTGCAAAATTTTGCCCGACCGCTGGAGCGCCCTTCCCTGCTGGACGCCGATCGCCTGGGCGTGACCTGCGCCGAAGCCGAAACCCTGGCCACGCCGTTGCCCCACAACTCGTTGCGCGATCTTTACTGGCGCATGACCCGCGCCAGCATGCGTTTTGGCAGCAAGTTGTCCGCCGGGGTAAAGCTGGGCTTCGACACCGGATTCGACTCCGGCAGTACCCTGGATTACGTCTATCGCAACCGGCCCACCGGCACGTCTGCGCTGGGCAAGATGATCGACCAGAACTACCTGAACTCCATCGGCTGGCGTGGCATTCGCCAACGCAAGTTGCACGTCGAAGAATTGCTGCGCCTGGCGATGGGCAAATTGCGCGAGCAGGACCGCGAAGTGCGCATCGTCGACATCGCCGCCGGACACGGCCGTTACATTCTCGAGGCGCTGCAAGGCGTCAGCCCGTTGCCGGAGTCGATCCTGCTGCGCGACTACAGCGACATCAACGTGCGCGACGGCAGTGCGCTGATCGTTGAAAAAGGTTTGGGCGATATCGCTCGATTCGTCAAAGGCGATGCCTTCGACCGTCAGGATCTCGCCGCCCTGGAACCCAAGCCGACCCTCGCCGTGGTGTCGGGCCTGTATGAGTTGTTCGCCGATAACCAGATGGTCGCGGGCTCTCTGGCCGGCCTGGCCGAAGCGGTCGAGCCAGGTGGTTTCCTGGTCTACACCGGCCAGCCGTGGCACCCGCAGCTGGAATTGATCGCGCGCGCCCTGACCAGCCACCGCGCTGGCCAGGCCTGGGTGATGCGTCGGCGCACTCAAGCGGAAATGGACCAACTGGTTGAGGCGGCGGGTTTCCGCAAGATCACCCTGCGGGTCGATGAGTGGGGCATCTTCAGCGTTTCGCTGGCTCAGCGAGTCCAGTAAMREAQELTFTTHDGVELFYRHWPAVEAATGEPRQAVLLFHRGHEHSGRIAHLVDELDLPGFEFFAWDARGHGQSPGERGDSPSFATSARDVQTFCDHIGATHQIDEQNIAVVAQSVGAVIASTWVHDYAPRIRSLVLASPAFKVKLYVPFARPGLALMRKFRGNFFVNSYVKAKFLSHDPERVASYDSDPLITKAISVNVLLGLYEAADRVVADAQAIQVPTQLLISGSDFVVHRKPQEQFFERLGSLHKEKHILPGFFHDTLGEKNRAPAIASARRFILQNFARPLERPSLLDADRLGVTCAEAETLATPLPHNSLRDLYWRMTRASMRFGSKLSAGVKLGFDTGFDSGSTLDYVYRNRPTGTSALGKMIDQNYLNSIGWRGIRQRKLHVEELLRLAMGKLREQDREVRIVDIAAGHGRYILEALQGVSPLPESILLRDYSDINVRDGSALIVEKGLGDIARFVKGDAFDRQDLAALEPKPTLAVVSGLYELFADNQMVAGSLAGLAEAVEPGGFLVYTGQPWHPQLELIARALTSHRAGQAWVMRRRTQAEMDQLVEAAGFRKITLRVDEWGIFSVSLAQRVQNANANANANA
D1-35_04665624ynbACOG0558Inner membrane protein YnbAATGCCTTCCATTTATCAACTCAAACCCGCCTTTCAGAATTTGCTTCGCCCCACCGTCCAACGTCTTTACAACAAGGGTGTCACCGCCAACCAGGTCACGCTTCTGGCGGGTGCTGTGTCGGTGTTGGTGGGGGCGGTAATTGCGTGGTTCGCCAGTCATCCGTGGGTTTTTATCCTGGTACCTGTGTGGATGTTCCTGCGCATGGCCTTGAACGCGGTGGATGGCATGCTGGCGCGGGAGTTTGGTCAGCAATCGAATCTGGGCGCGTACCTCAATGAGCTATGCGATATCATCGCCGACGCTGCCTTGATCCTGCCTTTTGCCTTGTTTGCCGATACCAGCCTGTTGCTCGTGTTGTTGGTCACGCTGTTGGCGTTGTTCAGCGAATACGCCGGCGTGCTGGGGGCGATGGTCGGGGCTTCGCGGCGTTATGACGGGCCGATGGGCAAGAGTGATCGCGCCTTTGTGTTCGGCGTGCTCGCGACCGGTATTGCCCTGGGTTGGCTCGGGGCGCTGTGGGTTGATGGTGTGATGGCGGTGGTTGCCGCCCTGCTGGTTTATACCTTGGTCAATCGGGTCCGTCATGGCCTGAGTCAGGTGTCGGAAAACGCTCCCTCAGCATAAMPSIYQLKPAFQNLLRPTVQRLYNKGVTANQVTLLAGAVSVLVGAVIAWFASHPWVFILVPVWMFLRMALNAVDGMLAREFGQQSNLGAYLNELCDIIADAALILPFALFADTSLLLVLLVTLLALFSEYAGVLGAMVGASRRYDGPMGKSDRAFVFGVLATGIALGWLGALWVDGVMAVVAALLVYTLVNRVRHGLSQVSENAPSAPGPT0007705_1857DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_PHOSPHATIDYLTRANSFERASE_ACTIVITY,PGPT0007705-pgsA|PGS1-K00995NANA
D1-35_04666459hypothetical proteinATGCTGCGATTGGATTGGCTCATCAACCACATGAATAAATGCAACCTGATGGCCAAGTGGCTTTATCGAGAGTTCAACTACGAATTTGCGCAGCAGTCGCTCGCCAGTTGGCAGGAAGAGTTTGCAGCGGGGCAACGCGATGGCCGCTGGAAATGCCTGATCGCCCTGGAACACGACCAGTTGTTGGGCGGCGCCTCGCTGGCGGGAGACGATCTACCTGAGCGCCCCGACCTCGGCCCTTGGCTTGCTTGCGTCTTCACCAGCCCGAATGCCCGCCGCAGGGGGCTCGCGGCGCAGTTGATCGACGGCATCTGTAGCCATGCGAAAGAGGCAGGCTATACCACCTTGTTCCTGCACACCCACAGCCAACGGGACTATTACGCCAGGCAGGGCTGGGAAGTGCTGGAGCGCTTCGAGGCTTGGGGCAAAGAGCAATGGCTCATGGGACGGTGTTTATGAMLRLDWLINHMNKCNLMAKWLYREFNYEFAQQSLASWQEEFAAGQRDGRWKCLIALEHDQLLGGASLAGDDLPERPDLGPWLACVFTSPNARRRGLAAQLIDGICSHAKEAGYTTLFLHTHSQRDYYARQGWEVLERFEAWGKEQWLMGRCLNANANANANA
D1-35_04667237hypothetical proteinATGAACCACCCCACCCTGACCTTCGCCCAACTCCACCCCGGCGATCGCTTCACCCAACCCGCCGATCACCGCCTGTTCACCAAACTCACCGACCACACCGCCCGTGAGCACAGCGTGCATTCGATCAATCTGAAGGAGGAAGGCTTCGGCTACACCGAAGACCCCATCGAAACGTTGTCCGGGGATGCCCCGGTCGAGTACGTCCCGGTCGGCGGGCCGCTGCGTGCTGGGGGCTAGMNHPTLTFAQLHPGDRFTQPADHRLFTKLTDHTAREHSVHSINLKEEGFGYTEDPIETLSGDAPVEYVPVGGPLRAGGNANANANANA
D1-35_04668225hypothetical proteinATGAAAGCCAAATGCACGCTCAACAACCTATACGACGGCGCCCTCTCGCCGAAAACACTCACTCGCCTGAAACGCTACATTCGCGCCGATGGCGAACTGAATTTGGAAAAAGGCAAAGAATATGTCGTCTACGGCATAGAATTCTGGGACAACTGCCCTTGGCTATATATATGCCGCGATAACTGCGAGAAATACCCAGCCCCCGTTGCCGCGGATTTTTTTTGAMKAKCTLNNLYDGALSPKTLTRLKRYIRADGELNLEKGKEYVVYGIEFWDNCPWLYICRDNCEKYPAPVAADFFNANANANANA
D1-35_046691224hypothetical proteinGTGACGATCCGGGTCGATGGCCTCGACCACATCGCCCTGGGCATTACGCCGGTAGGTCCACACGGCTTTGCCGCGCTGTCGGGCGTGCAGGAAACCGTTGCGGTATTCGTAGGACGTCGGCTCGCCTTCAGGCGGAATCAGCGCCACCAGCCGTCCGGCTTCGTCGTAGCGGTATTCGGTGACCGCGCCCAGCGGATCCTGCTCGGCGGTCAGCCGACCCTGCTCGTCATAGGCCTTGAGCTGTTCGCCACCAGCGGGATCGACCTGGCGCACCAGCCGCGCCCGGTCGTCGTGGACGTACACTTCCTGGCTGCCATCCTGATGCCGGACCGTGACGCTGCCGTCTTCGCCCCAGGCGTAGCGGCTGTCTATCTGCGCGAACGACGCCCAGTGCCGCACGCAGCGCGCCGCCGGGCCGAGGCCTTGCCATTCCCAGTAGAAACTCGCGCCGCCGGCCAGTTGCCGCTGGAGGATGACGTGCTGGTCGTCGTAGTCGTAGCGCTCGCTTTCGCCAGCGGCATTGGTCGCCTCGATGAGTCGGAAACGGCCGTCGTAGCGGTAGGTCACCAGCGTCTGTTCGGTGCGCCAGGCATCGTCCGGATGCTGTTTCGGGTCAAAACTCTGATAGTCGATGGCGACCAGGTGGCGATGCTCGTAGCGCAACCGCAGCCCGCGCCGGGCGCCGTTGTCCAGGCGGCTGATGTCGCCGTAGATGTTGCGCTGGACGGTCAGGCGGTTGTCGTACCGATCGCTCAGCGCTGTCAGATGCCCGTCGCGAAAGTGCAGGAAAGGGGCGTCTTCGCCGGGCTGGGCGATGATCAGTTCGTCCGGCTCGCAGCTCAGGTAGATCGCCGCGCGGGCCAGGCTGTTGTGGATCGCCGGGCGTTGCAGGTTGGGGCGAGGGAAGGTGGTGCGGCGGTTTTCCTGATCGATCCAGGTCACCTGTTCGCCCTCGATCACCAGGCGATGGGCCAGGCCATGGCTCCAGCCACGGCCGAGGCCGACGTCCAGCTCGGCGGCGCTGGTGCGGTAGAGGCGGGTGAAGACGAAGGGCAAGCGCCCGTCGAGGGTGCCGTCCTCCAGGGTCAGCAGTTCCTCGCCGGTGACCATCGACACCGGGCAGCCGTCGGTGCGGGTCTGGGCGGCGCTGTCGGCGGGGTCGCCGTTGGGGTTTTTCGATGGGGTCGGGGCGTCGTCGTGGGGTTCGTACTTGCTCAGTCGTGAMTIRVDGLDHIALGITPVGPHGFAALSGVQETVAVFVGRRLAFRRNQRHQPSGFVVAVFGDRAQRILLGGQPTLLVIGLELFATSGIDLAHQPRPVVVDVHFLAAILMPDRDAAVFAPGVAAVYLRERRPVPHAARRRAEALPFPVETRAAGQLPLEDDVLVVVVVALAFASGIGRLDESETAVVAVGHQRLFGAPGIVRMLFRVKTLIVDGDQVAMLVAQPQPAPGAVVQAADVAVDVALDGQAVVVPIAQRCQMPVAKVQERGVFAGLGDDQFVRLAAQVDRRAGQAVVDRRALQVGAREGGAAVFLIDPGHLFALDHQAMGQAMAPATAEADVQLGGAGAVEAGEDEGQAPVEGAVLQGQQFLAGDHRHRAAVGAGLGGAVGGVAVGVFRWGRGVVVGFVLAQSNANANANANA
D1-35_04670333hypothetical proteinATGGCGCAACACTTTGCCGGTCAGGCGCAGACCCAGACCCAGGCCGCCGGTAAAACGCGCCAACAAAAAGTTGATCAGAATGGCGGCGCGTATTTCGCCCATGACTTCAGCCATGTACTGCGGCGGCAACATCCGCAGCCAACTGGTGAAGGCCGCCGTGTAGACCAAGAGCAACGGCTCGTCGCTCAAGATCATCAAGGCTTTCGCTATCGCCTCTGCCGGGGCTTTCAGCAGCTGCTCAAGCTCGACCTCGGTGAGGTACTCCAGCAATTTTTCGCTGTTGGCCCGCAGGTCCGCCAACAGATCGAAGACCTGCTTGATATCGTCCCATAGMAQHFAGQAQTQTQAAGKTRQQKVDQNGGAYFAHDFSHVLRRQHPQPTGEGRRVDQEQRLVAQDHQGFRYRLCRGFQQLLKLDLGEVLQQFFAVGPQVRQQIEDLLDIVPNANANANANA
D1-35_04672360hypothetical proteinATGGCCAAAATTACACCGAACCCCCCAGCTATAGATGGACATGAGCCTCGCGCTCAGTCTGCTCGCAACAAAAAAGTCGATGATGCTACCAACCGGGCTTTCGATTCCGATCTCAAGCCTACCCCTGAAAACGAAACGTCTAACAAGCCCGACGCCTTGTTTACCGTCGCGCCTGATGTGGACATGGAGTGCCTGCTCGCGAACCTGAGCGAAAGCCTGGCTTCTGCCAATGCGATGATCAATGATCTGGCATTCGATCTGGAAGGCTCGCGACGGCATGTCGCGTTGGGGATCTTGCAGTTGATTGAGCTAAGTGAGTTGTTGGCGAACCGGGCTTTGGATATTGTTGAGATGAGGTAGMAKITPNPPAIDGHEPRAQSARNKKVDDATNRAFDSDLKPTPENETSNKPDALFTVAPDVDMECLLANLSESLASANAMINDLAFDLEGSRRHVALGILQLIELSELLANRALDIVEMRNANANANANA
D1-35_04673468hypothetical proteinATGCCGCCGAAGCCATCAAGCACAACTGGGGTCAAACATGTCACCGATTTCCTGCTGGAACTAGGCGCAGGCTTTGCCTTCGTCGGTCAACAGGTGTTGCTGGATGTAGGCGGCGAGTTCTTCATCGACCTGTTGTTCTATCACCTCAAGCTACGCTGCTACGTGGTGATCGAACTCAAGGCAGGCAAGTTCAAACCCGAACATCTGGGGCAGCTAAGTTTTTACCTCACCGCAGTGGATGCCCAGCTCAAACACCCTCAGGACGGCCCGACCATTGGTCTTCTGCTGTGCAAAAGCAAGAATAAGGTAGTGGCTGAATATGCGCTGCGTGATAGCGCACGTCCCATCGGTGTAGCTGAATACCAATTGGTGGAGTCTCTGCCCGCGGAACTACAAACCAGCCTGCCTAGCATTGAACAGATCGAGCGAGAGCTGGCAAGCGGCAAGTCCATGGAAGACGATTCGTAAMPPKPSSTTGVKHVTDFLLELGAGFAFVGQQVLLDVGGEFFIDLLFYHLKLRCYVVIELKAGKFKPEHLGQLSFYLTAVDAQLKHPQDGPTIGLLLCKSKNKVVAEYALRDSARPIGVAEYQLVESLPAELQTSLPSIEQIERELASGKSMEDDSNANANANANA
D1-35_04674768prtR_2COG2932HTH-type transcriptional regulator PrtRTTGCTGAAAACACAGTCGGTCCTAAACTTTCCGTTTATGAAAATCATATCCAGCGGCGATCGCTTCAGAGCCCTTCTCAAAGAAGCCAACATCCGATCTGTCGACTTCGCCAGGCTTTACGGCGTGAAGTCGCAGCACGTAAACAACTGGTTCAACCGCGGCATCCCGCCGGGGCGCATCCACAACATTGCCCGCATGCTGACCGTCAGCCCTGAATGGCTCGCCAGCGGTGAAGGCCCGCAAACCCCGTTGGGGCTCGGCCCGGGCATCACCTACGACGCCGCGGAAACCCAGGGCGTCTACAGCGTGCCGGAAACCCTCGACATCGAACTGCCCTTCCACAAGGAAGCGCCCATCGCCCCCGGCGAAACCACAACGCACATCATCGAAGACCCCGACCAGTCCATCCGTCTGCCCCGCAGCCACCTCGAATCCCTCGACATCAACCCCAACGACGTCATTTGCATCACCATGGTCGGCGACAGCATGGCCGAACGCATCGAAGACGGTTCCACAGTCGCCATCGACCGCGGCCTGACCCAAGTCGTCGACGGCCAGATCTACGCCCTCGAACACGACGGCATGCTCCGCATCAAATACCTGCACCGCATCCCCGGCAACCGACTGCGCCTGCGCAGCCAGAACAGCGCCGCCTACCCCGACGAAGTCTTCAGCGCCGAACAGATCGAAGCCCAGCACATCCGCGTGATCGGCTGGGTCTTCTGGTGGTCCACCCTCTCGAAAAAACGACCGCAGGTGTTCGATTGAMLKTQSVLNFPFMKIISSGDRFRALLKEANIRSVDFARLYGVKSQHVNNWFNRGIPPGRIHNIARMLTVSPEWLASGEGPQTPLGLGPGITYDAAETQGVYSVPETLDIELPFHKEAPIAPGETTTHIIEDPDQSIRLPRSHLESLDINPNDVICITMVGDSMAERIEDGSTVAIDRGLTQVVDGQIYALEHDGMLRIKYLHRIPGNRLRLRSQNSAAYPDEVFSAEQIEAQHIRVIGWVFWWSTLSKKRPQVFDNANANANANA
D1-35_04675528ppaCOG0221Inorganic pyrophosphataseATGAGCTACAGCAAGATTCCGGCTGGCAAAGACCTGCCGAACGACATCTACGTCGCAATCGAAATCCCGGCCAACCACGCCCCGATCAAATACGAAATCGACAAAGACAGCGATTGCCTGTTCGTTGACCGTTTCATGGCCACCCCGATGTTCTACCCGGCCAACTACGGTTACATCCCCAACACCCTGGCCGACGACGGCGACCCCCTCGACGTACTGGTCGTGACCCCTTACCCGGTTGCGCCAGGCTCGGTCATCCGCGCCCGTCCTGTCGGCATCCTGAACATGACCGACGACGGCGGCGGCGATGCCAAAGTCATCGCAGTACCACACGACAAACTGTCGCAACTGTATGTCGACGTGAAGGAATACACCGACCTGCCAGCCCTGCTGATCCAGCAGATCGAACACTTCTTCGAGAACTACAAAGACCTCGAAAAAGGCAAGTGGGTCAAGATCGAAGGCTGGGCCGGCGCCGACGCCGCCCGCGAAGCGATCACCAAGTCGGTTGCCGCCTACAAGGGCTGAMSYSKIPAGKDLPNDIYVAIEIPANHAPIKYEIDKDSDCLFVDRFMATPMFYPANYGYIPNTLADDGDPLDVLVVTPYPVAPGSVIRARPVGILNMTDDGGGDAKVIAVPHDKLSQLYVDVKEYTDLPALLIQQIEHFFENYKDLEKGKWVKIEGWAGADAAREAITKSVAAYKGPGPT0002600_3710DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-PHOSPHATASE_ACTIVITYP-SOLUBILISATION-INORGANIC_PHOSPHATASE,PGPT0002600-ppa-K01507NANA
D1-35_04676813mtfACOG3228Protein MtfAATGTGGTCTCTCAGCACCTGGCGTCGCCGCCGCACCCTGGCCAAACACCCCGTTGCCGACGAAACCTGGCAGCGGGTGCGCCATCAACTGAGCTTTCTCGACGGTATCAGTGCCGAGGAAGACCGATGGCTGCGTGACGCCAGCGTGCTGTTCCTGCACGACAAACACCTCACCGCCCTGCCGGGCGTCGAACTGCACCAGGAACAACGCCTGTTGCTTGCCGCCCAGGCGCAACTGCCGCTGATGCACCTCGGCGAGTTGAACTGGTACCAGGGCTTCCACGAAATCGTTCTCTACCCGGACGACTTCCTCAGCCCCCAGCGCTACCGCGACGCCAGCGGCATCGAACACGAGTGGGACGGCGAACACAGCGGCGAAGCCTGGCCCCAGGGCCCGATCATCCTGGCCTGGGACGGCGTGATGGCGAGCGGCGGCTGGGAAGGCTACAACCTGGTGATCCACGAACTGGCGCACAAACTCGACATGCTCAACGGCGACGCCAACGGCCTGCCGCCGCTGCACGCCGACATGCGCGTCAGCGACTGGGCGCAAGCCATGCAAGAGGCCTTCGACGACCTCAACCGCCAACTGGACCTGAACCCCGACGCAGAAACCGTCATCGATCCCTACGCGGCGGAAAACCCGGCGGAGTTCTTCGCCGTCACCAGCGAGTACTTCTTCAGCGCCCCGGACCTGCTGCATCAGGCCTACCCAAAGGTGTACGAACAGCTCAAGGCGTTCTACCGCCAGGACCCGTTGGCCCGGCTGCGGCAACTTCAGGCCGAAGATCCGGTCTATCAGGCGTCATACTAAMWSLSTWRRRRTLAKHPVADETWQRVRHQLSFLDGISAEEDRWLRDASVLFLHDKHLTALPGVELHQEQRLLLAAQAQLPLMHLGELNWYQGFHEIVLYPDDFLSPQRYRDASGIEHEWDGEHSGEAWPQGPIILAWDGVMASGGWEGYNLVIHELAHKLDMLNGDANGLPPLHADMRVSDWAQAMQEAFDDLNRQLDLNPDAETVIDPYAAENPAEFFAVTSEYFFSAPDLLHQAYPKVYEQLKAFYRQDPLARLRQLQAEDPVYQASYNANANANANA
D1-35_04677657dedACOG0586Protein DedAATGGACTTCAACCCACTCGACCTCATTCTGCATCTCGACGTCTACCTCGACATGCTGGTGACCAACTACGGGACGTGGATCTACGCCATCCTGTTCCTGGTGATCTTCTGTGAAACCGGCCTGGTGGTGATGCCGTTCCTGCCAGGCGATTCCCTGTTGTTCATCGCCGGCGCGGTGGCAGCCGGTGGCGCCATGGACCCGCTGCTGCTAGGAGGGCTGTTGATGCTCGCGGCGATCCTCGGCGACAGCACCAACTACCTCATTGGTCGCACCGCCGGCGAGAAGCTGTTCAGCAACCCGAACTCGAAAATCTTCCGCCGCGACTACTTGCAACAGACCCACGACTTCTACGACAAACACGGCGGCAAGACCGTGACCCTGGCGCGCTTCCTGCCGATCATCCGCACCTTCGCGCCCTTCGTCGCCGGCGTCGGCAGAATGCCCTACCCGCGTTTCTTCGGCTTCAGCGTCCTCGGCACTGTGCTCTGGGTCGGTGGCCTGGTGACCCTCGGCTACTTCTTCGGCAACGTGCCCTTCATCAAGCAGAACCTGTCGCTGCTGGTAGTGGGGATCATCCTGCTGTCGCTGCTGCCGATGATCATCGGCCTGGTACGCAGCAAAATGAGCCAGCGCGGCTCGAAAGCCGAGACGCGCTGAMDFNPLDLILHLDVYLDMLVTNYGTWIYAILFLVIFCETGLVVMPFLPGDSLLFIAGAVAAGGAMDPLLLGGLLMLAAILGDSTNYLIGRTAGEKLFSNPNSKIFRRDYLQQTHDFYDKHGGKTVTLARFLPIIRTFAPFVAGVGRMPYPRFFGFSVLGTVLWVGGLVTLGYFFGNVPFIKQNLSLLVVGIILLSLLPMIIGLVRSKMSQRGSKAETRPGPT0004890_1670DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_SELENIUM_RESISTANCESELENIUM_RESISTANCE-SELENIUM_TRANSPORT,PGPT0004890-dedA-K03975NANA
D1-35_04678462hypothetical proteinATGCGGATTATCCAAGCGACGCTGGAACACCTGGACCTGCTGACCCCATTGTTCGTCAAATACCGGGAGTTCTATGGCTCGCTGCCCTATCCGGACTCGTCCCGGGCGTTCCTGGAAAAACGCCTGCGCCGCAAGGAATCGGTGATCTACCTGGCCCTGCCGGATGACGACGACAGCCGGTTGCTGGGGTTCTGCCAGCTCTACCCAAGCTACTCGTCGCTGTCGCTCAAGCGCGTATGGATCCTCAACGACATCTACGTCGCCGAAGACGCCCGCCGCCAGCTCGTCGCCGACAACCTGATCCGCACCGCAAAAAAAATGGCCAAGGAAACCAACGCCGTGCGCATGCGCGTCTCCACCAGCAGCAACAACGACGTGGCGCAGAAAACCTACGAATCGATCGGCTTCAAGGAAGACACCGAGTTCAAGAACTACGTGTTGCCGATCAGCGAAGGGCTTTGAMRIIQATLEHLDLLTPLFVKYREFYGSLPYPDSSRAFLEKRLRRKESVIYLALPDDDDSRLLGFCQLYPSYSSLSLKRVWILNDIYVAEDARRQLVADNLIRTAKKMAKETNAVRMRVSTSSNNDVAQKTYESIGFKEDTEFKNYVLPISEGLNANANANANA
D1-35_04679840eutCCOG4302Ethanolamine ammonia-lyase light chainATGAGTGAGTTGCCCATGGATAAAAAACCTGTCGATCCACAAAACCCCTGGCTGAATCTGCGCAACCTGACCCCGGCACGCATCGCCCTGGGCCGCACCGGCACCAGCCTGCCGACCTCGGCGCAACTGGATTTCCAGTTCGCCCACGCCCAGGCCCGCGACGCCGTGCACCTGGCGTTCGATCACCAGGGCATCCGTGCACAACTCACGGAGCGCGGCCACGAAAGCCTGCTGCTTCACAGCGCGGCGGCAGATCGAAACAGCTATCTGCAGCGTCCGGACCTGGGCCGACGGCTCGACGATGCTTCCGTACAGATCCTGCAGGACTACGCGGCGGCCCACCCGGGCGGCGTGGATTTGGCTATCGTGGTGGCTGACGGCCTGTCGGCGCTGGCGGTGCATCGCCATACGCTGCCGTTCCTGGCGCGACTGGAAGAACAGATCACCGCTGAAGGCTGGTCTGTGTCGCCAATCGTTTTGGTGGAACAAGGCCGGGTGGCCGTGGCTGATGAAGTGGCCGAACGGCTCGGCGCGAAGATGTCGGTGATCCTGATCGGCGAACGCCCCGGCCTCAGCTCCCCCGATAGCCTGGGACTTTATTTCACCTACGCCCCCAAAGTTGGCCTGAACGACGCCTATCGCAACTGCATCTCCAATGTCCGCCTCGAAGGCCTGAGCTACGGCATGGCGGCGCATCGCCTGATCTACCTGATGCGCGAGGCCTGTCGCCGGCAGCTTTCGGGGGTCAATCTGAAGGACGAAGCCCAGGTTCACACTCTAGAGGCGGAAAACGGTGCCGATATGAAAGGTAATTTCCTACTGGCGCCGCCCCCAAGCTGAMSELPMDKKPVDPQNPWLNLRNLTPARIALGRTGTSLPTSAQLDFQFAHAQARDAVHLAFDHQGIRAQLTERGHESLLLHSAAADRNSYLQRPDLGRRLDDASVQILQDYAAAHPGGVDLAIVVADGLSALAVHRHTLPFLARLEEQITAEGWSVSPIVLVEQGRVAVADEVAERLGAKMSVILIGERPGLSSPDSLGLYFTYAPKVGLNDAYRNCISNVRLEGLSYGMAAHRLIYLMREACRRQLSGVNLKDEAQVHTLEAENGADMKGNFLLAPPPSPGPT0000610_413DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_GLYCEROPHOSPHOLIPID-ETHANOLAMINE_AMMONIA-LYASE_ACTIVITY,PGPT0000610-eutC-K03736NANA
D1-35_046801395eutBCOG4303Ethanolamine ammonia-lyase heavy chainATGGCCAGCTTTGCACACACGGTCGGCGCCCAGACCTACCGCTTCGACAGCCTCAAAGACCTGATGGCCAAGGCCAGCCCGGCGCGTTCCGGGGATTTCCTGGCCGAGATCGCCGCGCTCAACGATGGCGAGAGGGTGGCCGCGCAAATGGCCTTGGCCGACTTGCCACTTAGTCATTTCCTGCAGGAAATGCTGATTCCCTACGAGGCCGACGAGGTCACCCGGCTGATCGTCGACACCCATGACAAACAAGCCTTCGCCGCCGTCAGCCACCTCACGGTCGGCGGCTTTCGCGACTGGCTCCTTAGCGACGCCGCCGACGAACACAGCCTGCGGGCGCTGGCTCCCGGGCTGACGCCGGAAATGGTCGCCGCCGTCTCGAAGATCATGCGCGTGCAGGACCTGGTACTGGTTGCACAGAAAATCCGCGTGGTCACCAAGTTCCGCGGCACCCTTGGCCTGCGCGGGCGCCTGTCCACTCGCCTGCAACCGAACCATCCGACCGACGAACCCGCCGGCATCGCCGCAAGCATCCTCGACGGCCTGCTCTTCGGCAATGGCGACGCCATGATCGGCATCAACCCGGCCACCGACAGCACGGCCTCGATCTGCGCGATGCTGGAAATGCTCGACGCCATCATCCAGCGCTACGACATCCCGACCCAAGGCTGCGTGCTGACCCACGTCACCACCTCCATCGAGGCGGCAAACCGCGGCGTGCCGCTGGATCTGGTGTTCCAGTCCATCGCCGGCACCGAAGCGGCCAACGCCAGTTTCGGCATCAGCCTGAGCCTGTTAAAAGAAGGCTACGACGCCGGGCTCAGCCTGAAGCGTGGCACCCTCGGCAACAACCTGATGTATTTCGAAACCGGCCAGGGCAGCGCGCTGTCGGCCAACGCCCACCACGGTGTCGATCAACAGACCTGCGAGACCCGAGCCTACGCCGTGGCGCGCCATTTCAACCCGTTCCTGGTGAACACGGTGGTCGGCTTCATCGGCCCGGAATACCTGTACAACGGCAAACAGATCATCCGCGCCGGCCTCGAAGACCATTTCTGCGGCAAGCTCCTGGGCGTGCCGATGGGTTGTGACATCTGCTACACCAACCACGCCGAAGCCGACCAGGACGACATGGACACCCTGCTGACCCTGCTGGGCGTGGCCGGGATCAACTTCATCATGGGCATCCCCGGCTCCGACGACATCATGCTCAACTACCAGACCACCTCGTTCCACGACGCCCTCTACGCCCGCCAGACCCTGGGCCTGAAACCGGCGCCGGAATTCGAGCAATGGCTGGCGAACATGGGCATCTTCACCCAGGCCGATGGTCGGGTGCGGTTCGGTGACAACCTGCCGCCGGCGTTTCGTCACGCCTTGGCGCATTTGGGATGAMASFAHTVGAQTYRFDSLKDLMAKASPARSGDFLAEIAALNDGERVAAQMALADLPLSHFLQEMLIPYEADEVTRLIVDTHDKQAFAAVSHLTVGGFRDWLLSDAADEHSLRALAPGLTPEMVAAVSKIMRVQDLVLVAQKIRVVTKFRGTLGLRGRLSTRLQPNHPTDEPAGIAASILDGLLFGNGDAMIGINPATDSTASICAMLEMLDAIIQRYDIPTQGCVLTHVTTSIEAANRGVPLDLVFQSIAGTEAANASFGISLSLLKEGYDAGLSLKRGTLGNNLMYFETGQGSALSANAHHGVDQQTCETRAYAVARHFNPFLVNTVVGFIGPEYLYNGKQIIRAGLEDHFCGKLLGVPMGCDICYTNHAEADQDDMDTLLTLLGVAGINFIMGIPGSDDIMLNYQTTSFHDALYARQTLGLKPAPEFEQWLANMGIFTQADGRVRFGDNLPPAFRHALAHLGPGPT0000605_514DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_GLYCEROPHOSPHOLIPID-ETHANOLAMINE_AMMONIA-LYASE_ACTIVITY,PGPT0000605-eutB-K03735NANA
D1-35_046811449potE_2Putrescine transporter PotEATGCCAAGCGATCATGCAAACCCGCAACCGGCAACGTCCTCGGTCGACTTTGAAAAAGTCGGCTCCGAATATTTCCAACAACGCGAGCTGAAAAAAGGCGCGGCAGGCTGGGTCCTGCTGGTGGGGCTGGGGGTGGCGTATGTCATCTCCGGCGACTACGCCGGCTGGAACTTCGGCCTGGCCCAGGGCGGTTGGGGCGGGATGTTCCTCGCCACGCTGCTGATGGCCGCGATGTACCTGTGCATGTGTTTTTCCCTCGCCGAACTGTCCTCGATGATCCCCACCGCTGGCGGCGGCTACGGCTTTGCCCGCAGCGCATTCGGGCCTTGGGGCGGATTTCTCACCGGCACGGCGATTCTCATCGAATACGCCATCGCCCCGGCGGCGATTGCCGTGTTCATCGGTGCTTATTGCCAATCGCTGTTCGGGATTGGCGGCTGGATGATCTACCTGGCGTTCTACATCATCTTCATCGCCATCCACATATTCGGGGTCGGCGAAGCCCTCAAGCTGATGTTCATCATCACTGCTGTCGCCGCCTTGGCGCTGGGGGTTTTTCTGGTGGCGATGGTGCCGCACTTCAACGTCGCCAACCTGCTGGACATCCCGGTCACCGAGGCCAAGGGCGCCAGCCCGTTCTTGCCCTTCGGCTACGTCGGCGTCTGGGCGGCGATTCCTTACGCGATCTGGTTTTTCCTCGCCGTCGAGGGCGTGCCACTGGCCGCTGAAGAAACCAAGAACCCCAAGCGCGACCTGCCACGTGGCCTGATTGGCGCCATGCTGGTGCTGGTGGCGTTCGCCCTGCTGATCCTGGTGATCGGCCCCGGCGGCGCAGGCTCCAACGCGCTGATGGCGTCCGGCAACCCACTGGTGGAAGCCCTGGCCAAGGCCTATGGCGGCTCGACCTGGATGGGCAGCTTCGTCAACCTCGTCGGCCTGGCCGGTCTGATCGCCAGTTTCTTCTCGATCATTTACGCCTACTCGCGGCAGATCTTCGCCTTGTCCCGCGCCGGCTACCTGCCGCGCAAACTCTCGGAAACCAATAAAAGCAAGGCACCGGTGTTGGCGCTGGTGATTCCCGGCATCATCGGTTTCGGCCTGTCCCTGACTGGCCAGGGCGACCTGCTGATTCTGGTGGCGGTGTTCGGCGCGACCATTTCCTACGTGCTGATGATGGCCGCGCACATCACCCTGCGCATCCGCCGCCCCAAAATGGACCGGCCGTACCGCACGCCGGGCGGGATCTTCACCTCGGGCGTGGCGCTGGTATTGGCTTGCATCGCCGTAGTGGCGGGCTTCCTGGTGGACCCACGAGTGGTGATCGGCGCCGCGATCATCTATGGAGTGTTAATTGCTTACTTTGCTTTCTACAGTCGGCATCACTTGGTAGCAGGCACGCCCGAAGAGGAATTCGCGGCCATTCAAAAAGCCGAAGAAGCCCTGCACTAAMPSDHANPQPATSSVDFEKVGSEYFQQRELKKGAAGWVLLVGLGVAYVISGDYAGWNFGLAQGGWGGMFLATLLMAAMYLCMCFSLAELSSMIPTAGGGYGFARSAFGPWGGFLTGTAILIEYAIAPAAIAVFIGAYCQSLFGIGGWMIYLAFYIIFIAIHIFGVGEALKLMFIITAVAALALGVFLVAMVPHFNVANLLDIPVTEAKGASPFLPFGYVGVWAAIPYAIWFFLAVEGVPLAAEETKNPKRDLPRGLIGAMLVLVAFALLILVIGPGGAGSNALMASGNPLVEALAKAYGGSTWMGSFVNLVGLAGLIASFFSIIYAYSRQIFALSRAGYLPRKLSETNKSKAPVLALVIPGIIGFGLSLTGQGDLLILVAVFGATISYVLMMAAHITLRIRRPKMDRPYRTPGGIFTSGVALVLACIAVVAGFLVDPRVVIGAAIIYGVLIAYFAFYSRHHLVAGTPEEEFAAIQKAEEALHNANANANANA
D1-35_046821521adh_2COG1012Aldehyde dehydrogenaseATGCGTTACGCTCACCCCGGTACTGAAGGCGCTATCGTTTCGTTCAAGGCCAAATACGGTAACTACATCGGCGGCGAGTTCGTCGCGCCTGTCAAAGGTCAGTACTTCACCAACACTTCCCCGGTCAATGGCCAGCCCATTGCAGAATTTCCGCGTTCCACCGCCGAAGACATCGACAAAGCCCTCGACGCTGCCCACGCGGCCGCTGATGCCTGGGGCGCCACGTCGGTCCAGGCGCGTTCGCTGATCCTGCTGAAAATCGCCGACCGCATCGAACAGAACCTCGAAACCCTGGCGATCACCGAATCCTGGGACAACGGCAAGGCCGTGCGTGAAACCCTCAACGCCGACATCCCCCTGGCCGCCGACCACTTCCGCTACTTCGCCGGTTGCCTGCGGGCCCAGGAAGGCGCCGCCGCCGAGATCGACGGCAACACCGTGGCCTATCACATCCATGAACCGCTGGGCGTGGTCGGGCAGATCATCCCGTGGAACTTCCCGCTGTTGATGGCCGCCTGGAAGCTCGCGCCAGCCCTGGCCGCCGGCAACTGCGTGGTGCTCAAGCCCGCCGAACAGACCCCGCTGGGCATCTGCGTGCTCATGGAGCTGATCGGCGACCTGCTGCCGCCGGGCGTGCTGAACGTTGTGCAAGGTTTCGGCAAGGAAGCCGGCGAAGCCCTCGCCACCAGCAAACGCATCGCCAAGATTGCCTTCACCGGCTCGACACCGGTCGGCTCGCACATCATGAAATGCGCCGCCGAAAACATCATCCCGTCCACCGTGGAACTGGGCGGCAAGTCGCCGAACATCTTCTTCGAAGACATCATGCAGGCCGAGCCGAGCTTCATCGAAAAAGCCGCCGAGGGCCTGGTGCTGGCGTTCTTCAACCAGGGTGAAGTCTGCACCTGCCCATCCCGGGCGCTGGTGCAAGAGTCGATCTACGACGAATTCATGCAAGTGGTGATGAAGAAAATCCAGCAGATCAAGCGCGGCGACCCGCTGGACACCGACACCATGGTCGGCGCCCAGGCGTCCGAGCAGCAATTCGACAAGATCCTGTCTTACCTGGAAATCGCCCGGGGCGAAGGCGCCGAGCTGCTGACCGGCGGCAAGGTGGAAAAACTCGAAGGCAACCTGGCCAGTGGTTATTACATCCAGCCGACCCTGCTCAAGGGCACCAACAAGATGCGCGTGTTCCAGGAAGAAATCTTCGGCCCGGTGGTGAGCATCACCACCTTCAAGGACGAAGCCGAAGCCCTGGCGATCGCCAACGACACCGAGTTCGGCCTCGGCGCCGGCCTCTGGACCCGCGACATCAACCGCGCCTACCGCATGGGCCGGGCGATCAAGGCGGGTCGCGTCTGGACCAACTGCTACCACCTGTACCCGGCGCATGCCGCGTTTGGCGGCTACAAGAAGTCCGGCGTGGGGCGTGAGACGCACAAGATGATGCTCGACCATTACCAGCAAACCAAGAACCTGCTGGTGAGCTACGACATCAATCCGTTGGGGTTCTTCTAAMRYAHPGTEGAIVSFKAKYGNYIGGEFVAPVKGQYFTNTSPVNGQPIAEFPRSTAEDIDKALDAAHAAADAWGATSVQARSLILLKIADRIEQNLETLAITESWDNGKAVRETLNADIPLAADHFRYFAGCLRAQEGAAAEIDGNTVAYHIHEPLGVVGQIIPWNFPLLMAAWKLAPALAAGNCVVLKPAEQTPLGICVLMELIGDLLPPGVLNVVQGFGKEAGEALATSKRIAKIAFTGSTPVGSHIMKCAAENIIPSTVELGGKSPNIFFEDIMQAEPSFIEKAAEGLVLAFFNQGEVCTCPSRALVQESIYDEFMQVVMKKIQQIKRGDPLDTDTMVGAQASEQQFDKILSYLEIARGEGAELLTGGKVEKLEGNLASGYYIQPTLLKGTNKMRVFQEEIFGPVVSITTFKDEAEALAIANDTEFGLGAGLWTRDINRAYRMGRAIKAGRVWTNCYHLYPAHAAFGGYKKSGVGRETHKMMLDHYQQTKNLLVSYDINPLGFFPGPT0007176_930DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_METABOLISM,PGPT0007176-aldB-K00138NANA
D1-35_046831905acoR_5COG3284Acetoin catabolism regulatory proteinATGCACAGCAACCATTTGAGTCGCCATGCCCGGCAAGTCCTCACGGTCACCCAGGGCAAGGCCCATTTGCAGGGGCCTGGCAGCGATCCGTCGATTGCCCGTTCCTGGCTGCGCTGCCTCGAGGACTATCACCTCGACCCGGCGCAGAACCTGGCGCCGACCGTGCTCGAGCATGGCCGGTTGCTGGAAAGTCGCGAGCGCCTGCAGCAGGTTCTGCATATCGCCGGTACCGAGATGACCAGCTTGCACCAGCAATTGTCCGGCGCCGGCCATGCGGTGCTGTTGACCGATGCCCGGGGCGTGATCCTCAATTGCGTCACCGCCCCCAGCGAACGGAAGATTTTCGAACGGGCCGGCCTCTGGCTCGGCGCCGACTGGAGCGAAGCCTGTGAAGGCACCAACGGGATCGGTACCTGCCTGGTGGAACGCCAGGCCCTGACCATCCACCAGGAAGAACATTTTCGCGGCCGCCACACCGGCCTGACCTGCTCGGCGAGCCCGGTGTTCGACCCTCATGGCGAGCTGCTGGCGGTGCTCGACGTGTCTTCGGCGCGGCCGGACGTATCGCGCCAGAGCCAGTTTCACACCATGGCCCTGGTCAATCTCTCGGCGAAGATGATCGAGAGCTGTTATTTCCTTCGTTGTTTCGATAATCAATGGCTGCTGCGCTTTCATCTGCAGGCCGAGTCCGTGGGGTTGTTCAGCGAAGGGCTTATGGCGTTCGACGGCGAAGGACGCATCTGTGCAGTCAACCAGAGCGCGCTGAACCTGCTCGGGCACTTTCGCGGTGGCTTGCTCGGCCAGCGGGTCGAGGACTTCTTCGACTGTTCGCTGGATGAGTTACTGGGCCGGGCCAGCGCCCAGGCCAGTGCCAGTTGGCCGCTGCGCACCCGTGACGGTCGGCACTTGTACGCGGTCCTGCGTGGGCAAGCTCGTAGCGTGCCGGCTGCGGTCGCGCCTGCGCTCAAGGCTGTCGAACCCGCCCGTCTGCCGGGCATCTGCCTGGGGGACGCGGCGTTGCAGGAACATTTTCGCAAGGCTTTGCGGGTGTTCGAGCGCGATGTGCCGCTGCTGATCCAGGGCGAAACCGGTTCCGGCAAGGAGGCGTTTGCCAAGGCCGTGCACCACGCCAGCCAGCGCGCCGGGAAAAACTTCGTCGCGCTCAATTGCGCCGCGATTCCGGAAAGCCTGATCGAGAGCGAGTTGTTTGGTTATCGCGGCGGCAGTTTCACCGGCGCGCGCAAGGAAGGCATGCGCGGCAAGCTGCAACAGGCCGACGGCGGCACGCTGTTTCTCGATGAAATCGGTGATATGCCCCTGGCCTTGCAGACCCGTTTGCTACGGGTGCTGGAGGATCGTCAGGTAGTACCCATCGGCGGCGAACCCGAGGCGGTGAACGTGCGCATCATCAGCGCCACTCACCGGCAATTACTCGACCGCGTGGCCGACGGCAGTTTTCGCGAGGATTTGTACTACCGCCTCAACGGCCTGGAAATCCCGCTTCCGGCATTGCGCGAGCGCAGCGACAAATCCCAGTTGCTGGATTTCCTTCTGGCCGAGGAGAGCGGCGCCGAGACCGTGTCCATCGACGAACCGGCGCGCCAGGCGCTGCTGGCGTTCGACTGGCCGGGCAACGTGCGGCAGTTGCGCAATGTGCTGCGGACTCTTGCGGCGTTGTGCGACGGCGGGCGGATTGGGCTGGAGGATCTGCCGGCGATGATTCGCCAGCGCCCGGTTGCGGTGACCGAAACCCCGACCGAGCATCCGTTGGAAGATGCCGAGCGCCTGGCGTTGCTCGATGCGCTGGAACGTCAGCGTTGGCACATGACCCACACCGCCGAGCAATTAGGCATCAGCCGCAATACCCTTTACCGAAAGCTGCGCAAACACGCGATTGCCCGCTGAMHSNHLSRHARQVLTVTQGKAHLQGPGSDPSIARSWLRCLEDYHLDPAQNLAPTVLEHGRLLESRERLQQVLHIAGTEMTSLHQQLSGAGHAVLLTDARGVILNCVTAPSERKIFERAGLWLGADWSEACEGTNGIGTCLVERQALTIHQEEHFRGRHTGLTCSASPVFDPHGELLAVLDVSSARPDVSRQSQFHTMALVNLSAKMIESCYFLRCFDNQWLLRFHLQAESVGLFSEGLMAFDGEGRICAVNQSALNLLGHFRGGLLGQRVEDFFDCSLDELLGRASAQASASWPLRTRDGRHLYAVLRGQARSVPAAVAPALKAVEPARLPGICLGDAALQEHFRKALRVFERDVPLLIQGETGSGKEAFAKAVHHASQRAGKNFVALNCAAIPESLIESELFGYRGGSFTGARKEGMRGKLQQADGGTLFLDEIGDMPLALQTRLLRVLEDRQVVPIGGEPEAVNVRIISATHRQLLDRVADGSFREDLYYRLNGLEIPLPALRERSDKSQLLDFLLAEESGAETVSIDEPARQALLAFDWPGNVRQLRNVLRTLAALCDGGRIGLEDLPAMIRQRPVAVTETPTEHPLEDAERLALLDALERQRWHMTHTAEQLGISRNTLYRKLRKHAIARPGPT0001030_1184DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0001030-acoR-K21405NANA
D1-35_046841350mplCOG0773UDP-N-acetylmuramate--L-alanyl-gamma-D-glutamyl-meso-2,6-diaminoheptandioate ligaseATGCACATCCATATTCTCGGTATTTGCGGCACTTTCATGGGTTCGATGGCGGTCCTGGCCAAGGAGCTGGGCCATCATGTGACCGGTTCCGACGCCAACGTTTACCCGCCGATGAGCACCCAGCTGGAGGCTCAGGGCATTGAGCTGACCCAAGGTTACGACCCGGCGCAACTGGACCCGGCGCCGGACCTGGTGGTCATCGGCAACGCCATGTCCCGTGGCAACCCGGCGGTGGAATACGTGCTCAACAAAGGCTTGCCGTACGTGTCGGGGCCGCAGTGGCTGGCCGATCATGTGCTGCAGGGCCGTTGGGTCCTGGCCGTCGCCGGTACTCACGGCAAGACCACCACCAGCAGTATGCTCGCCTGGGTGCTGGAGCACGCGGGCATGAGCCCGGGTTTCCTGATCGGTGGCGTGCCGCAGAATTTTTCGGTGTCGGCGCGCCTCGGTGGCACGCCATTCTTCGTGATCGAGGCCGATGAATACGACAGCGCGTTTTTCGATAAACGCTCGAAATTCGTCCACTACCGTCCGCGCACGGCGATCCTCAACAATCTTGAGTTCGACCACGCTGACATCTTCCCTGATCTGCCGGCCATCGAGCGCCAATTCCACCATTTGGTGCGGACCATCCCAAGTGAAGGCCTGGTCATCCATCCGACCACCGAGCCGGCCTTGCAGCGGGTCATTGAAATGGGCTGCTGGACCCCGGTGCAGACCACCGGTGCGGGCGGTCAGTGGCAGGTCAAGCTACTCAAGGATGACGGTTCGGCGTTCGAAGTCATGTTCGAAGGACAGTCCCAAGGCGTGGTCGAATGGGACATGACCGGCCAGCACAACGTCGCCAACGCCTTGGCGACGCTGGCGGCGGCCCGGCACGTCGGGGTGGTGCCGCCCATGGGCATCGCCGCGTTGAGTGCGTTCAAGAGTGTGAAACGGCGGATGGAGAAAGTTGCCGAGGTGAACGGCATCACCATTTATGACGACTTCGCCCACCATCCGACCGCTATTGCCACCACCCTCGACGGTCTGCGCAAGCGCATCGGCGATGCGCCGCTGATTGCGATCATCGAGCCGCGCTCCAATTCCATGAAACTCGGCGCTCACCGCGACGGCCTGCCGGAAAGCGTGGTCGATGCCGACCAGGTGATCTGGTACGCGCCGGCCAACCTCGGCTGGGACCTCGGCGCCACGGCTGCGCTGTGCACGGTGCCGTCGATTGTCAGCGATTCCCTGGAGGGCATCATCGAGCGCGTGAAGAGCCAGGCCCAGCCCGGCACCCATGTGGTGATCATGAGCAACGGCGGCTTCGGCGGCCTGCACGGCAAACTCGCCGAGGCACTGAAATGAMHIHILGICGTFMGSMAVLAKELGHHVTGSDANVYPPMSTQLEAQGIELTQGYDPAQLDPAPDLVVIGNAMSRGNPAVEYVLNKGLPYVSGPQWLADHVLQGRWVLAVAGTHGKTTTSSMLAWVLEHAGMSPGFLIGGVPQNFSVSARLGGTPFFVIEADEYDSAFFDKRSKFVHYRPRTAILNNLEFDHADIFPDLPAIERQFHHLVRTIPSEGLVIHPTTEPALQRVIEMGCWTPVQTTGAGGQWQVKLLKDDGSAFEVMFEGQSQGVVEWDMTGQHNVANALATLAAARHVGVVPPMGIAALSAFKSVKRRMEKVAEVNGITIYDDFAHHPTAIATTLDGLRKRIGDAPLIAIIEPRSNSMKLGAHRDGLPESVVDADQVIWYAPANLGWDLGATAALCTVPSIVSDSLEGIIERVKSQAQPGTHVVIMSNGGFGGLHGKLAEALKPGPT0023975_1630DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_RELATED_LIGASES,PGPT0023975-mpl-K02558NANA
D1-35_04685648ubiXCOG0163Flavin prenyltransferase UbiXATGAATACTCGCTTGGAGAGCAACGGTCCCGAACGCATCACGCTGGCAATGACCGGCGCTTCCGGCGCCCAGTACGGCTTGCGCCTGCTCGATTGCCTGGTGCGTGAGGATCGCGAGGTGCACTTCCTTATCTCCAAGGCCGCGCAGTTGGTGATGGCCACCGAGACCGACGTGACGTTGCCACCCAAGACGCAGATGATGCAGGCCTTTCTCACCGAGTATACCGGTGCGGCGGCAGGGCAGATTCGTGTGTATGGCAAGGAAGACTGGATGTCACCGGTGGCTTCGGGCTCCGGCGCGCCGGCGGCGATGGTCGTGGTGCCGTGTTCCACCGGTACGCTGTCGGCGATCGCCACCGGGGCCTGCAACAACCTGATCGAGCGGGCGGCGGACGTCACGCTCAAAGAGCGCCGCCAGTTGATCCTGGTGCCGCGGGAAGCGCCGTATTCGAGCATTCACCTGGAGCACATGCTCAAGCTGTCGAACATGGGCGTGACCATCCTGCCGGCCTCGCCGGGCTTCTACCATCAGCCGCAGACCATCGACGACCTGATCGATTTTGTGGTCGCGCGGATCCTCAACTTGCTGAACCTGCCGCAAGACATGCTGCCACGTTGGGGCGAGCATCATCCGGGCAGCGATGAATAAMNTRLESNGPERITLAMTGASGAQYGLRLLDCLVREDREVHFLISKAAQLVMATETDVTLPPKTQMMQAFLTEYTGAAAGQIRVYGKEDWMSPVASGSGAPAAMVVVPCSTGTLSAIATGACNNLIERAADVTLKERRQLILVPREAPYSSIHLEHMLKLSNMGVTILPASPGFYHQPQTIDDLIDFVVARILNLLNLPQDMLPRWGEHHPGSDEPGPT0009565_288DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-SALICYLIC_ACID_RESISTANCE,PGPT0009565-ubiX|bsdB-K03186NANA
D1-35_04686285hypothetical proteinATGAATAAGCTGCTGGCGGTGTTGCTGGTCCTGCAGCTGACTGGCTGTGCCACCGCGCGCACCCTTGACGCCGCCAAGCCGGGAGCGCCGGTGGTGTATGCGGGGACGCGGCTGGACATGTACGCCCTTAACGGTGGCTGCTGCGCCAAGGACCGTTTTGGCGCCGAGGCGCCGAGCTATCCGGGTCTCGATTTGCCGGGGAGTGCGCTGCTGGATACGTTGTTGTTGCCGTTGTCGTTGCTGACGGTGATTGGCGTGGGGTTTCAAGCGACCGGTGGGATGTAGMNKLLAVLLVLQLTGCATARTLDAAKPGAPVVYAGTRLDMYALNGGCCAKDRFGAEAPSYPGLDLPGSALLDTLLLPLSLLTVIGVGFQATGGMNANANANANA
D1-35_04687642hypothetical proteinATGTACTTGACGCCTCAGCATGTTTTGCTCGCCGGCGCGACCGGATTGACCGGGGAACATCTACTGGACCGGCTGCTGAACGAGCCGACCATCACGCGGGTACTGGCGCCTTCCCGCCGGCCATTGGCCGAACACCCGCATCTGGAAAACCCGGTTGGGGAACCGGCCGAACTGCTGCCACGGCTTGGCGGCCAGGTCGACATCGCCTTCTGCTGCCTCGGCACGACCATCAAGAAAGCCGGCTCCGAATCGGCCTTTCGCGCGGTGGACCTGGACCTGGTGGTGGCCTTCGCCAAACGCGCGCGGGAATTGGGCGCACGGCACCTGGTGGTGATCAGCGCCCTCGGGGCCGACCCGAAATCGTCGATTTTCTACAACCGGGTCAAGGGTGAAATGGAAGCTGCGCTCCGCGCACAGGATTGGCCGCAACTGACCATCTGCCGACCTTCGTTGCTGTTGGGCGACCGGGTTGAACCACGCCTGGCCGAGCAACTGGCCGGCCCGTTGTCCAAGCTGATCCCCGGCAAATACCACGGCATCGAAGCCTGCCAACTGGCCCGGGCCATGTGGCGACTTGCGCTGGAGGAGCAGGATGGGGTGCGGGTAGTGGAGTCGGATGAGTTGCGCAAGCTGGGCAAATGAMYLTPQHVLLAGATGLTGEHLLDRLLNEPTITRVLAPSRRPLAEHPHLENPVGEPAELLPRLGGQVDIAFCCLGTTIKKAGSESAFRAVDLDLVVAFAKRARELGARHLVVISALGADPKSSIFYNRVKGEMEAALRAQDWPQLTICRPSLLLGDRVEPRLAEQLAGPLSKLIPGKYHGIEACQLARAMWRLALEEQDGVRVVESDELRKLGKPGPT0013740_1DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927NANA
D1-35_046881719hypothetical proteinATGCGCGCACTTGTACCCCTGACCCTGACCCTCCTGCTCACCGCCTGCGGAAACGGCGAATCACCGCTGCCCCCAGACGCACGCCTGCCCGACGGCGGACGCTATCGCGGCGATCTGGTAGACGGGCTGTTGCAGGGCCAGGGACGCATCGACTATCCCAACGGCAGCTGGTACGCCGGGCAGTTCGACAAGGGCCAGTGGCACGGCACCGGGGAATGGCATGGCAGCAATGGCGAGGTCTATCGCGGCCAGTTCCAGCATGGCCTGTTCCACGGCCAGGGCAGCCTGACCACACCGACCAGCAGCTACACCGGCGGTTTCAAGTTGGGCCGGCGGGACGGTGAAGGCACGCTCAAGGAAAACGGCGTGACCTACCGGGGCGAGTTCAAGGCCGACCGCTACTCCGGTCTCGGCCGCCTGGAACTCGACGACGGCAGCCAGTACCAAGGCCCGTTCGTCAACGGCAAGCCCAACGGCGAAGGCCAGCGCTTCGACGCCAGCGGCAACCAGTTCACCGGCCATTTCGTCGACGGCCAGCTCCAGGGCAAGGGCACGTTCAACAGCGCCGAAGGCGACGTCTACATCGGCGGCTTCAGGAATAACCAGCTCAACGGCCGCGGTCGCTACGAAAACGCCGATGGCGATGTCTGGATTGGCCAGTTCAAGGACGGTGCGCTGACCGGCAAGGGTGAACTGATCGGAGCCGATGGCAGCCACTACCGCGGGCGCTTCAATGACTGGCGCTTCACCGGCGAAGGTCGCCTGAACCTGCCCGACGGCAGCTTCTACATCGGCCAGTTCGAAGGCGACAGCTACCACGGGCGCGGCACGCTGGTGCTGACCGACGGCACCGTACAGAGCGGCACCTGGGCCAACGGCCAACGAATCCGTGACGCCGACGGCAAGCTGTTGCCCGATGTGCTCGAACTCGGCCTGCTGGCCCAGGGTCGCCTGCTGGACGAGGCCCTCGCCAACATCCCGGCCTCGACGTCGGCGGTGGAACTGTACAGTCTGACCCTGGGCGGCGATGGCAAGCAAAGCGTGTTCCTGCGTGAGTCCGACTATGTCGCCAACATGCTCGCCAGCCGTTTTGGCGCATTCGGCCAGATTCGCCTGGTGAACCATCGCGATCACCTCGGCGACCGGCCCATGGCCACTCGCGAAAACCTGCGCCGTGCCGCTGCCACGCTGGCCGAACGCAGCGGCCCGGAAGACCTGGTGTTCATCTACCTGACCAGCCACGGCAGCAGCGAACATGAACTGGTACTCGACCAGCCGCGCATGGAGCTGGCCGACCTGCCCGCCGACGAGTTGGCCGCGGTGCTGGCGCCGCTGAAGAATCGCGACAAGATCATTGTGATCTCGGCCTGTTATTCCGGCGGTTTCATCCCCGCGCTCAAGGACGAACGGACCCTGATCATGACCGCCTCCCGGGCCGACCGAGTGTCTTTCGGCTGCTCCGAGGAGGCCAACTTCACCTATTTCGGCGATGCCTTGTTCGCCCAGGCGCTGAACCAGACCGACGATCTGGAACAAGCCTTCAAGCGGGCCAAGGGCATCGTTGCCGAACGGGAGCAGGCGGACAATTTCGAAGCGTCCGAACCACAGATGTGGGCGCCCCGGACCGTGCTTTCTCATTGGCAGCTGTTGCGCAAGCAACAGGCGCGAAAAGCATTGCAAAGTGCTGCGTTGAACGACGAGGCTAAAAAGAGCAACTAAMRALVPLTLTLLLTACGNGESPLPPDARLPDGGRYRGDLVDGLLQGQGRIDYPNGSWYAGQFDKGQWHGTGEWHGSNGEVYRGQFQHGLFHGQGSLTTPTSSYTGGFKLGRRDGEGTLKENGVTYRGEFKADRYSGLGRLELDDGSQYQGPFVNGKPNGEGQRFDASGNQFTGHFVDGQLQGKGTFNSAEGDVYIGGFRNNQLNGRGRYENADGDVWIGQFKDGALTGKGELIGADGSHYRGRFNDWRFTGEGRLNLPDGSFYIGQFEGDSYHGRGTLVLTDGTVQSGTWANGQRIRDADGKLLPDVLELGLLAQGRLLDEALANIPASTSAVELYSLTLGGDGKQSVFLRESDYVANMLASRFGAFGQIRLVNHRDHLGDRPMATRENLRRAAATLAERSGPEDLVFIYLTSHGSSEHELVLDQPRMELADLPADELAAVLAPLKNRDKIIVISACYSGGFIPALKDERTLIMTASRADRVSFGCSEEANFTYFGDALFAQALNQTDDLEQAFKRAKGIVAEREQADNFEASEPQMWAPRTVLSHWQLLRKQQARKALQSAALNDEAKKSNNANANANANA
D1-35_04689456COG2030putative enoyl-CoA hydratase 1ATGCCCTACGTTCCCGTTGCAGAGCTCAAGGATTATGTCGGCAAGGAACTTGGATACTCCGACTGGCTGACCATCGACCAGGAGCGCATCAACCTGTTCGCCGAAGCCACCGGCGACTTCCAGTTCATCCACGTCGATCCGGTCAAGGCCGCGCAGACCCCGTTCGGCAGCACGATCGCCCACGGGTTCCTGTCGCTGTCGCTGATGCCCAAGCTGATGGAAGACATCCTGCTCCTTCCTGAGGGGGTGAAGATGGTGATCAACTACGGGCTGGACAGCGTGCGCTTCATCCAGCCAGTGAAAGTCGATTCCAAGGTCCGGCTCAAGGTCGACCTGGTGGACGTTACCGAGAAAAAACCTGGCCAATGGCTGCTCAAGGCCACCGCCACCCTGGAAATCGAAGGCTCGGAAAAACCAGCCTATATCGCCGAGCCGCTGTCACTCTGCTTCGTATAGMPYVPVAELKDYVGKELGYSDWLTIDQERINLFAEATGDFQFIHVDPVKAAQTPFGSTIAHGFLSLSLMPKLMEDILLLPEGVKMVINYGLDSVRFIQPVKVDSKVRLKVDLVDVTEKKPGQWLLKATATLEIEGSEKPAYIAEPLSLCFVPGPT0015281_37DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION_BY_NODULATIONROOT_NODULATION_METABOLISM,PGPT0015281-nodN-NANANA
D1-35_04690366cidAHolin-like protein CidAATGTTGCTACGGGGCCTGACCTGGCTGGTGCTGTTCCAATTGCTGGGCACCGCCATCAATCATTTGTTCCTGCCGATCCTGCCGGGGCCGATCATTGGGCTGCTGTTGTTGCTGGGCTATCTGATCGTCCGTGGCGAAGTCAGCGAGCCGTTGAACCTTGCCGCCGGCAGCCTGCTGCGTTATCTGCCGTTGCTGCTGGTGCCGCCGGCGGTGGGCGTGATGGTCTATGCCCGGGCGATCGCTGCCGACTTCTGGGCCATCGTTGGCGCGCTGGTGTTGTCGCTGGTGCTCTCCGTGGCGCTGACGGGCGTGCTGATGCAACGTTTGGCCCGGCGCCATATCGTCGAGCCGGAGGATGCCCGATGAMLLRGLTWLVLFQLLGTAINHLFLPILPGPIIGLLLLLGYLIVRGEVSEPLNLAAGSLLRYLPLLLVPPAVGVMVYARAIAADFWAIVGALVLSLVLSVALTGVLMQRLARRHIVEPEDARNANANANANA
D1-35_04691717yohKCOG1346Inner membrane protein YohKATGATGTTCGATTGGCAGGGGGCCTGGACGTCGGTGATTCACCATCCACTGTTCGGCATCGGCATTACCCTGGGCGCCTACCAGTTGGTGTTGGCGGCGTATGAAAAGACCCGTTGGGTGTTCCTGCAGCCGGTATTGATGTCGATGGTGCTGTTGATCGTCGTGCTGGTCGGCTGCGGCATCAGCTACGCGGAATATCGCAAAAGCACCGAAATCCTCAGCATTTTGCTGGGCCCCGCGACCGTGGCGTTGGCGGTGCCGTTGTACCTGAACCTGCGGCGAATCCGCCAATTGTTCTGGCCGATTTTTACTACGCTGGTGATAGGCGGGGTGTTTGCCACCGGCTCAGCGGTGGTGCTGGGCTGGGCTTTTGGCGCCGAACACATGATTCTGATGACCATGGCGCCCAAGTCGGTCACCTCGCCGATCGCCATGTTGGTGGCCGAGCAGATCGGTGGCGTGGCGGCGATGGCGGCGGTGTTCGTGCTGATCACCGGGGTGCTTGGCGCGATCCTCGGCCCGAGCATTCTGACCCGGCTCGGTGTCCATAGCCCTGAGGCCCGGGGCATAGCCTTGGGGCTGACTGCCCATGCGGTGGGTACGTCGGTGGCCTTGCAGGAAAGCGAGGAGTCCGGTGCCTTCGCGGCGCTGGCGATGAGTCTGATGGGCGTGGCCACGGCGGTGCTGCTGCCGCTGGTGGTGTCGATGACGGTCTAAMMFDWQGAWTSVIHHPLFGIGITLGAYQLVLAAYEKTRWVFLQPVLMSMVLLIVVLVGCGISYAEYRKSTEILSILLGPATVALAVPLYLNLRRIRQLFWPIFTTLVIGGVFATGSAVVLGWAFGAEHMILMTMAPKSVTSPIAMLVAEQIGGVAAMAAVFVLITGVLGAILGPSILTRLGVHSPEARGIALGLTAHAVGTSVALQESEESGAFAALAMSLMGVATAVLLPLVVSMTVNANANANANA
D1-35_04692591hypothetical proteinATGAGCTTGCCGCTTTTCCCATTGAACACCGTGCTGTTTCCCGGTTGCATCCTCGACCTGCAGATTTTCGAGGCACGTTACCTCGATATGATCGGGCGCTGCATGAAAAAAGGCGAAGGCTTCGGGGTGGTCTGCATCCTTGACGGCGAAGAGGTCGGTATCGCGCCCGACGGTTATGCCCGGGTGGGCTGCGAGGCGCTGATTACCGACTTCTCCCAGCAGGACAACGGCCTGCTGGGCATTCGTGTGCAGGGCGGCCGGCGCTTCATCGTGCATGCCAGCAGTGTCCAGCCGGATCAACTGACTGTCGCTGAAATCGAGTGGCTGGAAGACGAGCCGGAGCAACCGCTGCAGGACGAGGATGCCGACCTGGTGGCGCTGCTCAGGGCCCTGGCGGAACACCCGATGGTCGAGGCGCTGAACATGGGCACCGAGGCTACCGGTCAGCAGTCATTGGCCAATCAACTGGCCTATCTGCTGCCATTCAACGAACTGGACAAGATCGACCTGCTGCAGCTCGACGACCCGCAGCAGCGCCTGGATGCGATCCAGGCCTTGCTGGATGAGTTGCAGGGTGAGCTGTTTGCCTGAMSLPLFPLNTVLFPGCILDLQIFEARYLDMIGRCMKKGEGFGVVCILDGEEVGIAPDGYARVGCEALITDFSQQDNGLLGIRVQGGRRFIVHASSVQPDQLTVAEIEWLEDEPEQPLQDEDADLVALLRALAEHPMVEALNMGTEATGQQSLANQLAYLLPFNELDKIDLLQLDDPQQRLDAIQALLDELQGELFANANANANANA
D1-35_046931317hypothetical proteinATGGGCCCTTGGCTCGATAGCATTACCGGCTGGCTGACCGTCAACCCGCAATGGCTGGCGGTGGCGGTGTTTGTCGTTGCTTGTATTGAATGCCTGGCCATCGCCGGGTTGATCGTGCCGGGCACTGTTTTGCTATTTGCGATCGCGGTGCTGGCCGGCAGCGGCGCTTTGTCCCTGGGCGAGACGTTGTTGCTGGGCCTTCTGGGAGGGCTGCTGGGGGACCTGGTGTCCTATTTCCTCGGCCGGCATTTCCACCAGAACATCCGGCGCCTGCCGGGGCTGCGGCAACATCCGGAATGGATGAGCGCGGCCGAGAGCTACTTCCAGCGCTATGGAATCGCCAGCCTGCTGGTGGGGCGGTTTATCGGACCGTTGAGGCCGATGCTGCCGATGGTAGCCGGGATGTGCGACATGCCGTTCCCACGCTTCGCCGCCGTCAGCGTGCTCGCCGCGGCGGGCTGGACCATAGCCTACCTGCTGCCGGGCTGGGCCACCGGCGCGGCGTTCCGCCTGCCGTTGCCCGAAGGTTTCTGGCCGCAGGCCGGCGTGGTCATCGGCAGCATCGCCGTGATGCTCGGGCTGAGTGTCAACAGCAGCCTGCGGCGTCATCGCCATGCCTCAGCGATCATCGCAAGTGTCGGTCTGGCGATCCTGATCGGCCTGTTTGTCGGCTTTCGTTACCTCACAGCCTTCGACCAGGGCCTGATGACCCTGGTGCAGGAGCATCGCAGCGCGACCCTGGACGAGATTGCCGTGACGTTCACGCTGATCGGTGAATTCCGCTACATGTTGATCGTCTGCAGCCTGGTGACCGTGTTGCTGCTGTTTGCACGACAATGGCGGCAGGCAATCTTTGCCGGCGGCACGATGCTGCTCACGGCCCTGGCCAACACTGGATTGAAACTGTTTTTCGCCCGCGTGCGCCCTGAGATCCTCAGCGAACCCTTGACCAGCTACAGCATGCCCAGCGGCCACGCCTCCGGCGCTTTCGCCCTGTTCCTGAGCCTGGCGATACTGGCCGGCCGCGGCCAACCACCGCGCCTGCGCCTGACCTGGCTGCTGCTCGGCTCGTTACCTGCGCTGGCGATTGCCTTGTCGCGGGTGTACCTGGGCGCCCACTGGCCGAGCGACATTGTCGCCGGTGCCGTGCTCGCCGCCACGGTCTGCGCCGCTGTCCTCTGGCTAAGCCAGCGCCAGGAACCGCTGCGCGCCATGTCGCCGAAAGTCTGGTGGCTGGTCCTGCCGGCGCTGGCGGCGGCGTTCAGCTTCTTCGCCCTGCGGCATCTTCCGCATGCGATGTTGCGGTATGCCTATTGAMGPWLDSITGWLTVNPQWLAVAVFVVACIECLAIAGLIVPGTVLLFAIAVLAGSGALSLGETLLLGLLGGLLGDLVSYFLGRHFHQNIRRLPGLRQHPEWMSAAESYFQRYGIASLLVGRFIGPLRPMLPMVAGMCDMPFPRFAAVSVLAAAGWTIAYLLPGWATGAAFRLPLPEGFWPQAGVVIGSIAVMLGLSVNSSLRRHRHASAIIASVGLAILIGLFVGFRYLTAFDQGLMTLVQEHRSATLDEIAVTFTLIGEFRYMLIVCSLVTVLLLFARQWRQAIFAGGTMLLTALANTGLKLFFARVRPEILSEPLTSYSMPSGHASGAFALFLSLAILAGRGQPPRLRLTWLLLGSLPALAIALSRVYLGAHWPSDIVAGAVLAATVCAAVLWLSQRQEPLRAMSPKVWWLVLPALAAAFSFFALRHLPHAMLRYAYPGPT0024170_5DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-UNDECAPRENOL_MODIFICATION,PGPT0024170-bcrC-K19302NANA
D1-35_04694687Putative 3-methyladenine DNA glycosylaseATGACCATGACCGATTCGCCTCCGATGCCCACTGCTTTGCCACACGCTTTTTTTGACCGCGACGCCCAGGAGCTTGCCAAGGATCTGCTGGGCAAGGTGATTCGCCACAAGGTTGGCGACCTGTGGCTGAGCGCGAGGATCATCGAGACCGAAGCGTATTACTTCGCCGAAAAGGGCAGCCACGCCTCGTTGGGCTACACGGAAAAGCGTAAGGCTTTGTTTCTGGATGGCGGCCACATCTATATGTACTACGCGCGGGGCGGCGATTCGCTGAATTTCAGCGCCCAAGGCCCGGGCAATGCCGTATTGATCAAATCGGCGTATCCCTGGGTGGACGCCATCAGCGGCCCGGCAAGCCTGGCGCAGATGCTGTTGAACAACCCCGATGCGCAAGGCCGGCCACGTACACCGCAAAAACTTTGTGCCGGACAGACCTTGCTGTGCAAGGCGCTGGGCCTGAAAGTGCCGGACTGGGACGCCAGACGCTTCGACCCTGAACGGCTGCTGGTGGAGGATGTGGGTGTGCCGACGGTCAATGTGATCCAGACCACTCGCCTGGGCATCCCGCTGGGACGAGATGAGCACCTGCTTTACCGCTTCGTCGACGCCGCCTATGCGCCATGGTGCACCCGCAACCCGTTGCGACGGGGGCAGGTCGAGGGGCGGGATTATTTTCTGCTTTCTTGAMTMTDSPPMPTALPHAFFDRDAQELAKDLLGKVIRHKVGDLWLSARIIETEAYYFAEKGSHASLGYTEKRKALFLDGGHIYMYYARGGDSLNFSAQGPGNAVLIKSAYPWVDAISGPASLAQMLLNNPDAQGRPRTPQKLCAGQTLLCKALGLKVPDWDARRFDPERLLVEDVGVPTVNVIQTTRLGIPLGRDEHLLYRFVDAAYAPWCTRNPLRRGQVEGRDYFLLSPGPT0014885_551DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014885-yxlJ|aag-K03652NANA
D1-35_046951272proAGamma-glutamyl phosphate reductaseATGACTGAGTCCGTTCTTGACTACATGACCCGCCTGGGTCGCGCCGCCCGCGAAGCGTCGCGCATCATCGGTCGTGCCAGCACCGCGCAGAAAAATCGCGCCCTGCAGGCCGCCGCCAATGCGCTGGACGCTGCGCGCGCCGAGCTGTCCGCCGCCAACGAGCTGGACCTGGCCGCCGGCCGGGCCAATGGGCTCGAGCCGGCCATGCTTGAGCGCCTGGCGCTGACTCCGGCACGCATCGACGGCATGATCGTCGGTCTGCGTCAGGTGGCGGCTCTGCCGGACCCGGTCGGGGCGATTCGCGACATGAGCTATCGGCCATCGGGTATCCAGGTCGGCAAGATGCGCGTGCCGCTGGGTGTGGTCGGGATCATCTACGAGTCGCGGCCGAACGTGACCATCGACGCCGCGAGCCTGTGCCTGAAGTCGGGTAACGCGACCATCCTGCGCGGCGGTTCCGAGGCGATCCATTCGAACCGTGCGATTGCCGCCTGCATCCAGCGCGGGCTGGCCGAAGCCAACCTGCCGGCGGCGGTCGTGCAAGTGGTGGAGACCACCGACCGCGCCGCGGTCGGCGCGTTGATCACCATGCCCGAGTTCGTCGACGTTATCGTCCCGCGTGGCGGCAAGGGCCTGATCGAACGGGTCAGCCGCGACGCCCGCGTACCGGTGATCAAGCACCTGGACGGCATCTGTCATGTCTACGTCAGCGCCCACGCCGAATTGCCCAAGGCCCAGCGCATCGCTTTCAATGCCAAGACCTACCGTTATGGCATCTGCGGCGCGATGGAAACCCTGCTGGTGGACCAGACCGTTGCTGGGGATTTCCTGCCGTCGATGGCGGCCCAGTTCCGCGAAAAAGGCGTCGAGCTGCGTGGCTGCGAGCGCACCCGGGCGATCATCGAGGCCGCAGTCGCCACGCCAGAGGACTGGGACACCGAATACCTCGCGCCAATCCTGTCGATCCGCGTGGTGGACGGGCTGGACCAGGCCATCGAGCACATCAATCGCCACGGATCCCACCACACCGATTCCATCGTCAGCGAGCACCAGGGCGAAACCCGGCGCTTCGTGGCTGAAGTGGATTCGGCGTCGGTGATGATCAACACCCCGACCTGTTTTGCCGACGGCTTCGAATACGGATTGGGTGCCGAGATCGGCATTTCTACTGATAAGCTGCACGCCCGGGGCCCGGTGGGCCTGGAAGGCCTGACCTGCGAGAAGTACATCGTGGTCGGCGACGGCCAGTTGCGCGGACAGGAGCCAGCCTGAMTESVLDYMTRLGRAAREASRIIGRASTAQKNRALQAAANALDAARAELSAANELDLAAGRANGLEPAMLERLALTPARIDGMIVGLRQVAALPDPVGAIRDMSYRPSGIQVGKMRVPLGVVGIIYESRPNVTIDAASLCLKSGNATILRGGSEAIHSNRAIAACIQRGLAEANLPAAVVQVVETTDRAAVGALITMPEFVDVIVPRGGKGLIERVSRDARVPVIKHLDGICHVYVSAHAELPKAQRIAFNAKTYRYGICGAMETLLVDQTVAGDFLPSMAAQFREKGVELRGCERTRAIIEAAVATPEDWDTEYLAPILSIRVVDGLDQAIEHINRHGSHHTDSIVSEHQGETRRFVAEVDSASVMINTPTCFADGFEYGLGAEIGISTDKLHARGPVGLEGLTCEKYIVVGDGQLRGQEPAPGPT0014215_1815DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014215-proA-K00147NANA
D1-35_04696699nadD_2COG1057putative nicotinate-nucleotide adenylyltransferaseTTGGGCGACCTCGACCCACTGGCCTCCATGACTACGCCCGCTGTGACGGCGACCGCGCCAAAGCGCATCGGTATCCTGGGCGGTACGTTCGACCCGGTGCACATCGGCCATTTGCGCGGTGCGCTGGAAGTCGCCGATGCCCTGGCCCTCGATGAGCTGCGCCTGACGCCCAGCGCTCGGCCACCTCATCGGGATACACCGCAGGTGTCGGCGCAGGATCGCCTGGCGATGGTCGAGTGCGCGGTGGCCGGTGTGGCGCCGTTGGTGGTGGACGCCCGCGAATTGCAGCGGGACAAACCGTCCTACACCATTGATACCCTGGAGCTGATGCGCGCCGAGTTGGCCGCCGATGCCCAGGTTTTCCTGCTTCTGGGCTGGGACGCATTTTGCGGCCTGCCCACTTGGCACCGCTGGGAAGAGTTGCTCCAGCATTGCCACATCCTGGTGCTGCAACGCCCGGATGCCGACAGCGAACCGCCGGATGCCTTGCGCAACCTGCTGGCGGCGCGCTCGGTGAGCGACCCGCTGGCCCTCAAGGGGCCGAGCGGACAGATTGCATTCGTCTGGCAGACGCCGCTCGCGGTATCCGCCACCCAGATCCGTCAACTGCTGGCCAGCGGTAAGTCGGTACGTTTCCTGGTGCCCGACGCGGTCCTGGCCTACATCGATGCGCACGGTCTGTACCGTGCGTCGAACTGAMGDLDPLASMTTPAVTATAPKRIGILGGTFDPVHIGHLRGALEVADALALDELRLTPSARPPHRDTPQVSAQDRLAMVECAVAGVAPLVVDARELQRDKPSYTIDTLELMRAELAADAQVFLLLGWDAFCGLPTWHRWEELLQHCHILVLQRPDADSEPPDALRNLLAARSVSDPLALKGPSGQIAFVWQTPLAVSATQIRQLLASGKSVRFLVPDAVLAYIDAHGLYRASNPGPT0013435_671DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013435-nadD-K00969NANA
D1-35_04697495rsfSRibosomal silencing factor RsfSATGACTGACAAAGACCTGAACAAAGTAAAGCGCAAGGGCACTTTCAAGAGCGCCCCGCTGCCGGTAGAAGCGCCAACCGGCGTGGCGCTGGTCGGTGAAGAACTGGTCAAGGTGGCCGTGGCGGCCCTGGAAGACGTCAAGGCCCAGGACATCCAGGTGATCGACGTTCGCGAAAAGCAGAGCATCACCGACTACATGATCATCGCCACCGGTACCTCGAACCGCCAGATCGGCGCGATGCTCGACAAGGTCCGCGAAGCGGTGAAGGCCCAGGGCGTCAAGCCGTTGGGCGAAGAAGGCAAGGGCGACAGCGACTGGGTCCTGCTGGACATGGACGACGTCATCGTGCACATGATGACCGCCTCGGCGCGCCAGTTCTATGACCTGGAGCGCCTGTGGGCCGGTGCCGAGCAGAGCCGTTCGGCCAGCGCCGCGCACCACAGCCCGGAAAACACCCATGAGCACTTCACCAAGCTCAACAAAGACCAGCAATAAMTDKDLNKVKRKGTFKSAPLPVEAPTGVALVGEELVKVAVAALEDVKAQDIQVIDVREKQSITDYMIIATGTSNRQIGAMLDKVREAVKAQGVKPLGEEGKGDSDWVLLDMDDVIVHMMTASARQFYDLERLWAGAEQSRSASAAHHSPENTHEHFTKLNKDQQNANANANANA
D1-35_04698468rlmHCOG1576Ribosomal RNA large subunit methyltransferase HGTGCGACTGCGCCTGATCGCCGTCGGTTCTCGCATGCCCAAGTGGGTGGAAGAAGGCTGGCATGAATATGCCAAGCGTCTTCCGTCCGAGCTGGCTTTGGAACTGGTGGAAATTCCGCTCAATACCCGCGGCAAGAACGCCGACGTGGCGCGCTTTATCCGCCAGGAAGGTGAAGCCATGCTGGCCAAGGTCGGGCCGAACGAGCGCATCGTCACACTCGAAGTTCATGGCAAACCCTGGAGTACCGAGCAACTGGCGGTGGAGCTCGATCGCTGGCGGCTGGATTCGCGCACGGTCAATTTCATGGTCGGCGGTCCGGAAGGGCTGGCGCCGGAAGTCTGCGCCCGGGCCGATCAACGCTGGTCGTTGTCGCCCCTGACGTTGCCGCACCCGCTGGTGCGGATCCTGATCGGTGAACAGTTGTATCGTGCCTGGACAGTCCTGTCCGGGCACCCTTATCACAAGTAAMRLRLIAVGSRMPKWVEEGWHEYAKRLPSELALELVEIPLNTRGKNADVARFIRQEGEAMLAKVGPNERIVTLEVHGKPWSTEQLAVELDRWRLDSRTVNFMVGGPEGLAPEVCARADQRWSLSPLTLPHPLVRILIGEQLYRAWTVLSGHPYHKNANANANANA
D1-35_046991896mrdACOG0768Peptidoglycan D,D-transpeptidase MrdAATGCCTCAGCCGATCCGCATCAAGGACCACGAAAAAGACGCCCGCCTGGTGCGGGGCCGCGTCGTGTTCGGCGCCATTACGGTGGTCACGCTGATCGGCGTGCTGATCGCGCGGCTGTATTTCCTCCAGGTGATCCAGTACGAGTACCACTCGACCCTGTCGGAAAGTAACCGCGTCCACGTGCAGCCGATCCCGCCGACCCGCGGGCTGATTTTCGACCGCAATGGCGTGGTGGTGGCCGATAACCGGCCGAGCTTCAGCCTGAGCATGACACGCGAGCGGTCCGGTGACTGGCAGAAAGTCCTCGACGTGATCGTCGAAGTGCTGCAACTGACCCCCGAGGACCGGGCGATCTTCGAGAAGCGCATGCGCCAGGGCCGGCGCCCCTTCGAGCCGGTGCCGATCATGTTCGAGCTGACCGAAGAACAGATCGCCCTGATCGCGGTTAACCAGTTCCGCCTGCCGGGCGTCGAGGTGGTGGCGCAGCTGGTGCGGCATTATCCCCAGGGGCCGCACTTCGCCCACTCGGTCGGCTACATGGGGCGGATCAACGAAAAAGAGCTCAAGACCCTCGATCCGGTCAACTACAGCGGCACCCACCATATCGGCAAGACCGGCATCGAGCGCTTCTACGAGGCCGAGCTGCACGGCCAGGTCGGCTACGAGGAGGTCGAGACCAACGCTCGCGGCCGCGTACTGCGCGTGCTCAAGCGTACCGACCCGATTCCAGGCAAGGACATCGTCCTGAGCCTCGACATCAAGTTGCAGGAAGCCGCCGAAGCGGCGCTGGGTGGACGACGTGGCGCGGTGGTTGCGCTGGACCCGAACACCGGCGAAGTCCTGGCGATGGTCAGCCAGCCGAGTTTCGACCCGAACCTGTTCGTCACCGGCATCAGCTTCAAGGCCTACGCCGAGCTGCGCGATTCCATCGACCGGCCGTTGTTCAACCGCGTGCTGCGTGGCCTTTATCCGCCGGGTTCGACCATCAAGCCGGCCGTGGCGATTGCCGGGCTGGATGCCGGAGTGGTGACCGCGTCGAGCCGGGTCTATGACCCGGGTTATTACCAATTGCCCAACTACGACCACAAGTACCGTAACTGGAACCGCACCGGTGACGGCTACGTGGACCTGGAAGCGGCGATCATGCGGTCCAACGACACCTACTTCTATGACTTGGCCCACAAGCTGGGGATTGATCGGCTGTCGTCCTACATGAACAAGTTCGGCCTTGGTCAGAAAGTCTCCCTGGACATGTTCGAAGAGTCTCCGGGCCTGATGCCGTCCCGGGAATGGAAGCGGGCGACTCGCCGCCAGGCCTGGTTCCCCGGCGAAACCCTGATCCTGGGGATCGGCCAGGGCTACATGCAGGCCACGCCGCTGCAACTGGCCCAGGCCACGGCGCTGGTGGCGAGCAAAGGCAAATGGTATCGGCCGCACCTGGCGAAGACCATCGAAGGCCAGAAACCGGTGGACCCGGACCCGATGCCGGACATCATCCTGCGCAACCCGTCGGACTGGCAGAAGGTCAACAACGGCATGCAGCAGGTCATGCACGGCGCCCGGGGTACCGCGCGCAAGGCGGCCATCGGCGCGCAATACCGCATTGCCGGCAAGAGCGGTACCGCCCAGGTGGTAGCGATCAAGCAGGGCGAGAAGTACGACCGCTCCAAGGTCCAGGAACGCCATCGCGACCACGCCTTGTTCGTTGGCTTCGCGCCCGCCGAGAACTCGAAGATCGTCGTGTCGGTGATGGTCGAGAACGGTGAATCCGGCTCCGGCGTCGCCGCGCCGGTGGTGCGCCAGATCATGGACGCCTGGCTGCTGGATGAGCACGGCCAGCTCAAGCCCGAATTCGCAAGCCCCATCAGCGCGGAGGCTACGGCCCGTGAAGAATAAMPQPIRIKDHEKDARLVRGRVVFGAITVVTLIGVLIARLYFLQVIQYEYHSTLSESNRVHVQPIPPTRGLIFDRNGVVVADNRPSFSLSMTRERSGDWQKVLDVIVEVLQLTPEDRAIFEKRMRQGRRPFEPVPIMFELTEEQIALIAVNQFRLPGVEVVAQLVRHYPQGPHFAHSVGYMGRINEKELKTLDPVNYSGTHHIGKTGIERFYEAELHGQVGYEEVETNARGRVLRVLKRTDPIPGKDIVLSLDIKLQEAAEAALGGRRGAVVALDPNTGEVLAMVSQPSFDPNLFVTGISFKAYAELRDSIDRPLFNRVLRGLYPPGSTIKPAVAIAGLDAGVVTASSRVYDPGYYQLPNYDHKYRNWNRTGDGYVDLEAAIMRSNDTYFYDLAHKLGIDRLSSYMNKFGLGQKVSLDMFEESPGLMPSREWKRATRRQAWFPGETLILGIGQGYMQATPLQLAQATALVASKGKWYRPHLAKTIEGQKPVDPDPMPDIILRNPSDWQKVNNGMQQVMHGARGTARKAAIGAQYRIAGKSGTAQVVAIKQGEKYDRSKVQERHRDHALFVGFAPAENSKIVVSVMVENGESGSGVAAPVVRQIMDAWLLDEHGQLKPEFASPISAEATAREEPGPT0023885_2132DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023885-mrdA-K05515NANA
D1-35_047001146mrdBCOG0772Peptidoglycan glycosyltransferase MrdBGTGAAGAATAATTTCGACCGTATCCTCTCCAGCGAAGATGTGATGCGCCGTCGCGCCACCTTGCTGCAGCGCATGCACATCGACGGTCCGTTGCTGATCCTGTTGCTGACGCTGGCCGCCGGCAGCCTGTTCGTGCTGTATTCGGCCAGTGGCAAGAGCTGGGACCTGCTGGCCAAGCAGGCCACCTCGTTCGGCATCGGCCTGGTGTCGATGATCGTCATCGCCCAGCTCGAACCACGGTTCATGGCGCGCTGGGTGCCGCTGGCCTACGTGGTCGGCGTGGGTTTGCTGGTAGTGGTCGACATCATGGGCCACAACGCCATGGGCGCCACCCGCTGGATCAACATCCCCGGGGTGATCCGCTTCCAGCCTTCGGAATTTCTCAAGATCATCATGCCCGCGACCATTGCCTGGTACTTGTCCAAGCGGTCCTTGCCGCCGCAGCTCAAGCATGTGTGTATCAGTCTGTTGCTGATCGGCATTCCGTTCATTCTCATCGTCCGCCAGCCGGACCTCGGCACCTCGCTGCTGATCCTCGCCGGGGGTGCGTTCGTGCTGTTCATGGGCGGGTTGCGCTGGCGCTGGATCCTCAGCGTGATCGCCGCCGCCGTGCCGGTGTCGGTGGCCATGTGGTATTTCGTGATGCACGACTACCAGAAGCAGCGGGTACTGACTTTCCTCGACCCGGAAAGCGATCCGCTGGGCACCGGCTGGAACATTATCCAGTCCAAGGCCGCCATCGGTTCCGGCGGGGTGTTCGGCAAAGGCTGGCTGATGGGCACCCAGTCGCACCTGGACTTTTTGCCGGAAAGCCACACCGACTTCATCATCGCCGTGATGGGCGAGGAGTTCGGCCTGGTGGGCATTTGCGTGCTGTTGCTGATCTATCTGCTGTTGATCGGGCGCGGGTTGGTGATCACCGCCCAGGCCCAGACGCTGTTCGGCAAGTTGCTGGCGGGCAGCCTGACCATGACGTTTTTTGTTTATGTTTTCGTCAACATCGGTATGGTCAGTGGCCTGCTGCCGGTGGTGGGGGTGCCGTTGCCGTTCATTAGCTACGGAGGAACTTCGCTGGTGACGCTACTGTCAGCGTTTGGGGTTTTGATGTCGATCCATACGCATCGCAAGTGGATCGCGCAGGTTTGAMKNNFDRILSSEDVMRRRATLLQRMHIDGPLLILLLTLAAGSLFVLYSASGKSWDLLAKQATSFGIGLVSMIVIAQLEPRFMARWVPLAYVVGVGLLVVVDIMGHNAMGATRWINIPGVIRFQPSEFLKIIMPATIAWYLSKRSLPPQLKHVCISLLLIGIPFILIVRQPDLGTSLLILAGGAFVLFMGGLRWRWILSVIAAAVPVSVAMWYFVMHDYQKQRVLTFLDPESDPLGTGWNIIQSKAAIGSGGVFGKGWLMGTQSHLDFLPESHTDFIIAVMGEEFGLVGICVLLLIYLLLIGRGLVITAQAQTLFGKLLAGSLTMTFFVYVFVNIGMVSGLLPVVGVPLPFISYGGTSLVTLLSAFGVLMSIHTHRKWIAQVPGPT0023885_26DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023885-mrdA-K05515NANA
D1-35_047011011mltBCOG2951Membrane-bound lytic murein transglycosylase BATGCAAGCAATGCGTGGCTGGTCGACGCGATATGCGCCGTGGGTCGGCCTGGTCGGCTTCCTGGGCTGTGCGCCGCAGGCCCTGGCCGGCGAATACGAAGGCTCGCCGCAGGTGGCCGAATTCGTCGGTGAGATGACTCGCGACTACGGTTTTGCCGGCGAACAGCTGATGGGGGTGTTTCGCGAGGCCGAGCGCAAGCAGTCGATCCTCGACGCGATTTCCCGGCCCGCCGAGCGGGTCAAGCAGTGGAGCGAGTACCGGCCGATGTTCATCACCGAGGCGCGTATCGCCCGGGGTGTGGACTTCTGGCGCCAGCACGAAGCCGCCCTGGCCCGCGCCGAGCAGGAATATGGCGTACCGGCCCAGGTCATCGTATCGATTATCGGCGTCGAGACCTTCTTCGGCCGCAACACCGGGAATTTCCGGGTGATCGACGCCTTGTCGACCCTGGGCTTCGATTACCCGCCGCGCGCCGAGTTCTTCCGCAAGGAACTACGCGAATTCCTCCTGCTGGCCCGTGAAGAGCAGGTCGATCCGCTGACCCTCAAGGGCTCCTACGCCGGGGCCATGGGCTTGCCACAATTTATGCCCAGCAGTTTCCGCGCCTATGCGGTGGACTTCGACGGCGACGGCCACATCAATATCTGGACCAACCCGACCGATGCCATCGGCAGTGTTGCCAGTTATTTCAAACGGCATGGCTGGGAGGCCGGCGAGCCTGTGGTCAGCCTTGCGGACGTGCTTGGCGACCAGGTGGACCAAGGCCTGACCACGGGCATCGAGCCGACAAAAACCGTCGGGGAGTTGCGAGCGCTGGGCTGGTCGAGTCATGATGCGCTGCGTGACGACATGCCGGTCACCGCGATGCGCCTGGAAGGCGAGCAGGGCCCCGAATACTGGATGGGCCTGAAGAATTTCTACGCGATTACGCGTTATAACCGCAGCGTGATGTACGCCATGGCCGTATATCAACTGTCTGAAGAGCTGGTCAAAGCACGGGGCGTCAAATAAMQAMRGWSTRYAPWVGLVGFLGCAPQALAGEYEGSPQVAEFVGEMTRDYGFAGEQLMGVFREAERKQSILDAISRPAERVKQWSEYRPMFITEARIARGVDFWRQHEAALARAEQEYGVPAQVIVSIIGVETFFGRNTGNFRVIDALSTLGFDYPPRAEFFRKELREFLLLAREEQVDPLTLKGSYAGAMGLPQFMPSSFRAYAVDFDGDGHINIWTNPTDAIGSVASYFKRHGWEAGEPVVSLADVLGDQVDQGLTTGIEPTKTVGELRALGWSSHDALRDDMPVTAMRLEGEQGPEYWMGLKNFYAITRYNRSVMYAMAVYQLSEELVKARGVKPGPT0023785_2085DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-MUREIN_TRANSGLYCOSYLASE_ACTIVITY,PGPT0023785-mltB-K08305NANA
D1-35_047021026rlpA_2Endolytic peptidoglycan transglycosylase RlpAATGCGGGCAATGCCTACCTATCAACCCCTGAAAGCCAGGCCCCTCAAGCTGGTGGCATTGGCGGCGCTGTCTTTGCTGGTCGTGAGCTGTTCGACCAGTCGCGCACCGACCCAGAAAAGTCCCAACGTCGTGCGGGCCACACCGGGCCTGGACATCAACCGGGCCCACAAGGATGGCGCGCCGTGGTGGGATGTCGATGTCTCGCGCATTCCCGACGCGACACCGACCCTGCACACCGGCCCCTACAAGGCCAACCCGTATACGGTGCTGGGCAAGACCTATTTCCCGATGGCCGAATCCAAGCGCTATGTCGCCTCGGGCACGGCTTCCTGGTATGGCACCAAGTTCCACGGCCAGAACACCGCCAATGGCGAGGTCTACGACCTGTATGGCATGAGCGCCGCGCACAAGACCCTGCCGCTGCCCAGTTATGTGCGGGTGACCAACCTGGACAACAACAAGAGCGTGATCCTGCGGGTCAACGACCGTGGGCCGTTCTATTCCGACCGCATCATCGACTTGTCGTATGCAGCGGCGAAAAAGCTCGGTTACGCTGAAACCGGCACCGCCCGGGTCAAGGTCGAAGGCATCGATCCGCAGGAATGGTGGGCCCAGCGTGGCCGTCCGGCGCCTTTGATGCTCAACGAACCAAAAGTGGCGCAAAATGCCGCGCCGACCGTGACGGCCTCCACCGGCACGGTCGAGCAATGGACGCCGCCGCCGCAGCAACACGCCGCGGCCGTGGTGCCGGTGCAGATCGATGCAAAAAAAAACGCTTCTGCAACAGCCTCTGGCCAGTATCTGCAAGTGGGCGCGTTCGCCAACCCGGACGCTGCAGAACTGTTGAGGTCGAAGCTGAGCTCGATGGTCAGCGCGCCGGTGTTCATCAGCTCGATCGTGCGCAACCAGCAGACCCTGCATCGAGTGCGCCTGGGGCCGATCGGTTCTCCGGGTGAGGTCCAGCAGGTACAGAATAGCGTGCGCCTGGCCAATCTCGGTTCGCCGAGCCTGGTCACGTCCGAATGAMRAMPTYQPLKARPLKLVALAALSLLVVSCSTSRAPTQKSPNVVRATPGLDINRAHKDGAPWWDVDVSRIPDATPTLHTGPYKANPYTVLGKTYFPMAESKRYVASGTASWYGTKFHGQNTANGEVYDLYGMSAAHKTLPLPSYVRVTNLDNNKSVILRVNDRGPFYSDRIIDLSYAAAKKLGYAETGTARVKVEGIDPQEWWAQRGRPAPLMLNEPKVAQNAAPTVTASTGTVEQWTPPPQQHAAAVVPVQIDAKKNASATASGQYLQVGAFANPDAAELLRSKLSSMVSAPVFISSIVRNQQTLHRVRLGPIGSPGEVQQVQNSVRLANLGSPSLVTSEPGPT0024465_694DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINSCE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024465-rlpA-K03642NANA
D1-35_047031158dacC_2COG1686D-alanyl-D-alanine carboxypeptidase DacCATGAACATCACCACCTTTGCCAAACGCCTTTGCCTGCTAGTCCCGCTGCTTCTCTCTCCGGCCGCGTTCGCGGTCGAGATGATGCCTTCGCCTCCGCAACTGGCGGCCAAAGCCTATGTCCTCATGGATGCCAGCAGCGGCAATGTGCTGGTAGAGAACAATGGTGACCAGCGCCTGCCACCGGCCAGCCTGACCAAGCTGATGACCGCGTACATCGCCACGCTGGAGATCCGTCGCGGCCAGATCGGTGAGAACGATCCGGTGACCGTCAGCGAAAACGCCTGGCGCACCGGCGGTTCGCGGATGTTCATCAAGGTCGGTTCGCAAGTGACTGTCAGCGACCTGCTGCACGGCATCATCATCCAGTCCGGCAACGACGCCAGCGTCGCCCTGGCCGAGCACATCGCCGGCAGCGAAGACGCGTTCGCCGACATGATGAACAAGACGGTCGCCGACCTGGGCATGACCAACAGCCATTTCATGAACCCGACCGGCCTGCCGAACCCCGAGCATTATTCCTCGGCTCACGACATGGCGATCCTGGCCCGGGCAATCATCCACGAAGACCCTGCGCATTACGCGATCTACTCCCAGAAGGAATTCTTCTGGAACGGCATCAAGCAGCCTAACCGCAACCTGTTGCTGTGGCGCGACAAGACCGTCGATGGCCTGAAGACCGGCCACACCGAGGAGGCTGGCTACTGCATGGTGTCTTCGGCGGTTCGTGACGGCATGCGCCTGATCGCCGTGGTGTTCGGCACCAACAGCGAAGTGGCCCGCGCCGCCGAGACCCAGAAGCTGCTGACCTACGGTTTCCGCTTCTTCGAAACCCAGACCTTCTACCAGAAGGGCACCGAACTGGCCCAGGCCCAGGTGTGGAAAGGCACCAGCAACCAGGTGAAAGCCGGCCTGGCGCAGGACCTGACCATGACCTTGCCTAAAGGCCAGCTCAAGAAGCTTGCCGCCAGCATGACCATGAACCCTCAGCTGACCGCGCCTATCGCCAAGGGTGACGTGATCGGCAAGGTCGAAGTCAAACTGGACGACAAGGTGGTGCACAGCGCCGACCTGATCGCGCTGGACGCGGTCGAGGAAGGTGGTATTTTCCGCCGCATGTGGGATAGCATCCGTCTATTCTTCTACGGCTTGTTCAACTGAMNITTFAKRLCLLVPLLLSPAAFAVEMMPSPPQLAAKAYVLMDASSGNVLVENNGDQRLPPASLTKLMTAYIATLEIRRGQIGENDPVTVSENAWRTGGSRMFIKVGSQVTVSDLLHGIIIQSGNDASVALAEHIAGSEDAFADMMNKTVADLGMTNSHFMNPTGLPNPEHYSSAHDMAILARAIIHEDPAHYAIYSQKEFFWNGIKQPNRNLLLWRDKTVDGLKTGHTEEAGYCMVSSAVRDGMRLIAVVFGTNSEVARAAETQKLLTYGFRFFETQTFYQKGTELAQAQVWKGTSNQVKAGLAQDLTMTLPKGQLKKLAASMTMNPQLTAPIAKGDVIGKVEVKLDDKVVHSADLIALDAVEEGGIFRRMWDSIRLFFYGLFNPGPT0024040_4608DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-CARBOXYPEPTIDASE_ACTIVITY,PGPT0024040-dacC|dacA|dacD-K07258NANA
D1-35_04704276hypothetical proteinATGACAGACTCCGAAGTAAAAGCGCCAAAGATCGAATTTCCCTGCGCGGATTATCCGATCAAGGTAATCGGCGATACCGGTGTGGGCTTCAAGGACAAGATCATCGCGATCCTTGAAAAACACGCCACCGTTGACCACAACACCCTGGCCGAGCGCCAGAGTACCAACGGCAAATACACGACCATCCAGTTGCACATCATTGCCACCGGCCAGGAACAGCTCTACGACATCAACAGCGAGCTGCGAGCGACCGGTTTCGTGCATATGGTGTTGTGAMTDSEVKAPKIEFPCADYPIKVIGDTGVGFKDKIIAILEKHATVDHNTLAERQSTNGKYTTIQLHIIATGQEQLYDINSELRATGFVHMVLNANANANANA
D1-35_04705648lipBCOG0321OctanoyltransferaseATGCCGGGCACGCTGGGCTTTCGCGAGCTGGGCAGCATGGCTTACGAGCCGGTCTGGCACGCCATGCAGCGCTTCACGAACGAACGTGGCACCAGCGCCGACGACGAAGTCTGGCTGGTGGAACACCCGCCGGTGTTCACCCAGGGCCAGGCCGGCAAGGCCGAGCACTTGCTGCTGCCGGGCGATATCCCGGTGGTGAAGGTCGACCGGGGCGGGCAGGTGACTTACCATGGCCCCGGCCAACTGGTTGCCTACCTGTTGCTGGATGTGCGCAAGCTGGGGTTCGGCGTGCGCGAGCTGGTCACCCGCATGGAGACGTGCCTGATCGAGCTGCTCGCCAGCTACGGTGTGACCGCGGCTGCCAAGCCGGATGCACCGGGCGTCTACGTCGACGGGGCGAAGATCGCCTCGCTCGGCTTGCGCATCCGCCATGGCTGTTCGTTCCATGGCCTGGCGTTGAACGTGGACATGAATCTTGAACCGTTTAGACGGATTAATCCCTGTGGCTATGCAGGGCTGGCAATGACCCAGCTGCGCGATCACACAGGATCGATTGAATTTGCCGAGGTAAGTGCCCGGCTGCGCGCGCAGCTCGTCAAACACCTCGACTATGCTGAGCAGACGACCCTCACGGGCGGAATCGACTGAMPGTLGFRELGSMAYEPVWHAMQRFTNERGTSADDEVWLVEHPPVFTQGQAGKAEHLLLPGDIPVVKVDRGGQVTYHGPGQLVAYLLLDVRKLGFGVRELVTRMETCLIELLASYGVTAAAKPDAPGVYVDGAKIASLGLRIRHGCSFHGLALNVDMNLEPFRRINPCGYAGLAMTQLRDHTGSIEFAEVSARLRAQLVKHLDYAEQTTLTGGIDPGPT0003925_2976DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-PLANT_LIPOIC_ACID_INTERFERRENCEPLANT_LIPOIC_ACID_BIOSYNTHESIS,PGPT0003925-lipB-K03801NANA
D1-35_047061023lipACOG0320Lipoyl synthaseATGACTACTGATGCAGTGCAAACCATGATCCCGACGCTGGACGTCACCGAACGTCCGGCCCCGCGTGCCAAGGTAGAGGCCGGCGTCAAGCTGCGCGGCGCCGAGAAGGTTGCACGCATTCCGGTCAAGATCATCCCGACCACCGAACTGCCGAAGAAACCCGACTGGATCCGCGTGCGCATCCCGGTCTCTCCGGAAGTCGACCGGATCAAGGCCCTGCTGCGCAAGCACAAGCTGCACAGCGTCTGCGAAGAAGCCTCCTGCCCGAACCTGGGCGAGTGCTTCTCCGGCGGCACCGCGACGTTCATGATCATGGGCGACATCTGCACCCGTCGTTGCCCGTTCTGCGACGTCGGCCATGGCCGTCCGAAGCCATTGGATACCAACGAGCCGGAAAGCCTGGCCATCGCCATCGCCGACCTGAAGCTGAAATACGTGGTCATCACCTCGGTGGACCGTGACGACCTGCGTGACGGCGGTGCCCAGCACTTCGCCGACTGCATCCGCGAGATTCGCAAGCTGTCGCCGAACGTGCAGCTGGAAACCCTGGTGCCTGATTACCGTGGCCGCATGGACATTGCCCTGGAAATCACCGCCGCCGAGCCGCCGGATGTGTTCAACCACAACCTGGAAACCGTGCCACGCCTGTACAAGGCTGCGCGTCCTGGTTCGGACTACCAGTGGTCGTTGACCCTGCTGCAGCGTTTCAAGCAGATGATGCCGCATATTCCGACCAAGTCTGGCTTGATGCTGGGCCTGGGTGAGACTGATGAGGAAGTCATCGAGGTCATGAAGCGCATGCGTGAGCACGACATCGACATGCTGACCCTGGGCCAATACCTGCAGCCCTCCCGTAGCCATTTGCCGGTGCAGCGTTTTGTGCATCCGGATACCTTTGCCTGGTTTGCGGAGGAGGGGTACAAGATGGGCTTCAAGAACGTTGCTTCGGGGCCGTTGGTGCGGTCTTCTTATCATGCGGATGAGCAGGCTAAGTTGGTCAAGGCTGAGCTTTTGGGTTCCTGAMTTDAVQTMIPTLDVTERPAPRAKVEAGVKLRGAEKVARIPVKIIPTTELPKKPDWIRVRIPVSPEVDRIKALLRKHKLHSVCEEASCPNLGECFSGGTATFMIMGDICTRRCPFCDVGHGRPKPLDTNEPESLAIAIADLKLKYVVITSVDRDDLRDGGAQHFADCIREIRKLSPNVQLETLVPDYRGRMDIALEITAAEPPDVFNHNLETVPRLYKAARPGSDYQWSLTLLQRFKQMMPHIPTKSGLMLGLGETDEEVIEVMKRMREHDIDMLTLGQYLQPSRSHLPVQRFVHPDTFAWFAEEGYKMGFKNVASGPLVRSSYHADEQAKLVKAELLGSPGPT0003935_987DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-PLANT_LIPOIC_ACID_INTERFERRENCEPLANT_LIPOIC_ACID_BIOSYNTHESIS,PGPT0003935-lipA-K03644NANA
D1-35_04709939ykfACOG1619putative murein peptide carboxypeptidaseATGGCCCACACCCTAATCCCACACCACCCCGTCCCGGCCCTCCTTCAAGAAGGCCTGATCGGAGTGATCGCCCCCGCCGGCCCAGCCCCATTGGACACCGAAAAAGCCATCCAATGGATGCGCGCCAGGGGCCATGATCTGCGAATTTTCCCCGGCGTCTACGAAAAAGACGGCTACCTGGCCGGCAGCGACGATACACGACTGAACGACCTGCACGCCGCCTTCGCCGACCCAGAGGTAAACGCGATCATCTGCCTGCGCGGAGGCTACGGCACCCCCCGCCTGCTCGATCGCATCGACTTCGAGCTTATTAAACGAAACCCCAAGCCCTTCGTCGGCTACAGCGACATCACCGCCCTGCATCTGGCAATCAGCCGTTACGCCGGCTTCGTGACCTTTCACGGACCGTTGCTCAACGCCGACCTGCTGGGCGATAAGGAGCCCCCGACCGTCACGTCCTTTTTCAGCCTGCTGCGCGGCCAATTGAAAGCGGGCGACGTACTGAGCCATCCCGCAGCCTATCCATTGACTACCGTGGAACCCGGCATTGCCCAAGGGCGCCTGTTGGGCGGCAATCTGTCGATGATCGCCGCAACCATGGGCACGCCCTACGAAATTGATGCCGAAGGCGTGATCCTGCTGGTCGAGGACGTCAATGAGCCGCTATATCGCATCGACCGTCTGCTGACCCAATTGCGGCTGGCAGGCACCCTGGCGAAGCTGCGAGGCGTGCTATTGGGGGATGTCGCCGGTGTGGATGGCGAGGCGCTGAACCGCTTGTTCAAGCAGACCTTCGAACCACTGCGTATTCCGGTGTTGTCCGGCTGGCGCAGCGGGCATTGTGATCCGAACCTGACGTTGCCGATGGGCGCGCTGGTGACGCTGGATGCGGGGGAGAAGAGGTTGGTGCTGGAGCAGGATGTGGTGGTCAGCCGCTAAMAHTLIPHHPVPALLQEGLIGVIAPAGPAPLDTEKAIQWMRARGHDLRIFPGVYEKDGYLAGSDDTRLNDLHAAFADPEVNAIICLRGGYGTPRLLDRIDFELIKRNPKPFVGYSDITALHLAISRYAGFVTFHGPLLNADLLGDKEPPTVTSFFSLLRGQLKAGDVLSHPAAYPLTTVEPGIAQGRLLGGNLSMIAATMGTPYEIDAEGVILLVEDVNEPLYRIDRLLTQLRLAGTLAKLRGVLLGDVAGVDGEALNRLFKQTFEPLRIPVLSGWRSGHCDPNLTLPMGALVTLDAGEKRLVLEQDVVVSRPGPT0023815_1466DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-MURAMOYLTETRAPEPTIDE_CARBOXYPEPTIDASE_ACTIVITY,PGPT0023815-ldcA-K01297NANA
D1-35_047101323Tn3 family transposase TnXax1ATGCCCCTCCGCCTTTCCCGTCGTTGGCCACTGCGCCAATTGATAGCTGCCGCAAGCGTTGCGTTATTGGTCGCCTGCGCTGAAAAACCCACCGCCGCCGATGCCCAACCGCTCAAGACCCTGCCTGCCGTGACCGCACCGGCCATCGTGCCGCCCGTAGTGCCGACCGGGGAGAACCTGGATATTGCGCCGACCCAGACCTTCGCCGAATGGCAAGCCGGGTTTCGCAAGGAAGCACTGGCCGCCGGGATCCGGGCCGACCTGTTCGACCGTGCCTTCATCGGCGTCAGCCCGGACATGAGCGTGATCAAGGCGGATCGCAGCCAACCTGAATTCAGCCGGCCGGTATGGGAATACCTCGATGGCGCCTTGTCACCTTTGCGGGTGCGCAAAGGCCAGGCCTTGCTCCAGCAGCACGCCGACATCCTGCAAAGCATCGAACAGCGCTACGGCGTTGATCGCCAGGCGCTGGTAGCGGTGTGGGGCATGGAGAGCAATTTCGGCCAGTTCCAGGGGACCAAGTCAGTGATCAACTCCCTGGCCACCCTCGCCTACGAAGGACGGCGTCCGGGCTTTGCCCACGCACAACTGATTGCCGCGCTGCAAATTCTGCAACAGGGCGATATCACCCCGGAAAAGATGCTCGGCTCCTGGGCCGGCGCCATGGGCCAGACCCAGTTCATTCCAACCACCTACAACACCCATGCAGTCGATTTCGATGGCGATGGGCGTCGTGATATCTGGGGCAGCGCCACCGACGCCCTGGCCTCGACCGCGCACTACCTGCAAAGCTCCGGCTGGCAGCGCGGCCAACCATGGGGATTCGAGGTCTCGCTCGGTGAAGGCTTCGACTACACCCTGGCCGATGGCACGATTCGCAAAGCCGTCTCCGAATGGGAGCGCCTGGGCGTTTCCGAATATGGCGGTTTGCCGATTGCCCCGGATGAGAAACAGCTCTCGGCTTCCCTTCTCCTGCCGGCAGGCCATCGCGGCCCGGCATTCCTGATATTCGACAACTTCCGAGCCATCCTCAAGTACAACAACTCATCGTCCTACGCCTTGGCGGTTGGGCTGTTGTCACAGCGCTTCGCCGGCGCAGGCCTGGTCTACGGCCAGTGGCCAAAGGAAGACCTTCCCCTGAGCCGCAGCGAACGTATCGAACTGCAGACCCTGCTGGGCAAGCACAACTACGATGCGGGCACGCCCGACGGCATTATCGGCGCCAACACCCGCAAGGCGATCCGCGGCGCCCAGCAGTCGTTTGGCTGGCCGGCGGATGGGTATCCGACGCACAAGTTGCTGGAGGCGTTGCGTAGTCGCTGAMPLRLSRRWPLRQLIAAASVALLVACAEKPTAADAQPLKTLPAVTAPAIVPPVVPTGENLDIAPTQTFAEWQAGFRKEALAAGIRADLFDRAFIGVSPDMSVIKADRSQPEFSRPVWEYLDGALSPLRVRKGQALLQQHADILQSIEQRYGVDRQALVAVWGMESNFGQFQGTKSVINSLATLAYEGRRPGFAHAQLIAALQILQQGDITPEKMLGSWAGAMGQTQFIPTTYNTHAVDFDGDGRRDIWGSATDALASTAHYLQSSGWQRGQPWGFEVSLGEGFDYTLADGTIRKAVSEWERLGVSEYGGLPIAPDEKQLSASLLLPAGHRGPAFLIFDNFRAILKYNNSSSYALAVGLLSQRFAGAGLVYGQWPKEDLPLSRSERIELQTLLGKHNYDAGTPDGIIGANTRKAIRGAQQSFGWPADGYPTHKLLEALRSRPGPT0023785_188DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-MUREIN_TRANSGLYCOSYLASE_ACTIVITY,PGPT0023785-mltB-K08305NANA
D1-35_04711165hypothetical proteinATGAGCAAAAAGCCATCCAGGCATGGCCCCAACAAGGCCAAGTCCATCGTCGCCCAGCCCCTGTTCCGCAGCCGCCAGGAACGACCCGCCAAGGGCAAAGGCAGCTACCGCCGCGAAGCCTTCCAGTCTGACAACTGGGAGGCTTCTTGCTTTCTGGCAGCCTGAMSKKPSRHGPNKAKSIVAQPLFRSRQERPAKGKGSYRREAFQSDNWEASCFLAAPGPT0001755_1905DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-PYRUVIC_ACID_BIOSYNTHESIS,PGPT0001755-ldhA-K03778NANA
D1-35_047121038holACOG1466DNA polymerase III subunit deltaATGAAACTCGCTCCCGCTCAACTCGGCAAACACCTGCAAGGCGCGCTCGCGCCCGTCTATATCATCAGCGGCGATGACCCGCTGCTGTGCCAGGAAGCCGCCGACGCCATCCGCTCTGCCGCCCGCCAGCAAGGTTTCGACGAACGCCAGGTGTTCGCCGCCGACGCCAGCTTCGATTGGGGTACGTTACTGCAGGCCGGGGCAAGCATGTCGCTGTTCGCCGAGAAACGCCTGCTGGAACTACGCTTGCCCTCCGGTAAACCCGGTGACAAGGGCGCCGCCGCGCTGATCGAATACTGCTCGCGGCCCGCCGAGGACACGGTACTGCTGATCAGCCTGCCGAAACTCGACGGCAGCGCGCAGAAAACCAAGTGGGGCAAGGCGCTGGTCGAAGGCCAGCAGACTCAGTTCGTGCAGATCTGGCCGGTGGATGTCAGTCAGTTGCCCAGCTGGATCCGCCAGCGCCTGTCCCAGGCCGGCCTGTCGGCCAGCCAGGACGCGGTTGAGCTGATTGCCGCCCGGGTCGAAGGCAACCTGTTGGCCGCCGCCCAGGAAATCGAAAAACTCAAGCTGATGGCCGAGGGTGGCCAGATCACAGTGGAAACGGTCCAGGCGGCCGTGGCCGACAGCGCACGCTTCGATGTCTTCGGGCTGACCGACGCGATCCTCAACGGTGAAGCCGCCCACGCCTTGCGCATGCTTGAAGGCCTGCGGGGCGAAGGCGTCGAACCGCCGGTGATTCTCTGGGCGCTGGCCCGGGAGTTGCGCCTGCTCGCGAACCTGTCGTTGCAATACAGTCAGGGCGTGCCGCTGGACAAAGCCTTCAGCCAGGCCCGGCCGCCGGTATGGGACAAACGCAAACCGTTGATGAGCAAGGCGCTGCAACGTTACTCGGCATCACGCTGGGCGCAATTGCTGCTCGAAGCCCAGCGCATCGACGCACAGATCAAGGGCCAGGCCGCAGGCTCGCCGTGGATGAGCCTGAGCCGGTTGTCGCTGTTGATGGCCGGCCAACGGCTGTCATTACCCGCTGAATAAMKLAPAQLGKHLQGALAPVYIISGDDPLLCQEAADAIRSAARQQGFDERQVFAADASFDWGTLLQAGASMSLFAEKRLLELRLPSGKPGDKGAAALIEYCSRPAEDTVLLISLPKLDGSAQKTKWGKALVEGQQTQFVQIWPVDVSQLPSWIRQRLSQAGLSASQDAVELIAARVEGNLLAAAQEIEKLKLMAEGGQITVETVQAAVADSARFDVFGLTDAILNGEAAHALRMLEGLRGEGVEPPVILWALARELRLLANLSLQYSQGVPLDKAFSQARPPVWDKRKPLMSKALQRYSASRWAQLLLEAQRIDAQIKGQAAGSPWMSLSRLSLLMAGQRLSLPAENANANANANA
D1-35_04713606lptELPS-assembly lipoprotein LptEATGATCAAACGTAATCTGCTGGTTATGGGCCTGGCGGTCCTGCTGAGCGCCTGCGGCTTCCAGCTGCGCGGCACTGGCACCACCGAGCTGGCCATCAAGGAACTGGACCTCAGCGCGCGGGACGCTTATGGCGATACCGTGAAAATGCTGCGTCAGACCCTGGAAAACAGCGGTGTGAAAGTCTACAGCGGCGCACCGTACAAGCTGGTATTGGCAAGCGAACAGCAAAGCCAGCGCAGCCTCAGCTATGCCGGCGCCGGTCGTTCGGCCGAGTACGAGCTGACCAACGTGTTGAACTACGAAATCCGCGGCCAGAATGGTCTGTCGCTGCTGGATGACAAGCTGCAGGTGCAGAAGGTCTACCTGCACGACGGCAACAACATCACCGGTTCCGATCAGGAGTCCGTCGAAGTACGCGGCGAAATGCGTCGTGAACTGGTCCAGCGCATGATGCTGCGCCTGCAACAGCTGAGCCCCGCTCAACTGGACCAGTTGCAACAGACCGCCGACGCTCGCGCCAAGGCCGAAGCCGAAGCGCTGGAAGCGGCACGCAAGGCTGAGGCGGAAACCCCGCAACAGTCGCCGTTGCAGATCCCGGCTCAATAAMIKRNLLVMGLAVLLSACGFQLRGTGTTELAIKELDLSARDAYGDTVKMLRQTLENSGVKVYSGAPYKLVLASEQQSQRSLSYAGAGRSAEYELTNVLNYEIRGQNGLSLLDDKLQVQKVYLHDGNNITGSDQESVEVRGEMRRELVQRMMLRLQQLSPAQLDQLQQTADARAKAEAEALEAARKAEAETPQQSPLQIPAQPGPT0023297_284DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_TRANSPORT,PGPT0023297-lptE|rlpB-K03643NANA
D1-35_047142739leuSLeucine--tRNA ligaseATGTATGCTACGGCGCTTCCTGTAACTCCACTTCCAGCTTGGCTGGGCATCGAAAACGCCGCATTCGGCGTCGTCTGCGTCCAGCATGGCCACGAAGAGGATTGGGCCACCCCATTCAGTACAAAAGTAGCCATGCACGAACACTACCAGCCCCGTGAAATCGAAGCCGCCGCCCAGTCGTTCTGGGATGAGCAAAAGTCCTTTGAAGTCAGTGAACAGCCAGGCAAGGAGACGTACTACTGCCTGTCGATGTTCCCTTACCCCAGCGGCAAGCTGCACATGGGGCACGTGCGCAACTACACCATCGGCGACGTGATCTCCCGCTACCAACGCATGCAGGGCAAGAATGTCCTGCAACCGATGGGTTGGGACGCCTTCGGCATGCCGGCGGAAAACGCCGCGATGAAAAACAACGTGGCCCCTGCCAAGTGGACCTACGAAAACATCGCCTACATGAAGACCCAGCTGCGCAGCCTGGGCCTTGCGGTGGACTGGTCCCGCGAGGTCACCACCTGCAAGCCCGAGTACTACCGCTGGGAGCAGTGGCTGTTCACCCGCCTCTTCGAAAAAGGCGTGATCTACCGCAAGAACGGCACCGTGAACTGGGACCCGGTGGACCAGACCGTACTGGCCAACGAGCAGGTCATCGACGGTCGCGGCTGGCGCTCCGGCGCGCTGATCGAAAAGCGCGAGATCCCGATGTACTACTTCAAGATCACCGCGTACGCGGATGAACTCCTGGAGAGTCTCGACGAGCTGACCGGCTGGCCCGAGCAGGTCAAGACCATGCAGCGCAACTGGATCGGCAAGTCCCGGGGCATGGAAGTGCAGTTCCCGTACGACGTCGCCTCCATTGGCGAGGCCGGCACCCTGAAAGTCTTCACCACCCGTCCGGATACCCTGATGGGCGCCACCTACGTAGCCGTGGCCGCCGAACATCCGCTGGCGACCCTCGCAGCGCAGAACAACCCCGAGCTGCAGGCGTTCATCGCCGAATGCAAGGGCGGCAGCGTCGCCGAAGCCGATGTCGCCACCCAGGAAAAGAAAGGCCTGCCGACCTCGCTGTTCGTCGAACACCCGCTCACCGGCGAGAAACTTCCGGTGTGGGTCGCCAACTACGTGCTGATGCACTATGGCGACGGCGCCGTGATGGCCGTGCCGGCTCACGACGAACGCGACTTCGAGTTCGCCCACAAGTACAACCTGCCAGTCAAACCGGTCGTGCGCACCAGCGCCGGTGACCAGACCCCGGCGCCATGGCAGGATGCCTATGGCGAGCACGGTGAGCTGATCAATTCCGGCGAGTTCAACGGCCTGGATTTCGCCGGTGCGTTCGACGCCATCGAAGTCGCCCTGATCAAGAAGAACCTTGGTGCCTCGCGCACCCAGTTCCGCCTGCGTGACTGGGGCATCAGCCGCCAGCGCTACTGGGGCTGCCCGATCCCGATCGTGCATTGCGACACCTGCGGCGATGTACCGGTACCGGAAGACCAGTTGCCAGTGGTCCTGCCGGAAGACGTCGTACCCGACGGCGCCGGCTCGCCCCTGGCGCGCATGCCCGAGTTCTACGAATGCAGTTGCCCGAAATGCGGCGCACCGGCCAAGCGTGAAACCGACACCATGGACACCTTCGTCGAGTCCTCGTGGTATTACGCCCGCTACGCCTCGCCGCATTATGAAGGCGGCCTGGTGGAAAAATCCGCGGCCGACCACTGGTTGCCGGTGGACCAGTACATCGGCGGCATCGAACACGCCATCCTGCACCTGCTCTACGCGCGCTTCTTCCACAAGCTGATGCGCGACGAAGGCCTGGTGAGCTCCAACGAGCCGTTCAAGAACCTGCTGACCCAAGGCATGGTGATCGCCGAGACTTACTATCGTCGCGAAGCCAATGGTGCCTATACCTGGTTCAACCCGAGCGACGTCGAGCTCGAACGCGACAGCAAAGCCAAGGTCATCAGCGCCAAGCTGATCGCCGATGGCCTGCCGGTGGAAATCGGCGGCACCGAGAAGATGGCCAAGTCGAAGAACAACGGCGTCGACCCACAGTCGATGATTGATCAGTTCGGCGCGGACACCTGCCGCCTGTTCATGATGTTCGCGTCGCCACCCGACATGAGCGCCGAATGGTCCGACTCCGGCGTCGAAGGCTCGCACCGCTTCCTCAAGCGCGTCTGGCGCCTGGCCCAGGCTCACGTCAGCCAGGGTCTGCCAGGCAAGCTGGACCTCGCCGGCCTGAACGACGAGCAGAAAGCCATTCGTCGCTCGATTCACCTGGCGATCAAGCAGGCCAGCCATGACGTCGGCCAGAACCACAAATTCAACACGGCCATCGCCCAAGTAATGACGCTGATGAATGTGCTGGAAAAAGCCGCGCAAGACACCGAACAGGATCGCGCGCTGGTTCATGAAGGCCTGGAAGCGGTGACGCTGCTGCTCGCGCCAATCACCCCGCACATCAGCCATGAACTGTGGAATCAACTGGGTCACGCCGACCCGGTGATCGACGCCGGTTGGCCGGTGGTGGACGAAACAGCGCTGGTACAAGACAGCCTGACCCTGGTCATCCAGGTCAACGGCAAGCTGCGCGGCCAGATCGACATGCCGGCCGCCGCCACTCGCGAAGAAGTCGAAGCCGCCGCACGCGCCAACGAAAACGTACTGCGCTTCGTCGATGGCCTGACGATCCGCAAAGTGATCGTCGTGCCCGGCAAACTGGTCAATATCGTCGCAAGCTAAMYATALPVTPLPAWLGIENAAFGVVCVQHGHEEDWATPFSTKVAMHEHYQPREIEAAAQSFWDEQKSFEVSEQPGKETYYCLSMFPYPSGKLHMGHVRNYTIGDVISRYQRMQGKNVLQPMGWDAFGMPAENAAMKNNVAPAKWTYENIAYMKTQLRSLGLAVDWSREVTTCKPEYYRWEQWLFTRLFEKGVIYRKNGTVNWDPVDQTVLANEQVIDGRGWRSGALIEKREIPMYYFKITAYADELLESLDELTGWPEQVKTMQRNWIGKSRGMEVQFPYDVASIGEAGTLKVFTTRPDTLMGATYVAVAAEHPLATLAAQNNPELQAFIAECKGGSVAEADVATQEKKGLPTSLFVEHPLTGEKLPVWVANYVLMHYGDGAVMAVPAHDERDFEFAHKYNLPVKPVVRTSAGDQTPAPWQDAYGEHGELINSGEFNGLDFAGAFDAIEVALIKKNLGASRTQFRLRDWGISRQRYWGCPIPIVHCDTCGDVPVPEDQLPVVLPEDVVPDGAGSPLARMPEFYECSCPKCGAPAKRETDTMDTFVESSWYYARYASPHYEGGLVEKSAADHWLPVDQYIGGIEHAILHLLYARFFHKLMRDEGLVSSNEPFKNLLTQGMVIAETYYRREANGAYTWFNPSDVELERDSKAKVISAKLIADGLPVEIGGTEKMAKSKNNGVDPQSMIDQFGADTCRLFMMFASPPDMSAEWSDSGVEGSHRFLKRVWRLAQAHVSQGLPGKLDLAGLNDEQKAIRRSIHLAIKQASHDVGQNHKFNTAIAQVMTLMNVLEKAAQDTEQDRALVHEGLEAVTLLLAPITPHISHELWNQLGHADPVIDAGWPVVDETALVQDSLTLVIQVNGKLRGQIDMPAAATREEVEAAARANENVLRFVDGLTIRKVIVVPGKLVNIVASNANANANANA
D1-35_04715321hypothetical proteinATGGTTGAATCACAACGAAAAGTCGCTACACCTGAGCTGTACGAAAAACTGATCGATCGTCTCGGGGTGGCCCTGGACGCGGCAAGAACCGCCGGTCGCTTGCGTGATGAACGCCCGGCAGAGCTGGAACTACGCGGCTTGAGCCCCGCAGAGTTCGAAGTCGTCAAGGCTTACCTTGAGCAGGTCGGGCACCAGGCCTCCTCCAGTGGTGTCCAGGCAAACAAGCGTCTCGATGCGCCCCGTCCGGCCAAGGTTGTCTGGCTCAAGGACCGGACGCCCGACAAGGATGCTGTAAAGGTCCGCTCGCTGCAGTTCAAGTGAMVESQRKVATPELYEKLIDRLGVALDAARTAGRLRDERPAELELRGLSPAEFEVVKAYLEQVGHQASSSGVQANKRLDAPRPAKVVWLKDRTPDKDAVKVRSLQFKNANANANANA
D1-35_04716762hypothetical proteinATGCCGTTTCGTTATTTCATCAAACAACTTCTATTGCCGCCCGGCATTCTTTTACTGCTGCTGGCGCTTGCCTGGTGGTGGCGCGACTCCCGGCCGCGCCTGGCTCGCCTGTGTTTTGCGGCGGGCCTGGGTGGTTTCTGGCTGATGAGCCTGCCGGTGGTAGTGCAGTGGAGCGCCGGGGCATTGGAGCGTGAGCCGCCACTGCCGCGCAGTGAATGGGCGACCCTGGCTCAGCGTGCCGACGCCATCGTGGTGCTGGGGTCCGGTCGTGAGCGTGGCGACCTGGCCTGGGGCACTGACCAGCCCACCGGTATCGGTCTGGAGCGCCAGCGCTATGCGGCGCGCCTGGCGAAGGCGTCCGGCCTGCCTGTGCTGACTACTGGTGGCTTGCACTATGGCACTCCGCCCAGCGAAGCGAAGCTGATGGCCGACGCGATGCGCGATGATCACGGGGTGACCGTACGCTGGCTGGAAGAGCGCAGCCGCACGACTTGGGAAAATGCCCAGATGAGCGCGCAGATTCTGTTGCCTGAAGGCGTCAAGCGCGTGGTCGTTGTGACCCAGGCCTGGCATATGCCGCGCGCGGTCTGGAGCTTCCAGCGTGCGGGCTTCGAGGTGGTACCGGCGCCGATGGGGTTTCTCGGCCAGGATAACGCCCGGCCATTGGGCGGCTGGATGCCGGAATTCAAGTCGATCTGGCAGTCGGGACAGTTGATGAATGAAGCGGTGGGGTTGGTGGGGTATTGGTTGTTCTACCGCTGAMPFRYFIKQLLLPPGILLLLLALAWWWRDSRPRLARLCFAAGLGGFWLMSLPVVVQWSAGALEREPPLPRSEWATLAQRADAIVVLGSGRERGDLAWGTDQPTGIGLERQRYAARLAKASGLPVLTTGGLHYGTPPSEAKLMADAMRDDHGVTVRWLEERSRTTWENAQMSAQILLPEGVKRVVVVTQAWHMPRAVWSFQRAGFEVVPAPMGFLGQDNARPLGGWMPEFKSIWQSGQLMNEAVGLVGYWLFYRNANANANANA
D1-35_047171524lntCOG0815Apolipoprotein N-acyltransferaseATGCGCTGGATAACCCGCCCCGGCTGGCCCGGTAACCTGCTGGCCGTGGCGGCCGGCGCGATCACCACCCTGGCGTTGGCACCCTTCGACATCTGGCCGCTGGCATTGCTCGCGGTCGGGTTGTTCTACGCCGGCTTGCGCGAACTCTCGCCCCGCCAGGCCCTGGGCCGTGGTTGGTGTTTCGGTTTCGGCCTGTTTGGCGCCGGCACCAGCTGGATCTACGTCAGCATTCACAACTTCGGCGGCGCCTCGGTGCTGCTCGCCGGTCTGTTGATGCTGTTGTTCATCGCCTCCATCGCCTGGTTTTTCGCCCTGCCCGCCTGGCTGTGGGCGCGCTGGCTGCGGCGCAACGAGGCGCCCCTGGCCGACGCACTGGCCTTCGCCGCGCTGTGGTTGGGCCAGGAAGCTTTCCGCGGCTGGTTCCTGACCGGTTTCCCGTGGCTTTATTCCGGCTATAGCCAGCTCGATGGCCCGCTGGCGGGGCTCGCGCCGCTGGGCGGGATGTGGCTGATATCCTTCACCCTCGCCCTGACCGCCGCGCTGCTGTACAACGTGCCCCGGCTGCTGCGCGCCGGGCGCAAGGGCTTCATCGCTGCGGGCCTGGTGCTGCTGGTCGGTCCGTGGGTCGCCGGCATGACGCTCAAGGGCCACGCCTGGACCAGTCCTTCGGGCGACCCGCTGAGCGTGGCGGCGATCCAGGGCAATATCGAACAAAGCATGAAGTGGGACCCCGAACAGCTCAACGCGCAGTTGGCGCTGTACCGCGACATGAGCCTCAGTTCCAAGCGCGTCGACCTGCTGGTCTGGCCGGAAACCGCGGTGCCGGTGCTCAAGGAGTCTGCCCAGGGTTACCTGGACATGATGGGCAGCTTCGCCGCCGAGCGGCATTCGGCGCTGATCACCGGCGTGCCGATTCGCCAACTGGTGCGCCACGAGAGACGCTACTTCAACGGCATCACCGTGACCGGAGAAGGCGATGGCACCTACCTCAAGCAGAAACTCGTGCCCTTCGGCGAGTACGTGCCGTTGCAGGACCTGCTGCGCGGGCTGATCGCATTCTTCGACTTGCCCATGTCGGATTTCGCCCGGGGCCCGGCCGACCAGCCACTGCTGCAAGCCAAGGGTTACCAGATCGCTCCATTCATTTGTTACGAAGTGGTCTACCCGGAATTCGCCGCCAGCCTTTCGGCGCGCAGCGACCTGCTGCTGACCATCAGCAACGACACCTGGTTCGGCACCTCGATCGGCCCCTTGCAGCACCTGCAAATGGCGCAGATGCGCGCGCTGGAAGCCGGCCGCTGGATGATTCGTGCCACCAACAACGGCGTGACCGGCCTGATCAACCCCTTCGGCCAGATCACCGTCAGCATCCCGCAATTCGAGCGCGGCATCCTCTACGGCGAAGTGGTGCCGATGCACGACCTGACGCCCTACCTGCAATGGCGTTCGTGGCCGTTGATCATCCTGTGCGTGTTGCTGCTGGGCTGGGCGTTGATGGCCGGACGGATGGCCAAGACCGTTTGAMRWITRPGWPGNLLAVAAGAITTLALAPFDIWPLALLAVGLFYAGLRELSPRQALGRGWCFGFGLFGAGTSWIYVSIHNFGGASVLLAGLLMLLFIASIAWFFALPAWLWARWLRRNEAPLADALAFAALWLGQEAFRGWFLTGFPWLYSGYSQLDGPLAGLAPLGGMWLISFTLALTAALLYNVPRLLRAGRKGFIAAGLVLLVGPWVAGMTLKGHAWTSPSGDPLSVAAIQGNIEQSMKWDPEQLNAQLALYRDMSLSSKRVDLLVWPETAVPVLKESAQGYLDMMGSFAAERHSALITGVPIRQLVRHERRYFNGITVTGEGDGTYLKQKLVPFGEYVPLQDLLRGLIAFFDLPMSDFARGPADQPLLQAKGYQIAPFICYEVVYPEFAASLSARSDLLLTISNDTWFGTSIGPLQHLQMAQMRALEAGRWMIRATNNGVTGLINPFGQITVSIPQFERGILYGEVVPMHDLTPYLQWRSWPLIILCVLLLGWALMAGRMAKTVPGPT0024470_2975DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-OTHER_CELL_MEMBRANE_REMODELLING_PROTEINSCE-REMODELLING_LIPOPROTEIN_METABOLSIM,PGPT0024470-lnt-K03820NANA
D1-35_04718840corCCOG4535Magnesium and cobalt efflux protein CorCATGAGCGAAGATCGATCGACCAACGGGCAGAAGTCATGGCTGGGCAAGCTCACCCAGGCTTTTGCCCATGAGCCGAAAAACCGCCAGGAGCTGCTGGAGCTGCTGCGCGATGCACACCAGAACAAACTGTTGGACAGCGAAGCGCTGGCCATCGTCGAAGGCGCCATCCAGGTCGCTGACCTGCAAGTGCGGGACATCATGGTCCCGCGCTCGCAGATGGTCAGCATCAAGGCGACCCAGACTCCCCGCGAATTCCTTCCGGCCGTGGTCGATTCCGCTCACTCGCGCTACCCGGTCGTCGGCGAGAGCCATGACGACGTCATGGGCGTGCTGCTGGCCAAGGACCTGCTGCCGCTGATCCTCCAGGAGAACGGCGACAGCTTCAACATCAAGGACTTGCTGCGTCCGGCCACCTTCGTGCCCGAGTCCAAGCGCCTTAACGTGCTGCTGCGCGAGTTCCGCGCCAATCACAATCATATGGCCATCGTCATCGACGAATACGGTGGCGTGGCCGGACTGGTTACCATCGAAGACGTGCTTGAGCAGATCGTCGGCGACATCGAGGACGAACACGATGTCGAGGAAGACAGCTACATCAAGCCACTGCCCAGCGGTGACTTCCTGATCAAGGCCCTGACGCCCATCGAGAACTTCAACGAGTTCTTCGACAGCGAGTTTTCCGACGATGAGTTCGATACCGTCGGCGGCTTGGTCATGAGCGCTTTCGGCCACCTGCCCAAGCGTAACGAAACCACCGAGATCGGCTCCTGGCGCTTCCGCATCCTCAATGCCGACAGTCGCCGGATCCATCTGCTGCGCCTGTCACCCATTGCCCGTTAAMSEDRSTNGQKSWLGKLTQAFAHEPKNRQELLELLRDAHQNKLLDSEALAIVEGAIQVADLQVRDIMVPRSQMVSIKATQTPREFLPAVVDSAHSRYPVVGESHDDVMGVLLAKDLLPLILQENGDSFNIKDLLRPATFVPESKRLNVLLREFRANHNHMAIVIDEYGGVAGLVTIEDVLEQIVGDIEDEHDVEEDSYIKPLPSGDFLIKALTPIENFNEFFDSEFSDDEFDTVGGLVMSAFGHLPKRNETTEIGSWRFRILNADSRRIHLLRLSPIARPGPT0004695_1225DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-MAGNESIUM_TRANSPORT,PGPT0004695-corC-K06189NANA
D1-35_04719459ybeYCOG0319Endoribonuclease YbeYATGCTTGAACTCGACCTGCAACTGGCCAGCGAACATGCAGCCCCCGGCGAGGCCCAGTTCCGTCAATGGTGCGAACTGGCCCTGCGTCAGCGTAGCGCCGACTCGGAACTGACCATCCGCCTGGTGGACGAAGCCGAAGGTCGCGAGTTGAACCACACCTGGCGGCAGAAGGACTACGCCACCAACGTGCTGTCCTTCCCCGCCGACGTGCCCGACGAGCTGCTCGATATCCCGCTATTGGGCGACCTGGTGATTTGCGTCCCCGTGGTGGAGCGTGAAGCGGCGGAACAACACAAGACCCCTGAGGCCCACTGGGCTCACCTGGTGATTCACGGCTGCTTGCATTTGCTCGGTTACGACCATATGGAAGATGACGAAGCCGAGGAAATGGAAGCACTGGAACGAACGTTGCTTGCCGAGCTGGGTCATCCCGACCCTTATGCCGGCGACGAACACTGAMLELDLQLASEHAAPGEAQFRQWCELALRQRSADSELTIRLVDEAEGRELNHTWRQKDYATNVLSFPADVPDELLDIPLLGDLVICVPVVEREAAEQHKTPEAHWAHLVIHGCLHLLGYDHMEDDEAEEMEALERTLLAELGHPDPYAGDEHPGPT0024340_2792DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_KINASE_ACTIVITY,PGPT0024340-dgkA|DGK-K00901NANA
D1-35_047201155ybeZCOG1702PhoH-like proteinGTGACAGCGCTTTCGCGAGCAGGCTCGCTCCCACACTGGTCGTGGCGAGCCTGTTGTCAGATTGCGCCGCTTAAGAGCTTTCGCACCCAGCCTACTGGCGTTATCCTTGATTTCATCTTAATTGCCCCTGGGCGGCTAAAAACGACCTTGAACGCACCCATCGAACCACATCGTTTCATTCTCGAGCCCTTCGAGGCTCGCCGCTTCGCCAATCTGTGCGGGCAATTCGACGAGCATCTGCGCTTGATCGAACAGCGCCTGGCCATCGAGATCCGCAACCGCGGAAACCAGTTCGAACTGATCGGCGAACCCAAGCACACCTCCTCCGCGGAAAACCTGCTGCGCCGCCTCTATCGGGAAACCAAGGCAAGCGAGCTGTCGCCGGATCTGGTCCATCTGTTCCTGCAGGAATCGGCTGTCGAGGAACTCGACAACCCAGCCCCTGCGGAACCTGCGGTGGCCCTACGCACGAAAAAAGGCATGATTCGCCCGCGCGGCCTGAATCAGCAGCGCTACGTGAAGGAAATCCTCGCCAACGATATCAATTTCGGTATCGGCCCGGCCGGCACCGGCAAGACGTACCTGGCCGTGGCCTGTGCGGTCGATGCGCTGGAGCGCGAACAGGTGCGACGCATCCTGCTGGTGCGCCCGGCGGTCGAAGCCGGGGAAAAGCTCGGCTTCCTGCCCGGCGACCTTTCCCAGAAAATCGACCCGTACCTGCGCCCGCTCTACGATGCGCTGTACGAAATGCTCGGTTTCGAATACGTCGCCAAGCTGATCGAACGCCAGGTCATCGAGGTTGCGCCACTGGCCTACATGCGTGGCCGCACCCTGAACAACAGCTTCATCATCCTCGACGAAAGCCAGAACACCACCGTCGAACAGATGAAGATGTTCCTGACCCGGATCGGCTTCGGCTCCACCGCCGTCATCACCGGGGACATCACCCAGGTCGACCTGCCCCGTGGCACCAAGTCCGGGCTGAACCATGTGATCCAGGTGCTCAAGGATGTTCCGGGCATCAGCTTCACGCATTTCATGCCCAAGGACGTCGTGCGCCATCCGCTGGTGCAGCGCATCGTCGAAGCCTATGAACGCTTCGAGAATCGCCAGGAAGACGCGCCCGCCGCCAAGGGCAACAGCCACGATGCTTGAMTALSRAGSLPHWSWRACCQIAPLKSFRTQPTGVILDFILIAPGRLKTTLNAPIEPHRFILEPFEARRFANLCGQFDEHLRLIEQRLAIEIRNRGNQFELIGEPKHTSSAENLLRRLYRETKASELSPDLVHLFLQESAVEELDNPAPAEPAVALRTKKGMIRPRGLNQQRYVKEILANDINFGIGPAGTGKTYLAVACAVDALEREQVRRILLVRPAVEAGEKLGFLPGDLSQKIDPYLRPLYDALYEMLGFEYVAKLIERQVIEVAPLAYMRGRTLNNSFIILDESQNTTVEQMKMFLTRIGFGSTAVITGDITQVDLPRGTKSGLNHVIQVLKDVPGISFTHFMPKDVVRHPLVQRIVEAYERFENRQEDAPAAKGNSHDAPGPT0002700_124DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-PHOSPHATE_STARVATION_RESPONSE,PGPT0002700-phoH-K06217NANA
D1-35_047211365miaBCOG0621tRNA-2-methylthio-N(6)-dimethylallyladenosine synthaseATGCGCGGTTCTTTGAATCACGTGATGAACCCGTCCATGGCCAAGAAGCTTTACATCGAAACCCACGGTTGCCAGATGAACGAGTACGACAGCTCGCGCATGGTCGATCTGCTGGGTGAACACCAGGCCCTGGAAGTCACCGCTCGCGCGGAAGACGCGGACGTGATCCTGCTCAACACCTGCTCGATCCGCGAACGCGCCCAGGACCGGGTGTATTCCCAGTTGGGCCGCTGGCGCGAACTGAAGCTGGCCAACCCGGATATGGTCATTGCCGTTGGCGGCTGTGTCGCCAGCCAGGAAGGCGCGGCCATTCGTGACCGCGCGCCCTACGTGGACGTGGTCTTTGGCCCACAGACCCTGCACCGCCTGCCGGAGATGATCGACGCCGCACGCATTACCAAGCTGCCGCAAGTAGACGTCTCGTTCCCGGAAATCGAAAAATTCGATCACCTGCCCGAACCGCGTATCGACGGCCCAAGTGCCTACGTATCGGTGATGGAAGGCTGCAGCAAGTACTGCACCTTCTGCGTGGTGCCGTATACCCGCGGCGAAGAAGTCAGCCGCCCCTTCGACGACGTGATTGCCGAGATCATCCACCTGGCGGAAAACGGCGTGCGCGAAGTGACCCTGCTGGGGCAGAACGTCAACGGCTACCGAGGGCTGACCCATGACGGTCGCCTGGCGGACCTTGCCGAACTGATCCGCGTCGTGGCGGCGGTGGACGGCATTGACCGCATCCGTTACACCACCTCACACCCGCTGGAGTTTTCCGACAGCCTGATCCAGGCCCACGCCGAGGTCCCCGAACTGGTCAAGCACCTGCACCTGCCGGTGCAATCGGGTTCCGACCGGATCCTCGCGGCCATGAAGCGCAACCACACGGCGCTCGAATACAAATCCAAGCTGCGCAAGTTGCGCGCGGCGGTCCCGGGGATCTGCATCAGTTCGGATTTCATCGTCGGTTTCCCCGGCGAAACCGAGAAGGATTTCCAACAGACCATGAAGCTGATCGAGGATGTGGGCTTCGATTTCTCCTATTCCTTTGTCTACAGCCAGCGCCCCGGCACGCCAGCGGCGGACCTGGTGGACGAGACGCCCGAGGAAGTGAAGAAGGAGCGACTCAATGCCTTGCAGCACCGCCTTAACCAGCAAGGTTTCGAGATCAGCCGACAAATGGTCGGCTCCATCCAGCGGATCCTGGTGACCGATTACTCGAAAAAAGACCCGGGCGAATTGCAGGGGCGCACCGAGAATAACCGTATCGTCAACTTCCGCTGCGACACTCCGGCATTGATCGGCCAGTTCGCCGACGTGCACATCGACGCCGCGCAACCGCACTCCCTGCGCGGTTCGCTGGTCCAGTAAMRGSLNHVMNPSMAKKLYIETHGCQMNEYDSSRMVDLLGEHQALEVTARAEDADVILLNTCSIRERAQDRVYSQLGRWRELKLANPDMVIAVGGCVASQEGAAIRDRAPYVDVVFGPQTLHRLPEMIDAARITKLPQVDVSFPEIEKFDHLPEPRIDGPSAYVSVMEGCSKYCTFCVVPYTRGEEVSRPFDDVIAEIIHLAENGVREVTLLGQNVNGYRGLTHDGRLADLAELIRVVAAVDGIDRIRYTTSHPLEFSDSLIQAHAEVPELVKHLHLPVQSGSDRILAAMKRNHTALEYKSKLRKLRAAVPGICISSDFIVGFPGETEKDFQQTMKLIEDVGFDFSYSFVYSQRPGTPAADLVDETPEEVKKERLNALQHRLNQQGFEISRQMVGSIQRILVTDYSKKDPGELQGRTENNRIVNFRCDTPALIGQFADVHIDAAQPHSLRGSLVQPGPT0007215_2615DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007215-miaB-K06168NANA
D1-35_04722330hypothetical proteinATGACCAAACGTGAAGCTCCAATCTACAAGGTGATTTTCCTCAACCAGGGCCAGGTGTTCGAAATGTACGCCAAACAGATCTATCAGAGTGATCTGTGGGGCTTCCTGGAGGTCGAGGAATTCGTCTTTGGCGAGCGCACGCAAGTGGTCGTCGACCCGAGCGAAGAAAAGCTCAAGGCGCAGTTCGAAGGCGTGGTGCGCAGCTTCGTGCCGATGCACTCGATCGTGCGCATCGACGAGGTCGAGCGCCTGGGCACGCCGAAAATCAGCGAAGCCCGTGGCGCGGTCGGCAATGTCATGCCGTTTCCGATGCCGATGCCTGAGAAGTAAMTKREAPIYKVIFLNQGQVFEMYAKQIYQSDLWGFLEVEEFVFGERTQVVVDPSEEKLKAQFEGVVRSFVPMHSIVRIDEVERLGTPKISEARGAVGNVMPFPMPMPEKNANANANANA
D1-35_04723555hypothetical proteinATGAACCGCACCGGCCGCACCCTTGCCTTGGGCTGCCTGTTGCTCCTTCAGCCCCTGCTCGCCAACGCACAGGCAGGCGGCAACTCGTTGTTGATCCCGGCGATGGGCCGTTGCACGCTCAACACCCAGCCACAAGATCTGGCACCGGCACTCGACGCCTGTCGAAAAGCCGCCGACGAGGGCGATGCCCAAGCGCAATATGAGCTGGGCGAGTTCTACTATGACGGCAAGGCCGCGCCCCGCGACCTCAAGCAAGCCCTCGACTATTTCGAAAAAGCCTCGCTGCAAGGCCACGCCCAGGCGCAATTCAAGCTTGGCGGCATGTTCTTCCATGGCGAAGGTGTGCCGGCCAACAACGTCCAGGCTTACATCGTATTGAAGATGGCGGCGGTCAACGGCGCCGAGGAGGCACTGGACACCGCCGATGAAGTCGCCGAGCAGATGCCCCGCGACGAGCTGGAAGTGGCGACCCAGGTGCTGGGCCAGATCTTTCGCAAATACCTGATGGAATTGCAGAACGCCGACGGGCGTACGCCGTTCTCGCCGCTGCCCTGAMNRTGRTLALGCLLLLQPLLANAQAGGNSLLIPAMGRCTLNTQPQDLAPALDACRKAADEGDAQAQYELGEFYYDGKAAPRDLKQALDYFEKASLQGHAQAQFKLGGMFFHGEGVPANNVQAYIVLKMAAVNGAEEALDTADEVAEQMPRDELEVATQVLGQIFRKYLMELQNADGRTPFSPLPPGPT0000855_6128DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISOTHER_MOTILITY_REGULATING_FUNCTIONSMOTILITY-ACIDITY|NITROGEN_RELATED_REGULATION,PGPT0000855-exoR-K07126NANA
D1-35_047241284hemLCOG0001Glutamate-1-semialdehyde 2,1-aminomutaseATGTCCCGTTCCGAAACCCTGTTTGCCAACGCTCAGAAACACATCCCCGGCGGCGTGAATTCACCCGTTCGTGCGTTCAAGAGCGTCGGCGGCACCCCGCTGTTCTTCAAGCACGCCGAGGGCGCGTATGTCACCGACGAAGACGACAAGCGCTACGTCGACTACGTGGGTTCGTGGGGCCCGATGATCCTCGGCCACAGCCATCCGGACGTGTTGGACGCGGTGCGCAAGCAATTGGAGCACGGCTTGTCCTATGGCGCGCCGACCGCGATGGAAACCGAAATGGCCGATCTGGTCTGCTCCATCGTGCCATCGATGGAAATGGTGCGCATGGTCAGTTCCGGCACCGAGGCGACCATGAGCGCGATCCGCCTGGCGCGCGGCTACACCGGGCGCGACAGCATCATCAAATTCGAAGGCTGCTACCACGGTCACTCCGACAGCCTGCTGGTCAAGGCCGGCTCCGGTGCGCTGACCCAAGGCGTGCCCAGCTCGGCGGGCGTACCGGCGGCATTTGCCAAACACACGCTGACCCTGCCGTTCAACGACCTCGAAGAAGTCGAGAAAATGCTCGGGGAAGTCGGCCAGGAAGTGGCCTGCATCATCGTCGAGCCGGTGGCCGGCAACATGAACTGCGTGCCGCCAGCGCCGGGTTTCCTCGAAGGCCTGCGCAGCCTGTGCGACCAGCACGGCGTGGTACTGATTTTCGACGAAGTGATGACCGGCTTCCGCGTCGCCCTCGGCGGTGCCCAGGCTCATTACGGCGTAACGCCGGACCTGAGCACCTTCGGCAAGATCATCGGCGGCGGCATGCCGGTAGGCTGCTTCGGCGGCAAGCGCGCGATCATGGAATGCATCGCCCCGCTGGGGCCGGTCTACCAGGCCGGTACCTTGTCGGGCAATCCGCTGGCCATGGCTGCCGGCCTGACCACCCTGCGCCTGATCAGCCGTCCGGGTTTCCACGCCGAGCTGAGCGACTTCACCACTCGCCTGCTCGACGGCTTGCAAGTACGCGCCGATGCGGCGGGCATCCCGTTCGTGACCACCCAGGCCGGCGGCATGTTCGGCCTGTACTTCAGTGGCGCCGATGACATCGTGACCTTCGACGACGTGATGGCCAGCGACGCCGACCGCTTCAAGCGCTTCTTCCACCTGATGCTCGAGGGTGGCGTATACCTGGCGCCAAGCGCGTTCGAAGCCGGCTTCACCTCCATCGCCCATGGCGAGGCGGAGTTGAAGATCACCCTCGACGCGGCCGAGCGGGCCTTTGCTGCACTGAAGTAAMSRSETLFANAQKHIPGGVNSPVRAFKSVGGTPLFFKHAEGAYVTDEDDKRYVDYVGSWGPMILGHSHPDVLDAVRKQLEHGLSYGAPTAMETEMADLVCSIVPSMEMVRMVSSGTEATMSAIRLARGYTGRDSIIKFEGCYHGHSDSLLVKAGSGALTQGVPSSAGVPAAFAKHTLTLPFNDLEEVEKMLGEVGQEVACIIVEPVAGNMNCVPPAPGFLEGLRSLCDQHGVVLIFDEVMTGFRVALGGAQAHYGVTPDLSTFGKIIGGGMPVGCFGGKRAIMECIAPLGPVYQAGTLSGNPLAMAAGLTTLRLISRPGFHAELSDFTTRLLDGLQVRADAAGIPFVTTQAGGMFGLYFSGADDIVTFDDVMASDADRFKRFFHLMLEGGVYLAPSAFEAGFTSIAHGEAELKITLDAAERAFAALKPGPT0003680_4471DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0003680-hemL-K01845NANA
D1-35_04725627thiE_2COG0352Thiamine-phosphate synthaseATGAAATTACGTGGCCTTTATGCCGTCACCGACAGCCAGTTGCTGGCCGGCAAGTTCCTCGCCTACGTGGAAGCCGCGCTGGAAGGTGGCGTGACCCTGCTGCAATACCGCGACAAAAGCAGCGACGAGGCCCGGCGCCTGCGCGAGGCCGAGGCGCTGCGCAACCTGTGCGAGCGCTACAAGACCCAACTGATTATCAACGATGACGCCGAACTGGCCGCACGCCTCGGCGTCGGCGTCCACCTGGGCCAGACCGATGGCCCGCTGGCGCCGGTGCGGGCGTTGCTGGGGCACAAGGCAATCGTCGGCGCCACTTGCCACGCCAGCCTGGAACTGGCCGAACAGGCCGTCCGGGAAGGCGCCAGCTACGTCGCGTTCGGGCGCTTCTTCAATTCCAATACCAAGCCCGGGGCGCCCGCCGCAAACCTTGAACTGCTCGAACAGACCCGTATCAAACTGCATATACCGGTGTGCGCCATCGGCGGCATCACTCTGGAAAACGCCGCCCCGCTGGTGGCCCATGGCGTCGACCTGCTCGCGGTGGTCCATGGCCTGTTCGGCGCCGACAGCACGGCTGAGGTGACGCGCCGCGCCCGCGCCTTCAACGACCTGCTGCAAACCAAATAGMKLRGLYAVTDSQLLAGKFLAYVEAALEGGVTLLQYRDKSSDEARRLREAEALRNLCERYKTQLIINDDAELAARLGVGVHLGQTDGPLAPVRALLGHKAIVGATCHASLELAEQAVREGASYVAFGRFFNSNTKPGAPAANLELLEQTRIKLHIPVCAIGGITLENAAPLVAHGVDLLAVVHGLFGADSTAEVTRRARAFNDLLQTKPGPT0008995_3761DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008995-thiE-K00788NANA
D1-35_04726798thiDHydroxymethylpyrimidine/phosphomethylpyrimidine kinaseATGAATATCTACAACTCCCGCCCCGTTGTCCTCTGTCTCTCCGGCCACGACCCCAGTGGTGGCGCCGGCTTGCAGGCAGATATCGAAGCCCTGCTCGCCCAGGGTTGTCATGCCGCCCCGGCCGTTACCGCGTTGACCGTGCAAGACACGGTCAATGTCAGCGATTTCCGCGTACTCGATCGCGAGTGGGTAATGGCCCAGGCCAATGCCGTGCTCAACGATTCGCCCGTCGCGGCGGTCAAGCTGGGGATGCTAGGTTCGCTGGAAATGGTCGACACAGTGGTCGAGCTGCTCCAGGCGCATCCACACCTGCCGATGGTCTGCGACCCGGTGCTGCGCGCCGGTGGTGGCGGACGGCTGGGCAAGGATGAAGTCGGCTACGCCATGCGCGAGCGCCTGCTGCCGCTGGCAATCATCGCCACGCCCAACCTTCCTGAAGCACGCATTCTCGCCGAACTGCCGGAAGGCAGCGCCGATGAATGCGCCGAAAAACTGCTGCCCTTCGTCAAGCACCTGCTGATTACCGGCGGTCACGGCGATGAACATGAAGTCCACAATCGCCTGTACAGCCGCGACGGACACCGCGAGACCTTCACCTGCCAGCGCTTGCCCGGCAGCTATCACGGTTCCGGCTGCACCCTGGCCAGCGCCCTGGCCGGCCGGCTGGCCCTGGGTGAACAGCTCGCCAGCGCGGTGAAGACCGCGCTGGATTACACCTGGCGCACCCTGCGCGATGCCGAACAATTGGGCAAAGGCCAGTTCGTACCGCGTCGCCTGCCGCTGGATTTCTGCTCGTAGMNIYNSRPVVLCLSGHDPSGGAGLQADIEALLAQGCHAAPAVTALTVQDTVNVSDFRVLDREWVMAQANAVLNDSPVAAVKLGMLGSLEMVDTVVELLQAHPHLPMVCDPVLRAGGGGRLGKDEVGYAMRERLLPLAIIATPNLPEARILAELPEGSADECAEKLLPFVKHLLITGGHGDEHEVHNRLYSRDGHRETFTCQRLPGSYHGSGCTLASALAGRLALGEQLASAVKTALDYTWRTLRDAEQLGKGQFVPRRLPLDFCSPGPT0008915_3424DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008915-thiD-K00941NANA
D1-35_047272385rcsC_23Sensor histidine kinase RcsCATGCGCTATTTGCTGATGTTGCTGCTGTGCTTGTCCCCCTTGGCAAGCGCCCTTGAATTCGATGAATCTACCCGAAGCCTGCCCTTGGGCCATGCCTTGCAGGTGTTCGAGGATGCCAGCGGCACGGCCACGCTCGAGGACGTCCTGGCCCAGGCCGCGGTTGGGCGCTTCAAACCCCACGACCAAGCCACGCTGAACGCAGGGTATTCGCGCTCGGCGTTCTGGCTGAAGATCGACTTGCACTACCGCCCGGGCAATCCCGGCGCCCAGCGCACCTGGCTGCTGGAGCTGGCGTATCCGCCGCTGGACCGCCTGGACCTGTATCTGGCCGATGCGCAAGGTGCCTATCGCCTGGTTCGCCAGACCGGCGATGCCTTGCCGTTCGCCAGTCGCGAGGTCCGCCAGAACAACTACCTGTTCAGCCTGGATTTCCAACCCGATCAACGCCAGACCGTGTATCTGCGCCTGCAAAGCCAGGGCTCGATCCAGGCTCCGTTGACGCTCTGGTCGAGCACCGCCTACCTGGAACAGCAGCCGGTGCGCCTGTATGTGCTGGGCATCATCTATGGCGTACTGCTGGGGATGCTGGTCTACAACCTGTTCATCTACCTGAGCGTGCGCGACACCAGTTACCTCTATTACATCTTCTATATCGCCTCGTTCGGCCTCTATCAATTGTCGGTCAACGGCGCGGCGGTTGAGTATTTCTGGCCGGACAACCCTTGGTGGGCCAACGCGGCGACGCCATTTTTCATTGGTTGCGCGGGGGTGTTTGGCAGTCAGTTCGCCCGCAGTTTCCTGCAAACCGCCCAGCACAGCCGCTGGCTCGACCGATTGCTGCTCGCGCTGATTGCCTACGGCGCGGTGGTGGTGGGCCTGTCGTTGATGACCAGCTATGCGCTGGCGCTGCGCCTGGCGACGGCGCTGGCCCTGGTGTTCACCGTGGTGATTTTCGCCGCCGGCTTGTTCGCCTGGTGGCGGGGGCTGCGGGTGGCGCGTTACTTCATTATTGCCTGGTCGGCGTTTCTGCTGGGGGGCGTCGTCAATACGATGATGGTGTTGGGTTACCTGCCGAACATCTTCCTGACCATGTATGCCAGCCAGATCGGCTCTGCCATCGAGGTGGCGCTGTTGTCCCTGGCCCTGGCGGACCGCATCAACGCCATGCGCGAACAGCAGGCGCAGACGCTGTTCGACGCCGGGCAGAAACTCGAAGTGCTGAACCAGCAGTTGGCCCAAGGCAACAAGCTCAAGGACGAATTTCTCGCCACGTTGACCCATGAGTTGCGCACGCCGATGAATGGTGTGATCGGTTGCCTGGAACTGATGGAAACCGTCGAGATGGACGAGGAACTCAGCCAGTATCAGCAGACCGCAGCCGGTTCGGCGCGGGACATGATGCGCATGGTCAACGGCATGCTCACCCTCACCGAGTTGCAGGCCGGCAAGCTCAAGGTGTATCCGGCGCCGTTCAGCCTGCGCAGCGTGATAGAGGCCCTGCAGGTGCAGTTCGGCGCCAACGCGGCGGCCAAGGGCCTGGATTTCAAGGTCGACGTAGCGCCTGGCCTGGCGGACCGCTTGCTAGGTGACAGCGGTAAATTGGCCCAGTGCCTGGAATGCCTGCTGGACAATGCCATCAAGTTCACCCGCGTCGGTGGCATCGCGCTGCGGGTCAGTGGCCGGACGTCGGAGCTCGATCGCCTGGTGCTGTCTTTTGCCGTGATCGATACCGGCATCGGCTTTACCGATCTGGGGGAGGCGACCCTGTACCAGCGTTTCTTCCAGCTCGACGGCTCGATGACCCGCGAATACGGCGGCCTCGGCGTCGGCCTGGCGATTTGTCGGCAACTGGTCGAATTGCTCGGCGGACGCCTGACCCATACCTCGGAGCCGGGGCGCGGTAGCCGCTTCCAGCTGGACGTGGAATTTGACATCGCATTGCCTGTGGCCGTCCCGGCAACGTTTCCTGGCGGCGCACGCCGGGCTGCGCGCTTGCCCCAGGAGTGCACGGTGCTGCTGGCCGACGACAACAACATCGACCAACTGGTGATGCGCGGCATGTTGCTCAAGCTTGGCTACCGAGTACGCACCGCCGACAGTGGCCGCGCGGCGCTGGAGCTGCTGCAGGGCGACAGTTTTGACGCGGTGCTGCTCGATTGTCAGTCGACACCATCGGATGGGGTGTCGGTCTGCTGTCAGATCCGCGCGATGTCAGGTTGCGAGGACTTACCCGTGCTGGTGGTCAGCCCGAACGTGGACCAGGCGCATTGCCCTGCGGGTAGCCTGATCGATTACCTGAGCAAACCGGTGAAATTCGAAGCACTGCAGGCGATTCTGCAACGACGGGTACTTTGTCCGAAGCAGGGTGAAAGCGCCGGCATTTAGMRYLLMLLLCLSPLASALEFDESTRSLPLGHALQVFEDASGTATLEDVLAQAAVGRFKPHDQATLNAGYSRSAFWLKIDLHYRPGNPGAQRTWLLELAYPPLDRLDLYLADAQGAYRLVRQTGDALPFASREVRQNNYLFSLDFQPDQRQTVYLRLQSQGSIQAPLTLWSSTAYLEQQPVRLYVLGIIYGVLLGMLVYNLFIYLSVRDTSYLYYIFYIASFGLYQLSVNGAAVEYFWPDNPWWANAATPFFIGCAGVFGSQFARSFLQTAQHSRWLDRLLLALIAYGAVVVGLSLMTSYALALRLATALALVFTVVIFAAGLFAWWRGLRVARYFIIAWSAFLLGGVVNTMMVLGYLPNIFLTMYASQIGSAIEVALLSLALADRINAMREQQAQTLFDAGQKLEVLNQQLAQGNKLKDEFLATLTHELRTPMNGVIGCLELMETVEMDEELSQYQQTAAGSARDMMRMVNGMLTLTELQAGKLKVYPAPFSLRSVIEALQVQFGANAAAKGLDFKVDVAPGLADRLLGDSGKLAQCLECLLDNAIKFTRVGGIALRVSGRTSELDRLVLSFAVIDTGIGFTDLGEATLYQRFFQLDGSMTREYGGLGVGLAICRQLVELLGGRLTHTSEPGRGSRFQLDVEFDIALPVAVPATFPGGARRAARLPQECTVLLADDNNIDQLVMRGMLLKLGYRVRTADSGRAALELLQGDSFDAVLLDCQSTPSDGVSVCCQIRAMSGCEDLPVLVVSPNVDQAHCPAGSLIDYLSKPVKFEALQAILQRRVLCPKQGESAGIPGPT0025890_178DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-Gac|Rsm_PATHWAY,PGPT0025890-ladF-K20971NANA
D1-35_047281650aidBCOG1960Putative acyl-CoA dehydrogenase AidBATGAACCTGCACCAGTTCGCCGAAACCCACGACGTCACCAATCAGCCTCCGTCCCTGGATGGCGCCAACCTGTACCGTATCGACCTGCCGCTGCAAGAGTGGTCGCGGCGTTTCGGCGCAGGGTGGGCACAGGCGCGGATTGACGCCTATGGTGCCCTGGCCGGCGGGCCGTTGATGGAGGCGGGGTTCCTGGCCAACCAGAACAAGCCGATATTTTCCAGCCACGACCGTTACGGCCATCGTATCGACCTGGTGGAATTTCATCCTGCCTATCACGAGCTGATGCGCACCGCCATCGAACATGGCCTGCCCAGCCTGCCGTGGGCCCATCCGCAACCTGGCGCGCATGTCGCCCGCGCCTCGATGACGTACCTGCACAGCCAGGCCGAAGCCGGCACCGGTTGTCCGTTGACCATGACCTTTGCCAGTGTGCCGGCCCTGCGCCTGCAACCGGACCTGGCCGAGCGCTGGGTGCCGAAAGTAATCGCCACCGAATACGATCCACGTAACGTCGGCATGGCCCACAAGGCCGGGGTCACTCTCGGTATGGCGATGACCGAGAAGCAGGGCGGCACCGATGTGCGCGCCAACACCACCAAGGCGTATCCGGTAGGCGCCAGTGGCCCGGGCCAGGCCTATGAGCTGGTGGGTCACAAGTGGTTCTGTTCGGCGCCGATGTGCGATGCCTTCCTGACCCTGGCCCAGACCGACAAGGGCCTGACCTGCTTTTTGCTGCCGCGCCACCGCCCGGACGACACCCGCAACCAGTTCTACATCCAGCGTTTGAAAAACAAACTCGGCAATTGCTCCAACGCCTCCAGCGAGGTGGAGTTCCGTGGTGCGCTGGCCTGGATGGTCGGCGAAGAGGGCCGAGGCGTGCCGACGATCATCGAAATGGTCGCCATGACCCGCTTCGATTGCATGGTCGGCTCCAGCGCCCTTATGCGCCAGGCCCTGACCCAGGCCAGTCACCATTGCGCGCACCGCAAGGTCGGCGGCAAGTTGTTGAGTGAGCAGCCCCTGATGCAGAACGTACTCGCCGACCTGGCCCTGGAAAGCGAAGCTGCGTTGGCGCTGAGCTTGCGCATGGGCCGGGCGCTGGATCATCTGAACGATGAGCATGAAGCCAAATTCGCCCGGCTGGTGACGGCAGTAGGCAAATACTGGATCTGCAAACGCGCCCCGGCAATGATCAACGAGGCGGCCGAATGCATGGGCGGTGCCGGCTATGTCGAGGACAGCATCCTGCCGCGCCTGTACCGCGAGGCACCGGTCAATTCGACCTGGGAAGGCTCCGGCAATGTGCAGTGCCTTGACGTCTTGCGCGCTCTGTCCAAAGAGCCGGGCGTGTTGGAAGTGCTGTTCGACGAACTGGGCGACGGCCATGGGGACAATCGCCTGGCGGCCCATATCGACCGGTTGCACGCAGCGTTCAAGGACACCGATGACATCCAGTATCGTGCCCGGCAATTGACCGAAGACATCGCCGTCGGCCTGCAAGCCAGGCTGTTGCTGGAAGCGGGGAACAGCGATGTCAGCGATGCCTTCATCGCCAGCCGGCTGGGTTCCACTGGCCGGGTCTACGGCGCGTTGCCCCGCGGCCTGAATGTCGAAGCCATCGTCGCCCGCTCGACCCCGCACGGCTTCTAAMNLHQFAETHDVTNQPPSLDGANLYRIDLPLQEWSRRFGAGWAQARIDAYGALAGGPLMEAGFLANQNKPIFSSHDRYGHRIDLVEFHPAYHELMRTAIEHGLPSLPWAHPQPGAHVARASMTYLHSQAEAGTGCPLTMTFASVPALRLQPDLAERWVPKVIATEYDPRNVGMAHKAGVTLGMAMTEKQGGTDVRANTTKAYPVGASGPGQAYELVGHKWFCSAPMCDAFLTLAQTDKGLTCFLLPRHRPDDTRNQFYIQRLKNKLGNCSNASSEVEFRGALAWMVGEEGRGVPTIIEMVAMTRFDCMVGSSALMRQALTQASHHCAHRKVGGKLLSEQPLMQNVLADLALESEAALALSLRMGRALDHLNDEHEAKFARLVTAVGKYWICKRAPAMINEAAECMGGAGYVEDSILPRLYREAPVNSTWEGSGNVQCLDVLRALSKEPGVLEVLFDELGDGHGDNRLAAHIDRLHAAFKDTDDIQYRARQLTEDIAVGLQARLLLEAGNSDVSDAFIASRLGSTGRVYGALPRGLNVEAIVARSTPHGFNANANANANA
D1-35_047291464amnCOG0775AMP nucleosidaseGTGACCGAAGCGTTTATTGTCGTTCAAACCGCCGAGCAAGCCGTGGACCGGCTGGCGGCCCTGCACGAGCGTGCGACCACTGCGCTGAACCAGGCGCTCAAGCGTTATCTCAAGGACCGCATCGAGCCGGATGCCGAGCAACGCGCATTGTTCCGCTATCCGGCCCTGCGCCTGACCTACCATTGCCATGGCGAAGTCCCGCAGACCACCCGCGCCTACGCCAAGGTCCAGCTGCCGGGCACCTACAGCGTCACCGTCACCCACCCGGCGGCATTTCGAAAATACCTGCTCGAACAGCTTGTCCCGCTGATGCACGACTTCACCGTCACCGTCGAGGTGGGCGTCAGTGAGCAGAACATTCCGTACCCGTATGTGGTGGAGCAGGGCGATGAACTGGCCGGTTCCGGTGTGACGGCGGCAGTGCTGGCGCGGGTGTTCCCCAGCACCGACCTGTCGGCCGCCACCGATGGCATCGCCGATGGCCTCTACGATTGGGAAAACACCGACCCGCTGCCCCTGGCACTGTTCGACGCCGCGCGGGTGGATTTCTCCCTGCGCCGGCTCGTGCATTACACCGGCAGCGATTGGCGCCATGTGCAGCCGTGGATTCTTCTGACCAACTATCACCGCTATGTCGACCAATTCATCGTCCACGGGCTGGAGCAGTTGCGCAGCGATCCGCGTTTCGTGCGCATGGTGCTGCCGGGCAACGTGATCATCGACAAGAACATGGATCACGGTGAAGCCTCGGCCATCGCCGCTGGCGTGGTCTGGCATCGCTACCAGATGCCGGCCTATCACTTGCAAGCCAGCGACGGCCACGGCGTGACCCTGGTGAACATCGGCGTTGGTCCGTCCAATGCCAAGAACATCACCGATCACCTGGCCGTGCTGCGTCCGCATTGCTGGCTGATGATCGGCCACTGCGGCGGCCTGCGTCAGTCCCAGACAATCGGCGATTACGTCCTGGCGCACGCCTATATGCGCCGCGATGGCATCCTCGACCGCGTGGTGCCGCCGAATATCCCAATCCCGGCCCTGGCCGAAGTGCAGCTGGCACTGCAGCAGGCGGCGGCGAACATCACCGGCGAAAAAGGCGACGAGCTGAAAAAACGCCTGCGCACCGGCACCGTGCTGACTTACGACGACCGCAACTGGGAATTGCGCTGGGCCCAGGAGCGTCCGTTGATCAACCTGTCCCGCGCCGTGGCGGTGGACATGGAAAGCGGCACCATCGCTGCCCAGGGTTACCGCTTGCGGGTGCCATACGGCACGTTGCTGTGCGTCTCGGACAAGCCGCTGCACAGCGAGATCAAACTGCCGGGTTCGGCCAACGCGTTTTATGAGCGGGCGGTCAACCAGCACCTCAAGATCGGGATCGCGGCGCTGGACCTGCTGCGCAACGAACTCAACTCGTTGCACTCGCGCAAACTGCGCAGCTTCGACGAGCCGCCGTTCCGCTGAMTEAFIVVQTAEQAVDRLAALHERATTALNQALKRYLKDRIEPDAEQRALFRYPALRLTYHCHGEVPQTTRAYAKVQLPGTYSVTVTHPAAFRKYLLEQLVPLMHDFTVTVEVGVSEQNIPYPYVVEQGDELAGSGVTAAVLARVFPSTDLSAATDGIADGLYDWENTDPLPLALFDAARVDFSLRRLVHYTGSDWRHVQPWILLTNYHRYVDQFIVHGLEQLRSDPRFVRMVLPGNVIIDKNMDHGEASAIAAGVVWHRYQMPAYHLQASDGHGVTLVNIGVGPSNAKNITDHLAVLRPHCWLMIGHCGGLRQSQTIGDYVLAHAYMRRDGILDRVVPPNIPIPALAEVQLALQQAAANITGEKGDELKKRLRTGTVLTYDDRNWELRWAQERPLINLSRAVAVDMESGTIAAQGYRLRVPYGTLLCVSDKPLHSEIKLPGSANAFYERAVNQHLKIGIAALDLLRNELNSLHSRKLRSFDEPPFRPGPT0021500_677DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021500-amn-K01241NANA
D1-35_04730636rluECOG1187Ribosomal large subunit pseudouridine synthase EATGCCCCGTCCTCCACGCCCCGCTTCCCGCCGCCCTGGCGCGAAGCCTCCCGCTTCCACCCCGCGCCGTGTGGCCAAGGCGCCGCCGGCCGAAGCGAAACTGATCCTGTTCAACAAGCCTTTTGACGTGCTGACGCAATTCAGCGACGGCGAAGGGCGCGCCACGCTCAAGGATTTCATCGACGTACCGGGCATCTACCCGGCCGGTCGGCTGGACCGCGACAGCGAAGGATTGCTGTTGCTGACCAATGACGGCCAGTTGCAGGCGCGCATCGCCGATCCCAAGCACAAGCTGGCCAAGACGTACTGGGTACAAGTCGAGGGTGAGCCGAGCGACGAGCAACTGCAGCGTTTGCGTGATGGGGTCGAGTTGAACGACGGTATGACGCTGCCGGCCGAGACCCGTCAGCTGGACGAACCGCAATTATGGCCGCGCAATCCACCGGTGCGCTTTCGCAAAAGCGTGCCGACGAGTTGGCTGGAACTGGTGATACGTGAAGGGCGCAACCGCCAGGTGCGGCGCATGACCGCCGCGGTGGGTCTGCCGACCCTACGCCTGGTGCGGGTCAGGATCGGTGACTGGACGATCGAAGGGCTCGATCAGGGCCAATGGAAAGAGGTACCGGCGCGTTTATAAMPRPPRPASRRPGAKPPASTPRRVAKAPPAEAKLILFNKPFDVLTQFSDGEGRATLKDFIDVPGIYPAGRLDRDSEGLLLLTNDGQLQARIADPKHKLAKTYWVQVEGEPSDEQLQRLRDGVELNDGMTLPAETRQLDEPQLWPRNPPVRFRKSVPTSWLELVIREGRNRQVRRMTAAVGLPTLRLVRVRIGDWTIEGLDQGQWKEVPARLPGPT0029005_4DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029005-bcr|tcaB-K07552NANA
D1-35_04731210hypothetical proteinATGGATCCTGCTGTTTTCGAAGAGTGGATGATGACCGGACTGGTCAGCATCCTGATCATTTTCATGGGGTTCATCGTCTGGGACCTGGCGAAGAAATCCAAGGCCGGGCGTTTCGGCTCGTTCATCCTGTTTTTCGTGCTCGGCCTGGGCGTGGCGGCGTTCATCATCAAGAGCGTGGTCATCGGTCTGATCGAATCCGGCTCGTTATAAMDPAVFEEWMMTGLVSILIIFMGFIVWDLAKKSKAGRFGSFILFFVLGLGVAAFIIKSVVIGLIESGSLNANANANANA
D1-35_04732480lrp_5COG1522Leucine-responsive regulatory proteinATGAGCAAACTCGACCGTTACGACCTGAGCATCCTGGCGGAATTGCAGCGCGACGCGCGCATCTCGAACCAGGAATTGGCCGAGCGCATCGGCCTGTCGCCCTCCCCCTGCTCGCGGCGGGTCAAGCAATTGGAAGACGATGGCTACATCACCCGCCAGGTTGCCCTGCTCGATCGCAAGATGCTCGGCCTGAGCCTGACGGCCTATGTGCTGATTGGCATGGACCGCCACACCCCCGACCGCTTCGAGACCTTCGAAGCCGCGATCCGCAACCTGCCGCAAGTGCTTGAATGCAGCCTGGTGACCGGCATCGACGCGGATTACCAACTGAAGGTGGTGGTGCCGGATATGGATCATTACCAGAAGCTGCTGCTGGGCCACCTGACCCGGATCGAAGGCGTCACCAGCGTGCGTTCGAGTTTTGTGCTGAACCAGGTGCTCAACAGTACCGAGCTGCCGCTGACTCACCTGCGCAGCTGAMSKLDRYDLSILAELQRDARISNQELAERIGLSPSPCSRRVKQLEDDGYITRQVALLDRKMLGLSLTAYVLIGMDRHTPDRFETFEAAIRNLPQVLECSLVTGIDADYQLKVVVPDMDHYQKLLLGHLTRIEGVTSVRSSFVLNQVLNSTELPLTHLRSPGPT0014049_276DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014049-doeX-K15782NANA
D1-35_04734981hypothetical proteinATGAAGTCGCGCATCTGGCGTTTGGCAGGTGTTGGTCTGTTGTGGGCAAGTGTCAGTGCGCAGGGAATGGCGGATGATCAGCAGAACCGTGGCGGCCCAAACGGTAATGGCCCGGGTTATTCAGGCCAGCCCCGGCCGCAAAGCAACGAGATCATTCGTGGCGATAACAGCCGACAGTTCGAGGTCCAGCCGCAATCTCCAGGTGGGCAACACTACGAGCGTCCACCGCAGGACCCCAACGTACACAACCGCCCGCCGCAACAGCAACCGGGCAACAATCTGCCGATCCAGGGCCGGCCCGACAGCGTGACCCAGACCCAGGAGCCGCGACCGGGCTACTACCGCGACATTCCACGGCGCAACGACGGCTATCCGAACGGCGGGCCGCGTCCAGGCCACGACAACCGGCCCGATCAGCACTGGCCCGGTCGGCCGGACGGCCATGGCAACGGTTGGGGGCAGGGGCCGCAATATCGGCCAGGGTATGTGATCGATCGTTTCCCGGATCGTAATTACCGTGTGCCTTATCGCGGCCAGGATTATTTCTACTCGGGTGGCTACTGGTATCGTCCGCAAGGGCCGCGTTATGTCGTAGTGCAGCCGCCTCGGGGCATTCGTACCCGCTATCTGCCCGATTATGCCCGTGAGGTCTGGATCGGCAGCTCGCTGTTTTTCCTCGCCGCCGGTGCCTATTACATTTATGAAGCCAACACCCGGGACTACGTCGTGGTCGAGGCGCCGGTCGCCAATCCGCAGCCGCAGCCCCAGGGCAACAGCTTCGACGTGGTGGCTTATCCGGCCAACGGCCAGTCGCCCGAGCAGGTCAACCAGGACGGCTACGATTGCTATCGCTGGGCGGTGCAGCAGAGTGGTTTCGACCCGCGCACCTATACCTACCCACCGGCGCCGGAAGTGGTGCAAACCTACCGCCGGGCCCAGGGCGATTGCTTGAGCAGTCGTGGGTATCAGGTGACGTACTGAMKSRIWRLAGVGLLWASVSAQGMADDQQNRGGPNGNGPGYSGQPRPQSNEIIRGDNSRQFEVQPQSPGGQHYERPPQDPNVHNRPPQQQPGNNLPIQGRPDSVTQTQEPRPGYYRDIPRRNDGYPNGGPRPGHDNRPDQHWPGRPDGHGNGWGQGPQYRPGYVIDRFPDRNYRVPYRGQDYFYSGGYWYRPQGPRYVVVQPPRGIRTRYLPDYAREVWIGSSLFFLAAGAYYIYEANTRDYVVVEAPVANPQPQPQGNSFDVVAYPANGQSPEQVNQDGYDCYRWAVQQSGFDPRTYTYPPAPEVVQTYRRAQGDCLSSRGYQVTYNANANANANA
D1-35_04735894fieFCOG0053Ferrous-iron efflux pump FieFATGACCACCAGCGCCGAACATGCTCGCCTGCTACGCCTGGCCACCCGCGCATCGGTGGCCGTGGCGTGCATTCTGATCGTTGCCAAGGCGCTGGCCTGGTGGCTCAGCGGCTCGGTAAGCATGCTTGCCGGCCTGACCGACTCGGCGCTGGACGGCGTCACCTCGTTGCTCAATCTGCTGGCGGTGCATTACGCCCTGCGACCGGCTGATGACGATCATCGCTACGGGCACGGCAAGGCTGAATCACTGGCCGGCATGGCCCAGGCACTCTTTATTGGCGGCAGCGCGGTGCTGATCGCATTGCAGGCATACGAACGACTCAAGCAGCCGCTGCCGGTCGAGGCGCCCTGGCTCAGCGTCGGCGTGATCGTGTTTTCCCTGGCACTGACCCTGGCGCTGCTGGCGTTGCAGCATCGGGTCGTGCGCGCCACCGGCTCCAACGCCGTGCGCGCCGACTCGCTGCACTACCGCTCGGACCTGTTGCTCAACGGTAGCATTCTGGTGGCCCTGGTCCTGGCCGGGTTCGGCTGGTACCAGCTCGACGCCTGGTTCGGCCTGGGCATCGCCGCGTACATCCTCTGGAGCGCAGTGCAGATTGCCCGGGAAAGTTTCGCCGTGCTGATGGATGAAGAACTGCCGCCAGACGTCAGCCAGCACATGCTCGAACTGGCCTGCGCGGTGCCCGGCGTGGTCGGCGCCCATGACCTGCGCACACGAATCTCCGGCAACCACTGGTTCGTGCAGTTGCACCTGGAACTGCCGGGAGAACTGACCCTGTCAGTGGCCCACGGCATCAGCGACCAGGCCGCCGATGCGATCCATCGCGCTTATCCGAAGGCCGAGGTGCTGGTGCATGCCGATCCGACAGAAGTGGTGAAGCGCGCCAACGCTTGAMTTSAEHARLLRLATRASVAVACILIVAKALAWWLSGSVSMLAGLTDSALDGVTSLLNLLAVHYALRPADDDHRYGHGKAESLAGMAQALFIGGSAVLIALQAYERLKQPLPVEAPWLSVGVIVFSLALTLALLALQHRVVRATGSNAVRADSLHYRSDLLLNGSILVALVLAGFGWYQLDAWFGLGIAAYILWSAVQIARESFAVLMDEELPPDVSQHMLELACAVPGVVGAHDLRTRISGNHWFVQLHLELPGELTLSVAHGISDQAADAIHRAYPKAEVLVHADPTEVVKRANAPGPT0003831_642DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ZINK_RESISTANCEZINK_RESISTANCE-ZINK|IRON-TRANSPORT,PGPT0003831-fieF-K13283NANA
D1-35_04736420hypothetical proteinATGCGTATTCCCTTTCGCGTGATCGGCGGCGTGCTGGTCGCCAGCCTGCTGACCCAGATCAGCGCCTGTGGCTCGATCTTCTACCCCGACCGTCGCGGCCAGATCGAGGGCAAGATCGACCCGGCCATCGCCGCGCTCGACGCCGTCGGCCTGCTGTTCTACATCATCCCCGGCCTGATCGCCTTTGCCGTGGATTTTGCCACCGGCGCGATCTATTTCGAGCCGGGCAGAAGCGTGCAGATCGAACCGGAGAAACTCAAGCCGGCCATCAACGCCGACGGCACGGTCAATAACCAGAAGCTGCAAGCCATCCTGGAGCGCGAGCTGGGCCGCAGCTTCCCGCTGAACGACCCGCGCCTGATCCAGCACAAGGGCAACGTGCAACAACTGGCCACGCTCGGTCTCGTACCCGCCGCGTAAMRIPFRVIGGVLVASLLTQISACGSIFYPDRRGQIEGKIDPAIAALDAVGLLFYIIPGLIAFAVDFATGAIYFEPGRSVQIEPEKLKPAINADGTVNNQKLQAILERELGRSFPLNDPRLIQHKGNVQQLATLGLVPAANANANANANA
D1-35_047372517hrpBCOG1643ATP-dependent RNA helicase HrpBATGATTTCTTTGCCGATTGATGAAGTTTTACCGGCCCTGCGCCAAGCCTTGGCGTCGCGCCACGAAGCGGTGCTCGAAGCGCCCCCCGGTGCTGGTAAGACGACCCGTGTTCCCTTGGCCCTCTTGAACGAGCCGTGGCTGGCCGGGCAGACCATTCTGATGCTCGAACCCCGGCGCCTGGCGGCACGGGCGGCGGCCGAGCGCCTGGCCAGCGAGCTGGGGGAAAAGGTCGGCGAAACCGTGGGCTACCGGATTCGCCTCGACAGCAAGGTCGGGCCGAAAACCCGCATCGAAGTGGTCACTGAAGGCATCCTCACCCGTCGCTTACAGGATGACCCGGCACTGGATGGCGTGGGGCTGTTGATTTTCGATGAATTCCACGAGCGCAGCCTCGACGCCGACCTTGCCTTGGCCTTGAGCCTCAATGGCCGTGAGCTGTTTCGCGAAGACCAACCGCTGAAAATCCTGCTGATGTCCGCGACCCTGGAAGGCGAACGCCTGGCCGGGTTGCTGGACGATGCGCCGATCCTGCGCAGCGAAGGACGCATGTTCCCGGTGGCGGTGCGCTGGGGCCGGCCATTCCAGCCCGGCGAATTCATCGAACCGCGACTGGTGCAGACCCTTCTCGAAGCGCTGCACGACGAAACCGGCAGCGTGCTGGTGTTCCTGCCGGGGCAGGCGGAGATTCGCCGCGTTCATCAACAATTGGCCGAAGCCTTGGGCGAGGGCGGCAACGTGTTGCTCTGTCCACTGCATGGCGAACTGGACCTGGCCGCCCAACGCGCCGCCATCGATCCGGCACCGCCCGGCCAGCGCAAAGTGGTGCTCGCCACCAACATCGCCGAGACCAGCCTGACCATCAACGGTGTGCGGGTGGTGGTCGATGCCGGGCTCGCCCGCGTACCGCGCTTCGACCCGGGCAGTGGCATGACCCGCCTCGACACCCAGCGTATCTCCCGCGCCAGCGCCACCCAACGGGCCGGCCGGGCCGGGCGACTGGAGCCGGGGGTGTGTTACCGGCTGTGGTCCGAAGACCAGCATGAACAGCTGGCGGCCTACGGCAGCGCCGAGATTCTCTCGGCGGACCTGGCCGGTCTGGCGTTGCAGTTGGGCCGCTGGGGCGTGACGCCGCAGCAGTTGACGTGGCTCGACGTCCCGCCGACCGCCGCGTATGCCCAGGCGCGGGATTTATTGCAGCGCCTGGGTGCGCTGGACGGTGGACAACTGACTCGGCACGGCCAGGCCATGGCCGAGCTGCCGGCCCATCCGCGCATCGCGCACTTGCTGCTGCGGGGCCAGGCGCTGGGGCTGGCGGACATGGCCTGCAATGTCGCGGCGCTGTTGGGCGAACGTGACATTCTTCGAGGCGCCGGCGCGGATTTGCACAGTCGCCTGGCGTTACTGTCCGGCGAGGAACGAGCGGCACGCGGCGCTCAGGGCGGTGTGCAGCGGGCGCGGCAATTGGCCCGGCAATATCGTGGCTACTTGCGCGGCAAGGCCGAGGAAGCTGTCGCCGATCCCGAGCATCCGCGTTGGCTCGGCGTGCTGTTGGCGCTGGCCTATCCGGATCGCGTCGCGCAACAGCGGCGACCCGGCGGCGCGGAATATCGCCTGGCGAATGGGCGCGCGGCGCTGTTTGCCGAGGCCGATAGCTTGATGAAGCAACCGTGGTTGGTGATTGCCGAACTGGGCAGTCGCCAAGGCCAGCGGGAAGAACGGATCTATCTGGCGACGGATTTCGATCCGGTGCTGTTCGATTCGGTGCTGGCAGAGCAAGTACGTACCGAAGACCAACTGGATTGGGACGAGCGCGAAGGCGTGCTGCGGGCCGAGCGCCAGCGCAAGGTCGGTGAACTGGTGCTCAGCCGCGAGCCATTGACCGGCCTGGATGAATCTGCCCGCAGCCGGGCGCTGGTCAACCTGGCACGGCGCAAGGGGTTGGAATTGTTGCCGTGGACGCCGGAGCTGCGTCAGTGGCAGGCGCGGGTGGCGCTGTTGCGTCGGCTCGACCTGGATACCAAGGGCGACAGCGAGTGGCCGGACGTCAGCGATGCGGCGTTGCTGCTCAGTCTTGAAGACTGGTTGATGCCATATCTGGGCCGGGTGTCGCGCCTTAGTCATTTTGCCAACCTGGACCTGTCGAGCATCGTCCGTAACCTGTTGCCCTGGCCTCTGCCGCAAAGGCTGGACGAACTCGCGCCGCAGCACGTGAGCGTGCCTTCCGGTTCATCGATTCGCCTGGATTACAGCGAACACCCACCTATTCTGGCGGTGCGCTTGCAGGAGCTTTTCGGCCTGGCCGACACCCCGCGTATCGCCGGTGGTCGGCAGGTGGTCAAGCTGCACCTGCTATCGCCCGCGCGCCGACCAGTGCAAGTGACCCAGGACCTGGCGAACTTCTGGCGTAGTACTTACGCCGAGGTGAAGAAGGATCTCAAGGGACGGTATCCCAAGCACTACTGGCCGGACGACCCGCTGGTGGCGGAGGCGACGGCGCGGGCCAAGCCGCGTAAGTGAMISLPIDEVLPALRQALASRHEAVLEAPPGAGKTTRVPLALLNEPWLAGQTILMLEPRRLAARAAAERLASELGEKVGETVGYRIRLDSKVGPKTRIEVVTEGILTRRLQDDPALDGVGLLIFDEFHERSLDADLALALSLNGRELFREDQPLKILLMSATLEGERLAGLLDDAPILRSEGRMFPVAVRWGRPFQPGEFIEPRLVQTLLEALHDETGSVLVFLPGQAEIRRVHQQLAEALGEGGNVLLCPLHGELDLAAQRAAIDPAPPGQRKVVLATNIAETSLTINGVRVVVDAGLARVPRFDPGSGMTRLDTQRISRASATQRAGRAGRLEPGVCYRLWSEDQHEQLAAYGSAEILSADLAGLALQLGRWGVTPQQLTWLDVPPTAAYAQARDLLQRLGALDGGQLTRHGQAMAELPAHPRIAHLLLRGQALGLADMACNVAALLGERDILRGAGADLHSRLALLSGEERAARGAQGGVQRARQLARQYRGYLRGKAEEAVADPEHPRWLGVLLALAYPDRVAQQRRPGGAEYRLANGRAALFAEADSLMKQPWLVIAELGSRQGQREERIYLATDFDPVLFDSVLAEQVRTEDQLDWDEREGVLRAERQRKVGELVLSREPLTGLDESARSRALVNLARRKGLELLPWTPELRQWQARVALLRRLDLDTKGDSEWPDVSDAALLLSLEDWLMPYLGRVSRLSHFANLDLSSIVRNLLPWPLPQRLDELAPQHVSVPSGSSIRLDYSEHPPILAVRLQELFGLADTPRIAGGRQVVKLHLLSPARRPVQVTQDLANFWRSTYAEVKKDLKGRYPKHYWPDDPLVAEATARAKPRKNANANANANA
D1-35_047381080hypothetical proteinATGACCCGTCTGCTGCGATACACCTTGCTGGGCCTGTTGTTGCTCGTCGGCATTGCGGCCTTTTCCATCTATGGCCCGACCTGGCGCCCACAGGCCCGGGAAGCGATGCCCGTCAGCTGCTCCGCGAAGGCCCCACCGCTGGTGCCCGGCCAAGCCCTGAAGGTGATGACCTGGAACGTCCAGTTCCTGGCTGGCAAGCGCTACGTGTTCTGGCACGACCTGGCCGAGGGCGACGATGAAAGCCCGACCCCGGAAGACATGGCCTTCAGCCTCGACGAAGTGGCACGGGTCATTCGCGACGAACAGCCGGACGTGGTGCTATTGCAGGAACTCGACAACGGCGCCAAGGCCAGCGACTACCAGAACCAGCTCAAGCTCTTGCAGGAACGGCTGGCCGACCTCTATCCCTGCGGCACCAGCGCTTTTGACTGGAAAGCCGATTTCATTCCCAGCCCACATATCTTCGGCAGCGTTGGTCGCCAGTTGGCGACGCTGAGCCGCTATCGCATCGACCACGCCGAGCGGGTGCAATTGCCCGTGGCCGAGGCGAACTTCATCACCCGCCAGTTCCAGCCGAAAAATGCCTTGCTTGTGAGTTACCTGCCCCTGAGCGGCGGCGGCCAACTGGCGGTACTCAATACACATCTGGAGCGGGCCACCCAGCCGGACGACACTGCGCGCGCGCAAGTCAGCGCGATAGCCAAGGCCTTGGACAAGCTTGAATCCGCCGGCACTCCCTGGCTGACCGGGGGAGACTTCAACCTGTTACCCCTGGGCCAATACCGACGCCTGCCCACCGAGCAACGCTCGCCCTACTCCGCCGACAGCGAATTGCATCTGCTGTGGGACAAATACCCGATGATCCCCACCAACAACGAGGCCAGCGGCATCGACCGCGCAAACTGGCTGACCCATTACCCCAACGATCCCGGCCTCAACGGCCCCGATCGGACCGTCGATTACCTGTTCTACAGCCCCCGCCTCAAACGGGTCGAAGCCCAGGTCCGGCAGGACGATACGTTGCGCATTTCCGATCATTTGCCGGTGATCGCGCGGTTTCTGTTGCCGGCCACCCCTTGAMTRLLRYTLLGLLLLVGIAAFSIYGPTWRPQAREAMPVSCSAKAPPLVPGQALKVMTWNVQFLAGKRYVFWHDLAEGDDESPTPEDMAFSLDEVARVIRDEQPDVVLLQELDNGAKASDYQNQLKLLQERLADLYPCGTSAFDWKADFIPSPHIFGSVGRQLATLSRYRIDHAERVQLPVAEANFITRQFQPKNALLVSYLPLSGGGQLAVLNTHLERATQPDDTARAQVSAIAKALDKLESAGTPWLTGGDFNLLPLGQYRRLPTEQRSPYSADSELHLLWDKYPMIPTNNEASGIDRANWLTHYPNDPGLNGPDRTVDYLFYSPRLKRVEAQVRQDDTLRISDHLPVIARFLLPATPNANANANANA
D1-35_04739660hypothetical proteinATGAATCCGTTAGAAGTACTGCGTGACTCCTTGTATTTTTTCAAGCGCAACCTGGGCCGGATCGCCCAGCTGTGCCTGCCGCTGGTAATACTTGAGGCGGTCCTGCAACAAGGGGTGGACAGCGCCATCGGCGCCGACGGTTTCTCCGGCTACAGCGTGATCGTCGGTCTCCTCGTGTACCCGCTGTATACCGCGGCGTTGATCCTGTTTCTCGATGCCCGCAGTCGCGGCGAAGCCCCGCGTGCCCGTGACCTGCTCGCGGCAGCCCTCCTCCAGTGGCCGCGCTTCGCCTTGCTGACCGCCCTTAACACGTTGCTGATCCTGATCGGCATTTCCTTGTACTTCCTGCCGGGGCTGTGGCTGATGGTCGTCCTCGCCTTCGGTGAATACCTGTTGGTTTTGCGGGGCATGGCGCCCTTGGCGGCCATGAAGGAAAGCGCGCGCCTGAGTCGAGGCAATTTCTGGCGAATCCTGTTATGCATCCTCGCCGTAATGGTCCCGTTGTGGCTGCTCAAGGGCGCCAGCGTCTCGGTGTATCCGCCGCCGCAGAACCCCTTCATCAGTTTGCTGATCGACAGCGTTCACAGTTTCTTGCAACTGTTCACCACCGTGGTGCTGTTCCGAATGTTCATGTTGATTGCAGAAAAACCCGAGCCATGAMNPLEVLRDSLYFFKRNLGRIAQLCLPLVILEAVLQQGVDSAIGADGFSGYSVIVGLLVYPLYTAALILFLDARSRGEAPRARDLLAAALLQWPRFALLTALNTLLILIGISLYFLPGLWLMVVLAFGEYLLVLRGMAPLAAMKESARLSRGNFWRILLCILAVMVPLWLLKGASVSVYPPPQNPFISLLIDSVHSFLQLFTTVVLFRMFMLIAEKPEPNANANANANA
D1-35_04740771hypothetical proteinATGAACAGCGAAGAACAAACCCTGATCGATGGACTGTTTTCCCGGCTGCAACAGGCCGAAAAGGATTCAGCCCCGCGCGACGCCCAGGCAGAGGCGCGGATCAAGGAACACTTGGCCAACCAGCCTGCCGCGGGCTATTTCATGGCCCAGGCGATCCTGGTGCAAGAGGCGGCGATCAAGCGCCTGGACGAGCAGAACAGACAGCTCGCCCAACAGGTCGAGCAATTGCAGGGCGAATTGCAGCAGGCCCGCAGCCAGACTTCGGCGCCAAGCGGCGGCGGTGGTTTCCTTTCGAGTATCTTCGGTGGCAGCAACCGCGATTCACGGCCAGCAAGCGCACCGGCATCCAGCGGTGGCGGCTGGCGCGAACCTGCGCGGCCTTCCTTCAACGCACCGGCCCAGCCAGGCTTTGGCGCTGCGCCCGGCAACTATGCCGCGCCGCAACAGCAGGCCCCAGCGGCGGGCAGCTTTCTCGGTGGCGCCTTGAAAACCGCGGCGGGCGTGGCCGGTGGTGTGATGCTCGCCCAGGGCATCAGTAGCCTGTTCCACAGCAATCAACCCGAGGAGATCGTCGAGGTCCTCAAGGAAGAGCCGGCCCAGCCGGTCAATGACACCGCCAACAACGGTGACAGCGGTTGGGGCGATGATCAGCGCGTGGCCGACAGCGATAGCGACGGCAACAATAGCTATGGCAACGACCAGGGCGGTTTCAGCGACGCCGACTACAGCGACGATTCGTCCTTGTTCGGCGACGACGACTCTTTCGTCTGAMNSEEQTLIDGLFSRLQQAEKDSAPRDAQAEARIKEHLANQPAAGYFMAQAILVQEAAIKRLDEQNRQLAQQVEQLQGELQQARSQTSAPSGGGGFLSSIFGGSNRDSRPASAPASSGGGWREPARPSFNAPAQPGFGAAPGNYAAPQQQAPAAGSFLGGALKTAAGVAGGVMLAQGISSLFHSNQPEEIVEVLKEEPAQPVNDTANNGDSGWGDDQRVADSDSDGNNSYGNDQGGFSDADYSDDSSLFGDDDSFVNANANANANA
D1-35_04741480hypothetical proteinGTGAAAAAAATCGCAGTGTTCGCCGATGTCCAGAACCTCTACTACACCGTGCGCCAAGCCTATGGCTGCCATTTCAACTACGCGGCGCTGTGGGCTGATGTGAGCAAGCAGGGGCAGATCGTCGAGGCCTATGCCTACGCGATCGATCGCGGTGACAGCAAGCAACAGCAGTTCCAGCAGATCCTGCGCAACCTGGGGTTCACCGTGAAACTCAAGCCCTATATCCAGCGCAGCGACGGCTCGGCCAAGGGCGACTGGGACGTGGGCATCACCCTGGACATCATGGACGCCGCCGACCATGTCGACGAGGTGGTCCTGGCCTCCGGTGATGGCGATTTCGACATGTTGCTCGAACGCATCATCAGCAAACACGGCGTGCAGGCTGTGGCCTATGGAGTACCTGGGCTGACCGCCAACTCGCTGATCCGCGCCGCCAGCCGCTACGTGCCGATCGAAGGCGCGTTGCTGCTCAAGAATTGAMKKIAVFADVQNLYYTVRQAYGCHFNYAALWADVSKQGQIVEAYAYAIDRGDSKQQQFQQILRNLGFTVKLKPYIQRSDGSAKGDWDVGITLDIMDAADHVDEVVLASGDGDFDMLLERIISKHGVQAVAYGVPGLTANSLIRAASRYVPIEGALLLKNNANANANANA
D1-35_04742612polC_2COG2176DNA polymerase III PolC-typeTTGGAACGCATCGCAGTCATCGACTTTGAAACCACCGGCATCACCCCGAGCAGCGGTTGCCGGGCCACCGAAATCGCCGTGGTGATCCTTGAGCAAGGCCGGATAGTCGACCGTTACCAGAGCCTGATGAACGCCGGCGTGCGCGTGCCGGCCTTCATCGAGCAACTGACCGGTATCAGCAATGCCATGCTGCGCAGCGCACCGCCAGCGGAAAAGGTCATGAACGAGGTCAACGAGTTCGTCGGCATCACGCCGCTGCTGGCTCACAATGCCGCGTTCGACCAGAAGTTCTGGGACTTCGAACTGGGACGAATCAAGCGCACCCGCCTGCAGAATTTTGCCTGTTCACTGCTGTTGGCCCGACGCCTGATGCCAGCGGCGCCGAACCACAAGCTCGGCACGCTCAACGCTTTCGCCGGCCTGCCCCACACCGGCCAGGCTCACCGGGCCATGGCCGACGCCGAAATGGCCGCCAACCTCACCGCGCACCTGGCCTCGGAGCTGCGGCAAAAGCATGGGTTGCGGGAGCTGTCCCATGATCTGCTGTGCAGCTTGCAGAAGGTGCCGGCAGCGAAGATCAACGAGCATCTCAAGCGCCATCGCGGGTTCTGAMERIAVIDFETTGITPSSGCRATEIAVVILEQGRIVDRYQSLMNAGVRVPAFIEQLTGISNAMLRSAPPAEKVMNEVNEFVGITPLLAHNAAFDQKFWDFELGRIKRTRLQNFACSLLLARRLMPAAPNHKLGTLNAFAGLPHTGQAHRAMADAEMAANLTAHLASELRQKHGLRELSHDLLCSLQKVPAAKINEHLKRHRGFNANANANANA
D1-35_04743903yedAputative inner membrane transporter YedAATGCCTGGCCCACGCCGTTTTCCGTTGCCATTGATCGCTGCCTTCTTCGCCTTGTACGTCATCTGGGGATCGACCTATCTGGTGATTCGCATCGGCGTCGAGCATTGGCCGCCCTTGCTGCTGGCCGGGATTCGTTTTGTGATCGCCGGGTCGTTGATGTACGGCTTCTTGCGCTGGAAGGGCGCGCCGGCGCCGACCTGGGCGCAATGGAAGGCCGGGGCGCTCATTGGCGTGTTGCTGCTGACCTTCGGCAATGGTGCGGTGAGTATCGCCGAGCATACAGGCGTAGCTTCGGGCGTGGCGGCGCTGGCCGTGGCGACGGTGCCGTTGTTCACCTTGCTCTGCGGGTATTTCTGGGGTGCACGCAATACCCGTCTCGAGTGGGCGGGGATTGTGTTGGGGTTGATCGGCATTGCCATGCTCAACCTGGGTTCCAACCTGCAGTCGAGCCCGTTGGGGGCGGCTTTGCTGGTGTTCGCCGCCGCCTCGTGGGCCTTCGGTTCGGTGTTGAGTAAACATGTGCAACTACCCGCAGGCGCCATGGCCAGCGCCGTGGAGATGCTGGTGGCCGGCGTGGTGCTGTTGATCGGCAGCTTCGCCAGTGGCGAGCGCCTGGAAAGCATGCCGCCGCTGGAAGGCTGGTTCGCGCTGGTCTATCTGATCGGTTTCGGTTCGATCATCGCCTTCAACGCCTACATGTACTTGCTCAAGCATGTGCGTCCGGCCGCAGCCACCAGCTACGCCTATGTCAACCCGGCGGTAGCGGTGTTGCTGGGGATCGTCTTCGCCGGGGAAACCATCGGTATCGAAGAGGCCTTGGCGATGCTGGTGATTATCAGCGCCGTGGTCCTGATCGGGTTGCCGCAGTGGCGCAAGCCCAAGCCCCCACCGGCCGAATCATGAMPGPRRFPLPLIAAFFALYVIWGSTYLVIRIGVEHWPPLLLAGIRFVIAGSLMYGFLRWKGAPAPTWAQWKAGALIGVLLLTFGNGAVSIAEHTGVASGVAALAVATVPLFTLLCGYFWGARNTRLEWAGIVLGLIGIAMLNLGSNLQSSPLGAALLVFAAASWAFGSVLSKHVQLPAGAMASAVEMLVAGVVLLIGSFASGERLESMPPLEGWFALVYLIGFGSIIAFNAYMYLLKHVRPAAATSYAYVNPAVAVLLGIVFAGETIGIEEALAMLVIISAVVLIGLPQWRKPKPPPAESNANANANANA
D1-35_047441338rhlE_3COG0513ATP-dependent RNA helicase RhlEATGACTTTCGCCACTCTTGGCCTGATCGAACCCCTGCTGCGCGCCCTCGAGACGCTCGGCTACCAGACGCCGACCCCGGTCCAGGCCCAAGCCATGCCGGCGGTGCTCGCCGGTCGCGACCTGATGGCAGCAGCCCAGACCGGCACCGGCAAGACCGCCGGTTTCGCCGTGCCGCTGTTGCAGTTGTTGACCACCGAAGGACCGAAAGTTGCCGCCAACTCGGTGCGCGCGCTGATCCTGGTACCGACCCGCGAGCTGGCCGAGCAGGTCCATGAAAGCGTGCGCCAGTACGCGCAGAACCTGCCGCTGAGCACCTACGCGGTGTACGGCGGTGTCAGCATCAACCCGCAAATGATGAAGCTGCGCAAAGGCGTCGATCTGTTGGTGGCCACGCCGGGCCGCTTGCTCGACCTGTTCCGCCAGAACGCGCTGAAGTTCAACCAGTTGCAGACCCTGGTGCTGGACGAGGCCGACCGCATGCTCGACCTGGGCTTCTCCGAAGAACTGGCGAACATCTACAAGGCCCTGCCGAAGAAGCGCCAGACCTTGCTGTTCTCGGCGACCTTCTCCGATGCGATCCGCCTGCTGGCCGGGCAGATGCTCAACGACCCGCTGAGCATCGAAGTGAGCCCGCGCAACGTGGCCGCCAACACCGTCAAGCAATGGGTGGTGACGGTGGACAAGAAGCGCAAGCCGGAACTGTTCATCCACCTGATGCGCAAGCACAAGTGGAAGCAGGTGCTGGTATTTGCCAAGACCCGCAACGGCGTCGATGCACTGGTGGAAAAACTCCAGGGCCTGGGCGTCAACGCCGATGGCATCCACGGCGACAAACCCCAGGCGACCCGCCAGCGTGCGCTGGATCGTTTCAAGGCCAGCGAAGTGCAGATCCTGGTGGCCACCGACGTCGCGGCCCGTGGCTTGGACATCGAGGACTTGCCGCTGGTGGTGAACTTCGATTTGCCGATCGTCGCCGAGGACTACATCCACCGTATCGGTCGTACGGGCCGTGCGGGTGCCACCGGGCAGGCGATTTCCCTGGTCTGCGCCGATGAAGTGAATCTGCTGTCGGCCATCGAAACCCTGACCCGCCAGGCATTGCCCCGGCAGATGGAACATGATTTCGAACCTGAGCATCGCGTGCCGGAAACCGATGCCAGCGGCCAGGTGATCAAGAAACCGAAAAAACCAAAAAAGCCGAAAGCTTCCGGTGGTGGCGGCAAGCGCAACCTTGGCAAGTGGGTGGACAGTGGCGACTCGGGGCCGGTGGAGCCTTCGGTGAAACCTGTGCGAAAAGTGCCGGTGTTCAATACCGGACCGCGCAAGCGTAAGCCTTGAMTFATLGLIEPLLRALETLGYQTPTPVQAQAMPAVLAGRDLMAAAQTGTGKTAGFAVPLLQLLTTEGPKVAANSVRALILVPTRELAEQVHESVRQYAQNLPLSTYAVYGGVSINPQMMKLRKGVDLLVATPGRLLDLFRQNALKFNQLQTLVLDEADRMLDLGFSEELANIYKALPKKRQTLLFSATFSDAIRLLAGQMLNDPLSIEVSPRNVAANTVKQWVVTVDKKRKPELFIHLMRKHKWKQVLVFAKTRNGVDALVEKLQGLGVNADGIHGDKPQATRQRALDRFKASEVQILVATDVAARGLDIEDLPLVVNFDLPIVAEDYIHRIGRTGRAGATGQAISLVCADEVNLLSAIETLTRQALPRQMEHDFEPEHRVPETDASGQVIKKPKKPKKPKASGGGGKRNLGKWVDSGDSGPVEPSVKPVRKVPVFNTGPRKRKPPGPT0013740_2558DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-OTHER_REGULATORS,PGPT0013740-rhlE-K11927NANA
D1-35_047451242baiNCOG20813-dehydro-bile acid delta(4,6)-reductaseATGACCTCGACCACCAAGCCTTCCACCCCAAACATCGCCATTATCGGCGGCGGCCCGGCCGGCCTAATGGCGGCCGAGGTGTTGAGCAAGGCCGGCTTCCAGGTCGACCTGTACGACGGCATGCCATCGGTGGGCAGGAAATTTCTGCTGGCCGGTGTCGGCGGCATGAATATCACTCACTCGGAAGCTTTCCCGGCGTTCCTCTCCCGCTACGGCGAACGCGCGCCGAATATCGCCCCGCTGCTGCGGGCATTCGGCGCCGATGAGTTGTGCGAATGGATTCATGGCCTGGGCATCGACACCTTTGTCGGCAGCTCCGGGCGGGTATTTCCTACCGATATGAAGGCCGCCCCGCTGCTGCGCGCCTGGCTCAAGCGCCTGCGCGATGCCGGCGTGGTGATTCATACGCGCCACCGCTGGCTTGGCTGGAATGCCGACGGCAGCCTGCGCATTGCCAGCCCGGACGGGGAAAAGGCCCTACAGCCCGACGCGACCTTATTGGCGCTGGGAGGCGGCAGTTGGTCACGCCTGGGCTCCGACGGTGCCTGGATGTTGCCGCTGGAACAGCGCGGCGTGGTCCTCGCGCCCTTGCAGCCAAGCAACTGCGGGTTCGATGTGCCGGGCTGGAGCGATCTGCTGATCGCCAAATTTGCCGGCACCCCACTGAAGAACATTGCCATCGGCCTCGACGATGACGTGCCACGCCTCGGCGAATGCGTCATCACCGTCACCGGCATCGAGGGCAGCCTGATCTATGCGCTGTCGGCGCGGATTCGTGAGGCTATCAACCAACACGGCAGCGCGACCATTCATCTGGACCTGCTGCCGGGCCGGCCTGTGGACAAGATTCTCCTGGCATTAAGCAAGCCTCGCGGTTCTCGCTCGATGGCTAAGCATCTGCACAGCCAGTTGGGGCTCGACGGGGTGAAGGCGGCGTTGTTACGGGAACTGACTTCAGCCGATTGTTTTGCCGACATGGCGCGGCTGGCCCAGGCGATCAAGGCGTTGCCGGTCACGCTGGTGAAAACCCGTCCGCTGGACGAAGCCATCAGCAGTGCCGGCGGCGTGACCTTCGAGGCACTCGATGAGCGACTGATGCTCAAGCAAATGCCCGGCGTTTTCTGCGCGGGAGAGATGCTCGATTGGGAAGCGCCGACCGGCGGGTACTTGCTTACGGCATGCTTTGCCAGCGGTCGTGCGGCGGGGTTGGGGATGGTGGAGTGGCTGCAGCGCCAGGCTTGAMTSTTKPSTPNIAIIGGGPAGLMAAEVLSKAGFQVDLYDGMPSVGRKFLLAGVGGMNITHSEAFPAFLSRYGERAPNIAPLLRAFGADELCEWIHGLGIDTFVGSSGRVFPTDMKAAPLLRAWLKRLRDAGVVIHTRHRWLGWNADGSLRIASPDGEKALQPDATLLALGGGSWSRLGSDGAWMLPLEQRGVVLAPLQPSNCGFDVPGWSDLLIAKFAGTPLKNIAIGLDDDVPRLGECVITVTGIEGSLIYALSARIREAINQHGSATIHLDLLPGRPVDKILLALSKPRGSRSMAKHLHSQLGLDGVKAALLRELTSADCFADMARLAQAIKALPVTLVKTRPLDEAISSAGGVTFEALDERLMLKQMPGVFCAGEMLDWEAPTGGYLLTACFASGRAAGLGMVEWLQRQANANANANANA
D1-35_04746921hypothetical proteinATGCCGCTACCGCTGATCTACCACGAAGACTACAGCCCCGAATTCCCTGCGGAGCACCGTTTCCCCATGGACAAGTTCCGCCTGCTGCGCGATCACCTGGTGGACAGCGGCCTGGCCCGGGACGCGGACCTGCTGCGTCCGGCCCTATGCCCGCCGGACATCCTCGCCTTGGCCCATGATCGCGCCTATATCGAACGCTACATGGGCGGCGAGTTGTCCCGCGAAGACCAACGGCGCCTCGGCCTGCCCTGGAGCGAAGCCTTGGCTCGCCGAACGGTACGCGCCGTCGGCGGATCACTGCTGGCCGCCGAGCAGGCCCTCGAACACGGGCTGGCCTGTCACCTGGCCGGCGGTACCCACCACGCCCACTACGACCACCCGGCCGGATTTTGCATCTTCAATGACCTGGCGGTGATCAGCCGCTATTTCCTCGCCAGCGGTCAGGTCTCGCGAGTGCTGATTTTCGACTGCGACGTGCACCAGGGCGACGGTACGGCTCGAATACTCCATGACACTCCCGACGCCGTGACAGTTTCCTTGCACTGCGAAAAGAATTTTCCTGCACGCAAGGCGCAAAGCGACTGGGATATTCCCCTACCGATGGGCATGGAGGACGCCGCCTACCTGAAAGTCGTCGATGACGCGCTCAATTACCTGCTGCCGCTCTATCAGCCCGATCTGGTGCTCTATGACGCCGGCGTCGATGTGCACAAGGACGATGCCCTCGGTTACCTGAAGCTGACCGACGAAGGCCTCGCCGCCCGGGACGAGAGCGTCATGCGCCATTGCCTGGGCCGGGACATTCCGGTGGTCGGCGTGATCGGCGGCGGCTACAGCAAGGACCGCAAGGCCCTGGCCCGCCGGCACGGAATCCTGCACCACAGCGCACAGAAGGTCTGGACGTCATCAGGTTGTCATTGAMPLPLIYHEDYSPEFPAEHRFPMDKFRLLRDHLVDSGLARDADLLRPALCPPDILALAHDRAYIERYMGGELSREDQRRLGLPWSEALARRTVRAVGGSLLAAEQALEHGLACHLAGGTHHAHYDHPAGFCIFNDLAVISRYFLASGQVSRVLIFDCDVHQGDGTARILHDTPDAVTVSLHCEKNFPARKAQSDWDIPLPMGMEDAAYLKVVDDALNYLLPLYQPDLVLYDAGVDVHKDDALGYLKLTDEGLAARDESVMRHCLGRDIPVVGVIGGGYSKDRKALARRHGILHHSAQKVWTSSGCHNANANANANA
D1-35_04747570COG1670AcetyltransferaseATGGAGCCGATACTGGAAGTGGAAAGCGCACGGCTGATTCTGCGGCAGTGGCGCGATGAAGATCTGCCGGCGTTTGCGGCGATGTCTGCCGATCCGCAAGTGATGCGTTATTTTCCGGCCCCCCTGAGTCGTCTGGAAAGCGCTGCGTTGATCGGCCGGGTGCGCGGGCATTTTGCCGAGCATGGTTTTGGTTTGTGGGCATTGGAGCGCAAGGACACCGGTGCCTTCATCGGTTTTACCGGGCTGGGCGTGGTCGGGTTCGATGCGCATTTCACCCCGGCGGTGGAAATCGGCTGGCGCCTGGCGCGCGAACACTGGGGGCTGGGGTATGCCAGCGAAGCCGCGTGGACCGCGTTGCGTTGCGCCTTCGACCGCCTGGGCCTGGATGAAGTGGTGGCGTTTACCGCTGTGGATAACTTGCCTTCGCAGAAGGTCATGCAGGCCATCGGCATGCAGCACGATCCGGACGATGATTTCGAACACCCAAAGCTCGCGGTCGGTCATCCATTGCGTCACCATGTGCTCTATCGCATCAATCGTGAGCAATGGTTGCAGACCCTTCACGGTTAAMEPILEVESARLILRQWRDEDLPAFAAMSADPQVMRYFPAPLSRLESAALIGRVRGHFAEHGFGLWALERKDTGAFIGFTGLGVVGFDAHFTPAVEIGWRLAREHWGLGYASEAAWTALRCAFDRLGLDEVVAFTAVDNLPSQKVMQAIGMQHDPDDDFEHPKLAVGHPLRHHVLYRINREQWLQTLHGPGPT0012895_7DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATESBIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012895-aroDE-K13832NANA
D1-35_04748870tesB_2COG1946Acyl-CoA thioesterase 2ATGAGCCACGTGTTGGAAGATCTGGTCGACCTGCTGACCCTGGAACCGATCGAAGAGAACCTGTTTCGCGGTCGCAGCCAGGACCTGGGCTTTCGCCAGCTGTTCGGCGGCCAGGTGCTGGGCCAGTCGCTGTCGGCGGCCAGCCAGACCGTGGAAGAGGCGCGCCATGTGCATTCGATGCATGGCTACTTCCTGCGTCCGGGCGATGCGGCGTTGCCGGTGGTCTACCAGGTGGATCGCGTGCGTGATGGCGGCAGCTTCAGCACCCGACGGGTCACGGCGATCCAGAAGGGCAACCCGATCTTCACCTGCAGCGCGTCGTTCCAGTACGACGAACAGGGCTTCGAGCACCAGAGCACCATGCCGCAGGTCGTCGGGCCGGAAAACCTGCCCTCGGAGCTGGAACTGACCCAGCAGCGCGCGCACCTGTTGCCTGAGCACATGCGCGAAAAACTGCTGTGCCCCAAGCCGATCGAGGTGCGCCCGGTCACCGAAAAGGACCCGTACAACCCGCAACCGGCCGATCCGGTCAAGTACGTGTGGTTTCGTGCCGATGGCGCCTTGGCTGACTCCCCGGCCCTGCATAAATACCTGCTGGCCTACGCGTCGGATTTCGGCCTGCTGACCACCTCGTTGCTGCCTCATGGCAAATCGGTCTGGCACAAGGACATGCAGGTCGCCAGCCTCGACCACGCGTTGTGGTTCCATGCCGACCTGCGCGCCGATGACTGGTTGCTCTACGCCATGGACAGCCCCTGGGCCGGCAATTCCCGTGGTTTCTCCCGTGGCAGTGTGTTCAATCGCGCCGGGCAACTGGTGGCCTCGGTGACCCAGGAAGGCCTGATTCGCCATCGCAAGGACTGGGCATGAMSHVLEDLVDLLTLEPIEENLFRGRSQDLGFRQLFGGQVLGQSLSAASQTVEEARHVHSMHGYFLRPGDAALPVVYQVDRVRDGGSFSTRRVTAIQKGNPIFTCSASFQYDEQGFEHQSTMPQVVGPENLPSELELTQQRAHLLPEHMREKLLCPKPIEVRPVTEKDPYNPQPADPVKYVWFRADGALADSPALHKYLLAYASDFGLLTTSLLPHGKSVWHKDMQVASLDHALWFHADLRADDWLLYAMDSPWAGNSRGFSRGSVFNRAGQLVASVTQEGLIRHRKDWAPGPT0001835_1246DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-BUTYRIC_ACID_BIOSYNTHESIS,PGPT0001835-tesB-K10805NANA
D1-35_04749594mupP_2COG0546N-acetylmuramic acid 6-phosphate phosphataseATGAGCCTGGCCGATGTGCGGCACTGGGTGTTCGACATGGACGGCACGCTGACCGTCGCCGTGCACGATTTCGCCGCGATCCGCGTGGCCCTGGCGATTCCGGCCGAAGACGACATCCTCACGCATCTGGCGGGATTGCCCGCTGAAGAAGCCGCGGCCAAACATGCCTGGTTGCTGGAACACGAGCGGGACCTGGCGCTGGGCTCCAGGCCCGCGCCGGGGGCGGTGGAGCTGGTCCGCGAGTTGGCCGGGCGTGGTTATCGCCTGGGCATCCTGACGCGCAATGCCCGCGAGCTCGCCCACGTGACGCTTGACGCGATCGGCCTGGCCGATTGTTTTGCCGTGGAGGACGTTCTCGGCCGTGATGAAGCGCCGCCCAAACCTCATCCCGGTGGCCTGTTGAAACTGGCCGAGGCCTGGAACGTGGCGCCCGAGACCATGGTGATGGTGGGCGACTACCGCTTTGACCTCGACTGCGGCCGCGCGGCGGGCGCGCGGACGGTGCTGGTGAATCTGCCGGACAATCCCTGGCCTGAGTTGACGGACTGGCATGCGCGTGATTGCGCCGAGTTGCGGCGGATGCTTTCGGCTTGAMSLADVRHWVFDMDGTLTVAVHDFAAIRVALAIPAEDDILTHLAGLPAEEAAAKHAWLLEHERDLALGSRPAPGAVELVRELAGRGYRLGILTRNARELAHVTLDAIGLADCFAVEDVLGRDEAPPKPHPGGLLKLAEAWNVAPETMVMVGDYRFDLDCGRAAGARTVLVNLPDNPWPELTDWHARDCAELRRMLSANANANANANA
D1-35_04750948hypothetical proteinATGAAGTGGCGGGCATTGATCGGGCTGGTGCTGTGCTGCGCCGTAGCCCAGGCCGAGGAACACGGCGTCAAGGTGATCGCCGAGGGACGCTTGCAGATCAGGGGCGGCGCCATGGCCGTCGGTGTCAGCCCGCCACCGGCCTCGATCGAGCGGGTGCTGATCATCCTCCATGGTCGGCTACGCAATGCCGATACTTACTTGCACAGCGCTGAAAAAGCCGCGGCACAGGCCGGTCAGTCGGCGACGACGTTGATCATTGCCCCACAATTTCTCAACGAACATGACGTAGCGCGCCATCAGTTGCCTGCCGAAATCCTGCGCTGGCAGGGCAACGACTGGATGGCGGGAGGCCTGTCCACGGGACCGAAACCGCTCAGTTCATTCCAGGTGCTGGACGACATCGTTGCGCGGGTCAGCGACCGCCAGCAGTTTCCCGCAGTGAAAGACATCATCATCGCCGGCCACTCCGGCGGCGCCCAAGTGGTGCAGCGCTATGCCCTGCTTGCCCATGGTACTTATCGCATCAGCCCACGGTTCGTGATCGCCAACCCTTCGTCCTATGTCTACCTGGACGCACAGCGGCCCATGGCGTTCGACCCGGTCAGTTGCCCAGGCTTCAATCGCTGGAAATACGGCCTGGAAAACCTGCCCGCCTACGCTACAGGGCAAACGCCCGCCCAGCTCGAGGATCGCTACATCAGGCGCGACATCGTCTATCTGCTGGGGCAACAGGACATCGACCCGGAACATCCGGCGCTGGATAAAGGTTGTGAAGCGCAGACACAAGGGGCGTATCGGCTGCTACGGGGGCATTTCTTCTTTGACTACCTGACCCGGCGTCACCCGCAAGGGTTGAATCAGCGACTGATTGAAGTGCCCGGGGTTGGGCATGATGGGGATGGGATGTTCAATTCGCCGGAGGGGTTGAAGGTGTTGTTTGGGCAGTGAMKWRALIGLVLCCAVAQAEEHGVKVIAEGRLQIRGGAMAVGVSPPPASIERVLIILHGRLRNADTYLHSAEKAAAQAGQSATTLIIAPQFLNEHDVARHQLPAEILRWQGNDWMAGGLSTGPKPLSSFQVLDDIVARVSDRQQFPAVKDIIIAGHSGGAQVVQRYALLAHGTYRISPRFVIANPSSYVYLDAQRPMAFDPVSCPGFNRWKYGLENLPAYATGQTPAQLEDRYIRRDIVYLLGQQDIDPEHPALDKGCEAQTQGAYRLLRGHFFFDYLTRRHPQGLNQRLIEVPGVGHDGDGMFNSPEGLKVLFGQNANANANANA
D1-35_04751888COG2321putative proteinATGCTATGGAAAAAAGGTCGCCGCAGTGACAACGTGGTGGACGCCCGCGGTGACGGTGGGGGCGGCGGCGGGATGCGTTTTGGTGGCGGCAAGGGCTTGAGCCTGACGGCCATTATCCTGATCGTCGGCATCGGCTGGATCACCGGCCAGGACCCCATGCAGATTCTCGGGCAACTGACCGGGCAGATGGACCAGGCTTCCGCGCCCGCCTCTTCGCAAACGCGCCAGGCACCACCGGCCAACGACGAACAGGCTGAATTCGTGCGCTCCATCCTGGGCGATACCGAAGACACCTGGGGCCAGGTTTTCCAACAGGCCGGGCGCCAGTACCAGCAACCGAAGCTGGTGCTGTTCAGCGGTCGGGTCAACTCGGCGTGCGGCCTGGCTTCCTCGGCGACCGGCCCCTTCTACTGTCCGGCGGACCGGCAGGTTTACCTGGACATGAGTTTCTTCAAGGAAATGTCCCAGCGCTTTTCCGCCGCCGGAGACTTTGCCCAAGCCTACGTCATCGCCCATGAAGTGGGCCACCACGTGCAGACGCTGCTCGGCGTGTCGGCGAAAATCCAGGAAGCGCGCCAGCAAGGCCGGCAAATGGAAGGCGACGGTGGTTTGCTGGTGCGTCAGGAATTGCAGGCCGACTGCCTGGCGGGCGTCTGGGCCAACCACGCGCAAAAACGCCTGAACTGGCTTGAACCGGGCGATATCGAAGAGGCCTTGACCGCCGCCAATGCCATTGGCGACGATCGCCTGCAGCAACAAGGCCAGGGCCGCGTGGTGCCGGACTCGTTTACTCACGGCACCTCGGCACAACGGGTGCGCTGGTTCAAGACCGGTTTTTCTCAAGGCCAGGTCAGCCAGTGCGACACCTTCGCGGCGAAAACCCTGTAGMLWKKGRRSDNVVDARGDGGGGGGMRFGGGKGLSLTAIILIVGIGWITGQDPMQILGQLTGQMDQASAPASSQTRQAPPANDEQAEFVRSILGDTEDTWGQVFQQAGRQYQQPKLVLFSGRVNSACGLASSATGPFYCPADRQVYLDMSFFKEMSQRFSAAGDFAQAYVIAHEVGHHVQTLLGVSAKIQEARQQGRQMEGDGGLLVRQELQADCLAGVWANHAQKRLNWLEPGDIEEALTAANAIGDDRLQQQGQGRVVPDSFTHGTSAQRVRWFKTGFSQGQVSQCDTFAAKTLNANANANANA
D1-35_04752879ribNRiboflavin transporterATGACCGTCAGCACTCCGCTCTCCGGCGTCAACCAGGCTTTCAAGGGCATCGTGCTTATTCTGGTCGCAACGTTCCTGTTCTCCAGTCACGACGCATTGTCCAAATATCTCTCGGGTTTTTATCCGATCATCATGGTGGTCTGGGCCCGTTACGTGGTGCACACGTTGTTGATGGCGGGCATTTTCCTGCCGCGCTCGGGGCTGCGGGTGCTGCGGACCAAGCGTCCGTTGTGGCAACTGGCCCGGGCGTTGTGCCTGTTGGGCACCAGTCTGTTTTTCACCACGGCGCTGATGTACATCCCCTTGGCCGAGGCGACCGCGGTCAACTTCCTCGCCCCCGTGCTGGTCACCGCGCTGTCAGTGCCGTTGCTGGGCGAACACGTGACGCGCGGTCAGTGGATCGCGGTGATCTTCGGTTTCATCGGGGTGCTGATCATCGTTCACCCCGGTGGTGATCTGTTCACGCCGGCGGTGCTGTTGCCGTTCTGTTCGGCGCTGTTTTTCTGCTTCTACCAATTGCTCACGCGCAAGCTCAGCGAGATCGACAGCCCGACCACCAGCAACTTTTTCGCAGGACTTTGCAATACCCTGGTGATGAGCGCGCTGGTGCCGTTTTTTTGGCAAGTGCCCAGCGTGACCCACGGCTTGATGATGCTCGCATTGGGTGCCTGCGGGATGACCGCGCACCTGATGCTGACCCAGGCCTTCCGCTTCGCCGCCCCGGCGTTGCTGGCGCCATTCGGGTATTGCCAGATTATTTTCGCCGGGCTGCTCGGCTGGCTGTTGTTCAGCCATACGCCGACGCTGACCACGGTAGTGGGTATCGTCCTGATCTGCTTGAGTGGATTGGCAGCGGCGTGGCAGCAGCGGCGCAAGTAAMTVSTPLSGVNQAFKGIVLILVATFLFSSHDALSKYLSGFYPIIMVVWARYVVHTLLMAGIFLPRSGLRVLRTKRPLWQLARALCLLGTSLFFTTALMYIPLAEATAVNFLAPVLVTALSVPLLGEHVTRGQWIAVIFGFIGVLIIVHPGGDLFTPAVLLPFCSALFFCFYQLLTRKLSEIDSPTTSNFFAGLCNTLVMSALVPFFWQVPSVTHGLMMLALGACGMTAHLMLTQAFRFAAPALLAPFGYCQIIFAGLLGWLLFSHTPTLTTVVGIVLICLSGLAAAWQQRRKPGPT0023680_142DIRECT EFFECTCOLONIZING_PLANT_SYSTEMOTHER_COLONIZATION_RELATED_PROTEINSCOLONIZATION-HOST_INVASION_FACTORSHOST_INVASION-SAM|QUEUOSINE|LIPID_METABOLISM,PGPT0023680-sam-K15270NANA
D1-35_047531338exuT_2Hexuronate transporterATGATTCCTTCCCAGAGTTCCCGCCTGGCCCCCGGCCTGAGTGCCGCCCAAGACGGCATCGGCGACAAGATCCGTGGCGCCATGGCCGTGGGCAAGACCCGTTGGGGCATGCTTGCCCTGGTGTTTTTCGCCACCACCCTGAACTACATCGACCGCGCCGCCCTTGGGGTCATGCAGCCGATCCTGGCCAAGGAGATGAGCTGGACGGCGATGGACTACGCCAATATCAACTTCTGGTTCCAGGTCGGTTATGCGGTCGGCTTCCTGCTGCAAGGTCGCCTGATCGACCGGATCGGCGTCAAGCGCGTGTTCTTCTGCGCCGTGCTGCTCTGGAGCCTGGCAACCGGCGCCCATGGCCTGGCCACTTCGGCGGTGGGCTTCATGGTCTGCCGCTTCATCCTCGGCCTGACCGAAGCCGCCAATTACCCGGCCTGCGTCAAGACCACGCGGCTGTGGTTCCCGGCCGGCGAACGGGCCGTGGCCACCGGCATCTTCAATGCCGGCACCAACGTTGGCGCGATGTTCACGCCGATGCTGCTGCCGCTGATCCTGCACGTGTGGGGCTGGCAGGCCGCGTTCCTGTGCATGGCCGCGCTGGGCGGGATCTGGTTGCTGTTCTGGGGCCTGAAATATTTCAACCCGGAAGATCACCCCAGCGTCAAACAGTCGGAACTGGACTACATCCAGGCCCAGGAAGAACCGGACCAGGTCCGCGTACCGTTCTCCCGTATCCTGCGCATGCGCGGCACCTGGGCCTTCGCCCTGGCCTACTCGATTACCGCGCCGGTGTTCTGGTTCTACCTCTACTGGCTGCCGCCGTTTCTCAACCAGCAATACAACCTGGGCATCAACGTGACCCAGATGGGCATCCCGCTGATCATCATCTACCTGACCGCCGACTTCGGCAGCGTCGGCGGCGGGATCCTGTCCTCGTTCCTGATCGGTCGCGGGGTCAACCCGATCAAGGCGCGACTGGTCTCCATGCTGCTGTTCGCCTGCTGCATCGTTGGGGTGATCATGGCCGCCGGCTCCAGCAGCCTGTGGGTGGCGGTGTTTGCCATCTCCCTGGCCATCGGCGCGCACCAGGCCTGGACGGCAAATATCTGGAGCCTGGTGATGGATTACACGCCCAAGCACATGATGAGCACGGTGTTCGGCTTCGGCGGCATGTGCGCCGCCGTCGGCGGGATGTTCATGACCCAGTTGGTGGGGCACATCCTGACCGTCACCAATAACAACTACACGGTGCTGTTCACCCTGATTCCGGCGATGTATTTCATTGCGCTGATCTGGATGTACTTCATGGCGCCGCGCAAGGTTCCGACCCTGGAAAACTGAMIPSQSSRLAPGLSAAQDGIGDKIRGAMAVGKTRWGMLALVFFATTLNYIDRAALGVMQPILAKEMSWTAMDYANINFWFQVGYAVGFLLQGRLIDRIGVKRVFFCAVLLWSLATGAHGLATSAVGFMVCRFILGLTEAANYPACVKTTRLWFPAGERAVATGIFNAGTNVGAMFTPMLLPLILHVWGWQAAFLCMAALGGIWLLFWGLKYFNPEDHPSVKQSELDYIQAQEEPDQVRVPFSRILRMRGTWAFALAYSITAPVFWFYLYWLPPFLNQQYNLGINVTQMGIPLIIIYLTADFGSVGGGILSSFLIGRGVNPIKARLVSMLLFACCIVGVIMAAGSSSLWVAVFAISLAIGAHQAWTANIWSLVMDYTPKHMMSTVFGFGGMCAAVGGMFMTQLVGHILTVTNNNYTVLFTLIPAMYFIALIWMYFMAPRKVPTLENPGPT0017205_297DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_HEXURONATE_TRANSPORT,PGPT0017205-exuT-K08191NANA
D1-35_047541899hypothetical proteinATGCAGCGTTCCATTGCCACTGTTTCCTTGAGCGGTACCCTGCCGGAAAAACTCGAAGCGATTGCCGCCGCTGGTTTCGACGGCGTGGAAATTTTCGAGAACGACCTCCTGTATTACGACGGCAGCCCTCGGGAAATCAGGCAAATGTGCGCCGACCTGGGTATCGCCATCACTTTGTTCCAGCCATTTCGGGATTTCGAAGGCTGCCGCCGGGATCGTCTGGCGCGCAACCTTGACCGCGCCGAGCGCAAATTCGACCTGATGCAAGAGCTGGGCACCGATCTGGTGCTGGTGTGCAGCAATGCCTCGGCCGACAGCGTCGGCGACGAGCAGGTCCTGATTGATGACCTCAGGCTGCTGGCCGAGCGCGCCGGTGCGCGGGGCCTGCGCATCGGCTATGAGGCGTTGGCCTGGGGCCGCCACGTGAATACTTATCAACAGGTCTGGAACATCGTGCGCCAGGCCGATCACCCCAGCTTGGGCGTGCTGCTCGACAGCTTCCACACCTTGTCCCTCAAGGGCGACCCGAGCGCCATCGCCGAGATTCCCGGGGACAAGATTTTTTTCGTGCAGATGGCCGACGCACCGATCCTGGCGATGGACGTCCTGGAGTGGAGCCGGCATTTCCGCTGTTTCCCGGGCCAGGGCGAATTCGACCTGCCGGGTTTCCTCGCGCCGATCATCCAGAGCGGTTACACCGGGCCGCTGTCGCTGGAGATCTTCAACGACGGGTTTCGCGCCGCGCCGCCCAGGGCCAACGCCGCCGACGGTTTGCGTTCGCTGCTGTACCTGGAAGAGAAAACCCGTGAGCGCCTGGCCGCGCAAGCGCCTGCGCAGAACAGCGATATCCTCTTCGCGACAGCGCCGGCCAGCGAATACAACGGCGTTGAATTCCTGGAGTTCGCCGTGGATGACAACCTCGGCGCCAAGCTCTCCCACTGGCTGGAGCGGCTGGGGTTCGTCAAGGCCGGCCAGCATCGCTCCAAGAACGTCAGCCTGTTGCGCCAGGGCGATATCAACCTGATCCTCAATTGCGAGCCGTATTCCTTCGCCCACAGCTTTTTTGAAGCCCATGGCCCATCGTTGTGCGCCACCGCCGTGCGGGTCAAGGACAGCGCCAGCGCTCTCAAGCGGGCGGTGGCCTACAAGGGCCAGCCTTATCGTGGCCTGGTCGGGCCCAACGAGCTGGAGCTGGCGGCGGTGCGAGCGCCGGACGGCAGCCTGATCTACCTGGTGGACCAGGACGCCGATGTCTATGGCACCGATTTCAACTTGCAACCCGGTGCGGTCATCGGCGCCGGGCTCAAGCGCATCGACCACATGGCGATGGCGCTGCCGGCCGACAGCCTCGACAGTTGGGTGCTGTTCTACAAGAGCCTGCTGGATTTCGAAGCTGACGATGAAGTGGTGTTGCCCGACCCCTATGGCCTGGTGAAAAGCCGTGCGTTGCGCAGCCGTTGCAGTTCGATTCGTTTGCCGCTGAACATTTCCGAGAACCGCAACACCGCGATCTCACATGCACTGTCGAGTTATCGCGGTTCCGGCGTGCACCATATCGCCTTTGACTGCGACGATATCTTCGCCCAGGTCAGCCGTGCCAAGGAGGCCGGGGTGCCGTTGCTGGACATTCCGCTCAACTACTACGATGACCTGGCGGCACGTTTCGATTTCGATGATGAGTTTCTCAGCGAGCTGGCCTATTTCAACGTGTTGTACGACCGTGACGCTCAGGGCGGCGAGTTGTTTCACGTCTATACCGAACCGTTCGAAGGGCGCTTTTTCTTCGAAATCATCCAGCGCAAGAACGGTTATGCCGGCTACGGCGCGGCCAACGTCGCGGTGCGGCTGGCGGCCATGGCCAAGTCTCGTAGCGGTGGCTTGCGGCACGCCAAGTTGTAGMQRSIATVSLSGTLPEKLEAIAAAGFDGVEIFENDLLYYDGSPREIRQMCADLGIAITLFQPFRDFEGCRRDRLARNLDRAERKFDLMQELGTDLVLVCSNASADSVGDEQVLIDDLRLLAERAGARGLRIGYEALAWGRHVNTYQQVWNIVRQADHPSLGVLLDSFHTLSLKGDPSAIAEIPGDKIFFVQMADAPILAMDVLEWSRHFRCFPGQGEFDLPGFLAPIIQSGYTGPLSLEIFNDGFRAAPPRANAADGLRSLLYLEEKTRERLAAQAPAQNSDILFATAPASEYNGVEFLEFAVDDNLGAKLSHWLERLGFVKAGQHRSKNVSLLRQGDINLILNCEPYSFAHSFFEAHGPSLCATAVRVKDSASALKRAVAYKGQPYRGLVGPNELELAAVRAPDGSLIYLVDQDADVYGTDFNLQPGAVIGAGLKRIDHMAMALPADSLDSWVLFYKSLLDFEADDEVVLPDPYGLVKSRALRSRCSSIRLPLNISENRNTAISHALSSYRGSGVHHIAFDCDDIFAQVSRAKEAGVPLLDIPLNYYDDLAARFDFDDEFLSELAYFNVLYDRDAQGGELFHVYTEPFEGRFFFEIIQRKNGYAGYGAANVAVRLAAMAKSRSGGLRHAKLPGPT0009480_69DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_TYROSINE_DEGRADATION,PGPT0009480-hppD-K00457NANA
D1-35_04755678nicSHTH-type transcriptional repressor NicSATGACTATGAATCCAGAGCTTTCCGCAGCCCTCGACGAACCTGTCGCCGCGCCGCGCAAGAGTCGCAAGAACAACCCGGAAAAGACCCGGGAAAACATTCTTCAGGAAGCTATCGTCGAGTTCGTCCAGCAGGGCCTGGCCGGCGCGCGGGTCGACGCCATCGCCGAGCGCATCCACACCTCCAAGCGGATGATCTATTACTACTTCGGCAGCAAGGAGCAGCTGTACGTCGAGGTGCTGGAAAAACTCTACGGCGATATCCGCACCACCGAAAGCCGCCTGCACCTGGCGGAGCTGGCGCCGGTCGACGCGATCCGGCGCCTGGTGGAGTTCACCTTCGACCACCATGACCGCAACGTCGATTTCGTGCGTATCGTCTGCATCGAGAACATCCACAACGCCGAATACGTGAAGCAATCCGGCGCGATCAAGGCGATGACCAACACCATCCTCGATTCCCTTGGCGTGATATTGCGCCGAGGCGCCGAGGAGGGCGTATTTCGCGCCGGCCTCGAGCCGCTGGATGTGCATCTGCTGATCAGTTCGTTCTGCTTCTATCGGGTGTCCAACCGCCAGACGTTCGGTGAGATCTTTCAGATCGATCTGTCGGACGAAGCGGTCAAGCAGCGCCATCGGCAGATGGTCTGTGAATCGGTATTGCGGTACTTGCAGGCCTGAMTMNPELSAALDEPVAAPRKSRKNNPEKTRENILQEAIVEFVQQGLAGARVDAIAERIHTSKRMIYYYFGSKEQLYVEVLEKLYGDIRTTESRLHLAELAPVDAIRRLVEFTFDHHDRNVDFVRIVCIENIHNAEYVKQSGAIKAMTNTILDSLGVILRRGAEEGVFRAGLEPLDVHLLISSFCFYRVSNRQTFGEIFQIDLSDEAVKQRHRQMVCESVLRYLQANANANANANA
D1-35_04756852aroE_2Quinate/shikimate dehydrogenase (NAD(+))ATGTCCAACGTCACTGTACTGGCCGGCCTGATCGGCGCGGGCATCCAGGCCTCTCGCACGCCGGCGCTCCACGAACACGAAGGCGATGCCCAAGGCATGCGTTACCTGTATCGGCTGATTGATCTGGATGCGCTGAAACTCGACAGCGGCGCCCTGGGCGATTTGCTGGTGGCTGCCGAACGCATGAGTTTTACCGGGTTGAATATCACGTTTCCCTGTAAACAGGCGGTCATCCCGCTGCTGGACGAGTTGTCGCCCGAAGCGCGCGGCATCGGTGCGGTAAATACCGTGGTGCTCAAGAATGGCAAACGCATCGGCCACAACACCGACTGCCTCGGGTTCGCCGAAGGCTTTCGTCGAGGCTTGGGCGATGTTTCCCGTCGCCATGTCGTCCAGATGGGCGCAGGGGGTGCCGGGGCTGCCGTTGCCCACGCGCTACTCGCCGAAGGCGTGGAGACGCTGAGCATCTTTGATGTCGAGACCAGCCGTGCCGAGGCGCTGGCGAATAACCTGAACCAACAGTTCGGCGCCAGCCGTGCTCGCGCCGGGCATGACCTGCCCACCGCCATGGCCGAGGCCGACGGGCTGGTGAACACCACGCCCATGGGCATGGCGAAACTGCCGGGGATGCCGGTACCGGTGGAGCTGTTGCGAGGCGATCTGTGGGTCGCGGAAATCGTCTATTTCCCGTTGGAAACCGAACTGCTGCGCAACGCCCGCGCCCTCGGCTGCCGCACGCTGGATGGCGGCACCATGGCGGTGTTCCAGGCGGTGAAGGCGTTCGAACTGTTCAGCGGCGTGGCGCCCGATGCGGGGCGGATGCTGGCGCATTTTCAGCGTATGGATCACTGAMSNVTVLAGLIGAGIQASRTPALHEHEGDAQGMRYLYRLIDLDALKLDSGALGDLLVAAERMSFTGLNITFPCKQAVIPLLDELSPEARGIGAVNTVVLKNGKRIGHNTDCLGFAEGFRRGLGDVSRRHVVQMGAGGAGAAVAHALLAEGVETLSIFDVETSRAEALANNLNQQFGASRARAGHDLPTAMAEADGLVNTTPMGMAKLPGMPVPVELLRGDLWVAEIVYFPLETELLRNARALGCRTLDGGTMAVFQAVKAFELFSGVAPDAGRMLAHFQRMDHPGPT0012890_2195DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-PHENAZINE_DERIVATESBIOTIC_STRESS_RESISTANCE-PHENAZINE-1-CARBOXYLIC_ACID_BIOSYNTHESIS,PGPT0012890-aroE-K00014NANA
D1-35_04757441aroQCOG07573-dehydroquinate dehydrataseATGCCTCCGATCGTTCTGGTGCTCAACGGCCCGAACCTGAACCTGCTCGGCACCCGCGAGCCGGCCACCTATGGCCACGAAACCCTGGCTGATATTTCCGCGCTGTGCGGCTGCGCCGCCGAGGAGTTCGGCCTGGCCGTGGAGTTCCGCCAGACCAACCAGGAAGGCGAATTGCTCGACTGGATCCACAGCGCCCGTGGCCGGTGTGCCGGGATCATCATCAACCCGGCGGCCTGGACCCACACTTCGGTTGCGATCCGCGACGCGCTGGTGGCCAGTGAAGTCCCGGTGATCGAAGTCCACCTGTCCAACGTCCACGCCCGCGAAACCTTTCGCCACCACTCCTTTGTCTCGTCAGTCGCCATCGGCGTGATGTGCGGGTTCGGCAGCCATGGTTATCGCCTGGCCCTGGAACATTTCAGTCAGCGGTTGAAGGGTTGAMPPIVLVLNGPNLNLLGTREPATYGHETLADISALCGCAAEEFGLAVEFRQTNQEGELLDWIHSARGRCAGIIINPAAWTHTSVAIRDALVASEVPVIEVHLSNVHARETFRHHSFVSSVAIGVMCGFGSHGYRLALEHFSQRLKGPGPT0012905_3003DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_QUINATE_CATABOLISM,PGPT0012905-aroQ|qutE-K03786NANA
D1-35_047581080trmACOG2265tRNA/tmRNA (uracil-C(5))-methyltransferaseATGACTTTTGATTCCCAGGCCTACGCCGCCCAGTTGCAGGACAAGGTCACGCGCTTGCGTGACTTGCTGGCTCCGTTCAATGCACCCGAGCCCGAGGTATTCGACTCGCCCTTGCAGAACTTCCGCCTGCGCGCCGAATTCCGCCTGTGGCGCGAAGCCGGCGAACGCCACTATGCGATGTTCTCCCAGGACGACAAGCGCACGCCGATCCTGATCGAAGAGTTCCCCATCGCCAGCTTGCGCATCAACCAGTTGATGCCGCAGCTCAAGGCCGCCTGGCAGGCCAGCGCGCCCTTGAGCCACAAGCTGTTCCAGGTGGAATTCCTGACCACCCTGGCCGGCGACGCGATGATCACCCTGTGTTATCACCGCCCGCTGGATGAACACTGGCACGCCGCGGCGTCGAAGCTCGCGACCGACCTGGGCGTCAGTATCATCGGGCGCTCCAAAGGCAAACGGGAAGTGATCGGCCACGATTATGTGGTGGAAAAACTTGAGGTGGGCGGCCGTGCCTTCAGCTATCGCCAGCCCGAAGGTGCCTTCACCCAGCCCAACGGCACGGTAAACCAGAAGATGCTCAACTGGGCTTATGAAGCCTTGGGCGATCGCAGCGACGATCTTCTGGAGCTTTACTGCGGCAACGGCAACTTCACGTTGCCCCTGGCCACCCGCGCGCGCAACGTGCTCGCCACTGAAATCAGCAAGACATCGGTCAACGCAGCGCTGAGCAACCTCAGCGAAAACGCTGTGGATAACGTCACGTTGGTACGGCTGTCCGCCGAGGAACTGACCGAAGCCTTGAACGAAGTCCGCCCATTCCGCCGCTTGCAGGGTATCGACCTGAAAAGCTACGAATTCGGCAGCGTCTTCGTCGACCCACCTCGCGCCGGCATGGACCCGGACACCTGCGAACTGACCCGACGCTTCGACAACATCCTCTACATCTCCTGCAACCCGGAAACCCTCGCCGCGAACATCGCGCAGTTGAGCGACACCCACCGCATCACGCGCTGCGCGTTGTTCGATCAGTTTCCGTGGACTCATCACATGGAATCCGGCGTGTTGCTGACTCGGCGTTGAMTFDSQAYAAQLQDKVTRLRDLLAPFNAPEPEVFDSPLQNFRLRAEFRLWREAGERHYAMFSQDDKRTPILIEEFPIASLRINQLMPQLKAAWQASAPLSHKLFQVEFLTTLAGDAMITLCYHRPLDEHWHAAASKLATDLGVSIIGRSKGKREVIGHDYVVEKLEVGGRAFSYRQPEGAFTQPNGTVNQKMLNWAYEALGDRSDDLLELYCGNGNFTLPLATRARNVLATEISKTSVNAALSNLSENAVDNVTLVRLSAEELTEALNEVRPFRRLQGIDLKSYEFGSVFVDPPRAGMDPDTCELTRRFDNILYISCNPETLAANIAQLSDTHRITRCALFDQFPWTHHMESGVLLTRRNANANANANA
D1-35_047591296adeP_2COG2252Adenine permease AdePATGCTGGAAAGGCTGTTTCAACTCAAGGCACACAACACCAACGTGCGGACCGAGATCCTGGCGGGCGTCACGACCTTCCTGGCCATGGCCTACATTCTGTTCGTCAACCCGAGCATTCTCGGCGAAACCGGCATGGACAAGGGTGCCGTATTCGTCGCCACCTGCCTGGCGGCGGCCATTGGTTCGACGGTCATGGGCCTGATCGCCAACTACCCGATCGCCCTTGCACCGGGCATGGGCCTGAATGCCTTCTTCACCTACACCGTGGTCTTGCACATGGGCCATACCTGGCAAGTGGCGCTGGGTGCGGTGTTCGTCTCCGCCGTATTGTTTTTCCTGCTGTCGATCTTTCGTATTCGCGAATGGATCATCAACAGCATCCCGCTGCCACTGCGCTCGGCCATCGCCGCCGGTATCGGCCTGTTCCTGGCGCTGATCGCCTTGAACAACGCTGGCATCGTAGTGAAAAACCCGGCGACCATGGTCGGTCTCGGCGACCTGAAGCAACCGGCACCAATCCTGGCGACCCTGGGCTTCGTCCTCATCGTCGCCCTGGAAGCACTGAAAGTGCGCGGCGCCGTGCTGATCGGCATCCTGGCGGTCACCGTTGTCTCGATCGTAATGGGCTTCACGCCGTTTGGCGGGATCATTTCCGCGCCGCCCTCCCTCGCCCCGACGTTTTTGCAACTGGACATCAAGGGCGCCCTGGACATCGGTCTGGTGAGCGTGATCTTCGCCTTTCTCTTCGTCGACCTGTTCGACAACTCCGGCACCCTGATCGGCGTCGCCAAGCGCGCCGGGCTGATGGGCAAGGATGGCCACATGCCGAAGATGGGCCGCGCGCTGATCGCCGACAGCACCGCCGCCATGGCCGGTTCGCTGCTGGGCACCTCGACGACCACCAGCTACATCGAGTCGGCGGCAGGCGTCAGCGCCGGCGGACGCACCGGCCTGACCGCCATCGTCGTGGCGATCCTGTTCCTGCTGGCGCTGTTCTTCTCGCCACTGGCCGCCAGCGTCCCGGCCTTCGCCACCGCGCCGGCCCTGTTGTTTGTGGCCGTGTTGATGACCTCCGGCCTGGCCGAGATCGACTGGGACGACATCACCGTCGCCGCCCCGGTGGTGATCACGGCGCTGGCAATGCCGTTCACCTACTCCATCGCCAATGGCATCGCCTTCGGCTTCATCGCCTGGACCGCCATCAAACTGGTGTCCGGCCGTGGCCGTGAGCTGAACCCGGCGCTGGTCATCCTGTCGATCCTGTTCGTTATCAAGTTGGGTTGGTTCAACGCATGAMLERLFQLKAHNTNVRTEILAGVTTFLAMAYILFVNPSILGETGMDKGAVFVATCLAAAIGSTVMGLIANYPIALAPGMGLNAFFTYTVVLHMGHTWQVALGAVFVSAVLFFLLSIFRIREWIINSIPLPLRSAIAAGIGLFLALIALNNAGIVVKNPATMVGLGDLKQPAPILATLGFVLIVALEALKVRGAVLIGILAVTVVSIVMGFTPFGGIISAPPSLAPTFLQLDIKGALDIGLVSVIFAFLFVDLFDNSGTLIGVAKRAGLMGKDGHMPKMGRALIADSTAAMAGSLLGTSTTTSYIESAAGVSAGGRTGLTAIVVAILFLLALFFSPLAASVPAFATAPALLFVAVLMTSGLAEIDWDDITVAAPVVITALAMPFTYSIANGIAFGFIAWTAIKLVSGRGRELNPALVILSILFVIKLGWFNAPGPT0007325_5019DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-XANTHINE_METABOLISMPHYTOHORMONE-XANTHINE_TRANSPORT,PGPT0007325-pbuG|azgA|ghxP|ghxQ|adeQ-K06901NANA
D1-35_04760447hypothetical proteinATGTATCGCATGAAAAAATTCGCATGGGCCTGCGCGTTGAACCTGGCGCTGCTCGGACCGGCGGCGCACGCCGCCTCAGCGCCGCCGCTGAGCGAGGTCAAGGTGCTCAAGGTCGAATCGCCGACCTGTGGGTTTGAGAATATCGCGGCGGGGCAGACGCAGACCCGTTGCGATCATAGCGGGCCGAATATCAAGGTCTACGTGCTGGAGGTCGGTTATGGCCGCCAACCTCATGTCACGCTGGACGGCTTCGAAGTCGACGGCACCCGCTCGCCAGGGTGTGCGTTCAGCAATGGCAATCTCAACGACTGTTCGACAAGCACCAAGGTGGTCGGCTACCTGTATATCTTCGATCTGAAGGGCAAGCAGGAAGGCACTTTCAGCTTCAGCAATGTGTCAATCAACGCGCCGGGGAACCGGATGGCGACCGAGCTCTACATCAAATGAMYRMKKFAWACALNLALLGPAAHAASAPPLSEVKVLKVESPTCGFENIAAGQTQTRCDHSGPNIKVYVLEVGYGRQPHVTLDGFEVDGTRSPGCAFSNGNLNDCSTSTKVVGYLYIFDLKGKQEGTFSFSNVSINAPGNRMATELYIKNANANANANA
D1-35_04761567yajLCOG0693Protein/nucleic acid deglycase 3ATGATTCCTGGAACCAAGATCCCCCGAGCCCTGATTGCCGTGGCTGAAGGCGTCGACGATTTGCAGACGGTGACGCTGATCGATGTGTTGCGTCGTGCGCAGCTCGAAGTGGTGGTGGCGAGTATCGAGGGCCGACGCATGCTCACCTGTGCACGCGGCACGCGCCTGACCGCCGACGGCATGCTGGTGGACATGCTGGTCCAGGATTTCGACCTGATCGTCCTGCCGGGCGGCATCATTGGCGCGCAGCATCTGGCCGCCCACCAGCCGTTGCAGCAGTTGGTCAGGGACCAGGCCGCCGCCGGGCGATCTTTTGCCGCCATCGCCGAAGCGCCGGCGCTGGTACTCCAGGCGTTCGGCGTGCTACGCCAGCGCCGCATGACGTGCCTGCCCGCCGTGAGCCAGCAGCTGTCCGGATGCAGCTTCGTCGACCAGCCGGTGGTGGTGGATGGCAATTGCATCACCGCCCAAGGCTCGGCCGCCGCCCTGATATTTGCCCTGACGCTGGTGGAGCAACTCGCCGGCAAGGGTGTGAGGAGCGTGGTGGCGGCGGAGTTGCTGGCCTGAMIPGTKIPRALIAVAEGVDDLQTVTLIDVLRRAQLEVVVASIEGRRMLTCARGTRLTADGMLVDMLVQDFDLIVLPGGIIGAQHLAAHQPLQQLVRDQAAAGRSFAAIAEAPALVLQAFGVLRQRRMTCLPAVSQQLSGCSFVDQPVVVDGNCITAQGSAAALIFALTLVEQLAGKGVRSVVAAELLAPGPT0008945_846DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B1|THIAMIN_METABOLISMPLANT_VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0008945-thiJ-K03152NANA
D1-35_04762525paoACOG2080Aldehyde oxidoreductase iron-sulfur-binding subunit PaoAATGAGCGCGACCTTGTCCGAAGCGACGCAGGCGTCCTTCGTCCGTCATCCGATACGTCTGACACTCAATGGCGCCGTGCGTGAGTTGCAGGTGCTGCCCTGGACCACGCTGCTGGACCTGCTGCGCGAGCAACTGGACCTGGTAGGCAGCAAGAAAGGCTGTGATCACGGCCAATGCGGCGCCTGCACGGTGTTGCGTGATGGCAAGCGTATCAACGCCTGCCTGACCCTGGCGGTGATGTGCGACGGCGCCGAGTTGACCACCGTCGAGGGCTTGGCCAATGGCGATGAGCTGCACCCCATGCAACGGGCGTTCATCAAGCATGACGCGTTCCAGTGCGGCTACTGCACGCCGGGGCAGATCTGTTCGGCGGTGGGGCTGGCCAACGAGGGCCGGGCGCAGACCAGCGCCGAAATCAGCGAACTGATGAGCGGCAACCTCTGCCGATGCGGCGCCTACAACAATATTCGCGACGCCATCGAGGAAGCGCTTCCGCTCTGCCAGCCAACGGAGGGCGAGCGATGAMSATLSEATQASFVRHPIRLTLNGAVRELQVLPWTTLLDLLREQLDLVGSKKGCDHGQCGACTVLRDGKRINACLTLAVMCDGAELTTVEGLANGDELHPMQRAFIKHDAFQCGYCTPGQICSAVGLANEGRAQTSAEISELMSGNLCRCGAYNNIRDAIEEALPLCQPTEGERPGPT0007290_1041DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0007290-yagT-K13483NANA
D1-35_04763993paoBCOG1319Aldehyde oxidoreductase FAD-binding subunit PaoBATGAATCCCTTTAGCTACAGCAAGCCCGACACCGTGCAGGCGGCCGTCGAGTTGTCCAGTGCGAACTCGCGCTTCATCGCCGGCGGCACCAACCTGCTGGACCTGATGAAGGAAAACCTCAGCCGCCCCCAGCACTTGATCGATATCACCGGTCTGCCTTTGACGGACCTCAGCGAGACCCCGTCGGGCGGGGTGATGATTGGCGCATTGGTGAGCAATGCCGATCTGGCCTGGCATCCGTGGGTTCAGCGGCGCTATCCGCTGCTCGCCCAAGCCATCCTGGCGGGCGCCTCGCCGCAGTTGCGCAATATGGCCAGCACCGGTGGCAACCTGTTGCAACGCACGCGCTGCTATTACTTTTATGACGCCTCCGTGCCGTGCAACAAGCGGCGCCCAGGCAGCGGTTGCCCGGCCCGAAGCGGCCTGAACCGGATCCACGCGATTTTCGGCGCCAGTGATCAGTGCGTGGCGACTCATCCGTCGGACATGTGCGTGGCCCTGGCGGCGCTTGAGGCGGTTGTTCATGTGCTGGGACGGGGCGGCGCGCGGACCATCGAGTTCGCGGATTTTCACCGTCTGCCCGGTGACGCACCGGATCGGGACAACCAATTGGCCGATGACGAGCTGATCACCTACATCGAGTTGCCCCCAGCGGGTTTTGCTGAACATAGCCACTACCTGAAGATCCGTGACCGGGCCTCCTACGCCTTTGCGCTGGTTTCGGTGGCGGCGGCGCTGGAGCTTGATGGGCCGGTGATTCGCCAGGCTCGGCTGGCCCTCGGCGGTGTAGCCCACAAACCGTGGCGCGACAAGGCCGTGGAAAACTGGCTGGTCGGCCAGGCCGTCAGCCGCGAAACCTTTACGGCGGCTGCCGATGCGTTAATGCAGAACGCCGAGCCGCTGGAGCACAACGGCTTCAAAGTCAAACTGGCACGCCGGGCAATTATCCGCGCCTTGAGCGATGCCGCGCTGGTGGGGGGAACCACCCGATGAMNPFSYSKPDTVQAAVELSSANSRFIAGGTNLLDLMKENLSRPQHLIDITGLPLTDLSETPSGGVMIGALVSNADLAWHPWVQRRYPLLAQAILAGASPQLRNMASTGGNLLQRTRCYYFYDASVPCNKRRPGSGCPARSGLNRIHAIFGASDQCVATHPSDMCVALAALEAVVHVLGRGGARTIEFADFHRLPGDAPDRDNQLADDELITYIELPPAGFAEHSHYLKIRDRASYAFALVSVAAALELDGPVIRQARLALGGVAHKPWRDKAVENWLVGQAVSRETFTAAADALMQNAEPLEHNGFKVKLARRAIIRALSDAALVGGTTRPGPT0007275_429DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0007275-yagS-K11178NANA
D1-35_047642202paoCCOG1529Aldehyde oxidoreductase molybdenum-binding subunit PaoCATGAATGCATTGAGCAAAACCATAGGCAAGCCGCTTGACCGGACCGATGGCCTGCTCAAGGTCACTGGTCGGGCCCGATACGCCGGGGAGTATCCCGAAGATGGCCTGCTGCACGGCAGCGTCGTCTCCAGCGGTATCGCCCGTGGCCGGGTCGTGCGCATCGATGCTTCCCGAGCCCTGGCGCTGCCGGGCGTCGTCGCGGTGATCGACCATACCAACCGCCCGAAGATCGCCAGTTACGACGAGCCCTACCAGGATGCCGATGCCGCGGAGGGTTCGCCGTTCCGGCCGTTGTTCAACGACCAGGTCCTCTACAGCGGCCAGCCGCTCGCCCTGGTGGTTGCGGAAAATCTCGAGTTGGCGCGTTATGCCGGCTCGCTCGTTGAAATCGACTACGAGACCCAGGACCATCAGACCGATCTGACGATCCTGCAAAACGAAGCGCATCCGGCGCCCGCCGAATTACCCAAGCCCCGTGGGAATTTTCAGGGCGAGTACGCCAGCTCGGCACTCAGCGTGGATGTGTCCTACAGCACGCCGATCGAACATCACAACCCGATGGAGCCCCACGCCTCGACCGTTCTGTACCAACCCGACGGCAGCTTGCACATTCACGACAAGACCCAGGGCACGCAGAATTGCCAGGCCTATGTGCAAGAGGTGTTCGGGCTGGAAAAAGAACAGGTGCGGGTGTTTGCCGCCTACGTTGGCGGTGCTTTCGGTTCCGGGCTGCGCCCGCAGTACCAATTGCCGCTGGCAGTAATGGCCGCGCTGACGCTCAAGCGCTCGGTGCGGGTCAGCCTGACCCGTCAGCAAATGTTTACCTTCGGCTACCGGCCCCGGACCTTCCAGTGTGTGCAACTGGGAGCTGCGGCCAACGGACGTTTGCTCGCGGTGGCCCATAGCGCCGTCGGCCAGACGTCGCGCTTCGAGGACTTCACCGAGCATGTGGTGGAGTGGAGCGGCATGCTCTATCACTGCGATAACGTCGAATTGAGCTACAAGCTGGTGCCCCTGGACGTCTACACGCCGCTGGACATGCGTGCCCCCGGCGCCGCCCTTGGACTGATCGGTCTGGAGTGCGCCATGGACGAGTTGGCCTGCGCCCTGGCCATCGACCCGGTCCAGCTGCGCTTGATCAACTATGCCGAACGTAACGAGAACGAAGGCAAGCCGTATTCGAGCAAGGAGTTGCGCGAATGTTACGCCCAGGGTGCCGACCGTTTCGGTTGGAGCAAGCGCAATCCGGAGCCGCGCAGCATGCGCGCAGGGCGGCAACTGGTAGGTTGGGGCATGGCCGGCGGTGTCTGGGAGGCCATGCAGCAGAAGGCCAGCGCCCGAGCGTCGCTGGATCCCAGCGGCAAGCTGACCGTGAGCAGCGCGACCACTGACATCGGCACCGGCACCTATACCGTCATGACCCAGATTGCCGCCGAGACGTCCGGCGTTCCCCTGGAAAATGTCACCTTTGTGCTTGGCGATTCGTCGCTGCCGACCGCACCGCTGCAGGGCGGTTCGTTTACCGTCTCGTCCGTCGGCACCGCAGTGCAGCAAGCCTGTGAGGCGCTGCGGGAAAAACTGCTCGCAGTGGCTCGGCAAACTTGCCCGGCCTTCAGCGGCGCAACCCTTGAGCAAGTGACGTTTGTCGACGGTGAACTGCGCATGGGGGAGGCCAGTGTCACCCTGGCGCAGCTGGCTCGGAACAGCGGCGAGACGCCGTTGCAGGCACAAGTCACGGCCCAGCCGGATGAGAAACGCCAGGCCTATGCCACTGCTACGCACTCGGCGGTGTTCGTCGAGGTGCTGGTCGACGAAGACCTGGGCACGGTGAAGGTCAACCGCGTGGTCAGCGCCATCGCGGCCGGGCGGGTAATCAACCCGAAAACCGCCCGCAGCCAGATTCTCGGTGGCGTGGTCTGGGGCGTTGGCATGGCCTTGCATGAAGAGACCCTGACCGACCACGCCCTGGGCCGGCACATGAACCACAACCTGGCCGAATACCACGTGCCGGTCAACGCCGACATCGGTGACATCGACGTGGTGTTCGTCGATGAACAGGACGACATCGTCAATGCGCTGGGGTCCAAGGGCGTCGGTGAAATCGGCATCGTGGGCGTGGCGGCGGCGGTGGCTAATGCCATTTACCATGCGACCGGCAAGCGGGTGCGGGACTTTCCAGTCACGCTGGACAAGTTGCTCTGAMNALSKTIGKPLDRTDGLLKVTGRARYAGEYPEDGLLHGSVVSSGIARGRVVRIDASRALALPGVVAVIDHTNRPKIASYDEPYQDADAAEGSPFRPLFNDQVLYSGQPLALVVAENLELARYAGSLVEIDYETQDHQTDLTILQNEAHPAPAELPKPRGNFQGEYASSALSVDVSYSTPIEHHNPMEPHASTVLYQPDGSLHIHDKTQGTQNCQAYVQEVFGLEKEQVRVFAAYVGGAFGSGLRPQYQLPLAVMAALTLKRSVRVSLTRQQMFTFGYRPRTFQCVQLGAAANGRLLAVAHSAVGQTSRFEDFTEHVVEWSGMLYHCDNVELSYKLVPLDVYTPLDMRAPGAALGLIGLECAMDELACALAIDPVQLRLINYAERNENEGKPYSSKELRECYAQGADRFGWSKRNPEPRSMRAGRQLVGWGMAGGVWEAMQQKASARASLDPSGKLTVSSATTDIGTGTYTVMTQIAAETSGVPLENVTFVLGDSSLPTAPLQGGSFTVSSVGTAVQQACEALREKLLAVARQTCPAFSGATLEQVTFVDGELRMGEASVTLAQLARNSGETPLQAQVTAQPDEKRQAYATATHSAVFVEVLVDEDLGTVKVNRVVSAIAAGRVINPKTARSQILGGVVWGVGMALHEETLTDHALGRHMNHNLAEYHVPVNADIGDIDVVFVDEQDDIVNALGSKGVGEIGIVGVAAAVANAIYHATGKRVRDFPVTLDKLLPGPT0007260_909DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_DEGRADATION,PGPT0007260-yagR-K11177NANA
D1-35_04765810hypothetical proteinATGGTACTTTCCGACATCAGCCTCATGACCCACAGCACTCCTACCCTGAATAAAGCAACCGGAACCAGAGCCACCGTTAGTAATAACCAAGATATCGTTCAAGACCCTGTAAATACCGGAGGAGATGACAACAGCACAGTTTCTGCGCTCTCACGTCAATTGAGCGAGGCCGCTTCCCGCGCAGAGGCACGTGATGCCAGCTTAAGCCGAAAAGAGCTTTCCGATCTGGCCTGGAGTATCAAGGAAAAAATAGGCGGGGATTATATAGCAACCAAAGCCAGATATGACGCGGAAGTTCCCCAGACCGATGACCCCGAACTCTTGGCACGAGCTAAACAGGCCACTGAGTACATCAATGGAGTCGTCACAGACGGCCGCGGCAAAAATCCTTTCTCCGGGATGCCAAGAGATCAGCTGAATTTGATCATTTATGATGACAGCGGCGCTTTTACCGTCAATGAGCGGCGCTCTGCGCAACATGAAGTAGCCCAACAGGAACAGGCATGGCGGCAGGTAGTCATCGCCAAGGGGACGATGGAATACAGCAACACAGGAAAAATGACCGATTTCTACAAGAACGTGCTCGAGCATTACCGTGGCTTGCCCGCCATTGAACAATCGCAGTATCCAGCCGATTACGAAGCCAGGCTGCTACTTGATATAGCAATGGACCTCAGCACCGAAGTACCTGATATCGATAGTGAAAGCTTCTGGAACGAACTGTTCAAGGGCGATACCTCACTGGCCGGCAAGCCCACCGCCTCCACCGAGGAGAAAGTAGCGGTCAACACCGATATAAAGGAGCCTTGAMVLSDISLMTHSTPTLNKATGTRATVSNNQDIVQDPVNTGGDDNSTVSALSRQLSEAASRAEARDASLSRKELSDLAWSIKEKIGGDYIATKARYDAEVPQTDDPELLARAKQATEYINGVVTDGRGKNPFSGMPRDQLNLIIYDDSGAFTVNERRSAQHEVAQQEQAWRQVVIAKGTMEYSNTGKMTDFYKNVLEHYRGLPAIEQSQYPADYEARLLLDIAMDLSTEVPDIDSESFWNELFKGDTSLAGKPTASTEEKVAVNTDIKEPNANANANANA
D1-35_047661239entSCOG0477Enterobactin exporter EntSATGCCCAGCCAAGCGCCCTTGCTGCTCCGTCACCACCGACCTTTCATCGCCTTCTGGCTGGCCCGGATCTTCACGGCGAGCGGCTTCCAGATGCTCACCGTGGCCATTGGCTGGAACCTCTATCAACTGACCGGCAACGTCTTGGACCTGGGTCTCGTAGGGCTGGTCGAGTTCGCACCGCGGGTGCTGTTCATGCTGCACACCGGGCATGTGGCCGATCGGTATGACCGGCGCAAGGTCGCGGCCATCTGCCAATCCCTGCAGGCGACGATTGCCGTGGCGCTGGTGATCGGCAGCGCCACCGATAATGTTACGCGCGAGATGATCTTCATCCTGGCGTTCCTGCTGGGCGCGGCCCGCTCCTTCGAAATGCCGACGACCCAGGCGCTGCTGCCGAGCATCGTGCCTTCCGCGCTGTTTCCCCGCGCCGTGGCCGCTGCGCAGTCGGCACAGCAATCGGCGACCATCGTCGCACCCGCGCTGGGCGGTTTGCTGTACGCCTTCGGCAGCGTCTGGGTCTACGGGCCAACCGTGCTGCTCTACCTCATCGCCTGCGGCCTGATGCTCAACCTGCCCGCGCGGCAGACGCCGTTGAACAAAGGCAAGGCGACCCTGGATTCGCTGCTGGCGGGTATCCGCTTCATCCGCAGCCGGCAGGATATTCTCGGGGCGATTTCCCTGGACCTGTTCGCGGTATTGCTGGGGGGCGCAACGGCGCTGCTGCCGGTATTCGCCAAGGACATCCTGCTCACCGGCCCCTGGGGCCTGGGCCTGTTGCGCTCGGCACCGGCGGTCGGTGCCTTGCTGATGTCGTTGTGGCTGGCGCGGTTTGCCGTCGAGCGCAAGGTTGGCCGGGTGATGTTCACGGCGGTGGGCGTGTTCGGCGTCGCCACGATCGCCTTCGGCCTCTCCACTTCGTTCTGGTTTTCCTTGGCGGTACTGGTGGTGCTGGGCGCGGCGGACATGATCAGCATGGTCATCCGCGCCTCTTTCGTGCAATTGGAAACGCCGGACGAAATGCGTGGCCGGGTCAGCGCCGTGAACGGCCTGTTCATCGGCGCCTCGAACCAGCTGGGCGAATTCGAATCCGGCCTGACCGCCCACTGGTTCGGCACGGTGCCAGCGGTGGTCATGGGCGGCGTCGGCACGCTGCTGGTGACCGGGGCCTGGATCAAACTGTTCCCGACCCTGGCCAACCGCGACCGCATGCACGAACCGGTTGCAGAAACGAAAGCCTGAMPSQAPLLLRHHRPFIAFWLARIFTASGFQMLTVAIGWNLYQLTGNVLDLGLVGLVEFAPRVLFMLHTGHVADRYDRRKVAAICQSLQATIAVALVIGSATDNVTREMIFILAFLLGAARSFEMPTTQALLPSIVPSALFPRAVAAAQSAQQSATIVAPALGGLLYAFGSVWVYGPTVLLYLIACGLMLNLPARQTPLNKGKATLDSLLAGIRFIRSRQDILGAISLDLFAVLLGGATALLPVFAKDILLTGPWGLGLLRSAPAVGALLMSLWLARFAVERKVGRVMFTAVGVFGVATIAFGLSTSFWFSLAVLVVLGAADMISMVIRASFVQLETPDEMRGRVSAVNGLFIGASNQLGEFESGLTAHWFGTVPAVVMGGVGTLLVTGAWIKLFPTLANRDRMHEPVAETKAPGPT0003290_47DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-ENTEROBACTIN|ENTEROCHELIN_TRANSPORT,PGPT0003290-entS|ybdA|cbsS-K08225NANA
D1-35_047671440cydACOG1271Cytochrome bd-I ubiquinol oxidase subunit 1ATGTTCGGTTTGGAGGCGCTCGATCTCGCCCGAATCCAGTTCGCATTCACCATCTCGTTCCACATCCTGTTCCCGGCCATCACCATTGGCCTGGCGAGTTACCTGGCGGTGCTCGAAGGGCTGTGGCTGAAGACGCGTGACGACACCTACCGCGACCTGTACCACTTCTGGTCGAAGATATTTGCCGTCAACTTCGGCATGGGCGTGGTGTCCGGGCTGGTCATGGCCTATCAGTTCGGCACCAACTGGAGCCGCTTTTCGGACTTTGCCGGTGCGGTCACCGGGCCGTTGCTGACCTATGAGGTGCTCACCGCATTCTTCCTCGAGGCGGGTTTCCTCGGGGTCATGTTGTTCGGCTGGAACCGCGTCGGCAGGGGACTGCACTTCTTCTCCACGGCCATGGTGGCGATCGGCACCCTGATCTCGACTTTCTGGATTCTTTCCTCCAACAGCTGGATGCAGACTCCGCAGGGCTACGAAATCATCGATGGCCGGGTCATCCCGGTGGACTGGCTGGCGGTGGTGTTCAATCCCTCGTTCCCTTACCGCCTGTTGCACATGTCGGTTGCGGCATTTGTTGCCACGGCGTTCTTCGTCGGGTCGTCGGCGGCCTGGCATTTGCTCCGTGGTCGCGACAATCCGGCCATTCGCCGGATGCTGTCCATGGCGATGTGGATGGCCCTGCTGGTGGCGCCGGTGCAAGCGGTCATCGGCGACTTCCACGGGCTCAACACGCTCAAGCACCAGCCGGCAAAAATCGCCGCGATCGAGGGGCACTGGGAAAACGTCGGCGACGAGCCCACGCCCCTGATTCTGTTCGGTTGGCCGGACATGGAAGCCGAGGAAACCAGATTTGCCGTGGAGATCCCTTATCTGGGCAGCCTGATCCTGACGCACTCGCTGACCGATCAAGTGCCGGCCCTGAAGGAGTTTCCGCCGGAGGACCGGCCGAATTCGACCATCGTGTTCTGGTCGTTCCGGGTCATGGTGGGCCTGGGGCTGCTGATGATTTTCACCGGCCTGTGCAGCCTCTGGCTGCGGCGTGGTGAACGGCTCTACCAATCCCGGCCGTTTTTGCACCTGGTGCTGTGGATGGGACCGTCGGGCTTGATTGCGATTCTCGCGGGCTGGTTCACCACTGAAATCGGCCGCCAACCCTGGGTGGTCTACGGCCTGATGCGCACGGCGGATGCCTCGTCCGGCCACAGCTTTGCGCAAATGAGCTTCACCCTGATCATGTTCGTGGTGGTGTATTTCGCGCTGTTCGGTGCGGGCCTGAGCTACATGCTGCGCCTGGTGCGCAAGGGCCCAGTGGCTCACGAAGCCGAGCCGAGCGATGGCGGTCCGGGCCAGAAACGCACCCCGGCCCGTCCATTGTCGGCCGCCAACGAAGGCGACGACGAAGTGGACCACAACGACAGCTCGCACAAGGGGAATTGAMFGLEALDLARIQFAFTISFHILFPAITIGLASYLAVLEGLWLKTRDDTYRDLYHFWSKIFAVNFGMGVVSGLVMAYQFGTNWSRFSDFAGAVTGPLLTYEVLTAFFLEAGFLGVMLFGWNRVGRGLHFFSTAMVAIGTLISTFWILSSNSWMQTPQGYEIIDGRVIPVDWLAVVFNPSFPYRLLHMSVAAFVATAFFVGSSAAWHLLRGRDNPAIRRMLSMAMWMALLVAPVQAVIGDFHGLNTLKHQPAKIAAIEGHWENVGDEPTPLILFGWPDMEAEETRFAVEIPYLGSLILTHSLTDQVPALKEFPPEDRPNSTIVFWSFRVMVGLGLLMIFTGLCSLWLRRGERLYQSRPFLHLVLWMGPSGLIAILAGWFTTEIGRQPWVVYGLMRTADASSGHSFAQMSFTLIMFVVVYFALFGAGLSYMLRLVRKGPVAHEAEPSDGGPGQKRTPARPLSAANEGDDEVDHNDSSHKGNPGPT0026700_2373DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026700-cydA-K00425NANA
D1-35_047681008appBCOG1294Cytochrome bd-II ubiquinol oxidase subunit 2ATGGGTATTGATCTTCCGCTGATCTGGGCCGTGGTCATCATCTTCGGCATCATGATGTACGTGATCATGGACGGCTTCGACCTGGGGATCGGCATTCTTTTCCCCTTCGTCAAGGGCGAACGCGACCGCGACGTGATGATGAATACCGTCGCGCCAGTCTGGGACGGTAACGAAACCTGGCTGGTGCTGGGCGGCGCCGGGCTGTTCGGGGCGTTTCCACTGGCCTATTCGGTGGTGCTCTCGGCGCTGTACCTGCCGCTGATCCTGATGCTCGTCGGCCTGATCTTCCGGGGCGTGGCATTCGAGTTCCGCTTCAAGGCCAAGGCCGAGAAGCGGCATTTGTGGGACAAGGCGTTCATCGGTGGTTCGCTGACGGCGACCTTTTTCCAGGGCGTGGCGCTGGGGGCATTCATCGACGGTTTCGAGGTGGTCAATCGCCAGTTTGCCGGTGGCTCCCTGGATTGGTTCACGCCATTTACGGTGTTCTGCGGCCTGGCGTTGATCGCCGCCTACGCTTTGCTCGGCTGTACCTGGCTGATCATGAAGACCGAAGGCAAGCTGCAAGAGCAGATGCACGACCTGGCCAGACCACTGGCATTCGTGGTGCTCGCCGTGATCGGCATCGTCAGCATCTGGACGCCGCTGGCTCACGCCGACATCGCGGCACGCTGGTTCACCCTGCCGAACCTGTTCTGGTTCCTGCCGGTGCCGATCCTGGTGCTCGTCACCATGTACGGCTTGTTCCGCGCCGTGGCCCGCAACGCCAACTACACGCCGTTCATCCTGACGCTGGTGTTGATCTTTCTTGGCTACAGTGGCCTCGGCATCAGCTTGTGGCCAAACATCGTGCCGCCATCCATTTCGATCTGGGACGCCGCGTCACCGCCTCAGAGCCAGGGCTTCATGCTGGTCGGCACGCTGTTCATCATTCCGTTGATCCTGGTGTACACCTTCTGGAGCTACTACGTGTTCCGCGGCAAGGTCACCCATGACGATGGCTACCATTGAMGIDLPLIWAVVIIFGIMMYVIMDGFDLGIGILFPFVKGERDRDVMMNTVAPVWDGNETWLVLGGAGLFGAFPLAYSVVLSALYLPLILMLVGLIFRGVAFEFRFKAKAEKRHLWDKAFIGGSLTATFFQGVALGAFIDGFEVVNRQFAGGSLDWFTPFTVFCGLALIAAYALLGCTWLIMKTEGKLQEQMHDLARPLAFVVLAVIGIVSIWTPLAHADIAARWFTLPNLFWFLPVPILVLVTMYGLFRAVARNANYTPFILTLVLIFLGYSGLGISLWPNIVPPSISIWDAASPPQSQGFMLVGTLFIIPLILVYTFWSYYVFRGKVTHDDGYHPGPT0026705_4101DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0026705-cydB-K00426NANA
D1-35_04769165hypothetical proteinATGGCCAAGCCTGACTTGAAAGACATCGAAGCCGCTGAGAAAAAACCGTTGTGGCAGCGGCTCGGCTGGCTGGTGGCGATCTGGGCCGGGAGTGTGCTGGCGCTGTTCATCGTCGCCAGCCTGATGCGGATGTTCATGAACGCCGCCGGGCTGACGACTCATTGAMAKPDLKDIEAAEKKPLWQRLGWLVAIWAGSVLALFIVASLMRMFMNAAGLTTHNANANANANA
D1-35_047701125rlmGCOG2813Ribosomal RNA large subunit methyltransferase GATGCCCTTGCTAGACAGTCCCTTCGCCCAACTTGACCTGATCCGCCAACCCGAACAGCAGAACGAACCACTGCAGGCATTCGACGCAGCCGATGAATATCTGCTTGCGTACCTGGCCGAACAGCAGCCGGGAGTGGATATCCGGGTTCTGGTACTCAATGACGGCTTCGGGGCCCTGGCGGCGAGCTTGGCCGGCAAGGTGAAGGTCACCAGTAGCGGCGACTCGTTCCTTGCCCTACAGGCATTGGAGAAAAACCTGGCGCGCAACGGTTTGCCCTTCGATGCGGTACCGATCGTGCCCGCCAGCGAACCGCTGACAGGGCCGTTCGACCGTGTCCTGATCAAAGTACCCAAGACCCTGGCCCTGCTGGAAGAGCAATTGATCCGGCTGCAAGAGCAACTGGCTCCAGGCGCTCAGGTCATAGCCGCCGCGATGGTCAAGCATCTGCCACGGGCCGCTGGCGATCTGCTGGAGCGCTATATCGGCCCGGTACAGGCCTCGTTGGCGGTGAAGAAGGCCCGCCTGTTGATTGCCACGCCACAAACCAGGACCACCACCGCCTCTCCCTACCCCACTCGCTATTGGCTGGATGAGCCGAAAATCGAGTTACTCAATCACGCCAACGTATTCTGTCGCGAAGGGCTGGATATCGGCACGCGCGCCTTTTTGCCACACCTGCCAAAAAACCTCGGCACGGCGCGGGTGGCGGACCTGGGGTGCGGCAACGGTGTACTGGCTATCACCAGCGCCCTGCACAACCCGCAGGCCCAGTACACGTTGGTGGATGAGTCATATATGGCGGTCCAATCGGCCGCTGAAAACTGGCGAGCGGCCCTGGGCGAGCGTGAGGTGACCCTGCGGGCCGGCGATGGACTCGCCGGACAAGCGCCGCAATCTTTGGATGTGGTGCTGTGCAATCCACCCTTCCATCAGCAGCAAGTGGTCGGCGATTTCCTCGCCTGGCGGATGTTCCAGCAAGCCCGCGAGGCATTGGTGGTTGGCGGCGCGCTGTACATCGTCGGCAACCGGCACCTGGGCTACCACAGCAAGCTGGCTCGGTTGTTCCGGGGAGTCGAGCAGGTCGCCGCCACGCCAAAATTCGTGATTCTCAAGGCCCGCAAGTAGMPLLDSPFAQLDLIRQPEQQNEPLQAFDAADEYLLAYLAEQQPGVDIRVLVLNDGFGALAASLAGKVKVTSSGDSFLALQALEKNLARNGLPFDAVPIVPASEPLTGPFDRVLIKVPKTLALLEEQLIRLQEQLAPGAQVIAAAMVKHLPRAAGDLLERYIGPVQASLAVKKARLLIATPQTRTTTASPYPTRYWLDEPKIELLNHANVFCREGLDIGTRAFLPHLPKNLGTARVADLGCGNGVLAITSALHNPQAQYTLVDESYMAVQSAAENWRAALGEREVTLRAGDGLAGQAPQSLDVVLCNPPFHQQQVVGDFLAWRMFQQAREALVVGGALYIVGNRHLGYHSKLARLFRGVEQVAATPKFVILKARKNANANANANA
D1-35_04771714anoRTranscriptional activator protein AnoRATGGATGCATGGAAGGATTTACAACTAAGGAAATTGTCGTGCGAGCAGGACCTGCAAAAAGCCTATCGCCTCGTACAAAATTTCTTTAATTATCAAGGATTTGAATACTGCGCCTTCGCCGCCTACCCGACTTTTGCGGACAGACACAGGCATCGGATCAATATCAACAACTACCCTTATGGATGGAACAGGCTATACAAACAAAACGGTTATGCGGCGAACGACCCGATACTGGCACACTGCAATCAATCATCGCTGCCAATTCTCTGGAGCGAAGATATTTTTTGCGAGGTCCCCGAATTATGGCAAGCACTTGAACACCAAGGGCTAAGCCATGGCTGGACACAAGCCGTCCATGAGGAACGGGGCACCTATTACAGTCTGTTCAGTCTCGCCAGGATGCAACGCCCCATCGACCCCGAGGAGCATTATGGCAACCTGGGCTATGCCATTTTCGCCAGCCAACGGTTGCATGCGCTGGCAGGCCGGCGAATGTCCGACGCCGAGCCTTCGTCACAGACAGTCCATTTGTCGCCAAGGGAAATTGAAGTATTGAGGTGGTCCGCCGAAGGCAAGACGGCATCGGAAGTCGGCAGGATCCTCTGTCTTTCCGAGCGCACCGTGAATTTCCATGTCAACAGCTGCATGCGGAAACTGAACGTGGCCAACAAAATCTCGGCGGTTGCCAAGGCGGCCCATATCCATGTGATCTGAMDAWKDLQLRKLSCEQDLQKAYRLVQNFFNYQGFEYCAFAAYPTFADRHRHRININNYPYGWNRLYKQNGYAANDPILAHCNQSSLPILWSEDIFCEVPELWQALEHQGLSHGWTQAVHEERGTYYSLFSLARMQRPIDPEEHYGNLGYAIFASQRLHALAGRRMSDAEPSSQTVHLSPREIEVLRWSAEGKTASEVGRILCLSERTVNFHVNSCMRKLNVANKISAVAKAAHIHVINANANANANA
D1-35_04772777fpr_2COG1018Flavodoxin/ferredoxin--NADP reductaseATGACCGACAGCGCAGAAAAGTTTACCCGCCAAACCCTGATCGATGTGCAGCCCCTGACGCCTCACCTGTTTACCCTGCGTACCACCCGGGATCGCGGCTTTCGTTTCCGCGCCGGTCAGTTTGCCCGGCTGGGGGTGGTCAAGGCGGACGGCACGGCCGTCTGGCGGGCTTATTCCATGGTTTCTTCGCCGTTCGACGAGTTTCTCGAGTTTTTTTCCATCGTCGTGCCGGACGGTGAATTCACCAGCGAGCTCAGCCGCTTGAAGCCGGGTGACAGCTTGTTGGTCGAGCGCCAGGCCTTTGGTTACCTGACGCTGGACCGTTTCGTTGACGGTCGCGATTTGTGGCTGTTGTCCACCGGGACAGGGGTCGCCCCGTTTCTTTCTATCCTGCAGGACTTCGAGGTCTGGGAAAAATTCGAGCGGATCATCCTCGTTTACAGCGTCCGCGAGTCACCGGAATTGGCCTACCAGGCCTTGATCGACGCGTTGCCCCGGCGAGACTACCTCGTCGAATACGCCCATAAGTTTCGCTTCATTGCGACGGTTACCCGTGAACAACACCCTGGCGCCCTCAACGGACGCATCACCACACTGATCGAAAATGGCGAGCTGGAACAGGCCGCCGGTGTCGCGCTGACGCCAGAGCATTCGCGGGTCATGTTGTGCGGCAACCCGCAGATGATTGACGACACGCGCAAGTTGCTCAAGGCCAGGGGCTTGCAACTGAGCCTCACGCGGCGGCCCGGCCAGGTGGCGGTGGAAAATTACTGGTGAMTDSAEKFTRQTLIDVQPLTPHLFTLRTTRDRGFRFRAGQFARLGVVKADGTAVWRAYSMVSSPFDEFLEFFSIVVPDGEFTSELSRLKPGDSLLVERQAFGYLTLDRFVDGRDLWLLSTGTGVAPFLSILQDFEVWEKFERIILVYSVRESPELAYQALIDALPRRDYLVEYAHKFRFIATVTREQHPGALNGRITTLIENGELEQAAGVALTPEHSRVMLCGNPQMIDDTRKLLKARGLQLSLTRRPGQVAVENYWPGPT0013215_2840DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0013215-fpr-K00528NANA
D1-35_04773414mscLCOG1970Large-conductance mechanosensitive channelATGGGCGTGCTAAGCGAGTTCAAGGCCTTCGCGGTCAAAGGCAATGTCGTCGACATGGCCGTTGGGATCATCATTGGTGCTGCTTTTGGCAAAATCGTTTCGTCATTCGTTGGCGACGTGGTCATGCCGCCGCTCGGCCTGCTGATCGGCGGAGTGGATTTCAGTGACCTGGCGATCACGCTCAAGGCGGCCGAAGGAAATACGCCAGCGGTGGTGCTCGCCTATGGCAAATTCATCCAGACGACAGTGGATTTCATCATCGTGGCTTTCGCCATTTTCATGGGCGTCAAAGCCATCAACCGCCTGAAGCGCGAGGAGGCCGTCGCTCCGAGCGCGCCGCCTGTTCCTACCAAGGAAGAACAATTGCTCAGCGAGATCCGCGACCTGCTCAAGGCTCAGAACGAGAGGCCTTGAMGVLSEFKAFAVKGNVVDMAVGIIIGAAFGKIVSSFVGDVVMPPLGLLIGGVDFSDLAITLKAAEGNTPAVVLAYGKFIQTTVDFIIVAFAIFMGVKAINRLKREEAVAPSAPPVPTKEEQLLSEIRDLLKAQNERPPGPT0013771_1887DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-MECHANOSENSITIVE_ION_CHANNEL,PGPT0013771-mscL-K03282NANA
D1-35_047741542katBCOG0753CatalaseATGAACACTTCCCTTGGCCTTGGTGCTTTTTCCAACCGCCATACCCTTGTTGTGCTGACCGCCAGCCTGTTTTCCCTGTCCGTCAATGCCGCCACCCTGACCCGGGATAATGGCGCGGCAGTGGGCGACAACCAGAACTCCCAGACCGCCGGCCCCAACGGCCCGACCCTGCTGCAGGATGTGCAACTGATCCAGAAGCTCCAGCGTTTTGACCGTGAACGGATCCCCGAGCGTGTGGTGCATGCCCGTGGTACCGGTGCGCATGGCGAGTTTACGGTATCCAATGACCTGAGCGACCTGACCAAGGCCAAGGTATTCGCCGCCGGACAGGTCACGCCGGTGTTCGTCCGTTTTTCCGCCGTGGTGCATGGCAATCATTCGCCTGAGACGCTGCGTGATCCTCGAGGCTTCGCCACCAAGTTCTACACGGCCGATGGTAACTGGGACCTGGTCGGGAATAATTTCCCGACGTTCTTCATCCGTGATGCAATCAAGTTTCCCGACATGGTCCATGCGTTCAAGCCCGACCCGCGGACCAACCTGGACGATGATTCGCGTCGTTTCGATTTCTTTTCCCACGTACCGGAAGCCACCCGCACGCTGACCGAGCTGTATTCCAACTCCGGCACCCCGGCCAGTTATCGCGAAATGGACGGCAATGGCGTGCACGCTTACAAACTGATCAACGCCAAGGGCGATATCAGTTACGTGAAGTTTCATTGGAAAAGTTTGCAGGGGCTGAAAAACCTCGATCCAAAAGAAGTAGTGAAAGTGCAAGGGCAGGATTACAGCCATATGACGAATGATTTGGTCAGTCATATCAACAAGGGTGACTTTCCAAAGTGGGATCTGTACGTTCAGGTGCTCAAGCCGCAAGAGTTGTCGAAGTTCGATTTCGATCCGCTGGACGCCACCAAGATCTGGCCGGATGTGCCTGAGCGAAAAGTTGGGCAGATGGTGTTGAATCGTAATCCGGCGAATGTTTTCCAGGAAACCGAACAAGTCGCGATGGCCCCGGCCAATCTGGTCCCGGGTATCGAGCCTTCCGAGGATCGCCTGTTGCAGGGTCGGGTCTTCTCTTATGCCGATACGCAAATGTACCGGGTCGGGCCGAACGCGTTGCAGTTGCCCATCAACGCGCCCAAGGTCGCGGTAAACAATGGCAACCAGGACGGTGCGATGAATTTCGGCAGCACCAGCACTGGCGTGAACTACCAGCCGAGTCGCTTGATGCCGCGCGAAGAGCAACCTGCGGCGCGCTATAGCCAGGCAGCGCTGACCGGCAGCACCCAGCAAGCGAAAATCCAGCGCGAGCAGAACTTCAAGCAGGCGGGTGATCTGTACCGCTCGTTCAATCAGAAGGAGCGCAATGACTTGATCGAAAGCTTCGGTGGGTCATTGGCAACGACTGATGATGAGAGCAAGCACATCATCCTGTCGTATCTCTACAAGGCTGACCCCGAATACGGCACCGGCGTGGCTCGTGTCGCCAAAGGCGACCTGGCGCGGGTCAAGGCGCTGGCCGAGAAGCTGAGCGACTGAMNTSLGLGAFSNRHTLVVLTASLFSLSVNAATLTRDNGAAVGDNQNSQTAGPNGPTLLQDVQLIQKLQRFDRERIPERVVHARGTGAHGEFTVSNDLSDLTKAKVFAAGQVTPVFVRFSAVVHGNHSPETLRDPRGFATKFYTADGNWDLVGNNFPTFFIRDAIKFPDMVHAFKPDPRTNLDDDSRRFDFFSHVPEATRTLTELYSNSGTPASYREMDGNGVHAYKLINAKGDISYVKFHWKSLQGLKNLDPKEVVKVQGQDYSHMTNDLVSHINKGDFPKWDLYVQVLKPQELSKFDFDPLDATKIWPDVPERKVGQMVLNRNPANVFQETEQVAMAPANLVPGIEPSEDRLLQGRVFSYADTQMYRVGPNALQLPINAPKVAVNNGNQDGAMNFGSTSTGVNYQPSRLMPREEQPAARYSQAALTGSTQQAKIQREQNFKQAGDLYRSFNQKERNDLIESFGGSLATTDDESKHIILSYLYKADPEYGTGVARVAKGDLARVKALAEKLSDPGPT0014380_2512DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-OXIDOREDUCTASES,PGPT0014380-katE|CAT|catB|srpA-K03781NANA
D1-35_04775549hypothetical proteinATGCGAAATGTTCTTCTATCGGTACTCGTGGCCTGGTCGGTGGGCGTGTTGGCCGAGCAACCTGTACCCGCCGATCCGGCTGCGGTGCGGGAGCAACTGCAAGACTATTATTTCGACGCTGCACGCCGGGGCGATGTGCCGATGCTCGATACCTTCATCAAGGCCGGTTATTCGCTCGACACCCGGGATGAAAAGGGCTACACGGCGCTGATCCTGGCGGCTTATCACGGCCACGCGCCCGCGGTAGAGCGGCTGCTGGCCGCTGGCGCCGATGCTTGCGCCCAGGACAAACGCGGCAATACTGCGTTGATGGGCGCCATCTTCAAGGGTGAAGTCCAGATCGCCCGCCGTTTGTTGTCCACCGAGTGCAGTCCGGACCAACGCAACGGTGCCGGACAGACCGCTGCGATGTATGCGGGCCTGTTCAAGCGTGACGAATTGCTCGATGCCTTGAAGGCCAGGGGCGCCGACCTGGAGGCCAGGGATCCGCTGGGCAATAGCGCGGCGGATCTGGCGAAGGGTGAAATCAGAATGCCGGCCCCGCAGTAAMRNVLLSVLVAWSVGVLAEQPVPADPAAVREQLQDYYFDAARRGDVPMLDTFIKAGYSLDTRDEKGYTALILAAYHGHAPAVERLLAAGADACAQDKRGNTALMGAIFKGEVQIARRLLSTECSPDQRNGAGQTAAMYAGLFKRDELLDALKARGADLEARDPLGNSAADLAKGEIRMPAPQNANANANANA
D1-35_047761368radACOG1066DNA repair protein RadAATGGCCAAGGCAAAGCGCATGTACGGCTGCACCGAGTGCGGCTCGACCTTTCCCAAATGGGCTGGCCAATGCAGTGAGTGCGGGGCCTGGAATACCCTGACCGAAACCATGGTGGAAAGCGGCGGGGCGGCGGCACCCACCGGGCGCACGGGTTGGGCTGGGCAACAAGCCCAGATCAAGACCCTGGCCGAGGTCAGCGTCGAAGAAATCCCGCGCTTTTCCACGGCGTCTGGCGAACTGGATCGCGTGCTGGGCGGCGGTCTGGTGGATGGTTCGGTGGTACTGATCGGCGGAGATCCGGGCATCGGCAAATCCACCATCCTGCTGCAAACCCTGTGCAATCTCGCCACTCGCATGCCGGCGCTGTATGTCACTGGCGAAGAATCCCAGCAACAGGTCGCAATGCGCGCACGACGGCTGGGGTTGCCCCAGGATCAGTTGCGCGTCATGACCGAGACTTGCATCGAAACCATCATCGCCACGGCGCGCCTGGAAAAACCCAAGGTGATGGTGATCGACTCGATCCAGACGATTTTCACCGAACAGCTGCAATCGGCACCGGGTGGCGTGTCCCAGGTGCGCGAAAGCGCGGCGTTGCTGGTGCGTTATGCCAAGCAGAGCGGCACGGCGATCTTCCTGGTCGGCCACGTCACCAAGGAGGGCGCGTTGGCGGGCCCTCGGGTGCTGGAACACATGGTCGATACGGTGTTGTATTTTGAAGGCGAATCGGACGGTCGCCTGCGTTTGTTGCGAGCGGTGAAGAACCGTTTTGGCGCCGTCAACGAATTGGGCGTGTTCGGCATGACTGACCGGGGCCTGAAGGAAGTCTCCAACCCATCGGCGATTTTTCTCACGCGTGCCCAGGAAGAAGTCCCGGGTAGCGTGGTCATGGCGACGTGGGAAGGCACTCGGCCGATGCTGGTGGAAGTCCAGGCGCTGGTGGATGACAGCCACCTGGCGAACCCGCGCCGGGTCACCCTGGGCCTGGATCAGAACCGGCTCGCCATGCTGTTGGCTGTCTTGCACCGACACGGCGGCATTCCTACCCACGATCAGGATGTGTTCCTCAACGTGGTGGGCGGGGTGAAGGTATTGGAGACCGCCTCCGACCTGGCGTTGATGGCGGCCGTGATGTCCAGTCTGCGCAATCGGCCGCTGCCGCACGATTTGCTGGTGTTTGGTGAGGTCGGGCTTTCGGGTGAAGTGCGGCCGGTGCCCAGCGGGCAGGAGCGGCTCAAGGAAGCGGCCAAACATGGTTTCAAGCGCGCCATCGTGCCCAAGGGGAACGCGCCGAAGGAAGCGCCGGCGGGGTTGCAGATCATTGCGGTGACGCGGTTGGAGCAGGCGTTGGATGCTTTGTTTGAATAGMAKAKRMYGCTECGSTFPKWAGQCSECGAWNTLTETMVESGGAAAPTGRTGWAGQQAQIKTLAEVSVEEIPRFSTASGELDRVLGGGLVDGSVVLIGGDPGIGKSTILLQTLCNLATRMPALYVTGEESQQQVAMRARRLGLPQDQLRVMTETCIETIIATARLEKPKVMVIDSIQTIFTEQLQSAPGGVSQVRESAALLVRYAKQSGTAIFLVGHVTKEGALAGPRVLEHMVDTVLYFEGESDGRLRLLRAVKNRFGAVNELGVFGMTDRGLKEVSNPSAIFLTRAQEEVPGSVVMATWEGTRPMLVEVQALVDDSHLANPRRVTLGLDQNRLAMLLAVLHRHGGIPTHDQDVFLNVVGGVKVLETASDLALMAAVMSSLRNRPLPHDLLVFGEVGLSGEVRPVPSGQERLKEAAKHGFKRAIVPKGNAPKEAPAGLQIIAVTRLEQALDALFEPGPT0014905_3237DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014905-radA-K04485NANA
D1-35_04777357Cyclic diguanosine monophosphate-binding proteinATGAGCGAACGTCGCCGCTTCGTACGAATTGAGTTCCATGCCGAGACCGAACTGAGCCAAGGGCCGTTCATCTGGCCGGTAAAGCTGCTGGATCTATCCCTCAAGGGGCTGCTGATCGAAAAGCCCGAACCCTGGATTGGTGACCCCGAAAAGTCCTTCATGGCTGATATTCATTTGAGCTCTGAGGCCGAGGTCAAGATGGAAGTCCGGCTGACTCACGACGACCATGGTCACTTGGGCTTTGTCTGTGAACACATCGACCTGGATTCCGTTGCGCATCTACGTCGGCTGGTAGAACTGAATCTGGCCGACCATGACGAGCTGGAGCGGGAACTGGCGGCGCTGATCCATATCTGAMSERRRFVRIEFHAETELSQGPFIWPVKLLDLSLKGLLIEKPEPWIGDPEKSFMADIHLSSEAEVKMEVRLTHDDHGHLGFVCEHIDLDSVAHLRRLVELNLADHDELERELAALIHINANANANANA
D1-35_04778972dmlR_22HTH-type transcriptional regulator DmlRATGCTATTCTTCGCAAAATCTGCGAAGAATAGCGCTGCCGTGGGGCTTATGAACACGAGTCGTGATCAGTTTCCATTACCGGAGGACCTGAAGGTCTTTCTCACCGTCATTCGAAAAAACGGCTTTGCCAGTGCCGCGCAAGCGCTGGGTTATTCACCGGCCTATATCAGCAAGCGCATTTCGGTACTGGAAGCGACGCTCGCCACGCGCCTGCTGCACCGTACTACCCGGCGTATCGCCCTGACCGACGATGGCGAGCGTGTGCGAGTCTGGGCCGAAAAGCTGTTGGGGGATTTCGAGGAATTTGTCGGTGAAATCGCCCAGGCGCGACATCAGCCCAGCGGCGCTCTGCACATCTGCAGCAGTTTCGGTTTTGGTCGCAACCACGTCGCACCGGCCATCGGCAAACTGTCGCAGGCGTACCCCCGGCTCGACATCCGCCTGGACGTATTCGACCGCGTCGTCGATATCGTCGGCGAAGGCTTCGACCTGGAGATCCGCGTCGGTGATGACCTGCCGGACCAACACCTGGGGCGCAAGCTGGCGAGCAATCGGCGGATACTCTGCGCAAGTCCGGAGTATCTGCAACGGCGGGGCATCCCGCATTCGCTGGAAGAGCTTGACGCTCATGATTGCCTGGTGCTCAAAGAGCGCAATAACGCGTTCGGCCTATGGACGCTGACCCGGGATGGCGAGGAGGCCACGGTACGTGTCGGCGGCCCGTTATCATCCAACAGTGGCGAGATCGTTCTGGAGTGGGCGTTGAGCGGCGGCGGGATCCTGCTGCGCTCGATGTGGGACGTCAAGCCGCTGCTGGAGCAAGGGCGGCTGGTCCAGGTGCTGCCAGACTATTCGCAAAGCGCCAACGTCTGGGCCGTATACCCGACCCGGCTCAGCCAGTCGGCCAAATTGCGGGTATGTGTCGAGTTTCTCGAGGAGTGCTTCCGGGATTTGTCGGTTGGTCAGACGTAGMLFFAKSAKNSAAVGLMNTSRDQFPLPEDLKVFLTVIRKNGFASAAQALGYSPAYISKRISVLEATLATRLLHRTTRRIALTDDGERVRVWAEKLLGDFEEFVGEIAQARHQPSGALHICSSFGFGRNHVAPAIGKLSQAYPRLDIRLDVFDRVVDIVGEGFDLEIRVGDDLPDQHLGRKLASNRRILCASPEYLQRRGIPHSLEELDAHDCLVLKERNNAFGLWTLTRDGEEATVRVGGPLSSNSGEIVLEWALSGGGILLRSMWDVKPLLEQGRLVQVLPDYSQSANVWAVYPTRLSQSAKLRVCVEFLEECFRDLSVGQTNANANANANA
D1-35_047791605treACOG1626Periplasmic trehalaseATGCGACCACTGTATTTCCCCAGCCTGTCTCTCGCTGCCGTGCTGTGCACGGCCTGTTCAAGCCAACCGCCCGCCATGTGGGGTTACGCCGACGCCCGGGACCGGGCCAATCAGCCGCCCGACCAGATGTACCCCGAGCTGTTCGAAGCCGTGCAGCGTCAGCAGATGTTCACCGACCAGAAGCATTTCGTCGATGCGTTGCCCAAGCGTGACCCGGCGAAGATCCGTGCCGATTACCTGGCCCGTCGGGAGGGCGCCGATTTCGATCTCGATGCCTTCATAAAAGACAACTTCATCGAATCCGGCCAGGCTGAAAGTCCTGCCCCCGAACCGGGTGCGCCGATCAAGGAGCACATCGATAATCTCTGGCCCGTGCTCAGCCGAACCTACACCCAGGTGCCACCCTACAGCAGCCTGCTGCCGTTGCCGCAACCGTATGTAGTCCCGGGCGGACGTTTCCGCGAAATGTATTACTGGGACTCGTATTTCACCATGCTCGGTCTGGAGCAAAGCGGCGACAAGACGCAGGTTCGCCAGATGACCGACAATTTTGCCTACATGATCGATACCTACGGCCATATCCCCAATGGCAACCGCAGCTACTACCTGAGCCGCTCGCAGCCACCGTTCTTTGCTTACATGGTCGAGTTGCAGGCGCACATCGAAGGCGAGCAGGCCTACGGGCGCTACCTTCCCCAGTTGCAAAAGGAATATGCCTACTGGATGGACGGCGCGCAGGCCCTCAAGGCCGGTGAGGCGGTGCAGCATGTCGTCAAGCTCGCCGATGGCAGTGTGCTCAACCGTTATTGGGATGCCAGCGCTACGCCTCGGCAGGAGTCATGGCTGCAAGACACGAAGACCGCCGAACAGGCGCCACAGCGACCCAAGGAGGAGGTCTGGCGCGACTTGCGCGCCGGGGCCGAAAGCGGCTGGGATTTCAGCTCCCGCTGGCTGGGGGACGGCAAGAACCTGGCGACCATCCGAACCACGTCGATTGTGCCGGTGGACCTGAACAGCCTGATGTTCCACCTGGAGCGCACCATTGCCAAGGCCTGTGAGACGGTGGCGAATATGCCTTGCGTCCAGGCCTATGGGCAACGTGCCGAGCAACGCCAGCGCGCCATCGAGACGCACTTGTGGAACGCCGAGGGTGGTTATTACGTGGACTACGACTGGCAGCAGAACCGGCAACGGCCGGGATTGACTGCCGCAACGCTGTTCCCGCTCTTCACCGGCCTGGCCTCTGCCGAACGCGCCGATCGTGCCGCCGATGCGGTGCGTCGAGGTTTGTTGCGTCCGGGCGGCATCGCCACCACCCAGGTCAATAACGGCCAGCAGTGGGACGAGCCCAATGGCTGGGCGCCGTTGCAATGGGTGGCGGTCGAAGGATTGGACCGCTACGGACAAACGGAACTGGCCCGGGAAATAGGCAGCCGCTTTCTGAAGCAGGTCCAAGACCTTTATCTCAAAGAGGACAAACTGGTCGAGAAGTACGACATGTCCGGACAGGGCGACGGCGGTGGGGGCGGCGAATACGAACTGCAGGACGGCTTCGGCTGGACGAACGGGGTAACACTGAAGCTGATGAATAAATACGGCGGTTGAMRPLYFPSLSLAAVLCTACSSQPPAMWGYADARDRANQPPDQMYPELFEAVQRQQMFTDQKHFVDALPKRDPAKIRADYLARREGADFDLDAFIKDNFIESGQAESPAPEPGAPIKEHIDNLWPVLSRTYTQVPPYSSLLPLPQPYVVPGGRFREMYYWDSYFTMLGLEQSGDKTQVRQMTDNFAYMIDTYGHIPNGNRSYYLSRSQPPFFAYMVELQAHIEGEQAYGRYLPQLQKEYAYWMDGAQALKAGEAVQHVVKLADGSVLNRYWDASATPRQESWLQDTKTAEQAPQRPKEEVWRDLRAGAESGWDFSSRWLGDGKNLATIRTTSIVPVDLNSLMFHLERTIAKACETVANMPCVQAYGQRAEQRQRAIETHLWNAEGGYYVDYDWQQNRQRPGLTAATLFPLFTGLASAERADRAADAVRRGLLRPGGIATTQVNNGQQWDEPNGWAPLQWVAVEGLDRYGQTELAREIGSRFLKQVQDLYLKEDKLVEKYDMSGQGDGGGGGEYELQDGFGWTNGVTLKLMNKYGGPGPT0019170_1303DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-GLYCOSIDASES|GLYCOSYLHYDROLASESCE-EPS-TREHALASE,PGPT0019170-treA|treF-K01194NANA
D1-35_047801302hcaB_53-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenaseATGATTGCCCCAGCAACCGGCATGCGGCACGGTGAGCGTTACGCCGTTGAAAGCATCGAGCGCGCGCCTCACTTCCCAGGTTTCTTCCTTGATGGAAAGTATTACCTGGGCCCTGAATTGAATACGGCGGTGGGCTGGCTGGAAGGCCAGACATTCCTCTACGACCAGCTCGACCCCGAGGGCGAGCCGGTGTACCCCGGCAGAGTCGCCGGCACCATTGAGGATCTGACGCTGGTAATGGCCGATGGCGTGCGCCTGAAGTTGACCCCCTTGCAACCCGCCATCGACCGGCCCACGGGCCCCGCCGATACCGCTGCTCAGACCCAATCGCATCCTTTGGCGGAAAAACTCGTGGTCATCACCGGGGCGTCCAGCGGAATCGGTCGTGCCACCGCCCTGGCGTTTGCCCGGCAACGGGCGCGCCTGGTGCTGGCGGCACGTGACCGCGAGGCGCTCGCCGAAGTTGTCGACGAATGCCAGGCCCAGGGCGCCGCCGCATTGGCGGTGTGCACCGACGTCACCCGCAGCGAACAGATGCAGGCGCTAGCCGCCGAGGCCGCCGCGTTTGGCGACGGGCGCATCGATATCTGGATCAACAATGCCGGCGTCGGCGCGGTGGGCAGTTTCGAGCAAACGCCGCTTGAGGTACATGAACAGGTTCTGCAAACCGACCTGCTCGGCTACCTGCGGGGCGCCTATGTGGCATGGCCCTACTTCAAGGCGCAGAAGCGTGGAATCCTGATCAACACCCTGTCGCTGGGCAGTTGGGTCGCCCAACCCTATGCCGCGGCCTACTCGGCAAGCAAATACGGCTTGCGCGGCTTGTCCGAAGCCTTGCGCGGTGAACTCGGCGAATACCGGGACATCCACGTCTGCGACATCTACCCCGCCGTCATCGACACGCCGGGCTTTCGCGACGGCGCCAATTACACCGGCCATGCGCTCAAGCCACCGCCTCCTGTCTACGACCCGCAGCGGGTTGCCGAAGCGATGGTCAGCTGTGCGCTCAACCCCAAGCCCAGCACCACCGTGGGCAGCGCGGCGGTACTGGCGAGGGTCGCGCATTTCCTGGTGCCCGGTTTCCCGCAACTGTCCGGCTGGTTGACGCGTCTGGGCCTGAACCGCAGCCCGGCGTTGGCGCCATCGTCGGGCAACCTGTTCAACCCGCCCAGCGGTCCGCGTAAAGTCGAGGGCGGTTGGCGCAAGCCTGCGCGACGACCAGCGCCCCTGCTGGTGGCGGGCGCGGCGCTGTTGCTTGGCGGGTGCCTGGTGGCGTTGGGTCGGGAGCGTGGCCGCAGGTGAMIAPATGMRHGERYAVESIERAPHFPGFFLDGKYYLGPELNTAVGWLEGQTFLYDQLDPEGEPVYPGRVAGTIEDLTLVMADGVRLKLTPLQPAIDRPTGPADTAAQTQSHPLAEKLVVITGASSGIGRATALAFARQRARLVLAARDREALAEVVDECQAQGAAALAVCTDVTRSEQMQALAAEAAAFGDGRIDIWINNAGVGAVGSFEQTPLEVHEQVLQTDLLGYLRGAYVAWPYFKAQKRGILINTLSLGSWVAQPYAAAYSASKYGLRGLSEALRGELGEYRDIHVCDIYPAVIDTPGFRDGANYTGHALKPPPPVYDPQRVAEAMVSCALNPKPSTTVGSAAVLARVAHFLVPGFPQLSGWLTRLGLNRSPALAPSSGNLFNPPSGPRKVEGGWRKPARRPAPLLVAGAALLLGGCLVALGRERGRRNANANANANA
D1-35_047812001norR_4Anaerobic nitric oxide reductase transcription regulator NorRATGAATGCACAACCCATGGCCCTGAGCGTTGAAGACCGGGACTATCTGACCGCCCTCGGCCCCGCGTCGTTGAATGGAGGATCAAACGCTGCGCTGGAAGAGGCCTGGCGAGCCTGCCTGAACGCCAGCACCGAGCGTCCCGCCGGTGTCAGGCAAGTGATCTGGAATTCCTGGCGGCGCAGCGTCGATGCCGGGCTGGATCCGGAGGACGGCGAGTACCGTTTTGTCGCGCCCGCCGAGCTGACCGCCACGCTGACGGCGAATCGCCTGTTGATCGCCGCCGCCGCACAGGTCATGCGCGGCTTGCTCGCCTACAACCCCAACGGGCATATCAACCTGACCGATGCCGAAGGCACGACCCTGTATTTCTGCGGGCTGGACCTCACGCCCATCGGCAGCCGATTGCTCGAATCGGTGCAGGGCACCAATTGCACCGGGCTGGCGCTGGTCGAGGACCGGCTGGTGTATGTGCTGGCCGAGGAAAATTTCGGCATAGGCCTGCGCCAGCGGCGTATGCATTGCGCCGCCGCGCCTATCCGCGATGCTCATGGCCGGACCCTGGCGATGCTGACCCTGACCGCCGAGCCCGGCTGGTTTCACTTCCATACCCTGGGCACCGTCCAGGCCGCGGCTGAAGCGGTCTCCCGGCAAATGGCGCTGCAGGCACTGCTGGAAGAACTACAGACGGTCCTTGAAGTGCTCAACGAGGGCTTGGTGGTACTCGATGAAACGGGTTGCATCAAGGCCCTCAACCATTACGCCCGGCAATTGTTCCGCGTCGACCGTGACTGGTTGGGCAAGCCGTTCCAGAGCCTGGGGCAGACCGAGCAGAGCGGCGAGATCCTGCGAGGGGATGGCGAAGGGGCAAGGGACCTGGATTGCACCTTCGAGCTGCATGACCACAGTCATCTGGCCTGCCTGGTATCTGTCTGCCCTCTGGAGCAGGGCGGTCGTATCGTTTCGCTGCGCGAGAATCGGCGCATCCGTGAGATTACCCGGCGCCTCATCGGCACCCAGGCCAGCTACACCTTCGAGACCATCCAGGGTCGTTCACGGGCGATTCAGGACGCCTTGCAACTGGGCCGGATCGCCAGTCGCAGTGACTCGACCACGCTGATTCTCGGTGAGAGTGGCACCGGAAAGGAGCTGTTTGCCCAGGCCATCCATAACGCCAGCGACCGCAGTGGCGGTCCGTTCGTGGCGGTCAATTGCGGGGCCATTCCCCGGGATCTGGTGCAGAGCGAACTGTTCGGCCATGTCGAAGGTGCGTTCACCGGATCGGCTCGCGGTGGCTCGGCGGGCAGATTCGAACTGGCCGATGGCGGGACGATCTTCCTCGACGAGATCGGTGACATGGCCTTTGATGCGCAGGTCAGCCTGCTGCGCGTCCTGCAGGAAGGCGAAGTGACGCGGGTGGGGGCGAAAAAATCGCTGCGGGTCAATGTGCGCATCATTGCCGCCACTCACCGCAACCTGAGCCAGGCCGTCGCCGACGGGGCCTTTCGCGAGGACCTTTATTACCGCCTCAATGTGCTGAGCCTGACGGTGCCGCCGCTGCGGATGCGGCGGGAGGACGTGCCCTTGCTGGCGCGGCATTTCCTCGCGCGGTGTGCCCGGTCGCTGCGAAAGCCGATACGTGACCTGTCACCACAGGCGCTGGAGGTTCTCGATGCCTATCATTGGCCGGGGAACGTCCGTGAGCTGGAAAACGTCATTGAGCGCGCGACCAACCTGGCAACCACCGAACTCATCCAGGCGAATGACCTGGCCCTGGAAATCAGGCAGGGCGGGCGGCCCTCGGCCCGCCAAGCTACTCCTGAACCCAGGGCGGCCCTCGATCTGGGCACGCACGAAATGAACGCAATCATCGCCGCCCTGCTGGACACGCGCGGCAATATCCGTCTGGCCGCCCAACGGTTGAACGTGTCCCGGGGCGGCCTGTACAACAAGATGAGCCGCTTCGGGCTCAAGGTCGAAGCGTTCCGTTCGGCGCCGGACTGAMNAQPMALSVEDRDYLTALGPASLNGGSNAALEEAWRACLNASTERPAGVRQVIWNSWRRSVDAGLDPEDGEYRFVAPAELTATLTANRLLIAAAAQVMRGLLAYNPNGHINLTDAEGTTLYFCGLDLTPIGSRLLESVQGTNCTGLALVEDRLVYVLAEENFGIGLRQRRMHCAAAPIRDAHGRTLAMLTLTAEPGWFHFHTLGTVQAAAEAVSRQMALQALLEELQTVLEVLNEGLVVLDETGCIKALNHYARQLFRVDRDWLGKPFQSLGQTEQSGEILRGDGEGARDLDCTFELHDHSHLACLVSVCPLEQGGRIVSLRENRRIREITRRLIGTQASYTFETIQGRSRAIQDALQLGRIASRSDSTTLILGESGTGKELFAQAIHNASDRSGGPFVAVNCGAIPRDLVQSELFGHVEGAFTGSARGGSAGRFELADGGTIFLDEIGDMAFDAQVSLLRVLQEGEVTRVGAKKSLRVNVRIIAATHRNLSQAVADGAFREDLYYRLNVLSLTVPPLRMRREDVPLLARHFLARCARSLRKPIRDLSPQALEVLDAYHWPGNVRELENVIERATNLATTELIQANDLALEIRQGGRPSARQATPEPRAALDLGTHEMNAIIAALLDTRGNIRLAAQRLNVSRGGLYNKMSRFGLKVEAFRSAPDPGPT0001030_416DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0001030-acoR-K21405NANA
D1-35_047821023iolG_3COG0673Myo-inositol 2-dehydrogenaseATGAGCACCTCGAAAACCATTCGCCTGGGTCTTATCGGCGCTGGCCGCATGGGCAGTTTTCACGGCCTGACCGCCGCCCGGCACATCCCCGGCGCCTGCCTCGCCGCCATCGCCGACCCTACTCCCGGCCAGGCCGCGCGCCTGGCGGCGGAGCTGGATGTGCGCAAGACCTACGCCGACCCGCAGCAACTGCTGGACGACCCGGACATCGACGCCGTGCTGATCGCCGCCCCGGCACGCAGCCATGCCGAGCTGGTGATCAGCGCGGCCCGGGCCGGCAAAGGGGTGTTCTGTGAAAAACCCATGGCGATCACGCTGGACGAAGCCGACCGCGCCATCGCCGCCGCTGCCGATGCCCGGGTGACGCTCCAGGTCGGTTTCAACCGGCGCTTCGCCAGGAGTTTCCGCACAGCTCATCTGGACGTGGTCGCCGGCCGGATCGGCACACCCCAACTGCTGCGCTCGCTGACCCGCGACCCGGCGCTGAACAACCCCGCCGCCTCGCCGCAATGGGTGATCTTCCTGGAAACGCTGATCCATGACTTCGATACCCTGCGCTACCTGAATCCGGGCGCCGAGGCGGTCGAGGTATTCGTGATGGCCGATGCCTTGATTGCACCCGCCTACAGGGAGAACGGTTTCCTCGACACGGCAGTGGTCACGATCCGTTTCGACAATGGCGCCATTGCCACCGCGGAGGCCAACTTCCAGGCCGTCTATGGCTACGACGTCCGGGGCGAAGTGTTCGGCAGTGCCGGCATGCTGACCATGGGCAGCGTCAACGACTCCGACTTGTTGCGCTATCTGGCCAATGGGGTCCAGGCCGATACCCAACGCCTGGACACCGACTTGCTGCGTGATGCGTACGTGGCCGAGCTGAATCACTTCGTCAGTTGCGTGCGCAGCGGCGAGAAACCGCTGGCCAGCGGTGAAAATGCCCGGGCCGCCCTGGCCATTGCACGGGCTTGCATCGAGTCCTTCCAGCAGGGTAAAGCGGTACGTGTGCAAGGAGCCTCGTCATGAMSTSKTIRLGLIGAGRMGSFHGLTAARHIPGACLAAIADPTPGQAARLAAELDVRKTYADPQQLLDDPDIDAVLIAAPARSHAELVISAARAGKGVFCEKPMAITLDEADRAIAAAADARVTLQVGFNRRFARSFRTAHLDVVAGRIGTPQLLRSLTRDPALNNPAASPQWVIFLETLIHDFDTLRYLNPGAEAVEVFVMADALIAPAYRENGFLDTAVVTIRFDNGAIATAEANFQAVYGYDVRGEVFGSAGMLTMGSVNDSDLLRYLANGVQADTQRLDTDLLRDAYVAELNHFVSCVRSGEKPLASGENARAALAIARACIESFQQGKAVRVQGASSNANANANANA
D1-35_04783792otnICOG36222-oxo-tetronate isomeraseATGAGTTTCATCCCCTTCAAACTGGCGGTCAGCGCCGAGATGGTCTTTCTTGACCTGCCCTTTGTCGAACGGGTCAAACGCATCCACGCGCAGGGTTTCAGCGTCGAGATATGGAACTGGACGAGCAAGGACATCCAGGCCCTCGCGGCGACTGGCGCGGATTTCACCTCGATGACCGGCTACATCTCGGGCAACCTGACCGATCCCGAGGCCGTCCGGCAACTGCTCGACAGCGCCGGGGAATCCTTGGCCGTCGCAGCCCGGTTGAACTGCCCGAGCCTGAACCTGCACGGCACCGGCCTGGGTGATCAAGGCTTGCCGGTCAAACCGGTAGCCCGAACAACCGGACGCATGTGGTTGAGCGCCTGCAAGACCCTGGAAAAGATCGCCCGCCTGGGCGAAGACGCCGGCCGGGTATTCCTGCTGGAAAATCTCAACACCGAAGTCGACCATCCCGGCACACCGTTCGCCCGCGCCGACGATACCCTGGCGCTGATCGAAGCCGTGGGCAGCCCGCACCTGAAAATGAACCTGGACCTTTATCACGCGCAAATCGGCGAAGGAAACCTGATCGAGCTGATCCAGCGCGCCGGTGACGCCATCGGCGAAATCCAGGTCGCCGATGTTCCGGGTCGCATGGAGCCCGGCACCGGTGAAATTCACTATCCGGCCATTGCCCGGGCGCTGTTCGGCATGGGATACAGCGGTGTCGTCGGCCTTGAAGGCTGGGCCAGCGGTGACAGCGAACGGGCGCTTGAGCGCTTCAGGCAGGCCTTCACGCTGGACGGGTGAMSFIPFKLAVSAEMVFLDLPFVERVKRIHAQGFSVEIWNWTSKDIQALAATGADFTSMTGYISGNLTDPEAVRQLLDSAGESLAVAARLNCPSLNLHGTGLGDQGLPVKPVARTTGRMWLSACKTLEKIARLGEDAGRVFLLENLNTEVDHPGTPFARADDTLALIEAVGSPHLKMNLDLYHAQIGEGNLIELIQRAGDAIGEIQVADVPGRMEPGTGEIHYPAIARALFGMGYSGVVGLEGWASGDSERALERFRQAFTLDGNANANANANA
D1-35_04784927thpACOG1879D-threitol-binding proteinATGCGTCGTTGCACACTGCTTTTCGCCACATTGCTCGTGCTGTTCAGCCAATGGGCCGCCGCCGATTATCGCATCGGCGTCAGCATCGCCAGGGTTGACGACAACTTCATGACCTACGTGCGTAACGGCCTGGACGAGGCCGCCAGAAAAGAAAACGTCCAGATCCAGTTCGAAGATGCCCAGGGCGACGTGGTCCGCCAGCTCAATCAGGTCCAGGGCTTCATCAACCAGAAAGTCGATGCGGTCATTGTCCTGCCGGTAGACACTTCCGCCACCGCCAACATCACCCGCGCCGCGGTCGAAGCCAAGACGCCGCTGGTCTACGTCAACCGCCACCCGGACGAGCGCACCTTGCCCAAAGGCGTAGTTACGGTGGCGTCCAACGACATCGAGGCCGGCCAACTGCAGATGCGCTACCTGGCGGAAAAACTCGGCGGCAAGGGCAATCTCGCGATCATCATGGGCGACCTCGCGCAAAACGCCACCCATGACCGCACCGAAGGGGTCAAGCAGGTGCTCAAGGACTTCCCCCAGATCAGGGTCGTCGAGCAGCAGAGCGCCGAATGGCAGCGCAGCAAAGGGATGGATCTGACCAGCAACTGGCTGCTCGCCGGCAGCCGTTTCGATGCCATCGTCGCCAACAATGACGAGATGGCCATCGGTGCGGCCATGGCCTTGCAGCAAGCCGGCAAAGCCAAGGGCGAGATTTCGATTGTCGGCATCGACGGTTTGCCTGATGGCCTGGCGGCGATCAAACGCGGGATGCTGGTCGCGTCGGTATTCCAGGACCCCAAGGCCCAGGCGACCAGCGCGGTGCAGGCAGCGCTCAAGATGATCAAGGGCGAGCCGGTTGAACCGGAAATCTGGGTACCGTTCCAGTTGATCAAGCCTGAGCAACTGGCGGTGTTTGAGCAGCGCTACAAGTAGMRRCTLLFATLLVLFSQWAAADYRIGVSIARVDDNFMTYVRNGLDEAARKENVQIQFEDAQGDVVRQLNQVQGFINQKVDAVIVLPVDTSATANITRAAVEAKTPLVYVNRHPDERTLPKGVVTVASNDIEAGQLQMRYLAEKLGGKGNLAIIMGDLAQNATHDRTEGVKQVLKDFPQIRVVEQQSAEWQRSKGMDLTSNWLLAGSRFDAIVANNDEMAIGAAMALQQAGKAKGEISIVGIDGLPDGLAAIKRGMLVASVFQDPKAQATSAVQAALKMIKGEPVEPEIWVPFQLIKPEQLAVFEQRYKPGPT0016780_473DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISMCE-BACTERIAL_FITNESS-RHIZOPINE_TRANSPORT,PGPT0016780-rbsB|mocB|mglB-K17213NANA
D1-35_047851431dat_2COG0160Diaminobutyrate--2-oxoglutarate aminotransferaseATGGAAAGTGTCCAGCCCCGTTCATCCTCCAGCGCAACCTTCACGCTGGAGCAGTTTCGCCAGCAAGCGCCGCGTGAACTGAACACCAACCCGTATCTGCAACGCCAGGCGGCCCGGGAGTCGAACGCCCGTTCTTACCCGCGGCGCATTCCGTTGGCCTTGCAAGAAGCCCATGGTCTTTATGTGCGCGATACCCAAGGCCAATTGTTCATGGACTGCCTCGCGGGTGCGGGGACATTGGCGCTGGGCCATAACCATCCGGTGGCCATCGCGGCCATGCGCCATACACTCGATTCCGGCCTGCCCTTGCACACCCTGGACCTGACGACACCGGTCAAGGATCGTTTCGTCGAGGACCTGTTCAACGCCTTGCCGGAAAACTTCGCCCGTCACGCGCGCATCCAGTTCTGCGGACCGACCGGTGCCGACGGCATCGAGGCGGCCCTGAAGCTGGCGCGGATCGCCACCGGGCGCAAACCGATCCTGACGTTCTCCGGCGGTTACCACGGCATGACCCTGGGGACACTGAGCCTGATGGGCAACCTGGGGCCGAAACAGGGGCTGGGCTCGTTGATGGCGGACGTGCAGTTCCTGCCGTACCCCTATGACTACCGCTGTCCGTTCGGCATCGGCGGCGAAGCCGGCATCGATGCCGGGCTGCACTTTATCGAACAACTGTTGAGCGACCCGGAGTCGGGTGTGCTGCCACCGGCAGCGGTGGTCGTGGAAGTCGTGCAGGGCGAGGGTGGGGTGATCCCGGCACCGGTCCGTTGGCTCCAGGGCTTGCGCCAATTGACCCGCAAACACGGCGTGGCACTGATCATCGATGAAGTACAGACCGGCCTGGGGCGTACCGGCAAGCTGTTCGCTTTCCAGCACGCCGACATCGAGCCGGACATTCTGGTCTTGTCCAAAGCCATCGGCGGCGGTCTGCCGCTGGCGGTGATGGTGTATCGCGAAGAACTGGACACCTGGAAGCCCGGTGCCCATGCCGGCACGTTCCGTGGCAACCAGATGGCGATGGCAGCGGGGGGCGCGACGTTGCGTCATATCATCAGCGAACACCTGCCAGCGCACGCTGACATCATGGGGCAACGCCTGATGGAGCAGCTGCGTCAGTTGCAGGGCGATTACCCTTGCCTGGGCCAGGTGCGTGGTCGTGGCTTGATGGTGGGCGTAGAGGTTGTCAGCGATACGCCGAGCGATGCCCGTGTGCCCGCCGCGGATACGGCACTGGCCCAGGCCATCCAGCGCCAGTGCCTGCGCTTGGGCGTCATCCTGGAGTTGGGCGGGCGCCATGGCGCCGTTGTGCGATTCCTGCCACCGCTGATCATCCAGGCTGAGGAAATCGATGTGCTGGTCGAGCTGTTCCGGGTGGCCTTGAACAATGCCATCGCCGAGACCAAGGGCAGGGCGTTGCACATCGCCTGAMESVQPRSSSSATFTLEQFRQQAPRELNTNPYLQRQAARESNARSYPRRIPLALQEAHGLYVRDTQGQLFMDCLAGAGTLALGHNHPVAIAAMRHTLDSGLPLHTLDLTTPVKDRFVEDLFNALPENFARHARIQFCGPTGADGIEAALKLARIATGRKPILTFSGGYHGMTLGTLSLMGNLGPKQGLGSLMADVQFLPYPYDYRCPFGIGGEAGIDAGLHFIEQLLSDPESGVLPPAAVVVEVVQGEGGVIPAPVRWLQGLRQLTRKHGVALIIDEVQTGLGRTGKLFAFQHADIEPDILVLSKAIGGGLPLAVMVYREELDTWKPGAHAGTFRGNQMAMAAGGATLRHIISEHLPAHADIMGQRLMEQLRQLQGDYPCLGQVRGRGLMVGVEVVSDTPSDARVPAADTALAQAIQRQCLRLGVILELGGRHGAVVRFLPPLIIQAEEIDVLVELFRVALNNAIAETKGRALHIAPGPT0014050_138DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014050-ectB|dat-K00836NANA
D1-35_04786216mbtH_2COG3251Protein MbtHATGAGTTTGGATAGCCCGGATACGCGGTTTCTGGTTGTCGTCAACGAAGAGGAGCAGTACTCGATCTGGCCGGACTACCGCAGCGTGCCCGACGGCTGGCGCACCGTGGACATGCAGGGCAGCAAGGAAGAGTGCCTGGCTTACATCGAGAAAGTCTGGACCGACATGCGCCCGCTGAGCCTGCGTCAGGCCATGCAGGTACAAGGACAGGGCTGAMSLDSPDTRFLVVVNEEEQYSIWPDYRSVPDGWRTVDMQGSKEECLAYIEKVWTDMRPLSLRQAMQVQGQGPGPT0003370_780DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBACTERICIDAL_COMPOUNDS|ANTIBIOTICSBACTERICIDAL-NOCARDICIN_A-D_METABOLISM,PGPT0003370-mbtH|nocI-K05375NANA
D1-35_04787738hypothetical proteinATGATTCCCAGCCTTGCTCCGCTGTTCATCGGGCCGCTCGCAGCCTTTGAAGACAAGCTGCAACTGCGCAGCCAACCGCGCTCCGATCTGCCGGCCGCCGTGTTCTTCCAGCATGAGACGTTCAGCGCATTCGTCGAAGATCTGCTGGCACGCTACAAGACTGATGAGCGTCTGGCCCTGGTGTCGCTGTGGTCCAAATGGTATTTCAGTACCTTCCTGGCGCCAGTGATGGCCGCCAACCTGCTCCAGCAACGGGAGCTGCCGCTCGCCCTGGCTGATGTCGGCTTGAAACTCGGCGATGACGCCAGGCCCCAGGCCCTGCATTTGCGCGACGATGGCCAGATACTCCCCCGGTGCACGGCCTTCGAGCGGTTCCATACGCTCGTCGAATGCCATCTGGAACCGGTCATCGAGATTCTTGCCAGTGTCAGCCGGGCATCGCCCCGGTTGTTCTGGAGCAACGCCGCCAACACCTTCGAATTCGTCACCACGCGGATCGAACTGCACCCCCTGGCTGATGCCTCCAGCACCCTGCCGGCCAGGGAGATCCTCACTGCCCGGCTGCGCCCCGACGGCCGGCGCAACCCTCTGTTCGCGCCCGTACGCTACCAAGACATTGGCGAGGACGAGCCGCAGCGCCTGAGGCGCATCTGCTGCATTCGCTACCGCCTCCCCGGCGTTGGCTATTGCAGCAGCTGCCCCCTCGATGAATCCAGACGCCAGGTTCAAGGCGCCTGAMIPSLAPLFIGPLAAFEDKLQLRSQPRSDLPAAVFFQHETFSAFVEDLLARYKTDERLALVSLWSKWYFSTFLAPVMAANLLQQRELPLALADVGLKLGDDARPQALHLRDDGQILPRCTAFERFHTLVECHLEPVIEILASVSRASPRLFWSNAANTFEFVTTRIELHPLADASSTLPAREILTARLRPDGRRNPLFAPVRYQDIGEDEPQRLRRICCIRYRLPGVGYCSSCPLDESRRQVQGAPGPT0003315_461DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FERRICHROME|FERRIOXAMINE_METABOLISM,PGPT0003315-fhuF-K13255NANA
D1-35_047881644yojI_2COG4615ABC transporter ATP-binding/permease protein YojIATGATGTTATTGAAAGAACTGCTGCATGACGCGCGATGGCGCATCCTCCTTGCGGTGCTGTGCAGTGCCTTGAGCGCGGCCACCAGTATCGGCCTGATCGGCTACATCAACCGTTGCCTGGAACAAGGCCTCGATGACCTCGGTCGGGGCTTGCTGCTGTTCGGTGGGCTGTTGGTGCTGTTGTTCATCAGCGGAGTCATCTCGCAATGGCTGCTGGTGCAGATCGGTCATCGCCTGGTCTACCAGCTGCGCCTGCGGCTGGTGGGCAAGGTCCTGGGCACCGCGCTCGAACGCGTCGAACGGCTGGGCAGCCCACGTATCTACAACGCGCTGACCAAGGATGTGACCACCGTCGCCACAGCGTTCAAGCAACTGCCGATCTCCTTGTACAACGGTTTGCTGCTGTTGGCGGGGCTGGCCTACATGGGCTGGTTGAGCTTGCCGTTCTTTTGCCTGACGCTGGCAGTGATCGCCGCTGGCGTTGGTCTCGATGTGTTGCTGGGGCGCAAGGTCAAGACCTTGATGCAGGCTGTCCGGCAACAGGACGACCAATTGACCGAGCAGTTCGAAGCCACGATCCAGGGGCGCTGCGAGTTGGGCCTGAGCCGCGAGCGCCGGCATCTGCTTTATCAACACAAGCTGGAACCCATTGCGCGCGCCTCGCTGGACGCCTCGGTGCGCGCCGACACCCTCTGGGCGGTGAACCTCAATTGGACGACACTGCTGGTGTTCATGTTGATCGGCACCCTCTTTTTCCTCGGCCAGGGGCTGGGCTTGCTGGACCAGCAGGTGGTGGTCGGCTACGTGTTGGCGATCATGTTCCTGCGCACGCCCATCTCGATGATCCTCGACGCCATTCCCGCAGTGATCCGCGGTCATGTCGCGTTGCAAGCCATCGACGCGCTGGCGCTGGGCGAGACGGTGCAATTCAAGACCCCGGCGCAAGCGGCTCAGCCGTTTCGCGAACTGCGCCTGGCGGACGTGCATTACCGTTATGCCGGCAAGAACGAGGAGTTTGCATTTGAACTGGGTCCGATCGACCTGACGATTCGTCGTGGCGAGCTGATTTTCATCGTCGGTGGCAATGGCAGCGGCAAGTCGACCCTGGCCAAGCTGCTGACCGGCCTCTACGTGCCCGCTTCCGGGGAGGTGTCGCTCAATGGAGTGGTACTCGATGCCAGTACCAGTGAGTGGCACCGGGAGCATTTCGCCGCGATCTTCGCCGACTTCTATCTGTTTGCCGATGTGCTGGGCGAGGCGGGTGAACATGACGGGCTCGAAGCCCGGGTGGACCATTATCTGGAGCGCCTGGGGCTGGCCCACAAGGTCGAATTCGCCGCCGGGCGCCTGTCTACCACTGCCTTGTCCCAGGGCCAGCGCAAACGCCTCGCGTTGCTGCTACTGATGATGGAAGGCCGGGAAGTGTTCCTGCTGGATGAGTGGGCGGCGGACCAGGATCCGGTCTTCCGCCATGTGTTCTACAACGAGTTGCTGCCCGAGCTGAAGGCCGCCGGCAAGACCGTCATCGCGATCACCCATGATGATCGTTATTTCGATGTGGCGGACCGGGTCTATCGCCTCGACTACGGCCACCTCGTCGATTACGACCGGGCCACGGAGAACCCCTTTCAGCTGGTGAAATGAMMLLKELLHDARWRILLAVLCSALSAATSIGLIGYINRCLEQGLDDLGRGLLLFGGLLVLLFISGVISQWLLVQIGHRLVYQLRLRLVGKVLGTALERVERLGSPRIYNALTKDVTTVATAFKQLPISLYNGLLLLAGLAYMGWLSLPFFCLTLAVIAAGVGLDVLLGRKVKTLMQAVRQQDDQLTEQFEATIQGRCELGLSRERRHLLYQHKLEPIARASLDASVRADTLWAVNLNWTTLLVFMLIGTLFFLGQGLGLLDQQVVVGYVLAIMFLRTPISMILDAIPAVIRGHVALQAIDALALGETVQFKTPAQAAQPFRELRLADVHYRYAGKNEEFAFELGPIDLTIRRGELIFIVGGNGSGKSTLAKLLTGLYVPASGEVSLNGVVLDASTSEWHREHFAAIFADFYLFADVLGEAGEHDGLEARVDHYLERLGLAHKVEFAAGRLSTTALSQGQRKRLALLLLMMEGREVFLLDEWAADQDPVFRHVFYNELLPELKAAGKTVIAITHDDRYFDVADRVYRLDYGHLVDYDRATENPFQLVKPGPT0029175_235DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029175-yojI-K06159NANA
D1-35_047893783dltA_2D-alanine--D-alanyl carrier protein ligaseATGATGGATCTTGGACTGACGCTTTCACCGCAACAGAAACAACTGGCCCAGGCCAATCCGCAAGCCTGGCGCTGGGTCCGCATGCGCTTGGCGGGCGTGCCCGAGGGCATCGTCGAGCAACGCTTGCGCGACGCCCTGGCGCAGCATCAGGCGTTGCGCCTGCGTTACGAGCGCCCACTGGGCGCCACCGGCCTGCGCCAGCGGGTTATCGAACCTGATGCACTGCGGCTGGACTGGCGCCAGGGGCGGGCAGCCGACGGTCACGATGGACAGTCGTGGCTGGAGGCGGCCCGGCGTCGTTGCGATGCCGAACAACCCGACATTCTCGCCTGGCTGCTCGACGATCTGTTGCTGTTGGCAGTCCCGGTTTACTCACTGGACCAGCGCAGCCTGATCGGCTTGCAGGAACACTTGCTCGGGCGTGCCACAGCGCTTGACGACGAGCCCATGCAGTACGCCGACTATGTCGAGTGGATCAACGGCCTGCAACTGGATGAAGACGCCGAGCAGGGCGCGCAGTTCTGGCGCAACCTGGCCTTGCAGGACATTCCCGGCATGCGCCTGGTCGAGCGCTATGGCATCGCCAGCGGACGTCACGCGGTCGTCCGCCAGGAACTTGAGCAGCGCTTGCCGACGATGCTCACGGCACTGGCCGATCGTGAAGGCGTGGCCGTCGAGCAGTGGGTGCTGGCCGCCTGGGGGTCATTGCTCGGCAGGCTCAACGGGCAGCAACAGGGGCAGTTGGGGTTGCAACACGATCCTCGCGACAACTACGAGGAATTGTCCGGCGCGTATGGGCTGTTCGAGCAGACTTTACCGATGGTCTTGCAAGTGTCCGAACACAGCACGCTGACCAACCTGGCCCGGCAACTGGCCCGGCAATTGGAGAGCGCCGTGGACTGGCAGGAATATGTCGGCCAGGCACAGTTGTTGCCCGAATGGCGGGCCAGCTTCCAGGCCGGCCTGCGGGTCTCGCCCGTGCCGCAACTGGACATGTCGCACTGGCTGTCTTTCGACACACCGGTCGAACTGCAACTGCAATTGACGCTCGATGCCCAGGGCCACGGCGAGCTGGCGTTGGCCTACGACCTCGGCCTGTATCGCGAGGGGCAGATGCAGGCGCTGCTCAAGCGTTTTGCCCATTGGGTTGGCCAGCTGGTGCAATCGCCCGACGGGCTCATCGCTGACATTGACGCGCGCCTGCCTGAAGAATGGCTGGCCTCGGCGCAGACTGCTGCCCTTGGACCGGACCTCGATATCATCGCGACCTTGCGCCGCCATGCCCAGGCACAACCGTCGCGTCCGGCGCTGCGGTATGCCGAGCAGGTATTTTCCTACGCTGACCTGGATGCCCTGAGTGATCGTGTCGCCGGCAGCCTGAACGAGGCTGGCGTGGGCCGCGAGCAGGTCGTTGGGCTGTATCTGCCGCGTGGCGCGCAGATGCTGATCGCGATGCTGGCCTGCTTCAAGGTGGGGGCCGCCTATCTGCCATTGGACCCACAGCAGCCACCGCTGCGTCTGGCCGGCATACTCGACGACGCCCAACCGGCGCTGTTGCTGCACCTGGAGGGGCTGTTGCCCGAGACATCGGTGCGGACCCTGTGCTGGTCGCAGGCGAGCAACGGGCCGGCGTTCGCCGCGCCAGTCTCCGGCACAGCGCAGGACCTGGCCTACGTGCTCTATACCTCGGGCACCAGCGGCAAGCCCAAGGGTGTGCAGATTGAACAAGGGCAATTGCGTCACTACGCCACCCAGGTGACCCGCGCGCTGCAATTGCCCGAGGGCGGGCATTACGGGCTGGTGTCCTCGTTGCTCGCAGACCTGGGCAATACCGTGCTGTTCCCGGCGTGGCTGCAGGGCGGCTGCGTGCATGTCCTGGCGCAGACGACCGTGACCGATGCGCGGGCGTTTGCCGATGAGCTTCGGCGCTACCCACTGGACGTGCTCAAGATCGTACCTTCGCACCTCGAAGCGCTGATGGGCGAGCAGGCCGCCGACGTCCTTCCACGCCAGGTCCTGGTGCTGGGCGGAGAGCCGATCGGCGAGGCGCTGTTGACCCGCCTGGCGCAGGCCGGACCGACCTGCCGTGTTTACAATCACTATGGTCCGACCGAGACCACGGTAGGGGTGTTGTGGCGGGCGATCGATCTGGAGCAGGGGGTGAGTGGCTGCGCATTGGACCAGGTGTTGGGTGCCAACCGTATCCACCTGCTCGACGAGCGGCAGCGGCCGGTACCGTCAGGCCAGGCCGGCGAGTTGTGCATCAGCGGCGCCAGCGTTGGTCGGGGTTACGTCGGCAATGTCGGCGGCAACGCCTTTGCTGTCGAGCCTGCCAGTGGTCATCGTCTATACCGTACGGGCGACCTGGCCATGCGCCAGGCCGATGGGGCCGTGCGCATTCTGGGGCGCAACGATCAGCAGGTGAAAATCCGTGGGTTTCGCCTTGAGTTGGCCGAGGTCGAGCAGGCAATGCTGGCCCAGCCAGGCATCTCGCAGGCTGCCGTGCTGCTGGACGGCGAAGGTGACCACGCCCGATTGCTGGCCTTCGTGGTCACGGAGGAGGCGTATTCGCAAGGAACGGATCAGTTGCGCGCCAGCCTGGCCCGCCAGTTGCCGGACTACATGCTGCCCAGCGCTGTCCTGGCGCTGAAGGCCATGCCGTTGAACAACAATGGCAAGCTCGATCGCAAGAACCTGCTCGAACGCGCCCGGCAGCGTTTGCACAATACCCGCGTGGCACCGGTCGGCGAGCTGGAGGCGACGACCCTCGCCATCTGGTGCGAAGTATTGGGAGTCGAGGACCTTGGCGTCACCGACAATTTCTTCAATGTCGGTGGGCATTCGCTGGCCGCGATCAAGGTGGTGTCGCTGATTCGTGAACGGTTGGGCCTCGACCTGCCGACCAACCTGCTGTTCGAACGCCACACCGTGCGTGACCTCGTCCAAGGCCTGGGCGAGATCGACAGTGGTCCGTGGAAGGTCCTGAACACTGCCGATCCGCAAGCCCCGGCGCTGTTGCTGGTGCATGGGGCGCAAGGGCATCTGCAGGCCTACCAGCCGCTGGTGGACAACCTGCGCGACGGCGTCGCGGTGTTTGGCCTCGCCGCGCTTGAAAGCGGCTGGGCCGAGGGCGACATGGATGCACTGCTGCGCCGATACGTGGCGAGTATCCCGGCGCAGCTCAAAGAGCGTCCGCTGGTACTGTTGGGCTGGAGCCTGGCCGCGCGCCTGGCCATGTTGCTGGTGCCGCATCTGCAAGCAATTGGTTTCAGTGTCGCCGGGTTGGTGGTGCTGGATCACGATGCGCAGCGCAGCCTGGCCGGCGAGGGTGATGAAGCCGGCCAGTTGATTGCCGATTTCGCTTTTTATTGCCGCAGCCACGCCCAGCCGCTCGGCGAGTCGCTACGGGAGCGGTTGACGGGCCGGTTGGCCGGCCTTGACTATGCCGAGGGTGTCGCCCGGCTACTGGACGACGAACAAGTGCGCGCGCATCTGCAATGGGAGTCGGCCGACGCGGAATTACTGGCGTTGATGGCGCAATATCGCGCGATCAAGACCCGCTTGTACGAGCAGGCCTTGCCGACCGTCGATGTGCCGGTCTGGCTCTGGCGCGGCAATGCCCACGGCGATTTGCGCGCGCCGTGGCAACGCCATGCCTTGCAACCGGTCAGCCAGTGGACATTGGACGTGGGGCATCATGAAATGCTCGGCGAGCCGCGACTGGTCGAAAACCTGCTGCCTTTACTGTTGCAAAACTCTGCCAAGGTGGTGCCGGTCCCATGAMMDLGLTLSPQQKQLAQANPQAWRWVRMRLAGVPEGIVEQRLRDALAQHQALRLRYERPLGATGLRQRVIEPDALRLDWRQGRAADGHDGQSWLEAARRRCDAEQPDILAWLLDDLLLLAVPVYSLDQRSLIGLQEHLLGRATALDDEPMQYADYVEWINGLQLDEDAEQGAQFWRNLALQDIPGMRLVERYGIASGRHAVVRQELEQRLPTMLTALADREGVAVEQWVLAAWGSLLGRLNGQQQGQLGLQHDPRDNYEELSGAYGLFEQTLPMVLQVSEHSTLTNLARQLARQLESAVDWQEYVGQAQLLPEWRASFQAGLRVSPVPQLDMSHWLSFDTPVELQLQLTLDAQGHGELALAYDLGLYREGQMQALLKRFAHWVGQLVQSPDGLIADIDARLPEEWLASAQTAALGPDLDIIATLRRHAQAQPSRPALRYAEQVFSYADLDALSDRVAGSLNEAGVGREQVVGLYLPRGAQMLIAMLACFKVGAAYLPLDPQQPPLRLAGILDDAQPALLLHLEGLLPETSVRTLCWSQASNGPAFAAPVSGTAQDLAYVLYTSGTSGKPKGVQIEQGQLRHYATQVTRALQLPEGGHYGLVSSLLADLGNTVLFPAWLQGGCVHVLAQTTVTDARAFADELRRYPLDVLKIVPSHLEALMGEQAADVLPRQVLVLGGEPIGEALLTRLAQAGPTCRVYNHYGPTETTVGVLWRAIDLEQGVSGCALDQVLGANRIHLLDERQRPVPSGQAGELCISGASVGRGYVGNVGGNAFAVEPASGHRLYRTGDLAMRQADGAVRILGRNDQQVKIRGFRLELAEVEQAMLAQPGISQAAVLLDGEGDHARLLAFVVTEEAYSQGTDQLRASLARQLPDYMLPSAVLALKAMPLNNNGKLDRKNLLERARQRLHNTRVAPVGELEATTLAIWCEVLGVEDLGVTDNFFNVGGHSLAAIKVVSLIRERLGLDLPTNLLFERHTVRDLVQGLGEIDSGPWKVLNTADPQAPALLLVHGAQGHLQAYQPLVDNLRDGVAVFGLAALESGWAEGDMDALLRRYVASIPAQLKERPLVLLGWSLAARLAMLLVPHLQAIGFSVAGLVVLDHDAQRSLAGEGDEAGQLIADFAFYCRSHAQPLGESLRERLTGRLAGLDYAEGVARLLDDEQVRAHLQWESADAELLALMAQYRAIKTRLYEQALPTVDVPVWLWRGNAHGDLRAPWQRHALQPVSQWTLDVGHHEMLGEPRLVENLLPLLLQNSAKVVPVPNANANANANA
D1-35_047909033dltA_3D-alanine--D-alanyl carrier protein ligaseATGACGCAACAAGCTTTCCTGGAGATTGCGCAGCGGCTGGCATCCTTGCCCGCGGACAAGAAAAAAGTCTTTCGCCAGCGCCTGGCCGAGAAGGGCATCGACAGCTGGCGCCTGCCGATCGTCCCCGCCGTGCTCGGGGAAGGCGAGCCCAGGCCGCTGGCGCAGGCGCAGCGGCGCTTCCTGTCGGCTGAAGCCCTTAGCAGCCGGGCCCTTTACAATTTGTGCTCGGTGCTGCGATTCGACGGGCGCCTGGACGGCGAGCGTCTGCAGCAGGCGATGCAGCAAGTCGTCGATCGCCACCAGATCCTGCGCACTCGCTACACCACGGATGCCAACGGGCAATTGCAGCCTCATTGCGCGCCGCAACAGGTCCGCTTGCCAGCCGTCGAGCGGTTGACGTTGGCGGCGTCTGACCAGGCGCAATGGTGCGCCGATGAGTACGCCCGCCAACTTGCCGAACCGTTTGACCTGGCTCAGTCGATGCCTTGGCGCTGGCAAGCGTTCAGTGACGCCCAGGAGCAATCCACCTGGCTGTTTTTCACCATCCATCACGTCGCCTATGACGCCTGGTCGGCCCAGCAACTCACCCTTGAACTGGCCGAGGCCTATCGGGCGCTCGCTTCGAACCAGCCTGCCGCACAACCCGAGTTGAGCATTCAATACGCCGATTACGCCGCGTGGGAGCGCGAGTGGCTGGACAGCGACACTTGCCGGCAGCACATCGACTTCTGGCGCGACCAACTGGCGGACGCGCCGGCGCCCCTGGCGTTGCCACTGGACCGGCCGCGCCCTGCGGCCACCCAACGTCGCCAGAGTGGCGCGATCCTGGCCCGGGAGCTTTCGCCGCAACTGACCGCGACGGTGGAGGCGGCCATTCGCAACCAGGGGGTGACGCTGTATATCTACGGCCTGACGGCCTTTACCTGCCTGCTGTCGCGCTACAGCGGCGAGACGGATCTGTGCCTGGGCACGTCGGCGGCCCAACGTGACCGTCCGGAGCTGGTGCCGTTGATCGGCCCGTTGCTCAATACCCTGGTGATCCGCCAGCGTCTGCAGGACAACCCGGACTTCGGCAGCGCCTTGCTGCGGACCCGCGATACGGTCGCGGCCGCATTCGACCATCAGCAGTTGCCCTTCGAAAATATCCTTGAAAGCCTTGAGCGTCCGCGTTCGAGCCCGCTGTTCCAGGTCATGTTCGTTCAGGTTGATCTACCCGAAAGCCGCACCCTGGCCTTGCCGGGTGTGGCCGTCGAAGTGCTTGACCCGCCGCAACGGCATGCACGTTTCGACTTGACGCTGCGCATGGTACGTAGCGCTGACGCGCGACTGCGCTGCGAGCTGGAGTACAGCGACGAATTGTTTGATGCGGCGACGGTCGAGCAGATGCTCGACGACTTGCTGGCGATTCTGCAGGAGGGCTCGGTGCATCCGCAGCGACGCCTGGCGGATCTGCAACTGGTTTCGCCGCCCAGCGAGTTGCATGGCCCCGCCCTGGATACGGCGCCGTTGCCGTTGGACCGGCAAGTGTTGCACTGGGCCAATCAGACGCCGTCCGCTGCGGCACTCTGCAGCGTTGGGCGGACCCTTGATTACGCCACGCTCGGCGCCGCCAGTCGGTCGATGGCCGCGCGGCTGGCCGGGCAGGGCATCGGACCTGGGCAGGTGGTTGCTCTGTGCATGCCACGCTGCGCTGAACAGCTGTTGGCGACCCTGGCTTGTTGGCAGCGTGGCGCGACCTGCCTGTTCCTCGACCCGGCGCAACCGCCGCAGCGCCTCGCGCAGTTACTGCAAGACAGCGGCGCGAGCCTGTGGGTGACGCTGGCGCACGCGCCTGAAGCCGGCGCTGGCCTCGCGCATCTGGTGATGAGCGACGCCGACTGGTCGGCCGATGCCAATGCCGGGCAGGGCGAAAGCCTCAGCCAGCCGCAATTACCTGCCTACCTTATCTATACTTCGGGCTCGACCGGCCAACCCAAAGGCGTGCTGGTCAGCCATGCCAACCTGGCGCATTACGCGAGCGCAGTCGGCCAGCGCTTGCACGCCTTACCCGGCAGCCGTTGGGCGACCCTGGCGACCGTCGCCGCGGACTTGGGGCTGACCTCGGTATTCGCCGCGCTCGCCGCTGGCGACCCGCTGGTCTTGCCGCCGGCGTCGTTGGCTTTCGATCCACCCGGCTGGGCTGACTTTCTTGATCAGAATCCCGTCGATTGCCTGAAGATCGCGCCTTCGCATCTGCGCGGCTTGCTGGCATTGGACGACGCCCGCCGTGTGTTGCCCAGGGAAATATTGATCCTCGGCGGCGAGGGGTTCGATCAGGCCCTGTTCGCCAAGGTGCATGAACTGGCGCCGCAACTGCGTATCTTCAATCACTACGGCCCGTCGGAAACCACGGTTGGGGTGATCTGCGGGGAAATCACCGGGTCCGACGCACTCGAAGCGGGTCAGTACTTGCCGTTGGGCCAGCCTTTGTCCGGCTGCGAGTTGCGCATCGTCGATGGCAATGACAGAGCCGTACCGCTCGGGGTTGCCGGTGAGCTGTTGATTGGCGGGCCCCAGGTTGCCCAAGGCTACCTCGGGCAACCCGGGTTGACGGCGCGCGCGTTCGGTTGCACGGCCCAGGGGCAGCGATTCTATCGCAGCGGTGACCGGGTGCGCCTGGATCGCAACGGGCGGCTGGTATTCCTCGGGCGCCAGGACGATCAGGTCAAGATCCGCGGTTTTCGCGTCGAACCGGGCGAGGTCAGTGCCTGGCTCAACGCCCAACCCCAGGTGCGCGAGGGGGCGGTGCTCGCCTGCGAAGTGAAAGGACGCACGCAACTGGTGGCATACCTCACCCCCGGGATCGGCTCTTCGATGACCACCGAAGCCTTGGCGATGCTGCAAGCCGAGGCCAAGCGCCAACTGCCGGAACACATGCTGCCGGCCTATTGGCTGGCCCTCGATACACTGCCGCTGACCGCCAACGGCAAGCTCGACCGGCGCGCATTGCCCGAGCCCGCAACGGATGAGCCGACCGCTGAAGCCGCCGAGCCACCGAACGGCGCGACCGAACAGCGCCTGGCGCTACTGTGGTGCCAGATTCTCGGTTGTGCGCAAGTCGGGCGCGGGGATGATTTTTTCGCCCTCGGCGGCGACTCGATTCTCAGCCTGCAATTGATCGGCCTCGCTTCGCGGGAAGGGCTGAGGCTGCAACCTCGCGATGTCTTGCAGCATCCGACATTGGCGGCCATGGCGCTGTGCATCGATTGCCGCGCCGAGCCCGCCTTGCTCACGGTGCTGACGGCCTTTCGCGAGCTGCTCGGCCAACCCGCGCTGGGCGCGGATGCGGATTTTTTTGCCATGGGCGGCGATTCGATCCTCAGCCTGCAACTGATCGCGCGCTTGCGTCAGGCCGAGCTGCGCCTGATGCCTCGGCAATTGTTGGAGAACCCAACCCCTCGGCAGTTGGCCAAGGCGCTGACGCCGGTCGTGGCGCCTGTCGTCGCGGCGGTCGAGCCGAGCGACGTGGCGAAGCAACCACAGCCGCTGTCCCACGCCCAGCAACGGGTGTGGTTCATGCAGCAGCTCGATCCGGCTGAAACCGCCTACAACGTCACCCAGTTGCTGGCCTTGCGCGGCGATCTGGATGTGCCGCGTCTGCAACGTGCCTGTCAGGCGCTGGTCGCCCGTCATGATGCGTTGCGCTGCCTCTTCTTCGAAGAGCAAGGGCAAGTCTGGCAGCGCCTGGACGATACGCCCGCGGCGATCTTCAACGTCCACGATATCGGCGGTCTGACCGGGGCGGAGCAGGATGCGGCCATCGCCAGCGCGGCCAAGCGGGTGTTCGACCTCACGCAGGGGCCCTTGCTGGCGGTCGATGTGTTTTGTGTCGCACCCGCTGACTACCGCTTGCTGTTCAATGTGCATCACATTGCCGTGGACGGTTGGTCCATGGGCCTGCTGGTCGAGGATCTGACGTCGCTCTATCAGGAGCGGACGCTGTCTTCAACAAGCGCTCTGCTGCCGTTGATCAATGCGCAGCGGCAACAGTTGGAAGGGGACCACGGCAAGACGCTGTTGGCTTATTGGCGGCAACGCCTGGAAGGCTTGGGCAACGAGCCTCTGGAATTGCCCGGACAACCCACTCGGCCGACAGTGCAGGCATACGCCGGTGCGCGGGACGAGTTCGCTTTGCCCGGTACGTTGAGTGCCGCTGTGGAGGCGCGGGCAAGGGCGTTGGGCGTCACACCGTTCGTGGTGTATTTCGCTGCGTATCAATTGCTGCTCTGGCGTCATGGCGGCCGCAGTGACTTCGCCGTCGGCGTTCCAGTGGCCGGACGCGAGTCGGCAGAGAGCCAGGCGCAAGTCGGCCTGTTCGTCAACACGCTGGCGCACCGGGTGCAGATCGATGCTCGCCAGAGCCTGCAATCGTTCGTCCAGGCCTTGAACGGCAGACTGAGCGATGACCTGGCTCATCAGGCGCTGCCGTTCGAGCAATTGCTCGACGTGCTGAATATCGAGCGCAGCCTGGATCGCACGCCGGTGTTCCAGACGATGTTCAACTACCAGGTCGACCACCAGCAGTCCCGCAGCCTGAACCTGCCCGGCGTCAGCGCACAGGCCCTGGCATTGCCGGGCGGGGTGGTGAGCGCCAAGTTCGACCTGACCTTCAACCTGTTCACCCAAGGGCGTGGTGCCGAGGCCAGTACCGGGTTGATCGTCGAATACGCGACCGCGCTGCTGCAACCGGGCACCACCCGGCGGCTGGTGGAGGACTATCAGGGATTGCTCGCCAGCCTGGCGGGTATTGACCTCCAGACACGCTTGCCGGAAATCCCGCTGCGCTCCGTTGCGACCCTGGCGACTGCCGGTGAGCCGATGCGATTGTCCGGCGAAGCGGATTTCGTGACGCGTTTCGAAGCGCAAGCCGCTGCGCATCCCGAGCGCATCGCGGTGTACTGCGCTGACCGGCAGATAAGCTACGGGACGCTGGATGCCCAGGCCAACCGCCTCGCTCATTGGCTACTGGCCCAAGGCGTGGGCGCCGAATCGATGGTTGCCTTCTGCCTGCCTCGGGATGAGCGGTTGCTGGTGTGCATGCTGGGCATTCAGAAGGCCGGGGTGGCATACCTGCCGCTCGATCCCGGCCATCCGCCGGCTCGCCAGGCGCAAATCCTCGACCGGGCGCAGCCGCATCTGCTGCTCTGCGATTCGCCGAGCGTCGATCTGCCGGCGCCGTTGCGCGTGTGCCCATGGGCGGACCTGCCGCTGGGGCAATTCGCGACCCAGGCGCCGGAAGTGGCGGCCAACCTTGGGCAACTGGCCTACACCCTCTATACCTCGGGCTCGACCGGCCAACCGAAGGGCGTGCAGATCAGTCGCGGCAACTTCGCCAACTTCCTGCTGGCCATGGAACAGGCGCTGCCCTTGGCAAATGTGCAGCGCTATCTGGCCTTGACCACGGTCACCTTCGACATCTGCGGCCTGGAGCTGTGCCTGCCGCTGGTGCGTGGCGGCGCGGTCGTCCTCGCCGACGATGAAGAGCGCCAGGATCCGCTGCTGCTTGCGCGCTTGATCGAGGAAAAGAATGTCGACCTGATCCAGGCCACACCGGCGACCTGGGCGATGTTGCTGCAAGGCGATCGCCAGCTGCTCAAGGGGCGCGTGGCCCTGGCCGGTGGCGAGGCAGTGTCGGCCGAGTTGGCGCACGAGCTGAAGCAGTGCGTGGCGCAACTGATCAATGTCTACGGCCCGACCGAGACCACGGTGTGGTCGACCCAGGCGCCGATCGATGCGCTGCAACTGCCCGTCGCGCCGATTGGCCGACCGCTGCTGAACACGCGCTGTCATGTTCTCGACGAACACCTGTGCGAAGTGCCGCCTGGCTGCGTGGGCGAACTCTATATTGCCGGCGACGGCCTGGCCCGCGGTTATGCCGGGCAGCCGGGGCTGACCGCCGAGCGCTTCATTGCCGACCCGTTCGTGGGTAACGGCGGGCGCTTGTATCGCACCGGCGATCTGGCGCGCTGGCAGCCCGACGGCCAGCTGTACTACCTCGGGCGTACCGATGACCAGATAAAGTTGCGCGGGTACCGTATCGAACTGGGAGAAATCGAGGCGGTTCTGCTCAGCCATCCCCAACTGCTGCAGGCGGTCGTGGCCGTGCAAGGCGAGCACCTGGCGGCGTTCTGGGTGGCGGAGGCTGAAAACGCACCTGACGAGGCGGCTGTGCGCGACTATCTGCAGACACGTTTGCCGATCTACATGTTGCCGACGCACCTGCAAGCGCTGGAGCGGCTGCCGCTCAACACCAACGGCAAGGTCGATCGCAAGCAGCTGCCGCGCCTGCTCGCGGTGGTCGACAGTGCACCTGCTACCGAGCGCGCCTTGTCGGCGAGCGAGGCCTTGCTGATCCAGATCTGGACCTCGGTGTTGCACGTGCAACACGTGCCGGTTGATAGCCATTTCTTCCAGATTGGCGGGCATTCGCTGATGGCCGCTCAAGTGCGTGGGCGCTTGCGCGAGCAGGGGTTTGACGTGCCATTGCGCTGGCTGTTCGAAACGCCGGTGCTGGCGCAACTGGCTGAGCGAATCGAAGGGCTTGCGGGGCAGCAGGACCTGGCTTCGCTGACGATCTCGCCGGTTGATCATGAGGTCGAGCAAGCCTTGTCATCAGCGCAACAGCGAGTCTGGTTGATGCAGCAGCTGGACCTTGCCGACAGCAGTTTCAACATGAGCAGTAATGTCCGTTTGCGCGGGCAACTCGACATCCAGGCCCTGGAGCGTTCATTGCAGCGGCTGGTAAGCCGCCACGCCATCCTGCGCACCACTTATCACCAGCGGGACGGCGAACCGCGCCAGCGCATCCACTCGCAATCGATAGTGGCCCTGGAAACCGTCGCGTCGACGCAAGCGCAGTGGCCGGTTGAAGCCCGGGACAGGGCACTGCGCCCCTTCGACCTGGTTCGCCAGGCTCCGCTGCGGGTGGTCCTGTATCGCCTCGGCGAACAGGATCATGTGCTGCAAATGATCATGCACCACATTGCCTCCGATGGCTGGTCCGGCGCTATTCTGGTCGATGAGCTGATCGAGGGCTACGAGGCCTACAGCACCGGCGTGCTACCGAGCCAGGAAGCGTTGCCGATCCAGTACGTCGACTACGCCGTATGGCAAGGTTCGGCCGCGGTCCGGTTGCGTCAGCGTGAAGGCCTGGACTTCTGGCGACGGACCCTGGCCGGCATTCCCGCGCAGGTGCCGCTGCCGTTCGATTTCCCGCGTCCGGAGCGTGACAGTGGCGCCGGGGCCGCAGTGGATTTCCAGTTATCGCCCGCCACGGTTGGCCGGCTTAAAAGGTTCGCCCAGGACAGTGGCACGTCGCCGTTCATGGTGCTGCTGACCTGTTATGCCGCAGTGCTGCAACGCGAGACGCAGGGCCGCGATCTGGTGATCGGTACGGACGTTGCGAACCGCGACCATCCGGCCACCGAATCGCTGATCGGCTTCTTCGTCAACCTGCTGGCCTTGCGTGTCCGCCTGCAACCGGAGTTGAGTTTCCGTGAGCTGGCGCTCCAGGTGCGTGAGGTTTGCCTGCAAGCGTTCGCCTGGCAAGACACGCCGTTCGAACAGGTCGTGGAGTGCCTCGAGCTGCCGCGCGTGGCCAATGTCCACCCGCTGTTGCAGACCTTGTTCGTGCTCGACAACACACCACGCCAGCAGCGTCAGCTGGGCGATCTTCAGGTCGAGCCGCTGGCCGGCGAGCAACACCACTCCAAGTTCGACATGGCTCTGTTCGCCAGCGAAGACTCTGATGCCATCAGCCTGCGCTGGGTGTACCGCACCAGCCTGTTCCGCCAGGCCACCGTCGAGCGCTTGCGCCATGCCTTCGAGTCATTGCTGGAGCTGGCCCTCGGCGCGCCGGACAATCCCATCGATACCTTGATTCCGACTGTAAAGGGAGCCGCTGCAATGTCCACGGACAACCCGCTGCAACGCAAAATGAGCAAATTGGGCAAGATGCGCCAGAGCGGATCGGCGGCGACCCGTGAGCCCATCGAAGCCCGGCCGCTGCGAGAGGAGGCGAAATTTCCGCTGCTGGTCTCGCTGCGTGACCGTGAACTGGCCCCGGCTATCTGGGCCGAAGCCAACCGCGACAAGGTCGAAAACTGGCTGCGCGAGCATGGCGGTATCCTGTTCCGAGGGTTCGACCTGCCGACACCGGCGGATTTCGAGGCGTTCTGCCAGGCGCTGTGCCCGCAGCTGTATGGACAGTACGGCGACCTGCCGAAGAAAGAAGGTGGCAAGAACATCTACAAGTCCACGCCATACCCCAAGGACCGGATGATCCTGTTCCATAACGAGAGTGCGCATCAGCACCGTTGGCCGCGCCGCCAGTGGTTCTACTGCGAGACGCCAGCGACCTCCGGTGGCGCGACGCCGATCGTCGACAGCCGCCAGGTCTACGGCGAACTGCCGGCCTGGTTGCAGGCAAACCTGCGGCGCAAACAGCTGATGTACGTGCGCAATTTCAGCGCCAGCCTGGACGTCAGCTGGCAGCATTTCTTCCAGACCGAGGATCGGGCCGAGGTCGAGCGAATCTGCCGTGAGAGCAACATTGAATTCCAATGGCGCGGCGCCAATGACCTGCACACCCGCCAGGTTTGCCCGGCGGTGATTCTGCATCCATTGACGGGCGAAGAGAGCTTCTTCAATCAGATCCAGCTGTACCACCCGGCATTTCTCGATGCCGATATCCGCGAGCAGTTCCTGCGCGATGGCGAAGCCGCCATGCCCAGGCAGGTGTTCTACGGTGACGGCTCGGACCTCGAGCCGGCCGCCATCGATGCCATCAATGCCGCCTATGACCGCTGCGCCGTGCGTTTCGATTGGCAACAGGGCGATGTGGTCATGCTCGATAACATGCTGGCGGCGCATGCCCGGGATCCGTTCGAGGGCGAGCGCAAGATTGTCGTGGCCATGGGCGAGATCTATGGTCGTCACCAGGTAATGGCTGCCCCTGCGCAGACCGAAGAGCATTCCGCAGAGTTGACCCCATGAMTQQAFLEIAQRLASLPADKKKVFRQRLAEKGIDSWRLPIVPAVLGEGEPRPLAQAQRRFLSAEALSSRALYNLCSVLRFDGRLDGERLQQAMQQVVDRHQILRTRYTTDANGQLQPHCAPQQVRLPAVERLTLAASDQAQWCADEYARQLAEPFDLAQSMPWRWQAFSDAQEQSTWLFFTIHHVAYDAWSAQQLTLELAEAYRALASNQPAAQPELSIQYADYAAWEREWLDSDTCRQHIDFWRDQLADAPAPLALPLDRPRPAATQRRQSGAILARELSPQLTATVEAAIRNQGVTLYIYGLTAFTCLLSRYSGETDLCLGTSAAQRDRPELVPLIGPLLNTLVIRQRLQDNPDFGSALLRTRDTVAAAFDHQQLPFENILESLERPRSSPLFQVMFVQVDLPESRTLALPGVAVEVLDPPQRHARFDLTLRMVRSADARLRCELEYSDELFDAATVEQMLDDLLAILQEGSVHPQRRLADLQLVSPPSELHGPALDTAPLPLDRQVLHWANQTPSAAALCSVGRTLDYATLGAASRSMAARLAGQGIGPGQVVALCMPRCAEQLLATLACWQRGATCLFLDPAQPPQRLAQLLQDSGASLWVTLAHAPEAGAGLAHLVMSDADWSADANAGQGESLSQPQLPAYLIYTSGSTGQPKGVLVSHANLAHYASAVGQRLHALPGSRWATLATVAADLGLTSVFAALAAGDPLVLPPASLAFDPPGWADFLDQNPVDCLKIAPSHLRGLLALDDARRVLPREILILGGEGFDQALFAKVHELAPQLRIFNHYGPSETTVGVICGEITGSDALEAGQYLPLGQPLSGCELRIVDGNDRAVPLGVAGELLIGGPQVAQGYLGQPGLTARAFGCTAQGQRFYRSGDRVRLDRNGRLVFLGRQDDQVKIRGFRVEPGEVSAWLNAQPQVREGAVLACEVKGRTQLVAYLTPGIGSSMTTEALAMLQAEAKRQLPEHMLPAYWLALDTLPLTANGKLDRRALPEPATDEPTAEAAEPPNGATEQRLALLWCQILGCAQVGRGDDFFALGGDSILSLQLIGLASREGLRLQPRDVLQHPTLAAMALCIDCRAEPALLTVLTAFRELLGQPALGADADFFAMGGDSILSLQLIARLRQAELRLMPRQLLENPTPRQLAKALTPVVAPVVAAVEPSDVAKQPQPLSHAQQRVWFMQQLDPAETAYNVTQLLALRGDLDVPRLQRACQALVARHDALRCLFFEEQGQVWQRLDDTPAAIFNVHDIGGLTGAEQDAAIASAAKRVFDLTQGPLLAVDVFCVAPADYRLLFNVHHIAVDGWSMGLLVEDLTSLYQERTLSSTSALLPLINAQRQQLEGDHGKTLLAYWRQRLEGLGNEPLELPGQPTRPTVQAYAGARDEFALPGTLSAAVEARARALGVTPFVVYFAAYQLLLWRHGGRSDFAVGVPVAGRESAESQAQVGLFVNTLAHRVQIDARQSLQSFVQALNGRLSDDLAHQALPFEQLLDVLNIERSLDRTPVFQTMFNYQVDHQQSRSLNLPGVSAQALALPGGVVSAKFDLTFNLFTQGRGAEASTGLIVEYATALLQPGTTRRLVEDYQGLLASLAGIDLQTRLPEIPLRSVATLATAGEPMRLSGEADFVTRFEAQAAAHPERIAVYCADRQISYGTLDAQANRLAHWLLAQGVGAESMVAFCLPRDERLLVCMLGIQKAGVAYLPLDPGHPPARQAQILDRAQPHLLLCDSPSVDLPAPLRVCPWADLPLGQFATQAPEVAANLGQLAYTLYTSGSTGQPKGVQISRGNFANFLLAMEQALPLANVQRYLALTTVTFDICGLELCLPLVRGGAVVLADDEERQDPLLLARLIEEKNVDLIQATPATWAMLLQGDRQLLKGRVALAGGEAVSAELAHELKQCVAQLINVYGPTETTVWSTQAPIDALQLPVAPIGRPLLNTRCHVLDEHLCEVPPGCVGELYIAGDGLARGYAGQPGLTAERFIADPFVGNGGRLYRTGDLARWQPDGQLYYLGRTDDQIKLRGYRIELGEIEAVLLSHPQLLQAVVAVQGEHLAAFWVAEAENAPDEAAVRDYLQTRLPIYMLPTHLQALERLPLNTNGKVDRKQLPRLLAVVDSAPATERALSASEALLIQIWTSVLHVQHVPVDSHFFQIGGHSLMAAQVRGRLREQGFDVPLRWLFETPVLAQLAERIEGLAGQQDLASLTISPVDHEVEQALSSAQQRVWLMQQLDLADSSFNMSSNVRLRGQLDIQALERSLQRLVSRHAILRTTYHQRDGEPRQRIHSQSIVALETVASTQAQWPVEARDRALRPFDLVRQAPLRVVLYRLGEQDHVLQMIMHHIASDGWSGAILVDELIEGYEAYSTGVLPSQEALPIQYVDYAVWQGSAAVRLRQREGLDFWRRTLAGIPAQVPLPFDFPRPERDSGAGAAVDFQLSPATVGRLKRFAQDSGTSPFMVLLTCYAAVLQRETQGRDLVIGTDVANRDHPATESLIGFFVNLLALRVRLQPELSFRELALQVREVCLQAFAWQDTPFEQVVECLELPRVANVHPLLQTLFVLDNTPRQQRQLGDLQVEPLAGEQHHSKFDMALFASEDSDAISLRWVYRTSLFRQATVERLRHAFESLLELALGAPDNPIDTLIPTVKGAAAMSTDNPLQRKMSKLGKMRQSGSAATREPIEARPLREEAKFPLLVSLRDRELAPAIWAEANRDKVENWLREHGGILFRGFDLPTPADFEAFCQALCPQLYGQYGDLPKKEGGKNIYKSTPYPKDRMILFHNESAHQHRWPRRQWFYCETPATSGGATPIVDSRQVYGELPAWLQANLRRKQLMYVRNFSASLDVSWQHFFQTEDRAEVERICRESNIEFQWRGANDLHTRQVCPAVILHPLTGEESFFNQIQLYHPAFLDADIREQFLRDGEAAMPRQVFYGDGSDLEPAAIDAINAAYDRCAVRFDWQQGDVVMLDNMLAAHARDPFEGERKIVVAMGEIYGRHQVMAAPAQTEEHSAELTPNANANANANA
D1-35_047919465tycCTyrocidine synthase 3ATGAACGACAAGGTCAAAGCTCTTTCGCGCAACATCGAAGCTATTTACCCGCTGGCTCCCATGCAGCAAGGATTGCTGTTCCACAGCCTGATGCACCCGGGCAAGGGCATGTACCTGCTGCAATACCGGCACGTCATGGTCATGCCGAACCTCGACCTGGCGGCGTTCCGCCAGGCTTGGGCGCAAGTGGTGGAACGCCATGAACTGCTGCGCACCTCCTTCGTCTGGAAGCAGCAGAAGCGCCCGATGCAAGTGGTGCACAAGCAGGTCGAACTGCCGATCACTTATGAGGACTGGTCGCACCTGAGCGAAGCCGAGCAGCACGCGCGCCTGGAGCAGTTGCTCAGCGCGGAACGCGCTGAAGGGCTGGACTTCACCAAGGCACCGCTCATGCGGGTCAGGCTGTACAAGTTGGCGCCCGACACGTATCAGTTCGTGCGCAGCTACCACCACATCCTGATGGATGCCTGGTGCTTCTCGATCATCATGATGGACTTCCTCAACGGCTACCGTGCCGCTCAGGAAGGCCGTCGATTGAACCTGCCGGCGCCACGTCCGTATCGCGATTTCATTCGTTGGCTGGAAACCCAGAAGCCGGAGGATCACCAGGCCTTCTGGCAACAACGCCTGGCGGGTTTCGACACGCCAAACGAGTTCGGCTTCGGCCATGTCGGCCGCATCCAGGGCGCCAGTGAACCGGTCGAGGATTGTGTGGAGTTTCTGCAGCCTGAGCAGACCTTGGCGCTGCAAAACGTCGCGGCGCAGCACGGTCTTACCCTCAATACGCTGGTGCAGGGCGCCTGGGCCTTGTTGCTGGCGCGCTACAGCGGCGATCACGACCTGGTGTTCGGTATCACCGTCGCCGGTCGTCCGGTCCATCTGCAAGGTATGGAAAGCATCGTCGGCCTGTTTATCAACAGCTTGCCGCTGCGCTGGAGCTGGCGCCCGGATGACGCGCTTGGCCCGTGGCTGAAAGCCTTGCAGACCGAGAACCTGAGCCTGCGTGAACACGAGAGTGTGTCCCTGGCCGACATCCAGCGCTGGAGCGACGTCCAGCGCCAGGACCTGTTCCAGAGTCTGTTCGTGTTCGAGAACGCGCCCATTGCCGCCGACGTGCGCCAGGGGCAGCTGGACTACCTGATCAGCGACATGGCCAACCGCACCCACACCAATTACCCGATCACCGTGGTCATCGTGCCGGGTGAGCGCCTGCACCTGCAACTGACCTACCAGACCGACTGGTTTCTGCGTGAAGAAGTCGAGCAGATGCTGCGGCACTTCCGTGCCCTGCTGTTGAACATGGGCCAGGCCCTGGGCGCGAACGCCGCAACGCCTTTGCATCAACTGGCGATGCTCGATGAAAGTGAAATCCGCCATCAGCACCAGGTCTGGGCCGGTGGAGGCCTGGCGGCCGACGAACAACTGCTGCAACCGTTGTTCATCGAGCGCTTTCAGCAGCAGGTCTGCCAGAATCCAGGGCGCGTCGCCATAGTCCATGGCGAGCACAGCCTGACCTTCGATCAGTTGAACCGCGCCGCCAACCGGCTGGCCCGGCACCTGCGGGCACAAGGGGTAAGCAGCGACGATCTGATCGCGGTGTTCGATGAGCGCGGGCTGGACCTGGTGGTGATGATTGTCGCCACGCTCAAGGCCGGCGCCGGTTGGCTGCCGCTCGATCCACGCAACCCGGCCCAACGCCTGGCCCAGGTGCTGCGCCAGAGCCGTACGCCGTTGCTCGTGCACAGCGCGGGGCAGGGCGAGTTGGCCATGCAGGCACTGGATCTGCTCGAACAGCGGCCCAAGGCCGTGCGTTATGACCCCTCGGTGCTGAGCGGCTGCAGCGATGAAAACCTGAACATCGCGGTGCACGGCGACTCGTTGGCCTATTGCATCTTCACCTCTGGCTCCACCGGCACGCCCAAGGGCGCCATGGTGGCCCAGGCGGGCATGCTCAACAATATTCTGGGCAAACTGCCGGGGCTGGGGCTCGATGCGAATGACGTGATCGCCCAGACCGCGCCGCAGTGCTTCGACATCTCGGTCTGGCAAACCCTCGCGGGCCTGGTGCTGGGCGCACGCACGGTGATTCTCGGTGACTGTGTGGTACAGGACCCCGAGGCGCTGGCAACGGCCATCGGCCGGCATGGCGTCAGCATCCTCGAAGCGGTGCCGTCATTGATGCAAAGCCTGCTCGACGCCGGCCTGGAGACGTCGCCCCTGCGCTGGGTTCTTGCCACGGGTGAAGCCTTGCCGCCAGCCTTGGCGCGACGCTGGTTCGAGCGCTATCCGGCGATCCCGCTGATGAACGCCTACGGTCCGGCCGAATGCTCCGATGACGTCGCCTTCCACCCGCTGCTGGAGCGTTTGCCGGAACAAAGCATCAACGTGCCGATCGGGCGCGCCACGCTGAACAATCGCCTGTATCTGCTCAATGCTGATCTGCAATCGATACCGGTTGGCGCAGTGGGCGAGATTTTCGTCGCCGGTGTCGGCGTCGGGCGCGGCTACATGGCCGACCCGGCGCGCACGGCGGCGGTGTTCCTGCCGGATCCGATTGCCAACGACGGTTCGCGTCTGTATCGCACCGGCGACCTGGCGCGCTTCCTGCCCAATGGCGATCTTGAATACGTCGGACGCACCGACCACCAAGTGAAGATCCGCGGCCACCGTATCGAACTGGACGAGATCGAAGCCTGCCTGACCCGTTACCCAGGGGTACGTGAGGCGGTGGTGGTGGCCCGTGATGACCAGCAGCGCTCCAAGGTGCTGGTGGCTTATGTCGTGGCCGAGGTCGCGTGCAGCATCGAGGCGTTGCGCGAGCATGTGCTGGGCAATCTTCCGGCCTACATGATCCCGAGTGCATTCGTGTTGCTGGAGCGTTTCCCGCTCAACGGCAACGGCAAGATCGATCGCAAATCCTTGCCCGCTCCGGATTTTGCCGCGCAAAGCCAGGCCCGCTATGTGGCACCCAGCAGCGCGTTGCAAGGCCAGTTGGTGGAAGCCTGGCAAAGCGTGCTCGGGCTCGAACAGGTGGGCGTCGAGGACAACTTCTTCGAACTCGGCGGCCATTCGCTGCTGGCCACTCAACTGATTGGCCTGATCGGCAAACTCACAGGCAAGGACTTGCCGTTGCGCGTGGTCTTCGAGCGTCCGACCATCACCGCCATGGCCGATTGGCTGGAAAGCCAGGCCGGTACGGTAAAACCGTCGCCGACCCTGCTGGCACGACCAGAAAAGCTGCCGCTGTCGTTTGCCCAGCAACGTCTCTGGTTCTTGCAGCAACTCGACCCGCAGAGCCCGGCGTACAACCTGGCGGGCGCGGTACGCCTGACCGGCGAGCTGCATGTCGCTGATCTGCGTGCGGCGTTGCAAGCGGTAGTCGACCAGCACGAGGTGCTGCGCAGCGGCTTTGTCAGCGGGGCCGAAGGGCCGAGCCAGGTGATCCTGGCGCAGACCGAAGTTGATTTGCCGCTGATAGATGTGGCAAGCGAGGCAGCGCTGCACGATCGGCTGCGTCAGGATGCAATGACCCCGTTTGCGCTGGAAGCAGCGCCGTTGCTGCGCGCCCGGCTGTATCGCCTGGCGCCGCAGGTGTTGGTCCTGTCGCTGAACTGTCATCACATCGTTGCCGATGGCTGGTCCCTGCAACTGATCATCGACGCTTTGTGCGAGCAGTATCGCAACCGCCGCCAGGGCCAGGCAATTCAACGACTCGCCCCGGCGATGCAATACGCTGACTACGCTGTCTGGCAGCGCCAGTGGATGGGCAGCAAGGCGTGCGCGCAAGAGCTGGCCTACTGGCGCGAGCAACTGGCCGGTGAACTGCCAGTGCTCGACCTGGCGGCCGATTTTGCCCGACCTGCCCAGGCCAGCCAGGCCGGAGGGCGCGTCGAGCGACGGCTGCCCGAGGACCTGGCGGCCCGCCTGAAAGCGTTCAGCGCTCGGCACGGCTGGAGCAATTTCATCCCGATGCTGACCGCCTTCCAGTTGCTGTTGCGCAGTCGCAGCGGCGAAGACGACATTCTGGTCGGTGTTCCAGCGGCCAACCGGCACCATGCGGTGTTGCAGCCTCTGGTCGGTTGCTTCGTCAACACGCTGGTGTACCGCAGGAAACTTTCCGGCGAGCGCAGCCTGCTGCAACTGATGAGCGAACTGCAGGCGCTGTCCGTGTCGGTCCAGTCCCATCAGGATCTGCCGTTCGATTACCTGATCGAACAACTCGGCGTGGTTCGGCAGGTGAGCTACAACCCGCTGTTCCAGGTCATGTTCAACTATTTCCCGGGCAATGCCCTGGAGCGTTTCGACCTCACCGACGTCATTGCCGAACCGCTGGACAACCGTCCGGACAGCGCGCTGTGCGACCTGCACCTGGATGTGCGCGACAGCGAGCACGGCATCACCCTGAGCTTGCAGTACAGCAGCGACCTGTTCCGTGAACAGACCGTGCAAGCGATGGCCGCACAGTACCTGGCGTTGCTCGACGCGTTGATCGAGCAGTCCGATCAGCCGTTGGGTGAGCTGGCATGGCAGCCGGCCGAGCGGGATCTTGCGCGGATTGATGGTCGCACGGTGAACGGTCATCAGGACATCCTCCAGGCCTTTGCGCTTCAGGTTGCCCGCCAGCCCGCGGCGATTGCCGTCGTGGCAGGCAATGAACAGCTGACCTACGCCGAACTGGATCAGGCCGCCGAGCGGCTGGCGGCGAAGTTGCAGGCCCAGGGCGTCGGTGTCGAAGACCGCGTTGCGCTGAGCCTGCCCCGCGACGCGCGCCTGCCGATGGCCATGTTGGCCGTGCTCAAGGCCGGCGCTGCGTATGTGCCCTTGGCCGAGGACACGCCACCGGAGCGTGGCCGCTACATTCTCCAAGCGGCCCGGCCCACGTTGTGCCTGGGCACGGCGGCGAGTCTCGGTGTGTTGGCGCAGTGGAACAGCGGCCTGCCGTTGCTCGACATTGATGCCAGCGCTTCAACCGACACCTTCAATGCAGTGGCCTGCGCCGCCGGTCAGCTCGCCTACGTGCTGTATACCTCGGGTTCCACCGGCCAGCCCAAAGGCGTGGCGATCAGCCGTGGCAACCTGATGAACCTGATGCTGGCTGTCGAGCAGGTCCTGCCGATGACGGCCCGGGACCGGGTCCTGGCGCTGACCACTGCGACGTTCGACATTGCCATCGTCGAGTTGCTCCTGCCCCTGGCCCGAGGCGCCAGTATTCTGCTGGCCGATCGCGAACAGGCGCGGGACCCGCAGGCCATCGACCAGTTGTTGCTGTCCGGGCAACCCACCGTCATGCAGGCCACGCCGGCCACCTGGCGGATGCTGGTGGCGCATACCTCGCGCAGTTGGCAAGGCGTGCGCGCCATCTCCGGTGGCGAGGCCTTGCCGTGCGCATTGGCCGAAGCCATCGAGGGCAGGGGAGCCGAGGTCATCAACGGCTACGGGCCGACGGAAGCGACCGTCTACAGCACCTTTGAAGTGCGCAGCGGCAACGAAGCCGGCGCCGAGGTGCCGATCGGGCAGCCGGTGGCCAATACCGCCGCGTACATTCTCGATGCCGACTTGCAACCGGTGGCCGCCGATGTTCCCGGTGAGCTGTACCTGGCCGGGGCCAACCTGGGCCGCGGTTATTTCGCCGCTGCGCGCCTGACCGCCGCGGCGTTCCTGCCGGATCCTTTCGTGGCCGGCGCGCGCATGTACCGTACCGGCGACCGGGTCAGGCGTAACAGCAATGGCAGCCTCGACTACCTGGGACGCCTGGATTTCCAGGTCAAGCTGCGGGGTTTCCGTATCGAACTGGGTGAGATCGAAGCGCTGTTGTCCCGCATTCATGGGGTTCGCGAGGCGGCTGTCGTGTTGTTGGGCAGCGGTGAGTCGGCGCGCCTGGTGGGCTATTACGCAGGCGATGCGCTGGATGAAGCGCTGCTGCGTGACACCCTTGGCGCTCAGTTGCCGGACTACATGCTGCCCAGTCAGTTTGTGCGTCTCGACACGCTGCCGTTGAGCCCGAGCGGCAAGGTTGACCGCAAGGCCCTGCCGGCACCGCAGCAACGTGACGGCCAGCATGGCGCGCTGGCGGGTGAGTGGGAACTGACCTTGGCCGAGCTCTGGAAGGAGCTGTTGGGATGCACCGAGGTTGGCGCCGACGATAACTTCTTTGCCTTGGGCGGGCACTCGCTCCTGGCGGCGCGACTGGTCGCGCGGATCGCCGAACAGCATGGCCGGCGTCTGCCGTTGCGCAGCGTGTTCGAGCAACCGCTGCTGCGTGACCTGGCCGCTACGCTGGCCCAGGCAAGCACCGAGGCCGACGGCATCCCGCGTGCTTTCGAAGAGCCCTTGGCACCGTTGCATTTCACCCAGCAACGCTTGTGGTTCCTTGATCGCCTGCAGGGCGATACCCAGGCCTATCACTTGTCCCTGGCCCTGCGCCTGGCTGGCAACTTGCAACCGGCCGTGCTGGAGCGGGCGCTGGCGCAACTGGTTGCCCGTCAACACAGCCTGCAAACGCTGTTCAGCGAAACAGCCGAGGGTGTGCGCCAGCGTGTCGAGGCCCTCGACGCCATGCCGCTGAGCTTCGAGCCACTGGAAAATGATGAGCAATCGAGCGCTTTCACCCAAAAACTGAGCCATGAGGCGCAGCGTCCGTTCGACCTCACCGCGCCGCCGCTGTGGCGCGTGCGTGTGTACCAAGGCAATGACCGCAGCGTGCTGCAAGTGACCGTGCATCACATCATCGCTGATGCGCGCTCGCTGGAGATTCTCTTCAACGAACTGCAACTGATCTACCAGGCTTTGCTGGAAGGGCGCGACGCTTGCCTGCCACCGCTGCCGCTGCAATTTTCCGATATCGCGGCCAGTTGGCAGAGCCCGGCCGGGCACGCGCGAATCGAAGCGCAGCTGGGGTATTGGCGTGACGCCCTGGCGGGCGAGCCGCCTGTGCTGAATCTGCCGACCGACATGCCGCGGCCCGCCGAGCAGGGCTACAACGGCCAGCGGCTGCGCTTCAACCTGCCGACTGCGCTGGTCCGGCGCCTGCGCGAAACGGCACAACGCCACGGCCTGACCGCTTTCGCGCCGTTGCTGGCGGCCTGGAAAACCCTGTTGGCCAGGCACTCGGGGCAGCGCGAAATCTGGGTCGGCCTGCCGGTCGCCCATCGCCATCAGGCCCACACGGATAACCTGATCGGTTACTTCGCCACCACTCAGGTACTGCGTAGTCACATCGACCCGCAACAATCGGTCGAGCAGTTCTGGCAGCAATTGCAAGCCACTCACCTGGCGGCGCAACAGTATGCCGACGTGCCGTTCGAGCGCTTGGTGGAAGCGTTGCAGGTGCGCCGCGATCTCAGCCACACGCCGCTGTTCCAGGCGTTGTTCAACCTGATCCAGCGGGATGCCAACGCAGCGCTCGAACAGCGCTTCGCCGGGCTGCCGTCACAGCGCCTCAACGTCGAAAGCGACAGCGCCTTGGTGGACATCGGCCTGCATATCGAACAGCAGGGCGAGGATTGGCAGTGCGTGCTGGAGTACAACACCGACCTGTTCCTGGCACATACCGCGCAGCGTTACGCCGATGAGTTCCGTTACCTGCTCGAAGGCATGCTCGAGCAACCCGAGGCGCGCCTCTGGGACATCGACCTGGCGAATGCCGACCATGCGCTCGCCGAGCGGCCGTGGAACCGGCCCGCGCAATCCTTGACCGCCGCAATGGACGTGATTGCCCGCTTCGAACGGCAAGCTGCCCTGACGCCTGAAGCCCTGGCCGTCGATTGCCAGGACCGACAACTGAACTACGCGCAACTCAACGCCATCAGCAATCGACTGGCCCATTGGCTGCGTGCGCGCAATGTCGGCACTGATGATCTGGTTGCCGTTTGCCTGAGTCGCGGCCCGTGGTTGCTGCCAACCCTGTTGGCGATTCACAAGGCGGGCGCGGCGTACCTGCCGCTGGATCCGCAACACCCGAGTGAACGCCTGCGCTTCATCACCGATCACGCGCGTCCAGCCCTGGTGCTCGGCGAAAGCCTCTGCGCCGAGGCCTTGGCCGGCGTCGATCACGTCCTGCTCGATCAGTTGACGCTGGACGCCAGCAGCGACGCCAACCTGACGCTGGCGGTGGACCCGCGGCAGCGCGCGTATGTGATCTACACTTCGGGCTCGACCGGTACCCCGAAAGGCGTGCAGGTGACCCGTGGCAACCTGAGCAATCTGTTGGCCGGTCTCGATCGCTTGCTGCCGCTTGGCGCCGAGGATGTCTGGCTCGCCAGCACCACGTACGCCTTCGATATGTGCAAGCCGGAGCTGTTCCTGCCGCTGGTCAACGGCGCCGCGATCCTGCTGGCGCGGCGCGAGCAGGTGGTCGATGGGCATCAGCTGTTCGCGCTGCTGCGTCGGGCCACGGTGTTCCAGGCGACACCGGCCGGTTGGCAGATCCTTCTGGAGACCGGCCAGGCTGACTGGCCGCCGTTGCGTGGGCTGATCGGTGGCGAGGCGGTGCCGGGTGAACTGGTGAACGAATTGCGCGGCCGAGGCGTGACGTTGATCAACGCCTATGGCCCGACGGAAACCACCGTCTGGTCGACCACCCAGGCGTTGCAAGACGTGCCGTCCGGCGTCGCCGACATCGGCGCGCCCTTGCTCAACACCCGTTGCTACGTGCTCGACGACATGCTCCGCCCGGTTCCGCTGGGCGCCACTGGCGAACTGTATATCGCCGGCTCCGGGGTCACCCGTGGTTATCAGCACGCGCCCGCCATCACGGCGGCGGCGTACTTGCCCGACCCTTATGCCGGCGAACCCGGCAGCCGCATGTACCGCACCGGCGACCTGGTGCGCCGACGCGACGACGGGCGACTGGCCTATGTCGGTCGCGGTGATTTCCAGGTCAAGGTACGCGGGTTCCGCATCGAACCGGGCGAAATCGAATCGCTGCTGCGCCGTTACCCAGGCGTCGAAGAAGCCGTGGTGATGATCGATTCGCGCAGCCAGAGCCTGTTCGCCTGGCTGCAAACGCCGAACCCGGTTGATCAGGCGGCGCTGCGTCGGTATCTCGAAGGTGTGCTGCCGGGCTACATGATTCCGGCCGGCTTCATCGAACAACCGCGCTTTGCCCTCAACGCCAACGGCAAGATCGACCGCAAGGCATTGCCGGCACCGCAGCCCGTGGCGATCCGGGGCGTGGCACCGCGCAATGAACTGGAACAGCAACTGGCGGACATCTGGCAGAACCTGCTCGAGTTGCCGCAAGTCGGGGTGTTCACCAGCTTCTTCGAGCTGGGCGGGCATTCGTTGCTGGCGATGCGCTTGATGACCCAGGTCGAAAGCCGCTTCGGCGTCAAGCTTGAGCTGCGCAGCCTGTTCCAGAACCCGACGATCGCCGCGCTCGCCGAGCAGATCGAAAAGCCCCAGGGGCCTTCGACCGACGAAGCCCTGGACGAAATGCAGCGCCTGTTATCAGAGATGGAAGAGTAAMNDKVKALSRNIEAIYPLAPMQQGLLFHSLMHPGKGMYLLQYRHVMVMPNLDLAAFRQAWAQVVERHELLRTSFVWKQQKRPMQVVHKQVELPITYEDWSHLSEAEQHARLEQLLSAERAEGLDFTKAPLMRVRLYKLAPDTYQFVRSYHHILMDAWCFSIIMMDFLNGYRAAQEGRRLNLPAPRPYRDFIRWLETQKPEDHQAFWQQRLAGFDTPNEFGFGHVGRIQGASEPVEDCVEFLQPEQTLALQNVAAQHGLTLNTLVQGAWALLLARYSGDHDLVFGITVAGRPVHLQGMESIVGLFINSLPLRWSWRPDDALGPWLKALQTENLSLREHESVSLADIQRWSDVQRQDLFQSLFVFENAPIAADVRQGQLDYLISDMANRTHTNYPITVVIVPGERLHLQLTYQTDWFLREEVEQMLRHFRALLLNMGQALGANAATPLHQLAMLDESEIRHQHQVWAGGGLAADEQLLQPLFIERFQQQVCQNPGRVAIVHGEHSLTFDQLNRAANRLARHLRAQGVSSDDLIAVFDERGLDLVVMIVATLKAGAGWLPLDPRNPAQRLAQVLRQSRTPLLVHSAGQGELAMQALDLLEQRPKAVRYDPSVLSGCSDENLNIAVHGDSLAYCIFTSGSTGTPKGAMVAQAGMLNNILGKLPGLGLDANDVIAQTAPQCFDISVWQTLAGLVLGARTVILGDCVVQDPEALATAIGRHGVSILEAVPSLMQSLLDAGLETSPLRWVLATGEALPPALARRWFERYPAIPLMNAYGPAECSDDVAFHPLLERLPEQSINVPIGRATLNNRLYLLNADLQSIPVGAVGEIFVAGVGVGRGYMADPARTAAVFLPDPIANDGSRLYRTGDLARFLPNGDLEYVGRTDHQVKIRGHRIELDEIEACLTRYPGVREAVVVARDDQQRSKVLVAYVVAEVACSIEALREHVLGNLPAYMIPSAFVLLERFPLNGNGKIDRKSLPAPDFAAQSQARYVAPSSALQGQLVEAWQSVLGLEQVGVEDNFFELGGHSLLATQLIGLIGKLTGKDLPLRVVFERPTITAMADWLESQAGTVKPSPTLLARPEKLPLSFAQQRLWFLQQLDPQSPAYNLAGAVRLTGELHVADLRAALQAVVDQHEVLRSGFVSGAEGPSQVILAQTEVDLPLIDVASEAALHDRLRQDAMTPFALEAAPLLRARLYRLAPQVLVLSLNCHHIVADGWSLQLIIDALCEQYRNRRQGQAIQRLAPAMQYADYAVWQRQWMGSKACAQELAYWREQLAGELPVLDLAADFARPAQASQAGGRVERRLPEDLAARLKAFSARHGWSNFIPMLTAFQLLLRSRSGEDDILVGVPAANRHHAVLQPLVGCFVNTLVYRRKLSGERSLLQLMSELQALSVSVQSHQDLPFDYLIEQLGVVRQVSYNPLFQVMFNYFPGNALERFDLTDVIAEPLDNRPDSALCDLHLDVRDSEHGITLSLQYSSDLFREQTVQAMAAQYLALLDALIEQSDQPLGELAWQPAERDLARIDGRTVNGHQDILQAFALQVARQPAAIAVVAGNEQLTYAELDQAAERLAAKLQAQGVGVEDRVALSLPRDARLPMAMLAVLKAGAAYVPLAEDTPPERGRYILQAARPTLCLGTAASLGVLAQWNSGLPLLDIDASASTDTFNAVACAAGQLAYVLYTSGSTGQPKGVAISRGNLMNLMLAVEQVLPMTARDRVLALTTATFDIAIVELLLPLARGASILLADREQARDPQAIDQLLLSGQPTVMQATPATWRMLVAHTSRSWQGVRAISGGEALPCALAEAIEGRGAEVINGYGPTEATVYSTFEVRSGNEAGAEVPIGQPVANTAAYILDADLQPVAADVPGELYLAGANLGRGYFAAARLTAAAFLPDPFVAGARMYRTGDRVRRNSNGSLDYLGRLDFQVKLRGFRIELGEIEALLSRIHGVREAAVVLLGSGESARLVGYYAGDALDEALLRDTLGAQLPDYMLPSQFVRLDTLPLSPSGKVDRKALPAPQQRDGQHGALAGEWELTLAELWKELLGCTEVGADDNFFALGGHSLLAARLVARIAEQHGRRLPLRSVFEQPLLRDLAATLAQASTEADGIPRAFEEPLAPLHFTQQRLWFLDRLQGDTQAYHLSLALRLAGNLQPAVLERALAQLVARQHSLQTLFSETAEGVRQRVEALDAMPLSFEPLENDEQSSAFTQKLSHEAQRPFDLTAPPLWRVRVYQGNDRSVLQVTVHHIIADARSLEILFNELQLIYQALLEGRDACLPPLPLQFSDIAASWQSPAGHARIEAQLGYWRDALAGEPPVLNLPTDMPRPAEQGYNGQRLRFNLPTALVRRLRETAQRHGLTAFAPLLAAWKTLLARHSGQREIWVGLPVAHRHQAHTDNLIGYFATTQVLRSHIDPQQSVEQFWQQLQATHLAAQQYADVPFERLVEALQVRRDLSHTPLFQALFNLIQRDANAALEQRFAGLPSQRLNVESDSALVDIGLHIEQQGEDWQCVLEYNTDLFLAHTAQRYADEFRYLLEGMLEQPEARLWDIDLANADHALAERPWNRPAQSLTAAMDVIARFERQAALTPEALAVDCQDRQLNYAQLNAISNRLAHWLRARNVGTDDLVAVCLSRGPWLLPTLLAIHKAGAAYLPLDPQHPSERLRFITDHARPALVLGESLCAEALAGVDHVLLDQLTLDASSDANLTLAVDPRQRAYVIYTSGSTGTPKGVQVTRGNLSNLLAGLDRLLPLGAEDVWLASTTYAFDMCKPELFLPLVNGAAILLARREQVVDGHQLFALLRRATVFQATPAGWQILLETGQADWPPLRGLIGGEAVPGELVNELRGRGVTLINAYGPTETTVWSTTQALQDVPSGVADIGAPLLNTRCYVLDDMLRPVPLGATGELYIAGSGVTRGYQHAPAITAAAYLPDPYAGEPGSRMYRTGDLVRRRDDGRLAYVGRGDFQVKVRGFRIEPGEIESLLRRYPGVEEAVVMIDSRSQSLFAWLQTPNPVDQAALRRYLEGVLPGYMIPAGFIEQPRFALNANGKIDRKALPAPQPVAIRGVAPRNELEQQLADIWQNLLELPQVGVFTSFFELGGHSLLAMRLMTQVESRFGVKLELRSLFQNPTIAALAEQIEKPQGPSTDEALDEMQRLLSEMEENANANANANA
D1-35_047924815dltA_4D-alanine--D-alanyl carrier protein ligaseATGCTCGATCGCCTGATGCATCGCTGCTGGCTGCGTGGAATTCGCCTATCGGAAGCCGAAGGTCAACTGGACATCGTGCCCGGGTCGCAAGGTGCTTTGACGGATGAACTTGAAGCTGAGCTCCGTTCGCGAGAGCACGAAGTGTTGCAATGGCTGGCCCTGCATCCCGATTATCTTGATGCGCGGCCACTGACCGACAATGAGCAGGCGCTCTGGTTTCTACAGCGACTGGAACCCGACAGTTGTGCCTATAACCTCGCTTACGCAGGACGAATCAAGGCGCAGTTCGTAACGGAGGACTTGCCCCGGCGCCTACAAGACGCCTGGGCCACGATTCAGCGGCGTTACCCTGTGTTGAGCACGGCCTACGGTGAACGCAACGGCGACCTGGTGCAGTGGAGTCGTAGCGAAAGTATCCAGCCGTTGCAGTGGGTTGCCTTGCAGGCGGCGGACACCGATACCTTGCAGCAACGCATTGCCGAACTGGCCGACCGGCCTTTCAATCTCCAGGCCGGTGAAGTCAGCCGAGGTGTGGTGCTGAGCAACGCCCGGGACGGTCATACCGAGCTCACGCTGCTGCTGGTGATCCATCACATCGCTGCCGATCCGGCCACGTTCCATATCGTGCTCAACGAGCTGTTCGCACAGGTCGATGGACAGCCGTTGCCTGCAATCAATCCTGATGCCTATCGCAACTACAACAGCGAGCTGCACGTGCGTAGCGAGGCGACCGAAGCTGCGGAGCTGGCATGGTGGCAGGCACAACTGAGCGAAGCTCCAACGCTGGAGTTGCCGACGGATTTCGCCTTTGGCGGTAACCGCTCATTCGAAGGGATGGAGCTGCCGGTTCGCTTCGATCCCGCCACCACGGCGAGGGCGAGGGCCCGGGCCCGGGAGTGGGGCGTGACGCCTTACGTCTGGTGGTTCTCGCTGTTTCAACAGTTTCTCGGGGTGTTGTCCGGGCAAAACGATTTTGTGCTGGGTACGGCCGGCGGTCTGCGCTTGCGACGCGAACACCTCAATTTGCCGGGCTATCTGGTCAACTCGCTGCCGGTTCGCTGTCGCTTGCAGCCAGACCTTTCAAGTCGTGACTGGGCCCGTGAGGTAGACGCCACCGTCAAGCAGGCCCTCGCGCACCGACACTACCCGTTCTCGCGCCTGGTCAAGCAGTTGAACCTCGAGCGTCAGGCGGGCAAGGCGCCGCTGTTCCAGCACATGTTCACGCTCAACAAGGAACGTGCCGCGCCGTTTCACCAGTACGTGGACCCCGTGTTGTCGGAACAGCGTGGAGCGGCCCATGAACTGAACATGGTTGTGGTGGATGAGGAGGAGGGTTTCCTCTGTCGGTGGCGTTACAGCAAGGCTTTGTACCGTCACGAAACAGTCCAGGGTTATTGCGACCAGTTCGTTGCATTGGTCCACGCGGTCATCGACCAGCCGGACGTACCTTTTGCCCAGCTCGACTGGCTACCGTCCGCGCAACGATCGGTCCTCAGTGGCGAGGACCTACCGGTCCCGGTCAGCAACGCCTGGCAGGCGTTCGTCCAGCAGTGCGCCCACAAGTCTGAGTCGATTGCCCTGCAAGACGAACAAGGCACATTGAGCTATGCCGAGCTGGGCCGAGCGGTGGTTGCCCGTGGCGAGCGCTTGCAGACAGGCGCGAACCTGGAGGGTGCTCGCATCGCCTTGTGCCTGCCCCGCAGCCGCGAGCTGGTGATGCACATGCTCGCGGCCTGGCAGTGCGGCGCCACGTACCTGGCCCTCGATCCGCAGTGGCCGCAGTCGCGTTTGCAGGACATCTGCGAGGATGCCACGCCCCGGGTCTGGGTGGGTGAGGGCCTGCGTCCCGAATGGCTGCCTGAACCGGTACGGTGGCTGTCGTTGCCAACCGCGTCGTTGTCCAGCGAATCGCCATTGCGCGCAGCCGTGGCCGCAGACCTGCCGGCTTACGTCGTCTATACCTCCGGCTCCACCGGACGGCCGAAGGGCGTGGCGGTCAGCCAGGCCAACCTGATTCATTACGTGAGCGGGTGCATTGAACGCCTGAACCTGTCCGCCGATGCCAGCCTTGCAAGCCTGGCCAGTTGCGCCACCGACCTGGGGCACACGGCGTTGTTCGGTGCACTGCTCAGTGGTCGGCGCCTGCGCCTGCTGGCCGAGGAGCTGGCTTTCGATGCCGAGGAGCTGGCTGCGGTGCTTGAGCGCGAGCCCGTGGACCTGCTGAAAATCGTGCCGTCGCACCTCAACGCCTTGCTGGTCGCCAATGATCCGCAGCGCTTGTTGCCGCGCCAGTGCCTGGTGACCGGCGGCGAGGCCCTGGGCCAGGCGCTGGTTTCACGCTTGCGCGCCTTGCAGCCGGACCTGCGCATCGTCAACCACTACGGCCCCAGCGAAACCACCGTTGGGGTGTTGACCCATGAGATCGATATCTGCGGCGCAGCGCCGCTGGGTCGACCCCTGCCGCATGTCCAGGTCAGCGTGCGTTCGCCCGCCGGCGCAGTCTTGCCGACAGGCGTCAGTGGCGAGCTGTACGTCCAGGGGGCGACCGTTGCACTGGGCTACCTCAGCGCGACCGACGCAGACCGGGTCCGCTTTGGCCGGCACGGCTATCGCACCGGCGATCGGGTTCGACTCAATCATCAAGGGCAGGTGGAGTTTCTCGGTCGGCTCGATGAGCAGGTGAAGATCCGCGGCTACCGGGTAGAACCGGCCGAAGTCGCGGCGCGATTGCGGGCGATGCCGCAGGTCGGCGACGTGCAGGTGCTGAACAGCCCTTCGCCGTTGACCGGCAATCGCCTGGTGGCTTTTCTGGTCGCGCCAGCTGCCGCGCTGCCCGACATTCAAGCTGCCCTGCAAGCGCAACTGCCGGACTACATGCAACCGGCCCAATGGCATTGTCTCGAGGGTTTCGCCTTGCTGCCCAACGGCAAGGTCGATCGCCAGGCATTGCTGCGATGGGACGAGCAGGCGCCGGCCCAAGCGCCGGCGAAAACATCGCTCGATCAGCCGTTGGACGCGGTTGAAAGCGCATTGCTGGACATCTGGCGCGGGCTGCTCGGCAATTCCGACCTGGGGCCCGATGATAACTTCTTTGCCCTGGGCGGTGACTCGATCCTCGGCTTGCAGATCATTGCGCTGGCGCGCCAGCAGAACATCCTGATGACGCCCAAGCAGCTGTTCGCCGAACAGACCGTGCGCGCCTTGGCGCGAGTGGTGCAGACACCGCAGCGCAGTCTCGAACAGCGCTTGCTCGACATCGCTCGGGAAATTCTTAGTAACCCGGAGCTGCGGGTCGATGACAATTTCTTCAGCGTTGGTGGCGACTCGATCCTGAGTCTGCAAATCATCGCCCGGGCCAAGCAGCAAGGCCTGCAACTCAAGCCCAAGCAGATTTTCGAATTCCCGACCGTACGCGGCTGGGCCGAACACGTGGTTGACCTTGGCGCGGCGAAGGAGGGTGCCAAGCCTTCCGAGCTCGAGCCCACTGCGGCATTTGCCCTGACGCCGATCCAGCAATGGTTTTTCGCCCAGGAGCAAAACCAGCCCGGGTATTGGAACCAGTCGTTGCTGCTGGCGTTGGACCAGCCATTGGAACCAGCGCGGTTTACCCAGGCCGTGGGCGCGCTGTTGCAGCGTCACGCCAGCTTGCGCCTGGTCTTCGAAGCCTCGGCGCATGGCTGGCAACAACGTTACCAGGCGTTCTCTCAATCCCAGGTCAACGGGTTGTTCCATGTCGAGGAGCAACCCCTGAGCGAAGCGCTGTTGCAGCAGTGGCAGCAAGGCTTCGATCTGGCAACGGCGCCGTTGATTCGCTGGGTGTATTTCTCCCAGAGCCGGGAGCTGCTGTGCACGGCGCATCACTTGCTCGTCGATGCAGTGTCGTGGCAGGTGCTGCTGGAGGAGCTGGAAAGTCTCTACCTGCAACCGGACCTGGCGTTGCCGGCCGTCTCGGCGGGTTTCCATGCGTGGAGCGAGGCCCTGCAGCAGCACCGCCGCGAGCCGGCCTTGCTGGGACAGGTTGATTACTGGCACGAACAACTACGTGCAGAGGGCGTTGTCCCGGAACAGGCGAATGCCTATGGCGCAAGCCGCACGCTGGACACGCAACTCTCATCGGCGCAGACGCAGTCGTTGCTGGGCGACTGCCACGCGGCCTACGGCACCCAGGTCCAGGATTTGCTGGTAGCAGCTTTGGCCGGCGTCATCGGCCAGTGGCAGGGTCGCGAGCGCGTCACCCTTGAGCTGGAAAGCCATGGCCGCAGCGGCTGGGAGCAGGCTCCCGATTTGTCCCGCTCGATCGGTTGGCACACCAGCCGCTATCCACTGGCGGTCGACACTTCCTGGGATCTGGAGCCCTCGATCATCGCGGCCAAGGAAGCCCTGCGCCGCGTACCCGAGCAAGGCATCGGCTACGGCCTGTTGCGCCAGGACCCGGCGCACGGCCTGGCTGCGGCCTCGCTGTTGACGTTCAACTACCTGGGGCGGGTCGACCAATGGATCGGCGCTTCGCGCCTCTGGCGCCTGGCGCGGCCGGTATGTCCAGGCATGCGCGCCGAGAGCACGCGCCGCACGCATTGGCTGGACGTGACGGCGCTGGTCAACGAAGGGCAACTGCACGTGGAGTGGCGTTATGCGCCGCAGGTCCATGACCCGGCGCTGGTGGGCGAGTTGGCGCGGCAGTTCCAGCAGCGCCTTTCAGCCTTGCTAGAGCATTGCCAGGCGCCCTCGGTTGGCCGCGCCACGGCTTCGGATTTCGCCGACTCAGGCTTGTCCGACGATGAATTCCTGGGGCTGCTCGAACAACTCGAACAGTGAMLDRLMHRCWLRGIRLSEAEGQLDIVPGSQGALTDELEAELRSREHEVLQWLALHPDYLDARPLTDNEQALWFLQRLEPDSCAYNLAYAGRIKAQFVTEDLPRRLQDAWATIQRRYPVLSTAYGERNGDLVQWSRSESIQPLQWVALQAADTDTLQQRIAELADRPFNLQAGEVSRGVVLSNARDGHTELTLLLVIHHIAADPATFHIVLNELFAQVDGQPLPAINPDAYRNYNSELHVRSEATEAAELAWWQAQLSEAPTLELPTDFAFGGNRSFEGMELPVRFDPATTARARARAREWGVTPYVWWFSLFQQFLGVLSGQNDFVLGTAGGLRLRREHLNLPGYLVNSLPVRCRLQPDLSSRDWAREVDATVKQALAHRHYPFSRLVKQLNLERQAGKAPLFQHMFTLNKERAAPFHQYVDPVLSEQRGAAHELNMVVVDEEEGFLCRWRYSKALYRHETVQGYCDQFVALVHAVIDQPDVPFAQLDWLPSAQRSVLSGEDLPVPVSNAWQAFVQQCAHKSESIALQDEQGTLSYAELGRAVVARGERLQTGANLEGARIALCLPRSRELVMHMLAAWQCGATYLALDPQWPQSRLQDICEDATPRVWVGEGLRPEWLPEPVRWLSLPTASLSSESPLRAAVAADLPAYVVYTSGSTGRPKGVAVSQANLIHYVSGCIERLNLSADASLASLASCATDLGHTALFGALLSGRRLRLLAEELAFDAEELAAVLEREPVDLLKIVPSHLNALLVANDPQRLLPRQCLVTGGEALGQALVSRLRALQPDLRIVNHYGPSETTVGVLTHEIDICGAAPLGRPLPHVQVSVRSPAGAVLPTGVSGELYVQGATVALGYLSATDADRVRFGRHGYRTGDRVRLNHQGQVEFLGRLDEQVKIRGYRVEPAEVAARLRAMPQVGDVQVLNSPSPLTGNRLVAFLVAPAAALPDIQAALQAQLPDYMQPAQWHCLEGFALLPNGKVDRQALLRWDEQAPAQAPAKTSLDQPLDAVESALLDIWRGLLGNSDLGPDDNFFALGGDSILGLQIIALARQQNILMTPKQLFAEQTVRALARVVQTPQRSLEQRLLDIAREILSNPELRVDDNFFSVGGDSILSLQIIARAKQQGLQLKPKQIFEFPTVRGWAEHVVDLGAAKEGAKPSELEPTAAFALTPIQQWFFAQEQNQPGYWNQSLLLALDQPLEPARFTQAVGALLQRHASLRLVFEASAHGWQQRYQAFSQSQVNGLFHVEEQPLSEALLQQWQQGFDLATAPLIRWVYFSQSRELLCTAHHLLVDAVSWQVLLEELESLYLQPDLALPAVSAGFHAWSEALQQHRREPALLGQVDYWHEQLRAEGVVPEQANAYGASRTLDTQLSSAQTQSLLGDCHAAYGTQVQDLLVAALAGVIGQWQGRERVTLELESHGRSGWEQAPDLSRSIGWHTSRYPLAVDTSWDLEPSIIAAKEALRRVPEQGIGYGLLRQDPAHGLAAASLLTFNYLGRVDQWIGASRLWRLARPVCPGMRAESTRRTHWLDVTALVNEGQLHVEWRYAPQVHDPALVGELARQFQQRLSALLEHCQAPSVGRATASDFADSGLSDDEFLGLLEQLEQNANANANANA
D1-35_04793990hypothetical proteinATGGAAACTGGTTTGGCGCGTGCACAGGTTCAATCCATGGAAGGCGTACCGGGCAACGAGCAGACCTTGCCGTTCATTTTCGAAGCGCCAGCCACGGGGGCTCGCTGGCAGGATAGCCGAGCGCAGATCCTGCAGGCAGTCGAGGCCGAGTTGCCGCGTGTCGGCGGCATCCTGTTCCGCGGTTTTGCCTTCAACGGGGAAGCCGATTTCGAGGAATTTGCCCGCGGTTTTGGCCATGAGCTGCTGACCTACGACTACGCCTCCACGCCGCGCACCAAGCTCAACAACCGCGTATACACCTCCACTGAATACCCGGCCCACCAGGTCATCCCGCTGCACAACGAGCAGTCCTATTCGCTCAATTGGCCGATGAAGATCTGGTTCCACTGCGTACAGGCTTCTCCTGTGGGTGGTGAAACCCCGATCGCCGATAGCCGCAGGGTCTACCAGCAACTCGATCCGGCGATCCGCCAGCGCTTCGCCGAGAAACGCCTGATGTACGTGCGCAACTACGGCAACGGCCTCGACTTGCCCTGGCAGCAGGCGTTCAGCACCGAAGATCGCTCGCAAGTGGAACAATTCTGTCGCGCCAACCACATCCAGTTCCAATGGAAGGACGACGGCGAGCTGTCCACGCGCCAGGTCTGCCAGGCCGTGGCCCAGCATCCGGTGACCGGGGAGTGGGTATGGTTCAACCAGGCGCATCTGTTTCATATCTCCAATCTCGCTGCGCCGGTACGCGAGACGCTGATTTCCATCGTTGGCGAAGAGGGTGTGCCACGTAACGTCTTCTACGGGGACGGTTCACCCATCGAGCTGGAAGCCCTGGAGCATGTGCGCGGCGTATTGCAGCGCTGCCAGGTGACTTTCCCCTGGCAGGCGGGTGACGTGCTGATGCTCGACAACATGCTGGTGGCCCACGGCCGCTCGACATTCCAGGGCGCGCGAAAGGTCGTGGTCGCCATGGCCGAGCCTGCTCCGGCGGGTTGAMETGLARAQVQSMEGVPGNEQTLPFIFEAPATGARWQDSRAQILQAVEAELPRVGGILFRGFAFNGEADFEEFARGFGHELLTYDYASTPRTKLNNRVYTSTEYPAHQVIPLHNEQSYSLNWPMKIWFHCVQASPVGGETPIADSRRVYQQLDPAIRQRFAEKRLMYVRNYGNGLDLPWQQAFSTEDRSQVEQFCRANHIQFQWKDDGELSTRQVCQAVAQHPVTGEWVWFNQAHLFHISNLAAPVRETLISIVGEEGVPRNVFYGDGSPIELEALEHVRGVLQRCQVTFPWQAGDVLMLDNMLVAHGRSTFQGARKVVVAMAEPAPAGPGPT0031670_1DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-MALLEOBACTIN_METABOLISM,PGPT0031670-mbaH-NANANA
D1-35_04794951yfmCCOG4594Fe(3+)-citrate-binding protein YfmCGTGCGGGGAAGGGTGAAGGGAATATTCCAAGGGTTGCTCGGCATGCTGTGTGTGTCGTTGGCATTGCTGTCCATGCCTGCTGGCGCGGCCGAAACCAAGGTGTTCGAGAACAGTTTCGGCCGGGTTGAAGTCCCCGTTTCGCCGCGTTGCATCGTGTCTTTGCATGATTTCAGCCTGACCACCCAGTTGCTGGAGTTGGGTATCAAGCCCTGCGGCTCGACAGGGCGTAAAAAGCTGTTTTCGGATGTGCTGTTTCGTGGCGCGCAGGAGCGCTTCGATGTGACGGGCATTCAATACATCGGCTCGCACCAGTCGCCTGACCTCGAAGCCATTGCGGCGTTGAAGCCTGACCTGATCATCGGCCTGTCCTATCACGCCGACCTCAAGGACAAGCTCAGCAAGATCGCCCCGGTCGTTCTGTTGCCGTCGCGAGAGAGCGATATCAAGACCTACGCCAAGGAACTCGCCGACCTGGTCGGCAAGCAACAGCGTTATGAAGAAATGCTTCGCGAATACCAATGGGTGGTCAGCGAGTTCAAGAAGCGCGTCAAGGACCCTGCGCGCATCACGGTCACCACGCTGGAAGTCTATACCGATGGTTTCCAGTTGATCGGCCGTGGCGGGATGGATGACGTTATCGCTGATTTCGGGCTGGGGCGTGTCGCCGCGTATCGTGAGGCGCGGCAGAATGTGCCCTACAGCCTGGAGCGAATCGGTGACTTCGACAGTGATTTCATTATCGACACCTATGAGGAGCTGCTCGATTCGGAAACCAGCACCGCAGCTTTCCGCCAGTCCCCTCAATGGCGGAACCTGTTCGCCGTGAAGAACCGTCAGTTTCTCTACCTGAACCGCAGTCGTTATGCCGATACGATGCAAGGCCTGCTGGGGTCCGCTTACCTGCTGATGTCCCATATCGCTGAGCGCGAGAGTGTGCTCCAGGGCAAGTGAMRGRVKGIFQGLLGMLCVSLALLSMPAGAAETKVFENSFGRVEVPVSPRCIVSLHDFSLTTQLLELGIKPCGSTGRKKLFSDVLFRGAQERFDVTGIQYIGSHQSPDLEAIAALKPDLIIGLSYHADLKDKLSKIAPVVLLPSRESDIKTYAKELADLVGKQQRYEEMLREYQWVVSEFKKRVKDPARITVTTLEVYTDGFQLIGRGGMDDVIADFGLGRVAAYREARQNVPYSLERIGDFDSDFIIDTYEELLDSETSTAAFRQSPQWRNLFAVKNRQFLYLNRSRYADTMQGLLGSAYLLMSHIAERESVLQGKPGPT0003765_10038DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003765-feuA|yvrC|ABC_FEV_S|fatB-K02016NANA
D1-35_047951050yfhACOG0609putative siderophore transport system permease protein YfhAATGATGCGCTTGGGGCTGACCCTGCCCAGAATGCTGCCGTTGCTGCCCTGGGTGGCCCGGCCGATCGACCTGATTTCGGTGCTGGTGTTGCTGCTCGCCTTGGTTGCGTTGGCCTTGTATGCACTAACCGTCGGCAGCTATTCACTGGATGTTGCCCAGGCCTGGCAAGCGCTGGCAGCCCCTGACCAGGCCAACCCGACGACGCGCAACCTGCTGTGGGAGTTGCGCCTGCCGCGTGTCTTGCTGGCGATCCTCGCCGGGGCGGCGATGTCGCTGGCCGGCCTGTTGATGCAATCGTTGACGCGCAATCCCCTGGCGGCGCCGGGCCTGGTAGGCGTGGAGTCAGGCGCCAGCGTCACCATGTTGTTGATCATCGTGCTCTGGCCCACGCTGCTGCCGCTGGAGCTGTATCCATTGGCGGCACTGACCGGTGGGCTGGCCGTGGCGTTCTTCGTCGCGTTGCTGTCGTGGCGCCAAGGCATCTCGCCGCTGCGCCTGATCCTCGTCGGCGTCGGGCTGACCGCCATGCTCAGTGCGGTTGCCGACCTGCTCATCACCTACGGCAATATCGACCAGGTCGAGTCAGCCTTGATGTGGCTGGGCGGCAGCTTGCATCGGGCCGGCTGGGCCCAGGTCCATAGTCTCGCCGCCTGGTTGCTGCTGGCGGGGACGCCGCTGCTGTTTTTTCATCGCCAGTTGAACCTGTTGCAGTTGGGTGAAAAAGTCGCCCTCAGCCGAGGCCTGAATGTGACGGGTGTGATGGCCTTCCTGTTGCTTTGCAGCGTCATGCTGACGGCGGCAGCGGTGGCGAATGTCGGCACCATGACCTTTGTCGGCCTGGTGGCCCCGCACCTGGCGCGCCAACTGGCGGGTGATCGCCACGGTGCCCTGATGCCTTTATCCGCGTTGATGGGGGCACTGCTGGTGCTGGCGGGCGACACACTGGGGCGGGGGCTTTTCCCACCGTTGCAGTTACCGGCAGGGCTGGTGGTCGCGATCATCGGAGCGCCTTACCTGATCGTCTTGTTGGCGCGTCAACGCAGTCGCTGAMMRLGLTLPRMLPLLPWVARPIDLISVLVLLLALVALALYALTVGSYSLDVAQAWQALAAPDQANPTTRNLLWELRLPRVLLAILAGAAMSLAGLLMQSLTRNPLAAPGLVGVESGASVTMLLIIVLWPTLLPLELYPLAALTGGLAVAFFVALLSWRQGISPLRLILVGVGLTAMLSAVADLLITYGNIDQVESALMWLGGSLHRAGWAQVHSLAAWLLLAGTPLLFFHRQLNLLQLGEKVALSRGLNVTGVMAFLLLCSVMLTAAAVANVGTMTFVGLVAPHLARQLAGDRHGALMPLSALMGALLVLAGDTLGRGLFPPLQLPAGLVVAIIGAPYLIVLLARQRSRPGPT0003770_3486DIRECT 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
D1-35_04796984yfiZCOG0609putative siderophore transport system permease protein YfiZGTGATCCACGGTTTGCGCTTGCCGGTGTGGCTGGGCCTGCTGATTGCGATTGCCCTGGCCGCGCTGCTGCATCTGGCGGTGGGCGCCAAGAGCATCCCCTGGAGCGAGGCGTGGCAGGCCTTGGTCGCCTATTCGCCAGACAGCCCCGACCAGAGCGTCATTCGTGGCAGCCGCCTGCCACGCCTGCTGGTGGCCATGCTGGTGGGCGCGAGTCTCGGTCTGGCCGGTGCGATCATGCAGGCGGTGGGCGACAACCCATTGGCCGACCCGGGGATTCTCGGCATCAACAGCGGCGCGGCATTGTTCGTCGTGTTCGGCTTGCTGGTGCTACCGGGCCACGATCTGTCGATGATCCCGCTGTTTGCTTTCAGCGGCGCCCTGGTCGCCGCCGTTGGTGTCCTGCTGCTGGCGGGCAGGGGCCACAACCCGATTCGACTGACGTTGTCCGGGGCGATGATCGCAGCGTTATTCAGTGCTATCACTTCGATTTTACTGTTGCTCGATCAGCAGGGGCTGGACAGCCTGCGGCGCTGGCTCACCGGCTCGATCGGGGTGACCGGAGGTTCGATGCAGGCGTGGGTCTGGCCGTATGCCGTGTTGGGCATGTTCCTCTGCCTGGTCAACGTCCGCGCGCTGAACGCGCATCGGCTGGGTCCGCAAGCCGCCGCCGGCATGGGCGTCAACCTGTTGAAGATGCGTCTGTTCGGCCTGGCTTCGGTGGTTCTGCTGTCAGGCTGCGCCGTGGCCCTGGCGGGGCCTATCGGTTTTGTCGGGCTGGTGGTGCCTCACACCGCGCGCCTGTTGTTCGGCGATGACTACCGTCGGTTGCTGCTGGCCGCGCCCTTGCTTGGCGCGCTCCTGCTGATCCTGGCGGACATCGCCGCCAGGACCGTGGTGCGTCCCTTCGAGCTCAATACCGGGATCGTCACGGCGTTGATCGGCGGGCCGATCTTCGTGGTACTGGTGTTGAGGAAAGTCCGATGAMIHGLRLPVWLGLLIAIALAALLHLAVGAKSIPWSEAWQALVAYSPDSPDQSVIRGSRLPRLLVAMLVGASLGLAGAIMQAVGDNPLADPGILGINSGAALFVVFGLLVLPGHDLSMIPLFAFSGALVAAVGVLLLAGRGHNPIRLTLSGAMIAALFSAITSILLLLDQQGLDSLRRWLTGSIGVTGGSMQAWVWPYAVLGMFLCLVNVRALNAHRLGPQAAAGMGVNLLKMRLFGLASVVLLSGCAVALAGPIGFVGLVVPHTARLLFGDDYRRLLLAAPLLGALLLILADIAARTVVRPFELNTGIVTALIGGPIFVVLVLRKVRPGPT0003770_9277DIRECT 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
D1-35_04797804fecECOG1120Fe(3+) dicitrate transport ATP-binding protein FecEATGCTGAAAGCCAGCAACGTGCGGCTGAGCTATGGCGAGCAACAGATTCTCAACGGTGTCAGCCTGGATATTCCCGAGGGTTGCTTCACCGCGTTGATCGGGGCCAACGGCTGCGGCAAGACCACGCTGCTTAATGTACTGGCGCATATGTTGCGGCCGAGCGCGGGTGACGTGCACCTGGGCGGAAAATCGTTGGGACAGTATTCTCGCCGCGCATTGGCGCAACGAATGGCGTTGCTGCCCCAGCGCACCACGTCGCCGGCCGGCATGAGCGTGCGGGAGCTGGTGATGCAGGGGCGCTTCCCCTGGCAGAGCTGGTGGCGCCAATGGTCCGACCAGGACCAGCAGGCGATTGATCGCGCCATCGACCTGGCGGGTATCGGGCCTTTGCTGGATCGCTCGCTGGCCACCCTGTCGGGCGGGCAGTTGCAGCGCTGCTGGATTGCCATGACCCTGGCCCAGGACACTCCGGTGATCCTGCTGGACGAACCGACGACCTTTCTCGACATCGCGCACCAGATCACGCTGCTCGAATTGCTGGTGGATCTGCGTGAGCAAGGCAAGACCATTGTGGCGGTGCTGCACGACCTCAACCAGGCCGCGCGTTACGCCGATCACCTGGTGATGATGCGCGAGGGTCGGTTGCTGGCCCAGGGCGCGCCTGCCGAGGTGTTCACTCGGGAAAACCTCAAGGCGGTCTTTGACCTGGACGCGCACATCATTACCGACCCTTATTCCGGCGATCCGTTATGTGTCCCGCAAACCACCCGTAGCCAGCCGCTGGCTGTGCGGGAGGCGATGTGAMLKASNVRLSYGEQQILNGVSLDIPEGCFTALIGANGCGKTTLLNVLAHMLRPSAGDVHLGGKSLGQYSRRALAQRMALLPQRTTSPAGMSVRELVMQGRFPWQSWWRQWSDQDQQAIDRAIDLAGIGPLLDRSLATLSGGQLQRCWIAMTLAQDTPVILLDEPTTFLDIAHQITLLELLVDLREQGKTIVAVLHDLNQAARYADHLVMMREGRLLAQGAPAEVFTRENLKAVFDLDAHIITDPYSGDPLCVPQTTRSQPLAVREAMPGPT0003760_3071DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
D1-35_047982190fhuA_4COG1629Ferrichrome outer membrane transporter/phage receptorATGCTCGTCAGAAAAACAATAGTTGGCACCGAAAAACGTTACGTCTCGCGTCATCCTGCGTTTCACCTGAGCACGCTGGCACTGGCTTTGGGGAGCATTTTTTCAGCACAGGCGATGGCCGCACAGCAAGAGGCTGCTGCCAATGCCCCTCTTCAACTCGGCGAAATCAACATCAACGCCGCCGCGGTGGAAAACCCGACGGCGCCGCTGGCCGGCAAGGTCGCCTTGCGTAACGGCAGCGCCACCAAATCCAACGCAGCCATCACCGAAACGCCGCAATCGGTTTCCGTGGTGACCGCCGATGAAATGCGTGATCGCAAGTCCGACACTCTGGCAGATGCCCTGAGCTATACCCCGGGTTTCACCAGCCAGCCAAGCAGCTTCAACCGCACTTCCGACCGGTTCCGCATGCGCGGATTCGACGTCGAATCCGCCACCGGCGGTTCGCTACGCGACGGCATGCGCTTGCAGTACAACTCTTACGACGGTGTGCAGGAACCCTATGGTCTGGAACGCGTGGAGGTCGTGCGCGGCGCGGCTTCGGTGTTGTACGGCCAACTGTCGCCCGGTGGCTTCGTCAACGGCGTGAGCAAACGCCCGACCGAAACCCCACAGCACGAGCTGGGCATGCAATACGGCAACCATGATCGCAAGCAACTGACCGCCGACTTCAGCGGGCCGCTCGGCGACAGCGAAGTCCTCAGCTACCGCTTGACCATGCTCAAGCGCGACAGCGACACCCAGCAGGACTACATCAACGACGACAAGCTCTATATCGCCCCGGCCCTGACCTGGCGCCCCAATGAAGATACGTCGCTGACCCTGCTCTCGTTCTATCAGAAGAGCGACACCCGTTTCTCCGCCCCGCTGCCCTATCAATTGGTCAAGGGCGTGGGCAACGGGCCGGTCACCATCGGCCGCCACGATTTCATCGGCGAGCCCGATTACGACGACATGAATGGCGAGATGTCCGCCATCGGTTATGAGTTCGAACACCGCTTCGATGAGCACACCCGCATCAGCAACAAGCTGCGTTACTACGAAGCGGATGTGAAGTGGAAATATCTTCAGGCCGGAGCAGTCACCAACGGCGTTCTAGCTCGACAATACAGCGACCGCCGCGAGCGCTCCCGGGCACTAGCCAGCGACACCAACATAGAGACACGCTGGAACATCGGAGGGGTGGAAAACACCTTTCTGGTGGGTGCAGATACCTACGACGCGTCGTACGACTCGCATAACTTCCGGGGCCCCGCTCCTTCCATCAACATTGGTGACTATAACTACGGGCAGCCGGTCGTAGTGGACAAACGCCGGAGCCGCGAGCGAGGTTCGCAGATCGACACGTTCCAGACAGGTATTTATCTGCAAGACCAGATCAAGTTCGACGATCACTGGTTGCTGCTGCTCGGTGGCCGCCACGATTGGGCTGATCAGGATCAGGAAGCGTTCAGGACCGGTCAAAAGCTGAGCCAGGACGACGAATCTACCACCTGGCGCGCCGGACTGGTTTACCAAGCCGATAACGGCCTGGCGCCCTACATCAGCTATAGCGAATCGTTTTTCCCGGTGGCGGTAGCCGACGCACCAGACCAGACGTTCGATCCTACCGAAGGTAAGCAGTACGAAATCGGCATTCGCTACCAACCTCCTGGCAGCAACATGCTGCTGAGTGCCGCGGTGTACGAGCTGACGCAAGAAAACGTCGTGAAGCGCGACCTAGCAGGCAACAATCCTCGGCAGATTGGCGAGCAGCGCTCCCGTGGCTTGGAGCTGGAAGCCAAGGCTGACGTCACGCCCCAATTGAGTGTGATTGCCTCGTACGCTTACACCGATGCGCGGACTACTAAAAGTCAGGTCCAGAGCGAAGTGGGCCAGCGCAGCGAAGACACTCCTTACCACCAAGCCGCGCTGTGGGCTGACTACAACTTTGCTCTCTTCGGAGTGCCACAGCTGAAGGTAGGTGGTGGCGCACGTTACAAGGGCACCACCCAGGCCTCGGGCATCGATTCGCAAATGCCGGCCTATACGCTGTTCGACGCAATGGCTAGCTACCAGATCGATAAAAACTGGGACATCGCTCTAAACGCTAACAACGTGACGAACAAAAAGTACGTGTACTGCGAAGCCGCCATCTGCCGCTACGGCGATGAACGCGAGCTGGTGACGTCCGTCAACTTCCGTTGGTAAMLVRKTIVGTEKRYVSRHPAFHLSTLALALGSIFSAQAMAAQQEAAANAPLQLGEININAAAVENPTAPLAGKVALRNGSATKSNAAITETPQSVSVVTADEMRDRKSDTLADALSYTPGFTSQPSSFNRTSDRFRMRGFDVESATGGSLRDGMRLQYNSYDGVQEPYGLERVEVVRGAASVLYGQLSPGGFVNGVSKRPTETPQHELGMQYGNHDRKQLTADFSGPLGDSEVLSYRLTMLKRDSDTQQDYINDDKLYIAPALTWRPNEDTSLTLLSFYQKSDTRFSAPLPYQLVKGVGNGPVTIGRHDFIGEPDYDDMNGEMSAIGYEFEHRFDEHTRISNKLRYYEADVKWKYLQAGAVTNGVLARQYSDRRERSRALASDTNIETRWNIGGVENTFLVGADTYDASYDSHNFRGPAPSINIGDYNYGQPVVVDKRRSRERGSQIDTFQTGIYLQDQIKFDDHWLLLLGGRHDWADQDQEAFRTGQKLSQDDESTTWRAGLVYQADNGLAPYISYSESFFPVAVADAPDQTFDPTEGKQYEIGIRYQPPGSNMLLSAAVYELTQENVVKRDLAGNNPRQIGEQRSRGLELEAKADVTPQLSVIASYAYTDARTTKSQVQSEVGQRSEDTPYHQAALWADYNFALFGVPQLKVGGGARYKGTTQASGIDSQMPAYTLFDAMASYQIDKNWDIALNANNVTNKKYVYCEAAICRYGDERELVTSVNFRWPGPT0003790_17279DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014NANA
D1-35_047991215bcr_1Bicyclomycin resistance proteinATGGAAACCGGGAATGCATCCGCGCTGGCGGGTTCGCCGCCACTGGCAACAAGCCAACCCCTGACCGGTCGAATCGTCGCCCTGCTCGCAGGCCTCGCGGCGATCGGAATGCTCTCCACCAACATCATCCTCCCCGCGTTCCCGGTCATTGGCGATGACTTGGGCGTGACCGCCCGCGAACTGGGCCTGACACTCTCCAGCTACTTCGTCACCTTTGCCCTGGGCCAGTTGGTGGTCGGGCCGCTGGCCGATCGTTATGGGCGCAAGAAGCTGGTGCTGGGCGGATTGTCGGTATTCATGGTCGGGACCGTCATCGCAGGGCTCGCCACCACGCTCGATGTCATGATCGCCGGACGCATCGTCCAGGCATTGGGTGTGTGCGCTGCCTCGGTGCTGTCGCGCGCCATCGCTCGGGATCTGTTCGAAGGCGAGACGTTGGCCCGCGCCCTGTCGTTGACGATGGTTGCCACCGCCGCCGCGCCAGGTTTCTCGCCCTTGGTGGGCAGCGTGCTGTCCGTCACGCTCGGGTGGCGCGCGATGTTTATCCTGGTTGGATTGGCGGCAGTCGTACTCGCCTTCTTCTACGTCCGCGACCTCGGTGAAACCCATCCCGCCGATCGCCGGGCGCCGCACTCCACCGGCAGCGTCGTGCGCGCTTACGCAAGGCTGATGGCGGACAAGCGCTTTATCCTCCCCGCCCTGTCGATGAGCCTGCTGCTGAGCGGCTTGTTCGCCTCTTTCGCCGCCGCCCCGGCGATCCTGATGAAAGGCATCGGCCTGACGTCAGTGCAAGCCGGCCTGTATTTCGCCTCGACGGTGTTCGTCGTGTTCGCCGCCGGCATGGCGGCCCCGCGCCTGGCGCACCGCTACGGCACGCGCACCATCGCCTTGCTGGGCATTGCCTGCGCCATGCTCGGCGGTGGCCTGCTTGTGGTCGGGCCGGCTGACCCAGGCCTGGGCTGGTATGCCGTCTCGATGGTGACGTTTCTCTGGGGCATGGGCCTGGCGAACCCGCTGGGCACCGCCATCACCATGGGGCCTTTCGGCAAGGAGGCCGGCATGGCCTCGGCGTTGCTGGGATTCTTGTCCATGGGCGCGGCGGCGCTGACCACCTGGCTGGCCTCCGTATTGAGCTTTTCGCCCATCACCACGCTGGGCGCGATCCAGGCGTTGACCTGCCTGATCGCGCTGCTGCTGTTCTTCTTGCGCCGCTGAMETGNASALAGSPPLATSQPLTGRIVALLAGLAAIGMLSTNIILPAFPVIGDDLGVTARELGLTLSSYFVTFALGQLVVGPLADRYGRKKLVLGGLSVFMVGTVIAGLATTLDVMIAGRIVQALGVCAASVLSRAIARDLFEGETLARALSLTMVATAAAPGFSPLVGSVLSVTLGWRAMFILVGLAAVVLAFFYVRDLGETHPADRRAPHSTGSVVRAYARLMADKRFILPALSMSLLLSGLFASFAAAPAILMKGIGLTSVQAGLYFASTVFVVFAAGMAAPRLAHRYGTRTIALLGIACAMLGGGLLVVGPADPGLGWYAVSMVTFLWGMGLANPLGTAITMGPFGKEAGMASALLGFLSMGAAALTTWLASVLSFSPITTLGAIQALTCLIALLLFFLRRPGPT0029005_2211DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029005-bcr|tcaB-K07552NANA
D1-35_048001287fabF_4COG03043-oxoacyl-[acyl-carrier-protein] synthase 2ATGAAAAATCACCAAGGTCTGAAACGAATCGTCGTCACCGGTGTGGGCATGGTCGGGCCGCTGGGTTGCGTCGTGGATGAGGTGTGGCAGCGATTGCTGGCCGGGCATTCCGGCATACGCAATCTGTCCGTCGACGTCACCGAAGGCACCGGCGTCGCGGTGGGTGGGCAGGTGCCGACCTTTGAAGAGGACGGCGTTGCCGGCTACGACCCGGAGCGCCTCATCGCGCCCAAGGATCGCAAGAAGATGGACCGCTTCATCGAGTTCGCCCTGGTGGCCGCTCACGAAGCCCTGGAGCAGGCCGGCTGGCATCCCGTCGAGGCCATCGATCAGGAGCGGACCGCCACGATCATTTCCTCGGGCGTGGGTGGTTTCGCCACGATTGCCGATGCCGTGCGCACCACGGACAGTCGTGGCCCGCGTCGTTTGTCGCCGTTCACCGCGCCGGCTTTCCTGGCCAACATGGCGGCCGGGCAGGTGTCGATCCGGCATGCGTTCAAAGGGCCGCTGGGCGCACCCGTCACGGCTTGCGCCGCCGGTGTGCAGGCCATCGGCGATGCGGCCAGGCTGATCAGGAGTGGCGAGGCGGATATTGCCATCTGCGGCGGCACCGAGGCGGCGATAGACCGCGTGACCCTGGGTTGTTTCGCGGCGGCTCGCGCACTGTCCACCGGCTTCGCGGAGCGCCCGCAAGAGGCCTCGCGGCCGTTTGATCGTGATCGCGACGGTTTTGTCATGGCCGAAGGCGCCGGTTTGCTGGTGATCGAATCGCTGGAACACGCCCTGGCACGTGGGGCCAAGCCCCTGGCCGAGCTGGTCGGTTATGGCACCAGCGCCGACGCCTATCACCTGACCGCAGGGCCGGAGGATGGCAACGGTGCCCGCCGCGCCATGGAACAGGCGCTGCGCCAGGCCGGTATCAGCCCCGCCGAGGTGCAGCACATCAATGCTCACGCGACCTCCACCCAGGTTGGCGACGCGGGAGAGCTGGCGGCGATTCGCGCGGTGTTCGGCGTGGACTCCGGTGTGGCGATCACCTCGACAAAATCCGCCACCGGGCATCTGTTGGGCGCCGCCGGGGGCATCGAAGCCATCTTCACCGTGCTCGCGCTTCGTGACCAGATCGTGCCGCCGACGCTGAATTTGCTTCATCCGGATGAGACGGCCAGCGGGCTCGATCTGGTTGGCCTGAAGTCGCGGAAGATGCCAATCACCCACGCGCTGTCGAATGGGTTCGGCTTTGGTGGCGTCAACGCCAGCGTGCTGTTCCGTCGCTGGGAAGACTGAMKNHQGLKRIVVTGVGMVGPLGCVVDEVWQRLLAGHSGIRNLSVDVTEGTGVAVGGQVPTFEEDGVAGYDPERLIAPKDRKKMDRFIEFALVAAHEALEQAGWHPVEAIDQERTATIISSGVGGFATIADAVRTTDSRGPRRLSPFTAPAFLANMAAGQVSIRHAFKGPLGAPVTACAAGVQAIGDAARLIRSGEADIAICGGTEAAIDRVTLGCFAAARALSTGFAERPQEASRPFDRDRDGFVMAEGAGLLVIESLEHALARGAKPLAELVGYGTSADAYHLTAGPEDGNGARRAMEQALRQAGISPAEVQHINAHATSTQVGDAGELAAIRAVFGVDSGVAITSTKSATGHLLGAAGGIEAIFTVLALRDQIVPPTLNLLHPDETASGLDLVGLKSRKMPITHALSNGFGFGGVNASVLFRRWEDPGPT0008360_1439DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008360-fabF-K09458NANA
D1-35_048013063cnrANickel and cobalt resistance protein CnrAATGAGCTTCAATCTCTCGGCGCTCGCCGTTCGCGAGCGCTCGATCACGGTGTTCCTGTTGTTCCTGATTGCTGTCGCGGGTGTCCTGGCGTTCTTCCAGCTGGGCCGCGCGGAAGATCCGCCGTTCACCGTCAAGCAACTTACCGTCATCACCGCCTGGCCAGGGGCGACGGCCCAGGAGATGCAGGACCAGGTCGCCGAGCCGCTGGAAAAACGCCTGCAGGAATTGAAGTGGTACGACCGCACGGAAACCTATACGCGCCCGGGGCTCGCGTTCACCATGGTGTCGCTGGTCGACCGCACGCCGCCGTCCGAGGTCCAGGAGGAGTTCTACCAGGCGCGCAAGAAGCTCGCTGACGAAGCCATCAAGCTGCCGGCCGGTGTCATCGGGCCGATGGTCAACGACGAGTTTTCCGACGTGACCTTTGCACTGTTCGCCCTGAAAGCCAAAGGCGAGCCGCAGCGATTGCTGGTGCGTGACGCCGAGGCGTTGCGCCAACGGCTGCTGCACGTGCCGGGCGTAAAAAAGGTCAACATCATTGGCGAGCAGGCCGAACGGATTTTTGTGTCCTTTTCCCATGATCGGTTGGCGACCCTGGGGGTTTCGCCGCAGGAAATCTTTGCCGCCCTCAACGGCCAGAACATGCTCACGCCAGCAGGGTCGATCGAAACCGTCGGGCCGCAGGTCTTCCTGCGCCTGGACGGCGCCTTCGACAAGTTGCAGAAGATTCGCGATACACCGGTGGTAGTACAAGGTCGCTCGCTGAAACTGTCGGACGTGGCGACCGTCGAGCGCGGCTACGAAGACCCGGCCGCATTTCTGGTGCGCAACGGCGGCGAAGAGGCGCTGTTGCTGGGCGTGATCATGCGCGAGGGCTGGAACGGCCTCGACCTGGGCAAAGCGCTGGATGTGGAAACCAGCAATATCAATGCGGGCATGCCACTGGGCATGACGCTGACCAAGGTCACCGACCAATCGGTGAACATCGACTCGGCCGTCGGCGAGTTCATGGTCAAGTTCTTCGTCGCGCTGCTGGTGGTGATGCTTGTCTGCTTCCTGAGCATGGGCTGGCGCGTCGGGGTGGTGGTCGCGGCAGCGGTGCCGCTGACCCTGGCGGTGGTGTTCGTGGTGATGGCCGCCACCGGCAAGAACTTCGACCGCATTACCTTGGGGTCGCTGATCCTGGCGCTCGGGCTGCTGGTGGATGACGCCATCATTGCCATTGAAATGATGGTGGTGAAGATGGAGGAGGGCTACGACCGGATCAAGGCCTCCGCCTATGCCTGGAGCCACACGGCCGCGCCGATGCTTTCCGGCACCCTGGTGACCGCCATCGGCTTCATGCCCAATGGCTTCGCCCAATCGACCGCCGGCGAGTACACCAGCAACATGTTCTGGATCGTCGGCATTGCGCTGATCGCTTCCTGGGTGGTCGCGGTGGCGTTCACGCCGTACCTGGGTGTCAAGCTGTTGCCCGACATCAAGCAGGTCGAGGGTGGTCACGCGGCCATCTATAACACCCGTCATTACAACCGCTTCCGCCAGATACTGACCCGCGTCATCGCACGCAAGTGGTGGGTGGCCGGGACGGTGATCGCAACGTTCTTCGTGGCGATTGTGGGCATGGGCCTGGTGAAGAAGCAGTTCTTCCCGACCTCGGACCGGCCAGAGGTGCTGGTGGAAGTGCAGATGCCTTATGGCACCTCCATCGAGCAGACCAGCGCCACCACCGCCAAGGTCGAAGCCTGGCTGCAAGAGCAGGAAGAGGCGAAGATCGTCACCGCCTATATCGGTCAAGGCGCGCCGCGTTTCTACCTGGCGATGGCGCCGGAACTCCCCGACCCGTCCTTCGCCAAGATTGTGGTCCTGACCGACAGCCAGGAGGCGCGCGAAGCCCTCAAGTTCCGTCTGCGTGAAGCGGTCGCCGAAGGGCTTGCCCCAGAGGCGCGGGTACGGGTGACCCAACTGGTGTTTGGCCCTTACTCGCCGTTCCCCGTGGCCTATCGGGTGATGGGGCCGGATCCGGCGAAACTGCGCGAGATCGCCAGCCAGGTTGAAGGCATCATGCAGGCTAGCCCGCTGATGAGGACCGTTAACGCCGATTGGGGTCCGCTGGTGCCGACGCTGCATTTCAACCTCGACCAGGACCGCTTGCAGGCGGTGGGGCTGACGTCCAGCGCAGTCGCCCAGCAACTGCAGTTCCTGCTCACGGGCGTGCCGATAACGGCGGTCCGCGAGGACATCCGCTCGGTGCAGGTGGTCGGCCGCGCTGCCGGCGATATCCGCCTCGACCCCGCGAAAATAGACGGCTTTACCCTGGTGGGCGCGACGGGCCAGCGGATTCCGCTGTCCCAGGTGGGCGAAGTCGATGTGCGCATGGAGGACCCGATCCTGCGCCGACGTGACCGCACGCCGACCATGACCGTGCGCGGCGACATCGCCGAAGGCCTGCAACCTCCGGATGTCTCCAGCGCAATCATCAAGCAGCTGCAACCTGTGATCGACAGATTGCCCAGCGGCTACCGGATCGAGCAGGCGGGCGCGATCGAGGAGTCGGGCAAGGCCGGCAAGGCCATCGTGCCGCTGGTGCCGATCATGGTCGCCATGACGCTGCTGATCATCATCCTGCAAGTGCGTTCGGTCTCGGCGATGATCATGGTTTTCCTTACCGCACCGCTGGGCTTGATTGGCGTGGTGCCGACGCTGCTGATCTTCAATCAGCCGTTCGGCATCAACGCGCTGGTCGGGCTGATCGCGCTGTCGGGCATCCTGATGCGCAATACGTTGATCCTGATCGGGCAGATCCATCACAACGCCAATGAAGGCCTGGATCCGTTCCACGCGGTGATCGAAGCCACGGTGCAGCGAGCCAGGCCGGTGCTGCTCACGGCGCTGGCGGCGATCCTGGCGTTCATTCCGCTGACCCATTCGGTGTTCTGGGGAACGCTGGCCTACACCCTGATCGGTGGCACGTTCGTCGGCACCATCATGACGCTGGTATTCCTGCCGGCGATGTATTCCATCTGGTTCAAGATCCGTCCCGAGACGAAGAGGGCAGCATGAMSFNLSALAVRERSITVFLLFLIAVAGVLAFFQLGRAEDPPFTVKQLTVITAWPGATAQEMQDQVAEPLEKRLQELKWYDRTETYTRPGLAFTMVSLVDRTPPSEVQEEFYQARKKLADEAIKLPAGVIGPMVNDEFSDVTFALFALKAKGEPQRLLVRDAEALRQRLLHVPGVKKVNIIGEQAERIFVSFSHDRLATLGVSPQEIFAALNGQNMLTPAGSIETVGPQVFLRLDGAFDKLQKIRDTPVVVQGRSLKLSDVATVERGYEDPAAFLVRNGGEEALLLGVIMREGWNGLDLGKALDVETSNINAGMPLGMTLTKVTDQSVNIDSAVGEFMVKFFVALLVVMLVCFLSMGWRVGVVVAAAVPLTLAVVFVVMAATGKNFDRITLGSLILALGLLVDDAIIAIEMMVVKMEEGYDRIKASAYAWSHTAAPMLSGTLVTAIGFMPNGFAQSTAGEYTSNMFWIVGIALIASWVVAVAFTPYLGVKLLPDIKQVEGGHAAIYNTRHYNRFRQILTRVIARKWWVAGTVIATFFVAIVGMGLVKKQFFPTSDRPEVLVEVQMPYGTSIEQTSATTAKVEAWLQEQEEAKIVTAYIGQGAPRFYLAMAPELPDPSFAKIVVLTDSQEAREALKFRLREAVAEGLAPEARVRVTQLVFGPYSPFPVAYRVMGPDPAKLREIASQVEGIMQASPLMRTVNADWGPLVPTLHFNLDQDRLQAVGLTSSAVAQQLQFLLTGVPITAVREDIRSVQVVGRAAGDIRLDPAKIDGFTLVGATGQRIPLSQVGEVDVRMEDPILRRRDRTPTMTVRGDIAEGLQPPDVSSAIIKQLQPVIDRLPSGYRIEQAGAIEESGKAGKAIVPLVPIMVAMTLLIIILQVRSVSAMIMVFLTAPLGLIGVVPTLLIFNQPFGINALVGLIALSGILMRNTLILIGQIHHNANEGLDPFHAVIEATVQRARPVLLTALAAILAFIPLTHSVFWGTLAYTLIGGTFVGTIMTLVFLPAMYSIWFKIRPETKRAAPGPT0028890_426DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexJK-OprM,PGPT0028890-mexK-K18303NANA
D1-35_048021110mdtA_5Multidrug resistance protein MdtAATGCTCCGGCGCCGACCTGTCACCATTGCCGCTTGCTTGTTGCCGCTCGTCCTGACGGCGTGCGGCGAGTCCTCCACCACCAAGGATCCGCGCACGCTGGCGCCGTTGGTGCGGGTGTCCGAGGTATCGGCGGCGTCCGATACCTCTCGCGCCTTCACCGGCGTGGTGACCGCCCGCGTCCAGAGCGATTTGGGTTTCCGGGTCTCGGGCAAGGTGCTCGAACGTCTGGTCGACACTGGCCAGACCGTCAAGCGGGGCCAGCCACTCATGCGCCTCGATCCCATCGACCTCGGCTTGCAGGCACGCGCGCAGCAGGAGGCCGTCGCCGCGGCCCGGGCGCGGGCCCGGCAGACCGCGGATGACGAGGCGCGGTATCGCGACCTGGTCGCTGCGGGCGCTGTTTCCGCCTCGGGCTACGACCAGATCAAGGCCGCCGCCGACACCGCGAAAGCGCAACTCAGCGCCGCCCAGGCGCAGGCTGACGTAGCGCGCAATGCCTCCGGCTATGCGGTGCTGCTGGCCGACGCCGATGGCGTGGTGATGGAGACCCTGGCCGAGCCCGGACAAGTCGTCACCCCTGGCCAAATCGTCGTCCGGCTGGCGCGTGCAGGCCAGCGCGAAGCTGCTGTGCAGTTGCCCGAGACCCTGCGGCCGGCCCCCGGCGCAACCGCGCAGGCGACGCTTTATGGCAACGCCGCCGCGACGGTTAACGCCAAGCTCAGGTGGCTGTCGGATTCCGCCGATCGGGTGACACGCACCTTCGAGGCACGTTATGTGTTGGAGGGCGCGCTGGCCAATGCCCCGCTGGGTTCGACGGTGACGCTGCGGATCAGTCCGGGCACCCGGTTGGGGCAGGCGCTGCAAGTGCCGATCGCCGCGCTGCACGACTCGGGCAAAGGTGCCGGCGTCTGGGTGATCGCCGGTGAACCGGCAAAAGTTTCCTGGCGTCCGGTCCAGCTACTGGGCCTGAGCGACGACACTGCGCAAGTCTCGGGCGAGCTGAACGTCGGCGAGCGGATCGTCGCGCTTGGCGCGCATCTGCTACGCGATGGTGAAGAGGTGAGGCTGGCTCAACCGGGCGATGTGCAGGTTGCGGAGAATCGCCCATGAMLRRRPVTIAACLLPLVLTACGESSTTKDPRTLAPLVRVSEVSAASDTSRAFTGVVTARVQSDLGFRVSGKVLERLVDTGQTVKRGQPLMRLDPIDLGLQARAQQEAVAAARARARQTADDEARYRDLVAAGAVSASGYDQIKAAADTAKAQLSAAQAQADVARNASGYAVLLADADGVVMETLAEPGQVVTPGQIVVRLARAGQREAAVQLPETLRPAPGATAQATLYGNAAATVNAKLRWLSDSADRVTRTFEARYVLEGALANAPLGSTVTLRISPGTRLGQALQVPIAALHDSGKGAGVWVIAGEPAKVSWRPVQLLGLSDDTAQVSGELNVGERIVALGAHLLRDGEEVRLAQPGDVQVAENRPNANANANANA
D1-35_048031461oprMCOG1538Outer membrane protein OprMATGCCTCCCCTGCGCCCCATTGCTCTTCTAATGAGTGCCAGCCTCATGGCAGGTTGCGCGGTCGGCCCGGATTACCAACGTGCCGCCGCGCCGCTTTCGAGCCGGTACCTGGGCCAGCCTGCGGTCGAACAGCGCTCCACGGCCGCACCGACCCTGCTGGTCAACTGGTGGGAAGGCTTCGCTGATCCCACCCTCACCGCCTTCATCCAACAAGCCCTGGAACAGAACCTGGACCTGGCGCAGGCGTCGGCGCGCGTCACCCAGGCACGGGCCGGCCTGGGCGCGGCCAACGCCGCTTTGCTGCCCTCGGGCAACATCAGTGGCCAGGCCGCGCGCTCATACCAATCGGTCGAGACCCCGCTCGGCCAGGTGCTGGACTCGACGCCCGGCTACGACCGATACGGAAACTTCTACGAGCTCAACCTTGGTGCCAGCTGGGAGATAGATGCCTTTGGCGGCCTGCGCCGCGGGCGCGAGGCGGCGTTGGCCGAATACCAGGCGTCGGAGGCCGGTGCCGTCGCCACGCGCCTGGCCGTTGCCGCGCAGGTCGCCGACGTCTACATCACCGTGCGGGGTTTACAGACCCGGCTGGACATCGCGAACCGCCAGGCGCGGACGCAGCAGGACCTGCTGGAAAAAGTCCGATTGCTCTACAGCAAAGGCCTGGCCGCCAACTATCAGGTCCGCCAGACCGAGGGACAATTGTCAGAGGTACAGGCCACCGTGCCGGTCTTGCAAGCCGGGTTGGACGCGGCCATGAATGCGCTGGATGTGATGCTCGGCACGCCACCTGGCACCCATCGCCCGCAATTGGCTCAGGTGGGCGATATTCCTCTCGCCCCACCGATGGCGACGACAGGAACCCCTGCGGACCTGCTTCGACGTCGACCTGACCTCATCGTCGCCGAGCGCCGCCTGGCAGCCTCCAACGCACGCATCGGCGAGGCCGTCGCCGAGTATTATCCGAAATTCTCCCTCAGCGCCTTGCTCGGCAGTGCCACGGCGGTGTCCGGCGGCAATCTTTTCAGCGGCGGGGCCAGCCAGTCGGCGGGTGTGCTGGGGCTGCGCTGGAGGCTCTTCGATTTCGCCCGCATCAACGCGCAGATCGAACAGGCCAAGGGCCAGGAAGCCGAAGCACTGGCGGCTTATCGCCAGTCGGTGTTGCGCGCCACCGAGGAGGTTGAAAACGCCCTCAGCGCCCTGGTGAACCGCGAAGCCCAGGCGACGACTCTTGCTCAAGGGGAAACGTCGCTGACCCAGGCTCGCCAATCGACATTTGTCGCCTACCGCAAAGGTACGGCCAGCCTGATCGATGTGCTCAATGCCGACGAGACGCTGCTGCGCACGTCCGACACCCGAGCGCAGGCGCGAACGGAATCGGCACGGGCGGCAGTCGCGGCTTTCCGGGCGCTCGGCGGTGGCTGGCAACCGCCCGAGGAAGCGCCCGTGGCAACCCGGTGAMPPLRPIALLMSASLMAGCAVGPDYQRAAAPLSSRYLGQPAVEQRSTAAPTLLVNWWEGFADPTLTAFIQQALEQNLDLAQASARVTQARAGLGAANAALLPSGNISGQAARSYQSVETPLGQVLDSTPGYDRYGNFYELNLGASWEIDAFGGLRRGREAALAEYQASEAGAVATRLAVAAQVADVYITVRGLQTRLDIANRQARTQQDLLEKVRLLYSKGLAANYQVRQTEGQLSEVQATVPVLQAGLDAAMNALDVMLGTPPGTHRPQLAQVGDIPLAPPMATTGTPADLLRRRPDLIVAERRLAASNARIGEAVAEYYPKFSLSALLGSATAVSGGNLFSGGASQSAGVLGLRWRLFDFARINAQIEQAKGQEAEALAAYRQSVLRATEEVENALSALVNREAQATTLAQGETSLTQARQSTFVAYRKGTASLIDVLNADETLLRTSDTRAQARTESARAAVAAFRALGGGWQPPEEAPVATRNANANANANA
D1-35_04804621hypothetical proteinATGAACCAGCCATCCATTACCTCACCCAGCGCCCGCGGCCCCGTTGATCACGAAATTCGCGATCAGATTGTCGCGGCCGCCAATGAACACTTCAGCCAGTACGGTTATGGCAAGACCACGGTTTCCGACCTGGCCAAGGCCATCGGTTTTTCCAAGGCGTACATCTATAAATTCTTCGATTCCAAGCAGGCGATCGGCGAGGCTATCTGCGCCAATTGCCTGTCGAAAATCGTTGCTGCCGTCGAAGCAGCCATCCAGGAAGAAGGGCTGTCGGCGACGGAGCGTTTCCGGCGATTGGTCAAGACCGTGATCGCGACGGGCGTGGACCTGTTCTTCAATGAGCGCAAGCTCTACGACATCGCCGCGTTCTCGGCCTCGGAGCGCTGGCCCAGTTCACAAATCTACAACGAGCAGATCAAGAGCTTCGTGCTGCAGATCGTCCGGGAAGGTCGTGAGCTCGGCGAGTTTGAGCGCAAGACGCCGCTGGACGAGACCGTCGAAGCCATTCACCTGGCGCTGCGGCCGTTCGTCAATCCGTTGCTGCTGCAGTACAACCTCGATTTCGTCGAGGAAGCGCCCACGCTCACTTCCAACCTGATCCTGCGCAGTCTTATGCCCTGAMNQPSITSPSARGPVDHEIRDQIVAAANEHFSQYGYGKTTVSDLAKAIGFSKAYIYKFFDSKQAIGEAICANCLSKIVAAVEAAIQEEGLSATERFRRLVKTVIATGVDLFFNERKLYDIAAFSASERWPSSQIYNEQIKSFVLQIVREGRELGEFERKTPLDETVEAIHLALRPFVNPLLLQYNLDFVEEAPTLTSNLILRSLMPNANANANANA
D1-35_04805957ilvA_3COG1171L-threonine dehydratase biosynthetic IlvAATGTACACACTGACGCTCGACGAGATTGAACAAGCGGCTCGGCAGGTCTATCAAGTCATGCCCGCCACCGCCCAGTACGCCTGGCCCTTGTTGGCGCAGCGGCTGGGATGCACGGTGTGGGTCAAGCACGAAAACCATACCCCCACCGGGGCTTTCAAGGTGCGTGGCGGCATTACCTTCATGCATTGGCTCAAGCGTGAGCACCCGCAAGCAAAGGGGATCGTCACCGCCACCCGTGGCAACCACGGCCAGAGCCTGGCGCTGTCGGCCAGCGCCTCGGGGCTGAAGGCGTTGATTGTCGTGCCGGAGGGTAACTCGATCGAAAAGAACAACGCCATGCGCGGCTTCGGCGGCGAAGTGATCGAATACGGCCGCGATTTCGATGAGGCCCGGGAGGAGGCGGCACGCCTGGCGCAAGCGCAGGGCCTGTTTCTCGTGCCGCCGTTTCATACCGAGCTGGTCAAGGGCGTCGCCACCTATGCCCTTGAGCTGTTCAAGGCTGTGCCCGACCTGGACACCGTCTACGTACCCATCGGCTGTGGCTCGGGGATTTGCGCAGTGATTGCCGCGCGCGATGCCCTGGGCTTGCAGACCCGGATCGTGGGGGTGGTCTCCACCGAGGCAACGGCTGCAAAAATGTCATTTGAAACCGGAGAAATCTGCGAAACCGCTTCGGCCAACACCTTCGCCGACGGCCTTGCCGTGCGCAGGCCGATTCCCGAAGCCTTGGCCATCTACCGCGCCGCGGCGGCGCGGATCGTGGCGGTCAGTGACCAGGAGATTGCCGAGGCCATGCGCGTCTATTACACCGACACCCATAACCTCGCCGAAGGTGCTGGCGCTGCGGCACTGGCAGGGTTGATCCAGGAGCGTGGGTTGATGGAGGGAAAAAAGGTCGGGGTGGTGCTGTCCGGGGGCAATGTCGACAGGGCGGTGTATGCCGATGTGATTGGCTGAMYTLTLDEIEQAARQVYQVMPATAQYAWPLLAQRLGCTVWVKHENHTPTGAFKVRGGITFMHWLKREHPQAKGIVTATRGNHGQSLALSASASGLKALIVVPEGNSIEKNNAMRGFGGEVIEYGRDFDEAREEAARLAQAQGLFLVPPFHTELVKGVATYALELFKAVPDLDTVYVPIGCGSGICAVIAARDALGLQTRIVGVVSTEATAAKMSFETGEICETASANTFADGLAVRRPIPEALAIYRAAAARIVAVSDQEIAEAMRVYYTDTHNLAEGAGAAALAGLIQERGLMEGKKVGVVLSGGNVDRAVYADVIGPGPT0001960_6657DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_THREONINE_DEGRADATION,PGPT0001960-ilvA|tdcB-K01754NANA
D1-35_04806822rhaS_14HTH-type transcriptional activator RhaSATGGACACCATGAGCCATCGCAACCGCCCACAGCCGCCGCGCAAGACTGAATCGACCCGTCGCATCGAGGCAGGGCCGTGGGCGATCGAATTGCTCCCCGGCTGCGCCTATGCAGCGCGTTACATCGCGAGCCAGTCGGCGATCGGTTTTGCGTTCGACAGCCAGCGCGGTTTGCATGCGATCGGCAGCGACCGGGTGCAGCCCTTCAATGCGCTGCCCAACGGGCTGGCGTTCGTCCCGGCCCAGTGCGACGTGTATTCGCAGTCACCTCATGGCGGCGAATACCTGCGCCTGATACGCACCGATGGGTTCGTGCTTGAAGGCGATCACCCCTTCAACAATCGCATCGACCTTCGGGCCATTGCGCTCGCGCAGCGCATGCGTCGCGCGCTCCTGCACGGTTCGATCGACGACGATTGGGAGGCTTGGGCCCTGGCACTGGCCGAATGCGCGGCAGCGGAAAACTCCAAGTCGGCAAGGCCCCAAGGTTCCCTCACCGACAGCCGGATGCGCTTGCTGGATGAATTCATCGACGCAGGCCTCGATCAGCCATTGGCCGTACCGGCGATGGCGCAGCTGCTGGGGCTGTCCGAGGGCTACTTCATGCGTGCGTTCAAGGCCGCGACAGGCAAGAGCCCCCATGGCTACCTCATCGACCGACGCCTCGCCAGGGCCCGGGCGCTGATACGCGATTCCTCGGCCACACTGCCAGAAATCGCCCTCGCCTGCGGTTTCAGCTCACAAGCGCACATGACAACGACGTTCAAGCAGCGCCTTGGTGTGAGTCCGGCGCAATTGCGTCAAATGACGAAGTGCATTTGAMDTMSHRNRPQPPRKTESTRRIEAGPWAIELLPGCAYAARYIASQSAIGFAFDSQRGLHAIGSDRVQPFNALPNGLAFVPAQCDVYSQSPHGGEYLRLIRTDGFVLEGDHPFNNRIDLRAIALAQRMRRALLHGSIDDDWEAWALALAECAAAENSKSARPQGSLTDSRMRLLDEFIDAGLDQPLAVPAMAQLLGLSEGYFMRAFKAATGKSPHGYLIDRRLARARALIRDSSATLPEIALACGFSSQAHMTTTFKQRLGVSPAQLRQMTKCINANANANANA
D1-35_048071011cheB_7Protein-glutamate methylesterase/protein-glutamine glutaminaseTTGGGTGCGCCTGTGTCGCTGATCCCCCTGGTTGTGTGCGACGACTCCACCATGGCGCGCAAGCAGGTGTTGCGTGCGCTGCCGCAAGATTGGCCGGTTTCAGTCACCGAGGCGGTCAACGGTCGCCAGGCGATGGATGCCATACGCCAGGGCCTTGGTCACGTGGTGCTGCTCGACCTGACCATGCCGGAGATGGATGGTTATCAGGTACTGAGTGCCTTGCGCGCCGAGGGCTTGAAAGCGCAGGTCATTGTGATTTCCGGCGACGTCCAGGATGAAGCGGTACGCCGGGTGCATGAACTGGGCGCGCTGGCGTTCCTGAAAAAACCTTTCGACGAAAACCAGTTGCGCCAGACACTCACCGGGCTGGGTCTACTGACTCAACCCGGCAAGGCTCCGCTGCAAAATCGACCGGCACCGAACGCGGCCATCAGTTTCCAGGATGCGTTCCGCGAGACAGTCAACGTTGCCATCGGCCAGGCCGCGGCGCTGATTGCCAAGGTCCTGGGCGTCTTCGTGCAATTGCCGGTGCCGAACGTGAACATCCTCGAAGTCGGGGAACTGCACATGGCGCTGAACGACGTCGGCAGCTCCCAGCAACTCACGGCCATCTGCCAAGGCTTTATCGGCAGCGGCATCGCCGGCGAAGCACTGCTGATATTCCATGACTCGGAGATCGCCGACATCGGGCAACTGATGCAGCGCGAGAGCGCCGACTATTCGGACCTGGAGATGCTGGTGGACCTTTCCAGCATCCTGATCGGTGCTTGCCTGAGCAGCATCGCCGAACAGATCGACGTGATTTTTTCCCAGGGGCATCCGCAGATCCTGGGTCAGCATGCAGCAATCGATGAATTGATCCGCGCCAACCGCGTCCACTGGAAAAAGACCCTGGCGGTGGAAATCAGCTATGGCCTGGAAGGCCAGGATATCCGCTTCGACCTGTTGCTGCTGTTCACGGAAGACTCTATCGAGCGGCTTACCCACAAACTCGCCTACCTGATGAACTGAMGAPVSLIPLVVCDDSTMARKQVLRALPQDWPVSVTEAVNGRQAMDAIRQGLGHVVLLDLTMPEMDGYQVLSALRAEGLKAQVIVISGDVQDEAVRRVHELGALAFLKKPFDENQLRQTLTGLGLLTQPGKAPLQNRPAPNAAISFQDAFRETVNVAIGQAAALIAKVLGVFVQLPVPNVNILEVGELHMALNDVGSSQQLTAICQGFIGSGIAGEALLIFHDSEIADIGQLMQRESADYSDLEMLVDLSSILIGACLSSIAEQIDVIFSQGHPQILGQHAAIDELIRANRVHWKKTLAVEISYGLEGQDIRFDLLLLFTEDSIERLTHKLAYLMNNANANANANA
D1-35_04808957hypothetical proteinATGAGCGAATCCATCGATCTGAACGAATTCCACTGGTTGCTGGCCATCGTTCAGAGCATCGACGTCGGCGTGGTGGTACTTGACCGCGAATACCGCGTACAGGTCTGGAACACCTTCATGGAGAACCGCTCCGGCGTGCAGCCCAAGGATGCCCAGAACCGCAACTTCTTCAGTCTGTTTCCTGAGATCGATCGCCCCTGGTTCAGCCGCAAGGTCGAGAGCGTCGCGACCCTCGGCACGCCGGCATTCACGGTCTGGGAGCAGCGCCCGTACCTGATGCGGTTCAAGAGCTACCAGCCGATCACCGGCCAGGAAGAGTTCATGTACCAGAACACCACGCTGCTGCCGCTGCGCTCGCCCGACAACCGGATCAATCACATCTGCCTGGTGATCTACGACGTCACTGACGTCGCCACCAACCGCCATCAGATCCAGGCCGCCAACGCACAGTTGCAACTGCTGTCCAGCACCGATCGCCTGACCGGCCTGTACAACCGTGGTCATTGGGAAGCCAGCCTGAAAGCCGCCTACGCCCGCCATCAACGCTACGGCAATGCGCTGAGCCTGGTGATGCTCGACATCGATCACTTCAAGCGGGTCAACGACACCTACGGTCATCAGGCCGGCGACAAGGTCATCGAGCAAGTCGCCCGACTGTTACACGAGCATGTGCGCGAATCCGACGTCGCCGGGCGTTACGGCGGCGAAGAGTTCGGCGTGGTGCTATCGGATACCGACTCGGCCGGCGGGCAGATTTTCGCCGAGCGCCTGCGCAAGGCAGTTGAAGAGTCGCTGGTGCAGTACAACGGCCAGGACATCCGCTTCACCGTCAGCCTGGGCGTGGCCGACCTGAGCCAGCCCGCCAACGACCACGCCGAACTGATCGCCAGGGCCGACCAGGCGTTGTACACGTCGAAAAAGACCGGACGCAATCGCGTGACGGTTCACGGGCACTGAMSESIDLNEFHWLLAIVQSIDVGVVVLDREYRVQVWNTFMENRSGVQPKDAQNRNFFSLFPEIDRPWFSRKVESVATLGTPAFTVWEQRPYLMRFKSYQPITGQEEFMYQNTTLLPLRSPDNRINHICLVIYDVTDVATNRHQIQAANAQLQLLSSTDRLTGLYNRGHWEASLKAAYARHQRYGNALSLVMLDIDHFKRVNDTYGHQAGDKVIEQVARLLHEHVRESDVAGRYGGEEFGVVLSDTDSAGGQIFAERLRKAVEESLVQYNGQDIRFTVSLGVADLSQPANDHAELIARADQALYTSKKTGRNRVTVHGHPGPT0026210_474DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-CELLULOSE_METABOLISMCE-EPS-CELLULOSE_BIOSYNTHESIS,PGPT0026210-adrA-K18968NANA
D1-35_048091011lgoDCOG1063L-galactonate-5-dehydrogenaseATGCTGACTGTCGTCTGTAACGAACCCGGCTCGCTAACCGCCATCGAACGTGAAATGCCCGTCAGGAAACCGCGAGAGGTCCTGATTCGAGTCAAGCGTGTCGGCGTCTGCGGCACCGATCTGCATATTTTCAGCGGCAACCAGCCCTTCCTCGAGTACCCGCGCGTCATGGGTCATGAGTTCTCCGGAATCGTCGAAGCCAGCGACGCCTCCAGCGACCTGGCTGTCGGTGATGTCGTCTACGTGATGCCCTATCTCTCCTGCGGCACTTGCGTTGCCTGCCGTCAAGGCAAGACCAACTGCTGCACCCGCATCCAGGTTCTGGGCGTCCATTGCGACGGCGCCTTCACTCAATACCTGAGCGTTCCCCAGGAGTTCGTGCACAAGGCCGTCGGGGTTTCCCTGGACCAGGCGGCGATGATCGAATTTCTCTCCATCGGAGCCCACGCCGTACGTCGCTCGAACGTCCAGGCAGACAAACACGCCCTGGTGGTCGGCACCGGCCCGATCGGCATGGCGGCGGCGATCTTTGCGAGCCTGCGCGGGGCGAAAGTCACCGTACTGGATACGCGCCAGGATCGCCTGGCGTTCTGCAAGGAACATCTGGATATCCACGCGGCCGTGCACATCGGCGAAGGCGACAAGCAGGCCTTGGCCGAACTGACCGGGGACGACTTTTTCGACGTGGTATTCGATGCCACCGGCAACGCCCGGGCGATGGAGCGCGGATTCGAATTCATCGCCCACGGTGGCACCTACGTGATGATCTCGGTGGTACGGGACTCGATTACTTTCTCCGATCCTGAATTTCACAAGCGTGAAGCCACGCTGATGGGCAGCCGCAACGCCACCCGGGAAGATTTCCAGTATGTCGAGCAATGTTTGCGCGAGGGCTTGATTCCCGATGCAGCCCTGAACACCCATCGGTTGCTGCTGAGCGACGTGGCCCGCTCCTTCTCCACATTGCTCGACCCCAACCAGGGTGTGGTCAAGGCGATCATCGAGTGCTAGMLTVVCNEPGSLTAIEREMPVRKPREVLIRVKRVGVCGTDLHIFSGNQPFLEYPRVMGHEFSGIVEASDASSDLAVGDVVYVMPYLSCGTCVACRQGKTNCCTRIQVLGVHCDGAFTQYLSVPQEFVHKAVGVSLDQAAMIEFLSIGAHAVRRSNVQADKHALVVGTGPIGMAAAIFASLRGAKVTVLDTRQDRLAFCKEHLDIHAAVHIGEGDKQALAELTGDDFFDVVFDATGNARAMERGFEFIAHGGTYVMISVVRDSITFSDPEFHKREATLMGSRNATREDFQYVEQCLREGLIPDAALNTHRLLLSDVARSFSTLLDPNQGVVKAIIECPGPT0018195_116DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTONATE_DEGRADATION,PGPT0018195-lgoD-K23007NANA
D1-35_048101530garD_2COG2721Galactarate dehydratase (L-threo-forming)ATGAACCTGCCTGCTTCCATCTTGCTTGTCCTGGCGTCCGGTGACGATGTTGCCGTAGCCCGGGGCGACATTCCCGAAGGTCAAAGCCTCAGCGCCGATGGCATCACGCTGACCGCCCGACAACCGATTCCATCCGGTCACAAGATCGCCCTGCGCCCGGTGTCGGCCGGCCATCGGGTACTTAAATACGGGCAGACTATCGGCCAGGCAACTCGAGACATAGAGCCCGGCGATCACGTCCACGTGCACAACCTGGACATGTCTGCGACCAATGCCGAACACAGCGTGCGGAACGTCTATGTGCCCACATTGCCGAGCGCTCACCCCGCTACGTTCGAAGGTTATCTGCGTGACGATGGACGCGTCGGGACGCGCAACTACATTGGCGTGATTTCCAGCGTCAACTGCTCGGCGACCGTCTGCAAGCACATCGCCAAGGCCTTTTCCTCCGAGCGGCTGAAAGACTTCCCCAACGTCGACGGCGTCGTCGCAATCACCCATGGCAGTGGCTGTGGCATGGGGGCCAAGGGTGAAGGCATCGACATCCTCAAGCGCACCTTGCGTGGGTATGCCGATCACGCCAATTTCGCCGGGGTGCTGTTGATCGGCCTCGGTTGCGAGGTCAACCAACTCACCCCGCTCATGGATGAGCTGGGCGATCGCCGCGCTGCACTCAAGGCCAGCCTGATCATTCAGGACGAAGGCGGCACCCGCGAAGCCGTGCAACGCGGTATTGCCGCGATTGAAGCGATGCTGCCCATCGTCAACCAATGCCGACGCACGACCGTAGCCGCCAGCCACCTGTGCGTCGGTCTGCAATGTGGCGGCTCGGATGGCTACTCAGGCATCACGGCCAATCCGGCGCTCGGCGCGGCCGTGGACCTGCTGGTGCAACAGGGCGGCACCGCGATCCTTTCGGAAACCCCGGAAGTCTATGGCGCAGAACACCTGCTGACGGCCCGCGCCGCGTCCGCCGACATCTCGGCGAAACTGATGGAGCGCATCCATTGGTGGGAAGCCTATGTGCAGCACAACGACGGCGACATGAACAACAACCCGTCACCGGGCAACAAGGCCGGGGGCATCACTACCATTCTGGAAAAATCCCTGGGCGCGGTGGCAAAAGCCGGCTCGACCGGGCTGATGGGGGTCTATCACTACGCTGAAAAAATCGATACCCGGGGCCTGGTGTTCATGGACACGCCCGGCTACGACCCGGTATCCGCGACCGGCCAGGTGGCCGGCGGCGCCAATCTCATCTGCTTCACCACGGGTCGCGGCTCGACCTATGGCTGCAAGCCCACGCCCTCCTTGAAGATCGCCACCAACACCCGCCTGTTCCAGCACATGGAACTGGACATGGACTTCAACGCCGGTGGCATTGTCGACGGTGTGGAATCGGTGGCCGAGGCCGGTGAACGGTTGCTCCGGGTGATGCTGCAGACCGCTTCCGGAAGCCGCACCCGCAGCGAGGAAAACGGCCTGGGCGATAACGAATTCCTGCCCTGGCAGATCGGTGCGGTGATGTGAMNLPASILLVLASGDDVAVARGDIPEGQSLSADGITLTARQPIPSGHKIALRPVSAGHRVLKYGQTIGQATRDIEPGDHVHVHNLDMSATNAEHSVRNVYVPTLPSAHPATFEGYLRDDGRVGTRNYIGVISSVNCSATVCKHIAKAFSSERLKDFPNVDGVVAITHGSGCGMGAKGEGIDILKRTLRGYADHANFAGVLLIGLGCEVNQLTPLMDELGDRRAALKASLIIQDEGGTREAVQRGIAAIEAMLPIVNQCRRTTVAASHLCVGLQCGGSDGYSGITANPALGAAVDLLVQQGGTAILSETPEVYGAEHLLTARAASADISAKLMERIHWWEAYVQHNDGDMNNNPSPGNKAGGITTILEKSLGAVAKAGSTGLMGVYHYAEKIDTRGLVFMDTPGYDPVSATGQVAGGANLICFTTGRGSTYGCKPTPSLKIATNTRLFQHMELDMDFNAGGIVDGVESVAEAGERLLRVMLQTASGSRTRSEENGLGDNEFLPWQIGAVMPGPT0018305_410DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018305-uxaA-K01685NANA
D1-35_04811714lldRCOG2186Putative L-lactate dehydrogenase operon regulatory proteinATGGTCTCACCGATCAATCCCGCCGAACGCAAGCCGTACCAGAAAATCGCTGATCAACTGCGCAACTACATTGCCGAGGGGGAGTTCAAGACGGGCGCAAGACTTCCCCCCGAGCGCGATTTGACCCAGCTTCTCGGGGTTTCCAGGCCGTCCCTTCGCGAGGCGCTGATCGCCCTGGAAATCGACGGCGACATCGAGATCAAGATGGGCTCCGGCGTGTACGTACGGGCCAGGTCCGGCGATGCAAAAAAACCGAGCATGACCTTGGGCGAGAGTCCCTCGGAACTCATGCAGGCTCGTGCCTTGATCGAGGGCGAGTCGGTGATCCTGGCGTGTCTGCATGGCAAGAAAAGCGACTACCGCTACCTGCAGGAATGCATCGAGGCCATGCGCGCGAGCATCGCCTGTGGCCTGCCGCCGTTGGAGGATGACCGCAGATTTCATCAGCGCCTGGCGAAAATGAGCGGCAACTCCGCCCTGGTGCGGATCATCACCGCCCTGTTCGATGAACGTCACAATCCGATTTCGGCGCACCTGAGCAAACACGCGGAGAACGCACTGACGTGGGAGGCGGCAGTCGTCGAACATGAAGCAATCCTGCACGCCGTAGCCGGCAAGGATGTGCTCGGCGCCCAAACCTCGATGCGCCAGCACCTGAGCCGCTCGGAAAACCGCTGGCTGCGGGCGCTCGAACCTGAAGCCCCCGCCGACTAGMVSPINPAERKPYQKIADQLRNYIAEGEFKTGARLPPERDLTQLLGVSRPSLREALIALEIDGDIEIKMGSGVYVRARSGDAKKPSMTLGESPSELMQARALIEGESVILACLHGKKSDYRYLQECIEAMRASIACGLPPLEDDRRFHQRLAKMSGNSALVRIITALFDERHNPISAHLSKHAENALTWEAAVVEHEAILHAVAGKDVLGAQTSMRQHLSRSENRWLRALEPEAPADNANANANANA
D1-35_048121188uxuACOG1312Mannonate dehydrataseATGGAACAGACATGGCGTTGGTTTGGCCCCAAAGATCCGATTTCCCTGGCAGACGTTCGCCAGACCGGTGCGACCGGCATCGTCACCGCGTTGCACGAGATTCCCAATGGCCAGGTCTGGCCGGTGGACGCCATCGCGGCGCGCAAGGCGCTGATCGAAGCGGCTGGCCTGACCTGGTCGGTGGTGGAAAGCATTCCGGTGCACGAAGACATCAAGCGCGGCTGCGGCCGTCGTGACGAGTACATCGCCAACTACCAGCAAAGCGTGCGTAACCTGGCGAGCTGCGGTATCGATATCGTCTGCTACAACTTCATGCCGGTGCTGGACTGGACCCGTACCGACCTGACGTATGAACTGGCGGATGGCGGTTGGGCCTTGCGCTTCGACCAGACTGCGTTCGCCGCCTTCGACCTGTTCATCCTCCAGCGGCCGGGAGCGCAGGACGAGTACAGCGTCGAGGATATCCGGCAGGCCAAGGCCTATTTCGAACAACTGTCGCCGGCCGGGCGCGAAGCCTTGGTCGATACCCTGATCGCAGGATTGCCCGGCGCCGAAGAACACTACAGCCTGGACAAATTCCGCGAGTTGCTGCGTACCTACGCCGACATCGACGAGGCCAGGTTGCGTGAGCACCTGGGGTATTTTCTGCGCGCGGTGATTCCGGTTGCGGAGGAGGTGGGCGTGCGCATGGCGATCCACCCGGACGACCCGCCCCGGGCGTTGCTCGGGCTGCCGCGCATCCTTTCTACCGCCGAAGATGCCCAATGGTTGCTGGATGCCGCGCCAAGCCCGGCCAATGGCCTGACGTTCTGTACCGGCTCCTACGGCGTGCGCGAGGATAACGACCTAGTGGCGATGGCCAGGCACTTTGCGCCGTTCATCTACTTCACTCACCTGCGTTCGACCCGTCGGGAAGCCGATCCACGCAGCTTTCATGAAGCTCATCACTTGGCTGGGGACGTCGATATGGTCGGGGTCATCAGTGCCCTGGTGGCCGAAGAGCGCCGGCGCGAGCGAGAAGGCGGCCCGCGCTTGCCGCTGCGTCCAGATCATGGGCATCAGTTGCTCGACGACCAGCATCGCAAGAGCAATCCCGGCTACTCCCTGATCGGCCGCCTCAAGGGCCTGGCGGAAATCCGCGGCGTGGAACTGGCCGTGCGCCGACAACTGGACCAAACAGCACACTAAMEQTWRWFGPKDPISLADVRQTGATGIVTALHEIPNGQVWPVDAIAARKALIEAAGLTWSVVESIPVHEDIKRGCGRRDEYIANYQQSVRNLASCGIDIVCYNFMPVLDWTRTDLTYELADGGWALRFDQTAFAAFDLFILQRPGAQDEYSVEDIRQAKAYFEQLSPAGREALVDTLIAGLPGAEEHYSLDKFRELLRTYADIDEARLREHLGYFLRAVIPVAEEVGVRMAIHPDDPPRALLGLPRILSTAEDAQWLLDAAPSPANGLTFCTGSYGVREDNDLVAMARHFAPFIYFTHLRSTRREADPRSFHEAHHLAGDVDMVGVISALVAEERRREREGGPRLPLRPDHGHQLLDDQHRKSNPGYSLIGRLKGLAEIRGVELAVRRQLDQTAHPGPT0018270_804DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GULONATE|FRUCTURONATE|MANNONATE_DEGRADATION,PGPT0018270-uxuA-K01686NANA
D1-35_048131458por_2COG0246Polyol:NADP oxidoreductaseATGTCGCTCAACCAACGCGTTCCCGCCACTGGCCAGGCCCGCGAGATCGGCATCGTGCACCTGGGCCTGGGGGCCTTTCACCGGGCGCATCAGGCGGTGTACCTGCAACGCAATCTCAATCGCCACGGCGACAGCGATTGGGGCTTGTGCAGCGCCAACCTGCGCTCCAATCACGCTTTGGTCGAGCAATTGCGCGAGCAGGACGGTCGTTACCATGTGGCGGAGTATCGTGACCGCGAGCAGGTGACGCTGCGCGAGATCGGCGTGTTGCGCGAGGCCTTGTATGCGGGCGAGGGCGGTCAGGAACTGGAGCAGTTGTTGCAACGCATGGCCGCGCCGCAGACGCGGATCGTCACGCTCACCGTTACTGAAAAAGGCTACTGCCTGAGCCCTTCCTCCGGGCAGTTGCGCCGTGAGGATCCGACAATTGCCCATGACATCGCCCATCCGCAGGCGCCGCGTTCAGCGCCCGGCATCGTCCTCGAAGCCTTGCGTCGTCGCCGCGCCGCGGGCGTCCCGGCGTTTACCGTGTTGTGCTGTGACAACATGCCCGACAACGGCCAGCGCACCCGCCAGGCGGTAAGCGCATTGGCGGCGTTGCAGGATCAGGCGCTGGCGCAGTGGATCGAGCAACAGGTGGCATTTCCCAGCTCCATGGTCGACCGCATCGTGCCGGCCATGGACGAGGAGTCCTTCGTCCGGCTGGCGCAACAATTGGACTGCCACGACCGCGCCGCCGTGGTCTGTGAAAGCTTCAGCCAGTGGGTGATCGAGGACCACTTTCCCCTTGGCCGACCGGACTGGGAAGCCGAAGGCGTGCAGATGGTCGACGATGTGCGCCCGTTCGAAACCATGAAATTGCGCATGCTCAACGGCAGCCATTCGTTGCTGGCCTATGTGGGGCTGCTGGCCGGGCATGAGTCAGTCTTCGAGGCCGTCAGCGATGTGAGGCTGGCGCATTTCATCGAGCGCTACATGACCGAGGAAGCCGCGCCCACGCTGGACATGCCGGCAGGGATCGACCTGTCGGTATACGGTCGCGACCTGCTGGCGCGCTTCGCCAATGACAGCCTGCAACACCGCTTGCGCCAGATTGCCATGGACGGTTCGCAAAAACTGCCGCAACGCTGGTTGCTCGGCGCAGAGCAATTGCTCGACCAAGGGCGCGGCATCGACTGCACCGCGTTGGGAATTGCCGCCTGGATTCATTACTGCACGCAGCCGTTGCCCGGCCGACCGGCGCATGTGGTTGACGACCCGCTGAGCGCAACCTTTGCCGACGTTGCGGGACGCTTCGACGGTGCATCGCGGGTCGATGCTTTTCTCGACCTTGAAGAAGTCTTCCCGCCGGCGCTGTCAGCTCGCGCCGCGTTTCGCGACGCCGTGCACCGCGCCTATGACGCCTTGACCCGCGATGGCGTCGACAGCCTGTTGCACACCTTTGCCGCACCCAACTGAMSLNQRVPATGQAREIGIVHLGLGAFHRAHQAVYLQRNLNRHGDSDWGLCSANLRSNHALVEQLREQDGRYHVAEYRDREQVTLREIGVLREALYAGEGGQELEQLLQRMAAPQTRIVTLTVTEKGYCLSPSSGQLRREDPTIAHDIAHPQAPRSAPGIVLEALRRRRAAGVPAFTVLCCDNMPDNGQRTRQAVSALAALQDQALAQWIEQQVAFPSSMVDRIVPAMDEESFVRLAQQLDCHDRAAVVCESFSQWVIEDHFPLGRPDWEAEGVQMVDDVRPFETMKLRMLNGSHSLLAYVGLLAGHESVFEAVSDVRLAHFIERYMTEEAAPTLDMPAGIDLSVYGRDLLARFANDSLQHRLRQIAMDGSQKLPQRWLLGAEQLLDQGRGIDCTALGIAAWIHYCTQPLPGRPAHVVDDPLSATFADVAGRFDGASRVDAFLDLEEVFPPALSARAAFRDAVHRAYDALTRDGVDSLLHTFAAPNPGPT0018275_1083DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GULONATE|FRUCTURONATE|MANNONATE_DEGRADATION,PGPT0018275-uxuB-K00040NANA
D1-35_048141293exuT_3Hexuronate transporterATGTTTGGTCAAGGACGTAGCTTAATCATCATCATGCTGTTCCTGGCCGGGGTGATCAATTACCTCGACCGGTCGGCATTGTCTGTGGCGGCGCCGTTCATCCAGAAAGACTACGGTCTGAGTACGGGTGAGATGGGCATGATCTTCAGCAGCTTTTTCGTCGGTTATGCCGCCTTCAACTTCATCGGTGGCTGGGCCGCCGACCGTTATGGCGCCAAGACCACGTTGCTGCTGGCCATGGTCCTGTGGTCGTTGTTCAGCGGCCTCACGGTGCTGACGGTGGGCTTCGCGTCGCTGGTGCTCATCCGGATCCTGTTCGGCATGGGCGAAGGTCCGCTGAGCGTCACCACCAGCAAGATGGTGAACAACTGGTACACCCCCAAGCGCCGGGCACGAGCCCTCGGTGCCTCGATGTCCGGCACGCCGCTGGGCGGGGCGATTTCCGGTCCGGTGGTGGGCTTCATTGCGGTCACCTACGGCTGGAAGGTGTCGTTCATCATCATCATGCTGGTCGGCCTGATCTGGGCGGCAATCTGGTACAAGTTCGTCAAGGAAAAGCCCGAGGGCGAGGGCGCCGAGGATATCCTGCGGGCCGAGGGGCAGAGCGAGCTGGCGTCGCAACCGGTATTCCCGCTGCGGTTCTACCTCAAGCAGCCGACGGTGCTGTTCACCTCCCTGGCGTTCTTTTCCTATAACTACACGCTGTTCTTCTTCCTGACCTGGTTCCCCAGTTATCTCACCATGGCCCACGGCCTGAACGTCAAGGACATGAGCATCGCCACGGTCATCCCCTGGCTGCTGGGTTTCCTGGGTCTGGCATTGGGTGGGTTCATTTCCGACTTCGTGTTCAAGAAGACCGGGCGGATCATGTTCTCGCGCAAAGTCGTGCTGGTGACTTGCCTGTTGGCCTGCGCCGGTTGCATCGGCGTCGCCGGGGTGGTGAAGACGCTATATCCGGCCGTCATCCTGGTGGCGCTGGCGGTGTTTTTCCTCTACCTCACCGGCGCGATCTATTGGGCGATCATCCAGGATACGGTGCCTGCGGCGCGGGTAGGCGGCGTCAGTGGCTTCATGCATTTCCTGGCTAACACCTCGGGCATCATCGGGCCGACCCTGACCGGGTTCATCGTCCAGTTCACCGGCTCGTTCACCAGCGCGTTCCTGCTGGCGGGCCTGCTGACCATCATCGGCGCGCTGTGCGTGGCGCGTTACGTCAAGCCGCTGGCGGTGGCAGGTGTCGCGCCGCAGGCCGATGCAGGCGTCCAGCCGCGTCCAGCCCTCGACCATCCCTGAMFGQGRSLIIIMLFLAGVINYLDRSALSVAAPFIQKDYGLSTGEMGMIFSSFFVGYAAFNFIGGWAADRYGAKTTLLLAMVLWSLFSGLTVLTVGFASLVLIRILFGMGEGPLSVTTSKMVNNWYTPKRRARALGASMSGTPLGGAISGPVVGFIAVTYGWKVSFIIIMLVGLIWAAIWYKFVKEKPEGEGAEDILRAEGQSELASQPVFPLRFYLKQPTVLFTSLAFFSYNYTLFFFLTWFPSYLTMAHGLNVKDMSIATVIPWLLGFLGLALGGFISDFVFKKTGRIMFSRKVVLVTCLLACAGCIGVAGVVKTLYPAVILVALAVFFLYLTGAIYWAIIQDTVPAARVGGVSGFMHFLANTSGIIGPTLTGFIVQFTGSFTSAFLLAGLLTIIGALCVARYVKPLAVAGVAPQADAGVQPRPALDHPPGPT0017205_1111DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_HEXURONATE_TRANSPORT,PGPT0017205-exuT-K08191NANA
D1-35_048151032rspBCOG1063Starvation-sensing protein RspBATGAAAGCGTTCCAGGTAAGAGCACCCTTCGAGTTCGGCCTGGCCCAGGTCGACCGCCCCGAGGTCGCTCGTGGCGAGGTGCTGGTCGATGTGGCGTATGCCGGCATCTGTGGCTCGGACATGCACATCATTCACGGGCAGAACGCATTCGTGCGTTTCCCCAGGGTCACCGGCCATGAATTCTCCGGAGTGATCCGGCAGGTCGGTGAAGGTGTCGAGCACCTCCAGACAGGCGACCGGGTGTGCATCGATCCGGTGATCAGTTGCGGCACCTGTTATCCCTGCCGCATTGGGCGGCCGAACGTCTGCACGCGGCTGCAAGTGATCGGCGTGCATCGTGACGGCGGCTTCAGCGAGCAGGTCTGCGTCCCGGCCGAGAACGCCCACCGCTTGCCCGATTTGATGTCCCTCAGCCACGGCGCCCTGGTGGAGCCTTATTCCATTGCCCTGAACGTGCTCGATCGGATGCAGCCGCAGCCGGGTGACAGCGTGTTGATCTACGGCGCCGGCGTGATCGGCCTGACCCTGGTGCAAATGGCCCGGGCGCTGGGAATGACCGACATCACCGTGACCGATGTCATCGACAGCCGCCTGGGGACAGCGCGTGCGCTGGGCGCCAGTCGGACCCTCAACGGCCAGCAAGTCGACGTTGAAGCGCTGATGCGTGAGCACACCCAGGGCGAGGGCGTGCCGTTGATCGTCGACGCTGCCTGCATTCCGGCGCTGATGCCGCAGATGGTGCGCCTGGCCTCGCCGGCCGGGCGCATCGGATTGCTCGGCTTCAATGCCACGCCCAGCGATCTGGTGCAGTTGGAGATGATCAAGAAGGAATTGACGCTGGTCGGTTCCAGGCTCAACAACCGAAAGTTCCCCCAGGTGATCGAACTGATCGCCAGCGGCAAATTGCAGGTCCAGGACCTGATCAGCCATCGCGTCAGCTTCGATGAAATGCCCGGCGCCATCGACCTGATCGAGAAGCACCCCGAGCAAACCCGAAAAGTCCTGGTGGAGCTGACGAGCGCCCTTCACTGAMKAFQVRAPFEFGLAQVDRPEVARGEVLVDVAYAGICGSDMHIIHGQNAFVRFPRVTGHEFSGVIRQVGEGVEHLQTGDRVCIDPVISCGTCYPCRIGRPNVCTRLQVIGVHRDGGFSEQVCVPAENAHRLPDLMSLSHGALVEPYSIALNVLDRMQPQPGDSVLIYGAGVIGLTLVQMARALGMTDITVTDVIDSRLGTARALGASRTLNGQQVDVEALMREHTQGEGVPLIVDAACIPALMPQMVRLASPAGRIGLLGFNATPSDLVQLEMIKKELTLVGSRLNNRKFPQVIELIASGKLQVQDLISHRVSFDEMPGAIDLIEKHPEQTRKVLVELTSALHPGPT0018265_61DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GULONATE|FRUCTURONATE|MANNONATE_DEGRADATION,PGPT0018265-rspB-K08322NANA
D1-35_048161212rspACOG4948D-galactonate dehydratase family member RspAATGAAAATCGTTGAAGCGCGTGTCATCGTTACCTGCCCGGGGCGCAACCTGGTCACGTTGAAGATTGTCACCGACGAAGGCATCTACGGCATCGGCGATGCCACGTTGAACGGCCGCGAACTGGCCGTCGTCGCGTATCTGGAAGAGCACGTTCTTCCTGCGTTGATCGGCCGCGATGCCCATCGCATCGAGGACATCTGGCAATACCTCTATCGCGGCGCTTATTGGCGCCGGGGGCCGGTGACCATGACGGCCATCGCCGCCGTCGACGTGGCGCTCTGGGACATCAAGGCCAAGGCCGCGAACATGCCGCTGTACCAATTGCTCGGGGGCAAGAGCCGTGAGCGGGTGATGGTCTACGGGCACGCCACCGGCAAGGACATCGAAGGCTGCCTGGACGAAGTCGCCCGTCACGTCGAGCTGGGCTACAAGGCCGTGCGGGTGCAATGCGGAGTCCCGGGCATTGCCACGACGTACGGGGTCGCCAAACGCAGTGGCGAGCGTTACGAGCCGGCCGACAGCGACCTGCCCGCGGAACACGTCTGGGACACCGCCAAATACCTCAATTACGTACCCAAGCTGTTTGCCGCCGTGCGCGAACGTTTTGGCGACGACCTGCACATTCTCCACGACGTGCATCATCGCCTGACGCCCATCGAGGCCGGGCGCCTGGGCAAGGCGGTGGAACCGTACAACCTGTTCTGGCTGGAAGACTGCACGCCGGCGGAAAACCAGCAGAGCTTCCGCCTGATCCGCCAGCACACCACCACGCCGCTGGCGGTGGGCGAGGTGTTCAACTCGATCCATGACTGCCGCGAGCTGATCCAGGAACAGTTGATCGACTACATCCGCACGACGCTGGTGCATGCCGGCGGCATTACCCACGTGCGGCGAATTGCCGATTTCGCCGCGCTGTTCCAGGTGCGTACCGGTTTTCACGGGGCCACCGACCTGTCACCGGTGTGCATGGGCGCGGCCCTGCATTTCGATACGTGGGTGCCGAACTTCGGCATCCAGGAACACATGCCTCACGAAGACCGCATCGATGAAGTCTTCCCTCATGCGTATCGCTTCGAGGACGGCCATTTCACCCCGGGCGAAACGCCAGGGCATGGCGTCGATATCGATGAAGAGCTTGCCCGCCAATACCCCTACAAACGCGCCAGCTTGCCGGTCAACCGTCTTGAAGACGGCACGCTGTGGCATTGGTGAMKIVEARVIVTCPGRNLVTLKIVTDEGIYGIGDATLNGRELAVVAYLEEHVLPALIGRDAHRIEDIWQYLYRGAYWRRGPVTMTAIAAVDVALWDIKAKAANMPLYQLLGGKSRERVMVYGHATGKDIEGCLDEVARHVELGYKAVRVQCGVPGIATTYGVAKRSGERYEPADSDLPAEHVWDTAKYLNYVPKLFAAVRERFGDDLHILHDVHHRLTPIEAGRLGKAVEPYNLFWLEDCTPAENQQSFRLIRQHTTTPLAVGEVFNSIHDCRELIQEQLIDYIRTTLVHAGGITHVRRIADFAALFQVRTGFHGATDLSPVCMGAALHFDTWVPNFGIQEHMPHEDRIDEVFPHAYRFEDGHFTPGETPGHGVDIDEELARQYPYKRASLPVNRLEDGTLWHWPGPT0018285_537DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GULONATE|FRUCTURONATE|MANNONATE_DEGRADATION,PGPT0018285-rspA|manD-K08323NANA
D1-35_048171011kdgK_32-dehydro-3-deoxygluconokinaseATGATGGATTTGACACTCAACCATGGCCCGGACACCCGCTTCCCCCGACCGCTGAAGGTCGCGCTGGTGGGTGAGTGCATGATCGAGGTGCGCGGCGGGCCGGATGCCGCAATCACGCAGACCTTCGGTGGCGATACGCTTAACACCGCGGTCTACCTGGCCCGATTGAATCCACGTGGCGCCGTCGCCGTGGATTACATGACCGCGGTAGGCAACGACGCATTCAGCGCGGCCATGCGCCAGTCCTGGCTGGACGAAGGCATTGGCGATGCGCATGTCCGGGTGATTGAAGACGCGCTGCCGGGGTTGTACTTCATCCAGACCGATCCACACGGCGAGCGGCGGTTCCTCTACTGGCGCGGGGAAGCGGCGGCGCGGCGCATGTTCGAAGGCGCCGAGGCCGAGGCCGAGGCCATGCTCGCTGCGCTGGCCGATTACGACTATGTCTACCTGAGCGGCATCACCCTGGCGATCCTCCTGCCGGAGGGGCGCGAACGCCTGATCCACGCCTTGCACCGGGCTCGCCGGGCGGGCACGCGCATTGTCTTCGACAACAATTACCGTCCCCACCTTTGGCCCGACCCCGAAACGGCCCGCCAGGCCTATCGCGATCTACTGCACTTGAGCGACCTGGCGCTGGTGACTTGGGAAGACGACGCGAGCCTGTTCGGCTACCACGACCCTGATGCCTTGTTCAGTGTTTACGCCGAGGCGGGAGTCCGCGAAGTCGCCCTCAAGCGTGGCGCCGCCAGTTGCCTGATCCAGTGTCCCGCGGGGCGTTTCGAAGTGCCCGCGCAGACCGTCGCGCAGGTTATCGACACCACCGCTGCCGGTGATTCGTTCAACGCTGCGTACCTGGCCTGCCATCTGCGCGGCGGTGATCCGCAGCAGGCCGCCCGCTGGGGCCATCGCCTGGCTGCCGAGGTCGTCCAGTACCGGGGCGCGCTGATTCCGCAGGCGGCCATGCCGAGCATGGACACGTCCTCACTTCCTTTTGTCGAACAGGTCTGAMMDLTLNHGPDTRFPRPLKVALVGECMIEVRGGPDAAITQTFGGDTLNTAVYLARLNPRGAVAVDYMTAVGNDAFSAAMRQSWLDEGIGDAHVRVIEDALPGLYFIQTDPHGERRFLYWRGEAAARRMFEGAEAEAEAMLAALADYDYVYLSGITLAILLPEGRERLIHALHRARRAGTRIVFDNNYRPHLWPDPETARQAYRDLLHLSDLALVTWEDDASLFGYHDPDALFSVYAEAGVREVALKRGAASCLIQCPAGRFEVPAQTVAQVIDTTAAGDSFNAAYLACHLRGGDPQQAARWGHRLAAEVVQYRGALIPQAAMPSMDTSSLPFVEQVPGPT0018060_1259DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GALACTURONATE|TAGATURONATE|ALTRONATE_DEGRADATION,PGPT0018060-kdgK-K00874NANA
D1-35_04818783kdgR_4Pectin degradation repressor protein KdgRATGGACAACAGCGTCATTCCCAACAACGATCTGGTGTCGGCGGTTGGCCGGACCATGGCCGTGCTCGAAGCCCTGGCCGAGCATCCGGAAGAAAGCGGCGTGTCGGAAATCGCCACCAAACTGGACATGTCCAAGGCCACGGTTTATCGCTTCCTGCAGTCACTCAAGGCTCGCGGGTATGTGGTGCAGGATGCCGAAGACCGTTATCGCCTCAGCGTCCGGCTGTTCGAACTGGGCGCCCAGGCCCTGCCCCATCTGGACATCGTTCGCGAAGCGGAGCCGGGGATGCGCCGGATCAACGAGCTGACCGGCGAGACCGTGCACCTGGGGATCCTTGATGAAGGCAGCATCGTCTACGTGCACAAGATCGACTCCAAATACAACCTGCGCATGTACTCGCGCATCGGCCGGCGGGCGCCGTTGTACTGCACCGGCATCGGCAAGGTGCTGATGGCGTGGCTGGAAGAGGAAGAGCTGCTCGCGCACCTCGCGCAGGAAAGCTTCGAGCGCCGTACGGCCAATACCTTGACCAGTGTCGAGGCGTATCTGCAGGAGTTGGAGATCGTTCGCCAGCGGGGCTATGCCGAGGATCACGAAGAATTCGAAGACAACATGCGCTGCCTCGCGGCACCGATCCGCGACCGGTTCGGCCATGTGATCGGCGGGATGAGCGTTTCATTCCCGTGCTTTCGCTTCAGGGAAGAATTGAAGCAGGACTATGTCAAGCAACTGATGCAGGCGACGCAGCAGATTTCAGCTCAGTTGGGTTGGCATGCACGTTGAMDNSVIPNNDLVSAVGRTMAVLEALAEHPEESGVSEIATKLDMSKATVYRFLQSLKARGYVVQDAEDRYRLSVRLFELGAQALPHLDIVREAEPGMRRINELTGETVHLGILDEGSIVYVHKIDSKYNLRMYSRIGRRAPLYCTGIGKVLMAWLEEEELLAHLAQESFERRTANTLTSVEAYLQELEIVRQRGYAEDHEEFEDNMRCLAAPIRDRFGHVIGGMSVSFPCFRFREELKQDYVKQLMQATQQISAQLGWHARPGPT0018213_719DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_HEXONATE|HEXURONATE|HEXURONIDE_UTILIZATION,PGPT0018213-kdgR-K19333NANA
D1-35_04819426hypothetical proteinATGAGCCTTTCACCCTTCCATCTCGCAATCCCGGTTTATGACCTCGCGGCAGCCCGAAACTTTTATGGCCAGGTGTTCGGGCTGGAGGAGGGCCGTTCCAGTGATCAATGGGTCGACTTCAACTTCTACGGGCACCAGTTGGTGATCCACGAGCATCCGAAGACCGCTTCCCAGGAAAACGCGCACAGCAATGCCGTGGATGGGCACGATGTGCCGGTGCCGCACTTCGGCGTCGTGTTGGGTTGGGCTGAATGGGAAGCGCTGGCCGAGCGATTGAAGTCGTTGGGTACCGAATTCGTGATCGAACCCTACATCCGCTTCAAGGGCCAGGTGGGCGAGCAGGCGACGATGTTCCTGTTCGACCCTTGCGGCAATGCGCTGGAGTTCAAGGCGTTCAAGGACATGAGCCAGCTGTTCGCGAAATAAMSLSPFHLAIPVYDLAAARNFYGQVFGLEEGRSSDQWVDFNFYGHQLVIHEHPKTASQENAHSNAVDGHDVPVPHFGVVLGWAEWEALAERLKSLGTEFVIEPYIRFKGQVGEQATMFLFDPCGNALEFKAFKDMSQLFAKNANANANANA
D1-35_04820879yofACOG0583HTH-type transcriptional regulator YofAATGATCAAAGAACTCAAGACCCTCATCGCGGTGGCGCGCGAAGGCACCTTTGCCGCCGCCGGGCACAGAATCGGCCTCACCCAGGCGGCGGTCAGCGCGCAAATCCAGCGTCTGGAAGCCGAACTGGGCTTCGAGCTGTTCGACCGCAAGGGACGCTCGGCCCACCTCAACAAGCGGGGCCAGCAGATACTCCTGCAAGCCCAGGAGCTGCTCCGTCTTTACGACAATCTCGGTTCCACCCTGCCCGGACTACCCGCCAGCGTCCTGGTAAATATCGGCGCGATCGCCTCCGTCCAGCGCTCCTACCTGCCGGACGCCCTCGCCAGGTTCCACCAGCAATGTCCGCAATGCCGCACGCGTGTGGTGCCAGGCCTGTCGGTCGAGCTGATCAACCTGGTGGACGCCGGCGAAATCGATCTGGCGGTGATGATCCGCCCGCCGTTCTCGCTGCAAAGCGACCTGCGCTGGACGACCCTGGCGCTTGAGCCCTACCGGTTGATCGTCCCCCGTGGAATGCTCGGCGAGGACTGGTCGGCGCTGCTGTCCAGCCAACCTTTCATCCGCTATGACCGGTCGTCCTTCGGTGGCAGGCAGGTCGACCGTTTCCTGCGGCAGATGCACTTCACCTTGCGCGAAGTGTGCGAGCTGGATGAACTGGACGCGATCATCAAACTGGTGGAAAAAGGCGTCGGTGTCGCCCTGGTGCCGCAGACATCGGCCCATCAGCCATGGCCGAAAGGTGTGCGGGCGCTCGACTTGGGCCAGCACACCTTTCACCGCGATATCGGCCTCATCCATCGGTCGCGACAGAGCCTTGCCGACCCCGTCGCGACCTTGGCCGAACTGATTCAAGAGCAGGCCGGCGGTGGTGTTGGGTAAMIKELKTLIAVAREGTFAAAGHRIGLTQAAVSAQIQRLEAELGFELFDRKGRSAHLNKRGQQILLQAQELLRLYDNLGSTLPGLPASVLVNIGAIASVQRSYLPDALARFHQQCPQCRTRVVPGLSVELINLVDAGEIDLAVMIRPPFSLQSDLRWTTLALEPYRLIVPRGMLGEDWSALLSSQPFIRYDRSSFGGRQVDRFLRQMHFTLREVCELDELDAIIKLVEKGVGVALVPQTSAHQPWPKGVRALDLGQHTFHRDIGLIHRSRQSLADPVATLAELIQEQAGGGVGNANANANANA
D1-35_048211611ywrDCOG0405Glutathione hydrolase-like YwrD proenzymeATGCTGAAATTTTCTGCCCACGAATACCCCTATCCGTCGCAGCGCCAGAGCGTTTTTGCCCGTCGCGGCATGGTCGCCGCATCCCAGCCCCTGGCAGCCCAGGCGGGCATCGAGATCATGCAAAAAGGCGGCAACGCCATTGACGCCGCCATCGCCACGGCGGCGGCGCTGACGGTGGTGGAGCCCACCGGCTGCGGTATCGGCGGTGACGCCTTCGCGTTGGTCTGGTGCAAGGGCCAGTTGCATGGGCTCAACGGCAACGGCCATGCACCGGCGGCCTTGAGCATCGAGGCGGTCAGAGCGGCCGGCCATGAACAGATGCCGGTGTATGGCTGGACACCCGTCACCGTTCCCGGTTGCCCGTCGGCCTGGGCCGAGCTGTCTCGGCGCTTCGGCAAGCTGCCTTTTGCCGAGTTGCTGCAACCGGCGATCAGCCTGGCGCGGGACGGTTTTGTAGTGTCGCCGGTGGTTGCCCATCAATGGCAGGTCGCGGTGAACGAGCTCACGCCTCATCGCGATCTGGTCCTGGAGGCCTGGTTCGATACCTTTCTCATCGAAGGTCGCGCGCCACGGGCCGGGGAGATTTTCTGCAACCCGGCCCAGGCCCGCACGCTCCAGGAACTGGCCGACACGTGCTGCGAAAGCCTCTATCGCGGCGCATTGGCCGAGCGCCTGGATGCCCATTCCCGAGCCAGCGGCGGCTACCTGCGTGCCTCGGACCTGAAGGATTATCACGCCCAGTGGGTCGACCCCATCCACGTCAATTACCGTGGCGTGGACGTCTGGGAGATCCCTCCGAGCGGGCAGGGCCTCGTGGCCTTGATGGCGTTGAAAATACTTGAAGGCTTCGACTTCGATCACCGTGACAGCCAGCAGACCTGGCATCGCCAGTTGGAGGCGATGAAGCTCGCCTACAGCGACGGCCTGCACCACATCACCGACCCCCTGCACATGCGCGTGGCGGTGGCTGATTTGCTCAGTGATGACTACAGCGCCCGCCGTCGCGGACAGATCGGCGAACAGGCCCAACCGCCGAAGCCCGGCGATCCCCACGCCAGCGGCACGGTGTACCTGGCGACCGCCGACGGCGAGGGCAATATGGTCTCGTTCATCCAGAGCAACTACCACGGGTTCGGCTCCGGCGTGGTGCTGCCCGACAGCGGAATCGCCCTGCAGAATCGCGGCCAGGAATTCAGCCTTGATCCGGCCCACGCCAATTGCCTGGCCCCAGGCAAGAAGACCTTCCATACCATCATTCCCGGGTTTCTTACCCGCGATGGCGAGGCTCTCGGTCCTTTCGGCGTGATGGGCGGCTACATGCAACCCCAGGGGCATGTGCAGATGGTCATGAACCTGGTGGATTTCGGCCTGAACCCGCAAGCGGCCCTGGATGCGCCGCGCTGGCAGTGGCTGGGCGAGATGAAGGTCGGCATCGAGCAGGGCGCTTCACGGGACCTGGTCAATGCCCTGGCACGCCGCGGCCATGAGGTTCAGGTCGCCAGCGACCTGACCGATTACGGGCGCGGCCAGATCATCCTGCGCGATCCGGTCAGTGGCGTGTTGTGTGGCGGGACCGAACCGCGGGCGGATGCGCATATCGCGGTTTGGTAGMLKFSAHEYPYPSQRQSVFARRGMVAASQPLAAQAGIEIMQKGGNAIDAAIATAAALTVVEPTGCGIGGDAFALVWCKGQLHGLNGNGHAPAALSIEAVRAAGHEQMPVYGWTPVTVPGCPSAWAELSRRFGKLPFAELLQPAISLARDGFVVSPVVAHQWQVAVNELTPHRDLVLEAWFDTFLIEGRAPRAGEIFCNPAQARTLQELADTCCESLYRGALAERLDAHSRASGGYLRASDLKDYHAQWVDPIHVNYRGVDVWEIPPSGQGLVALMALKILEGFDFDHRDSQQTWHRQLEAMKLAYSDGLHHITDPLHMRVAVADLLSDDYSARRRGQIGEQAQPPKPGDPHASGTVYLATADGEGNMVSFIQSNYHGFGSGVVLPDSGIALQNRGQEFSLDPAHANCLAPGKKTFHTIIPGFLTRDGEALGPFGVMGGYMQPQGHVQMVMNLVDFGLNPQAALDAPRWQWLGEMKVGIEQGASRDLVNALARRGHEVQVASDLTDYGRGQIILRDPVSGVLCGGTEPRADAHIAVWPGPT0002935_4838DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_TAURINE_UTILIZATION,PGPT0002935-ggt-K00681NANA
D1-35_04822780glnQ_9Glutamine transport ATP-binding protein GlnQATGGCGCACAAGAGTGAAGAGCTGATCATCGAGGCGCTGGACGTGCACAAGTCCTTCGGTGAGTTGCAGATTCTCAAGGGCATCTCGCTGCAGGTGCGGCGCGGTGAAGTGGTGGTGCTGATCGGTGCGTCAGGCTCCGGCAAGACCACCTTCATCCGTTGCATCAATCTGCTGGAAGACATCCAGGGCGGACGCATTCGCGTCAATGGCCAGGCCATGGGTTACCGCGAGCGGGCCGACGGCAGCCTGGTGCGTGAGTCGGAGCGCAACATCGCCCGCCAACGAAGGGACATCGGCATGGTGTTCCAGCGCTTCAATCTGTTCCCCCACATGACCGCCCTGGAGAACATCATCGAGGCGCCGATCCAAGTGCTCGGCGTGCCTCGCGCCGCAGCGCTGGAACAGGCTCGCGGCTTGCTGGAGCGGGTCGGCCTGGCGGACAAGGCCGATCACTACCCGTCGATGCTTTCCGGCGGCCAGCAACAGCGGGTGGCGATTGCCCGCGCGCTGGCGATGAAACCCCAGGCCATGCTGTTCGACGAACCGACCAGCGCCCTCGACCCGGAAACCGTTGGCGAGGTCCTGCAGGTGATGAAGGAGTTGGCCGAGGAGGGCATGACCATGGTCGTGGTGACCCACGAGATGGGCTTTGCCCGCGAAGTGGCGGACCGCGTGGTGGTGCTCGATCAGGGCGAGCTCATCGAGCAAGGGCCGCCGGAGCAGATTTTCTGTCACCCCATCCACCCGCGCACCCGGGCCTTTCTCAGTCGCGTGCTGTGAMAHKSEELIIEALDVHKSFGELQILKGISLQVRRGEVVVLIGASGSGKTTFIRCINLLEDIQGGRIRVNGQAMGYRERADGSLVRESERNIARQRRDIGMVFQRFNLFPHMTALENIIEAPIQVLGVPRAAALEQARGLLERVGLADKADHYPSMLSGGQQQRVAIARALAMKPQAMLFDEPTSALDPETVGEVLQVMKELAEEGMTMVVVTHEMGFAREVADRVVVLDQGELIEQGPPEQIFCHPIHPRTRAFLSRVLPGPT0020790_1701DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020790-ABC_PA_A-K02028NANA
D1-35_04823777yecS_5COG0765L-cystine transport system permease protein YecSATGAATTTCAATTGGGATGTGTTCTGGCAGTACCTGTTGCAGCCCAGTGAGGTGTACCTCACCGGGCTGTGGCTGACCTGCCTGATCAGCGTGCTGGCGATGCTGCTCGGCTGTGCCCTGGGGCTGGCGGCCGCGCTGCTGCGGTTGTCGAAGAACCCGCTGCTGCACCTGCCGGTGCGCTTCTACGTGTGGCTGATGCGCGGTACGCCGTTGCTGGTGCAGATCGTCTTTCTCTACACCGCGCTGGCCGCCGGCGGGATTTTCCGCTTCGAAGACATCGAACTGTTCGGCCTGGTGGTGCCCGGCAATATCCAGGCGGCGATCATCGCCCTGGGTCTCAACGAGGGCGCCTACATGGCCGAGATCATCCGCGCCGGCATCGGTGCGGTGGACAAGGGCCAATACGAGGCCGGACGTTCCCTGGGCATGACCTTCGCCAAGCTGATGCGTCGCATTGTCTTGCCCCAGGCGTTCCGGGTCATCGTTCCGCCGCTGGGCAACGAGTTCAACGTGATGCTCAAGAACACCACGCTGGTCAGCGTGATCGGCGTGCAGGAACTGCTGCTCAGTACCCAGATGGTCACGTCGGCGACGTTCCGGGTGTTCGAGTTGTACCTGGTGGTGGCGATCTATTTCCTGCTGCTGACCACCCTGTGGGGCTTTTTCCAGCGCTGGCTGGAGGGCCGTTTCGGCCAGTCGGACCGGCCGTCGTCACCGCCGCCGGCGTCGCTGCGGATGTTTGGTCGCAGCACCTTGAATCTGCTGAGGGCACGTTGAMNFNWDVFWQYLLQPSEVYLTGLWLTCLISVLAMLLGCALGLAAALLRLSKNPLLHLPVRFYVWLMRGTPLLVQIVFLYTALAAGGIFRFEDIELFGLVVPGNIQAAIIALGLNEGAYMAEIIRAGIGAVDKGQYEAGRSLGMTFAKLMRRIVLPQAFRVIVPPLGNEFNVMLKNTTLVSVIGVQELLLSTQMVTSATFRVFELYLVVAIYFLLLTTLWGFFQRWLEGRFGQSDRPSSPPPASLRMFGRSTLNLLRARPGPT0020795_3648DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020795-ABC_PA_P-K02029NANA
D1-35_04824807argT_6COG0834Lysine/arginine/ornithine-binding periplasmic proteinATGCATAAGCCTCGCCTGTTGGTCGCCGCTTTATCCTTGGGTTTCTTCGCGCAATGGGCGGCGGCTGCGCCCGTTGTCCCGGAGCGTCTGCTCAAGGCCGATAAACTCGTCTACTGCTCGGGCATGGATTCGCCACCGCTGGTGTCCTTCGATGCGGCGCAGAAACCCAAGGGACTGACCGTGGACCTGGGGCTGGAAATCGCCAAGCGCCTGGGCGACAAGAAGGTCGAATGGCGGGTCATTCCCTTCTCGGGACTGCTTCCGGCGCTGCTGGCCCGGCAGTGCGACATGATCGTCGACCAGCTGTTCGACAAGCCCGAGCGCCGCGAGGTGATCGACATCGTCAACTACATGTATTCCAGCCAGGCGGTGGTGGTGCCCAAGGGCAATCCCAAGGGCTTGAAGACGCTGCAGAGTCTCTCCGGCCACAAGGTCGCGGTACTCAACGGTTCGACCATCAAGACCCTGCTCGACGCCGAGAACGAAACTCTGGCCAAGGCCGGCAAGCCGCCGATGAAGCTGGTGGTCTACAACACCGACACCGATGCCTTCCAGGCCCTGCGCATCAGCCAGGTCGACGCCTACGGCACCACCGTGGAAACCGCCGGTTACTACGCCACCATGGCCCCCGACCTGTTCGAGGAAGGCGTGCCGGCGTTCAGCCGGATTCTCACCGGCCTGGGTATTCGCAAGGACGATCCGCAACTGACCGCCGCCGTGCAGCAGGTGATCGGCGATATGCGCAGCGATGGCAGCTACAGCCAACTGCTCGGCAAATGGCATGTCTCCAGTGACACCCTTGATTGAMHKPRLLVAALSLGFFAQWAAAAPVVPERLLKADKLVYCSGMDSPPLVSFDAAQKPKGLTVDLGLEIAKRLGDKKVEWRVIPFSGLLPALLARQCDMIVDQLFDKPERREVIDIVNYMYSSQAVVVPKGNPKGLKTLQSLSGHKVAVLNGSTIKTLLDAENETLAKAGKPPMKLVVYNTDTDAFQALRISQVDAYGTTVETAGYYATMAPDLFEEGVPAFSRILTGLGIRKDDPQLTAAVQQVIGDMRSDGSYSQLLGKWHVSSDTLDPGPT0020800_9623DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_POLAR_AMINO_ACID_TRANSPORT,PGPT0020800-ABC_PA_S-K02030NANA
D1-35_04825669hypothetical proteinATGCAGTTTGCCCCGACCTACGCTGAACGTCCGCCCATCACTGCCGAGGAAGAAGCCTACAACTTTCTGCTCGAAGCCATTTGCGGCGGTCGCCTGCGCAAAGGCGACCGGCTGATCGCCGAGGACATCGCCAACGAGATCGGCATGAGCCGCATGCCCGTGCGCGAGGCTTTCCGGCGTCTGGATGCCCAGGGCCTGGTGACCCTGCGGCCCAATCGCGGCGCGGTGGTCAGTGGCCTGGACATTGACGAACTGCACGAAGTCTTCGAAATGCGCAGCGCACTGGAAGGCCTGGCGGTGCGTGTCGCGACAGCAAAGATCGGTGAGCGTCAATTGGCAGCCCTGGAGCGCCTGCTGGACGAGATGGACGATTACCGCGAAGAGAGCGCCGAGTGGGTCAGCCGCCATCGCGCGTTCCATGAATATCTATGCAGCCTCAGCGGTCGGCCGCGCTTGCTGAAGCAGATCAGCGCGCTTTATTCGCTGATCGAAGCGCCGATGCGCCTGTGGCTGCAGCACGTGGAAAAGCCCCTGAGTGCGCGCCAGGAGCACACGCTGATCCTCGATGCCCTGCGTGCAGGCGATGCGGGGAAGGCCGAGGCGGTGGTGCGTGCGCACATCGAGGGCACCGTTCCTGAATTGATCGAGTTTCTGCAATCGAAAAAATAAMQFAPTYAERPPITAEEEAYNFLLEAICGGRLRKGDRLIAEDIANEIGMSRMPVREAFRRLDAQGLVTLRPNRGAVVSGLDIDELHEVFEMRSALEGLAVRVATAKIGERQLAALERLLDEMDDYREESAEWVSRHRAFHEYLCSLSGRPRLLKQISALYSLIEAPMRLWLQHVEKPLSARQEHTLILDALRAGDAGKAEAVVRAHIEGTVPELIEFLQSKKNANANANANA
D1-35_04826942rhaS_15HTH-type transcriptional activator RhaSATGTTCGCCGAAGTTCGTACCTTCAATGATCCTCAACAACACGCCGGTTCGATCCTCGGCTGGCATCAGGTCTATGACCAACTCGGCCGTGGCTGCCTTTCCAGCGAGCTGCGGCAGGTGTGCGCCGAGCGCTTCCAGATCTTCCAGGAGGTGCTGGACAAACGCGTGGTGCAGCGCGGTAGCGCGCCGAAAGGGCGCTTGTGCATTGCCCTGTCGCTGGGCAATGCGCCGGTGGTCCAAGGGCACCAGGTCGGCGCCCACAGCGTCGTGCTGTTGCGCGACGGCGAAGACTTCATCTTGCACGCCCCGGAAGGCACGCATTTCTTCGCGGCCAACGTCGACACGGTGCGTTTTGCCAAGCTGGCGGCTTATGAGCTGGCGGACGAACAGCTCAAACGCCTGAAAAGCGTTTCGCAAATCAGCGTGGATGAAGCGGTGTTGTCGAGGGTCCAGCAGCAGATCCAACCGCTGTTTCGTCACCTTTTGGAACAGGCGAGCGCCGCCAATCCCGCCGTGGAAAAAATCCTCGAAGACGTCCTGCTCAATGCTTTCCTCGATCTGTTCAGCCATGCCTCGGACGAGGTGCGTGGGCGTCGCGGCAACGTTGCCGTCAATGCCTACCTGGTCAAGCGGTGCCAGGAATTGGTCATGGCCAGCGCCGAAGTGCCGTTGAGCATCCTGGACCTGTGCGAACAATTACGCGTGAGCCGCAGGACCCTGCAGAACAGCTTCCAGGCGGTCACCGGGATACGTCCGGTGGAGTATTTGCGCAACCTGCGGCTCAATGCGGTGCGTCGTCGTTTGATCAGCACCCGCGCGACCGCGCTGAATGTCAGCGAGATCGCCGTGGCGATGGGTTTTTTCCACCTGAGCCACTTTGCCGCCCATTACCGGGCGCTGTTTGGTGAGTCGCCTTCCGATACACCCCGGGCACCCGCATGAMFAEVRTFNDPQQHAGSILGWHQVYDQLGRGCLSSELRQVCAERFQIFQEVLDKRVVQRGSAPKGRLCIALSLGNAPVVQGHQVGAHSVVLLRDGEDFILHAPEGTHFFAANVDTVRFAKLAAYELADEQLKRLKSVSQISVDEAVLSRVQQQIQPLFRHLLEQASAANPAVEKILEDVLLNAFLDLFSHASDEVRGRRGNVAVNAYLVKRCQELVMASAEVPLSILDLCEQLRVSRRTLQNSFQAVTGIRPVEYLRNLRLNAVRRRLISTRATALNVSEIAVAMGFFHLSHFAAHYRALFGESPSDTPRAPAPGPT0000623_485DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-ETHANOLAMINE_USAGEN-AQUISITION-ETHANOLAMINE_DEGRADATION,PGPT0000623-eutR|yfeG-K04033NANA
D1-35_04827765tesE2-hydroxyhexa-2,4-dienoate hydrataseATGAGGCGTGAAGATGATCTGTTGGTCCGGCTTCACGACGCCGCGCAGGCGGTACATGCCTTGCCTTCATTGGAATCACAGGCTTTCGATTTACCGAAGGGCTACGCCTTGCAGCGCGAGGCGTTGCGCCGACGCCAGGCCGGCGGTGAGCAGTTGAGCGGTTGGAAAGTCGCTTTCGCTGGCCGCGCGGCGCAGGAACGCTTCGGGCTCGATGAGCCGGTATTGGGCGGCTTGACCGATGCCATGGCCGTGGAGCCCGGCGGTGCGGTGGCGCTTGCACGGCTGATCCAGCCGAAGCTGGAAATCGAATTGGCGTTTGTCCTCGGGCGCGCGCTGGAGCCTGGTTTTCACAGCGACGAGGACATCCTCGCCGCCGTGTCGGAGGTCGTGCCAGCGTTTGAGATCGCCGATTGCCGCTGGCAGGGCTGGCGTTTCGGCGTCGGCGCGTTCCTGGCCGACAACGCCGCCGCGGGGCTGTACTGCCTGGGGCCACGGGTGGGGTTCAGTCCTGATCAATTGCCCCACGTGAACTACCGGCTGGAATGCGACGGGGTGGCATGCGGAGAAGGAAACGTGCTGGCGCGCGAGGACACGCCGGTGTCGAATTTGTGTTGGCTGGTCAGGCGATTACTGGCCGATGGGCAATGCGTTGAGGCGGGGCAGGTGGTGCTTTCCGGGTCGTTGTTGGCGCCGTTGGACATCAGGCCCGGCGAATATCGCTTGCACATGCTTGGCACGGAACTGGCTTTGGTTTTTCACCGATGAMRREDDLLVRLHDAAQAVHALPSLESQAFDLPKGYALQREALRRRQAGGEQLSGWKVAFAGRAAQERFGLDEPVLGGLTDAMAVEPGGAVALARLIQPKLEIELAFVLGRALEPGFHSDEDILAAVSEVVPAFEIADCRWQGWRFGVGAFLADNAAAGLYCLGPRVGFSPDQLPHVNYRLECDGVACGEGNVLAREDTPVSNLCWLVRRLLADGQCVEAGQVVLSGSLLAPLDIRPGEYRLHMLGTELALVFHRPGPT0006005_1307DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0006005-mhpD-K02554NANA
D1-35_048281608mhpA_2COG06543-(3-hydroxy-phenyl)propionate/3-hydroxycinnamic acid hydroxylaseATGAAGCAGGACAAAACCCAGGTTGTCATCGTGGGCGGCGGCCCGAACGGGATCACGGCGGCGCATTACATGGGGCTGTACGGCATCGACTGCATCGTCCTCGAATTGGCCGAGGGCATCCTGCCGTATCCCCGGGCGGTGGGCATGGACGATGAAGCGCTGCGCGTGCTGCAAGGCATCGGCATTGCGGAGCTGGCTGCGCGGGACATGATCTGCAACGTGCCCCTGCGTTACTACAACGCACGCGGTGTGTGCTTTGCCGAGGTCAAGCCGAGCACGGCCCACTATGGCTGGCCGATGCGCAACATCTTCATGCAGCAATTGCTTGAAGGCACCTTGCGTGAGCAGTTGGGCAAGCACGCGGGCGTCGAGCTGCGTCAAGGCCATGAAATGCTCGACCTGGAGCAGGATGAAGCGGGCGTGACCTTGCAGGTGCGCGATGCCCAGGGTGAGCTGTATCAGTTGAGTGCACAGTACGTGATCGGTGCCGACGGCGGCCGCTCCAGCGTGCGCAAGAAACTCGGTATCGAGCTGCTGGGGCTGACCCATCCGCGCAAATGGGTGGTGGTCGACACGGCCAACGACACCCTGGATGCGCCGTACACAGCTCTGCATGCCGATCCCCAGCGGCCCTTCGTGTGCATCTATTTGCCGTACCAGCAACGACGTTGGGAGTTCATGCTGCTGGAAGGCGAGGACGAGGCCCGCATGTGCGAAGAAACAACGATCCGACAGCTGATCCGTGGCCATATCGGCGATGCGGTGGATCAGCTGGAAATCATCCGGATCCGTGCCTACACCCACAACTCGCGAGTGGCGGCGCGGTTTGTCGCCGGCCGCGTGGCGCTGGTGGGCGATGCGGCGCACATTTCTCCGCCCTGGGCCGGGCAGGGACTCAACTCGGGCCTGCGTGACGTGGTCAACGTGGCCTGGAAACTGGCGGCGATCCTCCAGGGCCGGGCATCACCGGCGATACTCGCCAGTTACGACCAGGAGCGCCGCGGCCATGCGACAGACCTCATCGCGCTGGCCGACAACATGGGCGCGGTCCTCGGCCTGACCAACCCACTGATGGCTGGGGTGCGGGACTGGTTGTTCCAGGCGGTGAACAGCGTCGACAACCTTCGCTCGCACTTGCTGGAGTTCAAGTTCAAACCCAAGGCGACCATCACCAAAGGCCTGGTCTACCACGAGCGCGCCGAACTGCACGAGGATGACCTGGTCGGGCAATTGTTCATCCAGCCTTCAATCGAAGATGCCCAAGGGCAGCGTCGACAGCTGGATGAGGTGCTGGGGCATTCCTACGCGGTGCTCGGTTATCGGGTCAATCCGGCCGCGCACCTGAGCGAAGAAACCGCGGCCTGGTGGGCGCACTGGGAGACGCGCTTCATCCAGATCAATCGTTCGCGCAGTGGCGCGGGGCGCAACCAGCCCTTGGCGGCCGACGGCGCCATAGGCATTGAGGACGTTGATAACCGTCTGGGCGAGTGGTTTGCCAGGGTGCGCGATTGCATCGTGGTGGTGCGGCCGGATCGGTTTGTCGCGGCGATCACCACGCCCGAGCGGCTCGAAGGCGTGTTGCGCAAACTGGCGGAGCAACTGTCATGAMKQDKTQVVIVGGGPNGITAAHYMGLYGIDCIVLELAEGILPYPRAVGMDDEALRVLQGIGIAELAARDMICNVPLRYYNARGVCFAEVKPSTAHYGWPMRNIFMQQLLEGTLREQLGKHAGVELRQGHEMLDLEQDEAGVTLQVRDAQGELYQLSAQYVIGADGGRSSVRKKLGIELLGLTHPRKWVVVDTANDTLDAPYTALHADPQRPFVCIYLPYQQRRWEFMLLEGEDEARMCEETTIRQLIRGHIGDAVDQLEIIRIRAYTHNSRVAARFVAGRVALVGDAAHISPPWAGQGLNSGLRDVVNVAWKLAAILQGRASPAILASYDQERRGHATDLIALADNMGAVLGLTNPLMAGVRDWLFQAVNSVDNLRSHLLEFKFKPKATITKGLVYHERAELHEDDLVGQLFIQPSIEDAQGQRRQLDEVLGHSYAVLGYRVNPAAHLSEETAAWWAHWETRFIQINRSRSGAGRNQPLAADGAIGIEDVDNRLGEWFARVRDCIVVVRPDRFVAAITTPERLEGVLRKLAEQLSPGPT0019755_1011DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0019755-mhpA-K05712NANA
D1-35_048298522-(acetamidomethylene)succinate hydrolaseATGTCGGCAAACAGCCAGTTTTTCACCAATCGGACGGGGATGCGCCTGCGTTATGTGCGCTGGGGCAACCCGTCAGCAATTCCGCTGCTGCTGCTCCATGGGCTGCGCTCCTACGCCCAGACGTGGGCGCCGCTGGCCGCTGCGCTGGGCGAGCAGTATGTCTGCCATGCGCTGGATCAGCGCGGCCGTGGCGAGAGTGACTGGGCCGAGGCGTCCAGCTATCGCACCGAGCGCTATGTGAGCGACCTGGAAGATTGGGTGGCTCATCTGGGCCTGGAGCGTTTTGTCCTGGTGGGCCATTCCCTCGGCGGCACCAACGCGCTGGAGTACGCCCGGCTCAATCCCGGGCGACTGCACGCGCTGGTAATCGAGGACATCGGCCCCGGTTCGTCGATCCGTGGCGAGGGCGCCGAGCGTATCCGCCGCGAGATGAGCCAGACGCCGCTGGTGTTTCCCGACTGGGACAGCGCCGCGCAGTTCTGGCGGCAGTCGCGACCGGGTCTGTCGGCCGATGCGCTGGCGTCCCGATTGCGCTTTTCCATGAAGCAGACGCCGACGGGCATCGAATGGCGTCATGACCAGAAGGGCATTGCCGAGGCGCGCCTGAGCATCACCCCGACTGATCTGTGGCCCGCGGTGCGGGCGCTGGACTGCCCGACGCTGTTCATCCGTGGCGCGCGTTCGGATTTTCTTCCGTTGGCAACCCTGGAGGCGATGCGCGAGGCCAATCCGCGGGTGCTGACGGCGGAAATCGCGGACGCCAGCCATTATGTCCATGACGACCAGGGCGACGTGTTCAACCGGGTTGTCGCGGATTACCTGCGTGATCAACTCTTGCAACTACAACAATAAMSANSQFFTNRTGMRLRYVRWGNPSAIPLLLLHGLRSYAQTWAPLAAALGEQYVCHALDQRGRGESDWAEASSYRTERYVSDLEDWVAHLGLERFVLVGHSLGGTNALEYARLNPGRLHALVIEDIGPGSSIRGEGAERIRREMSQTPLVFPDWDSAAQFWRQSRPGLSADALASRLRFSMKQTPTGIEWRHDQKGIAEARLSITPTDLWPAVRALDCPTLFIRGARSDFLPLATLEAMREANPRVLTAEIADASHYVHDDQGDVFNRVVADYLRDQLLQLQQNANANANANA
D1-35_04830603hypothetical proteinATGAAAAACGCGAATTTCGCCAGCTACCACATCCGCAAATGGTACAGCTTCGTCGAGGAAACCCTGGCCAACGAAACCGGCCAGCTCGCCGATGGCGAGCCGTTGTTCAAATACGCCATCGGTGCGGTGATCGCCAATCCTTATGCCGGACGCTTCAGCGAGAGCCTGGCCGAGCTGATCGAACCGTCACCGTTGTTGGGCGAGGAATTCGGCCGGCGTATCCAGGCACTGGCGGGCGGGCGGCACATCATCAGCTACGGCAAGGCTTGCCTGGTGGGCAGCCAGGGTGAGTACGAACACGGCAATGCGCTACTGACCAACCCGGCGGCGGACCCGATTCGCCTGGCCTTGGGCGGCGGCAAATCCTGGGTGCCTTCCACCGGCAAGCGCGGTGGGCCGGGTACGGCCATCGATGTGCCGCTGGCCCACAAGGACGCGCTGTATGTGCGTTCGCACTACGACAGCATTTCGCTTTCGTTCGGTGACGGTCCTTCAGCGGACGAGTTGATCATCATCTGGGCCTTCGCCACGCGCGGACGTCTGCATGCGCGTCTGGGCGGCCTCCAGGCAGCGGACGTCAAGGGCAACGACGGCCTGTACTGAMKNANFASYHIRKWYSFVEETLANETGQLADGEPLFKYAIGAVIANPYAGRFSESLAELIEPSPLLGEEFGRRIQALAGGRHIISYGKACLVGSQGEYEHGNALLTNPAADPIRLALGGGKSWVPSTGKRGGPGTAIDVPLAHKDALYVRSHYDSISLSFGDGPSADELIIIWAFATRGRLHARLGGLQAADVKGNDGLYNANANANANA
D1-35_04831450hypothetical proteinATGAAAGTCGAGGTCGTTCGTACTCATCTGTCGCTGTTCGTGAGCGACCCTGAAGTGTCGGCGCGCTGGTACGCCGACGTGTTGGGCATGCATGAAAGTGCCCGCGGTGAAAGCTGGATCATGATGGCCTTCGGTGCCAAGCACCACGACATCGCCTTGATCCGCGCAGCACCGGGGGCCCATCAGGGCGGCCTGGGATTGCAGCACTACGGGCTGGAGATCGCGGGTGACATGACCACCCTGCGCCAGCTCTACGGCATGTTGCTGAACAAGGGCGTCGAGGTGGTGAAAATCACCGATCACGAGATCGGCAACGGCGTGTATTTCAACGACCCCGATGGCAATCGCATGGAATTTTTCCTCGAGTCCGAACACGACGACGAGCGCGGCAAGGCCCGCTTCAAGGCCGCTGGCGCGCCCAGCCGGCACTTCGATCTCGACCCACTTTGAMKVEVVRTHLSLFVSDPEVSARWYADVLGMHESARGESWIMMAFGAKHHDIALIRAAPGAHQGGLGLQHYGLEIAGDMTTLRQLYGMLLNKGVEVVKITDHEIGNGVYFNDPDGNRMEFFLESEHDDERGKARFKAAGAPSRHFDLDPLPGPT0005050_1248DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-CATECHOL_RESISTANCE,PGPT0005050-catE-K07104NANA
D1-35_048321041hcf136_3Ycf48-like proteinATGAGTAACGGAACGCTTTTAGTCGCCACCGTAGGGCAGGCGGTCATCCGCAGCGCCGACGATGGCCGCACCTGGCATCGCCTGGGCCTGGGCCAGGATCTGGAATTCGATGCAATCACCCGGTCGCTGAGTTTCCACCCAGGCACTCCCCAAGTGATCTACGCCGGCACCGACGTCGGCCTGTGCATCAGCCGGGATGCTGGCGGTTATTGGCAGCGGGTGGATTCGCCGTTCAATGGCCAGACCGTCTGGAAGGTCGCCGTGGATCCGCAGGACGCACAACGGATTTTCGTCGGCACCGGCGCGCCTTCCCGGGCGGTGCTGTGGCGCACCCTCGACGGTGGCCAGAGCTGGGATCGTGCCCCGGTGGAGATTCCGGAGTTCTGCGACGGCGTCAGTCGTCCACGCTTGCTGGCCTTCGCCTACGACCCGACGGATCGCAACCAGCTCTGGTTCGGCCTGGAAGAGGGCGGGCTGTTCCATAGCCGCGATGGCGGCGAAAGCTGGACCCGCGTCGATGACCGCTTGTTGTGGGACTACAACTCGGATGTGCACAACATCCTGGTCCTGCCCAACCATGGGCAAAAAGTCATCGTGGTGGTCTGTGTCAATGCCGTCTACCGCAGCCTCGACGAGGGGCAGACCTGGACCGGCATCGTCGCCCGGGAAACCTTCGGCCTGTATTACGTGCGCGCCATGAACGCGCCGCTGGGCAGCGAGGACACCCTGTACCTGAGCATCTCCGACGGCACGCCAGGCACCACCAGCAAGGTGCTGGTTTCCCGGGACGCAGCTTTGAGCTGGGAAGTGTTGCCGCTGTCGCAACAACCCAACTCGTGTGTCTGGGCGATTGCCTTCAACCCGGCTGATCCTCGGCAGATCGTCGCCGGCACCAAGTACGGACACCTGTTCACCTCCGAGAACGGCGGTGATGGCTGGCAGAAGCAGTGGCGTGAATTCAGCGAAATCGCTGATGTGCTCTGGACGCCCGCCGTGGCGCAGATCAAGTCCGGGCATCAATCCATCGTCAAGAAAAACTGAMSNGTLLVATVGQAVIRSADDGRTWHRLGLGQDLEFDAITRSLSFHPGTPQVIYAGTDVGLCISRDAGGYWQRVDSPFNGQTVWKVAVDPQDAQRIFVGTGAPSRAVLWRTLDGGQSWDRAPVEIPEFCDGVSRPRLLAFAYDPTDRNQLWFGLEEGGLFHSRDGGESWTRVDDRLLWDYNSDVHNILVLPNHGQKVIVVVCVNAVYRSLDEGQTWTGIVARETFGLYYVRAMNAPLGSEDTLYLSISDGTPGTTSKVLVSRDAALSWEVLPLSQQPNSCVWAIAFNPADPRQIVAGTKYGHLFTSENGGDGWQKQWREFSEIADVLWTPAVAQIKSGHQSIVKKNNANANANANA
D1-35_04833795novJShort-chain reductase protein NovJATGGATCTGGAATTGCAAGGCCGCGTGGCAATCGTCACCGGCGGTGGGATGGGTATCGGCAAGGAAGTCGCGCGTTTTCTGTCTCAGGAGGGCTGCAAGGTGGTGATCTGCGCGCGGCGCATGGAGTATCTCCAGCAAGCCGCCGAGGAAATCAGCGCCGAAACCGGCAACGACGTGCTGCCGCTGTTCTGTGACACCAACCAGATGTCGGCCGTGTCCGACATGGTCCAGGCCGCGCACAAGCACTTCGGCCGGATCGACATCCTGGTCAACGGCGCCGCGGCCCCGTCCGGCGTGGTGCGCAACGACATCGAGCATGCCGGCGACGACGAATTGCTCTCGGACCTGAACACCAAGGTGATCGGCTATTTCCGGTGCGCCAAGGCCGTGACCCCGCACATGAAGGCCGGCGGCTTCGGTCGCATCATCAACATCGGTGGCCTGACCGGGCGCGGCAGCAAGGTGCTCTCGGGCATGCGCAACCTGGCCATCGCCCACATGACCAAGACCCTTTCCGATCAGTTGGGCCCATCCGGCATCACGGTCAACCTGATTCACCCCGGCGTGGTCGACACCCCGCACATCCAGGAGTTGTACGAGCGCGAAGGGGTCAAGCAGGGCAAGACGCCCGAGCAGGTGGAGCAGGGCTACATCGACGCGACGCCGATCCGGCGCACCCTGGCGCCGATCGAAATGGGCTGGCTGATCGGTTTCCTCGCGTCCCCCAAGGCCGGCGCGGTGACCGGCGAATCCATCGGCATCGATGGCGGCCTGACCCGTGGCATCTTCATTTGAMDLELQGRVAIVTGGGMGIGKEVARFLSQEGCKVVICARRMEYLQQAAEEISAETGNDVLPLFCDTNQMSAVSDMVQAAHKHFGRIDILVNGAAAPSGVVRNDIEHAGDDELLSDLNTKVIGYFRCAKAVTPHMKAGGFGRIINIGGLTGRGSKVLSGMRNLAIAHMTKTLSDQLGPSGITVNLIHPGVVDTPHIQELYEREGVKQGKTPEQVEQGYIDATPIRRTLAPIEMGWLIGFLASPKAGAVTGESIGIDGGLTRGIFINANANANANA
D1-35_048341491styD_2Phenylacetaldehyde dehydrogenaseATGAGCCAGATCCAATTGTTACCTGCCGTGGAGCAGTTCCTGTCGCAGCCGGGGCGCCTGTTCATTGGCGGCACCTGGCAGGACGCCGCCGGCGGCCGCCAGTTCGCCGTGGAAAACCCGGCCACCGAACAGACCCTGGCCGAAGTGGCCGAAGGCGCTGAGCGGGACGTCGACGCCGCCGTCGCTGCCGCCCGCGCAGCCTTCACCGGCAGTTGGGCGCAGCAGTCGCCGGCCCAGCGGGGCTTGTTGCTGTTTCGTCTGGCGGAGCTGCTCGATCAGCATCGCGAAGAGCTGGCGCAACTGATCACCCTGGAAAACGGCAAGCCGATTGCCACGGCCCGTGGAGAAGCGGCGAGCGCGGCCAACATCATTCGCTACTTCGCCGGCTGGCCGACCAAGATCGAAGGCAGCACGCTGCCAGTGTCGCCCGCCAGCGGCGCACCGATGCTCAACTACACCCTGCGCGAACCGGTGGGCGTCTGCGCATTGATCGTGCCGTGGAACTTCCCCCTGACCATGTGCGTGTGGAAGCTCGGCCCGGTATTGGCGACCGGTTGTGTCGCGGTGCTCAAGCCCGCCGAGCAGACGCCGCTGGTTGCGATTCGCCTGGTGCAGTTGATCGAGGCCGCCGGCTTCCCGGCCGGCGTCGTCAACCTGCTCACCGGCCTCGGTGCCCAGACCGGTGCACCGCTGGCCGGGCATCCGGACGTCGACAAGATCGCCTTCACCGGCTCGACCCAGGTCGGCCGGCTGATCGCCCAGGCGGCCACCGGCAACATGAAGAAGGTCTCCCTGGAACTGGGTGGCAAGTCGCCGAACATCATCTTGCCGGACGCCGATATCGTCCGCGCCGCCAAGGGTGCCGCCGACGGCATCTTCTACAACCAGGGCCAGGTCTGCACCGCCGGCTCGCGTCTCTACGTACACGCCAGCGTCCTCGACCATGTGCTTGAAGAACTCCAGCGCCACGCGGCCGCGCATGTCCTCGGGCCAGGCCTGGATCCGGCCAGCAGCATGGGCCCGCTGGTCTCGGCCCGGCAATTGGGCACGGTCCGTGGCTACCTGCAACGGGGCCAGGAGGAGGGTGCCGAACTGATCTGCGGCGGCGACCGGCCGGCCCACCTGGAGCAGGGCCACTTCATTCGCCCCAGCGTGTTTCTTGACCGTGCCGAGCGCGCCTGCGTCGCCCGGGAAGAAATCTTCGGCCCGGTGCTGACCGTCATGAGCTGGACCGAAATCGATGAACTGGTGCTGCGCGCCAACGACTCGCCGTACGGGCTGGCGGCCGGTCTCTGGACCCGTGACCTGCGTTCCGCCCATCGCGTGGCCGCGCAGTTGAAGGCCGGATCGGTGTGGATCAACTGCTGGAACGTCGTCGACCCGGCGTCGCCCTTCGGTGGCTATAAGCAATCCGGTTGGGGACGGGAAATGAGCAAGAACGTGATCGATGCGTACACCGAAACCAAAAGTGTCTTTGTCGATCTGGCCTGAMSQIQLLPAVEQFLSQPGRLFIGGTWQDAAGGRQFAVENPATEQTLAEVAEGAERDVDAAVAAARAAFTGSWAQQSPAQRGLLLFRLAELLDQHREELAQLITLENGKPIATARGEAASAANIIRYFAGWPTKIEGSTLPVSPASGAPMLNYTLREPVGVCALIVPWNFPLTMCVWKLGPVLATGCVAVLKPAEQTPLVAIRLVQLIEAAGFPAGVVNLLTGLGAQTGAPLAGHPDVDKIAFTGSTQVGRLIAQAATGNMKKVSLELGGKSPNIILPDADIVRAAKGAADGIFYNQGQVCTAGSRLYVHASVLDHVLEELQRHAAAHVLGPGLDPASSMGPLVSARQLGTVRGYLQRGQEEGAELICGGDRPAHLEQGHFIRPSVFLDRAERACVAREEIFGPVLTVMSWTEIDELVLRANDSPYGLAAGLWTRDLRSAHRVAAQLKAGSVWINCWNVVDPASPFGGYKQSGWGREMSKNVIDAYTETKSVFVDLAPGPT0006035_544DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_LIGNIN_DEGRADATION|LIGNINASESPLANT_LIGNIN_DEGRADATION-DEHYDROGENASE_ACTIVITY,PGPT0006035-feaB-K00146NANA
D1-35_048351542ilvXCOG0028Putative acetolactate synthase large subunit IlvXATGAATGGTGCGCAACTGATAGTGAAGGCGGCGGTGGCAAGCGGTATCGAGTACTGCTTCGCCAACCCCGGGACGACCGAGATTCCCCTGGTAGCGGCCATGGCCAGCGCGCCAGCCCTCAAGCCGGTGTTGTCGTTGTTCGAAGGGGTATGCACCGGTGCCGGCGATGGTTACGGCCGGATTGCCGGCAAGCCGGCGATGACCCTGACCCACCTCGGGCCGGGTTTTGCCAATGGCATCGCCAACCTGCACAACGCCCGTCGCGCCAACACGCCGATCGTCAACGTCATCGGCGACCACGCCTCATGGCACGTCAATTACGATCCGCCGCTGGCGAGTGATATCCAGGCGTTGGCCGGGAGCGTATCCGGCTGGGTGCGCACCTCGCGCACGGCAGCGGGCATTGGCGAAGATTTCCAGGAAGCGGTGCGCGCCGCCTGGCAAGCCAAGGGCCAGATCGCCAGCCTGATCCTGCCGATGGATCTGCAAGCCAGCCCGGTGCAGCGGGAAAAAGCCTTCAGCTCTTTGCAGGCCCCGGTCCGGCGCTTTGCCGGTGATCGGGTCGAAGCAGTAGCGCGGGCGCTGCGTGACGGTCGGCGGCTGGTGTTCATCGTTGGCGACCAGGGCCTCTCGGTCGCTGGCCTGGAAGCGGCGGGGCGCCTGGCCCGGTTGGCCGGCGTGCGGATGTTCGCCGAAACCTTCCCGCGCTTGAGCTATCGCGGCGGTGGCCTGCCGGACCTGGATCGCCTGCCTTATTTTCCCGAAGTGGCCATCGAAATCCTCGACCAATACGACGCCGTGGTCTGCGCCGGCGTCCCCGAGCCCATCAGCTATTTCGGCTACGAAGGCATTGCGTCGCGGCTGGCGGAGCGTGAGCGGCTGTTGTGTCTGGCCGAGGTGGGCGACGACGTTGCCGGAGCGCTAACCGCACTGGCCGATGCGCTTGAGGCGCCGGCGCATATACCTACGCCGATCGGGATCGAGCTGCCCGCCGCCGAGGCTGAACTGACGCCTCAGTCGGTCGGGCAGGTGCTGGCCGCGTCGCTGCCGGACGACAGTATCGTTTCCGTCGAAGGCGGCACGTGCGGTTATCCGTTTTTCACCGCCTCGGCCCATGCCGCGCGGCATCGCGTATTGACCAATACCGGCGGCGCCATCGGCCAGGGGATTCCGGTGGGATTCGGCGCCGCCATGGCCGAGCGGGGCAACAAGGTGTTCTGCCTGCAATCGGACGGCAGCGCCCAGTACACCATCCAGACGTTATGGAGCATCGCCCGCGAACAATTGCCGGTGGTGATCCTGATCGCGGCCAACCATCGCTACGCGATCCTGCAGAACGAACTGCGCCGCTTCGGCATGACCGAGCTGGGCCCCGAGGCCTTGAGCCTGACGGTGCTGGACCGTCCACGCATCGACTGGAAAGCCCTGGCCAGAGGCTACGGCATGCCGGCCAGCACGGTGCATACCAATGGCGAGTTGCAGCGCGCCCTGGCAAACGCCAAGGCCGACGGCGGCCCGTGCCTGATCGAAATGGCGCTGTGAMNGAQLIVKAAVASGIEYCFANPGTTEIPLVAAMASAPALKPVLSLFEGVCTGAGDGYGRIAGKPAMTLTHLGPGFANGIANLHNARRANTPIVNVIGDHASWHVNYDPPLASDIQALAGSVSGWVRTSRTAAGIGEDFQEAVRAAWQAKGQIASLILPMDLQASPVQREKAFSSLQAPVRRFAGDRVEAVARALRDGRRLVFIVGDQGLSVAGLEAAGRLARLAGVRMFAETFPRLSYRGGGLPDLDRLPYFPEVAIEILDQYDAVVCAGVPEPISYFGYEGIASRLAERERLLCLAEVGDDVAGALTALADALEAPAHIPTPIGIELPAAEAELTPQSVGQVLAASLPDDSIVSVEGGTCGYPFFTASAHAARHRVLTNTGGAIGQGIPVGFGAAMAERGNKVFCLQSDGSAQYTIQTLWSIAREQLPVVILIAANHRYAILQNELRRFGMTELGPEALSLTVLDRPRIDWKALARGYGMPASTVHTNGELQRALANAKADGGPCLIEMALPGPT0008185_11162DIRECT 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
D1-35_04836753pobRCOG1414p-hydroxybenzoate hydroxylase transcriptional activatorATGAGCAGCCTGAGCAAAATGCTGAGCGTCCTGGACCTCTTCGGCCCGGATCGACTGAAGATCGACCCCGATACCATTGCCGAACGCATGGGCCTGTCGCGGGCGACCGTGTACCGTTACGTCAAGGACTTGTGTGACGCGGGCCTGTTGACCCGGGTGGATGCCGGCAGCTACGGCCTGGGGCCGCGCATCATCGAGCTTGACTGGATGATGCGTCAGTACGACCCGATCCTCGTCGCCGGGCGCGAGCTGATGCATGAGCTGTCCGAACAGACCGGCCTCGCCGTGTTCGCCAGCGTTTTTTATGACGGTCACATCATCAATACCTACATCGCCGACCCGAATGACACCTACCAGTTCTCATTCGGCCGCGGCCACCCGCTGCCGTTTTTTCGCGGTGCCCAATCCAAGGTATTGATTGCCTTCCAGAAAGGTCGGCGGCTGCAGCGGCTGTTCGACGAGCACCTGGCCAACGACCCTGCGAACACCTACGACTGGGCGGGCTTTTCCAAGGCGACAAAAAAGATCCGCAAGGACGGCTATTGCCTGACGCACGATGAGCTCAATCAAGGGCTGACCGGTATCGCGGCGCCGATCATCAATCCCGGGCTCGATGAAGTGGTGGGCAGCCTTTCGGCCGTCGGCAGCACCCAAAGTTTCAAGCTGCTGCGCCAGGAAACCGTGATTGAAATGGTCATGGACACCACCCGGCGGATTGCCGAACGGATGCAAAATCCGCCCGCTGTCGGCTAAMSSLSKMLSVLDLFGPDRLKIDPDTIAERMGLSRATVYRYVKDLCDAGLLTRVDAGSYGLGPRIIELDWMMRQYDPILVAGRELMHELSEQTGLAVFASVFYDGHIINTYIADPNDTYQFSFGRGHPLPFFRGAQSKVLIAFQKGRRLQRLFDEHLANDPANTYDWAGFSKATKKIRKDGYCLTHDELNQGLTGIAAPIINPGLDEVVGSLSAVGSTQSFKLLRQETVIEMVMDTTRRIAERMQNPPAVGNANANANANA
D1-35_048371326hypothetical proteinATGCGGTCCCTAGCGCGTATGGAATTTTTCGGCAGTGGTCTTGCCTGCACGCTGGCGCTCTGCGCCGCGAGCCAGGTCCAGGCCTATGAGCTGTATGCCGATGACGACACGCACCTCAACGCCGACATGCTCGCGGTGTTCGGCCATTTCAACAGCCGCAAGAATTACGACGGCAGGTCCGGCGGTTCGACTTGGCGTGAGGGCTTCATCAAGTATGGATTAAGCGGCGACCAGGGTCTTGCCGGTCATGGCACCGCCTACGGCGCGTTCAATCTGGTCAGTTCGGCCACCTGGGGCGATGGCGATGCGGCCGGCAATACGCTGGGCAGCGAGCGCACGACGAAGATCGAAGACGTTTACCTGGGCTGGCGCTCCGCCGACCTGTTCCCGGTGCTGGGACGGGACGGTATCGATATCTCCGGCGGCCGCCAGGTGGTCAAGCTGGGCCGGGGATTCCTGATCAACGATGACGGGCCCAACCTGGGCAAAGGCCCGGCGGACGGACGTTTGAACCGTGGTGGCGCCTATTACCTGGCCGCCCGGCATGCGTTCGACCAAACCGCCGTGTTGCGCCTGGGCGGGCAGGATGGGCTGCACGGCAGTGTGCTGTGGCTCAAGTCCGACAACCGCGCCCAGGCCGAAACCGAACTGGCCGCCGGCACGCTGGACTACACCACCCAGGCCGGTACGCTGGGGCTGACCTGGGTGCATGGCATGGACGTGAACGACCGCTGGGCCAGTGATTTCCAGCGCCAGCGCAAGGGCATGGACGTCTACAGTGTTCGCGGCGAGGGCGATGCCGGCATTGAGAACGCCAGCCTGGCCTTCGAATACGCCTGGCAAGACAAGGACGCCGGCCCGCAGAGCGCCTGGTACGCCGAGGCCGGCTACACCTTTGCCGATATCGCCTGGACGCCGAAGCTGACCTACCGCTACACCCGTTATTCGCAAAAATGGGACTCGCTGTTCACCGGCCAGAGCACCGGTTACGGCACCTGGTTCCAGGGCGAAGTCGCGGGGAACTATGCCGGCCCGTTCAACAGTAATACCGGCATCCACCATCTAGGCCTGACCGCCAGGCCATTGGAGAACCTGACCCTCGGTGCGTTGTACTTCGACTTCAACACGGTGCGTAAGGACAACGCCGTGAACCTGGATGCCCGGGAGCTGGACCTGTACGCCGAGTGGGCGGTGAACGAGCATCTGATCATCACGCCGCTGGTAGGCCTCTACAAGCCGGATCGGGATGCGACGACAGGGGGCAATCAAGTGGCGGGCAATGGCACCAATGTTTATAGCCAGGTGACGGTGGCAGTGCCGTTTTGAMRSLARMEFFGSGLACTLALCAASQVQAYELYADDDTHLNADMLAVFGHFNSRKNYDGRSGGSTWREGFIKYGLSGDQGLAGHGTAYGAFNLVSSATWGDGDAAGNTLGSERTTKIEDVYLGWRSADLFPVLGRDGIDISGGRQVVKLGRGFLINDDGPNLGKGPADGRLNRGGAYYLAARHAFDQTAVLRLGGQDGLHGSVLWLKSDNRAQAETELAAGTLDYTTQAGTLGLTWVHGMDVNDRWASDFQRQRKGMDVYSVRGEGDAGIENASLAFEYAWQDKDAGPQSAWYAEAGYTFADIAWTPKLTYRYTRYSQKWDSLFTGQSTGYGTWFQGEVAGNYAGPFNSNTGIHHLGLTARPLENLTLGALYFDFNTVRKDNAVNLDARELDLYAEWAVNEHLIITPLVGLYKPDRDATTGGNQVAGNGTNVYSQVTVAVPFNANANANANA
D1-35_048381350spuC_3COG0161Putrescine--pyruvate aminotransferaseATGTACGAGCACTACAAGACAGCGCAAAAGAAATTCTGGCATCCGATGAGTTCATCGGCCCCCGCGAACCGCTCGAAGACATTGGTCATTGCCCGGGGCGACGGCAACTACATCACCGACATCGAAGGCCATCGCATGCTCGACGGTGTCGGCGGGTTGTGGAACGTGAACGTTGGCCATAACCGTGCTTCGGTGAAGGCGGCCATTGCCGCGCAGATGGATGAACTGGCGTATTACCAGACCTTCGACGGCATCGCGCATCCTCGGGTGTTTGATTTGGCCGAGCGGCTGACGTCGATGTTTGCCGAGGAAAACATGGAGCGGGTGCTGTTCAGTTCCGGCGGTTCCGACGCAGTCGAGACCGCGTTGAAAATGGCCCGCCAATACTGGATCGCCAGCGGCGAACCCGGACGCACGCGCTTCCTGTCGTTGCGCAACGGTTACCACGGCGTGCACATGGGCGGCACCTCGGTGGGTGGCAACGGCGTCTATCACTACAACCATGGGCCGCTGTTGGCCGGCTGCCATTTGCTCGACACGCCCTGGCTGTACCGCAACCCCTGGGACTGCCGCGACCCGCAGGAGCTCACCGCCCACTGCATTCGTCAGTTGGAGGACCAGATCGCGTTGCTCGGTGCGCAGACCATCGCCGCGCTGATCGCCGAGCCAGTGCAGGGCGCCGGCGGCGTGATCGTCCCGCCTGCCAACTACTGGAAGAGCCTGCGCGAGGTGTGCGATCGCCACGGCATCCTGCTGATCGCCGATGAAGTGGTGACCGGTTTCGGCCGCACCGGCTGCATGCTCGGCAGTCGTGGCTGGGGCGTCTCGCCAGACGTACTGTGCCTGGCCAAGGGCATCACGGCCGGCTACGTGCCCATGGGCGCTACCGTGTTCAACCGGCGCATCGTCGAGGCGATCGAGAACGGGCCGGGTTTCAGCAGCGTGATCATGCATGGCTACACCTACAGCGGACACCCGACCGCTTGCGCCGCGGCTTTGGCGGTGCTGGACATCGTCGAGGCCGAAGATTTGCCGCGCAACGCCGGCAAGGTCGGCGCCCAGTTGCTGGAGCAACTGCAACCGTTGGCTGAGCGTCACGCGGTGGTCGGCGAAGCACGCGGCAAGGGCTTGATGATCGCTCTCGACCTGGTGGCGGACAAGGCCACCCGTGAACCGCTGGACCCGGCCACCGGGCTGGCCTCGCGCATCGCCGAGCATGCGCGCCGCGCCGGCGTGCTGGTGCGCCCGATCGGCAACAAGATCGTCCTCTCGCCGCCGCTAACCCTCACCTCCGATGAGGCCGGCTTGATGGTCGACGCGCTGGATGACGCGCTCGCCAACTGCCGCTGAMYEHYKTAQKKFWHPMSSSAPANRSKTLVIARGDGNYITDIEGHRMLDGVGGLWNVNVGHNRASVKAAIAAQMDELAYYQTFDGIAHPRVFDLAERLTSMFAEENMERVLFSSGGSDAVETALKMARQYWIASGEPGRTRFLSLRNGYHGVHMGGTSVGGNGVYHYNHGPLLAGCHLLDTPWLYRNPWDCRDPQELTAHCIRQLEDQIALLGAQTIAALIAEPVQGAGGVIVPPANYWKSLREVCDRHGILLIADEVVTGFGRTGCMLGSRGWGVSPDVLCLAKGITAGYVPMGATVFNRRIVEAIENGPGFSSVIMHGYTYSGHPTACAAALAVLDIVEAEDLPRNAGKVGAQLLEQLQPLAERHAVVGEARGKGLMIALDLVADKATREPLDPATGLASRIAEHARRAGVLVRPIGNKIVLSPPLTLTSDEAGLMVDALDDALANCRPGPT0007865_847DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007865-spuC-K12256NANA
D1-35_048391422prr_3COG1012Gamma-aminobutyraldehyde dehydrogenaseATGCACGATTATCAAATGCTCATCAATGGGCTCCCGGTCAACGGTGAAAATGGCCACTTCGATGTGCTCAATCCGGCCACCGGTACCGCGTTCGCCCGTTGCCCGGCCGGTTCCCTGGCCCAGTTGGACCTTGCTGTCGAAGCGGCCCAGTCGGCCTTTATCGAATGGCGACACAGCAGCCACGAAGACCGCCGCCGACGTTTGCTGGATATCGCCGATGATATCGAGCAGGAGGCCGACGCATTGGCCCGGCTCATCGTCCTGGAGCAGGGCAAGCCGCTGGCGCTGGCGTTCTCCGAAGTCATGGGCGCGGCGGCCTGGACCCGCTATGCCGGCGAGCAGCAGATTCCCGTCGAACTGGTGGAAGAGACCCCGACCCAGCGCATCGAGCTGCATCGCAAACCCTTGGGCGTGGTGGCCTCGATCACACCGTGGAACTGGCCGTTCATGATCGCCGTCTGGCACATCATGCCGGCGTTGCGGGCCGGCAACTGCGTGATCAGCAAGCCTTCAAGCCTGACACCCTTGAGCACCCTGCGCCTGGTGGAAATCATCGCCGGTCATGTGCCTCATGGCGTGATCAATGTGGTGACCGGTGAACAAGGTTTCGGCAGCGCGATCACTGCCCACGCCGGCATCCAAAAGATTGTCTTCACCGGCTCGACCGCCACCGGCCAGAGTGTGATGCGCGGCGCCGCCGCCAACCTCAAACGCCTGACCCTGGAGCTGGGCGGCAACGATGCTGCGATCGTGCTGCCCGGCACGCCGGTCGAGGCGGTGGCCGAGGATATTTTCCAGGCCGCCTTCCTCAACATGGGCCAGACCTGCGCCGCCCTCAAGCGTCTGTACGTCCATCAATCCCAATACGAGGCCTTTGCCGATGCGTTGACGCGCATTGCGGCGCGCCAGGTAGTGGGCGATGGCCTGGAGCCCGAGGTGACCTTCGGCCCGGTGCAGAACGCTGAACAATTGGCGCTGGTGGAGGCGCTGGTAGCCGACGCCCGTGGCCATGGCGCGCGGGTGCTGTGTGGCGGTGCGCGACTGGACCGGCCGGGCTTCTTCTACCCGCCAACCCTGGTCGCCGACGTCACCGATGGCCATCGCCTGGTGGACGAGGAACAGTTTGGCCCGGTGTTGCCATTGATCGCCTATCAGGACGTCGAGGATGTCCTGCGCCGCGCCAATGCCGGCGACATGGGCTTGGGTGGCTCGGTCTGGGGCAGCGATATCGAGCAGGCCCAGGCGTTGGCCAGTCGTCTTGAAAGCGGCGTGGCCTGGGTCAACTGCCACGCGCAGATCCAGCCGAATACGCCGTTTGGCGGCAGCAAGATGTCCGGGTTCGGCGTCGAGTTCGGCCTTGAGGGGTTGCTGGAATTCACCGGCCAGCAACTGCTGTACGTACGCAAGCGTGAAACACAGTGAMHDYQMLINGLPVNGENGHFDVLNPATGTAFARCPAGSLAQLDLAVEAAQSAFIEWRHSSHEDRRRRLLDIADDIEQEADALARLIVLEQGKPLALAFSEVMGAAAWTRYAGEQQIPVELVEETPTQRIELHRKPLGVVASITPWNWPFMIAVWHIMPALRAGNCVISKPSSLTPLSTLRLVEIIAGHVPHGVINVVTGEQGFGSAITAHAGIQKIVFTGSTATGQSVMRGAAANLKRLTLELGGNDAAIVLPGTPVEAVAEDIFQAAFLNMGQTCAALKRLYVHQSQYEAFADALTRIAARQVVGDGLEPEVTFGPVQNAEQLALVEALVADARGHGARVLCGGARLDRPGFFYPPTLVADVTDGHRLVDEEQFGPVLPLIAYQDVEDVLRRANAGDMGLGGSVWGSDIEQAQALASRLESGVAWVNCHAQIQPNTPFGGSKMSGFGVEFGLEGLLEFTGQQLLYVRKRETQNANANANANA
D1-35_048401449hypothetical proteinATGAGCGTATCTTTCCCGATCAATGGCTCGACGGAGTTGAAGCGCGGCGCCCTGGGTGTCGGCTTCATCATCTTCTTTGTGATTTCGGCGGCGAGCCCCCTGAGCGTGATCGCCGGTGGCTTTCCCATCGGCATCATGCTCGGCAACGGCGCCGGTACGCCCGCGCTGCTGCTTCTGGCGTTGTTGGTGTTGCTGGCCTTTTCGGCGGGATACACCGCCATGTCCCGGCACATGACCAATGCGGGGGGCTTCTACGCCTTTACCTCCCGTGGCCTCGGTGGGTTGGCGGGCGGGGCGGCAGGCGTGTTGGCGATGTTTGCCTACAACATTCTCCAGGTCGGCCTGTACGGGATGTTCGGCGGTGTGGTCAGTGGCACGATGGCCAGCATGTTCGGCCTGGAATTGCCGTGGTGGGCTTATTCGCTGCTGGCGATGGCGAGCGTGGCGATTCTCGGCTATCGCAAGATCGACCTGTCGGCCCGTGTGTTGTCGGTAGTGGTCATTGCCGAATACCTGGCGATCCTGACGCTGGACTTCGCCATGCTCAAGTCCGGTGGCGACAGTGGCATCAACCTCGATTCGTTTGACCGCAGCCACGTATTCAGCGGCACGCCTTCGATCGGCCTGTTGTTCTGTTTTGCCGCCTTCATCGGCTTCGAGGCCACGACCATCTACGGCGAGGAGGCGAGGAACCCGCAGCGCACGATTCCCATTGCCACCTACGCGTCGGTGCTGTTGATCGGTGGTTTTTATGCGCTGTCGGTCTGGGCCATGGTCATCGGCGTCGGGGCCGACAAGATCGTCCCGACCCTGCAGGCGCTGCAGGATCCGACCACGTTCATCTACGGCCTGTCCGATCATTTTGTCGGCCCGCAGCTGACCCAGGTCATCCGCGTGCTGTTCATGGTCAGCATCTACGCCGGGCTGCTGGCGTTCCACAATGCCGCGGCGCGTTACTTCTACGCCATCGGCCGGGACGGGCTGCTGCATAGCCGGTTGGGGACGACCCATCGCGTACACCAGAGCCCACACATGGGCTCGGTCCTGCAAAGCCTGATTGCCGCGGTGGTGGTGCTGATTTTCGCCGCGCTGGACGCCGACCCGATCCTGCAACTGTTCGCCTGGTTCTCCAACCTGGCCACCCTCTGCGTCATCCTGCTCATGGCGCTCACTTCGGCTGCGGTGCTGGTCTATTTCCGCAAACACCCGGAACTGAAACTCGGGCTGTGGCGCGGTCGGATCCTTCCCGGCTTTTCATGCCTGGCGTTACTCGCGGTGCTAGTCCTTGCCGTGCTGCATTTCGATGTGCTGACCGGCGCCAGCCAGCTCTTGTCCTACGGCCTGTGCGCCGTCATTCCCGTCGCGCTGATCGTCGGTGTGTTCCTCGCCGCCCGACTGCGCAAGGTCGCGCCCGAGCGATACAGCGCACTGGGTAGCCACAAGCTCTAGMSVSFPINGSTELKRGALGVGFIIFFVISAASPLSVIAGGFPIGIMLGNGAGTPALLLLALLVLLAFSAGYTAMSRHMTNAGGFYAFTSRGLGGLAGGAAGVLAMFAYNILQVGLYGMFGGVVSGTMASMFGLELPWWAYSLLAMASVAILGYRKIDLSARVLSVVVIAEYLAILTLDFAMLKSGGDSGINLDSFDRSHVFSGTPSIGLLFCFAAFIGFEATTIYGEEARNPQRTIPIATYASVLLIGGFYALSVWAMVIGVGADKIVPTLQALQDPTTFIYGLSDHFVGPQLTQVIRVLFMVSIYAGLLAFHNAAARYFYAIGRDGLLHSRLGTTHRVHQSPHMGSVLQSLIAAVVVLIFAALDADPILQLFAWFSNLATLCVILLMALTSAAVLVYFRKHPELKLGLWRGRILPGFSCLALLAVLVLAVLHFDVLTGASQLLSYGLCAVIPVALIVGVFLAARLRKVAPERYSALGSHKLNANANANANA
D1-35_048412052mcpU_2COG0840Methyl-accepting chemotaxis protein McpUATGTTCTTCGCTCGTCTCTCTATCCAATGGCGGATCACGCTGTTGAGCGGTCTGTGCCTGCTCGCCGTGGTCGGGGCATTGACCGCTGCCTCGCTGTACCAGAACCAGCAAGGCGCGACGCTGCTGAAGCAGCAAAGCAGCCAGTTGCTAGGGCAATCGGCCTTGGAAGGCCTGCGGGCACAGGCTCTGGCGCACGGTCAGCGCGTGGAGCGTTTTTTCAGCGAAACAGCGATTTATGGCGAAGGTTTTGCCCAACAAGTGCTTCAACTGCGCACCCAGGCATTGCACGGGCGACTGACCCCGGGGCAACTGCGCCAGGACCTGATCGCCGCAACCCGTCAGGCCCTTGCGAAGCGCGAAAAAGTCCTCGGTTTCTACGTGGTGCTGCTTCCCGACGCGCTGATCGGTCCAGACGCCGGTTTCGCCGGGCAGCGCGACCTGGCCGGCAATGAAAACGGCCGCTTTGCCCTGTACTGGTCACAAAGCCAACCCGGCCATCTGGTGCAAGAAGTGCTCAGCGAAGCCCAGATCAGCGCCAACACCGCGCCACCGGGCAGCGAGCCGGCAAACGCCTGGTACATCTGCCCGCAGACCCAGGGGCGCACATGCGTGACAGAGCCCTACGCGATCGAAGTCGAAGGCCGCAAGACCCTGATGAGCAGCATTTCCATACCGCTGCTGGACGAGGGCAAAGTCATCGGTATCTTCGGCATGGACATCAGCCTGGATACCCTTCAGCAACTCGCCGCCAGCCTTGCCGATGACTTGTACCCCGGCCACAGCGAGATCAGTATTCTCTCCCCCTCCGGGCAGATTGCCGGCCACAGCGGCGCCGTGGCGGGCGCTTCGGTCGATGTGCAGCAAACGGTGCAAACCGCTCCGGCCAACAATCCCTGGCAATTGCAGATACGCGTGCCGGAAGCACTGGTGCAGGCGCCCGCCCTGCACATGCAGGCGCAACTGGACGACAAGCAGCGCCAGTCCAACGGGTTCAACCTCAGCCTCGGGTTGCTCTGCGCCGGACTGGGCCTGTTGCTTGTCTGGCTCAGCGCTTACGGCGTGACCCGGCCACTGCTGAGGGTGGCGCATATGCTCGATGCGATTGTCGAAGGCGACGGTGACCTCACCCAGCGGCTGCCGAACACGCGGCACGATGAACTGGGCCGACTGGCCGACGGCTTCAATCGTTTTCTCGACAAACTGCAACCGATCATCCGGGATATCCAGCAAGCCTCCCTCGATACCCGGGAGACGGCCGACACCTCGGCGCGGGTTGCCCGCGAAGTCAGCGCGGGCATGCAGCAGCAATACCGCGAGGTAGAACTGGCGGCGACGGCTTTGCATGAAATGAGCGCCAGCGCCCAGGAAGTTGCCCGCCATTCCCACCAGGCCGCCGATGCCGCAACGGTGGCCGAAAATGCCAGTCGATCGGGGCAGGAAATGTTCGCCAATGCCGTCAACAGCATCGATGCCCTGGACCAGCGGCTGGAGGCAACGCTTGGGCAGGTCAGAGTACTGGCGGACAACAGCCAGCAGATCAACCAGGTGCTCGACGTCATCTGTGCAATTGCCCAGCAAACCAACCTGCTGGCCTTGAATGCCGCTATCGAAGCGGCCCGCGCCGGCGAACAGGGGCGCGGCTTCGCGGTGGTGGCTGACGAAGTCCGGCATCTGGCGAGCAACACGCAGAACTCGGTCGAGCAGATACGCACGGTGATCGAAGCGTTGCAGCAACTGAGCCAGGACGTGGTGCACAGCACCCAGTCGAGCCGCGAGCTGGCCAGGGGCAGCGTGGTCCAGGTCGAGCAGACCCACGGGGCACTGCAACGTATCACCCGGGCCGTGGAAGTGATCGAACAGATGAACCAGCAGATCGCCAGCGCAGCCCTGGAGCAAAGCTCGGTGGTGGAAGACATCAGCCATCGGGTGAGCGGCATTCGCGGCATCAGCGAAACCTTGAGCGGCCAGATGCACGAAGCCTCCGAGGCTAGCCACTCGCTGCATGCCATGGCCAACCATCAACAGCAGTTGGTGGAGCACTTTCGGATCTAGMFFARLSIQWRITLLSGLCLLAVVGALTAASLYQNQQGATLLKQQSSQLLGQSALEGLRAQALAHGQRVERFFSETAIYGEGFAQQVLQLRTQALHGRLTPGQLRQDLIAATRQALAKREKVLGFYVVLLPDALIGPDAGFAGQRDLAGNENGRFALYWSQSQPGHLVQEVLSEAQISANTAPPGSEPANAWYICPQTQGRTCVTEPYAIEVEGRKTLMSSISIPLLDEGKVIGIFGMDISLDTLQQLAASLADDLYPGHSEISILSPSGQIAGHSGAVAGASVDVQQTVQTAPANNPWQLQIRVPEALVQAPALHMQAQLDDKQRQSNGFNLSLGLLCAGLGLLLVWLSAYGVTRPLLRVAHMLDAIVEGDGDLTQRLPNTRHDELGRLADGFNRFLDKLQPIIRDIQQASLDTRETADTSARVAREVSAGMQQQYREVELAATALHEMSASAQEVARHSHQAADAATVAENASRSGQEMFANAVNSIDALDQRLEATLGQVRVLADNSQQINQVLDVICAIAQQTNLLALNAAIEAARAGEQGRGFAVVADEVRHLASNTQNSVEQIRTVIEALQQLSQDVVHSTQSSRELARGSVVQVEQTHGALQRITRAVEVIEQMNQQIASAALEQSSVVEDISHRVSGIRGISETLSGQMHEASEASHSLHAMANHQQQLVEHFRIPGPT0015710_4988DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_048421167acrA_2Multidrug efflux pump subunit AcrAATGTCCAAGATTCCTTTCGTCACACTGGGCCTGTTGGTCGGGGCGTTGCTGAGCGGCTGCGACGGCGCCTCGACCCCGGAAGAATCGGCGCCGCTGGCAAGCGTGCGTATCGAGACCGTCCAGGCCGGGCCACTGTCGATCAGCAACGAACTGAGTGGCCGTATCGCCGCGCCACGGGTGGCCGAGGTCCGTGCACGGGTAGCCGGCGTGGTCTTGCAGCGAGTGTTTCGAGAAGGCCGCGACGTCAAGCAGGGCGACGTGTTGTTTCGCATCGACCCGGCGCCGTTCAAGGCCGACCTGGACAGCGCCGAGGCGGCGTTGCGCAAGGCCGAGGCCAATGCATTCCAGGCCCGGTTGCAGGCGCAGCGTTATGCCCAGTTGATCGATGACCAGGCGATCAGCGGCCAGGAATATGACAATGCCCGGGCCGCCGTGCGCCAGACCGCAGCCGACGTCGCCGCCAACAAGGCGGCCGTTGAACGGGCGAAGCTGAACCTGGGCTACGCCACGGTGACCGCACCGATTTCCGGGCGCATCGGCCGGGCCCTGGTGACGGAAGGCGCGCTGGTGGGGCAGAACGAAAGCACGCCACTGGCGCTGATCCAGCAGTTAGACCCGATCCACGCCGACCTCACCCAATCGACCCGCGAACTCAACGAGCTGCGTCGCGCGTTCCGTGCGGGGCAGCTGCAAGCCGTCGGCCAGGGCCAGGCCAAGGCCACCTTGATCGAGGACGACGGCAGCCCTTATCCGCTGCCGGGCAAGTTGCTGTTCACCGACCTCAGCGTCGACCCGAGCACCGGCCAGATCACCCTGCGCAGCGAGTTCCCCAACCCCGACCTCGATCTGCTGCCCGGCAGCTTCATTCGCGTACGCCTGGAACAGGCGGTCAACCGCCAGGGAATCACCGTGCCGCAACGGGCGATCCTGCGCGACAGCGCCGGCGTCGCGCAGGTGCTGCTGCTGGACGCCGAGCAGAAGATCAGTCAGCAACCGGTGCAACTGGGCGCGGCGCAGAACGATCGCTGGATCGTCACGCAAGGCTTGAAGCCGGGCGATCGCATCGTCGTCGAAGGCCTGCAGCATGCCCGCCCCGGTGAACAGGTCCGGGTCGACGACGCCCCTCTCCCCCTCGCCCAGGTTCCCGGGCCACAGGCAGGACACTAAMSKIPFVTLGLLVGALLSGCDGASTPEESAPLASVRIETVQAGPLSISNELSGRIAAPRVAEVRARVAGVVLQRVFREGRDVKQGDVLFRIDPAPFKADLDSAEAALRKAEANAFQARLQAQRYAQLIDDQAISGQEYDNARAAVRQTAADVAANKAAVERAKLNLGYATVTAPISGRIGRALVTEGALVGQNESTPLALIQQLDPIHADLTQSTRELNELRRAFRAGQLQAVGQGQAKATLIEDDGSPYPLPGKLLFTDLSVDPSTGQITLRSEFPNPDLDLLPGSFIRVRLEQAVNRQGITVPQRAILRDSAGVAQVLLLDAEQKISQQPVQLGAAQNDRWIVTQGLKPGDRIVVEGLQHARPGEQVRVDDAPLPLAQVPGPQAGHPGPT0003275_2569DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexAB-OprM,PGPT0003275-acrA|lir|mtcA|mexA|adeI|smeD|mtrC|cmeA-K03585NANA
D1-35_048433096mexBCOG0841Multidrug resistance protein MexBATGCCGCATTTTTTCATCGACCGCCCCGTCTTCGCCTGGGTCGTCGCGCTGTTCATCCTGCTGGCCGGGATCCTGGCCATTCCGCAACTGCCGGTGGCGCAGTACCCGGTCGTGGCTCCGCCGCAAATCGAGATCTACGCGGTGTACCCGGGCGCTTCGGCGCAGACGGTGGACGAAAGCGTGGTCAGCCTGATCGAGGAGGAGCTCAACGGCGCCGACAACCTGTTGTATTTCGAATCCCAGAGCAGTCTCGGTAGCGCGACGATCACCGCGACCTTTCAACCGGGGACGAACCCGGAACTGGCCCAGGTCGACGTGCAGAACCGCCTCAAGGCCGTGGAGTCGCGCCTGCCGCAGGCGGTTACCCAGCAGGGCTTGCAGGTGGATAAGGTTTCCGCCGGCTTCCTGCTGCTGATCACCCTCACCTCCAGCGACGGCAAGCTCGACGACGTGGCGCTCAGCGATTACCTGGCGCGCAACGTGATGAACGAGATCAAGCGCCTCGACGGTGTCGGCAAGGCCCAGCTGTACGGTGCCGAGCGAGCCATGCGGATCTGGATCGACCCGCAGAAGTTGCTGGGTTTCAACCTGACCCCGGCCGACGTCAACGCTGCCATCGTGGCGCAGAACGCCCAAGTCTCGGCCGGCAGCCTCGGCGACCTGCCGAGCCGCAGCACCCAGGAAATCACCGCGACCATCGTCGTCAAGGGCCAGCTCTCGACCCCGCAGGAATTTGCCGACATTGTGCTCAAGGCCAACCCCGACGGTTCCACGGTGCGCATCGCCGATGTCGCACGGGTGGAAATCGGCAGCCAGGAATATCAGTTCTCCACGCGCCTGAACGGCAAACCCTCCACCGCCGTAGCCGTGCAGCTGTCGCCGGGCGCCAACGCGCTGAACACCGCCACCCTCGTTCGAGCGAAAATGGACGAGCTGTCGCGCTACTTTCCGGCCGGCGTGGAGTACAAGATTCCCTACGACACGTCGCCGTTCGTCAAGGTCTCGATCACCAAGGTGGTCTATACCCTCGGCGAGGCGATGCTGCTGGTGTTCGCGGTGATGTTCCTGTTCCTGCAGAACATCCGCTACACGCTGATCCCCACCCTCGTCGTGCCGGTGGCGCTGATGGGCACCTTCGCGACCATGCTCGCGCTGGGGTTCTCGATCAACGTACTGACCATGTTCGGCATGGTGCTGGCCATCGGCATCCTGGTGGACGATGCCATCGTGGTGGTGGAAAACGTCGAGCGGATCATGGCCGAGGAAGGCCTGTCACCCAAGGAAGCGACGCGCAAGGCCATGGGCCAGATCACCGGGGCGATCATCGGCATCACCCTGGTGCTGGTGGCGGTGTTCATTCCGATGGCGTTCATGCAGGGTTCGGTGGGCGTGATCTACCAGCAGTTCTCGCTGTCGATGGCGACGTCGATCCTGTTCTCGGCCTTTCTAGCGCTGACCTTGACCCCGGCGCTTTGCGCGACCTTGCTCAAACCGATCACCCAAGCCGATCACCACGCAAAGGGCGGTTTTTTTGGCTGGTTCAACCGTGGCTTCGACCGGTTCGGCAACCGCTACCAGGGTTGGGTCGCCTACGCGATGAAACGCAGCGGCCGCTATCTGCTGATCTATGGCGTGCTGCTGGTGGGCATGGGCCTGCTGTTCAGTCGCCTGCCCTCCTCGTTCCTGCCGGTGGAAGACCAGGGCTACACCATCACCGACATCCAGCTGCCGCCGGGTGCCAGCAAGAATCGTACGGTTCAGGTGGTGGAGCAGATCGAGGCGCACAATGCCGGCGAGCCTGGGGTCGGCGACAGCACGGTCATCCTCGGTTTCAGTTTCTCCGGCAGCGGGCAGAATGCGGCCCTGGCATTTACCACGCTGAAAGACTGGTCGCAGCGCGGTGGCGACGATTCGGCGGCGGCCATCGCCGATCGCGCCAACCAGGCCTTCGGTGGAATCAAGGACGCCATGGTGTTTTCCGTGCTGCCACCGCCGGTGGACGGTCTCGGCACCTCCAGCGGTTTCGAGTTCCGCTTGCAGGACCGCGGCGGCCTCGGCCACGCCACGCTGATGCAGGCCCGCAGCGATCTGCTCGCCGCCGCGGATAAAAGCCCGGTGCTGATGAATGTGCGCGAAAGCGCCCTGGCGGAAGCGCCGCAGGTGCAACTGGAAGTGGATCGGAAACAGGCGAATGCCTTGGGCATCTCCTTTGCCGACGTCGGCAGTGTGTTGTCCACGGCGGTGGGCTCAGCCTACATCAATGACTTCCCGAACCAGGGCCGCATGCAGCGGGTGGTGGTCCAGGCCGAGGGTGACCAGCGCAGCCAGGTCGAGGACCTGCTGAAGATTCACGTACGCAACAGCAGCGGGAAGATGGTGCCGTTGTCGGCGTTTGTCCAGGCGCGCTGGACCCAGGGGCCGGCACAGTTGACTCGCTACAACGGCTATCCGGCGGTGAGTATTTCCGGAGAACCGGCGCCGGGCTACAGCACCGGGCAAGCCATGGCCGAGATCGAACGGCTGGTGGCCCAGGGGCCCAAGGGCATGGGTCAGGAATGGACCGGCCTGTCCTTGCAGGAGCGCTTGTCCGGCAGCCAGGCACCGATCCTGCTGGGCCTGTCGCTGCTGGTGGTGTTCCTGTGCCTGGCGGCACTGTACGAGAGCTGGTCGATCCCGACCTCGGTGTTGCTGGTGGTACCGCTGGGCGTGCTCGGCGCCGTAATGGCTGTTTCGTTGCGTGGCATGCCCAACGATGTGTTCTTCAAGATCGGCCTGATTACCATCATCGGTCTGTCAGCGAAGAACGCCATCCTGATCATCGAATTCGCCAAGAGCCTCTACGACGATGGCCATGACCTGCTCGACGCCACGCTCCAGGCCGCGCGCCTGCGCCTGCGGCCGATCATCATGACCTCACTGGCGTTCATCCTCGGCGTGGTCCCGTTGGCGATCGCCACCGGGGCCAGCTCGGCGAGCCAGCAGGCGATTGGTACCGGCGTGATCGGCGGGATGATCAGCGCCACGCTGGCGGTGGTGTTTGTCCCGGTGTTTTTCGTGGTGGTGATGAAGCGGGTCGCGCGCAGCAAAACGCGTTGAMPHFFIDRPVFAWVVALFILLAGILAIPQLPVAQYPVVAPPQIEIYAVYPGASAQTVDESVVSLIEEELNGADNLLYFESQSSLGSATITATFQPGTNPELAQVDVQNRLKAVESRLPQAVTQQGLQVDKVSAGFLLLITLTSSDGKLDDVALSDYLARNVMNEIKRLDGVGKAQLYGAERAMRIWIDPQKLLGFNLTPADVNAAIVAQNAQVSAGSLGDLPSRSTQEITATIVVKGQLSTPQEFADIVLKANPDGSTVRIADVARVEIGSQEYQFSTRLNGKPSTAVAVQLSPGANALNTATLVRAKMDELSRYFPAGVEYKIPYDTSPFVKVSITKVVYTLGEAMLLVFAVMFLFLQNIRYTLIPTLVVPVALMGTFATMLALGFSINVLTMFGMVLAIGILVDDAIVVVENVERIMAEEGLSPKEATRKAMGQITGAIIGITLVLVAVFIPMAFMQGSVGVIYQQFSLSMATSILFSAFLALTLTPALCATLLKPITQADHHAKGGFFGWFNRGFDRFGNRYQGWVAYAMKRSGRYLLIYGVLLVGMGLLFSRLPSSFLPVEDQGYTITDIQLPPGASKNRTVQVVEQIEAHNAGEPGVGDSTVILGFSFSGSGQNAALAFTTLKDWSQRGGDDSAAAIADRANQAFGGIKDAMVFSVLPPPVDGLGTSSGFEFRLQDRGGLGHATLMQARSDLLAAADKSPVLMNVRESALAEAPQVQLEVDRKQANALGISFADVGSVLSTAVGSAYINDFPNQGRMQRVVVQAEGDQRSQVEDLLKIHVRNSSGKMVPLSAFVQARWTQGPAQLTRYNGYPAVSISGEPAPGYSTGQAMAEIERLVAQGPKGMGQEWTGLSLQERLSGSQAPILLGLSLLVVFLCLAALYESWSIPTSVLLVVPLGVLGAVMAVSLRGMPNDVFFKIGLITIIGLSAKNAILIIEFAKSLYDDGHDLLDATLQAARLRLRPIIMTSLAFILGVVPLAIATGASSASQQAIGTGVIGGMISATLAVVFVPVFFVVVMKRVARSKTRPGPT0003280_3077DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexAB-OprM,PGPT0003280-acrB|acrE|mexB|adeJ|smeE|mtrD|cmeB-K18138NANA
D1-35_04844903hypothetical proteinATGCGCGACGACTCCCACACGCAGTTCTTCCGCTTCCAGACCCCTGACCCAGCCATCGGTCCGCGTGAGCAGGCACCGATGCTTGCGCAGGAGCTGGCCTGGGCGCGTGACCGTGCGTCCATGCATGACTTCAGTTGGTTGGTCGTACTGCTGCCGCCATTGAGCATGGGCCCGGTGCTGCCGGGCGTGGTGTTCCTGGCGGGCCTGGGCCTGGTCCAGAAGTTGTTCGCCCCGGACCTGGACGTTGATCGGATCGTCGGCGACTCCTTGGGCTGGCTGGCGCTGGCGACGCTGCTTTTCGTGGCGGCGTGGATACTGTCCAATTACCTGCGCGATTCGCGCGACCCGACCAAGCACTATTGGCAATCGATGCCCGATCAAGGGCTGGTCGAGCTTGAGCGTCACACGCTGATCTCGGCCATCAGCCTGTGGGCCAACGACTTTGATCCCGATTGCAGCAGCCTGATGTTATGGAAAAACGACAAGCTGGTGCGGGTGCAAAGCTCCGGCGTGTCGCAGTGGATCCTGGCGATGACCACGGCCGGCCATTGGCTGGTGCTCAAGGAGGAATTCCCCGGTGATTTCTGCTACCGACGGGTAGGGCAGATGCCCGCGCCGGAGAAGCAGATGCAACCCCGGCAGCAACTGGCGATTGCCTTCGCTCCCGGCACCCAGTTGGCGCTTGGCCGGCGTTTCGACGGTGCGCCTTTGCCAATGACGCAGACGTCTTACTGGATGTCTGCCGATGAGATCAAGCGACTCGCGCAGATTGCCCATCACTGGATGTTTTTCCCGCCGGACCGTTATGCGGTGGTCAATGACAGGGACGCCGGCTGGGTACGACGCCTGGCGGACAAAGCCCTGGCCAGCGTCGAGAGCCAGGCTGTGCCACAGGGCAATTAGMRDDSHTQFFRFQTPDPAIGPREQAPMLAQELAWARDRASMHDFSWLVVLLPPLSMGPVLPGVVFLAGLGLVQKLFAPDLDVDRIVGDSLGWLALATLLFVAAWILSNYLRDSRDPTKHYWQSMPDQGLVELERHTLISAISLWANDFDPDCSSLMLWKNDKLVRVQSSGVSQWILAMTTAGHWLVLKEEFPGDFCYRRVGQMPAPEKQMQPRQQLAIAFAPGTQLALGRRFDGAPLPMTQTSYWMSADEIKRLAQIAHHWMFFPPDRYAVVNDRDAGWVRRLADKALASVESQAVPQGNNANANANANA
D1-35_04845969yjiACOG0523P-loop guanosine triphosphatase YjiAGTGTCCTCTCCCATCCCGGTCACGATCCTCAGCGGCTTTCTCGGTGCTGGCAAGACCACGTTGTTGCGTCATCTGCTCAAGGCCGAGCACGGCCTGAAAATCGCCGTGATCGAGAACGAATTCAGCGATGCCGGCATCGATACCCAGTTACTGGGCGACGATCCGGTGCAAGTCATGACCCTGGCCAATGGCTGCGTGTGCTGCACCATCCACACCGACCTGACCAAGGCCCTGTACCTGTTGCTCGAGCGGCTGGACAGCGGTGAGATCGCCTTCGACCGCCTGGTGATCGAATGCACCGGCCTGGCCGATCCAGCCCCAGTGGCCCAGACCTTCTTCATCGATGAAGACCTGCGCGAACGCTACATTCTTGACGGCATCCTGACCCTGGTGGACGCCGCCCACGCCGAGGTCCACCTGACCCAGGCCATCGCTCAGGCACAGGTCGGGTTTGCCGATAGGCTGCTCCTTAGCAAGACCGACCTGGTGGATGCAGCCCATGCCGAGGCGCTTGCCGAGCGCCTTACCCGGATTAACCGACGGGCGCCGATCCGAGTGGTCGAGCACGGCAAGATTGATCTGGCCGAGTTACTCGACATTCGCGGCTTCAATCTCAACGCGGACCTGGGCGGCGGGCTCAGCCTTCGCCCGGTCGCCAAGGCCACCACGGCCGATCGCATCAGCAGCCTCGTGCTGCGCACCGACAAGCCGCTGGATATCGACAAGCTCAGTGCGTTCATGAACCAGCTGCTGGAAGAACACGGCAAGCAATTGCTGCGCTATAAAGGTGTGCTGAACATTGCCGGCGAACCCCGCCGACTGGTATTCCAGGGCGTACTCAAGCTGTACGGTTTCGATTGGGACACCGAATGGGCCGAGGGTGAAGCTCGGGAAAGCGTGATCGTATTTATTGCTGACGAATTGCCTGAAGAGAAGATCCGCGAAGGGTTCGACGCCGCGCTCCTCTGAMSSPIPVTILSGFLGAGKTTLLRHLLKAEHGLKIAVIENEFSDAGIDTQLLGDDPVQVMTLANGCVCCTIHTDLTKALYLLLERLDSGEIAFDRLVIECTGLADPAPVAQTFFIDEDLRERYILDGILTLVDAAHAEVHLTQAIAQAQVGFADRLLLSKTDLVDAAHAEALAERLTRINRRAPIRVVEHGKIDLAELLDIRGFNLNADLGGGLSLRPVAKATTADRISSLVLRTDKPLDIDKLSAFMNQLLEEHGKQLLRYKGVLNIAGEPRRLVFQGVLKLYGFDWDTEWAEGEARESVIVFIADELPEEKIREGFDAALLNANANANANA
D1-35_048461254glyA_2COG0112Serine hydroxymethyltransferaseATGTTCAGCCGTGATTTGACTATTGCCAAGTACGACGCCGATCTCTTTGCCGCCATGGAGCAAGAAGCTCAGCGCCAGGAAGAGCACATTGAGCTGATCGCTTCGGAAAACTACACCAGCCCCGCGGTGATGGAAGCTCAAGGCTCGGTACTGACCAACAAGTACGCCGAAGGCTACCCGGGCAAGCGCTACTACGGCGGTTGCGAGTACGTCGATGTGGTCGAGCAACTGGCCATCGACCGCGCCAAGCAACTGTTCGGCGCCGATTACGCCAACGTCCAGCCGCACGCAGGCTCGCAAGCCAACGCCGCCGTCTACCTGGCGCTGCTGTCGGCCGGCGACACCATCCTGGGCATGAGCCTGGCCCACGGCGGTCACCTGACCCACGGCGCCAGCGTCTCGTCCTCGGGCAAACTGTATAACGCCATCCAGTACGGCATCGATGGCAACGGCCTGATCGACTACGACGAAGTCGAGCGCCTGGCGGTCGAGCACAAGCCGAAAATGATCGTGGCCGGCTTCTCCGCCTACTCGCAGATCCTCGACTTCCCGCGCTTCCGCGAAATCGCCGATAAGGTCGGTGCCTACCTGTTCGTCGACATGGCTCACGTTGCGGGCCTGGTCGCCGCTGGCGTCTACCCGAACCCGGTGCCGTTCGCCGACGTGGTCACCACCACGACCCACAAGACCCTGCGTGGCCCACGTGGCGGCCTGATCCTGGCACGCGCCAACACCGACATCGAGAAGAAGCTGAACTCGGCCGTATTCCCAGGCGCCCAGGGTGGCCCGCTGGAGCACGTGATCGCGGCCAAGGCGATCTGCTTCAAGGAAGCTCTGCAACCTGAGTTCAAGGCCTACCAGCAGCAAGTGGTGAAGAATGCCAAGGCCATGGCCGGCGTGTTCATCGAACGCGGCTTCGACGTGGTCTCCGGCGGTACTGAAAACCACCTGTTCCTGCTGTCGTTGATCAAGCAGGACATCTCCGGCAAAGACGCTGACGCCGCATTGGGCAAGGCGTTCATCACCGTGAACAAGAACTCGGTGCCGAACGACCCACGCTCCCCATTCGTCACCTCGGGCCTGCGCTTCGGCACCCCGGCCGTGACCACTCGCGGCTTCAAGGAAGCCGAGTGCAAGGAACTGGCCGGCTGGATCTGCGACATCCTGGCGGACCTGAACAACGAAGCGGTGATCGATGCCGTTCGCGAGAAGGTCAAGGCCATCTGCAAGAAGCTGCCGGTGTACGGCGCTTAAMFSRDLTIAKYDADLFAAMEQEAQRQEEHIELIASENYTSPAVMEAQGSVLTNKYAEGYPGKRYYGGCEYVDVVEQLAIDRAKQLFGADYANVQPHAGSQANAAVYLALLSAGDTILGMSLAHGGHLTHGASVSSSGKLYNAIQYGIDGNGLIDYDEVERLAVEHKPKMIVAGFSAYSQILDFPRFREIADKVGAYLFVDMAHVAGLVAAGVYPNPVPFADVVTTTTHKTLRGPRGGLILARANTDIEKKLNSAVFPGAQGGPLEHVIAAKAICFKEALQPEFKAYQQQVVKNAKAMAGVFIERGFDVVSGGTENHLFLLSLIKQDISGKDADAALGKAFITVNKNSVPNDPRSPFVTSGLRFGTPAVTTRGFKEAECKELAGWICDILADLNNEAVIDAVREKVKAICKKLPVYGAPGPT0008090_5743DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008090-glyA-K00600NANA
D1-35_048473849hypothetical proteinTTGTCCAACGTCACTCCGTCCCCGTCCCCGCGCGCCGCCCCTGCTGTGCCTGGCGTGCCCCTGCGCGGGACATTGAAGGGCGCGCTGGCCTCGCTGGTGCTGTTGCTGCTGGGCCTGCTTTTCTGGCAATTGCTCGACCAACTGCGCGAAACCCAGCAGCAACAGCGCCAATACACCATCGACTACACCGCCGACCTGGCCGCGCAAGTCAGCCTGAACATGGCGTTGAATGCGCAGATTGCACTCAATCTGCTACCGATCGTCGAACAACCGCAAAGCGCCGACGAACAACAGGCGCTGCTGCGCAAACTCCAGCAATCGTTGCCCGAATTACGCAGCCTGGCACTGCTGAGCCCTTCCGGCCGGGTGCTCAGCGACAGCGACGCTACCAGCGAGGATGCCGGCTACCTGGCCGAACTGGTACGGCGCAGTCATGCCCAGGCGCATTATTTCAGCAATGCCGAGGACGGTTCCGTGGTGCACCTGCTATTGCATCAGGCCAGCGGCAGTACTCGCGGTTATTGGGCGTTGCGCCTGACCCCGAGTTTTTTTGCGACATTGACCAAACAGGCCGATACCGGGCTGCGCCCGCTGTGGCTGGTGGAGAACCGGCTCAACCAGCAAATCGTCAGCCGTGACGAGGCCCCGCCCGCGCTCAACCCGACCCGATTGACCGAGCAAGACCTGAGCAACACCGTGTTGACCGTGCCCCTGAGCAGCAGTGACTGGCAGCTGCGCGGGTTGTTCGATCGCAGCCAGGTGCTCGAACAATTGCTGCCCGCGTTCATCGGCAAATGCCTGCTGGGCCTGGCGTTTTCGCTGCTGCCGGTGATCGCGCTGCTGAACATGCGTCGCCGCCAGCGTCAGTTGCATGAGGGGCGCCGCCGCTACCAGGACATTTTCGAGGGCACCGGCGTAGCCCTCTGTGTACTTGACCTGTCCGGGCTCAAGGCCTTTTTTGCCAGGGCCGGCCTGCATGATGGCGAGCAGTTGCGCGCCTGGCTGCAGGTCTCCCAGCAGCTCGAGCAGTTACAGCAGCAAGTGCACGTCACCGAAGTCAACCAGATGGCCTTGAAGCTGCTCAATGTCGACTCCTGCGAACAGGCCTGGCAACTGCTGGTGGGCAACGCGGCAAAAGACAACAACCCGGTTGGCTCGAAACTGCTCGAAGCGCTGCTCGACCAGCACAAACAACTGGAACTGGAAATCAGGCTCCAGGACGCCCATGGTCGTGACCAGCATTTGTGGCTGGTGTTGCGCCTGCCGGAAACGCAGGATGACTATAACGCCGTCATCCTGAGCATCAGCGATATCACCAGCCGCAAGCTCATCGAACTGTCGCTGCTTGAGCGCGAAGGCTTCTGGTCCGACGTGGTGCGCACCGTCCCGGATCATCTTTACGTACAGGACGTCATCAGCCAGCGGATGATCTTCAGCAACCACCACCTGGGCCAGACGCTCGGCTACGACCGTACTGAATTGCACCAGATGGGCGAGTATTTCTGGGAAATCCTGCTTCACAGCGACGATGCCGATCATTACCACCACCTGCGCCAGGAACAGCGCCGCGGCGGTTACACGCAACTGCTGCAATGCCAGTTACGCTTTCGCCATCGCAACGGCAAATGGCGACGTTTCGAGGTCCGCGAACAGGCTCTGGCCCGGGACCGCCATAATCAGGTCACGCGGATCATCGGCGTGGCCAAGGACATCACCGAGCAGATCGAGGCCAGCGAATCGTTGCGCGACAGCGAGCAGCGCTACCGGATGCTCGCCGAAAGCATCAGCGACGTGATTTTCTCCACCGACAGCAAACTCTCGCTCAACTATGTCAGCCCGTCGGTCCAGGCAGTGCTGGGCTACACCGCCGACTGGATCTTCCAGCATGGCTGGCAGTCGACCATCGCCAATCCGCAACAACTGACCGGCATCTACAGCCTGATGGACCGGGTCAGCAAGGCCCTCGACCAGCCCGACCAGTTGGCCGAGCTGCGCAACCAGCTGCAGACCCAACTGTTCCTGTTCGACTGCCTGCGTGCCGACGGGCGCAAGATCCCCATCGAGCTGCGGCTGGTGCTGGTGTGGGACGACAACGGCGCGTTCGAGGGGGTATTGGGCGTCGGCCGCGACATCAGCCAGCAGCGTCGCGCCGAAAAAGACCTGCGCATGGCCGCGACGGTGTTCGAGCATTCGACCTCGGCGATTCTGATCACCGACCCGGCCGGCTACATTGTCCAAGCCAACGAAGCCTTCAGCCGGGTCAGCGGTTATGCGGTGTCGCAGGTGCTGGACCAGTTGCCCAACATGCTGACCGTAGATGAGCAGCAGGAAGCCCACTTGCGCTACGTGCTCAAGCAGCTGCAACAGCACAGCACCTGGGAAGGCGAAGTCTGGCTCAAGCGCCGCAACGGCGAGCACTATCCGGCCTGGGTCGGCATTACCGCGGTGCTCGACGACGAAGGCGACCTCGCCAGTTATGTGTGCTTCTTCAGCGACATCAGCGAGCGCAAGGCCAGCGAGCAGCGCATCCATCGCCTGGCTTACTACGACGCCCTGACCCACCTGCCCAACCGCACGCTGTTCCAGGACCGCCTGCATACCGCGCTGCAATCGGCGGAACGGCAGAAGAGCTGGGTGGTGCTGATGTTCCTCGACCTGGACCGCTTCAAGCCGATCAACGATTCCCTCGGCCACGCCGCCGGCGACCGGATGCTCAAGGAAATGGCCACGCGACTGCTCGGCTGCGTGGCCGATGACGACACGGTGGCGCGCATGGGCGGCGACGAGTTCACCCTGTTGCTGCAACCGCGCGCAAGCCGCGAAATGGCGCTCAACCGGGCGATTACCGTGGCCGAGCAGATCCTTGCCAGCCTGGTCCGGCCGTTTGTGCTCGAAGGCCGGGAGTTCTTCGTCACCGCCAGTATCGGTATCGCCCTGAGCCCACAGGACGGCAACGAGCTGAGCCAACTGATGAAAAACGCCGACACCGCCATGTACCACGCCAAAGAGCGCGGCAAGAACAACTTCCAGTTCTACCAGGCCGACATGAACGCCAGCGCCCTGGAGCGCCTGGAGCTGGAAAGCGACCTGCGCCATGCGCTGGAACAGAACGAGTTCGTCCTGTATTACCAGCCACAGTTCAGCGGCGACGGCAAGCGCCTGACCGGGACCGAGGCCTTGCTGCGCTGGCGCCATCCGCGACGCGGGCTGGTGCCGCCAGGGGACTTCATCCCGGTGCTCGAAGAACTCGGGCTGGTGGTGGACGTCGGCGACTGGGTCATCAGCGAGGCCTGTCGCCAGCTCAAGACCTGGCACCAGGCCAAGGTCCGGGTGCCGAAGGTCTCGGTCAACATTTCCGCCCGGCAGTTCTCCGACGGCCAACTCGGCACGCGAATCGCCAATATCCTGCGCAGCACCGGCCTGCCGCCGGCTTGCCTGGAACTGGAGCTGACGGAGAGCATTCTGATGCGCGAAGTCAGCGAGGCGATGCAGATCCTGGCCGGCTTGAAGAATCTGGGCCTGAGCATCGCGGTCGATGACTTCGGCACTGGTTATTCATCGCTCAACTACCTCAAGCAATTCCCCATCGACGTGCTGAAGATCGACCGTACTTTCGTCGACGGCCTGCCGTCCGGCGAGCAGGATGCACAGATCGCCCGGGCAATCATCGCCATGGCCCATAGTCTCAACCTGGCGGTCATCGCCGAGGGTGTCGAGACCCATGAGCAACTGGATTTCCTCCGTGAACATGGCTGCGACGAAGTCCAGGGCTACCTGTTCGGCCGCCCGATGCCGGCCAACCGGTTTGAAGCGCAGTTCAGCAATGATGCGCTGTTCATGCTCGACTGAMSNVTPSPSPRAAPAVPGVPLRGTLKGALASLVLLLLGLLFWQLLDQLRETQQQQRQYTIDYTADLAAQVSLNMALNAQIALNLLPIVEQPQSADEQQALLRKLQQSLPELRSLALLSPSGRVLSDSDATSEDAGYLAELVRRSHAQAHYFSNAEDGSVVHLLLHQASGSTRGYWALRLTPSFFATLTKQADTGLRPLWLVENRLNQQIVSRDEAPPALNPTRLTEQDLSNTVLTVPLSSSDWQLRGLFDRSQVLEQLLPAFIGKCLLGLAFSLLPVIALLNMRRRQRQLHEGRRRYQDIFEGTGVALCVLDLSGLKAFFARAGLHDGEQLRAWLQVSQQLEQLQQQVHVTEVNQMALKLLNVDSCEQAWQLLVGNAAKDNNPVGSKLLEALLDQHKQLELEIRLQDAHGRDQHLWLVLRLPETQDDYNAVILSISDITSRKLIELSLLEREGFWSDVVRTVPDHLYVQDVISQRMIFSNHHLGQTLGYDRTELHQMGEYFWEILLHSDDADHYHHLRQEQRRGGYTQLLQCQLRFRHRNGKWRRFEVREQALARDRHNQVTRIIGVAKDITEQIEASESLRDSEQRYRMLAESISDVIFSTDSKLSLNYVSPSVQAVLGYTADWIFQHGWQSTIANPQQLTGIYSLMDRVSKALDQPDQLAELRNQLQTQLFLFDCLRADGRKIPIELRLVLVWDDNGAFEGVLGVGRDISQQRRAEKDLRMAATVFEHSTSAILITDPAGYIVQANEAFSRVSGYAVSQVLDQLPNMLTVDEQQEAHLRYVLKQLQQHSTWEGEVWLKRRNGEHYPAWVGITAVLDDEGDLASYVCFFSDISERKASEQRIHRLAYYDALTHLPNRTLFQDRLHTALQSAERQKSWVVLMFLDLDRFKPINDSLGHAAGDRMLKEMATRLLGCVADDDTVARMGGDEFTLLLQPRASREMALNRAITVAEQILASLVRPFVLEGREFFVTASIGIALSPQDGNELSQLMKNADTAMYHAKERGKNNFQFYQADMNASALERLELESDLRHALEQNEFVLYYQPQFSGDGKRLTGTEALLRWRHPRRGLVPPGDFIPVLEELGLVVDVGDWVISEACRQLKTWHQAKVRVPKVSVNISARQFSDGQLGTRIANILRSTGLPPACLELELTESILMREVSEAMQILAGLKNLGLSIAVDDFGTGYSSLNYLKQFPIDVLKIDRTFVDGLPSGEQDAQIARAIIAMAHSLNLAVIAEGVETHEQLDFLREHGCDEVQGYLFGRPMPANRFEAQFSNDALFMLDPGPT0023624_41DIRECT 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
D1-35_048481665ettACOG0488Energy-dependent translational throttle protein EttAATGGCTCAATACGTCTTCACCATGCATCGGCTGAGCAAAGTTGTTCCGCCGAAGCGGGAAATCCTGAAAAACATTTCGCTGTCATTTTTCCCCGGCGCCAAGATCGGCGTGCTGGGCCTCAACGGTTCGGGTAAGTCCACGCTGCTGAAAATCATGGCTGGCGTCGACAACGAATTCGACGGCGAAGCCTGTCCGATGCCTGACCTGAACATCGGCTACCTGCCGCAGGAGCCTCAGCTGGATCCGACCAAGACCGTTCGCGAAGTGGTCGAGGAAGCGGTCAGCGTGATCAAGGACGCCCAGGCGCGCCTGGACGAGGTCTACGCCGCCTACGCCGATCCGGACGCCGATTTCGACAAGCTGGCCGCCGAGCAGGCCAAGCTCGAAGCGATCCTGCAGGCCAGCGATGGCCACAACCTGGACCGTCAGCTGGAAGTCGCCGCCGATGCACTGCGCCTGCCAGCCTGGGACGCCAAGGTCGAGCACCTGTCCGGCGGTGAAAAGCGCCGCGTGGCGCTGTGCCGCTTGCTGCTGTCCGCCCCGGACATGCTGCTGCTCGACGAACCGACCAACCACCTGGACGCCGATTCCGTCGCCTGGCTCGAACACTTCCTGCACGATTTCCCTGGCACCGTGGTTGCGATCACGCACGACCGGTACTTCCTGGACAACGTTGCCGGCTGGATCCTGGAGCTCGACCGTGGCGCAGGCATTCCATACGAAGGCAACTATTCGGGCTGGCTGGAGGCCAAATCCGATCGTCTGGCCCAGGAGTCCAAGCAGCAATCGGCGCATGAAAAAGCCATGAAGGAAGAACTGGAGTGGGTGCGCAAAGGCGCCAAGGCTCGTCAGTCCAAATCCAAGGCGCGTCTGCAACGCTTCGAGGAAATGCAGTCCCAGGAATTCCAGAAGCGCAGCGAAACCAACGAGATCTACATCCCGGCCGGCCCACGCCTGGGTGACAAGGTCATCGAGTTCAAGAACGTCACCAAGGGCTACGGCGACCGCGTGTTGATCGACAACCTGTCGTTCTCCATGCCCAAGGGCGCCATCGTCGGCGTGATCGGTGGTAACGGCGCCGGTAAATCCACGCTGTTCCGCATGCTGATGGGCAAGGAAACGCCGGATTCGGGCACCATCGAAATCGGTGAAACCGTGCAGCTGGCCTGCGTCGACCAGAGCCGCGACGACCTGGACGGCAGCAAGACGGTGTTCCAGCAGATTTCCGACGGCTCCGACCAGATCCGCATCGGCAGCTACGAAATCCCGTCGCGTACCTACGTGGGGCGCTTCAACTTCAAGGGTGGCGATCAGCAGAAATTCGTCAAGGATCTGTCCGGTGGTGAGCGTGGTCGCTTGCACCTGGCGCTGACCTTGAAGGAGGGTGGCAACGTCCTGCTGCTCGACGAACCGTCCAACGACCTCGACGTCGAAACCCTGCGTTCCCTGGAAGAGGCCCTGCTGGACTTCCCGGGCGCGGCCATTGTGATCTCCCACGACCGGTGGTTCCTTGACCGCGTCGCGACGCACATCCTGGCGTACGAAGACGACTCGCAAGCGGTGTTCTTCGAAGGCAACTACACCGAGTACGAAGCCGATCGCAAGAAGCGCCTCGGCGAAGCCGCTGCCCAGCCGCATCGTGTACGGCACAAGAAGCTGGCTTGAMAQYVFTMHRLSKVVPPKREILKNISLSFFPGAKIGVLGLNGSGKSTLLKIMAGVDNEFDGEACPMPDLNIGYLPQEPQLDPTKTVREVVEEAVSVIKDAQARLDEVYAAYADPDADFDKLAAEQAKLEAILQASDGHNLDRQLEVAADALRLPAWDAKVEHLSGGEKRRVALCRLLLSAPDMLLLDEPTNHLDADSVAWLEHFLHDFPGTVVAITHDRYFLDNVAGWILELDRGAGIPYEGNYSGWLEAKSDRLAQESKQQSAHEKAMKEELEWVRKGAKARQSKSKARLQRFEEMQSQEFQKRSETNEIYIPAGPRLGDKVIEFKNVTKGYGDRVLIDNLSFSMPKGAIVGVIGGNGAGKSTLFRMLMGKETPDSGTIEIGETVQLACVDQSRDDLDGSKTVFQQISDGSDQIRIGSYEIPSRTYVGRFNFKGGDQQKFVKDLSGGERGRLHLALTLKEGGNVLLLDEPSNDLDVETLRSLEEALLDFPGAAIVISHDRWFLDRVATHILAYEDDSQAVFFEGNYTEYEADRKKRLGEAAAQPHRVRHKKLANANANANANA
D1-35_04849492greB_2Transcription elongation factor GreBATGAGTCGCGCCTTCGTCAACGAAGACAACGCCGCCGCCCAGGCCGATCAACCGGTCGAGCGTCAGGTCAGCACGCAACCCAACTACGTCACACCCGCCGGGCTTGCCCAGCTACAGGCGCGTGTCGCCGAGTTGCAAGCACTGCACAGCCAACAGACAGCCCAGGGCGAGCAGGCGGACAAGCAGCGTATCGCCGACCTCGAACGGGACCTGCGGTATTTCAATCAGCGGCTGCAGAGCGCGCAAGTCGTCACCTTGAGCAAATGTGATCAGGTGCGAATCGGACATTGGGTGACATTCGCCGATGAGCACGACCAGGCGCAACGAGTGCAACTGGTGGGTGAAGACCAGGCCGATGCCGCCAATGGATTGATCAATTGGGGTTCGCCGCTGGGGCGGGCCTTGCTGGGGGCGAAGATCGGGGATGAGGTGGTGTGGAAGCGGCCGGTGGGGGATGTGGCGATCGAGGTGCTGGAAATAGAGCTCGGGTGAMSRAFVNEDNAAAQADQPVERQVSTQPNYVTPAGLAQLQARVAELQALHSQQTAQGEQADKQRIADLERDLRYFNQRLQSAQVVTLSKCDQVRIGHWVTFADEHDQAQRVQLVGEDQADAANGLINWGSPLGRALLGAKIGDEVVWKRPVGDVAIEVLEIELGNANANANANA
D1-35_04850357hypothetical proteinATGAGGCGCGCGGCAGTGGTACTGGGTGTGTTGATGTTGCTCGGTGGCTGCGAAACCACCCACGAGGATCTGATCGCCCGAGGTTATCCACCGGCCTTCGCCGATGGCTTCGATGACGGTTGCAGCAGTGGCCGGCAAGCCGCCGGCGCAATCACTGGCCAATTCCGGAAAGACGTGCCGCGTTATCTCAAGGACGCCCACTACGCCGAAGGCTGGAGCGATGGCTTTCGGCAGTGCCAGGCCATGCGCGAGAGCCAAGAGCGTGACGCCTACCGCGAGCGCCATTGGGACGACCGCGAACGGGCCTGGCAACAGGAGAAAGATCGGGACGCCGCCCGGGCTTATCGCTCGCCGTGAMRRAAVVLGVLMLLGGCETTHEDLIARGYPPAFADGFDDGCSSGRQAAGAITGQFRKDVPRYLKDAHYAEGWSDGFRQCQAMRESQERDAYRERHWDDRERAWQQEKDRDAARAYRSPNANANANANA
D1-35_048511854hypothetical proteinATGCTCAAACGCCTTGCCTGGCTGGCGCTCTGTGTGTGCGCCCCGCTGTCCGCCGCGCCTCATGTCGATCCTCAACGTTTGCAGCAACTGGCCAATGACCGCTTCTGGATTTCCCTGGGTCACTACGAAACGGCCAAGCTCGGTGGCTGGCGCAGCTATGTCAGCGATCGCAAGTTTTTCCTCGCACCCGACGGCAATGAACATCCCGACCGTGAGCTGACCGCCACGCTGCAAGCCTTGTACGGCCCGGCCAGTGCCGGCCAGCAACATGCCCAGTGCGTGTACCCGGCGCGAACGCGCTGGCTCAAGGCGCAGCTCAACCTGACGGACCTGCCGGCGGTCAATTGCAGCGAATTCACTCAGTGGTTCAAGGACGTATCGCCCCACAGCGCGGTGATGATTTTCCCCGCCGCGTACCTGAACAGCCCTTCCTCGATGTTCGGCCATACCTTGCTACGCATCGACCAGGCCGACGTGCAAAGCGACAAGACCGCCCTGCTCAGCTACGCAATCAACTTCGGCGCCTACATCGAGGGCTCCGACAACAGCCTGCTCTACGCCTGGAAGGGCTTGATGGGCGGCTACCCAGGACTGTTCGCCCTGGTGCCGTACCAGGAAAAACTCTCCGAGTACCGTAGCCTGGAGAACCGCGACCTGTGGGAATACCGTCTCAACCTGAGCCAGGCGGAAACCGAACGCATGGTCGAGCATGTGTGGGAACTCAAGCAGATCCAGTTCGACTATTTCTTCTTCGATGAAAACTGCTCCTATCGCCTTCTCGAACTGCTGCAGGTGGCGCGTCCGAGCCTGCGCCTGACCGAGCAGTTCCCGCTGACGGCGATCCCCACCGACACTGTCAAGGCGGTGAAAGAAGCCGGACTGGTGGAAAGCATCCAGTACCGGCCGTCCCGCGAGCGAGAGCTGCTCAGCCGCGCCGAGCCGCTCAGCGACGACGAGCAGCAATGGGTACAGAAAGTCAGCGCCGACCAGCAGCAACTGCAAGCGCCGGCATTCAAGGCGCTGCCGCGTCAACGCCAGGCCCTGATCATCGATGCCGCCTATCGCCTGGAGCGCTATCGCGCCAACGGCCAGGAACGTGACCCACAGCGGGCCCAGCGCAGCTTCGAACTGCTGCGGGCGATCAACCGCAATCCCGCGCCGGAACTGGACATCCCGCAACCCGGCCTGCCCGAGGATGGTCATGAGTCGCGCACCTGGCAGGCTGGCCTGGGTACGCGAGGCGATCGTGCGTTCGGTGAATACGGCCTGCGCATGGCCTATCACGACCTCAACGACAACGCCGAGAGTTTCCCGCTCGGCGCACAGATCGAGATCCTGCAATTGAAGCTGCGCCAGTACGAAGGCAACGATTGGCAGCTACAACAACTGGACCTGGCGACCATTCGCTCGCTGACCCCGCGCAATGAGTTGCTGCAGCCGCTGTCCTGGCAGGTTACCGGTGGCCTGGAGCGGGTGCCTGGCAAACACGACGATGAAACCCTGGTCAGCCACGTCAACGGCGGCGCCGGTGGTACCTGGGCCTTGGGTGAGGATGTGCTGGGCTTTGCCCTGGGCACGGTGCGGGTCGAGCACAATAACGACTTCGCCCAGTTCATCGCCCCGGCCGCCGGCTTCAACAGCGGCGTGCTGTGGAAAAACCCACTGGGCAACCTGAGCCTCGAAGCAAAGGGCGATTACTTCGTCAACGGCGAAGTGCGCCGTAGCCTGAGCCTGAATCAGCAGTGGGAATTGTCGCGCAACCTCGGTCTGCGCCTGAGCGCCCAGCGCGAATTCAGCCAATTGGCTTCGCCGGAAACCGAGGTGATGCTCGAAGTGAAGTGGTACCACTACTGAMLKRLAWLALCVCAPLSAAPHVDPQRLQQLANDRFWISLGHYETAKLGGWRSYVSDRKFFLAPDGNEHPDRELTATLQALYGPASAGQQHAQCVYPARTRWLKAQLNLTDLPAVNCSEFTQWFKDVSPHSAVMIFPAAYLNSPSSMFGHTLLRIDQADVQSDKTALLSYAINFGAYIEGSDNSLLYAWKGLMGGYPGLFALVPYQEKLSEYRSLENRDLWEYRLNLSQAETERMVEHVWELKQIQFDYFFFDENCSYRLLELLQVARPSLRLTEQFPLTAIPTDTVKAVKEAGLVESIQYRPSRERELLSRAEPLSDDEQQWVQKVSADQQQLQAPAFKALPRQRQALIIDAAYRLERYRANGQERDPQRAQRSFELLRAINRNPAPELDIPQPGLPEDGHESRTWQAGLGTRGDRAFGEYGLRMAYHDLNDNAESFPLGAQIEILQLKLRQYEGNDWQLQQLDLATIRSLTPRNELLQPLSWQVTGGLERVPGKHDDETLVSHVNGGAGGTWALGEDVLGFALGTVRVEHNNDFAQFIAPAAGFNSGVLWKNPLGNLSLEAKGDYFVNGEVRRSLSLNQQWELSRNLGLRLSAQREFSQLASPETEVMLEVKWYHYNANANANANA
D1-35_04852489hypothetical proteinATGAAACGGATTCTTCTCGGTACTCTCTTCACCGCTGTATCCATCAACGCCATGGCTCAGGCCCCGGGCGGCCCGGATTGCGGTTGGGGCAACATGCTGTTCGAAGGCCAGCGTGGCACCCCGGCGCATTTCCTCGCATCCACCACCAACGGCACCTCCGGCAACGCCACCTTCGGCATGACCTCCGGCACCAACGGCTGCTCGACCAACGCGGCACTGACCTACGGTGGCAAGTCCTGGCTGGCCATGAATGGCATGATGAACGAGCTGTCCGAAGACATGGCCAAGGGTCAGGGTGAAGCACTGACCACCTACGCCGTGGTACTGGGCGTGGCGCCGGAAGACCGCGCGCACTTCTCCGCTGTGACCCACGAGCACTTCCAGCAGATCTTCAGCAAGGCTGACGTGACCGCCGAAGACGTGCATACCAACACCCTGGCCGTGCTGAAAAACGACCCTCGCCTGGCCAAGTACGCTACTCAAGCTTAAMKRILLGTLFTAVSINAMAQAPGGPDCGWGNMLFEGQRGTPAHFLASTTNGTSGNATFGMTSGTNGCSTNAALTYGGKSWLAMNGMMNELSEDMAKGQGEALTTYAVVLGVAPEDRAHFSAVTHEHFQQIFSKADVTAEDVHTNTLAVLKNDPRLAKYATQANANANANANA
D1-35_048532439hypothetical proteinATGCCTGATCCTGTTGCTGCCAGCTTGCGTCTAGCGCCCGAAGCGCTGACCCGTCCGTTTTCCGCTGAACAGTTCAGCTTCTCTACCACCAATGATCTGGAGCCCTTTCGCGGTGTGCTTGGCCAGGAACGCGCGGTCGAAGCCTTGCAGTTCGGTGTGGCGATGCCACGCCCCGGTTACAACGTCTTTGTCATGGGCGAGCCCGGCACCGGTCGGTTCTCGTTCGTCAAACGCTACCTCAAGGCCGAGGGCAAGCGCATGCAGACCCCGGCGGACTGGGTCTATGTCAATAACTTCGACGAGCCTCGCGAGCCGCGTGCCCTGGAATTGCCGTCGGGCACGGCCGGGGCATTCATCGCCGACATCAATGGCCTGATCGACAATCTGCTGGCGACTTTTCCGGCGGTGTTCGAGCATCCGTCCTACCAACAGAAAAAAAGCGCGATCGACCGCGCCTTCAATCAGCGCTACGACCGCGCCCTCGATGTGATCGAGCGCCTGGCTTTGGAAAAGGATGTCGCGCTGTACCGTGACAGCAGCAACATCGCCTTTACGCCGATGAGCGAAGGCAAGGCCCTGGATGAAGCGGAGTTCGCCCAGTTGCCAGAGGCCGATCGCGAGCGCTTCCATGAGGACATTTCCAATCTGGAGGAGCGTCTGAACGAAGAGCTCGCCAGCCTGCCGCAGTGGAAACGCGAATCCAACAACCAACTGCGCCAGCTCAACGAAGAAACCATCACCCTGGCCTTGCAGCCGTTGCTCGCGCCGCTCTCGGAAAAATACGCCGAGAATGCCGCCGTCTGCGGCTACCTGCAGGCCATGCAGGTCTACCTGCTCAAGACCGTGGTCGAGCAATTGGTCGACGACAGCAAGACCGACGCCGTCGCCCGCAAATTGCTCGAGGAGCAATACGCGCCGAGCCTGGTGGTGGGGCATCCGGCGAGCGGTGGCGCGCCGGTGGTGTTCGAACCGCACCCGACCTACGACAACCTGTTCGGGCGCATCGAGTACAGCACCGATCAGGGCGCGCTCTACACCACGTATCGGCAGTTGCGCCCGGGTGCCTTGCACCGGGCCAACGGCGGGTTCCTGATTCTTGAGGCGGAAAAGATGCTCGGCGAGCCGTTCGTGTGGGATGCGCTCAAGCGCGCCCTGCAATCGCGCAAGCTGAAGATGGAGTCGCCGTTGGGTGAGCTGGGGCGGCTGGCGACGGTCACCCTGACGCCGCAACATATTCCGTTGCAGGTCAAGGTGGTGATCATCGGCGCCCGCCAGCTGTACTACGCGTTGCAGGACCTGGATTCGGACTTCCAGGAAATGTTTCGCGTGCTGGTGGACTTCGACGAAGACATCCCGATGGGCGACGAGAGCCTGGAGCAGTTTGCCCAGTTGCTCAAGACCCGAACCTCGGAGGAGGGCATGGCCCCGCTTACCGCCGATGCGGTGGCGCGCCTGGCCACTTACAGCGCGCGCCTGGCGGAGCATCAGGGGCGCCTGTCGGCGCGGATCGGTGATCTGTTCCAATTGGTCAGCGAAGCGGACTTCATCCGGCAGTTGGCCGGCGATGACATGACCGATGCCGGCCACATCGAGCGCGCCCTCAAGGCCAAGGCGACTCGCACCGGACGGGTTTCGGCGCGGATCCTCGACGACATGCTGGCCGGGATCATCCTGATCGATACCGACGGCGCGGCCGTGGGCAAGTGCAACGGGCTGACCGTGCTGGAAGTGGGGGATTCGGCGTTTGGCGTGCCGGCGCGGATTTCCGCCACGGTGTACCCGGGCGGCAGCGGTATCGTCGACATCGAGCGTGAGGTCAACCTCGGCCAGCCGATCCACTCCAAGGGTGTGATGATCCTCACCGGGTACCTGGGCAGCCGTTATGCCCAGGAATTCCCCCTGGCGATTTCGGCCAGCATCGCCCTGGAGCAATCCTACGGTTATGTGGACGGTGACAGCGCCTCCCTGGGCGAGGCTTGCACGTTGATCTCGGCCCTGTCGAAGACGCCGTTGAAGCAGTGCTTCGCCATCACCGGTTCGATCAACCAGTTCGGCGAAGTGCAGGCGGTCGGTGGGGTCAACGAGAAGATCGAAGGGTTCTTCCGCCTCTGCGAAGCCCGCGGGCTGACGGGAGAGCAGGGTGCGATCATCCCGCAGGCCAACGTTGCGACCCTGATGCTCGACGAGAAGGTGCTGGCCGCGGTGCGAGCGGGGCAGTTCCACGTCTATGCCGTGCGCCAGGCCGACGAGGCATTGAGCCTGCTGGTGGGCGAACCTGCCGGTGAGCCGGATGAAAACGGCGAGTTCCCGGAGGGCAGCGTCAACGCTCGCGTGGTGGAGCGGCTACGGGTGATCGCGGAAATGATCAGCGAAGACGACATCAAGGAAGCGGAAAAGGAAATGGCCCAGCAGGCCCTGGCGGAGGCGAAGCCTGCGTAAMPDPVAASLRLAPEALTRPFSAEQFSFSTTNDLEPFRGVLGQERAVEALQFGVAMPRPGYNVFVMGEPGTGRFSFVKRYLKAEGKRMQTPADWVYVNNFDEPREPRALELPSGTAGAFIADINGLIDNLLATFPAVFEHPSYQQKKSAIDRAFNQRYDRALDVIERLALEKDVALYRDSSNIAFTPMSEGKALDEAEFAQLPEADRERFHEDISNLEERLNEELASLPQWKRESNNQLRQLNEETITLALQPLLAPLSEKYAENAAVCGYLQAMQVYLLKTVVEQLVDDSKTDAVARKLLEEQYAPSLVVGHPASGGAPVVFEPHPTYDNLFGRIEYSTDQGALYTTYRQLRPGALHRANGGFLILEAEKMLGEPFVWDALKRALQSRKLKMESPLGELGRLATVTLTPQHIPLQVKVVIIGARQLYYALQDLDSDFQEMFRVLVDFDEDIPMGDESLEQFAQLLKTRTSEEGMAPLTADAVARLATYSARLAEHQGRLSARIGDLFQLVSEADFIRQLAGDDMTDAGHIERALKAKATRTGRVSARILDDMLAGIILIDTDGAAVGKCNGLTVLEVGDSAFGVPARISATVYPGGSGIVDIEREVNLGQPIHSKGVMILTGYLGSRYAQEFPLAISASIALEQSYGYVDGDSASLGEACTLISALSKTPLKQCFAITGSINQFGEVQAVGGVNEKIEGFFRLCEARGLTGEQGAIIPQANVATLMLDEKVLAAVRAGQFHVYAVRQADEALSLLVGEPAGEPDENGEFPEGSVNARVVERLRVIAEMISEDDIKEAEKEMAQQALAEAKPANANANANANA
D1-35_04854342hypothetical proteinATGTCGCGCAACCTTTGTCTTACTCGCCACTGCCTGGGTCTGGTGACCCGTATCGAATGCGCCGTTCGTCCGCTCGCTGGCAACACCGGCATGTGGACTGTACTGTTCGCCGCCGGAATGGCCGGCGAGCAACCTACCGCGATCAAGGCCCAAGGGCCGTTCCCTGGCCCGACTGCCGCTGAAACCCTCCTCGACACCATCGTCCAGAACCTGACATTGCACGGTTATGAGCTGGCTGATGATCCGCAGATCTGGTCGCTGCACATGCAGGCACAGCTACGGGAAATCAACGGAGGCCGTTGTCGCAACGTCGGCGGCGTCGAATATCGCCCGCTGCATTGAMSRNLCLTRHCLGLVTRIECAVRPLAGNTGMWTVLFAAGMAGEQPTAIKAQGPFPGPTAAETLLDTIVQNLTLHGYELADDPQIWSLHMQAQLREINGGRCRNVGGVEYRPLHNANANANANA
D1-35_04855489hypothetical proteinATGGAACGCTTTATCGAAAATGCAATGTATGCCTCCCGTTGGCTACTGGCGCCGATCTACTTCGGGTTGTCCCTGGGCTTGCTGGCCCTGGCACTGAAATTCTTCCAGGAAGTCTTTCATATCATTCCCAACGTATTTGCCATGGCCGAGTCCGAGCTGATCCTGGTGCTGTTGTCGCTGATCGACATGGCGCTGGTAGGCGGCCTGCTGGTGATGGTGATGATTTCCGGCTACGAGAACTTCGTCTCGCAACTGGACATCGACTCCGACAAGGAAAAGCTCAACTGGCTGGGCACCATGGATTCCTCGTCGCTGAAGATGAAAGTCGCGGCGTCGATCGTTGCCATTTCGTCCATCCACTTGCTGCGTATTTTCATGGACGCCAAGAACGTCGATCCCGAGCACCTGATGTGGTACGTGATCATCCACATGACCTTCGTGGTCTCGGCATTCGCCATGGGCTATCTGGACAAACTGACCAAGCATTGAMERFIENAMYASRWLLAPIYFGLSLGLLALALKFFQEVFHIIPNVFAMAESELILVLLSLIDMALVGGLLVMVMISGYENFVSQLDIDSDKEKLNWLGTMDSSSLKMKVAASIVAISSIHLLRIFMDAKNVDPEHLMWYVIIHMTFVVSAFAMGYLDKLTKHNANANANANA
D1-35_04856618fklB_2COG0545FKBP-type 22 kDa peptidyl-prolyl cis-trans isomeraseATGTCCGAAGTTAACCTGTCCACCGACGAAACCCGCGTCAGCTACGGCATCGGCCGTCAGTTGGGCGACCAACTGCGCGACAACCCGCCGCCGGGCGTCAGCCTGGACGCGATCCTCGCCGGCCTGACCGACGCTTTCGCCGGCAAGCCGAGCCGCGTGGGCCAGGACGAGATGTCCGCAAGCTTCAAGGTGATCCGCGAAATCATGCAGGCCGAAGCCGCCGCCAAGGCTGAAGCCGCTGCTGGCGAAGGCCGTGCATTCCTGGTCGAAAACGCCAAGCGCGAAGGCATCACCACCCTGGCGTCCGGCCTGCAGTTCGAAGTGCTGACCCAGGGCGAAGGCGCCAAGCCGACTCGCGAAGACCAGGTGCGTACCCACTACCATGGCACCCTGATCGACGGCACTGTGTTCGACAGCTCCTACGATCGTGGCCAGCCAGCCGAATTCCCGGTAGGTGGCGTGATCCCGGGCTGGACCGAAGCGCTGCAACTGATGAACGCCGGCAGCAAATGGCGCCTGTACGTGCCGAGCGAACTGGCCTACGGCGCCCAGGGCGTTGGCAGCATTCCACCGCACAGCGTGCTGGTGTTTGACGTCGAGCTGTTGGACGTTCTGTAAMSEVNLSTDETRVSYGIGRQLGDQLRDNPPPGVSLDAILAGLTDAFAGKPSRVGQDEMSASFKVIREIMQAEAAAKAEAAAGEGRAFLVENAKREGITTLASGLQFEVLTQGEGAKPTREDQVRTHYHGTLIDGTVFDSSYDRGQPAEFPVGGVIPGWTEALQLMNAGSKWRLYVPSELAYGAQGVGSIPPHSVLVFDVELLDVLPGPT0015110_204DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015110-ppiA-K03767NANA
D1-35_04857258hypothetical proteinATGACTTATTTGATCGATGCCTGGCTGGACCGCCCACATCCCTACCTCAGAATCCTGCATCGGGAAACCGGCGAAGTCTGTGCGGTGCTCGAAGAAGAAGCCTTGAACGAGCTGCAGGACCAAGGCGACCTGGACCTCAACAGCCTCAATTCCAGTGAGCCGCTGGTGCTCAAGGAGCTGGTGCGTAACCTGTTCCTGTTCTGCTACGCCCGGGCGTTGCGCCCGACGGGTGATTTCAGTGGCAGGTTCCATGGATGAMTYLIDAWLDRPHPYLRILHRETGEVCAVLEEEALNELQDQGDLDLNSLNSSEPLVLKELVRNLFLFCYARALRPTGDFSGRFHGNANANANANA
D1-35_04858342hypothetical proteinGTGAGCACGTTGCCTCCCTGCCCGAAATGCAATTCCGAATACACCTACGAAGACGGTACTCAACTGGTCTGCCCGGAGTGTGCCCACGAATGGTCCGCCAGCGGCGAAGCTGAAGCGCCGTCCGACGATACGGTGAAAAAAGATTCGGTCGGCAACGTCCTGCAGGACGGCGATACCATCACCGTGATCAAGGACCTCAAGGTCAAGGGCACTTCGCTGGTGGTCAAGGTCGGCACCAAGGTGAAGAATATCCGCCTGTGCGATGGCGACCACGACATCGACTGCAAGATCGACGGCATCGGCCCGATGAAGCTCAAATCCGAGTTCGTCAGAAAGGTCTGAMSTLPPCPKCNSEYTYEDGTQLVCPECAHEWSASGEAEAPSDDTVKKDSVGNVLQDGDTITVIKDLKVKGTSLVVKVGTKVKNIRLCDGDHDIDCKIDGIGPMKLKSEFVRKVPGPT0030500_1229PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISMPUTATIVE-POLYCYCLIC_AROMATIC_HYDROCARBON_CATABOLISM-1,PGPT0030500-phnA|yjdM-K06193
D1-35_04859969ispBCOG0142Octaprenyl diphosphate synthaseATGCAACCCCAAGCTTTCTACCGCGCTGTGGCGGACGATTTTAGCGCCGTCGACGGTATCATCAAGAAGCAGCTGACTTCCCGAGTGCCGCTGGTATCGAAAATCGGCGACTACATCACTTCGGCCGGGGGCAAGCGCCTGCGTCCTCTATTGGTGCTTTTGTGCGGCAAGGCCCTGGGTCGCGAAGGCGACGACATGCGCCTGCTGGCCGCCACCATCGAATTTTTGCACACCGCGACGCTGCTGCATGACGACGTGGTCGACATGTCCGGCATGCGCCGTGGCCGCTCGACCGCCAACGCGATGTGGGGCAACGCCCCAAGCGTGCTGGTGGGCGACTTCCTGTATTCGCGCTCGTTCGAAATGATGGTCGAACTGGGCTCGATGCCGGTGATGAAGATTCTGTCCCAGGCCACGCGCATCATCGCCGAAGGCGAAGTGTTGCAGTTGTCCAAGGTCCGCGACGCCAGCACCACCGAAGAAACCTACATGGAAGTCATCCGCGGCAAGACCGCGATGCTCTTCGAAGCCTCGACTCACAGCGCCGCCGCCCTGGCCGGCGCCACCGCCGAGCAGAGCGAAGCCCTGCGCACCTTCGGCGATCACTTGGGCGTGGCGTTCCAACTGGTAGACGACCTGCTGGACTACAAGGGCGACGCCGACACCCTGGGCAAGAATGTCGGTGACGACCTGGCCGAAGGCAAGCCAACCCTGCCGCTGATCTACACCATGCGCGAAGGCACGCCGGAACAGGCCGCGCTGGTCCGCCAGGCGATCCAGAAAGGCGGGATTGAGGATCTGGAAAGCATCCGTGCGGCGGTTGAAGCTTCCGGTTCGCTGGACTACACCGCAACCCTGGCCCGGGACTACGTTGCCCGTGCGATCAAGTGCCTCGACGCCCTGCCGGCCAGCGAATACCGCGACGCGCTGGTGGAACTGAGCGAATTTGCGGTGGCGCGTACGCACTGAMQPQAFYRAVADDFSAVDGIIKKQLTSRVPLVSKIGDYITSAGGKRLRPLLVLLCGKALGREGDDMRLLAATIEFLHTATLLHDDVVDMSGMRRGRSTANAMWGNAPSVLVGDFLYSRSFEMMVELGSMPVMKILSQATRIIAEGEVLQLSKVRDASTTEETYMEVIRGKTAMLFEASTHSAAALAGATAEQSEALRTFGDHLGVAFQLVDDLLDYKGDADTLGKNVGDDLAEGKPTLPLIYTMREGTPEQAALVRQAIQKGGIEDLESIRAAVEASGSLDYTATLARDYVARAIKCLDALPASEYRDALVELSEFAVARTHPGPT0007525_2302DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007525-ispB-K02523NANA
D1-35_04860315rplUCOG026150S ribosomal protein L21ATGTCGTACGCAGTAATTGTTACTGGTGGCAAGCAATACAAGGTCGCCCCAGGTGAATACCTGAAGATCGAAAAACTGGAAATCGCTACCGGCGAATCCGTGACTTTTGATCGCGTTCTGTTGGTCGCCAATGGCGACGACGTGAATATCGGCGCTCCAGTCGTTGCTGGCGCTACCGTTGTGGCTGAAGTGATCTCCCAAGGTCGTCACGATAAAGTCCGCATCATCAAGTTCCGTCGTCGTAAGCACCACATGAAGCGTATGGGCCACCGCCAGTGGTACACCGAGATCAAAATCACCGGTATTCAGGCTTAAMSYAVIVTGGKQYKVAPGEYLKIEKLEIATGESVTFDRVLLVANGDDVNIGAPVVAGATVVAEVISQGRHDKVRIIKFRRRKHHMKRMGHRQWYTEIKITGIQANANANANANA
D1-35_04861258rpmACOG021150S ribosomal protein L27ATGGCACACAAAAAAGCTGGTGGTAGTACCCGTAACGGTCGCGACTCAGAAGCCAAACGCCTTGGCGTGAAGATGTATGGCGGCCAGGCTATCAAAGCGGGCAACATCATCGTGCGTCAGCGCGGCACCCAATTCCACGCTGGCTACGGCGTTGGCATGGGCAAGGATCACACCCTCTTCGCTAAAGTCGAAGGCGTGATCAAGTTCGAAGTAAAAGGCGCCTTCGGTCGTCGTTACGTAAGCGTTATCGCAGCTTAAMAHKKAGGSTRNGRDSEAKRLGVKMYGGQAIKAGNIIVRQRGTQFHAGYGVGMGKDHTLFAKVEGVIKFEVKGAFGRRYVSVIAANANANANANA
D1-35_048621224obgGTPase ObgATGAAGTTTGTTGATGAAGTATCGATTCGAGTAAAGGCTGGCGACGGCGGCAATGGTTGCATGAGTTTCCGTCGGGAAAAATTCATTGAAAACGGTGGTCCGAACGGTGGTGACGGGGGCGATGGCGGCTCGATCTACATGCTCGCCGATGAAAACCTCAACACCTTGGTGGATTACCGTTACACCCGGCATTTCGATGCCGAGCGTGGTTCCAACGGCGGCAGCACCGACTGCACCGGCAAGAAGGGCGAAGACCTGATCCTGCGTGTGCCGGTCGGTACCACAGTAATCGACTCCGCCACCCAGGAGGTCATCGGCGACCTGACCAAGGCTGGTCAGCGCCTGCTGGTGGCTCATGGCGGCTGGCACGGTCTGGGTAACACCCGCTTCAAATCCAGTACCAACCGCGCGCCGCGCCAGACTACGCCGGGCAAGCCAGGCGAGCAGCGTGACCTGAAGCTGGAAATGAAAGTGCTGGCCGACGTCGGTCTGCTGGGCCTGCCGAACGCAGGTAAGAGTACGTTCATTCGCTCGGTGTCGGCGGCCAAGCCGAAAGTCGCCGATTACCCGTTCACCACCCTGGTGCCGAACCTGGGCGTGGTCAGTGTCGATCGCTGGAAAAGCTTCGTGATCGCCGACATTCCGGGGTTGATCGAAGGTGCCTCCGAAGGTGCTGGCCTGGGGATTCGTTTCCTCAAGCATTTGTCCCGCACCCGTCTGTTGCTGCACCTCGTCGACATGGCGCCGCTGGATGAAACCGATGCCGCCGATGCCGCCGAGGTTATCGTCAACGAGCTGACCAAATTCAGCCCGGCCCTGGCCGAGCGCGACCGTTGGCTGGTGCTCAACAAGTGCGACCAGATCCTCGAAGAAGAGCACGAAGAGCGGGTCAAGGAAATCGTTGATCGCCTGGAGTGGGAAGGTCCGGTCTACATGATCTCGGCCATTGCCAAAGAAGGCACCGAGCGCCTTTGCCACGACATCATGCGTTACCTGGAAGATCGTGCTGATCGCCTGGCCAATGATCCGGCCTACAAGGAAGAACTGGCCGAGCTCGACCAGCGCATCGAAGACGAGGCGCGCGCCCAGTTGCAGGCGCTGGATGACCAGCGTGCCCTGCGCCGCAGCGGCGTCAAGTCGGTCCATGACATCGGTGATGACGATTGGGACGAAGAGGATGTGGATGACGAAGACGGTCCGGAAATCATCTACGTTCGCGACTGAMKFVDEVSIRVKAGDGGNGCMSFRREKFIENGGPNGGDGGDGGSIYMLADENLNTLVDYRYTRHFDAERGSNGGSTDCTGKKGEDLILRVPVGTTVIDSATQEVIGDLTKAGQRLLVAHGGWHGLGNTRFKSSTNRAPRQTTPGKPGEQRDLKLEMKVLADVGLLGLPNAGKSTFIRSVSAAKPKVADYPFTTLVPNLGVVSVDRWKSFVIADIPGLIEGASEGAGLGIRFLKHLSRTRLLLHLVDMAPLDETDAADAAEVIVNELTKFSPALAERDRWLVLNKCDQILEEEHEERVKEIVDRLEWEGPVYMISAIAKEGTERLCHDIMRYLEDRADRLANDPAYKEELAELDQRIEDEARAQLQALDDQRALRRSGVKSVHDIGDDDWDEEDVDDEDGPEIIYVRDNANANANANA
D1-35_048631119proBGlutamate 5-kinaseATGCGGAGCAAGGTGACGGGTGCGCAACGCTGGGTCGTGAAGATCGGCAGCGCACTGCTGACGGCGGATGGCAAGGGCCTGGATCGCCAGGCGATGGCGGTGTGGGTCGAGCAGATGGTGGCCCTGCATGAGGCGGGCGTCGAGCTGGTACTGGTCTCCTCGGGTGCCGTGGCGGCCGGCATGAGCCGTTTGGGCTGGACGTCGCGACCCAGCGCGATGCACGAACTGCAGGCCGCTGCCGCCATTGGCCAGATGGGCCTGGTGCAGGCGTGGGAGTCGAGCTTTGCCGAGCATGATCGCCACACGGCGCAGATCCTGCTGACCCACGACGACCTGTCGGACCGCAAGCGTTATCTCAATGCCCGTAGTACGCTGCGAGCGTTGGTGGAGCTGAAAGTCATCCCGGTGATCAACGAGAACGACACGGTGGTCACCGACGAAATCCGTTTCGGCGACAACGACACGCTCGCGGCGCTGGTAGCCAACCTCGTGGAAGCCGACCTGCTGGTGATTCTCACGGATCGCGACGGCATGTTCGACGCCGATCCGCGCAATAACCCTGATGCCAGGCTGATCTACGAAGCCCGAGCCGACGATCCCGCGCTGGATGCGGTGGCGGGTGGCACTGGCGGAGCCCTGGGGCGCGGCGGCATGCAGACCAAGCTGCGTGCGGCGCGTCTGGCGGCGCGCTCTGGCGCCCATACCATCATCGTTGGCGGTCGGTTGGAGCGGGTGCTGGATCGCCTCAAGGCCGGGGAGCGCATCGGTACGCTGCTGTCGCCTGAGCGCGGCATGCTGGCGGCGCGCAAACAGTGGCTGGCCGGGCATCTGCAAACCCGGGGCACGCTGGTGCTGGACGCCGGTGCCGTGTCGGCGCTGTCCCAAGGTAATAAAAGCCTGCTGCCGGTAGGCGTGAAGCTGGTCCAGGGCAGCTTCCGCCGCGGCGAAATGGTCGTTTGCGTAGCGCCGGATGGTCGAGAGATTGCCCGGGGCCTGGCCAACTACAGCGCGCTGGAAGCACAGAAAATCATCGGCCAATCGTCTGATGCGATTGTTGGTCTGCTGGGTTACATGGCTGAGCCTGAGCTGGTTCACCGTGACAACCTGATCCTCGTCTAAMRSKVTGAQRWVVKIGSALLTADGKGLDRQAMAVWVEQMVALHEAGVELVLVSSGAVAAGMSRLGWTSRPSAMHELQAAAAIGQMGLVQAWESSFAEHDRHTAQILLTHDDLSDRKRYLNARSTLRALVELKVIPVINENDTVVTDEIRFGDNDTLAALVANLVEADLLVILTDRDGMFDADPRNNPDARLIYEARADDPALDAVAGGTGGALGRGGMQTKLRAARLAARSGAHTIIVGGRLERVLDRLKAGERIGTLLSPERGMLAARKQWLAGHLQTRGTLVLDAGAVSALSQGNKSLLPVGVKLVQGSFRRGEMVVCVAPDGREIARGLANYSALEAQKIIGQSSDAIVGLLGYMAEPELVHRDNLILVPGPT0014220_2010DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014220-proB-K00931NANA
D1-35_04864465hypothetical proteinATGGGTTTGGCAAAAGGATTGATCGGCTTGCTGGTGGCGCTGCCGCTATTGGCCTCTGCCGAGGAAATCGGGCAGGTGTCCACGGTGTTCAAGTTTGTCGGGCCAAACGACCGGATCGTGGTCGAGGCGTTCGATGATCCCAGGGTCGATGGCGTGACCTGCTATCTGTCGCGGGCCAAGACCGGCGGCGTAAAAGGTGGCCTGGGGCTGGCCGAAGATCGCGCCGAGGCGTCCATCGCCTGCCGCCAGGTCGGGCCGATCAGCTTCAAGGGCGAGCTCAAGGATGGCGAGGAGGTCTTCAGGGAGCGCACCTCGCTGGTCTTCAAGACCATGCAGGTGGTGCGTTTTCTCGACAAGAAGCGCAATACGTTGGTGTACCTGGTCTACAGCGACCGTGTGATCGAGGGTAGCCCGCAGAATGCGGTGACGGCGATTCCGATCCTGCCTTGGGCCAAGGCTCAATAAMGLAKGLIGLLVALPLLASAEEIGQVSTVFKFVGPNDRIVVEAFDDPRVDGVTCYLSRAKTGGVKGGLGLAEDRAEASIACRQVGPISFKGELKDGEEVFRERTSLVFKTMQVVRFLDKKRNTLVYLVYSDRVIEGSPQNAVTAIPILPWAKAQNANANANANA
D1-35_04865279rpsTCOG026830S ribosomal protein S20GTGGCCAACTCACCTTCCGCCAAAAAACGTGCAAAACAGGCTGAGAAGCGTCGCAGCCACAACGCCAGCCTGCGTTCCATGGTCCGTACCTACATCAAAAACGTAGTCAAGGCCATCGACGCAAAAGACGCTGAAAAAGCACAAGCTGCTTACGTTCTGGCTGTGCCAGTTATCGACCGCATGGCCGATAAAGGCATCATCCACAAGAACAAGGCTGCTCGCCATAAGAGCCGCCTGAATGGCCACGTAAAGGCCTTGAACGTTGCTGCTGCTGCCTAAMANSPSAKKRAKQAEKRRSHNASLRSMVRTYIKNVVKAIDAKDAEKAQAAYVLAVPVIDRMADKGIIHKNKAARHKSRLNGHVKALNVAAAANANANANANA
D1-35_048661539murJCOG0728putative lipid II flippase MurJATGAATCTGCTCAAATCGTTGGCTGCCGTCAGCTCTATCACGATGCTTTCCCGGGTTCTGGGATTCGTTCGCGATACGCTGATCGCGCGGATATTCGGTGCCGGAATGGCCACCGACGCCTTCTTCATCGCCTTCAAGCTGCCAAACCTGCTGCGGCGGATCTTCGCCGAAGGGGCCTTTTCCCAGGCCTTCGTGCCGATCCTGGCTGAATACAAAAGCCAGAAGGGCGACGAGGCGACCCGCACTTTCATCGCTTATGTGACCGGTTTGCTCACGCTGGTGCTGGCGCTGGTCACCGCGGCCGGCATGCTCGCCGCGCCTTGGGTGATCTGGGCCACCGCGCCAGGTTTCACCGACACGCCGGAAAAATTCCAGCTCACCTCCGACCTGTTGCGGGTGACCTTTCCTTATATATTGCTGATTTCCCTGTCATCGCTGGCCGGGGCGATCCTCAATACCTGGAACCGTTTCTCGGTGCCGGCCTTCGTGCCGACGCTGCTCAATGTCAGCATGATCGTCTTCGCACTGTTCCTGACGCCGTACTTCGATCCGCCGGTGATGGCCCTGGGTTGGGCGGTGCTGGTCGGCGGCCTGGCGCAATTGCTCTATCAACTGCCCCACCTGAAAAAGATCGGCATGCTGGTACTGCCGCGCCTGAACTTGCGCGACAGTGGCGTGTGGCGCGTCATGAAGCAGATGCTGCCGGCCATTCTCGGGGTGTCGGTGAGCCAGATTTCCCTGATCATCAACACTATTTTCGCCTCGTTCCTGGTGGCCGGCTCGGTCTCGTGGATGTACTACGCCGACCGCTTGATGGAGCTGCCTTCCGGCGTACTGGGCGTGGCGCTGGGCACGATTCTGCTGCCTACCCTGGCCAAGACCTACGCCAGCCAGGACCGTCATGAATACTCGCGCATCCTCGACTGGGGCCTGCGCCTGTGCTTCGTGCTGGTCCTGCCTTGTGCGCTGGCGCTGGGGATCCTTGCCGAGCCGCTGACGGTTTCGCTGTTCCAGTATGGCCAGTTCAATGCGTTTGATGCCTTGATGACCCAGCGCGCGCTGATCGCCTATTCGGCGGGCTTGCTTGGAATCATTGTGATCAAGGTCCTGGCGCCGGGTTTCTACGCCCAGCAGAACATTCGCACGCCGGTGAAGATCGCCATCTTTACCTTGGTGATGACCCAGCTGTTCAACCTGCTGCTCATCGGACCCCTGGCCCATGCCGGCCTGGCCTTGGCGATCAGCGCCGGTGCCTGCCTCAACGCCGGGCTGCTGTTCTACCAGTTGCGCAAACAGAAGATGTATCAGCCGCAGCCCGGCTGGGTCAGGTTCGGCCTCAAGCTGCTGGTCGCCGTAGCGGTGATGTCGGCGGTGTTGCTGGCGGGGATGCATTTCATGCCGGCTTGGGGTGAAGGGCAGATGTTCGAGCGCTTCCTGCGCCTGGGCGTGCTGGTCGTGGCCGGCGTGGTGGCTTATTTCGGCATGTTGCTGCTAATGGGATTCCGTCTGCGCGACTTCAATCGCAAGGCCTTGAGCTGAMNLLKSLAAVSSITMLSRVLGFVRDTLIARIFGAGMATDAFFIAFKLPNLLRRIFAEGAFSQAFVPILAEYKSQKGDEATRTFIAYVTGLLTLVLALVTAAGMLAAPWVIWATAPGFTDTPEKFQLTSDLLRVTFPYILLISLSSLAGAILNTWNRFSVPAFVPTLLNVSMIVFALFLTPYFDPPVMALGWAVLVGGLAQLLYQLPHLKKIGMLVLPRLNLRDSGVWRVMKQMLPAILGVSVSQISLIINTIFASFLVAGSVSWMYYADRLMELPSGVLGVALGTILLPTLAKTYASQDRHEYSRILDWGLRLCFVLVLPCALALGILAEPLTVSLFQYGQFNAFDALMTQRALIAYSAGLLGIIVIKVLAPGFYAQQNIRTPVKIAIFTLVMTQLFNLLLIGPLAHAGLALAISAGACLNAGLLFYQLRKQKMYQPQPGWVRFGLKLLVAVAVMSAVLLAGMHFMPAWGEGQMFERFLRLGVLVVAGVVAYFGMLLLMGFRLRDFNRKALSPGPT0024200_3303DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_LIPID_II_FLIPPASE_ACTIVITY,PGPT0024200-murJ|mviN-K03980NANA
D1-35_04867939ribFCOG0196Bifunctional riboflavin kinase/FMN adenylyltransferaseATGCAGCTGGTTCGAGGCCTCCACAACCTGCGTCCCCGGCATCGGGGCTGTGTCGCCACTATTGGCAACTTCGACGGTGTTCACCGTGGCCACCAGGCTATCCTGGCGCGGCTGCGCGAGCGTGCGCTGGAGTTGGGCCTGCCCAGCTGCGTGGTGATCTTCGAGCCGCAGCCCCGGGAGTTCTTTGCTCCGGACACCGCTCCGGCGCGTCTGGCCCGGTTGCGTGACAAACTGCAACTGCTGGCCGCCGAAGGCGTCGATCGGGTCCTCTGCCTGGCCTTCAACCAGCGCCTGAGCCAGCTCAGCGCCGCCGAGTTTGTCGATACCATCCTGGTGGACGGTCTCGACGTGAAGCATCTGGAAGTCGGCGACGATTTCCGTTTCGGCTGCGACCGGGCAGGGGATTTCGATTACCTGCAACAGGCCGGCATCGCCCAGGGCTTCACCGTCGAAGCGGCACAGACCGTCGAAATGGACGGTTTGCGCGTCAGCAGCACCCAGGTCCGCAATGCCCTGGCGGCGGCGGACTTCGAATTGGCCGAGCGCTTGCTCGGCCGGCCGTACCGGATTGCCGGGCGGATCCTGCACGGGCAGAAACTGGCGCGCCAATTGGGCACGCCGACGGCCAACGTGCAACTCAAGCGCCGTCGTGTGCCGTTGACTGGGGTGTTCCTGGTGAGTGTCGACATCGACGGCAAGACCTGGCCCGGCGTCGCCAATATCGGCGTACGCCCCACGGTGCAGGGGGATGGCAAGGCCCATCTCGAAGTACACATTCTGGATTTTGCCGGCGATCTGTATGACCGGCGTTTGACGGTGGTTTTCCACCAGAAGCTGCGTGAAGAGCAGCGTTTTGCCTCTCTGGAGGCGCTCAAGACGGCGATCCATGCAGATATCGCCGCCGCCCGTGCCCTTGTCGCAACCAGCGCCAATCGCTAAMQLVRGLHNLRPRHRGCVATIGNFDGVHRGHQAILARLRERALELGLPSCVVIFEPQPREFFAPDTAPARLARLRDKLQLLAAEGVDRVLCLAFNQRLSQLSAAEFVDTILVDGLDVKHLEVGDDFRFGCDRAGDFDYLQQAGIAQGFTVEAAQTVEMDGLRVSSTQVRNALAAADFELAERLLGRPYRIAGRILHGQKLARQLGTPTANVQLKRRRVPLTGVFLVSVDIDGKTWPGVANIGVRPTVQGDGKAHLEVHILDFAGDLYDRRLTVVFHQKLREEQRFASLEALKTAIHADIAAARALVATSANRPGPT0008625_1627DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B2|RIBOFLAVIN_METABOLISMISR-VITAMIN_B2|RIBOFLAVIN_BIOSYNTHESIS,PGPT0008625-ribF-K11753NANA
D1-35_048682832ileSCOG0060Isoleucine--tRNA ligaseATGACCGACTATAAAGCCACGCTAAACCTTCCGGACACCGCCTTCCCAATGAAGGCCGGCCTGCCTCAGCGCGAACCACAGATTCTGCAGCGTTGGGACAGCATTGGCCTGTACGGAAAGTTGCGCGAAATTGGCAAGGATCGTCCGAAGTTCGTCTTGCACGACGGCCCTCCGTACGCCAACGGCACCATCCACATCGGTCACGCGCTGAACAAGATTCTCAAGGACATGATCATCCGCTCCAAGACCCTGTCGGGTTTTGACGCGCCGTATGTCCCGGGCTGGGACTGCCACGGCCTGCCGATCGAGCACAAGGTCGAAGTGACCCACGGCAAGAACCTGGGCGCCGACAAGACCCGCGAGCTGTGCCGTGCCTACGCCACTGAGCAGATCGAAGGGCAGAAGTCCGAATTCATCCGTCTCGGCGTGCTGGGCGACTTCGCCAATCCGTACAAGACCATGGACTTTGCGAACGAAGCCGGTGAAATCCGCGCCCTGGCGAAAATCGTCGAGGGCGGCTTCGTGTTCAAGGGCCTGAAACCGGTCAACTGGTGCTTCGACTGTGGTTCGGCCCTGGCCGAGGCGGAAGTCGAGTACGAGAACAAGAAGTCCTCGACCATCGATGTCGCGTTCCCGATCGCCGATGAAGACAAGCTTGCCGCCGCTTTCGGCCTGGGCAAGCTGGCCAAGCCGGCCGCCATCGTGATCTGGACCACCACCCCATGGACCATCCCGGCCAACCAGGCGCTGAACGTCCATCCGGAATTCAACTACGCCCTGGTCGACGTCGGCGACAGACTGCTGGTGCTGGCCGAAGAGCTGGTCGAATCCTGCCTGGCCCGCTACAGCCTGGAAGGTTCGGTGATTGCCACCGCGCCAGGCTCGGCGCTGGAGCTGATCAACTTCCGTCATCCGTTCTATGACCGCCTGTCGCCAGTGTATCTGGCCGACTACGTGGAACTGGGCGCCGGCACTGGCGTGGTTCACTCCGCGCCGGCCTATGGCGTCGACGACTTCGTGACCTGCAAGAAATACGGCATGGTCAACGATGACATCCTCAATCCGGTGCAGAGCAATGGCGTCTACGTGCCGTCGCTGGAATTCTTTGGCGGCCAGTTCATCTGGAAAGCCAACCCGGCCATCGTCGACAAGCTGACCGAAGTCGGCGCGCTGCTGCACACCACCGTCATCGAACACAGCTACATGCACTGCTGGCGCCACAAGACCCCGCTGATCTACCGCGCGACCGCGCAGTGGTTCATCGGCATGGACAAGCAGCCAACCAGCGGCGACACCCTGCGCCAGCGTTCGCTCAAGGCCATCGAAGAGACCCAATTCGTTCCGGCCTGGGGCCAGGCGCGCCTGCACTCGATGATCGCCAACCGTCCGGACTGGTGCATCTCCCGCCAGCGCAACTGGGGCGTGCCGATCCCGTTCTTCCTGAACAAGGAAAGCGGCGAGCTGCACCCGCGCACCGTCGAACTGATGGAAGAAGTGGCCAAGCGCGTTGAAGCCGAAGGCATCGAAGCCTGGTTCAAGCTCGATGCCGCCGAGCTGCTCGGCGACGAAGCGCCGCTGTACGACAAGATCAGCGATACCCTCGACGTCTGGTTCGATTCCGGCACCACTCATTGGCACGTGTTGCGCGGCTCGCATCCGATGGGCCACGAGAACGGCCCGCGCGCCGACCTGTACCTGGAAGGTTCGGACCAGCACCGTGGCTGGTTCCACTCGTCCTTGCTGACCGGTTGCGCCATCGACAATCACGCGCCTTACCGCGAGCTGCTGACCCACGGTTTCACCGTCGACGAGGCCGGCCGCAAGATGTCCAAGTCCCTGGGCAACGTGATCGCGCCGCAGAAAGTCAACGACACCCTCGGCGCCGACATCATGCGCCTGTGGGTCGCGTCCACCGACTATTCCGGCGAGATGGCCGTTTCCGAGCAGATCCTGCAGCGCAGCGCGGACGCCTACCGGCGGATCCGCAACACCGCGCGCTTCCTGCTTTCGAACCTGACCGGTTTCAATCCGGCCACCGACCTGCTGCCGGCCGAAGACATGCTTGCGCTGGACCGCTGGGCCGTGGACCGCACCCTGTTGCTGCAGCGCGAATTGCAGGAGCACTACGGTGAATACCGTTTCTGGAACGTCTACTCGAAGATCCACAACTTCTGCGTGCAGGAGCTTGGCGGTTTCTACCTCGACATCATCAAGGACCGCCAGTACACCACCGGCGCCAACAGCAAGGCACGTCGTTCGTGCCAGACCGCGCTGTTCCACATCAGCGAGGCGCTGGTGCGCTGGATCGCGCCGATCCTGGCGTTCACCGCCGATGAGCTGTGGGAATACCTGCCGGGCGAGCGCAACGAATCGGTGATGCTCAACACCTGGTACGAAGGCCTGACCGAACTGCCGCAAGGCTTCGAGCTGGACCGTGCGTATTGGGACCGGATCATGGCGGTCAAGGCGGCGGTCAACAAGGAAATGGAAATCCAGCGGGCGGCCAAGGCTGTCGGCGGCAACCTGCAGGCTGAAGTGACCCTTTACGCCGAAGAGGCGCTGGGTGCCGATCTGGCCAAGCTGGGCAACGAGCTGCGCTTCGTGCTGATTACCTCGACCGCCAGCGTCGCGCCGCTGGTGCAGGCGCCGGCCGATGCGGTGGTCACCGAGGTAAGCGGCCTGAAGCTCAAGGTGGTCAAGTCGAGCTTCGTCAAGTGCGCCCGTTGCTGGCACTGCCGCGAAGACGTCGGTGTGAACCCGGAGCATCCGGAAATCTGTGGTCGTTGCGTCGACAACATCAGCGGTACGGGCGAGGTTCGCCACTATGCCTGAMTDYKATLNLPDTAFPMKAGLPQREPQILQRWDSIGLYGKLREIGKDRPKFVLHDGPPYANGTIHIGHALNKILKDMIIRSKTLSGFDAPYVPGWDCHGLPIEHKVEVTHGKNLGADKTRELCRAYATEQIEGQKSEFIRLGVLGDFANPYKTMDFANEAGEIRALAKIVEGGFVFKGLKPVNWCFDCGSALAEAEVEYENKKSSTIDVAFPIADEDKLAAAFGLGKLAKPAAIVIWTTTPWTIPANQALNVHPEFNYALVDVGDRLLVLAEELVESCLARYSLEGSVIATAPGSALELINFRHPFYDRLSPVYLADYVELGAGTGVVHSAPAYGVDDFVTCKKYGMVNDDILNPVQSNGVYVPSLEFFGGQFIWKANPAIVDKLTEVGALLHTTVIEHSYMHCWRHKTPLIYRATAQWFIGMDKQPTSGDTLRQRSLKAIEETQFVPAWGQARLHSMIANRPDWCISRQRNWGVPIPFFLNKESGELHPRTVELMEEVAKRVEAEGIEAWFKLDAAELLGDEAPLYDKISDTLDVWFDSGTTHWHVLRGSHPMGHENGPRADLYLEGSDQHRGWFHSSLLTGCAIDNHAPYRELLTHGFTVDEAGRKMSKSLGNVIAPQKVNDTLGADIMRLWVASTDYSGEMAVSEQILQRSADAYRRIRNTARFLLSNLTGFNPATDLLPAEDMLALDRWAVDRTLLLQRELQEHYGEYRFWNVYSKIHNFCVQELGGFYLDIIKDRQYTTGANSKARRSCQTALFHISEALVRWIAPILAFTADELWEYLPGERNESVMLNTWYEGLTELPQGFELDRAYWDRIMAVKAAVNKEMEIQRAAKAVGGNLQAEVTLYAEEALGADLAKLGNELRFVLITSTASVAPLVQAPADAVVTEVSGLKLKVVKSSFVKCARCWHCREDVGVNPEHPEICGRCVDNISGTGEVRHYANANANANANA
D1-35_04869525lspACOG0597Lipoprotein signal peptidaseATGCCTGATCTGGCGCCCAACGCAGCAGGCCGTTTCGGACGGCTGGGCTGGCTCTGGTTGAGTGTGCTGGTACTGGTCATCGACCAGGCCAGCAAGTACTACTTCGAGAGTTCGTTGACCATGTACCAGCAGATCGTGGTCATCCCCGACTACTTCAGCTGGACGCTGGCCTACAACACCGGCGCGGCATTCAGCTTCCTGGCCGACAGTTCGGGCTGGCAGCGTTGGCTGTTCGCCCTGATCGCCGTCGTGGTCAGCGCCGTGCTGGTGGTCTGGCTCAAGCGCCTGGGGCGTGACGAGACCTGGCTGGCCGTGGCGCTGGCGCTGGTCCTGGGTGGCGCGCTGGGCAACCTGTACGACCGGATTGCCTTGGGCCATGTGATCGATTTCATCCTGGTGCATTGGCAGAACCGCTGGTACTTCCCGGCGTTCAACATTGCCGACAGTGCCATCAGCGTGGGCGCCGTAATGCTCGCCCTGGATATGTTCAAGAGCAAGAAAACCGGAGAAGCCGTCCATGACTGAMPDLAPNAAGRFGRLGWLWLSVLVLVIDQASKYYFESSLTMYQQIVVIPDYFSWTLAYNTGAAFSFLADSSGWQRWLFALIAVVVSAVLVVWLKRLGRDETWLAVALALVLGGALGNLYDRIALGHVIDFILVHWQNRWYFPAFNIADSAISVGAVMLALDMFKSKKTGEAVHDPGPT0004770_1918DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_LEAD_RESISTANCELEAD_RESISTANCE-PBR_TRANSPORT_SYSTEM,PGPT0004770-pbrB|pbrC-K03101NANA
D1-35_04870438fkpBCOG1047FKBP-type 16 kDa peptidyl-prolyl cis-trans isomeraseATGACTGAGCAGCGTATCGCTCAAAACACCGAAGTGAAGCTTCACTTCGCCCTGCACCTGGAAAACGGCGACACCGTCGACAGCACGTTCGACAAGGCGCCGGCGGTGTTCAAGGTCGGCGACGGCAACCTGCTGCCGGGTTTTGAAGCGGCGATCTTCGGTTTCAAGGCCGGCGACAAGCGCACCGTGGTGGTTCCTCCGGAAAATGCCTTTGGTCAGCCCAACCCGCAAAACGTGCAGACCATGCCACGCTCGCAGTTCCAGGACATGGAGCTGTCCGAGGGCCTGCTGGTGATCTTCAACGACGCGGCCAACGCCGAGCTGCCGGGTGTGGTGAAAGCTTTTGACGATGCCGAGGTGACCGTGGACTTCAACCACCCACTGGCGGGCAAGACCTTGAGCTTCGAGGTGGAAATCCTTGAAGTGAAGGCGGTTTAAMTEQRIAQNTEVKLHFALHLENGDTVDSTFDKAPAVFKVGDGNLLPGFEAAIFGFKAGDKRTVVVPPENAFGQPNPQNVQTMPRSQFQDMELSEGLLVIFNDAANAELPGVVKAFDDAEVTVDFNHPLAGKTLSFEVEILEVKAVPGPT0015111_4495DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL_PEPTIDES,PGPT0015111-ppiB-K03768NANA
D1-35_04871948ispHCOG07614-hydroxy-3-methylbut-2-enyl diphosphate reductaseATGCAAATCAAACTCGCCAACCCCCGTGGCTTCTGCGCTGGCGTGGACCGGGCGATCGAAATCGTCAACCGCGCCCTGGAAGTCTTCGGACCGCCGATCTATGTGCGCCATGAAGTGGTCCACAACAAGTTCGTCGTCGAGGACCTGCGCAGCCGTGGGGCCATCTTCGTCGAAGAACTGGACCAGGTGCCGGACGACGTCATCGTGATCTTCAGCGCCCACGGCGTTTCCCAGGCGGTGCGTACCGAAGCTGCCGGCCGTGGCTTGAAAGTGTTCGATGCTACGTGCCCGTTGGTTACCAAGGTCCACATCGAGGTGGCGCGCTACAGCCGTGATGGTCGCGAATGCATCCTGATCGGCCATGAAGGCCACCCGGAAGTTGAAGGCACCATGGGCCAGTACGACGCCAGCAATGGCGGCGCGATCTACCTGGTCGAAGACGAAGAAGACGTGGCGGCCTTGCAGGTTCGCAACCCGGAAAAGCTGGCTTTCGTTACGCAGACTACCTTGTCCATGGACGACACCAGCCGGGTGATCGACGCCCTGCGCACGCGCTTCCCGGCCATCGGCGGGCCGCGCAAGGATGACATTTGCTACGCAACCCAGAATCGTCAGGACGCGGTCAAGCAACTGGCCAACGAGTGCGATGTGGTCCTGGTGGTCGGCAGCCCGAACAGCTCCAACTCCAACCGCTTGCGCGAGCTGGCCGAACGCATGTCGACCCCGGCCTATCTGATCGACGGTGCCGAGGACATGCAGCGCAGCTGGTTCGACGGTGTCGAGCGGATCGGTATCACCGCCGGTGCCTCCGCGCCGGAAGTCCTCGTACGCGGGGTGATCGAGCAGTTGCAGGCCTGGGGCGCAACGGGTGCCAACGAGCTGGCGGGGCGCGAGGAAAACATTACGTTCTCGATGCCGAAAGAGCTGCGGGTCCGTTCCCTGCTTTGAMQIKLANPRGFCAGVDRAIEIVNRALEVFGPPIYVRHEVVHNKFVVEDLRSRGAIFVEELDQVPDDVIVIFSAHGVSQAVRTEAAGRGLKVFDATCPLVTKVHIEVARYSRDGRECILIGHEGHPEVEGTMGQYDASNGGAIYLVEDEEDVAALQVRNPEKLAFVTQTTLSMDDTSRVIDALRTRFPAIGGPRKDDICYATQNRQDAVKQLANECDVVLVVGSPNSSNSNRLRELAERMSTPAYLIDGAEDMQRSWFDGVERIGITAGASAPEVLVRGVIEQLQAWGATGANELAGREENITFSMPKELRVRSLLPGPT0007615_1419DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-TERPENOID_DERIVATE_PRODUCTION,PGPT0007615-ispH|lytB-K03527NANA
D1-35_04872540hypothetical proteinATGCATCAACAGGGCTTCAGCCTGATTGAACTGCTCATGGGACTGGCGATTGCCGCAATTGTTCTGCCGTGGGCCGGTGCAAGCTACAAAGAGCTGATCGAGTCCATCGAACGCGAGGATACCGCCCGGTTGCTGATCAGCGGGTTGCGTTTTGCCCGCAGCGAAGCCATCACGCGCAACCGCCGCATCTTGATCCAGGGAATCGACAATGATTGGGGCAGGGGCTGGCGGATCACGCTGGACAACAAGGAGCAAACCTTGCTGAGGGAGCGCAGCGGTCATGCTCGGGTGGTTGGCAACTCGCCAGTAAAACACCGGGTGAGGTTCGGCGGCCAGGGAGAAGCCCTGCACCCCGACGGCGCGTTCCAGGCAGGCACGCTGCATGTCTGCGCCAGACGCGGGCCGGTCAGCCATCACCAGGTGATCCTGGCGCCCTCCGGCCGCGTCCGCCTGGAAAGTGTCAAAGCCGAGCAGGCCCTGTGTGAAAAAGGACTCAAAGCAGGGAACGGACCCGCAGCTCTTTCGGCATCGAGAACGTAAMHQQGFSLIELLMGLAIAAIVLPWAGASYKELIESIEREDTARLLISGLRFARSEAITRNRRILIQGIDNDWGRGWRITLDNKEQTLLRERSGHARVVGNSPVKHRVRFGGQGEALHPDGAFQAGTLHVCARRGPVSHHQVILAPSGRVRLESVKAEQALCEKGLKAGNGPAALSASRTPGPT0016065_729DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0016065-fimT-K08084NANA
D1-35_04873483hypothetical proteinATGGATCTTCGTACAAAAGGTTTCACGCTGATCGAGGTGTTGGTGGCCCTCGGCGTGCTGCTGATCCTGATCACCATGGCGGTGCCGTCATTCACCGGCTCGCTGCAAAGTACCAAGGCCGATACCGAGATCGACGACCTGCGCCGAGCCTTGAATTTCGCGCGAATGGAAGCGATCAACCGTGGCATCACCACGCGAATTCGTCCCACCACGCAGGGCGGTGCCTGGAGCGGCGAATTGATGGTGTATGACAACACGGGCAACCCGGCCAATCCGACCAATGTATTGCGGGTTGTTCCAGCAATGGGCGGCGGCGTGACTCTGACGCTAACCTCAGAAGTGACCAACATTGATTTCAACAACCTGGGCGGGTTATCGGCACCGACCACGCCGGTGGGCTTCAATTACGTGAGAGGGACGCAGAGCAGGACGCTCAATGTCTGCCTCAATGGACGAATCGTATTGGGTGGAAATTGCGGATGAMDLRTKGFTLIEVLVALGVLLILITMAVPSFTGSLQSTKADTEIDDLRRALNFARMEAINRGITTRIRPTTQGGAWSGELMVYDNTGNPANPTNVLRVVPAMGGGVTLTLTSEVTNIDFNNLGGLSAPTTPVGFNYVRGTQSRTLNVCLNGRIVLGGNCGPGPT0016070_43DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0016070-fimU-K08085NANA
D1-35_04874462hypothetical proteinATGAAGGATTGCAGTAAAACGGCGCAGGAGGGCATGACGCTCATCGAGGTGCTGGTGGCGATGCTGATTCTCGGCGTGGGTTTGCTGGGGGCGGCGATGGTCCAGCTCAATGCCCTCAAATACACCGACAGCTCGCGCATGACCAGCCAGGCCAGCTTCATCGCCTACGACTTGTTGGACCGCATCCGGGCCAATTCCGGTGCCGACTACACCATCACGCCGCCGAGCTCGCCGAACCTCAACGTGGCCCGGGACCAGGACCTTTATGACTTCAAGACCAACATCGTCGCTTTCGGCGGCGCCACGGCCACCGGTACGGTTGCGCTGAACCAGCGGGTCTACACCATCACCATTTCCTGGGACGACGCCCGGGCTGCCAACACGACCAACGCGGCCGAGGCGCGACGCAGCTTTGTGCTGACCAGCCGGGTCGCTGTCGATCCATTGGCGACGACGCCATGAMKDCSKTAQEGMTLIEVLVAMLILGVGLLGAAMVQLNALKYTDSSRMTSQASFIAYDLLDRIRANSGADYTITPPSSPNLNVARDQDLYDFKTNIVAFGGATATGTVALNQRVYTITISWDDARAANTTNAAEARRSFVLTSRVAVDPLATTPPGPT0015975_776DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015975-pilV-K02671NANA
D1-35_04875714hypothetical proteinATGAACCGGCATAGCCGGGGTTTCGGGCTGATCGAACTGATGATCGCGCTGGTCATCAGCCTGATCGTCGTGCTGGGCGTCGTGCAGATTTTCATCGCCGCGAAAAATACTTACGTAAGCCAGAGTGCCGCCGCGGTGATGCAGGAGGATGCACGGTTTGCCTTGAGCAAAATGGTTCAGGAAATTCGCATGGTGGGCATGTTCGGCTGCCTGGCGACGGTCACCGATGCGTCTTCGAACAATGATTTCGCCGCCAGCCAGATCACCCCGATTCGCTGGGACAACGCCACCCGCAGGTTGACCCTGGTCACGGCGGATATCGGCAATAGCGGCAGTGCGCCGACCTGGACCATCGTTTCCGATTGCCGCAATACGGCCGCCGCCTACACCGGAACGCGAGCACCCGCGAGCGGGCAGATGGCCTTTCCGATCCGGCGGCTGATTTATGGTTTCAACAACAATCAGTTATTGCTGGGGAGCGGCGCTGGCAACCCGACCATGGCGGTGCTGGTGGATAACGTGCGGGCATTCGACGTGACCTTCGGCGTGGCCGGCAGCGCGACGGACATCGCAGCCACCAGCTACAGCGGCAACCCGAGCGACCCGGCGCTGATCCGCAGCGTGCGCCTGACGCTGACGCTGTACGACCCGAAAAATACCGTGCGCGAGCAGACCTTCAACGTGGTTGCTGCCTTGCGCAACCGGCTGCTATGAMNRHSRGFGLIELMIALVISLIVVLGVVQIFIAAKNTYVSQSAAAVMQEDARFALSKMVQEIRMVGMFGCLATVTDASSNNDFAASQITPIRWDNATRRLTLVTADIGNSGSAPTWTIVSDCRNTAAAYTGTRAPASGQMAFPIRRLIYGFNNNQLLLGSGAGNPTMAVLVDNVRAFDVTFGVAGSATDIAATSYSGNPSDPALIRSVRLTLTLYDPKNTVREQTFNVVAALRNRLLPGPT0015980_1066DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015980-pilW-K02672NANA
D1-35_04876477hypothetical proteinATGAGGTCGACAGGTTTCGGGTATCGCCAGCGTGGCATGGCCTTGCTGGTCAGCCTGGTCTTTTTGCTGCTGCTGACACTGATTGGTTTGTCATCGATGCAGAGCGCCACGCTCCAGGAAAAGATGACCAGCAGCGTCATGCAGCGCAACCAGTCGTTCCAGATGGCCGAGGCGGCGCTGAGGATCGGGGAAAGCGCGGTGCAGGCAGAAAGTTATTCGTTGCCGGTTTGTACCGCGGCCCAATGCGCGCCACCGCCTGAGTCGGCAACAGTGACGGTGGCGGGGCGTTATTCCTCGTCGGGGGTGCTCTGGGTGGCCGCCGCCGGTGGGTTTTACGGCGTGCAGAATATCGGCACAACCCTTACGGCAGTCAACGTGCCGCTCAATACCTCGGCGACGCTGTACCGGATCACGGCGGTGGCGGTGGTGGGCAACAACCAGCGCAGCGTGGTGGAGAGCATCTATGCGAAATATTAGMRSTGFGYRQRGMALLVSLVFLLLLTLIGLSSMQSATLQEKMTSSVMQRNQSFQMAEAALRIGESAVQAESYSLPVCTAAQCAPPPESATVTVAGRYSSSGVLWVAAAGGFYGVQNIGTTLTAVNVPLNTSATLYRITAVAVVGNNQRSVVESIYAKYPGPT0015985_636DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015985-pilX-K02673NANA
D1-35_048773108hypothetical proteinATGCGAAATATTAGAGTGCTTCGGGGCTGGCGCCAGGCGTTGTGGGGGATGTTGCTCAGCCTTTACCTGACGGCCCCGGTCTATGGCTTCACACCGTCGGAATCACCGCTGTTGAGTGCGGCGGCGGTGACGCCCAACGTGATGCTGCTGATCGATGATTCGGGGAGCATGAACAACATTATCTGGGCGGCGGGGTTTGATCCGGCGGCAACGCAACCACCGATTTCTATATGCACTGACGACAGAAGTTGTAGCAGCAGCAATAGGGCGCTGCTTGCGGCAAACGACGGGAACGTCTTGCTTGCGAGTCTGTTCCGCGGCGATTGTTTAAATGGCTGGTATGGCTTCTACCGAACTGGCTTTGGTCAGGTTTGCCTGCGGTTACCCGATCCGGTTGGCGGCGAGAATACTCGCTACACAGCTAAGTACTTATCTTATCTAGTCACCCTTGCCAACGGTTCAAGCCGGGACTTCACCAACGGCTCAATCCCGAGAGACTATCGAATAAACGTAGCAAGGAATGTTTCGACTGATCTGGTCGGCAACAATCGCTCCCTGCGCATCGGCCTTGCCACTTTCAATTCGCCCAACAGCTTCAACTCCGGCCCTGGCGGCTATATTGCTCGTGCGATCAGCGATCTGTCGCCGGTAAGTGGCAGTGTCACCCAGACGCAGGCGAATACTAACTACAGCGCCTTGATCAGCGCCATAAACGCGCTAGGCGCCGTCGCCAATACGCCGCTGGCTGAGAGTTACTACGAAGTCACTCGTTATTTCAGAGGTATGGCGCCTTATTACAACAACACCCCAAGTACCTATACCAGCCCGATTCAGTACCGATGCCAGAAAAATTTTGGCGTGGTGATCACTGATGGTTTGCCCACTTTTGACCGAACGTTTCCTACCGATGATCCGTCCGGGGGGAGCCGCTTGCCAAACTGGGATGGCATCAGCGCCAACGATGGCGCCGATCCCAAGGGGGACGGAGAGGGCGACACGCTGTACCTGGACGACATTGCCAAATTCGCCTTCGACATCGACATGCGTTCCACCGGCACCGACGTCACCGGGAAAAGCTGGGATGGAGCCGAATTCCGCCGACAGTACCTCAATACCTACACCGTCGGTTTTGCTGTCACCAACCAGATGCTTTCCGACGCTGCTCGTTACGGTGCGGGCAAATATTATCCGGCCACCGACAGTGAAGGCCTGAACTCGGCCCTGTCGTCGGCCCTGAGCGACATCACCTCCAAGGCCGGTTCGGGAGGCGGCGGCACCAGCAATGGCGCGACGCTCTCCAGCACTTCCAGTTTTTACCAGACCACCTACGACCCCAGGGACTGGCGCGGCACCATCAAGGCATTCGGCTTCAATTCCGCTGGAACGGTGAACACCGCAGCAGCGCAGTGGACCACTGACACCGCTATCGTTCCCGGTGCCACACCGCCGCTCTACCAGTCCTGGAACACCGCGACCAACGTGCCGGTGACCCTGGCCTACGGCAACTTTTCGCCGGCCCAGCAAACCAGCCTGAGCCAGGGCCTGCCCACGGGGATCACCGGCAGCGATCTGGTGGAATGGAGCAAGGGCGTCAACAAGACCGGGCTCAAGGTGCGCAGCGTCCTGCTGGGGGACATCATCAATTCGCCGCTGGCCCTGGCCTCGCCCAATGACCAGACCGCCTCGGACCTGCTGAACGACACCAGTTACAGCAATTACCTGACGACCAAGGCGGCAAACATGAGCAGCAGCCTGGTGGTGAATGGCAATGATGGTTTCTTCAGTGTCATCAACAGCGCCAACGGAGCCCGCCGTTACGCATATATGCCGTCGACCGTGCTGCCTTCATTGCAGCTCATCGCTGATCCCGGCTACATCAATGGCGTGAGTCATAAATTCCTGGTGGACGGGCAGGTTGCAGTATTCGATGCGCAACTGGGCAGCGTCTGGAAAACGCTGGCCCTGGGTGGCACCGGCGCGGGCGGCCGGGCGTTTTACGCGGTGCAACTGTTCGACGCAGCGGCAGGCAATGCGATCCGGGCCTTGTGGGAGATCAGCGCGCCGACCCTCGCCAACGCAGCCAATGTCTTCAATGACCTGGGCTACGCCTATGCGCGCCCTGAAGTCGCGCGCCTTGCGGACGGTCGTTGGGCGGCGTTCATCGCCAATGGTTATGGCAGTAATACCGGCGTGGCGGCGCTGTATGTGGTGGACGTTCGCGACGGCTCGCTGATTCGCAAGATTGTCGTCAACAGCCCCGACACCAATAACGGCCTTTCGTCGGTCAAGCTGCGGGTCAACGCCCAGAATGTTGTGCAGGCGGCCTATGGCGGGGACCTGAAAGGACGGATGTGGAAGTTCGACCTCAGCGCGACTTCGCCGAACACCTGGGGTCTGGCGTTTGCCGGCCAGCCGTTGTTCACCGCTCCAGGTGGGGCGACACAGCCGATCACCGCGCAACCGTTGCTGGCGGAGAACCCCCAGGGCGGCATCCAGGTATTTTTCGGCACGGGCAAGTTCAACGAGTCGGCGGACAAGCTCAACAAGGACCTGCAAGGTTTCTATTCGATCTGGGACGCTAGCGGCGGCGCCGGGCAGATTACCGTGGCAAGCCTGCAGGCCCAGTCGATCACCAGCATTTTTTCCGGTACTACCGGGCAATTCGTGACCACCAGCCAGAATAACGTGGCCTATCCCACGCAAAAAGGCTGGTATCTGCCGCTGATATACAACAACGCGTTGACCGGCGAACGGGTAATCAACCCGGCCAGCCTGGTACTTGGGCGTGTTGTCTTCACCACCGCCGCCGTTGATACCACTGACCCATGCGCGAGCTTCGGTACCGGCAAGCTGATCGAAGTGGATGCGTTCAACGGTAAGATGCTCAACTACGCGGTGCTCGATACCAACAACGATGGTTCGATCAATACCCTCGACACGATTTCCGCTGGCGTGGTGTTCACGGGGGGGATCCCGACCTTGAGTGCCGTCGTCAGCGCCAATGGAGCAACCAATATGGTCGTGAATGACTCCGGTGGTGGAATCACCGACCTGCTGACCAAGTCCGTCGGTGGCAGCCGTCGTATCATGTGGCGGCAAATACAGTGAMRNIRVLRGWRQALWGMLLSLYLTAPVYGFTPSESPLLSAAAVTPNVMLLIDDSGSMNNIIWAAGFDPAATQPPISICTDDRSCSSSNRALLAANDGNVLLASLFRGDCLNGWYGFYRTGFGQVCLRLPDPVGGENTRYTAKYLSYLVTLANGSSRDFTNGSIPRDYRINVARNVSTDLVGNNRSLRIGLATFNSPNSFNSGPGGYIARAISDLSPVSGSVTQTQANTNYSALISAINALGAVANTPLAESYYEVTRYFRGMAPYYNNTPSTYTSPIQYRCQKNFGVVITDGLPTFDRTFPTDDPSGGSRLPNWDGISANDGADPKGDGEGDTLYLDDIAKFAFDIDMRSTGTDVTGKSWDGAEFRRQYLNTYTVGFAVTNQMLSDAARYGAGKYYPATDSEGLNSALSSALSDITSKAGSGGGGTSNGATLSSTSSFYQTTYDPRDWRGTIKAFGFNSAGTVNTAAAQWTTDTAIVPGATPPLYQSWNTATNVPVTLAYGNFSPAQQTSLSQGLPTGITGSDLVEWSKGVNKTGLKVRSVLLGDIINSPLALASPNDQTASDLLNDTSYSNYLTTKAANMSSSLVVNGNDGFFSVINSANGARRYAYMPSTVLPSLQLIADPGYINGVSHKFLVDGQVAVFDAQLGSVWKTLALGGTGAGGRAFYAVQLFDAAAGNAIRALWEISAPTLANAANVFNDLGYAYARPEVARLADGRWAAFIANGYGSNTGVAALYVVDVRDGSLIRKIVVNSPDTNNGLSSVKLRVNAQNVVQAAYGGDLKGRMWKFDLSATSPNTWGLAFAGQPLFTAPGGATQPITAQPLLAENPQGGIQVFFGTGKFNESADKLNKDLQGFYSIWDASGGAGQITVASLQAQSITSIFSGTTGQFVTTSQNNVAYPTQKGWYLPLIYNNALTGERVINPASLVLGRVVFTTAAVDTTDPCASFGTGKLIEVDAFNGKMLNYAVLDTNNDGSINTLDTISAGVVFTGGIPTLSAVVSANGATNMVVNDSGGGITDLLTKSVGGSRRIMWRQIQPGPT0015990_917DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015990-pilY1-K02674NANA
D1-35_04878402hypothetical proteinATGCGCAAATCCAACCGGGGTTTCACCTTGATCGAAATCATGATCGTCATCGCGATCATCGGTATCGTGATCACCATCGGCTATCCGAGCCTGACCGAATACATGAAGAAGGGGCGCCGGGCCGAAATCGCCGGACTGCTGTCGGAACAGGCGCAGATTCTCGAACGTCACTATTCGAAGACCAACGTCTATACCAACGCGACTGGCCTGAGCGGTGGCAACGATTTCTACACTATTAACCTGACGCCGACGGAGCAGAGCTTTACCCTGACCGCACTACGCAGAAGTGGCTCGTCCATGGCGACGGACAAGTGCGGTGATTTTACGATCGACAACACGGGCAAGCGGGGCAATATCAACTCCGCTGCCGGCGTGACCACCAAGGATTGCTGGGGTCGTTGAMRKSNRGFTLIEIMIVIAIIGIVITIGYPSLTEYMKKGRRAEIAGLLSEQAQILERHYSKTNVYTNATGLSGGNDFYTINLTPTEQSFTLTALRRSGSSMATDKCGDFTIDNTGKRGNINSAAGVTTKDCWGRPGPT0015930_1155DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015930-pilE-K02655NANA
D1-35_048791158thiOGlycine oxidaseTTGAGTTTTTATCCGGGTGCGGACGAGCGCCCTCTGTCTTGTGAGTCGAAACAGAACATGACCAGGCAACAGCAAGTGGTGATAGTCGGCGGCGGAGTCATCGGCCTGTTGACGGCATTCAATCTCGCCTCCGAAGGCCAGCGGGTGGTGCTGCTGGACCGCTCCGGGCTTGGCCAGGAATCTTCCTGGGCCGGCGGCGGTATTGTTTCGCCGCTGTACCCGTGGCGCTATAGCCCGGCGGTCACCGCGCTGGCCCACTGGTCGCAGGATTTTTATCCACAGCTGGGTGATTCCTTGTTCGCAACGACCGGGATCGATCCGCAAGTGCATGTCACCGGCCTGTATTGGCTGGACCTCGACGACCAGGCTGAAGCACTGGCCTGGGCCGAGCGGGAAGGGCGTCCGCTGCGAACTGTGGATATCTCCGCGGTCCACGATGCGGTTCCGGTAGTGGGCTCGGGTTTCTCCCGGGCGATCTACATGGCCGATGTGGCGAATGTGCGTAACCCGCGGCTGGTGAAGTCCCTCAAGGCTGCGTTGCAGGCGATGCCGGGTGTCACGCTTCATGAGCATTGCGAAGTCAGCGGGTTCATTCGCGACGGTGAGCGTGTCATTGGCGTGAAGAGCTCAGCGGGTGAGATACGCGGTGATCAAATCGTACTCGCCGCGGGTGCCTGGAGCGGCGAGTTGCTGGGAACGCTGGGACTGGAGTTGCCGGTCGAGCCGGTGAAGGGCCAGATGATTTTGTACAAGTGCGCGTCCGATTTTCTCTCGAGCATAGTCCTGGCCAAGGGCCGTTATGCGATTCCGCGTCGTGACGGGCACATTTTGATCGGCAGTACGCTGGAGCATGAAGGCTTCGACAAGACGCCGACCGATGCGGCGCTGGAAAGCCTCAAGGCTTCGGCTCTGGAGTTGATCCCGGCGTTGGCCGACGCCGAGTTGGTGGGGCATTGGGCCGGGTTACGGCCAGGATCGCCGGAGGGTATTCCCTACATTGGCGAAGTGCCGGGGTTTGCGGGGTTGTGGTTGAACTGCGGCCATTACCGCAACGGCCTGGTGCTGGCGCCGGCTTCGTGCCGGTTGTTCGTCGACGTGATGCTGGGGCGTGAGCCGGTGATTGATCCTGCGCCGTATGCCCCGGCGGGGCGGCTGTAGMSFYPGADERPLSCESKQNMTRQQQVVIVGGGVIGLLTAFNLASEGQRVVLLDRSGLGQESSWAGGGIVSPLYPWRYSPAVTALAHWSQDFYPQLGDSLFATTGIDPQVHVTGLYWLDLDDQAEALAWAEREGRPLRTVDISAVHDAVPVVGSGFSRAIYMADVANVRNPRLVKSLKAALQAMPGVTLHEHCEVSGFIRDGERVIGVKSSAGEIRGDQIVLAAGAWSGELLGTLGLELPVEPVKGQMILYKCASDFLSSIVLAKGRYAIPRRDGHILIGSTLEHEGFDKTPTDAALESLKASALELIPALADAELVGHWAGLRPGSPEGIPYIGEVPGFAGLWLNCGHYRNGLVLAPASCRLFVDVMLGREPVIDPAPYAPAGRLPGPT0008955_1202DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_GLYCINE_DEGRADATION,PGPT0008955-thiO-K03153NANA
D1-35_048801347atoC_4COG2204Regulatory protein AtoCTTGAATACACGCTCACGGCAACGAATCCTGATCGTCGATGACGAAACGGACATCCGCGAACTCCTGGAAATCACCCTGGGAAGGATGAAACTCGACACCCGCAGCGCCAAGAACCTCGCCGAGGCCCAAGCCCTGCTGGCAGGTGAAACCTTCGACCTGTGCCTGACCGACATGCGCCTGCCCGATGGTACCGGCCTGGAACTGGTGCAACACATCCAGCAACGCGTTCCTCAACTGCCGGTGGCGATGATCACCGCCTATGGCAGCCTGGAAGTCGCTATCGACGCGCTCAAGGCCGGCGCCTTCGACTTCCTGACCAAACCGGTCGACCTGGGGCGGCTGCGGGAGCTGATTGGCAGCGCCTTGCGCCTGTCGCCGGGTGCTGCGCCGAGTACGACCGTCGAGCGCTGCCTGTTGGGCGACTCGCCACCCATGCGCAGCGTGCGGCGACAGATTGAAAAACTCGCCCGCAGCCAGGCGCCGGTCTACATCAGCGGCGAATCAGGCTGCGGCAAGGAACTGGTGGCGCGCCTGATTCATGAACAAGGCCCTCGCTACAGCCAGGGGTTTGTGCCCGTCAATTGTGGGGCCATTCCAACGGAGTTGATGGAAAGCGAGTTTTTCGGCCATCGAAAAGGCAGCTTCACCGGCGCCATCGAAGACAAGCCCGGCCTGTTCCAGGCGGCTCACGGCGGGACCCTGTTCCTCGATGAAGTCGCCGACCTGCCGCTGGCGATGCAGGTCAAGCTGTTGCGTGCCATCCAGGAAAAAGCCGTGCGCGCGGTGGGCGGGCAACAGGAAGAAGTGGTGGATGTACGAATCCTCTGCGCCACCCACAAGGACCTCGGCGCAGAAGTCGCCGCCGGTCGCTTTCGCCAGGACTTGTATTACCGGCTGAATGTGATCGAACTGCGCGTCCCGCCCTTGCGTGAACGCCGGGAAGACATCGAGCTGCTGGCCAACCACATGCTCCAGCGCCTGGCCACCAACGCCGGCAGCCCAGTGGCGACGCTCCATCCGCAAGCCCTCAAAGCGCTGCAGAACTACCGCTTCCCGGGCAACGTGCGAGAACTGGAGAACATGCTCGAACGGGCCTACACCCTGTGCGAACACCAGCAGATCGAGGCCGATGACTTGCGTCTCGCCGAACACAGCGGGGCTGGCGAGGCGGGCAATCCGGATCTGATGCAGGTCGACAATCTGGAAGATTATCTGGAGGACGTCGAACGCAAGGTCATCCTGCAGGCCTTGGAAGAAACCCGCTGGAACCGCACCGCAGCGGCGCAGAGATTGAAGTTGTCGTTTCGGTCGATGCGGTATCGGTTGAAGAAGTTGGGGTTGGATTGAMNTRSRQRILIVDDETDIRELLEITLGRMKLDTRSAKNLAEAQALLAGETFDLCLTDMRLPDGTGLELVQHIQQRVPQLPVAMITAYGSLEVAIDALKAGAFDFLTKPVDLGRLRELIGSALRLSPGAAPSTTVERCLLGDSPPMRSVRRQIEKLARSQAPVYISGESGCGKELVARLIHEQGPRYSQGFVPVNCGAIPTELMESEFFGHRKGSFTGAIEDKPGLFQAAHGGTLFLDEVADLPLAMQVKLLRAIQEKAVRAVGGQQEEVVDVRILCATHKDLGAEVAAGRFRQDLYYRLNVIELRVPPLRERREDIELLANHMLQRLATNAGSPVATLHPQALKALQNYRFPGNVRELENMLERAYTLCEHQQIEADDLRLAEHSGAGEAGNPDLMQVDNLEDYLEDVERKVILQALEETRWNRTAAAQRLKLSFRSMRYRLKKLGLDPGPT0015865_512DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0015865-pilR|pehR-K02667NANA
D1-35_048811590sasA_17Adaptive-response sensory-kinase SasAGTGATCGCTGAGGCCTCGCGTCCCCGCGTCAAACAGGCGCAGCGTCTGCTGCGCCTCTATCACCTGTACCGCCTGAGCATCGGCATCACCCTGGTGCTGCTGATCACCAGCAACATGGACAACCGGCTGCTGGAGTTCGCCAACGACGACCTGCTGCGCAGCGGCAGCTGGTTGTATCTGGTGCTGAACATCCTGCTGGTGGTGTTCCTTGAAAATACGCGTCGCCCAGCCCGGCTGTTCGGGCTGGCGCTCACCGACGTATTGCTGCTGTCGTGGCTGTTCTTCGTCGCGGGTGGCGCCCCCAGCGCCATCGGCAACCTGATCATTGTCTCGGTAGCCATCGGCAACACCTTGCTGAAGGGGCGCATCGGCCTGCTGATCGCTGCCGTCGCCACCCTTGGCATCGTCGGCTCGACATTTGTCCTCGGCCTCAGCGACGCGAGCCGCCCCAGCAGCTATCTACAGGCAGGCACCCTGGGCGCCTTGTGTTTCGCCGCCGCTTTGCTGGTGCAAGGCCTGACCCGACGCCTGGAAGCCAGCGAAACCCTGGCCGAGCAACGGGCCAGCGAAGTGCTCAGCCTCGAAGCGCTCAACGCCTTGATCCTGCAACGCATGCGCACCGGCATCCTGGTGCTTGATCACCAGCACCGGGTGCGACTGGCCAACGAAAGCGCCTTGAACCTGCTGGGCATGCACGACCTGGTCGGCCAGCATATAGACGATTATTCCAGCGCCCTGGTCGAACGGCTGCAATCGTGGCGGAACAACCCCAGCCTGCGCGCGCAAAGCCTGACCATCAGCGGCACCGGCCTGACGCTGCAACCCAGCTTCATCGCCCTCGGCCCTCAGGATCAGCAGCAGATCCTGGTATTTCTCGAAGACCTGGCCCAAGTGGCCCAACATGCCCAGCAACTGAAACTCGCCTCCCTCGGGCGCCTCACCGCGGGTATTTCCCATGAAATCCGCAACCCTCTGGGCGCCATCAGCCACGCCGCGCAATTGCTCGGTGAATCCGAGGAACTGAACAACGCCGACCGACGTCTGACGCAGATTATTCAAGACCACTCCCTACGAATGAATCGCGTCATCGAAAACGTCCTGCAGCTGTCCCGCCGCCAGCAAACCGCGCCGCAACGCCTGGATTTACGCACATGGCTGGAGCAATTCGCCCTGCGGACCCGGGAAAACGCGGCCGAACCCCAGCGATTGCACCTGAGCATCGACCCGGGCGACTACATCACACTCATGGACCCCGACCAACTGGCCCAGGTGCTCGACAATCTGCTGCGCAACGCCTGGCGTCATAGCGCAATGGCCCATGAACAGGCCGAGGCCTGGTTGAAGCTGTTTGTCGACCCGCACAGTCAACTGGCCACGCTGGACATCATCGACAACGGCCCTGGCGTAACGCCGGAGCAGCAGGCGCACTTGTTCGAACCCTTCTTCACCACCAGCAGCCAGGGCACCGGCCTCGGGCTCTATCTGTCCCGTGAGCTGTGCGAAAGCAACCAGGCCCGCCTAGACTTCAAATCACGCCAAGGCGGCGGTTGCTTTCGCATCACCTTTGCTCACGGACGGAAACAGATTTGAMIAEASRPRVKQAQRLLRLYHLYRLSIGITLVLLITSNMDNRLLEFANDDLLRSGSWLYLVLNILLVVFLENTRRPARLFGLALTDVLLLSWLFFVAGGAPSAIGNLIIVSVAIGNTLLKGRIGLLIAAVATLGIVGSTFVLGLSDASRPSSYLQAGTLGALCFAAALLVQGLTRRLEASETLAEQRASEVLSLEALNALILQRMRTGILVLDHQHRVRLANESALNLLGMHDLVGQHIDDYSSALVERLQSWRNNPSLRAQSLTISGTGLTLQPSFIALGPQDQQQILVFLEDLAQVAQHAQQLKLASLGRLTAGISHEIRNPLGAISHAAQLLGESEELNNADRRLTQIIQDHSLRMNRVIENVLQLSRRQQTAPQRLDLRTWLEQFALRTRENAAEPQRLHLSIDPGDYITLMDPDQLAQVLDNLLRNAWRHSAMAHEQAEAWLKLFVDPHSQLATLDIIDNGPGVTPEQQAHLFEPFFTTSSQGTGLGLYLSRELCESNQARLDFKSRQGGGCFRITFAHGRKQIPGPT0015870_460DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0015870-pilS|pehS-K02668NANA
D1-35_04882234hypothetical proteinATGCTTCGTTTACTGTTCTGGATCGCCCTGATTGCCGCCGCGATATGGTTGTGGCGCAAGTTCAAGGCAACCTCCGCCACATCGAACACCTCGCGTGACCATGACGCGCGCCCGATGGTGCGTTGCGCCCAGTGCGGGGTGCACCTGCCGCGCGACCGGGCGCTGGCCCTCGACCAACAATGGTATTGCAGCCAGGCTCACCTCGAGCAAGGCCCGGGTACTCGTGATCGCTGAMLRLLFWIALIAAAIWLWRKFKATSATSNTSRDHDARPMVRCAQCGVHLPRDRALALDQQWYCSQAHLEQGPGTRDRNANANANANA
D1-35_048831017bamDOuter membrane protein assembly factor BamDATGCAAGTGAAACACCTGCTGCTGATCGCCATCCTCGCATTGACTGCTGCTTGCTCGTCGAAGGAAGTCGTAGACGAAAACCTGAGCGAAGTCGAACTGTACCAACAGGCGCAGAACGACCTGGATAACAACAGCTATACCAGCGCCACCGCCAAGCTCAAGGCGTTGGAGTCGCGGTATCCGTTCGGTCGCTACGCCGACCAGGCGCAGCTGGAACTGATCTACGCCAACTACAAGAACGCCGAGCCGGAAGCTGCCAAGTCCGCCGCCGAGCGTTTCATTCGTCTGCACCCGCAGCACCCGAACGTCGATTACGCTTACTACCTCAAGGGCCTGACCTCCTTCGACCAGGACGTCGGCCTGCTGGCGCGCTTCCTGCCGCTGGACATGACCAAGCGTGACCCGGGCGCCGCGCGCGACTCCTACAACGAGTTCGCCCAGCTGACCAGCCGCTTCCCCAACAGCCGCTATTCGCCTGATGCCAAGCAGCGCATGATCTACCTGCGCAACCTGCTGGCGTCCTACGAAATCCACGTGGCTGACTACTATCTGACCCGCCAGGCCTACGTCGCCGCCGCCAACCGTGGCCGCTACGTGGTGGAAAACTTCCAGGAAACCCCATCGGTTGGCGACGGCCTGGCTGTCATGACCGAAGCCTACCAGCGCCTGCACCTGGATGACCTCGCGGCCACCAGCCTGGAAACGCTGAAGCTGAACTACCCCGATCACCCATCGCTGGTCGATGGCCAGTTCACCCCGCGGGTCGATGAAGCCGACAACCGTTCGTGGCTGAGCAAGGCGACCCTCGGCCTGATCGAATCCCGTCCGCCGCTGCCGCCGGGCGAAACCCGCGCCAACCAGGACGTCCAGCGCCAGTTCCAGGACGCCAAGGAAGCCATTCCGAACGAGCTCAAGCCCAAGGACGAAAATGGCGACGTGATCGAAGAAGAAGAGCCGGAAAGCGAATCCAGCGATCGCTCCTGGTTCAGCTACATGACCTTCGGCATGTTCGACTGAMQVKHLLLIAILALTAACSSKEVVDENLSEVELYQQAQNDLDNNSYTSATAKLKALESRYPFGRYADQAQLELIYANYKNAEPEAAKSAAERFIRLHPQHPNVDYAYYLKGLTSFDQDVGLLARFLPLDMTKRDPGAARDSYNEFAQLTSRFPNSRYSPDAKQRMIYLRNLLASYEIHVADYYLTRQAYVAAANRGRYVVENFQETPSVGDGLAVMTEAYQRLHLDDLAATSLETLKLNYPDHPSLVDGQFTPRVDEADNRSWLSKATLGLIESRPPLPPGETRANQDVQRQFQDAKEAIPNELKPKDENGDVIEEEEPESESSDRSWFSYMTFGMFDNANANANANA
D1-35_04884963rluDCOG0564Ribosomal large subunit pseudouridine synthase DATGTCCGATAAAATAGAACTTCGCGCAGAGGTGCCGTCCGAATTGGGCGGCCAACGCCTCGATCAAGTCGCCGCCCAACTCTTCGCCGAGCACTCGCGCTCGCGCCTTTCCGCCTGGATCAAGGACGGTCGCCTGACAGTGGACGGGGCGGTGATCCGTCCGCGCGACATCGTCCATGGCGGCGCCATCCTCGAACTGACCGCCGAGCAGGAGGCCCAGGGAGAATGGGTCGCCCAGGATATTGCCCTGGACATCGTCTACGAAGACGACGACATCCTGGTGATCAACAAGCCCGCGGGCCTGGTGGTCCACCCGGCGGCCGGTCACGCCGATGGCACCCTGCTCAACGCCTTGCTGCACCATGTGCCGGACATCATCAATGTGCCCCGCGCCGGGATCGTGCACCGCCTGGACAAGGACACCACCGGCCTGATGGTGGTCGCCAAGACCATCCAGGCGCAGACACAGCTGGTCACACAGCTGCAAAGCCGCAGCGTCAGCCGCATCTATGAATGCATCGTGATCGGCGTGGTCACCGCCGGTGGCAAGATCAACGCACCGATCGGCCGTCACGGCCAGCAGCGCCAGCGCATGGCGGTGATGGAGGGTGGCAAGCAGGCGGTCAGCCATTACCGCGTGCTGGAGCGTTTTCGTTCGCACACGCATGTGCGGGTCAAGCTGGAAACCGGCCGGACCCACCAGATTCGCGTGCATATGTCCCATATCAACTTCCCACTGGTGGGCGACCCGGCCTATGGCGGTCGTTTCCGCATTCCGCCGGCCGCGAGCCAGACCATGGTCGAATCGTTGAAAAACTTCCCGCGCCAGGCGCTGCACGCGCGCTTCCTGGAGCTGGACCACCCGACGACCGGTAAGCGCATGAGCTGGGAATCGCCGTTGCCGGATGACTTCGTCTGGCTGCTGACGCTGCTCAAGCAGGATCGCGAGGCGTTCATCGGATGAMSDKIELRAEVPSELGGQRLDQVAAQLFAEHSRSRLSAWIKDGRLTVDGAVIRPRDIVHGGAILELTAEQEAQGEWVAQDIALDIVYEDDDILVINKPAGLVVHPAAGHADGTLLNALLHHVPDIINVPRAGIVHRLDKDTTGLMVVAKTIQAQTQLVTQLQSRSVSRIYECIVIGVVTAGGKINAPIGRHGQQRQRMAVMEGGKQAVSHYRVLERFRSHTHVRVKLETGRTHQIRVHMSHINFPLVGDPAYGGRFRIPPAASQTMVESLKNFPRQALHARFLELDHPTTGKRMSWESPLPDDFVWLLTLLKQDREAFIGNANANANANA
D1-35_04885726yfiHCOG1496Polyphenol oxidaseATGAGTGACTGGCTGATACCCGACTGGCCCGCGCCGGCCCGGGTCAAGGCCTGTGTCACCACCCGCGAGGGCGGCGTCAGCCTGGCGCCGTTCGACAGCCTCAACCTCGGCGACCATGTGGGCGATGAGCCTGCGGCCGTCGCCGAAAACCGTCGTCGCCTCACCGATCGTTTCGCCATGCGTCCGGCCTGGTTGCAGCAGGTCCACGGTATCGAGGTGGTCGAAGCTGACCCGGTCGAGGTGGCTGTCGCCGATGCCTGCTGGACCGCCACGCCGGGTATCGCCTGCGCGGCAATGACGGCCGATTGCCTGCCTGTATTGTTCTGTAACCACGCCGGCACCCATGTCGCGGCAGCCCATGCCGGTTGGCGCGGGCTGGCCAACGGAGTCCTGGAAGCCACCCTTGATCGTCTGCAAGTACCGGCCGAAGAAATCCTCGCCTGGCTCGGCCCGGCCATCGGCCCGCAAGCGTTCGAAGTGGGGCCTGAGGTGCGTGAGGTTTTTGTTGCGCAACTGCCCGAGTCGCAACAAGCCTTCATGCCCAGCCACAATGCCGGGAAGTACCTGGCGGATATCTATGCGCTGGCGCGCCTGCGTCTCGCGGCTCGCGGCGTCACCGCCGTGTACGGTGGCGGCCTGTGCACCGTGACCGATCCGCGCTTCTTTTCCTACCGTCGCAACGCCCGCACCGGTCGCTTCGCTTCCCTGATCTGGCTTGAACGCTAGMSDWLIPDWPAPARVKACVTTREGGVSLAPFDSLNLGDHVGDEPAAVAENRRRLTDRFAMRPAWLQQVHGIEVVEADPVEVAVADACWTATPGIACAAMTADCLPVLFCNHAGTHVAAAHAGWRGLANGVLEATLDRLQVPAEEILAWLGPAIGPQAFEVGPEVREVFVAQLPESQQAFMPSHNAGKYLADIYALARLRLAARGVTAVYGGGLCTVTDPRFFSYRRNARTGRFASLIWLERPGPT0019965_3555DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_CELL_WALL|MEMBRANE_DEGRADATIONPLANT_LIGNIN_DEGRADATION|LIGNINASESPLANT_LIGNIN_DEGRADATION-POLYPHENOL_OXIDASE,PGPT0019965-yfiH-K05810NANA
D1-35_048862565clpBCOG0542Chaperone protein ClpBATGCGTATTGATCGTTTAACCAGCAAACTGCAATTGGCCTTGTCCGATGCCCAATCCCTGGCCGTCGGCCTGGACCATCCCGGCATCGAACCGGCGCACTTGATGCAGGCCATGCTCGAACAGCAAGGCGGTTCCATCAAGCCACTGCTGATGCAGGTGGGCTTTGACGTCAACAGCCTGCGCAAAGAGTTGGCCAAAGAACTCGACCAACTGCCCAAGATCCAGAATCCGACCGGTGACGTGAACATGTCCCAGGATCTGGCGCGGCTGCTCAACCAGGCCGATCGCCTGGCCCAACAGAAGGGCGACCAGTTCATTTCCAGCGAACTGGTGCTGCTCGCCGCGATGGACGAGAACAGCAAGCTGGGCAAGTTGCTGCTCGGCCAGGGCGTGAGCAAGAAAGCCCTGGAAAATGCCATCAACAACCTGCGTGGTGGCGATGCGGTCAACGACCCCAACCACGAGGAAGCGCGCCAGGCGCTGGACAAGTACACCGTCGACCTGACCAAGCGCGCAGAGGAAGGCAAGCTTGACCCGGTGATCGGCCGTGACGATGAAATTCGCCGCACTATCCAGGTCCTGCAGCGCCGTACCAAGAACAACCCGGTGCTGATCGGTGAACCTGGCGTGGGCAAGACCGCCATCGCCGAGGGCCTGGCCCAGCGCATCATCAATGGCGAAGTGCCTGACGGCCTGCGGGGCAAGCGCTTGCTGTCCCTCGACATGGGGGCGCTGATCGCTGGCGCCAAGTACCGCGGCGAATTCGAGGAACGGCTCAAGGCCTTGCTCAATGAACTGTCGAAGCAGGAAGGGCAGATCATTCTGTTCATCGACGAATTGCACACCATGGTCGGGGCCGGCAAGGGCGAGGGCTCGATGGACGCCGGCAATATGCTCAAGCCTGCGCTGGCCCGTGGTGAGTTGCATTGCGTTGGCGCGACCACGCTCAACGAATACCGCCAGTACATCGAGAAAGACGCGGCCCTGGAACGGCGCTTCCAGAAGGTGCTGGTGGAGGAGCCGAGCGAAGAAGACACCATCGCGATCTTGCGCGGCCTGAAGGAGCGCTACGAGGTTCACCACAAGGTGGCGATCACCGACGGCGCGATCATCGCGGCAGCGAAGCTCAGCCACCGCTATATCACTGACCGGCAATTGCCGGACAAGGCCATCGACCTGATTGACGAGGCCGCCAGCCGCATCCGCATGGAAATCGATTCCAAGCCTGAGGTACTGGATCGTCTGGAGCGGCGCTTGATTCAGCTCAAGGTCGAGTCCCAGGCCCTGAAAAAAGAGAGTGACGAGGCCGCGAAGAAACGCCTGGAAAGGTTGCAGGAAGAAATCGTCCGGCACGAGCGCGAGTATTCCGATCTCGAAGAAATCTGGAATTCGGAGAAAGCCGAAGTCCAGGGCTCGGCGCAGATCCAGCAGAAGATCGAGCAGTCTCGCCAGGAACTCGAAGCGGCCCGCCGCAAGGGCGATCTGAACCGCATGGCCGAGCTGCAATACGGGGTGATCCCGGACCTTGAGCGCAGCCTGCAGATGGTCGACCAGCACGGCAAGAGCGAAAACCAGCTGCTACGTAGCAAGGTCACCGAAGAGGAAATCGCCGAGGTGGTTTCCAAGTGGACCGGCATTCCCGTGTCGAAAATGCTCGAAGGCGAGCGCGACAAGCTGCTGAAGATGGAAAGCCTGTTGCACCAGCGCGTGATCGGCCAGGAAGAAGCCGTGGTGGCGGTCTCCAACGCCGTGCGTCGGTCCCGTGCCGGGTTGTCGGACCCTAACCGTCCGAGCGGCTCGTTCATGTTCCTCGGCCCGACCGGCGTGGGCAAGACCGAGCTGTGCAAGGCGCTGGCCGAATTCCTCTTCGACACCGAAGAGGCCATGGTGCGCATCGACATGTCCGAGTTCATGGAGAAACACTCCGTGGCCCGCTTGATCGGTGCGCCGCCAGGCTATGTCGGCTACGAAGAGGGCGGCTACCTGACCGAGGCCGTGCGGCGTAAACCCTACTCGGTGATCCTGCTCGATGAGGTCGAGAAGGCCCACCCGGATGTGTTCAACATCCTCTTGCAGGTCCTTGAGGACGGTCGCCTGACTGACAGCCACGGCCGTACGGTGGATTTTCGCAACACGGTGATCGTGATGACCTCCAACCTGGGCTCGACGCAGATCCAGGAACTGGTCGGCGATCGCGAGGCGCAACGCGCTGCGGTGATGGACGCGATTTCCACGCACTTCCGTCCCGAGTTCATCAACCGGGTGGATGAAGTGGTGATCTTCGAGCCGCTGGCCCGTGATCAGATCGCCGGTATTACCGAGATCCAGCTGGGTCGCCTGCGCAGCCGTCTCACCGAGCGTGAGTTGAAGCTGCAACTGAGCGACGAGGCGTTGGACAAGCTGATCGCGGTGGGTTACGACCCGGTCTATGGCGCACGGCCGCTGAAACGGGCCATCCAGCGCTGGATCGAAAACCCGTTGGCGCAGTTGATTCTGTCCGGCCGCTTCATGCCCGGCGAAACCGTGACCGGCACCGTGGAAAACGACGAGATCGTCTTCAACTGAMRIDRLTSKLQLALSDAQSLAVGLDHPGIEPAHLMQAMLEQQGGSIKPLLMQVGFDVNSLRKELAKELDQLPKIQNPTGDVNMSQDLARLLNQADRLAQQKGDQFISSELVLLAAMDENSKLGKLLLGQGVSKKALENAINNLRGGDAVNDPNHEEARQALDKYTVDLTKRAEEGKLDPVIGRDDEIRRTIQVLQRRTKNNPVLIGEPGVGKTAIAEGLAQRIINGEVPDGLRGKRLLSLDMGALIAGAKYRGEFEERLKALLNELSKQEGQIILFIDELHTMVGAGKGEGSMDAGNMLKPALARGELHCVGATTLNEYRQYIEKDAALERRFQKVLVEEPSEEDTIAILRGLKERYEVHHKVAITDGAIIAAAKLSHRYITDRQLPDKAIDLIDEAASRIRMEIDSKPEVLDRLERRLIQLKVESQALKKESDEAAKKRLERLQEEIVRHEREYSDLEEIWNSEKAEVQGSAQIQQKIEQSRQELEAARRKGDLNRMAELQYGVIPDLERSLQMVDQHGKSENQLLRSKVTEEEIAEVVSKWTGIPVSKMLEGERDKLLKMESLLHQRVIGQEEAVVAVSNAVRRSRAGLSDPNRPSGSFMFLGPTGVGKTELCKALAEFLFDTEEAMVRIDMSEFMEKHSVARLIGAPPGYVGYEEGGYLTEAVRRKPYSVILLDEVEKAHPDVFNILLQVLEDGRLTDSHGRTVDFRNTVIVMTSNLGSTQIQELVGDREAQRAAVMDAISTHFRPEFINRVDEVVIFEPLARDQIAGITEIQLGRLRSRLTERELKLQLSDEALDKLIAVGYDPVYGARPLKRAIQRWIENPLAQLILSGRFMPGETVTGTVENDEIVFNPGPT0014580_4681DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014580-clpB-K03695NANA
D1-35_048911626hypothetical proteinATGTTTCTTCGTCAGTTGAATATCGCCCCCCGTGCCGCGCTGGGTTTCGCCTTGATCGCCGTGCTGGTGGCGCTGCTCGGCGTATTTGCGCTGGGGCAGATGTCGAGTATTCGCGACAGCGAGGTCGCGGTGGAAACCCAATGGCTGCCGAGCATCCGGGGCGGCGACGAGATCCGCGAATTGATGTTGCGCATCCGCACCATTTCCCTGCGCATGGCCCTGGATGAAGACCCGAAGAACATCCCGGTGTATCGCGGACAGATGGATACCCGCGACAAGGAACTGAGCGAGAAAATTGCCAGTTACGACAAGCTTGTGGTGACACCGGAAGGCAAGGCGCTCTACGAGCAGTTCAAGCAGACCTTCACCGCCTACCGCGCGGGGATCGCCCAGTCATTCACCCTGGCGGAGCAGGGGCGGCGGGATGAATTGATCAAGTTGTTGCTGGTGGACATGAAAACCGTGGTGGATGGCTCGGGCAAGCAGCTCAACGACCTTGCGCAACTGTTTTCCAAACAGGTGTCCATCGAGAGCCAGAAATCCCAGGAGCACTACGTCAACTCGCGGATGATCGTCAGTCTGTTCGTGGTGCTGGCGGCTCTGGCCACGGTGGTCCTGGCAATGTTGCTGACCCGCAGTATCGTCAAGCCGCTGGGCGAGGCGCTGACTGCCGCGGAGAGTGTGGCCCGCGGTGACCTGACCCGGCCGATCGAGACCCATGGCAATGATGAAGTGAGTCGCCTGCTCAAGGCGTTGGCCACCATGCAGCAGAACCTTCGGCAAACCCTGCTGGGCATCAGCGGCTCGGCGACGCAACTGGCGACCGCTGCCGATGAATTGAACGCCGTCACGCTCGACAGTACTCAAAGCCTGCAACAGCAGAACAACGAAATCGAGCAGGCCGCCACTGCGGTCACCGAAATGACTACCGCCGTGGAAGAGGTCGCGCGCAACGCGGTGTCCACCTCCGATGCGACACGCCAATCCAGCGAGTCGGCGATGTTGGGCCAGGAACGGGTCAGCGATACCGTCAACGCGATCAGCGCCCTCGCCAGCGATGTGCAAATCACCGGCGGTCTGGTGCAATCCCTGGCCAGCCAGTCCCAGGACATCGGCAAGGTGCTGGATGTGATCCGGGCTATTGCCGAGCAGACCAACCTGTTGGCGCTCAACGCGGCCATCGAAGCGGCGCGGGCGGGAGAGAGCGGCCGTGGTTTTGCCGTCGTCGCCGACGAAGTCCGGGCATTGGCCTATCGCACGCAGCAATCGACCCAGGAAATCGAGCAGATGGTCCAAGGCATGCGCAGCGGTGCCACCCAGGCCCTGGATTCCATGCAGGCCAGCTCCAGCCGTGCGGCCAGTACCCTGGCAATGGCCGAGCGCGCGGGGGAGGCGCTGCAAACCATTACGGCGTCGGTGCATCAGATCCACGAGCGCAACCTGGTGATCGCCAGCGCCGCCGAAGAGCAGGCGCAGGTGGCCCGCGAGGTGGATCGCAACCTGGTCAATATTCGTGATTTGTCCGTGCGCTCGGCCACTGGGGCCGACCAGACCAGCGCGTCCAGCCATGAACTTTCGCAGTTGGCGAACTCGCTGCGCACGATGGTGCAGCGGTTTCAGGTTTGAMFLRQLNIAPRAALGFALIAVLVALLGVFALGQMSSIRDSEVAVETQWLPSIRGGDEIRELMLRIRTISLRMALDEDPKNIPVYRGQMDTRDKELSEKIASYDKLVVTPEGKALYEQFKQTFTAYRAGIAQSFTLAEQGRRDELIKLLLVDMKTVVDGSGKQLNDLAQLFSKQVSIESQKSQEHYVNSRMIVSLFVVLAALATVVLAMLLTRSIVKPLGEALTAAESVARGDLTRPIETHGNDEVSRLLKALATMQQNLRQTLLGISGSATQLATAADELNAVTLDSTQSLQQQNNEIEQAATAVTEMTTAVEEVARNAVSTSDATRQSSESAMLGQERVSDTVNAISALASDVQITGGLVQSLASQSQDIGKVLDVIRAIAEQTNLLALNAAIEAARAGESGRGFAVVADEVRALAYRTQQSTQEIEQMVQGMRSGATQALDSMQASSSRAASTLAMAERAGEALQTITASVHQIHERNLVIASAAEEQAQVAREVDRNLVNIRDLSVRSATGADQTSASSHELSQLANSLRTMVQRFQVPGPT0015710_21371DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_048921299ndhCOG1252NADH dehydrogenaseATGACTCATCGTATTGTCATCGTTGGCGGCGGCGCCGGCGGTCTGGAGTTGGCTACCCGTCTGGGTAAGACTCTGGGCAAGCGTGGCACGGCCAGTGTGATGCTGGTCGACGCGAACCTGACCCACATCTGGAAACCCTTGCTGCACGAAGTGGCCGCCGGTTCCCTGAATTCTTCCGAAGACGAACTCAACTATGTCGCCCAGGCGAAATGGAACCACTTCGAGTTCCAGCTCGGGCGCATGAGCGGCCTGGACCGTGAGCGCAAGCGCATCCAGTTGGCCGCCACCTACGACGAAGCAGGCCTGGAGTTGTTGCCGGCCCGCGAGCTGGGCTACGACACGCTGGTGATCGCGGTCGGTAGCACCACCAATGATTTTGGCACCGACGGCGCGGCGCAGCATTGCCTGTTCCTCGACACTCGCAAACAGGCCGAGCGCTTCCATCAGCAGTTGCTGCACCACTATCTGCGCGCCCATGCCGGGCAGACTGACGTGGTCGAGCGCATCAGCGTCGCGATTGTCGGCGCGGGCGCCACCGGTGTCGAACTGGCAGCCGAGCTGCATAACGCCGCCCACGAGTTGCACGCTTATGGCCTCGACCGGATCAAACCGGAAAACATGCACATCACTCTGATCGAGGCCGGTCCGCGGGTCTTGCCGGCGCTGCCGGAGCGGATCGGCGGGCCGGTGCACAGGACCCTGGAAAAACTCGGGGTCAAGGTCATGACCAACGCGGCCGTCAGCCAAGTGACCGCCGACAGCCTGATCACTGCGGATGGCAAAGTCATCGACGCGAGCCTGAAAGTCTGGGCCGCCGGGATTCGCGCGCCGGAGTTCCTCAAGGACATCGACGGCCTGGAGACCAACCGGATCAATCAGTTGCAGGTGCTGCCTACACTCCAGACCACCCGCGACGAGAATATCTTCGCCTTTGGCGACTGCGCCGCCTGCCCGCAACCGGACAGCGACCGCAACGTTCCGCCCCGCGCCCAGGCCGCGCACCAGCAGGCCTCGCTGTTGGCGAAATCGCTGAAGCTGCGGATCGAAGGCAAGGCCTTGCCTGACTACAAATACACCGACTACGGCTCGCTGATCTCACTGTCGCGCTTCTCGGCAGTCGGCAACCTGATGGGCAACCTCACCGGCAGCGTGATGCTTGAGGGCTGGCTGGCGCGGATGTTCTACGTGTCGCTGTACCGCATGCATCAGATGGCGCTTTACGGCATGTTCCGCACGGCGATGCTGATGCTGGGCAGCAAGATAGGGCGTGGGACCGAGCCTCGGTTGAAGTTGCATTGAMTHRIVIVGGGAGGLELATRLGKTLGKRGTASVMLVDANLTHIWKPLLHEVAAGSLNSSEDELNYVAQAKWNHFEFQLGRMSGLDRERKRIQLAATYDEAGLELLPARELGYDTLVIAVGSTTNDFGTDGAAQHCLFLDTRKQAERFHQQLLHHYLRAHAGQTDVVERISVAIVGAGATGVELAAELHNAAHELHAYGLDRIKPENMHITLIEAGPRVLPALPERIGGPVHRTLEKLGVKVMTNAAVSQVTADSLITADGKVIDASLKVWAAGIRAPEFLKDIDGLETNRINQLQVLPTLQTTRDENIFAFGDCAACPQPDSDRNVPPRAQAAHQQASLLAKSLKLRIEGKALPDYKYTDYGSLISLSRFSAVGNLMGNLTGSVMLEGWLARMFYVSLYRMHQMALYGMFRTAMLMLGSKIGRGTEPRLKLHPGPT0004020_2904DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-ENERGY_METABOLISMCE-BACTERIAL_FITNESS-AEROBIC_RESPIRATION|OXIDATIVE_PHOSPHORYLATION,PGPT0004020-ndh-K03885NANA
D1-35_04893174hypothetical proteinATGACCAGTCGCCTGAACCCAGAAGACCAGAAGCATGTCGAAGAGTACCTGCAACTGTCCCAGCACCGAGTCGAGCGCCGGCCTTTCCGGCCGTGGATGCTCCTGGTGGTGGTGCTGGCCATCACGATTGGCCTGGGCCTGTTGAGCCGATTGATCAGTTACCTGACGCTATGAMTSRLNPEDQKHVEEYLQLSQHRVERRPFRPWMLLVVVLAITIGLGLLSRLISYLTLNANANANANA
D1-35_04894528hypothetical proteinTTGAGCCCGTTACAGGAACTGATCGCCGCCGTGCCGCAGCGGGGCCGGGTACGCTGGATCGGCGTGCGCCCCGCAGGGCATGCACCGATGATCGAGCTGGACGCCGTCGAGGCACGACTGGAAGCCGGCCTGACCGGCGATCACGCTCGCCCAGGCGTGCGTAATGCGCGGCAAGTGACGTTGATCCAATGGGAACACCTGGCCGTGATCAGCTCGCTGATGGGCCGTCCCGAGGAACAACCGGTGCGTCCCGAGGAGCTGCGCCGCAACATTGTGGTCAGCGGCATCAACCTGTTCAGCCTCAAGGGCCGGCGTTTTCGCATCGGCCAGGCGATCTTCGAAACCACCGGCTGGTGCCAACCCTGCGCGCGACTTGAGCGAAATCTTGGCGAAGGCACGTTCCAGGCCGTACGCGGCCATGGCGGAATCACCGCCCGGGTGTTAAAAAGTGGAATCGTTCGCCTGGACGACAGCCTGATCGTCGAGCCCGTCCCGGCAACCGGCTACGCTGCTTTTAATGCCGGATAGMSPLQELIAAVPQRGRVRWIGVRPAGHAPMIELDAVEARLEAGLTGDHARPGVRNARQVTLIQWEHLAVISSLMGRPEEQPVRPEELRRNIVVSGINLFSLKGRRFRIGQAIFETTGWCQPCARLERNLGEGTFQAVRGHGGITARVLKSGIVRLDDSLIVEPVPATGYAAFNAGNANANANANA
D1-35_04895627hypothetical proteinATGGATGATTCCGATTATTTACGCTTGTTGACCATCGCGGCCGAGCAAGCCAACGCCTTTCTCTCCAATGCCCGCAAATGGGAGCGTGAGCGTTGGGTCTGCCAGCGCCTGCTGCAAGGGCTCAACGTGCCCTATCGAGCCGATGAGTTCGCGCCCGCCGGGGAGCCGCCGGACGTGTTGTTTCGCGACGCCAATTTCGAAGTGTTTTTTGTCCTCGATGAAGGCCGTCGTCTCAATGATGAATGGCGCGACGAACTGCAACGCCGCCGTAGCGCCTTTTCCCTAAGCCAACTGGTGCGTCGCGAGGCCAAGCCAAGACGGATTCCGGCCAACGAGTTCCTGATGAGACTGGCCCCGACCCTGCGCAAGAAAGCCCATAACTACACCGAGCGCGGCATGGACCTGGGGGAGCTGGATATCATTGCTTTCGCCAGCCTCAAGCGCGAAGTCCTCGACCTCAACAGCCATTTCCCGCCGCCTACCGAGTACCTGCGCCAAGGGTGGCGCTCGTTGTCGCTGGTGGGCCCGACCTTTGCCCGCGTGCTGTTCGCCCATCCCGATGCACCCGACTTCCTGCGGGGCAACCTGGGCCGCAGCATCGTCTTCGATGTGGGGATCAGCCTTTGAMDDSDYLRLLTIAAEQANAFLSNARKWERERWVCQRLLQGLNVPYRADEFAPAGEPPDVLFRDANFEVFFVLDEGRRLNDEWRDELQRRRSAFSLSQLVRREAKPRRIPANEFLMRLAPTLRKKAHNYTERGMDLGELDIIAFASLKREVLDLNSHFPPPTEYLRQGWRSLSLVGPTFARVLFAHPDAPDFLRGNLGRSIVFDVGISLNANANANANA
D1-35_04896687hypothetical proteinATGATCGGTGCCGAGTTGCTCTCCTCGCAGACCCTGGCGGTTGGCTGGCTGATCTACGTGCCGGTGTTGGCCTGGGCGGTGGCGAAGGCACCGTGGGTCGAGCTGTTTACCGACATTCGCCGCCAGCACCTGCTGTTCGGCACGGTATTCGCGCTGTTCATGTTGTGGATGGTGCGACGGGATTTCGATACGGGGGTCTCGTACCACTTCATTGGCCTGACCGCCGTCACCTTGTTGCTGGACTGGCCGCTGGCGATCCTTGGCGGGTTATTTGCCCAGCTTGCGCTGGTGCTGTTGGGGCGCCAGGACATGATGGCCGTCGGGGTCAATGGCGCGCTGCTGGTTCTCCTGCCGGTACTGGTCACGGAATGCTGCGCGATACTGGTGGAGCGTGCCCAGCCGCGCAATCTGTTCGTGTATATCTTCTGTTCGGGATTCCTCGCCGCCGCCCTGTCGGCGCTGGCGTGCCTGCTGGTGGGGCTTGGCCTGCTGTGGCATGACGGCATTTTCGCGATGCCTTATTGGCTGGAGGATTTCATCGGCTATCTCTGGCTGATGATCTTTCCCGAGGCCTTCATCAACGGCATGGTGGTCAGCGCGCTGGTGGTGTTCAGCCCCGAATGGCTGGAAACCTTCAACCGTACGCGCTACCTGTCGGCCCCCTGGAACGATGACGACAAGCCTTGAMIGAELLSSQTLAVGWLIYVPVLAWAVAKAPWVELFTDIRRQHLLFGTVFALFMLWMVRRDFDTGVSYHFIGLTAVTLLLDWPLAILGGLFAQLALVLLGRQDMMAVGVNGALLVLLPVLVTECCAILVERAQPRNLFVYIFCSGFLAAALSALACLLVGLGLLWHDGIFAMPYWLEDFIGYLWLMIFPEAFINGMVVSALVVFSPEWLETFNRTRYLSAPWNDDDKPNANANANANA
D1-35_04897207yacGCOG3024DNA gyrase inhibitor YacGATGAGCCAAACCCCAACCGTTGATTGCCCAACCTGCGGCGCCCCTGTCGAATGGACCTCGGAAAGCAAATTCCGGCCGTTCTGCTCCGATCGCTGCAAGCTGATCGACCTGGGCGCCTGGGCGTCGGAGGAACACAAGATCCCGGTCGCACCGGATGCCGAGGATGAATTGTTCAGCGAAGACTTCAACCCTCGCTCCCATCACTAGMSQTPTVDCPTCGAPVEWTSESKFRPFCSDRCKLIDLGAWASEEHKIPVAPDAEDELFSEDFNPRSHHNANANANANA
D1-35_04898624coaECOG0237Dephospho-CoA kinaseATGAACAGCTCTGCGAAAAAACCCTGGATCCTCGGCCTGACCGGTGGCATCGGCAGCGGCAAGAGTGCGGCGGCCGAGCACTTCATCGACCTGGGTGTGCACGTCATCGACGCCGACCATGCGGCGCGCTGGGTCGTTGAGCCCGGGCGCCCGGCGCTGGAAAAGATCAGCGAACACTTCGGCCCTGGTGTATTGCAGGCAGACGGTACGCTCGATCGGGCAGCACTGCGCAGGCTCATCTTCGAAAATGCCGAGGAACGCCGCTGGCTGGAGGCATTGCTGCATCCGCTGATCGCCGAAGAAATCGTCCATCACCTGGGCCAGGCGCAATCGCCGTACGCGATTCTGGTATCGCCACTGCTGATCGAATCCGGGCAGTACGCGATGACCCAGCGGATCCTGGTGATCGACGCTCCGGAACAATTGCAGATCGAACGCACCTTGCAGCGCGACCAGACCAGCGAACAGCAAGTCCAGGCGATCCTCAAAGCCCAATCCAGTCGCCAGGACCGTCTGAGCAATGCCGACGATGTGGTGGTCAACGACCGCGACCTCGCCTGGCTGCACAGCGAGGTCGAACGCCTGCATCACTTCTACCTTACTTTGCGTGGAGGCCAACCATGAMNSSAKKPWILGLTGGIGSGKSAAAEHFIDLGVHVIDADHAARWVVEPGRPALEKISEHFGPGVLQADGTLDRAALRRLIFENAEERRWLEALLHPLIAEEIVHHLGQAQSPYAILVSPLLIESGQYAMTQRILVIDAPEQLQIERTLQRDQTSEQQVQAILKAQSSRQDRLSNADDVVVNDRDLAWLHSEVERLHHFYLTLRGGQPPGPT0008835_1448DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008835-coaE-K00859NANA
D1-35_04899870outOType 4 prepilin-like proteins leader peptide-processing enzymeATGCCCCTGAGCGAATTTTTCGTGCTTTACCCGCTGGCCTTCGTACTGACAGCGCTGCTGCTCGGGTTGATCATTGGCAGCTTTCTCAACGTGCTGGTGTGGCGCCTGCCGAAGATGCTCGATCGCGAATGGCGCCTGCAAGCCCAGGACTTGCTCGGCCTGCAGGCCGACGCCCCCGGTCCGGTCTACAACCTGATGCTGCCCCACTCCCAGTGTCCCCATTGTGGCCATCGCATCCGCGCCTGGGAAAATATTCCGCTGTTGAGCTACCTGATGTTGCGCGGCCGCTGTTCCAGCTGCGCCGTGCCCATCGGCAAGCGCTACCCGCTGACCGAACTGGCCTGTGGCGTCCTGTCGGCATTCATTGCCTGGCATTTCGGCTTCGGCTGGCAGGCCGCCATGGCGATGCTGCTGAGCTGGGGCCTGCTGTCCATGAGCCTGATCGACGCCGAGCACCAGTTGCTGCCCGATTCCCTGGTGCTGCCATTGTTATGGCTGGGCTTGATTGTCAACAGCTTCGGGCTGTTCGTCTCGCTGAACCAGGCATTGTGGGGGGCGGTGGCCGGCTATCTGGCGCTGTGGTCGGTGTTCTGGGTCTTCAAGCTGCTGACCGGGAAAGAAGGCATGGGCTACGGCGACTTCAAGCTGCTGGCGATGCTCGGTGCCTGGGGCGGCTGGCAGATCCTGCCGCTGACGCTGCTACTGTCGTCGCTGGTGGGCGCCATTATCGGCGTCATTGTGCTGCGCACGCGCGGCGCGCCGACGTCGACCCAGATCCCGTTCGGACCTTATCTGGCGATTGCCGGCTGGATTGCCTTGCTCTGGGGTGGTCAAATAACCGACTTCTATTGGCAGTCAGTCGGTTTCTAAMPLSEFFVLYPLAFVLTALLLGLIIGSFLNVLVWRLPKMLDREWRLQAQDLLGLQADAPGPVYNLMLPHSQCPHCGHRIRAWENIPLLSYLMLRGRCSSCAVPIGKRYPLTELACGVLSAFIAWHFGFGWQAAMAMLLSWGLLSMSLIDAEHQLLPDSLVLPLLWLGLIVNSFGLFVSLNQALWGAVAGYLALWSVFWVFKLLTGKEGMGYGDFKLLAMLGAWGGWQILPLTLLLSSLVGAIIGVIVLRTRGAPTSTQIPFGPYLAIAGWIALLWGGQITDFYWQSVGFPGPT0015925_790DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015925-pilD-K02654NANA
D1-35_049001218epsF_1COG1459Type II secretion system protein FATGGCGGTCAAGGCAGCAAAAACCGACGTCTACACGTGGGAAGGCAAGGACCGCAAAGGCACAAAAATGTCCGGCGAACTGACCGGCCAGAGCCCGGCATTGGTCAAGGCACAGCTGCGTAAGCAAGGGATCAATCCGGGCAAGGTACGCAAGAAATCCACCTCGATATTCAGCAAGGGCAAACGCATCAAGCCGCTGGATATCGCGCTCTTCACCCGCCAGATGGCGACGATGCTCAAGGCCGGCGTTCCTCTGCTGCAGGCATTCGACATCATCGGCGAAGGCTTCGACAACCCCAACATGCGCAAGCTGGTGGACGAGGTGAAGCAGGAAGTCGCCGCGGGCAACAGCTTCGCCGCCTCGCTGCGCAAATGCCCGCAGTATTTCGACGAGTTGTACTGCAACCTGGTGGATGCCGGTGAGCAGGCCGGTGCCCTGGACACGCTGCTCGACCGAGTCGCGACCTACAAGGAAAAGAGCGAAGCCCTGAAGGCCAAGATCAAGAAAGCCATGACCTACCCTGCCGCGGTAATCGCCGTCGCGGCGGTGGTCACCAGCATCCTGCTGATCAAGGTCGTGCCGCAGTTCGAGTCGGTATTTTCCGGATTTGGCGCAAAATTGCCGGCCTTCACGCTGATGGTCATCGGCTTGTCGGAGTTCCTGCAAGACTGGTGGTGGGTGCTGCTTGGCGGAGTGGTGGGCGGATTTTTCGGGGTGAAATATGCCCTCAAGCGCTCCCAGGCGTTTCGTGACTGGCGAGACAAGTGGCTGCTCAAGCTGCCCTTGGTCGGGACCTTGATGTACAAGTCCGCCGTGGCGCGTTATGCGCGCACGCTCTCGACCACGTTCGCCGCCGGCGTGCCGCTGGTCGAAGCCCTTGACTCCGTCTCGGGCGCCACCGGTAACGTGGTATTCAAGCGTGCCGTGCAGCGGATCAAGCAGGACGTCTCGACCGGCATGCAGTTGAACTTCTCCATGCGCACCTCAGGCATTTTTCCGAACCTGGCGATCCAGATGACCGCCATTGGCGAAGAGTCCGGTGCGCTGGATGACATGCTCGACAAAGTGGCGAGTTTTTATGAGGCCGAAGTGGATAATCTGGTGGACAACCTCACCAGCCTGATGGAACCCTTCATCATGGTGATCCTGGGGGTGGTCGTCGGCGGCCTGGTGGTTGCCATGTACATGCCCATCTTCCAACTCGGCTCTGCGATCTGAMAVKAAKTDVYTWEGKDRKGTKMSGELTGQSPALVKAQLRKQGINPGKVRKKSTSIFSKGKRIKPLDIALFTRQMATMLKAGVPLLQAFDIIGEGFDNPNMRKLVDEVKQEVAAGNSFAASLRKCPQYFDELYCNLVDAGEQAGALDTLLDRVATYKEKSEALKAKIKKAMTYPAAVIAVAAVVTSILLIKVVPQFESVFSGFGAKLPAFTLMVIGLSEFLQDWWWVLLGGVVGGFFGVKYALKRSQAFRDWRDKWLLKLPLVGTLMYKSAVARYARTLSTTFAAGVPLVEALDSVSGATGNVVFKRAVQRIKQDVSTGMQLNFSMRTSGIFPNLAIQMTAIGEESGALDDMLDKVASFYEAEVDNLVDNLTSLMEPFIMVILGVVVGGLVVAMYMPIFQLGSAIPGPT0015920_1052DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015920-pilC-K02653NANA
D1-35_049011701hypothetical proteinATGAATGACATTGCCCTCAGCGGCCTGGCCAAGCAACTGGTGCTGGCCGAACTGATCACTGAACAAAGCGCACAGCAGGCCTATCAACAGGCGCAGCGCAATCGCACGCCCCTGGTCAGCTATCTGGTGCAGAACAAACTCGTCCAGAGCCGCCAGGTGGCGGAAATCGCCTCGGAGCATTTTGGTATCGCCCTGCTGGACCTCAACAGCCTCGACAAGGACAACCAGCCCGCTGGCCTGGTCAGCGAGAAACTCGTGCGCCAGCATCACGCCCTGCCCCTGTGGCGGCGTGGCAACAAGCTGTACGTGGGCATTTCCGATCCGACCAATCACCAGGCCATCAACGACATACAGTTCAGCACCGGCCTGACCACCGAAGCCATACTGGTGGAGGACGACAAGCTCAGCGATGCCATCGAGAAGTTCTTCGAGTCCAGCAGCACGGGCCTGGAAGGCATGGCCGACGTCGACCTCGACGGCCTCGACATCGAGTCGATCGACGACCGCAAGCAGGATGCCATCGCCGGCCAGGACGGCGACGATGCGCCGGTGGTGCGCTTCGTCAACAAGATGTTGCTGGATGCGATCAAGGGCGGCTCTTCCGACCTGCACTTCGAACCCTATGAAAAGACCTATCGGGTACGCGTGCGCACCGACGGTATGCTGCGGGAAGTCGCAAAGCCGCCCATCCAACTGGCCAACCGCATTGCCGCGCGCCTCAAGGTGATGGCGAGCCTGGACATTTCCGAACGGCGCAAGCCCCAGGACGGACGGCTGAAGATGCGCCTGTCAAAGACCAAGTCCATCGATTTCCGGGTCAACACCCTCCCCACGCTTTGGGGAGAAAAAGTGGTGATCCGGATCCTCGACCCCTCAAGCGCGCAAATGGGCATCGACGCCCTGGGCTACGAACCGGAACAGAAAGACCTGTACATGGCGGCCCTCAAGCAACCCCAGGGGCTGATTCTGGTAACCGGGCCGACCGGCTCGGGCAAGACCGTGTCGCTGTATACCGGCTTGAACATCCTCAACACCGTGGACATCAATATTTCCACCGCCGAGGACCCGGTGGAAATCAACATGGAAGGCATCAACCAGGTCAACGTGAATCCGCGCCAGGGGCTGGATTTCGCCCATGCACTGCGCTCGTTCCTGCGCCAGGACCCGGACGTGATCATGGTCGGCGAGATCCGCGACCTGGAAACCGCCGAGATCGCCATCAAGGCGGCCCAGACCGGGCACCTGGTGCTGTCCACGCTGCACACCAACAGCGCTGCCGAAACCCTGATCCGGCTACAGAACATGGGCATCCCCGGTTTCAACATCGCCACGGCAGTGCACCTGATCATCGCCCAGCGCCTGGCGCGCAAGTTGTGCATGCACTGCCGCAGAGCCATCGAGATTCCCGAGGAAACCCTGCTCAAGGAGGGCTTCCCGCGGGAACGCATCGGCTCATTCACGATCTATGAGCCGGTCGGTTGCGAACAGTGCAACAACGGCTACAAGGGTCGCGTGGGGGTCTACGAAGTGGTCAAGAACACGCCGGAGCTGCAGCGGCTGATCATGGCCGAAGGCAACTCCCTGGAAATCGACCTGCAAATGCGCAAGGACGGCTTCAATGACTTGCGCACCTCGGGGCTGGTCAAGGTGATGCAAGGCGTCACCAGTCTCGAAGAAATCAACCGGGTCACCAAGGATTGAMNDIALSGLAKQLVLAELITEQSAQQAYQQAQRNRTPLVSYLVQNKLVQSRQVAEIASEHFGIALLDLNSLDKDNQPAGLVSEKLVRQHHALPLWRRGNKLYVGISDPTNHQAINDIQFSTGLTTEAILVEDDKLSDAIEKFFESSSTGLEGMADVDLDGLDIESIDDRKQDAIAGQDGDDAPVVRFVNKMLLDAIKGGSSDLHFEPYEKTYRVRVRTDGMLREVAKPPIQLANRIAARLKVMASLDISERRKPQDGRLKMRLSKTKSIDFRVNTLPTLWGEKVVIRILDPSSAQMGIDALGYEPEQKDLYMAALKQPQGLILVTGPTGSGKTVSLYTGLNILNTVDINISTAEDPVEINMEGINQVNVNPRQGLDFAHALRSFLRQDPDVIMVGEIRDLETAEIAIKAAQTGHLVLSTLHTNSAAETLIRLQNMGIPGFNIATAVHLIIAQRLARKLCMHCRRAIEIPEETLLKEGFPRERIGSFTIYEPVGCEQCNNGYKGRVGVYEVVKNTPELQRLIMAEGNSLEIDLQMRKDGFNDLRTSGLVKVMQGVTSLEEINRVTKDPGPT0015915_1234DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-TYPE_IV_PILIN_SECRETION|FIMBRIAL_ASSEMBLY,PGPT0015915-pilB-K02652NANA
D1-35_04902354hypothetical proteinATGAAGAAGTTCGCTATCACTGCCGCTGCTGCCACTGCACTGACCCTGACCATGGCTAACGCATTTGCCGAAACCACTCAAGCGACTCAGGCACCGATGATGCTGGCTGCTGGCGAAGTGACAGAGGCTAAGGAAGACGTTTCCGACACCTGGATCACCACCAAGGTCAAAGCTGACCTGGTCACCGAGAAAGGCATTCCAGGCTCCGACATCAAGGTTGAAACCAACAAGGGCGTTGTGTCCCTGTCTTCTATGACCAAAGTCACTGACGCACAAAAAGACACCGCTGTGGCAATCACCAAGAAAATCAAAGGCGTCAAAGCCGTATCGGCTGACGGCCTGAAAGCCGAGTAAMKKFAITAAAATALTLTMANAFAETTQATQAPMMLAAGEVTEAKEDVSDTWITTKVKADLVTEKGIPGSDIKVETNKGVVSLSSMTKVTDAQKDTAVAITKKIKGVKAVSADGLKAEPGPT0013305_1291DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013305-osmY-K04065NANA
D1-35_04903303hypothetical proteinATGAAAATGAAGTGTCTGTCTGGAATCGGCCTGGTCCTGCTGCTTGCGAGCGGCCATGCATCAGCCGCCGAGACCCTGCGCTGCGGCAGCCAATTGATCAGCGTCGGTGATCGCTCCAGCGAGGTGCTGCAGAAGTGTGGCGAGCCCACGGCGCGCGATGACCTGGGCTACCAACGCAGCGCCAATCGCCGGAATGAGTACCCGGTGGAGGAATGGACCTACGGGCCCAACAACGGCATGTACCAATACTTGCGCTTCGTGGGGAATCGGCTGGTGGAGATCACCAGCAAGCGTGGGCGGTGAMKMKCLSGIGLVLLLASGHASAAETLRCGSQLISVGDRSSEVLQKCGEPTARDDLGYQRSANRRNEYPVEEWTYGPNNGMYQYLRFVGNRLVEITSKRGRNANANANANA
D1-35_049042934hypothetical proteinATGCCCAAAGGATTGATTCGCGCTTTCGGCGCCCTGTTGACCGCACTGGCCCTCTACAGTCTGTTGGGTTTTCTGATACTGCCGGGCATTGCCCTGCGGATCGCCAATCAGCAACTGGCCGCCCATGCGACGGTGCCGGCCCAGATCCAGCGCATCGAGCTCAATCCTTTCAGCCTTGAAGTGACCTTGTGGGGACTGGTGGTCGGCGAACCTGGCAAGGAACAGGTCGGTTTCGAACGGCTCTATGCCAACCTGCAACTCGACAGTCTGTGGTCCGGCGCCCTGCACCTGGCCGACGTCGAGCTGGACAAGCCCAGGACCGAGATCGCGTTCGCCAAGGACGGCCAGCTGAATCTGCTGGGCCTGTTCAAGCTGCCGCCCAGCGAACCGACTCCGGCGGATCCCGACGCCAAGCCGTTTCCCTTGCGAATCGAGCGGATCAAACTGGCCAGCGGCTACGTGCACTTCCAGGACCTGCGCCCCAGCGAACCCATCGAGTTCCTGTATGACACCCTCGACTTCGAGCTGAAGAACCTCAGCACCCTGCCCGACGACAGCGCCGACATGACCCTGGTGGCCGTCGGTCCCGAGGGTGGGCAGATCGACTGGACCGGTAACTTCAGCCTCGCGCCGATCGCCTCCGAGGGCACGCTCAAGGTGACCGGGGGCCAGATGAAAGCCTGGTGGCCCTACGTGCGAGACGCAGTGCCGCTCGTTCTGGAAAACGGCGTGCTGAACCTCAGCACCGAGTACAAGCTCAACCTCGCCAAGGGCACGGAGCTGCTGCTCAACAACGCGTCGGTCAGCGTCGCGCCCTTCGCCATCAAGGCGCCCGACGGCCGTCCGCTGGCAAGGCTGGAGCGCCTGGAGGTCAGCGAAACCTCGCTGGACCTGGGCAAGCAGCAGGTCATCGTGGGCAAGATCCGCAGCCACAAACTCGAGACCTGGGCCGCTCGGGAAGCCGACGGGCAGTTGGACTGGCAGAAGCTCTTCGCCAGCCAGGCAGCCAAACCCAAGGTCAAGGCCGAACCGGCCTCGGCCCCGGCAGCCGCCGACTCGCCCAAGCCTGAGCCGACAACACCGAGCAAGCCTTGGCAGGTGATGCTGAAGGACGTGCAACTGCGCGATTACCAGATACACCTGGCCGACCGCCAGGCGCAGCCGGCCGTGGCCCTGGACCTCGGCCCGCTGAATCTCGACCTGCAGAACTACGACACACTCAACGGCTCGCCCTTCAAACTCAAGCTGGACACCGGGCTGGGCAAACAAGGCAAGCTGCTCGCCGATGGCGAGGTCAATCTGAACCCGGTTACCGCGAAGCTCAACGTCAAGACCCAGGACATCGACCTGCGGGTCGCCCAGGCCTACATCAACCCGTTCATCCGCCTGGAGCTACGCTCCGGGATGCTCGGCAGCGATCTGGCGGTAGACCTGAAAAGTACCGAACCGCTGGCGTTCGCCGTGACCGGCCGCGCCCAGGTCGATCAGTTGCATACCCTCGACACACTCAAGACCCGTGACTTCCTCAAATGGCAGCGCCTGGAACTCCAAGGCCTCAATTACCAGCATGGCGACAGCCTGTCGATCGACAAGGTCAACCTGTTCCAGCCCTATGCACGCTTCATGATCAACGACGATCGCACCACTAACGTCGACGACCTGCTGATTCCACAACCTGCCGACGCCCCGGCCAGAAACACCGCGGCCAAACCGGCACCCAAGGAAAAACCGCTGGGGATTCATGTCGGCGGAATCGCCATCAACGACGGTTCGGCCAATTTCGCCGACTTCAGCCTGACGCCGAACTTCGCCACAGCCGTCCAGCAGCTCAACGGCGAGATCGGCACCATCGACAGCCGCCAGGCCAAGCCCGCCACCGTCGATGTGAAAGGCAAGGTCGATCGCTACGCGCCTGTCACGATCAAGGGCGCGGTCAACCCTTTCGACCCGATGGCCAGCCTCGATATCGCCACCAGTTTCAAACGGGTCGAGCTGACCACCCTGACGCCGTACTCCGGCAAGTTCGCCGGCTATCGCATCCGCAAGGGCCGGCTCAATCTCGACCTGCATTACCGGATCACCAAGGGCCAGCTCCAGGCCGACAACAAAGTCGTGGTCGAACAGTTGCAACTAGGGGAAAAGGTCGACAGCCCGGACGCCGTGAGCCTGCCGCTCAAGCTCGCCGTCGCCCTGCTGAAAGATTCCGAGGGCAGGATCTCCATCGAGCTGCCGGTTTCCGGCAACCTCAACGACCCGCAGTTCAGCGTCATGCCGATTGTCTGGCAAACCTTGCGCAACCTGGTGGTCCGCGCGGCACAAGCGCCGTTCAAGCTGATCGGCGGGCTGGTGGCCGGCGGCGGCTCGGAAGACCTGGGCAGCGTGGCGTTCGCACCGGGCTCCAGTGACCTCAGCAAGGAAAACGAAAATGCTCTGCTCAAGTTGTCCGAAGCCCTGGGCAAACGGCCAGAGCTGAAGCTGGAGATCGAAGGCACCGCCGCCGAAAGCAGCGACGGCCCGCTGCTCGCCGCCCAGCGCTTGGAACGCGAATACCAGTACAACTACTACAAGATGCTGCAGCGCAGGGGCGACAAGGTCCCGGCGAAAGCTTCGTTGCTGGAAGTACCGGAAGACGAAAAAGCCCCGCTGCTTGAAGGCATCTATCGCACCCGCCTGAAGACTCAACCACCGGCCGAATGGACGCAACTGGATAAACAGGCCCGCATCGAAAAACTCCGTGAAGGGGTCATCAAGTTCTGGAGCGGCAGTGATCTGCTGTTGCGCGAACTGGGACAGGAACGGGCCAGCAGCATCAAGGACTTCCTGGTGGACAAGGGCAAGCTGGCCGATGACCGCGTGTACTTCATCGACGCCAGCCTCGGTCAGGCCGAAAGCGACGGTAGCGTCATTACTCCTATGCATCTGGATGCCGAATGAMPKGLIRAFGALLTALALYSLLGFLILPGIALRIANQQLAAHATVPAQIQRIELNPFSLEVTLWGLVVGEPGKEQVGFERLYANLQLDSLWSGALHLADVELDKPRTEIAFAKDGQLNLLGLFKLPPSEPTPADPDAKPFPLRIERIKLASGYVHFQDLRPSEPIEFLYDTLDFELKNLSTLPDDSADMTLVAVGPEGGQIDWTGNFSLAPIASEGTLKVTGGQMKAWWPYVRDAVPLVLENGVLNLSTEYKLNLAKGTELLLNNASVSVAPFAIKAPDGRPLARLERLEVSETSLDLGKQQVIVGKIRSHKLETWAAREADGQLDWQKLFASQAAKPKVKAEPASAPAAADSPKPEPTTPSKPWQVMLKDVQLRDYQIHLADRQAQPAVALDLGPLNLDLQNYDTLNGSPFKLKLDTGLGKQGKLLADGEVNLNPVTAKLNVKTQDIDLRVAQAYINPFIRLELRSGMLGSDLAVDLKSTEPLAFAVTGRAQVDQLHTLDTLKTRDFLKWQRLELQGLNYQHGDSLSIDKVNLFQPYARFMINDDRTTNVDDLLIPQPADAPARNTAAKPAPKEKPLGIHVGGIAINDGSANFADFSLTPNFATAVQQLNGEIGTIDSRQAKPATVDVKGKVDRYAPVTIKGAVNPFDPMASLDIATSFKRVELTTLTPYSGKFAGYRIRKGRLNLDLHYRITKGQLQADNKVVVEQLQLGEKVDSPDAVSLPLKLAVALLKDSEGRISIELPVSGNLNDPQFSVMPIVWQTLRNLVVRAAQAPFKLIGGLVAGGGSEDLGSVAFAPGSSDLSKENENALLKLSEALGKRPELKLEIEGTAAESSDGPLLAAQRLEREYQYNYYKMLQRRGDKVPAKASLLEVPEDEKAPLLEGIYRTRLKTQPPAEWTQLDKQARIEKLREGVIKFWSGSDLLLRELGQERASSIKDFLVDKGKLADDRVYFIDASLGQAESDGSVITPMHLDAENANANANANA
D1-35_049051017rlmI_2COG1092Ribosomal RNA large subunit methyltransferase IATGTCTTCCTTGAATCTGGCGCTGCGCGCCGCCCTCGACCAGCGTCAGGACCTGCTTGGCCAACTGCATCAGCAGGGCACCGATTGCTATCGCCTGTTCCACGGCAGCCAGGAAGGCGCTCCCGGCCTGACGGTCGACCGCTACGGCCCGCAGCTGCTGGTGCAGAGTTTTCATCAGTCACTGGAGCGCGAGGCCCTGTTGCAACTGCACGGCATCGTCAATCAACACTTGGGCCTGGATACCCTGCTGGTCTACAACGACCGCGCCCGGGGCAACTCGCGCATCGACCGCCAGGACAGCATCTATCAGCCTGACGAGGCTGCCTTGCAAGACCTGGTTGGCCATGAGTGGGGGTTGAACTACCGGGTTCGCGGACGTCACGCCGGGCAGGATCCGTTGCTGTTTCTCGATCTGCGCAACGCCCGGGGCTGGGTCAAGGACCACAGCCGGAACAAAAGCGTGCTGAACCTGTTCGCCTATACCTGCGGCGTCGGCCTGAGCGCCGCGGCGGGCGGAGCGCGCGAGGTGTGCAACCTGGACTTCGCCGAGGGCAACCTGGCGGTGGGCCGCGAGAACGGCCTGCTCAATCCCGACCTGCCGACGATGGAATTCGTCCAGTCGGATTATTTCCCGGCGATTCGCCAACTCGCCGGCCTGCCGATCAGTCAACGCCGCGGACAGAAACTGCCCGCTTACGTGCGCCTGGAGCAACGCCAATATGACGTGGTGCTGCTCGACCCGCCGGCCTGGGCCAAGAGCGCTTTCGGCACAGTCGACCTGCTGCGCGATTACCAAAGCCTGCTTAAGCCGGCACTGCTCACCACCGCCGAAAATGGCGTGCTGATCTGCTGCAACAACCTGGCGAAGGTGTCCATGGACGACTGGCGCGAGCAGGTATTGCGCTGTGCGGAAAAAGCCGGCCGCCCGGTTCGCGAGTGGAGCGTGCTGACACCTGGCAGCGATTTTCCCTCGCAGGATCAACAGCCGCCGCTCAAGACGTTGATCCTCCAGCTCTGAMSSLNLALRAALDQRQDLLGQLHQQGTDCYRLFHGSQEGAPGLTVDRYGPQLLVQSFHQSLEREALLQLHGIVNQHLGLDTLLVYNDRARGNSRIDRQDSIYQPDEAALQDLVGHEWGLNYRVRGRHAGQDPLLFLDLRNARGWVKDHSRNKSVLNLFAYTCGVGLSAAAGGAREVCNLDFAEGNLAVGRENGLLNPDLPTMEFVQSDYFPAIRQLAGLPISQRRGQKLPAYVRLEQRQYDVVLLDPPAWAKSAFGTVDLLRDYQSLLKPALLTTAENGVLICCNNLAKVSMDDWREQVLRCAEKAGRPVREWSVLTPGSDFPSQDQQPPLKTLILQLNANANANANA
D1-35_049061938acsA_3COG0365Acetyl-coenzyme A synthetaseATGTTCGATATCAGCCAGTACCCCCACGCCGATGCCGTCCGCCGGGCTGCGCAATTGAGTCAGGAAGAGTACAAGCGGCTCTATAAAGAATCCATTGAACACCCCAGCGCCTTCTGGGCCGAGCAGGCCACGCGTTTTCTTGACTGGATGACGCCCTGGCAGACCGTCCAGCGCTACGACTTGAAGAGCGGCGAAGCGAGCTGGTTCGCCGGTGGCAAGCTGAACGTCAGCGCCAACTGCATCGACCGTCACCTGGACACGCGCGGCGACCAGATCGCGATCATCTGGGAAGGCGACAATCCCGCCGAATCGGCACAGATCACCTACAAGAAACTTCACCATCATGTGTGCCGCCTGGCCAACGTGCTGAAAAGCCGTGGCGTGAAAAAAGGCGATCGGGTCTGCATCTACATGCCGATGATCCCGGAAGCGGCCTACGCCATGCTCGCCTGCACCCGCATCGGCGCGGTGCATTCGGTGGTGTTCGGCGGGTTCTCGCCGGACTCGCTGCGCGACCGGATTCTCGATGCCGATTGCCGCACCGTCATCACCGCCGACGAAGGCGTGCGCGGCGGACGGTTCATACCGCTCAAGCGCAACGTCGACAAGGCGCTGGAAAGCTGCCCGGACGTCAGCACCGTGCTGGTGGTGGAGCGCACCCAGGGCGAGGTGGAGTGGGTCGAAGGGCGCGACGTCTGGTACCACCAGGCCATGCACGACATGAGCGACGACTGCCCCCCCGAACCGATGGACGCCGAGGACCCGCTGTTCATCCTCTACACCTCCGGCAGCACCGGCAAACCCAAGGGCGTGCTGCACACCACCGGCGGCTATCTGTTGCAGGCGGCGATGACCTTCAAGTACGTGCTGGATTACCGCGACAACGAAGTGTTCTGGTGCACCGCCGATGTCGGCTGGGTCACCGGCCATAGCTATATCGTCTACGGGCCACTGGCGAACGGCGCCACCACGCTGATCTTCGAGGGCGTGCCAAGCCATCCGAGCAGTTCGCGGTTCTGGCAGGTAATCGACAAACATCAGGTCAACATCTTCTACACCGCCCCGACCGCCCTGCGCGCGCTGATGCGCGAGGGCGCCGGTCCGTTGCAGGACACTTCGCGCAAGAGCCTGCGCTTGCTCGGAAGTGTCGGTGAGCCGATCAACCCGGAAGCGTGGGAATGGTATTTCAACGTCGTAGGCGAACAACGCTGCCCGATTGTCGATACCTGGTGGCAGACCGAAACCGGCGGCATCATGCTCAGCCCGCTGGTGAGCGCGCCACGGCTCAAGCCGGGCTGCGCCACCCGGCCGATGTTCGGCGTGCAGCCGGTGCTGCTGGATGAAGTCGGCAAGGAGATCAGCGGCGCGGGCAGCGGCGTACTGGCGATAAAATCCAGTTGGCCGGGGCAGATTCGCAGCGTCTACGGCGACCACCAACGAATGGTCGACACCTACTTCAAGCCTTACCCCGGGTACTACTTCACCGGCGACGGCGCCCGTCGCGACGAAGATGGCGACTATTGGATCACCGGGCGTATCGACGATGTGATCAATGTATCGGGCCACCGTATCGGCACCGCGGAGATAGAGAGTGCGCTGGTGTTGCACGACAACATTGCCGAGGCAGCAGTCGTGGGTTATCCCCATGACTTGAAGGGCCAGGGCATATACGCCTTTGTCACGCCGATGAACGGGGTCGAAGCCAACGACGAGTTGAAGAAGGAGCTGCTGGCCCATGTCAGCAAGGAAATCGGCAGTTTTGCCAAGCCGGAACTGATCCAGTGGGCGCCGGCCCTGCCGAAGACCCGCTCGGGGAAGATCATGCGGCGGATCCTGCGCAAGATCGCCTGCAACGAGCTCGACAGCCTGGGCGACACCTCGACCCTGGCTGATCCGAGCGTGGTGGAGGGTTTGATCGACACACGCCTGAACCGCTGAMFDISQYPHADAVRRAAQLSQEEYKRLYKESIEHPSAFWAEQATRFLDWMTPWQTVQRYDLKSGEASWFAGGKLNVSANCIDRHLDTRGDQIAIIWEGDNPAESAQITYKKLHHHVCRLANVLKSRGVKKGDRVCIYMPMIPEAAYAMLACTRIGAVHSVVFGGFSPDSLRDRILDADCRTVITADEGVRGGRFIPLKRNVDKALESCPDVSTVLVVERTQGEVEWVEGRDVWYHQAMHDMSDDCPPEPMDAEDPLFILYTSGSTGKPKGVLHTTGGYLLQAAMTFKYVLDYRDNEVFWCTADVGWVTGHSYIVYGPLANGATTLIFEGVPSHPSSSRFWQVIDKHQVNIFYTAPTALRALMREGAGPLQDTSRKSLRLLGSVGEPINPEAWEWYFNVVGEQRCPIVDTWWQTETGGIMLSPLVSAPRLKPGCATRPMFGVQPVLLDEVGKEISGAGSGVLAIKSSWPGQIRSVYGDHQRMVDTYFKPYPGYYFTGDGARRDEDGDYWITGRIDDVINVSGHRIGTAEIESALVLHDNIAEAAVVGYPHDLKGQGIYAFVTPMNGVEANDELKKELLAHVSKEIGSFAKPELIQWAPALPKTRSGKIMRRILRKIACNELDSLGDTSTLADPSVVEGLIDTRLNRPGPT0002265_4467DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ACETATE_UTILIZATION,PGPT0002265-acs-K01895NANA
D1-35_049071665pgiCOG0166Glucose-6-phosphate isomeraseATGGCGTATTACCGAACTCCTCATGACGTGACCGCTCTGCCCGCCTGGCAAGCGCTGAATGACCACCGCAAAGCCATGCAGGATTTCAGCATGCGCGAAGCGTTCAATGCCGATCCGCAGCGTTTCAATCAATTCACCCTGTCGAGCTGCGGCCTGTTTCTCGACTATTCGAAGAACCTGATCAACGCCCAGACCCGCGACCTGTTGGTAAACCTGGCCAACGAAGTCGACCTCAAGGGCGCGATCGAGGCGCTGTTTGAAGGCGAAATCGTCAACGCCTCGGAGAACCGCCCGGCCCTGCACACCGCGCTGCGTCGCCCGGTCGGCGACAAATTGCTGGTCAATGGCGTCAACGTGATGCCCGATGTGCACAAAGTGCTGAACCAGATTACCGATCTGGTCGGTCGCATTCACGATGGTCTGTGGCGCGGCTACACCGAAAAACCGATCACCGACGTGGTGAACATCGGCATCGGTGGCTCCTTCCTCGGCCCGCAGCTGGTGTCCGAAGCGCTGTTGTCCTACACGCATAAAGGCGTGCGCTGTCACTACCTGGCGAACATCGACGGCAGTGAGTTCCACGAGCTGGCCCAGAAGCTGCGCGCCGAGACCACGTTGTTCATTGTCTCGTCGAAATCCTTCAATACCCTCGAAACCTTGAAGAATGCCGAGGCCGCTCGTGCCTGGTACCTGGCCCAGGGTGGCTCGGAAGCGGAGCTCTATCGCCACTTCATCGCGGTATCGAGCAACAACGCCGCCGCGGTGGCCTTCGGCATCCGTGAAGAAAACATCTTCCCGATGTGGGACTGGGTCGGCGGCCGTTACTCGCTGTGGTCGGCCATCGGTCTGCCAATCGCCCTGGCCATCGGCATGTCGAACTTCAAGGAGCTGCTGTCCGGCGCCTACTCCATGGACCAGCATTTCCAGAGCGCGCCGTTCGACCAGAACATGCCGGTGCTGCTGGCGCTGCTTGGCGTGTGGTACGGCAATTTCTGGGGCGCGCAAAGCCACGCGATCCTGCCGTACGACCACTATCTGCGCAACATCACCAAGCATCTCCAGCAACTGGACATGGAATCCAACGGCAAGAGCGTCCGCCAGGATGGCACGCCGGTGTCCACCGATACGGGGCCAGTGATCTGGGGTGGCGTCGGCGCCAACGGTCAGCACGCCTACCATCAATTGCTGCATCAGGGCACCCAACTGATCCCGGCCGATTTCATCGTGCCGATCGTCAGCTTCAACCCGGTTGCCGACCATCATCAGTGGCTGTACGCCAACTGCCTGTCCCAGAGCCAGGCGCTGATGCTCGGCAAGACTCGCAGCGAGGCCGAGGCCGAGTTGCGCGATAAAGGCGCCAGTGAAGAAGAAGTGCAGAAGCTCGCCCCCCACAAGGTGATCCCGGGCAACCGCCCGAGCAACACCCTGGTGGTCGAACGCATCAGCCCGCGCCGCCTCGGTGCACTGGTTGCGCTGTATGAGCACAAGGTATTCGTGCAAAGCGTGGTCTGGGGCATCAATGCCTTCGACCAATGGGGCGTGGAACTTGGCAAGGAACTGGGCAAAGGCGTCTACAACCGCCTGGTGGGCAGCGAAGAAAGCCCGGCCGAAGATGCTTCGACCCAAGGCCTGATCAGCTACTTCCGCGGACGTCATCGCGGCTGAMAYYRTPHDVTALPAWQALNDHRKAMQDFSMREAFNADPQRFNQFTLSSCGLFLDYSKNLINAQTRDLLVNLANEVDLKGAIEALFEGEIVNASENRPALHTALRRPVGDKLLVNGVNVMPDVHKVLNQITDLVGRIHDGLWRGYTEKPITDVVNIGIGGSFLGPQLVSEALLSYTHKGVRCHYLANIDGSEFHELAQKLRAETTLFIVSSKSFNTLETLKNAEAARAWYLAQGGSEAELYRHFIAVSSNNAAAVAFGIREENIFPMWDWVGGRYSLWSAIGLPIALAIGMSNFKELLSGAYSMDQHFQSAPFDQNMPVLLALLGVWYGNFWGAQSHAILPYDHYLRNITKHLQQLDMESNGKSVRQDGTPVSTDTGPVIWGGVGANGQHAYHQLLHQGTQLIPADFIVPIVSFNPVADHHQWLYANCLSQSQALMLGKTRSEAEAELRDKGASEEEVQKLAPHKVIPGNRPSNTLVVERISPRRLGALVALYEHKVFVQSVVWGINAFDQWGVELGKELGKGVYNRLVGSEESPAEDASTQGLISYFRGRHRGPGPT0017735_1042DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_CARBOHYDRATES-GLYCOLYSIS|GLUCONEOGENESIS,PGPT0017735-pgi-K01810NANA
D1-35_04908381panDCOG0853Aspartate 1-decarboxylaseATGCACGCCATCATGCTCAAGGCCAAGCTGCACCGCGCCGAAGTCACTCACGCCGTGCTCGACTACGAAGGCTCCTGCGCCATTGACGGTGAGTGGCTGGACCTGTCGGGCATCCGCGAATACGAACAGATCCAGATCTACAACGTCGACAACGGCGAGCGCTTCACCACCTACGCCATCCGTGGCGAAGAAGGCTCGCGGATGATCTCGGTCAACGGCGCTGCGGCGCACAAGGCCAAGGTCGGAGACCGCGTCATCATCTGCGCCTATGCCCATTACAGCGAAGCCGAACTGCTCAACTTCAAGCCGCGCATGCTCTACATGGCGCCGGGCAACGAACTGAGCCACACCAGCAACGCCATTCCGGTCCAGGTGGCCTGAMHAIMLKAKLHRAEVTHAVLDYEGSCAIDGEWLDLSGIREYEQIQIYNVDNGERFTTYAIRGEEGSRMISVNGAAAHKAKVGDRVIICAYAHYSEAELLNFKPRMLYMAPGNELSHTSNAIPVQVAPGPT0008890_1437DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_ASPARTATE_DEGRADATION,PGPT0008890-panD-K01579NANA
D1-35_04909861panCCOG0414Pantothenate synthetaseATGAACACCGTCAAGACCGTACGCGAACTCCGCGCCGCCGTGGCCCGCGCCCGGGGCGAAGGCAAACGCGTCGCCTTTGTCCCGACCATGGGCAACCTGCACAGCGGGCACATGGCGCTGGTGACCAAGGCGGCGCAGCGGGCCGATTTTGTCGTGGCGAGTATTTTCGTCAATCCGCTGCAATTCGGCGCTGGCGAAGACCTCGACAAATATCCGCGCACCCTCGCGGCCGACCAGGAGAAACTGCTCCAGGCCGGCTGCCATCTGCTGTTCGCGCCCAGCGTGGAGGAGATGTATCCCGATGGCATGGCCGGGCAGACCCGCGTCAGCGTCCCGCAGTTGTCCGAAGGCCTGTGTGGCGCCAGCCGTCCGGGGCATTTCGAAGGCGTGGCGACGGTGGTCAGCAAGCTCTTCAACATGGTCCAGCCGGATCTGGCGGTGTTCGGCCAGAAGGATTTCCAACAACTGGCGGTGATCCGCGCGCTGGTGCATGACCTGAACATGCCGATCCAGATCATCGGCGAGCCGACCGTGCGCGCCGATGACGGCCTGGCGCTGTCTTCGCGCAACGGTTTTCTCAGCCCCGAGCAACGCGCCGTGGCGCCCGTGGTCTACCGTGCCCTGAGCCAGATCGCCGAAGCGATCAGGCAGGGGCGACGGGACTTCCCGGCGCTGATTGGCGAACAGCTCAAACAGCTCGAATCCGCCGGCCTGCGTCCCGATTACCTGGAAATCCGTGACGCCAGGACCTTGCGCCCAGCTGTGAGCGAGGATCGCGACCTGGTGATTCTGGTTGCCGCCTTCCTGGGCACCACGCGCCTGATCGACAACCTGCATCTGGAACTCGACACGCCCGCCTGAMNTVKTVRELRAAVARARGEGKRVAFVPTMGNLHSGHMALVTKAAQRADFVVASIFVNPLQFGAGEDLDKYPRTLAADQEKLLQAGCHLLFAPSVEEMYPDGMAGQTRVSVPQLSEGLCGASRPGHFEGVATVVSKLFNMVQPDLAVFGQKDFQQLAVIRALVHDLNMPIQIIGEPTVRADDGLALSSRNGFLSPEQRAVAPVVYRALSQIAEAIRQGRRDFPALIGEQLKQLESAGLRPDYLEIRDARTLRPAVSEDRDLVILVAAFLGTTRLIDNLHLELDTPAPGPT0008750_1366DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008750-panC-K01918NANA
D1-35_04910801panBCOG04133-methyl-2-oxobutanoate hydroxymethyltransferaseATGCCAGCTATTACCCTGACCACGCTGCAAGGTCTCAAGCAGAAAGGTGAAAAAATCACCATGCTGACCTGCTATGACGCAACCTTCGCCCATGCCTGCAACGAGGCCGGTGTCGAAGTGCTGCTGGTGGGCGATTCCCTCGGCATGGTGCTGCAAGGGCACGACAGCACGCTGCCGGTGACCACCGCCGAAATGGCCTACCATGTAGCCGCCGTCAAACGCGGTAACACCGACGCGCTGATCCTCGCCGACCTGCCGTTCATGGCCTACGCCACCCTCGAACAAACCATGACCAACAGCGCCATGCTCATGCAGGCCGGTGCCCACATGGTCAAGGTCGAAGGCGCGTTGTGGCTGGCCGACTCGATCCGCCTGCTGGCCGAGCGCGGTATCCCGGTGTGCGCACACCTGGGCCTGACGCCCCAGGCGGTGAATATCCTCGGTGGCTACAAGGTCCAGGGCCGCAACGAAAACCAGGCGCGGCAGATGCGTGCCGATGCGATTGCGCTGGAACAGGCCGGTGCCGCCATGTTGCTGCTCGAATGCGTACCCAGCGAGCTGGCGCAGGAAATCACTCAAGCGGTAAAAATCCCGGTGATCGGCATCGGCGCCGGTAACGCCACCGACGGCCAGGTACTGGTGCTCCACGACATGCTTGGGCTGTCGATTACCGGCCGCGTACCCAAGTTCGTGAAGAATTTCATGGCCGGGCAAACCACTATCCAGGCAGCCTTGTCCGCCTATGTCACTGAAGTGAAGGCGACGACCTTCCCTGGCGCCGAGCACGGATTTTCCGCATGAMPAITLTTLQGLKQKGEKITMLTCYDATFAHACNEAGVEVLLVGDSLGMVLQGHDSTLPVTTAEMAYHVAAVKRGNTDALILADLPFMAYATLEQTMTNSAMLMQAGAHMVKVEGALWLADSIRLLAERGIPVCAHLGLTPQAVNILGGYKVQGRNENQARQMRADAIALEQAGAAMLLLECVPSELAQEITQAVKIPVIGIGAGNATDGQVLVLHDMLGLSITGRVPKFVKNFMAGQTTIQAALSAYVTEVKATTFPGAEHGFSAPGPT0008740_3330DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008740-panB-K00606NANA
D1-35_04911486folKCOG08012-amino-4-hydroxy-6-hydroxymethyldihydropteridine pyrophosphokinaseATGGAACGCATCTACATCGGCATGGGCAGCAACCTGGCCGAGCCCGCCGAACAATTGCGCAGCGCCGTCGAGGCGCTGGCGCGACTGCCCGAGACGCGATTGGCGGGCGTTTCAGCGTTCTATCAAAGCGACTCCCTGCTCCCCGGCCAGCCGCGCTATACCAATGCCGTTGCGGCGCTGGACAGCAATCTCGCGCCGCTGGACTTGCTCGATGCACTACAGGCCATCGAAACCGGCCAGGGTCGCGAGCGCCTCGAGCGCTGGGGCCCGCGCACCCTGGACCTGGATATTCTGTTGTTCGGTGATCACCTGATCGACGAGCCGCGCCTCAAAGTCCCTCATTACCATATGCACGCCCGAGCCTTTGTCCTGTATCCGCTGGCCGAGCTCGCGCCCGCCGACCTGCGCCTGGCCGATGGGCGCTTGCTCAAGGACCTCCTCGCGGCGTGCCCCTTCGTCGGCCTGGAACGCTTGCTCCCGAGCTGAMERIYIGMGSNLAEPAEQLRSAVEALARLPETRLAGVSAFYQSDSLLPGQPRYTNAVAALDSNLAPLDLLDALQAIETGQGRERLERWGPRTLDLDILLFGDHLIDEPRLKVPHYHMHARAFVLYPLAELAPADLRLADGRLLKDLLAACPFVGLERLLPSPGPT0007910_3439DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007910-folK-K00950NANA
D1-35_049121398pcnBCOG0617Poly(A) polymerase IATGCTGAAGAAGCTGTTCCAGTCATTCCGTTCTCCCTTGCGTCGTACGCAACACATCCGCAGCACGCCTGAAGTGCTCAACAGCGGCCAGCATTCGTTGCAAAAGGCCCAATTCAGCCGTTACGCGGTGAACATCGTCGAACGCCTGCAGAACGCCGGCTACCAGGCTTACCTGGTCGGTGGTTGCGTGCGCGACATGCTGCTCAATATCACGCCCAAGGATTTCGACGTCGCCACCAGTGCCACGCCTGAGCAGATACGAGCCGAGTTCCGCAATGCGCGGATCATCGGGCGGCGCTTCAAGCTGGTGCACATCCACTTCGGCCGCGAAATCATCGAGGTCGCGACGTTCCGCGCCAACCACCCGCAAAACGACGAAGAAGAAGACAGCAACCAGTCTTCGCGCAACGAGAGCGGGCGCATCCTGCGCGATAACGTCTACGGCACATTGGAAGAAGACGCGCAGCGCCGCGACTTCACCATCAACGCGCTGTATTACGACCCGGTCAGCGAACGCATCCTCGATTACGCCAACGGCGTTCACGACATCCGCAACCGACTTATCCGCCTGATTGGCGATCCCAGGCAGCGTTACCAGGAAGACCCGGTGCGGATGCTGCGGGCCGTGCGTTTCGCCGCCAAGCTGGATTTTGGCATTGAAAAGCACAGCGCCCTGCCGATTCGCGAACTGGCGCCGATGCTGAGGGAAATCCCGTCGGCGCGGCTGTTCGAAGAAGTGCTCAAGTTGTTCCTGTCGGGTCACGCCGCAGACACCTTCGAAATGCTCGTCGACCTTCAGCTGTTCGACCCGCTGTTCCCCGCCAGTGCCGAGGCGCTGGAATACAACCCGACCTACACCCACACCTTGATCAGCGAAGCGTTGATCAACACTGACCTGCGCATCAAGCAGAACAAACCGGTGACCCCGGCGTTCCTGTTCGCCGCCTTGCTCTGGCCCGCCCTGCCCGCCCGGGTCCTGCGTTTGCAGGAACGCGGCATGCCGCCGATTCCGGCGATGCAGGAAGCCGCCCATGAGCTGATCGCAGAGCAATGCCAGCGCATCGCCATTCCAAAACGCTTCACGATGCCGATCCGCGAGATCTGGGATATGCAAGAACGCCTGCCGCGGCGCAGCGGCAAACGCGCCGATCTGCTGCTGGACAACCCGCGTTTCCGCGCCGGTTACGACTTCCTGCTGCTGCGCGAAAGCGCCGGCGAACAGACCGATGGCCTGGGCGAATGGTGGACCGATTACCAGGACGCCAACGACAGCGAGCGCCGCGACATGATTCGCGAACTGAGCGGCAAGGATGACGGCGCCAGCGGCCCGCGCAAACGTCGCCGCAGCAGTGGCGCCAAGCGCAAACGTGCCGGTGCGCCAAGCGCCTCGGGCGAGTGAMLKKLFQSFRSPLRRTQHIRSTPEVLNSGQHSLQKAQFSRYAVNIVERLQNAGYQAYLVGGCVRDMLLNITPKDFDVATSATPEQIRAEFRNARIIGRRFKLVHIHFGREIIEVATFRANHPQNDEEEDSNQSSRNESGRILRDNVYGTLEEDAQRRDFTINALYYDPVSERILDYANGVHDIRNRLIRLIGDPRQRYQEDPVRMLRAVRFAAKLDFGIEKHSALPIRELAPMLREIPSARLFEEVLKLFLSGHAADTFEMLVDLQLFDPLFPASAEALEYNPTYTHTLISEALINTDLRIKQNKPVTPAFLFAALLWPALPARVLRLQERGMPPIPAMQEAAHELIAEQCQRIAIPKRFTMPIREIWDMQERLPRRSGKRADLLLDNPRFRAGYDFLLLRESAGEQTDGLGEWWTDYQDANDSERRDMIRELSGKDDGASGPRKRRRSSGAKRKRAGAPSASGENANANANANA
D1-35_049151437zraRCOG2204Transcriptional regulatory protein ZraRATGCCGCACATTTTGATCGTCGAAGACGAAACAATTATCCGCTCCGCCTTGCGCCGCCTGCTGGAACGCAACCAGTACCAGGTCAGCGAAGCCGGTTCCGTGCAGGAAGCACAAGAGCGTTTCAGCATTCCAACGTTTGACCTGATCGTCAGTGACCTGCGCTTGCCTGGTGCCCCGGGGACCGAGTTGATCAAACTCGGCCAGGGCACGCCTGTGCTGATCATGACCAGTTATGCCAGCCTGCGCTCGGCGGTCGACTCCATGAAAATGGGTGCGGTCGACTACATTGCCAAGCCGTTCGACCACGACGAAATGCTTCAGGCCGTCGCTCGAATCCTGCGTGACCGACAAACGGCGAGCAGCCAGCCTTCGGAACCGACGAACGGCAAGGCCGCGGCTCCAGGCAAGGCGGGCGCCAGCAACAGCAACGGCGAAATCGGCATCATCGGCTCCTGCCCACCCATGCAGGACCTCTACAGCAAGATCCGCAAAGTGGCGCCGACCGATTCCAACGTCCTGATCCAGGGCGAGTCCGGCACCGGCAAGGAGCTGGTGGCCAGGGCGCTGCATAACCTGTCGCGCCGAGCCAAGGCGCCAATGATTTCGGTGAACTGTGCGGCCATCCCGGAAAGCCTGATCGAGTCCGAGCTGTTCGGCCATGAGAAAGGCGCCTTCACCGGTGCCAGCGCAGGGCGTGCCGGCCTGGTCGAGGCGGCGGACGGAGGCACGCTGTTTCTTGACGAAATCGGCGAACTGCCCCTGGAAGCCCAGGCGCGGCTGTTGCGCGTTCTCCAGGAAGGCGAGATTCGTCGAGTCGGTTCGGTCCAGTCGCAAAAGGTCGATGTGCGCCTGATCGCCGCGACGCACCGCGACCTCAAGAGCCTGGCGAAAATCGGTCAGTTCCGTGAAGACCTGTATTACCGGCTGCACGTGATTGCCCTGAAGCTGCCGCCACTGCGCGAGCGCGGCGCGGACGTCAACGAGATTGCCAATGCCTTCCTCGCCCGCCAGAGCGCGCGGGTCAACCGCACCGACCTGAAGTTTGCCCCCGACGCCGAACAAGCCATTCGTCATTACGCCTGGCCGGGTAACGTCCGTGAGCTGGAAAACGCCGTGGAGCGCGCGGTGATCCTGTGCGAGAGCCCGGAAATTTCCGCCGACCTGCTGGGGATCGACATCGAATTGAGTGACCTGGACGATGAAGAATTCATCGGCCTGGCCCCTCAACAGGGCGGCGGCGCCAACAACACCAGCCACGAGCCCACCGAAGACCTGTCGCTGGAGGACTACTTCCAGCACTTCGTCCTGGAGCACCAGGACCACATGACCGAGACGGAACTGGCGCGCAAGCTGGGCGTGAGCCGCAAGTGCCTGTGGGAGCGCCGCCAGCGCCTGGGTATCCCACGACGCAAGACGGGCGTTGCCAGCGAGAGCTGAMPHILIVEDETIIRSALRRLLERNQYQVSEAGSVQEAQERFSIPTFDLIVSDLRLPGAPGTELIKLGQGTPVLIMTSYASLRSAVDSMKMGAVDYIAKPFDHDEMLQAVARILRDRQTASSQPSEPTNGKAAAPGKAGASNSNGEIGIIGSCPPMQDLYSKIRKVAPTDSNVLIQGESGTGKELVARALHNLSRRAKAPMISVNCAAIPESLIESELFGHEKGAFTGASAGRAGLVEAADGGTLFLDEIGELPLEAQARLLRVLQEGEIRRVGSVQSQKVDVRLIAATHRDLKSLAKIGQFREDLYYRLHVIALKLPPLRERGADVNEIANAFLARQSARVNRTDLKFAPDAEQAIRHYAWPGNVRELENAVERAVILCESPEISADLLGIDIELSDLDDEEFIGLAPQQGGGANNTSHEPTEDLSLEDYFQHFVLEHQDHMTETELARKLGVSRKCLWERRQRLGIPRRKTGVASESPGPT0004315_330DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ZINK_RESISTANCEZINK_RESISTANCE-ZINK_HOMEOSTASIS,PGPT0004315-zraR|hydG-K07713NANA
D1-35_049162955sasA_18Adaptive-response sensory-kinase SasAATGCCGATGAGCTTTAGCCTGACCCAGATGATCCTGATCAGCGCCGCCTACCTGGCGGTGCTGTTCGGCGTGGCCTGGATCAGCGAACGAGGCATGATCCCCCGGGCGATCATCCGCCACCCGCTGACCTACACCTTGTCGCTGGGGGTCTACGCCAGCGCATGGGCGTTTTATGGCACGGTCGGGCTGGCCTATCAGTATGGCTATGGTTTCCTGTCCAGCTACCTCGGGGTGTCCGGGGCCTTCCTGCTGGCGCCGGTGTTGCTCTATCCAATCCTGAAGATCACCCGTACCTACCAACTGTCATCGCTGGCCGACCTGTTCGCCTTCCGCTTTCGCAGCACCTGGGCCGGCGCGCTGACCACGATCTTCATGCTGGTCGGCGTGTTACCGCTGCTCGCTCTGCAAATCCAGGCCGTGGCCGATTCCATCAGCATCCTGACCCGCGAACCGGTGCAACATCGAGTAGCGCTGAGCTTCTGCGCGCTGATCATTCTGTTCACGATTTTTTTCGGCTCCCGGCACATCGCCACCCGGGAAAAACACGAAGGCCTGGTTTTCGCCATTGCCTTTGAATCGGTGATCAAGCTGATCGCCATCGGTGGCGTCGGCCTCTACGCGCTGTACGGCGTGTTCGATGGCCCGCAACAGCTCGAGCTTTGGCTGTTGCAGAACCAGACCGCCCTCGCCGCCCTGCATACGCCTTTGCAGGAAGGCCCGTGGCGCACGCTGTTGCTGGTGTTCTTCGCCTCGGCAATCGTGATGCCGCACATGTACCACATGACCTTCACCGAAAACCTCAACCCGCGCTCACTGGTCAGCGCGAGCTGGGGCCTGCCACTGTTCCTGCTGTTGATGAGCCTGGCGGTGCCACTGATTCTGTGGGCAGGCCTGAAACTCGGCGCCAGCACCAATCCGGAATACTTCACCCTCGGCATCGGCATTGCCGCCAACAGCAAGGCCCTGGCATTGCTGGCCTATATCGGCGGGCTGTCGGCGGCCAGCGGCCTGATCATCGTCACCACTTTGGCGTTGTCGGGCATGGCCCTCAATCATCTGGTGCTGCCGCTCTACCAGCCGCCGGCGGAAGGAAACATCTACCGCTGGTTGAAATGGACCCGCCGCGCGCTGATCGTTGCGATCATCATGGCCGGTTATGGTTTCTACCTGATGCTGGGCGACGGGCAGGACCTGGCCAACCTGGGCATCGTCGCGTTCGTCGCCACCCTGCAGTTCCTGCCCGGCGTGCTGTCGGTCCTGTATTGGCCAACCGCCAACCGCCGCGGCTTTATCGCCGGCCTGATGGCGGGGATCCTGGTCTGGCTGGTCGCCATGCTGTTGCCGCTACTGGGCAACCTGCAGGGGTTCTACATCCCGCTGCTGAACATGATCTACGTGCTCGACGACACCAGCTGGCACATGGCAGCCATCGCCTCGCTGGCGGCGAACGTGCTGATGTTCACCCTGATCTCGCTGTTCACCAACGCCAGCAGTGAAGAAGCCAGCGCCGCCGAAGCCTGCGCTGTGGATAACGTGCGTCGCCCGCAACGCCGTGAACTGCACGCCGCCTCGCCCCAGGAATTCGCCACGCAACTGGCCAAGCCGCTGGGAGCCAAGGCCGCACAAAAGGAAGTCGAACAGGCCCTGCGCGATCTTTACCTGCCGTTCGATGAGCGTCGCCCGTACGCGTTGCGTCGCTTGCGCGACCGGATCGAAGCCAACCTGTCCGGCCTGATGGGCCCCAGCGTGGCCCAGGACATGGTCGAAACCTTCCTGCCTTATAAGGCGGGCGGCGAAAACTACGTGACCGAAGACATCCACTTCATTGAAAGCCGCCTCGAGGACTACCATTCGCGCCTCACTGGCCTCGCCGCCGAGCTGGATGCCTTGCGCCGCTACCACCGCCAGACCCTGCAGGAACTGCCGATGGGCGTCTGTTCGCTGGCCAAGGACCAGGAAATCCTCATGTGGAACAAGGCCATGGAAGAGCTGACCGGCATAGCCGCCCAGCGCGTGGTCGGCTCGCGCCTGAGTACCCTGGGCGAGCCGTGGAAAGGTTTGCTGCAAGGCTTCATCGACCTGCCGGACGAACACCTGCACAAACAGCACTTGGCTCTCGACGGCCAGACCCGGTGGCTGAACCTGCACAAGGCGGCGATCGACGAGCCGTTGGCGCCGGGCAACAGCGGCCTGGTGCTGCTGGTGGAAGACCTGACCGACACCCAGATGCTCGAAGACAAGCTGGTCCATTCCGAGCGCCTGGCCAGCATCGGTCGACTGGCCGCCGGCGTGGCCCACGAAATTGGCAACCCGATCACCGGCATTGCCTGCCTGGCGCAGAACCTGCGCGAAGAACGCGAGGACGACGGTGAACTGACGGAAATCAGCGGGCAGATTCTCGAACAGACCAAGCGCGTGTCGCGCATTGTCCAGTCCCTGATGAGTTTCGCCCACGCCGGCGGCCACCAGCACAACGACGAGCCGGTGTGCCTGGCCGAAGTCGCCCAGGACGCCATTGGCCTGCTGGCACTCAACCGGCGCAATTTCGAAGTGCAGTTCTTCAACCTGTGCGACCCCGATCATTGGGTCGATGGCGATCCTCAGCGGCTCGCCCAGGTGCTGATCAACCTGCTTTCCAACGCGCGCGACGCCTCCCCGGCCGGCAGCGCGGTACGGGTCAAGAGCGAAGCCTTTGAACACACGGTCGACCTGATCGTCGAAGACGAAGGCAGCGGTATTCCACAGAACATCATGGATCGATTGTTCGAACCTTTCTTTACCACCAAGGACCCTGGCGAAGGCACCGGTCTGGGCCTCGCACTGGTCTATTCCATCGTTGAAGAGCATTATGGACAAATCACCATCGACAGCCCGGCCGATGTTCAGAGCCAACGCGGCACCCGTATCCGGGTGACCTTGCCGCGTCATGTCGAAGCGACGTCCGCTGTGAACTGAMPMSFSLTQMILISAAYLAVLFGVAWISERGMIPRAIIRHPLTYTLSLGVYASAWAFYGTVGLAYQYGYGFLSSYLGVSGAFLLAPVLLYPILKITRTYQLSSLADLFAFRFRSTWAGALTTIFMLVGVLPLLALQIQAVADSISILTREPVQHRVALSFCALIILFTIFFGSRHIATREKHEGLVFAIAFESVIKLIAIGGVGLYALYGVFDGPQQLELWLLQNQTALAALHTPLQEGPWRTLLLVFFASAIVMPHMYHMTFTENLNPRSLVSASWGLPLFLLLMSLAVPLILWAGLKLGASTNPEYFTLGIGIAANSKALALLAYIGGLSAASGLIIVTTLALSGMALNHLVLPLYQPPAEGNIYRWLKWTRRALIVAIIMAGYGFYLMLGDGQDLANLGIVAFVATLQFLPGVLSVLYWPTANRRGFIAGLMAGILVWLVAMLLPLLGNLQGFYIPLLNMIYVLDDTSWHMAAIASLAANVLMFTLISLFTNASSEEASAAEACAVDNVRRPQRRELHAASPQEFATQLAKPLGAKAAQKEVEQALRDLYLPFDERRPYALRRLRDRIEANLSGLMGPSVAQDMVETFLPYKAGGENYVTEDIHFIESRLEDYHSRLTGLAAELDALRRYHRQTLQELPMGVCSLAKDQEILMWNKAMEELTGIAAQRVVGSRLSTLGEPWKGLLQGFIDLPDEHLHKQHLALDGQTRWLNLHKAAIDEPLAPGNSGLVLLVEDLTDTQMLEDKLVHSERLASIGRLAAGVAHEIGNPITGIACLAQNLREEREDDGELTEISGQILEQTKRVSRIVQSLMSFAHAGGHQHNDEPVCLAEVAQDAIGLLALNRRNFEVQFFNLCDPDHWVDGDPQRLAQVLINLLSNARDASPAGSAVRVKSEAFEHTVDLIVEDEGSGIPQNIMDRLFEPFFTTKDPGEGTGLGLALVYSIVEEHYGQITIDSPADVQSQRGTRIRVTLPRHVEATSAVNNANANANANA
D1-35_04917177hypothetical proteinATGTACATCTATCGCTTGGTCCTGCTTTTGGTAGTCGGGATCTACCTGTTCTCCCCGGCCATCATGGATTGGTGGATCGATGCCACGGGTGCCTGGTATCGGCCGTATCTGCTCTGGCTGATCCTGATCGTCGTGACCTTCATCCTGCAGAGCCAAAAAGATGCCGATGAGCTTTAGMYIYRLVLLLVVGIYLFSPAIMDWWIDATGAWYRPYLLWLILIVVTFILQSQKDADELNANANANANA
D1-35_04918882gluQCOG0008Glutamyl-Q tRNA(Asp) synthetaseATGACTGCCTACATCGGACGCTTCGCCCCCACCCCCAGCGGCCACCTGCACTTCGGCTCGCTGGTCGCCGCCCTGGCATCGTACCTCGACGCCCGGGCCGCGGGCGGGCGCTGGTTGTTGCGCATGGAAGACCTCGACCCACCGCGGGAAGAGCCCGGCGCGCAAGCGGCGATCCTGAATGCGCTGCAAACCTATGGTTTTGAATGGGATGGCGAAATGGTCCGCCAGAGCGACCGCCATGAAGCCTATCAACTGGTCATTGATCGCTTGTTCAGCCAAGGCCTGGCCTACGCCTGCACCTGTTCGCGCAAGCAACTGGAACCGTATCAGGGTATTTACCCAGGGCTATGCCGCAACGCCGGCCACGACACCGAGGACGCCGCCATCCGCCTGCGTGTCCCCGAGCTTGAATATCATTTCACCGACCGGGTCCAGGGCGAATTCCGCCAACACTTGGGCCGTGAGGCCGGTGATTTCGTGATCCGTCGTCGTGACGGGCTCTACGCCTATCAGCTGGCGGTGGTGCTGGACGACGCCTGGCAAGGCGTCACCCATATCGTTCGCGGCGCTGATCTGCTGGACTCCACGCCACGCCAGCTCTACCTGCAGGAACTCCTCGGGCTGCCACAACCGCGTTACCTGCATGTGCCGCTGATCACCCAGCCCGACGGGCACAAGCTCGGCAAATCCTATCGTTCACCGCCGCTGACAGCGGACCAGGCTACGCCGCTGCTGTTGCGGGCATTGCGCGCACTGGGCCAGCAACCGGGCCCGGAACTCTGCGATGCCAGCCCCCGCGAACTGCTGGCCTGGGGCATTCGGCACTGGGATGCGAGCAAGATCCCGCGCGTCCTCACCCTGCCCGAAGCGCAAATACCATGAMTAYIGRFAPTPSGHLHFGSLVAALASYLDARAAGGRWLLRMEDLDPPREEPGAQAAILNALQTYGFEWDGEMVRQSDRHEAYQLVIDRLFSQGLAYACTCSRKQLEPYQGIYPGLCRNAGHDTEDAAIRLRVPELEYHFTDRVQGEFRQHLGREAGDFVIRRRDGLYAYQLAVVLDDAWQGVTHIVRGADLLDSTPRQLYLQELLGLPQPRYLHVPLITQPDGHKLGKSYRSPPLTADQATPLLLRALRALGQQPGPELCDASPRELLAWGIRHWDASKIPRVLTLPEAQIPPGPT0008460_6020DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0008460-gltX-K01885NANA
D1-35_04919444dksA_2COG1734RNA polymerase-binding transcription factor DksAATGCCCACCCAAGCAAAGCAGAATCAAAATCAGTCGCTCAGCGGGTTTGAGCCGTACATCCCACAAGCGGGCGAAGAGTACATGGGCGCCCCGATGCGCGCACACTTCACCAAGATCCTGAACAAGTGGAAACAGGACTTGATGCTGGAAGTCGACCGCACCGTGGACCATATGAAGGACGACGCTGCCAACTTCCCCGACCCGGCCGACCGTGCCAGCCAGGAAGAAGAGTTCGCCCTCGAACTGCGCGCCCGTGACCGGGAACGCAAGCTGATCAAGAAAATCGACAAGACGCTGCAACTGATCGAAGACGAAGAATACGGCTGGTGCGAGTCCTGCGGCGTCGAGATCGGCGTCAAGCGACTGGAAGCACGTCCAACCGCAGACATGTGCGTCGACTGCAAGACCCTGGCGGAAATCAAGGAAAAACAGGTCGGCAAGTAAMPTQAKQNQNQSLSGFEPYIPQAGEEYMGAPMRAHFTKILNKWKQDLMLEVDRTVDHMKDDAANFPDPADRASQEEEFALELRARDRERKLIKKIDKTLQLIEDEEYGWCESCGVEIGVKRLEARPTADMCVDCKTLAEIKEKQVGKPGPT0014560_1006DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-cAMP|CRP_SIGNALLING_PATHWAY,PGPT0014560-dks-K06204NANA
D1-35_049201173aspC_2COG0436Aspartate aminotransferaseATGGCCCAGCCCTACAGCGCACGCAGCCGTGCCATCGAACCGTTCCATGTCATGGCGCTGCTGGCACGCGCCAACGAATTGCAGGCTGCCGGGCACGACGTCATCCATCTGGAGATCGGCGAGCCGGACTTCACCACCGCCGAGCCGATCATCCAGGCCGGCCAGGCCGCCCTGGCGGCCGGCAAGACCCGTTACACCGCAGCCCGCGGCATTCCCGAGTTGCGCGAGGCCATCGCCGGCTTTTATGCGCAGCGCCACGGCGTTGACATCGATCCGCGGCGCATCCTGGTCACGCCGGGTGGGTCTGGTGCCTTGTTGCTGACCAGTGCCCTGCTCGTCGACCCGGGCAAGCATTGGTTGCTGGCCGATCCTGGCTACCCCTGCAACCGCCATTTCCTGCGTCTGATCGAAGGTGCGGCGCAATTGGTGCCAGTAGGGCCGGACGTGCGTTACCAACTGACCCCGGACCTGGTGGATCGCCATTGGGACCACGACAGCGTGGGGGCATTGGTGGCATCGCCGGCCAACCCGACCGGGACGATTCTCTCTCGGGACGAGTTGGCCGGGTTGTCCAGGGCAATCAAGGGCCACAATGGCCACTTGGTCGTCGATGAGATCTATCACGGCCTGACCTACGGCACCGACGCCGCCAGTGTGCTGGAAGTCGACGACGATGCTTTTGTCCTAAACAGTTTTTCCAAGTATTTCGGCATGACCGGTTGGCGGCTCGGTTGGCTGGTGGCTCCTTCGGCGGCGGTCAGCGAGCTGGAGAAACTTGCGCAGAATCTTTACATCAGTGCGCCGAGCATGGCCCAGTACGCGGCCCTGGCCTGTTTCGAACCCGCGACCATCGAGATTTTCGAGCAGCGTCGTGCCGAGTTCGCGCGGCGTCGCGACTTCCTGCTGCCGGCGTTGCGTGAGTTGGGATTCGGCATCGCGGTGGAGCCCGAAGGTGCGTTCTATCTTTACGCCGATATCAACGCGTTTGGCGGCGATGCCTTTGCGTTCTGCCAGCATTTCCTGGAAACCGAACACGTGGCGTTCACGCCGGGGCTGGATTTCGGTCGGCACCAGGCCGGTCATCATGTGCGTTTTGCCTACACCCAAAGCCTGCCTCGGCTACAGGAAGCGGTGACGCGAATCGAACGTGGGCTGCGGAGCTGGCGAGGCTGAMAQPYSARSRAIEPFHVMALLARANELQAAGHDVIHLEIGEPDFTTAEPIIQAGQAALAAGKTRYTAARGIPELREAIAGFYAQRHGVDIDPRRILVTPGGSGALLLTSALLVDPGKHWLLADPGYPCNRHFLRLIEGAAQLVPVGPDVRYQLTPDLVDRHWDHDSVGALVASPANPTGTILSRDELAGLSRAIKGHNGHLVVDEIYHGLTYGTDAASVLEVDDDAFVLNSFSKYFGMTGWRLGWLVAPSAAVSELEKLAQNLYISAPSMAQYAALACFEPATIEIFEQRRAEFARRRDFLLPALRELGFGIAVEPEGAFYLYADINAFGGDAFAFCQHFLETEHVAFTPGLDFGRHQAGHHVRFAYTQSLPRLQEAVTRIERGLRSWRGNANANANANA
D1-35_04921759sfsACOG1489Sugar fermentation stimulation protein AATGCGTTTTTCTCCTGCACTGGAAGAAGGTCGGCTGATTCGACGTTACAAGCGTTTTCTCGCCGATATCGAGACCGTTGACGGCGAACTGCTCACTATCCACTGCCCGAACACCGGCTCGATGCTCAATTGCATGGCCGAGGGCGCGCGTGTCTGGTTCAGCCGCTCCAGCGACCCCAAGCGCAAGCTGCCAGGGACCTGGGAAATAGGCGAAACCCCTCAGGGCCGGTTGGCCTGCATCAACACCGCGCGAGCCAACCCCCTGGTTGAAGAGGCGCTGCGCGCGGGTGTCATCAAGGAGCTGAACGGTTTTGTCGGGCTGAAGCGAGAAGTCGCCTACGGCGTGGAGAACAGCCGTATCGATTTTCGACTCGACTATGCCGACCAGACCTCGGCCTGGGTCGAGGTCAAAAATGTCACGCTGGGTTTCGATGCAACAAATGTGGCGGCATTTCCCGATGCGGTGACGCTGCGTGGCGCCAAACATCTGCGGGAACTGGCTTGTCTGGCCCGCGACGGCGTACGGGCGGTGCAGCTGTATTGCGTAAACCTGAGTGGCATCGACGCGGTGCGCCCGGCGCAGGAAATCGACCCGGTGTACGCGGCGGCGTTGCGTGAGGCGGTGGCCGCCGGGGTGGAAGTGTTGGCCTACGGGGTCACCTTGACGCCGGAGCAGATATGGGTGGATCGCCCGCTTCCGGTATTGCTTGAACCGCTACAGGTCGACCCAGATGCCCTGATCATCCTCCCGGCTGTCTAGMRFSPALEEGRLIRRYKRFLADIETVDGELLTIHCPNTGSMLNCMAEGARVWFSRSSDPKRKLPGTWEIGETPQGRLACINTARANPLVEEALRAGVIKELNGFVGLKREVAYGVENSRIDFRLDYADQTSAWVEVKNVTLGFDATNVAAFPDAVTLRGAKHLRELACLARDGVRAVQLYCVNLSGIDAVRPAQEIDPVYAAALREAVAAGVEVLAYGVTLTPEQIWVDRPLPVLLEPLQVDPDALIILPAVPGPT0017980_152DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-GENERAL_USAGEPLANT_DERIVED_SUGAR_FERMENTATION,PGPT0017980-sfsA-K06206NANA
D1-35_04922318hypothetical proteinATGAAATTTCTTTGCAGCGCCGCTGAGTTACCGGACAACAACAGTCGCGGCTTCGACATCAAGGGGCGCAAGGTCCTGGCCGTGCGGCGCGCGGGCCAGGCCTACGTCTACCTCAACCGCTGCCCGCATCGCGGTGTGCCGCTGGAGTGGCAACCCGACCAGTTCCTCGACCCCAGCGCCAGCCTGATCCAGTGCGCGACCCATGGCGCGCTATTCCTGATTGAAAGCGGTGAATGCGTCGCCGGCCCTTGCGCCGGGCAGTTCCTGGCCGCGCTAGACAGCCGGGAGGATGATCAGGGCATCTGGGTCGACCTGTAGMKFLCSAAELPDNNSRGFDIKGRKVLAVRRAGQAYVYLNRCPHRGVPLEWQPDQFLDPSASLIQCATHGALFLIESGECVAGPCAGQFLAALDSREDDQGIWVDLNANANANANA
D1-35_04923870hmuTCOG4558Hemin-binding periplasmic protein HmuTATGCGCTTGAATTTCCGCGTTGCTGCGCTCTGTGTCGTCCTTTTGGCCAGCCAGGGAGCGCTGGCGGCCGATCTGCCGCAACGCTGGGTGAGCGCTGGGGGTGCCTTGTCGGAATGGGTCAGTGCGCTCGGCGGTGAGTCGAAGCTGGTGGGCGTGGACACCACCAGCCAGCATCCCGAGTCGTTGCGAGCGCTGCCCAGCATCGGTTATCAGCGACAGCTGTCGGCGGAGGGCGTGCTGAGCTTGCGGCCGCAAATTCTGGTGGGTACCGAAGAAATGGGACCGCCGCCGGTGCTCGCGCAAATTCGTGCGGCCGGGGTGCCGGTCGAGTTGTTCTCGGCGGCACCGAGCCTGGAGGCGCTTCAGACCAATCTGCGTCACCTGGGGCAGCTCTTGGGGGCCGAGACCAAGGCTGCGGAGTTGTTCGATGACTATCAACAACGGCTTTCCCAGCACGCGGTCCGCGTAAACGCAGCCCGGCTCAAGCAGAAGGCGCCTGGCGTATTGCTGCTGGTGGGCAATGCTGGCGGCAAATCGCTGATCGCCGGTAAAGGCACCGCCGCCGACTGGTTGCTGGAGCAAGCCGGTGGTCACAACCTGGCGACCCACAGCGGCTACAAACCGTTTTCCGTGGAAACCCTTGCCAGCTTGAATCCTGAAGTGCTGGTCTTTGCCGATCGAGCCTTGACCGGCGAAGAAGCGCGCGCCGCGCTGTTCAAGGAAAATCCGATCTTGTCCTCGACCCGGGCCGCCAAGAGTGGGCGTGTCATGGAACTGGACCCGACGCTGCTGGTGGGCGGATTGGGTCCGCGCCTGCCGCAAAACCTGGTGAAGCTCACCGACGGTTTTTATCCGGTCAAGACCCCATGAMRLNFRVAALCVVLLASQGALAADLPQRWVSAGGALSEWVSALGGESKLVGVDTTSQHPESLRALPSIGYQRQLSAEGVLSLRPQILVGTEEMGPPPVLAQIRAAGVPVELFSAAPSLEALQTNLRHLGQLLGAETKAAELFDDYQQRLSQHAVRVNAARLKQKAPGVLLLVGNAGGKSLIAGKGTAADWLLEQAGGHNLATHSGYKPFSVETLASLNPEVLVFADRALTGEEARAALFKENPILSSTRAAKSGRVMELDPTLLVGGLGPRLPQNLVKLTDGFYPVKTPNANANANANA
D1-35_049241038hmuU_2COG0609Hemin transport system permease protein HmuUATGACTGCGCTGGTCAAGCCACGCACTTTATTCATTGGGTTGGGCCTGCTATGCCTGCTGGCGATCTGGTTGTCCCTGGCCTTGGGGCCGGTGAGCTTGCCGCTGTTCGATACCCTGCGCGCCGCCATGCGCCTGTCGGGCTTGCCGGTGGCTGCCGATGGCCTGGAGCAGGCCGAACTGATCCTTGGCCAGATCCGCCTGCCGCGCACCTTGCTGGGGCTGGCGGTGGGCGGGGTATTGGCGTTATCCGGCGTGGCGATGCAGGGGCTGTTTCGCAACCCGCTGGCGGACCCGGGGCTGGTCGGGGTTTCCAGTGGTGCGGCGCTGGGGGCAGCGTTTGCCATCGTCGGCGGTTCGATGCTGGGCGGGCTGCCCGGAGCGCTGGGACCTTATCTATTGTCACTGTGTGCGTTCCTCGGCGGGCTCGGGGTTACGGCGCTGGTCTATCGCCTCGGCCGGCGCAACGGTCAGACTCACGTCGCGACCATGCTTCTGGCCGGGATCGCCCTGACCGCGCTGTCCGGCTCGGCGGTCGGCTTGTTCACTTACCTGGCGGATGACGCGACCCTGCGCACCCTGACGTTCTGGAACCTGGGCAGCCTGAACGGCGCCACCTACGCGCGCTTGTGGCCCCTGCTGCTGGTCAGCATCGGCGTGGCGATCTGGTTGCCGCGTCGGGCCCGTGCGCTCAACGCCTTGTTGCTCGGCGAGTCCGAGGCCGCGCACCTGGGCATTGACGTCGAACGGCTCAAGCGTGAGCTGGTGTTCTGCACGGCGCTGGGCGTTGGGGCCGCGGTGGCGGCTGCGGGCATGATCGGTTTTGTCGGGCTGGTGGTGCCGCATCTGGTAAGGCTGATGGCGGGCCCCGACCATCGCGTCCTGCTACCGGCTTCAATCCTGGCCGGGGCGAGCTTGCTGCTGTTCGCCGATCTGGTGGCGCGCCTCGCGCTGGCCCCGGCGGAATTGCCCATCGGCATTGTCACGGCATTCATCGGCGCACCGTTCTTCCTGTATCTGTTGCTGCGGGGGCGTGCCTGAMTALVKPRTLFIGLGLLCLLAIWLSLALGPVSLPLFDTLRAAMRLSGLPVAADGLEQAELILGQIRLPRTLLGLAVGGVLALSGVAMQGLFRNPLADPGLVGVSSGAALGAAFAIVGGSMLGGLPGALGPYLLSLCAFLGGLGVTALVYRLGRRNGQTHVATMLLAGIALTALSGSAVGLFTYLADDATLRTLTFWNLGSLNGATYARLWPLLLVSIGVAIWLPRRARALNALLLGESEAAHLGIDVERLKRELVFCTALGVGAAVAAAGMIGFVGLVVPHLVRLMAGPDHRVLLPASILAGASLLLFADLVARLALAPAELPIGIVTAFIGAPFFLYLLLRGRAPGPT0003770_2889DIRECT 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
D1-35_04925768hmuVCOG4559Hemin import ATP-binding protein HmuVATGCTGCGAGCACATGACCTGCATATTCTCCGGGGACGCAAAACCGTACTGGCGGACATCGACTTTCAGCTCAATCCCGGCGAAGTGCTCGGTGTGCTCGGGCCCAACGGTGCGGGGAAAAGTACGCTGCTGGCAGGCTTGTGTGGCGAGTTGCGTCCGGCCCGGGGCCAGGTCTGGCTCGACGACAGGCCCCTCGCCCAGTGGGGCGGCGCCGAGCGCGCCCGTCGTCTGGCGGTGTTGCCACAATCATCGACCCTGGATTTTGCATTCCGCGTGGAAGAGGTGGTGGGCATGGGGCGCCTGCCCCACCGGAGCGGCCAGGTGCGGGACGCGCAGATCGTTGAATCGGCATTACAGGCCGCGGATGCCACGCATCTGTATGGCCGCAACTACCTGACCCTGTCCGGTGGCGAACGCCAGCGGGTGCACTTGGCGCGGGTGCTGGCGCAACTGTGGCCGGGCGAGGTGGGGCAGACGCTGTTGTTGGACGAGCCGACTTCGATGCTCGATCCGTTGCACCAGCACACCATCCTGCAAGCGGTGCGTGAATTCGCCGGTCGCGGCGCCGCCGTGCTGGTGATCCTGCATGACCTGAACCTGGCGGCGCGTTACTGTGACCGCCTGTTGCTACTCGCGTCCGGCCGGCCGGTGGCCCTGGACACGCCCCGGCAAGTGCTGCGCCCGGAGCCGCTCAAGGCGGTATTCGGCCTGGAAGTGCTGGTGCAGTCCCATCCGGAACGCGGGCATCCGTTGATCATCGCCCGCTGAMLRAHDLHILRGRKTVLADIDFQLNPGEVLGVLGPNGAGKSTLLAGLCGELRPARGQVWLDDRPLAQWGGAERARRLAVLPQSSTLDFAFRVEEVVGMGRLPHRSGQVRDAQIVESALQAADATHLYGRNYLTLSGGERQRVHLARVLAQLWPGEVGQTLLLDEPTSMLDPLHQHTILQAVREFAGRGAAVLVILHDLNLAARYCDRLLLLASGRPVALDTPRQVLRPEPLKAVFGLEVLVQSHPERGHPLIIARPGPT0003760_5879DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
D1-35_04926849hypothetical proteinGTGCGCCTGTTCCTGATCCTGGCTTTGAGCGTGTTGACGGCTTGCCAAAGTATCGCGCCGCCTCCGGTCAACGGACGGATCCTTGACCTGCAAAATGGCCAGGCCCTCTCGTCGCCTACGTTGGTCGAGCGCTTGGCGAAGGCCTCGCGTGTCGTGGTCGGAGAGCAGCACGACAACCGCGACCATCATGTGTTGCAACGCTGGTTGCTCCAGGCCTTGGCCGGACAGCGAGCCCAAGGCAGCTTGCTCTTGGAGATGCTGACGCCACAGCAGCAGCCGAAGGTCGACGCGGTTCGCCGGTTGCCAGCCTTGCCCAAGGATTTGCCCGGCGCGCTGGACTGGTCGCCGGGTTGGGATTGGAACCTGTACGGACCCGTGGTGGAGTTCGCCTTGCCTCAGCCTTACCCGGTGCTGGCGGCCAATCTTGACCGTACGGAGATCCAGCGCGTTTATCGTCAAATGCCCTTGGTGGAGGGTGAGCGCTCCAATTCGTCCGTGGTGAAGGAAAAGCTGCTGGGACAGATCCGCGAGTCCCACTGCGGCCTGCTGCCGGAGTCGCAGATGCCGGCGATGCTGGCGGTCCAGCAGCAGCGAGACCGGCGGATGGCGGAGCAGTTGCTCAAGGCGCCGACGCCTGCATTGTTGTTTGCCGGTGCCTGGCATGGGCGAAAAGACGTCGGCGTGCCGCTGCATGTGCGGGACTTGGGCGCCAACGAAGCGCCGGTTGTGCTGATGCTGGCCGAGGAGGGGAGCAACGTTACGTCGGCCATGGCTGATTATGTGTGGTACACCCCGGCCACCCCGCCTCAGGATTACTGCGCGCGGATGCGTGAACAACAAGGCAAGTGAMRLFLILALSVLTACQSIAPPPVNGRILDLQNGQALSSPTLVERLAKASRVVVGEQHDNRDHHVLQRWLLQALAGQRAQGSLLLEMLTPQQQPKVDAVRRLPALPKDLPGALDWSPGWDWNLYGPVVEFALPQPYPVLAANLDRTEIQRVYRQMPLVEGERSNSSVVKEKLLGQIRESHCGLLPESQMPAMLAVQQQRDRRMAEQLLKAPTPALLFAGAWHGRKDVGVPLHVRDLGANEAPVVLMLAEEGSNVTSAMADYVWYTPATPPQDYCARMREQQGKNANANANANA
D1-35_04928273hypothetical proteinATGAATGATGAACTGCAACACCTGAAAAATCTGGGCAAGACGTCAGCCCAGTGGCTGCATGCCGTGGGCATCCACAGCGCCTCGGATCTTCGCCGCCTCGGCGCGGTGGACGCCTACCGCGCCGTTCGCACCCGCGGGTTCCGGGCATCAAAGGTATTGCTGTATGCCATCGAAGGCGCATTGATGGACATGCATTGGAACGATATTCCCGCTGAACGCAAGGAAGCCCTCAATAAACAGCTGGATGCCATTTCGGCTCGCCACAAAGCCTGAMNDELQHLKNLGKTSAQWLHAVGIHSASDLRRLGAVDAYRAVRTRGFRASKVLLYAIEGALMDMHWNDIPAERKEALNKQLDAISARHKANANANANANA
D1-35_04929342hypothetical proteinATGAGCCACCCCAAGCTTCTCGACACCCCGCTTTATGCCTTGTTGCGCAACGACGATATTGCCGGCTTCAACAACGAACGGCCTCAAGGGCCGATCGACATGCGCGGCGGCGATTTCCGTGGTCTTGACCTGCGGGAACTGAACGCGGACAACGTCGATTTCACCGATGCCTATTTCCGTTCCGCCGATTTGCGCGGCGTCGATTTTCGTAACTCGTCGCTGGAAGGCGCGAGCCTCGCCCACGCGCAGATTTCCGGTGCCTACTTTCCGCCCGAGCTGTCGGCCGATGAGATCCTGATGTCAATGAATTTCGGCACACGCCTGCGCTACCGCACCCGCTAAMSHPKLLDTPLYALLRNDDIAGFNNERPQGPIDMRGGDFRGLDLRELNADNVDFTDAYFRSADLRGVDFRNSSLEGASLAHAQISGAYFPPELSADEILMSMNFGTRLRYRTRNANANANANA
D1-35_049301557COG0645putative proteinGTGAGCCAATCACTGATCGCTGCCCTGCAAAACCCGGCCCTTTACCCGCATCCCGTCGAAGGGTTCCAGGTCATCGAAACCCATATTTCCTGGGTATTGCTCACCGGGCCCTACGCCTACAAATTCAAGAAACCGGTCAATTTCGGTTTCCTCGACTTCACCAGCCTCGACGCGCGCAAGCATTTTTGCGCTGAAGAACTGCGCCTGAACCAGCGCCTGACCCAGGACCTCTACCTGGAAGTCCTGCCGATTACCGGCAGCACCGAAGCGCCAAGCCTCGGCGGTGATGGTCCGGCCATCGAATATGCCCTGAAGATGCGCCAATTTCCCCAGAGCCAACTGCTCAGCACGCTCCAGGCCAACGGCGAACTGACCACCGCGCACATTGATGAAATGGCCGCGCAGATCGCCCAGTTCCATCTTTCGACGCCCAAGGTGCCCGCCGACAACGCGGCAGGCACGCCGGACAGCGTCATGGCGCCGGTGCGGCAGAATTTCGAACAGATCCGTCCGTTCCTCAGCGACAAGGCTGACCTGCTGCAACTCGAAGCCCTGCAAGCCTGGGCCGAAAGCAGCTTCGAACGCCTCAAGCCGCTGCTGGCCCAGCGCAAGACCGAAGGCTTCACCCGCGAATGCCACGGCGACATCCACCTGGGCAATGCCACCGTGATCGATGGCCAGGTAGTGATTTTCGACTGCATCGAGTTTAACGAGCCGTTCCGTTTCACCGACGTCTACGCCGACACCGCGTTCCTGGCGATGGACCTTGAAGACCGCGGCCTCAAGTCACTGGCGCGGCGGTTCGTCAGCCAGTACCTGGAGCTGACGGGCGATTACCAGGGCCTGGAGCTGTTGAATTTCTACAAGGCCTACCGCGCCCTGGTCCGCGCCAAGGTCGCGCTGTTCAGCATGCCCGCCGAAGCCGATCCGGTGCAGCGTGCCACGACTCTGCGCCAGTACCGCAACTATGCCAACCTGGCCGAAAGCTACAGCACCATCCCGTCGCGCTTCCTGGCGATTACCCACGGTGTTTCCGCCGTAGGCAAAAGTCACGTCGCGATGCGCCTGGTAGAGGCCCTGGGCGCGATTCGCCTGCGCTCGGACGTGGAGCGCAAGCGCCTGTTCGGCGAACAGCAAGTATCGAACGACCCCCAGGCCGGCATTTATAGCAGCGACGCCAGCAGCACCACCTACGCCCGCCTGCATGAAATTGCCGACGCGATCCTGCATGCAGGTTTCCCGGTGGTAATCGACGCCACCTACCTCAAGCGTGAGCAGCGTGACGCCGCCGCCGGGATCGCCGAAGGCACGGGGGCGCCGTTCCTGATCCTCGACTGCGACGCGCCGCAGGCGGTGATCGAAAGCCGGCTCGCCCAGCGCCAGGCGGACCAGAAGGACCCGTCCGACGCGAACCTGGCCGTCATCGCCGCCCAACAGGCCGGCCGCGAAGCGTTGACCCCGGCGGAAATCCTTTGCAGCAAACGGGTTCAGACCAACGAAAGCGGCACGCTGGATGTTGTGGTCGCGCAGATCCGTCAGCGCCTGCCGGGACTGTAGMSQSLIAALQNPALYPHPVEGFQVIETHISWVLLTGPYAYKFKKPVNFGFLDFTSLDARKHFCAEELRLNQRLTQDLYLEVLPITGSTEAPSLGGDGPAIEYALKMRQFPQSQLLSTLQANGELTTAHIDEMAAQIAQFHLSTPKVPADNAAGTPDSVMAPVRQNFEQIRPFLSDKADLLQLEALQAWAESSFERLKPLLAQRKTEGFTRECHGDIHLGNATVIDGQVVIFDCIEFNEPFRFTDVYADTAFLAMDLEDRGLKSLARRFVSQYLELTGDYQGLELLNFYKAYRALVRAKVALFSMPAEADPVQRATTLRQYRNYANLAESYSTIPSRFLAITHGVSAVGKSHVAMRLVEALGAIRLRSDVERKRLFGEQQVSNDPQAGIYSSDASSTTYARLHEIADAILHAGFPVVIDATYLKREQRDAAAGIAEGTGAPFLILDCDAPQAVIESRLAQRQADQKDPSDANLAVIAAQQAGREALTPAEILCSKRVQTNESGTLDVVVAQIRQRLPGLNANANANANA
D1-35_049312319mrcBCOG0744Penicillin-binding protein 1BATGACTCGTACCCGATCCCCCCGTACCCCCAAGAAACCTCCCGCCAGCCGCCTGCGGCCCTGGCTGGGCTGGGCCCTTAAACTGAGCCTGGTGGGCCTTGTCGTGCTCGCCGGTTTTGCCGTCTACCTCGATGCCGTGGTCCAGGAGAAATTCTCCGGCAAGCGCTGGACCATTCCGGCCAAGGTCTACGCGCGGCCGCTGGAGCTGTTCGTCGGACAAAAGCTCAGCAAGGAGGATTTCCTGACCGAGCTCGATGCCTTGGGTTATCGCCGCGAAAGCGTGGCCAATGGCCCGGGTGCAGCTTCGGTCAATGGCAACACCATCGACATCAATACTCGCGGCTTCCAGTTCTATGAAGGCATGGAGCAGGCGCAGCCGGTGCGGGTGCGTTTCTCCGGTGACTATGTGGCCGCGCTGACGGGCGCCAACAATGCGAGCCTGTCGGTGGTGCGCCTCGAGCCGCTGCTGATTGGTGGGTTGTACCCGAAAAATCTCGAAGACCGGATCCTGATCAAGATCGACCAGGTGCCGCCGTTCCTGCTTGAAACCCTGATCGCCGTCGAAGACCGTGATTTCTACCATCACTTCGGCGTCTCGCCCAAGTCGATTGCCCGGGCTGTCTGGGTCAATACCTCGTCGGGACACATGCGCCAGGGCGGCAGTACCCTGACCCAGCAGTTGGTCAAGAACTTCTACCTGACCAACGAACGCAGCCTGACCCGCAAGCTCACCGAAGCGATGATGGCGTTGTTGCTGGAGTTGCATTACAGCAAGCAGGAAATTCTCGAGGCCTACCTCAACGAGGTCTTTGTCGGCCAGGACGGCCAGCGAGCGGTGCACGGTTTCGGCCTGGCCAGCCAGTTCTTCTTCAGCCAGCCGCTGTCCGAGCTCAAGTTGCACCAGGTGGCGTTGCTGGTCGGCATGGTCAAGGGGCCGTCTTCCTACAACCCGCGTCGCAATCCGGAGCGCGCCCTCGAGCGGCGCAACCTGGTCTTGGACTTGTTGCAGCAACAAGGCGTGGCCACGGCCGAGCAGGTGGAAGCGGCGAAAAAGATGCCGCTGGGCGTGACCAAGCGCGGCAGCCTGGCGGACAGTTCGTTCCCGGGCTTCATGGACCTGGTCAAGCGTCAGCTGCGCGAAGACTATCGCGACGAAGACTTGACCGAAGAGGGCTTGCGCATCTTCACCAGCTTCGATCCGATCCTGCAGATGAAAGCCGAGGCCTCGGTCAATGACACCTTCAAGCGCCTGGCGGGGCGCAAGGGCTCTGACGAAGTCGAAGCGGCCATGGTCGTGACCAACCCGGAAACCGGCGAAGTCCAGGCGATGATCGGCAGCCGTCAGGCCAGCTATGCCGGTTTCAACCGGGCGCTGGATGCGGTGCGCCCGATCGGCTCGCTGATCAAGCCGGCGGTGTACCTCACCGCTCTGGAAAAACCGAGCCAGTACACGCTGACCAGTTGGCTCTCCGACGAGTCATTCTCGGTCAAGGGCGCGGACGGCCAGGTCTGGACGCCGCAAAACTATGATCGTCGTCCCCACGGCACGGTATTCCTTTATCAGGGCCTGGCGCATTCCTACAACCTCTCAACGGCTCGCCTCGGGCTGGAAGTCGGCGTGCCGAATGTGCTCAAGACCTTGGCGCGCCTGGGGGTGAACCGCGAGTTCCCGGCTTTCCCGTCGATGCTGTTGGGCGCCGGTGGCCTGACCCCGATCGAAGTGGCCGCGATGTACCAGACCCTGGCCAACGGTGGTTTCAATACGCCGATGCGTGGCATCCGCAGTGTGCTGACCGCCGACGGCGAGCCGCTCAAGCGTTATCCGTTCCAGATCCAGCAGCGTTTCGATCCGGCTTCCATTTATCTGATCCAGAGCGCCATGCAGCGGGTCATGCGTGAAGGTACCGGCAGCTCGGTCTATAACGTGCTTCCGCGGACGCTGACCCTGGCGGGCAAGACCGGCACCAGTAACGATTCGCGCGACAGTTGGTTCGCCGGGTTCAGCCAGGACTTGCTGGCGGTGGTCTGGCTGGGGCGTGACGACAACGGCAAGACGCCGTTCACCGGCGCCACCGGCGCATTGCAGGTCTGGACCAGTTTCATGCGCAAGGCCGACCCGTTGCCGCTGGACATGCCGCAACCGGACAACATCGTCCAGGCCTGGGTCGATTCACGCACCGGGCAGGGCTCCGACGCGAATTGCCCGGGCGCGGTTCAGATGCCGTATATTCGCGGCAGCGAACCGCCGCCAGGTGCGGAGTGTGGCGGCCAGAACCCAGCCGAATCGGTGATGGATTGGGTCAAGGACTGGGTGAATTAAMTRTRSPRTPKKPPASRLRPWLGWALKLSLVGLVVLAGFAVYLDAVVQEKFSGKRWTIPAKVYARPLELFVGQKLSKEDFLTELDALGYRRESVANGPGAASVNGNTIDINTRGFQFYEGMEQAQPVRVRFSGDYVAALTGANNASLSVVRLEPLLIGGLYPKNLEDRILIKIDQVPPFLLETLIAVEDRDFYHHFGVSPKSIARAVWVNTSSGHMRQGGSTLTQQLVKNFYLTNERSLTRKLTEAMMALLLELHYSKQEILEAYLNEVFVGQDGQRAVHGFGLASQFFFSQPLSELKLHQVALLVGMVKGPSSYNPRRNPERALERRNLVLDLLQQQGVATAEQVEAAKKMPLGVTKRGSLADSSFPGFMDLVKRQLREDYRDEDLTEEGLRIFTSFDPILQMKAEASVNDTFKRLAGRKGSDEVEAAMVVTNPETGEVQAMIGSRQASYAGFNRALDAVRPIGSLIKPAVYLTALEKPSQYTLTSWLSDESFSVKGADGQVWTPQNYDRRPHGTVFLYQGLAHSYNLSTARLGLEVGVPNVLKTLARLGVNREFPAFPSMLLGAGGLTPIEVAAMYQTLANGGFNTPMRGIRSVLTADGEPLKRYPFQIQQRFDPASIYLIQSAMQRVMREGTGSSVYNVLPRTLTLAGKTGTSNDSRDSWFAGFSQDLLAVVWLGRDDNGKTPFTGATGALQVWTSFMRKADPLPLDMPQPDNIVQAWVDSRTGQGSDANCPGAVQMPYIRGSEPPPGAECGGQNPAESVMDWVKDWVNPGPT0023880_814DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING-PENICILLIN-BINDING_PROTEINS,PGPT0023880-mrcB-K05365NANA
D1-35_04932723hypothetical proteinGTGAACAAGTGGTTGATTCCAGCGGTAACCGCCGTGGCTTTGCTCAGCGGCTGCTCTACCGTACAGCGCGGCTCGATTCCGGTTGTCGACTCCGGTACCGCCGTTTCCAACAGCGAGCGGGTCTCGGCCAATGGCGGTTTCCGTCAGACGACCGTAAAGCGGCCGGTGCAGGGTGCTCAGACCCAGGCGATTCCCCAGGGTGATACGGGCGTCGTGGTGATGGTGCCCGGTGGTGGCGCTGCCACGTCGGCACCCATCAGCAGCACGCCGATCACACCGGGGCCGATCACGCCGGGTCCTATCGAGACCTCGCCGATCGACCAGGGCAGCTACAGCATGCCATCGACGCCGAGCAGCATCCCGTCGGCGAGCTCCGGTGGCTTGTCCGCCGATGAGCAACTGGATGGTCCGGTGTTGGCGCTGCTGACTACGGCCCAACAGCAGCAGGCCGGTGGTGACCTCAACGGCGCGTCTTCCAGCCTCGAGCGCGCCCAGCGTGTCGCGCCGCGCGAGCCTCAGGTTCTTTATCGACTGGCCCAGGTACGCATGGCCCAGGGCGATGCGCCGCAAGCCGAGCAACTGGCGCGCCGCGGCCTGACATTCTCCAGCGGCCGGCCGGCACTCCAGGCAAGCCTGTGGGAACTGATTGCCCAGGCCCGCGAGAAACAAGGCGACTCCGCTGGCGCCGCACTGGCCCGTCAGAAAGCCAAGGTTTCACTCTGAMNKWLIPAVTAVALLSGCSTVQRGSIPVVDSGTAVSNSERVSANGGFRQTTVKRPVQGAQTQAIPQGDTGVVVMVPGGGAATSAPISSTPITPGPITPGPIETSPIDQGSYSMPSTPSSIPSASSGGLSADEQLDGPVLALLTTAQQQQAGGDLNGASSSLERAQRVAPREPQVLYRLAQVRMAQGDAPQAEQLARRGLTFSSGRPALQASLWELIAQAREKQGDSAGAALARQKAKVSLNANANANANA
D1-35_04933330yqcCCOG3098putative protein YqcCATGGATGTTCGTTTTCCCCAGATCGCCGATCAGTTGCTGCTGATCGAGCGCGAACTGCGCGTCCAGGGTTGGTGGAGCAGCGTTTCGCCTTCGGTCGAGGCGCTGGCGAGTGTCGAGCCGTTCGCGGTCGATACCCTGGATTTCGAACAGTGGCTGCAATGGATCTTCCTGCCGCGAATGAAGGCGATCCTGGAAAACGACCTGCCACTGCCTAACGCTTCGGGCATTCTGGCCATGGCCGAAATGGTCTATGCCCAGCGGCCAGGGCAGGGCGCCGAGTTGCAGCGGTTGCTGGCGCAGTTCGACCAGTTGATCAGCGACGCCCGCTGAMDVRFPQIADQLLLIERELRVQGWWSSVSPSVEALASVEPFAVDTLDFEQWLQWIFLPRMKAILENDLPLPNASGILAMAEMVYAQRPGQGAELQRLLAQFDQLISDARNANANANANA
D1-35_04934423hypothetical proteinATGCGAACGATGTTATTGACGGCCTGCCTGCTGGCGGGCCTGAGCCCGATGAGCATGGCCGGCCAGATTTACAAATGGGTGGACGCCCAGGGCGTGACCCACTTCGGCGCCCAGCCGCCGCAAGGCGTAGAGGCGACAACCGTGGGCAGATCCGCACCGCCCGCTCCCAAGCAGGCAGCACCTGTTACCGGCGATGTCGTCGGCGATCAAAAAGCCATCGATCAACAAGTAAAGCAGCAGGTTGCCGAGCAGGAAGCCCAACTCAAGGCGTTCTGCGAGCAGGCCAGGACCAACCTGGCGCAACTGCAGAACAATCCCAGGGTCAGGGAAGACGTGGAAGGCGAAATGCGCCGGCTCACGGATGAAGAGCGGCGCCAGCGCATCGATGAGACCCGCAAGCAGATCGAAGAACACTGCCAGTGAMRTMLLTACLLAGLSPMSMAGQIYKWVDAQGVTHFGAQPPQGVEATTVGRSAPPAPKQAAPVTGDVVGDQKAIDQQVKQQVAEQEAQLKAFCEQARTNLAQLQNNPRVREDVEGEMRRLTDEERRQRIDETRKQIEEHCQNANANANANA
D1-35_049351725ilvICOG0028Acetolactate synthase isozyme 3 large subunitGTGGAGCTTTTATCTGGCGGTGAGATGCTCGTCCGCTTCTTGCGTGACGAAGGCGTCAAATATATCTACGGGTACCCCGGCGGTGCTCTCCTTCATGTCTATGATGCCCTGTTCAAAGAACCGGAAGTGACCCACATCCTGGTTCGCCACGAACAAGCGGCCACCCACATGGCGGACGGCTATGCCCGCGCCACCGGCAAGGCCGGCGTGGTTCTGGTGACATCCGGCCCTGGCGCCACGAACGCCATCACCGGTATCGCCACGGCCTACATGGACTCGATCCCGATGGTGATCATCTCTGGCCAGGTGCCCAGCACCATGGTCGGTACCGATGCGTTCCAGGAAACCGACATGATCGGTATCTCCCGGCCGATCGTGAAGCACAGCTTTATGATCAAGCACGCCTCGGAAATCCCGGAGGTCATGAAAAAAGCCTTTTACCTGGCTGAGTCCGGTCGTCCAGGCCCGGTCGTGGTCGACGTGCCGAAAGACATGACCAACCCGGCCGAGAAATTCGAGTACATCTATCCGAAAAAAGCCAAGCTGCGCTCTTACAGCCCGGCCGTACGCGGTCACTCGGGACAAATCCGCAAGGCCGCCGAAATGCTGCTCGCGGCCAAGCGCCCGGTCCTGTACTCGGGTGGTGGGGTCATCCTCGGTGGTGGCTCCGCGCCGCTGACCGAATTGGCCAAGATGCTCAACCTGCCGGTTACCAATACCTTGATGGGGCTTGGCGCCTACCCGGGCACCGACCGCCAGTTTATCGGCATGCTCGGCATGCACGGCAGCTACACCGCCAACCTGGCGATGCACCATGCCGATGTCATCCTGGCCGTGGGCGCGCGTTTCGACGACCGGGTCATCAACGGCCCGGCGAAATTCTGCCCGAACGCCAAGATCATCCACATCGACATCGACCCGGCGTCCATCTCCAAGACCATCAAGGCAGACGTGCCGATTGTCGGTCCGGTCGAGAGCGTGCTGACCGAGATGGTCGCCATCCTCAAGGAAATCGGCGAGGCTCCGAACAAGGAGTCCGTGGCCGCCTGGTGGAAACAGGTCGATGAATGGCGCGGTGATCGTGGCCTGTTCCCGTACGACAAGGGCGACGGCAGCGTGATCAAGCCGCAGACCGTCATCGAGACCCTGTGCGAAGTGACCAAGGGCGATGCCTTCGTGACTTCCGACGTTGGCCAGCACCAGATGTTCGCGGCGCAATACTACCGGTTCAACAAGCCTAACCGCTGGATCAACTCCGGTGGCCTGGGCACCATGGGCTTCGGCTTCCCGGCGGCCATGGGCGTCAAGTTGAGCTTCCCGGACAACGACGTCGCCTGCGTCACCGGCGAAGGCAGTATCCAGATGAACATCCAGGAGCTGTCGACCTGCCTGCAGTACGGTTTGCCGGTGAAGATCGTCAACCTGAACAACGGTGTACTGGGCATGGTTCGCCAGTGGCAGGACATGAGCTACGGCAGCCGTCATTCGCATTCCTACATGGAGTCGCTGCCGGACTTCGTCAAGCTGGTCGAGGCCTACGGTCACGTGGGCATCCGCATCACCGACCTGAAGGACTTGAAGTCCGGGCTTGAAGAAGCCTTCGCCATGAAGGACCGCCTGGTGTTCCTCGATATCCAGGTCGATACCAGCGAGCACGTCTACCCGATGCAGATCAAAGACGGCTCCATGCGCGATATGTGGCTGAGCAAGACGGAGCGTACCTAAMELLSGGEMLVRFLRDEGVKYIYGYPGGALLHVYDALFKEPEVTHILVRHEQAATHMADGYARATGKAGVVLVTSGPGATNAITGIATAYMDSIPMVIISGQVPSTMVGTDAFQETDMIGISRPIVKHSFMIKHASEIPEVMKKAFYLAESGRPGPVVVDVPKDMTNPAEKFEYIYPKKAKLRSYSPAVRGHSGQIRKAAEMLLAAKRPVLYSGGGVILGGGSAPLTELAKMLNLPVTNTLMGLGAYPGTDRQFIGMLGMHGSYTANLAMHHADVILAVGARFDDRVINGPAKFCPNAKIIHIDIDPASISKTIKADVPIVGPVESVLTEMVAILKEIGEAPNKESVAAWWKQVDEWRGDRGLFPYDKGDGSVIKPQTVIETLCEVTKGDAFVTSDVGQHQMFAAQYYRFNKPNRWINSGGLGTMGFGFPAAMGVKLSFPDNDVACVTGEGSIQMNIQELSTCLQYGLPVKIVNLNNGVLGMVRQWQDMSYGSRHSHSYMESLPDFVKLVEAYGHVGIRITDLKDLKSGLEEAFAMKDRLVFLDIQVDTSEHVYPMQIKDGSMRDMWLSKTERTPGPT0008185_3977DIRECT 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
D1-35_04936492ilvHCOG0440Acetolactate synthase isozyme 3 small subunitATGCGACATATTATTTCCTTGCTTCTGGAAAACGAGCCGGGTGCTCTGTCTCGTGTAGTGGGCCTGTTCTCGCAGCGCAACTACAACATCGAAAGCCTGACCGTGGCGCCAACCGAGGACCCGACCCTGTCGCGTCTGACGCTGACCACCGTGGGCCACGATGAAGTCATCGAGCAGATCACCAAGAACCTGAACAAGCTGATCGAGGTGGTCAAGCTGGTGGACCTGTCGGAGAGCGCTCATATCGAACGCGAGCTGATGCTGGTCAAGGTCAAGGCCACCGGCGCCCAGCGCGCCGAGATCAAACGCACTACCGATATTTATCGTGGGCAGATCGTCGATGTCAGCGCCAGCGTCTATACCGTTCAGTTGACCGGTACCAGCGACAAGCTCGACAGCTTCATCCAATCGATCGGCACTGCCTCGATCCTGGAAACCGTACGCAGTGGTGTCACCGGGATTGCCCGTGGCGACAAAGTACTGAGCATCTAAMRHIISLLLENEPGALSRVVGLFSQRNYNIESLTVAPTEDPTLSRLTLTTVGHDEVIEQITKNLNKLIEVVKLVDLSESAHIERELMLVKVKATGAQRAEIKRTTDIYRGQIVDVSASVYTVQLTGTSDKLDSFIQSIGTASILETVRSGVTGIARGDKVLSIPGPT0008205_2784DIRECT 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
D1-35_049371017ilvCCOG0059Ketol-acid reductoisomerase (NADP(+))ATGAAAGTTTTCTACGATAAAGATTGCGACCTGTCGATCATCCAGGGCAAAAAAGTCGCCATCATCGGCTACGGCTCCCAAGGTCACGCACAGGCGTGCAACCTCAAGGATTCCGGCGTTGACGTAACTGTCGGCCTGCGCAAAGGCTCGGCCACTGTCGCCAAGGCTGAGGCCCACGGCTTGAAAGTCACCGACGTGGCTTCCGCCGTTGCCGCTGCCGACCTGGTCATGATCCTGACCCCGGACGAATTCCAGTCTGCCCTGTACAAGAACGAAATCGAGCCGAACATCAAGAAAGGCGCCACCCTGGCCTTCTCCCATGGCTTCGCGATCCATTACAACCAGGTTGTGCCGCGCGCCGACCTCGACGTGATCATGATCGCGCCGAAGGCCCCGGGCCACACCGTCCGTTCCGAGTTCGTCAAGGGCGGCGGTATCCCTGACCTGATCGCGATCTACCAGGATGCGTCCGGCAATGCCAAGAACGTTGCGCTGTCCTACGCCGCCGGCGTGGGTGGCGGTCGTACCGGCATCATCGAAACCACCTTCAAGGACGAGACCGAAACCGACCTGTTCGGTGAGCAAGCCGTTCTGTGCGGCGGCACCGTCGAGCTGGTCAAAGCCGGTTTCGAAACCCTGGTTGAAGCTGGCTACGCGCCGGAAATGGCCTACTTCGAGTGCCTGCACGAACTGAAGCTGATCGTTGACCTCATGTACGAAGGCGGTATCGCCAACATGAACTACTCGATCTCCAACAACGCCGAGTACGGCGAGTACGTGACCGGTCCGGAAGTCATCAACGCCGAATCTCGCCAGGCCATGCGCAATGCCCTGAAACGTATTCAGGACGGTGAATACGCCAAGATGTTCATCAGCGAAGGTGCCACCGGCTATCCTTCGATGACCGCCAAGCGCCGCAACAACGCCGCTCACGGTATCGAAATCATCGGCGAGCAACTGCGCTCCATGATGCCGTGGATCGGTGCCAACAAGATCGTCGACAAAGCCAAGAACTGAMKVFYDKDCDLSIIQGKKVAIIGYGSQGHAQACNLKDSGVDVTVGLRKGSATVAKAEAHGLKVTDVASAVAAADLVMILTPDEFQSALYKNEIEPNIKKGATLAFSHGFAIHYNQVVPRADLDVIMIAPKAPGHTVRSEFVKGGGIPDLIAIYQDASGNAKNVALSYAAGVGGGRTGIIETTFKDETETDLFGEQAVLCGGTVELVKAGFETLVEAGYAPEMAYFECLHELKLIVDLMYEGGIANMNYSISNNAEYGEYVTGPEVINAESRQAMRNALKRIQDGEYAKMFISEGATGYPSMTAKRRNNAAHGIEIIGEQLRSMMPWIGANKIVDKAKNPGPT0008735_2596DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_METABOLISMPLANT_VITAMIN_B5|PANTOTHENIC_ACID|CO_FACTOR_BIOSYNTHESIS,PGPT0008735-ilvC-K00053NANA
D1-35_04938846hypothetical proteinATGAGCGAACGTCCCGACGAGCCGAACCAGGCTCCTGACGCCGAAAGCCTGTTGCCCATCGATGAACACGTCGAAGAGGGCCATGACGCTGAAGGCCGTAAGGTCCGGCATCGTGGCATCTATCTGCTGCCGAACCTGTTCACCACCGCGAACCTGTTTGCCGGCTTCTATTCCATCATCAGCTCCATGAGCGCCCAGGCGGCGCTCAGTGCCGGTGATAATTCCGGGGCAAGCCGCTATTTCGCCCTGGCTGCCATTGCGATATTCGTCGCCATGGTGCTCGATGGTCTTGACGGGCGCGTGGCCCGCATGACCAATACCCAGAGCGCATTCGGCGCCGAATACGACTCACTGTCCGACATGGTCGCGTTCGGTGTTGCCCCCGCGTTACTGGCGTTCGGCTGGGCGCTGGGCGACATGGGCAAGGTCGGCTGGATGGTGGCTTTCATCTATGTGGCCGGTGCCGCGTTGCGCCTGGCACGTTTTAACACCCAGGTCGGCACTGCCGACAAACGCTACTTCATCGGTCTCGCGAGCCCTGCAGCCGCGGGCGTGGTGGCCGGCGTGGTCTGGGCATTCAGCGACTACGGCATTCAGGGCTCGAAAATGTCGTTCCTGGTGGCGTTGCTGGTTGCGGCGGCCGGGATGCTGATGGTCAGCAACATCAAATACAACAGCTTCAAGGAACTGGATCTGAAAGGTCGCGTGCCGTTTGTCGCGATCCTGGCTGTGGTTCTGGTGTTCGCCGTGGTCTTCAGCGATCCGCCGCGTGTCCTGCTGCTGGTATTTCTCGCCTATGCTGCGTCGGGTCCGGTGCAATATTTGTTGCGTCTTCGCCGACGCTAAMSERPDEPNQAPDAESLLPIDEHVEEGHDAEGRKVRHRGIYLLPNLFTTANLFAGFYSIISSMSAQAALSAGDNSGASRYFALAAIAIFVAMVLDGLDGRVARMTNTQSAFGAEYDSLSDMVAFGVAPALLAFGWALGDMGKVGWMVAFIYVAGAALRLARFNTQVGTADKRYFIGLASPAAAGVVAGVVWAFSDYGIQGSKMSFLVALLVAAAGMLMVSNIKYNSFKELDLKGRVPFVAILAVVLVFAVVFSDPPRVLLLVFLAYAASGPVQYLLRLRRRPGPT0007695_834DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-PSS-RELATED_EXOPOLYSACCHARIDE_METABOLISMCE-EPS-PSS-RELATED_EXOPOLYSACCHARIDE_BIOSYNTHESIS,PGPT0007695-CHO1|pssA-K17103NANA
D1-35_049391014msrPCOG2041Protein-methionine-sulfoxide reductase catalytic subunit MsrPATGCTGATCAAGATCCCCAAATCGTCCGACAGTCGTGAATCGGACGTCACGCCTGAATCCTTCTATCTATCCCGTCGCAAGTTGCTAGGGGCATCCGTGGCTGGCCTCGCCGTGGGTAGCTTGCCGCGATGGGCCGGCGCCGCGGATGTAGCGCGTTATCCCAATGTCGAGCCAGGCAAGGCGCCGGCCTGGTTGGCTGAGAAGGTTGCAGCTACCCAATGGGGCGCGGTGACGGCTGGAAATGAGTCGATCACCCCATTCAAGGACGCCACCCACTACAACAACTTCTATGAGTTCGGAACCGATAAGGGTGATCCGGCGGCCAATGCAGGGTCGTTGAAAACCGAGCCCTGGAGCGTAGTCGTGGAGGGTGAGGTGGGTAAGCCGGGCCGCTATGGTCTGGAAGACTTCATGAGGCCTTATCAGCTGGAGGAGCGGATTTATCGATTGCGCTGTGTCGAGGCCTGGTCGATGGTCATTCCGTGGATCGGCTTTCCCATCTCCGCACTACTCAAGCAGGTCGAGCCGACCTCCAAGGCCAAGTATATTCGTTTCGAGACGCTGCAGGATCCCAAGACCATGCCGGGCCAGCGTTCAGGCTTTGCCCTGATTGACTGGCCGTATGTGGAAGGTTTGCGGTTGGATGAGGCGATGAACCCGCTGGCAATCCTCGCGGTTGGGATGTACGGGCGGGAGTTGCCGAACCAGAACGGCGCGCCGTTGCGGTTGGTGGTGCCATGGAAGTATGGCTTCAAGAGCGTGAAATCCATCGTGCGGATCAGTCTGGTCAGCGAGCAGCCCAAGACAACCTGGCAAAGCATTGCGGCTGATGAGTACGGCTTTTATGCCAACGTCAATCCCACCGTTGACCATCCGCGCTGGACCCAGGCGCGGGAGCGTCGTTTGCCGAGCGGGCTGCTCAGCCCCAACGTTCGCGATACGTTGATGTTCAACGGCTATCAGGATGAAGTGGCTTCTTTATATGCGGGGATGGACCTGAGGAAGGATTATTGAMLIKIPKSSDSRESDVTPESFYLSRRKLLGASVAGLAVGSLPRWAGAADVARYPNVEPGKAPAWLAEKVAATQWGAVTAGNESITPFKDATHYNNFYEFGTDKGDPAANAGSLKTEPWSVVVEGEVGKPGRYGLEDFMRPYQLEERIYRLRCVEAWSMVIPWIGFPISALLKQVEPTSKAKYIRFETLQDPKTMPGQRSGFALIDWPYVEGLRLDEAMNPLAILAVGMYGRELPNQNGAPLRLVVPWKYGFKSVKSIVRISLVSEQPKTTWQSIAADEYGFYANVNPTVDHPRWTQARERRLPSGLLSPNVRDTLMFNGYQDEVASLYAGMDLRKDYPGPT0013075_300DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-SULFOXIDE_REDUCTASES,PGPT0013075-msrP|yedY-K07147NANA
D1-35_04940621msrQProtein-methionine-sulfoxide reductase heme-binding subunit MsrQATGCGTTTTCTGGCGTGGCGGATCGGCGTATTCATCGCGGCGGCGATCTGGCCAATGCTTTGGCTTTATGAGGCATTGGCGAATTTCCTGGGGCCGGACCCGGGCAAGGTCCTGGTGGATCGGTTGGGGTTGGGGACGCTGATCCTGTTGCTGGTTACCTTGTGCATGACGCCGCTGCAGAAACTGACGGGGTGGGCGGGGTGGGTAGCCGTCCGGCGTCAGTTGGGTTTGTGGTGCTTCACTTATGTCGTACTGCATTTGAGCGGGTATCTGGCGTTCATCCTGGGGTTCGATTGGTCTCAGCTGGGTGTGGAGCTGGGCAAGCGGCCTTACATCATCGTCGGAGCGCTCGGTTTTCTGGGATTGCTGGCGCTGGCAGTGACGTCCAACCGCTACAGCCAGCGGCGACTGGGCGGGCGATGGAAGAAACTGCATCGCCTGGTCTATCCGATATTGGGGCTTGGGTTGCTGCATATGTTGTGGATCGCGCGGGCCGATCTGAAGGAGTGGGCGATATATGCCTTTATAGGTGCGGTACTGTTGGTGCTCAGGGTGCCTGCGGTGATGCGGCGTATCCCGCGTCTGATGGGGCGAAAGGAGTCTTCTGCAACAAAAACGTAAMRFLAWRIGVFIAAAIWPMLWLYEALANFLGPDPGKVLVDRLGLGTLILLLVTLCMTPLQKLTGWAGWVAVRRQLGLWCFTYVVLHLSGYLAFILGFDWSQLGVELGKRPYIIVGALGFLGLLALAVTSNRYSQRRLGGRWKKLHRLVYPILGLGLLHMLWIARADLKEWAIYAFIGAVLLVLRVPAVMRRIPRLMGRKESSATKTNANANANANA
D1-35_04941573hypothetical proteinATGACATTCAAACGTATCCTCGGAACCCTCGCCTTGCTGCTGACCCCAGCTCTGGCCTTTGCCCACCCCGGTCACGGCGATAACGGCCTGATCGCCGGCCTGGGCCACCCCATCGGCGGGCTCGACCATCTGCTCGCGATGTTGGCGGTCGGCTTGTGGGCGGCCCAACAACAAGGCGCCGCGCGCTGGGCACTGCCATGCACTTTCGTTGGGACGATGCTGCTCGGTGGTTTGCTGGGCTTCGAAGGCCTGGACCTGCCTGCGCTGGAAAGCGGCATCGCCGCCTCGGTGCTGGCCCTGGGCCTGGCGGTGGCGCTGGCGGTGCGTCCGCCGCTAAGCCTGGCAGTCGGTGCGACCGCGCTATTTGCGCTATTCCATGGCGTCGCCCATGGCTTGGAGCTGCCGGACATGTCGAGTCCGTGGGCCTATGCGGTGGGGTTCGTCGCCGCAACGGCGGCGCTGCACGGCGCGGGCTTTGCGCTGGTTCGTGTGTTGCCACGCGCGGCGGCGCCGGTGATCAGGTTGGCCGGGGCTGCTTCGGCGGCGGCTGGGGTCTGGTTGTTGGCCAGCTGAMTFKRILGTLALLLTPALAFAHPGHGDNGLIAGLGHPIGGLDHLLAMLAVGLWAAQQQGAARWALPCTFVGTMLLGGLLGFEGLDLPALESGIAASVLALGLAVALAVRPPLSLAVGATALFALFHGVAHGLELPDMSSPWAYAVGFVAATAALHGAGFALVRVLPRAAAPVIRLAGAASAAAGVWLLASPGPT0000995_690DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-UREA_USAGEN-AQUISITION-UREA_METABOLISM,PGPT0000995-ureJ-K03192NANA
D1-35_04942615ureGUrease accessory protein UreGATGAATACACAACCTTTGCGCGTCGGTATTGGCGGCCCGGTAGGCTCCGGCAAGACCGCACTGACCCTGGCTCTCTGCCTGGCCTTGCGCGAGCGCTACAACCTGGCCGTGGTCACCAACGATATCTACACCCGTGAAGACGCTGATTTCCTGGTGCGCAACGAAGCCCTGGCGCCGGAGCGGATCATCGGCGTGGAAACCGGTGGGTGCCCGCACACGGCGATTCGCGAAGACGCCTCGATCAACCTTGAAGCGGTGGACCAGTTGAACCGGCGGTTCCCGGGCCTCGACCTGATCCTGGTCGAGTCCGGTGGCGACAACCTGTCCGCGACCTTCAGCCCCGAGCTGTCGGACCTGACCATCTACGTGATCGACGTATCGGCTGGCGACAAGCTGCCGCGCAAGGGCGGGCCGGGCATCTGCAAATCCGACCTGCTGGTGATCAACAAGATTGACCTGGCGCCACTGGTGGGTGCCTCCCTGGAACTGATGAACAGCGATACCCAGCGGATGCGCAACGGCAAGCCCTTCGTGTTCAGCAACCAGAAGACCGGCCAGGGCCTGGACGACATCATCGCCTTCATCGAGCGCCAGGGCCTGCTGAGCGCGGCGTGAMNTQPLRVGIGGPVGSGKTALTLALCLALRERYNLAVVTNDIYTREDADFLVRNEALAPERIIGVETGGCPHTAIREDASINLEAVDQLNRRFPGLDLILVESGGDNLSATFSPELSDLTIYVIDVSAGDKLPRKGGPGICKSDLLVINKIDLAPLVGASLELMNSDTQRMRNGKPFVFSNQKTGQGLDDIIAFIERQGLLSAAPGPT0000985_1701DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-UREA_USAGEN-AQUISITION-UREA_METABOLISM,PGPT0000985-ureG-K03189NANA
D1-35_04943675ureFCOG0830Urease accessory protein UreFATGAACCCGGCCTGGGCACTGCTGCGCCTGGCCAGTCCGCAACTGCCGATTGGCGGCTACAGCTACTCCCAGGGCCTGGAAATGGCTGTGGACAAAGGCTTGGTCAAAACGCCCGACGACGCACGCCGCTGGATCAGCGATCAGATGCTACTGAACCTGGCGCGTTTCGAAGCGCCCTTGCTGCTGGCTCATTGCAGGGCGGCCGCTGCCGACGATTGGCACGCGCTGCTGGAGCTTTGTGAACAACACCGTGCCAGCCGGGAAACCCGCGAGCTGTACCAGGAGAGCCGGCAGATGGGCTACTCGCTGCAACAATTGCTGGCGGGCCTGCCGGAGCTCGACAGCGCCGCCCGCAGCTTCCTTGAACAGCGTAGCGAACCGCACCTGGCGCTGGGCTGGGCCCTGGCGGCCCGTGCCTGGGATATCAAGCCAGAGGATGCCCTCGCCGCCTGGTTGTGGAGCTGGCTGGAAAACCAACTGGCGGTGCTGATGAAAACCCTGCCCTTGGGCCAGCAAGCCGCGCAGAGGTTGACCAGCGAGCTGCTGCCATTGCTGCAACAGGCCCAGCAGATCGCCTCGAACCTCGACCCCGACCATTACGGCAGCGCCGCGTTTGGCCTGTCCCTGGCGTGCATGGCCCATGAGCGCCAGTACAGCCGCCTGTTCCGTTCCTAGMNPAWALLRLASPQLPIGGYSYSQGLEMAVDKGLVKTPDDARRWISDQMLLNLARFEAPLLLAHCRAAAADDWHALLELCEQHRASRETRELYQESRQMGYSLQQLLAGLPELDSAARSFLEQRSEPHLALGWALAARAWDIKPEDALAAWLWSWLENQLAVLMKTLPLGQQAAQRLTSELLPLLQQAQQIASNLDPDHYGSAAFGLSLACMAHERQYSRLFRSPGPT0000980_1731DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-UREA_USAGEN-AQUISITION-UREA_METABOLISM,PGPT0000980-ureF-K03188NANA
D1-35_04944501ureEUrease accessory protein UreEATGCTGGTTATCCACCGCAGAATCGACACTCAACCGCGCTGGGACGCCGAGCTGCACCTGATCTTTGACGCCCGCAGCAAAAGCCGTCTGCGCTGTTTCAGTGCCGAGGGTGAAGACGTGGGATTGTTCTTGGAGCGAGGCCAGCCGCCGCTGTACGACGGTGAATGCCTTCAGGCCGAAGATGGGCGCATCGTGCGTGTCTGCGCCCGCCCTGAACAATTGCTCCACGTTACCTGCGCCAATGCGTTCGAACTGACCCGTGCTGCCTACCACTTGGGCAATCGCCACGTTGCCCTGCAGGTGGGCGATGGCTGGTTGCGCCTGCTGGATGATTACGTGCTCAAGGCGATGCTTGAGCAACTGGGCGCCAGCGCCGAATCCATTGAAGCGCCGTTCCAGCCGGAACACGGCGCCTACGGCGGCGGCCATCATCATTCCCGGCACGGCGACGAAGATTTCAATTACGCACCGCGCCTGCACCAGTTCGGCGTGCGTTCATGAMLVIHRRIDTQPRWDAELHLIFDARSKSRLRCFSAEGEDVGLFLERGQPPLYDGECLQAEDGRIVRVCARPEQLLHVTCANAFELTRAAYHLGNRHVALQVGDGWLRLLDDYVLKAMLEQLGASAESIEAPFQPEHGAYGGGHHHSRHGDEDFNYAPRLHQFGVRSPGPT0000975_811DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-UREA_USAGEN-AQUISITION-UREA_METABOLISM,PGPT0000975-ureE-K03187NANA
D1-35_04945633fabRCOG1309HTH-type transcriptional repressor FabRATGCTTCCCCGCGCCGAACAGAAACAACAGACCCGAAATGCCCTGATGGATGCAGCGCGCCATTTGATGGAGTGCGGCAGGGGATTCGGCAGCCTGAGCCTGCGCGAAGTCGCCAAGACAGCCGGCATCGTACCCACCGGGTTCTATCGACATTTCGACGACATGGACCAGCTTGGCCTGGCGCTCGTCAGCGAAGTCGGGCAGACGTTTCGCGAAACCATCCGGCTGGTGCGCCACAACGAATTTGTCATGGGCGGCATCATCGATGCGTCTGTGCGGATTTTTCTCGACGTGGTGCATGCCAACCGATCGCAGTTTCTGTTCCTGGCCCGCGAGCAGTACGGCGGCTCCCTGCCGGTACGCCAGGCCATCGCGAAGCTGCGCGAAGACATCAGCTCGGACCTCGCCGCCGACCTGGCATTGATGCCCAAGTTGCAACACCTGGACCTTGCGGGACTGAGCGTGATGGCCGACCTCGTCGTCAAGAGTGTCTTCGCCACCCTGCCGGATATCATCGACCCGCCCGCCAAAGCGCTCCCCGAACATCTCACCCCCCAGGCGAAGATTACCCAGCAACTACGGTTCATCTTCATCGGCCTCAAGCATTGGCACGGGTTGGGTAGCACCGAGTAAMLPRAEQKQQTRNALMDAARHLMECGRGFGSLSLREVAKTAGIVPTGFYRHFDDMDQLGLALVSEVGQTFRETIRLVRHNEFVMGGIIDASVRIFLDVVHANRSQFLFLAREQYGGSLPVRQAIAKLREDISSDLAADLALMPKLQHLDLAGLSVMADLVVKSVFATLPDIIDPPAKALPEHLTPQAKITQQLRFIFIGLKHWHGLGSTENANANANANA
D1-35_04946510hypothetical proteinATGAAACGCCAACTACTGATGAGTCTTTCCCTTTCCCTGCTGGCCTCTACCGCTTTCGCCTTGCCAGCTTCCGAACAGGCCACGCCGCAAGTCAAGGACAGCCATTCTGTCTATAGCCAGACCGTAGCCGAAGGTGGCCGTGACCGCCTGGAAGAGAAAGGCCTGGTCGAAGGTGGTTCCGACCGCACTCCACAGGGCCAGACCCTGGCGGCTGACGGTTCCGACCGCACTCCACAGGGCCAGACCCTGGCGGCTGACGGTTCCGACCGCACTCCACAAGGCCAGACCCTGGCGGCTGACGGTTCCGACCGCACTCCACAAGGCCAGACCCTGGCGGCTGACGGCTCCGACCGCACCCCACTGGGCGAAACCCTGGCTGCTGACGGTTCCGACCGCACCCCACTGGGCGAAACCCTGGCCGCTGAAGGTTCCGATCGCACTCCACAAGGCCAGACCCTTGCCGAAGGCGGTGGTGACCGCGTAATCGAACGCAACAGTGCAGTGAGCTGAMKRQLLMSLSLSLLASTAFALPASEQATPQVKDSHSVYSQTVAEGGRDRLEEKGLVEGGSDRTPQGQTLAADGSDRTPQGQTLAADGSDRTPQGQTLAADGSDRTPQGQTLAADGSDRTPLGETLAADGSDRTPLGETLAAEGSDRTPQGQTLAEGGGDRVIERNSAVSNANANANANA
D1-35_049472070hypothetical proteinATGACGCGCACCTCAAAAATTTTCGCCTGGGGCTTTGCCTGCCTCATCGCATTGCTGGCCGCGCTTGTGCTGGTCATCGCTTTCTTCGACTGGAACCGCCTCAAGCCCACGCTCAACGCGAAGGTTTCCGAGGAGTTGCATCGTCCATTCGCAATCAATGGCAACCTGGCGGTGATCTGGCAGCGCGAACCGCAGGAAGGCGGCTGGCGCGCCTTTGTGCCGTGGCCCCATGTCGTGGCCGAAGATTTGAGCCTGGGAAACCCGGACTGGTCGAAAACCCCGCAAATGGTCACGCTAAAGCGCGTCGAGCTACGTATTTCGCCCTTGGCCCTGTTGGCCCGGCGGGTGGCGATCCCGCGCATCGACCTGACCGAACCCAACGCCAGCCTGCAGCGCCTGGCTGATGGCCGCGCCAACTGGACCTTCCAGTTCGATCCGAAGGACCCGGACGCCGAACCGTCCAGTTGGTCGGTCGATATCGGTGCCATCGGCTTTGACAAGGGGCATGTCACGCTGGATGACCAGACGCTCAAGACCAGGCTCGAGGTGTTGATCGACCCGTTGGGCAAACCCATTCCGTTCAGCGATATCGTCGGTGAAAAGACTGCGAACAAAGCCCGGGAACAAGGTGCGGCACCACAGGACTACGCCTTTGCTTTCAAGGCTGACGGGCAGTATCAAGGACAGAACCTGAGCGGTTCCGGCAAGGTCGGTGGCTTGCTGGCCTTGCAGGATGCATCGCAACCCTTTCCCCTGCAGGCCCAGGCGAAGATTGCCGACACCCGCATCGAGCTGGCCGGCACCCTTACCGACCCGAAGAACCTTGGCGCCCTGGACCTGCGTCTGAAACTGGCCGGTAAAAGCCTGGCCAATCTTTACCCGTTGACTGGCGTGACGCTGCCGGATTCGCCGCCCTATGCCACTGATGGTCGCCTGATCGCCAAGCTCCACGAACCGGAGGGGGCGCAGTTCCGCTACGAGGCGTTCAACGGCAAGATTGGCGAAAGCGATATTCACGGCGACCTGGCTTATGTTTCCAGCCAGCCGAGACCGAAACTCACTGGCGCGCTGGTATCCGATCAGCTGTTGTTCAGCGACCTGGCGCCGCTTATCGGCGCCGACTCCAACACGCAACAGAAGGCGCGCGGCGGTGCCAGCAAACAACCGTCCGACAAGGTCTTGCCGGTGGAAGAGTTCCGCACTGAGCGCTGGAGCGTAATGGATGCCGACGTGGAGTTCACCGGCAAGCGCATCGTCCATAGCGAGCAATTGCCCTTCACCGACCTCTACACTCATTTGCTGCTGAACAATGGCCAGTTGAGCCTTGAACCCTTGCGCTTTGGCGTGGCCGGTGGCCGTCTCGATGCGCAGATTCGCCTCAATGGACAGACTCGGCCCCTCGAAGGCCAGGCGAAACTGACCGCGCGAGGCTTCAAGCTCAAGCAGCTTTTCCCGGGTTTCGAACCGATGAAAACCAGTTTCGGCGAGCTCAATGGCGATGCCGATCTGTCCGGCCGAGGTAATTCGGTAGCAGCGTTGCTGGGCACCGCCAATGGCAACTTGAAGATGCTCATCAACGACGGCGCTATCAGTCGGGAGTTGATGGAACTGGCAGGGTTGAACGTTGGCAACTATGTGGTAGGAAAAATCTTCGGCGACAAGGAAGTGAAGATCAATTGCGCGGCGGCTGATTTCGGCATCAAGACCGGCCTGGCGACCACTCGCCTGTTTGTATTCGATACCGAGAACGCGATCATCTATATCGATGGCACGGCGAATATGGCCACTGAACAACTGGACCTGACTGTTACCCCGGAGTCCAAGGGCTGGCGATTGATTTCCCTGCGTTCGCCGCTGTACGTACGAGGCACCTTCGCCAAGCCCGCCGCCGGGGTGAAGGCCGTGCCGCTGATGTTGCGTGGGGCCGGAATGGTCGCGCTGGGTGTCATCGCCGCGCCGGCGGCGGGGTTGCTCGCGTTGGTCGCTCCCAGCGGCGGTGAGCCCAACCAATGTGCACCGTTGCTCGAACAGATGAAGGCCGGCAAGGCGCCGAAGACGGTAAAGGACTGAMTRTSKIFAWGFACLIALLAALVLVIAFFDWNRLKPTLNAKVSEELHRPFAINGNLAVIWQREPQEGGWRAFVPWPHVVAEDLSLGNPDWSKTPQMVTLKRVELRISPLALLARRVAIPRIDLTEPNASLQRLADGRANWTFQFDPKDPDAEPSSWSVDIGAIGFDKGHVTLDDQTLKTRLEVLIDPLGKPIPFSDIVGEKTANKAREQGAAPQDYAFAFKADGQYQGQNLSGSGKVGGLLALQDASQPFPLQAQAKIADTRIELAGTLTDPKNLGALDLRLKLAGKSLANLYPLTGVTLPDSPPYATDGRLIAKLHEPEGAQFRYEAFNGKIGESDIHGDLAYVSSQPRPKLTGALVSDQLLFSDLAPLIGADSNTQQKARGGASKQPSDKVLPVEEFRTERWSVMDADVEFTGKRIVHSEQLPFTDLYTHLLLNNGQLSLEPLRFGVAGGRLDAQIRLNGQTRPLEGQAKLTARGFKLKQLFPGFEPMKTSFGELNGDADLSGRGNSVAALLGTANGNLKMLINDGAISRELMELAGLNVGNYVVGKIFGDKEVKINCAAADFGIKTGLATTRLFVFDTENAIIYIDGTANMATEQLDLTVTPESKGWRLISLRSPLYVRGTFAKPAAGVKAVPLMLRGAGMVALGVIAAPAAGLLALVAPSGGEPNQCAPLLEQMKAGKAPKTVKDNANANANANA
D1-35_04948969gcvA_8Glycine cleavage system transcriptional activatorATGTTTGCTGCCCTGCCACTCAACGCGTTGCGTGCCTTCGAATCCGCTGCACGATTGCTCAGTTTCAAGGCCGCGGCGGCTGAGCTGTCGGTAACGCCCACGGCGATTTCCCATCAGATCCGCTCACTGGAAACCTGGCTGGGTGTGCAACTCTTTGAGCGCCTGCCTCGCCAGGTGCGGCTGACCGAAGGTGGCCAACGCTTGTTCCACAGCCTGCACGGTGCCTTGCTGGAAGTGGCGCAAAGCGTCGATACCCTGCGCCCGCAACGCAGTACCGCGCACCTGACGATTTCCACCACCGCCGCGTTCGCGGCGCTTTGGCTGGTGCCGCGCCTGGGTCGGTTCTACGCGCGCCATCCCACCATCAATGTCCGCCTGGACACGCACTGCGAAGTGATCGACCTGCACCAGGACGCCAGCGTGGACATGGTGGTGCGCTATAGCCTGGAGAACTACCCGAACCTGTATGGCATGTGCCTGTTCGATGAGTACTTCGGTGTATACGGGTCACCTGAGCAAATAGCCGCTCTGGCGACCCGACAACCGACGACGTTGATCAGTGTGCGGTGGCACAACACCAAGCTTTATGCCCATGGCTGGGACGCCTGGTGCGCGCGGGCGGGAGAAACCTGGCTGACCCGTCAGCCCTGCATACGCGAATACGACGAGGAGCATTACGCCCTGCAAGCGGCAATTGCCGGGCAAGGCCTGGTCCTGGCGAGCAACGTGCTGGCATCCGAAAGCGTCGCCAGCGGCCTACTGGTCGCTTACCACCCGCACGTCCAGGTCAACGGCGCGGGCTACAGCGCCTTATGCGTTCCGGGCCGGGAACGCCACCCGCCAGTACGAGCGTTCTTCAAATGGCTGGAGGAAGAAGCGCGGCAGTCCGGGCACGCACTGACGAGTTCGATGAAACTGTTCCAGGACCGTGTCAGCCAGAACCAGAGCAATCATGCTGGCAAAACATGAMFAALPLNALRAFESAARLLSFKAAAAELSVTPTAISHQIRSLETWLGVQLFERLPRQVRLTEGGQRLFHSLHGALLEVAQSVDTLRPQRSTAHLTISTTAAFAALWLVPRLGRFYARHPTINVRLDTHCEVIDLHQDASVDMVVRYSLENYPNLYGMCLFDEYFGVYGSPEQIAALATRQPTTLISVRWHNTKLYAHGWDAWCARAGETWLTRQPCIREYDEEHYALQAAIAGQGLVLASNVLASESVASGLLVAYHPHVQVNGAGYSALCVPGRERHPPVRAFFKWLEEEARQSGHALTSSMKLFQDRVSQNQSNHAGKTPGPT0026360_1440DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566NANA
D1-35_04949639azoR1_2COG1182FMN-dependent NADH-azoreductase 1ATGAGCAATATTCTTGTGGTACACGGCAGCCCTCGCGGCGAGCGTTCCCATTCCCGGCGTCTGACGGAGGCTTTCATAGCGGCTTGGCAGGCTGCCAATCCACATACCCAACCGACCCGCCGCGAGGTCGGCCGGACCGTTATTCCTCCGGTCAACGAAGCCTTCATCGCCGCGGCGTTCCACCCCGAGCCTCAGGGAAGGCCATTGACCATGCAGGCCGACCTGGCCTTGAGCGATGCGTTGGTGGCGGAGCTGCAGGCCCATGACCGGCTGGTGATTTCCGCACCCATGCATAATTTCGGCGTGCCCAGCGGCGTGAAGGCCTGGATCGACCAGATCGTGCGCATTGGCGTGACGTTCAACCACAGCCTGGATAACGGCGTCTCGCAATATGAGCCGTTGGTGCTGGGCAAGAAGGCCCTGATCGTGACCAGCCGTGGCGATTTCGGCTTCGGCCCCGGAGGCTCGCTGGAATCCATGAACCACGCCGATACGCTGCTGCGCACGGTCCTGGAGTTTATCGGCATCAGCGACGTGACGGTGGTGGCCGCTGAAGGAGAGGAGTCGGCCGAGCACAGCTTCGCGCGGTCCTACGCCGAGGCCGAGCGGCGCTTGCTGGCGCTGGCGCGAACATTCTGAMSNILVVHGSPRGERSHSRRLTEAFIAAWQAANPHTQPTRREVGRTVIPPVNEAFIAAAFHPEPQGRPLTMQADLALSDALVAELQAHDRLVISAPMHNFGVPSGVKAWIDQIVRIGVTFNHSLDNGVSQYEPLVLGKKALIVTSRGDFGFGPGGSLESMNHADTLLRTVLEFIGISDVTVVAAEGEESAEHSFARSYAEAERRLLALARTFPGPT0006790_821DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_DEGRADATION_OF_OTHER_NITRO-COMPOUNDSXENOBIOTIC_AZO_DYE_DEGRADATION,PGPT0006790-acpD|azoR-K01118NANA
D1-35_04950891lips_2Triacylglycerol lipaseATGTCGCAACGCTGCGCCACTCGCTACCCGCTGGTGCTGGTCCCGGGCATGCTTGGGTTCATTCGCCTGGTGTTGTATCCGTATTGGTATGGCATCGTCGAGGCGTTGCGCCGGGGTGGAGCCGTGGTGGTCGCGGTGAAGGTTTCGCCATTGCATTCGTCCGAAGTTCGCGGCGAGCAATTGCTGGCACGGATCGAGGAGATTCTCAGGGAAACCGGCGCGCAAAAGGTCAACCTGATCGGCCACAGTCAGGGCGCCCTCACTGCCCGCTATGCAGCCGCGCTGCGCCCGGATCTGGTCGCCTCGGTCACATCGGTGGCCGGCACCAACCACGGGTCCGAACTGGCCGATTACCTGCAAGACCATTATCCGGCCGACAGCGCCAAAGGGCGGTTGCTCAGCGCTTTTCTGCGGCTGATCAACGCGTTGATGAGCCTGCTCGACACCGGCTACCACGGACCGAAATTGCCGGTAGACATCCGCGCCTCCCACGCCTCGCTGACGACTGCCGGCGTGGCGTTGTTCAACGAGCGTTATCCACAAGGCCTGCCGCAGACCTGGGGCGGGCAGGGGCCGGAAGAAGTCAATGGGGTGCGTTATTACTCGTGGTCCGGGACTCTGCAGCCGGGCAAGACCGACAGGGGCCGCAACCTGTTCGACGGCACCAATCGCAGCTGCCGGCTGTTCGCGCGCACCTTCGTGCGCGAAGCCGGGCAGTGCGACGGCATGGTCGGGCGCTACAGCTCGCACCTGGGCACGGTGATTCGTGATGATTATCCGCTGGACCATTTCGACATCGTCAATCAGTCGCTGGGACTGGTGGGCAGGGGAGCGGAGCCGATCCGGCTGTTTGTCGAGCATGCGCAGCGGTTGAAGGATGCCGGGGTGTAGMSQRCATRYPLVLVPGMLGFIRLVLYPYWYGIVEALRRGGAVVVAVKVSPLHSSEVRGEQLLARIEEILRETGAQKVNLIGHSQGALTARYAAALRPDLVASVTSVAGTNHGSELADYLQDHYPADSAKGRLLSAFLRLINALMSLLDTGYHGPKLPVDIRASHASLTTAGVALFNERYPQGLPQTWGGQGPEEVNGVRYYSWSGTLQPGKTDRGRNLFDGTNRSCRLFARTFVREAGQCDGMVGRYSSHLGTVIRDDYPLDHFDIVNQSLGLVGRGAEPIRLFVEHAQRLKDAGVPGPT0024445_1536DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_LIPASE_ACTIVITY,PGPT0024445-lip|lipC-K01046NANA
D1-35_04951252hypothetical proteinATGAAGTGCAGTGTAGACAAAGCCTGTTACACCTTCATCGCCAGATCTTCATTGCTTGATCTACCGCTTTCGCGAGCAGGCTCGCTCCCACAAGGGGCACGGCGCAGAGCCACTGTGGGAGCGAGCCTGCTCGCGAAGAACGATAACGCGGTCGTGCTGATGTGCTACACCCCGGCATCCTTCAACCGCTGCGCATGCTCGACAAACAGCCGGATCGGCTCCGCTCCCCTGCCCACCAGTCCCAGCGACTGAMKCSVDKACYTFIARSSLLDLPLSRAGSLPQGARRRATVGASLLAKNDNAVVLMCYTPASFNRCACSTNSRIGSAPLPTSPSDNANANANANA
D1-35_04952297psiFPhosphate starvation-inducible protein PsiFATGAAGATGCTGCGTGTCCCTTTGTTGATGATCGGCCTGCTGCTGTGTTCCCAGGGCTTCGCCGCCACCGCCCAACAGACCAAGATGACCACCTGCAACGCCGACGCCACCGCCAAGGCCCTCAAGGGTGACGAACGCAAGGCTTTCATGAGCAACTGCCTGAAGGCCACTCCGGCCACCGCTGAACCCAGTACACCGCAGGAACGCATGAAGACCTGCAACGCCACGGCGACGACCCAGGCCTTGAAGGGCGATGCGCGCAAGGCGTTCATGAGTGATTGCCTGAAGAAAAAGTAAMKMLRVPLLMIGLLLCSQGFAATAQQTKMTTCNADATAKALKGDERKAFMSNCLKATPATAEPSTPQERMKTCNATATTQALKGDARKAFMSDCLKKKNANANANANA
D1-35_049531143hypothetical proteinATGAGGCCGGAGCAAGAAACCAAAAAACGTCTGAACCCCGGCCAGGATCGGCCGATACAATCCCTAGTGCTGCCAGCGGAACGCTGGCAGACTGCCGATCCTTTCATGCCGTTTTTGTCCTGGGGCTGTATGCCAACGTTTTCTCAGCGTCATGTGTTGTTGGTGATCAGTTGGGTGATCATTTTTGGTGGGTTGTTGCTGGTGTTGCCGCTGCGCCTGTTGCCGAGCCTGTTGGCCGGGCTGCTGGTGTTCGAGCTGGTCAACATGCTCACCCCGCAGTTGCAACGACTGATCGAAGGCCGGCGTGCCCGCTGGCTGGCGGTAGCATTGTTGGGCACGCTGGTGGTCAGTGTGCTGAGCCTGATTTTCGCCGGGGCCTTCAGTTTCCTGCTGCACGAAGCGGAAAACCCGGGCGCATCCCTGGATAAATTCATGGGCGTGGTCGACCGCGCCCGTGGGCAATTGCCGCCGTTCATCGACGCCTACCTGCCGGCCAGCGCCGCCGAGTTCCGGGTGGCGATCGGCGACTGGGTGAGCAAGCACCTGAGCGACCTGCAGCTGGTGGGCAAGGACGCGGCGCACATGTTCGTGACGTTGCTGATCGGCATGGTGCTGGGCGCCATCATCGCCTTGCAGCGCATCCCCGACCTGACCAAGCGCAAGCCCCTGGCCGCCGCGCTGTTCGACCGCCTGAACCTGCTGGTGAAGGCGTTTCGCAACATCGTTTTTGCCCAGATCAAGATTTCCCTGCTCAACACCTTCTTCACCGGGATTTTCCTAGCGGTGGTGCTGCCGCTGTTCGGCATTCAACTGCCGTTGACCAAGACCCTGATCGTGATGACGTTCCTGCTGGGGCTGTTGCCGGTGATCGGCAACCTGATGTCGAACACCCTGATCACCATCGTCGCATTGTCGCTGTCGATCTGGGTGGCCGTGGCGGCGCTGGGTTATCTGATCGTGATCCACAAGCTCGAATACTTCCTCAACGCCCGCATCGTCGGCGGGCAGATCAGTGCCAAGTCGTGGGAACTGCTCATGGCAATGCTGGTGTTCGAAGCCGCGTTCGGCCTGCCGGGTGTGGTGGCGGGGCCGATCTACTATGCGTATCTCAAGAGCGAGTTGAAGCAGGTGGGGATGGTTTGAMRPEQETKKRLNPGQDRPIQSLVLPAERWQTADPFMPFLSWGCMPTFSQRHVLLVISWVIIFGGLLLVLPLRLLPSLLAGLLVFELVNMLTPQLQRLIEGRRARWLAVALLGTLVVSVLSLIFAGAFSFLLHEAENPGASLDKFMGVVDRARGQLPPFIDAYLPASAAEFRVAIGDWVSKHLSDLQLVGKDAAHMFVTLLIGMVLGAIIALQRIPDLTKRKPLAAALFDRLNLLVKAFRNIVFAQIKISLLNTFFTGIFLAVVLPLFGIQLPLTKTLIVMTFLLGLLPVIGNLMSNTLITIVALSLSIWVAVAALGYLIVIHKLEYFLNARIVGGQISAKSWELLMAMLVFEAAFGLPGVVAGPIYYAYLKSELKQVGMVNANANANANA
D1-35_049541275dnaK_2Chaperone protein DnaKATGAAAAACCCATCCCCGGCGCGTGCCTGCGGTATCGACTTCGGCACGTCCAACTCCACCGTCGGCTGGCTGCGCCCCGGCATGGAAACGTTGATCGCGCTGGAGGACGACAAGATCACCTTGCCCTCGGTGGTCTTTTTCAATCTTGAGGAACGTCGCCCGGTCTACGGTCGCCTGGCACTGCACGAATACCTGGAAGGCTACGAAGGCCGGCTGATGCGCTCGCTCAAGAGCCTGCTGGGCTCCAAGCTGATCAAGCACGATACCAGCGTGCTCGGCACGGCGATGCCGTTCAAGGATCTGCTGGGGTTGTTCATCGGTCAGTTGAAGAAGCGTGCCGAAGCCACCGCCGGGCGGGAATTCGAAGAAGTGGTGCTGGGGCGTCCGGTGTTTTTCGTTGATGACGATGAAATGGCCGACCAGGAAGCCGAGAACACTTTGGTGGACGTGGCGCGGGCCATCGGTTTCAAGGAAGTCTCCTTCCAGTACGAACCCATTGCGGCGGCATTCGATTATGAATCGACCATCGAAAAAGAAGAGCTGGTGCTGATCGTCGACATCGGCGGCGGTACTTCGGACTTCTCCCTGGTGCGCCTGTCTCCCGAGCGCCGCATGCACGACAACCGTCACGCCGACATCCTCGCCACAGGCGGCGTGCACATCGGCGGCACCGATTTCGACAAGCAGCTCAGCCTGCAAGGCCTGATGCCGCTGTTCGGCTACGGCAGCCGGATGAAAAGCGGCGCCTACATGCCCACCAGCCATCACATGAACCTGGCGACCTGGCACACCATCAACGCGGTGTATTCGCAAAAGTCCACGCTGGCCCTGGGCAGCATGCGCTACGACATCGAAGACACCGGCGGTATCGACCGGCTGTTCAAGCTGATCGAACAGCGTGCCGGGCATTGGCTGGCGATGGAAGTGGAGGAAACCAAGATTCAGCTGACCCACGCCGACCAGCGCCACGTGGCCCTGGACCGGATCGAGCCGGGCCTGAGCGTGGACCTGAGCCGCGCCTTGTTCGAATCGGCGATCGACGGCCTGCTGGAGCGAGTGCGCAACAGCGTCACGCAACTGCTCAACGATGCCAACGTGCGGGTTGATCAAGTCGACACGGTGTTCTTCACCGGCGGCTCCAGCGGCATTCCGGCGCTGCGCAACAGCGTCGCGGCGATGCTGCCCCAGGCGCGCCATGTAGAAGGTAATATTTTCGGCAGTATTGGCAGCGGGTTGGCGATCGAGGCGATGAAGCGGTATGGCAGCCAGGTCTGAMKNPSPARACGIDFGTSNSTVGWLRPGMETLIALEDDKITLPSVVFFNLEERRPVYGRLALHEYLEGYEGRLMRSLKSLLGSKLIKHDTSVLGTAMPFKDLLGLFIGQLKKRAEATAGREFEEVVLGRPVFFVDDDEMADQEAENTLVDVARAIGFKEVSFQYEPIAAAFDYESTIEKEELVLIVDIGGGTSDFSLVRLSPERRMHDNRHADILATGGVHIGGTDFDKQLSLQGLMPLFGYGSRMKSGAYMPTSHHMNLATWHTINAVYSQKSTLALGSMRYDIEDTGGIDRLFKLIEQRAGHWLAMEVEETKIQLTHADQRHVALDRIEPGLSVDLSRALFESAIDGLLERVRNSVTQLLNDANVRVDQVDTVFFTGGSSGIPALRNSVAAMLPQARHVEGNIFGSIGSGLAIEAMKRYGSQVNANANANANA
D1-35_04955939cbpACOG2214Curved DNA-binding proteinATGGATTTCAAAGACTATTACAAGATCCTGGGTGTGGAGCCGACGGCCGACGACGCCACGATCAAGGCCGCCTATCGCAAACTGGCGCGTAAATACCACCCGGATGTAAGCAAAGAGAAAGACGCGGAGACCAAGTTCAAGGACGTCTCCGAGGCGTATGAAGCGCTGAAGAGTGCGGACAAACGCGCCGAGTACGATGACTTGCGCCGCTATGGCCAGCACGGCCAGCCGTTCCAGGGACCGCCGGGGTGGCAGAGCCGTGGTGGTTTTGGCGGGCAGGACACTGGCGATTTCTCGGATTTCTTCAGTTCGATCTTTGGCAATCGCGGGCCGGGTTTCGGTGGCGGACAATCGGGTCGCAGCGCCGGCCGTCGGGGGCAAGACGTGGAAATGGAATTACCGATCTTCCTGGAAGAGACCCTGTCGAACGAATCGAAGAAGGTCAGCTTCCAGGTGCCGCAGTACAACGCCGCGGGCCAGCATGTGAGCAATACCAGCAGAAGCCTGAACGTGAAGATCCCGCTGGGAGTGACCGATGGCGAGCGCATCCGCCTCAAGGGCCAGGGCGCGCCCGGCATCGGTGGCGGCGCCAATGGCGACTTGTACCTGACCATTCGTTTCGCCCCGCACCCCAAGTTCGATGTCGAAGGCCAGGACCTGATCATCACTTTGCCCCTGGCGCCGTGGGAACTGGCGTTGGGCACCGAGGTGGCGGTGCCGACCCTCACCGGCAAGATCAACCTCAAGGTGCCGGCCGGCAGCCAGAACGGCCAGCGCATGCGCGCCAAGGGCCACGGCCTGCGCAACAAGGCCGGCGAGCGCGGTTACCTGTTCGTGCAGCTCAAGGCCGTGATGCCCAAGGCCAGCGACGAATCGGTCAAGGCGCTGTGGGCGGAGCTGGCGAAGAAAGCCGCATTTGATCCACGGGAGAACTTCTGAMDFKDYYKILGVEPTADDATIKAAYRKLARKYHPDVSKEKDAETKFKDVSEAYEALKSADKRAEYDDLRRYGQHGQPFQGPPGWQSRGGFGGQDTGDFSDFFSSIFGNRGPGFGGGQSGRSAGRRGQDVEMELPIFLEETLSNESKKVSFQVPQYNAAGQHVSNTSRSLNVKIPLGVTDGERIRLKGQGAPGIGGGANGDLYLTIRFAPHPKFDVEGQDLIITLPLAPWELALGTEVAVPTLTGKINLKVPAGSQNGQRMRAKGHGLRNKAGERGYLFVQLKAVMPKASDESVKALWAELAKKAAFDPRENFPGPT0014545_6230DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014545-dnaJ-K03686NANA
D1-35_04956300cbpMChaperone modulatory protein CbpMATGAACAACCCGATCATTGAACTGAACCTGATGGAATTCTGTGAGGCTGCTGCGTTGGCCGATGTCCATGTGATTGAAATCGTCGAACACGGCATTCTCGAACCTCACGGCACGGCCCCCACGGACTGGCGTTTCACTGATTACGAACTGGTCCTGGCCCGGCGTGCAGCGAAGCTGCGCCGCGAGTTGGAGCTGGAATGGGAAGGCGTCGCCCTGGCGCTGGACCTGCTGGAAGAGGTGCAGCAGCTGCGCAGCGAAAACCGCATGCTCAAGCAGCGGCTGGGGCGGTTGGTCGAATGAMNNPIIELNLMEFCEAAALADVHVIEIVEHGILEPHGTAPTDWRFTDYELVLARRAAKLRRELELEWEGVALALDLLEEVQQLRSENRMLKQRLGRLVENANANANANA
D1-35_049571701ureCUrease subunit alphaATGAAAATCTCCCGCCAAGCCTACGCCGACATGTTCGGCCCCACCGTCGGCGACAAGGTTCGCCTGGCCGATACCGAGTTGTGGATCGAAGTGGAAAAGGACTTCACCACCTACGGCGAAGAAGTGAAGTTCGGCGGCGGTAAGGTGATTCGCGATGGCATGGGCCAGAGCCAACTGCTGGCCGCCGAGGTGGTCGACACGTTGATCACCAACGCACTGATCATTGACCACTGGGGCATCGTCAAGGCCGATGTCGGCCTCAAGGACGGGCGCATCGCGGCGATTGGCAAGGCCGGCAACCCGGACATCCAGCCCGACGTGACCATCGCCATCGGCGCGAGCACCGAAGTGATCGCCGGCGAAGGCATGATCCTCACCGCCGGCGGCATCGACACCCACATCCACTTCATCTGCCCGCAACAGATCGAAGAAGCCCTGATGAGCGGTGTCACCACCATGATCGGCGGCGGCACGGGCCCGGCTACCGGGACCAACGCCACCACCTGCACCTCCGGGCCGTGGCACCTGGCGCGCATGCTCCAGGCCGCCGACGCGTTCCCGATGAACATCGGTTTCACCGGCAAGGGCAACGCCAGCCTGCCGGAGCCGCTGGTCGAGCAGGTCAAGGCCGGGGCCATCGGCCTGAAGCTGCATGAAGACTGGGGCACCACGCCGGCGGCCATCGACAACTGCCTGAGCGTGGCCGACCAGTACGATGTGCAGGTGGCGATCCACACCGACACCCTCAACGAATCCGGCTTCGTCGAAACCACCCTGGCGGCGTTCAAGGGCCGCACCATCCACACCTACCACACCGAAGGTGCCGGTGGCGGTCATGCGCCGGACATCATCAAGGCCTGCGGTTTTCCTAACGTGTTGCCCAGCTCCACCAACCCGACCCGGCCATTCACCCGCAACACCATCGACGAGCATCTCGACATGCTGATGGTCTGCCACCACCTGGACCCGAGCATCGCCGAAGACGTGGCCTTCGCCGAAAGCCGCATCCGCCGTGAAACCATCGCTGCCGAAGACATTCTCCATGACCTCGGCGCGTTCTCGATGATCAGCTCCGACAGCCAGGCCATGGGCCGCGTCGGCGAGGTCATCACCCGCACCTGGCAAACCGCCGACAAGATGAAAAAGCAGCGCGGCGCCCTGCCCGGCGATGGCGCCGGTAACGACAATTTCCGCATCAAGCGCTACATCGCCAAGTACACCATCAACCCGGCGATCACCCATGGCATCAGCCATGAGGTGGGCTCCATCGAAGTCGGCAAATGGGCCGACCTGGTGTTGTGGCGCCCGGCGTTCTTCGGCGTCAAACCGACCTTGATTCTCAAGGGCGGGGCGATTGCCGCCAGCCTGATGGGCGATGCCAACGCCTCGATTCCAACACCGCAACCGGTGCACTACCGGCCGATGTTCGCCAGCTACGGCGGCTCACGACACGCCACCAGCCTGACCTTCATCAGCCAGGCCGCCGCCGAGGCGGGCCTGCCGGAGCAATTGGGCTTGAAGAAACGGATCGCCGTGGTGAAAGGTTGCCGCGATGTGCAGAAGACCGACCTGATCCACAACGACTACCTGCCGAGCATCGACGTCGACCCGCAAACCTATCAGGTCAAGGCCGATGGCGTGCTGTTGTGGTGTGAACCGGCGGACGTCCTGCCGATGGCGCAGCGGTATTTTCTGTTTTGAMKISRQAYADMFGPTVGDKVRLADTELWIEVEKDFTTYGEEVKFGGGKVIRDGMGQSQLLAAEVVDTLITNALIIDHWGIVKADVGLKDGRIAAIGKAGNPDIQPDVTIAIGASTEVIAGEGMILTAGGIDTHIHFICPQQIEEALMSGVTTMIGGGTGPATGTNATTCTSGPWHLARMLQAADAFPMNIGFTGKGNASLPEPLVEQVKAGAIGLKLHEDWGTTPAAIDNCLSVADQYDVQVAIHTDTLNESGFVETTLAAFKGRTIHTYHTEGAGGGHAPDIIKACGFPNVLPSSTNPTRPFTRNTIDEHLDMLMVCHHLDPSIAEDVAFAESRIRRETIAAEDILHDLGAFSMISSDSQAMGRVGEVITRTWQTADKMKKQRGALPGDGAGNDNFRIKRYIAKYTINPAITHGISHEVGSIEVGKWADLVLWRPAFFGVKPTLILKGGAIAASLMGDANASIPTPQPVHYRPMFASYGGSRHATSLTFISQAAAEAGLPEQLGLKKRIAVVKGCRDVQKTDLIHNDYLPSIDVDPQTYQVKADGVLLWCEPADVLPMAQRYFLFPGPT0000965_1980DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0000965-ureC-K01428NANA
D1-35_04959306ureBUrease subunit betaATGATTCCAGGCCAGTACCAGGTCCAGCCCGGCGACATCGAGCTCAACGTCGGCCGCCGTACCCTCAAGCTGAACGTCGCCAACAGCGGCGATCGGCCGATCCAGGTCGGCTCGCACTTTCATTTTTTCGAAACCAACGACGCCCTGGCCTTCGACCGCGCCGCCAGCCGAGGCATGCGCCTGAACATCCCGGCCGGCACGGCGGTGCGCTTCGAACCGGGTCAGAGCCGCGAGGTGGAACTGGTGGACCTGGCCGGGCATCGGCGGGTGTTCGGGTTTGCCGGGCGGGTCATGGGCGATCTGTAAMIPGQYQVQPGDIELNVGRRTLKLNVANSGDRPIQVGSHFHFFETNDALAFDRAASRGMRLNIPAGTAVRFEPGQSREVELVDLAGHRRVFGFAGRVMGDLPGPT0000960_1129DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0000960-ureB-K01429NANA
D1-35_04960534ttrAcetyltransferaseATGAATGCCGCGCAGTTGCGCCGAGTCCACGCTGAAAGCTTCGCGCATTACCGCCAGGGCTTGATTGATCTGCTGCTCGACGCCGTGGGCTATGGCGCCAGCGTGGGGTTCATGGCTGACCTAGATGCCGTCCAGGCCCGCGCCTATTTCGACGAGGTCCAGGCCAGCCTCAACCAGGGCCATCTGCTGCTGTGGGTGGTGGTCAAGGACGAGCAGGTGCAAGCCAGCGTCCAGCTCGCGCTGTGCCAGAAGCCCAACGGCCTCAACCGCGCCGAAGTGCAAAAGCTGCTGGTGCGCGGCGATGCCCGCCGCCGCGGCCTCGGCCAGCAGTTGATGAATGCCTTGGAGCTCGGTGCGCGCCAGCACCAGCGCGGCTTGCTGTACCTCGACACCGAGGCCGGTTCCGAGGCCGAGGCGTTCTACCGCGCCATGGGCTACACCCGCGTCGGCGAACTGCCCGACTACTGCCAGAGCCCGGACGGGACCTACAGCCCGACCGCCATTTACTACAAGACTTTGGGGCAACCGCAATGAMNAAQLRRVHAESFAHYRQGLIDLLLDAVGYGASVGFMADLDAVQARAYFDEVQASLNQGHLLLWVVVKDEQVQASVQLALCQKPNGLNRAEVQKLLVRGDARRRGLGQQLMNALELGARQHQRGLLYLDTEAGSEAEAFYRAMGYTRVGELPDYCQSPDGTYSPTAIYYKTLGQPQPGPT0012925_89DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-TABTOXININE-BETA-LACTAM_RESISTANCE,PGPT0012925-ttr-K19113NANA
D1-35_04961534L-methionine sulfoximine/L-methionine sulfone acetyltransferaseATGACTTATCAGATTCGTGACGCCCGCCCTGCCGACCTGCCGGCGATCCGTGACATCTACAACGATGCGGTCCTCAACACCACGGCGATCTGGAACGAACAGGCTGTGGACCTGGGCAATCGCCAGGCCTGGTTCAGCGCCCGGCAAATCCAGGGTTATCCGGTGCTGGTGATCAGCGACGCCGAAGATGACGTGCTCGGCTACGCTTCATTCGGCGACTGGCGGCCGTTCGACGGTTTCCGCCACACCGTGGAGCATTCGGTGTACGTACGCAGCGATCAACGTGGCAATGGGCTCGGCCCGTTGCTGATGGGTGCGCTGATCGAGCGCGCCAGGGCCTGCGGCAAACACGTGATGGTTGCGGCCATCGAGAGCGGCAATGCGGCGTCGATTCGCCTGCACGAGCGGGCCGGTTTTGCCATCACCGGGCAGATGCCCCAGGTGGGCACCAAGTTTGGTCGCTGGCTGGACCTGACCTTCATGCAGTTGGTCCTCAATCCCGGGGCGCCACCGCCCACCATCGACAAGGAGTGAMTYQIRDARPADLPAIRDIYNDAVLNTTAIWNEQAVDLGNRQAWFSARQIQGYPVLVISDAEDDVLGYASFGDWRPFDGFRHTVEHSVYVRSDQRGNGLGPLLMGALIERARACGKHVMVAAIESGNAASIRLHERAGFAITGQMPQVGTKFGRWLDLTFMQLVLNPGAPPPTIDKENANANANANA
D1-35_04962303ureAUrease subunit gammaATGGACCTGACCCCACGCGAAAAAGACAAGCTGCTGATCTTCACCGCCGGCCTCGTCGCCGAGCGGCGCCTGGCTCGTGGCCTGAAGCTCAACTATCCGGAAGCCATGGCCTACATTTCCGCCGCGCTGCTGGAAGGCGCTCGTGACGGCCAGACCGTGGCCGAGCTGATGCACTACGGCACAACGCTGCTGAGCCGCGAGCAGGTGATGGAAGGCATTCCGGAAATGATCCCCGAGATCCAGGTCGAGGCGACATTTCCCGACGGCACCAAACTGGTCACCGTCCACCAGCCCATCGCCTGAMDLTPREKDKLLIFTAGLVAERRLARGLKLNYPEAMAYISAALLEGARDGQTVAELMHYGTTLLSREQVMEGIPEMIPEIQVEATFPDGTKLVTVHQPIAPGPT0000955_339DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0000955-ureA-K01430NANA
D1-35_04963843ureDUrease accessory protein UreDATGAATCTACCTGTATCGCCCTCCGCCCTGTTCACCCCCAGCTGGCATGCCGAGCTGGACTTGGGCTATGCCCGATTCGGCGACTGCACGCGTCCGGTCCAGCGTCGCCACAAAGGTCCACTGCGGGTGCAGAAACACCTGTACGCCGAAGGTCCCGAAGTCTGCCAGCACATCATCGTCCACCCGCCCGGCGGGATTGCCGGCGGTGATCGGCTGGACATCTCGGCTCACGTCGGCCCCGGTGCCTGGGCGCAACTGACCAGCCCCGGCGCGGCCAAGTGGTACCGCGCGGCCGGCCCGGCGTACCAGCAACTGAAACTGAGCGTGGCTGGCGGTGCGACCCTGGAATGGCTGCCTCAGGAAACCATCGTGTTCAGCGCGGCCCAGGCCGAACTCAGCACCTGCATCGATCTGCAGGGCGACGCCCGGCTGTTCTACTGGGACATGGTTGCCCTCGGCCGACCGGCCAGCGGCGAACGCTTCGACCTCGGCCACTTTCAATCGCGGCTGGACATTCGCCGCGACGGCCAGTTGTTGTGGCATGAACGCCAGCGCATTGTCGGCGGTGACGGCTTGCTCGATTCCCCCATCGGGCTGGGCGGTGATCCGGTGTTTGCGACGTTGCTGGTAACCGGCGAGATCGACAGCGGGCTGCTGGAGCGCTGCCGATCCCTCGGCCATGCCGTGCGCGGCGACCTGACCCAGTTGCCCGGCCTGGTCGTGGCCCGCTGCCTGGCGAGCGAGGCATTACTGGCGCGCGGGTGGTTGATTGAATTGTGGCGCTTGCTCAGGCCCGCATTGCTCGGACGAGAAGCCATGCCACCGAGAATCTGGAGTACCTGAMNLPVSPSALFTPSWHAELDLGYARFGDCTRPVQRRHKGPLRVQKHLYAEGPEVCQHIIVHPPGGIAGGDRLDISAHVGPGAWAQLTSPGAAKWYRAAGPAYQQLKLSVAGGATLEWLPQETIVFSAAQAELSTCIDLQGDARLFYWDMVALGRPASGERFDLGHFQSRLDIRRDGQLLWHERQRIVGGDGLLDSPIGLGGDPVFATLLVTGEIDSGLLERCRSLGHAVRGDLTQLPGLVVARCLASEALLARGWLIELWRLLRPALLGREAMPPRIWSTPGPT0000970_1108DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-UREA_USAGEN-AQUISITION-UREA_METABOLISM,PGPT0000970-ureD-K03190NANA
D1-35_04964699livF_3COG0410High-affinity branched-chain amino acid transport ATP-binding protein LivFATGCTGCAAGTCGACAAGCTGCACCAGTACTACGGCGGTAGCCACATCCTGCGGGGCCTGTCGTTCGACGTGAAGGTCGGCGAGGTGACGTGCCTGCTGGGCCGCAACGGTGTGGGCAAGACCACCCTGCTCAAATGCCTGATGGGCCTGCTGCAGGCCAAGGAAGGCGTGGTGAACTGGGAAGGCAAGGCCATCACCACCTTCAAGCCGCACCAGCGGGTGCATGCCGGCATCGCTTACGTGCCCCAGGGCCGGGAGATTTTCGCTCGGCTGACGGTGGAAGAAAACCTGCTGATGGGCCTGTCGCGTTTTCCCGGTTCCGAAGCCAAGGAGGTGCCGGCCTTTATCTACGAACTGTTCCCGGTGCTGCTGCAGATGAAACAGCGCCGCGGCGGTGACCTGTCTGGTGGCCAGCAACAGCAGCTCGCCATTGGCCGGGCCCTGGCCAGCCGTCCGCGCCTGCTGATTCTCGACGAGCCCACCGAAGGCATCCAGCCGTCGGTGATCAAGGAGATTGGCGCGGTGATCAGGAAACTCGCGGCCCGGGGCGACATGGCGATCTTGCTGGTGGAGCAGTTCTACGACTTCGCCGCCGAGCTGGCCGATCAGTACCTGGTGATGTCCCGGGGCGAAATTGTCCAGCAGGGTCGCGGCGAAAATATGGAGGCAGAGGGTGTGCGCGGGCTGGTAACGATCTAGMLQVDKLHQYYGGSHILRGLSFDVKVGEVTCLLGRNGVGKTTLLKCLMGLLQAKEGVVNWEGKAITTFKPHQRVHAGIAYVPQGREIFARLTVEENLLMGLSRFPGSEAKEVPAFIYELFPVLLQMKQRRGGDLSGGQQQQLAIGRALASRPRLLILDEPTEGIQPSVIKEIGAVIRKLAARGDMAILLVEQFYDFAAELADQYLVMSRGEIVQQGRGENMEAEGVRGLVTIPGPT0000945_654DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-UREA_USAGEN-AQUISITION-UREA_TRANSPORT,PGPT0000945-urtE-K11963NANA
D1-35_04965876lptB_4COG1137Lipopolysaccharide export system ATP-binding protein LptBATGATGCGAATCACACCCACGGCGGACTTCATGCTCGAACCGATTATCGAGCCCCCTGTCGATGCCAATCGGGACCAAGGCAGCAGCCGCGATGCGATCGGCCTCGGCCAAGCCGCTGGCGTGGGCCTGGACACCCGCCACGGCACCATCCTGACCCTGGAAGACATCAGCGTCAGCTTCGACGGCTTCAAGGCGCTCAACGATCTGAACCTGTACATCGGCGTCGGCGAATTGCGCTGCATCATCGGCCCCAACGGTGCCGGCAAGACCACCTTGATGGACGTCATTACCGGCAAGACCCGACCCAGCCACGGCAAGGCCTGGTTTGGCGAAACCCTGGACCTGACCAGCATGAGCGAAGTGCAGATTGCCCAGGCCGGTATCGGCCGCAAGTTCCAGAAGCCGACGGTGTTCGAAGCCCTGAGCGTGTTCGAAAATCTGGAGCTGGCGCTCAAGACCGACAAATCGGTATGGGCCAGCCTGCGGGCGAAACTGACCGGCGAGCAACATGACCGTATCGGCGAAGTGCTCGAAACCATCCGCCTCACCGCCTCGGTCAATCGCGCCGCCGGGTTGCTGTCTCACGGGCAGAAGCAATTTCTCGAGATCGGCATGCTGCTGGTCCAGGACCCGCAACTGCTGCTGCTCGACGAACCGGTGGCGGGCATGACCGACGCCGAAACCGACTTCACCGCCGAGCTGTTCAAGTCCCTGGCCGGCAAACATTCGCTGATGGTGGTGGAACACGACATGGGCTTCGTCGGCGCGATCGCTGATCACGTCACCGTGCTGCACCAGGGCAGTGTGCTGGCCGAAGGGTCGCTGGAGCAGGTGCAGGCCGATGAGCGGGTGATCGAGGTGTATCTCGGTCGCTAGMMRITPTADFMLEPIIEPPVDANRDQGSSRDAIGLGQAAGVGLDTRHGTILTLEDISVSFDGFKALNDLNLYIGVGELRCIIGPNGAGKTTLMDVITGKTRPSHGKAWFGETLDLTSMSEVQIAQAGIGRKFQKPTVFEALSVFENLELALKTDKSVWASLRAKLTGEQHDRIGEVLETIRLTASVNRAAGLLSHGQKQFLEIGMLLVQDPQLLLLDEPVAGMTDAETDFTAELFKSLAGKHSLMVVEHDMGFVGAIADHVTVLHQGSVLAEGSLEQVQADERVIEVYLGRPGPT0000940_181DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-UREA_USAGEN-AQUISITION-UREA_TRANSPORT,PGPT0000940-urtD-K11962NANA
D1-35_049661077hypothetical proteinATGAACCAGCCCCTGATGCTCACGGCCACACAAAAGGCCGGTCCCAAACTCACCGTTGCCGTCGGCGCGCTGATCCTCGCCGTGCTGCTGAGCCTGCCGTTGCTGTCGTTGCTGGCGGCGGACAATCCGCTGCACATCTCGGCCTACACGCTGACCCTGGTGGGCAAGATCCTCTGCTATGCCATCGTCGCCCTGGCGCTGGACCTGGTCTGGGGCTACGCCGGCCTGCTCTCCCTCGGCCACGGCCTGTTCTTCGCCCTGGGCGGCTACGCCATGGGCATGTACCTGATGCGCCAGGCCGCCGGTGACGGCCTTCCGGCATTCATGACGTTTTTGTCGTGGACCGAACTGCCCTGGTACTGGGCCGGCACCGACAGTTTCCTCTGGGCGCTGTGCCTGGTGGTGTTGGCACCGGGTTTGCTGGCACTGGTTTTCGGCTTCTTCGCGTTCCGCTCGCGGATCAAGGGCGTGTATTTCTCGATCATGACCCAGGCCCTTACCTTCGCCGGGATGCTGCTGTTTTTCCGCAACGAGACGGGTTTTGGCGGCAATAACGGCTTCACCAATTTCCGTTCGATCCTGGGCTTTGGCATCACCGAGCCGGGCACCCGCGCGGTGCTGTTTTTTGCCACGGTGCTGTTGCTGGTGGCGAGCCTGTTCATCGGTTGGCGCCTGGCCCGCAGCAAGTTCGGACGGGTGCTGACGGCCCTGCGCGATGCGGAAAACCGCCTGATGTTCTGCGGCTACGATCCCCGTGGTTTCAAGCTGTTCGTCTGGGTGTTGAGCGCAGTGTTGTGCGGCCTGGCGGGGGCGCTGTACGTGCCGCAGGTGGGCATCATCAACCCCAGCGAAATGTCGCCAACCAACTCAATCGAAGCTGCCGTGTGGGTGGCCCTTGGCGGGCGCGGCACGCTGATCGGACCGCTGCTGGGCGCTGGCGTGGTCAATGGCATGAAGAGCTGGTTCACCGTGGCGTTTCCTGAGTACTGGCTGTTCTTCCTCGGCGCGTTGTTCATTGTCGTGACGCTGTATCTGCCCAAGGGCGTGATCGGCTTGCTGAAGAAAAGGGGCGAATGAMNQPLMLTATQKAGPKLTVAVGALILAVLLSLPLLSLLAADNPLHISAYTLTLVGKILCYAIVALALDLVWGYAGLLSLGHGLFFALGGYAMGMYLMRQAAGDGLPAFMTFLSWTELPWYWAGTDSFLWALCLVVLAPGLLALVFGFFAFRSRIKGVYFSIMTQALTFAGMLLFFRNETGFGGNNGFTNFRSILGFGITEPGTRAVLFFATVLLLVASLFIGWRLARSKFGRVLTALRDAENRLMFCGYDPRGFKLFVWVLSAVLCGLAGALYVPQVGIINPSEMSPTNSIEAAVWVALGGRGTLIGPLLGAGVVNGMKSWFTVAFPEYWLFFLGALFIVVTLYLPKGVIGLLKKRGEPGPT0000935_1212DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-UREA_USAGEN-AQUISITION-UREA_TRANSPORT,PGPT0000935-urtC-K11961NANA
D1-35_049671503hypothetical proteinATGCCCACCGTCCTCCACCGCTTGATCCTCGCCATCGCACTGTTACTGCCGATGGCCTCATACGCCGGCGAAGCCGAAGACTTCGTCGCCGCCAACCCGACCCAGCAGGCCAAGCTCCTGGAAGCCTGGGCCGCGCAGCCCGACCCGGCACGCGTCGAATTGATCAATGCCCTGCAGCAAGGCCAATTGACCATCGACGGCCAGCCAAAGACCCTGCGCCTGAACAACCGTTTGCGAGGGCTGATCGAAACCGCTCTCGCCAGCCACCAGCTACTCGCCGTGGACGCCCGTGTGCGCCTGGCCGCCGCGCAGCAATTGCAAAAAAGTGCCCGCCCCGCGCAACTGGCGTTCCTTGATCGGCAACTGGCCGGCGAGCAGGACGAAGACGTGCATGCCGCCCTGAGCCTGGCCCTGGCGAACCTGCAACTGGTGGATGCCAATCCTGCCGTGCGCCTGGCCGCCGTCCGCCTGTTGGGGGAAACCGGCGACCCGCTGGCCCGCACCCGCCTGGAAGCCCTGCTCGAACCCGGCGTCGAAACCGATGCCGCCGTGCGCACCGCCGCCGAAACCAGCCTCGGCCAGGTCAAGCGCAAACTGCTTATCGGCGAGTTGCTGGGCCAGGCCTTCAGCGGCATGTCCCTGGGCTCGATCCTGCTGCTCGCCGCCCTCGGCCTGGCAATCACCTTCGGCCTGCTCGGGGTGATCAACATGGCCCACGGCGAGATGCTGATGCTCGGCGCCTACTCCACGTATGTGGTGCAGATGCTGTTCCAGCGCTTCGCCCCGAACGCCATCGAGTTCTACCCGCTGATCGCCCTGCCGGTGGCGTTTTTCATCACCGCGGCCATCGGCATGGCCCTGGAGCGCACGGTGATCCGCCACCTCTACGGGCGCCCGCTGGAAACCCTGCTCGCTACCTGGGGCATCAGCCTGATGCTGATTCAGCTGGTGCGCCTGGTGTTCGGCGCGCAGAACGTCGAAGTCGCCAACCCGGCCTGGCTCTCGGGTGGGATCCAGGTGCTGCCGAACCTGGTGCTGCCGTACAACCGCATCGTGATCATCGCCTTCGCGCTGTTCGTGGTGGTCCTGACCTGGCTGTTGCTGAACAAGACGCGCCTGGGCCTGAACGTGCGCGCCGTGACCCAGAACCGCAACATGGCCGCCTGCTGCGGCGTGCCCACCGGGCGGGTCGACATGCTCGCTTTCGGCCTCGGCTCGGGCATCGCCGGGCTCGGCGGCGTGGCTTTGAGCCAGATCGGCAACGTCGGCCCGGACCTGGGCCAGAGCTACATCATCGACTCGTTCCTGGTGGTTGTACTCGGCGGCGTCGGCCAACTGGCCGGCAGCGTGTTCGCCGCGTTCGGCCTGGGCATCGCCAACAAGATCCTCGAACCGCAGATCGGCGCCGTGCTCGGCAAGATCCTAATCCTTGCGCTGATCATTCTGTTCATCCAGAAGCGTCCGCAAGGTCTCTTCGCGCTTAAAGGACGGGTAATCGACTGAMPTVLHRLILAIALLLPMASYAGEAEDFVAANPTQQAKLLEAWAAQPDPARVELINALQQGQLTIDGQPKTLRLNNRLRGLIETALASHQLLAVDARVRLAAAQQLQKSARPAQLAFLDRQLAGEQDEDVHAALSLALANLQLVDANPAVRLAAVRLLGETGDPLARTRLEALLEPGVETDAAVRTAAETSLGQVKRKLLIGELLGQAFSGMSLGSILLLAALGLAITFGLLGVINMAHGEMLMLGAYSTYVVQMLFQRFAPNAIEFYPLIALPVAFFITAAIGMALERTVIRHLYGRPLETLLATWGISLMLIQLVRLVFGAQNVEVANPAWLSGGIQVLPNLVLPYNRIVIIAFALFVVVLTWLLLNKTRLGLNVRAVTQNRNMAACCGVPTGRVDMLAFGLGSGIAGLGGVALSQIGNVGPDLGQSYIIDSFLVVVLGGVGQLAGSVFAAFGLGIANKILEPQIGAVLGKILILALIILFIQKRPQGLFALKGRVIDPGPT0000930_966DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-UREA_USAGEN-AQUISITION-UREA_METABOLISM,PGPT0000930-urtB-K11960NANA
D1-35_049681266amiC_1Aliphatic amidase expression-regulating proteinATGAAGCGTCGTAGCTTGATCAAGGCTTTTACACTCTCGGCAAGCATTGCCGCGATGGGCATGGCCTGGTCCGTCCAGGCCGCCGAGACCATCAAGGTCGGCATCCTGCATTCGTTGTCCGGGACCATGGCGATCTCCGAAACGTCCCTCAAGGACATGGCGTTGATGACCATTGACGAGATCAACGCCAAGGGTGGCGTGAACGGCAAGAAGCTTGAAGCGGTGGTCGTGGACCCGGCATCGAACTGGCCGCTGTTTGCTGAAAAGGGCCGCCAGTTGCTGACCCAGGACAAGGTCGCCGTGGTGTTCGGCTGCTGGACCTCGGTGTCGCGCAAATCCGTGTTGCCGGTGTTCGAAGAACTCAACGGCCTGCTGTTCTATCCGGTGCAGTACGAAGGCGAAGAGATGTCGCCGAACGTGTTCTACACCGGCGCGGCGCCAAACCAGCAGGCGATTCCGGCGGTGGAGTACCTGATGAGCGAAGAAGGCGGCAGCGCCAAGCGCTACTTCCTGCTGGGCACCGACTACGTCTACCCGCGCACCACCAACAAGATCCTGCGTTCGTTCCTGCATTCCAAAGGCGTGGCGGACAAGGATATCGAAGAGGTCTACACCCCGTTCGGCCACAGCGATTACCAGACCATCGTCGCCAACATCAAGAAATTCTCTGCCGGCGGCAAGACAGCCGTCATCTCCACGGTCAATGGCGATTCCAACGTACCGTTTTATAAAGAGCTGGCGAACCAGGGCTTGAAAGCCACCGATGTACCGGTCGTGGCCTTCTCGGTGGGCGAAGAGGAACTGCGCGGCATCGACACCAAACCGCTGGTGGGTAACCTGGCGGCATGGAACTACTTCGAATCCGTGGATAACCCGGCGAACAAGAAGTTCGTCGATTCGTGGAAAGCCTACGCCAAGGCCAAGAACCTGCCGGGCGCCGACAAAGCGGTAACCAACGATCCGATGGAAGCCACCTACGTCGGCATCCACATGTGGGCGCAAGCGGTGGAAAAAGCCAAGTCCACCGATGTCGACAAAGTCCGCGAAGCCCTGGCCGGCCAGACCTTCGCCGCGCCGTCGGGCTACACCCTGACCATGGACAAGACCAACCACCACCTGCACAAGCCGGTGATGATCGGCGAGATCCAGGCCGACGGTCAGTTCAACGTGGTCTGGCAGACCGAAGGGCCGATCCGCGCGCAACCGTGGAGCCCGTTCATCGCCGGCAACGACAAGAAGCCTGACTATGCGGTGAAGAGCAACTGAMKRRSLIKAFTLSASIAAMGMAWSVQAAETIKVGILHSLSGTMAISETSLKDMALMTIDEINAKGGVNGKKLEAVVVDPASNWPLFAEKGRQLLTQDKVAVVFGCWTSVSRKSVLPVFEELNGLLFYPVQYEGEEMSPNVFYTGAAPNQQAIPAVEYLMSEEGGSAKRYFLLGTDYVYPRTTNKILRSFLHSKGVADKDIEEVYTPFGHSDYQTIVANIKKFSAGGKTAVISTVNGDSNVPFYKELANQGLKATDVPVVAFSVGEEELRGIDTKPLVGNLAAWNYFESVDNPANKKFVDSWKAYAKAKNLPGADKAVTNDPMEATYVGIHMWAQAVEKAKSTDVDKVREALAGQTFAAPSGYTLTMDKTNHHLHKPVMIGEIQADGQFNVVWQTEGPIRAQPWSPFIAGNDKKPDYAVKSNPGPT0000925_1048DIRECT EFFECTBIO-FERTILIZATIONNITROGEN_ACQUISITIONN-AQUISITION-UREA_USAGEN-AQUISITION-UREA_TRANSPORT,PGPT0000925-urtA-K11959NANA
D1-35_049691059hypothetical proteinATGAAGCTTCTCCTGGCGAAAACACACCATCAGATGCGCGTGAAAAACGAGATAGCACACTTCAGTAGCGTCTACCGGAACGAGTTTTACTCGAGCGTTCAGGAGCGACAGAGTGAAGCGGCCATGGGCGTAGCTCGCAACGTTCGCCGATTGAATGGACTGGCTCCAGCGCAAGGGCAGGGTGCCCAGTCCGAGATGGTGATTCTGGAGCCGTTTGAAGGAGAGGTCGCCTACTCCTATGCCACTCGTATGCTGAGGGCGAACGTCCCGCAAACGCCGCCCGACTTTCAAGCAAGGCTACGTCGGAAAGTCAGGGATCACGGTGCAATAAAAGTCCTGTCGATCTGCAGTGGTGCCGCGCGGATAGAAGCAGGTCTGTCGGCCGCTGTTCCGGAAGGCGTGGAATGGTCACTGCTGGATATCAATGAAGACCTGCTTCACATCGCGGCGAAGCAGTTTTCTTCAGGGGTCGGCCTCGATCTGATCGTGGCCGATGCGAATAACCTGGTGCCTACCGGTGAGCAGTGGGACGTTATTATCTGCGTCTCGGCATTGCACCATTTGATCGAGCTGGAAAAAGTGATGCTCTTTATCTCCCATAGTTTGAAAAACGATGGCGAGTTCTGGAGTGTGGGTGAGGCCGTGGGGCGCAATGGCAATCGCTTGTGGCCTGAGGCAATAATTGCGGCTGATGCCGCGTTCTCGGCATTGCCGGCACGCTACCGGCTGAACGCCGATACCCAGGTTGTCGATGCTGTCATTCCAGACAAGGACCACTCGATCGGGTGCTTCGAGGGTATTCGAAGTGAGGAAATTACCGCGCTCCTCGAACGTTGGCTCAAGCCGGTAGATGTTTACCGTACCAACTGCTTCCTCTGGCGAATGGTCAATCTCGCCTACAGTGGAAATTTTAATCTTGCAAAGGCCGAGGACCGGGCGTTGGTCATTGATATGGTTCGAGCGGAGCTGGAGCATTATCGAAATGGCGGCCTTGGTACCGAGCTATTCGGCGTGTACAAGAAGAAGCATCTTTTCAGCGACGGCGCATCAGACCAATAAMKLLLAKTHHQMRVKNEIAHFSSVYRNEFYSSVQERQSEAAMGVARNVRRLNGLAPAQGQGAQSEMVILEPFEGEVAYSYATRMLRANVPQTPPDFQARLRRKVRDHGAIKVLSICSGAARIEAGLSAAVPEGVEWSLLDINEDLLHIAAKQFSSGVGLDLIVADANNLVPTGEQWDVIICVSALHHLIELEKVMLFISHSLKNDGEFWSVGEAVGRNGNRLWPEAIIAADAAFSALPARYRLNADTQVVDAVIPDKDHSIGCFEGIRSEEITALLERWLKPVDVYRTNCFLWRMVNLAYSGNFNLAKAEDRALVIDMVRAELEHYRNGGLGTELFGVYKKKHLFSDGASDQNANANANANA
D1-35_049701011hmuU_3COG0609Hemin transport system permease protein HmuUATGAACGATCGTCGCTATGGTGCACTGCTGCTACTGCTCGGCGCGCTGCTGCTGGTGTCGTGCGTGGTGTCGCTGGGTTTCGGGCCGGCGCGGGTACCGGTGGCCGTGGTCTGGGATCTGCTGCTGCACAAGGCCTTCGGTGTCGGCGAGGTGCATTGGACAGCCGGCCAGGAGCATATCGTCTGGCTGATCCGCGTCCCGCGCCTGCTGCTCGGGGCGCTGGTAGGCGCAGGGTTGGCGTTGATCGGCGCGGTGCTGCAAGCGGTGACACGCAACCCGCTGGCCGATCCGCACCTGCTTGGCGTCACCTCCGGCGCCACCCTCGGGGCGGTCATCGTGGTGTTGCATGTCGGCGAGATCATCGGCCTGCTGACCCTGCCGCTGGCCGCCTTCATCGGCGCGCTGTCGAGTATGTTGCTGGTGCTGGCCATCGCTGCCCGCCAGGGCCGCCTGGAGAGCGATCGCCTGCTGCTCTGCGGCGTAGCGGTGTCGTTCGTGATGATGGCGGCGGCCAACCTGCTGCTGTTCCTCGGTGACCATCGCGCCAGTTCGGCGGTGATGTTCTGGATGCTCGGCGGCCTGGGCCTGGCACGCTGGGAACTGCTCGCGGTGCCAGCCGCCAGTGTATTGCTGGGGCTGGTGTTGCTGCTGGGCATGGCCCGGCCGTTGAACGCGCTGATGGCCGGGGAGCAGACCGCCGTGACCCTGGGGCTGAACGCGGCAAAGGTGCGATTATGGATCTTCCTGATTGCGTCGCTGATGACCGGCGTACTGGTGTCCATCAGCGGCTCGATCGGTTTTGTCGGGCTGATGGTGCCCCACATCGCGCGACACCTGGTGGGCGCCGAGCATCGTCGGCTGCTGCCGGCCTGCGTGCTGCTGGGCAGCCTGTTCCTGGTATGGGTGGACGTGGCGGCTCGCACGCTGATCGCGCCGGAGGATTTGCCGATCGGGGTCGCTACAGCCGCTATCGGTGGGCTGTTCTTTATTGGTCTGATGCGCCGTCGCTGAMNDRRYGALLLLLGALLLVSCVVSLGFGPARVPVAVVWDLLLHKAFGVGEVHWTAGQEHIVWLIRVPRLLLGALVGAGLALIGAVLQAVTRNPLADPHLLGVTSGATLGAVIVVLHVGEIIGLLTLPLAAFIGALSSMLLVLAIAARQGRLESDRLLLCGVAVSFVMMAAANLLLFLGDHRASSAVMFWMLGGLGLARWELLAVPAASVLLGLVLLLGMARPLNALMAGEQTAVTLGLNAAKVRLWIFLIASLMTGVLVSISGSIGFVGLMVPHIARHLVGAEHRRLLPACVLLGSLFLVWVDVAARTLIAPEDLPIGVATAAIGGLFFIGLMRRRPGPT0003770_6901DIRECT 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
D1-35_04971948btuF_2Vitamin B12-binding proteinATGATCCTGCGTCCCCTGCTGTTGCTTCCGTTATTGCTGGCAAGCTTGCATGTCCAGGCCGAGGCCAGCCGCTACCCGCTGACGATCCAGAGCTGCAACCGCCAAGTGGTGTTCAACGAGGCCCCTCGGCACGCCCTCAGCCATGACATCAACATGACCCAGATGATGCTGGCCCTGGGGCTAAAGCCACGCATGGTTGGCTACAGCGGCATCAGCGGCTGGAAATCGGTCACGCCGGACATGGCCAAGATCCTCGATGGCCTGCCGGAACTGGCCGCCAAATATCCCTCGGTGGAAACCCTGCTGGACGCCAACGTCGATTTCTTCTTCGCCGGTTGGGACTACGGCATGCGCGTCGGCGGCGACCTGACTCCGCAGACCCTGCAACCGCTGGGCATCAACGTCTACGAACTGACCGAGTCCTGCGCGTTCGTGATGAAACGTCCGGCGGCCTCGCTGGAGGACACCTACAACGACCTGCGCAACCTTGGGAAAATCTTCGACGTGCAGGATCGCGCCAACGCGCTGATCGCCACGATGCAGGCCCAGGTGGCCGAAGTGCGCAAGCACCTGCCAACCCGACAACCGCGGGTGTTCCTGTATGACAGCGGCGAAGACCGGGCCATGACCTCCGGCCGCTTGGGCATGCCCCAGGCCCTGATCGACGCGGCCGGCGGGCGCAACATTCTGGATGACGTGGACGCCAGTTGGACCCGCGTCAACTGGGAGAACGTGGTGGAGCGCAATCCCCAGGTCATCGTGATCGTCGATTACGGCGAAGTCAGTGCCGAGCAGAAACAGCAATTCCTGCTAAGCAACCCGGCCCTGCAATCAGTCGATGCGATCAAGCACCGGCGCTTCGTCGTGATCCCTTACGTACAGGCCACGCCAGGTATCGATAACGTGCTGGCGGTGCAAACCCTGGCGCAGAGTTTCCACGGCCAATGAMILRPLLLLPLLLASLHVQAEASRYPLTIQSCNRQVVFNEAPRHALSHDINMTQMMLALGLKPRMVGYSGISGWKSVTPDMAKILDGLPELAAKYPSVETLLDANVDFFFAGWDYGMRVGGDLTPQTLQPLGINVYELTESCAFVMKRPAASLEDTYNDLRNLGKIFDVQDRANALIATMQAQVAEVRKHLPTRQPRVFLYDSGEDRAMTSGRLGMPQALIDAAGGRNILDDVDASWTRVNWENVVERNPQVIVIVDYGEVSAEQKQQFLLSNPALQSVDAIKHRRFVVIPYVQATPGIDNVLAVQTLAQSFHGQPGPT0003765_8606DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003765-feuA|yvrC|ABC_FEV_S|fatB-K02016NANA
D1-35_04972789fepC_2COG1120Ferric enterobactin transport ATP-binding protein FepCATGACCTCGCTAACCCTCTCCCACCTCGCCTGGACCCCGCTGGGCCATGGCCACTGCCATCACCAGTTCCAACTGCGTGATGCCACGTTGCAGGTGGCGGCCGGGGAGTTTGTCGGGTTGATCGGGCCCAACGGCAGCGGCAAGACCAGCCTGTTGCGCTGCGCCTACCGCTTCAGCCGGCCAGAAAGCGGCGAGGTCAGACTCGAACACCACAACGTCTGGAAACAGCCCTCGCGCTGGTGCGCCCAACGCATCGCCGTGGTGCTGCAAGAGTTTCCCGACGCCTTCGGCCTGACGGTGGATGAGGTGGTCGCGATGGGGCGCACGCCGCACAAGGGTCTGTTCGATGGTGACAATCAGGAAGATCGCCGACTGATGCTCCAGGCATTGGAGTCGGCCGGGCTTGCAGGCTTTGGCGACCATGCATTCGCCACGCTCTCGGGCGGTGAGAAGCAACGGGTGATCCTCGCACGCGCCCTGGCCCAGCAGCCGCAGTTGCTGATCCTCGACGAACCGACCAATCACCTCGACCCGCGCTATCAATTGCAGTTGCTGCAACTGATCAAGGACCTGGGCATCGGCACCCTCGCCAGCATTCATGACCTGAACCTTGCCGCCGCGTTCTGCGACCGCCTGTACGTGATCGAACACGGGCGCATCGTCGCCAGCGGCACGCCCAGGGACGTCCTCACTGTCGACCTGTTGCGCGAAGTGTTCGGCGTCGCGGCCCTGGTGGACGAACACCCGCTGGCCGGCTACCCGCGAATCACCTGGATAACCCAACCATGAMTSLTLSHLAWTPLGHGHCHHQFQLRDATLQVAAGEFVGLIGPNGSGKTSLLRCAYRFSRPESGEVRLEHHNVWKQPSRWCAQRIAVVLQEFPDAFGLTVDEVVAMGRTPHKGLFDGDNQEDRRLMLQALESAGLAGFGDHAFATLSGGEKQRVILARALAQQPQLLILDEPTNHLDPRYQLQLLQLIKDLGIGTLASIHDLNLAAAFCDRLYVIEHGRIVASGTPRDVLTVDLLREVFGVAALVDEHPLAGYPRITWITQPPGPT0003760_4468DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-FeuABC|YusV-TRANSPORT_COMPLEX,PGPT0003760-yusV|ABC_FEV_A|feuD-K02013NANA
D1-35_049731380hypothetical proteinATGAGCCAACCGAAACCCAATTTCTACAACCTGGCCTGGCGCTGGCATTTTTATGCCGGGCTGTTCGTGGCGCCGTTCATGGTGATGCTGGCCCTGACCGGGATCATCTACCTGTTCAAGCCGCAACTCGATCCATTGATGTACGGCAACCTGCTGAACGTACCGGCCGGGCATCACAGCCTGGCGGCGGACGACCTGCTCAAGCAGGTCCGCCAGGCCTACCCCGAAGGCCAGGTCAAACAGTACCTGCCGCCGATCAACGCCGAGCGCAGCGCGCAATTCGTGGTGATCGACAAGGGTCGGGAGCTGAATGTGTTCATCGACCCGTACCACGGCGACGTGCTCGGCGAGCAGGACGCGAAAGACAACCTGCAAGCCATGGCCCGGGCGATTCACGGTGAATTGCTGATCGGCACCGTCGGTGACCGGCTGGTGGAAATGGCTGCCGGTTGGGGCGTGGTGCTGGTGGTTTCCGGACTGTACCTGTGGTGGCCGCGCGGGCAATCCTCGGCCGGTGTGCTGTGGCCGCGCTGGAGCGCTCGCGGTCGGGTGTTCTGGCGCGACTTGCACATCGTTGTCGGTTTCTGGGGCGCGGCGTTCCTGTTGGTGATGCTGCTCAGCGGCATGACCTGGACCGGCTTCTGGGGCAAGCAGTACGCGGACCTGTGGAACCGCTTTCCGGCGGCGATGTGGAACGACGTACCGAAGTCCGACATCGAGGCCGGCAGCCTCAACAATGCCCATCGCCAGACCGTGCCCTGGGCGGTAGAGAACACGCCAATGCCGATGTCCGGCGACCACGCCGAACACATGGCCCACGGCGGCATGCACGAAGGCCCCGCCGCGCCGACCGTCAGTTTGCAAGCGGTGCAGGACATCGCCACCGAGCGCAAGGTCGAGCCCGGCTACAGCATCACCCTGCCAACGACCGCCTCGGGCGTATTCACCATCGCCGTGTTTGCCGATGACCCGCGCAACGACGCGACCTTGCACGTGGACCAGTACACCGGAAAAGTCCTGGCCGACGTGCGCTGGGAGCACTACAACCTCGTTGCCCGCGCCACTGAAACCGGGGTGATGCTGCACGAAGGCAAGATGTTCGGTCCGGTGAACCAGATCATCGTCCTGCTGATCTGCCTGATGATCCTGCTCAGCGCCGTGAGCGGAATGGTGATCTGGTGGAAACGCCGGCCCCAGGGCAAGTTCGGCGTGCCGCCACTGCGCCACGACCTGCCGACGTGGAAGACCGGTGTGTTCATCATGTTGGCCCTGGCGGTGGTGTTCCCGTTGGTGGGGGCGTCGCTGGTGGTGGTGTGGCTGTTGGACCGGCTTGTTACCCGGTTCAATCGCCAGCCTGAGGCCGCTTCATCTTCAAGCTGAMSQPKPNFYNLAWRWHFYAGLFVAPFMVMLALTGIIYLFKPQLDPLMYGNLLNVPAGHHSLAADDLLKQVRQAYPEGQVKQYLPPINAERSAQFVVIDKGRELNVFIDPYHGDVLGEQDAKDNLQAMARAIHGELLIGTVGDRLVEMAAGWGVVLVVSGLYLWWPRGQSSAGVLWPRWSARGRVFWRDLHIVVGFWGAAFLLVMLLSGMTWTGFWGKQYADLWNRFPAAMWNDVPKSDIEAGSLNNAHRQTVPWAVENTPMPMSGDHAEHMAHGGMHEGPAAPTVSLQAVQDIATERKVEPGYSITLPTTASGVFTIAVFADDPRNDATLHVDQYTGKVLADVRWEHYNLVARATETGVMLHEGKMFGPVNQIIVLLICLMILLSAVSGMVIWWKRRPQGKFGVPPLRHDLPTWKTGVFIMLALAVVFPLVGASLVVVWLLDRLVTRFNRQPEAASSSSNANANANANA
D1-35_04974420hypothetical proteinATGCAACCTCGTCGCGCCAGCCCGTCCAGGCACCGCCGTCAGCCCATGAGCCTGACACGCGGCAGTTGGATCAGCCTGTTCGCCATGCTGATGATCTTTATCGGACCACTGGTTTCCCAGTCGATGCCGATGGATCAGCGCATGTCCATGCCTGTGTCCATGAGCATGGATATGGAGATGAGCATGGACATGCCGGTGCACGAGCACTGCGCGCCCCAGAACGAACACCACGCGTTATGGGAAAAATGCGGTTATTGCAGCCTGCTGTTCAACTGCCCGGCGCTGCCTGGCGGCCACACATTCGCCGTCTTCGGCACCCCTCCCAGCCACACCTACACCAGCCCTTCCCCGCGCCTGGGTCATGCCCGGACGGCGTTCTTTCCGGGCGCCCGCACCCGCGCACCGCCACTCGACGCGTAAMQPRRASPSRHRRQPMSLTRGSWISLFAMLMIFIGPLVSQSMPMDQRMSMPVSMSMDMEMSMDMPVHEHCAPQNEHHALWEKCGYCSLLFNCPALPGGHTFAVFGTPPSHTYTSPSPRLGHARTAFFPGARTRAPPLDANANANANANA
D1-35_04975480hypothetical proteinATGTTGAACCGACTCATCCTGCTGGCCGCCCTGCTGCTCCCGGTTGGCTTCGCCCAGGCCCACCAGTACAAGGCCGCCGAGCTTGAGATCGCCCATCCGTGGTCCCAGGAGTTGCCGCCCAACGCGCCAACCGTGGCCGCGTACTTCGTGATTCACAACCGCGGCGCCACCGCCGACAAACTGCTCGGCGTCGACTCGCCGATTGCCGGCAAGGCCGAGCTCCATGAACATGTGATGCAAAACGACCTGATGAAAATGCAAGCGGTGCCCGTCGTCGCCATCGCCCCCGGTGCGACCGTCACCTTCGCGCCGATGGCCTATCACGTGATGTTGCTGGACCTGAAGGACCGCAGCTTGCTCAGCGACGGCAAACGTTTCCCCATGACCCTGCATTTCGAAAAGGCCGGGGACGTGACGGTGGATGTCGCGGTGCAGAAAAAAGCACCCGACGGCACCAAGACACACCAGCACGCCCAGTAGMLNRLILLAALLLPVGFAQAHQYKAAELEIAHPWSQELPPNAPTVAAYFVIHNRGATADKLLGVDSPIAGKAELHEHVMQNDLMKMQAVPVVAIAPGATVTFAPMAYHVMLLDLKDRSLLSDGKRFPMTLHFEKAGDVTVDVAVQKKAPDGTKTHQHAQNANANANANA
D1-35_04976399hypothetical proteinATGTCCCGACAACGGCTTGCATTTGCCTGGATCGCCTGCTTCGCAGTGCTGTTCAACATGCTTGCCATGCCGCTTTCCAATAGCGCCGGTGCAGCCGCCAGTACGCCAGCGGAACAAATGCTGTGGGGCAGTTTCTGCTCATCCAGCGGCACGAAGATGCTGGCGGTTTCCCTCGGCAAGCTGGAACAAGGCGCGCCACAGAAAGACAATCACTCGACGATTCAGCATTGCTGGTGCTGCTCAGGCCCGGCACCGCTGATGGCGCTCGCCGGGCACGCCCCGCAGTTGTATCTGGACGCACAACGGGCCGATCGCGGTACGGCCCACGCAAAGCTCGACAGCCCGACCCCGCGCCAGCAATGGCCCAGCCTCAACCCCCGTGCTTCGCCTCTGGCCTGAMSRQRLAFAWIACFAVLFNMLAMPLSNSAGAAASTPAEQMLWGSFCSSSGTKMLAVSLGKLEQGAPQKDNHSTIQHCWCCSGPAPLMALAGHAPQLYLDAQRADRGTAHAKLDSPTPRQQWPSLNPRASPLANANANANANA
D1-35_04977291hypothetical proteinATGACCGCAGAATTCACACGTTTCGATGCAGCCAGCTACCTCAAGACGCCGGAGGAGATGGCCGCTTATCTGGATGCCTGTTTTGAAGAAGATAGCGGTGACGGCGCACTGGTTCGCGCAGCTCTCAACGATATCGCCAGGGCAAAAGGCATGACGCAGATCGCCCGTGATGCCGGGCTCGGGCGAGAGAGTCTTTATAAAGCCCTGGGCAGTGCGGGCAATCCAGAATTCACAACTATCATCAAAGTCATGAAAGCTCTGGGCTTGAAGTTACGTGCAACGACCATTTGAMTAEFTRFDAASYLKTPEEMAAYLDACFEEDSGDGALVRAALNDIARAKGMTQIARDAGLGRESLYKALGSAGNPEFTTIIKVMKALGLKLRATTIPGPT0027571_53DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-HigB-HigA_TOXIN-ANTITOXIN_SYSTEM,PGPT0027571-toxin_higB1-naNANA
D1-35_04978729cobKPrecorrin-6A reductaseATGAAACGCATCCTGCTCCTCGGTGGCGTCACCGAGGCCCTGGCCATCGCTCGCACGCTCGGCCCCGAGCACATCTACAGCTTGGCGGGCATCGGTCGCGTCCCCACCGACCTGACCTGCCAGGTACGTGTCGGCGGCTACGGCGGCGCCGAAGGCCTGGCGCAATTCATCCGCGCCGAGGGCATCGACCTGCTATTGGACGCAACCCACCCCTACGCCGCGCAAATCAGCTACAACGCCGCCCGTGCCGCCCGCGCCTGCGCCATCCCCTGCTGGGCCCTGCGCCGTCCGGCCTGGCACCCACGGGCCGGCGATGACTGGCGCGAAGTGGCCGACTGGGCCGAACTGATCCAGGCCTTGCAGCCTTTCCGCCGCCCCTTGTTCACGCTCGGCCGGGAGCCGCTGCAGCATCTGCATGAAATTCCCACCGAACAGTTCTGGACCCTGCGAGCACTGGACGTTTACCCCGGCAACGAACGCTGCGAAGTCATCGGCGCCCGTGGGCCGTTTCACATTGACGGTGAACGCGAACTGTTCGAACGGCGACGAATCGATGTGCTGGTCAGCAAGAACAGCGGCAGCACGGCCACCGAGCCGAAGCTGGAGGTGGCCCGGGAACGGGGGGTGCCGGTGCTGGTGTTGAAGCGGCCGGTGTTGGCGGGGGTGGATCGGGAGTTCGCAGCGGTCAATGACGTGCTGGATGCTTTATCCGTACCCAACGGCTTTTGAMKRILLLGGVTEALAIARTLGPEHIYSLAGIGRVPTDLTCQVRVGGYGGAEGLAQFIRAEGIDLLLDATHPYAAQISYNAARAARACAIPCWALRRPAWHPRAGDDWREVADWAELIQALQPFRRPLFTLGREPLQHLHEIPTEQFWTLRALDVYPGNERCEVIGARGPFHIDGERELFERRRIDVLVSKNSGSTATEPKLEVARERGVPVLVLKRPVLAGVDREFAAVNDVLDALSVPNGFPGPT0004640_1545DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004640-cbiJ-K05895NANA
D1-35_049791098cbiDCOG1903Cobalt-precorrin-5B C(1)-methyltransferaseATGCGTGACGAAACCGCCGAGCAACCCGCCCCCCTGCGCAGCGGCCTGACCACCGGCAGCTGCGCCACGGCCACCAGCCTGGCGGCGGCGCGACTGCTGCTGTGCGGCACCGAGGCCGATGCCGTGGAGATCGTCCTGCCCAAGGGCAAGCAGGTGCAGATGCGCCTGGAGTTCTGCCGGCTGACCGAACAAGGTGCCGAGGCCGGAACGATCAAGGACGCTGGTGATGACCCGGACGTGACTCATGGCGCGCTGTTGTTTTCCCAGGTGCGCCTGATTGCCGAACCTGGCGTGCGTTTTGTTGCCGGTCGTGGCGTCGGCACGGTGACGCGACCGGGACTAGTCTTGGCTGTCGGTGAGCCAGCGATCAACCCGGTGCCGCGCAAAATGATCAACGATCACCTGGGTCGCCTGGCCGAGGAAAGCGGTTATGCCGGGGGGTTCGAAGTCACAGTCAATGTCGAGGGCGGCGAAGCCCTGGCGCTGAAAACCATGAACCCGCGACTGGGGATCCTCGGCGGTCTGTCGATCCTCGGCACCAGCGGCATCGTCCGGCCGTTTTCCTGCGCAGCCTACATAGCGTCGATCCACCAGGGCATCGACGTGGCGAAAACCAACGGCTACCTGCACATCGCCGCGTGCACCGGCAATGCCAGCGAAGACACCATGCGCCGGGTCTACAACCTGCCGGAAATCGCGCTGATCGAAATGGGCGACTTTGTCGGCGCCGTGCTCAAGCATGTGCGCAAGGTGCCGGTGGAAAAGCTCAGTCTTTGCGGCGGCTTCGGCAAGATCAGCAAACTCGCCGCCGGGCATATGGACCTGCACAGCCGCCACTCAAGCATCGACCTGCCACAACTGGCCAAATGGGCGACGGCAATCGGTGCCGATGAGAAGTTGCAGCACGACATTCGTCAAGCCAACACCAGCCAGCAAGCCCTCGCGATGGCCAGCGCCGTCGGCATCGCCCTCGGTGATGCCGTGTGCGAGCACGCCCTGGCCTTCGCTCGCAGCGTGGTCCCGGCCCAGGTCCAGGTCGAAGTCTTCGCCATCGACCGTCAGGGCGCAATCGTCGGCCACGCTGGAGCCTTTAAATGAMRDETAEQPAPLRSGLTTGSCATATSLAAARLLLCGTEADAVEIVLPKGKQVQMRLEFCRLTEQGAEAGTIKDAGDDPDVTHGALLFSQVRLIAEPGVRFVAGRGVGTVTRPGLVLAVGEPAINPVPRKMINDHLGRLAEESGYAGGFEVTVNVEGGEALALKTMNPRLGILGGLSILGTSGIVRPFSCAAYIASIHQGIDVAKTNGYLHIAACTGNASEDTMRRVYNLPEIALIEMGDFVGAVLKHVRKVPVEKLSLCGGFGKISKLAAGHMDLHSRHSSIDLPQLAKWATAIGADEKLQHDIRQANTSQQALAMASAVGIALGDAVCEHALAFARSVVPAQVQVEVFAIDRQGAIVGHAGAFKPGPT0004615_924DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004615-cbiD-K02188NANA
D1-35_049801212cobLPrecorrin-6Y C(5,15)-methyltransferase [decarboxylating]ATGACCCCCTGGCTGACCGTAGTGGGCATCGGTGAAGAGGGCTTCAAGGGCCTGGGCCGAACGGCTCGCCATGCATTGCTGCGGGCGTCGCGGATACTGGGCAGCGCCCGTCAATTGGAACTGCTGCCGCTGTGTATCCGCGGCGAGCGGAAGCTGTGGCCAAGCCCGTTCTCCCTGGAACCGCTGCTGGCTCGACGGGGCGAGCCGGTGTGCGTGCTGGCCAGTGGTGATCCGATGTTCTATGGCGTCGGCGCCAGCCTGGCGAAACAGCTGCCGGCCGAGGAAATGCAGGTCATCCCCGCGCCGTCCTCCTGCTCACTGGCGGCGGCGCGCATGGGCTGGCCGTTGCAGGACGCGGTCACGCTGTCGCTGGTGGCCCGCCCCCTGGCAGCGCTCAATGCGCACTTGTCCAGTGGCGTCAGGCTGTTGCTGCTGAGTAACGACCGCCACAGCCCCAGCGCCGTGGCGATGCTGCTGCGCGAGCGCGGATTCGGCCCGAGCGCCATGACCGTGCTGGAGCATTTGGGCGGTGCGGCAGAACGACGGATCGACGGTTGCGCTGCGCACTGGTCCGATGAGGCGGTCGCCGATCTGAACCTGATCGCCATCGAATGCCGGGCCGATCCGTCGACGCAGTGCCTGTCACGCCTGGCCGGCCTGCCGGACAGCGCTTTCGAGCATGACGGCCAGCTGACCAAGCGCGACGTGCGTGCCGTCACCCTGGCTCGCCTCGCCCCAACTCCCGGCGAGTTGCTCTGGGACGTCGGCGCCGGCAGCGGCTCGATCGGCATCGAATGGATGCGCGCCCACCCCAGTTGTCGAGCCCTGGCCATCGAAGCCGACGAAGGCCGCCAAGCCTTGATCGAACGCAACCGCGACACCCTTGGCGTGCCCGGCCTCCAATTGATTCGCGGCAGCGCCCCGCAGGCGCTGGAGAACCTGGAGCGTCCGGACGCGGTGTTCATCGGTGGCGGCGTCACCCGCGAAGGCGTGCTTGATGCCTGTTGGGCCCGGCTCAAGCCTGGCGGTCGGCTCGTCGCCAATGCCGTGGCCCTGCAAAGCGAGATGACACTGATGAGCTGGCGCGAACGCCACGGCGGTGAGCTGACCCGCATCCATGTCGCCCAGGCCCAGCCTTTGGGCGCATTCGATACCTGGCGCCAAGCCTTGCCCATCACCTTGCTGGACCTGACGAAACCTCTCGATGCGTGAMTPWLTVVGIGEEGFKGLGRTARHALLRASRILGSARQLELLPLCIRGERKLWPSPFSLEPLLARRGEPVCVLASGDPMFYGVGASLAKQLPAEEMQVIPAPSSCSLAAARMGWPLQDAVTLSLVARPLAALNAHLSSGVRLLLLSNDRHSPSAVAMLLRERGFGPSAMTVLEHLGGAAERRIDGCAAHWSDEAVADLNLIAIECRADPSTQCLSRLAGLPDSAFEHDGQLTKRDVRAVTLARLAPTPGELLWDVGAGSGSIGIEWMRAHPSCRALAIEADEGRQALIERNRDTLGVPGLQLIRGSAPQALENLERPDAVFIGGGVTREGVLDACWARLKPGGRLVANAVALQSEMTLMSWRERHGGELTRIHVAQAQPLGAFDTWRQALPITLLDLTKPLDAPGPT0009270_1109DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0009270-cobL-K00595NANA
D1-35_049811320sir_2COG0155Sulfite reductase [ferredoxin]TTGAACGAACGTCCCTCTTCCAACGTCATTCGCCCCTCGGTTTGTCCGGGGTTGCTGCGTGTTGTCCAGGCACTGGACGGAGGAATCTGCCGAATCAAGCTCGATGGCGGCGTCATCCACGCGGATCAGGCCGAAACCGTCGCGTGGGTGGCCGAGCAGTTCGCCGGGGGCGTGATCGAGGCCACCAACCGCGGCAACTTGCAGATCCGCGGTATCGGCCCTGAGCCGGATGCGTTGATCGAGCCGTTGCTGGCCGCCGGGCTTGGCCCGCGCAAGGCGGCCGGCGATGACGTGCGCAACCTGATGCTCAGCCCCTCGGCGGGGCTCGACCGGCAGATGCTGTTCGACACCCGTCCGCTGGCCGCGCAGATCCTCTTCACCCTGCAAACCCATGAACGCTTCCACGAACTCTCGGCCAAGTTCGCCGTGCAGTTGGACGGTGGCGAAGCCTTGGCGATGCTCGAGCATCACCATGACCTGTGGCTATCGGCGCTTGTCCAGCACGGCGAGCCCTGGCTTGCCTTTGGCCTGGCCGGTTCGCCATTGGACACGCCGGCGGGCAAGGTGCCCCTGGCCCAAGGGCATGCCCTGGTGGTAGCGGTGCTGGAGCTGTTTCTCGAACTGGCCCGCCCGGACCAGAACCGCATGCGCCAACTGCTGGCTGAATATGCCGTGGATGAATTCATGACCCGGTTAGCCGGCCGCGTGCCGCTGCAACCTTGCCTTGACTGGCGGCGGAGTGCGTCGCCCGGCGGCCTGCACATCGGTATTCATTCCCAGCACGACGAACGGGTCTATGTCGGCGCGGCGGCGCCCCTCGGCCGGCTTGATACGGTCATGCTGCGCGGCGCGGCGCAGTTGGCGCGGGAGAAGGGCGACGGCAATCTTCGCTTCACTCCCTGGCAAAGCCTGTTGCTGCCCAACGTGCGCCGCGAAAATGCGGATGCCGTGTTGACCCAGCTCGACGCGCTGGGCCTGTTGTGTTCGCTCGATCACTCCCTGGCGCAACTCATCGCCTGCACCGGCTCCAGTGGCTGTGGCAAAGGCCTGGCCGACACCAAGGGCGATGCCCGCCAGTTGGCGGATCTGCTGCAACGTCGGGGCCAGGCTTTGAGCATTCATCTGTCCGGCTGCCAGCGATCGTGCGCGGCGGCCCACATCGCCCCGGCGACGTTGCTGGCGGTCGCCCCCGATCGTTATGACCTCTATTTTCGTGATGCCGCGTTGCCGGGTTTCGGCGCGCTGCAAGCACACAATCTGACAATCGAAGCGCTCGGCCACTGGCTCGACGCTCATCCCCGGAGCCCCCTTGATGCTTGAMNERPSSNVIRPSVCPGLLRVVQALDGGICRIKLDGGVIHADQAETVAWVAEQFAGGVIEATNRGNLQIRGIGPEPDALIEPLLAAGLGPRKAAGDDVRNLMLSPSAGLDRQMLFDTRPLAAQILFTLQTHERFHELSAKFAVQLDGGEALAMLEHHHDLWLSALVQHGEPWLAFGLAGSPLDTPAGKVPLAQGHALVVAVLELFLELARPDQNRMRQLLAEYAVDEFMTRLAGRVPLQPCLDWRRSASPGGLHIGIHSQHDERVYVGAAAPLGRLDTVMLRGAAQLAREKGDGNLRFTPWQSLLLPNVRRENADAVLTQLDALGLLCSLDHSLAQLIACTGSSGCGKGLADTKGDARQLADLLQRRGQALSIHLSGCQRSCAAAHIAPATLLAVAPDRYDLYFRDAALPGFGALQAHNLTIEALGHWLDAHPRSPLDAPGPT0009250_228DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0009250-cobG-K02229NANA
D1-35_04982627cobHPrecorrin-8X methylmutaseATGCTTGATTACATCCGCGACGGTCAGGAGATCTATCGCAACTCCTTCGCGATCATCCGCGCCGAGGCCAATCTGGCGCGCATTCCTGCCGATCTGGAAAAACTAGCGGTGCGGGTGATCCACGCCTGCGGCATGGTCGAGGCGGTCGATGGCCTGCAGTTTTCCGCAGGCGCAGGCGCGGCGGGGCGCCAGGCACTGGCGGCCGGTGCGCCGATCCTGTGTGATGCGCGGATGGTGTCCGAGGGCGTGACCCGGGCGCGCCTGCCGGCCAACAATCCGGTGATTTGCACCTTGCGCGACGACAGCGTGCCAGCGTTGGCCCGCGAGCTGGGCAACACTCGCTCGGCGGCCGCGCTGGAGCTGTGGCGTCCACACCTGGAAGGTAGCGTCGTGGTCATCGGCAACGCACCGACCGCGCTGTTCTATCTGCTGGAAATGCTCGATGCCGGCGCGCCGAAACCGGCCCTGATCCTTGGCTTCCCGGTGGGTTTTGTCGGCGCCGCCGAGTCCAAGGCGGCGCTGGCGGCTGACAGCCGTGGCGTGCCGTTCGTGATCATGCAAGGCCGCCTGGGCGGCAGCGCCATGGCCGCCGCCGCCGTCAATGCCCTCGCCACGGAGGTTGAATGAMLDYIRDGQEIYRNSFAIIRAEANLARIPADLEKLAVRVIHACGMVEAVDGLQFSAGAGAAGRQALAAGAPILCDARMVSEGVTRARLPANNPVICTLRDDSVPALARELGNTRSAAALELWRPHLEGSVVVIGNAPTALFYLLEMLDAGAPKPALILGFPVGFVGAAESKAALAADSRGVPFVIMQGRLGGSAMAAAAVNALATEVEPGPT0004610_1406DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004610-cbiC-K06042NANA
D1-35_04983735cobIPrecorrin-2 C(20)-methyltransferaseATGATGCAGCAGCCTGGACGCTTGATCGGCCTCGGCGTAGGGCCGGGTGACCCGGAACTGATCACGGTCAAGGCACTGCGCCTGCTGCGGGAATCGCCGGTGGTGGCGTACTTCGTCGCCAAGGGCAAGAAAGGCAACGCCTTCGGCATCATCGAGGCCCATCTGCAGGACGCGCAAACCTTGCTGCCACTGGTCTACCCGGTCACCACCGAAGTGCTGCCGGCGCCGTTGTCCTACGAAGAGGTAATCGCCGACTTCTATGACACCGCCGCCGAGCAACTCGCCGTGCACCTGGATGCCGGTCGCGACGTGGCGGTGATCTGCGAGGGCGATCCGTTTTTCTACGGCTCCTATATGTACTTGCACGACCGCCTGGCCGAGCGCTACGAGGCCGAGGTCATTCCCGGCGTGTGTTCGATGCTCGGTGGTGCCTCGGTGCTGGGAGCCCCGCTGGTTTATCGCAACCAGAGCCTGTCGGTGCTCTCCGGCGTCCTGCCCCACGACGATCTCAAGCGTCGGCTGGCCGATGCCGATGCGGCGGTGATCATGAAGCTGGGGCGCAATTTTCCCAAGGTTCGGCAGGTGCTTGAGGAATTGGGCATGGACGGGCGGGCGCTGTACGTCGAGCGCGCGACCATGGCCAACCAGAAAATCGTGCCGCTGGATGAAGTCGAGCCGATGTCTTCGCCGTACTTCTCGCTGATCATCGTCCCGGGCGAGCGGTGGCAGGGATGAMMQQPGRLIGLGVGPGDPELITVKALRLLRESPVVAYFVAKGKKGNAFGIIEAHLQDAQTLLPLVYPVTTEVLPAPLSYEEVIADFYDTAAEQLAVHLDAGRDVAVICEGDPFFYGSYMYLHDRLAERYEAEVIPGVCSMLGGASVLGAPLVYRNQSLSVLSGVLPHDDLKRRLADADAAVIMKLGRNFPKVRQVLEELGMDGRALYVERATMANQKIVPLDEVEPMSSPYFSLIIVPGERWQGPGPT0004690_560DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0004690-cbiL-K03394NANA
D1-35_049841698cysG_2Siroheme synthaseATGAGGAAACCGGCGGCAATTGTCATCCTCGGCCCGGGCAGTCTCGCGACGGCCCGACGAATCCAGCAGTGCTATCCCGATGCGCTGATCCATGGCCTCGTCGGGCGGGTCGACGGCGATCGGCAATACCTTGAGTTCGGCACCACGTTGCGCGAACTCTATCAACAGGACACGCCGATCATTGCGCTGTGCGCGGCGGGCATCGTCATTCGCACCCTCGCGCCGCTGTTGCTGGAAAAAGGCGTCGAGCCGCCGGTGCTGGCGGTGGCCGAGGATGGCAGCGCCGTGGTGCCGCTGCTGGGCGGTCTGGGCGGCGTGAATGTCATGGCCCGGGAAATCGCGACAGCGCTGCAAGTCGCCCCGGCGATCACCACCAGCGGCGAGTTGCGTTTTGGCACCTGCCTGCTCAATCCACCGAGCGGCTACAGCCTCGGCGACCTGGAACAGGGCAAGCGCTTCGTGTCCGACCTGCTCGCCGGCGAGCCGGTGCGGGTCGAAGGTGCGGCGCCGTGGCTGGACCAGGCGCAATTGCCCCAGGATGCGCAGGCACGGTTGGCGATACGCATCGACAGCGCCGCGGGTGTACCCGCGCCGGACGAATTGCGGATCTATCCGCGCAACGTGGTGGTCGCGGTGAGTGCCGGCACGCCGGACGTGTCGACTGCGGTCAGCGACGCGCTGCACCGAACCGGCCTCGCCGTGCAATCGCTGGCGTGCCTGCTGGCGGCGGACAGCGACATGGCCCGCGCCGAGTTGCACCACGCTGCGCTGGCGCTGGGTGTGCCGCTGCGCTTCGCGCGGGCCAGCGATGACATCGAGCAATGGTTGGGTGATGCGTTGGGCCTGCCGGTTTCGTTGCAACCAATGGGCGGCGTGGCCATCGCCGTGGCTGAGCGGCCCGTCGACCCGCTGCAGCTTGGCCGTGCGCGCGGACGTCTGGCGGTGATCGGCCTTGGCCCTGGAGCGGCAGAGTTGATGGTCCCGGCCGTGCGTGCCGAACTCGACCGCGCCAACGATGTGCTCGGCTATGAGACTTACGTGCGCATGGCCGGGCCTTTGCGGGCCGACCAGGTGCAGCATTGCACCGATAACCGCGAAGAAATGCAGCGTGCCCGACATGCCTTCGAACTGGCGGCTCAGGGCCGGTCGGTGGTGGTGGTGTCATCCGGTGACCCTGGCGTATTCGCCATGGCTGCCGCTGTACTGGAAGCGCTGCATGAGTCGACTGATGCCGACTGGCATAATGTCGACCTGCAAATCCTGCCAGGCGTCTCGGCCTCCCTGGCCACGGCGGCCCAGGCCGGCGCGCCGCTGGGTCATGATTTCTGCGTGATGTCCTTGTCGGATAATCTCAAGCCGTGGTCGATCATCGAGAAACGCCTGGACCTGGCGGCCGAGGCGGACCTGGCCCTGGCGTTCTACAACCCGATCTCCCGCTCCCGTCCTTGGCAACTGGGACGAGCGCTGAAAATCGTCGCACAACACCGCGCGGCTGATACTCCAGTAGTGCTGGGACGTGACATCGGCCGACCGGGCCAGACCCTGCGCGTCACCACCCTCGGGCAACTGACCCCGGACCAGGTGGACATGCGCACCATGGTGCTAATCGGCTCCTCGACCACCTGCGTATTTCCGCGCGTCGAAGGTGGCGACTGGGTGTATACGCCGCGTTGGTACGGCGATAAGCCCGGGGCATGAMRKPAAIVILGPGSLATARRIQQCYPDALIHGLVGRVDGDRQYLEFGTTLRELYQQDTPIIALCAAGIVIRTLAPLLLEKGVEPPVLAVAEDGSAVVPLLGGLGGVNVMAREIATALQVAPAITTSGELRFGTCLLNPPSGYSLGDLEQGKRFVSDLLAGEPVRVEGAAPWLDQAQLPQDAQARLAIRIDSAAGVPAPDELRIYPRNVVVAVSAGTPDVSTAVSDALHRTGLAVQSLACLLAADSDMARAELHHAALALGVPLRFARASDDIEQWLGDALGLPVSLQPMGGVAIAVAERPVDPLQLGRARGRLAVIGLGPGAAELMVPAVRAELDRANDVLGYETYVRMAGPLRADQVQHCTDNREEMQRARHAFELAAQGRSVVVVSSGDPGVFAMAAAVLEALHESTDADWHNVDLQILPGVSASLATAAQAGAPLGHDFCVMSLSDNLKPWSIIEKRLDLAAEADLALAFYNPISRSRPWQLGRALKIVAQHRAADTPVVLGRDIGRPGQTLRVTTLGQLTPDQVDMRTMVLIGSSTTCVFPRVEGGDWVYTPRWYGDKPGAPGPT0009255_330DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_B12|COBALAMIN_METABOLISMPLANT_VITAMIN_B12|COBALAMIN_BIOSYNTHESIS,PGPT0009255-cbiGH_cobJ-K13541NANA
D1-35_04985660hypothetical proteinATGACCAATAAAACACTCACCGGCCTCATAACGGGCCCCAGCCTTTTTTCATACATCGAGACACTCTCCCTGTCAGAGCATGACGATATTGCCGATTGCAATAACTTCGCCATCCTCATTGCTGACGAAAAACACAACCGTTATTACGATCCGGAGCGTTGGCTTGAACAGTATGTCGGTGTGTTGAAGGCTCTCGGCTGGTCAATCTATCAGGACGCAATATTTACTAGAACACAACATATCCTCACAGGCTCTGTGGCGGACTTTCTGGTCGAGAGCGCAAACGGGATGAGCGATAGCCGGCAAGGCAATGCCATGATCGACACGCTCGACAGCTTGAAAACCAACAGCCCGGCGCTGTTGTCCTTTGACCGGGAAAGCGGTTCAGGGGACAGCTTCCAAGTAGTTCCAGCCCGCTACGACGCGCGAGGCCTTCTCAATATCGCCGTTTTCAAACTTGAGCTGAACGCCTACATGAAGAGAACCAACTTCCTGTTCTGGACTTGGGAAAAACGCTCAGCCAGGATAGTCCAGCGAAAAGCCTACCTGAGGTTGAACAAGACGATACTCGACGGGCAGCGAGTATTGATAAACAGGCGATTGGAAAAAAAACGCATGGAGCGATTCGACCTCAGCCAGAACCGCCCCATGGACAATTAAMTNKTLTGLITGPSLFSYIETLSLSEHDDIADCNNFAILIADEKHNRYYDPERWLEQYVGVLKALGWSIYQDAIFTRTQHILTGSVADFLVESANGMSDSRQGNAMIDTLDSLKTNSPALLSFDRESGSGDSFQVVPARYDARGLLNIAVFKLELNAYMKRTNFLFWTWEKRSARIVQRKAYLRLNKTILDGQRVLINRRLEKKRMERFDLSQNRPMDNNANANANANA
D1-35_04986822hypothetical proteinATGGAACTGTCTGAAAGTAAAATCAGCGTCGCAGAAACTATCGAGTTTATTAATGCGCGTATCGACAGGCGCAAGTCATCGGTTCCGGCCGGGCGGCGTGTACGCAGATCCGTTGTGCAGTCGCAGGTCAACCCGACCAAGGAACTCGATGCGCTGATGCTGGGCGACGCGCTGGTGGGTTATGGCAATAACATGACCCTCGAAAATATGACAATCATGGAAAACCTGATGAGCATGGCGATCCTCGAAGCAAACGCCAGCTTCCCCGATGGCAGGAATACGCGTGAGTGGTATGAGGAGTTCATACAGTGCCTGGAGTCTCTAGGGTGTTTCGTGCCCGACAGTGGCTATACCCGTTATTCCGAAAGTTCCGTGCGGGTAGACCTGGACCTGGTGATCAAGGATATCGTCAAAGGAATCATTGATGGAGTGAAGGCCGGTTTCCCGGCAGCGACGGTGCTTGGGGCCGTGGTGGATACCACGATCGATGGTTTGAAGCAGGACGACAAGACCATCAACCTCTTCCACAGCCAGGCGAAGACTTTTGATGGCGCGCGCTTGTCAGTCATCCCTTGTGAGCAGCTTTCCAACGGTCTCCTGATTGCTTCTGCCGCGTCGATAAAACACTCCGGCTCTTCGAATGAAGGCGGTGTTCTATTCGTAAACTGGCGGGCCTCGGCGCGGGAATTTTTCCGTGGTAAATCGTTCGTGACCTTCAACCCGGCCCGTTATGAAACGTTCAGGCAGGAAATCGAGAAATACTTGGGTGAGTATCGCAAAGAAGCATTGAGCAAAAGGTTCAGCCGTCGCAAGCGCGGGTAAMELSESKISVAETIEFINARIDRRKSSVPAGRRVRRSVVQSQVNPTKELDALMLGDALVGYGNNMTLENMTIMENLMSMAILEANASFPDGRNTREWYEEFIQCLESLGCFVPDSGYTRYSESSVRVDLDLVIKDIVKGIIDGVKAGFPAATVLGAVVDTTIDGLKQDDKTINLFHSQAKTFDGARLSVIPCEQLSNGLLIASAASIKHSGSSNEGGVLFVNWRASAREFFRGKSFVTFNPARYETFRQEIEKYLGEYRKEALSKRFSRRKRGNANANANANA
D1-35_04987597hypothetical proteinATGCTCCATGTGCTGTTCAGCGTTTACCTGAAAATGCTGGTGCTTTATAGCCCGTTCTTCGTGCTGTCGTGTTTTATCAGCCTGACCCGCGGCTATTCGCGTAAGGAGCAACGTCGGCTGGCCTGGAAGGTCGCGACCGCGACGCTGGTATCCAGCGTATTGCTCTATCTGTTCGGGCGGGTCATCTTCAGCGTGTTTGGCATCACCGTGGATGCATTCCGTATCGGCGCCGGCAGCGTGCTGTTCATTTCGGCGCTGGGCATGGCCCAGGGCAAATCGGCGGTACAGACCGACAATGTCCAGCAGGACGTGACTATCGTCCCGCTGACCATTCCGTTGACTGTCGGCCCCGGCACCATCGGTGCCCTGCTGGTGATGGGCGTAAGCCAGCCGCACTGGGACGACAAGCTCATGGCGATCATCAGCATCGCCCTGGCCAGCTTCACCGTTGGCGTCGTGCTTTACCTGTCCAGCCGCATCGAACGGATCCTCGGCGACCAAGGCCTGCAGATCGTCAGCCGCCTGATGGGGCTGTTTGTCTGCGCGCTGGCGGCGCAGATCATTTTTACTGGAGTAAAAGGGTATCTGGCCCCGTAGMLHVLFSVYLKMLVLYSPFFVLSCFISLTRGYSRKEQRRLAWKVATATLVSSVLLYLFGRVIFSVFGITVDAFRIGAGSVLFISALGMAQGKSAVQTDNVQQDVTIVPLTIPLTVGPGTIGALLVMGVSQPHWDDKLMAIISIALASFTVGVVLYLSSRIERILGDQGLQIVSRLMGLFVCALAAQIIFTGVKGYLAPPGPT0029250_2904DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIPLE_ANTIBIOTIC_RESISTANCE,PGPT0029250-marC-K05595NANA
D1-35_049882775rcsC_24Sensor histidine kinase RcsCGTGCGCTGGCTCAGGATTGCCATAGGCTTCACCGTTACCCTGCTGACATTGCTCTGCATGTTCCCGGCCCAGGCCGCGCCAGGCAGTGGTTGGGCGATATTGCTCGACGAACAGGGTAACCTGAAGCTCAGCGACATCCGCTCTGCCCGCTACACCAATCAATTCAGCCCGATAGACCTGGACCACCTCAAGGCGGCCGAACCCGGCGGAGCGTTATGGCTGCGTTTCCGGCTGGCGCCTGACCGGCATGAACAGATTCTGCGCATCTTTGCCCCAGACCTGTCGCGCCTGAATCTTTATGTGCTGGACGGCGATACGCTGATTGATCAACAGATCAGTGGCAATGCCTCGCCAGATACCGGACAGTCCGCTCCCAGCAGTGATCTCATGCTGGCACTGCCGCGCAGCGACAAGCCCCTCGACGTCTACCTGCGATTGGCCTCCCGGTACGAACTGCGCCCCTACGTCACGCTGCAACCGGCCATCATGGCGGCGGCCAACCAGAACCAGACGCTGATCTACGGCCTGCTGTTCGGCTGCATCGCCATGTTGATCCTGCACAACCTCACCCGTTACGCCTATACCCGCTCGCGCAGTTGCCTGTGGCTGGCAGCCTGTGAAGGGTTGCTGATGCTCAGCCTGATCCTGTTGCTGAACCTGGCCGGGGCCTGGCTGCCTGACTGGCCGGCGATCCAGACGCCGGGAGCGTACCTGGCGCTGTTGCTGACTGCGCCCTGCGGCTTGATGTTCGCTTTTCGTTTCTTCGCGCCGCTGGGCGAGCATCCGCTGAACCGGCTGCTGGTGGGGGAAATCGTCTTCATCGTGCTATGCAGCCTGCTGCTGTTGTTCGTCAACACGCTGCCGCTCAACATCATCACCTATGCACTGGTGGCGCTGGCCGGGCTGAGCATGTTGTTCGTCAGCGCCTGGCACTGGCAGAAAGGCTACCGCCCGGCACGCCTGTTCGTCGCCGCCATGGTGGTGTTCAACCTCGGCACGCTGATCATCCTCCCGGCCTTGCAAGGGCTGACGGAAGTCGCACCGCAAGGCCTGATCGTCACGCTGCTGGTCTTCATCTGCATCAGCGGCCTGTTGATGAGCGTCGCGCTGGGCGAACGCCAGCGGTCGATCAACGAGAGCCGCTTCAGCATCAGCCGCGACCTGGCGGCAAGCAACGCCGAAATCAACGCCAAGGCCGAGTTCCTGGCCAAGATCAGTCATGAAATCCGCACCCCCATGAACGGCGTGCTGGGCATGACCGAGTTGCTGCTGGGCACGCCATTGTCGGTCAAGCAGCGTGACTACGTGCAGACGATCCACAGCGCCGGCAACGAACTGCTCACACTGATCAACGAAATTCTCGATATATCCCGTCTCGAATCGGGCCAGATCGAGCTGGACGATGTGCAATTCGACCTGAATGCGCTGATCGAGGATTGCTTGAGTATCTTCCGCGCCAAGGCTGAACAGCAGAATGTCGAGCTGATCAGTTTTATCCAGCCCCAGGTGCCGCGCGTCATCAGTGGTGATCCGACGCGGCTGCGCCAGGCCCTGCTGAGCCTGCTGGAAAATGCCTTGAAGAAAACCGACGAGGGCGAAGTGCTGATCGTCGTCGCCCTTGATGAACGCAGCAACCAGCCACGCCTGCGTATCGCGGTGCAGGACAGCGGTTCGCCCATGGACGCCGAGGAGCGCGACACGCTGATGCACGCCGAGCTGCACAGCAAGAATTTTCTCTCCGCCACGCGGCTGGGGGGCAACCTGGGCCTGGTCATCGCCCGCCAGTTGATCATGCTGATGCATGGCGAGTTCGGCATCAAGAGTGGAAGCAGCCAGGGCAGCACCTTGTGGCTGACCTTGCCACTGGACCCTGACCGCCTCGAACACCCGACTTCCGATCTCGACAGCCCGCTGCAAGGGGCGCGGGTATTGGTCGTCGACGACAACGACACCTGCCGCAAGGTGTTGGTCCAGCAATGCAGCGCCTGGGGCCTGAACGTCAGCGCGGTGCCATCGGGCAAGGAAGCCCTGGCGCTGCTGCGCACCAAGGCGCACCTGCGTGATTATTTCGACGTGGTGCTGCTGGACCAGAACATGCCCGGCATGACCGGCATGCAATTGGCGGCCAAGATCAAGGAAGACCCGAGCCTGAACCACGACATCCTGTTGATCATGCTCACCGGCATCAGCAACGCGCCGAGCAAGATCGTGGCGCGCAACAGCGGCGTCAAGCGCATCCTCGCCAAACCGGTGGCCGGTTATACGCTCAAGACCACCCTGGCGGACGAGCTCAACCAGCGCAATAAAGGCCAGGCCCCGATTGCCCCGGTGAATGCCGGCCCTCTCCTGCCGGTGAAAGTGCCCAGCGACTTTCGCATCCTGGTAGCCGAAGACAACAGCATTTCCACCAAAGTCATCCGCGGCATGCTCGGCAAGCTCAACCTGCAACCCGACACCGCCAGCAACGGCGAAGAAGCCCTCAAGGCCATGAAGGAGCAGCGCTACGACCTGGTCCTGATGGATTGCGAAATGCCGATACTCGACGGCTTCTCCGCCACCCAGCAATTACGCGCCTGGGAAGTCGGCAACCAACGGACGCGCACCCCGGTGGTCGCGCTGACGGCGCACATCCTGGCCGAACACAAGGAGCGTGCGCGCCAGGCCGGGATGGACGGACATATGGCCAAGCCGGTGGAGCTGTCGCAGTTGCGCGAGCTGATCGAGCATTGGGTGGCCCAGCGCGACCAACAGAACCGTACGGCGCAGACGTCCTGAMRWLRIAIGFTVTLLTLLCMFPAQAAPGSGWAILLDEQGNLKLSDIRSARYTNQFSPIDLDHLKAAEPGGALWLRFRLAPDRHEQILRIFAPDLSRLNLYVLDGDTLIDQQISGNASPDTGQSAPSSDLMLALPRSDKPLDVYLRLASRYELRPYVTLQPAIMAAANQNQTLIYGLLFGCIAMLILHNLTRYAYTRSRSCLWLAACEGLLMLSLILLLNLAGAWLPDWPAIQTPGAYLALLLTAPCGLMFAFRFFAPLGEHPLNRLLVGEIVFIVLCSLLLLFVNTLPLNIITYALVALAGLSMLFVSAWHWQKGYRPARLFVAAMVVFNLGTLIILPALQGLTEVAPQGLIVTLLVFICISGLLMSVALGERQRSINESRFSISRDLAASNAEINAKAEFLAKISHEIRTPMNGVLGMTELLLGTPLSVKQRDYVQTIHSAGNELLTLINEILDISRLESGQIELDDVQFDLNALIEDCLSIFRAKAEQQNVELISFIQPQVPRVISGDPTRLRQALLSLLENALKKTDEGEVLIVVALDERSNQPRLRIAVQDSGSPMDAEERDTLMHAELHSKNFLSATRLGGNLGLVIARQLIMLMHGEFGIKSGSSQGSTLWLTLPLDPDRLEHPTSDLDSPLQGARVLVVDDNDTCRKVLVQQCSAWGLNVSAVPSGKEALALLRTKAHLRDYFDVVLLDQNMPGMTGMQLAAKIKEDPSLNHDILLIMLTGISNAPSKIVARNSGVKRILAKPVAGYTLKTTLADELNQRNKGQAPIAPVNAGPLLPVKVPSDFRILVAEDNSISTKVIRGMLGKLNLQPDTASNGEEALKAMKEQRYDLVLMDCEMPILDGFSATQQLRAWEVGNQRTRTPVVALTAHILAEHKERARQAGMDGHMAKPVELSQLRELIEHWVAQRDQQNRTAQTSNANANANANA
D1-35_049891296purDCOG0151Phosphoribosylamine--glycine ligaseATGAATGTTTTGATCATTGGCAGCGGTGGCCGTGAACACGCCCTGGCCTGGAAAGTGGCTCAGGATCCGCGCGTGCAGAAGGTCTTTGTCGCACCGGGCAATGCCGGCACCGCCATCGAAGCCAAGTGCGAAAACGTTGCCATCGACGTGCTGGCCCTGGAGCAACTGGCCGACTTCGCCGAGAAGAACGTCTCGCTGACTATCGTCGGCCCGGAAGTGCCGCTGGTCGCTGGCGTGGTCGACCAGTTCCGCTCTCGCGGCCTGGACTGCTTCGGCCCGACCGCCGGGGCCGCGCAGCTGGAAGGTTCGAAAGCGTTTACCAAGGATTTCCTGGCGCGTCACAAGATCCCCACCGCCGACTACCAGAACTTCACCGAAATCGAACCGGCACTGGCTTACCTGCGCGAAAAAGGCGCACCGATCGTGATCAAGGCCGACGGCCTGGCCGCCGGCAAAGGCGTGATCGTTGCCATGACCCTGGCCGAAGCCGAAGATGCCGTGCGTGACATGCTCGCCGGCAACGCCTTTGGTGACGCCGGATCGCGGGTTGTCATCGAAGAATTCCTCGATGGCGAGGAAGCCAGTTTCATCGTCATGGTCGACGGCAAGAATGTCTTGCCGATGGCCACCAGCCAGGACCACAAACGTGTCGGCGACGGCGACAGCGGCCCGAACACCGGCGGCATGGGCGCCTACTCCCCCGCCCCGGTAGTCACCGCCGAGGTACACCAGCGCGTGATGGACCAGGTGATCTGGCCGACCGTGCGCGGCATGGCCAAGGAAGGCAACGTCTACACCGGTTTCCTTTACGCTGGCCTGATGATCGACAAGGCAGGCAACCCGAAAGTCATCGAATTCAACTGCCGTTTCGGCGATCCTGAGACCCAGCCGGTGATGCTGCGCCTGCAATCGAGCCTGGTGCTGCTGGTCGAAGCGGCCCTGGCCCAGGCGCTGGACAAGGTTGAAGCCCAATGGGATCCGCGTCCAAGCGTTGGCGTGGTGTTGGCGGCGGGTGGATATCCAGGCGACTATGCCAAGGGCAGCGCCATCAAAGGCCTGGACGCCGCCGCGCAATTGGAAGGCAAGGTGTTCCACGCTGGCACGGCACTGAAGGATGGACAGGTGGTCACCGCCGGTGGTCGCGTGCTTTGCGCCACGGCCATGGGCGCCAGTGTCGATGCGGCCCAGCAGCAGGCCTACCGGCTTGCCGCGCAGATTGATTGGGAAGGTTGCTTCTACCGCAACGACATTGGCTACCGAGCCATTGCCCGTGAGAGTGGCGAAAACCAGGAATAAMNVLIIGSGGREHALAWKVAQDPRVQKVFVAPGNAGTAIEAKCENVAIDVLALEQLADFAEKNVSLTIVGPEVPLVAGVVDQFRSRGLDCFGPTAGAAQLEGSKAFTKDFLARHKIPTADYQNFTEIEPALAYLREKGAPIVIKADGLAAGKGVIVAMTLAEAEDAVRDMLAGNAFGDAGSRVVIEEFLDGEEASFIVMVDGKNVLPMATSQDHKRVGDGDSGPNTGGMGAYSPAPVVTAEVHQRVMDQVIWPTVRGMAKEGNVYTGFLYAGLMIDKAGNPKVIEFNCRFGDPETQPVMLRLQSSLVLLVEAALAQALDKVEAQWDPRPSVGVVLAAGGYPGDYAKGSAIKGLDAAAQLEGKVFHAGTALKDGQVVTAGGRVLCATAMGASVDAAQQQAYRLAAQIDWEGCFYRNDIGYRAIARESGENQEPGPT0021575_958DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021575-purD-K01945NANA
D1-35_049901608purHCOG0138Bifunctional purine biosynthesis protein PurHATGACCGACCAGACCATCCGCCTGCCGATCCGCCGCGCCTTGATCAGCGTCTCCGACAAGACCGGGATCCTTGAATTCGCCCGCGAGCTGCAACAGCTGGGCGTCGAGATTCTCTCGACCGGCGGGACCTTCAAGTTGCTGCAGGACAACGGCGTCGCCGCGGTGGAAGTTGCGGACTACACCGGCTTCGCGGAAATGATGGACGGTCGGGTCAAGACCTTGCACCCGAAGATCCACGGAGGGATCCTCGGTCGTCGCGGCATCGATGACGCCATCATGAACGAACACGGCATCAAGCCGATCGATCTGGTGGCGGTCAACCTTTACCCGTTCGAAGCAACCATCAACAAGCCCGGCTGCGACCTGCCGACCGCCATCGAGAACATCGACATCGGTGGCCCGACCATGGTCCGCTCGGCGGCCAAGAACCATAAGGACGTGGCCATTGTCGTCAATGCCAGCGACTACGCCGGCGTCCTGGAAAACCTCAAGGCCGGTGGTTTGACGTACGCCCAGCGCTTCGATCTGATGCTCAAGGCCTTCGAACACACCGCCGCCTACGATGGCATGATCGCCAACTACATGGGCACCGTGAACCAGGCGGCCGAGACCCTGAGCACCGAAGGCCGCAGCGAATTCCCGCGCACCTTCAACACCCAGTTCGTCAAGGCCCAGGAAATGCGCTACGGCGAGAACCCGCACCAGAGCGCGGCGTTCTACGTGGAAGCCAAGCCAGCCGAAGTCGGCATCGCCACCGCGACCCAATTGCAGGGCAAGGAACTGTCGTTCAACAACGTGGCCGACACCGACGCCGCGCTGGAATGCGTGAAAAGCTTCGTCAAGCCAGCCTGCGTGATCGTCAAGCACGCCAACCCATGCGGCGTCGCGGTAAGCCCGGACGCCGAGGGCGGCATCCGCCAGGCCTACGAACTGGCCTACGCCACCGATACCGAGTCGGCCTTCGGCGGCATCATCGCCTTCAACCGCGAGCTGGACGCCGAGACCGCCAAGGCCATCGTCGAGCGCCAGTTCGTCGAAGTGATCATTGCCCCTTCCGTCAGCGAAGAAGCCCGCGCCATTGTTGCCGCCAAGGCCAACGTTCGCCTGCTGGCCTGTGGTCAGTGGTCGGCCGACCGCGCGCCGGCCTGGGACTACAAGCGCGTCAATGGCGGCCTGCTGGTCCAGAGCCGCGATATCGGCATGATCGGCAGCGAGGACCTCAAGGTCGTGACCCAGCGCGCGCCGAGCGAGCAGGAAATCAACGACCTTATCTTCGCCTGGAAAGTCGCCAAGTACGTCAAGTCCAACGCCATCGTCTACGCCAAGAACCGCCAGACCATCGGTGTCGGCGCCGGCCAGATGAGCCGCGTCAACTCGGCCCGCATCGCTGCGATCAAGGCTGAGCACGCCGGTTTGCAGGTTCAGGGCGCCGTCATGGCCTCCGATGCGTTCTTCCCGTTTCGCGATGGCATCGACAACGCGGCCAAGGTCGGCATCACGGCGGTGATCCAGCCGGGTGGTTCGATGCGTGACGCTGAAGTGATTGCCGCGGCTGATGAAGCCGGGATCGCGATGGTCTTCACGGGCATGCGCCACTTCCGTCACTAAMTDQTIRLPIRRALISVSDKTGILEFARELQQLGVEILSTGGTFKLLQDNGVAAVEVADYTGFAEMMDGRVKTLHPKIHGGILGRRGIDDAIMNEHGIKPIDLVAVNLYPFEATINKPGCDLPTAIENIDIGGPTMVRSAAKNHKDVAIVVNASDYAGVLENLKAGGLTYAQRFDLMLKAFEHTAAYDGMIANYMGTVNQAAETLSTEGRSEFPRTFNTQFVKAQEMRYGENPHQSAAFYVEAKPAEVGIATATQLQGKELSFNNVADTDAALECVKSFVKPACVIVKHANPCGVAVSPDAEGGIRQAYELAYATDTESAFGGIIAFNRELDAETAKAIVERQFVEVIIAPSVSEEARAIVAAKANVRLLACGQWSADRAPAWDYKRVNGGLLVQSRDIGMIGSEDLKVVTQRAPSEQEINDLIFAWKVAKYVKSNAIVYAKNRQTIGVGAGQMSRVNSARIAAIKAEHAGLQVQGAVMASDAFFPFRDGIDNAAKVGITAVIQPGGSMRDAEVIAAADEAGIAMVFTGMRHFRHPGPT0008110_1088DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0008110-purH-K00602NANA
D1-35_04991321fisDNA-binding protein FisATGACGATGATGACCGAGACTTTAGTGAGTGGAATAACACCCGTGAGCGACAACGTGAATTTGAAACAGCACCTCAACACGCCCAGCGAAGAAGGCCAGACCCTTCGCGGGAGCGTCGAGAAGGCGCTGCACAATTATTTCGCCCACCTTGAGGGCGCTGCCGTCACGGATGTGTACAACCTGGTGCTTTCCGAAGTCGAGGCACCGCTGCTCGAGAGCGTGATGAACTACGTCAAGGGCAACCAGACCAAGGCCAGTGAGCTGCTGGGCCTGAACCGCGGCACCCTGCGCAAGAAACTCAAGCAGTACGATCTGCTGTAAMTMMTETLVSGITPVSDNVNLKQHLNTPSEEGQTLRGSVEKALHNYFAHLEGAAVTDVYNLVLSEVEAPLLESVMNYVKGNQTKASELLGLNRGTLRKKLKQYDLLPGPT0025570_79DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-AI1|AI-2|CAI-1_PERCEPTION|SIGNALLING,PGPT0025570-fis-K03557NANA
D1-35_049921008dusBCOG0042tRNA-dihydrouridine synthase BATGTCGGCGGTACGCATCGGCCCATATACATTGCAGAACGGTCTGGTCCTCGCCCCGATGGCGGGCGTTACCGATCAGCCCTTTCGTCAGTTGTGCAAACGATTGGGCGCCGGTCTCGTGGTCTCGGAAATGGTCACCAGCGACATGAGTCTGTGGAACACCCGCAAATCGCGTCTGCGCATGATCCACGAAGGCGATCCCGAGCCCCGCTCGGTACAGATCGCCGGTGGCGACGCACAGATGCTGGCGGAGGCGGCCCGGGCGAATGTCGAGCTGGGGGCGCAGATCATTGACATCAACATGGGCTGCCCGGCGAAGAAGGTCTGTAACAAGGCCGCAGGCTCGGCGCTGTTGAAGGATGAAGCACTGGTCACCGAGATCCTGCAGGCAGTTGTCGCCGCAGTCGATGTGCCGGTGACCCTGAAGATCCGCACCGGCTGGGACCGGGACAACAAGAACGGCCTGACGGTGGCGAAGATCGCCGAACAGGCAGGTATCACGGCGCTGGCGGTGCATGGCCGCACCCGTGCCGACCTGTACACCGGCGAAGCCGAGTACGACACCATTGCCGCGATCAAGCAGGCGGTGTCCATTCCGGTGTTTGCCAACGGCGATGTCGATTCGCCCGAAAAGGCCCGGTACGTGCTGGACGCGACCGGTGCCGACGGCCTGTTGATCGGCCGGGCCGCCCAGGGGCGGCCATGGATTTTTCGTGAGATCGAACATTTCCTGCGCACCGGCGAAAAGCTCGCTGCGCCGCAATTGTCCGAGGTGGAACGTATTCTGCTAGAGCATCTGGCCGCGCTGCACGCCTTCTATGGCGAAGTCATGGGCGTACGCATCGCTCGCAAGCATGTGGGCTGGTATCTCGCAACCCTGCCGGGCGCCAGGGAGTTTCGCGCCCGTTTCAATCGTTTGGATGGTACGCAAGCACAATGCGCCGACGTTCAGGCGTTTTTCGCCGAACGTTACAAGAGCCTGACAGGGGACGAAGGGGTGGCCGCATGAMSAVRIGPYTLQNGLVLAPMAGVTDQPFRQLCKRLGAGLVVSEMVTSDMSLWNTRKSRLRMIHEGDPEPRSVQIAGGDAQMLAEAARANVELGAQIIDINMGCPAKKVCNKAAGSALLKDEALVTEILQAVVAAVDVPVTLKIRTGWDRDNKNGLTVAKIAEQAGITALAVHGRTRADLYTGEAEYDTIAAIKQAVSIPVFANGDVDSPEKARYVLDATGADGLLIGRAAQGRPWIFREIEHFLRTGEKLAAPQLSEVERILLEHLAALHAFYGEVMGVRIARKHVGWYLATLPGAREFRARFNRLDGTQAQCADVQAFFAERYKSLTGDEGVAAPGPT0001030_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-ANTIMICROBIAL_COMPUND_RESSITANCE-ACETOIN|2|3-BUTANEDIOL_SYNTHESIS,PGPT0001030-acoR-K21405NANA
D1-35_049931230hypothetical proteinATGACCGACAGCTTCGTCACCCAGTGCCCGCATTGCCACACCAGTTTTCGTGTCAGCCATGCTCAATTGAGCGTGGCACGCGGGGTGGTTCGCTGCGGCTCGTGCCTGCAGGTGTTCAACGCCGCGCGACAATTGCTCGAGCAGCGCACGGCCAAGACCGTTGCGCCCCCACTCGCGCCGCTCGCCGCACCAGCCGTCGATACACCGCCGCCCCGCGCCATCAGCCAGAAACAATGGAGCGCCGCCGAGCTCGACCTCGATGACCTGGACAAGGAGCTGGCGCGTCTGGAGCGCCTCGAAAAGCGCGCCCCGGACAGCTTTGGCCGGCGTCGCGAAGACAACCTGAGCGCCCAGCGCGAGCAGCTTCCGCAGGAGCAGGAAGCCTGGTCCGACAGCCTCTACAGCGAAGCCCCCGACGAGCGCGCCGAAGGCGCTCTGCAAATGCCGGTCGAGCCGTTCGAGCCTCATGAGCCCGCCCGGCCGCCACGGACCGAACCTTCCTTGTCCCTGGCCCTTGAGCCCCTGGAGCCGGACGACGAACCCGTCGCCCCGCTCAGCCTCACGCCGGACGACGAGCCGCACGAACACCTTGAGCGCCTGTCCGCCACCGACGACCTGGATGACGAGCCGGAGCCTGCGGCAACGCCGCGCAAGAAGCGCGAGCGCCATGAGCCGGGGATACGCGCCGAAGCCCTGCAGGACCTGGACGATGATCCATTGCAACTGGACTGGCGCAAACGCCGCTCGCCCTGGGGCCGTCGCCTGCTCTGGAGCCTGTTGATATTGCTCGGCGCGGCAGCGCTGGCCGGCCAGTACATCGCCTACCATTTCGAAGAACTGGCCCGCCAGGACCAGTACCGTCCGTGGTTCCTGCAAATCTGCCCGGTCATTGGCTGCGATGTCCCGTCCAAGGTCGACATCGCCAAGATCAAGAGCAGCAACCTGGTGGTGCGCAGCCATCCGGAATTCAGCGGCGCCCTGGTGGTGGATGCGATCATCTACAATCGCGCGCCCTTCTCCCAGCCGTTCCCGCTGCTGGAGCTGCGTTTTGCCGACCTCAACGGTCACCTGATCGCCAGCCGTCGCTTCAAGCCAGGCGAGTACCTGGGCGGCGATCTCGAAGGCCGGGGGGAAATGCCGCCGCAGACGCCGATCCATATCGCCTTGGATATCCTCGATCCGGGGCCGAAAGCGGTGAACTACAGCCTGAGCTTTCATTCACCCGAATGAMTDSFVTQCPHCHTSFRVSHAQLSVARGVVRCGSCLQVFNAARQLLEQRTAKTVAPPLAPLAAPAVDTPPPRAISQKQWSAAELDLDDLDKELARLERLEKRAPDSFGRRREDNLSAQREQLPQEQEAWSDSLYSEAPDERAEGALQMPVEPFEPHEPARPPRTEPSLSLALEPLEPDDEPVAPLSLTPDDEPHEHLERLSATDDLDDEPEPAATPRKKRERHEPGIRAEALQDLDDDPLQLDWRKRRSPWGRRLLWSLLILLGAAALAGQYIAYHFEELARQDQYRPWFLQICPVIGCDVPSKVDIAKIKSSNLVVRSHPEFSGALVVDAIIYNRAPFSQPFPLLELRFADLNGHLIASRRFKPGEYLGGDLEGRGEMPPQTPIHIALDILDPGPKAVNYSLSFHSPENANANANANA
D1-35_04994879prmACOG2264Ribosomal protein L11 methyltransferaseATGCCTTGGCTGCAAGTACGTCTGGCCATCAGCCCGGAACAAGCCGAAACCTATGAAGACGCCTTTCTTGAAGTTGGCGCCGTTTCGGTCACCTTCATGGATGCCGAGGACCAGCCGATCTTCGAGCCGGAACTCAACACTACCCCGCTGTGGTCTCACACCCACCTGCTGGCCCTGTTCGAGGGTGGCACCGAAGCCACCAGCGTGCTTGCTCACCTGGAGCTGCTGACCGGCGGCCCGCTACCCGAGCACCACAGCGAAGTGATCGAGGACCAGGATTGGGAACGCAGCTGGATGGACAACTTCCAGCCGATGCGCTTCGGCCAGCGCTTGTGGATCGTGCCGAGCTGGCATGCCGCACCGGAGCCGGACGCGGTCAACCTGCTGCTGGACCCGGGCCTGGCGTTCGGCACCGGCACCCACCCGACTACCGCGCTGTGCCTGGAGTGGCTCGACGGCCAGGACCTGAAGGACTGCCACGTACTGGACTTCGGCTGCGGTTCGGGGATCCTGGCTATTGCCGCGCTGCTGCTGGGCGCCAAGGAAGCGGTCGGCACCGACATCGATGTCCAGGCCCTGGAAGCGTCCCGCGACAACGCCGGACGCAACAACATTGCCGAAGCACTTTTCCCGCTGTATCTGCCCCAAGACCTGCCCCAAGTACAGGCCGACGTACTGGTAGCCAACATCCTCGCCGGCCCGCTGGTGTCGCTGGCACCGCAGCTGTCCAGCCTGGTCAAGCCGGGCGGACGCCTGGCGCTGTCGGGCATCCTGGCGGAACAGGGCGAAGAAGTCGCCGCCGCCTACGCCGGGGATTTCGACCTGGACCCGATTGCCAATCGCGATGGCTGGGTGCGCATCACTGGACGTCGGCGCTAGMPWLQVRLAISPEQAETYEDAFLEVGAVSVTFMDAEDQPIFEPELNTTPLWSHTHLLALFEGGTEATSVLAHLELLTGGPLPEHHSEVIEDQDWERSWMDNFQPMRFGQRLWIVPSWHAAPEPDAVNLLLDPGLAFGTGTHPTTALCLEWLDGQDLKDCHVLDFGCGSGILAIAALLLGAKEAVGTDIDVQALEASRDNAGRNNIAEALFPLYLPQDLPQVQADVLVANILAGPLVSLAPQLSSLVKPGGRLALSGILAEQGEEVAAAYAGDFDLDPIANRDGWVRITGRRRNANANANANA
D1-35_049951359accCCOG0439Biotin carboxylaseATGACTGCGAAGTTGGAAAAAGTTCTGATCGCTAACCGCGGTGAGATCGCCCTGCGGATTCTGCGTGCCTGCAAAGAGATGGGCATCAAGACCGTCGCCGTTTACTCCAAGGCCGACAAAGAACTGATGCACCTGGGCCTGGCGGATGAATCCGTCTGCATCGGTCCGGCGTCGGCTGCGCACTCCTACCTGCACATCCCGGCGATCATCGCCGCCGCCGAAGTGACCGGCGCTACCGCCATTCACCCTGGCTACGGTTTCCTCGCGGAAAACGCCGACTTCGCCGAACAGGTGGAAAACTCCGGTTTTGCCTTCATCGGCCCAAAAGCCGAAACCATTCGCCTGATGGGCGACAAGGTCTCGGCCAAGCACGCCATGATCGCTGCCGGCGTGCCAACCGTTCCGGGCTCCGACGGCCCGCTGCCTGAAGACGAAGAAACCGCTCTGCGCATCGGTCGCGAAGTCGGCTATCCGGTGATCATCAAGGCCGCTGGCGGCGGTGGTGGTCGCGGCATGCGTGTGGTGCACAAGGAAGAAGACCTGATTTCCTCGGCAAAACTGACCCGCTCCGAAGCAGGCGCGGCGTTCGGCAACCCGATGGTCTATCTGGAAAAATTCCTCACCAACCCACGTCACGTCGAGGTCCAGGTACTGTCCGACGGCCAAGGCCAGGCGATTCATCTCGGCGACCGCGATTGCTCGCTGCAGCGTCGTCACCAGAAGGTCCTCGAAGAAGCGCCGGCACCAGGCATCGACGAGCAGGCTCGCCAGGAAGTCCTGGCCCGCTGCGTCAAGGCCTGCATCGATATCGGTTACCGCGGCGCGGGTACTTTCGAGTTCCTGTATGAGAACGGTCGTTTCTACTTCATCGAAATGAACACCCGCGTTCAGGTGGAGCATCCGGTTTCGGAAATGGTCACCGGCATCGACATCGTCAAGGAGATGCTCAGCATCGCCGCTGGCAACAAGCTGTCGTTCACTCAGGATGACGTGGTCATCCGCGGTCACGCGCTGGAATGCCGGATCAATGCCGAAGACCCGAAAACCTTCATGCCAAGCCCTGGCACGGTCAAGCATTTCCATGCCCCGGGCGGCAACGGCGTTCGCGTCGATTCGCACCTGTACAGCGGTTATGCCGTTCCGCCGAACTACGACTCGTTGATCGGCAAACTGATCACTTACGGGGCAACCCGCGACGAAGCCATGGCGCGCATGCGCAATGCGCTGGACGAGATCGTGGTGGACGGGATCAAGACCAACATCCCGCTGCACCGCGACCTCACCCGCGACGAAGGCTTCTGCAAAGGGGGCGTGAACATTCACTACCTCGAGCACAAGCTGGCTGGCGAGAAGCACTAAMTAKLEKVLIANRGEIALRILRACKEMGIKTVAVYSKADKELMHLGLADESVCIGPASAAHSYLHIPAIIAAAEVTGATAIHPGYGFLAENADFAEQVENSGFAFIGPKAETIRLMGDKVSAKHAMIAAGVPTVPGSDGPLPEDEETALRIGREVGYPVIIKAAGGGGGRGMRVVHKEEDLISSAKLTRSEAGAAFGNPMVYLEKFLTNPRHVEVQVLSDGQGQAIHLGDRDCSLQRRHQKVLEEAPAPGIDEQARQEVLARCVKACIDIGYRGAGTFEFLYENGRFYFIEMNTRVQVEHPVSEMVTGIDIVKEMLSIAAGNKLSFTQDDVVIRGHALECRINAEDPKTFMPSPGTVKHFHAPGGNGVRVDSHLYSGYAVPPNYDSLIGKLITYGATRDEAMARMRNALDEIVVDGIKTNIPLHRDLTRDEGFCKGGVNIHYLEHKLAGEKHPGPT0001705_1648DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_FATTY_ACID_METABOLISM,PGPT0001705-accC-K01961NANA
D1-35_04996465accBCOG0511Biotin carboxyl carrier protein of acetyl-CoA carboxylaseATGGATATCCGTAAAGTTAAGAAACTGATCGAATTGCTGGAAGAGTCCGGCATCGACGAGCTCGAGATCAAGGAAGGCGAAGAGTCCGTACGCATCAGCCGCCACAGCAAGACCCCGGCCCAGCAGTTCTATGCACCGGCACCGATGCAAGCGCCAGCCGCTGCACCTGCTCCGGCAGCTGCGCCAGTTGCCGCCGCGGCACCTGCCGCACCGGCCGCGCCGACGCTGAACGGCACTGTTGCTCGCTCGCCGATGGTGGGCACGTTCTATCGCAAGTCTTCCCCGAGCTCGCCGTCCTTCGTTGAAGTTGGCCAGACCGTGAAGAAAGGCGACACCCTGTGCATCGTCGAAGCCATGAAGATGATGAACCACATCGAAGCTGAAACCAGCGGTGTGATCGAGTCCATCCTCGTCGAAGACGGCCAGCCGGTTGAGTACGACCAACCGCTGTTCACCATCGTTTGAMDIRKVKKLIELLEESGIDELEIKEGEESVRISRHSKTPAQQFYAPAPMQAPAAAPAPAAAPVAAAAPAAPAAPTLNGTVARSPMVGTFYRKSSPSSPSFVEVGQTVKKGDTLCIVEAMKMMNHIEAETSGVIESILVEDGQPVEYDQPLFTIVPGPT0001700_2670DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0001700-accB|bccP-K02160NANA
D1-35_04997453aroQ1COG07573-dehydroquinate dehydratase 1ATGGCGACCCTTCTGGTCCTGCACGGACCCAACCTGAACCTGCTGGGCACCCGTGAACCGGGCGTCTATGGCGCCGTGACACTGGCCCAGATCAACCAGGACCTGGAGCAACAGGCTCGTAGCGCCGGCCATCATTTGCTCTACCTGCAAAGCAATGCCGAATATGAATTGATCGACCGCATCCATGCCGCGCGCGGCGAAGGCGTGGATTTCATTCTGATCAATCCCGCGGCTTTTACACATACGAGCGTCGCATTACGTGACGCGCTGCTGGCAGTGAGCATCCCATTCATCGAAGTGCATTTGTCCAACGTGCACAAACGCGAACCTTTCCGCCATCACTCCTACTTCTCCGATGTAGCAGTAGGCGTGATCTGCGGCCTTGGCGCCAGCGGTTACCGACTGGCCCTGGAGGCCGCTCTAGAGCAGCTTGAAAAACAGGCAACAGCTTGAMATLLVLHGPNLNLLGTREPGVYGAVTLAQINQDLEQQARSAGHHLLYLQSNAEYELIDRIHAARGEGVDFILINPAAFTHTSVALRDALLAVSIPFIEVHLSNVHKREPFRHHSYFSDVAVGVICGLGASGYRLALEAALEQLEKQATAPGPT0012905_1228DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_QUINATE_CATABOLISM,PGPT0012905-aroQ|qutE-K03786NANA
D1-35_04998453hypothetical proteinATGCCAAATTCAGAAACTACTAAAAAACCTGCCCTTCTCGCTGTCTTGTGCACAGTGCTTGCCCTCGCGCTGGCTTACACCAGTTGGACGTGTTTTTTCCGTCCAAATACGCCTGAGTTGACAGAGGTCGTATTACGAAAACCTTTGTCTCAGGATGCATTTATCTACGGCGTAAAGGATGAGCGTGGCGGAGCGACGGTTCCTTTCAGTTACCGCTACTACGTCTATCGGACCCTGGCAGCGGACGGTGACATACTTTCCGAACTGAAAACCGCGACGCCATTTCTTGTCACTCGGGATGATTCGGTAACCATAGACACTCAGGAACAGACGATTACGGTATTGGTTGACAAGGAGATCTACGCCTACCACAGCAATACCCTCTACCGAAACGCCGATGGCGAAGACTACACGGCGGTGAGTATTTATTTGCATTCTGGTCCAGCTGAGTAAMPNSETTKKPALLAVLCTVLALALAYTSWTCFFRPNTPELTEVVLRKPLSQDAFIYGVKDERGGATVPFSYRYYVYRTLAADGDILSELKTATPFLVTRDDSVTIDTQEQTITVLVDKEIYAYHSNTLYRNADGEDYTAVSIYLHSGPAENANANANANA
D1-35_049991947ctpLMethyl-accepting chemotaxis protein CtpLATGCGCCTGAAGCTGCTGACCAACCTCAACACTGTTCTTTTAGTTGCCGTATGCCTTGGCCTCGGCGCCACCCTGTGGTGGTCGCAGATTGCCTTGGAGCGTCCTTATCTGCTGATGGAACGCTACCTGGGCCTGTCGCGGCAGTTCCAGGGCGAAGTGGCGCGCAACATCGAAGATTACCTGGCCAGCGGCGACGCCTTGCGCCTCAGCGCAGCCACCCAGGCCCTGGAAACCCTGCAAAAAGATCTGGACCAGTTCCCGCCGGACCTGGCCAGGACGCTAAGCCCGAGCCTGTCGAACCTTGACGGTTTCAGCAAGACCGACCTGCTGGCCGCCGGCAAACTGGCGGCTGATCCACAGGCCCTGTTGTTGCAGGCTGAACGTGAGCTGAGCGCCAGCCTGGACCAACTTGCCCAGTACGCCAACGGCGCGCCGGCTTATCTGCCGCCGCTGTTTGCTGCCTCACAGCATTTGGGCCGGTTATCACTCGCCCGGGACAAACTGGTCAGCAGCGGCCGCAGTGAACTGGCCGCCGATGTCGAACGGGAACTGGCCAACGTCCGCACCCAGGCCCAGCAACTGAACAGTCTGCCGCTGCTCGGCGTCACCGCCAGCAACGAATCGGGCAGCGATGACTTCGCCGCGCTGATGGGTCTGGAAACCGAGGAAAAGGCCGCCGCCGAAGACGCCGGGATTGCCCTCAAGCGCGAACTCAACAGCCTGCTCGGGCGTTATCCCGCGGAACTGGCGCGCACGCGCGAACTGATCCAGAAACGCACCGAGCTGGCCGATGCCACGCACTTGAAAACCACCGATGTGCAACAGGCAATCGACGCCATGGAGCCTGCGGTCCGTGCCCAACATGGGCAGATCCAGGGCGAAGTACGGGTCATCCAAGGGGTGATGATCGGCCTGATTCTGCTGATCGCCCTTCTTATCGATACCTTGCAGCGACGCCTGGCCCGGACCTTGACCCGCCTGGCGCCGGCCCTTTCCACTTGGGCCGAAGGCGATTTCAGTGGCGATATCCGTGTCGGCGCCAGCAACCGTGAATTGCAGGACATCGAAGCCTCGCTCAATCGCCTGCGCGCCTATCTGGTGGATCTGGTCGGTACCATCCGCCTGAACGCCGAACAGGTGGCCGGCAGCAGCCGGACCCTGGCCGAGCTCAGTGGCGAATTGCATAGCGGTGCCGAAGACCAGGCCGGTGACACGGCATTGATCCGCGACTCCCTCAGTGAGCTCGAAGCGACCATCCAGCAAGTGGCCGGCGATGCCAGCCAGGCCGCGGATGCCAGTCGCAGTGCGGGCCATGCCGTGGAGCAAGGCCAGAAAGTGATCGGCATGAGCCTCGCCGGCTTGCACTCGCTCGTCGGCGAAGTGCAGGGCAATGCGCAAATGATCGAACAGCTGGCTGAGGAGTCGGCGACCATCGGCGGCGTGCTGACCGTCATCCGCTCGATTGCCGACCAGACCAACCTGTTGGCCCTCAACGCCGCCATCGAAGCCGCCCGCGCCGGGGAAATGGGCCGCGGCTTTGCGGTTGTGGCCGAGGAGGTCCGCTCCCTGGCTCAACGCACCGCAGGCGCCACGGCCGAGATCCAGGCGCTGATTGCCCGTTTGCAGCAGGCTGCACGCCAGTCCGTGGAAGGCATGCGCGCCCAGGTCGAACACGCCGAAGCCACCGCCAGCCAGGCCCAGGCGGCCGATGGTGCACTGGATAAAATCGTCGAGGCGATCCAGACCATCGCCGATACCGCGGTGCGCATCGCCGATGTCACCGCCCAGCAAAGCGGCGCCGTCAGCGAAATCCGCGATCACAGCGAGCGGATCCACCAACTGGGCGGGGATAACCTGCAGCGCATCGGCCAAGGCCGGGAACAGGGCGACAACCTGCTGCTCCTGGGCGGGCGCTTGCACACGGCGGTGCAGGCGTTCCGGGTGTGAMRLKLLTNLNTVLLVAVCLGLGATLWWSQIALERPYLLMERYLGLSRQFQGEVARNIEDYLASGDALRLSAATQALETLQKDLDQFPPDLARTLSPSLSNLDGFSKTDLLAAGKLAADPQALLLQAERELSASLDQLAQYANGAPAYLPPLFAASQHLGRLSLARDKLVSSGRSELAADVERELANVRTQAQQLNSLPLLGVTASNESGSDDFAALMGLETEEKAAAEDAGIALKRELNSLLGRYPAELARTRELIQKRTELADATHLKTTDVQQAIDAMEPAVRAQHGQIQGEVRVIQGVMIGLILLIALLIDTLQRRLARTLTRLAPALSTWAEGDFSGDIRVGASNRELQDIEASLNRLRAYLVDLVGTIRLNAEQVAGSSRTLAELSGELHSGAEDQAGDTALIRDSLSELEATIQQVAGDASQAADASRSAGHAVEQGQKVIGMSLAGLHSLVGEVQGNAQMIEQLAEESATIGGVLTVIRSIADQTNLLALNAAIEAARAGEMGRGFAVVAEEVRSLAQRTAGATAEIQALIARLQQAARQSVEGMRAQVEHAEATASQAQAADGALDKIVEAIQTIADTAVRIADVTAQQSGAVSEIRDHSERIHQLGGDNLQRIGQGREQGDNLLLLGGRLHTAVQAFRVNANANANANA
D1-35_050001671rssB_2Regulator of RpoSATGACCGAGCCAGAAGACCCCAGCCGCGAGCGCCTCAAGCACCACTTTGCCCAGCGGGTAATTCATCAGGCTCGCCAGATCCTGGAGATATGGCAGCGCCTGCAACGCAGCGAATGGTCCAGTACCGACCTGTCGGAGCTCAGTGAAGCCAATCTGCGCCTGCTGCGCTTTGCCGAGCGTTTCGAGCAACCTGAGCATTGCCAGCTTGCCCAAGGTATCGGCCAGTCGTTGCAAGCGGTAGATGCCAATCGCGGGCGCCTGAGCAGCCAGCTGATCACCGAGATCAACCGCTTGATGCAACGCCTGTCCCGCACCGGCTTGCGCCATGGCGACCAGCTCGAGCAGACCTTCCTGCCACCGCTGCGCAAGCCCATCTACATATTGCTGCAAGACCATGACCGTGCCGAACGGCTGGCCAAGCAACTGGAATTCTTCGGCCTCAGCGCCCAGTCCCTGGACAGCGTCGCGGCATTCCGGGCCGCGATGGTCGAGCGCCTGCCTGCGGCCATTGTCATGGACGTGGATTTCAGCGGCCCGGGCGTGGGCCTGAAGCTGGCTGCCCAAGCCCAGGAAGGCCTGGATCAACCACTGCCGCTATTGTTTTTCAGTTTGCTGGAAACCGATACACCAACGCGGCTGGCCGCCGTGCGCGCCGGCGGGCAGGAGTTTCTCACCGGCACGCTGGAGGCCTCGAGCCTGCTGGAAAAAATCGAAGTGCTGACCTGCGTCGCCCAGTACGAACCCTACAAAGTGTTGATCATCGATGACTCCCGCGCCCAGGCCCTGCACACCGAACGCCTGCTCAACAGCGCCGGCATTGTCACGCGCACGCTGATCGAGCCGATCCAGGCCATGGCCGAGCTGGCGGACTTCCAGCCCGACCTGATCATCCTCGACATGTACATGCCCGCCTGCACCGGTACGGAACTGGCCAAGGTGATCCGCCACAACGACCGCTACGTCAGCGTGCCGATCATTTACCTGTCCGCCGAAGACGACCTGGACAAACAGCTCGACGCCATGAGCGAGGGCGGTGATGACTTCCTGACCAAACCGATCAAGCCCAGGCACCTGATCACCACCGTGCGCAACCGTGCAGCACGGGCCCGCAATCTCAAGGCGCGGATGGTGCGCGACAGCCTCACCGGCCTGTACAACCACACCCATATCCTGCAATTGCTCGAAGACTGCAGCTTCCGCGCCCGCCGTGAGGGCAAGCCCTTGAGCTTCGCCATGCTCGATATCGACCATTTCAAACGGGTCAATGACAGCCACGGCCACCCCATGGGCGACCGGGTGATCAAGAGCCTGGCGCTGTTTCTCAAGCAACGCTTGCGCAAGACCGATTTCATCGGCCGGTACGGCGGCGAAGAGTTCGCTATCGTCATGCCCGACACCGACATTGATGCTGCCTGCACAGTGCTGGACGAAATCCGCCAGCGCTTTGCCGAGATTCACTACCCCGCCCAACCCCAGGACTTGTGGTGCACTTTCAGCGCCGGGGTGGTGGAGATGAGCGAAGAGTCCGACAGCCTGATGATGGCCAGCCAGGCCGACGAGGCGCTGTACCGTGCCAAGCACGCCGGGCGCAATCGGGTGCAGAGCGCCAGGCAATCAAAGCAAAGTGCCACTTTTTCATCGGAATCGACTGATTCGGTCATAAACGTGTAAMTEPEDPSRERLKHHFAQRVIHQARQILEIWQRLQRSEWSSTDLSELSEANLRLLRFAERFEQPEHCQLAQGIGQSLQAVDANRGRLSSQLITEINRLMQRLSRTGLRHGDQLEQTFLPPLRKPIYILLQDHDRAERLAKQLEFFGLSAQSLDSVAAFRAAMVERLPAAIVMDVDFSGPGVGLKLAAQAQEGLDQPLPLLFFSLLETDTPTRLAAVRAGGQEFLTGTLEASSLLEKIEVLTCVAQYEPYKVLIIDDSRAQALHTERLLNSAGIVTRTLIEPIQAMAELADFQPDLIILDMYMPACTGTELAKVIRHNDRYVSVPIIYLSAEDDLDKQLDAMSEGGDDFLTKPIKPRHLITTVRNRAARARNLKARMVRDSLTGLYNHTHILQLLEDCSFRARREGKPLSFAMLDIDHFKRVNDSHGHPMGDRVIKSLALFLKQRLRKTDFIGRYGGEEFAIVMPDTDIDAACTVLDEIRQRFAEIHYPAQPQDLWCTFSAGVVEMSEESDSLMMASQADEALYRAKHAGRNRVQSARQSKQSATFSSESTDSVINVPGPT0015900_1290PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-CELL_FATE_CONTROLPUTATIVE-CELL_FATE_CONTROL-1,PGPT0015900-pleD-K02488
D1-35_050011068hypothetical proteinATGCTGGACTGGAAGAACCGCGCGGGCAGCGCGCCTGAACGCGCCGCCGAACCGAAATCGGACACCCGCAGCTATCTGGGTGGGCTGTTTTTCAGTCGGGCGCTGGCCACGCTCATTGGCCTGTACCTGCTGGTGACTATTGCAGTCGGCTGGTATTGGAGCCAGGAGCCCGAGTTGTTTCCGGTACAGCAGAACGCCCAGGCAGCGGCCGAGAAGGATGGCCGGCAGATGGTGGTCGGCTACACCACCGTGGAAACCCTCAAGACCGTCGCCGGAACCTTGCTGACCAAGCAGGGCGGCTACATTTCCAACGACCGCTTCCCGCCAGGCCTGTGGATGGACAACATGCCCAGTTGGGAATACGGCGTGCTGGTGCAGGTCCGCGACCTGAGCCGTGCCCTGCGCAAGGACTTCGCCCGTTCCCAGTCGCAGTCCGCCGAAGACGCCGACCTGGCCAAGGCCGAGCCGCGCTTCAACTTCGACAACCGCAGTTGGGTGCTGCCGTCCAGCGAATCGGAATACCAGGAAGGCATCAATTCCTTGAGCCGTTATCAGGCGCGCCTGTCCGATCCAAGTCAGAAAAGCGCGTTGTTCTACGCCCGCGCCGACAACCTGAACAACTGGCTGGGGGATGTCGGTACGCGCCTGGGGTCGCTGTCCCAGCGCCTGTCTGCCAGCGTCGGCCGGGTCAAGCTCAACACCTCGCTGAAGACCGAGGTCCCGGCGCCAGGCCAGGTGCCGCAGGTTGACGAAGAGGTGGTCGAGACACCTTGGCTGCAAATCGACAACGTGTTCTACGAGGCTCGTGGTCAAGCCTGGGCGCTGTCTCACTTGTTGCGCGCCATCGAGGTGGATTTCGCAGACGTGCTGGCGAAGAAGAACGCGACGGTCAGCGTGCGGCAGATCATTCGCGAACTGGAGGCTTCACAGGAGCCGATCTGGAGCCCGATGATTCTCAACGGCAGCGGCTTCGGGGTGTTGGCGAACCACTCGCTGGTCATGGCCAACTATATTTCTCGCGCCAATGCGGCGGTGATTGACCTGCGGCAATTGCTCAACCAGGGCTGAMLDWKNRAGSAPERAAEPKSDTRSYLGGLFFSRALATLIGLYLLVTIAVGWYWSQEPELFPVQQNAQAAAEKDGRQMVVGYTTVETLKTVAGTLLTKQGGYISNDRFPPGLWMDNMPSWEYGVLVQVRDLSRALRKDFARSQSQSAEDADLAKAEPRFNFDNRSWVLPSSESEYQEGINSLSRYQARLSDPSQKSALFYARADNLNNWLGDVGTRLGSLSQRLSASVGRVKLNTSLKTEVPAPGQVPQVDEEVVETPWLQIDNVFYEARGQAWALSHLLRAIEVDFADVLAKKNATVSVRQIIRELEASQEPIWSPMILNGSGFGVLANHSLVMANYISRANAAVIDLRQLLNQGNANANANANA
D1-35_05002558yfcDputative Nudix hydrolase YfcDATGGACGAAAGCACCCGGGAGGACGCTCATCGAGTGGCCTCGGATGCCGAGCTGATCGCTTGGGTCGACGAAGACGACAATCTGCTCGGCAGCCTGGTGCGCTCGGATCTGCGCGAGCGAGGCCTGATCGGACGCGGCACCTACATCATGCTGTTCAATTCGGCGGGCGAGCTGTGCGTTCATCGAAGGACTTTGAGCAAGGCTATCTACCCCGGCTATTGGGATGTCGCGGCAGGGGGAATGGTTCAGGCCCACGAGACGTACGCCGAGTCGGCGGCGCGCGAGCTGGCCGAAGAATTAGGCGTGAGCGGCGTCGAATTGGTCGCCCACGATCATTTCTATTTCGAGGACGCCGGCAGTCGCCTGTGGTGCGCGGCGTTTTCCGCCGTGTGGGACGGGCCGTTGGTCCTGCAACCGGAAGAAGTCCTGGAAGCGCGCTTTCTGCCCGTCGAGCAGGTGCTCGATGAAATACGCCACAAACCGTATTGCCCGGACTCCCTGGCGGCGCTTGGGCGCTATTTGCGCGCCCGTGAGCGCGGTGTCGCAAAGAAGCTGTAAMDESTREDAHRVASDAELIAWVDEDDNLLGSLVRSDLRERGLIGRGTYIMLFNSAGELCVHRRTLSKAIYPGYWDVAAGGMVQAHETYAESAARELAEELGVSGVELVAHDHFYFEDAGSRLWCAAFSAVWDGPLVLQPEEVLEARFLPVEQVLDEIRHKPYCPDSLAALGRYLRARERGVAKKLNANANANANA
D1-35_05003372yciHCOG0023putative protein YciHGTGGCCAAAAAAGCCGCATCCTTCGCCGCCCTGGGCGGCCTGGTATTTTCTACCGACGCCGGTCGTCATTGCCCTGATTGCCGCCAGCCGGTGGATGCCTGCATCTGCAAACAGACCGCCATACCCGCCGGAGACGGCATCGCTCGCGTACGCCGCGAAAGCAAAGGCCGAGGTGGCAAGACGGTGACCACGGTCACCGGCGTGCCGCTGGCCGAGGACGCGCTCAAGGAACTGGCAACGACGCTGAAAAAGCGCTGTGGTACCGGCGGCGCGTTGAAGGATGGCGTCATCGAGATCCAGGGCGATCACGTCGAGCTCTTGCTGGCGGAACTCACCCGACACGGTTTCAAGGCAAAGAAGTCCGGCGGCTAGMAKKAASFAALGGLVFSTDAGRHCPDCRQPVDACICKQTAIPAGDGIARVRRESKGRGGKTVTTVTGVPLAEDALKELATTLKKRCGTGGALKDGVIEIQGDHVELLLAELTRHGFKAKKSGGPGPT0015030_218DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0015030-yciH-K03113NANA
D1-35_050041914speABiosynthetic arginine decarboxylaseATGTCCGTACGACGCACACGAAAAGACGATGGCAGCCAATGGACAGTTGCGGACAGCCGCAGCGTTTATGGGATCCGCCATTGGGGGGCCGGGTATTTCGCGATCAATGAAGCCGGTCGCGTCGAAGTCCGTCCGAACGGCCCCGACAGTTCGCCGATCGATTTGTACGAGCAAGTCGACCAGTTGCGCCAGAGTGGCCTTTCGTTGCCGTTGTTGGTGCGCTTCCCCGATATCCTGCAAGATCGGGTGCGTCAGCTCACCGGCGCGTTCGACAGCAACATTGCACGCCTGGAATACCAGAGCCAGTACACCGCGCTTTACCCGATCAAGGTAAACCAGCAGGAGGCGGTGATCGAAAACATCATCGCCACCCAGAATGTCTCCATCGGCCTGGAAGCCGGTTCCAAGCCCGAGTTGCTGGCAGTGCTGGCCCTGGCGCCAAAGGGCGGGACCATCGTCTGCAATGGCTACAAGGACCGCGAGTTCATCCGCCTGGCGCTGATGGGCCAGAAGCTGGGCCACAATGTCTTCATCGTGATCGAGAAAGAGTCCGAAGTCGGCTTGGTGATCGAAGAGGCTGCGTCGCTCAAGGTCAAGCCGCAGGTCGGTCTGCGGGTGCGCCTGTCGTCCCTGGCATCGAGCAAATGGGCCGATACCGGTGGCGAAAAATCCAAGTTCGGCTTGTCCGCCGCGCAGTTGTTGTCGGTGGTCGAGCGCTTCCGCGGCGCCGGCCTCGACCAGGGCATCCGCCTGCTGCACTTCCACATGGGCTCGCAGATCGCCAACCTGGCGGACTACCAGCATGGTTTCAAGGAAGCGATTCGTTACTACGGTGAGCTGCGCAACCTCGGCCTGCCGGTGGATCACATCGATGTCGGCGGCGGTCTGGGCGTCGACTACGACGGTACGCACTCGCGCAACGCCAGCTCGATCAACTACGACATGGACGATTACGCCGGGGTCGTGGTGGGGATGCTCAAGGAGTTCTGCGATGCGCAGAGCCTGCCGCACCCGCACATCTTTTCCGAGAGCGGCCGCTCGTTGACCGCCCACCATGCGATGCTGGTGGTCCAGGTCACCGACGTCGAGAAGCACCATGACGATGTGCCGGTGATCGAAAACAAGGAAAGCCTGCCGGAAACCGTGCAATGGCTGGTGGACCTGCTGGGCCCGACCGATATCGAGATGGTCACCGAGACCTACTGGCGTGCCACCCATTACATGAGCGACGTGGCTGCGCAGTACGCCGATGGCAAGCTGACCCTGGCGGAAAAAGCCCTGGCCGAGCAGTGCTACTTCGCCGTGTGCCGTCGTCTGCACAACTCGCTGAAGGCCCGTCAGCGCTCGCACCGTCAAGTGCTCGATGAGCTCAACGACAAGCTGGCCGACAAGTACATCTGCAACTTCTCGGTGTTCCAGAGTTTGCCGGACACCTGGGCGATCGGCCAGGTGTTGCCGATCCTGCCGTTGCATCGTCTCGATGAAGAGCCACTGCGCCGCGCCGTTCTGCAAGACCTGACCTGCGATTCCGACGGCAAGATCAAGCAATACGTCGATGAGCAGAGCATCGAGACCAGCCTGCCGGTCCATTCGCTCAATCCGGGCGAAGACTATCTGCTGGGCATTTTCCTGGTGGGTGCCTACCAGGAAATCCTCGGTGACATGCACAACCTGTTTGGTGACACCGATTCGGTGAACATCTACCAGAACGCCGACGGCAGCGTGTACCACGCCGGTATCGAAACCCACGACACCATCGAGGACATGTTGCGCTACGTGCACCTGTCGCCGGAGGAGCTGATGACTCACTACCGTGACAAGTGCGCCAGCGCCCGGATCACGGCGGCCGAACGCACCCAGTTCCTGGATGCCCTGCGTCTCGGGTTGACTCGTTCCTCCTACCTGTCTTCCTGAMSVRRTRKDDGSQWTVADSRSVYGIRHWGAGYFAINEAGRVEVRPNGPDSSPIDLYEQVDQLRQSGLSLPLLVRFPDILQDRVRQLTGAFDSNIARLEYQSQYTALYPIKVNQQEAVIENIIATQNVSIGLEAGSKPELLAVLALAPKGGTIVCNGYKDREFIRLALMGQKLGHNVFIVIEKESEVGLVIEEAASLKVKPQVGLRVRLSSLASSKWADTGGEKSKFGLSAAQLLSVVERFRGAGLDQGIRLLHFHMGSQIANLADYQHGFKEAIRYYGELRNLGLPVDHIDVGGGLGVDYDGTHSRNASSINYDMDDYAGVVVGMLKEFCDAQSLPHPHIFSESGRSLTAHHAMLVVQVTDVEKHHDDVPVIENKESLPETVQWLVDLLGPTDIEMVTETYWRATHYMSDVAAQYADGKLTLAEKALAEQCYFAVCRRLHNSLKARQRSHRQVLDELNDKLADKYICNFSVFQSLPDTWAIGQVLPILPLHRLDEEPLRRAVLQDLTCDSDGKIKQYVDEQSIETSLPVHSLNPGEDYLLGIFLVGAYQEILGDMHNLFGDTDSVNIYQNADGSVYHAGIETHDTIEDMLRYVHLSPEELMTHYRDKCASARITAAERTQFLDALRLGLTRSSYLSSPGPT0007770_683DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007770-speA-K01585NANA
D1-35_050051323hypothetical proteinATGTCATGTCCAGCCCGCGAGTCATCATTTCGTCTGGAGATAGCCGGTCTGCCCGAATCCTTTGTTGTCGTGGCCTTCACCGGCAATGAAAACATCAGCGAACCTTTCCTGTTCGAGGTGGAACTGGTGACCAGTGACACGCCGCTGGACCTGGCGGGCCTGCTGTACCGCAGCGTCTGGTTGAGTTTCGGGAGCTGCGGCCGGGGCATTCACGGACAGCTCCACGAAGTTGTGCAGCACCGTCATGGAGGTAATTGCGATGTGCGCATCGAGCCGAAGCTTGCATACCTGGCGCAGCGCTTCAGCCAGCGGGTGTTCAGTGGCCGCTCGGTACCGCAGATCATTCGCCAGGTCTTAAGCGGGCACGGCATCGGCGGGCGCGGGCTGTGCCTGGACTTGAACGGTGATTTTGCGACGCGGGATGTCTGTAGCCAATACCGGGAGTCCGACCTGCAGTTTCTGCAGAGGATATGCGCCGAGTCTGGTATCCGGTTCCATTTTGAGCATGCCCGGGATGGGCACTGCCTGGTTTTCTCCGATGCGCCGGGCAGTGTCTTTTCCGCTGGCGAGGTTATCTACGACGGTGACGGCCAGACTGACGCCGTGCACGCCTTCAGCGTTCAGGCTGGCTCCGAGGGTATCGGCATACTGGCCGCCGAGGGCCAGAGCGATCTGATGCACTTGCACAGCGGCCAGACCCTGACCCTGACCGCTCACCCTTTCAAGGACTGGAACCGGCGCTGGTTATTGACCAGGGTCGAGCATCGTGGCCAGTCAGGTGGATATGCCAACCGGTTCCGAGCCATTCCCTTCGGGCTGTCGTTTGTGGCAGAAAAGGTGCCTGCGAAGCCGGTCATGGTGAGCCGGCAACGCGGATGGGTGGTAGACGTGGATGAGCCTGCAGACCAGGTGCCTGGGCGAGTGGCGGTGCAGTTCGACTGGGTCTATCAAGGGGAAGGGGCCAGCGCCAGCCATTGCTGGCTGCCGTTGGCGCCTGAGCTGGCGGCCTGCGCAGGCGATCGGATTCGTGAGGGCACCGAGGTCCTGGTGAGCTTTATCGAGGGTGACCCGGATCGCCCGCTTATCTGTGCCTTTCTCGGCCCACCGCCCCTCATGGGCACACAGCCAGCGCCAGCCAGTGCGAGTTTGTCAGAAACACCCGGGACGCCTGAAGTCGATGACCACCTGTTGTCTGCAGTGCGCGGTGGCGAGCCGCTGTTCCTGCTGTGCCTGCTGCCCGGCGCAGGGGCGTTCAACCCCTGCGCCCGGGCGGTGTGCATCTGCCGCCTGGTGACGCAACGTGGTACGGGCGCAGCGCCATGAMSCPARESSFRLEIAGLPESFVVVAFTGNENISEPFLFEVELVTSDTPLDLAGLLYRSVWLSFGSCGRGIHGQLHEVVQHRHGGNCDVRIEPKLAYLAQRFSQRVFSGRSVPQIIRQVLSGHGIGGRGLCLDLNGDFATRDVCSQYRESDLQFLQRICAESGIRFHFEHARDGHCLVFSDAPGSVFSAGEVIYDGDGQTDAVHAFSVQAGSEGIGILAAEGQSDLMHLHSGQTLTLTAHPFKDWNRRWLLTRVEHRGQSGGYANRFRAIPFGLSFVAEKVPAKPVMVSRQRGWVVDVDEPADQVPGRVAVQFDWVYQGEGASASHCWLPLAPELAACAGDRIREGTEVLVSFIEGDPDRPLICAFLGPPPLMGTQPAPASASLSETPGTPEVDDHLLSAVRGGEPLFLLCLLPGAGAFNPCARAVCICRLVTQRGTGAAPPGPT0030410_4446DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_PROTEINS,PGPT0030410-vgrG-K11904NANA
D1-35_05006798hypothetical proteinATGAACGCTGCCGCCATGCCTGGGGCCACGCCGCAATGGCTGCTGCTCGACGCGCCGAACGGCCGCGGAGCCGCGCAGCGCCTGCGGGAGCAATTTGCCGAGGCACGGCGCTTTCTTCTGTTCGAAAACACCGATCTTCACGAACTGAGGGACGATGGCCCGCTATTGGTTGATCTGCAGCGATCGCCAGCGCTGGCCAGTCTGTGCCAGCTGGATAGTCAATCCTGGCCGGGGCTACTGATAGTGAGCGCGGCGCCTGCCGAAGTATTGCTGACGCATTTGCGGCGCATGCTGACGGTCACGCTGGGCCTGCACTACAAGGCTTTGTTGAGCTATTACAACCCGCACACCGCGAGTTATTTTTTTGATGGTTGCGACCCTCGGGAACTCAGTTGCTGGCTGGGGCCGATCAGCATTCTGCGCTGGTTCGGAGGCACCTGGGCTGATCGGACCATGGGCTCGGAGGGCTGGCAACAGCTCGCCAATCCTGGCTTGTCGGTGCCGGCTCTGGAGAACGAGCCGGGCCTCAGTGACAGGCAACAAAGCCAGTTGCAGGCGTGTGTATTGGAGCGTCATGTCTGGCGTTGGTCCTGCTCCATTGGGCATGACTACTGGTCGCTCTGGGAATATATGCAGCAAGGGTTGGCGCTGGGGTTCAGCGAACAGAGCGCCCTCGACGGCTGGTTGTGGCTACGCTTGCAATACCCTGATGCTCAGCCAGCGCCGGAGCTGGCTGGCGGCTCGCAACACGAGCGTCTGGAGCAGTTGCGGCGGCTATGGCAAGGCAACCAGGATTGAMNAAAMPGATPQWLLLDAPNGRGAAQRLREQFAEARRFLLFENTDLHELRDDGPLLVDLQRSPALASLCQLDSQSWPGLLIVSAAPAEVLLTHLRRMLTVTLGLHYKALLSYYNPHTASYFFDGCDPRELSCWLGPISILRWFGGTWADRTMGSEGWQQLANPGLSVPALENEPGLSDRQQSQLQACVLERHVWRWSCSIGHDYWSLWEYMQQGLALGFSEQSALDGWLWLRLQYPDAQPAPELAGGSQHERLEQLRRLWQGNQDNANANANANA
D1-35_050071350dinFCOG0534DNA damage-inducible protein FATGCCCAAGCTGATTACCGACTGGCGCGACCGCCTTACTCATCGCCGGGTCTGGGCGCTGGCTGCGCCGATGATTCTCTCGAACATTTCCGTACCGCTGGTGGCGCTGGTAGACAGCACCGTCATCGGCCATTTGCCCCATGCCCATCAGTTAGGCGCAGTAGCGGTCGGAGCGAGTCTGTATACGGTGCTGGCATGGGCCATGGGTTTCCTGCGCATGGGCACCACCGGGTTCGCCGCCCAGGCGGCCGGGCGTGCCGACGGCGCGGCGTTGCGCCAGGTGTTGTTGCAGGGCCTGCTGCTGGCGATGGGGCTGGCGGTGCTGCTCGGTGCCGTCGGCATTCCCTTGAGCGACGTGGCGCTGCACTTCATGCAACCGTCCGCCGAACTCAACCAGTTGACCCGCGATTTCTTCCACACTCGCCTTTTCGGCTTGCCTGCGGCGCTGGCCAGCTATGCGCTGGTCGGCTGGTTCCTCGGCGCCCAGAACGCCCGCGCGCCGCTGGCGATCCTGCTGGTGACCAACCTGGTGAACATCGCGTTGAACCTCTGGTTCGTGATCGGCCTGGACTGGGGCGTGACCGGTTCGGCCCGGGCGTCGGTCATCGCCGAATGGACGGGCGCGCTGGTAGGCCTGGCCCTGGCGCGCAACACCCTGCGCAACTGGCCTGGGCAGATAGCCTGGGCGGCGCTGGGCTTGTGGCAGAGCTGGCGACCGTTGCTGGCGGTGAACCGGGACATTTTCATCCGCAGCCTGGTGCTGCAATCGGTGTTTTTCCTGATCACGGTGCAAGGCGCGCGTCTGGGCGATGCGACCGTGGCCGCCAATGCCCTGCTGCTCAACGGCCTGCTGCTGACGGCCCACGCCCTGGACGGCCTGGCCCACGCCGTGGAAGCACTGTGCGGCCACGCTATTGGGGCTCGCGACCGCCTGGCCCTGCGCCGTGCGCTGGTCGTTGCCAGCGGCTGGTCACTGATTGCCAGCCTCGGGTTTGCCCTGCTGTTCCTGCTTGCTGGGCATTTGTTCATCGACATGCAGACCGACATCGCCGAAGTGCGGAACACCGCTTACCACTACTTGCCTTATCTGGCGGCGTTACCGTTGATTGCGGTATCGAGCTACCTGCTCGATGGCCTGTTCATCGGCGCCACCCGCGCCCGGGAAATGCGCAACGGCATGCTCCTGACCCTGCTACTGACGTTGCCGTTCGCCTGGGTCCTGCAAGGATTGGGAAATCACGGCCTGTGGATCACTTTCCTGCTGTTCATGGCCTTGCGCAGCCTGACGCTCGGTACCTTCGCCTGGCGTTTGCAACGAGACGACAGCTGGCTCGGTGGCAATGCCCGGTGAMPKLITDWRDRLTHRRVWALAAPMILSNISVPLVALVDSTVIGHLPHAHQLGAVAVGASLYTVLAWAMGFLRMGTTGFAAQAAGRADGAALRQVLLQGLLLAMGLAVLLGAVGIPLSDVALHFMQPSAELNQLTRDFFHTRLFGLPAALASYALVGWFLGAQNARAPLAILLVTNLVNIALNLWFVIGLDWGVTGSARASVIAEWTGALVGLALARNTLRNWPGQIAWAALGLWQSWRPLLAVNRDIFIRSLVLQSVFFLITVQGARLGDATVAANALLLNGLLLTAHALDGLAHAVEALCGHAIGARDRLALRRALVVASGWSLIASLGFALLFLLAGHLFIDMQTDIAEVRNTAYHYLPYLAALPLIAVSSYLLDGLFIGATRAREMRNGMLLTLLLTLPFAWVLQGLGNHGLWITFLLFMALRSLTLGTFAWRLQRDDSWLGGNARPGPT0029115_8692DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029115-TC_MATE|norM|mdtK|dinF-K03327NANA
D1-35_05008294hypothetical proteinATGCAGGTAGAAAGCTTTTTCGAATGGCTCGGTCAGGCGCTCGGTTCGGTGATCCGTTTTATCGTCGATCTGCTCAGTGGCCTGTTCAACACCCTGGCCAATGCCGGCGGCAACTTTGTCGAAGGCCTGTCCCGGACGCTGGGAATGGATACTTCAATCATCAGCATCATTGCGCTGATCCTCGGGCTGATGCTGCTGTACTCGGCGATCCGCGCCTTCATGCGGGCGTCGATCGTCATGGGCATCATCTGGCTGGTGCTGGGGTTGTGGCTGTTGAGCTGGATTATTCACTGAMQVESFFEWLGQALGSVIRFIVDLLSGLFNTLANAGGNFVEGLSRTLGMDTSIISIIALILGLMLLYSAIRAFMRASIVMGIIWLVLGLWLLSWIIHNANANANANA
D1-35_05009306hypothetical proteinATGAACCTTGTTGAACTGACCGAACGCCTGCATGCCATCCGTGATCGTAACGATTGGCGGCAATTTCACAGCCCGAAAAACCTGGCCATGGCCGCCAGCGTCGAAATGGCTGAATTGGTGGAGATTTTCCAGTGGTTGACCGAGGAGCAGTCACGCCAGTTGCCCGCGGAAAAACTTGCCCACGCCGGGCAGGAAATCGGTGACATCGTCTTGTACCTGTTGCTGTTGTGCAGCGAGCTGGGCCTGGACATGGACGCCGTGGTGCGCAGCAAGTTGGCCGACAGCGAACGGCGGTTCGGCCAATGAMNLVELTERLHAIRDRNDWRQFHSPKNLAMAASVEMAELVEIFQWLTEEQSRQLPAEKLAHAGQEIGDIVLYLLLLCSELGLDMDAVVRSKLADSERRFGQPGPT0004286_1DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_LEAD_RESISTANCELEAD_RESISTANCE-LEAD_HOMEOSTASIS,PGPT0004286-bmtA-NANANA
D1-35_05010750cmoMCOG0500tRNA 5-carboxymethoxyuridine methyltransferaseATGAGCGATCGCCATTTCGATCAACTCGCCACGCGTTTTGCCGAAAAAATCTATGGAGGAGCCAAGGGGGCGATTCGGCTGGCCGTGCTTCAGGCCGATCTCCTTGAAGCGTTGCCGGATCGCCCCTTGCGAGTGCTGGATATTGGCGCGGGGCTGGGCCACATGTCTCTGTGGCTGGCCGAGCGCGGGCATCAGGTCACCCTGGCCGAACCGGCCGAGCCGATGCTCGAAGGCGCTCGCCAACGCTTTGCCGAGGCGGGCCAGGCCGCAACGTTCATCCAGGCGCCGTGGCAGGATCTGCTCGGCCAGCTCACCGAACCTTACGATCTGGTGCTGTGCCACGCGGTGCTCGAATGGCTGGCCGAGCCCCATGCGATCCTGCCGGTGCTGCATCAGTTGACGGTGCCTGGCGGCTGGTTGTCCCTGGCGTTCTACAACCGCGATGCGCTGGTCTATCGCAACCTGCTCAAGGGGCACTTTCGTAAACTGCGTAAAAACGACATGGCCGGCGAGAAACAGAGCCTGACCCCTCAGCAACCGCTTGATCCACGAGAATTGGCGGCGCAACTTGAAGGCCTGTGGCAGGTCGAAACCCAGAGTGGGGTGCGGGTTTTTCACGACTACATGCCGGTGGAGTTCCAGGGCCGTGCAGAGCTTGCGCAACTGCTGGAGATGGAACTGGCCCACCGTCGCCATCCGGCCTTTGCCGGCTTGGGACGTTATTTGCACTGGGTTTGCCGTCCCCTCTGAMSDRHFDQLATRFAEKIYGGAKGAIRLAVLQADLLEALPDRPLRVLDIGAGLGHMSLWLAERGHQVTLAEPAEPMLEGARQRFAEAGQAATFIQAPWQDLLGQLTEPYDLVLCHAVLEWLAEPHAILPVLHQLTVPGGWLSLAFYNRDALVYRNLLKGHFRKLRKNDMAGEKQSLTPQQPLDPRELAAQLEGLWQVETQSGVRVFHDYMPVEFQGRAELAQLLEMELAHRRHPAFAGLGRYLHWVCRPLPGPT0023655_679DIRECT EFFECTCOLONIZING_PLANT_SYSTEMOTHER_COLONIZATION_RELATED_PROTEINSCOLONIZATION-HOST_INVASION_FACTORSHOST_INVASION-SAM|QUEUOSINE|LIPID_METABOLISM,PGPT0023655-smtA-K06219NANA
D1-35_05011609hypothetical proteinATGAAAGGTCGTTCAGGGTTAATGGTGTTGTGCCTGGGGCTGGCGGCCTGTCAGGGCAGCAACCCTTATGTCGCGACATCCAGGCCGCTGCCGCCAGCACCACCCGAGGCCGCCACGGTATTCGATCGCAGCGCCTATCCCGCGCCGCCCCGGGATTACGGGCGCTATCGCAGCTGGTCCTGGCTCAACGGCCGACTGCCACCGGGCACGGCCTGGGCGGACTCGGCGCAGGTGGCCGAAGCGGTGAGCAATGCCCTGGACCAGCGCGGCCTGCGCCCGCTGCATGACAATCGGCCGGCGGACCTCTTCGTCAGTGCCGACCTGCGCCTGGAGACCCGCGTACGCCAGGTTCGCGATGATTATGATTCGGGCTACTACGGTGGTTACAACCGATACGGGCCGGGTTATGGCATGTATAACAGCGTCCCCGTGGTACGCACTTACCGGGAGCAGGTCGTGGTGGTTCGGGTTGATCTGTTCGATGCCCGCAACAACCAGCCGGTGTGGAGTGCCAGCGCCGAGACCAGCCAGCGAGGCAGTCAGAGCGAACGTAGCGATGCCATTCGTGAGGCAGTGGAAAAGGCTCTTTCGGCTTATCCTCCCAGTTGAMKGRSGLMVLCLGLAACQGSNPYVATSRPLPPAPPEAATVFDRSAYPAPPRDYGRYRSWSWLNGRLPPGTAWADSAQVAEAVSNALDQRGLRPLHDNRPADLFVSADLRLETRVRQVRDDYDSGYYGGYNRYGPGYGMYNSVPVVRTYREQVVVVRVDLFDARNNQPVWSASAETSQRGSQSERSDAIREAVEKALSAYPPSNANANANANA
D1-35_05012558hypothetical proteinATGTTCCGCCGTATCGCCCCATTTGCCCTGGCCTTGTTGCTTGGCGCCTGCACTTCCAATCAGGTCAATCATGACTTCGACACCACCCGCGATTTCGCGGCCTACCGCAGCTGGAGCTGGAAAGAGCCGGCGCTGCAGTACCGTCCGGATGACCCGCGCATCAAGAGCGACCTGACCGAACAGCGGATCCGCCAGGCCATTGCCGATCAGCTTGATCAGCGCGGCTTGCGCCCGGCTCCGTCCGGTACCCGCAGCGATGTGCAGGTCCAGGCCTACCTGATCGTTGAGGACCGTCAGCAACAGGTGACGACAAACTACGGCGGCGGCTGGGGCGGCCCCTGGAATGGCTATTGGGGCGGGCCGATGTATAACGAAACCCGCAACGTCAGCTACAAAGTCGCCACGGTGCAGATCGACCTGCTCGACGGCAAGGACGGCAAGCTGGTGTGGCGCGGTAGCGATGAGCAACTGCTCAGCGAGTCGCCCAACCCTACGGAGCGCAGCACGAAGGTGCGCGAGACGGTGGGGCGGATCCTGTCGAATTATCCACCGCGTTGAMFRRIAPFALALLLGACTSNQVNHDFDTTRDFAAYRSWSWKEPALQYRPDDPRIKSDLTEQRIRQAIADQLDQRGLRPAPSGTRSDVQVQAYLIVEDRQQQVTTNYGGGWGGPWNGYWGGPMYNETRNVSYKVATVQIDLLDGKDGKLVWRGSDEQLLSESPNPTERSTKVRETVGRILSNYPPRNANANANANA
D1-35_05013855hypothetical proteinATGACGATCCATTGGCATGAGATACACGCCGCGCAGTCGATGTCCGGGCTGTACGCCAAGGCCGCGACACGCCGCAAGATCACCGGCACTACCTTGCCGGACGTTGGGCTGCGCCAAGTGATCCAGGTTGATCAGCAACGCCTGGCGGCCTATCGCAAGGTCTGCGGTTTTACCGAAAACGGTCTGCTGCCACCGACCTATCCCCATGTGCTGGCGTTCGCCCTGCAAATGCAGCTACTGACGGATCGGGATTTTCCGTTCCCGCTGCTGGGGTTGATCCACCTCAGCAACCGCATCCGCATACTGCGGCCCATGGGCGGGGTCAGCCAGGTGCGCGCCAGCGTCAATGTCGAGAATCTCCAGCCGCACGCCAAGGGCGCGGTGTTCGATCTCGTGACCCGCATTGAAGATCAGTTGGGACCGCTGTGGCAGGCCGAAAGCCAGATGCTGTGCAAAGGCGTCCAGCTTGATGGGGCGCTGGTGGAGGAACCGGCGATTGCCGCCCTTGAGTTGACGGAAGTGGCACATTGGACAGCACCTGCGGACATTGGCCGGCAATACGCCAAGGTGTCCGGCGACTACAATCCGATCCACCTGAGCGCTGCCAGCGCTCGGCTGTTCGGCTTCCCCACCGCCATCGCCCACGGCCTGTGGAACAAGGCCCGGACGTTAGCGGCGCTGGACGACCATTTGCCCGAGGCCAACATCGAGATCGAAGTGAACTTCAGGAAACCGGTGCGCCTGCCCAGCGAGGTGACGCTGCTGGCGAGCGCCGCGGGCTCCAGTGGAAAACTGCGGCTGGTGGGGGCTGGAGAGTTGGAACACATGCTCGGCAGTTGGCAGCCGGTTGCCTGAMTIHWHEIHAAQSMSGLYAKAATRRKITGTTLPDVGLRQVIQVDQQRLAAYRKVCGFTENGLLPPTYPHVLAFALQMQLLTDRDFPFPLLGLIHLSNRIRILRPMGGVSQVRASVNVENLQPHAKGAVFDLVTRIEDQLGPLWQAESQMLCKGVQLDGALVEEPAIAALELTEVAHWTAPADIGRQYAKVSGDYNPIHLSAASARLFGFPTAIAHGLWNKARTLAALDDHLPEANIEIEVNFRKPVRLPSEVTLLASAAGSSGKLRLVGAGELEHMLGSWQPVANANANANANA
D1-35_050141353hypothetical proteinATGTCAGACCGTTACATAGACTTTGCCAATTCGCCCATTGGCCTGCGTCTGGTTGGCGCTCTCGGCTTGCCATCGCCGGTACGCCTGGAGCGTTGGCAAGCCGGGCGCCTGCGGCCAATCGAGGGTGCCTTGCTGCTGGGCGGCGGGCCGCTGACCGAACAGGTCGGCACATTCGCCAAGCGCCTGACCGACGCCATTTTCATCTACGGTGGCGAACCGACGCTCGCCACCGAATGGATCCCCGGGCACGGCCCGAAAATCAAGGCTGTGGTGTACGACGCCAGCCACCTGGCGCAGGTCGACCAGCTCAAGCAGTTGCGCGAGTTTTTCCAGCCGCTGATGAAAAATCTCGACCACAGCGCTCATGTCGTCATCCTCGGCCGCGCTCCGGAAAACCTCGACGACCCGTTCGCCGCCAGCGCCCAGCGGGCTTTGGAGGGTTTCAGCCGATCCCTGGCCAAAGAGCTGCGCCATGGCGGGACGCTGCAGTTGCTGTACGTCGGCGAAGGCGCCGAAACCCAGCTGGAAGGTGCGCTGCGGTTTTTCCTGTCGCCCAAGAGTGCCTACGTTTCCGGGCAAGTGATTCGTCTCAAGGCCTGTGCGACCCAGGTCCAGGACTGGACCCGTCCGTTGACGGGGCTCAAGGCATTGGTTACCGGCGCTGCCCGTGGCATCGGCGCCGCCATTGCCGAAACACTGGCCCGCGATGGCGCCGATGTGATCCTGCTGGACGTACCGCCAGCCAAGGCCGACCTCGATGCCTTGGCCGCACGCCTGAGCGGGCGCAGCCTGACGCTGGACATCTGCGCAGAAGACGCAGCCACGCAGTTGATTGAACACCTGCCCGACGGCGTCGACATCGTTGTACATAACGCTGGCATCACCCGGGACAAGACCCTCGCCAACATGACCCCGGAATTCTGGGACGCGGTGCTGGCAGTCAACCTCAATGCGCCGCAAGTGCTGACCAAGGCCCTGCTCGACAGCGGCACCCTGCGCGACAACGGCCGGGTCATCCTGCTGGCATCCATCAGTGGCATCGCCGGCAATCGCGGCCAGACCAACTACGCCGCGAGCAAGGCCGGGCTGATCGGCCTGGCTCAAGCCTGGGCGCCAACCCTGCAGGCCCGAGGCATCAGCATCAACGCCGTGGCGCCAGGCTTCATCGAAACCCGCATGACCGCAGATATTCCTTTCGCCCTGCGCGAAGCCGGGCGCCGCATGAGCTCGCTGGGCCAGGGCGGCCTGCCCCAGGATGTCGCCGAAGCCGTGGCCTGGCTCGCGCAACCGGGCACCGGTGCCGTGACCGGACAGGCGCTGCGCGTGTGTGGGCAAAGCCTGCTGGGGGCCTGAMSDRYIDFANSPIGLRLVGALGLPSPVRLERWQAGRLRPIEGALLLGGGPLTEQVGTFAKRLTDAIFIYGGEPTLATEWIPGHGPKIKAVVYDASHLAQVDQLKQLREFFQPLMKNLDHSAHVVILGRAPENLDDPFAASAQRALEGFSRSLAKELRHGGTLQLLYVGEGAETQLEGALRFFLSPKSAYVSGQVIRLKACATQVQDWTRPLTGLKALVTGAARGIGAAIAETLARDGADVILLDVPPAKADLDALAARLSGRSLTLDICAEDAATQLIEHLPDGVDIVVHNAGITRDKTLANMTPEFWDAVLAVNLNAPQVLTKALLDSGTLRDNGRVILLASISGIAGNRGQTNYAASKAGLIGLAQAWAPTLQARGISINAVAPGFIETRMTADIPFALREAGRRMSSLGQGGLPQDVAEAVAWLAQPGTGAVTGQALRVCGQSLLGAPGPT0003180_455DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-35_050151278fadICOG01833-ketoacyl-CoA thiolase FadIATGGCACAGCTACGCCGCGTCGCGATCATCGGCGGTAACCGCATTCCTTTCGCCCGCTCCAACGGGCCCTATGCCACCGCCAGCAACCAGGCGATGCTGACCGCTGCGCTTGAAGGCTTGATCGAGCGCTACAACCTGCACGGCGTGCATATCGGGGAGATGGCCGCGGGGGCGGTGCTGAAGTTGTCCCGGGACATGAACCTGACCCGCGAGTGCGTGCTCGGCTCGCGGCTGTCGCCCAGCACACCCGCCTATGATGTGCAGCAGGCCTGCGGCACGGGGCTTGAGACGGTGCTGCTGGTGGCCAACAAAATCGCCCTCGGGCAGATCGACAGCGCCATTGCCGGCGGCGTGGACACCACCTCCGACGCACCGATCGGCGTCAATGAAGGGCTGCGCAGGATCCTGCTGCAAGCCAATCGCGCGAGAACCACCGCCGATAAAATCAAGACGTTTTTGCAATTGCGCCCCGGGCACCTGGTACCTGACCTGCCGCGCATCAACGAGCCGCGCACTGGCCTGAGCATGGGCGAGCACTGCGAGTTGATGGCGCAAACCTGGCAGATCCCCCGGCCAGAGCAGGATCAGTTGGCCTTGGAGAGTCATCAAAAAATGGCCGCCGCTTACGCCGAAGGCTGGCACAACGACCTGATGACGCCGTTTCTCGGCCTGACCCGCGACAACAACCTGCGCCCGGACCTGACCCTGGAGAAACTCGCTTCCCTCAAGCCAGCCTTCGAAAAAACCGCCAAGGGCACGCTGACGGCGGGCAACTCCACCCCACTGACCGATGGCGCCTCGCTGGTATTGTTGGCGAGCGAGGAGTGGGCCAACGCCCGTGGGCTGCCGATCCTGGCTTACCTGCGTGACGGCGAAACGGCGGCAGTGGACTTCGTCAACGGCGCCGAAGGCCTGCTGATGGCGCCGGTCTATGCCGTGCCGCGGCTGTTGGCGCGCAACGGCCTGACCTTGCAGGACTTCGACTATTACGAGATTCACGAGGCGTTCGCCGCCCAGGTGCTGTGCACGTTGAAAGCCTGGGAAGACGCGGATTACTGCAAGACCCGCCTGGGCCTTGATGCGCCGCTGGGTACTCTCGACCGCAGCCGGCTGAACGTGAAGGGCAGCTCACTGGCCGCCGGGCATCCGTTTGCCGCAACCGGCGGGCGCATTGTCGCCAACCTGGCCAAGTTGCTGGACGCGGCAGGGAAGGGCCGGGGGCTGATTTCTATCTGCGCAGCCGCCGGCCAAGGGGTGACGGCTATCATCGAGCGCTGAMAQLRRVAIIGGNRIPFARSNGPYATASNQAMLTAALEGLIERYNLHGVHIGEMAAGAVLKLSRDMNLTRECVLGSRLSPSTPAYDVQQACGTGLETVLLVANKIALGQIDSAIAGGVDTTSDAPIGVNEGLRRILLQANRARTTADKIKTFLQLRPGHLVPDLPRINEPRTGLSMGEHCELMAQTWQIPRPEQDQLALESHQKMAAAYAEGWHNDLMTPFLGLTRDNNLRPDLTLEKLASLKPAFEKTAKGTLTAGNSTPLTDGASLVLLASEEWANARGLPILAYLRDGETAAVDFVNGAEGLLMAPVYAVPRLLARNGLTLQDFDYYEIHEAFAAQVLCTLKAWEDADYCKTRLGLDAPLGTLDRSRLNVKGSSLAAGHPFAATGGRIVANLAKLLDAAGKGRGLISICAAAGQGVTAIIERPGPT0008320_1572DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0008320-atoB-K00626NANA
D1-35_050161029hypothetical proteinATGCACATCCTCAGACACCTCAAGCGCATGGCGACCGACTGGTTCCTGTGCGGCATGTTGCTCGCCACGCTGCTGGCGTATTTCTTCCCACGCTTCGGCGCTACCGGCGGCGCCATGCATGCCGAATGGGTGGTCAACATTGGCATCTTCGTGGTGTTTTTCCTCCACGGCGTCAATCTGTCCGGCGAGCAGATCCGCCATGGCCTGAAAAACATCCGGCTGCACCTGATGGTGCAAGGCTTCACCTTTGGGGTATTTCCATTGATCTGGCTACTCGGCAACTGGACACTGGGCAGCCATGTGCCGTCCTTGTTGATGCTGGGGTTCTTTTACCTGTGCGCGTTGCCTTCGACCATTTCGTCCTCGGTGGCCCTGACCGGCAGCGCCGGCGGCAACGTACCCGCGGCGATTCTCAACGCTAGCTTGTCCAGCGTGCTGGGGGTTCTCCTGACGCCGCTGCTGGTCAGCCTGGTGGTCGGCAACGGTGCCGGCGGCATCGACCTGGGCTCGACGCTGCTCGACCTGTGCATGATGTTGCTGTTGCCGCTGGTGCTCGGGCAGTTTTTGCGGCGCTGGCTGGCCGGTTTTTTCGCGCGCTACAAGCGCTATACCAGCATCATCGACAAACTGGTCATCCTGCTGCTGGTTTACGCCGCATTCTGCAATTCGATGATTTCCGGGATCTGGCAACAACAAGGTCATGGCGTGCTGCTCAGCGCCGTGCTGGGCAGTGCGGTGTTGCTGGCTGTCATCCTGTGGATGACCACCCGCACCGCTCGCGCCCTGCGTTTCAACAACGCCGATGAAGTCGCCGCGGTATTTTGCGCGAGCAAGAAATCCCTCGCCGCCGGAGTGCCGATGGCGGCGCTGATTTTCGGCAACAACCCCGGCCTCGGGCTGATCCTGCTGCCGATCATGATCTATCACCCGCTGCAATTGATCGTCTGCTCGATCCTCGCCGAACGCTATGCAAGCCGGCAACGGGCGCAGGCATCGCAAAAGAGCGAGGCCATCGTCAGCGCTCGATGAMHILRHLKRMATDWFLCGMLLATLLAYFFPRFGATGGAMHAEWVVNIGIFVVFFLHGVNLSGEQIRHGLKNIRLHLMVQGFTFGVFPLIWLLGNWTLGSHVPSLLMLGFFYLCALPSTISSSVALTGSAGGNVPAAILNASLSSVLGVLLTPLLVSLVVGNGAGGIDLGSTLLDLCMMLLLPLVLGQFLRRWLAGFFARYKRYTSIIDKLVILLLVYAAFCNSMISGIWQQQGHGVLLSAVLGSAVLLAVILWMTTRTARALRFNNADEVAAVFCASKKSLAAGVPMAALIFGNNPGLGLILLPIMIYHPLQLIVCSILAERYASRQRAQASQKSEAIVSARNANANANANA
D1-35_05017792nimR_2HTH-type transcriptional regulator NimRATGCCGACTAACGGACACCAACAGCTCGAAAGACGCATTCCGGACCTGACGGAGCTGCCTCGGCCGCTTTATGCCCGGGTCGAAAGTCTGAATGCCGGTTCGTGGACCCAGGCTCATCGCCACGATTGGGTGCAATTCTCCTACGCGATCAGTGGCGTGCTCGGCGTCCATACGGCCGAAGGCAGCTTCTTCGCGCCACCGCAGTGGGGCATCTGGATCCCGGCCGACCTGGAGCACCAGGTCGTGACGTCCATGCGCGCGGAAATGCGCAGTCTTTACGTCCATCGCCAGGCGTGCCCGTGGTCCGAAGATCGTTGCCGGGTGCTGGAAGTTACACCGCTGGCGCGGGAGCTGATCAAAGTGTTCTGCCAGTTTCCCGCCACTTACCCACAGGGCGAGACCCAGGAAACACGCTTGGTCCAAGTGCTGCTGGACCAATTGGCGGCGCTGCCGGAGGTGGGCTTTTCCCTGCCATTGCCCCGTCATGCTCGTTTGTTGGAACTGTGCAACGAATTGATCGAGCAACCCGAAGGCCACGTGACCCTGCAAGCCTGGGCCGAGCGCCTGGGCACGTCGGAAAAAACCTTGATGCGCCTGTTCCAGCGTGAAACCGGCTTGAGCTTCCGTGCGTGGCGCCAGCGCATGCGCCTGTTGTCTTCCCTGGAATCGCTGGAACAGGGCGATAGCGTGACCAGCGCGGCCTTATCCTGTGGGTATGATTCGACGTCCGCTTTCATTGCGGCATTCAAGGGACTGTTCGGTTTTACGCCGGGGGAACTGTTCAAACGCTGAMPTNGHQQLERRIPDLTELPRPLYARVESLNAGSWTQAHRHDWVQFSYAISGVLGVHTAEGSFFAPPQWGIWIPADLEHQVVTSMRAEMRSLYVHRQACPWSEDRCRVLEVTPLARELIKVFCQFPATYPQGETQETRLVQVLLDQLAALPEVGFSLPLPRHARLLELCNELIEQPEGHVTLQAWAERLGTSEKTLMRLFQRETGLSFRAWRQRMRLLSSLESLEQGDSVTSAALSCGYDSTSAFIAAFKGLFGFTPGELFKRNANANANANA
D1-35_05018894hypothetical proteinATGAAGACTCCAAAACGCATTGAACCCCTGATCGAGGACGGTCTGGTCGACGAGGTGCTGCGCCCACTCATGAGTGGTAAAGAAGCAGCTGTTTATGTGGTGCGCTGCGGCAACGAGCTACGTTGCGCCAAAGTCTACAAGGAGGCGAACAAGCGAAGTTTTCGCCAGGCGGCCGAATACCAGGAAGGCCGCAAGGTGCGCAACAGCCGTCAGGCCCGGGCCATGGCTAAAGGCTCGAAGTTTGGCCGCAAGGAAACCGAAGACGCCTGGCAGAACGCCGAAGTGGCCGCGCTGTTCCGGCTGGCCAGCGCCGGCGTGCGGGTTCCGAAGCCGTATGACTTCCTCGAGGGCGTGCTGCTGATGGAACTGGTGGCCGACGAATACGGCGATGCGGCGCCGCGTCTCAACGACGTGGTGCTGGAGCCGGATCAGGCCCGCGAATATCACGCTTTTCTGATTTCCCAGATCGTGTTGATGCTGTGTACCGGTCTGGTGCACGGCGACCTGTCGGAGTTCAACGTGCTGCTGACGCCGACGGGGCCGGTCATCATTGACCTGCCGCAAGCGGTGGACGCTGCCGGGAACAACCACGCCTTCAGCATGCTGGAGCGGGACGTCGGCAACATGGCGTCCTACTTCGGTCGGTTTGCCCCGGAGCTGAAACGCACCAAATACGCCAAGGAAATGTGGGCCCTGTATGAAGCAGGCACCCTGCACCCGGCGAGCGTGCTGACCGGTGAGTTCGACGAGCCGGAAGAACTGGCGGATGTCGGCGGGATCATGCGCGAAATCGAGGCCGCGCGCCTGGATGAAGAGCGCCGCCAGGCCGTACGCGCCGCTGACGATGCGCCACCCGGCAAGACCGAAGAGCCGCCTCCGCCGTGGATGCAGTGAMKTPKRIEPLIEDGLVDEVLRPLMSGKEAAVYVVRCGNELRCAKVYKEANKRSFRQAAEYQEGRKVRNSRQARAMAKGSKFGRKETEDAWQNAEVAALFRLASAGVRVPKPYDFLEGVLLMELVADEYGDAAPRLNDVVLEPDQAREYHAFLISQIVLMLCTGLVHGDLSEFNVLLTPTGPVIIDLPQAVDAAGNNHAFSMLERDVGNMASYFGRFAPELKRTKYAKEMWALYEAGTLHPASVLTGEFDEPEELADVGGIMREIEAARLDEERRQAVRAADDAPPGKTEEPPPPWMQNANANANANA
D1-35_05019390hmrRHTH-type transcriptional regulator HmrRATGAACATTGGCCAGGCAGCCCGCCAGAGCGGCCTCAGCGCAAAGATGATCAGGTACTACGAATCCATCGGCCTGCTCAGGGCAGCCCATCGCACGGAGAGTGGCTATCGGATCTATGGCGCCGATGACTTGCATACGTTGGCATTCATCAAGCGCTCCCGGGATCTGGGGTTTTCCCTGGAAGAGGTCGGCAAGTTGCTGACTTTGTGGCAGGACCGTCAGCGTGCCAGCGCCGACGTAAAGGCTCTGGCCCGGCAACATATCGACGAACTGAACCAGAAAATTCGCGAACTGGCCGAACTGCGCGACACGCTCCAGGATCTGGTGGAGCACTGCCAGGGCGATCATCGCCCGGATTGCCCGATCCTCAGGAAACTGGCGTCGGGGTGAMNIGQAARQSGLSAKMIRYYESIGLLRAAHRTESGYRIYGADDLHTLAFIKRSRDLGFSLEEVGKLLTLWQDRQRASADVKALARQHIDELNQKIRELAELRDTLQDLVEHCQGDHRPDCPILRKLASGPGPT0004135_891DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTIDRUG_TRANSPORT-EFFLUX_PUMP_MexPQ-OpmE,PGPT0004135-cueR-K19591NANA
D1-35_050202394copA_3COG2217Copper-exporting P-type ATPaseATGTCCGAGTCCACCACCTTCGATTTGCCGATTTCCGGCATGACCTGCGCAAGCTGTGCCGGGCGAGTCGAGCGAGCCTTGAGCAAGGTCGCCGGCGCCAGCGCCGTCAGCGTCAACCTGGCAACGGAACAGGCGCGGATCCAGGCCCCGCAGGGAAGCCTGCCGGCATTGATGCAGGCGGTCGAGCAGGCAGGTTACAGCGTTCCCGTCCAGACCCTGGAGTTGAGTATCGAGGGCATGACCTGCGCCTCTTGCGTGGGCCGGGTCGAACGGGCGTTGGGGAAAGTTGCCGGGGTGAACCGGGCCAGTGTCAATCTCGCCAATGAGCGAGCACACCTCGAATTGCTCGGGCAGGTTGATCCGCAAAGCCTGATCGATGCAGTCAAGCGCGCCGGTTACGACGCCAGTGTCTGGCAAGTCGAACAGCCTCGAAAAACCCAAGCCGATCAGCTGAGCCGCGAGCGCGTGGCCCTGGTGCTGGCGATTCTGCTGTCGATCCCGCTGGTATTGCCGATGCTGTTGCAGCCGTTCGGCGTGCATTGGATGCTGCCGGCCTGGGCGCAATTCGCGCTGGCGACGCCGGTGCAATTCATCTTCGGTGCGCGGTTTTACGTCGCGGCGTTCAAAGCCGTCCGCGCCGGCGCCGGAAACATGGACCTGCTCGTTGCCCTGGGCACCAGCGCCGGCTATGGCTTGAGCCTCTATGAGTGGGCGATGGCCCGACCGGGGAGCATGCCGCACCTGTATTTCGAGGCATCGGCCGTGGTGATTGCCCTGGTGCTGCTGGGCAAGTACCTGGAAAGCCGCGCCAAACGACAGACCGCCAGCGCCATCCGCGCCCTCGAAGCCTTGCGACCGGAGCGGGCGATTCAAGTGGTTGACGGTCAGGAACGGGACGTCGCTATCAGTGCCCTGCGCTTGAATGACCTGGTGCTGGTCAAGCCCGGCGAGCGCTTCCCGGTGGACGGTGAAGTGCTCGAGGGCCAGAGTCACGCCGACGAGGCGTTGATCAGCGGCGAAAGCCTGCCCGTGCCGAAGCAGCCCGGTGATCAGGTCACTGGCGGCGCGATCAATGGCGAAGGGCGCCTGTTGGTGCGCACCCGGGCCCTGGGGGCCGAGACCGTGCTGGCACGCATCATTCGCCTGGTGGAAGACGCCCAGGCCGCCAAGGCGCCGATTCAGAAGCTGGTGGACAAAGTCAGCCAGGTTTTCGTGCCGGTCGTATTGATCCTGGCACTCGCAACGTTGCTTGGCTGGTGGCTCTACGGTGCGCCGCTGGAGACGGCGCTGATCAATGCCGTCGCCGTGCTGGTGATCGCCTGCCCCTGTGCCCTGGGCCTGGCGACGCCGACGGCAATCATGGCCGGCACTGGCGTGGCCGCCCGCCACGGCATTCTGATCAAGGACGCCGAGGCGCTGGAACGTGCCCATGAAGTCGGCACGGTGGTGTTCGACAAGACCGGCACCCTGACGTCCGGCACGCCACGCATCGCCCATCTGGTGGCGCTTGACGGTGATGAAGACGCACTGCTGAACATGGCCGGCGCCTTGCAACGCGGCAGCGAACACCCGCTGGCCAAAGCGGTGCTCGACGCTTGCGCCGAACGCGGCCTGAGCGTAGCGGATGCCAGCGATAGCCAGTCCCTGACCGGACGCGGCATCGCCGGTAGCCTCGACGGGCGCCGCCTGGCCTTGGGAAATCGTCGTCTGCTGGAAGAGCTGGGCCTGAACCCCGGTTCGCTGGCCGAGTCGGCGCAAGCCTGGGAAACCGAAGGCCGAACCCTGTCCTGGCTCGTCGAGCAAGGCGCAACGCCTCGGGTCCTGGGCCTGCTCGCCTTCGGCGATACCCTCAAGCCCGGCGCTCTGGCGGCGGTCGAGGCCTTGAAGCAACGTCACATCGCCAGCCACCTGCTCACGGGCGACAACCGGGGCAGCGCTCGGGTCGTTGCCCAGGCATTGGGAATCGCCAACGTCCACGCCGAAGTGTTGCCGGGCGACAAGTCCGCCATCGTTCAACAACTGAAAACCCACTCGGTGGTGGCGATGGTCGGCGATGGCATCAACGACGCTCCGGCCCTGGCCGCCGCGGACATCGGCATTGCCATGGGCGGCGGCACCGACGTGGCGATGCAGGCCGCCGGCATCACCCTGATGCGCGGCGATCCGCGCCTGGTACCGGCGGCGCTGGACATCAGCCGCAAGACCTACGCGAAAATCCGTCAGAATCTGTTCTGGGCGTTCGTCTATAACCTGATCGGCATTCCGCTGGCGGCGTTCGGTTTGCTCAACCCGGTGTTGGCCGGCGCAGCCATGGCGCTGTCGAGCGTCAGCGTGGTGAGCAATGCATTGTTGTTGAAATTCTGGACACCCGCGCATCTGGAGGACAAGCGATGAMSESTTFDLPISGMTCASCAGRVERALSKVAGASAVSVNLATEQARIQAPQGSLPALMQAVEQAGYSVPVQTLELSIEGMTCASCVGRVERALGKVAGVNRASVNLANERAHLELLGQVDPQSLIDAVKRAGYDASVWQVEQPRKTQADQLSRERVALVLAILLSIPLVLPMLLQPFGVHWMLPAWAQFALATPVQFIFGARFYVAAFKAVRAGAGNMDLLVALGTSAGYGLSLYEWAMARPGSMPHLYFEASAVVIALVLLGKYLESRAKRQTASAIRALEALRPERAIQVVDGQERDVAISALRLNDLVLVKPGERFPVDGEVLEGQSHADEALISGESLPVPKQPGDQVTGGAINGEGRLLVRTRALGAETVLARIIRLVEDAQAAKAPIQKLVDKVSQVFVPVVLILALATLLGWWLYGAPLETALINAVAVLVIACPCALGLATPTAIMAGTGVAARHGILIKDAEALERAHEVGTVVFDKTGTLTSGTPRIAHLVALDGDEDALLNMAGALQRGSEHPLAKAVLDACAERGLSVADASDSQSLTGRGIAGSLDGRRLALGNRRLLEELGLNPGSLAESAQAWETEGRTLSWLVEQGATPRVLGLLAFGDTLKPGALAAVEALKQRHIASHLLTGDNRGSARVVAQALGIANVHAEVLPGDKSAIVQQLKTHSVVAMVGDGINDAPALAAADIGIAMGGGTDVAMQAAGITLMRGDPRLVPAALDISRKTYAKIRQNLFWAFVYNLIGIPLAAFGLLNPVLAGAAMALSSVSVVSNALLLKFWTPAHLEDKRPGPT0004090_4276DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE-COPPER_TRANSPORT,PGPT0004090-copA|ctpA-K17686NANA
D1-35_05021384hypothetical proteinATGCGCTGGTCAGCGTTCAGCCTGTTTTGCATGCTCGGTTTTTCTGCATTGGTGCCCCAGGCATCGGCCGCCGGCGAAGATTTCGGTGTGCTGATCATTTCCCGCGAGCGCCTGGAAGTGTCGACCAACTGCGAAATCGGCATCTACATTCAGGACCAGCTCGCGGCCAGGCTGTTCCAGGAGCAGAGCACTTCATTCAATTTGCCGCCGGGGCAGTTCTCCTTGCGCCTGAAATTGCTGCCAGGCCAGGCGCCGGGTTGCAACCCAGGCATGCTTGCCCCCGGTTCGCAGAACATCACGCTCAAGGCCGGCGACATCCTGAAGTACCGCATCGCCATGACGCATGAGGGCATGTACCTCAAGCAGGCTGATCTCGGTTACTGAMRWSAFSLFCMLGFSALVPQASAAGEDFGVLIISRERLEVSTNCEIGIYIQDQLAARLFQEQSTSFNLPPGQFSLRLKLLPGQAPGCNPGMLAPGSQNITLKAGDILKYRIAMTHEGMYLKQADLGYNANANANANA
D1-35_05022198hypothetical proteinATGCAGATCTTCAATGTTCAAGGCATGTCCTGCGGTCATTGTGTAAAGGCAGTCACTCTGGCTCTTCAAGCCAAAGACCCGGACGCCGAGGTAAAGGTCGATCTGGGCGCCAAGACTGTTGAGGTCCAAAGCAAGTTGTCGTCCGATACCGTAATCGAGGCAATCAGGGAAGAGGGTTACGAAGCCAGTCCTGCTTGAMQIFNVQGMSCGHCVKAVTLALQAKDPDAEVKVDLGAKTVEVQSKLSSDTVIEAIREEGYEASPAPGPT0004125_3767DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COPPER_RESISTANCECOPPER_RESISTANCE_MEDIATION,PGPT0004125-ATOX1|ATX1|copZ|golB-K07213NANA
D1-35_050231203bcr_2Bicyclomycin resistance proteinATGAACCTCCGTACCATTCTGATTCTTGGCGCCTTGAGCGCTTTTGGTCCCTTGGCGATCGATTTCTATCTGCCGGCCTTCCCGGCAATGGCGATCGCCTTTGGCACCGATGAAAACCATGTCCAGCTGACCCTGGCCGCCTACTTCCTCGGGCTGTCCCTCGGGCAACTGGCCTACGGGCCGGTGGCGGATCGCTTTGGACGGCGTATCCCGTTGCTGACAGGCGTCGGCTTGTTCACCGTGGCATCGCTGGCCTGTGCCTATGCGCCCAGTCTCGAATGGCTGATTGGCGCTCGTTTCGTCCAGGCGTTGGGCGGCTGTGCCGGGATGGTGATCTCCCGGGCGGTAGTCAGCGACAAATGCGACGCGGTGGGCTCGGCCAAGGTGTTCTCGCAACTGATGCTGGTGATGGGCCTGGCGCCGATCCTGGCGCCGATGCTCGGCGGCTTGCTGGTGAACCTGTACGGTTGGCAATCAATTTTCATCGGCCTGACCTTGTTCAGCGCGCTCGCGGCGACGGCCGTCGCGTTGTGGCTCCCGGAGAGCTTGCCGGCCCACGTACCTCGGCAACCGTTATCCGGCGCGTTGCGTCAGTACGGTCGGCTTCTCACAGACTCGGTTTTCCTAGGGCACGCCCTGACGGGCGGCATCGCGATTGCCGGGATGTTTGCCTATATCGCCGGTTCGCCATTTGTCTTCATCAAGCTTTACGGCGTACCGGCCGAACACTTCGGCTGGCTGTTCGGTACCAACGCGGCGGGTTTCATCCTGGTGGCCCAGGTCAATGCCCGCTTGTTGTCCAGGCGAGGCCCGGCATTTTTGCTGGCTCGCGCCGTCTGGGTCTACTGGATAGCCGGGCTCAGTTTACTGGCTGTCAGCGCCTTGCAGCCGGAGCGTTTGTGGCCGTTACTGATCCCATTGTTCATCTGCATCGCCAGCCTTGGCTGCATCCTTCCCAATGCATCGGCCTGCGCCATGAACGGGCAGGGGGCCCGGGCCGGTAGCGCTTCGGCGATGCTGGGGTGCCTGCAGTTTTCCGTAGCCGCCGGGGCCGCCGCACTGGTGGCGGCGCTGCATGACGGCACGGCAGTGCCGATGGCGATGGTAATCAGCCTGTGCGGACTATTGGTGGTGGGTGCCGCGATGCTGACCCGTCGGCTGCAGAACGCCCGGGCGCTCGCTCAGGCGGGCCAGCAGAGCTGAMNLRTILILGALSAFGPLAIDFYLPAFPAMAIAFGTDENHVQLTLAAYFLGLSLGQLAYGPVADRFGRRIPLLTGVGLFTVASLACAYAPSLEWLIGARFVQALGGCAGMVISRAVVSDKCDAVGSAKVFSQLMLVMGLAPILAPMLGGLLVNLYGWQSIFIGLTLFSALAATAVALWLPESLPAHVPRQPLSGALRQYGRLLTDSVFLGHALTGGIAIAGMFAYIAGSPFVFIKLYGVPAEHFGWLFGTNAAGFILVAQVNARLLSRRGPAFLLARAVWVYWIAGLSLLAVSALQPERLWPLLIPLFICIASLGCILPNASACAMNGQGARAGSASAMLGCLQFSVAAGAAALVAALHDGTAVPMAMVISLCGLLVVGAAMLTRRLQNARALAQAGQQSPGPT0029005_3467DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029005-bcr|tcaB-K07552NANA
D1-35_05024171hypothetical proteinATGAAGATCCTGATAAAAGAGGTGGCAAAATCCCAATGGCAAGTGCGTCTTGACCAGCACGTCGTGACCTTTCGCTCAGAAGCCGAAGCCCAGGCTTTCGCCGCGACCTTGCAAGCGCGCATCCATGCGCCGCATCAATTTCCCGAACATCAGCAACGTGCCGCCAGCTGAMKILIKEVAKSQWQVRLDQHVVTFRSEAEAQAFAATLQARIHAPHQFPEHQQRAASNANANANANA
D1-35_050251014Zinc-type alcohol dehydrogenase-like proteinATGAAAGCCATCGCGTATTACCAATCGCTGCCTATCACCCACCCGCAGTCGCTGCAGGACATCGAACTGCCCGAACCGGTTGCGGGTCCCCGAGACCTGCTGGTGGAGGTCAAGGCCATTTCAGTCAACCCCGTCGACACCAAGGTCCGCCAGAACGTCCAGCCCGAAGCAGGCGCGGCCAAGGTGCTGGGTTGGGACGTGGCCGGCGTGGTCAAGGCCGTAGGCAGCGAAGTCACGCTGTTCAAGGCCGGAGACAAGGTGTTCTACGCCGGTTCGATCGCCCGGGCCGGAGGCAACAGCGAGTTGCACGTTGTCGACGAGCGCATCGTCGGTCATATGCCGCAGACCCTCGGTTTCGCCGAAGCGGCCGCACTGCCGTTGACCGCTATCACCGCCTGGGAATTGCTCTTTGATCGATTGCAGATCAAGGAAGGCCAGAGCGATCTGGGCCAGAGCCTGCTGATCGTCGGCGCCGCCGGGGGTGTGGGTTCGATCCTGACGCAATTGGCCCGCCAACTCACCGGACTGAACGTCATCGGCAGCGCTTCCCGGCCGCAGACCCAGGAATGGGTGCGAGACCTGGGCGCCCACCTCGTCGTGGATCACAGCCAACCGCTGAGCGATGCACTGAAGGAGGCGGGCCAGGCCCAAGTGACCCACGTTGCCAGCCTGACGCAGACCGATCAGCACCTCGACCAACTGGTCGAAGCCCTGGCGCCCCAAGGCAAACTGGCACTGATCGATGATCCCAAATCGCTGGACGTGACCAAGCTCAAGCGCAAGAGCCTGTCGTTGCATTGGGAGTTCATGTACACCCGTTCACTGTTCGAGACCGTCGACATGCTTGAACAACACAAGCTGCTCAACCGTGTGGCCCGACTGATCGATGCCGGCACGTTGAAGACCACGGTGGGCGAACACTTTGGCACCATCAATGCCGAGAACCTGCGCCGGGCTCACGCGTTGCTGGAAAGCGGCAAGTCCAAGGGCAAGATCGTGCTAGAGGGCTTCTGAMKAIAYYQSLPITHPQSLQDIELPEPVAGPRDLLVEVKAISVNPVDTKVRQNVQPEAGAAKVLGWDVAGVVKAVGSEVTLFKAGDKVFYAGSIARAGGNSELHVVDERIVGHMPQTLGFAEAAALPLTAITAWELLFDRLQIKEGQSDLGQSLLIVGAAGGVGSILTQLARQLTGLNVIGSASRPQTQEWVRDLGAHLVVDHSQPLSDALKEAGQAQVTHVASLTQTDQHLDQLVEALAPQGKLALIDDPKSLDVTKLKRKSLSLHWEFMYTRSLFETVDMLEQHKLLNRVARLIDAGTLKTTVGEHFGTINAENLRRAHALLESGKSKGKIVLEGFPGPT0019417_427DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_USAGE-OTHERSPLANT_DERIVED_ALGINATE_DEGRADATION,PGPT0019417-putative_alginate_lyase_2-NANANA
D1-35_05026735hypothetical proteinATGGAACATGCACCTTGCATCAGCCAGATCGCCACGCTGCTGGCCGACCCCAAGCGCAGCGCAATGATGTGGGCGTTGATGGACGGTACGGCCCGGCAAGCTGAAGAGTTGGCCTTGCTGGCCGGGCTTTCGCCATCCTCGGCCAATGCCCATCTGGGACGTCTGTCTGCCGGTGGCCTGGTGAAGGTCGAAATCCGTGGCCGCAAGCGGTTTTTTCGCCTGGCGGCACCCGAGATCGGCGCTGCCGTCGATGCATTGGCGAGCGCAACCCTGGCCAGCACGCCGCGACAGGTTCCGGAAGTCTTCAAGCGCAGCCTCATGCCTAACAGGACGCCGACGGCACCCGCTTCGTTGATGCGGGCCAGGCTTTGCGATGACCACCTGGGAGGCACACTGGCGGCGGACCTGTATCAGCGGCTGTTGGAAGCCGGATGGCTCGAACAGCTTGAGCATCGGGTGGTCGTCACGCATAAAGGTGCCAGCCAACTGGCTGGGCGAGGTCTGTTCATCCAGGCACTGGCTCATCGCGAGACGCGTATGGCCTGCGCCTGCCCCGACTGGAGCGAACTTCGTCCACATCTGGGAGGGGCGCTGGGGGCGGCATTGCTGCAATTGTTCATGCAGTCCGGCTGGCTCAGCCTGCCCAGCGACTCCAGGGCGTTGCAGGTAACCGCGCTCGGTCAACAGAAAATCCATCGATTCGCCAGGCAAGAGGTTCTGGAAATGGCGCTCTAGMEHAPCISQIATLLADPKRSAMMWALMDGTARQAEELALLAGLSPSSANAHLGRLSAGGLVKVEIRGRKRFFRLAAPEIGAAVDALASATLASTPRQVPEVFKRSLMPNRTPTAPASLMRARLCDDHLGGTLAADLYQRLLEAGWLEQLEHRVVVTHKGASQLAGRGLFIQALAHRETRMACACPDWSELRPHLGGALGAALLQLFMQSGWLSLPSDSRALQVTALGQQKIHRFARQEVLEMALNANANANANA
D1-35_050271335naiP_3Putative niacin/nicotinamide transporter NaiPATGAGCGGCTATCACCGGGTCATCTTCATTATTATCGCGCTGGCTTTTTTCTTTGATTCCATGGATCTGGCCATGATGACGTTCCTGCTGGGCTCGATCAGAACCGAGTTCGGCTTGAGCGCCGCCCAGGCCGGTTTGTTGGCCAGTTCAAGCTTTTTCGGCATGGTGCTGGGCGCCTCGTTGTCGGGGCTGCTTGCCGATCGCTTCGGACGCAAACCGGTGTTCCAGTGGAGCATCGTCTTGTGGGGGCTCGCCAGTTACCTGTGTTCCACCGCCCAGGACGTGGAGATGCTGACGCTGTTTCGCATCCTGTTGGGCGTCGGCATGGGCATGGAGTTTCCGATTGCCCAGTCGATGCTCTCGGAGCTGATCCCGGCGAGGCAGCGCGGACGCTACATCGCCTTGATGGATGGCTTCTGGCCGCTGGGCTTCGTGGCGGCGGGGGTGCTGTCGTATTTCCTGCTGCCGCTGATCGGCTGGCGGGACATTTTCCTGGTGTTGGCGGTGCCGGCAGTGTTCGTCCTGGTGATTCGCTTCTTCATCCCCGAGTCGCCACGTTGGCTGGAGCAGGCGGGGCGGGGCGCCGACGCGGACGCCGTACTCAAGCGGATCGAAGACAAGGTCCGGGCCTCGCTGGGTCGCCAGGACCTGCCCGAACCGATTAGCCTGCCGACACTGGCGACGGCGCCCGGCAATTTCTTTTCGGCTCTGGCGCAGATCTGGTCACCGCTGTACCGCCAGCGCACGATGATGATCTGGAGCGTCTGGTTTTTTGCCTTGCTCGGCTTCTACGGGCTGACGTCCTGGCTCAGCGCGCTGCTGCAGCAGTCGGGGTTTGCGGTGACCCAGTCGGTTTATTACACGGTGCTGATTTCCCTCGGCGGGATTCCCGGTTTCCTGATGGCGGCCTGGCTGGTGGAGCGGTGGGGGCGTAAACCGGTGTGTGTCATCACGCTGCTGGGCGGCGGGATCATGGCATTTCTTTATGGCCAGAGCGCGGTGTTTGGCGGGAACGTCACGCTGCTGATCAGCTCCGGGCTGCTGATGCAGTTTTTCCTGTTCGGCATGTGGGCAGTGCTCTACACCTACACCCCGGAACTGTATCCCACCTCGGCGCGAGCCACGGGGTCGGGCTTTGCCTCGGCGGTCGGTCGCATCGGTTCGCTGCTTGGACCGCTGGTGACCGGCTTGGTCTTTCCGATCACCGGGCAGGGCGGAGTGTTCGCCCTTGGCGCCCTGTGTTTTGCCGTGGCGGCGGGCGTGGTCTGGTTGTTTGGAATGGAGACGCGGGGCAAGACGCTGGAGGAATTGAGTGAGGCGACGGTCGCTGACTAAMSGYHRVIFIIIALAFFFDSMDLAMMTFLLGSIRTEFGLSAAQAGLLASSSFFGMVLGASLSGLLADRFGRKPVFQWSIVLWGLASYLCSTAQDVEMLTLFRILLGVGMGMEFPIAQSMLSELIPARQRGRYIALMDGFWPLGFVAAGVLSYFLLPLIGWRDIFLVLAVPAVFVLVIRFFIPESPRWLEQAGRGADADAVLKRIEDKVRASLGRQDLPEPISLPTLATAPGNFFSALAQIWSPLYRQRTMMIWSVWFFALLGFYGLTSWLSALLQQSGFAVTQSVYYTVLISLGGIPGFLMAAWLVERWGRKPVCVITLLGGGIMAFLYGQSAVFGGNVTLLISSGLLMQFFLFGMWAVLYTYTPELYPTSARATGSGFASAVGRIGSLLGPLVTGLVFPITGQGGVFALGALCFAVAAGVVWLFGMETRGKTLEELSEATVADPGPT0014435_964DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_SYMPORTER,PGPT0014435-ydjE-K08369NANA
D1-35_05028954COG1816Adenine deaminaseATGTACGACTGGCTTAACGCCTTGCCCAAGGCTGAACTGCACTTGCACCTGGAAGGCTCGCTGGAGCCCGAGCTGCTGTTTGCCCTGGCCGAACGCAACAAGATTGCCCTGCCGTGGAGCGACGTGGACACCCTGCGCCAGGCCTATGCCTTCAACAATCTGCAGGAGTTTCTCGACCTGTATTACCAGGGCGCCGACGTGCTGCGCACTTCCCAGGATTTCTACGACCTGACCTGGGCCTACCTGCTGCGCTGCAAGGCACAGAACGTGATTCACACCGAACCGTTCTTCGATCCGCAGACCCACACCGACCGGGGCATTCCATTCGAAGTGGTGCTCAACGGTATTGCCGCCGCCCTCAAGGACGGTGAGCAACAACTGGGCATCACCAGCGGCCTGATCCTGAGCTTCCTGCGTCACCTGAGCGAAGAGCAGGCGGAAAAAACCCTCGACCAGGCGCTGCCCTTCCGCGACGCGTTCGTGGCCGTCGGCCTGGACAGCTCGGAGATGGGCCACCCGCCGAGCAAGTTCCAGCGGGTGTTCGACAGGGCGCGCAATGAAGGCTTCCTGACCGTCGCCCACGCCGGCGAAGAAGGCCCCCCCGAGTACATCTGGGAAGCCTTGGATCTGCTGAAAATCCAGCGCATCGACCACGGCGTGCGAGCCATCGAAGACGAGCGGTTGATGCAGCGGATCATCGACGAACAGATCCCCTTGACGGTTTGCCCGTTGTCCAACACCAAGCTATGCGTGTTCGATGATATGTCGCAGCACAACATCCTCGACATGCTCGAACGCGGCGTGAAGGTGACGGTGAACTCCGATGACCCGGCGTACTTCGGCGGCTACGTCACCGAGAACTTCCACGCGTTGCACACGCATCTGGGCATGACCCAGGACCAGGCCAGGCGGTTGGCGCAGAACAGCCTCGATGCGCGGTTGGTGAAACCTTAAMYDWLNALPKAELHLHLEGSLEPELLFALAERNKIALPWSDVDTLRQAYAFNNLQEFLDLYYQGADVLRTSQDFYDLTWAYLLRCKAQNVIHTEPFFDPQTHTDRGIPFEVVLNGIAAALKDGEQQLGITSGLILSFLRHLSEEQAEKTLDQALPFRDAFVAVGLDSSEMGHPPSKFQRVFDRARNEGFLTVAHAGEEGPPEYIWEALDLLKIQRIDHGVRAIEDERLMQRIIDEQIPLTVCPLSNTKLCVFDDMSQHNILDMLERGVKVTVNSDDPAYFGGYVTENFHALHTHLGMTQDQARRLAQNSLDARLVKPPGPT0021695_821DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021695-ade-K21053NANA
D1-35_050291092chaACOG0387Sodium-potassium/proton antiporter ChaAATGCTGACGTTGATCAAGCAAGAAAAATTGCTGCTGCTGGCCCTGCTTGCCGCTTTTGTCGCCTACCCGCTGGAGCATTGGCTGCTGGGCAGCGGGCAGGTCGTGGCGTTGGTTGGCGGCCTGGTGCTGATCGGTTTCATCGTCGCGGCCTCCATGCGCGTGGCCCATCACGCCGAGTTGCTGGCGGAAAAGGTCGGCGATCCTTACGGCACGATGATCCTGACTTTGTCGGCGGTGCTGGTGGAAGTGGTGATCCTGGCGATCATGATGAGTAACGAGGCGTCGCCGACCCTGGTACGGGACACGATCTATTCGGCGGTGATGCTCGATATCAACGGCATTCTCGGACTGGCGGCGCTGATGGGTGGGCTCAAGCACGGCGAGCAGGTCTATAACGACGATTCGGCGCGTACCTACAGCGTGATGATCCTCACCGCCATGGGCGTGTCGATGGTGGTGCCGGAGTTTATTCCGCAGGAAAACTGGAAGCATTATTCGGCATTCACCATCGGCGCGATGATCGTCTTGTATACGTTGTTCTTGCGCATGCAGGTGGGGCCACACAGCTATTTCTTCAGCTACAGCTACCCGGAAAAACGCCGCAGGAAGGAACCGGTGGAAGCCGAGCCGAAACCCATCAGCCTGGCGTTTTCCATCGGCGCACTGGTGTTCGGCGTGGTGGTCATCGGTGCGCTGGCCGAAGTCATGTCCAAGGCTATCGACCTCGGGCTGGAAGGCTCCGGCGCGCCGCCGGTGGTCACGGCAATTCTGGTGGCGGTCATCTCCGCTGCGCCGGAAATTCTCACCGCCCTGCGCGCAGCCTTGGCCAATCGCATGCAGTCGGTGGTGAACATCGCCTTGGGCGCGTCGCTGTCCACCGTGATCCTGACGGTGCCGGTGATGGAAGCCATGGCCCTCTACACCGGCCAGCCTTTCCAGATGGCGATGACCCCGGTGCAAACGGTGATGATCTTCATCACCCTGATCGTCAGCGCCATCAACCTCAATGATGGCGAAACCAACGCCATCGAGGGCATGACCCACTTTGTGCTGTTTGCCACGTTTATCATGTTGTCGTTGCTCGGTCTTTGAMLTLIKQEKLLLLALLAAFVAYPLEHWLLGSGQVVALVGGLVLIGFIVAASMRVAHHAELLAEKVGDPYGTMILTLSAVLVEVVILAIMMSNEASPTLVRDTIYSAVMLDINGILGLAALMGGLKHGEQVYNDDSARTYSVMILTAMGVSMVVPEFIPQENWKHYSAFTIGAMIVLYTLFLRMQVGPHSYFFSYSYPEKRRRKEPVEAEPKPISLAFSIGALVFGVVVIGALAEVMSKAIDLGLEGSGAPPVVTAILVAVISAAPEILTALRAALANRMQSVVNIALGASLSTVILTVPVMEAMALYTGQPFQMAMTPVQTVMIFITLIVSAINLNDGETNAIEGMTHFVLFATFIMLSLLGLPGPT0013985_2057DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013985-chaA-K07300NANA
D1-35_050301359COG04028-oxoguanine deaminaseATGCCTGCGACCCGTACCTGGTTAAAAAATCCCCTCGCCATTTTCACGGCCAACGGCCTCGATGCCCGTGGCGGTCTCGTCCTGCAGGACGGTGTGATCGTTGAGCTGCTCAACGCCGGGCAACAGCCCGCACAGCCTTGTGACACCGTGTTCGATGCTCGAGAACATGTGATCCTGCCGGGGCTGATCAACACCCATCATCACTTCTACCAGACCCTGACCCGCGCCTGGGCACCCGTCGTAAGCGAGCCGTTGTTCCCATGGCTGAAGACTCTCTATCCGGTGTGGGCGCGGCTGACTCCGGAAAAACTCGCGCTGGCGAGCAAAGTCGCGTTGGCCGAACTGCTGTTGTCGGGTTGCACCACGGCGGCCGATCACCACTACCTTTTTCCCGAAGGCCTGGAAAACGCCATCGATGTGCAGGTGCAATGCGTCGGTGAGCTGGGCATGCGCGCAATGCTGACCCGTGGTTCCATGAGCCTGGGCGAGGCCGACGGTGGCTTGCCGCCGCAGCAGACCGTGCAGCAGGGCCAGGTGATTCTCGACGACAGCCAGCGACTGATCGCTCGATACCATGAGCGCGGTGCCGGCGCGAAAATCCAGATTGCCCTGGCGCCCTGCTCGCCGTTTTCGGTCACGCCCGAGATCATGCGCGCCAGCGCCGAGCTCGCGGAAAAGCTCGACGTACGCTTGCATACCCACCTGGCCGAAACCCTCGACGAGGAGGACTTCTGCCGGCAGCGCTTCGGCCTGCGCACCGTGGATTACCTCGACAGCGTCGGCTGGCTGGGCCCACGTACCTGGCTGGCCCACGGCATTCATTTCAATCCTGACGAAATAACCCGTCTCGGCGCCGCCGGAACCGGAATCTGCCATTGCCCCAGTTCGAACATGCGCCTGGCCTCGGGCATTTGTCCGACGCTTGAACTGACCGCCGCCGGCGCCCCATTGGGCCTTGGGGTGGACGGCTCGGCGTCCAACGATGCGTCGAACATGCTGCTGGAAACCCGTCAGGCGCTATACATCCAGCGCTTGCGCTATGGCGCGCAAGCGATCACGCCGGAGAAGGTGCTGGGCTGGGCGACCCGAGGCTCGGCCCAATTGCTGGGACGCAGCGACATCGGCGAACTGGCAGAGGGCAAACAAGCCGACCTGGCGATGTTCAAGCTTGATGAGTTGCGCTTTTCCGGCAGCCACGATCCGATCTCGGCCCTGCTGCTGTGCGGTGCTGATCGGGCGGACCGGGTGATGGTCGCGGGTCAGTGGAGAGTGATCGATGGACAGGTCGAAGGGCTGGACCTGAAGGGCTTGATTGCCGACCACAGCCAGGCGGCGCGAGAGCTGATCGCGGGTACCTGAMPATRTWLKNPLAIFTANGLDARGGLVLQDGVIVELLNAGQQPAQPCDTVFDAREHVILPGLINTHHHFYQTLTRAWAPVVSEPLFPWLKTLYPVWARLTPEKLALASKVALAELLLSGCTTAADHHYLFPEGLENAIDVQVQCVGELGMRAMLTRGSMSLGEADGGLPPQQTVQQGQVILDDSQRLIARYHERGAGAKIQIALAPCSPFSVTPEIMRASAELAEKLDVRLHTHLAETLDEEDFCRQRFGLRTVDYLDSVGWLGPRTWLAHGIHFNPDEITRLGAAGTGICHCPSSNMRLASGICPTLELTAAGAPLGLGVDGSASNDASNMLLETRQALYIQRLRYGAQAITPEKVLGWATRGSAQLLGRSDIGELAEGKQADLAMFKLDELRFSGSHDPISALLLCGADRADRVMVAGQWRVIDGQVEGLDLKGLIADHSQAARELIAGTNANANANANA
D1-35_05031687hypothetical proteinATGAATTCGGCAAAAACCGCATTGATCATCGGCGCCTCTCGGGGACTGGGCCTCGGCTTGGTGAAGACGCTTCTGGGTGATGGCTGGAACGTGACCGCCACGGTACGTAACCCACAGAACGCCGAGGCCTTGAAGGCGCTGGGCCCGGTTCGAATCGAAAAGCTCGACATGGACGACCAGCAAGCCGTCATCGCCTTGAGCCAGCAGCTCAGGGACCAGACCTTCGACCTGTTGTTCGTCAATGCCGGCGTCAAAGGCCCCGACAACCAGAGCCCAGGCGGCGCAACGCTGGCTGAGGTCGGTCAGCTGTTCTTAACCAATGCCGTGGCACCGATCAACCTCGCCCAACGCTTCGTCGGGCAGATCCGCGACGGCAGCGGCGTGCTGGCCTTCATGAGCTCGGTGCTGGGCAGCGTGACCATGCCCGACGCCCCCGAACTTGCGCTGTACAAGGCCAGCAAAGCCGCGCTCAACTCCATGACCAACAGTTTTGTCAGTCAGCTGGGCGAGCAAGCATTGACCGTCCTGTCGCTGCACCCGGGCTGGGTAAAAACCGACATGGGCGGCGAAGGCGCGGCCATCGATGTCGAGACCAGCACCCGTGGGCTGATCGATCAGGTCAATGCCTTTGCCGGCAAGGGTGGACATCACTTCGTCAATTACAAAGGCGAGACGATTCCCTGGTAAMNSAKTALIIGASRGLGLGLVKTLLGDGWNVTATVRNPQNAEALKALGPVRIEKLDMDDQQAVIALSQQLRDQTFDLLFVNAGVKGPDNQSPGGATLAEVGQLFLTNAVAPINLAQRFVGQIRDGSGVLAFMSSVLGSVTMPDAPELALYKASKAALNSMTNSFVSQLGEQALTVLSLHPGWVKTDMGGEGAAIDVETSTRGLIDQVNAFAGKGGHHFVNYKGETIPWNANANANANA
D1-35_05032594yigZCOG1739IMPACT family member YigZATGCCTTATACCCTTGCCGGCTTTTGCGAATACCGTGAAGAAATCCGCAAAAGCCGTTTCATCACCTTCGCCGCCCCCATCACCAGCCCCGCCGAGGCCCAGGCCTTTATAGAGCGGCACAGCGACCTGGACGCCACGCATAATTGCTGGGCATGGAAACTGGGCGACCAATATCGCAGCAGCGACGATGGCGAGCCGGGCGGCACCGCCGGGCGCCCGATCCTCGCGGCCATCCAGGCCCAGGATTGCGATCAGGTGGTGGTGCTGGTCATACGCTGGTACGGCGGAATCCAGCTGGGTACCGGCGGTTTGGCCCGCGCCTATGGCGGCGGTGCGAACAAATGCCTGCAAACCGCCGAGAAGGTCGAATTGATCAGCCGCGTAGCGCTGCGTTGCCTGTGCGGTTTCGCCGAGCTGGCCCTGGTGAAACTGCGGATAGCTGAATGCGGCGGTCTGGTCCTCGCCGAGGATTTCACCGCCAACGGCGTGGAACTTCAATTGGCAGTCGGTGAAGAACACATCGAGAGCCTGCAGACGCGACTGGCCGATTTGAGTCGCGGACAGATACGACTTGAGCGCCCGGCAGCCTCATGAMPYTLAGFCEYREEIRKSRFITFAAPITSPAEAQAFIERHSDLDATHNCWAWKLGDQYRSSDDGEPGGTAGRPILAAIQAQDCDQVVVLVIRWYGGIQLGTGGLARAYGGGANKCLQTAEKVELISRVALRCLCGFAELALVKLRIAECGGLVLAEDFTANGVELQLAVGEEHIESLQTRLADLSRGQIRLERPAASNANANANANA
D1-35_05033651rutR_2COG1309HTH-type transcriptional regulator RutRATGACCTTTGAAGTTCCTGCCCATGGTGGCAAGCCTACCGGCCGTATTCGTCAGAAAAACGAGGAAACCATCCTCAGGGCCGCCGAGGATGAGTTCGCCCGCCACGGCTTCAAGGGCACCAGCATGAACGCCATCGCCTTGAAGGCCGGATTGCCCAAGGCGAACCTGCATTACTATTTCACCAACAAGCTCGGCCTTTACGTCGCCGTGCTGAGCAACATCATCGAGTTGTGGGACAGCACTTTCAACTCCCTGACCGCCGAGGACGATCCAGCGCAGGCATTGACCCGCTACATCCGCGCCAAGATGGAATTCTCACGGCGCCAGCCCCAGGCATCGCGAATTTTCGCCATGGAAGTGATCAGCGGCGGCGAATGCCTGAGCGAGTATTTCAACCAGGACTATCGCGCCTGGTTCAAGGGCCGCGCGGCCGTGTTCCAGGCCTGGATCGATGCGGGCAAAATGGACCCGGTCGATCCGGTTCACCTGATTTTTCTGCTGTGGGGCAGCACCCAGCATTACGCCGATTTTGCCACCCAGATCTGCCGCGTGACCGGGCGTAGCAAATTGACCAGGCAAGACATGATCGACGCCGGCGACAATCTCATCCGCATCATTCTCAAAGGCTGCGGCCTGACACCAGACCTCTAGMTFEVPAHGGKPTGRIRQKNEETILRAAEDEFARHGFKGTSMNAIALKAGLPKANLHYYFTNKLGLYVAVLSNIIELWDSTFNSLTAEDDPAQALTRYIRAKMEFSRRQPQASRIFAMEVISGGECLSEYFNQDYRAWFKGRAAVFQAWIDAGKMDPVDPVHLIFLLWGSTQHYADFATQICRVTGRSKLTRQDMIDAGDNLIRIILKGCGLTPDLNANANANANA
D1-35_05034921hypothetical proteinATGAGCGCTCGTCGTCCCGATCCACTGGCCCAAGTCAGCGACTTCGATATCCGCTTGCTGCGCATTTTCCGCAGCGTGGTGGAATGCGGCGGGTTTTCGGCAGCGGAAACCGTGCTTGGCATCGGCCGCTCTGCCATCAGCCAGCAGATGAACGATCTGGAGCAGCGTCTTGGCCTGCGTCTATGCCAGCGTGGGCGCGCGGGCTTTTCACTGACGGAGGAAGGGCGGGAAGTCTATCAATCGGCATTGCAGTTATTGAGCGCGCTGGAGAGCTTTCGCACCGAGGTCAACGGCCTGCACCAGCATTTGCGCGGTGAATTGACCATCGGCCTGACGGACAATCTTGTCACCCTGCCCCACATGCGGATCACTCACGCCTTGGCCCAGTTGAAAGAACGCGGGCCGGACGTGCAGATCCAGATTCGCATGATCGCTCCCAACGAAGTCGAACAAGGCGTGCTCGACGGGCGCCTGCATGTCGGCGTAGTGCCCCAGGCCAGCGCCCTTTCCGGACTCGAATATCAACCGCTCTACAGTGAGCGCTCGCTGCTCTATTGCGCAGTAGGCCATCCGCTGTTTTATGTGGACGACCAACAGCTTGAAGATGCTCGGCTCAACAGCCAGGACGCCATCGCGCCAACCTTTCGCCTGCCCGCCGAGATCCAGGCTCACTACCAGGCACTCAACTGCACCGCCAGCGCCTCGGATCGCGAAGGCATGGCGTTCCTGATCCTCACCGGACGTTACATTGGTTATCTGCCGGATCACTACGCCAATCTATGGGTTCAGCAAGGACGGCTGCGAGCCCTCAAGCCCTTGGCACGTTTTTATGATCTGAGCCTGGCGTCGGTCACACGCAAGGGTCGCCGCCCGCACCTGGTGCTGGAAAGTTTTCTCGAAAACCTGGCGGCAACCCGCTGAMSARRPDPLAQVSDFDIRLLRIFRSVVECGGFSAAETVLGIGRSAISQQMNDLEQRLGLRLCQRGRAGFSLTEEGREVYQSALQLLSALESFRTEVNGLHQHLRGELTIGLTDNLVTLPHMRITHALAQLKERGPDVQIQIRMIAPNEVEQGVLDGRLHVGVVPQASALSGLEYQPLYSERSLLYCAVGHPLFYVDDQQLEDARLNSQDAIAPTFRLPAEIQAHYQALNCTASASDREGMAFLILTGRYIGYLPDHYANLWVQQGRLRALKPLARFYDLSLASVTRKGRRPHLVLESFLENLAATRPGPT0003120_403DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-ACINETOBACTIN_METABOLISM,PGPT0003120-bauR-K21699NANA
D1-35_050351350Omega-amino acid--pyruvate aminotransferaseATGAACATGCCCGAACACGCTGTCGGTTCCCTGGCCAGCCAGCTCAAGCTGGATGCCCACTGGATGCCCTACACGGCCAATCGTAATTTCCAACGCGATCCCCGCTTGATCGTCGCCGCCGAGGGTAGCTGGCTGACGGATGACAAGGGGCGCAAGGTCTACGATTCGTTGTCGGGCTTGTGGACCTGTGGCGCCGGGCACACCCGCAAGGAAATCCAGGAGGCGGTCGCCAGGCAATTGGGCACCCTCGATTATTCCCCGGGATTCCAGTACGGCCATCCGCTGTCGTTCCAGCTGGCGGAAAAGATCACCAGCCTGACCCCGGGCAAACTCAACCATGTGTTCTTCACCGACTCCGGTTCCGAGTGCGCCGATACCGCAGTGAAGATGGTCCGTGCCTACTGGCGCCTCAAGGGGCAGGCCACCAAGACCAAGATGATCGGCCGTGCCCGTGGTTATCACGGCGTGAACATCGCCGGCACCAGCCTGGGCGGTGTCAGTGGCAACCGTAAATTGTTCGGCCAGGCCATGATGGACGTTGATCATCTGCCCCACACCTTGCTGGCCAGCAATGCCTATTCCCGTGGCATGCCGAAGGAAGGTGGCATCGCTCTGGCCGATGAGCTGCTGAAATTGATCGAGCTGCACGACGCTTCCAACATTGCGGCCGTATTTGTCGAGCCGATGGCCGGATCCGCCGGGGTCCTGGTCCCGCCTGAGGGATATCTCAAGCGTCTGCGGCAGATCTGCGACCAGCACAACATCCTGCTGGTGTTTGACGAAGTCATTACCGGTTTCGGTCGCACCGGTTCGATGTTTGGCGCTGATAGCTTTGGCGTGGTTCCGGACCTGATGTGCATCGCCAAGCAGGTCACCAACGGCGCCATCCCCATGGGGGCGGTGATTGCCAGTTCGGAAATCTACCAGACGTTCATGAACCAGCCGACGCCCGAATATGCGGTGGAGTTTCCCCACGGCTATACCTATTCGGCGCACCCGGTGGCCTGTGCGGCTGGCCTGGCGGCACTGGATTTGTTGCAGAAGGAAAACCTGGTGCAAAGCGTGGCCGAGGTCGCGCCGCATTTCGAGAATGCCTTGCATGGTTTGAAAGGCTCGAAGAACGTCCTCGACATTCGCAACTTCGGCCTGGCCGGGGCGATCCAGATTGCCCCGCGCGACGGCGACGCCATCGTGCGTCCGTTCGAGGCCGGGATGGCCCTGTGGAAAGCCGGGTTCTATGTGCGATTCGGCGGCGACACCCTACAGTTCGGGCCAACGTTCAACAGCAAGCCGCAGGACCTGGATCGTCTGTTCGATGCGGTCGGTGACGTGCTGAATAGAATCGACTGAMNMPEHAVGSLASQLKLDAHWMPYTANRNFQRDPRLIVAAEGSWLTDDKGRKVYDSLSGLWTCGAGHTRKEIQEAVARQLGTLDYSPGFQYGHPLSFQLAEKITSLTPGKLNHVFFTDSGSECADTAVKMVRAYWRLKGQATKTKMIGRARGYHGVNIAGTSLGGVSGNRKLFGQAMMDVDHLPHTLLASNAYSRGMPKEGGIALADELLKLIELHDASNIAAVFVEPMAGSAGVLVPPEGYLKRLRQICDQHNILLVFDEVITGFGRTGSMFGADSFGVVPDLMCIAKQVTNGAIPMGAVIASSEIYQTFMNQPTPEYAVEFPHGYTYSAHPVACAAGLAALDLLQKENLVQSVAEVAPHFENALHGLKGSKNVLDIRNFGLAGAIQIAPRDGDAIVRPFEAGMALWKAGFYVRFGGDTLQFGPTFNSKPQDLDRLFDAVGDVLNRIDPGPT0007865_226DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007865-spuC-K12256NANA
D1-35_050361494bauC_1COG1012Putative 3-oxopropanoate dehydrogenaseATGAGCCTCATCCCGCATCTGATCAATGGCGAATTGCTGAGCGACAGCGCACGCACGGCCGACGTGTTCAACCCATCCACCGGGCAAGCAATCCACAAGGTCCCGCTGGCGGATCGCGCAACTGTTCAGCAGGCCATCGATGCCGCCAAGGCGGCTTTCCCGGCCTGGCGCAATACGCCGGCGGCCAAGCGTGCCCAGGTGATGTTTCGTTTCAAGCAGTTGCTGGAGCAGAACGAGTCGCGCATTGCCCAGTTGATCAGCGAAGAACATGGCAAGACCCTCGAAGACGCCGCCGGTGAGCTCAAACGCGGTATCGAGAACGTCGAGTTTGCCTGTGCGGCCCCGGAAATACTGAAGGGCGAATACAGCCGTAACGTAGGACCGAACATCGACGCCTGGTCAGACTTTCAACCGTTGGGCGTGGTGGCAGGCATCACACCGTTCAATTTCCCGGCGATGGTGCCGCTGTGGATGTATCCGCTGGCGATCGTCTGCGGCAACTGCTTCATCCTCAAGCCATCCGAGCGTGACCCGAGTTCGACCCTGCTGATCGCCCAGTTGCTGCTGGAAGCCGGTCTGCCAAAGGGGGTGTTGAGTGTGGTCCATGGCGACAAGGCAGCCGTGGATGCACTGATCGAAGCGCCGGAAGTGAAGGCGCTGAGTTTTGTTGGCTCGACGCCGATTGCCGAGTACATCTATGCCGAAGGTACTCGTCGCGGCAAACGCGTTCAGGCGCTAGGCGGTGCCAAGAACCATGCGGTGTTGATGCCGGATGCCGACCTGGACAATGCCGTCAGCGCGCTGATGGGCGCGGCTTACGGTTCATGCGGTGAGCGTTGCATGGCGATTTCGGTGGCGGTGTGTGTCGGCGATCAGGTGGCGGATGCGCTGGTGGCCAAGTTGGTGCCGCAGATCCAGGCACTGAAGATCGGTGCCGGTACGTCTTGCGGTCTGGACATGGGGCCGTTGGTGACCGGCCAGCATCGGGACAAAGTCAGCGGCTATATAGAAGAGGGTGTGGCGGCAGGCGCCTCGCTGATTGTCGATGGTCGCGGCTTGAGTGTGTCTGGGCATGAAGACGGGTTTTTCCTGGGCGGTTGCCTGTTTGATCGCGTAATGCCCGAGATGCGTATCTATAAGGAAGAAATCTTCGGACCGGTGCTGTGTATCGTCCGGGTCAACAGCCTGGAAGAGGCGATGCAACTGATCAATGATCACGAGTATGGCAACGGTACTTGTATCTTTACCCGGGACGGGGAGGCGGCACGGTTGTTCTGCGATGAGATCGAAGTCGGGATGGTCGGTGTAAACGTTCCATTGCCAGTGCCTGTTGCCTATCACAGCTTTGGCGGTTGGAAGCGTTCATTGTTTGGCGACCTGCATGCCTACGGTCCGGACGGGGTGCGTTTTTATACCCGTCGCAAGGCCATTACCCAGCGCTGGCCGCAGCGTGCCAGCCACGAGGCTTCGCAGTTCGCATTCCCCAGCCTTTAAMSLIPHLINGELLSDSARTADVFNPSTGQAIHKVPLADRATVQQAIDAAKAAFPAWRNTPAAKRAQVMFRFKQLLEQNESRIAQLISEEHGKTLEDAAGELKRGIENVEFACAAPEILKGEYSRNVGPNIDAWSDFQPLGVVAGITPFNFPAMVPLWMYPLAIVCGNCFILKPSERDPSSTLLIAQLLLEAGLPKGVLSVVHGDKAAVDALIEAPEVKALSFVGSTPIAEYIYAEGTRRGKRVQALGGAKNHAVLMPDADLDNAVSALMGAAYGSCGERCMAISVAVCVGDQVADALVAKLVPQIQALKIGAGTSCGLDMGPLVTGQHRDKVSGYIEEGVAAGASLIVDGRGLSVSGHEDGFFLGGCLFDRVMPEMRIYKEEIFGPVLCIVRVNSLEEAMQLINDHEYGNGTCIFTRDGEAARLFCDEIEVGMVGVNVPLPVPVAYHSFGGWKRSLFGDLHAYGPDGVRFYTRRKAITQRWPQRASHEASQFAFPSLPGPT0002295_3367DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0002295-mmsA|iolA-K00140NANA
D1-35_05038609hypothetical proteinATGTCGGGTTCGATCCTTTATATCCATGGCTTCAACAGTGCCCCGGCGTCGACCAAGGCCTGTCAACTGACCGAAGTGATGACGCGCCTCGGGCTGGGGGACCAGTTGCGGGTGCCGGCCTTGCATCACCATCCGCGCGAGGCGATTGCTCAGTTGGAGCAGGCGATCACAGAACTGGGGCGGCCGCTGCTGGTCGGCAGCTCGCTCGGCGGCTACTATGCGACTCACTTGGCCGAGCGCCACGGCCTCAAGGCCCTGTTGGTCAATCCGGCGGTCAGCCCGCATCGGATGTTCGACGGTTATCTGGGCACGCAGAAGAATTTGTACACCGACGAGACCTGGGAATTGACCCACGACCACGTGACGGCCCTGGCCGAGCTGGAAGTGCCGGCGCCCCGGGATCCGCAGCGGTTTCAGGTATGGTTGCAAACCGGTGACGAAACGCTGGATTATCGCCACGCCCAGCAGTATTACCGTGCCTGCGCGTTGCGTATCCAGGCCGGCGGCGACCACAGTTTCCAAGGGTTTGCCCAGCAGTTGCCGGCGTTATTGAGTTTTGCCGGCATTGGCGCCGATTTGTACCAGGCGATCGACTTCACCTCACTGTGAMSGSILYIHGFNSAPASTKACQLTEVMTRLGLGDQLRVPALHHHPREAIAQLEQAITELGRPLLVGSSLGGYYATHLAERHGLKALLVNPAVSPHRMFDGYLGTQKNLYTDETWELTHDHVTALAELEVPAPRDPQRFQVWLQTGDETLDYRHAQQYYRACALRIQAGGDHSFQGFAQQLPALLSFAGIGADLYQAIDFTSLNANANANANA
D1-35_050391905parECOG0187DNA topoisomerase 4 subunit BATGGCCACTCCCAGCGCTAGCTCCTATAACGCAGACGCCATCGAAGTCCTCTCGGGCCTCGACCCGGTGCGCAAGCGCCCCGGCATGTACACCGACACCAGTCGGCCGAATCACCTTGCCCAGGAAGTCATTGACAACAGCGTCGACGAAGCCTTGGCCGGGCACGCAAAGTCGGTGCAGGTCATCCTGCACGCCGATCATTCATTGGAAGTCAGCGATGACGGCCGCGGCATGCCAGTGGACATTCACCCTGAAGAGGGTGTGTCGGGCGTCGAGCTGATCCTCACCAAGCTCCACGCCGGCGGCAAGTTTTCCAACAAGAACTACCAGTTCTCCGGCGGCCTGCACGGGGTGGGTATCTCCGTGGTCAACGCCTTGTCGACCCAGGTGCGGGTGCGGGTCAAGCGTGACGGCAACGAATACCAGATGACCTTTGCTGACGGCTACAAGGCCACCGAGCTGGAAGTGGTCGGCACCGTCGGCAAGCGCAACACCGGCACCAGCGTGTATTTCGCGCCGGACCCGAAGTATTTCGATTCACCGAAGTTTTCCGTCACGCGCCTCAAGCACGTCCTCAAGGCCAAGGCGGTGTTGTGCCCGGGGCTGCTGGTGAGTTTCGAGGACAAGGCCACCGGCGAGAAGGTCGAATGGCACTACGAGGACGGCCTGCGCTCGTACCTGGTCGATGCGGTCAACGGTTTCGAGCGCCTGCCCAACGAGCCGTTCTGCGGCAGCCTGGCCGGGAACAAGGAAGCCGTGGATTGGGCGCTGCTATGGCTGCCCGAGGGCGGCGAAAGCGTCCAGGAGAGCTACGTCAACCTGATCCCCACCGCCCAAGGCGGCACCCACGTCAACGGCTTGCGCCAGGGTTTGCTCGATGCGATGCGCGAGTTCTGCGAATTCCGTAACCTGCTGCCTCGTGGCGTCAAGCTGGCGCCGGAAGACGTCTGGGAGCGCATCGCCTTCGTATTGTCGATGAAGATGCAGGAGCCGCAATTCTCCGGCCAGACCAAGGAGCGCCTGTCGTCCCGCGAGGCGGCTGCGTTTGTCTCCGGGGTGGTCAAGGATGCGTTCAGCCTGTGGCTCAATGCCAATCCGGAAACCGGCCTGGCCCTCGCCGAACTGGCGATCAACAACGCCGGCCGTCGCCTCAAGGCAAGCAAGAAGGTCGAGCGCAAGCGCATCACCCAGGGCCCGGCACTGCCGGGCAAGCTCGCCGATTGTGCCGGGCAGGACCCGATGCGCTCCGAGCTGTTCCTGGTGGAAGGTGACTCCGCCGGCGGCTCGGCCAAGCAGGCGCGGGACAAGGAGTTCCAGGCGATCCTGCCGCTGCGGGGCAAGATCCTCAACACTTGGGAAGTCGACGGCAGCGAAGTGCTGGCCAGTCAGGAAGTGCATAACATCGCGGTGGCCATCGGCGTCGATCCGGGCGCCGAGGACATGAGCCAGTTGCGTTACGGCAAGATCTGCATCCTCGCCGACGCCGACTCCGACGGCTTGCACATCGCCACCTTGCTCTGCGCCTTGTTCGTCCAGCATTTCCGCCCGCTGGTGGATGCCGGTCACGTCTACGTGGCGATGCCGCCGTTGTACCGTATCGACCTGGGCAAGGAGATCTACTACGCCCTGGATGAAGCCGAGCGCGACGGCATCCTTGATCGGCTGGTGGCCGAGAAAAAACGCGGCAAGCCGCAGGTCACCCGATTCAAAGGCCTGGGCGAGATGAACCCGCCGCAGTTGCGCGAAACCACCATGGACCCGAACACCCGTCGGCTGGTGCAGTTGACCCTGGATGATTTCGAAGCGACGTCGGAAATGATGGACATGTTGCTGGCGAAAAAACGCGCCGGCGACCGCAAGAACTGGCTTGAATCCAAGGGTGATCTGGCCGAGGTCCTGGCCTGAMATPSASSYNADAIEVLSGLDPVRKRPGMYTDTSRPNHLAQEVIDNSVDEALAGHAKSVQVILHADHSLEVSDDGRGMPVDIHPEEGVSGVELILTKLHAGGKFSNKNYQFSGGLHGVGISVVNALSTQVRVRVKRDGNEYQMTFADGYKATELEVVGTVGKRNTGTSVYFAPDPKYFDSPKFSVTRLKHVLKAKAVLCPGLLVSFEDKATGEKVEWHYEDGLRSYLVDAVNGFERLPNEPFCGSLAGNKEAVDWALLWLPEGGESVQESYVNLIPTAQGGTHVNGLRQGLLDAMREFCEFRNLLPRGVKLAPEDVWERIAFVLSMKMQEPQFSGQTKERLSSREAAAFVSGVVKDAFSLWLNANPETGLALAELAINNAGRRLKASKKVERKRITQGPALPGKLADCAGQDPMRSELFLVEGDSAGGSAKQARDKEFQAILPLRGKILNTWEVDGSEVLASQEVHNIAVAIGVDPGAEDMSQLRYGKICILADADSDGLHIATLLCALFVQHFRPLVDAGHVYVAMPPLYRIDLGKEIYYALDEAERDGILDRLVAEKKRGKPQVTRFKGLGEMNPPQLRETTMDPNTRRLVQLTLDDFEATSEMMDMLLAKKRAGDRKNWLESKGDLAEVLAPGPT0027710_1897DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027710-parE-K02622NANA
D1-35_05040987hypothetical proteinATGCGCAACGGTTTCGCCCTGGCGTTGTTGCTGTGGGCGGGGGTGGTAGTCGCAGCGCCAGTGCCGGAACTGAAGTTGCTGTCCGAGCATGTCGTCGATGGCATGCGCGGCGGCAATCTGTCCGGGCTGGCCCTGTGTGGCAACGAGATGTGGACGGTATCCGATCGCGACGATGACCGGATTTACCGGCTTCAACCCTCCGATGCCCGGGCCTGGCAGGCCGAAGCTGTCGGTATCGAGGTGCCTGCCGTGCCGGAGAATGATTTGCCTTGGGGCCTGCAGTCGCGGACCTGGGCGGCATCGTTCGTGCGCGGTGGCGAACTGGACTACGAAGGCATCAGTTGCGACAGCGCCGGTCAGCGTTATGTGGTCAGTGAGTCCCACGCCGCCGTGCTGAGAATATCGCCGGCAGGCGAAGCAGCCTGGCTGAAAATCACCCCGACCATGCTCCGCCAGGCCCGGGGCAGCGGCATGCTGCTGCATTTTAATGCCCTGTTCGAAGGTGTGGCGGTCAACCCGGCTGGCGATCAGCTATGGCTGGCCGCCGAACGGGAGCGTCGTGGGCTGGTGTTGCTCAAGCGCCAGCAAACGGTGTGGGACTGCGACGGCAATTGCGTATTGTTGAGCGAAGCGGGGCAGGAGATGCAGCCGGCGCAGTTTCCCGAGGCCAAGGCGGTTTCCCGGGACTTCGCCGATCTGTCATTGTTCAACGGCAAGCTGTTTACCCTGGAGCGAAACGCCTATCAGATCTGCCGGCGTGACCCGCAGACCGCCAAGGTCGAGCGCTGCTGGTCGTTTGCGGGGGAGGCGTTGCAGGAAAATCGCCGTTATCCACAGCCCTTCGGCCTGGTCGAAGCGCTCATCGTCGACGCCGACGGCGCCTGGATCGGCGTGGACAACAACGACGGTGCGCGGGCTGACGGCGAGCAGCGGCCGGTTATCTGGCGCTTCGCCGCGCCCGAGGGTGGCTGGGGTGCCGCGCCATGAMRNGFALALLLWAGVVVAAPVPELKLLSEHVVDGMRGGNLSGLALCGNEMWTVSDRDDDRIYRLQPSDARAWQAEAVGIEVPAVPENDLPWGLQSRTWAASFVRGGELDYEGISCDSAGQRYVVSESHAAVLRISPAGEAAWLKITPTMLRQARGSGMLLHFNALFEGVAVNPAGDQLWLAAERERRGLVLLKRQQTVWDCDGNCVLLSEAGQEMQPAQFPEAKAVSRDFADLSLFNGKLFTLERNAYQICRRDPQTAKVERCWSFAGEALQENRRYPQPFGLVEALIVDADGAWIGVDNNDGARADGEQRPVIWRFAAPEGGWGAAPNANANANANA
D1-35_05041522hypothetical proteinATGAGCCAGCAACCACCGGGCAAGCGCGCCGGCCGGGTACTGATGATCCTGGCCTGGTGCGCGGCACTGTTTCTGGCAACGCGGTTTTTTGCCCAGTGGGAGCAGCGAGAGCTCAACCCCAATGCCGAGGTGCATTCGCAGAAGGGCGAAGGTTTTATCGAAGTAAAGCTGATCGGCAACCGGCAGGGACATTTTGTCGCCAGCGGCCAGATCAACGGCCAGCCGGTGGATTTCATGCTCGATACCGGGGCCACCGACGTGGCGATCCCGCAGGAATTGGCCGAGCGCCTCAAGCTGGAAAAAGGTCTTGGCGTGAGGTTGAGCACCGCCAATGGTTTGAGCGAAGGCTACCGCACCCGTATCGACCGGCTGCAATTGGGTGACATCGTGTTGCGTGATGTCCGTGCCCTGGTGGCGCCAGGCCTGGAAGGCACGCAAGTGCTGCTGGGCATGAGCGCCCTGAACAAACTTGAATTTACCCAGCGCGACGGCACCATGCTGCTGCGCCAGACAACGAACTGAMSQQPPGKRAGRVLMILAWCAALFLATRFFAQWEQRELNPNAEVHSQKGEGFIEVKLIGNRQGHFVASGQINGQPVDFMLDTGATDVAIPQELAERLKLEKGLGVRLSTANGLSEGYRTRIDRLQLGDIVLRDVRALVAPGLEGTQVLLGMSALNKLEFTQRDGTMLLRQTTNPGPT0015885_910DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-PILUS|FIMBRIAE_SYSTEMMOTILITY-PILUS_SYSTEM,PGPT0015885-perP-K06985NANA
D1-35_050422265parCCOG0188DNA topoisomerase 4 subunit AATGAGCGACATTCTTGCAGACAGCTTGGACGGCGTAGAACGCCGATCGCTGGCTGACTTCACCGAAAATGCCTACCTCAATTACTCCATGTACGTGATCATGGACCGCGCCTTGCCGCATATAGGCGACGGTCTGAAGCCGGTCCAACGGCGGATCATCTATGCCATGAGTGAGTTGGGGCTGGACGCCGATTCCAAGCACAAGAAGTCGGCGCGTACCGTCGGTGACGTGCTCGGCAAGTTTCACCCCCACGGCGACTCGGCCTGCTATGAAGCCATGGTGCTGATGGCCCAGCCGTTCAGCTATCGCTACACGCTGGTGGACGGGCAGGGTAACTGGGGTGCGCCGGACGATCCCAAGTCCTTCGCGGCCATGCGGTACACCGAGGCGCGCCTGTCACGCTATTCCGAAGTGCTGCTCAGCGAGCTGGGCCAAGGCACCGCGGACTGGGGGCCGAACTTTGACGGCACCCTCGATGAACCCCTGGTGTTGCCGGCACGTTTGCCGAACATCCTGCTCAATGGCACCACCGGCATTGCCGTGGGCATGGCCACCGACGTGCCGCCGCACAACCTGCGGGAAGTCGCCACAGCGTGCGTGCGCTTGTTGGACGAGCCGAAAGCCACGGTGGAACAGCTCTGCGAACATATCCAGGGCCCGGACTATCCGACCGAAGCGGAAATCATCACGCCGCGTGCCGATCTGCTGAAAATCTATGAGACCGGTCGCGGTTCGGTGCGCATGCGCGCCGTCTATCACGTTGAAGACGGTGACATTATCGTCACCGCGCTGCCGCATCAGGTTTCCGGGGCAAAAGTCCTTGAGCAGATTGCTGCGATGATGCAGGCAAAACCGTCGAAAGCGCCGCAGGTTGCTGACTTGCGCGACGAATCCGACCACGAGAATCCCTGCCGCATCGTGATCATTCCGGTGAACAGCCGGGTCGATCACGACGCGCTGATGCAGCACTTGTTCGCCAGCACCGATCTGGAATCCAGCTATCGGGTGAACATCAACATCATCGGCCTGGACGGCAAGCCGCAGCTGAAAAACCTGCGGGCATTGCTCGTGGAGTGGCTCGAATTCCGGGTCAAGACGGTGCGTCGGCGCCTGCAATTTCGCCTGGACAAGGTCGAGCGTCGCCTGCATCTGTTGGACGGCTTGCTGATTGCCTACCTCAACCTCGATGAAGTGATCCACATCATCCGCACCGAGGAGCATCCCAAGGCCAGCCTGATCGAGCGCTTCGCCCTCAGTGAAATCCAGGCCGACTACATCCTCGACACGCGCCTGCGCCAACTGGCACGCCTGGAAGAAATGAAGCTGCGTGCCGAGCAGGATGAATTGCTCAAGGAACAGGCCAAGCTGCAAGCCTTGCTGGGCAGCGAAGCCAAACTGAAGAAACTGGTACGCACCGAGTTGCTCAAGGACGCCGAAACCTACGGCGATGACCGTCGTTCGCCGATTGTCGAGCGTGCCGAGGCCAAGGCCTTGAGCGAGCACGACCTGTTGCCGAACGAGAAAGTCACCGTTGTACTGTCGGAAAAAGGCTGGGTGCGCTCCGCCAAGGGCCATGACATCGACGCTGCCGGGCTTTCCTACAAGGCCGGGGACGGCTTCAAGGCCTTGGCGCCGGGGCGCTCGAACCAGTTCGCAGTGTTCATCGACTCTACCGGGCGCAGCTATTCGGTGCCGGCCCACACCTTGCCATCGGCGCGTGGCCAGGGTGAACCGCTGACCGGACGATTAACACCTCCGCCGGGTGCAACTTTTGAATGTGTGCTGATGCCTGATGATGACGGGCTGTACGTTATCGCGTCGGACGCCGGCTACGGGTTCGTCGTCAAGGGTGAAGACCTGCAAGCCAAGAACAAGGCGGGCAAGGCGTTGTTGAGCCTGCCGAACAACGCCAAGGTCATTGCCCCGCGCCCGGTCAGCGATCGCGATAACAACTGGCTGGCTTCGGTGACGACCGAAGGTCGGTTGCTGGTCTTCAAGATCAGCGACCTGCCACAGCTTGGGAAAGGCAAAGGCAACAAGATCATCGGGATTCCTGGCGAACGGGTGGCGAGTCGCGAGGAATTTGTCACGGATATTGCAGTGTTACCTGAAGGTGCCACGCTTGTGCTGCAGGCTGGAAAGCGTACGCTTTCACTGAAAGCGGACGATCTTGAGCATTACAAAGGTGAACGCGGTCGGCGGGGCAACAAGCTTCCAAGGGGTTTTCAACGGGTGGATGCACTGCTCGTCGAAAACCTCAATTGAMSDILADSLDGVERRSLADFTENAYLNYSMYVIMDRALPHIGDGLKPVQRRIIYAMSELGLDADSKHKKSARTVGDVLGKFHPHGDSACYEAMVLMAQPFSYRYTLVDGQGNWGAPDDPKSFAAMRYTEARLSRYSEVLLSELGQGTADWGPNFDGTLDEPLVLPARLPNILLNGTTGIAVGMATDVPPHNLREVATACVRLLDEPKATVEQLCEHIQGPDYPTEAEIITPRADLLKIYETGRGSVRMRAVYHVEDGDIIVTALPHQVSGAKVLEQIAAMMQAKPSKAPQVADLRDESDHENPCRIVIIPVNSRVDHDALMQHLFASTDLESSYRVNINIIGLDGKPQLKNLRALLVEWLEFRVKTVRRRLQFRLDKVERRLHLLDGLLIAYLNLDEVIHIIRTEEHPKASLIERFALSEIQADYILDTRLRQLARLEEMKLRAEQDELLKEQAKLQALLGSEAKLKKLVRTELLKDAETYGDDRRSPIVERAEAKALSEHDLLPNEKVTVVLSEKGWVRSAKGHDIDAAGLSYKAGDGFKALAPGRSNQFAVFIDSTGRSYSVPAHTLPSARGQGEPLTGRLTPPPGATFECVLMPDDDGLYVIASDAGYGFVVKGEDLQAKNKAGKALLSLPNNAKVIAPRPVSDRDNNWLASVTTEGRLLVFKISDLPQLGKGKGNKIIGIPGERVASREEFVTDIAVLPEGATLVLQAGKRTLSLKADDLEHYKGERGRRGNKLPRGFQRVDALLVENLNPGPT0027705_2195DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-TYPE_II_TOXIN-ANTITOXIN_SYSTEM_REALATED_FACTORS,PGPT0027705-parC-K02621NANA
D1-35_05043705hypothetical proteinATGACTGCTCTGCGCCTACCTATTTTGTGGCTCGCCGGCCTGCTTGGCCTGGCGGGTTGCAGCATGCACCAGCCGGTGTCGCTGTATCAGTTGGACAGCGGTACCCCGGCCCAGCCTGCGCAAAGCACAGGCATGGCGGTTTTGCTGGGCCCTGTATTGATTGCCGACTACCTGCAACGCGAAACTCTCCTGCAACGCCAACCGGACGGCAGCTTGCAAGCCGCCACGGACGGTCGTTGGGCCGGCAGCCTGTCCTCGGACATCGACCAGCTGCTGCTGCGCCAGGTCGCCGGTCACCTGGACAGTCAGCGCGTGGTGCTGGCGCCGGCTACCCAAGGCTTCACCCCGGATGTGCAGGTCCTGCTGTCGATTACCCGCCTGGACTCGGGTGAATCACAACCGGCGGTACTCGATGCCCAATGGCGGTTGATTGACCGTCGCGGCAAGGTGCGTGAGAACCGCATCGTTCATCTGCAAGAGCAACACGCCGGCACCACGGCGGCGCAGGTTCAGGCCCAGGGTGTGCTGCTGCAACGACTGGCCGAACAGTTGTCCGTCTCGCTCAAGCCGCTGGCCAACCAGCCTCCTATCGCTGAAGTTCCACGCAAGCCCGCTCCCGCCCCGGCCAAGCCGGCAGGAAAGGAAAAGGACAAGATTCCGATGGCCCTGCCGATTCGGACGGACATGGAAGTGTTCCGGTTCTGAMTALRLPILWLAGLLGLAGCSMHQPVSLYQLDSGTPAQPAQSTGMAVLLGPVLIADYLQRETLLQRQPDGSLQAATDGRWAGSLSSDIDQLLLRQVAGHLDSQRVVLAPATQGFTPDVQVLLSITRLDSGESQPAVLDAQWRLIDRRGKVRENRIVHLQEQHAGTTAAQVQAQGVLLQRLAEQLSVSLKPLANQPPIAEVPRKPAPAPAKPAGKEKDKIPMALPIRTDMEVFRFNANANANANA
D1-35_050441518hypothetical proteinGTGAACCGGCCCACGCCAGTCAAAACCGACAATTTCTTCCTGCTGATCTTCCGAGCATTGCGCCATCGCCGCGTGCCGATCGCATTGCGCATTGCCAGCCATAACGTGATCCTGGTCGCCTTGGCCCTGGTCATCTATGCCTGCGTGATGGGCCTGCAATTCAAGCAGGCCATGCACGAGCAGGCGGATGCCCTGGGCGAGAGCCTGACCACCCAGACCGCCACGTCCGCCACCGAGCTGCTGGTGTCCAACGACATCCTCAGTCTCAATGTGCTGCTCAACAACCTGACCAAGAACAAGCTGGTGGCCCACGCCGCCATCTACAGCGTGGACAACCGCATCCTCGCCGAGGCCGGCCAGCGTCCCAAGCCAGGCTTGCTCGGCGAAACCGGCGGCATGTACCAGAGCAAGATCACCTTCCAGGACGTGACCGCCGGCCAACTACGCATCAGCCTGGACATGGACCAGTTCCAGCAACCCATGACCATCAGCCTGCAAAGCATGGGCATCCTCAGCGCGATCCTGCTGGCATTGGCCCTGGCGTTGAGCTTGCGCCTGGGGCGGCATATATCCACGCCGCTGTTGCAGTTGCGCGTCTGGCTGCGAGACATCGACGAACACACGCCAGCCACCCAGCGCCAGGATGAAATCGGCGACCTGGCCCGGCAGCTGCACGCCAGCTTCGCGCCGGAGCCGGAACCCGTGCCGGAACCTGAAGACATCGACTACGTTGACGAGGACGATGCGGAGCCGGGCTTCGAAGTGCGCAACCCGCGCGACCCGGGGTTCGACGAAAGCGCGCCGCTGCCCGCTGCCCGCCCCGCGCCGCGACATGTGGTGCGCACTGTCGAAGACGACGATGACGACGAGGCCTTTGCCGATTTGCGCGACGATTCGATCGGCGCCGAACCACAACCGCTTGCCCGCCCTGTCGCCTCGAACCAGCCCCAGCACAGCGCCGTACTGGCCGTGCAACTGGGTGCCCAGGACCAACTGCGGCGCCTGCCCCAGGCTCGCCTGAAAGAACTGCTCGAACGCTATCGCGACTGCCTCGACCAGGCCGCATCGCTTTATCAGGGCGAACTGCACACCCTGAACGACGGCAGCACGCTGATGCTGTTCCACACCGAGGACAGCGGCGACGACTACCTGACCAACGCCATCTGCTGCGGCGAATTGCTGCGGGCGCTGGGTCATCAATTGCAGATCGAAGTCGCCGACAGCGGCATCACTCTGCAATTGCAACTGGGCCTGACCTTGGGCGATGGCTTGTTCGGCCTGAGCCAGATCGACCTGCTGCTGACCGAAACCGCCCAGGACGCCCTGGCCCTTTCCCAACACAGCCGCAACCTGCTGCTGGTGGAACGCAAGATAAATGACGACGCGCTGATCCGCCAACGCGCACGCATCCGTCCGATCGCCAGCCCCGAGGGCGCCTGCTGTGTGGAACGACTGATGGAGCCTTATCCGTCGATGCTGGAACGGCAACTGGCGCGGATGCATGAGCGCCAGGCCTGAMNRPTPVKTDNFFLLIFRALRHRRVPIALRIASHNVILVALALVIYACVMGLQFKQAMHEQADALGESLTTQTATSATELLVSNDILSLNVLLNNLTKNKLVAHAAIYSVDNRILAEAGQRPKPGLLGETGGMYQSKITFQDVTAGQLRISLDMDQFQQPMTISLQSMGILSAILLALALALSLRLGRHISTPLLQLRVWLRDIDEHTPATQRQDEIGDLARQLHASFAPEPEPVPEPEDIDYVDEDDAEPGFEVRNPRDPGFDESAPLPAARPAPRHVVRTVEDDDDDEAFADLRDDSIGAEPQPLARPVASNQPQHSAVLAVQLGAQDQLRRLPQARLKELLERYRDCLDQAASLYQGELHTLNDGSTLMLFHTEDSGDDYLTNAICCGELLRALGHQLQIEVADSGITLQLQLGLTLGDGLFGLSQIDLLLTETAQDALALSQHSRNLLLVERKINDDALIRQRARIRPIASPEGACCVERLMEPYPSMLERQLARMHERQAPGPT0023715_9DIRECT EFFECTCOLONIZING_PLANT_SYSTEMOTHER_COLONIZATION_RELATED_PROTEINSCOLONIZATION-HOST_INVASION_FACTORSHOST_INVASION-MEMBRANE_DAMAGING,PGPT0023715-smp|ytjB|aphA-K07186NANA
D1-35_050451215serB2COG0560Phosphoserine phosphatase SerB2TTGCGTGAAATCGTCCTGATAAACATCACTGGCAGCGACCGTCCGGGTCTGACTGCGGCCATTACCGGCGTTCTGGCCCAGGGTGGTGTGAACATTCTCGATATCGGTCAGGCGGTGATCCACGACACGCTGTCGTTTGGCATCCTGGTTGAAATCCCGGACGCCGAACACAGCAAATCGGTGCTCAAGGACATCTTGTTCACCGCATACAAGCTTGATCAGCAGGTGCGTTTCACCCCGGTTTCCGAGGAAGATTACCAACAGTGGGTGGCTGGCCAGGGCAAGAAACGCCATATCGTGACGCTGTTGACCCGCAAGGTGACCGCCGAGCAATTGCAGCGTGTCAGTTCGATCACTGCCCAATACGGCTTGAACATCGACCATATCGACCGACTGTCCGGGCGCATGCCGCTGGATACTCCGGCCGATCAAGGCAAGGGCTGCATCGAGTTTTCCGTGCGCGGCGAACCCGCCGATCCCCAGGCTTTGCGCGCCGAGTTCCTCAGCGTGGCGCAAGAGCTGAACGTTGACATCGCCTTCCAGGAGGATTCGCTGTTTCGCCGCAACCGTCGCCTGGCGGTGTTCGACATGGACTCGACGTTGATCGAAGCCGAGGTCATCGATGAGTTGGCCAAGGCTGCCGGCGTCGGCGACAAGGTGTCGGCGATTACCGAGCGGGCGATGGCCGGCGAGCTGGATTTCCGCGCCAGCTTCAAGGAGCGCCTGGCGTTGCTCAAAGGCCTGGATGTCAATGTGCTCGACTCGATCGGTGCCTCGTTGCGCCTGACCGAAGGCGCCGAAACCTTGTTCGCCGAGCTCAAGCGCCTGGGTTACAAGACCGCCATCCTGTCCGGCGGCTTCACTTATTTTGCCAAACAGCTGCAGGCCAGACTCGGCATCGACTACGTGTTCGCCAACGAACTGGAAGTGGTGGATGGCAAGGTCACCGGCGTGGCTGTCGAGCCGATCGTCGATGCCCAGCGCAAGGCGGACTTGCTGCGTGAGCTGGCCGCGAAAGAAGGCCTTCGACTGGAGCAGACCATCGCGGTCGGTGACGGCGCCAACGACTTGCCGATGCTTGCGATCGCCGGGCTGGGCGTGGCGTTCCGGGCCAAACCGCTGGTCAAGCAATCAGCCAGGCAGGCCATCTCGACCCTGGGGCTGGATGGGGTGCTGTATTTGCTGGGCTTCAGGGATCGCGACGGGCAGGTTTAGMREIVLINITGSDRPGLTAAITGVLAQGGVNILDIGQAVIHDTLSFGILVEIPDAEHSKSVLKDILFTAYKLDQQVRFTPVSEEDYQQWVAGQGKKRHIVTLLTRKVTAEQLQRVSSITAQYGLNIDHIDRLSGRMPLDTPADQGKGCIEFSVRGEPADPQALRAEFLSVAQELNVDIAFQEDSLFRRNRRLAVFDMDSTLIEAEVIDELAKAAGVGDKVSAITERAMAGELDFRASFKERLALLKGLDVNVLDSIGASLRLTEGAETLFAELKRLGYKTAILSGGFTYFAKQLQARLGIDYVFANELEVVDGKVTGVAVEPIVDAQRKADLLRELAAKEGLRLEQTIAVGDGANDLPMLAIAGLGVAFRAKPLVKQSARQAISTLGLDGVLYLLGFRDRDGQVNANANANANA
D1-35_050461761fimWCyclic-di-GMP receptor FimWATGAATGAGACCAGCCCTCTCCAGTTACTGCGCGTCTCGACACCGACCCAGTCGCGCCTGTCCTTCTGCGATGCCACGCCACGCGACCTCAAGCGCTGGATCGGCAACCTGCCCAAGGCCAACATCGGTGAAACCGCGCGCCTGCTGTACCAGGTCCTCGGTGAACTGAACCAGTTGCTCACCCCGAGTGAAAACCGCCTGCAACTGCTCGAACTGTTGCGGCCCGAGGTTTATTACGTCTGCAAGCACCTGGAGCGACATTTCCTGCAACAGGCCATCGTGCTGGACGAGCGCTCGCGCAAGATCGTCAACCTGAGCCAGGCCCTGCAGACTCATTTGGCGATGGGATACAAACAAATCGTCGCGCGCATCTCGCCAAAATTCACCAAGGACCGGGCGCGCCTGCTGGCGACAGCGCTGCAACGGGCGATACATGCCCTCGACGGCACGCTGTTGCGAGCCAGCCAGCTATACAGCCCCGTGCCTGAAGGTTTATGGCTCGATTTGCACCAGCTGTACCGGATCGCCTGCCAGCACCGATTGCAGCACCTCAGCGTTGGCGATGAGCTGGCCAGCCAGGTCCCTCAATTGAATGCCGAGCAGACCTACGTCGTCGCCCTGCTGCTGGGCGCTTCGCGCAGCAACCAGTTACGCCAGAGCCAGATCGCCCGGCTGGCCGAAGTGCTGGAGCCGTGGAGTCAGAGCGTCAAGCTCGACCCGGCCGTCACCGCCGCTAGCCTGTTTGCGGTCGCACCGCAACTGGATGTAGGGCCGCGCTATCGCTCCAAATTTCGCGCCGAACAGCAACCGAGCCTGCAGGGGTTCGATCCCCAGCCCCTGGTGCGTGCCATCAGCGCTCACCTGGCGCAACCTGGCGACTCGTCCCTGGCGGTACCTGCCGGCATGAGTGCCGATACCTTGCATCATCTGCAAGCGGCCTGGGGCGAAGCCGCCGAACGCAGCTTCCAACGCACCGAAGGCAACGGCACGCTGACCCTGTGCGTGGGCATGAGCGCGCTGCACTATTACCTTGGGGGCGAACGTTCCTTCAGCGAAATCCTGAAGAACCCGGCCATGCGCAAGGCCCGATTCGAGGCCTCGCCGACCAAAACCAACGACACCTGGAACCAGGCGTTCGACGCCGCGCCAGCTGGCGACAGCGACCTCTTGCCCTACGAGGAAATCGAGTATCCGGTCAACCCGGCCGATGACGACGGCGCCAGTTCCGACAACCAGCATCATTTCCCGACCTTTGAGCTGCCGATCATCAATCACAGCCCGGGTGGGTACTGCCTAGGCTGGCCGAAGGAAGTGCCGGAGCAATTGCAGGCCGGGGAGATGGTCGGGATTCGTGACACCAGCGACCAGGCCTGGAGTATCGCCGTGGTCCGCTGGATCCGGCAGGTGCGCAACGGTGCGATGCAAATGGGCATTGAACTGGTAGCTCCCCATGCCCAGCCTTGCGGCGTGCAATTGGCGCGCGAGCAGAACGAGCAAGGCCACTACTTGCGGGGGTTGCTGCTGCCGGAAATCAGCGCGATCGACCTGCCGCCCACGATGATCGCTCCGCGCCTGCCCTTCCAGGAAGGCCAGCGAGTGTTGATCAATACCAACGGACAGGAAAGACGAGCCTCGCTGGATCGGCGCGTGACCAGCACCCACAGCTTCAATCAGTTTGCTTATCACCCCGAAGACTCAGGCACCGGCGGGGATGGCAGTGACAAGGAAGGCGATTTTGATTCGCTGTGGAAGTCACTCTAGMNETSPLQLLRVSTPTQSRLSFCDATPRDLKRWIGNLPKANIGETARLLYQVLGELNQLLTPSENRLQLLELLRPEVYYVCKHLERHFLQQAIVLDERSRKIVNLSQALQTHLAMGYKQIVARISPKFTKDRARLLATALQRAIHALDGTLLRASQLYSPVPEGLWLDLHQLYRIACQHRLQHLSVGDELASQVPQLNAEQTYVVALLLGASRSNQLRQSQIARLAEVLEPWSQSVKLDPAVTAASLFAVAPQLDVGPRYRSKFRAEQQPSLQGFDPQPLVRAISAHLAQPGDSSLAVPAGMSADTLHHLQAAWGEAAERSFQRTEGNGTLTLCVGMSALHYYLGGERSFSEILKNPAMRKARFEASPTKTNDTWNQAFDAAPAGDSDLLPYEEIEYPVNPADDDGASSDNQHHFPTFELPIINHSPGGYCLGWPKEVPEQLQAGEMVGIRDTSDQAWSIAVVRWIRQVRNGAMQMGIELVAPHAQPCGVQLAREQNEQGHYLRGLLLPEISAIDLPPTMIAPRLPFQEGQRVLINTNGQERRASLDRRVTSTHSFNQFAYHPEDSGTGGDGSDKEGDFDSLWKSLPGPT0016080_120DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-c-di-GMP_SIGNALLING_PATHWAY,PGPT0016080-fimW-K23127NANA
D1-35_05047579hypothetical proteinATGCTCATTGATATTTTCCGATCAGCCAAACGCTACTGGCATATCGAAATTCTTGGTGGCCTGGACAAACCGTTCAGATGGCGCCGGCTTTACCAGAAGTGCCAGCGCATCAACCGGTACCGCTATCTGTTCTGGTTTCGCCTGGCCTACGCCATGCATCAGCAGGACAGCAAGTTCTGGAGACGGCGCGGCAAACTGCTGAACGAGCGAATCAGTCGCCAGTTCAATGTGGAGATCATGCTCGGCGCCACCATTGGAGAAGGGCTTTGGATCGCGCACCCGAATGGAATCGTTATCACCTCGCACGCCGTTATCGGCAAAGACTTCAAGATCTGGCAGAACTGCACGCTGGGCATCAAGGGCCAAAGCGAGGCTGCGCTCTTGCGTATCGGTGACGGCGTCAGGGTACACGCCCATGCCTGCATCATTTCAGACGATTTGGAGCTGGGCGACAACGTGATCGTCGGCGCTGGCGCCTTCGTCAACAAAAGTATCCCGGCCAACCACTTGTATATCACCCGCAGCGTCGGCGAAATGAAAGCCTACGATCCCCAGTCAATGGGCCGTCTGCAAAGCTAGMLIDIFRSAKRYWHIEILGGLDKPFRWRRLYQKCQRINRYRYLFWFRLAYAMHQQDSKFWRRRGKLLNERISRQFNVEIMLGATIGEGLWIAHPNGIVITSHAVIGKDFKIWQNCTLGIKGQSEAALLRIGDGVRVHAHACIISDDLELGDNVIVGAGAFVNKSIPANHLYITRSVGEMKAYDPQSMGRLQSPGPT0020265_5121DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-PUTATIVE_EXOPOLYSACCHARIDE_FUNCTIONCE-EPS-PUTATIVE_EXOPOLYSACCHARIDE_FUNCTION-1,PGPT0020265-cysE-K00640NANA
D1-35_050481221hypothetical proteinATGACACGTTCGGTTTTTACCAGATACACCGTGCTAGTTCTGATGATCGGATTCACCGTACACCTGACAGGGCTACTCTTCATCACTGACGGCAGTAGCTACACGACGATTTCCAACCTGAGCCTGTTCCTGCCTGCATTGCTCTTGTGCATTGTCGACGCACGCCTGCGCCAAAGCCTGATGCAGAAACGCTATTGGCCGGTCCTGCTGATGCTGGCCTTCTCATTGCTGATCGCATTCCTGAACCCCGGCTCATCGACATCCGCCTTCTCGCAGTTCAAAACCGTGCTCTACGTGACCTTGTATCTCGGCACTGTGCATATACTGGCTCGAGAGGGGCTGCTTGAAAAAAGCCTCACGTTTGCCTTCGCCGTGGCAGGACTCTTTGCAATCGCAGGCCTGCTGATTCATTTCGTACAGCAAGACCAGAACATCTTTTTCATGGGCGGACGCTTGTTCAACCTGGGATATGGCGACTACGCGAATTTCAAGAACCCGATCATCGCTGCGCTGTACTACGGTTTTTTTGGCATCTACGGGTTCCACCTCCTGCTGACCAAACCCTGCGGGCCATGGCTCAGGGTCTTCTACATGGCGTGCGTGGCAGGTCTGTCGCTGTACCTGTTCTGCACCCTTTCAAGGGCCGTCTGGCTTGGGTATGGCCTGGCCATCTGCACCAGCGTGGTGTTCCAACACACACCACGAACAAGAAAATGGCTGTACCTCACAGGTGCTCTTTTTCTTGTGGCAGTTGCATGGTTATGGCCAGTCATCGTCGATCAGCAAAGTCGTGGATTCAGCCTTCGCGACCTGATCTGGGCTGGCTGGCTGAGCCGCATCGAAGAGTTCTGGCTATTCGGGGCCGGCGCGGGGAGCAATTTTGACATCTGCGTTTTGGAAACCCAATGCTACAACCAGGTGCACAACCTGTTCCTGCAGTTCTTTTATGAGTTCGGGGTCGTCGGGGCGGCGCTGCTGCTACTGGCCGTTTTCCATGTTTTCATCTGCGCCGTTGACAGAAAAACCTGGATAAACCCTATAGGCTCGGCGGGTTTTCCTCTGCTTATCTTCGCAATAGTGACGGCCATGTTCGACTACCACACGGTATTCAACAGGCCCGGGGTCTATTGGATCGTCTTCTGGCTTCCTGTCGGGATCATTCTTTCCCAGCGTTTTTTACCAGGCCCTGCGTCTTGCAAAGAGGCTGTCGATGCTCATTGAMTRSVFTRYTVLVLMIGFTVHLTGLLFITDGSSYTTISNLSLFLPALLLCIVDARLRQSLMQKRYWPVLLMLAFSLLIAFLNPGSSTSAFSQFKTVLYVTLYLGTVHILAREGLLEKSLTFAFAVAGLFAIAGLLIHFVQQDQNIFFMGGRLFNLGYGDYANFKNPIIAALYYGFFGIYGFHLLLTKPCGPWLRVFYMACVAGLSLYLFCTLSRAVWLGYGLAICTSVVFQHTPRTRKWLYLTGALFLVAVAWLWPVIVDQQSRGFSLRDLIWAGWLSRIEEFWLFGAGAGSNFDICVLETQCYNQVHNLFLQFFYEFGVVGAALLLLAVFHVFICAVDRKTWINPIGSAGFPLLIFAIVTAMFDYHTVFNRPGVYWIVFWLPVGIILSQRFLPGPASCKEAVDAHNANANANANA
D1-35_05049861psdCOG0688Phosphatidylserine decarboxylase proenzymeATGAAGAACCGCTTGTTCATCCTTTCCCAATACCTGCTGCCGCACCACTTGCTGTCGCGCCTCGCCGGCTGCATTGCCGAATGCCGCGTGCGCTGGTTCAAGAACGCCTTTACGGCCTGGTTCGCCAAGCGCTACCAGGTGGATATGTCCCAGGCCCTGGTGGAAGACCTGAGCGCCTACGAGCACTTCAACGCCTTCTTCACCCGCGCGCTGAAAGACGGTGCCCGCCCTCTGGATCAAACCCCAGGCGCGATTCTGAGCCCCGCCGACGGCGCCGTCAGCCAGCTCGGCCCGATCGAGCATGGCCGCGTGTTCCAGGCCAAGGGCCACAGCTTCAGCGTGCTGGAACTGCTCGGCGGCGATGCGGCCAACGCAGCGCCATTCATGGGCGGCGACTTCGCAACGATTTACCTGTCGCCCAAGGATTACCACCGCGTGCACATGCCGTTGGCCGGCACGCTGCGGGAAATGGTCTACATCCCGGGGCGCATTTTCTCGGTCAACCAGACCACTGCCGAGAACGTTCCGGAGCTGTTCGCCCGCAACGAACGCGTAGCGTGCATTTTCGACACCGAACGCGGGCCGATGGCCGTGGTGCTGGTGGGTGCAATGATCGTGGCGTCCATCGAGACGGTCTGGGCCGGCCTGGTGACACCGCCCAAGCGCGAACTCAAGACCTTCCGTTATGACGAAGCCGCCCGTGCGCCGATTCACCTGGAGAAGGGTGCCGAGCTGGGCCGTTTCAAACTGGGTTCGACCGCTATCGTGCTGTTCGGGCCGGATCAAGTGAAGTGGACCGAAGACCTGGTAGCCGGCTCGCCGGTGCAGATGGGTCAAGGACTGGCATTACCCAAGGCTTGAMKNRLFILSQYLLPHHLLSRLAGCIAECRVRWFKNAFTAWFAKRYQVDMSQALVEDLSAYEHFNAFFTRALKDGARPLDQTPGAILSPADGAVSQLGPIEHGRVFQAKGHSFSVLELLGGDAANAAPFMGGDFATIYLSPKDYHRVHMPLAGTLREMVYIPGRIFSVNQTTAENVPELFARNERVACIFDTERGPMAVVLVGAMIVASIETVWAGLVTPPKRELKTFRYDEAARAPIHLEKGAELGRFKLGSTAIVLFGPDQVKWTEDLVAGSPVQMGQGLALPKAPGPT0007700_2317DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROPHOSPHOLIPID_REMODELLINGCE-REMODELLING_GPL_DECARBOXYLASE_ACTIVITY,PGPT0007700-psd|PISD-K01613NANA
D1-35_05050816rhdACOG2897Thiosulfate sulfurtransferaseATGCCTGACTTCTCTGGCTTGCCGCTGGTAATCGAACCGAGCGAACTGCGGCCGCGCCTCGATGCTCCCGAGCTGATTCTGGTGGACCTCACCAGCGCGGCCCGCTACAGCAACGGGCACATCCCCGGCGCGCGTTTCGTCGATCCCAAGCGCACGCAACTGGGTCAGCCTCCGGCCCCAGGCCTGTTGCCGGCAAAAGCCGACCTTGAGGTGCTGTTCGGCGAACTCGGACACAACCCCAACGCCGTCTACGTGGTGTATGACGATGAAGGCGGTGGTTGGGCCGGGCGCTTCATCTGGCTGTTGGACGTGATCGGTCATTCGAATTATCACTACCTCGACGGTGGCTTGCTGTCCTGGCTGGATGAGGGCCTGCCGGTGTCCACTGAAATGCCCGCGCCCGGCGCAGGCCCGGTGAGCCTTGTGCTGCACGACGAACCCACTGCCACCCGCGAATACCTGCAAGGCCGTCTCGGCGCTGCCGACCTGGCCATCTGGGATGCACGCGGCCCGCTGGAGTACTCCGGCGAAAAAGTCGTCGCGGCCAGGGGCGGCCATATTCCCGGCGCGGTGAACTTCGAATGGACCGCCGGCATGGACCCGACGCGCAACCTGCGCATTCGCAAGGACATGCCCGAGATCCTCGAACAGTTGGGTATTACACCCGACAAGGAAATCGTTACCCACTGCCAGACTCATCACCGCTCTGGCTTCACCTATCTGGTGGCCAAGGCGCTCGGTTATCCGCGAGTCAAAGGCTATGCCGGTTCCTGGGGCGAATGGGGCAACCACCCTGACACCCCGATCGAGCTTTGAMPDFSGLPLVIEPSELRPRLDAPELILVDLTSAARYSNGHIPGARFVDPKRTQLGQPPAPGLLPAKADLEVLFGELGHNPNAVYVVYDDEGGGWAGRFIWLLDVIGHSNYHYLDGGLLSWLDEGLPVSTEMPAPGAGPVSLVLHDEPTATREYLQGRLGAADLAIWDARGPLEYSGEKVVAARGGHIPGAVNFEWTAGMDPTRNLRIRKDMPEILEQLGITPDKEIVTHCQTHHRSGFTYLVAKALGYPRVKGYAGSWGEWGNHPDTPIELPGPT0002045_5302DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0002045-sseA-K01011NANA
D1-35_050511539hypothetical proteinATGGCTAACGAAACGAACGTCCCAACTCCAAGACCGACCACCCTCGAAGGCTGGGTAAAGCTGCTCGAGGGCGTGCACCTGCCGGTGCCCCAGGCCAGCCACGACCTGGTCTGCAAGGCGATTGGCGACAGTCGCCGCTCGCTGCGTGACATCGCCGAATTGATGCAGGACAGCCCCGCGCTGGCCCTGAGTGTCATTCGCGAAGCCAACCACCACACGCACGGTACCCTGGCGGAACCGGCGGAAAACCTTGAGGTGGCCATCAACCGCCTCGGCCTCAAGCGCACCGAAGAACTGCTTGCTCGCCTGCCCTCACTGCCGGGGCAGCAGATTCCCTTGGCCCTGCGCCAGTTGCAATTGATCAGCCAGCACGCCACGCAACAGGCCAACGGTTTTTTTGCCAGCCGCCTGGCGCGGCTGTGGCAAGACATCCATTGGGGCAGCCTGCTGTTCCTGTCACCGCTCTGGCCGCTGGCCCTGACTCATCCACGACTGCTCGGGGAATGGGAGCTGCGCGTCGTTCATAAAGGCCAGCCAGCCGGCGAAGTGGAGCGTGAACTGTTCGGCGTCAGCCTGCTGAAAATCTGCCTGGCATTGGTGGAGACCTGGCGCCTGCCGATCTGGGTAGCGCAGGGCTATCGCCTGCTGCTCAACGAGCGTCGCGAACTGGTCAAAGTGCTGCGCATTGCGCGCGACAGTGAGCATCCACTGCGCCAACAGAATCGCCTGGACGACGACCCGACCCTGCGGCGCTGGCTCAATCAGCCAGCCAACACCGTGCTGCTGGCCAACGGCCTGGCACTTTCGGCACAGCAGGCGTGGGACAGCCCGCACAGTGCCCGCTGGCAATACCTCACCAGCCTGTATCTGCAGATGCCGATGGACGACATTCAGCAACAGCTTCACCAACAGGCCGCCAACAGCGCGCGTCAGCACGCCATGCCGGACCTCTGGCATCCCGCCGTGGCGCTGATCTGGCCGCCGGGCAGCAAGCGGGTCCACCCAGGTTTGCTGCCCGCCGCCCCGCCCAGCGCCCAGGACCTGAGCCAATGGCGCAAACAATGCGCCGCGTTGCTGGTGGAGCCGAGCCCGTTCCGCAACGCCATGCACCTGACCACCTCGGCACGGGATGCGCTAGCGGCATGTGGCATGCGCCGGGTCATGATCTTGATGGCCGACCGCAGCCAGACCAGCGTGCGCGTGCATCAGATTGCCGGTTTGCCCAAGGAAGCGGCGGCCATGAGCTTCTCCATCAGCCAAAGCAAAATCCTGCAACGATTACTTGCCCAGCAGGCCCAGGTTCGCCTGACCCCGCAAAACAACGCCCAATATTCGGCATTGCTGCCAGCGGGCCTGCGCAGCCTGTTTCGCGGCGAACACTTGCTGCTGCGCTCTCTGACCTGTAACGGTCGAGTGATTATGCTGGTGGTGGTAGACCAGGGCGGCGGACCGTTTTCGGATGTGACGGTACAAGCTTTCGGTAAAACCGTACAGTGCATCGAGCGCGCCCTGCACAGCTTCACCAACCGCGGCCGCTGAMANETNVPTPRPTTLEGWVKLLEGVHLPVPQASHDLVCKAIGDSRRSLRDIAELMQDSPALALSVIREANHHTHGTLAEPAENLEVAINRLGLKRTEELLARLPSLPGQQIPLALRQLQLISQHATQQANGFFASRLARLWQDIHWGSLLFLSPLWPLALTHPRLLGEWELRVVHKGQPAGEVERELFGVSLLKICLALVETWRLPIWVAQGYRLLLNERRELVKVLRIARDSEHPLRQQNRLDDDPTLRRWLNQPANTVLLANGLALSAQQAWDSPHSARWQYLTSLYLQMPMDDIQQQLHQQAANSARQHAMPDLWHPAVALIWPPGSKRVHPGLLPAAPPSAQDLSQWRKQCAALLVEPSPFRNAMHLTTSARDALAACGMRRVMILMADRSQTSVRVHQIAGLPKEAAAMSFSISQSKILQRLLAQQAQVRLTPQNNAQYSALLPAGLRSLFRGEHLLLRSLTCNGRVIMLVVVDQGGGPFSDVTVQAFGKTVQCIERALHSFTNRGRNANANANANA
D1-35_05052852motACOG1291Motility protein AATGGCTAAAATTATCGGCATCATCGTCGTGTTCGCGAGCGTGCTCGGCGGATACGTGCTCTCCCATGGCAAGATTGCCGCGCTGGTCCAGCCTTTCGAGGTGTTGATCATCGGCGGTGCAGCCCTTGGTGCATTCCTGCAGGCCAACCCTGGCTATATGACAATGCATGTGCTCAAGAAATCCTTGAGCATGTTCGGCTCGCGTTTCAGCCACACCTTCTATCTCGAGGTGCTGGGGCTGGTCTACGAGATCCTCAACAAAAGCCGCCGCGAAGGCATGATGGCGATCGAGGGTGACATCGAAGACGCCGCCGCCAGCCCGATCTTCGCCAAGTACCCCTCGGTGCTGAAAGACGAGCGCATGACGGCGTTCATCTGTGACTACCTGCGCATCATGTCGTCCGGCAACATGGCCCCCCATGAGCTTGAAGGTTTGTTCGACATGGAGCTGTACAGCCTCAAGGAAGACCTCGAGCACCCGTCTCATGCAGTCAACGGCATCGCCGACGGCATGCCCGGCTTCGGTATCGTTGCGGCGGTATTGGGCATCGTGGTGACCATGGCATCCCTGGGTGAAGGCGATCAGGCGTCGATCGGCCTGCACGTGGGCGCGGCATTGGTGGGTACTTTCTTCGGTATTCTGGCGGCGTACGGTTTCTTCGGCCCGCTGGCCCATTCCCTGGCGCATGACGCCAAGGAAGAGCTCAACGTCTATGAGGCCATCAAGGCTTCCCTGGTGGCTTCGGCCTCGGGCATGCCGCCGTCCCTGGCGGTGGAGTTCGGTCGCAAGGTCCTGTACCCGGCGCACCGTCCAAGCTTCGCCGAGCTGGAACAAGCGGTTCGCGGTCGTTAAMAKIIGIIVVFASVLGGYVLSHGKIAALVQPFEVLIIGGAALGAFLQANPGYMTMHVLKKSLSMFGSRFSHTFYLEVLGLVYEILNKSRREGMMAIEGDIEDAAASPIFAKYPSVLKDERMTAFICDYLRIMSSGNMAPHELEGLFDMELYSLKEDLEHPSHAVNGIADGMPGFGIVAAVLGIVVTMASLGEGDQASIGLHVGAALVGTFFGILAAYGFFGPLAHSLAHDAKEELNVYEAIKASLVASASGMPPSLAVEFGRKVLYPAHRPSFAELEQAVRGRPGPT0015370_1316DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_MOTOR|SWITCH,PGPT0015370-motA-K02556NANA
D1-35_050531047motB_2COG1360Motility protein BATGGAAAATAACCAGCCCATTATAGTCAAGCGCGTCAAGCGCATTGCCGGCGGGCACCACGGGGGCGCCTGGAAAATTGCCTTCGCCGACTTCGCCACGGCGATGATGGCGTTCTTCCTGGTGCTGTGGCTGCTGTCCACCGCGACCCCGGAACAGAAAATCGCCATCGCCGGTTACTTCAAGGATCCGATCGGTTTTTCCGAGAGCGGCACGCCCTACATCATCGACCTGGGCGGCTCGCCGGTCCTGGCGCCGGAAAATACCCTCAACCCCGAGGTCAAATCCCAGCCTCAGCCTGACAAGGCGACGGTCGACGCCAATGAGGCCGAAGGCATGGCCGAGCAGGTCGAGCGCGAACGCCTGGAATTGCTCCTGCAGGAATTGCAGAACAAGGTTGAAGAGAACCCGGAACTGCAGAAATTCAAGGACCAGATCCTTTTCGAGATCACACCGAACGGCCTGCGCATCCAGATCATGGACGCCGATAACCGTCCGATGTTCGACTCTGGCAGTGCGCGCCTGAAGCCGTATTTCGAAGACATCCTGCTGGCCATGGCCGATACCATCAAAGCGGTGCCGAACAAGATCAGCATCAGTGGCCACACCGATGCCAAGCCTTACGTCGGCAAAGGCGACTTCGGTAACTGGGAACTGTCGGCCAACCGGGCCAACGCGGCACGGCGTGCCCTGGTGGCGGGCAGCTATCCGGATGAGCAGGTGGCGCGGGTCGTCGGTTATGCGTCTTCGGCACTGTTCGATCGCAAGGATCCGTTCAACCCGGTCAACCGCCGCATCGACATCGTGGTGTTGACCAAGAAAGCCCAGAAAGCCATCGAAGGTTCGCAAACCGACGATCCGGCGCCAGACCCGGCCCCGGGCGAGGGCGCGCCGGGCGAAGTGCCTGCATCGCCCGCCACGCCTGGCGCGGCCGCCGATCCGAACGCGCTGCCGGCGGACCAGCAACCAGTGCCGGCCCATGAGTTGCGCGAGCGCCTGAACCTGTTCGACGACGCCGCGCCGAAACCGGCGGAGCCGCCAGCGCAGTGAMENNQPIIVKRVKRIAGGHHGGAWKIAFADFATAMMAFFLVLWLLSTATPEQKIAIAGYFKDPIGFSESGTPYIIDLGGSPVLAPENTLNPEVKSQPQPDKATVDANEAEGMAEQVERERLELLLQELQNKVEENPELQKFKDQILFEITPNGLRIQIMDADNRPMFDSGSARLKPYFEDILLAMADTIKAVPNKISISGHTDAKPYVGKGDFGNWELSANRANAARRALVAGSYPDEQVARVVGYASSALFDRKDPFNPVNRRIDIVVLTKKAQKAIEGSQTDDPAPDPAPGEGAPGEVPASPATPGAAADPNALPADQQPVPAHELRERLNLFDDAAPKPAEPPAQPGPT0015375_636DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISMOTILITY-FLAGELLAR_ASSEMBLYMOTILITY-FLAGELLUM_MOTOR|SWITCH,PGPT0015375-motB-K02557NANA
D1-35_050541032rsgACOG1162Small ribosomal subunit biogenesis GTPase RsgAATGGCCAAACGCCAACTCAATCGTCGTCAGAACTGGCGCATCGAAAAGATCCAGGGCGAGCGCGCCGCCCGCGCAGCCAAACGTGAATCCAGTGCCGTCGAGGCCCTGGAGGGCGGAGACCTGGGCCCTGAGCAGACCGGACTGGTGATCGCGCATTTCGGCGTCCAGGTCGAGGTCGAGGCCCAGGAAGGCGAGTTGGCCGGCCAGGTATTCCGTTGCCATTTGCGGGCCAACCTGCCGGCGCTGGTGACCGGCGACCAGGTGGTCTGGCGGGCCGGCAACCAGGGCATCGGCGTGATCGTCGCGCAACTGCCGCGCCACACCGAGCTGTGCCGCCCGGACAGCCGGGGCCAGCTCAAGCCGGTGGCGGCCAACGTCGACATGATCGTGATTGTCTTCGCCCCGCTGCCTGAGCCCCACGCCAACCTGATCGACCGTTACCTGGTGGCGGCCGAACACGCCGGCATCCGCCCGTTGCTGTTGCTCAACAAGTTCGACCTGATCGACGAACACAACGCCCCGGCGCTGAACGCCCTGCTGTCGGTCTATCGGGATCTGGGTTACCCGGTGCTGGAAGTCTCGGCCCACCACGGCAACGGCATGGAGCAATTGCAGCAGCAACTCGACGGGCGCATCAGCGTGTTCGTCGGCCAGTCCGGCGTCGGCAAGTCTTCATTGGTCAACAGCCTGCTGCCGGAAGTCGAGACCCGCGTCGGGCCGTTGTCCGAGCTGTCCGGCCAGGGCACCCACACCACCACCACCGCGCGGCTGTTCCACTTTCCCGGCGGCGGTGAGCTGATCGACTCGCCGGGCATCCGCGAGTTTGGCCTGGGCCACGTCAGCCGGGCGGATGTCGAAGCCGGGTTCATCGAGTTCAACGACCTGATCGGCACCTGCCGCTTCCGCGACTGCAAGCACGACCGCGAACCCGGCTGCGCCTTGCTCAAGGCGCTGGAAGAAGGCCGCGTGCATCAACAACGGATGAACAGCTACCGCTCGATCATCGCGAGCTTGCCGGAAAGCAGTTACTGAMAKRQLNRRQNWRIEKIQGERAARAAKRESSAVEALEGGDLGPEQTGLVIAHFGVQVEVEAQEGELAGQVFRCHLRANLPALVTGDQVVWRAGNQGIGVIVAQLPRHTELCRPDSRGQLKPVAANVDMIVIVFAPLPEPHANLIDRYLVAAEHAGIRPLLLLNKFDLIDEHNAPALNALLSVYRDLGYPVLEVSAHHGNGMEQLQQQLDGRISVFVGQSGVGKSSLVNSLLPEVETRVGPLSELSGQGTHTTTTARLFHFPGGGELIDSPGIREFGLGHVSRADVEAGFIEFNDLIGTCRFRDCKHDREPGCALLKALEEGRVHQQRMNSYRSIIASLPESSYPGPT0009020_2070DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_BIOSYNTHESIS,PGPT0009020-rsgA|engC-K06949NANA
D1-35_05055543ornCOG1949OligoribonucleaseATGCAAAACCCGCAGAACCTGATCTGGATCGACCTGGAAATGACCGGTCTGAACCCTGACACCGACGTCATCATCGAAATGGCCACCATCGTCACCGACAGCGATCTCAACACCCTGGCCGAGGGTCCGGTGATTGCGATCCACCACAGTGATGAGGTGCTGGCCGGCATGGACGAGTGGAACACCCGCCAGCACGGCGGCTCGGGACTGACCCAACGGGTGCGCGAGAGCAGGATCAGCATGGCCGAGGCCGAAGCCCAGACCATCGCCTTCCTGGAACAATGGGTGCCAAGGGGCAAGTCGCCGATCTGTGGCAACAGCATCTGCCAGGACCGTCGCTTCCTTTATACCCACATGAAATCCCTCGAAAGCTATTTCCATTACCGCAACCTGGATGTCTCCACACTCAAGGAGCTGGCCGCTCGCTGGGCGCCAGAAGTGCGTGACAGTTTCCAGAAGGGCAGCACCCACCTGGCCCTGGACGACATCCGCGAATCCATCGCCGAGTTGCAGCATTATCGCAAGCACTTCATCAAGTTCTGAMQNPQNLIWIDLEMTGLNPDTDVIIEMATIVTDSDLNTLAEGPVIAIHHSDEVLAGMDEWNTRQHGGSGLTQRVRESRISMAEAEAQTIAFLEQWVPRGKSPICGNSICQDRRFLYTHMKSLESYFHYRNLDVSTLKELAARWAPEVRDSFQKGSTHLALDDIRESIAELQHYRKHFIKFNANANANANA
D1-35_05056612hypothetical proteinATGCTGCTGATGCTGTATCTGATCGCCATTACCGCCGAAGCCATGACCGGCGCCTTGTCTGCCGGGCGGCGTGGCATGGACTGGTTCGGCGTGGTGCTGATCGCCTGTATCACGGCGCTGGGTGGCGGCTCGGTGCGCGACGTGCTGCTGGGGCATTACCCGCTGACCTGGGTCAAGCATCCGGAATACCTGGTGCTGACGACCGCGGCGGCCATGTTGACGGTATTCCTCGCGCGCTGGATGCGTCACCTGCGCTCGCTGTTCCTGGTGCTCGATGCCGTCGGGCTGGTGGCGTTTACCTTGATCGGCTGCATGACCGCGCTGGAAATGGGCCATGGCATGTTGGTGGCCTCGGTCAGTGGGGTGATTACCGGGGTTTTTGGCGGCATTCTCCGGGATATCTTCTGTAACGACATCCCGTTGATTTTCCGTCGCGAACTCTATGCCAGCGTCTCGTTCGCCGCTGCGTGGTGCTACCTGCTGTGTGTCTACCTGCAATTGCCCAGCGAGCAGGCGATTCTGATCACCCTGTTTGGTGGTTTCCTGCTGCGGCTCCTGGCGATCCGGTTTCACTGGGAAATGCCCAAGTTCGTCTATAACGACGAAGTCTGAMLLMLYLIAITAEAMTGALSAGRRGMDWFGVVLIACITALGGGSVRDVLLGHYPLTWVKHPEYLVLTTAAAMLTVFLARWMRHLRSLFLVLDAVGLVAFTLIGCMTALEMGHGMLVASVSGVITGVFGGILRDIFCNDIPLIFRRELYASVSFAAAWCYLLCVYLQLPSEQAILITLFGGFLLRLLAIRFHWEMPKFVYNDEVNANANANANA
D1-35_050571080queGEpoxyqueuosine reductaseATGCCTGCCATTCCCACAGACCTCCCCGCCCTCGCCCAATCCATCAAGGACTGGGGCCGCGAGCTGGGCTTCCAGCAAGTCGGCATCAGCGGCCTGGACCTTGGCGAGCATGAGCAGCACTTGCAACGCTGGCTCGAAGCCGGCTACCACGGCGAAATGGATTACATGGGCGCCCACGGCAGCAAACGCTCGCACCCGGAAGAACTGGTGCCCGGCACATTGCGGGTGGTGTCCCTGCGCATGGACTACCTGCCGGGCGACACCCGAATGGCGCAATTGCTTGGCGAACCGGAAAAAGCCTACGTCTCGCGTTATGCGTTGGGCCGCGATTACCACAAATTGATCCGTAAACGCGTGCAGCAATTAGCAGAAAAAATCCAGGCAGCCATCGGCCCCTTCGGCTATCGCGCGTTCGTCGACAGCGCACCGGTGCTGGAAAAAGCCATAGCCGAACAGGCAGGGCTGGGCTGGATCGGCAAAAATACGCTGGTGTTGAACCGCAAGGCCGGGAGCTATTTCTTCCTCAGCGAGCTGTTCGTCGACCTGCCGCTGCCGGTGGACCCGCCCCACGGCACCGAGCATTGCGGAAAATGCACCGCCTGCCTGGACATCTGTCCGACCAACGCCTTCGTTGGTCCCTACGTATTGGATGCCCGGCGTTGCATCTCCTACCTCACGATCGAACTGAAAAACGCTATCCCCGAGGAGCTGCGGCCGCTGATCGGCAATCGGGTGTTCGGTTGCGATGACTGCCAGATCGTCTGCCCGTGGAATCGCTTCGCCCGGCCCTCTGCGGAAGGCGACTTCAAGCCACGCCACAACCTGGACAATGCCGAACTGGCCGAGCTGTTCATGTGGGATGAGGACAGGTTTCTCAGCAGCACCGAAGGTTCGCCATTACGCCGCGCCGGTTATGAGCGCTGGCTGCGTAACCTGGCGGTGGGGCTTGGCAATGCGCCGACGACAATTCCCGTGCTGGAGGCGTTGAAGGCTCGACAGGATTATCCGTCAGCCCTGGTGCAGGAACATGTGCAATGGGCGCTGCGCCAACATGCCGAGCGTCAGACTTCGTCGTTATAGMPAIPTDLPALAQSIKDWGRELGFQQVGISGLDLGEHEQHLQRWLEAGYHGEMDYMGAHGSKRSHPEELVPGTLRVVSLRMDYLPGDTRMAQLLGEPEKAYVSRYALGRDYHKLIRKRVQQLAEKIQAAIGPFGYRAFVDSAPVLEKAIAEQAGLGWIGKNTLVLNRKAGSYFFLSELFVDLPLPVDPPHGTEHCGKCTACLDICPTNAFVGPYVLDARRCISYLTIELKNAIPEELRPLIGNRVFGCDDCQIVCPWNRFARPSAEGDFKPRHNLDNAELAELFMWDEDRFLSSTEGSPLRRAGYERWLRNLAVGLGNAPTTIPVLEALKARQDYPSALVQEHVQWALRQHAERQTSSLNANANANANA
D1-35_050581500nnrCOG0062Bifunctional NAD(P)H-hydrate repair enzyme NnrATGCCGCAGACTAAAGATGAATTTCCCGACGCGCTGTACAGTGCCGCGCAAGTCCGGGCCCTCGACGCACAACTGATCGTGGCGGGCACCAGCGGCTTCGAATTGATGCAGCGCGCCGCCCGCGCCACCTGGCGAGCGATCGTTCGGCGCTGGCCTGAAGCCGGCGAGTTGACCGTATTCGCCGGCCATGGCAACAACGCCGGCGATGGCTACCTGGTGGCGACTCTGGCCCGGCGTGCCGGCTGGGCGGTCCGGGTACTGGCGGTAGGCGAGCCCCGGCGGTTGCTGGGTGATGCCGCCAATGCCCATGCCGAAGCCGTGGCGGTTGGTGTGCCGGTGGAACCTTGGGCGGATGATTGCGAATTGCGCGGTGTCCTGCTCGACGCGTTGCTCGGCACCGGGGCGAGCGGTGACGTTCGCGAACCGTATGTTCGGGCAATCGACACCATCAATGTCAGCGGGTTACCGGTCGCTGCGGTGGATATCCCTTCCGGGTTGTGTGCCGACACCGGTCGGGTGCTGGGTACCGCAGTGACGGCGGACCTGACCGTGACCTTCATTGGCCTGAAGCTCGGTCTGTTCACCGGCGATGCGGCGGATCGGGTGGGAGAGTTGGTATTCAACGACCTGCACGCGGACCCGGACTTCGTTGACGCGGCGCCGGCCAGCGCTCGATTGCTCTTGCCGCATAACCTGCCGCGTCTGCCGCCCCGTGCGCCTTCAGCCCACAAGGGCAAGTTTGGTCATGTGCTGTTGATTGGCGGCGACCGCGGTTTTGGCGGCGCCATCCAGATGAGCGCCGAAAGCGCCTTGCGCAGCGGTGCGGGGATGGTTTCGATGGCGACCCGCAGCGAGCACGTGGCCGCCGCGCTGGTGCGTTTGCCCGAGGTGATGGTGCAAGGCACCCATTCGGCTAACCAGTTGATGGGGTTGCTCAAGCAGGCCAGCGTGCTGGTGGTGGGGCCGGGCCTTGGCCAGGCCGCTTGGGGGCGCAGCCTGTTGTCGGCGGCGGCCAATGCGTCGCTGCCGCAGGTGTGGGATGCCGATGCGCTGAATTTGTTGAGCCATGGCATGGTCAGTCTGCCGGAGCAGTGCCTCATCACCCCGCATCCGGGCGAGGCCGCGCGACTGCTGGGGATTTCCACCGTGCAGGTGCAGGCCGATCGTCCAGCGGCGGCCCACGCATTGAGCAAAAAATACCGAGCCAGCGTGATTCTCAAAGGCGCCGGTAGCCTGATCGCCAGCCCGGACGGGCGCCTGGCGGTTTGCGGTCAGGGTCATCCGGCGATGGCCACCGCTGGCCTGGGGGATGTCCTCGCTGGCGTGGCCGGCGCTTTGCTGGCCCAGGGAATGGAAGGATTCGAAGCCGCGTGCCTGGCCGTCTGGCTGCATGCCAATGCCGGGGTGCAGGTCGGTCGCTCGGGCCGCGGATTGGCCGCGACCGATCTGATTCCGGCCATTCGTCAGTTGTTGGAGGAGCACTCACCGTGTCTGAAGTAAMPQTKDEFPDALYSAAQVRALDAQLIVAGTSGFELMQRAARATWRAIVRRWPEAGELTVFAGHGNNAGDGYLVATLARRAGWAVRVLAVGEPRRLLGDAANAHAEAVAVGVPVEPWADDCELRGVLLDALLGTGASGDVREPYVRAIDTINVSGLPVAAVDIPSGLCADTGRVLGTAVTADLTVTFIGLKLGLFTGDAADRVGELVFNDLHADPDFVDAAPASARLLLPHNLPRLPPRAPSAHKGKFGHVLLIGGDRGFGGAIQMSAESALRSGAGMVSMATRSEHVAAALVRLPEVMVQGTHSANQLMGLLKQASVLVVGPGLGQAAWGRSLLSAAANASLPQVWDADALNLLSHGMVSLPEQCLITPHPGEAARLLGISTVQVQADRPAAAHALSKKYRASVILKGAGSLIASPDGRLAVCGQGHPAMATAGLGDVLAGVAGALLAQGMEGFEAACLAVWLHANAGVQVGRSGRGLAATDLIPAIRQLLEEHSPCLKNANANANANA
D1-35_05059468tsaECOG0802tRNA threonylcarbamoyladenosine biosynthesis protein TsaEGTGTCTGAAGTAACCCTGTACGTGGCGGACGAACAAGCCATGACACAATTTGGCGCCCGCATCGCGCAGACCACCGCAGGCCATGGTCTGATTTTTCTCGAAGGCGACCTTGGCGCGGGGAAAACCACCCTGTCCCGTGGCATCATTCGCGGCCTCGGGCATGTCGGCTCGGTCAAGAGCCCCACGTTCACGTTGGTCGAGCCCTACGAGATCGGTGATACCCGCGCCTTCCATTTCGACCTGTATCGACTGGTCGATCCTGAGGAGCTGGAGTTTCTCGGGATCCGTGATTATTTCGAAGATGACGCCTTGTGCCTGATCGAATGGCCTCAGAAGGGTGCAGGCTTTTTGCCAAAGCCCGACCTGACCATTACCATTGGCGCGCAGAACGGCGGGCGTTCGCTGAAACTGACGCCGCAAGGCTCGCGTGGCGAGTCGTGGTGTGCCGCTCTGGCACTGGAAAACTAAMSEVTLYVADEQAMTQFGARIAQTTAGHGLIFLEGDLGAGKTTLSRGIIRGLGHVGSVKSPTFTLVEPYEIGDTRAFHFDLYRLVDPEELEFLGIRDYFEDDALCLIEWPQKGAGFLPKPDLTITIGAQNGGRSLKLTPQGSRGESWCAALALENPGPT0019050_89DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_MURAMATE_DEGRADATION,PGPT0019050-amgK-K07102NANA
D1-35_050601431amiC_2COG0860N-acetylmuramoyl-L-alanine amidase AmiCATGATGGGGTTTGGTATGCGCTTTCGCGCGGTGGTTGCTGTCGTAGGACTGTTGCTTACGGCACTGGCCGTCGATGCTGTGGCTGAGACAAAGGTCAACAGTGTTCGCCTCTGGCGGGCGCCGGACAACACCCGGCTGGTGTTCGACCTGACAGGCCCGGTGCAGCACAGCGTGTTCACCCTCGCGGCCCCGGATCGCCTGGTGATCGACATCAACGGTGCATCCCTGGGCGCGCCGCTGAACGTGCCCACGGCCAACACGCCGATTACCGCGATGCGTTCGGCCCAGCGCACGCCCACCGACCTGCGAGTGGTCATCGACCTGAAACAGGCCGTGACCCCGAAGAGTTTCACCCTCGCACCCAATGCCCAGTACGGTAACCGGTTGGTGGTGGATCTGTTCGATAACCCGGCCGACGCCGCGCCTGCGCCACCGCCCCCGACCAAGGTCGCGACGGTGCCTGCCGTGCCGGTCACACCCACCGAGCCTGCGCTCAAGCTGCCACCGGCGCCAGCCGGCAAACGCGACATCATCGTGGTCATCGATGCCGGCCACGGTGGCGAAGACCCGGGCGCCTCGGGCTCGCGCGGTCAGCGTGAGAAAGACGTGGTGCTGGCCATCGCCCGGGAGTTGCAGCGCCAGGTCAACGGCATGAAAGGCTTTCGCGCCGAGCTGACCCGCACTGGCGACTACTTCATTCCGTTGCGTGGCCGCACCGAGATCGCCCGCAAGAAAGGTGCGGACCTGTTCGTCTCGATCCACGCCGACGCCGCGCCTTCGAAGGCTGCGTTCGGCGCCTCGGTATTTGCCCTGTCCGATCGTGGCGCCACTTCCGAGACGGCGCGCTGGCTGGCCGACAGTGAAAACCGTTCCGACCTGATCGGCGGTGCCGGCAATGTCAGCCTCGACGACAAGGACCGGATGCTTGCCGGCGTGTTGCTGGATCTGTCGATGACCGCCTCGTTGACGTCAAGCCTCAACGTTGGGCAGAAGGTCCTGAGCAACATCGGCCGCGTTACCCCGCTGCACAAGCAACGCGTCGAACAGGCCGGATTCATGGTGCTCAAGTCGCCGGACATCCCGTCGATCCTCGTGGAAACCGGGTTTATCTCCAACGCCAACGAAGCCTCGAAACTGTCCTCCGCGAGCCACCAGCAGGCCCTGGCCCGTTCCATCAGCAGCGGTGTGCGGCAGTTCTTCCAGCAGAACCCGCCGCCGGGTACCTACATCGCCTGGCTGCGCGATTCGGGCAAGATTGCCCAGGGACCGCGGGATCATCGCGTCAGTCCTGGCGAAACCCTGGCGATGATCGCGGTGCGCTACCAGGTGTCGCCCGCTACCTTGCGCAGCGCCAATAACCTGCAGAGTGACGAGCTGAAGATCGGACAGACCCTGACCATTCCCGGCAACGAAGTGGCGGTCAAGCAATGAMMGFGMRFRAVVAVVGLLLTALAVDAVAETKVNSVRLWRAPDNTRLVFDLTGPVQHSVFTLAAPDRLVIDINGASLGAPLNVPTANTPITAMRSAQRTPTDLRVVIDLKQAVTPKSFTLAPNAQYGNRLVVDLFDNPADAAPAPPPPTKVATVPAVPVTPTEPALKLPPAPAGKRDIIVVIDAGHGGEDPGASGSRGQREKDVVLAIARELQRQVNGMKGFRAELTRTGDYFIPLRGRTEIARKKGADLFVSIHADAAPSKAAFGASVFALSDRGATSETARWLADSENRSDLIGGAGNVSLDDKDRMLAGVLLDLSMTASLTSSLNVGQKVLSNIGRVTPLHKQRVEQAGFMVLKSPDIPSILVETGFISNANEASKLSSASHQQALARSISSGVRQFFQQNPPPGTYIAWLRDSGKIAQGPRDHRVSPGETLAMIAVRYQVSPATLRSANNLQSDELKIGQTLTIPGNEVAVKQPGPT0024160_1746DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-PEPTIDOGLYCAN_REMODELLINGCE-PG_REMODELLING_AMIDASE_ACTIVITY,PGPT0024160-amiA|amiB|amiC-K01448NANA
D1-35_050611914mutLDNA mismatch repair protein MutLATGACGGATGAAGTGATTGGCGGCAACGCTCGCATCGAACTGCTCAGCCCGCGGTTGGCGAACCAGATCGCCGCCGGTGAGGTGGTCGAGCGCCCGGCGTCGGTGATCAAGGAACTGCTGGAAAACAGCCTCGACTCCGGTGCCAAGCGCATCGACGTCGATGTCGAGCAAGGTGGCGTCAAGCTGCTGCGGGTGCGCGATGACGGTCGCGGCATTCCCGCCGACGACCTGCCGCTGGCGCTGGCTCGCCACGCCACCAGCAAGATTCGCGACCTGGAAGACCTTGAGCGGGTCATGAGCCTGGGGTTTCGTGGCGAGGCGCTGGCGTCCATCAGCTCGGTGTCGCGCCTGACGCTGACGTCCCGCACCCGCGATGCCGACCAGGCCTGGCAGGTCGAGACCGAAGGCCGCGACATGGCTTCTCGCGTCCAGCCCGCCGCCCATCCGGTGGGCACCTCGGTGGAAGTGCGCGACCTGTTCTTCAATACCCCGGCCCGGCGCAAGTTCCTCAAGGCCGAGAAAACCGAGTTCGATCATTTGCAGGAAGTCATCAAGCGCCTGGCCCTGGCGCGTTTTGACGTGGCTTTCCATTTGCGCCACAACGGCAAGACCATCCTCAGCCTGCACGAGGCCCACGATGATGCGGCCCGCGCCCGGCGCGTGGGCGCGGTGTGCGGTGCGGGTTTCCTCGAGCAGGCATTGCCCATCGAGGTGGAGCGCAATGGCCTGCACCTGTGGGGCTGGGTCGGCTTGCCGACGTTCTCTCGCAGCCAGGCGGACTTGCAGTATTTCTATGTGAATGGCCGCGCGGTGCGCGACAAGCTCGTGGCCCACGCGGTGCGCCAGGCTTATCGCGATGTGCTGTTCAACGGTCGGCATCCGACCTTCGTGCTGTTTTTCGAGGTCGACCCTTCGGTGGTGGACGTCAACGTGCACCCGACCAAGCATGAAGTGCGGTTCCGTGACGGGCGCATGGTCCATGACTTCCTTTACGGCACTTTGCATCGCGCCCTGGGCGACGTGCGTCCTGAAGATCAATTGGCGGCCCCGGCGGCGGTGGCCGGCATGGTCCGGCCAAGCGGATTGGAAGCTGGCGAATTCGGTCCCCAAGGCGAAATGCGCCTTGCGGCCAACGCGCTGCTTGAGCAACCCCAGCCCCAGCCGGTCTATAACACGGCCGGCAGCGGTGCCGGCAGCGGCTATCAATACCAATACACACCGCGTCCTCAGTCGAATGTGCCGGCGGCGGAGGCCCAGGCTGCCTATCGCGAATTTTTCAAGCCGTTGCAGGAGGCTGGTGCGGCGGCATTGCCCGATGGCCAGGGCGATATCCCGCCGCTAGGCTATGCCCTGGCGCAGCTCAAAGGCATCTACATTCTTTCCGAAAACGCCCAGGGCCTGGTCCTGGTGGACATGCATGCCGCCCATGAGCGGATCATGTACGAGCGGCTGAAGATCGCCATGGCCAGCGAAGGCTTGAGCGGGCAACCGCTGCTGGTGCCCGAGTCCCTGGCTGTCAGTCAGCGCGAAGCCGATTGCGCCGATGAGCATGTGAGCTGGTTCCAGCGCCTGGGCTTCGAGTTGCAGCGCCTGGGCCCGGAGACCCTGGCGATCCGGCAGATCCCGGCCTTGCTGAAACAGGCCGAGGCCAATCGCCTGGTCAGCGACGTGCTGGCGGACCTGATGGAGTACGGCACCAGTGACCGGATCCAGGCGCATCTGAACGAACTGCTCGGCACCATGGCCTGCCACGGCGCAATCCGCGCCAACCGGCGCCTGGCCCTGCCGGAAATGAACGGTCTGCTGCGGGACATGGAAAACACCGAGCGCAGCGGTCAATGCAACCATGGCCGGCCGACCTGGACCCAATTGGGCCTGGACGACCTGGACAAACTGTTCCTGCGCGGTCGCTGAMTDEVIGGNARIELLSPRLANQIAAGEVVERPASVIKELLENSLDSGAKRIDVDVEQGGVKLLRVRDDGRGIPADDLPLALARHATSKIRDLEDLERVMSLGFRGEALASISSVSRLTLTSRTRDADQAWQVETEGRDMASRVQPAAHPVGTSVEVRDLFFNTPARRKFLKAEKTEFDHLQEVIKRLALARFDVAFHLRHNGKTILSLHEAHDDAARARRVGAVCGAGFLEQALPIEVERNGLHLWGWVGLPTFSRSQADLQYFYVNGRAVRDKLVAHAVRQAYRDVLFNGRHPTFVLFFEVDPSVVDVNVHPTKHEVRFRDGRMVHDFLYGTLHRALGDVRPEDQLAAPAAVAGMVRPSGLEAGEFGPQGEMRLAANALLEQPQPQPVYNTAGSGAGSGYQYQYTPRPQSNVPAAEAQAAYREFFKPLQEAGAAALPDGQGDIPPLGYALAQLKGIYILSENAQGLVLVDMHAAHERIMYERLKIAMASEGLSGQPLLVPESLAVSQREADCADEHVSWFQRLGFELQRLGPETLAIRQIPALLKQAEANRLVSDVLADLMEYGTSDRIQAHLNELLGTMACHGAIRANRRLALPEMNGLLRDMENTERSGQCNHGRPTWTQLGLDDLDKLFLRGRNANANANANA
D1-35_05062972miaACOG0324tRNA dimethylallyltransferaseATGAACCAGCTCCCTCCGGCGATCTTCCTGATGGGGCCGACGGCCGCCGGCAAGACCGACCTGGCCATCGAACTGACCAAGGTGCTGCCCTGCGAGTTGATCAGCGTCGACTCGGCCTTGGTCTATCGGGGCATGGACATCGGCACCGCCAAGCCATCGAAGGAACTGCTGGCTGAATATCCGCACCGCCTGATCGATATCCTCGACCCGGCCGACGCTTACTCGGCAGCCGATTTCCGGCGTGATGCGCTCCAGGCCATGGCCGAGATCACCGCGCGGGGCAAGATTCCGCTGCTGGTGGGCGGCACCATGCTCTATTACAAGGCCTTGGTCGACGGGCTGGCGGACATGCCGGCGGCCGATCCCGAGGTGCGCGCGCAGATCGAAGAAGAGGCTGCGCGCCTTGGCTGGCAAGCGCTTCACGAGCAATTGGCGCTGATCGATCCCGAGTCGGCGGCGCGTATTCACCCCAACGACCCGCAGCGGCTCAGCCGAGCGCTGGAGGTTTATCGGGTCAGCGGCCAGAGCATGACGGCCCTGCGCCAGCGACAATCTGCGCAAAGTACTGAAGCAGCCGCTTCGGGACTGCAACAATTGCCCTATACTGTCGCGAATCTGGCCATCGCTCCGGCGAACCGGCAAGTGTTGCATCAGCGTATTGAACAAAGATTCACATTGATGTTGGAACAGGGGTTCATAGACGAGGTCGTAGCCCTGCGTGAGCGAAGTGACCTGCATGCCGGGTTGCCGTCTATACGTGCGGTAGGTTATCGACAAGTCTGGGATTACCTGGACGGCAAGCTGACGTCAGCCGAGATGCGCGAGCGTGGGATTATCGCCACGCGCCAATTGGCGAAGCGCCAGTTCACCTGGTTGCGCAGCTGGACTGACTTGCATTGGCTCGACAGCCTTGATTGCGACAATCTGCCACGCGCCTTGAAATACCTTGGGACCATCTCCATATTGAGCTGAMNQLPPAIFLMGPTAAGKTDLAIELTKVLPCELISVDSALVYRGMDIGTAKPSKELLAEYPHRLIDILDPADAYSAADFRRDALQAMAEITARGKIPLLVGGTMLYYKALVDGLADMPAADPEVRAQIEEEAARLGWQALHEQLALIDPESAARIHPNDPQRLSRALEVYRVSGQSMTALRQRQSAQSTEAAASGLQQLPYTVANLAIAPANRQVLHQRIEQRFTLMLEQGFIDEVVALRERSDLHAGLPSIRAVGYRQVWDYLDGKLTSAEMRERGIIATRQLAKRQFTWLRSWTDLHWLDSLDCDNLPRALKYLGTISILSPGPT0007210_1344DIRECT EFFECTCOLONIZING_PLANT_SYSTEMOTHER_COLONIZATION_RELATED_PROTEINSCOLONIZATION-HOST_INVASION_FACTORSHOST_INVASION-HOST_INFECTION_MEDIATOR,PGPT0007210-miaA|ipt-K00791NANA
D1-35_05063261hfqCOG1923RNA-binding protein HfqATGTCAAAAGGGCATTCGCTACAAGACCCTTACTTGAACACTTTACGTAAAGAAAAAGTTGGGGTGTCCATCTATCTGGTCAACGGGATCAAACTGCAAGGCACGATCGAGTCTTTCGACCAGTTCGTCATCCTGCTGAAAAACACCGTCAGCCAGATGGTCTACAAACACGCTATCTCGACGGTAGTGCCGGTTCGTCCAATTCGTCTGCCTAGCGCAACCGAATCCGAAGGCGCTGACGCTGAGCCGGGTAACGCTTGAMSKGHSLQDPYLNTLRKEKVGVSIYLVNGIKLQGTIESFDQFVILLKNTVSQMVYKHAISTVVPVRPIRLPSATESEGADAEPGNAPGPT0025560_874DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-AI1|AI-2|CAI-1_PERCEPTION|SIGNALLING,PGPT0025560-hfq-K03666NANA
D1-35_050641302hflXCOG2262GTPase HflXTTGTTCTTTGAGCGCCACGGTGGTGGTGAACGGACTATTCTCGTTCACTTGGAAGGACAGGACCCTGAGGCGCGCGAAGATCCGCAGGAGTTTCAGGAATTGGCAATTTCGGCCGGCGCCGAGACCGTCGCGTTTGTCAACGTGCCGCGTCATCGGCCAACCGCCAAGTTCCTGATCGGCAGTGGCAAGGTCGAGGAGTTGCGCGACCTGGTCAAGGCCGAGCACATCGATCTGGTGATTTTCAATCACATCCTTACGCCCAGTCAGGAACGTAACCTCGAACGTGTCTTCGAGTGTCGCGTGATCGACCGCACCGGGCTGATTCTCGATATCTTTGCCCAACGCGCGCGTACCCATGAAGGCAAGCTCCAGGTCGAACTGGCCCAGCTTGAGCACATGAGCACACGGCTGGTTCGCGGCTGGACTCACCTTGAGCGCCAGAAAGGCGGTATCGGCCTGCGTGGCCCGGGTGAAACCCAGCTGGAAACCGACCGGCGCCTGCTGCGGGTTCGCCTGCGCCAGATCAAGGGGCGACTGGAGAAGGTCCGCAGCCAGCGCGAGCAGTCGCGACGCGGCCGCAAGCGGGCGGACATCCCGACGGTTTCACTGGTGGGGTATACCAACGCCGGCAAATCGACGCTGTTCAATCACGTTACCCAGTCCGACGTCTACGCGGCCGACCAGTTGTTCGCCACGCTCGACCCGACCCTGCGCCGGCTCGACCTGGACGACCTCGGGCCGATCGTACTGGCCGACACCGTGGGCTTCATCCGGCACCTGCCGCATAAACTGGTCGAGGCTTTCCGGGCTACGCTCGAAGAGTCGAGCAACTCCGACCTGCTGCTGCATGTGATCGATGCTGCCGAGCCGGACCGGATGCTGCAGATCGAGCAGGTCATGGTGGTGCTGGGCGAGATCGGGGCGCAGGACTTGCCGATCCTCGAGGTATACAACAAACTCGATTTGCTCGAGGGCGTGGAACCGCAGATCCAGCGTGATGCCGACGGCAAGCCGCAGCGGGTCTGGCTGTCGGCGCGTGATGGCAGCGGCCTGGACCTGCTCAAGCAGGCCGTGGCGGAGCTGCTGGGCGACGACCTGTTTGTCGGCACCCTGAAGCTGCCACAGCGTTTTGCCCGGCTGCGTGCCCAGTTCTTCGAGCTGGGGGCGGTGCAGAAAGAAGAACACGACGAAGACGGTGTCTGCCTGCTGGCCGTTCGCCTGCCTCGGTCGGAACTGAACCGGCTGGTCAGTCGTGAAGGGCTGCAACCGATGGAATTCATCGAGCAACACACTTTGCAATAAMFFERHGGGERTILVHLEGQDPEAREDPQEFQELAISAGAETVAFVNVPRHRPTAKFLIGSGKVEELRDLVKAEHIDLVIFNHILTPSQERNLERVFECRVIDRTGLILDIFAQRARTHEGKLQVELAQLEHMSTRLVRGWTHLERQKGGIGLRGPGETQLETDRRLLRVRLRQIKGRLEKVRSQREQSRRGRKRADIPTVSLVGYTNAGKSTLFNHVTQSDVYAADQLFATLDPTLRRLDLDDLGPIVLADTVGFIRHLPHKLVEAFRATLEESSNSDLLLHVIDAAEPDRMLQIEQVMVVLGEIGAQDLPILEVYNKLDLLEGVEPQIQRDADGKPQRVWLSARDGSGLDLLKQAVAELLGDDLFVGTLKLPQRFARLRAQFFELGAVQKEEHDEDGVCLLAVRLPRSELNRLVSREGLQPMEFIEQHTLQPGPT0007245_2458DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007245-hflX-K03665NANA
D1-35_050651176hflKCOG0330Modulator of FtsH protease HflKATGGCTTGGAATGAGCCGGGTGGCAACTCGAACAACCAGGATCCCTGGGGCGGCAAGCGTCGTAACAACGGCGACCGCAAGGGACCACCGGATCTCGACGAGGCCTTCCGCAAGCTGCAGGAAAGCCTGAACGGTTTGTTCGGTGGTGGTAAGAAACGCGGTGACGATGGCGGCGGCCGTCCGGGCAGAGGCGGTGGCTTCGGCCTGCTCGGCATCGGTCTTGTCGTGCTTGCGGCTGTCTGGCTGTACAGCGCGGTGTATGTCGTGGACGAGCAGGAGCAAGCCGTGGTGCTGCGCTTCGGCAAGTACTACGAAACCGTCGGCCCGGGCCTGAACATCTATTTCCCGCCGATCGACCAGAAGTACATGGAGAACGTCACGCGTGAGCGTGCCTACACCAAGCAGGGCCAGATGCTCACCGAGGACGAGAACATCGTCGAAGTGCCGCTGACCGTGCAATACAAGATCACCAACCTGCAGGACTTCGTGCTGAACGTCGACCAGCCGGAAATCAGCCTGCAACACGCGACTGAGAGTGCCTTGCGCCATGTGGTGGGCTCCACCGCCATGGACCAGGTGCTGACCGAAGGTCGCGAGCTGATGGCCAGCGAAATCAAGGAGCGTCTGCAACGCTTCCTCGACACCTATCGCACCGGTATCACTGTCACCCAGGTCAACGTGCAGAGCGCAGCGGCACCGCGTGAAGTCCAGGAAGCCTTCGACGACGTGATCCGTGCCCGTGAAGACGAGCAGCGTTCGCGCAACCAGGCCGAAACCTACGCCAACGGCGTCGTGCCGGAAGCCCGTGGCCAGGCCCAGCGCATCATCGAGGATGCCAACGGTTATCGCGACGAAGTGGTTTCCCGCGCCAAGGGTGAGGCTGATCGCTTCACCAAGCTGGTGGCCGAGTATCGCAAGGCTCCTGAAGTGACCCGCCAGCGTCTGTACCTGGACACCATGCAGGAAGTCTTCAGTAATACCAGCAAGGTCCTCGTGACCGGCAACAAGAACGGCCAGAGCAATCTGCTGTACCTGCCGCTGGACAAGATGGTCGAGAGCGGTCGCAACACCGGCACGCCGTCAACCGGCGCGGCGGCAGCCGCCAGCAATGAAGCCAATGCCCGCGCGGCGGCGGACCTGCAGCAACAGCAAGCACGTACCAGGGAGAGTCGCTGAMAWNEPGGNSNNQDPWGGKRRNNGDRKGPPDLDEAFRKLQESLNGLFGGGKKRGDDGGGRPGRGGGFGLLGIGLVVLAAVWLYSAVYVVDEQEQAVVLRFGKYYETVGPGLNIYFPPIDQKYMENVTRERAYTKQGQMLTEDENIVEVPLTVQYKITNLQDFVLNVDQPEISLQHATESALRHVVGSTAMDQVLTEGRELMASEIKERLQRFLDTYRTGITVTQVNVQSAAAPREVQEAFDDVIRAREDEQRSRNQAETYANGVVPEARGQAQRIIEDANGYRDEVVSRAKGEADRFTKLVAEYRKAPEVTRQRLYLDTMQEVFSNTSKVLVTGNKNGQSNLLYLPLDKMVESGRNTGTPSTGAAAAASNEANARAAADLQQQQARTRESRNANANANANA
D1-35_05066870hflCCOG0330Modulator of FtsH protease HflCATGAGCAATAAATCGCTGATCGCCCTTATTGTCGGTGTCGTCGTGGCGATCGCTGCCTGGAACTGCTTCTACATCGTGGCTCAGACCGAGCGTGCGGTGTTGCTGCAGTTCGGTCGCGTGGTCCAGGCTGATGTCCAGCCGGGGCTGCATGTGAAAGTGCCGTACGTCAACAAGGTGCGCAAGTTCGACGCCCGCCTGATGACGCTGGACGCGCCGACGCAGCGCTTCCTGACGCTGGAAAAGAAAGCCGTGATGGTCGATGCCTATGCCAAGTGGCGCGTGAAGGATGCCGAGCGCTTCTACACCGCGACGTCCGGCCTCAAGCAGATCGCTGACGAACGTCTGTCCCGTCGCCTGGAATCGGGTCTGCGTGACCAGTTCGGTAAGCGTACCCTGCATGAAGTGGTCTCCGGTGAGCGCGATGCGCTCATGTCCGACATCACCCGTTCGCTGAACACGATGGCGGAAAAAGAGCTGGGTATCGAAGTGGTCGATGTCCGCGTCAAGGCCATCGACCTGCCGAAGGAAGTGAACCGCAGCGTGTTCGAGCGCATGAGCACCGAGCGTGAGCGTGAAGCCCGCGAGCACCGTGCCAAGGGTAACGAGCTGGCTGAAGGCATCCGTGCCGACGCCGATCGCCAACGCCGTGTGCTGCTGGCCGAAGCCTATCGCGAGTCGGAAGAAGTCCGTGGTGATGGCGATGCCCAGGCCGCAGCGATCTACGCCAAGGCCTACGGCCAGGATCAGGAGTTCTACGCGTTCTATCGTAGCCTGCGCGCCTACCGTGAAAGCTTCGCGAACAAGTCCGACGTTCTGGTCCTGGACCCAAGCAGCGACTTTTTCCACTACCTGGAAAAGGCCAAGCCTTGAMSNKSLIALIVGVVVAIAAWNCFYIVAQTERAVLLQFGRVVQADVQPGLHVKVPYVNKVRKFDARLMTLDAPTQRFLTLEKKAVMVDAYAKWRVKDAERFYTATSGLKQIADERLSRRLESGLRDQFGKRTLHEVVSGERDALMSDITRSLNTMAEKELGIEVVDVRVKAIDLPKEVNRSVFERMSTEREREAREHRAKGNELAEGIRADADRQRRVLLAEAYRESEEVRGDGDAQAAAIYAKAYGQDQEFYAFYRSLRAYRESFANKSDVLVLDPSSDFFHYLEKAKPNANANANANA
D1-35_050671188hisZCOG3705ATP phosphoribosyltransferase regulatory subunitATGGCAACGGTAGACCGCTGGCTGCTGCCAGATGGCATCGAAGAAGTACTGCCACCGGAGGCCGCGCGTATCGAAGTAGCGCGTCGGCAGGTGTTGGATCTGTTCCAGAGCTGGGGTTACGAATTTGTCGTGACCCCGCATATCGAGTACCTGGAATCCCTGCTGACCGGCGCGGGCCAGGACCTGGATCTGCGCACCTTCAAGGTCATCGATCCGCAGTCGGGTCGGCAGATGGGTTTTCGGGCCGACATCACGCCACAAGTGGCGCGCATCGATGCCCACACCCTGCGTCGTGAAGGTCCGAGCCGCCTGTGCTACGCCGGCAGTGTCCTGCATGCCTTGCCGCGTGCCTTGTCGTCTTCGCGCAGCCCGATCCAGCTGGGCGCCGAGCTGTACGGCGACGCGAGCCCGAGCAGCGACGTGGAAGTCATCAGCCTGATGCTGGCCATGCTGCAACTGGCTGACGTGCCGGATGTCCACATGGACCTGGGCCATGTCGGCATCTACCGCGGCCTGGCACGTGCGGCCGGCCTGTCCGGCGAAGTGGAACAGCAGTTGTTCGATGCGTTGCAGCGCAAGGCCATCGACGAAGTCATCAGCCTGACCGAAGGCCTGCCGACACAATTGTCCGGCATGCTGCGGGCATTGGTGGATCTGTGTGGCGGCCGTGAGGTGCTGGGCGCCGCTCGCGAGCGTCTGGCCGGTGCGCCGGCCCCTGTGCTGGCGGCCCTTGATGACTTGTTGGCGATTGCCGAGCGTCTGTCGGTGCGTTTCCCGGAGCTGCCGTTGTATTTCGACCTGGGTGAACTGCGCGGTTATCACTACCACACCGGCGTGGTGTTCGCGGTGTTCGTACCGGGCGTTGGCCAGTCCATCGCCCAAGGCGGTCGCTACGACGACATCGGTGCCGATTTCGGTCGTGCCCGTCCGGCGACCGGCTTCTCTACCGATTTGAAAACCCTGGTGACCCTGGGGCGTGCTGAGATCGAGTTACCGTCTGGCGGTATCTGGATGCCTGACAGTACGGATGCGGCACTCTGGCAGATGGTCTGCCAGTTGCGCGGTGAGGGTCAGCGTGTCGTCCAGGCATTGCCTGGGCAACCTTTGGCCGCCGCCCGTGAAGCGGACTGCGACCGGCAATTGATTCAGCAGAACGGGCTTTGGCAAGTATTGCCGCTGGCTTCTTGAMATVDRWLLPDGIEEVLPPEAARIEVARRQVLDLFQSWGYEFVVTPHIEYLESLLTGAGQDLDLRTFKVIDPQSGRQMGFRADITPQVARIDAHTLRREGPSRLCYAGSVLHALPRALSSSRSPIQLGAELYGDASPSSDVEVISLMLAMLQLADVPDVHMDLGHVGIYRGLARAAGLSGEVEQQLFDALQRKAIDEVISLTEGLPTQLSGMLRALVDLCGGREVLGAARERLAGAPAPVLAALDDLLAIAERLSVRFPELPLYFDLGELRGYHYHTGVVFAVFVPGVGQSIAQGGRYDDIGADFGRARPATGFSTDLKTLVTLGRAEIELPSGGIWMPDSTDAALWQMVCQLRGEGQRVVQALPGQPLAAAREADCDRQLIQQNGLWQVLPLASNANANANANA
D1-35_050681293purACOG0104Adenylosuccinate synthetaseATGGGTAAGAATGTCGTAGTCCTGGGCACCCAGTGGGGTGATGAGGGCAAAGGCAAGATCGTTGATCTGCTGACCGAACATGCTGCCGCCGTAGTGCGCTACCAGGGTGGCCACAACGCAGGTCACACCTTGGTGATCGACGGTGAGAAAACCGTTCTGCACCTGATCCCCTCGGGCGTGCTGCGCGAAGGCGTGCAGTGCCTGATCGGCAATGGCGTGGTGGTTGCCCCCGACGCCCTGCTGCGGGAAATCATCAAGCTGGAAGAGAAGGGTGTACCGGTGCGCGAGCGCCTGCGCATCAGCCCGTCCTGCCCGCTGATCCTGTCCTATCACGTTGCGCTGGACCAGGCCCGTGAAAAGGCCCGTGGCGAGCTGAAGATCGGCACCACCGGTCGCGGCATCGGCCCGGCCTATGAAGACAAGGTCGCCCGTCGCGGCCTGCGCATCGGCGACCTGTTCCACCGCGAACGTTTCGCCGCCAAGCTGGGTGAGTTGCTGGACTACCACAACTTTGTCCTGGTCAATTACTACAAAGAGCCGGCCATCGACTTCCAGAAGACCCTGGACGAGTGCATGGAATACGCCGAGCTGCTCAAGCCGATGATGCTCGACGTTACCGCCGAGCTGCACGAGCTGCGCCGTGCCGGCAAGGACATCATGTTCGAAGGCGCCCAGGGTTCGCTGCTGGATATCGACCACGGCACCTACCCGTACGTCACCAGCTCCAACACCACCGCTGGCGGCATCGCCACCGGTTCGGGTTTTGGCCCGATGTACCTGGACTACATCCTCGGCATCACCAAGGCCTACACCACCCGCGTCGGTTCGGGCCCGTTCCCGACCGAGCTGTTCGACGACGTCGGTGCCTTCCTGGCCAAGCGCGGCCACGAGTTCGGTGCCACCACCGGCCGTGCCCGTCGTTGCGGCTGGTTCGATGCCGTCATCCTGCGTCGCGCCATCGACGTCAACAGCATCTCGGGCCTGTGCCTGACCAAGCTGGACGTGCTGGACGGCCTGGAGACCATCAACATCTGCGTGGGCTACAAGAACCAGGACGGCGCCGTCATCGACGCACCGACCGATGCAGACAGCTACATTGGCCTGGAGCCGGTGTACGAGCAGATGCCAGGCTGGACCGAATCGACCGTGGGCGCCAAGACCCTGGAAGAGCTGCCCGTGGCGGCCCGCAACTACATCAAGCGCGTCGAAGAGCTGGTCGGTGCGCCGATCGACATTATTTCGACGGGGCCGGACCGCAACGAAACCATCGTTCTGCGTCACCCTTTCGCCTGAMGKNVVVLGTQWGDEGKGKIVDLLTEHAAAVVRYQGGHNAGHTLVIDGEKTVLHLIPSGVLREGVQCLIGNGVVVAPDALLREIIKLEEKGVPVRERLRISPSCPLILSYHVALDQAREKARGELKIGTTGRGIGPAYEDKVARRGLRIGDLFHRERFAAKLGELLDYHNFVLVNYYKEPAIDFQKTLDECMEYAELLKPMMLDVTAELHELRRAGKDIMFEGAQGSLLDIDHGTYPYVTSSNTTAGGIATGSGFGPMYLDYILGITKAYTTRVGSGPFPTELFDDVGAFLAKRGHEFGATTGRARRCGWFDAVILRRAIDVNSISGLCLTKLDVLDGLETINICVGYKNQDGAVIDAPTDADSYIGLEPVYEQMPGWTESTVGAKTLEELPVAARNYIKRVEELVGAPIDIISTGPDRNETIVLRHPFAPGPT0020140_2660DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0020140-purA-K01939NANA
D1-35_050691935hypothetical proteinGTGTCGGCCGTTCTCTCACTGTTACAAAGCCGTTTGCTGCGGCCTGTTTTCGTTACGCTCGGTATCGCCCTTTTGGTGCAGGTACTGGTCGCCGTTGCGCTGACCCGAAGCACGGTCACTGCGCTGGAGGCCGACCTGAACGCGCGCCTTGGGGCTGACAGCCAGAAACTCTCCGGTGAGCTGGAGCAGGCCGGGCGTGAAGTCACCTCCAGCCTCGATAGCCTTTCCGCCAGCACCCGCCAACGGTTGAACGCCGGTTTGTCCTCGCGGCTGAAGGAGGAACAGGCCCATCTGCGTGCGACTCTGGAAAAAGACCTGAGGGATTCCGCCAATGATATGGCGCAGCTTTTGGCCTCGGTCGCGCCTCGCGCCATGTGGGACAGCGACGTGCCGACCCTTTCCGAATTCGCCCGCCGCGCCCAGCGCAATCCCAACGTGTTGTTCGTCATCTATGACGACGCTGCCGGCGAACACCTGACTCGTTATCTGAACCGTGAAAACCCGATCAACAAGGCCCTGCTGGAAAAAGGCAAGGGCGAGCGAGCACTGGACAAGGTGCTGGACGCGGCGAAGAACGACCCGTCGGTCTATTACCTCGAAGCGTCGATCAACCCCAACGGTGTGGAAATTGGCAAAGTGCTGATGGGCGTTTCTACCGCCTCGGTGGAAACCGATCTGAAAGCGCTGGACCAGCGCTTCTCCGCATTGATCGCCAGCAGTGACCAATTGGTCGGTGACAGCCTCAAGGGCGCAGCCGCGGACAGCGCCACCGCCATGCGTGGCCGCCTGGGCTCGGCGCAGGCAACCGCCACGCAAATGCAGACCAATACCGCCGCCACCGTGCAGGAGGCTGCGGGAACGTTGCGCTGGCGCATCGGCCTGGGCCTGGCGCTGGTTGGGTTCGGCGTGCTGGCATTGCTGGCCGTGGTGCTGGGGCGGCGAGTGGTCAATCGCTTGAAGCTGTTGATTGCAGCGATGAACGACCTGGCGGCGGGCGAGGGCGATCTGACCAAGCGTGTACAGATCAGCAGCAAGGATGAAATTGGCGACATGGCTTCGGCGGTCAATCGTTTTGTCGACAAATTGCAACCTATCGTGCGTGAAGCGGGTGACGTGGCCCAGCGCACCGGCCAGGAAATCGGTGCAATGACCCTGCGCAACTCCGGCGCCGACGCGGCGGCCGGCATGCAGCGCGACGAAGTGGCCGAGAGCCTGCGGGCCCTGTCGCAGATGGCTGATGAGGCGCAGTCGGAAAGCCAGGCGATGCAGGCGGCCTTGCAGCAGGTAGTGGAGATCCGCCAGGCCACCGATGAAACGACCCGCACCGCGGCCAAGGTCGGCGGCTTGATCGAAGCGCTGGCCGGACAGGTCGACACCGGGGCGAAGGTCATCGAGCGGCTGGCGCAGCAGAGCGAGCAGATCGAAGTGGTCCTGACGGTTATCCATGGCATCGCCGAGCAAACCAACCTGCTGGCGTTGAACGCGGCCATCGAAGCGGCGCGGGCAGGCGAAACCGGGCGCGGATTTGCAGTGGTGGCGGACGAGGTGCGGGCACTGGCGAGCAAGACCCAGAGTTCGACCGGCGACATCCAGGCGCATATCGTCGCCTTGCAACAAGGTGCGCGCGAAGCGGTGGCTGCGATTGGCCAGGCTGGACGACAAGCGAACGAGGGTCTGGCGGTGCTGCGAGACAGCGCGCGGCTGCAGCAATCAGTGCAGGCTTCGGTCGAGCAGGTCCACGCGGCCATCGGCCTGGCGACCCAGGCAGCGGCGCATCAGGCCCAGGGCGCCCAAGCGGTGCGCGGACGGGTGGAAACCATCCACGCCCAGGCCGAAAAAGCCGCCCAGGCGGTGGTCGAGACCACTGCCAGCGGCAAGGTGTTGGACAGTCTGGCGGCGCAGTTGAAGGCGAGCCTGGGGCAGTTCAGGGCCTGAMSAVLSLLQSRLLRPVFVTLGIALLVQVLVAVALTRSTVTALEADLNARLGADSQKLSGELEQAGREVTSSLDSLSASTRQRLNAGLSSRLKEEQAHLRATLEKDLRDSANDMAQLLASVAPRAMWDSDVPTLSEFARRAQRNPNVLFVIYDDAAGEHLTRYLNRENPINKALLEKGKGERALDKVLDAAKNDPSVYYLEASINPNGVEIGKVLMGVSTASVETDLKALDQRFSALIASSDQLVGDSLKGAAADSATAMRGRLGSAQATATQMQTNTAATVQEAAGTLRWRIGLGLALVGFGVLALLAVVLGRRVVNRLKLLIAAMNDLAAGEGDLTKRVQISSKDEIGDMASAVNRFVDKLQPIVREAGDVAQRTGQEIGAMTLRNSGADAAAGMQRDEVAESLRALSQMADEAQSESQAMQAALQQVVEIRQATDETTRTAAKVGGLIEALAGQVDTGAKVIERLAQQSEQIEVVLTVIHGIAEQTNLLALNAAIEAARAGETGRGFAVVADEVRALASKTQSSTGDIQAHIVALQQGAREAVAAIGQAGRQANEGLAVLRDSARLQQSVQASVEQVHAAIGLATQAAAHQAQGAQAVRGRVETIHAQAEKAAQAVVETTASGKVLDSLAAQLKASLGQFRANANANANANA
D1-35_050711566hypothetical proteinATGACACCGTCGCTGAACGCTCCCTCTGCCGCGAGGAGCTATATTCCCCGGCGCAAGCGCCCGTCGATCGGTCTGCTGCTCCCGGTTCTGCTGCTGGTGCTGCTGAGCGCGTTGCCGCTCCTGTATGTCATCGCGAAGGCCTGGCAGGCCGGTTGGACAGAAGCATTGCACTTGCTCTGGCGGCCTTATGTATTCGGCCTGCTGCGCAACACCTTGGCGCTGATGATCGGTGTCACGCTGGCCTGTGGCGTGATCGGCCTGTCGCTGGCCTGGCTTTTGGAGCGCAGCGATCTGCCGGGACGCAGGGTCTGGGGCGTGATCCTCTGCCTGCCATTCGCAGTGCCGGCGTTTGTCAGCAGCTTCACCTGGGTATCGCTCAGCGCGCAATTCGAAGGACTGGGCGGGGCCATCCTGGTCATGACGCTGTCCAAATATCCGCTGATTTTCCTGCCGGTGGCGGCAACGCTACGCAATCTCGATCCCTCTCTTGAGGAATCCGCACGAACCCTGGGGCAAAATCGCTGGGGCGTGTTTTTTCGCGTCACCCTGCCATTGCTCTGGCCCTCGCTGCTGGCCGGCTCACTGTTGATTGCCTTGCACATGCTGGTGGAGTTCGGCGCGCTGTCGATCATCGGACTGCAAACGTTTACCACCGCGATCTATCAACAATTCGAGCTGGAGTTCAGCAACGCCAATGCCGCCATGCTGTCAGCGGTGCTGTTGGTGCTTTGCCTGGCACTGTTGTGGCTGGAATTGCGCGTGCGCGGCAAGGGCCGCCACGTACGCACCGGACAAGGCGCGGCACGCCGCGCGGAACAGGTACGGCTCGGCCCCTGGGCGTTCCTCGGCCAGCTGTATTGCGCGGCACTGACGGTCATTGGCAGCGGTATTCCGCTGGGGATGCTGGTGTATTGGCTGGCGGTGGGCACTTCCGCCGCCTTCCCGGTGGGCGAGATCGGCGAAGCCCTGCTGTCATCCCTGGCGCTGTCACTGGGCGGCGCCGCGCTGTGCCTTGTACTCGCGGTGCCGGTCGGCCTGCTGGTGGTGCGTCACAAGGGGCGCCTGGCGCTATGGGCAGAACGCCTGCCGTATTTGCTGCATGCACTGCCAGGCCTGGTGATTGCCCTGAGCCTGGTGTATTTCGCGCTGCACTATGTGCCGGCGCTCTATCAGACCTCGGGTTTGCTGCTGATTGCCTACGCGCTGCTGTTCCTGCCGCTGGCCCAGGCGCCGGTGCGCACGGCGCTGAACAAGGCCGCGCCGCAGCTGGAAGAAGCGGCTCGCACGCTGGGGGCTTCTCCTTTCAGTGCGTTTTGCCGGGTGACCTTGCCGATTATCTTCCCGGCGCTGGGGGCGGCATTTGCGCTGGTGTTCCTGGACGCGATGAAAGAACTGACTGCTACTTTGCTGCTCAGCCCGACCGGGCTCAACACCCTGGCGACAGCGGTCTGGGCACATACCTCGAACATCGAGTTTGCGGCAGCGGCGCCTTACGCGGCGCTGCTTATCCTGGTGTCGGGGTTACCGGTCTATTTGCTGACGACGCGGATGTATCTGAGCCGCTGAMTPSLNAPSAARSYIPRRKRPSIGLLLPVLLLVLLSALPLLYVIAKAWQAGWTEALHLLWRPYVFGLLRNTLALMIGVTLACGVIGLSLAWLLERSDLPGRRVWGVILCLPFAVPAFVSSFTWVSLSAQFEGLGGAILVMTLSKYPLIFLPVAATLRNLDPSLEESARTLGQNRWGVFFRVTLPLLWPSLLAGSLLIALHMLVEFGALSIIGLQTFTTAIYQQFELEFSNANAAMLSAVLLVLCLALLWLELRVRGKGRHVRTGQGAARRAEQVRLGPWAFLGQLYCAALTVIGSGIPLGMLVYWLAVGTSAAFPVGEIGEALLSSLALSLGGAALCLVLAVPVGLLVVRHKGRLALWAERLPYLLHALPGLVIALSLVYFALHYVPALYQTSGLLLIAYALLFLPLAQAPVRTALNKAAPQLEEAARTLGASPFSAFCRVTLPIIFPALGAAFALVFLDAMKELTATLLLSPTGLNTLATAVWAHTSNIEFAAAAPYAALLILVSGLPVYLLTTRMYLSRPGPT0003730_4310DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003730-afuB|fbpB-K02011NANA
D1-35_050721011fbpACOG1840Iron-utilization periplasmic proteinATGATGTTTCGAACCACCCTGCGCCGCGCCCTGACCTGCACCCTGCTCGGCCTGACCCTCGCAACGCCCCTCACCCAAGCCGCCGACAAGGTGGAACTGACTCTCTACAACGGCCAGCACAAAGAAGTTGGCGATGAACTGGCCAAGGCCTTCGAGGCCAAGACCGGCATCCACGTCAACGTGCGCAAGGGCAGCAGCAACCAGCTCGCCAGCCAGGTTGTCGAAGAAGGCGAGCGCTCCCCTGCCGACGTGATCTACACCGAAGAGTCGCCGCCCTTGAACAAGCTCGGCGAGCAAGGGCTGCTGGCGAAGATCGACGACGCCACGCTCAACGTACTACCCAAGGATTATGTTGCGAGCAATGGCACCTGGATGGGCGTGACCGCCCGCGTGCGTGTGGTTGCCTACAACCCCAAACTGATCGACGAGAAAGATCTGCCGAAAACCGTCCTCGATTTCGCCCAGCCGCAATGGCAGGGCAAGGTCGGCTTTGTACCAACCAGCGGCGCGTTCCAGGAGCAAGCCGTCGCCATCATCAAGTTGCACGGGATGGACGCCGCCGAGGAATGGCTCACCGGGCTGCGCGCGTTCGGCAAGGTCTACAGCAACAACATGGTTGCCCTCAAGGCCGTGGAAAACGGCGAAGTCGCGACGGTCCTGGTGAATAATTACTACTGGTTCGCGCTGCAGCGAGAGAAAGGCCAGCTCGACTCCAGGCTGCACTATTTCACCGGAGGCGATGCCGGTGGCCTGGTGACCGTGTCCAGCGCCGCTGCGCTGAAATCCAGCAAGCACCCCAAGGAAGCCCAACAACTGCTCGCCTACATGGCCAGTGAAGAAGGCCAGCGCGTGATTACCCAGACGTCCGCCGAGTACCCCCTCCACAAAGGCATGGTGTCGGACCGTGGCCTCAAGCCGTTCACTGAACTTGAACCGCCAAAAGTCACTCCGGCCGACCTCGGCAATGCTGAAGAAGCCCTGGAGCTGGAACGTGAAGTCGGCCTGAACTGAMMFRTTLRRALTCTLLGLTLATPLTQAADKVELTLYNGQHKEVGDELAKAFEAKTGIHVNVRKGSSNQLASQVVEEGERSPADVIYTEESPPLNKLGEQGLLAKIDDATLNVLPKDYVASNGTWMGVTARVRVVAYNPKLIDEKDLPKTVLDFAQPQWQGKVGFVPTSGAFQEQAVAIIKLHGMDAAEEWLTGLRAFGKVYSNNMVALKAVENGEVATVLVNNYYWFALQREKGQLDSRLHYFTGGDAGGLVTVSSAAALKSSKHPKEAQQLLAYMASEEGQRVITQTSAEYPLHKGMVSDRGLKPFTELEPPKVTPADLGNAEEALELEREVGLNPGPT0003725_4116DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_TRANSPORT-IRON_III_TRANSPORT_SYSTEM,PGPT0003725-afuA|fbpA-K02012NANA
D1-35_050752619rnrCOG0557Ribonuclease RATGGCCGATTGGCAGTCCCTCGATCCCGAGGCCGCTCGTGAAGCGGAAAAATATGAAAACCCTATTCCTAGCCGCGAACTGATCCTGGCGCATCTCGCCGATCGGGGTTCGCCTGCTAGCCGTGAGCAGTTGGTCGAAGAATTCGGTCTGACCACCGAGGACCAGCTCGAGGCCCTGCGCCGCCGTCTGCGCGCCATGGAGCGCGACGCTCAACTCATCTATACCCGCCGTGGCACTTATGCGCCGGTCGACAAGCTCGATCTGATCCTGGGTCGTATTGCCGGGCACCGCGACGGCTTCGGCTTCCTGATTCCGGATGACGGCAGTGACGACCTGTTCATGAGCCCGGCGCAGATGCGCCTGGTGTTCGACGGCGACCGCGCCCTGGCCCGTGTTTCCGGCCTGGATCGCCGTGGGCGTCGTGAGGGTGTGATCGTCGAAGTGGTGTCCCGTGCCCACGAGACCATTGTCGGTCGTTATTTCGAAGAGGGCGGCATCGGTTTTGTCGTCGCCGACAACCCAAAGATCCAGCAGGAAGTGCTGGTGACGCCGGGCCGCAACGCCAACGCCCAGGTCGGTCAGTTCGTCGAGGTGAAAATCACCCACTGGCCAACCCCGCGCTTCCAGCCGCAAGGCGACGTGGTGGAAGTGGTCGGCAACTACATGGCTCCGGGCATGGAAATCGACGTTGCCCTGCGCACTTATGACATCCCCCACGTCTGGCCTGAGGCGGTGCTCAAGGAAGCTGCCAAGCTCAAGCCGGAAGTCGAAGAGAAGGACAAAGAGAAGCGCATCGATCTGCGCCATCTGCCGTTCGTCACCATTGACGGCGAAGACGCCCGTGACTTCGACGACGCGGTCTACTGCGAAGCCAAGCCAGGCAAGTTGCGCTTGTTCTCCGGCGGCTGGAAGTTGTACGTGGCGATTGCCGACGTCTCCAGCTACGTAAAGCTCGGCTCTGCATTGGATGCCGAGGCCCAGGTGCGCGGCAACTCGGTGTATTTCCCCGAGCGCGTCGTGCCGATGCTGCCCGAGCAGTTGTCCAACGGCCTGTGTTCGCTCAACCCCCAGGTCGATCGCCTGGCCATGGTTTGCGAGATGGATATCTCCAAATCCGGCGAGATGACGAACTACTGCTTCTATGAAGCGGTGATCCATTCCCATGCCCGCCTGACCTACAACAAGGTCAGTGCGATGCTGGAAACGCCGAAACTCGCCGAATCGCGCAAGCTGCGCGGCGAGTACACCGACGTGGTGCCGCACCTCAAGCAGCTCTACGCGCTGTACAAGGTATTGCTGGCGGCGCGTCACGTGCGGGGCGCGATCGATTTCGAAACCCAGGAAACCCGGATCATCTTCGGTACCGAGCGCAAGATCGCCGAGATCCGTCCGACGATTCGCAACGACGCCCACAAGCTGATCGAGGAATGCATGCTGGCGGCCAACGTGGCCACGGCCGAGTTCCTGAAGAAGCATGAAATTCCTGCGCTGTACCGCGTCCACGACGGTCCGCCGCCAGAGCGTCTGGAAAAATTGCGGGCATTCCTGGGCGAGCTTGGCCTGTCGTTGCACAAGGGCAAGGAAGGTCCGTCGCCGAAGGATTACCAGGCCTTGCTGGCAAGCATCAAGGATCGTCCGGATTTCCACCTGATCCAGACCGTGATGCTGCGTTCGCTGAGCCAGGCGGTGTACAGCGCCGACAACCAGGGCCACTTCGGCCTGAATTACGAAGCCTACACCCACTTCACTTCGCCGATCCGTCGCTACCCCGACCTGCTCACGCACCGGGCGATTCGCAGCGTGATCCACTCGAAGATGGACACCCCGCACGTCAAGCGTGCCGGCGCGATGACCATCCCCAAGGCGCGTATCTACCCGTACGACGAGGCGGCCCTGGAGCAGCTCGGCGAGCAATGCTCGATGAGCGAGCGACGTGCCGACGAAGCGACCCGCGACGTGGTGAACTGGCTCAAGTGCGAGTACATGAAGGATCGCGTGGGTGAGTCTTTCCCGGGCGTGATCACCGCCGTGACCGGTTTCGGCCTGTTCGTCGAGCTGACCGACATCTACGTCGAAGGCCTGGTGCATGTCACCGCGCTGCCTGGCGACTACTACCACTTCGATCCTGTGCATCACCGCCTGGCGGGCGAGCGCACCGGTCGCAGCTTCCGTCTTGGCGATACCGTTGAAGTGCGGGTGATGCGCGTCGACCTGGACGAGCGCAAGATCGACTTCGAGATGGCCGAAAAAACCATCAGCGCGCCGATCGGTCGCAAGAAGCGCGGCACCGAAACGGCTGCGCCAGCAACCAAGACCGCCGCCGAGCCTGCTCCGGCCAAGTCGGGGCGTCGCGGTTCGGCCAAGGAGAAGGCTGTCGAGGCCTATCGCCCGAGCGATGCGGCGGCGAAAAATGCCGAGTTGCGCAAAAGCCGTGAAATGAAACAGGCGTTGCTGGCCGAAGCCAAGAACGGTGGTAAAGCGGCGTCTGGGGGAAAGACCGGAAGGTCGATCCCGGACAAGGCGACCAGCAAGCCGAGCAAGCACCGTAAAGGTCCGCCGAAAGCGGGCTCGTCCCCAGCCAAAAGTGGCGGGGCGCGTAAACCCAAGGGCAAGTCATGAMADWQSLDPEAAREAEKYENPIPSRELILAHLADRGSPASREQLVEEFGLTTEDQLEALRRRLRAMERDAQLIYTRRGTYAPVDKLDLILGRIAGHRDGFGFLIPDDGSDDLFMSPAQMRLVFDGDRALARVSGLDRRGRREGVIVEVVSRAHETIVGRYFEEGGIGFVVADNPKIQQEVLVTPGRNANAQVGQFVEVKITHWPTPRFQPQGDVVEVVGNYMAPGMEIDVALRTYDIPHVWPEAVLKEAAKLKPEVEEKDKEKRIDLRHLPFVTIDGEDARDFDDAVYCEAKPGKLRLFSGGWKLYVAIADVSSYVKLGSALDAEAQVRGNSVYFPERVVPMLPEQLSNGLCSLNPQVDRLAMVCEMDISKSGEMTNYCFYEAVIHSHARLTYNKVSAMLETPKLAESRKLRGEYTDVVPHLKQLYALYKVLLAARHVRGAIDFETQETRIIFGTERKIAEIRPTIRNDAHKLIEECMLAANVATAEFLKKHEIPALYRVHDGPPPERLEKLRAFLGELGLSLHKGKEGPSPKDYQALLASIKDRPDFHLIQTVMLRSLSQAVYSADNQGHFGLNYEAYTHFTSPIRRYPDLLTHRAIRSVIHSKMDTPHVKRAGAMTIPKARIYPYDEAALEQLGEQCSMSERRADEATRDVVNWLKCEYMKDRVGESFPGVITAVTGFGLFVELTDIYVEGLVHVTALPGDYYHFDPVHHRLAGERTGRSFRLGDTVEVRVMRVDLDERKIDFEMAEKTISAPIGRKKRGTETAAPATKTAAEPAPAKSGRRGSAKEKAVEAYRPSDAAAKNAELRKSREMKQALLAEAKNGGKAASGGKTGRSIPDKATSKPSKHRKGPPKAGSSPAKSGGARKPKGKSNANANANANA
D1-35_05076762rlmBCOG056623S rRNA (guanosine-2'-O-)-methyltransferase RlmBATGAGTCAGCTGGAAAAAATCTACGGCGTGCATGCCGTGGAGGCGCTGTTGCGTCACCACCCCAAGCGGGTCAAGCAGATCTGGTTGGCGGAAGGGCGCAGCGATCCGCGTGTCCAGACGTTGATCGAGCTGGCGGGCGAAAATCGCGTGGCGGTCGGCCAGGCCGAGCGGCGTGAGATGGACGCCTGGGTTGAAGGCGTGCACCAAGGCGTCGTCGCCGAAGTCAGCCCGAGTCAGGTCTGGGGCGAGGCGATGCTCGACGAGTTGCTCGATCGCACCGAGGGCGCGCCGTTGCTGCTGGTGCTGGACGGCGTGACCGACCCGCACAACCTCGGCGCCTGCCTGCGTTCGGCGGATGCCGCCGGGGCGTTGGCGGTGATCGTGCCAAAAGACAAGTCGGCCACCTTGACCCCGGTCGTGCGTAAAGTCGCCTGCGGTGCGGCGGAAGTGATCCCGCTGGTGGCCGTGACCAATCTGGCGCGCACCCTGGAGAAACTCCAGCAGCGCGGCTTATGGGTCGTCGGCACGGCGGGCGAGGCCGAGGTCAGCATCTATGACCAGGACCTGACCGGCCCGACCATCCTGATCATGGGCGCCGAAGGCAAGGGCATGCGCCGCCTGACCCGCGAGCATTGCGACTACCTGGTCAAGCTGCCGATGGCCGGCAGTGTCAGCAGTCTCAACGTCTCGGTTGCCACCGGCGTGTGCCTGTTCGAAGCCCAGCGCCAGCGTGGGGCCAAGGCAGCCGCCAAAAAGCCCTGAMSQLEKIYGVHAVEALLRHHPKRVKQIWLAEGRSDPRVQTLIELAGENRVAVGQAERREMDAWVEGVHQGVVAEVSPSQVWGEAMLDELLDRTEGAPLLLVLDGVTDPHNLGACLRSADAAGALAVIVPKDKSATLTPVVRKVACGAAEVIPLVAVTNLARTLEKLQQRGLWVVGTAGEAEVSIYDQDLTGPTILIMGAEGKGMRRLTREHCDYLVKLPMAGSVSSLNVSVATGVCLFEAQRQRGAKAAAKKPNANANANANA
D1-35_05077429rpsFCOG036030S ribosomal protein S6ATGCGTCATTACGAAATCATCTTTTTGGTCCACCCGGATCAAAGCGAGCAAGTCGGCGGCATGGTTGAGCGTTACACCAAGCTGATCGAAGAAGACGGCGGCAAAATCCACCGTCTGGAAGATTGGGGCCGTCGTCAACTGGCCTACGCAATCAACAATGTTCACAAGGCTCACTACGTGATGCTGAACGTTGAGTGCACCGGCAAGGCCCTGGCCGAGCTGGAAGACAACTTCCGCTACAACGATGCAGTGATCCGTAACCTGGTCATCCGTCGCGAAGAAGCCGTCACCGGCCAATCCGAGATGCTCAAGGCTGAAGAAAACCGCAGTGAGCGCCGTGAGCGTCGCGACCGTCCTGAGCACTCTGACAGCGCCGATGGCGATGACAGCGATAGCGACAGCGACAACAGCGATAACGCTGACGAGTAAMRHYEIIFLVHPDQSEQVGGMVERYTKLIEEDGGKIHRLEDWGRRQLAYAINNVHKAHYVMLNVECTGKALAELEDNFRYNDAVIRNLVIRREEAVTGQSEMLKAEENRSERRERRDRPEHSDSADGDDSDSDSDNSDNADENANANANANA
D1-35_05078231rpsRCOG023830S ribosomal protein S18ATGGCACGTTTCTTCCGTCGTCGTAAATTCTGCCGCTTCACCGCTGAAGACGTGAAAGAGATCGATTACAAAGATCTCAACACTCTGAAAGCCTACGTATCCGAGACCGGCAAAATCGTTCCAAGCCGTATCACCGGTACCAAAGCACGTTATCAGCGTCAGCTGGCCACCGCTATCAAGCGCGCCCGCTTCCTGGCCCTGCTGGCCTACACCGACAGCCACGGCCGCTGAMARFFRRRKFCRFTAEDVKEIDYKDLNTLKAYVSETGKIVPSRITGTKARYQRQLATAIKRARFLALLAYTDSHGRNANANANANA
D1-35_05079894hypothetical proteinATGCGCGCCTTAGCTGAGTTCATCATGCGCGGTCGTATGCAGGCCACTCTCGTAGTGGCTGGATGCGCGGCATTGCCGTTGTTGTATTGGTTGGGTGCTGCCGCGGTGAGTCTCGTACTCCTGCGGCGCGGATTGAGGGACGCCCTTGGCGTTCTTGCTCTGGGACTGCTGCCGGCCTTGCTCTGGTGGTTGTATTCCGCTGACCCGCGGGCACTGATGGTGCTGCTGGGGTCTTCGGCGCTGGCGTTGGTGTTGCGCGCCAGCGAATCCTGGAACCGCGTGCTGCTGGTCAGCATAGCGATGGGAGTGGTGTTTTCAGTGGTGCTCGGGGTGGCTTTCGCACCCCAGATCGAGATGCTCTCGCAGGCTTTGATAAAAATCCTGCCCGAGGCCCTCGGTGATCTCTACCAACAGATGTCGGCAGAGGAGCAGGCGCGTTTCGCGTCCCTGATCGCACCGGTCCTGACCGGCCTGATTGCGGCCTTGTTGCAAATCGTCAGTGTGCTGAGCCTGATTATCGGGCGCTACTGGCAAGCGTTGTTGTACAACCCGGGTGGTTTTGGTCGCGAATTTCGCGCCATTCGTTTCCCGCTCGGGCTGGCGATGTTACTGCTGGCGGGCATGCTCCTGGGGCCGAATTTCGGTCCGCAGATGGCCATGCTCACGCCGTTGTGCAGTGTACCGCTGGTGTTTGCCGCCCTGGCCCTGATTCACGGGCTTGTGGCGCAAAAGCGACTGGCCAGGTTCTGGCTGGTCGGGTTGTACGTCACGTTGTTGCTGTTCATGCAGCTGATCTATCCGTTGCTGGTGGTCCTGGCCATCGTCGACAGCCTGATTGATTTTCGCGGTCGTATGGCGCCGAAAGACGCCGACAACGCGAACGGTGAAGGTTAAMRALAEFIMRGRMQATLVVAGCAALPLLYWLGAAAVSLVLLRRGLRDALGVLALGLLPALLWWLYSADPRALMVLLGSSALALVLRASESWNRVLLVSIAMGVVFSVVLGVAFAPQIEMLSQALIKILPEALGDLYQQMSAEEQARFASLIAPVLTGLIAALLQIVSVLSLIIGRYWQALLYNPGGFGREFRAIRFPLGLAMLLLAGMLLGPNFGPQMAMLTPLCSVPLVFAALALIHGLVAQKRLARFWLVGLYVTLLLFMQLIYPLLVVLAIVDSLIDFRGRMAPKDADNANGEGNANANANANA
D1-35_05080447rplICOG035950S ribosomal protein L9ATGCAACTGATCCTTCTGGAAAAAATCGCCAACCTGGGCAACCTGGGCGACAAAGTAAACGTTAAGGCCGGTTACGGCCGTAACTACCTGCTGCCTTTCGGCAAAGCCACCGCTGCGACCGCTGCCAACCTGGCTGCGTTCGAAGAGCGTCGCGCTGAGCTGGAAAAAGCCGCCGCAGACCGTAAGGCATCGGCTGAAAGCCGTGCTGCCCAACTGGCCGAGCTGGAAGTGACCATCACTGCCACCGCTGGCGACGAAGGCAAGCTGTTCGGTTCGATCGGTACTCACGACATCGCTGACGCACTGACCGCCTCCGGCGTTGAAGTTGCGAAAAGCGAAGTTCGTCTGCCGAACGGCACCATCCGCAACGTAGGTGAATTCGACGTAGCCGTGCACCTGCACGCCGAAGTTGAAGCCACCGTACGCGTTGTCGTGGTAGCAGCCTAAMQLILLEKIANLGNLGDKVNVKAGYGRNYLLPFGKATAATAANLAAFEERRAELEKAAADRKASAESRAAQLAELEVTITATAGDEGKLFGSIGTHDIADALTASGVEVAKSEVRLPNGTIRNVGEFDVAVHLHAEVEATVRVVVVAANANANANANA
D1-35_050811398dnaBCOG0305Replicative DNA helicaseATGAACGAAATCACCGCCCCCGAGCAATACGATCTGCAAACCGCTGCCTTGAAGGTGCCTCCGCATTCCATCGAGGCCGAACAGGCCGTGCTCGGTGGTCTGATGCTGGACAACAACGCCTGGGAACGCGTGCTTGATCAAGTCTCCGACGGCGATTTCTATCGGCATGACCACCGCCTGATTTTCCGCGCGATCGCCAAGTTGGCCGATCAGAACATGCCGATCGACGTCGTGACCCTGGCCGAGCAATTGGACAAGGAAGGTCAGACATCCCAGGTCGGCGGCCTCGGTTACCTCGGCGAACTGGCGAAAAACACGCCGTCGGTCGCCAACATCAAGGCTTACGCCCAGATCGTTCGCGAGCGGGCGACCTTGCGCCAGTTGATCGGCATCAGCACTGAGATTGCCGACAGTGCGTTCAACCCGGAAGGTCGCACCGCCGCTGAGATTCTCGACGAAGCCGAGCGGCAGATCTTCCAGATCGCCGAGGCGCGGCCGAAAACCGGTGGCCCGGTGAGCGTCAACGACCTGCTGACCAAGGCCATCGACCGCATCGACACCTTGTTCAACACCGACAACGCCATTACCGGCCTGTCCACCGGCTACACCGACCTCGACGAGAAGACCAGCGGCCTGCAGCCGTCCGACTTGATCATCGTCGCCGGCCGTCCGTCCATGGGTAAGACCACCTTTGCGATGAACCTGGTGGAAAACGCCGTGCTACGCAGTGAAAAGGCTGTGTTGGTGTACTCCCTCGAGATGCCAGGCGAATCGCTGATCATGCGTATGCTTTCGTCCCTCGGGCGTATCGACCAGACCAAGGTCCGTTCCGGCCAGCTGGAAGACGACGATTGGCCGCGCCTCACCTCGGCGGTGAACCTGCTCAACGACCGCAAGCTGTTCATCGACGATACCGCAGGTATCAGCCCGTCGGAGATGCGCGCCCGAACCCGCCGCCTGGTGCGTGAGCACGGCGAGGTCGGGCTGATCATGATCGACTACCTGCAGTTGATGCAGATCCCCGGCTCTAGCGGCGACAACCGGACCAACGAGATTTCCGAGATCTCCCGTTCCCTCAAGGCCCTGGCCAAGGAATTCAACTGCCCAGTCGTTGCCCTTTCGCAGTTGAACCGTTCCCTGGAACAGCGCCCCAACAAGCGTCCGGTGAACTCGGACTTGCGGGAATCCGGAGCGATCGAGCAGGACGCCGACGTCATCATGTTCGTTTACCGTGACGAGGTGTATCACCCCGAGACGGAACACAAGGGCATTGCCGAAATCATCATCGGCAAGCAACGGAACGGCCCGATCGGCTTCATCCGCCTGGCGTTTATCGGCAAATACACGCGCTTCGAAAACCTGGCGCCGGGTAGCTACAATTTTGATGATGACGAGTAAMNEITAPEQYDLQTAALKVPPHSIEAEQAVLGGLMLDNNAWERVLDQVSDGDFYRHDHRLIFRAIAKLADQNMPIDVVTLAEQLDKEGQTSQVGGLGYLGELAKNTPSVANIKAYAQIVRERATLRQLIGISTEIADSAFNPEGRTAAEILDEAERQIFQIAEARPKTGGPVSVNDLLTKAIDRIDTLFNTDNAITGLSTGYTDLDEKTSGLQPSDLIIVAGRPSMGKTTFAMNLVENAVLRSEKAVLVYSLEMPGESLIMRMLSSLGRIDQTKVRSGQLEDDDWPRLTSAVNLLNDRKLFIDDTAGISPSEMRARTRRLVREHGEVGLIMIDYLQLMQIPGSSGDNRTNEISEISRSLKALAKEFNCPVVALSQLNRSLEQRPNKRPVNSDLRESGAIEQDADVIMFVYRDEVYHPETEHKGIAEIIIGKQRNGPIGFIRLAFIGKYTRFENLAPGSYNFDDDENANANANANA
D1-35_050822301hypothetical proteinATGCAAGCAGCCAAGCCATTATTCGATTATCCCAAGTACTGGGCCGAATGTTTCGGACCGGCGCCGTTCCTGCCGATGAGCAGGGAGGAGATGGATCAGCTCGGCTGGGATTCGTGCGACATCATCATCGTGACCGGTGATGCCTACGTCGATCATCCGTCGTTCGGCATGGCGATCATTGGCCGTCTGCTGGAAGCCCAGGGCTTTCGCGTTGGCATCATTGCCCAGCCGAACTGGCAGTCCAAAGACGACTTCATGAAGCTCGGCGAGCCCAACCTGTTCTTCGGTGTCGCGGCCGGCAACATGGACTCGATGATCAACCGCTACACCGCCGACAAGAAAATCCGTTCCGATGACGCCTACACGCCGGGCGGTTTGGCGGGCAAGCGGCCGGACCGTGCGAGCCTGGTCTATAGCCAGCGTTGCAAGGAAGCCTACAAACACGTGCCGATCGTCCTCGGCGGTATCGAAGCGTCCCTGCGCCGCATCGCCCACTACGACTACTGGCAGGACCGGGTGCGCAACTCGATCCTGATCGACGCCTGCGCCGACATCCTGCTCTACGGCAACGCCGAGCGGGCGATTGTCGAAGTGGCCCAGCGCCTGTCCTACGGCCACAAGATCGAAGACATCACCGACGTGCGCGGCACCGCATTCATTCGCCGCGACACGCCGCAAGGCTGGTACGAAGTCGATTCCACGCGCATCGACCGTCCGGGCAAGGTCGACAAGATCATCAACCCGTACGTGAATACCCAGGACACCGCTGCCTGCGCCATTGAGCAGGAAAAGGGTCCGGTCGAGGACCCGAGCGAAGCCAAGGTCGTACAGATCCTGGCGAGCCCGAGGATGACCCGCGACAAGACCGTGATTCGCCTGCCATCGGTAGAGAAGGTGCGCAACGACGCGGTGCTGTATGCCCACGCCAACCGCGTGTTGCACCTGGAAACCAACCCGGGCAACGCCCGTGCGCTGGTGCAGAAGCACGGCGAAGTCGACGTCTGGTTCAACCCGCCGCCCATTCCGATGACAACTGAGGAAATGGACTACGTGTTTGGCATGCCTTACGCGCGTGTCCCGCATCCGGCGTATGGCAAGGAAAAAATCCCCGCTTACGAGATGATCCGCTTCTCGGTAAACATCATGCGTGGCTGCTTCGGTGGCTGCACCTTCTGCTCGATCACCGAGCACGAAGGCCGGATCATCCAGAACCGCTCGGAAGAGTCGATCATTCGCGAGATCGAAGAGATCCGCGACAAGGTGCCTGGTTTCACCGGGGTCATTTCCGACCTCGGCGGCCCGACCGCGAACATGTACCGCATCGCCTGCAAGAGCCCGGAAATCGAATCCGCGTGCCGCAAGCCGTCCTGCGTGTTCCCCGGCATCTGCCCGAACCTCAATACCGACCACTCGTCGCTGATCCAGCTGTACCGCAGCGCTCGTGCGTTGCCTGGGGTGAAGAAGATCCTCATTGCCTCCGGCCTGCGTTACGACCTGGCGGTCGAGTCGCCGGAGTACGTCAAGGAGCTGGTGACCCACCACGTCGGCGGTTACCTGAAGATCGCCCCGGAGCACACCGAGGAAGGTCCGCTCAACCAGATGATGAAGCCGGGCATCGGCAGCTATGACAAATTCAAGCGGATGTTCGAGAAGTACACCAAGGAAGCCGGGAAAGAGCAGTACCTGATTCCGTACTTCATCGCGGCTCACCCGGGCACTACCGACGAAGACATGATGAACCTGGCGCTGTGGCTCAAGGGCAACGGCTTCCGGGCCGACCAGGTGCAGGCGTTCTATCCGTCGCCGATGGCTACGGCCACCGCGATGTACCACTCGGGCAAGAACCCGCTGCGCAAGGTCACCTACAAGAGCGACGCGGTGACCATCGTCAAGAGCGAAGAGCAGCGCCGCCTGCACAAGGCGTTCCTGCGTTATCACGATCCGAAAGGCTGGCCGATGCTGCGCGAAGCGCTGACCCGCATGGGCCGCGCCGACCTGATCGGGCCGGGCAAGAACCAGTTGATTCCGTTGCACCAGCCTGCCACCGACAGCTACCAGAGTGCCCGTCGCAAGAACTCGACCCCGGCTGGCAGCCATAAGGTCGGTAAGGAGACCACCAAGATCCTGACCCAGCACACCGGCCTGCCGCCGCGGGCCAGTGACGGCGGCAATGCCTGGGATAAACGCGAGCAAGCCAAGGCCGCTGCGTTCGCCCGTAATCAGCAGGCTGCCAAGGAGCGCAAGGATGCGGCCAAGGGCAAGGGACCGAAGCCTGCGCGCAAGCCGGTTGTGCCGCGCTGAMQAAKPLFDYPKYWAECFGPAPFLPMSREEMDQLGWDSCDIIIVTGDAYVDHPSFGMAIIGRLLEAQGFRVGIIAQPNWQSKDDFMKLGEPNLFFGVAAGNMDSMINRYTADKKIRSDDAYTPGGLAGKRPDRASLVYSQRCKEAYKHVPIVLGGIEASLRRIAHYDYWQDRVRNSILIDACADILLYGNAERAIVEVAQRLSYGHKIEDITDVRGTAFIRRDTPQGWYEVDSTRIDRPGKVDKIINPYVNTQDTAACAIEQEKGPVEDPSEAKVVQILASPRMTRDKTVIRLPSVEKVRNDAVLYAHANRVLHLETNPGNARALVQKHGEVDVWFNPPPIPMTTEEMDYVFGMPYARVPHPAYGKEKIPAYEMIRFSVNIMRGCFGGCTFCSITEHEGRIIQNRSEESIIREIEEIRDKVPGFTGVISDLGGPTANMYRIACKSPEIESACRKPSCVFPGICPNLNTDHSSLIQLYRSARALPGVKKILIASGLRYDLAVESPEYVKELVTHHVGGYLKIAPEHTEEGPLNQMMKPGIGSYDKFKRMFEKYTKEAGKEQYLIPYFIAAHPGTTDEDMMNLALWLKGNGFRADQVQAFYPSPMATATAMYHSGKNPLRKVTYKSDAVTIVKSEEQRRLHKAFLRYHDPKGWPMLREALTRMGRADLIGPGKNQLIPLHQPATDSYQSARRKNSTPAGSHKVGKETTKILTQHTGLPPRASDGGNAWDKREQAKAAAFARNQQAAKERKDAAKGKGPKPARKPVVPRNANANANANA
D1-35_05083927hypothetical proteinATGAGCAGCGCTTCAACGGGCATCGGCATGGACTTGAGCTTTTCCCAGTTCATGGCCCGTCAACGCATCGAAAGCCAGATCAACCTGCCGCGCCTGTTTGCCGCGATCGACGCCGACCCCAACATCGCCGGTGCGGGGGTGGTGTATGTCGATTCCGACTACAACGTGGTGACGCTGCGGGAGTTCAAGCCGATCTGCAGCATCGCGCCCAAACGCATCATTTTGCGCGAGGCGAAAAAGTACATTGCTCCGCAGCAATTCATAGAACAGGTGAAAAGCAGTCCACGCGAGTCGAAGCTCGGGATTGAGGCGACCAATGCCGGCTTGTCCTGTGTCGCCGCGGTGATTGGTTGGGTGGTGGTATTCAGTGGCAGCGTTGCCGTGCCCTTTACGGCTGGTGCCAGCGCTTTTGTGGTCGCCTTGGGCGCCGCTGCCGCTACGGCCAGTACCGCGCAGTGCGTCATTGGCGGAATGCGGGTGGCGAACGAGTTGAGCAACCCTACTGGCAACGATGAGATGAACGATGCTGACTGGTACAACATCGTGTCGCCGATTCTTGACGGTGTTTCCCTGGTGGGCGTCGGTGGCTCGGCGCTGACGACTGTTCGATTGCTCAAGGCCAACAAGGCGGCCGGCACCGGCAAGAGCTGGTACCAGTTGCTCAAGGGCCTGAATCGCCAAGAGCGCAGTAAGTTGACCAAGGAACTTCTGACGCTGAAGGACCCAAGCCTGACCGCTAAGTTGCTCAAGTTGCAGCAACGGGCAGGGGCTTTGCCCAAGCGTTACTCGTCCGCTGAGATCCGGCATGCGACCCTGACTCAGATCAAGGACTCGCTGGGCGGCGCCCTGGGCGTCATCGGCAGTTATACCGGTGGTGGCCATGTGAAAACCGTTGCCGTCGGCCTGTACGAAGAGTTCACGGAATGAMSSASTGIGMDLSFSQFMARQRIESQINLPRLFAAIDADPNIAGAGVVYVDSDYNVVTLREFKPICSIAPKRIILREAKKYIAPQQFIEQVKSSPRESKLGIEATNAGLSCVAAVIGWVVVFSGSVAVPFTAGASAFVVALGAAAATASTAQCVIGGMRVANELSNPTGNDEMNDADWYNIVSPILDGVSLVGVGGSALTTVRLLKANKAAGTGKSWYQLLKGLNRQERSKLTKELLTLKDPSLTAKLLKLQQRAGALPKRYSSAEIRHATLTQIKDSLGGALGVIGSYTGGGHVKTVAVGLYEEFTENANANANANA
D1-35_05084462hypothetical proteinATGATCGGCGGCGGATCACTGAAGCCATTCCTGGCCCGCTATTTTCCGATTTTCATGGGCACCATCCTGCTCGGCTGTTTTTCCGGTTCCACGCTGCTCGTTCTGGCCGGAGCCACTTATTGGCGCGCCTTGGAGCCCTCGATCAGGACCGACTATGTCGGTTTCGGCACGTTGGCCCTGGTGATGGTTCTAGTCTTGGGCAACCTGCTGATTGCACGCGGGCGCGCTTGGGCAATCTGGGGTGTGGCGGGTTATTTCCTAGCCTGTCTGGCGGCGGCGGTGCCGACGTTTGCTTACGGGCCGCACCAGGGCGTGTACATCTTCGCTGTGCTGTTACCCCTACTGGGACTGCTCCTGATCAACAGCAAACGCCACCGGGAAATGCGCCGCAAGCTCGTCGAGATCCGCCACCAGCGCGAACGCATCATCCAATCCGCCAAGGCCTCGCGCCCGCGCCGTTGAMIGGGSLKPFLARYFPIFMGTILLGCFSGSTLLVLAGATYWRALEPSIRTDYVGFGTLALVMVLVLGNLLIARGRAWAIWGVAGYFLACLAAAVPTFAYGPHQGVYIFAVLLPLLGLLLINSKRHREMRRKLVEIRHQRERIIQSAKASRPRRNANANANANA
D1-35_050853294hypothetical proteinGTGTCGATCCATGTCGCTTTGCACCATGTCACACATTATCGCTACGAGCGCGCTGTCGAACTCGGTCCGCAGATCGTGCGCCTGCGCCCGGCCGCCCACAGCCGTACACGCATTCTTTCATATGCGCTGAAAGTCTCGCCTGATCAGCACTTCATCAACTGGCAACAAGACCCTCAGGGCAATTACCTGGCGCGGCTGGTGTTCCCGGAAAAGACCGATGAGCTGCGGGTCGAGGTCGATCTGGTCGCCGAGATGGCGGTGTTCAATCCATTCGATTTTTTCCTCGAGCCCTACGCCGAGAAAATTCCGTTTACGTATGCGGCCGACGAAAAACACGAGCTGATGCCCTATCTGGAAAAGCTGCCGCTGACGCCGAAGTTCAAGGCTTATCTGGACGGCATCGACCGCACGCCGCTGCCGGCGGTGGACTTCCTGGTGGGGTTGAACCAGCGCTTGAGCGAAGACATCGGTTACCTGATCCGCATGGAGCCCGGCGTGCAGACGCCGGAGCACACCCTGGAGCATGCGTCCGGTTCCTGCCGGGATTCGGCCTGGCTGCTGGTGCAACTGTTGCGTCATCTGGGCCTGGCGGCGCGGTTTGTCTCCGGTTACCTGATCCAGTTGACCGCCGATGTGAAAAGCCTCGACGGCCCGTCCGGTACGGAAGTGGACTTCACCGACCTGCATGCCTGGTGCGAGGTGTACCTGCCCGGCGCTGGCTGGATCGGCCTGGACGCCACGTCCGGGTTGTTCGCCGGTGAAGGGCATATCCCCTTGGCATGTAGTCCCGATCCGTCCTCGGCAGCGCCGATCAGCGGCCTGGTGGAACCTTGCGAGTGCCAGTTCAGCCACGAAATGTCCGTCGAGCGAATCTGGGAGGCGCCACGGGTCACCAAGCCATACACCGAAGAGCAATGGCAGGCGATCCAGGCGTTGGGCCGGCAGATCGACAGCGACCTGCTGGAGGGCGACGTGCGCTTGACCATGGGCGGCGAGCCGACCTTCGTTTCCATCGACGATCCGGACGGCGCCGAGTGGAATACCGCAGCGCTCGGCCCGGACAAGCGTCGCCTCTCCGCCGAGTTGTTCCAGCGCATGCGCAAGCACTACGCGCCCGAGGGGTTGGTGCACTTCGGTCAGGGCAAGTGGTACCCCGGCGAGCAACTGCCGCGGTGGTCGCTCAACTGTTATTGGCGGCGTGACGGCGTGCCGATCTGGCGCGACAACGCGCTGATCGCCGATGAACAGCAGGACTACGGCGCCGATGGCGAACTGGCCGGGCGCTTCCTGGCGAGTGTCGCCGAACGCCTGAATATTCCTGCGCGGTTCGTCTTCGCGGCCTACGAAGATAATTTCCATTACCTCTGGCGCGAGGGTAATTTGCCTTCGAACGTGACAGCCGAGGACCCTAGGCTCGAGGATCCCCTGGAGCGGGCGCGGTTGCGCAAGGTGTTCAGCCAGGGCCTGGACAAAGTGGTCGGCCAGGTCTTGCCGCTGGCGCGCACCGCCAAGGGCGATCAATGGCAAAGCGGCCGCTGGTATTTGCGCGACAGCCATTGTCGGCTGGTGCCGGGCGATTCGCCGCTGGGCTATCGCTTGCCGCTGGCGGCGCAGCCATGGGTGACGGCAGCCGAGTATCCCTTCATCCATCCCACCGACCCGAACCAGGACTTGCCCGAGTTGCCCGGCACCGAGCAGCTCACCCATCACGGCGAGCCGGCCCTGGAACAGGAGCGCGCGCCGAAGGTCGACGAATCGGCCGATTGGCTGACGCGCACCGCGTTCTGTGCCGAGGCCAGGGACGGGCGGCTCTATCTGTTCATGCCGCCGCTGGAGCGGGTCGAGGATTACCTGGAACTGGTCAGCGCCATCGAGGCGACAGCCGAAGAACTGGGCTGCCCTGTGCTGCTGGAAGGCTACGAGCCGCCGAGCGATCCGCGCCTGAGCAATTTTCGCATCACGCCTGACCCGGGCGTCATCGAGGTCAACGTGCAACCGTCGGCGACCTGGGATGAGCTGGTCGAGCGCACCGAGTTTCTTTACGAGCAGGCGCGGCTGAACCGGCTGACCACCGAAAAATTCATGATCGACGGTCGACACACCGGCACCGGTGGCGGTAACCATTTCGTCCTGGGCGGCGCGACGCCGGCTGACTCGCCCTTCCTGCGTCGTCCCGACTTGCTGCGCAGTTTGATCAGCTACTGGCATAACCACCCGTCGTTGTCCTACCTGTTTTCCGGACTGTTCATCGGCCCGACGTCCCAGGCGCCCCGCGTGGACGAAGCGCGCAACGATGCGTTATATGAGCTGGAGATCGCCTTCGCGCAAATGCCCGAGCCTGGCGAAGCGTGTCCGCCCTGGCTGGTGGACCGATTGCTGCGCAACCTGTTGATCGACGTGACCGGTAATACCCACCGCGCCGAGTTCTGCATCGACAAGCTCTATTCACCGGACGGCGCCACCGGGCGTCTCGGCTTGCTGGAGCTGCGCGCTTTCGAAATGCCGCCCCACGCCCGCATGAGCCTGGCCCAGCAATTGCTGCTGCGGGCGCTGGTGGCGCGGTTCTGGCGTGAACCCTACGCGCCGGCGAAACTGGCGCGCTGGGGCACCGAGCTGCATGATCGCTTCTTGCTGCCGCATTTCATCGAGCAGGATTTTGCCGATGTCATCGACGATCTCAATGTCGCCGGTTATCCGCTGCGGGCCGAGTGGTTCGCCGCGCACCTGGAGTTCCGCTTTCCCAAGGTCGGCGATTACGCGGTCAATGGTATCGAGCTGCAGTTGCGTCAGGCGCTGGAACCCTGGCATGTGCTGGGAGAGGAGGGCACGGCGGGGGGCACCGTACGCTACGTGGACTCGTCCCTGGAGCGCTTGCAGGTCAAGCTCAGCGGCCTGGCGCCACAACGTTATCTGCTGACTTGCAACGGCGTACCGGTACCCTTGCAACCCACCGGTCGAGTCGGTGAGTTCGTCGCCGGGGTACGTTTCCGCGCCTGGCAACCGGCCAACTGCCTGCAACCGACCATCCCGGTCCATGCGCCGCTGGTATTCGATGTGCTCGACACCTGGATGCAACGTTCGCTGGGCGGCTGTCAGTACCACGTGGCGCATCCGGGCGGGCGCAACTATGACAGCCTGCCGGTCAACGCCAACGAGGCGGAGAGCCGGCGGATGGCGCGTTTCTTTAGGATCGGACACACGCCTGGGAAACTTCCGATACCGAACCTGGCAACGGATGACGAATTTCCCTTCACTCTCGATCTGCGACGCTTCCAAGGGGCATTGAAGCGATAGMSIHVALHHVTHYRYERAVELGPQIVRLRPAAHSRTRILSYALKVSPDQHFINWQQDPQGNYLARLVFPEKTDELRVEVDLVAEMAVFNPFDFFLEPYAEKIPFTYAADEKHELMPYLEKLPLTPKFKAYLDGIDRTPLPAVDFLVGLNQRLSEDIGYLIRMEPGVQTPEHTLEHASGSCRDSAWLLVQLLRHLGLAARFVSGYLIQLTADVKSLDGPSGTEVDFTDLHAWCEVYLPGAGWIGLDATSGLFAGEGHIPLACSPDPSSAAPISGLVEPCECQFSHEMSVERIWEAPRVTKPYTEEQWQAIQALGRQIDSDLLEGDVRLTMGGEPTFVSIDDPDGAEWNTAALGPDKRRLSAELFQRMRKHYAPEGLVHFGQGKWYPGEQLPRWSLNCYWRRDGVPIWRDNALIADEQQDYGADGELAGRFLASVAERLNIPARFVFAAYEDNFHYLWREGNLPSNVTAEDPRLEDPLERARLRKVFSQGLDKVVGQVLPLARTAKGDQWQSGRWYLRDSHCRLVPGDSPLGYRLPLAAQPWVTAAEYPFIHPTDPNQDLPELPGTEQLTHHGEPALEQERAPKVDESADWLTRTAFCAEARDGRLYLFMPPLERVEDYLELVSAIEATAEELGCPVLLEGYEPPSDPRLSNFRITPDPGVIEVNVQPSATWDELVERTEFLYEQARLNRLTTEKFMIDGRHTGTGGGNHFVLGGATPADSPFLRRPDLLRSLISYWHNHPSLSYLFSGLFIGPTSQAPRVDEARNDALYELEIAFAQMPEPGEACPPWLVDRLLRNLLIDVTGNTHRAEFCIDKLYSPDGATGRLGLLELRAFEMPPHARMSLAQQLLLRALVARFWREPYAPAKLARWGTELHDRFLLPHFIEQDFADVIDDLNVAGYPLRAEWFAAHLEFRFPKVGDYAVNGIELQLRQALEPWHVLGEEGTAGGTVRYVDSSLERLQVKLSGLAPQRYLLTCNGVPVPLQPTGRVGEFVAGVRFRAWQPANCLQPTIPVHAPLVFDVLDTWMQRSLGGCQYHVAHPGGRNYDSLPVNANEAESRRMARFFRIGHTPGKLPIPNLATDDEFPFTLDLRRFQGALKRNANANANANA
D1-35_050862487COG2307putative proteinATGCCTGACCTGCTTGACCGTTACCCGTTGACGACGGGCACCTATCACGAATTGCTGGATGACAGCGGTGCGGTGCGTGCGCATTGGCGGCGGCTGTTCGACCAATTGCAGCGCAGCACGCCGGCTCAGTTGATCCAGCGCCAGGCATTGCTCGCCCGGCAGATCCAGGAAAATGGCGTCACCTATAACGTCTATGCAGACCCCAAGGGAGCTGATCGGCCTTGGGAGCTGGACCTGCTGCCCCATGTCATCGACGCTCGGGAATGGACGCAACTGTCGGCCGGCATTGCCCAGCGGGCACGCTTGCTCAATGCCGTTCTGGCCGACCTGTACGGGCCGCAGCGGTTGATCAGCGAGGGGCTCTTGCCGGCAGAGCTGGTGTTCGGGCACAACAATTTCCTTTGGCCCTGCCAGGGCATCACGCCGCCAGACGGCAACTTCCTGCACTTGTATGCCGTGGATCTGGCGCGCGCGCCCGACGGCCGCTGGTGGGTGACTGCGGATCGGACCCAGGCGCCCTCGGGCGCCGGTTATGCGTTGGAAAATCGCACGATCGTGTCGCGAGCCTTTCCCGACCTTTATCGCGACCTCAAGGTGCAACACCTGTCCGGTTTCTTCCGCACGTTGCAAGAAACCCTGGCGCGACAGGCTCCCAGCAACGGCGAGCCGCCGCTGGTGGTACTGCTGACGCCCGGTCGGTTCAACGAAAGCTACTTCGAACACCTCTACCTGGCGCGGCAACTCGGCTATCCGCTGGTGGAAGGCGGCGACCTGACCGTCCGCGACGCCACGGTCTATCTGAAGACGCTTAGCGGGCTGCGTCGGGTGCACGCGATCATGCGTCGGCTCGATGATGATTTCTGCGACCCGCTGGAGTTGCGCACCGATTCGGCCCTGGGCGTGCCCGGATTGCTGGAGGCGGTGCGTCAGGGGCGGGTGCTGGTGGCCAATGCACTGGGTAGCGGAGTCCTGGAGTCTCCCGGGCTCTTGGGATTCCTGCCGAAAATAAGTCAGTTTCTTTTCGGTGAAGAGCTGATGCTGCCCTCCATCGCCACCTGGTGGTGCGGAGAGCCGCCGGTGCTGGCCCAGGCCCTGGAGAAACTGCCGCAGTTGTTGATCAAGCCGGCGTTTCCGTCCCAGAGCTTCACGCCGGTATTCGGTCGTGACCTGGACGAAGACCAGCGCGCTCGATTGGCCGCACGCATGCAGGCGCGGCCCTATGCCTATGTTGCTCAGGAACTGGCGCAACTGTCCCAGGCGCCGGTATGGCAGGCTGAAGACGGCCAGATCCAGCCTCGAGCCATTGGCATGCGGGTTTATGCGGTGTCCGGCAAAGACGATTATCGAGTGCTGCCGGGAGGCCTGACCCGCGTGGCCGCCGAGGCTGATGCCGAAGTGGTGTCGATGCAGCGCGGAGGCGCGAGCAAGGACACCTGGGTACTTGGCGAGCAGGCGCCCGGCGGTGAGCAATGGAAGGCCCAGCGAACCGTGGGCGTGCATGATCTGGTGCGCCGCGATCCCTATCTGCCGTCTCGTGTGGTGGAAAACCTGTTCTGGTTTGGCCGCTACTGCGAACGTTGCGACGACAGCGCCCGTCTGCTGCGGATCATGCTGGCGCGCTATGTCGATGGCGATGATCCGCAGGCCTTGCAATCGGCGGTCGCCCTGGGCGAGAGCCTGATGTTGTTGCCGGAGGAGGGCGAGTTGCCCGAACGCCTGCTGGCGGCCATGCTCGGGGATGACTGGTCGTTCAGCCTGCGCTCCAATCTGCAGCGCTTGCAGTGGGCGGCCTCCCAGGTCCGTGGCAAGCTGTCCCGGGAGAACTGGCAGGCACTGGTGGAACTGCAACGCGAAGCCGTGGAACTGGAAACCAGCGAGCCGGACTTCGGTGAGTTGCTGGATTTTCTCAATCGACTGGTGATGTCCCTGGCCGCGTTGTCCGGGTTCGCCCTGGACGACATGACCCGCGACGAGGGCTGGCGTTTCCTGATGATCGGCCGGCGCCTGGAGCGTCTGCAATTTCTCAGCAGCAGCCTGGCGGCATTCCTGCGCGGCGAGGCGGTTTTCGATCAGGCCGGGCTGGAATGGTTGCTGGAGTTGGGCAATAGCAGCATCACCTACCGTTCGCGATACCTGGCGGTGGCGCAGCTGATCCCGGTGCTCGATCTTCTGTTGCTGGACGAACAGAACCCTCACGCAGTGCTCTTCCAGTTGAAACTGGTGGCGCGCACCGTCAAGCGTCTGAACGACGATTTTGGCGCGCCGAGAGAAACCGCCCTGCCGGAACTGGTGGCGCGACTGTCGCGCTTTGACCTGCGCTGCCTGGAGAGTCTTTTGTTTGGCGAAGCCAGCCTGCGCGCGGCGCTCGACGGGCTGGCCGATCTGCTGCAGGAAGTCGCCGATGTCAGCGGGCAGGTGTCCGATCGCCTGGCCTTGCGCCATTTCGCCCATGTTGACGACGTCAGCCAGCGCACGGTATCCGTCTGAMPDLLDRYPLTTGTYHELLDDSGAVRAHWRRLFDQLQRSTPAQLIQRQALLARQIQENGVTYNVYADPKGADRPWELDLLPHVIDAREWTQLSAGIAQRARLLNAVLADLYGPQRLISEGLLPAELVFGHNNFLWPCQGITPPDGNFLHLYAVDLARAPDGRWWVTADRTQAPSGAGYALENRTIVSRAFPDLYRDLKVQHLSGFFRTLQETLARQAPSNGEPPLVVLLTPGRFNESYFEHLYLARQLGYPLVEGGDLTVRDATVYLKTLSGLRRVHAIMRRLDDDFCDPLELRTDSALGVPGLLEAVRQGRVLVANALGSGVLESPGLLGFLPKISQFLFGEELMLPSIATWWCGEPPVLAQALEKLPQLLIKPAFPSQSFTPVFGRDLDEDQRARLAARMQARPYAYVAQELAQLSQAPVWQAEDGQIQPRAIGMRVYAVSGKDDYRVLPGGLTRVAAEADAEVVSMQRGGASKDTWVLGEQAPGGEQWKAQRTVGVHDLVRRDPYLPSRVVENLFWFGRYCERCDDSARLLRIMLARYVDGDDPQALQSAVALGESLMLLPEEGELPERLLAAMLGDDWSFSLRSNLQRLQWAASQVRGKLSRENWQALVELQREAVELETSEPDFGELLDFLNRLVMSLAALSGFALDDMTRDEGWRFLMIGRRLERLQFLSSSLAAFLRGEAVFDQAGLEWLLELGNSSITYRSRYLAVAQLIPVLDLLLLDEQNPHAVLFQLKLVARTVKRLNDDFGAPRETALPELVARLSRFDLRCLESLLFGEASLRAALDGLADLLQEVADVSGQVSDRLALRHFAHVDDVSQRTVSVNANANANANA
D1-35_05087894COG1305putative proteinATGAATGCCCGTTACCAGATCCTTCACGACACCCACTATCATTACGACAGCCCGGTGTCCCTCGCCCAGCAACTGGCGCATCTATGGCCGCGGCCCTGTGAATGGCAGCGCTGTACCGAACGACAACTGACCATCAGCCCGGAGCCCACGACCCGTCGCGATGAAGAGGATGTGTTCGGCAATCCGCTGACCCGCCTGGCCTTCGAGCGGCCCCATGATGAGCTGCTGGTCAATGCCCGCCTGAGCGTCGAGGTGCTGGCGCGCCCGCCACTGGATTTCGGTTCATCGCCCGCCTGGGAATCCACTCGTCATGCATTGACCTACAGCGGCCGGCCGCTGACGGCGCAGTTGCTGGATGCATGCCGCTATCGTTTCGAGTCACCCTATGTGCACCTCAAGCGCAGCTTCGTCGAGTTTTCCGAAAGTTGTTTCCCGGTTGGTCGTCCGTTGATGCTCGGCGTCCAGGCGCTGATGGAAAAAATCTTCGAGGAATTCACTTTCGACGCGGAGGCCACCCAGGTCGCGACACCGCTGGTGGAAGTGCTGGAGCGACGCCGGGGCGTCTGCCAGGATTTTGCCCACCTGATGCTGGCCTGCGTACGTTCTCGCGGATTGGCGGCGCGTTACGTCAGCGGCTATCTGTTGACCCAGCCACCCCCCGGCCAGGCTCGATTGATTGGTGCCGATGCGTCTCACGCCTGGATTTCGGTGTTTTGCCCGGTGCTGGGATGGGTGGATTTCGATCCGACCAACAACGTGCAACCGTCCCTGGAGCACATCACCCTGGCCTGGGGCCGGGACTTTTCCGATGTGTCGCCTTTGCGCGGGGTGATCCTGGGGGGCGGTACCCATGACCCGGAGGTACGGGTGACGGTGATGCCGTTGGAGTCGTGAMNARYQILHDTHYHYDSPVSLAQQLAHLWPRPCEWQRCTERQLTISPEPTTRRDEEDVFGNPLTRLAFERPHDELLVNARLSVEVLARPPLDFGSSPAWESTRHALTYSGRPLTAQLLDACRYRFESPYVHLKRSFVEFSESCFPVGRPLMLGVQALMEKIFEEFTFDAEATQVATPLVEVLERRRGVCQDFAHLMLACVRSRGLAARYVSGYLLTQPPPGQARLIGADASHAWISVFCPVLGWVDFDPTNNVQPSLEHITLAWGRDFSDVSPLRGVILGGGTHDPEVRVTVMPLESNANANANANA
D1-35_05088378hypothetical proteinATGTTCCCGGTTTCCATCAAAGGCGTACTGCAATCTCCCGACGGCCTGGTCGTGCTGATGCTCAACGAGCGTGACGAATGGGAGCTGCCCGGTGGGCGGATCGAGCTGGGCGAAACGCCGCCGCAGTGCCTGGCACGGGAAATCGCCGAGGAGCTGGCGGTCGAGGTCAGCGTGGGCGAACCGCTGGATTCGTATCTGTTCGAGGTGATTCCCGGCAAACACGTGTTCATCTCCACTTACCGCTGCCAGTTGCTGGGCGGTTTCGTGCCGACGATCAGTCATGAGCACAAGGAGATCGGGCTGTTCGAGCCAAGCCAGTTGCCAGCGAACCTGCCGGCTGGTTATCGCTTGTCGATTATCAACGCGCTGGGGTTGTGAMFPVSIKGVLQSPDGLVVLMLNERDEWELPGGRIELGETPPQCLAREIAEELAVEVSVGEPLDSYLFEVIPGKHVFISTYRCQLLGGFVPTISHEHKEIGLFEPSQLPANLPAGYRLSIINALGLNANANANANA
D1-35_05089186hypothetical proteinATGGCCAAACCCAATTATTCCTTCGCCAAACGTCAGAGAGACCTGGCCAAGGAGCAGAAGAAAGAGGAAAAGCTCCAGCGCAAGAAAGCCACCGCCGATGAAGCAGCACTGAACCCCGATGCTGAAGGTGAAGTGGCGGCAGACGATGATACAGATGCACCGAAAGACCAGGCCCCCGACGCCTGAMAKPNYSFAKRQRDLAKEQKKEEKLQRKKATADEAALNPDAEGEVAADDDTDAPKDQAPDANANANANANA
D1-35_05090588COG1611Putative cytokinin riboside 5'-monophosphate phosphoribohydrolaseATGTCCATAGCGTCTGTTTGTGTATTTTGCGGCGCCAGCGCCGGCAGCCATCCCGCCTATCGCGAAGCGGCTCAGGCCCTGGGGCAGGCACTGGCGGAGCGAAAACTGACCCTGGTCTACGGCGGCGGCGCGGTCGGCCTGATGGGAATCGTCGCTGATGCAGCCCTCGCGGCTGGCGGCGAAGTGATTGGCATCATCCCGCAAAGCCTGAAAGACAAAGAAATCGGCCACAGCGGCCTGACACGCCTGGAAGTGGTGGACGGCATGCATGCGCGCAAGGCCCGCATGGCTGAACTCAGCGACGCCTTCATCGCCCTTCCCGGCGGCCTCGGCACCCTGGAAGAACTTTTCGAAGTGTGGACCTGGGGCCAGCTCGGCTACCACGCTAAACCGATGGGGCTGCTGGAAGTGAACGGTTTCTACAGCAAACTCACCGGTTTTCTCGATCACATCGTCGGTGAAGGCTTCGTCCGGGCGCCGCATCGTGACATGCTGCAAGTGAGCGACTCGGCCCATGACCTGCTCGATGCGCTGGATGAATGGCAACCCTCGGTGCCGCCGAAATGGGCCGAGCAAAAACCCAGCTAAMSIASVCVFCGASAGSHPAYREAAQALGQALAERKLTLVYGGGAVGLMGIVADAALAAGGEVIGIIPQSLKDKEIGHSGLTRLEVVDGMHARKARMAELSDAFIALPGGLGTLEELFEVWTWGQLGYHAKPMGLLEVNGFYSKLTGFLDHIVGEGFVRAPHRDMLQVSDSAHDLLDALDEWQPSVPPKWAEQKPSPGPT0007225_179DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPHYTOHORMONE-CYTOKININS|DERIVATE_PRODUCTIONPHYTOHORMONE-CYTOKININ_METABOLISMPHYTOHORMONE-CYTOKININ_BIOSYNTHESIS,PGPT0007225-log|yvdD-K22522NANA
D1-35_0509190hypothetical proteinATGAACCTCAACAGCCTGTTATGCAGCCTGCTCGCCGCCTACGCCTGCGGCGCCAGCGGCACCTACGAAAAACCCCGGCGCGAGGTTTAAMNLNSLLCSLLAAYACGASGTYEKPRREVNANANANANA
D1-35_05092447AzurinATGTTCGCCAAACTTGTAGCAGTATCCCTGTTGACGCTGGCCAGCAGCCAACTGATGGCAGCGGAGTGCAAGACCACCATCGATTCCACCGACCAGATGTCCTTCAATGCCAAGGCCATCGAAATCGACAAGAGCTGCAAAACCTTCACCGTTGAGCTGACTCATTCCGGCAACCTGCCAAAAAACGTCATGGGTCATAACTGGGTGCTGAGCAAAGAGGCTGACATGCAGCCGATCGCCACCGACGGTCTGGCCGCTGGCATTGACAAGGATTACCTGAAGGAAGGTGATGCTCGCATCATCGCCCACACCAAAATCATCGGCGCCAAGGAAACCGACTCGGTGACCTTTGATGTTTCGAAATTGAGTGCTTCCGAGAAGTACGGTTTCTTCTGCTCGTTCCCGGGCCACATCTCGATGATGAAAGGCACGGTTACCCTGAAATAAMFAKLVAVSLLTLASSQLMAAECKTTIDSTDQMSFNAKAIEIDKSCKTFTVELTHSGNLPKNVMGHNWVLSKEADMQPIATDGLAAGIDKDYLKEGDARIIAHTKIIGAKETDSVTFDVSKLSASEKYGFFCSFPGHISMMKGTVTLKNANANANANA
D1-35_05093828nadE_3COG0171NH(3)-dependent NAD(+) synthetaseATGCAAGCCGTACAGCGTGAGATTGCTGAACAGCTCAAGGTCCAGCCACCGTTCGCCGATGACGCCGCCCTCAAGGCCGAAATCGCGCGCCGGGTGAGCTTCATTCAGGACTGCCTCGTCAACTCGGGTCTCAAAAGCCTGGTGCTGGGAATCAGCGGTGGGGTCGACTCGTTGACCGCCGGCCTGCTGGCCCAACGTGCCGTGCGCGAGCTGCGGGAAAAAACCGGCAATTCGGCGTACCGGTTCATCGCCGTGCGCCTGCCGTACGAAACCCAGTTCGATGAGCACGAAGCCCAGGCCTGCGTCGATTTCATCGAGCCGGACGAGCGCCATACCGTCAACATCGGTCCGGCGGTCAAGGCATTGGCGAAGGAAGTCCTGGCATTCGAAGGCAAGGCGCCGGGTTCGCGGGATTTCGTGTTGGGCAATACCAAGGCGCGGATGCGCATGGTGGCGCAATACACCATCGCCGGCGCGGAGCAAGGTCTGGTGATCGGGACCGATCACGCGGCCGAAGCGGTCATGGGTTTCTTCACCAAGTTCGGTGATGGCGCCTGTGACCTGGCCCCGCTGAGCGGCCTGGTGAAAAACCAGGTCCGGGCCATCGCCCGGGATTTCGGCGCGCCGGAGTCGCTGGTGGAAAAAGTCCCCACCGCTGATCTGGAAGACCTGTCGCCGGGCAAGCCGGATGAAGCCGCCCATGGCGTGACCTACGGCGAGATCGACGCCTTCCTGCATGGCCAACCGATTCGCGAAGAGGCGGCCAGGATCATTTGCGAAACCTACCGCAAGACCGAGCACAAGCGAGTGATGCCGTACGCTCCGTGAMQAVQREIAEQLKVQPPFADDAALKAEIARRVSFIQDCLVNSGLKSLVLGISGGVDSLTAGLLAQRAVRELREKTGNSAYRFIAVRLPYETQFDEHEAQACVDFIEPDERHTVNIGPAVKALAKEVLAFEGKAPGSRDFVLGNTKARMRMVAQYTIAGAEQGLVIGTDHAAEAVMGFFTKFGDGACDLAPLSGLVKNQVRAIARDFGAPESLVEKVPTADLEDLSPGKPDEAAHGVTYGEIDAFLHGQPIREEAARIICETYRKTEHKRVMPYAPPGPT0013445_1789DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013445-nadE-K01916NANA
D1-35_050941227pncB2_2COG1488Nicotinate phosphoribosyltransferase 2ATGAGCGAGAGCGTGTTTGCCGATCGCATCGTGCAGAACCTGCTCGACACCGACTTCTACAAGCTGACGATGATGCAGGCGGTGCTGCACAACTACCCCAACGTCGAAGTGGAATGGGAGTTTCGTTGCCGCAACAGCGAAGACCTGCGCCCTTACCTCGCGGAAATTCGTTTCCAGATCGAACGCCTCGCCGAGTTGAGCCTGAGCGCCGACCAGCTGGGTTTCCTTGAGCGCATCAGCTTCCTCAAGCCGGATTTCCTGCGCTTCCTGGGCTTGTTTCGCTTCAACCTGCGCTATGTGCACACCGGCATCGATAACGGCGAGCTGTTTATCCGTCTGCGCGGGCCCTGGCTGCACGTCATCCTGTTCGAAGTACCGCTGCTGGCCATCGTCAGCGAGGTGCGCAACCGTTATCGCTACCGTGAAGTCGTCCTGGAACAGGCGCGAGAGCAGCTTTATCGCAAGTTCGACTGGCTGACGGCCAACGCCAGTGCCGACGAATTGTCCGAACTGCAAGTGGCCGACTTCGGTACTCGCCGCCGGTTTTCCTACCGTGTCCAGGAAGAAGTGGTGAACGTGCTCAAGCACGACTTCCCCGGCCGCTTCGTCGGCACCAGCAATGTGCACCTGTCCCGAGAGCTGGACATGAAGCCCTTGGGCACCATGGCCCACGAATGGATCATGGCCCACCAGCAGCTGGGTCCGCGACTGATCGACAGCCAGATCGCCGCGCTCGATTGCTGGGTTCGTGAATACCGAGGCCTGCTGGGCATCGCGCTGACCGACTGCATCACCATGGATGCGTTCCTCAAGGACTTCGATCTGTTCTTCGCCAAGCTGTTCGACGGTTTGCGCCATGATTCGGGGGATCCGGTCATCTGGGCTGAAAAGGCCATTGCCCACTACCACAAACTGGGCATCGACCCGATGAGCAAGACCCTGGTGTTCTCCGACAGCCTGACATTGCCCAAATGCCTGGATATTTTCCGCGCCTTGCGTGGTCGCATTAATGTGAGCTTCGGTATCGGGACCAACCTGACTTGCGACATTCCAGGCGTGGAGCCGATGAGCATCGTGCTTAAAATGATCAGCTGTGACGGGCAACCCGTGGCCAAGATTTCCGACGAGCCCGGCAAGACCCACTGCAAGGACCCGAATTTCGTCGCCTATATGCGACATGTTTTCCAAGTACCTGCCGCCCTTTCCGGCACATCAAGCAAGGAGTGAMSESVFADRIVQNLLDTDFYKLTMMQAVLHNYPNVEVEWEFRCRNSEDLRPYLAEIRFQIERLAELSLSADQLGFLERISFLKPDFLRFLGLFRFNLRYVHTGIDNGELFIRLRGPWLHVILFEVPLLAIVSEVRNRYRYREVVLEQAREQLYRKFDWLTANASADELSELQVADFGTRRRFSYRVQEEVVNVLKHDFPGRFVGTSNVHLSRELDMKPLGTMAHEWIMAHQQLGPRLIDSQIAALDCWVREYRGLLGIALTDCITMDAFLKDFDLFFAKLFDGLRHDSGDPVIWAEKAIAHYHKLGIDPMSKTLVFSDSLTLPKCLDIFRALRGRINVSFGIGTNLTCDIPGVEPMSIVLKMISCDGQPVAKISDEPGKTHCKDPNFVAYMRHVFQVPAALSGTSSKEPGPT0013375_3316DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013375-pncB-K00763NANA
D1-35_05095909gcvA_9Glycine cleavage system transcriptional activatorATGCTCAATAAGCGCTATTTGCCGTCTATCACCGCGCTGCAGTGCTTCGAAGCGGTGACCCGTCACCTGAGCTTCACCCGCGCCGCCGAAGAATTGAACCTGACCCAGAGCGCCGTCAGCAAACAGGTCGCGCAGCTTGAAGAGTTGCTGCAACACCTGCTGTTTCGCCGCGTTCGCCGACGCTTGCAGCTGACGCCCGCCGGGGATCTGTATCTGGGGGAGGTGCGAAAAATCCTTTCCCAGGTAGAGATGTCGACCCATTACCTGCGTTCCTACGGTGGCGACACCGAAGTCCTGCGAGTCTCTACGCCTCCGACCTTCGGCGCCCGCTGGCTGGTCCCGCGGCTCAAGGGCTGGCGCCTGCGCCATCCCAGCATTCATCTGGACCTGTGCAGCGAGCAGGAGGCCGACGACCTGCAGCAGGGACGCAGTGACCTGGCGTTCTATTTTGGCCAGGGATCGCGGCCGGGCACCGAATCCCTGAAGCTGTTCGGCGAAGAACTGGTGCCGGTCTGCGCCCCGGGCAGCTTGCCGGACGAGCCTTTTACCGACCCCACGCAACTGACCGGGCTGGTGCTGCTGCAGAACGCCTCCCGGCCCCAGGCATGGCATGACTGGTTCGACCATCAGGGTTATCACACCGAACACAGCTACCACGGGCCACGCTTCGAGACGTTTTACATGTGCATCCGCGCCGCCCAGGTCGGCTGTGGCGTGGCCCTGTTGCCAAGATTCCTGGTGGAGGAAGAACTGGCTGACGGCAAGCTGGTCATCCCTTGGCAACATCCGATGCCCAGTACCAATGCCTACTACCTGGCGTACCCGGAACATTCGGCGGAAGTGCCCAAGGTGCGGTTGTTCGTGGAATGGATGCTGGAGCAGATCGAAGGTACTGGCACAGCCCCCTAGMLNKRYLPSITALQCFEAVTRHLSFTRAAEELNLTQSAVSKQVAQLEELLQHLLFRRVRRRLQLTPAGDLYLGEVRKILSQVEMSTHYLRSYGGDTEVLRVSTPPTFGARWLVPRLKGWRLRHPSIHLDLCSEQEADDLQQGRSDLAFYFGQGSRPGTESLKLFGEELVPVCAPGSLPDEPFTDPTQLTGLVLLQNASRPQAWHDWFDHQGYHTEHSYHGPRFETFYMCIRAAQVGCGVALLPRFLVEEELADGKLVIPWQHPMPSTNAYYLAYPEHSAEVPKVRLFVEWMLEQIEGTGTAPPGPT0026360_3724DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-AMINO_ACID_SIGNALLING,PGPT0026360-gcvA-K03566NANA
D1-35_050961491gabD_1COG1012Succinate-semialdehyde dehydrogenase [NADP(+)]ATGGTTGCTGCATTGCTTGATCGTCTGGGCGTCAACCCGGCCCTGTACCAGAACGGCAAACAGCCCGTGCATTCGCCCATCGACGGCAGCCGCATCGGCGCGGTGAACTGGGAAGGCGCCGCCGAAGTCGAGCAACAGGTCAGCCGTGCCGAACATGCCTTCGATTTGTGGCGCAAGGTGCCGGCGCCCCGTCGCGGCGAGCTGGTGCGTCAGTTTGGCGACCTGCTGCGTGAATACAAGGCCGACCTCGGCGAACTGGTGTCGTGGGAAGCCGGCAAGATCACTCAGGAAGGCCTGGGTGAAGTGCAGGAGATGATCGACATCTGTGATTTCGCCGTCGGTCTATCCCGCCAGTTGTATGGCCTGACCATCGCCTCCGAGCGACCGGGCCATCACATGCGGGAAACCTGGCACCCGCTGGGGGTGGTCGGGGTGATCAGCGCCTTCAACTTCCCGGTGGCGGTGTGGGCCTGGAACACCACGCTGGCCCTGGTGTGCGGCAATTCGGTGATCTGGAAACCGTCGGAGAAAACCCCGCTGACCGCCCTGGCCTGCCAGGCATTGTTCGAGCGCGTACTGGAGAATTTCAGTGATGCGCCGCCGTACCTGAGCCAAGTGATCATCGGTGGTCGCGATGCCGGCGAAGCCCTGGTGGATGACCCGCGCGTGGCGTTGATCAGCGCCACCGGCAGCACCCGGATGGGGCGCGAAGTCGCACCAAAAGTCGCGGCGCGTTTTGCCCGCAGTATCCTCGAACTGGGTGGCAACAACGCCATGATCCTGGCCCCGAGCGCCGACCTGGACATGGCAGTGCGGGCGATCCTGTTCAGCGCCGTCGGCACCGCCGGCCAGCGCTGCACCACCCTGCGCCGTTTGATCGCCCATGAATCGGTGAAGGAGGAGATCGTCACCCGCCTCAAGGCCGCCTACTCGAAAGTGCGCATCGGTCATCCGCTGGAAGGCAACCTGGTAGGGCCGCTGATCGACAAGCAGAGCTTCGACAACATGCAGGATGCGCTGGAGCAGGCCCTCAGCGAAGGCGGCCGGGTGTTTGGTGGCAAGCGCCAGCTCGAAGAGCAGTTCCCGAACGCCTACTACGTTTCGCCGGCCATCGTCGAAATGCCGGAGCAAAGCGACGTGGTGCGTCACGAAACGTTCGCGCCGATCCTCTACGTGGTCGGTTACAAGGATTTTGCTGAAGCACTGGATTTGAACAATTCCGTGCCCCAAGGCCTGTCGTCGTGCATCTTCACCACTGATGTGCGTGAGGCCGAGCAGTTCATGTCGGCGGTGGGCAGCGATTGCGGCATCGCCAACGTCAACATCGGCCCGAGCGGCGCGGAGATCGGCGGTGCCTTTGGTGGCGAAAAGGAAACCGGCGGCGGTCGCGAGTCCGGCTCCGATGCATGGCGCGGCTATATGCGTCGTCAGACCAATACTGTGAATTATTCGCTGGAACTGCCTTTGGCCCAGGGGATTACTTTCGACTGAMVAALLDRLGVNPALYQNGKQPVHSPIDGSRIGAVNWEGAAEVEQQVSRAEHAFDLWRKVPAPRRGELVRQFGDLLREYKADLGELVSWEAGKITQEGLGEVQEMIDICDFAVGLSRQLYGLTIASERPGHHMRETWHPLGVVGVISAFNFPVAVWAWNTTLALVCGNSVIWKPSEKTPLTALACQALFERVLENFSDAPPYLSQVIIGGRDAGEALVDDPRVALISATGSTRMGREVAPKVAARFARSILELGGNNAMILAPSADLDMAVRAILFSAVGTAGQRCTTLRRLIAHESVKEEIVTRLKAAYSKVRIGHPLEGNLVGPLIDKQSFDNMQDALEQALSEGGRVFGGKRQLEEQFPNAYYVSPAIVEMPEQSDVVRHETFAPILYVVGYKDFAEALDLNNSVPQGLSSCIFTTDVREAEQFMSAVGSDCGIANVNIGPSGAEIGGAFGGEKETGGGRESGSDAWRGYMRRQTNTVNYSLELPLAQGITFDPGPT0006875_3784DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_DEHYDROGENASE|DEHYDRATASE_ACTIVITY,PGPT0006875-aldH|dhaS-K00128NANA
D1-35_050971284puuB_6Gamma-glutamylputrescine oxidoreductaseATGCCGTTACGCGAAGAATGTCTGTGGGAAAAGCTGACGCCACAACGGCCCGAAAACACCGTGCTCACAGGCGAGGTGACGGTGGATGTCTGCGTCATCGGCGCCGGTTTCACCGGTCTGTCAGCGGCGGTGCACTTGCTCGAGCAGGGCAAACGCGTGGCAGTGCTGGAAGCCCATCGGGCCGGACATGGCGGCTCGGGGCGTAACGTCGGGCTGGTGAACGCCGGCCTGTGGATCCCGCCGGATGATATCGAGGCCGGTTTTGGCGAGGCGGTGGGCAGCCAGCTCAACCGCATGCTCGGGGCCGCGCCGGCCTTGGTGTTCAGCCTCGTCGACAAATACAACATCGATTGCCAGCTGCGCCGCGAAGGCACCCTGCATATGGCCCACAACGCCCGGGGCGAGGCGGACCTGCGCAGCCGCGAAGAACAATGGAAACGCCGTGGCGCGCCGGTGGAACTGCTGACCGGCCAAGCCTGTGCCGAGGCTACCGGCACCGACAGGATCGCCGCGGCATTGCTCGATCGCCGCGCCGGCACGCTCAACCCGATGGCCTACACCAGCGGGCTGGCCAAGGCGGCCAAGGACCTTGGCGGCCAGTTGTTCGATCATTCGCCGGTCACGCGCCTGGAACGCCAAGGCCAGCGCTGGTCAGTGCAGACTGCCCAGGGCTCGGTGCTGGCCGAGCAAGTCGTGATCGCGTCCAACGCCTATACCGAAGGCGACTGGACCGAACTGCGGCGCAATTTCTTTCCCGGATATTACTATCAGGTCGCTTCGGTCCCACTGACCGACGCGGCCGCCCACCGAATTCTGCCGGGTGGGCAAGGTTCCTGGGATACTCGCCAGGTATTGAGCAGCATCCGCCGGGACAAGGACGGTCGCTTGCTGCTCGGCAGCCTGGGCAATGGCAACCGTAAGCCAACCTGGTTTCTCAAGGCCTGGGCGGACCGCGTCCAGCAGCATTATTTCCCTTACCTCAAGCCTGTGGAGTGGGAGTGCACCTGGACCGGTTGCATTGCGTTCACGCCCGATCATCTGATGCGCCTGTTCGAGCCGGCGCCAGGCCTGGTGGCAGTCACCGGCTACAACGGTCGAGGCGTGACCACCGGCACCGTGGTCGGCAAGGCATTCGCCGACTATCTGTGCCACGGCGATGCCAAGGCATTGCCCATCCCTTTCGCGCCCATGCAACCCTTGGCCGGCGTGGGCCTGCGCAGTTGCCTGTATGAGGCGGGCTTTTCCCTGTATCACGCGGGCCAGTGCCTGCGGATCGTCATCTGAMPLREECLWEKLTPQRPENTVLTGEVTVDVCVIGAGFTGLSAAVHLLEQGKRVAVLEAHRAGHGGSGRNVGLVNAGLWIPPDDIEAGFGEAVGSQLNRMLGAAPALVFSLVDKYNIDCQLRREGTLHMAHNARGEADLRSREEQWKRRGAPVELLTGQACAEATGTDRIAAALLDRRAGTLNPMAYTSGLAKAAKDLGGQLFDHSPVTRLERQGQRWSVQTAQGSVLAEQVVIASNAYTEGDWTELRRNFFPGYYYQVASVPLTDAAAHRILPGGQGSWDTRQVLSSIRRDKDGRLLLGSLGNGNRKPTWFLKAWADRVQQHYFPYLKPVEWECTWTGCIAFTPDHLMRLFEPAPGLVAVTGYNGRGVTTGTVVGKAFADYLCHGDAKALPIPFAPMQPLAGVGLRSCLYEAGFSLYHAGQCLRIVINANANANANA
D1-35_050981137braC_2COG0683Leucine-, isoleucine-, valine-, threonine-, and alanine-binding proteinATGTCCCAGACGTTTTACAAGAAAGGCTTTCTGGCCCTCGCAGTGGCAGCTGCGCTGGGTGTTTCTGCGTTTGCCCAGGCTGATGTGAAATTTGGTGTGGCGGGGCCGATGACCGGCGCCAACGCCGCGTTTGGCGAGCAGTACATGAAAGGTGCGCAGGCCGCGGCCGATGTCATCAACAAGGCAGGTGGCGTCAATGGCGAAAAAATCGTCCTGGTCGCCGGTGACGACGCCTGCGAACCGAAGCAGGCCGTGGCCGTGGCCAACCGACTGGTTGACCAGGACAAAGTGATCGGCGTGGTCGGGCACTTCTGCTCGTCCAACACCATCCCGGCCTCCGAGGTCTATGACGAAGCAGGCATCATTGCCATCACCCCAGGCTCGACCAACCCGGCCGTTACCGAACGTGGCCTGAGCGCGATGTTCCGCATGTGTGGTCGTGACGACCAGCAAGGCATCGTGGCTGGCGACTACATCGTCGACGTGCTCAAGGGCAAGAAAGTCGTCGTCCTGCACGACAAGGACACCTACGGCCAAGGCCTGGCGGATGCTACCAAGGCACAACTGGCCAAGCGTGGCGTGACCCCTGTCTTGTACGAAGGCCTGACCCGTGGCGAAAAAGACTTCAGCGCCGTGGTGACCAAGATCCGTTCGGCCGGTGCCGACGTGGTCTACTTCGGCGGCCTGCACCCGGAAGCCGGCCCGCTGGTTCGCCAGCTGCGTGAGCAAGGACTCAAGGACGTCAAGTTCATGTCCGACGATGGCATCGTCACCGATGAACTGGTCACTACCGCTGGTGGCGCGCAATACGTCGATGGCGTGTACATGACCTTCGGCGCCGACCCGCGCCTGCTGCCGGACAGCAAGGCCGTGGTGGACGCTTTCCGTGCCCAGGGCGTCGAGCCTGAGGGCTACACTCTGTACGCCTATGCCTCGGTCCAGGCGCTGGCCGCCGGTTTCAATGGTGCCAAGTCCAACAAGGGCGAAGACGCCGCCAAGTGGCTGAAAGCCAACCCGGTGAAAACCGTCATGGGCGAAAAAGCCTGGGACACCAAAGGCGACCTGAAAGTCTCCGATTACGTGGTCTACCAGTGGGACAAGGATGGCAAATACCACCAGTTGGAAAAACAGAAGTAAMSQTFYKKGFLALAVAAALGVSAFAQADVKFGVAGPMTGANAAFGEQYMKGAQAAADVINKAGGVNGEKIVLVAGDDACEPKQAVAVANRLVDQDKVIGVVGHFCSSNTIPASEVYDEAGIIAITPGSTNPAVTERGLSAMFRMCGRDDQQGIVAGDYIVDVLKGKKVVVLHDKDTYGQGLADATKAQLAKRGVTPVLYEGLTRGEKDFSAVVTKIRSAGADVVYFGGLHPEAGPLVRQLREQGLKDVKFMSDDGIVTDELVTTAGGAQYVDGVYMTFGADPRLLPDSKAVVDAFRAQGVEPEGYTLYAYASVQALAAGFNGAKSNKGEDAAKWLKANPVKTVMGEKAWDTKGDLKVSDYVVYQWDKDGKYHQLEKQKPGPT0020765_12379DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020765-livK-K01999NANA
D1-35_05099915livH_4COG0559High-affinity branched-chain amino acid transport system permease protein LivHATGGATGGTATTTTCCTGCAGCAACTGATCAACGGCCTGACCCTCGGGTCGGTCTATGGTCTGATCGCCATCGGCTACACAATGGTCTATGGCATCATCGGCATGATCAACTTCGCCCACGGCGAGGTTTACATGATTTCCGCTTACCTCGCGGCAATCAGTCTGGCTCTGCTGGCTTACTTCGGTATCGAATCCTTTCCGCTGATGATCCTTGGCACTCTGGTGTTCACGATCGTGGTCACCGGGGTATACGGCTGGGTCATCGAACGCGTCGCCTACAAACCCCTGCGCAACTCCACCCGACTGGCACCGCTGATCAGCGCCATCGGCATCTCGCTGATCCTGCAGAACTACGCGCAGATCAGCCAGGGCGCCCGCCAACAGGGTGTGCCGACACTGCTCGAAGGCGCCATGCGCGTCGACATCGGTACCGGCTTCGTGCAGCTCACCTACACCAAGATATTCATCCTGATTGCCGCATTCGCCGGCATGGCGCTGCTGACCTACATCATCAAATACACCAAGCTCGGCCGCATGTGCCGTGCCACCCAGCAAGACCGCAAGATGGCCTCCATCCTTGGCATCAACACCGACCGGGTGATTTCCTACGTGTTCATCATCGGTGCGGCCATGGCGGCCCTGGCCGGTGTGCTGATTACCATGAACTACGGCACCTTCGACTTCTATGCCGGCTTCATCATCGGCATCAAGGCGTTCACCGCGGCGGTACTCGGCGGCATCGGCTCCCTGCCTGGGGCAATGCTCGGCGGGATCATCCTCGGGATCTCCGAGTCGCTGTTCGCCGGTCTGATCAACTCCGACTACAAAGACGTGTTCAGTTTCTCGCTGCTGGTGCTGATTCTGATTTTCCGTCCCCAAGGCCTGTTGGGTCGCCCACTCGTGGCGAAGGTATAAMDGIFLQQLINGLTLGSVYGLIAIGYTMVYGIIGMINFAHGEVYMISAYLAAISLALLAYFGIESFPLMILGTLVFTIVVTGVYGWVIERVAYKPLRNSTRLAPLISAIGISLILQNYAQISQGARQQGVPTLLEGAMRVDIGTGFVQLTYTKIFILIAAFAGMALLTYIIKYTKLGRMCRATQQDRKMASILGINTDRVISYVFIIGAAMAALAGVLITMNYGTFDFYAGFIIGIKAFTAAVLGGIGSLPGAMLGGIILGISESLFAGLINSDYKDVFSFSLLVLILIFRPQGLLGRPLVAKVPGPT0020770_3892DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020770-livH-K01997NANA
D1-35_051001281hypothetical proteinATGTCTGCTGCCAATAAACCGCTTGATATCAAAAAGAGCGTCATCGACGCGATCCTGGCCGGCCTGATCTCGCTGATCGTATTCGGGCCGATCGTCGGCGTAGTGCTCGACGGCTACAGCTTCAACCTGCAACCGGCCCGCGTCGGCTGGCTGGTGGCGATCGTGATGGTCGGGCGCTTTGCCCTGAGCCTGTTCCTGCAAACCCCGAAGGGGCTGAAGATCCTCCAGGGGTTCGAGAGCACTGGCTCCGGCGTGCATGTGCTGCCACCCGACTACAAATCGCGGCTGCGCTGGATCATCCCGGCCCTGATCGTGATTGCCATCGTGTTCCCGTTCTTCGCCAACAAGTACGTGCTTACCGTAGTCATCCTCGGGCTGATCTACGTGCTGCTGGGCCTGGGCCTGAATATTGTGGTCGGCCTGGCCGGGTTGCTCGATCTGGGTTACGTGGCGTTCTATGCCATCGGCGCCTACGGCCTGGCGCTGGGTTACCAATACCTGGGGCTGGGTTTCTGGACTGTGCTGCCGCTGGCGGCCATCGCAGCGGCGATGGCCGGGTGTATTTTAGGATTCCCCGTGTTGCGAATGCACGGTGACTACCTGGCCATCGTGACCCTGGGCTTCGGCGAGATCATCCGGCTGGTGCTGAACAACTGGTTGTCGTTCACTGGCGGGCCGAATGGCATGCCGGTTCCTGCACCAACCTTCCTGGGCCTGGAGTTCGGCAGGCGAGCGAAGGACGGCGGGGTGCCGTTCCATGAGTTCTTCGGCATCGACTACAACCCCAACATCAAATTCCTGTTCATCTACATCGTGTTGTTCATCACCGTATTGCTGGTGCTCTACGTCAAGCATCGCCTGACCCGCATGCCGGTCGGCCGCGCCTGGGAGGCCCTGCGCGAGGACGAAATCGCCTGTCGCTCCATGGGCTTGAACCATGTGCTGGTCAAGCTTTCTGCGTTCACCATCGGTGCTTCCACCGCTGGCCTGGCGGGAGTGTTTTTTGCCAGTTACCAGGGTTTCGTCAATCCGTCCTCTTTCACCTTCTTCGAGTCGGCGTTGATCCTGGCGATCGTCGTGCTGGGTGGCATGGGCTCGACGGTTGGCGTGGTGATCGCGGCATTCGTGCTCACCGTGGCGCCGGAGCTGCTGCGCAGTTTCTCGGAATACCGCGTGCTGCTATTCGGCGTACTGATGGTATTGATGATGATCTGGCGCCCACGCGGCCTGATCCGCATCAGCCGTACCGGTGTGACGCCGCGCAAGGGGGTAGCGCCATGAMSAANKPLDIKKSVIDAILAGLISLIVFGPIVGVVLDGYSFNLQPARVGWLVAIVMVGRFALSLFLQTPKGLKILQGFESTGSGVHVLPPDYKSRLRWIIPALIVIAIVFPFFANKYVLTVVILGLIYVLLGLGLNIVVGLAGLLDLGYVAFYAIGAYGLALGYQYLGLGFWTVLPLAAIAAAMAGCILGFPVLRMHGDYLAIVTLGFGEIIRLVLNNWLSFTGGPNGMPVPAPTFLGLEFGRRAKDGGVPFHEFFGIDYNPNIKFLFIYIVLFITVLLVLYVKHRLTRMPVGRAWEALREDEIACRSMGLNHVLVKLSAFTIGASTAGLAGVFFASYQGFVNPSSFTFFESALILAIVVLGGMGSTVGVVIAAFVLTVAPELLRSFSEYRVLLFGVLMVLMMIWRPRGLIRISRTGVTPRKGVAPPGPT0020775_2292DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020775-livM-K01998NANA
D1-35_05101873glnQ_10Glutamine transport ATP-binding protein GlnQATGAGCGAAGTCGTACTCAAAGTCGAAAACCTGATGATGCAGTTCGGTGGCATCAAGGCCCTCAGCGACGTCAGCCTGCAAGTCAAGCGCAACTCGATCTTCGCCCTGATCGGCCCCAACGGCGCGGGCAAGACCACGGTGTTCAACTGCCTGACCGGTTTCTACAAGGCTTCGGGCGGCAAGATCGAACTCAACGTGCGTGGCGAGCAGACCAACGTGATCAAGTTGTTGGGCGAAGCGTTCCGCCCGACGGACTTTGTCTCGCCAAAGTCTTTCGCCAGCCGGCTGTACTACAAGATGTTCGGCGGCACCCACCTGGTAAACCGCGCCGGCCTGGCGCGAACGTTCCAGAACATTCGCCTGTTCAAGGAAATGTCGGTGCTGGAGAACCTGCTGGTGGCCCAGCACATGTGGGTCAATCGCAGCCTGGTGGCGGGCATCCTCAACACCAAGGGTTATCGTCAGGCGGAAAGCGATGCCCTGGACCACGCTTTCTACTGGCTGGAAGTTGTGGACCTGGTGGACTGTGCCAACCGCCTGGCTGGTGAGCTTTCCTACGGCCAGCAGCGCCGCCTGGAAATCGCCCGGGCGATGTGCACGCGTCCGCAGATCATCTGCCTCGACGAACCGGCCGCCGGCCTCAACCCTCAGGAAACCGAAGCGCTGAGCGCGATGATCCGGCTGCTGCGCGACGAGCACGATCTGACCGTGGTGCTGATCGAACACGACATGGGCATGGTGATGAGTATTTCCGATCACATCGTAGTGCTGGATCACGGCAACGTGATTGCCGAGGGCGGTCCCGAGGCGATTCGCAACGATCCGAAGGTGATCGCGGCTTACCTGGGCGCCGATGAAGAGGAATTGGTATGAMSEVVLKVENLMMQFGGIKALSDVSLQVKRNSIFALIGPNGAGKTTVFNCLTGFYKASGGKIELNVRGEQTNVIKLLGEAFRPTDFVSPKSFASRLYYKMFGGTHLVNRAGLARTFQNIRLFKEMSVLENLLVAQHMWVNRSLVAGILNTKGYRQAESDALDHAFYWLEVVDLVDCANRLAGELSYGQQRRLEIARAMCTRPQIICLDEPAAGLNPQETEALSAMIRLLRDEHDLTVVLIEHDMGMVMSISDHIVVLDHGNVIAEGGPEAIRNDPKVIAAYLGADEEELVPGPT0020780_1790DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020780-livG-K01995NANA
D1-35_05102717livF_4COG0410High-affinity branched-chain amino acid transport ATP-binding protein LivFATGAGTGGGCCTATCCTCGAACTCAAGGAGCTGGACGTGTTCTACGGGCCGATCCAGGCCCTGAAGAAAGTCTCGATGCACATCGGCGAAGGCGAAACCGTGAGCCTGATCGGCTCCAACGGTGCCGGCAAGTCCACGCTGCTGATGTCGATCTTCGGCCAGCCCCGCGCTGCGGGTGGGCAGATCATCTACCAGGGCGTGGACATCACCCACAAGTCGTCGCACTACATCGCCTCCAACGGCATCGCTCAATCGCCGGAAGGGCGCCGGGTGTTCCCCGACATGACCGTTGAGGAAAACCTGCTGATGGGCACCATTCCTATCGGTGACAAATACGCCAGCGAAGACATGCAGCGCATGTTCGAGCTGTTTCCGCGGCTCAAGGAGCGCCGCAACCAGCGAGCCATGACCATGTCCGGCGGCGAGCAGCAAATGCTCGCCATCGCCCGGGCCTTGATGAGCCGGCCGAAGTTGTTGCTGCTCGACGAGCCGAGCCTGGGGCTGGCGCCGATCGTGGTGAAGCAGATCTTCGCCACCCTGCGGGAACTGGCGTCCACCGGCATGACTATCTTCCTGGTGGAGCAGAACGCCAACCACGCGCTCAAGCTGTCAGACCGGGCCTATGTGATGGTCAACGGAGAAATCCGCCTGACCGGCAGCGGCAAGGAACTACTCGCCAACGAAGAGGTGCGCAACGCGTATCTTGGCGGGCATTGAMSGPILELKELDVFYGPIQALKKVSMHIGEGETVSLIGSNGAGKSTLLMSIFGQPRAAGGQIIYQGVDITHKSSHYIASNGIAQSPEGRRVFPDMTVEENLLMGTIPIGDKYASEDMQRMFELFPRLKERRNQRAMTMSGGEQQMLAIARALMSRPKLLLLDEPSLGLAPIVVKQIFATLRELASTGMTIFLVEQNANHALKLSDRAYVMVNGEIRLTGSGKELLANEEVRNAYLGGHPGPT0020785_4765DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-GABA_PERCIPITATION|SIGNALLING,PGPT0020785-livF-K01996NANA
D1-35_05103765isfD2COG4221Sulfoacetaldehyde reductase 2ATGTCCGACACCCTGTTTATCACCGGCGCTACGTCCGGTTTTGGTGAAGCCTGTGCCCGTCGTTTTGCCGAGGCCGGTTGGAAACTGGTGCTGACCGGTCGTCGTGAAGAGCGCCTCAGCGCCCTCTGTGCCGAGTTATCGAAGCAGACCGAGGTCCATGGCCTGGTTCTGGACGTGCGTGATCGCAAGGCCATGGAAGAGGCCATCGCCAGCCTGCCGCCTTCGTTCGCCAAATTGCGCGGCCTGATCAATAACGCCGGCCTGGCCCTGGGCGTCGACCCGGCGCCCAAGTGCGACCTCGATGACTGGGACACCATGGTCGACACCAATGTGAAGGGCCTGATCTACAGCACCCGCCTGCTGTTGCCGCGGCTGATTGCCCATGGGCGCGGCGCCGGGATCGTCAACCTGGGCTCCATCGCCGGCAACTATCCGTATCCGGGCAGCCACGTGTATGGCGCGAGCAAGGCGTTCGTCAAACAGTTCTCGCTGAACCTGCGCTGTGACCTGCAGGGCACCGGCGTGCGGGTGAGCAATATCGAGCCGGGGCTGTGCGAGAGCGAATTTTCCCTGGTGCGCTTCGGTGGTGACCAGGAGCGCTACAACGCGACTTACGCCGGCGCCGAGCCGATCCAGCCGCAGGACATCGCCGACACCATCTTCTGGGTGCTCAACACCCCGGCGCACATCAACATCAACAGCCTGGAGCTGATGCCGGTGAGCCAGACCTGGGCCGGCTTCGCCATCGAGCGCAACAAGGCCTGAMSDTLFITGATSGFGEACARRFAEAGWKLVLTGRREERLSALCAELSKQTEVHGLVLDVRDRKAMEEAIASLPPSFAKLRGLINNAGLALGVDPAPKCDLDDWDTMVDTNVKGLIYSTRLLLPRLIAHGRGAGIVNLGSIAGNYPYPGSHVYGASKAFVKQFSLNLRCDLQGTGVRVSNIEPGLCESEFSLVRFGGDQERYNATYAGAEPIQPQDIADTIFWVLNTPAHININSLELMPVSQTWAGFAIERNKAPGPT0021285_780DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PYRIMIDINE_METABOLISM,PGPT0021285-ydfG-K16066NANA
D1-35_051041134Cellobiose 2-epimeraseATGCCTGAAGCCTCCCGCTCCGCCCTTCTACCCGAATTGACCACGCTGTTCGCCAAGGTGCATCAGCAGCTTCACGATGTAATCGTGCCGATGTGGCAAGGTCCGGGCTGGAATGCCGAGCTGGCGTTGCCCTACGAGTCCCTGGATACCCAGCACAAGCCGCTGCCGCCCCAGCGTTATCGCGCCATGGCCTGTGCGCGGCAGTTGTATGTGTTCGCCAGCCTGATCGGCGAAGTGCCGCAGGCCGAGGAACGGGCCGCCGCGCTATTTCGCTCGCTGCAACGGCACTTCCACGATGCCGAACATGGCGGCTGGTTCTACAGCATCGACCCGCAGGGGATACCGCTGGATACCGGCAAGGATCTGTACACCCACGCCTTCATCCTGTTCGCCTGCGCCCATTACTGGGGCAAGGTTCGCGAACCGCTGGTGGAGTCGGTGCTCAACGCGGCCCTGGAAATCATCGCGCGACGCTTCGCCACTGGCGACGGTCTCTACGAAGCCAGCCTCGGCCGCGACTGGTCGACAGCCGAGACCGGCCCGCTGCAGAACCCGCTGATGCATCTGGCAGAAGCTTTTCTCGCGACCCTGGCGGTTCGCGACGATGCCGCTGTTCGCCAAGCGTTGCTGAGCCTGTGCGAGGGGATGTTCAAGTGCTTCGTTGATCCGCAACGACAAGTCATGATGGAGAAACCGCTCAAGGCTGTGGATAACTGGTTCGAGCCGGGGCATCAGTTCGAGTGGTATTTCCTGCTGGCCTCATCGCCCTTGTTGCGTGACGGCAAACTGCACCTGGCCCTGGAACGCAGCTTCGGCGATACCGAACAACAAGGCGTCGATCCGGATACCGCTGGCGTTTGCGCCATGCTGGCCCTGGAACCGCAGACGGCTCCGCGCGATGCAACCCCACGCATCTGGGCCCAGGCGGAATACCTACGGGCACTCACGTTGCGCCCTGGCAGCGAAGGGACGTTGCTGCGCCAGCTACGGGCGTTGCAGCAATGTTTCCTGCATCCCCTAGGCTGGAACGAATGCCTTGATGCCAACGGCAATGTCAGCCGCCGGGACATGCCGTCCACTACGCCCTACCACCTGCTGACCTGCTATCGCGGGCTGGCCGAATATCTGGCCTGAMPEASRSALLPELTTLFAKVHQQLHDVIVPMWQGPGWNAELALPYESLDTQHKPLPPQRYRAMACARQLYVFASLIGEVPQAEERAAALFRSLQRHFHDAEHGGWFYSIDPQGIPLDTGKDLYTHAFILFACAHYWGKVREPLVESVLNAALEIIARRFATGDGLYEASLGRDWSTAETGPLQNPLMHLAEAFLATLAVRDDAAVRQALLSLCEGMFKCFVDPQRQVMMEKPLKAVDNWFEPGHQFEWYFLLASSPLLRDGKLHLALERSFGDTEQQGVDPDTAGVCAMLALEPQTAPRDATPRIWAQAEYLRALTLRPGSEGTLLRQLRALQQCFLHPLGWNECLDANGNVSRRDMPSTTPYHLLTCYRGLAEYLAPGPT0017860_2060DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-GLUCOSE-MANNOSE-FRUCOSE_CONVERSION_MODIFICATION,PGPT0017860-manA-K01809NANA
D1-35_051052178glcBCOG2225Malate synthase GATGACTGAACACGTTCAAGTCGGTGGCCTGCAGGTCGCCAAAGTCCTGTTCGACTTCGTGAATAACGAAGCCATTCCCGGAACCGGCCTCACCGCCGAGGCATTCTGGGCCGGCGCCGACAAGGTCATCCACGACCTGGCACCGAAGAACAAAGCCCTACTCGCCAAACGCGACGATTTCCAGGCGCAGATCGATGCCTGGCACCAGGCTCGTGCCGGCCAGGCCCACGACGCCGTGGCTTACAAAGCCTTCCTGCAAGACATTGGTTACCTGCTGCCAGAAGCGGCGGATTTCCAGGCCACGACCCAGAATGTCGATGACGAAATTGCCCGCATGGCCGGCCCGCAGCTGGTGGTGCCGGTGATGAATGCCCGTTTCGCCCTCAACGCCTCGAACGCCCGCTGGGGTTCGCTGTACGACGCGCTGTACGGCACCGATGCGATCAGCGAAGCCGATGGCGCGGAGAAAGGCAAAGGCTACAACAAGGTCCGCGGCGACAAGGTCATTGCCTTCGCCCGCGTCTTTCTCGACGAAGCAGCCCCGTTGGCGGCCGGCTCCCATGTCGATTCCATCGCCTACAAGATCGTCGACGGCAAGCTGGTCATCACGCTCAAGGGCGGCAGCAACAGCGGCCTGCGCGACGATGCCCAACTGATCGGTTTCCAGGGCGATACGTCGGCGCCGAGCGCCGTGCTGCTCAAGCACAACGGCCTGCACTTCGAAATCCAGATCGATGCCAGCACTCCGGTCGGGCAGACCGACGCCGCCGGCGTCAAAGACATCCTGATGGAAGCCGCGCTGACCACCATCATGGATTGCGAAGACTCGGTCGCCGCCGTCGATGCCGATGACAAGGTGGTGATCTACCGTAACTGGCTCGGCTTGATGAAAGGCGATCTGTCGGAAGAAGTCGCCAAGGGCGGCCAGACGTTTACCCGGATCATGAACCCTGACCGCGTCTACACCGCCGCGGACGGGTCGAGCGTGACGCTGCACGGCCGTTCGCTTTTGTTCGTACGCAACGTCGGTCACCTGATGACCATTGACGCGATCTTGGACAAGGACGGCAATGAAGTGCCGGAAGGCATCCTCGACGGGCTGATCACCAGCCTGGCCGCGATCCACAGCCTCAACGGCAACACCTCGCGCCGCAACAGCCGCACCGGCTCGGTCTATATCGTCAAGCCGAAGATGCATGGCCCGGAAGAAGCGGCGTTTACCAACGAGCTGTTCGGCCGCGTCGAAGACGTGCTGAACCTGCCGCGCAACACGCTGAAAGTCGGAATCATGGATGAGGAGCGCCGTACCACGGTCAACCTAAAGGCGTGTATCAAGGCGGCCAGCGAGCGCGTGGTGTTCATCAATACCGGCTTCCTCGACCGCACCGGCGACGAAATCCATACGTCCATGGAAGCCGGCCCGATGGTCCGCAAGGCCGACATGAAGGCCGAGAAGTGGATCGCTGCGTACGAAAACTGGAACGTCGACATCGGTTTGAGCACCGGTCTGCAAGGCCGCGCGCAAATCGGCAAGGGCATGTGGGCCATGCCGGACCTGATGGCCGCGATGCTTGAGCAGAAAATCGCCCATCCGATGGCAGGCGCCAACACGGCCTGGGTCCCATCGCCGACCGCTGCCGCCCTGCACGCGTTGCACTATCACAAGGTCGATGTATTCGCCCGTCAGGCCGAGCTGGCCAAGCGTGCCCGCGCCTCGGTGGACGACATCCTGACCATCCCGCTGGCGGTCAACCCGAACTGGACGCCCGAGCAGATCAAGCATGAACTGGACAACAATGCCCAGGGCATCCTTGGCTACGTAGTGCGCTGGATCGACCAGGGCGTGGGCTGCTCCAAGGTGCCGGACATCAACGACATCGGCCTGATGGAGGACCGTGCAACGCTGCGGATCTCCAGCCAGCACATCGCCAACTGGCTGCGCCATGGCATCGTCACCCGGGACCAGGTGATGGAAAGCCTCAAGCGCATGGCACCGGTAGTCGACCGCCAGAACGCCAGCGACCCGCTGTATCGCCCGCTGGCGCCAGACTTCGACAGCAACATCGCCTTCAAGGCGGCGGTCGAGTTGGTGATCGAAGGCACCAAACAACCGAACGGCTATACCGAGCCAGTGCTGCACCGTCGTCGTCGCGAGTTCAAGGCAGCCAATGGGTTGTGAMTEHVQVGGLQVAKVLFDFVNNEAIPGTGLTAEAFWAGADKVIHDLAPKNKALLAKRDDFQAQIDAWHQARAGQAHDAVAYKAFLQDIGYLLPEAADFQATTQNVDDEIARMAGPQLVVPVMNARFALNASNARWGSLYDALYGTDAISEADGAEKGKGYNKVRGDKVIAFARVFLDEAAPLAAGSHVDSIAYKIVDGKLVITLKGGSNSGLRDDAQLIGFQGDTSAPSAVLLKHNGLHFEIQIDASTPVGQTDAAGVKDILMEAALTTIMDCEDSVAAVDADDKVVIYRNWLGLMKGDLSEEVAKGGQTFTRIMNPDRVYTAADGSSVTLHGRSLLFVRNVGHLMTIDAILDKDGNEVPEGILDGLITSLAAIHSLNGNTSRRNSRTGSVYIVKPKMHGPEEAAFTNELFGRVEDVLNLPRNTLKVGIMDEERRTTVNLKACIKAASERVVFINTGFLDRTGDEIHTSMEAGPMVRKADMKAEKWIAAYENWNVDIGLSTGLQGRAQIGKGMWAMPDLMAAMLEQKIAHPMAGANTAWVPSPTAAALHALHYHKVDVFARQAELAKRARASVDDILTIPLAVNPNWTPEQIKHELDNNAQGILGYVVRWIDQGVGCSKVPDINDIGLMEDRATLRISSQHIANWLRHGIVTRDQVMESLKRMAPVVDRQNASDPLYRPLAPDFDSNIAFKAAVELVIEGTKQPNGYTEPVLHRRRREFKAANGLPGPT0001445_680DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-OXALACETIC_ACID_BIOSYNTHESIS,PGPT0001445-aceB|glcB-K01638NANA
D1-35_05106519hypothetical proteinATGGACCATCTCGTCATCACCGTTTTCGCCCCGGACAAACCCGGGCAGGTCGAGCGCATCGCTGAGTGCATTGCCGAGCACGGCGGCAACTGGCTGGAAAGCCGTATGTCGCACCTCGCCGGGCAATTCGCCGGGATCCTGCGCCTCAGCGCCCCGGCTGAATCTCATGAAGAACTGATCGAGGCTTTGCATGGGCTCGCGGCCTATGGCATTCGTGTGCTGATTGCCGAGAATGGGATCGAAGAATCCTGCACCTGGAAACCCATCGCCATGGAACTGGTGGGCAATGACCGTCCCGGCATCGTGCGCGACATCACGCGTCTGTTGAGCGAGCAGGGGGTGAACGTCGAGCGGCTGGTTACCCATGTTCGACCCGCGCCGATGAGCAGCGAATTGTTATTTCATGCCGAGGCGATTCTCGGAGTGCCCCTGACTTTGTCACTGGACACCCTGCAGGAGCGCCTGGAAACCCTGGCCGATGAATTGATGGTCGAGCTGAAACTCAGCGACGAAAGCTGAMDHLVITVFAPDKPGQVERIAECIAEHGGNWLESRMSHLAGQFAGILRLSAPAESHEELIEALHGLAAYGIRVLIAENGIEESCTWKPIAMELVGNDRPGIVRDITRLLSEQGVNVERLVTHVRPAPMSSELLFHAEAILGVPLTLSLDTLQERLETLADELMVELKLSDESNANANANANA
D1-35_05107888rarD_2COG2962Protein RarDATGCAAGCCGCCAACCCGCGTCGCGGGTACATCCTGGGCCTGAGCGCCTATATCATCTGGGGCCTGTTCCCCATCTATTTCAAAGCCATCGCCAACGTTCCATCGGTGGAAATCATCATCCACCGGGTACTCTGGTCGGCGCTGTTCGGCGCGGCCCTGCTGATGGTCTGGAAACATCCGGGCTGGTGGCGCGAGCTGCGGGACAATCCGCGGCGCCTGGCGATCCTGGCCCTGAGCGGCACGCTGATCGCCGTCAACTGGCTGACCTACGTCTGGGCGGTGAATAACGGTCGCATGCTCGAAGCCAGCCTGGGCTATTACATCAATCCGCTGGTCAACGTGTTGCTGGGCATGTTGATCCTCGGCGAGCGGCTGCGACGCATGCAATGGGTCGCGGTGGCGTTGGCAGCCATTGGCGTGGCGCAACAGGTCTGGCAGGTGGGCAGCCTGCCGTGGGTATCGCTGATGCTGGCGCTGACGTTTGGCTTCTACGGGTTGATCCGCAAGCAGGCGCCGGTCAAGGCCTTGCCAGGGCTGGTGGTGGAAACCTGGATGCTGGTACCGATTGCTATCGCATGGCTGCTGTTCAACCCGGCCGCCACCAGCGCCCAGGCGGCTTTCTGGACGACTTCCGAAGCCTGGTGGCTGGTGGCGGCCGGTCCCGTGACGCTGGTACCTCTGGTCTGCTTCAACGCGGCGGCGCGGCACCTGCCCTACACCACGCTGGGTTTCTTGCAGTACATCGCGCCGACGCTCGTCCTGCTGCTCGCGGTGCTTCTGTTTGACGAACATTTGTCGTCCAGCACGCTGGTGGCGTTCCTGTTCATCTGGGCCGGTCTGGCGGTGTACAGCATCGACGCGGTGGTCAGCATGCGCCGGCGCACCTGAMQAANPRRGYILGLSAYIIWGLFPIYFKAIANVPSVEIIIHRVLWSALFGAALLMVWKHPGWWRELRDNPRRLAILALSGTLIAVNWLTYVWAVNNGRMLEASLGYYINPLVNVLLGMLILGERLRRMQWVAVALAAIGVAQQVWQVGSLPWVSLMLALTFGFYGLIRKQAPVKALPGLVVETWMLVPIAIAWLLFNPAATSAQAAFWTTSEAWWLVAAGPVTLVPLVCFNAAARHLPYTTLGFLQYIAPTLVLLLAVLLFDEHLSSSTLVAFLFIWAGLAVYSIDAVVSMRRRTPGPT0003906_2374DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-MULTUDRUG_RELATED_REGULATION,PGPT0003906-rarD-K05786NANA
D1-35_05108975srkACOG2334Stress response kinase AATGTCCCATCCGTTTGAAACCCTTACGCCCGACCTGGTGCTCGATGCCGTTGAAAGCATCGGCTTTCTCAGCGACGCCCGCGTGCTGGCGCTCAACAGCTACGAAAACCGTGTCTATCAGGTCGGCATCGAAGACGCCGAACCGCTGATCGCCAAGTTCTATCGCCCCCAGCGCTGGACCAACGAAGCGATCCTGGAAGAACACCGCTTTACCTTCGAGCTGGCCGACTGCGAAGTGCCGGTGGTGGCGCCGCTGATCCATAACGGCGCCAGCCTGCATGAGCACGCCGGGTTTCGTTTCACCCTGTTCCCCCGTCGCGGCGGGCGGGCGCCGGAGCCAGGCAATCTCGACCAGCTCTATCGTCTGGGCCAGTTGCTCGGAAGGCTTCACGCGATCGGCGCGACCCGGCCATTCGAGCATCGCGAAGCACTGGGCGTGAGGAACTTCGGCCATGACTCGCTGGAGACCGTGCTGCAAAGCGGCTTTGTCCCCCGCAGCCTGCTGCCGGCCTACGAATCAGTGGCCAGGGATCTGCTCAAGCGTGTCGAAGATGCCTACGCCGCCACGCCCCACCAGAACATCCGCATGCACGGCGATTGCCATCCCGGCAACATGATGTGCCGCGACGAGGTGTTCCATATCGTCGACCTCGACGATTGCCGCATGGGCCCGGCCGTGCAGGATCTGTGGATGATGCTCGCCGGGGATCGGCAGGAATGCCTCGGACAGCTATCGGAATTGATGGACGGCTACCGGGAATTCCATGATTTCGACCCGCGCGAATTGGCCCTGATCGAACCGCTGCGCGCCCTGCGCCTGATGCACTACAGCGCCTGGCTGGCGCGCCGCTGGGATGACCCGGCGTTTCCACGAAGCTTCCCCTGGTTCGGCAGCGAACGTTACTGGGGCGACCAGGTGTTGGCGTTGCGCGAGCAACTGGCGGCGCTTCAGGAAGAGCCGTTGAAGCTTTTTTGAMSHPFETLTPDLVLDAVESIGFLSDARVLALNSYENRVYQVGIEDAEPLIAKFYRPQRWTNEAILEEHRFTFELADCEVPVVAPLIHNGASLHEHAGFRFTLFPRRGGRAPEPGNLDQLYRLGQLLGRLHAIGATRPFEHREALGVRNFGHDSLETVLQSGFVPRSLLPAYESVARDLLKRVEDAYAATPHQNIRMHGDCHPGNMMCRDEVFHIVDLDDCRMGPAVQDLWMMLAGDRQECLGQLSELMDGYREFHDFDPRELALIEPLRALRLMHYSAWLARRWDDPAFPRSFPWFGSERYWGDQVLALREQLAALQEEPLKLFNANANANANA
D1-35_051091902hypothetical proteinATGAGCCTATTAGAAGAAAACCAATCCACCGACCTGGAAAAGATCGTCGGCCTGAGCCGTCGCCGCTTCATCGGCGCAGGCGCTCTGTGCGGCGCGGCGATGTTCCTCGGCGGCAACCTGCTGAGCCGCAGCGTCATGGCCGCCGCCGTGAGCGAAGGCAACAAAAGGTTGCTGGGCTTTGACAGCATTGCCGCCGCCACGACCGACACCATTACCTTGCCGCCAGGCTACAAAGCCTCGGTGCTGATCAGTTGGGGCCAGCCACTGCAAAAAAATGCTCCGGCATTCGACCCCAGCGGCAATGGCACCGCCCGCGCCCAGGAAATGCAGTTCGGTGACAATAACGACGGCATGAGCCTGTTCCCGTTTCCCGGCGAGGACAACCGGGCGCTGATGGCGATCAACAACGAATACACCAACTACCGCTACCTCTTCCCCCATGGCGGCCAGCCGCAGTCCGCCGAAGACGTACACAAGGCCCAGGCCAGCGAGGGCGTGTCGGTCATCGAGATCCAGCGGCGCCGGGGCCAGTGGCAATTCGTCCAGGATTCACGCTACAACCGCAGGATCCATGGCAACACGCCGATTCGCCTGGGCGGCCCGGCTGCCGGTCACGACCTGATGAAAACCAGCGCCGACAAGAGCGGCAAAAAAGCGCTGGGGACGTTCCAGAACTGCGCCAACGGCATGACGCCGTGGGGCACCTACCTGACCTGTGAAGAAAACTTCACCGACTGCTTCGGCAGCAGCAACGCTGATCTGAAGTTCGATGAGGCGCAAAAGCGCTACGGCGCTACCGTCACCAGCCGCGAAATCAACTGGCACCTGTTCGATCCGCGTTTCGACCTGGCGAAAAACCCCAACGAGCTCAATCGTCACGGCTGGGTGGTTGAAATCGACCCGTTCGATCCAAAGTCCACGCCAGTGAAACGCACCGCCCTGGGCCGCTTCAAACACGAAAACGCCGCGCTGGCGAAAACCCGTGACGGGCGCGCCGTTGTGTACATGGGCGATGACGAGCGTGGCGAGTTCATCTACAAGTTCGTCAGCCGCGATCGCATCGACCGCCGCAATCCCAAGGCCAACCGCGACCTGCTGGACCACGGCACGTTGTACGTGGCGCGCTTCGACGCCGGCGACGGCAACCCGGACCATCCGAAAGGCAAGGGCCAGTGGATCGAACTGACCCATGGCAAGAATGGCCTCGACGCCGGCAAGGGCTTCAATGACCAGGCTGAAGTGCTGATCCATGCGCGCCTGGCCGCCACCGCCGTTGGCGCCACCCGCATGGACCGCCCGGAGTGGATCGTGGTGAGTCCGAAGGATGGCCAGGTCTATTGCACCCTGACCAACAACTCCAAGCGCGGCGAAGAAGGCCAACCGGTGGACGGGCCCAACCCTCGGGCCAAAAACGTCTACGGGCAGATTCTGCGCTGGCGCACCGACCGCGACGATCACGCCTCCAAGACCTTCGAGTGGGATCTGTTCGTGGTCGCCGGTAACCCGACGGTGCATGCCGGCACGCCCAAAGCCGGATCGTCCAACGTCAATGCGCAGAACATGTTCAACAGCCCCGACGGCCTGGGCTTCGACAAAGCCGGCCGGCTGTGGATCCAGACCGATGGCGACTCAAGCAACGCCGGGGATTTCGCCGGCATGGGCAACAACCAGATGCTCTGCGCCGACCCCAACAGCGGTGAGATCCGCCGCTTCATGGTCGGACCGGTGGGTTGTGAGGTCACCGGGATCAGCTTCGCGCCGGACTACAAGACCTTGTTCGTGGGCATCCAGCACCCTGGGGAAAACGGCGGTTCGACGTTCCCCGAGCACCTGCCCAATGGCAAGCCACGGTCGTCAGTGATGGTGATTACGCGCGAGGATGGCGGGATCATCGGCGGCTGAMSLLEENQSTDLEKIVGLSRRRFIGAGALCGAAMFLGGNLLSRSVMAAAVSEGNKRLLGFDSIAAATTDTITLPPGYKASVLISWGQPLQKNAPAFDPSGNGTARAQEMQFGDNNDGMSLFPFPGEDNRALMAINNEYTNYRYLFPHGGQPQSAEDVHKAQASEGVSVIEIQRRRGQWQFVQDSRYNRRIHGNTPIRLGGPAAGHDLMKTSADKSGKKALGTFQNCANGMTPWGTYLTCEENFTDCFGSSNADLKFDEAQKRYGATVTSREINWHLFDPRFDLAKNPNELNRHGWVVEIDPFDPKSTPVKRTALGRFKHENAALAKTRDGRAVVYMGDDERGEFIYKFVSRDRIDRRNPKANRDLLDHGTLYVARFDAGDGNPDHPKGKGQWIELTHGKNGLDAGKGFNDQAEVLIHARLAATAVGATRMDRPEWIVVSPKDGQVYCTLTNNSKRGEEGQPVDGPNPRAKNVYGQILRWRTDRDDHASKTFEWDLFVVAGNPTVHAGTPKAGSSNVNAQNMFNSPDGLGFDKAGRLWIQTDGDSSNAGDFAGMGNNQMLCADPNSGEIRRFMVGPVGCEVTGISFAPDYKTLFVGIQHPGENGGSTFPEHLPNGKPRSSVMVITREDGGIIGGNANANANANA
D1-35_05110765modECOG2005DNA-binding transcriptional dual regulator ModEATGTCATTGCCTACGCTGTTGAGCCAACATATCGTCCGCCGTCCACAACGCATCGCCCTGTTACAGCACATCGCCGAACAGGGTTCCATCACGCGGGCCGCCAAAAGCGCCGGGCTGAGCTACAAGGCGGCCTGGGATGCGATCGATGAGTTGAACAACCTGGCGGACCGGCCATTGGTCGAGCGCAGCGTTGGCGGCAAGGGTGGCGGCGGCGCGAAACTGTCGGAAGAAGGCCTGCGCGTGCTGCGTCTTTATCAGCGTTTGCAGGTATTGCAGGCGCAGTTGCTGGAAGCGAGCGAGGACGCCGCTGACCTGGGCCTGCTCAGCCGCCTGATGTTGCGCACCAGCGCGCGCAACCAACTGCATGGCAAGGTCGTCGGCATCCAGGCCCAGGGCCACAACGACCGGATACACCTGGAACTGGCGCGCGGTTTGCTCATCGACGCGCAGATCACCCACGACAGCACGCTGCGCCTGGAGCTGGGCCTCGGTACCGAAGTGGTGGCCCTGATCAAGGCCGGCTGGCTGACGTTGTATCCACTCGACCAGCCGGACGATTGCTCGGCCAACAGTCTGCAAGGCGTGATCGAGCACATCGCGGTCGCTGCGGATGGCCCCAATGAAGTGCGCATCGGCTTGCCCAACGGCCAGACGTTGTGTGCCCTTGCAGACCCGCTTGAGCTGGTTGAACGAAACCTCGACGCCGGCTCACCGGTGCAAGTGCGTTTTTCCCCTGCAAATGTGCTACTCGGCACACCGTTGTAGMSLPTLLSQHIVRRPQRIALLQHIAEQGSITRAAKSAGLSYKAAWDAIDELNNLADRPLVERSVGGKGGGGAKLSEEGLRVLRLYQRLQVLQAQLLEASEDAADLGLLSRLMLRTSARNQLHGKVVGIQAQGHNDRIHLELARGLLIDAQITHDSTLRLELGLGTEVVALIKAGWLTLYPLDQPDDCSANSLQGVIEHIAVAADGPNEVRIGLPNGQTLCALADPLELVERNLDAGSPVQVRFSPANVLLGTPLPGPT0000520_941DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN-MOLYBDENUM_COFACTOR_METABOLISMPLANT_VITAMIN-MOLYBDENUM_COFACTOR_TRANSPORT,PGPT0000520-modE-K02019NANA
D1-35_05111741hypothetical proteinATGCGCTGTCAACCACGATACAAAGGTCCGGTTTACATCTGGTTAAAAAACAAACAGCTCTGTCTGCTGTGCGGCGAACCCACCGACACCTTGCAACCCATCTGCACCCCTTGCGAAAGCGAACTGCCCTGGCTCGGCGAGCATTGCGCCGTTTGCGCCCTGCCGCTGCCCATGGCCGGGCTCCGTTGCGGCCAATGCGCCGCGCGGCCTCCGGCTTTCGAGCGAGTCCTGGCGCCATGGGCCTACGACTTTCCGGTGGACAGCCTGATTACGCGCTTCAAGCACCAGGCAAAATGGCCCCTCGGTCGACTGCTTGGCGAGTTGCTGGCGCAATCGCTGCAGCATCATTTCGACGAAGGCCTGGAGCGGCCCGATGCGCTGGTGCCAGTGCCGCTGGCGTCACGCCGCTTGCGCCAGCGCGGCTTCAACCAGGCGACGCTGCTGGCCCGCTGGCTCAGCGCAGCGCTGCGGATCCCTTGCGAAGACGACCTGCTGCTGCGCATTCAGGATACCCCGGCCCAACAGGTCCTGGACGCCCGGGCCCGGCGCCGGAACCTGCGCCAGGCCTTTGCCTTAGCGCCCCGCGCGGTGTTGAACAACCGTCACCTGGCGCTGGTCGATGATGTACTCACCACCGGCGCCACGGCGCAGGCACTGGCCCGGTTGCTGCTCGATGCCGGTGCCGCACGGGTCGATGTGTATTGCCTGGCGCGCACGCCGAAACCCGGTGATCCGGCTTGAMRCQPRYKGPVYIWLKNKQLCLLCGEPTDTLQPICTPCESELPWLGEHCAVCALPLPMAGLRCGQCAARPPAFERVLAPWAYDFPVDSLITRFKHQAKWPLGRLLGELLAQSLQHHFDEGLERPDALVPVPLASRRLRQRGFNQATLLARWLSAALRIPCEDDLLLRIQDTPAQQVLDARARRRNLRQAFALAPRAVLNNRHLALVDDVLTTGATAQALARLLLDAGAARVDVYCLARTPKPGDPANANANANANA
D1-35_051121056bioBCOG0502Biotin synthaseATGAGCGCCAGCACCACTGCCAACCTGCGTCATGACTGGTCTTTGGCCGAAGTCAAAGCACTCTTTGTCCAGCCATTCAATGACCTGCTCTTCCAGGCGCAGACCGTGCACCGCGCGCACTTCGATGCCAACCGCGTCCAGGTGTCGACCCTGCTGTCGATCAAGACCGGCGCCTGCCCGGAAGATTGCAAATATTGTCCGCAGTCCGGCCACTACAACACCGGGCTGGAAAAAGAGAAGTTGCTCGAAGTGCAGAAGGTCCTTGAAGAGGCCGCGCGCGCCAAGGCCATCGGTTCGACCCGTTTCTGCATGGGCGCGGCGTGGAAACATCCGTCGGCCAAGGACATGCCTTACGTGCTGGAGATGGTCAAGGGGGTCAAGGCCATGGGCCTGGAGACCTGCATGACCCTGGGGCGTCTCGACCAGGAGCAGACCGAAGCGCTGGCCCAGGCCGGCCTGGATTATTACAACCACAACCTCGACACCTCGCCGGAGTTCTACGGCAGCATCATCACCACCCGCACCTACAGCGAGCGCCTGCAAACCCTGGCGTATGTACGTGATTCGGGGATGAAGATCTGTTCCGGCGGGATCCTGGGCATGGGCGAGTCCCTGGACGACCGCGCCAACCTGCTTATCCAGCTGGCCAACCTGCCGGAGCATCCAGAGTCGGTGCCGATCAACATGCTGGTGAAAGTCGCCGGCACGCCGCTGGAAAATGCCGAGGACATCGACCCGTTCGATTTCATCCGCATGCTCGCCGTGGCGCGCATCCTCATGCCGAAATCCCATGTGCGCTTGTCCGCTGGCCGCGAAGCCATGAACGAGCAGATGCAGGCCCTGGCGTTCTTCGCTGGCGCCAACTCGATTTTCTACGGCGACAAATTGCTGACCACCGCCAACCCGCAGGCCGACAAGGACATGCAACTGTTTGCGCGCTTGGGCATCCAGCCAGAAGCTCGCGAAGAGCATGCCGATGAAGTGCATCAGGCGGCCATCGAGCAGGCGCTGGTGGAGCAGAAGAGCAGCGAGCAGTTCTATAACGCCGCTGTTTGAMSASTTANLRHDWSLAEVKALFVQPFNDLLFQAQTVHRAHFDANRVQVSTLLSIKTGACPEDCKYCPQSGHYNTGLEKEKLLEVQKVLEEAARAKAIGSTRFCMGAAWKHPSAKDMPYVLEMVKGVKAMGLETCMTLGRLDQEQTEALAQAGLDYYNHNLDTSPEFYGSIITTRTYSERLQTLAYVRDSGMKICSGGILGMGESLDDRANLLIQLANLPEHPESVPINMLVKVAGTPLENAEDIDPFDFIRMLAVARILMPKSHVRLSAGREAMNEQMQALAFFAGANSIFYGDKLLTTANPQADKDMQLFARLGIQPEAREEHADEVHQAAIEQALVEQKSSEQFYNAAVPGPT0022120_1237DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022120-bioB-K01012NANA
D1-35_051131179bioFCOG01568-amino-7-oxononanoate synthaseATGCCCTTCGATCTTGCCGCACGCCTGGCTGCCCGTCGTGCCGAAAACCTCTATCGCCAGCGTCCGCTGCTTGAAAGCCCCCAAGGCCCGCAAGTGGTGGTGGACGGCCAGCCGTTGCTGGCGTTCTGCAACAACGACTACCTGGGCCTGGCCAATCACCCGCAGGTGATCGAGGCCTGGCGTGCCGGCGCGTCGCGTTGGGGCGTCGGTGGTGGTGCGTCGCATCTGGTGATCGGCCACAGCGGCCCTCATCACGCCGTGGAAGAAGCGCTGGCCGACTTGACCGGCCGGCCCCGGGCACTGTTATTCACCACCGGCTACATGGCCAACCTTGGTGCCGTCACGGCGCTGGTCGGACAGGGCGACACGGTGTTGCAGGACCGGCTCAACCACGCCTCGTTGCTCGACGCCGGGCTGTTGTCCGGTGCCCGTTTCAGCCGTTACTTGCACAACGATGCCCAAAGCCTGGCGACCCGCCTGGAAAAAGCCATCGGCAATACCCTGGTGGTCACTGACGGCGTGTTCAGCATGGACGGCGACATCGCCGACCTGCCGGCTCTCGCCCGCGCAGCACGGGCCAAGGGCGCCTGGCTGATGGTCGACGATGCCCATGGCTTCGGCACGCTGGGTACCACCGGCGGCGGCGTCGTCGAGCATTTCGGCCTGAGCCAGGAAGACGTACCGGTGCTGGTGGGGACGCTGGGCAAGGCGTTCGGCACCGCCGGGGCCTTTATTGCTGGCAGCGAAGAATTGATCGAAAGCCTGATCCAGTTCGCCCGCCCCTACATCTACACCACCAGCCAGCCGCCGGCGTTGGCCTGCGCCACGCTCAAGAGCCTTGAGTTGCTGCGTAGCGAGCATTGGCGGCGTGAGCATCTGCAACTGCTGATCCGCCAGTTCCGCCACGGTGCCGAGCAGATCGGCTTGCAATTGATGGACAGTTTCACGCCGATCCAACCCATCCTGATCGGTGATGCGGGACGGGCGATGCGGCTGTCGCTGATGCTGCGCGAGCGCGGGCTGATGGTCACCGCAATCCGGCCACCCACCGTGCCGGCCGGCAGCGCTCGGCTGCGTGTGACGTTGACCGCTGCCCACAGCGAAGCCCAGGTACAACTCTTGTTGAATGCACTGGCCGACTGTTTTGCACAACTGGGAGCGGAGCCAAGCCATGCGTGAMPFDLAARLAARRAENLYRQRPLLESPQGPQVVVDGQPLLAFCNNDYLGLANHPQVIEAWRAGASRWGVGGGASHLVIGHSGPHHAVEEALADLTGRPRALLFTTGYMANLGAVTALVGQGDTVLQDRLNHASLLDAGLLSGARFSRYLHNDAQSLATRLEKAIGNTLVVTDGVFSMDGDIADLPALARAARAKGAWLMVDDAHGFGTLGTTGGGVVEHFGLSQEDVPVLVGTLGKAFGTAGAFIAGSEELIESLIQFARPYIYTTSQPPALACATLKSLELLRSEHWRREHLQLLIRQFRHGAEQIGLQLMDSFTPIQPILIGDAGRAMRLSLMLRERGLMVTAIRPPTVPAGSARLRVTLTAAHSEAQVQLLLNALADCFAQLGAEPSHAPGPT0022095_1896DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022095-bioF-K00652NANA
D1-35_05114732bioHPimeloyl-[acyl-carrier protein] methyl ester esteraseATGCGTGATCGATTGATATTGCTGCCCGGCTGGGGCTTGGGCATCTCGCCCCTCGAACCGCTGGCGGCGGCCCTGCAAGGGCTCGACGAGCACTTGCAAGTGGAAATCGAGCCATTGCCTGCACTGGTGTCGAGCGACCTCGGTGAATGGCTCGATGAGCTGGATGCCACGTTGCCCCAGGATGCCTGGCTGGGCGGCTGGTCCCTGGGCGGGATGCTGGCCGCGGAACTGGCGGCGCGTCGGGGCGAGCGCTGCTGTGGCCTGTTGACCCTGGCGAGCAACGTGTCGTTTGTCGCCCACGAGCATTGGCCGAGCGCGATGCCCGGTGAAACCTTCGATGGATTTCTCGCCGGATGCGCCGCCGATCCGCGCCAGACCCTCAAACGCTTCAGCTTGCTGTGTGCGCAAGGCTGCGGCGACCCGCGCGGGTTGTCGCGATTGCTGCTGGCCGGCGCGCCGAACACGTCGCCTGAGGTATTGATGGCCGGGCTCGAGCTGCTGGCGCGACTGGACATGGGGGTTGCCTTGCAGGGTTTTCGAGGCCCGCAATTGCATCTGTTTGCCGGGCTCGACGCGCTGGTGCCTGCCGAGGCTGCGGGAGAACTGCTGGCGATGCTGCCAGATGTCGAAATCGGTCTGATTGAACAGGCCGGCCACGGATTCCCACTGGAGGACCCCCACGGCGTGGCGGGGGCGATCCAGGCTTTTCTGCATGAGTCCGGTGATGACTGAMRDRLILLPGWGLGISPLEPLAAALQGLDEHLQVEIEPLPALVSSDLGEWLDELDATLPQDAWLGGWSLGGMLAAELAARRGERCCGLLTLASNVSFVAHEHWPSAMPGETFDGFLAGCAADPRQTLKRFSLLCAQGCGDPRGLSRLLLAGAPNTSPEVLMAGLELLARLDMGVALQGFRGPQLHLFAGLDALVPAEAAGELLAMLPDVEIGLIEQAGHGFPLEDPHGVAGAIQAFLHESGDDPGPT0022065_953DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022065-bioH-K02170NANA
D1-35_05115813bioCMalonyl-[acyl-carrier protein] O-methyltransferaseATGACTGATTTATCTGTTGTGAAGTTGCCGGGCGCCTTGCCCGACAAACGTCAGGTCGCGGCCTCGTTCTCCCGGGCGGCGGCCAGCTATGACAGCGTCGCTGAACTGCAGCGCGACGTCGGACAGCAATTGCTGTCGCGGCTGCCCGTCTCGTTTATGCCGGGACGCTGGTTGGACATGGGTTGTGGCACCGGTTATTTCACCCGCGCCCTTGGTGCGCGGTTCGGTGAGAGGGCGGGTGTTGCGCTGGATATCGCCGAAGGCATGCTCAACCACGCCCGTCCTCAAGGCGGCGCCGCGCATTTCATCGCCGGTGATGCCGAGCGGCTGCCGTTGCAGTCGGCCAGCTGTGACCTGGTGTATTCCAGCCTCGCGGTGCAATGGTGTGGCGATTTTGCCTCGGTATTGAGCGAGTCCTATCGTGTTCTGAAACCCGGTGGGATGTTTGCCTTCACCAGCCTGTGTGTCGGCACGTTATACGAGTTGCGCGACAGCTGGCGTGAAGTGGATGGCCTGGTACACGTCAACCGTTTCCGCGCATTCGATACCTATAGACAGCTGGCCGACGCCAGCGGGTTGCGCGTCGTCAGCCTGGAGAATCGCCCGCATGTTCTGCATTACCCCGATGTACGTGCCCTGACCCACGAATTGAAAGCATTGGGTGCGCACAATCTGAATCCTGGTCGTCCCGGTGGGTTGACGGGCAGGGCGAGAATTTTCGCGCTGGTCCAGGCCTATGAAAAATATCGCCAGGCCCAGGGCCTGCCGGCCACTTACCAGGTGGTCTACGCCGTGCTGGAGAAACCGCTATGAMTDLSVVKLPGALPDKRQVAASFSRAAASYDSVAELQRDVGQQLLSRLPVSFMPGRWLDMGCGTGYFTRALGARFGERAGVALDIAEGMLNHARPQGGAAHFIAGDAERLPLQSASCDLVYSSLAVQWCGDFASVLSESYRVLKPGGMFAFTSLCVGTLYELRDSWREVDGLVHVNRFRAFDTYRQLADASGLRVVSLENRPHVLHYPDVRALTHELKALGAHNLNPGRPGGLTGRARIFALVQAYEKYRQAQGLPATYQVVYAVLEKPLPGPT0022060_869DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022060-bioC-K02169NANA
D1-35_05116681bioD1COG0132ATP-dependent dethiobiotin synthetase BioD 1ATGAGCCAGGCTTATTTCATCACCGGCACCGACACGGACGTGGGCAAGACCACTGTTGCGGCGGGGTTGCTGCACGCGGCCAGGCGGGCCGGCATGAGCACCGCCGCGGGCAAGCCCGTAGCCTCTGGTTGCGCAGTGACGCCCAAGGGCCTGCGCAACGCCGATGCCTTGGCCCTGTTGGCCGAATGTTCGGTGCCATTGACTTATGCACAGGTCAATCCGGTGGCATTCGAACCGGCGATCGCACCTCACCTGGCCGCTCGGGAAGCTGGCGTGGCCTTGACCGTGCAATCCTTGCTCGGGCCGATGCGCGAGGTGCTGGCTCTGGATGCGGATTTCACCTTGATCGAAGGCGCGGGCGGCTGGCGTGTGCCGCTGGCCGGGCAAGACAATCTTTCCGACCTTGCGATAGCGTTGGGCCTGCCGGTGATCCTGGTGGTTGGGGTACGCCTGGGCTGCATCAGCCACGCGTTGCTGACCGCCGAGGCTATCGCGCGGGACGGCTTGCCATTGGCCGGCTGGGTAGCAAACATCATCGATCCGGCGACGTCGCGCATGGAAGAAAACCTCGCGACCCTCGCCGAACGCCTGCCGGCGCCCTGCCTGGGCAGAGTCGCGCGAATCAAGGACGTGACGGCCGAAGCGGTGGCCGAACATCTGCAGCTGGATCTGCTGGACTGAMSQAYFITGTDTDVGKTTVAAGLLHAARRAGMSTAAGKPVASGCAVTPKGLRNADALALLAECSVPLTYAQVNPVAFEPAIAPHLAAREAGVALTVQSLLGPMREVLALDADFTLIEGAGGWRVPLAGQDNLSDLAIALGLPVILVVGVRLGCISHALLTAEAIARDGLPLAGWVANIIDPATSRMEENLATLAERLPAPCLGRVARIKDVTAEAVAEHLQLDLLDPGPT0022115_2012DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0022115-bioD-K01935NANA
D1-35_05117297hypothetical proteinATGGAAATCTCAGGAAACACCGCGTTCTATGCCGGTCTGAGCACGATTCAGACAGGGCAGTACCGCGTTGATCAGGCCTCCAGCCAGATTGCCAACACCACGATCGAGCGCTCGGTCACCAGCCAGTCCTCCGACGTTCAGGTGGATCGCCTGCGTTCGGTGGATCGCAGTCAGCAATCGGACCTGACCAGCAACATGGTCGAAATGGCCCAAGGCAAGTTCCAGGTGCAACTGGGGGTGAACGTTGCCAAGGCTTCCGACGAAATGCTCGGAACGTTGATCGATACGTTCGCCTGAMEISGNTAFYAGLSTIQTGQYRVDQASSQIANTTIERSVTSQSSDVQVDRLRSVDRSQQSDLTSNMVEMAQGKFQVQLGVNVAKASDEMLGTLIDTFANANANANANA
D1-35_051181806dmdC_2COG19603-methylmercaptopropionyl-CoA dehydrogenaseATGCCTGACTACAAGGCCCCCTTGCGTGATATTCGCTTCGTTCGTGACGAACTGCTCGGCTACGAAGCGCATTATCAGAGCCTTCCAGCGTGCCAGGAGGCAACTCCGGACATGGTTGACGCCATCCTCGAAGAAGGCGCCAAGTTCTGTGAGCAGGTGCTGGCGCCGCTGAACCGCGTGGGTGATCTCGAAGGTTGCACCTGGAGCGAGTCCGGCGTGAAAACCCCGACCGGCTTCAAGGAAGCCTACAAGCAATTTGTCGAAGGCGGCTGGCCGAGCCTGGCCCATGACGTGGCGCACGGTGGCCAAGGCCTGCCGGAATCCCTGGGCCTGGCAGTCAGCGAGATGGTCGGCGAAGCCAACTGGTCGTGGGGCATGTACCCGGGCCTGTCCCATGGCGCGATGAACACCATTTCCGAGCACGGTACCCCCGAGCAGCAAGAGGCTTACCTGACCAAGCTGGTATCCGGCGAATGGACCGGCACCATGTGCCTGACCGAACCGCACTGCGGCACCGACCTGGGCATGTTGCGCACCAAGGCCGAACCTCAGGCCGACGGCTCCTACAAAGTGACCGGCACCAAGATCTTCATCTCGGCCGGCGAACACGACATGGCCGACAACATCGTCCACATCGTGCTGGCGCGCCTGCCGGACGCACCGGCTGGCACCAAAGGTATCTCGCTGTTCATCGTTCCGAAATTCCTGCCTGAGGCCGACGGCTCAATCGGCCAGCGCAACGCAGTCAGCTGTGGCTCCCTGGAACACAAGATGGGCATCCACGGCAACGCCACCTGCGTGATGAACTTCGACGCGGCCACCGGTTTCCTGATCGGCCCGGCGAACAAAGGCCTGAATTGCATGTTCACCTTCATGAACACCGCTCGCCTGGGTACCGCGCTGCAAGGCCTGGCCCACGCCGAAATCGGTTTCCAGGGTGGCCTGAAGTACGCTCGCGACCGCCTGCAGATGCGTTCCCTGACCGGCCCGAAAGCACCGGACAAGGCCGCCGACCCGATCATCGTGCACCCTGACGTGCGTCGCATGTTGCTGACCATGAAAGCCTTCGCCGAGGGCAACCGGGCGATGGTGTACTTCACCGCCAAGCAGGTCGACATCGTCAAGTATGGTGTGGACGAAGAAGAGAAGAAGAAGGCTGACGCCCTGCTGGCGTTCATGACCCCGATCGCCAAGGCGTTCATGACCGAAGTCGGCTTCGAATCGGCCAACCACGGCGTGCAGATCTACGGCGGCCACGGCTTCATCGCCGAGTGGGGCATGGAGCAGAACGTGCGCGACAGCCGCATCTCGATGCTGTACGAAGGCACCACCGGCATCCAGGCGCTCGACCTGCTGGGCCGTAAAGTGCTGATGACCCAGGGCGAGGCGCTCAAGGGCTTCACCAAGATTGTCCACAAGTTCTGCCAGGGCAACGAAGGCAACGAAGCCGTCAAGGAATTCGTCGAGCCGTTGGCTGCACTGAACAAGGAATGGGGCGAACTGACCATGAAGGTCGGCATGGCCGCCATGAAGGATCGCGAAGAAGTCGGCGCGGCCTCGGTGGACTACCTGATGTACTCCGGTTACGCCTGCCTGGCTTACTTCTGGGCCGACATGGCGCGCCTGGCTGCGGAAAAACTGGCGGCCGGCACGACCGAAGAAGCGTTCTACACCGCCAAGCTGCAGACCGCGCGCTTCTACTTCCAGCGCATCCTGCCGCGCACCCGCACCCACGTGGCGACCATGTTGTCGGGCGCCAACAACCTGATGGACATGAAAGAAGAAGACTTCGCGCTGGGCTACTAAMPDYKAPLRDIRFVRDELLGYEAHYQSLPACQEATPDMVDAILEEGAKFCEQVLAPLNRVGDLEGCTWSESGVKTPTGFKEAYKQFVEGGWPSLAHDVAHGGQGLPESLGLAVSEMVGEANWSWGMYPGLSHGAMNTISEHGTPEQQEAYLTKLVSGEWTGTMCLTEPHCGTDLGMLRTKAEPQADGSYKVTGTKIFISAGEHDMADNIVHIVLARLPDAPAGTKGISLFIVPKFLPEADGSIGQRNAVSCGSLEHKMGIHGNATCVMNFDAATGFLIGPANKGLNCMFTFMNTARLGTALQGLAHAEIGFQGGLKYARDRLQMRSLTGPKAPDKAADPIIVHPDVRRMLLTMKAFAEGNRAMVYFTAKQVDIVKYGVDEEEKKKADALLAFMTPIAKAFMTEVGFESANHGVQIYGGHGFIAEWGMEQNVRDSRISMLYEGTTGIQALDLLGRKVLMTQGEALKGFTKIVHKFCQGNEGNEAVKEFVEPLAALNKEWGELTMKVGMAAMKDREEVGAASVDYLMYSGYACLAYFWADMARLAAEKLAAGTTEEAFYTAKLQTARFYFQRILPRTRTHVATMLSGANNLMDMKEEDFALGYPGPT0008385_210DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008385-acd-K00249NANA
D1-35_051191290hypothetical proteinTTGCCGCGTCTTTCCGTAATGCGCTTCAGCCATTTCCTACCGTCGACAGTGCTTTTACTGGCGGGGCTCGCGGCTGCCTACGTCAAGGACCTGAACGTCTTCTTCACCTCATTGTTCAACGTGCTTCCTACGCTGGTGTTGTTGTTGGGCGGGGCGTACTGCTCCGTTTACCGACGTCAGCGCGAACTGTTTCTGATGGTCACGGTGTACATCGCTTATTTCCTGCTGGATACCCAGACCGACTTCTATCGCGATAACGGCAAGGTGCGCGAAGACGCGGCGGTGGTGTTCCATCTGGTCTGCCTGCTGCTGCCGCTGTTGTTCGGGCTGTTCGCGGCGTGGCAGGAGCGCACGCATCTGTTCCAGGACATGGTGGCGCGTTTCGCGGTGCTACTGGCCTTTGGTGGCGTAGCCCTGGCCCTGGAGCAAAGCTTTCCCCAGGCCCTGCTGCTGTGGCTTTCGGAAATACGCTGGCCGGCGCTGCATGGCGCCTGGATGAGCCTGATCCAATTGTCATACCCGGTGTTTGCCGCTGCGTTCGTGCTGCTGGCCTGGCAATACTGGCGTAACCCACGACCCTTGCATGCGGCGCAGCTGGTGGGGTTGGTCGGGCTGTTCTGGATGCTGCCGAAGACGTTCATCCTGCCGTTCACCCTGAACATCATGTGCAGCCAGGTGATGCTGATGATCGCCGCCGCGGTTGCTCACGAGGCCTACCAGATGGCCTTCCGCGATGAGCTCACCGGCCTGCCGGGGCGCCGGGCGCTGAATGAACGCATGCAGCGCCTGGGTCGAAACTACGTGCTGGCGATGAGCGACGTGGATCACTTCAAGAAATTCAACGACACCCACGGTCACGATGTCGGCGATCAGGTGCTGCGCCTGGTGGCCAGCAAGCTGTCGAAAATCGGTGGGGGCGGCAGGGCTTATCGTTACGGCGGCGAGGAGTTTGCGCTGGTGTTTGCCGGCAAGACCATTGATGAATGCATGCCTCATCTGGAAGTCATCCGCCAGTCCATCGAGACGTACGCCATTCAACTGCGTAATCCCGACAATCGCCCTCAGGACGATCAGCAAGGTCGCCAGCGTCGCTCCGGCAGCGGCGCCACCAGCGTATCGGTGACCGTCAGCATCGGCGTGGCCGAACGCGTGGACCAGCGCACGCCCGAGGAAGTGCTCAAGTCCGCCGACCAGGCGCTCTACAACGCCAAAGGGGCGGGGCGCAATTGTGTAATTGCCTTCGGCCAGAATCGTCGCGGCGCAGTGCGCATGGAGGCTGCCGCGGGTTGAMPRLSVMRFSHFLPSTVLLLAGLAAAYVKDLNVFFTSLFNVLPTLVLLLGGAYCSVYRRQRELFLMVTVYIAYFLLDTQTDFYRDNGKVREDAAVVFHLVCLLLPLLFGLFAAWQERTHLFQDMVARFAVLLAFGGVALALEQSFPQALLLWLSEIRWPALHGAWMSLIQLSYPVFAAAFVLLAWQYWRNPRPLHAAQLVGLVGLFWMLPKTFILPFTLNIMCSQVMLMIAAAVAHEAYQMAFRDELTGLPGRRALNERMQRLGRNYVLAMSDVDHFKKFNDTHGHDVGDQVLRLVASKLSKIGGGGRAYRYGGEEFALVFAGKTIDECMPHLEVIRQSIETYAIQLRNPDNRPQDDQQGRQRRSGSGATSVSVTVSIGVAERVDQRTPEEVLKSADQALYNAKGAGRNCVIAFGQNRRGAVRMEAAAGNANANANANA
D1-35_051201797dmdC_3COG19603-methylmercaptopropionyl-CoA dehydrogenaseATGCCCGAGTACAAAGCCCCGCTGCGCGACATGCGTTTCCTGATCGACAACGTCTTTGATTTCCACGGCCGTTATGCCGAGTTGGGGGCCAGCGACGCCAGTCCGGACATGGTCAGCGCCATCCTCGAAGAAGGTGCCCGGTTCTGTGAGAACGTGCTGGCTCCGCTCAATCGTCCGGGTGACGAAGAGGGCTGCCATTTCGATAACGGCGTGGTCACTACACCTGCAGGCTTCAAGCAAGCTTTCGCACAGTATGTGGAAGGCGGCTGGCACGGCCTGGCAGCGGATCCGGCTTATGGCGGCCAAGGCCTGCCCAGCTCGCTGGGGCTGGTGATCAGCGAAATGATCGGGTCGAGCAATACCTCCTGGGGCATGTACCCCGGCCTGACCCACGGCGCCATGTCGGCCATCCACGCTCACGGCACCGAACAGCAGAAACAGACCTACCTCAACAAGCTCACCGCCGGCCAGTGGACCGGCACCATGTGCCTGACCGAAGCCCACTGCGGCACGGACCTGGGCATCATTAAGACCCGCGCCGTGCCTCAGGCGGATGGCAGCTACGCGGTGACCGGCAGCAAGATCTTCATCAGCGCCGGCGAGCACGACATGAGCGACAACATCATTCACCTGGTGCTCGCCAAATTGCCGGATGCTCCCGCCGGGACCAAAGGCATCTCGTTGTTCATCGTGCCCAAGTTCCTGCCCGATGCAGCGGGCGAGGCCGGTGAGCGCAATGGTGTTTCCTGCGGTTCGATCGAGCACAAGATGGGCATCAAGGCGTCGGCCACGTGCGTGCTGAACTTCGATGGGGCCAAGGGTTTCCTGATCGGCGAACCGAACAAGGGCCTCAACTGCATGTTCACCATGATGAACCACGCCCGCCTCGGTACCGGCATGCAGGGCCTGTGCCTCGGCGAAGCGAGCTTCCAGGGTGCGATCAAATACGCCAACGATCGCCTGCAGATGCGCTCTTTGACCGGCCCCAAGGCGCCGGAAAAAGTCGCCGACCCGATCATTGTCCATCCCGATGTACGCCGGATGCTGCTGACCATGAAAGCCTTCAATGAAGGCAATCGGGCGCTGACCTATTTCACCGCGCAACTGCTCGATACCGCGCATTTGAGCCGCGACGAAAGCGCCCGCCAGGAGGCGGAAGACCTGCTGGCCTTCCTCACCCCGATCTGCAAGGCCTTCATGACCGACACGGGTTTGGAAGTGACCAACCACGGCATGCAGGTCTTTGGCGGTCATGGCTTCATTCGTGAGTGGGGCATGGAGCAGCTGGTGCGTGATTGCCGGATCGCGCCGATCTATGAAGGCACCAACGGCATCCAGGCCCTGGACCTGCTGGGGCGCAAAGTGCTGGGTAGCCAGGGCAAGTTGCTGCGCGGTTTCACCAGAATCGTTCACAAATTCTGCGCTGCCAATGCCGGGCATCCGCAGCTCCAGGCTTTCATTGCGCAACTGGACGGGCTCAACCAGCAATGGGGCGAACTGACGACGCAGGTCGGCATGGCCGCCATGAAAAATCCGGATGAGGTGGGCGCCGCTTCGGTGGATTACCTGATGTACAGCGGCTATATCATTCTGGCCTATCTGTGGTTGCGCATGGCGTTGGTGGCCCAGGCGCAACTCGACAGCGGCACTGGAGGCAGCGATTTCTGCCGGGCCAAGCTGGCGACCTGCGAGTTTTACTTCAAGCGCCTGCTGCCGCGTACGGCCGCCCATCGGGCTGCTATAGAGGCGGGGAGCGATTGCCTGATGAGGTTGCCGGCGGAGTTGTTTGCGCTTTGAMPEYKAPLRDMRFLIDNVFDFHGRYAELGASDASPDMVSAILEEGARFCENVLAPLNRPGDEEGCHFDNGVVTTPAGFKQAFAQYVEGGWHGLAADPAYGGQGLPSSLGLVISEMIGSSNTSWGMYPGLTHGAMSAIHAHGTEQQKQTYLNKLTAGQWTGTMCLTEAHCGTDLGIIKTRAVPQADGSYAVTGSKIFISAGEHDMSDNIIHLVLAKLPDAPAGTKGISLFIVPKFLPDAAGEAGERNGVSCGSIEHKMGIKASATCVLNFDGAKGFLIGEPNKGLNCMFTMMNHARLGTGMQGLCLGEASFQGAIKYANDRLQMRSLTGPKAPEKVADPIIVHPDVRRMLLTMKAFNEGNRALTYFTAQLLDTAHLSRDESARQEAEDLLAFLTPICKAFMTDTGLEVTNHGMQVFGGHGFIREWGMEQLVRDCRIAPIYEGTNGIQALDLLGRKVLGSQGKLLRGFTRIVHKFCAANAGHPQLQAFIAQLDGLNQQWGELTTQVGMAAMKNPDEVGAASVDYLMYSGYIILAYLWLRMALVAQAQLDSGTGGSDFCRAKLATCEFYFKRLLPRTAAHRAAIEAGSDCLMRLPAELFALPGPT0008385_210DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008385-acd-K00249NANA
D1-35_051211779dmdC_4COG19603-methylmercaptopropionyl-CoA dehydrogenaseATGGCTGACTACAAAGCGCCCCTGCGCGATATGCGCTTCGTCCTCAATGAAGTGTTCGAGGTCGCGAAACTCTGGGCTCAACTGCCGGCGTTGGCCGAAACCGTGGACGCTGAAACCGTCGAAGCGATCCTCGAAGAGGCGGGCAAGGTCACCGGTAAAAGCATCGCGCCCCTCAGCCGTGCAGCTGACGAAGAGGGTTGCCACTGGGCTGACGGCGCCGTGACCACCCCGGCGGGTTTCCCTGAGGCCTACAGGACCTTCGCTGAAGGCGGTTGGGTCGGCGTCGGCGGAGATCCAACGTACGGTGGCATGGGCATGCCCAAGGCGGTTTCGGCCCAGGTCGAGGAAATGGTCAACTCCGCCAGCTTGTCCTTCGGTCTGTACCCGATGCTTACCGCAGGAGCCTGCCTGTCGATCAACGCCCACGCCAGTGAAGAATTGAAAGCCGCGTACCTGCCAAACATGTACGCCGGCGTCTGGGCCGGCTCCATGTGCCTGACCGAACCCCATGCCGGCACCGACCTGGGGATTATCCGGACCAAGGCTGAGCCCCAGGCTGACGGCACCTACAAGGTCAGCGGCACGAAGATTTTCATTACCGGCGGCGAACACGACCTCACCGAAAACATCATTCACCTGGTGCTGGCGAAGCTCCCCGACGCACCGGCGGGCCCGAAAGGCATTTCGCTGTTCCTGGTGCCGAAATTCATGGTCAACGCCGACGGCAGCCTGGGTGCACGCAACGCGGCCAACTGCGGTTCGATCGAACACAAGATGGGCATCCAGGCGTCCGCCACCTGCGTGATGAACTTCGACGAAGCAGTGGGTTACCTGGTCGGCGAGCCGAACAAAGGCCTGGCGGCGATGTTCACCATGATGAATTACGAACGCCTGGGCGTGGGGATCCAGGGTCTGGCCTCCGGCGAGCGTTCGTACCAGAACGCTGTCGAGTACGCCCGTGATCGCCTGCAAAGCCGTTCGCCAAGCGGCGCGCAGAACAAGGACAAGATCGCCGACCCGATCATCGTCCACCCGGATGTGCGCCGGATGTTGCTGACCATGAAAGCGTCGAACGAAGGTGGCCGGGCATTCTCCACCTACGTGGCGATGCAACTGGACACCGCCAAGTTCAGCGAAGACCCGACGACTCGCAAGCGCGCCGAAGATCTGGTGGCCTTGCTGACGCCGGTTGCCAAGGCATTCCTGACCGACCTGGGCCTGGAAACCACTATTCACGGCCAGCAGATTTTCGGCGGCCACGGCTACATTCGCGAATGGGGCCAGGAGCAGTTGGTGCGCGACGTGCGCATCACCCAGATCTACGAAGGCACCAACGGCATCCAGGCACTGGACCTGGTGGGGCGCAAGATCGTCGGCAACGGCGGGGCGTTCTACAAACTGTTCGCCGACGAGATTCGTCATTTCACCGCTACCGCTGGCAGCGATCTGGCGGAGTTCACCCAGCCGTTGAACGATGCCGTCGGCACGCTGGACGAGCTGACCGAGTGGCTGCTGGACCGGGCGAAAAACAATCCCCATGAAATTGGCGCGGCTTCGGTGGAGTACCTGCAGGCGTTCGGCTACACCGCGTATGCCTACATGTGGGCGCTCATGGCCCGGGCGGCCCTGGGCAAGGAGACGCAGGACGATTTCTACGCGAGCAAACTGGGCACGGCACGTTTCTATTTCGCCCGCCTGTTGCCACGAATCCATTCCTTGAGCGCTTCGGTTAGGGCGGGTAGCGAGTCGCTGTTCCTGCTGGAACCCGGTCAGTTCTAAMADYKAPLRDMRFVLNEVFEVAKLWAQLPALAETVDAETVEAILEEAGKVTGKSIAPLSRAADEEGCHWADGAVTTPAGFPEAYRTFAEGGWVGVGGDPTYGGMGMPKAVSAQVEEMVNSASLSFGLYPMLTAGACLSINAHASEELKAAYLPNMYAGVWAGSMCLTEPHAGTDLGIIRTKAEPQADGTYKVSGTKIFITGGEHDLTENIIHLVLAKLPDAPAGPKGISLFLVPKFMVNADGSLGARNAANCGSIEHKMGIQASATCVMNFDEAVGYLVGEPNKGLAAMFTMMNYERLGVGIQGLASGERSYQNAVEYARDRLQSRSPSGAQNKDKIADPIIVHPDVRRMLLTMKASNEGGRAFSTYVAMQLDTAKFSEDPTTRKRAEDLVALLTPVAKAFLTDLGLETTIHGQQIFGGHGYIREWGQEQLVRDVRITQIYEGTNGIQALDLVGRKIVGNGGAFYKLFADEIRHFTATAGSDLAEFTQPLNDAVGTLDELTEWLLDRAKNNPHEIGAASVEYLQAFGYTAYAYMWALMARAALGKETQDDFYASKLGTARFYFARLLPRIHSLSASVRAGSESLFLLEPGQFPGPT0008385_210DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_LIPID_METABOLISMPLANT_DERIVED_FATTY_ACID_DEGRADATION,PGPT0008385-acd-K00249NANA
D1-35_05123336hypothetical proteinATGTCAGGGAAACAGTCTGCAAAGCCCCGCTTCGGCGGGGTTTTCTTTTGCCCGCGTTTTTTGCCTGCGTATCTTCTCCCTGCGGCCCGCCTCTTTGGACGCGCACTGAACCCTGACGAGCGGTCAGCTGTCCATGAGCTATATGGCAATGTGGCCATCGACCATCAGGAGCTGTCCATGGATATCATTCGAATCATCATCGCCATTCTGTTGCCACCGCTGGGTGTGTTCCTGCAAGTCGGGTTCGGCGGGGCTTTCTGGCTGAACATTCTGCTGACGCTGTTGGGTTATATCCCCGGCATCGTGCATGCGGTGTACATCATCGCCAAGCGCTGAMSGKQSAKPRFGGVFFCPRFLPAYLLPAARLFGRALNPDERSAVHELYGNVAIDHQELSMDIIRIIIAILLPPLGVFLQVGFGGAFWLNILLTLLGYIPGIVHAVYIIAKRNANANANANA
D1-35_051241827hypothetical proteinATGAACGAAACTCGCGCCTCATCGTTAAAGGCTGAACCTTTCAGCGCCGCCCAGGCCGTCGCGGCAGGCATCGACTTTGCCGAGCTGCAACTCGGCCCCCTGGGCCTTTTCTGGAACGAATACCGTCCCGAAGATGGCGCTTGCCGGATCTGGCATTGGCGAGACGGCAAGGCGCGTTGCCTGACCCCGGACGGTTTCAGTGTGCGCAGCCGGGTGTATGAATACGGCGGCGGGTCGTTCTGTCTGAGCGACGACGGCGTGCTGTTCGTCAACGAACGCGACCAACAGTTGTATCACCAATCGCTGGGCGACCAGTGTCCGGTAGCGCTGACCGCGGGCGATTGTCGATACGGCGATCTGCACTTCGCCACAGGGCACGTGCTGGCCGTGGAGGAACAGGCCGACCAGCATCGATTGGTATCGATCGGACTGGCGGATCACCAGCGGCGCTTATTGGCCGAAGGCGCGGACTTCTATGCCGCGCCGATCTTGAGCCCCGACGGAAAACGTCTCGCCTGGATTGAATGGAGTCGCCCCCACCAGCCATGGACAGCGACGCGGCTGATGCTCGCCGAGCGCAACGATTCAACCTGGGCAGCGCCATGCTGCGTGGCCGGCGATGATGACGAAGAATCCATCCAGCAACCTCGCTTCGATGCTTGCAGTCGCCTTTATTGCCTGACCGACCGAGACGGTTACTGGCAGCCCTGGAGTGAATGCGCCGGCGTCCTGAAGCCAATGGACGCCGCCGAAGCCGATCACGCCCCGGCGCCTTGGCAACTGGGCGGGTGTACATGGTTGCCGGTGGATGAAAGCAGTTTCCTGGCAAGCTGGACCGAGGCCGGCTTCGGGCGGTTGGGGCTGCGCAGCGGCGGCGTGCTCGAAGATTTCACCGGCACTTACAGCCGCTTCCGCAGCCTCGCGCTGGATGAGCAATTCGTCTATGCCATTGCCGCCTCGCCAGCCAGCCCCTCGGCGGTCATTGCGATCGAGCGGCGCAGTCATGAAGCGCTGGTGCTGGCCGGAGGCATCGCGCCGTTGCCTCCCGAGCAAATCAGCCGCCCCCGGACTCTGCGCTATCCCTCTGCGTCCAGCGAAGCCCACGGTTTTTTTTATCCAGCCATGAACACCGACGCGAAGCCGCCGCTGGTGGTGTTTATCCACGGTGGGCCGACCTCGGCTTGCTACCCGATGTTCGACCCGCGCATCCAGTATTGGACCCAGCGCGGCTTCGCCGTTGCCGACCTCAACTACCGTGGCAGCAGCGGTTATGGGCGCGTCTATCGGCAAGCGCTGCATTTGAGTTGGGGCGTGGTGGATGTCGAGGAGGCCTGCGCCGTGGTTGCTTACCTTGATGAGCAAGACTTGGTCGATGGCCGCTGCGCCTTCATCCGTGGCGGCAGCGCGGGAGGATATACCAGCCTCTGCGCCCTGGCGTTCCGGGACGTGTTCCGCGCTGGCGCCAGCCTCTACGGCGTCAGCGATCCCGTTGCCCTGGCCCGCGCTACGCACAAATTCGAAGGTGACTATCTGGACTGGCTGATCGGCGACCCGCAACTGGACGCCGAACGCTACCGGGCCCGCACGCCGTTACTGCATGCCGAGAGGATTCGCGCGCCGGTGATTTTTTTCCAAGGCGAGCTGGACGCCGTGGTCGTGCCGCAGCAGACCCGCGACATGGTCAAGGCGCTGGAGGACAACGGTGTTGCGGTCGAGGCTCATTACTACCCTGATGAGCGCCATGGCTTTCGCAAGGCCGCGAACCAGGCACATGCGCTGGAGCATGAGTGGTTGTTCTATCGCAGGGTGATGGATGGACTCGCATAGMNETRASSLKAEPFSAAQAVAAGIDFAELQLGPLGLFWNEYRPEDGACRIWHWRDGKARCLTPDGFSVRSRVYEYGGGSFCLSDDGVLFVNERDQQLYHQSLGDQCPVALTAGDCRYGDLHFATGHVLAVEEQADQHRLVSIGLADHQRRLLAEGADFYAAPILSPDGKRLAWIEWSRPHQPWTATRLMLAERNDSTWAAPCCVAGDDDEESIQQPRFDACSRLYCLTDRDGYWQPWSECAGVLKPMDAAEADHAPAPWQLGGCTWLPVDESSFLASWTEAGFGRLGLRSGGVLEDFTGTYSRFRSLALDEQFVYAIAASPASPSAVIAIERRSHEALVLAGGIAPLPPEQISRPRTLRYPSASSEAHGFFYPAMNTDAKPPLVVFIHGGPTSACYPMFDPRIQYWTQRGFAVADLNYRGSSGYGRVYRQALHLSWGVVDVEEACAVVAYLDEQDLVDGRCAFIRGGSAGGYTSLCALAFRDVFRAGASLYGVSDPVALARATHKFEGDYLDWLIGDPQLDAERYRARTPLLHAERIRAPVIFFQGELDAVVVPQQTRDMVKALEDNGVAVEAHYYPDERHGFRKAANQAHALEHEWLFYRRVMDGLANANANANANA
D1-35_051251152pqqECOG0535PqqA peptide cyclaseGTGCACAGCACTGGATCACCCTTGCCTGAGAAGCCCGCCGTCGGCTTGCCGCTGTGGCTGCTGGCCGAGCTGACCTATCGCTGCCCGTTGCAATGCCCGTACTGCTCCAACCCGCTGGACTTTGCCGAACAAGGCAAGGAGCTGAGCACCGAGCAGTGGTTCAAGGTCTTTCGCGAGGCCCGGGAAATGGGCGCCGCGCAACTGGGCTTTTCCGGCGGCGAGCCGTTGGTGCGCCAGGACCTCGCCGAGCTGATCGGCGAGGCGCGCAAGCTAGGCTTCTACACCAATCTGATCACCTCCGGCATCGGCTTGACCGAACAGAAAATCAGCGATTTCAAGAAGGCCGGCCTCGACCACATCCAGATCAGTTTCCAGGCCAGCGACGAGCAGGTGAACAATCTGCTGGCCGGTTCGAAAAAAGCTTTCGCGCAAAAACTGGAGATGGCCCGAGCGGTGAAAGCCCATGGTTATCCGATGGTGCTGAACTTCGTCACCCATCGGCACAACATCGACAAGATCGACCGCATCATCGAGTTGTGCATCGCCCTGGAAGCCGACTTTGTCGAACTCGCCACCTGTCAGTTCTATGGCTGGGCACACCTCAACCGCGTCGGCCTGCTGCCCACGCGGGAACAACTGGTGCGTGCCGAGCGCATCACCAATGAATACCGGGCCAGGCTCGAGGCCGAAGGTAACCCGTGCAAGTTGATTTTCGTGACCCCGGATTACTATGAAGAGCGCCCCAAGGCCTGCATGAACGGCTGGGGCAGCATCTTCCTGACCGTTACCCCGGATGGCACGGCATTGCCTTGCCATGGCGCCCGGCAGATGCCGGTGCAATTCCCGAATGTGCGTGACCACAGCATGCAACACATCTGGTACGACTCGTTCGGCTTCAACCGTTTTCGAGGTTATGACTGGATGCCCGAGCCCTGCCGCTCGTGCGATGAAAAAGAAAAGGATTTCGGCGGCTGTCGTTGCCAGGCGTTCATGCTCACCGGTGACGCCAGCAATGCCGATCCTGTGTGCAGCAAATCCGCGCACCACGGGATGATTCTCCAGGCTCGCGAAGACGCCGAGCATGCCACGCAAACCATCGGACAACTGGCCTTTCGCAATGAACGAAACTCGCGCCTCATCGTTAAAGGCTGAMHSTGSPLPEKPAVGLPLWLLAELTYRCPLQCPYCSNPLDFAEQGKELSTEQWFKVFREAREMGAAQLGFSGGEPLVRQDLAELIGEARKLGFYTNLITSGIGLTEQKISDFKKAGLDHIQISFQASDEQVNNLLAGSKKAFAQKLEMARAVKAHGYPMVLNFVTHRHNIDKIDRIIELCIALEADFVELATCQFYGWAHLNRVGLLPTREQLVRAERITNEYRARLEAEGNPCKLIFVTPDYYEERPKACMNGWGSIFLTVTPDGTALPCHGARQMPVQFPNVRDHSMQHIWYDSFGFNRFRGYDWMPEPCRSCDEKEKDFGGCRCQAFMLTGDASNADPVCSKSAHHGMILQAREDAEHATQTIGQLAFRNERNSRLIVKGPGPT0001265_116DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-GLUCONIC_ACID-PQQ_PATHWAY,PGPT0001265-pqqE-K06139NANA
D1-35_05126276pqqDPqqA binding proteinATGAGCTTCGACCGCAGCAAAACCCCTCAGTGGCGTCCCGGCTATCGCTTCCAATACGAACCGGCCCAGAAAGGCCATGTGCTGCTTTATCCTGAAGGCATGATCAAGCTCAACGACAGCGCCTCGCTGATCGGCGGCCTGATCGATGGTGAACGGGATGTCGCGGCGATCATCGGCGAGCTGGAGAAGCAATTCCCGGACGTGCCGGAACTCGGTGACGACATCGAGCAATTCATGGAGGTCGCCCGTGCACAGCACTGGATCACCCTTGCCTGAMSFDRSKTPQWRPGYRFQYEPAQKGHVLLYPEGMIKLNDSASLIGGLIDGERDVAAIIGELEKQFPDVPELGDDIEQFMEVARAQHWITLAPGPT0001260_564DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-GLUCONIC_ACID-PQQ_PATHWAY,PGPT0001260-pqqD-K06138NANA
D1-35_05127753pqqCCOG5424Pyrroloquinoline-quinone synthaseATGACTGACACCCCCCTGTCCATCGCCGAGTTCGAGGCGGCCCTGCGTGCCAAAGGCGCGTACTACCACATCCATCACCCCTACCACGTGGCGATGTATGAAGGCCGCGCCACGCGCGAGCAGATCCAGGGCTGGGTCGCGAACCGCTTCTACTACCAAGTGAATATTCCGCTCAAGGACGCCGCGATCCTGGCCAACTGCCCGGACCGGGAAATCCGTCGCGAGTGGATCCAGCGCCTGCTCGACCATGACGGTGCCCCCGGCGAAGACGGCGGCATCGAAGCCTGGCTGCGACTGGGCCAGGCAGTGGGCCTGGACCCCGATCAGCTGCGCTCCCAAGAGTTGGTGCTACCCGGCGTACGCTTCGCCGTGGATGCCTACGTCAACTTCGCCCGCCGGGCTTCCTGGCAGGAAGCCGCCAGCAGCTCATTGACCGAACTGTTCGCCCCGCAGATCCACCAGTCGCGCCTGGACAGCTGGCCGCAGCACTACTCCTGGATCGACCCGGCCGGCTATGAATATTTCCGCACCCGCCTGGGCCAGGCTCGGCGTGATGTGGAGCATGGTCTCGCGATCACCTTGCAGCACTACACCACCCGCGCAGGCCAGGAGCGCATGCTGGAAATTCTCCAGTTCAAATTGGACATTCTCTGGAGCATGCTCGACGCCATGAGCATGGCTTACGAATTAAAACGCCCGCCCTATCACAGCGTGACCGATCAACGGGTGTGGCATAAAGGGATTACCTTATGAMTDTPLSIAEFEAALRAKGAYYHIHHPYHVAMYEGRATREQIQGWVANRFYYQVNIPLKDAAILANCPDREIRREWIQRLLDHDGAPGEDGGIEAWLRLGQAVGLDPDQLRSQELVLPGVRFAVDAYVNFARRASWQEAASSSLTELFAPQIHQSRLDSWPQHYSWIDPAGYEYFRTRLGQARRDVEHGLAITLQHYTTRAGQERMLEILQFKLDILWSMLDAMSMAYELKRPPYHSVTDQRVWHKGITLPGPT0001255_482DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-GLUCONIC_ACID-PQQ_PATHWAY,PGPT0001255-pqqC-K06137NANA
D1-35_05128912pqqBCOG1235Coenzyme PQQ synthesis protein BATGTTCGTCCAGATTCTAGGTTCCGCCGCCGGTGGGGGCTTTCCCCAGTGGAACTGCAACTGCGCCAATTGCGCGGGTTTTCGCGACGGCAATCTCCGAGCGCAGGCGCGCACCCAGTCGTCCATTGCAATTTCCGATGATGGCGTGAGCTGGGTCCTGTGCAACGCCTCGCCGGACATCCGCGCGCAACTCCAGGGTTTCGCCCCGATGCAGCCTGGCCGGGCGCTACGGGACACCGGCATCGGCGCGATCATCCTGATGGACAGCCAGATCGATCACACCACCGGCTTGCTCAGCCTGCGCGAAGGCTGCCCGCATCAGGTCTGGTGCACCGACATGGTCCATGAAGACCTGAGCACCGGTTTCCCGCTGTTCAACATGCTGACCCACTGGAACGGCGGCCTGAGCTGGAACCGCATCGAGCTGGACCAGAGCTTCACCGTCCCGGCCTGTCCGAACCTGCGCTTCACCCCGCTGCCGCTGCGCAGCGCCGCGCCGCCCTATTCACCGCACCGCTTCGATCCGCATCCGGGTGACAACATCGGGCTGATCGTTGAAGACCTGCGCAGCCGCGGCAAACTGTTCTATGCGCCGGGCCTGGGCAAGGTCGACGAACCGTTGCTGCAGATCATGGCCGACAGCGACTGCCTGCTGGTGGACGGCACGATGTGGGACGACGACGAAATGCAACGCCGTGGCGTCGGCACTCGCACCGGTCGGGAAATGGGCCACCTGGCGCAGAACGGTCCCGGAGGGATGCTGGAGGTGCTGGAGCAATTGCCCGAGCAGCGCAAGGTGCTCATCCATATCAACAACACCAACCCGATCCTGGACGAAGACTCGCCCGAGCGGGCCGAGCTGGTGCGACGCAGGATTGAAGTGGCTTACGATGGCATGAGCATCGAACTGTAGMFVQILGSAAGGGFPQWNCNCANCAGFRDGNLRAQARTQSSIAISDDGVSWVLCNASPDIRAQLQGFAPMQPGRALRDTGIGAIILMDSQIDHTTGLLSLREGCPHQVWCTDMVHEDLSTGFPLFNMLTHWNGGLSWNRIELDQSFTVPACPNLRFTPLPLRSAAPPYSPHRFDPHPGDNIGLIVEDLRSRGKLFYAPGLGKVDEPLLQIMADSDCLLVDGTMWDDDEMQRRGVGTRTGREMGHLAQNGPGGMLEVLEQLPEQRKVLIHINNTNPILDEDSPERAELVRRRIEVAYDGMSIELPGPT0001250_462DIRECT EFFECTBIO-FERTILIZATIONPOTASSIUM_SOLUBILIZATIONK-SOLUBILIZATION-ORGANIC_ACID_METABOLISMK-SOLUBILISATION-GLUCONIC_ACID-PQQ_PATHWAY,PGPT0001250-pqqB|pqqG-K06136NANA
D1-35_05129120pqqACoenzyme PQQ synthesis protein AATGTATAGCTTTAAACCGATCCACCCCAACCAAAGGAGTATTCCCATGTCCTGGTCCAAACCCGCATATATCGACCTGCGTATCGGCTTCGAAGTCACCATGTACTTCGCCAGCCGTTGAMYSFKPIHPNQRSIPMSWSKPAYIDLRIGFEVTMYFASRNANANANANA
D1-35_051302439hypothetical proteinATGCCGGCCCCCGATTCCCTCCGCCCCCATACCGAAACCCTGGCCAACGGCCTACAAGTGACGTTGCGCCATGCACCCGACCTCAAGCGCAGCGCTGCGGTATTGCGGGTGGCGGCCGGCAGCCATGATGCGCCTGAGGCCTGGCCGGGCCTCGCGCATTTTCTCGAACATCTTTTTTTTCTCGGGACAGAACGTTTTCCCAGCGGGCAGAACCTGATGGCCTACGTGCGGGACCACGGTGGGCAAGTCAACGCGCGTACCAGCGAGCGCACCACGGACTTTTTCATCGAGCTGCCGCCTGCCGCCCTGGCCGACGGGTTGGAGCGTCTGGCAGACATGCTCGCTCATCCCCGACTGGATGAAGCCGACCAGTTACGCGAGCGGGAAGTGCTGCACGCCGAATTCATCGCCTGGTCCCGGGACGCCGTCGCCCAGCGCCAGCTTGCCCTGTATGACGGATTAACGGCGGCCCATCCGCTGCGAGGTTTTCACGCCGGCAATCGCGACAGCCTCGGCGTATCACAGCCTGAATTTCAAACGGCCCTGCGCGGTTTCCATCAGCGTTTCTACCAGAGCGGTCAGATGACCTTGAGCCTCGCCGGCCCGCAAAGCCTCGAAACAATGAAGGCGCTGGCCGATCAATTCGCTACAAGCATGCCCATCGGAAAAGCGGCGACCAGGCAATTGCCACCGAGGCTAATGACGTCGCCAGGCATCGCTTATCAACAGGTCCGGGAAGGCTGCCTCGACTTGCTCTTCGCCCTCGAACACTTGCCTGGCGCCTCGCCTCAAGCATTGGCCTTCCTGTGTCACTGGCTGAACTCCAGCAAACCGGGCGGCTTGCTTGCGACGTTGCGCCAACGCGGTCTCGCCGACAGCCTCAAGGCTTCGCAGCTGTATGAATTTGCCGGTCAAGCACTGCTGCACATCGAGCTCAAGCTCGACAGCGGCCCGGTGCCGTCGGCTGTCGAGCCGTTGCTGCGCGACTGGCTGGGGTTCTTTGCCGCCCATGACGACTGGGCTCCCTTGCGCCAGGAATTCAACGCCCGGCTGCAGCGCCGTCAGGAAACGGCAACCGCCCTGCAACTGGCGCGTTGGGACGGCGAAGGATGTGCCGGGGCTCTAGCGGAAAACGACTTGATGCGGATTCGAGAAATCCTCAAACAACTGCACCCTGCGAATCCGGTCACCGAACAATGGCAACTGCCCTCGCCCAACCCGTTCCTGCAAGCGCCAAGCGAGCCGCCCCGCGCCGGTTTGATACGCGGCCAGACCAGCGCCCACCGTGGTCTGCGCACGTTCGCACAAGACCGCAGCCGGGGCCGGCGGGAACGCTCACCCATGCAGTTCAGCCAGGCATTGCCGGACTCCCGGGAAAGTGGGGTGTATGTGCGCTGGCAACTGGAGACCCGGGTACCGCTCGATTTTCAACCCAGACTCGATCGGCACCTGGCGGATGTGTGCGAGGACGCCCGGCAGGCAGGCGTGGACATCACTTTCGAAGCCTGTAGTGATCGATGGCTGTTGAAGCTGGTCGGTTTGCAAGCACCGATGCCGTTGGTGCTTGAGCACCTGCTGACAAAGCTGGAGCAGCCGCTGCCACCCGTTCAGGCCAGGAACGAAACGCCCCTGATGCCGATTCGACATTTGCTGCGGGAATTGCCGGATCACTATCAGCAGAACCTGCGGCATGCAGAGCCGCCACCGCCCGACAGCGAACAAGACGTCTGGGCAAGCGCCCGCTGGGACGGCCTGGCCATCGGTCTGTCGGCTGCTTCCCAAGCCGCTGTGGGCCCGTTGTTGGCCCGGATTCCTGGCGTGGCCCGCGAGGCGACGGCGCCAGCAGCGACGCCTTCACCAGGGCGGATCTGGCGCACCCTAGAGACCCATGGCGACGAACAGGCCGTGTTGCTGTTTTGCCCCTCGCCCACGTTGGACTTGCCCGACGAAGCTGCCTGGCGATTGCTGGCTCATTTGTGCCAGACCCCGTATTACCAGCGCTTGAGGATCGAGCTGCAGTTAGGTTATGCGGTGTTCAGTGGCTTGAAGCAAATCGATGGGTGGACCGGCTTGTTGCTGGGTGCGCAATCGCCCGAGACGTCGGCCGCGCAATTGGTCAGCCATATGGAGCAGTTTCTGACCGAGCTTCCCGCCGTGATCGAGCGAACCGACGATGCAACCCTGGCCAGCCAACAACAAGCCCTGGCCAGCCAGATGCAAATCGCCGCGTTGCCCTGCGCCCAGGCGGCCGAGCTACTCTGGCAAGGAAAACTGGCCGGCCACCCGGCGGACTTCCCTGAGCGACTGGCCGATGCCATTCTGGGCATGCAGCGCATAGACCTGGTGAATGCCGCCTGCCGCTTGATCGATGCGCAGGGAGGACGTTATTGCCTCAGCAACGCGCCGAGCCCGGGCGCCCCTTGGCGAGCGGCCGAATGAMPAPDSLRPHTETLANGLQVTLRHAPDLKRSAAVLRVAAGSHDAPEAWPGLAHFLEHLFFLGTERFPSGQNLMAYVRDHGGQVNARTSERTTDFFIELPPAALADGLERLADMLAHPRLDEADQLREREVLHAEFIAWSRDAVAQRQLALYDGLTAAHPLRGFHAGNRDSLGVSQPEFQTALRGFHQRFYQSGQMTLSLAGPQSLETMKALADQFATSMPIGKAATRQLPPRLMTSPGIAYQQVREGCLDLLFALEHLPGASPQALAFLCHWLNSSKPGGLLATLRQRGLADSLKASQLYEFAGQALLHIELKLDSGPVPSAVEPLLRDWLGFFAAHDDWAPLRQEFNARLQRRQETATALQLARWDGEGCAGALAENDLMRIREILKQLHPANPVTEQWQLPSPNPFLQAPSEPPRAGLIRGQTSAHRGLRTFAQDRSRGRRERSPMQFSQALPDSRESGVYVRWQLETRVPLDFQPRLDRHLADVCEDARQAGVDITFEACSDRWLLKLVGLQAPMPLVLEHLLTKLEQPLPPVQARNETPLMPIRHLLRELPDHYQQNLRHAEPPPPDSEQDVWASARWDGLAIGLSAASQAAVGPLLARIPGVAREATAPAATPSPGRIWRTLETHGDEQAVLLFCPSPTLDLPDEAAWRLLAHLCQTPYYQRLRIELQLGYAVFSGLKQIDGWTGLLLGAQSPETSAAQLVSHMEQFLTELPAVIERTDDATLASQQQALASQMQIAALPCAQAAELLWQGKLAGHPADFPERLADAILGMQRIDLVNAACRLIDAQGGRYCLSNAPSPGAPWRAAENANANANANA
D1-35_05131795ramA_2(R)-stereoselective amidaseATGCGCGTAGCCCTCTACCAATGTCCACCGCTGCCAATGGATCCGGCCGGCAACCTGCAGCGTCTGCACCAAGTCGCGCTGGAGGCCCGAGGCGCTGACATATTGGTGCTGCCGGAGATGTTCCTGACCGGCTATAACATCGGCGTCGATGCGGTGCATGTACTGGCCGAGGTCTACAACGGCGAATGGGCCCAGCAAATTGGCCGCATCGCCAAGGCGGCCGGCCTGGCGATTCTCTATGGCTACCCCGAACGCAGCGAAGACGGACAGATCTACAACGCCGTGCAACTGATCGATGCCCAAGGCGAACGCCTCGCCAACTATCGCAAGAGCCACCTGTTCGGCGACCTCGACCATACGATGTTCAGCGCCGGGGATGCGACGCTGCCCATTGTCGAGCTCAACGGCTGGAAGCTCGGTTTCCTGATCTGCTATGACTTGGAGTTCCCGGAAAACGCCCGGCGGCTGGCCTTGGCCGGTGCCGAGCTGATCCTGGTGCCGACCGCCAACATGCAGCCCTACGAGTTCATCGCCGACGTCACCGTGCGGGCGCGGGCCATTGAAAACCAGTGTTTCGTGGCCTACGCCAACTACTGTGGCCACGAAGGTGAGTTGCGCTATTGCGGCCAGAGCAGCATCGCCGCGCCGGACGGCAGCCGCCCGGCCCTGGCGGGGCTGGACGAGGCGTTGATCGTCGGTGAACTGGATCGACAGCTGATGAATGACTCGCGCGCGGCCTACAACTACCTGCACGACCGTCGCCCGGCGCTATACGGCGACTTGCATAAACACTGAMRVALYQCPPLPMDPAGNLQRLHQVALEARGADILVLPEMFLTGYNIGVDAVHVLAEVYNGEWAQQIGRIAKAAGLAILYGYPERSEDGQIYNAVQLIDAQGERLANYRKSHLFGDLDHTMFSAGDATLPIVELNGWKLGFLICYDLEFPENARRLALAGAELILVPTANMQPYEFIADVTVRARAIENQCFVAYANYCGHEGELRYCGQSSIAAPDGSRPALAGLDEALIVGELDRQLMNDSRAAYNYLHDRRPALYGDLHKHNANANANANA
D1-35_051321683iaaMTryptophan 2-monooxygenaseATGAACAAGCACAATCGCCACCCAGCAGACGGCAAGAAGCCCATCACCATTTTCGGACCGGACTTTCCTTTCGCCTTTGACGACTGGATCGAGCACCCGGCCGGCCTGGGGGTCATTCCCGAGCACAACCACGGGGCTGAAGTGGCGATCGTCGGCGCGGGGATCGCCGGTCTCGTAGCCGCTTACGAATTGATGAAGCTAGGCCTCAAACCGGTGGTCTACGAGGCGTCGAAGATGGGCGGACGTCTGCGCTCCCAAGCGTTCAACGGCGCCGAAGGCATCGTTGCCGAGCTCGGTGGCATGCGTTTTCCGGTGTCGTCCACGGCGTTCTACCACTACGTCGACAAACTGGGCCTGGAGACCAAACCGTTCCCCAACCCACTGACCTCGGCCTCGGGCAGCACCGTCATCGACCTGGAAGGGCAGACTTACTACGCCGAAAAAATGGCCGACCTTCCTGCGCTGTTCCAGGAAGTCGCTGACGCCTGGGCCGATGCCCTGGAGGATGGCTCGCGTTTCAGCGAGATCCAGCAGGCGATCCGCGAGCGCGACGTGCCGCGTCTCAAAGAGCTGTGGAACACCCTGGTACCGCTGTGGGATGACCGCACATTCTACGATTTCGTCGCCACCTCCAAGGCGTTCGCCAAGCTGTCTTTCCAGCACCGCGAAGTGTTCGGCCAGGTCGGCTTCGGCACGGGCGGCTGGGACTCGGACTTCCCCAACTCGATGCTGGAAATCTTTCGCGTGGTGATGACCAATTGCGACGACCATCAGCACCTGGTGGTTGGCGGCGTTGAACAGGTGCCGCAGGGAATCTGGAGGCATGTGCCGGAGCGTTGTGTGCATTGGCCGGAGGGCACCAGCCTGAATTCGTTGCACCTGGGCGCGCCACGCAGCGGGGTGAAGCGTATCGCTCGCGCCGACGACGGCCGATTCAGCGTGACCGACGTCTGGGGCGACACGCGCGAATACGCCGCCGTGCTGGTCACCTGCCAGACCTGGCTGCTTACCACCCAGATCGAGTGTGAAGAAGCGCTGTTCTCGCAAAAGATGTGGATGGCCCTGGATCGCACCCGCTACATGCAATCGTCAAAGACCTTCGTGATGGTCGACCGGCCGTTCTGGAAGGACAAGGACCCGGAAACCGGCCGCGACCTGATGAGCATGACCCTCACCGATCGCCTGACCCGTGGTACCTACCTGTTCGACAATGGCGACAACAAGCCGGGGGTCATCTGCCTGTCGTATTCCTGGATGAGCGATGCGCTGAAAATGCTCCCGTACCCGGTGGAAAAACGCGTCAAGCTGGCCCTGGATGCCCTGAAAAAAATCTACCCGAAGGTGGACATCGCCGCGCGGATCATTGGCGAACCGATCACCGTGTCTTGGGAAGCCGACCCGTATTTCCTCGGCGCCTTCAAGGGCGCGCTACCCGGCCACTATCGTTACAACCAGCGCATGTACGCGCATTTCATGCAGGACGACATGCCGGCCGAACAAAAAGGGATCTTTATCGCCGGCGACGACGTCTCATGGACACCCGCCTGGGTTGAAGGCGCGGTCCAGACCTCGCTCAATGCCGTGTGGGGAATCATGAAACACTTCGGCGGTGAAACCCATGCCGAGAATCCGGGTCCAGGGGATGTGTTCGACGAAATCGGTCCGATCGCCCTGCCCGAATAAMNKHNRHPADGKKPITIFGPDFPFAFDDWIEHPAGLGVIPEHNHGAEVAIVGAGIAGLVAAYELMKLGLKPVVYEASKMGGRLRSQAFNGAEGIVAELGGMRFPVSSTAFYHYVDKLGLETKPFPNPLTSASGSTVIDLEGQTYYAEKMADLPALFQEVADAWADALEDGSRFSEIQQAIRERDVPRLKELWNTLVPLWDDRTFYDFVATSKAFAKLSFQHREVFGQVGFGTGGWDSDFPNSMLEIFRVVMTNCDDHQHLVVGGVEQVPQGIWRHVPERCVHWPEGTSLNSLHLGAPRSGVKRIARADDGRFSVTDVWGDTREYAAVLVTCQTWLLTTQIECEEALFSQKMWMALDRTRYMQSSKTFVMVDRPFWKDKDPETGRDLMSMTLTDRLTRGTYLFDNGDNKPGVICLSYSWMSDALKMLPYPVEKRVKLALDALKKIYPKVDIAARIIGEPITVSWEADPYFLGAFKGALPGHYRYNQRMYAHFMQDDMPAEQKGIFIAGDDVSWTPAWVEGAVQTSLNAVWGIMKHFGGETHAENPGPGDVFDEIGPIALPEPGPT0020330_196DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_LYSINE_DEGRADATION,PGPT0020330-davB-K00468NANA
D1-35_05133462lrp_6COG1522Leucine-responsive regulatory proteinTTGACTGAGATCCGCCCTCCCGTCCTCGACGAAATCGACCGCCAGTTGATCGCGGCCCTGCAAATCAACGCGCGGGAAAGCGTCGCCATGCTCGCCCGGCAATTGGGAATTGCCCGCACCACCGTGACGTCGCGCCTGGCTCGACTGGAGAAAGCCAAGGTGATCACTGGGTACGGCGTGCGCCTTGGCCAGCGGGTGATCGATGGCGGTCTGCAGGCCTATGTCGGGATCAAGGTGCAGCCACGCTCCGGTAAAGAGGTACTGCGCCGCTTGAGCGCCATGGCCCAGGTCCAGCAGTTGTGCGCGGTCAGCGGCGAATTTGATTATGTGGCGTGGCTGCGCACCGATTCGCCGGAGCAGCTGGATCAGTTGCTCGACCAGATCGGCAGCGTGGACGGGGTGGAGAAAACGACTACGTCGATCATTCTCAGCAGCAAGATCGATCGGGGCCAGCCGGTCTGAMTEIRPPVLDEIDRQLIAALQINARESVAMLARQLGIARTTVTSRLARLEKAKVITGYGVRLGQRVIDGGLQAYVGIKVQPRSGKEVLRRLSAMAQVQQLCAVSGEFDYVAWLRTDSPEQLDQLLDQIGSVDGVEKTTTSIILSSKIDRGQPVNANANANANA
D1-35_051342496hypothetical proteinTTGTCTTTTTTAACGTCCGCTCACTTACAATCAGATTTCCAATACCCCGCCGAGACGCCCATCATCGCCAGCCCCAGCCTTCCCCGCCTATTCCTCGAACTCTTCTGGCAACTCGGCATCCTGGTGGTGCCAGCCTTTTTCATCACGATACTGCCGCCGCCGCTGGCCTTGCTGGGGGTGGTGTTGCTCGGTTTGCTGATGGGTCTTGCCGCGCGGCTGGGCTTTTTGGGGGTGGGCCGGGGCATTGCCCGGCTGACTGTCGGCGCGGTGTTTGGCCTGGGTTTCAGTCTGGGACGGGCATTGCCTGAGTGGTGGGGAATTCTGGTGGCGATCGTCGCCATCGTTGGCGGGCTCGCCTGCGTGAGCAAGTGGGAGCGCCGCCTTGGGTTGGCGCCGGTCTCCTCTGCGGGCCAAGGACCGAGTGCCTGGGGCACAAACGAGCCGCTGCTGACGCCCGAGGGCGAGCCGATCCGGGTGTTCAACCACAGCGAAATTGCCATGGGCGGCCCCGTTCATTGCGATTATCTGTTTCCTGATGGCGTGCTCTTGCAAGGCCTTGGCTCCTCGGCGGTGTTCTCCAGCGACGGTCGCTATTTCGCCGCGCCGGTACCGTCACGCCAGGAATGGGGACTGGTCGTTCTCGACCGGGAGCAACGCAAGCTGTACCGCTGTGCCGAAACCGAGTTCTGGGAGCTGGATGCCCTGGACCTGGATCAACTGAGCGGCCGCCATAGCCCCTTGGTCGACAACAGCGTTCGTCAGGTCCGACTGGATGAACTGTTGCAGGCCGCCGAAGTAGCCGACCTGATCCCGTTTGCGGACCTTTGGCTGGAGCCTGGCTGGAATCCGGACAGTGTTGCGCGCAGCTTCGAACGGGCTTCCATTGATGGCGGGCAAATCCTGCAGGGCGACATCTTGTTGCCCAAGACCTTTCGCGATCTGGCCCAGCCACTGGAGCCACTGTATTCGCCGCGCTACGCCATCAGCCTCAATGGTCAACCATCGGGCCTGGTCATGGCAGCCGATGCGCCACTGGTCTGGAGCGGCGATAACCGCGCCCTGGTCTGTCTGGCCCGGGAGCAGGCCAACGAGGCGGATGGCAATCAGTACTGGTTGTGGCAAGTGGATCATGGCTGGCGAGCCCTGCCCTCGCCGTGGGTAAAGAGCGACGCGGAGCCGTCCTTTTATTGGCATGAATTATTGAGCCTTGATGCGAGCCATGTCCGTATCGGCTCGTATCTCGATTATCCGCGACCAAGCGCCGGCCGTTATGGCTATCGCCTGGAGAGTATCCACGGCGATACCGAAACCCAAGTGGGTCATGACGCTCGAGGTCGCGTGCAGGTCGGTGAGTTCAAGCTGACCCGCATGGCGATCATGCTGCCGCTGGACAGCACGGGGCGGCGAGGCGACTCGTGCGTCGAGACGCAACCGTTGCAAGGCGATGCGCGCGCTGTCCTGACCTGGCTCGGTGACAATCCCCAAGGCCTGGGTGGCTATCGCTGCCGGATCGGCGACTGGTCGTTGCCGGGGGCTTGGCTGCTGGACCATCGGGTTTCCGATTGCGGACGCTATCTGGCGCTGCTGCCCTTTGAAAACTCAACGACAGTCACCAGCCATGCGCTGGTGGCGGATGTGCAGGAACACCGCCTGCTGGAAGGACCGCCCATGTGGGTGGAACGGATACTGGATTTCCGCGATGGCCGATTGAATCTGGCAGTGATCCAGGGCCGTCTTGATCAAGACAGGGAAAGCAGCCCGTTGCAACGTTTCAACATCGCCGCGCCAGAGGTTGGCGGCGACGCGTCGTTCTTCCGTCCCAACGAGCAATCCCGGCTGTTCTACAACACTGCGCAGTTGCAGCCGACAGACTCGCAGCTCAAAGCCGTCCCGCCTTGGCGTCTGGTGGCTGGCCCGCAAGCGGCCACTGCCGAGGGGGATTTCATCCAGCCCGCGCCGAATGATCAGAATGCCGCCTGGCTGTTCGGCAGTGAGACGGAATACACCGACAGCTGGGTGCGTACCGGTACGCCCCGTCTCGGCGGACACTTGCTGACCGCCTCAGGCTGCGCGTTGGTTGATCTGGCGCCCTCGATGATCTGGTCGGCGGACAGCCGCTACCTGGCCCTGACCTGCATGGCGACCGATGTCACGGAACTGTGTGGAAGTTACCGCGGTTGGCAACTGCTGCTCCTTGATGTTGAGGCGCGTACGCTGCGTATACATCCGCAATGGCTGGGCAATCGGCCGCTATTTGAAAGCTTCGAAGAAGAGCAACTACGCCTGCGAAGCTTCCAGCGCGACTGGGAGACCGAAGCCGACGAGGACCAGGGTTCGGTGCAGTCGTTCTCACTGGACGCTCTGCTGCAGTTGCCCACTGAGCAACTGATCTGCCAGGAAGGCGTCTGGCTCAGGTCTTCCCAGGCTCACCTGGCAGCCGCCTGGCGGGCGCTGGCTTTACCTGCCACTGGCTATTTCGAGCGAGGGAACCTGTAAMSFLTSAHLQSDFQYPAETPIIASPSLPRLFLELFWQLGILVVPAFFITILPPPLALLGVVLLGLLMGLAARLGFLGVGRGIARLTVGAVFGLGFSLGRALPEWWGILVAIVAIVGGLACVSKWERRLGLAPVSSAGQGPSAWGTNEPLLTPEGEPIRVFNHSEIAMGGPVHCDYLFPDGVLLQGLGSSAVFSSDGRYFAAPVPSRQEWGLVVLDREQRKLYRCAETEFWELDALDLDQLSGRHSPLVDNSVRQVRLDELLQAAEVADLIPFADLWLEPGWNPDSVARSFERASIDGGQILQGDILLPKTFRDLAQPLEPLYSPRYAISLNGQPSGLVMAADAPLVWSGDNRALVCLAREQANEADGNQYWLWQVDHGWRALPSPWVKSDAEPSFYWHELLSLDASHVRIGSYLDYPRPSAGRYGYRLESIHGDTETQVGHDARGRVQVGEFKLTRMAIMLPLDSTGRRGDSCVETQPLQGDARAVLTWLGDNPQGLGGYRCRIGDWSLPGAWLLDHRVSDCGRYLALLPFENSTTVTSHALVADVQEHRLLEGPPMWVERILDFRDGRLNLAVIQGRLDQDRESSPLQRFNIAAPEVGGDASFFRPNEQSRLFYNTAQLQPTDSQLKAVPPWRLVAGPQAATAEGDFIQPAPNDQNAAWLFGSETEYTDSWVRTGTPRLGGHLLTASGCALVDLAPSMIWSADSRYLALTCMATDVTELCGSYRGWQLLLLDVEARTLRIHPQWLGNRPLFESFEEEQLRLRSFQRDWETEADEDQGSVQSFSLDALLQLPTEQLICQEGVWLRSSQAHLAAAWRALALPATGYFERGNLNANANANANA
D1-35_051363744hypothetical proteinATGCCCAGACTGACGGCCGTGCTTTTGCTGTCACTGATGACCTGGACCGCAACGGCCGGCGCGTTGACGCTCACGGAGGAAGAACGCCGCTGGCTCAAGGACCACCCCGACCTGCGCCTGGGTGTCGATGCGTCATGGCCGCCGTTCGAATTTCGCGACGACAACGGCCGCTACCAAGGCCTGGCCGCCGACTATGTCGATATCATCCGCGAGAAACTGGCCGTCACGCTCACACCCATCGAACCCGTCAGTTGGACGGAGGTGCTGGAACAGGTCGTGCAGGGCAAGATCGACCTTCTACCGGGCATCATGTCCACCCCCGAACGCCAGAACTACCTGTCGTTCACTCGTCCCTACCTCGATTTTCCAATTGTCATCCTGGCCCATAAAGGCGGGCCCCGACCCCATAAGCTCGAAGACCTTTACGGGCTGAAAATCGCCGTGGTGGAGAACTATGCCCCCCACGAACTGTTGCGCAACCACCACCCCGACCTGAACCTGGTCGCACTGCCCAACGTCAGTTCGGCGCTGCAGGCCTTGGCGACCGATGAAGTCGATGCGGTGGTGGGCGATCTTGCTTCCAGCGTGTGGAGCTTGCGCCAGCTCAAGCTTGACGGGCTCTACGTCAGCGGAGAAACGCCCTACCGCTACCAGTTGGCGATGGCCGTCCCACGGGAAAACAAGATATTGGTGGGCATCCTCGACAAGGTCCTGGCGGACATGACGCCGATGGAGATCAGCGAAATCCAGGAAAAATGGGTTGGCAACGTGCGGGACCATCGCCAGCTCTGGTCAGACCTGCTGCTTTACGGCCTGCCCGGGCTGCTGCTGTTGATCGCCATCCTGGCAGTGGTGATTCGCATCAACCGTCGCCTGAGTTCGGAAATAGCCCGACGCGTCGACCTGGAACAGGAGCTGCGCAGCAGCGAATACCATTATCGCGGGCTGGTTGAGAGCCTTTCGGCGATTGCCTGGGAGGCCAGGGTCAGCGACTTCACCTACAGCTATGTATCGCCTCACGCCGAAGAATTGCTCGGCTATCCCCTCGCCCATTGGCTCATCCCCGGGTTCTGGCGCAACATCATTCATCCGGCGGACCTGATCCGCGCGCAGACATATTGCGATCACGAAGTCCTTGCCGGCCGCGATCACTGCATCGACTACCGGGTGATCACCGCCGACGGTCGCTGCCTGTGGGTGCGGGACATCGTCAGCCTGATCAAGCATGGCCATGAACCGTTGATGCGCGGACTGATGATCGACATCAGCGAAGCCAAGCACACCGAGGAAGCGCTGCGCCTTTCCGAACAGAAGTTCGGCTCGGTATTTCGCCAGTGCCCGGACATCCTGGTGATTGCGCGCCTGCTGGACGGTTGCCTGCTGGAGGTCAATAAAGCCTTCGAAGAGCAGATTGGCCTCAGCGCCGCAGAGGTGGTCGGCAAAAGCGCGACCGACCTGGACATCTGGGGCATACAAGGCGTCGGCCCAAGTTTGCTCCAGCGGTTGCAGGCCGGGAGCATTCGCAATCTGGAAATGCCTTTTCAACGCAGCAACGGCGAGGTGTTCACCGGGCTGATATCGGCCGAACCCTTTGATCTGGACACCACCCCAGCCCTGGTCGTGGTGGTGCGCGACATCAGCCAGCTCAAGGAGACCCAGCAGCAATTGCAGACCTCCGAAGAAAAATTCGCCAAGGCTTTTCACGCCTCGCCCGACGGCTTGCTGCTGTCCAGGCAGAGCGATGGTTTGCTGATTGAAGTCAACGACGGTTTCAGCCGCATTACCGGTTTCAACAGCGCCCTGTCGGTTGATCGTTCGACCCTGGACCTGGGAATCTGGGTCAATCTCAACGAGCGCAAGCAGATGCTCGACCTGCTGCAGCGGGACGGTTTCGTAAAGGATTTCAGCTGCCATATCCGCCGTAACGACGGGCAGATACGGCTCTGCGAGGTGTCCAGCCGTCCGCTGCCCATCGGCAACGAGGACTGCATGCTGACGATCGCCCGGGACATCACCGAACGCCACTTCATGCAGGAGAAACTGCAGCAGGCCGCCACCGTATTCGAAAGCACCGCCGAAGGCGTACTGATCACCGATACACAACAGCACATCAGCGCCGTGAACCGAGCCTTTACGGAAATCACCGGCTATAGCGAAACCGAAGCCCTGGGCCATACGCCTCGGCTGCTGGCTTCCGGGCTGCACGACAGCGCGTTTTATGCCGCGATGTGGCATCAGTTGACCGCCGAGGGCCACTGGCAGGGTGAAATCTCCAATCGACGCAAAAATGGCGAGCTGTATCCCAGCTGGCTGACCATCAGCGCCGTGCGCAACCAGGAACAACAGACCACCCATTTCGTCGCGGTTTTTGCCGACATTTCAAGCCTCAAGCACGCCCAGGCCCGACTCGACTACCAGGCGCATCACGACCCGCTCACGGGCCTGCCGAATCGCACGCTGTTCGAAAGCCGTTTGCTCTCGGCGCTCAATAGTCAGCAAGAAAATGGCGGCCAAGGCGCGGTGTTGTTCCTGGACCTGGACCGTTTCAAACACATCAACGACAGCCTCGGGCACCCGGTCGGCGATCTGCTGCTCAAGGGCATTGCCGTGCGCCTGCGCGAGCAATTGCGTGACATCGACACCGTGGCGCGCCTGGGCGGTGACGAATTCATCATCCTGCTGCCCGGCCTGCAGCAGCCCAGCGATGCCGAGCACATTGCGCAGAAGCTGTTGAACTGTTTCTGCGCGCCGTTCCAGGCCGGCGAGCATGAGTTTTTCATCAGCGCCAGCATCGGCACCAGCCTCTATCCGCAGGATGGCTGCGATGTCGCCACGCTGGTCAAAAACGCCGACGCGGCGATGTACCGCTCCAAGGCCAAGGGTCGCAACCGGGTGGAAAGCTACACTCGCGACCTCACGGCCCAGGCCAGCGAGCGCGTGGCACTGGAACACGAGCTGCGTCGGGCGATCGAGCGCAACGAACTGTCGTTGTCGTTCCAGCCGAAAATCAGCCTCATCGACAACCGCCTGGTAGGCGCCGAGGCATTGATTCGCTGGACCCATCCGACCTTTGGCGACGTACCACCGGAGCATTTCATCCCCCTGGCCGAAGAAAACGGCATGATCCTGCAAATCGGCGATTGGGTACTGGAAAACGCCTGCCGACAACTGCACGCATGGAACAGCTGTCACGAAAGCCTCGGGCCACTGTCAGTCAACCTGGCCGGCGCCCAACTGCGTCAGCCCAACCTGCTGAATCGGATCGAACAATTGCTGCGGGAAAACCACCTTGAGCCTGGTTTGTTGCAACTGGAGATTACCGAAAACTTCATCATGAGCCAGGCCGAAGAGGCCCTGACGGTACTGTATCAACTGAAAAAACTCGGCGTGCAACTGGCCATCGACGACTTCGGTACCGGCTATTCCTCGCTGAGCTACCTCAAGCGCCTGCCGCTGGACATCCTGAAAATCGACCAGTCTTTCGTCCGCGGCCTGCCCGATGACCCCCACGATGTGGCCATCGTGCGGGCAATCATCGCCTTGGGCCGGAGCATGCAATTCAGCATCATCGCCGAGGGCGTCGAAACTCTCGCCCAACAGCAATTTCTCGCCGAGGAAGGCTGCGAGCAGATCCAGGGCTACATCGTCAGCCTGCCCCTGTGCGCCGAAGAATTTGCCGCGACGTTTCTGCATGTGACCGTATCGGATTTTTCGGATAGCACAGCCGAGAAACCGTCGCTATAAMPRLTAVLLLSLMTWTATAGALTLTEEERRWLKDHPDLRLGVDASWPPFEFRDDNGRYQGLAADYVDIIREKLAVTLTPIEPVSWTEVLEQVVQGKIDLLPGIMSTPERQNYLSFTRPYLDFPIVILAHKGGPRPHKLEDLYGLKIAVVENYAPHELLRNHHPDLNLVALPNVSSALQALATDEVDAVVGDLASSVWSLRQLKLDGLYVSGETPYRYQLAMAVPRENKILVGILDKVLADMTPMEISEIQEKWVGNVRDHRQLWSDLLLYGLPGLLLLIAILAVVIRINRRLSSEIARRVDLEQELRSSEYHYRGLVESLSAIAWEARVSDFTYSYVSPHAEELLGYPLAHWLIPGFWRNIIHPADLIRAQTYCDHEVLAGRDHCIDYRVITADGRCLWVRDIVSLIKHGHEPLMRGLMIDISEAKHTEEALRLSEQKFGSVFRQCPDILVIARLLDGCLLEVNKAFEEQIGLSAAEVVGKSATDLDIWGIQGVGPSLLQRLQAGSIRNLEMPFQRSNGEVFTGLISAEPFDLDTTPALVVVVRDISQLKETQQQLQTSEEKFAKAFHASPDGLLLSRQSDGLLIEVNDGFSRITGFNSALSVDRSTLDLGIWVNLNERKQMLDLLQRDGFVKDFSCHIRRNDGQIRLCEVSSRPLPIGNEDCMLTIARDITERHFMQEKLQQAATVFESTAEGVLITDTQQHISAVNRAFTEITGYSETEALGHTPRLLASGLHDSAFYAAMWHQLTAEGHWQGEISNRRKNGELYPSWLTISAVRNQEQQTTHFVAVFADISSLKHAQARLDYQAHHDPLTGLPNRTLFESRLLSALNSQQENGGQGAVLFLDLDRFKHINDSLGHPVGDLLLKGIAVRLREQLRDIDTVARLGGDEFIILLPGLQQPSDAEHIAQKLLNCFCAPFQAGEHEFFISASIGTSLYPQDGCDVATLVKNADAAMYRSKAKGRNRVESYTRDLTAQASERVALEHELRRAIERNELSLSFQPKISLIDNRLVGAEALIRWTHPTFGDVPPEHFIPLAEENGMILQIGDWVLENACRQLHAWNSCHESLGPLSVNLAGAQLRQPNLLNRIEQLLRENHLEPGLLQLEITENFIMSQAEEALTVLYQLKKLGVQLAIDDFGTGYSSLSYLKRLPLDILKIDQSFVRGLPDDPHDVAIVRAIIALGRSMQFSIIAEGVETLAQQQFLAEEGCEQIQGYIVSLPLCAEEFAATFLHVTVSDFSDSTAEKPSLNANANANANA
D1-35_051371848rpoDCOG0568RNA polymerase sigma factor RpoDATGTCCGGAAAAGCGCAACAGCAGTCTCGTATCAAAGAGTTGATCCTATTGGGTCGTGAGCAGGGCTACCTGACTTACGCGGAGGTCAACGACCACCTGCCGGAGGATATTTCAGATCCGGAACAGGTGGAAGACATCATCCGCATGATCAACGACATGGGGATCAACGTATTCGAGGTTGCTCCAGATAAGGATGCCCTTATGCTGGCCGACGCCGATACCGACGAGGCGGCCGCTGAAGAAGCGGCCGCAGCGTTGGCAGCGGTCGAGACCGACATTGGTCGCACCACCGACCCCGTGCGCATGTACATGCGTGAGATGGGTACGGTAGAGCTCCTCACGCGTGAAGGCGAAATTGAAATCGCCAAGCGTATTGAAGAAGGCATCCGTGAAGTGATGGGCGCAATTGCGCACTTCCCTGGCACGGTCGACCATATTCTCTCCGAATACACCCGCGTCACCACCGAAGGTGGGCGCCTGTCTGACGTCCTGAGCGGTTACATCGACCCGGACGACGGCATCGCGCCGCCTGCCGCCGAAGTGCCACCACTGGTCGACCCGAAAGCCGTCAAGGCCGACGATGAGACCGACGATGACGACGCCGAAGCCAGCGACGACGAAGAAGAAGCCGAAAGCGGTCCAGACCCGGTCATCGCCGCCCAGCGTTTTGGCGCCGTGGCCGACCAGATGGAGATCACCCGCAAGGCGCTGAAAAAGCACGGTCGCAACAACAAGCAGGCAATTGCCGAACTGTTGGCGCTGGCTGAGCTGTTCATGCCGATCAAGCTGGTGCCCAAGCAGTTCGAAGGCCTGGTCGAGCGTGTTCGCAGTGCCCTGGATCGTCTGCGTCAGCAAGAGCGCGCGATCATGCAACTGTGTGTGCGTGACGCCCGCATGCCGCGTGCAGATTTCCTGCGCCAGTTCCCTGGCCATGAAGTCGACGAAAGCTGGACCGATGCACTGGCCAAAGGCAAGAGCAAATACGCCGAAGCGATTGGCCGCCTGCAACCGGACATCATTCGTTGCCAGCAGAAGCTGAGCGCGCTGGAGGCCGAGACTGGCCTGAGCATCGCTGAAATCAAGGACATCAACCGTCGCATGTCGATCGGCGAGGCCAAGGCCCGTCGCGCGAAGAAAGAGATGGTCGAAGCGAACTTGCGTCTGGTGATCTCGATCGCCAAGAAGTACACCAACCGTGGCCTGCAATTCCTCGACCTGATCCAGGAAGGCAACATCGGGCTGATGAAGGCGGTGGACAAGTTCGAATACCGTCGCGGCTACAAGTTCTCGACTTATGCCACCTGGTGGATTCGTCAGGCGATCACTCGCTCGATCGCCGACCAGGCTCGCACCATCCGTATCCCGGTGCACATGATCGAGACGATCAACAAGCTCAACCGTATTTCCCGGCAGATGTTGCAGGAAATGGGTCGCGAACCGACGCCGGAAGAGCTGGGCGAACGCATGGAAATGCCTGAGGACAAGATCCGCAAGGTATTGAAGATCGCCAAAGAGCCGATCTCCATGGAAACCCCGATCGGTGATGACGAAGATTCCCATCTGGGTGACTTCATCGAAGACTCCACCATGCAGTCGCCGATTGATGTCGCCACCGTTGAGAGCCTCAAGGAAGCGACTCGCGAAGTCCTTTCCGGTCTCACTGCCCGTGAAGCCAAGGTACTGCGGATGCGCTTCGGCATCGACATGAACACCGACCACACCCTCGAGGAAGTCGGTAAACAGTTCGATGTAACTCGTGAGCGGATTCGTCAGATCGAAGCCAAGGCGTTGCGCAAACTGCGCCACCCGACGCGAAGCGAGCATCTGCGTTCGTTCCTCGACGAGTGAMSGKAQQQSRIKELILLGREQGYLTYAEVNDHLPEDISDPEQVEDIIRMINDMGINVFEVAPDKDALMLADADTDEAAAEEAAAALAAVETDIGRTTDPVRMYMREMGTVELLTREGEIEIAKRIEEGIREVMGAIAHFPGTVDHILSEYTRVTTEGGRLSDVLSGYIDPDDGIAPPAAEVPPLVDPKAVKADDETDDDDAEASDDEEEAESGPDPVIAAQRFGAVADQMEITRKALKKHGRNNKQAIAELLALAELFMPIKLVPKQFEGLVERVRSALDRLRQQERAIMQLCVRDARMPRADFLRQFPGHEVDESWTDALAKGKSKYAEAIGRLQPDIIRCQQKLSALEAETGLSIAEIKDINRRMSIGEAKARRAKKEMVEANLRLVISIAKKYTNRGLQFLDLIQEGNIGLMKAVDKFEYRRGYKFSTYATWWIRQAITRSIADQARTIRIPVHMIETINKLNRISRQMLQEMGREPTPEELGERMEMPEDKIRKVLKIAKEPISMETPIGDDEDSHLGDFIEDSTMQSPIDVATVESLKEATREVLSGLTAREAKVLRMRFGIDMNTDHTLEEVGKQFDVTRERIRQIEAKALRKLRHPTRSEHLRSFLDENANANANANA
D1-35_051381959dnaGCOG0358DNA primaseATGGCCGGGCTAATTCCCCAGAGCTTTATTGACGACCTCCTGAACCGCACCGACATCGTCGACGTGGTCAGCTCTCGCCTGCAAATGAAGAAAGCGGGCAAGAACTACACAGCCTGCTGCCCGTTTCACAAAGAAAAAACCCCCTCCTTCAGCGTCAGCCCCGACAAGCAGTTCTATTATTGCTTCGGCTGCGGCGCTGGCGGCAATGCCCTCGGCTTCATCATGGACCACGACAACCTGGATTTCCCCCAGGCCGTCGAGGAACTGGCCAAAGCCGCCGGCATGGAAATTCCTCGCGAGGAGAGCGGACGACAACACAAGCCTCGCCAACCCACCGATTCGCCGCTGTATCCGCTGCTCACGGCAGCAGCCGACTTTTATCGCCAGGCACTTAAAAGCCATCCGGCCCGCAAGGCGGCGGTGGATTATCTCAAGGGCCGCGGCCTGACCGGTGAGATTGCTCGCGACTTCGGCCTCGGCTTCGCCCCGCCGGGCTGGGACAACCTGTACAAACATTTGAGCAGCGATACGCTGCAGCAACGTGCCATGATCGACGCTGGCCTGCTGATCGAGAACGCCGAGACGGGCAAGCGCTACGACCGCTTCCGTGACCGGGTGATGTTCCCGATCCGCGATACCCGCGGGCGGATCATCGCCTTTGGCGGCCGGGTGCTGGGGGACGACAAGCCCAAGTACCTGAACTCCCCGGAAACCCCGGTTTTCCATAAGGGCCAGGAACTCTACGGCCTGTACGAGGCGCGCAAGAACAATCGCAACCTCGATGAAATCATCGTTGTCGAAGGCTACATGGATGTCATCGCCCTGGCCCAGCAAGGCTTGCGCAACGCCGTTGCGACCCTGGGCACGGCCACCAGCGAAGAACACATGAAGCGCCTGTTTCGCGTCGTGCCGAGCGTGCTGTTCTGCTTCGACGGCGACCAGGCCGGACGCAACGCCGCCTGGCGCGCGCTTGAAGCGACGCTGCCATGCCTGCAGGACGGGCGGCGCGCACGTTTTCTGTTCCTGCCCGAGGGCGAGGACCCGGACACCCTGGTGCGCTCCGAGGGCACCGATGCGTTCCGTGCGCGGATCAACCAGCACGCACAGCCGCTGGCCGACTATTTTTTCCAGCAACTGACCGAAGAAGCCGATCCTCGCTCCCTCGAAGGCAAAGCCCATATGGCCACGCTCGCGGCACCGCTCATCGACAAGGTGCCCGGCGCCAACCTGCGGACCTTGATGCGTCAACGCCTGACGGAAATTACCGGGCTGAACAGCGAAGCGGTCAGCCAGCTGGCCCACAGTGCCCCTCAGGAGGCACCGCCGGCTTACGACCCGGGCATCGACTACGACGCGATACCCGACTTCGCCGACTATCATCAAACCCAGCAGGACTACGCGCCGCAGCAGGAATGGACACCGAAGAAACCCGGTGCCGGCGGCAAGAAATGGGACAAGAAACCCTGGGACAAGAACGGCAAGCGCGGCGATCGCGACCAGCCACGTGCCCCGCGCGTGCCGGCCGCCGTCGAACCACCAACACTGGCTGCCCTGCGCACCCTGCTGCACCACCCGCAGTTGGCTGAAAAGGTAGAGGATGCCGGGCACTTCGCCGCCGAGGACCACAGCAATACACAATTGCTGGTCGCGCTCCTTGAAGCTGTGCAGAAGAACCCCAAGCTAAACTCATTCCAGCTGATCGCGCGGTGGCACGGCACCGAGCAGGGGCGCCTTTTGAAGGCATTGGCCGAGAAGGAATGGCTGATAGAGGGAGATAACCTTGAACAACAGTTTTTCGACACCATTACTAGCTTGTCCGCCCGCCAACGCGAGCGAAACCTGGAACAACTTCTGCGCAAAGCTCGCCAGAGCGAGTTGACCAGCGAAGAGAAAAACCAATTGCGTGACTTACTCAGCCGCAATGTTTGCGCATCAAACCCGACCTCAACTGGCGCGTGAMAGLIPQSFIDDLLNRTDIVDVVSSRLQMKKAGKNYTACCPFHKEKTPSFSVSPDKQFYYCFGCGAGGNALGFIMDHDNLDFPQAVEELAKAAGMEIPREESGRQHKPRQPTDSPLYPLLTAAADFYRQALKSHPARKAAVDYLKGRGLTGEIARDFGLGFAPPGWDNLYKHLSSDTLQQRAMIDAGLLIENAETGKRYDRFRDRVMFPIRDTRGRIIAFGGRVLGDDKPKYLNSPETPVFHKGQELYGLYEARKNNRNLDEIIVVEGYMDVIALAQQGLRNAVATLGTATSEEHMKRLFRVVPSVLFCFDGDQAGRNAAWRALEATLPCLQDGRRARFLFLPEGEDPDTLVRSEGTDAFRARINQHAQPLADYFFQQLTEEADPRSLEGKAHMATLAAPLIDKVPGANLRTLMRQRLTEITGLNSEAVSQLAHSAPQEAPPAYDPGIDYDAIPDFADYHQTQQDYAPQQEWTPKKPGAGGKKWDKKPWDKNGKRGDRDQPRAPRVPAAVEPPTLAALRTLLHHPQLAEKVEDAGHFAAEDHSNTQLLVALLEAVQKNPKLNSFQLIARWHGTEQGRLLKALAEKEWLIEGDNLEQQFFDTITSLSARQRERNLEQLLRKARQSELTSEEKNQLRDLLSRNVCASNPTSTGANANANANANA
D1-35_05139216rpsUCOG082830S ribosomal protein S21ATGCCAGCCGTCAAAGTAAAAGAGAACGAACCCTTCGACGTAGCTCTGCGTCGTTTCAAGCGCTCCTGCGAAAAAGCCGGTGTTCTGGCTGAAGTTCGTAGCCGCGAATTCTACGAGAAGCCGACTTCCGAGCGTAAGCGCAAAGCAGCAGCCGCTGTTAAGCGTCACGCCAAGAAAGTTCAGCGCGAACAGCGCCGCGCCGTACGTCTGTACTAAMPAVKVKENEPFDVALRRFKRSCEKAGVLAEVRSREFYEKPTSERKRKAAAAVKRHAKKVQREQRRAVRLYNANANANANA
D1-35_051401065tsaDCOG0533tRNA N6-adenosine threonylcarbamoyltransferaseATGCGCGCCTTCGAATTCAGCCTCTACAAGGCGCAACCCATGCTAGTACTGGGATTAGAAACGTCCTGCGACGAAACCGGCGTCGCCCTCTACGACAGTGAACGTGGCCTGCTGGCCGACGCGCTGTTCAGCCAGATCGACCTGCACCGCGCGTACGGCGGCGTGGTGCCGGAGCTTGCATCACGCGATCACGTCAAGCGCATGCTGCCCTTGATCCGCCAGGTCCTGGCCGAAGGCGGCTGCGTGCCGACCGAGATCGATGCCATCGCCTACACGGCCGGGCCGGGTCTGGTGGGCGCCCTGTTGGTCGGTGCTTCCTGTGCCCAGGCGCTGGCCTTTGCCTGGGGCATTCCGGCCTTGGGCGTGCACCACATGGAGGGCCACCTGCTGGCGCCGATGCTGGAGCCGCAGCCGCCGGAGTTTCCGTTCGTCGCTTTGTTGGTATCCGGAGGCCATACGCAGCTCGTGCGGGTCGATGGAATCGGCCAATACCAACTCATGGGTGAGTCGCTCGACGACGCCGCGGGCGAGGCTTTTGATAAAACCGCCAAGATGATGGGGCTCAATTATCCTGGCGGACCGGAAATCGCACGACTTGCCGCTCAAGGCATTGAAGGGCGTTTCGTATTCCCGCGTCCGATGTGCGACCGGCCTGGACTGGATTTCAGCTTCAGTGGCCTGAAAACCTTCGCGCTGAATACCTGGCAACAATGCGTCAATGCCGGGGACGACAGTGAGCAAGCCCGTTGCGACATCTCCCTGGCGTTCCAGCAGGCCGTGGTGGAGACTTTGACGATCAAGTGCAAGCGCGCGCTGAAACAGGCTGGGCTCAAGCGCCTGGTGATTGCCGGCGGGGTGAGCGCGAACAAGGCCTTGCGGGTATCCCTGGAGAAAATGCTCGGCGATATGAAGGGCGACGTTTACTACGCTCGGCCGGAGTTCTGCACAGATAACGGCGCAATGATTGCTTTTGCCGGTTGCCAGCGCCTGCAGGCGGGGCAGCAGGAAAGCCTGGCGATCAGCGTGCAGGCGCGCTGGCCCATGGAGCAACTTTCACCGCTGTGAMRAFEFSLYKAQPMLVLGLETSCDETGVALYDSERGLLADALFSQIDLHRAYGGVVPELASRDHVKRMLPLIRQVLAEGGCVPTEIDAIAYTAGPGLVGALLVGASCAQALAFAWGIPALGVHHMEGHLLAPMLEPQPPEFPFVALLVSGGHTQLVRVDGIGQYQLMGESLDDAAGEAFDKTAKMMGLNYPGGPEIARLAAQGIEGRFVFPRPMCDRPGLDFSFSGLKTFALNTWQQCVNAGDDSEQARCDISLAFQQAVVETLTIKCKRALKQAGLKRLVIAGGVSANKALRVSLEKMLGDMKGDVYYARPEFCTDNGAMIAFAGCQRLQAGQQESLAISVQARWPMEQLSPLNANANANANA
D1-35_05141570plsYCOG0344Glycerol-3-phosphate acyltransferaseATGTTTTGGTCACTGGCGATCCTCGCCTACCTGCTCGGCTCACTGTCCTTTGCCATTTTGCTCAGCCGCCTGACCGGTCGCCCGGATCCGCGAATGAGTGGCTCAGGCAATGCCGGCGCCACCAACATGCTGCGCCTGGCCGGACGCAAGCTTGCCGTCCTGACCCTGCTTGGCGACCTCTGCAAAGGCCTCGTGCCGGTTCTGCTCGCCAGCCTCGCAGGGCTTTCGTTGCAGCAACAGGCCTGGGTCGGCGTCTGCGCGGTCATCGGCCATCTGTTCCCGCTGTACTTCCGCTTTCGCGGCGGCAAGGGTGTCGCCACCGCCGCCGGCATGCTGCTGGGCCTGTATCCGCCTGCCGCCCTGCTTGCCGTGTGCGCCTGGCTGCTGACCTTCTACCTGACCCGCACCAGCTCCCTGGCCGCATTGATCGCCACGCCACTGACCCTGCCTTTGCTGGCCTGGCAGGAACCGGCAGCGTTGCTGCCGATGACGACACTCGTTGCGCTGATCGTCTGGCGCCACCGGGGCAATCTACGCGACCTGTTCGCCGGGCGCGAACGGCATTTCTGAMFWSLAILAYLLGSLSFAILLSRLTGRPDPRMSGSGNAGATNMLRLAGRKLAVLTLLGDLCKGLVPVLLASLAGLSLQQQAWVGVCAVIGHLFPLYFRFRGGKGVATAAGMLLGLYPPAALLAVCAWLLTFYLTRTSSLAALIATPLTLPLLAWQEPAALLPMTTLVALIVWRHRGNLRDLFAGRERHFPGPT0024375_3639DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_ACYLTRANSFERASE_ACTIVITY,PGPT0024375-plsY-K08591NANA
D1-35_05142354folBCOG1539Dihydroneopterin aldolaseTTGGACAGAGTGTTTATCGAAGGCCTGGAAGTCGACACGGTGATTGGTGCCTACGACTGGGAGCGAGGCATCCGACAGTGCCTGCGGCTTGATCTGAGTTTTGCCTGGGATAATCGTCCGGCGGCTGCGGACGATGACCTGAGCCTGGCCCTCGACTACGCCAGCGTATCGGCCCGCATCCAGGCATTTGCCGAGCAGGCGCAGTTCCAATTGGTCGAAACCTTTGCCGAGCGACTGGCCCAAGAGCTCATGGATGAGTTCAGGATCACCTGGCTGCGGCTGAAAGTGACCAAGCCCGGGGCCGTGCCGGCCGCTACCGGCGTTGGCGTGGAGATCGAGCGCGGATGTCGCTGAMDRVFIEGLEVDTVIGAYDWERGIRQCLRLDLSFAWDNRPAAADDDLSLALDYASVSARIQAFAEQAQFQLVETFAERLAQELMDEFRITWLRLKVTKPGAVPAATGVGVEIERGCRPGPT0007905_3420DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007905-folB-K01633NANA
D1-35_05143519hypothetical proteinATGTCGCTGACTCAGGTTTTTCTCGGGCTCGGCAGTAATATCGAGCGTGAAATCCATTTGCGCGCGGGGCTTGAGGCTCTGGCCGGTTTCCTGGTGGATATGCGCTGTTCGGCCGTGTTCGAAAGTCAGCCGGTGGGTATCAAGAGCGGGCCGTTCTTCAATTTCGTCGTGTCAGCGTTCACCGATCTTCCACTGATGGAACTGGACCGCCGCCTCAAGTTCATCGAGGCCGATAATGGCCGCTACGCGCCGGACCGCAAGGGTTTGCCGCTGGATATCGACGTGCTGCTGTATGGCGAGCAGGTCGGCAACTTCGATGGGTTGATCCTGCCGCGCGCGGAAATTCTCAAGAATGCTTTTGTCTTGTGGCCTTTGTCATTGATTGCGCCGGACCGGATTCATCCAGGCGTGGGCAAGAGCTTTTCCACGTTGTGGAAAGAAGCACAGATTGATCAGGTGCTGGCGCCGGTGGCTTTCGAGTGGCGAGGTCAGCCGCTTACGCCATCAGAGCTGCTGTGAMSLTQVFLGLGSNIEREIHLRAGLEALAGFLVDMRCSAVFESQPVGIKSGPFFNFVVSAFTDLPLMELDRRLKFIEADNGRYAPDRKGLPLDIDVLLYGEQVGNFDGLILPRAEILKNAFVLWPLSLIAPDRIHPGVGKSFSTLWKEAQIDQVLAPVAFEWRGQPLTPSELLPGPT0007910_1406DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B9|FOLATE_METABOLISM,PGPT0007910-folK-K00950NANA
D1-35_051441227ccaCOG0617Multifunctional CCA proteinATGCAGATCTACAAAGTCGGCGGCGCTGTTCGTGATCGCCTGCTCGGCATCCCTGTCACCGACATCGACCGGGTGGTCGTGGGCGCCACCGCCGAGGAAATGCTGGCCAAGGGATTCCGTCCCGTGGGGGCTGATTTTCCGGTCTTCCTTGACCCGAAGACTGGCGAGGAATACGCCCTCGCCCGCACCGAACGCAAGAGCGGCAGGGGTTACGGTGGCTTCGTATTCCATGCCAGCCCCGAAGTGACGCTCGAAGAAGACCTCATCCGCAGGGACCTGACAATCAACGCCATGGCCGAAGACGACCATGGCAACCTCACCGATCCCTACCACGGCCAGCGCGATCTCGAAGATCGCCTGCTGCGGCACGTTTCCCCGGCGTTTGCCGAGGATCCACTGCGGGTTCTGCGAGTTGCCCGCTTTGCCGCACGTTATGCCCCGCTGGGTTTTAAGGTGGCGGACGAAACCCTCACGTTGATGCGCAAGCTCAGTGAATCTGGCGAGCTGGAAGCTTTGACTGCCGAACGCAGCTGGAAAGAGATCTCCCGCGCCCTGATGGAAGATCAGCCACAAGTGTTTATCCAGGTACTGCGCGACTGCGATGCCCTCAAGGTATTGATGCCCGAGGTCAATGCGCTGTTCGGGGTCCCGCAGCCTGAAGCTCATCACCCGGAAATCGACAGCGGCGTCCATACCTTGAGCGTGCTGGAACAGTCGGCGCTGCACAAACAGCCACTGGCGGTCCGCTGGGCTTGCCTGTTGCATGACCTCGGCAAAGGTTTGACACCCGAGCACGAATGGCCAAGGCACATCGCCCATGAGCACAAGGGGCTGAAGCTGATCAAAGCAGTCAACGAACGCTTCAAGGCGCCCCGTGACTGCCAGGAACTGGCGCTGCTGGTAGGTCAATACCACACCCATGGACACCGCGCGCTGGAGCTCAGGGCAACCACTTTGCTTGAGCTGCTGCAGAGCTTTGATGTGTACCGGCGCCCCCAGCGTTTCGAGGAGTTCATTGCCGCATGCGAGATGGATGCGCGAGGGCGCAAGGGGCTTGAGGAACGAAGTTACCCACAGGCTGATTACCTGCGGGGCGCTGCGTCAGCGGCCCGCGGCGTTGCGGTGCAGCCGTTGCTGGAGAAGGGTTTCAAGGGGCCGGAACTGGGTGAAGCGATCAAGCGAGAGCGCCTCAGGGCGTTGAAGGCTTACAAGGAAGCGGCGAGCTGAMQIYKVGGAVRDRLLGIPVTDIDRVVVGATAEEMLAKGFRPVGADFPVFLDPKTGEEYALARTERKSGRGYGGFVFHASPEVTLEEDLIRRDLTINAMAEDDHGNLTDPYHGQRDLEDRLLRHVSPAFAEDPLRVLRVARFAARYAPLGFKVADETLTLMRKLSESGELEALTAERSWKEISRALMEDQPQVFIQVLRDCDALKVLMPEVNALFGVPQPEAHHPEIDSGVHTLSVLEQSALHKQPLAVRWACLLHDLGKGLTPEHEWPRHIAHEHKGLKLIKAVNERFKAPRDCQELALLVGQYHTHGHRALELRATTLLELLQSFDVYRRPQRFEEFIAACEMDARGRKGLEERSYPQADYLRGAASAARGVAVQPLLEKGFKGPELGEAIKRERLRALKAYKEAASNANANANANA
D1-35_051451566hypothetical proteinATGACCGCCAAAAAAGAGCAGAAGCGCCAGCCCATTTCCACCGGTTCCGAATGGACATTCGAGCTGATCCAGGCCTATGACCGCGAAATCAGCCGTATCGCGGACCGTTACGCCCTGGACACGTACCCCAACCAGATCGAAGTGATCACCGCCGAGCAAATGATGGACGCCTATGCATCCGTAGGGATGCCACTGGGCTACCACCACTGGTCCTACGGCAAGCATTTCCTCAGTACGGAGAAATCCTACAGTCGCGGCCAGATGGGGCTGGCCTATGAGATCGTGATCAACTCCGATCCCTGCATCGCCTACCTGATGGAAGAAAACACCATCTGCATGCAGGCGCTGGTGGTGGCGCATGCCTGCTATGGCCACAACAGCTTCTTCAAGGGCAACTATCTGTTCCGCACCTGGACCGACGCCAGCTCGATCATCGATTACCTGGTGTTCGCCAAGCAGTACATCATGCAGTGCGAGGAACGCCACGGCATTGATGCGGTGGAGGACCTGCTGGACTCCTGCCACGCCCTGATGAACTATGGTGTGGACCGCTACAAGCGGCCGTATCCGATTTCCGCCGAGGAAGAGCGCCGACGCCAGAAGGACCGTGAAGAACACCTGCAGAAGCAGATCAACGATCTTTGGCGGACCATTCCCAAAGGCGCGGACAAGTACAGCGAGAAAGACAACGCGCGGTTCCCTGCCGAGCCCCAGGAGAACATCCTTTATTTCATCGAGAAACACGCGCCGCTGCTGGAACCCTGGCAGCGCGAGATCGTACGCATCGTGCGCAAGATCGCCCAGTATTTCTACCCTCAGCGCCAGACCCAGGTGATGAACGAGGGCTGGGCAACATTCTGGCACTACACGTTGATGAACGACCTGTACGACGAGGGCCTGGTCACCGATGGCTTCATGATGGAGTTCCTGACCTCCCATACCAGCGTGGTATTCCAGCCAGGCTTCGATAGTCCCTACTACAGCGGCATCAACCCTTATGCCCTGGGCTTTGCCATGTACCGCGACATTCGGCGCATGTGTGAAGACCCTACCGAAGAGGATCGCCGCTGGTTTCCGGAAATCGCCGGCTCGGACTGGCTTTCCACGATCAAATTCGCCATGAGCAGCTTCAAGGACGAGAGTTTCATCCTGCAGTACCTTTCGCCCAAGGTGATCCGCGACCTCAAGCTGTTCAGCATCATGGACGATGATCAGAAGGATGACCTGCTGGTGCCCGCCATCCACGATGAGAGCGGTTACCGGGTCATCCGTGAAACCCTGGCGGCGCAATACAATCTCGGTAATCGCGAGCCCAACGTGCAGATCTACAGCATCGACCGTCGTGGTGATCGTTCCCTGACCCTGCGTCACCAACAGCACAACCGCAAACCGCTGGGCGATTCCACGGACGAGGTCCTCAAGCACCTGCATCGGCTTTGGGGGTTCGACATCCACCTGGAAACCCTGCAGGGCGACCAGGTGATGAAAACCCACCATGTGCCGCCGCGCGGCGAACAAGGCGAAGGGGATTACGGACGCCTGGACCTGGCCGTCATTCATCTTTGAMTAKKEQKRQPISTGSEWTFELIQAYDREISRIADRYALDTYPNQIEVITAEQMMDAYASVGMPLGYHHWSYGKHFLSTEKSYSRGQMGLAYEIVINSDPCIAYLMEENTICMQALVVAHACYGHNSFFKGNYLFRTWTDASSIIDYLVFAKQYIMQCEERHGIDAVEDLLDSCHALMNYGVDRYKRPYPISAEEERRRQKDREEHLQKQINDLWRTIPKGADKYSEKDNARFPAEPQENILYFIEKHAPLLEPWQREIVRIVRKIAQYFYPQRQTQVMNEGWATFWHYTLMNDLYDEGLVTDGFMMEFLTSHTSVVFQPGFDSPYYSGINPYALGFAMYRDIRRMCEDPTEEDRRWFPEIAGSDWLSTIKFAMSSFKDESFILQYLSPKVIRDLKLFSIMDDDQKDDLLVPAIHDESGYRVIRETLAAQYNLGNREPNVQIYSIDRRGDRSLTLRHQQHNRKPLGDSTDEVLKHLHRLWGFDIHLETLQGDQVMKTHHVPPRGEQGEGDYGRLDLAVIHLPGPT0024845_238DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-SPORE_PRODUCTIONCE-SPORE_FORMATION|GERMINATIONCE-STAGE_V_SPORULATION,PGPT0024845-spoVR-K06415NANA
D1-35_051461272hypothetical proteinATGAGCTATGTGATCGACCGACGCCTGAATGGCAAGAACAAGAGCACGGTGAACCGCCAGCGTTTCTTGCGGCGTTACCGTGACCACATCAAGAAAGCCGTCGAAGAGGCGGTCAGCCGTCGTTCCATTACGGACATGGAGCATGGCGAGCAGATCAGCATCCCTGGCCGCGACATCGACGAGCCGGTGCTTCACCACGGCCGTGGTGGCAAGCAGACCGTCGTGCACCCGGGAAACAAGGAATTCACCACTGGCGAGCACATCCCGCGCCCACAGGGGGGAGGCGGCGGCAAGGGGCCCGGCAAGGCCGGCAATTCCGGCGAAGGCATGGACGAGTTCGTATTCCAGATCACCCAGGAGGAATTCCTCGAATTCATGTTCGAGGACCTGGAACTGCCGAACCTGGTCAAGCGCAACCTGACCGGTACCGACACCTTCAAGACCGTGCGCGCCGGCATCAGCAACGAGGGTAATCCGTCACGCATCAATATCATTCGCACCCTGCGTTCGGCCCATGCCCGACGAATCGCGCTCTCAGGCAGTAGCCGGGCGAAACTGCGCGAAGCCAAGGAAGAGCTGGCTCGCCTTAAACGTGAAGAACCCGACAATTTTGGCGATATTCAGGACCTGGAAGCGGAAATCGAGAAACTCAGCGCGCGTATCCATCGTGTGCCGTTCCTCGACACGTTCGACCTCAAATACAACCTCCTGGTGAAACAACCGAATCCCAGTTCGAAGGCCGTGATGTTCTGCCTGATGGACGTTTCCGGCTCCATGACCCAAGCCACCAAGGACATCGCCAAGCGCTTCTTTATCCTGCTGTACCTGTTCCTGAAGAGGAACTACGACAAGATCGATGTGGTGTTCATCCGTCACCACACCAGCGCCAGGGAAGTCGACGAGGAAGAGTTTTTCTATTCCAGGGAAACCGGCGGCACGATCGTGTCCAGCGCGCTGAAACTGATGCAGGAGATCATGGCCGAACGTTACCCCGCCAATGAATGGAACATCTATGCGGCCCAGGCGTCCGACGGCGATAACTGGAACGACGACTCGCCAATCTGCCGTGACATCCTGATCAACCAGATCATGCCGTTCGTCCAGTACTACACCTACGTGGAAATTACTCCACGCGAACACCAGGCCCTGTGGTACGAATACGAACGCATCGCCGAAGCCTTCTCCGACACATTTGCCCAACAGCAACTGGTCTCGGCCGGGGATATCTACCCGGTCTTCCGTGAACTCTTCCAGCGCAGGTTAGTGACATGAMSYVIDRRLNGKNKSTVNRQRFLRRYRDHIKKAVEEAVSRRSITDMEHGEQISIPGRDIDEPVLHHGRGGKQTVVHPGNKEFTTGEHIPRPQGGGGGKGPGKAGNSGEGMDEFVFQITQEEFLEFMFEDLELPNLVKRNLTGTDTFKTVRAGISNEGNPSRINIIRTLRSAHARRIALSGSSRAKLREAKEELARLKREEPDNFGDIQDLEAEIEKLSARIHRVPFLDTFDLKYNLLVKQPNPSSKAVMFCLMDVSGSMTQATKDIAKRFFILLYLFLKRNYDKIDVVFIRHHTSAREVDEEEFFYSRETGGTIVSSALKLMQEIMAERYPANEWNIYAAQASDGDNWNDDSPICRDILINQIMPFVQYYTYVEITPREHQALWYEYERIAEAFSDTFAQQQLVSAGDIYPVFRELFQRRLVTPGPT0025005_681DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-SPORE_PRODUCTIONCE-SPORE_FORMATION|GERMINATIONCE_OTHER_SPORULATION_RELATED_PROTEINS,PGPT0025005-yhbH-K09786NANA
D1-35_051471923hypothetical proteinATGAGTATTTTTAGCCACTTCCAGCAACGTTTCGAGTCCACGCGGCAGGAGGAGTACTCGCTGCAGGAATACCTCGAACTCTGCAAGCAGGACCGCAGTGCCTACGCATCGGCCGCGGAGCGTCTGTTGCTGGCAATCGGAGAACCGGAACTGCTGGATACCTCGACCAACTCGAGGCTCTCGCGAATCTTTTCCAACAAGGTGATTCGCCGCTATCCGGCCTTTGCGGACTTCCACGGGATGGAAGAATGCATCGAACAGATCGTTTCCTATTTCCGCCATGCCGCCCAAGGCCTGGAGGAGAAAAAACAAATCCTCTATCTGCTCGGCCCCGTCGGTGGCGGTAAATCGTCCCTGGCCGAGAAGCTCAAGCAACTGATCGAAAAAGTGCCCTTCTATGCCATCAAGGGTTCGCCGGTGTTCGAGTCCCCACTGGGGCTGTTCAACGCTACCGAAGACGGCGCGATTCTCGAGGAAGACTTTGGCATTCCCCGGCGCTATCTCAATACCATCATGTCGCCATGGGCTACCAAGCGCCTGGCCGAGTTCGGCGGCGATATCAGCCAGTTCCGGGTGGTCAAGCTCTACCCCTCGATCCTTAACCAGATCGCCGTGGCCAAGACCGAGCCCGGGGATGAAAACAACCAGGATATCTCTGCCCTGGTGGGTAAGGTCGATATTCGCAAACTGGAGGAATTCCCTCAGAACGACGCCGACGCCTATAGCTATTCGGGCGCGCTGTGCCGGGCCAACCAGGGCCTGATGGAATTCGTCGAGATGTTCAAGGCGCCCATCAAGGTGCTGCACCCCCTCCTGACTGCCACCCAGGAAGGCAACTACAACAGTACCGAAGGGCTGGGAGCGATCCCGTTCAGCGGCATCCTGCTGGCCCACTCCAACGAGTCGGAATGGCATACCTTCCGCAACAACAAGAACAACGAAGCCTTCATCGACCGGATCTACATCGTCAAGGTGCCGTACTGCCTGCGGGTGACCGATGAGATAAAAATCTACGACAAGCTGTTGTTCAACAGTTCGCTGTCCAAGGCCCATTGCGCCCCCGATACGCTGAAGATGCTGGCCCAGTTCACCGTGCTGTCGCGTCTCAAGGAGCCGGAAAACTCCAACATCTATTCGAAAATGCGCGTCTACGACGGTGAAAACCTCAAGGACACCGATCCGAAGGCCAAGTCGATCCAGGAATACCGCGACAACGCGGGCGTGGACGAAGGCATGAATGGTCTTTCCACGCGTTTCGCATTCAAGATCCTGTCCAAGGTCTTCAACTTCGATCCTCACGAAATTGCCGCCAACCCAGTCCATCTGCTTTATGTACTTGAACAGCAGATCGAGCAGGAGCAGTTCCAGGCTGAAACCCGTGAGCGGTACCTGCGCTTCCTCAAGGAATACCTGGCTCCACGTTATATCGAGTTCATCGGCAAGGAGATCCAGACGGCCTATCTGGAGTCCTACAGCGAGTACGGTCAGAACATCTTCGATCGTTATGTGCTGTACGCAGATTTCTGGATCCAGGACCAGGAATACCGGGACCCGGAAACCGGCGAAATCCTCAATCGCGTGGCACTGAACGAGGAACTGGAAAAAATCGAAAAACCGGCGGGCATCAGCAATCCGAAGGATTTCCGCAACGAAATCGTCAACTTCGTGCTGCGCGCCCGGGCCAACAACAACGGCAAGAACCCGACCTGGCTCAGCTACGAGAAGCTGCGGGTGGTTATCGAGAAAAAAATGTTCTCCAACACCGAAGACCTGCTGCCAGTCATCAGCTTCAATGCCAAGGCCAGCAAGGAGGACCAGCAAAAACACAACGACTTCGTTACACGCATGGTCGAACGTGGCTACACCGACAAACAGGTACGCCTGCTTTCCGAGTGGTACCTGCGGGTCCGTAAATCACAGTAGMSIFSHFQQRFESTRQEEYSLQEYLELCKQDRSAYASAAERLLLAIGEPELLDTSTNSRLSRIFSNKVIRRYPAFADFHGMEECIEQIVSYFRHAAQGLEEKKQILYLLGPVGGGKSSLAEKLKQLIEKVPFYAIKGSPVFESPLGLFNATEDGAILEEDFGIPRRYLNTIMSPWATKRLAEFGGDISQFRVVKLYPSILNQIAVAKTEPGDENNQDISALVGKVDIRKLEEFPQNDADAYSYSGALCRANQGLMEFVEMFKAPIKVLHPLLTATQEGNYNSTEGLGAIPFSGILLAHSNESEWHTFRNNKNNEAFIDRIYIVKVPYCLRVTDEIKIYDKLLFNSSLSKAHCAPDTLKMLAQFTVLSRLKEPENSNIYSKMRVYDGENLKDTDPKAKSIQEYRDNAGVDEGMNGLSTRFAFKILSKVFNFDPHEIAANPVHLLYVLEQQIEQEQFQAETRERYLRFLKEYLAPRYIEFIGKEIQTAYLESYSEYGQNIFDRYVLYADFWIQDQEYRDPETGEILNRVALNEELEKIEKPAGISNPKDFRNEIVNFVLRARANNNGKNPTWLSYEKLRVVIEKKMFSNTEDLLPVISFNAKASKEDQQKHNDFVTRMVERGYTDKQVRLLSEWYLRVRKSQPGPT0014345_739DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSOTHER_STRESS_RESPONSE_PROTEINS,PGPT0014345-prkA|yeaG-K07180NANA
D1-35_05148330glpECOG0607Thiosulfate sulfurtransferase GlpEATGACCGAATTCAAACGCATCCCTCCCGAACAAGCCCAGGCCCTGCGTGAGCAGGGCGCTGTCGTCGTCGATGTGCGCGACCCGCAGACTTACGCCATGAACCATATTCCGGGATCCAAACACCTGGACAACCATTCCATCGCCGACTTCATCCGTGCCGCCGATCTCGATGCGCCTACCGTTGTGGTCTGCTACCACGGCAACTCCAGCCAGAGCGCAGCGGGTTACCTGGTCAGCCAGGGCTTCAGCGATGTCTACAGCCTGGACGGCGGTTTTGAGCTGTGGCGCGCAACTTATCCTGACGAAACAGTGCAAGGCACTCACGAATAAMTEFKRIPPEQAQALREQGAVVVDVRDPQTYAMNHIPGSKHLDNHSIADFIRAADLDAPTVVVCYHGNSSQSAAGYLVSQGFSDVYSLDGGFELWRATYPDETVQGTHEPGPT0003021_197DIRECT EFFECTBIO-FERTILIZATIONSULFUR_ASSIMILATION|MINERALIZATIONS-ASSSIMILATION-SULFUR_METABOLISMS-METABOLISM-THIOSULFATE_DEGRADATION,PGPT0003021-glpE-K02439NANA
D1-35_05149876apaH_2COG0639Bis(5'-nucleosyl)-tetraphosphatase, symmetricalATGGCCACGTACGCGGTCGGCGACCTGCAAGGCTGCCTAGACCCGCTCAAGTGCCTGCTGGAGCGGGTCGCCTTCGACCCACGTGAAGACACCCTGTGGCTCGTGGGCGACCTGGTCAACCGGGGGCCGCAGTCGCTTGAAACCTTGCGCTTCCTCTACGGCATCCGCGATTCGCTGGTTTGCGTGCTGGGTAACCATGACCTGCACCTGCTGGCGGCCTGGCAGAACATCGAGCGCCTGAAGAAGTCCGATACCCTGAAGGAAATCCTCGACGCGCCTGATTGCGTCGAGCTGCTTGAATGGCTGCGCCAGCAGAAGCTCATGCACTACGACGAGGCGCGCAACCTGGCGCTGGTCCATGCCGGCATTCCGCCCCAATGGTCTTTGCGCAAGGCGCTCAAGTGCGCAGGCGAAGTGGAGCAGGCGTTGCGCGATGACAACCTGTTCGGCCCCTACCTGGATGGCATGTACGGCAACGAACCGGTGAAGTGGGACAACGACCTCACCGGCGCCGCCCGCCTCAGGGTCATTACCAATTATTTCACCCGGATGCGCTTCTGCACCCGTGATGGCAAGCTTGATCTCAAGGGCAAGGAAGGCATCGAAACCGCTCCGCCCGGCTATGCGCCCTGGTTCAAGCACAAGGAGCGCAAGACCCGTAACCTGAAGATCATCTTCGGCCATTGGGCCGCGCTTGAAGGCCAAAGCGACGAGCCAGGGGTCTTTGCCCTCGATACGGGCTGTGTCTGGGGCAGCGCGCTGACACTGATGAATGTCGACAGCGGCGAGTTGCTGCGCTGCGATTGCGACGAGAAGGGGCATGCCAGACCCCACCAACCGACCACCGCATCATTGCCGGCCGGCACTGCCATTTGAMATYAVGDLQGCLDPLKCLLERVAFDPREDTLWLVGDLVNRGPQSLETLRFLYGIRDSLVCVLGNHDLHLLAAWQNIERLKKSDTLKEILDAPDCVELLEWLRQQKLMHYDEARNLALVHAGIPPQWSLRKALKCAGEVEQALRDDNLFGPYLDGMYGNEPVKWDNDLTGAARLRVITNYFTRMRFCTRDGKLDLKGKEGIETAPPGYAPWFKHKERKTRNLKIIFGHWAALEGQSDEPGVFALDTGCVWGSALTLMNVDSGELLRCDCDEKGHARPHQPTTASLPAGTAIPGPT0021535_153DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021535-apaH-K01525NANA
D1-35_05150381apaGCOG2967Protein ApaGATGTCCGATCCCCGTTATCAGGTCGACGTCAGCGTCGCCACCCGCTTTCTCGCTGAACAGTCGCAACCCGAGCACAACCGCTTCGCCTTTGCCTACACCATCACTGTGCGCAACAACGGCTCGTTGCCAGCCCGACTGCTGTCACGGCACTGGATCATTACCGACGGCGACGGGCACGTCGAAGAAGTCCGTGGCGAGGGTGTGGTCGGTCAGCAACCGTTGATCGACGCAGGCCAAAGCCACAGCTACAGCAGCGGCACCGTGATGACGACCAAGGTCGGCACCATGCAGGGCACCTACCAGATGCTGGCCGAGGACGGCAAACGCTTCGACGCGGTCATCAAGCCCTTTCGCCTGGCGGTGCCAGGAGCGTTGCACTGAMSDPRYQVDVSVATRFLAEQSQPEHNRFAFAYTITVRNNGSLPARLLSRHWIITDGDGHVEEVRGEGVVGQQPLIDAGQSHSYSSGTVMTTKVGTMQGTYQMLAEDGKRFDAVIKPFRLAVPGALHPGPT0004665_1034DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_COBALT_RESISTANCECOBALT_RESISTANCE-RELATED_ROTEINS,PGPT0004665-apaG-K06195NANA
D1-35_05151819rsmACOG0030Ribosomal RNA small subunit methyltransferase AATGACCGAGCAATACCAACACCGCGCGCGCAAGCGCTTCGGCCAGAACTTCCTGCATGACGCCGGCGTTATCGACCGCATCCTGCGCTCCATCAATGCCAAGCCCGATGACCGTATGCTCGAGATCGGGCCGGGCCAGGGCGCACTGACCGAAGGGTTGCTTGGCAGCGGCGCGCAACTGGACGTGGTGGAGCTGGACAAGGACCTGGTACCGATTCTCAACCAGCAGTTCGCCGGTAAGAGCAATTTCAACCTGCATCAGGGCGATGCGCTGAAATTCGACTTCAACAGCCTGAATGCCGCACCGGGCAGCCTTCGAGTCGTGGGCAACCTGCCGTACAACATCTCGACGCCGCTGATTTTTCACCTGCTGAACAATGCCGGCCTGATCCGCGACATGCACTTCATGCTGCAGAAAGAAGTGGTCGAGCGTCTCGCCGCCGGGCCTGGCGGAGGTGACTGGGGTCGTTTGTCGATCATGGTCCAGTATCATTGCCGGGTTGATCACCTGTTCAACGTAGGCCCCGGTGCGTTCAACCCGCCGCCGAAAGTCGACTCCGCCATCGTCCGGCTTGTGCCTCATGCGGTCCTGCCGCATCCCGCCAAGGACCATCGCCTGCTGGAGCGTCTGGTACGCGAAGCGTTCAACCAGCGCCGTAAAACCCTGCGCAACACCCTGAAACTGTTGCTCAGCAGTGCCGAAATCGAAGCCGCCGGCGTCGATGGCAGCCTGCGTCCGGAGCAACTGGACCTCGCAGCCTTCGTCCGCCTGGCCGACAAGCTCAGCGAACAGGTCGCGCCAGATACCGACGCCATCTGAMTEQYQHRARKRFGQNFLHDAGVIDRILRSINAKPDDRMLEIGPGQGALTEGLLGSGAQLDVVELDKDLVPILNQQFAGKSNFNLHQGDALKFDFNSLNAAPGSLRVVGNLPYNISTPLIFHLLNNAGLIRDMHFMLQKEVVERLAAGPGGGDWGRLSIMVQYHCRVDHLFNVGPGAFNPPPKVDSAIVRLVPHAVLPHPAKDHRLLERLVREAFNQRRKTLRNTLKLLLSSAEIEAAGVDGSLRPEQLDLAAFVRLADKLSEQVAPDTDAINANANANANA
D1-35_05152990pdxACOG19954-hydroxythreonine-4-phosphate dehydrogenaseGTGAAACCCAAGCGTTTCGCGCTGACTCCCGGCGAGCCTGCCGGCATCGGTCCCGACCTGTGCCTGCTGCTCGCCTCGCAAGTCCAACCACACCCTCTGATCGCCATCACCAACCACGACCTGCTCCTTGAGCGGGCCGCGCAGTTGGGGGTGGCCGTCGACCTGTTGCCAGTGACGCCGGACGCTTGGCCGGATTTCCCCGCTCCCGCCGGTAGCCTGTATGTATGGGATACGCCGCTGGGCGCACCTGTCACCGCAGGCCAGCTGGACAAGGCCAACGCAGCATTCGTGCTGCAGACCCTGACCCGCGCCGGCCAAGGCTGCCTGGATGGGGCTTTCGCCGGCATGATCACGGCGCCGGTACACAAGGGTGTGATCAATGAATCCGGCATTCATTTTTCCGGACACACCGAATTCCTGGCCGACCTGACCCATACCGCGCAAGTGGTGATGATGCTCGCCACCCGTGGCCTTCGCGTGGCTCTGGTCACCACTCACCTGCCCCTGCGAGACATCGCCGACGCCATTACCCCGGAACGCCTCGAACGCGTTACGCGGATATTGCACGCCGACCTCCAGGAAAAATTCGGCATCGCCCGGCCCCGCATCCTGGTGTGCGGGCTGAATCCGCATGCCGGCGAAGGCGGGCATCTGGGCCATGAAGAAATCGACATCATCGAACCCACACTGGAGCGCTTGCGCAGCGAGGGCATGGACCTGCGTGGCCCGCTGCCTGCCGACACTCTGTTTACCCCCAAATATCTGGAGCACTGCGATGCGGTGCTGGCGATGTACCACGACCAGGGCCTGCCCGTGCTGAAATACAAAGGTTTCGGTGCGGCGGTCAACGTGACCCTGGGCCTGCCGATCATCCGCACATCCGTGGATCACGGCACCGCCCTGGATTTGGCCGGCAGCGGCAGGATCGACACCGGGAGCCTGCAAGTCGCGCTGGAAACCGCCTACCAGATGGCCGAGACCCATTTATGAMKPKRFALTPGEPAGIGPDLCLLLASQVQPHPLIAITNHDLLLERAAQLGVAVDLLPVTPDAWPDFPAPAGSLYVWDTPLGAPVTAGQLDKANAAFVLQTLTRAGQGCLDGAFAGMITAPVHKGVINESGIHFSGHTEFLADLTHTAQVVMMLATRGLRVALVTTHLPLRDIADAITPERLERVTRILHADLQEKFGIARPRILVCGLNPHAGEGGHLGHEEIDIIEPTLERLRSEGMDLRGPLPADTLFTPKYLEHCDAVLAMYHDQGLPVLKYKGFGAAVNVTLGLPIIRTSVDHGTALDLAGSGRIDTGSLQVALETAYQMAETHLPGPT0009165_1839DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-VITAMIN_B6|PYRIDOXINE|PYRIDOXAL|PYRIDOXAMINE_BIOSYNTHESIS,PGPT0009165-pdxA-K00097NANA
D1-35_051531323surA_1COG0760Chaperone SurAGTGAACGTGAAGACCAAGCTTTCTGATTGTCTGCGCCCGCTGATGCTGGGCGCGCTGTTCCTGGGTACCGCGGCGAACGCCGCGGTACAGTCCATCGACAAGGTCGTGGCCATCGTCGACAACGACGTGGTCATGCAGAGCCAGTTGGACCAGCGGGTCCATGAAGTTCAGCAAACCATCGCCAAGCGTGGCGGTGGCTTGCCGCCACCGGGTGTGCTGGACCAACAGGTGCTGGAGCGCCTGATCGTCGAGAACCTGCAGTTGCAGATTGGCGAGCGTTCCGGCATCCGCATCACCGATGAAGAACTGAACCAGGCCGTCGGCACCATTGCCCAGCGCAATAACATGACTGTCGACCAGTTCCGCGCTGCCCTGGCGCGCGATGGCCTGTCGTTTGACGACGCCCGCGACCAGATCCGTCGCGAGATGGTCATCAGCCGTGTGCGTCAGCGCCGCGTCGCCGAACGCATCCAGGTTTCCGAGCAGGAAGTGAAGAACTTCCTCGCCTCCGACTTGGGCAAGATGCAGCTTTCGGAAGAACTGCACCTGGCAAACATCCTGATTCCTACGCCGGAAAGCGCCAATTCGGAAGCGATCCAGAGCGCTTATCGCCAGGCAATGGACATTTACCAGCAGCTCAAGCAAGGCGCTGACTTCAGCCAGATGGCGGTAGCCCGTTCGGCCAGTGAAAACGCTCTGGAAGGCGGTGACATGGGCTGGCGCAAGGCCGCCCAGCTGCCGCCTCCGTTCGATCGCGAGCTGAGCACCATGGCCGTGGGCGACATCACCCAGCCAGCCCGCACGCCTGGCGGCTTCATTATCCTGAAGCTGCTGGAAAAACGTGGTGGCGGTACCCAGGTGCGTGACGAAGTACATGTTCGTCATATCCTGATCAAGCCAAGCGAGATCCGCAGCGAAGCCGAGACCAAGCGTCTGGCCGAGAAACTGTACGAACGCATCACCTCCGGCGAAGACTTCGCCGAGCTGGCGAAGAGCTTCTCGGAAGACCCGGGCTCGGCCCTGAACGGCGGCGACCTGAACTGGGTCGACCCGAACGCGCTGGTTCCCGAGTTCCGCCAGGTCATGGCCGAAACACCGCAAGGCCAACTGTCCAAGCCGTTCAAGAGCCCTTATGGCTGGCATGTCCTGGAAGTCCTTGGCCGTCGCGCCACCGACAGCACCACCCAGGCGCGCGAACAACAGGCGTTGACGGTATTGCGTAACCGCAAGTACGACGAAGAGCTGCAAACCTGGCTGCGCCAGATTCGCGACGAAGCCTACGTCGAGATCAAACTCCCTGGTGCAGACCAGGCAGCGCAGTGAMNVKTKLSDCLRPLMLGALFLGTAANAAVQSIDKVVAIVDNDVVMQSQLDQRVHEVQQTIAKRGGGLPPPGVLDQQVLERLIVENLQLQIGERSGIRITDEELNQAVGTIAQRNNMTVDQFRAALARDGLSFDDARDQIRREMVISRVRQRRVAERIQVSEQEVKNFLASDLGKMQLSEELHLANILIPTPESANSEAIQSAYRQAMDIYQQLKQGADFSQMAVARSASENALEGGDMGWRKAAQLPPPFDRELSTMAVGDITQPARTPGGFIILKLLEKRGGGTQVRDEVHVRHILIKPSEIRSEAETKRLAEKLYERITSGEDFAELAKSFSEDPGSALNGGDLNWVDPNALVPEFRQVMAETPQGQLSKPFKSPYGWHVLEVLGRRATDSTTQAREQQALTVLRNRKYDEELQTWLRQIRDEAYVEIKLPGADQAAQPGPT0014978_1289DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-HALOTOLERANCE_RELATED_ENZYMES,PGPT0014978-surA-K03771NANA
D1-35_051542826lptDCOG1452LPS-assembly protein LptDATGGCATTGAAATCCCCCGCGTTTCGTAAAAAATTTCCGTTGCTGGTCACCGGCAGTCTGCTGGCTCTGCAACCCCTGGCCTCTTCATTCGTCGTCGCGGCGCAGCAGTATGACTGTTCCGTCTCCGCTTCGGGTGCCTGGGACTGTTCACCCAAAGCGCCGGCCGCTGCATTGCCGCCGCGCCCGGTGCATGAAGGCAGTGCGGTTGCCGACAGCGGCAGCGCTCCGGCCGACAGCGATTCGGGCGAGGTAGCCGGCGATAAGCCGATGCTCGTTACCGAATCCAAGGGCCGCGGCCTGAAGTCGCGCAGTGCAGACTACAGTCACCTGGACTGGGTTCCGCGCGAGAACCTCACGCCTGCGCAACTGGCTGAAACCGGCCCGTACTGCGCGGGCGCGTACATCGAGCCGTCTCGCCCAGGCATGAACGACAAGACCGCCAAGAGTGACGCTCCGACGTTCCTCGGCGCCAAGGCTTCACGCTACGAGCAGGAACAGCAAGTGGCGACCCTGGCCGGTGACGTGGTCATGCGTCAGGGCAGCATGCAGGTCGAGGCCGACGAGGCCAGCCTGTACCAGGCCGAGAACCGCGGCGAGCTGAGCGGCAACGTGCGAGTTCGCGACAACGGTGCGCTGATTGTCGGCGACCACGCCGATGTGCAGCTGGACACCGGTGAAGCCAAGGTCGACAACGCCGAATACGTGATGCACAAATCGCGCATCCGCGGTAACGCGCTGTACGCCAAGCGCGCCGAGAACGCGATCATCCGCCTCAAGGACGGTACGTACACCACGTGCGAGCCGGGCAGCAACGCCTGGACGCTCAAGGGCAACAACATCACCCTGAACCCGGCCACCGGATTCGGCACCGCTACCAACGTGACGCTGCGGGTCAAGGACTTTCCGGTCCTGTATACGCCGTACATCTACTTCCCGATCGACGACCGTCGCCAGTCCGGCTTCCTGCCACCGACCATCGGCAGCGGCAGCGACACCGGCTTCCTGCTGGTCACTCCGTACTACTTCAACCTGGCGCCTAACTACGACGCCACGTTGTACCCACGCTACATGAGCAAGCGCGGCCTGTTGATGGAAGGCGAATTCCGCTACCTGACCAAGTCCAGCGAAGGCCAGTTCGGCGCGGCGTACCTCAACGACGAAGAAGACGAGCGCGCCAGGCAGACCGACTACAGCAAGACCCGCTACATGTACAACTGGCAGCACAAGGGCGGGCTGGATTCACGTGTACTGACAGAAGTCGACTACACGAAGATCAGCGATCCGTATTACTTCCAGGATCTGCAGACCGATCAGATCGGCGTGGAATCCAGGAACTTCGTGAACCAGCAGGGTGCGGTCAGCTACCGGGGCGATACCTACACCGCTCGGCTGAACGTCCAGGCGTTCCAGATGGCCACGATTTCCAACATCACGCCTTATGACCGCTTGCCGCAAATCACCTTCAACGGTTTTCTGCCACAGCATCCGTATGGTCTGGATTTCGCCTATAACACTGAGTTCGTGCGGTTTGATAGGGACTTGAGGACTGGGAACTATCTAGACGAAAATGGCGGTCCCGTTGATCCTGTTACCGGGATCGTCGGCACGCCGTTCCTCGATACCAACGTCAGAGGCCTGGCCCGTGCTACTGGCGACCGGATGAACCTGGCCCCCGTTGTCAGCCTGCCGATGAATGCAAGCTACGGCTTCATCAAGCCGTCGCTCAAGTACCAGTACACCCAATACGATCTTGACCTGGATAGCCAGGGCAAGCAGGATATCGCCGACCAGAACGCTGAAGGTGATCGCCTGAACGGCACCTACGGCAGCAGCCAGAACCGTGGCGTCCCTATCGCCAGCATCGACAGCGGCCTGTACTTCGACCGTGATACCCAATGGTTCGGCAAGAATTATCGCCAGACGCTGGAGCCGCGCCTGTTCTATCTCTACGTACCGGAGAAAGATCAGAGCGATATCCCGGTCTTCGACACCAGCGAAAGCACCTTCAACTACGCCTCGCTGTTCCGGGACAATCGCTTCTCCGGTTCCGACCGTGTCGGCGACGAGAACAAGCTGTCGCTGGGCGTGACCAATCGCTGGATCCAGGAAGATGGCTTCGAACGTCAGCGCATCAGCGTCGGCCAGGCCTTCTATTTCAAGGACCGCGAAGTCCAACTGCCGGGTATTGACTTCAGGACTCGCGAAGACGCCCATTCAAGCGTTTCGCCTTACGCGCTGGAATACGAATACCGCTGGAACCGCGACTGGCGCACCACCGCCGACTACAACTGGGATCCGGACAGCCACAGCCCGCGTTCGGGCAGTGCGATGTTCCACTACCAGCCTGAAGACAATCCGAACAAGGTCATCAACGCCGGTTATCGCTATCGCAACGACCTGGTCCGTTACGACGAAACCACCGGTCGCTGGCAAGTGGGTGGAGGCGACTACGGTACGCCGGGCACTCCTGGCTACGTGAAGGACTATTACAAGATCAAACAGCACGACTTCTCGGTCATCTGGCCGATCGTGCCGCAGTGGAACGTGATCAGCCGCTGGCAGTATGACTACAACCGCAACCGTACCCTGGAAGCCTTCGGTGGTTTCGAATACGACAACTGCTGCTGGAAACTGCGCCTGATCAACCGTTACTGGGTCGACTATGAAGAATTCAGTCAAGCCGCCCCGGAAAACGAAAAAGGCGACCACGGCGTCTTCCTCCAAATTGTTCTGAAGGGACTCGGCGGCCTCACCGGCGCCAAGGTAGAGAGCTTCCTCGACAAAGGCATTCAAGGTTATCGTGAACGTGAAGACCAAGCTTTCTGAMALKSPAFRKKFPLLVTGSLLALQPLASSFVVAAQQYDCSVSASGAWDCSPKAPAAALPPRPVHEGSAVADSGSAPADSDSGEVAGDKPMLVTESKGRGLKSRSADYSHLDWVPRENLTPAQLAETGPYCAGAYIEPSRPGMNDKTAKSDAPTFLGAKASRYEQEQQVATLAGDVVMRQGSMQVEADEASLYQAENRGELSGNVRVRDNGALIVGDHADVQLDTGEAKVDNAEYVMHKSRIRGNALYAKRAENAIIRLKDGTYTTCEPGSNAWTLKGNNITLNPATGFGTATNVTLRVKDFPVLYTPYIYFPIDDRRQSGFLPPTIGSGSDTGFLLVTPYYFNLAPNYDATLYPRYMSKRGLLMEGEFRYLTKSSEGQFGAAYLNDEEDERARQTDYSKTRYMYNWQHKGGLDSRVLTEVDYTKISDPYYFQDLQTDQIGVESRNFVNQQGAVSYRGDTYTARLNVQAFQMATISNITPYDRLPQITFNGFLPQHPYGLDFAYNTEFVRFDRDLRTGNYLDENGGPVDPVTGIVGTPFLDTNVRGLARATGDRMNLAPVVSLPMNASYGFIKPSLKYQYTQYDLDLDSQGKQDIADQNAEGDRLNGTYGSSQNRGVPIASIDSGLYFDRDTQWFGKNYRQTLEPRLFYLYVPEKDQSDIPVFDTSESTFNYASLFRDNRFSGSDRVGDENKLSLGVTNRWIQEDGFERQRISVGQAFYFKDREVQLPGIDFRTREDAHSSVSPYALEYEYRWNRDWRTTADYNWDPDSHSPRSGSAMFHYQPEDNPNKVINAGYRYRNDLVRYDETTGRWQVGGGDYGTPGTPGYVKDYYKIKQHDFSVIWPIVPQWNVISRWQYDYNRNRTLEAFGGFEYDNCCWKLRLINRYWVDYEEFSQAAPENEKGDHGVFLQIVLKGLGGLTGAKVESFLDKGIQGYREREDQAFPGPT0023298_78DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_TRANSPORT,PGPT0023298-lptD|imp|ostA-K04744NANA
D1-35_051551026amgKCOG3178N-acetylmuramate/N-acetylglucosamine kinaseATGCCTGACCAAGATGTACGCTTGCAACACCTGAAAGTTTGGCTCGATGAGCAGCTACCAATCCTCTTCACCCAACAAGGCTGGGGCGCCGTACCCCCGGCCACGTTGACTGCGGCCAGCAGTGACGCGAGTTTCCGGCGGTACTTCCGCTGGCAGGGTGAGGGCCGCAGCCTGATCGTGATGGACGCGCCACCGCCCCAGGAAAACTGCAAACCGTTCGTGGATATTGCTTTTTTGCTGGCGAAATCCGGGATCAACGTGCCGAAAATTTATGCCGAAGACCTCGAACGCGGGTTTCTTTTGCTCAATGACCTGGGCAACCAGACCTATCTGGACGTGATCAACGGCGAAAATGCCGACGATCTGTTCGGCGATGCCCTGCAAGCCTTGTTGGCTTTTCAGCAGTTGCCGATGGTCGCGCCGCTGCCCAGCTACGACGTCGCGTTATTGCGCCGCGAGTTGGAGTTGTTCCCCGAGTGGTACGTCAAGCGTGAGCTGGGAATCGAGTTCGATACGGCCCAGCAGCAACTGTGGCAGCAGGCATCCGACCTGCTGATCAACAGTGCCCTGGCCCAGCCGAAAGTACTGGTGCACCGCGACTACATGCCGCGCAACCTGATGCTCAGCGAACCCAACCCAGGCGTACTGGATTTCCAGGACGCGGTCTATGGCCCGGTGACCTACGATGTGACGTGCCTGTTCAAGGACGCCTTCCTCAGTTGGCCGGAAGAACGCGTGCGCGGCTGGCTGGAAGATTATTGGCGGCAGGCCGGCACGCTCGGCATTCCGGTCCAGCCGGATTTCGAGGATTTCCTGCGTGCCAGCGACCTGATGGGCGTGCAACGCCATCTCAAGGTGATCGGCATCTTCGCGCGCATTTGCCACCGCGATGGCAAGCCGCGTTACCTGGCTGACGTGCCGCGTTTCTTCGCCTATATAGAAGCGGTCATTGCCCGTCGTCCGGAACTGGCACCGTTGGACGAGTTGCTCCGCAGCCTGCGCCAAGCGGATGGAGCGAGCGCATGAMPDQDVRLQHLKVWLDEQLPILFTQQGWGAVPPATLTAASSDASFRRYFRWQGEGRSLIVMDAPPPQENCKPFVDIAFLLAKSGINVPKIYAEDLERGFLLLNDLGNQTYLDVINGENADDLFGDALQALLAFQQLPMVAPLPSYDVALLRRELELFPEWYVKRELGIEFDTAQQQLWQQASDLLINSALAQPKVLVHRDYMPRNLMLSEPNPGVLDFQDAVYGPVTYDVTCLFKDAFLSWPEERVRGWLEDYWRQAGTLGIPVQPDFEDFLRASDLMGVQRHLKVIGIFARICHRDGKPRYLADVPRFFAYIEAVIARRPELAPLDELLRSLRQADGASAPGPT0019050_883DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_MURAMATE_DEGRADATION,PGPT0019050-amgK-K07102NANA
D1-35_05156672murUCOG1208N-acetylmuramate alpha-1-phosphate uridylyltransferaseATGAAGGCGATGATCCTGGCGGCGGGCAAAGGCGAGCGCATGCGGCCCCTGACCCTCACTACCCCCAAGCCGTTGATTCGCGTCGGCGGCATCCCGTTGATCGAGTACCACCTGCGGGCATTGGCCACGGCCGGGTTCACCGAAATCGTGATCAACCATGCCTGGCTCGGCCAGCAGATCGAAGATCACCTAGGCGACGGTTCGCGGTTTGGCGTGCAGATCCGCTATTCGCCGGAGGGTGAGCCGCTGGAAACCGGCGGCGGAATTTTCCGCGCGCTGCCGCTGCTGGGTAACGATGCGTTTCTGGTGGTCAACGGCGATATCTGGACCGATTACGATTTCAGCGCCCTGCGCCAGCCGATCCAGGGGTTGGCGCACCTGGTGCTGGTGGACAATCCGGAGCATCACCCCGAGGGTGATTTCATGCTGGCTGGCGGCCAGGTTAATGACGGCGGGCCTGGTGCCGATAAGCTGACATACAGCGGCATCGCCGTGCTGGATCCACAGCTGTTTGCCGGCTGCGCCGATGGCGCATTCAAGCTGGCCCCGCTGTTTCGCCGCGCCATGGCCGCAGGGCAGGTCAGCGGTTCGCGCCTGGAAGGACGCTGGGTCGATGTGGGTACTCACGAACGTTTGTCGCAAGTCGAAAAACTGATAGAAGCGAGCTGTTGAMKAMILAAGKGERMRPLTLTTPKPLIRVGGIPLIEYHLRALATAGFTEIVINHAWLGQQIEDHLGDGSRFGVQIRYSPEGEPLETGGGIFRALPLLGNDAFLVVNGDIWTDYDFSALRQPIQGLAHLVLVDNPEHHPEGDFMLAGGQVNDGGPGADKLTYSGIAVLDPQLFAGCADGAFKLAPLFRRAMAAGQVSGSRLEGRWVDVGTHERLSQVEKLIEASCPGPT0019055_1425DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO|NUCLEOTIDE_SUGAR_UTILIZATIONPLANT_DERIVED_MURAMATE_DEGRADATION,PGPT0019055-murU-K00992NANA
D1-35_05157768djlACOG1076Co-chaperone protein DjlAATGTGGTGGCCAGGGACTCTGATTGGAGCGGGGGCGGGCTTTGCCATTGCCAGCATCCCGGGGGCCATGCTCGGCGCATTGTTGGGGCAGGCGCTGGACCGGCGTCTGAATCTGCACGGCTGGGCCCAGGTGCGCGAGCGCCTGGGCGGGCGCCCGGCGTTGCGCAACGATGAACTGTTGTTCGTCTTGCTCGGTCGCCTGGCGAAGATCGACGGGCGCGTGGTCGATGGTCACATCCAGCAGGCGCGTCTGGAAATGCGCGCTCTGGACCTGAGCGAACCGGCGCAACGTCGGGCTATCGCGGCCTTTAATCGGGGCAAATCGGGAAACGATCGGCTGCGTGGTTATCTGCGTCGCCTGAGTGCCCAGCCGCATGCGGCTGAAGGCGTGCTTCGGGCCTGCTGGCGGATGGTCTGGGCCGACGGCCGTGCCGGTGTAGCCGAACGTGAGTTGCTCGCCCAGTGGGGCAAGTGGCTGGGTTGGACGCCGCAGCAGGTCCAGGCGTTGGCGATGGACTACGAGCCGCAGAAACCGGGGTTGCCCAGCAGTGGCTTGACGTATCAGGAGGCGTTGCGGCTGTTAGGGGTTTCGGCCAGCAGCGAACCGTCGCAAATCAAGCGCGCTTACCGCCGCCTGATCAGTCGTCATCACCCGGACAAGATCGCCGGCAGCGGGGCGACAGCCTTGCAGGTACGCGAAGCAACCGACAAGACCCGCGAGCTGCACAACGCCTATCGCTTGATTCGCGAGCGCAGGGATTTTCGCTAGMWWPGTLIGAGAGFAIASIPGAMLGALLGQALDRRLNLHGWAQVRERLGGRPALRNDELLFVLLGRLAKIDGRVVDGHIQQARLEMRALDLSEPAQRRAIAAFNRGKSGNDRLRGYLRRLSAQPHAAEGVLRACWRMVWADGRAGVAERELLAQWGKWLGWTPQQVQALAMDYEPQKPGLPSSGLTYQEALRLLGVSASSEPSQIKRAYRRLISRHHPDKIAGSGATALQVREATDKTRELHNAYRLIRERRDFRPGPT0014550_874DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSHIGH_TEMPERATURE_TOLERANCEHEAT_SHOCK_PRTOEINS,PGPT0014550-djlA-K05801NANA
D1-35_05158990hypothetical proteinATGTCCTTTGTTAACCGCCTGACACTGCCTGCATTGTGCCTGTCGCTGATCCTGCCGAGTGCATTTTCTGTACAGGCCGGTGAAACGACGCCCGCCGCGGGCGATCAACCCGCCGAGGCGAAACCGGCCGAGCGCCAGCCTTTGCTCGAGCGTAGCCAGGAAGAAGCGGCGGCGCTCGCACGAAAAGTCCCAGCCCAGGAACAACAACAGCTGCAAACCGGCAGCGATGCTTTCCTTGCCCTCTGGAAGCCGGCCAACACCAGCGAGCCCAAGGGCGTGGTCATCATCGTCCCTGGCGCCGGCGAAACGGCTGACTGGCCGCAGGTCATCAGCCCGCTGCGCAAAAAACTGCCGGATGCCGAATGGAGCAGCCTGAGTATTACGCTGCCGGACATGCAGAGCGACGTTATCGCACCCCGCGCGGCGGAAACACCGCCGGAGACCAAGCCGGCCGACATCGCTGCGGCAGCCCCCGACGCAACCACCGCGGCCCCGATCGAGCAGGTCGCCGGCGGCGAGGCCGACGCGGCTGAGCCGGCCTCCGCCGAAACCGGCGAAGAATCCGACAAGGCCGACGCCGAACGGATTTTCGCCCGTATCGACGCGGCATTGGCCTACGCCGAGCAACAGAGCGCCCGCAGTATCGTCTTGCTGGGCCACGGCACCGGCGCCTATTGGGCGGCGCGCTATCTTGGCGAAAGACAACCCACGCAAATCCAGCGCTTCGTGATGGTCGCGGCCCAGACACCCGTCACCGCCAAGCCCGGCCTCGCCGAGCTGACACCGAACCTGAAGCTGGCAACGGCAGACATCTTTTATATGGACAAACCGACGGACCGCAACGCGGCCCTGGAGCGCCTGCAAGCCAGCAAACGACTGAAAGGGTCGAGCTTCAGCCAGGTTTCCCTCAAGGCACTGCCCAACGCAACGGCGCAGCAGGAACAGCTGTTTCGACGGGTTCGGGGGTGGTTGAGTCCGCAGACAGACTGAMSFVNRLTLPALCLSLILPSAFSVQAGETTPAAGDQPAEAKPAERQPLLERSQEEAAALARKVPAQEQQQLQTGSDAFLALWKPANTSEPKGVVIIVPGAGETADWPQVISPLRKKLPDAEWSSLSITLPDMQSDVIAPRAAETPPETKPADIAAAAPDATTAAPIEQVAGGEADAAEPASAETGEESDKADAERIFARIDAALAYAEQQSARSIVLLGHGTGAYWAARYLGERQPTQIQRFVMVAAQTPVTAKPGLAELTPNLKLATADIFYMDKPTDRNAALERLQASKRLKGSSFSQVSLKALPNATAQQEQLFRRVRGWLSPQTDNANANANANA
D1-35_051592394mltF_4Membrane-bound lytic murein transglycosylase FATGATGCGTGTTTGCCTGTGGGTTATCGGCTGTCTATGGCTTCCCTTGATGGCGTGGGCTGCACCCGCGCCACAGGCGCAGGCGGTGCAGTTGAGCGCGGGCCAGCGCCAATGGTTGGCGGAGCATCCGCAGTTGCGCGTCGGCCTGGTGTTGCAGGCGCCCTACGCACAATACGACCGGCGCTTGCAGCGTCTGTCCGGCACCCACGTCGAACTGATGCAATGGCTGGGCAAGGCATTGAACGTCGAGCTGACCTGGCGCAACTTCCAGGATGTGGCGCAACTGGAAGCCGCGGTGCGCAACGGCGAAGTGGATGTCGCGCCGGGCTTGACCCAGACCCCGGCCGGCCTGCGGCTCTGGCAGTTTTCCGACCCTTACATGCGTGTGCCGCAGTTGATCGTGGGCGAGCAGAAGGGCGCCGAAGGCGTGGAGTTGGAGAAGCTCGACCCCCAGGCCCGGGTTGTCGTGCGCATGCCCAGCGCCACGGCCGATTACTTGCGCAGCAACTACCCCATGCTGAACCTGCAAGGCGTGCCGATGGAACGCCAGGCCCTGCAACTGCTTTTGAGCCAACAGGCACGGTACGCGGTGATCGACGAGGCACAGTTGGGTCGCCTGATGGTCGAGCCGGAATTTTCCGGATTGGTGGTGGTGGGTGATATCGGCCTGCCGCAACTGCTCAGGGTCGCCACGCGCCGGGACTGGCCGCAGTTGGCCGAAATCGTCGACAAGGGCTTGCAGGCGATTCCCGCCAAGGAGCTGGAGCAACTGCACAACCGTTGGATCAAGCCCAAATACCCACGCCTGACCGAGACGCCTGGCTTCTGGCAGAACCTGACCCTGCTGATGCTCGCCTTGTTGCTGTGCAGTGTCTCCATCGTGTTCTGGCAGCGCCGCCAGCAACGCGGGCTGGAACGTCGCCTGCGCTCGGCGCGCGAGGACATCGCCCAGCGCGCCGCCAGTGAAGAAGCCTTGCGCCTGACGCAATTTTCCATCGATCAAAGCACGGTCGGGATCCTCTGGGTGAATTGGGACAGCCATGTGCGCTACGCCAACCGCGCCGCCGAAACCATGCTGGGTTATGCGCCAGGCGCGATCATCGATCGGCCGCTGATCGACTTCGAACCGGGCCTGCACATGGACCGTTGGCTCAACCTGTGGAAGCGCGCCCGTGCCAGCGAAGATGGGCCGCAGAGTTTCGAAACCGAATGCGTGCGGGCCGATGGCAGTATCCTGCCGGCGGACGTTTCCCTGAGTTTCCTGCGTTTTCGTGACGCGGAATACCTGGTGGTCTACCTCAATGATGTGACCGAGCGTCGCCGCGCGCTGGCAGCCCTGCGTGAAAGCGAAGCGCGGCTGCAGGGCATCGCCGCCAATGTGCCGGGCCTGGTCTTTCGCCTGGAGCGGGCACCGGTGACCGGCCAGATCGACTTTGCCTATATCAGCGAAGGCAGCGAAAGCCTGGTGGGCTACGCCCCGGCGGTACTGGCCCGCAGTGATACCGGGCTGCGCAGCCTGGTGCACCCGCAGGACAAGGCCGATTACCACCGCACCCAGGACCAGGCGCTGGACAGTGACAGCGATTGGTCTTGGCAAGGCCGTATCCTGACTCGCGAAGGCCAGGAGCGCTGGGCCGAGATCAAGGCGATCACGCGTCGGCTCGAAGATGGCGCCTATGTCTGGGACGGCATTGTCTGGGATATCACCGAAAGCAAACGTGTCGAGCTGGAATTGGCCAGTTCCCGGGAGCAGTTGCGTGAGCTGTCGGCGCACCTGGAAAGCGTACGGGAAGAAGAGAAGGCGCGCATTGCCCGGGAAGTCCACGATGAGCTGGGTCAGATGCTGACGGTGCTGAAGCTGGAGACGTCCATGTGCGAACTGGCCTACGCGCAACTTGACCCGGGCCTGCAAGAACGGCTCAACAGCATGAAGCGCCTGATTGCCCAGTTGTTCCAATTGGTGCGGGACGTGGCGACGGCGTTGCGCCCGCCAATCCTCGATGCCGGTATTGCCTCGGCCATCGAATGGCAGGCCCGCCGTTTCGAGGCGCGCACACAGATTCCGTGCCTGGTGCAGGTGCCGGACAACCTGCCGGCGTTGAGCGACGCCAAGGCCATCGGCCTGTTCCGGATTCTCCAGGAAGCACTGACCAATGTGATGCGCCATGCCCAGGCGCATACTGTGGAGTTGACGTTGGCTCAACAAGGCGCTGATTTATGTCTGACGGTCAGCGACGACGGTGTAGGATTTATTGCCGATACGGGCCGGCCAACGTCCTTTGGCCTGGTCGGCATGCGTGAGCGCGTGTTGATCATGGGCGGGCAATTGACCCTGGACAGTGAGCCGGGGGAGGGGACAACCTTGTCGGTGCGGGTGCCTTTGGGTGAGGCCTGAMMRVCLWVIGCLWLPLMAWAAPAPQAQAVQLSAGQRQWLAEHPQLRVGLVLQAPYAQYDRRLQRLSGTHVELMQWLGKALNVELTWRNFQDVAQLEAAVRNGEVDVAPGLTQTPAGLRLWQFSDPYMRVPQLIVGEQKGAEGVELEKLDPQARVVVRMPSATADYLRSNYPMLNLQGVPMERQALQLLLSQQARYAVIDEAQLGRLMVEPEFSGLVVVGDIGLPQLLRVATRRDWPQLAEIVDKGLQAIPAKELEQLHNRWIKPKYPRLTETPGFWQNLTLLMLALLLCSVSIVFWQRRQQRGLERRLRSAREDIAQRAASEEALRLTQFSIDQSTVGILWVNWDSHVRYANRAAETMLGYAPGAIIDRPLIDFEPGLHMDRWLNLWKRARASEDGPQSFETECVRADGSILPADVSLSFLRFRDAEYLVVYLNDVTERRRALAALRESEARLQGIAANVPGLVFRLERAPVTGQIDFAYISEGSESLVGYAPAVLARSDTGLRSLVHPQDKADYHRTQDQALDSDSDWSWQGRILTREGQERWAEIKAITRRLEDGAYVWDGIVWDITESKRVELELASSREQLRELSAHLESVREEEKARIAREVHDELGQMLTVLKLETSMCELAYAQLDPGLQERLNSMKRLIAQLFQLVRDVATALRPPILDAGIASAIEWQARRFEARTQIPCLVQVPDNLPALSDAKAIGLFRILQEALTNVMRHAQAHTVELTLAQQGADLCLTVSDDGVGFIADTGRPTSFGLVGMRERVLIMGGQLTLDSEPGEGTTLSVRVPLGEANANANANANA
D1-35_05160630uvrYCOG2197Response regulator UvrYGTGATCCGTGTACTGGTAGCTGAAGACCACACCATCGTGCGCGAAGGGATCAAGCAATTGATCGGCCTGGCCAAGGATCTGGTGGTGGCAGGGGAGGCGAGCAATGGCGAACAGCTGCTCGAGACCCTGCGACACGTGCCTTGCGAAGTGGTGCTGCTGGATATTTCCATGCCGGGTGTCAACGGCCTTGAGGCAATCCCACGGATCCGTGCGCTGAACAACCCGCCGGCCATCCTGGTGTTGTCGATGCATGACGAGGCGCAAATGGCCGCCCGGGCCTTGAAAGTCGGCGCCGCTGGCTACGCCACCAAAGACAGCGATCCCGCTTTGCTGCTCATGGCGATCCGCAAGGTCGCGGCGGGTGGACGCTACATTGACCCGGACCTTGCCGACCGCATGGTCTTCGAAGTGGGCCTGACCGACACACGGCCGCTGCACTCCTTGCTGTCGGAGCGTGAATTCTCGGTTTTCGAACGCCTGGCCCAAGGTGCCAACGTCAACGACATCGCCCAGCAACTCGCCCTGAGCAGCAAGACCATCAGCACCCACAAGGCGCGGCTGATGCAGAAGCTCAACATCACCTCGTTGGCCGAGCTGGTGAAATACGCGATGGAGCACAAGTTGCTCTAAMIRVLVAEDHTIVREGIKQLIGLAKDLVVAGEASNGEQLLETLRHVPCEVVLLDISMPGVNGLEAIPRIRALNNPPAILVLSMHDEAQMAARALKVGAAGYATKDSDPALLLMAIRKVAAGGRYIDPDLADRMVFEVGLTDTRPLHSLLSEREFSVFERLAQGANVNDIAQQLALSSKTISTHKARLMQKLNITSLAELVKYAMEHKLLPGPT0017180_34DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE_TRANSPORTPLANT_DERIVED_HEXOSE_PHOSPHATE_UPTAKE_SENSING,PGPT0017180-uhpA-K07686NANA
D1-35_051611125btuD_11Vitamin B12 import ATP-binding protein BtuDATGAGCCAGGTGGATTCAAGCGCGGGGGCCAGTGATGTGCTGGTCAGCTTTCGTGGTGTGCAAAAGAGCTACGACGGCGAGAACCTGATCGTCAAGGACCTCAACCTGGACATTCGCAAAGGCGAATTCCTGACCCTGCTCGGGCCTTCCGGCTCCGGCAAGACCACCAGCCTGATGATGCTCGCAGGCTTCGAGACCCCGACCGCCGGCGAGATCCAGCTGGCCGGGCGCTCCATCAACAACGTGCCGCCGCACAAGCGCGATATCGGCATGGTGTTCCAGAACTACGCCTTGTTCCCGCACATGACCGTCGCCGAAAACCTGGCATTCCCGCTGACCGTCCGCGGCCTGAACAAAAGCGACGTCGGCGATCGGGTCAAGCGTGTCTTGAGCATGGTCCAACTGGACACCTTCGCCCAACGTTATCCGGCGCAGTTGTCCGGCGGCCAGCAACAACGTGTGGCCCTGGCCCGGGCGCTGGTATTCGAGCCGCAACTGGTGCTGATGGACGAACCTCTCGGCGCACTGGACAAGCAATTGCGCGAACACATGCAGATGGAAATCAAACACCTGCACCAGCGCCTGGGCGTGACGGTGGTCTACGTGACGCACGACCAAGGGGAAGCCCTGACCATGTCCGACCGCGTGGCGGTGTTCCACCAGGGCGAGATCCAGCAGATCGCCCCGCCGCGCACGCTCTATGAGGAGCCGAAGAACACCTTCGTCGCCAACTTCATCGGCGAGAACAACCGCCTCAACGGCCGCCTGCACAGTCACACCGGTGACCGTTGCGTGGTGGAGCTGGGGCGTGGCGAAAAGGTCGAGGCCCTGGCGGTCAATGTCGGCAAGCCCGGCGAACCCGTCACCTTGTCGATCCGCCCGGAGCGGGTGAGCCTCAACGGCGCCAGCGAACAATGTATCAACCGCTTCTCAGGGAGGGTGGCGGAATTCATCTATCTGGGCGACCACGTCCGGGTTCGCCTCGAAGTCTGCGGCAAGAACGACTTCTTCGTGAAACAACCGATTGCCGAGCTCGACCCCGGGCTTGCTGTCGGGGACGTGGTTCCGCTTGGCTGGCAGGTCGAGCACGTACGCGCGCTCGATCCGCTTCTAGAGGCGAATTGAMSQVDSSAGASDVLVSFRGVQKSYDGENLIVKDLNLDIRKGEFLTLLGPSGSGKTTSLMMLAGFETPTAGEIQLAGRSINNVPPHKRDIGMVFQNYALFPHMTVAENLAFPLTVRGLNKSDVGDRVKRVLSMVQLDTFAQRYPAQLSGGQQQRVALARALVFEPQLVLMDEPLGALDKQLREHMQMEIKHLHQRLGVTVVYVTHDQGEALTMSDRVAVFHQGEIQQIAPPRTLYEEPKNTFVANFIGENNRLNGRLHSHTGDRCVVELGRGEKVEALAVNVGKPGEPVTLSIRPERVSLNGASEQCINRFSGRVAEFIYLGDHVRVRLEVCGKNDFFVKQPIAELDPGLAVGDVVPLGWQVEHVRALDPLLEANPGPT0007860_421DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007860-ABC_SP_A|ydcT-K02052NANA
D1-35_051621044hypothetical proteinATGTTGAGATCCCTGAAGTTCACAGCCCTGACATTGGGCATGATGGGTGCGGCAAGCGCGATGGCGGCGGGCCCGGACCTGACCGTCGTGTCTTTCGGCGGGGCGAACAAGGCGGCTCAGGTCAAAGCCTTCTACGCACCGTGGGAAGCGGCTGGCAACGGCAAGATCGTGGCTGGCGAATACAACGGCGAAATGGCCAAGGTCAAGGCCATGGTCGACACCAAGAGCGTCTCGTGGGACCTGGTGGAAGTCGAGTCGCCGGAATTGTCCCGTGGCTGCGACGAAGACATGTTCGAGCAACTCGATCCGGCCCTGTTCGGCAAGGCCGAAGACTACGTCAAAGGCGCCATTCAGCCTTGCGGCGTGGGCTTCTTCGTGTGGTCGACCGTGCTGGCCTACAACGCCGACAAACTGAAGACCGCGCCGACCAGTTGGGCGGACTTCTGGGACACCAAGCAATTCCCGGGCAAACGCGGCCTGCGCAAAGGCGCCAAGTACACCCTGGAATTCGCCTTGATGGCCGACGGCGTAGCGCCGAAGGACGTCTACAAGGTGCTGGCCGGCAAAGACGGCCAGGACCGTGCGTTCAAGAAGCTCGATGAGCTCAAGCCGAACATCCAGTGGTGGGAAGCCGGTGCCCAGCCACCGCAATACCTTGCTTCCGGTGACGTGGTCATGAGCTCTGCGTACAACGGCCGGATCGCCGCGGTACAGAAAGAGAGCAACCTGAAAGTGGTGTGGAACGGCGGCATCTACGACTTCGACGCCTGGGCCATCCCGCGTGGGCTGGACAAGACTCGCGCCGAAGCTGCGAAAAAATTCATCGCCTTCTCGGTGGCGCCGCAGCAGCAGAAGACCTACTCGGAAAACATCGCCTACGGCCCGGCGAATACCCAGGCCGTGCCGTTGCTGGCCAAGGATGTGCTGAAAGACATGCCGACCACCCCGGAAAACATCGCCAACCAGGTGCAGATCGACGTCAGCTTCTGGGCTGACAACGGCGAGCAACTGGAGCAGCGCTTCAACTCCTGGGCGGCGAAGTAAMLRSLKFTALTLGMMGAASAMAAGPDLTVVSFGGANKAAQVKAFYAPWEAAGNGKIVAGEYNGEMAKVKAMVDTKSVSWDLVEVESPELSRGCDEDMFEQLDPALFGKAEDYVKGAIQPCGVGFFVWSTVLAYNADKLKTAPTSWADFWDTKQFPGKRGLRKGAKYTLEFALMADGVAPKDVYKVLAGKDGQDRAFKKLDELKPNIQWWEAGAQPPQYLASGDVVMSSAYNGRIAAVQKESNLKVVWNGGIYDFDAWAIPRGLDKTRAEAAKKFIAFSVAPQQQKTYSENIAYGPANTQAVPLLAKDVLKDMPTTPENIANQVQIDVSFWADNGEQLEQRFNSWAAKPGPT0007855_3941DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007855-ABC_SP_S|ydcS-K02055NANA
D1-35_05164708hypothetical proteinATGCTAGAGCCCACTGCCGTGCTGTTGGCCCACGCCAACGGCACTCCCGCGTCAACCGCATTCACCGGCGGCTCATTGGGAGCCAACGATCCGTTCGACAGGCAGATTGCCTATCTCGGGACCCAAGACATTGCTGCCGGTATCGTCCAGGCGAGCGGACAGTTCAGCGTCGATGCATATCCCTACAGTGAAACGATCGTGGTCCACGCCGGACAAGTCATTCTGCAAAGCGAGGAACACTCGCTGCAACTTGATCCGGGTGACAGCGCGGTAATTGCCCGCGGCACATCGATTCGGATCGAGGCGCAACCTGGTTCGCTCTGGGCATTCTGCGCCGATACCCAGCCTGTTGAAGCGGGCAACGTCGGAGTGACCGCTCTCCCCAAGCACACCCTCCTCGCGCCCTCGACGCCACCGAGTGAAGAATTCCTGCTGAGCCCGACACCACAATGTCGCTCGAACAATTTGTTCGTCGAGGACACGACAAACCTGCGCATCGGCGTCTGGGATTCGACGCCCTATAACCGCAGGGCAAGGCCGCACACGATGCACGAACTGATGCACCTGATCGAGGGCAGCATCATTCTCCAGCTCGGCGATGGGCCGGGGTTGGCGGTGAATACTGGCGATACGGTGTTTGTGCCCAAGGGGGCTCCTTGCGCCTGGAAGAGCAGCGTCTATGTGCGCAAGTTTTATGTTTGCAAGTGAMLEPTAVLLAHANGTPASTAFTGGSLGANDPFDRQIAYLGTQDIAAGIVQASGQFSVDAYPYSETIVVHAGQVILQSEEHSLQLDPGDSAVIARGTSIRIEAQPGSLWAFCADTQPVEAGNVGVTALPKHTLLAPSTPPSEEFLLSPTPQCRSNNLFVEDTTNLRIGVWDSTPYNRRARPHTMHELMHLIEGSIILQLGDGPGLAVNTGDTVFVPKGAPCAWKSSVYVRKFYVCKNANANANANA
D1-35_05165858hypothetical proteinATGTCCAGTTCGCAACGCCCGACGTATGCCTATCGCCCCATGACCGCTGCCGATGTGGCAGCGGCCCATGCCTTGTCCGTGCAGTTGAAGTGGCCCCATCGCCTGGAGGACTGGGCCATGCTGCAGCGCGTCTCGCAGGGTTTTGTCGCCGAGGACCACGGCCGCCTGATCGGCACCGCATTCACCTGCCCGCAGGGTGATTACGCCACGATCGGCCTGGTGATCGTCAGTGACGAATACCAGGGCCAGGGCATCGGTCGCAAACTGATGGAACTGGCACTCCAAGCGTGTGGAACGCAGACCGCCATGCTCAACGCGACGCTGGCCGGGGCGCCTCTTTATGCCAGCCAGGGATTCGTTGACTTTGGTCATATCCAACAACATCAGGGGAACGTATCGCCCCCGGCCCCCAAGGACCTGCCATCCGGCGAACATTGCCGCCGCCTGACCAAGGCCGATCAAACCGACCAGATCGAACTGGCCAATGCCGGCAGCGGCCTGGACAGGCGCGCCGTGCTCGGTGACTTGTTCGACTGTGTCGAAGAGGCGGTTGGTATCGAGCGCGATGGTCAGCTGCGCGCATTCGCCATCCTGCGTCCATTCGGTCGTGGTCGTTACATCGGCCCGGTCGTTGCAGAAAATCCACAGCAGGCCGAGCACTTGATCGCAGTGCTGTTGGCGCAGGTGCCGGATGCTTTCGTGCGCATGGATGTACCGTCCGACAGCGGCCTGGGTCCGTGGCTGGAAGAAGCCGGGCTGAAGCAGGTCGACACCGTCGCCCAGATGGTCCGTGGTTCCCCGCCCCAGGCCAGGGGCGGCGTAAAGCAGTTTGCGCTGGTGACCCAGGCCATCGGCTGAMSSSQRPTYAYRPMTAADVAAAHALSVQLKWPHRLEDWAMLQRVSQGFVAEDHGRLIGTAFTCPQGDYATIGLVIVSDEYQGQGIGRKLMELALQACGTQTAMLNATLAGAPLYASQGFVDFGHIQQHQGNVSPPAPKDLPSGEHCRRLTKADQTDQIELANAGSGLDRRAVLGDLFDCVEEAVGIERDGQLRAFAILRPFGRGRYIGPVVAENPQQAEHLIAVLLAQVPDAFVRMDVPSDSGLGPWLEEAGLKQVDTVAQMVRGSPPQARGGVKQFALVTQAIGNANANANANA
D1-35_05166927ghrA_2COG0111Glyoxylate/hydroxypyruvate reductase AATGGCCCTGTTGTATAAAGCCGACCCGGTACGCGGTGAACAATGGAAACGTCTATTCGCCGAGCACGCTCCGGACATCGAATGGCGCGCCTGGCCGGACATCGGCGACCCGAAGGACATTCGCTTCCTCGCCGCCTGGCAGGCGCCGGATGACCTCGAAACACTCTTGCCGAACCTGCAAGTGCTGTTCGCTTTGTCGGCCGGGGTCGATCAGCTTGATCTTGATCGCTTGCCCACCTCCCTGCCGGTGGTCCGTCTCCTCGATCCAGGCATCACCCGGGGCATGTGCGAGTACGCCAGCTTCGCCGTGCTCAGCCTGCACCGGGATATGCTCCGTTATCGCCAGCAACAGATTGCCCGATGCTGGCAGGCGCACTTGCTGCAACCGGCGGCCCAGCGTCGGGTCGGGGTCATGGGGCTTGGTATGCAGGCCCGGCAGATCCTGGCCACCTTGCAGACCTTTGGTTTCGCCTTGTCAGGTTGGGCACGCAGCGAGCATCACATCGCCGGGGTGAATTGCTTTGCCGGTGATGAACAGCTCCCGGCTTTCCTCGGCCAATGCGACATCGTCATTTGCGTGCTGCCATTGACCGAGCAGACCCAAGGGATTCTCAATCGCCAATTGTTCAGGCATCTGCCCAAGGGTGCTGCCCTGGTCAACATGGGTCGTGGCGGGCATCTGATAGAAGAGGATCTGCTCGAGGCCCTGGCCAGCGGTCAAATCAGTGCGGCGGTGCTCGACGTCCTGCAACAGGAGCCGGCAGCGCCGGATCACCCGTTCTGGCAGCATCCGCAAATACTGCTGACGCCGCATATCGCGGCGATGACTCAACCCGAAAGTGCCTTCGGCGTGTTGCTGGACAACATCCGTCGGCATCAGCGCGGTGAGTCGATGCTCGGCCAGGTTGACCGCCAGCGATGTTATTGAMALLYKADPVRGEQWKRLFAEHAPDIEWRAWPDIGDPKDIRFLAAWQAPDDLETLLPNLQVLFALSAGVDQLDLDRLPTSLPVVRLLDPGITRGMCEYASFAVLSLHRDMLRYRQQQIARCWQAHLLQPAAQRRVGVMGLGMQARQILATLQTFGFALSGWARSEHHIAGVNCFAGDEQLPAFLGQCDIVICVLPLTEQTQGILNRQLFRHLPKGAALVNMGRGGHLIEEDLLEALASGQISAAVLDVLQQEPAAPDHPFWQHPQILLTPHIAAMTQPESAFGVLLDNIRRHQRGESMLGQVDRQRCYPGPT0019465_1336DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-METHYLGLYOXAL_DETOXIFICATION,PGPT0019465-ghrA-K12972NANA
D1-35_051671293gabTCOG01604-aminobutyrate aminotransferase GabTATGAACAGTAAAGTCGAAGAAACCCCGAGCCTGCTCCTTCAACGCGATCAATTCGTGCCACGAGGGTTGGTCACCGCGCATCCGCTGGTCATCGACCGGGCCCAGGGGGCAGAGGTGTGGGACGTGGACGGGGCGCGTTATCTGGACTTCGTCGGCGGCATCGGCGTGTTGAACATCGGTCACAATCACCCGAAGGTGATCGCGGCGGTGCAGGCTCAATTGCAGAAAGTCAGTCACGCGTGTTTCCAAGTGGTGGCCTACAAACCGTATATCGATCTGGTCAAGCGCCTGTGTGCCTTGGTGGGTGGGCAGCAAGCCTGCAAGGCGGCGCTGTTCACTTCCGGCGCGGAAGCGGTGGAGAACGCGGTGAAGATCGCCCGCGCGCATACCAATCGTCCCGCCGTCATTGCCTTCCGGGGCGGTTTCCATGGGCGTACTTTACTGGGTACGACGCTGACGGGCATGAGCCAGCCCTACAAGCAGAACTTCGGACCTCTGGCGCCGGAGGTCTTCCATACGCCATACCCGAATGCCTATCGCGGTTTCAGCAGTGAGATGGCGTTGCAGGCACTCAACGAATTGCTGGCGACCCAAGTCGCGCCGGATCGGGTCGCGGCGATTATCATCGAGCCGGTGCAGGGCGATGGAGGCTTCCTCAGCGCTCCACCAGAATTTCTCCAGGCGCTGCGAGCCTTGACCGAACAGCACGGCATCGTGCTCATCCTCGACGAAATCCAGACCGGCTTCGGTCGTACCGGCAAATGGTTCGGTTTTCAGCACGCCGGCATCCAGCCGGACCTGGTCACCGTCGCCAAGAGCCTGGCCGGTGGTTTGCCCATCTCGGCTGTGGTGGGGCGCGCGCACATCATGGACGCGCCACTGCCCGGTGGCCTTGGCGGCACCTACGGCGGTAACGCCTTGGCGTGTGCCGCGGCATTGGCGGTGATCGAGGCTTATGAGCAGGAGCATCTGCTCGAGCGTGGCCTGGTCCTGGGGGAGCGGCTGCGTCAGGGCCTGCTGCGCTTGCAGGCCCGCCACCCGCGCATCGGTGATGTGCGCGGCACCGGCTTCATGCTGGCAATCGAATTGATCAAGGATGATCAAGCCCGCAGCCCGGATGCCGAGCTCACCCAGCGCCTGATCGATCAGGCAAGGATTGGCGGGCTGCTGGTGATCAAATGCGGGGTGTACCGAAATGTCCTGCGCTTCCTCGCTCCCCTGGTCACCGAAGAAAGTCAGATCGACGAAGCACTGGCCATCCTTGAAGCCGCATTGCAGCGGGTAATGGATTAGMNSKVEETPSLLLQRDQFVPRGLVTAHPLVIDRAQGAEVWDVDGARYLDFVGGIGVLNIGHNHPKVIAAVQAQLQKVSHACFQVVAYKPYIDLVKRLCALVGGQQACKAALFTSGAEAVENAVKIARAHTNRPAVIAFRGGFHGRTLLGTTLTGMSQPYKQNFGPLAPEVFHTPYPNAYRGFSSEMALQALNELLATQVAPDRVAAIIIEPVQGDGGFLSAPPEFLQALRALTEQHGIVLILDEIQTGFGRTGKWFGFQHAGIQPDLVTVAKSLAGGLPISAVVGRAHIMDAPLPGGLGGTYGGNALACAAALAVIEAYEQEHLLERGLVLGERLRQGLLRLQARHPRIGDVRGTGFMLAIELIKDDQARSPDAELTQRLIDQARIGGLLVIKCGVYRNVLRFLAPLVTEESQIDEALAILEAALQRVMDPGPT0007660_1138DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSINSECTICIDAL_COMPOUNDSINSECTICIDAL-GAMMA-AMINOBUTYRIC_ACID_BIOSYNTHESIS,PGPT0007660-gabT-K07250NANA
D1-35_05168657hypothetical proteinATGCACCTGACTGATTATCGTGCGCTGCTGATCGATTGCGACGAAGTCCTGGTCGATCGGGATTCCGGTGTCTGGACGGCCCTGCAACCCTTGCTTGAAAACCGTCCGGGCATGCCGGGCAAGGAGCAGGTATTGGCGGAATTCGACGAGGCGGTACGTGGGCTCTATCCACGCTTTTCCGATCTCGGCTTCAGCGGCTTGTTGTGTTTTGCCCATCGCCAGTTGGCGGAGCGCCTGGGGCTCAAGGTCAGCTGGGAAGAGGGCATGAGCTTTGCCCGTTCGGCCTGCAACTGGTCGCTGTTCGAGGACGCACCGGGTGCCATGTTGTATTTGCGCAAATTCTACCGGTTATTGGTTTACTGCGATCGTGATGCCGAGGATCGCGACCAGCTCTGCGAGCGCTTGGGAATTCCACCCGAGGACCTGCATTCGCGAGCCAACAATCCACTGGAGGATGAGGCATGGTTGCTGCAGAACCAACTCGAGCCTGGAACGATCATGCAAGTGTCCAGACCGCCCGCACAACCGCCAAAATCGGCTGGCCTGTGCCTGATTCGCCGTGGCCATGAGCCTGAAAATCAAGAATATTCCGCCGACTTCTACATCACCAGCATGGCCGACCTCGTCGCTCAGCATCAGCTATCTTTGCGCCGTTGAMHLTDYRALLIDCDEVLVDRDSGVWTALQPLLENRPGMPGKEQVLAEFDEAVRGLYPRFSDLGFSGLLCFAHRQLAERLGLKVSWEEGMSFARSACNWSLFEDAPGAMLYLRKFYRLLVYCDRDAEDRDQLCERLGIPPEDLHSRANNPLEDEAWLLQNQLEPGTIMQVSRPPAQPPKSAGLCLIRRGHEPENQEYSADFYITSMADLVAQHQLSLRRPGPT0006885_2608DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_DICHLOROETHANE_DEGRADATION,PGPT0006885-dehI-K01560NANA
D1-35_05169420lrp_7COG1522Leucine-responsive regulatory proteinATGACCAATGTCAGCCTCGCCGATGCCGTGGGACTTTCGTCCAGCCCTTGTCTGCAGCGGGTCAAGCGCCTCGAATCAGCCGGTTATATCTCCGGGTACAGGGCGCATCTGAACCTCGCAAAGATCACCGACTCGGTCACGGTATTTACCGAAATCACCCTCAGCGACCATAAACGGGAAGACTTCGCCAAGTTTGAATCGAATATTCGTCTGGTCGACGAAGTACTTGAGTGCCACTTGATCAGCGGCGGTTACGATTATCTGGTGCGCTTCATGACGTGCAGCATCCAGCATTATCAGGAAGTGGTCGAAGGGTTGCTGGACAAGAACATCGGTATCTCCAAATACTTCAGTTACATCGTCATCAAATCGCCGGTGCTCAAGGATGGAGTGCCGTTGCGCCGACTACTGCGCCATTAAMTNVSLADAVGLSSSPCLQRVKRLESAGYISGYRAHLNLAKITDSVTVFTEITLSDHKREDFAKFESNIRLVDEVLECHLISGGYDYLVRFMTCSIQHYQEVVEGLLDKNIGISKYFSYIVIKSPVLKDGVPLRRLLRHPGPT0014049_183DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014049-doeX-K15782NANA
D1-35_05170756fabG_103-oxoacyl-[acyl-carrier-protein] reductase FabGATGAACAAGATCGCACTCATTACCGGCGCCAACCGTGGCCTGGGCCGCAATGCCGCTATTGCCATCGCTGAAAAGGGCAACGACGTCATCCTCACCTATCGCAACGGCGAGGCCCAAGCCCGGGACGTGGTCGGCGAAATCGAACGGCTCGGGCGCAAAGCCGTTGCGTTGAAACTCGATGTGAGTGACGTCTCCAGCTTCGGCACATTCGTCGCTACGCTTTCCGGCGCCCTCCAGCAAGGCTGGGGTCGAGCCGACTTCGACTTCCTCCTCAACAACGCGGGTCACGGCGCGATGGCGGCGTTTGCCGAAACCACCGAAGAGCAGTTCGATGAGCTGTTCAATGTGCACGTCAAAGGTGTTTTTTTCCTGACGCAGGCGCTCTTGCCACTGATCATCGATGGCGGTCGCATCGTCAACTATTCATCCGGGCTGACGCGTGTTTCCTTTCCCGGTTTCTCGGCGTATGCCGCCGCTAAAGGCGCGATCGAAACCCTCACGGTCTATATGGCCAGAGAGCTGGGCGGCCGTGGGATCACGGTAAATACGGTGGCCCCTGGTGCGATTGCCACGGACTTCCTGGGCGGCGCAGTGCGCGACATGCCGGATCTGAATGCGCAATTTGCTGGCATGACTGCCCTTGGCCGGGTGGGCGTCCCGGACGACATCGGGCCAATGGTTGCGAGCCTGCTGGCGGAGGACAACCGCTGGGTTACCGGGCAGCGCATCGAAGTTTCCGGCGGGCAGACAATCTGAMNKIALITGANRGLGRNAAIAIAEKGNDVILTYRNGEAQARDVVGEIERLGRKAVALKLDVSDVSSFGTFVATLSGALQQGWGRADFDFLLNNAGHGAMAAFAETTEEQFDELFNVHVKGVFFLTQALLPLIIDGGRIVNYSSGLTRVSFPGFSAYAAAKGAIETLTVYMARELGGRGITVNTVAPGAIATDFLGGAVRDMPDLNAQFAGMTALGRVGVPDDIGPMVASLLAEDNRWVTGQRIEVSGGQTIPGPT0003180_8318DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-35_05171915hcaR_2Hca operon transcriptional activator HcaRATGGAGCTGCGTCACCTTCGTTACTTCGTTGCCGTTGCCGAAGAGGGCAACCTGACCTCTGCCGCGACCAAACGTCTTCATACCGCGCAACCATCCCTTAGCCGCCAGCTGCGCGATCTGGAGTTGGAGGTTGGCGCGCAGCTGTTTGTCCGCAAGGCCAGGGGCATCGAACTGACGCCGGCCGGAATAGCGTTCCTGGATCAGGCCAGGCTTGCGCTCAGTCATGCCGAAGAAGCCGTGGCGGCGGCTCGGCGAGCGGCAAGGCCGGCGAAGAAGGTGTTCTCGGTGGGCTTTCTGACAGGGCAGGAGGTGGACTGGCTGCCCAGCGTGACGCGCTTGCTTCGACATGACCTGCCCAACATCGAATTCAAGGTCATCAGCTTGCAATCGCCCTCGCTGGCCGACGCTATCCAACGTGGCGACGTCGACCTTGGCTTTCTGCGCGTGGAGCCGCGGCCGGATGTCAGTTATGAGGTTGTCGCGAAAGAGCCATTGCTGGTCATCATGCCGAACGACCATCGCCTGGCCTCGGTGGGCGATGTCGATCCTGCCGAGTTGGCGAGCGAGACGTTCATCGGCTGTTCGGAGATTCCCCATGTACTACGCGATGTCATCGCGCAGTATTTCGCCAGTTGCAACGTGCAGGTCAACGCCTCCTACTGGCTGGACGACTACGGCACCGGGATCTCTCTGATCAGCTCCACGCGGGGCGTTGCCATCCTGCCAGCCTACGTGGAGCCGCTGCTGCCTTGGACGATCGTCAGCAGGCCGCTCAAGGGAACACGACCTACCATTGATCTGGCGGTGGGTTATCGGACCGACAATCCGTCACCTATCCTGAAAATGTTCCTTGAGAACATCGATCAGATAAAAGACGCAGGGCCGCTGGGCAATCGGCGCAGGACGGACAACTAGMELRHLRYFVAVAEEGNLTSAATKRLHTAQPSLSRQLRDLELEVGAQLFVRKARGIELTPAGIAFLDQARLALSHAEEAVAAARRAARPAKKVFSVGFLTGQEVDWLPSVTRLLRHDLPNIEFKVISLQSPSLADAIQRGDVDLGFLRVEPRPDVSYEVVAKEPLLVIMPNDHRLASVGDVDPAELASETFIGCSEIPHVLRDVIAQYFASCNVQVNASYWLDDYGTGISLISSTRGVAILPAYVEPLLPWTIVSRPLKGTRPTIDLAVGYRTDNPSPILKMFLENIDQIKDAGPLGNRRRTDNNANANANANA
D1-35_05172432hypothetical proteinATGCAAGACATCTACCACCTGTCCCGCTTTGTCGAGGCCCAGAACCCGGTGTTCGATCGAGTCATGGACGAGTTACGCGCAGGCCGCAAGACGAGCCACTGGATGTGGTTCATCTTTCCCCAGGTGCAGGGCCTCGGGCGTTCCGAAATGGCCGCGCGCTTCGCCATCTCTGGCATTGCCGAGGCCCGTGCTTACGTTCAGCACGACGTGCTCGGCCCGCGACTGGAGGGTTGTGTGGAAACAGTTCTGCTGCATCACGGGAAGAGTGCCGGGCAGATCTTTGGCTCACCCGACGACCTCAAGTTTCGTTCCTGTCTGACGTTGTTCAGGAGCGTCCAACCGGGATCGTCCCTGTTCCAACAGGCGCTTGACCGGTTTTATTCGGGCGAGCCGGATCGCAAGACACTGCTGCTGCTTGAGCAACCGAGGTGAMQDIYHLSRFVEAQNPVFDRVMDELRAGRKTSHWMWFIFPQVQGLGRSEMAARFAISGIAEARAYVQHDVLGPRLEGCVETVLLHHGKSAGQIFGSPDDLKFRSCLTLFRSVQPGSSLFQQALDRFYSGEPDRKTLLLLEQPRNANANANANA
D1-35_051731224hypothetical proteinATGCGTAAGGATTACCTCGCTTTTTTCATTTCGTTGTTTCTGTCGCGGCTGGCGGATCAGATCCTGCTGTTCATCGTACCGCTGGTAGTGTTCCAGACGACCAACAGCGCATCCTGGGCCGGGCTGGCGTTTTTCGTCGAGTCGCTGCCGCGATTCCTCGCGTTTCCGTTGTGTGGCGCCCTGTGCGACAAGTACTCGCCCATCAAAATCCTGCATATCAGCCAGGTCTACCGGGCCCTGCTGTGTGTCCTGGCGATGGCGCTGCATGGGGTCTTTGGTGGTATCGCCTGGGTCGTCGTGCTGTCAGCGGTGTGCGGGGTACTGACCACCCAAGGCATCATGGCGCGCGAAGTGCTGATGCCGCACATCTTCCAGCACTACAGCTACACCAAGACCTTGTCTTACTCGCAGATCGCCGACCAGACCGGGCTGGTGCTCGGGCCATTGGTGGCGGCCCTGATGCTGGAAGTGTGGGCCTGGCATTGGGTGGTGCTGTGGATCGCCGGGTTGTTCCTGCTGGCCGATCTGAGCATGCTGGTCTGGCAACGCCTCAGCCGTATCACGCTTGAGGTTTTCGAGCAGCATCAGGACATCTGGTTGCAGCCGCTGCGGATTGCCTTCGGGCATATCCGTAACCTGGCGGAGCTGAAGAAAATCATCACCCTGGCGGTAGGCGTCAACCTGGTCGTGGGTGTCACCTTGGCCACCTCGGCGGCGATGGTGCTTGGCGAGTACAGCGCCGGCAAGGACGACTACGCGGGCCTGCAGGCGGCTGGCGCGGTGACAACGATCGTGATCCTGTTCTTTCTTGCCCGGGTCGCCCTGCCTCTGCGCGTCTCGGGAGGCGTCGGCTATTCGATGATCGCCGCGGGAGGCTTCATCAGTGCCCTGAGCCCGAACCTGGTCGGCTACGTCGTGGGCTTCCTGTTGATCGTCGGCTTCGACAAGATGTTCAACGTCTACATGCGCACGATCCGGCAACAGGTGATTCCGCCCAAGGATTTCGGCAAGACGGTGGGCGTGATCACTTTGCTCAACAACCTTTCGCAGCCGTTGGCCGGCTTGTTGGTAGCGGTGCTGGCGGCGCCCTTGGGCACGCAACCGGTAATCCTGATCCTGGCCGTGCTGGCCACGCTCCTGGGAGCCGCGGCGTGGTGGTGGTTTGCCAAGGCCCGAAGCCCCCTCACCGCCTCGATTCTGGCGGAGCAGGAAATCGGCAAGTGAMRKDYLAFFISLFLSRLADQILLFIVPLVVFQTTNSASWAGLAFFVESLPRFLAFPLCGALCDKYSPIKILHISQVYRALLCVLAMALHGVFGGIAWVVVLSAVCGVLTTQGIMAREVLMPHIFQHYSYTKTLSYSQIADQTGLVLGPLVAALMLEVWAWHWVVLWIAGLFLLADLSMLVWQRLSRITLEVFEQHQDIWLQPLRIAFGHIRNLAELKKIITLAVGVNLVVGVTLATSAAMVLGEYSAGKDDYAGLQAAGAVTTIVILFFLARVALPLRVSGGVGYSMIAAGGFISALSPNLVGYVVGFLLIVGFDKMFNVYMRTIRQQVIPPKDFGKTVGVITLLNNLSQPLAGLLVAVLAAPLGTQPVILILAVLATLLGAAAWWWFAKARSPLTASILAEQEIGKNANANANANA
D1-35_05174387ectCL-ectoine synthaseATGTTCATTCGCAACATATCCGAGGTCGAGAAAACCCCTTACTTCGTCGAGTGGGGCGCCGGCACGAGTCATCGCTTGCTCACTGAACGTGACGCCATGGGCTTTACGCTGTGCCATACCGTCGTGCGTGCAGGTACAGAGTCGCTGTTGCAATACCGCAATCACCTGGAGGCCTGTTATTGCATTGCCGGAGAAGGTGAAGTCGAAGACATGCACGGCAATGTCTTTGCGATCCGGCCTGGCGATGTCTACGTGCTCGATCAGCATGACCGGCATTTCCTGCGCGGAGGCAAGGACCAGGACCTGATCCTGGTCAGCGTCTTCAATCCGCCACTGCGCGGTGACGAACGACACAATCTCAACGACAGTTCAGGGTCGGCCTACTGAMFIRNISEVEKTPYFVEWGAGTSHRLLTERDAMGFTLCHTVVRAGTESLLQYRNHLEACYCIAGEGEVEDMHGNVFAIRPGDVYVLDQHDRHFLRGGKDQDLILVSVFNPPLRGDERHNLNDSSGSAYPGPT0014060_583DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-ECTOINE_METABOLISM,PGPT0014060-ectC-K06720NANA
D1-35_051751182hsaAFlavin-dependent monooxygenase, oxygenase subunit HsaAATGCTTGAGCTTGCCGAGCAGGCGTTCCATCCGGCCGCACAACCCTCGCTGTGTCAGCGGGCCGTCGAGCACTTGCCCGGCTGGCGCGAGCGGGCCGCCACGGCTGAAGCGAATCGACGGCTGAGCAACAGCACCTTCGACGAATTGTTTGCCGGCGGCTGGCTGGATCTGTTGACGCCGCGCGCGCCGGTGACGAGCAGCGGACACTGGCCCACATTGGTGGAAAGCGCGCGGATCGCCGCGCGGGCGTGCGCCTCCACGGGCTGGATGCTCGCGCTGGTGGGCGGCCACGGCGCCATCGCCCGACGACTGCCGCCTGCCTGCACGGACCAGCTCTACACCGACGGCCCACGACAGCTCTTCGCCTCAGCCTCCGTCAGTGCCGATAGCCGGCTGACCTTTGACTCCGCCGGGGTACGGATCGATGGGCGCTGGCGCTTCGGTTCAGGGATCGATGACGCGACCTGGCTGATGCTCAACGCCCCCTGCCCCAACCACCCGGACGCGGCTCACACCCCACGTTTCCTGGTGCTGATCGCCGCCGATGAAGTCGAAAGACTCGACAGCTGGGACAGCTGTGGTATGGCGGCGACCGGCTCCCATGACGTACTGACCCGCCAATTGCTGGTGCCGCATGCTCGCGTATTCGCGCTGCATGAAGTGTTTGCGCAGGCCACGCATGCACCGGCGTCCGACTACATCGACCGTATGCCCCTGGTGCCTTACCTCACCACGTCGATCGTCGGTCCGCTGCTGGGGTGCGCCGAGGGTGCTCTTGGCGCGTTTGTCACTGGGCTCAACGGTTCGTTGGCGGTGAGCGATCCGCGGATCGCCGAACAGGCCGCCCACTCGGCAGCACAGCTGTACAGCGCCGGGTTGTTGTATGACTCGCTGATCACCCGACTGCATGACGCCGGTATGAATGACCGGCCGCCAGATACGCGACAACTGATGCAACTCAAGCGCGACCGCGCCTATCTGGCAGGCCAGTGCGTGCAGGCCGTGCGCCGTCTGGTGGAAAGGCTCGGTGCGTCGTCCCTGGTCGCCGGCAACCCGCTCCAGCGTCACTGGCGTGATATCCAGGCCATGGCCGCGCATCGAGACGTTGCCTGGAACGAGGCGATGCTGGCCAGCGGCGATGCGCTGCTGCGGCCCGTCGCCGCCGGCACTGCAAAGAGCTGAMLELAEQAFHPAAQPSLCQRAVEHLPGWRERAATAEANRRLSNSTFDELFAGGWLDLLTPRAPVTSSGHWPTLVESARIAARACASTGWMLALVGGHGAIARRLPPACTDQLYTDGPRQLFASASVSADSRLTFDSAGVRIDGRWRFGSGIDDATWLMLNAPCPNHPDAAHTPRFLVLIAADEVERLDSWDSCGMAATGSHDVLTRQLLVPHARVFALHEVFAQATHAPASDYIDRMPLVPYLTTSIVGPLLGCAEGALGAFVTGLNGSLAVSDPRIAEQAAHSAAQLYSAGLLYDSLITRLHDAGMNDRPPDTRQLMQLKRDRAYLAGQCVQAVRRLVERLGASSLVAGNPLQRHWRDIQAMAAHRDVAWNEAMLASGDALLRPVAAGTAKSPGPT0006695_242DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_STEROID|DERIVATE_DEGRADATIONXENOBIOTIC_ADROSTENEDIONE_DEGRADATION,PGPT0006695-hsaA-K16047NANA
D1-35_051761029hypothetical proteinATGAAAATTTCCCCGCAGTCCATGGATGACACCGACCTCGACCGGGACCTGCAAAAAAGCGCCATGCTCAAGCTCGCCGGGCATTTCCACAGTCTGGCGACAGGCGCCAGCCAGGTGCCCATGCAGTCTCTTGGCAGCCACTTGCGCGCCGAGATTCAGGATCCACTGGTTCTCGATTACCACGATCGCCTGATCGAAGGGGCAGGACCGTTGTTCTCCCACTTTCTGGCCAGCGTGCCGTACATTCTCGAGGAGTTGTCCAGGATCGGCGCAGCCCTGACCCGCCTGGCCGAGGCCAATACCCGAGAAACAGGCCAGACCTTCAGTCTGTTCGAAGTGGACGCCTTTGATGGCAGTAACGGCCGCGCCGTTGCTGGCCATTCCAATGGACTGATCCGCAGTTTCACCTCATCGCCGAATCGGGCCAACCAGGTTGCCTTCGACCGGTATGCCGACCCGGCGCTGTCGCGGTTCTATCCGCAGTCGGTGTTCAAGGTGACACCGGACCTGCTGCAGCAACCCGAATACAGGCTTTTCAGCCAGGGCTTCGACTTCATTTACGAGATGGCCGCGTTCCAGTTCTACAGCCGCGACCGTGACCGCCAGATCGCCCATATCCAGCAATTTCTCAAGCCTGGCGGCCTGGTGTTTTTCGTTGAAAAGCTTAACCACCCGGACCCGGAGGAATACCTGCGCAGGGAACGGGTCAAGGATGAGCAATTCAAGACCCGCTACTTCAGCGAGGAAGAAATCCACTGGAAACGCCAGCAGATGCTTGAGCAAATGCAGAATGGCCAGGTCACCTTCGAAGAATTGGCAAGCGCCCTGTGCGCCCGGTTCAAGTGCGTCCATCTGTTGTGGAACAGCAGCAATTTCTGTGAGTTCGTCGCCTCCGACGATCCACAGCAAATCGAGCGCTTGGTTCGGCTGTTGGGCCCGGTGGTGCAGCCTGCGGACTTCTGTTTCGAGGGCTCGCGCCTGGGCGCCGTGGCAACGCTGCGCAGTGCCGGGGGGCCAGACGATGCTTGAMKISPQSMDDTDLDRDLQKSAMLKLAGHFHSLATGASQVPMQSLGSHLRAEIQDPLVLDYHDRLIEGAGPLFSHFLASVPYILEELSRIGAALTRLAEANTRETGQTFSLFEVDAFDGSNGRAVAGHSNGLIRSFTSSPNRANQVAFDRYADPALSRFYPQSVFKVTPDLLQQPEYRLFSQGFDFIYEMAAFQFYSRDRDRQIAHIQQFLKPGGLVFFVEKLNHPDPEEYLRRERVKDEQFKTRYFSEEEIHWKRQQMLEQMQNGQVTFEELASALCARFKCVHLLWNSSNFCEFVASDDPQQIERLVRLLGPVVQPADFCFEGSRLGAVATLRSAGGPDDANANANANANA
D1-35_051771542lcfB_2COG0318Long-chain-fatty-acid--CoA ligaseATGCAGCTTTTCCATCAGGTTATCGCCAGCAATGCAAAAAAATACCCGTCCAAGCCAGCCATCATCCTCGACGGGCAAGCGACTTCCTATCAGCAACTGCAGCAGCGCGCGGATGACATTGCCTCGGTGCTCCCCCTGCTCGGCATTGCTCCCGGTGACCGGGTGGGCCTGTACGCGCCCATTTCCGTCGATTTGATCGCAGGTTATCTGGGCCTGCTACAGGCTGGAGTGATCAGCGCAGCGACGCACCACACCTTGAGTCGTACCAAGCTGATCCATCAGCTCAAGCACTCGGGCGCCCGGGTACTGATCACCGACTGCACGGATGACTTGCCTGGCCTGATTGACGAGGCTGGCCTGGAACTGGTCCTGCTTACCGTTCCAGCCCAGGTTGCGGTGCCCAAGGTCATGCAGCTTGCCGATGCCGTCGCTGCGCTCGGAGGAAAGAAGGCCGCGCCCTCCTCTGCGTTGCCCGCTGACCCTGAACGTCCCACCTCGATCTTTTATACCTCTGGGTCATCCTTCAATCCGAAAGGCGTGCTCGTCAATCACCGCATCATGTTGGCGGCCTGTGGCCGGGTGACTGCGTATCTGCAAAACATCCCTGATGATCGTGTCCTCAGTTATTCCACGCTGGCATCCGACTACGGGGTGTACAACGTGATGATGCCGCTGTATGCCGGGGCCACCAGTGTCATCGAGAGCCGGCCGGCCAGCAGCGCCGAGGAGGTGCTCGCGGTGGTCGAACGCGAGGGGGCCACGGCAATGCATGTGTTTCCCCCGGTGTTCTTCCTGTTGGCCAATACCGGCCCGCACTGGCAGGCGCGCGTGCCTGGCTTGCGCTACATCTCCAGCAGCGGGCAGGCCCTCTACAGTCGTCATATCCAGCGGATCCGCGAAGCACTGCCCGCGGTGCGGATTTTTTCCAACTACGGGCTCACCGAGTGCAAGCGCGTGAGCTACCTGCCGCCCGAAGAAATCGACCAACGACCGACCTCGGTGGGTAAGCCTTTGCCGGGAGTCAGCGTGTACCTGGTAGACGAACAGGGCCTGCGTATCGAGCAGCCTGGACAAACAGGCGAGTTGCTGGTGACCAGCGACTACCTGATGCTCGAGTACTGGAACATGCCCGAAGCCAATGCCAGCGCCTTTGTCCATGATGCCTTCGGCCAATCACGACTGTATCGCACCGGGGACCTGTTCAAGCAGGACGCCGAAGGCTACCTCTACTACGTCGCCCGCAAGGACGACGTCTTCGCGCGCAATATCTGGAACGTCAATCCGCGAGAAATCGAGCAGTGCCTGGCCGCGCATCCAGCGGTCGCCGAGGTCCTCGTGGTTCCGGTTGCCGACGAGTCGGCCGGGCACGTGCCCAAGGCTTGCATCGTGCTTGATGCCGATCATCTCCAGACCAGCGAACAGGCATTGCTCGATCACTGCAAGGCGCATCTGGACTGGCACATGGTCCCGGCCCAGTGGGCATTCCTCAAGGCCTTGCCGAAAACCGATTCGGGCAAGTTCACCACCAAAGGACTGATCTGAMQLFHQVIASNAKKYPSKPAIILDGQATSYQQLQQRADDIASVLPLLGIAPGDRVGLYAPISVDLIAGYLGLLQAGVISAATHHTLSRTKLIHQLKHSGARVLITDCTDDLPGLIDEAGLELVLLTVPAQVAVPKVMQLADAVAALGGKKAAPSSALPADPERPTSIFYTSGSSFNPKGVLVNHRIMLAACGRVTAYLQNIPDDRVLSYSTLASDYGVYNVMMPLYAGATSVIESRPASSAEEVLAVVEREGATAMHVFPPVFFLLANTGPHWQARVPGLRYISSSGQALYSRHIQRIREALPAVRIFSNYGLTECKRVSYLPPEEIDQRPTSVGKPLPGVSVYLVDEQGLRIEQPGQTGELLVTSDYLMLEYWNMPEANASAFVHDAFGQSRLYRTGDLFKQDAEGYLYYVARKDDVFARNIWNVNPREIEQCLAAHPAVAEVLVVPVADESAGHVPKACIVLDADHLQTSEQALLDHCKAHLDWHMVPAQWAFLKALPKTDSGKFTTKGLIPGPT0008380_13609DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-DSF_BIOSYNTHESIS,PGPT0008380-fadD-K01897NANA
D1-35_05178681COQ3_3Ubiquinone biosynthesis O-methyltransferase, mitochondrialATGAAAATAGTAGACAGTTCGGTTCTGAAGGAATGGTATGACAGCGAATACAGCGCCTGTAATAACGGTGCTTTATTTGGTGAACTACGCGAAGAGTTCAAACAGTTTTTATCCACCCTGCCTGACGGCCCCGGCGATGCCCTTGAGCTCGGCTGCGGAGACGGTCGCAACCTTACCGCCCTGGCGCGCAAGGGCTATAGCCTGAGCGGCGTGGACATGGTCGACAGCACGGTACAGAGTCGCAAGCTCAATCCCTGGCTAAAGGATCTGTATTTCCAGCAGGCAGATATTCTGACGTACGAGCCGTTGCGTGAAGGTTACGACGTACTGGTCTGTTCCGAAGTTCTGCATTTCTTCAATCAAGATGAACTTCAGACGGTAATGGCCAAGATTATCGGTGCGGTAAAGCCTGGCGGATATATTTTCCTTGATCTGTTATCGGACCTGTCGCGGTACTTTCAAGCGAGCGGAGAACCCTTCATCTGGGACAAGGAAGCGGGCTTGTCTGTCCAGGACAGCGAAGGGTTATTTGATGCCTGGCTGGGTGATTTCGACATTTATGCGTCGCGGCATTTTTTTGATAAGCAAAGTTGGCCATTAAGCAATTCGGCAAACTTGCCAATAGCTCCCTATACCTGGCAAGGCACCTACGTCTCGGTGTGTGCGCGAAAACGTAAATGAMKIVDSSVLKEWYDSEYSACNNGALFGELREEFKQFLSTLPDGPGDALELGCGDGRNLTALARKGYSLSGVDMVDSTVQSRKLNPWLKDLYFQQADILTYEPLREGYDVLVCSEVLHFFNQDELQTVMAKIIGAVKPGGYIFLDLLSDLSRYFQASGEPFIWDKEAGLSVQDSEGLFDAWLGDFDIYASRHFFDKQSWPLSNSANLPIAPYTWQGTYVSVCARKRKPGPT0004925_339DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_TELLURIUM_RESISTANCETELLURIUM_RESISTANCE-TER-SYSTEM,PGPT0004925-tehB-K16868NANA
D1-35_05179615hypothetical proteinGTGCAGAAACCCATTAAAACCGCTACAGGCAACTCCCCTTCCCGCCGACTCTCGAAAGCCGAACGGCGCCGGCAGCTGTTGGACACTGCGTTATTGATCGTGCGCGAGGAAAACGCCGACAGCTTGACCCTCGGCCGCCTGGCCGTCCGCGCGGGCGTTTCCAAACCGGTGGTGTACGATCATTTCGCTACCCGCTCGGCGCTGTTGATCGAGCTGTACAAATGGATTGATACCGAGCGGGTCCGCGCTTTTCGCGAGGCCATGAGCAGGACTGCGCGAAGCCCGGAGGAAACCGCTCAGGTCCTGGCCAGCGCCTATATTCAGTGCGCAGCAGACAACACCGATGAATTCCATGCGGTCGGCGCAGCCCTGGCCGGCAGTGAAGAGAAGGCGGCGGTTTTCCAGGAGCTGCTCGACAACTGCGTACGGATGTTCGTGAGCGTACTTGAGCCTCACGCGACGTTGGCAAGCGCAGAACTTGAGCGCTGCTGCACCGGTTTGGTCGGTGCGGGGGAAGCACTTGCCGGCGCCCTGGTGCGGGGACGACATGCCCAGGATGAAGTGATTGAAGCGTTCGCCGCGTTGATTCGCGGCGTGTTGAGTCCGCCTGAATAAMQKPIKTATGNSPSRRLSKAERRRQLLDTALLIVREENADSLTLGRLAVRAGVSKPVVYDHFATRSALLIELYKWIDTERVRAFREAMSRTARSPEETAQVLASAYIQCAADNTDEFHAVGAALAGSEEKAAVFQELLDNCVRMFVSVLEPHATLASAELERCCTGLVGAGEALAGALVRGRHAQDEVIEAFAALIRGVLSPPENANANANANA
D1-35_051801002hypothetical proteinATGTCACTTGATCCTATCTTGTTCATGGGTGGTTCCGGCGCCATTGGTCACCAGACTGCCCGAGCGCTGCGCGCCGCTCATCCCGACGTACCGCTGTTGATCGGCGGCCGTGACCTTGCCAAGGCTCGGCAGGCCGCAGAGGAAATTGGCGGGGCGCAGGGTGTGGTGATCGATTCCACTGCGGACGATCTGGGACTTGGCGCTCGCCCGGTCAGCGGGGTTGTGGTCTTTTATATGGACCACGCGATGGCAGGATTGCGCTATGCACAAAAGCGCGGGGTGCCGCACCTCAGCATTTCTTCCGGCATTTTCGAGATCGCGCCGGAAATCGCCACATTCATGCACACGCCCGATGCTTCGCCCATAGTCCTGGGCTACGAATGGATGGCGGGCGCGACGACGGTGGCTACATTGAGCTGTGCCCAGGCGTTCAGCCGAGTCCAGCAGATCAGCATCAACGCGCTGGTCGATGAACAGGACACCGGCGGGCCGACCGTCGCCAGCGACTTTGAACACCTGAACAAAATGTTGCCCGCCGCGCTGACACGACGCGACGGGGTGTTCGTCTGGCGCGAAGGCAAGGACTCCAAGGCCAGCTTCCACGCTGTGGATGGTACGCAGATCGAGGCCTCAGGCTTTTCGTCGATTGATGTTGTCGGCCTGGCCACCGCCACAGGTGCGCCTGATGTTCAATTCAACATTGGCATCGGGGTCAGCTCAACCCGACGCCAGGGCGGGCCGATGTCCACCGAGATCATCATCGAACTCGCTGGCGAAGACCTCGAGGGCAAACCGCTGCGCACCCGCTATGCCGTCGTCCACCCAGCGGGTACCGCACCGCTGACCGGCCTCAGTGTGGCAATGCTCCTGGAGCGTCTGCTCGGTCTGGACGGCCTTCCCTCGACGCCGCCAGGGCTTTATTTCCCTTATCAACTACTGGACGCCAGCGCGTATCTGCGGCGTCTGGAGCAGGAGGGAGGTGAGCTTCGTCAGCTGCAATGAMSLDPILFMGGSGAIGHQTARALRAAHPDVPLLIGGRDLAKARQAAEEIGGAQGVVIDSTADDLGLGARPVSGVVVFYMDHAMAGLRYAQKRGVPHLSISSGIFEIAPEIATFMHTPDASPIVLGYEWMAGATTVATLSCAQAFSRVQQISINALVDEQDTGGPTVASDFEHLNKMLPAALTRRDGVFVWREGKDSKASFHAVDGTQIEASGFSSIDVVGLATATGAPDVQFNIGIGVSSTRRQGGPMSTEIIIELAGEDLEGKPLRTRYAVVHPAGTAPLTGLSVAMLLERLLGLDGLPSTPPGLYFPYQLLDASAYLRRLEQEGGELRQLQNANANANANA
D1-35_051811251hypothetical proteinATGAACAATTCGCTGTCCCTGGTGATCGAGCAACACGTCGAAGAGGCCAGCTTCCTCGCAGCCCTGCGAGACTATGCGCTGCGCGCTCCGCACTACGACATCGACCACCTCGGCAAACTCGATAACCGCATCGACGCTCACCTCGATGGCTTGCGTATCGCCGGGCCAACCGGCCTGGAGATTCTGCTGGCCCAGCTCGGCCCCGACGCTGTCGGCGAGATGTTCGCCAGCGTGGTGCTGGCCTTCGAGGCGGCCGAGGCCAAGGTGCTGTCGCGGCTCAGCGAGCATCTGCGCAGTGCGGTAGAAACCGAGCGTGGTTATCTGATGGCCCTGGGGTGGCTGGACTGGGAGCGGCTGTCGCCCTGGATCGAGCGCATGCTCGCCGCTCCGGAGCCGCTGTTCCGTCGCCTCGGCCTGGCCGCCTGCGGCATGCATCGTCGTGATCCTGGCCCGGCCCTGCTTGCCGGGCTTTGCGAGGCTGACCCAAGCGTGCTGGCGCGTGCCGCGCGCACGGCTGGCGAGCTGCGACGTCGGGACCTGCTGTCGGAAATTCGCGCCCACCGTCTGCATGAGGATGCGACCACACGCTTCTGGGCCAATTGGGCCACCGCCCAGATGGGCGACCAGCAGGCCCTCGATCCTCTGCGTCAATTTGCCGAGCAACCGGGCGAGTTTCAGTATCGCGCGCTCTGCGTATTGTTGGCCTGGCAGGACCGCGAACCCAGCATCGCCTGGATACGCCAGTGCGTTCAGGATCCCAGGGACAGGCGTTTGGGCATCCAGGCCCTGGGACTGCTGGGCGATCCGGTCAGCATCCCGTGGTTGATACAGCAGATGAACGACCTGCCTTACGCCCGGGTCGCTGGCGAAGCTTTCAGCCTGATCACCGGCGCCGACCTGGCGCTACTCGACCTGGAGCTGCGCAGCTCACCGGACTTCGCGGCAGGGCCGAACGATGACCCTGAGGACTCGAATGTCGCCATGGACCCCGATGAAAACCTGCCGTGGCCCACCCCGTCGGCAATCGAAGCCTGGTGGCAGGCCAATGGCGGACAATTCCAGGCGGGGACTCGTTACATGCTGGGGCTGGCCCACAGCGAACGCAGTTTTGAGCAAGCACTCGTCCGGGGCCAGCAACGCCAACGCGTGGCCGCCGCCTGCGGCCTCGCCCGCTTTCGGCCGGATGAGGTGCTCTTTCCAACCAGTGCACCGGTGTTGCGGCAACAAAGACTCTTGAAAATTACCCCGTGAMNNSLSLVIEQHVEEASFLAALRDYALRAPHYDIDHLGKLDNRIDAHLDGLRIAGPTGLEILLAQLGPDAVGEMFASVVLAFEAAEAKVLSRLSEHLRSAVETERGYLMALGWLDWERLSPWIERMLAAPEPLFRRLGLAACGMHRRDPGPALLAGLCEADPSVLARAARTAGELRRRDLLSEIRAHRLHEDATTRFWANWATAQMGDQQALDPLRQFAEQPGEFQYRALCVLLAWQDREPSIAWIRQCVQDPRDRRLGIQALGLLGDPVSIPWLIQQMNDLPYARVAGEAFSLITGADLALLDLELRSSPDFAAGPNDDPEDSNVAMDPDENLPWPTPSAIEAWWQANGGQFQAGTRYMLGLAHSERSFEQALVRGQQRQRVAAACGLARFRPDEVLFPTSAPVLRQQRLLKITPNANANANANA
D1-35_05182909hypothetical proteinATGAACCATGAAGACTCCCTGTTTTTTACCTGTGGCCTGATCGTCAACGCGGGCACACTCGTTATCCCTGCGCAGTACAACTCCCTGCCGGACGAACAGATGTCCCGGGTCGCATTCTGTTTCGATGGGAACTGGGTCTACAACGATGTAGACAATGATGTTATCGGGGCCGTCTGCTTCAGACACAGTGACAACAGCCTCTGGATGCTTGGTCGAAATGGCAACCTTCGTCATGTCAAATCCGGCTCGGCAGACTTCACGCTGGACAATATCCGCGGAAAGTTCGAAAACCACCGCATCGATACTGGCCGGCTCGGCGAGCTGCTTTGCATACGAGAAATCGAGAACGAGTTATATATCAGCGGCCAGTCATCACAGGTGTATCGCTACTTGAACGGTACCTGGGCGAATATCAGCCCTCCCGGAACGAAAGTAGGCTCGCCAACTCTGGAAAGCCTGGATGGCCTTGTTCACGCCGATATCTACGCCGTGGGTGAAAAGGGCATCATCCTGCACTACGACGGGTCACGCTGGAGCACGCTGGACTCCCCCACCAATCGCCCATTGTCATGCGTACGGTGCAAGAGTGAAAACGAGGTCTACGCATGCGGGAATGATGGGCTTCTGTTGGTTGGCAACCGCCATGGATGGCAAGTGATCGACACCGAGAGAACGATGAACTTCTGGGACATGGCGCTATACAACGGGCACCTCTACCTTTCCCATGTACACGGCCTCGTTCGGTATGACGGGCAAGACTTCGTCGATATCGATACGGGCATCGTCCCCGCTCCCGGCGCCCATAAACTGGATGCCCGAGACGGGTTGCTCTGTTCCTTTGGCGTGGACGACATACTCACGTTCGATGGCAATCGGTGGGAGCGGTTGATATGCCCACACAACACTTGAMNHEDSLFFTCGLIVNAGTLVIPAQYNSLPDEQMSRVAFCFDGNWVYNDVDNDVIGAVCFRHSDNSLWMLGRNGNLRHVKSGSADFTLDNIRGKFENHRIDTGRLGELLCIREIENELYISGQSSQVYRYLNGTWANISPPGTKVGSPTLESLDGLVHADIYAVGEKGIILHYDGSRWSTLDSPTNRPLSCVRCKSENEVYACGNDGLLLVGNRHGWQVIDTERTMNFWDMALYNGHLYLSHVHGLVRYDGQDFVDIDTGIVPAPGAHKLDARDGLLCSFGVDDILTFDGNRWERLICPHNTNANANANANA
D1-35_051831083hypothetical proteinATGGCCAACGAAGTCTTTGCCAACAACATGGAAGTTTCCTGCAAGGCGGCCGACGGCAAGTCGATCGCCTGTTTCCCGGATGTCTGCTTCACCCCCCCGCAAACCGCTGCCACTCCCCTCGGCGTGCCCATTCCCTACCCCAACACTGGCATGGCCAAGGACACTACCCGGGGCACGCGAACAGTGAAGATCAGTGGCAATGAAGTCATGCTCAAAGATAAGAGCTACTTCAAGACCAGTTATGGAGACGAGGCTGGAAATGCCCCGAAAAAAGGGATTATTACCAGCAAGATCAAAGGCAAGGTCTATTTCACGGCCTGGTCGATGAATGTGAAATTTGAAGCTGAAAACGTCGTGCGCAATATGGACCTGACCACTCATAACCACGGCTCGACTTCTAACACGCTGGCTTGGCCGTATCTTGATTCAGTAGCGATGGCAGACCCTGAAAACCCTTGCGTCAAGTCAGGGGCCGTGGAAAAAATCAAAGCAGCCTGCCCTCCGCCTGCCAAGTCATTGTCACGCGGCGCAACACCCGGCCCGGCTGACAATACCAGCCCCGGATGTTGTGAAGCACGCAAGTGCATGCTGGTGCCGAATTCTCCAAAAACCCGCTGTTCCAAGTGTGGGGGAAAGACACCGCATCACCCAGTGCCGGTAGCCGATTTATCGACACCCCGCCCCATCAACCCGAAGACCGGGAAGCTGAAAGTAAGGGGGGATGCTTTCGTTCCTAGCTACGATCACAACAAGGCCCCCTGCATATGCGTAGAGGGCGCCGACCACAACTCTCGCCAGGGCCCGACGGACAAGCTCATGCAGCATGGACGTATCGGCAGGAGTTACGTGGTCAAGCGAGATGAAATGTTGAACGGACGTAATGACTTCACGTACGCGGAAATCAGCGACCTTTCGGCACAGGCGGTTGCCGATGAGACAGGTTGCGACAAAGATTGCCTGAAGGCTCAGATCGACAAAGGCCACGAAGACCTGGGTGTCGGCCCGGAGTCCGGGATGCGCAGGGGAGAAGTTCGTGCACCTGCCCTTGAAAAAAAGCCGAAGAACCCCGCCCCTTTGATTTAGMANEVFANNMEVSCKAADGKSIACFPDVCFTPPQTAATPLGVPIPYPNTGMAKDTTRGTRTVKISGNEVMLKDKSYFKTSYGDEAGNAPKKGIITSKIKGKVYFTAWSMNVKFEAENVVRNMDLTTHNHGSTSNTLAWPYLDSVAMADPENPCVKSGAVEKIKAACPPPAKSLSRGATPGPADNTSPGCCEARKCMLVPNSPKTRCSKCGGKTPHHPVPVADLSTPRPINPKTGKLKVRGDAFVPSYDHNKAPCICVEGADHNSRQGPTDKLMQHGRIGRSYVVKRDEMLNGRNDFTYAEISDLSAQAVADETGCDKDCLKAQIDKGHEDLGVGPESGMRRGEVRAPALEKKPKNPAPLINANANANANA
D1-35_051841038hypothetical proteinATGAGTGCTCTGTGCGTCATCGGTTCGGGGATGGTCAGCGCTGTTGGCCTCAGCGCACCGGCCAGCTGCGCGGCGATCCGCTGCGCCATCGACAACTTCCAGGAAACCCGCTTCATCGACCGCGGCGGCGAATGGATCATTGGCGCCAGCGTACCTTTGGAACAGCCCTGGCGCGGCCACACCAAGCTGATCAAGATGGCCGCTCGCGCCATCGCCGAGGCATTGCAGGGCACCCCAGGGGTCGATCCGGAAAAGACTCCGCTGTTGCTGTGCGTGGCGGAAGCCGAGCGTCCCGGACGCCTGAGCGGCCTGGATAAGGGACTGTTGCAGGCCATCGAGACAGAGCTGGGGCTGCGCTTTCATCCTGACTCCAGCGTCATTGCCCGGGGACGGGTCAGTGCTGCCGTGGCCCTGCTCGATGCGCGCACGCTGATCTACCAGGGCGGTCGTCGCCACGTACTGGTTGCCGGCGTCGATTCGTTCCTGAGTGGAGCGACGTTGACCGTCTTCGAAGCGCGGGAGCGCCTGCTCACCAGCCAGAACTCCAACGGTTTCATTCCCGGCGAAGGCGCCGCTGCCGTGGTGCTGGCCGCCCCGGTCGCCAGCGAAACGCCGCAGTTAACCTGCATCGGCCTGGGTTTCGGCCTGGAACAGGCCACCGTGGAATCCGAAGACCTGCCGCTGCGCGCCGAAGGCCTGACCCAGGCTGTACGCGCAGCGCTGAACGAAGCCGGCTGCGGCCTGGAGCAGATGGATTATCGCCTGACGGATATTTCCGGCGAACAGTACTACTTCAAGGAGGCTTCCCTGGCCCTGAGTCGCAGCCTGCGGGTACGCAAGGAGTTCTTCCATCTCTGGCATCCGGCGGATTGCATCGGCGAAGTCGGTGCCGCCATTGGCCCGGCAATGCTCGCCGTGGCCCTGGCTGCCAGTCGCAAGGGCTACGGCGAAGGGCCGAATATTTTCTGCCACCTGGGCAACGACGCCGGCGAGCGCGCGGCCGCACTGCTCAGCTACCGGATTGTGAGGGCTGCCTGAMSALCVIGSGMVSAVGLSAPASCAAIRCAIDNFQETRFIDRGGEWIIGASVPLEQPWRGHTKLIKMAARAIAEALQGTPGVDPEKTPLLLCVAEAERPGRLSGLDKGLLQAIETELGLRFHPDSSVIARGRVSAAVALLDARTLIYQGGRRHVLVAGVDSFLSGATLTVFEARERLLTSQNSNGFIPGEGAAAVVLAAPVASETPQLTCIGLGFGLEQATVESEDLPLRAEGLTQAVRAALNEAGCGLEQMDYRLTDISGEQYYFKEASLALSRSLRVRKEFFHLWHPADCIGEVGAAIGPAMLAVALAASRKGYGEGPNIFCHLGNDAGERAAALLSYRIVRAAPGPT0013310_2639DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0013310-fabB-K00647NANA
D1-35_051851113hypothetical proteinATGGAACTGCTCAACGCCAGCAAACTGCAGGCTGCCTATACCCTGGGCATGGCGAGCGACGGCCGCGAATCCCTGGTCGTCGTGGCCAAGGGCACCTTCGATCTACCGCTGGACGGGCGTGCCGCGACCCTCGCAGACATCCAGCAACCGCTGCTGATGGCTGACACCTTCTTCGGCGAGCCGGGCCTCAGCGCGCCACGAGAGGAAATGGACTTTGCGCCTTTCAAGCCATTCTGCGACGTGCTGGTATCGGGCAAAGCTTATGCACCGGGTGGTCGGCCCGTGACGCAGTTGACCGCCGGTATTCGTGTCGGTCGGGTGAGCAAGGCTTTTTCAGTGTTCGGTCCCCGGCAGTGGCAACTGGGAATCTCAGGTATTCATGCCGGCTTACCGCAGCCTTTTACCGCGCAGGCTATCTCCTATGCCCAGGCTTTCGGCGGTTCTCATGCCATGGAGAAGATCCCCGACATGCGTCATTGTTACCAGGACAACCCGAGCGGTTGTGGCTGGTATCCAGGCAGTTGCGATGACGCTGGCATCGTCGGCCGGCCGATGCCGAACAGCGAAGAGCCGGGCAAGCCGATCGACAGCCCTTCTGGCGATTTCCGCCCCATGGCCCTCGGGCCAACTGGGCGCAGTTGGCCGCAACGCGCGCGCTTCGCCGGTACTTACGACGATGCCTGGCTGGCCGATTGCTTTCCGTTCCTGCCTGGGGATTTCGACGACCGCTATTTCCAGGCAGCGCCTGAAGACCAGCAAACCGATTACCTGCGCGGCGGCGAAGAGGTGTTGTTGCTGAACCTCACTTCCCGGGAGCGGGCAGGCTTTCGCATTCCCGAAATGGCTGTGCCGGTGACTTTTTTTATGAAAAAAGGCGGCCATGAAACGGTCTCGGCGGTGATCGACACCTTGCTGATCGACACTGACGCCCACCAGGTGCAACTGACCTGGCGGATTTCCCGGCCGCTACGGCGCAACATTTTCGAGATTGCCCAGGTGCTGGTCGGGACGATGTCCACGGCTTGGTGGCGTGCGCGTGAATTGGGCAAGGAGTACTACCCGTCGCTGGGTGCCCTGGTCAAAGCCAAACGTGCTCCTGAGGAAACCGATTGAMELLNASKLQAAYTLGMASDGRESLVVVAKGTFDLPLDGRAATLADIQQPLLMADTFFGEPGLSAPREEMDFAPFKPFCDVLVSGKAYAPGGRPVTQLTAGIRVGRVSKAFSVFGPRQWQLGISGIHAGLPQPFTAQAISYAQAFGGSHAMEKIPDMRHCYQDNPSGCGWYPGSCDDAGIVGRPMPNSEEPGKPIDSPSGDFRPMALGPTGRSWPQRARFAGTYDDAWLADCFPFLPGDFDDRYFQAAPEDQQTDYLRGGEEVLLLNLTSRERAGFRIPEMAVPVTFFMKKGGHETVSAVIDTLLIDTDAHQVQLTWRISRPLRRNIFEIAQVLVGTMSTAWWRARELGKEYYPSLGALVKAKRAPEETDNANANANANA
D1-35_05186459hypothetical proteinATGACCGTTGAATATCATCTCCCCGTATCTTCCACCGCCACGCCGACGCGCGTGGATGGCGTCGTGATCGGGGTGCTGCTGGACGTACCCACGCCGGACGCTCCGGTCGTGGCCTTCCCCGGCTGTCCCGGCGAAACCGGCCTCGCCGCGCGCACCACCACCGCGCTCTGTCGTGACGACATCGGCGCCCAGGTCGCGCTGATGTTCGAGGCCGGTGACCCGGCCCGGCCGCTGGTGATCGGCCGCATCCAGCGCCTGCCGGCAAGCGCAACGCCAACGGTCGCCCACCTCGATGGCGAGCGGCTGGAGTTCAGCGCGAAACAGGAGATCGTCCTGCGTTGCGGCAAGGCCAGCATCACCCTGACCCGCGCGGGCAAGGTGATCATCCGGGGCACCTACCTCTCCAGCCGCTCCAGCGGGGTCAACCGCATCAAGGGCGGCTCGGTGCAAATCAACTGAMTVEYHLPVSSTATPTRVDGVVIGVLLDVPTPDAPVVAFPGCPGETGLAARTTTALCRDDIGAQVALMFEAGDPARPLVIGRIQRLPASATPTVAHLDGERLEFSAKQEIVLRCGKASITLTRAGKVIIRGTYLSSRSSGVNRIKGGSVQINNANANANANA
D1-35_051872178vgrG1_6COG3501Actin cross-linking toxin VgrG1ATGGCAATTACGCAAAACAACCGGTTGGTGCAGGTCGACAGTCCCCTCGGCGGCGATGTGATACTGCTGCAAAGCATGGACGGCAGCGAAGAGCTGGGGCGGTTGTTCCATTACGAGCTGGACCTCACTTCCGAAGACCGGGCGATCAAGTTCGACCAGTTGCTGGGCAAGCCGATGGGCCTGACCCTCGAGCTCTATGACGGAGGCAAACGTTATTTCCACGGCATTGTCAGCACCTGCCGACAGCTGACCGGGCACGGGCAGTTCGCCGGGTATCGCGTCAGCCTCCGGCCCTGGTTCTGGCTGCTCACGCGCACCTCGGATTGCCGGATCTTCCAGAACAAGACCGTGCCGGACATCATCAAGCAGGTATTTCGCGACCTCGGCTTCTCCGACTTCGAAGACAGCCTGAGCGGCAGTTACCGCGAGTGGGAATATTGCGTGCAGTACCGTGAGACCAGCTTCGATTTCGTCAGTCGGCTGATGGAGCAGGAAGGCATCTATTACTACTTCCGCCATGAGAAGTCCCGCCATGTACTGGTGCTGGCCGACGCCTACGGCGCTCACTCCACGGCGGCGGACTACGCGTCGGTGCCCTTCTATCCGCCCGATCGGCAAATGCGCGAGCGCGACCATTTCTACGATTGGCAGATGGCCCGTGAAGTGCAACCCGGCTCGCTGGCGCTGAACGACTATGACTTCCTGCGGCCGCGCGCCAGCCTTGAGGTGCGCTCCAGTGTGCCGCGAAACCACAGCAACGGCGAATACCCGCTCTTCGACTACCCCGGTGAGTACGTCCAGAGCAACGATGGCGATCACTATGCGCGAACCCGCATCGAAGCCATCCATAGCCAGTTCGAGCGCGTGCAGCTGCGTGGCCGCGCTCGCGGGCTGGGGTCCGGCCATTTGTTCACGCTGACCGGTTATGACCGCGCGGACCAGAACCGCGAGTACCTGATCGTCGTCGCACGCTACCAGATCCGCCAGGAAGCCTACGAAAGCGGGCAACAGGAACAGGCTGAACAGTTCGTCAGCGAGTTGGACTGCATGGATGCCAGCCAGGCGTTTCGCCCCCTCCCCGTCACACCCATGCCGATTGTCCGCGGTCCACAGACCGCGGTGGTGGTGGGTCCCAGTGGCGAGGAGATATGGACCGACCAGTATGGTCGGGTCAAGGTGCATTTCCATTGGGATCGCCATGATCAGTCGAACGAAAACAGCTCCTGCTGGATTCGCGTCTCACAGGCCTGGGCCGGCAAGAACTGGGGCTCGGTGCAGATTCCTCGAATCGGCCAGGAAGTGATCGTCAGTTTCCTCGAAGGCGACCCGGACCGGCCGATCATCACTGGCCGCGTCTACAACGCTGAACAGACCGTGCCTTACCAACTGCCGGCCAACGCCACTCAGAGCGGCGTGAAAAGCCGATCGAGCAAGGACGGCACGCAGGCCAACTTCAACGAAATCCGCATGGAAGACAAAAAAGGCGCGGAGCAGCTGTTCATTCACGCCGAGAAGAACCAGGACATCGAGGTCGAGAACGACGAGACCCATTGGGTCGGGCATGATCGCAGCAAGACCGTCGACAACGACGAAACCGTGCAGGTCAAACACGACCGCACCGAAACAGTGGGCAATAACGAAACCATTTCCATCGGCGTCGACCGCACCGAGGATGTCGGCAGCAATGAAAAGATCACCATCGGCGCCAATCGCACCGAACGGGTCGGCAGCAACGAAACCATCACCATCGGCGCGGACCGCACGGAAAAGGTCGGCGCGAACGAAAAAATCAGCATCGCCAGCAACCGCACCGAGGACGTCGGCGGCAACGAGACCATCGACATCGCGGGCAACCGTAATGAAACGGTGCAGGGCAACGAAGGGATCGAGATCAATGGCAACCAGAGCACCCGGATCGGCCAGAACGAATCCCGCGACGTTGCCCATAACCGCAGCACGGGCATCAAACAGAACGACAGCCTGGACGTCGGCAAGCATTTCGTGCTCAACGCCGGCGATTCGATCAGCCTGACCACCGGTGCCGCCAGCATCACCATGAAGAAGGATGGCAGCATCGTCATCAAGGGCAAGAACATCACCCTCGATGGCTCTGGCGCCATCAACATCAAGGCCAACAAGAATGTGGTCGTCAAAGGCCAGAAAATTCTGCAGAACTGAMAITQNNRLVQVDSPLGGDVILLQSMDGSEELGRLFHYELDLTSEDRAIKFDQLLGKPMGLTLELYDGGKRYFHGIVSTCRQLTGHGQFAGYRVSLRPWFWLLTRTSDCRIFQNKTVPDIIKQVFRDLGFSDFEDSLSGSYREWEYCVQYRETSFDFVSRLMEQEGIYYYFRHEKSRHVLVLADAYGAHSTAADYASVPFYPPDRQMRERDHFYDWQMAREVQPGSLALNDYDFLRPRASLEVRSSVPRNHSNGEYPLFDYPGEYVQSNDGDHYARTRIEAIHSQFERVQLRGRARGLGSGHLFTLTGYDRADQNREYLIVVARYQIRQEAYESGQQEQAEQFVSELDCMDASQAFRPLPVTPMPIVRGPQTAVVVGPSGEEIWTDQYGRVKVHFHWDRHDQSNENSSCWIRVSQAWAGKNWGSVQIPRIGQEVIVSFLEGDPDRPIITGRVYNAEQTVPYQLPANATQSGVKSRSSKDGTQANFNEIRMEDKKGAEQLFIHAEKNQDIEVENDETHWVGHDRSKTVDNDETVQVKHDRTETVGNNETISIGVDRTEDVGSNEKITIGANRTERVGSNETITIGADRTEKVGANEKISIASNRTEDVGGNETIDIAGNRNETVQGNEGIEINGNQSTRIGQNESRDVAHNRSTGIKQNDSLDVGKHFVLNAGDSISLTTGAASITMKKDGSIVIKGKNITLDGSGAINIKANKNVVVKGQKILQNPGPT0030410_2462DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_VI_SECRETION_SYSTEMSCE-Type_VI_SECRETION_PROTEINS,PGPT0030410-vgrG-K11904NANA
D1-35_05188342hypothetical proteinATGAAACAGTGGATGAGCATGACGGCCGGAATCGGCTTGCTGATGACTTTGCCCGGGGTCCAGGGCGAAGAAGCCCCGGCCTGTATCGAGGTGACTGTCGGCGGCTACAAGACCCCGGATTACAACTGCCTGAGCCGCCAGATGGGCAACGACCCCGAGGCCGCCGCCGCGGCGCAACACGCGCAGGACAGGCTGGATGTGCCGGTCGACAAACGCGCACCGAACAGTGTCGGCCTCGCGACGCCGGCAGCCACCGGTGTGCGAATGGGCAACACTTTTGGCACGTCGGTCAAGCCCCAGCGACCGCCTGCTCCCGTACCTGGTTCGCCGCTGCCCAGATAAMKQWMSMTAGIGLLMTLPGVQGEEAPACIEVTVGGYKTPDYNCLSRQMGNDPEAAAAAQHAQDRLDVPVDKRAPNSVGLATPAATGVRMGNTFGTSVKPQRPPAPVPGSPLPRNANANANANA
D1-35_05189699hypothetical proteinGTGCAGCAGGGCATAACCGGGGGCGGACGCAGGCGTGGATTGGCCAGGGCGCCCTTGGGGTGGCTGATGGTGGCGTGGTGTCTGCTGGCCGGGCCGGCCCAGGCGGCCGGCGTGGTGGACCTGGACATTGCGCCTCAGGAACTGGCCCCGGCACTGGAGCAATTCAGTCGGGCCACAGGCATGGCGGTGCTGGTGGATCACGCCTTGTCGAACCGGCGCCAGACGATGGGCGTCCAGGGGCTGTTTACGCCTGCCCAAGGGCTGACTGTTCTGCTCAGTGGTACCGGGCTGGCGGCGCAGTATGCCCGTGCGGATGCATTCACCTTGCAACCGGTACAGGTTCGCGAGGTGCCATTACCGCCGGGCGCCACAGCCGGATTGAGCGACAGCAACTATGCGGCAACGATCCAGGCGGTCATCCAGCGCAACCTGTGCCGTTCGCCATTGACCCGACCGGGCAGTTTTCGCGCGTTGTTGCAAGTGTGGATCGGACGCGACGGCGTGGTGCAAAACAGTCGGCTGGTCAGTTCCACGGGTGATGTGTTGCGTGACAAAGCCTTGGTCAACAGTTTGCAGAACCTCAGGATCGACCGTCCGGCGCCCAGTTCGCTGCGCCAGCCGGTGACCCTGCTTTTGGTACCCGATTCATCAGGAAAAAGCATGGAATGCACAGCAGGGGAAGAGGTGTTCGGGCAATGAMQQGITGGGRRRGLARAPLGWLMVAWCLLAGPAQAAGVVDLDIAPQELAPALEQFSRATGMAVLVDHALSNRRQTMGVQGLFTPAQGLTVLLSGTGLAAQYARADAFTLQPVQVREVPLPPGATAGLSDSNYAATIQAVIQRNLCRSPLTRPGSFRALLQVWIGRDGVVQNSRLVSSTGDVLRDKALVNSLQNLRIDRPAPSSLRQPVTLLLVPDSSGKSMECTAGEEVFGQNANANANANA
D1-35_05190546hypothetical proteinATGAAAGACGCTGGCCGCAGCCCGATGGTCAAGCTGTTCCTCACCTCCTATGAGGATTTCAAGGTGCGTCTGCGCAGGCGCCTGGGTTCCGAGGAACTGGCCAACGATGTGCTGCATGAAACCTACCTGCGGGTCGACCGCATGGGCGACACGCCGGAGATCGTCCAGCCTAACGCCTACCTCTATCGCATGGCCCTGAACATTGCCGCCGACCGCCGGCAGTCCGATGCTCGTCTGCTCACCGGCAGCGAGATCGAAGAGCTGCTGCAAATCTCCGACGAAGCGCTGGACCCGGCTCGGGTGGTGGGCGGCCAGAAGGAGTTGCAGACCCTGCTTAAGGCGTTGTACGAGTTGCCGGCGCGGCGCCGCAGGATTTTCATTGCCGCGCGCCTGGAAGAGGCCCCGCACCTGGAGATCTCCCAGCGTTTCGGTATCTCCACGCGCATGGTGGAGAAGGAAATCAAGGCTGCGTTGGGGCATTGCGCCCTGCGCCTGGAAAGAAAAGTCATTCAACGGTTCGGTCCCGGCGCGGGAAAACCGTCTTGAMKDAGRSPMVKLFLTSYEDFKVRLRRRLGSEELANDVLHETYLRVDRMGDTPEIVQPNAYLYRMALNIAADRRQSDARLLTGSEIEELLQISDEALDPARVVGGQKELQTLLKALYELPARRRRIFIAARLEEAPHLEISQRFGISTRMVEKEIKAALGHCALRLERKVIQRFGPGAGKPSPGPT0014960_9166DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
D1-35_05191948hypothetical proteinGTGCGCTTGAATATCTTCAGCATCGCGTCCCCTGACGATACGCCCGAGGCCCGACTGGCCGGCGAGGCCCGTGACTGGTTGATCCTGCTGACCTCGGGACGCGCCACCGTCGCCGATGCCCGTGCCTTGCGCCAATGGTGCGGGCAGAGCGCCGAACATGCGCAGGCGTTCGAGCAGGCCAAGGCGCTGTGGCATGGGCTGCGACCGGCCGCCGAAGCGACGCAGGGGCCTCGGCATTTTGGCCGTCGGGCGTTGCTCGGTGGCGCGCTGGCCGCCTCCGTGGGCTTCTTGCTGATCCGCGCCACGGTGCCGGGTGGCGTTTCCGGGCTCGCTGCGGACTACGTCACCGAAGTGGGCGAACAGCGCCGGGTCGAGCTGGGCGATGGCGTGAGCCTGGAACTCAATACCCAGACTCGCCTCAGCCGCCTGCCGCTGGCCGAGGGCGGGCAGGGCCTGGAATTGCTCGCCGGCGAAGTCGAAGTGTCCGGCAGCAGCACCACGACGATCAACGTCCAGGCCGGCTCCGGCTGGATCAGCGCCGCGCGGGCCCGGTTCAATGTTCGCTACATCGACCAGAGCGTCTGCGCAACTTGCCTGGAAGGCGTCGTGCAAGTCCAAGTGCAGGGCCGAGAGTTTCGCCTCGAGCCGGGCATGCAATTGACCTACGACACCCGCCAGGTCGGCAGCCCACAGGCGGCCGATGTATCCGCCGCCGTTGCCTGGCGCGAACAGGTGCTGGTGTTCAACGATGCGACCCTGGCCAGCGTCATCGACGAGATCAACCGTTATCGGCCTGGCATGTTGCTGTTACTCAACCGCGAGCTGGGCTTGCGCAAGGTCCAGGCCCGTTTCCGCCTCGATCAACTGGCTGGGGTGGCGCTGCTGATTCGCGATGCCTATGGCGCCAAGTGCACCGAGTTACCGGGTGGGGTGGTGGTGTTGAGTTAGMRLNIFSIASPDDTPEARLAGEARDWLILLTSGRATVADARALRQWCGQSAEHAQAFEQAKALWHGLRPAAEATQGPRHFGRRALLGGALAASVGFLLIRATVPGGVSGLAADYVTEVGEQRRVELGDGVSLELNTQTRLSRLPLAEGGQGLELLAGEVEVSGSSTTTINVQAGSGWISAARARFNVRYIDQSVCATCLEGVVQVQVQGREFRLEPGMQLTYDTRQVGSPQAADVSAAVAWREQVLVFNDATLASVIDEINRYRPGMLLLLNRELGLRKVQARFRLDQLAGVALLIRDAYGAKCTELPGGVVVLSPGPT0003910_6007DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003910-prhR|fecR-K07165NANA
D1-35_05192387hypothetical proteinTTGACTGACTGGGTACATATCCGTTGCTGCGGTAACGGCTGCTTGGGGTTCCGCCCTTACGGCGGGTCACTTTTTTCAGACGCCAAAAAAGTAACCCAAAAGGCTTTGCCCCACCACTCGGTGCCTCGCCAAGGCTCGGCATGCCCTCACTCCGGCATTGCTCCGTGGGCCCGCCGCGAAGGGCCGTCCCTGGCCCAGCGCGGCTATCCCGGCATCCATGCCGGGATGCCCACTGCACAATGCCTGCGTTCGGCCAGCGTGGTTAACGGGGCGTCTCAGATCAAGATCAGGATCAAGATCAAGATCAAGATCAAGATCAGGATCAAGATCAGGATCAAGATCAAGATCAAGATCAGGATCAGGATCAAGAGCGAGGCGGTCTGGTAGMTDWVHIRCCGNGCLGFRPYGGSLFSDAKKVTQKALPHHSVPRQGSACPHSGIAPWARREGPSLAQRGYPGIHAGMPTAQCLRSASVVNGASQIKIRIKIKIKIKIRIKIRIKIKIKIRIRIKSEAVWNANANANANA
D1-35_05194612xcpWCOG4795Type II secretion system protein JATGAGCGGCCGGGAGACAGGCTTCACCTTGCTTGAAGTCATGGTGGCGATCCTGCTGATGGCGGTGATCAGCCTGATCGCCTGGCGCGGGCTGGACAGCGTGACCCGCGCCGACAGCCACTTGCAGGCCAGCACCGAGCAGACCGAAGCCTTGCTGCGAGTGCTGAACCAGCTGGAGCGCGATGTGGCCCTGCGGGCCGGCGTCGAGTTGAGCGAACCGCTCAAGCCAGGGGTCGACAACGAGCCCTCGACAGCCCCGCCCGCCCTCACCCTGCGCAGCACCGAAGGCCAGGGTTTTCGCCTTGACGTTATCCGTGAGGCCGCCGATCAGGGCGGTGGCTTGCAACGGGTACGCTGGTGGCTCAAGGGCGACACGCTGTATCGCGCCCAGGGCCAGGCCCGCAGCCGCTACCCTCTACCGGCGCCGGGTGCGGGCGTGGCTGTGTTGAGTGAGGTCAGCGATGCGGGGCTGCGATTCTGGGACAGGGAAAAGGGCTGGCGCAAACTCAGCGGCAACCGGCAGGAGGATCCGCCGGGCATCGAAATCAGCTTGACCCGGCAGACACCGCAAGGGCCGGAGAAGTATCGACAGGTGCTGGGGCCGTTGGAGTAGMSGRETGFTLLEVMVAILLMAVISLIAWRGLDSVTRADSHLQASTEQTEALLRVLNQLERDVALRAGVELSEPLKPGVDNEPSTAPPALTLRSTEGQGFRLDVIREAADQGGGLQRVRWWLKGDTLYRAQGQARSRYPLPAPGAGVAVLSEVSDAGLRFWDREKGWRKLSGNRQEDPPGIEISLTRQTPQGPEKYRQVLGPLEPGPT0026455_1050DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026455-gspJ|epsJ-K02459NANA
D1-35_05195450hypothetical proteinATGCACGGCAAGCAACGCGGTTTTACCCTGATCGAATTGATGGTTGTGCTGGTGATCGTCGGCATCGCCAGCGCGGCCGTGAGCCTGAGCATCAAGCCGGACCCGGCGAAGCTGCTGCGCCAGGATGCCGAACGGCTGGCCCAGCTGCTGCAACTGGCCCAGACGGAAGCCCGTGCCGACGGGCGACCGATCACCTGGCGCTGGGACGCCAAGGGTTTCGGCTTCAGCCGCCGCCCGGACCAGGGCGCAGGACTGGACCGCTTCAAGGAAGACCCGCAGCTGCGCCCGCGACGGTGGCAAAGCCCGTCCATGGAGGTACGTGTGGAACCCCGGCAACGCGTGGTGCTCAATGCCGAATGGATCGGCGTGCCGCTACAGATCCGCTTGTCCGACGGCCAGAACAGTTTCACTGTGCAACGCAGCGCCGCCGGTCGGGTATGGGTTCAATGAMHGKQRGFTLIELMVVLVIVGIASAAVSLSIKPDPAKLLRQDAERLAQLLQLAQTEARADGRPITWRWDAKGFGFSRRPDQGAGLDRFKEDPQLRPRRWQSPSMEVRVEPRQRVVLNAEWIGVPLQIRLSDGQNSFTVQRSAAGRVWVQPGPT0026445_1047DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026445-gspH|xcpU|epsH-K02457NANA
D1-35_05196429hypothetical proteinATGACGTTCACGGAACGAGTCTCCCCGGCGCATATCGTCCAGGCGCTGGGACTGGTGGCAGCGTTGGCCGGAGTGGCGACCTGGTCTTCTCTGCTGCTGACATCCGCCGAGTCGCGCACCCCGGACGTGGCCCCGCAACGCCTGGCCGAGCGTTCCGACAGTCCTGCATTGCAGTGGTTTTCCAACCAACCGGCGGCGGTGGATATCAAGGTCAGCGGGGTGATGGCCGGTGCCCGCGGCGCGGTGGCGATCCTGAGTCTCAACGACGGACCACCGCGCAGTTTCCTGGCCGGCGAGCGGGTAGCCCAAGGGGTAAGGCTGGTAGCGATCGAGGCGCAGGCCGTGGTGATCGAACGCGGCAGCGAACAGACCCGGCTGGAACTGGCGCGGCTGCCGGATTCAGTGAGTTTGCCGTCGCTGCTCCGCTGAMTFTERVSPAHIVQALGLVAALAGVATWSSLLLTSAESRTPDVAPQRLAERSDSPALQWFSNQPAAVDIKVSGVMAGARGAVAILSLNDGPPRSFLAGERVAQGVRLVAIEAQAVVIERGSEQTRLELARLPDSVSLPSLLRPGPT0026420_993DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026420-gspC|epsC-K02452NANA
D1-35_05197375hypothetical proteinATGTCACGCCCAGCCCCACAAGCCGGTTTCACCCTGATTGAAGTGCTGGTGGCCCTGGCGATCATTGCCGTGGCCATGTCTGCCGCAGTGCGCGTGGCGGCGGTGATGACCCAGAGCAACGGCTTGCTGCGAGACAAGTCCATCGCCTTGCTGACGGCTCGCAGCCAATTGGCGCAATTGCGCCTGGAAGGACACGCGACGCCGGGGATGAAGGTTTTTGAATGCGATCAGGGTCGCTTGCTGCTGCGCTGCGAGCAGAACCTGCGCCCGGCGGAAAACGGGCGGATGCTGCGGGTCGAGCTGAGCGTATCCGACCGCAGCCGCGAGGCGCCGCCCTTGGCTCGGCTGGAGACCTTGCTCAGTCGGGAAAAATAAMSRPAPQAGFTLIEVLVALAIIAVAMSAAVRVAAVMTQSNGLLRDKSIALLTARSQLAQLRLEGHATPGMKVFECDQGRLLLRCEQNLRPAENGRMLRVELSVSDRSREAPPLARLETLLSREKPGPT0026450_867DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026450-gspI|epsI-K02458NANA
D1-35_05198450xcpTCOG2165Type II secretion system protein GATGCACATCGCCCCTTGTTACGCCCGTTCCCGAGGCCCACGCGGGCAGCGGGGCTTCACCCTGATCGAGATCATGGTCGTGGTGGTCATCCTCGGCATTCTCGCGGCGATGGTAGTGCCCAAGGTTCTTGATCGACCTGACCAGGCCCGTGCCACGGCGGCGAAGCAGGACATCGGCGGGTTGATGCAGGCCTTGAAGCTTTATCGCCTCGATCACGGCAGCTACCCCAGCATGAACCAGGGCCTCAAGGTGCTGGTGGAGCGGCCGGCCGATGCCAAGAACAGCACCTGGCGTTCCTACCTGGACCGCTTGCCCAATGATCCGTGGGGCCGCCCCTACAACTACCTCAATCCTGGCGCGAACGGCGAGGTCGATATCTTTTCCCTTGGTGCCGACGGCCAGCCTGACGGCGACGGTGTGAACGCCGACATCGGCTCCTGGCAGTTATAAMHIAPCYARSRGPRGQRGFTLIEIMVVVVILGILAAMVVPKVLDRPDQARATAAKQDIGGLMQALKLYRLDHGSYPSMNQGLKVLVERPADAKNSTWRSYLDRLPNDPWGRPYNYLNPGANGEVDIFSLGADGQPDGDGVNADIGSWQLPGPT0026440_1222DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026440-gspG|epsG-K02456NANA
D1-35_05199984xcpXCOG3156Type II secretion system protein KATGCGCACGAATTCGCCGACAGCGGCGAAGCAGCGCGGCATGGCGGTGATCAGTGCCTTGCTGATTGCTGCCGTGGTGGCCGTCATTGCCGGCGGCATGCTCACCCGCCAGACCTTGTTCACCCGCAGCCTGGAAGCCGAGCAACTGCGCATCCAGGGCGCGGCGCGGTTGCAAGGCGGCCTGCAGGTGAGTCGCCAGTTGCTCTGGGATGTTCGCCAGCGCGATCCCTTGACGCGCTTCGGCCAGCCTTGGGCGAAACCTATTCTGATGCCGGGCTCCGGCCAGGTCGACACGCCATTCGAAGGGCAACTGGAGGATGAACAAGGCAAGTTCAACCTGCGCAATCTGGTGGTCGATGACCAGCTGGACCAGGAACAGCTGCGCGCCTTCGAGCGGCTGTGCGAGCAGTTGGGTGTCGCCGCCACGGTACGGGCGCGTATCGTCGAGCGGGTGATTGCTGGCTACCCGCGCCTGTTGAATCCGCCGCGGGCGGGCCAGGCGTCCATGAGCAGCACGTTCGACAGCGGCCGCAGCACCTCGCCGGACGCCTCCGACACGCTGGCGCCGACCCGGCCGATGCTGCGCACTTTACAAGACCTGCTCAGCGTCAAGGGCGTCACCCCGGCACTGCTGGAAATGCTGGCCCCTTACGTCACGATCCTGCCGGCCAACACCTGGCTCAACGGCAACACCGCCAGCGCCGCGGTGCTCGCCGCCTACGTGCCGGGATTGTCGCTGCAACGCGCCCAGGCGCTGATCAATGAACGCGACGGTGGCCACTGGTTCATCAATCGCGGGGATTTCGTCAACCGCCTGCGCATGCCCGAACTGGACGTCAGCACCGTCAAGGTCGGCATCGCCAGCGACTGGTTCCGCCTGCGGGGCCAGGTGCGCAGCGGCCAACGGCGGGTCGAACTGGATGCCTTGCTCCAATGCAGCCAGGACCGCTTGCCTCAGGTGATCTGGTCGCGGGTGGGTGTATGAMRTNSPTAAKQRGMAVISALLIAAVVAVIAGGMLTRQTLFTRSLEAEQLRIQGAARLQGGLQVSRQLLWDVRQRDPLTRFGQPWAKPILMPGSGQVDTPFEGQLEDEQGKFNLRNLVVDDQLDQEQLRAFERLCEQLGVAATVRARIVERVIAGYPRLLNPPRAGQASMSSTFDSGRSTSPDASDTLAPTRPMLRTLQDLLSVKGVTPALLEMLAPYVTILPANTWLNGNTASAAVLAAYVPGLSLQRAQALINERDGGHWFINRGDFVNRLRMPELDVSTVKVGIASDWFRLRGQVRSGQRRVELDALLQCSQDRLPQVIWSRVGVPGPT0026460_629DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026460-gspK|epsK-K02460NANA
D1-35_052001182hypothetical proteinATGAGCCGTTTGCGCATTGCCCTGGCGCCGCTGGATCGTCTTGGCCTCGACAGCCCGGTGGCATTTGCCTGGCTGGATCGCCAAGGGCAGGTGCGTGAGGCCGGTCTCAGCACACTCCGGGCGCTTGGCCAGGGCACGAAGAAGCAGCCGGTCGAATGCTTCCTGCATTCGCGTGACAGCTTGCTGACGCGCCTGGAGCTGCCGCCGTTGTCCGCGGCGAAAACCACCGCCGCCGTGACCTGCGCGGCCCAGGCGCTGATGCTCGGTGCCACTGAACAGATGCAAGTGGCCCACGGCCCGCGCGATGCGGACGGGCAGGTAGCGGTCGCCTGGCTGGACCGTGCGTCGCTGAACCTATTAGGTCAGATCCTGCTGCAGGCCGGCCTCAAGTTGCGCGGCCTGTATCCGGCCGCCTACGCCTTGCCGGTGTTGTCGGGGCCAGTGGCGTGTATCGAAGACGGGCACTTGCTGGTGCGTCATGGCTTGCAGCACGCGGTGGTCCAGCCGTTGCTGGAAGATGCGCTGGACGAGTGGCTTGTGGAAATGGGCAGCGGCCTGCATTGGGTGGGCGAGTCGCCGCCGCAAGTGACGACTGACAGCTTGCCCGTCACCCAGCGCTGGACTGGCGTCGCGCCGGGCTGGGGCCTGCATGCCGGGTTGACGCAGGGGCGTTCCGGGCGCGGCGGCTGGGGGCGGGCGGCGGGCATCTGCGCGCTGGCGGTGGCGGTGTGGGGGGGCGGGCTCAATCTTTATGCCAGCCGTGAAGCGGCCCAGGGGCAGCGGCTCAAGGCGCAGATGAGTCAACGGGTGAAGCAGGCGTTTCCTCAGTTACCGGTGATTCTCAATCCCTTGCAGCAGGCCCGTCAGCAAATCGCCGCGCGCCAGAGCGGTTCGCTGACGGAGCCTGGGCAGCGCTTCGCCAGCCTGGTAAGGCAGGCGGGCAGCGCCATGCCGTTCATGAGCGGCAATGTGCAGGAACTGGTGTTCGAAAACGCTGAGTTGCGCCTCAAGCTCGTCGCCGAAGCGCAGAAAGTCGCGGCGGGCGACGACTGGAAAATGCCCCTGGCGCAGGCCGGCATCGAGGTCGCGGCCATTGACCAGGGGTGGACGTTGCGCGTGGCTCCGGCCGGGCAGGAAGCGCAAGACAGCCCCGACGAAAACCAGGAAGCGAACGATGAATAAMSRLRIALAPLDRLGLDSPVAFAWLDRQGQVREAGLSTLRALGQGTKKQPVECFLHSRDSLLTRLELPPLSAAKTTAAVTCAAQALMLGATEQMQVAHGPRDADGQVAVAWLDRASLNLLGQILLQAGLKLRGLYPAAYALPVLSGPVACIEDGHLLVRHGLQHAVVQPLLEDALDEWLVEMGSGLHWVGESPPQVTTDSLPVTQRWTGVAPGWGLHAGLTQGRSGRGGWGRAAGICALAVAVWGGGLNLYASREAAQGQRLKAQMSQRVKQAFPQLPVILNPLQQARQQIAARQSGSLTEPGQRFASLVRQAGSAMPFMSGNVQELVFENAELRLKLVAEAQKVAAGDDWKMPLAQAGIEVAAIDQGWTLRVAPAGQEAQDSPDENQEANDEPGPT0026465_734DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026465-gspL|epsL-K02461NANA
D1-35_05201546hypothetical proteinATGAATAAGCTGACCGCGGCACAGCTGAAGGCGCGTTGGCAAAACCTTCGCACGGCCTGGCAGGGCCTGGCCGCCCGCGAGCAACGTGCCGTGGCCCTGGCGGCGTTGGTGCTCGGTAGCGGCCTGGTCTGGCTGGCGTTGATCGAGCCGGCGTTGAAAACCATCGCTTACTGGCAGGCCGAAACCCCGAAGCTGCGCTCGCAGACCGAAGCCCTCGAGGTGCTGCTGCGCGACGTTGGCGGACCCGCCCGGGGCCAATCCCTTGAAGTCGCCCTGCGCCAGACCCTGGATGCCAGCGGCCTGGGCGAGCACTACCAGTTACAACCGCCGGGCACCGCGGCGCCTGGCGCGTGGCAACTCACTTTCACCGACGCGCCGGCGGACGGGGTGATCGATTGGCTGCTCGGCAGTCCACCACAATTTTCCCTGGAAGTGATCGAGGCCCGCTTGCAGCGCACGGCCCCGGCCAGTTCCGACCCAACCCCCGGCACTCTGTCCGGAACCGTTCGCATGAACCACGCGTCAAGCGCTAAGGAAGCTTCATGAMNKLTAAQLKARWQNLRTAWQGLAAREQRAVALAALVLGSGLVWLALIEPALKTIAYWQAETPKLRSQTEALEVLLRDVGGPARGQSLEVALRQTLDASGLGEHYQLQPPGTAAPGAWQLTFTDAPADGVIDWLLGSPPQFSLEVIEARLQRTAPASSDPTPGTLSGTVRMNHASSAKEASPGPT0026470_252DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026470-gspM|epsM-K02462NANA
D1-35_052022355gspD2Secretin GspD 2ATGAAGGGGTCCAGATACCCGCGACATTGGCGCAAGGCCGCGCCGCTGCTGTTGCTTGCTTTGGGCGCGTGCACCAGCACGCCACCGGCCTCGCAGCCACCGTTGCTGGTGGACAGCGAACTGGGCATCCCGCTGGGCAGTACCCAGCGCAGCGGTGACGCGTTGCTGGACCGGCAACGGGCCCAGGCGTCCCGCGAGCAGAAACCGCCGGTGCGCCATCAGGTCGACCTGACCGCCCGCGCCCGCACGCCGCGTAGCGATGCCCCTGCGAGCAATCCGTTGGGTGATCAACCGGTGACGCTGAATTTTGTCGAGGCCGATATCCAGGCGGTGGTGCGCGCCTTGTCGCGTTCCACCGGTCAGCAGTTCCTGGTCGATCCGCGAGTCAAAGGCAACCTGACCCTGGTCTCCGAAGGCCAGGTGCCGGCCCGCCAGGCCTATGAAATGCTGCTCGCGGCATTGCGCATGCAGGGCTTCAGCGTGGTCGATGTCGGCGGTGTCGCCCAAGTGGTCCCGGAAGCCGATGCCAAGTTGCTGGGTGGGCCGATCTACAATGCTGACAAACCGGCCGGCAACGGCATGCTGACTCGCACCTTTCGCCTGCAATACGAGAACGCGGTCAACCTGATCCCGGTGCTGCGCCCGATCGTCTCGCCGAACAACCCGATCAACGCGTACCCCGGCAACAACACGATTGTGGTGACCGATTACGCCGAGAACCTCTCTCGCGTCGCGCAGCTCATCGAGGGCATCGACACTCCAAGTGCTATCGATACCGATGTGGTGCCGATCCAGAACGGCATCGCCGTGGACATCGCCCAGATGGTTTCCGACCTGCTGGAGACCCAGGGCGGCGACCAGACGCAGAAGATCAATGTGATCGGCGACCCGCGCTCCAACTCCATCATCATCCGCGCCGGCAGCCCGGAGCGGACCGAGCTGGCGCGCAACCTGATCTACAAGCTCGACAACGCGCAGAACAACCCGAGCAACCTGCACGTGGTGTACCTGCGCAACGCCCAGGCCGCCAAACTCGCCCAGGCCCTGCGCGGCTTGCTCACCGGGGAAAGCGAAGGCGAGGGCAACGACAATTCGCGCTCGGTGCTCAGCAGCATGGGCGCCAGTACCAACGGCCAGAGCGGGCAGGGCAACGAAAGCGCAACCAGCCCCGTGAGTAGCACCACCTCGGGCAGCGGCAGCGGCTATGGCCAAGGCAGCAGCGGGCAAACCTCCAGCACGACGCAGAGCGAGCAGAACACCGCCTTCAGCGCCGGTGGCGTGACCATCCAGGCCGATGCCACCACCAACACCTTGCTGATTTCCGCGCCGGACCCGCTGTATCGCAACCTGCGCGAGGTCATCGACCTGCTCGACCAGCGCCGCGCCCAGGTGGTGATCGAGAGCCTGATCGTCGAAGTCGGCGAGGACGATGCCAGCGAGTTTGGCGTGCAATGGCAGACCGGCAACCTCGGTGGCAGCGGCGTGATCGGCGGGGTCAACCTCGGCGGCACCGGGCTCAACCTCAACGGCAAGACCAGCATCGACGTGTTGCCCCAGGGCCTGAACCTGGGCCTGGTCAACGGCACCGTGGACATCCCCGGCATCGGCAAGATCCTCGACCTCAAGGTGCTGGCCCGGGCCTTGAAGAGCAAGGGCGGCACCAACGTCTTGTCGACGCCGAACCTGCTGACCCTGGACAACGAAGCGGCGAGCATCTTCGTCGGCCAGACCATCCCGTTCGTCAGCGGCAGCTACGTCACCGGTGGTGGCGGCACCAGTAACAACCCGTTCCAGACCGTGACCCGTGAGGAGGTCGGCCTGAAGCTCAACGTCCGGCCGCAGATTTCCGAGGGCGGTACGGTCAAGCTCGACATCTACCAAGAGGTCAGCAGTGTCGACAACCGCGCCTCCAGCACCACCGGGATCGTCACCAACAAACGTGCGATCGACACCAGCATCCTGCTGGACGACGGGCAGATCATGGTCCTCGGCGGGCTGCTGCAGGACGGCTACAGCCAGAGCAACGACGCGGTGCCGTGGCTGTCGACGATCCCCGGCATTGGCGCGCTGTTTCGCAACGAGCGGCGCCAGGTCACCAAGACCAACCTGATGGTCTTCCTGCGGCCCTACATCATCCGCGACACGGCGGCGGGTCGCGGGATCACCCTGAACCGCTACGACTTCATGCGCCGCGCCCAAGGCCTGCTGCAACCGGAGCGCAGCTGGGCGCTGCCGGACGTGCAGGCGCCGCAACTGCCGGCCTCGGCCCGGGCGATTCCAGGCGCCACGCCCGCCGGGTTGCAAACGCCGAGGGCGGTGATCAAGGCGGTGCCGGTCGAAGGAGGCGCTCGCTGAMKGSRYPRHWRKAAPLLLLALGACTSTPPASQPPLLVDSELGIPLGSTQRSGDALLDRQRAQASREQKPPVRHQVDLTARARTPRSDAPASNPLGDQPVTLNFVEADIQAVVRALSRSTGQQFLVDPRVKGNLTLVSEGQVPARQAYEMLLAALRMQGFSVVDVGGVAQVVPEADAKLLGGPIYNADKPAGNGMLTRTFRLQYENAVNLIPVLRPIVSPNNPINAYPGNNTIVVTDYAENLSRVAQLIEGIDTPSAIDTDVVPIQNGIAVDIAQMVSDLLETQGGDQTQKINVIGDPRSNSIIIRAGSPERTELARNLIYKLDNAQNNPSNLHVVYLRNAQAAKLAQALRGLLTGESEGEGNDNSRSVLSSMGASTNGQSGQGNESATSPVSSTTSGSGSGYGQGSSGQTSSTTQSEQNTAFSAGGVTIQADATTNTLLISAPDPLYRNLREVIDLLDQRRAQVVIESLIVEVGEDDASEFGVQWQTGNLGGSGVIGGVNLGGTGLNLNGKTSIDVLPQGLNLGLVNGTVDIPGIGKILDLKVLARALKSKGGTNVLSTPNLLTLDNEAASIFVGQTIPFVSGSYVTGGGGTSNNPFQTVTREEVGLKLNVRPQISEGGTVKLDIYQEVSSVDNRASSTTGIVTNKRAIDTSILLDDGQIMVLGGLLQDGYSQSNDAVPWLSTIPGIGALFRNERRQVTKTNLMVFLRPYIIRDTAAGRGITLNRYDFMRRAQGLLQPERSWALPDVQAPQLPASARAIPGATPAGLQTPRAVIKAVPVEGGARPGPT0026425_384DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026425-gspD|epsD-K02453NANA
D1-35_05203192hypothetical proteinATGGACACCAACCCAGAAAACACTGCACCTGTGGCGAGGGGATTTATCCCCGCTGAGCTGCGCAGCAGCTCCAAAAAATTCAACAACATCAACCTGACATACCTTGTTGTCAGGTTGGGGGCCGCTGCGCGCCCCAGCGGGGATAAATCCCCTCGCCACAAGTGTTGTATCGAGCAGAAGGTGTCGGCATGAMDTNPENTAPVARGFIPAELRSSSKKFNNINLTYLVVRLGAAARPSGDKSPRHKCCIEQKVSANANANANANA
D1-35_052041419hxcRCOG2804putative type II secretion system protein HxcRATGAACACCCTCCCATACGCCTGGGCCAAGGCCCAGCGCCTGGTATTGCGCCAGTCCGGGGAGGAGGCGGTGCTGATGGTCTGCCCCTCAACGCCGGGCTGGTCGATCAGTGAAGTTCGTCGCCAGTTCGGCGAGGTCCGGCTGGAACGGGTGCGTGACGAGGAGCTCGACGGCCTGCTCAATACCGCTTACGCCGACACTGGCAGCGCCGCCGCCGTGGTCGGCGCGGCGGAAAACGAGGTGGACCTCGACCGGTTGATGCAGGACATTCCCGAGATCACCGACCTGCTGGACACCCAGGACGGCGCGCCGGTGATCCGCATGATCAATGCGCTGCTGACCCAGGCCGCCCGGGACGAGGCCAGCGACATCCACATCGAACCCTACGAGAGCCATTCGGTGGTGCGCTATCGGGTCGACGGCACGCTGCGTGACGTGGTCTCGCCGCGCAAGGCCTTACATGGCGCGCTGGTGTCGCGGATCAAGATCATGGCCCAGCTCGACATCGCCGAAAAACGCCTGCCCCAGGACGGCCGCATCGCCCTGCGTGTCGCCGGGCGGCCGATCGACATCCGCGTATCCACTGTGCCCACTGGCCACGGCGAACGGGTGGTGATGCGCCTGCTGGACAAACAGGCCGGACGCTTGCAACTGGAAACTTTGGGGATGGACCCGGACGTGCTCGGCAAGCTCGACCACCTGATCCGCCAGCCCCACGGCATTGTGTTGGTCACCGGCCCTACGGGCAGCGGCAAAACCACCAGCCTGTATGCCGCCCTGGCGCGGCTGGACGCCAGCGTGCATAACATCCTCACCGTGGAGGACCCGGTGGAGTACGACCTGCCGGGCATCAGCCAGATCCAGGTCAACGCGAAAATCGACATGACCTTCGCCCTGGCCCTGCGGGCGATCCTCCGCCAGGACCCGGACATCATCATGATCGGTGAAATCCGCGACCTGGAGACCGCGCAGATTGCCGTGCAGGCCTCGCTCACCGGTCACCTGGTGCTGGCAACGTTGCACACCAACGACGCGGTGTCGGCGATCAACCGTCTGATCGACATGGGCGTCGAACCCTTCCTGCTGGCCTCGTCGATGCTCGGCGTGCTGGCCCAGCGGCTGGTGCGCAGGCTCTGTCCGCACTGCAAACAAGCCGATCCGGCCACGCCCGGCACCTGGCGCCCGGTGGGTTGCCCGAGTTGCAACCAGACCGGCTACAGCGGCCGCACCGGCATTCATGAACTGTTCTGCATCGACGACGACATCCGCACGCTGATCCATCAGGGGGCAGGGGAGCAGGCACTGCGCGCCGCGGCCCGCCAGGCCGGCATGTTCAGCATGCGCGAAGACGGCGAACGCTGGGTGCGCAGTGGCGCCACCGCGCCTGAAGAAATCCTCCGCGTAACACGGGACGCCTGAMNTLPYAWAKAQRLVLRQSGEEAVLMVCPSTPGWSISEVRRQFGEVRLERVRDEELDGLLNTAYADTGSAAAVVGAAENEVDLDRLMQDIPEITDLLDTQDGAPVIRMINALLTQAARDEASDIHIEPYESHSVVRYRVDGTLRDVVSPRKALHGALVSRIKIMAQLDIAEKRLPQDGRIALRVAGRPIDIRVSTVPTGHGERVVMRLLDKQAGRLQLETLGMDPDVLGKLDHLIRQPHGIVLVTGPTGSGKTTSLYAALARLDASVHNILTVEDPVEYDLPGISQIQVNAKIDMTFALALRAILRQDPDIIMIGEIRDLETAQIAVQASLTGHLVLATLHTNDAVSAINRLIDMGVEPFLLASSMLGVLAQRLVRRLCPHCKQADPATPGTWRPVGCPSCNQTGYSGRTGIHELFCIDDDIRTLIHQGAGEQALRAAARQAGMFSMREDGERWVRSGATAPEEILRVTRDAPGPT0026430_2462DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026430-gspE|epsE-K02454NANA
D1-35_052051212epsF_2COG1459Type II secretion system protein FATGAACCGCTACCGTTTCGAAGCCGCCGACGCCCAGGGCAAGATCGAATCCGGGCACTTGGAAGCCGACAGCCAGGGCGCTGCCTTCAGCCTGCTGCGCAGTCGCGGGCTAACGGCGTTGCAGGTGCAGCTCGAGCGCAACACGGCGCAGGCCAACGGCGGCGGTCTGTTCAGTGCCAAGCTCTCGGACAACGACCTGGCCTGGGCCACCCGCCAACTGGCGAGCCTGCTCGGGGCGAGCCTGCCACTGGAGGCCGCGTTGAGTGCGACGGTGGAGCAGGCCGAACGCAAGCACATCGCCCAGACCCTCAGCGCCGTGCGCGCCGATGTGCGCAGTGGCATGCGCCTGGCCGAAGCCTTGGCGGCACGGCCGCGGGATTTTCCGGAAATCTACCGGGCGCTGATTGCCGCCGGCGAAGAGTCCGGCGACCTGGCCCAGGTGATGGAACGGTTGGCGGACTACATCGAGGAGCGCAACAACCTGCGCGGCAAGATCCTCACGGCGTTTATCTATCCCGGCGTGGTGGGACTGGTGTCGGTCGCCATCGTGATTTTCCTGCTCAGCTACGTGGTGCCGCAGGTGGTCAGCGCGTTCTCCCAGGCCCGCCAGGACTTGCCCGGGCTGACCTTGGCGATGCTCACCGCCAGCGACTTCATCCGGGCCTGGGGCTGGCTGTGTTTTTGCGTCCTGGCCGGGGGCTTCTGGAGTTGGCGCCTGTACCTGCGCCAGCCGGCGGCGCGGTTGAACTGGCACGCGCGGGTGCTGCGCCTGCCGCTGATCGGGCGATTTGTGCTGGGCCTCAACACCGCGCGTTTCGCCTCGACCCTGGCGATCCTCGGCGGCGCCGGGGTGCCCTTGCTGCGAGCACTGGAGGCCGCGCGCCAGACCCTCTCCAACGACCGCCTGAGCCTGAGCGTCAGCGATGCCACCGCAAAGGTCCGCGAAGGGGTCAACCTGGCGGCGGCGCTGCGGGTGGAAAAAGTCTTTCCGCCGGTGCTGATCCACCTGATCGCCAGCGGCGAGAAGACCGGCTGCCTGCCACCCATGCTCGAACGTGCCGCGCAAACCCTGTCCCGCGACATCGAACGCCGCGCCATGGGCATGACCGCGCTGCTGGAGCCGTTGATGATCGTGGTCATGGGCGGGGTGGTGCTGATCATCGTCATGGCCGTGCTGCTGCCGATCATCGAGATCAATCAGTTGGTTCAATAGMNRYRFEAADAQGKIESGHLEADSQGAAFSLLRSRGLTALQVQLERNTAQANGGGLFSAKLSDNDLAWATRQLASLLGASLPLEAALSATVEQAERKHIAQTLSAVRADVRSGMRLAEALAARPRDFPEIYRALIAAGEESGDLAQVMERLADYIEERNNLRGKILTAFIYPGVVGLVSVAIVIFLLSYVVPQVVSAFSQARQDLPGLTLAMLTASDFIRAWGWLCFCVLAGGFWSWRLYLRQPAARLNWHARVLRLPLIGRFVLGLNTARFASTLAILGGAGVPLLRALEAARQTLSNDRLSLSVSDATAKVREGVNLAAALRVEKVFPPVLIHLIASGEKTGCLPPMLERAAQTLSRDIERRAMGMTALLEPLMIVVMGGVVLIIVMAVLLPIIEINQLVQPGPT0026435_1032DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-GENERAL_SECRETION_PATHWAY,PGPT0026435-gspF|epsF-K02455NANA
D1-35_052071188phoA2_1Alkaline phosphatase LATGTTTAAGCGCAACGTTCTCGCGGTATCCCTGACCCTCGCCGGCCTCTGCGCCGCTCAGGCCGCCATGGCTGATGTCAATGGCGGTGGTGCAACCTTGCCTCAGCCTCTGTACCAGACTTCCGGTGTTCTGACCGCCGGTTTTGCCCCCTACATCGGCGTGGGCAGCGGCAACGGCAAACTGGCTTTCCTGAACAACGACTACACCAAGTTCGTGGCTGGCAACACCAGCAAGAACGTGCACTGGGCTGGCAGCGATTCGAAGCTCAGCACCACTGAGCTGAACAACTACGTCACTGCCCACGGCGCTGCCTGGGGCCCACTGATCCAGGTGCCTTCGGTTGCCACCTCGGTAGCCATTCCGTTCAACAAGACTGGCACTGCCAACGTTAACCTCAGCGTCGCTCAGTTGTGCGGCGTGTTCGCCGGCACACTGACTGACTGGAACCAGATCACCGGTTCCGGCCGTTCCGGCCCGATCACTGTGACTTATCGTGCTGAGAGCAGCGGTACTACCGAACTGTTCACCCGCTTTCTGAACGCCAAGTGCCCTACAGCTGTACCCGCTGTGCCCGGCACTTTCGCCATCACCACCAACTTCGCCTCCAGCTATAGCCTTGGCCTGCCAGCCGGCGCCGTAGCCGCCACTGGTAGCCAAGCTGTGATGGATGCGGTGAATGCTGCCCAAGGTCGCATCACCTACATGAGCCCGGATTACGCCGCCACCACCTTGGCCGGCCTGGACGACGCCACCAAGGTCGCTCGCGTTGCCGGTGTTTCCCCAGCCCCGGCCAACGTGTCGGCCGCAATCGCAGCCGTCACCGTGCCTGCTGCCGCCAACCGCGCTAACCCGAACGCCTGGGTACCGGTATTCGCCGCAACTACCAACCCTAGCGATCCAAGCGTTGTGGCTTACCCAACCACCGGCTACCCGATCCTGGGCTTCACTAACGTGATCTTCAGCCAGTGCTACGCCAACGCTGCACAAACCACTCAGGTGCGTGATTTCTTCACCCGTCATTACAACGCAACTGCGGCTAACAGCAACGATGCCGCAATCACCGCCAACCGTTTTGTGCCTTTGCCAGCTGCCTGGAAGCAAGCTGTTCGTAGCAGCTTCCTCACCAGCACCAACGCTCTCAGCATTGGTAACACCAACGTTTGCAACGGCATTGGTCGTCCGCTGTAAMFKRNVLAVSLTLAGLCAAQAAMADVNGGGATLPQPLYQTSGVLTAGFAPYIGVGSGNGKLAFLNNDYTKFVAGNTSKNVHWAGSDSKLSTTELNNYVTAHGAAWGPLIQVPSVATSVAIPFNKTGTANVNLSVAQLCGVFAGTLTDWNQITGSGRSGPITVTYRAESSGTTELFTRFLNAKCPTAVPAVPGTFAITTNFASSYSLGLPAGAVAATGSQAVMDAVNAAQGRITYMSPDYAATTLAGLDDATKVARVAGVSPAPANVSAAIAAVTVPAAANRANPNAWVPVFAATTNPSDPSVVAYPTTGYPILGFTNVIFSQCYANAAQTTQVRDFFTRHYNATAANSNDAAITANRFVPLPAAWKQAVRSSFLTSTNALSIGNTNVCNGIGRPLPGPT0002625_734DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002625-pstS|phoS-K02040NANA
D1-35_052081170phoA2_2Alkaline phosphatase LATGTTCAATCGTTTATCCAAGGCTGTTGCATTGCTGTGCAGCGGTATATGCGCGCCGTTGGCAATGGCGGATGTCAACGGTGGCGGCGCTACCTTGCCCCAGCCGCTTTACCAAACGCCTGGCGTGTTGACGGCCGGTTTCGCTCCCTACATCGGTGTGGGTAGCGGCAATGGCAAACAGGCTTTCCTGAGCAATGACTACACCAGATTCGTGGCAGGCGACACCAGCAAGAACGTTCACTGGGCCGCCAGCGATTCGAAGCTCACGTCGACTGAGTTGAGCTACTACAACTCTACTCACAGTGCCACTTGGGGGCCATTGATCCAGGTGCCCTCGGCAGCGACCTCAGTTGCCATTCCGTTCAATAAGGCCGGCACCGCCAATGTCGATCTGAGCGTTAACCAACTGTGCGGGATCTTCTCCGGTCGCCTGACCGACTGGAGCCAGATCAACGGCTCTGGCCGTACCGGTCCAATCACTGTGGTTTACCGTGCCGAGAGCAGCGGAACCACGGAATTGTTCACCCGCTTCCTGCGCGCAAAGTGCGCGGAAACAGGCAGCTTCTCTGTCACCACCAACTTCGCCTCCACCTATAGTGGCGGCCTACCGGCCGGTGCAGTATCAGCTAACCGCAGTCAAGGTGTCATGGATGCGGTGAACGCAGCTCAAGGTCGTATTACCTACATGAGCCCTGCCTATGCGGCGTCGACGCTAGCGGGTCTTGATGACGCCACAAAAGTGGCGCGGGTTGGTGGTATTTCTCCGGCACCAGCAAACATTTCGGCGGCCATCGCTGCTGTTCCAGTACCAGCCGCCGCCAACCGCGCCAACCCGAACGCCTGGGTGCCAGTGTTCGCCGCAACCACCAACCCTAACGATCCAAGCGTCGTGGCTTACCCTACTACCGGCTACCCGATCTTGGGCTTCACCAACGTGATCTTCAGCCAGTGCTATGCCGACGCCACCCAGAGTACGCAGGTGCGAGGCTTCATCGCCCGTCACTATAACGGCTTAGTAGCCAGCACCAACGACGCAGCGATCACCGCCAACCGTTTTGTGCCGTTGCCAGCTGCCTGGAAGCAAGCTGTTCGTAGCAGCTTCCTGACCGCTACCAACGCCCTTAGCATCGGCCACGCCAACACTTGCAACGGCATCGGTCGTCCGCTGTAAMFNRLSKAVALLCSGICAPLAMADVNGGGATLPQPLYQTPGVLTAGFAPYIGVGSGNGKQAFLSNDYTRFVAGDTSKNVHWAASDSKLTSTELSYYNSTHSATWGPLIQVPSAATSVAIPFNKAGTANVDLSVNQLCGIFSGRLTDWSQINGSGRTGPITVVYRAESSGTTELFTRFLRAKCAETGSFSVTTNFASTYSGGLPAGAVSANRSQGVMDAVNAAQGRITYMSPAYAASTLAGLDDATKVARVGGISPAPANISAAIAAVPVPAAANRANPNAWVPVFAATTNPNDPSVVAYPTTGYPILGFTNVIFSQCYADATQSTQVRGFIARHYNGLVASTNDAAITANRFVPLPAAWKQAVRSSFLTATNALSIGHANTCNGIGRPLPGPT0002625_798DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_ANTIMONY_RESISTANCEANTIMONY_RESISTANCE-PUTATIVE_PST-PHO-PIT_TRANSPORT_SYSTEM,PGPT0002625-pstS|phoS-K02040NANA
D1-35_0520912432hypothetical proteinATGCTGCGCTGCAAACCCCAGACGAACCTGAATGCCCCACGTCGCGATGGCGAGTTGTCGATGTTGCGACTCAAGCCGCTGGCCCAGGCCATTGCCCTGCTGATGGTGGCCGGCAATGCCCACGCAGCGACGGCGTTCAGTTCGGCCTGGTTTGCCGCCAAGGGCGCGCCTCAGGCCGGCGGTGCGGGGCGACCTGCAACGGCGCAGCCAGGCATGCCGCCACCCCTGGCGCAGCAGCAGCGGGCCAATGCGCAGTTGCAGCGTTCGCTGACCAACCTCAACAACACCGTGGCCGCGATAGCCGCCCAGCAAGCGGCACAGGCGGCCGGGCGGCAAGCCGCGTTCGGCCAGTTACAGGTGGTGCCTGACGGTTTGGGCGAGGGCGGGCTCAAGGTCGATAACAGCCTGACCCAGGGCTGGCTCAACGCCAAGGGACCGCAGCAGACCCAGGACGGCGGCAAGACCACGGTGAAGATCGAGCAGACCGCCGACAAGGCGATTCTCAACTGGGAAACCTTTAACGTCGGGCGCAACACCACGGTGGATTTCCAGCAGCAATCGGACTGGGCCGTGCTCAACCGGGTCAACGACCCGCAGGCGCGACCGAGCCAGATCCAGGGCCAGATCAAGGGCAACGGCACGGTGATGCTGGTTAACCGCAACGGCATCATTTTCAGCGGCAGCAGCCAGGTCAACGTGCGCAACCTGGCGGCGGTGGCGGCGAACATCAGCGATGAGCAGTTCAGCCAGCGCGGGTTGTACGTCGATGCCACCGGCACCCAGCCAACCTTCACCGATGCCGCCGGCAAGGTCGAAGTGCAACGCGGTGCGCAAATTGAAACCCACCGCGCCGCCACTTCAACCGCAGGCGGTGGCTATGCCTTGCTGCTGGGTTCGGAAGTGGAGAACGCCGGCTCCATCATCACCGCCAAGGGCCAGACCACCCTGGCGGCGGGCGACAGCTTCTACATCCGCCGGGGCCAGGGCACCAGCGGCAACTTGCGCTCCACCACCCGTGGCAACGAGGTCGCGACGTCACTCAAGTCAGGCAGCAGCGCCGGCACCGTGATCAACAGTGGCCTGATCCAGGCCAGCACCGGCGACATCACCCTCACTGGACATCGCGTGCAGCAGAACGGGGTGGCGGTCGCGAGCAGTTCGGTGGATACGCGCGGCACCGTGCACCTACTCAACGCCGCGAGCGACAGCAGCGGCAGTGTGACCCTGGGGCAGGGCAGCGCCACGGCGGTGCTGCTCGACGCCGCGGGCGGCAGCGCCCTGGACAGCCAACGCAATGCCGGACCGGCCGGCCTGGACGGCACGCCGAACAACCTGATCACGGGCCAGTTCAACAACCTCAGCAGCGTGGTCGACCGCACCGACCAGTCGCGGGTCGAGATCGTCAGTGGCGGCAGCGTCGACTTCCAGAACGGCTCCATCACCCTGGCCACCGGCGGCCAGGTTGCGGTCAGCGCGGCCGGTCGCAGCCTGGTGCGCGATGGCGTGGTGATCGACGTGTCCGGCGCCATCGGCGTCAAGGTGGCGATGGAATCGAATTCCATCAAGGTCAACGTCCAGGGCAACGAACAGCGTGACGCCTCGGTCAACCGCGAAGGCGGCAAGTTGACCAACAACGACGTGTGGGTGGACGTGCGGGATCTGGTCTACGTCCCGGCGGGTACCAACGGTTACGCCACCGACCGCTGGTACACGGCGGGTGGGCTGTTGGAAGTCGGCGGCTATTTGGGGACCCGAGGTCACAGCGCCGGTGAGTGGGCAGCGCAAGGCGGCACCCTGACGTTCACCGGTAACGACGTGGTGACCCAACAGGCGGCGCAACTGAACCTGTCTGGCGGTACCCTGGATGTACAGAGCGGCTACTTGCGCCAGTCCTGGCTCAAGGGCCCCAACGGGCGTTTGTATGACTTGTCCAAGGCGCCGGGGGACATCCTCTACACCGGCATCTACAAGGGTTACGAAGACCACAGCCAACGCTGGGGCCAGACTGATTACTACTACAATCCGCTGATTGCCCCGCGCGAGCGTTTTGAAGCCGGCTACACCGTCGGCCGCGATGCCGGCAAGCTGGTGGTGTCGACCCGCAACGCGGTGCTGGAAGGTCAGATCGTCGGCGAGGTCTACCAGGGCGAACGCCAGACCCAAGCGCCGAACCTCAACCTCGACGGCTACAAGCAATCGCAGAACGCCGTGGCCCGTCGCGCGCAATTATGGGTGGGCAGCTACTCGCCGATCTATGACAAGACCAGCGGCGTGATCAACAGTGGCCTGAACCCAACCTTCGACCAGGTCACCGTCGGCAAGGTGGCCGACAAGCTTGCCGCGATGCTGGACCTGACCTCGGTGGTCGGCACTGACCGGCAAGGCAAGCTGGTGCTGGACAATGCGTTGCTCAATGGCTTCCAGCTCGGCGCGGTCAAGGTGGCGGCGGCTGAAGGCATCCAGGTCGACGGTGCACTCAAGGTCGCCGACGGCGGCGATATCACGCTTTATGCCCCGCAGGTCGAGGTGAACGCCGACCTGACTGCCCGCAGCGGTCGCATTGCCTTGGGTAACGTGCTCAAACAGGTCAGGACGGATAATTTCCAGATGGCAGACGTCACACTTTCACCCGCCACGGGACAGCGGGCGACGGTCACCTTGGGCGAAGGCGTCAAGCTGAACACCGCCGGGCGCTGGAGCAATCTGCTGCTCGACGGCAACGACCGCCAAGGCCTGCCGTTCATCAACGGCGGCAGCGTGTCCGTGCGCAGTACTGGCGATATCGATGTGCAGCAGGGCAGCCTGATTGACGTCAGCTCCGGCGCTGCCGTGATGGCCGATGGCAAGACTCGCGGCGGCAAGGGCGGTGACCTGACCTTGACCGCGAGTATTGGTGCATCGTCCGGTAACGGTGACTTGATCCTCAAAGGTGAACTGCGCGGTACCGGCGTGAGTGGCGGCGGGACCTTGAAGCTGGCGGCCAGCAAAGTGCTGATCGGCAACAGCAACATTCCTCTCGAACCTGGCACTTTGCAACTGGGCGGCGATTTCTTCGACAAGGGTTTCTCGGCCTATGACATCACCGGTAATCAAGGCCTGACCGTGGCCGACGGGACCCGGGTCGATGTGACGATGCCGGTGTACCGTTTCGGTGAGCAGGCTTTGACTCCCGGCAGCAACGCAGAACCGGCTGATGCCTTGCAGCGCTGGACGCCGGAGCTGTATCAGGAAGATGCGATCAAAGGTGTTCTCACCCAGCGCCACGGCGCGAGCCTGAGCCTCAGTGCCGGTACCGCGAACTCCAGCGCGGCAGACATGGCCAGCACGGTATTGAACATCGGGCGTGGAAGCGTGATCAGCGTCGATCCGGGACAAGGCATCGACTTGCGCAGCATCGGTCAACTGACCGTCAACGGCACCCTCAACGCCTGGGGAGGACGAGTCAGTCTCACCGAACTGAGCGTCAGCAACCCAGTTCGCAACCCGGTCAATGCCCAAGGCCATGGACGCTCCATCTGGTTAGGCGAGCAAGCGTTGATCGATGTCTCCAGTCGGGCCGTGACTGCCAAGGACATGCGCGGCCAGACCTATGGTCTGGTGCGTGACGGTGGCGAGATTGTCATTGGTGGTCAGATTGATGTCGCGAAAGGATCGGCTTCGGCGCCGGAATTGTTCGTGGTGATGCGCGAGGGGGCACGCCTGCAAGCGGATGGCAGCCAGGCAATGCTGGATGTTCCTGGCCAGGGACGCACATCGGTGACGAGCAACGGTGGCAGTATTTCCCTGGCGTCGGCCAATGGCCTGTACCTGGACGGCGAATTCAGTGCCCGTTCCGGTGGCACGGGGGCCGCAGGGGGAAGTTTGTCGGTGGCGCTGGAGACACCGTATTACCTGAAAAGCGCGGTCAATGACCGGGTCTTGCAGTTGCGTGAACTGGTACTGGGACAAACCGCCCAGGCGAGCCCGCTAAGCGACACCGCCGAGGCCTCGGCGGATGCGTTGATCTATGGTCATGGGCGTTTGGGTGTGGACCAGGTCCAGGCGGGCGGCTTCGACAGCCTGTCTCTGCTGAGTAACGGCATTATTAGTATCGGTGGCGACGTGTCGCTGTCCCTCGGCCAAAGCCTGAGCCTATATGCGCGTAGCTTCGGGTTGAGCTCAGCCGCGCCAGCCGACACCCGTGTTCAACTTAATGCAGCTCATCTGCTGCTGGCGGGGCCGGCGGCCAGTCTACCGAATATGGATTCCTATACCCGACCGCTGATCGAAGGCGACGTATCGCCACTTGCGAACAAGGCGGTGCTTTCCGTCAACGCCGACTTGTTGGATGTACAGGGCAATGTGAGATTCAGCAGCAAAGGCACGCTGAGACAGGCCAATGGCACCACGGTCGAGTTGGAGCGCGCCGGGTTCGACCTGGTCCAGTTAAGCAGCCGTGGTGATTTGCGCTTCCTGGCGGGATTCTCCAGCGAAGGATTGCCTACGGGCTTTACCACGCAATTAATGACTCCTTCGGACATGATCCTGCAAGCGGCGCAACTGTATCCGGCGACTGGGGTCGGGGCTCGGGTATTGGCGGGGTATAGCTTGAGTGGCACCTCTGCCTACGACCCGGCGCGCAGCTTGGTCATCGGGCGGACTACCCAGGTGACGCCTCAGGTACCTTATTCGGCATTCGGTCACTTACAACTGGGCAGTGCGAATATCGAGCAGGGCGGGGTGGTTCGGGCCCCGCTGGGGTTGATTGAGGTCGGCACCAACGACGGCACTAGCATCACTAGCCAAGTGGACTTGCTGCCGAACAGCCTCACTTCAGTCAGTGGCCTCGGTCTGGTTCTGCCTTACGGCGGTACCGTCGATGGTCAGAGTTATGAGTACGCGGGCAAGAAGGTGGTGCTTCTGGGGCAAGGGGCCATCTCCTATGGCAACGGGGATCTGAATATTGGTGTGATTCTGGGCGGAAAATCTGTTGTGGCCCAGGAAGGCTCGGTACTCGATCTTTCGGGCGGCGGTGATCTGCTGGGTGCCGGTTTCATTTCCGGCCGTGGCGGCTCCACCGACGCGCGCTTCAACCCGCTGGTGCAAATCGGTGCCAACGGCGGCTTTACTTTACCGGGCCTGTCCAGCAACCCGGTCTACGCCATTGTGCCGGGCAACCAGAGTGCATACGCGCCAGTGGCGCCCGAGGGCGGCGCAGTGGACCCCAGGATCGGACAACAAATCACCCTTGGCGCCGGTGTACCGGGGCTGGCCGCCGGTACCTATACGCTGATGCCGTCCACCTATGCCTTGCTGCCGGGGGCGTTCCGGGTCGAGGTCAACGGTCTGGCGGGTCAGGGTTCCACGGCGGGTGCGTTGCAGATGCGCAACGGCTCCTGGACCACCGCCGGGGTGCTGTCGGTGGTCAATACCGAGCAGCGCAACAGTCTGTCCAGCCAGGTCATCCTGACTTCGGGCGATGTGCTGCGTCGCTATTCGCAGTACAACGAAACCAGCTACGCCCAGTTCGCTGTAGCCGATGCCGCACGCCTGGGCGTGCCACGAGCCCTGTTGCCGGTGGACGCCAAGACTTTGAAGTTGAAGCTCGCGCAAGGAGCGGGAGATCAGGCGTTCTCCTTTAAAGGCATCGGCAAGTTCGCGCCTCAAAAAGGTGGCTACGGCGGTACCGTCACGGTGGTTGGAGGTAATGGGGCGTTGGAGGTCGTTGCCGATGGGCGCGGGGCCACGGCCGGCTTCGAGGGCGTGACCCTCAATGCCGAAAGCCTGAATGCCTTGAATGCATCACGTCAGGTTATTGGCGGCCAGTTCTTGACGCTCTATGGGCAGAGCGGAAACTACATCACGCCCTCGAGCAGTGGAGGTAGAACCTCGTCCAGAGTGATCTTGCGTGAAGGTGTTACGTTGGCGGCACCGGAGGTTTTCCTGCTGGCCAGCGGCGAGGTGTCGATGGAACAAGGCGCCGCCATCAATACCATTGGTCGTGGCGCGGCTGCCTACGATGCCCATGACGGTTTTATCTATGACCTCAATGTGAGTGGTCAGAACTTGCTGGCCGCCTCCAACGGCTTGCTCAACGTGTTGGCACCCTCATCGGGCAGCAGCGGCACCATCAACATCGGCGGCTGCAGCCTGACGCCATGCAGCGGCGTCACCCGAATTCATTCCGAGGGCAGCATCGTCGCCGCCACCGGAGGGAGCCTGGAATTGGACGACAAGGTGCGCTACGGCACCCGTCACCTGACCCTGGCCCTGAGCAATATCAACGTCGGCACCGCCCCGGCATTGAGCGACGCAGCGGCGCGTCAGGTCTTGCCGGCCGGCCTGACCCTGAGCCAGACCGTGCTCGATCGCCTGCTGCGCGGAGACACCGAATACGGCGCCCCGGCCCTGGAAACCCTGGAACTGTCGGCGCGTGAGGCGTTGAATTTCTACGGCACTGTCAGTCTCGACACCTATGACCCGGTGACGGGCAAGTCGCGGTTGGCCAACCTGATGCTCAGCACGCCGGCCATTCATGGCGCAGGCAGCGTCAACGACGTGGCGACCATTCGCACCGCCAACCTGATCTGGAACGGTGCCGTCGGCGCGCCGGGTTCGGTCATCGCCGGCGGGGCCGGCACCGGTGCCGGTCGCCTGGACATCCAGGCCCAGCGCATCGAGTTCGGTTATGGCGAGTTCGCCCAACCGAGCTCGATCACCACCCTGGACCGCCTGGCCCTGGGCTTCGCCAACGTCAACCTCAGTGCCAGCGAACGCTTGACCGCCAATCACAAGGGCAGCCTGGCGGTGTATCAGAGCCAGGGCGCCTATGACGCTAAAACGGGCTACGCCTACAGCGGTGGCAACCTGAATATCCTCACCCCGTTGCTGACTGGCGAAGCCGGTTCGGTCAACCGCATCACCGCGGGCGGTGCGGTCAATGTGACGGGCGCGACCGCTAAGCCGGGCACTGTCTCCGGGCTCGGGGGCGAGTTGTCCCTCAAGGGAGCGAGCCTCAACCTGGCCAGTGCGGTGGTGTTGCCCAGCGGCAAACTGACCCTGAGCGCGACGGATGACCTGACCCTGGCCGATGAGGCGCTGATCGACGTGGCGGGTCGCACGGTCACCTTCAACGATGTCACGCGCTACAGCGCTGGTGGCGAGGTGATCCTGCAAAGCCAGAACGGCAACATCCGCCAGGCGGTTGGCTCCAGCATTGATCTGTCGGCGCGCCACAACCAGGCCGGACGGCTCAGCGCCGTGGCCTTGGGCAGCACGGCCGGGGTTGTCGACCTGCAAGGACGAATCCTCGCCAGCAGCACTGGCGAATACGATGCCGGTGGCACGCTCATGCCATACCTGGCCGGTGGCGTGCAAATCCAGGCCCAGCGCCTGGGCGACAATGGCAGTCTCAGCGAACAGTTCGCCGCGTTGAACCAACGCTTGAGCGACGGCCAAGTGTTCGGCTCCCGCAGCTTCCAGCTCAAGCAGGGCGACCTGGTGATCGGCAACGAACTCAAGGCTTCGTCCATTGACGTGTCCCTGGACAACGGCAGCCTGTTGATCAACGGCACGGTGTACGCCAGTGGTGAGCGGGTCGGCAGCATTTACCTGGCTGCCAAGAATGCCCTGACCCTGGGCAGCGGTGCCGTGCTTGACGCCCATGGTCGACGCCTGCGGGTGGACAGCTACGGCAAGATCATCGACTCGCCGAACCGTGCCATCGTTGACTTGACCGCCAGGGAAGGTCTCCTGACCCTGGGTAACGGCGTGCGTATCGATTTGCGCCACGGTACCGAAGTCGCGCTGGGCAGTGCGTCCGGTATGAACGACGGTCGGCCTCGCGGGACGTTGCAACTCAGCGCGCCACGACTGAGTGGCGTGTCGGGGGGCGACGTGGCGATCGATGCCAGTGGTGCCCTGGACGTACAAGGCGCCCGTTCGATTGCGTTGGTTGCTACGTGGCAATACAGCGACGCGCCGCTGGTGAACGTGCCGGCGGCCAGCGGCAAGCCTTATCAGGTCATCAATCAGGCATGGCTGAAGGATGTGGTGGACCCCGACAACACCGCCTTTATCACCAACGCTCACGACAACAACGATCTGTTGCAGCGCAAACTCGCCGGGCTGAACAACAGCCGCTATCGCGACGTGTTCCACCTGCGCCCCGGTGTAGAGGTGGTGAGTGCGACGGCCGATGGCGACCTGGTGGTCCAGGGGGATCTGGACCTGTCGCAATATCGCTATGCGAGCCTCAATCCGCATAACGTTTTGGATGAAAACGTCTACGGCTCCGGCGAATCCGCCAGCCTGACGCTGCGCGCCGGCGGTGACCTGAACATCTATGGCAGCATCACCGACGGTTTTGCCCAGCCGCCCGCCAGCAACGATGACAAGGGCTGGGTGCTGTTGCCAGGCATTGATTTTGCGGCGGGCGATATCGTCGTGCCCGGCACTGGCGTGACCCTGGAGGTCGACACCGCGTTCCCGGCCGGCTCGGTGCTCAACTTCGACGTGCCGCTCAAGGGCGCGACCCTGGCTGCGGGAACGCGGTTGCCGGTCGCCGCCACGCTGGATCAGCCAATGGTACTGCCGGCCGGCACGGTGCTGGCCGCGGCGGTGCATGACGCACAGGGCAATCTGTTGTTCGCGGCCGGCACGTTGTTGGCTTCGACCCAAACCCTGCAGGCGGGCACGGTGCTCGGGGCGGGCAGCCTGCTGGGCAGCAGCGCAACGATAGGCAACCTGATCTGGCCCAAAGGCGTTGCGTTGCCAGACATTGAAGGCGCGAGTAACGGCTTGACCAACGTGCTGCGTCTCAGCAGCGCCCTGGCACTGAGTGTGGGTTCGAAAATTCCGTCAGGTACCGACATCAAGTTGCCGGCCGGTGTCGAGTCGGTGCAGTTGCGTCCGGAAGTGGCGGGGAGCAACTGGGCCATCGCGCCGATGCTGGCCGAGGGCTCGCAGTCCTGGTCATTGCGACTGGTGGCCGGTGCCGATACGCAGGCGGCGGACAGTCGGGTCGTACGGCCGGTGCTGGCGGGTGGTGATCTGCATTTGGCTGATAGTCACTACGGCACGTTCGGCGTGGCGTCGATGGTCTGGACCGAAGCAGGATCGCTGGATTGGTTCGGCGACACCAGCATGGTGGGGCTGCCGGTTGACTTTGAAGTTTTTGATTACCCCAACTTATGTGTCGACAATCCACTTCATTGTGAAGCTGGCGGAGCACCTGAATACGAGCCCGGCAGCCAACGTTGGAGTGTCATTCGCACCGGCGCAGCGGACTTGGAGCTGCTGTCGGCAGGTGATCTGAAAATGGACTCGCTGTACGGCGTCTATACCGCCGGCAGTTCAGCCAGCGAAACGTACGCCAACGACCCGTACAACCAACCCAAGGCGCGTGCGGCGGCGGGCAAGGTGCTCAATGATGCACTAGGTGAAAACGAGCAATTCGTGGATGGCGGTTCCAATAGTCTTTACCGCGCCTGGTACCCGGACTTTGGCGGCAACCTGAGTTTGAAGGTCGGCGGCAATCTGACCGGTAATAGCCTGGATGTATCGAGTGCGAGTATAGGGCGGCCCAATGGAGGAGACATTGGTTACGATACGGTCAACGTCGGTAATTGGCTGTGGCGTCAGGGCAATGGCTCAGTCGCAACCGGTACGCAGGCACAACCCACCGCTTGGTGGATCAATTTTGGTAGTTACACCGCCGCGAAGGACGGCAAGGCTGACCTGATGGTTGGGTTTACCGGTTTCGGTACTCTGGGCGGCGGTAACCTGAATGTTCAGGTCGCCGGCGATGCGGGGGAGCTCGAACAGATGGCAGGGAGTCGTCTTGTGCCAGGCAGCAACAGCCGCAGCCAAGGACTGGTTCTTGCCGTGGGCAGCACCGGGCGTGTGGGCGCTGATGGCAGCCTGCAATTGACCGGTGGTGGTGATCTCAACCTGCGTGTAGGCGGCGCCTTGAATCCCGATAGCGCGTTCGTCGACGGGCATCTGAACGGTGCGGTCATCAACCTGCGGGGCCACGCGCAGATCGACAGCGGTGCCATCGGTCGAATTGACCTGCGCTATGGCAACGTTGCTTCGGCACAGTCTCCGGGGGAAACGCGTGCGTACGACTCCTTCAGAGCCACACGTAGCCTGCCAACAGGCGGGCTGACCCTGATGCCGGGCGATGCCACGTTCGATCTGACAACTTCGGGCGACCTGGTAGTGATGGACGTAGCGGACCCTGGCCGGGCGCCGATGATGAGCGTATCGCCCTTCAAAGATGGCGCCACTAACGGATCCGGCGTGAGCTGGTTTTCGTTATGGACCGCCAACACGGCAGTTGATCTGTGGTCATCGGGGGGGAATCTGACGCCTGTGGTGCCAGAGGTCGAGACGGATCTGGCGGTGGTCTACCCATCGATCGTGAGGGCTGTGGCGGCCAATGGCAGCCTTTACTATGGCAAGTCCTCGGTATGGGATGGAACAGGTTATGACGGCAACAATCGTCCAGCCCTGTTGCTCGCTCCCGGCATCAACAGTGAGTTGCAATTCATGGCCGGCGATTCCATCTACGGCGGCGACATGTCGGTCAGTCGTTCCGGTGCATCCTCCGCAGCCCTGGCAACGCCGTTCAGGCCAGCCTTTGTGGGTATCGTCGAGACTGTCGAATCCGGTCCCGTCATAAAAGCCAGCAATCTCTCAGCCGATGGCAACCTCGCTCGCCCTAGTGCGAACATATTGCCGCTGTTTGCCTTCGACACCAGCAGTACCTCAGGCGAATGGGCCCTCAATGACGACCCTGCGCGCTTCTATGCGCTGGAAGGTGATTTGCTGGCTGTCACCAGCGGACGGTCGATGACATCGGCATCCGTTGGCAGGTGGCCAGGGCGAATCGCCTACGAAGGCGCCGGAGCTGTACGAATGATGGCAGGACGAGACATCGTCAGTAGCGGGATTCCACTGGGCGGCTCTTTGAGCAACAACTCCCAGGCAGGGGATTACACCAGCGCCGGCAACCTCTTCATCCACAACAACCCCACCGACATCTCAATCGTTTCAGCCGGGCGCGACATCCTCTACAGCAGCTTCAACGTCGCCGGCCCCGGCCTGCTGGAGATCACCGCCGGACGCAACATCCTGATGGATGACAAGGTCAGCATCACCAGTATCGGCGCCGTGGTGCCGGGGGATTCGCGCCCTGGGGCGAGCCTGGTGCTGCAAGCCGGCGCCGGCCTCGACGGCGCCGATTACCAGCGCTTCGTCAAGGCCTACCTGGACCCGGCGAACCAGGCCCTGGCCGGTGTGCCCCTGGCGGACCAGGATGGCAAGGTCGCCAAGACCTACGAAGCGGAGCTGGTGAAGTGGCTCAAGGAACGCTTCGGCTTCAGCGGCGATACCGAGCAGGTCCGCAGTTTCTTCGCGGCGTTGCCGGCGGAGCAGCAACGGGTGTTTGCCCGCGACGTGTACTTTGCCGAGCTCAAGGCCGGTGGCCGTGAGTACAACGAAGTCGGCGGCGTGCGCCAGGGCAGCTATCTGCGTGGACGAGAGGCGATCGAGTTGTTGTTCCCGACCAAGGACGTGGCGGGCAATGCGATCACCTACAAGGGCGACATCACCATGTTCGGCGGGGCAGGGGTGCACACCGATTTTGGTGGCGGCATTCAGATGCTCACTCCCGGCGGCGGGCAGACGTTCGGCATCGAAGGCAACGCGCCGCCGTCCACCGCCGGGGTCATCACCCAGGGTGAGGGCGATATCCAGTTGTATGCGAAGAACAGCATCCTGCTGGGGCAGAGCCGGATCATGACCACTTTTGGTGGTTCGATCCTCAGTTGGTCGGCTCAGGGTGATATCAACGCCGGTCGTGGTTCGAAGACCACCGTGGTCTACACGCCGCCCAAGCGCCTGTACGACACCTGGGGCAACGTGACCCTGTCGCCGTCGGTGCCGAGCACGGGGGCTGGTATCGCCACTCTCAACCCGATTCCAGAGGTAGCGCCGGGGGATATCGACCTGATCGCGCCGCTGGGCACCATTGATGCGGGCGAGGCGGGGATCCGCGTGTCAGGTAACGTCAACATTGCGGCGTTGACCGTGGTCAACGCGGCCAACATCCAGACCCAGGGCAAGTCCAGCGGCGTGCCGCTGGCGGCTTCGGTGAACACCGGGGCGATCACCTCGGCCAGTTCGGCGGCGTCCTCGGCCACGCAAGCGGCGGAAGACGTAGCGCGCCAGCAGCAGAATGCGGCGCGGCAGAACCAGGCCTCGGTGTTTACCGTGCAGGTGGTGAGTTTCGGCTCCGAGCAACTGGCGCCTTCGCGTGATGGCGCCAGCCGTGAGGCGCCACGCACCTATGATCCGGCCAGTCCGGTGCAGGTGCTGGGCGCCGGGCCGTTGGACGAGCAGGCGCGGCAGCGGTTGACCGAGGAGGAGCGGGGGCGGTTGAGCTTGTAGMLRCKPQTNLNAPRRDGELSMLRLKPLAQAIALLMVAGNAHAATAFSSAWFAAKGAPQAGGAGRPATAQPGMPPPLAQQQRANAQLQRSLTNLNNTVAAIAAQQAAQAAGRQAAFGQLQVVPDGLGEGGLKVDNSLTQGWLNAKGPQQTQDGGKTTVKIEQTADKAILNWETFNVGRNTTVDFQQQSDWAVLNRVNDPQARPSQIQGQIKGNGTVMLVNRNGIIFSGSSQVNVRNLAAVAANISDEQFSQRGLYVDATGTQPTFTDAAGKVEVQRGAQIETHRAATSTAGGGYALLLGSEVENAGSIITAKGQTTLAAGDSFYIRRGQGTSGNLRSTTRGNEVATSLKSGSSAGTVINSGLIQASTGDITLTGHRVQQNGVAVASSSVDTRGTVHLLNAASDSSGSVTLGQGSATAVLLDAAGGSALDSQRNAGPAGLDGTPNNLITGQFNNLSSVVDRTDQSRVEIVSGGSVDFQNGSITLATGGQVAVSAAGRSLVRDGVVIDVSGAIGVKVAMESNSIKVNVQGNEQRDASVNREGGKLTNNDVWVDVRDLVYVPAGTNGYATDRWYTAGGLLEVGGYLGTRGHSAGEWAAQGGTLTFTGNDVVTQQAAQLNLSGGTLDVQSGYLRQSWLKGPNGRLYDLSKAPGDILYTGIYKGYEDHSQRWGQTDYYYNPLIAPRERFEAGYTVGRDAGKLVVSTRNAVLEGQIVGEVYQGERQTQAPNLNLDGYKQSQNAVARRAQLWVGSYSPIYDKTSGVINSGLNPTFDQVTVGKVADKLAAMLDLTSVVGTDRQGKLVLDNALLNGFQLGAVKVAAAEGIQVDGALKVADGGDITLYAPQVEVNADLTARSGRIALGNVLKQVRTDNFQMADVTLSPATGQRATVTLGEGVKLNTAGRWSNLLLDGNDRQGLPFINGGSVSVRSTGDIDVQQGSLIDVSSGAAVMADGKTRGGKGGDLTLTASIGASSGNGDLILKGELRGTGVSGGGTLKLAASKVLIGNSNIPLEPGTLQLGGDFFDKGFSAYDITGNQGLTVADGTRVDVTMPVYRFGEQALTPGSNAEPADALQRWTPELYQEDAIKGVLTQRHGASLSLSAGTANSSAADMASTVLNIGRGSVISVDPGQGIDLRSIGQLTVNGTLNAWGGRVSLTELSVSNPVRNPVNAQGHGRSIWLGEQALIDVSSRAVTAKDMRGQTYGLVRDGGEIVIGGQIDVAKGSASAPELFVVMREGARLQADGSQAMLDVPGQGRTSVTSNGGSISLASANGLYLDGEFSARSGGTGAAGGSLSVALETPYYLKSAVNDRVLQLRELVLGQTAQASPLSDTAEASADALIYGHGRLGVDQVQAGGFDSLSLLSNGIISIGGDVSLSLGQSLSLYARSFGLSSAAPADTRVQLNAAHLLLAGPAASLPNMDSYTRPLIEGDVSPLANKAVLSVNADLLDVQGNVRFSSKGTLRQANGTTVELERAGFDLVQLSSRGDLRFLAGFSSEGLPTGFTTQLMTPSDMILQAAQLYPATGVGARVLAGYSLSGTSAYDPARSLVIGRTTQVTPQVPYSAFGHLQLGSANIEQGGVVRAPLGLIEVGTNDGTSITSQVDLLPNSLTSVSGLGLVLPYGGTVDGQSYEYAGKKVVLLGQGAISYGNGDLNIGVILGGKSVVAQEGSVLDLSGGGDLLGAGFISGRGGSTDARFNPLVQIGANGGFTLPGLSSNPVYAIVPGNQSAYAPVAPEGGAVDPRIGQQITLGAGVPGLAAGTYTLMPSTYALLPGAFRVEVNGLAGQGSTAGALQMRNGSWTTAGVLSVVNTEQRNSLSSQVILTSGDVLRRYSQYNETSYAQFAVADAARLGVPRALLPVDAKTLKLKLAQGAGDQAFSFKGIGKFAPQKGGYGGTVTVVGGNGALEVVADGRGATAGFEGVTLNAESLNALNASRQVIGGQFLTLYGQSGNYITPSSSGGRTSSRVILREGVTLAAPEVFLLASGEVSMEQGAAINTIGRGAAAYDAHDGFIYDLNVSGQNLLAASNGLLNVLAPSSGSSGTINIGGCSLTPCSGVTRIHSEGSIVAATGGSLELDDKVRYGTRHLTLALSNINVGTAPALSDAAARQVLPAGLTLSQTVLDRLLRGDTEYGAPALETLELSAREALNFYGTVSLDTYDPVTGKSRLANLMLSTPAIHGAGSVNDVATIRTANLIWNGAVGAPGSVIAGGAGTGAGRLDIQAQRIEFGYGEFAQPSSITTLDRLALGFANVNLSASERLTANHKGSLAVYQSQGAYDAKTGYAYSGGNLNILTPLLTGEAGSVNRITAGGAVNVTGATAKPGTVSGLGGELSLKGASLNLASAVVLPSGKLTLSATDDLTLADEALIDVAGRTVTFNDVTRYSAGGEVILQSQNGNIRQAVGSSIDLSARHNQAGRLSAVALGSTAGVVDLQGRILASSTGEYDAGGTLMPYLAGGVQIQAQRLGDNGSLSEQFAALNQRLSDGQVFGSRSFQLKQGDLVIGNELKASSIDVSLDNGSLLINGTVYASGERVGSIYLAAKNALTLGSGAVLDAHGRRLRVDSYGKIIDSPNRAIVDLTAREGLLTLGNGVRIDLRHGTEVALGSASGMNDGRPRGTLQLSAPRLSGVSGGDVAIDASGALDVQGARSIALVATWQYSDAPLVNVPAASGKPYQVINQAWLKDVVDPDNTAFITNAHDNNDLLQRKLAGLNNSRYRDVFHLRPGVEVVSATADGDLVVQGDLDLSQYRYASLNPHNVLDENVYGSGESASLTLRAGGDLNIYGSITDGFAQPPASNDDKGWVLLPGIDFAAGDIVVPGTGVTLEVDTAFPAGSVLNFDVPLKGATLAAGTRLPVAATLDQPMVLPAGTVLAAAVHDAQGNLLFAAGTLLASTQTLQAGTVLGAGSLLGSSATIGNLIWPKGVALPDIEGASNGLTNVLRLSSALALSVGSKIPSGTDIKLPAGVESVQLRPEVAGSNWAIAPMLAEGSQSWSLRLVAGADTQAADSRVVRPVLAGGDLHLADSHYGTFGVASMVWTEAGSLDWFGDTSMVGLPVDFEVFDYPNLCVDNPLHCEAGGAPEYEPGSQRWSVIRTGAADLELLSAGDLKMDSLYGVYTAGSSASETYANDPYNQPKARAAAGKVLNDALGENEQFVDGGSNSLYRAWYPDFGGNLSLKVGGNLTGNSLDVSSASIGRPNGGDIGYDTVNVGNWLWRQGNGSVATGTQAQPTAWWINFGSYTAAKDGKADLMVGFTGFGTLGGGNLNVQVAGDAGELEQMAGSRLVPGSNSRSQGLVLAVGSTGRVGADGSLQLTGGGDLNLRVGGALNPDSAFVDGHLNGAVINLRGHAQIDSGAIGRIDLRYGNVASAQSPGETRAYDSFRATRSLPTGGLTLMPGDATFDLTTSGDLVVMDVADPGRAPMMSVSPFKDGATNGSGVSWFSLWTANTAVDLWSSGGNLTPVVPEVETDLAVVYPSIVRAVAANGSLYYGKSSVWDGTGYDGNNRPALLLAPGINSELQFMAGDSIYGGDMSVSRSGASSAALATPFRPAFVGIVETVESGPVIKASNLSADGNLARPSANILPLFAFDTSSTSGEWALNDDPARFYALEGDLLAVTSGRSMTSASVGRWPGRIAYEGAGAVRMMAGRDIVSSGIPLGGSLSNNSQAGDYTSAGNLFIHNNPTDISIVSAGRDILYSSFNVAGPGLLEITAGRNILMDDKVSITSIGAVVPGDSRPGASLVLQAGAGLDGADYQRFVKAYLDPANQALAGVPLADQDGKVAKTYEAELVKWLKERFGFSGDTEQVRSFFAALPAEQQRVFARDVYFAELKAGGREYNEVGGVRQGSYLRGREAIELLFPTKDVAGNAITYKGDITMFGGAGVHTDFGGGIQMLTPGGGQTFGIEGNAPPSTAGVITQGEGDIQLYAKNSILLGQSRIMTTFGGSILSWSAQGDINAGRGSKTTVVYTPPKRLYDTWGNVTLSPSVPSTGAGIATLNPIPEVAPGDIDLIAPLGTIDAGEAGIRVSGNVNIAALTVVNAANIQTQGKSSGVPLAASVNTGAITSASSAASSATQAAEDVARQQQNAARQNQASVFTVQVVSFGSEQLAPSRDGASREAPRTYDPASPVQVLGAGPLDEQARQRLTEEERGRLSLPGPT0003647_25DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-HEMOPHORES-HEME|HEMIN_TRANSPORT,PGPT0003647-hxuA-NANANA
D1-35_05210612hypothetical proteinATGGGGACTATGGAACGTTATTCGAAAGTGGGCATGCAGGAGCTGGACCAGCGGCTATCGAAGATCGTCGAGGCGGCGCGCAAGCAGCCGGTCTCGGTGTATCGCTACGGTGCGCCGTGGGTCTGGATCGTTTCCCAGGATGACTGGCAGGGCGCGCTCAAGGAAGTGTCCAGCTACATCCCCCAGGGCCACTCCCTGGTGCTGTTACGGCCACAGATCGACGACTTGCTGGCCGAACACCGCGACGTGCTGCAGGGCCTCAACGCCGATGCCGGCATGCTCATCGCGCCGCAGACGGCCATGCACATCCTGCTGCTGCAACTGCTTTATTCGGTGCCCAGCGAGCAGCAACTCTACGAACAACTCAATTACAACCTGCTGTTCCGCTGGTTCGTCGGCCTGGACCTGAACCAGAAGGTCTGGAGCTTCAACGTGCTGAGCAAGGACCTCGCCACGCTGCTGGGCGATGCGCGGGCCGTGCGGCTTATCCAGAAAATCATCGGTGAAGTGTTCTGTGGCGCCTTGCTGCAAATGCCCGAGTTCTCCTTGAACTTCGCGCTGCTGCACACCTGGCTGGCCCGGCACGCCACGACATCGACCGCAAGCAATTGAMGTMERYSKVGMQELDQRLSKIVEAARKQPVSVYRYGAPWVWIVSQDDWQGALKEVSSYIPQGHSLVLLRPQIDDLLAEHRDVLQGLNADAGMLIAPQTAMHILLLQLLYSVPSEQQLYEQLNYNLLFRWFVGLDLNQKVWSFNVLSKDLATLLGDARAVRLIQKIIGEVFCGALLQMPEFSLNFALLHTWLARHATTSTASNPGPT0030640_90DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MOBILE_ELEMENTSCE-BACTERIAL_FITNESS-TRANSPOSASES,PGPT0030640-truncated_tnp-K07487NANA
D1-35_052111605hypothetical proteinGTGGAGCATTTTTTCAAATCGCGGCCGGCGCTGTGGGGCTGGCTGCTGTTGGCGGTCTGGGGGCCGTCGGCATTCGCAGCAGAAGGAGCACCGGAAGCCGAAGCGGCGCCGGCTCGCCTGGTGGACGTCAACGAGTACTTCGTGCGGGGCAACACTGTGCTGGATGCCCGCGCGATCGAGGAAGCGGTGTATCCGTTCCTTGGCCCGCAAAAGACTTTGAACGACATTGAAGGCGCTCGCGAGGCGCTGCAAAAGGTCTATCAGGCTCGCGGCTACCAATCGGTGTTCGTCGAGTTGCCGGAGCAGAAAGTCGAAGACGGCATCGTCTACCTGCAGGTCAGCGAGACCAAGATCGGCCGCGTGCGGGTGGTCGGTGCCAAGCACTATTCGCCGGTGGAAATCCGCGAAGATGTGCCGGCGCTCAAGGAAGGCGAGGTGCCGGACTTCGCCCAGGTCCAGACCGAGCTGGCGCAGTTGAACAAGACCCCGGGACGCCAAGTCATGCCGCTGGTGCGCGAAGGCCAGCGGCCGGGCACCATGGACGTGGACTTGCAGGTCGAGGACCAGGATCCCTGGCAGGCCAGCCTCGGTCTGAACAACGACTACAGCGCCGACACCGAGAAGCTGCGCACGGTCGCCAGCCTCGGCTACAACAACCTCTGGCAACTGGGTCACAGTATTTCGCTGACCTTTTTCACCGCGCCCCAGGACACCGAAAACGCCAAGGTCTGGTCGGGTTCCTACACCGCGCCACTGAGCGAGCGCTGGAGCGTGCAGTTCTCCGGTCACCAGTCCGACAGCAACGTGGCGACCGTCGGCGGCAGCAACGTGTTGGGCAAGGGCCATTCCTACGGTGTGTCGGCGATCTACAGCCTGCCGTCCAGTGGCGCATGGGCCAACAGCTTTTCAGTCGGGGTGGATTTCAAGGACTTCGACGAAGAACTCAACCTGGGCGGCGCCAGCGACAAGGCACCGCTCAAGTACGCGCCGTTCACCTTCGCCTACAACGGTTTCCGCTACACCGAAACCAGCCAGTTGGGCCTCGGCCTGAGCCTGGTGGCAGGCACCCGTAGCCTGCTGGGTTATGGCAGCGACGACGAGGAATTCGACTACAAGCGCTACCGCGCCAGCCCAAGCTTTGCGGTGCTCAAGGGCGACGGCAATTACACCTTCACCTTCGGCAACGACTGGCAGACCGCCTCTAAAGCCGCCTTCCAGCTGGCCTCCGGGCCGCTGGTCTCCAATGAACAGTTCTCCGCCGGCGGTGCCACGTCGGTACGCGGCTACCTGGCCGCCGAGCGCACCGCTGACGACGGCTACCTGTTGTCCCAGGAGCTGCGCACGCCGTCGCTGGCCAGGTTTCTCGGCAGCTATGTCCAGGAGTGGCGCTTCTATGCCTTCGCCGAGGGTGCGCAGCTGTACCTGCGCGACGAGCTGCCCGACCAGGATGCCGATTACAGCCTCGCCAGCGTCGGCCTCGGTACCCGCGCGAGCCTGAGCAAATGGCTGTCCGGGAGCCTCGACTGGGGCTTTCCGCTGCTCGACGGGCCGAACACCACGAAACAGGAATCGCGCCTGCACTTCAACCTGCAAGCGACGTTTTGAMEHFFKSRPALWGWLLLAVWGPSAFAAEGAPEAEAAPARLVDVNEYFVRGNTVLDARAIEEAVYPFLGPQKTLNDIEGAREALQKVYQARGYQSVFVELPEQKVEDGIVYLQVSETKIGRVRVVGAKHYSPVEIREDVPALKEGEVPDFAQVQTELAQLNKTPGRQVMPLVREGQRPGTMDVDLQVEDQDPWQASLGLNNDYSADTEKLRTVASLGYNNLWQLGHSISLTFFTAPQDTENAKVWSGSYTAPLSERWSVQFSGHQSDSNVATVGGSNVLGKGHSYGVSAIYSLPSSGAWANSFSVGVDFKDFDEELNLGGASDKAPLKYAPFTFAYNGFRYTETSQLGLGLSLVAGTRSLLGYGSDDEEFDYKRYRASPSFAVLKGDGNYTFTFGNDWQTASKAAFQLASGPLVSNEQFSAGGATSVRGYLAAERTADDGYLLSQELRTPSLARFLGSYVQEWRFYAFAEGAQLYLRDELPDQDADYSLASVGLGTRASLSKWLSGSLDWGFPLLDGPNTTKQESRLHFNLQATFPGPT0003648_95DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONHEAVY_METAL_IRON_RESISTANCEIRON_RESISTANCE-HEMOPHORES-HEME|HEMIN_TRANSPORT,PGPT0003648-hxuB-NANANA
D1-35_052121800tolQ_4Tol-Pal system protein TolQATGCAACGCTTATTCATTCCGCTGTTGATCTGCCTGGGGCTGCTGCTTCCGGCGACCGCCAACGCCTGGTGGCAGGACGATTGGCACTACCGCAAACAGATTTCGGTGGACACCACGCCGCAAGGCGCGGCCATCGCCCAGGCCTTGGGCCGCACGGCGTTGCTGGTACGCCTGCACACCGGCAACTTCACCTTCGACGGCGTCAAGGAGGATGGTTCGGACCTGCGCTTCGTCAGTGCCGACGACAAGACCGTGCTCAATCACCAGATCGAAAGCTTCGACCCGTTGATGGGCATGGCCCTGATCTGGGTCGATGTGCCGAACGTCGAGGGTGGCCAGCGCCAGGACCTGTGGATGTACTACGGCAACCAGAAAGCCCCGGCCACCGCCAGCGGCCAACTGGCCTTCGATCCGGACTACACCGCGCTGTATCACTTCGACGGTGCCACCGGAATTCCGCCACGGGACACCACGGCCTATGGCAATACTGCCCAGGGCGCGGCGGGCGTGAGCATCGACGGCGTGATCGGCCGGGCCCTGCAGTTCAACGGCCAGCCACTGTTGCTACCGGCCAGCCCGTCGCTGCAACACACCGCCGGCGCCGCGTTCACCTTCAGCACCTGGCTGCGCCAGGACCAGGCCAGCGGCGAGCAAATCGTCATGGCCCGTCGCGAAGCTGCCGCCAGTCTGTTGGTGGGGGTCAACCAAGGAGTGCCGTTCGTAGCGATCAATGATCAGCGTGCGGTCTCGACCCAGCCGCTGAACCCCGGCCAATGGCAGCACCTGGCATTGACCGCCTTGGGTGATCGAGTCGTGCTGTACGTCAATGGCCGCGAAGCCGCGAGCCTGGCGCTGGCAATGCCGGCGTTCAATTCGCCGATCGCCTTGGGGGCAGACGTTGCCGCCGGTGCCTTCGCGCCGTTCAGCGGGGCCATGGACGAGGCGCGCCTGTCCAAGGTCGCCCGGCCCGCGCCGCTGCTCCTGGCCGATGCCAACGCCCAGGGCGCCGAATCGAAACTGGTGGCCTACGGTGTTGATGAAGAACAGTCCGGCTTCGGTTTCGGCAGCCTCGGTTTCCTGCTCAATGCCGTGCCGCTGGACGCCTGGGTGATCATCGCCGTGCTGGTGCTGATGATGTTCCAGTCGTGGGTCATCATGATCCGCAAGAACCGCATGGTCAGTCGTCTCAGTGCCGCCAACGAAGCGTTCCGCGAGCAGTTCGCCCGGATCGGCACGCGCCTGGAGATGTTCGCCGACGACCAGGAACTTGCCCAGCGCCTGCAACATTCGTCCCTGTGGCGCCTGTACCTGGTGGCGGTCAAGGAGATCCGCACCCGCCGCGATCAGGGTGCCGACACCTCGACCGTCTCGGCCGCCACCATCGAGGCGATCCGCTGCTCCATGGATGGCGTGCGCACCCGCGAAAACCAGGCGCTGAGTTCGAAGCTCTCGACCCTGTCCAACGCCATCGCCGGCGGCCCGTACATCGGCCTGCTCGGCACCGTGCTGGGGATCATGGTGGTGTTCCTTGGCACGGCCATGGCCGGTGACGTCAACATCAACGCCATCGCCCCGGGCATGGCCGCCGCGTTGCTGGCCACCGCCATGGGCCTGTTCGTCGCGATCCCGGCGCTGTTTGGCTACAACCGCCTGATCACCCGCAACAAGGAAGTCAGCGCCGACATGCGCGTATTCGTCGACGAGTTCATCACGCGCCTGGCGGAGATGCACGGCGAAGGCCAGTCCGGCGAAGCAGCTCATCGCCGTGACCATCACGTCCAATCGTCCGTACCGGCCTGAMQRLFIPLLICLGLLLPATANAWWQDDWHYRKQISVDTTPQGAAIAQALGRTALLVRLHTGNFTFDGVKEDGSDLRFVSADDKTVLNHQIESFDPLMGMALIWVDVPNVEGGQRQDLWMYYGNQKAPATASGQLAFDPDYTALYHFDGATGIPPRDTTAYGNTAQGAAGVSIDGVIGRALQFNGQPLLLPASPSLQHTAGAAFTFSTWLRQDQASGEQIVMARREAAASLLVGVNQGVPFVAINDQRAVSTQPLNPGQWQHLALTALGDRVVLYVNGREAASLALAMPAFNSPIALGADVAAGAFAPFSGAMDEARLSKVARPAPLLLADANAQGAESKLVAYGVDEEQSGFGFGSLGFLLNAVPLDAWVIIAVLVLMMFQSWVIMIRKNRMVSRLSAANEAFREQFARIGTRLEMFADDQELAQRLQHSSLWRLYLVAVKEIRTRRDQGADTSTVSAATIEAIRCSMDGVRTRENQALSSKLSTLSNAIAGGPYIGLLGTVLGIMVVFLGTAMAGDVNINAIAPGMAAALLATAMGLFVAIPALFGYNRLITRNKEVSADMRVFVDEFITRLAEMHGEGQSGEAAHRRDHHVQSSVPAPGPT0003750_110DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003750-exbB-K03561NANA
D1-35_05213426exbD_3COG0848Biopolymer transport protein ExbDATGGCTAGCGTAAATACGTCACACGATGACGACGATGATGCAGCGGTCGACAGCATCAACGTCACGCCGCTGGTGGATGTGCTCATGGTGGTGCTGGTGATGTTCATCCTCACCGCCACGGCGCAGGTCTCGGGCATCCAGATCAACCTGCCCAAGGCCAGCGCCTCGGTGTCGTTGTCCGAGGCCAAGACCAAGGCGATTTCGGTGAATGACGGTGGCCAGGTATTCCTCGATGCCTACCCGGTGACCCTGGCCGAGCTGGAGGAGCGCCTGCGCATCGAGAAGGCCCAGAGCCCGGACTTCCCGGTGATCGTGCGCGGCGACGCCACGGTGCAGTACCAGAAAGTCATCGAGGTGCTGGACCTGTTGCGGCGCCTGGAACTGTCCCAAGTCGGTCTGGTGACCGGCAAACCGAGCCAGGGCTGAMASVNTSHDDDDDAAVDSINVTPLVDVLMVVLVMFILTATAQVSGIQINLPKASASVSLSEAKTKAISVNDGGQVFLDAYPVTLAELEERLRIEKAQSPDFPVIVRGDATVQYQKVIEVLDLLRRLELSQVGLVTGKPSQGPGPT0003755_1757DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003755-exbD-K03559NANA
D1-35_05214705hypothetical proteinATGACCGCCAGACTTCCCGTCAACCCGCCCCCCGTGAAGCGCTCGCCGCTGCGCCTGCTCAAGTGGGCCGCCGGCCTGGCGCTGGCTGGCCTGGCGGCCTGGCTGCTGTGGCAATGGGCCAACGACATGAGCGGCGTGCGCCGTGAAGCGCCGAAGGTGCCGACCATCATCCCGCTGCCGCCACCACCACCGCCGCCCCCGGAAAAACCCAAGGAGCCGGAACCCAAGGTCGAGGAAAAAGTGCCCGAGCCCGAACCGACCCCGGAACCCGAAGAGGTCAAGCCCGAGGAAGAAGCGCCGCCGTCGCCGGTGGATGACCTGGCCAACCCGATGCAGATGGACGGTGATGCCCAGGCCGGCAACGACGCTTTCAACATTGGCGCGGGTAAGGGTGGCGGCATGGCCGGGGCAGGGGGCGGACGCCTCGGCAACGGCACCTACAGCCAGTTTCTGGCGTTCACCTTCCAGCGCTTGCTGCGGGAGAACCCTGACTTGCGCAGCCTGGCGTTTTCGCTGCAGGCCGACGTCTGGCTCAGCGCGGTCGGGGAAATCACCCGTGTCGAGCTGGTCAAGTCCAGCGGCAACCCGCAGTTGGATGAGCAAGTGATCGCCGCCCTGCGTGCCGCGCCGCATCTGAGTGAACGGCCTCCGGCCTCCCTGACTTTGCCCGTGCGCCTGTCCTTGCAGGGACGGCGTCCGGGTTAAMTARLPVNPPPVKRSPLRLLKWAAGLALAGLAAWLLWQWANDMSGVRREAPKVPTIIPLPPPPPPPPEKPKEPEPKVEEKVPEPEPTPEPEEVKPEEEAPPSPVDDLANPMQMDGDAQAGNDAFNIGAGKGGGMAGAGGGRLGNGTYSQFLAFTFQRLLRENPDLRSLAFSLQADVWLSAVGEITRVELVKSSGNPQLDEQVIAALRAAPHLSERPPASLTLPVRLSLQGRRPGPGPT0003745_4945DIRECT EFFECTBIO-REMEDIATIONHEAVY_METAL_DETOXIFICATIONOTHER_HEAVY_METAL_RESISTANCE_SYSTEMSHEAVY_METAL_RESISTANCE-TonB-ExbB-ExbD_TRANSPORT_SYSTEM,PGPT0003745-tonB-K03832NANA
D1-35_052151692hypothetical proteinATGATTGCCAATGTGAATCGATTGTCGTGGGCGGTCGGCCTGGTTGTCTTGAGCCTGGCCGGCCACGCGTCGGCAGCCCCGGCGCCTTCGGAAAACGCCACGATCAATCTGATCCGCCTGCTGGTGCAGCAGGGCGTGCTGAAGCAGGACCAGGCTGAAGGCCTGATCGCCCAGGCCGAGCGCGAAGCCGTGCAGGCCCGTCAGGCTGCCACTGCCGTTGCCGCCGCACCCGCCGGTGCGCCCGGGGATGTGCGGGTGCAGTACGTGCCGAACATCGTGCGTGAGCAGATCCGCGACCAGGTCAAGGCCGAAGTCATGGCCACGGCCAAACAGGAAAACTGGGCGCAACCCAACACCTTCCCGGATTGGGTCTCGCGCATCAGTTTTGATGGCGATATCCGCCTGCGGGACGAGTCGCGCTACTACTCGGGCACCAACAGCAACCAGATCGTCGACTTCGCTCGCCTCAACGACCGCGGCCCCTACGATGTCAACCCCAACAGCAGCTCGAACCTGCCGCCCTTGCTCAACACCCGCGAGGACCGCGAAAACCTCTTCCGCCTGCGCGCGCGCCTGGGCATGAAGGCGGTGATCGCGCCCGAGTGGACCGCGGGCATCCGCATCGGCACCGGCTCGGACAACAACCCGGTGTCCACCACCCAGACCCTCGGCGGCGGCTTCGGCAAGAAGGATATCTGGCTCGACCAGGGTTACCTGACCTGGAAGCCCTCGGACGAGTTGACCCTGACCGGCGGGCGTATCGCCAACCCGTTCTACTCTACCGACCTGCTGTACTCCGGCGACCTGAACTTCGATGGCGTGGCGGCGATTTTCAACCGCAAGCTCAGCCAGGACTTCGGCCTGTTCGGCACCGTCGGCGCGTTCCCGGTGGAGTACACCAACGACACCAGCACCAGCAACGGCACAGACAAGGAAGAGAGCGACAACAAGTGGTTGTACGGCGCGCAACTGGGCGCCAACTGGGCAATCAACGACAGCAACCGCGTCAAGGGTGCGCTGGCCTATTACCGCTTCGACGACATCGAAGGCCAACGCTCGTCGCCGTGCGAGCCCTGGGCCGGTGACCCGGGCTGCGACACCGACGGCTCGCGCGTGGCGTTCATGCAGAAGGGCAACACCGTGTTCCTGCTGCGCGACATCACGCCCAATCCGCTCAATCCGTCTGCCACGCCACAGCCGCAATACGTCGGCCTGGCCTCGGAGTTCAACCTGCTGGACCTGAACCTGGCGTGGGACACCGATCTGCCGGAAGACCTGAAGCTGCGCAGCCAGGCGCATTACGTGCATAACCTCGGTTATGACGAAGGTGAAATGCGCAAACGTTCGGAAGGGCAGTTCGCCAACAACCTCGATGAGAACGGTGAAGTCGAGAGCGGAGCCAACGCCTGGATGCTCCAGTTCACCCTGGGTAACTCCCTGGAGCTCAAGCGCCAGGGCGACTGGAACATGTTCGCCGGCTACAAATATATCCAGCCGGACGCCTTGCCGGACGGCTTCAACGATTCCTCGTTCCACTTGGGCGGCACCAACGCCAAGGGCTATTTCCTGGGCGGCAACTACGGCCTGGCGAGCAACGTCTTCGCCACCGGTCGCTGGCTGAGTTCCGAAGCGGTGTACGGCGCGCCGTACGACATCGATGTCCTGCAGCTTGAAATCAACACGCGCTTCTAAMIANVNRLSWAVGLVVLSLAGHASAAPAPSENATINLIRLLVQQGVLKQDQAEGLIAQAEREAVQARQAATAVAAAPAGAPGDVRVQYVPNIVREQIRDQVKAEVMATAKQENWAQPNTFPDWVSRISFDGDIRLRDESRYYSGTNSNQIVDFARLNDRGPYDVNPNSSSNLPPLLNTREDRENLFRLRARLGMKAVIAPEWTAGIRIGTGSDNNPVSTTQTLGGGFGKKDIWLDQGYLTWKPSDELTLTGGRIANPFYSTDLLYSGDLNFDGVAAIFNRKLSQDFGLFGTVGAFPVEYTNDTSTSNGTDKEESDNKWLYGAQLGANWAINDSNRVKGALAYYRFDDIEGQRSSPCEPWAGDPGCDTDGSRVAFMQKGNTVFLLRDITPNPLNPSATPQPQYVGLASEFNLLDLNLAWDTDLPEDLKLRSQAHYVHNLGYDEGEMRKRSEGQFANNLDENGEVESGANAWMLQFTLGNSLELKRQGDWNMFAGYKYIQPDALPDGFNDSSFHLGGTNAKGYFLGGNYGLASNVFATGRWLSSEAVYGAPYDIDVLQLEINTRFNANANANANA
D1-35_05216657hypothetical proteinATGAAAAGGCGAGCCATCAACCCTTGTCCTTCCGCGTTGCTGCTGGGCCTGCTGCTCAGTCCGTTATTGATCGGCAGCGCCCACGGCGAAGGCCTGGAAGAACGCCTGCGCACGCAACTGCGCAGCACCACCGCCCAGTTGCAGACGTTGCAGAGCGAGCAGGCCCAGGCCAGCGTCGCCCGCCAGGCGGCGGAAAACCGCGCCAAGGAAGCCGAGGCGCAGGTCAAGCGCCTGACCGCCGAGCTGGCCAAGGCGCAAGGCCTGGCCGAACAACTGGCCGGGCGCCAGGAAAGCCTGCAAAGCCAGGCCCAGGCCCAGGCCGCGGCCAGCCACGAGCAGATCGGCAAGTTCAAGAAGGCCTACGACGAGCTGCTGGTCATGGCCCGGGGCAAGGAAACCGAACGGGCCCGCCTCGAAGCCCGGTTGCATGAACGTGACACACAAGTGCAGCAATGTTCGGTCAAGAATCAGCAGATGTACGACGTCGCCAAGGAACTGCTGCACGCCTACGAAACCATCGACGTGACCGACGTCATGAAGATCCGCCAGCCGTTCGCCGGCAAGGCCCGGGTACGTTTCGAAGAGTTGGCCCAAGGTTTTGGCGATGATCTCTACAAGAACCGTTTCGATGCGCCCCAGGCCTCGATCACCCATTGAMKRRAINPCPSALLLGLLLSPLLIGSAHGEGLEERLRTQLRSTTAQLQTLQSEQAQASVARQAAENRAKEAEAQVKRLTAELAKAQGLAEQLAGRQESLQSQAQAQAAASHEQIGKFKKAYDELLVMARGKETERARLEARLHERDTQVQQCSVKNQQMYDVAKELLHAYETIDVTDVMKIRQPFAGKARVRFEELAQGFGDDLYKNRFDAPQASITHNANANANANA
D1-35_05217480hypothetical proteinATGACTTCATTGATTGAACACGTCACGCCCGCGTCCCTCACCGAGGTGTTGCAAGCCGCCGGTTATCGGGTCAACGAAACGGAGCAGAACGGTATCGTGCAACTGCTCAGCGCCAGCCAAGGCATCGGTTATGCCGTGCGCTTCGGCAATCCGACACCGACGCCGGGCCAATACCTGGACTTCACCTTCAGCTGTGCCTTGCGCGTGCAGGGTGAATTGCCGGCCGGGCTGGCGGAACTGTGGAATGCCTCGCGACGTTTTGCCCGGTTGTCGGTGCAGGGCGAATTCCTGGTGATGGAAATGGACGTGGTGGTGGCGGCCGGCGTCAGCGCCGAGCACCTGCGCAGCAACCTGGAACTGTGGGACCGGTTGCTTCAGGAATTCATCGTCTACCTGCGCGAGTTCAGCCAGAACGCCGCCCGCCTGCACACCGGCGCCGAGCCCGCTGAAGCCGCGCAGGAGGAGGCCGCCGCACTGTGAMTSLIEHVTPASLTEVLQAAGYRVNETEQNGIVQLLSASQGIGYAVRFGNPTPTPGQYLDFTFSCALRVQGELPAGLAELWNASRRFARLSVQGEFLVMEMDVVVAAGVSAEHLRSNLELWDRLLQEFIVYLREFSQNAARLHTGAEPAEAAQEEAAALNANANANANA
D1-35_05218945surA_2Chaperone SurAGTGAAAAAGCCAACGTTTGTCATCAGCGCTGCGGCGCTGGGCCTGGTCGCCGTGGCTGTTGCCCTCGGCTTGCGTCCCGGCAACGATCCGGTGGCGGCGGTGCAATCGGTCAGCGTGGCGACAAGCGAGTCGCCGAGCCTGGCGCGGTTGGGCAGCCAGCAGGTCAGCCCGGAAGAACTCAAGGCGCTGCTTGCGACGCTCGCCCCCGAGGTACGCCAGCAGATGCGCGGCAACCGCGCCGCACTGGAGGGCTGGATCCGCGCAAGACTGGCGGAAAAAGCCGTGCTGGAGCAGGCCGATGCCCAAGGCTGGCGTCAGCGCCCGGAAGTGGAGCGCCAGATGCGCGCTGCGACCGAGCAGATTGTCTTTCGGGATTATCTGCAGTCGGTCAGCCAGGTGCCGGCCGGGTATCCCAGCGAGGATGAGCTGAAACAGGCCTACGAAGCAGGAAAAGCCAACTGGACCGCGCCTGCGCTGTACCGGGTCAGCCAGATTTTCCTTGCGGCGACCGAGCCACAGACCGTCGAGGCGGTGCGCCGCCAAGCCGTGGAGCTGAGCAAAAAGGCCCAGGCCGCGCCGGCTGAATTCGCCGCCCTGGCCAGCCGTTATTCCCAGGACCGCACCAGTGCCGAGCGCGGTGGTGATAGTGGCTTCCAGCCGTTGCAACAATTGGTGCCTACGGTACGCGAGGCAGTGGTGCGGTTGAAGGTAGGCGCGGTATCGGACCCGGTGCAGAGCGCGGCGGGCTTCCATGTGATCAAGCTCACCGAGCAGCAACCGGCGCGGGAAGCGACCCTGGATGAAGTCCGCGAGCGCCTGACCCAGGCGTTGCGTGCCCAGCGCCAGGAGCAGATCGCCAAGGCCTACCTGGACGGCATGCTCGACACCGCGACGTTGAGCATTGATGGCGCGCAGTTGAGCAAGGTGCTGGAGGAGGTTAGGTAGMKKPTFVISAAALGLVAVAVALGLRPGNDPVAAVQSVSVATSESPSLARLGSQQVSPEELKALLATLAPEVRQQMRGNRAALEGWIRARLAEKAVLEQADAQGWRQRPEVERQMRAATEQIVFRDYLQSVSQVPAGYPSEDELKQAYEAGKANWTAPALYRVSQIFLAATEPQTVEAVRRQAVELSKKAQAAPAEFAALASRYSQDRTSAERGGDSGFQPLQQLVPTVREAVVRLKVGAVSDPVQSAAGFHVIKLTEQQPAREATLDEVRERLTQALRAQRQEQIAKAYLDGMLDTATLSIDGAQLSKVLEEVRNANANANANA
D1-35_05219981hypothetical proteinATGTCTTTCATAGAGCCCGCAGGACGCCAGGCTGTCACCGCATACCGCGCGCCCTTGCGCGCACCTGAGCCGTGGTTGGCCTTGGCCGCCAGCATCGAGCCGCAGGTGGCGCAGTGTTTTCTGGTCAGCGCCCGTTGTGGCTGTTTCATGCAGGCGTCCCGCAGCCTGAACGTCAAGGCCACCTGGCTGCGCAAGCAGTTGGCCCAACTGGAAGCTCGCCTGCAGCGATCACTGTTCAGCTTCCAGGGCAGCACCCTGGCGCTTACCCGCGAAGGACGGCAATTGCAGGCGCGCTTGCTTGCCCTGGGCGAGGATGGTCCGCCAGCGCTGGCCGATCAACCGTTGATTCGCCTTGCAGTGGCCGAGTCGATCCTGCATGACCTTCTGGGTCGTGACCTGATCTCATTGCTGCGCCGCAACGCCAGCGTGCGCTTGCAAATCATCACGCTGGACAGCGAACTGGCGCTGCAGGCGGTCAGTGCCGACCTGGTGCTGTGGCTGAGTGACGGGCAGGAATCGACACCGGTGCCGAGCGTTGCGACACAGGCGCCGGAGCGGCTGGCGCGGCTGGACTATCTGCCCTACATCGCCAAGCGTTATTCCCGCCCGGCCAGCCGTCCGCGCCGGTTGGAAGAGCTGGACGACTACATGTTGGTGCAATGGCAGGCCGACAGCCAGGTGGGCAGTTTCACGCCGTGGAATACCCTCGTCGAGCAACGCCGCGCCGGCGTGGTGCAGGTGCAATCCTATGAGCTGATGCTGGAAATGATCCGCTGCTGCGCCTGCATTGGCCTGTTGCCGCAATACATGAGCCATTTCGATCGCGGCCTGGTCGCCTTGCCGGGGTTGTTTGAGCAGCCGATGCAGCGCCACCTGTGGATGGCGGCGAGCACCGAGGCCCGGCCAGTGCCGCAGGTGCAGATGCTCATCGAACTGATCCGCCACACGCTGGATGAGCGCAGGGAATGGTTCCGGGCTTGAMSFIEPAGRQAVTAYRAPLRAPEPWLALAASIEPQVAQCFLVSARCGCFMQASRSLNVKATWLRKQLAQLEARLQRSLFSFQGSTLALTREGRQLQARLLALGEDGPPALADQPLIRLAVAESILHDLLGRDLISLLRRNASVRLQIITLDSELALQAVSADLVLWLSDGQESTPVPSVATQAPERLARLDYLPYIAKRYSRPASRPRRLEELDDYMLVQWQADSQVGSFTPWNTLVEQRRAGVVQVQSYELMLEMIRCCACIGLLPQYMSHFDRGLVALPGLFEQPMQRHLWMAASTEARPVPQVQMLIELIRHTLDERREWFRANANANANANA
D1-35_052201692mdlCBenzoylformate decarboxylaseATGCCTTCAACCCCCGATTCAACGGTGCGCACCAGAGGGCAACGCGGCGCGGACCTGTTCGTAGAAGTGCTGCGCAGCGAAGGCGTTCGCCATGTCTTCGGCAATCCAGGCACCACGGAGCTGCCGTTGCTCGATGCGCTTTCAGGCGTCTCTGATATTCACTACGTGCTCGGCCTCCAGGAAGCCTCCGTCGTGGCGATGGCCGACGGTTATGCGCAAGCGTCCGGGCGCCCCGCTTTCGTCAATCTCCATACGGCCGGTGGGCTGGGCAATGCGATGGGCGCCATCCTGAACGCGAAGATGGCGAACACGCCTTTGGTGATCACCGCAGGCCAGCAAGACACCCGCCATGGGGTAACCGATCCGCTGCTTCACGGTGATCTGGTCAGCCTGGCCCGACCGAGCGTCAAGTGGGCGGAGGAAATCCAGCATCCCGAACATATCCCGATGCTGTTGCGCCGCGCTCTTCAGGACTGCCGTACGGGGCCGACCGGCCCGGTGTTCCTTTCGCTGCCGATCAACGTGATGGAGCAGCACACGGATACCGGTGCTGGCCAGCCGTCGCGAATCGAACGGGGTGCGGTGACCGCAGCAATCGAGCCATTGGCTGACGCTTTATCGACGGTTACCCCGGGCCGGCTGGCGATGATCGTCGGTGAAGAGGTGTTCCAGTCGAATGCGCAAGCGGAAGCGGTGAGGCTCGCCGAAGCGCTCGGCGCGCCGGTGTTCGGGCCCTCTTGGCCCGGGCATATCCCGTTCCCCACCGCTCATCCTCAATGGCGAGGCGCCCTGGCGCCCAAGGCTGCCGACATCAGGGCAACATTCGCTGAATTCGACGCTGTGCTGCTTCTCGGCGGCCATTCGCTGATCAGTTACCAATACTCGGACGGCCCGGCGATTCCCCCACATTGCCGCCTCATTCAATTGACCGGCGATGGCCACCAACTGGGCAGGGTCCATGAAACGGCGCTGGGATTGATAGGCGACATAAGGCTGTCGTTGCAGCTGTTGCTGCCATTCCTGGATGAACAACTGGCCCCGCACGGCCAGGCAATCGCGACGCTGCGAAATCTCGCTGCGCACGAGCGCAATAACCGTCGGGTCGAAGTGGCCGAGCGCGCGCGCCGTGAATTCGATACGCCGGTGACCACGCCTTTCGTGGCGGCCCATGAAGCTGTCCGGGCCATCGGCCCTGACGTCTGGATCGTCGACGAAGCGCCGGTCACCATCCCTCACGTGCGTGCTTGCCTGGACTCACATTCGGCCAGCCAGTACCTGTTTACGCGTAGCGCCATCCTCGGCTGGGGCATGCCGGCGGCTGTCGGCACATCCCTTGGCCTGGACCGCAGCCCGGTGGTGTGTCTGGTCGGCGATGGCTCGGCGATGTATTCACCCCAAGCGCTGTGGACAGCTGCCCACGAGCGTTTGCCGGTGACTTTTGTGGTCATGAATAATGGCGAATACAACATTCTGAAAAACTACGCGCGTAACCAGGCGCATTACCGCAGTGCCGGCACCGACCAGTTCATCGGCATGGACATCCGCGACCCGGCCATCGACTTCCTGGCCCTCGCTTCTTCCCTGGGGATTGCGTCGCGCAGGGTCGAGCGAGCCTGCGACATTGCCGGGGCGGTCGAGGATGGTATTCGCTCGGGCCGTCCCAATCTCATCGAATTGCCGATCACGGCTTGAMPSTPDSTVRTRGQRGADLFVEVLRSEGVRHVFGNPGTTELPLLDALSGVSDIHYVLGLQEASVVAMADGYAQASGRPAFVNLHTAGGLGNAMGAILNAKMANTPLVITAGQQDTRHGVTDPLLHGDLVSLARPSVKWAEEIQHPEHIPMLLRRALQDCRTGPTGPVFLSLPINVMEQHTDTGAGQPSRIERGAVTAAIEPLADALSTVTPGRLAMIVGEEVFQSNAQAEAVRLAEALGAPVFGPSWPGHIPFPTAHPQWRGALAPKAADIRATFAEFDAVLLLGGHSLISYQYSDGPAIPPHCRLIQLTGDGHQLGRVHETALGLIGDIRLSLQLLLPFLDEQLAPHGQAIATLRNLAAHERNNRRVEVAERARREFDTPVTTPFVAAHEAVRAIGPDVWIVDEAPVTIPHVRACLDSHSASQYLFTRSAILGWGMPAAVGTSLGLDRSPVVCLVGDGSAMYSPQALWTAAHERLPVTFVVMNNGEYNILKNYARNQAHYRSAGTDQFIGMDIRDPAIDFLALASSLGIASRRVERACDIAGAVEDGIRSGRPNLIELPITAPGPT0005425_106DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AROMATIC|PHENOLIC_COMPOUND_UTILIZATIONPLANT_DERIVED_BENZOYLFORMATE_DEGRADATION,PGPT0005425-mdlC-K01576NANA
D1-35_052211002hypothetical proteinATGCCTGTCCAGCAATGGCCCATGAATAAACCCGTCCTGCCTGTCACCTACGAGCAGATGGATCGCTGGGTCGCCTCGATACAGCCGGTGCTTCTCGAAGAGCGGTTCAGCAGCATCATCGGCATCTTGCGAGGGGGAGCGCCCCTGGCCTTAATGGTTTCGCATGCCACGGGCGTCGAAACGGCCTTTTTGCGTTATTACCGGGCGGATCAAAGCGTGATCTGGGACTCATCGGTCCCACTCCCTCCATCCGGCAGCAAAGTGCTGCTCTGTGAGGACATTGCCGGCGCCGGGCACACGCTGAAGGACTGCGTGGCGTTTTTGCAGCAGCGAGGTTTGATCGTCAGGATCTTCACTGTCGGCTTCGACGATCTAAGTGGTATTCGCCCCGATTATGGGTTGGACGGGCAAGGATATTTCTTGCAGTTCCCTTGGGAGCGGCAAACCGTTACCCGCGCTTATCGCGACCGCTGGAACGCCACCGGTGGCGGACGCGCCGGCACGATGGCCCATGACCACGATTACGACGTGTACGCCGTTGACCTCGACGGGATATTGCTCCCGGATATCCCGCTCCAGCGCTATGCGGCTGACCTGACCGCGGCGCTCGACGAACGCGACCGCCTCGATCCCTTCAACCAGCTGCCGCCCTTGGGGCGGGTAAAGGCCATCATCACCGGACGCCCGGAGATGGATCGAGCTCGGACTCAAGCCTGGCTTCGCCAGCACGGCCATGGCGCGATACAGCTGATCATGAGAGACATTCACTCGTGCAGCGACAGCCCGGACCAGGTTGCTCTCTACAAGGCCCGCGCATCCGTGCAGTTGGGGTGCACGCACTTTATTGAAAGCGATCCGACGCAAGCGATCATGATCGCGCATCAAGCGCCTTTGCTGCGGATGATCTGGTGGGATGCCGAATGCAGCCAGGGACGGTTGATTGGGGCGGCGGGCTGGAAACAGAGTGCGCCTGAGGCGCCATGCGCCATGCGCCATGGCTGAMPVQQWPMNKPVLPVTYEQMDRWVASIQPVLLEERFSSIIGILRGGAPLALMVSHATGVETAFLRYYRADQSVIWDSSVPLPPSGSKVLLCEDIAGAGHTLKDCVAFLQQRGLIVRIFTVGFDDLSGIRPDYGLDGQGYFLQFPWERQTVTRAYRDRWNATGGGRAGTMAHDHDYDVYAVDLDGILLPDIPLQRYAADLTAALDERDRLDPFNQLPPLGRVKAIITGRPEMDRARTQAWLRQHGHGAIQLIMRDIHSCSDSPDQVALYKARASVQLGCTHFIESDPTQAIMIAHQAPLLRMIWWDAECSQGRLIGAAGWKQSAPEAPCAMRHGNANANANANA
D1-35_05222489hypothetical proteinATGGCAATTCGTAAAGGCAAAGCTCCACTGGAAGCAAAAGCCGTCGCCGCCCTCAGTATGCTTTACACCCCTATTGGCATGGCACGTAAAATCCTTGCATCCAAACAGCTGATAAAAGTCGGTCAGCAGGAACTCGACACAAGGCGCCAACTCGATGCTCTACCGCGGGCGGAAAATGCCGGAGTCATCGCGTCGCGTGCGAAGCGAGACAGCCTGGAATCGCTTGACCTGAACGATATCTCATTGGGGCGCGTAGAATCCGGCGAACCGGATAACCTGACAATCAAGGCCGGCGCCGCGGCTTATCAGGCGGTAAGCCCAGAGACACGTGCGGCCCTGGACGCGATTTTGGTGCTTCTCGAAAACCATGGAGAAGCCGCCTTAACGGACCTTTCCGAAAAATCACGACGTTCTCTCGACGAGTTTCGCGACGTGTCCTCCCGACTTTCCTTTGTGGACGCCGACGACGTTGGGCCAATTGTCTGGTAAMAIRKGKAPLEAKAVAALSMLYTPIGMARKILASKQLIKVGQQELDTRRQLDALPRAENAGVIASRAKRDSLESLDLNDISLGRVESGEPDNLTIKAGAAAYQAVSPETRAALDAILVLLENHGEAALTDLSEKSRRSLDEFRDVSSRLSFVDADDVGPIVWNANANANANA
D1-35_05223654hypothetical proteinATGATATCGGGTGCGAGCCACTCTCCCGTTTCCATTGCTCCCTTGCGACATGAGCGAACCATCGGACCTGCCACGTCTTGCGTCCAAACCGCACACGTATCCAAGCTTTCCCCCTCGCATCTGAGTAAACAGGCCCTTGACGCGCTTAAGGCCGACTCCCCGGACAAAATACAGTCAGCCATCACCCGTATGGCGGACAACGCCATTGTCGATGGATCGCTGAATCTGTGCTCAACCGAGCACAACGAGGCGACATTCAAGCTGTTGCTCAGCCAGAGAAACAGCAGCCCCGGTGAATTGCTAGTGCACACCAGGAAAAATGAACAGCAGCGCGACGACATCCTGGAACTCAAGCATAAATCCTATGCAGCGGGCCCCACCGAAACCGTCGTGCTCATGGAACGGCCGCATGAAGGCGCGCGTTCGACTGACCCTCAACAAGAGGCGATGGAGACATCAAAAAAACTGAATTCACTGCCGCCGACGTTGGGCGATGGCTCCCACAAACAGAGTCTTCCCAGGCTGAGCGAATATGCCCGAGTGCAGATTCAGAAAAGAGATGCTCAGTTCGTCGGCCAGAAGGTGGATAAAAAAGATGCTAACAAGCGCTATCAAACGCTTGAACAGGAAAACCGCCAACTGCCCCCCGCATAAMISGASHSPVSIAPLRHERTIGPATSCVQTAHVSKLSPSHLSKQALDALKADSPDKIQSAITRMADNAIVDGSLNLCSTEHNEATFKLLLSQRNSSPGELLVHTRKNEQQRDDILELKHKSYAAGPTETVVLMERPHEGARSTDPQQEAMETSKKLNSLPPTLGDGSHKQSLPRLSEYARVQIQKRDAQFVGQKVDKKDANKRYQTLEQENRQLPPANANANANANA
D1-35_05224657dctD_5C4-dicarboxylate transport transcriptional regulatory protein DctDATGCCACTCAGCCTGCAAGCCAAGTTGCTGCGTGTCCTTGAGGTGCGAGCCATCGAGCGTTTGGGCTCTACCACGGTCATTCCACTGGATATCTGTGTGATCGCCTCGGCCCAGCGGCCCTTGGCCGAGTTGGTGGAGCGGGGTGAGTTCAGGCGCGATCTGTATTTTCGCCTCAATGTGCTGACGATCCAGTTGCCAGCGCTACGTGACCGTCGCGAAGACATCGTTCCACTGTTTTCCCAGTTCGTGAACGCAGCTGGGCAAGACCTGGGGTGCGCACCGAAACCCATATCCCCCGAGCTCATGCAGACACTGCTGAGCCATCCCTGGCCGGGCAATATCCGTGAACTGAAATCGGCGGCCAAGCGATATATCCTGGGGCTGGCGTCGATAACCCTAGGCTCAGGCACGGAGATCGAGGGGCGCACGCTGAGGGCGCAACTGCGCGCTATCGAACGCATCCTTATCCAGGAAGCCCTCAAGCGTCACGGGCACTCGATTGATGCGGCGAGTGTGGAATTGGGCATCCCCCGTAGAACTCTTTATCACCGGATCAAATCGTTGGATGTATTCGGCAAGGCATCGTTGCTTGAAAAAATCTGCAAGCTGACTGCTACTGAACGCAAAAAATGTCTGGCTGACGTGGGAACCGGATAAMPLSLQAKLLRVLEVRAIERLGSTTVIPLDICVIASAQRPLAELVERGEFRRDLYFRLNVLTIQLPALRDRREDIVPLFSQFVNAAGQDLGCAPKPISPELMQTLLSHPWPGNIRELKSAAKRYILGLASITLGSGTEIEGRTLRAQLRAIERILIQEALKRHGHSIDAASVELGIPRRTLYHRIKSLDVFGKASLLEKICKLTATERKKCLADVGTGPGPT0017310_1124DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_C4-DICARBOXYRATE_TRANSPORT,PGPT0017310-dctD-K10126NANA
D1-35_052261080dmlACOG0473D-malate dehydrogenase [decarboxylating]ATGAGCAAACCATTCAGAATCGCCGCGATTGCTGGCGACGGTATTGGTAAGGAAGTCTTGCCGGAGGGGCTGCGGGTATTGGAGCAGGCGGCGAAGAAATGGCAATTGGATCTGAGCATCGAAGTGCTCGACTGGGCCCACTGCGATTATTACCTGGAACACGGGCAGATGATGCCCGCCGACTGGTTCGAACAGCTCAAGGGCTTCGATGCGATCTACTTTGGCGCCGTGGGCTGGCCGGACAAGGTGCCGGATCACATTTCCCTGTGGGGTTCGCTGCTGAAGTTTCGCCGGGACTTCGATCAGTACGTGAACATCCGTCCGGTGCGGCTGTTTCCCGGCGTGCCGTGTCCGTTGGCCGGACGTGAAGCCGGGGACATCGACTTCGTGGTGATCCGCGAAAACACCGAGGGCGAGTACTCCTCGGTCGGCGGCAAGATGTTCGAAGGCACCGAGCACGAGTTCGTGCTGCAGGAGTCGGTATTCACCCGACGCGGTGTGGACCGGATTCTCAAGTTCGCCTTCGACCTGGCCCAGACCCGGCCGCGCAAACGCCTGACGGCGGCGACCAAGTCCAACGGCATTTCCATCAGCATGCCGTACTGGGACGAACGCACGGCGCTCATGGCGCAGCAGTACCCGGACGTCACCTGGGACAAGCAACACATCGATATCCTCTGTGCGCGCTTTGTGCTTCAGCCAGACCGTTTCGATGTGGTCGTGGCGTCGAATCTGTTCGGTGACATCCTGTCCGACCTCGGACCTGCCTGCGCCGGCACCATCGGCATTGCCCCTTCGGCCAACCTCGATCCACAGCGACGATTTCCCTCGTTGTTCGAACCGGTCCATGGCTCGGCGCCAGATATCTATGGACGGAACATCGCCAACCCGATTGCGATGATCTGGTCCGGTGCCTTGATGCTCGATTTCCTGGGTAATGGCGATGAACGCTATCGCGCGGCCCATGACGGGATTCTCAAGGCCATCGAGCGGGTTATTGCAGAGGGCCCGATTACGCCTGATCTTGGGGGACAGGCGTCGACTCAGGAGGTTGGTCTGGCTGTGGCTATGGCGCTTTGAMSKPFRIAAIAGDGIGKEVLPEGLRVLEQAAKKWQLDLSIEVLDWAHCDYYLEHGQMMPADWFEQLKGFDAIYFGAVGWPDKVPDHISLWGSLLKFRRDFDQYVNIRPVRLFPGVPCPLAGREAGDIDFVVIRENTEGEYSSVGGKMFEGTEHEFVLQESVFTRRGVDRILKFAFDLAQTRPRKRLTAATKSNGISISMPYWDERTALMAQQYPDVTWDKQHIDILCARFVLQPDRFDVVVASNLFGDILSDLGPACAGTIGIAPSANLDPQRRFPSLFEPVHGSAPDIYGRNIANPIAMIWSGALMLDFLGNGDERYRAAHDGILKAIERVIAEGPITPDLGGQASTQEVGLAVAMALPGPT0001905_719DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_TARTRATE_UTILIZATION,PGPT0001905-ttuC|dmlA-K07246NANA
D1-35_052271458gabD_2COG1012Succinate-semialdehyde dehydrogenase [NADP(+)] GabDATGCTCAAGAATCGCCTGAAAGACCCCAGCCTGCTGGTAGAACTCGCTTACATCGACGGCCAGTGGGTCGGCGCCGACAACGCCGCCACCCTGGACGTGATCAACCCGGCCACCGGCGAGGTGCTTGCCCGGGTACCGGCGATACACGGCAGTGAAACCCGGCGCGCCATCGAAGCCGCCGACCGTGCCTGGCCGGCCTGGCGTGCACGTCCGGCGGCGGAACGGGCGGCGCTGCTCGATCGCTGGTACCAGGCGATGATCGACAACCTCGACGACCTGGCGCTGATCCTCACCCTTGAGCAGGGCAAGCCGCTGGCAGAAGCCAAGGGCGAGATCCGCTACGGTGCCAGCTTCGTCAAATGGTTTGCCGAAGAAGCTCGACGGATCTACGGCGAAACCATCCCGGCCCCCAGCGGTGATCGGCGCTTGATGACCCTCAAGCAACCGGTCGGTGTTTGCGCCGCGATCACCCCGTGGAATTTCCCCAATGCGATGATCACCCGCAAGTGCGCACCGGCCCTGGCCGCGGGCTGCACGATCGTGGTCAAGCCGTCGGACCTGACCCCGCTGTCGGCCCTGGCCCTGGCGGTGCTGGCCGAGCGGGTCGGGATTCCGGCCGGGGTGTTCAACGTCGTGACCGGCATGCCCGCCGGCATTGGTGAAGAGCTGACCGGCAACCCGACGGTGCGCAAGCTTTCCTTCACCGGCTCTACCGCTGTCGGACGCCTGCTGATGCGTCAGAGCTCGGAACACATCAAGCGCTTGAGCCTGGAGCTGGGCGGTAACGCTCCGTTCATCGTGTTTGACGACGCGGACCTGGAGCAAGCCGTGACCGGCATCATGCTCAGCAAATTCCGCAACGCCGGGCAGACCTGCGTCTGCGCCAACCGCATTCTGGTGCAGGATGGGATCTACGAGCGCTTCGCCCAGCGCCTGGTGGAGGAGGTGGGCAAGCTCAAGGTTGGCGACGGCCTCGAGGCCGAGGTGAACATCGGTCCGCTGATCAACGCGGCGGCGGTCAGCAAGGTCGCTCGACACATCGACGAGGCGTTGAGCCAGGGCGCTCGCCTGCTTTGTGGCGAAATCCCCACGGGCGACAGCCGGTTCGTCCAGCCGACGGTGCTCGGGCAGACGCATGCCGGGATGCTGCTGGCCAACGAAGAAACCTTCGGTCCGGTTGCTCCGCTGATGCGCTTCAGCACGGAAGAAGAGGCGCTCGCCTTGGCCAACGCTACGCCCTATGGCTTGGCGGCATATTTTTTCACCCAAGATCTGCGCCGCTCATGGCGGTTCGGCGAGGCCCTGGAGTTCGGCATGGTTGGCCTCAATACCGGGCTCATTTCCATGGACGTCGCGCCCTTCGGCGGCATCAAGCAATCGGGCCTTGGGCGTGAAGGCAGCAAGTATGGCCTGGATGAATTTCTTGAAGTCAAAGCCTTCCACGTCGGCGGGCTGTGAMLKNRLKDPSLLVELAYIDGQWVGADNAATLDVINPATGEVLARVPAIHGSETRRAIEAADRAWPAWRARPAAERAALLDRWYQAMIDNLDDLALILTLEQGKPLAEAKGEIRYGASFVKWFAEEARRIYGETIPAPSGDRRLMTLKQPVGVCAAITPWNFPNAMITRKCAPALAAGCTIVVKPSDLTPLSALALAVLAERVGIPAGVFNVVTGMPAGIGEELTGNPTVRKLSFTGSTAVGRLLMRQSSEHIKRLSLELGGNAPFIVFDDADLEQAVTGIMLSKFRNAGQTCVCANRILVQDGIYERFAQRLVEEVGKLKVGDGLEAEVNIGPLINAAAVSKVARHIDEALSQGARLLCGEIPTGDSRFVQPTVLGQTHAGMLLANEETFGPVAPLMRFSTEEEALALANATPYGLAAYFFTQDLRRSWRFGEALEFGMVGLNTGLISMDVAPFGGIKQSGLGREGSKYGLDEFLEVKAFHVGGLPGPT0001580_2728DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TRIGONELLINE_USAGEPLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135NANA
D1-35_052281158argE_3COG0624Acetylornithine deacetylaseATGAAACCCCGTGTATTGGAGATTCTCAAACGGCTGATGGCCTTCGATACCGTCTCTTCGGAATCGAATATGGCCTTGATCGAATACGTGCGCGATCTGCTCATGACCAAGGGCATCGAGTCCTTGATCGTGCGGGACGACAGCGGCAACAAAGCCAACCTGTTTGCCAGTACCGGTCCAAGGGATGTGCCGGGGATCCTGCTGTCGGGTCATACCGACGTGGTGCCGGCGGCGGGGCAGGCCTGGACCTTCCCGGCGTTTGCGGCGACGGTGCGGGACGGACGGATCTATGGCCGTGGCAGTTGCGATATGAAGGGCTTTATCGCCCTGGCAGTCGACGCCATGCTCGATGCCGCCGAGCAGCCATTGAGCAGGCCGCTGCAGCTGGCGCTGTCCCATGACGAGGAGATCGGCTGCGTGGGGGTACGGCGTTTGCTTGATGTGCTGCACCTGGCACCGGTCCGGCCGTTTCTGTGCGTCATCGGCGAGCCGACCCATATGCAGTTCGTTCTCGGGCACAAGGGCAAGGGTTCCTACCGTACGTACTGTCGTGGGCTGGAGGCGCACTCATCATTGGCGCCACGCTCGGTCAATGCGATTCATGTGGCCTGCGATTTCATCGCCGCGCTGCGCCTGAGCCAACAGCAGTTGCAAGAGCAGGGTGCCCGGGATACCGATTACGATGTGCCCTACAGCACCGTGCATGTCGGTCAGATTGTCGGCGGCAAGGCGCTGAACATCGTACCCAACCTGTGCACCCTTGATTTCGAAGTGCGTAACTTGCCGGCGGACGACCTGGACGGCTTCCTCGAGCAGATGCGCGAACGGGCCGAACTGATCGTACGCGAGGCGCAAAAGCTCTCCAGCGTGGCGGCGATTGAAATCGAGACCCTGAACGTCTACCCGGGCCTCGACACCCATCCGAGCGTCGAAGCAGTACGGTTCCTGAAAAACTTTGCCGCCCCGGACACTGGCACCGCGAAAGTCTCGTTCGGCACCGAGGGCGGTTTGTTCAAGCAACGCCTGGATGTACCGGTGGTGGTCTGCGGCCCGGGTTCGATCGAACAGGCGCACAAACCTGACGAGTTCATCGAGATCAGCCAGATGGAGGCGGGCGAGTGCTTTCTGCAAGGGTTGCTGGGCTCGATGCGCATTTGAMKPRVLEILKRLMAFDTVSSESNMALIEYVRDLLMTKGIESLIVRDDSGNKANLFASTGPRDVPGILLSGHTDVVPAAGQAWTFPAFAATVRDGRIYGRGSCDMKGFIALAVDAMLDAAEQPLSRPLQLALSHDEEIGCVGVRRLLDVLHLAPVRPFLCVIGEPTHMQFVLGHKGKGSYRTYCRGLEAHSSLAPRSVNAIHVACDFIAALRLSQQQLQEQGARDTDYDVPYSTVHVGQIVGGKALNIVPNLCTLDFEVRNLPADDLDGFLEQMRERAELIVREAQKLSSVAAIEIETLNVYPGLDTHPSVEAVRFLKNFAAPDTGTAKVSFGTEGGLFKQRLDVPVVVCGPGSIEQAHKPDEFIEISQMEAGECFLQGLLGSMRIPGPT0014254_1824DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014254-argE-K01438NANA
D1-35_052291842gsiACOG1123Glutathione import ATP-binding protein GsiAATGAGCGAATTGATTCGGGTACAGGACCTGCGCGTGGTCGCCTGCGGCGAGCGCGAGGAGGTGGACATCGTCAAGGGGGTCAGCTTCTCCCTGCAAAAAGGCGAAGTATTGGCGTTGATCGGTGAGTCCGGTTCCGGCAAGACCACCATCGCCCTGGCATTGCTCGGTTATGCCCGACGCGGTTGTCGGCTGGCGGGCGGCGTGGTGCAAATCGGCGAGGACGACATGCTGGCGTTGAGCGAGAGCCAATTGCAGAAGTTGCGCGGCAACCGCGTGTCCTATATCGCCCAGAGCGCCGCAGCGGCGTTCAACCCGGCGAAAAAACTCATCGACCAGGTAGTGGAAGGCGCGCTGATTCATGGCCTGGGTAGCCGAGCGGTGCTTGAGGCGAAGGCCATCGAGCTGTTCCGTGACCTGGCCCTGCCAGACCCGGAGCGCATCGGCCAGCGCTATCCTCATCAGGTGTCCGGCGGGCAGCTGCAACGGGTAATGGCGGCCATGGCGCTGATCAGCGATCCATTGCTGGTGGTGCTCGACGAGCCGACCACGGCCCTTGATGTGACGACCCAGATCGATGTACTGCGGGCCTTCAAACGGGTAGTCCGCGAGCGTGGGGCCACGGCCGTCTATGTGTCTCACGACCTGGCGGTCGTGGCGCAGATGGCTGATCAGATCGTGGTACTCAATGGCGGCGAGATCTTCGAACATAGCGCCACGGCACCTTTGCTCAAGGGCCCGGCCCACGAATACACCCGCAGCCTGTTGGCGGCGGCGCGGCCGGACACGACGATCCGTCCGCCCGGCGACATCGCGCAACACACCCCTTTGCTGACCATCCAGGGGCTGACCGCCGGCTACGGCAACAAGAATGCCCAGGGCATGCCAGCGATTCGCGTGCTGGAAGACATCGACCTGACGGTTCGCCGAGGCCAGGCCATTGGCGTCATCGGTGAGTCGGGCTCGGGCAAATCGACCCTTGCACGGGTGGTGGCCGGGTTGTTGCAGCCAGCCCTTGGCGGGTTGTCCTTCGATGGTCAACCCCTGGGCGGCAGCCTGCCGTCGCGTACCCAGGAGCAGTTCCGACGCATACAGATGGTCTTCCAGAATGCCGACACCGCACTCAATCCGATGCACAGCGTCAGCACGATCCTGAGCCGCCCGCTTAAGATGTATTTCGGCCTCAAAGGCGCCGCGTTGCGCGAGCGTATCGGCGAGCTGCTGGACCTGGTGCGTTTGCCCCGGACGATGGCGGACCGGCGTCCGAACGAACTGTCTGGCGGACAGAAGCAACGGATCAACCTGGCCCGGGCCTTGGCGGCCAAGCCAGACCTGATTCTCTGTGACGAGGTGACCTCGGCGCTGGATACCGTGGTCGGTGCGGCAATTCTCGAATTGCTGCGCGATTTGCGCCAGGAGCTGGGAGTGTCCTATCTGTTCATCAGCCACGACATCTCCACCGTGCGCGCCTTGTGTGACGACATCGTGGTGATGTATAGCGGGCACAAGGTCCAGGCCGGTACGCGTCAATCCTATGCCGAGGCTCCGTTCCATCCGTATACCGATCTGTTGATCCATTCCGTACCGGAACTGCGCCAGGGCTGGCTGGAAAGCTGCGGGGCAACGACCTGCCAGACGCTGCCGCCGATTGGGCCGAAAGCCGCTGTGCCAGGGCTGTGCACTTTCCTCAGTCGCTGCCCGGTGCGGGTCGACGGGCTGTGCAACCGCGTCGCGCCGGACCGACGGATGTTAGTCGGTGGCAGCGAAATCCTTTGCCACCACGACAGCGCCGAACTGATGAAAACCCAGCAACCGAACACTCCGACCGTGGCGGCGTACGCATGAMSELIRVQDLRVVACGEREEVDIVKGVSFSLQKGEVLALIGESGSGKTTIALALLGYARRGCRLAGGVVQIGEDDMLALSESQLQKLRGNRVSYIAQSAAAAFNPAKKLIDQVVEGALIHGLGSRAVLEAKAIELFRDLALPDPERIGQRYPHQVSGGQLQRVMAAMALISDPLLVVLDEPTTALDVTTQIDVLRAFKRVVRERGATAVYVSHDLAVVAQMADQIVVLNGGEIFEHSATAPLLKGPAHEYTRSLLAAARPDTTIRPPGDIAQHTPLLTIQGLTAGYGNKNAQGMPAIRVLEDIDLTVRRGQAIGVIGESGSGKSTLARVVAGLLQPALGGLSFDGQPLGGSLPSRTQEQFRRIQMVFQNADTALNPMHSVSTILSRPLKMYFGLKGAALRERIGELLDLVRLPRTMADRRPNELSGGQKQRINLARALAAKPDLILCDEVTSALDTVVGAAILELLRDLRQELGVSYLFISHDISTVRALCDDIVVMYSGHKVQAGTRQSYAEAPFHPYTDLLIHSVPELRQGWLESCGATTCQTLPPIGPKAAVPGLCTFLSRCPVRVDGLCNRVAPDRRMLVGGSEILCHHDSAELMKTQQPNTPTVAAYAPGPT0004435_1543DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004435-ddpD-K02031NANA
D1-35_05230876ddpC_2COG1173putative D,D-dipeptide transport system permease protein DdpCATGAACAACCTCATTGTGAAATCGCCGACGGCGGCCGCTGCGCTGGGGTTGGGCAAAGACGCCCACGCAAAGTCCTGGCTTGGCCTGGCCGGCGCCGCGATGTGTGTGATCTGGTTGCTGGTGGCGATTTTCGGCCCGTGGCTGGCGCCGCATCCGGTGGGCGAAGTGGTCTCCGACAACGTCTTCGACAGCCTCAGCGCGACGTACCCGTTCGGCACCGATTACCTGGGCCGCGACATGCTCAGCCGGGTTCTTGTCGGCGCGCGTTTCACCGTCGGCCTGGCGTTGGTGGCCGCGGTGCTGTCGAGCACCCTGGGAACCAGTCTGGCGCTGTTGTCGGTGGTGTCGCCAAAGTGGCTGGATGAGCTGATCAGCCGCCTGATGGACGCGTTCATTTCGATCCCGAGCAAGATGCTGGCGCTGATCATGGTCTCGGCCTTCGGCTCCTCGGTCACCTTGCTGATCTGCACGGCGGTGTTGAGCTACACCCCCGGTGCCTTCCGCATCGCCCGCAGCATGGCGGTGAATATCGAAGCGCTGGAGTACGTGCAAGTGGCCCGTACCCGGGGCGAGCGCCGACTGTATATCGCCTGCGTGGAAATCCTGCCGAATATCCTCAATCCGGTGCTGGCGGACCTGGGCCTGCGTTTTGGTTTCATCGTGCTGCTGCTCAGTGGCATGAGTTTCCTCGGGCTGGGCGTGCAACCGCCGGATGCCGACCTTGGCTCGCTGGTGCGCGAGAACATCGGCGGCCTCAATCAGGGGGCGCCGGCCATCGTGATTCCTGCCCTGGCCATCGGCACCCTGACCATCGGCGTGAATCTGTTCATCGACCGGTTGTCGTCGCGACGTAGCCGACGTACGGGAGGTCATTGAMNNLIVKSPTAAAALGLGKDAHAKSWLGLAGAAMCVIWLLVAIFGPWLAPHPVGEVVSDNVFDSLSATYPFGTDYLGRDMLSRVLVGARFTVGLALVAAVLSSTLGTSLALLSVVSPKWLDELISRLMDAFISIPSKMLALIMVSAFGSSVTLLICTAVLSYTPGAFRIARSMAVNIEALEYVQVARTRGERRLYIACVEILPNILNPVLADLGLRFGFIVLLLSGMSFLGLGVQPPDADLGSLVRENIGGLNQGAPAIVIPALAIGTLTIGVNLFIDRLSSRRSRRTGGHPGPT0004450_9761DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004450-ddpC|appC-K02034NANA
D1-35_05231957gsiC_2COG0601Glutathione transport system permease protein GsiCATGAATAGCAACACACTGTGGTTGATCGGCCGCCGTCTGGGGGCGGCGGTCGTGACCTTGTTGATTGTCTCGATGGTGGTGTTCGCCATCACGGCGGTACTGCCGGGGGACGCGGCGCAACAGGCGCTGGGACAGTTCGCCACGCCGGAACAGGTGGCGGCCCTGCGGGCGAAAATGGGCCTGGACCAGCCCGGTGTGTTGCGTTATCTGCATTGGCTGACGAGCCTGCTCAGCGGTGACCTGGGGATGTCGATGTCCAACGCCACGCCGGTAATCGAGCTGATGGCCGGCCGGGTTCCCAACACCTTGATGCTCGCCGCTGCCACGGCCCTGGTGTCGGTGCCCGTGGCGTTGACCCTGGGGATCGGCTCGGCCATGGGCCGAGGCGGGCGCCTCGACAGCTTCCTGAGTTTTTTCACCTTGACCATGGTGGCCGTGCCGGAGTTTCTGGTCGCCACCTTGGCGGTGCTGATATTCGCCGTGAACCTGGGTTGGTTATCGGCGCTGTCCTATGCCAGTGACATCACGTCCCCCTGGCAATTCATGCGCACCTACGCATTGCCGGTGATGACGCTGTGCTGCGTGATTGTCGCGCAAATGTCACGCATGACCCGCGCAGCCGTGATCGATCAGCTCGACAGCCCTTACGTGGAAATGGCCCGGCTCAAGGGCGTGAGCAATATCCGTATCGTGCTCCGGCATGCCTTGCCCAATGCCATCGGCCCCATTGCCAATGCCATCGCCCTGAGCTTGTCCTACCTGTTGGGCGGGGTGGTGATCGTCGAAACGATCTTCAACTATCCCGGCATTGCCAGCTTGATGGTCGATGCCGTGACCAACCGCGACATGGCCCTGGTTCAAGCCTGCACCATGTTGTTCTGTACGGCGTATCTGGCGTTGGTGTTGATCGCCGACCTGTGCGCGATTCTTTCCAATCCGAGGCTGAGAAACCAATGAMNSNTLWLIGRRLGAAVVTLLIVSMVVFAITAVLPGDAAQQALGQFATPEQVAALRAKMGLDQPGVLRYLHWLTSLLSGDLGMSMSNATPVIELMAGRVPNTLMLAAATALVSVPVALTLGIGSAMGRGGRLDSFLSFFTLTMVAVPEFLVATLAVLIFAVNLGWLSALSYASDITSPWQFMRTYALPVMTLCCVIVAQMSRMTRAAVIDQLDSPYVEMARLKGVSNIRIVLRHALPNAIGPIANAIALSLSYLLGGVVIVETIFNYPGIASLMVDAVTNRDMALVQACTMLFCTAYLALVLIADLCAILSNPRLRNQPGPT0004445_9394DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004445-ddpB|appB-K02033NANA
D1-35_052321647sgrRHTH-type transcriptional regulator SgrRATGACTGACAAAAAAAACAGTATCGATACCCAGCTGATAACAGGTACGGAAAGTCTGCGCGTTTTCGAAGGGCTCAATCGCGGCATGTCCCGCCGCAATGCATTGCAGATGCTCGGGTTGGCCGGGGTGGCCGTGGCGGGCGCCGGTAGCCTGTTCGGCACCGCCGGCAAGCTGTTCGCCGATGAGGAGGCCGCCAGCCCAGGCAAAGGCAAGCCGGGCGGGCGCATCCGCGTCGCCGGCTCGACCAGTTCCACCGCCGACACCCTGGACCCGGCCAAAGGTTCGTCGTCCACCGACTACGTACGCCATTACATGTTCTACAACGGGCTGACGCGTTTTGACAGCCACATGGTGCCGCAACTGGAACTGGCCGAGCGTATCGAGACCACGGACGCCACGCTCTGGGTGATCAGCCTGCGCAAGGAAGTGACCTTCCACAACGGCAAGGCATTGACCGCCGCCGACGTGGTGTTCTCGCTGTTGCGTCACAAGGACCCGATCACCGGCTCCAAGGTCTTGCCGCTGGCGTCGCAGTTCGCCGACGTCAAAGCCGTCGGCACCCATGAAGTGCAGATTCAGTTGAGCGGCCCCAACGCTGAACTGCCCTCGGTCCTTGCCGTCTCGCACATGTTGATCGTGCCCGAGGGCACCAGCGATTTCACCCAGGGCATCGGTACCGGCCCGTTCAAGGTCAAGGAGTTCAAGCCCGGGGTGCGTTCGGTTGGCGTGCGCAACAGCAATTACTGGAAGCCCGGCTTGCCGTACCTGGACGAGATCGAATTCATCGGCATTGCCGACGAATCGTCACGGATCAACGCCCTGCTGTCAGGGGACGTGCACATCGTCAACGAGGTCAACCCGCGTTCGACGACCCGCATCAAGGCCAGCGCCCGGCATCGGGTCATCGACTCACCGTCGGGCAACTACACTGACCTAATCATCCGTCAGGACCAGATGCCCGGCAAAAGCCCGGAGTTCACCCAGGCGATGAAGCTATTGCTGGACCGGGAACAGATCAAGTCGGCGATCTTCCGTGGCTATGCGCGGGTCGGCAACGACCATCCGATCGCGCCCGGAGCACGCTTCTTCAACGCCGATTTGCCGCAACGGGCTTACGATCCTGAACAGGCCAGGTCGTTGTTGAAGAAGGCCGGCATGGAAAGCATCAGCATGCCGCTGATGTGCTCGCCCGCGGCGACCGGTTCGGTGGACATCGCGGTGCTGCTGCAGCAGTCCGCCAAGGAAGCCGGGCTCAAGCTCAACGTCAACCGCCTGCCGAGCGATGGCTACTGGTCCAACCACTGGGCCAAGCACCCGCTGAGCTTTGGCAACATCAATCCGCGACCGAATGCCGACATGCTGTTCTCGCAGTTCTTCCAGTCGAGCGCGCCCTGGAACGAATCAGGCTGGAAAAACGAGCAGTTCGACCAATTGTTGATACAGGCCCGCGGTGAAACCGACGAGGCCAAGCGCGGCAAGATGTACGCCGACATGCAGGTGCTGGTGCATGAGCACGGAGGTATCGGCGTACCGGTGTTCATCAGCAACATCGACGGTGCCGACCAGCGCGTAAAGGGCTACGGCGCCAATCCCCTGGGCGGTTTCATGGGCTACATGTTTGCCGAGCAGATCTGGCTGGATGCCTGAMTDKKNSIDTQLITGTESLRVFEGLNRGMSRRNALQMLGLAGVAVAGAGSLFGTAGKLFADEEAASPGKGKPGGRIRVAGSTSSTADTLDPAKGSSSTDYVRHYMFYNGLTRFDSHMVPQLELAERIETTDATLWVISLRKEVTFHNGKALTAADVVFSLLRHKDPITGSKVLPLASQFADVKAVGTHEVQIQLSGPNAELPSVLAVSHMLIVPEGTSDFTQGIGTGPFKVKEFKPGVRSVGVRNSNYWKPGLPYLDEIEFIGIADESSRINALLSGDVHIVNEVNPRSTTRIKASARHRVIDSPSGNYTDLIIRQDQMPGKSPEFTQAMKLLLDREQIKSAIFRGYARVGNDHPIAPGARFFNADLPQRAYDPEQARSLLKKAGMESISMPLMCSPAATGSVDIAVLLQQSAKEAGLKLNVNRLPSDGYWSNHWAKHPLSFGNINPRPNADMLFSQFFQSSAPWNESGWKNEQFDQLLIQARGETDEAKRGKMYADMQVLVHEHGGIGVPVFISNIDGADQRVKGYGANPLGGFMGYMFAEQIWLDAPGPT0004430_6568DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-UNKNOWN_AI_PERCIPITATION-DPP-MEDIATED_PATHWAY,PGPT0004430-ddpA|ABC_PE_S-K02035NANA
D1-35_052331275puuB_7Gamma-glutamylputrescine oxidoreductaseATGGGCAGTGAGTCTTATTGGCTCGATACCGCACCGGCATTTACCGGTGCCCAGCTCGGTGCGTTACCCGGGCAGGTCGATGTGGCCATCGTCGGTGGCGGTTTCACTGGCCTGGCCGCCGCCCGGTCCCTGGCCTTGAAGGGCGCCAATGTGGTGGTGCTGGAAGGCGGGCGGGTCATTGGCGAGGCTTCGGGGCGCAATGGCGGCCAGTGCAACACCGGCGTCGCCCAGGACTACGCGTCATTGAGTGCCAGCCTCGGCGCCGACAAGGCGCGCGCCTATTACCAGGCCTATGAAAGCGCCGTGCAGAGTGTCGTCTCGCTGGTGGAGCAAGAGCAGATTGCCTGCGACTTCAAGCGCAACGGCAAGCTCAAGTTGGCGGCCAAGCCCCTGCACTACGAAGGGTTGGCACGTACTTGCGAATTGATCCGGCGCGAGGTCGATGCCGAGGTCGAGTTGCTGTCTGCGCAGGAAGCTCGGGCTGAAGTGAACTCGGCCCAGTTCCATGGCGGCTTGCTGCAGCGTAACGGCGTGCAGATGCATGTCGGACGCTTCGGGGTCGGATTGGCCGAGGCCGCGGCCCGTCACGGCGCGCTGATTTTCCAAGGCGTATCGGTAACGGACTGGAAAACCAGCGCCGGTGGTTATCGGGTCAATACCACCAAGGGTTCGCTCCAGGCCACGCAGATCCTGCTGGCCACGGGAACCTGCCAGCAGGGTGGGTTGGGTTGGTATCGGCGGCGGATCGTGCCGGTGGGCAGTTTTGTGATCGCCACCGAGGTGTTGCCGCAGGCCCTGATCGACAGTTTGCTGCCGGCACACCGCTCCTATGTCACCAGCCGGATGATCGGCAACTACTTTCGGATCACCCCGGACAACCGCTTGCTGTTTGGCGGGCGGGCGCGGTTCGCCATGTCCGACAGTGTGTCCGATGCCAAGAGCGGCAAAGTCCTGCACGCGGCGATGGTGCAGATGTTTCCGCAACTGGCCCACGTGAAGGTCGAGTATTGCTGGGGCGGATTGGTCGACATGACCTCCGATCGGCTGCCCCGGGCCGGCCAGCACGGCGGCGTCTATCACTCCATGGGCTACAGCGGCCATGGCGTGCAGATGTCGGTGCACATGGGCCAGGTCATGGCCGACGTCATGGCCGGGAAAGTCGAGGCCAACCCTTGGCGCGAACTCGACTGGCCGGCCATCCCCGGACATTTTGGCAAGCCCTGGTTCCTGCCGCTGGTAGGTGCGTATTACCGCCTTCAAGACTATTTGCACTGAMGSESYWLDTAPAFTGAQLGALPGQVDVAIVGGGFTGLAAARSLALKGANVVVLEGGRVIGEASGRNGGQCNTGVAQDYASLSASLGADKARAYYQAYESAVQSVVSLVEQEQIACDFKRNGKLKLAAKPLHYEGLARTCELIRREVDAEVELLSAQEARAEVNSAQFHGGLLQRNGVQMHVGRFGVGLAEAAARHGALIFQGVSVTDWKTSAGGYRVNTTKGSLQATQILLATGTCQQGGLGWYRRRIVPVGSFVIATEVLPQALIDSLLPAHRSYVTSRMIGNYFRITPDNRLLFGGRARFAMSDSVSDAKSGKVLHAAMVQMFPQLAHVKVEYCWGGLVDMTSDRLPRAGQHGGVYHSMGYSGHGVQMSVHMGQVMADVMAGKVEANPWRELDWPAIPGHFGKPWFLPLVGAYYRLQDYLHNANANANANA
D1-35_05234669hypothetical proteinATGAGCTTCCTTCGCCCCAAGTTCATTACCTTTGACTGCTATGGCACGTTGACCAACTTTCAGATGGGGACCATGACGCGCGAGCTGTTCGCCGATCGGGTCCCAGCCGAGCAGATGGATCAGTTCGTCAAGGATTTCTCGGCCTACCGGCTGGACCAGGTGATGGGCGACTGGCGGCCCTATGATGAAATTCTCAAGACTGCCCTGGCCCGGGTCTGCAAGCGTTGGGGGGTCGAATACAAAGGCGAAGGCCAGCTCTATTACGACGCCGTACCGACCTGGGGCCCACATGCCGACGTACCGGCAGGCCTGTCGAAAATCGCCGACAAGATTCCCCTGGTGATTTTCTCCAATGCGATGGACGAGCAGATCATGTCCAACGTCGACAAGCTCGGCGCACCTTTTCATAAAGTCTTCACGGCTCAACAGGCCCAAGCCTACAAGCCACGTCTGGCGGCCTTCGAGTACATGCTCGATAACCTCGGCTGCGGGCCGGAGGATGTCCTGCATGTGTCTTCGAGCTTCCGCTACGACCTGATGTCGGCCCACGACATGAAGATCAAGCACAAAGCCTTCGTGGCCCGGGGTCATGAGCAACCGGCGAACGCGGCCTTTGGTTACCACCAGATCCCGGACATCGGCGGGTTGGCCGGTCTGGTCGGTCTCTGAMSFLRPKFITFDCYGTLTNFQMGTMTRELFADRVPAEQMDQFVKDFSAYRLDQVMGDWRPYDEILKTALARVCKRWGVEYKGEGQLYYDAVPTWGPHADVPAGLSKIADKIPLVIFSNAMDEQIMSNVDKLGAPFHKVFTAQQAQAYKPRLAAFEYMLDNLGCGPEDVLHVSSSFRYDLMSAHDMKIKHKAFVARGHEQPANAAFGYHQIPDIGGLAGLVGLPGPT0006885_2168DIRECT EFFECTBIO-REMEDIATIONXENOBIOTICS_BIODEGRADATIONXENOBIOTIC_HYDROCARBONS|OIL_DEGRADATIONXENOBIOTIC_DICHLOROETHANE_DEGRADATION,PGPT0006885-dehI-K01560NANA
D1-35_052351326abo_24-methylaminobutanoate oxidase (formaldehyde-forming)ATGCCTGCACCGTTAACTTCCGTAGAGACGAATTCTGAACTGCCGACGCACGCTGACGTTGTCGTGATCGGCGGCGGCATTATCGGAACCTTCACGGCCTATTACCTGGCAAAGCGCGGCCTGAAGGTCGCGCTGGTGGAGAAGGGGCGCGTGGGGGCGGAGCAGTCGAGTCGAAACTGGGGTTGGTGCCGTCAGCAGAATCGGGACGCTCGTGAGCTGCCGCTGTCGACCAAGAGCCTCGAACTTTGGGAACAGTTCGCCGCGGAGACCGGCGAGGACACCGGATTCAGAAGGTGTGGCTTGCTCTATCTGAGCAACAACGAGAAAGAACTGGCGGGTTGGGCAAAGTGGGGTGAGTTTGCCCGTACCGTCAATGTCACAACGCACATGCTGACGGCGGAACAGGCTGCAGAACATGGCCGGGTGACTGGCAAGTCCTGGAAAGGCGGGGTCTTCTCGCCGACCGACGGTACGGCAGACCCGTCCCGTGCCGCTCCGGCGGTTGCGCGGGCGATCATCAAGCTGGGCGGCACGGTGCATCAGGGCTGCGCTGCCCGTGGCGTCGAGACCGAAGGCGGCCGGCTATCGGCGGTCGTTACCGAAAAGGGCACCATTCGCACCAAGCTCGCGGTGCTGGCCGGTGGCGCATGGGCGTCCTCGTTCTGCCGTCAGTACGGCATCCGGTTTCCCCAGGCGTCCATTCGCCAGACGATACTGTCGATCTCCAAGGGCGCCGAAGAGATACCGGACGCACTCCACACGGATGAGGTCTCCATGACCCGTCGCTCTGATGGCGGTTTCACGCTGGCCATCAGTGGCAGAGGGCGCGTTGACCCGACCCCGCAGCTGTTGCGGTTCGCTCCGCAGTTCCTGCCGATGTTCCAGCGTCGCTGGCGCAAGCTGGCGCCCGGTGGTCTGCAAGGCTTCCAGTCGGGGCATGAAGGCCTGGGCCGCTGGCGGTTGGACCAGCCAACCCCGATGGAGCGGATGCGCATCCTCGATCCTGCAGCCGATGCATCGGTTGTCGAGCTGACTTACAAGCGCGCGGTCGACCTGATCCCGATGCTGAAAAACTCGTCAGTCACCGCTGCCTGGGCAGGTTATGTGGACAGCACGCCTGATGGCGTCCCGGGCATTGGCGAAATAGCGAGCCTGCCTGGCCTGGTGCTGGCGGCGGGGTTCAGTGGCCATGGCTTCGGCATCGGCCCTGGCGCGGGCCACTTGATCGCCGACATTGTCAGCGACATGCCTCCCCTGGTTGACCCGCGTCCCTATCACCCGGATCGATTCCAGTCTTCAGCCTGGGGCAAAGTCGCGGAGTTCTGAMPAPLTSVETNSELPTHADVVVIGGGIIGTFTAYYLAKRGLKVALVEKGRVGAEQSSRNWGWCRQQNRDARELPLSTKSLELWEQFAAETGEDTGFRRCGLLYLSNNEKELAGWAKWGEFARTVNVTTHMLTAEQAAEHGRVTGKSWKGGVFSPTDGTADPSRAAPAVARAIIKLGGTVHQGCAARGVETEGGRLSAVVTEKGTIRTKLAVLAGGAWASSFCRQYGIRFPQASIRQTILSISKGAEEIPDALHTDEVSMTRRSDGGFTLAISGRGRVDPTPQLLRFAPQFLPMFQRRWRKLAPGGLQGFQSGHEGLGRWRLDQPTPMERMRILDPAADASVVELTYKRAVDLIPMLKNSSVTAAWAGYVDSTPDGVPGIGEIASLPGLVLAAGFSGHGFGIGPGAGHLIADIVSDMPPLVDPRPYHPDRFQSSAWGKVAEFNANANANANA
D1-35_052361461ald3-succinoylsemialdehyde-pyridine dehydrogenaseATGACTATTCAATCTTCGAATCGCTACAGTGTTGATCCGCAAACGGCTCAGCGGCTTTATATCAATGGCGGTTGGTCTGCGCCGGCCAGCCCGGCCAGCCTGGCGGTGGTCAACCCGGCGACAGAAGAAGTGGTCGCCCAGGTTGCCAGCGGTTCTGCCGAGGATATCGATCGGGCGGTAGCAGCGGCGCGCGCCGCGTTTGCCGGTTGGTCTGCCACCTCCACGGCGTCGCGCGCGCTGCTGCTGGGCAAGATCCATGAGCTTATCCTTGAGCGAAAAGAAGCGTTTGCCCAGGCGATCTCCCTGGAAATGGGCTCGGCCATCGCTGCTGCTCGGGCAATGCAGGTACCCTTGGCGGCCGAACACGTTCGGGTCGCGCGCGATCTGCTGTCCACTTATTGCTTCCAGACGCTCGAGGGCACGACCGCAATCCGACGCGAACCCATAGGCGTCTGCGGCTTGATCACGCCCTGGAACTGGCCGCTTTACCAGATCACAGCAAAAGTCGCCCCGGCACTGGCGGCCGGATGCACGGTGGTGCTCAAGCCCAGTGAGCTGTCACCGCTGAGCGCCCTGCTGTTTGCACAGGTGGTGCATGACGCGGGCCTGCCACCGGGGGTCTTCAACCTGGTGAACGGCAGCGGCCATGTGGTCGGCGCCGCGATGGCCGCACACGCTGATATCGACATGATTTCGATCACCGGCTCAAACCGCGCGGGCACGCTGGTGGCACAGGCGGCCGCCCCGACGGCGAAGCGGGTCGGCCAGGAACTGGGCGGCAAATCGCCGAATATATTGCTTCCCGATGCGGACTTTGCCAAAGCCGTCCCGGCCGGCGTGCTGGCGGCGCTGCGCAACGTTGGACAATCATGCAGCGCCCCGACCCGCATGATCGTTCCCAAGGACCGACTGGCTGAAGTCGAAGCGCTGGCGGCCGCAACCGCCAACGCGATCATCGTTGGTGATCCGCAATCGCCGGAAACGGTACTCGGCCCGATTGCCAATCAAGCCCAGTTCAATCGCGTGCAGGCGATGATCGAGACCGGCCTGCACGAAGGCGCAAAACTGCTTTGCGGCGGACTTGGACGCGTGCCCGGTTTTGAAAAGGGTTACTACACCCGCCCGACAGTGTTCTCCGAGGTGGATAACGCCATGCGCATCGCCCAGGAGGAAATCTTCGGGCCGGTGCTGTGCATCATTGCCTATGAAACGATCGACGAGGCGGTGGCTATTGCGAACGATACGGTCTATGGGCTGGGCGCCCACGTCCAGTCACAGGACCTTGACCTGGCGCGCGCGGTGGCTTCTCGGATCCGCGCCGGGCAAGTGCTCCTGAATTACCCGGCCTGGAATCCGATGGCGCCGTTCGGTGGTTACAAGCGATCGGGAAACGGGCGTGAGTACGGCGTCTTCGGGCTTGAGGAATATCTGGAAACCAAGGCCATCGTCGGGTTCGGCTGAMTIQSSNRYSVDPQTAQRLYINGGWSAPASPASLAVVNPATEEVVAQVASGSAEDIDRAVAAARAAFAGWSATSTASRALLLGKIHELILERKEAFAQAISLEMGSAIAAARAMQVPLAAEHVRVARDLLSTYCFQTLEGTTAIRREPIGVCGLITPWNWPLYQITAKVAPALAAGCTVVLKPSELSPLSALLFAQVVHDAGLPPGVFNLVNGSGHVVGAAMAAHADIDMISITGSNRAGTLVAQAAAPTAKRVGQELGGKSPNILLPDADFAKAVPAGVLAALRNVGQSCSAPTRMIVPKDRLAEVEALAAATANAIIVGDPQSPETVLGPIANQAQFNRVQAMIETGLHEGAKLLCGGLGRVPGFEKGYYTRPTVFSEVDNAMRIAQEEIFGPVLCIIAYETIDEAVAIANDTVYGLGAHVQSQDLDLARAVASRIRAGQVLLNYPAWNPMAPFGGYKRSGNGREYGVFGLEEYLETKAIVGFGPGPT0006875_5759DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-GLYCEROLIPID_REMODELLINGCE-REMODELLING_GLYCEROLIPID_DEHYDROGENASE|DEHYDRATASE_ACTIVITY,PGPT0006875-aldH|dhaS-K00128NANA
D1-35_05237693hchAProtein/nucleic acid deglycase HchAATGAAGATTCTAATGGTCCTTACATCTCACGATCAGTTGGGCGACACCGGCAAGAAAACCGGCTTCTGGCTGGAAGAATTCGCCGCTCCCTATTACGTGTTCGTCGATGCCAAGGCCACGGTCACGCTTGCGTCGCCGAAGGGCGGGCAACCACCGCTGGACCCCAAGAGCGATGAAGAGGACGCCCAGACTGATGCAACCCGTCGCTTTGGCACCGACACCCAGGCCCAAGCGGCGTTGGCCAACACCGTGCCGCTGGGCGAGGTCGACCCCTATGACTTCGATGCGGTGTTTTATCCCGGCGGTCATGGCCCCCTGTGGGATCTCGCCGAGGACACCGACTCCAAGACCCTCATCGAAGCGTTTTACGCAGCGAATAAACCCATCGCGGCCGTCTGCCACGCGCCCGGAGTGTTCAAGAACGTCAACGCCCCGGATGGCCAGCCGGTGGTCAAGGGTAAAAAAGTCACCGGTTTCACCAATTCCGAAGAAGAGGCGGTGGGGCTGACCGAAGTGGTCCCGTTCCTGGTCGAGGATATGCTCAAGGCCAAGGGCGGCGAGTATTCCAAAGGGGCGGACTGGGGCAGCCATGTGGTCGAGGACGGGCATCTGATCACCGGGCAGAATCCCGCCTCATCCGAAGCGGCCGCCAAGGCGTTGCTCAAGCGGTTGGAGGCGGAACAGGCGGGTTGAMKILMVLTSHDQLGDTGKKTGFWLEEFAAPYYVFVDAKATVTLASPKGGQPPLDPKSDEEDAQTDATRRFGTDTQAQAALANTVPLGEVDPYDFDAVFYPGGHGPLWDLAEDTDSKTLIEAFYAANKPIAAVCHAPGVFKNVNAPDGQPVVKGKKVTGFTNSEEEAVGLTEVVPFLVEDMLKAKGGEYSKGADWGSHVVEDGHLITGQNPASSEAAAKALLKRLEAEQAGNANANANANA
D1-35_052381254nicP_5Porin-like protein NicPATGAGCAATTACCTGCCCCGCGCGGCCTGGTTTCCGATCCTCGGCCTGTTGCCGCTGTCCCCGGCCAGCGCCGAAGGTTTCATCGACGACAGCAAGTTGAAGTTGCAACTGCGCAACGTCTACTTCAACGAGAACTTTCGCGACGAACATGGCATGAGCGCACGGGCCGCCAAGACCGCCAAGAGCGAGCGAACCGAATGGGCCCAGGGTTTCCTGTTGGATTACCAGTCAGGTTATACCCCGGGTACCGTCGGCTTCGGCGTCGATGCCTTGGGCCTGCTGGGGGTCAAGCTTGATTCCGGGCGCGGGCGCAGCGGCACGGGCCTGCTACCGGTGCATGACGACGGGCGCGCCGCCGACGAGTTTGCCAGCGCCGGCATGACCGCCAAGGCCCGGGTGGCCAAGACCACCCTCAAGCACGGCACCCTGTTGCCGAAGAACCCGGTGCTGATCTACAACGACGCGCGCCTGTTGCCGCAGACCTACCAGGGGACCCAGATCAACAGCAGCGACATCGACAATCTCAGCCTGACTGGCGGGCACCTGCAGCGTTTCAAACTGCGCGATTCAAGCGACAGCATGCCGATCGTGCCCGACGGTTATGGTGGCGATCAGTCAGGCGACTTCAGCTACGCGGGCGCCGACTACAAGTTGGGCAAGACCCTGCGCCTGAGCTACTTCTATGGCGAGCTGGAGAACTTCTATCGACAGAACTTCGCTGGCATCCAGCACGACCTGCCGCTTGGCCCCGGGGTTCTCACCAGCGATCTGCGCTATTTCAACAGCGCCGATTCCGGCTCGGCCTACGGCGGGAACATCGATAACGACATGCTCAGCGGGCTGCTGTCCTATGCCGTCGTGGGCCACACCTTCAGCGCCGGCTACCAGAAACTCAGCGGGGAAGGGGGTTTGCCTTATATCAGCGGGGCGACGGTCTATTCCTTCAGCAATGCCGGGATCGGCAAATTCATCGAGGAAGACGAGAAGACCTGGATGCTCGGTTACGGCTACGACTTCGCGCGCCTTGGCATTCCCGGCCTGACGTTTTCCAGCCGTTATCTCAGCGGTGACGATGGCAAGTCCAACAGCGCGGTGAAGGAATGGGAGCGTGATGCAGAAGTGGCCTATGTCGTGCAGCAGGGCACTTTCAAGGGACTGGGTGTGAAAATGCGCAACTATGTCTATCGCTCGGATTTTGCCAGGGGCCGTGACAGTAATCGTCTCTACCTGACCTACGATGTTGCGCTTTGGTAGMSNYLPRAAWFPILGLLPLSPASAEGFIDDSKLKLQLRNVYFNENFRDEHGMSARAAKTAKSERTEWAQGFLLDYQSGYTPGTVGFGVDALGLLGVKLDSGRGRSGTGLLPVHDDGRAADEFASAGMTAKARVAKTTLKHGTLLPKNPVLIYNDARLLPQTYQGTQINSSDIDNLSLTGGHLQRFKLRDSSDSMPIVPDGYGGDQSGDFSYAGADYKLGKTLRLSYFYGELENFYRQNFAGIQHDLPLGPGVLTSDLRYFNSADSGSAYGGNIDNDMLSGLLSYAVVGHTFSAGYQKLSGEGGLPYISGATVYSFSNAGIGKFIEEDEKTWMLGYGYDFARLGIPGLTFSSRYLSGDDGKSNSAVKEWERDAEVAYVVQQGTFKGLGVKMRNYVYRSDFARGRDSNRLYLTYDVALWPGPT0023610_2DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GALLATE_RESISTANCE,PGPT0023610-galP-K16517NANA
D1-35_052391305citN_4COG2851Citrate transporterATGCTCGCTTTACTTGGCTTGGCCATGGTGGTGGTCTTTACCTTCCTGATAATGACCAAACGGCTGTCGCCGATCGTCGCCCTGACAATCGTGCCGATCGTCTTCGCAATACTGGGCGGGTTTGGCGGAACCACCGGCAAGATGATGCTGGACGGCCTGAAGATGGTCGCGCCGTCGGCGGCGCTGCTGCTGTTCGCGATCCTGTTTTTCGGCCTGATGATCGACGCCGGCCTGTTCGACCCGCTGATCCGCAAGATTCTCAAACGCGTCAATGGCGACCCGATGAAGATCGCCGTGGGCACCGCACTGTTGTCATTGCTGGTGGCCCTGGACGGTGACGGCACGACGACCTACATGATCACCTGCGCCGCGATGCTGCCGCTGTACAAGCGCATCGGCATGAATCCGATGATCCTGGCGACCGTCTCGATGCTGTCGCTGAGCATCATGAGCGGTATGACGCCCTGGGGTGGGCCGGCGACCCGCGCCATCGCGGCGTTGGGCCTGGATGCCGGCGAGTATTTCGTGCCGCTGCTGCCGACCATGATCGGCGGTGCCGCCTGGGTGGTGTTCACCGCCTACCTGCTGGGCCGCGCCGAGCGCAAGCGCATTGGCAATATCCAGCTGCAAAGCGGTGGCGGCGACTGCTACATCAAGGCGATTCTTGAAGACACGCCGCACAAGCGTCCGAAGCTGGCCTACGTCAATCTGCTGCTGGTGATTGCGGTGATGGTCGCGCTGGTGATGGGGCTGATGCATTCGGCGATCCTGTTCCTGATCGGTTTTGTCCTGGCGCTGGTGATCAACTACCCGCAACTGGATATCCAGAAGGAGCGCATCCTCGCTCATTCGGGCAACGCCATGACCGTGGTCTTGCTGGTGTTCGCGGCGGGCATTTTTGCCGGGATCTTCTCCGGGACCAAAATGGTCGATGCCCTGGCGCAGACCCTGGTCGACTGGATCCCGCCATCCTGGGGCCATCTGTTCCCACTGGTGGTGGCGATTACCAGCATGCCGCTGACCTTCGTGCTGTCCAATGATGCCTACTACTTCGGTGTGGTGCCGATCCTGGCGAACGCCGCTGCTGCCTACGGCATTCATCCGGTGGAAATCGCCCGGGCGTCGATTCTCGGCCAGCCGGTGCACCTGATGAGTCCGCTGGTGGCCTCGACCCTGTTGCTGGTGGGCATGGTTGACCGCGACCTCGGCGACTTCCAGAAAGCCACCCTCAAATGGGCGGTGCTCACCTCCCTGGTGATTACCGCGTTGGCCCTGCTGACCGGGGCGCTGACGCTGTTCTCCTGAMLALLGLAMVVVFTFLIMTKRLSPIVALTIVPIVFAILGGFGGTTGKMMLDGLKMVAPSAALLLFAILFFGLMIDAGLFDPLIRKILKRVNGDPMKIAVGTALLSLLVALDGDGTTTYMITCAAMLPLYKRIGMNPMILATVSMLSLSIMSGMTPWGGPATRAIAALGLDAGEYFVPLLPTMIGGAAWVVFTAYLLGRAERKRIGNIQLQSGGGDCYIKAILEDTPHKRPKLAYVNLLLVIAVMVALVMGLMHSAILFLIGFVLALVINYPQLDIQKERILAHSGNAMTVVLLVFAAGIFAGIFSGTKMVDALAQTLVDWIPPSWGHLFPLVVAITSMPLTFVLSNDAYYFGVVPILANAAAAYGIHPVEIARASILGQPVHLMSPLVASTLLLVGMVDRDLGDFQKATLKWAVLTSLVITALALLTGALTLFSPGPT0001500_876DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_TRANSPORTPLANT_DERIVED_CITRATE_TRANSPORT,PGPT0001500-TC_CITMHS|CitMHS_family|citN-K03300NANA
D1-35_052401083ybhHCOG2828Putative isomerase YbhHATGCAACGAATTCCTTGTGTACTCATGCGCGGCGGCACGTCCAAAGGTCCGGTATTTCTCGCCTGGGATTTGCCTGCGGTGATCGCCGAACGAGACGAGTTGCTGCTCAACCTGATGGGTTCCGGTCACGAGCTGGAAATCGATGGCATCGGCGGTGGCAGTCCGCAGACCAGCAAAGTGGCGATCGTCAGTCCTTCGCTGCATCCGGAGGCCGATGTGGATTACCTGTTTGTGCAGGTCATGGTGTCCCAGCGGCGGGTCGATACCGCGCCCAACTGCGGCAACATGCTCTGCGCCGTCGGCCCGTTCGCCATCGAGCAGGGCCTGGTCAAGGCGACAGGCGAGCTGACCCGGGTGCGTATCCGCAACCTCAACACCGGCACCTTCGTCAACGCCGAGGTGCAGACTCCGCAAGGCAAGGTCAGCTATGAGGGCGACACCGCCATCGATGGCGTGCCCGGCACGGCGGCGCCAGTGCAACTGACCTTCCTCGACGCCGCGGGCAGCAAGACCGGCAAACTCTTCCCGACCGGGCAACCCCTTGACCTGATCGACGGCGTCCCGGTGACCTGTATCGACATGGCCATGCCGATGCTGATCATCGAGGCCAGCCAACTGGGCAAGCGTGGCGACGAGAGTCCGGCCGAACTGGACGCCGACAAGGCTTTCCTGCAACGCCTGGAGTCGTTGCGACTGAAAGCCGGGCTCGCGATGGGCCTGGGCGATGTCAGCGACAAGGTGATTCCCAAGCCGGTGCTGGTTTCCGCGGCCAAGAGCGGCGGGACGATTCAGGTGCGCTACTTCATGCCGCACAACTGCCACCGCGCGCTGGCGATTACCGGCTCGATCGGCCTGGCGACGGCGTGCGTGACCGACGGCAGCGTGGTCGCCAACCTGCTCGGCGGCGCCAGCGAGCCGCGCTTGCAGCGGGTGCGCATCGAGCACCCCAGCGGCGGCATCGACGTGGTGTTGTCCTACACCGGCGAAAAGGGTGAGACCATCCGTGCGTCGGTGGTCCGCACCGCCCGCCGGCTCTTCTCGGGTTTCGTCTACGCCACGGTTTCCCGGCGCCTGGCCGGATAGMQRIPCVLMRGGTSKGPVFLAWDLPAVIAERDELLLNLMGSGHELEIDGIGGGSPQTSKVAIVSPSLHPEADVDYLFVQVMVSQRRVDTAPNCGNMLCAVGPFAIEQGLVKATGELTRVRIRNLNTGTFVNAEVQTPQGKVSYEGDTAIDGVPGTAAPVQLTFLDAAGSKTGKLFPTGQPLDLIDGVPVTCIDMAMPMLIIEASQLGKRGDESPAELDADKAFLQRLESLRLKAGLAMGLGDVSDKVIPKPVLVSAAKSGGTIQVRYFMPHNCHRALAITGSIGLATACVTDGSVVANLLGGASEPRLQRVRIEHPSGGIDVVLSYTGEKGETIRASVVRTARRLFSGFVYATVSRRLAGPGPT0005280_144DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-GALLATE_RESISTANCE,PGPT0005280-galD-K16514NANA
D1-35_05241960cynR_4HTH-type transcriptional regulator CynRTTGCGTTTCACAAAAGAATTATTCTACGATCCGGGGCGTGTTCAAGCCCCTTCCCAGCGAGATAAAAACATGGAATACGAACTGCAGGACATCCGATCTTTCGTGAAAATCGCCGAACTGGGGAGTTTTCACGAGGCCGCCGATGCGCTGCACCTGTCCCAGCCAGCCCTGAGCCGGCGCATGAAAAAACTTGAGGAAGGCCTGGGAACGGCTCTGCTTGATCGCACCACGCGCAAGGTCAGCCTGACCAGCGTCGGGCGGGATTTCCTGCCCAAGGCGCGACGCCTGCTGGATGATTTCGACGACTCGATCCTCAACATCCGCGAGTTGGCGGAACGACAGATCGGCCGAGTGACCCTGGCCTGCATCCCGACGGCGGCGTTCTACTTCCTGCCCTCGGTGATCCGGCTCTACAACGAGCGCTACCCGAAAATTCGCATCCGCCTGCTGGACCTCAGCGCCAACGAAGGATTGGAGGCAGTACTGCGCGGCGAAGCCGATTTCGGCATTAACATGATGAGCGGCCAGCACCCGGACATCGAATTCGTGCCGCTGGTCAACGAACCCTTTGTATTGGCCTGCCGGCGCGACCATGAACTGGCAGGACGCAGCGCCGTGACCTGGTCGGAACTCAGCGACTATCGATTGATCGGCGTCGGGCGCCTGAGCGGCAACCGCATGCTGCTCGATCACGCGCTGTCTGGCCTGAGCTGGCGCCCGCAGTGGTTCTATGAAGTGCAACACCTGTCCACCTCCCTCGGCCTGGTCGAGGCCGGCCTCGGGGTGTCGGCGATGCCCAGCCTGGCAATGCCTGCCGGGGACCATCCGACACTGGTCAGCGTGCCGCTGATCGAGCCGGTGGTGAACCGGTCACTGGGCCTGGTTTATCGACGAGGGGCTTCGCTGTCGCCTGCCGCAGAGAAATTCGTCTCGATCCTGCTGGAGCAGTGGCCGCAGTAGMRFTKELFYDPGRVQAPSQRDKNMEYELQDIRSFVKIAELGSFHEAADALHLSQPALSRRMKKLEEGLGTALLDRTTRKVSLTSVGRDFLPKARRLLDDFDDSILNIRELAERQIGRVTLACIPTAAFYFLPSVIRLYNERYPKIRIRLLDLSANEGLEAVLRGEADFGINMMSGQHPDIEFVPLVNEPFVLACRRDHELAGRSAVTWSELSDYRLIGVGRLSGNRMLLDHALSGLSWRPQWFYEVQHLSTSLGLVEAGLGVSAMPSLAMPAGDHPTLVSVPLIEPVVNRSLGLVYRRGASLSPAAEKFVSILLEQWPQNANANANANA
D1-35_05242795ucpA_3Oxidoreductase UcpAATGCCTAACGCAATCGGACTTAACCCTGTGGCGCTCATCAGCGGCGTTGGCAGCGAGACGGGCATCGGCATGGCGATCGCCCGCAGGCTCGGTGCCGCCGGCGCCAGGCTGATCGTTACCGCCAGCAGCGCGCGCATCGAAGCGCGCATCGAGGAACTGCGCGCCGAAGGGTTTGAAGTCGCGGGACGGCCCCTCGACCTCACCGATGAAAAACAGGTACGCGAGTTTGGGTCGTGGGCGGAGTCCGTCTGGGGCCGGATCGACATCCTGGTGAACAACGCCGGCATGGCCATGCAAGGCAGTCCGGAGTCTTTCTCCGAGGTGGCAACCATGGACCTGGCGCTGTGGAACCTGTCGCTGGCGCGAAATGTGACCACGGCTTTCCTGCTGACCCGTGCCGTATTGCCCGGTATGCAGTCGCGCAATTACGGGCGCATCGTCAATATCAGCTCCACCACCGGCACCCGGTGCAGCAATCCTGGCGAGGCGGCCTACAGCGCCGCGAAGGCCGCCATGGTGGGCATGAGCATGGGCCTGGCGCTGGAAGTGGCCCGGCAGGGAATCACGGTGAACTGCGTCGCACCCGGCTGGATCGCCACCGGCTCGACCACCGCCGAGGAAGCCAATGCCGCGCGCTACACACCGATGCGCCGGGCCGGTCGCCCGGAGGAAGTCGCCGCGCTGGTCGCCTTCCTCGCCTCTGCCGAGGCGAGCTACATCACCGGGGAAGTGATGGTGGTGGACGGCGGCAACTGCCTGGTCGAGAACAAGGCGCCGGACCGGTCACTGGACTGAMPNAIGLNPVALISGVGSETGIGMAIARRLGAAGARLIVTASSARIEARIEELRAEGFEVAGRPLDLTDEKQVREFGSWAESVWGRIDILVNNAGMAMQGSPESFSEVATMDLALWNLSLARNVTTAFLLTRAVLPGMQSRNYGRIVNISSTTGTRCSNPGEAAYSAAKAAMVGMSMGLALEVARQGITVNCVAPGWIATGSTTAEEANAARYTPMRRAGRPEEVAALVAFLASAEASYITGEVMVVDGGNCLVENKAPDRSLDPGPT0003180_5492DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B7|BIOTIN_METABOLISMROOT_COLONIZATION-VITAMIN_B7|BIOTIN_BIOSYNTHESIS,PGPT0003180-ymfI|fabG|efpI-K00059NANA
D1-35_052431308dctA2_3COG1301C4-dicarboxylate transport protein 2GTGGAAATCTCCAAGTCTCGCTGGTACAGCCAGCTGTATGTGCAGGTACTGATCGGCATCGTGATCGGCGCAGCGATCGGTTACTTCATCCCGAATGTCGGGGCCAAGCTCCAGCCCTTCGCCGATGGCTTTATCAAACTCATCAAGATGCTCTTGGCGCCGATCATCTTCGGCACGGTGGTCGTGGGTATCGCCAAGATGGGCAGCATCAAGGAGGTCGGACGGATTGGTGTGAAGGCGCTGATTTACTTCGAGATCCTTTCGACCATTGCGCTGGTCGTCGGCCTGGTCGTGGTCAACGTCGTCAAGCCTGGCGTCGGGATGAACATCAATGCCAACTCCCTTGATGGCAGCTCCATCAGCAAGTACAGCCAGGCGGCGAGTGAGCAGGGTGGTACCGTCGAGTTCTTTCTCAACATCATCCCGCAGACGTTCGTCGGCGCATTCTCCAATGGCGTCATGCTCCAGGTGATTCTGCTGTCGGTGCTGATGGGTGTCGCCCTGGTGCAAATGGGCGAGACCAGCAAGCCGCTGATCAACACCATCGATCTGTTCCTGCAGGGGCTGTTCAGGATAGTCGCGATGGTCATGCGACTGGCGCCGATTGGCGCGGGTGCCGGCATGGCATTCACCATCGGCAAATACGGCATCGGCACCTTGCTGTCCCTGGGCCAGTTACTGGTCGCTCTGTATGTCACAACGCTGATTTTCATCGTCGTCGTGCTGGGCGCGGTCGCCCGGTGGTCGGGGATGCCGCTGATGCAGTTCCTTCGTTATTTCAAGGACGAGATCCTCATCACCCTGGGGACCTGCTCGACCGAAGCGGTGCTTCCGCGAATGATGGTCAAGCTGGAAAAACTCGGCTGCAGAAAGTCAGTCGTGGGCATGGTCTTGCCCACCGGGTACACCTTCAATGCCGATGGCACCTGCATCTACCTGACGATGGCGGCGATTTTCATCGCCCAGGCCACCAATACGCCGCTGACGTTCATGGACCAGATGATCCTGCTGGGTGTGTTCCTACTCACATCAAAAGGCTCGGCGGGTGTCGCCGGAGCCGGTTTCGTGACCCTCGCCGCGACACTCACCACGATTCATTCCATCCCCTTGGTCGGGTTGGTGTTGCTGCTCGGGATCGACCGATTCCTCAATGAAGCACGGGCCGTGACCAACCTGATCGGCAATGGCATCGGCACCCTTGCCATTGCCAAGTGGGACAATTCCTTCGACGTGCAAGCCTGCGAGCGTGAGATCGCGGCGATGAAACAAGAGAAGGCCGATCGAAAGGCGCTGTTGGCGCCTAAATGAMEISKSRWYSQLYVQVLIGIVIGAAIGYFIPNVGAKLQPFADGFIKLIKMLLAPIIFGTVVVGIAKMGSIKEVGRIGVKALIYFEILSTIALVVGLVVVNVVKPGVGMNINANSLDGSSISKYSQAASEQGGTVEFFLNIIPQTFVGAFSNGVMLQVILLSVLMGVALVQMGETSKPLINTIDLFLQGLFRIVAMVMRLAPIGAGAGMAFTIGKYGIGTLLSLGQLLVALYVTTLIFIVVVLGAVARWSGMPLMQFLRYFKDEILITLGTCSTEAVLPRMMVKLEKLGCRKSVVGMVLPTGYTFNADGTCIYLTMAAIFIAQATNTPLTFMDQMILLGVFLLTSKGSAGVAGAGFVTLAATLTTIHSIPLVGLVLLLGIDRFLNEARAVTNLIGNGIGTLAIAKWDNSFDVQACEREIAAMKQEKADRKALLAPKPGPT0001450_1722DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_TRANSPORTPLANT_DERIVED_ASPARTATE_TRANSPORT,PGPT0001450-dctA-K11103NANA
D1-35_052441170tarDCOG4948D(-)-tartrate dehydrataseATGCGTATCGTCGACATCCGCGAAAAAACTGTTTCCATCGCCTCTCCGATTGCCAATGCCTATATCGATTTTTCGAAAATGACCTGCTCGGTCGTGGCGGTTGTCACCGATGTGATTCGCGATGGCAAACCGGTGATCGGTTACGGTTTCAACTCCAACGGTCGCTACGGCCAGGGCGCGCTGATGCGTGATCGATTCCTGGCGCGAGTCACCGAGGCCGACCCGGAAACGCTGATCGACAAGGAATACGTCAACCTGGATCCGTTCGCCATCTGGAAAACCCTGATGACCAACGAGAAACCGGGTGGCCACGGTGAGCGTTCAGTGGCCGTCGGCACCATCGACATGGCGGTGTGGGACGCTGTCGCCAAGATCGAAGGCAAGCCGCTGTACCGCCTGTTGGCCGACCGTTATCGCGGTGGCGTGGCGGATGACAAGGTCTGGGTCTATGCGGCGGGTGGTTATTACTATCCCGGCAAGGACCAGAGCAAGCTCAAGGCAGAAATGCAGGGTTATCTGGATCGTGGCTATGACGTGGTCAAGATGAAGATCGGCGCGGTGCCACTGGACGAAGATATCCGGCGCATCGAAGCGGTGCTTGAAGTGGTCGGGGACGGGCGGCGACTGGCGGTCGATGCCAACGGCCGCTTCGATCTGGAGACCGGTATCGCGTACGCCGAAGCCATCAAGCAGTACAACCTCTTCTGGTACGAGGAAGTCGGCGATCCGTTGGACTACGCGCTCCAGGCCGAGCTCGCCAATCACTATGAACTGCCGATGGCGACCGGCGAGAACCTGTTCTCCCACCAGGACGCGCGCAACCTGCTGCGGCACGGCGGCATGCGTCCGGATCGCGATTACCTGCAGTTCGATTGCGCCCTGTCCTACGGGCTCGTGGAGTACATGCGCACCCTGAAAGTCATGGAAGAGATGGGTTGGTCTTCGCGCCGCGTGGTGCCCCACGGCGGCCATCAGATGTCCCTGAACATCGCTGCCGGTCTGCACCTGGGCGGCAACGAATCGTACCCCGATGTGTTCCAGCCGTTCGGCGGTTTTGCTGACGGCATCCGCGTGGAAAACAGCTACGTCGGCCTGCCGGATATTCCTGGCGTCGGTTTCGAAGCCAAGTCCGCCCTGTACGCGGTCATGCGCGAGCTGGGCGAGGGCTGAMRIVDIREKTVSIASPIANAYIDFSKMTCSVVAVVTDVIRDGKPVIGYGFNSNGRYGQGALMRDRFLARVTEADPETLIDKEYVNLDPFAIWKTLMTNEKPGGHGERSVAVGTIDMAVWDAVAKIEGKPLYRLLADRYRGGVADDKVWVYAAGGYYYPGKDQSKLKAEMQGYLDRGYDVVKMKIGAVPLDEDIRRIEAVLEVVGDGRRLAVDANGRFDLETGIAYAEAIKQYNLFWYEEVGDPLDYALQAELANHYELPMATGENLFSHQDARNLLRHGGMRPDRDYLQFDCALSYGLVEYMRTLKVMEEMGWSSRRVVPHGGHQMSLNIAAGLHLGGNESYPDVFQPFGGFADGIRVENSYVGLPDIPGVGFEAKSALYAVMRELGEGNANANANANA
D1-35_05245909yjiE_2HTH-type transcriptional regulator YjiETTGGAACTCGTCTGGCTAGAAGATTTTTCAGCACTTGCGGAGTACGGCAGCTTCGTTCGCGCCGCCGAAGCGCGCCACGTTACGCAGCCGGCTTTCAGTCGCAGGGTCCGTTCGCTGGAAAACTGGATGGGCGTGGATCTGTTTGTGCGCACGCCTCAAGGCGCGACGCTGACCGAGGCTGGAAGGCAGATTCTGCCTGGCGCCCAGGAGGCTGCGAGGCGCCTCTACAGGCTGCGCACCGAGGCCCAGGAAGTCGCCGGAGTGGCCGCCAAGACGCTGCAATTTGCAGCCACGCATTCGCTGTCGTTCACGTTTTTTCCGCGCTGGCTGAGAAGCGCCGAAAATGGCGCGCCGATAGATGCCGTGCGCCTGCACTCCGACAGCATGGCGGTGTGCGAACAGATGCTGATTCATGGCCAGGTGCAGTTCCTGCTCTGCCATCGGCACCCCGACGTACCGCCACTGTTGGCGCCTGATCAATTCAGCGGGAAAAAAGTCGGCGAGGACGTCCTCATACCCTTGGCGAGTGCCTCGGCCAATGTCGGTACCTCACCGGCGACGTTGCCCTACCTGGCCTACACCGAGGAATCGGGACTCGGGCGTATCGTCGCTCACCGACTCCACGGCAAGGAGGAATACCTGCACCTCAAGCCGCTTTTCAGCAGCCATCTCGCCGCGGTGCTGATGTCCATGGCACTGGAAAGCAAGGGCGTCGCGTGGCTGCCCAAAAGCCTGACAGAACAGGAAATGGCTGACGGGCGCCTGGTCCGGGCCCTGGATGAAAGCTGGGATATTCCACTGGAAATCCATCTCACCCGCCCAACCGCGCCGATCAGCGCAGCGGCAGAGGAGTTCTGGAACAGGCTGAAGGGTCAGGGCGATTCAACTGCCCTGCTCTGCCACCTGTAAMELVWLEDFSALAEYGSFVRAAEARHVTQPAFSRRVRSLENWMGVDLFVRTPQGATLTEAGRQILPGAQEAARRLYRLRTEAQEVAGVAAKTLQFAATHSLSFTFFPRWLRSAENGAPIDAVRLHSDSMAVCEQMLIHGQVQFLLCHRHPDVPPLLAPDQFSGKKVGEDVLIPLASASANVGTSPATLPYLAYTEESGLGRIVAHRLHGKEEYLHLKPLFSSHLAAVLMSMALESKGVAWLPKSLTEQEMADGRLVRALDESWDIPLEIHLTRPTAPISAAAEEFWNRLKGQGDSTALLCHLNANANANANA
D1-35_052461098menH_32-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthaseATGACCGAAGCGGAAAATTTCCAGGCGTATGCCCAGGCATCCCGCGCCTGGATTGAGGAAAAGCGCCTGTTCCAGACCGAGAATCGCGCCGATGAGCTGGACTGGAACGCGCCTTATGAAGTGCGCCCCGATGTTCCTTCCACCAAGGCCATTCTCTTGCTGCATGGCTTGGGGGATTCACCCTGGTCCTTCGTCGATATCGCCCGGGATCTGGCCGCCCAAGGCTACGTGGTGCGCGTCGCATTGCTGCCCGGGCATGGCACCAAGCCGGCCGACCTGATCGATGTGCAACTGGAACAGTGGCAACAGTTGGTCGAGCAGCAGGTTGCGTTGCTGCACAAGGAGTTCGCGAACGTCTACCTGGGCGGTTTCTCGACCGGCGCCAATCTGGCGCTGGCCTATGCCGCCAGGGACCCGGACATCAAGGGCCTGGTGCTGTTTTCCCCGGCCTTTCGCTCGAGCGAGTCCTACGACTGGGCCACGCCCTGGCTGGCGCATTTCAAGACCTGGATCCTTGCGCCCGACAATTCCCGGCCGCAGCAGTCGCCCGTGCGCTACCACAATGTCCCCACCAACGGCTTTGCCCAGTTCTACCGCAGCAGCGTAGCGGTTCGCCGGCTCATCGAGCAGCAAGACTTCGATCGGCCGGTGGTGATAGTGCTGACCGAGCAGGATTCAGTCGTCGACGTGCGCTATGTGCGGGAGCTGTTCCAACGGCGCTTCACCCATGCCGCGAGCCGGTTGATCTGGTATGGCCAGGCGGAGCCGACCGGTGACAAGGGCGCTGCGCAGGAGCGGCGCATCCTGACGCGCAGCGACCGCATCGCCGATGAACGCATCAGCCAGTTCTCCCACATGGGCATCCTCTTCTCGCCAGCCAACCCGCTCTACGGTCGTTCGGGCACCTTGCGGTTCTGCCGCAACAGCCGCAATGCCGACGAAGTGGCCCGGTGCGAAGCGGGGGAAGAAGTCTGGTATTCGGACTGGGGGTACAGCGAGCCGGGGAAGATCCACGCACGGCTGACTTACAATCCTTATTTCGAATGGCAGTCCGGGGTGATTCGTGGGGTTTTACAGGTGGCAGAGCAGGGCAGTTGAMTEAENFQAYAQASRAWIEEKRLFQTENRADELDWNAPYEVRPDVPSTKAILLLHGLGDSPWSFVDIARDLAAQGYVVRVALLPGHGTKPADLIDVQLEQWQQLVEQQVALLHKEFANVYLGGFSTGANLALAYAARDPDIKGLVLFSPAFRSSESYDWATPWLAHFKTWILAPDNSRPQQSPVRYHNVPTNGFAQFYRSSVAVRRLIEQQDFDRPVVIVLTEQDSVVDVRYVRELFQRRFTHAASRLIWYGQAEPTGDKGAAQERRILTRSDRIADERISQFSHMGILFSPANPLYGRSGTLRFCRNSRNADEVARCEAGEEVWYSDWGYSEPGKIHARLTYNPYFEWQSGVIRGVLQVAEQGSNANANANANA
D1-35_052473099mdtC_2Multidrug resistance protein MdtCATGAGCCTCAACTTGTCGTCCTGGTCGATCCGCAATCCGACGCCTTCGGTCCTGTTGTTCATCCTGCTGACCTTCGCCGGCTTGATGGGCTTCTGGAAGATGAAGGTGCAGAACTTCCCTGACGTCGATCTGCCCATGGTCAGCGTGTCGGCCGAGCTGCCCGGGGCTTCGCCCGCGCAACTGGAAAATGACGTGGCCCGCAAGCTCGAGGACTCGCTCGCAACCGTGCAGGGCGTCAAGCATATCCAGAGCATCCTGACCGACGGCAACGCCGCTATCTCGATCGAGTTCCACCTCGACAAGCCCACCCAGGAAGCGCTGGATGACGTGCGTGATGCGGTGTCACGGGTCCGGGCCGACCTGCCCGCCGACTTGCGCGACCCGGTGGTCCGCAAGATCGAACTCGCCGGTTCGCCGATCCTGACCTACACGGTTTCGGCCAAGCGGATGGACGACGAAGCGCTGTCCTGGTTTGTCGACAACAGCGTCAGCAAGGCCTTGCTGGCGGTGCCTGGCGTGGGGGCCGTCACTCGGGTCGGTGGGGTGGCCCGGGAAATCCGCATCGACCTCGATCCCGCGCGTCTGCTGGCGCTGAACACCTCGGCCCTGGACGTCTCCCGCCAGCTGCGCCTGATCCAGCAAGAGGCATCGGGCGGACGCGTGGACCTGGGCGGCGCCGAGCAGACGGTGCGCACCCTCGCCACGGTGCAGTCGGCCGCGGAAATCGCCTTGCTTGACGTGACCTTGAGCGACGGCCGGCGTGTCCGGCTCGACCAGCTGGCGACGGTCTCCGATACCGTCGGCGAACCCCGCTCGGCGGCGTTCCTCGACGGTAAGCCAGTGGTCGGCTTTGAAATCACCCGGGCCAGAGGGGCCGGCGAAATCGAGGTGGATGAAGGCGTACGCGCCGCCCTGGAGTTGCTCAAGATCCGTCATCCCGAAATCACCGTCACCCAGGCTTTCAACTTCGTCGACCCAGTGATCGAGAATTATCGGGGCTCCATGCACCTGCTTTATGAAGGCGCGGCGCTCGCGGTGCTGGTGGTGTTCCTGTTTCTGCCGGATTGGCGCGCGACCTTCGTTTCCGCCGTCGCGTTGCCGCTGTCGGCGATACCGACGTTCGCCGTGATGCACTGGATGGGGTTCACCCTCAACACCGTGACGCTATTGTCGCTGTCGCTGGTCATCGGCGTGCTGGTGGACGACGCCATCGTCGAGGTCGAGAACATCGGGCGCCATTTGCAGATGGGCAAGAAACCTTATCAAGCCGCCATGGATGCTTCCGATGAAATCGGCCTGGCGGTGGTCGCCACGGCATTCACGCTGATCGCGGTGTTCCTGCCCACGGCTTTCATGAGCGGTTCGGTCGGCAAGTTCTTCGTCCAGTTTGGCTGGACGGCGGCAACCGCAGTGTTTTTCTCCCTCGTCGTCGCCCGCTTGCTGACGCCCATGATGGCGGCCTACCTGATGCGCGCGCCGAAAAGGCCGGCCCAGGATGCGCCCGGGTGGATAAACCGCTACCTGTCCTGGGCGCGCTGGTGCCTGCGCCATCGCGTGGTGACCACCCTCGGCGCGGTGGCTTTTTTCGCCGGAGGGCTGATGCTCGCCACCGTTTTGCCGGGCACCTTCATCCCGCCGGATGACGACTGGCAGACCCAGGTCACCCTCACGCTTGCGCCCGGCAGCAAACTGGGCGACACGCTGGCGTTGGCTGAGCAAGCGCGGCAGATAGTCACGCAAAATCAGCAGGTCAAAAAGGTCTACACCGCGGTGGGGGATGGCAGCGCCGGCGCGGACCTGATCGAACCGGCCGGCAGCGATGTCGCGAATGTCCGCACGGCGGTGCTGACGCTTAACCTGACGCACCGCAACGAGCGTCCGGGACTGACCCGGCAGCAGCTCGAAAACCAGCTACGCGAAGCGCTCGCCGTGTTGCCTGGCGCGCGTATCAAGGTCGGTATGGGAGAGTCGGAAAGCTACGTGCTGGTGCTCGCGGGTGAGGACGCTAGCTTGCTCACCCGGCATGCGCAGCAGGTGGAACGAGAGCTGCGTAGCGTGCCGGGCGTGGGGGCGGTGATCTCGACCGCCAGCCTGATGCGCCCCGAACTGGTGGTTCGGCCGGATTTCGCCAGGGCCGCCGACCTGGGCGTGACCGCGAGCGCGATTGCCGACACGCTCCGCGTGGCCACCCTGGGAGATTACGACCAGGAGCTTGCCAAGCTCAATTTCAGCGACCGCCAGGTGCCTATCGTTGTGCGGCTGAGCGACACCGCCCGCGCGGACTTCGAGACGCTGAAACGTCTGCCGGTGCCCGGCGCGCGTGGTCCGGTAGCGCTGGAAAACGTGGCGACGCTGGAGATCACCAGTGGCCCGGCGCAAATCGAACGGTTCGACCGTACGCGCAATGTCAACATCGAGATCGAGACGAACGGCCAACCGTTGGGCGACATCGAGCAGGCTGTTCTGGCCTTGCCAGGCTTGCAGAACCTACCGCCAGGCCTGGTGCGAACCTCGGTAGGCGATGCCGAGGCCATGGGCGAACTGGCTTCCGGATTCGGCGTGGCGATGTTGACCGGAGTGTTATGCATCTACATGGTCCTGGTGTTGTTGCTCAAGGATTTCCTGCAACCGCTGACGATCCTTGCCGCCCTGGTGCTCTCGGTGCCTGGGGCCTTCGTGGCGCTGTTCGTGACCGGCTCGACATTGTCCATGCCCTCGATGATCGGCCTGATCATGCTGATGGGTATCGCGACGAAAAATTCGATCCTGCTGGTCGACTACATCATCCTCGCGCGTCGACGCGACGGCCTGAGCCGCCAGGAAGCGATCCTCGACGCCTGCGGCAAACGCGCTCGGCCGATTGTCATGACGACAATCGCGATGGGCGCAGGCATGATGCCAATCGCCCTGGGGCTGGGGGCCGACCCGAGCTTTCGCGCACCGATGGCCATCGTCTTGATTGGCGGGCTTGTCACGTCAACGCTGTTGAGCCTGCTGGTCATACCCGTGGTGTTTTCCTATGTGGACGATGGGGCGCAGTGGTTGTACAAACGCACCGGTAACGTTTCTCGCAGCGAAGCTGCTGGAGTGATCAATTGAMSLNLSSWSIRNPTPSVLLFILLTFAGLMGFWKMKVQNFPDVDLPMVSVSAELPGASPAQLENDVARKLEDSLATVQGVKHIQSILTDGNAAISIEFHLDKPTQEALDDVRDAVSRVRADLPADLRDPVVRKIELAGSPILTYTVSAKRMDDEALSWFVDNSVSKALLAVPGVGAVTRVGGVAREIRIDLDPARLLALNTSALDVSRQLRLIQQEASGGRVDLGGAEQTVRTLATVQSAAEIALLDVTLSDGRRVRLDQLATVSDTVGEPRSAAFLDGKPVVGFEITRARGAGEIEVDEGVRAALELLKIRHPEITVTQAFNFVDPVIENYRGSMHLLYEGAALAVLVVFLFLPDWRATFVSAVALPLSAIPTFAVMHWMGFTLNTVTLLSLSLVIGVLVDDAIVEVENIGRHLQMGKKPYQAAMDASDEIGLAVVATAFTLIAVFLPTAFMSGSVGKFFVQFGWTAATAVFFSLVVARLLTPMMAAYLMRAPKRPAQDAPGWINRYLSWARWCLRHRVVTTLGAVAFFAGGLMLATVLPGTFIPPDDDWQTQVTLTLAPGSKLGDTLALAEQARQIVTQNQQVKKVYTAVGDGSAGADLIEPAGSDVANVRTAVLTLNLTHRNERPGLTRQQLENQLREALAVLPGARIKVGMGESESYVLVLAGEDASLLTRHAQQVERELRSVPGVGAVISTASLMRPELVVRPDFARAADLGVTASAIADTLRVATLGDYDQELAKLNFSDRQVPIVVRLSDTARADFETLKRLPVPGARGPVALENVATLEITSGPAQIERFDRTRNVNIEIETNGQPLGDIEQAVLALPGLQNLPPGLVRTSVGDAEAMGELASGFGVAMLTGVLCIYMVLVLLLKDFLQPLTILAALVLSVPGAFVALFVTGSTLSMPSMIGLIMLMGIATKNSILLVDYIILARRRDGLSRQEAILDACGKRARPIVMTTIAMGAGMMPIALGLGADPSFRAPMAIVLIGGLVTSTLLSLLVIPVVFSYVDDGAQWLYKRTGNVSRSEAAGVINPGPT0016195_314DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-SURFACTIN_RESISTANCE,PGPT0016195-swrC|yerP-K03296NANA
D1-35_052481143cnrBNickel and cobalt resistance protein CnrBATGAAAAGAAAAACACGGCATGTCGTGCTGTTTGTCGTGACCATGGCCTGCGCCATCGCCGTCGGGATGATCGCTGTTTCGCCCGGCCCTCGCCAGGCCAAGGTCGACGTGCCCGCCAGGCCGGCACTGACGGTGGCCGTTACCCGACTGCAATCGTCCATGCTGCCGATCCGCATCCAGGCGAACGGCAACATTGTCGCCTGGCAGGAAGCCAGTGTCGGCACCGAGGCCGATGGCCTGCGGTTGGCCGAGGTCATGGTCAACGTGGGCGATGTGGTCCGGCGCGGCCAGGTACTTGCGACGTTCAGCGCCGAGACGATGACCGCTGAACTCGCCCAGCGTCGCGCCGCCACCGCCGAAGCGCAAGCGACGCTTGCCGAGGCGCGAGCCAATGCGCAGCGCGCCCGTCAATTGCAGTCGAGCGGGGCGCTGTCGAAGCAGGAGGTTCACCAACAGCTGACGGCCGAACGCACGGCTCAGGCGCGGCTGGAGGCGGGCAGGGCGCTGGAGCGTATCCAGCACCTGCGTCTGGCCCAGACCCAGGTCCTGGCCCCCGATGACGGGGTGATTTCGGCGCGCAGTGCCACGGTGGGCGCGGTACTGCCCGCTGGCCAGGAGCTGTTTCGCTTGATTCGCAACGGACGGCTCGAATGGCGCGCCGAAGTCGCGGCCCCCGACCTTGTCAGGTTCAGCCCCGGCCAGCTCGCGCAGGTAACTCCGGTCAATGGCGGGGCGATAGAGGGCCGGGTGCGCAGGGTTGCGCCGACGGTCGACCTGCAGACTCGCAACGGCCTGGTTTATGTCGATTTGCCCGCAGGCACGGCGGCGCGTGCCGGGATGTTTGCCCGTGGCGAGTTCGAAGTGGCCGCCGAGCGGATGATGACGCTGCCCCAGAGCTCGGTGCTGCAGCGTGACGGCTTCGATTACGTGTTGCAGGTAGGACCGCATTTGAAGGTGCGCCAGGTCAAGGTGACGGTCGGCCGCCGCGTTGGCGACCGTATCGAGATAACCGCGGGTATCGACGCTGGCGCCGCGGTGGTCGAAACCGGAGGTGGTTTTCTTGCCGAGGGTGACCTCGTCCGGGTTGTCCAGGCGCGCACCGACCCAATGAACAACCACCCAGCACGCGGGAGCGCGCAATGAMKRKTRHVVLFVVTMACAIAVGMIAVSPGPRQAKVDVPARPALTVAVTRLQSSMLPIRIQANGNIVAWQEASVGTEADGLRLAEVMVNVGDVVRRGQVLATFSAETMTAELAQRRAATAEAQATLAEARANAQRARQLQSSGALSKQEVHQQLTAERTAQARLEAGRALERIQHLRLAQTQVLAPDDGVISARSATVGAVLPAGQELFRLIRNGRLEWRAEVAAPDLVRFSPGQLAQVTPVNGGAIEGRVRRVAPTVDLQTRNGLVYVDLPAGTAARAGMFARGEFEVAAERMMTLPQSSVLQRDGFDYVLQVGPHLKVRQVKVTVGRRVGDRIEITAGIDAGAAVVETGGGFLAEGDLVRVVQARTDPMNNHPARGSAQNANANANANA
D1-35_05249801mipA_2COG3713MltA-interacting proteinATGCCCCTGTCCATTTCGAAAACTGCAATTGCGATCCGGTTGACCACCGCCGGCACGGCGTTCGTGCTGGGCGTGTGCGCGTCGATGGCGGCCAGTGCCGACCAGCCTGAAGGCTCCGCCTGGGGGCTCGGTGTGGGTGCGGTCAGCAGCCAACAGCCGTACGAAGGCATCGACCGTGACAGCGAGGTCCTGCCGCTGATCTATTTCGAGAATGAATACCTTCGTGTCTTCGGCCCCACCGCCGAAATCAAGCTGCCGGGCCTGGAGATCAGCGACACCCAGCAGCTCGATTTCAGCCTCGTCGGCGAATACGATTTCAGTGGCTACGATGACGACGACGCGCGAATCCTGGAGGGCATGAGCGATCGCAAGGGCGGATTCTGGGCGGGCGCCAAGGTCGAATGGCGCAATGACCTGGCCGATGTCAGCGCCGAGTGGCTGGGCGATGTTTCGGGCAACAGCAAGGGCCAGCGTTTCACCCTGGGCCTGGAGCGATCCTGGCGGATCGGCGAACACATCATGCTGACGCCACGGCTGGCGGCCATCTGGCAGGACGAAAAATACATCGATTACTACTTTGGCGTTCGGGAAAATGAAGCTCGCATCGATCGGGCGGCCTATGATGGCAAGTCCGGCATCAACACCGAATTTGGCGTACGTGGAAACTATATGTTCGATGACCATCACTCCGTGTTCCTGGACCTCAAGGCGACGAGCCTTGCCAATGAAATCAAGGACAGCCCGCTGGTCGACCAGTCCACCGAGAACAGCGTGCTGTTCGGCTACCTGTACCGTTTCTGAMPLSISKTAIAIRLTTAGTAFVLGVCASMAASADQPEGSAWGLGVGAVSSQQPYEGIDRDSEVLPLIYFENEYLRVFGPTAEIKLPGLEISDTQQLDFSLVGEYDFSGYDDDDARILEGMSDRKGGFWAGAKVEWRNDLADVSAEWLGDVSGNSKGQRFTLGLERSWRIGEHIMLTPRLAAIWQDEKYIDYYFGVRENEARIDRAAYDGKSGINTEFGVRGNYMFDDHHSVFLDLKATSLANEIKDSPLVDQSTENSVLFGYLYRFNANANANANA
D1-35_05250687tctD_2COG0745Transcriptional regulatory protein tctDATGAGCCGCATTCTGCTGGTCGAGGACCACGAACGCCTCGCGCAACTGGTGTGCAAAGGCTTGGCGAGCGCCGGCATCGCTGTCGATGTCATCAGCCGCATCGACGCGGCGTGGGCGGCAATCCAGCAAGTGCCTTACCAGGCGCTGGTGCTTGATCGCGGCCTGCCGGACGGCGATGGGCTGCTGTTGCTGGCGCGTTTGCGTAATGCCGGGCTGGGCCTGCCGTGCCTGGTCCTGACCGCACGTGACGCGCTGCATGACCGGATCGAAGGCCTCGACGCTGGGGCGGATGACTACCTGCCCAAGCCGTTCGCCATGGACGAAATGGTCGCGCGCGTGCGAGCCCTGCTGCGTCGCCCCGCAGAGCGGCGGTCGTTGGCGCCTTCCCATGGCGACCTCAGTGTGCAGCCCGACACAGGCCTCATGTGCAGCGTCGAAGGTAGCATCCCGCTAGCGCCGGCGGAGATGCAGATCATGTTGTTGCTGCTGCGCAAACCAGGCGAAATCGTCCGGCGCAGCGCCATCGAGGCGGCGGCATGGGGCCTGAGTGAAGCCGTGACGCCGAACGCCCTGGATGTGGCCCTGCATCGGATTCGCCGCAAGCTGCTGGCGATCGGTTCCCACCAACGGATAGTCAACCTCAGAGGCCTGGGTTATGCCCTTCGGCAAGACGATCTGGCGCAATAGMSRILLVEDHERLAQLVCKGLASAGIAVDVISRIDAAWAAIQQVPYQALVLDRGLPDGDGLLLLARLRNAGLGLPCLVLTARDALHDRIEGLDAGADDYLPKPFAMDEMVARVRALLRRPAERRSLAPSHGDLSVQPDTGLMCSVEGSIPLAPAEMQIMLLLLRKPGEIVRRSAIEAAAWGLSEAVTPNALDVALHRIRRKLLAIGSHQRIVNLRGLGYALRQDDLAQPGPT0003915_254DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-POLYMYXIN_RESISTANCE,PGPT0003915-pmrA-K07666NANA
D1-35_052511365sasA_19Adaptive-response sensory-kinase SasAATGCCCTTCGGCAAGACGATCTGGCGCAATAGCATCAGCTTCAAGGTACTGGTCGCCTACGTCGCGGGCGTGGGCTTGAGCATCCTGCTGATTGCACTGGGCGCGTTCGCGCTCATCACGTCCAAGAGCGATATCCTGCTGACCACCGACGTCGCCGAGCGTACCCATGAGCTGGCCGGCAAGCTGCAGTTCGACGCGGCGGGCCGACCCACCGGGTTCGACAGCAGCGAGGGCGATCGCGTCTGGACCTTCAACAGCCTGGGCGAGGAAATCGGCTATCGGGTGCTGGATTCAGAGGCAAGCGTCCTCCTGGCTTCCACTGACGAGGCATTCTGGGCTTCGGCCGCAACGGTTCGCCCCGCGGAACAGGGGCGCTTCAAGTTCGAGCGCAAAGGCATCACGATGTACGCCGCGACCGCTCCGGTGGAGCAGGTCGACCACACCTTGTACCTGCAATTCGCCGTCAGCGAACGCCTGATGGACCTGCTGCACAAGGGCTTTGCCTGGCCTTTCATGGGCGCCGGGATCGTCCTGTTCAGCCTGGTGCTGCTCTTCGTCTTTGGCACCTGCGCCTATTTCACGCTGGGCTACACGCTCAAACCGCTGCGCGAGGTCTCGGAGTCGGCGGCGGCCATCTCCCCTCGCTCCCTGCACTCACGGCTGGATGTCAAAACCGTGCCGTCCGAGGTAGCGCCGCTGGTGACCAGCTTCAACAGCGCGCTTGAGCGCCTGGAACACGGCTACCGGGTCCAGCAGGAATTTCTAGCAACCGCCGCGCACGAACTGAAGACGCCACTGGCGCTGATCCGCGCACAGCTCGAACTGATGGCGCCAGACAAAGGCCGCGACTCGCTGCTCAACGATGCCGAGCACATGACGCGGCAGGTCCAGCAACTGCTGCTGCTGGCCGAAACCAGCGAGGCGCATAACTACAGCTTCGCCGCCGTAGATGTCATGGAGGTAGCACGGCAAGCGGCAGGTTATCTGCAACGCATGGCCGACGCGGCCGATGTGCGCCTCGTCCTGACTGGCCCGACGGCTGTGGCAGAGCCTTGGCAGGCCGACCGTAGCGCCTTGTTTACCCTGCTGAAAAACCTCCTGGAAAATGCCATCCAGCATGCGCCTCGTGGTACCCAGGTGTTGCTGGAGCTCGGCGCCGATACGCTGACTGTGCGCGACTGGGGCCCTGGCGTGACGCAGGAGCAGGTGGTGCAGATATTCACCCGTTTCTGGCGCGGGGCTCATCGCCGCGATCATGGCGCCGGGCTGGGCCTGACGATCTGCCAGGAGATTGCCCGGGCGCACGGGTGGAGCTTGATTGCACGAAGAGCGGAGCCCGGGTTGTCGTTTTGCTTGTCTCGCTGAMPFGKTIWRNSISFKVLVAYVAGVGLSILLIALGAFALITSKSDILLTTDVAERTHELAGKLQFDAAGRPTGFDSSEGDRVWTFNSLGEEIGYRVLDSEASVLLASTDEAFWASAATVRPAEQGRFKFERKGITMYAATAPVEQVDHTLYLQFAVSERLMDLLHKGFAWPFMGAGIVLFSLVLLFVFGTCAYFTLGYTLKPLREVSESAAAISPRSLHSRLDVKTVPSEVAPLVTSFNSALERLEHGYRVQQEFLATAAHELKTPLALIRAQLELMAPDKGRDSLLNDAEHMTRQVQQLLLLAETSEAHNYSFAAVDVMEVARQAAGYLQRMADAADVRLVLTGPTAVAEPWQADRSALFTLLKNLLENAIQHAPRGTQVLLELGADTLTVRDWGPGVTQEQVVQIFTRFWRGAHRRDHGAGLGLTICQEIARAHGWSLIARRAEPGLSFCLSRNANANANANA
D1-35_05252474iorA_2Isoquinoline 1-oxidoreductase subunit alphaATGAGCGCCCTCAATATCAATGGCCGTGAACACACGGTTGACGTAGATCCCGGCACCCCGATTCTCTGGGCCCTGCGCGACACGCTGGGCATGACCGGCACCAAGTTCGGCTGCGGCGCAGCCCTGTGTGGCGCCTGTACCGTCCACCTGGATGGCCAGGCCATTCGCTCCTGCGTGACCCCGGTGGCCGCGGCGCTTGGCAAGAAGATCACCACCATCGAGGCGGCCACCGACGGCAGCGACCCGGTGGGCAGTGCCGTGCATGACGCCTGGGTCAAACATGACGTGGCGCAGTGCGGTTACTGCCAGAGCGGCCAGATCATGAGCGCCACGGCGTTCCTCAAGGCGCAGCCCAAGGGCAAGCAACCCACGCCAGCCGAGATCGACTCGGCCATGGCCGGCAATATCTGCCGCTGCGGCACCTACGCCCGTATTCGCGCCGCGGTGGCCGATGCCGCCAAGACCCTCGCCTGAMSALNINGREHTVDVDPGTPILWALRDTLGMTGTKFGCGAALCGACTVHLDGQAIRSCVTPVAAALGKKITTIEAATDGSDPVGSAVHDAWVKHDVAQCGYCQSGQIMSATAFLKAQPKGKQPTPAEIDSAMAGNICRCGTYARIRAAVADAAKTLAPGPT0009812_637DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-QUINOLINE_RESISTANCE,PGPT0009812-iorA-K07302NANA
D1-35_052532241iorB_2Isoquinoline 1-oxidoreductase subunit betaATGCTGAACGAGATTTTTCCCAACGAGCTTCCGCGCGCCTTGCAGCACCTGCTTGAACGCGACGACAGCGACGGCCCCGCCACCCTGCCCCGGCGCAGCTTTCTCAAGATCGTCGGTATCGGCGGCCTGGCCTTGGGCGCGTTTCCTCACCTGGCCTTGGGGCAACAGGCCAACGGCGCTGGCGACGGCGCGCTCAAGCCGACTCAACAACCTTCGGCCTTTGTGCAGATCGCGCCGAGTGGCGAAGTCACCGTAACGATCAACCGCCTGGAGTTCGGCCAGGGTGTCCAGACCGGCCTGCCGATGATCCTCGCCGAAGAGCTCGACGCCGACTGGAGCCTGGTGCGCACACGTAACGGCAGCAACGACTCGGCCTACATGGACCCGGCGTTTGGCATTCACCTCACCGGTGGCTCCAATTCGATCAAGAACAGCTACACGCAATACCGCGAACTGGGCGCCCGCGCCCGCGCCATGCTGCTCAGCGCTGCCGCCGCGCGCTGGAACGTCGATGCGGCGAGCCTGACCACGCAAAACGGCACGGTGCTGGGGCCTGGCGGCCGCAAGGCCAGTTACGGCGAGCTCGCCGAAGCGGCCATGGCGCTGCCCGTTCCGGAGAAGGTCACGCTCAAGGATCCGAAGGATTTTCGCATCATCGGCCAGGCCACCACCCGCCTCGATGCCAAGGCCAAGAGCAGCGGCCAGCAGGATTTCGGCATTGATGTGAATCTACCGGGGCAACTGACCGCCGTGGTCGCCCGGCCACCGGTGTTCGGTGCCCGGATCGCGTCCCTGGACGACAGCGCCGCACGGGCGACCAAAGGCGTGAAAGCCGTATTGCGCGTGCCGCTGGACGGCGGCGCCGAAGGCGTTGCGGTGGTTGCCGACGGTTACTGGCCGGCGAAGCTGGGGCGCGATGCGCTTAAAGTCGAGTGGGACGTGGCCAAAGTCGAGAAAGTGGACACGGAAAAACAGCTGGCTCAGTACCGGGAACTGGCCGGCAAGCCTGGCCTGGTCCACTTTGATGCCGACATGAAACCACTCGCCACGGCGCCGCATCAGCTGGAGGCCGAGTTCATTTTCCCTTACCTGGCCCACGCGCCCATGGAACCGCTGAACTGCACCGTCCAGTTGTCCGAAGGTCGCGCCCAGTTGTGGGTCGGCACGCAATTCCCCGGCGGCGATGGCGCGGCGGCGGCCAAGGTGCTGAATCTCAAGCCCGAGCAAGTCCAGGTCAATGTACAGACGGCGGGCGGCGGCTTCGGGCGGCGTGGTGTGCCCAGCAATGATTTCGTCGTGCAGGCTTGTGAAGTGGCCAAGGCCGCCCGTGCTGCCGGCATCGATGCGCCGGTGCGCACGCTGTGGAGTCGAGAAGATGACATCAAGGGCGGCTACTACCGCCCGATGCACCTGCACCGTGCGCGCATCGGTTTTGACGACAGCGGCAAAGTCCTGGCCTGGGACCACGCCCTGGTCGGGCAATCCATCCTCACCGGCACGCTGTTCGGTGGGCAGATGAAAAACGGCATCGACCCCACCGCGACCGAAGGCATGCGCGATCCCTACCCGCTGCCGATGCGCTTGTCCGTACATCATCCCAAGCTCAACGTGCCGGTGTTGTGGTGGCGCAGCGTGGGTTCCACCCATACGGCCTTTGTGATGGAAACGCTGATCGACGAAATCGCCCGCGCGACGAAACAGGACCCGGTGGCGTATCGCATGAACCTGTTCGGCGATCAAAGCCCACGCCATCGCGCCGCGCTGCAACTGGCGGTGGACAAGAGCGAATACGGCAAGCGTCAACTGCCCGCCGGCCAGGCCTGGGGCGTGGCGGTCCACGAGTCGTTCAGTTCGGTGGTGGCTTATGTGGTGGAGGCCTCGGTGCAGGACGGGCGTGCGGTGCTGCACAACGTGACCGCCGGGGTCCATTGCAACCTGGTGGTCAATCCGCGGAGCGTCGAAGCCCAGGTTCAAGGCGCGGCCCTGATGGGCCTGTCGATGTGCCTGCCGGGCGGTGCCGTCACGCTGAAAGACGGTGTCGTGCAGCAGAGCAACTTCGCCGACTTCAGCGTGCCGCGCATTACCGACATGCCACAGATCGCCGTGCACATCGTTCCCAGCGCCGAACCGCCAACCGGCATGGGCGAACCCGGCCTGCCCGCCCTCGCCCCGGCGTTTGCCAATGCGATCGCCAGCCTGACGGGCAAACCGCTGCGGCAGTTGCCGTTCAACCTGGCGTAAMLNEIFPNELPRALQHLLERDDSDGPATLPRRSFLKIVGIGGLALGAFPHLALGQQANGAGDGALKPTQQPSAFVQIAPSGEVTVTINRLEFGQGVQTGLPMILAEELDADWSLVRTRNGSNDSAYMDPAFGIHLTGGSNSIKNSYTQYRELGARARAMLLSAAAARWNVDAASLTTQNGTVLGPGGRKASYGELAEAAMALPVPEKVTLKDPKDFRIIGQATTRLDAKAKSSGQQDFGIDVNLPGQLTAVVARPPVFGARIASLDDSAARATKGVKAVLRVPLDGGAEGVAVVADGYWPAKLGRDALKVEWDVAKVEKVDTEKQLAQYRELAGKPGLVHFDADMKPLATAPHQLEAEFIFPYLAHAPMEPLNCTVQLSEGRAQLWVGTQFPGGDGAAAAKVLNLKPEQVQVNVQTAGGGFGRRGVPSNDFVVQACEVAKAARAAGIDAPVRTLWSREDDIKGGYYRPMHLHRARIGFDDSGKVLAWDHALVGQSILTGTLFGGQMKNGIDPTATEGMRDPYPLPMRLSVHHPKLNVPVLWWRSVGSTHTAFVMETLIDEIARATKQDPVAYRMNLFGDQSPRHRAALQLAVDKSEYGKRQLPAGQAWGVAVHESFSSVVAYVVEASVQDGRAVLHNVTAGVHCNLVVNPRSVEAQVQGAALMGLSMCLPGGAVTLKDGVVQQSNFADFSVPRITDMPQIAVHIVPSAEPPTGMGEPGLPALAPAFANAIASLTGKPLRQLPFNLAPGPT0009811_1081DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-QUINOLINE_RESISTANCE,PGPT0009811-iorB-K07303NANA
D1-35_05254264hypothetical proteinATGAACCTGAAGAACCTCAGCCTCGCTTCACTGTTTGCCGTCCTCAGCCTCGGCGCCCTGACCGCCAACGCCCAGGACAGCGTCAAGCCACACACCTACATGTACGGCGATCATCTGGACATCGCCAAGGTGCTGTCGGTCAAGCAAGGGTCGGGCTCGGGCTGCGGCGTCGTCGAATCGCGCATGACCTATCTGGACTCCACCGGGACGATCCGGGCGCTGGACTACAGCGCTCTGGCCCAGGGGTGCGACCAGGATAATTGAMNLKNLSLASLFAVLSLGALTANAQDSVKPHTYMYGDHLDIAKVLSVKQGSGSGCGVVESRMTYLDSTGTIRALDYSALAQGCDQDNNANANANANA
D1-35_052551521hypothetical proteinATGAAATCGCCCCTGCGCTTTAACGATCACTACCGCAAAGCCGATCGCATCATGCTCGGGCTGCTCTGGCTCACGCTCCTGTATTCGCTGGGCCTGGCATTTCTTCATTCGACCTTCACTCAGGCGCTGCTGATCGGCGCACCAACGTGCCTGCTGGCGACGCTGCTCTACCGGGGCATCGGCGGCACCCGTGCGATGCGCTGCATCATCGCCATGGCGCTGATGGTCATGGCCGCGCTGCACATCAACCAGACCCGAGGCGTGATCGAGTTTCACTTCGGCATCTTCGTGCTGCTGGCGGTATTGACGTTCTATCGCGACTGGCTGCCGATCGTCGTGGCCGCCGGTACCATCGCCGTTCACCACGTCGGGTTTCATTGGCTCCAGCATCAGGGCTACCCGGTGTTCGTGATGGATGCCCACGGCGGGTGGACGATGATTTTTGTGCATGCCTTTTATGTCGTCGTCGAAAGCGTGATCCTGATCTACCTGGCGAACCAGAGCCTGGCCGATGCAACGGACAACCAGGACGTGCTCGACAAGGTGCTGGCCGCCGCCGCGCAGTTGAGTCGTGACACCGACACACAACGCAGCCAGGGCGTGAAAGTCTCATCCGGCGAGCGTTTCGACCATTTCCTCCTGCAGGTGACCAACCTGGTGGACGGTGTGGTGCGCGACACCCGTGACCTGTCGGACCTCGGCCAGGACCTGTCCCAGGTCGGCCGGACCCTGGAAAACGGTGCCCGGCACCAGTTGGACGAAGTGGCACAGATGAGCGGCGCGATCGGCCAGCTGATGCAGGCCATGGAGAGTATTACCGGCCACGTCGGCCAGACGCTGGAGCGCGCCGGGCAGGCCAACGAGCAAGTCAACCGGGGGCGCACCACGGTTGACCAGACCCGGGAAGAAATTCTCGAACTGGCGGGACGGATCAACCTGACCAATGAAACCGTGCAACTGCTGGCCGAGCAGGCGCAGCAGATCGGCCAGGTGCTGGACGTGATCAACAGCATCGCCGAACAGACCAACCTGCTGGCCCTCAATGCGGCCATCGAGGCGGCCCGGGCCGGCGAGCAGGGGCGTGGGTTCGCCGTGGTGGCCGACGAGGTCCGGACGCTGTCCCAACGGACCTCGACTTCCACCACGGAAATCCAGCAGATCATCGCCAAGCTGCAACAGGGCAGCCGTCAGGCTGCGATCGCCATGCAAGACAGCCGTGAAGGGGTCGAGCGTTGCGTGTCCGCCAGCCAGCAGGCCTCGCAACTGTTGCATGCTGTCGTCGAAGACATCGCGGTGATCAACCACTTCAACGACCTGATCGCCAGCACGACCCAGCAACAGTCCGCGGCGTCGATGGGTATCAATGAGCGCTTGCAAACGGTACAGGCCGTGGCCGAGCGCAACGCCGACAACATCGGTGTGCTGGCCCGCAGCAGCCAATGCCTGCCGCCTTTGGCGGAGCGGCTGGCGGCGCTGGGGCAAGCGTTTCATGGGCCAGACCGGCAGCTTGAGCGAAAATAGMKSPLRFNDHYRKADRIMLGLLWLTLLYSLGLAFLHSTFTQALLIGAPTCLLATLLYRGIGGTRAMRCIIAMALMVMAALHINQTRGVIEFHFGIFVLLAVLTFYRDWLPIVVAAGTIAVHHVGFHWLQHQGYPVFVMDAHGGWTMIFVHAFYVVVESVILIYLANQSLADATDNQDVLDKVLAAAAQLSRDTDTQRSQGVKVSSGERFDHFLLQVTNLVDGVVRDTRDLSDLGQDLSQVGRTLENGARHQLDEVAQMSGAIGQLMQAMESITGHVGQTLERAGQANEQVNRGRTTVDQTREEILELAGRINLTNETVQLLAEQAQQIGQVLDVINSIAEQTNLLALNAAIEAARAGEQGRGFAVVADEVRTLSQRTSTSTTEIQQIIAKLQQGSRQAAIAMQDSREGVERCVSASQQASQLLHAVVEDIAVINHFNDLIASTTQQQSAASMGINERLQTVQAVAERNADNIGVLARSSQCLPPLAERLAALGQAFHGPDRQLERKPGPT0015710_24516DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_052561149patBCOG1168Cystathionine beta-lyase PatBATGACTTTCGATTTCGACCAGGTGTTCGAACGCCAAGGCACCGGCAGCACCAAATGGAGCCGTTACCCGGCCGAGGTATTGCCGATGTGGGTGGCCGACATGGATTTTGCCGCCCCGCCGATGGTGATCGATGCGCTGCACAAGCGCCTGGAGCATCCGATGCTGGGCTACAGCGTGGCCCAGGACAGCCTGCGCGCCGCCATCGTCGCCGATCTCTGGAGCAAGTATGGCTGGCGCGTCGAGCCCCAGCAGATCCTGTTCCTGCCGGGGGTCGAGCCAGGTTTCAACATGGCTTTGCATGCGTTGGTCGAGCCGCAGCAGAACGTTGTGGTGCAGGTGCCCAATTACCCGCCGCTGCGTCATGCGCCGGGCCATTGGAACCTGAACAAGCTGGAGTTGCCCTTCACCCCGCTCGACGGAGAGTTCCACACGCCCCTGGGCGCATTGCGCGACGCCTTGCAGGGCGGCGGCGCGTTGTTGCTGAGCAATCCACACAACCCGCTGGGCAAGGTGTTTGGACGCGACGAACTCAAGGCCGTGGCGGACATTTGCGTCGAGCAGGACGCCTGGATCATTTCCGACGAGATCCATGCCGAACTGTGCTTCGATGGCCGCGTGCACATCCCCACCGCCAGCCTCGGCGCGGAGATTGCCGAGCGCACCATCACGCTGATGTCGGCCAGCAAGGCCTACAACATCGCGGGGCTGAAAACCTCCTTTGCGATCATCCAGAACGCCAGGCTGCGCGAGCGGGTCAACAGCGCCAGGGCGGGCATGGTCGACAGCGTCAATGCCCTGGGCCTGGAGGCGACTCGTGCCGCCTACAGCGAAGCGGGTCCGTGGCTGGAGGCATTGAAGGCCTACCTGCAAGCCAACCGGGACTACCTGGTCGACGCGGTGAAGAACCGCCTGCCAGGCGTGACCATGACCGTGCCCCAGGGGACCTACCTGGCGTGGCTGGATTGCTCCGGGCTGGGGCTGGACGATCCGCAAGCGTTTTTCCTGAAGGAAGCCAAGGTCGGCTTGAGCGCCGGGATGGATTTTGGCGATGATGCCGGGCAATTCGTGCGGCTGAACTTCGGTTGCCCGAGGGCCCTGCTGGAGGAAGGTCTTGCGCGGATGGAGCGGAGCCTGAAGGCCAGAGGCTGAMTFDFDQVFERQGTGSTKWSRYPAEVLPMWVADMDFAAPPMVIDALHKRLEHPMLGYSVAQDSLRAAIVADLWSKYGWRVEPQQILFLPGVEPGFNMALHALVEPQQNVVVQVPNYPPLRHAPGHWNLNKLELPFTPLDGEFHTPLGALRDALQGGGALLLSNPHNPLGKVFGRDELKAVADICVEQDAWIISDEIHAELCFDGRVHIPTASLGAEIAERTITLMSASKAYNIAGLKTSFAIIQNARLRERVNSARAGMVDSVNALGLEATRAAYSEAGPWLEALKAYLQANRDYLVDAVKNRLPGVTMTVPQGTYLAWLDCSGLGLDDPQAFFLKEAKVGLSAGMDFGDDAGQFVRLNFGCPRALLEEGLARMERSLKARGPGPT0001990_2525DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_UTILIZATIONPLANT_DERIVED_CYSTEINE_DEGRADATION|CONVERSION,PGPT0001990-patB|malY-K14155NANA
D1-35_05257405hypothetical proteinATGTTCAGTCACATTCAGATTGGTGCGCGGGATCTACCGAAAATGGTCGCGTTCTACGATGCCGTCCTGGGGTGCCTGGGGTTGGTGCGCATGGACAGCGAAGACGACTCGGGCCCGCCCGGGGAAGGCTGGCATCAACCCGGCAGGCATTGGCCGCAGGTGTTCGTCCAGGTGCCGATCAATGGCCTGCCCGCGACCTGGGGCAATGGCATGCAAGTGAGCTTCGCCGCCGATTCGCCGCAGACCGTGCGCGCCGCTTGGGACATGGCCCTGGCGATGGGCGGTTTCGACGAAGGCGCGCCGGGCCCGAGGCCCCAGTATTCAAAGGATTACTTCGGGGCTTATTGCCGGGACCCGGAGGGCAATAAGTTGTGCTTTGTGCATACGCCGGATATGTATGACTGAMFSHIQIGARDLPKMVAFYDAVLGCLGLVRMDSEDDSGPPGEGWHQPGRHWPQVFVQVPINGLPATWGNGMQVSFAADSPQTVRAAWDMALAMGGFDEGAPGPRPQYSKDYFGAYCRDPEGNKLCFVHTPDMYDNANANANANA
D1-35_05258858ydaDGeneral stress protein 39ATGGCCGATTACCCAACCCCACCCTTCCCCAAACAAAGCCAGCCCGTCCCCGGCAGCCAGCAGAAGATGGACCCGTATCCAGACTGCGGTGAACAAAGCTACAAGGGTTCCGGTCGCCTGGCGAACAAGATTGCGCTGATCACCGGCGCCGACAGCGGCATCGGGCGAGCGGTAGCCATCGCCTTCGCCCGCGAAGGCGCCGACGTGGCCATTTCCTACCTGAACGAGCACGAGGATGCCAAGGAGACCGCTCGCTGGGTCGAACAGGCCGGCCGGCAATGCCTGTTGCTGCCCGGCGACCTGGCGGACAAGGTCCAATGCCGCAAGGTCGTCGATGAAACCGTGGCGCGCTTCGGCCGCATCGACGTCCTCGTCAACAACGCCGCGTTCCAGATGACTCACGAAACCCTGGAAGAGATTCCGGACGAAGAATGGGTGCGCACGTTCGATATCAACATCACCGCAATGTTCAGGATCTGCCAGGCCGCGGTGCCGCACATGCAGGCCGGGGGATCGATCATCAACACCACCTCGGTCAACTCGGACATGCCCAAGCCGACGTTGCTGGCCTATGCCACGACCAAAGGCGCCATCGCCAACTTCACCGGTGGCCTGGCGCAGATGCTCGGGCCCAAGGGCATCCGGGTGAACAGCGTCGCGCCAGGGCCGATCTGGACACCGCTGATCGTTGCCACCATGCCCGAGGAAGAAGTGCAGAACTTCGGTTCGCAGACACCACTGGGGCGCCCCGGCCAGCCCGTGGAAGTGGCGCCGATCTTCGTGCTGCTGGCCTCGGATGAGTCCAGCTACATCTCCGGCTCGCGGTATGCGGTGACCGGGGGCAAGCCGATCCTTTAAMADYPTPPFPKQSQPVPGSQQKMDPYPDCGEQSYKGSGRLANKIALITGADSGIGRAVAIAFAREGADVAISYLNEHEDAKETARWVEQAGRQCLLLPGDLADKVQCRKVVDETVARFGRIDVLVNNAAFQMTHETLEEIPDEEWVRTFDINITAMFRICQAAVPHMQAGGSIINTTSVNSDMPKPTLLAYATTKGAIANFTGGLAQMLGPKGIRVNSVAPGPIWTPLIVATMPEEEVQNFGSQTPLGRPGQPVEVAPIFVLLASDESSYISGSRYAVTGGKPILNANANANANA
D1-35_05259444hypothetical proteinATGGATTCGGTATTGCGAGCCGCCGCTATGTACGCGGTATTGTTGGTGTTGTTCAAGATCGCCGGGCGACGTTCGCTGGCGGAGATCACCACCTTCGATTTCGTCCTGTTGATGATCATTGGCGAGGCTACCCAGCAGGCATTGTTGGGGGACGATTTCTCGATGACCAATTCGTTCATGGTCATCGTCACGCTGATTGCCATCGATGTCGGGTTTTCGCTGCTCAAGCTGCGCTCCGACTGGGTTTCGCGGCTGATCGATGGTGGTCCGACCATCATCGTCGAGGATGGGCGTATCTTGCAGGGGCGCATGCGTCACGCCCGGCTGATAGAGGCAGACATCATGGAAGCGGCGCGCTCGAGCCAGGGCATCGAGACCCTGGATCAGATCAAGTTCGCGATCATCGAACGCAACGGGAAGATTTCGGTGATCGCCAAGGAGTGAMDSVLRAAAMYAVLLVLFKIAGRRSLAEITTFDFVLLMIIGEATQQALLGDDFSMTNSFMVIVTLIAIDVGFSLLKLRSDWVSRLIDGGPTIIVEDGRILQGRMRHARLIEADIMEAARSSQGIETLDQIKFAIIERNGKISVIAKENANANANANA
D1-35_05260519hypothetical proteinATGATCGATCAGCGTGAACAAGACGACCACCGCAGCCGCCAGTTCCCGGTGGAAGAGGACATGGCATTCCAGCACAAGGTCTGGCGCTTCGAGCGGGTCGGCTGGTACGTATTGGTGCTGTTGGTGATCCTGACCCTGCTCGGGCTGTTTTCCCGTGGTCCGCTGAGCAGCCGCGAAGCGCAAAGCGCGGACGGCAGCATTGGCGTCGAATACGAGATGTTCCATCGCAACGGCTCGGTCAATCCGCTGGTCGTCCGTCTGCAAGGCGCGTCCAACGCGGTGCTGGAGGTGGAGCTCGGCGGCGATTGGCTGGAGGGGTTCGATGTGCAGAGCGTGCAACCGCAGCCAGTGCGTTCGGCCGCCGCGGGGCAGGGTATGAAGATCTGGGTCCAGGCCGACGGGCAGGGGCGGGCCAACCTGCACCTGTCACTGCTCGGTGAAGGCCTCGGTAACTATAAAAGCCGCATCGCAACGCCCAATGGCGCCGAGGTCAGGTTCAATCAATTCATCTTTCCATAGMIDQREQDDHRSRQFPVEEDMAFQHKVWRFERVGWYVLVLLVILTLLGLFSRGPLSSREAQSADGSIGVEYEMFHRNGSVNPLVVRLQGASNAVLEVELGGDWLEGFDVQSVQPQPVRSAAAGQGMKIWVQADGQGRANLHLSLLGEGLGNYKSRIATPNGAEVRFNQFIFPNANANANANA
D1-35_05261501pncC_2COG1546Nicotinamide-nucleotide amidohydrolase PncCATGACTGTTGCCCAATCCCTGGTTGATTATCTGCAAGACCATGAACTGCGCCTGACCACCGCCGAGTCCTGCACCGCCGGGCTGATCGTCACCCTGTTGGCGGAAGTGCCGGGCAGTGGCTCGCTGATCGAAAGCGGCTATGTGGTGTATTCCCCCGAAGCCAAGCAGCGCTTGCTCGGCGTCAAGCCGCGCACCATCGATACCTTCAATCTCACCAGCCGCGAAGTCGCCGAGGAAATGGCCCTGGGCGCGCTGCGCGACGCCGACGCCAACGTCGCGGTCGCTACCACCGGCCTGCTCGGGCCGGACGACAAGGACGGCATACCTGCTGGCACGGTCTGTTTTGCCTGGGCGTTCGAGGTAAACGGCCAGCGTGCGCTGTTCAGCCGCCAGGAGCGATTCTTTGGCGACCGGCGCCAGGTGCAGTTGCTCTCCAGCGAGTACGCCTTGCGGCAATTGCCCGGCTATCACCAGCGTGCTTTGGCCGGTGAACTTCGATAGMTVAQSLVDYLQDHELRLTTAESCTAGLIVTLLAEVPGSGSLIESGYVVYSPEAKQRLLGVKPRTIDTFNLTSREVAEEMALGALRDADANVAVATTGLLGPDDKDGIPAGTVCFAWAFEVNGQRALFSRQERFFGDRRQVQLLSSEYALRQLPGYHQRALAGELRPGPT0013460_343DIRECT EFFECTCOLONIZING_PLANT_SYSTEMROOT_COLONIZATIONROOT_COLONIZATION-VITAMIN_B3|NIACIN_METABOLISMROOT_COLONIZATION-VITAMIN_B3|NIACIN_BIOSYNTHESIS,PGPT0013460-pncC2-K03743NANA
D1-35_05262612yohC_2Inner membrane protein YohCATGTCTGTGCTTTTCGTCAAGCTGTTCACCCATCCGGAATTTGCCTGGGGGGACATTCGCGAGCAGGAGCAGGCTCACCCTCACCATTACCTGGCCCATCTGCTGTTGCTGGCGCTGATTCCGGCGGTGTGCCTGTTCATCGGTACCACCTGGACCGGCTGGAGCCTGGCCGAAAACGAGACCGTGAGGTTGAGTCAGGCCAGCGCCTTGCAACTGTGCGCCCTGCTCTACCTGACCATCGTGATCGGCGTCTCGCTGATGGGGCTGTTCATCCGCTGGATGTCGCGCACCTTCGAGGCTCGGCCCACGGTCAACCAGTGCATCGGTTTTGCCGCCTACACCGCAACCCCGTACTTCCTGGCCGGCATCTTCGGGCTGTACCCCAGCCGCTGGCTGGCGGTGGTGGTCCTGTTGCTCGCCTCGGTCTACTCGACATTCCTGCTGTTCGTCGGTCTACCCAAGTTCATGGGCCTGAAGAAAGAACAAGGGCTATTGTATTCAGCGAGCGTCTGGGGCGTCGGTTTACTGGTGCTGGTCACGATCCTGGTGGAAATGATCCTGCTGTGGTTCAACTACCTGCAACCGGAATACCTTCGCGTGCCGGTGGGCTGAMSVLFVKLFTHPEFAWGDIREQEQAHPHHYLAHLLLLALIPAVCLFIGTTWTGWSLAENETVRLSQASALQLCALLYLTIVIGVSLMGLFIRWMSRTFEARPTVNQCIGFAAYTATPYFLAGIFGLYPSRWLAVVVLLLASVYSTFLLFVGLPKFMGLKKEQGLLYSASVWGVGLLVLVTILVEMILLWFNYLQPEYLRVPVGNANANANANA
D1-35_052634146rcsC_25Sensor histidine kinase RcsCATGTCTTCACCAAGCAAACGCTCTCCCAACGTGCCACAGCGACGAGAGCTGAGCCCCAGCAGCCTCGAGTTTCCGGTAGTAGGAATCGGCGCCTCTGCGGGCGGCTTGCAGGCCATCAAGCAGTTTTTTGAACACATGCCCAAGGACAATGGCATGGCGTTCGTGATCGTCCTGCACCTGGCTCCAGACCATCAAAGCATCGCCGACAAGATCATCCAGGAATCGACCAAGATGCCGGTGCTCCAGGTGAGCGAGACGGTCGCTATCCAGAAAAACCATGTCTATGTCATTTCCCCCGCCCATCATTTGTCGATGAACGACGGATATCTGAAGGTCAAGCCGGCCGAGCCGCGCCTCGGCGGGCATGTGGCTATCGACCTGTTTTTCCGTGACCTGGCCGACGTACACAAGGAGCGGGCATTCTGCCTGGTGCTGTCGGGCACCGGCTCCGACGGAGCCGTGGGCCTGTCGCGCATCAAGGAACAGGGCGGCGTGACCATCGCCCAATCGCCCCAGGACGCCGAATTCGACGGCATGCCCCAGGCCGCCATCGACACCCAGATGGTCGACCTGGTGCTTCCCGTGGTGGAAATGCCGCAAAAGCTCCTGGAGCTGTGGCGAAATTCCCAGAATATTCGCCTACCGACGGCCAACGACCCGGAAATCAAGACCCAACCGCCAACCTCCGAGCGCGAAGCAGTCGCCGCCGAGCAATCGCTGCATGACATCCTGGTGCAGCTGCGCGCTGGCACCGGGCATGACTTCAAGCATTACAAGCGGGCCACCGTGCTGCGGCGCATCGAACGGCGCATGCAGGTCACCGCCCAGCCAGATCTGGGCGCCTACTACGCGTATCTGCAGAATCACCCCGAAGAAACCAAGGCGCTGCTGGGCGACCTGCTGATCGGGGTGACCAATTTCTTCCGCGATCGCGAAGCCTTCGAAGCCCTGGAGCGCGACGTCCTGCCCAACCTGTTGAAGCCGGTCGAGCCGGGTAGCGTGCCGCCTGAGGAGATCAGGATCTGGTCGGCCGGCTGCTCCACCGGCGAAGAGGCCTATACCCTGGCCATGTTGCTCAGCGATCAGTTACAGCATGATTCGAGCAACGCCAAGCTGCAGATATTCGCCACCGACATCGACGAACGCGCCATTACCGTGGGGCGCGGCGGCGCCTACCCGGAAGCGATCATTACCGACGTGCCGCCCACTCGCCTGCGCCAATATTTCCTGAAGGAAACCACGACGTACCGTGTGCGCAAGGAAATCCGCGAGCGCGTGCTGTTTGCCAAACACAGCCTGCTGTCGGACCCGCCCTTCTCGCAGATCGACCTGATCGTCTGCCGCAACCTGCTGATCTACCTCGACCGCGAAGTGCAGCGGGAAATCCTGCAAATGTTCCACTTTGCCCTGCGCCCGGGAGGCTACCTGTTCCTCGGTTCGTCGGAGTCGGCCGATGCCTGCAGCGAGCTGTTCAGCCCGGTGGACAAGCGCAACCGGATCTTCCGCGCCAAATACGGCACTGCCGCCAGCCGCCGAACCCCGACCATGCCCCGTGGCGGTTACGTGCGCAGCACCTCGTCCCTGGCCGCGCCGCAGATCATCGCGCCGCGCAAGGTGTCGTTTGCCGATATCCACTTGCGTGCCATCGAACGGGCCGCGCCACCGAGCATAATTGTCGACAGCAATGGCGACATCCTGCACATGATCGAAACCGCCGGCCGCTATCTGCGCCACGTCGGCGGCGAGATGTCGCGTAACCTGCTGACGCTGATCAACCCGCAGCTGCGCCTGGAAATCCGCACCGCCTTGTTCCAGGTGAACCAGAACGGCCAGCCGGTCAAGTCCCGCCAGGTCAATATGGAGCGCGATGGCAAGCGCTTCCTGGTGGACCTGCTGGTCCAGCCGTATCGCGACGACGAATCCGATGGCGAGTTTGTCCTTGTCGTGTTCGAGGAGGAGGAAGTCGATCCCAGCCAGCAGGTTACCGCCATCACCAGCCAGACCGAAAACCAGGTGCTGGCCAATCTGGAGCGGGAGCTGCAGCGGACCAAGTCGCACCTGCAGGACACCATCGAGCAGGCCGAGGTCTCCAGCGAGGAGCTCAAGGCCTCCAATGAAGAAATGCAGGCCATCAACGAGGAACTGCGCTCGGCCACCGAGGAGCTGGAAACCAGCAAGGAAGAGCTGCAATCGATCAACGAAGAGTTGCTGACGGTCAATTACGAGCTGAAGACCAAGGTCGAGGAAACCGACAAGATCAACGACTACCTCACCAACCTGATCGCCTCCACCGACATCGCCACGGTATTCGTCGACCGCAGCATGCGCATCAAATGGTTCACCCCGCGGGCCACGGAAATCTTCAGCATGCTCCCGGTGGACACCGGCCGTTCACTGCTCGACATCACCCACCGCCTGGACTATGCGGAGATGGCTGCGGACGCCACCCAGGTGTTCGAGTCGCTGAACATGATCGAGCGCGAAGTCAGCAGCAAGGATGACCGCTGGTACATCGCCCGCCTGCTGCCCTATCGCTCCAGCGAAGACCACATCGACGGCACGGTGTTGACCTTTATCGACATCACCAAGCGCCGTGCCGCTGAAGAAGAGTTGCGCCTGGGCGAAGAGCGCATGCGCCTGGTGGCCGAAAGCACCCGCGACTACGCGATCATCCTGCTCGACGAACATGGCGTGATCACCAGTTGGAACACCGGCGCGCAGTTGATTTTCGGCCATACCAAGGCCGAAGCCGAAGGCGCTTATTACGACTTCCTCTTTACCCCGGAAGACCGTAGCTACGGCGCTCCTGAAACCGAACTGAGCACCGCTCGTGCCAAAGGCCGTTGCGAAGACGAGCGCTGGCATCAACGCAAGGACGGCAGCCGCTTCTTCTGCAGTGGCGAGGTCACGCTGCTCAGTGGCGACTACTTGCAGGGCTACGTGAAGATTGCCCGTGATCTCACCGGGCATAAGCGCCTGCACGAAGAACAGACCCAACGGCTCATGGAAACCCAGAACAACAGCCACTTGAAGGATGAGTTCTTCGCGGTCATGTCCCACGAACTGAAGCACCCGCTGAATCTGATCCAGCTCAACGCCGAATTGCTGCGCCGCCTGCCGGTGACCAAGAGCGTCACTGCGGCTGCCAGGGCGGTCAACACCATCTGCGACGCTGTTACCAGCCAGGCGCGTATCATCGACGACCTGCTGGACGTAGCCCGAGTACGCACCGGCAAGCTCAAGCTCAAGCGCCTGGCGGTCGATCTGGGTCGCGTGCTGCAAGACATCTACACCGTGGTGATCAACGACAACCATCCGAACAAGGTCACTCTGGAACTGCCCGAAGGGCCCGGCAGCGAGCTGATTGTCAACGCCGATCCGACCCGGCTGGAGCAGATCATCTGGAACCTGGTGAATAACGCGCTGAAATTCACCCCGAATGGCGGCCGCGTGCAGTTGATCGCCAGCCAGGACGGGCGCATGGCTCGCCTGGACGTCAAGGATTCAGGCGTCGGTATTGCCGCGGAACACTTGAGCGAAGTGTTCGACCTGTTCGGCCAGGCCGAGACCCAGCATGCGACCCATCAGCGCGAAGGGCTGGGAATCGGCCTGTCGCTGGTACGGCAGTTGACCGAAGCCCACGGCGGCAGCGTCGAGGTCAAGTCCGAAGGGCTGGGCAAAGGCTGTACGTTCACCATCCGCCTGCCCTTGAGCAGCGCCGAGCTGGCGCCCAAGCCGCAAGCCTGCGAAGAGCAATCCGGACGCCTGAGCGGCTTGACGGTGTTGTTGGTGGACGATTCCCCCGACGTGCTCGATACCCTCAAGCTGCTGCTGGAAATGGAGGACGCCAACGTCGTTGCGTTCGATCAACCGTTGCAAGCGCTGGAAGCGGCCCGGGACGCCCGTTACGACGTGGTGATCTCGGACCTGGGCATGCCGGTAATGAATGGCCATGAACTGATGCAGGCGCTGCGCGAGTTGCCCCACATCAAAAACATCCCGGCCATCGCCCTGACCGGGTACGGTGCGTCTGTCGACATGCACAAGTCGCAGCAGTCGGGTTTTGACCAGCACATCGGCAAACCGGTGTCCTATGACGAGTTGATCGAAGCGATCGAGCAATTGCGGCGGGCGCGGGTTTATTAGMSSPSKRSPNVPQRRELSPSSLEFPVVGIGASAGGLQAIKQFFEHMPKDNGMAFVIVLHLAPDHQSIADKIIQESTKMPVLQVSETVAIQKNHVYVISPAHHLSMNDGYLKVKPAEPRLGGHVAIDLFFRDLADVHKERAFCLVLSGTGSDGAVGLSRIKEQGGVTIAQSPQDAEFDGMPQAAIDTQMVDLVLPVVEMPQKLLELWRNSQNIRLPTANDPEIKTQPPTSEREAVAAEQSLHDILVQLRAGTGHDFKHYKRATVLRRIERRMQVTAQPDLGAYYAYLQNHPEETKALLGDLLIGVTNFFRDREAFEALERDVLPNLLKPVEPGSVPPEEIRIWSAGCSTGEEAYTLAMLLSDQLQHDSSNAKLQIFATDIDERAITVGRGGAYPEAIITDVPPTRLRQYFLKETTTYRVRKEIRERVLFAKHSLLSDPPFSQIDLIVCRNLLIYLDREVQREILQMFHFALRPGGYLFLGSSESADACSELFSPVDKRNRIFRAKYGTAASRRTPTMPRGGYVRSTSSLAAPQIIAPRKVSFADIHLRAIERAAPPSIIVDSNGDILHMIETAGRYLRHVGGEMSRNLLTLINPQLRLEIRTALFQVNQNGQPVKSRQVNMERDGKRFLVDLLVQPYRDDESDGEFVLVVFEEEEVDPSQQVTAITSQTENQVLANLERELQRTKSHLQDTIEQAEVSSEELKASNEEMQAINEELRSATEELETSKEELQSINEELLTVNYELKTKVEETDKINDYLTNLIASTDIATVFVDRSMRIKWFTPRATEIFSMLPVDTGRSLLDITHRLDYAEMAADATQVFESLNMIEREVSSKDDRWYIARLLPYRSSEDHIDGTVLTFIDITKRRAAEEELRLGEERMRLVAESTRDYAIILLDEHGVITSWNTGAQLIFGHTKAEAEGAYYDFLFTPEDRSYGAPETELSTARAKGRCEDERWHQRKDGSRFFCSGEVTLLSGDYLQGYVKIARDLTGHKRLHEEQTQRLMETQNNSHLKDEFFAVMSHELKHPLNLIQLNAELLRRLPVTKSVTAAARAVNTICDAVTSQARIIDDLLDVARVRTGKLKLKRLAVDLGRVLQDIYTVVINDNHPNKVTLELPEGPGSELIVNADPTRLEQIIWNLVNNALKFTPNGGRVQLIASQDGRMARLDVKDSGVGIAAEHLSEVFDLFGQAETQHATHQREGLGIGLSLVRQLTEAHGGSVEVKSEGLGKGCTFTIRLPLSSAELAPKPQACEEQSGRLSGLTVLLVDDSPDVLDTLKLLLEMEDANVVAFDQPLQALEAARDARYDVVISDLGMPVMNGHELMQALRELPHIKNIPAIALTGYGASVDMHKSQQSGFDQHIGKPVSYDELIEAIEQLRRARVYPGPT0015655_237DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-MOTILITY|CHEMOTAXISCHEMOTAXIS_PROTEINSCHEMOTAXIS_TWO_COMPONENT_SYSTEM_PROTEINS,PGPT0015655-cheBR-K13924NANA
D1-35_052642622ligD_2COG1793Multifunctional non-homologous end joining protein LigDATGACCAGCAAAACCCTTGAAGACTACAACCGCATGCGCGACTTCGCCGCCACCCCGGAACCGGCGGCGAAACGCTCGCGCAAAGCGGCGAAAACCGCCCATGCCCTGCAGTACTGCATCCAGAAGCACGATGCCACGCGGCTGCATTACGATTTTCGCCTGGAGCTGGACGGCGCGCTCAAGAGCTGGGCAGTGCCCAAGGGACCGTCCCTGGATCCGAAGGTCAAGCGCCTGGCCGTGCATGTCGAAGACCATCCGCTCGATTACGCGACCTTCGAGGGCAGCATTCCCGAAGGGCACTACGGCGCCGGCGATGTCATTGTCTGGGACCGGGGCGTGTGGATTCCCCAGGGCGACGTACACGAAGCCTACGAAAAGGGCCGCCTCAAGTTCGAGCTGCGCGGGGAGAAACTCGCTGGCCTGTGGAACCTGGTGCGCACCCATATGCCCGGTAAACAGGAGCAATGGTTCCTGATCAAGCATCAGGACGACGCAGCCCGTCCGGAGAGCGAGTACGACGTGGTCGAGGCCGAGCCGGACAGCGTGCTCAGCGACCGCACGATCGTGCCCAAGCGCCGAGGCAAGGCCGCTGCTGCCAAAGCCGTAAAACAACCGGAAAAAGCCGCGCCGCCGAAATCGTCGAAAAAAACCGCGAAGACCACCCTCAGCGGCGCCGTTGCCGGCCCGATTCCCGAAACCCTCAAGCCGGAACTGGCGACGCTGGTGGACAGCGCGCCCGAGGGCGACTGGCTCTACGAGATCAAGTTCGACGGCTACCGGGTCATGGCGCGTATCGACAACGGCGATGTGCGCTTGATCACCCGCAACGGCCATGACTGGACCCACAAACTGCCGAAACAGGCCGAGGCCTTGGCCGGGCTCGGATTGGAATCGGCCTGGCTCGACGGCGAGATGGTCGTCGCCAATGAGCAAGGCGTGCCGGACTTCCAGGCCCTGCAAAACGCCTTTGATGCCGGCAGCAGCGGCAAGATCGCCTATTACCTGTTCGATTTGCCCTACCTCAACGGCATGGATCTGCGCAAAGTGCCGGTGGAGGAGCGTCGGGCCGCGCTGGCAGCGGTGCTTGAGGCGAATGAAGATCCGTTGCTGCGCTTTTCCGACGCCTTCGAGGAAACCCCCGAAGCACTGCTCAACAGCGCTTGCCAGATGCGCATGGAAGGACTGATCGGCAAACGCCAGGGCAGCGCCTATGTGTCCCGGCGCAGCAGCGACTGGATCAAGCTCAAATGCAAGAATCGCCAGGAGTTTGTCGTGGTCGGCTTCAGCGAGCCCAAGGGCTCGCGCAGCGCGTTCGGTGCCTTGTTGCTGGGCCTGCATGACGTAGACAGCGGTGAGCTGCGGTATGCCGGCAAGGTCGGCACCGGTTTCAACGAGACGACGCTCAAAAGCATCTACCAGCAGCTGTTGCCCCTGGAAACGAAAAAAGCCGCCGTGGTCAACCCCCCCACTGGTTACGAGGCCAAGGGCGTGCACTGGCTCAAGCCGGAATTACTGGCCGAGGTGGCATTTGCTGAAATGACCAAGGAAGGTTCGGTACGCCACGCGGTGTTCCATGGCTTGCGCAACGACAAGCCGGCCAAGGCGATTACCCAGGAACTGCCGAAACCGATAGAGAAGCCCGCCAGGAAAAAAACCGCCGCCAAGGAGGAGCCGGCACCGGCCAAGCCCAAGACCAAAGCCAAGGCCAAGACCACCCAGGCACCGACCCTGGACGGCAAGGTGCGCATTACCCACCCGGACCGGATCATCGATGCCAGCAGTGGCACGACCAAGATGCAACTGGCCGAGTACTACGCCAGCGTTGCCGAATTCATCCTGCCGGAACTGGCCGACCGTCCGGTGGCCCTGGTGCGCGCGCCGGACGGCATCGCCGGCGAGCTGTTCTTCCAGAAGAACCCCGAGCGCCTGGCGATTCCCGGCATCACCAGCCTGGACAAGGACCTGACCGGGCAACCGGTGATGATCATCAACAACGCCGAAGCGCTCATCGGTGCGGTGCAGATGAGTACCGTGGAGCTGCACACCTGGAACGCCACTTCGGTAGACCTGGACAAACCCGACCGTTTTGTCCTCGACCTTGACCCGGACCCGGCGCTGCCGTGGAAAAGCATGGTGGAAGCCACGCAACTGACCTTGTCGGTGCTGGATGAGCTGGGCCTGAAGGCGTTTCTCAAGACCAGCGGCGGCAAGGGTATCCACGTGGTGGTGCCGCTGACCCGCAAGTTGGGCTGGGACGAGGTCAAGGGCTTCAGCCACGCCATTGTCAGCCACATGGCCAAGCTGTTGCCCGATCGCTTCTCGGCGGTATCGGGACCGAAAAACCGGGTGGGGCGGATTTTCATCGATTACCTGCGCAACGGCCTGGGCGCCACGACCATTTGTGCCTATGCCGCCCGCACCCGTGAAGGGCTGCCAGTGTCGGTGCCGATTTATCGCGAAGAAGTGGCCGAGCTCAAGGGCGCCAACCTGTGGAACGTACACAACGTGCATGAGCGGCTGGCCGAGGTGGGGCATGAGCCTTGGGCGGACCTGAAGAAAACCCGCCAGGGCATCACGGCCGAGATGCGTCGGCGGATCGGGATGAAGACCACCGCCAAGTAGMTSKTLEDYNRMRDFAATPEPAAKRSRKAAKTAHALQYCIQKHDATRLHYDFRLELDGALKSWAVPKGPSLDPKVKRLAVHVEDHPLDYATFEGSIPEGHYGAGDVIVWDRGVWIPQGDVHEAYEKGRLKFELRGEKLAGLWNLVRTHMPGKQEQWFLIKHQDDAARPESEYDVVEAEPDSVLSDRTIVPKRRGKAAAAKAVKQPEKAAPPKSSKKTAKTTLSGAVAGPIPETLKPELATLVDSAPEGDWLYEIKFDGYRVMARIDNGDVRLITRNGHDWTHKLPKQAEALAGLGLESAWLDGEMVVANEQGVPDFQALQNAFDAGSSGKIAYYLFDLPYLNGMDLRKVPVEERRAALAAVLEANEDPLLRFSDAFEETPEALLNSACQMRMEGLIGKRQGSAYVSRRSSDWIKLKCKNRQEFVVVGFSEPKGSRSAFGALLLGLHDVDSGELRYAGKVGTGFNETTLKSIYQQLLPLETKKAAVVNPPTGYEAKGVHWLKPELLAEVAFAEMTKEGSVRHAVFHGLRNDKPAKAITQELPKPIEKPARKKTAAKEEPAPAKPKTKAKAKTTQAPTLDGKVRITHPDRIIDASSGTTKMQLAEYYASVAEFILPELADRPVALVRAPDGIAGELFFQKNPERLAIPGITSLDKDLTGQPVMIINNAEALIGAVQMSTVELHTWNATSVDLDKPDRFVLDLDPDPALPWKSMVEATQLTLSVLDELGLKAFLKTSGGKGIHVVVPLTRKLGWDEVKGFSHAIVSHMAKLLPDRFSAVSGPKNRVGRIFIDYLRNGLGATTICAYAARTREGLPVSVPIYREEVAELKGANLWNVHNVHERLAEVGHEPWADLKKTRQGITAEMRRRIGMKTTAKPGPT0014910_382DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0014910-ligD-K01971NANA
D1-35_052651164COG2170Putative glutamate--cysteine ligase 2ATGAACAGGCGTTTGAAGTTCGGCATTGAAGAGGAATATTTCGTCACCGACCTGCAAACCCGGCACATGCCCGACCAGCCGCCCGTAGCGGCGATTGCGGCATGCCGGGAGGAGCTGGGTGAGCATTTCGCCCACGAGATGTTCCTGAGCCAGGTGGAGATGGCTTCGCCCATCTTCGAGAACCTGGCGGAGGCCGCCGATTACCTGGCCCAGGTGCGTAGCGGCCTGACGCGGCGCCTGGCACCCCACGGCCTGGGATTATTGAGCGCCGGCTCACATCCGATGACCACGGTCGGCTTGCAGCCCACCGACGAGCTGCATTTCCAGCAATTGTTCGACGATTACCAGCGAGTGGCGCGCCGCAGCGTGTTATCGGGCCTGCATGTACACGTGGAAGTACCGGGCGATCAGGACCGGGTCAAGGTCATGAACGAAGTGTTGCCGTGGCTGCCGATGTTGTTGGCGCTGAGTGCGTCTTCGCCGTTCTGGAACGGCGGCTACAGCGGCTTCAGCAGTTATCGCCAGGTAGCCTGCGATGAATGGCCGCGGATGGGCGTGCCGGAGTTCTTCGCCGACGAGGCCGCGTTCAACGGCTACGTCGACATGCTCACGCGCACCGGCTCCATTCGCCAGCCCAGCGATTGCTGGTGGGTGCTCAGGCCGTCGTCGCGTTACCCGACGCTGGAGCTGCGCATCTGCGATGCCTGCCCGCGGATCGACGACGTCCTGTGCCTGGTTTCGCTGTTTCGCCTGATGGTTGCCCATGCCTGCGCCCAGCCCAAGCCTGGGGCCAATTACAGCCTGATGTCGCAGTGGATCCTCAAGGAAAACCGCTACCGGGCCAAGCGCCACGGCATCCTGGCGGAGTTCATCATCGAGGGGCAGGAACAACCCATGCTCATTGGCGAATGGCTGAACCTGGCCGAGCAGACCTTCGCCGACACCGCCACAGCGCTGGGCGTGCAGGACGTGTTCAAGCAAGCCCGCCGGATCGTTCAGGAGGGCACCAGTGCCGATCGCCAGGTCGTGCTGTATGAACAAGGCTTGCTGCTGGGGGACTCCATCGAACAGGCCCTGAGCCGGGTGGTTGATCAGTTGCTCTCGGAAACCGCCGGCATGCCGGTGGCCGATCCTACCCTTGCGCAAGTTGCAGGTGGCCCATGAMNRRLKFGIEEEYFVTDLQTRHMPDQPPVAAIAACREELGEHFAHEMFLSQVEMASPIFENLAEAADYLAQVRSGLTRRLAPHGLGLLSAGSHPMTTVGLQPTDELHFQQLFDDYQRVARRSVLSGLHVHVEVPGDQDRVKVMNEVLPWLPMLLALSASSPFWNGGYSGFSSYRQVACDEWPRMGVPEFFADEAAFNGYVDMLTRTGSIRQPSDCWWVLRPSSRYPTLELRICDACPRIDDVLCLVSLFRLMVAHACAQPKPGANYSLMSQWILKENRYRAKRHGILAEFIIEGQEQPMLIGEWLNLAEQTFADTATALGVQDVFKQARRIVQEGTSADRQVVLYEQGLLLGDSIEQALSRVVDQLLSETAGMPVADPTLAQVAGGPPGPT0026300_366DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0026300-gshA|ybdK-K06048NANA
D1-35_052661002prmC_2Release factor glutamine methyltransferaseATGAATCAGGAAGATCGCCTGTCCGAACCCGACCTGGCGCTGCTGCAACTGGGTCGCCGCCTGCACGCCGACGGCTACCGTTTCATCACCCCGACACCGTTAACCCATGAACGGGTCAATAAACGGCCCGGCAACGAGCGTTCGAAGACCCTGCGGGACGTTTTCGGCTGGTCGCGGCCGTTCGCGCCTGGGCTGATTTCCGCCGATGAGCAGCGTCAGTTGCAGGAGGCGCAGGTGTTGGAGGAACGTGACGGCCTGTTATACAGCCGCGTGCGCTGGTCGAGCCTGGACGGGATGCTGTTCGCCCATTCGCAGTTTCCCACCCAGGCCAATGACGCAGTATTTTTCGGCCCGGACAGCTATCGGTTCGCCCATCTGATCCATACCCACCTGCAACAGAACTTCACCGCGGTGCATCGGGCCGTGGACATCGGCTGTGGTGCCGGTGTCGGGGCCATGGTGATTGCCCGCGCCCGGCGCGAGGCCGAGGTTCTCGCCGTGGACATCAATCCCCTGGCCCTGCGCCTGTGCGCGGTCAACGCCGCGCTGGCCGAGGTTGCCAACGTCGAGGTCGCCCACAGTGATGTTCTCCGGGACGTCGAGGGCAGCTTTGACCTGATCGTTGCCAACCCACCGTACATGGCCGACCCGGCCGAGCGCGCCTATCGCCATGGTGGCGGCGCGCTGGGCGCCGGCCTGTCGCTGCGTATCGTCGAGCAGGCGTTGCCCCGGCTTACGCCTGGTGGCTCGCTGGTGCTCTACACCGGCGTGGCGATGGTCGACGGTCGCGATCCGTTCCTGGAGGCGCTTGGCCCTTGGCGCGATTCGGCGCAGTACGGCTGGACTTACCGGGAACTGGACCCGGATGTCTTCGGCGAGGAATTGCTGACCCCGGGTTATCAGGACGTGGAACGGATCGCCGTGGTGGCGTTGGTTGTCACCCGCACGGGTGCGGGTATCGGAGGGAACATCGATGAACAGGCGTTTGAAGTTCGGCATTGAMNQEDRLSEPDLALLQLGRRLHADGYRFITPTPLTHERVNKRPGNERSKTLRDVFGWSRPFAPGLISADEQRQLQEAQVLEERDGLLYSRVRWSSLDGMLFAHSQFPTQANDAVFFGPDSYRFAHLIHTHLQQNFTAVHRAVDIGCGAGVGAMVIARARREAEVLAVDINPLALRLCAVNAALAEVANVEVAHSDVLRDVEGSFDLIVANPPYMADPAERAYRHGGGALGAGLSLRIVEQALPRLTPGGSLVLYTGVAMVDGRDPFLEALGPWRDSAQYGWTYRELDPDVFGEELLTPGYQDVERIAVVALVVTRTGAGIGGNIDEQAFEVRHNANANANANA
D1-35_052671386hypothetical proteinATGACTGCGCTGACATCCCTCCAATCCAGGCCTGCCACCGCGCAGCCATTCACCACTGCGGGCAACGTTCGTCAATGCTACGAGCGGCTGCTGCAGGGCCCCGACGACAGCGACAAGCAAGCCGATGCCCAAGCCTTTCTCCAGCCTTTGCTGGAGCAGGCCGCGGCGTTGCCCCAGGAGATGCCCGACGATCCAGCGGCGCTGCTTGCCTGGGTAGAACAGCACAGCGCCGGCGTGGCCCGGCAGTACGCCGACTACCTGGAACGACGCAAGAGTGGCGGTCGTCGGGAGTTCTTCCACAGCAAGGCCCAGGCTTTGTACTTCCTGCAGGCCGTGGCGCCGACGAAACTAGTGGATGGCGCCTGGTTGTATGGCGTGCTCAGGCACTGGCATGACCACCGTTTCGAAGGGCTGCTGTGTACCTATCTGGAAGAGCTCGGCGATGGTGTGCCGGCCCAGAACCATGTGGTGCTCTACCGCAAGCTGCTAGCCGAACATGGGCTGTCGGACATGCCCGACATCCACGATGACCGCTATCTGCAAGGTGCGGTGCAACTGGCTTTGGGTTATGCCGGCGACGAGTATCTGCCCGAGGTCATCGGCTACAACCTTGGCTACGAACAACTGCCACTGCATTTGCTGATCAGCGCCTATGAGCTGAGCGAACTCGACATCGACCCGTATTACTTCACTCTCCATGTGACCATCGACAACGCCAGCACCGGCCATGCCCACAAGGCTGTGCAATCGCTGCTGCAACTGATGCCGATGGAGGCGGATCGCGAATCCTTCTGGCGTCGGGTCACCCTGGGCTATCGCCTCAACGACCTGGGGCAGGGCAGCCGGGCGGTCATCGAGTCGTTTGACTTGGAACGCGAGGTCCTCGACATGCTTGAGCGCAAGCGCCCGTTTGGCCAACACATGCATTCCGATTACTGCAAATTCGAAGGCAAGACCGTCAACCAATGGCTGGCGGAGCCGGGGCAGCTGGAAGGTTTCCTCAAGGCCATGCAAGGCAAAGGCTGGATCCGGCGCCACGAAGATCCGCAGAACAGCCGCTTCTGGACCCTGATCGAAGGCGCTGGCGCGGCGATGTTCGGGGTCTTCAGCCCTTACGAAAAGCAGCTGTTGCACGATTGGATCGCCGGTGACTGGTTGGAGGAGCGCGGTCGCTCCGGCGCCCGCCGCAGCCTTGGCGCGGCGCAGGATACCCAGGCACCGCCGCAGGATCCGGACGTGCAGAACCTGCAGCAATTACTGCGGGGCAAGGCGCCCGATGCGCAGATGCAGATCCTCTTGTCCTGGCTTTCGCCGCGCGCCCATAGCCATCCGGCCGGGCTGCTGGCGACCCGCCGGTTCATCGAACTCAAATCCGCCCTTCGTTAGMTALTSLQSRPATAQPFTTAGNVRQCYERLLQGPDDSDKQADAQAFLQPLLEQAAALPQEMPDDPAALLAWVEQHSAGVARQYADYLERRKSGGRREFFHSKAQALYFLQAVAPTKLVDGAWLYGVLRHWHDHRFEGLLCTYLEELGDGVPAQNHVVLYRKLLAEHGLSDMPDIHDDRYLQGAVQLALGYAGDEYLPEVIGYNLGYEQLPLHLLISAYELSELDIDPYYFTLHVTIDNASTGHAHKAVQSLLQLMPMEADRESFWRRVTLGYRLNDLGQGSRAVIESFDLEREVLDMLERKRPFGQHMHSDYCKFEGKTVNQWLAEPGQLEGFLKAMQGKGWIRRHEDPQNSRFWTLIEGAGAAMFGVFSPYEKQLLHDWIAGDWLEERGRSGARRSLGAAQDTQAPPQDPDVQNLQQLLRGKAPDAQMQILLSWLSPRAHSHPAGLLATRRFIELKSALRNANANANANA
D1-35_052681332hypothetical proteinATGATTTTCACAGTGTGGGTAGCGGTGCTCGGTGCCGTTTTGCTGACCCTGGCCCTGACGTCGTCCTACCTGCGCTGGATGCCGGTCACCACCTCGGCCGTGTGCCTGGTGCTGGGCGTCGCCATTGGCCCGGCGGGGCTGGGACTGCTGCGGCTGGGGGTCGACGATTCGTCAGGCTGGATGGAGCACCTGACCGAAGTCGCCGTGGTGTTCTCGCTGTTCGTCAGCGGCCTCAAGCTGCGCCTGCCACTGAAGAACCGCAGCTGGCGCGTGGCCTACGGGCTGGCCGGTCCGGTGATGATCCTGACCATCGCCGGCCTGTGCCTGACCTTGCACTACCTGTTTGGGCTCGGATGGGGCGTGTCCATGTTGATCGGCGCGATGCTCGCACCCACCGACCCGGTGCTGGCGGCACTGGTGCAGGTCAATGATGCCCGCGACGATGATCGCGTGCGATTCGGCTTGTCCGGGGAAGCCGGGCTGAACGACGGCACTGCATTTCCCTTTGTCATCCTTGGCTTGCTCATGCTGCAGGAAGACGGCAGCGGATTTCTCGGCGAGTGGGCCTTGCGCAACGTCTTGTGGGCCGTACCGGCGGGGCTGCTGATCGGCTACTGGCTGGGGCGTGGCATCGGCCGGCTGACCTTGTCGATGCGCATCAAGAACGCCGACAGTACCCTGTCGCCAAACGATTACCTGGCCCTGGCCCTGATCGCACTGGCCTACGTGGCGGCGGAGTCGGTGCAGGCTTATGGCTTTCTTTCGGTGTTCGCCGCCGGCCTGGGATTGCGTCAGGCGGAAGTCGAGTCCACCGATGAAAACGCGCCGCCGGCCGAGCATCTGGTGCAACCGCTGGTGGGCCATGAAGCGGTAGAACCGGAGCAGGCCGTGCACGGCGACACCCAGGCCCTGGACGACGGCCAGGTGGCGGCCGGGGTGATGATGAGCGACATGCTGGCGTTCGGCAGCCTGGTGGAGCGCTCCATGGAAGTGTTCCTGGTCACACTGCTCGGCGTGGTCCTTGCCCATCACTGGGATTGGCGGGCCCTGGCCATCGGTGCCTTGCTGTTCGCGGTGATCCGCCCGTTGAGCGTGCTGGCGATGCCTTGGGGGAGATTGCTGGATGGGCCGCAACGGTTATTGATCGGCTGGTTCGGCATACGCGGCATCGGCAGCCTGTTTTACCTGTTCTACGCCTTGAACCATCACCTGCAACCCGAAGTGGCGCAGCTGTGCATCGACCTCACGCTGTCGGTGGTGGCGCTGAGCATCCTGGTGCACGGCGTAAGCACCCAACCCGCACTGGCGTGGTATGAGCGCCGAAAAAAGTGAMIFTVWVAVLGAVLLTLALTSSYLRWMPVTTSAVCLVLGVAIGPAGLGLLRLGVDDSSGWMEHLTEVAVVFSLFVSGLKLRLPLKNRSWRVAYGLAGPVMILTIAGLCLTLHYLFGLGWGVSMLIGAMLAPTDPVLAALVQVNDARDDDRVRFGLSGEAGLNDGTAFPFVILGLLMLQEDGSGFLGEWALRNVLWAVPAGLLIGYWLGRGIGRLTLSMRIKNADSTLSPNDYLALALIALAYVAAESVQAYGFLSVFAAGLGLRQAEVESTDENAPPAEHLVQPLVGHEAVEPEQAVHGDTQALDDGQVAAGVMMSDMLAFGSLVERSMEVFLVTLLGVVLAHHWDWRALAIGALLFAVIRPLSVLAMPWGRLLDGPQRLLIGWFGIRGIGSLFYLFYALNHHLQPEVAQLCIDLTLSVVALSILVHGVSTQPALAWYERRKKPGPT0013856_405DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H+_ANTIPORTER,PGPT0013856-NHA1_like|SOD2_like-K24160NANA
D1-35_05269537hypothetical proteinATGCCCAGAATCCTGACTTACCCTACGCCCGAAGAAGATCTGACCGAGCACAATGCCAAGCTGTTTGGCTCACCCAAGGAGCGGCTGGATTTCTATCGGCGGGAAATCCAGTACGAAACCAGTATTCTCGCCAATCGAACCGACGCGTATCTGGCCGCACAGTCTTTCCTGGTGATTGCCTTCGCGTCGTGCATGGCCAACCTGAATCCGGAGTGGGGCAAGCTCTTCACGCTGATCGTGCCGCCATTTCTGGCGCTGCTCGGTTTCCTGAGTTCGCTCAACGCCTGGCCGGGGATTCGGGCTGCCTACGAGATCATCGACCATTGGCATTTCAAACAAAGCGAACTGCTGCGCAGTGAACCGTTGATGGGCCTGGCCTACGATGATTCGCCGCTGTTCAGCGAGCGCGAGTCGACCCACAAGGGCTATCGCAAGTCGCTGCTGTTTTCGGTGCGCACGCCGTGGATCTTCGCGGCGTTCTGGGTGTTGCTGGGGGTGTATTCGGTGTTCATCCAAGTGACCGACCCGGGTGGCTGAMPRILTYPTPEEDLTEHNAKLFGSPKERLDFYRREIQYETSILANRTDAYLAAQSFLVIAFASCMANLNPEWGKLFTLIVPPFLALLGFLSSLNAWPGIRAAYEIIDHWHFKQSELLRSEPLMGLAYDDSPLFSERESTHKGYRKSLLFSVRTPWIFAAFWVLLGVYSVFIQVTDPGGNANANANANA
D1-35_052721530davD_2COG1012Glutarate-semialdehyde dehydrogenaseATGATTTCCCTGACGGCAGCCCATGAGGCGCCTTTCTACAACTCTAATTCGCTCCGCGTGCGCGCGGTGCTGTTAAGGAAAGCCGACATGCAGCTTAAAGACACCCAGTTGTTCCGCCAGCAAGCCTTTATCGATGGCGCTTGGGTCGATGCGGACAATGGTCAGACGATCAAGGTCACCAACCCGGCGACGGGCGAAGTATTGGGCACAGTGCCGAAGATGGGCGCTGCCGAAACCCGTCGCGCTATCGAAGCCGCCGACAAGGCGCTGCCGGCCTGGCGTGCGTTGACCGCCAAGGAACGCGCCAACAAGCTGCGTCGCTGGTATGAACTGCTGATCGAAAACCAGGACGACCTTGGTCGCCTGATGACCCTGGAGCAGGGCAAGCCGCTGGCCGAAGCCAAGGGCGAGATCGTCTATGCCGCCTCCTTTATCGAATGGTTCGCCGAAGAAGCCAAGCGCATCTATGGTGATGTGATTCCCGGCCACCAGCCGGACAAGCGCCTGATCGTGATCAAGCAGCCGATTGGCGTGACCGCCGCCATCACGCCGTGGAACTTCCCGGCCGCGATGATCACCCGCAAGGCCGGCCCGGCCCTGGCCGCCGGTTGCACCATGGTCATCAAGCCGGCTTCGCAGACGCCGTTCTCGGCCCTGGCCCTGGTAGAGCTGGCGCACCGTGCCGGCATCCCGCAAGGCGTGTTGAGCGTGGTCACCGGCAGTGCCGGCGACATCGGTGGCGAGCTGACCAGCAACCCGATCGTGCGCAAGCTGTCCTTCACCGGTTCGACCGAGATCGGTCGCCAGTTGATGGCCGAATGCGCCAAGGACATCAAGAAGGTTTCCCTGGAACTGGGCGGCAACGCGCCCTTCATCGTGTTCGACGACGCGGACCTGGATAAGGCCGTCGAAGGGGCGATCATTTCCAAATACCGCAACAACGGCCAGACCTGCGTCTGCGCCAACCGCCTTTACGTCCAGGATTCGGTATACGACGCCTTCGCCGAGAAACTCAAGGCAGCGGTGGCCAAGCTCAAGATCGGCAACGGTCTGGAAGACGGCATCACTACCGGTCCGTTGATCGACGAAAAAGCGGTTGCCAAGGTACAGGAACATATCGCCGATGCGGTCAGCAAAGGCGCAACCGTGCTGTCGGGCGGCAAGCCGATGGAAGGCAATTTCTTCGAGCCGACCATCCTGACCAACGTGCCGAAGAATGCCGCCGTGGCGAAGGAAGAGACCTTCGGCCCATTGGCGCCGCTGTTCCGCTTCAAAGACGAAGCCGAAGTGATCGCGATGTCCAACGACACCGAGTTCGGCCTGGCTTCGTACTTTTATGCCCGCGACCTGGGCCGTGTGTTCCGTGTGGCCGAAGCCCTGGAATACGGCATGGTCGGCGTCAACACCGGTTTGATCTCCAACGAAGTCGCGCCGTTCGGCGGCATCAAGGCTTCGGGCCTGGGCCGTGAGGGCTCCAAGTACGGCATCGAGGACTACCTGGAAATCAAATACCTCTGCCTGGGTATCTGAMISLTAAHEAPFYNSNSLRVRAVLLRKADMQLKDTQLFRQQAFIDGAWVDADNGQTIKVTNPATGEVLGTVPKMGAAETRRAIEAADKALPAWRALTAKERANKLRRWYELLIENQDDLGRLMTLEQGKPLAEAKGEIVYAASFIEWFAEEAKRIYGDVIPGHQPDKRLIVIKQPIGVTAAITPWNFPAAMITRKAGPALAAGCTMVIKPASQTPFSALALVELAHRAGIPQGVLSVVTGSAGDIGGELTSNPIVRKLSFTGSTEIGRQLMAECAKDIKKVSLELGGNAPFIVFDDADLDKAVEGAIISKYRNNGQTCVCANRLYVQDSVYDAFAEKLKAAVAKLKIGNGLEDGITTGPLIDEKAVAKVQEHIADAVSKGATVLSGGKPMEGNFFEPTILTNVPKNAAVAKEETFGPLAPLFRFKDEAEVIAMSNDTEFGLASYFYARDLGRVFRVAEALEYGMVGVNTGLISNEVAPFGGIKASGLGREGSKYGIEDYLEIKYLCLGIPGPT0001580_4259DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_TRIGONELLINE_USAGEPLANT_DERIVED_TRIGONELLINE_DEGRADATION,PGPT0001580-gabD-K00135NANA
D1-35_052741278davT_2COG01605-aminovalerate aminotransferase DavTATGAGCAAGACCAACGCAGACCTGATGGCCCGCCGTACCGCCGCTGTTCCCCGCGGTGTCGGCCAGATTCACCCGATCTTTGCCGAATCGGCGAAGAACGCCACGGTTACCGACGTTGAAGGTCGTGAATTCATCGACTTCGCCGGTGGTATCGCCGTACTGAACACCGGCCACGTGCACCCGAAGATCATCGCCGCCGTCACCGAACAGCTGAACAAGCTGACCCACACTTGCTTCCAGGTCCTGGCCTACGAGCCGTACGTGGAGCTGTGCGAAAAAATCAACGCCAAGGTCCCGGGTGATTTCGCCAAGAAAACCCTGCTGGTGACCACCGGTTCCGAAGCGGTGGAAAACGCCGTGAAGATCGCCCGCGCCGCCACCGGCCGTGCCGGTGTGATCGCCTTCACCGGCGCTTACCACGGTCGTACCATGATGACCCTGGGCCTGACCGGTAAGGTCGTGCCTTACTCGGCCGGCATGGGCCTGATGCCTGGCGGCATTTTCCGCGCGCTGTACCCGAACGAGCTGCATGGCGTGAGCGTCGACGACTCCATCGCCAGCATCGAACGCATCTTCAAGAACGACGCCGAGCCACGCGACATCGCCGCCATCATCATCGAGCCGGTCCAGGGTGAGGGTGGCTTCTATGTGGCGCCGAAAGCCTTCATGCAGCGCCTGCGCGCCCTGTGCGACCAGCACGGCATCCTGCTGATTGCCGACGAAGTGCAGACCGGCGCCGGTCGTACCGGTACGTTCTTCGCCATGGAGCAGATGGGCGTCGCCGCCGACCTGACCACCTTTGCCAAATCCATTGCTGGCGGTTTCCCGCTGGCCGGTGTGTGCGGCAAGGCCGAATACATGGATGCGATCGCGCCGGGCGGCCTCGGCGGCACCTACGCCGGCAGCCCGATTGCCTGCGCCGCTGCGCTGGCGGTGATGGACGTGTTCGAAGAAGAACACCTGCTGGATCGCTGCAAGGCCGTGGGCGAGCGCCTGGTGACTGGCCTCAAGGCTATCCAGAAGAAGTACCCGGTCATTGGTGAAGTCCGTGCCCTGGGCGCCATGATCGCCGTGGAGCTGTTCGAAGATGGCGACACCCACAAGCCGAACGCTGCCGCCGTTGCGCAAGTGGTGGCCAAGGCGCGTGACAAGGGCTTGATCCTGCTGTCCTGCGGGACCTATGGCAACGTCCTGCGCGTGCTGGTGCCGCTGACTTCGCCGGATGAGCAACTGGACAAAGGCCTGGCAATCATCGAAGAGTGTTTCTCCGAGCTTTGAMSKTNADLMARRTAAVPRGVGQIHPIFAESAKNATVTDVEGREFIDFAGGIAVLNTGHVHPKIIAAVTEQLNKLTHTCFQVLAYEPYVELCEKINAKVPGDFAKKTLLVTTGSEAVENAVKIARAATGRAGVIAFTGAYHGRTMMTLGLTGKVVPYSAGMGLMPGGIFRALYPNELHGVSVDDSIASIERIFKNDAEPRDIAAIIIEPVQGEGGFYVAPKAFMQRLRALCDQHGILLIADEVQTGAGRTGTFFAMEQMGVAADLTTFAKSIAGGFPLAGVCGKAEYMDAIAPGGLGGTYAGSPIACAAALAVMDVFEEEHLLDRCKAVGERLVTGLKAIQKKYPVIGEVRALGAMIAVELFEDGDTHKPNAAAVAQVVAKARDKGLILLSCGTYGNVLRVLVPLTSPDEQLDKGLAIIEECFSELPGPT0007655_65DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSINSECTICIDAL_COMPOUNDSINSECTICIDAL-GAMMA-AMINOBUTYRIC_ACID_BIOSYNTHESIS,PGPT0007655-davT|gabT-K14268NANA
D1-35_052751215rssB_3Regulator of RpoSATGACTGCTGTGGATTTACCCGCTGTACCGCGTGTGTTGATCGCCGAGGCCGATCCGGCGTCCAGGGAGCTGCTTGAACAAGTGCTGTCCGGAGTGCGTTGCGATGCGCGGATAGACACTTGTGGCGAGGGACGCCAGGCCTTGGAGCTCCTGGCGCATAGTTCTTACGACATGGTGATCGCCGATTGGGAACTGCCGGGTGTCGACGGCCTGAGCATCTTGCGCAGCTTGCGCCAACACCATCGCACGCCCGTGTTGCCGTTCATCCTGGTGAGCCGGCGCAACGACAGCGCCAGCGTGCGCGAGGTCTTGCCCCTGGCGCCGACGGCCTATCTGACCAAGCCCTTGAACCGGGAAAACCTGACCCAGCGTCTGCAAGGGTTACTTCTCCATAGCGAAGACACATCCAACGCCGCGCCAATTCCAGGACCGGGCCTTACATTGGCAACGTTCCTGGAGCGTCGACGAGACATGGCCGAAGGCGCGCCGTTGATGACCGATGTGCAGGTCGCGATCAAACGCAGCCTCAATCCTGGTGGACTGGATCTGAAACTGCTGGAAGAAGAGCTCCGTACTGACCCGCAGATCACCGCCGTGCTGATTGCCGCAGCCAACAGCGCCGCGCAACATCAAGGCGGCGGTCCGGTGCAGACCGTGGCCCAGGCGCTGCATCAGCTAGGCACCGGGCAAAGCATGAACCTGATCCTGGGCTTGACGCTCAAGCGCTGTGCCCGGTTGAACGTGCCTTGGCTGGCGGACTATGCCGAACGTTATTGGGAGTTGTCGTTGCACACCGCCGAGTACGCCCGGACGATGGCGCGCATGCTTGATCTGGAGCAGGAGCGCTGTTATTGCGCCGGCCTGTTGCATCGCTTGGGCGACCTGGCACTGCTGCGCTGCATGGAAGAGTGGAAGCAGGCCGGCGGCGAGCTGGACGAGCCGGAGGAAATCGGCGATTCGCTCGAACAGTTCGGCGCCGGTTTTGGCTCGGCGCTGCGTACCCGCTGGCGCTTGCCGCTGGAGCTGCGCGAATTGATCGCGGCGGTCTACGGTCTCGGTGGCGGGGTTTATTCCCGCGAGGCGCTGGTGATGAACATGGCGGCGCAGATGGCGCATTTACCCGCGCACGAAGGGCTTGAAGAACTGGCCCGGGGACGCACGGCGCGCTTGCTGAAGATCGGGCTGCCAGAGTTGATGCGGTTGCGCCGCCAGTAAMTAVDLPAVPRVLIAEADPASRELLEQVLSGVRCDARIDTCGEGRQALELLAHSSYDMVIADWELPGVDGLSILRSLRQHHRTPVLPFILVSRRNDSASVREVLPLAPTAYLTKPLNRENLTQRLQGLLLHSEDTSNAAPIPGPGLTLATFLERRRDMAEGAPLMTDVQVAIKRSLNPGGLDLKLLEEELRTDPQITAVLIAAANSAAQHQGGGPVQTVAQALHQLGTGQSMNLILGLTLKRCARLNVPWLADYAERYWELSLHTAEYARTMARMLDLEQERCYCAGLLHRLGDLALLRCMEEWKQAGGELDEPEEIGDSLEQFGAGFGSALRTRWRLPLELRELIAAVYGLGGGVYSREALVMNMAAQMAHLPAHEGLEELARGRTARLLKIGLPELMRLRRQNANANANANA
D1-35_05276990hypothetical proteinATGGTCGACAAGAACCTACAGGATTCATCCCAGCCACATTGGCCAGAAGCGGCCCAGACACTCATGGCGCTGATGCACGCCCAAGGGGAAGTGGCGCGTCTGAGCGAGCGGGAGCAGTTGTTCAGTTCGCTGCTGGTCAGCGTCAACGCGGTGCTGTGGGCATTCAATTGGGAAACCCGGCAAGTGCTGTATGTCAGCCCCGCCTACGAGCGGATTTTCGGCCGCCCGGCCGGCCTCGTGCTTGCTGACTACAACGAATGGCGTGACGCAATCTATCCGGACGATCTGGATTACGCCGAGCGCAGCCTCGCCGAAGTGTTGGTCAAAGGTGCCGTCGAGGATCGGGAATACCGCATCATCGCCGCCGACGGCCAGATCCGCTGGCTCAGCGACAAATGCTTCATCAACCGTCAGGCCGATCCGGGCCAACCGGTGATTGTGGTCGGCATCGCCGAAGACATCACCGAGAAGAAGCTGCTCGAAAGCGAACTGCAGCGACTGGCGACCACCGACGTGCTAACCCAGAGCAGCAACCGCCGTCATTTCTTCGAGTGCGCCCATCGGGAATTCGAGCAGGCAAGGCTGCAAGGCACGCCGATGGCATTCCTGTTGCTGGACATCGATGACTTCAAACTGATCAACGACACTTACGGCCACCAGGAAGGCGATACGGTATTGCAAAAGATCGCCGAGAGCGGGCGGAGCGTGCTCAGGCGCGGTGACCTCTTCGGTCGGATCGGTGGTGAAGAGTTTGCCGCTGTTTTCCCCGGCTGTGCCCCGGACATGGCATTGCAGGTCGCCGAGCGCTTGCAGCGGGAAATCCAGCGCCTGGCGTTTCGCTGCGGGGAGCATGACTTCGGCATCACCGTCAGTCAGGGCCTGACCGGGATCAGCGCCGAAGACCAGACCCTCGACAACCTGTTCGCCCGTGCTGACGCGGCGATGTACGAGGCCAAGCGCCAGGGCAAGAACCGCATCATCGCGGCTTGAMVDKNLQDSSQPHWPEAAQTLMALMHAQGEVARLSEREQLFSSLLVSVNAVLWAFNWETRQVLYVSPAYERIFGRPAGLVLADYNEWRDAIYPDDLDYAERSLAEVLVKGAVEDREYRIIAADGQIRWLSDKCFINRQADPGQPVIVVGIAEDITEKKLLESELQRLATTDVLTQSSNRRHFFECAHREFEQARLQGTPMAFLLLDIDDFKLINDTYGHQEGDTVLQKIAESGRSVLRRGDLFGRIGGEEFAAVFPGCAPDMALQVAERLQREIQRLAFRCGEHDFGITVSQGLTGISAEDQTLDNLFARADAAMYEAKRQGKNRIIAANANANANANA
D1-35_052771185hypothetical proteinATGTGGTACGAAGGTTTTCTTGGCTTGTCGGCCTGGTCGCTGGTGGCAGTCACCCTGCTGATGACTCACGTGACGATCATCAGCGTCACGGTCTACCTGCACCGGTATTCGGCTCACCGTTCCCTGGAACTCAACGCCGGTCTCAAACATTTCTTCCGCTTCTGGCTGTGGCTGACCACGGCGCAGAATACCCGCGAGTGGACCGCCATCCACCGCAAGCACCACGCCAAATGCGAAACCGAGGACGATCCCCACAGCCCGGTGATCAAAGGCCTGTCTACGGTGCTGCGCAAGGGCGCCGAGCTGTACCGCGCCGAAGCGGAAAATCCGGAAACCTTGCGCATCTATGGCAAGAACTGCCCCGAGGACTGGATCGAACGCAACCTGTACAGCCGCTTCCCCCTACTGGGCGTGGCGATTATGGGCGTCATCGACCTGCTGCTGTTCGGCACAATAGGCATCACTATCTGGGCCATCCAGATGATGTGGATCCCGGTCTGGGCCGCTGGCGTCGTCAATGGCCTGGGGCATGCCGTGGGCTACCGCAATTTCGAATGCCGTGACGCGGCCACCAATCTGGTGCCCTGGGGCATCCTCATTGGTGGCGAAGAACTGCACAACAACCACCACACCTATCCCAATTCGGCCAAGCTGTCGGTGCGCAAATGGGAATTCGACCTGGGCTGGGCCTGGATCAAGGTCTTCAGTTTCCTGCGCCTGGCCAAGGTCCAGCGGGTCGCGCCGATCGCCCACCGGGTCGAAGGCAAGGGCCACCTGGACATGGACACCGCCATGGCGATCCTCAACAACCGTTTCCAGATCATGGCCCAGTATCGCAGGCTGGTCATCGCGCCCCTGGTCAAGCAGGAGCTGGAAAAAGTCGATCACTCGGTCCGCCATCAGTTTCATCGGGCCAAACGCCTTTTGTCGCGTGAAACCAGCCTGCTGGACGAGCGCCATCATGTGCGCATCCAGAACATGCTGGAACACAGCCAGGCGCTGAAGGTGATCTACGAGAAGCGCCTGGCCTTGCAGCAGATCTGGGTCAAGACCAGCAGCAACGGCCACGACATGCTCGCGGCCATCAAGGAATGGGTCCACGAAGCCGAGGCCAGCGGCATCCAGTCACTGCGCGATTTTGCCGACCAGCTCAAGACTTATTCCTTGCGGCCGGCCACCGCCTGAMWYEGFLGLSAWSLVAVTLLMTHVTIISVTVYLHRYSAHRSLELNAGLKHFFRFWLWLTTAQNTREWTAIHRKHHAKCETEDDPHSPVIKGLSTVLRKGAELYRAEAENPETLRIYGKNCPEDWIERNLYSRFPLLGVAIMGVIDLLLFGTIGITIWAIQMMWIPVWAAGVVNGLGHAVGYRNFECRDAATNLVPWGILIGGEELHNNHHTYPNSAKLSVRKWEFDLGWAWIKVFSFLRLAKVQRVAPIAHRVEGKGHLDMDTAMAILNNRFQIMAQYRRLVIAPLVKQELEKVDHSVRHQFHRAKRLLSRETSLLDERHHVRIQNMLEHSQALKVIYEKRLALQQIWVKTSSNGHDMLAAIKEWVHEAEASGIQSLRDFADQLKTYSLRPATAPGPT0012215_801DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSFUNGICIDAL_COMPOUNDS|ANTIBIOTICSFUNGICIDAL-MOTILITY-MEDIATED_DEFENSE_SIGNALLING,PGPT0012215-desC-K00507NANA
D1-35_052781908hypothetical proteinATGACCGTCTATCACCGCGCTGCCATGCGTGGGGCACTGCTTTATCTGGTGCTGTCAGTCGCCTGGCTGCAGCTGGTTGGTTATTTATTGAGCAGTTTCTTCGATCATTCGGCCGATCGGCTGCGTTGGCAACTGATCAACGGTTATGCCTGGGTACTCGTCAGTGCCGGATTGATTTTCATTGCACGGATGCGGATAGCACGCTTTTTCGAGAAAGCCGAAGGTAATGTCGACCGTGAACGGTTACGCCAGGCCGCCGCGGTGTTCGACTGCACCCGCGAAGGCGTCCTGGTCACGGACCGCCATGGTTTGATCGTGCATGTGAACCGGGCATTCATGGCAATCACCGGCTATGCCCGCGACGAAGTGTTGGGCCGGCAACCGAATCTGTTCAAGTCCGGCCGGCATGGCCCGACTTTTTATCGAGAGATGTTTGCGGCGCTGTCCAGCCGCGGCGAATGGAGTGGCGAAATCTGGAACCGCCGCAAGAGCGGTGAAATCTACCCGCAATGGCAGACTATCCGGGCCGTCGTCGATGACTCCGGCGAAGTCAGCCAATACGTCGCGGTGTTTTCCGACATCAGTGCGATCAAGGACTCGGAGCATGAGCTGGCGCATCTGGCCCATCATGATCCGCTGACTGGCCTGCCCAATCGCCTGCTGTTTTCCGATCGCGCCGAGCAGGCGGTGGCTTCGGCGCAACTGCACAAGCGTGGGTGCGCGTTGCTGCTGCTGGACCTGGATCATTTCAAGAACATCAACGACAGCCTCGGGCACAACGTCGGTGACGAGCTGCTCAAAGGCGTTGCCGAACGCTTCCTCGGGCTGTTTGCGCCCGGTATCACTCTGGCGCGGCTAGGCGGTGACGAATTCGCGGTGCTGGTGGAAAACTGCTCGCAGCCGGGTCAGGCCGCCGCTTTGGCCCGGCGTATCCTCGATGCCTTGAAAGCACCGTTGCAGCTCGGCGAGCAATCGCTGTTTATCAACGCCAGCATCGGCATCAGCCTGTTTCCCGGTGACGCCCTCAGCGCCGGGCAACTGCTGCGCAACGCCGACTCGGCACTGTTCAAGGCCAAGAACAGCGGACGTGACGGCTACGCGTTATATACCGAGGAACTCACTGCTCATGCCCAGCAAAGGGTCGAGATCGCCTTCGAACTGCGTCGCGCGCTCCAGCAGCAGGAGCTACGCGTGCATTACCAACCGGTGCACGACCTGGCCACCAGCCGGTTGATCGGCGTCGAGGCGCTGGTGCGCTGGGAACATCCCGTGCGTGGTCTGGTTTCGCCGGCGGAGTTCATTCCCATCGCCGAGCGCACGGGGTTGATCGCTCAGATCGATGCCTGGGTCATGGACCAGGCTTGTCGGCAAATGTGTCTTTGGCAGCAGGCCGGTGTGGTTTTGTCATTCGTTGCGGTCAACGTCTCCAGCCGTTTGTTTGCTCGCCGCGAATTGTACGAGCAGGTCGCCCGCGTACTTCACGACACGGGCCTCGATCCGGCCTTCCTGGAGCTGGAGGTGACCGAAAGTGCGGTCATGGATGATCCGGAGGTGGCGCTGGAACAAATGCACCGTCTGCGGGAGTTGGGCGTGCGGTTGGCCATTGATGATTTCGGCACAGGTTATTCGTCGCTGCTGCGGCTCAAGCGTCTACCGGTGCAGAAACTCAAGATCGACCAGGGTTTTGTCGCCGGGCTGCCCTGGGATGAAGACGACGCGGCGATCGTCCGGGTAATCATCGCCCTGGCCCGCAGCATGGGCATGCAGGTGCACGCAGAAGGTATCGAGCAGCGAGAGCAAGCGGCATTTCTGCTTGAACAGGCGTGTGAGCTAGGGCAGGGCTACTGGTTTGGTCGACCGGTTGTGGCGCAACAGTTGGATTGGAATCGTGCACCGGTGATTGGCTGAMTVYHRAAMRGALLYLVLSVAWLQLVGYLLSSFFDHSADRLRWQLINGYAWVLVSAGLIFIARMRIARFFEKAEGNVDRERLRQAAAVFDCTREGVLVTDRHGLIVHVNRAFMAITGYARDEVLGRQPNLFKSGRHGPTFYREMFAALSSRGEWSGEIWNRRKSGEIYPQWQTIRAVVDDSGEVSQYVAVFSDISAIKDSEHELAHLAHHDPLTGLPNRLLFSDRAEQAVASAQLHKRGCALLLLDLDHFKNINDSLGHNVGDELLKGVAERFLGLFAPGITLARLGGDEFAVLVENCSQPGQAAALARRILDALKAPLQLGEQSLFINASIGISLFPGDALSAGQLLRNADSALFKAKNSGRDGYALYTEELTAHAQQRVEIAFELRRALQQQELRVHYQPVHDLATSRLIGVEALVRWEHPVRGLVSPAEFIPIAERTGLIAQIDAWVMDQACRQMCLWQQAGVVLSFVAVNVSSRLFARRELYEQVARVLHDTGLDPAFLELEVTESAVMDDPEVALEQMHRLRELGVRLAIDDFGTGYSSLLRLKRLPVQKLKIDQGFVAGLPWDEDDAAIVRVIIALARSMGMQVHAEGIEQREQAAFLLEQACELGQGYWFGRPVVAQQLDWNRAPVIGPGPT0023624_538DIRECT 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
D1-35_05279183hypothetical proteinATGAGCGCATCCCTACGTAGCGTTGACGGCCAGGACGAAGCAACCATCTTGCGCGAGATCCAGAGTGCATTGCGTGACCTGCGCTTTGGCGCGGTGGAGATTACCGTGCACAACGCCCAGGTGGTCCAGATCGAGCGCAAGGAAAAATTCCGCTTGCAGCAACCGAGTCATAAACCGAGCTGAMSASLRSVDGQDEATILREIQSALRDLRFGAVEITVHNAQVVQIERKEKFRLQQPSHKPSNANANANANA
D1-35_052801014sbp_2COG1613Sulfate-binding proteinATGTCGTCGATTCGCCGTTATGCCTTGGCCGCCCTGGCCAGTGCTGTTTTTGCAGGTTCCGCGGTTGCCAAGGACTACGAGTTGCTCAACGTGTCCTACGACCCGACCCGCGAGCTGTATCAGGATTACAACGCCGAATTCGCCAGCTTCTGGAAAAAAGCCCATCCGGACGACACCGTGAAAATCCAGCAGTCCCATGGTGGTTCGGGCAAGCAAGGCCGAGCAGTAATTGACGGCCTGCGTGCCGACGTCGTGACCCTGGCCCTGGCCGGCGACATCGACGAAATCGCCAAATTGGGCAAGTCACTGCCGGCGGACTGGCAAAAACGCCTGCCGGATGCCAGCACGCCTTACACCTCGACCATTGTGTTCCTGGTGCGCAAGGGCAATCCGAAGGGCATCAAGGACTGGGGCGACCTGATCAAGGATGACGTCTCGGTCATCACGCCAAACCCGAAGACCTCCGGCGGTGCCCGCTGGAATTTCCTCGCCGCCTGGGCCTACGGCCTGAAAGCCAACGGTGGCGACGAAGCCAAGGCCAAGGAATACGTGCAGGCGCTGTTCAAGCACGTGCCGATCCTCGACACCGGTGCCCGTGGCTCGACCATCACGTTCGTCAACAACGGTCAGGGAGACGTGTTGCTGGCCTGGGAAAACGAAGCGTTCCTGGCGCTGAAAGAGGACGGTGGCGCGGACAAGTTCGACATCGTTGTGCCGTCGCTGTCGATCCTCGCCGAACCGCCGGTTGCGGTGGTGGACAAGAACGCCGAGAAAAAGGGTAATGCCGAGATCGCCGAAGCGTACCTCAAGCACCTGTACAGCCCGGCCGGCCAGGAAATTGCGGCGAAAAACTTCTATCGTCCGCGTGACAAGGACGTGGCCGCCAAATACGCCCGGCAGTTCCCGAAACTTGAGCTGGTGACTATCGACAAGGACTTCGGCGGCTGGAAAACGGCACAGCCTAAATTCTTCAATGATGGCGGTGTGTTCGACCAGATCTATCAGGCGCAGTAAMSSIRRYALAALASAVFAGSAVAKDYELLNVSYDPTRELYQDYNAEFASFWKKAHPDDTVKIQQSHGGSGKQGRAVIDGLRADVVTLALAGDIDEIAKLGKSLPADWQKRLPDASTPYTSTIVFLVRKGNPKGIKDWGDLIKDDVSVITPNPKTSGGARWNFLAAWAYGLKANGGDEAKAKEYVQALFKHVPILDTGARGSTITFVNNGQGDVLLAWENEAFLALKEDGGADKFDIVVPSLSILAEPPVAVVDKNAEKKGNAEIAEAYLKHLYSPAGQEIAAKNFYRPRDKDVAAKYARQFPKLELVTIDKDFGGWKTAQPKFFNDGGVFDQIYQAQPGPT0003015_1111DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-SULFATE|THIOSULFATE_TRANSPORT,PGPT0003015-sbp-K23163NANA
D1-35_05281819cysTCOG0555Sulfate transport system permease protein CysTATGTCGCGTCGCATATCCCCCGTCATACCCGGCTTCGGGCTGACGCTGGGCTACACCCTGGTGTACCTCAGTCTGATTGTGCTCATACCCCTGGCGGCGATGTTCGTACATGCCGCCCAACTCACCTGGGAACAGTTCTGGGCGATCATTTCGGCGCCGCGGGTGCTGGCAGCCTTGAAGCTCAGTTTCGGCACCGCGCTGTACGCTGCGATCATCAATGGCGTGATTGGCACGCTGCTGGCCTGGGTGCTGGTGCGCTACACCTTCCCGGGGCGCAAGATCATCGACGCGATGATCGATTTGCCGTTCGCCTTGCCCACCGCCGTGGCCGGTATCGCCCTGACCGCGTTGTACGCGCCGACCGGCCTGGTCGGCCAGTTCGCCACCGACCTGGGTTTCAAGATTGCCTACACCCCGCTGGGCATCACCCTCGCGCTGACCTTCGTGACGCTGCCGTTCGTGGTGCGCACGGTGCAGCCGGTGCTCGCCGACATTCCCCGTGAAGTCGAAGAAGCCGCCGCGTGCCTCGGTGCCAAGCCATGGCAGGTGTTCCGCCACATCCTCGTGCCGGCGTTGTTGCCGGCCTGGTTGACCGGCTTCGCACTGGCGTTTGCCCGGGGCGTGGGCGAGTACGGTTCGGTGATTTTCATCGCCGGCAACATGCCGATGAAAACCGAGATCCTGCCGCTGCTGATCATGGTCAAGCTCGACCAATACGACTACACCGGCGCCACCTCCATCGGCGTGCTGATGCTGGTGGTTTCCTTCGTCCTGCTGCTGCTGATCAACTTGTTGCAGCGGCGCATCGAAACCCCATAAMSRRISPVIPGFGLTLGYTLVYLSLIVLIPLAAMFVHAAQLTWEQFWAIISAPRVLAALKLSFGTALYAAIINGVIGTLLAWVLVRYTFPGRKIIDAMIDLPFALPTAVAGIALTALYAPTGLVGQFATDLGFKIAYTPLGITLALTFVTLPFVVRTVQPVLADIPREVEEAAACLGAKPWQVFRHILVPALLPAWLTGFALAFARGVGEYGSVIFIAGNMPMKTEILPLLIMVKLDQYDYTGATSIGVLMLVVSFVLLLLINLLQRRIETPPGPT0003000_1626DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0003000-cysT|cysU-K02046NANA
D1-35_05282870cysW_2COG4208Sulfate transport system permease protein CysWATGTCCCAATCGTCTATTTCCGCCGCCTCCACCAACGCTGCCCGCCGCGGCAGCGCGGTTTCGCGGCGCATCCTGATCGGCCTCGGCTGGCTGGTTTTTGCACTGTTTCTGCTGTTGCCGCTGTTCATCGTGGTGTCCCAGGGCCTGAAGTCGGGCCTGGGTACTTTCTTCGCGGCGATCTTCGAGCCCGATGCGTTGTCGGCGCTCAAGCTCACGGTGATTGCGGTACTGATTTCGGTACCGTTGAACCTGGTGTTCGGCGTCAGCGCCGCATGGTGCGTGAGCAAGTATTCGTTCCGTGGCAAAAGCATGCTGGTGACGCTGATCGACCTGCCGTTCTCGGTGTCGCCGGTAATCGCTGGCCTGGTCTACGTGTTGATGTTTGGTGCCCAGGGCCTGTTCGGGCCATGGCTGTCGGATCACGACATCCAGATCGTGTTCGCGCTGCCGGGCATCGTCCTGGCGACGATCTTCGTCACCGTGCCGTTCGTGGCCCGTGAACTGATCCCGCTGATGCAGGAGCAGGGCACCCAGGAAGAAGAAGCCGCGCGCCTGCTGGGCGCCAACGGCTGGCAGATGTTCTGGCATGTGACTGTGCCGAACATCAAGTGGGGTCTGATCTATGGCGTGGTGCTGTGTACCGCCCGGGCCATGGGCGAGTTCGGCGCGGTGTCGGTGGTTTCCGGGCACATTCGCGGGGTGACCAACACCCTGCCGCTGCACGTCGAGATCCTCTACAACGAATACAACCATGTGGCCGCGTTCGCCGTGGCGAGCCTGTTGCTGATCCTGGCGCTCTTCATCCTGCTGCTCAAGCAGTGGAGCGAAAACCGAATCAACCGCCTGCGCGCCAGCGCCGCGGAGGAATAAMSQSSISAASTNAARRGSAVSRRILIGLGWLVFALFLLLPLFIVVSQGLKSGLGTFFAAIFEPDALSALKLTVIAVLISVPLNLVFGVSAAWCVSKYSFRGKSMLVTLIDLPFSVSPVIAGLVYVLMFGAQGLFGPWLSDHDIQIVFALPGIVLATIFVTVPFVARELIPLMQEQGTQEEEAARLLGANGWQMFWHVTVPNIKWGLIYGVVLCTARAMGEFGAVSVVSGHIRGVTNTLPLHVEILYNEYNHVAAFAVASLLLILALFILLLKQWSENRINRLRASAAEEPGPT0003005_1055DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0003005-cysW-K02047NANA
D1-35_05283990cysA_3COG1118Sulfate/thiosulfate import ATP-binding protein CysAATGTCGATCGAAGTCCGTAACGTCAGCAAGAATTTCAACACCTTCAAGGCCCTCGACGATATCAGCCTGGACATCCAGAGCGGCGAGCTGGTGGCGCTGCTCGGCCCGTCGGGCTGTGGCAAGACGACCCTGCTGCGGATCATTGCCGGCCTCGAGACGCCGGACCAGGGCAACATCGTGTTCCATGGTGAAGACGTATCCGGCCACGACGTGCGTGATCGCAACGTCGGTTTTGTGTTCCAGCACTACGCCCTGTTCCGCCACATGACGGTGTTCGACAACGTCGCTTTCGGCTTGCGCATGAAGCCCAAGAACCAGCGCCCGAACGAAAGCCAGATCGCGACCAAGGTCCATGAGCTGCTGAACATGGTGCAGCTGGACTGGCTCGCCGACCGTTATCCGGAGCAGTTGTCCGGCGGCCAGCGCCAGCGTATCGCCCTGGCCCGCGCCTTGGCGGTAGAACCCAAGGTGTTGCTGCTGGACGAACCGTTCGGCGCCCTCGACGCCAAGGTCCGCAAGGAATTGCGCCGCTGGCTGGCGCGGCTGCACGAGGACATCAACCTGACCTCGGTATTCGTGACCCACGACCAGGAAGAGGCCATGGAAGTCGCCGACCGGATCGTGGTGATGAACAAGGGCGTTATCGAGCAGATCGGCTCACCGGGCGATGTGTACGAGAACCCGGCCAGCGATTTTGTCTATCACTTCCTGGGCGACTCGAACCGTCTGCATCTCGGGGAGGACCGGCATGTGCTGTTCCGTCCGCATGAAGTGTCGCTGTCGCGCTCGGAACTGGAGGACCACCACGCCGCTGAAGTGCGCGACATTCGTCCGCTCGGCGCGACCACGCGGGTGACGTTGAAGGTCGAGGGCCAAAGCGAACTGATCGAGGCCGAAGTAGTGAAGGACCACGATAGCCTGGTTGGGTTGGCGAAGGGCGAGACGCTGTTCTTCAAGCCGAAGGTCTGGCAGAAAGTTTCAAACCTTTAAMSIEVRNVSKNFNTFKALDDISLDIQSGELVALLGPSGCGKTTLLRIIAGLETPDQGNIVFHGEDVSGHDVRDRNVGFVFQHYALFRHMTVFDNVAFGLRMKPKNQRPNESQIATKVHELLNMVQLDWLADRYPEQLSGGQRQRIALARALAVEPKVLLLDEPFGALDAKVRKELRRWLARLHEDINLTSVFVTHDQEEAMEVADRIVVMNKGVIEQIGSPGDVYENPASDFVYHFLGDSNRLHLGEDRHVLFRPHEVSLSRSELEDHHAAEVRDIRPLGATTRVTLKVEGQSELIEAEVVKDHDSLVGLAKGETLFFKPKVWQKVSNLPGPT0002990_1616DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-H2S-VOLATILE_PATHWAY,PGPT0002990-cysA-K02045NANA
D1-35_05284525hypothetical proteinATGAAAAGCCTCGTCGATCATCTCAGTCAATACGCGACCTATCACCGCGACCCACGCAACATCGCCAGCCATTTTATCGGTATTCCGCTGATTTTCGTTGCCGTCGCCGTGCTCTTGTCACGGCCGGGATGGCCGGTTGGCGCGATTTTGATTTCGCCCGCGCTGCTGGTGGCAGTGGCCAGTGCCTGGTTCTACCTGCGCCTGGAATTGCGCCTGGGTGTGCTGATGACCGTGCTGCTGGGGCTTGCCGTCTGGCTGGGCCAGGTGCTCGCCACGCAAAGCACGGCGATATGGCTGGCCGGTGGCCTGGGCATGTTTGTGGTGGGCTGGGTGATCCAGTTCGTCGGCCACTATTACGAAGGGCGCAAACCGGCGTTCGTCGATGATCTGACCGGGTTGATTGTCGGGCCGTTGTTCGTCGTGGTCGAGGCGGGATTCCTGCTGGGCATGCGCGATGACCTCAAACAACAGATCGAGGCGCAGGCCGGGCCGGTAAAGGTCAATCAGAAGCGGGCCGCAGCCTGAMKSLVDHLSQYATYHRDPRNIASHFIGIPLIFVAVAVLLSRPGWPVGAILISPALLVAVASAWFYLRLELRLGVLMTVLLGLAVWLGQVLATQSTAIWLAGGLGMFVVGWVIQFVGHYYEGRKPAFVDDLTGLIVGPLFVVVEAGFLLGMRDDLKQQIEAQAGPVKVNQKRAAANANANANANA
D1-35_05285687crpCOG0664CRP-like cAMP-activated global transcriptional regulatorATGAATACTCATCCCTGGCATGCGCACTTGATGACCGGCCACTGGTACAGCCATCTGCCCGCCGAGTTACAGAATAGTCTGCTGGAGATGTCGCGGCTGCGTCGCCTGTCGCCCGGTCAGCGGTTGTTCAAGCGCGGCGATCCGCCGTGTGGCGTGTACGCTGTGCTCGAAGGGGCGGTGCGGATCGGCGCCGTCAGTGAGCAGGGCAAGGAAGCGCTGTTGAGCGTCGTGGAGCCGCCCTATTGGTTCGGCGAAATCAGCCTGTTTGATGGCCAGCCACGTACCCATGACGCGCAGGGGGTCGGGCAATGCACGTTGTTGCATGTACCTCAGGCCGGGCTGTTGGCTTTTCTCGAAGAACAACCTGGTTATTGGCGGCAGCTGGCCTTGTTGATGAGCCACAAGTTGCGCCTGACCTTCGTCAACCTCGAACACCTGAGCCTGATGCCTGCTCCGGCCCGCGTGGTCCATCGCTTGCTGATGATTGCCGAAGGCTACGGTGAAATCGAACCGGCACGCCGGGTTTTGCAACTGCCCCAGGACCAGCTGGCGTTGATGCTTTCCCTGTCGCGCCAGACCACCAACCAGATTCTCAAGGATCTGCAGGGGCAGGGGATTCTTCAGCTTGGTTATGGCGAGATCGAAATCCTTGATATCGAGGGGCTGCGGCGCCTGGCTTCTACCTGAMNTHPWHAHLMTGHWYSHLPAELQNSLLEMSRLRRLSPGQRLFKRGDPPCGVYAVLEGAVRIGAVSEQGKEALLSVVEPPYWFGEISLFDGQPRTHDAQGVGQCTLLHVPQAGLLAFLEEQPGYWRQLALLMSHKLRLTFVNLEHLSLMPAPARVVHRLLMIAEGYGEIEPARRVLQLPQDQLALMLSLSRQTTNQILKDLQGQGILQLGYGEIEILDIEGLRRLASTPGPT0015075_2255DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-CARBOHYDRATE_LIMITATION_SIGNALLING,PGPT0015075-clp|crp-K10914NANA
D1-35_05286249hypothetical proteinATGGAAACCCTCGGTGCGTTGATCAGGCGATTGCGCAAGGAACACCGTCTTTCCCAGCAGGCATTGGCTGCGCAGTACGGCATGAGCCGCGCGACGATTTCCGGGATCGAAAACAATACTATTGCTGAAGTCGGCATTCGTAAGGTCGAAGCCATTCTCAACGGTTTTGGCTATGAGCTGACAGCGACCGCCCGTCCAGCGAAGCGCCCGACCCTCGACACGCTGAAAAAGGATTCTTTCCATGACTGAMETLGALIRRLRKEHRLSQQALAAQYGMSRATISGIENNTIAEVGIRKVEAILNGFGYELTATARPAKRPTLDTLKKDSFHDPGPT0027485_739DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-HipA-HipB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027485-REGULATION_hipB-K15773NANA
D1-35_052871239hypothetical proteinATGACTGATGAGCAAGGTCTGGACAGATTGCAAGTCACCGTCAGCGAAGCGGCTATCGGCGTCCTTGGGCGAGGCCAACAGCGCAGCGATTCAGTGTTCACTTATGCACCTGACGCGGATGAGGAGCATTCGGTTTCGCTGACCATGCCAGCGCGTCTTGAAAGCTATAGCTGGGAGCCCGGCGTACCACCAATCTTTGAAATGAACCTGCCGGAAGGCGCCTTGCGTGACGAGCTGGTGCGCCGTTTCAGTAAAGCGGTGCGGGGCTTTGACGACTTTGCCATGCTTGCCATCGTGGGACCTCATCAGCTGGGCCGGGTGGGTATTGGTCGTTTGCATACCGAGGCCGGGCCGCCCGAAACCAGTTTGGCGGACTTGTTGGTGCATGACGGGGCCGAGGGGCTGTTCGAGGATTTGCTGGACACCTATGGGCGATATTCGGGTGTTTCTGGAGTACAACCCAAAGTATTGGTACGCGACAGCGCATCCGCTGTTGATCGCTTGACTCACCGGGGTGCTACACATCTGGTCAAGGCGTTTCGCTCGGACGAGTTCCCCGAGTTGGTCGCCAATGAATTCTTTTGCATGCGGGCCGCGTTGCATGCGGGGCTTGAAGTGCCGGAATTCGAGTTGAGCGAGCGCGGAAAATTTTTGATCGTCAAGCGTTTTGATCTGCCACGCACTGGCGAATATCTGGGCTTTGAGGATTTTTGTGTGCTCAATGGCTCGCCATCGAAAGCCAAGTATGACGGTTCGTATGAAGGCGCGGCCCGGCAGATCAAGGCGTTTGTTTCGCCTCATATGCTCAATCAGGCGCTGGAGTCCTTGTTTAAAATCGTGGCTCTCTCGGCCGGATTGAAGAATGGTGATGCGCACCTGAAAAATTTCGGGGTGCTTTATAACCACTGTGGCGCGGATGCATCTATCCGGCTCGCGCCCGCCTACGACCTCGTCAGCACAGCGGTTTATATTCGTAACGACAACATGGCGCTCTTGTTAGGCGGTTCCAAAGCCTGGCCGAAATATAAAATGCTGATGGGGTTTGGCCGCTCGGCCTGCAATCTGACGGAGAGGCGCTGCAAGGATTTGTTGGAGCAGGTTATTCATGGGATGGACCTTGCGTTGGCCGAGATGCGTCGCTACATGGACGCTAATCAAACGTTCAGAGCAACTGGCGAAGCAATGGTCGAGGCGTGGAAGGCGGGGCTTGCACGCAGCCTCAAAGCTGACAACGACTGAMTDEQGLDRLQVTVSEAAIGVLGRGQQRSDSVFTYAPDADEEHSVSLTMPARLESYSWEPGVPPIFEMNLPEGALRDELVRRFSKAVRGFDDFAMLAIVGPHQLGRVGIGRLHTEAGPPETSLADLLVHDGAEGLFEDLLDTYGRYSGVSGVQPKVLVRDSASAVDRLTHRGATHLVKAFRSDEFPELVANEFFCMRAALHAGLEVPEFELSERGKFLIVKRFDLPRTGEYLGFEDFCVLNGSPSKAKYDGSYEGAARQIKAFVSPHMLNQALESLFKIVALSAGLKNGDAHLKNFGVLYNHCGADASIRLAPAYDLVSTAVYIRNDNMALLLGGSKAWPKYKMLMGFGRSACNLTERRCKDLLEQVIHGMDLALAEMRRYMDANQTFRATGEAMVEAWKAGLARSLKADNDPGPT0027480_2100DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-TOXIN-ANTITOXIN_SYSTEMCE-BACTERIAL_FITNESS-HipA-HipB_TOXIN-ANTITOXIN_SYSTEM,PGPT0027480-toxin_hipA-K07154NANA
D1-35_052881005putative HTH-type transcriptional regulatorATGACGGAACCCACCTCCCTCGCCAGCTGGACCCGCGCCCTGCGCAAACAGCTCGATGCACTGGGCCTGGACAGCCATGCCTTGTGCCTGGAGGCGGGCCTGGACCCACAATGGATGGACGACCCGAACGCCCGTTATCCGCTCTCGGCCACCACGCGCCTGTGGGCGCTCGCGGTGCAGGCCAGCGGTGATCCGGCGATCGGCCTGCGGGTGTCGCGCTTTGTCAGCCCCACCACCTTTCATGCGCTGGGTTATGCCCTGGTAGCCAGCGGCAGCCTGCGGGAAGTGTTCGAGCGGATCGTGCGCTATCACCCGGTGGTCAGCGATGCGCTGACGTTGCAACTGAGCCGTGGCGAGGATCGCTACCGCTTCAATCTCGACATACCGGCGGGACGTCCGGCGCCGGCCCTGGAAGCCATCGACGCGTTCGCCGCGATTTACGTGCGCACCTGCCGTAACCGCCTCGGCCGCGATTACGCCCCGCTGGCGGTTTATCTGCGGCGACCGGAGCCGGCAGACCCCGCCCCTTGGCACAAAGTGTTCCGTTCACCGGTGCACTTCGATGCCGGACATGATTGCCTGGAGTTCAGCCTCGCCGATTTCGACAGTCACCTGGACGACGCCAACCCGGAGCTGGCCGAACACAACGAAACCGTGCTCAAGCGCACCCTCGCCCAGCTCCAGCCGTTGACCTGGGAGCGCAAGGTCCGCGCCGCCATCGAAGCACAACTGCCCGAAGGCGAACCCAGCGCCGAACGCATCGCCCAGACCATGCACCTGAGTCTGCGCAGTCTGCAGCGGCATCTGGCCGACGAAGGCTGCCGCTTCGACGCGCTGCTCAATGAATGCCGGGAAAACCTGGCGCTGCTACACCTGCGCGATCCGCAATGCTCATTGAGCGAGGTCAGTTATCTGCTGGGCTTTGCTGATACCAGCAGCTTCAGCCGCGCGTTCAAGCGCTGGACCGGGATGACGCCGGGGCAGTTTCGGGATGGCTTGCGTTAGMTEPTSLASWTRALRKQLDALGLDSHALCLEAGLDPQWMDDPNARYPLSATTRLWALAVQASGDPAIGLRVSRFVSPTTFHALGYALVASGSLREVFERIVRYHPVVSDALTLQLSRGEDRYRFNLDIPAGRPAPALEAIDAFAAIYVRTCRNRLGRDYAPLAVYLRRPEPADPAPWHKVFRSPVHFDAGHDCLEFSLADFDSHLDDANPELAEHNETVLKRTLAQLQPLTWERKVRAAIEAQLPEGEPSAERIAQTMHLSLRSLQRHLADEGCRFDALLNECRENLALLHLRDPQCSLSEVSYLLGFADTSSFSRAFKRWTGMTPGQFRDGLRNANANANANA
D1-35_052891074hypothetical proteinATGCACGGCACTTGCGCAAGCCCCGAGCGATTGAATGCACAGCAGCGCTCCGCCCATATTCGCCAGGTGGTCCTGGCCCGGGGCGAAGAATTGCGCGAGCGCTATCCGATCCTGCGGCATCAGGATGCGCTGGGCGCGGGCATCCTGGCGTTCGCCCTGGCGGGGATGACCGGCTCGGCGCTGCTCTACATCAACGGCTATCTGGCCGGCTGGGCGTGCCTGCTGCTCAACGCCTTTTTTGCATCCCTGACCCACGAGCTGGAACACGACCTGATCCACAGTATGTATTTTCGCAAGCAGCGCGTGCCGCACAACCTGATGATGGGCCTGGTCTGGCTGGCGCGGCCGAGCACCATCAATCCGTGGATTCGCCGCCACCTGCACCTCAATCATCACAAGGTTTCCGGCAGCGAGGCGGACCTGGAGGAGCGCGCGATCACCAACGGCGAGCCGTGGGGATTGGCGCGCTTGCTGATGGTTGGCGACAACGTGATGTCGGCGTTCATTCGCCTGCTGCGAGCCAGGACCTGGGCGCACAAGCGCAGCATCCTCAGGCGCACGCTGAAGGTGTACTTCCCGTTGGCGCTGTTGCATTGGGGCGCGTGGTACGTTTTCCTCGGTTTCCATGGCGCCAACGCGGTTGCCGGGCTGCTCGGCACTTCGATCGACTGGTCGACCAGCACTCTGGCGACCCTGCACGTCATAGACATCGCGGCGGTGGTGATCATCGGCCCGAATGTGCTGCGCACCTTTTGCCTGCACTTCATCAGCTCGAACATGCATTACTACGGCGACATCGAGCCAGGCAACGTCATCCAGCAGACCCAGGTGTTGAACCCTTGGTGGCTGTGGCCGTTGCAGGCGTTCTGCTTCAATTTCGGCAGCAGCCACGGCATCCATCATTTCGTGGTGAAGGAGCCGTTCTACATTCGCCAGATGACGGTGCCGGTGGCGCACAAGGTGATGCGGGAGATGGGCGTGCGCTTCAATGATTTCGGCACGTTTGGGCGGGCGAATCGGTTTGTGGGTAAGGAAGGCGTTGCGAGGGAAGAGGCGAAGGCGGTTCAGGCCTAGMHGTCASPERLNAQQRSAHIRQVVLARGEELRERYPILRHQDALGAGILAFALAGMTGSALLYINGYLAGWACLLLNAFFASLTHELEHDLIHSMYFRKQRVPHNLMMGLVWLARPSTINPWIRRHLHLNHHKVSGSEADLEERAITNGEPWGLARLLMVGDNVMSAFIRLLRARTWAHKRSILRRTLKVYFPLALLHWGAWYVFLGFHGANAVAGLLGTSIDWSTSTLATLHVIDIAAVVIIGPNVLRTFCLHFISSNMHYYGDIEPGNVIQQTQVLNPWWLWPLQAFCFNFGSSHGIHHFVVKEPFYIRQMTVPVAHKVMREMGVRFNDFGTFGRANRFVGKEGVAREEAKAVQANANANANANA
D1-35_052902505fhuA_5COG1629Ferrichrome outer membrane transporter/phage receptorATGACTGAGCGCGTGACTCTCAAGACTTCCCTCGGCTGTTCCTCGCCCACCGGCCTGCTGCGCCAGGCCATCCGCGCCGCGCTGTTGAGCACGGCGCTCGGTGTCGGCGCCCTACCGATGTCCGCTGTCGCGGCGCAGGATGGCGCGATCGCCGGCCGCCAGAACTACAACATAGCCGCCGGCCCGTTGAGCGAGGTGCTCAACCAGTTCGCCCGCCAGGCCGGTATCACCTTGGCAAGTACCCCTGGACAAACCGGCGGCGTCCAGTCCCCCGGCCTGAAAGGCGAATATTCGGCGGACCAGGCCCTGCAGCAGTTGCTCAGCGGCTCAGGGCTGGTTGCCGTCAGCCAGGATAGCGGCAGCTATGTGCTGCAAACCGTGGCCCCCGAAAGCACGTTGGCGTTGCCGACCACCGACGTCAAAGGCTTCGCCCTGGGTAACGCTCTCGGCAGCATGGAAGGCTACAACGCCACCCACAGCCAGGTGGCGACCAAGACCAGTACCGCCCTGCGGGAAACGTCGCAAAGCGTATCGGTGGTCACGCGCGAGCAAATGGACGACCAGGGCGCGCAAACCGTGTCCCAGGCAATGCGCTACACCCCTGGCGTGCTGACCAACCCCTATGGCGCGACCCACCGCTACGACTACGTGGCGATGCGCGGCTTCAACGATGGCTCGGTGGACAACATCTACCTGGACGGTTTGAAGTCGATGGGTGACAGCGGCACCTACAGCTCGATTCAGGTCGATCCGTATTTCCTCGAGCGGGTCGACATCCTCAAGGGCCCGTCCTCCGTGCTCTATGGCCGCAGCTCGCCGGGTGGCCTGGTGGCGCTCACCAGCAAGAAACCGCTGTACGAGGCCTATCACCAGATCCAGGCCACGGTCGGTACCCAAGGCCAACGCGGCATGGGTTTCGACTTCAGCGGCCCGGTGGATGACGACAAGCGCATCGCCTACCGCCTGGTCGGCCTGGCCGATACGTCCGACACGCAATTCGACCACAACAAGGAAAAGCGCTTCGCCCTCGCGCCCACGGTGAGCATCGACTTTAGCGAAGACACCTCGCTGACGTTGCAAGCCTACCTGCAGCATGACCCCGACGGCGGTTACCACGGCGGCATGCCGGCGAACGGCACCTTGCACAAGCGCAACGGCCGGCGGATTTCGGAGAACTTCTTCGAAGGCGAGCCTGGCGTCGACGGCTACGAACGTGACCAGCAGTCGTTCGGCTATCAGTTCGAACACCGCTTCAACGACGTCTTCACCGCCCGACAGAACTTCCGCTACCTGGATTCGGACGTCAGCAATGACCAGGTCTATGCCTATGACTGGACCACGCCGACCAGCAACGAGCTGAACCGCTATTACACCGGCGCTGAAGAAAAGCTCCACGCCTTCATCGTCGATAACATGCTCCAGGCGGAATTCTTCACCGGCGCCACCAAACACACCGTGCTGATGGGCGCCGACTACCAGCGGCGCAAGACCGTGGTCGATTGGACCAGCGGCAGCCTCGCGCCGATCAACGCCTTCGACCCGGTCTACGGCAACTCGGCGATCAGCTACTTCAGCCCCACCAGCTACCTGCGGCGCCTGGAGCAGACCGGCGTCTATCTGCAAGACCTGATCGAAATGGACAAGTGGCGCTTCTCTCTGGGCCTGCGCCAGGATTGGGTCGAGACCTCGGACGAGAACCGCATTGCCGAATTCGGCCGTCCGGAAGGCACCGAGATCAACGACAAGCGCACCAAACTCACCGGTAGGGTCGGGGCGCTGTACCTGTTCGACAACGGCCTGGCGCCGTACATCAGCTACTCGGAGTCATTCAACCCCAACTCCTACGCCGACAGCGCCGGCAACCCGCTGCCGCCCACCGACGGCAAGCAGTGGGAACTGGGCCTGAAGTACCAGCCGCCGGGTACCGATGACTTGTACACTGCCTCGCTGTTCCGCATCGACCAGGAGAACCTGGCGACCAAGCTGCCCCAGGAAAACTTCTACCGCGCCGTCGGCGCTGTGCGCTCCCAGGGCCTGGAACTGGAAGCGCACATGCAGTTGACCGAGCAGTTCAAGGTGCTGGGCAGCTACACCTTCACCGACATCGAATACTCGAAATCGATGGTCAGCACCCTGAGCACGCCCACCGACATCATCGAAAACAAAGGCAACTCTCCGACCCAGGCCCCGCGCCACATGGCATCGGTGTGGGCTGACTATAAATTCGACAGCGGCACGCTCGATGGCCTGCGGCTGGGCGGCGGCGTGCGGTATGTCGGCTACAGCTGGGCCGACGCGGAAAACACCATGAAGGTGCCGTCGTACACGTTGTTCGATGCCTCGGTGGGGTATGACCTGGGCAAGGTCGGCTTGAAGGGCGTGGATGTGCGCCTGAACGCGAACAACCTGACCAACGAGAGCTACATCGCGTCATGCGCCAGCCTGAGCTATTGCTACATGGGCGAGGAGCGCAACGTGGCGGCTACGGTGAGTTATCAGTTCTGAMTERVTLKTSLGCSSPTGLLRQAIRAALLSTALGVGALPMSAVAAQDGAIAGRQNYNIAAGPLSEVLNQFARQAGITLASTPGQTGGVQSPGLKGEYSADQALQQLLSGSGLVAVSQDSGSYVLQTVAPESTLALPTTDVKGFALGNALGSMEGYNATHSQVATKTSTALRETSQSVSVVTREQMDDQGAQTVSQAMRYTPGVLTNPYGATHRYDYVAMRGFNDGSVDNIYLDGLKSMGDSGTYSSIQVDPYFLERVDILKGPSSVLYGRSSPGGLVALTSKKPLYEAYHQIQATVGTQGQRGMGFDFSGPVDDDKRIAYRLVGLADTSDTQFDHNKEKRFALAPTVSIDFSEDTSLTLQAYLQHDPDGGYHGGMPANGTLHKRNGRRISENFFEGEPGVDGYERDQQSFGYQFEHRFNDVFTARQNFRYLDSDVSNDQVYAYDWTTPTSNELNRYYTGAEEKLHAFIVDNMLQAEFFTGATKHTVLMGADYQRRKTVVDWTSGSLAPINAFDPVYGNSAISYFSPTSYLRRLEQTGVYLQDLIEMDKWRFSLGLRQDWVETSDENRIAEFGRPEGTEINDKRTKLTGRVGALYLFDNGLAPYISYSESFNPNSYADSAGNPLPPTDGKQWELGLKYQPPGTDDLYTASLFRIDQENLATKLPQENFYRAVGAVRSQGLELEAHMQLTEQFKVLGSYTFTDIEYSKSMVSTLSTPTDIIENKGNSPTQAPRHMASVWADYKFDSGTLDGLRLGGGVRYVGYSWADAENTMKVPSYTLFDASVGYDLGKVGLKGVDVRLNANNLTNESYIASCASLSYCYMGEERNVAATVSYQFPGPT0003790_7342DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-ARYLPOLYENE_BIOSYNTHESIS,PGPT0003790-hutA|fatA|fct|foxR-K02014NANA
D1-35_05291996fecR_8COG3712Protein FecRATGAAGATTGAACCGATGGACCAGCCTTCGGGCCGGGGCCCATCACAGCAGGTGGTCAAGCAAGCGATCCATTGGTTGCTGCGCCTGCGCAACCATGCCGCCAACCCAGCGCTGCGCCAACAGTGCGAGGCCTGGCGCATCGCTCACCATGACCACGAACTGGCTTGGCAACGGGTGCAATCGCTGCACAGCGAACTGACTTCCAGCCTGCGGGCGGTACCTGGCGCCCGGACTGCCCTCGATACCCTGGAGACCAGCGCCCAGCGCCTCGGCCGGCGCCAAGCCCTGAAGCTGTTGTCAGGCGTGGCGGTGATGGGCTGCGCCGCCTGGCTGGGCAAGGACCTGGGCTGGCAGCCGTGGAGCGCCGATTTTGCGACCGCCACCGGCGAACGACGTGGCTTCCAACTGCCAGACGGCACGCGACTGGAGCTCAATACCAACAGCGCGGCCGACCTCGATTACACGGCTTCGCGACGCCTGATCACGTTGACGCGCGGCGAAATCATGCTCACCTGCGGCCGCGATCCCGGACGCCCATTACTGGTAAAAAGCCGACACGGCTTGTTCGAGGGGCTGGAGGGCCGCTTCGTCGTGCGCCAGGACAACGACTGCACGCGCCTGAGTGTCGCCAGCGGACACGTCGCCATCCGCTCGCATGTCGGCAGCGACGGCGCCCCGATCCAGGTGGAAGCTGGACAAAGCTACCTGGTCAGCGCATCCACCGCGACGCTCGCGCCCCCCCTGGACATGGACGCCGGCGCCTGGGCGGACGGCTTGATCGTCACGCGCAACATGCGCCTGGAAGACTTCCTCAACGAAGTGGGACGTTACCGTCGGGGCTACCTGAAATGCGCCGCCTCGATCGCCGATTTGCGCTTGTCAGGCGTCTTCCGTCTGGCTGACACCGACAAGCTGCTGGCCGTCCTGCCGCACACGCTCCCCGTGCAAATACACTACCGAACCCGCTGGTGGATCACGGTGGAGCGTACGGCCTGAMKIEPMDQPSGRGPSQQVVKQAIHWLLRLRNHAANPALRQQCEAWRIAHHDHELAWQRVQSLHSELTSSLRAVPGARTALDTLETSAQRLGRRQALKLLSGVAVMGCAAWLGKDLGWQPWSADFATATGERRGFQLPDGTRLELNTNSAADLDYTASRRLITLTRGEIMLTCGRDPGRPLLVKSRHGLFEGLEGRFVVRQDNDCTRLSVASGHVAIRSHVGSDGAPIQVEAGQSYLVSASTATLAPPLDMDAGAWADGLIVTRNMRLEDFLNEVGRYRRGYLKCAASIADLRLSGVFRLADTDKLLAVLPHTLPVQIHYRTRWWITVERTAPGPT0003910_3172DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003910-prhR|fecR-K07165NANA
D1-35_05292501fecI_10COG1595putative RNA polymerase sigma factor FecIATGTCATCCCCCCAGTTTGCAGTACAGGCGCTCTACAGCAGCCATCACGGCTGGCTCCACACATGGCTGCGCAACCGATTGGGCAATGCCGCCGATGCAGCGGACCTGGCCCAGGACACCTTCGTGCGCCTGCTGCAACGCACCGAACGCCTGGAACTCAAGGCGCCACGCGCCTTCCTGCGCACCATCGCCCAGGGCTTGGTGATTGACCATTGGCGCCGAGCGGAAATCGAACGCGCCTACCTTGAGACCATCGCGCACCTGCCGGAAGCGCAAACGCCCGGCGCCGAAGCCCAGGCATTGATCCTGGAGCTGCTGGAGGCCATCGCCCGGATGCTCGAAGGCCTCAAGCCCAAAGTGCGCAAGGCGTTCCTGCTGGCCCAGTGCGAAGGCCTGACCTACAAGCAGATTGCCGAACAGATGGGCATTTCCCTGCGCTCGGTGGAACGCTACGTTGCCGACGCGTTGTACCACTGCTATGTGCTGCGCTATGAAGATTGAMSSPQFAVQALYSSHHGWLHTWLRNRLGNAADAADLAQDTFVRLLQRTERLELKAPRAFLRTIAQGLVIDHWRRAEIERAYLETIAHLPEAQTPGAEAQALILELLEAIARMLEGLKPKVRKAFLLAQCEGLTYKQIAEQMGISLRSVERYVADALYHCYVLRYEDPGPT0003900_364DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-3-OH_PAME_PERCIPITATION|SIGNALLING,PGPT0003900-prhI|fecI-K23514NANA
D1-35_052931881mcpACOG0840Methyl-accepting chemotaxis protein McpAATGAATCTCAAGTTCAGTCACAAAATCCTCCTGGCCGCCTCTGGTGTGGTGGTCCTGGCTTTTGCCCTGTTCACGCTCTACAACGATTACCTGCAGCGCAACACCATCGGTCGAAGCCTGGAGTCGTCCATCGAGCAATCCGGCGACCTGACAGCCAGCAGCGTCCAGAACTGGATGAGTGGCCGTGTGCTGGTGTTGGAGAACCTGGCGCAGAACATTGCGCACCAGGGCGCCGGGGCCGATTTGCCGGGGCTCGTCGACCAGCCGGCATTGACCTCGAATTTCCAGTTCACCTATGTCGGCCAGAACACCGGCGTTTTCACTCAGCGGCCTGACGCCAAGATGCCCGACGGCTACGACCCGCGTCAGCGCCCTTGGTATAAGCAGGCGGTCGCCGCGGATAAAACCATGTTGACCCCGCCCTACATGGCAGCCGTCGGCGGGCTGGTGGTAACCATTGCCCTGCCGGTCAAGCACAACGGCGAACTGCTCGGTGTGGTGGGTGGCGACCTGAGTCTGGAAACCCTGGTGAAGATCATCAACTCGGTGGATTTCGGCGGCATCGGCCATGCGTTCCTGGTCAGCGGCGACGGTCAGGTGATCGTCAGCCCGGACAAAGACCATGTGATGAAAAACCTCAAGGACATCTACCCAGGCACGCCGGTGCGCATCGGCAAAGGTATCCAGGAAGTCGAGTTGAACGGGGAGGACCGCATCCTTTCGTTTACCCCGGTGGCAGGCTTGCCGAACGCCGAGTGGTATATCGGACTGTCGATCGACAAAGCCAAGGCCTACGCGCCGCTGAGCCATTTCCGTACGTCTGCGTTGATTGCGATGTTCGTCGCGGTGGCGGCGATTGCGTTGTTGCTGAGCCTGCTGATCCAGGTCTTGATGCGTCCGTTGACCACCATGGGCCGCGCCATGCAGGACATTGCCCAGGGCGAAGGCGACCTGACCCGACGTCTCGTCGTGCAGGGCAAGGATGAGTTCGCTGTGCTGGGTGGTTCGTTCAACCAGTTCGTGGAGCGCATCCATGCATCGATTGCTGAAGTGTCTTCGGCCACGCGGCAGGTACATGATCTGTCGCAGCGGGTGATGACGTCGTCCAACGCCTCGCTTGTCGGCTCGGATGAGCAGAGCGCCCGCACCAACAGCGTGGCCGCTGCGATCAATCAGTTGGGCGCCGCGACCCAGGAAATCGCCCGCAATGCCGCCGATGCTTCGCAACAGGCCAGCGGCGCCAGCGAGCAGGCCGACGACGGGCGCCAGGTGGTGGAAAAAACCATCCAGGCGATGACCGCGCTGTCGCAGAAGATCAGCCTGTCGTGCACCCAGATCGAAACCCTGAACGCCAGCACCGACAACATCGGGCACATCCTCGATGTGATCAAGGGCATCTCTCAGCAAACCAACCTGCTGGCGTTGAACGCCGCCATCGAAGCGGCCCGTGCCGGTGAAGCCGGGCGTGGCTTTGCGGTGGTGGCCGATGAGGTGCGCAACCTGGCGCACCGCACGCAGGAGTCGGCTGAAGAGATCCACAAGATGATCACTTCGTTGCAGGTGGGTTCTCGTGAGGCGGTAACCACCATGAACGCCAGCCAGGCCTCCAGCGAAGAAAGCGTGGAAGTGGCCAACCAGGCCGGCCTGCGCCTGGTCAGCGTGACCCAGCGTATCGGTGAGATCGACGGCATGAACCAGTCGGTGGCCGCCGCGACCGAAGAACAGACCGCCGTGGTGGAAACCCTCAACATGGATGTCAGCCACATCAACCTGCTGAACCAGCAGAGCGTCGCCAACCTCAACGAAACGCTGAAGGATTGCGATGCCTTGTCCCAACAGGCCAATCGGTTGAAGCAACTGGTGGACAGCTTCAAGATCTGAMNLKFSHKILLAASGVVVLAFALFTLYNDYLQRNTIGRSLESSIEQSGDLTASSVQNWMSGRVLVLENLAQNIAHQGAGADLPGLVDQPALTSNFQFTYVGQNTGVFTQRPDAKMPDGYDPRQRPWYKQAVAADKTMLTPPYMAAVGGLVVTIALPVKHNGELLGVVGGDLSLETLVKIINSVDFGGIGHAFLVSGDGQVIVSPDKDHVMKNLKDIYPGTPVRIGKGIQEVELNGEDRILSFTPVAGLPNAEWYIGLSIDKAKAYAPLSHFRTSALIAMFVAVAAIALLLSLLIQVLMRPLTTMGRAMQDIAQGEGDLTRRLVVQGKDEFAVLGGSFNQFVERIHASIAEVSSATRQVHDLSQRVMTSSNASLVGSDEQSARTNSVAAAINQLGAATQEIARNAADASQQASGASEQADDGRQVVEKTIQAMTALSQKISLSCTQIETLNASTDNIGHILDVIKGISQQTNLLALNAAIEAARAGEAGRGFAVVADEVRNLAHRTQESAEEIHKMITSLQVGSREAVTTMNASQASSEESVEVANQAGLRLVSVTQRIGEIDGMNQSVAAATEEQTAVVETLNMDVSHINLLNQQSVANLNETLKDCDALSQQANRLKQLVDSFKIPGPT0015710_11603DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-PHAGE_DEFENSE_SYSTEMCE-BACTERIAL_FITNESS-PHAGE_EXCLUSION,PGPT0015710-mcp|tlpC|tlpA|dcrA-K03406NANA
D1-35_05294465hypothetical proteinATGACCACATTTCAACCCGACACACTGATCAAGAATCCTCAAGCCTGCCACGTTGAAACCTCGGTGCAAGTGTCCGCTGACGCGGCGCGAGTCTGGGAAGTGGTCGGGGACTTTGGCGGGTTCAACCGCTTTATCCCCGCGCTTGAGCGCATCGAAATGACCGGCGAAGGGGTGAGATCCCTGCGCAAGAAATTCTTCGTCGACGGACAGAACCTGGTGGTGGAACAGCTCAACAGCCGTGACGACCAGGCCATGCACATGACCTGGACGCTGATCTACAACACCCTGGGCATCGACAACCTCTGGGCAGCCATGCGCGTGGAGCCCCTGGCGGACAACCGCTGCCGCGCCACCTGGACCATCATTGCCGACCACACCGACGCCCACACCCCGTCGGGCTTCAGGGATTTCCTGCAAGGGTTCGCCGATGAAGCGATGGAGAACGTGGTGAAGATGTTCACCTGAMTTFQPDTLIKNPQACHVETSVQVSADAARVWEVVGDFGGFNRFIPALERIEMTGEGVRSLRKKFFVDGQNLVVEQLNSRDDQAMHMTWTLIYNTLGIDNLWAAMRVEPLADNRCRATWTIIADHTDAHTPSGFRDFLQGFADEAMENVVKMFTNANANANANA
D1-35_052953426lgrD_2Linear gramicidin synthase subunit DATGAAACGCCTCGAAATTGCGCTATCCGGCACCAGCCAGGCCATGGCCGAACTGGCCCGGGAACTTGAACTTCACGGTCATTCGGTCAGGGAATTTCGATCGCCAACCGCCCACGGCGCGGTCGACCTGTCGATCGATGACGGTACGCTGCCGTGTGCCACACAGGCGCGCTTTCGACTTCATGTGCGCGTGGCGCTCCAGGCCCTGTCAGGCCAGGCATTGCCGCAACCGGTGGTGGTTTTCCGCGACGCTGCACAGCGCCTGTTATCCGAGGCCGTGATTGCCCCGCCAAGCCGGGGCAACGGCCAGTCATTGCGCCTCTGCGCACTGGCGGCGGTGGTCGAGCACGGCGCCCGGCTGGTCAGCCAGCTCTCGCGGGACGAGACCCGCTTCGACACCTGGCCGACGCTGGAAACCGCCGTTGCAGACGAGCTCCTGCACGGGCTCGATGCGCTGGAGCCGCTGGCTTTCGAACATCACCTCAACCGCGCCCCGGTGCCCTGGCTCCTGGCCGCCGCCCAAGTGCCGGTGATGAACAGCATCGAACAACGCATGCTTGATCAGCCGACGCAACCGGCCCTGTGGGTCGACGGTCAGCTCATCGACTACCGATCCTTGCGCGACCTGACGCTCAGGTTGCAACAATCGATGCTGGAAATCCTGCCGGGCGCGGCTGATCGCCCGAAGGTGATCGGCGTGTGCCTGCCCAAATCCGCACTGCTGTATGCAGCGATCCTGGCGGTTTTGGGATGCGGAGCGGTGTACCTGCCGCTGGACCCGCAACACCCGGCGCAGCGGCGGCGCTTCATCCTCGAAAATGCCCGGGCCGATCTGCTGCTGCATGACGTGCAAAGCGACCTGGACGACTGCGCAGTACCCAGGCTGAACGTCCATCGACTGCCCTCTTCGAAAACGATCATCCCGCTCTCGACAATCCGGCGCGTGGCGGGCATCGACGAGCCGGCCGTGGCGATCTACACCTCCGGCACCACCGGCCAGCCCAAAGGCGTGTTGCTCAGCCAGCGCAACCTCAGCCATTTTTGCGCGTGGTACTGCGACCATGTCGAGTTGAAGCGCGACAGTCGCGCGCTGCAGTTTTCCACCATCAACTTCGACGCGTCGCTGCTGGACATCCTGCCGACGTTCGTCCAGGGCGGACTGTTGATCGTGCCCAGCGAAGACCAGCGCCGCGACCCGCAGCAACTGGTCGCGTTGATTCGCGCACAGCGCGTCAGCCACGCCTTCCTGCCACCGGCACTGCTGAGCGTACTGCCACTGGACGCGCCGCTGGGGCTGGATCACCTGGTCACCGGAGGGGATGTCTGCGAGCCGTATGTGATCGAGCAACTGGCGCCACAGTGCCGCTTCCACAATATCTATGGCCCGACCGAAACCACGGTGCTGGCGACCACGCGGCAGTTCGGCAGCGGCGACAACAATCGCAACCTTGGCAGACCCATTGCCAATGCCCGGTTGCTGATTCTGGACGAGCAACGGCAACCGGTGCCCGACGGCACGCCCGGCGAGCTTTACATTGCCGGGCCGGGTGTCGGCCTGGGGTACCTGAACGCCCCGGGGCTGACCGCCGAGCGCTACCTCAACCTGACGTTGCCCACCGGGCAGACGCTGCGGGCCTATCGCACCGGGGATATCGGCCAGTGGACGGACGCTGGGATCGAGCTGTGTGGACGTCGCGATAACCAGGTGAAGATCCGTGGCTTTCGGGTCGAGCCCGAGGAGATCGAACATTGCCTGCGCGACAGCCAGTTGTTTCGTCAGGTGGCGGTGGGGGTGGATGAACGCCGGCGGATCCTGGCGTTCCTGGTGAACCCTGTGCAAGAACTTCCCGGCGCGGCTCTTCAGGCATTGCGCGAGCATGTGCAGGACAGGTTGCCCAGCTACATGCACCCGACGGCCTACATCGAGTTGCCCAGCCTGCCTTACACCAGCAATGGCAAGGTTGATCGCCGGGCGTTGCTTGCCTCGGCGGGGCCGGTCCAGGCCGAAGGCCAGGGACGCCAGCCGCAGAACGCCTTGGAAAACCAGCTGCGAGCGCTTTGGGCCGAGCTGCTGGAACTGCCGGCCGAGGACATCGCCACCGACGAGAGCTTCTTCAACCTCGGCGGGCATTCGATTCTGTTGTCGCAATTGCTGCTGAGCATCCGCCAGTCGTTCGGCCGTAGCCTGTCGATCAATCGCTTCATCGAAGCGCCGACGCTGATCACCCTGGCGAAGCTGCTCGACGACTCCGAACAGAGCGGTACGTCAACGCTGAGCCCGCAGGCTTTCATCGACGCCGAGGCGGAGCTCAACCTTGATCCACTGTCCATCAGCCAGAGCGGTGACGTGCACAAAGTGCTGGTGACCGGCGCCAACAGCTTTCTCGGCGTGCACATCGTCGAGGCGTTGCTGGCGTGGGGCGCCACCGAGGTTGCGTGCCTAGTGCGTGAGTCCGGCGGGCAAAGCGCGGCCGAACGGTTCGCCCAGGCCCTGCGGGACAATCGCCTGGAGCACCTGGACCTGAGTCGCGTCAGCGTCTACGCCGCCGACATCACCCAACCGCAACTGGGTTTGCCGGACGACATCTACCAACGCATCGACAGCACCTTCGGCGCGCTGGTGCACAACGCGGCCCACGTCAACCACGTGCTCGATTACGAGTCCCTGGCGCGGGACAACGTCGAGCCGATCTTCGAATGCCTGCGCCTGTGCGAAGGCCGGCGCAAGAAGATCTTCAACTTCGTCTCGACGCTCTCGGCTTCCAGCGCCCTGGACGCCGATGGCCAGGTGTTGGAGCAACCAGCGGCGCAGACACCGCCGATCTACATCAAGAACGGCTACAACCTGTCCAAATGGGTCGGCGAGCGGATCCTGCAGCGGGCCCGTGACCTTGGCGTGCGGGTGAACCTGTTCCGCCCCGGTAACATCAGCTTCAACAGCCAGACGGGGGTCTGCCAACCCCACAAGAACCGGTTGATGCTGATGCTCAAGGGCTCGATCCAGCTCGGCCAGGTGCCGGCCCTGTCACTCAACTTCGACCTGATGCCGGTGGACTTCCTGGCCCGTTTCATCGCCTTCCACGCCAGCCGCTACCAACCGAACCAGGCCGTGTTCAATCTGCACAACCCCGAACCGCTGAGCTGGGACGCCTACGTGGCGTCGTTCCGGGACAGCGGCCGGGCGTTTTCCCTGGTGAGCGTCGCCGACTGGCAACGGCAATTGGCGCGGGTCGATGCCGACAACGCGTTGTTCGGCGTGCTGGGTTTCTATCTGAACGGCTTCGAGGAGGACATCGGCGACATCTCGCTGATCCGTCATGACAACGCCCGGTCCGGCGTCCGGCAGATGGGCGCGCGCTACCCGGAAAAATCCCCGGCCCTGCTACGCCGTGGCGCGGACTACCTCAAGGCCATTGATTTCATCTGAMKRLEIALSGTSQAMAELARELELHGHSVREFRSPTAHGAVDLSIDDGTLPCATQARFRLHVRVALQALSGQALPQPVVVFRDAAQRLLSEAVIAPPSRGNGQSLRLCALAAVVEHGARLVSQLSRDETRFDTWPTLETAVADELLHGLDALEPLAFEHHLNRAPVPWLLAAAQVPVMNSIEQRMLDQPTQPALWVDGQLIDYRSLRDLTLRLQQSMLEILPGAADRPKVIGVCLPKSALLYAAILAVLGCGAVYLPLDPQHPAQRRRFILENARADLLLHDVQSDLDDCAVPRLNVHRLPSSKTIIPLSTIRRVAGIDEPAVAIYTSGTTGQPKGVLLSQRNLSHFCAWYCDHVELKRDSRALQFSTINFDASLLDILPTFVQGGLLIVPSEDQRRDPQQLVALIRAQRVSHAFLPPALLSVLPLDAPLGLDHLVTGGDVCEPYVIEQLAPQCRFHNIYGPTETTVLATTRQFGSGDNNRNLGRPIANARLLILDEQRQPVPDGTPGELYIAGPGVGLGYLNAPGLTAERYLNLTLPTGQTLRAYRTGDIGQWTDAGIELCGRRDNQVKIRGFRVEPEEIEHCLRDSQLFRQVAVGVDERRRILAFLVNPVQELPGAALQALREHVQDRLPSYMHPTAYIELPSLPYTSNGKVDRRALLASAGPVQAEGQGRQPQNALENQLRALWAELLELPAEDIATDESFFNLGGHSILLSQLLLSIRQSFGRSLSINRFIEAPTLITLAKLLDDSEQSGTSTLSPQAFIDAEAELNLDPLSISQSGDVHKVLVTGANSFLGVHIVEALLAWGATEVACLVRESGGQSAAERFAQALRDNRLEHLDLSRVSVYAADITQPQLGLPDDIYQRIDSTFGALVHNAAHVNHVLDYESLARDNVEPIFECLRLCEGRRKKIFNFVSTLSASSALDADGQVLEQPAAQTPPIYIKNGYNLSKWVGERILQRARDLGVRVNLFRPGNISFNSQTGVCQPHKNRLMLMLKGSIQLGQVPALSLNFDLMPVDFLARFIAFHASRYQPNQAVFNLHNPEPLSWDAYVASFRDSGRAFSLVSVADWQRQLARVDADNALFGVLGFYLNGFEEDIGDISLIRHDNARSGVRQMGARYPEKSPALLRRGADYLKAIDFINANANANANA
D1-35_05296933hypothetical proteinATGAACGCCATTTCATACCAGTCCTTCGCCGACACCTGGGAAAGTCGTGCCACCATCCGTACCCGACCACGGCGCCGGGTCGAGGATGACGACAAGCTGATCTTCCCCATGAGCCGTCAGCCCCTTGTGCACAGCCAGACCTTTCTCAGCCACTGCCCGCAGTTGCGCGATTTTGTCCTGGTGCAGAGCCTCTACAAATTCATCAATGACGTGGTGATTTTCGAGACTGAGCTGGTGGACCACACCGCGCGGCGCATCGCCAAGAACCGCTTCGGCATCGAGTTTCCGTTCGCCTGTCGCTACGACGCGATGACTGTGGTGGTGGATGAGGACTATCACGCGCTGGTGGCCATGGACTTCATGCAACAGACCATCGACATGACCGGCATCGAGCCGATCCCGCTGCCCGACCAGATCGAACTCAGCCGCGCGGTCCCGGCCACGCTGGCGCGGGCACCGGAGCGTTTGCTCAGTGCCGTGGAGCTGATCTGCATCGCCATTGCCGAGAACACGGTGACCAACGAAGTGGCGGCCTTTGCCCGGGATGACTCGGTCAAGGCTTCGATCAAGGGTTTGATGGCGGACCACTTGCAGGATGAGGGCCGACACTCCGGTTTCTGGACACGGCTGGTGCAGATTTACTGGCGCACCGCACCGGAAGAAGACCGCCAAGCCATCGCGCAACTGATGCCCGGCTTCATTGCCGAGTACCTGGCGAGCGACCTGCAACAACAGTTCGATTTCGAGCTGATCGCCCATCTGCCCGTCGATGAATCGGTACGTCAGTCGCTGCGGGATGACGCCAGTGCGTTGGCGTACCCGATCAATCGCTTTCATCCGCTGGTGGGCAACATCACACGCTTTTTTCGCACCAGCTCGATGCTCGCTTCACCGTGCGTGCGCGATGCCCTGGCCGACTACCTGACCCCATGAMNAISYQSFADTWESRATIRTRPRRRVEDDDKLIFPMSRQPLVHSQTFLSHCPQLRDFVLVQSLYKFINDVVIFETELVDHTARRIAKNRFGIEFPFACRYDAMTVVVDEDYHALVAMDFMQQTIDMTGIEPIPLPDQIELSRAVPATLARAPERLLSAVELICIAIAENTVTNEVAAFARDDSVKASIKGLMADHLQDEGRHSGFWTRLVQIYWRTAPEEDRQAIAQLMPGFIAEYLASDLQQQFDFELIAHLPVDESVRQSLRDDASALAYPINRFHPLVGNITRFFRTSSMLASPCVRDALADYLTPNANANANANA
D1-35_05297777hypothetical proteinATGCAGCCAACCAAAGAACAACTATTCCTGAAGAAACTCGAACTAGGTGAACACCCGGTTTTTTCTGAAATAACATCAATCGACCTGTTGCGCCGTTTTATGGAAAGTCATGTTTTTGCCGTGTGGGATTTCATGTCCCTGACCAAGCGCCTGCAACGCGAGCTGACCTGTATCCAGTTGCCGTGGCTACCTCCGGCCGACCCGCACGCAGCACGGCTGATCAATGAAATCGTCTTGGGGGAAGAATCCGACGACCGTCCCGGAGCGGGCTATTGCAGCCATTTCGAGCTGTACCTGGACGCCATGCGCGAGGTCGGCGCGGATACCCGGGCCATTGAGCAATTCATTGCCCTGCAACAGGAAGGCGTCAGCCCCGAAACCGCGCTGGACAGCGTCGAGGTAGACCCGGCCGCGGCGCGCTTCGTACGCCAGACCTTGCACACTGCCTTGCACGCCCCGGCCCACAGCGTGGCCGCCGCGTTCGTGCACGGTCGCGAAAGCGTCATCCCGCAGATGTTCCAGCGCATGCTGGATGCCTGGGGCATCGGCCTGGACCAGGCACCGACGTTTCGTTATTACCTGCAACGGCATATCGAAGTGGACTCCGAAGACCATGGCCCGGCTGCGGAAAAACTCCTGGCACGGCTGATCGATGGCGACCCGCAGCGCGAGCGCGAAGTCCTTGCCGCCGCCCTCGCCGCCGTCCACAGCCGCGCGGCGTTGTGGGATGGTTTGCGTCAGAGCATGGCCCTGCCCGTTGCGCAGGTGACGCCATGAMQPTKEQLFLKKLELGEHPVFSEITSIDLLRRFMESHVFAVWDFMSLTKRLQRELTCIQLPWLPPADPHAARLINEIVLGEESDDRPGAGYCSHFELYLDAMREVGADTRAIEQFIALQQEGVSPETALDSVEVDPAAARFVRQTLHTALHAPAHSVAAAFVHGRESVIPQMFQRMLDAWGIGLDQAPTFRYYLQRHIEVDSEDHGPAAEKLLARLIDGDPQREREVLAAALAAVHSRAALWDGLRQSMALPVAQVTPNANANANANA
D1-35_05298681hypothetical proteinGTGACAAAGAAGCCCAACCCGTTAAGCACTATCCAGGTCAACGGCCCCATTCCCGCCTCCCAGGCCCGCGCCATCATCGAGAGCTCCCTGCGTGAAGCCATTCTCGATGGGCGCCTGCCCAGTGGCACGGCGCTACGCCAACAGGAACTGGCCGACCTGTTCGGCGTCAGCCGCATGCCGGTACGCGAGGCATTACGCCAGCTCGAGGCGCAGTCATTGCTAAACGTGGTACAGCACAAGGGCGCCGTGGTGGCTCCGCTGATCACCAGCAATGCGATCGAGACCTATGCCTTGCGTTCGGTCCTGGAAAGCTTCGCCCTGCGCCTGTCCGTTCCGCTGCTCAACGACAACGACCTGACGATGGCCGCCCAGTACATCGAGCAACTCGAGGCGCAAACCGACTACGCCGAGATCGCCAGGCTCAATCGGCTGTTTCATATGTCGCTTTACCACAGGGCACCCAACGCCAAGCTGCTTGACCTGGTCGAGCACGAGCTCAATGAGGAAGAGCGTTTCCTGCGTTTTCACATGTCATCGATGGGCCTGGGCACGCTGACCCAGGACGACCACCGCGCGATGCTCGCAGCCGCGGTGGCGAAGGATGTCGACACAGCGGTCGCCTTGCTTGAGCAGCACTTGGAAAAAGCCTCCGTCACCATGCGCCGATACCTCAACCAATAAMTKKPNPLSTIQVNGPIPASQARAIIESSLREAILDGRLPSGTALRQQELADLFGVSRMPVREALRQLEAQSLLNVVQHKGAVVAPLITSNAIETYALRSVLESFALRLSVPLLNDNDLTMAAQYIEQLEAQTDYAEIARLNRLFHMSLYHRAPNAKLLDLVEHELNEEERFLRFHMSSMGLGTLTQDDHRAMLAAAVAKDVDTAVALLEQHLEKASVTMRRYLNQNANANANANA
D1-35_05299663hypothetical proteinATGCGTTGGCTGTGTTCGGCATTGTTGCTGGCCGGCCTGCTGCTGGGCGGCCTGCGGGCCGATTGGGACTTTGCGCAGATCAGCCGCCGGGCGCAAGCGTTATATGGGCCTTTGGGCGAAGGGCAGCAACGGATCGACGCGTGGCAGCAACTGTTGGCGACCCAGAAGCAGATTCCGGAACTGGAACAACTCAAGGTAGTGAATCTGTTTTTCAACAAGCAGGTGCGCTACGTCGAAGACATCGACCTGTGGCGTGAGGTTGATTACTGGGAAACCCCTATCCAGGCCTTATGGAAGGGCGCAGGTGATTGCGAGGACTACGCCATCGCCAAGTATTTCAGCCTGCGCCGGCTCGGGGTGTCCAGTGACAAGCTGCGCATCACCTACGTCAAGGCCTTGCGGCAGAACCGGGCGCACATGGTGCTGACCTACTACGCCACGCCCGATGCCATGCCCTTGGTACTCGACAGCCTGATCGACGGTATCCAGCCGGCCAGCCAGCGAACCGACCTGCTGCCGGTCTACTCTTTCAATGCCGAAGGGCTGTGGCTGCCGGGCGCCAAGGGCAACAAAAAAGTGGGTGACACCAAGCGCCTGTCCCGCTGGCAGGATGTGTTGAAAAAAATGCAGGCCGAAGGTTTTCCGGTCGAGACGACTAACTAGMRWLCSALLLAGLLLGGLRADWDFAQISRRAQALYGPLGEGQQRIDAWQQLLATQKQIPELEQLKVVNLFFNKQVRYVEDIDLWREVDYWETPIQALWKGAGDCEDYAIAKYFSLRRLGVSSDKLRITYVKALRQNRAHMVLTYYATPDAMPLVLDSLIDGIQPASQRTDLLPVYSFNAEGLWLPGAKGNKKVGDTKRLSRWQDVLKKMQAEGFPVETTNPGPT0022238_1DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_I_SECRETION_SYSTEMSCE-TSS1-ADHESIN_TRANSPORT,PGPT0022238-lapP-NANANA
D1-35_053001947hypothetical proteinATGTCCTTGTTCAAACAGCTGTTGATCGCTATCTGTCTGTTCCTGGTGGTTGCCTTCAGCGGCAGCTTCATGGTCAGCCTGGAAAGCTCGCGGACCCAGTACGTCAATCAATTGCGCTCGCACGCGCAGGATGCGGCCACGGCGCTGGCCTTGTCGCTGACGCCGAATATCGACGACCCGGCAATGGTCGAGCTGATGGTCAGCTCGATCTTCGACAGCGGCTACTACGCAAGCATCCGCGTGGTCGACGTGAAGAACGACAGCACCATCGTCGAACGCACCGGCATTCCGGACGCCGGCAACGTACCGCAGTGGTTCATCAAGCTCATTGGCCTGGAGCCGGCCGGTGGCGATGCGCTCGTCAGTCGGGGCTGGGAGCAGGCGGCACGGGTCGAAGTGGTCAGCCACCCTATGTTCGCCCTCGCCAAGCTGTGGCAGAGCGCGCTGGGCAGCCTGGGTTGGCTGTTGCTGTGCGGCGCTGTGAGCGCGGTGTTGGGGGCCTTGCTGCTGCGCCGTCAGCTCAAGCCGCTGGATTACATGGTGCACCAGTCCCATGCCATCGCCCGTCGGGAGTTCCTCAGCTTGCCGGAGCTGCCGCGTACCCCTGAGCTGCGCCGGGTGGTGCAGGCGATGAACCAGATGGTCGAAAAGCTCAAGGCGCTGTTCCAGGAGCAGGCCGAGCGCAGCGAGAAGCTGCGGGTCGAGTCCTATCAGGACAACCTCACGGGCCTGGCCAACCGACGTTACTTCGAAATGCAGCTGCATGCCCGGGTGAGCAATCCCGAGCAGGCCAGTTCCGGTTATCTGCTGTTGTTGCGGGTCAGGGACCTGGCCGGGTTGAACCAGCGGCTGGGCGGGCAGCGCACCGATCAGTTGCTCAAGGCCGTGGGCGAGCAATTGCTGCGTGAATGCGCGCGTTATCCGGAAACCCATAACCTGGTGACGCGCATCCGCGGCGGAGAGTTCGCCGTGTTGGCGCCCGGGCTGGTGCGCGAGGAAGCCTTGCAACTGGCGCAGAATCTCGAAGGCGCGTTGGCGAGCCTGCACGCCACCGGCGCGACGGACGTCGCATCGGTGGCCTCCATCGGGCTGGCGCCGTTCGTCCACGGCGACTCGCCGCAAGCGGTGCTCCAGCTCGGCGACCAGGCGCTGGCCCAGGCCGAAACCCAGGGTGAACCGGGCTGGGCCTGCCTGGATCACAGCGCGTCGGCCAGCGTTGGCGATGATCACCATGCCTGGCACAACCTGCTTGACCAGGCGCTGAGCAACCAGCGCTTCGAGCTGTATTTCCAGCCGGTGGTGGCCGCCCAGGACACCCAGGTGGTGCTGCATTACAAAGTGCTTTCGCGGCTGCTCGACGATCAGGGCCAGAGCATCCCCGCCGGGCGTTTCCTGCCATGGCTGGAGCGCTTCGGCTGGACTGCGCGCCTGGACCGCCTGATGCTCGAACAGGTGCTCAAGCAAATGGCCGGGCACGAGCAATCCCTGGCGCTCAACCTGTCCTCTGCCACGCTGGCCGACCCGCAGGCTTTGAACAAGGTCTTTGAAATCCTGCGGGCTCACGGCAATCTCGGGGCGCGCCTGACCCTGGAGATCGGTGAGGAGCAACTACCTGAACAAGCGGTGCTGGAGCAGTTGACCCGGCAGTTGCGCGAGCTCGGTTTCTCCCTGAGCCTGCAGCGTTTCGGCGGACGGTTCAGCATGATCGGCAACTTGTCGCGGCTGGGGCTGGCGTATCTGAAAATCGACGGCAGTTATATTCGCGCCATCGACCAGGAGAGCGACAAGCGCCTGTTCATCGAAGCCATCCAGCGCGCCGCCCACAGCATCGACCTGCCGCTGATTGCCGAGCGGGTTGAGACGGAAGGCGAACTGGTGGTGATTCGCGAGATGGGGTTGTTTGGGGTGCAAGGGCAGTTGGTGGGCGAGCCTAGGCGTTGGGGATGAMSLFKQLLIAICLFLVVAFSGSFMVSLESSRTQYVNQLRSHAQDAATALALSLTPNIDDPAMVELMVSSIFDSGYYASIRVVDVKNDSTIVERTGIPDAGNVPQWFIKLIGLEPAGGDALVSRGWEQAARVEVVSHPMFALAKLWQSALGSLGWLLLCGAVSAVLGALLLRRQLKPLDYMVHQSHAIARREFLSLPELPRTPELRRVVQAMNQMVEKLKALFQEQAERSEKLRVESYQDNLTGLANRRYFEMQLHARVSNPEQASSGYLLLLRVRDLAGLNQRLGGQRTDQLLKAVGEQLLRECARYPETHNLVTRIRGGEFAVLAPGLVREEALQLAQNLEGALASLHATGATDVASVASIGLAPFVHGDSPQAVLQLGDQALAQAETQGEPGWACLDHSASASVGDDHHAWHNLLDQALSNQRFELYFQPVVAAQDTQVVLHYKVLSRLLDDQGQSIPAGRFLPWLERFGWTARLDRLMLEQVLKQMAGHEQSLALNLSSATLADPQALNKVFEILRAHGNLGARLTLEIGEEQLPEQAVLEQLTRQLRELGFSLSLQRFGGRFSMIGNLSRLGLAYLKIDGSYIRAIDQESDKRLFIEAIQRAAHSIDLPLIAERVETEGELVVIREMGLFGVQGQLVGEPRRWGPGPT0022237_10DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_I_SECRETION_SYSTEMSCE-TSS1-ADHESIN_TRANSPORT,PGPT0022237-lapD-NANANA
D1-35_05301339hypothetical proteinATGTTTTATGTGCAACGCGATGCGCAAGGCCTGCTGGTGCGCGTCGAAGCCGCCGCTTATGCCGAGGCCACCGAGACCTTGCCGGCCGACAACCATGAGATCCAGGACTGGTTCGCCAACCAGGCGGTAGAGAACAGCCTCAAGCAACTCAAGCAGAGCGACCTGGAGATGATCCGGGTACTCGACGACCTGATCCAGGTACTCACCAGCAAAGGCGTCATCCGCGTCACCGACCTGCCGCCAGCGGCCCAGGCCAAGCTGATGGACCGCAACCAGGCACGGGAAGCGCTGGGCGGGTTGAGTCGGTTGATCGATGACGATGAGAAGGGGTTGATCTGAMFYVQRDAQGLLVRVEAAAYAEATETLPADNHEIQDWFANQAVENSLKQLKQSDLEMIRVLDDLIQVLTSKGVIRVTDLPPAAQAKLMDRNQAREALGGLSRLIDDDEKGLINANANANANA
D1-35_053023912hypothetical proteinGTGACCGTGACCCTGAGCAACGGCGCGGTGATCAACATCGCCGCCGGTGCCAAGACCGGCACCGTGACCGTCGATGCGCCGAAAGATGATGTCTACAAAGACGCCGGCAATGTCGAAGCAACGATCAAGACGGCCACCGGGGGTAACTTCGAGCACCTGGTGCCGAGCACCACGCCAGCCGTGACCGCCGTGACCGACACGCCTGACAACACCACCGTCAGCATCACCGGCAGCAGTTCGGTAACCGAAGGCCAGGCCGCCACTTACACGGTCAACCTGACGAACCCGGCGCAAACCGAGGTAACGGTCAAGATCGTCTACAGCGGTACCGCCGCCGATGGCTCGGACTTCACCGGTGTCTACACCGTGAAGATCCCGGCCAACGCCACCAGCGCCAGCTTCAACGTGGCGACCCTGGACGACAAGATCACCGAAGGCACTGAAAACTTCGTGGTCAAGATCGACTCGGCCACCGGTGGCAACTTCGAGAACCTGGCGGTCAGCGGCACCAATGGCAGCGTCAGCACTTCGATCATCGACAACGATGCGGCGCCGGTACTCGATCTGGATGCCAACAATTCCAGCGGCAAGACCGGCGCCGATTACCAGGTGACCTTCACCGAAGGCACCGCGGGCCCAGGCGTATCGATCGGCGACACTGACCTGAAAATCACCGACCCGGACAGCACCCAGCTGACCGGCGCCACCATCGTGCTGACCAACCGTCAGCCTGGCGATCATCTGAACCTGGGCAGTAGCGTCAACGGCATCAGCATCAACGCCAATAGCACCGACGGCAAAATCGTCCTGACGCTGACGGGCAATGCGACGTTGGCCGACTACATGCAGCAGATCAAGAACATCAGCTTCATCAACAACAGCGAAGATCCGAGCACCGTACCGCGCGTCATCACCGTGACAGTGACCGACGGCACGAGCTACTCCAACACCGCCACCACCACCGTGAACGTGGTCGGAGTCAACGACGCACCCGTAGCCACCGGTGGCGCGGTGACCGGTACCGAAGACACTTCACTGGTCCTCGGCTGGTCGACGTTCGGCATCAGCGACGTGGACAGCGCCGCCACCAGCCAGGGTGTGAAAATCACCGGGCTGCCGGGTGACGGCAAGTTGCAGTACCTGGACGGCGCAACCTGGAAGGACGTGGCCAACAACCAGACCTTCACCAAGGCCGACATCGACGCCGGCAAGCTGCGCTTCACACCCGATGCCAACGAATCCGGGGCCGATGGCTACGGCGGCAGCGGCGTGGGCAACAAGCAGGCTGACTACGCGCAGATCAAGTTCCAGCCAACCGACGGCCAGACTCTGGGTAACACCGGCACCGTGAAGATCGACATCACGCCAACCGCCGATGCGCCGACCCTCAACGTCGCCGGCAACAACGTGACCTCTACCGGCCTGATCAAGGAAGTCTGGACCGGCCTGTCGGGCCTGGGCACCGATGGCAATGGCGCGCCGTCCGGCACGCTCAAGTCGGTGATCGACGCCGCCGGCACGCCGAACAGCAGCACCAATGTGAGCAACGTTCAGAACGACGGCAACGTCAATCCGGGCACCGCGTCGAAGACCTCGGGCCTGATCTTCCTGGAAGCCGGCAAGACCTACACCTTCAGCGGCACCGGCGACGACAGTTTGCTGGTGACCATCGGCGGCAAGACCGCCGCGGCCATCACTTGGGGTGCGGGCGGCCAGTTGAACGGTTCGTTCACGCCGACCACCAGCGGCTATTACACCCTGGATATCTACCACCACAACCAGACCGGCCCAGGCAGTTATGACGTGAACCTGTCGGTCAACGGCAGCACGCCGGTGGACCTGAGCAGCGCAGGCGTACCGCTGTATACCGGCGTGGCTGACCTGGTGAATGCCGGGGTTTCCGTTTCCGACCTGCACGGCACCAATGGCGAAGGCTACTACGACGGCTACAAGCTCAACGAAGGCGCCGAAGGCGGCAGCGTGAAGCTGTCGAAGATCACCACCGCACTGACCGACACCGATGGCTCCGAAAGCCTGAGCGTGAAAATCGGCGGCATGCCGGAAGGCAGTGTGCTGAGCGATGGCGCGGGACATACCGCAACCGTGGGCGCCAACGGCGAAGCTTCGCTCACCGGCTGGAACCTGGGTAGCCTCAACCTGACGCCGCCGACCTACTTCAGCGGCCAGATCAACCTGACCGTAACGTCGACCTCCACCGAATCCCTCGGCGGGTCGGCAGTGACGACCGCGCAGATCCCGGTCACCGTTTACCCGGCGACCTATAACGCTGTCACCGCCACCTCCGGCAGCGACAATGTCACCGGTACCGACGGCAACGACATCGTGGTCGCCGACATCGGCGGCCTGACCGTGGTACCGGGCGTCAACTACAATATCGCGTTCATGGTCGACAGCTCCGGCAGCATGAGTTCGTCGTCCGTCACAGCCGCCAAGAACTCGCTGACCCAGGTGTTCAACACGCTCAAGCAGAGCCTGGGCAGCAACTCCGGGACGGTGAACATCTTCCTGGCGGACTTCGATAACCAGGTCAACAAGAACGTTGCGGTCAACCTCAACGATCCGAACGCGCTGACACTGCTCAAGAGCGTGCTCGACTCGATGGTGTCCGGCGGCAATACCAACTATGAAGAGGTGTTCAAGACCACCGCGAACTTCTTTAACAGCACCCAGGCCCTGAGCAATACCGGCGCGAAGAACCTGACGTACTTCATCACCGACGGTGAGCCAACGCGCTACCAGTCCGGCGAACAGACGAACCCGACGCTGTACGGCACCGTCAAGCTCGACGACGTGCTGAGTGCGTCCAACTATACCGTTGGCAAGTACTACACCCAGACGATCGACAGCACACACAAATTCACCATCGAAGAAAATGGCGACATGTACCTGTCGACCAAGAGCGGCAAGAACTGGAATGACAGTTACGTCGGCACGGTGCGTGCCGAGGGCAACGGCACGTTCGAGTTCTCCAACCTGGACGGCGGCGGGTGGGGCGACGTCTCGGCAGCAACCGGCTCAGCGGCCAGCTTCACTCTGCTCAAAGGCTTGAGCAACGTTGAAGCCATCGGCCTGAACAACGGCGTGACCCTGGACGACCTCAAGCCGTACGACTCCGATGGCAAGCCGCAAACCAACATCGACCCCAAGGACCTGGCCAACTCGATCATCGGCCACACCGAAGCGACGTTGCCGGGTGCCGACACGGTCAACGGTGCCGACGGCAACGACATCCTGTTCGGCGACCTGGTGAGCTTCAACGGCATTGCCGGCGAGGGCTACCAGGCCATCCAGTCGTTCGTGGCCCAGCAAAGCGGCGTGGACGTCAGCAAGGTCAGCACTTCGAACGTGCACCAGTACATCACCGAGCACTACACCGCGTTCGATGTGTCCGGTGCCCATGATGGCAATGACACTCTGCTGGGCGGCGCCGGCAACGACATCCTCTTCGGCCAGGGCGGCAACGATTTGCTCGACGGCGGCAAGGGCAATGACATCCTGCTCGGTGGCAGCGGCAGCGACATCCTGATCGGCGGCAAGGGCAACGACACGCTCATCGGTGGCCTGGGCGGCGATACCTTCGTCTGGAAATCCGGCGACACCGGCACTGACGTGATCAAGGACTTCAAGGCCGCCGAAGGTGACCGGATCGACCTGCGAGACCTGTTGCAGGGCGAAACCGGCAGCACCATCGACCACTTCCTGAAGATCAGCACGGTCGATGGCGTGTCTTCCCTGCAAGTCAGCACCACCGGTCAATTCAACGCGGCCAACACTGCGGCGACGCCGGACGTGACGATCAAGCTGGAAGGCAACAACTGGTCGAACATCAACCTGAACTCGCTCATCGCTGGCAGTGACCCGACCATCAAGATCGATCACAACAACAGCTGAMTVTLSNGAVINIAAGAKTGTVTVDAPKDDVYKDAGNVEATIKTATGGNFEHLVPSTTPAVTAVTDTPDNTTVSITGSSSVTEGQAATYTVNLTNPAQTEVTVKIVYSGTAADGSDFTGVYTVKIPANATSASFNVATLDDKITEGTENFVVKIDSATGGNFENLAVSGTNGSVSTSIIDNDAAPVLDLDANNSSGKTGADYQVTFTEGTAGPGVSIGDTDLKITDPDSTQLTGATIVLTNRQPGDHLNLGSSVNGISINANSTDGKIVLTLTGNATLADYMQQIKNISFINNSEDPSTVPRVITVTVTDGTSYSNTATTTVNVVGVNDAPVATGGAVTGTEDTSLVLGWSTFGISDVDSAATSQGVKITGLPGDGKLQYLDGATWKDVANNQTFTKADIDAGKLRFTPDANESGADGYGGSGVGNKQADYAQIKFQPTDGQTLGNTGTVKIDITPTADAPTLNVAGNNVTSTGLIKEVWTGLSGLGTDGNGAPSGTLKSVIDAAGTPNSSTNVSNVQNDGNVNPGTASKTSGLIFLEAGKTYTFSGTGDDSLLVTIGGKTAAAITWGAGGQLNGSFTPTTSGYYTLDIYHHNQTGPGSYDVNLSVNGSTPVDLSSAGVPLYTGVADLVNAGVSVSDLHGTNGEGYYDGYKLNEGAEGGSVKLSKITTALTDTDGSESLSVKIGGMPEGSVLSDGAGHTATVGANGEASLTGWNLGSLNLTPPTYFSGQINLTVTSTSTESLGGSAVTTAQIPVTVYPATYNAVTATSGSDNVTGTDGNDIVVADIGGLTVVPGVNYNIAFMVDSSGSMSSSSVTAAKNSLTQVFNTLKQSLGSNSGTVNIFLADFDNQVNKNVAVNLNDPNALTLLKSVLDSMVSGGNTNYEEVFKTTANFFNSTQALSNTGAKNLTYFITDGEPTRYQSGEQTNPTLYGTVKLDDVLSASNYTVGKYYTQTIDSTHKFTIEENGDMYLSTKSGKNWNDSYVGTVRAEGNGTFEFSNLDGGGWGDVSAATGSAASFTLLKGLSNVEAIGLNNGVTLDDLKPYDSDGKPQTNIDPKDLANSIIGHTEATLPGADTVNGADGNDILFGDLVSFNGIAGEGYQAIQSFVAQQSGVDVSKVSTSNVHQYITEHYTAFDVSGAHDGNDTLLGGAGNDILFGQGGNDLLDGGKGNDILLGGSGSDILIGGKGNDTLIGGLGGDTFVWKSGDTGTDVIKDFKAAEGDRIDLRDLLQGETGSTIDHFLKISTVDGVSSLQVSTTGQFNAANTAATPDVTIKLEGNNWSNINLNSLIAGSDPTIKIDHNNSPGPT0022180_17DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_RELATED_GENESCE-BIOFILM-SURFACE_PROTEIN,PGPT0022180-lapA-K12549NANA
D1-35_05303816cpdACOG14093',5'-cyclic adenosine monophosphate phosphodiesterase CpdATTGCCGAGCGTATCCAGCTTGACCACTGCCGACGCGGCGCTGCTGGTCCAACTGTCTGACAGCCATTTGTTCGCCGAGGCCGATGCTTCGTTGCTGGGTATGAACACCCGTGACAGCTTGCGGGCGGTGGTTGACCTCGTACTCCGGCAGCACCCGGATATCGACCTGATGCTCGCCACGGGCGATTTGTCCCAGGACGGTACGCTGCAATCCTACGAGGCATTTCGGCACCTGACTGCGCGTATCGATGCGCCGGCGCGGTGGATTCCGGGCAATCATGATGAGCCGCAGGTGATGCTTGAGGCGGCGGTGCAGAGCATGTTGCTCGATCCGGTGGTGGACATCGGCAACTGGCGAGTCACTCTGTTGGATTCAGCCGTGCCAGGTTCGGTGCCGGGTTTTTTGGCCGAGGAGCAGTTGATTCTGTTGGCCAATGCCTTGAGCGAGGCGCCGGAGCGGCATCATCTGGTGTGTCTGCATCATCATCCGGTGTCGATTGGTTGTGCGTGGATGGAGCCGATCGGGTTGCGCAATCCAGAGGCGCTGTTTGCGGTGTTGGATCGGTTTCCGCAGGTGCGGGCGGTGTTGTGGGGGCATGTGCATCAGGAAATAGACCGGGTGCGCGAGGGGGTTCGTTTGTTGGCTTCGCCTTCGACCTGTATTCAGTTTGAGCCTGGGAGTGAGGATTTTGCGGTGGGCTCGCAGGCGCCAGGGTATCGGTGGTTGCGGTTGTTGCCGGATGGGCGGTTGGAGACAGGAGTTGAGCGGGTGGTTGGGTTTGCGTTTACGCCTGACTACGGATCCAACGGCTATTGAMPSVSSLTTADAALLVQLSDSHLFAEADASLLGMNTRDSLRAVVDLVLRQHPDIDLMLATGDLSQDGTLQSYEAFRHLTARIDAPARWIPGNHDEPQVMLEAAVQSMLLDPVVDIGNWRVTLLDSAVPGSVPGFLAEEQLILLANALSEAPERHHLVCLHHHPVSIGCAWMEPIGLRNPEALFAVLDRFPQVRAVLWGHVHQEIDRVREGVRLLASPSTCIQFEPGSEDFAVGSQAPGYRWLRLLPDGRLETGVERVVGFAFTPDYGSNGYPGPT0021595_1930DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-OTHER_QSR|BF_RELATED_SYSTEMSCE-QSR|BF-cAMP|VFR_SIGNALLING_PATHWAY,PGPT0021595-cpdA-K03651NANA
D1-35_05304453hypothetical proteinATGGTCCTGAACAAGCTGCGCGATCGTTATCGCGTCGACCTGGTGGGGTTGCAGGCCGCCTGCGAGGCCAACTATGCCCGCCTGATGCGCTTGTTGCCGGACATGCGCAACGACCCGGCACCGCGCCGCATCGCCGTGACCCACGGCGACCAGATGCTCGGCGTGCTGGCCCTGGAAGTGCTGCAGACCTGTCCATACACCACCACATTGCAGGTGCGCCAGGAGCACAGCCTGCCCTGGCTGCCGGTGCCGCAGCTGGAAGTGCAGGTCTATCACGATGCACGCATGGCCGAAGTGGTCAGCGCCGAACATGCACGACGCTTTCGCGGCATCTATCCTTACCCCAATGCGTCAATGCACCAGCCGGACGAAAAGGCCCAGTTGAACCTTTTCCTGGGCGAGTGGCTGAGTCATTGCCTGGCGCTGGGCCACGAGTTCGAAGTCGTACGGTAGMVLNKLRDRYRVDLVGLQAACEANYARLMRLLPDMRNDPAPRRIAVTHGDQMLGVLALEVLQTCPYTTTLQVRQEHSLPWLPVPQLEVQVYHDARMAEVVSAEHARRFRGIYPYPNASMHQPDEKAQLNLFLGEWLSHCLALGHEFEVVRNANANANANA
D1-35_05305618nudFADP-ribose pyrophosphataseATGACCGATTTCGCCAACGCCACACCGAGCAACGTGGACATCGTCAAGCGTGAAACCTGCTTCAAGGGTTTCTATAAGCTCGACCGCCTCGTCTTGCGCCACGAGCTGTTTGCCGGTGGCATGAGCCGTGAGATCAGTCGTGAACTGTTTGTACGTCATGATGCGGTGTGTGTGCTGCCCTACGATCCGCAGCGCGACGAAGTGGTATTGATAGAGCAGTTTCGCGTGGGTGCCATTGGCAAGGCCGCCAATCCCTGGTTGGTTGAACTGGTGGCTGGTCTGATCGACAAGGACGAGCAACCGGAAGAAGTTGCTCATCGCGAAGCGCAGGAGGAAGCTGGGCTGGTCTTCGCTGCGCTCTGGCCGATGACCAAGTATTTCCCGTCGCCGGGCGGCAGCAATGAGTTCGTGCATCTTTACCTGGGGCGTTGCGACAGTACGGGGGCCGGCGGCCTGCATGGCCTGCTGGAAGAGGCTGAAGATATCCGCGTAAAGACCTGGGCATTCGAAGACGCCCTGCAAGCGGTGCGCGACGGACGTATCTGCAACGCGGCCAGCATCATTGCCTTGCAATGGCTGGCCTTGAATCGAGATGAAGTGAGGGGGCTATGGTCCTGAMTDFANATPSNVDIVKRETCFKGFYKLDRLVLRHELFAGGMSREISRELFVRHDAVCVLPYDPQRDEVVLIEQFRVGAIGKAANPWLVELVAGLIDKDEQPEEVAHREAQEEAGLVFAALWPMTKYFPSPGGSNEFVHLYLGRCDSTGAGGLHGLLEEAEDIRVKTWAFEDALQAVRDGRICNAASIIALQWLALNRDEVRGLWSPGPT0021525_968DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021525-nudF-K01515NANA
D1-35_05306747hypothetical proteinATGTCGCTTTTCAAGATTGCTTCGCTGGCCGCCATTGCCCTGATCCTGGGCGCTTGCCAGAGCCTGTTCCAACCCAATTACCGCGCCCCGCTGGAGACCACTCGCGATGCGTCGGAGCAATTGCAGCCTGGCTGCGCCAGCGCCGACTGCCCGCTGGTCAACATTGACACACTGCATTTCCCCACCGAGCCCGCGCTGGACGGAATCATCGAAAAACGTCTGCTGCAAATGACCCGCACGACCCCGGACGCCCCGGTGGCGCCGACCCTGGCCGCCTATCGCGAGCAGTTTCTGCGCAGCGCAGAGCCGCGCAACAGCAGCTATCTGCAGGCCAAGGTACGTGAGCAACATGACGGCCTGGTGATCATCGAACTGTCCAGCTACTTGGACACTGGCGGCGCTCACGGCACCCCTGGTCGCGGTTTCATCAATTATTCGCGCCAGCAGCAAAAAGTGCTGACGCTGTCGGACATGCTGCTGCCGGGCCAGGAAGAAGCCTTCTGGAAAGCCGCGCAAGTGGCCCACAACAGCTGGCTGATCAGCACCAAGCTGGATCAGGAACCGGAATTCCTGAAGCAGTGGTCCTTCCAGAAAACCCCGCACATCGCGCTGACCTACGGCGGGGTGATCCTCAAATACGAAGTGAGCACCATCGCGCCGTACGCCCTGGGCCACATCGAATTGAAGATCGCCTACCCCCGCCTCAACGGCATCCTCAAGCCCGAGCTGTTTCCCGGCCGTAGCTGAMSLFKIASLAAIALILGACQSLFQPNYRAPLETTRDASEQLQPGCASADCPLVNIDTLHFPTEPALDGIIEKRLLQMTRTTPDAPVAPTLAAYREQFLRSAEPRNSSYLQAKVREQHDGLVIIELSSYLDTGGAHGTPGRGFINYSRQQQKVLTLSDMLLPGQEEAFWKAAQVAHNSWLISTKLDQEPEFLKQWSFQKTPHIALTYGGVILKYEVSTIAPYALGHIELKIAYPRLNGILKPELFPGRSNANANANANA
D1-35_053071293codB_2COG1457Cytosine permeaseTTGAACATCCAACCCAGCACCTATTCCCCAGACACCGCCGTGCCCCTGGACAAACGCGTCTTCGGCGCCCGCGATCTGTTTTCCCTGTGGTTCTCCCTGGGCATCGGCCTGATGGTCTTGCAGGTCGGCGCCTTGCTTGCGCCGGGCCTGGGCTTGAGCGGTTCGCTGCTGGCGATTTTCCTCGGCACGCTGGTGGGCGTCCTGCTATTGGCGGCGGTCGGGGTGATTGGCAGCGACACCGGCCTGTCGGCCATGGCCGCGCTCAAGCTCAGCCTCGGTGGCAAGGGCGCGAGCGTGCCGGCGCTGTTGAACCTGTTGCAGTTGATCGGCTGGGGCTCGTTCGAAATCATCGTCATGCGCGATGCCGCCAGCCTGCTCGGCGCGCGGGCCTTCAGCGAAGGCAGCCTGGGCTCGAATCCATTGCTGTGGACGCTGTTCTTCGGCGCGTTGGCGACCCTGCTCGCGGTGAGCGGGCCGCTGACCTTCGTACGCAAAATCCTGCGCAAATGGGGCATCTGGTTGCTGCTGGCGGCGTGCATCTGGTTGACCTGGAACCTGTTCGCCAAGGCCGATCTGCCGGCGCTGTGGGCCCAGTCCGGCGACGGTTCGATGTCGCTGGCGGTGGGTTTTGACATCGCCATCGCCATGCCGCTGTCCTGGTTGCCGCTGATCGCCGACTACTCGCGTTTCGGCAAACGCGCCAGAAACGTCTTCGGCGGCACGGCCGTGGGGTTCTTCATCGGTAACGTCTGGCTGATGAGCCTGGGCGTGGCCTACACCCTGGCGTTCGCGCCGAGCGGCGAAGTCAATGCGTTGCTGCTGGCCCTGGCTGGTGCCGGGTTGGGCATCCCGCTGTTGCTGATTCTTCTGGACGAGTCGGAAAACGCCTTCGCCGACATTCATTCGGCGGCGGTGTCGACGAGCATGTTGTCGGGGCTGAAGGTCGAGCACCTGGCCTTGGCGATTGGTGTCATCTGCACCGTGATCGCCTGCTTCGCGCCGCTGGCTCAGTACCAGAACTTCCTGTTGCTGATCGGCTCGGTGTTCGCGCCGCTGTTCGGCGTGGTGCTGGTGGATCACTTCATCCTGCGCAAGCGCAGCAGCCAGGTGCGCTCGGTCGCGTTGCGCTGGCCGGCGTTGTTGGCCTGGCTGGGCGGGGTGAGTACCTACCACCTGCTAGCCAACTTCTATCCGGACATCGGCGCTACCCTGCCGTCGCTGATCCTGGCAGGGGTGCTGCAATTGTTGCTGGGCCGGGCTTTCAGCTACGGCCGGGAAACAGCTCGGGCTTGAMNIQPSTYSPDTAVPLDKRVFGARDLFSLWFSLGIGLMVLQVGALLAPGLGLSGSLLAIFLGTLVGVLLLAAVGVIGSDTGLSAMAALKLSLGGKGASVPALLNLLQLIGWGSFEIIVMRDAASLLGARAFSEGSLGSNPLLWTLFFGALATLLAVSGPLTFVRKILRKWGIWLLLAACIWLTWNLFAKADLPALWAQSGDGSMSLAVGFDIAIAMPLSWLPLIADYSRFGKRARNVFGGTAVGFFIGNVWLMSLGVAYTLAFAPSGEVNALLLALAGAGLGIPLLLILLDESENAFADIHSAAVSTSMLSGLKVEHLALAIGVICTVIACFAPLAQYQNFLLLIGSVFAPLFGVVLVDHFILRKRSSQVRSVALRWPALLAWLGGVSTYHLLANFYPDIGATLPSLILAGVLQLLLGRAFSYGRETARAPGPT0009075_3521DIRECT EFFECTPLANT_IMMUNE_RESPONSE_STIMULATIONINDUCTION_OF_SYSTEMIC_RESISTANCE|ISRISR-VITAMIN_B1|THIAMIN_METABOLISMISR-VITAMIN_B1|THIAMIN_TRANSPORT,PGPT0009075-cytX-K03457NANA
D1-35_053081890thiCCOG0422Phosphomethylpyrimidine synthaseATGACGACAAAATCAAAAAACGCGACCAACCTCAGTGAATCGGCCCAGGTCGATCAGCAATCGGTCCAACCGTTTACCCGCTCGCAAAAAATCTACGTCCAGGGCAGTCGCCCGGATATCCGCGTGCCGATGCGCGAAATCAGCCTCGACGTGACCCCCACCGACTTCGGCGGCGAAATCAACGCGCCAGTAGTGGTGTATGACACCTCGGGGCCCTACACCGACCCGAACGTGTCCATTGATGTGCGCAAGGGCCTGGCCGATGTGCGCTCGCCGTGGATCGAAGCTCGTGGCGACACCGAGCGTCTCGCCGGCCTGAGTTCCAATTTCGGCCAGGAACGCCTGGCCGATCCCGAGCTGACCAAGCTGCGCTTCGCCCATGTAAACAACCCGCGTCGCGCCAAGCCGGGCGCCAACGTCAGCCAGATGCACTACGCGCGCAAAGGCATCATCACCGCCGAGATGGAATACGTCGCCATCCGCGAAAACATGAAGCTGGAAGTGGCCCGCGCCGCCGGCCTGCTGGACCAGCAACACGCCGGTCACAGCTTCGGCGCCAGCGTGCCGAAAGTCATCACCCCGGAATTCGTGCGTGACGAAATCGCCCGTGGCCGCGCGATCATTCCGGCCAACATCAACCACACCGAACTGGAACCGATGATCATCGGCCGTAACTTCCTGGTGAAGATCAACGGCAACATCGGCAACAGCGCGCTGGGTTCGTCCATCGAAGAAGAAGTGGCGAAGCTGACATGGGGCATCCGCTGGGGTTCGGACACGGTCATGGACCTGTCCACCGGCAAGCACATCCACGAAACCCGCGAGTGGATCATCCGCAACTCGCCGGTGCCGATCGGCACCGTGCCGATCTACCAGGCCCTGGAAAAAGTCGGCGGCGCGGCCGAAGACCTGACTTGGGAGTTGTTTCGCGACACGCTGATCGAACAGGCCGAGCAGGGTGTCGACTACTTCACCATCCATGCCGGCGTGTTGCTGCGTTATGTGCCGATGACCGCCAAGCGCGTCACCGGTATCGTCAGCCGTGGCGGTTCGATCATGGCCAAGTGGTGCTTGGCGCACCACAAGGAAAATTTCCTCTACACCCACTTCGAAGACATCTGCGAAATCATGAAGGCCTACGACGTCAGCTTCTCGCTGGGCGACGGCCTGCGTCCGGGCTCGATTGCCGACGCCAACGACGAAGCGCAGTTCGGCGAGCTGGAAACCCTCGGCGAGCTGACCAAGATCGCCTGGAAGCACGACGTGCAGTGCATGATCGAAGGCCCCGGCCACGTGCCGATGCAGTTGATCAAGGAGAACATGGACAAGCAGCTCGAGTGCTGCGACGAGGCGCCGTTCTACACCCTCGGCCCGCTGACCACCGACATCGCGCCGGGCTACGATCACATCACTTCCGGCATCGGCGCGGCGATGATCGGCTGGTTCGGGTGCGCGATGCTCTGCTATGTCACGCCGAAGGAACACCTCGGCCTGCCGAACAAGGATGACGTCAAGACGGGAATCATCACTTACAAAATCGCCGCCCATGCGGCCGATCTGGCCAAAGGGCATCCGGGCGCGCAGATCCGTGACAACGCCTTGAGCAAGGCGCGGTTCGAGTTCCGCTGGGAAGACCAGTTCAACCTCGGCCTCGACCCGGACACCGCCCGCTCGTACCACGACGAAACCCTGCCGAAGGATTCGGCCAAGGTCGCGCATTTCTGTTCGATGTGCGGGCCAAAATTCTGCTCGATGAAAATTACCCAGGAAGTGCGTGAGTACGCGGCCAACCAGCGCATTGAAGCGGTGGATGTCGAGGTCGCCCAAGGCCTGGCGGAGCAGGCGGAGCGGTTCAAGAAGGAAGGCAGTCAGCTTTACAAGAAAGTGTGAMTTKSKNATNLSESAQVDQQSVQPFTRSQKIYVQGSRPDIRVPMREISLDVTPTDFGGEINAPVVVYDTSGPYTDPNVSIDVRKGLADVRSPWIEARGDTERLAGLSSNFGQERLADPELTKLRFAHVNNPRRAKPGANVSQMHYARKGIITAEMEYVAIRENMKLEVARAAGLLDQQHAGHSFGASVPKVITPEFVRDEIARGRAIIPANINHTELEPMIIGRNFLVKINGNIGNSALGSSIEEEVAKLTWGIRWGSDTVMDLSTGKHIHETREWIIRNSPVPIGTVPIYQALEKVGGAAEDLTWELFRDTLIEQAEQGVDYFTIHAGVLLRYVPMTAKRVTGIVSRGGSIMAKWCLAHHKENFLYTHFEDICEIMKAYDVSFSLGDGLRPGSIADANDEAQFGELETLGELTKIAWKHDVQCMIEGPGHVPMQLIKENMDKQLECCDEAPFYTLGPLTTDIAPGYDHITSGIGAAMIGWFGCAMLCYVTPKEHLGLPNKDDVKTGIITYKIAAHAADLAKGHPGAQIRDNALSKARFEFRWEDQFNLGLDPDTARSYHDETLPKDSAKVAHFCSMCGPKFCSMKITQEVREYAANQRIEAVDVEVAQGLAEQAERFKKEGSQLYKKVPGPT0008905_1146DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BACIMETHRIN|CF3-HMP_DETOXIFICATION,PGPT0008905-thiC-K03147NANA
D1-35_053101440tolC_3COG1538Outer membrane protein TolCATGCTGCGCAAACTCTCACTGGCCCTTGCCGTGTCTTGTGCGACCAATGGAATGGCCTGGGCCGCCGAAGCCCCGTTATCCACCAGAACCGACCTGGTCAGCGTGTACCAGGAAGCGGTGGACAACAACGCCGACCTGGCCGCCGCCCGCGCCCAATACGGCGCCCAGAAAGAAGTGGTGCCCCAGGCCCGCGCCGGGCTGTTGCCCAATCTTTCGGCCGGAGCCGACCTGAACAACACCCGCACCGAGCTCGACCAGCCGGCGATGACCGCCACCCGCAGCTCGACGGTGTACCAGGCCACCTTGTCCCAGCCGATTTTCCGCGCCGACCGCTGGTTCCAGTTGCAGGCCGCCAAATCGGTCAACGAACAAGCGTCGCTGCAGTTGTCGGCCACCGAGCAGAACCTGATCCTGCAAAGCGCCGAAGCCTATTTCAATGTGCTGCGCAGCCAGGACAACCTGGCCTCGACCAAGGCCGAGGAAGCCGCGTTCAAGCGCCAGCTCGACCAGTCCAACGAACGCTTCGACGTCGGTCTTTCGGACAAGACCGACGTGCTGCAGTCCCAGGCCAGCTACGATACCGCGCGGGCCAACCGGATCATCGCGCAGCGCCAGGTCGAAGATGCCTTTGAAGCGCTGATCACCCTGACCAACCGCCAATACAATGCGATCCAGGGCGTCGTCCACACCCTGCCGATCCTGCCGCCGGCGCCCAACGACGCCAAGGCCTGGGTCGACACCGCTGCCCGGCAAAACCTCAATCTGTTGGCCAGCAACTATGCCGTCACCGCCGCCGAAGACACCCTGCGCCAGCGCAAGGCCGGCCACGCGCCAACCCTCGACGCCATCGCGCAATACCGCAAAGGTGACAACGACGGCCTCGGTTTTACCAACCCGAACCCCACCGGCCAGCGCTACGGTGGCGACGCCGAGCAACGGACCATCGGCCTGCAATTGAGCATTCCGATCTACAGCGGCGGGCTGACCAGCTCCCAGGTGCGCGAGTCCTACTCGCAACTCACCCAGACCGAGCAGCAGCGCGAAGGCCTGCGCCGCCAGGTGGTGGAAAACACCCGCAACCTGCACCGCGCGGTGAACACCGATGTGGAGCAGGTCCAGGCCCGGCGCCAGTCGATCATTTCCAACCAGAGCGCGGTGGACGCCACGGAAATCGGCTATCAGGTGGGCACCCGCAACATCGTCGATGTGCTCGACGCCCAGCGCCAGCTGTACACTTCGGTGCGCGATTACAACAACGCCCGGTACGACTACATACTCGACAATTTGCGCCTCAAACAGGCCGCCGGGACGTTGAGCCCGGAAGACCTGCAGGCCCTGTCACGCTACCTCAAGCCCGACTACAACCCGGACAAGGACTTCCTGCCGCCGGACCTGGCACAGGCCGCCGCGCAGCAACTGCGCGCTCGGCCGGCGCAGTAGMLRKLSLALAVSCATNGMAWAAEAPLSTRTDLVSVYQEAVDNNADLAAARAQYGAQKEVVPQARAGLLPNLSAGADLNNTRTELDQPAMTATRSSTVYQATLSQPIFRADRWFQLQAAKSVNEQASLQLSATEQNLILQSAEAYFNVLRSQDNLASTKAEEAAFKRQLDQSNERFDVGLSDKTDVLQSQASYDTARANRIIAQRQVEDAFEALITLTNRQYNAIQGVVHTLPILPPAPNDAKAWVDTAARQNLNLLASNYAVTAAEDTLRQRKAGHAPTLDAIAQYRKGDNDGLGFTNPNPTGQRYGGDAEQRTIGLQLSIPIYSGGLTSSQVRESYSQLTQTEQQREGLRRQVVENTRNLHRAVNTDVEQVQARRQSIISNQSAVDATEIGYQVGTRNIVDVLDAQRQLYTSVRDYNNARYDYILDNLRLKQAAGTLSPEDLQALSRYLKPDYNPDKDFLPPDLAQAAAQQLRARPAQPGPT0003600_1383DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_I_SECRETION_SYSTEMSCE-TSS1-AlgE-TYPE_MANNURONAN_C-5-EPIMERASE_TRANSPORT,PGPT0003600-tolC-K12340NANA
D1-35_053111281waaACOG15193-deoxy-D-manno-octulosonic acid transferaseATGAACAGAACTCTCTATAGCGCATTGTTTTATCTGGGGCTGCCGCTGGTGGCGATTCGGCTGTGGTTGCGGGCACGCAAGGCGCCGGCCTATGCCCGCCGCATCGGCGAGCGGTTTGCGTGGGGCTTGCCAGCACTGGTTCCGGGCGGCATCTGGGTCCATGCGGTGTCGGTGGGCGAGAGCATTGCCGCCGCGCCGATGATCCGCGCCTTGCTGCAACGTTATCCACAGCTGCCGATCACGGTGACGTGCATGACGCCCACCGGTTCGGAGCGGATCAAGGCGTTGTTCGCCGAGGAGCCGCGCGTCCAGCACTGCTATCTGCCTTATGACCTGCCTTGCGCGGCCAAGCGTTTTCTCGATCAGGTCCGGCCGAAACTGGCGGTGATCATGGAAACCGAGCTGTGGCCCAACCACATCCATCAATGCGCCAGGCGCGGTATCCCGGTGGCGTTGGCCAATGCCCGGCTCTCGGAGCGTTCGGCGCGCGGTTATGCGCGCTTCCCTAGGCTCACCCGACCGATGCTCGGGGAAATGAGCCTGTTCGCCGTGCAGACCGAAGCCGAGGCCGAGCGGTTTCGCCAACTCGGTGCCCGAGCCGGAACCGTCGAGGTGACGGGCTCGATCAAGTTCGACCTGACCATCGACCCGCAACTGCTCGAAAGCGCCAGCGCCCTGCGCCGCCAATGGCAAGCCGTGGACCGCCCGGTGTGGATCGCCGCCAGCACCCATGAGGGTGAGGATGAAGTGGTGCTGGCAGCCCACCAACGGCTGCTCGCCAGTTATCCCGATGCGTTGTTGATCCTGGTGCCGCGGCATCCGGAACGCTTCGATTCGGTGGCGCAGTTGTGTGAGCGTGAAGGTTTCGCCACGGTCCGGCGTTCCAGTGCGCAACCGGTCACTGCACAGGCATCGGTGCTGCTGGGCGACACCATGGGCGAGCTGCTGTTTCTCTACGCGCTGGCCGACAGCGCTTTTGTTGGCGGCAGCCTGGTGCCCAACGGCGGGCACAACCTGCTCGAACCGGCGGCGCTGGCAAAACCGGTCCTCAGTGGCCCACACCTGTTCAATTTCCTCGAAATCGCCGCGCAACTGCGCGCGGCCGGTGCGTTGCAGGAAGTCGAAGATGCCGAAAGCCTGGCCCTGGCGGTACAGCGCCTGTTCGAACTGCCCCGCGATGCCCAGCGCATGGCCGAGGCGGGGTTGAAGGTGATGCGCAGCAACCAGGGCGCGTTGCAGCGATTGCTGGACGGGTTGGGGCGGTTGCTCGACGGCCGCTGAMNRTLYSALFYLGLPLVAIRLWLRARKAPAYARRIGERFAWGLPALVPGGIWVHAVSVGESIAAAPMIRALLQRYPQLPITVTCMTPTGSERIKALFAEEPRVQHCYLPYDLPCAAKRFLDQVRPKLAVIMETELWPNHIHQCARRGIPVALANARLSERSARGYARFPRLTRPMLGEMSLFAVQTEAEAERFRQLGARAGTVEVTGSIKFDLTIDPQLLESASALRRQWQAVDRPVWIAASTHEGEDEVVLAAHQRLLASYPDALLILVPRHPERFDSVAQLCEREGFATVRRSSAQPVTAQASVLLGDTMGELLFLYALADSAFVGGSLVPNGGHNLLEPAALAKPVLSGPHLFNFLEIAAQLRAAGALQEVEDAESLALAVQRLFELPRDAQRMAEAGLKVMRSNQGALQRLLDGLGRLLDGRPGPT0022485_1790DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_CORE_OLIGOSACCHARIDE_METABOLISM,PGPT0022485-waaA|kdtA-K02527NANA
D1-35_05312891yhaJ_2HTH-type transcriptional regulator YhaJATGAATGTTCAATGGAATCTGGAGCAGTTGCGGCTGTTTGTCGGTGTGGCCGAGAAACGCTCGTTTTCCGCCGTGGCTCGGGACCAGCGCAAGGCGCAGTCGGCCATCAGCAGCGCGATTGCCCTGCTCGAAGCCGACCTTGGCGTGAACCTTTTCGAGCGCAGCAGCGGTCGCCAACCCCGGCTCACCGATGCGGGCGAGACGCTGCTGGAAGAGGCGCGGGAAGTGTTGCGCCAATGCGAGCGGCTCAACGGTCGAGCCCTGGCCTTGATGCGCGGGCAGGAGGCTTCGCTGCGCCTGGCCCAGGATGAAGCCATGCCCTATCAACCGGTAATCGACAGCCTGGTGGCGCTGGCCGAGCAGTTTCCAACGCTCGAAGTGCAGCTTGCCAGCGCCGCCCAGGGCGACGTGGCGCGCAAACTGGTGGAACGTCGCGCCGATCTTGGCTTGCTGTTCTATCACGATCAGATCCCAGAGGCGCTGGAGCGGCGGGTGCTGGGCAGCGTCGAGATGGTCACGGTGTGTGGCCGGGGCCATCCACTGGCGCACCATGGCTATGTGTCGTGCCGGGAAATGGCCCGGCACCGGCAGTTGCTGATGGCGACCCAGACCAGCGTCTACCCCGGCAGCGAGCAGGCCAGCCCGCAGGTCTGGCGCGCCGACAGCTTCTATGTGCTCGCCGAATGGCTCAGAAGTGGCCTGGGCTGGGCCTGGCTCCCTCGCCACGTTGTGCAATACCCGGCCTATCTGGGAGAGATGGTCGAGCTGAGCAGCGAATGGACCCCGCCGGCCCTGGTGGTGGAGCTGGTCTGGCGTCGCGATGAACCGCTGGGCCCGGCCGCGCGCTGGCTGGCGGAACGTTTTGCCGTGCAGTTGCAGGCGATTGGCTGAMNVQWNLEQLRLFVGVAEKRSFSAVARDQRKAQSAISSAIALLEADLGVNLFERSSGRQPRLTDAGETLLEEAREVLRQCERLNGRALALMRGQEASLRLAQDEAMPYQPVIDSLVALAEQFPTLEVQLASAAQGDVARKLVERRADLGLLFYHDQIPEALERRVLGSVEMVTVCGRGHPLAHHGYVSCREMARHRQLLMATQTSVYPGSEQASPQVWRADSFYVLAEWLRSGLGWAWLPRHVVQYPAYLGEMVELSSEWTPPALVVELVWRRDEPLGPAARWLAERFAVQLQAIGNANANANANA
D1-35_05313333COG2076Multidrug transporterATGAACGCCTATTACTACCTGGCCATCGCCATCTGCGCCGAAGTGATCGCCACCGTTTCGATGAAAGCGGTCAAAGGCTTGAGCACACCGCTGCCCCTGCTGCTGGTCGTCGCCGGTTACGGCATTGCGTTCTGGATGCTGACGCTGGTGGTGCGCACCGTACCGGTAGGCGTGGCCTACGCGGTCTGGGCCGGGATGGGCATCGTCATGGTCAGCGTGGCGGCGCTGTTCATCTACGGCCAGAAACTCGACGTACCGGCGATGCTGGGGATGGCGTTGATCGTGCTGGGGGTGGTGGTGATTCAGTTGTTTTCCAAGACGGCGGGGCACTAAMNAYYYLAIAICAEVIATVSMKAVKGLSTPLPLLLVVAGYGIAFWMLTLVVRTVPVGVAYAVWAGMGIVMVSVAALFIYGQKLDVPAMLGMALIVLGVVVIQLFSKTAGHPGPT0029230_1239DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0029230-emrE|qac|mmr|smr-K03297NANA
D1-35_053141176COG0578putative FAD-dependent oxidoreductaseATGCCATCCGTTATTTCCACCGACATCCTGATTGTCGGCGCCGGAGTCGCCGGCCTCTGGCTGAACGCGCGCTTGCGCCGCCAGGGGTTTTCAACCGTGCTGGTGGAAAGCGCCAGCCTCGGTGGCGGGCAGAGTGTCAAATCCCAGGGCATCATTCATGGGGGCGCCAAATACGCGCTGCACGGAGCCCTGACCGGCGCCTCGGAAGCCATCGCCGATATGCCGCGACGCTGGCGCGAAGCCCTGAAGGGCGACGGTGAGTTGGATCTGTCCGGCGTACGCATGTTGTCCGACGCTCATTACCTCTGGTCTCCCGGCACCCTGGCCGGCAACCTGACCAGTTTCTTCGCCAGCAAGGCCGTGCGCGGTCGCGTCGACCAGGTCAAAGGCGAGCAACTGCCGCCGGCCCTGCAGGACAAGCGCTTCAAGGGCAAGGTCTACCGCCTCGCCGAGCTGGTGGTGGACGTTCCCAGCCTGATTGCCCGCCTGGCGGACCTGGCCGGCGACAGCCTGCTGGCCGGGCAGCGCATCGAACCCTTGCACGAACAGGGCGAGCTGGTCGGACTGAAGGTCGACGACCGCGAGATCCGCGCCCAACGCATTGTCCTCAGTGCTGGCGGAGGCACTGCCGACTTGCTCAAGGCCCTTGGCCTGGATCAGCCGGCCATGCAGACCCGGCCGCTGCACATGGTGCTGGTCAAGGGGCCGAGCCTCAAGCCGTTGTATGCGCACTGCCTGGGCGGCGGACCGAAGCCACGCGTCACCGTAACCACGCACCCGGCAGCCGACGGCCAGTGGGTCTGGTACTTGGGTGGCGACCTCGCCGAGGGCGATGCCGTCGCTCGCGAACCCGCCGCGCAGATTGCCATCGCCCAGAAAGAAATCAGCCAGTTGTTGCCGTGGATCGACCTCAGTACGGCGCAATGGGCCACGCTGCGGGTCGCGCGCGCCGAACCGCTGCAATCGGGCCTGACCCGTCCGGACAATGCTTTTGTCGCCGAGCAAGGACGCCTGCTGGTGGGTTGGCCGACCAAGCTGGCGCTGGCCCCGGACTTTTCCGACCGGGTCATCACCGCGCTGCAACGCGACGGCATCCAGCCCAGCCACCCCGCCCCGCTGCCGGCCCTGCCGAAACCGCCCATGGGCGTCCCCGCCTGGGAGCAATTGTTGCCATGAMPSVISTDILIVGAGVAGLWLNARLRRQGFSTVLVESASLGGGQSVKSQGIIHGGAKYALHGALTGASEAIADMPRRWREALKGDGELDLSGVRMLSDAHYLWSPGTLAGNLTSFFASKAVRGRVDQVKGEQLPPALQDKRFKGKVYRLAELVVDVPSLIARLADLAGDSLLAGQRIEPLHEQGELVGLKVDDREIRAQRIVLSAGGGTADLLKALGLDQPAMQTRPLHMVLVKGPSLKPLYAHCLGGGPKPRVTVTTHPAADGQWVWYLGGDLAEGDAVAREPAAQIAIAQKEISQLLPWIDLSTAQWATLRVARAEPLQSGLTRPDNAFVAEQGRLLVGWPTKLALAPDFSDRVITALQRDGIQPSHPAPLPALPKPPMGVPAWEQLLPNANANANANA
D1-35_05315813iolSCOG0667Aldo-keto reductase IolSATGAGCCTACCGACCCTGCACGACCTGCATCGCCCGCTGGGCCATAACGGCCCGCTGGTTTCTCCCCTGGGCCTGGGCACGGTCAAGCTTGGCCGCGACCAGGGCGTCAAGTACCCCAACGGTTTTCGCATCCCGGATGACAGCGAAGCGCGCATGCTGCTCAAGCTGGCCCGCGAGCTGGGCATCAACCTGATCGACACCGCACCGGCTTATGGGCACAGCGAAGAACGCCTCGGCCCACTACTGCGCGGCCAGCGTCACGACTGGGTGATCGTCAGCAAGGTCGGTGAGGAGTTCAACGATGGCCAGTCGCGCCACGACTTCAGCGCCGCCCATACGCGGTTTTCGGTGGAGCGCAGTCTCAAACGCCTGGAAACCGAGTATATCGACCTGGTACTGGTGCACTCGGACGGCAACGACCTGGCGATCCTCAACGACAGCGAGGTCTACCCGACCCTGGCGGCCCTCAAGCGCGAGGGCAAGATCGGTGGCTTCGGTTTCTCCGGCAAGACCGTCGACGGCGGCTTGAAAGCCCTGGAGCAAGGTGATTGTGCGATGGTCACCTACAATCTGAACGAACGAAGCGAAAAGGCGGTCATTGACTACGCAAGCGAGCACGGCAAGGCGATCCTGGTAAAAAAAGCCCTGGCCAGCGGTCACGTCTGCCTGAGCCCCGGCGAAGACCCGGTTCGCACCAGCTTCGAACTGTTGTTTGAGCATCCCGGGGTTGCCAGTGCTATTGTCGGCACCATCAATCCGCTGCACCTCGCCCATAACGTCGCGACCGTAGCCAAGGTCCTGCGTAAAAACTGAMSLPTLHDLHRPLGHNGPLVSPLGLGTVKLGRDQGVKYPNGFRIPDDSEARMLLKLARELGINLIDTAPAYGHSEERLGPLLRGQRHDWVIVSKVGEEFNDGQSRHDFSAAHTRFSVERSLKRLETEYIDLVLVHSDGNDLAILNDSEVYPTLAALKREGKIGGFGFSGKTVDGGLKALEQGDCAMVTYNLNERSEKAVIDYASEHGKAILVKKALASGHVCLSPGEDPVRTSFELLFEHPGVASAIVGTINPLHLAHNVATVAKVLRKNNANANANANA
D1-35_05316966hypothetical proteinATGCCGCGTACGCTCATCAGAAAAAACCCGAGCAACTTCAAGACCCTGCCCCTCGCTGTCGAAGCAACGCCCGAAGGCCTGACATACCAGAGCGTGGGCATGCCGCTGAATTTCGCCCAGACTTTGCAGCGGCGCCGCCCCGTGACAGTCGACGATGCCGAGCGTTTTTCCGTGGAACTGGCGAACCTGGGCGTCTCGGTACGCCTGACGCTGCATTGGCAGAACCGCGATTATTGGGTGCTCGTGCGTCAACGCCGACAGGATCGCGGCGATGTAGTGCTCAAGCTGATTTCCGGCTACGTCCCGGCCCATGAACTGAACCTGCCGCTGCTCACCGCGATCAACGAAATAGCCGAAGAATGCCTGCTGGAAACCCCTGAAGGCTGGCTTGGCGGACGTTTCAACGACACGTGGTTGCCGGCGCCCTATTCAAGCGCCCTGCATTACCGTGAGGCCCTGCCGTTTCGACTGGCCCCGCTATCGGGCTCGGCTCGCCCGGTGCGCTGCGCCAACCTGCAACTGATCGAACGCCCAAGGGCCTACGTCCATTTGCCCACGGCATCGCTGCAGTTGATCTACGATTTGCGCCTGGATGTGCCCAAGGAAGCCAAGTCCCTGAGCCTTTTCCATGTCGATGAACGGCTGGAGGGCGACCAACTGGTCGCGCGCCTGGATCGCAAGCGGCCCGATCTCTACCTGATGCCGCTGCAGGACGGGCAACCCTTGCCCGAGCTGTATACGTTGAAGAAAGACCAGTTATACCCGGCCAGCACCCGAGGGTTGTATCTGGCGGAGAGCTTCGCCCGACAGGACGGCTGGCTGGTGCGCGAGGAGCGGATTCGCTGGAAGGACTGGCTGCGCCAGCAAGGGCTGACGCCGCCAGGAAAAGAATCCGGGCTGACCCGATTGAAGGGCAAGGCCCGGCAGTTGCTCAAGAAGATCGTGCCACGCAAGGTGGTGCGTTAGMPRTLIRKNPSNFKTLPLAVEATPEGLTYQSVGMPLNFAQTLQRRRPVTVDDAERFSVELANLGVSVRLTLHWQNRDYWVLVRQRRQDRGDVVLKLISGYVPAHELNLPLLTAINEIAEECLLETPEGWLGGRFNDTWLPAPYSSALHYREALPFRLAPLSGSARPVRCANLQLIERPRAYVHLPTASLQLIYDLRLDVPKEAKSLSLFHVDERLEGDQLVARLDRKRPDLYLMPLQDGQPLPELYTLKKDQLYPASTRGLYLAESFARQDGWLVREERIRWKDWLRQQGLTPPGKESGLTRLKGKARQLLKKIVPRKVVRNANANANANA
D1-35_053171422hldECOG2870Bifunctional protein HldEATGAAGTTGTCCATGCCGCGATTCGATCAAGCCCCTGTATTGGTGGTCGGCGATGTCATGCTCGACCGCTATTGGCATGGCGGTACATCACGGATTTCCCCCGAGGCTCCGGTGCCGGTGGTCAGGGTCGAGCATATCGAGGATCGGCCAGGTGGCGCCGCCAACGTCGCCCTGAACATTGCCGCGCTCGGCGCACCGGCGTCCCTGGTCGGCGTGACCGGCGACGACGAAGCCGCCGACAGCCTGGCCAACAGCCTCAAGGGCGCGGGCGTGCGGGCGATATTCCAGCGCATTGCGCACCAGCCGACGATCGTCAAGTTGCGGGTCATCAGCCGCCATCAACAACTGTTGCGGATCGACTTCGAAGAACCGTTCGCCACCGATCCCCTGGCCCTTGGCGCCGAGGTCGATCAACTGCTCGAAGGTATCAAGGTGCTGGTGTTGTCGGACTACGGCAAGGGCGCCTTGAAAAATCACCAGACGCTTATCCAGGCGGCTCGTGCCCGGGGCATTCCGGTGTTGGCCGACCCCAAGGGCAAGGATTTTTCCATCTACCGTGGCGCGAGCCTGATCACCCCGAACCTCAGCGAATTCGAGACCATCGTCGGTGGCTGCGCCGACGAGCACGAGCTGGTGAGCAAAGGCGCACAGCTGATGCACGACCTGGAGCTCGGTGCGCTGCTGGTCACCCGGGGCGAACATGGCATGACCTTGTTGCGTCCCGATCATCCGGCGCTGCACCTGCCGGCCCGTGCCCGTGAGGTATTCGACGTGACGGGTGCCGGCGATACGGTGATTTCCACACTGGCGGCGGCCATCGCCGCTGGCGAGGAACTGCCTCATGCGGTGGCCCTGGCGAACCTGGCGGCGGGTATCGTGGTTGGCAAACTGGGTACGGCGGCCATCAGCGCTCCGGAGCTGCGTCGCGCCATCCAGCGTGAAGAGGGTTCCGAGCGTGGCGTGCTCGGGCTGGAGCAGTTGCTGCTGGCCGTCGACGACGCCCGCGCGCACAACGAAACAATCGTGTTCACCAACGGTTGCTTTGACATCCTCCATGCCGGCCATGTGACGTACCTCGAACAGGCCAGAGCCCAAGGCGATCGTCTGATCGTCGCGGTCAACGACGATGCCTCCGTGAGCCGTCTCAAAGGGCCGGGCCGGCCAATCAACAGCGTTGACCGCCGCATGGCGGTGCTGGCCGGCCTTGGCGCGGTGGACTGGGTGATCAGCTTCAGTGAAGGCACGCCGGAAAACCTGCTGCGTCAAGTCAAGCCGGACGTGCTGGTCAAGGGTGGCGACTATGGCATCGACCAGGTCGTCGGCGCCGATATCGTCGCGGCTTATGGCGGCACCGTGAAGGTGCTGGGGCTGGTGGAGAACAGCTCGACGACGGCGATTGTGGAGAAGATCCGCAATAACTGAMKLSMPRFDQAPVLVVGDVMLDRYWHGGTSRISPEAPVPVVRVEHIEDRPGGAANVALNIAALGAPASLVGVTGDDEAADSLANSLKGAGVRAIFQRIAHQPTIVKLRVISRHQQLLRIDFEEPFATDPLALGAEVDQLLEGIKVLVLSDYGKGALKNHQTLIQAARARGIPVLADPKGKDFSIYRGASLITPNLSEFETIVGGCADEHELVSKGAQLMHDLELGALLVTRGEHGMTLLRPDHPALHLPARAREVFDVTGAGDTVISTLAAAIAAGEELPHAVALANLAAGIVVGKLGTAAISAPELRRAIQREEGSERGVLGLEQLLLAVDDARAHNETIVFTNGCFDILHAGHVTYLEQARAQGDRLIVAVNDDASVSRLKGPGRPINSVDRRMAVLAGLGAVDWVISFSEGTPENLLRQVKPDVLVKGGDYGIDQVVGADIVAAYGGTVKVLGLVENSSTTAIVEKIRNNPGPT0023040_1098DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS-MANNO-HEPTOSE|-PHOSPHATE_MODIFICATION,PGPT0023040-gmhC|hldE|waaE|rfaE-K03272NANA
D1-35_053181434hypothetical proteinGTGAGCGCACGCAAGCAGCAACTGCTCAAACGCCACCGTCAACGCAAGCGCCTGGTTCTGGCCGGCGCGCTGCTGGCGGCGCTGGTGCTCGGCTTCACGGTCTCGTGGTGGTCGTTGCCGGTGTTTCTCCTGTTGGGCTGGGTGGCTCATGAAGCCTGGTTCTCCGACCATCTGTTCTATGCTCCGAGCGATGATTATCGCTATGACTTTCCGCCAGATACCCCGCAATTTCCCGTCACGCTGAGCGGCGGACGCCTGCAGGTCACGGGTCAGTTCGATGCCCGGCAGACGCTGATCCTGCAGGTACGGGTAAAAAGTCGTTGGCTGGGGCGGTTCCTCGACCCACAGGTGTGGATCGGTGAGGATCGCCAGGATCTTGAGCGGGGCGTCTGTGGCGAGCGCTTCCTCAATCTGTCCGGGCAAGGAGCCGCGCTGACTACCGGGACCCTGGCCTTGCGCGGGCGTTTTTGCAGCCTGGCTCCCCAGGCTATGTTGCATGTGCTGAGCAACCCGGATTTCGCCCGGCAGCGCCTGCTGATCGTCGCGCCCCATGCCGATGACGCCGAACTGGCGGCGTTCGGGCTGTACAGTCGTGCCAGCGAGGTTGCGATCGTTACGCTGACCCAGGGTGAGATCGAGGCCGAGCGTTATCGCGACATGGGCCTGGATCCCGCCGAGGCCGCTCGTCTCAAGGGTCGCCTGCGCAGTTGGGACAGCTTGGCCGTGCCATTGTGGGGGGGCGTGGCGCAACAGCAGTGCGTGCAGCTGGGTTACTACTGCCTGCAATTGGAGGCCATGGCCAAGACGCCGGACCAGGGCTTTGGCTCGCGGGAGTCGGGCGAGAGCGATATCCGCCAGGTTCGTCGGTTCAATGCCTTGAACCTGCCGGGTGACGCGGATGGCCTGCCGACGTGGCGCAACCTGGTGGCTGACCTTGCGCGGCTGCTCGAACATCACCGGCCCGAGGTGGTGCTGACGCCGCACCCCGAGCTGGACCCCCACAGCGATCATGTCGCCAGTACCCGGGCGCTGATGGAGGCGATCGAACTCAGCACCTGGCGGCCACAGACATTGCTGCTCTATGCCAATCACCTGCACGACAACGACCGCTGGCCGATGGGCCCGGCAGGCTATGGCATTGCGCTGCCGCCGGCCATCGAACCGTTGCCGGCCGATGGGTTGTGGAGCCCGTCGCTGGACGCCTCCACCCGCATGGACAAGGCCATGGCCCTTGGCATGCAGCATGACTTGCAGGGCCGACCTCCATTCAAGCGACGGCTGCGCCGTATCATCCAGCGACTGCTGGCCGGGCGCCGCTGGCCCAGCACCGGAGAAGACGAATTTTTCCGCAAGGCGGTTCGGCGCCACGAGCTTTTCTGGGTCCGGCGGCTGAATGGGACGCCGCCGGAGGACGACCAGGCCCGTCGACCTTGAMSARKQQLLKRHRQRKRLVLAGALLAALVLGFTVSWWSLPVFLLLGWVAHEAWFSDHLFYAPSDDYRYDFPPDTPQFPVTLSGGRLQVTGQFDARQTLILQVRVKSRWLGRFLDPQVWIGEDRQDLERGVCGERFLNLSGQGAALTTGTLALRGRFCSLAPQAMLHVLSNPDFARQRLLIVAPHADDAELAAFGLYSRASEVAIVTLTQGEIEAERYRDMGLDPAEAARLKGRLRSWDSLAVPLWGGVAQQQCVQLGYYCLQLEAMAKTPDQGFGSRESGESDIRQVRRFNALNLPGDADGLPTWRNLVADLARLLEHHRPEVVLTPHPELDPHSDHVASTRALMEAIELSTWRPQTLLLYANHLHDNDRWPMGPAGYGIALPPAIEPLPADGLWSPSLDASTRMDKAMALGMQHDLQGRPPFKRRLRRIIQRLLAGRRWPSTGEDEFFRKAVRRHELFWVRRLNGTPPEDDQARRPNANANANANA
D1-35_05319900hypothetical proteinTTGATCCTGAGTTACTGGCGGGCCTGGCGCGAGAACGGTTGGACCCCCATAGACGCCGTGGCATACGCCCAGGCCTGGCATCAATTCGGTGGCAGCGTGGCGACACACCCTGATGTGGTCGAGCGCCTGGCCGGGCTGGTGGGCATTCCGGTGCGCTACCTGGGCTGGCTCGTTGACGGCCAGCTGTGTGCCGCCATGCCTACCTGGGGCCGGCATGTGGCGCTGTCCAAGGATGTGCTCAAGCGTGAAGGCAAGCGTGGCATGCTCGACCTCGGCAATGCCGAGGTCATCCTGCCCGTCAGCCAAGGCGCCCAGGTTCGCCTGCGGCACCGCATGCGGTATGTGTCCGAACTGAATGCACCGCACATCATCGGTCTCGCCGAACAACCCGAAGGCCTGGCGCTGGCGCGTGAGCCCGAGGACTACAGCAAGAAGTTTCGCTACAACCAGCGTCGCGAGCAGCGCCTGCTGGAAGACGCCGGTGGCAGTATCCGGCCAATGCTCGACCTGAGCCCCGGCGAGCAGGCTGCGGTGTATGCCGACCTGTTCCAGCGTCGCTGGAATTTCGAAGCCCCCGGCAAGACCCATCTGGCCGAGGTGTTCAGCCTGATGCGCGAATTCATGACCGGCTCGCTGATCTATCTGAATGACGAACCGGTGGCGATCCAGATTCTGTATCGGGTCGAGGCGCCCGGCTGGTTCAGCCTGGAATATATCAATGGCGGGGTTGACCCGCAGAGCCGAGATTTCAGCCCGGGCAGCGTGCTTAGCTTCGTCAACACCCAGGCACAATGGGAGCACGCCCGGGCGGCGGGCAAACCGTTGCGCTACTCGTTCGGCCGCGCCGATCGCGAATACAAGGATCGCTGGTGCAACCGGGTTCCGGTCTACCAGGTTTGAMILSYWRAWRENGWTPIDAVAYAQAWHQFGGSVATHPDVVERLAGLVGIPVRYLGWLVDGQLCAAMPTWGRHVALSKDVLKREGKRGMLDLGNAEVILPVSQGAQVRLRHRMRYVSELNAPHIIGLAEQPEGLALAREPEDYSKKFRYNQRREQRLLEDAGGSIRPMLDLSPGEQAAVYADLFQRRWNFEAPGKTHLAEVFSLMREFMTGSLIYLNDEPVAIQILYRVEAPGWFSLEYINGGVDPQSRDFSPGSVLSFVNTQAQWEHARAAGKPLRYSFGRADREYKDRWCNRVPVYQVNANANANANA
D1-35_053201791msbACOG1132Lipid A export ATP-binding/permease protein MsbAATGGCCAATTCCGACCAGCAATCGAGCATGAAGATTTACTTGCGATTGCTGAAATACGTTCTCCCGTATTGGGGCGCTTTCGCCGTCAGTATCGTTGGCTTCGTGTTGTTTGCATCCAGCCAGCCGATGCTGGCGGACATGCTCAAGCATTTTCTCGACGCGCTGCAAAAGCCCAATGACACCCGCTTCATGGGGGTCTCGCTGGTGCTCGGGGTGCCGCTGCTGATCGTGCTGATCGCGGTTTACCAGGGGATCGGTTCGTTCCTGGGCAACTACTACCTGGCCAAGGTCGCCCGGGGCGTCGTCCATGACTTGCGTTGCGCGCTGTTCGACAACCTGCTGACCTTGCCCAACCGTTATTTCGACAACCATAACTCCGGCCACCTGATTTCCCGTATCACCTACAACGTGACCATGGTCACCGGCGCCGCCACCGATGCCATCAAGGTTGTCATCCGGGAAGGCCTGACCGTGGTGTTCCTGTTCGGCTACCTGCTTTACAGTAACTGGAAAATGACCCTGGTATTGCTGGCGATCCTGCCGGTCATTGCCGTGCTGGTGAGTAGCGCCAGCAAGAAATTCCGTAAGCAGAGCAAGAAGATCCAGGTGGCGATGGGCGATGTGACCCACGTGGCGTCGGAAACCATCCAGGGCTACCGCGTGGTACGCAGCTTCGGCGGCGAACACTACGAAATCGAGCGGTTTCACAAGGCCAGCGCCGACAACATGAACCGCAGCCTGGGCATGACGCGGACCCAGTCGATCTACACGCCGATGCTGCAACTGGTGATCTATATCGGCATGGCCGTGTTGATGTACCTGGTGCTTTACCTGCGTGGCGATGCGTCGGCAGGGGAACTGGTCGCCTACATCACCGCCGCCGGTCTGCTACCCAAACCTATCCGCCAGTTGTCGGAAGTCAGCGCCACGATCCAGAAAGGACTGGCCGCGGCGGAAAGCATTTTCGAGCAGCTCGACGAAGAGCCCGAAATCGATACCGGCACCCAGGAAATGGTCCGGGTCAATGGTCGCCTGGAAGTGCGCAACCTGAGCTTCCAATACCCGGGTACGGAAAAGCTGGTACTCGACGATATCTCCTTCACCGCCGAAGAGGGCCAGATGATCGCCCTCGTAGGGCGCTCGGGCAGCGGCAAGTCGACCCTTGCCAACCTCATCCCGCGGTTCTATCACCACGACAAGGGCCAGATATTGCTCGACGGCGTGGATGTCGAGCAGTACCGGTTGACCAACCTGCGTCGCCACATTGCCCTGGTGAACCAGCAGGTCACGCTGTTCAACGACAGTGTCACCAACAACATCGCCTATGGCGATCTTGCCGGCGCACCGTTTGAAGACGTCCGCAGGGCTGCCGAAGATGCCTACGCGGCTGAGTTCATCGAGCAGATGCCCCAGGGTTACGACACCCTGGTGGGCGAGAACGGCGTGCTGCTGTCCGGCGGCCAGCGCCAGCGCCTGGCGATTGCCCGGGCGTTGCTCAAGAACGCTCCGCTGCTGATCCTCGATGAAGCCACGTCGGCGCTGGACACCGAGTCCGAGCGGCACATCCAGGCAGCCCTCGACCAGGTGATGAAAGGGCGCACCACGTTGGTCATCGCCCACCGGTTGTCGACGATCGAGAAAGCCGATCTCATCCTGCTGATGGACAAGGGCCGTATCGTCGAGCGCGGTACCCACGCCGAGTTGCTGGCGCTGAATGGCTTCTACGCACGCTTGCACGAGAAGGACTTCGTCGAGGCTACCGACGAGGTGGCGAAGGAGACCTTCGTTTGAMANSDQQSSMKIYLRLLKYVLPYWGAFAVSIVGFVLFASSQPMLADMLKHFLDALQKPNDTRFMGVSLVLGVPLLIVLIAVYQGIGSFLGNYYLAKVARGVVHDLRCALFDNLLTLPNRYFDNHNSGHLISRITYNVTMVTGAATDAIKVVIREGLTVVFLFGYLLYSNWKMTLVLLAILPVIAVLVSSASKKFRKQSKKIQVAMGDVTHVASETIQGYRVVRSFGGEHYEIERFHKASADNMNRSLGMTRTQSIYTPMLQLVIYIGMAVLMYLVLYLRGDASAGELVAYITAAGLLPKPIRQLSEVSATIQKGLAAAESIFEQLDEEPEIDTGTQEMVRVNGRLEVRNLSFQYPGTEKLVLDDISFTAEEGQMIALVGRSGSGKSTLANLIPRFYHHDKGQILLDGVDVEQYRLTNLRRHIALVNQQVTLFNDSVTNNIAYGDLAGAPFEDVRRAAEDAYAAEFIEQMPQGYDTLVGENGVLLSGGQRQRLAIARALLKNAPLLILDEATSALDTESERHIQAALDQVMKGRTTLVIAHRLSTIEKADLILLMDKGRIVERGTHAELLALNGFYARLHEKDFVEATDEVAKETFVPGPT0029415_4DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-TYPE_II_SECRETION_SYSTEMSCE-T2SS-COMPETENCE-RELATED_DNA_TRANSFORMATION_TRANSPORT,PGPT0029415-comEC-K02238NANA
D1-35_053211086hypothetical proteinGTGTTGCCCAGCAACAAGCTGTACCACCAATTGCTGATTTTCCTGTTGTGGTTGCCCGCGTTGTTGGGACTGCTGCATCGGGATTTCCGCTCGATGCTCAAGCTGCCCGAATGCGTACTTTTCGCCGTGCTAGTGGCCTGGACGCTGGCAGTGCTGATGGTCGAGGGCGGCGATAACGCCTTGGGCAAGAGCAAGGTGGTTCTCTACGTGACGCTGACCCTGGCAGGCGTGCTGCTGGCTGCGCAGAATCGCCACTGGCGGCTGGAGTCCATGGTGCTGGGGGCGTCGATTCTCGGCGGGTTATTCGCAGCCGCGTCCTGGGTGTATTTCTACGGGCTCAGTGCCCGGCCTTTGAGCGACCGGTTGATTGCCATCGGCCTGTGGGATACGCCGATCATGGCTGCCCATGCGGTGGGGAGCCTGGCGATCATGGGCGCTTTCACCTGGCGATCCAGGCATCTGAAACCGGCTTTGATGGCGCTGCTGATGATCGCGGCGCTGGGCTATCTGTTATTTCTGGGTTCCAACCAGACCCGTGGGGTGTGGATCGGGCTGGGCGCCTGTCTGCTGGTGATGGCGATGGCGCGACCTTCACGCCTGGGCGGCGCGCTGGTAGCCCTGGTCGTGGTGGGGGTGGCCATGGTTGCCGCATTCGAGCCGGAAATCCTCCTGCAGCGGGGCCTGTCTTATCGTCCCCAGCTGTGGCGGGGCGGTGTTCAATTGATGCTCGATCACTGGGCGATGGGCGTGGGGTTCCATTCCTACCTGATTCCCGTCCCTGAAATTGGCCAGGCTTTCAAGCATCCGCACAATCTGTTCCTGGATACCGGTGTGCGCCTTGGCGTGCCTGGCCTGCTGCTGTTTGGCGGGCTGTGGCTGGTTGCAGGCTGGAGAGGCTGGATGTGCCGCGCGCAATCGCTGGGCCAGGTGTTGTTGGCGCTCTGGGTCTTCGCATCGGTTTCCTTGATGACCGACGGCATTGGCTTGTGGCTCAAACCCAATGCGGACTGGATGGCCATCTGGCTGCCCATTGCGTTGAGCATCGTGCTGGCTGCCCGAGGTCGCGCCGCAGGGACTTCCTCCTGAMLPSNKLYHQLLIFLLWLPALLGLLHRDFRSMLKLPECVLFAVLVAWTLAVLMVEGGDNALGKSKVVLYVTLTLAGVLLAAQNRHWRLESMVLGASILGGLFAAASWVYFYGLSARPLSDRLIAIGLWDTPIMAAHAVGSLAIMGAFTWRSRHLKPALMALLMIAALGYLLFLGSNQTRGVWIGLGACLLVMAMARPSRLGGALVALVVVGVAMVAAFEPEILLQRGLSYRPQLWRGGVQLMLDHWAMGVGFHSYLIPVPEIGQAFKHPHNLFLDTGVRLGVPGLLLFGGLWLVAGWRGWMCRAQSLGQVLLALWVFASVSLMTDGIGLWLKPNADWMAIWLPIALSIVLAARGRAAGTSSNANANANANA
D1-35_053221122hypothetical proteinATGACAAAAACGCTGTTCATTTCCCTGGCCAAGCACCAAGGCCTTTATTTCAACCGCTTGCTCAACGAAACCGAGCTGCAGGGTAAAGTCGTTTCTCCTCAACAAATGCCTTGGCCCGGGTTCCGACGGATCTCCAAGGTTGTTTCGCGCATCGATTGGCCGAGTCTGATCGAGGAAAAGTGCGCGGAACGTCGGGTCAAGAACAAGAACAATGGCGCGCTGTATCGCCTGTTGCTGCGCCTCGAACTTCTCTGGATGGCCCTGCGCGCCCAGGCCTTGCTTGATCGGGAACGCCCCGATGCGTTGGCGTTCTGGAACGGTTCCCATCGTTATTGCCGGTTGCTCACGGCGCTGGCACCGAGTGGCTGCAAGACGTTCTTTTTCGAGAACGGCCTGTTGCCCGACACCACCACCGTGGACCCGCGCGGCGTGAACTACCTGAACGCGGTTCCTCGCGATGCCGGTTTCTACCTCGACTACCCGTATCCGGTGCCGGAAAACCAGGCTGCACCGGTGCTGATTCCGCGTGCGCCACGCAGCGCCGGCCCGGCGCCGATCGAGCTGCCGGCGCAATTCGTGTTCATTCCGTTCCAGGACGATCGTGACAGCCAGGTCCGGCTATTCTCGCCCTGGATCAGGAACATGTGCGAGATGTTTGCCTTGGGCGAGCGACTCGCCGAGGAGACGGGCCTGACGGTGGTGTTCAAGGAGCACCCGTCCAGCCGCGAGACGTACCCCGAGCTGCACGAACGGACCCATGAGCGCCTGCTCTTCGCCAACGGCAATGCCACGCAGCAGTTGATCGAGGCCAGTCAGTTCGTGATCACGATCAATTCGACCGTGGGCCTGGAAAGCTTGTTGTTGGGCAAGCCGGTGCTGACCCTGGGCCAGGCGTTTTTTAATATCGAGGGGCTGGTGATGCACGCCGACGATGCCGATCAGGTCGTATCATTGGCCCGTGCATTCCCGCAATGGCCGCTTGATGAGCGCTTGCGCCGCAACTTCTTCCATTACCTTTCCGAGTGCTATTGCATCAAGGGTGGCTGGAAGAATGCCGATCAGGCTCAGTTGCAACGGGTCGCCGACAGGCTGTTGGGTAAAGACCAATGCCCATCTGCCTGAMTKTLFISLAKHQGLYFNRLLNETELQGKVVSPQQMPWPGFRRISKVVSRIDWPSLIEEKCAERRVKNKNNGALYRLLLRLELLWMALRAQALLDRERPDALAFWNGSHRYCRLLTALAPSGCKTFFFENGLLPDTTTVDPRGVNYLNAVPRDAGFYLDYPYPVPENQAAPVLIPRAPRSAGPAPIELPAQFVFIPFQDDRDSQVRLFSPWIRNMCEMFALGERLAEETGLTVVFKEHPSSRETYPELHERTHERLLFANGNATQQLIEASQFVITINSTVGLESLLLGKPVLTLGQAFFNIEGLVMHADDADQVVSLARAFPQWPLDERLRRNFFHYLSECYCIKGGWKNADQAQLQRVADRLLGKDQCPSANANANANANA
D1-35_05323633hypothetical proteinATGCAAACGCTCGACCCTACTGTTTACCTCAGCCTGCGCGAAGGTGCCGATGTCCTTGAGGCCGATCGCCAAGGGGATAAGGTGCTGCGCCTGGCCGATGGCTCGATGCTCAAGCTGTTTCGCCGCAAACGCCTGCTGACCTCCGCGCTCTGGTCACCGTATGCCAAGCGCTTTGCCGACAACTGCCAGACCTTGCAGGCGCGCGGCATCGAATGCCCGCGCATTCGCCAGGTCTACCGCATTCCCGCCATCGAGCGTGATGCCGTGCATTACGACCCGCTGCCCGGCAGCACCCTTCGTCAACTGCTCGGCGCGGACACCTCTATCGACCTTCGGTCACGACTGGGTGAGTTCATCGCTCGCCTGCATCAGAACGGTATCTATTTTCGCTCCGCGCACCTGGGCAACGTGGTGCTGACGCCTGAAAACACCTTGGGACTGATCGATGTCGCCGACCTGAAGGCCTATCGCAAGCCGCTACGCAAAGGGCTGCGCCTGCGCAATTTCAAACACATGTTGCGCTATCGACAGGACCGCGAATGGCTGCTCCAGGACAACCAGTTCCTGGAGCATTATCTCAGTCATCAGAAGGTGTGCAACGAGCGGGAGCTGAAGCTCGCGCTCGGCATTTGAMQTLDPTVYLSLREGADVLEADRQGDKVLRLADGSMLKLFRRKRLLTSALWSPYAKRFADNCQTLQARGIECPRIRQVYRIPAIERDAVHYDPLPGSTLRQLLGADTSIDLRSRLGEFIARLHQNGIYFRSAHLGNVVLTPENTLGLIDVADLKAYRKPLRKGLRLRNFKHMLRYRQDREWLLQDNQFLEHYLSHQKVCNERELKLALGINANANANANA
D1-35_053241260hypothetical proteinATGTTCCAGGCCGACGGAAGCTGGGCTCGAAAGGCTCGTGAACTGGACCGCTACCGCTGGAAACTGCTGCGCGAGCGCCACGGTCGCCTGGGCAGCCTGTTGCGCCTGGTTCGTGACGTGCTGGTGGATGTAACGATTGGTTTGCGCGCCAAGGCGTGCTTGAAGCATTCGACCGACACGGTACCTTGCGAAGTGCTGCTGCTGCATTCAGCGCCCAAGTCCATGGCGCTGCAGCGCAAGAACATCCTGATCGATGCCCTGCGCAAGCGCGGTCATCAACTGACGGAAGCTGCGCTGCGCGCTCCCGCGGATGCCTGTGCCCAGCGCATGCTGGCACCGCCGCCACAGTCCGTGCCGCTGCGTTACCTGGTCTATGCCGCCCACGCCCAATGGCTGGTGATGACCTATCAGCCCAAAGTACTGATCAACGAACGCAATGGCAGTCTGCACGCGCCGTTCCTGCGCCTGGCGCTGGCTGCGCGTGGGGCCCGCCTGCTGCACCTGGCGCATGCCACGACATTGGAGTCGTCCCGCCGGCTGGGAATGAACGACTACGATTATTACGGCGTCTTCGGCCGCAGTTCGCTGGAAGCACTGCAAGAGCGGACGCTGCGGTTCGGTGAGTCGACGGTGGTGCTGGTCGGTTCCTACCTCGCCGACGAAACCTATGACCTGCCCGTCGCTGATCCAACTATCAAAACGCTGCTGGTGTTGGGGGTAGGGCCTGATCGGGAGAAAGAAGCCGGTTACCAAGACACTTATCAGTTGCTGCGCGATTGGGCCGGGCGCAACCCGGATTATCGCGTGCTGTTCAAGCGCCATCCGCGCAGCAAGGCGCAGTTCTGGCGCGACGCGGCGACGCGGTTCGCCAACATCGAGTTGCTGGATGTGGAGTGCTCGCTGGCACAGGCGCTCGCCCAGGCCAGCGTGGTCATCAATATCATGTCCAATGCCGGCATCGAGGCAGGGCTGGCGGGGCGTCCGGTAGTTCACGTGAATGCCGGCCGCGATGTGGATATCTTTTCCCACGCGTTGTTCTTCGGGCCGCAAGTGCGCGATGAACGGGCGTTTTCCCAGCAGTTGCACGCGCTTGAGCAGGACTATCCGCAATGCGTGGCCAAGGCTCGGGGCTTCGCCGACTACCATCTGGTGCACGGCTCCAGAGGGTTGGCAAAAACCGTCGAGCTGGTCGATGACTTGCTGCGCGGCAGAGACCCAGCAGAAAAATTCGAAACCTTCAGGCTGCCTGCCGTCGGCTGAMFQADGSWARKARELDRYRWKLLRERHGRLGSLLRLVRDVLVDVTIGLRAKACLKHSTDTVPCEVLLLHSAPKSMALQRKNILIDALRKRGHQLTEAALRAPADACAQRMLAPPPQSVPLRYLVYAAHAQWLVMTYQPKVLINERNGSLHAPFLRLALAARGARLLHLAHATTLESSRRLGMNDYDYYGVFGRSSLEALQERTLRFGESTVVLVGSYLADETYDLPVADPTIKTLLVLGVGPDREKEAGYQDTYQLLRDWAGRNPDYRVLFKRHPRSKAQFWRDAATRFANIELLDVECSLAQALAQASVVINIMSNAGIEAGLAGRPVVHVNAGRDVDIFSHALFFGPQVRDERAFSQQLHALEQDYPQCVAKARGFADYHLVHGSRGLAKTVELVDDLLRGRDPAEKFETFRLPAVGNANANANANA
D1-35_05325906arnCUndecaprenyl-phosphate 4-deoxy-4-formamido-L-arabinose transferaseATGACTGAGGTGCTGATCAGTGTCGTCATCCCGGCCTACAACTACGCCGAGACCTTGCCGCGCGCGGTGAACTCGGTCATTGCGCAGTTGGGCGAAGCCCAGGCCGAGCTGTTGGTGATCGACGATGGTTCCACTGATGCAACGCCGCAGGTCCTGGAGCAATTGCAGGCCGAACATGCCGGGCTCTTCCGGGCCCTGCGCAAACCCAATGGTGGTTTGTCGTCGGTACGCAATCGCGGAATCGAGGAGGCTCGGGGGCAATACCTGATCTTCCTGGATGCCGACGATGAGATGGCGCCGGGCGCGCTTGCCGCCGTGACCCGGCATGTTGCCAGTCATCCCGAAACTCGCCTGGTCATCGGCGGCCACTGGTCGGTGTTCACGGACGGGCGTCGCGTCCAGCATGCGGTAAAGCCGCTGCCGGCCACGCCGCGTGGGCGCGTTCGGGGCTACCTGCTGGACAAGACGGTGACCCTGTCCAACGGCGCCTGTGCCATGCACCGCGAGGTGTTCGGGCCGGGTAACTATCCCGAGCATCTGCGTAACGTCGAAGACATTCCGGTGTTTGCCCAGGTACTGGCGCGCTTTCCATGCACCGTGCTCGATCAGCCGCTGGCGCTGATCTACAAGCATGGCGACAGCATGCGGCATGACCTCAGGCAAAGCCTGGCGGCGGGCGTGGGCATGGTCGACGAGGTGTTTTCCCCGGCGCGCATGCCGCAGTCGTTGCAAGATTTGCGCAAGGCCTTCATGGCCCAGCGTTGCCTGTCGTTGTTCCGCGATTGCTACAGCGCCGGTGACTATGCCAATGCCAAGGCTTTTTATGCCCAGGCCGTGCGTACCGATGTTCGCTCGATCACGCGCTGGTCCTATACGCGCAAGGCTATCCGGTTGTTGTTCAAGTGAMTEVLISVVIPAYNYAETLPRAVNSVIAQLGEAQAELLVIDDGSTDATPQVLEQLQAEHAGLFRALRKPNGGLSSVRNRGIEEARGQYLIFLDADDEMAPGALAAVTRHVASHPETRLVIGGHWSVFTDGRRVQHAVKPLPATPRGRVRGYLLDKTVTLSNGACAMHREVFGPGNYPEHLRNVEDIPVFAQVLARFPCTVLDQPLALIYKHGDSMRHDLRQSLAAGVGMVDEVFSPARMPQSLQDLRKAFMAQRCLSLFRDCYSAGDYANAKAFYAQAVRTDVRSITRWSYTRKAIRLLFKNANANANANA
D1-35_053261749tobZnebramycin 5' synthaseGTGGCATTGACGATTCTTGGCCTGTCCGGCGCCCTTAGCCATGATCCTTCCGCAGCGCTGTACATTGACGGCAAGCTGATCGCGGCGGCCGAGGAAGAGCGCTTCGTACGCGATAAACATGCAAAGAACCGCATGCCCTACGAGTCGGCGAAGTTCTGCCTGGAGCAGGCCGGCATCAAGCCATCCGATGTTGATGTGGTGGCGATCCCGTTCGCCCCGATCAGCCTGTTCGGCGAAGCGCGCTGGCACTACGCCAAGCGTTACTGGTACGCCCCGGATCGCGCCCTTGATGCGATCCTGATGGGCAACCGTCGCTACAAGCGTTATCGCCGCAAGATCGTCTGGTGCCTGGAGCAACTGGGCTTCGATCCGAAAAAAATCAAGATCGAACCGGTCGAGCACCACCTGGCTCATGCCTCCAGCGCCTACCACTGCTCGGGTTTCCAGGAAAAAACCGCGATCCTCGGTATCGATGGCAAGGGTGAATACGCCACGACGTTCTTTGGCTACGGCGAAAACGGCAAGATCCACAAGATCAAGGAATTCTACGATCCGGACTCCCTGGGTGGTCTGTATGGCGCGATCACCGAGTTCCTCGGCTTTGAAATGCTCGACGGCGAATTCAAGGTCATGGGCATGGCGCCGTATGGCGATGCCAGCAAGTACGATTTCTCGCGCCTGGCCTCGTTCGAAAACGGCGAACTGGTGATCAACACCGACTACGCCAACGTGATCGGCCTGCGTCGCTATAAAGAGAAAGGCAAGGGCTTCTACTTCTCGCCAAAGCTGATCGAATGGCTCGGTCCGAAGCGTGAAGGCGACATCGCCGACGAGCCGTACATCCATTACGCCGCCAGCATGCAGGCGCTGTTCGAGAAGCTCGCGCTGCAGATGATCGACCACTACCTGGGCGACGTGCTCAAGGAAACCGGCAAGCTGGCCTTCGCCGGCGGCTGCGCACTGAACGTCAAGCTCAACCAGAAAATCATCGCCCGTGACGACGTCAAGGAGCTGTTCGTGCAGCCGGCCTCCGGCGACGCCGGCACCGCGGTAGGCGCGGCGGCTTATGTGTCCCATGCCCGTGGCGTGCCGGTGGAGAAGATGGAACACGTCTACCTCGGCCCGGCCTACAGCAACGAAGACGTGATCGCCGCGTGCGCCCGTCATCCGAGCAAGCCGGTATGGCGCAAGATCGACAACACCCCCGAGCGCATCGCCAGGATCATGGTCGACGGCAACCCGGTGGCCTGGTTCCAGGGGCGCATGGAGTTCGGCCCGCGTGCCTTGGGCGGTCGTTCGATCATCGGTTGCCCGAGCGCCAGCGGCGTGGCCAATCGCATCAACGAGCAGATCAAGTTCCGCGAGCGCTGGAGGCCTTTCTGCCCGTCGATGCTCGACACCGTTGCCCCACAGATGATCAAGGTCGATCACCCGGCGCCATTCATGACCTTTACCTTCGAAGTGGCCGAGGAATGGAAGACCCGCGTGCCGGAAGTGGTTCACGAAGACGGCACTTCCCGGGCCCAGGTGCTCAAGCGTGAATACAATCCGCGCTACTACGACATGATGAAGGCGCTGGAAGTCCTGACCGGCAATGGCGTGTCGCTGAACACTTCGCTCAACCGTCGTGGCGAGCCGATGATCTGCTCGCCGACCGATGCGCTGAACATGTTCTTCGGCTCCGACCTGCAGTACCTGATCATGGAAGACATTCTGGTCGTCAAGGACGGTGTGGACGCTTATGACTGAMALTILGLSGALSHDPSAALYIDGKLIAAAEEERFVRDKHAKNRMPYESAKFCLEQAGIKPSDVDVVAIPFAPISLFGEARWHYAKRYWYAPDRALDAILMGNRRYKRYRRKIVWCLEQLGFDPKKIKIEPVEHHLAHASSAYHCSGFQEKTAILGIDGKGEYATTFFGYGENGKIHKIKEFYDPDSLGGLYGAITEFLGFEMLDGEFKVMGMAPYGDASKYDFSRLASFENGELVINTDYANVIGLRRYKEKGKGFYFSPKLIEWLGPKREGDIADEPYIHYAASMQALFEKLALQMIDHYLGDVLKETGKLAFAGGCALNVKLNQKIIARDDVKELFVQPASGDAGTAVGAAAYVSHARGVPVEKMEHVYLGPAYSNEDVIAACARHPSKPVWRKIDNTPERIARIMVDGNPVAWFQGRMEFGPRALGGRSIIGCPSASGVANRINEQIKFRERWRPFCPSMLDTVAPQMIKVDHPAPFMTFTFEVAEEWKTRVPEVVHEDGTSRAQVLKREYNPRYYDMMKALEVLTGNGVSLNTSLNRRGEPMICSPTDALNMFFGSDLQYLIMEDILVVKDGVDAYDPGPT0015285_559DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-ADAPTION_TO_PLANT_IMMUNE_SYSTEMADAPTION_TO_PIS-INHIBITION_OF_SALICYLIC_ACID|JASMONIC_ACIDADAPTION_TO_PIS_REGULATION_BY_Nod_FACTORS,PGPT0015285-nodU-K00612NANA
D1-35_053271461hypothetical proteinATGATTTTGTCCGAACTGAAAAATGCCGGCCGCAGCCCTGGCCTGCCCTTGAGCCTGGAGCTGGCGGACGCCGCCGGACCGGCGCAATTGCAATTGCTGACGCTTCTGCGCGTATTGCCGGGGCAGCGTTACGTGGGCGCGGGTGTCTGGCGCGGTCGCCCGGTACTGGCGAAATTGTTGGTTGGCGCCAAGGCGGCTCGTCACTTCCAGCGTGAGCTGCAAGGCGTGCGTCTGCTGGCGGAACAGGGCCTGACCACACCGCTGTTGCTAGTGGACGGCTTGAAGGACGGCGAGGGTGGCTGGCTGCTGTTCGAATTGCTCGAAGGGGCCCAAAGCCTGGGCGACGCCTGGAGGCAAGTCGAGCAATTGCCGCCGTTGGCCGATGAGCAGGCCGCAGTGCTGGCGGAGGCCCTGGGTGCCATTGCACAACTGCACGCCAAGGGCCTGTGGCAAGAGGATCTGCACCTGGACAACCTGCTGCGCCACGATGGGAAACTCTACCTGATCGATGGCGCCGGTATTCGGGTCGAAACCGCAGGGCAGCCGTTGTCGCGGCAAAAAGTGCTGGAGAATCTCGGTGTGTTTTTCGCCCAGTTGCCCAAGTCCCTGGCGCCGTTCACCGAGGAGTTGCTGGTGCATTATCTGCTTGGCAATGCCGAACATGCGTTGCCGATGGAGGCGTTGCAAAAACAGATCGACAAGGTGCATTCCTGGCGCCTGAAGGATTTCCTCGAAAAGGTCGGGCGAGAATGCAGCCTGTTCAGCGTCAAGCGTGGGGCCTTCGGCCTGCGGGTTATCCGCCGTGATGAAGAGGCCGCGATAGCGCCCGTGCTTGAGCAGGCCGATGCCCTGCTTGACCAGGGACATCTGTTCAAGACCGGCGGCGCGGCGAGTGTCGGCAGGGTGGTGGCGGACGGCCGTACGCTGATCATCAAGCGCTACAACATCAAGGGCTTCGCCCATTGGCTCAAGCGCTTCTGGCGTCCGAGCCGTGCCTGGCATGCCTGGCGCGAAGGTCATCGCCTGGCCTTCCTCGGCATTGCCACGCCCAAGCCGCTGGCGCTGCTGGAAAAGCGTTTCCTGTGGCTGCGCCGTGGTGCGTATCTGGTCACCGAGTACTTGCCGGGCCCGGACATCATCGAACGCTTCGCCCCATACGTGGAGACCGGTGAGGCGCCCGAAACAGAATTGCTGGCGCTGGATCGCTTGTTCGCCGACCTCATCCGCGAACGGATCAGCCATGGCGACTTCAAGGGCCACAACCTGTTCTGGCAACACGACCGCTGGGCGTTGATCGACCTCGACTCCATGTGCCAACACCGCACCCAGGCGAGCTTCGCCCAGGCCTACGCCCGGGATCGCGCGCGGTTCATGCGCAACTGGCCGCAGGATAGCGCGCTGTATCGGGTGATTGATGAGCGCTTGCCAAAGGATGTCGAAAACACCCTCTCGGCCTTGTGAMILSELKNAGRSPGLPLSLELADAAGPAQLQLLTLLRVLPGQRYVGAGVWRGRPVLAKLLVGAKAARHFQRELQGVRLLAEQGLTTPLLLVDGLKDGEGGWLLFELLEGAQSLGDAWRQVEQLPPLADEQAAVLAEALGAIAQLHAKGLWQEDLHLDNLLRHDGKLYLIDGAGIRVETAGQPLSRQKVLENLGVFFAQLPKSLAPFTEELLVHYLLGNAEHALPMEALQKQIDKVHSWRLKDFLEKVGRECSLFSVKRGAFGLRVIRRDEEAAIAPVLEQADALLDQGHLFKTGGAASVGRVVADGRTLIIKRYNIKGFAHWLKRFWRPSRAWHAWREGHRLAFLGIATPKPLALLEKRFLWLRRGAYLVTEYLPGPDIIERFAPYVETGEAPETELLALDRLFADLIRERISHGDFKGHNLFWQHDRWALIDLDSMCQHRTQASFAQAYARDRARFMRNWPQDSALYRVIDERLPKDVENTLSALNANANANANA
D1-35_05328753hypothetical proteinATGACTGATTTTCTGGCCGATGAAGACCGCGCGTTGCTGCAACGCCATGGCCTGGACAGCTTCGAGGCCTTGTGGGCACGACAACTGGAAGCGGTGGACGAACCCAACACCTCGGGGGAAGGCTGGAGCAGCGTGTTCCGCCTGGAACTGGAAGGGCAGGGGTACTACCTCAAGCGTCAGAGCAATTACCTGACCCGAACCTTGTCGCATCCGTTCGGCGAGCCGAGTTTTTCCCGGGAATTCCGTAATATCAGCCGTTATCGGCAACTGCGCATCCCCGCGCTGCAGGCCGTGTTCTATGGCCAGCGCAAGGTGAACGGCGAGGCTCGTGCGGTTCTGCTGACGCGTGCGCTGGACGGCTGGGATGACCTCGATTCATTGCTGCAGCGCTGGTCGACGCTGAGTGGCGCGCAGCGCACGGGCATCCTGCAGGCCTGCGGGCACCTGGCGCGGCGCCTGCACGATGCGCATCAGATGCATGGTTGTTTTTATCCCAAGCACATTTTTCTGCAAGCCGGCGACAGCGGCTACCAAGCGCAGTTGATCGACCTGGAGAAGACCCGGCCGCTGCTGTTCGGCCAACGTGACCGGATCAAGGACCTGGAACCGCTGTTGCGCCGGGCAGGTGCCTGGAAGGGTGACGATGTGCGCCAGTTGCTGGCTACTTATCTGGAGCAGCCGCTGGACAGCGCTCTGGTCGACAGCTGGATGACACGCGTGGCCGCCCGCCGTACCGACAAGGAGGCGCGTTGAMTDFLADEDRALLQRHGLDSFEALWARQLEAVDEPNTSGEGWSSVFRLELEGQGYYLKRQSNYLTRTLSHPFGEPSFSREFRNISRYRQLRIPALQAVFYGQRKVNGEARAVLLTRALDGWDDLDSLLQRWSTLSGAQRTGILQACGHLARRLHDAHQMHGCFYPKHIFLQAGDSGYQAQLIDLEKTRPLLFGQRDRIKDLEPLLRRAGAWKGDDVRQLLATYLEQPLDSALVDSWMTRVAARRTDKEARNANANANANA
D1-35_05329735hypothetical proteinATGTCAGGCTGGACACTGGAACCGGCCTACGCCGAACTGGCGGCGGATTTCGGTAGCCTGGACGCGGTGTTCGCCCTCCAGGGCGAGCGCCTGACGCGCGACCCGCTGTCGGAGGTGATTCGTGTACAGCGCAACGGCGTCAATTATTACGTCAAGCGCTACACCGGCGCCGGCAAGGGCTTGCGGCGTTACCTGGGCAGGCCGCGGGTCAAGTCCGAATGGCAGAACCTCAAGCGCTTCGCCAAATGGGGGATCCCGACCGCGCAAATCATTGCCTGGGGACTGGAGCGAAACGGCGCGGCGTTCGCCCGTGGTGCGATGATCACCCGCGAATTGCCTCGCACCGAAGACCTCTCGGCCCTGGCCGAACGTCGCGACCGCAGGCTGGCGGATCGCGCCTGGGTCGACGGTGTGAGCCGGCAGTTGGCGGGTTACACGCGGACCATGCACGAGCAGCGCTTTACCCATAACGATTTGAAGTGGCGCAACCTGCTGATCGACGATCAGTCGCGGTTGTTCCTGATCGATTGTCCGAACGGTGATTTCTGGCGCGGCTTCTGGCTCAAGTACCGGATCATCAAGGACCTGGCGTGCCTGGACAAGGTCGCCAAATATCACCTGTCGGCCACTCAGCGCCTGCGTTTTTACCTGCAATACCGGCAGCGCGACCGGCTGGATGCCCTGGACAAGAAGCGTATCCGGCACGTGGTGAAATTTTTCGAGGGGCGTGAATGAMSGWTLEPAYAELAADFGSLDAVFALQGERLTRDPLSEVIRVQRNGVNYYVKRYTGAGKGLRRYLGRPRVKSEWQNLKRFAKWGIPTAQIIAWGLERNGAAFARGAMITRELPRTEDLSALAERRDRRLADRAWVDGVSRQLAGYTRTMHEQRFTHNDLKWRNLLIDDQSRLFLIDCPNGDFWRGFWLKYRIIKDLACLDKVAKYHLSATQRLRFYLQYRQRDRLDALDKKRIRHVVKFFEGRENANANANANA
D1-35_05330807rfaPLipopolysaccharide core heptose(I) kinase RfaPATGAAATTGATGCTGGCCGAACCGTTCAAGAGCCTTTGGGCTGGACGCGATGCGTTCACCGAGGTCGAGGCGCTCAAGGGCGAGGTCTACCGTGAACTCGAAGCCCGGCGCACCTTGCGCACCGAGGTGGACGGTCGCGGCTTTTTCGTGAAGATCCACCGTGGCATCGGTTGGGGCGAGATTTTCAAGAACCTGCTGACCGCCAAGCTGCCGGTACTTGGCGCGGGACAGGAATGGAAAGCCATCCAGCGTCTGCAGGAAGTCGGCGTGCCGACCATGACGGCCGTCGCGTATGGCGAGAAGGGCAGCAACCCGGCCGACCAGCATTCGTTCATCGTCACCGAAGAACTGGCGCCCACCATCAGCCTTGAAGATTACAGCATCGACTGGGTCAGGCAGCCGCCGCAGCCCAGGCTCAAGCGGGCACTGATCGCTGAAGTGGCGCGCATGACCGGCATGATGCACCGCGCCGGGGTCAACCATCGCGACTGCTACATCTGCCATTTCCTGCTGCATACCGACACACCGGTGACGGCCGACGGTTTCAAGCTCTCGGTGATCGACCTGCACCGCGCCCAGACCCGCCCGGCCATCACCACGCGCTGGCGCAACAAAGACCTGGCCGCGCTGTATTTTTCGGCGCTGGACATCGGCCTGACGCGCCGCGACAAGCTGCGTTTCCTCAAAGGCTATTTCCAGCAGCCGTTGCGCCAGGTACTGGCTGAAGAAGCGTCGCTGCTGGCCTGGCTCGAAGGCAAGGCCAACAAGCTGTATGCGCGCAAGCAGCGGTATGGGGACGCGCTCTGAMKLMLAEPFKSLWAGRDAFTEVEALKGEVYRELEARRTLRTEVDGRGFFVKIHRGIGWGEIFKNLLTAKLPVLGAGQEWKAIQRLQEVGVPTMTAVAYGEKGSNPADQHSFIVTEELAPTISLEDYSIDWVRQPPQPRLKRALIAEVARMTGMMHRAGVNHRDCYICHFLLHTDTPVTADGFKLSVIDLHRAQTRPAITTRWRNKDLAALYFSALDIGLTRRDKLRFLKGYFQQPLRQVLAEEASLLAWLEGKANKLYARKQRYGDALPGPT0022545_100DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_CORE_OLIGOSACCHARIDE_METABOLISM,PGPT0022545-waaP|rfaP-K02848NANA
D1-35_053311122rfaGLipopolysaccharide core biosynthesis protein RfaGATGCAATTGGCTTTTGTCCTTTACAAATATTTTCCTTTCGGTGGCCTGCAGCGTGACTTCATGCGCATCGCCCTGGAATGCCAGCGGCGTGGCCACCAGATCCGCGTCTACACGCTGATCTGGGAGGGCGACGTGCCGCCCGGCTTCGAGGTGCTGGTGGCGCCGGTCAAGGCGCTGTTCAACCACCGTCGCAATGAGAAGCTCAGCGCCTGGATGGAGGCCGACCTGGCACAGCGCCCGGTGGATCGTCTGATCGGTTTCAACAAAATGCCTGGCCTGGACGTCTATTACGCCGCCGACGGCTGCTTCGAAGACAAGGCACAGAACCTGCGCAATTCGCTGTACCGGCGCTGGGGCCGCTACCGGCATTTCGCCGAATACGAGCGGGCGGTGTTCGCCAAGGATGCCAAGACCGAAGTCCTGATGATTTCCGAAGTCCAGCAGCCGCTGTTCATCAAGCACTACGACACGCCGCTGGAACGCTTCCATCTGCTGCCGCCCGGCATCGCCCAGGACCGTCGCCGGCCCGCCGACGCCGACGAGATCCGTGCCGCGTTCCGGGCCGAATTCCAGCTGGCCGACGATGACCTGCTACTGGTGCAGATCGGCTCCGGCTTCAAGACCAAGGGTGTGGATCGCAGCCTCAAGGCCCTGGCCGCGCTGCCGGCCGAATTGAGAAAACGCACCCGGCTGTTTGTAATCGGCCAGGACGACCCCAAGGTATTCCAACTGCAGAGTGCCGCGCTGGGTCTGGGCGACAATGTGCGGTTCCTCAAGGGCCGCAGCGATATCCCGCGTTTCCTGCTTGGCGCCGACCTGTTGATCCACCCGGCCTACAACGAAAACACCGGCACGGTACTGCTCGAAGCGCTGGTGGCCGGGTTGCCGGTGCTGGTCAGCGCGGTGTGCGGGTACGCCCATTACATCGCCGAGGCCGACAGCGGCCTGGTGCTGGATGAGCCGTTCGAGCAGACGCAACTGACCGAATACCTGGGGCGGATGCTCGGTGATTCCGAGGCAAGAGCGGCCTGGAGCCGCAACGGTCTGGCCTTCGCCGAGACGGCCGACCTCTACAGCATGCCGCAGCACGCGGCCGATGTGATATTGGCGGAGCACGCTTGAMQLAFVLYKYFPFGGLQRDFMRIALECQRRGHQIRVYTLIWEGDVPPGFEVLVAPVKALFNHRRNEKLSAWMEADLAQRPVDRLIGFNKMPGLDVYYAADGCFEDKAQNLRNSLYRRWGRYRHFAEYERAVFAKDAKTEVLMISEVQQPLFIKHYDTPLERFHLLPPGIAQDRRRPADADEIRAAFRAEFQLADDDLLLVQIGSGFKTKGVDRSLKALAALPAELRKRTRLFVIGQDDPKVFQLQSAALGLGDNVRFLKGRSDIPRFLLGADLLIHPAYNENTGTVLLEALVAGLPVLVSAVCGYAHYIAEADSGLVLDEPFEQTQLTEYLGRMLGDSEARAAWSRNGLAFAETADLYSMPQHAADVILAEHAPGPT0022515_341DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_CORE_OLIGOSACCHARIDE_METABOLISM,PGPT0022515-waaG|rfaG-K02844NANA
D1-35_053321059rfaCCOG0859Lipopolysaccharide heptosyltransferase 1TTGCGGGTATTGCTGATCAAGACCTCCTCCCTGGGGGATGTGGTCCACACCCTGCCGGCGCTGACCGATGCGGCGCGGGCGATTCCCGGCATCCGCTTCGATTGGGTGGTGGAAGAGGGGTTCGCCGAAATCCCTACGTGGCACCCCGCGGTGGGCAAAGTCATCCCGGTGGCGATCCGGCGCTGGCGCAAGAATATCTGGCAAACCATCAAGAGCGGCGAGTGGCGGCGGTTCAAGCAAAGCATGCGGGCCGAGAAGTATGACTTGGTGATTGACGCCCAAGGCTTGCTGAAAAGCGCCTGGCTGACTCGCTACGTCAAGGCCCCGGTGGCTGGCCTGGATAAGGATTCGGCGCGCGAACCCCTGGCGGCGCGGTTTTACTCCCGGCGCCTGGCGGTGGCCCGTGGTCAGCATGCGGTCGAGCGCGTGCGCCAGCTGTTTGCCGTGGCGCTGGGCTACGACTTGCCGCAGACCCAGGGCAACTATGGCCTCGACATCGACCGCCTGGTGGAACTGCCGCGCCCCTATCCCTATGTGGTTTTCCTGCATGGCACGACCTGGGACTCCAAGCACTGGCCCGAGCTTTACTGGCGCCAGCTCACCGAGCGCATGGGCCAGTACGGCGTGGTGGTAAAACTGCCGTGGGGCAACCCTGTCGAAAAGGCCCGCGCCGAGCGCATCGCCAGCGGGCTGCGCAACGCCCTGGTACTGCCGAAACTGAACCTTGGCGGCATGGGCAAGGTGCTCGCCGGTGCACAGGCCTGCGTAGCCGTGGACACTGGCCTCGGTCACCTGGCTGCGGCCCTGGACGTGCCGACCGTTTCGCTGCTCGGCCCGACCAACCCGGTGCTGACCGGTGCCTACGGCAAGGGCCAGATTCACCTCGCCAGTGATTTCCCCTGCGCGCCCTGCATGCAGAAACAGTGTACTTATCCACCGACTGCCGAAGATGCCCGTCGGTTTGACCTTAAGCGCGAGCAGCCCCTGTGCTTCACGCGTGTAAACCCCGAGCGTGTTGCCAGCCACTTGAGCACGTTATTGGCTGAGGAGCCGCGCTGAMRVLLIKTSSLGDVVHTLPALTDAARAIPGIRFDWVVEEGFAEIPTWHPAVGKVIPVAIRRWRKNIWQTIKSGEWRRFKQSMRAEKYDLVIDAQGLLKSAWLTRYVKAPVAGLDKDSAREPLAARFYSRRLAVARGQHAVERVRQLFAVALGYDLPQTQGNYGLDIDRLVELPRPYPYVVFLHGTTWDSKHWPELYWRQLTERMGQYGVVVKLPWGNPVEKARAERIASGLRNALVLPKLNLGGMGKVLAGAQACVAVDTGLGHLAAALDVPTVSLLGPTNPVLTGAYGKGQIHLASDFPCAPCMQKQCTYPPTAEDARRFDLKREQPLCFTRVNPERVASHLSTLLAEEPRPGPT0022495_216DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_CORE_OLIGOSACCHARIDE_METABOLISM,PGPT0022495-waaC|rfaC-K02841NANA
D1-35_053331035rfaFCOG0859ADP-heptose--LPS heptosyltransferase 2ATGAATATTCTGATCGTTGGACCCAGTTGGGTCGGTGACATGGTGATGGCGCAGACACTGTTCCAGTGCCTCAAACAGCGTCATCCGCAATGCGAAATCGATGTCCTGGCCCCCGAGTGGAGCCGGCCGATTCTTGAGCGCATGCCGCAGGTGCGCAAGGCCTTGAGCTTCCCGCTCGGTCATGGCGTGCTTGAGCTGGCTACCCGCCGGCGCATCGGCAAATCCCTGGCCGGTCAGTACGACCAGGCGATCCTGCTGCCCAATTCGCTGAAATCGGCGTTGGTGCCGTTCTTCGCCAGCATCCCCAAGCGCACTGGCTGGCGTGGCGAATTTCGCTATGGCTTGCTCAACGATGTGCGCACGCTGGATAAAGATCGTTATCCGCTGATGATCGAGCGCTTCATGGCCCTGGCCTACGAGCCGGGCGCCGAGTTGCCCAAGCCTTATCCGCGACCGAGCCTGCAGATCGACCCGGTCACGCGCGAAACGGCCCTGGCCAAGTTCGGCCTGACCCTGGACCGGCCGGTATTGGCGCTGTGCCCGGGTGCCGAATTTGGTGAGTCCAAACGCTGGCCGGCCGAGCATTACGCCCAGGTGGCCGAGGCGAAGATCCGCGAAGGCTGGCAAGTCTGGCTGTTCGGTTCGAAAAACGATCACTCCGTGGGCGAGGAGATCCGCTCGCGGCTGATCCCGGGCCTGCGGGAGGAGTCGACCAATCTGAGCGGCGACACGTCCCTGGCCGAGGCCATTGATCTGTTGTCCTGTGCCGATTCCGTGGTGTCCAACGACTCCGGCCTGATGCACGTCGCGGCGGCGTTGAACCGCCCTCTGGTGGCGGTCTACGGTTCCACCTCGCCGGGCTTCACGCCGCCGTTGGCCGACAAAGTCGAAGTCGTGCGCCTGGGCATCGAATGCAGCCCGTGCTTCGATCGCACCTGCCGCTTCGGCCACTACAATTGCCTGCGCCAGCTCATGCCGCCGTCGGTGAACGAGGCCCTGGAGCGATTGCAGGGCTCACCCGTGGAGGTCCGGTAAMNILIVGPSWVGDMVMAQTLFQCLKQRHPQCEIDVLAPEWSRPILERMPQVRKALSFPLGHGVLELATRRRIGKSLAGQYDQAILLPNSLKSALVPFFASIPKRTGWRGEFRYGLLNDVRTLDKDRYPLMIERFMALAYEPGAELPKPYPRPSLQIDPVTRETALAKFGLTLDRPVLALCPGAEFGESKRWPAEHYAQVAEAKIREGWQVWLFGSKNDHSVGEEIRSRLIPGLREESTNLSGDTSLAEAIDLLSCADSVVSNDSGLMHVAAALNRPLVAVYGSTSPGFTPPLADKVEVVRLGIECSPCFDRTCRFGHYNCLRQLMPPSVNEALERLQGSPVEVRPGPT0022510_980DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-CELL_ENVELOPE_REMODELLINGCE-REMODELLINGLPS|LIPID|IVA_METABOLISMCE-REMODELLING_LPS_CORE_OLIGOSACCHARIDE_METABOLISM,PGPT0022510-waaF|rfaF-K02843NANA
D1-35_053341200tyrSCOG0162Tyrosine--tRNA ligaseATGAAGTCGGTTGAAGAGCAGCTAGCGCTGATCAAACGTGGTGCGGAAGAACTGTTGGTCGAGTCCGAGCTGATCGAAAAGCTCAAGCGCGGGCAGCCGCTGCGTATCAAGGCCGGTTTCGATCCGACGGCGCCCGATCTGCACCTGGGGCATACCGTGCTTATTAATAAGCTGCGTCAATTCCAGGACCTGGGGCATCAGGTTATCTTCCTTATAGGCGACTTCACCGGCATGATCGGTGATCCGAGCGGCAAGAGTGCCACGCGTCCTCCGCTGACTCGTGAGCAGGTTCTCGACAACGCCGAGACCTACAAGACTCAGGTCTTCAAGATTCTTGACCCGGCCAAGACCGAAGTGGCTTTCAACTCCACTTGGATGGATCAGATGGGGCCGGCGGATTTCATACGCCTGACTTCCCAATACACCGTAGCTCGCATGCTCGAGCGCGATGATTTCGACAAGCGTTATACAACCAATCAGCCAATCGCCATCCATGAGTTCCTCTATCCGCTTGTGCAGGGTTATGACTCGGTCGCATTGCGGGCGGACGTTGAGCTTGGCGGTACCGATCAGAAGTTCAACCTGCTGATGGGGCGTGAGCTGCAGCGCGGCTATGGGCAAGAAGCTCAGTGCATCCTGACCATGCCATTGCTGGAAGGTCTGGATGGCGTGAAGAAGATGTCCAAGTCGCTGGGCAACTACGTCGGGATCCAGGAAGCGCCGGGCGTCATGTACGGCAAGTTGGTTTCCATTCCTGATGTGCTGATGTGGCGTTATTTCGAGCTGTTGAGCTTCCGCTCCATGGATGAGATCAATGCTTTCCGAGCCGATGTGGAGGCGGGCGCTAATCCGCGTGACATCAAGATCAAGCTGGCCGAAGAGATCGTTGCTCGTTTCCACGGGGAAGAGGCTGCGGCCAACGCTCATCGCGCGGCGGGTAATCGCATGAAGGATGGCGAGCTGCCGGATGACCTGCCGGAGATCGAATTGACTGCTGCCGAGGATATGCCGATTGCGGCGGTTCTGAATAAGGCGGGCTTGGTCAAGAATGCTGCGGTGGCGCGAGACCTCTTGGGTTCGGGTGGCGTGCGTATAGATGGTGAGGTCGTGGATCGCACCTATATATATAAGCTGGGCTCCACTCATGTGTGTCAGGCCGGCAAGAAGGCTTTCGCACGTATTACGCTCAAATCCGAATAAMKSVEEQLALIKRGAEELLVESELIEKLKRGQPLRIKAGFDPTAPDLHLGHTVLINKLRQFQDLGHQVIFLIGDFTGMIGDPSGKSATRPPLTREQVLDNAETYKTQVFKILDPAKTEVAFNSTWMDQMGPADFIRLTSQYTVARMLERDDFDKRYTTNQPIAIHEFLYPLVQGYDSVALRADVELGGTDQKFNLLMGRELQRGYGQEAQCILTMPLLEGLDGVKKMSKSLGNYVGIQEAPGVMYGKLVSIPDVLMWRYFELLSFRSMDEINAFRADVEAGANPRDIKIKLAEEIVARFHGEEAAANAHRAAGNRMKDGELPDDLPEIELTAAEDMPIAAVLNKAGLVKNAAVARDLLGSGGVRIDGEVVDRTYIYKLGSTHVCQAGKKAFARITLKSENANANANANA
D1-35_053351419mepMCOG0739Murein DD-endopeptidase MepMATGACCACCGAACCGTCTAAAGCGCCGCCGCTTTACCCAAAGACCCACCTGCTCGCCGCAAGTGGTATCGCCGCCCTCCTTAGCCTGGCGCTCCTGGTATTTCCTTCCAGCGATGTCGAAGCCAAAAAGACGACTCTGAGTCTTGAACTGGAAAGTCCCGCTGAACAACTGACACAAGAACAAGACGCCGCCGAAGCCGTTCAAGCCACAAACGAACCGGCCGCCTCGCCTTTTGCGCAGATTGAAGAAAGCCCGGAAGACACTGCAAACGCCACTGCACAGGTAGAAGCTCCTGTTGCAGAAGAGAAGAAAGGACCGGACCACCGTGAAGTGATTGTTGCCAAGGGCGACACACTCTCCACCCTCTTCGAAAAGGTGGGCCTGCCCTCAACCTCAGTCCATGAAATCCTGGCCAGCGACAAGCAAGCCAAACAGTTCACTCAACTGCAACGTGGCCAGAAACTCGAATTCGAACTCAATCCAGACGGGCAGTTGACCAACCTGCACACCAAGCTGAGCGATCTGGAAAGCATCACCCTGACCAAAAACGAAAAGGGTTATGTATTCAACCGCGTCACCACCAAACCTACCGTGCGCTCCGCCTATGTTCACGGCGTCATCAATAGTTCGCTGTCCCAGTCGGCTGCCCGCGCCGGCCTTTCCCACAGCCTGACCATGGACATGGCCAGCGTGTTTGGTTATGACATCGACTTCGCGCAGGATATTCGCCAGGGCGACGAGTTCGACGTCATCTACGAACAGAAAGTGGTCAATGGGAAAAGCGTCGGCAACGGACCGATCCTTTCCGCGCGCTTCACCAACCGCGGCAAGACCTATACGGCGGTGCGCTACACCAACAAGCAGGGCAACAGCAGCTACTACACCGCTGACGGCAACAGCATGCGCAAGGCGTTTATCCGTACTCCAGTCGACTTCGCCCGCATCAGCTCCAGGTTTTCCGCAGGCCGCAAGCATCCTATTCTGAACAAGATCCGCGCCCACAAAGGCGTCGACTACGCAGCTCCGCGCGGCACGCCCATCAAGGCTGCCGGCGATGGCAAGGTACTGCTGGCCGGCCGTCGAGGCGGTTATGGCAATACCGTGATCATCCAGCACGGCAACACCTACCGCACGCTGTACGGCCACATGCAAGGTTTCGCCAAGGGCGTGAAGACCGGCGGCTCCGTCAAGCAAGGCCAGGTTATTGGCTACATCGGTACGACTGGCCTGTCCACCGGCCCGCACTTGCACTATGAATTCCAGGTCAACGGCGTTCACGTCGATCCGCTCGGCCAGAAGCTGCCGATGGCCGATCCGATTGCGAAATCCGAGCGCACCCGTTTCCTGGCTCAGAGCCAGCCTCTGATGGCTCGCATGGATCAAGAGAAAGCCACCCTGCTGGCTTCGAGCAAGCGCTAAMTTEPSKAPPLYPKTHLLAASGIAALLSLALLVFPSSDVEAKKTTLSLELESPAEQLTQEQDAAEAVQATNEPAASPFAQIEESPEDTANATAQVEAPVAEEKKGPDHREVIVAKGDTLSTLFEKVGLPSTSVHEILASDKQAKQFTQLQRGQKLEFELNPDGQLTNLHTKLSDLESITLTKNEKGYVFNRVTTKPTVRSAYVHGVINSSLSQSAARAGLSHSLTMDMASVFGYDIDFAQDIRQGDEFDVIYEQKVVNGKSVGNGPILSARFTNRGKTYTAVRYTNKQGNSSYYTADGNSMRKAFIRTPVDFARISSRFSAGRKHPILNKIRAHKGVDYAAPRGTPIKAAGDGKVLLAGRRGGYGNTVIIQHGNTYRTLYGHMQGFAKGVKTGGSVKQGQVIGYIGTTGLSTGPHLHYEFQVNGVHVDPLGQKLPMADPIAKSERTRFLAQSQPLMARMDQEKATLLASSKRNANANANANA
D1-35_053361092anmKCOG2377Anhydro-N-acetylmuramic acid kinaseATGGCGCTCTATATCGGTGTGATGTCCGGGACCAGCCTGGATGGCCTGGATATCGCGCTGATCGAACTGGCCCCGGCGATCAAATTGATCGCCACGCATTACATACCCATGCCCACGCCCCTGCGCACCGAGTTGCTTGCACTGTGCAGCAGTGGGCCCGATGAGATCGCCCGCTCCGCCATCGCCCAGCAGAACTGGGTAAAGCTGGCCGCGCAGGGCATCCATACCTTACTCGACGAACAGAAGCTCAAGCCTGAAGACCTCACCGCGGTTGGCAGCCACGGCCAAACCATTCGCCATGAACCGGCCCGCGGATTTACCGTGCAGATCGGTAACCCGGCACTCTTGAGCGAATTGACTGGCATCACCGTTGTCAGCGATTTCCGCAGCCGTGATGTCGCCGCCGGAGGACAGGGGGCGCCTCTGGTTCCGGCATTTCACGAAGCACTGTTCGAAGAACGAGTCGGTCCTCGTGCAGTGCTGAATGTCGGCGGCTTCAGCAATCTCAGCCTGATAGAGCTGGCAAAACCCGTATCAGGTTTCGATTGTGGCCCAGGCAACGTATTGCTCGATGCATGGATACACCAGGAGCGAGGCGAGCCTTTTGATCGTGACGGCCAATGGGCAGCCAGCGGAAAAGTAGAGCCGACTTTGCTCAAGACGTTGCTTGGAGACCCCTTCTTTGTAACCAAGGGCCCGAAAAGTACCGGACGAGAAGTATTCAACCTGTCCTGGCTGACCCGTCATCTATCGCAATTGCCAGCCTTCACCCCTGAAGATGTGCAGGCGACACTACTTGAACTGACTGCCCTGACCATCGTCGAATCACTCCAGCATGCCCAGCCGAACACGCAGGAGTTGCTGGTCTGCGGCGGTGGGGCACACAACCAGACACTGATGAAGCGCCTGGCTGACTTGCTACCAGCTACCAAAGTCAGCAGTACGGCAGTGTACGGCGTGGACCCGGATTGGGTTGAAGCCATGGCCTTTGCCTGGCTCGCCCATTGCTGTCTTGAGGGTATTCCAGGCAACCGTCCAAGTGTCACTGGGGCCCGTGGCCCGCGCGTACTCGGTGCCATTTATCCGGCCTGAMALYIGVMSGTSLDGLDIALIELAPAIKLIATHYIPMPTPLRTELLALCSSGPDEIARSAIAQQNWVKLAAQGIHTLLDEQKLKPEDLTAVGSHGQTIRHEPARGFTVQIGNPALLSELTGITVVSDFRSRDVAAGGQGAPLVPAFHEALFEERVGPRAVLNVGGFSNLSLIELAKPVSGFDCGPGNVLLDAWIHQERGEPFDRDGQWAASGKVEPTLLKTLLGDPFFVTKGPKSTGREVFNLSWLTRHLSQLPAFTPEDVQATLLELTALTIVESLQHAQPNTQELLVCGGGAHNQTLMKRLADLLPATKVSSTAVYGVDPDWVEAMAFAWLAHCCLEGIPGNRPSVTGARGPRVLGAIYPANANANANANA
D1-35_05337351erpACOG0316Iron-sulfur cluster insertion protein ErpAATGAGCGTCGAAACCTTCACCCCCACGGCTTTGCAATTCACCCACGGTGCCGCGCACAAGGTGAAGAGCCTGGTCGATGAAGAGGGCAATGATCGTTTGAAGCTGCGCGTGTTCGTGACGGGCGGCGGTTGTTCAGGTTTTCAGTACGGCTTCACTTTCGATGAGGAAGTGGCCGAGGATGACACCATCGTCGAGCGCGAAGGCGTCAGCCTGGTGGTCGATCCGATGAGCTTCCAGTACCTGGCGGGTGCCGAAGTGGATTATCAGGAAGGCCTGGAAGGATCGCGCTTCGTGATCAAGAATCCTAACGCCACCACAACTTGTGGGTGCGGTTCTTCGTTTTCGATCTGAMSVETFTPTALQFTHGAAHKVKSLVDEEGNDRLKLRVFVTGGGCSGFQYGFTFDEEVAEDDTIVEREGVSLVVDPMSFQYLAGAEVDYQEGLEGSRFVIKNPNATTTCGCGSSFSINANANANANA
D1-35_053381035argCCOG0002N-acetyl-gamma-glutamyl-phosphate reductaseATGGTCAAGGTCGGTATCGTCGGCGGCACGGGTTACACCGGTGTCGAACTGCTGCGTCTGTTGGCGCAGCATCCGCAAGCTGAGGTGGTGGTCATTACCTCCCGATCCGAGGCCGGCTTGGCCGTCGCCGACATGTATCCGAACTTGCGTGGCCATTACGACGGCCTGGCGTTCAGCGTCCCTGACGTCAAGACCCTCGGGGCCTGCGATGTGGTGTTTTTCGCCACCCCCCATGGTGTCGCCCACGCTCTGGCGGGTGAGCTGCTGGCCGCGGGAACCAAGGTCATTGACCTGTCGGCAGACTTCCGTCTGCAGGACGCAGACGAATGGGCCAAGTGGTACGGTCAGCCTCACGGCGCACCGGAACTGCTGGACGAGGCGGTCTACGGCTTGCCGGAAGTCAATCGTGAAAAAATCAGGCAGGCACGGCTGATCGCGGTGCCGGGTTGCTATCCGACCGCGACGCAGTTGGGATTCCTGCCTTTGCTCGAGGCCGGTCTCGCCGATGCGTCGCGCTTGATCGCCGACTGCAAGTCGGGCGTCAGCGGCGCCGGTCGAGGTGCCAGCGTTGGCTCGTTGTACTCCGAAACATCGGAGAGCATGAAGGCCTACGCGGTCAAGGGGCATCGTCATTTGCCGGAGATTCGCCAAGGGTTGCGTCGCGCGGCAGGCAAGGACGTCGGCCTGACTTTCGTGCCGCACCTGACGCCCATGATCCGTGGTATCCATTCCACCCTCTACGCCACCGTGACCGATCGCTCCGTGGATCTGCAGGCGCTGTTCGAGAAGCGTTATGCCGATGAGCCGTTTGTCGACGTGATGCCGGCTGGCAGCCATCCGGAAACCCGCAGTGTCCGCGGCGCGAACGTATGCCGGATCGCTGTGCATCGCCCGCAGGATGGCGACCTGGTCGTGGTCTTGTCGGTAATCGACAACCTGGTCAAGGGCGCTTCCGGCCAAGCGGTACAGAACCTCAACATCCTCTTCGGGCTGGATGAGCGACTGGGCCTGTCCCACGCTGGGATGCTGCCTTGAMVKVGIVGGTGYTGVELLRLLAQHPQAEVVVITSRSEAGLAVADMYPNLRGHYDGLAFSVPDVKTLGACDVVFFATPHGVAHALAGELLAAGTKVIDLSADFRLQDADEWAKWYGQPHGAPELLDEAVYGLPEVNREKIRQARLIAVPGCYPTATQLGFLPLLEAGLADASRLIADCKSGVSGAGRGASVGSLYSETSESMKAYAVKGHRHLPEIRQGLRRAAGKDVGLTFVPHLTPMIRGIHSTLYATVTDRSVDLQALFEKRYADEPFVDVMPAGSHPETRSVRGANVCRIAVHRPQDGDLVVVLSVIDNLVKGASGQAVQNLNILFGLDERLGLSHAGMLPPGPT0014251_1734DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-PROLINE_METABOLISM,PGPT0014251-argC-K00145NANA
D1-35_05339432hypothetical proteinATGCTCTATCTATGGCTCAAAGCGCTTCACATTGTCAGCATGGTCTGCTGGTTTGCCGGCCTGTTCTACCTGCCTAGATTGTTCGTCTACCACGCTCAAAGCGAAGACAGCGTCAGCAAGGAACGCTTCTCCATCATGGAACGCAAGTTGTATCGCGGCATCATGGGCCCGGCGATGATCGCCACGCTGGTGTTCGGCATCGGCTTGCTCAGCCTCAATGCCAGCGCCTACTTCACCCAAGGCGGCTGGATGCACGCAAAGCTGACTCTGGTCGTCCTGCTGATCGGCTATCACCATATGTGCGGTGCCCAGGTGAAGCGCTTCGCCCGTGGCGAAAACACCCGCAGTCATGTCTTTTATCGCTGGTTCAATGAAGTGCCGGTCGTGATATTGCTGGCTATTGTAATTCTGGTCGTGGTCCGGCCGTTCTAAMLYLWLKALHIVSMVCWFAGLFYLPRLFVYHAQSEDSVSKERFSIMERKLYRGIMGPAMIATLVFGIGLLSLNASAYFTQGGWMHAKLTLVVLLIGYHHMCGAQVKRFARGENTRSHVFYRWFNEVPVVILLAIVILVVVRPFPGPT0008480_1275DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_VITAMIN_PRODUCTIONPLANT_VITAMIN_RELATED_HEME_METABOLISMPLANT_VITAMIN-HEME|SIRO-BIOSYNTHESIS,PGPT0008480-hemJ-K08973NANA
D1-35_05340969hypothetical proteinATGTCGCTGCCCGCTCTGCTTGAACAACGTCTGCGCCTGCCTGTCGTGGTCGCACCGATGTTCCTCATTTCCAATCCGCAGCTGGTACTGGCCTGCTGCCGCAACGGTGTCGTCGGGAGTTTCCCGGCGTTGAACCAACGTGAAAGCAGCGGCTTCAAGGCGTGGCTGGAGGAAATCGAAGCGGGCTTGGCGACTCTGGAAAAGCCGGCGCCCTACGCAGTCAATCTGATCGTCCATCACAGCAACCCGCGACTCCAGGCCGACCTGGCAATCTGTATCGAGCACAAGGTGCCGATCGTCATCACCAGCCTGGGGGCGGTGAAGGAATTGGTGGACGCGGTTCATGGCTATGGCGGCCTGGTATTTCACGACGTGACCACTCGCCGCCATGCCGAAAAAGCCGCCGAAGCGGGCGTCGACGGTTTGATTGCCGTTGCGGCCGGTGCGGGTGGGCACGCAGGAACCTGGAGCCCATTCGCACTGATTGCTGAAATCCGGCAGTTCTTCGATAAAACCCTGTTGCTTGCAGGATGCCTTAACCACGGCCATCAGATTCTGGCTGCGCAATTGCTTGGCGCGGATCTGGCCTACTTCGGAACGCGTTTTATCGGCACGACGGAAAGTCACGCGTCCGACGCTTATAAAGAGATGTTGCTCACATCCAGAGCCGCGGACATCGTGCATACTCCCGCAGTGTCCGGGGTGCCGGCCAGTTTCATGCGTCAGAGCCTGGAAAGTGCCGGCTTCGACCTGGCTGCTCTGCAAGGCAAGGGCGTGGCGGATGCGGGGGCGAAACTCAAACCGCTCAATGATGAAGCCAAGGCCTGGAAGACCGTATGGTCCGCCGGCCAGGGTGTAGGTGACATCAATGATTTGCCCGGTGTCGATCAATTGATCGCACGCCTGGATGAAGAATACCGGCAGGCGCAAGCCCTAGCGACACAACTTGGCGGCCATTGGCCGCGCTGAMSLPALLEQRLRLPVVVAPMFLISNPQLVLACCRNGVVGSFPALNQRESSGFKAWLEEIEAGLATLEKPAPYAVNLIVHHSNPRLQADLAICIEHKVPIVITSLGAVKELVDAVHGYGGLVFHDVTTRRHAEKAAEAGVDGLIAVAAGAGGHAGTWSPFALIAEIRQFFDKTLLLAGCLNHGHQILAAQLLGADLAYFGTRFIGTTESHASDAYKEMLLTSRAADIVHTPAVSGVPASFMRQSLESAGFDLAALQGKGVADAGAKLKPLNDEAKAWKTVWSAGQGVGDINDLPGVDQLIARLDEEYRQAQALATQLGGHWPRPGPT0006800_3846DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-PROPIONATE-3-NITRATE-DERIVATE_RESISTANCE,PGPT0006800-ncd2|npd|pnoA-K00459NANA
D1-35_05341960hypothetical proteinATGAGCGAAAACCGTTTCAACATTGTATTCGACGGGGCCCTGCTGCCAGGCGTAGATACCACTACCGCCAAGCTCAACCTCGCCGAACTGTTCAAAAGTGATGTGAGCGCCATTGAACGACTGTTCAGCGGTCGCAAGGTGTCCCTCAAGAACAACCTGTCCCAGAATGAAGCGCAACAGTACCTGGACGCGCTTCATAAAAGCGGCATCGATGCACGAATCGAAGCCGAACCGTCCATCCAGCTCAATCTCGGCGAAATCCAGGAGCAGCCGGGCGGCCGCCAGCCGGACTCCGTGATCGATCCTGTTTCTCCTTATGCGCCTCCACGGGCAGCAGTGGGTGAAACGTTCGCCGAGTACGGCACGCTCAAACCCTTCAGCTTCGAGGGACGTATCGGACGCCTGCGCTACCTGGCCTGGACCATGGTCCTGACCCTGGCCATGCTGCCGTTGGTAGGCCTGGGCTTCTGGGTCGCCACGAACTGGCTGCTCGCTTCCGACTCGATAGCAGGGTTGGTCGTCGGTGGTCTGATCGCTGTAGTCGTCGTGCTTGCCTTCGCGTTCGTGAGCATCCAGTTCAACGTCCAGCGTCTGCATGATCTCGGCTGGTCGGGGTGGTTGTGGCTGATCAACCTCGTGCCATTCGTGGGCAGCATCTTCCCGTTCATTCTCATCATCGCCCCAGGCAATACCGGCGCCAACCAGTACGGCCCACCACCGCCGCGCAATACCACGGCGGTCAAGCTGCTGGCGTCGCTGTGGCTGGTAATGATCGTCCTGATTTTCGTGGCTACCTTCGCCGGCATCTTCGGTGCTCTCCAGGAGGACTTCGATAGCGGTGCCTCGAGCAGCTACGAAAGCAGCGAATACAGTGACCAGACCAGCGAAGAACCGGCCGTTGATGCAGCCGAGCCCGCCTCGCCTTCTGTAGACTACGAAGAAGAAGAAGAGGAACAATAGMSENRFNIVFDGALLPGVDTTTAKLNLAELFKSDVSAIERLFSGRKVSLKNNLSQNEAQQYLDALHKSGIDARIEAEPSIQLNLGEIQEQPGGRQPDSVIDPVSPYAPPRAAVGETFAEYGTLKPFSFEGRIGRLRYLAWTMVLTLAMLPLVGLGFWVATNWLLASDSIAGLVVGGLIAVVVVLAFAFVSIQFNVQRLHDLGWSGWLWLINLVPFVGSIFPFILIIAPGNTGANQYGPPPPRNTTAVKLLASLWLVMIVLIFVATFAGIFGALQEDFDSGASSSYESSEYSDQTSEEPAVDAAEPASPSVDYEEEEEEQNANANANANA
D1-35_05342786putative oxidoreductaseATGACCCGTTACGCCCTGATCACTGGCGCTTCCAGCGGAATCGGCCTGGCCCTGGCTGAAGCACTGGCCCGGCGCGGGCGCAACCTGATACTCGTGGCGCGACAGCGCGATCGACTGGAAAGTATTGCGATCGAACTGACCCAGCGATTTGGCGTGGAAGTATTGTTCCGGGCTTGCGACCTGAGCGAGCCCTTGCGGCTTTCAGGTTTCCTGCTGGAACTGGAAGAAGGCGAACGCCAGATCGACCTGCTGGTCAACTGCGCCGGCATCGGCACCTTCGGCCCGTTCCTGGGCCAGGACTGGATGACCGAGCAGGACCTCATCGAAGTGAATATCCTGGCCCTGACCCGCCTCTGTCACGCCGTAGGCAACAGCATGGCGCTGCATGGAGGCGGCCAGATCCTGAACGTCGCGTCGACTGCCGCATTCCAGCCGGGCCCCTGGATGAGCACCTACCACGCCAGCAAAGCGTACGTATTGCACTTTTCCGAAGCCCTGCGAATCGAGCTGAAGAAATGTGCGATCAAAGTCTCGGTACTTTGCCCGGGCCCGACCCGCACCGGTTTTTTTGCCGAGTGGCAACGGGACGAGAAGCCCAGCGACGATAAGAAGCTGATGAGCCCTGAAGAGGTTGCGCTGTACGCTGTCCGCGCGCTGGACAGGGACCGGGCCATTATCATTCCCGGACGCCGCAATCGCTGGATCGCCGCCCTGCCCCGACTCGGGCCGCGCTGGCTGGTGCGAATTCTTAGCGGCATGTCCAATAAAGCCTACTGTCCACGCTAGMTRYALITGASSGIGLALAEALARRGRNLILVARQRDRLESIAIELTQRFGVEVLFRACDLSEPLRLSGFLLELEEGERQIDLLVNCAGIGTFGPFLGQDWMTEQDLIEVNILALTRLCHAVGNSMALHGGGQILNVASTAAFQPGPWMSTYHASKAYVLHFSEALRIELKKCAIKVSVLCPGPTRTGFFAEWQRDEKPSDDKKLMSPEEVALYAVRALDRDRAIIIPGRRNRWIAALPRLGPRWLVRILSGMSNKAYCPRPGPT0030485_2499PUTATIVEPGPTPUTATIVE_PGPTsPUTATIVE_FUNCTIONSPUTATIVE_FUNCTIONS-1PUTATIVE-OXIDOREDUCTASE_ACTIVITYPUTATIVE-OXIDOREDUCTASE_ACTIVITY-1,PGPT0030485-yqjQ-K07124
D1-35_05343339COG0537Purine nucleoside phosphoramidaseGTGGACACTCTGTTTACCAAGATCATCAACCGGGAAATTCCGGCCAGGATCATTTATGAAGACGATCAGGTTCTGGCTTTTCACGACATCGCCCCCCAGGCTCCAGTGCATTTCCTGGTGATTCCGAAAAAACCGATCCGCACCCTCAATGACCTGACCGAGGAAGACAAAGGGTTGGCCGGACATATCCTGTTTACCGCCCAGCGCCTTGCGCTTGAGCTGGGCTGTGAGGAAGGCTTCCGCGTGGTGATGAACTGCAATGAACTTGGCGGGCAGACCGTCTATCACATTCATATGCACGTGCTGGGGCAGCGCCAGATGAACTGGCCACCGGGTTGAMDTLFTKIINREIPARIIYEDDQVLAFHDIAPQAPVHFLVIPKKPIRTLNDLTEEDKGLAGHILFTAQRLALELGCEEGFRVVMNCNELGGQTVYHIHMHVLGQRQMNWPPGNANANANANA
D1-35_05344648coq7COG29413-demethoxyubiquinol 3-hydroxylaseATGACTACCCAACGTCACTACTCGCCCATTGACCGCCTGCTGCTGCAAGCCGATACCGCGATGCGCACGCTACTGCCCTTCAGTGGCCAGCCGTACCGTCCGTCGCCGGCAATCGTGCAGCCGGACGTACAGATGAGTGACGAAGAGACTCGCCATGTCGCGGGCCTGATGCGTATCAACCATACCGGTGAGGTTTGCGCCCAGGCTCTGTACCAGGGCCAGGCGCTGACGGCAAGATTGCCGCAGGTACGCGAGGCGATGGAGCATGCCGCCGAAGAAGAAGTCGACCACCTGGTCTGGTGCGAGCAGCGCATTCGCCAATTGGGTAGCCATACCAGCGTCCTGAATCCGTTGTTCTACGGGATGTCATTCGGCATCGGCGCGGCGGCCGGACTGATCAGCGACAAGGTCAGCCTGGGTTTCGTCGCGGCAACCGAACATCAAGTGTGCAAGCATCTGAATGAGCACCTGGAGCAGTTGCCGGCCGAAGATGAAAAGTCCCGGGCGATTCTTGAACAGATGCGCAAGGATGAAGAACAGCATGCCGAAAGCGCTCTCGATGCGGGGGGTTTTCGTTTCCCGGCTCCGGTGAAATTCGGCATGAGCCTGTTGGCGAAGGTCATGACCAAGAGCACCTATCGGATCTGAMTTQRHYSPIDRLLLQADTAMRTLLPFSGQPYRPSPAIVQPDVQMSDEETRHVAGLMRINHTGEVCAQALYQGQALTARLPQVREAMEHAAEEEVDHLVWCEQRIRQLGSHTSVLNPLFYGMSFGIGAAAGLISDKVSLGFVAATEHQVCKHLNEHLEQLPAEDEKSRAILEQMRKDEEQHAESALDAGGFRFPAPVKFGMSLLAKVMTKSTYRIPGPT0009541_467DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGOXIDATIVE_STRESS-UBIQUINONE|COENZYME_Q_PATHWAY,PGPT0009541-COQ7_like-K06134NANA
D1-35_05345843speDCOG1586S-adenosylmethionine decarboxylase proenzymeATGCTTGATCACGCGGCCGGGCCGCAATACACAGAGAGTTTTCAAACGGTGAAAAGCAAACTCAAGCTCCATGGGTTCAATAACCTGACAAAGACCTTGAGCTTCAACATCTATGACATCTGCTATGCGGAAACCCCGCAAGACCAGCAGGCCTACGTCGAGTACATCAATAAAGAGTACAACGCCAAGCGCCTCACGCAGATCCTCACGGAAGTTGTCGATATCATTGGTGCCAACATCCTGAACATCGCCAGTCAGGACTATGAACCCCAAGGCGCCAGCGTGACCATTCTGATCTCGGAAGAGCCGGTGACACCGACCGAAAGCCAGATCGAAGAGTCCCCGGGCCCGTTGCCTGAAATTATCCTGGCCCACCTCGACAAGAGCCACATCACGGTACATACCTATCCGGAGATCCACCCGGTGGACGGTATCGCAACGTTCCGAGTGGACATCGATGTGTCGACCTGTGGCGTCATTTCACCGCTCAAGGCACTCAACTTCCTGATTCACCAATTCGATTCCGACATCGTGACCGTGGATTACCGTGTGCGTGGCTTCACACGGGACGTGGAAGGCCACAAGCACTTCATTGATCACGAGATCAATTCGATCCAGAACTATCTCTCCGAAGACACTCGCGACGCGTATCAGATGACCGACGTGAACGTGTACCAGGAAAACCTGTTCCACACCAAGATGCTGCTCAAGGACTTCGAGCTGGACAACTACCTGTTCGGTGATGCCACCAGCAACCTGTCCGTTGAGCAGCGTGGCCAGGTGGAAGAGCGTGTGAAGCACGAGATGCTGGAGATTTTCTACGCGCGCAACATGCCGCGCTGAMLDHAAGPQYTESFQTVKSKLKLHGFNNLTKTLSFNIYDICYAETPQDQQAYVEYINKEYNAKRLTQILTEVVDIIGANILNIASQDYEPQGASVTILISEEPVTPTESQIEESPGPLPEIILAHLDKSHITVHTYPEIHPVDGIATFRVDIDVSTCGVISPLKALNFLIHQFDSDIVTVDYRVRGFTRDVEGHKHFIDHEINSIQNYLSEDTRDAYQMTDVNVYQENLFHTKMLLKDFELDNYLFGDATSNLSVEQRGQVEERVKHEMLEIFYARNMPRPGPT0007760_1366DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-OXIDATIVE_STRESS_SIGNALLING,PGPT0007760-speD-K01611NANA
D1-35_05346423yhfACOG1765Protein YhfAATGAAGGCACGCATCCAATGGGCTGGCGAAGCCATGTTCCTCGGTGAATCAGGCAGTGGTCATGTGGTCGTCATGGACGGCCCACCGGATGCCGGCGGTCGGAACCTGGGTGTCCGGCCAATGGAAATGCTCTTGCTCGGTGTCGGCGGCTGCAGCAACTTCGATGTGGTCAGCATTCTCAAGAAGTCACGCCAGGCCGTCGAAAGTTGCGAAGCGTTCCTTGAAGCCGAGCGCGCGACAGAGGATCCGAAAGTGTTTACCAAGATCCACATGCACTTCGTGGTCAAAGGCCGTGGACTGAAGGAAGCCCAGGTCAAGCGCGCCATTGAGCTGTCCGCCGAGAAATACTGCTCGGCCTCGATCATGCTCGGTGCTGCCGGTGTTGAAATCACTCACGATTATGAAATCATCGAGTTGGGTTGAMKARIQWAGEAMFLGESGSGHVVVMDGPPDAGGRNLGVRPMEMLLLGVGGCSNFDVVSILKKSRQAVESCEAFLEAERATEDPKVFTKIHMHFVVKGRGLKEAQVKRAIELSAEKYCSASIMLGAAGVEITHDYEIIELGNANANANANA
D1-35_05347645vfrCOG0664Cyclic AMP receptor-like proteinATGGTTGCCATTACTCCCACGTCCAAGATCAAGAACCTCGACAAACTCTTGATGCATTGCCAGCGTCGCCGCTACCCCGCCAAGCACAACATCATTTGCGCAGGCGACCGCTCCGATACGCTGTTTTTCATCATCAAGGGCTCCGTCACTATCCTGATCGAGGACGATGACGGCCGGGAAATGATCATCGCCTACCTCAACTCCGGGGATTTTTTCGGCGAACTGGGATTGTTCGAGCAGGCGGGCAAGGAGCAGGAGCGCAGTGCCTGGGTACGAGCCAAGGTCGAATGTGAAGTGGCGGAAATCAGCTATGGCAAATTCCGAGAGCTGTCGCAGCAGGATCCGGACATTCTTTACGCCCTCAGCGGACAAATCGCGCAGCGTCTGCGCAATACCACCCGCAAAGTCGGTGACCTGGCGTTCTTCGACGTGACCGGTCGCGTCGCCCGCTGCCTGCTGGAACTGTGCAAGCAGCCCGACGCCATGACCCATCCGGATGGTATGCAGATCAAAGTGACCCGTCAGGAAATCGGCCGCATCGTTGGCTGCTCCCGAGAGATGGTCGGACGCGTGCTCAAGGACCTGGAAGAGCGCGATCTGGTCAGCGTCAAAGGCAAGACCATGGTCGTGTTCGGGACGCGCTAAMVAITPTSKIKNLDKLLMHCQRRRYPAKHNIICAGDRSDTLFFIIKGSVTILIEDDDGREMIIAYLNSGDFFGELGLFEQAGKEQERSAWVRAKVECEVAEISYGKFRELSQQDPDILYALSGQIAQRLRNTTRKVGDLAFFDVTGRVARCLLELCKQPDAMTHPDGMQIKVTRQEIGRIVGCSREMVGRVLKDLEERDLVSVKGKTMVVFGTRPGPT0015075_4073DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-CARBOHYDRATE_LIMITATION_SIGNALLING,PGPT0015075-clp|crp-K10914NANA
D1-35_05348693hypothetical proteinATGCCTTCAGCCATTGCCTTCACGGTTGAAAGCGGCCTGCAGGCCGAACAGGATCTGCTGGCCAGCGTTTGCGCCGGTGACGCTGAATCCGGCTTGCTGTTCTGGCAACCCAGCGATCGTGCCCTGGTCATGCCGCGTCGCTTGAGTCGCCTGCCAGGTTTTGAACTTGCCTGTGAGGTATCGGCCGCAAGCGGCTGGCCGGTGCTGCTGCGTGAAACCGGTGGCGAGCCAGTGCCTCAATCGGGCGCTACGGTCAATATCGCGCTGGTCTATGCGCCACCGCGAAGTGAAGGTGACCATGGCCGGATCGAGACTGCTTATCGGCGTCTGTGCGATCCGATCTGCCAGTTGCTCGATGAGCTGGGCGGGGTGGCTTCCCTTGGCGAAGTGGAGGGCGCGTTTTGTGATGGGCGCTTCAACGTCAATCTGGACGGCCGAAAAATGGTCGGTACCGCCCAGCGCTGGCGGCAAAGCAAGGGTGGCCAGAGGCCGGTGGGTCTGGTGCATGGCGCCCTATTGCTGGATGACGAGCGTGATCCCATGGTTGCGGCGGTCAATCGGTTCAACGAGGCGTGTGGCCTGGAGCAGCGTGTGCGTGCCGAGAGCCACATTGCCCTGCATGAGAAATTCCCGGCGCCTCATGCGCTGGAACGGCTCGAGGCGCTCTACCGGGAACTGTTGAGCAGCTTTTAGMPSAIAFTVESGLQAEQDLLASVCAGDAESGLLFWQPSDRALVMPRRLSRLPGFELACEVSAASGWPVLLRETGGEPVPQSGATVNIALVYAPPRSEGDHGRIETAYRRLCDPICQLLDELGGVASLGEVEGAFCDGRFNVNLDGRKMVGTAQRWRQSKGGQRPVGLVHGALLLDDERDPMVAAVNRFNEACGLEQRVRAESHIALHEKFPAPHALERLEALYRELLSSFNANANANANA
D1-35_05349837trpCIndole-3-glycerol phosphate synthaseATGAGCGTGCCAACGGTTCTGGAAAACATTCTGGCTCGCAAGGCTGAAGAAGTGGCCGAGCGCCGGGCCCGGGTCAGCCTCGCCGAGCTGGAAGGTCTCGCACGTTCAGCAGACGCGCCTCGCGGCTTTGCCCAGGCGCTGATCGATCAGGCGAAGAAAAAGCAGCCTGCAGTCATCGCCGAAATCAAGAAGGCGTCCCCCAGCAAAGGTGTGATCCGTGAGGACTTCGTCCCCGCCGACATCGCCAGGAGCTACGAGAAGGGCGGTGCGACCTGCCTTTCGGTGCTCACCGACGTCGATTTTTTCCAAGGCGCCGATGACTATCTAAAACAGGCGCGGGCGGCGTGCAAGCTGCCGGTGATCCGCAAGGATTTCATGATCGATCCGTACCAGATCGTCGAGGCGCGGGCCTTGGGTGCCGATTGCGTGCTGTTGATCGTTTCCGCCCTGGATGACGTGAAAATGGCCGAGCTGGCAGCAGTCGCTAAAGAGGTGGGCCTGGATGTGTTGGTGGAAGTCCACGACGGCGACGAGCTGGAGCGCGCCCTGAAAACTCTGGATACCAAGCTGGTCGGCGTGAATAACCGCAACCTGCATACGTTTGAAGTCAGCCTGGAAACCACTCTTGACCTGTTGCCGCGAATTCCACGTGATCGCCTGGTCATCACCGAGAGCGGCATTCTCAACCGAGCCGATGTCGAGTTGATGGAAGTCAGCGATGTGTATTCATTCCTGGTTGGCGAGGCTTTCATGCGGGCCGAAAGCCCGGGTACAGAACTGCAGCGCTTGTTTTTCCCCGAGCGCGGCGTTCCGGTAACCGGCTCGACGCTGGACTGAMSVPTVLENILARKAEEVAERRARVSLAELEGLARSADAPRGFAQALIDQAKKKQPAVIAEIKKASPSKGVIREDFVPADIARSYEKGGATCLSVLTDVDFFQGADDYLKQARAACKLPVIRKDFMIDPYQIVEARALGADCVLLIVSALDDVKMAELAAVAKEVGLDVLVEVHDGDELERALKTLDTKLVGVNNRNLHTFEVSLETTLDLLPRIPRDRLVITESGILNRADVELMEVSDVYSFLVGEAFMRAESPGTELQRLFFPERGVPVTGSTLDPGPT0007080_636DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007080-trpC-K01609NANA
D1-35_053501050trpD_2COG0547Anthranilate phosphoribosyltransferaseATGGACATCAAGACAGCCCTGAACCGTATCGTCGGCCAGCTCGACCTGAGCACCGACGAGATGCGCGACGTGATGCGGGAAATCATGACTGGCCAGTGCACGGACGCGCAGATTGGCGCGTTCATGATGGCCATGCGCATGAAGAGCGAGAGCATCGACGAAATTGTCGGTGCGGTCACGACCATGCGCGAGTTGGCGGACAAGGTCGAACTCAAGACCCTTGATGGTGTGGTGGATGTCGTCGGGACCGGTGGTGACGGAGCCAATATATTCAACGTTTCCACCGCCTCGGCATTTGTCGTTGCGGCGGCCGGCTGCACGGTCGCCAAGCATGGCAATCGTGCAGTGTCGGGCAAGAGCGGCAGCGCCGATCTGCTGGAAGCCGCCGGTATCTACCTCAACCTGACGTCGGTCCAGGTGGCTCGTTGCATCGATAGCGTCGGCATCGGCTTCATGTTTGCCCAGACCCACCACCGCGCCATGAAATATGCCGCGGCGCCGCGTCGCGAGCTGGGCTTGCGCACGCTGTTCAACATGCTCGGCCCGCTTACGAATCCGGCCGGTGTGAAGCATCAAGTGGTCGGCGTGTTCAGCCAGGCGCTGTGCCGGCCATTGGCAGAGGTCCTGCAACGTTTAGGTAGCAAGCACGTGCTGGTCGTCCATTCAAAAGACGGCCTGGATGAATTCAGCCTGGCGGCGCCCACTTTCGTGGCCGAGCTAAAAAATGATCAGATCACCGAATATTGGGTCGAACCTGAAGACCTCGGCATGAAGAGCCAGAGCCTGCATGGACTGGCGGTGGATGGGCCAGCTCAGTCACTTGAGTTGATCCGCGATGCCTTGGGGCGGCGTAAAACCGAGAATGGCCAGAAGGCTGCGGAAATGATCATGCTCAACGCGGGCGCCGCGTTGTATGCCGCCGATCACGCCAGCAGCCTCAAGCAAGGTGTCGAGCTCGCTCATGATGCGTTGCACACCGGCCTGGCCCGGGAAAAACTGGAAGAATTGGGCGCGTTTACCGCCGTATTCAAAGTGGAGAATGAAGGATGAMDIKTALNRIVGQLDLSTDEMRDVMREIMTGQCTDAQIGAFMMAMRMKSESIDEIVGAVTTMRELADKVELKTLDGVVDVVGTGGDGANIFNVSTASAFVVAAAGCTVAKHGNRAVSGKSGSADLLEAAGIYLNLTSVQVARCIDSVGIGFMFAQTHHRAMKYAAAPRRELGLRTLFNMLGPLTNPAGVKHQVVGVFSQALCRPLAEVLQRLGSKHVLVVHSKDGLDEFSLAAPTFVAELKNDQITEYWVEPEDLGMKSQSLHGLAVDGPAQSLELIRDALGRRKTENGQKAAEMIMLNAGAALYAADHASSLKQGVELAHDALHTGLAREKLEELGAFTAVFKVENEGPGPT0007090_1252DIRECT EFFECTPHYTOHORMONE|PLANT_SIGNAL_PRODUCTIONPLANT_SIGNAL-BRANCHING_STIMULATIONPLANT_BRANCHING-AUXIN|IAA_METABOLISMPLANT_BRANCHING-IAA_RELATED_TRYPTOPHAN_METABOLISM,PGPT0007090-trpD-K00766NANA
D1-35_05351594trpGCOG0512Anthranilate synthase component 2ATGTTGCTGATGATCGATAACTACGACTCCTTTACTTACAACGTTGTGCAGTACCTTGGCGAGCTGGGCTCCGAGGTCAAGGTCGTGCGCAACGATGAGCTGACCATTGCCGAAATCGAGGCCCTCAAGCCCGAACGCATCGTCGTCTCGCCCGGCCCTTGCACGCCGACCGAAGCGGGCATCTCCATCGAAGCCATCAAATATTTTGCCGGCAAGCTGCCGATCCTAGGTGTCTGCCTGGGGCACCAGTCGATCGGCCAGGCGTTCGGTGGCGATGTCGTGCGGGCCCGCCAGGTGATGCACGGCAAGACCAGCCCGGTATTCCATGAAGACAAGGGCGTGTTCGAAGGCTTGAATCGCCCGCTTACCGTCACCCGCTACCACTCGTTGATCGTCAAGCGCGAAAACCTGCCCGACTGCCTTGAGCTGACCGCCTGGACCCAGCTCGAAGACGGCTCGGTGGACGAAATCATGGGGTTGCGTCACAAGACGTTAAACATCGAGGGTGTGCAATTTCACCCCGAGTCTATCCTCACCGAGCAGGGCCACGAACTGTTCGCCAACTTCCTCAAACAAACCGGCGGCACGCGCTAAMLLMIDNYDSFTYNVVQYLGELGSEVKVVRNDELTIAEIEALKPERIVVSPGPCTPTEAGISIEAIKYFAGKLPILGVCLGHQSIGQAFGGDVVRARQVMHGKTSPVFHEDKGVFEGLNRPLTVTRYHSLIVKRENLPDCLELTAWTQLEDGSVDEIMGLRHKTLNIEGVQFHPESILTEQGHELFANFLKQTGGTRPGPT0007105_1457DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-HQQ|PQS_BIOSYNTHESIS,PGPT0007105-trpG|phnB-K01658NANA
D1-35_053521908estACOG3240Esterase EstAATGATCAAGCCGACCTTGTTCATCCCCATCGCCAGCTGCCTGCTGACCATGGCCTGCGCTCAGGCGATTGCTGCCCCCAATCCCTACTCCAATTTCATCGTGTTCGGCGACAGTCTCAGCGACGCCGGTCAGTTCAGCGATCCCGACGGCCCGCCCGGCTCAACCTTGCGTTTTACCAACCGCACCGGCCCGGTCTACCTGGATGGCAGCGGCGAAGCCTATTCTGCAAACGCGACCCAACTGCTCGGTGGACGACTGGGCTTCTCCGCCGATGAAACCGCCGCGTCCACTTCGGCAGTGCGTGCCCGCGAAGGACTCGCGGACGGCAACAACTGGGCTGTAGGTGGTTATCGTACCGACCAGATACTGGACTCGATCACCAATATTTCCGCCACTGGCGAGCGCAGCCGGGCCGGTTATCTGCCAGCCAATGGCCTGCGTGCCGACCCGAATGCGCTGTATTACCTCTCCGGCGGCGGCAATGATTTTCTTCAAGGCAGAGTGTTGAGCATCGCCCAGGCGGATGCCGCCGCGGACCGCCTGGCCGACAGCGTGCAAGTGCTGCAAACCGCCGGAGCCCGCTATGTGATGGTCTGGTTGCTGCCGGACCTGGGCCTGACGCCGGCCCTCAACGGCACCCCCCTGCAGGGAACGGTCTCGCTGCTCAGCAATCGGTTCAACCAGCAACTGGTCACGCGGTTGCAGGGCATCGATGCCGAGATCATTCCGCTGAACGTTCCGCTATTGTTGCAGGAAACCTTTGCCGATCCTGGACGATTCGGCCTTGCCACCGGCGAGAACCTCACCGCCAGTTGCTTCAGCGGCAACAGCTGTACGGAAAACCCCACCTACGGCATCAACAGCGCCACGCCTGATCCGAGCAAGCTGATCTACAACGATGCGGTTCACCCCACCGAAACCGGGCAGAAGCTGATTGCCGACTACGCCTATTCCCTGCTCGCAGCGCCGTGGGAACTGACCTTGCTGCCGGAAATGGCCCACTCGACCTTGCGCGCCCACCAGGATGAATTGCGCAGCCAATGGCAATCGGACTGGGAGGATTGGCAGGCGGTAGGTCAATGGCGGGCGATTGTTGCCGGCGGCGGCCAGCATCTGGACATTGATAGCCAAGGCAGCGGTGCAAGCGCCGACGGCAGTGGCTACAACCTGAACATCGGCGGCAGTTACCGTCTCAACGAAGCCTGGCGCATCGGCGTGGCCGCCGGTCTGTACCGCCAGGACATGGACGCAGGCCGCAACGATTCGAACTACAAGCTCAACAGCTACCTCGCCACCGCGTTCGCCCAGTTCCAGCAGAACCGCTGGTGGGCCGACGCCGCGCTGACCGGCGGCAAGCTCGACTACGACAACCTGGAGCGCAAATTCGACCTGGGCGTCAGCCAGGCGCAGGAAAAAGGCGATACCGATGGTCATCTCTGGGCATTCAGCACACGCGTAGGCTACGACATTGCCCAGCCGGGCAGCCAATGGCACCTGTCACCGTTTGTCAGCGCCGATTATGCGAAGGTCGAGGTCGATGGTTACTCGGAACAGGGCAGCCGCTCCACGGCGCTGACTTTCGACGACCAGACCCGCGATTCAAAACGCCTGGGCATCGGCTTGCAGGGCAAATACAACTTTACCCGCCAGACCCAGGTGTACGGGGAGTATGCCCACGAGCGCGAGTATGAGGACGATACGCAAAAGGTGAACATCGCCCTCAACAGCTTGCCGGCCAATGACTTCACGCTGGAGGGCTACACCCCACAAAGCCACCTCAATCGCCTGAGCCTGGGGATCAGCCACAAGTTGACCAGCGATCTGGCGCTGCGGGGCGGTTATACGTTGCGCAAGGATGATGATTTTACCCAGCAAGGGGTGAGCCTGGGGGTCAGCCTGGATTTTTGAMIKPTLFIPIASCLLTMACAQAIAAPNPYSNFIVFGDSLSDAGQFSDPDGPPGSTLRFTNRTGPVYLDGSGEAYSANATQLLGGRLGFSADETAASTSAVRAREGLADGNNWAVGGYRTDQILDSITNISATGERSRAGYLPANGLRADPNALYYLSGGGNDFLQGRVLSIAQADAAADRLADSVQVLQTAGARYVMVWLLPDLGLTPALNGTPLQGTVSLLSNRFNQQLVTRLQGIDAEIIPLNVPLLLQETFADPGRFGLATGENLTASCFSGNSCTENPTYGINSATPDPSKLIYNDAVHPTETGQKLIADYAYSLLAAPWELTLLPEMAHSTLRAHQDELRSQWQSDWEDWQAVGQWRAIVAGGGQHLDIDSQGSGASADGSGYNLNIGGSYRLNEAWRIGVAAGLYRQDMDAGRNDSNYKLNSYLATAFAQFQQNRWWADAALTGGKLDYDNLERKFDLGVSQAQEKGDTDGHLWAFSTRVGYDIAQPGSQWHLSPFVSADYAKVEVDGYSEQGSRSTALTFDDQTRDSKRLGIGLQGKYNFTRQTQVYGEYAHEREYEDDTQKVNIALNSLPANDFTLEGYTPQSHLNRLSLGISHKLTSDLALRGGYTLRKDDDFTQQGVSLGVSLDFPGPT0023515_80DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_SECRETIONCE-Type_V_SECRETION_SYSTEMSCE-T5a_AUTOTRANSPORTER_SECRETION,PGPT0023515-apeE|estA|lip_1-K12686NANA
D1-35_053531482trpECOG0147Anthranilate synthase component 1ATGATCCGCGAAGAATTTCTGCGTCTAGCCGCTGCCGGCTACAACCGCATCCCGCTTGCCTGCGAAACCCTGGCCGACTTCGACACGCCGCTGTCGATCTACCTCAAGTTGGCCGACCAACCCAATTCCTACTTGCTCGAATCGGTGCAAGGTGGGGAAAAATGGGGTCGCTATTCCATGATCGGCCTGCCGTGCCGCACCGTGCTGCGAGTCCATGACCATCGCATCAGCGTGACCTGCGATGGCGTCGAAATCGAAAGCCACGAAGTCGAGGATCCGCTCGCGTTCGTTGAATCCTTCAAGGCCCGCTACAACGTCCCGACCATCCCCGGCCTGCCACGTTTCAACGGCGGCCTGGTGGGTTATTTCGGCTACGACTGCGTGCGCTATGTGGAAAAACGCCTGGGCACCTGTCCGAACCCCGATCCGCTGGGTGTGCCGGACATTCTGCTGATGGTCTCCGATGCGGTGGTTGTCTTCGACAATCTCGCCGGCAAGATGCACGCCATCGTCCTGGCCGATCCGTCCCGTGAAGATGCCTACGAGCAAGGTCAACAAAGCCTTCAGACGTTGCTGGAAAAACTCCGCCAGCCGATCACCCCGCGTCCCGGCCTGGACTTCAGCAAGCAGTCGGCTGCCGACCCGGTGTTCCGTTCCAGTTTCACCCAGGGTGACTACGAAAAAGCCGTCGACACCATCAAGGAATACATCCTGGCGGGCGACTGCATGCAGGTCGTGCCGTCGCAACGGATGTCGATCGACTTCAAGGCCGCGCCGATCGATCTGTACCGGGCGCTGCGCTGTTTCAACCCGACGCCTTACATGTACTTCTTCAACTTCGGTGACTTCCATGTCGTGGGCAGTTCGCCCGAGGTGCTGGTGCGGGTCGAGGAAAACCTGATCACCGTGCGGCCGATCGCCGGCACACGGCCACGCGGCGCCACGGAGGAAGCGGACCGGGCGCTGGAAGAGGACCTGTTGTCAGATGCCAAGGAGATCGCCGAGCACCTGATGCTGATCGATCTGGGGCGCAACGACACTGGCCGGGTTTCCGAAGTGGGCTCGGTGAAACTCACCGAGAAAATGGTCATCGAGCGCTACTCCAACGTGATGCACATCGTGTCCAACGTCACCGGGCAGTTGAAGGCGGGGTTGACGGCGATGGACGCCTTGCGAGCGATCCTGCCGGCGGGCACTTTGTCTGGCGCGCCGAAGATCCGCGCCATGGAAATCATCGACGAGCTGGAGCCGGTCAAGCGCGGTGTGTACGGCGGAGCCGTCGGCTACTTCGCCTGGAACGGCAACATGGACACGGCCATCGCCATCCGCACCGCCGTGATCAAGAACGGTGAACTGCACGTGCAGGCCGGCGGCGGCATCGTCGCCGACTCGGTGCCCGCGCTGGAATGGGAGGAAACCCTGAACAAGCGTCGGGCAATGTTCCGTGCCGTGGCCCTGGCCGAGCAGACCCCAAGCGACTGAMIREEFLRLAAAGYNRIPLACETLADFDTPLSIYLKLADQPNSYLLESVQGGEKWGRYSMIGLPCRTVLRVHDHRISVTCDGVEIESHEVEDPLAFVESFKARYNVPTIPGLPRFNGGLVGYFGYDCVRYVEKRLGTCPNPDPLGVPDILLMVSDAVVVFDNLAGKMHAIVLADPSREDAYEQGQQSLQTLLEKLRQPITPRPGLDFSKQSAADPVFRSSFTQGDYEKAVDTIKEYILAGDCMQVVPSQRMSIDFKAAPIDLYRALRCFNPTPYMYFFNFGDFHVVGSSPEVLVRVEENLITVRPIAGTRPRGATEEADRALEEDLLSDAKEIAEHLMLIDLGRNDTGRVSEVGSVKLTEKMVIERYSNVMHIVSNVTGQLKAGLTAMDALRAILPAGTLSGAPKIRAMEIIDELEPVKRGVYGGAVGYFAWNGNMDTAIAIRTAVIKNGELHVQAGGGIVADSVPALEWEETLNKRRAMFRAVALAEQTPSDPGPT0007095_3276DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-QSR-AUTOINDUCER_PERCEPTIONCE-QSR-HQQ|PQS_BIOSYNTHESIS,PGPT0007095-trpE|phnA-K01657NANA
D1-35_05354819gph_2COG0546Phosphoglycolate phosphataseATGAGCGGCTTCGAGCAGCTGTTTCCCGGCAGCCTGCCGCGTCTGGTGATGTTCGATCTCGACGGCACGCTCGTCGACTCGGTCCCGGACCTGGCGGCCGCCGTGGACAATATGCTGCTCCAGCTCGGGCGTCCGCCTGCGGGCATCGACGCCGTGCGCCAGTGGGTCGGCAACGGCGCGCCGATGCTGGTGCGCCGGGCCCTGGCCAATCACATTGATGCCCAAGGCGTTGATGAGGCCGAGGCCGAGCGGGCACTGGAGCTGTTCAACGAAGCCTATGAAGGCAACCACGAACTGACCGTGGTTTATCCGGGCGTGCGCTCCACCCTCAAATGGTTGCACAAGCAGGGCGTGGAAATGGCGCTGATCACCAACAAGCCGGAGCGTTTTGTCGCGCCGCTGCTGGATCAGATGAAGATCGGCCGTTATTTCCGCTGGATCATCGGCGGCGACACCTTGCCACAGAAAAAGCCCGACCCGGCCGCGCTGTTCTTCGTCATGAAAATGGCCAACATCCCGGCGTCCCAATCGTTGTTTGTCGGCGACTCGCGCAGCGACGTGCTGGCGGCGAAGGCGGCGGGGGTCAAATGTGTTGCCCTGAGCTACGGCTACAATCATGGCCGACCGATTGCCGAGGAATTTCCGACATTGGTGATTGATGATCTGCGCCTGCTAATTCCCGGTTGCCTGGACCCGGCCGCTGAGATAACGTTGCCCGACGCTGTTCAATCCTCTTCTGGAAACGCCATCGTGGTGGTCACTCGCAAACTCTGGATGAAAGTCATGAAGGCCCTGGCCCGCTGGCGTTGGCGCGCCTGAMSGFEQLFPGSLPRLVMFDLDGTLVDSVPDLAAAVDNMLLQLGRPPAGIDAVRQWVGNGAPMLVRRALANHIDAQGVDEAEAERALELFNEAYEGNHELTVVYPGVRSTLKWLHKQGVEMALITNKPERFVAPLLDQMKIGRYFRWIIGGDTLPQKKPDPAALFFVMKMANIPASQSLFVGDSRSDVLAAKAAGVKCVALSYGYNHGRPIAEEFPTLVIDDLRLLIPGCLDPAAEITLPDAVQSSSGNAIVVVTRKLWMKVMKALARWRWRAPGPT0001730_150DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-DNA_DAMAGE_DEFENSE|REPAIR,PGPT0001730-gph-K01091NANA
D1-35_05355675rpeCOG0036Ribulose-phosphate 3-epimeraseATGCAGCCCTTCGCTATTGCTCCGTCGATTCTCTCCGCCGACTTCGCCCGCCTGGGCGAGGAAGTGGACAACGTTCTGGCCGCCGGGGCCGACATCGTCCACTTCGATGTCATGGACAACCACTACGTACCCAACCTGACCATCGGCCCGATGGTCTGCGCGGCGTTGCGCAAATATGGCATCACCGCGCCAATCGATGCGCACCTGATGGTCAGTCCTGTGGATCGTATCGTCGGTGATTTCATCGAGGCCGGTGCCACCTACATCACTTTCCACCCGGAAGCCACGCTGCACGTCGACCGCTCCCTGCAATTGATCCGCGAAGGCGGCTGCAAGGCCGGCCTGGTGTTCAACCCGGCCACGCCCCTGGACGTACTCAAGTACGTGATGGACAAGGTCGACATGATTCTGCTGATGAGCGTCAACCCGGGTTTCGGCGGGCAGAAGTTCATTCCGGGCACGCTCGACAAGCTGCGCGAAGCCCGCGCCCTGATCGATGCCTCGGGCCGGGATATCCGCCTGGAAATCGACGGCGGGGTGAACGTGAACAACATCCGCGAAATCGCCGCGGCCGGTGCCGACACCTTTGTCGCCGGTTCGGCGATCTTCAACGCACCGGACTACCAGGCAGTGATCGAAAAGATGCGCGCCGAACTGGCCCTGGCACGTCCATGAMQPFAIAPSILSADFARLGEEVDNVLAAGADIVHFDVMDNHYVPNLTIGPMVCAALRKYGITAPIDAHLMVSPVDRIVGDFIEAGATYITFHPEATLHVDRSLQLIREGGCKAGLVFNPATPLDVLKYVMDKVDMILLMSVNPGFGGQKFIPGTLDKLREARALIDASGRDIRLEIDGGVNVNNIREIAAAGADTFVAGSAIFNAPDYQAVIEKMRAELALARPPGPT0017425_2765DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017425-rpe|cbbE-K01783NANA
D1-35_053561149adh1COG1454Long-chain-alcohol dehydrogenase 1ATGAGTCTTTCCTCATTCAAGATCGCCCACAAACTGATCACCGGCGCCGCTGCCATCGAGCAACTGGCGGCGGAGCTGACACGGCTGGATGTCGATAACCCGTTGATCGTCACGGACGCGGCGCTGGTCAAGTCGGGCACCGTGGAGTTGGCGCTGCAGCATTTGGGCGGGCGCGACTACGAGATTTTCGACCGGGTCATGCCCGACCCGGAAATCGCCATCGTCGAAGATTGCATGCAAGCCTACCGCGACGGCGGGCATGACGGCCTCATCGGCCTGGGTGGCGGCAGCGCCATCGACATTGCCAAGTGCGTGGGCGTCTATGCCGGTTATCACGGCGAGCTGCAGGATATGTTCGGTGTCGATCAGGTGCCGCGCAAAGGTCCGCCCATGATTGCCATTCCCACCACCGCCGGTACCGGTTCGGAAGTCACCAACGTGGCGATCCTCTCTGACAAGGCCGCACAGCTGAAAAAGGGCATCGTCAGTGATTTCCTGCTGCCGGACGTGGCGCTGGTCAGCCCGCAGATGACCCTGACGTGTCCGCGCAGCGTGACCGCCGCCAGCGGCGTTGATGCGTTGGTGCATGCCATCGAGTCGTACCTGTCACTCAACGCCTCGCCGATCACCGATGCCCTGGCCATCGGCGCGATCAAGCTGATCACCCGCGCCTTGCCCAAGGCCTACGCCAACCCGTCCCACTTGCAGGCCCGTGAAGACATGGCCACCGCCAGCCTGATGGCCGGTATGGCGTTCGGCAATGCCGGGGTCGGCGCCGTGCATGCGCTGGCCTATCCGCTGGGCGGACGTTTCCTTGTCTCTCATGGCGTCGCCAATGCCTTGTTGCTGCCGTATGTCATGCACTGGAACAAGATGGCCTGCGTCGAGCGCATGCGCGATATTGCCGAAGCCATGGGCATCAAGACGGCTCATTTGAGTGATATCGAAGCCGCGGACGAGGCCGTGGAGGCCATGGCCGCGTTGTGTGCCGCGGTGGAAATTCCCAAGGGCCTGAGTGGCCTGGGCGTCACCGAGGAGGTGATTCCGTCCATGGCGGCGGAGGCGGCGGGTATAGAGCGGCTGATGCGCAACAACCCGCGCAAGCTGAGCGCCGGCGATATCGAGAAGATCTACCGAGCGGCGTATTGAMSLSSFKIAHKLITGAAAIEQLAAELTRLDVDNPLIVTDAALVKSGTVELALQHLGGRDYEIFDRVMPDPEIAIVEDCMQAYRDGGHDGLIGLGGGSAIDIAKCVGVYAGYHGELQDMFGVDQVPRKGPPMIAIPTTAGTGSEVTNVAILSDKAAQLKKGIVSDFLLPDVALVSPQMTLTCPRSVTAASGVDALVHAIESYLSLNASPITDALAIGAIKLITRALPKAYANPSHLQAREDMATASLMAGMAFGNAGVGAVHALAYPLGGRFLVSHGVANALLLPYVMHWNKMACVERMRDIAEAMGIKTAHLSDIEAADEAVEAMAALCAAVEIPKGLSGLGVTEEVIPSMAAEAAGIERLMRNNPRKLSAGDIEKIYRAAYPGPT0008305_394DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008305-adh1-K19954NANA
D1-35_05357825ydcV_4Inner membrane ABC transporter permease protein YdcVATGCTGAGTCCTTACATGTCCCCCGTCGAGCGGGTGTGGTTCTACAGCTTGCGCATACTCTGCGGGCTGATCCTGTTGTTCCTGATCCTGCCAGTGCTGGTGATCATTCCGTTGTCGTTCAACTCGGGCAGCTTCCTGGTTTATCCGCTGCAGGGCTTTTCGTTGCAGTGGTACCACGATTTCTTCGCTTCGGCCGAGTGGATGCGGGCGTTGAAGAACAGCATCATCGTGGCCCCGGCGGCAACGCTGTTGGCGATGATCTTCGGTACGCTGGCGGCGATCGGCCTGACTCGTGGTGATTTCCCGGGCAAGGCGCTGGTGATGGCCCTGGTGATTTCGCCCATGGTGGTGCCGGTGGTGATCATTGGCGTCGCGAGCTACCTGTTTTTCGCGCCATTGGGGATGGGCAACAGCTTCTTCTCGCTGATCATCGTCCACGCGGTGCTCGGTGTGCCGTTCGTCATCATCACCGTCTCGGCGACTTTGCAAGGGTTCAACCACAACCTGGTCCGCGCTGCTGCCAGCCTCGGGGCTTCGCCATTGACCGCGTTCCGTCGCGTGACCTTGCCGTTGATCGCGCCGGGCGTCATCTCTGGTGCGTTGTTCGCCTTCGCGACTTCGTTTGATGAAGTGGTGGTGACCCTGTTCCTGGCCGGCCCGGAGCAAGCGACCCTGCCACGGCAGATGTTCAGCGGTATTCGCGAGAACCTGAGCCCGACCATCGCCGCCGCGGCTACGTTGTTGATCGCCTTCTCGGTGATCCTGCTGCTGACGCTGGAATGGCTGCGTGGGCGTAGCGAGAAGCTGCGTACGACCCAAGTCTGAMLSPYMSPVERVWFYSLRILCGLILLFLILPVLVIIPLSFNSGSFLVYPLQGFSLQWYHDFFASAEWMRALKNSIIVAPAATLLAMIFGTLAAIGLTRGDFPGKALVMALVISPMVVPVVIIGVASYLFFAPLGMGNSFFSLIIVHAVLGVPFVIITVSATLQGFNHNLVRAAASLGASPLTAFRRVTLPLIAPGVISGALFAFATSFDEVVVTLFLAGPEQATLPRQMFSGIRENLSPTIAAAATLLIAFSVILLLTLEWLRGRSEKLRTTQVPGPT0007845_1729DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007845-ABC_SP_P|ydcV-K02053NANA
D1-35_053581248hypothetical proteinATGGCCATCGCCGTTCCACTGAACGCGGGCACCAGCCCCACCCTCAAGCAGCGACTCAAGCGCGCCGAGCGGCTCAACCGCTGGAAGGCCCAGGCCCTGATCGCGCCGCTGGTGCTGTTTCTGTTGCTGGTGTTTCTGGTGCCGATCGTGGCGCTGCTGTTCAAAAGCGTCAGCAACCCGGAAGTGGTGGGCGCGATGCCGCGGACCGTCGCTGCCGTCGCGGCTTGGGACGGACGCGGTCTGCCGGGCGAGCCGGTGTACAAGGCTGCCAGTGAAGATCTGGCCGAAGCCCGCAAGAATCAGACCCTGGGCGACTTGTCCAAGCGCCTGAACATGGAACTGGCCGGCTACCGCAGCCTGCTGACCAAGACTGCTCGCGCGCTGCCGTTCGCCACCGAGCCGGTCTCTTATAAAGAAGCACTGGAGAGCCTCGACGAACGCTGGGGTGACCCCGCGTACTGGCAGGTGATCCGGCGCAACACCAGTAATGTCACTCCGTACTACCTGCTGGCGGCTGTCGATCACCGCATCGACGATCTCGGTGAACTGGCCCCGGCCACCCCCGACCAGGCGATCTACCTGGATATTTTCACCCGTACTTTCTGGATGGGCCTGGTGATTACCGCCATCTGTCTGGTGCTCGCCTATCCACTGGCTTACCTGCTGGCGAACCTGCCGTCACGCCAGAGCAACCTGTTGATGATCCTCGTGCTGCTGCCGTTCTGGACCTCGATCCTGGTGCGGGTGGCGGCGTGGATCGTGCTACTGCAGTCGGGCGGATTGATCAACAGCGCGCTGATGGCCATGGGCGTCATCGATAAACCGCTGGAGCTGGTGTTCAACCGCACCGGCGTGTACATCTCCATGGTCCACATCCTTCTGCCGTTCATGATCCTGCCGATCTACAGCGTGATGAAGGGCATCTCGCCCACCTACATGCGGGCGGCGATCTCCCTGGGCTGCCACCCGTTCGCCAGTTTCTGGCGGGTGTATTTCCCGCAGACCTACGCCGGCGTAGGTGCCGGGTGCCTGTTGGTGTTCATCCTCGCCATCGGCTACTACATCACCCCGGCACTGCTGGGCAGCCCGAACGACCAGATGGTCAGCTACTTCGTCGCGTTCTACACCAACACCAGTATCAACTGGGGCATGGCCACGGCGCTCGGCGGATTGCTGTTGCTGGCGACCATCGTGCTTTATCTGATTTACAGCTGGCTGGTGGGCGCCAGTCGCCTGCGCCTGAGCTAAMAIAVPLNAGTSPTLKQRLKRAERLNRWKAQALIAPLVLFLLLVFLVPIVALLFKSVSNPEVVGAMPRTVAAVAAWDGRGLPGEPVYKAASEDLAEARKNQTLGDLSKRLNMELAGYRSLLTKTARALPFATEPVSYKEALESLDERWGDPAYWQVIRRNTSNVTPYYLLAAVDHRIDDLGELAPATPDQAIYLDIFTRTFWMGLVITAICLVLAYPLAYLLANLPSRQSNLLMILVLLPFWTSILVRVAAWIVLLQSGGLINSALMAMGVIDKPLELVFNRTGVYISMVHILLPFMILPIYSVMKGISPTYMRAAISLGCHPFASFWRVYFPQTYAGVGAGCLLVFILAIGYYITPALLGSPNDQMVSYFVAFYTNTSINWGMATALGGLLLLATIVLYLIYSWLVGASRLRLSPGPT0007850_680DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-ENVIRONMENTAL_QSR|BF_SIGNALLINGCE-QSR|BF-ACIDIC_STRESS_SIGNALLING,PGPT0007850-ABC_SP_P1|ydcU-K02054NANA
D1-35_05359279hypothetical proteinATGTTTCCCAATGCCGAGCGCTACAACCACTCCACCGAATACGCCAACAAACTCGTCGACCGCATCGGCCAGACGCCGGCCTGGATTGCCTTGCGCATCGGCGTCACTGAAAAACGCATGCGCTACATTCTTGCGGGCTCGCGTACGATCAAGGGCGATACTACCGAAATCCTGATGTCTTACGCCGAGCAGTTCTGCCTGGAGTGCCTCGCCGCCGAGGCCAAGGCCGCCAAGGATCGCGCCCGCTCGAAAGCGGCAGGCCCTGCCAGCGACGCCTGAMFPNAERYNHSTEYANKLVDRIGQTPAWIALRIGVTEKRMRYILAGSRTIKGDTTEILMSYAEQFCLECLAAEAKAAKDRARSKAAGPASDANANANANANA
D1-35_053601662hypothetical proteinATGGATCATTACACCCCGCGCGCCTGGCAGCCGCACGAACGGCCGACGCTGCCCGGTTCGCCCTCGACGCCGTTGCATCCCACGCCCAAGCGGCTTGCCTACGCGCTGGTTGGCGTGCTGGTGGCGTTGACCGGGGGGTTGGGCAATTCGCTGGTGATCGCCAATCTGCCTTATCTGCAGGGGTCCCTGGGCGCCACCACGGCGGAGATGGCCTGGTTGCCCGCGGCCTACGTCATGACCAACGTCTCGATGAACCTGCTGCTGGTGAAATTTCGCCAGCAGTTCGGCTTGCGCGCGTTCACCGAAGTGTTCCTGGCGCTCTACGCCCTGGTGACCTTCGGCCATCTGTTCGTCAACGACCTGAACTCGGCGATCGCCGTGCGTGCGGCCCATGGCATGGTGGGTGCGGCCCTCAGCTCCCTGGGCCTGTATTATATGGTCCAGGCTTTCCCGGCCAAGTGGCGGCTAAAGGCGCTGGTGTTGGGCCTGGGCACTTCGCAATTGGCCTTGCCAATGGCCCGGCTGTTCTCTGAAGACCTGCTGCAAATCGCCGAATGGCGCGGCTTGTACCTGTTCGAACTGGGCATGGCGCTGCTGTCGCTGGGCTGCGTGCTGCTGCTCAAGTTGCCGCCGGGTGATCGCTTCAAGACCTTTGAAAAACTCGACTTCCTGACCTTCACCGTGCTCGCCAGCGGCGTCGCCTTGCTGTGCGCGGTGTTGTCGCTGGGGCGCATTGACTGGTGGTTGGAAGCGCCATGGATCGGCGTGGCCTCGGCGGCTTCCATCGTGCTGATCATGGCGGGCCTGGCGATCGAACATAACCGCAGCAATCCGATGCTGATGACGCGTTGGCTCGGCAGCGGGGTAATGATCCGTCTGGCCCTGGCGGTGATTCTGATCCGCATGGTGACTTCGGAACAATCCACTGGGGCGGTGGGTTTCCTGCAAGCGCTGAACATGAGCAGCCAGCAGATGCACAGCCTTTACGTGGTGATGCTGATCGGCAGTATTGCCGGGCTGGTGACCAGCGCGCTGACCATCAACCCGGCGCACCTGTTCATGCCGCTGATCATTTCCCTGGCGTTGATGGCCACGGGGTCGGTGATGGACAGTTATTCGAACAACCTGAGCCGTCCGCAAAACATGTACTTCAGCCAGTTCCTGCTGGCATTCGGCAGCACGTTCTTCCTCGGGCCGACGATGATCCTGGGGGTGCGCAATGTGCTGACCAACCCGCGAAACCTGGTGAGTTTTTCCGTGCTGTTCGGGATCTGCCAGAGCCTCGGCGGCCTGGTGGGGGCTGCGGTGCTCGGCACGTTCCAGGTAGTACGCGAGAAATTCCATTCCAGCCATCTGGTGGAGAACCTGAGTCAGTTCGACCCTCGCGTCGCCGCGCGGGTGGACAGCGGCGGCTCGGCGGTGGGTTCGCTGATTGCCGATCCGGGCCTGCGTCACCTGCAAGGCCTTCGCAGCCTCGCCACGGCCGCTACCCGCGAAGCCAACATACTTGCCTATAACGATGTGTTCATGCTGATCGCGGTGATCGCCGTGCTGACCATGATCTGGATTTCCATTCGTGCCCTGTGGCTGATGAGCACCACCCAGCCCGCCGCCGCAGCGCCTGCCCCTTCGACACAACCCAGCGGTGCCACCTCTTCATGAMDHYTPRAWQPHERPTLPGSPSTPLHPTPKRLAYALVGVLVALTGGLGNSLVIANLPYLQGSLGATTAEMAWLPAAYVMTNVSMNLLLVKFRQQFGLRAFTEVFLALYALVTFGHLFVNDLNSAIAVRAAHGMVGAALSSLGLYYMVQAFPAKWRLKALVLGLGTSQLALPMARLFSEDLLQIAEWRGLYLFELGMALLSLGCVLLLKLPPGDRFKTFEKLDFLTFTVLASGVALLCAVLSLGRIDWWLEAPWIGVASAASIVLIMAGLAIEHNRSNPMLMTRWLGSGVMIRLALAVILIRMVTSEQSTGAVGFLQALNMSSQQMHSLYVVMLIGSIAGLVTSALTINPAHLFMPLIISLALMATGSVMDSYSNNLSRPQNMYFSQFLLAFGSTFFLGPTMILGVRNVLTNPRNLVSFSVLFGICQSLGGLVGAAVLGTFQVVREKFHSSHLVENLSQFDPRVAARVDSGGSAVGSLIADPGLRHLQGLRSLATAATREANILAYNDVFMLIAVIAVLTMIWISIRALWLMSTTQPAAAAPAPSTQPSGATSSNANANANANA
D1-35_053611134emrA_2Colistin resistance protein EmrAATGACCGAGCCGACCACCACGACCACCAATGCCATCGCCGATACGCCGGAAGACCAGGCGCCTCCTGCCGCTCCGGCGACAAAACCGCGCTCCCTGCGAGTGCGGATGCTTTCATCCCTCGGATTCGCCGCAGTGGCGATCGTCGGCGTGCTGGTGGTGCTTTATGCCTGGCAATTGCCGCCGTTCAGCAGCGCCGTGGAAACCACCGAGAATGCTCTGGTGCGCGGGCAGGTGACGATCATCGGGCCGCAGCTCAGTGGTTATGTCCATGAAGTCCCGGTGCAGGACTTCCAGTTCGTCAAGGCCGGCGATCTGCTGGTGCGCCTGGATGACCGCATCTACCGGCAACGGCTCGACCAGGCGCTGGCGCAACTGGCGGTGCAACAGGCGGCCCTGGCCAACGTCGTACAGCAGCGCAACAGCGCCGAGGCGAGCATCAAGCTGCGCCAGGCCGCGCTGGCCGACAGCCAGGCCCAGGCCCACAAAGCCGCCGCCGACCTGCGCCGCAACGAGGCGTTGATAAAGGACGGTTCGGTGTCCAGGCGTGAACTGGATATCAGTCGCGCCGCCAGCGCCCAAGCCACCGCGGCCGTCGCCCAGGCCCAGGCCAGCCTGGAAATTGCCCGTCAGGACCGGCAAACCGTCATCGTCAACCGCGGCTCCCTGGAAGCGGCTGTCGCCAGCGCCGAGGCGGCGGTGCAACTGGCGCGCATCGACCTGTCCAACACGCGCGTGTTGGCGCCACGGGACGGTCAGCTGGGGCAGATCGGCGTGCGCCTGGGCGCCTACGTCAATTCCGGAGCGCAGTTGATGGCGCTGGTGCCGAACCAGAAGTGGGTGATCGCCAACCTCAAGGAAACCCAGATGGACAAGGTACGGGTCGGTCAGCCGGCAAGCTTCACCGTGGATGCCCTCGGCCATCGCCGCTTCCAGGGGCATGTCGAACGCATTTCCCCGGCCACCGGTTCCGAGTTCAGCCTGCTGCAGGCCGACAACGCCACCGGCAATTTCGTCAAGATTGCCCAGCGCGTTCCGGTTCGCATCACCGTGGATCCGGACCAGCCCGAAAGTGAACGCCTGCGGCCAGGGATGTCGGTGGTGGTGAGCATCGACACGGCCGCCGAACAGCAATGAMTEPTTTTTNAIADTPEDQAPPAAPATKPRSLRVRMLSSLGFAAVAIVGVLVVLYAWQLPPFSSAVETTENALVRGQVTIIGPQLSGYVHEVPVQDFQFVKAGDLLVRLDDRIYRQRLDQALAQLAVQQAALANVVQQRNSAEASIKLRQAALADSQAQAHKAAADLRRNEALIKDGSVSRRELDISRAASAQATAAVAQAQASLEIARQDRQTVIVNRGSLEAAVASAEAAVQLARIDLSNTRVLAPRDGQLGQIGVRLGAYVNSGAQLMALVPNQKWVIANLKETQMDKVRVGQPASFTVDALGHRRFQGHVERISPATGSEFSLLQADNATGNFVKIAQRVPVRITVDPDQPESERLRPGMSVVVSIDTAAEQQPGPT0013750_2383DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-MULTIDRUG_RESISTANCECE-BACTERIAL_FITNESS-OTHER_MULTIDRUG_EFFLUX_GENES,PGPT0013750-emrB-K03543NANA
D1-35_053621485malT_3HTH-type transcriptional regulator MalTATGAATCTGGAAGTCCCGAGCACCGATACCAATCGCCGCCAACTGCTGCAGATCATCGCCGGGCTATCGGATGGCGTGATGCTGATCGAAGTCGACCAGACGATTGCCTGGGCCAACGAAGCGGCCTTGACCATGCACGGAGTCGAGGAGCTTGGCGAGTTGGGCACCAACGCCAAGGAGTACGCCCGGCGTTTCAATTTGCGTTATCGCAACAACCATTCGCTCCCCGAAGACAACTATCCCATCGCCCGCGTGGCCCGCGGCGACGAATTCAGCGATGTGCTGGTGGAGGTGACGCCGGTGGCCGATCCGGACCGCACCTGGGTGCACCGCATCCGCAGCATGGTGCTGACCGACCGCAACGACGAGCCGGAATACCTGGTGCTGATTCTCAGCGATGCCACGGAATGGGCCAGCGCCGAACAGCGCTTCGAGAAAACCTTTGGCGCCAACCCGGCACCAGCGGTGATCTGCCGTCTCAGCGATTTGCGCTATATCAAGGTCAACGCGGGTTTCCTGGAAATGACCGGCTACAGCCGCGAAGAGGTGATCGGGCGTTCGGTTTATGAACTGGATGTGCTCGAGGCTGCCGAAAAGCGCGACCTAGCCGTCGAGCGCCTGGGGCAGGGCGCGACCATCCCGCAGATGCAGGCCGAACTGCGCTTGCCCGATGGCACCAACAAACAGGTGATCGTCGCTGGCCAGCCGCTGGACCTCCACGATGAAGACTGCATGCTGTTTTCGTTCATGGACATGGAGCCGCGGCGCAAGGCCGAAACGGCGCTGCGCCAGAGCGAGGAGCGTTTTGCCAAGTCGTTCCGGCTGTCACCGGTGCCGACGCTGATCTGTAGCGCCGAGCTGCAACTGGCGGAAATCAACGAGGCCTTCCTCCAGGCGACGGGTTATGCCAGCCAAGAGCTGTTGGGCAAGACCGTGGAGGAGATCGGCTTCCTCGAGAAGGAAGCGGCGGCGACGTTGTTCGGGCGCCTGGAAAAGACTGCCACCGTGTCCAGGGTCGACGTCAAGGTGCACAAGAAAGGCGGGGAGCAGATCGACTGCGAAGTGGCGGCCGATACCGTCATCATCCAGGACAAGCCATGTTTCCTGCTGGTGCTGATGAATATCACCGAACGCAAGCGCTCGGAGCTGGAGCTGGTAGCAGCCATCGAAGAGGTGATGAAGGACGCGTCGTGGTTCAGCCGCACCCTGATCGAAAAGCTGGCCAATGTGAAGAGCATCAATGCGCAGACCCCGACGACTTCTTTCACCGAGCTGACCGCCCGCGAACGTGACGTACTGGGGCTGATTTGCGAGGGTCTGGCGGACAAGGAAATCGCCGCGCGCTTGAAACTGGCCCCCAACACCGTGCGCAATCACGTGGCGACGCTGTATTCGAAACTCGACGTCCATAGTCGTAGCGAGGCGATTGTCTGGGCGCGGGAGCGGGGCTTGTTCGCGAACGAATGGCGGATAAAGGCACCATGAMNLEVPSTDTNRRQLLQIIAGLSDGVMLIEVDQTIAWANEAALTMHGVEELGELGTNAKEYARRFNLRYRNNHSLPEDNYPIARVARGDEFSDVLVEVTPVADPDRTWVHRIRSMVLTDRNDEPEYLVLILSDATEWASAEQRFEKTFGANPAPAVICRLSDLRYIKVNAGFLEMTGYSREEVIGRSVYELDVLEAAEKRDLAVERLGQGATIPQMQAELRLPDGTNKQVIVAGQPLDLHDEDCMLFSFMDMEPRRKAETALRQSEERFAKSFRLSPVPTLICSAELQLAEINEAFLQATGYASQELLGKTVEEIGFLEKEAAATLFGRLEKTATVSRVDVKVHKKGGEQIDCEVAADTVIIQDKPCFLLVLMNITERKRSELELVAAIEEVMKDASWFSRTLIEKLANVKSINAQTPTTSFTELTARERDVLGLICEGLADKEIAARLKLAPNTVRNHVATLYSKLDVHSRSEAIVWARERGLFANEWRIKAPNANANANANA
D1-35_05363249hypothetical proteinATGACCCATCTGGCTCCGTTACGTACCCGTCTCGAGCAAAGCTTTGCGCCACTGGCCTGTGAATGCAGCCTCAACGGCGACGGCACCCTGACCATTCGCCTGTACCGCCAGGAAAGCGGCGAGGTCGACCTGGTGGTGAGCGGCATGAGCGTCGACAGCATCCGCTCCGAAGAAGGCTTGAACAAGCTGATCGATGAACTGCGTTATGAGCTGTACAACACGCCGCTGCATCGCAGCGATCCAGCCTGAMTHLAPLRTRLEQSFAPLACECSLNGDGTLTIRLYRQESGEVDLVVSGMSVDSIRSEEGLNKLIDELRYELYNTPLHRSDPANANANANANA
D1-35_053641386sasA_20Adaptive-response sensory-kinase SasAATGTCATTGCTGAACCCCGCTAAGGGCTGGCGCTCCTCCAGCAGCCGCCTGCTGGCGCTGTACAGTTCGCTGTTCGTGATCTGGAGCGCGATCCTGATGGGGGTCATGTATTACGAGGTGTTCGGCTACCTTGACAGCCTCGCCAAGCATTCCCTGATGCAGCGCCAGCACCTGTTCGCGCGCATCCATGGCGAACAACTGGAAGACGCGCTCATGGCCAGCCTGTCGCTGGATGAACGCGGCGTCGACGCCTACGGCCTGTTCGATCCGCAACTGCGCCATCTGAGCGGACCGATCCAGCGCATCCCCGCCGATCTGCCGCTGGACGGCAAGATCCATATGCTCGGTGGCTGCGTCGACTCCGACGACCCGATGATCCCCTCCGACAGTTGCGACGCGGTCGCGACCCGGACCCAGGACGGCCGCTGGCTGGTATTGGCGCGGGACAACGGCTCGCTGTTCGCCGTGACCCGCATCATCCTGCACGCGCTGCTCTGGGGGGTCTCGTTGACTATCCTGCCGGGCATCGCCGGCTGGCACCTGTTGCGACGTCGACCGCTGCGGCGTATCCGCGCCTTGCAGGCCAGCGCGGAAGCCATCGTCGCCGGCGACCTGACCCATCGCCTGCCGCTGTCGAGCCGTCGCGATGAACTGGACATGCTGGCAGCCATCGTCAATGCCATGCTCGATCGCATCGAACGGCTGATGAATGAGGTCAAGGGCGTCTGCGACAACATTGCCCATGACTTGCGCACCCCGCTGACGCGCCTGCGTGCCCAGCTTTATCGCATCCAGCAAGAAGCGGCGGACAGCTCCCCGGAAGCGTTGCAGATGGATCAGGTGATCGCCGAGACCGATACGCTGATGGCGCGGTTTCGCGGTCTGCTGCGGATTTCGGAACTGGAGGACCAGCAGCGCCGCTCCGGTTTCGTGCGTCTGGATCCGTTGCAGTTGTTGCAGGAACTGCATGACTTCTATCTGCCGCTGGCCGAAGAACGCGAGCTGGTGTTCAAGCTGGAAGTGCCCGACACCCTGCCCTTGCTCAACGGTGACCGGGCATTGTTGTTCGAGGCGGTGTCGAACCTGTTGAGCAACTCGATCAAATTCACCCCATCGGGCGGCGAGGTGATCTTGCGGGGCGTCGACCAGGGCGACAGCAGCCGCATCGAAGTGCTCGACTCAGGCCCTGGCATTCCCGAGGCGGAACGCAAGGCGGTGTTCCGGCGCTTCTACCGCGCCGAGGGCAGCAGCCAGCACGGCGGCTTCGGCCTGGGCCTGTCGATCGTCGCGGCGATTGTCACGCTGCACGGGTTTACGCTGGAGGTGGATCGCAGCGAGCTGGGCGGGGCGCGGTTGGCGCTGGATTGTCGGGCGACGTTGCTTTGAMSLLNPAKGWRSSSSRLLALYSSLFVIWSAILMGVMYYEVFGYLDSLAKHSLMQRQHLFARIHGEQLEDALMASLSLDERGVDAYGLFDPQLRHLSGPIQRIPADLPLDGKIHMLGGCVDSDDPMIPSDSCDAVATRTQDGRWLVLARDNGSLFAVTRIILHALLWGVSLTILPGIAGWHLLRRRPLRRIRALQASAEAIVAGDLTHRLPLSSRRDELDMLAAIVNAMLDRIERLMNEVKGVCDNIAHDLRTPLTRLRAQLYRIQQEAADSSPEALQMDQVIAETDTLMARFRGLLRISELEDQQRRSGFVRLDPLQLLQELHDFYLPLAEERELVFKLEVPDTLPLLNGDRALLFEAVSNLLSNSIKFTPSGGEVILRGVDQGDSSRIEVLDSGPGIPEAERKAVFRRFYRAEGSSQHGGFGLGLSIVAAIVTLHGFTLEVDRSELGGARLALDCRATLLNANANANANA
D1-35_05365783cusRCOG0745Transcriptional regulatory protein CusRATGCATTTGCCGGCGCCCATGAACTTTTTTTCAGAAAGCCGACAGGTAATCTTTGGCAGAATGCTGCGCAATAGCTCCACTTCCCAACCGGTAACGCCCATGAACCGTATCCTGACCATCGAAGACGACGCCGTGACCGCCCGTGAAATCGTCGCCGAACTGACCCGCAACGGCCTGGACGTCGACTGGGTCGACAACGGCCGCGAGGGCCTGGAACGGGCTGTCAGCGGTGACTATGACCTGATCACTCTCGACCGGATGCTGCCCGAACTCGACGGCCTGGTGATCGTCACCCAGCTGCGCAGCATGGGCGTGGCCACGCCGATCCTGATGATCAGCGCCCTCTCCGATGTCGACGAGCGGGTGCGTGGCTTGCGGGCCGGCGGCGACGATTACCTGACCAAGCCGTTCGCCACCGACGAAATGGCCGCCCGGGTCGAAGTGCTGCTGCGCCGCAACAACGGCGCCCGCGAGCCGGAAACCGTGCTGCGGGTGGCGGACCTGGAGCTGAACCTGATCAGCCGCGAGGCCAGCCGCAACGGCCAGTTGCTGAGCCTGCTGCCCACCGAATACAAGTTGCTGGAATTTCTGATGCGCAACAGTGGCCAAATCCTCTCGCGCATGATGATTTTCGAAGAAGTCTGGGGTTATCACTTCGATCCGGGCACCAACCTGATCGACGTCCACATCGGTCGCCTGCGCAAGAAGATCGATCCGCCGGGCCTGGAACCGCTGATTCGCACGGTACGAGGCTCCGGCTATGTCATTGCTGAACCCCGCTAAMHLPAPMNFFSESRQVIFGRMLRNSSTSQPVTPMNRILTIEDDAVTAREIVAELTRNGLDVDWVDNGREGLERAVSGDYDLITLDRMLPELDGLVIVTQLRSMGVATPILMISALSDVDERVRGLRAGGDDYLTKPFATDEMAARVEVLLRRNNGAREPETVLRVADLELNLISREASRNGQLLSLLPTEYKLLEFLMRNSGQILSRMMIFEEVWGYHFDPGTNLIDVHIGRLRKKIDPPGLEPLIRTVRGSGYVIAEPRPGPT0004105_1002DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-BETA-LACTAM_RESISTANCE,PGPT0004105-cusR|copR|silR-K07665NANA
D1-35_05366327hcnAHydrogen cyanide synthase subunit HcnAATGATCAACTCCCAGAATGTTCTACGCCGTAAATTCGATATTCAACCGCTGAAACGGGCCGACATGAGCGTTCGCCTGGACGGCCAGACTGTCGACGCCGCCGAGGGTGAGACCGTACTCACCGTCATCCAGGCCATGGGCCAACGCCAGGTGGCCCGCAACGACCACGGCCAGGTCAGCGGTGCCTACTGCGGCATGGGCATTTGCCAATGCTGCCTCGTCAGGATCGATGGCCGCCACAAGCGACGGGCCTGCCAGACGCTGGTGCGACCGGGCATGCAGATCGAAACCCGGGCCAATCGCATCGCCGCAACGGAGGCGCCATGAMINSQNVLRRKFDIQPLKRADMSVRLDGQTVDAAEGETVLTVIQAMGQRQVARNDHGQVSGAYCGMGICQCCLVRIDGRHKRRACQTLVRPGMQIETRANRIAATEAPPGPT0008401_10DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_HYDROGEN_CYANIDE_METABOLISM,PGPT0008401-hcnA-K10814NANA
D1-35_053671419hcnB_4Hydrogen cyanide synthase subunit HcnBATGAACCTCGATCCGGTGATTGTAGGCGGCGGGCCGGCGGGTATGGCGGCGGCCATCGAGCTGGCCGCCAATGGCCTGCGTTGCACGCTGCTCGAAGAAGCGCCACGCCTGGGCGGCGTGGTGTACCGCGGGCCGTTGCGCGATGGCGTGAGCCTGGACTACCTGGGGGCGCGCTACAGTGAGACCCTGGCAAAGCTCCATGGGGAATTCCAGCGCAACGCCGGCCTGATTGATGTGCGACTGGGTAGTCGGGTCATCGGTGCCGAGGGGTTCCGGGCCCTGATGCTGCTGGACGGCGACGAGCGCTTGCGGGAAGTGGCCTATTCCCAGTTGATCCTGGCAGCCGGTTGTCATGAACGCAGTGTGCCGTTCCCCGGCTGGACACTGCCGGGGGTGATGATGCTCGGTGGCCTGCAATTGCAGATCAAGAGTGGCGTGGTTAAGCCGCCGAGCCCGGTGGTGATTGCCGGCACCGGCCCGTTGCTGCCCTTGGTGGCCTGCCAGCTGCACGCCTCGGGCGTCACCGTGGCGGGCGTCTACGAAGCCTGTGCCTTCGGCAGGATCGCCAAGGAAAGCCTGGCGTTATTGAACAAACCGCAATTGTTTCTCGATGGCCTGGGCATGCTGGCGTACCTCAAGCGGCACCGCATCCGGGTGCGCTATGGTTGGGGCGTGGTGCGCGCCGAGGGCGAGGGTGAACTGAGCAGCGTGACCGTTGCGCCTTACTCCGCCGACTGGAAACCGGACCTTGGACAGGCCGAACAGCTGCCGGCCGAGACGCTGGCGGTCGGCTACGGGTTTATCCCGCGCACGCAGTTGAGCCAGCAGATGGGGCTTGACCATGGCTTCAGCGAGGACGGCTACCTGCGCGCCGTGTCCGATGCCTGGCAGCGCAGCAGCGAGGCGCATATCCACCTGGCGGGCGATATGGGCGGGATCCGCGGCGGTGAAGCGGCCATGTTGAGCGGGCGCATCGCGGCATTGTCGGTCCTGCTGCAGCGTAATGTCCTGGATGAGGCCACGGCGCTGGAGCGCCGCAGGCGCTATCAGGCCCAATTGGACCGGATCATTCGTTTTCGCGCCGCCGTTGATCGCTACACCCGGCGCGGCGCCGGGCAAACCGCGCTGCCAGCCGCCGATACAGTGATCTGCCGTTGCGAACACGCCACCCGCGCGGACATCGACCGCGCCCTTGAACAGGGCGTGCAAGACATGGCCAGCCTGAAAATGCGCACCCGGGTGAGCATGGGCGATTGCCAGGGTCGCCTGTGTGTCGGCTACTGCAGCGACCGCCTGCGCGAAGCTACCGGACGGACCGATGTGGGCTGGCTACGGCCACGTTTTCCGATCGATCCGATTCCTTTCTCTGCGTTCCAGAACGACGACCCGGAGGCGCTATCCCATGATCAGGCACTATGAMNLDPVIVGGGPAGMAAAIELAANGLRCTLLEEAPRLGGVVYRGPLRDGVSLDYLGARYSETLAKLHGEFQRNAGLIDVRLGSRVIGAEGFRALMLLDGDERLREVAYSQLILAAGCHERSVPFPGWTLPGVMMLGGLQLQIKSGVVKPPSPVVIAGTGPLLPLVACQLHASGVTVAGVYEACAFGRIAKESLALLNKPQLFLDGLGMLAYLKRHRIRVRYGWGVVRAEGEGELSSVTVAPYSADWKPDLGQAEQLPAETLAVGYGFIPRTQLSQQMGLDHGFSEDGYLRAVSDAWQRSSEAHIHLAGDMGGIRGGEAAMLSGRIAALSVLLQRNVLDEATALERRRRYQAQLDRIIRFRAAVDRYTRRGAGQTALPAADTVICRCEHATRADIDRALEQGVQDMASLKMRTRVSMGDCQGRLCVGYCSDRLREATGRTDVGWLRPRFPIDPIPFSAFQNDDPEALSHDQALPGPT0008402_11DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_HYDROGEN_CYANIDE_METABOLISM,PGPT0008402-hcnB-K10815NANA
D1-35_053681260hcnC_2Hydrogen cyanide synthase subunit HcnCATGATCAGGCACTATGACGTAGTGATCGCCGGTGGTGGGGTGATCGGGGCGTCCTGCGCCTATCAACTGTCCAAGCGCAAGCACCTGAAGATCGCCCTGATCGATGCCAAGCGTCCAGGCAACGCCACCCGCGCGTCGGCCGGCGGCCTGTGGGCCATCGGCGAATCGGTGGGGCTGGGCTGTGGGGTGATTTTTTTTCGCATGATGTCGGCCAATCGCAAGCGCCAGGCCCAAGGCGCCGCCGTGGCGGTGGATGCCAGCACTCCGCATATCCTGCCCGACTCGTTTTTCGATTTCGCCTTGCAGTCCAACGCGATGTATCCGCAGTTGCACAGGGAACTGATCGAGCGTCACGGCATGGATTTCAAGTTTGAAGAGACCGGGCTCAAGTTCGTGATCTATGACGATGAGGACCGCTCCTACGCCGAACACATCGTCGCCTGCATTCCCCACCTGGCTGATCAGGTGCGCTGGCTCGACCAGGCGGCGTTGCGCGAGGCCGAGCCGAGTGTCAGCCATGAGGCCTTGGGCGTGCTGGAGTTTCTCTGCGACCACCAGGTCAGCCCGTTCCGCCTGGCCGACGCCTACACCGAGGGCGCGCGGCAGAATGGCGTTGATCTGTTTTTCAATACCAACGTGACTGACGTATTACGTGACGGCAGTCGGGTGACAGGGGTGAAAACCGCCGAAGTCGGCACGTTCAACTGCCGGACGTTGATCAATGCTGCCGGCGCCTGGGCGGCGGACTTGAGCGAGCAGGCGACGGGCGTGCGGATTCCGGTCAAGCCGGTCAAGGGGCAGATCCTGCTGACCGAGCGCATGCCGAAAATCCTCAGGGGATGCCTGACCACCAGCGATTGTTATGTGGCGCAGAAGGACAACGGCGAGATCCTGATCGGCAGCACCACGGAAGACAAAGGGTTCGACGTGACCACCACCTACCCTGAAATCGAGGGGTTGGTGCAAGGCGCGGTGCGGTGTATCCCGCAACTGGCCGACATCAACCTGAAACGCACCTGGGCCGGCCTGCGTCCCGGCTCACCGGATGAATTGCCGATCCTCGGGCCGATGCGCGGCGTGGAGGGCTACCTCAACGCCTGCGGGCATTTTCGCACCGGCATCCTGACCTCGGCCATCACCGGGGTGCTGCTGGACAAACTGGTGAACGACGAGCCGTTGCCGCTGGACATCACACCGTTCCTGGCGGACCGGTTTGGACTGGCGGCGGTTGCAGAGCCGAGGAAAATGCAACCGGCCTGAMIRHYDVVIAGGGVIGASCAYQLSKRKHLKIALIDAKRPGNATRASAGGLWAIGESVGLGCGVIFFRMMSANRKRQAQGAAVAVDASTPHILPDSFFDFALQSNAMYPQLHRELIERHGMDFKFEETGLKFVIYDDEDRSYAEHIVACIPHLADQVRWLDQAALREAEPSVSHEALGVLEFLCDHQVSPFRLADAYTEGARQNGVDLFFNTNVTDVLRDGSRVTGVKTAEVGTFNCRTLINAAGAWAADLSEQATGVRIPVKPVKGQILLTERMPKILRGCLTTSDCYVAQKDNGEILIGSTTEDKGFDVTTTYPEIEGLVQGAVRCIPQLADINLKRTWAGLRPGSPDELPILGPMRGVEGYLNACGHFRTGILTSAITGVLLDKLVNDEPLPLDITPFLADRFGLAAVAEPRKMQPAPGPT0008403_5DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-VOLATILE_RELATED_HYDROGEN_CYANIDE_METABOLISM,PGPT0008403-hcnC-K10816NANA
D1-35_05369612yibF_2COG0625putative GST-like protein YibFATGAAACTGATCGGCATGCTGGACTCGCCCTATGTGCGACGCGTCGCCATTACCGCCAAGCGCCTGGGCATCGCCCTGGAACACCAATCAGTTTCGGTGTTCAGGCATTTCGACCAATTCCAGCGCATCAACCCGGTGGTCAAGGCCCCGACCCTGGTGCTGGATGATGGCTCGGTGTTGATGGACTCGACCTTGATCATCGATTACCTGGAAACCTTGGCCGGGCCCGGGAAGAGCCTGATGCCGAGCGATCCGGGGCAACGGTTGCAATCGTTGCAACTGATCGGGTTGGCATTGGCGGCGTGCGAAAAATCGGTGCAGATCTATTACGAACGCACTTTGCGCCCAGCGGAAATCCAGCATGAGCCGTGGCTCGCGCGGGTGTCGGGCCAGTTGCTGGCGGCATATGGCGAGTTGGAAAAGGCATTGGTGAAACAACCATTGCCCACCGATGGCTCGCTCGACCAGGCCGGCATCAGCGTCGCGGTGGCATGGACTTTCACCAACCTGTTGGTGGCCGATCAGGTGCAAGGCAAGGCCTTCCCACAGATCAGCGCGTTTACCGCTTATGCCGAAGGCCTGGAAGCGTTTGTCAGTACACCGGTGGAATAAMKLIGMLDSPYVRRVAITAKRLGIALEHQSVSVFRHFDQFQRINPVVKAPTLVLDDGSVLMDSTLIIDYLETLAGPGKSLMPSDPGQRLQSLQLIGLALAACEKSVQIYYERTLRPAEIQHEPWLARVSGQLLAAYGELEKALVKQPLPTDGSLDQAGISVAVAWTFTNLLVADQVQGKAFPQISAFTAYAEGLEAFVSTPVEPGPT0013170_20299DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNITROSATIVE|OXIDATIVE_STRESS|ROS_SCAVENGINGDETOXIFICATION_OF_PEROXIDIZED_COMPOUNDS,PGPT0013170-gst-K00799NANA
D1-35_05370921murRHTH-type transcriptional regulator MurRATGACCCGCCCCGATCTGCCGGTGCCGTCCGAGAGCGCGTCCGAACCCGCCCTCCCCAGCCCACCGATCAACGCCGAGCGGCTGCTGCAATTGATTACCGAGGAGTACGAAGGCCTGCCGCGCCAGCTCAAACGCATCGCCAGCTACATGAGCCAGCAAAGCGACCGGATCATGGTCGATCGCATCAGCGACATTGCCCGGGAGTGCGAAGTGCACCCCTCGGCCATCGTGCGTTTTTCCCAGCGCTTCGGCTTCAGCGGGTTCAGCGAAATGCAGGCGCTGTTTCGCGAGGCCTACACCCACAAGACCACGCCGGTGCAGAACTACCAGCAACGCATTCGCAGCATGATCGCCAACAAGTCGCAGAAGGCCAGCGCCGGCGATCTCGCGCGCGAATGCGTCAACGCCACCCTGTCGGGCATCGAGCGCCTGGGGTTGGAACTCGACGACGAGGCGTTCGAAAAAGCCGTCGACCTGGTGGTCAACGCCGATAACATCTACGTCGTTGGTGTGCGGCGCTCGTTCGCGGTGGCCGATTACCTGGTCTATAACCTTCAGCACACCAACAAGCGCATCCACCTTGTGTCGGGCCTGGGCGGCAGTTATCGCGAGCAGATGCGCAGCGTCCGGGCCAATGATCTGGTCATCGCCATCAGCTTTACCCCGTACGGCAAGGAAACCCAGCACTGCCTGCGCATCGCCCAGCATCACCAGGCCAAGACGCTGATCATCACCGACAGCAACCTGTCGCCCCTGGCCAAGCGGGCCAATGCGGTGCTGCTGGTGAACGAAGGCAGCTCGTTCGCCTTTCGCTCGTTGAGCGCCACCCTGTGCCTGTGCCAGGCGCTGTTCATCGCCGTGGCCTACCGGCTTGAACTCAAGGTTGATGAAATCCATGAACAGGTCGGATTCGAAGATTGAMTRPDLPVPSESASEPALPSPPINAERLLQLITEEYEGLPRQLKRIASYMSQQSDRIMVDRISDIARECEVHPSAIVRFSQRFGFSGFSEMQALFREAYTHKTTPVQNYQQRIRSMIANKSQKASAGDLARECVNATLSGIERLGLELDDEAFEKAVDLVVNADNIYVVGVRRSFAVADYLVYNLQHTNKRIHLVSGLGGSYREQMRSVRANDLVIAISFTPYGKETQHCLRIAQHHQAKTLIITDSNLSPLAKRANAVLLVNEGSSFAFRSLSATLCLCQALFIAVAYRLELKVDEIHEQVGFEDNANANANANA
D1-35_053711938iolC5-dehydro-2-deoxygluconokinaseATGGGCCAGACTCGTTTTGCCAGTGGACGTCAATTGGATGTGATCTGCCTGGGGCGCCTGGGCGTCGATCTCTACGCGCAGCAAGTCGGTGCGCGGCTTGAGGATGTCTCGAGCTTCGCCAAGTACCTGGGTGGCTCATCTGCCAACATCGCCTTTGGCACGGCCCGTCTCGGGCTTCGGTCGGCGATGCTGAGCCGGGTGGGCGATGATCATATGGGGCGCTTCCTGGTGGAATCCCTGATGCGCGAAGGCTGCGACGTCAGCGGCATCAAGGTCGACCCCGAGCGACTGACAGCCATGGTGTTGCTCGGCATCAAGGACCGCGAGACCTTTCCCCTGGTGTTCTACCGTGAAAATTGCGCGGACATGGCGCTACGGTCCGAGGACATCGACGAAGCCTTCATCGCGTCCAGCAAGGCGCTGTTGATCACCGGCACGCACTTCTCCACCGACAGCGTCTACCAGGCCAGCATCCAGGCGCTGGACTATGCGCAGACGCACCAGGTCAAACGTATCCTCGATATCGACTACCGCCCGGTACTCTGGGGCCTGGCGCCCAAGGCCGATGGCGAAACCCGTTTTGTCGCCGACCGCAAGGTCAGCCAGCACGTACAAGGCATCCTGGCGCGTTTCGACCTGATCGTCGGCACCGAAGAAGAGTTTTTGATCGCCGGTGGCAGCGAAGATCTGCTGGCCGCGCTGCGTACCGTGCGCTCGCTGACGGCGGCGACCCTGGTGGTGAAGCTTGGCCCGCAAGGTTGCACGGTGATCCACGGCGATATCCCGAACCGCCTGGAAGACGGCGCCATCTACCCCGGCGTGCGGGTCGAGGTGTTGAATGTGCTGGGCGCGGGCGATGCGTTCATGTCGGGTTTCCTCGCCGGTTGGCTGGAGGACGCCAGCGATGAGCGCTGCTGCCAGTTGGCCAACGCCTGTGGCGGGTTGGTGGTGTCGCGTCATGCCTGCGCCCCGGCGATGCCGACCCGGGCCGAGCTGGATTACCTGTTTGCCAGCCCGGTGCCGATCACCCGCCCTGACCAGGATGTCGTGCTGCAACGGCTGCATCAGGTCAGCGTGCCGCGCAGGGTCTGGAAACAGCTGTTCATCTTTGCCTTTGACCATCGCTGGCAGTTGGTGGAACTGGCCCAGCGGGGCGGTCGTGGCCTCGACAGCATCGGCGAGCTCAAGCAACTGTTCATCCAGGCCGTGGAGCGGGTCGAGGCTGACCTGCAACGCCAGGGCATCGAGGCGGATGTCGGTCTGCTGGCCGACCAGCGTTTCGGCCAGGATTCCCTGAATGCGGCCACCGGGCGCGGCTGGTGGGTCGCGCGGCCGGTGGAGGTGCAGGGCTCGCGGCCGCTGGCGTTCGAACACGGCCGTTCCATCGGCAGCAACCTGATTGCCTGGCCACAAGAGCAGATCATCAAATGCCTGGTGCAATTTCATCCTGACGACGAACCGCTGCTGCGCCTGGAGCAAGAGGCGCAATTGATGGGGTTGTACAAGGCGTCCCAGGCCAGCGGCCATGAATTGCTGCTGGAGGTCATTCCGCCCAAGGATCATCCATCGGCCCATCCGGACGTGCTGTATCGGGCGCTCAAGCGGCTCTACAACCTGGGTATTTTCCCGGCGTGGTGGAAAATCGAGGCGCAGACCTGCGATGAGTGGAAACAACTTGATGAGCTGATCCAGCAGCGCGATCCGTATTGCCGTGGCGTGGTGCTGCTGGGCCTCAACGCCCCTGCGGCCGCGTTGGCCGAAGGCTTTCGCCAGGCCAGCCAGAGCAGCACTTGCAGAGGGTTTGCCGTGGGCCGGACGATCTTCCAGGAACCGAGCCGCGCCTGGCTGGCCGGGGAGATCGATGATGAAACGCTGATCCGGGATGTGCAGGGCCGGTTTGTGGAATTGATCGAGGCCTGGCGCGCTGCGCGCAGTTAAMGQTRFASGRQLDVICLGRLGVDLYAQQVGARLEDVSSFAKYLGGSSANIAFGTARLGLRSAMLSRVGDDHMGRFLVESLMREGCDVSGIKVDPERLTAMVLLGIKDRETFPLVFYRENCADMALRSEDIDEAFIASSKALLITGTHFSTDSVYQASIQALDYAQTHQVKRILDIDYRPVLWGLAPKADGETRFVADRKVSQHVQGILARFDLIVGTEEEFLIAGGSEDLLAALRTVRSLTAATLVVKLGPQGCTVIHGDIPNRLEDGAIYPGVRVEVLNVLGAGDAFMSGFLAGWLEDASDERCCQLANACGGLVVSRHACAPAMPTRAELDYLFASPVPITRPDQDVVLQRLHQVSVPRRVWKQLFIFAFDHRWQLVELAQRGGRGLDSIGELKQLFIQAVERVEADLQRQGIEADVGLLADQRFGQDSLNAATGRGWWVARPVEVQGSRPLAFEHGRSIGSNLIAWPQEQIIKCLVQFHPDDEPLLRLEQEAQLMGLYKASQASGHELLLEVIPPKDHPSAHPDVLYRALKRLYNLGIFPAWWKIEAQTCDEWKQLDELIQQRDPYCRGVVLLGLNAPAAALAEGFRQASQSSTCRGFAVGRTIFQEPSRAWLAGEIDDETLIRDVQGRFVELIEAWRAARSPGPT0018480_237DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0018480-iolC-K03338NANA
D1-35_05372894iolE_3COG1082Inosose dehydrataseATGCCCGCTATTCGAATTGGCATCAACCCGATTTCCTGGAGCAACGACGACTTGCCATCGTTGGGCGGCGAGACGCCGTTGAGCACGGCGTTGAGCGAAGGCAAGGAAATCGGCTATGAAGGTTTCGAGCTCAATGGCAAGTTTCCCAAGGACGCCAAGGGCGTCGGCGACGTGTTGCGCCCTTACGATCTGGCGCTGGTCTCCGGCTGGTATTCCAGTCGACTGGCGCGGCGTTCGGCGGCCGAGGAGATCGACGCCATCGCCAGCCATGTCGAGCTGCTGGCGCAGAACGGCGCAACGGTGCTGGTCTATGGCGAAGTGGCCGATTCGATCCAGGGCCAGCGCATTCCGTTGATCGAGCGGCCACGCTTTCACACTGACGAGGCCTGGCAGGCCTATGCCGACAAGCTCACCGAGCTGGCCCGCTTCACCTTGTCACAAGGCGTGCGCCTGGCCTACCACCACCACATGGGCGCCTACGTTGAATCGCCTTCGGACATCGACAAGCTGATGGCGCTGACCGGCAGCGAGGTCGGCCTGTTGTTCGATTCGGGCCATTGCTACATGGGCGGCGGCGAACCGCTGCAGGTGCTGCGCAAACACATCGAGCGCATCTGCCATGTGCACTTCAAGGACGTGCGCAAACCCGTGGTGCAGTTGGCGCGCAACAACCTCTGGAGCTTTCCGGACTGCATCATCAACGGCACGTTCACCGTGCCTGGAGATGGCGATATCGACTTCGCTGCGTTGCTCGATGTCCTGCTGGCTGCCGATTATCAGGGCTGGCTGGTGGTGGAAGCCGAGCAGGACCCGGCGGTGGCGCCGAGTTATATCTATGCCAAGAAGGGCTACGACACCTTGCGTGCCCTGTTGCAGGAGAGAACTGCGCCATGAMPAIRIGINPISWSNDDLPSLGGETPLSTALSEGKEIGYEGFELNGKFPKDAKGVGDVLRPYDLALVSGWYSSRLARRSAAEEIDAIASHVELLAQNGATVLVYGEVADSIQGQRIPLIERPRFHTDEAWQAYADKLTELARFTLSQGVRLAYHHHMGAYVESPSDIDKLMALTGSEVGLLFDSGHCYMGGGEPLQVLRKHIERICHVHFKDVRKPVVQLARNNLWSFPDCIINGTFTVPGDGDIDFAALLDVLLAADYQGWLVVEAEQDPAVAPSYIYAKKGYDTLRALLQERTAPPGPT0016785_1414DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RHIZOPINE_METABOLISMCE-BACTERIAL_FITNESS-RHIZOPINE_CATABOLISM,PGPT0016785-mocC-K03335NANA
D1-35_05373810iolBCOG37185-deoxy-glucuronate isomeraseATGAGCCTGCTGATCAAGAGCAATCCCAGCGACCGGACCATGGTTGAACTGCCACGCGACGCGCTGGAATACGTCGGTTTTGCCGCCTACCGCTTGAGCCTTGGCGAAAGCCTGCCGGTGGCCGCCGCAGACCGGGAATTGTGCGTGGTACTGCTCAGCGGCCGCATCAACCTCAAGGGCGAAGCACCGGGGCAGGGCGCCTTCGATTGGGACAACCTCGGCGATCGCCAGTCGGTATTCGAGGACAAATCCCCTTACGCCGCGTATCTGCCGCCCGGCAGCCAGGCCCAGATCACCGCGTTGAGCGATGTGCAAGTGGCGGTGTGCGCCGCGCCGGGCGGCGCGCCGAATGCGTACGGCCCACGGCTGATCCGTCCCGAGAGCATGAAGCGCAGCGTGCGCGGCAAGGGCGCCAATACCCGCTACGTCTGCGACATCCTGCCGGACAGCGAGCCGGCCCATTCGCTGCTGGTGGTGGAAGTGCGCACGCCGTCGGGGCATTCGTCCAGCTATCCGCCGCACAAGCACGACACCGACGACTTGCCGCACCAGAGCTTTCTCGAAGAGACCTATTACCACCAGGTCAACCCTTCCCAGGGCTTCGTGTTCCAACGGGTCTACACCGACGATCGCAGCATCGACCAGGCCATGGCCGTGGAAAACAGCGATCTGGTCGTGGTGCCCAAGGGTTACCACCCGGTCAGCGTGCCCTACGGGTACGAGTCGTATTACCTGAACGTCATGGCCGGTCCGAAGCGGGTCTGGCAATTCCATAACGATCCGCAGCATAGCTGGCTGCTCGACCTCTGAMSLLIKSNPSDRTMVELPRDALEYVGFAAYRLSLGESLPVAAADRELCVVLLSGRINLKGEAPGQGAFDWDNLGDRQSVFEDKSPYAAYLPPGSQAQITALSDVQVAVCAAPGGAPNAYGPRLIRPESMKRSVRGKGANTRYVCDILPDSEPAHSLLVVEVRTPSGHSSSYPPHKHDTDDLPHQSFLEETYYHQVNPSQGFVFQRVYTDDRSIDQAMAVENSDLVVVPKGYHPVSVPYGYESYYLNVMAGPKRVWQFHNDPQHSWLLDLPGPT0018475_877DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0018475-iolB-K03337NANA
D1-35_053741503bauC_2COG1012Putative 3-oxopropanoate dehydrogenaseATGAGCGACACCCCGGTAATAGGCCATTACATCAACGGTCAGGTGCACAGCAACGACTCCGCGCGGTTCAGCAACGTCTTCAATCCCGCTACCGGCACGGTACAGGCCCGGGTGGCGCTGGCCGAACCGGGTACCGTCGAGGCAGCGGTGGCTTCGGCGCTGGCGGCCTTTCCCGGCTGGTCCGAGCAGTCGTCGTTGCGCCGTTCCCGGGTGATGTTCAAGTTCAAGGAACTGCTTGACCGCCACCACGACGAGTTGGCGCAGATCATCAGCCGCGAGCACGGCAAGGTACTCTCCGACGCCCACGGCGAAGTCACCCGGGGCATCGAGATCGTCGAGTACGCCTGCGGTGCGCCGAGCCTGCTCAAGACCGATTTCAGCGACAACATCGGCGGTGGCATCGACAACTGGAACCTGCGCCAGCCCCTGGGCGTCTGTGCCGGGGTCACGCCATTCAACTTCCCGGTGATGGTGCCGCTGTGGATGATTCCCCTGGCGCTGGTGGCGGGCAACTGCTTCATCCTCAAGCCTTCGGAGCGCGACCCGTCCGCCAGTCTGCTGATGGCTCGGTTATTGACCGAGGCCGGGTTGCCGGATGGCGTGTTCAACGTGGTCCAGGGCGACAAGACGGCGGTGGATGCGCTGTTGCAGCACCCGGACATCGAGGCGATCTCCTTTGTCGGCTCCACGCCCATCGCCGAATACATCCACCAGCAGGGCACCGCGAACGGCAAGCGCGTGCAGGCCCTGGGCGGGGCGAAAAACCACATGATCGTCATGCCCGACGCCGACCTCGACCAGGCGGCGGATGCGCTGATCGGAGCGGCTTACGGCTCGGCCGGTGAGCGCTGCATGGCGATCTCTATCGCCGTGGCGGTGGGTGACGTCGGCGATGAGCTGATCGCGCGATTGTTGCCACGCATCGACCAGTTGAAGGTCGGCAATGGCCAGCAGCCCGGCACCGACATGGGGCCGCTGGTGACTGCCGAGCACAAGGCCAAGGTTGAAGGTTTCATCGATTCCGGCGTAGCCGAGGGCGCGCGGCTGATCGTCGACGGGAGGGGCTTCAAGGTGCCCGGGGCCGATCAGGGGTTCTTTGTCGGGGCGACGCTGTTCGACCAGGTCACTGCCGAAATGAGCATCTACCAGCAGGAGATTTTCGGCCCGGTGCTGGGGATCGTTCGTGTGCCGGATTTCGCCACGGCGGTCGCGCTGATCAACGCCCATGAATTCGGCAACGGCGTGTCGTGTTTTACCCGTGACGGCGGCATCGCCCGGGCATTCGCCCGCAGCATCAAGGTCGGCATGGTCGGTATCAACGTACCGATTCCGGTGCCCATGGCCTGGCACTCCTTTGGCGGCTGGAAGCGCTCGCTGTTCGGTGATCACCACGCTTATGGCGAGGAAGGCCTGCGCTTCTACAGTCGCTACAAGAGCGTGATGCAGCGCTGGCCGGACAGCATCGCCAAGGGTCCCGAATTCAGCATGCCCACTGCTCAATAAMSDTPVIGHYINGQVHSNDSARFSNVFNPATGTVQARVALAEPGTVEAAVASALAAFPGWSEQSSLRRSRVMFKFKELLDRHHDELAQIISREHGKVLSDAHGEVTRGIEIVEYACGAPSLLKTDFSDNIGGGIDNWNLRQPLGVCAGVTPFNFPVMVPLWMIPLALVAGNCFILKPSERDPSASLLMARLLTEAGLPDGVFNVVQGDKTAVDALLQHPDIEAISFVGSTPIAEYIHQQGTANGKRVQALGGAKNHMIVMPDADLDQAADALIGAAYGSAGERCMAISIAVAVGDVGDELIARLLPRIDQLKVGNGQQPGTDMGPLVTAEHKAKVEGFIDSGVAEGARLIVDGRGFKVPGADQGFFVGATLFDQVTAEMSIYQQEIFGPVLGIVRVPDFATAVALINAHEFGNGVSCFTRDGGIARAFARSIKVGMVGINVPIPVPMAWHSFGGWKRSLFGDHHAYGEEGLRFYSRYKSVMQRWPDSIAKGPEFSMPTAQPGPT0002295_2096DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ALCOHOL_UTILIZATIONPLANT_DERIVED_INOSITOL_DERIVATE_DEGRADATION,PGPT0002295-mmsA|iolA-K00140NANA
D1-35_05375822hypothetical proteinATGAACAAGCCCCTGCGTTTTGCCTTGAACCGAATGGTTGCCCCACGCCTGTCGCTGCCCGCTTTCATCGACCTGGCGCTGGCGTTGAAAACCGATGCCATCGAAATCCGCAATGACCTCAAGGGTGTCGAAATCGAAGACGGCATGCCGCCCGCCCGGGTCCGTGAGCTGTGCGACGAACGCGGCGTCAAGGTGCTGTCGATCAACGCCCTGTACCCGTTCGACGTATGGAATGAAGAGCGCCGCGCCCAGGCCGTGCGCCTGGCCGATTACGCCCGCGAGTGTGGCGCCGAGGGCCTGGTGATGTGCCCGCTCAACGACCGCGCCGACCCGCGCAACGCCGCCGAACGCGCGGCGGGGCTACGCACCGCGCTCAGTGAGCTGGCGCCGATCCTGCGCGCCTTCGGCATCTACGGTTTTATCGAACCCCTGGGGTTCGAGGAGTGCTCGTTGCGGCGCAAACGCGCGGCGGTGGAGGCGATCAAGGCCATCGGCGGGCTGGATGTGTTCCGCCTGGTGCATGACACCTTTCACCATCACCTGGCCGGCGAGGAGGAATTTTTTCCCGAGCTGACCGGGCTGGTGCACATCTCCGGCGTCGAGGATGCGCAGGCACCGTTGGCGAGTATTCGCGACGGCCACCGGGTGCTGGTGGGCGACGCCGACATCCTTGGCAATGCCGCGCAGATCGAGGCGCTGCGCGCGGGCGGTTATGAAGGCTACCTGTCCTTCGAGCCGTTTGCCGAAAGCGTCCATGAACTGGCCGATATCCGCCAGGCGCTGGGGGCGAGTATGAGCCACCTGCAAAGCTCGCAGGCCTGAMNKPLRFALNRMVAPRLSLPAFIDLALALKTDAIEIRNDLKGVEIEDGMPPARVRELCDERGVKVLSINALYPFDVWNEERRAQAVRLADYARECGAEGLVMCPLNDRADPRNAAERAAGLRTALSELAPILRAFGIYGFIEPLGFEECSLRRKRAAVEAIKAIGGLDVFRLVHDTFHHHLAGEEEFFPELTGLVHISGVEDAQAPLASIRDGHRVLVGDADILGNAAQIEALRAGGYEGYLSFEPFAESVHELADIRQALGASMSHLQSSQAPGPT0018495_360DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0018495-iolI-K06606NANA
D1-35_053761932iolDCOG39623D-(3,5/4)-trihydroxycyclohexane-1,2-dione hydrolaseATGACCACAACACGACTGACCATGGCCCAGGCCCTGGTGAAATTCCTCGATAACCAGTACATCGAGGTCGATGGCGTCCAGAGCAAGTTCGTCGCCGGGGTGTTTACCATTTTCGGCCACGGCAACGTGCTGGGCCTCGGCCAGGCACTGGAGCAGGACAGCGGCGACCTGGTGGTCCATCAGGGCCGCAACGAGCAGGGAATGGCCCATGCCGCCATCGGCTTTGCCAAGCAGCACCTGCGGCGCAGGATCTACGCCTGTAGCTCGTCGGTCGGCCCCGGTGCGGCGAACATGCTGACCGCCGCCGCCACCGCGACGGCCAACCGCATTCCTTTGCTGCTGTTGCCCGGCGATGTCTACGCCAGCCGCCAACCCGACCCGGTGCTGCAGCAGATCGAGCAGTTCCATGACCTGAGCATCAGCACCAACGATGCGTTCAAGGCCGTGAGCAAATACTGGGATCGGATCAACCGCCCCGAGCAACTGATGACCGCCGCGATCCAGGCGATGCGCGTGCTCACCGATCCGGCCGAAACCGGCGCGGTGACGCTGGCGCTACCCCAGGATGTACAGGCCGAGGCCTACGATTACCCGGATTATTTCCTGCAAAAACGTGTCCACCGCATCGACCGTCGCCCGGCCACCGAGGCGATGCTCGGCGATGCCTTGGCGCTGCTCAAGGGCAAGCGCCGGCCGTTGATCATCTGCGGTGGTGGCGTCAGATATTCAGGAGCCAACGCCGCGTTGCAGGCCTTAGCCGAGCGTTTCGACATCCCCTTCGCCGAAACCCAGGCGGGCAAAAGCGCCGTGGTCTCCAGTCATCCATTGAACGTCGGCGGCGTCGGCGAAACCGGTTGCCTGGCGGCGAACCTGCTGGCCAAGGAAGCGGACCTGATCATCGGCGTTGGCACCCGCTACAGCGATTTCACCACGGCCTCGAAATGGCTGTTCCAGCATCCCGAGGTGCAGTTTCTCAACCTCAACATCAGCCCGTGCGATGCCTTGAAGCTCGACGGTGTGCAACTGCTCGCCGATGCGCGTTCCGGGCTTGAGGCTTTGTCCGCCGCGATGGGCGCCTATCGCGCCGAATGGGGCGGGCAGATCGCCGATGCCAAGGCGCAGTTGCAGGCGGAAGTGGACCGGGTCTACCAGGCCGATTTCCAGGCTGATGACTTCGTCCCCGAGATCAACGACCACATGGACCCAGCGGTGTTTCGCGAGTTCATCGAGCTCACCGGATCCTGCCTGACCCAGAGCCGCGTGCTCGGCACCCTCAACGAAACCCTGGCCGATGATGCCGTCATCGTCGCCGCCGCCGGCAGCCTGCCGGGTGATTTGCAGCGCAGCTGGCGCAGCAAGGGCGTGAATACCTACCACGTCGAATATGGCTATTCGTGCATGGGCTACGAGGTCAATGCCGCCCTGGGCGTGAAGCTCGCCGAGCCGGACAAAGAGGTCTACGCGCTGGTGGGCGATGGCTCCTACATGATGCTGCACTCCGAACTTGCCACCTCGATCCAGGAGCGCCGCAAGATCAATGTGGTGCTGCTGGACAACATGACGTTCGGATGCATCAACAACCTGCAGATGGAACACGGCATGGACAGCTTCGGCACCGAGTTCCGCTTTCGCAACCCCGAGACGGGCAAGCTCGACGGCGCCTTCGTGCCGGTGGATTTCGCCATGAGCGCGGCGGCCTACGGTTGCAAGACCTACAAGGTCAAGACACTGGAGGAACTGCACGCCGCGCTGGCCGACGCCCGACTCCAGACGGTCTCGACGCTGATCGACATCAAGGTCCTGCCCAAGACCATGATCCACAAGTACCTGTCGTGGTGGCGGGTCGGCGTGGCGCAAGTCTCTACCAGCGCCCGTACCGATGCCGTCGCCAAGACCCTCAACGAACGACTGGCCAAGGCCCGTCAATACTGAMTTTRLTMAQALVKFLDNQYIEVDGVQSKFVAGVFTIFGHGNVLGLGQALEQDSGDLVVHQGRNEQGMAHAAIGFAKQHLRRRIYACSSSVGPGAANMLTAAATATANRIPLLLLPGDVYASRQPDPVLQQIEQFHDLSISTNDAFKAVSKYWDRINRPEQLMTAAIQAMRVLTDPAETGAVTLALPQDVQAEAYDYPDYFLQKRVHRIDRRPATEAMLGDALALLKGKRRPLIICGGGVRYSGANAALQALAERFDIPFAETQAGKSAVVSSHPLNVGGVGETGCLAANLLAKEADLIIGVGTRYSDFTTASKWLFQHPEVQFLNLNISPCDALKLDGVQLLADARSGLEALSAAMGAYRAEWGGQIADAKAQLQAEVDRVYQADFQADDFVPEINDHMDPAVFREFIELTGSCLTQSRVLGTLNETLADDAVIVAAAGSLPGDLQRSWRSKGVNTYHVEYGYSCMGYEVNAALGVKLAEPDKEVYALVGDGSYMMLHSELATSIQERRKINVVLLDNMTFGCINNLQMEHGMDSFGTEFRFRNPETGKLDGAFVPVDFAMSAAAYGCKTYKVKTLEELHAALADARLQTVSTLIDIKVLPKTMIHKYLSWWRVGVAQVSTSARTDAVAKTLNERLAKARQYPGPT0018485_395DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_AMINO_ACID_DEPENDENT_PATHWAYSPLANT_DERIVED_OPINE_METABOLISM,PGPT0018485-iolD-K03336NANA
D1-35_053771011iolG_4COG0673Inositol 2-dehydrogenase/D-chiro-inositol 3-dehydrogenaseATGTCTTTGAAGCTGGGCGTCATCGGCACCGGGGCCATCGGCCAGGACCATATCCGTCGTTGCAGCCAGACGTTGCTCAACAGCCAGGTCGTCGCGGTGACCGACATCAACCTGGTGCAAGCGGCGAAAGTGGTGGCCGACCTGAAGTTGACCGCCGAGGTCTATCCCGACGGCCATGCACTGATCAAGGCGCCGGACGTCGAGGCGATCCTCGTCACGTCCTGGGGCCCGAGTCATGAAGAATTCGTGCTGGCGGCCATCGCCGCCGGCAAGCCGGTGTTCTGTGAGAAGCCGTTGGCCGTTACCGCCGAAGGTTGCCGCCGGATCGTCGAAGCCGAAGTGGCCCACGGCAAGCGCCTGGTACAGGTCGGGTTCATGCGCCCCTACGATGAAGGTTATCGGGCGCTCAAGTCGGTGATCGACAGCGGACAGATCGGCGAGCCGTTGATGCTGCACTGTGCCCACCGCAACCCCAGCGTGGGCGAAAACTACAAGACCGACATGGCCATCACCGACACCTTGATTCACGAGCTGGATGTGTTGCGCTGGTTGCTGGCCGACGACTACGTCTCGGTGCAGGTGGTGTTTCCACGCAAGACCAGCAAGGCCCTGGCGCACTTGCGCGATCCACAGATCGTCCTGCTGGAAACCGCCAAGGGCACGCGCATCGACGTTGAAGTGTTCGTCAATTGCCAGTACGGCTACGACATCCAGTGCGAAGTGGTGGGGGAGACCGGCATCGCCAGGCTGCCAGAACCGTCCCAGGTGCAACTGCGCAGCGGCGCCAAGCTTTCCAATGCGATCCTGATGGACTGGAAAGATCGGTTCATCGGCGCTTACGACGTCGAACTGCAGGCCTTCATCGACGGCGTGCGCGCCGGCCAGGTGGGCGGCCCCTCGGCCTGGGATGGGTTCGCCGCGGCGGTGGCGGCGGACGCGTGTATCGAAGCGCAGCAGAGCGGGCAGATCGTCAAGGTCGAGCTGCCCGAACGGCCACCATTCTACGGCTGAMSLKLGVIGTGAIGQDHIRRCSQTLLNSQVVAVTDINLVQAAKVVADLKLTAEVYPDGHALIKAPDVEAILVTSWGPSHEEFVLAAIAAGKPVFCEKPLAVTAEGCRRIVEAEVAHGKRLVQVGFMRPYDEGYRALKSVIDSGQIGEPLMLHCAHRNPSVGENYKTDMAITDTLIHELDVLRWLLADDYVSVQVVFPRKTSKALAHLRDPQIVLLETAKGTRIDVEVFVNCQYGYDIQCEVVGETGIARLPEPSQVQLRSGAKLSNAILMDWKDRFIGAYDVELQAFIDGVRAGQVGGPSAWDGFAAAVAADACIEAQQSGQIVKVELPERPPFYGNANANANANA
D1-35_05378615hypothetical proteinATGATCGACCCCAAACAGACGCCGGATTCCATCGACGAAACGCTGGTCGAACATTTCCGCCAACACGCCAGCGGCGAGCCGCCGGCCTCCATGGACGCCTTCATCCTGGCGACCGCCCGCCGTGAAGCCCCGACGCCGGCGCCGAGCCCGTGGCAGCGCTGGCTGCAGGCTTGTCAGCGACCACGGTGGCAAATGGCGTTCGCCACGGTTGCCGGTGTGGCGCTGATGATCGGCCTGGTGCTGCGTACGTCGACCGAGGAGCAACTGGCTTCACCCGCCTCGATGGAGTTTTCCGCCGATCGGCAACAGCCCCCGGTTGCCGCTGCCCCACCGCCAGCCATGCCGGCCCCCGCACCGATCACTCGCATGGCGCCCCAGGGCGAACTGGCCCGAGCCCCGGCCAGCCCGGTGCAGGCGTTGGCGGATAAGCCCGCAGCGAAAATGAGCAAAGCCGCGCCCGCCGCAATGCCAACACTTGAGCAGGAGCTGCTGGAAGTGCTGCGATTGCGCGAGGCGGGTGACAGCAAGGCGGCTGATGGGAAGCTGCTGGCGTTGCACAAGCGCTTTCCCAAGGAAGACTTGCCGGCGCGGTTGGAAATATTGCGTAAGCGATGAMIDPKQTPDSIDETLVEHFRQHASGEPPASMDAFILATARREAPTPAPSPWQRWLQACQRPRWQMAFATVAGVALMIGLVLRTSTEEQLASPASMEFSADRQQPPVAAAPPPAMPAPAPITRMAPQGELARAPASPVQALADKPAAKMSKAAPAAMPTLEQELLEVLRLREAGDSKAADGKLLALHKRFPKEDLPARLEILRKRNANANANANA
D1-35_05379573rpoE_2COG1595ECF RNA polymerase sigma factor RpoEATGCCCGCTGCGCTTGATTCTCCCAGCGACGAATCGCTGCTGGCCCGCTATCGCGAAGGCGACGGGGCTTGTTTCGAAGCCCTGTACGCCCGCCATCGGCAAGGGCTTTATCGTTTTCTCGTGTCCTTGAGCAACAAGGCCGAACTGGCCGAGGAAATTTTCCAGGACACCTGGCTCAGCCTGATTCGCAGCACCACCCAGCCACAAGGCCGGGCGAGTTTTCGTACATGGTTGTTCCAGATTGCCCGTAACCGCTTGATCGACCACTGGCGCAAGCACGGCGTCCACAACCCGCTGCACGACAGTTACGACGAGCAGCTTCATGTCCAGCCCGACGACACCGGCAACCCTGAGCAACAGCTGCGCCTGAGTCGCGACCAGGCTCGTCTGGACGCCGCGTTGCAGGCCTTGCCCGAGGATCAGCGGGAAGTCTTCCTGCTGCGCCTGCACGGTGATCTCGAATTGCCACAGATCGCTGCCCTGACCGGCGTTCCGCTGGAAACGGTCAAGAGCCGCTTGCGTTACGCCCAACAGAAGCTGCATCGCCTGTTGGCCGAGGAGGTACCCGCATGAMPAALDSPSDESLLARYREGDGACFEALYARHRQGLYRFLVSLSNKAELAEEIFQDTWLSLIRSTTQPQGRASFRTWLFQIARNRLIDHWRKHGVHNPLHDSYDEQLHVQPDDTGNPEQQLRLSRDQARLDAALQALPEDQREVFLLRLHGDLELPQIAALTGVPLETVKSRLRYAQQKLHRLLAEEVPAPGPT0014960_4039DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-QUORUM_SENSING_RESPONSE|BIOFILM_FORMATIONCE-BIOFILM_REGULATORSCE-OTHER_BIOFILM_REGULATORS,PGPT0014960-rpoE|sigW-K03088NANA
D1-35_053801668hypothetical proteinATGTCCCGTCCGCTTTCGTATATGCGTCCTGCCACCCAGGGCTTTGCCGTCACGCTGCTGGTGGCGTTGGCCGGTTGTGGGTTGTCTTCGTCCCGTGAGGCTGCCAAGCCGGCCGAACCGGTGGCGGCGGCGCCCATTGTCGCGCCGCTAGGAGAGATCGCCTACGTGCGCCAGCCTATGGCCAAGCGCATGGCGGCGCCGGCATCAATGCCTGCGCCGATGGGCGATGTAGTCTCCAATGATTACCGCAGCGAGCCGCGCGAACAGTACGAGAAGCTGCCGGAAAATCCTGTCCACAGCGTCGCCGAGACACCGGTCTCGACCTTCAGCGTGGATGTCGATACCGGTAGCTATGCCAACGTGCGACGTTTCCTCAACCAGGGCAGCCTGCCGCCTGAGGGCGCTGTGCGGTTGGAGGAAATGGTCAACTACTTTCCTTACCACTACGCGTTGCCCACCGACGGTTCGCCCTTTGGCGTGACCACCGAAATCGCGCCATCGCCCTGGAACCCTCACACCCGGTTGTTGCGTGTCGGGATCAAGGCCAGCGACCGCGCCGTCTCAGACCTGGCCCCGGCCAACCTGGTGTTTCTGGTGGATGTGTCCGGCTCGATGAACCGTCGCGAAGGCCTGCCGCTGGTCAAGAGCACGCTGAAATTGCTGGTGGACCAATTGCGCGATCAGGACCGGGTGTCCCTGGTGGTCTATGCCGGTGAGTCGCGGGTGGTGCTCAAGCCCACCTCGGGTAGCGACAAGGTGAAGATCCGCAACGCCATCGATCAACTGAACGCCGGTGGATCGACCGCCGGTGCCTCGGGCATCGAACTGGCCTATCAGATGGCTCGGGAGAGCTTTATCGACAAAGGCATCAACCGCATCCTGCTGGCCACCGATGGTGACTTCAACGTCGGCATCAGTGATTTCGACAGCCTCAAGCAGATGGCCGTGGATCAGCGCAAAAGCGGCGTCTCCCTGACCACACTGGGCTTCGGTGTGGATAACTACAACGAACACCTGATGGAGCAACTGGCTGACGCCGGTGACGGTAACTACGCGTACATCGACAACCTGCTCGAAGCGCGCAAGGTCCTGGTGGACCAGCTCAGCTCCACCCTGGCGGTGGTAGCGCGAGACGTGAAGTTGCAGGTGGAGTTCAACCCCGCCCAGGTCAGCGAATATCGACTGCTGGGTTATGAGAACCGCGCGTTGAAGCGTGAGGATTTCAGCAACGACAAGGTCGACGCAGGCGAGATCGGCGCTGGGCATACCGTGACCGCGCTGTATGAAATTGTCCCGAAAGGAGAGCAGGGCTGGTTGGAGCCGCTGCGTTATGGCAGCGCACCCAAGGCGGACGGCAAGTCAGGCGAACTGGCGATGTTGCGCGTACGCTACAAGCTGGCGGAAGGCGGTAGCAGCCGGTTGATCGAACATCCCATTGCCGTTTCACCGCGCAATGACAAAACCAGCGACGACCTGCGCTTCTCCGCCGCCGTGGCAGCCTTCGCCCAACAGCTCAAGGGCGATGGACGCTACACTGGGCAGATGACCTTGAAGGATACCGCGCAGTTGGCGCGCTCGGCGCGCGGTGACGATCCGTTCGGGCTGCGTGCCGAGTTCGTGCAACTGGTGGAGCTGGCCCAGAGCCTCGAACCTGCGGCCAAACGCTGAMSRPLSYMRPATQGFAVTLLVALAGCGLSSSREAAKPAEPVAAAPIVAPLGEIAYVRQPMAKRMAAPASMPAPMGDVVSNDYRSEPREQYEKLPENPVHSVAETPVSTFSVDVDTGSYANVRRFLNQGSLPPEGAVRLEEMVNYFPYHYALPTDGSPFGVTTEIAPSPWNPHTRLLRVGIKASDRAVSDLAPANLVFLVDVSGSMNRREGLPLVKSTLKLLVDQLRDQDRVSLVVYAGESRVVLKPTSGSDKVKIRNAIDQLNAGGSTAGASGIELAYQMARESFIDKGINRILLATDGDFNVGISDFDSLKQMAVDQRKSGVSLTTLGFGVDNYNEHLMEQLADAGDGNYAYIDNLLEARKVLVDQLSSTLAVVARDVKLQVEFNPAQVSEYRLLGYENRALKREDFSNDKVDAGEIGAGHTVTALYEIVPKGEQGWLEPLRYGSAPKADGKSGELAMLRVRYKLAEGGSSRLIEHPIAVSPRNDKTSDDLRFSAAVAAFAQQLKGDGRYTGQMTLKDTAQLARSARGDDPFGLRAEFVQLVELAQSLEPAAKRPGPT0014015_2141DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_SALINITY_STRESSSALINITY_STRESS-CHLORIDE_TRANSPORT,PGPT0014015-yfbK-K07114NANA
D1-35_05381582hypothetical proteinATGCGCGTTTTTGCCACCCTCCTGGCCATCTTGCTTATGGCGGGCTGCGCCTCCAAGCCGGACTACTACATTTCTCCTGCGCCGGTGGCGATTCCCAAAACCGCCACATACTGGATCGACACGTTCAACGTAGAGGTCGCCGGCAAGAACGAACGTTTCCTGCCCGACGAAAAAGTCCGTGACAAGCTGCACACCGACCTGATCGTGCGCTTGCTCGACGGCAATCGCTACGCCTCCAGCAAGGAAAGCGCTGACTACCTGCTGGATATCAACGCCGTCTACGCCCGCCGTATCCAGGACACCCAAGGTGGTTTGATGAGCAGTATCGTTGCCGACGGTACGTACCTTGCCAGTGTCGACTTCAGCTACCAGGTCCAGGTGAAGAAGGCCGGCGCCGAGGTGCTGCATTTCGCCCAGGCTCGCGAGGGGCTGATGCCGGCCGGCGCGATCGGGCAATTTCACGCCATGAAAGGCATCGCTGGAGCCCTCACGAAACGGGGCAATTCCGATGTCGAGGAGTACTACACCAGCCAGTTGAGTCGTTTCATCGCCGATGACCTGCGGGCCATTCCGTCTCGCTGAMRVFATLLAILLMAGCASKPDYYISPAPVAIPKTATYWIDTFNVEVAGKNERFLPDEKVRDKLHTDLIVRLLDGNRYASSKESADYLLDINAVYARRIQDTQGGLMSSIVADGTYLASVDFSYQVQVKKAGAEVLHFAQAREGLMPAGAIGQFHAMKGIAGALTKRGNSDVEEYYTSQLSRFIADDLRAIPSRNANANANANA
D1-35_053821314proP_2Proline/betaine transporterATGACTGCCACCCATCATTTGCCAGGCGCGCGGTTCAGCCGCTCCGACTACAAGACCCTGGGCCTCGCCGCCCTCGGCGGCGCGCTGGAAATCTACGACTTCATCATTTTCGTTTTTTTCGCCCTGACCCTCAGCCAACTGTTCTTCCCGCCGGAAATGCCCGAGTGGCTGCGCCTGCTACAGAGCTTCGGGATTTTTGCCACCGGCTATCTGGCGCGTCCCCTGGGCGGGATACTCATGGCGCACTTTGCCGATCGGCTGGGCCGCAAGCGTGTCTTCAGCCTGAGCATCCTGATGATGGCGTTGCCGTGTCTGCTCATCGGTGTACTGCCGACCTATGCGCAAATCGGCTATTTCGCCCCGTTGCTGTTGTTGGCGCTGCGCATCCTGCAAGGCGCGGCGGTGGGCGGGGAGGTGCCGAGTGCCTGGGTGTTCGTGGCCGAACACGCGCCGTTGCGGCATCGCGGCTATGCCTTGGGGTTTCTCCAGGCAGGCTTGACCTTCGGCTACTTGCTCGGCGCCTTGACCGCTACGGCGCTGGCGCGGATCTTCACCCCGACCGAAATCCTCGACTACGCGTGGCGCTTGCCGTTCCTGCTGGGCGGGGTATTCGGCGTGATCGGCGTCTGGCTGCGCCGCTGGCTGAGCGAAACGCCGATCTTCATGGCCCTGCAAGCCAATCGCGAATGCGCGACGGAGCTGCCGCTGCGCACGGTTTTGCGCGACCATCGGCATGCCTTGCTGCCCGCCGCCATTCTTACCTGCGTACTGACTTCCGCCGTGGTGGTCTTTGTGGTCATCACCCCCACAGTGATGCAGAAAAGCTTCGGCCTGACCCCCAGCCACACGTTTGCCCTGAGCAGCCTCGGCATCGTTTTCCTGAACATCGGCTGCGTCCTGGCCGGCCTCGTCGTCGACCGCATCGGCGCCTGGCGCACTGTCATGCTCTACAGCCTGCTGTTGCCGCTGGGCATCGCCGTGCTCTATGCCAGCCTGATCAGCGGCAGCGACTGGCTGGGCCTGGCCTACGCCGTGGCCGGCCTGGGTTGCGGCGTGGTCGGCGCGGTGCCTTCGGTGATGATCAGCCTGTTCCCGCCAAAGATTCGCGTGTCCGGTATCTCCTTCACCTACAACATCGCTTATGCACTCTGGGCCAGCATGACGCCGTTGTTGTTGATTGCGCTGGTGCCGTGGAGCCCGTGGGTTTGCGTGGTGTATTGCGTGGTGATGGGTGCGGTGGGAGTAGGGGGGGCGGCTTATTTTCCGAGGCGGCACGCAAAGATCCTGCGGCCCTCTCTGGCCTGTGAGTCTTGAMTATHHLPGARFSRSDYKTLGLAALGGALEIYDFIIFVFFALTLSQLFFPPEMPEWLRLLQSFGIFATGYLARPLGGILMAHFADRLGRKRVFSLSILMMALPCLLIGVLPTYAQIGYFAPLLLLALRILQGAAVGGEVPSAWVFVAEHAPLRHRGYALGFLQAGLTFGYLLGALTATALARIFTPTEILDYAWRLPFLLGGVFGVIGVWLRRWLSETPIFMALQANRECATELPLRTVLRDHRHALLPAAILTCVLTSAVVVFVVITPTVMQKSFGLTPSHTFALSSLGIVFLNIGCVLAGLVVDRIGAWRTVMLYSLLLPLGIAVLYASLISGSDWLGLAYAVAGLGCGVVGAVPSVMISLFPPKIRVSGISFTYNIAYALWASMTPLLLIALVPWSPWVCVVYCVVMGAVGVGGAAYFPRRHAKILRPSLACESNANANANANA
D1-35_05383174hypothetical proteinATGACGCAGCAAACCGACGGCATCGCCCGCCTCAAGAACTGCCCCACCAAGGGCGACGAAATACGCCGGGCCATCGCCCAGAGCCGCAAGGATTTTCTGCCTGCTGACGAGGCCGTAGACGCCGAGCCAGGCCAACCGTCGGCGCAGCCCGTGGACAAGGGTCCCGCTGCCTGAMTQQTDGIARLKNCPTKGDEIRRAIAQSRKDFLPADEAVDAEPGQPSAQPVDKGPAANANANANANA
D1-35_05384561hypothetical proteinATGACTCGATTGACCTCCCTTTCCTCCTGGCTCGCGGCCGTCACCCTCGTGCTGTGCGCGCAAGGGGTTGTCCAGGCCGAAGAGCGTTTCACCCTGAGCATTCCCGGTGTATCGGACGACCGCCTCTTCACTGCCGCCGCCGCGAGCGACGCGAATACCTGCGGCGGCAAGAATATTTCTCCGGCGTTGAGCTGGAACGCCGGCCCGCCTGGCACCCTCAGCTATGCCATCGTCATGCTCGATCCCGACGGCCAGCGCGGGCAGGGCGTCGACCACTGGGTCCATTACGGGATCAAGGCCAGCACCCGACAGATCCCGGCGGGCGCGGGTACCAAATCCACCCTGGAAGGCATGAGCGGCATCAATAGCAAGAACACTCACGGCTACATCGGTCCGTGCCCACCCGTTGGCGACAGCGCTCATCACTACCTGATCCAGATATTCGCCCTGGACCTGCCACCCGACGCATTGCCCGCCGGCCTCACACGCGCCCAGTTGATGGAAAAACTCAAAGGCCACGTCCTGCGCAACAGCAGCGTGGTGCGTCGCTACCACCGCTGAMTRLTSLSSWLAAVTLVLCAQGVVQAEERFTLSIPGVSDDRLFTAAAASDANTCGGKNISPALSWNAGPPGTLSYAIVMLDPDGQRGQGVDHWVHYGIKASTRQIPAGAGTKSTLEGMSGINSKNTHGYIGPCPPVGDSAHHYLIQIFALDLPPDALPAGLTRAQLMEKLKGHVLRNSSVVRRYHRNANANANANA
D1-35_053851533hcaD3-phenylpropionate/cinnamic acid dioxygenase ferredoxin--NAD(+) reductase componentATGCCCATGCATCAAGTCGCCCGCCTCGCTGATGTGCGAGAGGACCGCGGCCTCGAAGTGACCCTCAACGAAACACCCATTCTGCTGCTGCGGGCTGGCGGACAGGTCCGAGCCTTCCAAGGCAAATGCCCGCATGCCGGGGCGCCGCTGGCCGAGGGCGCGGTGTGTCACGGCAGGCTGATCTGCCCGTGGCACAAGGCCGCGTTCCGTGCCGAAGACGGCGCCCTGTGCGAGCCGCCGGCCCTCGACAGCCTGCAGCGTTATCACGTCGAGCTGCGGGGCGATGAAGTATGGGTCGATGAGCAACCACTGCCAGCCGAAAAAATCCCTCCCGCCGATGACCCGCGCACCTTCGTCATCGTCGGCGCCGGAGCGGCCGGCACGGCTTGCGCGGCGGCGCTGCGCGAGAAGGGTTTCGGTGGCCGGATCCAGATGATCGACCGCGAAGCCGAGGCCGGTTATGACCGCACCGTACTGAGCAAATACGTGTTGGCCGGCGACATGGCCGCAGAAAAGACGCCGGCCTTGCGCGATGAAACCTACTTCACCCGGCAACGCATCGAAAGGCGCAACGGCGAAGTGGCCGGTCTCGACACCAGCGCGCGCCAGATTCATCTCGCCGACGGTCAACGCCTGGACTATGACGCACTGCTCATCGCCACCGGTGGAGTGCCCAGGACGCCAGACATGCCGGGCCTCGACTTGCCCAATGTGTTCACCCTGCGCTCTTTGGCCGATAGCCGGCAAATCCTCGACCGTGCCCAGCCGGGGCAGCGAGCGGTGATTATCGGCGACAGCTTCATCGCCATGGAAGTCGCCTCGTCCCTGCGCAAACGTGAACTGAGCGTGACCGTCCTGGCCCGCCACCCGGTCCCGTTCGCCGCGCAGTTTGGCGACAGCATCGGCAAGGCGATCCTGGCCCGACACCGGGCCAATGGTGTGGTCTATCACAGCGAGGGCGAAGCGGCGCGGATCGAAGGTGTGGAGAAGGTTGAAGCCGTGGTGCTGGATAACGGTCAGCGTTTCGCGGCGGACCTGGTCATCATCGGTGTCGGCGTGCGCCCGGCGACCGAGCCGTTCGCCGATCTGCCACGGGAAAAAGATCAATCATTGATCGCTGACGACGGCATGCGCGTCGCCGATGGCGTCTGGGCCGTTGGCGATATCGCCACCTTTCCACTGAACGGCCAACCCCGGCGCATCGAACATTGGCGCCTGGCCCAGCAACAGGCACGCATCGCCGCGACGAACATGCTCGGCGGTGAGGAACACTACCTGGATGTGCCGTTCTTCTGGACGTACCACTTCGGCAAACGCTACGACTACCTCGGTCATGCCGAGGAATGGGACGAGGTGCAATTCAAGGGCACGCCTGAGCATCCTCCGTTCATCGCTCTGCTCGGCAAGGACGGTCTCGTTGCCGCCGTCGTGGCCTGCGATGAAGGCCGGGCCATGGCGGCGCTGGCCCAGCGCATGAAACAACCGCTGCCGGTGGATGAGGCCTGGCGGCTGGTCCGGGATTTTTCGGTGTAGMPMHQVARLADVREDRGLEVTLNETPILLLRAGGQVRAFQGKCPHAGAPLAEGAVCHGRLICPWHKAAFRAEDGALCEPPALDSLQRYHVELRGDEVWVDEQPLPAEKIPPADDPRTFVIVGAGAAGTACAAALREKGFGGRIQMIDREAEAGYDRTVLSKYVLAGDMAAEKTPALRDETYFTRQRIERRNGEVAGLDTSARQIHLADGQRLDYDALLIATGGVPRTPDMPGLDLPNVFTLRSLADSRQILDRAQPGQRAVIIGDSFIAMEVASSLRKRELSVTVLARHPVPFAAQFGDSIGKAILARHRANGVVYHSEGEAARIEGVEKVEAVVLDNGQRFAADLVIIGVGVRPATEPFADLPREKDQSLIADDGMRVADGVWAVGDIATFPLNGQPRRIEHWRLAQQQARIAATNMLGGEEHYLDVPFFWTYHFGKRYDYLGHAEEWDEVQFKGTPEHPPFIALLGKDGLVAAVVACDEGRAMAALAQRMKQPLPVDEAWRLVRDFSVPGPT0028500_465DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-BACTERIAL_FITNESSCE-BACTERIAL_FITNESS-RESISTANCE_TO_ANTIMICROBIAL|TOXIC_COMPOUNDSCE-BACTERIAL_FITNESS-3-PHENYLPROPIONIC_ACID|CINNAMIC_ACID_RESISTANCE,PGPT0028500-hcaD_like-K22747NANA
D1-35_05386504hypothetical proteinATGAAAATTATCAGGACCCGGCAGCGGCCTTTTCTGGTGGTCATCGATGTGCTCTTTACCGTGCTGGCGTGGGTTGGGCTGTTGTATCTGCTGGTCAATGGGCTCTGGCCGTTGTTCGACAGCCATGCCGGGCCGCGCCTGGGTGGTTCGCTGTTCGATACCCTGGGAACCTTGCAGATCTATGGCTGGATCGCGCTGGTCAACGCAATCATCCTGATTACCTGGGCGCGTTACCAACAGCGCAAAAGCCGCAGCTTCGCCCAGCGTCGGCTGCCGAGGCCTGCGGTGGATGACCAAGGCCTGAGCGCAAGTTTCAAGCTGACTGACGAACGACTGGAAACGCTGCGCCAGCCTGGCTCCAAAATCATCCATAACAACCCGGATGGCGACATCAGCCACGTAGTGCCGCACTTTCATCTGCTGAGCCCGGACTTGCAACCGCCGCCCCTGGCACCGCTGGACCGGCCGCGGGTGATTCATCTGCCGGCTGATCGCCCTGCGTAGMKIIRTRQRPFLVVIDVLFTVLAWVGLLYLLVNGLWPLFDSHAGPRLGGSLFDTLGTLQIYGWIALVNAIILITWARYQQRKSRSFAQRRLPRPAVDDQGLSASFKLTDERLETLRQPGSKIIHNNPDGDISHVVPHFHLLSPDLQPPPLAPLDRPRVIHLPADRPAPGPT0023490_40DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-POLY-N-ACETYL-GLUCOSAMINE_METABOLISMCE-EPS-POLY-N_ACETYL-GLUCOSAMINE_BIOSYNTHESIS,PGPT0023490-pgaD-K11937NANA
D1-35_053871356pgaCCOG1215Poly-beta-1,6-N-acetyl-D-glucosamine synthaseATGCTCGACAGACTGCTCGCCGTCCTGGTGCTGGCGATCGTCCTTGGGGTGCCCCTGGGCCTGATCTTCCTGGTCACTGGGCAATTCCTGATGGACTTCGTGTTCTTCTACCCGCTGTTCATGTCCGGGCTGTGGATCGCCGGGGGCCTGTATTTCTGGCTGCACTGGGAGCGCCACTGGCCGTGGAAAGACGATACCTTGCCGCCGCCCCTGGCCGGCGAACCGCTGATCAGCATCCTGATCCCGTGCTTCAACGAAGGCGACAACGTTGCCGACACGATTCACGCAGCGCTGGGCCAGCACTACCCGAACATCGAGGTGATCGCCATCAACGACGGCTCCAAGGACAACACCGCCGAGGTGCTGGACCGACTGGCGGCCGAAGACCCGCGCTTGCGTGTGCTGCACCTGGCGGAAAACCAGGGCAAGGCCGTAGCCCTGCGCATGGGCGCCATCGCTGCACGCAGCGAATACCTTGTGTGCATTGACGGCGACGCGCTACTGGCACCGAATACCTGCGCCTACCTGGTGGCGCCGATGCTCGACAACGCCCGCCTCGGCGCGGTGACGGGCAACCCGCGCATTCGCACCCGTTCAACCTTGGTGGGTCGGGTCCAGGTCGGTGAGTTTTCCTCGATCATCGGCTTGATCAAGCGTACCCAGCGGGTCTTCGGACGAATCTTCACCGTGTCCGGTGTGATCGTCGCCTTCCGTCGCACAGCGCTGCACCGGGTCGGCTACTGGAGCCCGGACATGATCACCGAGGACATCGACATCAGCTGGAAGCTGCAACTGGACCACTGGAGCATCTTCTACGAACCCCGTGCGTTGTGCTGGATCCTCATGCCCGAAACCCTGCGCGGCCTGTGGCGGCAACGGCTGCGCTGGGCCCAGGGCGGTGCCGAAGTGCTGTTCAAGAACATCCGCGGCATCTGGCAATACCGCCACCGTTACCTGTGGCCGCTGCTGTTCGAATACTGCCTGTCCACCGGTTGGGCGTTCACCTTCCTGCTGTCGGTGATCTTCTGGGGCGCCGGCAAATTCATCGAGATGCCCGCCGCCATCGCGGTGGACCACCTCATGCCGCCGGCCTTCACCGGGCTGTTGCTGGCGGTGGTGTGCCTGATGCAATTCGCGGTGAGCATCCTGATCGACCGTCGCTACGAAAAAGGCCTGTGGCACATCATGTTCTGGGTGGTCTGGTACCCGTTGGTGTTCTGGTTGATCAGCCTGTTCACCACCCTGGTGAGCTTCCCCAAGGTGCTGTTCGGGCAGCATCAGAAACGTGCGCGCTGGGTTAGCCCGGATCGCGGGATCAAGCCGTTCGATGACGAAGAAGAGGAAGTGATCCGATGAMLDRLLAVLVLAIVLGVPLGLIFLVTGQFLMDFVFFYPLFMSGLWIAGGLYFWLHWERHWPWKDDTLPPPLAGEPLISILIPCFNEGDNVADTIHAALGQHYPNIEVIAINDGSKDNTAEVLDRLAAEDPRLRVLHLAENQGKAVALRMGAIAARSEYLVCIDGDALLAPNTCAYLVAPMLDNARLGAVTGNPRIRTRSTLVGRVQVGEFSSIIGLIKRTQRVFGRIFTVSGVIVAFRRTALHRVGYWSPDMITEDIDISWKLQLDHWSIFYEPRALCWILMPETLRGLWRQRLRWAQGGAEVLFKNIRGIWQYRHRYLWPLLFEYCLSTGWAFTFLLSVIFWGAGKFIEMPAAIAVDHLMPPAFTGLLLAVVCLMQFAVSILIDRRYEKGLWHIMFWVVWYPLVFWLISLFTTLVSFPKVLFGQHQKRARWVSPDRGIKPFDDEEEEVIRPGPT0023485_250DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-POLY-N-ACETYL-GLUCOSAMINE_METABOLISMCE-EPS-POLY-N_ACETYL-GLUCOSAMINE_BIOSYNTHESIS,PGPT0023485-pgaC|icaA-K11936NANA
D1-35_053881998pgaBCOG0726Poly-beta-1,6-N-acetyl-D-glucosamine N-deacetylaseATGCCCGTCATTTCGCGATTCATCCTTCTGCTGGGAGTCTTGCTGATCAGCGCTTGTGCCCAGCAGGCCCCGGCATTTGCCCCGCCTTCGCAACGGCCGGTGATGGCCAACGATGCGCCATGGCCGAAAAACCACGTGCTTGGTATTGCCTACCACGACGTCGAAGACCGCGACCCCGACCAAGCCTTGGTGGCCGTGCGCACCGAGCGCCTGATCGAGCAATTGGCCTGGCTGCGGGAAAACAATTATCAGCCGGTCACGATCGACCAGATCATCGCTGCCCGCAACGGCGGCCCCGAACTGCCACCGCGCGCAGTACTGCTGAGTTTCGACGACGGCTACTCAAGCTTTTACACCCGCGTCATGCCCATCCTGCGCGCCTACAACTGGCCGGCCATCCTTGCTCCGGTCGGCAGTTGGATCGACACGCCGCTGAATCAACCGGTGGATTTTGCCGGGGTGCCGCGCAAGCGTTCCGAGTTCCTGACCTGGGAGCAGATTCGCGAGGTGTCGAAATCGGGCCTGGTGGAAATCGCCGCCCACACCGACGCCAATCACAAAGGCGTACTCGCCAACCCGCAAGGCAACCAGCAGCCGGCGGCGACCACGCGGCGCTACGATCCGGCTACCGGTCGCTATGAAGCGGAAGCCGATTTCCAGGCGCGTCTGCGCAAGGACGTGGCAGCCATTTCCGAGAAGATCCGCAAAGTCACCGGCTACAGTCCGCGCGTCTGGGTCTGGCCATACGGCGAGGCGGACGGCACCGCGTTGCAGGTGATTGGCAGCCAGGGCTACCAGATGGCCCTGACCCTGGAAGACGGCCTCGACAGCCTCGATAACCTGATGAGCGGCCCGCGCTTTCTGGTGGCTTCCGATCCGGACGGCGCTCACTTCGCCGAAAGCATCGTCTCGGTGCAGACTATGGACCCGATGCGGGTGGTCCACGTCGACCTGGATTACGTCTACGATCCGGACCCCGTGCAGCAGGAGGCCAACGTCGGCAAGCTGGTCCAGCGTATCTACGATCTGGGCGCGAACACCGTCTTCCTGCAAGCTTTTGCCGACCCGAAGGGCGATGGCCTGGTCCATTCGCTGTACTTCCCCAATCGGCATCTGCCGGTACGCGCCGATCTGTTCGATCGGGTCGCATGGCAATTGCGCACCCGGGCCAACGTGAAGGTGTATGCCTGGATGCCGGCGCTCAGTTTTGCCCTGGACCCGAAGTTGCCGCGTGTACAGCGCTGGGATCCTGAAACCGGCAAGATTGGCGTCGCCCCGGACCAGTACCTGCGCCTGTCGCCCTTCGACCCGAACGTGCGCAAGGTCATCGGCGAAATCTACGAAGACCTGGCGCGGATGAGCTCGGTGGACGGCGTTCTGTACCATGACGACGCGGTGTTCTCCGACTTCGAGGATGCCGGCCCAGCTGCGATGAAAGTCTATGCGGCCAACGGCTTGCCGACTTCCATCGCCGCTCTGCGCGACGACCCGGCGGCCATGCAGCGCTGGACCCGTTTCAAGAGCCGCTACCTGATCGACTTCACCGCTGAGCTCACGGCCAAGGTTCGGGCAATTCGTGGTCCGGAGGTGCGCACGGCGCGCAATATCTTTGCCGAGCCGATGCTCAACCCGCAGAGCGAGGCCTGGTTCGCCCAGAACCTCAATGACTTCCTCGGCGCCTACGATTGGACGGCTCCGATGGCCATGCCATTGATGGAAAAACAGACCCGCGAGCAATCCGGGCCCTGGCTCGAACGGCTGGTGGAAACCGTCAAGGCTCGCCCCGGTGCGCTCAAGCGCACGGTATTCGAATTGCAAGCGCGCGACTGGCACAGCAAGCCGGTGGCCGATATCGAAGGTGAACAACTGGCCGACTGGATGGGGCGACTCAAGCGCCAGGGCGTGACCAGTTTCGGCTACTACCCGGACAACTTCATCGAAGACCAGCCTGCCGTGAAAGCCGTGCGGCCTGCGCTCTCCAACAAGTGGAATCCTTGAMPVISRFILLLGVLLISACAQQAPAFAPPSQRPVMANDAPWPKNHVLGIAYHDVEDRDPDQALVAVRTERLIEQLAWLRENNYQPVTIDQIIAARNGGPELPPRAVLLSFDDGYSSFYTRVMPILRAYNWPAILAPVGSWIDTPLNQPVDFAGVPRKRSEFLTWEQIREVSKSGLVEIAAHTDANHKGVLANPQGNQQPAATTRRYDPATGRYEAEADFQARLRKDVAAISEKIRKVTGYSPRVWVWPYGEADGTALQVIGSQGYQMALTLEDGLDSLDNLMSGPRFLVASDPDGAHFAESIVSVQTMDPMRVVHVDLDYVYDPDPVQQEANVGKLVQRIYDLGANTVFLQAFADPKGDGLVHSLYFPNRHLPVRADLFDRVAWQLRTRANVKVYAWMPALSFALDPKLPRVQRWDPETGKIGVAPDQYLRLSPFDPNVRKVIGEIYEDLARMSSVDGVLYHDDAVFSDFEDAGPAAMKVYAANGLPTSIAALRDDPAAMQRWTRFKSRYLIDFTAELTAKVRAIRGPEVRTARNIFAEPMLNPQSEAWFAQNLNDFLGAYDWTAPMAMPLMEKQTREQSGPWLERLVETVKARPGALKRTVFELQARDWHSKPVADIEGEQLADWMGRLKRQGVTSFGYYPDNFIEDQPAVKAVRPALSNKWNPPGPT0023480_203DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-POLY-N-ACETYL-GLUCOSAMINE_METABOLISMCE-EPS-POLY-N_ACETYL-GLUCOSAMINE_BIOSYNTHESIS,PGPT0023480-pgaB-K11931NANA
D1-35_053892484pgaAPoly-beta-1,6-N-acetyl-D-glucosamine export proteinATGCCGCGTACTGTGGGTCCTCTTATTCAATTCGGTTTGCGCCCGTTGTTTCGCGTCGCGCTGTGCAGCCAATTGTGCTGGTCGGTGGTGGCGTTTGCCGATACCGCTTATGACCAGATGGTGCTCGACGCCCGCGCGGGGCATTACACGCCCGCGTTGTCCGTATTGCGCCAGGTGCCGGTTGGCCAGGCCAGCACCGCACAGATCAGTGACCATCTGCAGATCGCCAGTTGGGCCGGTCTTGATGCCGAGGTGGTGAAAGTCTACGAAACCCAGGGCCGCTACCGCGACCTTCCGGTTCAGGCGCTGACCGCAGCTGCTCGCTCCTATCGCAACCTCAAGCGCTGGGATCCGGCGGTCGAGTTGTATCGCCGGGCGTTGGCGATAGATCCGCAGAACCCCGATCTGCAACTAGGCCTGGCCTTGACCCAGGCCGATGCCGGCAAGCCAGATGAAGCCGTCAACCGCGCCAGGGCGCTCGTTGCCGCCAAGCCAGAAGATCCGATGCGCCGGTTGGCCTTGGGTTATGCGCTGACGCGTGCGGACAATCCCCACGAAGCGCTTTTCGAATACGACCAGGCGTTCACCCGTGCCGGCAGCAACAAGCCTGAAGTCGCCCGCGAGTACGTCTACGCCCTGCAACGCGCCCGTTTGCCTGAGCCGGCCCTGCGCCTGGCCCGGCTTCAGCCCGGCCTGATCGATCGTGGCGTGCAACGCAGGCTCGAAGGCGATGTGGCGGCCGAGCGGGTGCGCCTGGCGGATATGGCCAGTCGCAGCGAAACAGAACGTTTTGTCATTGCCGATCGCGCGCTGGCGGACTACGACAAACTGCTCGCCACCTGGACTCCGGTGGCCGAGGCCCACGATGATGTCTTGCGCTGGCGGATCGACCGCATGGGCGCCCTCAACGCCCGGGCTCGCCGGGCCGAGGTGATCGCCGAGTACCAGAAGCTGGTCGCTGAAGGGGTCAGCATTCCAACCTACGCGCTGCGCTGGGTGGCGTCTTCCTATCTGGAGCAACGTGAACCGGAGATCGCCGTCGATCTGTACCGCCGCGTGCTGATTGCACCGGATGCAGATCCTGCGGACCGCTTCGAAGACAGCACTGCGCTCTACTACGCCTTGCTGGAAAGCGAAAAATCCGAGGAGGCTCGCGCACTGGCCGAAGACCTGGCGAAAGCACAGCCGGCCCGCGTGGAGCTCAAGGGGCTGCCGATCGGCAATCCCAACGACGAGTGGATGGACGCGCAGCTCCTGGCCGCTCAAGCAGGTACCTACGGCGCCGATCTGCCTACCGCCGAGGCGCGCCTGGACGCTCTGGTCTACCACGGCCCCGGCAATATCGGCTTGCGCCTGGCCCAGGCCGATCTGTACCAGGCACGTGACTGGCCGCGACGTTCGGAAAGCCTGCTCAAGGAAGTCGAGGCCACGACGCCGCGCAATCGCGACCTGGAAGTCGCCCAGGCCCGCGCCGCCATGGATCTGCAGGAATGGCGGCAAATGGATGCGCTTACCGATGACGTCGTCGCCCGCTATCCCGAGAACGCTCACGTCAAGCGCCTGCAACGCCAGCGTGACGTCCATGACATGGCTGAACTGCGCATCGAGGCCTACACCGGCAAGAGCTACGGTGGCGGCAATGGCGACGCAGGCGCGGTGACCGGCAGCCGCGATTTTGGTATCGAGACCTTGCTCTACAGCCCGCCCATCGATGAAGACTGGCGGCTGTTCGGCGGTGCCGGTTACGCAACCGGCGACTTCGAGGAAGGCACCGGCCATCATCGCTGGCAGCGCCTGGGAGTGGAGCGGCGTACCCGCGACATGACCCTGGAGGCGGAAGTCTCCAACCATTCGTATGGTTCCGGTGACAAACAGGGCGCGCGAGTAGCCGTGGCCCGGGACATCAATGATCACTGGCAGTACGGCGGCAGCCTGGACTACCTCTCGGCCAACACTCCGTTGCGGGCTCTCAACAGCGGGATTCGCGCCAATGGTGGAAGCGGTTTCGTCCGCTGGCGTGCCAATGAAAGCCGCGAGTGGCGGCTGGCTGTCAGCCCGTCCCACTTCAGCGATGGCAACAACCGCCTCGAGACCTTGCTGACTGGCCGCGAGGGCATCTACAGCGCTCCGAGGCTGCAAGTGGAGCTGGGCCTGGAAGTCGGTGCCAGTCGCAACAGCGGCTCCAATGAAGTGCCGTACTTCAATCCGAAATCGGACTTCAGTGTCATGCCGACCGTGAGCGCCAATCACGTGTTGTATCGCCGCTACGAAACCACCTGGAGCCAGCAGTTCCAGGCGGGCGCCGGCACCTACAGCCAGAGTGACTACAGCACCGGGGCCATGGGGTTGCTCAGCTACGGCCAACGTCTGCTCTGGAACGATGTGCTTGAAGCCGGGGCCGCGCTGAGCTGGCTCAACCGCCCTTACGACGGCGATCGTGAAAGCGATCTGCGCCTGCTTGTCGACCTCACCTACCGCTTCTAGMPRTVGPLIQFGLRPLFRVALCSQLCWSVVAFADTAYDQMVLDARAGHYTPALSVLRQVPVGQASTAQISDHLQIASWAGLDAEVVKVYETQGRYRDLPVQALTAAARSYRNLKRWDPAVELYRRALAIDPQNPDLQLGLALTQADAGKPDEAVNRARALVAAKPEDPMRRLALGYALTRADNPHEALFEYDQAFTRAGSNKPEVAREYVYALQRARLPEPALRLARLQPGLIDRGVQRRLEGDVAAERVRLADMASRSETERFVIADRALADYDKLLATWTPVAEAHDDVLRWRIDRMGALNARARRAEVIAEYQKLVAEGVSIPTYALRWVASSYLEQREPEIAVDLYRRVLIAPDADPADRFEDSTALYYALLESEKSEEARALAEDLAKAQPARVELKGLPIGNPNDEWMDAQLLAAQAGTYGADLPTAEARLDALVYHGPGNIGLRLAQADLYQARDWPRRSESLLKEVEATTPRNRDLEVAQARAAMDLQEWRQMDALTDDVVARYPENAHVKRLQRQRDVHDMAELRIEAYTGKSYGGGNGDAGAVTGSRDFGIETLLYSPPIDEDWRLFGGAGYATGDFEEGTGHHRWQRLGVERRTRDMTLEAEVSNHSYGSGDKQGARVAVARDINDHWQYGGSLDYLSANTPLRALNSGIRANGGSGFVRWRANESREWRLAVSPSHFSDGNNRLETLLTGREGIYSAPRLQVELGLEVGASRNSGSNEVPYFNPKSDFSVMPTVSANHVLYRRYETTWSQQFQAGAGTYSQSDYSTGAMGLLSYGQRLLWNDVLEAGAALSWLNRPYDGDRESDLRLLVDLTYRFPGPT0023475_69DIRECT EFFECTCOMPETITIVE_EXCLUSION|CECE-EXOPOLYSACCHARIDE_PRODUCTION|EPSCE-EPS-POLY-N-ACETYL-GLUCOSAMINE_METABOLISMCE-EPS-POLY-N_ACETYL-GLUCOSAMINE_BIOSYNTHESIS,PGPT0023475-pgaA-K11935NANA
D1-35_053901506ydgACOG5339Protein YdgAATGAACAAATCAGCAAGCGTACTTCTGGGAATCATTGTGGTTGTTGGTGCAATCAGTGCGGGTGGCGCCTGGTATACCGGCACCAAGCTTGAAGGCGTACTGCAAACCGCTATTGCCGACAGCAATAAGCAACTGCAAACGGCTTTGGCGGGTTCCAATGGCACCGCTTCGATTGAACTGGTCTCCCTGGACCGTGGCACTTTCAGCAGTACTGCCCGTTATCGTCTCAAGGGTGAAGGCGAAATGTTCGGCGGCGAACCGGTCGAGCTGCTGTTCGTTGACAATATCGAACACGGTCCACTGCCATTCTCGCGCCTGATGACGCTCAAATGGTTGCCGGTCATGGCCACCAGCCACACCGAACTGGAGCGGACTCCGCTGACCGAAAAGTGGTTCGTTGCCGCCAAGGATAAATCGCCTCTCAAAGGCGTCTTCAATCTCGGTTACGATCAATCCACCAACGGCACGTTCGAACTGCTGCCTCTGGATACCAAGCTGGATGAGCAATCCCAGCTGATCTTCTCCGGCCTGAAAATCGATGTGGCCGCCAGCGCCCAGGCTGAGAAGATCAAGGCCGACGGCTACATGGACAGCTTCAAGTTGACCACCGTCGCCGAAGATCAGACGCCGGTTCAGGTAGAGTTCAGTGGCCTGACATTGGCCAGCAACCTGACCAAGAGCACCTATGGCTACTACAAGGGCGACAACACCCTGTTGCTGAGCAGCAGCAAGACCACCTTCGGCGAGCCGAAATCGGTATTGGGCCTGAAAAACTTCGAGATGAAGAACAACAGCTCCGAGAACGGCACCAGTGCTTCGGGACGCGCTGATTACAAGATCGGCGAGTTGTCGTTCAACGACAAGGTCATCGGTTCTGCACAGATGGCGGTCAGCCTGAAGAACCTGGACATCCCTGCCACAATGTCGCTGATGCAGGTCTACCAGGCCAAGCTGCAACCCTACGAAAAGGCAGTTGCCGAGGCCGCTGAAGCGGGCGAGCCGGCTCCAGAGCTGAACCTCACCGAGGCAGAAGAAGCGCAGGTCAAAGCCGACCTGGAAAAACTCCTGGCTGGCGCCCCGCAAGTGGCCCTGGAGAACCTCTCGTTCAATACCGCTAACGGCGAAAGCCGCGCGAGCCTGGTTGTTGATCTGGCCAAGCCGCAGTCCATGGACCTGCCACCCGATGAGCTGGGCCGTCAGTTGCTCGCTCTGCTGGACTTCAAGGTTAAGCTTTCCAAGCCAATGCTGGTGGATCTCCTGACCGTGCAAGCGCAGATGGAAGGCCAGACCGACGCAAAACTGATCGCCGACCAGGCGACTGCCACCAGCGATATGTTCAGCGCCATGGCGGTAGGCACGGAGCTGGCGAAGCTTGAAGGCAATGATGTGGTTACCAATCTGCACTACGCCAACAATCAGGTCGATTTCAACGGCCAGAAGATGACCGTTGAACAGTTCACCGCGTTTGTGATGAACAAGCTGGGCGGCGGCGTCGCCATTCAGTAAMNKSASVLLGIIVVVGAISAGGAWYTGTKLEGVLQTAIADSNKQLQTALAGSNGTASIELVSLDRGTFSSTARYRLKGEGEMFGGEPVELLFVDNIEHGPLPFSRLMTLKWLPVMATSHTELERTPLTEKWFVAAKDKSPLKGVFNLGYDQSTNGTFELLPLDTKLDEQSQLIFSGLKIDVAASAQAEKIKADGYMDSFKLTTVAEDQTPVQVEFSGLTLASNLTKSTYGYYKGDNTLLLSSSKTTFGEPKSVLGLKNFEMKNNSSENGTSASGRADYKIGELSFNDKVIGSAQMAVSLKNLDIPATMSLMQVYQAKLQPYEKAVAEAAEAGEPAPELNLTEAEEAQVKADLEKLLAGAPQVALENLSFNTANGESRASLVVDLAKPQSMDLPPDELGRQLLALLDFKVKLSKPMLVDLLTVQAQMEGQTDAKLIADQATATSDMFSAMAVGTELAKLEGNDVVTNLHYANNQVDFNGQKMTVEQFTAFVMNKLGGGVAIQNANANANANA
D1-35_05391636hypothetical proteinATGAAAAACCCTTATGCTCCCGGCTTCTGGTGCGCTGTCGCGGCCTTGGTGCTGCTTTCGGCCACCTACTTCTATGGCGTCATGCTGACTCACCATATCGACAAGGCACTGATTTTCCTGGATAGCGCGGCTGCGCTGATCGGTGTCATTTCTGTCGCAATCGTCGCCTGGGCTTCTCTTCAAGGCCAGCGCATCAAGAAGAAGCAGCTTGTGCAAGGCAAGACACTGGTCCTGATCTGGGATACCAAGGTTGCGCTGCGCCGGGTTGAAACGGTATTCGACCGTTATTTCTGGGGCAGCTATTGGCAGCCTGGACGCACGTTTCAGGAAGTCATGGGTGAACTCACCGGCACTCCGCTGGAGAAAAGCCTCGAGGCACTGAAAACTCAATGCGCCGCCCTGGACAAGCAAGTCGCGCAAGACGACTGGCATTGGCTCAACAATGCCCGCGAGCTGTGCGATGTGGCCAACGCGATGGCTCGGGAGCGCTATCAATTGGACTTCTACGATGGGCGTGACGATTCATCGGGTGCGGCAGTAATCAATCGAGATTTCGAAGTGTTGGTCTACACCTGGACAGCACGTCTCAAGACCTTCGATCATCAACTTGACGAGATCGAAGTCGAATATTCGTAGMKNPYAPGFWCAVAALVLLSATYFYGVMLTHHIDKALIFLDSAAALIGVISVAIVAWASLQGQRIKKKQLVQGKTLVLIWDTKVALRRVETVFDRYFWGSYWQPGRTFQEVMGELTGTPLEKSLEALKTQCAALDKQVAQDDWHWLNNARELCDVANAMARERYQLDFYDGRDDSSGAAVINRDFEVLVYTWTARLKTFDHQLDEIEVEYSNANANANANA
D1-35_05393438hypothetical proteinATGAATGAGCGCTATCATCGTTTGGTTACAGATATCTGCCAGCTCTCTCAGATCCCCTTGGCTGCAATTGATTTAGAGTTGGTTCAGTTAAGCGTGAAAGGCATTGACTTCAGCTTTTCCAACTTGGCAGATACCGTCATGATCCACGCGGACTTCGGTCCGTTACCAGTCCGCCGCAGAGAAGCCATCTTGCTTCAGCTCATGAATGTCAACTTTCATTTGTTTGGCGGAGACAGCCCCTGTTGCTTTTCACACAACGATGGCACGGGCCAAGTGCAGTTCAGTTGCACAGTGGGGCTGACCCAGATTGGCGCGCCTCAGTTCGTGCAGTTGCTGGGCCATATCGCTGAGTATGCGCAATCATGGCAGCACAGCTATTTCCTCGATGAGGGCTCGAAGCGCGAAGCTTCAGTGCGCACCAATTTGGGGGGCTTATGAMNERYHRLVTDICQLSQIPLAAIDLELVQLSVKGIDFSFSNLADTVMIHADFGPLPVRRREAILLQLMNVNFHLFGGDSPCCFSHNDGTGQVQFSCTVGLTQIGAPQFVQLLGHIAEYAQSWQHSYFLDEGSKREASVRTNLGGLNANANANANA
D1-35_053941866hypothetical proteinTTGGCGCCCCGCCTGGGGCAGCCCGGCTTTGAGGGCACGGTAGCCAGGCAGCGCATGGTTCTGGAAGGTAAATATCTGCAGGAGCACCCCGATATTCCCTACGCCGATATAAGTAACAAGCTATTTGCGAAGGCCAATGGGAAAGCGCCCGCATCCATGACCGGACGCTTACTGGCCGATGCCAAGCAAGCGCAACAGACGCTGATCCACGAGTTGGAAAAGCTGACTGAGGATCCACAACGTCCACCGGATCTGGAGGCATATCACAAGGTGCTGACGGAGGCAGTGCGCGCGCAAACCGATTTGCTGGGCGCACACGTCGCTCTCTACGAACAGGCATTGACCGATCCACAACTGTCGACCGCCGACAGACAACACATAGAACGTAGCGAAAGCGCCTTCGCGCGTCATGCCCAACAGACCGTGGGCCTGATACCAGGCGCGTTGAAAACGGCCTTGACCAAAGCGGACGCAACGGTCAGCGCACTGAAGCAACTGAAGCAACCGTCAGAGGAATGGGAGCATATCAGCACGATGCTCAGTGACCTGGTCGAGCACACCTCAGTCGATGGAGAATTCAAAGATGCGCTGGATAACGCCAAACTTCCCGCCGAGCTTCAGAAGCTCCATCAGCACAACGACGGCTGGGTAGCGACTGCCAAGGCCGCGGCCGCAGGCGCCATGCCCCAAATGCTCGCGTCGGGCCTGGCGTTCGGCTTTGCGCGCGCGGTCGTAGAGTCCGCGGTCCCCGACCTGAAGGCCCAGGCATTCGCTACCGCGCCCGTGATGGCGGCGGCACATGAAGTAGGCACTAACCTGCTTAAGCCCATCAGCCAGGAGATGATGGGCGGGTGGTCGCTAAAACCGGTGAAAGCGTCAGAGGTCATTCCAAACCCTAACCCGCGCACTATTGTCGATGGCGAGCTCCAGCCCCTGCCCATCGAACAAAAAGAAATCGCCATGCAGGAGGTTGATGAACAGCGCAGCCGCCATCTCAACGCCCAGCAAGCCAACAAGAATGGAACCGGCATTGGCGAGGCTGAAGCCTTCGGCGCGTTTAGCCTGGCACAAGGCATCCGGCAAGCAATAGGACTGGCCAAGCCGCATATTCCTGTGGAGCAATTTGGTCCCCGCACGCTGGCCTCCATGGCAGGCGGCCTGTTCATGGGCGGCCTGCAATCGGCTGCGCAACTGCGCAGTAGCGTTCCGGACCGACGTGGACGCGAGCTGCCGACCCACACCTTCAAGGAAGTCGACGAACCGTTGGCGAATCGCTTGGCTAAAGCGGCATCGGACGCGGTGTTGGCCAGCGACCCGAGCAATCCTGAGGTTCGTCAAAGCCTGTTCAGTAAAACCTATGGCTCACTTGCCGGACTGGGCAGCGCCATGGGCGTCAGCTTCGCGGCAGGGCGCTTTGACTCAGACACGCCGGTGAAGCAGTTTGGCCAGGTGCTTTTGGCCGCGTTGGGCTCGCCTGCTCTCCTTATTCCTACCTATGCCGGCTTTCAAGCCGGTGCTGAGACCAAGGCTTATCAGGCGGCACTTGAACAGGAGCGCAAAGCGCAGGAGTTGCCCGGGCCGGGCGCCCCCGCCCCGCCCCCCGCGTCCAACTTCCCGCGGACACAAACGGCAATCCAGAACTTCCTGTCGCCCGACCGAGCCGACCTACCGCATGGCTCCATGCCAGGAACCTGGGGCAGAGTTGCAGAAAATACCTACCACCGTGTGCGAGGGGGGTTGCAGGTCGCGTCCCAAATCCCGACTGAACTCACCGAGCTTGCAATCAAAAAGGCTATCACTCGTGAGGGAAACAATGCTGATGACGAGGCGGCCCCACAACCACCTGAAGCTTTGCCGCAGAAGTGAMAPRLGQPGFEGTVARQRMVLEGKYLQEHPDIPYADISNKLFAKANGKAPASMTGRLLADAKQAQQTLIHELEKLTEDPQRPPDLEAYHKVLTEAVRAQTDLLGAHVALYEQALTDPQLSTADRQHIERSESAFARHAQQTVGLIPGALKTALTKADATVSALKQLKQPSEEWEHISTMLSDLVEHTSVDGEFKDALDNAKLPAELQKLHQHNDGWVATAKAAAAGAMPQMLASGLAFGFARAVVESAVPDLKAQAFATAPVMAAAHEVGTNLLKPISQEMMGGWSLKPVKASEVIPNPNPRTIVDGELQPLPIEQKEIAMQEVDEQRSRHLNAQQANKNGTGIGEAEAFGAFSLAQGIRQAIGLAKPHIPVEQFGPRTLASMAGGLFMGGLQSAAQLRSSVPDRRGRELPTHTFKEVDEPLANRLAKAASDAVLASDPSNPEVRQSLFSKTYGSLAGLGSAMGVSFAAGRFDSDTPVKQFGQVLLAALGSPALLIPTYAGFQAGAETKAYQAALEQERKAQELPGPGAPAPPPASNFPRTQTAIQNFLSPDRADLPHGSMPGTWGRVAENTYHRVRGGLQVASQIPTELTELAIKKAITREGNNADDEAAPQPPEALPQKNANANANANA
D1-35_05395723aceE_4COG2609Pyruvate dehydrogenase E1 componentATGGCCTCAACGGTACCCAACTGCCGAGCCTATGATCCGGCGTTCGCCGGCGAGTTTGCGGTGATCCTCGACCACGGCATGCGCCAGATGCTGGAGCGCCAGGTGGACGAGCTCTACTACGTCACGCTGATGAATGAAAACTACCCGCAGCCCGACCCTCCAGCCGGTGTCGAGCAAGACATTCTCAAAGGCATGTACCTGTTCGCCCGCAAGCAATTAAAAGGGGCGCGTGGCAGTGTTCAGCTACTGGGCTCTGGCACTATCCTGCGCGAAGTGATCGCCGCCGCTGAACTGCTCGCCAGCGACTGGAACATCGACAGCCAGGTATGGAGCGTCACCAGTTTCACCGAGCTGGCACGGGACGCGCGCGAGGTCGAACGCCACAATCGACTGCATCCTGAACAACCTGGGCGCAGGAGCCACCTGCAGGCGTTGCTCGACAATGCGTCGCCGGTCATCGCCTGTAGCGACTATGTCCGGGCCGTGCCAGCCTTGATAGCGAGCTACGTTGAGGCGCGCTACACGGTGCTCGGCACCGATGGTTTCGGCCGCAGCGACACCCGCGCTCAGCTGCGCCGATTCTTCGAAGTTGATCGGCATCAGATCGTCCTGAGTGCCCTGACCGCGCTGGTTCAAGCCCAGGCATTGGCGCCGGATGTATGCGTCGAGGCGATTGCCCGGTACGCCATTGACGTGGACAGCCTGGCGCCGTGGGAGGCGTGAMASTVPNCRAYDPAFAGEFAVILDHGMRQMLERQVDELYYVTLMNENYPQPDPPAGVEQDILKGMYLFARKQLKGARGSVQLLGSGTILREVIAAAELLASDWNIDSQVWSVTSFTELARDAREVERHNRLHPEQPGRRSHLQALLDNASPVIACSDYVRAVPALIASYVEARYTVLGTDGFGRSDTRAQLRRFFEVDRHQIVLSALTALVQAQALAPDVCVEAIARYAIDVDSLAPWEAPGPT0001385_1015DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_ORGANIC_ACID_UTILIZATIONPLANT_DERIVED_ORGANIC_ACID_USAGE-TRICARBOXYLIC_ACID_CYCLE,PGPT0001385-aceE-K00163NANA
D1-35_053961434hypothetical proteinATGTCGGCAGCGGACTGTATCGAATTGGAAGATTCCATCCTGGCGTTGTCCATGGTCGGCGACCTGAGCATGGGCCAGCCGTTCGATCAGTCGCGCCGCACCGCGCGGCTGGTGCAGATGCTCGCACAGGCGTGCAACGGCGCTGGCGAGCACACCGAGATCGGACGCCAGGTCGCGTTGCTGCGCTGGTCCGGATGCACCGCCAATGCGCAGGGCTTTACCCGTCTGCTGGGCGATGACGTCGAGGGCCGCAACGCGATGTTGACGCATACCCTCGATGAGGCGGGTCAGCGAGCGATGCACCGGTCCACACCGTTGGCGCAGATCCATTGCGAGGTGTCAGGTGATATTGCTCATACATTGGGCTTGCGCGCCGAAGTCGAACACGGGCTGCGCCATGTGTTCGAGCAATACGACGGTGAGGGAAGGCCGTCTGGCCTGCGTCATCCCCAGGTGCCGGAGGTGGTATATCAAGTGTCGCTGGCGGGAGATCTGGAAATCCTGTCCCGTACGCATGGACTGGAAACCGCATTGCGATGGATTGCCAGCAGGAGCGATCGTCGTTATCCGGCAGCGCTCGCCGCTGAAATGCTGCAACACGCCGAAGACTGGCTCGCGCAACTGCGCACGCCACAGGTCACGACTTCGCGGCAAACCGCGCCATCGGTGCCGTTGACGCTGGTCGGCGATGTGATCGATCTCAAGCTGCCGTGGCTGGCAGGGTATTCGCGACGCGCTTCGGAGCTGGTCCGGGACGCCGCCAGACTTGGCGGACTGCCAGAGACCTCGGTCGACCATCTTGGCCAGGCGGCGCTGATCCATGGCCTGGGCCGCGCAGCGGTGCCCAATAGAGTCTGGAACACCCCAGGTGCGTTATTGGAAGGCGATCTTGAGCTCGTGCGGTTGGTGCCTTACTGGACGTCGCGGGCCTGTAGCCAGATACCATCGCTTGCAGTGTCGGGCCAGATCGCGGCCCACGCCTACGAGCGACTGGATGGCAGTGGCTACTTCCGTAATCTCAACGCCGACGCGCTGCACAGTGAACATCGCTTGCTCGCCGCAGCCCTGGCTTGGCAAGCGTTGCTGAGCGAGCGACCGTGGCGGCCGGCCCTCACGCAGGATGCCGCCGCCCGTTTGCTGCTGGACGAGGCGCAGCAGGGCCGCTTCGAACACCGAGCCTGCCAGGCAGTCATTGCGGCGGCGCGCGGGGATGCAACGATGGCGGCCTGCAAGCCGACCGCTGGCCTGTTGTCCGAGCGCGAAACGGAAATTCTCCGGCGCATCAGCACGGGGGGCAGCAACAAGGAGGTGGCGCGCCAGCTAGGCATCAGTCCTAGCACCGTGCGCACCCATGTGGAAAACCTGTTCCGCAAGCTTCAATGCACCACCCGCGCGGCTGCGACGCTCAAAGCGCTGACGCTGGGGTTGATTTGAMSAADCIELEDSILALSMVGDLSMGQPFDQSRRTARLVQMLAQACNGAGEHTEIGRQVALLRWSGCTANAQGFTRLLGDDVEGRNAMLTHTLDEAGQRAMHRSTPLAQIHCEVSGDIAHTLGLRAEVEHGLRHVFEQYDGEGRPSGLRHPQVPEVVYQVSLAGDLEILSRTHGLETALRWIASRSDRRYPAALAAEMLQHAEDWLAQLRTPQVTTSRQTAPSVPLTLVGDVIDLKLPWLAGYSRRASELVRDAARLGGLPETSVDHLGQAALIHGLGRAAVPNRVWNTPGALLEGDLELVRLVPYWTSRACSQIPSLAVSGQIAAHAYERLDGSGYFRNLNADALHSEHRLLAAALAWQALLSERPWRPALTQDAAARLLLDEAQQGRFEHRACQAVIAAARGDATMAACKPTAGLLSERETEILRRISTGGSNKEVARQLGISPSTVRTHVENLFRKLQCTTRAAATLKALTLGLINANANANANA
D1-35_05397762hypothetical proteinATGTTCACACCCAAGGCCCTTGCCCTCACACTCGCCATGACCTGCTCACTGCTCGGCGGCGCGGTCCATGCCGCGGCGCAGCAACCTTCTGTCGTTATCGTTCACGGCGCTTTTGCCGACGGCTCCGACTGGAGCAAGGTCGTTCCGCTGCTGCAGGCGGAAGGCATCAAGGTCACCGTTGTACAAAATCCGCTGACGTCGCTGGCAGACGATGTCGCCGCCACGCAGCGTGTTCTGAACAACCAGGAGAACGACGTCGTGTTGGTCGGCCATTCCTGGGGCGGCACGGTCATCAGCGAGGCTGGCAGCGACAAGAAAGTACGCAGCCTGGTGTACGTCGCCGCGTTCGCGCCGGATGCCGGTCAAGCCAGTAAAGACCTGGGCAAGGACTACCCGGCACCGTCCGGCGTGAAAGATATCGCCGCCGACAAGAACGGTTTCCTGTACATGACCGCCGAGGGCATGGCCACCGGTTTTGCCCAGGATCTTTCCGCAGAACAAACCGCCGTCATGACTGCGACGCAAGGGCCGATCCGCGCCTCGGCATTCGATGACAAGACCAGCGTTGCTGCCTGGAAAGGCAAGCCAACCTGGTACGTCGTGGCCAAGGAAGACCGGATGATCCAGCCTGATCTGCAACGCGCTTTCGCCAAGAAGATCGGCGCCAAGGTCACCGAAATCGAAGCCAGCCACGTGCCGCAACAATCGCGCCCGGCAGACGTCGCAAAAGTCATCATCCAGGCCGTTCAAAAGAGCCAGTAAMFTPKALALTLAMTCSLLGGAVHAAAQQPSVVIVHGAFADGSDWSKVVPLLQAEGIKVTVVQNPLTSLADDVAATQRVLNNQENDVVLVGHSWGGTVISEAGSDKKVRSLVYVAAFAPDAGQASKDLGKDYPAPSGVKDIAADKNGFLYMTAEGMATGFAQDLSAEQTAVMTATQGPIRASAFDDKTSVAAWKGKPTWYVVAKEDRMIQPDLQRAFAKKIGAKVTEIEASHVPQQSRPADVAKVIIQAVQKSQNANANANANA
D1-35_053981560COG2303putative GMC-type oxidoreductaseATGCCTGTGAATCGCGAGGTGAAAAAGCATTATTTCGATTTTATCGTCTGTGGGGCGGGAGCTGCCGGCTCCGTCGTGGCCGGTCGCCTGGCCGAGAATCCTGAGGTAGAGGTATTGCTTATCGAGGCCGGCGGCAGCGACGAACATCCCCACGTGCTGGAACCGGGGAACTGGCCGCTGAACCTGGGCACCGAGCGCGATTGGAATTTCGTGGGTGCGGCAAACCCTCATCTCAACGACAGGAAAATCCCGCTGAATATGGGCCGCGGACTGGGCGGTGGGTCCAGCGTCAATGTCATGTTGTGGGCCCGCGGTCATAAAAACGACTGGGAAGATTTTGCCGCGCAAAGTGGCGACCCGGCGTGGAGCTACGCCTCGGTCCTGAAGATATATCAACGCGTGGAAGACTATCGGGGCACCTGCGATCCGGTCCGTCGTGGCAAGGGCGGACCGGTTCATGTCGCGCCTGTACGAGATGCTCAGCCGATTGCCAACGCCATGATCAGCGCGGCTGTCGGCATGGGTATACCGGCTTTCGAGAACCCGAACGGCGCGATGATGGAAGGTCGCGGAGGTGCGGCCCTGAACGACCTCATCGTTAAGGACGGCCAGCGTAACTCCATTTACCGCGCCTACGTCGCTCCACGCATTGGCCAGCCCAACCTCACGGTCCTGACTGATACGCTTGTCAGCCGCGTGCTTTTCCGGGACCAGCGCGTCATTGGCGTGCAAACCATACGCAATGGGCAGACCGAGTGTTTTTACGCCGACCACGAAGTGGTTCTTTCTCTGGGGGCGGTCAACACCCCCAAAGTCCTGATGCAATCAGGCGTGGGACCGGAGGAAGAATTGCAGCGTCATGGCATCCCGCTCGTCCAGCATCTCCCCGGCGTTGGCGCCAATCATCAGGATCACGTGTCCTTTGCGGTTATTTTCGAATACGCGACGCCACAACCGGTGGGCTATGGTGGCTCGGAGGCGACGCTCTACTGGAGCAGCGAAAGCGCTTTGCATCTCCCGGACATGTTCCACTGCCAGGTTGAATTTCCCGTACCCAGCGCAGAGACCGCTTCACTCGGTGTTCCCGCACATGGCTGGACAATGTTTGCCGGCCTTGCCCACCCGGAAAGTCGCGGACGGGTCAAGCTCAGCGGCCCGGATGTGACCGATGCCCCGATCATTCAGCCCAACACCCTCTCTCACCCCACCGATCGACGCAACGCGCTGGAGAACATCCGTTTTGTCCAGGAACTGGGCGCACAGGCACCCTTCAAGGGCTTGGTCAAACGTGAAAGCCTGCCGGGAAAACTCGACACCCAATCGCTCGAACATTATGCGCGCAACGCCGCCGTTACTTACTGGCACCAGTGTGGTACGGCAAAAATGGGCCAGGACGCGATGTCCGTGGTCAATGGTCAGCTGCGTGTCTATGGGGTCCAGGGCCTGCGCATTGCCGATGCATCCATCATGCCGCACGTCACGAGCGGCAATACGATGGCCCCTTGTGTCGTGATCGGTGAGCGGGCCGTGGAAGCCATACGGACCACTTACGACATATAAMPVNREVKKHYFDFIVCGAGAAGSVVAGRLAENPEVEVLLIEAGGSDEHPHVLEPGNWPLNLGTERDWNFVGAANPHLNDRKIPLNMGRGLGGGSSVNVMLWARGHKNDWEDFAAQSGDPAWSYASVLKIYQRVEDYRGTCDPVRRGKGGPVHVAPVRDAQPIANAMISAAVGMGIPAFENPNGAMMEGRGGAALNDLIVKDGQRNSIYRAYVAPRIGQPNLTVLTDTLVSRVLFRDQRVIGVQTIRNGQTECFYADHEVVLSLGAVNTPKVLMQSGVGPEEELQRHGIPLVQHLPGVGANHQDHVSFAVIFEYATPQPVGYGGSEATLYWSSESALHLPDMFHCQVEFPVPSAETASLGVPAHGWTMFAGLAHPESRGRVKLSGPDVTDAPIIQPNTLSHPTDRRNALENIRFVQELGAQAPFKGLVKRESLPGKLDTQSLEHYARNAAVTYWHQCGTAKMGQDAMSVVNGQLRVYGVQGLRIADASIMPHVTSGNTMAPCVVIGERAVEAIRTTYDIPGPT0013615_4461DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_ABIOTIC_STRESSNEUTRALIZING_OSMOTIC_STRESSOSMOTIC_STRESS-GLYCINE-BETAINE_METABOLISM,PGPT0013615-betA|CHDH-K00108NANA
D1-35_05399927pgrR_8HTH-type transcriptional regulator PgrRATGGCGGATCTTCGTGTTGGGCTCAGTGAGTTGGAGGCGGTAACGGCGGTGGCGCGCCGGGCCTCGTTTCGGCAAGCCGCTATCGACTTGAGCGTTTCGACGACCGCGCTGAGCAATACCATCGCCAAAGTGGAGTCGAGCCTTGAAACGCGGCTGTTCAATCGCACGACGCGCAGCGTGTCCCTCACCGAGGCCGGCCGGATGTACATGGCCCAAGTCGGGCCGGCGCTGCAGGATGTTCGCGCGGCGCTTGAGACGGTGCGCTCGCACAATGTCGGACCTTCGGGAATATTGCGCATCAACGCATTTGCCAGTGCTGCCCGTATGACACTGATGCCGCTGTTGCTGGAGTTTTCGCAGCGTTACCCGAAGGTGCATATCGATCTGGTGACCGAAGGGCGCCTGGTGGATATCGTCGCTGACGGTTTCGACCTTGGGGTGCGGTCTGCCAATCTGGTACCCAGCGACATGATTGTCGTCCCGCTGGACCGACCGCAACGTTACGCCATCGTCGGCGCGCCGGCGTACTTCGAAAAGCACGGCCGACCTCGAACGCCAGCCGATCTACTCAACCATGGCTGCTTGCGGATCCGCCTGCCCAACGGTGCCATTTATCCGTGGCATCTGGAACGCGACGGGGAGGTCATCAGGCTGGATGTGAACGGGCAATTCACGCTGGACGAACCTGGCCTTGCCAAGGCGGTAGTCGGGGCGGGCGTGGCTCTCGGTTTTTTCATGGAACAGGACGTTCAGGGCGAAATCGAGCGTGCGGAGTTCGAGCGGGTGCTGGAGGCGTGGACCCCCGCGCGAGACAACTTGTGTCTGTATTACCCCAACCGGCGCAACCCTTCGGCAGTGCTCAAGGCGTTTACCGACTTGGCCCGCGCCAGCCTGGTCGGCAACGAAACACTGGCGCTGCCGGCCTGAMADLRVGLSELEAVTAVARRASFRQAAIDLSVSTTALSNTIAKVESSLETRLFNRTTRSVSLTEAGRMYMAQVGPALQDVRAALETVRSHNVGPSGILRINAFASAARMTLMPLLLEFSQRYPKVHIDLVTEGRLVDIVADGFDLGVRSANLVPSDMIVVPLDRPQRYAIVGAPAYFEKHGRPRTPADLLNHGCLRIRLPNGAIYPWHLERDGEVIRLDVNGQFTLDEPGLAKAVVGAGVALGFFMEQDVQGEIERAEFERVLEAWTPARDNLCLYYPNRRNPSAVLKAFTDLARASLVGNETLALPANANANANANA
D1-35_05400330hypothetical proteinATGAACCTCAAGCTTCCCAGCGTCGTCGAGCAGTACTTCGACATCACCAATGGCAGCGATGCATCAAGCCTGGCGGCGTGTTTCAGCACAGACTCCACCGTGTTCGACGAAAACCGGACACATGAAGGGATCGAGGCGATCGAGGCCTGGCGACGCGAGACACAGCAAGCCTTTGCTTTCCAGGTCGAGCCAACCGAGGTTATCGACGGTGCAGGCACGTTGACCGTCTTCGCTCGTGTAACTGGTGATTTCCCAGGCAGTCCAGTCAAGTTGAAGCACCTGTTTACCTTAGCGGATGGTCGGATCCGCGCATTGGAGATTACCCCGTGAMNLKLPSVVEQYFDITNGSDASSLAACFSTDSTVFDENRTHEGIEAIEAWRRETQQAFAFQVEPTEVIDGAGTLTVFARVTGDFPGSPVKLKHLFTLADGRIRALEITPNANANANANA
D1-35_05401777fabG_113-oxoacyl-[acyl-carrier-protein] reductase FabGGTGAATCTGGATCTGAAAGGCAAACGCATTCTGGTTACCGGCGGCACCAAGGGCGTCGGCGAAGCGGTTGTCGAGTTGCTGCTCGACGAAGGCGCAAAAGTACTGACCTCAGCGCGCCAGGCGACCACCGGGATGTCACCAGACTTGTGCGTTCCGGCGGACCTGTCGACCCGGGAGGGCTGCGAGACACTGGTGGCAGCGACCAAGCGAATACTCGGTGACGTCGACGTCATCATCCACGTCGTCGGAGGCTCATCGGCACCCGGTGGCGGCTTTGCCGCACTGGACGAGGAACACTGGCAACGCGAACTCGATCTGAACCTGTTTGCGGCCGTGCGCATCGACCGAGCCTTGTTGCCCGCCATGCTCGAACGAAACGAAGGCGTCATTATCCACGTGACGTCCATCCAGAATCGATTGCCGTTGCCTGAAGCCACGACCGCTTACGCGGCTGCCAAGGCTGCGCTCTCGACTTACAGCAAAAGCCTGTCGAAGGAGGTTTCGCCGAAGGGCGTGCGTGTTGTCCGGGTATCGCCGGGGTGGGTTGAAACCGACGCGTCGGTCGCATTGGCCGAGCGCCTGGCAGAGCAAGCAGGTACCGACTATGAAGGCGGCAAGCGGATGATCATGGACGCGCTAGGCGGCATTCCACTCGGCCGCCCCTCGAAGCCTGCTGAAGTGGCGAACCTCATCGCTTTCCTGGCCTCGCCCCGCGCGGCATCCATTACCGGCAGCGAATTTATCATTGATGGGGGCACCATTCCGACGGCGTCATGAMNLDLKGKRILVTGGTKGVGEAVVELLLDEGAKVLTSARQATTGMSPDLCVPADLSTREGCETLVAATKRILGDVDVIIHVVGGSSAPGGGFAALDEEHWQRELDLNLFAAVRIDRALLPAMLERNEGVIIHVTSIQNRLPLPEATTAYAAAKAALSTYSKSLSKEVSPKGVRVVRVSPGWVETDASVALAERLAEQAGTDYEGGKRMIMDALGGIPLGRPSKPAEVANLIAFLASPRAASITGSEFIIDGGTIPTASNANANANANA
D1-35_054021389hypothetical proteinATGGAAGCGGAAGAAATGAATAGATTAGGCCCGACTGGATGGAACCAACAGTTCAGCTTCAACCCCGGAAAAGCCCCGAAGCTCGAACATGCCACGTCGGTTTCTCCCCGCCCGTTGACGGAGGTGGTCCGCGAGGACATCAAAAAGGTCAGCCAGCAAACGGGCATCAGCGCGGAGCACTTGCATCAACTACATGCCATCGCGCGCAGACATCAATGCGTTATCGCGTTTCGCCCCGTTGATCCACATAACGCGCAGCTGATAGAGATGGGTTACCCGACCAAGGGGCTGAACATAAAAGGAAAGAGTTCCATGATCGGCCCCCTGTTCGGATTCATTCCGGTAAAACAGCAGCTCTGTGGCAAGGGCAGCACCGCATCGGACGATATAGAAAAAGCCAATTTGCACGTCGAGCAATGTGTGGCAAACGGCCATGCGGTTAAAGTCCCCTTGGAACTGCCTGCGGCACGAATGGATTATCTGAAGCAACATGATTTGATCAGGGCGCTTGATCCGCCCGCATTCGAGAGCACCAGGGAAGATGGGTCTACGTTTAGCTTCACTGCTGAAGAAACAACCAGCGGCAACTATCGAATAGCCACGCAGGGCCAGGTTGTAGAAGTCCTGGCACCAAAGATTCAACCTCACGGCGAGCCAGCTCGGCCTTTTACCGCCGACTACGACTTGCTGTTTCTGATGCCTCAATGGGATGACGTCCCGCAACAAAGCCAACGACGAGGCTCAGCAACGCCAGCCGCGCCAAACGAGCAGCCGTTTAATATTGGCGTCGCCCATATTCGGTCGAAATATGAAAATGTCGCCCCCACAGATACGCAGGATTCCCACCCGCCAGTCGACTATCTCACCCGCCTCGAGGAACGAGTCATCAACGACATCAACCACGAATTACGCGGCGAGTTGAAAACCCATCTGAACATGGACAATCCGTCCGACTGGAACCTCGTTCATCATGGCTCGGACGAAGGCAACCCAGGCACCAACATGCGCAATAACTTCCCAGCCACCGTCGTTGCCCCGCAAGCACTCGGTGAATTTGGCGCCATCACCGTCCTACCTGACATGGACAGGTTGAATGAGTTCCTGGTGGAGGCACGTGACGCTCGCGGAAGCGGTCGTACGGGCTATGTGCTGGTCGGTAACCGGCAATGGCTCGATGACGAACTAAAAACCAACGTCACTAACCGCAGCCAGGAGATCATGCGCAAGCTCAGTAGTCCGTCGTCCTTTTCGCCACCTGAAACGCGTCGTGGTAGTACAGCCTCCGGTGAAGGCAGCCGGCGTGGCAGTCATATTTCCCAGCCTGAACTGGATTTATTGAGAGGGGCTGCCGAGCGTCGCAGGGCTCAGTCCGGTAGGTTGCCTGAATGAMEAEEMNRLGPTGWNQQFSFNPGKAPKLEHATSVSPRPLTEVVREDIKKVSQQTGISAEHLHQLHAIARRHQCVIAFRPVDPHNAQLIEMGYPTKGLNIKGKSSMIGPLFGFIPVKQQLCGKGSTASDDIEKANLHVEQCVANGHAVKVPLELPAARMDYLKQHDLIRALDPPAFESTREDGSTFSFTAEETTSGNYRIATQGQVVEVLAPKIQPHGEPARPFTADYDLLFLMPQWDDVPQQSQRRGSATPAAPNEQPFNIGVAHIRSKYENVAPTDTQDSHPPVDYLTRLEERVINDINHELRGELKTHLNMDNPSDWNLVHHGSDEGNPGTNMRNNFPATVVAPQALGEFGAITVLPDMDRLNEFLVEARDARGSGRTGYVLVGNRQWLDDELKTNVTNRSQEIMRKLSSPSSFSPPETRRGSTASGEGSRRGSHISQPELDLLRGAAERRRAQSGRLPENANANANANA
D1-35_054031380hypothetical proteinGTGACGATCCGGGTCGATGGCCTCGACCACATCGCCCTGGGCATTACGCCGGTAGGTCCACACGGCTTTGCCGCGCTGTCGGGCGTGCAGGAAACCGTTGCGGTATTCGTAGGACGTGGGCTCGCCTTCAGGCGGAATCAGCGCCACCAGCCGTCCGGCTTCGTCGTAGCGGTATTCGGTGACCGCGCCCAGCGGATCCTGCTCGGCGGTCAGCCGACCCTGCTCGTCATAAGCCTTGAGCTGTTCGCCGCCAACGGGATCGACCTGGCGCACCAGCCGCGCACGGTCGTCGTGGACGTACACCTCCTGGCTGCCGTCCCGATGCCGGACCGTGACGCTGCCGTCTTCGCCCCAGCTGTAGTGGCTGTCCATCTGCGCGAACGACGCCCTGTGCCGCACACAGCGCGCCGCCGGGCCGAGGCCTTGCCATTCCCAGTAGAAACTTGCGCCGCCGGCCAGTTGCCGCTGGAGGATGACGTGCTGGTCGTCGTAGTCGTAGCGCTCGCTTTCGCCAGCGGCATTGGTCGCCTCTACCAGTCGGAAACGGCCGTCGTAGCGGTAGGTCACCAGCGTCTGTTCGGTGCGCCAGGCATCGTCCGGATGCTGTTTCGGGTCAAAACTCTGATAGTCGATGGCAACCAGGTGGCGATGCTCGTAGCGCAACCGCAGACCGCGCCGGGCGCCGTTGTCCAGGCGGCTGATGTCGCCGTAGATGTTGCGCTGGACGGTCAGACGGTTGTCGTACCGATCGCTCAGCGCCGTCAGATGACCGTCGCGAAAGTGCAGGAAAGGGGCGTCTTCGCCGGGCTGGGCGATGATCAGTTCGTCCGGCTCGCAGCTCAGGTAGATCGCCGCGCGGGCCAGGCTGTTGTGGATCGCCGGGCGTTGCAGGTTGGGGCGAGGGAAGGTGGTGCGGCGGTTTTCCTGATCAATCCAGGTCACCTGTTCGCCCTCGATCACCAGGCGATGGGCCAGGCCATGGCTCCAGCCACGGCCGAGGCCGACGTCCAGCTCGGCGGCGCTGGTGCGATAGAGACGGGTGAAGACGAAGGGCAAGCGCCCGTCGAGGGTGCCGTCCTCCAGGGTCAGCAGTTCCTCGCCAGTGACCATCGACACCGGACAGCCGTCGGTGCGGGTCTGGGCGGCGCTGTCGGCGGGGTCGCCGTTGGGGTTTTTCGATGGGGTGGGGGCGTCGTCGTGGGCTTCGTCTTTTTTCAGCGTGGTGTTGCGCTGCGCGTCCCAGCGCAATTGCATCCGGCCTTTTTTCACGCCAGCGGCGATGCCTCGCGCCGCCACGGTTTTGTAGCGGTCCACGTAGGCCATGAACCCGTTCACCACCGCGAAGATCGCCCGGATGAAACGCGTCATCGCGTCCAGTAGMTIRVDGLDHIALGITPVGPHGFAALSGVQETVAVFVGRGLAFRRNQRHQPSGFVVAVFGDRAQRILLGGQPTLLVISLELFAANGIDLAHQPRTVVVDVHLLAAVPMPDRDAAVFAPAVVAVHLRERRPVPHTARRRAEALPFPVETCAAGQLPLEDDVLVVVVVALAFASGIGRLYQSETAVVAVGHQRLFGAPGIVRMLFRVKTLIVDGNQVAMLVAQPQTAPGAVVQAADVAVDVALDGQTVVVPIAQRRQMTVAKVQERGVFAGLGDDQFVRLAAQVDRRAGQAVVDRRALQVGAREGGAAVFLINPGHLFALDHQAMGQAMAPATAEADVQLGGAGAIETGEDEGQAPVEGAVLQGQQFLASDHRHRTAVGAGLGGAVGGVAVGVFRWGGGVVVGFVFFQRGVALRVPAQLHPAFFHASGDASRRHGFVAVHVGHEPVHHREDRPDETRHRVQNANANANANA
D1-35_05404951hypothetical proteinGTGCCGGACCAGGCGCATCGACAGGTAGGCAATCCCGGCGCCCGCCCCGGCGAAGGTCAATACCACGCCGATCAGCAGGTCGATCACCAGCTGCACGACTACCATGGACAACGCTTCGGCCGTGCCGCCGGCCACTTCGCTGGGCGGCAGCATGTCCAGCCAGAGACTCGCGGTGCGCACCAGCAGGCACAGCGCCGCTTCGTCGCTGGCGAGCAACTGCAGCTTGGCCATGATCTGCGGGGACGACTCGGCAAGTTCGATCAGGTCCGCCGCACCGCTGCCCAATTGATCGCCAAACCGGCTCGGGTCCTTGAGGATGTCCGAGAGCAAGCTGATGCTGTCCCAAACGCCCTCGATGGCCGCCCAACCGCCGGCGAGCAGGCCATTGCCCACCGCGGCCGCCGACGATTGCTGCGCCCATTGCGGCTTGAAAACCTGCCATTCGCTACGCAGCCAGTCCGTCAGATCAGCAGTCAGGCCGTTGTAGGAAGAAAACAGGTCCTCGATCTGCCTGGGGGTGACTTCGCTTTGAACGTGAACCCGGTAGTAGCGACCCGCTTCGCCTTTGAAGGTCCCGACGCCCTGGGCATTCAGCTGGACGGGGGTGACCTCGCCGCTGTCCACCGACACTACATCCACCACGATGTCGCCGAGCGGAATGTCGTACACCGACTCGAGCTTGCTCTCGATCGTCAGGACCCCACCCTTGGGGCATCGAGCGACGGTCGAGTGAAAATCACTGTCGCGGCTGCTGACCGTCGTGGCGTTGCCACCAAAAAGAAGCACCCGTTCCATGCCCATCAGCGAAGGCAAGTCGGCCGCCTGGCTGGCCCGGTCCGCCGCACGGGCGTACCAGCGGTCGAGTTGTTCGCGGTAGAGGGAAAGGCTGTCTTTGAAGCTGTCGAGTTCCGCCTCGATGCGGCGCACCTGATCCATCAGGAAGCGGTCTGAMPDQAHRQVGNPGARPGEGQYHADQQVDHQLHDYHGQRFGRAAGHFAGRQHVQPETRGAHQQAQRRFVAGEQLQLGHDLRGRLGKFDQVRRTAAQLIAKPARVLEDVREQADAVPNALDGRPTAGEQAIAHRGRRRLLRPLRLENLPFATQPVRQISSQAVVGRKQVLDLPGGDFALNVNPVVATRFAFEGPDALGIQLDGGDLAAVHRHYIHHDVAERNVVHRLELALDRQDPTLGASSDGRVKITVAAADRRGVATKKKHPFHAHQRRQVGRLAGPVRRTGVPAVELFAVEGKAVFEAVEFRLDAAHLIHQEAVNANANANANA
D1-35_054051785araC_2L-arabonate dehydrataseATGAGTGACACGCCAAAACGCCGCCTGCGCAGCGAGCAGTGGTTCAACGACCCGGCTCACGCGGACATGACCGCCCTGTATGTCGAGCGCTACATGAACTACGGGATGACTCGCGAAGAGCTGCAATCGGGCCGGCCGATCATCGGCATCGCCCAGACCGGCAGCGACCTGACGCCCTGCAATCGTCATCACCTGGAGCTGGCGCAACGGGTCAAGGCCGGCATCCGCGATGCTGGCGGCATCCCGATGGAATTCCCGGTGCACCCGATCGCCGAACAGTCGCGCCGGCCCACTGCCGCCCTGGACCGCAACCTGGCCTACCTGGGCCTGGTGGAAATCCTCCATGGCTACCCGTTGGACGGCGTGGTGCTCACCACCGGCTGCGACAAGACCACCCCGGCGTGCCTGATGGCGGCGGCGACCACCGACCTGCCGGCCATCGTGCTCTCCGGCGGGCCGATGCTCGACGGCCATCACAAGGGCGAACTGATCGGCTCCGGCACCGTGCTCTGGCACGCACGCAACCTGATGGCCGCCGGCGAAATCGACTACGAAGGCTTCATGGAAATGACCACGGCGGCATCGCCCTCCGTGGGCCACTGCAACACCATGGGTACCGCGCTGTCGATGAACGCCCTGGCCGAAGCCCTGGGCATGTCGCTGCCCGGTTGCGCGAGCATTCCGGCGCCCTATCGCGAGCGCGGGCAGATGGCCTACGCCACCGGCAAGCGCATCTGCGAACTGGTGCGCCAGGACGTGCGCCCATCCCGGATCATGACTCGAGAGGCGTTCGAAAACGCCATCGCCGTCGCCTCGGCACTCGGCGCATCGAGCAATTGCCCGCCGCACCTGATTGCCATCGCCCGGCACATGGGCGTCGAACTGAGCCTGGACGACTGGCAGCGGATTGGCGAAGACGTGCCGCTGCTGGTCAACTGCATGCCGGCCGGCAAGTACCTCGGCGAAGGCTTCCACCGCGCCGGTGGCGTGCCGGCAGTCATGCATGAACTGCAAAAGGCCGGGCGCCTGCACGAGGACTGCGCCACGGTCAGCGGCAAATCGATTGGCGAAATCGTCAGCAGCAGCCTGACCAGCAACGCCGATGTCATCTACCCGTTTGATACCCCGCTCAAGCATCGCGCCGGATTCATCGTGCTCAGCGGCAATTTTTTCGACAGCGCGATCATGAAGATGTCGGTGGTCGGCGAGGCGTTTCGCAAGACCTACCTGTCCGAGCCCGGCGCCGAAAACAGCTTCGAAGCCCGGGCGATCGTGTTCGAAGGGCCGGAGGATTACCACGCGCGGATCGACGACCCGGCGCTGGACATCGACGAGCGCTGCATCCTGGTCATTCGCGGCGTTGGCACCGTGGGTTATCCGGGCAGCGCCGAGGTGGTGAACATGGCGCCACCCGCAGCGTTGATCAAACGCGGTATCGACTCCCTGCCCTGCCTGGGCGACGGCCGCCAGAGCGGCACCTCGGCGAGCCCGTCGATCCTCAACATGTCCCCTGAAGCGGCGGTGGGCGGCGGCCTGGCGCTGCTGCAAACCAACGACCGGCTGCAAGTGGACCTGAACACCCGCACCGTCAACCTGCTGGTCGACGAGGCCGAAATGGAACGGCGCCGTCGCGAATGGACACCGAGCATCCCGCCCTCGCAAACGCCCTGGCAGGAACTCTATCGGCAACTGGTCGGGCAGCTGTCCACCGGCGGCTGCCTGGAGCCGGCCACGTTGCATTTGCGGGTAATCGCCCGGAGTGGCGAGCCGCGGCATTCGCACTGAMSDTPKRRLRSEQWFNDPAHADMTALYVERYMNYGMTREELQSGRPIIGIAQTGSDLTPCNRHHLELAQRVKAGIRDAGGIPMEFPVHPIAEQSRRPTAALDRNLAYLGLVEILHGYPLDGVVLTTGCDKTTPACLMAAATTDLPAIVLSGGPMLDGHHKGELIGSGTVLWHARNLMAAGEIDYEGFMEMTTAASPSVGHCNTMGTALSMNALAEALGMSLPGCASIPAPYRERGQMAYATGKRICELVRQDVRPSRIMTREAFENAIAVASALGASSNCPPHLIAIARHMGVELSLDDWQRIGEDVPLLVNCMPAGKYLGEGFHRAGGVPAVMHELQKAGRLHEDCATVSGKSIGEIVSSSLTSNADVIYPFDTPLKHRAGFIVLSGNFFDSAIMKMSVVGEAFRKTYLSEPGAENSFEARAIVFEGPEDYHARIDDPALDIDERCILVIRGVGTVGYPGSAEVVNMAPPAALIKRGIDSLPCLGDGRQSGTSASPSILNMSPEAAVGGGLALLQTNDRLQVDLNTRTVNLLVDEAEMERRRREWTPSIPPSQTPWQELYRQLVGQLSTGGCLEPATLHLRVIARSGEPRHSHPGPT0017560_368DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_CARBOHYDRATE-PENTOSES_UTILIZATIONPLANT_DERIVED_XYLOSE|XYLULOSE_DEGRADATION,PGPT0017560-xylD-K22186NANA
D1-35_054061182hypothetical proteinATGTCGCTGATGCTTACCCCCGAGAACACGCTGCCGGTCGATGGCCTGGCCGGCACCCTGATTGGTCGTGCCTGGGTCCCTGGCCGGGTCGCCGGGCCTTCGCCAATCGTGCTGCGCAGCGACGGAGTGTTCGACCTGTCGGAGCGTTTCGCGACGTTGAGCGATTTGCTGGAAACGCCCGCGCCGCTGACAGCGGTCAGGCAAACGCCTGGCACGTTCATCGCCAGCGTCGACGCGCTGCTGGCCAACACCGGCATGCATGCTGACCCGACCAAGCCGTTCCTGTTGCCGCCCTTGGACTTGCAAGTGATCAAGGCCGCCGGCGTGACCTTCGCCGCGAGCATGATCGAGCGGGTGATCGAGGAGCAGGCTGGCGGTGACGCGGCCCGGGCCGAAGCCGTGCGCGCGACGGTGCACAGCGTCATTGGCGACAACCTGCGCTCGATCGTCCCGGGCTCCGAGCAAGCCATGCGCCTCAAGGCCTTCCTTATCGAACAGGGCATGTGGTCGCAGTACCTAGAGGTCGGCATCGGACCGGACGCGGAAATCTTCACCAAGGCGCCGGTGCTGGCCGCCGTCGGCAGCGGCAGCCAGATCGGCATTCATCCAGCCTCGCAATGGAACAACCCGGAACCGGAAGTGGTGCTGGCGGTGAATAGCCGCGGCCAGATCCACGGCGCCACCCTGGGCAACGACGTCAACCTGCGGGACATCGAAGGCCGCAGCGCGTTGTTGCTGAGCAAGGCCAAGGACAATAATGCCTCGTGCGCCATCGGGCCGTTCATTCGGCTGTTCGATGAACACTTCAGCCTGGACGACGTGCGGGCCTGCGAGGTCGATCTGCAGGTACACGGCGAAGACGGTTACCGCCTGCACGGCTGCAGCTCCATGAGCCAGATCAGCCGCGACCCGCAGGACCTCGCAGGCCAGACACTCAACGCCAACCACCAATACCCGGATGGCTTCCTGCTGTTTCTCGGTACCCTGTTCGCCCCCACCGAGGATCGCGACCACGCCGGCAGCGGTTTCACCCACAAACTGGGCGACCGGGTCAGTATCAGCAGCCCGTTGCTCGGCTGTTTGCATAATCAGGTGACTCACAGCTGCGAGGCCGCGCCCTGGACCTTCGGCGTCGGCGCCTTGCTGCGTAATCTCGCCGCGCGGGGGCTGCTCGATCGCTGAMSLMLTPENTLPVDGLAGTLIGRAWVPGRVAGPSPIVLRSDGVFDLSERFATLSDLLETPAPLTAVRQTPGTFIASVDALLANTGMHADPTKPFLLPPLDLQVIKAAGVTFAASMIERVIEEQAGGDAARAEAVRATVHSVIGDNLRSIVPGSEQAMRLKAFLIEQGMWSQYLEVGIGPDAEIFTKAPVLAAVGSGSQIGIHPASQWNNPEPEVVLAVNSRGQIHGATLGNDVNLRDIEGRSALLLSKAKDNNASCAIGPFIRLFDEHFSLDDVRACEVDLQVHGEDGYRLHGCSSMSQISRDPQDLAGQTLNANHQYPDGFLLFLGTLFAPTEDRDHAGSGFTHKLGDRVSISSPLLGCLHNQVTHSCEAAPWTFGVGALLRNLAARGLLDRPGPT0018165_1DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_SUGAR_ACID_UTILIZATIONPLANT_DERIVED_GLACTURONATE|GLUCURONATE_DEGRADATION,PGPT0018165-aldH-K13877NANA
D1-35_05407939gbpR_2HTH-type transcriptional regulator GbpRATGTCCGATCTGTCCTTTTCCAGCTTCTGCGGCTGGCTCAAATTCCGCCATCTGCTGCTGATCGATACCTTGGGCCGCACCTGCAACATGCACCTGGCGGCCGAACAGATGAACCTCAGCCAGCCGGCGGTGAGCAAGATGCTCAAGGAAATCGAGAGCCTGCTCGGCTTCGCCCTGTTCGAGCGGCGTCCGCGCAGCATGCCGCCCACCGCGCTGGGCGAGCATGTGCTGCGCTACGCACAGATCGCTTTGAATGACGCGCGCTCGTTCGTCGAGCAGATCAGCAGCCTGCGGGAGGGCGGCCATGGTTATCTCAAGGTCGGCGGGATCTTTGCCGCGACCGCGGTGGCCCTGCCCGAGGCGATCCTGCAGATCAAGCAGCGCTGGCCGTTGTTGTCCATCGAGGTGGTAGAGCAGACCAGCAATCACCTGATGAAGATGCTGGAAGAGAAGAAGCTCGACCTGGCCGTGGCGCGGTTTACCGAGCAGAGCCAGCAGCAGCGCTACGACTTCCAGCCCCTGGCTCCGGAACCGTTCTGCATCGTCGTCAACGACCGGCATCCGCTGGCAGACGCCGGGCCGATATCGCTGCAGCAACTGGTGGACCTGCCATGGATTCTCTACCCGGTCGGCACGCCGATCCGCGCCCGCATGGAACTGGCGTTCGCCGAAGCGGGCGTGCGGATGCCGCGCAACACCATCGATACGATTTCCATGCAGACCTTCCTCCAGGTGCTGAAACGCGGCCCGATGATCGGCATGCTGCCCAATGCGATGGTTGATCCGCTGCTGGAAAGCGGCCAGCTCAAGACCCTCGATACCCCGTTGCACCTGGTGCCGCAGGATTACGGCATCCTCACGCGAAAGGACGAGCCGCTGGTGGGCGCGGCGCTGGAGTTTGCCGAGATCCTCAAGGACAACGCCCGCCAGAGTGGTTGAMSDLSFSSFCGWLKFRHLLLIDTLGRTCNMHLAAEQMNLSQPAVSKMLKEIESLLGFALFERRPRSMPPTALGEHVLRYAQIALNDARSFVEQISSLREGGHGYLKVGGIFAATAVALPEAILQIKQRWPLLSIEVVEQTSNHLMKMLEEKKLDLAVARFTEQSQQQRYDFQPLAPEPFCIVVNDRHPLADAGPISLQQLVDLPWILYPVGTPIRARMELAFAEAGVRMPRNTIDTISMQTFLQVLKRGPMIGMLPNAMVDPLLESGQLKTLDTPLHLVPQDYGILTRKDEPLVGAALEFAEILKDNARQSGNANANANANA
D1-35_054081383nicT_4Putative metabolite transport protein NicTATGCAAACCATCTCCGAGCCGTTGCCTGCCCAGGCGCAAGCCGGCGAACTGGATTTCGAAGACCGGACCTACCGCAAGGTGATCTGGCGGATCCTGCCAGTGCTGCTGTTGTGCTACATGGCGGCATACCTCGATCGGGTCAATATCGGCTTCGCCAAGCTCGACATGCTCGCCGAGTTGCAATTCAGCAACACCGTGTACGCCTTGGGCGCCAGTATGTTTTTCTGGGGCTATTTCCTGTTCGAGGTCCCCAGCAACCTGTTGCTGCATCGTCTGGGCGCGCGGTTCTGGATCGCCCGGATCATGCTCAGTTGGGCGGTGATCTCCATGGCCGTGGCCTACACGGTGCCGCTGGCAGCGTTCTTCCACATCGAATCGAGCACGATGTTTTATGTGCTGCGTTTCCTGCTAGGCATCTGTGAAGCAGGCTTTTTCCCCGGCGTGATCCTCTACCTCAACTACTGGTTCCCGACCCACCGGCAGAGCCGGGTGATGTCCGGGTTCCTGCTGGCGTTGCCGGTCAGCCTGACACTGGGCGGGATCCTGTCCGGGTGGCTGATGAACAGCATGCAGGGCGTGCAAGGCATGTCCGGCTGGCAGTGGATGCTGATCATCGAGGGCATCCCTTCGATCATCATGGCCTTCGTGGTGATCGTCTGCCTGGCCGATAACATCGACAAGGCCAAGTGGCTGTCGGCAGCGGAAAAGGCCATGCTCAAGGCCAACCTGCAAACCGACAACCAGGGCAAGGCTTCGCGCTTGAGCGAAGTGTTCTTCAACCCTCGCGTCTGGTTGCTGGTGCTGATCCTGCTGACCTTCAACACCGGTTTCTACGGCCTGGCCTTCTGGATGCCCTCGATCATCAAGAGCACCGGCATCACCAATAGCCTGCACATCGGCTTGCTCACCGCCATTCCCTACTCGGTGGCAATCGTGGCGATGCTGCTCAATGCGCGGCACTCCAACCGCACCGGCGAACGGCGCCTGCACGCAGCCATCCCGGCATTCATTGGTGGCGCCGGGCTGATCCTCAGCGCGTTTTTCGCCGATAACCTGGTGCTGTCGGTGCTGTTCCTCAGCGTCTCCGCCTCGGGGATCCTCAGCCTGATGCCGATTTTCTGGACCTTGCCGGGCACTGTGCTGTCGGGCGTTGCCGCCGCAGCCGGGATCGGCATGATCAACGCGATCGGCAACCTGTCGGGCTTCACCGGTTCGATGATCACGGCCGTGGCGGAAACCCTGACGGGCAATATCAACAACGGTACGTACGTCCTGGCGCTGTGCCTGTTGGTCAGCGGCGGGTTGATCCTGGCCATCCCCGCCTCGATGCTCGGCAGGACGCCCAAGACCGCGCCCACGGCCGCGCAACTGGAGACCGCATGAMQTISEPLPAQAQAGELDFEDRTYRKVIWRILPVLLLCYMAAYLDRVNIGFAKLDMLAELQFSNTVYALGASMFFWGYFLFEVPSNLLLHRLGARFWIARIMLSWAVISMAVAYTVPLAAFFHIESSTMFYVLRFLLGICEAGFFPGVILYLNYWFPTHRQSRVMSGFLLALPVSLTLGGILSGWLMNSMQGVQGMSGWQWMLIIEGIPSIIMAFVVIVCLADNIDKAKWLSAAEKAMLKANLQTDNQGKASRLSEVFFNPRVWLLVLILLTFNTGFYGLAFWMPSIIKSTGITNSLHIGLLTAIPYSVAIVAMLLNARHSNRTGERRLHAAIPAFIGGAGLILSAFFADNLVLSVLFLSVSASGILSLMPIFWTLPGTVLSGVAAAAGIGMINAIGNLSGFTGSMITAVAETLTGNINNGTYVLALCLLVSGGLILAIPASMLGRTPKTAPTAAQLETAPGPT0002325_617DIRECT EFFECTBIO-FERTILIZATIONPHOSPHATE_SOLUBILIZATIONP-SOLUBILISATION-ORGANIC_ACID_METABOLISMP-SOLUBILISATION-TARTARIC_ACID_TRANSPORT,PGPT0002325-ttuB-K13021NANA
D1-35_054097412-keto-3-deoxy-L-fuconate dehydrogenaseATGAACCTGCAAGGCAAGCGGGTGCTGGTGACGGCGGCGGGACAGGGCATCGGCCTGGCCAGCGCCGTGGCCTTCGCCCGGGCCGGCGCCGAGGTGTTCGCCAGTGACATCGATATTCGCGCGCTGGCGGGCATCGAGGGGGTCACGCCGATGCTCCTGGATGTCACCTCGGCCAGCGCCATCGACGCTGCCCGCGAGCGGATTGGCGGGTTGGACGTGCTTTTCAACTGCGCCGGCTACGTGCACAGCGGCACCATTCTCGATTGCGACGAAGCCGCCTGGGCGCGCTCGATGGACCTCAATGTCAGCGCCATGTATCGCATGATCCGCGCGTTTCTGCCGGGTATGCTGGCGCGTGGCGGCGGGTCGATCATCAACATGTCGTCGGTGGCGTCCAGTATCAAGGGCGTGCCCAATCGTTTCGCCTATGCTGCCAGCAAGGCGGCGGTAGTCGGTCTGACCAAGTCCGTCGCCATCGACTTCGTCAGCCAGGGTATCCGTTGCAATGCGATATGCCCCGGCACCGTCGACTCGCCTTCGCTGCGCCAGCGCATTGCCGACCAGGCGGCGCAGCAGGGGGTCGAGGAGGAACAGGTCTACCGGCAGTTTCTCGACCGCCAGCCCATGGGGCGCATCGGCAACACCGAGGAGGTCGCGCAACTGGCGCTGTACCTGGGCAGCGACGCATCTGCCTACACCACCGGGACGGTGCACGTCATTGACGGTGGCATGAGCCTCTGAMNLQGKRVLVTAAGQGIGLASAVAFARAGAEVFASDIDIRALAGIEGVTPMLLDVTSASAIDAARERIGGLDVLFNCAGYVHSGTILDCDEAAWARSMDLNVSAMYRMIRAFLPGMLARGGGSIINMSSVASSIKGVPNRFAYAASKAAVVGLTKSVAIDFVSQGIRCNAICPGTVDSPSLRQRIADQAAQQGVEEEQVYRQFLDRQPMGRIGNTEEVAQLALYLGSDASAYTTGTVHVIDGGMSLPGPT0008310_2927DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLNEUTRALIZING_BIOTIC_STRESSBIOTIC_STRESS_RESISTANCE-VOLATILESBIOTIC_STRESS_RESISTANCE-ALCOHOL|KETONE_VOLATILE_METABOLISM,PGPT0008310-bdh-K00019NANA
D1-35_05410849Ureidoglycolate lyaseATGAAACTGTTGCGTTACGGCGAAAAAGGTTCGGAAAAGCCCGGGCTGCTGGATGATGACAATCAGATCCGTGATCTGTCGGGCCACGTGCCAGACATCGCCGGGCAAGCCCTGGCTCCTGAAGGCCTGGCAAGACTCGCCGCCATCGACCCAGGCAGCCTGCCGGTCGTGGGCGGGCAGCCGCGGATCGGCGCGTGCGTCGGGCAAGTCGGCAAGTTCATCTGCATCGGCCTGAACTACGCCGACCATGCCGCCGAGTCGAACATGGAGGTGCCGAAGGAACCGATCATCTTCAACAAATGGACCAGCGCCATCTGCGGACCGAACGACGATGTCCAGATTCCCCGTGGCTCGCTCAAGACCGACTGGGAAGTCGAACTCGGCGTGGTCATTGGCAAGGGCGGGCGCTACATCGACGAAGCGAACGCCATGGAGCATGTCGCCGGTTATTGCGTCATCAACGATGTGTCGGAACGCGAGTGGCAACTCGAACGCGGCGGCACCTGGGACAAGGGCAAAGGCTTCGACACCTTCGGCCCGCTTGGACCCTGGCTGGTGACGAAGGACGAAATCGCCGATCCCCACGCGCTTGATCTGTGGCTGGAAGTCGACGGACATCGTTATCAGAACGGCAATACCCGGACGCTGATCTTCAGCGTGCCGCAACTGATTGCCTACCTGAGCCGGTGCATGAGCCTGCAGCCCGGCGACGTGATCTCGACCGGGACGCCACCGGGTGTCGGCCTGGGCATCAAGCCCAACCCGGTGTTCCTGCGCCCGGGCCAGACCATGCGCCTGGGCATTCAAGGTTTGGGTGAACAGCGTCAGGTGACGGTGCAGGCGGACTGAMKLLRYGEKGSEKPGLLDDDNQIRDLSGHVPDIAGQALAPEGLARLAAIDPGSLPVVGGQPRIGACVGQVGKFICIGLNYADHAAESNMEVPKEPIIFNKWTSAICGPNDDVQIPRGSLKTDWEVELGVVIGKGGRYIDEANAMEHVAGYCVINDVSEREWQLERGGTWDKGKGFDTFGPLGPWLVTKDEIADPHALDLWLEVDGHRYQNGNTRTLIFSVPQLIAYLSRCMSLQPGDVISTGTPPGVGLGIKPNPVFLRPGQTMRLGIQGLGEQRQVTVQADPGPT0021665_53DIRECT EFFECTCOLONIZING_PLANT_SYSTEMCOLONIZATION-PLANT_DERIVED_SUBSTRATE_USAGEPLANT_DERIVED_NUCLEOSIDE_METABOLISMPLANT_DERIVED_PURINE_METABOLISM,PGPT0021665-ugl-K16856NANA
D1-35_05414198hypothetical proteinATGTTCAATGACTTGAGTCGCCTCGGTAAATACCTCGGTCAGGCCGCCCGCCTGATGGTCGGCATGCCCGACTACGACAACTACGTCGAGCACATGCAAACCAAGCACCCCGACAAGCCGATGATGGACTACGAGGCGTTCTTCCGAGAACGCCAGGAAGCCCGTTACGGTGGCAAGGGTGGCCCCAAATGCTGTTGAMFNDLSRLGKYLGQAARLMVGMPDYDNYVEHMQTKHPDKPMMDYEAFFRERQEARYGGKGGPKCCNANANANANA
D1-35_054151935btsTCOG1966Pyruvate/proton symporter BtsTGTGGCCATCTACCTGGTCGCCTACCGCTACTACAGCCTCTTCATCGCCAACAACGTGATGCAACTCGATGCGCGCCGGGCCACGCCCGCCGTGCTCAACAACGATGGCCTGGACTACGTCCCGACCAACAAACACATCCTTTTCGGCCACCACTTCGCGGCCATTGCCGGCGCGGGGCCGCTGGTCGGGCCGGTGCTGGCGGCGCAGATGGGCTATCTGCCCGGCACGCTCTGGCTGATCGCCGGCGTGGTGCTGGCCGGTGCGGTGCAGGACTTCATGGTCCTGTTCCTGTCGACCCGCCGCAACGGTCGCTCGCTGGGCGACATGGTGCGCGAGGAAATGGGCCGCATCCCCGGCACCATCGCGCTGTTCGGCTGCTTCCTGATCATGATCATCATCCTCGCGGTGCTGGCGCTGATCGTGGTCAAGGCCCTGGCCGAGAGCCCGTGGGGCATCTTCACGGTGATGGCGACCATCCCGATCGCGATGTTCATGGGCATCTACATGCGCTACATCCGCCCGGGCCGCATCGGTGAAATCTCGCTCATCGGCGTGCTGTTGCTGCTCGGTTCGATCTGGCTGGGCGGGCAGATCGCCGCCGACCCGGTCTGGGCCAAGGCCTTCACCTTCACCGGGATCCAGATCACCTGGATGCTGATCGGCTACGGCTTTGTCGCCGCGGTGCTGCCGGTGTGGCTGATCCTGGCGCCACGGGACTACCTGTCGACCTTCCTCAAGATCGGCACCATTATCGCCCTGGCGATCGGCATCCTGGTGACCATGCCCGAGCTGAAAATGCCGGCGCTGACCCAGTTCACCGACGGCACCGGACCGGTGTGGAAGGGCGGTCTGTTTCCGTTCCTGTTCATCACCATCGCCTGCGGCGCGGTCTCGGGTTTCCACGCGCTGATCTCCTCAGGCACCACGCCCAAGCTGCTGGATAACGAAACCAACGCGCGCTACATCGGTTACGGCGGCATGCTGATGGAGTCGTTCGTGGCGATCATGGCGATGGTCGCGGCCTCGGTGATCGAGCCGGGCGTGTACTTCGCCATGAACAGCCCGGCGGCGATCGTCGGCACCGACGTGGTGGCCGTGGCCCAGACCGTCAGCAGTTGGGGTTTTGCAATCACCCCCGACGCGCTGCAAGCGGTGGCCAAGGACATCGGCGAGACCACCATCCTGGCCCGTGCCGGCGGTGCGCCGACCCTGGCGGTGGGTATCGCGCAGATCCTCCACTCGGTGCTGCCGGGTGAGAACACCATGGCGTTCTGGTACCACTTCGCGATCCTGTTCGAAGCGCTGTTCATCCTCACCGCGGTAGACGCCGGCACCCGTGCCGGGCGGTTCATGCTGCAAGACCTGCTCGGCTCGTTCGTCCCGGCCCTCAAGCGCACCGAATCGTGGACCGCGAACCTGATCGCCACCGCCGGCTGCGTCGCGCTGTGGGGCTACCTGCTGTATCAGGGCGTGATCGATCCGCTGGGCGGCATCAACACCTTGTGGCCGCTGTTCGGCATCTCCAACCAGATGCTGGCCGGTATCGCGCTGATGCTCGCCACCGTGGTGCTGATCAAGATGAAGCGCCAGCGCTACGTCTGGGTCACGCTGCTGCCGGCCAGCTGGCTGCTGATCTGCACCACCACCGCGGGCCTGATCAAGCTGTTCGACGCCAACCCGGCGATCGGCTTCCTGGCCCTGGCGCGCAAATACAACGATGCCCTGGCCGCCGGCCAGATCCTGGCCCCAGCCAAGAGCATCGAGCAGATGCAGCACGTGGTGTTCAACGCCTACACCAACGCAACGCTGACGGTGTTGTTCCTGTTCGTGGTCTTCAGCATCCTGTTCTACGCGCTCAAGGTCGGCATCGCCGCCTGGGGCACGAAAGAACGCACGGACAAGGAAGCGCCATTCCAGGCGCTGCCGGACGCTTGAMAIYLVAYRYYSLFIANNVMQLDARRATPAVLNNDGLDYVPTNKHILFGHHFAAIAGAGPLVGPVLAAQMGYLPGTLWLIAGVVLAGAVQDFMVLFLSTRRNGRSLGDMVREEMGRIPGTIALFGCFLIMIIILAVLALIVVKALAESPWGIFTVMATIPIAMFMGIYMRYIRPGRIGEISLIGVLLLLGSIWLGGQIAADPVWAKAFTFTGIQITWMLIGYGFVAAVLPVWLILAPRDYLSTFLKIGTIIALAIGILVTMPELKMPALTQFTDGTGPVWKGGLFPFLFITIACGAVSGFHALISSGTTPKLLDNETNARYIGYGGMLMESFVAIMAMVAASVIEPGVYFAMNSPAAIVGTDVVAVAQTVSSWGFAITPDALQAVAKDIGETTILARAGGAPTLAVGIAQILHSVLPGENTMAFWYHFAILFEALFILTAVDAGTRAGRFMLQDLLGSFVPALKRTESWTANLIATAGCVALWGYLLYQGVIDPLGGINTLWPLFGISNQMLAGIALMLATVVLIKMKRQRYVWVTLLPASWLLICTTTAGLIKLFDANPAIGFLALARKYNDALAAGQILAPAKSIEQMQHVVFNAYTNATLTVLFLFVVFSILFYALKVGIAAWGTKERTDKEAPFQALPDAPGPT0015060_1073DIRECT EFFECTSTRESS_CONTROL|BIOCONTROLUNIVERSAL_STRESS_RESPONSESTRESS_SIGNALLING_PROTEINSSTRESS_SIGNAL-CARBON_STARVATION_RESPONSE,PGPT0015060-cstA-K06200NANA
D1-35_05416912hypothetical proteinATGCCGGTTGTAGTGCAGGCCGCTTTCCAGGTCGTGGTATTGGCCTTGGAAGCGCAACGGCTGGGTCAGTGGCTTGCCGGCGCCGTGGGCCAGCTTGGTGAGTTTGCCGTAGCCGGTGTAGCGCGCCGCCCAGACGACTTCGCCCTGGTGACTGGTCAGTTCCTGCGGTGTGCCGAGGTGGTCGTTGTGGTAGTAGAACGGCGTGGCGTTTTTTGGGCCTTGGCCTTCGAGCAGGGCGAGGGGGCGGAAGGTGCCGGGCTCGTAGACGTAGCTTTGGTAATGATGGTCGCTGCTTTCGGCGATGAGCTGGTCGCCTTGCCAGATGAATTCGGTGGTCTGGCCGTCCACGGTCTTTTCGATGCGTCGGCCGAAGGCGTCGTAGCGGTAGGACGTTTCGTTGCCTTCCGGGGTGGTGAGGCCGATAAGGCGGTGCTGGCTGTCGTAGCGGTATTCGGTGATCAGGCACTGGGTTTTACCGCGGCGCTCGCGGACCAGGTTGCCGTAGGCGTCGTAGTCGTAGTGGCGATCGCCCTCCATCAGCAGGCGGTTGCCCTTGAGGGTGGTCGGGCCGGGGCGGTCGTGCAGCAGCAGGTTGCCGGCCGGGTCGTGGGAAAAGTGCTCGGGGGGCTGGCTGTGGGCGTAGTCGATGCGCAGCAGGCGATCTTGCGGGTCGTAGTGGTAGGCGCGTCGGTTTCGGTTGTCGGACAGCGTGGCGAGGTTGCCGTTGGCGCTGTAGGAATAGTCGCGCCAGAACAATTGCTTCTGCTGGGTCTGCCATACGGTCTGGGCCTTGAGGCGGCCCTGTTCGTCGTAGTTGTAGTCGCTGAGCAGCAGGCCTTGCTGGCGCTGGCGTTCGCGGGTGCCGGTGAAGCGGTGTTCGGTCAGGCACTGGCCGTTGAGGTCGATGGCTAGMPVVVQAAFQVVVLALEAQRLGQWLAGAVGQLGEFAVAGVARRPDDFALVTGQFLRCAEVVVVVVERRGVFWALAFEQGEGAEGAGLVDVALVMMVAAFGDELVALPDEFGGLAVHGLFDASAEGVVAVGRFVAFRGGEADKAVLAVVAVFGDQALGFTAALADQVAVGVVVVVAIALHQQAVALEGGRAGAVVQQQVAGRVVGKVLGGLAVGVVDAQQAILRVVVVGASVSVVGQRGEVAVGAVGIVAPEQLLLLGLPYGLGLEAALFVVVVVAEQQALLALAFAGAGEAVFGQALAVEVDGNANANANANA
D1-35_05417216hypothetical proteinATGCACATGATGGCCGACTATTTTGCGCGAAAACGCATCAGTGACCAGGCTCACATAAGCGACGCTTTGTTCGGTAGGCAAGTAGGTTATATCCGCTACCCATACCTGTTCAGGACCCGTGGCAGTGACTTGGTCAGGGCCGGGTTTGAGCCGATTCGGATGTCGACGGAAGCGATGATGACTATCGGTAGTCTTGTGATAAGCGCGTTTGCGTAGMHMMADYFARKRISDQAHISDALFGRQVGYIRYPYLFRTRGSDLVRAGFEPIRMSTEAMMTIGSLVISAFANANANANANA
D1-35_05418210hypothetical proteinATGGTCTCGCAAGATATCGAACAACCGATCTCGACCTACCGTTCGCGTCAGTTCAGGTTCGGCTTGCATAAGGCCATGCAGCTTACGAGTGCCCAACCGGGGCATTTCAAGACGAGTCTCCAACACAAATCCCAGCACTCTTTGCGTATGTCTGGCTTGTGCGTCGTAAGCTCGATTGCGCTTGTAGTAGGCCTGCCGAGAGATGCCTAGMVSQDIEQPISTYRSRQFRFGLHKAMQLTSAQPGHFKTSLQHKSQHSLRMSGLCVVSSIALVVGLPRDANANANANANA
D1-35_05419189hypothetical proteinATGGCCGAGCCAAATTTGCCGCTGACACCAGAGCAGCGAATCAAGGAGCTGGAAGAAAAGCTGGCCCTTGCCAACCAGAAAGCCCAATTTTTTGAAGCTGTCGTTGACGTGCTGAAAAACGATTACGGTGTTTCTGTCGTAAAAAAGCGATCCGGCAAGTCCTCACCCAAGGGCAAATCGAAGGCCTGAMAEPNLPLTPEQRIKELEEKLALANQKAQFFEAVVDVLKNDYGVSVVKKRSGKSSPKGKSKANANANANANA
D1-35_05425240hypothetical proteinATGGGTGTTTTCACATTCGAGGATGAAATCAACTCCCCTGTGGCTCCTGCTACTCTTTACAAGGCCCTAGTTACAGATGCCGACAACGTCATCCCAAAGGCTCTTGATTCCTTCAAGAGTGTTGAAAACGTTGAGGGAAATGGTGGCCCAGGAACCATCAAGAAGATCACTTTCGTTGAGGATGGAGAAACCAAGTTTGTGCTGCACAAAATAGAAAGCATTGATGAGGCGAACTTGTGAMGVFTFEDEINSPVAPATLYKALVTDADNVIPKALDSFKSVENVEGNGGPGTIKKITFVEDGETKFVLHKIESIDEANLNANANANANA